summaryrefslogtreecommitdiff
path: root/include/net/mana
ModeNameSize
-rw-r--r--gdma.h20586logplain
-rw-r--r--hw_channel.h4060logplain
-rw-r--r--mana.h24257logplain
-rw-r--r--mana_auxiliary.h223logplain
-rw-r--r--shm_channel.h557logplain
x-arm.git/diff/drivers/gpu/drm/amd/amdgpu/Kconfig?h=devel-stable&id2=3e6743e28b9b43d37ced234bdf8e19955d0216f8'>drivers/gpu/drm/amd/amdgpu/Kconfig34
-rw-r--r--drivers/gpu/drm/amd/amdgpu/Makefile19
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu.h71
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_acpi.c61
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_amdkfd.c14
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_amdkfd.h24
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_amdkfd_aldebaran.c1
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_amdkfd_gfx_v9.c4
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_amdkfd_gpuvm.c466
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_atomfirmware.c110
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_bios.c1
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_bo_list.c1
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_bo_list.h5
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_cgs.c11
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_connectors.c26
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_cs.c115
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_cs.h5
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_debugfs.c8
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_device.c573
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_discovery.c83
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_display.c47
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_display.h1
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_dma_buf.c5
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_doorbell.h8
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_drv.c123
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_eeprom.c4
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_encoders.c1
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_fdinfo.c24
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_fdinfo.h1
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_fence.c71
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_fru_eeprom.c217
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_gem.c30
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_gfx.c73
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_gfx.h32
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_gmc.c103
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_gmc.h5
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_gtt_mgr.c2
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_hdp.c48
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_hdp.h2
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_hmm.c (renamed from drivers/gpu/drm/amd/amdgpu/amdgpu_mn.c)113
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_hmm.h (renamed from drivers/gpu/drm/amd/amdgpu/amdgpu_mn.h)18
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_ib.c11
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_ids.c153
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_ids.h6
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_irq.c62
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_irq.h2
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_job.c100
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_job.h19
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_jpeg.c56
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_jpeg.h1
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_kms.c64
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_mca.c72
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_mca.h9
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_mes.c91
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_mes.h3
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_mmhub.c46
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_mmhub.h2
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_mode.h7
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_nbio.c23
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_nbio.h1
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_object.c86
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_object.h50
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_psp.c451
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_psp.h14
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_psp_ta.c217
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_psp_ta.h5
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_ras.c317
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_ras.h10
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_ras_eeprom.c134
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_res_cursor.h4
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_reset.c7
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_ring.c12
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_ring.h22
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_ring_mux.c514
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_ring_mux.h103
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_rlc.c9
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_sa.c324
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_sched.c6
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_sdma.c62
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_sdma.h5
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_securedisplay.c12
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_securedisplay.h2
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_sync.c58
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_sync.h2
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_trace.h10
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_ttm.c245
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_ttm.h26
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_ucode.c276
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_ucode.h6
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_umc.c158
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_umc.h26
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_uvd.c68
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_vce.c32
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_vcn.c270
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_vcn.h2
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_virt.c68
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_virt.h10
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_vkms.c6
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_vm.c152
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_vm.h13
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_vm_pt.c3
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_vm_sdma.c77
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_vram_mgr.c13
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_xgmi.c198
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgpu_xgmi.h1
-rw-r--r--drivers/gpu/drm/amd/amdgpu/amdgv_sriovmsg.h3
-rw-r--r--drivers/gpu/drm/amd/amdgpu/atombios_crtc.c1
-rw-r--r--drivers/gpu/drm/amd/amdgpu/atombios_encoders.c8
-rw-r--r--drivers/gpu/drm/amd/amdgpu/cik_sdma.c16
-rw-r--r--drivers/gpu/drm/amd/amdgpu/dce_v10_0.c19
-rw-r--r--drivers/gpu/drm/amd/amdgpu/dce_v11_0.c19
-rw-r--r--drivers/gpu/drm/amd/amdgpu/dce_v6_0.c19
-rw-r--r--drivers/gpu/drm/amd/amdgpu/dce_v8_0.c20
-rw-r--r--drivers/gpu/drm/amd/amdgpu/df_v1_7.c2
-rw-r--r--drivers/gpu/drm/amd/amdgpu/df_v4_3.c61
-rw-r--r--drivers/gpu/drm/amd/amdgpu/df_v4_3.h (renamed from drivers/gpu/drm/amd/display/dc/link/link_hwss_hpo_frl.h)15
-rw-r--r--drivers/gpu/drm/amd/amdgpu/gfx_v10_0.c185
-rw-r--r--drivers/gpu/drm/amd/amdgpu/gfx_v11_0.c391
-rw-r--r--drivers/gpu/drm/amd/amdgpu/gfx_v11_0_3.c96
-rw-r--r--drivers/gpu/drm/amd/amdgpu/gfx_v11_0_3.h29
-rw-r--r--drivers/gpu/drm/amd/amdgpu/gfx_v6_0.c33
-rw-r--r--drivers/gpu/drm/amd/amdgpu/gfx_v7_0.c71
-rw-r--r--drivers/gpu/drm/amd/amdgpu/gfx_v8_0.c99
-rw-r--r--drivers/gpu/drm/amd/amdgpu/gfx_v9_0.c553
-rw-r--r--drivers/gpu/drm/amd/amdgpu/gfx_v9_4_3.c430
-rw-r--r--drivers/gpu/drm/amd/amdgpu/gfx_v9_4_3.h30
-rw-r--r--drivers/gpu/drm/amd/amdgpu/gfxhub_v1_0.c2
-rw-r--r--drivers/gpu/drm/amd/amdgpu/gfxhub_v1_2.c471
-rw-r--r--drivers/gpu/drm/amd/amdgpu/gfxhub_v1_2.h29
-rw-r--r--drivers/gpu/drm/amd/amdgpu/gfxhub_v2_0.c2
-rw-r--r--drivers/gpu/drm/amd/amdgpu/gfxhub_v2_1.c5
-rw-r--r--drivers/gpu/drm/amd/amdgpu/gfxhub_v3_0.c35
-rw-r--r--drivers/gpu/drm/amd/amdgpu/gfxhub_v3_0_3.c25
-rw-r--r--drivers/gpu/drm/amd/amdgpu/gmc_v10_0.c92
-rw-r--r--drivers/gpu/drm/amd/amdgpu/gmc_v11_0.c70
-rw-r--r--drivers/gpu/drm/amd/amdgpu/gmc_v6_0.c16
-rw-r--r--drivers/gpu/drm/amd/amdgpu/gmc_v7_0.c18
-rw-r--r--drivers/gpu/drm/amd/amdgpu/gmc_v8_0.c18
-rw-r--r--drivers/gpu/drm/amd/amdgpu/gmc_v9_0.c262
-rw-r--r--drivers/gpu/drm/amd/amdgpu/hdp_v4_0.c8
-rw-r--r--drivers/gpu/drm/amd/amdgpu/ih_v6_0.c5
-rw-r--r--drivers/gpu/drm/amd/amdgpu/imu_v11_0.c8
-rw-r--r--drivers/gpu/drm/amd/amdgpu/jpeg_v1_0.c4
-rw-r--r--drivers/gpu/drm/amd/amdgpu/jpeg_v2_0.c4
-rw-r--r--drivers/gpu/drm/amd/amdgpu/jpeg_v2_5.c23
-rw-r--r--drivers/gpu/drm/amd/amdgpu/jpeg_v3_0.c3
-rw-r--r--drivers/gpu/drm/amd/amdgpu/jpeg_v4_0.c245
-rw-r--r--drivers/gpu/drm/amd/amdgpu/jpeg_v4_0.h7
-rw-r--r--drivers/gpu/drm/amd/amdgpu/mca_v3_0.c44
-rw-r--r--drivers/gpu/drm/amd/amdgpu/mca_v3_0.h4
-rw-r--r--drivers/gpu/drm/amd/amdgpu/mes_v10_1.c116
-rw-r--r--drivers/gpu/drm/amd/amdgpu/mes_v11_0.c156
-rw-r--r--drivers/gpu/drm/amd/amdgpu/mmhub_v1_0.c2
-rw-r--r--drivers/gpu/drm/amd/amdgpu/mmhub_v1_7.c2
-rw-r--r--drivers/gpu/drm/amd/amdgpu/mmhub_v1_8.c477
-rw-r--r--drivers/gpu/drm/amd/amdgpu/mmhub_v1_8.h28
-rw-r--r--drivers/gpu/drm/amd/amdgpu/mmhub_v2_0.c4
-rw-r--r--drivers/gpu/drm/amd/amdgpu/mmhub_v2_3.c4
-rw-r--r--drivers/gpu/drm/amd/amdgpu/mmhub_v3_0.c42
-rw-r--r--drivers/gpu/drm/amd/amdgpu/mmhub_v3_0_1.c8
-rw-r--r--drivers/gpu/drm/amd/amdgpu/mmhub_v3_0_2.c14
-rw-r--r--drivers/gpu/drm/amd/amdgpu/mmhub_v9_4.c2
-rw-r--r--drivers/gpu/drm/amd/amdgpu/mmsch_v4_0.h6
-rw-r--r--drivers/gpu/drm/amd/amdgpu/mxgpu_ai.c6
-rw-r--r--drivers/gpu/drm/amd/amdgpu/mxgpu_ai.h1
-rw-r--r--drivers/gpu/drm/amd/amdgpu/mxgpu_nv.c6
-rw-r--r--drivers/gpu/drm/amd/amdgpu/mxgpu_nv.h1
-rw-r--r--drivers/gpu/drm/amd/amdgpu/nbio_v4_3.c87
-rw-r--r--drivers/gpu/drm/amd/amdgpu/nbio_v4_3.h1
-rw-r--r--drivers/gpu/drm/amd/amdgpu/nbio_v7_2.c9
-rw-r--r--drivers/gpu/drm/amd/amdgpu/nbio_v7_4.c2
-rw-r--r--drivers/gpu/drm/amd/amdgpu/nbio_v7_9.c369
-rw-r--r--drivers/gpu/drm/amd/amdgpu/nbio_v7_9.h32
-rw-r--r--drivers/gpu/drm/amd/amdgpu/nv.c252
-rw-r--r--drivers/gpu/drm/amd/amdgpu/psp_v10_0.c103
-rw-r--r--drivers/gpu/drm/amd/amdgpu/psp_v11_0.c158
-rw-r--r--drivers/gpu/drm/amd/amdgpu/psp_v11_0_8.c27
-rw-r--r--drivers/gpu/drm/amd/amdgpu/psp_v12_0.c109
-rw-r--r--drivers/gpu/drm/amd/amdgpu/psp_v13_0.c60
-rw-r--r--drivers/gpu/drm/amd/amdgpu/psp_v13_0_4.c41
-rw-r--r--drivers/gpu/drm/amd/amdgpu/psp_v3_1.c43
-rw-r--r--drivers/gpu/drm/amd/amdgpu/sdma_v2_4.c18
-rw-r--r--drivers/gpu/drm/amd/amdgpu/sdma_v3_0.c18
-rw-r--r--drivers/gpu/drm/amd/amdgpu/sdma_v4_0.c201
-rw-r--r--drivers/gpu/drm/amd/amdgpu/sdma_v4_4_2.c1967
-rw-r--r--drivers/gpu/drm/amd/amdgpu/sdma_v4_4_2.h30
-rw-r--r--drivers/gpu/drm/amd/amdgpu/sdma_v5_0.c32
-rw-r--r--drivers/gpu/drm/amd/amdgpu/sdma_v5_2.c65
-rw-r--r--drivers/gpu/drm/amd/amdgpu/sdma_v6_0.c136
-rw-r--r--drivers/gpu/drm/amd/amdgpu/si_dma.c2
-rw-r--r--drivers/gpu/drm/amd/amdgpu/sienna_cichlid.c2
-rw-r--r--drivers/gpu/drm/amd/amdgpu/smu_v13_0_10.c303
-rw-r--r--drivers/gpu/drm/amd/amdgpu/smu_v13_0_10.h32
-rw-r--r--drivers/gpu/drm/amd/amdgpu/soc15.c142
-rw-r--r--drivers/gpu/drm/amd/amdgpu/soc15d.h2
-rw-r--r--drivers/gpu/drm/amd/amdgpu/soc21.c320
-rw-r--r--drivers/gpu/drm/amd/amdgpu/ta_ras_if.h2
-rw-r--r--drivers/gpu/drm/amd/amdgpu/ta_secureDisplay_if.h24
-rw-r--r--drivers/gpu/drm/amd/amdgpu/umc_v6_7.c175
-rw-r--r--drivers/gpu/drm/amd/amdgpu/umc_v6_7.h4
-rw-r--r--drivers/gpu/drm/amd/amdgpu/umc_v8_10.c337
-rw-r--r--drivers/gpu/drm/amd/amdgpu/umc_v8_10.h8
-rw-r--r--drivers/gpu/drm/amd/amdgpu/uvd_v6_0.c8
-rw-r--r--drivers/gpu/drm/amd/amdgpu/uvd_v7_0.c20
-rw-r--r--drivers/gpu/drm/amd/amdgpu/vce_v4_0.c4
-rw-r--r--drivers/gpu/drm/amd/amdgpu/vcn_sw_ring.c2
-rw-r--r--drivers/gpu/drm/amd/amdgpu/vcn_v1_0.c13
-rw-r--r--drivers/gpu/drm/amd/amdgpu/vcn_v2_0.c13
-rw-r--r--drivers/gpu/drm/amd/amdgpu/vcn_v2_5.c135
-rw-r--r--drivers/gpu/drm/amd/amdgpu/vcn_v3_0.c14
-rw-r--r--drivers/gpu/drm/amd/amdgpu/vcn_v4_0.c204
-rw-r--r--drivers/gpu/drm/amd/amdgpu/vcn_v4_0.h6
-rw-r--r--drivers/gpu/drm/amd/amdgpu/vega20_ih.c72
-rw-r--r--drivers/gpu/drm/amd/amdgpu/vi.c43
-rw-r--r--drivers/gpu/drm/amd/amdkfd/cwsr_trap_handler.h487
-rw-r--r--drivers/gpu/drm/amd/amdkfd/cwsr_trap_handler_gfx9.asm52
-rw-r--r--drivers/gpu/drm/amd/amdkfd/kfd_chardev.c100
-rw-r--r--drivers/gpu/drm/amd/amdkfd/kfd_crat.c378
-rw-r--r--drivers/gpu/drm/amd/amdkfd/kfd_crat.h36
-rw-r--r--drivers/gpu/drm/amd/amdkfd/kfd_device.c61
-rw-r--r--drivers/gpu/drm/amd/amdkfd/kfd_device_queue_manager.c7
-rw-r--r--drivers/gpu/drm/amd/amdkfd/kfd_device_queue_manager_v9.c27
-rw-r--r--drivers/gpu/drm/amd/amdkfd/kfd_doorbell.c6
-rw-r--r--drivers/gpu/drm/amd/amdkfd/kfd_events.c13
-rw-r--r--drivers/gpu/drm/amd/amdkfd/kfd_iommu.c29
-rw-r--r--drivers/gpu/drm/amd/amdkfd/kfd_migrate.c62
-rw-r--r--drivers/gpu/drm/amd/amdkfd/kfd_module.c1
-rw-r--r--drivers/gpu/drm/amd/amdkfd/kfd_mqd_manager_v11.c26
-rw-r--r--drivers/gpu/drm/amd/amdkfd/kfd_mqd_manager_v9.c21
-rw-r--r--drivers/gpu/drm/amd/amdkfd/kfd_packet_manager.c3
-rw-r--r--drivers/gpu/drm/amd/amdkfd/kfd_pm4_headers_diq.h291
-rw-r--r--drivers/gpu/drm/amd/amdkfd/kfd_priv.h8
-rw-r--r--drivers/gpu/drm/amd/amdkfd/kfd_process.c125
-rw-r--r--drivers/gpu/drm/amd/amdkfd/kfd_process_queue_manager.c4
-rw-r--r--drivers/gpu/drm/amd/amdkfd/kfd_svm.c47
-rw-r--r--drivers/gpu/drm/amd/amdkfd/kfd_topology.c383
-rw-r--r--drivers/gpu/drm/amd/amdkfd/kfd_topology.h6
-rw-r--r--drivers/gpu/drm/amd/display/Kconfig23
-rw-r--r--drivers/gpu/drm/amd/display/Makefile4
-rw-r--r--drivers/gpu/drm/amd/display/amdgpu_dm/Makefile4
-rw-r--r--drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm.c1648
-rw-r--r--drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm.h118
-rw-r--r--drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_crc.c240
-rw-r--r--drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_crc.h22
-rw-r--r--drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_crtc.c66
-rw-r--r--drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_crtc.h14
-rw-r--r--drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_debugfs.c296
-rw-r--r--drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_hdcp.c156
-rw-r--r--drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_hdcp.h17
-rw-r--r--drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_helpers.c367
-rw-r--r--drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_irq_params.h2
-rw-r--r--drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_mst_types.c425
-rw-r--r--drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_mst_types.h27
-rw-r--r--drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_plane.c175
-rw-r--r--drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_plane.h13
-rw-r--r--drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_psr.c3
-rw-r--r--drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_trace.h64
-rw-r--r--drivers/gpu/drm/amd/display/amdgpu_dm/dc_fpu.c8
-rw-r--r--drivers/gpu/drm/amd/display/dc/Makefile12
-rw-r--r--drivers/gpu/drm/amd/display/dc/bios/bios_parser.c51
-rw-r--r--drivers/gpu/drm/amd/display/dc/bios/bios_parser2.c72
-rw-r--r--drivers/gpu/drm/amd/display/dc/bios/command_table2.c14
-rw-r--r--drivers/gpu/drm/amd/display/dc/bios/command_table2.h3
-rw-r--r--drivers/gpu/drm/amd/display/dc/clk_mgr/Makefile2
-rw-r--r--drivers/gpu/drm/amd/display/dc/clk_mgr/clk_mgr.c17
-rw-r--r--drivers/gpu/drm/amd/display/dc/clk_mgr/dcn201/dcn201_clk_mgr.c2
-rw-r--r--drivers/gpu/drm/amd/display/dc/clk_mgr/dcn21/rn_clk_mgr.c2
-rw-r--r--drivers/gpu/drm/amd/display/dc/clk_mgr/dcn21/rn_clk_mgr_vbios_smu.h4
-rw-r--r--drivers/gpu/drm/amd/display/dc/clk_mgr/dcn30/dcn30_clk_mgr.c3
-rw-r--r--drivers/gpu/drm/amd/display/dc/clk_mgr/dcn30/dcn30_smu11_driver_if.h1
-rw-r--r--drivers/gpu/drm/amd/display/dc/clk_mgr/dcn301/vg_clk_mgr.c19
-rw-r--r--drivers/gpu/drm/amd/display/dc/clk_mgr/dcn31/dcn31_clk_mgr.c5
-rw-r--r--drivers/gpu/drm/amd/display/dc/clk_mgr/dcn31/dcn31_smu.c4
-rw-r--r--drivers/gpu/drm/amd/display/dc/clk_mgr/dcn314/dcn314_clk_mgr.c7
-rw-r--r--drivers/gpu/drm/amd/display/dc/clk_mgr/dcn314/dcn314_smu.c26
-rw-r--r--drivers/gpu/drm/amd/display/dc/clk_mgr/dcn315/dcn315_clk_mgr.c104
-rw-r--r--drivers/gpu/drm/amd/display/dc/clk_mgr/dcn316/dcn316_clk_mgr.c3
-rw-r--r--drivers/gpu/drm/amd/display/dc/clk_mgr/dcn32/dcn32_clk_mgr.c222
-rw-r--r--drivers/gpu/drm/amd/display/dc/clk_mgr/dcn32/dcn32_clk_mgr.h3
-rw-r--r--drivers/gpu/drm/amd/display/dc/clk_mgr/dcn32/dcn32_smu13_driver_if.h1
-rw-r--r--drivers/gpu/drm/amd/display/dc/core/dc.c1065
-rw-r--r--drivers/gpu/drm/amd/display/dc/core/dc_hw_sequencer.c51
-rw-r--r--drivers/gpu/drm/amd/display/dc/core/dc_link.c4959
-rw-r--r--drivers/gpu/drm/amd/display/dc/core/dc_link_dp.c7598
-rw-r--r--drivers/gpu/drm/amd/display/dc/core/dc_link_enc_cfg.c66
-rw-r--r--drivers/gpu/drm/amd/display/dc/core/dc_link_exports.c480
-rw-r--r--drivers/gpu/drm/amd/display/dc/core/dc_resource.c389
-rw-r--r--drivers/gpu/drm/amd/display/dc/core/dc_stat.c29
-rw-r--r--drivers/gpu/drm/amd/display/dc/core/dc_stream.c27
-rw-r--r--drivers/gpu/drm/amd/display/dc/core/dc_vm_helper.c2
-rw-r--r--drivers/gpu/drm/amd/display/dc/dc.h907
-rw-r--r--drivers/gpu/drm/amd/display/dc/dc_bios_types.h3
-rw-r--r--drivers/gpu/drm/amd/display/dc/dc_ddc_types.h31
-rw-r--r--drivers/gpu/drm/amd/display/dc/dc_dmub_srv.c260
-rw-r--r--drivers/gpu/drm/amd/display/dc/dc_dp_types.h348
-rw-r--r--drivers/gpu/drm/amd/display/dc/dc_dsc.h11
-rw-r--r--drivers/gpu/drm/amd/display/dc/dc_hdmi_types.h133
-rw-r--r--drivers/gpu/drm/amd/display/dc/dc_hw_types.h40
-rw-r--r--drivers/gpu/drm/amd/display/dc/dc_link.h553
-rw-r--r--drivers/gpu/drm/amd/display/dc/dc_stream.h38
-rw-r--r--drivers/gpu/drm/amd/display/dc/dc_trace.h2
-rw-r--r--drivers/gpu/drm/amd/display/dc/dc_types.h232
-rw-r--r--drivers/gpu/drm/amd/display/dc/dce/dce_aux.c9
-rw-r--r--drivers/gpu/drm/amd/display/dc/dce/dce_aux.h2
-rw-r--r--drivers/gpu/drm/amd/display/dc/dce/dce_clock_source.c28
-rw-r--r--drivers/gpu/drm/amd/display/dc/dce/dce_clock_source.h6
-rw-r--r--drivers/gpu/drm/amd/display/dc/dce/dce_dmcu.c16
-rw-r--r--drivers/gpu/drm/amd/display/dc/dce/dce_link_encoder.c1
-rw-r--r--drivers/gpu/drm/amd/display/dc/dce/dce_transform.c5
-rw-r--r--drivers/gpu/drm/amd/display/dc/dce/dmub_abm.c2
-rw-r--r--drivers/gpu/drm/amd/display/dc/dce/dmub_psr.c19
-rw-r--r--drivers/gpu/drm/amd/display/dc/dce/dmub_psr.h5
-rw-r--r--drivers/gpu/drm/amd/display/dc/dce110/dce110_hw_sequencer.c210
-rw-r--r--drivers/gpu/drm/amd/display/dc/dce110/dce110_hw_sequencer.h2
-rw-r--r--drivers/gpu/drm/amd/display/dc/dce110/dce110_resource.c3
-rw-r--r--drivers/gpu/drm/amd/display/dc/dce120/dce120_resource.c3
-rw-r--r--drivers/gpu/drm/amd/display/dc/dce60/Makefile2
-rw-r--r--drivers/gpu/drm/amd/display/dc/dce60/dce60_resource.c3
-rw-r--r--drivers/gpu/drm/amd/display/dc/dce80/dce80_resource.c2
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn10/dcn10_dpp.c34
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn10/dcn10_dpp.h4
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn10/dcn10_dpp_dscl.c6
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn10/dcn10_dwb.c5
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn10/dcn10_dwb.h4
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn10/dcn10_hubbub.c8
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn10/dcn10_hubbub.h14
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn10/dcn10_hubp.c32
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn10/dcn10_hw_sequencer.c96
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn10/dcn10_hw_sequencer_debug.c4
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn10/dcn10_link_encoder.c4
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn10/dcn10_optc.c5
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn10/dcn10_optc.h32
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn10/dcn10_resource.c50
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn10/dcn10_stream_encoder.c19
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn20/dcn20_dccg.h11
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn20/dcn20_dsc.c39
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn20/dcn20_dwb.c2
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn20/dcn20_dwb.h363
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn20/dcn20_hubbub.c8
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn20/dcn20_hubp.c32
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn20/dcn20_hwseq.c284
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn20/dcn20_link_encoder.c1
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn20/dcn20_mmhubbub.c2
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn20/dcn20_mmhubbub.h7
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn20/dcn20_mpc.c2
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn20/dcn20_resource.c53
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn20/dcn20_stream_encoder.c23
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn20/dcn20_vmid.h6
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn201/dcn201_dpp.c7
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn201/dcn201_hwseq.c2
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn201/dcn201_link_encoder.c1
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn201/dcn201_mpc.c2
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn201/dcn201_resource.c6
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn21/dcn21_hubbub.c8
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn21/dcn21_hwseq.c6
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn21/dcn21_link_encoder.c1
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn21/dcn21_resource.c17
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn30/dcn30_afmt.c2
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn30/dcn30_dio_link_encoder.c1
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn30/dcn30_dio_stream_encoder.c27
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn30/dcn30_dio_stream_encoder.h4
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn30/dcn30_dpp.h2
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn30/dcn30_dwb.c2
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn30/dcn30_dwb.h15
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn30/dcn30_hubp.c4
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn30/dcn30_hwseq.c89
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn30/dcn30_mmhubbub.c2
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn30/dcn30_mmhubbub.h7
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn30/dcn30_mpc.c2
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn30/dcn30_optc.c18
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn30/dcn30_optc.h2
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn30/dcn30_resource.c58
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn30/dcn30_resource.h3
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn301/dcn301_dio_link_encoder.c1
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn301/dcn301_resource.c15
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn302/dcn302_resource.c42
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn303/dcn303_resource.c35
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn31/dcn31_apg.c54
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn31/dcn31_apg.h4
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn31/dcn31_dccg.c31
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn31/dcn31_dio_link_encoder.c6
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn31/dcn31_hpo_dp_link_encoder.c6
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn31/dcn31_hpo_dp_stream_encoder.c36
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn31/dcn31_hubbub.c18
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn31/dcn31_hubbub.h12
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn31/dcn31_hubp.c1
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn31/dcn31_hwseq.c39
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn31/dcn31_resource.c51
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn314/dcn314_dccg.c60
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn314/dcn314_dccg.h10
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn314/dcn314_dio_stream_encoder.c19
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn314/dcn314_dio_stream_encoder.h4
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn314/dcn314_hwseq.c111
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn314/dcn314_hwseq.h6
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn314/dcn314_init.c5
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn314/dcn314_optc.c4
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn314/dcn314_resource.c99
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn314/dcn314_resource.h4
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn315/dcn315_resource.c21
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn316/dcn316_resource.c18
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn32/dcn32_dccg.c35
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn32/dcn32_dccg.h39
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn32/dcn32_dio_link_encoder.c1
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn32/dcn32_dio_stream_encoder.c50
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn32/dcn32_dio_stream_encoder.h72
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn32/dcn32_hpo_dp_link_encoder.c1
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn32/dcn32_hubbub.c59
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn32/dcn32_hubbub.h71
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn32/dcn32_hubp.c16
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn32/dcn32_hubp.h10
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn32/dcn32_hwseq.c456
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn32/dcn32_hwseq.h13
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn32/dcn32_init.c9
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn32/dcn32_mmhubbub.c2
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn32/dcn32_mpc.c10
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn32/dcn32_mpc.h13
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn32/dcn32_optc.c8
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn32/dcn32_optc.h71
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn32/dcn32_resource.c262
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn32/dcn32_resource.h46
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn32/dcn32_resource_helpers.c399
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn321/dcn321_dio_link_encoder.c1
-rw-r--r--drivers/gpu/drm/amd/display/dc/dcn321/dcn321_resource.c55
-rw-r--r--drivers/gpu/drm/amd/display/dc/dm_helpers.h12
-rw-r--r--drivers/gpu/drm/amd/display/dc/dml/Makefile25
-rw-r--r--drivers/gpu/drm/amd/display/dc/dml/dc_features.h7
-rw-r--r--drivers/gpu/drm/amd/display/dc/dml/dcn10/dcn10_fpu.c36
-rw-r--r--drivers/gpu/drm/amd/display/dc/dml/dcn10/dcn10_fpu.h2
-rw-r--r--drivers/gpu/drm/amd/display/dc/dml/dcn20/dcn20_fpu.c249
-rw-r--r--drivers/gpu/drm/amd/display/dc/dml/dcn20/display_mode_vba_20.c8
-rw-r--r--drivers/gpu/drm/amd/display/dc/dml/dcn20/display_mode_vba_20v2.c10
-rw-r--r--drivers/gpu/drm/amd/display/dc/dml/dcn21/display_mode_vba_21.c12
-rw-r--r--drivers/gpu/drm/amd/display/dc/dml/dcn30/dcn30_fpu.c79
-rw-r--r--drivers/gpu/drm/amd/display/dc/dml/dcn30/display_mode_vba_30.c12
-rw-r--r--drivers/gpu/drm/amd/display/dc/dml/dcn30/display_rq_dlg_calc_30.c3
-rw-r--r--drivers/gpu/drm/amd/display/dc/dml/dcn31/dcn31_fpu.c28
-rw-r--r--drivers/gpu/drm/amd/display/dc/dml/dcn31/dcn31_fpu.h5
-rw-r--r--drivers/gpu/drm/amd/display/dc/dml/dcn31/display_mode_vba_31.c364
-rw-r--r--drivers/gpu/drm/amd/display/dc/dml/dcn31/display_rq_dlg_calc_31.c2
-rw-r--r--drivers/gpu/drm/amd/display/dc/dml/dcn314/dcn314_fpu.c25
-rw-r--r--drivers/gpu/drm/amd/display/dc/dml/dcn314/display_mode_vba_314.c314
-rw-r--r--drivers/gpu/drm/amd/display/dc/dml/dcn314/display_rq_dlg_calc_314.c14
-rw-r--r--drivers/gpu/drm/amd/display/dc/dml/dcn32/dcn32_fpu.c511
-rw-r--r--drivers/gpu/drm/amd/display/dc/dml/dcn32/dcn32_fpu.h9
-rw-r--r--drivers/gpu/drm/amd/display/dc/dml/dcn32/display_mode_vba_32.c126
-rw-r--r--drivers/gpu/drm/amd/display/dc/dml/dcn32/display_mode_vba_32.h6
-rw-r--r--drivers/gpu/drm/amd/display/dc/dml/dcn32/display_mode_vba_util_32.c142
-rw-r--r--drivers/gpu/drm/amd/display/dc/dml/dcn32/display_mode_vba_util_32.h27
-rw-r--r--drivers/gpu/drm/amd/display/dc/dml/dcn321/dcn321_fpu.c44
-rw-r--r--drivers/gpu/drm/amd/display/dc/dml/display_mode_enums.h25
-rw-r--r--drivers/gpu/drm/amd/display/dc/dml/display_mode_lib.c24
-rw-r--r--drivers/gpu/drm/amd/display/dc/dml/display_mode_lib.h1
-rw-r--r--drivers/gpu/drm/amd/display/dc/dml/display_mode_structs.h1
-rw-r--r--drivers/gpu/drm/amd/display/dc/dml/display_mode_vba.c2
-rw-r--r--drivers/gpu/drm/amd/display/dc/dml/display_mode_vba.h15
-rw-r--r--drivers/gpu/drm/amd/display/dc/dml/dsc/qp_tables.h36
-rw-r--r--drivers/gpu/drm/amd/display/dc/dsc/dc_dsc.c86
-rw-r--r--drivers/gpu/drm/amd/display/dc/dsc/dscc_types.h5
-rw-r--r--drivers/gpu/drm/amd/display/dc/dsc/rc_calc.c2
-rw-r--r--drivers/gpu/drm/amd/display/dc/dsc/rc_calc_dpi.c10
-rw-r--r--drivers/gpu/drm/amd/display/dc/gpio/dcn20/hw_factory_dcn20.c6
-rw-r--r--drivers/gpu/drm/amd/display/dc/gpio/dcn30/hw_factory_dcn30.c6
-rw-r--r--drivers/gpu/drm/amd/display/dc/gpio/dcn32/hw_factory_dcn32.c10
-rw-r--r--drivers/gpu/drm/amd/display/dc/gpio/ddc_regs.h7
-rw-r--r--drivers/gpu/drm/amd/display/dc/hdcp/hdcp_msg.c7
-rw-r--r--drivers/gpu/drm/amd/display/dc/inc/core_types.h105
-rw-r--r--drivers/gpu/drm/amd/display/dc/inc/dc_link_ddc.h133
-rw-r--r--drivers/gpu/drm/amd/display/dc/inc/dc_link_dp.h267
-rw-r--r--drivers/gpu/drm/amd/display/dc/inc/dc_link_dpia.h105
-rw-r--r--drivers/gpu/drm/amd/display/dc/inc/hw/aux_engine.h8
-rw-r--r--drivers/gpu/drm/amd/display/dc/inc/hw/clk_mgr.h3
-rw-r--r--drivers/gpu/drm/amd/display/dc/inc/hw/dccg.h25
-rw-r--r--drivers/gpu/drm/amd/display/dc/inc/hw/dchubbub.h19
-rw-r--r--drivers/gpu/drm/amd/display/dc/inc/hw/dmcu.h16
-rw-r--r--drivers/gpu/drm/amd/display/dc/inc/hw/dpp.h49
-rw-r--r--drivers/gpu/drm/amd/display/dc/inc/hw/dwb.h8
-rw-r--r--drivers/gpu/drm/amd/display/dc/inc/hw/hubp.h3
-rw-r--r--drivers/gpu/drm/amd/display/dc/inc/hw/hw_shared.h21
-rw-r--r--drivers/gpu/drm/amd/display/dc/inc/hw/link_encoder.h52
-rw-r--r--drivers/gpu/drm/amd/display/dc/inc/hw/stream_encoder.h24
-rw-r--r--drivers/gpu/drm/amd/display/dc/inc/hw/timing_generator.h9
-rw-r--r--drivers/gpu/drm/amd/display/dc/inc/hw_sequencer.h2
-rw-r--r--drivers/gpu/drm/amd/display/dc/inc/hw_sequencer_private.h8
-rw-r--r--drivers/gpu/drm/amd/display/dc/inc/link.h319
-rw-r--r--drivers/gpu/drm/amd/display/dc/inc/link_hwss.h5
-rw-r--r--drivers/gpu/drm/amd/display/dc/inc/resource.h15
-rw-r--r--drivers/gpu/drm/amd/display/dc/irq/dcn201/irq_service_dcn201.c12
-rw-r--r--drivers/gpu/drm/amd/display/dc/irq/dcn201/irq_service_dcn201.h2
-rw-r--r--drivers/gpu/drm/amd/display/dc/irq/irq_service.c17
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/Makefile37
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/accessories/link_dp_cts.c1011
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/accessories/link_dp_cts.h44
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/accessories/link_dp_trace.c (renamed from drivers/gpu/drm/amd/display/dc/link/link_dp_trace.c)25
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/accessories/link_dp_trace.h (renamed from drivers/gpu/drm/amd/display/dc/link/link_dp_trace.h)15
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/accessories/link_fpga.c95
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/accessories/link_fpga.h30
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/hwss/link_hwss_dio.c (renamed from drivers/gpu/drm/amd/display/dc/link/link_hwss_dio.c)71
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/hwss/link_hwss_dio.h (renamed from drivers/gpu/drm/amd/display/dc/link/link_hwss_dio.h)5
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/hwss/link_hwss_dpia.c (renamed from drivers/gpu/drm/amd/display/dc/link/link_hwss_dpia.c)3
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/hwss/link_hwss_dpia.h (renamed from drivers/gpu/drm/amd/display/dc/link/link_hwss_dpia.h)0
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/hwss/link_hwss_hpo_dp.c (renamed from drivers/gpu/drm/amd/display/dc/link/link_hwss_hpo_dp.c)71
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/hwss/link_hwss_hpo_dp.h (renamed from drivers/gpu/drm/amd/display/dc/link/link_hwss_hpo_dp.h)1
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/link_detection.c1427
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/link_detection.h43
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/link_dpms.c2541
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/link_dpms.h53
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/link_factory.c836
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/link_factory.h31
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/link_resource.c114
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/link_resource.h32
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/link_validation.c363
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/link_validation.h39
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/protocols/link_ddc.c (renamed from drivers/gpu/drm/amd/display/dc/core/dc_link_ddc.c)433
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/protocols/link_ddc.h92
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_capability.c2259
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_capability.h107
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_dpia.c105
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_dpia.h41
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_dpia_bw.c492
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_dpia_bw.h102
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_irq_handler.c391
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_irq_handler.h41
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_phy.c208
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_phy.h59
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training.c1716
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training.h185
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training_128b_132b.c259
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training_128b_132b.h42
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training_8b_10b.c416
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training_8b_10b.h61
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training_auxless.c79
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training_auxless.h35
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training_dpia.c (renamed from drivers/gpu/drm/amd/display/dc/core/dc_link_dpia.c)332
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training_dpia.h41
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training_fixed_vs_pe_retimer.c955
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training_fixed_vs_pe_retimer.h50
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/protocols/link_dpcd.c (renamed from drivers/gpu/drm/amd/display/dc/core/dc_link_dpcd.c)13
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/protocols/link_dpcd.h (renamed from drivers/gpu/drm/amd/display/dc/inc/link_dpcd.h)5
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/protocols/link_edp_panel_control.c834
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/protocols/link_edp_panel_control.h63
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/protocols/link_hpd.c240
-rw-r--r--drivers/gpu/drm/amd/display/dc/link/protocols/link_hpd.h54
-rw-r--r--drivers/gpu/drm/amd/display/dc/os_types.h4
-rw-r--r--drivers/gpu/drm/amd/display/dmub/dmub_srv.h19
-rw-r--r--drivers/gpu/drm/amd/display/dmub/inc/dmub_cmd.h241
-rw-r--r--drivers/gpu/drm/amd/display/dmub/src/dmub_dcn32.c3
-rw-r--r--drivers/gpu/drm/amd/display/dmub/src/dmub_srv.c12
-rw-r--r--drivers/gpu/drm/amd/display/dmub/src/dmub_srv_stat.c21
-rw-r--r--drivers/gpu/drm/amd/display/include/dal_asic_id.h1
-rw-r--r--drivers/gpu/drm/amd/display/include/ddc_service_types.h9
-rw-r--r--drivers/gpu/drm/amd/display/include/dpcd_defs.h5
-rw-r--r--drivers/gpu/drm/amd/display/include/hdcp_msg_types.h (renamed from drivers/gpu/drm/amd/display/include/hdcp_types.h)0
-rw-r--r--drivers/gpu/drm/amd/display/include/i2caux_interface.h82
-rw-r--r--drivers/gpu/drm/amd/display/include/link_service_types.h33
-rw-r--r--drivers/gpu/drm/amd/display/include/signal_types.h1
-rw-r--r--drivers/gpu/drm/amd/display/modules/color/color_gamma.c142
-rw-r--r--drivers/gpu/drm/amd/display/modules/color/color_gamma.h3
-rw-r--r--drivers/gpu/drm/amd/display/modules/freesync/freesync.c86
-rw-r--r--drivers/gpu/drm/amd/display/modules/hdcp/hdcp_log.h2
-rw-r--r--drivers/gpu/drm/amd/display/modules/inc/mod_hdcp.h1
-rw-r--r--drivers/gpu/drm/amd/display/modules/inc/mod_info_packet.h39
-rw-r--r--drivers/gpu/drm/amd/display/modules/info_packet/info_packet.c61
-rw-r--r--drivers/gpu/drm/amd/display/modules/power/power_helpers.c55
-rw-r--r--drivers/gpu/drm/amd/display/modules/power/power_helpers.h3
-rw-r--r--drivers/gpu/drm/amd/include/amd_shared.h1
-rw-r--r--drivers/gpu/drm/amd/include/asic_reg/athub/athub_1_8_0_offset.h411
-rw-r--r--drivers/gpu/drm/amd/include/asic_reg/athub/athub_1_8_0_sh_mask.h1807
-rw-r--r--drivers/gpu/drm/amd/include/asic_reg/dcn/dcn_3_0_0_offset.h1
-rw-r--r--drivers/gpu/drm/amd/include/asic_reg/dcn/dcn_3_0_0_sh_mask.h1
-rw-r--r--drivers/gpu/drm/amd/include/asic_reg/df/df_4_3_offset.h30
-rw-r--r--drivers/gpu/drm/amd/include/asic_reg/df/df_4_3_sh_mask.h157
-rw-r--r--drivers/gpu/drm/amd/include/asic_reg/gc/gc_10_1_0_offset.h4
-rw-r--r--drivers/gpu/drm/amd/include/asic_reg/gc/gc_10_1_0_sh_mask.h54
-rw-r--r--drivers/gpu/drm/amd/include/asic_reg/gc/gc_10_3_0_offset.h4
-rw-r--r--drivers/gpu/drm/amd/include/asic_reg/gc/gc_10_3_0_sh_mask.h54
-rw-r--r--drivers/gpu/drm/amd/include/asic_reg/gc/gc_11_0_3_offset.h8
-rw-r--r--drivers/gpu/drm/amd/include/asic_reg/gc/gc_11_0_3_sh_mask.h50
-rw-r--r--drivers/gpu/drm/amd/include/asic_reg/gc/gc_9_4_3_offset.h7258
-rw-r--r--drivers/gpu/drm/amd/include/asic_reg/gc/gc_9_4_3_sh_mask.h30535
-rw-r--r--drivers/gpu/drm/amd/include/asic_reg/hdp/hdp_4_4_2_offset.h219
-rw-r--r--drivers/gpu/drm/amd/include/asic_reg/hdp/hdp_4_4_2_sh_mask.h663
-rw-r--r--drivers/gpu/drm/amd/include/asic_reg/mmhub/mmhub_1_8_0_offset.h3314
-rw-r--r--drivers/gpu/drm/amd/include/asic_reg/mmhub/mmhub_1_8_0_sh_mask.h22315
-rw-r--r--drivers/gpu/drm/amd/include/asic_reg/mp/mp_13_0_6_offset.h456
-rw-r--r--drivers/gpu/drm/amd/include/asic_reg/mp/mp_13_0_6_sh_mask.h674
-rw-r--r--drivers/gpu/drm/amd/include/asic_reg/nbio/nbio_7_9_0_offset.h10002
-rw-r--r--drivers/gpu/drm/amd/include/asic_reg/nbio/nbio_7_9_0_sh_mask.h38900
-rw-r--r--drivers/gpu/drm/amd/include/asic_reg/oss/osssys_4_2_0_offset.h6
-rw-r--r--drivers/gpu/drm/amd/include/asic_reg/oss/osssys_4_2_0_sh_mask.h11
-rw-r--r--drivers/gpu/drm/amd/include/asic_reg/oss/osssys_4_4_2_offset.h263
-rw-r--r--drivers/gpu/drm/amd/include/asic_reg/oss/osssys_4_4_2_sh_mask.h995
-rw-r--r--drivers/gpu/drm/amd/include/asic_reg/sdma/sdma_4_4_2_offset.h1109
-rw-r--r--drivers/gpu/drm/amd/include/asic_reg/sdma/sdma_4_4_2_sh_mask.h3276
-rw-r--r--drivers/gpu/drm/amd/include/asic_reg/vcn/vcn_2_5_offset.h3
-rw-r--r--drivers/gpu/drm/amd/include/asic_reg/vcn/vcn_2_5_sh_mask.h27
-rw-r--r--drivers/gpu/drm/amd/include/asic_reg/xgmi/xgmi_6_1_0_sh_mask.h87
-rw-r--r--drivers/gpu/drm/amd/include/atombios.h34
-rw-r--r--drivers/gpu/drm/amd/include/atomfirmware.h63
-rw-r--r--drivers/gpu/drm/amd/include/ivsrcid/gfx/irqsrcs_gfx_11_0_0.h2
-rw-r--r--drivers/gpu/drm/amd/include/ivsrcid/vcn/irqsrcs_vcn_4_0.h3
-rw-r--r--drivers/gpu/drm/amd/include/kgd_pp_interface.h12
-rw-r--r--drivers/gpu/drm/amd/include/mes_v11_api_def.h6
-rw-r--r--drivers/gpu/drm/amd/include/v11_structs.h16
-rw-r--r--drivers/gpu/drm/amd/include/yellow_carp_offset.h1
-rw-r--r--drivers/gpu/drm/amd/pm/amdgpu_dpm.c71
-rw-r--r--drivers/gpu/drm/amd/pm/amdgpu_pm.c137
-rw-r--r--drivers/gpu/drm/amd/pm/inc/amdgpu_dpm.h4
-rw-r--r--drivers/gpu/drm/amd/pm/legacy-dpm/si_dpm.c11
-rw-r--r--drivers/gpu/drm/amd/pm/powerplay/amd_powerplay.c18
-rw-r--r--drivers/gpu/drm/amd/pm/powerplay/hwmgr/pp_psm.c2
-rw-r--r--drivers/gpu/drm/amd/pm/powerplay/hwmgr/smu10_hwmgr.c16
-rw-r--r--drivers/gpu/drm/amd/pm/powerplay/hwmgr/smu7_hwmgr.c87
-rw-r--r--drivers/gpu/drm/amd/pm/powerplay/hwmgr/smu8_hwmgr.c16
-rw-r--r--drivers/gpu/drm/amd/pm/powerplay/hwmgr/vega10_hwmgr.c32
-rw-r--r--drivers/gpu/drm/amd/pm/powerplay/hwmgr/vega10_processpptables.c1
-rw-r--r--drivers/gpu/drm/amd/pm/powerplay/hwmgr/vega12_hwmgr.c23
-rw-r--r--drivers/gpu/drm/amd/pm/powerplay/hwmgr/vega12_processpptables.c1
-rw-r--r--drivers/gpu/drm/amd/pm/powerplay/hwmgr/vega20_hwmgr.c24
-rw-r--r--drivers/gpu/drm/amd/pm/powerplay/hwmgr/vega20_processpptables.c1
-rw-r--r--drivers/gpu/drm/amd/pm/powerplay/inc/hwmgr.h2
-rw-r--r--drivers/gpu/drm/amd/pm/powerplay/inc/smu11_driver_if.h2
-rw-r--r--drivers/gpu/drm/amd/pm/powerplay/inc/smu9_driver_if.h2
-rw-r--r--drivers/gpu/drm/amd/pm/powerplay/inc/vega12/smu9_driver_if.h2
-rw-r--r--drivers/gpu/drm/amd/pm/powerplay/smumgr/ci_smumgr.c3
-rw-r--r--drivers/gpu/drm/amd/pm/powerplay/smumgr/iceland_smumgr.c2
-rw-r--r--drivers/gpu/drm/amd/pm/powerplay/smumgr/smu10_smumgr.c10
-rw-r--r--drivers/gpu/drm/amd/pm/powerplay/smumgr/tonga_smumgr.c2
-rw-r--r--drivers/gpu/drm/amd/pm/swsmu/amdgpu_smu.c184
-rw-r--r--drivers/gpu/drm/amd/pm/swsmu/inc/amdgpu_smu.h27
-rw-r--r--drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu11_driver_if_arcturus.h2
-rw-r--r--drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu11_driver_if_navi10.h2
-rw-r--r--drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu11_driver_if_sienna_cichlid.h2
-rw-r--r--drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu11_driver_if_vangogh.h4
-rw-r--r--drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu13_driver_if_aldebaran.h2
-rw-r--r--drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu13_driver_if_v13_0_0.h5
-rw-r--r--drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu13_driver_if_v13_0_4.h4
-rw-r--r--drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu13_driver_if_v13_0_6.h141
-rw-r--r--drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu13_driver_if_v13_0_7.h148
-rw-r--r--drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu_v13_0_0_ppsmc.h9
-rw-r--r--drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu_v13_0_6_pmfw.h212
-rw-r--r--drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu_v13_0_6_ppsmc.h95
-rw-r--r--drivers/gpu/drm/amd/pm/swsmu/inc/smu_types.h8
-rw-r--r--drivers/gpu/drm/amd/pm/swsmu/inc/smu_v11_0.h10
-rw-r--r--drivers/gpu/drm/amd/pm/swsmu/inc/smu_v13_0.h33
-rw-r--r--drivers/gpu/drm/amd/pm/swsmu/smu11/navi10_ppt.c9
-rw-r--r--drivers/gpu/drm/amd/pm/swsmu/smu11/sienna_cichlid_ppt.c47
-rw-r--r--drivers/gpu/drm/amd/pm/swsmu/smu11/smu_v11_0.c85
-rw-r--r--drivers/gpu/drm/amd/pm/swsmu/smu11/vangogh_ppt.c25
-rw-r--r--drivers/gpu/drm/amd/pm/swsmu/smu12/renoir_ppt.c7
-rw-r--r--drivers/gpu/drm/amd/pm/swsmu/smu12/smu_v12_0.c4
-rw-r--r--drivers/gpu/drm/amd/pm/swsmu/smu13/Makefile2
-rw-r--r--drivers/gpu/drm/amd/pm/swsmu/smu13/smu_v13_0.c166
-rw-r--r--drivers/gpu/drm/amd/pm/swsmu/smu13/smu_v13_0_0_ppt.c395
-rw-r--r--drivers/gpu/drm/amd/pm/swsmu/smu13/smu_v13_0_4_ppt.c17
-rw-r--r--drivers/gpu/drm/amd/pm/swsmu/smu13/smu_v13_0_6_ppt.c2069
-rw-r--r--drivers/gpu/drm/amd/pm/swsmu/smu13/smu_v13_0_6_ppt.h32
-rw-r--r--drivers/gpu/drm/amd/pm/swsmu/smu13/smu_v13_0_7_ppt.c164
-rw-r--r--drivers/gpu/drm/amd/pm/swsmu/smu_cmn.c28
-rw-r--r--drivers/gpu/drm/amd/pm/swsmu/smu_cmn.h6
-rw-r--r--drivers/gpu/drm/arm/display/komeda/komeda_crtc.c1
-rw-r--r--drivers/gpu/drm/arm/display/komeda/komeda_drv.c3
-rw-r--r--drivers/gpu/drm/arm/display/komeda/komeda_kms.c2
-rw-r--r--drivers/gpu/drm/arm/display/komeda/komeda_kms.h1
-rw-r--r--drivers/gpu/drm/arm/hdlcd_crtc.c25
-rw-r--r--drivers/gpu/drm/arm/hdlcd_drv.c73
-rw-r--r--drivers/gpu/drm/arm/hdlcd_drv.h2
-rw-r--r--drivers/gpu/drm/arm/malidp_crtc.c7
-rw-r--r--drivers/gpu/drm/arm/malidp_drv.c78
-rw-r--r--drivers/gpu/drm/arm/malidp_drv.h2
-rw-r--r--drivers/gpu/drm/arm/malidp_hw.c10
-rw-r--r--drivers/gpu/drm/arm/malidp_mw.c6
-rw-r--r--drivers/gpu/drm/arm/malidp_planes.c32
-rw-r--r--drivers/gpu/drm/armada/armada_drv.c1
-rw-r--r--drivers/gpu/drm/armada/armada_fbdev.c13
-rw-r--r--drivers/gpu/drm/armada/armada_gem.c8
-rw-r--r--drivers/gpu/drm/aspeed/aspeed_gfx_crtc.c1
-rw-r--r--drivers/gpu/drm/aspeed/aspeed_gfx_drv.c5
-rw-r--r--drivers/gpu/drm/aspeed/aspeed_gfx_out.c1
-rw-r--r--drivers/gpu/drm/ast/Kconfig6
-rw-r--r--drivers/gpu/drm/ast/ast_dp.c10
-rw-r--r--drivers/gpu/drm/ast/ast_dp501.c40
-rw-r--r--drivers/gpu/drm/ast/ast_drv.c24
-rw-r--r--drivers/gpu/drm/ast/ast_drv.h119
-rw-r--r--drivers/gpu/drm/ast/ast_i2c.c8
-rw-r--r--drivers/gpu/drm/ast/ast_main.c39
-rw-r--r--drivers/gpu/drm/ast/ast_mm.c18
-rw-r--r--drivers/gpu/drm/ast/ast_mode.c576
-rw-r--r--drivers/gpu/drm/ast/ast_post.c94
-rw-r--r--drivers/gpu/drm/atmel-hlcdc/atmel_hlcdc_dc.c13
-rw-r--r--drivers/gpu/drm/bridge/Kconfig25
-rw-r--r--drivers/gpu/drm/bridge/Makefile2
-rw-r--r--drivers/gpu/drm/bridge/adv7511/adv7511.h3
-rw-r--r--drivers/gpu/drm/bridge/adv7511/adv7511_drv.c29
-rw-r--r--drivers/gpu/drm/bridge/adv7511/adv7533.c54
-rw-r--r--drivers/gpu/drm/bridge/analogix/analogix-anx6345.c6
-rw-r--r--drivers/gpu/drm/bridge/analogix/analogix-anx78xx.c5
-rw-r--r--drivers/gpu/drm/bridge/analogix/anx7625.c7
-rw-r--r--drivers/gpu/drm/bridge/cadence/Kconfig21
-rw-r--r--drivers/gpu/drm/bridge/cadence/Makefile3
-rw-r--r--drivers/gpu/drm/bridge/cadence/cdns-dsi-core.c (renamed from drivers/gpu/drm/bridge/cdns-dsi.c)89
-rw-r--r--drivers/gpu/drm/bridge/cadence/cdns-dsi-core.h84
-rw-r--r--drivers/gpu/drm/bridge/cadence/cdns-dsi-j721e.c51
-rw-r--r--drivers/gpu/drm/bridge/cadence/cdns-dsi-j721e.h16
-rw-r--r--drivers/gpu/drm/bridge/cadence/cdns-mhdp8546-core.c1
-rw-r--r--drivers/gpu/drm/bridge/chipone-icn6211.c5
-rw-r--r--drivers/gpu/drm/bridge/chrontel-ch7033.c5
-rw-r--r--drivers/gpu/drm/bridge/display-connector.c15
-rw-r--r--drivers/gpu/drm/bridge/fsl-ldb.c185
-rw-r--r--drivers/gpu/drm/bridge/imx/imx8qm-ldb-drv.c6
-rw-r--r--drivers/gpu/drm/bridge/imx/imx8qxp-ldb-drv.c6
-rw-r--r--drivers/gpu/drm/bridge/imx/imx8qxp-pixel-combiner.c6
-rw-r--r--drivers/gpu/drm/bridge/imx/imx8qxp-pixel-link.c8
-rw-r--r--drivers/gpu/drm/bridge/imx/imx8qxp-pxl2dpi.c6
-rw-r--r--drivers/gpu/drm/bridge/ite-it6505.c323
-rw-r--r--drivers/gpu/drm/bridge/ite-it66121.c321
-rw-r--r--drivers/gpu/drm/bridge/lontium-lt8912b.c31
-rw-r--r--drivers/gpu/drm/bridge/lontium-lt9211.c5
-rw-r--r--drivers/gpu/drm/bridge/lontium-lt9611.c346
-rw-r--r--drivers/gpu/drm/bridge/lontium-lt9611uxc.c5
-rw-r--r--drivers/gpu/drm/bridge/lvds-codec.c6
-rw-r--r--drivers/gpu/drm/bridge/megachips-stdpxxxx-ge-b850v3-fw.c16
-rw-r--r--drivers/gpu/drm/bridge/nwl-dsi.c5
-rw-r--r--drivers/gpu/drm/bridge/nxp-ptn3460.c5
-rw-r--r--drivers/gpu/drm/bridge/panel.c83
-rw-r--r--drivers/gpu/drm/bridge/parade-ps8622.c8
-rw-r--r--drivers/gpu/drm/bridge/parade-ps8640.c94
-rw-r--r--drivers/gpu/drm/bridge/samsung-dsim.c1967
-rw-r--r--drivers/gpu/drm/bridge/sii902x.c38
-rw-r--r--drivers/gpu/drm/bridge/sii9234.c10
-rw-r--r--drivers/gpu/drm/bridge/sil-sii8620.c5
-rw-r--r--drivers/gpu/drm/bridge/simple-bridge.c14
-rw-r--r--drivers/gpu/drm/bridge/synopsys/dw-hdmi-ahb-audio.c6
-rw-r--r--drivers/gpu/drm/bridge/synopsys/dw-hdmi-cec.c6
-rw-r--r--drivers/gpu/drm/bridge/synopsys/dw-hdmi-gp-audio.c6
-rw-r--r--drivers/gpu/drm/bridge/synopsys/dw-hdmi-i2s-audio.c7
-rw-r--r--drivers/gpu/drm/bridge/synopsys/dw-hdmi.c14
-rw-r--r--drivers/gpu/drm/bridge/tc358762.c3
-rw-r--r--drivers/gpu/drm/bridge/tc358764.c1
-rw-r--r--drivers/gpu/drm/bridge/tc358767.c16
-rw-r--r--drivers/gpu/drm/bridge/tc358768.c6
-rw-r--r--drivers/gpu/drm/bridge/tc358775.c7
-rw-r--r--drivers/gpu/drm/bridge/thc63lvd1024.c6
-rw-r--r--drivers/gpu/drm/bridge/ti-sn65dsi83.c16
-rw-r--r--drivers/gpu/drm/bridge/ti-sn65dsi86.c27
-rw-r--r--drivers/gpu/drm/bridge/ti-tfp410.c11
-rw-r--r--drivers/gpu/drm/display/Makefile14
-rw-r--r--drivers/gpu/drm/display/drm_dp_aux_bus.c7
-rw-r--r--drivers/gpu/drm/display/drm_dp_aux_dev.c2
-rw-r--r--drivers/gpu/drm/display/drm_dp_dual_mode_helper.c51
-rw-r--r--drivers/gpu/drm/display/drm_dp_mst_topology.c73
-rw-r--r--drivers/gpu/drm/display/drm_hdmi_helper.c6
-rw-r--r--drivers/gpu/drm/display/drm_scdc_helper.c46
-rw-r--r--drivers/gpu/drm/drm_atomic.c84
-rw-r--r--drivers/gpu/drm/drm_atomic_helper.c157
-rw-r--r--drivers/gpu/drm/drm_atomic_state_helper.c128
-rw-r--r--drivers/gpu/drm/drm_atomic_uapi.c8
-rw-r--r--drivers/gpu/drm/drm_blend.c13
-rw-r--r--drivers/gpu/drm/drm_bridge.c294
-rw-r--r--drivers/gpu/drm/drm_bridge_connector.c27
-rw-r--r--drivers/gpu/drm/drm_buddy.c85
-rw-r--r--drivers/gpu/drm/drm_bufs.c12
-rw-r--r--drivers/gpu/drm/drm_client.c64
-rw-r--r--drivers/gpu/drm/drm_client_modeset.c8
-rw-r--r--drivers/gpu/drm/drm_connector.c196
-rw-r--r--drivers/gpu/drm/drm_context.c36
-rw-r--r--drivers/gpu/drm/drm_crtc_helper.c27
-rw-r--r--drivers/gpu/drm/drm_crtc_internal.h15
-rw-r--r--drivers/gpu/drm/drm_debugfs.c122
-rw-r--r--drivers/gpu/drm/drm_displayid.c62
-rw-r--r--drivers/gpu/drm/drm_drv.c136
-rw-r--r--drivers/gpu/drm/drm_dumb_buffers.c5
-rw-r--r--drivers/gpu/drm/drm_edid.c1289
-rw-r--r--drivers/gpu/drm/drm_edid_load.c112
-rw-r--r--drivers/gpu/drm/drm_fb_helper.c1456
-rw-r--r--drivers/gpu/drm/drm_fbdev_dma.c268
-rw-r--r--drivers/gpu/drm/drm_fbdev_generic.c356
-rw-r--r--drivers/gpu/drm/drm_file.c22
-rw-r--r--drivers/gpu/drm/drm_format_helper.c492
-rw-r--r--drivers/gpu/drm/drm_fourcc.c12
-rw-r--r--drivers/gpu/drm/drm_framebuffer.c11
-rw-r--r--drivers/gpu/drm/drm_gem.c90
-rw-r--r--drivers/gpu/drm/drm_gem_atomic_helper.c97
-rw-r--r--drivers/gpu/drm/drm_gem_dma_helper.c13
-rw-r--r--drivers/gpu/drm/drm_gem_framebuffer_helper.c7
-rw-r--r--drivers/gpu/drm/drm_gem_shmem_helper.c163
-rw-r--r--drivers/gpu/drm/drm_gem_ttm_helper.c11
-rw-r--r--drivers/gpu/drm/drm_gem_vram_helper.c41
-rw-r--r--drivers/gpu/drm/drm_internal.h11
-rw-r--r--drivers/gpu/drm/drm_ioc32.c13
-rw-r--r--drivers/gpu/drm/drm_ioctl.c25
-rw-r--r--drivers/gpu/drm/drm_lease.c66
-rw-r--r--drivers/gpu/drm/drm_mipi_dbi.c158
-rw-r--r--drivers/gpu/drm/drm_mipi_dsi.c64
-rw-r--r--drivers/gpu/drm/drm_mode_config.c13
-rw-r--r--drivers/gpu/drm/drm_modes.c662
-rw-r--r--drivers/gpu/drm/drm_nomodeset.c24
-rw-r--r--drivers/gpu/drm/drm_of.c51
-rw-r--r--drivers/gpu/drm/drm_panel_orientation_quirks.c58
-rw-r--r--drivers/gpu/drm/drm_plane.c5
-rw-r--r--drivers/gpu/drm/drm_plane_helper.c5
-rw-r--r--drivers/gpu/drm/drm_prime.c18
-rw-r--r--drivers/gpu/drm/drm_probe_helper.c168
-rw-r--r--drivers/gpu/drm/drm_rect.c2
-rw-r--r--drivers/gpu/drm/drm_simple_kms_helper.c34
-rw-r--r--drivers/gpu/drm/drm_suballoc.c457
-rw-r--r--drivers/gpu/drm/drm_sysfs.c28
-rw-r--r--drivers/gpu/drm/drm_vblank.c59
-rw-r--r--drivers/gpu/drm/drm_vm.c8
-rw-r--r--drivers/gpu/drm/drm_vma_manager.c76
-rw-r--r--drivers/gpu/drm/etnaviv/etnaviv_drv.c11
-rw-r--r--drivers/gpu/drm/etnaviv/etnaviv_drv.h8
-rw-r--r--drivers/gpu/drm/etnaviv/etnaviv_dump.c7
-rw-r--r--drivers/gpu/drm/etnaviv/etnaviv_gem.c27
-rw-r--r--drivers/gpu/drm/etnaviv/etnaviv_gem.h1
-rw-r--r--drivers/gpu/drm/etnaviv/etnaviv_gem_prime.c12
-rw-r--r--drivers/gpu/drm/etnaviv/etnaviv_gem_submit.c15
-rw-r--r--drivers/gpu/drm/etnaviv/etnaviv_gpu.c124
-rw-r--r--drivers/gpu/drm/etnaviv/etnaviv_gpu.h31
-rw-r--r--drivers/gpu/drm/etnaviv/etnaviv_hwdb.c67
-rw-r--r--drivers/gpu/drm/etnaviv/etnaviv_mmu.c27
-rw-r--r--drivers/gpu/drm/etnaviv/etnaviv_mmu.h1
-rw-r--r--drivers/gpu/drm/etnaviv/etnaviv_sched.c20
-rw-r--r--drivers/gpu/drm/etnaviv/state_hi.xml.h86
-rw-r--r--drivers/gpu/drm/exynos/Kconfig3
-rw-r--r--drivers/gpu/drm/exynos/exynos5433_drm_decon.c13
-rw-r--r--drivers/gpu/drm/exynos/exynos7_drm_decon.c12
-rw-r--r--drivers/gpu/drm/exynos/exynos_dp.c11
-rw-r--r--drivers/gpu/drm/exynos/exynos_drm_drv.c13
-rw-r--r--drivers/gpu/drm/exynos/exynos_drm_drv.h2
-rw-r--r--drivers/gpu/drm/exynos/exynos_drm_dsi.c1797
-rw-r--r--drivers/gpu/drm/exynos/exynos_drm_fb.c2
-rw-r--r--drivers/gpu/drm/exynos/exynos_drm_fbdev.c177
-rw-r--r--drivers/gpu/drm/exynos/exynos_drm_fbdev.h20
-rw-r--r--drivers/gpu/drm/exynos/exynos_drm_fimc.c11
-rw-r--r--drivers/gpu/drm/exynos/exynos_drm_fimd.c11
-rw-r--r--drivers/gpu/drm/exynos/exynos_drm_g2d.c12
-rw-r--r--drivers/gpu/drm/exynos/exynos_drm_gem.c4
-rw-r--r--drivers/gpu/drm/exynos/exynos_drm_mic.c11
-rw-r--r--drivers/gpu/drm/exynos/exynos_drm_rotator.c12
-rw-r--r--drivers/gpu/drm/exynos/exynos_drm_scaler.c12
-rw-r--r--drivers/gpu/drm/fsl-dcu/fsl_dcu_drm_drv.c4
-rw-r--r--drivers/gpu/drm/fsl-dcu/fsl_dcu_drm_rgb.c5
-rw-r--r--drivers/gpu/drm/gma500/Kconfig2
-rw-r--r--drivers/gpu/drm/gma500/Makefile1
-rw-r--r--drivers/gpu/drm/gma500/backlight.c2
-rw-r--r--drivers/gpu/drm/gma500/cdv_device.c1
-rw-r--r--drivers/gpu/drm/gma500/cdv_intel_crt.c2
-rw-r--r--drivers/gpu/drm/gma500/cdv_intel_display.c1
-rw-r--r--drivers/gpu/drm/gma500/cdv_intel_dp.c1
-rw-r--r--drivers/gpu/drm/gma500/cdv_intel_hdmi.c2
-rw-r--r--drivers/gpu/drm/gma500/cdv_intel_lvds.c2
-rw-r--r--drivers/gpu/drm/gma500/fbdev.c344
-rw-r--r--drivers/gpu/drm/gma500/framebuffer.c342
-rw-r--r--drivers/gpu/drm/gma500/gma_display.c2
-rw-r--r--drivers/gpu/drm/gma500/oaktrail_crtc.c1
-rw-r--r--drivers/gpu/drm/gma500/oaktrail_hdmi.c2
-rw-r--r--drivers/gpu/drm/gma500/oaktrail_lvds.c1
-rw-r--r--drivers/gpu/drm/gma500/psb_device.c1
-rw-r--r--drivers/gpu/drm/gma500/psb_drv.c5
-rw-r--r--drivers/gpu/drm/gma500/psb_drv.h18
-rw-r--r--drivers/gpu/drm/gma500/psb_intel_display.c3
-rw-r--r--drivers/gpu/drm/gma500/psb_intel_drv.h1
-rw-r--r--drivers/gpu/drm/gma500/psb_intel_lvds.c2
-rw-r--r--drivers/gpu/drm/gma500/psb_intel_sdvo.c2
-rw-r--r--drivers/gpu/drm/gma500/psb_irq.c11
-rw-r--r--drivers/gpu/drm/gud/gud_connector.c12
-rw-r--r--drivers/gpu/drm/gud/gud_drv.c20
-rw-r--r--drivers/gpu/drm/gud/gud_internal.h1
-rw-r--r--drivers/gpu/drm/gud/gud_pipe.c223
-rw-r--r--drivers/gpu/drm/hisilicon/hibmc/Kconfig2
-rw-r--r--drivers/gpu/drm/hisilicon/hibmc/hibmc_drm_drv.c21
-rw-r--r--drivers/gpu/drm/hisilicon/hibmc/hibmc_drm_drv.h4
-rw-r--r--drivers/gpu/drm/hisilicon/hibmc/hibmc_drm_vdac.c2
-rw-r--r--drivers/gpu/drm/hisilicon/kirin/dw_drm_dsi.c2
-rw-r--r--drivers/gpu/drm/hisilicon/kirin/kirin_drm_drv.c2
-rw-r--r--drivers/gpu/drm/hyperv/hyperv_drm_drv.c6
-rw-r--r--drivers/gpu/drm/hyperv/hyperv_drm_modeset.c1
-rw-r--r--drivers/gpu/drm/i2c/ch7006_drv.c14
-rw-r--r--drivers/gpu/drm/i2c/ch7006_priv.h1
-rw-r--r--drivers/gpu/drm/i2c/sil164_drv.c4
-rw-r--r--drivers/gpu/drm/i2c/tda9950.c5
-rw-r--r--drivers/gpu/drm/i2c/tda998x_drv.c6
-rw-r--r--drivers/gpu/drm/i810/Makefile8
-rw-r--r--drivers/gpu/drm/i810/i810_dma.c1266
-rw-r--r--drivers/gpu/drm/i810/i810_drv.c101
-rw-r--r--drivers/gpu/drm/i810/i810_drv.h246
-rw-r--r--drivers/gpu/drm/i915/Kconfig40
-rw-r--r--drivers/gpu/drm/i915/Kconfig.profile26
-rw-r--r--drivers/gpu/drm/i915/Kconfig.unstable21
-rw-r--r--drivers/gpu/drm/i915/Makefile58
-rw-r--r--drivers/gpu/drm/i915/display/dvo_ch7xxx.c22
-rw-r--r--drivers/gpu/drm/i915/display/dvo_sil164.c13
-rw-r--r--drivers/gpu/drm/i915/display/g4x_dp.c60
-rw-r--r--drivers/gpu/drm/i915/display/g4x_dp.h2
-rw-r--r--drivers/gpu/drm/i915/display/g4x_hdmi.c67
-rw-r--r--drivers/gpu/drm/i915/display/hsw_ips.c102
-rw-r--r--drivers/gpu/drm/i915/display/hsw_ips.h1
-rw-r--r--drivers/gpu/drm/i915/display/i9xx_plane.c4
-rw-r--r--drivers/gpu/drm/i915/display/i9xx_wm.c (renamed from drivers/gpu/drm/i915/intel_pm.c)1773
-rw-r--r--drivers/gpu/drm/i915/display/i9xx_wm.h21
-rw-r--r--drivers/gpu/drm/i915/display/icl_dsi.c347
-rw-r--r--drivers/gpu/drm/i915/display/icl_dsi_regs.h2
-rw-r--r--drivers/gpu/drm/i915/display/intel_atomic.c93
-rw-r--r--drivers/gpu/drm/i915/display/intel_atomic_plane.c185
-rw-r--r--drivers/gpu/drm/i915/display/intel_atomic_plane.h1
-rw-r--r--drivers/gpu/drm/i915/display/intel_audio.c868
-rw-r--r--drivers/gpu/drm/i915/display/intel_audio.h9
-rw-r--r--drivers/gpu/drm/i915/display/intel_audio_regs.h89
-rw-r--r--drivers/gpu/drm/i915/display/intel_backlight.c665
-rw-r--r--drivers/gpu/drm/i915/display/intel_backlight_regs.h29
-rw-r--r--drivers/gpu/drm/i915/display/intel_bios.c393
-rw-r--r--drivers/gpu/drm/i915/display/intel_bios.h40
-rw-r--r--drivers/gpu/drm/i915/display/intel_bw.c52
-rw-r--r--drivers/gpu/drm/i915/display/intel_bw.h2
-rw-r--r--drivers/gpu/drm/i915/display/intel_cdclk.c343
-rw-r--r--drivers/gpu/drm/i915/display/intel_cdclk.h2
-rw-r--r--drivers/gpu/drm/i915/display/intel_color.c2164
-rw-r--r--drivers/gpu/drm/i915/display/intel_color.h17
-rw-r--r--drivers/gpu/drm/i915/display/intel_combo_phy.c67
-rw-r--r--drivers/gpu/drm/i915/display/intel_combo_phy_regs.h4
-rw-r--r--drivers/gpu/drm/i915/display/intel_connector.c25
-rw-r--r--drivers/gpu/drm/i915/display/intel_connector.h3
-rw-r--r--drivers/gpu/drm/i915/display/intel_crt.c83
-rw-r--r--drivers/gpu/drm/i915/display/intel_crtc.c22
-rw-r--r--drivers/gpu/drm/i915/display/intel_crtc_state_dump.c49
-rw-r--r--drivers/gpu/drm/i915/display/intel_crtc_state_dump.h2
-rw-r--r--drivers/gpu/drm/i915/display/intel_cursor.c15
-rw-r--r--drivers/gpu/drm/i915/display/intel_ddi.c465
-rw-r--r--drivers/gpu/drm/i915/display/intel_ddi.h12
-rw-r--r--drivers/gpu/drm/i915/display/intel_de.h46
-rw-r--r--drivers/gpu/drm/i915/display/intel_display.c1269
-rw-r--r--drivers/gpu/drm/i915/display/intel_display.h183
-rw-r--r--drivers/gpu/drm/i915/display/intel_display_core.h96
-rw-r--r--drivers/gpu/drm/i915/display/intel_display_debugfs.c974
-rw-r--r--drivers/gpu/drm/i915/display/intel_display_debugfs.h6
-rw-r--r--drivers/gpu/drm/i915/display/intel_display_limits.h124
-rw-r--r--drivers/gpu/drm/i915/display/intel_display_power.c143
-rw-r--r--drivers/gpu/drm/i915/display/intel_display_power.h19
-rw-r--r--drivers/gpu/drm/i915/display/intel_display_power_map.c70
-rw-r--r--drivers/gpu/drm/i915/display/intel_display_power_well.c144
-rw-r--r--drivers/gpu/drm/i915/display/intel_display_power_well.h2
-rw-r--r--drivers/gpu/drm/i915/display/intel_display_reg_defs.h49
-rw-r--r--drivers/gpu/drm/i915/display/intel_display_rps.c81
-rw-r--r--drivers/gpu/drm/i915/display/intel_display_rps.h22
-rw-r--r--drivers/gpu/drm/i915/display/intel_display_trace.h207
-rw-r--r--drivers/gpu/drm/i915/display/intel_display_types.h167
-rw-r--r--drivers/gpu/drm/i915/display/intel_dkl_phy.c33
-rw-r--r--drivers/gpu/drm/i915/display/intel_dkl_phy.h10
-rw-r--r--drivers/gpu/drm/i915/display/intel_dkl_phy_regs.h204
-rw-r--r--drivers/gpu/drm/i915/display/intel_dmc.c552
-rw-r--r--drivers/gpu/drm/i915/display/intel_dmc.h47
-rw-r--r--drivers/gpu/drm/i915/display/intel_dmc_regs.h10
-rw-r--r--drivers/gpu/drm/i915/display/intel_dp.c631
-rw-r--r--drivers/gpu/drm/i915/display/intel_dp.h19
-rw-r--r--drivers/gpu/drm/i915/display/intel_dp_aux.c125
-rw-r--r--drivers/gpu/drm/i915/display/intel_dp_aux.h4
-rw-r--r--drivers/gpu/drm/i915/display/intel_dp_aux_backlight.c84
-rw-r--r--drivers/gpu/drm/i915/display/intel_dp_aux_regs.h84
-rw-r--r--drivers/gpu/drm/i915/display/intel_dp_hdcp.c21
-rw-r--r--drivers/gpu/drm/i915/display/intel_dp_link_training.c48
-rw-r--r--drivers/gpu/drm/i915/display/intel_dp_link_training.h2
-rw-r--r--drivers/gpu/drm/i915/display/intel_dp_mst.c431
-rw-r--r--drivers/gpu/drm/i915/display/intel_dp_mst.h4
-rw-r--r--drivers/gpu/drm/i915/display/intel_dpio_phy.c103
-rw-r--r--drivers/gpu/drm/i915/display/intel_dpio_phy.h19
-rw-r--r--drivers/gpu/drm/i915/display/intel_dpll.c4
-rw-r--r--drivers/gpu/drm/i915/display/intel_dpll_mgr.c295
-rw-r--r--drivers/gpu/drm/i915/display/intel_dpll_mgr.h3
-rw-r--r--drivers/gpu/drm/i915/display/intel_dpt.c28
-rw-r--r--drivers/gpu/drm/i915/display/intel_dpt.h2
-rw-r--r--drivers/gpu/drm/i915/display/intel_drrs.c129
-rw-r--r--drivers/gpu/drm/i915/display/intel_drrs.h4
-rw-r--r--drivers/gpu/drm/i915/display/intel_dsb.c349
-rw-r--r--drivers/gpu/drm/i915/display/intel_dsb.h17
-rw-r--r--drivers/gpu/drm/i915/display/intel_dsb_regs.h67
-rw-r--r--drivers/gpu/drm/i915/display/intel_dsi_dcs_backlight.c5
-rw-r--r--drivers/gpu/drm/i915/display/intel_dsi_vbt.c110
-rw-r--r--drivers/gpu/drm/i915/display/intel_dsi_vbt.h1
-rw-r--r--drivers/gpu/drm/i915/display/intel_dvo.c410
-rw-r--r--drivers/gpu/drm/i915/display/intel_dvo_dev.h13
-rw-r--r--drivers/gpu/drm/i915/display/intel_dvo_regs.h54
-rw-r--r--drivers/gpu/drm/i915/display/intel_fb.c33
-rw-r--r--drivers/gpu/drm/i915/display/intel_fb.h2
-rw-r--r--drivers/gpu/drm/i915/display/intel_fb_pin.c3
-rw-r--r--drivers/gpu/drm/i915/display/intel_fbc.c67
-rw-r--r--drivers/gpu/drm/i915/display/intel_fbdev.c87
-rw-r--r--drivers/gpu/drm/i915/display/intel_fbdev.h8
-rw-r--r--drivers/gpu/drm/i915/display/intel_fdi.c159
-rw-r--r--drivers/gpu/drm/i915/display/intel_fdi_regs.h151
-rw-r--r--drivers/gpu/drm/i915/display/intel_fifo_underrun.c20
-rw-r--r--drivers/gpu/drm/i915/display/intel_fifo_underrun.h6
-rw-r--r--drivers/gpu/drm/i915/display/intel_frontbuffer.c4
-rw-r--r--drivers/gpu/drm/i915/display/intel_global_state.c4
-rw-r--r--drivers/gpu/drm/i915/display/intel_global_state.h2
-rw-r--r--drivers/gpu/drm/i915/display/intel_gmbus.c98
-rw-r--r--drivers/gpu/drm/i915/display/intel_hdcp.c173
-rw-r--r--drivers/gpu/drm/i915/display/intel_hdcp_gsc.c831
-rw-r--r--drivers/gpu/drm/i915/display/intel_hdcp_gsc.h26
-rw-r--r--drivers/gpu/drm/i915/display/intel_hdcp_regs.h2
-rw-r--r--drivers/gpu/drm/i915/display/intel_hdmi.c192
-rw-r--r--drivers/gpu/drm/i915/display/intel_hdmi.h8
-rw-r--r--drivers/gpu/drm/i915/display/intel_hotplug.c225
-rw-r--r--drivers/gpu/drm/i915/display/intel_hotplug.h3
-rw-r--r--drivers/gpu/drm/i915/display/intel_hti.c41
-rw-r--r--drivers/gpu/drm/i915/display/intel_hti.h18
-rw-r--r--drivers/gpu/drm/i915/display/intel_hti_regs.h16
-rw-r--r--drivers/gpu/drm/i915/display/intel_lpe_audio.c17
-rw-r--r--drivers/gpu/drm/i915/display/intel_lpe_audio.h4
-rw-r--r--drivers/gpu/drm/i915/display/intel_lspcon.c3
-rw-r--r--drivers/gpu/drm/i915/display/intel_lvds.c402
-rw-r--r--drivers/gpu/drm/i915/display/intel_lvds_regs.h65
-rw-r--r--drivers/gpu/drm/i915/display/intel_mg_phy_regs.h (renamed from drivers/gpu/drm/i915/display/intel_tc_phy_regs.h)12
-rw-r--r--drivers/gpu/drm/i915/display/intel_modeset_setup.c87
-rw-r--r--drivers/gpu/drm/i915/display/intel_modeset_verify.c3
-rw-r--r--drivers/gpu/drm/i915/display/intel_opregion.c76
-rw-r--r--drivers/gpu/drm/i915/display/intel_opregion.h9
-rw-r--r--drivers/gpu/drm/i915/display/intel_panel.c51
-rw-r--r--drivers/gpu/drm/i915/display/intel_panel.h5
-rw-r--r--drivers/gpu/drm/i915/display/intel_pch_display.c74
-rw-r--r--drivers/gpu/drm/i915/display/intel_pch_refclk.c21
-rw-r--r--drivers/gpu/drm/i915/display/intel_pipe_crc.c35
-rw-r--r--drivers/gpu/drm/i915/display/intel_plane_initial.c2
-rw-r--r--drivers/gpu/drm/i915/display/intel_pps.c386
-rw-r--r--drivers/gpu/drm/i915/display/intel_pps.h2
-rw-r--r--drivers/gpu/drm/i915/display/intel_pps_regs.h78
-rw-r--r--drivers/gpu/drm/i915/display/intel_psr.c704
-rw-r--r--drivers/gpu/drm/i915/display/intel_psr.h19
-rw-r--r--drivers/gpu/drm/i915/display/intel_psr_regs.h260
-rw-r--r--drivers/gpu/drm/i915/display/intel_qp_tables.c187
-rw-r--r--drivers/gpu/drm/i915/display/intel_qp_tables.h4
-rw-r--r--drivers/gpu/drm/i915/display/intel_quirks.c2
-rw-r--r--drivers/gpu/drm/i915/display/intel_sdvo.c218
-rw-r--r--drivers/gpu/drm/i915/display/intel_snps_phy.c80
-rw-r--r--drivers/gpu/drm/i915/display/intel_snps_phy_regs.h2
-rw-r--r--drivers/gpu/drm/i915/display/intel_sprite.c187
-rw-r--r--drivers/gpu/drm/i915/display/intel_sprite.h9
-rw-r--r--drivers/gpu/drm/i915/display/intel_sprite_uapi.c127
-rw-r--r--drivers/gpu/drm/i915/display/intel_sprite_uapi.h15
-rw-r--r--drivers/gpu/drm/i915/display/intel_tc.c1458
-rw-r--r--drivers/gpu/drm/i915/display/intel_tc.h10
-rw-r--r--drivers/gpu/drm/i915/display/intel_tv.c96
-rw-r--r--drivers/gpu/drm/i915/display/intel_tv_regs.h490
-rw-r--r--drivers/gpu/drm/i915/display/intel_vblank.c533
-rw-r--r--drivers/gpu/drm/i915/display/intel_vblank.h25
-rw-r--r--drivers/gpu/drm/i915/display/intel_vdsc.c145
-rw-r--r--drivers/gpu/drm/i915/display/intel_vdsc_regs.h489
-rw-r--r--drivers/gpu/drm/i915/display/intel_vga.c33
-rw-r--r--drivers/gpu/drm/i915/display/intel_vrr.c62
-rw-r--r--drivers/gpu/drm/i915/display/intel_wm.c408
-rw-r--r--drivers/gpu/drm/i915/display/intel_wm.h37
-rw-r--r--drivers/gpu/drm/i915/display/intel_wm_types.h (renamed from drivers/gpu/drm/i915/intel_pm_types.h)8
-rw-r--r--drivers/gpu/drm/i915/display/skl_scaler.c68
-rw-r--r--drivers/gpu/drm/i915/display/skl_universal_plane.c26
-rw-r--r--drivers/gpu/drm/i915/display/skl_universal_plane.h1
-rw-r--r--drivers/gpu/drm/i915/display/skl_watermark.c379
-rw-r--r--drivers/gpu/drm/i915/display/skl_watermark.h9
-rw-r--r--drivers/gpu/drm/i915/display/skl_watermark_regs.h160
-rw-r--r--drivers/gpu/drm/i915/display/vlv_dsi.c209
-rw-r--r--drivers/gpu/drm/i915/display/vlv_dsi_pll.c18
-rw-r--r--drivers/gpu/drm/i915/display/vlv_dsi_regs.h2
-rw-r--r--drivers/gpu/drm/i915/gem/i915_gem_clflush.c3
-rw-r--r--drivers/gpu/drm/i915/gem/i915_gem_context.c80
-rw-r--r--drivers/gpu/drm/i915/gem/i915_gem_create.c10
-rw-r--r--drivers/gpu/drm/i915/gem/i915_gem_dmabuf.c55
-rw-r--r--drivers/gpu/drm/i915/gem/i915_gem_domain.c30
-rw-r--r--drivers/gpu/drm/i915/gem/i915_gem_execbuffer.c167
-rw-r--r--drivers/gpu/drm/i915/gem/i915_gem_internal.c12
-rw-r--r--drivers/gpu/drm/i915/gem/i915_gem_lmem.c3
-rw-r--r--drivers/gpu/drm/i915/gem/i915_gem_mman.c33
-rw-r--r--drivers/gpu/drm/i915/gem/i915_gem_object.c38
-rw-r--r--drivers/gpu/drm/i915/gem/i915_gem_object.h312
-rw-r--r--drivers/gpu/drm/i915/gem/i915_gem_object_types.h15
-rw-r--r--drivers/gpu/drm/i915/gem/i915_gem_pages.c46
-rw-r--r--drivers/gpu/drm/i915/gem/i915_gem_phys.c13
-rw-r--r--drivers/gpu/drm/i915/gem/i915_gem_pm.c35
-rw-r--r--drivers/gpu/drm/i915/gem/i915_gem_shmem.c29
-rw-r--r--drivers/gpu/drm/i915/gem/i915_gem_shrinker.c2
-rw-r--r--drivers/gpu/drm/i915/gem/i915_gem_stolen.c288
-rw-r--r--drivers/gpu/drm/i915/gem/i915_gem_tiling.c13
-rw-r--r--drivers/gpu/drm/i915/gem/i915_gem_ttm.c194
-rw-r--r--drivers/gpu/drm/i915/gem/i915_gem_ttm.h20
-rw-r--r--drivers/gpu/drm/i915/gem/i915_gem_ttm_move.c67
-rw-r--r--drivers/gpu/drm/i915/gem/i915_gem_ttm_pm.c30
-rw-r--r--drivers/gpu/drm/i915/gem/i915_gem_userptr.c13
-rw-r--r--drivers/gpu/drm/i915/gem/i915_gem_wait.c2
-rw-r--r--drivers/gpu/drm/i915/gem/selftests/huge_gem_object.c8
-rw-r--r--drivers/gpu/drm/i915/gem/selftests/huge_pages.c187
-rw-r--r--drivers/gpu/drm/i915/gem/selftests/i915_gem_client_blt.c64
-rw-r--r--drivers/gpu/drm/i915/gem/selftests/i915_gem_coherency.c6
-rw-r--r--drivers/gpu/drm/i915/gem/selftests/i915_gem_context.c165
-rw-r--r--drivers/gpu/drm/i915/gem/selftests/i915_gem_dmabuf.c95
-rw-r--r--drivers/gpu/drm/i915/gem/selftests/i915_gem_mman.c22
-rw-r--r--drivers/gpu/drm/i915/gem/selftests/i915_gem_object.c8
-rw-r--r--drivers/gpu/drm/i915/gem/selftests/igt_gem_utils.c19
-rw-r--r--drivers/gpu/drm/i915/gem/selftests/igt_gem_utils.h14
-rw-r--r--drivers/gpu/drm/i915/gt/gen7_renderclear.c2
-rw-r--r--drivers/gpu/drm/i915/gt/gen8_engine_cs.c55
-rw-r--r--drivers/gpu/drm/i915/gt/gen8_engine_cs.h12
-rw-r--r--drivers/gpu/drm/i915/gt/gen8_ppgtt.c92
-rw-r--r--drivers/gpu/drm/i915/gt/intel_context.c4
-rw-r--r--drivers/gpu/drm/i915/gt/intel_context.h26
-rw-r--r--drivers/gpu/drm/i915/gt/intel_context_types.h9
-rw-r--r--drivers/gpu/drm/i915/gt/intel_engine.h12
-rw-r--r--drivers/gpu/drm/i915/gt/intel_engine_cs.c368
-rw-r--r--drivers/gpu/drm/i915/gt/intel_engine_heartbeat.c39
-rw-r--r--drivers/gpu/drm/i915/gt/intel_engine_pm.c27
-rw-r--r--drivers/gpu/drm/i915/gt/intel_engine_regs.h2
-rw-r--r--drivers/gpu/drm/i915/gt/intel_engine_types.h25
-rw-r--r--drivers/gpu/drm/i915/gt/intel_engine_user.c28
-rw-r--r--drivers/gpu/drm/i915/gt/intel_execlists_submission.c52
-rw-r--r--drivers/gpu/drm/i915/gt/intel_execlists_submission.h4
-rw-r--r--drivers/gpu/drm/i915/gt/intel_ggtt.c250
-rw-r--r--drivers/gpu/drm/i915/gt/intel_ggtt_fencing.c8
-rw-r--r--drivers/gpu/drm/i915/gt/intel_ggtt_gmch.c7
-rw-r--r--drivers/gpu/drm/i915/gt/intel_gpu_commands.h14
-rw-r--r--drivers/gpu/drm/i915/gt/intel_gsc.c31
-rw-r--r--drivers/gpu/drm/i915/gt/intel_gsc.h2
-rw-r--r--drivers/gpu/drm/i915/gt/intel_gt.c330
-rw-r--r--drivers/gpu/drm/i915/gt/intel_gt.h6
-rw-r--r--drivers/gpu/drm/i915/gt/intel_gt_clock_utils.c46
-rw-r--r--drivers/gpu/drm/i915/gt/intel_gt_debugfs.c6
-rw-r--r--drivers/gpu/drm/i915/gt/intel_gt_irq.c105
-rw-r--r--drivers/gpu/drm/i915/gt/intel_gt_mcr.c451
-rw-r--r--drivers/gpu/drm/i915/gt/intel_gt_mcr.h26
-rw-r--r--drivers/gpu/drm/i915/gt/intel_gt_pm.c19
-rw-r--r--drivers/gpu/drm/i915/gt/intel_gt_pm_debugfs.c284
-rw-r--r--drivers/gpu/drm/i915/gt/intel_gt_print.h54
-rw-r--r--drivers/gpu/drm/i915/gt/intel_gt_regs.h272
-rw-r--r--drivers/gpu/drm/i915/gt/intel_gt_requests.c2
-rw-r--r--drivers/gpu/drm/i915/gt/intel_gt_sysfs.c21
-rw-r--r--drivers/gpu/drm/i915/gt/intel_gt_sysfs.h7
-rw-r--r--drivers/gpu/drm/i915/gt/intel_gt_sysfs_pm.c519
-rw-r--r--drivers/gpu/drm/i915/gt/intel_gt_types.h45
-rw-r--r--drivers/gpu/drm/i915/gt/intel_gtt.c62
-rw-r--r--drivers/gpu/drm/i915/gt/intel_gtt.h35
-rw-r--r--drivers/gpu/drm/i915/gt/intel_lrc.c112
-rw-r--r--drivers/gpu/drm/i915/gt/intel_lrc.h2
-rw-r--r--drivers/gpu/drm/i915/gt/intel_migrate.c60
-rw-r--r--drivers/gpu/drm/i915/gt/intel_mocs.c15
-rw-r--r--drivers/gpu/drm/i915/gt/intel_rc6.c111
-rw-r--r--drivers/gpu/drm/i915/gt/intel_rc6.h13
-rw-r--r--drivers/gpu/drm/i915/gt/intel_rc6_types.h17
-rw-r--r--drivers/gpu/drm/i915/gt/intel_region_lmem.c27
-rw-r--r--drivers/gpu/drm/i915/gt/intel_renderstate.c6
-rw-r--r--drivers/gpu/drm/i915/gt/intel_reset.c163
-rw-r--r--drivers/gpu/drm/i915/gt/intel_reset.h1
-rw-r--r--drivers/gpu/drm/i915/gt/intel_reset_types.h2
-rw-r--r--drivers/gpu/drm/i915/gt/intel_ring.c6
-rw-r--r--drivers/gpu/drm/i915/gt/intel_ring_submission.c8
-rw-r--r--drivers/gpu/drm/i915/gt/intel_rps.c364
-rw-r--r--drivers/gpu/drm/i915/gt/intel_rps.h10
-rw-r--r--drivers/gpu/drm/i915/gt/intel_rps_types.h2
-rw-r--r--drivers/gpu/drm/i915/gt/intel_sseu.c5
-rw-r--r--drivers/gpu/drm/i915/gt/intel_sseu.h2
-rw-r--r--drivers/gpu/drm/i915/gt/intel_wopcm.c (renamed from drivers/gpu/drm/i915/intel_wopcm.c)43
-rw-r--r--drivers/gpu/drm/i915/gt/intel_wopcm.h (renamed from drivers/gpu/drm/i915/intel_wopcm.h)0
-rw-r--r--drivers/gpu/drm/i915/gt/intel_workarounds.c1195
-rw-r--r--drivers/gpu/drm/i915/gt/intel_workarounds_types.h12
-rw-r--r--drivers/gpu/drm/i915/gt/selftest_engine_cs.c30
-rw-r--r--drivers/gpu/drm/i915/gt/selftest_engine_pm.c2
-rw-r--r--drivers/gpu/drm/i915/gt/selftest_execlists.c88
-rw-r--r--drivers/gpu/drm/i915/gt/selftest_gt_pm.c36
-rw-r--r--drivers/gpu/drm/i915/gt/selftest_hangcheck.c101
-rw-r--r--drivers/gpu/drm/i915/gt/selftest_llc.c1
-rw-r--r--drivers/gpu/drm/i915/gt/selftest_lrc.c51
-rw-r--r--drivers/gpu/drm/i915/gt/selftest_migrate.c174
-rw-r--r--drivers/gpu/drm/i915/gt/selftest_mocs.c7
-rw-r--r--drivers/gpu/drm/i915/gt/selftest_rc6.c6
-rw-r--r--drivers/gpu/drm/i915/gt/selftest_reset.c2
-rw-r--r--drivers/gpu/drm/i915/gt/selftest_ring_submission.c2
-rw-r--r--drivers/gpu/drm/i915/gt/selftest_rps.c42
-rw-r--r--drivers/gpu/drm/i915/gt/selftest_slpc.c260
-rw-r--r--drivers/gpu/drm/i915/gt/selftest_timeline.c14
-rw-r--r--drivers/gpu/drm/i915/gt/selftest_tlb.c388
-rw-r--r--drivers/gpu/drm/i915/gt/selftest_workarounds.c42
-rw-r--r--drivers/gpu/drm/i915/gt/shmem_utils.c7
-rw-r--r--drivers/gpu/drm/i915/gt/sysfs_engines.c97
-rw-r--r--drivers/gpu/drm/i915/gt/uc/abi/guc_actions_abi.h1
-rw-r--r--drivers/gpu/drm/i915/gt/uc/abi/guc_actions_slpc_abi.h9
-rw-r--r--drivers/gpu/drm/i915/gt/uc/abi/guc_errors_abi.h17
-rw-r--r--drivers/gpu/drm/i915/gt/uc/abi/guc_klvs_abi.h9
-rw-r--r--drivers/gpu/drm/i915/gt/uc/guc_capture_fwif.h6
-rw-r--r--drivers/gpu/drm/i915/gt/uc/intel_gsc_fw.c209
-rw-r--r--drivers/gpu/drm/i915/gt/uc/intel_gsc_fw.h17
-rw-r--r--drivers/gpu/drm/i915/gt/uc/intel_gsc_uc.c155
-rw-r--r--drivers/gpu/drm/i915/gt/uc/intel_gsc_uc.h49
-rw-r--r--drivers/gpu/drm/i915/gt/uc/intel_gsc_uc_heci_cmd_submit.c109
-rw-r--r--drivers/gpu/drm/i915/gt/uc/intel_gsc_uc_heci_cmd_submit.h61
-rw-r--r--drivers/gpu/drm/i915/gt/uc/intel_guc.c95
-rw-r--r--drivers/gpu/drm/i915/gt/uc/intel_guc.h34
-rw-r--r--drivers/gpu/drm/i915/gt/uc/intel_guc_ads.c90
-rw-r--r--drivers/gpu/drm/i915/gt/uc/intel_guc_capture.c213
-rw-r--r--drivers/gpu/drm/i915/gt/uc/intel_guc_ct.c23
-rw-r--r--drivers/gpu/drm/i915/gt/uc/intel_guc_debugfs.c61
-rw-r--r--drivers/gpu/drm/i915/gt/uc/intel_guc_fw.c165
-rw-r--r--drivers/gpu/drm/i915/gt/uc/intel_guc_fwif.h50
-rw-r--r--drivers/gpu/drm/i915/gt/uc/intel_guc_hwconfig.c6
-rw-r--r--drivers/gpu/drm/i915/gt/uc/intel_guc_log.c68
-rw-r--r--drivers/gpu/drm/i915/gt/uc/intel_guc_print.h51
-rw-r--r--drivers/gpu/drm/i915/gt/uc/intel_guc_rc.c8
-rw-r--r--drivers/gpu/drm/i915/gt/uc/intel_guc_reg.h6
-rw-r--r--drivers/gpu/drm/i915/gt/uc/intel_guc_slpc.c144
-rw-r--r--drivers/gpu/drm/i915/gt/uc/intel_guc_slpc.h4
-rw-r--r--drivers/gpu/drm/i915/gt/uc/intel_guc_slpc_types.h3
-rw-r--r--drivers/gpu/drm/i915/gt/uc/intel_guc_submission.c576
-rw-r--r--drivers/gpu/drm/i915/gt/uc/intel_guc_submission.h2
-rw-r--r--drivers/gpu/drm/i915/gt/uc/intel_huc.c347
-rw-r--r--drivers/gpu/drm/i915/gt/uc/intel_huc.h36
-rw-r--r--drivers/gpu/drm/i915/gt/uc/intel_huc_fw.c34
-rw-r--r--drivers/gpu/drm/i915/gt/uc/intel_huc_fw.h1
-rw-r--r--drivers/gpu/drm/i915/gt/uc/intel_uc.c154
-rw-r--r--drivers/gpu/drm/i915/gt/uc/intel_uc.h3
-rw-r--r--drivers/gpu/drm/i915/gt/uc/intel_uc_debugfs.c2
-rw-r--r--drivers/gpu/drm/i915/gt/uc/intel_uc_fw.c470
-rw-r--r--drivers/gpu/drm/i915/gt/uc/intel_uc_fw.h35
-rw-r--r--drivers/gpu/drm/i915/gt/uc/intel_uc_fw_abi.h3
-rw-r--r--drivers/gpu/drm/i915/gt/uc/selftest_guc.c42
-rw-r--r--drivers/gpu/drm/i915/gt/uc/selftest_guc_hangcheck.c31
-rw-r--r--drivers/gpu/drm/i915/gt/uc/selftest_guc_multi_lrc.c11
-rw-r--r--drivers/gpu/drm/i915/gvt/cfg_space.c6
-rw-r--r--drivers/gpu/drm/i915/gvt/cmd_parser.c2
-rw-r--r--drivers/gpu/drm/i915/gvt/debugfs.c46
-rw-r--r--drivers/gpu/drm/i915/gvt/display.c19
-rw-r--r--drivers/gpu/drm/i915/gvt/dmabuf.c15
-rw-r--r--drivers/gpu/drm/i915/gvt/dmabuf.h2
-rw-r--r--drivers/gpu/drm/i915/gvt/edid.c1
-rw-r--r--drivers/gpu/drm/i915/gvt/fb_decoder.h2
-rw-r--r--drivers/gpu/drm/i915/gvt/firmware.c8
-rw-r--r--drivers/gpu/drm/i915/gvt/gtt.c28
-rw-r--r--drivers/gpu/drm/i915/gvt/gvt.h17
-rw-r--r--drivers/gpu/drm/i915/gvt/handlers.c28
-rw-r--r--drivers/gpu/drm/i915/gvt/interrupt.c2
-rw-r--r--drivers/gpu/drm/i915/gvt/kvmgt.c69
-rw-r--r--drivers/gpu/drm/i915/gvt/mmio.c1
-rw-r--r--drivers/gpu/drm/i915/gvt/mmio_context.c15
-rw-r--r--drivers/gpu/drm/i915/gvt/page_track.c2
-rw-r--r--drivers/gpu/drm/i915/gvt/scheduler.c9
-rw-r--r--drivers/gpu/drm/i915/gvt/vgpu.c20
-rw-r--r--drivers/gpu/drm/i915/i915_active.c28
-rw-r--r--drivers/gpu/drm/i915/i915_cmd_parser.c4
-rw-r--r--drivers/gpu/drm/i915/i915_config.c5
-rw-r--r--drivers/gpu/drm/i915/i915_config.h23
-rw-r--r--drivers/gpu/drm/i915/i915_debugfs.c49
-rw-r--r--drivers/gpu/drm/i915/i915_debugfs_params.c33
-rw-r--r--drivers/gpu/drm/i915/i915_deps.c2
-rw-r--r--drivers/gpu/drm/i915/i915_driver.c293
-rw-r--r--drivers/gpu/drm/i915/i915_drm_client.c2
-rw-r--r--drivers/gpu/drm/i915/i915_drv.h221
-rw-r--r--drivers/gpu/drm/i915/i915_file_private.h2
-rw-r--r--drivers/gpu/drm/i915/i915_gem.c97
-rw-r--r--drivers/gpu/drm/i915/i915_gem.h7
-rw-r--r--drivers/gpu/drm/i915/i915_gem_evict.c88
-rw-r--r--drivers/gpu/drm/i915/i915_gem_evict.h4
-rw-r--r--drivers/gpu/drm/i915/i915_gem_gtt.h5
-rw-r--r--drivers/gpu/drm/i915/i915_getparam.c7
-rw-r--r--drivers/gpu/drm/i915/i915_gpu_error.c108
-rw-r--r--drivers/gpu/drm/i915/i915_gpu_error.h3
-rw-r--r--drivers/gpu/drm/i915/i915_hwmon.c790
-rw-r--r--drivers/gpu/drm/i915/i915_hwmon.h20
-rw-r--r--drivers/gpu/drm/i915/i915_irq.c858
-rw-r--r--drivers/gpu/drm/i915/i915_irq.h15
-rw-r--r--drivers/gpu/drm/i915/i915_params.c97
-rw-r--r--drivers/gpu/drm/i915/i915_params.h3
-rw-r--r--drivers/gpu/drm/i915/i915_pci.c82
-rw-r--r--drivers/gpu/drm/i915/i915_perf.c1196
-rw-r--r--drivers/gpu/drm/i915/i915_perf.h6
-rw-r--r--drivers/gpu/drm/i915/i915_perf_oa_regs.h84
-rw-r--r--drivers/gpu/drm/i915/i915_perf_types.h110
-rw-r--r--drivers/gpu/drm/i915/i915_pmu.c18
-rw-r--r--drivers/gpu/drm/i915/i915_query.c12
-rw-r--r--drivers/gpu/drm/i915/i915_reg.h2595
-rw-r--r--drivers/gpu/drm/i915/i915_reg_defs.h86
-rw-r--r--drivers/gpu/drm/i915/i915_request.c26
-rw-r--r--drivers/gpu/drm/i915/i915_request.h5
-rw-r--r--drivers/gpu/drm/i915/i915_scatterlist.c19
-rw-r--r--drivers/gpu/drm/i915/i915_selftest.h2
-rw-r--r--drivers/gpu/drm/i915/i915_sw_fence.c3
-rw-r--r--drivers/gpu/drm/i915/i915_sw_fence.h1
-rw-r--r--drivers/gpu/drm/i915/i915_switcheroo.c6
-rw-r--r--drivers/gpu/drm/i915/i915_sysfs.c4
-rw-r--r--drivers/gpu/drm/i915/i915_trace.h16
-rw-r--r--drivers/gpu/drm/i915/i915_ttm_buddy_manager.c21
-rw-r--r--drivers/gpu/drm/i915/i915_user_extensions.c2
-rw-r--r--drivers/gpu/drm/i915/i915_utils.h8
-rw-r--r--drivers/gpu/drm/i915/i915_vma.c117
-rw-r--r--drivers/gpu/drm/i915/i915_vma.h53
-rw-r--r--drivers/gpu/drm/i915/i915_vma_resource.c4
-rw-r--r--drivers/gpu/drm/i915/i915_vma_resource.h17
-rw-r--r--drivers/gpu/drm/i915/i915_vma_types.h3
-rw-r--r--drivers/gpu/drm/i915/intel_clock_gating.c888
-rw-r--r--drivers/gpu/drm/i915/intel_clock_gating.h14
-rw-r--r--drivers/gpu/drm/i915/intel_device_info.c120
-rw-r--r--drivers/gpu/drm/i915/intel_device_info.h25
-rw-r--r--drivers/gpu/drm/i915/intel_gvt_mmio_table.c85
-rw-r--r--drivers/gpu/drm/i915/intel_mchbar_regs.h23
-rw-r--r--drivers/gpu/drm/i915/intel_memory_region.c2
-rw-r--r--drivers/gpu/drm/i915/intel_pci_config.h28
-rw-r--r--drivers/gpu/drm/i915/intel_pcode.c35
-rw-r--r--drivers/gpu/drm/i915/intel_pm.h34
-rw-r--r--drivers/gpu/drm/i915/intel_region_ttm.c20
-rw-r--r--drivers/gpu/drm/i915/intel_runtime_pm.c7
-rw-r--r--drivers/gpu/drm/i915/intel_runtime_pm.h24
-rw-r--r--drivers/gpu/drm/i915/intel_step.c32
-rw-r--r--drivers/gpu/drm/i915/intel_step.h28
-rw-r--r--drivers/gpu/drm/i915/intel_uncore.c429
-rw-r--r--drivers/gpu/drm/i915/intel_uncore.h67
-rw-r--r--drivers/gpu/drm/i915/intel_wakeref.h23
-rw-r--r--drivers/gpu/drm/i915/pxp/intel_pxp.c201
-rw-r--r--drivers/gpu/drm/i915/pxp/intel_pxp.h43
-rw-r--r--drivers/gpu/drm/i915/pxp/intel_pxp_cmd.c8
-rw-r--r--drivers/gpu/drm/i915/pxp/intel_pxp_cmd_interface_42.h43
-rw-r--r--drivers/gpu/drm/i915/pxp/intel_pxp_cmd_interface_43.h26
-rw-r--r--drivers/gpu/drm/i915/pxp/intel_pxp_cmd_interface_cmn.h42
-rw-r--r--drivers/gpu/drm/i915/pxp/intel_pxp_debugfs.c36
-rw-r--r--drivers/gpu/drm/i915/pxp/intel_pxp_debugfs.h4
-rw-r--r--drivers/gpu/drm/i915/pxp/intel_pxp_huc.c71
-rw-r--r--drivers/gpu/drm/i915/pxp/intel_pxp_huc.h13
-rw-r--r--drivers/gpu/drm/i915/pxp/intel_pxp_irq.c18
-rw-r--r--drivers/gpu/drm/i915/pxp/intel_pxp_irq.h8
-rw-r--r--drivers/gpu/drm/i915/pxp/intel_pxp_pm.c10
-rw-r--r--drivers/gpu/drm/i915/pxp/intel_pxp_pm.h6
-rw-r--r--drivers/gpu/drm/i915/pxp/intel_pxp_session.c29
-rw-r--r--drivers/gpu/drm/i915/pxp/intel_pxp_session.h14
-rw-r--r--drivers/gpu/drm/i915/pxp/intel_pxp_tee.c270
-rw-r--r--drivers/gpu/drm/i915/pxp/intel_pxp_tee.h5
-rw-r--r--drivers/gpu/drm/i915/pxp/intel_pxp_tee_interface.h36
-rw-r--r--drivers/gpu/drm/i915/pxp/intel_pxp_types.h17
-rw-r--r--drivers/gpu/drm/i915/selftests/i915_gem.c6
-rw-r--r--drivers/gpu/drm/i915/selftests/i915_gem_evict.c4
-rw-r--r--drivers/gpu/drm/i915/selftests/i915_gem_gtt.c377
-rw-r--r--drivers/gpu/drm/i915/selftests/i915_live_selftests.h1
-rw-r--r--drivers/gpu/drm/i915/selftests/i915_perf.c16
-rw-r--r--drivers/gpu/drm/i915/selftests/i915_request.c408
-rw-r--r--drivers/gpu/drm/i915/selftests/igt_flush_test.c28
-rw-r--r--drivers/gpu/drm/i915/selftests/igt_spinner.c28
-rw-r--r--drivers/gpu/drm/i915/selftests/intel_scheduler_helpers.c3
-rw-r--r--drivers/gpu/drm/i915/selftests/intel_uncore.c4
-rw-r--r--drivers/gpu/drm/i915/selftests/mock_gem_device.c1
-rw-r--r--drivers/gpu/drm/i915/selftests/mock_gtt.c2
-rw-r--r--drivers/gpu/drm/i915/selftests/mock_region.c2
-rw-r--r--drivers/gpu/drm/i915/selftests/scatterlist.c4
-rw-r--r--drivers/gpu/drm/i915/soc/intel_dram.c (renamed from drivers/gpu/drm/i915/intel_dram.c)155
-rw-r--r--drivers/gpu/drm/i915/soc/intel_dram.h (renamed from drivers/gpu/drm/i915/intel_dram.h)0
-rw-r--r--drivers/gpu/drm/i915/soc/intel_gmch.c171
-rw-r--r--drivers/gpu/drm/i915/soc/intel_gmch.h18
-rw-r--r--drivers/gpu/drm/i915/soc/intel_pch.c (renamed from drivers/gpu/drm/i915/intel_pch.c)0
-rw-r--r--drivers/gpu/drm/i915/soc/intel_pch.h (renamed from drivers/gpu/drm/i915/intel_pch.h)0
-rw-r--r--drivers/gpu/drm/i915/vlv_sideband.c3
-rw-r--r--drivers/gpu/drm/i915/vlv_suspend.c32
-rw-r--r--drivers/gpu/drm/imx/Kconfig42
-rw-r--r--drivers/gpu/drm/imx/Makefile11
-rw-r--r--drivers/gpu/drm/imx/dcss/dcss-dev.c23
-rw-r--r--drivers/gpu/drm/imx/dcss/dcss-dev.h7
-rw-r--r--drivers/gpu/drm/imx/dcss/dcss-drv.c15
-rw-r--r--drivers/gpu/drm/imx/dcss/dcss-kms.c7
-rw-r--r--drivers/gpu/drm/imx/ipuv3/Kconfig41
-rw-r--r--drivers/gpu/drm/imx/ipuv3/Makefile11
-rw-r--r--drivers/gpu/drm/imx/ipuv3/dw_hdmi-imx.c (renamed from drivers/gpu/drm/imx/dw_hdmi-imx.c)0
-rw-r--r--drivers/gpu/drm/imx/ipuv3/imx-drm-core.c (renamed from drivers/gpu/drm/imx/imx-drm-core.c)4
-rw-r--r--drivers/gpu/drm/imx/ipuv3/imx-drm.h (renamed from drivers/gpu/drm/imx/imx-drm.h)0
-rw-r--r--drivers/gpu/drm/imx/ipuv3/imx-ldb.c (renamed from drivers/gpu/drm/imx/imx-ldb.c)2
-rw-r--r--drivers/gpu/drm/imx/ipuv3/imx-tve.c (renamed from drivers/gpu/drm/imx/imx-tve.c)1
-rw-r--r--drivers/gpu/drm/imx/ipuv3/ipuv3-crtc.c (renamed from drivers/gpu/drm/imx/ipuv3-crtc.c)0
-rw-r--r--drivers/gpu/drm/imx/ipuv3/ipuv3-plane.c (renamed from drivers/gpu/drm/imx/ipuv3-plane.c)14
-rw-r--r--drivers/gpu/drm/imx/ipuv3/ipuv3-plane.h (renamed from drivers/gpu/drm/imx/ipuv3-plane.h)0
-rw-r--r--drivers/gpu/drm/imx/ipuv3/parallel-display.c (renamed from drivers/gpu/drm/imx/parallel-display.c)2
-rw-r--r--drivers/gpu/drm/imx/lcdc/Kconfig7
-rw-r--r--drivers/gpu/drm/imx/lcdc/Makefile1
-rw-r--r--drivers/gpu/drm/imx/lcdc/imx-lcdc.c546
-rw-r--r--drivers/gpu/drm/ingenic/ingenic-drm-drv.c10
-rw-r--r--drivers/gpu/drm/kmb/kmb_crtc.c1
-rw-r--r--drivers/gpu/drm/kmb/kmb_drv.c4
-rw-r--r--drivers/gpu/drm/kmb/kmb_plane.c2
-rw-r--r--drivers/gpu/drm/lima/lima_devfreq.c15
-rw-r--r--drivers/gpu/drm/lima/lima_drv.c6
-rw-r--r--drivers/gpu/drm/lima/lima_gem.c12
-rw-r--r--drivers/gpu/drm/lima/lima_sched.c4
-rw-r--r--drivers/gpu/drm/logicvc/logicvc_drm.c15
-rw-r--r--drivers/gpu/drm/logicvc/logicvc_interface.c1
-rw-r--r--drivers/gpu/drm/logicvc/logicvc_mode.c3
-rw-r--r--drivers/gpu/drm/mcde/mcde_drv.c7
-rw-r--r--drivers/gpu/drm/mediatek/Kconfig1
-rw-r--r--drivers/gpu/drm/mediatek/Makefile2
-rw-r--r--drivers/gpu/drm/mediatek/mtk_cec.c2
-rw-r--r--drivers/gpu/drm/mediatek/mtk_disp_aal.c1
-rw-r--r--drivers/gpu/drm/mediatek/mtk_disp_ccorr.c1
-rw-r--r--drivers/gpu/drm/mediatek/mtk_disp_color.c1
-rw-r--r--drivers/gpu/drm/mediatek/mtk_disp_drv.h35
-rw-r--r--drivers/gpu/drm/mediatek/mtk_disp_gamma.c1
-rw-r--r--drivers/gpu/drm/mediatek/mtk_disp_ovl.c152
-rw-r--r--drivers/gpu/drm/mediatek/mtk_disp_ovl_adaptor.c547
-rw-r--r--drivers/gpu/drm/mediatek/mtk_disp_rdma.c39
-rw-r--r--drivers/gpu/drm/mediatek/mtk_dp.c21
-rw-r--r--drivers/gpu/drm/mediatek/mtk_dpi.c61
-rw-r--r--drivers/gpu/drm/mediatek/mtk_drm_crtc.c91
-rw-r--r--drivers/gpu/drm/mediatek/mtk_drm_crtc.h6
-rw-r--r--drivers/gpu/drm/mediatek/mtk_drm_ddp_comp.c135
-rw-r--r--drivers/gpu/drm/mediatek/mtk_drm_ddp_comp.h78
-rw-r--r--drivers/gpu/drm/mediatek/mtk_drm_drv.c488
-rw-r--r--drivers/gpu/drm/mediatek/mtk_drm_drv.h30
-rw-r--r--drivers/gpu/drm/mediatek/mtk_drm_gem.c13
-rw-r--r--drivers/gpu/drm/mediatek/mtk_drm_plane.c92
-rw-r--r--drivers/gpu/drm/mediatek/mtk_drm_plane.h11
-rw-r--r--drivers/gpu/drm/mediatek/mtk_dsi.c3
-rw-r--r--drivers/gpu/drm/mediatek/mtk_ethdr.c370
-rw-r--r--drivers/gpu/drm/mediatek/mtk_ethdr.h25
-rw-r--r--drivers/gpu/drm/mediatek/mtk_hdmi.c9
-rw-r--r--drivers/gpu/drm/mediatek/mtk_hdmi_ddc.c3
-rw-r--r--drivers/gpu/drm/mediatek/mtk_mdp_rdma.c24
-rw-r--r--drivers/gpu/drm/meson/meson_drv.c17
-rw-r--r--drivers/gpu/drm/meson/meson_dw_hdmi.c23
-rw-r--r--drivers/gpu/drm/meson/meson_encoder_cvbs.c7
-rw-r--r--drivers/gpu/drm/meson/meson_venc.c4
-rw-r--r--drivers/gpu/drm/meson/meson_viu.c5
-rw-r--r--drivers/gpu/drm/meson/meson_vpp.c2
-rw-r--r--drivers/gpu/drm/mga/Makefile11
-rw-r--r--drivers/gpu/drm/mga/mga_dma.c1168
-rw-r--r--drivers/gpu/drm/mga/mga_drv.c104
-rw-r--r--drivers/gpu/drm/mga/mga_drv.h685
-rw-r--r--drivers/gpu/drm/mga/mga_ioc32.c197
-rw-r--r--drivers/gpu/drm/mga/mga_irq.c169
-rw-r--r--drivers/gpu/drm/mga/mga_state.c1099
-rw-r--r--drivers/gpu/drm/mga/mga_warp.c167
-rw-r--r--drivers/gpu/drm/mgag200/Kconfig2
-rw-r--r--drivers/gpu/drm/mgag200/mgag200_drv.c1
-rw-r--r--drivers/gpu/drm/mgag200/mgag200_drv.h4
-rw-r--r--drivers/gpu/drm/mgag200/mgag200_g200se.c3
-rw-r--r--drivers/gpu/drm/mgag200/mgag200_mode.c33
-rw-r--r--drivers/gpu/drm/msm/Kconfig8
-rw-r--r--drivers/gpu/drm/msm/adreno/a2xx.xml.h54
-rw-r--r--drivers/gpu/drm/msm/adreno/a2xx_gpu.c27
-rw-r--r--drivers/gpu/drm/msm/adreno/a2xx_gpu.h1
-rw-r--r--drivers/gpu/drm/msm/adreno/a3xx.xml.h30
-rw-r--r--drivers/gpu/drm/msm/adreno/a3xx_gpu.c13
-rw-r--r--drivers/gpu/drm/msm/adreno/a4xx.xml.h38
-rw-r--r--drivers/gpu/drm/msm/adreno/a4xx_gpu.c16
-rw-r--r--drivers/gpu/drm/msm/adreno/a5xx.xml.h44
-rw-r--r--drivers/gpu/drm/msm/adreno/a5xx_gpu.c102
-rw-r--r--drivers/gpu/drm/msm/adreno/a5xx_preempt.c8
-rw-r--r--drivers/gpu/drm/msm/adreno/a6xx.xml.h809
-rw-r--r--drivers/gpu/drm/msm/adreno/a6xx_gmu.c93
-rw-r--r--drivers/gpu/drm/msm/adreno/a6xx_gmu.h7
-rw-r--r--drivers/gpu/drm/msm/adreno/a6xx_gmu.xml.h30
-rw-r--r--drivers/gpu/drm/msm/adreno/a6xx_gpu.c295
-rw-r--r--drivers/gpu/drm/msm/adreno/a6xx_gpu.h1
-rw-r--r--drivers/gpu/drm/msm/adreno/a6xx_gpu_state.c64
-rw-r--r--drivers/gpu/drm/msm/adreno/a6xx_gpu_state.h66
-rw-r--r--drivers/gpu/drm/msm/adreno/adreno_common.xml.h52
-rw-r--r--drivers/gpu/drm/msm/adreno/adreno_device.c39
-rw-r--r--drivers/gpu/drm/msm/adreno/adreno_gpu.c211
-rw-r--r--drivers/gpu/drm/msm/adreno/adreno_gpu.h21
-rw-r--r--drivers/gpu/drm/msm/adreno/adreno_pm4.xml.h115
-rw-r--r--drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_3_0_msm8998.h210
-rw-r--r--drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_4_0_sdm845.h210
-rw-r--r--drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_5_0_sm8150.h237
-rw-r--r--drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_5_1_sc8180x.h217
-rw-r--r--drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_6_0_sm8250.h244
-rw-r--r--drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_6_2_sc7180.h156
-rw-r--r--drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_6_3_sm6115.h129
-rw-r--r--drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_6_5_qcm2290.h119
-rw-r--r--drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_7_0_sm8350.h226
-rw-r--r--drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_7_2_sc7280.h158
-rw-r--r--drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_8_0_sc8280xp.h222
-rw-r--r--drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_8_1_sm8450.h234
-rw-r--r--drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_9_0_sm8550.h239
-rw-r--r--drivers/gpu/drm/msm/disp/dpu1/dpu_crtc.c350
-rw-r--r--drivers/gpu/drm/msm/disp/dpu1/dpu_encoder.c111
-rw-r--r--drivers/gpu/drm/msm/disp/dpu1/dpu_encoder.h7
-rw-r--r--drivers/gpu/drm/msm/disp/dpu1/dpu_encoder_phys.h47
-rw-r--r--drivers/gpu/drm/msm/disp/dpu1/dpu_encoder_phys_cmd.c26
-rw-r--r--drivers/gpu/drm/msm/disp/dpu1/dpu_encoder_phys_vid.c41
-rw-r--r--drivers/gpu/drm/msm/disp/dpu1/dpu_encoder_phys_wb.c17
-rw-r--r--drivers/gpu/drm/msm/disp/dpu1/dpu_formats.c45
-rw-r--r--drivers/gpu/drm/msm/disp/dpu1/dpu_hw_catalog.c1363
-rw-r--r--drivers/gpu/drm/msm/disp/dpu1/dpu_hw_catalog.h118
-rw-r--r--drivers/gpu/drm/msm/disp/dpu1/dpu_hw_ctl.c198
-rw-r--r--drivers/gpu/drm/msm/disp/dpu1/dpu_hw_ctl.h5
-rw-r--r--drivers/gpu/drm/msm/disp/dpu1/dpu_hw_dsc.c42
-rw-r--r--drivers/gpu/drm/msm/disp/dpu1/dpu_hw_dsc.h4
-rw-r--r--drivers/gpu/drm/msm/disp/dpu1/dpu_hw_interrupts.c30
-rw-r--r--drivers/gpu/drm/msm/disp/dpu1/dpu_hw_interrupts.h3
-rw-r--r--drivers/gpu/drm/msm/disp/dpu1/dpu_hw_intf.c8
-rw-r--r--drivers/gpu/drm/msm/disp/dpu1/dpu_hw_mdss.h7
-rw-r--r--drivers/gpu/drm/msm/disp/dpu1/dpu_hw_sspp.c189
-rw-r--r--drivers/gpu/drm/msm/disp/dpu1/dpu_hw_sspp.h115
-rw-r--r--drivers/gpu/drm/msm/disp/dpu1/dpu_hw_top.c25
-rw-r--r--drivers/gpu/drm/msm/disp/dpu1/dpu_hwio.h21
-rw-r--r--drivers/gpu/drm/msm/disp/dpu1/dpu_kms.c127
-rw-r--r--drivers/gpu/drm/msm/disp/dpu1/dpu_kms.h1
-rw-r--r--drivers/gpu/drm/msm/disp/dpu1/dpu_plane.c870
-rw-r--r--drivers/gpu/drm/msm/disp/dpu1/dpu_plane.h40
-rw-r--r--drivers/gpu/drm/msm/disp/dpu1/dpu_rm.c38
-rw-r--r--drivers/gpu/drm/msm/disp/dpu1/dpu_rm.h12
-rw-r--r--drivers/gpu/drm/msm/disp/dpu1/dpu_trace.h19
-rw-r--r--drivers/gpu/drm/msm/disp/dpu1/dpu_writeback.c2
-rw-r--r--drivers/gpu/drm/msm/disp/mdp4/mdp4.xml.h40
-rw-r--r--drivers/gpu/drm/msm/disp/mdp4/mdp4_irq.c9
-rw-r--r--drivers/gpu/drm/msm/disp/mdp4/mdp4_kms.c24
-rw-r--r--drivers/gpu/drm/msm/disp/mdp5/mdp5.xml.h40
-rw-r--r--drivers/gpu/drm/msm/disp/mdp5/mdp5_cfg.c2
-rw-r--r--drivers/gpu/drm/msm/disp/mdp5/mdp5_crtc.c5
-rw-r--r--drivers/gpu/drm/msm/disp/mdp5/mdp5_irq.c9
-rw-r--r--drivers/gpu/drm/msm/disp/mdp5/mdp5_kms.c27
-rw-r--r--drivers/gpu/drm/msm/disp/mdp_common.xml.h40
-rw-r--r--drivers/gpu/drm/msm/dp/dp_aux.c92
-rw-r--r--drivers/gpu/drm/msm/dp/dp_aux.h2
-rw-r--r--drivers/gpu/drm/msm/dp/dp_catalog.c82
-rw-r--r--drivers/gpu/drm/msm/dp/dp_catalog.h6
-rw-r--r--drivers/gpu/drm/msm/dp/dp_ctrl.c90
-rw-r--r--drivers/gpu/drm/msm/dp/dp_ctrl.h5
-rw-r--r--drivers/gpu/drm/msm/dp/dp_display.c215
-rw-r--r--drivers/gpu/drm/msm/dp/dp_display.h3
-rw-r--r--drivers/gpu/drm/msm/dp/dp_drm.c176
-rw-r--r--drivers/gpu/drm/msm/dp/dp_drm.h13
-rw-r--r--drivers/gpu/drm/msm/dp/dp_link.c57
-rw-r--r--drivers/gpu/drm/msm/dp/dp_panel.c29
-rw-r--r--drivers/gpu/drm/msm/dp/dp_panel.h7
-rw-r--r--drivers/gpu/drm/msm/dp/dp_parser.c50
-rw-r--r--drivers/gpu/drm/msm/dp/dp_parser.h2
-rw-r--r--drivers/gpu/drm/msm/dp/dp_reg.h27
-rw-r--r--drivers/gpu/drm/msm/dsi/dsi.c14
-rw-r--r--drivers/gpu/drm/msm/dsi/dsi.h3
-rw-r--r--drivers/gpu/drm/msm/dsi/dsi.xml.h41
-rw-r--r--drivers/gpu/drm/msm/dsi/dsi_cfg.c161
-rw-r--r--drivers/gpu/drm/msm/dsi/dsi_cfg.h11
-rw-r--r--drivers/gpu/drm/msm/dsi/dsi_host.c204
-rw-r--r--drivers/gpu/drm/msm/dsi/dsi_manager.c20
-rw-r--r--drivers/gpu/drm/msm/dsi/dsi_phy_10nm.xml.h40
-rw-r--r--drivers/gpu/drm/msm/dsi/dsi_phy_14nm.xml.h40
-rw-r--r--drivers/gpu/drm/msm/dsi/dsi_phy_20nm.xml.h40
-rw-r--r--drivers/gpu/drm/msm/dsi/dsi_phy_28nm.xml.h40
-rw-r--r--drivers/gpu/drm/msm/dsi/dsi_phy_28nm_8960.xml.h40
-rw-r--r--drivers/gpu/drm/msm/dsi/dsi_phy_7nm.xml.h36
-rw-r--r--drivers/gpu/drm/msm/dsi/mmss_cc.xml.h40
-rw-r--r--drivers/gpu/drm/msm/dsi/phy/dsi_phy.c14
-rw-r--r--drivers/gpu/drm/msm/dsi/phy/dsi_phy.h5
-rw-r--r--drivers/gpu/drm/msm/dsi/phy/dsi_phy_14nm.c17
-rw-r--r--drivers/gpu/drm/msm/dsi/phy/dsi_phy_7nm.c243
-rw-r--r--drivers/gpu/drm/msm/dsi/sfpb.xml.h38
-rw-r--r--drivers/gpu/drm/msm/hdmi/hdmi.c364
-rw-r--r--drivers/gpu/drm/msm/hdmi/hdmi.h3
-rw-r--r--drivers/gpu/drm/msm/hdmi/hdmi.xml.h62
-rw-r--r--drivers/gpu/drm/msm/hdmi/hdmi_hdcp.c2
-rw-r--r--drivers/gpu/drm/msm/hdmi/hdmi_pll_8960.c21
-rw-r--r--drivers/gpu/drm/msm/hdmi/qfprom.xml.h40
-rw-r--r--drivers/gpu/drm/msm/msm_atomic.c29
-rw-r--r--drivers/gpu/drm/msm/msm_debugfs.c18
-rw-r--r--drivers/gpu/drm/msm/msm_drv.c138
-rw-r--r--drivers/gpu/drm/msm/msm_drv.h35
-rw-r--r--drivers/gpu/drm/msm/msm_fbdev.c175
-rw-r--r--drivers/gpu/drm/msm/msm_fence.c88
-rw-r--r--drivers/gpu/drm/msm/msm_fence.h23
-rw-r--r--drivers/gpu/drm/msm/msm_gem.c152
-rw-r--r--drivers/gpu/drm/msm/msm_gem.h29
-rw-r--r--drivers/gpu/drm/msm/msm_gem_shrinker.c13
-rw-r--r--drivers/gpu/drm/msm/msm_gem_submit.c60
-rw-r--r--drivers/gpu/drm/msm/msm_gem_vma.c91
-rw-r--r--drivers/gpu/drm/msm/msm_gpu.c41
-rw-r--r--drivers/gpu/drm/msm/msm_gpu.h61
-rw-r--r--drivers/gpu/drm/msm/msm_gpu_devfreq.c150
-rw-r--r--drivers/gpu/drm/msm/msm_io_utils.c1
-rw-r--r--drivers/gpu/drm/msm/msm_iommu.c58
-rw-r--r--drivers/gpu/drm/msm/msm_kms.h8
-rw-r--r--drivers/gpu/drm/msm/msm_mdss.c183
-rw-r--r--drivers/gpu/drm/msm/msm_mmu.h4
-rw-r--r--drivers/gpu/drm/msm/msm_ringbuffer.c8
-rw-r--r--drivers/gpu/drm/msm/msm_ringbuffer.h28
-rw-r--r--drivers/gpu/drm/msm/msm_submitqueue.c2
-rw-r--r--drivers/gpu/drm/mxsfb/Kconfig2
-rw-r--r--drivers/gpu/drm/mxsfb/lcdif_drv.c4
-rw-r--r--drivers/gpu/drm/mxsfb/lcdif_kms.c269
-rw-r--r--drivers/gpu/drm/mxsfb/lcdif_regs.h42
-rw-r--r--drivers/gpu/drm/mxsfb/mxsfb_drv.c14
-rw-r--r--drivers/gpu/drm/nouveau/Kbuild4
-rw-r--r--drivers/gpu/drm/nouveau/Kconfig14
-rw-r--r--drivers/gpu/drm/nouveau/dispnv04/crtc.c43
-rw-r--r--drivers/gpu/drm/nouveau/dispnv04/dac.c2
-rw-r--r--drivers/gpu/drm/nouveau/dispnv04/dfp.c2
-rw-r--r--drivers/gpu/drm/nouveau/dispnv04/disp.c15
-rw-r--r--drivers/gpu/drm/nouveau/dispnv04/disp.h7
-rw-r--r--drivers/gpu/drm/nouveau/dispnv04/tvmodesnv17.c1
-rw-r--r--drivers/gpu/drm/nouveau/dispnv04/tvnv04.c2
-rw-r--r--drivers/gpu/drm/nouveau/dispnv04/tvnv17.c7
-rw-r--r--drivers/gpu/drm/nouveau/dispnv50/crc.c2
-rw-r--r--drivers/gpu/drm/nouveau/dispnv50/disp.c440
-rw-r--r--drivers/gpu/drm/nouveau/dispnv50/head.c26
-rw-r--r--drivers/gpu/drm/nouveau/dispnv50/wndw.h5
-rw-r--r--drivers/gpu/drm/nouveau/include/nvfw/acr.h85
-rw-r--r--drivers/gpu/drm/nouveau/include/nvfw/hs.h28
-rw-r--r--drivers/gpu/drm/nouveau/include/nvfw/ls.h51
-rw-r--r--drivers/gpu/drm/nouveau/include/nvfw/sec2.h45
-rw-r--r--drivers/gpu/drm/nouveau/include/nvif/cl0046.h23
-rw-r--r--drivers/gpu/drm/nouveau/include/nvif/cl006b.h12
-rw-r--r--drivers/gpu/drm/nouveau/include/nvif/cl0080.h4
-rw-r--r--drivers/gpu/drm/nouveau/include/nvif/cl506e.h13
-rw-r--r--drivers/gpu/drm/nouveau/include/nvif/cl506f.h14
-rw-r--r--drivers/gpu/drm/nouveau/include/nvif/cl5070.h92
-rw-r--r--drivers/gpu/drm/nouveau/include/nvif/cl826e.h15
-rw-r--r--drivers/gpu/drm/nouveau/include/nvif/cl826f.h16
-rw-r--r--drivers/gpu/drm/nouveau/include/nvif/cl906f.h16
-rw-r--r--drivers/gpu/drm/nouveau/include/nvif/cla06f.h18
-rw-r--r--drivers/gpu/drm/nouveau/include/nvif/class.h45
-rw-r--r--drivers/gpu/drm/nouveau/include/nvif/clb069.h5
-rw-r--r--drivers/gpu/drm/nouveau/include/nvif/clc36f.h19
-rw-r--r--drivers/gpu/drm/nouveau/include/nvif/conn.h10
-rw-r--r--drivers/gpu/drm/nouveau/include/nvif/disp.h1
-rw-r--r--drivers/gpu/drm/nouveau/include/nvif/event.h91
-rw-r--r--drivers/gpu/drm/nouveau/include/nvif/head.h23
-rw-r--r--drivers/gpu/drm/nouveau/include/nvif/if0004.h5
-rw-r--r--drivers/gpu/drm/nouveau/include/nvif/if000e.h26
-rw-r--r--drivers/gpu/drm/nouveau/include/nvif/if0010.h1
-rw-r--r--drivers/gpu/drm/nouveau/include/nvif/if0011.h11
-rw-r--r--drivers/gpu/drm/nouveau/include/nvif/if0012.h100
-rw-r--r--drivers/gpu/drm/nouveau/include/nvif/if0013.h35
-rw-r--r--drivers/gpu/drm/nouveau/include/nvif/if0020.h45
-rw-r--r--drivers/gpu/drm/nouveau/include/nvif/if0021.h16
-rw-r--r--drivers/gpu/drm/nouveau/include/nvif/ioctl.h51
-rw-r--r--drivers/gpu/drm/nouveau/include/nvif/notify.h35
-rw-r--r--drivers/gpu/drm/nouveau/include/nvif/outp.h20
-rw-r--r--drivers/gpu/drm/nouveau/include/nvkm/core/client.h15
-rw-r--r--drivers/gpu/drm/nouveau/include/nvkm/core/device.h12
-rw-r--r--drivers/gpu/drm/nouveau/include/nvkm/core/engine.h8
-rw-r--r--drivers/gpu/drm/nouveau/include/nvkm/core/event.h64
-rw-r--r--drivers/gpu/drm/nouveau/include/nvkm/core/falcon.h167
-rw-r--r--drivers/gpu/drm/nouveau/include/nvkm/core/firmware.h25
-rw-r--r--drivers/gpu/drm/nouveau/include/nvkm/core/intr.h73
-rw-r--r--drivers/gpu/drm/nouveau/include/nvkm/core/layout.h5
-rw-r--r--drivers/gpu/drm/nouveau/include/nvkm/core/memory.h2
-rw-r--r--drivers/gpu/drm/nouveau/include/nvkm/core/notify.h39
-rw-r--r--drivers/gpu/drm/nouveau/include/nvkm/core/object.h2
-rw-r--r--drivers/gpu/drm/nouveau/include/nvkm/core/os.h20
-rw-r--r--drivers/gpu/drm/nouveau/include/nvkm/core/subdev.h42
-rw-r--r--drivers/gpu/drm/nouveau/include/nvkm/core/tegra.h1
-rw-r--r--drivers/gpu/drm/nouveau/include/nvkm/engine/ce.h2
-rw-r--r--drivers/gpu/drm/nouveau/include/nvkm/engine/disp.h9
-rw-r--r--drivers/gpu/drm/nouveau/include/nvkm/engine/falcon.h66
-rw-r--r--drivers/gpu/drm/nouveau/include/nvkm/engine/fifo.h86
-rw-r--r--drivers/gpu/drm/nouveau/include/nvkm/engine/gr.h1
-rw-r--r--drivers/gpu/drm/nouveau/include/nvkm/engine/nvdec.h1
-rw-r--r--drivers/gpu/drm/nouveau/include/nvkm/engine/sec2.h5
-rw-r--r--drivers/gpu/drm/nouveau/include/nvkm/subdev/acr.h29
-rw-r--r--drivers/gpu/drm/nouveau/include/nvkm/subdev/fault.h7
-rw-r--r--drivers/gpu/drm/nouveau/include/nvkm/subdev/fb.h11
-rw-r--r--drivers/gpu/drm/nouveau/include/nvkm/subdev/gpio.h6
-rw-r--r--drivers/gpu/drm/nouveau/include/nvkm/subdev/gsp.h3
-rw-r--r--drivers/gpu/drm/nouveau/include/nvkm/subdev/i2c.h19
-rw-r--r--drivers/gpu/drm/nouveau/include/nvkm/subdev/instmem.h2
-rw-r--r--drivers/gpu/drm/nouveau/include/nvkm/subdev/ltc.h16
-rw-r--r--drivers/gpu/drm/nouveau/include/nvkm/subdev/mc.h6
-rw-r--r--drivers/gpu/drm/nouveau/include/nvkm/subdev/pci.h2
-rw-r--r--drivers/gpu/drm/nouveau/include/nvkm/subdev/top.h1
-rw-r--r--drivers/gpu/drm/nouveau/include/nvkm/subdev/vfn.h23
-rw-r--r--drivers/gpu/drm/nouveau/nouveau_abi16.c27
-rw-r--r--drivers/gpu/drm/nouveau/nouveau_backlight.c13
-rw-r--r--drivers/gpu/drm/nouveau/nouveau_bo.c17
-rw-r--r--drivers/gpu/drm/nouveau/nouveau_bo.h3
-rw-r--r--drivers/gpu/drm/nouveau/nouveau_bo0039.c4
-rw-r--r--drivers/gpu/drm/nouveau/nouveau_bo5039.c2
-rw-r--r--drivers/gpu/drm/nouveau/nouveau_bo74c1.c2
-rw-r--r--drivers/gpu/drm/nouveau/nouveau_bo85b5.c4
-rw-r--r--drivers/gpu/drm/nouveau/nouveau_bo9039.c4
-rw-r--r--drivers/gpu/drm/nouveau/nouveau_bo90b5.c4
-rw-r--r--drivers/gpu/drm/nouveau/nouveau_boa0b5.c2
-rw-r--r--drivers/gpu/drm/nouveau/nouveau_chan.c306
-rw-r--r--drivers/gpu/drm/nouveau/nouveau_chan.h14
-rw-r--r--drivers/gpu/drm/nouveau/nouveau_connector.c81
-rw-r--r--drivers/gpu/drm/nouveau/nouveau_connector.h9
-rw-r--r--drivers/gpu/drm/nouveau/nouveau_crtc.h7
-rw-r--r--drivers/gpu/drm/nouveau/nouveau_display.c86
-rw-r--r--drivers/gpu/drm/nouveau/nouveau_dma.c8
-rw-r--r--drivers/gpu/drm/nouveau/nouveau_dmem.c1
-rw-r--r--drivers/gpu/drm/nouveau/nouveau_dp.c48
-rw-r--r--drivers/gpu/drm/nouveau/nouveau_drm.c67
-rw-r--r--drivers/gpu/drm/nouveau/nouveau_drv.h21
-rw-r--r--drivers/gpu/drm/nouveau/nouveau_encoder.h5
-rw-r--r--drivers/gpu/drm/nouveau/nouveau_fbcon.c614
-rw-r--r--drivers/gpu/drm/nouveau/nouveau_fbcon.h82
-rw-r--r--drivers/gpu/drm/nouveau/nouveau_fence.c53
-rw-r--r--drivers/gpu/drm/nouveau/nouveau_fence.h4
-rw-r--r--drivers/gpu/drm/nouveau/nouveau_gem.c20
-rw-r--r--drivers/gpu/drm/nouveau/nouveau_hwmon.c10
-rw-r--r--drivers/gpu/drm/nouveau/nouveau_led.h2
-rw-r--r--drivers/gpu/drm/nouveau/nouveau_mem.c7
-rw-r--r--drivers/gpu/drm/nouveau/nouveau_mem.h2
-rw-r--r--drivers/gpu/drm/nouveau/nouveau_nvif.c17
-rw-r--r--drivers/gpu/drm/nouveau/nouveau_prime.c1
-rw-r--r--drivers/gpu/drm/nouveau/nouveau_sgdma.c1
-rw-r--r--drivers/gpu/drm/nouveau/nouveau_svm.c50
-rw-r--r--drivers/gpu/drm/nouveau/nouveau_ttm.c2
-rw-r--r--drivers/gpu/drm/nouveau/nouveau_usif.c6
-rw-r--r--drivers/gpu/drm/nouveau/nouveau_vga.c2
-rw-r--r--drivers/gpu/drm/nouveau/nv04_fbcon.c257
-rw-r--r--drivers/gpu/drm/nouveau/nv50_fbcon.c299
-rw-r--r--drivers/gpu/drm/nouveau/nv84_fence.c24
-rw-r--r--drivers/gpu/drm/nouveau/nvc0_fbcon.c297
-rw-r--r--drivers/gpu/drm/nouveau/nvif/Kbuild3
-rw-r--r--drivers/gpu/drm/nouveau/nvif/conn.c19
-rw-r--r--drivers/gpu/drm/nouveau/nvif/disp.c5
-rw-r--r--drivers/gpu/drm/nouveau/nvif/event.c81
-rw-r--r--drivers/gpu/drm/nouveau/nvif/head.c58
-rw-r--r--drivers/gpu/drm/nouveau/nvif/notify.c210
-rw-r--r--drivers/gpu/drm/nouveau/nvif/outp.c178
-rw-r--r--drivers/gpu/drm/nouveau/nvif/user.c4
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/core/Kbuild3
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/core/client.c130
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/core/engine.c85
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/core/event.c158
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/core/firmware.c130
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/core/intr.c442
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/core/ioctl.c115
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/core/notify.c163
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/core/oproxy.c20
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/core/subdev.c117
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/core/uevent.c157
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/ce/Kbuild2
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/ce/ga100.c82
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/ce/ga102.c (renamed from drivers/gpu/drm/nouveau/nvkm/engine/fifo/usertu102.c)35
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/ce/gt215.c6
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/ce/priv.h4
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/cipher/g84.c11
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/device/base.c114
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/device/pci.c7
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/device/priv.h1
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/device/tegra.c40
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/device/user.c2
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/disp/Kbuild4
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/disp/base.c93
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/disp/conn.c39
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/disp/conn.h3
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/disp/dp.c283
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/disp/dp.h1
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/disp/g84.c91
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/disp/ga102.c5
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/disp/gf119.c93
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/disp/gk104.c85
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/disp/gm107.c4
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/disp/gm200.c13
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/disp/gp100.c5
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/disp/gt215.c89
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/disp/gv100.c97
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/disp/head.c38
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/disp/head.h5
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/disp/ior.h23
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/disp/mcp77.c4
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/disp/mcp89.c4
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/disp/nv50.c12
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/disp/outp.h19
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/disp/priv.h5
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/disp/rootnv50.c250
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/disp/tu102.c5
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/disp/uconn.c75
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/disp/udisp.c25
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/disp/uhead.c127
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/disp/uoutp.c250
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/falcon.c6
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/Kbuild30
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/base.c448
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/cgrp.c252
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/cgrp.h76
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/chan.c633
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/chan.h99
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/chang84.c263
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/changf100.h29
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/changk104.h52
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/channv04.h29
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/channv50.c276
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/channv50.h53
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/chid.c111
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/chid.h25
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/dmanv04.c226
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/dmanv10.c97
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/dmanv17.c98
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/dmanv40.c254
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/g84.c253
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/g98.c70
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/ga100.c550
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/ga102.c292
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/gf100.c942
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/gf100.h38
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/gk104.c1506
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/gk104.h168
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/gk110.c105
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/gk208.c59
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/gk20a.c33
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/gm107.c109
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/gm200.c49
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/gm20b.c45
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/gp100.c99
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/gp10b.c46
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/gpfifog84.c95
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/gpfifogf100.c308
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/gpfifogk104.c361
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/gpfifogv100.c241
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/gpfifonv50.c93
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/gpfifotu102.c81
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/gv100.c252
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/nv04.c344
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/nv04.h23
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/nv10.c94
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/nv17.c103
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/nv40.c198
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/nv50.c381
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/nv50.h20
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/priv.h223
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/runl.c430
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/runl.h125
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/runq.c45
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/runq.h31
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/tu102.c471
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/ucgrp.c125
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/uchan.c409
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/fifo/user.h8
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/Kbuild2
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/base.c12
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxga102.c77
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgf100.c224
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgf100.h77
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgf104.c2
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgf108.c21
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgf110.c2
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgf117.c24
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgf119.c2
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgk104.c40
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgk110.c2
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgk110b.c2
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgk208.c2
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgk20a.c12
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgm107.c71
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgm200.c4
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgm20b.c12
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgp100.c80
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgp102.c60
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgp104.c2
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgp107.c2
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgv100.c62
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxtu102.c35
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/ga102.c347
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/gf100.c488
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/gf100.h80
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/gf104.c3
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/gf108.c3
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/gf110.c3
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/gf117.c7
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/gf119.c3
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/gk104.c5
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/gk110.c3
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/gk110b.c3
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/gk208.c3
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/gk20a.c119
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/gm107.c3
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/gm200.c7
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/gm20b.c1
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/gp100.c5
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/gp102.c9
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/gp104.c3
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/gp107.c3
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/gp108.c4
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/gp10b.c3
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/gv100.c203
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/nv04.c2
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/nv10.c2
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/nv20.c10
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/nv25.c2
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/nv2a.c2
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/nv30.c2
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/nv34.c2
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/nv35.c2
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/nv40.c4
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/nv50.c10
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/priv.h1
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/gr/tu102.c47
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/mpeg/nv31.c4
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/mpeg/nv44.c4
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/nvdec/Kbuild1
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/nvdec/base.c4
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/nvdec/ga102.c61
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/nvdec/gm107.c19
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/nvdec/priv.h2
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/nvenc/gm107.c11
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/sec/g98.c6
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/sec2/Kbuild1
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/sec2/base.c98
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/sec2/ga102.c197
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/sec2/gp102.c116
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/sec2/priv.h9
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/sec2/tu102.c26
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/sw/base.c2
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/sw/chan.c24
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/sw/chan.h1
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/sw/gf100.c20
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/sw/nv50.c24
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/sw/nv50.h4
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/engine/sw/nvsw.c35
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/falcon/Kbuild6
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/falcon/base.c245
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/falcon/cmdq.c2
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/falcon/fw.c354
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/falcon/ga100.c62
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/falcon/ga102.c148
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/falcon/gm200.c357
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/falcon/gp102.c82
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/falcon/msgq.c10
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/falcon/priv.h8
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/falcon/qmgr.h9
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/falcon/v1.c210
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/nvfw/acr.c41
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/nvfw/hs.c39
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/nvfw/ls.c72
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/Kbuild1
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/acr/Kbuild4
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/acr/base.c152
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/acr/ga100.c49
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/acr/ga102.c326
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/acr/gm200.c199
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/acr/gm20b.c44
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/acr/gp102.c31
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/acr/gp108.c55
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/acr/gp10b.c2
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/acr/gv100.c67
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/acr/hsfw.c177
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/acr/lsfw.c145
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/acr/priv.h104
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/acr/tu102.c38
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/devinit/base.c3
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/devinit/g84.c5
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/devinit/g98.c4
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/devinit/gf100.c4
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/devinit/gm107.c4
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/devinit/gm200.c8
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/devinit/gt215.c4
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/devinit/mcp89.c4
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/devinit/nv50.c5
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/devinit/nv50.h2
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/devinit/priv.h2
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/devinit/tu102.c23
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/fault/base.c21
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/fault/gp100.c2
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/fault/gv100.c41
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/fault/priv.h3
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/fault/tu102.c120
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/fault/user.c30
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/fb/Kbuild1
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/fb/base.c69
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/fb/ga100.c5
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/fb/ga102.c28
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/fb/gf100.c25
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/fb/gf100.h4
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/fb/gf108.c1
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/fb/gk104.c1
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/fb/gk110.c1
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/fb/gm107.c1
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/fb/gm200.c4
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/fb/gm20b.c1
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/fb/gp100.c18
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/fb/gp102.c93
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/fb/gp10b.c1
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/fb/gv100.c12
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/fb/nv50.c49
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/fb/nv50.h2
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/fb/priv.h14
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/fb/ram.c8
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/fb/tu102.c55
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/gpio/base.c27
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/gsp/Kbuild1
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/gsp/base.c4
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/gsp/ga102.c59
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/gsp/gv100.c31
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/gsp/priv.h6
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/i2c/base.c27
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/instmem/base.c12
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/instmem/gk20a.c3
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/instmem/nv50.c27
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/instmem/priv.h1
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/ltc/Kbuild1
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/ltc/base.c10
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/ltc/ga102.c57
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/ltc/gf100.c3
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/ltc/gk104.c3
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/ltc/gm107.c3
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/ltc/gm200.c3
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/ltc/gp100.c3
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/ltc/gp102.c3
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/ltc/gp10b.c3
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/ltc/priv.h3
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/mc/Kbuild1
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/mc/base.c130
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/mc/g84.c35
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/mc/g98.c35
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/mc/ga100.c50
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/mc/gf100.c82
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/mc/gk104.c38
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/mc/gk20a.c9
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/mc/gp100.c126
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/mc/gp10b.c11
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/mc/gt215.c63
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/mc/nv04.c93
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/mc/nv11.c21
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/mc/nv17.c23
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/mc/nv44.c7
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/mc/nv50.c29
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/mc/priv.h50
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/mc/tu102.c136
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/mmu/uvmm.c2
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/pci/base.c44
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/pmu/base.c50
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/pmu/gk20a.c1
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/pmu/gm200.c40
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/pmu/gm20b.c56
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/pmu/gp102.c32
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/pmu/gp10b.c15
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/pmu/gt215.c33
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/pmu/priv.h5
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/top/base.c13
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/top/ga100.c4
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/top/gk104.c4
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/top/priv.h2
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/vfn/Kbuild6
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/vfn/base.c (renamed from drivers/gpu/drm/nouveau/nvkm/engine/disp/rootnv04.c)58
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/vfn/ga100.c47
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/vfn/gv100.c (renamed from drivers/gpu/drm/nouveau/nvkm/engine/fifo/usergv100.c)27
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/vfn/priv.h25
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/vfn/tu102.c108
-rw-r--r--drivers/gpu/drm/nouveau/nvkm/subdev/vfn/uvfn.c67
-rw-r--r--drivers/gpu/drm/omapdrm/Kconfig2
-rw-r--r--drivers/gpu/drm/omapdrm/dss/dispc.c5
-rw-r--r--drivers/gpu/drm/omapdrm/dss/dsi.c26
-rw-r--r--drivers/gpu/drm/omapdrm/omap_debugfs.c6
-rw-r--r--drivers/gpu/drm/omapdrm/omap_drv.c54
-rw-r--r--drivers/gpu/drm/omapdrm/omap_drv.h3
-rw-r--r--drivers/gpu/drm/omapdrm/omap_fbdev.c167
-rw-r--r--drivers/gpu/drm/omapdrm/omap_fbdev.h9
-rw-r--r--drivers/gpu/drm/omapdrm/omap_gem.c5
-rw-r--r--drivers/gpu/drm/omapdrm/omap_gem_dmabuf.c6
-rw-r--r--drivers/gpu/drm/omapdrm/omap_irq.c4
-rw-r--r--drivers/gpu/drm/panel/Kconfig88
-rw-r--r--drivers/gpu/drm/panel/Makefile9
-rw-r--r--drivers/gpu/drm/panel/panel-asus-z00t-tm5p5-n35596.c96
-rw-r--r--drivers/gpu/drm/panel/panel-auo-a030jtn01.c308
-rw-r--r--drivers/gpu/drm/panel/panel-boe-bf060y8m-aj0.c42
-rw-r--r--drivers/gpu/drm/panel/panel-boe-tv101wum-nl6.c142
-rw-r--r--drivers/gpu/drm/panel/panel-edp.c15
-rw-r--r--drivers/gpu/drm/panel/panel-elida-kd35t133.c46
-rw-r--r--drivers/gpu/drm/panel/panel-himax-hx8394.c451
-rw-r--r--drivers/gpu/drm/panel/panel-ilitek-ili9341.c9
-rw-r--r--drivers/gpu/drm/panel/panel-ilitek-ili9881c.c1
-rw-r--r--drivers/gpu/drm/panel/panel-jadard-jd9365da-h3.c680
-rw-r--r--drivers/gpu/drm/panel/panel-jdi-fhd-r63452.c58
-rw-r--r--drivers/gpu/drm/panel/panel-leadtek-ltk050h3146w.c106
-rw-r--r--drivers/gpu/drm/panel/panel-magnachip-d53e6ea8966.c522
-rw-r--r--drivers/gpu/drm/panel/panel-mantix-mlaf057we51.c24
-rw-r--r--drivers/gpu/drm/panel/panel-newvision-nv3051d.c504
-rw-r--r--drivers/gpu/drm/panel/panel-novatek-nt35950.c24
-rw-r--r--drivers/gpu/drm/panel/panel-novatek-nt36523.c777
-rw-r--r--drivers/gpu/drm/panel/panel-olimex-lcd-olinuxino.c5
-rw-r--r--drivers/gpu/drm/panel/panel-orisetech-ota5601a.c364
-rw-r--r--drivers/gpu/drm/panel/panel-orisetech-otm8009a.c2
-rw-r--r--drivers/gpu/drm/panel/panel-raspberrypi-touchscreen.c6
-rw-r--r--drivers/gpu/drm/panel/panel-ronbo-rb070d30.c2
-rw-r--r--drivers/gpu/drm/panel/panel-samsung-atna33xc20.c10
-rw-r--r--drivers/gpu/drm/panel/panel-samsung-db7430.c7
-rw-r--r--drivers/gpu/drm/panel/panel-samsung-s6e3ha2.c5
-rw-r--r--drivers/gpu/drm/panel/panel-samsung-s6e63j0x03.c4
-rw-r--r--drivers/gpu/drm/panel/panel-samsung-s6e88a0-ams452ef01.c44
-rw-r--r--drivers/gpu/drm/panel/panel-samsung-s6e8aa0.c3
-rw-r--r--drivers/gpu/drm/panel/panel-samsung-sofef00.c33
-rw-r--r--drivers/gpu/drm/panel/panel-seiko-43wvf1g.c12
-rw-r--r--drivers/gpu/drm/panel/panel-sharp-ls060t1sx01.c19
-rw-r--r--drivers/gpu/drm/panel/panel-simple.c8
-rw-r--r--drivers/gpu/drm/panel/panel-sitronix-st7701.c214
-rw-r--r--drivers/gpu/drm/panel/panel-sitronix-st7703.c341
-rw-r--r--drivers/gpu/drm/panel/panel-sony-td4353-jdi.c329
-rw-r--r--drivers/gpu/drm/panel/panel-sony-tulip-truly-nt35521.c398
-rw-r--r--drivers/gpu/drm/panel/panel-tpo-tpg110.c7
-rw-r--r--drivers/gpu/drm/panel/panel-visionox-vtdr6130.c350
-rw-r--r--drivers/gpu/drm/panel/panel-widechips-ws2401.c7
-rw-r--r--drivers/gpu/drm/panel/panel-xinpeng-xpp055c272.c112
-rw-r--r--drivers/gpu/drm/panfrost/Kconfig3
-rw-r--r--drivers/gpu/drm/panfrost/panfrost_devfreq.c30
-rw-r--r--drivers/gpu/drm/panfrost/panfrost_device.c10
-rw-r--r--drivers/gpu/drm/panfrost/panfrost_device.h6
-rw-r--r--drivers/gpu/drm/panfrost/panfrost_drv.c82
-rw-r--r--drivers/gpu/drm/panfrost/panfrost_dump.c4
-rw-r--r--drivers/gpu/drm/panfrost/panfrost_gem.c16
-rw-r--r--drivers/gpu/drm/panfrost/panfrost_gem.h5
-rw-r--r--drivers/gpu/drm/panfrost/panfrost_gpu.c8
-rw-r--r--drivers/gpu/drm/panfrost/panfrost_mmu.c3
-rw-r--r--drivers/gpu/drm/panfrost/panfrost_perfcnt.c6
-rw-r--r--drivers/gpu/drm/pl111/pl111_drv.c4
-rw-r--r--drivers/gpu/drm/qxl/qxl_cmd.c16
-rw-r--r--drivers/gpu/drm/qxl/qxl_display.c2
-rw-r--r--drivers/gpu/drm/qxl/qxl_drv.c1
-rw-r--r--drivers/gpu/drm/qxl/qxl_drv.h4
-rw-r--r--drivers/gpu/drm/qxl/qxl_object.c17
-rw-r--r--drivers/gpu/drm/qxl/qxl_prime.c4
-rw-r--r--drivers/gpu/drm/qxl/qxl_ttm.c15
-rw-r--r--drivers/gpu/drm/r128/Makefile10
-rw-r--r--drivers/gpu/drm/r128/ati_pcigart.c228
-rw-r--r--drivers/gpu/drm/r128/ati_pcigart.h31
-rw-r--r--drivers/gpu/drm/r128/r128_cce.c944
-rw-r--r--drivers/gpu/drm/r128/r128_drv.c116
-rw-r--r--drivers/gpu/drm/r128/r128_drv.h544
-rw-r--r--drivers/gpu/drm/r128/r128_ioc32.c199
-rw-r--r--drivers/gpu/drm/r128/r128_irq.c118
-rw-r--r--drivers/gpu/drm/r128/r128_state.c1641
-rw-r--r--drivers/gpu/drm/radeon/Kconfig33
-rw-r--r--drivers/gpu/drm/radeon/Makefile3
-rw-r--r--drivers/gpu/drm/radeon/atombios.h12
-rw-r--r--drivers/gpu/drm/radeon/atombios_crtc.c3
-rw-r--r--drivers/gpu/drm/radeon/atombios_encoders.c6
-rw-r--r--drivers/gpu/drm/radeon/r300.c1
-rw-r--r--drivers/gpu/drm/radeon/radeon.h68
-rw-r--r--drivers/gpu/drm/radeon/radeon_acpi.c2
-rw-r--r--drivers/gpu/drm/radeon/radeon_asic.c1
-rw-r--r--drivers/gpu/drm/radeon/radeon_atombios.c7
-rw-r--r--drivers/gpu/drm/radeon/radeon_audio.c117
-rw-r--r--drivers/gpu/drm/radeon/radeon_bios.c19
-rw-r--r--drivers/gpu/drm/radeon/radeon_connectors.c2
-rw-r--r--drivers/gpu/drm/radeon/radeon_cs.c7
-rw-r--r--drivers/gpu/drm/radeon/radeon_device.c12
-rw-r--r--drivers/gpu/drm/radeon/radeon_display.c7
-rw-r--r--drivers/gpu/drm/radeon/radeon_dp_auxch.c5
-rw-r--r--drivers/gpu/drm/radeon/radeon_drv.c5
-rw-r--r--drivers/gpu/drm/radeon/radeon_drv.h1
-rw-r--r--drivers/gpu/drm/radeon/radeon_encoders.c1
-rw-r--r--drivers/gpu/drm/radeon/radeon_fb.c400
-rw-r--r--drivers/gpu/drm/radeon/radeon_fbdev.c422
-rw-r--r--drivers/gpu/drm/radeon/radeon_gem.c24
-rw-r--r--drivers/gpu/drm/radeon/radeon_ib.c12
-rw-r--r--drivers/gpu/drm/radeon/radeon_irq_kms.c1
-rw-r--r--drivers/gpu/drm/radeon/radeon_kms.c18
-rw-r--r--drivers/gpu/drm/radeon/radeon_legacy_crtc.c5
-rw-r--r--drivers/gpu/drm/radeon/radeon_legacy_encoders.c2
-rw-r--r--drivers/gpu/drm/radeon/radeon_legacy_tv.c1
-rw-r--r--drivers/gpu/drm/radeon/radeon_mode.h22
-rw-r--r--drivers/gpu/drm/radeon/radeon_object.c4
-rw-r--r--drivers/gpu/drm/radeon/radeon_object.h25
-rw-r--r--drivers/gpu/drm/radeon/radeon_pm.c4
-rw-r--r--drivers/gpu/drm/radeon/radeon_prime.c2
-rw-r--r--drivers/gpu/drm/radeon/radeon_sa.c316
-rw-r--r--drivers/gpu/drm/radeon/radeon_semaphore.c4
-rw-r--r--drivers/gpu/drm/radeon/radeon_trace.h2
-rw-r--r--drivers/gpu/drm/radeon/radeon_ttm.c19
-rw-r--r--drivers/gpu/drm/rcar-du/Kconfig16
-rw-r--r--drivers/gpu/drm/rcar-du/Makefile2
-rw-r--r--drivers/gpu/drm/rcar-du/rcar_du_crtc.c73
-rw-r--r--drivers/gpu/drm/rcar-du/rcar_du_drv.c84
-rw-r--r--drivers/gpu/drm/rcar-du/rcar_du_drv.h2
-rw-r--r--drivers/gpu/drm/rcar-du/rcar_du_encoder.c4
-rw-r--r--drivers/gpu/drm/rcar-du/rcar_du_group.c42
-rw-r--r--drivers/gpu/drm/rcar-du/rcar_du_kms.c30
-rw-r--r--drivers/gpu/drm/rcar-du/rcar_du_regs.h34
-rw-r--r--drivers/gpu/drm/rcar-du/rcar_du_vsp.c52
-rw-r--r--drivers/gpu/drm/rcar-du/rcar_lvds.c242
-rw-r--r--drivers/gpu/drm/rcar-du/rcar_lvds.h12
-rw-r--r--drivers/gpu/drm/rcar-du/rcar_mipi_dsi.c497
-rw-r--r--drivers/gpu/drm/rcar-du/rcar_mipi_dsi_regs.h6
-rw-r--r--drivers/gpu/drm/rcar-du/rzg2l_mipi_dsi.c816
-rw-r--r--drivers/gpu/drm/rcar-du/rzg2l_mipi_dsi_regs.h151
-rw-r--r--drivers/gpu/drm/rockchip/cdn-dp-core.c2
-rw-r--r--drivers/gpu/drm/rockchip/dw-mipi-dsi-rockchip.c13
-rw-r--r--drivers/gpu/drm/rockchip/dw_hdmi-rockchip.c42
-rw-r--r--drivers/gpu/drm/rockchip/inno_hdmi.c2
-rw-r--r--drivers/gpu/drm/rockchip/rk3066_hdmi.c2
-rw-r--r--drivers/gpu/drm/rockchip/rockchip_drm_drv.c2
-rw-r--r--drivers/gpu/drm/rockchip/rockchip_drm_drv.h2
-rw-r--r--drivers/gpu/drm/rockchip/rockchip_drm_fb.c45
-rw-r--r--drivers/gpu/drm/rockchip/rockchip_drm_fb.h6
-rw-r--r--drivers/gpu/drm/rockchip/rockchip_drm_gem.c20
-rw-r--r--drivers/gpu/drm/rockchip/rockchip_drm_vop.c23
-rw-r--r--drivers/gpu/drm/rockchip/rockchip_drm_vop.h6
-rw-r--r--drivers/gpu/drm/rockchip/rockchip_drm_vop2.c88
-rw-r--r--drivers/gpu/drm/rockchip/rockchip_drm_vop2.h5
-rw-r--r--drivers/gpu/drm/rockchip/rockchip_lvds.c10
-rw-r--r--drivers/gpu/drm/rockchip/rockchip_rgb.c19
-rw-r--r--drivers/gpu/drm/rockchip/rockchip_rgb.h6
-rw-r--r--drivers/gpu/drm/rockchip/rockchip_vop2_reg.c2
-rw-r--r--drivers/gpu/drm/rockchip/rockchip_vop_reg.c18
-rw-r--r--drivers/gpu/drm/savage/Makefile9
-rw-r--r--drivers/gpu/drm/savage/savage_bci.c1082
-rw-r--r--drivers/gpu/drm/savage/savage_drv.c91
-rw-r--r--drivers/gpu/drm/savage/savage_drv.h580
-rw-r--r--drivers/gpu/drm/savage/savage_state.c1169
-rw-r--r--drivers/gpu/drm/scheduler/sched_entity.c225
-rw-r--r--drivers/gpu/drm/scheduler/sched_fence.c46
-rw-r--r--drivers/gpu/drm/scheduler/sched_main.c278
-rw-r--r--drivers/gpu/drm/shmobile/shmob_drm_crtc.c2
-rw-r--r--drivers/gpu/drm/shmobile/shmob_drm_drv.c10
-rw-r--r--drivers/gpu/drm/shmobile/shmob_drm_plane.c1
-rw-r--r--drivers/gpu/drm/sis/Makefile10
-rw-r--r--drivers/gpu/drm/sis/sis_drv.c143
-rw-r--r--drivers/gpu/drm/sis/sis_drv.h80
-rw-r--r--drivers/gpu/drm/sis/sis_mm.c363
-rw-r--r--drivers/gpu/drm/solomon/ssd130x.c70
-rw-r--r--drivers/gpu/drm/sprd/sprd_dpu.c5
-rw-r--r--drivers/gpu/drm/sprd/sprd_drm.c1
-rw-r--r--drivers/gpu/drm/sprd/sprd_dsi.c1
-rw-r--r--drivers/gpu/drm/sti/Kconfig2
-rw-r--r--drivers/gpu/drm/sti/sti_drv.c4
-rw-r--r--drivers/gpu/drm/sti/sti_dvo.c7
-rw-r--r--drivers/gpu/drm/sti/sti_hda.c7
-rw-r--r--drivers/gpu/drm/sti/sti_hdmi.c7
-rw-r--r--drivers/gpu/drm/stm/Kconfig2
-rw-r--r--drivers/gpu/drm/stm/drv.c4
-rw-r--r--drivers/gpu/drm/sun4i/sun4i_backend.c2
-rw-r--r--drivers/gpu/drm/sun4i/sun4i_drv.c10
-rw-r--r--drivers/gpu/drm/sun4i/sun4i_tv.c141
-rw-r--r--drivers/gpu/drm/sun4i/sun6i_mipi_dsi.c61
-rw-r--r--drivers/gpu/drm/sun4i/sun6i_mipi_dsi.h7
-rw-r--r--drivers/gpu/drm/sun4i/sun8i_dw_hdmi.c2
-rw-r--r--drivers/gpu/drm/sun4i/sun8i_mixer.c2
-rw-r--r--drivers/gpu/drm/tdfx/Makefile8
-rw-r--r--drivers/gpu/drm/tdfx/tdfx_drv.c90
-rw-r--r--drivers/gpu/drm/tdfx/tdfx_drv.h47
-rw-r--r--drivers/gpu/drm/tegra/Kconfig2
-rw-r--r--drivers/gpu/drm/tegra/Makefile5
-rw-r--r--drivers/gpu/drm/tegra/dc.c26
-rw-r--r--drivers/gpu/drm/tegra/dc.h2
-rw-r--r--drivers/gpu/drm/tegra/dpaux.c12
-rw-r--r--drivers/gpu/drm/tegra/drm.c30
-rw-r--r--drivers/gpu/drm/tegra/drm.h27
-rw-r--r--drivers/gpu/drm/tegra/dsi.c51
-rw-r--r--drivers/gpu/drm/tegra/fb.c241
-rw-r--r--drivers/gpu/drm/tegra/fbdev.c241
-rw-r--r--drivers/gpu/drm/tegra/firewall.c3
-rw-r--r--drivers/gpu/drm/tegra/gem.c25
-rw-r--r--drivers/gpu/drm/tegra/gr2d.c14
-rw-r--r--drivers/gpu/drm/tegra/gr3d.c14
-rw-r--r--drivers/gpu/drm/tegra/hdmi.c23
-rw-r--r--drivers/gpu/drm/tegra/hub.c13
-rw-r--r--drivers/gpu/drm/tegra/nvdec.c201
-rw-r--r--drivers/gpu/drm/tegra/output.c13
-rw-r--r--drivers/gpu/drm/tegra/plane.c16
-rw-r--r--drivers/gpu/drm/tegra/rgb.c7
-rw-r--r--drivers/gpu/drm/tegra/riscv.c106
-rw-r--r--drivers/gpu/drm/tegra/riscv.h30
-rw-r--r--drivers/gpu/drm/tegra/sor.c59
-rw-r--r--drivers/gpu/drm/tegra/submit.c32
-rw-r--r--drivers/gpu/drm/tegra/uapi.c2
-rw-r--r--drivers/gpu/drm/tegra/vic.c53
-rw-r--r--drivers/gpu/drm/tests/Makefile23
-rw-r--r--drivers/gpu/drm/tests/drm_buddy_test.c9
-rw-r--r--drivers/gpu/drm/tests/drm_client_modeset_test.c200
-rw-r--r--drivers/gpu/drm/tests/drm_cmdline_parser_test.c68
-rw-r--r--drivers/gpu/drm/tests/drm_connector_test.c76
-rw-r--r--drivers/gpu/drm/tests/drm_dp_mst_helper_test.c445
-rw-r--r--drivers/gpu/drm/tests/drm_format_helper_test.c502
-rw-r--r--drivers/gpu/drm/tests/drm_kunit_helpers.c104
-rw-r--r--drivers/gpu/drm/tests/drm_managed_test.c71
-rw-r--r--drivers/gpu/drm/tests/drm_mm_test.c14
-rw-r--r--drivers/gpu/drm/tests/drm_modes_test.c158
-rw-r--r--drivers/gpu/drm/tests/drm_plane_helper_test.c467
-rw-r--r--drivers/gpu/drm/tests/drm_probe_helper_test.c218
-rw-r--r--drivers/gpu/drm/tidss/tidss_crtc.c1
-rw-r--r--drivers/gpu/drm/tidss/tidss_dispc.c18
-rw-r--r--drivers/gpu/drm/tidss/tidss_dispc.h8
-rw-r--r--drivers/gpu/drm/tidss/tidss_drv.c5
-rw-r--r--drivers/gpu/drm/tidss/tidss_encoder.c2
-rw-r--r--drivers/gpu/drm/tidss/tidss_kms.c2
-rw-r--r--drivers/gpu/drm/tidss/tidss_plane.c21
-rw-r--r--drivers/gpu/drm/tilcdc/tilcdc_drv.c13
-rw-r--r--drivers/gpu/drm/tiny/Kconfig13
-rw-r--r--drivers/gpu/drm/tiny/Makefile1
-rw-r--r--drivers/gpu/drm/tiny/arcpgu.c4
-rw-r--r--drivers/gpu/drm/tiny/bochs.c4
-rw-r--r--drivers/gpu/drm/tiny/cirrus.c503
-rw-r--r--drivers/gpu/drm/tiny/gm12u320.c17
-rw-r--r--drivers/gpu/drm/tiny/hx8357d.c7
-rw-r--r--drivers/gpu/drm/tiny/ili9163.c8
-rw-r--r--drivers/gpu/drm/tiny/ili9225.c38
-rw-r--r--drivers/gpu/drm/tiny/ili9341.c7
-rw-r--r--drivers/gpu/drm/tiny/ili9486.c22
-rw-r--r--drivers/gpu/drm/tiny/mi0283qt.c7
-rw-r--r--drivers/gpu/drm/tiny/ofdrm.c1399
-rw-r--r--drivers/gpu/drm/tiny/panel-mipi-dbi.c12
-rw-r--r--drivers/gpu/drm/tiny/repaper.c2
-rw-r--r--drivers/gpu/drm/tiny/simpledrm.c189
-rw-r--r--drivers/gpu/drm/tiny/st7586.c41
-rw-r--r--drivers/gpu/drm/tiny/st7735r.c7
-rw-r--r--drivers/gpu/drm/ttm/ttm_bo.c266
-rw-r--r--drivers/gpu/drm/ttm/ttm_bo_util.c156
-rw-r--r--drivers/gpu/drm/ttm/ttm_bo_vm.c41
-rw-r--r--drivers/gpu/drm/ttm/ttm_device.c29
-rw-r--r--drivers/gpu/drm/ttm/ttm_execbuf_util.c6
-rw-r--r--drivers/gpu/drm/ttm/ttm_pool.c186
-rw-r--r--drivers/gpu/drm/ttm/ttm_range_manager.c5
-rw-r--r--drivers/gpu/drm/ttm/ttm_resource.c18
-rw-r--r--drivers/gpu/drm/ttm/ttm_tt.c3
-rw-r--r--drivers/gpu/drm/tve200/tve200_drv.c5
-rw-r--r--drivers/gpu/drm/udl/Makefile2
-rw-r--r--drivers/gpu/drm/udl/udl_connector.c139
-rw-r--r--drivers/gpu/drm/udl/udl_connector.h15
-rw-r--r--drivers/gpu/drm/udl/udl_drv.c4
-rw-r--r--drivers/gpu/drm/udl/udl_drv.h42
-rw-r--r--drivers/gpu/drm/udl/udl_modeset.c567
-rw-r--r--drivers/gpu/drm/udl/udl_proto.h68
-rw-r--r--drivers/gpu/drm/udl/udl_transfer.c7
-rw-r--r--drivers/gpu/drm/v3d/v3d_debugfs.c22
-rw-r--r--drivers/gpu/drm/v3d/v3d_drv.c1
-rw-r--r--drivers/gpu/drm/v3d/v3d_gem.c105
-rw-r--r--drivers/gpu/drm/v3d/v3d_perfmon.c6
-rw-r--r--drivers/gpu/drm/vboxvideo/vbox_drv.c12
-rw-r--r--drivers/gpu/drm/vboxvideo/vbox_main.c2
-rw-r--r--drivers/gpu/drm/vc4/Kconfig16
-rw-r--r--drivers/gpu/drm/vc4/Makefile7
-rw-r--r--drivers/gpu/drm/vc4/tests/.kunitconfig13
-rw-r--r--drivers/gpu/drm/vc4/tests/vc4_mock.c200
-rw-r--r--drivers/gpu/drm/vc4/tests/vc4_mock.h63
-rw-r--r--drivers/gpu/drm/vc4/tests/vc4_mock_crtc.c41
-rw-r--r--drivers/gpu/drm/vc4/tests/vc4_mock_output.c138
-rw-r--r--drivers/gpu/drm/vc4/tests/vc4_mock_plane.c47
-rw-r--r--drivers/gpu/drm/vc4/tests/vc4_test_pv_muxing.c1039
-rw-r--r--drivers/gpu/drm/vc4/vc4_bo.c20
-rw-r--r--drivers/gpu/drm/vc4/vc4_crtc.c217
-rw-r--r--drivers/gpu/drm/vc4/vc4_debugfs.c36
-rw-r--r--drivers/gpu/drm/vc4/vc4_dpi.c34
-rw-r--r--drivers/gpu/drm/vc4/vc4_drv.c9
-rw-r--r--drivers/gpu/drm/vc4/vc4_drv.h166
-rw-r--r--drivers/gpu/drm/vc4/vc4_dsi.c189
-rw-r--r--drivers/gpu/drm/vc4/vc4_gem.c78
-rw-r--r--drivers/gpu/drm/vc4/vc4_hdmi.c159
-rw-r--r--drivers/gpu/drm/vc4/vc4_hdmi.h9
-rw-r--r--drivers/gpu/drm/vc4/vc4_hdmi_regs.h4
-rw-r--r--drivers/gpu/drm/vc4/vc4_hvs.c298
-rw-r--r--drivers/gpu/drm/vc4/vc4_irq.c2
-rw-r--r--drivers/gpu/drm/vc4/vc4_kms.c160
-rw-r--r--drivers/gpu/drm/vc4/vc4_plane.c145
-rw-r--r--drivers/gpu/drm/vc4/vc4_regs.h20
-rw-r--r--drivers/gpu/drm/vc4/vc4_txp.c62
-rw-r--r--drivers/gpu/drm/vc4/vc4_v3d.c14
-rw-r--r--drivers/gpu/drm/vc4/vc4_validate.c4
-rw-r--r--drivers/gpu/drm/vc4/vc4_vec.c369
-rw-r--r--drivers/gpu/drm/vgem/vgem_drv.h11
-rw-r--r--drivers/gpu/drm/vgem/vgem_fence.c1
-rw-r--r--drivers/gpu/drm/via/Makefile8
-rw-r--r--drivers/gpu/drm/via/via_3d_reg.h1771
-rw-r--r--drivers/gpu/drm/via/via_dri1.c3630
-rw-r--r--drivers/gpu/drm/virtio/Kconfig11
-rw-r--r--drivers/gpu/drm/virtio/virtgpu_display.c6
-rw-r--r--drivers/gpu/drm/virtio/virtgpu_drv.c5
-rw-r--r--drivers/gpu/drm/virtio/virtgpu_drv.h4
-rw-r--r--drivers/gpu/drm/virtio/virtgpu_ioctl.c24
-rw-r--r--drivers/gpu/drm/virtio/virtgpu_kms.c39
-rw-r--r--drivers/gpu/drm/virtio/virtgpu_object.c6
-rw-r--r--drivers/gpu/drm/virtio/virtgpu_plane.c4
-rw-r--r--drivers/gpu/drm/virtio/virtgpu_trace.h26
-rw-r--r--drivers/gpu/drm/virtio/virtgpu_vq.c20
-rw-r--r--drivers/gpu/drm/virtio/virtgpu_vram.c2
-rw-r--r--drivers/gpu/drm/vkms/vkms_drv.c29
-rw-r--r--drivers/gpu/drm/vkms/vkms_drv.h4
-rw-r--r--drivers/gpu/drm/vkms/vkms_output.c15
-rw-r--r--drivers/gpu/drm/vkms/vkms_plane.c46
-rw-r--r--drivers/gpu/drm/vmwgfx/Kconfig7
-rw-r--r--drivers/gpu/drm/vmwgfx/Makefile6
-rw-r--r--drivers/gpu/drm/vmwgfx/ttm_object.c156
-rw-r--r--drivers/gpu/drm/vmwgfx/ttm_object.h36
-rw-r--r--drivers/gpu/drm/vmwgfx/vmwgfx_blit.c4
-rw-r--r--drivers/gpu/drm/vmwgfx/vmwgfx_bo.c471
-rw-r--r--drivers/gpu/drm/vmwgfx/vmwgfx_bo.h203
-rw-r--r--drivers/gpu/drm/vmwgfx/vmwgfx_cmd.c14
-rw-r--r--drivers/gpu/drm/vmwgfx/vmwgfx_cmdbuf.c55
-rw-r--r--drivers/gpu/drm/vmwgfx/vmwgfx_cmdbuf_res.c62
-rw-r--r--drivers/gpu/drm/vmwgfx/vmwgfx_context.c36
-rw-r--r--drivers/gpu/drm/vmwgfx/vmwgfx_cotable.c96
-rw-r--r--drivers/gpu/drm/vmwgfx/vmwgfx_drv.c183
-rw-r--r--drivers/gpu/drm/vmwgfx/vmwgfx_drv.h320
-rw-r--r--drivers/gpu/drm/vmwgfx/vmwgfx_execbuf.c292
-rw-r--r--drivers/gpu/drm/vmwgfx/vmwgfx_fb.c831
-rw-r--r--drivers/gpu/drm/vmwgfx/vmwgfx_fence.c2
-rw-r--r--drivers/gpu/drm/vmwgfx/vmwgfx_gem.c97
-rw-r--r--drivers/gpu/drm/vmwgfx/vmwgfx_gmr.c1
-rw-r--r--drivers/gpu/drm/vmwgfx/vmwgfx_gmrid_manager.c7
-rw-r--r--drivers/gpu/drm/vmwgfx/vmwgfx_hashtab.c199
-rw-r--r--drivers/gpu/drm/vmwgfx/vmwgfx_hashtab.h83
-rw-r--r--drivers/gpu/drm/vmwgfx/vmwgfx_kms.c844
-rw-r--r--drivers/gpu/drm/vmwgfx/vmwgfx_kms.h71
-rw-r--r--drivers/gpu/drm/vmwgfx/vmwgfx_ldu.c110
-rw-r--r--drivers/gpu/drm/vmwgfx/vmwgfx_mksstat.h2
-rw-r--r--drivers/gpu/drm/vmwgfx/vmwgfx_mob.c45
-rw-r--r--drivers/gpu/drm/vmwgfx/vmwgfx_msg.c100
-rw-r--r--[-rwxr-xr-x]drivers/gpu/drm/vmwgfx/vmwgfx_msg_arm64.h0
-rw-r--r--drivers/gpu/drm/vmwgfx/vmwgfx_overlay.c27
-rw-r--r--drivers/gpu/drm/vmwgfx/vmwgfx_page_dirty.c72
-rw-r--r--drivers/gpu/drm/vmwgfx/vmwgfx_resource.c279
-rw-r--r--drivers/gpu/drm/vmwgfx/vmwgfx_resource_priv.h10
-rw-r--r--drivers/gpu/drm/vmwgfx/vmwgfx_scrn.c88
-rw-r--r--drivers/gpu/drm/vmwgfx/vmwgfx_shader.c66
-rw-r--r--drivers/gpu/drm/vmwgfx/vmwgfx_so.c8
-rw-r--r--drivers/gpu/drm/vmwgfx/vmwgfx_stdu.c349
-rw-r--r--drivers/gpu/drm/vmwgfx/vmwgfx_streamoutput.c20
-rw-r--r--drivers/gpu/drm/vmwgfx/vmwgfx_surface.c129
-rw-r--r--drivers/gpu/drm/vmwgfx/vmwgfx_system_manager.c1
-rw-r--r--drivers/gpu/drm/vmwgfx/vmwgfx_ttm_buffer.c135
-rw-r--r--drivers/gpu/drm/vmwgfx/vmwgfx_ttm_glue.c2
-rw-r--r--drivers/gpu/drm/vmwgfx/vmwgfx_va.c6
-rw-r--r--drivers/gpu/drm/vmwgfx/vmwgfx_validation.c203
-rw-r--r--drivers/gpu/drm/vmwgfx/vmwgfx_validation.h36
-rw-r--r--drivers/gpu/drm/xen/xen_drm_front.c3
-rw-r--r--drivers/gpu/drm/xen/xen_drm_front_gem.c4
-rw-r--r--drivers/gpu/drm/xlnx/Makefile2
-rw-r--r--drivers/gpu/drm/xlnx/zynqmp_disp.c646
-rw-r--r--drivers/gpu/drm/xlnx/zynqmp_disp.h48
-rw-r--r--drivers/gpu/drm/xlnx/zynqmp_dp.c477
-rw-r--r--drivers/gpu/drm/xlnx/zynqmp_dp.h4
-rw-r--r--drivers/gpu/drm/xlnx/zynqmp_dpsub.c300
-rw-r--r--drivers/gpu/drm/xlnx/zynqmp_dpsub.h46
-rw-r--r--drivers/gpu/drm/xlnx/zynqmp_kms.c534
-rw-r--r--drivers/gpu/drm/xlnx/zynqmp_kms.h46
-rw-r--r--drivers/gpu/host1x/Kconfig2
-rw-r--r--drivers/gpu/host1x/bus.c8
-rw-r--r--drivers/gpu/host1x/cdma.c16
-rw-r--r--drivers/gpu/host1x/cdma.h2
-rw-r--r--drivers/gpu/host1x/context.c36
-rw-r--r--drivers/gpu/host1x/debug.c35
-rw-r--r--drivers/gpu/host1x/dev.c25
-rw-r--r--drivers/gpu/host1x/dev.h10
-rw-r--r--drivers/gpu/host1x/fence.c120
-rw-r--r--drivers/gpu/host1x/fence.h19
-rw-r--r--drivers/gpu/host1x/hw/channel_hw.c60
-rw-r--r--drivers/gpu/host1x/hw/hw_host1x06_uclass.h2
-rw-r--r--drivers/gpu/host1x/hw/hw_host1x07_uclass.h2
-rw-r--r--drivers/gpu/host1x/hw/hw_host1x08_uclass.h2
-rw-r--r--drivers/gpu/host1x/hw/intr_hw.c74
-rw-r--r--drivers/gpu/host1x/hw/syncpt_hw.c3
-rw-r--r--drivers/gpu/host1x/intr.c334
-rw-r--r--drivers/gpu/host1x/intr.h83
-rw-r--r--drivers/gpu/host1x/job.c12
-rw-r--r--drivers/gpu/host1x/mipi.c4
-rw-r--r--drivers/gpu/host1x/syncpt.c104
-rw-r--r--drivers/gpu/host1x/syncpt.h3
-rw-r--r--drivers/gpu/ipu-v3/Kconfig2
-rw-r--r--drivers/gpu/ipu-v3/ipu-common.c1
2433 files changed, 257892 insertions, 98009 deletions
diff --git a/drivers/gpu/drm/Kconfig b/drivers/gpu/drm/Kconfig
index 34f5a092c99e..ba3fb04bb691 100644
--- a/drivers/gpu/drm/Kconfig
+++ b/drivers/gpu/drm/Kconfig
@@ -8,17 +8,16 @@
menuconfig DRM
tristate "Direct Rendering Manager (XFree86 4.1.0 and higher DRI support)"
depends on (AGP || AGP=n) && !EMULATED_CMPXCHG && HAS_DMA
- select DRM_NOMODESET
select DRM_PANEL_ORIENTATION_QUIRKS
select HDMI
- select FB_CMDLINE
select I2C
- select I2C_ALGOBIT
select DMA_SHARED_BUFFER
select SYNC_FILE
# gallium uses SYS_kcmp for os_same_file_description() to de-duplicate
# device and dmabuf fd. Let's make sure that is available for our userspace.
select KCMP
+ select VIDEO_CMDLINE
+ select VIDEO_NOMODESET
help
Kernel-level support for the Direct Rendering Infrastructure (DRI)
introduced in XFree86 4.0. If you say Y here, you need to select
@@ -53,7 +52,8 @@ config DRM_DEBUG_MM
config DRM_USE_DYNAMIC_DEBUG
bool "use dynamic debug to implement drm.debug"
- default y
+ default n
+ depends on BROKEN
depends on DRM
depends on DYNAMIC_DEBUG || DYNAMIC_DEBUG_CORE
depends on JUMP_LABEL
@@ -63,6 +63,12 @@ config DRM_USE_DYNAMIC_DEBUG
bytes per callsite, the .data costs can be substantial, and
are therefore configurable.
+config DRM_KUNIT_TEST_HELPERS
+ tristate
+ depends on DRM && KUNIT
+ help
+ KUnit Helpers for KMS drivers.
+
config DRM_KUNIT_TEST
tristate "KUnit tests for DRM" if !KUNIT_ALL_TESTS
depends on DRM && KUNIT
@@ -73,6 +79,7 @@ config DRM_KUNIT_TEST
select DRM_KMS_HELPER
select DRM_BUDDY
select DRM_EXPORT_FOR_TESTS if m
+ select DRM_KUNIT_TEST_HELPERS
default KUNIT_ALL_TESTS
help
This builds unit tests for DRM. This option is not useful for
@@ -225,6 +232,10 @@ config DRM_GEM_SHMEM_HELPER
help
Choose this if you need the GEM shmem helper functions
+config DRM_SUBALLOC_HELPER
+ tristate
+ depends on DRM
+
config DRM_SCHED
tristate
depends on DRM
@@ -233,64 +244,8 @@ source "drivers/gpu/drm/i2c/Kconfig"
source "drivers/gpu/drm/arm/Kconfig"
-config DRM_RADEON
- tristate "ATI Radeon"
- depends on DRM && PCI && MMU
- depends on AGP || !AGP
- select FW_LOADER
- select DRM_DISPLAY_DP_HELPER
- select DRM_DISPLAY_HELPER
- select DRM_KMS_HELPER
- select DRM_TTM
- select DRM_TTM_HELPER
- select POWER_SUPPLY
- select HWMON
- select BACKLIGHT_CLASS_DEVICE
- select INTERVAL_TREE
- # radeon depends on ACPI_VIDEO when ACPI is enabled, for select to work
- # ACPI_VIDEO's dependencies must also be selected.
- select INPUT if ACPI
- select ACPI_VIDEO if ACPI
- # On x86 ACPI_VIDEO also needs ACPI_WMI
- select X86_PLATFORM_DEVICES if ACPI && X86
- select ACPI_WMI if ACPI && X86
- help
- Choose this option if you have an ATI Radeon graphics card. There
- are both PCI and AGP versions. You don't need to choose this to
- run the Radeon in plain VGA mode.
-
- If M is selected, the module will be called radeon.
-
source "drivers/gpu/drm/radeon/Kconfig"
-config DRM_AMDGPU
- tristate "AMD GPU"
- depends on DRM && PCI && MMU
- select FW_LOADER
- select DRM_DISPLAY_DP_HELPER
- select DRM_DISPLAY_HDMI_HELPER
- select DRM_DISPLAY_HELPER
- select DRM_KMS_HELPER
- select DRM_SCHED
- select DRM_TTM
- select DRM_TTM_HELPER
- select POWER_SUPPLY
- select HWMON
- select BACKLIGHT_CLASS_DEVICE
- select INTERVAL_TREE
- select DRM_BUDDY
- # amdgpu depends on ACPI_VIDEO when ACPI is enabled, for select to work
- # ACPI_VIDEO's dependencies must also be selected.
- select INPUT if ACPI
- select ACPI_VIDEO if ACPI
- # On x86 ACPI_VIDEO also needs ACPI_WMI
- select X86_PLATFORM_DEVICES if ACPI && X86
- select ACPI_WMI if ACPI && X86
- help
- Choose this option if you have a recent AMD Radeon graphics card.
-
- If M is selected, the module will be called amdgpu.
-
source "drivers/gpu/drm/amd/amdgpu/Kconfig"
source "drivers/gpu/drm/nouveau/Kconfig"
@@ -447,64 +402,7 @@ menuconfig DRM_LEGACY
Unless you have strong reasons to go rogue, say "N".
if DRM_LEGACY
-
-config DRM_TDFX
- tristate "3dfx Banshee/Voodoo3+"
- depends on DRM && PCI
- help
- Choose this option if you have a 3dfx Banshee or Voodoo3 (or later),
- graphics card. If M is selected, the module will be called tdfx.
-
-config DRM_R128
- tristate "ATI Rage 128"
- depends on DRM && PCI
- select FW_LOADER
- help
- Choose this option if you have an ATI Rage 128 graphics card. If M
- is selected, the module will be called r128. AGP support for
- this card is strongly suggested (unless you have a PCI version).
-
-config DRM_I810
- tristate "Intel I810"
- # !PREEMPTION because of missing ioctl locking
- depends on DRM && AGP && AGP_INTEL && (!PREEMPTION || BROKEN)
- help
- Choose this option if you have an Intel I810 graphics card. If M is
- selected, the module will be called i810. AGP support is required
- for this driver to work.
-
-config DRM_MGA
- tristate "Matrox g200/g400"
- depends on DRM && PCI
- select FW_LOADER
- help
- Choose this option if you have a Matrox G200, G400 or G450 graphics
- card. If M is selected, the module will be called mga. AGP
- support is required for this driver to work.
-
-config DRM_SIS
- tristate "SiS video cards"
- depends on DRM && AGP
- depends on FB_SIS || FB_SIS=n
- help
- Choose this option if you have a SiS 630 or compatible video
- chipset. If M is selected the module will be called sis. AGP
- support is required for this driver to work.
-
-config DRM_VIA
- tristate "Via unichrome video cards"
- depends on DRM && PCI
- help
- Choose this option if you have a Via unichrome or compatible video
- chipset. If M is selected the module will be called via.
-
-config DRM_SAVAGE
- tristate "Savage video cards"
- depends on DRM && PCI
- help
- Choose this option if you have a Savage3D/4/SuperSavage/Pro/Twister
- chipset. If M is selected the module will be called savage.
-
+# leave here to list legacy drivers
endif # DRM_LEGACY
config DRM_EXPORT_FOR_TESTS
@@ -514,11 +412,6 @@ config DRM_EXPORT_FOR_TESTS
config DRM_PANEL_ORIENTATION_QUIRKS
tristate
-# Separate option because nomodeset parameter is global and expected built-in
-config DRM_NOMODESET
- bool
- default n
-
config DRM_LIB_RANDOM
bool
default n
diff --git a/drivers/gpu/drm/Makefile b/drivers/gpu/drm/Makefile
index 0b283e46f28b..a33257d2bc7f 100644
--- a/drivers/gpu/drm/Makefile
+++ b/drivers/gpu/drm/Makefile
@@ -5,35 +5,74 @@
CFLAGS-$(CONFIG_DRM_USE_DYNAMIC_DEBUG) += -DDYNAMIC_DEBUG_MODULE
-drm-y := drm_aperture.o drm_auth.o drm_cache.o \
- drm_file.o drm_gem.o drm_ioctl.o \
- drm_drv.o \
- drm_sysfs.o drm_mm.o \
- drm_crtc.o drm_fourcc.o drm_modes.o drm_edid.o drm_displayid.o \
- drm_trace_points.o drm_prime.o \
- drm_vma_manager.o \
- drm_modeset_lock.o drm_atomic.o drm_bridge.o \
- drm_framebuffer.o drm_connector.o drm_blend.o \
- drm_encoder.o drm_mode_object.o drm_property.o \
- drm_plane.o drm_color_mgmt.o drm_print.o \
- drm_dumb_buffers.o drm_mode_config.o drm_vblank.o \
- drm_syncobj.o drm_lease.o drm_writeback.o drm_client.o \
- drm_client_modeset.o drm_atomic_uapi.o \
- drm_managed.o drm_vblank_work.o
-drm-$(CONFIG_DRM_LEGACY) += drm_agpsupport.o drm_bufs.o drm_context.o drm_dma.o \
- drm_hashtab.o drm_irq.o drm_legacy_misc.o drm_lock.o \
- drm_memory.o drm_scatter.o drm_vm.o
+drm-y := \
+ drm_aperture.o \
+ drm_atomic.o \
+ drm_atomic_uapi.o \
+ drm_auth.o \
+ drm_blend.o \
+ drm_bridge.o \
+ drm_cache.o \
+ drm_client.o \
+ drm_client_modeset.o \
+ drm_color_mgmt.o \
+ drm_connector.o \
+ drm_crtc.o \
+ drm_displayid.o \
+ drm_drv.o \
+ drm_dumb_buffers.o \
+ drm_edid.o \
+ drm_encoder.o \
+ drm_file.o \
+ drm_fourcc.o \
+ drm_framebuffer.o \
+ drm_gem.o \
+ drm_ioctl.o \
+ drm_lease.o \
+ drm_managed.o \
+ drm_mm.o \
+ drm_mode_config.o \
+ drm_mode_object.o \
+ drm_modes.o \
+ drm_modeset_lock.o \
+ drm_plane.o \
+ drm_prime.o \
+ drm_print.o \
+ drm_property.o \
+ drm_syncobj.o \
+ drm_sysfs.o \
+ drm_trace_points.o \
+ drm_vblank.o \
+ drm_vblank_work.o \
+ drm_vma_manager.o \
+ drm_writeback.o
+drm-$(CONFIG_DRM_LEGACY) += \
+ drm_agpsupport.o \
+ drm_bufs.o \
+ drm_context.o \
+ drm_dma.o \
+ drm_hashtab.o \
+ drm_irq.o \
+ drm_legacy_misc.o \
+ drm_lock.o \
+ drm_memory.o \
+ drm_scatter.o \
+ drm_vm.o
drm-$(CONFIG_DRM_LIB_RANDOM) += lib/drm_random.o
drm-$(CONFIG_COMPAT) += drm_ioc32.o
drm-$(CONFIG_DRM_PANEL) += drm_panel.o
drm-$(CONFIG_OF) += drm_of.o
drm-$(CONFIG_PCI) += drm_pci.o
-drm-$(CONFIG_DEBUG_FS) += drm_debugfs.o drm_debugfs_crc.o
+drm-$(CONFIG_DEBUG_FS) += \
+ drm_debugfs.o \
+ drm_debugfs_crc.o
drm-$(CONFIG_DRM_LOAD_EDID_FIRMWARE) += drm_edid_load.o
-drm-$(CONFIG_DRM_PRIVACY_SCREEN) += drm_privacy_screen.o drm_privacy_screen_x86.o
+drm-$(CONFIG_DRM_PRIVACY_SCREEN) += \
+ drm_privacy_screen.o \
+ drm_privacy_screen_x86.o
+drm-$(CONFIG_DRM_ACCEL) += ../../accel/drm_accel.o
obj-$(CONFIG_DRM) += drm.o
-obj-$(CONFIG_DRM_NOMODESET) += drm_nomodeset.o
obj-$(CONFIG_DRM_PANEL_ORIENTATION_QUIRKS) += drm_panel_orientation_quirks.o
#
@@ -43,12 +82,16 @@ obj-$(CONFIG_DRM_PANEL_ORIENTATION_QUIRKS) += drm_panel_orientation_quirks.o
obj-$(CONFIG_DRM_BUDDY) += drm_buddy.o
drm_dma_helper-y := drm_gem_dma_helper.o
+drm_dma_helper-$(CONFIG_DRM_FBDEV_EMULATION) += drm_fbdev_dma.o
drm_dma_helper-$(CONFIG_DRM_KMS_HELPER) += drm_fb_dma_helper.o
obj-$(CONFIG_DRM_GEM_DMA_HELPER) += drm_dma_helper.o
drm_shmem_helper-y := drm_gem_shmem_helper.o
obj-$(CONFIG_DRM_GEM_SHMEM_HELPER) += drm_shmem_helper.o
+drm_suballoc_helper-y := drm_suballoc.o
+obj-$(CONFIG_DRM_SUBALLOC_HELPER) += drm_suballoc_helper.o
+
drm_vram_helper-y := drm_gem_vram_helper.o
obj-$(CONFIG_DRM_VRAM_HELPER) += drm_vram_helper.o
@@ -59,25 +102,35 @@ obj-$(CONFIG_DRM_TTM_HELPER) += drm_ttm_helper.o
# Modesetting helpers
#
-drm_kms_helper-y := drm_bridge_connector.o drm_crtc_helper.o \
- drm_encoder_slave.o drm_flip_work.o \
- drm_probe_helper.o \
- drm_plane_helper.o drm_atomic_helper.o \
- drm_kms_helper_common.o \
- drm_simple_kms_helper.o drm_modeset_helper.o \
- drm_gem_atomic_helper.o \
- drm_gem_framebuffer_helper.o \
- drm_atomic_state_helper.o drm_damage_helper.o \
- drm_format_helper.o drm_self_refresh_helper.o drm_rect.o
+drm_kms_helper-y := \
+ drm_atomic_helper.o \
+ drm_atomic_state_helper.o \
+ drm_bridge_connector.o \
+ drm_crtc_helper.o \
+ drm_damage_helper.o \
+ drm_encoder_slave.o \
+ drm_flip_work.o \
+ drm_format_helper.o \
+ drm_gem_atomic_helper.o \
+ drm_gem_framebuffer_helper.o \
+ drm_kms_helper_common.o \
+ drm_modeset_helper.o \
+ drm_plane_helper.o \
+ drm_probe_helper.o \
+ drm_rect.o \
+ drm_self_refresh_helper.o \
+ drm_simple_kms_helper.o
drm_kms_helper-$(CONFIG_DRM_PANEL_BRIDGE) += bridge/panel.o
-drm_kms_helper-$(CONFIG_DRM_FBDEV_EMULATION) += drm_fb_helper.o
+drm_kms_helper-$(CONFIG_DRM_FBDEV_EMULATION) += \
+ drm_fbdev_generic.o \
+ drm_fb_helper.o
obj-$(CONFIG_DRM_KMS_HELPER) += drm_kms_helper.o
#
# Drivers and the rest
#
-obj-$(CONFIG_DRM_KUNIT_TEST) += tests/
+obj-y += tests/
obj-$(CONFIG_DRM_MIPI_DBI) += drm_mipi_dbi.o
obj-$(CONFIG_DRM_MIPI_DSI) += drm_mipi_dsi.o
@@ -85,21 +138,14 @@ obj-y += arm/
obj-y += display/
obj-$(CONFIG_DRM_TTM) += ttm/
obj-$(CONFIG_DRM_SCHED) += scheduler/
-obj-$(CONFIG_DRM_TDFX) += tdfx/
-obj-$(CONFIG_DRM_R128) += r128/
obj-$(CONFIG_DRM_RADEON)+= radeon/
obj-$(CONFIG_DRM_AMDGPU)+= amd/amdgpu/
-obj-$(CONFIG_DRM_MGA) += mga/
-obj-$(CONFIG_DRM_I810) += i810/
obj-$(CONFIG_DRM_I915) += i915/
obj-$(CONFIG_DRM_KMB_DISPLAY) += kmb/
obj-$(CONFIG_DRM_MGAG200) += mgag200/
obj-$(CONFIG_DRM_V3D) += v3d/
obj-$(CONFIG_DRM_VC4) += vc4/
-obj-$(CONFIG_DRM_SIS) += sis/
-obj-$(CONFIG_DRM_SAVAGE)+= savage/
obj-$(CONFIG_DRM_VMWGFX)+= vmwgfx/
-obj-$(CONFIG_DRM_VIA) +=via/
obj-$(CONFIG_DRM_VGEM) += vgem/
obj-$(CONFIG_DRM_VKMS) += vkms/
obj-$(CONFIG_DRM_NOUVEAU) +=nouveau/
diff --git a/drivers/gpu/drm/amd/amdgpu/Kconfig b/drivers/gpu/drm/amd/amdgpu/Kconfig
index 7777d55275de..12adca8c7819 100644
--- a/drivers/gpu/drm/amd/amdgpu/Kconfig
+++ b/drivers/gpu/drm/amd/amdgpu/Kconfig
@@ -1,4 +1,38 @@
# SPDX-License-Identifier: MIT
+
+config DRM_AMDGPU
+ tristate "AMD GPU"
+ depends on DRM && PCI && MMU
+ depends on !UML
+ select FW_LOADER
+ select DRM_DISPLAY_DP_HELPER
+ select DRM_DISPLAY_HDMI_HELPER
+ select DRM_DISPLAY_HDCP_HELPER
+ select DRM_DISPLAY_HELPER
+ select DRM_KMS_HELPER
+ select DRM_SCHED
+ select DRM_TTM
+ select DRM_TTM_HELPER
+ select POWER_SUPPLY
+ select HWMON
+ select I2C
+ select I2C_ALGOBIT
+ select BACKLIGHT_CLASS_DEVICE
+ select INTERVAL_TREE
+ select DRM_BUDDY
+ select DRM_SUBALLOC_HELPER
+ # amdgpu depends on ACPI_VIDEO when ACPI is enabled, for select to work
+ # ACPI_VIDEO's dependencies must also be selected.
+ select INPUT if ACPI
+ select ACPI_VIDEO if ACPI
+ # On x86 ACPI_VIDEO also needs ACPI_WMI
+ select X86_PLATFORM_DEVICES if ACPI && X86
+ select ACPI_WMI if ACPI && X86
+ help
+ Choose this option if you have a recent AMD Radeon graphics card.
+
+ If M is selected, the module will be called amdgpu.
+
config DRM_AMDGPU_SI
bool "Enable amdgpu support for SI parts"
depends on DRM_AMDGPU
diff --git a/drivers/gpu/drm/amd/amdgpu/Makefile b/drivers/gpu/drm/amd/amdgpu/Makefile
index 6ad39cf71bdd..415a7fa395c4 100644
--- a/drivers/gpu/drm/amd/amdgpu/Makefile
+++ b/drivers/gpu/drm/amd/amdgpu/Makefile
@@ -34,6 +34,7 @@ ccflags-y := -I$(FULL_AMD_PATH)/include/asic_reg \
-I$(FULL_AMD_PATH)/acp/include \
-I$(FULL_AMD_DISPLAY_PATH) \
-I$(FULL_AMD_DISPLAY_PATH)/include \
+ -I$(FULL_AMD_DISPLAY_PATH)/modules/inc \
-I$(FULL_AMD_DISPLAY_PATH)/dc \
-I$(FULL_AMD_DISPLAY_PATH)/amdgpu_dm \
-I$(FULL_AMD_PATH)/amdkfd
@@ -53,12 +54,13 @@ amdgpu-y += amdgpu_device.o amdgpu_kms.o \
amdgpu_ucode.o amdgpu_bo_list.o amdgpu_ctx.o amdgpu_sync.o \
amdgpu_gtt_mgr.o amdgpu_preempt_mgr.o amdgpu_vram_mgr.o amdgpu_virt.o \
amdgpu_atomfirmware.o amdgpu_vf_error.o amdgpu_sched.o \
- amdgpu_debugfs.o amdgpu_ids.o amdgpu_gmc.o \
+ amdgpu_debugfs.o amdgpu_ids.o amdgpu_gmc.o amdgpu_mmhub.o amdgpu_hdp.o \
amdgpu_xgmi.o amdgpu_csa.o amdgpu_ras.o amdgpu_vm_cpu.o \
amdgpu_vm_sdma.o amdgpu_discovery.o amdgpu_ras_eeprom.o amdgpu_nbio.o \
amdgpu_umc.o smu_v11_0_i2c.o amdgpu_fru_eeprom.o amdgpu_rap.o \
amdgpu_fw_attestation.o amdgpu_securedisplay.o \
- amdgpu_eeprom.o amdgpu_mca.o amdgpu_psp_ta.o amdgpu_lsdma.o
+ amdgpu_eeprom.o amdgpu_mca.o amdgpu_psp_ta.o amdgpu_lsdma.o \
+ amdgpu_ring_mux.o
amdgpu-$(CONFIG_PROC_FS) += amdgpu_fdinfo.o
@@ -75,12 +77,14 @@ amdgpu-y += \
vi.o mxgpu_vi.o nbio_v6_1.o soc15.o emu_soc.o mxgpu_ai.o nbio_v7_0.o vega10_reg_init.o \
vega20_reg_init.o nbio_v7_4.o nbio_v2_3.o nv.o arct_reg_init.o mxgpu_nv.o \
nbio_v7_2.o hdp_v4_0.o hdp_v5_0.o aldebaran_reg_init.o aldebaran.o soc21.o \
- sienna_cichlid.o nbio_v4_3.o hdp_v6_0.o nbio_v7_7.o hdp_v5_2.o lsdma_v6_0.o
+ sienna_cichlid.o smu_v13_0_10.o nbio_v4_3.o hdp_v6_0.o nbio_v7_7.o hdp_v5_2.o lsdma_v6_0.o \
+ nbio_v7_9.o
# add DF block
amdgpu-y += \
df_v1_7.o \
- df_v3_6.o
+ df_v3_6.o \
+ df_v4_3.o
# add GMC block
amdgpu-y += \
@@ -89,7 +93,7 @@ amdgpu-y += \
gfxhub_v1_0.o mmhub_v1_0.o gmc_v9_0.o gfxhub_v1_1.o mmhub_v9_4.o \
gfxhub_v2_0.o mmhub_v2_0.o gmc_v10_0.o gfxhub_v2_1.o mmhub_v2_3.o \
mmhub_v1_7.o gfxhub_v3_0.o mmhub_v3_0.o mmhub_v3_0_2.o gmc_v11_0.o \
- mmhub_v3_0_1.o gfxhub_v3_0_3.o
+ mmhub_v3_0_1.o gfxhub_v3_0_3.o gfxhub_v1_2.o mmhub_v1_8.o
# add UMC block
amdgpu-y += \
@@ -132,9 +136,11 @@ amdgpu-y += \
gfx_v9_0.o \
gfx_v9_4.o \
gfx_v9_4_2.o \
+ gfx_v9_4_3.o \
gfx_v10_0.o \
imu_v11_0.o \
gfx_v11_0.o \
+ gfx_v11_0_3.o \
imu_v11_0_3.o
# add async DMA block
@@ -144,6 +150,7 @@ amdgpu-y += \
sdma_v3_0.o \
sdma_v4_0.o \
sdma_v4_4.o \
+ sdma_v4_4_2.o \
sdma_v5_0.o \
sdma_v5_2.o \
sdma_v6_0.o
@@ -250,7 +257,7 @@ endif
amdgpu-$(CONFIG_COMPAT) += amdgpu_ioc32.o
amdgpu-$(CONFIG_VGA_SWITCHEROO) += amdgpu_atpx_handler.o
amdgpu-$(CONFIG_ACPI) += amdgpu_acpi.o
-amdgpu-$(CONFIG_HMM_MIRROR) += amdgpu_mn.o
+amdgpu-$(CONFIG_HMM_MIRROR) += amdgpu_hmm.o
include $(FULL_AMD_PATH)/pm/Makefile
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu.h b/drivers/gpu/drm/amd/amdgpu/amdgpu.h
index 8639a4f9c6e8..02b827785e39 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu.h
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu.h
@@ -50,10 +50,8 @@
#include <linux/hashtable.h>
#include <linux/dma-fence.h>
#include <linux/pci.h>
-#include <linux/aer.h>
-#include <drm/ttm/ttm_bo_api.h>
-#include <drm/ttm/ttm_bo_driver.h>
+#include <drm/ttm/ttm_bo.h>
#include <drm/ttm/ttm_placement.h>
#include <drm/ttm/ttm_execbuf_util.h>
@@ -82,7 +80,6 @@
#include "amdgpu_vce.h"
#include "amdgpu_vcn.h"
#include "amdgpu_jpeg.h"
-#include "amdgpu_mn.h"
#include "amdgpu_gmc.h"
#include "amdgpu_gfx.h"
#include "amdgpu_sdma.h"
@@ -151,7 +148,7 @@ struct amdgpu_watchdog_timer
* Modules parameters.
*/
extern int amdgpu_modeset;
-extern int amdgpu_vram_limit;
+extern unsigned int amdgpu_vram_limit;
extern int amdgpu_vis_vram_limit;
extern int amdgpu_gart_size;
extern int amdgpu_gtt_size;
@@ -188,7 +185,6 @@ extern char *amdgpu_disable_cu;
extern char *amdgpu_virtual_display;
extern uint amdgpu_pp_feature_mask;
extern uint amdgpu_force_long_training;
-extern int amdgpu_job_hang_limit;
extern int amdgpu_lbpw;
extern int amdgpu_compute_multipipe;
extern int amdgpu_gpu_recovery;
@@ -196,6 +192,7 @@ extern int amdgpu_emu_mode;
extern uint amdgpu_smu_memory_pool_size;
extern int amdgpu_smu_pptable_id;
extern uint amdgpu_dc_feature_mask;
+extern uint amdgpu_freesync_vid_mode;
extern uint amdgpu_dc_debug_mask;
extern uint amdgpu_dc_visual_confirm;
extern uint amdgpu_dm_abm_level;
@@ -219,10 +216,12 @@ extern int amdgpu_use_xgmi_p2p;
extern int sched_policy;
extern bool debug_evictions;
extern bool no_system_mem_limit;
+extern int halt_if_hws_hang;
#else
static const int __maybe_unused sched_policy = KFD_SCHED_POLICY_HWS;
static const bool __maybe_unused debug_evictions; /* = false */
static const bool __maybe_unused no_system_mem_limit;
+static const int __maybe_unused halt_if_hws_hang;
#endif
#ifdef CONFIG_HSA_AMD_P2P
extern bool pcie_p2p;
@@ -241,6 +240,7 @@ extern int amdgpu_num_kcq;
#define AMDGPU_VCNFW_LOG_SIZE (32 * 1024)
extern int amdgpu_vcnfw_log;
+extern int amdgpu_sg_display;
#define AMDGPU_VM_MAX_NUM_CTX 4096
#define AMDGPU_SG_THRESHOLD (256*1024*1024)
@@ -422,29 +422,11 @@ struct amdgpu_clock {
* alignment).
*/
-#define AMDGPU_SA_NUM_FENCE_LISTS 32
-
struct amdgpu_sa_manager {
- wait_queue_head_t wq;
- struct amdgpu_bo *bo;
- struct list_head *hole;
- struct list_head flist[AMDGPU_SA_NUM_FENCE_LISTS];
- struct list_head olist;
- unsigned size;
- uint64_t gpu_addr;
- void *cpu_ptr;
- uint32_t domain;
- uint32_t align;
-};
-
-/* sub-allocation buffer */
-struct amdgpu_sa_bo {
- struct list_head olist;
- struct list_head flist;
- struct amdgpu_sa_manager *manager;
- unsigned soffset;
- unsigned eoffset;
- struct dma_fence *fence;
+ struct drm_suballoc_manager base;
+ struct amdgpu_bo *bo;
+ uint64_t gpu_addr;
+ void *cpu_ptr;
};
int amdgpu_fence_slab_init(void);
@@ -488,7 +470,7 @@ int amdgpu_file_to_fpriv(struct file *filp, struct amdgpu_fpriv **fpriv);
/*
* Writeback
*/
-#define AMDGPU_MAX_WB 256 /* Reserve at most 256 WB slots for amdgpu-owned rings. */
+#define AMDGPU_MAX_WB 1024 /* Reserve at most 1024 WB slots for amdgpu-owned rings. */
struct amdgpu_wb {
struct amdgpu_bo *wb_obj;
@@ -607,7 +589,7 @@ int amdgpu_cs_wait_fences_ioctl(struct drm_device *dev, void *data,
struct drm_file *filp);
/* VRAM scratch page for HDP bug, default vram page */
-struct amdgpu_vram_scratch {
+struct amdgpu_mem_scratch {
struct amdgpu_bo *robj;
volatile uint32_t *ptr;
u64 gpu_addr;
@@ -675,7 +657,7 @@ enum amd_hw_ip_block_type {
MAX_HWIP
};
-#define HWIP_MAX_INSTANCE 11
+#define HWIP_MAX_INSTANCE 28
#define HW_ID_MAX 300
#define IP_VERSION(mj, mn, rv) (((mj) << 16) | ((mn) << 8) | (rv))
@@ -754,6 +736,11 @@ struct amdgpu_mqd {
#define AMDGPU_PRODUCT_NAME_LEN 64
struct amdgpu_reset_domain;
+/*
+ * Non-zero (true) if the GPU has VRAM. Zero (false) otherwise.
+ */
+#define AMDGPU_HAS_VRAM(_adev) ((_adev)->gmc.real_vram_size)
+
struct amdgpu_device {
struct device *dev;
struct pci_dev *pdev;
@@ -847,7 +834,7 @@ struct amdgpu_device {
/* memory management */
struct amdgpu_mman mman;
- struct amdgpu_vram_scratch vram_scratch;
+ struct amdgpu_mem_scratch mem_scratch;
struct amdgpu_wb wb;
atomic64_t num_bytes_moved;
atomic64_t num_evictions;
@@ -869,7 +856,7 @@ struct amdgpu_device {
struct amdgpu_vkms_output *amdgpu_vkms_output;
struct amdgpu_mode_info mode_info;
/* For pre-DCE11. DCE11 and later are in "struct amdgpu_device->dm" */
- struct work_struct hotplug_work;
+ struct delayed_work hotplug_work;
struct amdgpu_irq_src crtc_irq;
struct amdgpu_irq_src vline0_irq;
struct amdgpu_irq_src vupdate_irq;
@@ -1016,7 +1003,6 @@ struct amdgpu_device {
bool in_runpm;
bool has_pr3;
- bool pm_sysfs_en;
bool ucode_sysfs_en;
bool psp_sysfs_en;
@@ -1063,6 +1049,7 @@ struct amdgpu_device {
struct work_struct reset_work;
bool job_hang;
+ bool dc_enabled;
};
static inline struct amdgpu_device *drm_to_adev(struct drm_device *ddev)
@@ -1105,21 +1092,19 @@ void amdgpu_mm_wreg8(struct amdgpu_device *adev, uint32_t offset, uint8_t value)
uint8_t amdgpu_mm_rreg8(struct amdgpu_device *adev, uint32_t offset);
u32 amdgpu_device_indirect_rreg(struct amdgpu_device *adev,
- u32 pcie_index, u32 pcie_data,
u32 reg_addr);
u64 amdgpu_device_indirect_rreg64(struct amdgpu_device *adev,
- u32 pcie_index, u32 pcie_data,
u32 reg_addr);
void amdgpu_device_indirect_wreg(struct amdgpu_device *adev,
- u32 pcie_index, u32 pcie_data,
u32 reg_addr, u32 reg_data);
void amdgpu_device_indirect_wreg64(struct amdgpu_device *adev,
- u32 pcie_index, u32 pcie_data,
u32 reg_addr, u64 reg_data);
-
+u32 amdgpu_device_get_rev_id(struct amdgpu_device *adev);
bool amdgpu_device_asic_has_dc_support(enum amd_asic_type asic_type);
bool amdgpu_device_has_dc_support(struct amdgpu_device *adev);
+void amdgpu_device_set_sriov_virtual_display(struct amdgpu_device *adev);
+
int amdgpu_device_pre_asic_reset(struct amdgpu_device *adev,
struct amdgpu_reset_context *reset_context);
@@ -1236,7 +1221,7 @@ int emu_soc_asic_init(struct amdgpu_device *adev);
((adev)->asic_funcs->flush_hdp ? (adev)->asic_funcs->flush_hdp((adev), (r)) : (adev)->hdp.funcs->flush_hdp((adev), (r)))
#define amdgpu_asic_invalidate_hdp(adev, r) \
((adev)->asic_funcs->invalidate_hdp ? (adev)->asic_funcs->invalidate_hdp((adev), (r)) : \
- ((adev)->hdp.funcs->invalidate_hdp ? (adev)->hdp.funcs->invalidate_hdp((adev), (r)) : 0))
+ ((adev)->hdp.funcs->invalidate_hdp ? (adev)->hdp.funcs->invalidate_hdp((adev), (r)) : (void)0))
#define amdgpu_asic_need_full_reset(adev) (adev)->asic_funcs->need_full_reset((adev))
#define amdgpu_asic_init_doorbell_index(adev) (adev)->asic_funcs->init_doorbell_index((adev))
#define amdgpu_asic_get_pcie_usage(adev, cnt0, cnt1) ((adev)->asic_funcs->get_pcie_usage((adev), (cnt0), (cnt1)))
@@ -1262,6 +1247,7 @@ void amdgpu_device_pci_config_reset(struct amdgpu_device *adev);
int amdgpu_device_pci_reset(struct amdgpu_device *adev);
bool amdgpu_device_need_post(struct amdgpu_device *adev);
bool amdgpu_device_should_use_aspm(struct amdgpu_device *adev);
+bool amdgpu_device_aspm_support_quirk(void);
void amdgpu_cs_report_moved_bytes(struct amdgpu_device *adev, u64 num_bytes,
u64 num_vis_bytes);
@@ -1293,6 +1279,7 @@ void amdgpu_device_pcie_port_wreg(struct amdgpu_device *adev,
u32 reg, u32 v);
struct dma_fence *amdgpu_device_switch_gang(struct amdgpu_device *adev,
struct dma_fence *gang);
+bool amdgpu_device_has_display_hardware(struct amdgpu_device *adev);
/* atpx handler */
#if defined(CONFIG_VGA_SWITCHEROO)
@@ -1380,10 +1367,12 @@ int amdgpu_acpi_smart_shift_update(struct drm_device *dev, enum amdgpu_ss ss_sta
int amdgpu_acpi_pcie_notify_device_ready(struct amdgpu_device *adev);
void amdgpu_acpi_get_backlight_caps(struct amdgpu_dm_backlight_caps *caps);
+bool amdgpu_acpi_should_gpu_reset(struct amdgpu_device *adev);
void amdgpu_acpi_detect(void);
#else
static inline int amdgpu_acpi_init(struct amdgpu_device *adev) { return 0; }
static inline void amdgpu_acpi_fini(struct amdgpu_device *adev) { }
+static inline bool amdgpu_acpi_should_gpu_reset(struct amdgpu_device *adev) { return false; }
static inline void amdgpu_acpi_detect(void) { }
static inline bool amdgpu_acpi_is_power_shift_control_supported(void) { return false; }
static inline int amdgpu_acpi_power_shift_control(struct amdgpu_device *adev,
@@ -1394,11 +1383,9 @@ static inline int amdgpu_acpi_smart_shift_update(struct drm_device *dev,
#if defined(CONFIG_ACPI) && defined(CONFIG_SUSPEND)
bool amdgpu_acpi_is_s3_active(struct amdgpu_device *adev);
-bool amdgpu_acpi_should_gpu_reset(struct amdgpu_device *adev);
bool amdgpu_acpi_is_s0ix_active(struct amdgpu_device *adev);
#else
static inline bool amdgpu_acpi_is_s0ix_active(struct amdgpu_device *adev) { return false; }
-static inline bool amdgpu_acpi_should_gpu_reset(struct amdgpu_device *adev) { return false; }
static inline bool amdgpu_acpi_is_s3_active(struct amdgpu_device *adev) { return false; }
#endif
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_acpi.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_acpi.c
index b14800ac179e..aeeec211861c 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_acpi.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_acpi.c
@@ -24,6 +24,7 @@
#include <linux/pci.h>
#include <linux/acpi.h>
+#include <linux/backlight.h>
#include <linux/slab.h>
#include <linux/power_supply.h>
#include <linux/pm_runtime.h>
@@ -31,7 +32,6 @@
#include <acpi/video.h>
#include <acpi/actbl.h>
-#include <drm/drm_crtc_helper.h>
#include "amdgpu.h"
#include "amdgpu_pm.h"
#include "amdgpu_display.h"
@@ -847,7 +847,7 @@ int amdgpu_acpi_init(struct amdgpu_device *adev)
struct amdgpu_atif *atif = &amdgpu_acpi_priv.atif;
if (atif->notifications.brightness_change) {
- if (amdgpu_device_has_dc_support(adev)) {
+ if (adev->dc_enabled) {
#if defined(CONFIG_DRM_AMD_DC)
struct amdgpu_display_manager *dm = &adev->dm;
@@ -971,6 +971,34 @@ static bool amdgpu_atcs_pci_probe_handle(struct pci_dev *pdev)
return true;
}
+
+/**
+ * amdgpu_acpi_should_gpu_reset
+ *
+ * @adev: amdgpu_device_pointer
+ *
+ * returns true if should reset GPU, false if not
+ */
+bool amdgpu_acpi_should_gpu_reset(struct amdgpu_device *adev)
+{
+ if ((adev->flags & AMD_IS_APU) &&
+ adev->gfx.imu.funcs) /* Not need to do mode2 reset for IMU enabled APUs */
+ return false;
+
+ if ((adev->flags & AMD_IS_APU) &&
+ amdgpu_acpi_is_s3_active(adev))
+ return false;
+
+ if (amdgpu_sriov_vf(adev))
+ return false;
+
+#if IS_ENABLED(CONFIG_SUSPEND)
+ return pm_suspend_target_state != PM_SUSPEND_TO_IDLE;
+#else
+ return true;
+#endif
+}
+
/*
* amdgpu_acpi_detect - detect ACPI ATIF/ATCS methods
*
@@ -1043,24 +1071,6 @@ bool amdgpu_acpi_is_s3_active(struct amdgpu_device *adev)
}
/**
- * amdgpu_acpi_should_gpu_reset
- *
- * @adev: amdgpu_device_pointer
- *
- * returns true if should reset GPU, false if not
- */
-bool amdgpu_acpi_should_gpu_reset(struct amdgpu_device *adev)
-{
- if (adev->flags & AMD_IS_APU)
- return false;
-
- if (amdgpu_sriov_vf(adev))
- return false;
-
- return pm_suspend_target_state != PM_SUSPEND_TO_IDLE;
-}
-
-/**
* amdgpu_acpi_is_s0ix_active
*
* @adev: amdgpu_device_pointer
@@ -1073,26 +1083,25 @@ bool amdgpu_acpi_is_s0ix_active(struct amdgpu_device *adev)
(pm_suspend_target_state != PM_SUSPEND_TO_IDLE))
return false;
+ if (adev->asic_type < CHIP_RAVEN)
+ return false;
+
/*
* If ACPI_FADT_LOW_POWER_S0 is not set in the FADT, it is generally
* risky to do any special firmware-related preparations for entering
* S0ix even though the system is suspending to idle, so return false
* in that case.
*/
- if (!(acpi_gbl_FADT.flags & ACPI_FADT_LOW_POWER_S0)) {
+ if (!(acpi_gbl_FADT.flags & ACPI_FADT_LOW_POWER_S0))
dev_warn_once(adev->dev,
"Power consumption will be higher as BIOS has not been configured for suspend-to-idle.\n"
"To use suspend-to-idle change the sleep mode in BIOS setup.\n");
- return false;
- }
#if !IS_ENABLED(CONFIG_AMD_PMC)
dev_warn_once(adev->dev,
"Power consumption will be higher as the kernel has not been compiled with CONFIG_AMD_PMC.\n");
- return false;
-#else
- return true;
#endif /* CONFIG_AMD_PMC */
+ return true;
}
#endif /* CONFIG_SUSPEND */
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_amdkfd.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_amdkfd.c
index 5d9a34601a1a..0385f7f69278 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_amdkfd.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_amdkfd.c
@@ -96,7 +96,7 @@ static void amdgpu_doorbell_get_kfd_info(struct amdgpu_device *adev,
size_t *start_offset)
{
/*
- * The first num_doorbells are used by amdgpu.
+ * The first num_kernel_doorbells are used by amdgpu.
* amdkfd takes whatever's left in the aperture.
*/
if (adev->enable_mes) {
@@ -109,11 +109,11 @@ static void amdgpu_doorbell_get_kfd_info(struct amdgpu_device *adev,
*aperture_base = adev->doorbell.base;
*aperture_size = 0;
*start_offset = 0;
- } else if (adev->doorbell.size > adev->doorbell.num_doorbells *
+ } else if (adev->doorbell.size > adev->doorbell.num_kernel_doorbells *
sizeof(u32)) {
*aperture_base = adev->doorbell.base;
*aperture_size = adev->doorbell.size;
- *start_offset = adev->doorbell.num_doorbells * sizeof(u32);
+ *start_offset = adev->doorbell.num_kernel_doorbells * sizeof(u32);
} else {
*aperture_base = 0;
*aperture_size = 0;
@@ -195,7 +195,7 @@ void amdgpu_amdkfd_device_init(struct amdgpu_device *adev)
}
adev->kfd.init_complete = kgd2kfd_device_init(adev->kfd.dev,
- adev_to_drm(adev), &gpu_resources);
+ &gpu_resources);
amdgpu_amdkfd_total_mem_size += adev->gmc.real_vram_size;
@@ -673,7 +673,7 @@ int amdgpu_amdkfd_submit_ib(struct amdgpu_device *adev,
goto err;
}
- ret = amdgpu_job_alloc(adev, 1, &job, NULL);
+ ret = amdgpu_job_alloc(adev, NULL, NULL, NULL, 1, &job);
if (ret)
goto err;
@@ -760,9 +760,7 @@ bool amdgpu_amdkfd_have_atomics_support(struct amdgpu_device *adev)
void amdgpu_amdkfd_ras_poison_consumption_handler(struct amdgpu_device *adev, bool reset)
{
- struct ras_err_data err_data = {0, 0, 0, NULL};
-
- amdgpu_umc_poison_handler(adev, &err_data, reset);
+ amdgpu_umc_poison_handler(adev, reset);
}
bool amdgpu_amdkfd_ras_query_utcl2_poison_status(struct amdgpu_device *adev)
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_amdkfd.h b/drivers/gpu/drm/amd/amdgpu/amdgpu_amdkfd.h
index 647220a8762d..01ba3589b60a 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_amdkfd.h
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_amdkfd.h
@@ -29,6 +29,7 @@
#include <linux/mm.h>
#include <linux/kthread.h>
#include <linux/workqueue.h>
+#include <linux/mmu_notifier.h>
#include <kgd_kfd_interface.h>
#include <drm/ttm/ttm_execbuf_util.h>
#include "amdgpu_sync.h"
@@ -65,6 +66,7 @@ struct kgd_mem {
struct mutex lock;
struct amdgpu_bo *bo;
struct dma_buf *dmabuf;
+ struct hmm_range *range;
struct list_head attachments;
/* protected by amdkfd_process_info.lock */
struct ttm_validate_buffer validate_list;
@@ -75,7 +77,7 @@ struct kgd_mem {
uint32_t alloc_flags;
- atomic_t invalid;
+ uint32_t invalid;
struct amdkfd_process_info *process_info;
struct amdgpu_sync sync;
@@ -95,7 +97,7 @@ struct amdgpu_amdkfd_fence {
struct amdgpu_kfd_dev {
struct kfd_dev *dev;
- uint64_t vram_used;
+ int64_t vram_used;
uint64_t vram_used_aligned;
bool init_complete;
struct work_struct reset_work;
@@ -131,7 +133,8 @@ struct amdkfd_process_info {
struct amdgpu_amdkfd_fence *eviction_fence;
/* MMU-notifier related fields */
- atomic_t evicted_bos;
+ struct mutex notifier_lock;
+ uint32_t evicted_bos;
struct delayed_work restore_userptr_work;
struct pid *pid;
bool block_mmu_notifications;
@@ -180,7 +183,8 @@ int kfd_debugfs_kfd_mem_limits(struct seq_file *m, void *data);
bool amdkfd_fence_check_mm(struct dma_fence *f, struct mm_struct *mm);
struct amdgpu_amdkfd_fence *to_amdgpu_amdkfd_fence(struct dma_fence *f);
int amdgpu_amdkfd_remove_fence_on_pt_pd_bos(struct amdgpu_bo *bo);
-int amdgpu_amdkfd_evict_userptr(struct kgd_mem *mem, struct mm_struct *mm);
+int amdgpu_amdkfd_evict_userptr(struct mmu_interval_notifier *mni,
+ unsigned long cur_seq, struct kgd_mem *mem);
#else
static inline
bool amdkfd_fence_check_mm(struct dma_fence *f, struct mm_struct *mm)
@@ -201,7 +205,8 @@ int amdgpu_amdkfd_remove_fence_on_pt_pd_bos(struct amdgpu_bo *bo)
}
static inline
-int amdgpu_amdkfd_evict_userptr(struct kgd_mem *mem, struct mm_struct *mm)
+int amdgpu_amdkfd_evict_userptr(struct mmu_interval_notifier *mni,
+ unsigned long cur_seq, struct kgd_mem *mem)
{
return 0;
}
@@ -265,8 +270,10 @@ int amdgpu_amdkfd_get_pcie_bandwidth_mbytes(struct amdgpu_device *adev, bool is_
(&((struct amdgpu_fpriv *) \
((struct drm_file *)(drm_priv))->driver_priv)->vm)
+int amdgpu_amdkfd_gpuvm_set_vm_pasid(struct amdgpu_device *adev,
+ struct amdgpu_vm *avm, u32 pasid);
int amdgpu_amdkfd_gpuvm_acquire_process_vm(struct amdgpu_device *adev,
- struct file *filp, u32 pasid,
+ struct amdgpu_vm *avm,
void **process_info,
struct dma_fence **ef);
void amdgpu_amdkfd_gpuvm_release_process_vm(struct amdgpu_device *adev,
@@ -301,6 +308,8 @@ int amdgpu_amdkfd_gpuvm_import_dmabuf(struct amdgpu_device *adev,
uint64_t va, void *drm_priv,
struct kgd_mem **mem, uint64_t *size,
uint64_t *mmap_offset);
+int amdgpu_amdkfd_gpuvm_export_dmabuf(struct kgd_mem *mem,
+ struct dma_buf **dmabuf);
int amdgpu_amdkfd_get_tile_config(struct amdgpu_device *adev,
struct tile_config *config);
void amdgpu_amdkfd_ras_poison_consumption_handler(struct amdgpu_device *adev,
@@ -353,7 +362,6 @@ int kgd2kfd_init(void);
void kgd2kfd_exit(void);
struct kfd_dev *kgd2kfd_probe(struct amdgpu_device *adev, bool vf);
bool kgd2kfd_device_init(struct kfd_dev *kfd,
- struct drm_device *ddev,
const struct kgd2kfd_shared_resources *gpu_resources);
void kgd2kfd_device_exit(struct kfd_dev *kfd);
void kgd2kfd_suspend(struct kfd_dev *kfd, bool run_pm);
@@ -381,7 +389,7 @@ struct kfd_dev *kgd2kfd_probe(struct amdgpu_device *adev, bool vf)
}
static inline
-bool kgd2kfd_device_init(struct kfd_dev *kfd, struct drm_device *ddev,
+bool kgd2kfd_device_init(struct kfd_dev *kfd,
const struct kgd2kfd_shared_resources *gpu_resources)
{
return false;
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_amdkfd_aldebaran.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_amdkfd_aldebaran.c
index c8935d718207..4485bb29bec9 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_amdkfd_aldebaran.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_amdkfd_aldebaran.c
@@ -41,5 +41,6 @@ const struct kfd2kgd_calls aldebaran_kfd2kgd = {
.get_atc_vmid_pasid_mapping_info =
kgd_gfx_v9_get_atc_vmid_pasid_mapping_info,
.set_vm_context_page_table_base = kgd_gfx_v9_set_vm_context_page_table_base,
+ .get_cu_occupancy = kgd_gfx_v9_get_cu_occupancy,
.program_trap_handler_settings = kgd_gfx_v9_program_trap_handler_settings
};
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_amdkfd_gfx_v9.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_amdkfd_gfx_v9.c
index 81e3b528bbc9..e92b93557c13 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_amdkfd_gfx_v9.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_amdkfd_gfx_v9.c
@@ -787,7 +787,7 @@ void kgd_gfx_v9_get_cu_occupancy(struct amdgpu_device *adev, int pasid,
for (se_idx = 0; se_idx < se_cnt; se_idx++) {
for (sh_idx = 0; sh_idx < sh_cnt; sh_idx++) {
- gfx_v9_0_select_se_sh(adev, se_idx, sh_idx, 0xffffffff);
+ amdgpu_gfx_select_se_sh(adev, se_idx, sh_idx, 0xffffffff);
queue_map = RREG32_SOC15(GC, 0, mmSPI_CSQ_WF_ACTIVE_STATUS);
/*
@@ -820,7 +820,7 @@ void kgd_gfx_v9_get_cu_occupancy(struct amdgpu_device *adev, int pasid,
}
}
- gfx_v9_0_select_se_sh(adev, 0xffffffff, 0xffffffff, 0xffffffff);
+ amdgpu_gfx_select_se_sh(adev, 0xffffffff, 0xffffffff, 0xffffffff);
soc15_grbm_select(adev, 0, 0, 0, 0);
unlock_spi_csq_mutexes(adev);
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_amdkfd_gpuvm.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_amdkfd_gpuvm.c
index 84f44f7e4111..83a83ced2439 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_amdkfd_gpuvm.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_amdkfd_gpuvm.c
@@ -25,10 +25,12 @@
#include <linux/pagemap.h>
#include <linux/sched/mm.h>
#include <linux/sched/task.h>
+#include <drm/ttm/ttm_tt.h>
#include "amdgpu_object.h"
#include "amdgpu_gem.h"
#include "amdgpu_vm.h"
+#include "amdgpu_hmm.h"
#include "amdgpu_amdkfd.h"
#include "amdgpu_dma_buf.h"
#include <uapi/linux/kfd_ioctl.h>
@@ -80,6 +82,25 @@ static bool kfd_mem_is_attached(struct amdgpu_vm *avm,
return false;
}
+/**
+ * reuse_dmamap() - Check whether adev can share the original
+ * userptr BO
+ *
+ * If both adev and bo_adev are in direct mapping or
+ * in the same iommu group, they can share the original BO.
+ *
+ * @adev: Device to which can or cannot share the original BO
+ * @bo_adev: Device to which allocated BO belongs to
+ *
+ * Return: returns true if adev can share original userptr BO,
+ * false otherwise.
+ */
+static bool reuse_dmamap(struct amdgpu_device *adev, struct amdgpu_device *bo_adev)
+{
+ return (adev->ram_is_direct_mapped && bo_adev->ram_is_direct_mapped) ||
+ (adev->dev->iommu_group == bo_adev->dev->iommu_group);
+}
+
/* Set memory usage limits. Current, limits are
* System (TTM + userptr) memory - 15/16th System RAM
* TTM memory - 3/8th System RAM
@@ -171,9 +192,7 @@ int amdgpu_amdkfd_reserve_mem_limit(struct amdgpu_device *adev,
(kfd_mem_limit.ttm_mem_used + ttm_mem_needed >
kfd_mem_limit.max_ttm_mem_limit) ||
(adev && adev->kfd.vram_used + vram_needed >
- adev->gmc.real_vram_size -
- atomic64_read(&adev->vram_pin_size) -
- reserved_for_pt)) {
+ adev->gmc.real_vram_size - reserved_for_pt)) {
ret = -ENOMEM;
goto release;
}
@@ -253,15 +272,19 @@ create_dmamap_sg_bo(struct amdgpu_device *adev,
struct kgd_mem *mem, struct amdgpu_bo **bo_out)
{
struct drm_gem_object *gem_obj;
- int ret, align;
+ int ret;
+ uint64_t flags = 0;
ret = amdgpu_bo_reserve(mem->bo, false);
if (ret)
return ret;
- align = 1;
- ret = amdgpu_gem_object_create(adev, mem->bo->tbo.base.size, align,
- AMDGPU_GEM_DOMAIN_CPU, AMDGPU_GEM_CREATE_PREEMPTIBLE,
+ if (mem->alloc_flags & KFD_IOC_ALLOC_MEM_FLAGS_USERPTR)
+ flags |= mem->bo->flags & (AMDGPU_GEM_CREATE_COHERENT |
+ AMDGPU_GEM_CREATE_UNCACHED);
+
+ ret = amdgpu_gem_object_create(adev, mem->bo->tbo.base.size, 1,
+ AMDGPU_GEM_DOMAIN_CPU, AMDGPU_GEM_CREATE_PREEMPTIBLE | flags,
ttm_bo_type_sg, mem->bo->tbo.base.resv, &gem_obj);
amdgpu_bo_unreserve(mem->bo);
@@ -405,63 +428,15 @@ static int vm_update_pds(struct amdgpu_vm *vm, struct amdgpu_sync *sync)
static uint64_t get_pte_flags(struct amdgpu_device *adev, struct kgd_mem *mem)
{
- struct amdgpu_device *bo_adev = amdgpu_ttm_adev(mem->bo->tbo.bdev);
- bool coherent = mem->alloc_flags & KFD_IOC_ALLOC_MEM_FLAGS_COHERENT;
- bool uncached = mem->alloc_flags & KFD_IOC_ALLOC_MEM_FLAGS_UNCACHED;
- uint32_t mapping_flags;
- uint64_t pte_flags;
- bool snoop = false;
+ uint32_t mapping_flags = AMDGPU_VM_PAGE_READABLE |
+ AMDGPU_VM_MTYPE_DEFAULT;
- mapping_flags = AMDGPU_VM_PAGE_READABLE;
if (mem->alloc_flags & KFD_IOC_ALLOC_MEM_FLAGS_WRITABLE)
mapping_flags |= AMDGPU_VM_PAGE_WRITEABLE;
if (mem->alloc_flags & KFD_IOC_ALLOC_MEM_FLAGS_EXECUTABLE)
mapping_flags |= AMDGPU_VM_PAGE_EXECUTABLE;
- switch (adev->asic_type) {
- case CHIP_ARCTURUS:
- case CHIP_ALDEBARAN:
- if (mem->alloc_flags & KFD_IOC_ALLOC_MEM_FLAGS_VRAM) {
- if (bo_adev == adev) {
- if (uncached)
- mapping_flags |= AMDGPU_VM_MTYPE_UC;
- else if (coherent)
- mapping_flags |= AMDGPU_VM_MTYPE_CC;
- else
- mapping_flags |= AMDGPU_VM_MTYPE_RW;
- if (adev->asic_type == CHIP_ALDEBARAN &&
- adev->gmc.xgmi.connected_to_cpu)
- snoop = true;
- } else {
- if (uncached || coherent)
- mapping_flags |= AMDGPU_VM_MTYPE_UC;
- else
- mapping_flags |= AMDGPU_VM_MTYPE_NC;
- if (amdgpu_xgmi_same_hive(adev, bo_adev))
- snoop = true;
- }
- } else {
- if (uncached || coherent)
- mapping_flags |= AMDGPU_VM_MTYPE_UC;
- else
- mapping_flags |= AMDGPU_VM_MTYPE_NC;
- snoop = true;
- }
- break;
- default:
- if (uncached || coherent)
- mapping_flags |= AMDGPU_VM_MTYPE_UC;
- else
- mapping_flags |= AMDGPU_VM_MTYPE_NC;
-
- if (!(mem->alloc_flags & KFD_IOC_ALLOC_MEM_FLAGS_VRAM))
- snoop = true;
- }
-
- pte_flags = amdgpu_gem_va_map_flags(adev, mapping_flags);
- pte_flags |= snoop ? AMDGPU_PTE_SNOOPED : 0;
-
- return pte_flags;
+ return amdgpu_gem_va_map_flags(adev, mapping_flags);
}
/**
@@ -529,9 +504,6 @@ kfd_mem_dmamap_userptr(struct kgd_mem *mem,
if (unlikely(ret))
goto release_sg;
- drm_prime_sg_to_dma_addr_array(ttm->sg, ttm->dma_address,
- ttm->num_pages);
-
amdgpu_bo_placement_from_domain(bo, AMDGPU_GEM_DOMAIN_GTT);
ret = ttm_bo_validate(&bo->tbo, &bo->placement, &ctx);
if (ret)
@@ -759,6 +731,21 @@ kfd_mem_dmaunmap_attachment(struct kgd_mem *mem,
}
}
+static int kfd_mem_export_dmabuf(struct kgd_mem *mem)
+{
+ if (!mem->dmabuf) {
+ struct dma_buf *ret = amdgpu_gem_prime_export(
+ &mem->bo->tbo.base,
+ mem->alloc_flags & KFD_IOC_ALLOC_MEM_FLAGS_WRITABLE ?
+ DRM_RDWR : 0);
+ if (IS_ERR(ret))
+ return PTR_ERR(ret);
+ mem->dmabuf = ret;
+ }
+
+ return 0;
+}
+
static int
kfd_mem_attach_dmabuf(struct amdgpu_device *adev, struct kgd_mem *mem,
struct amdgpu_bo **bo)
@@ -766,16 +753,9 @@ kfd_mem_attach_dmabuf(struct amdgpu_device *adev, struct kgd_mem *mem,
struct drm_gem_object *gobj;
int ret;
- if (!mem->dmabuf) {
- mem->dmabuf = amdgpu_gem_prime_export(&mem->bo->tbo.base,
- mem->alloc_flags & KFD_IOC_ALLOC_MEM_FLAGS_WRITABLE ?
- DRM_RDWR : 0);
- if (IS_ERR(mem->dmabuf)) {
- ret = PTR_ERR(mem->dmabuf);
- mem->dmabuf = NULL;
- return ret;
- }
- }
+ ret = kfd_mem_export_dmabuf(mem);
+ if (ret)
+ return ret;
gobj = amdgpu_gem_prime_import(adev_to_drm(adev), mem->dmabuf);
if (IS_ERR(gobj))
@@ -845,11 +825,11 @@ static int kfd_mem_attach(struct amdgpu_device *adev, struct kgd_mem *mem,
va + bo_size, vm);
if ((adev == bo_adev && !(mem->alloc_flags & KFD_IOC_ALLOC_MEM_FLAGS_MMIO_REMAP)) ||
- (amdgpu_ttm_tt_get_usermm(mem->bo->tbo.ttm) && adev->ram_is_direct_mapped) ||
- same_hive) {
+ (amdgpu_ttm_tt_get_usermm(mem->bo->tbo.ttm) && reuse_dmamap(adev, bo_adev)) ||
+ same_hive) {
/* Mappings on the local GPU, or VRAM mappings in the
- * local hive, or userptr mapping IOMMU direct map mode
- * share the original BO
+ * local hive, or userptr mapping can reuse dma map
+ * address space share the original BO
*/
attachment[i]->type = KFD_MEM_ATT_SHARED;
bo[i] = mem->bo;
@@ -988,6 +968,7 @@ static int init_user_pages(struct kgd_mem *mem, uint64_t user_addr,
struct amdkfd_process_info *process_info = mem->process_info;
struct amdgpu_bo *bo = mem->bo;
struct ttm_operation_ctx ctx = { true, false };
+ struct hmm_range *range;
int ret = 0;
mutex_lock(&process_info->lock);
@@ -998,7 +979,7 @@ static int init_user_pages(struct kgd_mem *mem, uint64_t user_addr,
goto out;
}
- ret = amdgpu_mn_register(bo, user_addr);
+ ret = amdgpu_hmm_register(bo, user_addr);
if (ret) {
pr_err("%s: Failed to register MMU notifier: %d\n",
__func__, ret);
@@ -1012,12 +993,14 @@ static int init_user_pages(struct kgd_mem *mem, uint64_t user_addr,
* later stage when it is scheduled by another ioctl called by
* CRIU master process for the target pid for restore.
*/
- atomic_inc(&mem->invalid);
+ mutex_lock(&process_info->notifier_lock);
+ mem->invalid++;
+ mutex_unlock(&process_info->notifier_lock);
mutex_unlock(&process_info->lock);
return 0;
}
- ret = amdgpu_ttm_tt_get_user_pages(bo, bo->tbo.ttm->pages);
+ ret = amdgpu_ttm_tt_get_user_pages(bo, bo->tbo.ttm->pages, &range);
if (ret) {
pr_err("%s: Failed to get user pages: %d\n", __func__, ret);
goto unregister_out;
@@ -1035,10 +1018,10 @@ static int init_user_pages(struct kgd_mem *mem, uint64_t user_addr,
amdgpu_bo_unreserve(bo);
release_out:
- amdgpu_ttm_tt_get_user_pages_done(bo->tbo.ttm);
+ amdgpu_ttm_tt_get_user_pages_done(bo->tbo.ttm, range);
unregister_out:
if (ret)
- amdgpu_mn_unregister(bo);
+ amdgpu_hmm_unregister(bo);
out:
mutex_unlock(&process_info->lock);
return ret;
@@ -1349,6 +1332,7 @@ static int init_kfd_vm(struct amdgpu_vm *vm, void **process_info,
return -ENOMEM;
mutex_init(&info->lock);
+ mutex_init(&info->notifier_lock);
INIT_LIST_HEAD(&info->vm_list_head);
INIT_LIST_HEAD(&info->kfd_bo_list);
INIT_LIST_HEAD(&info->userptr_valid_list);
@@ -1365,7 +1349,6 @@ static int init_kfd_vm(struct amdgpu_vm *vm, void **process_info,
}
info->pid = get_task_pid(current->group_leader, PIDTYPE_PID);
- atomic_set(&info->evicted_bos, 0);
INIT_DELAYED_WORK(&info->restore_userptr_work,
amdgpu_amdkfd_restore_userptr_worker);
@@ -1420,6 +1403,7 @@ reserve_pd_fail:
put_pid(info->pid);
create_evict_fence_fail:
mutex_destroy(&info->lock);
+ mutex_destroy(&info->notifier_lock);
kfree(info);
}
return ret;
@@ -1474,24 +1458,12 @@ static void amdgpu_amdkfd_gpuvm_unpin_bo(struct amdgpu_bo *bo)
amdgpu_bo_unreserve(bo);
}
-int amdgpu_amdkfd_gpuvm_acquire_process_vm(struct amdgpu_device *adev,
- struct file *filp, u32 pasid,
- void **process_info,
- struct dma_fence **ef)
+int amdgpu_amdkfd_gpuvm_set_vm_pasid(struct amdgpu_device *adev,
+ struct amdgpu_vm *avm, u32 pasid)
+
{
- struct amdgpu_fpriv *drv_priv;
- struct amdgpu_vm *avm;
int ret;
- ret = amdgpu_file_to_fpriv(filp, &drv_priv);
- if (ret)
- return ret;
- avm = &drv_priv->vm;
-
- /* Already a compute VM? */
- if (avm->process_info)
- return -EINVAL;
-
/* Free the original amdgpu allocated pasid,
* will be replaced with kfd allocated pasid.
*/
@@ -1500,14 +1472,29 @@ int amdgpu_amdkfd_gpuvm_acquire_process_vm(struct amdgpu_device *adev,
amdgpu_vm_set_pasid(adev, avm, 0);
}
- /* Convert VM into a compute VM */
- ret = amdgpu_vm_make_compute(adev, avm);
+ ret = amdgpu_vm_set_pasid(adev, avm, pasid);
if (ret)
return ret;
- ret = amdgpu_vm_set_pasid(adev, avm, pasid);
+ return 0;
+}
+
+int amdgpu_amdkfd_gpuvm_acquire_process_vm(struct amdgpu_device *adev,
+ struct amdgpu_vm *avm,
+ void **process_info,
+ struct dma_fence **ef)
+{
+ int ret;
+
+ /* Already a compute VM? */
+ if (avm->process_info)
+ return -EINVAL;
+
+ /* Convert VM into a compute VM */
+ ret = amdgpu_vm_make_compute(adev, avm);
if (ret)
return ret;
+
/* Initialize KFD part of the VM and process info */
ret = init_kfd_vm(avm, process_info, ef);
if (ret)
@@ -1544,6 +1531,7 @@ void amdgpu_amdkfd_gpuvm_destroy_cb(struct amdgpu_device *adev,
cancel_delayed_work_sync(&process_info->restore_userptr_work);
put_pid(process_info->pid);
mutex_destroy(&process_info->lock);
+ mutex_destroy(&process_info->notifier_lock);
kfree(process_info);
}
}
@@ -1596,7 +1584,9 @@ int amdgpu_amdkfd_criu_resume(void *p)
mutex_lock(&pinfo->lock);
pr_debug("scheduling work\n");
- atomic_inc(&pinfo->evicted_bos);
+ mutex_lock(&pinfo->notifier_lock);
+ pinfo->evicted_bos++;
+ mutex_unlock(&pinfo->notifier_lock);
if (!READ_ONCE(pinfo->block_mmu_notifications)) {
ret = -EINVAL;
goto out_unlock;
@@ -1613,7 +1603,7 @@ size_t amdgpu_amdkfd_get_available_memory(struct amdgpu_device *adev)
{
uint64_t reserved_for_pt =
ESTIMATE_PT_SIZE(amdgpu_amdkfd_total_mem_size);
- size_t available;
+ ssize_t available;
spin_lock(&kfd_mem_limit.mem_limit_lock);
available = adev->gmc.real_vram_size
@@ -1622,6 +1612,9 @@ size_t amdgpu_amdkfd_get_available_memory(struct amdgpu_device *adev)
- reserved_for_pt;
spin_unlock(&kfd_mem_limit.mem_limit_lock);
+ if (available < 0)
+ available = 0;
+
return ALIGN_DOWN(available, VRAM_AVAILABLITY_ALIGN);
}
@@ -1637,6 +1630,7 @@ int amdgpu_amdkfd_gpuvm_alloc_memory_of_gpu(
struct amdgpu_bo *bo;
struct drm_gem_object *gobj = NULL;
u32 domain, alloc_domain;
+ uint64_t aligned_size;
u64 alloc_flags;
int ret;
@@ -1673,6 +1667,11 @@ int amdgpu_amdkfd_gpuvm_alloc_memory_of_gpu(
}
}
+ if (flags & KFD_IOC_ALLOC_MEM_FLAGS_COHERENT)
+ alloc_flags |= AMDGPU_GEM_CREATE_COHERENT;
+ if (flags & KFD_IOC_ALLOC_MEM_FLAGS_UNCACHED)
+ alloc_flags |= AMDGPU_GEM_CREATE_UNCACHED;
+
*mem = kzalloc(sizeof(struct kgd_mem), GFP_KERNEL);
if (!*mem) {
ret = -ENOMEM;
@@ -1687,22 +1686,23 @@ int amdgpu_amdkfd_gpuvm_alloc_memory_of_gpu(
* the memory.
*/
if ((*mem)->aql_queue)
- size = size >> 1;
+ size >>= 1;
+ aligned_size = PAGE_ALIGN(size);
(*mem)->alloc_flags = flags;
amdgpu_sync_create(&(*mem)->sync);
- ret = amdgpu_amdkfd_reserve_mem_limit(adev, size, flags);
+ ret = amdgpu_amdkfd_reserve_mem_limit(adev, aligned_size, flags);
if (ret) {
pr_debug("Insufficient memory\n");
goto err_reserve_limit;
}
pr_debug("\tcreate BO VA 0x%llx size 0x%llx domain %s\n",
- va, size, domain_string(alloc_domain));
+ va, (*mem)->aql_queue ? size << 1 : size, domain_string(alloc_domain));
- ret = amdgpu_gem_object_create(adev, size, 1, alloc_domain, alloc_flags,
+ ret = amdgpu_gem_object_create(adev, aligned_size, 1, alloc_domain, alloc_flags,
bo_type, NULL, &gobj);
if (ret) {
pr_debug("Failed to create BO on domain %s. ret %d\n",
@@ -1759,7 +1759,7 @@ err_node_allow:
/* Don't unreserve system mem limit twice */
goto err_reserve_limit;
err_bo_create:
- amdgpu_amdkfd_unreserve_mem_limit(adev, size, flags);
+ amdgpu_amdkfd_unreserve_mem_limit(adev, aligned_size, flags);
err_reserve_limit:
mutex_destroy(&(*mem)->lock);
if (gobj)
@@ -1816,8 +1816,13 @@ int amdgpu_amdkfd_gpuvm_free_memory_of_gpu(
list_del(&bo_list_entry->head);
mutex_unlock(&process_info->lock);
- /* No more MMU notifiers */
- amdgpu_mn_unregister(mem->bo);
+ /* Cleanup user pages and MMU notifiers */
+ if (amdgpu_ttm_tt_get_usermm(mem->bo->tbo.ttm)) {
+ amdgpu_hmm_unregister(mem->bo);
+ mutex_lock(&process_info->notifier_lock);
+ amdgpu_ttm_tt_discard_user_pages(mem->bo->tbo.ttm, mem->range);
+ mutex_unlock(&process_info->notifier_lock);
+ }
ret = reserve_bo_and_cond_vms(mem, NULL, BO_VM_ALL, &ctx);
if (unlikely(ret))
@@ -1907,14 +1912,14 @@ int amdgpu_amdkfd_gpuvm_map_memory_to_gpu(
*/
mutex_lock(&mem->process_info->lock);
- /* Lock mmap-sem. If we find an invalid userptr BO, we can be
+ /* Lock notifier lock. If we find an invalid userptr BO, we can be
* sure that the MMU notifier is no longer running
* concurrently and the queues are actually stopped
*/
if (amdgpu_ttm_tt_get_usermm(bo->tbo.ttm)) {
- mmap_write_lock(current->mm);
- is_invalid_userptr = atomic_read(&mem->invalid);
- mmap_write_unlock(current->mm);
+ mutex_lock(&mem->process_info->notifier_lock);
+ is_invalid_userptr = !!mem->invalid;
+ mutex_unlock(&mem->process_info->notifier_lock);
}
mutex_lock(&mem->lock);
@@ -2114,7 +2119,7 @@ int amdgpu_amdkfd_map_gtt_bo_to_gart(struct amdgpu_device *adev, struct amdgpu_b
}
amdgpu_amdkfd_remove_eviction_fence(
- bo, bo->kfd_bo->process_info->eviction_fence);
+ bo, bo->vm_bo->vm->process_info->eviction_fence);
amdgpu_bo_unreserve(bo);
@@ -2236,30 +2241,27 @@ int amdgpu_amdkfd_gpuvm_import_dmabuf(struct amdgpu_device *adev,
struct amdgpu_bo *bo;
int ret;
- if (dma_buf->ops != &amdgpu_dmabuf_ops)
- /* Can't handle non-graphics buffers */
- return -EINVAL;
-
- obj = dma_buf->priv;
- if (drm_to_adev(obj->dev) != adev)
- /* Can't handle buffers from other devices */
- return -EINVAL;
+ obj = amdgpu_gem_prime_import(adev_to_drm(adev), dma_buf);
+ if (IS_ERR(obj))
+ return PTR_ERR(obj);
bo = gem_to_amdgpu_bo(obj);
if (!(bo->preferred_domains & (AMDGPU_GEM_DOMAIN_VRAM |
- AMDGPU_GEM_DOMAIN_GTT)))
+ AMDGPU_GEM_DOMAIN_GTT))) {
/* Only VRAM and GTT BOs are supported */
- return -EINVAL;
+ ret = -EINVAL;
+ goto err_put_obj;
+ }
*mem = kzalloc(sizeof(struct kgd_mem), GFP_KERNEL);
- if (!*mem)
- return -ENOMEM;
+ if (!*mem) {
+ ret = -ENOMEM;
+ goto err_put_obj;
+ }
ret = drm_vma_node_allow(&obj->vma_node, drm_priv);
- if (ret) {
- kfree(mem);
- return ret;
- }
+ if (ret)
+ goto err_free_mem;
if (size)
*size = amdgpu_bo_size(bo);
@@ -2276,7 +2278,8 @@ int amdgpu_amdkfd_gpuvm_import_dmabuf(struct amdgpu_device *adev,
| KFD_IOC_ALLOC_MEM_FLAGS_WRITABLE
| KFD_IOC_ALLOC_MEM_FLAGS_EXECUTABLE;
- drm_gem_object_get(&bo->tbo.base);
+ get_dma_buf(dma_buf);
+ (*mem)->dmabuf = dma_buf;
(*mem)->bo = bo;
(*mem)->va = va;
(*mem)->domain = (bo->preferred_domains & AMDGPU_GEM_DOMAIN_VRAM) ?
@@ -2288,40 +2291,67 @@ int amdgpu_amdkfd_gpuvm_import_dmabuf(struct amdgpu_device *adev,
(*mem)->is_imported = true;
return 0;
+
+err_free_mem:
+ kfree(*mem);
+err_put_obj:
+ drm_gem_object_put(obj);
+ return ret;
+}
+
+int amdgpu_amdkfd_gpuvm_export_dmabuf(struct kgd_mem *mem,
+ struct dma_buf **dma_buf)
+{
+ int ret;
+
+ mutex_lock(&mem->lock);
+ ret = kfd_mem_export_dmabuf(mem);
+ if (ret)
+ goto out;
+
+ get_dma_buf(mem->dmabuf);
+ *dma_buf = mem->dmabuf;
+out:
+ mutex_unlock(&mem->lock);
+ return ret;
}
/* Evict a userptr BO by stopping the queues if necessary
*
* Runs in MMU notifier, may be in RECLAIM_FS context. This means it
* cannot do any memory allocations, and cannot take any locks that
- * are held elsewhere while allocating memory. Therefore this is as
- * simple as possible, using atomic counters.
+ * are held elsewhere while allocating memory.
*
* It doesn't do anything to the BO itself. The real work happens in
* restore, where we get updated page addresses. This function only
* ensures that GPU access to the BO is stopped.
*/
-int amdgpu_amdkfd_evict_userptr(struct kgd_mem *mem,
- struct mm_struct *mm)
+int amdgpu_amdkfd_evict_userptr(struct mmu_interval_notifier *mni,
+ unsigned long cur_seq, struct kgd_mem *mem)
{
struct amdkfd_process_info *process_info = mem->process_info;
- int evicted_bos;
int r = 0;
- /* Do not process MMU notifications until stage-4 IOCTL is received */
+ /* Do not process MMU notifications during CRIU restore until
+ * KFD_CRIU_OP_RESUME IOCTL is received
+ */
if (READ_ONCE(process_info->block_mmu_notifications))
return 0;
- atomic_inc(&mem->invalid);
- evicted_bos = atomic_inc_return(&process_info->evicted_bos);
- if (evicted_bos == 1) {
+ mutex_lock(&process_info->notifier_lock);
+ mmu_interval_set_seq(mni, cur_seq);
+
+ mem->invalid++;
+ if (++process_info->evicted_bos == 1) {
/* First eviction, stop the queues */
- r = kgd2kfd_quiesce_mm(mm, KFD_QUEUE_EVICTION_TRIGGER_USERPTR);
+ r = kgd2kfd_quiesce_mm(mni->mm,
+ KFD_QUEUE_EVICTION_TRIGGER_USERPTR);
if (r)
pr_err("Failed to quiesce KFD\n");
schedule_delayed_work(&process_info->restore_userptr_work,
msecs_to_jiffies(AMDGPU_USERPTR_RESTORE_DELAY_MS));
}
+ mutex_unlock(&process_info->notifier_lock);
return r;
}
@@ -2338,51 +2368,58 @@ static int update_invalid_user_pages(struct amdkfd_process_info *process_info,
struct kgd_mem *mem, *tmp_mem;
struct amdgpu_bo *bo;
struct ttm_operation_ctx ctx = { false, false };
- int invalid, ret;
+ uint32_t invalid;
+ int ret = 0;
- /* Move all invalidated BOs to the userptr_inval_list and
- * release their user pages by migration to the CPU domain
- */
+ mutex_lock(&process_info->notifier_lock);
+
+ /* Move all invalidated BOs to the userptr_inval_list */
list_for_each_entry_safe(mem, tmp_mem,
&process_info->userptr_valid_list,
- validate_list.head) {
- if (!atomic_read(&mem->invalid))
- continue; /* BO is still valid */
-
- bo = mem->bo;
-
- if (amdgpu_bo_reserve(bo, true))
- return -EAGAIN;
- amdgpu_bo_placement_from_domain(bo, AMDGPU_GEM_DOMAIN_CPU);
- ret = ttm_bo_validate(&bo->tbo, &bo->placement, &ctx);
- amdgpu_bo_unreserve(bo);
- if (ret) {
- pr_err("%s: Failed to invalidate userptr BO\n",
- __func__);
- return -EAGAIN;
- }
-
- list_move_tail(&mem->validate_list.head,
- &process_info->userptr_inval_list);
- }
-
- if (list_empty(&process_info->userptr_inval_list))
- return 0; /* All evicted userptr BOs were freed */
+ validate_list.head)
+ if (mem->invalid)
+ list_move_tail(&mem->validate_list.head,
+ &process_info->userptr_inval_list);
/* Go through userptr_inval_list and update any invalid user_pages */
list_for_each_entry(mem, &process_info->userptr_inval_list,
validate_list.head) {
- invalid = atomic_read(&mem->invalid);
+ invalid = mem->invalid;
if (!invalid)
/* BO hasn't been invalidated since the last
- * revalidation attempt. Keep its BO list.
+ * revalidation attempt. Keep its page list.
*/
continue;
bo = mem->bo;
+ amdgpu_ttm_tt_discard_user_pages(bo->tbo.ttm, mem->range);
+ mem->range = NULL;
+
+ /* BO reservations and getting user pages (hmm_range_fault)
+ * must happen outside the notifier lock
+ */
+ mutex_unlock(&process_info->notifier_lock);
+
+ /* Move the BO to system (CPU) domain if necessary to unmap
+ * and free the SG table
+ */
+ if (bo->tbo.resource->mem_type != TTM_PL_SYSTEM) {
+ if (amdgpu_bo_reserve(bo, true))
+ return -EAGAIN;
+ amdgpu_bo_placement_from_domain(bo, AMDGPU_GEM_DOMAIN_CPU);
+ ret = ttm_bo_validate(&bo->tbo, &bo->placement, &ctx);
+ amdgpu_bo_unreserve(bo);
+ if (ret) {
+ pr_err("%s: Failed to invalidate userptr BO\n",
+ __func__);
+ return -EAGAIN;
+ }
+ }
+
/* Get updated user pages */
- ret = amdgpu_ttm_tt_get_user_pages(bo, bo->tbo.ttm->pages);
+ ret = amdgpu_ttm_tt_get_user_pages(bo, bo->tbo.ttm->pages,
+ &mem->range);
if (ret) {
pr_debug("Failed %d to get user pages\n", ret);
@@ -2395,30 +2432,32 @@ static int update_invalid_user_pages(struct amdkfd_process_info *process_info,
*/
if (ret != -EFAULT)
return ret;
- } else {
- /*
- * FIXME: Cannot ignore the return code, must hold
- * notifier_lock
- */
- amdgpu_ttm_tt_get_user_pages_done(bo->tbo.ttm);
+ ret = 0;
}
+ mutex_lock(&process_info->notifier_lock);
+
/* Mark the BO as valid unless it was invalidated
* again concurrently.
*/
- if (atomic_cmpxchg(&mem->invalid, invalid, 0) != invalid)
- return -EAGAIN;
+ if (mem->invalid != invalid) {
+ ret = -EAGAIN;
+ goto unlock_out;
+ }
+ mem->invalid = 0;
}
- return 0;
+unlock_out:
+ mutex_unlock(&process_info->notifier_lock);
+
+ return ret;
}
/* Validate invalid userptr BOs
*
- * Validates BOs on the userptr_inval_list, and moves them back to the
- * userptr_valid_list. Also updates GPUVM page tables with new page
- * addresses and waits for the page table updates to complete.
+ * Validates BOs on the userptr_inval_list. Also updates GPUVM page tables
+ * with new page addresses and waits for the page table updates to complete.
*/
static int validate_invalid_user_pages(struct amdkfd_process_info *process_info)
{
@@ -2489,9 +2528,6 @@ static int validate_invalid_user_pages(struct amdkfd_process_info *process_info)
}
}
- list_move_tail(&mem->validate_list.head,
- &process_info->userptr_valid_list);
-
/* Update mapping. If the BO was not validated
* (because we couldn't get user pages), this will
* clear the page table entries, which will result in
@@ -2507,7 +2543,9 @@ static int validate_invalid_user_pages(struct amdkfd_process_info *process_info)
if (ret) {
pr_err("%s: update PTE failed\n", __func__);
/* make sure this gets validated again */
- atomic_inc(&mem->invalid);
+ mutex_lock(&process_info->notifier_lock);
+ mem->invalid++;
+ mutex_unlock(&process_info->notifier_lock);
goto unreserve_out;
}
}
@@ -2527,6 +2565,36 @@ out_no_mem:
return ret;
}
+/* Confirm that all user pages are valid while holding the notifier lock
+ *
+ * Moves valid BOs from the userptr_inval_list back to userptr_val_list.
+ */
+static int confirm_valid_user_pages_locked(struct amdkfd_process_info *process_info)
+{
+ struct kgd_mem *mem, *tmp_mem;
+ int ret = 0;
+
+ list_for_each_entry_safe(mem, tmp_mem,
+ &process_info->userptr_inval_list,
+ validate_list.head) {
+ bool valid = amdgpu_ttm_tt_get_user_pages_done(
+ mem->bo->tbo.ttm, mem->range);
+
+ mem->range = NULL;
+ if (!valid) {
+ WARN(!mem->invalid, "Invalid BO not marked invalid");
+ ret = -EAGAIN;
+ continue;
+ }
+ WARN(mem->invalid, "Valid BO is marked invalid");
+
+ list_move_tail(&mem->validate_list.head,
+ &process_info->userptr_valid_list);
+ }
+
+ return ret;
+}
+
/* Worker callback to restore evicted userptr BOs
*
* Tries to update and validate all userptr BOs. If successful and no
@@ -2541,9 +2609,11 @@ static void amdgpu_amdkfd_restore_userptr_worker(struct work_struct *work)
restore_userptr_work);
struct task_struct *usertask;
struct mm_struct *mm;
- int evicted_bos;
+ uint32_t evicted_bos;
- evicted_bos = atomic_read(&process_info->evicted_bos);
+ mutex_lock(&process_info->notifier_lock);
+ evicted_bos = process_info->evicted_bos;
+ mutex_unlock(&process_info->notifier_lock);
if (!evicted_bos)
return;
@@ -2566,9 +2636,6 @@ static void amdgpu_amdkfd_restore_userptr_worker(struct work_struct *work)
* and we can just restart the queues.
*/
if (!list_empty(&process_info->userptr_inval_list)) {
- if (atomic_read(&process_info->evicted_bos) != evicted_bos)
- goto unlock_out; /* Concurrent eviction, try again */
-
if (validate_invalid_user_pages(process_info))
goto unlock_out;
}
@@ -2577,10 +2644,17 @@ static void amdgpu_amdkfd_restore_userptr_worker(struct work_struct *work)
* be a first eviction that calls quiesce_mm. The eviction
* reference counting inside KFD will handle this case.
*/
- if (atomic_cmpxchg(&process_info->evicted_bos, evicted_bos, 0) !=
- evicted_bos)
- goto unlock_out;
- evicted_bos = 0;
+ mutex_lock(&process_info->notifier_lock);
+ if (process_info->evicted_bos != evicted_bos)
+ goto unlock_notifier_out;
+
+ if (confirm_valid_user_pages_locked(process_info)) {
+ WARN(1, "User pages unexpectedly invalid");
+ goto unlock_notifier_out;
+ }
+
+ process_info->evicted_bos = evicted_bos = 0;
+
if (kgd2kfd_resume_mm(mm)) {
pr_err("%s: Failed to resume KFD\n", __func__);
/* No recovery from this failure. Probably the CP is
@@ -2588,6 +2662,8 @@ static void amdgpu_amdkfd_restore_userptr_worker(struct work_struct *work)
*/
}
+unlock_notifier_out:
+ mutex_unlock(&process_info->notifier_lock);
unlock_out:
mutex_unlock(&process_info->lock);
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_atomfirmware.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_atomfirmware.c
index b81b77a9efa6..ac6fe0ae4609 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_atomfirmware.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_atomfirmware.c
@@ -101,39 +101,101 @@ void amdgpu_atomfirmware_scratch_regs_init(struct amdgpu_device *adev)
}
}
+static int amdgpu_atomfirmware_allocate_fb_v2_1(struct amdgpu_device *adev,
+ struct vram_usagebyfirmware_v2_1 *fw_usage, int *usage_bytes)
+{
+ u32 start_addr, fw_size, drv_size;
+
+ start_addr = le32_to_cpu(fw_usage->start_address_in_kb);
+ fw_size = le16_to_cpu(fw_usage->used_by_firmware_in_kb);
+ drv_size = le16_to_cpu(fw_usage->used_by_driver_in_kb);
+
+ DRM_DEBUG("atom firmware v2_1 requested %08x %dkb fw %dkb drv\n",
+ start_addr,
+ fw_size,
+ drv_size);
+
+ if ((start_addr & ATOM_VRAM_OPERATION_FLAGS_MASK) ==
+ (u32)(ATOM_VRAM_BLOCK_SRIOV_MSG_SHARE_RESERVATION <<
+ ATOM_VRAM_OPERATION_FLAGS_SHIFT)) {
+ /* Firmware request VRAM reservation for SR-IOV */
+ adev->mman.fw_vram_usage_start_offset = (start_addr &
+ (~ATOM_VRAM_OPERATION_FLAGS_MASK)) << 10;
+ adev->mman.fw_vram_usage_size = fw_size << 10;
+ /* Use the default scratch size */
+ *usage_bytes = 0;
+ } else {
+ *usage_bytes = drv_size << 10;
+ }
+ return 0;
+}
+
+static int amdgpu_atomfirmware_allocate_fb_v2_2(struct amdgpu_device *adev,
+ struct vram_usagebyfirmware_v2_2 *fw_usage, int *usage_bytes)
+{
+ u32 fw_start_addr, fw_size, drv_start_addr, drv_size;
+
+ fw_start_addr = le32_to_cpu(fw_usage->fw_region_start_address_in_kb);
+ fw_size = le16_to_cpu(fw_usage->used_by_firmware_in_kb);
+
+ drv_start_addr = le32_to_cpu(fw_usage->driver_region0_start_address_in_kb);
+ drv_size = le32_to_cpu(fw_usage->used_by_driver_region0_in_kb);
+
+ DRM_DEBUG("atom requested fw start at %08x %dkb and drv start at %08x %dkb\n",
+ fw_start_addr,
+ fw_size,
+ drv_start_addr,
+ drv_size);
+
+ if (amdgpu_sriov_vf(adev) &&
+ ((fw_start_addr & (ATOM_VRAM_BLOCK_NEEDS_NO_RESERVATION <<
+ ATOM_VRAM_OPERATION_FLAGS_SHIFT)) == 0)) {
+ /* Firmware request VRAM reservation for SR-IOV */
+ adev->mman.fw_vram_usage_start_offset = (fw_start_addr &
+ (~ATOM_VRAM_OPERATION_FLAGS_MASK)) << 10;
+ adev->mman.fw_vram_usage_size = fw_size << 10;
+ }
+
+ if (amdgpu_sriov_vf(adev) &&
+ ((drv_start_addr & (ATOM_VRAM_BLOCK_NEEDS_NO_RESERVATION <<
+ ATOM_VRAM_OPERATION_FLAGS_SHIFT)) == 0)) {
+ /* driver request VRAM reservation for SR-IOV */
+ adev->mman.drv_vram_usage_start_offset = (drv_start_addr &
+ (~ATOM_VRAM_OPERATION_FLAGS_MASK)) << 10;
+ adev->mman.drv_vram_usage_size = drv_size << 10;
+ }
+
+ *usage_bytes = 0;
+ return 0;
+}
+
int amdgpu_atomfirmware_allocate_fb_scratch(struct amdgpu_device *adev)
{
struct atom_context *ctx = adev->mode_info.atom_context;
int index = get_index_into_master_table(atom_master_list_of_data_tables_v2_1,
vram_usagebyfirmware);
- struct vram_usagebyfirmware_v2_1 *firmware_usage;
- uint32_t start_addr, size;
- uint16_t data_offset;
+ struct vram_usagebyfirmware_v2_1 *fw_usage_v2_1;
+ struct vram_usagebyfirmware_v2_2 *fw_usage_v2_2;
+ u16 data_offset;
+ u8 frev, crev;
int usage_bytes = 0;
- if (amdgpu_atom_parse_data_header(ctx, index, NULL, NULL, NULL, &data_offset)) {
- firmware_usage = (struct vram_usagebyfirmware_v2_1 *)(ctx->bios + data_offset);
- DRM_DEBUG("atom firmware requested %08x %dkb fw %dkb drv\n",
- le32_to_cpu(firmware_usage->start_address_in_kb),
- le16_to_cpu(firmware_usage->used_by_firmware_in_kb),
- le16_to_cpu(firmware_usage->used_by_driver_in_kb));
-
- start_addr = le32_to_cpu(firmware_usage->start_address_in_kb);
- size = le16_to_cpu(firmware_usage->used_by_firmware_in_kb);
-
- if ((uint32_t)(start_addr & ATOM_VRAM_OPERATION_FLAGS_MASK) ==
- (uint32_t)(ATOM_VRAM_BLOCK_SRIOV_MSG_SHARE_RESERVATION <<
- ATOM_VRAM_OPERATION_FLAGS_SHIFT)) {
- /* Firmware request VRAM reservation for SR-IOV */
- adev->mman.fw_vram_usage_start_offset = (start_addr &
- (~ATOM_VRAM_OPERATION_FLAGS_MASK)) << 10;
- adev->mman.fw_vram_usage_size = size << 10;
- /* Use the default scratch size */
- usage_bytes = 0;
- } else {
- usage_bytes = le16_to_cpu(firmware_usage->used_by_driver_in_kb) << 10;
+ if (amdgpu_atom_parse_data_header(ctx, index, NULL, &frev, &crev, &data_offset)) {
+ if (frev == 2 && crev == 1) {
+ fw_usage_v2_1 =
+ (struct vram_usagebyfirmware_v2_1 *)(ctx->bios + data_offset);
+ amdgpu_atomfirmware_allocate_fb_v2_1(adev,
+ fw_usage_v2_1,
+ &usage_bytes);
+ } else if (frev >= 2 && crev >= 2) {
+ fw_usage_v2_2 =
+ (struct vram_usagebyfirmware_v2_2 *)(ctx->bios + data_offset);
+ amdgpu_atomfirmware_allocate_fb_v2_2(adev,
+ fw_usage_v2_2,
+ &usage_bytes);
}
}
+
ctx->scratch_size_bytes = 0;
if (usage_bytes == 0)
usage_bytes = 20 * 1024;
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_bios.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_bios.c
index e363f56c72af..30c28a69e847 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_bios.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_bios.c
@@ -317,6 +317,7 @@ static bool amdgpu_atrm_get_bios(struct amdgpu_device *adev)
if (!found)
return false;
+ pci_dev_put(pdev);
adev->bios = kmalloc(size, GFP_KERNEL);
if (!adev->bios) {
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_bo_list.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_bo_list.c
index 2168163aad2d..252a876b0725 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_bo_list.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_bo_list.c
@@ -209,6 +209,7 @@ void amdgpu_bo_list_get_list(struct amdgpu_bo_list *list,
list_add_tail(&e->tv.head, &bucket[priority]);
e->user_pages = NULL;
+ e->range = NULL;
}
/* Connect the sorted buckets in the output list. */
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_bo_list.h b/drivers/gpu/drm/amd/amdgpu/amdgpu_bo_list.h
index 9caea1688fc3..ededdc01ca28 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_bo_list.h
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_bo_list.h
@@ -26,6 +26,10 @@
#include <drm/ttm/ttm_execbuf_util.h>
#include <drm/amdgpu_drm.h>
+struct hmm_range;
+
+struct drm_file;
+
struct amdgpu_device;
struct amdgpu_bo;
struct amdgpu_bo_va;
@@ -36,6 +40,7 @@ struct amdgpu_bo_list_entry {
struct amdgpu_bo_va *bo_va;
uint32_t priority;
struct page **user_pages;
+ struct hmm_range *range;
bool user_invalidated;
};
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_cgs.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_cgs.c
index f1a050379190..456e385333b6 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_cgs.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_cgs.c
@@ -411,17 +411,10 @@ static int amdgpu_cgs_get_firmware_info(struct cgs_device *cgs_device,
return -EINVAL;
}
- err = request_firmware(&adev->pm.fw, fw_name, adev->dev);
- if (err) {
- DRM_ERROR("Failed to request firmware\n");
- return err;
- }
-
- err = amdgpu_ucode_validate(adev->pm.fw);
+ err = amdgpu_ucode_request(adev, &adev->pm.fw, fw_name);
if (err) {
DRM_ERROR("Failed to load firmware \"%s\"", fw_name);
- release_firmware(adev->pm.fw);
- adev->pm.fw = NULL;
+ amdgpu_ucode_release(&adev->pm.fw);
return err;
}
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_connectors.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_connectors.c
index 491d4846fc02..6be30dcb029d 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_connectors.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_connectors.c
@@ -25,8 +25,9 @@
*/
#include <drm/display/drm_dp_helper.h>
+#include <drm/drm_crtc_helper.h>
#include <drm/drm_edid.h>
-#include <drm/drm_fb_helper.h>
+#include <drm/drm_modeset_helper_vtables.h>
#include <drm/drm_probe_helper.h>
#include <drm/amdgpu_drm.h>
#include "amdgpu.h"
@@ -328,7 +329,6 @@ static void amdgpu_connector_free_edid(struct drm_connector *connector)
kfree(amdgpu_connector->edid);
amdgpu_connector->edid = NULL;
- drm_connector_update_edid_property(connector, NULL);
}
static int amdgpu_connector_ddc_get_modes(struct drm_connector *connector)
@@ -998,13 +998,33 @@ amdgpu_connector_dvi_detect(struct drm_connector *connector, bool force)
}
}
+ if (amdgpu_connector->detected_hpd_without_ddc) {
+ force = true;
+ amdgpu_connector->detected_hpd_without_ddc = false;
+ }
+
if (!force && amdgpu_connector_check_hpd_status_unchanged(connector)) {
ret = connector->status;
goto exit;
}
- if (amdgpu_connector->ddc_bus)
+ if (amdgpu_connector->ddc_bus) {
dret = amdgpu_display_ddc_probe(amdgpu_connector, false);
+
+ /* Sometimes the pins required for the DDC probe on DVI
+ * connectors don't make contact at the same time that the ones
+ * for HPD do. If the DDC probe fails even though we had an HPD
+ * signal, try again later
+ */
+ if (!dret && !force &&
+ amdgpu_display_hpd_sense(adev, amdgpu_connector->hpd.hpd)) {
+ DRM_DEBUG_KMS("hpd detected without ddc, retrying in 1 second\n");
+ amdgpu_connector->detected_hpd_without_ddc = true;
+ schedule_delayed_work(&adev->hotplug_work,
+ msecs_to_jiffies(1000));
+ goto exit;
+ }
+ }
if (dret) {
amdgpu_connector->detected_by_load = false;
amdgpu_connector_free_edid(connector);
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_cs.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_cs.c
index d371000a5727..2eb2c66843a8 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_cs.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_cs.c
@@ -32,6 +32,8 @@
#include <drm/amdgpu_drm.h>
#include <drm/drm_syncobj.h>
+#include <drm/ttm/ttm_tt.h>
+
#include "amdgpu_cs.h"
#include "amdgpu.h"
#include "amdgpu_trace.h"
@@ -61,6 +63,8 @@ static int amdgpu_cs_parser_init(struct amdgpu_cs_parser *p,
amdgpu_ctx_put(p->ctx);
return -ECANCELED;
}
+
+ amdgpu_sync_create(&p->sync);
return 0;
}
@@ -109,6 +113,7 @@ static int amdgpu_cs_p1_ib(struct amdgpu_cs_parser *p,
return r;
++(num_ibs[r]);
+ p->gang_leader_idx = r;
return 0;
}
@@ -287,20 +292,18 @@ static int amdgpu_cs_pass1(struct amdgpu_cs_parser *p,
}
}
- if (!p->gang_size)
- return -EINVAL;
+ if (!p->gang_size) {
+ ret = -EINVAL;
+ goto free_partial_kdata;
+ }
for (i = 0; i < p->gang_size; ++i) {
- ret = amdgpu_job_alloc(p->adev, num_ibs[i], &p->jobs[i], vm);
- if (ret)
- goto free_all_kdata;
-
- ret = drm_sched_job_init(&p->jobs[i]->base, p->entities[i],
- &fpriv->vm);
+ ret = amdgpu_job_alloc(p->adev, vm, p->entities[i], vm,
+ num_ibs[i], &p->jobs[i]);
if (ret)
goto free_all_kdata;
}
- p->gang_leader = p->jobs[p->gang_size - 1];
+ p->gang_leader = p->jobs[p->gang_leader_idx];
if (p->ctx->vram_lost_counter != p->gang_leader->vram_lost_counter) {
ret = -ECANCELED;
@@ -430,7 +433,7 @@ static int amdgpu_cs_p2_dependencies(struct amdgpu_cs_parser *p,
dma_fence_put(old);
}
- r = amdgpu_sync_fence(&p->gang_leader->sync, fence);
+ r = amdgpu_sync_fence(&p->sync, fence);
dma_fence_put(fence);
if (r)
return r;
@@ -452,9 +455,8 @@ static int amdgpu_syncobj_lookup_and_add(struct amdgpu_cs_parser *p,
return r;
}
- r = amdgpu_sync_fence(&p->gang_leader->sync, fence);
+ r = amdgpu_sync_fence(&p->sync, fence);
dma_fence_put(fence);
-
return r;
}
@@ -910,7 +912,7 @@ static int amdgpu_cs_parser_bos(struct amdgpu_cs_parser *p,
goto out_free_user_pages;
}
- r = amdgpu_ttm_tt_get_user_pages(bo, e->user_pages);
+ r = amdgpu_ttm_tt_get_user_pages(bo, e->user_pages, &e->range);
if (r) {
kvfree(e->user_pages);
e->user_pages = NULL;
@@ -988,9 +990,10 @@ out_free_user_pages:
if (!e->user_pages)
continue;
- amdgpu_ttm_tt_get_user_pages_done(bo->tbo.ttm);
+ amdgpu_ttm_tt_get_user_pages_done(bo->tbo.ttm, e->range);
kvfree(e->user_pages);
e->user_pages = NULL;
+ e->range = NULL;
}
mutex_unlock(&p->bo_list->bo_list_mutex);
return r;
@@ -1102,7 +1105,7 @@ static int amdgpu_cs_vm_handling(struct amdgpu_cs_parser *p)
if (r)
return r;
- r = amdgpu_sync_fence(&job->sync, fpriv->prt_va->last_pt_update);
+ r = amdgpu_sync_fence(&p->sync, fpriv->prt_va->last_pt_update);
if (r)
return r;
@@ -1113,7 +1116,7 @@ static int amdgpu_cs_vm_handling(struct amdgpu_cs_parser *p)
if (r)
return r;
- r = amdgpu_sync_fence(&job->sync, bo_va->last_pt_update);
+ r = amdgpu_sync_fence(&p->sync, bo_va->last_pt_update);
if (r)
return r;
}
@@ -1132,7 +1135,7 @@ static int amdgpu_cs_vm_handling(struct amdgpu_cs_parser *p)
if (r)
return r;
- r = amdgpu_sync_fence(&job->sync, bo_va->last_pt_update);
+ r = amdgpu_sync_fence(&p->sync, bo_va->last_pt_update);
if (r)
return r;
}
@@ -1145,7 +1148,7 @@ static int amdgpu_cs_vm_handling(struct amdgpu_cs_parser *p)
if (r)
return r;
- r = amdgpu_sync_fence(&job->sync, vm->last_update);
+ r = amdgpu_sync_fence(&p->sync, vm->last_update);
if (r)
return r;
@@ -1177,11 +1180,19 @@ static int amdgpu_cs_vm_handling(struct amdgpu_cs_parser *p)
static int amdgpu_cs_sync_rings(struct amdgpu_cs_parser *p)
{
struct amdgpu_fpriv *fpriv = p->filp->driver_priv;
- struct amdgpu_job *leader = p->gang_leader;
+ struct drm_gpu_scheduler *sched;
struct amdgpu_bo_list_entry *e;
+ struct dma_fence *fence;
unsigned int i;
int r;
+ r = amdgpu_ctx_wait_prev_fence(p->ctx, p->entities[p->gang_leader_idx]);
+ if (r) {
+ if (r != -ERESTARTSYS)
+ DRM_ERROR("amdgpu_ctx_wait_prev_fence failed.\n");
+ return r;
+ }
+
list_for_each_entry(e, &p->validated, tv.head) {
struct amdgpu_bo *bo = ttm_to_amdgpu_bo(e->tv.bo);
struct dma_resv *resv = bo->tbo.base.resv;
@@ -1189,23 +1200,39 @@ static int amdgpu_cs_sync_rings(struct amdgpu_cs_parser *p)
sync_mode = amdgpu_bo_explicit_sync(bo) ?
AMDGPU_SYNC_EXPLICIT : AMDGPU_SYNC_NE_OWNER;
- r = amdgpu_sync_resv(p->adev, &leader->sync, resv, sync_mode,
+ r = amdgpu_sync_resv(p->adev, &p->sync, resv, sync_mode,
&fpriv->vm);
if (r)
return r;
}
- for (i = 0; i < p->gang_size - 1; ++i) {
- r = amdgpu_sync_clone(&leader->sync, &p->jobs[i]->sync);
+ for (i = 0; i < p->gang_size; ++i) {
+ r = amdgpu_sync_push_to_job(&p->sync, p->jobs[i]);
if (r)
return r;
}
- r = amdgpu_ctx_wait_prev_fence(p->ctx, p->entities[p->gang_size - 1]);
- if (r && r != -ERESTARTSYS)
- DRM_ERROR("amdgpu_ctx_wait_prev_fence failed.\n");
+ sched = p->gang_leader->base.entity->rq->sched;
+ while ((fence = amdgpu_sync_get_fence(&p->sync))) {
+ struct drm_sched_fence *s_fence = to_drm_sched_fence(fence);
- return r;
+ /*
+ * When we have an dependency it might be necessary to insert a
+ * pipeline sync to make sure that all caches etc are flushed and the
+ * next job actually sees the results from the previous one
+ * before we start executing on the same scheduler ring.
+ */
+ if (!s_fence || s_fence->sched != sched) {
+ dma_fence_put(fence);
+ continue;
+ }
+
+ r = amdgpu_sync_fence(&p->gang_leader->explicit_sync, fence);
+ dma_fence_put(fence);
+ if (r)
+ return r;
+ }
+ return 0;
}
static void amdgpu_cs_post_dependencies(struct amdgpu_cs_parser *p)
@@ -1238,13 +1265,19 @@ static int amdgpu_cs_submit(struct amdgpu_cs_parser *p,
for (i = 0; i < p->gang_size; ++i)
drm_sched_job_arm(&p->jobs[i]->base);
- for (i = 0; i < (p->gang_size - 1); ++i) {
+ for (i = 0; i < p->gang_size; ++i) {
struct dma_fence *fence;
+ if (p->jobs[i] == leader)
+ continue;
+
fence = &p->jobs[i]->base.s_fence->scheduled;
- r = amdgpu_sync_fence(&leader->sync, fence);
- if (r)
- goto error_cleanup;
+ dma_fence_get(fence);
+ r = drm_sched_job_add_dependency(&leader->base, fence);
+ if (r) {
+ dma_fence_put(fence);
+ return r;
+ }
}
if (p->gang_size > 1) {
@@ -1265,18 +1298,23 @@ static int amdgpu_cs_submit(struct amdgpu_cs_parser *p,
amdgpu_bo_list_for_each_userptr_entry(e, p->bo_list) {
struct amdgpu_bo *bo = ttm_to_amdgpu_bo(e->tv.bo);
- r |= !amdgpu_ttm_tt_get_user_pages_done(bo->tbo.ttm);
+ r |= !amdgpu_ttm_tt_get_user_pages_done(bo->tbo.ttm, e->range);
+ e->range = NULL;
}
if (r) {
r = -EAGAIN;
- goto error_unlock;
+ mutex_unlock(&p->adev->notifier_lock);
+ return r;
}
p->fence = dma_fence_get(&leader->base.s_fence->finished);
list_for_each_entry(e, &p->validated, tv.head) {
/* Everybody except for the gang leader uses READ */
- for (i = 0; i < (p->gang_size - 1); ++i) {
+ for (i = 0; i < p->gang_size; ++i) {
+ if (p->jobs[i] == leader)
+ continue;
+
dma_resv_add_fence(e->tv.bo->base.resv,
&p->jobs[i]->base.s_fence->finished,
DMA_RESV_USAGE_READ);
@@ -1286,7 +1324,7 @@ static int amdgpu_cs_submit(struct amdgpu_cs_parser *p,
e->tv.num_shared = 0;
}
- seq = amdgpu_ctx_add_fence(p->ctx, p->entities[p->gang_size - 1],
+ seq = amdgpu_ctx_add_fence(p->ctx, p->entities[p->gang_leader_idx],
p->fence);
amdgpu_cs_post_dependencies(p);
@@ -1313,14 +1351,6 @@ static int amdgpu_cs_submit(struct amdgpu_cs_parser *p,
mutex_unlock(&p->adev->notifier_lock);
mutex_unlock(&p->bo_list->bo_list_mutex);
return 0;
-
-error_unlock:
- mutex_unlock(&p->adev->notifier_lock);
-
-error_cleanup:
- for (i = 0; i < p->gang_size; ++i)
- drm_sched_job_cleanup(&p->jobs[i]->base);
- return r;
}
/* Cleanup the parser structure */
@@ -1328,6 +1358,7 @@ static void amdgpu_cs_parser_fini(struct amdgpu_cs_parser *parser)
{
unsigned i;
+ amdgpu_sync_free(&parser->sync);
for (i = 0; i < parser->num_post_deps; i++) {
drm_syncobj_put(parser->post_deps[i].syncobj);
kfree(parser->post_deps[i].chain);
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_cs.h b/drivers/gpu/drm/amd/amdgpu/amdgpu_cs.h
index cbaa19b2b8a3..fb3e3d56d427 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_cs.h
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_cs.h
@@ -23,6 +23,8 @@
#ifndef __AMDGPU_CS_H__
#define __AMDGPU_CS_H__
+#include <linux/ww_mutex.h>
+
#include "amdgpu_job.h"
#include "amdgpu_bo_list.h"
#include "amdgpu_ring.h"
@@ -54,6 +56,7 @@ struct amdgpu_cs_parser {
/* scheduler job objects */
unsigned int gang_size;
+ unsigned int gang_leader_idx;
struct drm_sched_entity *entities[AMDGPU_CS_GANG_SIZE];
struct amdgpu_job *jobs[AMDGPU_CS_GANG_SIZE];
struct amdgpu_job *gang_leader;
@@ -75,6 +78,8 @@ struct amdgpu_cs_parser {
unsigned num_post_deps;
struct amdgpu_cs_post_dep *post_deps;
+
+ struct amdgpu_sync sync;
};
int amdgpu_cs_find_mapping(struct amdgpu_cs_parser *parser,
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_debugfs.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_debugfs.c
index de61a85c4b02..f60753f97ac5 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_debugfs.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_debugfs.c
@@ -1717,7 +1717,7 @@ no_preempt:
static int amdgpu_debugfs_ib_preempt(void *data, u64 val)
{
- int r, resched, length;
+ int r, length;
struct amdgpu_ring *ring;
struct dma_fence **fences = NULL;
struct amdgpu_device *adev = (struct amdgpu_device *)data;
@@ -1747,8 +1747,6 @@ static int amdgpu_debugfs_ib_preempt(void *data, u64 val)
/* stop the scheduler */
kthread_park(ring->sched.thread);
- resched = ttm_bo_lock_delayed_workqueue(&adev->mman.bdev);
-
/* preempt the IB */
r = amdgpu_ring_preempt_ib(ring);
if (r) {
@@ -1785,8 +1783,6 @@ failure:
up_read(&adev->reset_domain->sem);
- ttm_bo_unlock_delayed_workqueue(&adev->mman.bdev, resched);
-
pro_end:
kfree(fences);
@@ -1969,7 +1965,7 @@ int amdgpu_debugfs_init(struct amdgpu_device *adev)
amdgpu_ta_if_debugfs_init(adev);
#if defined(CONFIG_DRM_AMD_DC)
- if (amdgpu_device_has_dc_support(adev))
+ if (adev->dc_enabled)
dtn_debugfs_init(adev);
#endif
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_device.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_device.c
index 64510898eedd..5c7d40873ee2 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_device.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_device.c
@@ -35,8 +35,12 @@
#include <linux/devcoredump.h>
#include <generated/utsrelease.h>
#include <linux/pci-p2pdma.h>
+#include <linux/apple-gmux.h>
+#include <drm/drm_aperture.h>
#include <drm/drm_atomic_helper.h>
+#include <drm/drm_crtc_helper.h>
+#include <drm/drm_fb_helper.h>
#include <drm/drm_probe_helper.h>
#include <drm/amdgpu_drm.h>
#include <linux/vgaarb.h>
@@ -77,6 +81,10 @@
#include <drm/drm_drv.h>
+#if IS_ENABLED(CONFIG_X86)
+#include <asm/intel-family.h>
+#endif
+
MODULE_FIRMWARE("amdgpu/vega10_gpu_info.bin");
MODULE_FIRMWARE("amdgpu/vega12_gpu_info.bin");
MODULE_FIRMWARE("amdgpu/raven_gpu_info.bin");
@@ -89,6 +97,8 @@ MODULE_FIRMWARE("amdgpu/navi12_gpu_info.bin");
#define AMDGPU_MAX_RETRY_LIMIT 2
#define AMDGPU_RETRY_SRIOV_RESET(r) ((r) == -EBUSY || (r) == -ETIMEDOUT || (r) == -EINVAL)
+static const struct drm_driver amdgpu_kms_driver;
+
const char *amdgpu_asic_name[] = {
"TAHITI",
"PITCAIRN",
@@ -159,7 +169,7 @@ static void amdgpu_device_get_pcie_info(struct amdgpu_device *adev);
*
* The amdgpu driver provides a sysfs API for reporting the product name
* for the device
- * The file serial_number is used for this and returns the product name
+ * The file product_name is used for this and returns the product name
* as returned from the FRU.
* NOTE: This is only available for certain server cards
*/
@@ -181,7 +191,7 @@ static DEVICE_ATTR(product_name, S_IRUGO,
*
* The amdgpu driver provides a sysfs API for reporting the part number
* for the device
- * The file serial_number is used for this and returns the part number
+ * The file product_number is used for this and returns the part number
* as returned from the FRU.
* NOTE: This is only available for certain server cards
*/
@@ -592,7 +602,7 @@ u32 amdgpu_mm_rdoorbell(struct amdgpu_device *adev, u32 index)
if (amdgpu_device_skip_hw_access(adev))
return 0;
- if (index < adev->doorbell.num_doorbells) {
+ if (index < adev->doorbell.num_kernel_doorbells) {
return readl(adev->doorbell.ptr + index);
} else {
DRM_ERROR("reading beyond doorbell aperture: 0x%08x!\n", index);
@@ -615,7 +625,7 @@ void amdgpu_mm_wdoorbell(struct amdgpu_device *adev, u32 index, u32 v)
if (amdgpu_device_skip_hw_access(adev))
return;
- if (index < adev->doorbell.num_doorbells) {
+ if (index < adev->doorbell.num_kernel_doorbells) {
writel(v, adev->doorbell.ptr + index);
} else {
DRM_ERROR("writing beyond doorbell aperture: 0x%08x!\n", index);
@@ -636,7 +646,7 @@ u64 amdgpu_mm_rdoorbell64(struct amdgpu_device *adev, u32 index)
if (amdgpu_device_skip_hw_access(adev))
return 0;
- if (index < adev->doorbell.num_doorbells) {
+ if (index < adev->doorbell.num_kernel_doorbells) {
return atomic64_read((atomic64_t *)(adev->doorbell.ptr + index));
} else {
DRM_ERROR("reading beyond doorbell aperture: 0x%08x!\n", index);
@@ -659,7 +669,7 @@ void amdgpu_mm_wdoorbell64(struct amdgpu_device *adev, u32 index, u64 v)
if (amdgpu_device_skip_hw_access(adev))
return;
- if (index < adev->doorbell.num_doorbells) {
+ if (index < adev->doorbell.num_kernel_doorbells) {
atomic64_set((atomic64_t *)(adev->doorbell.ptr + index), v);
} else {
DRM_ERROR("writing beyond doorbell aperture: 0x%08x!\n", index);
@@ -670,20 +680,20 @@ void amdgpu_mm_wdoorbell64(struct amdgpu_device *adev, u32 index, u64 v)
* amdgpu_device_indirect_rreg - read an indirect register
*
* @adev: amdgpu_device pointer
- * @pcie_index: mmio register offset
- * @pcie_data: mmio register offset
* @reg_addr: indirect register address to read from
*
* Returns the value of indirect register @reg_addr
*/
u32 amdgpu_device_indirect_rreg(struct amdgpu_device *adev,
- u32 pcie_index, u32 pcie_data,
u32 reg_addr)
{
- unsigned long flags;
- u32 r;
+ unsigned long flags, pcie_index, pcie_data;
void __iomem *pcie_index_offset;
void __iomem *pcie_data_offset;
+ u32 r;
+
+ pcie_index = adev->nbio.funcs->get_pcie_index_offset(adev);
+ pcie_data = adev->nbio.funcs->get_pcie_data_offset(adev);
spin_lock_irqsave(&adev->pcie_idx_lock, flags);
pcie_index_offset = (void __iomem *)adev->rmmio + pcie_index * 4;
@@ -701,20 +711,20 @@ u32 amdgpu_device_indirect_rreg(struct amdgpu_device *adev,
* amdgpu_device_indirect_rreg64 - read a 64bits indirect register
*
* @adev: amdgpu_device pointer
- * @pcie_index: mmio register offset
- * @pcie_data: mmio register offset
* @reg_addr: indirect register address to read from
*
* Returns the value of indirect register @reg_addr
*/
u64 amdgpu_device_indirect_rreg64(struct amdgpu_device *adev,
- u32 pcie_index, u32 pcie_data,
u32 reg_addr)
{
- unsigned long flags;
- u64 r;
+ unsigned long flags, pcie_index, pcie_data;
void __iomem *pcie_index_offset;
void __iomem *pcie_data_offset;
+ u64 r;
+
+ pcie_index = adev->nbio.funcs->get_pcie_index_offset(adev);
+ pcie_data = adev->nbio.funcs->get_pcie_data_offset(adev);
spin_lock_irqsave(&adev->pcie_idx_lock, flags);
pcie_index_offset = (void __iomem *)adev->rmmio + pcie_index * 4;
@@ -744,13 +754,15 @@ u64 amdgpu_device_indirect_rreg64(struct amdgpu_device *adev,
*
*/
void amdgpu_device_indirect_wreg(struct amdgpu_device *adev,
- u32 pcie_index, u32 pcie_data,
u32 reg_addr, u32 reg_data)
{
- unsigned long flags;
+ unsigned long flags, pcie_index, pcie_data;
void __iomem *pcie_index_offset;
void __iomem *pcie_data_offset;
+ pcie_index = adev->nbio.funcs->get_pcie_index_offset(adev);
+ pcie_data = adev->nbio.funcs->get_pcie_data_offset(adev);
+
spin_lock_irqsave(&adev->pcie_idx_lock, flags);
pcie_index_offset = (void __iomem *)adev->rmmio + pcie_index * 4;
pcie_data_offset = (void __iomem *)adev->rmmio + pcie_data * 4;
@@ -773,13 +785,15 @@ void amdgpu_device_indirect_wreg(struct amdgpu_device *adev,
*
*/
void amdgpu_device_indirect_wreg64(struct amdgpu_device *adev,
- u32 pcie_index, u32 pcie_data,
u32 reg_addr, u64 reg_data)
{
- unsigned long flags;
+ unsigned long flags, pcie_index, pcie_data;
void __iomem *pcie_index_offset;
void __iomem *pcie_data_offset;
+ pcie_index = adev->nbio.funcs->get_pcie_index_offset(adev);
+ pcie_data = adev->nbio.funcs->get_pcie_data_offset(adev);
+
spin_lock_irqsave(&adev->pcie_idx_lock, flags);
pcie_index_offset = (void __iomem *)adev->rmmio + pcie_index * 4;
pcie_data_offset = (void __iomem *)adev->rmmio + pcie_data * 4;
@@ -798,6 +812,18 @@ void amdgpu_device_indirect_wreg64(struct amdgpu_device *adev,
}
/**
+ * amdgpu_device_get_rev_id - query device rev_id
+ *
+ * @adev: amdgpu_device pointer
+ *
+ * Return device rev_id
+ */
+u32 amdgpu_device_get_rev_id(struct amdgpu_device *adev)
+{
+ return adev->nbio.funcs->get_rev_id(adev);
+}
+
+/**
* amdgpu_invalid_rreg - dummy reg read function
*
* @adev: amdgpu_device pointer
@@ -923,32 +949,33 @@ static int amdgpu_device_asic_init(struct amdgpu_device *adev)
}
/**
- * amdgpu_device_vram_scratch_init - allocate the VRAM scratch page
+ * amdgpu_device_mem_scratch_init - allocate the VRAM scratch page
*
* @adev: amdgpu_device pointer
*
* Allocates a scratch page of VRAM for use by various things in the
* driver.
*/
-static int amdgpu_device_vram_scratch_init(struct amdgpu_device *adev)
+static int amdgpu_device_mem_scratch_init(struct amdgpu_device *adev)
{
- return amdgpu_bo_create_kernel(adev, AMDGPU_GPU_PAGE_SIZE,
- PAGE_SIZE, AMDGPU_GEM_DOMAIN_VRAM,
- &adev->vram_scratch.robj,
- &adev->vram_scratch.gpu_addr,
- (void **)&adev->vram_scratch.ptr);
+ return amdgpu_bo_create_kernel(adev, AMDGPU_GPU_PAGE_SIZE, PAGE_SIZE,
+ AMDGPU_GEM_DOMAIN_VRAM |
+ AMDGPU_GEM_DOMAIN_GTT,
+ &adev->mem_scratch.robj,
+ &adev->mem_scratch.gpu_addr,
+ (void **)&adev->mem_scratch.ptr);
}
/**
- * amdgpu_device_vram_scratch_fini - Free the VRAM scratch page
+ * amdgpu_device_mem_scratch_fini - Free the VRAM scratch page
*
* @adev: amdgpu_device pointer
*
* Frees the VRAM scratch page.
*/
-static void amdgpu_device_vram_scratch_fini(struct amdgpu_device *adev)
+static void amdgpu_device_mem_scratch_fini(struct amdgpu_device *adev)
{
- amdgpu_bo_free_kernel(&adev->vram_scratch.robj, NULL, NULL);
+ amdgpu_bo_free_kernel(&adev->mem_scratch.robj, NULL, NULL);
}
/**
@@ -1033,7 +1060,7 @@ static int amdgpu_device_doorbell_init(struct amdgpu_device *adev)
if (adev->asic_type < CHIP_BONAIRE) {
adev->doorbell.base = 0;
adev->doorbell.size = 0;
- adev->doorbell.num_doorbells = 0;
+ adev->doorbell.num_kernel_doorbells = 0;
adev->doorbell.ptr = NULL;
return 0;
}
@@ -1048,27 +1075,27 @@ static int amdgpu_device_doorbell_init(struct amdgpu_device *adev)
adev->doorbell.size = pci_resource_len(adev->pdev, 2);
if (adev->enable_mes) {
- adev->doorbell.num_doorbells =
+ adev->doorbell.num_kernel_doorbells =
adev->doorbell.size / sizeof(u32);
} else {
- adev->doorbell.num_doorbells =
+ adev->doorbell.num_kernel_doorbells =
min_t(u32, adev->doorbell.size / sizeof(u32),
adev->doorbell_index.max_assignment+1);
- if (adev->doorbell.num_doorbells == 0)
+ if (adev->doorbell.num_kernel_doorbells == 0)
return -EINVAL;
/* For Vega, reserve and map two pages on doorbell BAR since SDMA
* paging queue doorbell use the second page. The
* AMDGPU_DOORBELL64_MAX_ASSIGNMENT definition assumes all the
* doorbells are in the first page. So with paging queue enabled,
- * the max num_doorbells should + 1 page (0x400 in dword)
+ * the max num_kernel_doorbells should + 1 page (0x400 in dword)
*/
if (adev->asic_type >= CHIP_VEGA10)
- adev->doorbell.num_doorbells += 0x400;
+ adev->doorbell.num_kernel_doorbells += 0x400;
}
adev->doorbell.ptr = ioremap(adev->doorbell.base,
- adev->doorbell.num_doorbells *
+ adev->doorbell.num_kernel_doorbells *
sizeof(u32));
if (adev->doorbell.ptr == NULL)
return -ENOMEM;
@@ -1350,6 +1377,17 @@ bool amdgpu_device_should_use_aspm(struct amdgpu_device *adev)
return pcie_aspm_enabled(adev->pdev);
}
+bool amdgpu_device_aspm_support_quirk(void)
+{
+#if IS_ENABLED(CONFIG_X86)
+ struct cpuinfo_x86 *c = &cpu_data(0);
+
+ return !(c->x86 == 6 && c->x86_model == INTEL_FAM6_ALDERLAKE);
+#else
+ return true;
+#endif
+}
+
/* if we get transitioned to only one device, take VGA back */
/**
* amdgpu_device_vga_set_decode - enable/disable vga decode
@@ -1568,7 +1606,7 @@ static int amdgpu_device_check_arguments(struct amdgpu_device *adev)
* @pdev: pci dev pointer
* @state: vga_switcheroo state
*
- * Callback for the switcheroo driver. Suspends or resumes the
+ * Callback for the switcheroo driver. Suspends or resumes
* the asics before or after it is powered up using ACPI methods.
*/
static void amdgpu_switcheroo_set_state(struct pci_dev *pdev,
@@ -1915,6 +1953,16 @@ static void amdgpu_device_enable_virtual_display(struct amdgpu_device *adev)
}
}
+void amdgpu_device_set_sriov_virtual_display(struct amdgpu_device *adev)
+{
+ if (amdgpu_sriov_vf(adev) && !adev->enable_virtual_display) {
+ adev->mode_info.num_crtc = 1;
+ adev->enable_virtual_display = true;
+ DRM_INFO("virtual_display:%d, num_crtc:%d\n",
+ adev->enable_virtual_display, adev->mode_info.num_crtc);
+ }
+}
+
/**
* amdgpu_device_parse_gpu_info_fw - parse gpu info firmware
*
@@ -1970,17 +2018,10 @@ static int amdgpu_device_parse_gpu_info_fw(struct amdgpu_device *adev)
}
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_gpu_info.bin", chip_name);
- err = request_firmware(&adev->firmware.gpu_info_fw, fw_name, adev->dev);
- if (err) {
- dev_err(adev->dev,
- "Failed to load gpu_info firmware \"%s\"\n",
- fw_name);
- goto out;
- }
- err = amdgpu_ucode_validate(adev->firmware.gpu_info_fw);
+ err = amdgpu_ucode_request(adev, &adev->firmware.gpu_info_fw, fw_name);
if (err) {
dev_err(adev->dev,
- "Failed to validate gpu_info firmware \"%s\"\n",
+ "Failed to get gpu_info firmware \"%s\"\n",
fw_name);
goto out;
}
@@ -2067,6 +2108,7 @@ static int amdgpu_device_ip_early_init(struct amdgpu_device *adev)
struct drm_device *dev = adev_to_drm(adev);
struct pci_dev *parent;
int i, r;
+ bool total;
amdgpu_device_enable_virtual_display(adev);
@@ -2142,7 +2184,6 @@ static int amdgpu_device_ip_early_init(struct amdgpu_device *adev)
adev->has_pr3 = parent ? pci_pr3_present(parent) : false;
}
- amdgpu_amdkfd_device_probe(adev);
adev->pm.pp_feature = amdgpu_pp_feature_mask;
if (amdgpu_sriov_vf(adev) || sched_policy == KFD_SCHED_POLICY_NO_HWS)
@@ -2150,6 +2191,7 @@ static int amdgpu_device_ip_early_init(struct amdgpu_device *adev)
if (amdgpu_sriov_vf(adev) && adev->asic_type == CHIP_SIENNA_CICHLID)
adev->pm.pp_feature &= ~PP_OVERDRIVE_MASK;
+ total = true;
for (i = 0; i < adev->num_ip_blocks; i++) {
if ((amdgpu_ip_block_mask & (1 << i)) == 0) {
DRM_ERROR("disabled ip block: %d <%s>\n",
@@ -2163,7 +2205,7 @@ static int amdgpu_device_ip_early_init(struct amdgpu_device *adev)
} else if (r) {
DRM_ERROR("early_init of IP block <%s> failed %d\n",
adev->ip_blocks[i].version->funcs->name, r);
- return r;
+ total = false;
} else {
adev->ip_blocks[i].status.valid = true;
}
@@ -2194,7 +2236,10 @@ static int amdgpu_device_ip_early_init(struct amdgpu_device *adev)
}
}
+ if (!total)
+ return -ENODEV;
+ amdgpu_amdkfd_device_probe(adev);
adev->cg_flags &= amdgpu_cg_mask;
adev->pg_flags &= amdgpu_pg_mask;
@@ -2320,7 +2365,7 @@ static int amdgpu_device_init_schedulers(struct amdgpu_device *adev)
}
r = drm_sched_init(&ring->sched, &amdgpu_sched_ops,
- ring->num_hw_submission, amdgpu_job_hang_limit,
+ ring->num_hw_submission, 0,
timeout, adev->reset_domain->wq,
ring->sched_score, ring->name,
adev->dev);
@@ -2379,9 +2424,9 @@ static int amdgpu_device_ip_init(struct amdgpu_device *adev)
if (amdgpu_sriov_vf(adev))
amdgpu_virt_exchange_data(adev);
- r = amdgpu_device_vram_scratch_init(adev);
+ r = amdgpu_device_mem_scratch_init(adev);
if (r) {
- DRM_ERROR("amdgpu_vram_scratch_init failed %d\n", r);
+ DRM_ERROR("amdgpu_mem_scratch_init failed %d\n", r);
goto init_failed;
}
r = adev->ip_blocks[i].version->funcs->hw_init((void *)adev);
@@ -2397,10 +2442,11 @@ static int amdgpu_device_ip_init(struct amdgpu_device *adev)
adev->ip_blocks[i].status.hw = true;
/* right after GMC hw init, we create CSA */
- if (amdgpu_mcbp || amdgpu_sriov_vf(adev)) {
+ if (amdgpu_mcbp) {
r = amdgpu_allocate_static_csa(adev, &adev->virt.csa_obj,
- AMDGPU_GEM_DOMAIN_VRAM,
- AMDGPU_CSA_SIZE);
+ AMDGPU_GEM_DOMAIN_VRAM |
+ AMDGPU_GEM_DOMAIN_GTT,
+ AMDGPU_CSA_SIZE);
if (r) {
DRM_ERROR("allocate CSA failed %d\n", r);
goto init_failed;
@@ -2462,6 +2508,11 @@ static int amdgpu_device_ip_init(struct amdgpu_device *adev)
if (!amdgpu_sriov_vf(adev)) {
struct amdgpu_hive_info *hive = amdgpu_get_xgmi_hive(adev);
+ if (WARN_ON(!hive)) {
+ r = -ENOENT;
+ goto init_failed;
+ }
+
if (!hive->reset_domain ||
!amdgpu_reset_get_reset_domain(hive->reset_domain)) {
r = -ENOENT;
@@ -2488,8 +2539,6 @@ static int amdgpu_device_ip_init(struct amdgpu_device *adev)
amdgpu_fru_get_product_info(adev);
init_failed:
- if (amdgpu_sriov_vf(adev))
- amdgpu_virt_release_full_gpu(adev, true);
return r;
}
@@ -2565,9 +2614,10 @@ int amdgpu_device_set_cg_state(struct amdgpu_device *adev,
i = state == AMD_CG_STATE_GATE ? j : adev->num_ip_blocks - j - 1;
if (!adev->ip_blocks[i].status.late_initialized)
continue;
- /* skip CG for GFX on S0ix */
+ /* skip CG for GFX, SDMA on S0ix */
if (adev->in_s0ix &&
- adev->ip_blocks[i].version->type == AMD_IP_BLOCK_TYPE_GFX)
+ (adev->ip_blocks[i].version->type == AMD_IP_BLOCK_TYPE_GFX ||
+ adev->ip_blocks[i].version->type == AMD_IP_BLOCK_TYPE_SDMA))
continue;
/* skip CG for VCE/UVD, it's handled specially */
if (adev->ip_blocks[i].version->type != AMD_IP_BLOCK_TYPE_UVD &&
@@ -2601,9 +2651,10 @@ int amdgpu_device_set_pg_state(struct amdgpu_device *adev,
i = state == AMD_PG_STATE_GATE ? j : adev->num_ip_blocks - j - 1;
if (!adev->ip_blocks[i].status.late_initialized)
continue;
- /* skip PG for GFX on S0ix */
+ /* skip PG for GFX, SDMA on S0ix */
if (adev->in_s0ix &&
- adev->ip_blocks[i].version->type == AMD_IP_BLOCK_TYPE_GFX)
+ (adev->ip_blocks[i].version->type == AMD_IP_BLOCK_TYPE_GFX ||
+ adev->ip_blocks[i].version->type == AMD_IP_BLOCK_TYPE_SDMA))
continue;
/* skip CG for VCE/UVD, it's handled specially */
if (adev->ip_blocks[i].version->type != AMD_IP_BLOCK_TYPE_UVD &&
@@ -2855,7 +2906,7 @@ static int amdgpu_device_ip_fini(struct amdgpu_device *adev)
amdgpu_ucode_free_bo(adev);
amdgpu_free_static_csa(&adev->virt.csa_obj);
amdgpu_device_wb_fini(adev);
- amdgpu_device_vram_scratch_fini(adev);
+ amdgpu_device_mem_scratch_fini(adev);
amdgpu_ib_pool_fini(adev);
}
@@ -3000,14 +3051,33 @@ static int amdgpu_device_ip_suspend_phase2(struct amdgpu_device *adev)
continue;
}
- /* skip suspend of gfx and psp for S0ix
+ /* skip suspend of gfx/mes and psp for S0ix
* gfx is in gfxoff state, so on resume it will exit gfxoff just
* like at runtime. PSP is also part of the always on hardware
* so no need to suspend it.
*/
if (adev->in_s0ix &&
(adev->ip_blocks[i].version->type == AMD_IP_BLOCK_TYPE_PSP ||
- adev->ip_blocks[i].version->type == AMD_IP_BLOCK_TYPE_GFX))
+ adev->ip_blocks[i].version->type == AMD_IP_BLOCK_TYPE_GFX ||
+ adev->ip_blocks[i].version->type == AMD_IP_BLOCK_TYPE_MES))
+ continue;
+
+ /* SDMA 5.x+ is part of GFX power domain so it's covered by GFXOFF */
+ if (adev->in_s0ix &&
+ (adev->ip_versions[SDMA0_HWIP][0] >= IP_VERSION(5, 0, 0)) &&
+ (adev->ip_blocks[i].version->type == AMD_IP_BLOCK_TYPE_SDMA))
+ continue;
+
+ /* Once swPSP provides the IMU, RLC FW binaries to TOS during cold-boot.
+ * These are in TMR, hence are expected to be reused by PSP-TOS to reload
+ * from this location and RLC Autoload automatically also gets loaded
+ * from here based on PMFW -> PSP message during re-init sequence.
+ * Therefore, the psp suspend & resume should be skipped to avoid destroy
+ * the TMR and reload FWs again for IMU enabled APU ASICs.
+ */
+ if (amdgpu_in_reset(adev) &&
+ (adev->flags & AMD_IS_APU) && adev->gfx.imu.funcs &&
+ adev->ip_blocks[i].version->type == AMD_IP_BLOCK_TYPE_PSP)
continue;
/* XXX handle errors */
@@ -3109,9 +3179,11 @@ static int amdgpu_device_ip_reinit_late_sriov(struct amdgpu_device *adev)
AMD_IP_BLOCK_TYPE_DCE,
AMD_IP_BLOCK_TYPE_GFX,
AMD_IP_BLOCK_TYPE_SDMA,
+ AMD_IP_BLOCK_TYPE_MES,
AMD_IP_BLOCK_TYPE_UVD,
AMD_IP_BLOCK_TYPE_VCE,
- AMD_IP_BLOCK_TYPE_VCN
+ AMD_IP_BLOCK_TYPE_VCN,
+ AMD_IP_BLOCK_TYPE_JPEG
};
for (i = 0; i < ARRAY_SIZE(ip_order); i++) {
@@ -3210,15 +3282,6 @@ static int amdgpu_device_ip_resume_phase2(struct amdgpu_device *adev)
return r;
}
adev->ip_blocks[i].status.hw = true;
-
- if (adev->in_s0ix && adev->ip_blocks[i].version->type == AMD_IP_BLOCK_TYPE_SMC) {
- /* disable gfxoff for IP resume. The gfxoff will be re-enabled in
- * amdgpu_device_resume() after IP resume.
- */
- amdgpu_gfx_off_ctrl(adev, false);
- DRM_DEBUG("will disable gfxoff for re-initializing other blocks\n");
- }
-
}
return 0;
@@ -3240,9 +3303,11 @@ static int amdgpu_device_ip_resume(struct amdgpu_device *adev)
{
int r;
- r = amdgpu_amdkfd_resume_iommu(adev);
- if (r)
- return r;
+ if (!adev->in_s0ix) {
+ r = amdgpu_amdkfd_resume_iommu(adev);
+ if (r)
+ return r;
+ }
r = amdgpu_device_ip_resume_phase1(adev);
if (r)
@@ -3347,8 +3412,7 @@ bool amdgpu_device_asic_has_dc_support(enum amd_asic_type asic_type)
*/
bool amdgpu_device_has_dc_support(struct amdgpu_device *adev)
{
- if (amdgpu_sriov_vf(adev) ||
- adev->enable_virtual_display ||
+ if (adev->enable_virtual_display ||
(adev->harvest_ip_mask & AMD_HARVEST_IP_DMU_MASK))
return false;
@@ -3514,6 +3578,7 @@ int amdgpu_device_init(struct amdgpu_device *adev,
int r, i;
bool px = false;
u32 max_MBps;
+ int tmp;
adev->shutdown = false;
adev->flags = flags;
@@ -3671,6 +3736,11 @@ int amdgpu_device_init(struct amdgpu_device *adev,
if (r)
return r;
+ /* Get rid of things like offb */
+ r = drm_aperture_remove_conflicting_pci_framebuffers(adev->pdev, &amdgpu_kms_driver);
+ if (r)
+ return r;
+
/* Enable TMZ based on IP_VERSION */
amdgpu_gmc_tmz_set(adev);
@@ -3687,6 +3757,12 @@ int amdgpu_device_init(struct amdgpu_device *adev,
adev->have_atomics_support = ((struct amd_sriov_msg_pf2vf_info *)
adev->virt.fw_reserve.p_pf2vf)->pcie_atomic_ops_support_flags ==
(PCI_EXP_DEVCAP2_ATOMIC_COMP32 | PCI_EXP_DEVCAP2_ATOMIC_COMP64);
+ /* APUs w/ gfx9 onwards doesn't reply on PCIe atomics, rather it is a
+ * internal path natively support atomics, set have_atomics_support to true.
+ */
+ else if ((adev->flags & AMD_IS_APU) &&
+ (adev->ip_versions[GC_HWIP][0] > IP_VERSION(9, 0, 0)))
+ adev->have_atomics_support = true;
else
adev->have_atomics_support =
!pci_enable_atomic_ops_to_root(adev->pdev,
@@ -3730,7 +3806,13 @@ int amdgpu_device_init(struct amdgpu_device *adev,
}
}
} else {
+ tmp = amdgpu_reset_method;
+ /* It should do a default reset when loading or reloading the driver,
+ * regardless of the module parameter reset_method.
+ */
+ amdgpu_reset_method = AMD_RESET_METHOD_NONE;
r = amdgpu_asic_reset(adev);
+ amdgpu_reset_method = tmp;
if (r) {
dev_err(adev->dev, "asic reset on init failed\n");
goto failed;
@@ -3738,8 +3820,6 @@ int amdgpu_device_init(struct amdgpu_device *adev,
}
}
- pci_enable_pcie_error_reporting(adev->pdev);
-
/* Post card if necessary */
if (amdgpu_device_need_post(adev)) {
if (!adev->bios) {
@@ -3790,18 +3870,6 @@ fence_driver_init:
r = amdgpu_device_ip_init(adev);
if (r) {
- /* failed in exclusive mode due to timeout */
- if (amdgpu_sriov_vf(adev) &&
- !amdgpu_sriov_runtime(adev) &&
- amdgpu_virt_mmio_blocked(adev) &&
- !amdgpu_virt_wait_reset(adev)) {
- dev_err(adev->dev, "VF exclusive mode timeout\n");
- /* Don't send request since VF is inactive. */
- adev->virt.caps &= ~AMDGPU_SRIOV_CAPS_RUNTIME;
- adev->virt.ops = NULL;
- r = -EAGAIN;
- goto release_ras_con;
- }
dev_err(adev->dev, "amdgpu_device_ip_init failed\n");
amdgpu_vf_error_put(adev, AMDGIM_ERROR_VF_AMDGPU_INIT_FAIL, 0, 0);
goto release_ras_con;
@@ -3829,11 +3897,8 @@ fence_driver_init:
adev->mm_stats.log2_max_MBps = ilog2(max(1u, max_MBps));
r = amdgpu_pm_sysfs_init(adev);
- if (r) {
- adev->pm_sysfs_en = false;
- DRM_ERROR("registering pm debugfs failed (%d).\n", r);
- } else
- adev->pm_sysfs_en = true;
+ if (r)
+ DRM_ERROR("registering pm sysfs failed (%d).\n", r);
r = amdgpu_ucode_sysfs_init(adev);
if (r) {
@@ -3873,8 +3938,10 @@ fence_driver_init:
msecs_to_jiffies(AMDGPU_RESUME_MS));
}
- if (amdgpu_sriov_vf(adev))
+ if (amdgpu_sriov_vf(adev)) {
+ amdgpu_virt_release_full_gpu(adev, true);
flush_delayed_work(&adev->delayed_init_work);
+ }
r = sysfs_create_files(&adev->dev->kobj, amdgpu_dev_attributes);
if (r)
@@ -3895,12 +3962,15 @@ fence_driver_init:
if ((adev->pdev->class >> 8) == PCI_CLASS_DISPLAY_VGA)
vga_client_register(adev->pdev, amdgpu_device_vga_set_decode);
- if (amdgpu_device_supports_px(ddev)) {
- px = true;
+ px = amdgpu_device_supports_px(ddev);
+
+ if (px || (!pci_is_thunderbolt_attached(adev->pdev) &&
+ apple_gmux_detect(NULL, NULL)))
vga_switcheroo_register_client(adev->pdev,
&amdgpu_switcheroo_ops, px);
+
+ if (px)
vga_switcheroo_init_domain_pm_ops(adev->dev, &adev->vga_pm_domain);
- }
if (adev->gmc.xgmi.pending_reset)
queue_delayed_work(system_wq, &mgpu_info.delayed_reset_work,
@@ -3911,6 +3981,20 @@ fence_driver_init:
return 0;
release_ras_con:
+ if (amdgpu_sriov_vf(adev))
+ amdgpu_virt_release_full_gpu(adev, true);
+
+ /* failed in exclusive mode due to timeout */
+ if (amdgpu_sriov_vf(adev) &&
+ !amdgpu_sriov_runtime(adev) &&
+ amdgpu_virt_mmio_blocked(adev) &&
+ !amdgpu_virt_wait_reset(adev)) {
+ dev_err(adev->dev, "VF exclusive mode timeout\n");
+ /* Don't send request since VF is inactive. */
+ adev->virt.caps &= ~AMDGPU_SRIOV_CAPS_RUNTIME;
+ adev->virt.ops = NULL;
+ r = -EAGAIN;
+ }
amdgpu_release_ras_context(adev);
failed:
@@ -3973,12 +4057,10 @@ void amdgpu_device_fini_hw(struct amdgpu_device *adev)
}
amdgpu_fence_driver_hw_fini(adev);
- if (adev->mman.initialized) {
- flush_delayed_work(&adev->mman.bdev.wq);
- ttm_bo_lock_delayed_workqueue(&adev->mman.bdev);
- }
+ if (adev->mman.initialized)
+ drain_workqueue(adev->mman.bdev.wq);
- if (adev->pm_sysfs_en)
+ if (adev->pm.sysfs_initialized)
amdgpu_pm_sysfs_fini(adev);
if (adev->ucode_sysfs_en)
amdgpu_ucode_sysfs_fini(adev);
@@ -3998,18 +4080,19 @@ void amdgpu_device_fini_hw(struct amdgpu_device *adev)
amdgpu_gart_dummy_page_fini(adev);
- amdgpu_device_unmap_mmio(adev);
+ if (drm_dev_is_unplugged(adev_to_drm(adev)))
+ amdgpu_device_unmap_mmio(adev);
}
void amdgpu_device_fini_sw(struct amdgpu_device *adev)
{
int idx;
+ bool px;
amdgpu_fence_driver_sw_fini(adev);
amdgpu_device_ip_fini(adev);
- release_firmware(adev->firmware.gpu_info_fw);
- adev->firmware.gpu_info_fw = NULL;
+ amdgpu_ucode_release(&adev->firmware.gpu_info_fw);
adev->accel_working = false;
dma_fence_put(rcu_dereference_protected(adev->gang_submit, true));
@@ -4024,10 +4107,16 @@ void amdgpu_device_fini_sw(struct amdgpu_device *adev)
kfree(adev->bios);
adev->bios = NULL;
- if (amdgpu_device_supports_px(adev_to_drm(adev))) {
+
+ px = amdgpu_device_supports_px(adev_to_drm(adev));
+
+ if (px || (!pci_is_thunderbolt_attached(adev->pdev) &&
+ apple_gmux_detect(NULL, NULL)))
vga_switcheroo_unregister_client(adev->pdev);
+
+ if (px)
vga_switcheroo_fini_domain_pm_ops(adev->dev);
- }
+
if ((adev->pdev->class >> 8) == PCI_CLASS_DISPLAY_VGA)
vga_client_unregister(adev->pdev);
@@ -4097,6 +4186,11 @@ int amdgpu_device_suspend(struct drm_device *dev, bool fbcon)
adev->in_suspend = true;
+ /* Evict the majority of BOs before grabbing the full access */
+ r = amdgpu_device_evict_resources(adev);
+ if (r)
+ return r;
+
if (amdgpu_sriov_vf(adev)) {
amdgpu_virt_fini_data_exchange(adev);
r = amdgpu_virt_request_full_gpu(adev, false);
@@ -4107,8 +4201,6 @@ int amdgpu_device_suspend(struct drm_device *dev, bool fbcon)
if (amdgpu_acpi_smart_shift_update(dev, AMDGPU_SS_DEV_D3))
DRM_WARN("smart shift update failed\n");
- drm_kms_helper_poll_disable(dev);
-
if (fbcon)
drm_fb_helper_set_suspend_unlocked(adev_to_drm(adev)->fb_helper, true);
@@ -4171,21 +4263,15 @@ int amdgpu_device_resume(struct drm_device *dev, bool fbcon)
r = amdgpu_device_ip_resume(adev);
- /* no matter what r is, always need to properly release full GPU */
- if (amdgpu_sriov_vf(adev)) {
- amdgpu_virt_init_data_exchange(adev);
- amdgpu_virt_release_full_gpu(adev, true);
- }
-
if (r) {
dev_err(adev->dev, "amdgpu_device_ip_resume failed (%d).\n", r);
- return r;
+ goto exit;
}
amdgpu_fence_driver_hw_init(adev);
r = amdgpu_device_ip_late_init(adev);
if (r)
- return r;
+ goto exit;
queue_delayed_work(system_wq, &adev->delayed_init_work,
msecs_to_jiffies(AMDGPU_RESUME_MS));
@@ -4193,47 +4279,52 @@ int amdgpu_device_resume(struct drm_device *dev, bool fbcon)
if (!adev->in_s0ix) {
r = amdgpu_amdkfd_resume(adev, adev->in_runpm);
if (r)
- return r;
+ goto exit;
+ }
+
+exit:
+ if (amdgpu_sriov_vf(adev)) {
+ amdgpu_virt_init_data_exchange(adev);
+ amdgpu_virt_release_full_gpu(adev, true);
}
+ if (r)
+ return r;
+
/* Make sure IB tests flushed */
flush_delayed_work(&adev->delayed_init_work);
- if (adev->in_s0ix) {
- /* re-enable gfxoff after IP resume. This re-enables gfxoff after
- * it was disabled for IP resume in amdgpu_device_ip_resume_phase2().
- */
- amdgpu_gfx_off_ctrl(adev, true);
- DRM_DEBUG("will enable gfxoff for the mission mode\n");
- }
if (fbcon)
drm_fb_helper_set_suspend_unlocked(adev_to_drm(adev)->fb_helper, false);
- drm_kms_helper_poll_enable(dev);
-
amdgpu_ras_resume(adev);
- /*
- * Most of the connector probing functions try to acquire runtime pm
- * refs to ensure that the GPU is powered on when connector polling is
- * performed. Since we're calling this from a runtime PM callback,
- * trying to acquire rpm refs will cause us to deadlock.
- *
- * Since we're guaranteed to be holding the rpm lock, it's safe to
- * temporarily disable the rpm helpers so this doesn't deadlock us.
- */
+ if (adev->mode_info.num_crtc) {
+ /*
+ * Most of the connector probing functions try to acquire runtime pm
+ * refs to ensure that the GPU is powered on when connector polling is
+ * performed. Since we're calling this from a runtime PM callback,
+ * trying to acquire rpm refs will cause us to deadlock.
+ *
+ * Since we're guaranteed to be holding the rpm lock, it's safe to
+ * temporarily disable the rpm helpers so this doesn't deadlock us.
+ */
#ifdef CONFIG_PM
- dev->dev->power.disable_depth++;
+ dev->dev->power.disable_depth++;
#endif
- if (!amdgpu_device_has_dc_support(adev))
- drm_helper_hpd_irq_event(dev);
- else
- drm_kms_helper_hotplug_event(dev);
+ if (!adev->dc_enabled)
+ drm_helper_hpd_irq_event(dev);
+ else
+ drm_kms_helper_hotplug_event(dev);
#ifdef CONFIG_PM
- dev->dev->power.disable_depth--;
+ dev->dev->power.disable_depth--;
#endif
+ }
adev->in_suspend = false;
+ if (adev->enable_mes)
+ amdgpu_mes_self_test(adev);
+
if (amdgpu_acpi_smart_shift_update(dev, AMDGPU_SS_DEV_D0))
DRM_WARN("smart shift update failed\n");
@@ -4421,7 +4512,11 @@ static int amdgpu_device_recover_vram(struct amdgpu_device *adev)
dev_info(adev->dev, "recover vram bo from shadow start\n");
mutex_lock(&adev->shadow_list_lock);
list_for_each_entry(vmbo, &adev->shadow_list, shadow_list) {
- shadow = &vmbo->bo;
+ /* If vm is compute context or adev is APU, shadow will be NULL */
+ if (!vmbo->shadow)
+ continue;
+ shadow = vmbo->shadow;
+
/* No need to recover an evicted BO */
if (shadow->tbo.resource->mem_type != TTM_PL_TT ||
shadow->tbo.resource->start == AMDGPU_BO_INVALID_OFFSET ||
@@ -4580,10 +4675,9 @@ bool amdgpu_device_should_recover_gpu(struct amdgpu_device *adev)
if (amdgpu_gpu_recovery == 0)
goto disabled;
- if (!amdgpu_device_ip_check_soft_reset(adev)) {
- dev_info(adev->dev,"Timeout, but no hardware hang detected.\n");
- return false;
- }
+ /* Skip soft reset check in fatal error mode */
+ if (!amdgpu_ras_is_poison_mode_supported(adev))
+ return true;
if (amdgpu_sriov_vf(adev))
return true;
@@ -4709,7 +4803,8 @@ int amdgpu_device_pre_asic_reset(struct amdgpu_device *adev,
if (!need_full_reset)
need_full_reset = amdgpu_device_ip_need_full_reset(adev);
- if (!need_full_reset && amdgpu_gpu_recovery) {
+ if (!need_full_reset && amdgpu_gpu_recovery &&
+ amdgpu_device_ip_check_soft_reset(adev)) {
amdgpu_device_ip_pre_soft_reset(adev);
r = amdgpu_device_ip_soft_reset(adev);
amdgpu_device_ip_post_soft_reset(adev);
@@ -5027,6 +5122,8 @@ static void amdgpu_device_resume_display_audio(struct amdgpu_device *adev)
pm_runtime_enable(&(p->dev));
pm_runtime_resume(&(p->dev));
}
+
+ pci_dev_put(p);
}
static int amdgpu_device_suspend_display_audio(struct amdgpu_device *adev)
@@ -5065,6 +5162,7 @@ static int amdgpu_device_suspend_display_audio(struct amdgpu_device *adev)
if (expires < ktime_get_mono_fast_ns()) {
dev_warn(adev->dev, "failed to suspend display audio\n");
+ pci_dev_put(p);
/* TODO: abort the succeeding gpu reset? */
return -ETIMEDOUT;
}
@@ -5072,97 +5170,10 @@ static int amdgpu_device_suspend_display_audio(struct amdgpu_device *adev)
pm_runtime_disable(&(p->dev));
+ pci_dev_put(p);
return 0;
}
-static void amdgpu_device_recheck_guilty_jobs(
- struct amdgpu_device *adev, struct list_head *device_list_handle,
- struct amdgpu_reset_context *reset_context)
-{
- int i, r = 0;
-
- for (i = 0; i < AMDGPU_MAX_RINGS; ++i) {
- struct amdgpu_ring *ring = adev->rings[i];
- int ret = 0;
- struct drm_sched_job *s_job;
-
- if (!ring || !ring->sched.thread)
- continue;
-
- s_job = list_first_entry_or_null(&ring->sched.pending_list,
- struct drm_sched_job, list);
- if (s_job == NULL)
- continue;
-
- /* clear job's guilty and depend the folowing step to decide the real one */
- drm_sched_reset_karma(s_job);
- drm_sched_resubmit_jobs_ext(&ring->sched, 1);
-
- if (!s_job->s_fence->parent) {
- DRM_WARN("Failed to get a HW fence for job!");
- continue;
- }
-
- ret = dma_fence_wait_timeout(s_job->s_fence->parent, false, ring->sched.timeout);
- if (ret == 0) { /* timeout */
- DRM_ERROR("Found the real bad job! ring:%s, job_id:%llx\n",
- ring->sched.name, s_job->id);
-
-
- amdgpu_fence_driver_isr_toggle(adev, true);
-
- /* Clear this failed job from fence array */
- amdgpu_fence_driver_clear_job_fences(ring);
-
- amdgpu_fence_driver_isr_toggle(adev, false);
-
- /* Since the job won't signal and we go for
- * another resubmit drop this parent pointer
- */
- dma_fence_put(s_job->s_fence->parent);
- s_job->s_fence->parent = NULL;
-
- /* set guilty */
- drm_sched_increase_karma(s_job);
- amdgpu_reset_prepare_hwcontext(adev, reset_context);
-retry:
- /* do hw reset */
- if (amdgpu_sriov_vf(adev)) {
- amdgpu_virt_fini_data_exchange(adev);
- r = amdgpu_device_reset_sriov(adev, false);
- if (r)
- adev->asic_reset_res = r;
- } else {
- clear_bit(AMDGPU_SKIP_HW_RESET,
- &reset_context->flags);
- r = amdgpu_do_asic_reset(device_list_handle,
- reset_context);
- if (r && r == -EAGAIN)
- goto retry;
- }
-
- /*
- * add reset counter so that the following
- * resubmitted job could flush vmid
- */
- atomic_inc(&adev->gpu_reset_counter);
- continue;
- }
-
- /* got the hw fence, signal finished fence */
- atomic_dec(ring->sched.score);
- dma_fence_get(&s_job->s_fence->finished);
- dma_fence_signal(&s_job->s_fence->finished);
- dma_fence_put(&s_job->s_fence->finished);
-
- /* remove node from list and free the job */
- spin_lock(&ring->sched.job_list_lock);
- list_del_init(&s_job->list);
- spin_unlock(&ring->sched.job_list_lock);
- ring->sched.ops->free_job(s_job);
- }
-}
-
static inline void amdgpu_device_stop_pending_resets(struct amdgpu_device *adev)
{
struct amdgpu_ras *con = amdgpu_ras_get_context(adev);
@@ -5183,12 +5194,12 @@ static inline void amdgpu_device_stop_pending_resets(struct amdgpu_device *adev)
}
-
/**
* amdgpu_device_gpu_recover - reset the asic and recover scheduler
*
* @adev: amdgpu_device pointer
* @job: which job trigger hang
+ * @reset_context: amdgpu reset context pointer
*
* Attempt to reset the GPU if it has hung (all asics).
* Attempt to do soft-reset or full-reset and reinitialize Asic
@@ -5206,7 +5217,6 @@ int amdgpu_device_gpu_recover(struct amdgpu_device *adev,
int i, r = 0;
bool need_emergency_restart = false;
bool audio_suspended = false;
- int tmp_vram_lost_counter;
bool gpu_reset_for_dev_remove = false;
gpu_reset_for_dev_remove =
@@ -5352,7 +5362,6 @@ retry: /* Rest of adevs pre asic reset from XGMI hive. */
amdgpu_device_stop_pending_resets(tmp_adev);
}
- tmp_vram_lost_counter = atomic_read(&((adev)->vram_lost_counter));
/* Actual ASIC resets if needed.*/
/* Host driver will handle XGMI hive reset for SRIOV */
if (amdgpu_sriov_vf(adev)) {
@@ -5360,8 +5369,9 @@ retry: /* Rest of adevs pre asic reset from XGMI hive. */
if (r)
adev->asic_reset_res = r;
- /* Aldebaran supports ras in SRIOV, so need resume ras during reset */
- if (adev->ip_versions[GC_HWIP][0] == IP_VERSION(9, 4, 2))
+ /* Aldebaran and gfx_11_0_3 support ras in SRIOV, so need resume ras during reset */
+ if (adev->ip_versions[GC_HWIP][0] == IP_VERSION(9, 4, 2) ||
+ adev->ip_versions[GC_HWIP][0] == IP_VERSION(11, 0, 3))
amdgpu_ras_resume(adev);
} else {
r = amdgpu_do_asic_reset(device_list_handle, reset_context);
@@ -5377,29 +5387,13 @@ skip_hw_reset:
/* Post ASIC reset for all devs .*/
list_for_each_entry(tmp_adev, device_list_handle, reset_list) {
- /*
- * Sometimes a later bad compute job can block a good gfx job as gfx
- * and compute ring share internal GC HW mutually. We add an additional
- * guilty jobs recheck step to find the real guilty job, it synchronously
- * submits and pends for the first job being signaled. If it gets timeout,
- * we identify it as a real guilty job.
- */
- if (amdgpu_gpu_recovery == 2 &&
- !(tmp_vram_lost_counter < atomic_read(&adev->vram_lost_counter)))
- amdgpu_device_recheck_guilty_jobs(
- tmp_adev, device_list_handle, reset_context);
-
for (i = 0; i < AMDGPU_MAX_RINGS; ++i) {
struct amdgpu_ring *ring = tmp_adev->rings[i];
if (!ring || !ring->sched.thread)
continue;
- /* No point to resubmit jobs if we didn't HW reset*/
- if (!tmp_adev->asic_reset_res && !job_signaled)
- drm_sched_resubmit_jobs(&ring->sched);
-
- drm_sched_start(&ring->sched, !tmp_adev->asic_reset_res);
+ drm_sched_start(&ring->sched, true);
}
if (adev->enable_mes && adev->ip_versions[GC_HWIP][0] != IP_VERSION(11, 0, 3))
@@ -5441,6 +5435,8 @@ skip_sched_resume:
amdgpu_device_resume_display_audio(tmp_adev);
amdgpu_device_unset_mp1_state(tmp_adev);
+
+ amdgpu_ras_set_error_query_ready(tmp_adev, true);
}
recover_end:
@@ -5644,7 +5640,7 @@ int amdgpu_device_baco_enter(struct drm_device *dev)
struct amdgpu_device *adev = drm_to_adev(dev);
struct amdgpu_ras *ras = amdgpu_ras_get_context(adev);
- if (!amdgpu_device_supports_baco(adev_to_drm(adev)))
+ if (!amdgpu_device_supports_baco(dev))
return -ENOTSUPP;
if (ras && adev->ras_enabled &&
@@ -5660,7 +5656,7 @@ int amdgpu_device_baco_exit(struct drm_device *dev)
struct amdgpu_ras *ras = amdgpu_ras_get_context(adev);
int ret = 0;
- if (!amdgpu_device_supports_baco(adev_to_drm(adev)))
+ if (!amdgpu_device_supports_baco(dev))
return -ENOTSUPP;
ret = amdgpu_dpm_baco_exit(adev);
@@ -5852,8 +5848,6 @@ void amdgpu_pci_resume(struct pci_dev *pdev)
if (!ring || !ring->sched.thread)
continue;
-
- drm_sched_resubmit_jobs(&ring->sched);
drm_sched_start(&ring->sched, true);
}
@@ -5938,8 +5932,8 @@ void amdgpu_device_invalidate_hdp(struct amdgpu_device *adev,
int amdgpu_in_reset(struct amdgpu_device *adev)
{
return atomic_read(&adev->reset_domain->in_gpu_reset);
- }
-
+}
+
/**
* amdgpu_device_halt() - bring hardware to some kind of halt state
*
@@ -6044,3 +6038,44 @@ struct dma_fence *amdgpu_device_switch_gang(struct amdgpu_device *adev,
dma_fence_put(old);
return NULL;
}
+
+bool amdgpu_device_has_display_hardware(struct amdgpu_device *adev)
+{
+ switch (adev->asic_type) {
+#ifdef CONFIG_DRM_AMDGPU_SI
+ case CHIP_HAINAN:
+#endif
+ case CHIP_TOPAZ:
+ /* chips with no display hardware */
+ return false;
+#ifdef CONFIG_DRM_AMDGPU_SI
+ case CHIP_TAHITI:
+ case CHIP_PITCAIRN:
+ case CHIP_VERDE:
+ case CHIP_OLAND:
+#endif
+#ifdef CONFIG_DRM_AMDGPU_CIK
+ case CHIP_BONAIRE:
+ case CHIP_HAWAII:
+ case CHIP_KAVERI:
+ case CHIP_KABINI:
+ case CHIP_MULLINS:
+#endif
+ case CHIP_TONGA:
+ case CHIP_FIJI:
+ case CHIP_POLARIS10:
+ case CHIP_POLARIS11:
+ case CHIP_POLARIS12:
+ case CHIP_VEGAM:
+ case CHIP_CARRIZO:
+ case CHIP_STONEY:
+ /* chips with display hardware */
+ return true;
+ default:
+ /* IP discovery */
+ if (!adev->ip_versions[DCE_HWIP][0] ||
+ (adev->harvest_ip_mask & AMD_HARVEST_IP_DMU_MASK))
+ return false;
+ return true;
+ }
+}
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_discovery.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_discovery.c
index 3993e6134914..0ecce0b92b82 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_discovery.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_discovery.c
@@ -33,13 +33,16 @@
#include "gmc_v9_0.h"
#include "df_v1_7.h"
#include "df_v3_6.h"
+#include "df_v4_3.h"
#include "nbio_v6_1.h"
#include "nbio_v7_0.h"
#include "nbio_v7_4.h"
+#include "nbio_v7_9.h"
#include "hdp_v4_0.h"
#include "vega10_ih.h"
#include "vega20_ih.h"
#include "sdma_v4_0.h"
+#include "sdma_v4_4_2.h"
#include "uvd_v7_0.h"
#include "vce_v4_0.h"
#include "vcn_v1_0.h"
@@ -305,8 +308,13 @@ static int amdgpu_discovery_init(struct amdgpu_device *adev)
goto out;
}
- if (!amdgpu_discovery_verify_binary_signature(adev->mman.discovery_bin)) {
- dev_warn(adev->dev, "get invalid ip discovery binary signature from vram\n");
+ if (!amdgpu_discovery_verify_binary_signature(adev->mman.discovery_bin) || amdgpu_discovery == 2) {
+ /* ignore the discovery binary from vram if discovery=2 in kernel module parameter */
+ if (amdgpu_discovery == 2)
+ dev_info(adev->dev,"force read ip discovery binary from file");
+ else
+ dev_warn(adev->dev, "get invalid ip discovery binary signature from vram\n");
+
/* retry read ip discovery binary from file */
r = amdgpu_discovery_read_binary_from_file(adev, adev->mman.discovery_bin);
if (r) {
@@ -537,6 +545,7 @@ static void amdgpu_discovery_read_from_harvest_table(struct amdgpu_device *adev,
struct harvest_table *harvest_info;
u16 offset;
int i;
+ uint32_t umc_harvest_config = 0;
bhdr = (struct binary_header *)adev->mman.discovery_bin;
offset = le16_to_cpu(bhdr->table_list[HARVEST_INFO].offset);
@@ -564,12 +573,17 @@ static void amdgpu_discovery_read_from_harvest_table(struct amdgpu_device *adev,
adev->harvest_ip_mask |= AMD_HARVEST_IP_DMU_MASK;
break;
case UMC_HWID:
+ umc_harvest_config |=
+ 1 << (le16_to_cpu(harvest_info->list[i].number_instance));
(*umc_harvest_count)++;
break;
default:
break;
}
}
+
+ adev->umc.active_mask = ((1 << adev->umc.node_inst_num) - 1) &
+ ~umc_harvest_config;
}
/* ================================================== */
@@ -699,7 +713,7 @@ static void ip_hw_instance_release(struct kobject *kobj)
kfree(ip_hw_instance);
}
-static struct kobj_type ip_hw_instance_ktype = {
+static const struct kobj_type ip_hw_instance_ktype = {
.release = ip_hw_instance_release,
.sysfs_ops = &ip_hw_instance_sysfs_ops,
.default_groups = ip_hw_instance_groups,
@@ -718,7 +732,7 @@ static void ip_hw_id_release(struct kobject *kobj)
kfree(ip_hw_id);
}
-static struct kobj_type ip_hw_id_ktype = {
+static const struct kobj_type ip_hw_id_ktype = {
.release = ip_hw_id_release,
.sysfs_ops = &kobj_sysfs_ops,
};
@@ -781,18 +795,18 @@ static const struct sysfs_ops ip_die_entry_sysfs_ops = {
.show = ip_die_entry_attr_show,
};
-static struct kobj_type ip_die_entry_ktype = {
+static const struct kobj_type ip_die_entry_ktype = {
.release = ip_die_entry_release,
.sysfs_ops = &ip_die_entry_sysfs_ops,
.default_groups = ip_die_entry_groups,
};
-static struct kobj_type die_kobj_ktype = {
+static const struct kobj_type die_kobj_ktype = {
.release = die_kobj_release,
.sysfs_ops = &kobj_sysfs_ops,
};
-static struct kobj_type ip_discovery_ktype = {
+static const struct kobj_type ip_discovery_ktype = {
.release = ip_disc_release,
.sysfs_ops = &kobj_sysfs_ops,
};
@@ -1150,8 +1164,10 @@ static int amdgpu_discovery_reg_base_init(struct amdgpu_device *adev)
AMDGPU_MAX_SDMA_INSTANCES);
}
- if (le16_to_cpu(ip->hw_id) == UMC_HWID)
+ if (le16_to_cpu(ip->hw_id) == UMC_HWID) {
adev->gmc.num_umc++;
+ adev->umc.node_inst_num++;
+ }
for (k = 0; k < num_base_address; k++) {
/*
@@ -1486,6 +1502,7 @@ static int amdgpu_discovery_set_common_ip_blocks(struct amdgpu_device *adev)
case IP_VERSION(9, 4, 0):
case IP_VERSION(9, 4, 1):
case IP_VERSION(9, 4, 2):
+ case IP_VERSION(9, 4, 3):
amdgpu_device_ip_block_add(adev, &vega10_common_ip_block);
break;
case IP_VERSION(10, 1, 10):
@@ -1507,6 +1524,7 @@ static int amdgpu_discovery_set_common_ip_blocks(struct amdgpu_device *adev)
case IP_VERSION(11, 0, 1):
case IP_VERSION(11, 0, 2):
case IP_VERSION(11, 0, 3):
+ case IP_VERSION(11, 0, 4):
amdgpu_device_ip_block_add(adev, &soc21_common_ip_block);
break;
default:
@@ -1530,6 +1548,7 @@ static int amdgpu_discovery_set_gmc_ip_blocks(struct amdgpu_device *adev)
case IP_VERSION(9, 4, 0):
case IP_VERSION(9, 4, 1):
case IP_VERSION(9, 4, 2):
+ case IP_VERSION(9, 4, 3):
amdgpu_device_ip_block_add(adev, &gmc_v9_0_ip_block);
break;
case IP_VERSION(10, 1, 10):
@@ -1551,6 +1570,7 @@ static int amdgpu_discovery_set_gmc_ip_blocks(struct amdgpu_device *adev)
case IP_VERSION(11, 0, 1):
case IP_VERSION(11, 0, 2):
case IP_VERSION(11, 0, 3):
+ case IP_VERSION(11, 0, 4):
amdgpu_device_ip_block_add(adev, &gmc_v11_0_ip_block);
break;
default:
@@ -1575,6 +1595,7 @@ static int amdgpu_discovery_set_ih_ip_blocks(struct amdgpu_device *adev)
case IP_VERSION(4, 2, 0):
case IP_VERSION(4, 2, 1):
case IP_VERSION(4, 4, 0):
+ case IP_VERSION(4, 4, 2):
amdgpu_device_ip_block_add(adev, &vega20_ih_ip_block);
break;
case IP_VERSION(5, 0, 0):
@@ -1633,9 +1654,11 @@ static int amdgpu_discovery_set_psp_ip_blocks(struct amdgpu_device *adev)
case IP_VERSION(13, 0, 2):
case IP_VERSION(13, 0, 3):
case IP_VERSION(13, 0, 5):
+ case IP_VERSION(13, 0, 6):
case IP_VERSION(13, 0, 7):
case IP_VERSION(13, 0, 8):
case IP_VERSION(13, 0, 10):
+ case IP_VERSION(13, 0, 11):
amdgpu_device_ip_block_add(adev, &psp_v13_0_ip_block);
break;
case IP_VERSION(13, 0, 4):
@@ -1686,6 +1709,7 @@ static int amdgpu_discovery_set_smu_ip_blocks(struct amdgpu_device *adev)
case IP_VERSION(13, 0, 7):
case IP_VERSION(13, 0, 8):
case IP_VERSION(13, 0, 10):
+ case IP_VERSION(13, 0, 11):
amdgpu_device_ip_block_add(adev, &smu_v13_0_ip_block);
break;
default:
@@ -1697,9 +1721,17 @@ static int amdgpu_discovery_set_smu_ip_blocks(struct amdgpu_device *adev)
return 0;
}
+#if defined(CONFIG_DRM_AMD_DC)
+static void amdgpu_discovery_set_sriov_display(struct amdgpu_device *adev)
+{
+ amdgpu_device_set_sriov_virtual_display(adev);
+ amdgpu_device_ip_block_add(adev, &amdgpu_vkms_ip_block);
+}
+#endif
+
static int amdgpu_discovery_set_display_ip_blocks(struct amdgpu_device *adev)
{
- if (adev->enable_virtual_display || amdgpu_sriov_vf(adev)) {
+ if (adev->enable_virtual_display) {
amdgpu_device_ip_block_add(adev, &amdgpu_vkms_ip_block);
return 0;
}
@@ -1727,7 +1759,10 @@ static int amdgpu_discovery_set_display_ip_blocks(struct amdgpu_device *adev)
case IP_VERSION(3, 1, 6):
case IP_VERSION(3, 2, 0):
case IP_VERSION(3, 2, 1):
- amdgpu_device_ip_block_add(adev, &dm_ip_block);
+ if (amdgpu_sriov_vf(adev))
+ amdgpu_discovery_set_sriov_display(adev);
+ else
+ amdgpu_device_ip_block_add(adev, &dm_ip_block);
break;
default:
dev_err(adev->dev,
@@ -1740,7 +1775,10 @@ static int amdgpu_discovery_set_display_ip_blocks(struct amdgpu_device *adev)
case IP_VERSION(12, 0, 0):
case IP_VERSION(12, 0, 1):
case IP_VERSION(12, 1, 0):
- amdgpu_device_ip_block_add(adev, &dm_ip_block);
+ if (amdgpu_sriov_vf(adev))
+ amdgpu_discovery_set_sriov_display(adev);
+ else
+ amdgpu_device_ip_block_add(adev, &dm_ip_block);
break;
default:
dev_err(adev->dev,
@@ -1785,6 +1823,7 @@ static int amdgpu_discovery_set_gc_ip_blocks(struct amdgpu_device *adev)
case IP_VERSION(11, 0, 1):
case IP_VERSION(11, 0, 2):
case IP_VERSION(11, 0, 3):
+ case IP_VERSION(11, 0, 4):
amdgpu_device_ip_block_add(adev, &gfx_v11_0_ip_block);
break;
default:
@@ -1809,6 +1848,9 @@ static int amdgpu_discovery_set_sdma_ip_blocks(struct amdgpu_device *adev)
case IP_VERSION(4, 4, 0):
amdgpu_device_ip_block_add(adev, &sdma_v4_0_ip_block);
break;
+ case IP_VERSION(4, 4, 2):
+ amdgpu_device_ip_block_add(adev, &sdma_v4_4_2_ip_block);
+ break;
case IP_VERSION(5, 0, 0):
case IP_VERSION(5, 0, 1):
case IP_VERSION(5, 0, 2):
@@ -1909,9 +1951,8 @@ static int amdgpu_discovery_set_mm_ip_blocks(struct amdgpu_device *adev)
case IP_VERSION(4, 0, 2):
case IP_VERSION(4, 0, 4):
amdgpu_device_ip_block_add(adev, &vcn_v4_0_ip_block);
- if (!amdgpu_sriov_vf(adev))
- amdgpu_device_ip_block_add(adev, &jpeg_v4_0_ip_block);
- break;
+ amdgpu_device_ip_block_add(adev, &jpeg_v4_0_ip_block);
+ return 0;
default:
dev_err(adev->dev,
"Failed to add vcn/jpeg ip block(UVD_HWIP:0x%x)\n",
@@ -1948,6 +1989,7 @@ static int amdgpu_discovery_set_mes_ip_blocks(struct amdgpu_device *adev)
case IP_VERSION(11, 0, 1):
case IP_VERSION(11, 0, 2):
case IP_VERSION(11, 0, 3):
+ case IP_VERSION(11, 0, 4):
amdgpu_device_ip_block_add(adev, &mes_v11_0_ip_block);
adev->enable_mes = true;
adev->enable_mes_kiq = true;
@@ -2141,6 +2183,7 @@ int amdgpu_discovery_set_ip_blocks(struct amdgpu_device *adev)
case IP_VERSION(9, 4, 0):
case IP_VERSION(9, 4, 1):
case IP_VERSION(9, 4, 2):
+ case IP_VERSION(9, 4, 3):
adev->family = AMDGPU_FAMILY_AI;
break;
case IP_VERSION(9, 1, 0):
@@ -2161,6 +2204,7 @@ int amdgpu_discovery_set_ip_blocks(struct amdgpu_device *adev)
break;
case IP_VERSION(10, 3, 1):
adev->family = AMDGPU_FAMILY_VGH;
+ adev->apu_flags |= AMD_APU_IS_VANGOGH;
break;
case IP_VERSION(10, 3, 3):
adev->family = AMDGPU_FAMILY_YC;
@@ -2177,6 +2221,7 @@ int amdgpu_discovery_set_ip_blocks(struct amdgpu_device *adev)
adev->family = AMDGPU_FAMILY_GC_11_0_0;
break;
case IP_VERSION(11, 0, 1):
+ case IP_VERSION(11, 0, 4):
adev->family = AMDGPU_FAMILY_GC_11_0_1;
break;
default:
@@ -2194,6 +2239,7 @@ int amdgpu_discovery_set_ip_blocks(struct amdgpu_device *adev)
case IP_VERSION(10, 3, 6):
case IP_VERSION(10, 3, 7):
case IP_VERSION(11, 0, 1):
+ case IP_VERSION(11, 0, 4):
adev->flags |= AMD_IS_APU;
break;
default:
@@ -2222,6 +2268,10 @@ int amdgpu_discovery_set_ip_blocks(struct amdgpu_device *adev)
adev->nbio.funcs = &nbio_v7_4_funcs;
adev->nbio.hdp_flush_reg = &nbio_v7_4_hdp_flush_reg;
break;
+ case IP_VERSION(7, 9, 0):
+ adev->nbio.funcs = &nbio_v7_9_funcs;
+ adev->nbio.hdp_flush_reg = &nbio_v7_9_hdp_flush_reg;
+ break;
case IP_VERSION(7, 2, 0):
case IP_VERSION(7, 2, 1):
case IP_VERSION(7, 3, 0):
@@ -2250,6 +2300,7 @@ int amdgpu_discovery_set_ip_blocks(struct amdgpu_device *adev)
adev->nbio.hdp_flush_reg = &nbio_v4_3_hdp_flush_reg;
break;
case IP_VERSION(7, 7, 0):
+ case IP_VERSION(7, 7, 1):
adev->nbio.funcs = &nbio_v7_7_funcs;
adev->nbio.hdp_flush_reg = &nbio_v7_7_hdp_flush_reg;
break;
@@ -2266,6 +2317,7 @@ int amdgpu_discovery_set_ip_blocks(struct amdgpu_device *adev)
case IP_VERSION(4, 2, 0):
case IP_VERSION(4, 2, 1):
case IP_VERSION(4, 4, 0):
+ case IP_VERSION(4, 4, 2):
adev->hdp.funcs = &hdp_v4_0_funcs;
break;
case IP_VERSION(5, 0, 0):
@@ -2300,6 +2352,9 @@ int amdgpu_discovery_set_ip_blocks(struct amdgpu_device *adev)
case IP_VERSION(3, 5, 2):
adev->df.funcs = &df_v1_7_funcs;
break;
+ case IP_VERSION(4, 3, 0):
+ adev->df.funcs = &df_v4_3_funcs;
+ break;
default:
break;
}
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_display.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_display.c
index 1a06b8d724f3..d60fe7eb5579 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_display.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_display.c
@@ -39,11 +39,47 @@
#include <linux/pm_runtime.h>
#include <drm/drm_crtc_helper.h>
#include <drm/drm_edid.h>
-#include <drm/drm_gem_framebuffer_helper.h>
#include <drm/drm_fb_helper.h>
+#include <drm/drm_gem_framebuffer_helper.h>
#include <drm/drm_fourcc.h>
+#include <drm/drm_modeset_helper.h>
#include <drm/drm_vblank.h>
+/**
+ * amdgpu_display_hotplug_work_func - work handler for display hotplug event
+ *
+ * @work: work struct pointer
+ *
+ * This is the hotplug event work handler (all ASICs).
+ * The work gets scheduled from the IRQ handler if there
+ * was a hotplug interrupt. It walks through the connector table
+ * and calls hotplug handler for each connector. After this, it sends
+ * a DRM hotplug event to alert userspace.
+ *
+ * This design approach is required in order to defer hotplug event handling
+ * from the IRQ handler to a work handler because hotplug handler has to use
+ * mutexes which cannot be locked in an IRQ handler (since &mutex_lock may
+ * sleep).
+ */
+void amdgpu_display_hotplug_work_func(struct work_struct *work)
+{
+ struct amdgpu_device *adev = container_of(work, struct amdgpu_device,
+ hotplug_work.work);
+ struct drm_device *dev = adev_to_drm(adev);
+ struct drm_mode_config *mode_config = &dev->mode_config;
+ struct drm_connector *connector;
+ struct drm_connector_list_iter iter;
+
+ mutex_lock(&mode_config->mutex);
+ drm_connector_list_iter_begin(dev, &iter);
+ drm_for_each_connector_iter(connector, &iter)
+ amdgpu_connector_hotplug(connector);
+ drm_connector_list_iter_end(&iter);
+ mutex_unlock(&mode_config->mutex);
+ /* Just fire off a uevent and let userspace tell us what to do */
+ drm_helper_hpd_irq_event(dev);
+}
+
static int amdgpu_display_framebuffer_init(struct drm_device *dev,
struct amdgpu_framebuffer *rfb,
const struct drm_mode_fb_cmd2 *mode_cmd,
@@ -514,7 +550,7 @@ uint32_t amdgpu_display_supported_domains(struct amdgpu_device *adev,
*/
if ((bo_flags & AMDGPU_GEM_CREATE_CPU_GTT_USWC) &&
amdgpu_bo_support_uswc(bo_flags) &&
- amdgpu_device_asic_has_dc_support(adev->asic_type) &&
+ adev->dc_enabled &&
adev->mode_info.gpu_vm_support)
domain |= AMDGPU_GEM_DOMAIN_GTT;
#endif
@@ -1214,7 +1250,6 @@ amdgpu_display_user_framebuffer_create(struct drm_device *dev,
const struct drm_mode_config_funcs amdgpu_mode_funcs = {
.fb_create = amdgpu_display_user_framebuffer_create,
- .output_poll_changed = drm_fb_helper_output_poll_changed,
};
static const struct drm_prop_enum_list amdgpu_underscan_enum_list[] =
@@ -1281,7 +1316,7 @@ int amdgpu_display_modeset_create_props(struct amdgpu_device *adev)
"dither",
amdgpu_dither_enum_list, sz);
- if (amdgpu_device_has_dc_support(adev)) {
+ if (adev->dc_enabled) {
adev->mode_info.abm_level_property =
drm_property_create_range(adev_to_drm(adev), 0,
"abm level", 0, 4);
@@ -1583,6 +1618,8 @@ int amdgpu_display_suspend_helper(struct amdgpu_device *adev)
struct drm_connector_list_iter iter;
int r;
+ drm_kms_helper_poll_disable(dev);
+
/* turn off display hw */
drm_modeset_lock_all(dev);
drm_connector_list_iter_begin(dev, &iter);
@@ -1659,6 +1696,8 @@ int amdgpu_display_resume_helper(struct amdgpu_device *adev)
drm_modeset_unlock_all(dev);
+ drm_kms_helper_poll_enable(dev);
+
return 0;
}
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_display.h b/drivers/gpu/drm/amd/amdgpu/amdgpu_display.h
index 560352f7c317..9d19940f73c8 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_display.h
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_display.h
@@ -35,6 +35,7 @@
#define amdgpu_display_add_encoder(adev, e, s, c) (adev)->mode_info.funcs->add_encoder((adev), (e), (s), (c))
#define amdgpu_display_add_connector(adev, ci, sd, ct, ib, coi, h, r) (adev)->mode_info.funcs->add_connector((adev), (ci), (sd), (ct), (ib), (coi), (h), (r))
+void amdgpu_display_hotplug_work_func(struct work_struct *work);
void amdgpu_display_update_priority(struct amdgpu_device *adev);
uint32_t amdgpu_display_supported_domains(struct amdgpu_device *adev,
uint64_t bo_flags);
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_dma_buf.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_dma_buf.c
index 7bd8e33b14be..0c001bb8fc2b 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_dma_buf.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_dma_buf.c
@@ -37,6 +37,7 @@
#include "amdgpu_dma_buf.h"
#include "amdgpu_xgmi.h"
#include <drm/amdgpu_drm.h>
+#include <drm/ttm/ttm_tt.h>
#include <linux/dma-buf.h>
#include <linux/dma-fence-array.h>
#include <linux/pci-p2pdma.h>
@@ -328,7 +329,9 @@ amdgpu_dma_buf_create_obj(struct drm_device *dev, struct dma_buf *dma_buf)
if (dma_buf->ops == &amdgpu_dmabuf_ops) {
struct amdgpu_bo *other = gem_to_amdgpu_bo(dma_buf->priv);
- flags |= other->flags & AMDGPU_GEM_CREATE_CPU_GTT_USWC;
+ flags |= other->flags & (AMDGPU_GEM_CREATE_CPU_GTT_USWC |
+ AMDGPU_GEM_CREATE_COHERENT |
+ AMDGPU_GEM_CREATE_UNCACHED);
}
ret = amdgpu_gem_object_create(adev, dma_buf->size, PAGE_SIZE,
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_doorbell.h b/drivers/gpu/drm/amd/amdgpu/amdgpu_doorbell.h
index 7199b6b0be81..8fd11497faba 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_doorbell.h
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_doorbell.h
@@ -21,6 +21,9 @@
*
*/
+#ifndef AMDGPU_DOORBELL_H
+#define AMDGPU_DOORBELL_H
+
/*
* GPU doorbell structures, functions & helpers
*/
@@ -29,7 +32,9 @@ struct amdgpu_doorbell {
resource_size_t base;
resource_size_t size;
u32 __iomem *ptr;
- u32 num_doorbells; /* Number of doorbells actually reserved for amdgpu. */
+
+ /* Number of doorbells reserved for amdgpu kernel driver */
+ u32 num_kernel_doorbells;
};
/* Reserved doorbells for amdgpu (including multimedia).
@@ -306,3 +311,4 @@ void amdgpu_mm_wdoorbell64(struct amdgpu_device *adev, u32 index, u64 v);
#define RDOORBELL64(index) amdgpu_mm_rdoorbell64(adev, (index))
#define WDOORBELL64(index, v) amdgpu_mm_wdoorbell64(adev, (index), (v))
+#endif
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_drv.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_drv.c
index bf2d50c8c92a..b1ca1ab6d6ad 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_drv.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_drv.c
@@ -23,8 +23,8 @@
*/
#include <drm/amdgpu_drm.h>
-#include <drm/drm_aperture.h>
#include <drm/drm_drv.h>
+#include <drm/drm_fbdev_generic.h>
#include <drm/drm_gem.h>
#include <drm/drm_vblank.h>
#include <drm/drm_managed.h>
@@ -38,7 +38,6 @@
#include <linux/mmu_notifier.h>
#include <linux/suspend.h>
#include <linux/cc_platform.h>
-#include <linux/fb.h>
#include <linux/dynamic_debug.h>
#include "amdgpu.h"
@@ -104,13 +103,19 @@
* - 3.46.0 - To enable hot plug amdgpu tests in libdrm
* - 3.47.0 - Add AMDGPU_GEM_CREATE_DISCARDABLE and AMDGPU_VM_NOALLOC flags
* - 3.48.0 - Add IP discovery version info to HW INFO
- * 3.49.0 - Add gang submit into CS IOCTL
+ * - 3.49.0 - Add gang submit into CS IOCTL
+ * - 3.50.0 - Update AMDGPU_INFO_DEV_INFO IOCTL for minimum engine and memory clock
+ * Update AMDGPU_INFO_SENSOR IOCTL for PEAK_PSTATE engine and memory clock
+ * 3.51.0 - Return the PCIe gen and lanes from the INFO ioctl
+ * 3.52.0 - Add AMDGPU_IDS_FLAGS_CONFORMANT_TRUNC_COORD, add device_info fields:
+ * tcp_cache_size, num_sqc_per_wgp, sqc_data_cache_size, sqc_inst_cache_size,
+ * gl1c_cache_size, gl2c_cache_size, mall_size, enabled_rb_pipes_mask_hi
*/
#define KMS_DRIVER_MAJOR 3
-#define KMS_DRIVER_MINOR 49
+#define KMS_DRIVER_MINOR 52
#define KMS_DRIVER_PATCHLEVEL 0
-int amdgpu_vram_limit;
+unsigned int amdgpu_vram_limit = UINT_MAX;
int amdgpu_vis_vram_limit;
int amdgpu_gart_size = -1; /* auto */
int amdgpu_gtt_size = -1; /* auto */
@@ -143,8 +148,8 @@ uint amdgpu_pcie_lane_cap;
u64 amdgpu_cg_mask = 0xffffffffffffffff;
uint amdgpu_pg_mask = 0xffffffff;
uint amdgpu_sdma_phase_quantum = 32;
-char *amdgpu_disable_cu = NULL;
-char *amdgpu_virtual_display = NULL;
+char *amdgpu_disable_cu;
+char *amdgpu_virtual_display;
/*
* OverDrive(bit 14) disabled by default
@@ -152,7 +157,6 @@ char *amdgpu_virtual_display = NULL;
*/
uint amdgpu_pp_feature_mask = 0xfff7bfff;
uint amdgpu_force_long_training;
-int amdgpu_job_hang_limit;
int amdgpu_lbpw = -1;
int amdgpu_compute_multipipe = -1;
int amdgpu_gpu_recovery = -1; /* auto */
@@ -180,11 +184,13 @@ int amdgpu_mes_kiq;
int amdgpu_noretry = -1;
int amdgpu_force_asic_type = -1;
int amdgpu_tmz = -1; /* auto */
+uint amdgpu_freesync_vid_mode;
int amdgpu_reset_method = -1; /* auto */
int amdgpu_num_kcq = -1;
int amdgpu_smartshift_bias;
int amdgpu_use_xgmi_p2p = 1;
int amdgpu_vcnfw_log;
+int amdgpu_sg_display = -1; /* auto */
static void amdgpu_drv_delayed_reset_work_handler(struct work_struct *work);
@@ -230,17 +236,18 @@ module_param_named(vis_vramlimit, amdgpu_vis_vram_limit, int, 0444);
/**
* DOC: gartsize (uint)
- * Restrict the size of GART in Mib (32, 64, etc.) for testing. The default is -1 (The size depends on asic).
+ * Restrict the size of GART (for kernel use) in Mib (32, 64, etc.) for testing.
+ * The default is -1 (The size depends on asic).
*/
-MODULE_PARM_DESC(gartsize, "Size of GART to setup in megabytes (32, 64, etc., -1=auto)");
+MODULE_PARM_DESC(gartsize, "Size of kernel GART to setup in megabytes (32, 64, etc., -1=auto)");
module_param_named(gartsize, amdgpu_gart_size, uint, 0600);
/**
* DOC: gttsize (int)
- * Restrict the size of GTT domain in MiB for testing. The default is -1 (It's VRAM size if 3GB < VRAM < 3/4 RAM,
- * otherwise 3/4 RAM size).
+ * Restrict the size of GTT domain (for userspace use) in MiB for testing.
+ * The default is -1 (Use 1/2 RAM, minimum value is 3GB).
*/
-MODULE_PARM_DESC(gttsize, "Size of the GTT domain in megabytes (-1 = auto)");
+MODULE_PARM_DESC(gttsize, "Size of the GTT userspace domain in megabytes (-1 = auto)");
module_param_named(gttsize, amdgpu_gtt_size, int, 0600);
/**
@@ -513,13 +520,6 @@ MODULE_PARM_DESC(virtual_display,
module_param_named(virtual_display, amdgpu_virtual_display, charp, 0444);
/**
- * DOC: job_hang_limit (int)
- * Set how much time allow a job hang and not drop it. The default is 0.
- */
-MODULE_PARM_DESC(job_hang_limit, "how much time allow a job hang and not drop it (default 0)");
-module_param_named(job_hang_limit, amdgpu_job_hang_limit, int ,0444);
-
-/**
* DOC: lbpw (int)
* Override Load Balancing Per Watt (LBPW) support (1 = enable, 0 = disable). The default is -1 (auto, enabled).
*/
@@ -533,7 +533,7 @@ module_param_named(compute_multipipe, amdgpu_compute_multipipe, int, 0444);
* DOC: gpu_recovery (int)
* Set to enable GPU recovery mechanism (1 = enable, 0 = disable). The default is -1 (auto, disabled except SRIOV).
*/
-MODULE_PARM_DESC(gpu_recovery, "Enable GPU recovery mechanism, (2 = advanced tdr mode, 1 = enable, 0 = disable, -1 = auto)");
+MODULE_PARM_DESC(gpu_recovery, "Enable GPU recovery mechanism, (1 = enable, 0 = disable, -1 = auto)");
module_param_named(gpu_recovery, amdgpu_gpu_recovery, int, 0444);
/**
@@ -814,7 +814,7 @@ MODULE_PARM_DESC(no_system_mem_limit, "disable system memory limit (false = defa
* DOC: no_queue_eviction_on_vm_fault (int)
* If set, process queues will not be evicted on gpuvm fault. This is to keep the wavefront context for debugging (0 = queue eviction, 1 = no queue eviction). The default is 0 (queue eviction).
*/
-int amdgpu_no_queue_eviction_on_vm_fault = 0;
+int amdgpu_no_queue_eviction_on_vm_fault;
MODULE_PARM_DESC(no_queue_eviction_on_vm_fault, "No queue eviction on VM fault (0 = queue eviction, 1 = no queue eviction)");
module_param_named(no_queue_eviction_on_vm_fault, amdgpu_no_queue_eviction_on_vm_fault, int, 0444);
#endif
@@ -878,6 +878,32 @@ MODULE_PARM_DESC(tmz, "Enable TMZ feature (-1 = auto (default), 0 = off, 1 = on)
module_param_named(tmz, amdgpu_tmz, int, 0444);
/**
+ * DOC: freesync_video (uint)
+ * Enable the optimization to adjust front porch timing to achieve seamless
+ * mode change experience when setting a freesync supported mode for which full
+ * modeset is not needed.
+ *
+ * The Display Core will add a set of modes derived from the base FreeSync
+ * video mode into the corresponding connector's mode list based on commonly
+ * used refresh rates and VRR range of the connected display, when users enable
+ * this feature. From the userspace perspective, they can see a seamless mode
+ * change experience when the change between different refresh rates under the
+ * same resolution. Additionally, userspace applications such as Video playback
+ * can read this modeset list and change the refresh rate based on the video
+ * frame rate. Finally, the userspace can also derive an appropriate mode for a
+ * particular refresh rate based on the FreeSync Mode and add it to the
+ * connector's mode list.
+ *
+ * Note: This is an experimental feature.
+ *
+ * The default value: 0 (off).
+ */
+MODULE_PARM_DESC(
+ freesync_video,
+ "Enable freesync modesetting optimization feature (0 = off (default), 1 = on)");
+module_param_named(freesync_video, amdgpu_freesync_vid_mode, uint, 0444);
+
+/**
* DOC: reset_method (int)
* GPU reset method (-1 = auto (default), 0 = legacy, 1 = mode0, 2 = mode1, 3 = mode2, 4 = baco)
*/
@@ -890,7 +916,7 @@ module_param_named(reset_method, amdgpu_reset_method, int, 0444);
* result in the GPU entering bad status when the number of total
* faulty pages by ECC exceeds the threshold value.
*/
-MODULE_PARM_DESC(bad_page_threshold, "Bad page threshold(-1 = auto(default value), 0 = disable bad page retirement, -2 = ignore bad page threshold)");
+MODULE_PARM_DESC(bad_page_threshold, "Bad page threshold(-1 = ignore threshold (default value), 0 = disable bad page retirement, -2 = driver sets threshold)");
module_param_named(bad_page_threshold, amdgpu_bad_page_threshold, int, 0444);
MODULE_PARM_DESC(num_kcq, "number of kernel compute queue user want to setup (8 if set to greater than 8 or less than 0, only affect gfx 8+)");
@@ -904,6 +930,16 @@ MODULE_PARM_DESC(vcnfw_log, "Enable vcnfw log(0 = disable (default value), 1 = e
module_param_named(vcnfw_log, amdgpu_vcnfw_log, int, 0444);
/**
+ * DOC: sg_display (int)
+ * Disable S/G (scatter/gather) display (i.e., display from system memory).
+ * This option is only relevant on APUs. Set this option to 0 to disable
+ * S/G display if you experience flickering or other issues under memory
+ * pressure and report the issue.
+ */
+MODULE_PARM_DESC(sg_display, "S/G Display (-1 = auto (default), 0 = disable)");
+module_param_named(sg_display, amdgpu_sg_display, int, 0444);
+
+/**
* DOC: smu_pptable_id (int)
* Used to override pptable id. id = 0 use VBIOS pptable.
* id > 0 use the soft pptable with specicfied id.
@@ -1924,9 +1960,6 @@ static const struct pci_device_id pciidlist[] = {
{0x1002, 0x73AF, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_SIENNA_CICHLID},
{0x1002, 0x73BF, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_SIENNA_CICHLID},
- /* Van Gogh */
- {0x1002, 0x163F, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_VANGOGH|AMD_IS_APU},
-
/* Yellow Carp */
{0x1002, 0x164D, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_YELLOW_CARP|AMD_IS_APU},
{0x1002, 0x1681, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_YELLOW_CARP|AMD_IS_APU},
@@ -2040,6 +2073,15 @@ static int amdgpu_pci_probe(struct pci_dev *pdev,
"See modparam exp_hw_support\n");
return -ENODEV;
}
+ /* differentiate between P10 and P11 asics with the same DID */
+ if (pdev->device == 0x67FF &&
+ (pdev->revision == 0xE3 ||
+ pdev->revision == 0xE7 ||
+ pdev->revision == 0xF3 ||
+ pdev->revision == 0xF7)) {
+ flags &= ~AMD_ASIC_MASK;
+ flags |= CHIP_POLARIS10;
+ }
/* Due to hardware bugs, S/G Display on raven requires a 1:1 IOMMU mapping,
* however, SME requires an indirect IOMMU mapping because the encryption
@@ -2087,11 +2129,6 @@ static int amdgpu_pci_probe(struct pci_dev *pdev,
}
#endif
- /* Get rid of things like offb */
- ret = drm_aperture_remove_conflicting_pci_framebuffers(pdev, &amdgpu_kms_driver);
- if (ret)
- return ret;
-
adev = devm_drm_dev_alloc(&pdev->dev, &amdgpu_kms_driver, typeof(*adev), ddev);
if (IS_ERR(adev))
return PTR_ERR(adev);
@@ -2109,12 +2146,12 @@ static int amdgpu_pci_probe(struct pci_dev *pdev,
pci_set_drvdata(pdev, ddev);
- ret = amdgpu_driver_load_kms(adev, ent->driver_data);
+ ret = amdgpu_driver_load_kms(adev, flags);
if (ret)
goto err_pci;
retry_init:
- ret = drm_dev_register(ddev, ent->driver_data);
+ ret = drm_dev_register(ddev, flags);
if (ret == -EAGAIN && ++retry <= 3) {
DRM_INFO("retry init %d\n", retry);
/* Don't request EX mode too frequently which is attacking */
@@ -2196,6 +2233,8 @@ amdgpu_pci_remove(struct pci_dev *pdev)
struct drm_device *dev = pci_get_drvdata(pdev);
struct amdgpu_device *adev = drm_to_adev(dev);
+ drm_dev_unplug(dev);
+
if (adev->pm.rpm_mode != AMDGPU_RUNPM_NONE) {
pm_runtime_get_sync(dev->dev);
pm_runtime_forbid(dev->dev);
@@ -2235,8 +2274,6 @@ amdgpu_pci_remove(struct pci_dev *pdev)
amdgpu_driver_unload_kms(dev);
- drm_dev_unplug(dev);
-
/*
* Flush any in flight DMA operations from device.
* Clear the Bus Master Enable bit and then wait on the PCIe Device
@@ -2372,8 +2409,10 @@ static int amdgpu_pmops_suspend(struct device *dev)
if (amdgpu_acpi_is_s0ix_active(adev))
adev->in_s0ix = true;
- else
+ else if (amdgpu_acpi_is_s3_active(adev))
adev->in_s3 = true;
+ if (!adev->in_s0ix && !adev->in_s3)
+ return 0;
return amdgpu_device_suspend(drm_dev, true);
}
@@ -2394,6 +2433,9 @@ static int amdgpu_pmops_resume(struct device *dev)
struct amdgpu_device *adev = drm_to_adev(drm_dev);
int r;
+ if (!adev->in_s0ix && !adev->in_s3)
+ return 0;
+
/* Avoids registers access if device is physically gone */
if (!pci_device_is_present(adev->pdev))
adev->no_hw_access = true;
@@ -2417,7 +2459,10 @@ static int amdgpu_pmops_freeze(struct device *dev)
adev->in_s4 = false;
if (r)
return r;
- return amdgpu_asic_reset(adev);
+
+ if (amdgpu_acpi_should_gpu_reset(adev))
+ return amdgpu_asic_reset(adev);
+ return 0;
}
static int amdgpu_pmops_thaw(struct device *dev)
@@ -2471,7 +2516,7 @@ static int amdgpu_runtime_idle_check_display(struct device *dev)
if (ret)
return ret;
- if (amdgpu_device_has_dc_support(adev)) {
+ if (adev->dc_enabled) {
struct drm_crtc *crtc;
drm_for_each_crtc(crtc, drm_dev) {
@@ -2572,6 +2617,8 @@ static int amdgpu_pmops_runtime_suspend(struct device *dev)
amdgpu_device_baco_enter(drm_dev);
}
+ dev_dbg(&pdev->dev, "asic/device is runtime suspended\n");
+
return 0;
}
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_eeprom.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_eeprom.c
index 4d9eb0137f8c..7d2a908438e9 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_eeprom.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_eeprom.c
@@ -79,13 +79,15 @@
* That is, for an I2C EEPROM driver everything is controlled by
* the "eeprom_addr".
*
+ * See also top of amdgpu_ras_eeprom.c.
+ *
* P.S. If you need to write, lock and read the Identification Page,
* (M24M02-DR device only, which we do not use), change the "7" to
* "0xF" in the macro below, and let the client set bit 20 to 1 in
* "eeprom_addr", and set A10 to 0 to write into it, and A10 and A1 to
* 1 to lock it permanently.
*/
-#define MAKE_I2C_ADDR(_aa) ((0xA << 3) | (((_aa) >> 16) & 7))
+#define MAKE_I2C_ADDR(_aa) ((0xA << 3) | (((_aa) >> 16) & 0xF))
static int __amdgpu_eeprom_xfer(struct i2c_adapter *i2c_adap, u32 eeprom_addr,
u8 *eeprom_buf, u16 buf_size, bool read)
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_encoders.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_encoders.c
index c96e458ed088..27a782a9dc72 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_encoders.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_encoders.c
@@ -24,7 +24,6 @@
* Alex Deucher
*/
-#include <drm/drm_crtc_helper.h>
#include <drm/amdgpu_drm.h>
#include "amdgpu.h"
#include "amdgpu_connectors.h"
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_fdinfo.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_fdinfo.c
index 99a7855ab1bc..c57252f004e8 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_fdinfo.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_fdinfo.c
@@ -60,12 +60,13 @@ void amdgpu_show_fdinfo(struct seq_file *m, struct file *f)
struct amdgpu_fpriv *fpriv = file->driver_priv;
struct amdgpu_vm *vm = &fpriv->vm;
- uint64_t vram_mem = 0, gtt_mem = 0, cpu_mem = 0;
+ struct amdgpu_mem_stats stats;
ktime_t usage[AMDGPU_HW_IP_NUM];
uint32_t bus, dev, fn, domain;
unsigned int hw_ip;
int ret;
+ memset(&stats, 0, sizeof(stats));
bus = adev->pdev->bus->number;
domain = pci_domain_nr(adev->pdev->bus);
dev = PCI_SLOT(adev->pdev->devfn);
@@ -75,7 +76,7 @@ void amdgpu_show_fdinfo(struct seq_file *m, struct file *f)
if (ret)
return;
- amdgpu_vm_get_memory(vm, &vram_mem, &gtt_mem, &cpu_mem);
+ amdgpu_vm_get_memory(vm, &stats);
amdgpu_bo_unreserve(vm->root.bo);
amdgpu_ctx_mgr_usage(&fpriv->ctx_mgr, usage);
@@ -90,9 +91,22 @@ void amdgpu_show_fdinfo(struct seq_file *m, struct file *f)
seq_printf(m, "drm-driver:\t%s\n", file->minor->dev->driver->name);
seq_printf(m, "drm-pdev:\t%04x:%02x:%02x.%d\n", domain, bus, dev, fn);
seq_printf(m, "drm-client-id:\t%Lu\n", vm->immediate.fence_context);
- seq_printf(m, "drm-memory-vram:\t%llu KiB\n", vram_mem/1024UL);
- seq_printf(m, "drm-memory-gtt: \t%llu KiB\n", gtt_mem/1024UL);
- seq_printf(m, "drm-memory-cpu: \t%llu KiB\n", cpu_mem/1024UL);
+ seq_printf(m, "drm-memory-vram:\t%llu KiB\n", stats.vram/1024UL);
+ seq_printf(m, "drm-memory-gtt: \t%llu KiB\n", stats.gtt/1024UL);
+ seq_printf(m, "drm-memory-cpu: \t%llu KiB\n", stats.cpu/1024UL);
+ seq_printf(m, "amd-memory-visible-vram:\t%llu KiB\n",
+ stats.visible_vram/1024UL);
+ seq_printf(m, "amd-evicted-vram:\t%llu KiB\n",
+ stats.evicted_vram/1024UL);
+ seq_printf(m, "amd-evicted-visible-vram:\t%llu KiB\n",
+ stats.evicted_visible_vram/1024UL);
+ seq_printf(m, "amd-requested-vram:\t%llu KiB\n",
+ stats.requested_vram/1024UL);
+ seq_printf(m, "amd-requested-visible-vram:\t%llu KiB\n",
+ stats.requested_visible_vram/1024UL);
+ seq_printf(m, "amd-requested-gtt:\t%llu KiB\n",
+ stats.requested_gtt/1024UL);
+
for (hw_ip = 0; hw_ip < AMDGPU_HW_IP_NUM; ++hw_ip) {
if (!usage[hw_ip])
continue;
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_fdinfo.h b/drivers/gpu/drm/amd/amdgpu/amdgpu_fdinfo.h
index 41a4c7056729..e86834bfea1d 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_fdinfo.h
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_fdinfo.h
@@ -30,7 +30,6 @@
#include <linux/rbtree.h>
#include <drm/gpu_scheduler.h>
#include <drm/drm_file.h>
-#include <drm/ttm/ttm_bo_driver.h>
#include <linux/sched/mm.h>
#include "amdgpu_sync.h"
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_fence.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_fence.c
index d0d99ed607dd..f52d0ba91a77 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_fence.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_fence.c
@@ -55,6 +55,7 @@ struct amdgpu_fence {
/* RB, DMA, etc. */
struct amdgpu_ring *ring;
+ ktime_t start_timestamp;
};
static struct kmem_cache *amdgpu_fence_slab;
@@ -199,6 +200,8 @@ int amdgpu_fence_emit(struct amdgpu_ring *ring, struct dma_fence **f, struct amd
}
}
+ to_amdgpu_fence(fence)->start_timestamp = ktime_get();
+
/* This function can't be called concurrently anyway, otherwise
* emitting the fence would mess up the hardware ring buffer.
*/
@@ -407,6 +410,57 @@ unsigned amdgpu_fence_count_emitted(struct amdgpu_ring *ring)
}
/**
+ * amdgpu_fence_last_unsignaled_time_us - the time fence emitted until now
+ * @ring: ring the fence is associated with
+ *
+ * Find the earliest fence unsignaled until now, calculate the time delta
+ * between the time fence emitted and now.
+ */
+u64 amdgpu_fence_last_unsignaled_time_us(struct amdgpu_ring *ring)
+{
+ struct amdgpu_fence_driver *drv = &ring->fence_drv;
+ struct dma_fence *fence;
+ uint32_t last_seq, sync_seq;
+
+ last_seq = atomic_read(&ring->fence_drv.last_seq);
+ sync_seq = READ_ONCE(ring->fence_drv.sync_seq);
+ if (last_seq == sync_seq)
+ return 0;
+
+ ++last_seq;
+ last_seq &= drv->num_fences_mask;
+ fence = drv->fences[last_seq];
+ if (!fence)
+ return 0;
+
+ return ktime_us_delta(ktime_get(),
+ to_amdgpu_fence(fence)->start_timestamp);
+}
+
+/**
+ * amdgpu_fence_update_start_timestamp - update the timestamp of the fence
+ * @ring: ring the fence is associated with
+ * @seq: the fence seq number to update.
+ * @timestamp: the start timestamp to update.
+ *
+ * The function called at the time the fence and related ib is about to
+ * resubmit to gpu in MCBP scenario. Thus we do not consider race condition
+ * with amdgpu_fence_process to modify the same fence.
+ */
+void amdgpu_fence_update_start_timestamp(struct amdgpu_ring *ring, uint32_t seq, ktime_t timestamp)
+{
+ struct amdgpu_fence_driver *drv = &ring->fence_drv;
+ struct dma_fence *fence;
+
+ seq &= drv->num_fences_mask;
+ fence = drv->fences[seq];
+ if (!fence)
+ return;
+
+ to_amdgpu_fence(fence)->start_timestamp = timestamp;
+}
+
+/**
* amdgpu_fence_driver_start_ring - make the fence driver
* ready for use on the requested ring.
*
@@ -564,7 +618,13 @@ void amdgpu_fence_driver_sw_fini(struct amdgpu_device *adev)
if (!ring || !ring->fence_drv.initialized)
continue;
- if (!ring->no_scheduler)
+ /*
+ * Notice we check for sched.ops since there's some
+ * override on the meaning of sched.ready by amdgpu.
+ * The natural check would be sched.ready, which is
+ * set as drm_sched_init() finishes...
+ */
+ if (ring->sched.ops)
drm_sched_fini(&ring->sched);
for (j = 0; j <= ring->fence_drv.num_fences_mask; ++j)
@@ -618,6 +678,15 @@ void amdgpu_fence_driver_clear_job_fences(struct amdgpu_ring *ring)
ptr = &ring->fence_drv.fences[i];
old = rcu_dereference_protected(*ptr, 1);
if (old && old->ops == &amdgpu_job_fence_ops) {
+ struct amdgpu_job *job;
+
+ /* For non-scheduler bad job, i.e. failed ib test, we need to signal
+ * it right here or we won't be able to track them in fence_drv
+ * and they will remain unsignaled during sa_bo free.
+ */
+ job = container_of(old, struct amdgpu_job, hw_fence);
+ if (!job->base.s_fence && !dma_fence_is_signaled(old))
+ dma_fence_signal(old);
RCU_INIT_POINTER(*ptr, NULL);
dma_fence_put(old);
}
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_fru_eeprom.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_fru_eeprom.c
index e325150879df..4620c4712ce3 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_fru_eeprom.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_fru_eeprom.c
@@ -29,9 +29,10 @@
#include "amdgpu_fru_eeprom.h"
#include "amdgpu_eeprom.h"
-#define FRU_EEPROM_MADDR 0x60000
+#define FRU_EEPROM_MADDR_6 0x60000
+#define FRU_EEPROM_MADDR_8 0x80000
-static bool is_fru_eeprom_supported(struct amdgpu_device *adev)
+static bool is_fru_eeprom_supported(struct amdgpu_device *adev, u32 *fru_addr)
{
/* Only server cards have the FRU EEPROM
* TODO: See if we can figure this out dynamically instead of
@@ -45,6 +46,11 @@ static bool is_fru_eeprom_supported(struct amdgpu_device *adev)
if (amdgpu_sriov_vf(adev))
return false;
+ /* The default I2C EEPROM address of the FRU.
+ */
+ if (fru_addr)
+ *fru_addr = FRU_EEPROM_MADDR_8;
+
/* VBIOS is of the format ###-DXXXYYYY-##. For SKU identification,
* we can use just the "DXXX" portion. If there were more models, we
* could convert the 3 characters to a hex integer and use a switch
@@ -57,21 +63,31 @@ static bool is_fru_eeprom_supported(struct amdgpu_device *adev)
if (strnstr(atom_ctx->vbios_version, "D161",
sizeof(atom_ctx->vbios_version)) ||
strnstr(atom_ctx->vbios_version, "D163",
- sizeof(atom_ctx->vbios_version)))
+ sizeof(atom_ctx->vbios_version))) {
+ if (fru_addr)
+ *fru_addr = FRU_EEPROM_MADDR_6;
return true;
- else
+ } else {
return false;
+ }
case CHIP_ALDEBARAN:
- /* All Aldebaran SKUs have the FRU */
+ /* All Aldebaran SKUs have an FRU */
+ if (!strnstr(atom_ctx->vbios_version, "D673",
+ sizeof(atom_ctx->vbios_version)))
+ if (fru_addr)
+ *fru_addr = FRU_EEPROM_MADDR_6;
return true;
case CHIP_SIENNA_CICHLID:
if (strnstr(atom_ctx->vbios_version, "D603",
- sizeof(atom_ctx->vbios_version))) {
+ sizeof(atom_ctx->vbios_version))) {
if (strnstr(atom_ctx->vbios_version, "D603GLXE",
- sizeof(atom_ctx->vbios_version)))
+ sizeof(atom_ctx->vbios_version))) {
return false;
- else
+ } else {
+ if (fru_addr)
+ *fru_addr = FRU_EEPROM_MADDR_6;
return true;
+ }
} else {
return false;
}
@@ -80,41 +96,14 @@ static bool is_fru_eeprom_supported(struct amdgpu_device *adev)
}
}
-static int amdgpu_fru_read_eeprom(struct amdgpu_device *adev, uint32_t addrptr,
- unsigned char *buf, size_t buf_size)
-{
- int ret;
- u8 size;
-
- ret = amdgpu_eeprom_read(adev->pm.fru_eeprom_i2c_bus, addrptr, buf, 1);
- if (ret < 1) {
- DRM_WARN("FRU: Failed to get size field");
- return ret;
- }
-
- /* The size returned by the i2c requires subtraction of 0xC0 since the
- * size apparently always reports as 0xC0+actual size.
- */
- size = buf[0] & 0x3F;
- size = min_t(size_t, size, buf_size);
-
- ret = amdgpu_eeprom_read(adev->pm.fru_eeprom_i2c_bus, addrptr + 1,
- buf, size);
- if (ret < 1) {
- DRM_WARN("FRU: Failed to get data field");
- return ret;
- }
-
- return size;
-}
-
int amdgpu_fru_get_product_info(struct amdgpu_device *adev)
{
- unsigned char buf[AMDGPU_PRODUCT_NAME_LEN];
- u32 addrptr;
+ unsigned char buf[8], *pia;
+ u32 addr, fru_addr;
int size, len;
+ u8 csum;
- if (!is_fru_eeprom_supported(adev))
+ if (!is_fru_eeprom_supported(adev, &fru_addr))
return 0;
/* If algo exists, it means that the i2c_adapter's initialized */
@@ -123,88 +112,102 @@ int amdgpu_fru_get_product_info(struct amdgpu_device *adev)
return -ENODEV;
}
- /* There's a lot of repetition here. This is due to the FRU having
- * variable-length fields. To get the information, we have to find the
- * size of each field, and then keep reading along and reading along
- * until we get all of the data that we want. We use addrptr to track
- * the address as we go
- */
-
- /* The first fields are all of size 1-byte, from 0-7 are offsets that
- * contain information that isn't useful to us.
- * Bytes 8-a are all 1-byte and refer to the size of the entire struct,
- * and the language field, so just start from 0xb, manufacturer size
- */
- addrptr = FRU_EEPROM_MADDR + 0xb;
- size = amdgpu_fru_read_eeprom(adev, addrptr, buf, sizeof(buf));
- if (size < 1) {
- DRM_ERROR("Failed to read FRU Manufacturer, ret:%d", size);
- return -EINVAL;
+ /* Read the IPMI Common header */
+ len = amdgpu_eeprom_read(adev->pm.fru_eeprom_i2c_bus, fru_addr, buf,
+ sizeof(buf));
+ if (len != 8) {
+ DRM_ERROR("Couldn't read the IPMI Common Header: %d", len);
+ return len < 0 ? len : -EIO;
}
- /* Increment the addrptr by the size of the field, and 1 due to the
- * size field being 1 byte. This pattern continues below.
- */
- addrptr += size + 1;
- size = amdgpu_fru_read_eeprom(adev, addrptr, buf, sizeof(buf));
- if (size < 1) {
- DRM_ERROR("Failed to read FRU product name, ret:%d", size);
- return -EINVAL;
+ if (buf[0] != 1) {
+ DRM_ERROR("Bad IPMI Common Header version: 0x%02x", buf[0]);
+ return -EIO;
}
- len = size;
- if (len >= AMDGPU_PRODUCT_NAME_LEN) {
- DRM_WARN("FRU Product Name is larger than %d characters. This is likely a mistake",
- AMDGPU_PRODUCT_NAME_LEN);
- len = AMDGPU_PRODUCT_NAME_LEN - 1;
- }
- memcpy(adev->product_name, buf, len);
- adev->product_name[len] = '\0';
-
- addrptr += size + 1;
- size = amdgpu_fru_read_eeprom(adev, addrptr, buf, sizeof(buf));
- if (size < 1) {
- DRM_ERROR("Failed to read FRU product number, ret:%d", size);
- return -EINVAL;
+ for (csum = 0; len > 0; len--)
+ csum += buf[len - 1];
+ if (csum) {
+ DRM_ERROR("Bad IPMI Common Header checksum: 0x%02x", csum);
+ return -EIO;
}
- len = size;
- /* Product number should only be 16 characters. Any more,
- * and something could be wrong. Cap it at 16 to be safe
- */
- if (len >= sizeof(adev->product_number)) {
- DRM_WARN("FRU Product Number is larger than 16 characters. This is likely a mistake");
- len = sizeof(adev->product_number) - 1;
- }
- memcpy(adev->product_number, buf, len);
- adev->product_number[len] = '\0';
+ /* Get the offset to the Product Info Area (PIA). */
+ addr = buf[4] * 8;
+ if (!addr)
+ return 0;
- addrptr += size + 1;
- size = amdgpu_fru_read_eeprom(adev, addrptr, buf, sizeof(buf));
+ /* Get the absolute address to the PIA. */
+ addr += fru_addr;
- if (size < 1) {
- DRM_ERROR("Failed to read FRU product version, ret:%d", size);
- return -EINVAL;
+ /* Read the header of the PIA. */
+ len = amdgpu_eeprom_read(adev->pm.fru_eeprom_i2c_bus, addr, buf, 3);
+ if (len != 3) {
+ DRM_ERROR("Couldn't read the Product Info Area header: %d", len);
+ return len < 0 ? len : -EIO;
}
- addrptr += size + 1;
- size = amdgpu_fru_read_eeprom(adev, addrptr, buf, sizeof(buf));
+ if (buf[0] != 1) {
+ DRM_ERROR("Bad IPMI Product Info Area version: 0x%02x", buf[0]);
+ return -EIO;
+ }
- if (size < 1) {
- DRM_ERROR("Failed to read FRU serial number, ret:%d", size);
- return -EINVAL;
+ size = buf[1] * 8;
+ pia = kzalloc(size, GFP_KERNEL);
+ if (!pia)
+ return -ENOMEM;
+
+ /* Read the whole PIA. */
+ len = amdgpu_eeprom_read(adev->pm.fru_eeprom_i2c_bus, addr, pia, size);
+ if (len != size) {
+ kfree(pia);
+ DRM_ERROR("Couldn't read the Product Info Area: %d", len);
+ return len < 0 ? len : -EIO;
}
- len = size;
- /* Serial number should only be 16 characters. Any more,
- * and something could be wrong. Cap it at 16 to be safe
- */
- if (len >= sizeof(adev->serial)) {
- DRM_WARN("FRU Serial Number is larger than 16 characters. This is likely a mistake");
- len = sizeof(adev->serial) - 1;
+ for (csum = 0; size > 0; size--)
+ csum += pia[size - 1];
+ if (csum) {
+ DRM_ERROR("Bad Product Info Area checksum: 0x%02x", csum);
+ return -EIO;
}
- memcpy(adev->serial, buf, len);
- adev->serial[len] = '\0';
+ /* Now extract useful information from the PIA.
+ *
+ * Skip the Manufacturer Name at [3] and go directly to
+ * the Product Name field.
+ */
+ addr = 3 + 1 + (pia[3] & 0x3F);
+ if (addr + 1 >= len)
+ goto Out;
+ memcpy(adev->product_name, pia + addr + 1,
+ min_t(size_t,
+ sizeof(adev->product_name),
+ pia[addr] & 0x3F));
+ adev->product_name[sizeof(adev->product_name) - 1] = '\0';
+
+ /* Go to the Product Part/Model Number field. */
+ addr += 1 + (pia[addr] & 0x3F);
+ if (addr + 1 >= len)
+ goto Out;
+ memcpy(adev->product_number, pia + addr + 1,
+ min_t(size_t,
+ sizeof(adev->product_number),
+ pia[addr] & 0x3F));
+ adev->product_number[sizeof(adev->product_number) - 1] = '\0';
+
+ /* Go to the Product Version field. */
+ addr += 1 + (pia[addr] & 0x3F);
+
+ /* Go to the Product Serial Number field. */
+ addr += 1 + (pia[addr] & 0x3F);
+ if (addr + 1 >= len)
+ goto Out;
+ memcpy(adev->serial, pia + addr + 1, min_t(size_t,
+ sizeof(adev->serial),
+ pia[addr] & 0x3F));
+ adev->serial[sizeof(adev->serial) - 1] = '\0';
+Out:
+ kfree(pia);
return 0;
}
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_gem.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_gem.c
index 8ef31d687ef3..863cb668e000 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_gem.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_gem.c
@@ -34,10 +34,12 @@
#include <drm/amdgpu_drm.h>
#include <drm/drm_drv.h>
#include <drm/drm_gem_ttm_helper.h>
+#include <drm/ttm/ttm_tt.h>
#include "amdgpu.h"
#include "amdgpu_display.h"
#include "amdgpu_dma_buf.h"
+#include "amdgpu_hmm.h"
#include "amdgpu_xgmi.h"
static const struct drm_gem_object_funcs amdgpu_gem_object_funcs;
@@ -60,10 +62,10 @@ static vm_fault_t amdgpu_gem_fault(struct vm_fault *vmf)
goto unlock;
}
- ret = ttm_bo_vm_fault_reserved(vmf, vmf->vma->vm_page_prot,
- TTM_BO_VM_NUM_PREFAULT);
+ ret = ttm_bo_vm_fault_reserved(vmf, vmf->vma->vm_page_prot,
+ TTM_BO_VM_NUM_PREFAULT);
- drm_dev_exit(idx);
+ drm_dev_exit(idx);
} else {
ret = ttm_bo_vm_dummy_page(vmf, vmf->vma->vm_page_prot);
}
@@ -87,7 +89,7 @@ static void amdgpu_gem_object_free(struct drm_gem_object *gobj)
struct amdgpu_bo *robj = gem_to_amdgpu_bo(gobj);
if (robj) {
- amdgpu_mn_unregister(robj);
+ amdgpu_hmm_unregister(robj);
amdgpu_bo_unref(&robj);
}
}
@@ -255,8 +257,8 @@ static int amdgpu_gem_object_mmap(struct drm_gem_object *obj, struct vm_area_str
* becoming writable and makes is_cow_mapping(vm_flags) false.
*/
if (is_cow_mapping(vma->vm_flags) &&
- !(vma->vm_flags & (VM_READ | VM_WRITE | VM_EXEC)))
- vma->vm_flags &= ~VM_MAYWRITE;
+ !(vma->vm_flags & VM_ACCESS_FLAGS))
+ vm_flags_clear(vma, VM_MAYWRITE);
return drm_gem_ttm_mmap(obj, vma);
}
@@ -378,6 +380,7 @@ int amdgpu_gem_userptr_ioctl(struct drm_device *dev, void *data,
struct amdgpu_device *adev = drm_to_adev(dev);
struct drm_amdgpu_gem_userptr *args = data;
struct drm_gem_object *gobj;
+ struct hmm_range *range;
struct amdgpu_bo *bo;
uint32_t handle;
int r;
@@ -413,14 +416,13 @@ int amdgpu_gem_userptr_ioctl(struct drm_device *dev, void *data,
if (r)
goto release_object;
- if (args->flags & AMDGPU_GEM_USERPTR_REGISTER) {
- r = amdgpu_mn_register(bo, args->addr);
- if (r)
- goto release_object;
- }
+ r = amdgpu_hmm_register(bo, args->addr);
+ if (r)
+ goto release_object;
if (args->flags & AMDGPU_GEM_USERPTR_VALIDATE) {
- r = amdgpu_ttm_tt_get_user_pages(bo, bo->tbo.ttm->pages);
+ r = amdgpu_ttm_tt_get_user_pages(bo, bo->tbo.ttm->pages,
+ &range);
if (r)
goto release_object;
@@ -443,7 +445,7 @@ int amdgpu_gem_userptr_ioctl(struct drm_device *dev, void *data,
user_pages_done:
if (args->flags & AMDGPU_GEM_USERPTR_VALIDATE)
- amdgpu_ttm_tt_get_user_pages_done(bo->tbo.ttm);
+ amdgpu_ttm_tt_get_user_pages_done(bo->tbo.ttm, range);
release_object:
drm_gem_object_put(gobj);
@@ -967,7 +969,7 @@ static int amdgpu_debugfs_gem_info_show(struct seq_file *m, void *unused)
* Therefore, we need to protect this ->comm access using RCU.
*/
rcu_read_lock();
- task = pid_task(file->pid, PIDTYPE_PID);
+ task = pid_task(file->pid, PIDTYPE_TGID);
seq_printf(m, "pid %8d command %s:\n", pid_nr(file->pid),
task ? task->comm : "<unknown>");
rcu_read_unlock();
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_gfx.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_gfx.c
index 9546adc8a76f..f3f541ba0aca 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_gfx.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_gfx.c
@@ -156,6 +156,9 @@ static bool amdgpu_gfx_is_compute_multipipe_capable(struct amdgpu_device *adev)
return amdgpu_compute_multipipe == 1;
}
+ if (adev->ip_versions[GC_HWIP][0] > IP_VERSION(9, 0, 0))
+ return true;
+
/* FIXME: spreading the queues across pipes causes perf regressions
* on POLARIS11 compute workloads */
if (adev->asic_type == CHIP_POLARIS11)
@@ -302,6 +305,7 @@ int amdgpu_gfx_kiq_init_ring(struct amdgpu_device *adev,
ring->ring_obj = NULL;
ring->use_doorbell = true;
ring->doorbell_index = adev->doorbell_index.kiq;
+ ring->vm_hub = AMDGPU_GFXHUB_0;
r = amdgpu_gfx_kiq_acquire(adev, ring);
if (r)
@@ -372,8 +376,11 @@ int amdgpu_gfx_mqd_sw_init(struct amdgpu_device *adev,
* KIQ MQD no matter SRIOV or Bare-metal
*/
r = amdgpu_bo_create_kernel(adev, mqd_size, PAGE_SIZE,
- AMDGPU_GEM_DOMAIN_VRAM, &ring->mqd_obj,
- &ring->mqd_gpu_addr, &ring->mqd_ptr);
+ AMDGPU_GEM_DOMAIN_VRAM |
+ AMDGPU_GEM_DOMAIN_GTT,
+ &ring->mqd_obj,
+ &ring->mqd_gpu_addr,
+ &ring->mqd_ptr);
if (r) {
dev_warn(adev->dev, "failed to create ring mqd ob (%d)", r);
return r;
@@ -583,10 +590,14 @@ void amdgpu_gfx_off_ctrl(struct amdgpu_device *adev, bool enable)
if (adev->gfx.gfx_off_req_count == 0 &&
!adev->gfx.gfx_off_state) {
/* If going to s2idle, no need to wait */
- if (adev->in_s0ix)
- delay = GFX_OFF_NO_DELAY;
- schedule_delayed_work(&adev->gfx.gfx_off_delay_work,
+ if (adev->in_s0ix) {
+ if (!amdgpu_dpm_set_powergating_by_smu(adev,
+ AMD_IP_BLOCK_TYPE_GFX, true))
+ adev->gfx.gfx_off_state = true;
+ } else {
+ schedule_delayed_work(&adev->gfx.gfx_off_delay_work,
delay);
+ }
}
} else {
if (adev->gfx.gfx_off_req_count == 0) {
@@ -676,9 +687,11 @@ int amdgpu_gfx_ras_late_init(struct amdgpu_device *adev, struct ras_common_if *r
if (r)
return r;
- r = amdgpu_irq_get(adev, &adev->gfx.cp_ecc_error_irq, 0);
- if (r)
- goto late_fini;
+ if (adev->gfx.cp_ecc_error_irq.funcs) {
+ r = amdgpu_irq_get(adev, &adev->gfx.cp_ecc_error_irq, 0);
+ if (r)
+ goto late_fini;
+ }
} else {
amdgpu_ras_feature_enable_on_boot(adev, ras_block, 0);
}
@@ -689,6 +702,50 @@ late_fini:
return r;
}
+int amdgpu_gfx_ras_sw_init(struct amdgpu_device *adev)
+{
+ int err = 0;
+ struct amdgpu_gfx_ras *ras = NULL;
+
+ /* adev->gfx.ras is NULL, which means gfx does not
+ * support ras function, then do nothing here.
+ */
+ if (!adev->gfx.ras)
+ return 0;
+
+ ras = adev->gfx.ras;
+
+ err = amdgpu_ras_register_ras_block(adev, &ras->ras_block);
+ if (err) {
+ dev_err(adev->dev, "Failed to register gfx ras block!\n");
+ return err;
+ }
+
+ strcpy(ras->ras_block.ras_comm.name, "gfx");
+ ras->ras_block.ras_comm.block = AMDGPU_RAS_BLOCK__GFX;
+ ras->ras_block.ras_comm.type = AMDGPU_RAS_ERROR__MULTI_UNCORRECTABLE;
+ adev->gfx.ras_if = &ras->ras_block.ras_comm;
+
+ /* If not define special ras_late_init function, use gfx default ras_late_init */
+ if (!ras->ras_block.ras_late_init)
+ ras->ras_block.ras_late_init = amdgpu_gfx_ras_late_init;
+
+ /* If not defined special ras_cb function, use default ras_cb */
+ if (!ras->ras_block.ras_cb)
+ ras->ras_block.ras_cb = amdgpu_gfx_process_ras_data_cb;
+
+ return 0;
+}
+
+int amdgpu_gfx_poison_consumption_handler(struct amdgpu_device *adev,
+ struct amdgpu_iv_entry *entry)
+{
+ if (adev->gfx.ras && adev->gfx.ras->poison_consumption_handler)
+ return adev->gfx.ras->poison_consumption_handler(adev, entry);
+
+ return 0;
+}
+
int amdgpu_gfx_process_ras_data_cb(struct amdgpu_device *adev,
void *err_data,
struct amdgpu_iv_entry *entry)
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_gfx.h b/drivers/gpu/drm/amd/amdgpu/amdgpu_gfx.h
index 832b3807f1d6..bfabea76d166 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_gfx.h
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_gfx.h
@@ -33,6 +33,7 @@
#include "amdgpu_imu.h"
#include "soc15.h"
#include "amdgpu_ras.h"
+#include "amdgpu_ring_mux.h"
/* GFX current status */
#define AMDGPU_GFX_NORMAL_MODE 0x00000000L
@@ -41,6 +42,8 @@
#define AMDGPU_GFX_CG_DISABLED_MODE 0x00000004L
#define AMDGPU_GFX_LBPW_DISABLED_MODE 0x00000008L
+#define AMDGPU_MAX_GC_INSTANCES 8
+
#define AMDGPU_MAX_GFX_QUEUES KGD_MAX_QUEUES
#define AMDGPU_MAX_COMPUTE_QUEUES KGD_MAX_QUEUES
@@ -52,6 +55,15 @@ enum amdgpu_gfx_pipe_priority {
#define AMDGPU_GFX_QUEUE_PRIORITY_MINIMUM 0
#define AMDGPU_GFX_QUEUE_PRIORITY_MAXIMUM 15
+enum amdgpu_gfx_partition {
+ AMDGPU_SPX_PARTITION_MODE = 0,
+ AMDGPU_DPX_PARTITION_MODE = 1,
+ AMDGPU_TPX_PARTITION_MODE = 2,
+ AMDGPU_QPX_PARTITION_MODE = 3,
+ AMDGPU_CPX_PARTITION_MODE = 4,
+ AMDGPU_UNKNOWN_COMPUTE_PARTITION_MODE,
+};
+
struct amdgpu_mec {
struct amdgpu_bo *hpd_eop_obj;
u64 hpd_eop_gpu_addr;
@@ -177,6 +189,8 @@ struct amdgpu_gfx_config {
uint32_t num_sc_per_sh;
uint32_t num_packer_per_sc;
uint32_t pa_sc_tile_steering_override;
+ /* Whether texture coordinate truncation is conformant. */
+ bool ta_cntl2_truncate_coord_mode;
uint64_t tcc_disabled_mask;
uint32_t gc_num_tcp_per_sa;
uint32_t gc_num_sdp_interface;
@@ -209,6 +223,11 @@ struct amdgpu_gfx_ras {
struct amdgpu_ras_block_object ras_block;
void (*enable_watchdog_timer)(struct amdgpu_device *adev);
bool (*query_utcl2_poison_status)(struct amdgpu_device *adev);
+ int (*rlc_gc_fed_irq)(struct amdgpu_device *adev,
+ struct amdgpu_irq_src *source,
+ struct amdgpu_iv_entry *entry);
+ int (*poison_consumption_handler)(struct amdgpu_device *adev,
+ struct amdgpu_iv_entry *entry);
};
struct amdgpu_gfx_funcs {
@@ -315,13 +334,14 @@ struct amdgpu_gfx {
bool cp_fw_write_wait;
struct amdgpu_ring gfx_ring[AMDGPU_MAX_GFX_RINGS];
unsigned num_gfx_rings;
- struct amdgpu_ring compute_ring[AMDGPU_MAX_COMPUTE_RINGS];
+ struct amdgpu_ring compute_ring[AMDGPU_MAX_COMPUTE_RINGS * AMDGPU_MAX_GC_INSTANCES];
unsigned num_compute_rings;
struct amdgpu_irq_src eop_irq;
struct amdgpu_irq_src priv_reg_irq;
struct amdgpu_irq_src priv_inst_irq;
struct amdgpu_irq_src cp_ecc_error_irq;
struct amdgpu_irq_src sq_irq;
+ struct amdgpu_irq_src rlc_gc_fed_irq;
struct sq_work sq_work;
/* gfx status */
@@ -352,6 +372,13 @@ struct amdgpu_gfx {
struct amdgpu_gfx_ras *ras;
bool is_poweron;
+
+ struct amdgpu_ring sw_gfx_ring[AMDGPU_MAX_SW_GFX_RINGS];
+ struct amdgpu_ring_mux muxer;
+
+ enum amdgpu_gfx_partition partition_mode;
+ uint32_t num_xcd;
+ uint32_t num_xcc_per_xcp;
};
#define amdgpu_gfx_get_gpu_clock_counter(adev) (adev)->gfx.funcs->get_gpu_clock_counter((adev))
@@ -428,4 +455,7 @@ void amdgpu_kiq_wreg(struct amdgpu_device *adev, uint32_t reg, uint32_t v);
int amdgpu_gfx_get_num_kcq(struct amdgpu_device *adev);
void amdgpu_gfx_cp_init_microcode(struct amdgpu_device *adev, uint32_t ucode_id);
+int amdgpu_gfx_ras_sw_init(struct amdgpu_device *adev);
+int amdgpu_gfx_poison_consumption_handler(struct amdgpu_device *adev,
+ struct amdgpu_iv_entry *entry);
#endif
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_gmc.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_gmc.c
index 34233a74248c..4e2531758866 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_gmc.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_gmc.c
@@ -35,6 +35,7 @@
#include "amdgpu_xgmi.h"
#include <drm/drm_drv.h>
+#include <drm/ttm/ttm_tt.h>
/**
* amdgpu_gmc_pdb0_alloc - allocate vram for pdb0
@@ -201,13 +202,20 @@ uint64_t amdgpu_gmc_agp_addr(struct ttm_buffer_object *bo)
void amdgpu_gmc_vram_location(struct amdgpu_device *adev, struct amdgpu_gmc *mc,
u64 base)
{
+ uint64_t vis_limit = (uint64_t)amdgpu_vis_vram_limit << 20;
uint64_t limit = (uint64_t)amdgpu_vram_limit << 20;
mc->vram_start = base;
mc->vram_end = mc->vram_start + mc->mc_vram_size - 1;
- if (limit && limit < mc->real_vram_size)
+ if (limit < mc->real_vram_size)
mc->real_vram_size = limit;
+ if (vis_limit && vis_limit < mc->visible_vram_size)
+ mc->visible_vram_size = vis_limit;
+
+ if (mc->real_vram_size < mc->visible_vram_size)
+ mc->visible_vram_size = mc->real_vram_size;
+
if (mc->xgmi.num_physical_nodes == 0) {
mc->fb_start = mc->vram_start;
mc->fb_end = mc->vram_end;
@@ -387,8 +395,21 @@ bool amdgpu_gmc_filter_faults(struct amdgpu_device *adev,
while (fault->timestamp >= stamp) {
uint64_t tmp;
- if (atomic64_read(&fault->key) == key)
- return true;
+ if (atomic64_read(&fault->key) == key) {
+ /*
+ * if we get a fault which is already present in
+ * the fault_ring and the timestamp of
+ * the fault is after the expired timestamp,
+ * then this is a new fault that needs to be added
+ * into the fault ring.
+ */
+ if (fault->timestamp_expiry != 0 &&
+ amdgpu_ih_ts_after(fault->timestamp_expiry,
+ timestamp))
+ break;
+ else
+ return true;
+ }
tmp = fault->timestamp;
fault = &gmc->fault_ring[fault->next];
@@ -424,28 +445,74 @@ void amdgpu_gmc_filter_faults_remove(struct amdgpu_device *adev, uint64_t addr,
{
struct amdgpu_gmc *gmc = &adev->gmc;
uint64_t key = amdgpu_gmc_fault_key(addr, pasid);
+ struct amdgpu_ih_ring *ih;
struct amdgpu_gmc_fault *fault;
+ uint32_t last_wptr;
+ uint64_t last_ts;
uint32_t hash;
uint64_t tmp;
+ ih = adev->irq.retry_cam_enabled ? &adev->irq.ih_soft : &adev->irq.ih1;
+ /* Get the WPTR of the last entry in IH ring */
+ last_wptr = amdgpu_ih_get_wptr(adev, ih);
+ /* Order wptr with ring data. */
+ rmb();
+ /* Get the timetamp of the last entry in IH ring */
+ last_ts = amdgpu_ih_decode_iv_ts(adev, ih, last_wptr, -1);
+
hash = hash_64(key, AMDGPU_GMC_FAULT_HASH_ORDER);
fault = &gmc->fault_ring[gmc->fault_hash[hash].idx];
do {
- if (atomic64_cmpxchg(&fault->key, key, 0) == key)
+ if (atomic64_read(&fault->key) == key) {
+ /*
+ * Update the timestamp when this fault
+ * expired.
+ */
+ fault->timestamp_expiry = last_ts;
break;
+ }
tmp = fault->timestamp;
fault = &gmc->fault_ring[fault->next];
} while (fault->timestamp < tmp);
}
-int amdgpu_gmc_ras_early_init(struct amdgpu_device *adev)
+int amdgpu_gmc_ras_sw_init(struct amdgpu_device *adev)
{
- if (!adev->gmc.xgmi.connected_to_cpu) {
- adev->gmc.xgmi.ras = &xgmi_ras;
- amdgpu_ras_register_ras_block(adev, &adev->gmc.xgmi.ras->ras_block);
- adev->gmc.xgmi.ras_if = &adev->gmc.xgmi.ras->ras_block.ras_comm;
- }
+ int r;
+
+ /* umc ras block */
+ r = amdgpu_umc_ras_sw_init(adev);
+ if (r)
+ return r;
+
+ /* mmhub ras block */
+ r = amdgpu_mmhub_ras_sw_init(adev);
+ if (r)
+ return r;
+
+ /* hdp ras block */
+ r = amdgpu_hdp_ras_sw_init(adev);
+ if (r)
+ return r;
+
+ /* mca.x ras block */
+ r = amdgpu_mca_mp0_ras_sw_init(adev);
+ if (r)
+ return r;
+
+ r = amdgpu_mca_mp1_ras_sw_init(adev);
+ if (r)
+ return r;
+
+ r = amdgpu_mca_mpio_ras_sw_init(adev);
+ if (r)
+ return r;
+
+ /* xgmi ras block */
+ r = amdgpu_xgmi_ras_sw_init(adev);
+ if (r)
+ return r;
return 0;
}
@@ -479,9 +546,15 @@ int amdgpu_gmc_allocate_vm_inv_eng(struct amdgpu_device *adev)
unsigned i;
unsigned vmhub, inv_eng;
+ if (adev->enable_mes) {
+ /* reserve engine 5 for firmware */
+ for (vmhub = 0; vmhub < AMDGPU_MAX_VMHUBS; vmhub++)
+ vm_inv_engs[vmhub] &= ~(1 << 5);
+ }
+
for (i = 0; i < adev->num_rings; ++i) {
ring = adev->rings[i];
- vmhub = ring->funcs->vmhub;
+ vmhub = ring->vm_hub;
if (ring == &adev->mes.ring)
continue;
@@ -497,7 +570,7 @@ int amdgpu_gmc_allocate_vm_inv_eng(struct amdgpu_device *adev)
vm_inv_engs[vmhub] &= ~(1 << ring->vm_inv_eng);
dev_info(adev->dev, "ring %s uses VM inv eng %u on hub %u\n",
- ring->name, ring->vm_inv_eng, ring->funcs->vmhub);
+ ring->name, ring->vm_inv_eng, ring->vm_hub);
}
return 0;
@@ -538,10 +611,13 @@ void amdgpu_gmc_tmz_set(struct amdgpu_device *adev)
case IP_VERSION(10, 3, 2):
case IP_VERSION(10, 3, 4):
case IP_VERSION(10, 3, 5):
+ case IP_VERSION(10, 3, 6):
/* VANGOGH */
case IP_VERSION(10, 3, 1):
/* YELLOW_CARP*/
case IP_VERSION(10, 3, 3):
+ case IP_VERSION(11, 0, 1):
+ case IP_VERSION(11, 0, 4):
/* Don't enable it by default yet.
*/
if (amdgpu_tmz < 1) {
@@ -578,6 +654,7 @@ void amdgpu_gmc_noretry_set(struct amdgpu_device *adev)
gc_ver == IP_VERSION(9, 4, 0) ||
gc_ver == IP_VERSION(9, 4, 1) ||
gc_ver == IP_VERSION(9, 4, 2) ||
+ gc_ver == IP_VERSION(9, 4, 3) ||
gc_ver >= IP_VERSION(10, 3, 0));
gmc->noretry = (amdgpu_noretry == -1) ? noretry_default : amdgpu_noretry;
@@ -656,7 +733,7 @@ void amdgpu_gmc_get_vbios_allocations(struct amdgpu_device *adev)
}
if (amdgpu_sriov_vf(adev) ||
- !amdgpu_device_ip_get_ip_block(adev, AMD_IP_BLOCK_TYPE_DCE)) {
+ !amdgpu_device_has_display_hardware(adev)) {
size = 0;
} else {
size = amdgpu_gmc_get_vbios_fb_size(adev);
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_gmc.h b/drivers/gpu/drm/amd/amdgpu/amdgpu_gmc.h
index 0305b660cd17..6d105d7fb98b 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_gmc.h
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_gmc.h
@@ -70,6 +70,7 @@ struct amdgpu_gmc_fault {
uint64_t timestamp:48;
uint64_t next:AMDGPU_GMC_FAULT_RING_ORDER;
atomic64_t key;
+ uint64_t timestamp_expiry:48;
};
/*
@@ -104,6 +105,8 @@ struct amdgpu_vmhub {
uint32_t vm_cntx_cntl_vm_fault;
uint32_t vm_l2_bank_select_reserved_cid2;
+ uint32_t vm_contexts_disable;
+
const struct amdgpu_vmhub_funcs *vmhub_funcs;
};
@@ -351,7 +354,7 @@ bool amdgpu_gmc_filter_faults(struct amdgpu_device *adev,
uint16_t pasid, uint64_t timestamp);
void amdgpu_gmc_filter_faults_remove(struct amdgpu_device *adev, uint64_t addr,
uint16_t pasid);
-int amdgpu_gmc_ras_early_init(struct amdgpu_device *adev);
+int amdgpu_gmc_ras_sw_init(struct amdgpu_device *adev);
int amdgpu_gmc_ras_late_init(struct amdgpu_device *adev);
void amdgpu_gmc_ras_fini(struct amdgpu_device *adev);
int amdgpu_gmc_allocate_vm_inv_eng(struct amdgpu_device *adev);
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_gtt_mgr.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_gtt_mgr.c
index 1f3302aebeff..44367f03316f 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_gtt_mgr.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_gtt_mgr.c
@@ -144,7 +144,7 @@ static int amdgpu_gtt_mgr_new(struct ttm_resource_manager *man,
node->base.start = node->mm_nodes[0].start;
} else {
node->mm_nodes[0].start = 0;
- node->mm_nodes[0].size = node->base.num_pages;
+ node->mm_nodes[0].size = PFN_UP(node->base.size);
node->base.start = AMDGPU_BO_INVALID_OFFSET;
}
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_hdp.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_hdp.c
new file mode 100644
index 000000000000..b6cf801939aa
--- /dev/null
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_hdp.c
@@ -0,0 +1,48 @@
+/*
+ * Copyright 2023 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ */
+#include "amdgpu.h"
+#include "amdgpu_ras.h"
+
+int amdgpu_hdp_ras_sw_init(struct amdgpu_device *adev)
+{
+ int err;
+ struct amdgpu_hdp_ras *ras;
+
+ if (!adev->hdp.ras)
+ return 0;
+
+ ras = adev->hdp.ras;
+ err = amdgpu_ras_register_ras_block(adev, &ras->ras_block);
+ if (err) {
+ dev_err(adev->dev, "Failed to register hdp ras block!\n");
+ return err;
+ }
+
+ strcpy(ras->ras_block.ras_comm.name, "hdp");
+ ras->ras_block.ras_comm.block = AMDGPU_RAS_BLOCK__HDP;
+ ras->ras_block.ras_comm.type = AMDGPU_RAS_ERROR__MULTI_UNCORRECTABLE;
+ adev->hdp.ras_if = &ras->ras_block.ras_comm;
+
+ /* hdp ras follows amdgpu_ras_block_late_init_default for late init */
+ return 0;
+}
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_hdp.h b/drivers/gpu/drm/amd/amdgpu/amdgpu_hdp.h
index ac5c61d3de2b..7b8a6152dc8d 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_hdp.h
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_hdp.h
@@ -43,5 +43,5 @@ struct amdgpu_hdp {
struct amdgpu_hdp_ras *ras;
};
-int amdgpu_hdp_ras_late_init(struct amdgpu_device *adev, struct ras_common_if *ras_block);
+int amdgpu_hdp_ras_sw_init(struct amdgpu_device *adev);
#endif /* __AMDGPU_HDP_H__ */
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_mn.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_hmm.c
index b86c0b8252a5..2dadcfe43d03 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_mn.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_hmm.c
@@ -49,9 +49,12 @@
#include "amdgpu.h"
#include "amdgpu_amdkfd.h"
+#include "amdgpu_hmm.h"
+
+#define MAX_WALK_BYTE (2UL << 30)
/**
- * amdgpu_mn_invalidate_gfx - callback to notify about mm change
+ * amdgpu_hmm_invalidate_gfx - callback to notify about mm change
*
* @mni: the range (mm) is about to update
* @range: details on the invalidation
@@ -60,9 +63,9 @@
* Block for operations on BOs to finish and mark pages as accessed and
* potentially dirty.
*/
-static bool amdgpu_mn_invalidate_gfx(struct mmu_interval_notifier *mni,
- const struct mmu_notifier_range *range,
- unsigned long cur_seq)
+static bool amdgpu_hmm_invalidate_gfx(struct mmu_interval_notifier *mni,
+ const struct mmu_notifier_range *range,
+ unsigned long cur_seq)
{
struct amdgpu_bo *bo = container_of(mni, struct amdgpu_bo, notifier);
struct amdgpu_device *adev = amdgpu_ttm_adev(bo->tbo.bdev);
@@ -83,12 +86,12 @@ static bool amdgpu_mn_invalidate_gfx(struct mmu_interval_notifier *mni,
return true;
}
-static const struct mmu_interval_notifier_ops amdgpu_mn_gfx_ops = {
- .invalidate = amdgpu_mn_invalidate_gfx,
+static const struct mmu_interval_notifier_ops amdgpu_hmm_gfx_ops = {
+ .invalidate = amdgpu_hmm_invalidate_gfx,
};
/**
- * amdgpu_mn_invalidate_hsa - callback to notify about mm change
+ * amdgpu_hmm_invalidate_hsa - callback to notify about mm change
*
* @mni: the range (mm) is about to update
* @range: details on the invalidation
@@ -97,32 +100,26 @@ static const struct mmu_interval_notifier_ops amdgpu_mn_gfx_ops = {
* We temporarily evict the BO attached to this range. This necessitates
* evicting all user-mode queues of the process.
*/
-static bool amdgpu_mn_invalidate_hsa(struct mmu_interval_notifier *mni,
- const struct mmu_notifier_range *range,
- unsigned long cur_seq)
+static bool amdgpu_hmm_invalidate_hsa(struct mmu_interval_notifier *mni,
+ const struct mmu_notifier_range *range,
+ unsigned long cur_seq)
{
struct amdgpu_bo *bo = container_of(mni, struct amdgpu_bo, notifier);
- struct amdgpu_device *adev = amdgpu_ttm_adev(bo->tbo.bdev);
if (!mmu_notifier_range_blockable(range))
return false;
- mutex_lock(&adev->notifier_lock);
-
- mmu_interval_set_seq(mni, cur_seq);
-
- amdgpu_amdkfd_evict_userptr(bo->kfd_bo, bo->notifier.mm);
- mutex_unlock(&adev->notifier_lock);
+ amdgpu_amdkfd_evict_userptr(mni, cur_seq, bo->kfd_bo);
return true;
}
-static const struct mmu_interval_notifier_ops amdgpu_mn_hsa_ops = {
- .invalidate = amdgpu_mn_invalidate_hsa,
+static const struct mmu_interval_notifier_ops amdgpu_hmm_hsa_ops = {
+ .invalidate = amdgpu_hmm_invalidate_hsa,
};
/**
- * amdgpu_mn_register - register a BO for notifier updates
+ * amdgpu_hmm_register - register a BO for notifier updates
*
* @bo: amdgpu buffer object
* @addr: userptr addr we should monitor
@@ -130,25 +127,25 @@ static const struct mmu_interval_notifier_ops amdgpu_mn_hsa_ops = {
* Registers a mmu_notifier for the given BO at the specified address.
* Returns 0 on success, -ERRNO if anything goes wrong.
*/
-int amdgpu_mn_register(struct amdgpu_bo *bo, unsigned long addr)
+int amdgpu_hmm_register(struct amdgpu_bo *bo, unsigned long addr)
{
if (bo->kfd_bo)
return mmu_interval_notifier_insert(&bo->notifier, current->mm,
addr, amdgpu_bo_size(bo),
- &amdgpu_mn_hsa_ops);
+ &amdgpu_hmm_hsa_ops);
return mmu_interval_notifier_insert(&bo->notifier, current->mm, addr,
amdgpu_bo_size(bo),
- &amdgpu_mn_gfx_ops);
+ &amdgpu_hmm_gfx_ops);
}
/**
- * amdgpu_mn_unregister - unregister a BO for notifier updates
+ * amdgpu_hmm_unregister - unregister a BO for notifier updates
*
* @bo: amdgpu buffer object
*
* Remove any registration of mmu notifier updates from the buffer object.
*/
-void amdgpu_mn_unregister(struct amdgpu_bo *bo)
+void amdgpu_hmm_unregister(struct amdgpu_bo *bo)
{
if (!bo->notifier.mm)
return;
@@ -157,12 +154,12 @@ void amdgpu_mn_unregister(struct amdgpu_bo *bo)
}
int amdgpu_hmm_range_get_pages(struct mmu_interval_notifier *notifier,
- struct mm_struct *mm, struct page **pages,
- uint64_t start, uint64_t npages,
- struct hmm_range **phmm_range, bool readonly,
- bool mmap_locked, void *owner)
+ uint64_t start, uint64_t npages, bool readonly,
+ void *owner, struct page **pages,
+ struct hmm_range **phmm_range)
{
struct hmm_range *hmm_range;
+ unsigned long end;
unsigned long timeout;
unsigned long i;
unsigned long *pfns;
@@ -184,32 +181,42 @@ int amdgpu_hmm_range_get_pages(struct mmu_interval_notifier *notifier,
hmm_range->default_flags |= HMM_PFN_REQ_WRITE;
hmm_range->hmm_pfns = pfns;
hmm_range->start = start;
- hmm_range->end = start + npages * PAGE_SIZE;
+ end = start + npages * PAGE_SIZE;
hmm_range->dev_private_owner = owner;
- /* Assuming 512MB takes maxmium 1 second to fault page address */
- timeout = max(npages >> 17, 1ULL) * HMM_RANGE_DEFAULT_TIMEOUT;
- timeout = jiffies + msecs_to_jiffies(timeout);
+ do {
+ hmm_range->end = min(hmm_range->start + MAX_WALK_BYTE, end);
+
+ pr_debug("hmm range: start = 0x%lx, end = 0x%lx",
+ hmm_range->start, hmm_range->end);
+
+ /* Assuming 512MB takes maxmium 1 second to fault page address */
+ timeout = max((hmm_range->end - hmm_range->start) >> 29, 1UL);
+ timeout *= HMM_RANGE_DEFAULT_TIMEOUT;
+ timeout = jiffies + msecs_to_jiffies(timeout);
retry:
- hmm_range->notifier_seq = mmu_interval_read_begin(notifier);
-
- if (likely(!mmap_locked))
- mmap_read_lock(mm);
-
- r = hmm_range_fault(hmm_range);
-
- if (likely(!mmap_locked))
- mmap_read_unlock(mm);
- if (unlikely(r)) {
- /*
- * FIXME: This timeout should encompass the retry from
- * mmu_interval_read_retry() as well.
- */
- if (r == -EBUSY && !time_after(jiffies, timeout))
- goto retry;
- goto out_free_pfns;
- }
+ hmm_range->notifier_seq = mmu_interval_read_begin(notifier);
+ r = hmm_range_fault(hmm_range);
+ if (unlikely(r)) {
+ /*
+ * FIXME: This timeout should encompass the retry from
+ * mmu_interval_read_retry() as well.
+ */
+ if (r == -EBUSY && !time_after(jiffies, timeout))
+ goto retry;
+ goto out_free_pfns;
+ }
+
+ if (hmm_range->end == end)
+ break;
+ hmm_range->hmm_pfns += MAX_WALK_BYTE >> PAGE_SHIFT;
+ hmm_range->start = hmm_range->end;
+ schedule();
+ } while (hmm_range->end < end);
+
+ hmm_range->start = start;
+ hmm_range->hmm_pfns = pfns;
/*
* Due to default_flags, all pages are HMM_PFN_VALID or
@@ -231,9 +238,9 @@ out_free_range:
return r;
}
-int amdgpu_hmm_range_get_pages_done(struct hmm_range *hmm_range)
+bool amdgpu_hmm_range_get_pages_done(struct hmm_range *hmm_range)
{
- int r;
+ bool r;
r = mmu_interval_read_retry(hmm_range->notifier,
hmm_range->notifier_seq);
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_mn.h b/drivers/gpu/drm/amd/amdgpu/amdgpu_hmm.h
index 14a3c1864085..e2edcd010ccc 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_mn.h
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_hmm.h
@@ -29,25 +29,25 @@
#include <linux/rwsem.h>
#include <linux/workqueue.h>
#include <linux/interval_tree.h>
+#include <linux/mmu_notifier.h>
int amdgpu_hmm_range_get_pages(struct mmu_interval_notifier *notifier,
- struct mm_struct *mm, struct page **pages,
- uint64_t start, uint64_t npages,
- struct hmm_range **phmm_range, bool readonly,
- bool mmap_locked, void *owner);
-int amdgpu_hmm_range_get_pages_done(struct hmm_range *hmm_range);
+ uint64_t start, uint64_t npages, bool readonly,
+ void *owner, struct page **pages,
+ struct hmm_range **phmm_range);
+bool amdgpu_hmm_range_get_pages_done(struct hmm_range *hmm_range);
#if defined(CONFIG_HMM_MIRROR)
-int amdgpu_mn_register(struct amdgpu_bo *bo, unsigned long addr);
-void amdgpu_mn_unregister(struct amdgpu_bo *bo);
+int amdgpu_hmm_register(struct amdgpu_bo *bo, unsigned long addr);
+void amdgpu_hmm_unregister(struct amdgpu_bo *bo);
#else
-static inline int amdgpu_mn_register(struct amdgpu_bo *bo, unsigned long addr)
+static inline int amdgpu_hmm_register(struct amdgpu_bo *bo, unsigned long addr)
{
DRM_WARN_ONCE("HMM_MIRROR kernel config option is not enabled, "
"add CONFIG_ZONE_DEVICE=y in config file to fix this\n");
return -ENODEV;
}
-static inline void amdgpu_mn_unregister(struct amdgpu_bo *bo) {}
+static inline void amdgpu_hmm_unregister(struct amdgpu_bo *bo) {}
#endif
#endif
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_ib.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_ib.c
index 258cffe3c06a..4ff348e10e4d 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_ib.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_ib.c
@@ -69,7 +69,7 @@ int amdgpu_ib_get(struct amdgpu_device *adev, struct amdgpu_vm *vm,
if (size) {
r = amdgpu_sa_bo_new(&adev->ib_pools[pool_type],
- &ib->sa_bo, size, 256);
+ &ib->sa_bo, size);
if (r) {
dev_err(adev->dev, "failed to get a new IB (%d)\n", r);
return r;
@@ -182,7 +182,7 @@ int amdgpu_ib_schedule(struct amdgpu_ring *ring, unsigned num_ibs,
need_ctx_switch = ring->current_ctx != fence_ctx;
if (ring->funcs->emit_pipeline_sync && job &&
- ((tmp = amdgpu_sync_get_fence(&job->sched_sync)) ||
+ ((tmp = amdgpu_sync_get_fence(&job->explicit_sync)) ||
(amdgpu_sriov_vf(adev) && need_ctx_switch) ||
amdgpu_vm_need_pipeline_sync(ring, job))) {
need_pipe_sync = true;
@@ -211,6 +211,7 @@ int amdgpu_ib_schedule(struct amdgpu_ring *ring, unsigned num_ibs,
}
}
+ amdgpu_ring_ib_begin(ring);
if (job && ring->funcs->init_cond_exec)
patch_offset = amdgpu_ring_init_cond_exec(ring);
@@ -266,7 +267,7 @@ int amdgpu_ib_schedule(struct amdgpu_ring *ring, unsigned num_ibs,
if (r) {
dev_err(adev->dev, "failed to emit fence (%d)\n", r);
if (job && job->vmid)
- amdgpu_vmid_reset(adev, ring->funcs->vmhub, job->vmid);
+ amdgpu_vmid_reset(adev, ring->vm_hub, job->vmid);
amdgpu_ring_undo(ring);
return r;
}
@@ -285,6 +286,7 @@ int amdgpu_ib_schedule(struct amdgpu_ring *ring, unsigned num_ibs,
ring->hw_prio == AMDGPU_GFX_PIPE_PRIO_HIGH)
ring->funcs->emit_wave_limit(ring, false);
+ amdgpu_ring_ib_end(ring);
amdgpu_ring_commit(ring);
return 0;
}
@@ -307,8 +309,7 @@ int amdgpu_ib_pool_init(struct amdgpu_device *adev)
for (i = 0; i < AMDGPU_IB_POOL_MAX; i++) {
r = amdgpu_sa_bo_manager_init(adev, &adev->ib_pools[i],
- AMDGPU_IB_POOL_SIZE,
- AMDGPU_GPU_PAGE_SIZE,
+ AMDGPU_IB_POOL_SIZE, 256,
AMDGPU_GEM_DOMAIN_GTT);
if (r)
goto error;
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_ids.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_ids.c
index 03d115d2b5ed..c991ca0b7a1c 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_ids.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_ids.c
@@ -165,31 +165,52 @@ bool amdgpu_vmid_had_gpu_reset(struct amdgpu_device *adev,
atomic_read(&adev->gpu_reset_counter);
}
+/* Check if we need to switch to another set of resources */
+static bool amdgpu_vmid_gds_switch_needed(struct amdgpu_vmid *id,
+ struct amdgpu_job *job)
+{
+ return id->gds_base != job->gds_base ||
+ id->gds_size != job->gds_size ||
+ id->gws_base != job->gws_base ||
+ id->gws_size != job->gws_size ||
+ id->oa_base != job->oa_base ||
+ id->oa_size != job->oa_size;
+}
+
+/* Check if the id is compatible with the job */
+static bool amdgpu_vmid_compatible(struct amdgpu_vmid *id,
+ struct amdgpu_job *job)
+{
+ return id->pd_gpu_addr == job->vm_pd_addr &&
+ !amdgpu_vmid_gds_switch_needed(id, job);
+}
+
/**
* amdgpu_vmid_grab_idle - grab idle VMID
*
* @vm: vm to allocate id for
* @ring: ring we want to submit job to
- * @sync: sync object where we add dependencies
* @idle: resulting idle VMID
+ * @fence: fence to wait for if no id could be grabbed
*
* Try to find an idle VMID, if none is idle add a fence to wait to the sync
* object. Returns -ENOMEM when we are out of memory.
*/
static int amdgpu_vmid_grab_idle(struct amdgpu_vm *vm,
struct amdgpu_ring *ring,
- struct amdgpu_sync *sync,
- struct amdgpu_vmid **idle)
+ struct amdgpu_vmid **idle,
+ struct dma_fence **fence)
{
struct amdgpu_device *adev = ring->adev;
- unsigned vmhub = ring->funcs->vmhub;
+ unsigned vmhub = ring->vm_hub;
struct amdgpu_vmid_mgr *id_mgr = &adev->vm_manager.id_mgr[vmhub];
struct dma_fence **fences;
unsigned i;
- int r;
- if (!dma_fence_is_signaled(ring->vmid_wait))
- return amdgpu_sync_fence(sync, ring->vmid_wait);
+ if (!dma_fence_is_signaled(ring->vmid_wait)) {
+ *fence = dma_fence_get(ring->vmid_wait);
+ return 0;
+ }
fences = kmalloc_array(id_mgr->num_ids, sizeof(void *), GFP_KERNEL);
if (!fences)
@@ -228,10 +249,10 @@ static int amdgpu_vmid_grab_idle(struct amdgpu_vm *vm,
return -ENOMEM;
}
- r = amdgpu_sync_fence(sync, &array->base);
+ *fence = dma_fence_get(&array->base);
dma_fence_put(ring->vmid_wait);
ring->vmid_wait = &array->base;
- return r;
+ return 0;
}
kfree(fences);
@@ -243,30 +264,29 @@ static int amdgpu_vmid_grab_idle(struct amdgpu_vm *vm,
*
* @vm: vm to allocate id for
* @ring: ring we want to submit job to
- * @sync: sync object where we add dependencies
- * @fence: fence protecting ID from reuse
* @job: job who wants to use the VMID
* @id: resulting VMID
+ * @fence: fence to wait for if no id could be grabbed
*
* Try to assign a reserved VMID.
*/
static int amdgpu_vmid_grab_reserved(struct amdgpu_vm *vm,
struct amdgpu_ring *ring,
- struct amdgpu_sync *sync,
- struct dma_fence *fence,
struct amdgpu_job *job,
- struct amdgpu_vmid **id)
+ struct amdgpu_vmid **id,
+ struct dma_fence **fence)
{
struct amdgpu_device *adev = ring->adev;
- unsigned vmhub = ring->funcs->vmhub;
+ unsigned vmhub = ring->vm_hub;
+ struct amdgpu_vmid_mgr *id_mgr = &adev->vm_manager.id_mgr[vmhub];
uint64_t fence_context = adev->fence_context + ring->idx;
bool needs_flush = vm->use_cpu_for_update;
uint64_t updates = amdgpu_vm_tlb_seq(vm);
int r;
- *id = vm->reserved_vmid[vmhub];
+ *id = id_mgr->reserved;
if ((*id)->owner != vm->immediate.fence_context ||
- (*id)->pd_gpu_addr != job->vm_pd_addr ||
+ !amdgpu_vmid_compatible(*id, job) ||
(*id)->flushed_updates < updates ||
!(*id)->last_flush ||
((*id)->last_flush->context != fence_context &&
@@ -282,7 +302,8 @@ static int amdgpu_vmid_grab_reserved(struct amdgpu_vm *vm,
tmp = amdgpu_sync_peek_fence(&(*id)->active, ring);
if (tmp) {
*id = NULL;
- return amdgpu_sync_fence(sync, tmp);
+ *fence = dma_fence_get(tmp);
+ return 0;
}
needs_flush = true;
}
@@ -290,12 +311,12 @@ static int amdgpu_vmid_grab_reserved(struct amdgpu_vm *vm,
/* Good we can use this VMID. Remember this submission as
* user of the VMID.
*/
- r = amdgpu_sync_fence(&(*id)->active, fence);
+ r = amdgpu_sync_fence(&(*id)->active, &job->base.s_fence->finished);
if (r)
return r;
- (*id)->flushed_updates = updates;
job->vm_needs_flush = needs_flush;
+ job->spm_update_needed = true;
return 0;
}
@@ -304,22 +325,20 @@ static int amdgpu_vmid_grab_reserved(struct amdgpu_vm *vm,
*
* @vm: vm to allocate id for
* @ring: ring we want to submit job to
- * @sync: sync object where we add dependencies
- * @fence: fence protecting ID from reuse
* @job: job who wants to use the VMID
* @id: resulting VMID
+ * @fence: fence to wait for if no id could be grabbed
*
* Try to reuse a VMID for this submission.
*/
static int amdgpu_vmid_grab_used(struct amdgpu_vm *vm,
struct amdgpu_ring *ring,
- struct amdgpu_sync *sync,
- struct dma_fence *fence,
struct amdgpu_job *job,
- struct amdgpu_vmid **id)
+ struct amdgpu_vmid **id,
+ struct dma_fence **fence)
{
struct amdgpu_device *adev = ring->adev;
- unsigned vmhub = ring->funcs->vmhub;
+ unsigned vmhub = ring->vm_hub;
struct amdgpu_vmid_mgr *id_mgr = &adev->vm_manager.id_mgr[vmhub];
uint64_t fence_context = adev->fence_context + ring->idx;
uint64_t updates = amdgpu_vm_tlb_seq(vm);
@@ -335,7 +354,7 @@ static int amdgpu_vmid_grab_used(struct amdgpu_vm *vm,
if ((*id)->owner != vm->immediate.fence_context)
continue;
- if ((*id)->pd_gpu_addr != job->vm_pd_addr)
+ if (!amdgpu_vmid_compatible(*id, job))
continue;
if (!(*id)->last_flush ||
@@ -352,11 +371,11 @@ static int amdgpu_vmid_grab_used(struct amdgpu_vm *vm,
/* Good, we can use this VMID. Remember this submission as
* user of the VMID.
*/
- r = amdgpu_sync_fence(&(*id)->active, fence);
+ r = amdgpu_sync_fence(&(*id)->active,
+ &job->base.s_fence->finished);
if (r)
return r;
- (*id)->flushed_updates = updates;
job->vm_needs_flush |= needs_flush;
return 0;
}
@@ -370,34 +389,32 @@ static int amdgpu_vmid_grab_used(struct amdgpu_vm *vm,
*
* @vm: vm to allocate id for
* @ring: ring we want to submit job to
- * @sync: sync object where we add dependencies
- * @fence: fence protecting ID from reuse
* @job: job who wants to use the VMID
+ * @fence: fence to wait for if no id could be grabbed
*
* Allocate an id for the vm, adding fences to the sync obj as necessary.
*/
int amdgpu_vmid_grab(struct amdgpu_vm *vm, struct amdgpu_ring *ring,
- struct amdgpu_sync *sync, struct dma_fence *fence,
- struct amdgpu_job *job)
+ struct amdgpu_job *job, struct dma_fence **fence)
{
struct amdgpu_device *adev = ring->adev;
- unsigned vmhub = ring->funcs->vmhub;
+ unsigned vmhub = ring->vm_hub;
struct amdgpu_vmid_mgr *id_mgr = &adev->vm_manager.id_mgr[vmhub];
struct amdgpu_vmid *idle = NULL;
struct amdgpu_vmid *id = NULL;
int r = 0;
mutex_lock(&id_mgr->lock);
- r = amdgpu_vmid_grab_idle(vm, ring, sync, &idle);
+ r = amdgpu_vmid_grab_idle(vm, ring, &idle, fence);
if (r || !idle)
goto error;
if (vm->reserved_vmid[vmhub]) {
- r = amdgpu_vmid_grab_reserved(vm, ring, sync, fence, job, &id);
+ r = amdgpu_vmid_grab_reserved(vm, ring, job, &id, fence);
if (r || !id)
goto error;
} else {
- r = amdgpu_vmid_grab_used(vm, ring, sync, fence, job, &id);
+ r = amdgpu_vmid_grab_used(vm, ring, job, &id, fence);
if (r)
goto error;
@@ -406,26 +423,35 @@ int amdgpu_vmid_grab(struct amdgpu_vm *vm, struct amdgpu_ring *ring,
id = idle;
/* Remember this submission as user of the VMID */
- r = amdgpu_sync_fence(&id->active, fence);
+ r = amdgpu_sync_fence(&id->active,
+ &job->base.s_fence->finished);
if (r)
goto error;
- id->flushed_updates = amdgpu_vm_tlb_seq(vm);
job->vm_needs_flush = true;
}
list_move_tail(&id->list, &id_mgr->ids_lru);
}
- id->pd_gpu_addr = job->vm_pd_addr;
- id->owner = vm->immediate.fence_context;
-
+ job->gds_switch_needed = amdgpu_vmid_gds_switch_needed(id, job);
if (job->vm_needs_flush) {
+ id->flushed_updates = amdgpu_vm_tlb_seq(vm);
dma_fence_put(id->last_flush);
id->last_flush = NULL;
}
job->vmid = id - id_mgr->ids;
job->pasid = vm->pasid;
+
+ id->gds_base = job->gds_base;
+ id->gds_size = job->gds_size;
+ id->gws_base = job->gws_base;
+ id->gws_size = job->gws_size;
+ id->oa_base = job->oa_base;
+ id->oa_size = job->oa_size;
+ id->pd_gpu_addr = job->vm_pd_addr;
+ id->owner = vm->immediate.fence_context;
+
trace_amdgpu_vm_grab_id(vm, ring, job);
error:
@@ -437,31 +463,27 @@ int amdgpu_vmid_alloc_reserved(struct amdgpu_device *adev,
struct amdgpu_vm *vm,
unsigned vmhub)
{
- struct amdgpu_vmid_mgr *id_mgr;
- struct amdgpu_vmid *idle;
- int r = 0;
+ struct amdgpu_vmid_mgr *id_mgr = &adev->vm_manager.id_mgr[vmhub];
- id_mgr = &adev->vm_manager.id_mgr[vmhub];
mutex_lock(&id_mgr->lock);
if (vm->reserved_vmid[vmhub])
goto unlock;
- if (atomic_inc_return(&id_mgr->reserved_vmid_num) >
- AMDGPU_VM_MAX_RESERVED_VMID) {
- DRM_ERROR("Over limitation of reserved vmid\n");
- atomic_dec(&id_mgr->reserved_vmid_num);
- r = -EINVAL;
- goto unlock;
+
+ ++id_mgr->reserved_use_count;
+ if (!id_mgr->reserved) {
+ struct amdgpu_vmid *id;
+
+ id = list_first_entry(&id_mgr->ids_lru, struct amdgpu_vmid,
+ list);
+ /* Remove from normal round robin handling */
+ list_del_init(&id->list);
+ id_mgr->reserved = id;
}
- /* Select the first entry VMID */
- idle = list_first_entry(&id_mgr->ids_lru, struct amdgpu_vmid, list);
- list_del_init(&idle->list);
- vm->reserved_vmid[vmhub] = idle;
- mutex_unlock(&id_mgr->lock);
+ vm->reserved_vmid[vmhub] = true;
- return 0;
unlock:
mutex_unlock(&id_mgr->lock);
- return r;
+ return 0;
}
void amdgpu_vmid_free_reserved(struct amdgpu_device *adev,
@@ -471,12 +493,13 @@ void amdgpu_vmid_free_reserved(struct amdgpu_device *adev,
struct amdgpu_vmid_mgr *id_mgr = &adev->vm_manager.id_mgr[vmhub];
mutex_lock(&id_mgr->lock);
- if (vm->reserved_vmid[vmhub]) {
- list_add(&vm->reserved_vmid[vmhub]->list,
- &id_mgr->ids_lru);
- vm->reserved_vmid[vmhub] = NULL;
- atomic_dec(&id_mgr->reserved_vmid_num);
+ if (vm->reserved_vmid[vmhub] &&
+ !--id_mgr->reserved_use_count) {
+ /* give the reserved ID back to normal round robin */
+ list_add(&id_mgr->reserved->list, &id_mgr->ids_lru);
+ id_mgr->reserved = NULL;
}
+ vm->reserved_vmid[vmhub] = false;
mutex_unlock(&id_mgr->lock);
}
@@ -543,7 +566,7 @@ void amdgpu_vmid_mgr_init(struct amdgpu_device *adev)
mutex_init(&id_mgr->lock);
INIT_LIST_HEAD(&id_mgr->ids_lru);
- atomic_set(&id_mgr->reserved_vmid_num, 0);
+ id_mgr->reserved_use_count = 0;
/* manage only VMIDs not used by KFD */
id_mgr->num_ids = adev->vm_manager.first_kfd_vmid;
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_ids.h b/drivers/gpu/drm/amd/amdgpu/amdgpu_ids.h
index 06c8a0034fa5..d1cc09b45da4 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_ids.h
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_ids.h
@@ -67,7 +67,8 @@ struct amdgpu_vmid_mgr {
unsigned num_ids;
struct list_head ids_lru;
struct amdgpu_vmid ids[AMDGPU_NUM_VMID];
- atomic_t reserved_vmid_num;
+ struct amdgpu_vmid *reserved;
+ unsigned int reserved_use_count;
};
int amdgpu_pasid_alloc(unsigned int bits);
@@ -84,8 +85,7 @@ void amdgpu_vmid_free_reserved(struct amdgpu_device *adev,
struct amdgpu_vm *vm,
unsigned vmhub);
int amdgpu_vmid_grab(struct amdgpu_vm *vm, struct amdgpu_ring *ring,
- struct amdgpu_sync *sync, struct dma_fence *fence,
- struct amdgpu_job *job);
+ struct amdgpu_job *job, struct dma_fence **fence);
void amdgpu_vmid_reset(struct amdgpu_device *adev, unsigned vmhub,
unsigned vmid);
void amdgpu_vmid_reset_all(struct amdgpu_device *adev);
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_irq.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_irq.c
index 89011bae7588..fafebec5b7b6 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_irq.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_irq.c
@@ -45,7 +45,6 @@
#include <linux/irq.h>
#include <linux/pci.h>
-#include <drm/drm_crtc_helper.h>
#include <drm/drm_vblank.h>
#include <drm/amdgpu_drm.h>
#include <drm/drm_drv.h>
@@ -101,41 +100,6 @@ const char *soc15_ih_clientid_name[] = {
};
/**
- * amdgpu_hotplug_work_func - work handler for display hotplug event
- *
- * @work: work struct pointer
- *
- * This is the hotplug event work handler (all ASICs).
- * The work gets scheduled from the IRQ handler if there
- * was a hotplug interrupt. It walks through the connector table
- * and calls hotplug handler for each connector. After this, it sends
- * a DRM hotplug event to alert userspace.
- *
- * This design approach is required in order to defer hotplug event handling
- * from the IRQ handler to a work handler because hotplug handler has to use
- * mutexes which cannot be locked in an IRQ handler (since &mutex_lock may
- * sleep).
- */
-static void amdgpu_hotplug_work_func(struct work_struct *work)
-{
- struct amdgpu_device *adev = container_of(work, struct amdgpu_device,
- hotplug_work);
- struct drm_device *dev = adev_to_drm(adev);
- struct drm_mode_config *mode_config = &dev->mode_config;
- struct drm_connector *connector;
- struct drm_connector_list_iter iter;
-
- mutex_lock(&mode_config->mutex);
- drm_connector_list_iter_begin(dev, &iter);
- drm_for_each_connector_iter(connector, &iter)
- amdgpu_connector_hotplug(connector);
- drm_connector_list_iter_end(&iter);
- mutex_unlock(&mode_config->mutex);
- /* Just fire off a uevent and let userspace tell us what to do */
- drm_helper_hpd_irq_event(dev);
-}
-
-/**
* amdgpu_irq_disable_all - disable *all* interrupts
*
* @adev: amdgpu device pointer
@@ -317,21 +281,6 @@ int amdgpu_irq_init(struct amdgpu_device *adev)
}
}
- if (!amdgpu_device_has_dc_support(adev)) {
- if (!adev->enable_virtual_display)
- /* Disable vblank IRQs aggressively for power-saving */
- /* XXX: can this be enabled for DC? */
- adev_to_drm(adev)->vblank_disable_immediate = true;
-
- r = drm_vblank_init(adev_to_drm(adev), adev->mode_info.num_crtc);
- if (r)
- return r;
-
- /* Pre-DCE11 */
- INIT_WORK(&adev->hotplug_work,
- amdgpu_hotplug_work_func);
- }
-
INIT_WORK(&adev->irq.ih1_work, amdgpu_irq_handle_ih1);
INIT_WORK(&adev->irq.ih2_work, amdgpu_irq_handle_ih2);
INIT_WORK(&adev->irq.ih_soft_work, amdgpu_irq_handle_ih_soft);
@@ -345,11 +294,8 @@ int amdgpu_irq_init(struct amdgpu_device *adev)
/* PCI devices require shared interrupts. */
r = request_irq(irq, amdgpu_irq_handler, IRQF_SHARED, adev_to_drm(adev)->driver->name,
adev_to_drm(adev));
- if (r) {
- if (!amdgpu_device_has_dc_support(adev))
- flush_work(&adev->hotplug_work);
+ if (r)
return r;
- }
adev->irq.installed = true;
adev->irq.irq = irq;
adev_to_drm(adev)->max_vblank_count = 0x00ffffff;
@@ -366,9 +312,6 @@ void amdgpu_irq_fini_hw(struct amdgpu_device *adev)
adev->irq.installed = false;
if (adev->irq.msi_enabled)
pci_free_irq_vectors(adev->pdev);
-
- if (!amdgpu_device_has_dc_support(adev))
- flush_work(&adev->hotplug_work);
}
amdgpu_ih_ring_fini(adev, &adev->irq.ih_soft);
@@ -653,6 +596,9 @@ int amdgpu_irq_put(struct amdgpu_device *adev, struct amdgpu_irq_src *src,
if (!src->enabled_types || !src->funcs->set)
return -EINVAL;
+ if (WARN_ON(!amdgpu_irq_enabled(adev, src, type)))
+ return -EINVAL;
+
if (atomic_dec_and_test(&src->enabled_types[type]))
return amdgpu_irq_update(adev, src, type);
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_irq.h b/drivers/gpu/drm/amd/amdgpu/amdgpu_irq.h
index e9f2c11ea416..be243adf3e65 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_irq.h
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_irq.h
@@ -98,6 +98,8 @@ struct amdgpu_irq {
struct irq_domain *domain; /* GPU irq controller domain */
unsigned virq[AMDGPU_MAX_IRQ_SRC_ID];
uint32_t srbm_soft_reset;
+ u32 retry_cam_doorbell_index;
+ bool retry_cam_enabled;
};
void amdgpu_irq_disable_all(struct amdgpu_device *adev);
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_job.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_job.c
index cd968e781077..c3d9d75143f4 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_job.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_job.c
@@ -88,8 +88,9 @@ exit:
return DRM_GPU_SCHED_STAT_NOMINAL;
}
-int amdgpu_job_alloc(struct amdgpu_device *adev, unsigned num_ibs,
- struct amdgpu_job **job, struct amdgpu_vm *vm)
+int amdgpu_job_alloc(struct amdgpu_device *adev, struct amdgpu_vm *vm,
+ struct drm_sched_entity *entity, void *owner,
+ unsigned int num_ibs, struct amdgpu_job **job)
{
if (num_ibs == 0)
return -EINVAL;
@@ -105,28 +106,34 @@ int amdgpu_job_alloc(struct amdgpu_device *adev, unsigned num_ibs,
(*job)->base.sched = &adev->rings[0]->sched;
(*job)->vm = vm;
- amdgpu_sync_create(&(*job)->sync);
- amdgpu_sync_create(&(*job)->sched_sync);
+ amdgpu_sync_create(&(*job)->explicit_sync);
(*job)->vram_lost_counter = atomic_read(&adev->vram_lost_counter);
(*job)->vm_pd_addr = AMDGPU_BO_INVALID_OFFSET;
- return 0;
+ if (!entity)
+ return 0;
+
+ return drm_sched_job_init(&(*job)->base, entity, owner);
}
-int amdgpu_job_alloc_with_ib(struct amdgpu_device *adev, unsigned size,
- enum amdgpu_ib_pool_type pool_type,
- struct amdgpu_job **job)
+int amdgpu_job_alloc_with_ib(struct amdgpu_device *adev,
+ struct drm_sched_entity *entity, void *owner,
+ size_t size, enum amdgpu_ib_pool_type pool_type,
+ struct amdgpu_job **job)
{
int r;
- r = amdgpu_job_alloc(adev, 1, job, NULL);
+ r = amdgpu_job_alloc(adev, NULL, entity, owner, 1, job);
if (r)
return r;
(*job)->num_ibs = 1;
r = amdgpu_ib_get(adev, NULL, size, pool_type, &(*job)->ibs[0]);
- if (r)
+ if (r) {
+ if (entity)
+ drm_sched_job_cleanup(&(*job)->base);
kfree(*job);
+ }
return r;
}
@@ -154,8 +161,14 @@ void amdgpu_job_free_resources(struct amdgpu_job *job)
struct dma_fence *f;
unsigned i;
- /* use sched fence if available */
- f = job->base.s_fence ? &job->base.s_fence->finished : &job->hw_fence;
+ /* Check if any fences where initialized */
+ if (job->base.s_fence && job->base.s_fence->finished.ops)
+ f = &job->base.s_fence->finished;
+ else if (job->hw_fence.ops)
+ f = &job->hw_fence;
+ else
+ f = NULL;
+
for (i = 0; i < job->num_ibs; ++i)
amdgpu_ib_free(ring->adev, &job->ibs[i], f);
}
@@ -166,10 +179,13 @@ static void amdgpu_job_free_cb(struct drm_sched_job *s_job)
drm_sched_job_cleanup(s_job);
- amdgpu_sync_free(&job->sync);
- amdgpu_sync_free(&job->sched_sync);
+ amdgpu_sync_free(&job->explicit_sync);
- dma_fence_put(&job->hw_fence);
+ /* only put the hw fence if has embedded fence */
+ if (!job->hw_fence.ops)
+ kfree(job);
+ else
+ dma_fence_put(&job->hw_fence);
}
void amdgpu_job_set_gang_leader(struct amdgpu_job *job,
@@ -190,9 +206,11 @@ void amdgpu_job_set_gang_leader(struct amdgpu_job *job,
void amdgpu_job_free(struct amdgpu_job *job)
{
+ if (job->base.entity)
+ drm_sched_job_cleanup(&job->base);
+
amdgpu_job_free_resources(job);
- amdgpu_sync_free(&job->sync);
- amdgpu_sync_free(&job->sched_sync);
+ amdgpu_sync_free(&job->explicit_sync);
if (job->gang_submit != &job->base.s_fence->scheduled)
dma_fence_put(job->gang_submit);
@@ -202,25 +220,16 @@ void amdgpu_job_free(struct amdgpu_job *job)
dma_fence_put(&job->hw_fence);
}
-int amdgpu_job_submit(struct amdgpu_job *job, struct drm_sched_entity *entity,
- void *owner, struct dma_fence **f)
+struct dma_fence *amdgpu_job_submit(struct amdgpu_job *job)
{
- int r;
-
- if (!f)
- return -EINVAL;
-
- r = drm_sched_job_init(&job->base, entity, owner);
- if (r)
- return r;
+ struct dma_fence *f;
drm_sched_job_arm(&job->base);
-
- *f = dma_fence_get(&job->base.s_fence->finished);
+ f = dma_fence_get(&job->base.s_fence->finished);
amdgpu_job_free_resources(job);
drm_sched_entity_push_job(&job->base);
- return 0;
+ return f;
}
int amdgpu_job_submit_direct(struct amdgpu_job *job, struct amdgpu_ring *ring,
@@ -238,35 +247,24 @@ int amdgpu_job_submit_direct(struct amdgpu_job *job, struct amdgpu_ring *ring,
return 0;
}
-static struct dma_fence *amdgpu_job_dependency(struct drm_sched_job *sched_job,
- struct drm_sched_entity *s_entity)
+static struct dma_fence *
+amdgpu_job_prepare_job(struct drm_sched_job *sched_job,
+ struct drm_sched_entity *s_entity)
{
struct amdgpu_ring *ring = to_amdgpu_ring(s_entity->rq->sched);
struct amdgpu_job *job = to_amdgpu_job(sched_job);
- struct amdgpu_vm *vm = job->vm;
- struct dma_fence *fence;
+ struct dma_fence *fence = NULL;
int r;
- fence = amdgpu_sync_get_fence(&job->sync);
- if (fence && drm_sched_dependency_optimized(fence, s_entity)) {
- r = amdgpu_sync_fence(&job->sched_sync, fence);
- if (r)
- DRM_ERROR("Error adding fence (%d)\n", r);
- }
+ if (!fence && job->gang_submit)
+ fence = amdgpu_device_switch_gang(ring->adev, job->gang_submit);
- while (fence == NULL && vm && !job->vmid) {
- r = amdgpu_vmid_grab(vm, ring, &job->sync,
- &job->base.s_fence->finished,
- job);
+ while (!fence && job->vm && !job->vmid) {
+ r = amdgpu_vmid_grab(job->vm, ring, job, &fence);
if (r)
DRM_ERROR("Error getting VM ID (%d)\n", r);
-
- fence = amdgpu_sync_get_fence(&job->sync);
}
- if (!fence && job->gang_submit)
- fence = amdgpu_device_switch_gang(ring->adev, job->gang_submit);
-
return fence;
}
@@ -281,8 +279,6 @@ static struct dma_fence *amdgpu_job_run(struct drm_sched_job *sched_job)
job = to_amdgpu_job(sched_job);
finished = &job->base.s_fence->finished;
- BUG_ON(amdgpu_sync_peek_fence(&job->sync, NULL));
-
trace_amdgpu_sched_run_job(job);
/* Skip job if VRAM is lost and never resubmit gangs */
@@ -341,7 +337,7 @@ void amdgpu_job_stop_all_jobs_on_sched(struct drm_gpu_scheduler *sched)
}
const struct drm_sched_backend_ops amdgpu_sched_ops = {
- .dependency = amdgpu_job_dependency,
+ .prepare_job = amdgpu_job_prepare_job,
.run_job = amdgpu_job_run,
.timedout_job = amdgpu_job_timedout,
.free_job = amdgpu_job_free_cb
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_job.h b/drivers/gpu/drm/amd/amdgpu/amdgpu_job.h
index ab7b150e5d50..52f2e313ea17 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_job.h
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_job.h
@@ -47,13 +47,14 @@ enum amdgpu_ib_pool_type;
struct amdgpu_job {
struct drm_sched_job base;
struct amdgpu_vm *vm;
- struct amdgpu_sync sync;
- struct amdgpu_sync sched_sync;
+ struct amdgpu_sync explicit_sync;
struct dma_fence hw_fence;
struct dma_fence *gang_submit;
uint32_t preamble_status;
uint32_t preemption_status;
bool vm_needs_flush;
+ bool gds_switch_needed;
+ bool spm_update_needed;
uint64_t vm_pd_addr;
unsigned vmid;
unsigned pasid;
@@ -78,18 +79,20 @@ static inline struct amdgpu_ring *amdgpu_job_ring(struct amdgpu_job *job)
return to_amdgpu_ring(job->base.entity->rq->sched);
}
-int amdgpu_job_alloc(struct amdgpu_device *adev, unsigned num_ibs,
- struct amdgpu_job **job, struct amdgpu_vm *vm);
-int amdgpu_job_alloc_with_ib(struct amdgpu_device *adev, unsigned size,
- enum amdgpu_ib_pool_type pool, struct amdgpu_job **job);
+int amdgpu_job_alloc(struct amdgpu_device *adev, struct amdgpu_vm *vm,
+ struct drm_sched_entity *entity, void *owner,
+ unsigned int num_ibs, struct amdgpu_job **job);
+int amdgpu_job_alloc_with_ib(struct amdgpu_device *adev,
+ struct drm_sched_entity *entity, void *owner,
+ size_t size, enum amdgpu_ib_pool_type pool_type,
+ struct amdgpu_job **job);
void amdgpu_job_set_resources(struct amdgpu_job *job, struct amdgpu_bo *gds,
struct amdgpu_bo *gws, struct amdgpu_bo *oa);
void amdgpu_job_free_resources(struct amdgpu_job *job);
void amdgpu_job_set_gang_leader(struct amdgpu_job *job,
struct amdgpu_job *leader);
void amdgpu_job_free(struct amdgpu_job *job);
-int amdgpu_job_submit(struct amdgpu_job *job, struct drm_sched_entity *entity,
- void *owner, struct dma_fence **f);
+struct dma_fence *amdgpu_job_submit(struct amdgpu_job *job);
int amdgpu_job_submit_direct(struct amdgpu_job *job, struct amdgpu_ring *ring,
struct dma_fence **fence);
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_jpeg.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_jpeg.c
index 518eb0e40d32..b07c000fc8ba 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_jpeg.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_jpeg.c
@@ -118,6 +118,10 @@ int amdgpu_jpeg_dec_ring_test_ring(struct amdgpu_ring *ring)
unsigned i;
int r;
+ /* JPEG in SRIOV does not support direct register read/write */
+ if (amdgpu_sriov_vf(adev))
+ return 0;
+
WREG32(adev->jpeg.inst[ring->me].external.jpeg_pitch, 0xCAFEDEAD);
r = amdgpu_ring_alloc(ring, 3);
if (r)
@@ -150,14 +154,15 @@ static int amdgpu_jpeg_dec_set_reg(struct amdgpu_ring *ring, uint32_t handle,
const unsigned ib_size_dw = 16;
int i, r;
- r = amdgpu_job_alloc_with_ib(ring->adev, ib_size_dw * 4,
- AMDGPU_IB_POOL_DIRECT, &job);
+ r = amdgpu_job_alloc_with_ib(ring->adev, NULL, NULL, ib_size_dw * 4,
+ AMDGPU_IB_POOL_DIRECT, &job);
if (r)
return r;
ib = &job->ibs[0];
- ib->ptr[0] = PACKETJ(adev->jpeg.internal.jpeg_pitch, 0, 0, PACKETJ_TYPE0);
+ ib->ptr[0] = PACKETJ(adev->jpeg.internal.jpeg_pitch, 0, 0,
+ PACKETJ_TYPE0);
ib->ptr[1] = 0xDEADBEEF;
for (i = 2; i < 16; i += 2) {
ib->ptr[i] = PACKETJ(0, 0, 0, PACKETJ_TYPE6);
@@ -201,17 +206,18 @@ int amdgpu_jpeg_dec_ring_test_ib(struct amdgpu_ring *ring, long timeout)
} else {
r = 0;
}
-
- for (i = 0; i < adev->usec_timeout; i++) {
- tmp = RREG32(adev->jpeg.inst[ring->me].external.jpeg_pitch);
- if (tmp == 0xDEADBEEF)
- break;
- udelay(1);
+ if (!amdgpu_sriov_vf(adev)) {
+ for (i = 0; i < adev->usec_timeout; i++) {
+ tmp = RREG32(adev->jpeg.inst[ring->me].external.jpeg_pitch);
+ if (tmp == 0xDEADBEEF)
+ break;
+ udelay(1);
+ }
+
+ if (i >= adev->usec_timeout)
+ r = -ETIMEDOUT;
}
- if (i >= adev->usec_timeout)
- r = -ETIMEDOUT;
-
dma_fence_put(fence);
error:
return r;
@@ -234,3 +240,29 @@ int amdgpu_jpeg_process_poison_irq(struct amdgpu_device *adev,
return 0;
}
+
+int amdgpu_jpeg_ras_sw_init(struct amdgpu_device *adev)
+{
+ int err;
+ struct amdgpu_jpeg_ras *ras;
+
+ if (!adev->jpeg.ras)
+ return 0;
+
+ ras = adev->jpeg.ras;
+ err = amdgpu_ras_register_ras_block(adev, &ras->ras_block);
+ if (err) {
+ dev_err(adev->dev, "Failed to register jpeg ras block!\n");
+ return err;
+ }
+
+ strcpy(ras->ras_block.ras_comm.name, "jpeg");
+ ras->ras_block.ras_comm.block = AMDGPU_RAS_BLOCK__JPEG;
+ ras->ras_block.ras_comm.type = AMDGPU_RAS_ERROR__POISON;
+ adev->jpeg.ras_if = &ras->ras_block.ras_comm;
+
+ if (!ras->ras_block.ras_late_init)
+ ras->ras_block.ras_late_init = amdgpu_ras_block_late_init;
+
+ return 0;
+}
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_jpeg.h b/drivers/gpu/drm/amd/amdgpu/amdgpu_jpeg.h
index 635dca59a70a..0ca76f0f23e9 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_jpeg.h
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_jpeg.h
@@ -72,5 +72,6 @@ int amdgpu_jpeg_dec_ring_test_ib(struct amdgpu_ring *ring, long timeout);
int amdgpu_jpeg_process_poison_irq(struct amdgpu_device *adev,
struct amdgpu_irq_src *source,
struct amdgpu_iv_entry *entry);
+int amdgpu_jpeg_ras_sw_init(struct amdgpu_device *adev);
#endif /*__AMDGPU_JPEG_H__*/
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_kms.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_kms.c
index 4e42dcb1950f..0efb38539d70 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_kms.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_kms.c
@@ -29,6 +29,7 @@
#include "amdgpu.h"
#include <drm/amdgpu_drm.h>
#include <drm/drm_drv.h>
+#include <drm/drm_fb_helper.h>
#include "amdgpu_uvd.h"
#include "amdgpu_vce.h"
#include "atom.h"
@@ -42,6 +43,7 @@
#include "amdgpu_gem.h"
#include "amdgpu_display.h"
#include "amdgpu_ras.h"
+#include "amd_pcie.h"
void amdgpu_unregister_gpu_instance(struct amdgpu_device *adev)
{
@@ -430,7 +432,7 @@ static int amdgpu_hw_ip_info(struct amdgpu_device *adev,
case AMDGPU_HW_IP_VCN_DEC:
type = AMD_IP_BLOCK_TYPE_VCN;
for (i = 0; i < adev->vcn.num_vcn_inst; i++) {
- if (adev->uvd.harvest_config & (1 << i))
+ if (adev->vcn.harvest_config & (1 << i))
continue;
if (adev->vcn.inst[i].ring_dec.sched.ready)
@@ -442,7 +444,7 @@ static int amdgpu_hw_ip_info(struct amdgpu_device *adev,
case AMDGPU_HW_IP_VCN_ENC:
type = AMD_IP_BLOCK_TYPE_VCN;
for (i = 0; i < adev->vcn.num_vcn_inst; i++) {
- if (adev->uvd.harvest_config & (1 << i))
+ if (adev->vcn.harvest_config & (1 << i))
continue;
for (j = 0; j < adev->vcn.num_enc_rings; j++)
@@ -766,6 +768,7 @@ int amdgpu_info_ioctl(struct drm_device *dev, void *data, struct drm_file *filp)
case AMDGPU_INFO_DEV_INFO: {
struct drm_amdgpu_info_device *dev_info;
uint64_t vm_size;
+ uint32_t pcie_gen_mask;
int ret;
dev_info = kzalloc(sizeof(*dev_info), GFP_KERNEL);
@@ -784,22 +787,29 @@ int amdgpu_info_ioctl(struct drm_device *dev, void *data, struct drm_file *filp)
if (adev->pm.dpm_enabled) {
dev_info->max_engine_clock = amdgpu_dpm_get_sclk(adev, false) * 10;
dev_info->max_memory_clock = amdgpu_dpm_get_mclk(adev, false) * 10;
+ dev_info->min_engine_clock = amdgpu_dpm_get_sclk(adev, true) * 10;
+ dev_info->min_memory_clock = amdgpu_dpm_get_mclk(adev, true) * 10;
} else {
- dev_info->max_engine_clock = adev->clock.default_sclk * 10;
- dev_info->max_memory_clock = adev->clock.default_mclk * 10;
+ dev_info->max_engine_clock =
+ dev_info->min_engine_clock =
+ adev->clock.default_sclk * 10;
+ dev_info->max_memory_clock =
+ dev_info->min_memory_clock =
+ adev->clock.default_mclk * 10;
}
dev_info->enabled_rb_pipes_mask = adev->gfx.config.backend_enable_mask;
dev_info->num_rb_pipes = adev->gfx.config.max_backends_per_se *
adev->gfx.config.max_shader_engines;
dev_info->num_hw_gfx_contexts = adev->gfx.config.max_hw_contexts;
- dev_info->_pad = 0;
dev_info->ids_flags = 0;
if (adev->flags & AMD_IS_APU)
dev_info->ids_flags |= AMDGPU_IDS_FLAGS_FUSION;
- if (amdgpu_mcbp || amdgpu_sriov_vf(adev))
+ if (amdgpu_mcbp)
dev_info->ids_flags |= AMDGPU_IDS_FLAGS_PREEMPTION;
if (amdgpu_is_tmz(adev))
dev_info->ids_flags |= AMDGPU_IDS_FLAGS_TMZ;
+ if (adev->gfx.config.ta_cntl2_truncate_coord_mode)
+ dev_info->ids_flags |= AMDGPU_IDS_FLAGS_CONFORMANT_TRUNC_COORD;
vm_size = adev->vm_manager.max_pfn * AMDGPU_GPU_PAGE_SIZE;
vm_size -= AMDGPU_VA_RESERVED_SIZE;
@@ -846,6 +856,26 @@ int amdgpu_info_ioctl(struct drm_device *dev, void *data, struct drm_file *filp)
dev_info->tcc_disabled_mask = adev->gfx.config.tcc_disabled_mask;
+ /* Combine the chip gen mask with the platform (CPU/mobo) mask. */
+ pcie_gen_mask = adev->pm.pcie_gen_mask & (adev->pm.pcie_gen_mask >> 16);
+ dev_info->pcie_gen = fls(pcie_gen_mask);
+ dev_info->pcie_num_lanes =
+ adev->pm.pcie_mlw_mask & CAIL_PCIE_LINK_WIDTH_SUPPORT_X32 ? 32 :
+ adev->pm.pcie_mlw_mask & CAIL_PCIE_LINK_WIDTH_SUPPORT_X16 ? 16 :
+ adev->pm.pcie_mlw_mask & CAIL_PCIE_LINK_WIDTH_SUPPORT_X12 ? 12 :
+ adev->pm.pcie_mlw_mask & CAIL_PCIE_LINK_WIDTH_SUPPORT_X8 ? 8 :
+ adev->pm.pcie_mlw_mask & CAIL_PCIE_LINK_WIDTH_SUPPORT_X4 ? 4 :
+ adev->pm.pcie_mlw_mask & CAIL_PCIE_LINK_WIDTH_SUPPORT_X2 ? 2 : 1;
+
+ dev_info->tcp_cache_size = adev->gfx.config.gc_tcp_l1_size;
+ dev_info->num_sqc_per_wgp = adev->gfx.config.gc_num_sqc_per_wgp;
+ dev_info->sqc_data_cache_size = adev->gfx.config.gc_l1_data_cache_size_per_sqc;
+ dev_info->sqc_inst_cache_size = adev->gfx.config.gc_l1_instruction_cache_size_per_sqc;
+ dev_info->gl1c_cache_size = adev->gfx.config.gc_gl1c_size_per_instance *
+ adev->gfx.config.gc_gl1c_per_sa;
+ dev_info->gl2c_cache_size = adev->gfx.config.gc_gl2c_per_gpu;
+ dev_info->mall_size = adev->gmc.mall_size;
+
ret = copy_to_user(out, dev_info,
min((size_t)size, sizeof(*dev_info))) ? -EFAULT : 0;
kfree(dev_info);
@@ -1013,6 +1043,24 @@ int amdgpu_info_ioctl(struct drm_device *dev, void *data, struct drm_file *filp)
}
ui32 /= 100;
break;
+ case AMDGPU_INFO_SENSOR_PEAK_PSTATE_GFX_SCLK:
+ /* get peak pstate sclk in Mhz */
+ if (amdgpu_dpm_read_sensor(adev,
+ AMDGPU_PP_SENSOR_PEAK_PSTATE_SCLK,
+ (void *)&ui32, &ui32_size)) {
+ return -EINVAL;
+ }
+ ui32 /= 100;
+ break;
+ case AMDGPU_INFO_SENSOR_PEAK_PSTATE_GFX_MCLK:
+ /* get peak pstate mclk in Mhz */
+ if (amdgpu_dpm_read_sensor(adev,
+ AMDGPU_PP_SENSOR_PEAK_PSTATE_MCLK,
+ (void *)&ui32, &ui32_size)) {
+ return -EINVAL;
+ }
+ ui32 /= 100;
+ break;
default:
DRM_DEBUG_KMS("Invalid request %d\n",
info->sensor_info.type);
@@ -1172,7 +1220,7 @@ int amdgpu_driver_open_kms(struct drm_device *dev, struct drm_file *file_priv)
goto error_vm;
}
- if (amdgpu_mcbp || amdgpu_sriov_vf(adev)) {
+ if (amdgpu_mcbp) {
uint64_t csa_addr = amdgpu_csa_vaddr(adev) & AMDGPU_GMC_HOLE_MASK;
r = amdgpu_map_static_csa(adev, &fpriv->vm, adev->virt.csa_obj,
@@ -1236,7 +1284,7 @@ void amdgpu_driver_postclose_kms(struct drm_device *dev,
if (amdgpu_device_ip_get_ip_block(adev, AMD_IP_BLOCK_TYPE_VCE) != NULL)
amdgpu_vce_free_handles(adev, file_priv);
- if (amdgpu_mcbp || amdgpu_sriov_vf(adev)) {
+ if (amdgpu_mcbp) {
/* TODO: how to handle reserve failure */
BUG_ON(amdgpu_bo_reserve(adev->virt.csa_obj, true));
amdgpu_vm_bo_del(adev, fpriv->csa_va);
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_mca.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_mca.c
index 51c2a82e2fa4..8d9ff9e151de 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_mca.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_mca.c
@@ -70,3 +70,75 @@ void amdgpu_mca_query_ras_error_count(struct amdgpu_device *adev,
amdgpu_mca_reset_error_count(adev, mc_status_addr);
}
+
+int amdgpu_mca_mp0_ras_sw_init(struct amdgpu_device *adev)
+{
+ int err;
+ struct amdgpu_mca_ras_block *ras;
+
+ if (!adev->mca.mp0.ras)
+ return 0;
+
+ ras = adev->mca.mp0.ras;
+
+ err = amdgpu_ras_register_ras_block(adev, &ras->ras_block);
+ if (err) {
+ dev_err(adev->dev, "Failed to register mca.mp0 ras block!\n");
+ return err;
+ }
+
+ strcpy(ras->ras_block.ras_comm.name, "mca.mp0");
+ ras->ras_block.ras_comm.block = AMDGPU_RAS_BLOCK__MCA;
+ ras->ras_block.ras_comm.type = AMDGPU_RAS_ERROR__MULTI_UNCORRECTABLE;
+ adev->mca.mp0.ras_if = &ras->ras_block.ras_comm;
+
+ return 0;
+}
+
+int amdgpu_mca_mp1_ras_sw_init(struct amdgpu_device *adev)
+{
+ int err;
+ struct amdgpu_mca_ras_block *ras;
+
+ if (!adev->mca.mp1.ras)
+ return 0;
+
+ ras = adev->mca.mp1.ras;
+
+ err = amdgpu_ras_register_ras_block(adev, &ras->ras_block);
+ if (err) {
+ dev_err(adev->dev, "Failed to register mca.mp1 ras block!\n");
+ return err;
+ }
+
+ strcpy(ras->ras_block.ras_comm.name, "mca.mp1");
+ ras->ras_block.ras_comm.block = AMDGPU_RAS_BLOCK__MCA;
+ ras->ras_block.ras_comm.type = AMDGPU_RAS_ERROR__MULTI_UNCORRECTABLE;
+ adev->mca.mp1.ras_if = &ras->ras_block.ras_comm;
+
+ return 0;
+}
+
+int amdgpu_mca_mpio_ras_sw_init(struct amdgpu_device *adev)
+{
+ int err;
+ struct amdgpu_mca_ras_block *ras;
+
+ if (!adev->mca.mpio.ras)
+ return 0;
+
+ ras = adev->mca.mpio.ras;
+
+ err = amdgpu_ras_register_ras_block(adev, &ras->ras_block);
+ if (err) {
+ dev_err(adev->dev, "Failed to register mca.mpio ras block!\n");
+ return err;
+ }
+
+ strcpy(ras->ras_block.ras_comm.name, "mca.mpio");
+ ras->ras_block.ras_comm.block = AMDGPU_RAS_BLOCK__MCA;
+ ras->ras_block.ras_comm.type = AMDGPU_RAS_ERROR__MULTI_UNCORRECTABLE;
+ adev->mca.mpio.ras_if = &ras->ras_block.ras_comm;
+
+ return 0;
+}
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_mca.h b/drivers/gpu/drm/amd/amdgpu/amdgpu_mca.h
index 7ce16d16e34b..997a073e2409 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_mca.h
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_mca.h
@@ -30,12 +30,7 @@ struct amdgpu_mca_ras {
struct amdgpu_mca_ras_block *ras;
};
-struct amdgpu_mca_funcs {
- void (*init)(struct amdgpu_device *adev);
-};
-
struct amdgpu_mca {
- const struct amdgpu_mca_funcs *funcs;
struct amdgpu_mca_ras mp0;
struct amdgpu_mca_ras mp1;
struct amdgpu_mca_ras mpio;
@@ -55,5 +50,7 @@ void amdgpu_mca_reset_error_count(struct amdgpu_device *adev,
void amdgpu_mca_query_ras_error_count(struct amdgpu_device *adev,
uint64_t mc_status_addr,
void *ras_error_status);
-
+int amdgpu_mca_mp0_ras_sw_init(struct amdgpu_device *adev);
+int amdgpu_mca_mp1_ras_sw_init(struct amdgpu_device *adev);
+int amdgpu_mca_mpio_ras_sw_init(struct amdgpu_device *adev);
#endif
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_mes.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_mes.c
index 0c546245793b..f0f00466b59f 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_mes.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_mes.c
@@ -21,6 +21,8 @@
*
*/
+#include <linux/firmware.h>
+
#include "amdgpu_mes.h"
#include "amdgpu.h"
#include "soc15_common.h"
@@ -1102,6 +1104,11 @@ int amdgpu_mes_ctx_alloc_meta_data(struct amdgpu_device *adev,
&ctx_data->meta_data_obj,
&ctx_data->meta_data_mc_addr,
&ctx_data->meta_data_ptr);
+ if (r) {
+ dev_warn(adev->dev, "(%d) create CTX bo failed\n", r);
+ return r;
+ }
+
if (!ctx_data->meta_data_obj)
return -ENOMEM;
@@ -1326,12 +1333,9 @@ int amdgpu_mes_self_test(struct amdgpu_device *adev)
struct amdgpu_mes_ctx_data ctx_data = {0};
struct amdgpu_ring *added_rings[AMDGPU_MES_CTX_MAX_RINGS] = { NULL };
int gang_ids[3] = {0};
- int queue_types[][2] = { { AMDGPU_RING_TYPE_GFX,
- AMDGPU_MES_CTX_MAX_GFX_RINGS},
- { AMDGPU_RING_TYPE_COMPUTE,
- AMDGPU_MES_CTX_MAX_COMPUTE_RINGS},
- { AMDGPU_RING_TYPE_SDMA,
- AMDGPU_MES_CTX_MAX_SDMA_RINGS } };
+ int queue_types[][2] = { { AMDGPU_RING_TYPE_GFX, 1 },
+ { AMDGPU_RING_TYPE_COMPUTE, 1 },
+ { AMDGPU_RING_TYPE_SDMA, 1} };
int i, r, pasid, k = 0;
pasid = amdgpu_pasid_alloc(16);
@@ -1423,3 +1427,78 @@ error_pasid:
kfree(vm);
return 0;
}
+
+int amdgpu_mes_init_microcode(struct amdgpu_device *adev, int pipe)
+{
+ const struct mes_firmware_header_v1_0 *mes_hdr;
+ struct amdgpu_firmware_info *info;
+ char ucode_prefix[30];
+ char fw_name[40];
+ bool need_retry = false;
+ int r;
+
+ amdgpu_ucode_ip_version_decode(adev, GC_HWIP, ucode_prefix,
+ sizeof(ucode_prefix));
+ if (adev->ip_versions[GC_HWIP][0] >= IP_VERSION(11, 0, 0)) {
+ snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_mes%s.bin",
+ ucode_prefix,
+ pipe == AMDGPU_MES_SCHED_PIPE ? "_2" : "1");
+ need_retry = true;
+ } else {
+ snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_mes%s.bin",
+ ucode_prefix,
+ pipe == AMDGPU_MES_SCHED_PIPE ? "" : "1");
+ }
+
+ r = amdgpu_ucode_request(adev, &adev->mes.fw[pipe], fw_name);
+ if (r && need_retry && pipe == AMDGPU_MES_SCHED_PIPE) {
+ snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_mes.bin",
+ ucode_prefix);
+ DRM_INFO("try to fall back to %s\n", fw_name);
+ r = amdgpu_ucode_request(adev, &adev->mes.fw[pipe],
+ fw_name);
+ }
+
+ if (r)
+ goto out;
+
+ mes_hdr = (const struct mes_firmware_header_v1_0 *)
+ adev->mes.fw[pipe]->data;
+ adev->mes.uc_start_addr[pipe] =
+ le32_to_cpu(mes_hdr->mes_uc_start_addr_lo) |
+ ((uint64_t)(le32_to_cpu(mes_hdr->mes_uc_start_addr_hi)) << 32);
+ adev->mes.data_start_addr[pipe] =
+ le32_to_cpu(mes_hdr->mes_data_start_addr_lo) |
+ ((uint64_t)(le32_to_cpu(mes_hdr->mes_data_start_addr_hi)) << 32);
+
+ if (adev->firmware.load_type == AMDGPU_FW_LOAD_PSP) {
+ int ucode, ucode_data;
+
+ if (pipe == AMDGPU_MES_SCHED_PIPE) {
+ ucode = AMDGPU_UCODE_ID_CP_MES;
+ ucode_data = AMDGPU_UCODE_ID_CP_MES_DATA;
+ } else {
+ ucode = AMDGPU_UCODE_ID_CP_MES1;
+ ucode_data = AMDGPU_UCODE_ID_CP_MES1_DATA;
+ }
+
+ info = &adev->firmware.ucode[ucode];
+ info->ucode_id = ucode;
+ info->fw = adev->mes.fw[pipe];
+ adev->firmware.fw_size +=
+ ALIGN(le32_to_cpu(mes_hdr->mes_ucode_size_bytes),
+ PAGE_SIZE);
+
+ info = &adev->firmware.ucode[ucode_data];
+ info->ucode_id = ucode_data;
+ info->fw = adev->mes.fw[pipe];
+ adev->firmware.fw_size +=
+ ALIGN(le32_to_cpu(mes_hdr->mes_ucode_data_size_bytes),
+ PAGE_SIZE);
+ }
+
+ return 0;
+out:
+ amdgpu_ucode_release(&adev->mes.fw[pipe]);
+ return r;
+}
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_mes.h b/drivers/gpu/drm/amd/amdgpu/amdgpu_mes.h
index ad980f4b66e1..547ec35691fa 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_mes.h
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_mes.h
@@ -91,14 +91,12 @@ struct amdgpu_mes {
struct amdgpu_bo *ucode_fw_obj[AMDGPU_MAX_MES_PIPES];
uint64_t ucode_fw_gpu_addr[AMDGPU_MAX_MES_PIPES];
uint32_t *ucode_fw_ptr[AMDGPU_MAX_MES_PIPES];
- uint32_t ucode_fw_version[AMDGPU_MAX_MES_PIPES];
uint64_t uc_start_addr[AMDGPU_MAX_MES_PIPES];
/* mes ucode data */
struct amdgpu_bo *data_fw_obj[AMDGPU_MAX_MES_PIPES];
uint64_t data_fw_gpu_addr[AMDGPU_MAX_MES_PIPES];
uint32_t *data_fw_ptr[AMDGPU_MAX_MES_PIPES];
- uint32_t data_fw_version[AMDGPU_MAX_MES_PIPES];
uint64_t data_start_addr[AMDGPU_MAX_MES_PIPES];
/* eop gpu obj */
@@ -308,6 +306,7 @@ struct amdgpu_mes_funcs {
int amdgpu_mes_ctx_get_offs(struct amdgpu_ring *ring, unsigned int id_offs);
+int amdgpu_mes_init_microcode(struct amdgpu_device *adev, int pipe);
int amdgpu_mes_init(struct amdgpu_device *adev);
void amdgpu_mes_fini(struct amdgpu_device *adev);
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_mmhub.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_mmhub.c
new file mode 100644
index 000000000000..0f6b1021fef3
--- /dev/null
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_mmhub.c
@@ -0,0 +1,46 @@
+/*
+ * Copyright (C) 2023 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included
+ * in all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
+ * OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN
+ * AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
+ * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
+ */
+#include "amdgpu.h"
+#include "amdgpu_ras.h"
+
+int amdgpu_mmhub_ras_sw_init(struct amdgpu_device *adev)
+{
+ int err;
+ struct amdgpu_mmhub_ras *ras;
+
+ if (!adev->mmhub.ras)
+ return 0;
+
+ ras = adev->mmhub.ras;
+ err = amdgpu_ras_register_ras_block(adev, &ras->ras_block);
+ if (err) {
+ dev_err(adev->dev, "Failed to register mmhub ras block!\n");
+ return err;
+ }
+
+ strcpy(ras->ras_block.ras_comm.name, "mmhub");
+ ras->ras_block.ras_comm.block = AMDGPU_RAS_BLOCK__MMHUB;
+ ras->ras_block.ras_comm.type = AMDGPU_RAS_ERROR__MULTI_UNCORRECTABLE;
+ adev->mmhub.ras_if = &ras->ras_block.ras_comm;
+
+ /* mmhub ras follows amdgpu_ras_block_late_init_default for late init */
+ return 0;
+}
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_mmhub.h b/drivers/gpu/drm/amd/amdgpu/amdgpu_mmhub.h
index 93430d3823c9..d21bb6dae56e 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_mmhub.h
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_mmhub.h
@@ -48,5 +48,7 @@ struct amdgpu_mmhub {
struct amdgpu_mmhub_ras *ras;
};
+int amdgpu_mmhub_ras_sw_init(struct amdgpu_device *adev);
+
#endif
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_mode.h b/drivers/gpu/drm/amd/amdgpu/amdgpu_mode.h
index 37322550d750..32fe05c810c6 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_mode.h
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_mode.h
@@ -35,8 +35,6 @@
#include <drm/drm_edid.h>
#include <drm/drm_encoder.h>
#include <drm/drm_fixed.h>
-#include <drm/drm_crtc_helper.h>
-#include <drm/drm_fb_helper.h>
#include <drm/drm_framebuffer.h>
#include <drm/drm_probe_helper.h>
#include <linux/i2c.h>
@@ -535,6 +533,7 @@ struct amdgpu_connector {
void *con_priv;
bool dac_load_detect;
bool detected_by_load; /* if the connection status was determined by load */
+ bool detected_hpd_without_ddc; /* if an HPD signal was detected on DVI, but ddc probing failed */
uint16_t connector_object_id;
struct amdgpu_hpd hpd;
struct amdgpu_router router;
@@ -550,8 +549,8 @@ struct amdgpu_mst_connector {
struct drm_dp_mst_topology_mgr mst_mgr;
struct amdgpu_dm_dp_aux dm_dp_aux;
- struct drm_dp_mst_port *port;
- struct amdgpu_connector *mst_port;
+ struct drm_dp_mst_port *mst_output_port;
+ struct amdgpu_connector *mst_root;
bool is_mst_connector;
struct amdgpu_encoder *mst_encoder;
};
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_nbio.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_nbio.c
index 37d779b8e4a6..a3bc00577a7c 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_nbio.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_nbio.c
@@ -22,6 +22,29 @@
#include "amdgpu.h"
#include "amdgpu_ras.h"
+int amdgpu_nbio_ras_sw_init(struct amdgpu_device *adev)
+{
+ int err;
+ struct amdgpu_nbio_ras *ras;
+
+ if (!adev->nbio.ras)
+ return 0;
+
+ ras = adev->nbio.ras;
+ err = amdgpu_ras_register_ras_block(adev, &ras->ras_block);
+ if (err) {
+ dev_err(adev->dev, "Failed to register pcie_bif ras block!\n");
+ return err;
+ }
+
+ strcpy(ras->ras_block.ras_comm.name, "pcie_bif");
+ ras->ras_block.ras_comm.block = AMDGPU_RAS_BLOCK__PCIE_BIF;
+ ras->ras_block.ras_comm.type = AMDGPU_RAS_ERROR__MULTI_UNCORRECTABLE;
+ adev->nbio.ras_if = &ras->ras_block.ras_comm;
+
+ return 0;
+}
+
int amdgpu_nbio_ras_late_init(struct amdgpu_device *adev, struct ras_common_if *ras_block)
{
int r;
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_nbio.h b/drivers/gpu/drm/amd/amdgpu/amdgpu_nbio.h
index a240336bbc6b..c686ff4bcc39 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_nbio.h
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_nbio.h
@@ -106,5 +106,6 @@ struct amdgpu_nbio {
struct amdgpu_nbio_ras *ras;
};
+int amdgpu_nbio_ras_sw_init(struct amdgpu_device *adev);
int amdgpu_nbio_ras_late_init(struct amdgpu_device *adev, struct ras_common_if *ras_block);
#endif
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_object.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_object.c
index 2e8f6cd7a729..2bd1a54ee866 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_object.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_object.c
@@ -139,7 +139,7 @@ void amdgpu_bo_placement_from_domain(struct amdgpu_bo *abo, u32 domain)
if (flags & AMDGPU_GEM_CREATE_CPU_ACCESS_REQUIRED)
places[c].lpfn = visible_pfn;
- else
+ else if (adev->gmc.real_vram_size != adev->gmc.visible_vram_size)
places[c].flags |= TTM_PL_FLAG_TOPDOWN;
if (flags & AMDGPU_GEM_CREATE_VRAM_CONTIGUOUS)
@@ -346,17 +346,16 @@ int amdgpu_bo_create_kernel(struct amdgpu_device *adev,
* @adev: amdgpu device object
* @offset: offset of the BO
* @size: size of the BO
- * @domain: where to place it
* @bo_ptr: used to initialize BOs in structures
* @cpu_addr: optional CPU address mapping
*
- * Creates a kernel BO at a specific offset in the address space of the domain.
+ * Creates a kernel BO at a specific offset in VRAM.
*
* Returns:
* 0 on success, negative error code otherwise.
*/
int amdgpu_bo_create_kernel_at(struct amdgpu_device *adev,
- uint64_t offset, uint64_t size, uint32_t domain,
+ uint64_t offset, uint64_t size,
struct amdgpu_bo **bo_ptr, void **cpu_addr)
{
struct ttm_operation_ctx ctx = { false, false };
@@ -366,8 +365,9 @@ int amdgpu_bo_create_kernel_at(struct amdgpu_device *adev,
offset &= PAGE_MASK;
size = ALIGN(size, PAGE_SIZE);
- r = amdgpu_bo_create_reserved(adev, size, PAGE_SIZE, domain, bo_ptr,
- NULL, cpu_addr);
+ r = amdgpu_bo_create_reserved(adev, size, PAGE_SIZE,
+ AMDGPU_GEM_DOMAIN_VRAM, bo_ptr, NULL,
+ cpu_addr);
if (r)
return r;
@@ -422,6 +422,8 @@ void amdgpu_bo_free_kernel(struct amdgpu_bo **bo, u64 *gpu_addr,
if (*bo == NULL)
return;
+ WARN_ON(amdgpu_ttm_adev((*bo)->tbo.bdev)->in_suspend);
+
if (likely(amdgpu_bo_reserve(*bo, true) == 0)) {
if (cpu_addr)
amdgpu_bo_kunmap(*bo);
@@ -446,33 +448,31 @@ static bool amdgpu_bo_validate_size(struct amdgpu_device *adev,
/*
* If GTT is part of requested domains the check must succeed to
- * allow fall back to GTT
+ * allow fall back to GTT.
*/
if (domain & AMDGPU_GEM_DOMAIN_GTT) {
man = ttm_manager_type(&adev->mman.bdev, TTM_PL_TT);
- if (size < man->size)
+ if (man && size < man->size)
return true;
- else
- goto fail;
- }
-
- if (domain & AMDGPU_GEM_DOMAIN_VRAM) {
+ else if (!man)
+ WARN_ON_ONCE("GTT domain requested but GTT mem manager uninitialized");
+ goto fail;
+ } else if (domain & AMDGPU_GEM_DOMAIN_VRAM) {
man = ttm_manager_type(&adev->mman.bdev, TTM_PL_VRAM);
- if (size < man->size)
+ if (man && size < man->size)
return true;
- else
- goto fail;
+ goto fail;
}
-
/* TODO add more domains checks, such as AMDGPU_GEM_DOMAIN_CPU */
return true;
fail:
- DRM_DEBUG("BO size %lu > total memory in domain: %llu\n", size,
- man->size);
+ if (man)
+ DRM_DEBUG("BO size %lu > total memory in domain: %llu\n", size,
+ man->size);
return false;
}
@@ -542,6 +542,7 @@ int amdgpu_bo_create(struct amdgpu_device *adev,
/* GWS and OA don't need any alignment. */
page_align = bp->byte_align;
size <<= PAGE_SHIFT;
+
} else if (bp->domain & AMDGPU_GEM_DOMAIN_GDS) {
/* Both size and alignment must be a multiple of 4. */
page_align = ALIGN(bp->byte_align, 4);
@@ -599,7 +600,7 @@ int amdgpu_bo_create(struct amdgpu_device *adev,
if (!amdgpu_gmc_vram_full_visible(&adev->gmc) &&
bo->tbo.resource->mem_type == TTM_PL_VRAM &&
- bo->tbo.resource->start < adev->gmc.visible_vram_size >> PAGE_SHIFT)
+ amdgpu_bo_in_cpu_visible_vram(bo))
amdgpu_cs_report_moved_bytes(adev, ctx.bytes_moved,
ctx.bytes_moved);
else
@@ -776,7 +777,7 @@ int amdgpu_bo_kmap(struct amdgpu_bo *bo, void **ptr)
return 0;
}
- r = ttm_bo_kmap(&bo->tbo, 0, bo->tbo.resource->num_pages, &bo->kmap);
+ r = ttm_bo_kmap(&bo->tbo, 0, PFN_UP(bo->tbo.base.size), &bo->kmap);
if (r)
return r;
@@ -1264,24 +1265,41 @@ void amdgpu_bo_move_notify(struct ttm_buffer_object *bo,
trace_amdgpu_bo_move(abo, new_mem->mem_type, old_mem->mem_type);
}
-void amdgpu_bo_get_memory(struct amdgpu_bo *bo, uint64_t *vram_mem,
- uint64_t *gtt_mem, uint64_t *cpu_mem)
+void amdgpu_bo_get_memory(struct amdgpu_bo *bo,
+ struct amdgpu_mem_stats *stats)
{
unsigned int domain;
+ uint64_t size = amdgpu_bo_size(bo);
domain = amdgpu_mem_type_to_domain(bo->tbo.resource->mem_type);
switch (domain) {
case AMDGPU_GEM_DOMAIN_VRAM:
- *vram_mem += amdgpu_bo_size(bo);
+ stats->vram += size;
+ if (amdgpu_bo_in_cpu_visible_vram(bo))
+ stats->visible_vram += size;
break;
case AMDGPU_GEM_DOMAIN_GTT:
- *gtt_mem += amdgpu_bo_size(bo);
+ stats->gtt += size;
break;
case AMDGPU_GEM_DOMAIN_CPU:
default:
- *cpu_mem += amdgpu_bo_size(bo);
+ stats->cpu += size;
break;
}
+
+ if (bo->preferred_domains & AMDGPU_GEM_DOMAIN_VRAM) {
+ stats->requested_vram += size;
+ if (bo->flags & AMDGPU_GEM_CREATE_CPU_ACCESS_REQUIRED)
+ stats->requested_visible_vram += size;
+
+ if (domain != AMDGPU_GEM_DOMAIN_VRAM) {
+ stats->evicted_vram += size;
+ if (bo->flags & AMDGPU_GEM_CREATE_CPU_ACCESS_REQUIRED)
+ stats->evicted_visible_vram += size;
+ }
+ } else if (bo->preferred_domains & AMDGPU_GEM_DOMAIN_GTT) {
+ stats->requested_gtt += size;
+ }
}
/**
@@ -1314,7 +1332,7 @@ void amdgpu_bo_release_notify(struct ttm_buffer_object *bo)
if (!bo->resource || bo->resource->mem_type != TTM_PL_VRAM ||
!(abo->flags & AMDGPU_GEM_CREATE_VRAM_WIPE_ON_RELEASE) ||
- adev->in_suspend || adev->shutdown)
+ adev->in_suspend || drm_dev_is_unplugged(adev_to_drm(adev)))
return;
if (WARN_ON_ONCE(!dma_resv_trylock(bo->base.resv)))
@@ -1345,7 +1363,6 @@ vm_fault_t amdgpu_bo_fault_reserve_notify(struct ttm_buffer_object *bo)
struct amdgpu_device *adev = amdgpu_ttm_adev(bo->bdev);
struct ttm_operation_ctx ctx = { false, false };
struct amdgpu_bo *abo = ttm_to_amdgpu_bo(bo);
- unsigned long offset;
int r;
/* Remember that this BO was accessed by the CPU */
@@ -1354,8 +1371,7 @@ vm_fault_t amdgpu_bo_fault_reserve_notify(struct ttm_buffer_object *bo)
if (bo->resource->mem_type != TTM_PL_VRAM)
return 0;
- offset = bo->resource->start << PAGE_SHIFT;
- if ((offset + bo->base.size) <= adev->gmc.visible_vram_size)
+ if (amdgpu_bo_in_cpu_visible_vram(abo))
return 0;
/* Can't move a pinned BO to visible VRAM */
@@ -1377,10 +1393,9 @@ vm_fault_t amdgpu_bo_fault_reserve_notify(struct ttm_buffer_object *bo)
else if (unlikely(r))
return VM_FAULT_SIGBUS;
- offset = bo->resource->start << PAGE_SHIFT;
/* this should never happen */
if (bo->resource->mem_type == TTM_PL_VRAM &&
- (offset + bo->base.size) > adev->gmc.visible_vram_size)
+ !amdgpu_bo_in_cpu_visible_vram(abo))
return VM_FAULT_SIGBUS;
ttm_bo_move_to_lru_tail_unlocked(bo);
@@ -1509,7 +1524,8 @@ u64 amdgpu_bo_gpu_offset_no_check(struct amdgpu_bo *bo)
uint32_t amdgpu_bo_get_preferred_domain(struct amdgpu_device *adev,
uint32_t domain)
{
- if (domain == (AMDGPU_GEM_DOMAIN_VRAM | AMDGPU_GEM_DOMAIN_GTT)) {
+ if ((domain == (AMDGPU_GEM_DOMAIN_VRAM | AMDGPU_GEM_DOMAIN_GTT)) &&
+ ((adev->asic_type == CHIP_CARRIZO) || (adev->asic_type == CHIP_STONEY))) {
domain = AMDGPU_GEM_DOMAIN_VRAM;
if (adev->gmc.real_vram_size <= AMDGPU_SG_THRESHOLD)
domain = AMDGPU_GEM_DOMAIN_GTT;
@@ -1572,9 +1588,9 @@ u64 amdgpu_bo_print_info(int id, struct amdgpu_bo *bo, struct seq_file *m)
attachment = READ_ONCE(bo->tbo.base.import_attach);
if (attachment)
- seq_printf(m, " imported from %p", dma_buf);
+ seq_printf(m, " imported from ino:%lu", file_inode(dma_buf->file)->i_ino);
else if (dma_buf)
- seq_printf(m, " exported as %p", dma_buf);
+ seq_printf(m, " exported as ino:%lu", file_inode(dma_buf->file)->i_ino);
amdgpu_bo_print_flag(m, bo, CPU_ACCESS_REQUIRED);
amdgpu_bo_print_flag(m, bo, NO_CPU_ACCESS);
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_object.h b/drivers/gpu/drm/amd/amdgpu/amdgpu_object.h
index 147b79c10cbb..35b8106816a1 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_object.h
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_object.h
@@ -126,6 +126,27 @@ struct amdgpu_bo_vm {
struct amdgpu_vm_bo_base entries[];
};
+struct amdgpu_mem_stats {
+ /* current VRAM usage, includes visible VRAM */
+ uint64_t vram;
+ /* current visible VRAM usage */
+ uint64_t visible_vram;
+ /* current GTT usage */
+ uint64_t gtt;
+ /* current system memory usage */
+ uint64_t cpu;
+ /* sum of evicted buffers, includes visible VRAM */
+ uint64_t evicted_vram;
+ /* sum of evicted buffers due to CPU access */
+ uint64_t evicted_visible_vram;
+ /* how much userspace asked for, includes vis.VRAM */
+ uint64_t requested_vram;
+ /* how much userspace asked for */
+ uint64_t requested_visible_vram;
+ /* how much userspace asked for */
+ uint64_t requested_gtt;
+};
+
static inline struct amdgpu_bo *ttm_to_amdgpu_bo(struct ttm_buffer_object *tbo)
{
return container_of(tbo, struct amdgpu_bo, tbo);
@@ -284,7 +305,7 @@ int amdgpu_bo_create_kernel(struct amdgpu_device *adev,
u32 domain, struct amdgpu_bo **bo_ptr,
u64 *gpu_addr, void **cpu_addr);
int amdgpu_bo_create_kernel_at(struct amdgpu_device *adev,
- uint64_t offset, uint64_t size, uint32_t domain,
+ uint64_t offset, uint64_t size,
struct amdgpu_bo **bo_ptr, void **cpu_addr);
int amdgpu_bo_create_user(struct amdgpu_device *adev,
struct amdgpu_bo_param *bp,
@@ -325,8 +346,8 @@ int amdgpu_bo_sync_wait_resv(struct amdgpu_device *adev, struct dma_resv *resv,
int amdgpu_bo_sync_wait(struct amdgpu_bo *bo, void *owner, bool intr);
u64 amdgpu_bo_gpu_offset(struct amdgpu_bo *bo);
u64 amdgpu_bo_gpu_offset_no_check(struct amdgpu_bo *bo);
-void amdgpu_bo_get_memory(struct amdgpu_bo *bo, uint64_t *vram_mem,
- uint64_t *gtt_mem, uint64_t *cpu_mem);
+void amdgpu_bo_get_memory(struct amdgpu_bo *bo,
+ struct amdgpu_mem_stats *stats);
void amdgpu_bo_add_to_shadow_list(struct amdgpu_bo_vm *vmbo);
int amdgpu_bo_restore_shadow(struct amdgpu_bo *shadow,
struct dma_fence **fence);
@@ -336,15 +357,22 @@ uint32_t amdgpu_bo_get_preferred_domain(struct amdgpu_device *adev,
/*
* sub allocation
*/
+static inline struct amdgpu_sa_manager *
+to_amdgpu_sa_manager(struct drm_suballoc_manager *manager)
+{
+ return container_of(manager, struct amdgpu_sa_manager, base);
+}
-static inline uint64_t amdgpu_sa_bo_gpu_addr(struct amdgpu_sa_bo *sa_bo)
+static inline uint64_t amdgpu_sa_bo_gpu_addr(struct drm_suballoc *sa_bo)
{
- return sa_bo->manager->gpu_addr + sa_bo->soffset;
+ return to_amdgpu_sa_manager(sa_bo->manager)->gpu_addr +
+ drm_suballoc_soffset(sa_bo);
}
-static inline void * amdgpu_sa_bo_cpu_addr(struct amdgpu_sa_bo *sa_bo)
+static inline void *amdgpu_sa_bo_cpu_addr(struct drm_suballoc *sa_bo)
{
- return sa_bo->manager->cpu_ptr + sa_bo->soffset;
+ return to_amdgpu_sa_manager(sa_bo->manager)->cpu_ptr +
+ drm_suballoc_soffset(sa_bo);
}
int amdgpu_sa_bo_manager_init(struct amdgpu_device *adev,
@@ -355,11 +383,11 @@ void amdgpu_sa_bo_manager_fini(struct amdgpu_device *adev,
int amdgpu_sa_bo_manager_start(struct amdgpu_device *adev,
struct amdgpu_sa_manager *sa_manager);
int amdgpu_sa_bo_new(struct amdgpu_sa_manager *sa_manager,
- struct amdgpu_sa_bo **sa_bo,
- unsigned size, unsigned align);
+ struct drm_suballoc **sa_bo,
+ unsigned int size);
void amdgpu_sa_bo_free(struct amdgpu_device *adev,
- struct amdgpu_sa_bo **sa_bo,
- struct dma_fence *fence);
+ struct drm_suballoc **sa_bo,
+ struct dma_fence *fence);
#if defined(CONFIG_DEBUG_FS)
void amdgpu_sa_bo_dump_debug_info(struct amdgpu_sa_manager *sa_manager,
struct seq_file *m);
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_psp.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_psp.c
index effa7df3ddbf..9d7e6e0e73ed 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_psp.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_psp.c
@@ -52,6 +52,33 @@ static int psp_load_smu_fw(struct psp_context *psp);
static int psp_rap_terminate(struct psp_context *psp);
static int psp_securedisplay_terminate(struct psp_context *psp);
+static int psp_ring_init(struct psp_context *psp,
+ enum psp_ring_type ring_type)
+{
+ int ret = 0;
+ struct psp_ring *ring;
+ struct amdgpu_device *adev = psp->adev;
+
+ ring = &psp->km_ring;
+
+ ring->ring_type = ring_type;
+
+ /* allocate 4k Page of Local Frame Buffer memory for ring */
+ ring->ring_size = 0x1000;
+ ret = amdgpu_bo_create_kernel(adev, ring->ring_size, PAGE_SIZE,
+ AMDGPU_GEM_DOMAIN_VRAM |
+ AMDGPU_GEM_DOMAIN_GTT,
+ &adev->firmware.rbuf,
+ &ring->ring_mem_mc_addr,
+ (void **)&ring->ring_mem);
+ if (ret) {
+ ring->ring_size = 0;
+ return ret;
+ }
+
+ return 0;
+}
+
/*
* Due to DF Cstate management centralized to PMFW, the firmware
* loading sequence will be updated as below:
@@ -96,6 +123,39 @@ static void psp_check_pmfw_centralized_cstate_management(struct psp_context *psp
}
}
+static int psp_init_sriov_microcode(struct psp_context *psp)
+{
+ struct amdgpu_device *adev = psp->adev;
+ char ucode_prefix[30];
+ int ret = 0;
+
+ amdgpu_ucode_ip_version_decode(adev, MP0_HWIP, ucode_prefix, sizeof(ucode_prefix));
+
+ switch (adev->ip_versions[MP0_HWIP][0]) {
+ case IP_VERSION(9, 0, 0):
+ case IP_VERSION(11, 0, 7):
+ case IP_VERSION(11, 0, 9):
+ adev->virt.autoload_ucode_id = AMDGPU_UCODE_ID_CP_MEC2;
+ ret = psp_init_cap_microcode(psp, ucode_prefix);
+ break;
+ case IP_VERSION(13, 0, 2):
+ adev->virt.autoload_ucode_id = AMDGPU_UCODE_ID_CP_MEC2;
+ ret = psp_init_cap_microcode(psp, ucode_prefix);
+ ret &= psp_init_ta_microcode(psp, ucode_prefix);
+ break;
+ case IP_VERSION(13, 0, 0):
+ adev->virt.autoload_ucode_id = 0;
+ break;
+ case IP_VERSION(13, 0, 10):
+ adev->virt.autoload_ucode_id = AMDGPU_UCODE_ID_CP_MES1_DATA;
+ ret = psp_init_cap_microcode(psp, ucode_prefix);
+ break;
+ default:
+ return -EINVAL;
+ }
+ return ret;
+}
+
static int psp_early_init(void *handle)
{
struct amdgpu_device *adev = (struct amdgpu_device *)handle;
@@ -132,6 +192,7 @@ static int psp_early_init(void *handle)
psp_v12_0_set_psp_funcs(psp);
break;
case IP_VERSION(13, 0, 2):
+ case IP_VERSION(13, 0, 6):
psp_v13_0_set_psp_funcs(psp);
break;
case IP_VERSION(13, 0, 1):
@@ -139,6 +200,7 @@ static int psp_early_init(void *handle)
case IP_VERSION(13, 0, 5):
case IP_VERSION(13, 0, 8):
case IP_VERSION(13, 0, 10):
+ case IP_VERSION(13, 0, 11):
psp_v13_0_set_psp_funcs(psp);
psp->autoload_supported = true;
break;
@@ -165,13 +227,17 @@ static int psp_early_init(void *handle)
psp_check_pmfw_centralized_cstate_management(psp);
- return 0;
+ if (amdgpu_sriov_vf(adev))
+ return psp_init_sriov_microcode(psp);
+ else
+ return psp_init_microcode(psp);
}
void psp_ta_free_shared_buf(struct ta_mem_context *mem_ctx)
{
amdgpu_bo_free_kernel(&mem_ctx->shared_bo, &mem_ctx->shared_mc_addr,
&mem_ctx->shared_buf);
+ mem_ctx->shared_bo = NULL;
}
static void psp_free_shared_bufs(struct psp_context *psp)
@@ -182,6 +248,7 @@ static void psp_free_shared_bufs(struct psp_context *psp)
/* free TMR memory buffer */
pptr = amdgpu_sriov_vf(psp->adev) ? &tmr_buf : NULL;
amdgpu_bo_free_kernel(&psp->tmr_bo, &psp->tmr_mc_addr, pptr);
+ psp->tmr_bo = NULL;
/* free xgmi shared memory */
psp_ta_free_shared_buf(&psp->xgmi_context.context.mem_context);
@@ -271,7 +338,7 @@ static bool psp_get_runtime_db_entry(struct amdgpu_device *adev,
if (db_header.cookie != PSP_RUNTIME_DB_COOKIE_ID) {
/* runtime db doesn't exist, exit */
- dev_warn(adev->dev, "PSP runtime database doesn't exist\n");
+ dev_dbg(adev->dev, "PSP runtime database doesn't exist\n");
return false;
}
@@ -321,42 +388,6 @@ static bool psp_get_runtime_db_entry(struct amdgpu_device *adev,
return ret;
}
-static int psp_init_sriov_microcode(struct psp_context *psp)
-{
- struct amdgpu_device *adev = psp->adev;
- int ret = 0;
-
- switch (adev->ip_versions[MP0_HWIP][0]) {
- case IP_VERSION(9, 0, 0):
- adev->virt.autoload_ucode_id = AMDGPU_UCODE_ID_CP_MEC2;
- ret = psp_init_cap_microcode(psp, "vega10");
- break;
- case IP_VERSION(11, 0, 9):
- adev->virt.autoload_ucode_id = AMDGPU_UCODE_ID_CP_MEC2;
- ret = psp_init_cap_microcode(psp, "navi12");
- break;
- case IP_VERSION(11, 0, 7):
- adev->virt.autoload_ucode_id = AMDGPU_UCODE_ID_CP_MEC2;
- ret = psp_init_cap_microcode(psp, "sienna_cichlid");
- break;
- case IP_VERSION(13, 0, 2):
- adev->virt.autoload_ucode_id = AMDGPU_UCODE_ID_CP_MEC2;
- ret = psp_init_cap_microcode(psp, "aldebaran");
- ret &= psp_init_ta_microcode(psp, "aldebaran");
- break;
- case IP_VERSION(13, 0, 0):
- adev->virt.autoload_ucode_id = 0;
- break;
- case IP_VERSION(13, 0, 10):
- adev->virt.autoload_ucode_id = AMDGPU_UCODE_ID_CP_MES1_DATA;
- break;
- default:
- BUG();
- break;
- }
- return ret;
-}
-
static int psp_sw_init(void *handle)
{
struct amdgpu_device *adev = (struct amdgpu_device *)handle;
@@ -372,15 +403,6 @@ static int psp_sw_init(void *handle)
ret = -ENOMEM;
}
- if (amdgpu_sriov_vf(adev))
- ret = psp_init_sriov_microcode(psp);
- else
- ret = psp_init_microcode(psp);
- if (ret) {
- DRM_ERROR("Failed to load psp firmware!\n");
- return ret;
- }
-
adev->psp.xgmi_context.supports_extended_data =
!adev->gmc.xgmi.connected_to_cpu &&
adev->ip_versions[MP0_HWIP][0] == IP_VERSION(13, 0, 2);
@@ -484,26 +506,13 @@ static int psp_sw_fini(void *handle)
struct psp_gfx_cmd_resp *cmd = psp->cmd;
psp_memory_training_fini(psp);
- if (psp->sos_fw) {
- release_firmware(psp->sos_fw);
- psp->sos_fw = NULL;
- }
- if (psp->asd_fw) {
- release_firmware(psp->asd_fw);
- psp->asd_fw = NULL;
- }
- if (psp->ta_fw) {
- release_firmware(psp->ta_fw);
- psp->ta_fw = NULL;
- }
- if (psp->cap_fw) {
- release_firmware(psp->cap_fw);
- psp->cap_fw = NULL;
- }
- if (psp->toc_fw) {
- release_firmware(psp->toc_fw);
- psp->toc_fw = NULL;
- }
+
+ amdgpu_ucode_release(&psp->sos_fw);
+ amdgpu_ucode_release(&psp->asd_fw);
+ amdgpu_ucode_release(&psp->ta_fw);
+ amdgpu_ucode_release(&psp->cap_fw);
+ amdgpu_ucode_release(&psp->toc_fw);
+
if (adev->ip_versions[MP0_HWIP][0] == IP_VERSION(11, 0, 0) ||
adev->ip_versions[MP0_HWIP][0] == IP_VERSION(11, 0, 7))
psp_sysfs_fini(adev);
@@ -595,7 +604,7 @@ psp_cmd_submit_buf(struct psp_context *psp,
struct psp_gfx_cmd_resp *cmd, uint64_t fence_mc_addr)
{
int ret;
- int index, idx;
+ int index;
int timeout = 20000;
bool ras_intr = false;
bool skip_unsupport = false;
@@ -603,9 +612,6 @@ psp_cmd_submit_buf(struct psp_context *psp,
if (psp->adev->no_hw_access)
return 0;
- if (!drm_dev_enter(adev_to_drm(psp->adev), &idx))
- return 0;
-
memset(psp->cmd_buf_mem, 0, PSP_CMD_BUFFER_SIZE);
memcpy(psp->cmd_buf_mem, cmd, sizeof(struct psp_gfx_cmd_resp));
@@ -669,7 +675,6 @@ psp_cmd_submit_buf(struct psp_context *psp,
}
exit:
- drm_dev_exit(idx);
return ret;
}
@@ -743,7 +748,7 @@ static int psp_load_toc(struct psp_context *psp,
/* Set up Trusted Memory Region */
static int psp_tmr_init(struct psp_context *psp)
{
- int ret;
+ int ret = 0;
int tmr_size;
void *tmr_buf;
void **pptr;
@@ -770,10 +775,16 @@ static int psp_tmr_init(struct psp_context *psp)
}
}
- pptr = amdgpu_sriov_vf(psp->adev) ? &tmr_buf : NULL;
- ret = amdgpu_bo_create_kernel(psp->adev, tmr_size, PSP_TMR_ALIGNMENT,
- AMDGPU_GEM_DOMAIN_VRAM,
- &psp->tmr_bo, &psp->tmr_mc_addr, pptr);
+ if (!psp->tmr_bo) {
+ pptr = amdgpu_sriov_vf(psp->adev) ? &tmr_buf : NULL;
+ ret = amdgpu_bo_create_kernel(psp->adev, tmr_size,
+ PSP_TMR_ALIGNMENT,
+ AMDGPU_HAS_VRAM(psp->adev) ?
+ AMDGPU_GEM_DOMAIN_VRAM :
+ AMDGPU_GEM_DOMAIN_GTT,
+ &psp->tmr_bo, &psp->tmr_mc_addr,
+ pptr);
+ }
return ret;
}
@@ -828,10 +839,18 @@ static void psp_prep_tmr_unload_cmd_buf(struct psp_context *psp,
static int psp_tmr_unload(struct psp_context *psp)
{
int ret;
- struct psp_gfx_cmd_resp *cmd = acquire_psp_cmd_buf(psp);
+ struct psp_gfx_cmd_resp *cmd;
+
+ /* skip TMR unload for Navi12 and CHIP_SIENNA_CICHLID SRIOV,
+ * as TMR is not loaded at all
+ */
+ if (amdgpu_sriov_vf(psp->adev) && psp_skip_tmr(psp))
+ return 0;
+
+ cmd = acquire_psp_cmd_buf(psp);
psp_prep_tmr_unload_cmd_buf(psp, cmd);
- dev_info(psp->adev->dev, "free PSP TMR buffer\n");
+ dev_dbg(psp->adev->dev, "free PSP TMR buffer\n");
ret = psp_cmd_submit_buf(psp, NULL, cmd,
psp->fence_buf_mc_addr);
@@ -988,6 +1007,8 @@ int psp_ta_unload(struct psp_context *psp, struct ta_context *context)
ret = psp_cmd_submit_buf(psp, NULL, cmd, psp->fence_buf_mc_addr);
+ context->resp_status = cmd->resp.status;
+
release_psp_cmd_buf(psp);
return ret;
@@ -1063,48 +1084,13 @@ int psp_ta_init_shared_buf(struct psp_context *psp,
* physical) for ta to host memory
*/
return amdgpu_bo_create_kernel(psp->adev, mem_ctx->shared_mem_size,
- PAGE_SIZE, AMDGPU_GEM_DOMAIN_VRAM,
+ PAGE_SIZE, AMDGPU_GEM_DOMAIN_VRAM |
+ AMDGPU_GEM_DOMAIN_GTT,
&mem_ctx->shared_bo,
&mem_ctx->shared_mc_addr,
&mem_ctx->shared_buf);
}
-static void psp_prep_ta_invoke_indirect_cmd_buf(struct psp_gfx_cmd_resp *cmd,
- uint32_t ta_cmd_id,
- struct ta_context *context)
-{
- cmd->cmd_id = GFX_CMD_ID_INVOKE_CMD;
- cmd->cmd.cmd_invoke_cmd.session_id = context->session_id;
- cmd->cmd.cmd_invoke_cmd.ta_cmd_id = ta_cmd_id;
-
- cmd->cmd.cmd_invoke_cmd.buf.num_desc = 1;
- cmd->cmd.cmd_invoke_cmd.buf.total_size = context->mem_context.shared_mem_size;
- cmd->cmd.cmd_invoke_cmd.buf.buf_desc[0].buf_size = context->mem_context.shared_mem_size;
- cmd->cmd.cmd_invoke_cmd.buf.buf_desc[0].buf_phy_addr_lo =
- lower_32_bits(context->mem_context.shared_mc_addr);
- cmd->cmd.cmd_invoke_cmd.buf.buf_desc[0].buf_phy_addr_hi =
- upper_32_bits(context->mem_context.shared_mc_addr);
-}
-
-int psp_ta_invoke_indirect(struct psp_context *psp,
- uint32_t ta_cmd_id,
- struct ta_context *context)
-{
- int ret;
- struct psp_gfx_cmd_resp *cmd = acquire_psp_cmd_buf(psp);
-
- psp_prep_ta_invoke_indirect_cmd_buf(cmd, ta_cmd_id, context);
-
- ret = psp_cmd_submit_buf(psp, NULL, cmd,
- psp->fence_buf_mc_addr);
-
- context->resp_status = cmd->resp.status;
-
- release_psp_cmd_buf(psp);
-
- return ret;
-}
-
static void psp_prep_ta_invoke_cmd_buf(struct psp_gfx_cmd_resp *cmd,
uint32_t ta_cmd_id,
uint32_t session_id)
@@ -1547,7 +1533,7 @@ int psp_ras_terminate(struct psp_context *psp)
return ret;
}
-static int psp_ras_initialize(struct psp_context *psp)
+int psp_ras_initialize(struct psp_context *psp)
{
int ret;
uint32_t boot_cfg = 0xFF;
@@ -1610,7 +1596,7 @@ static int psp_ras_initialize(struct psp_context *psp)
psp->ras_context.context.mem_context.shared_mem_size = PSP_RAS_SHARED_MEM_SIZE;
psp->ras_context.context.ta_load_type = GFX_CMD_ID_LOAD_TA;
- if (!psp->ras_context.context.initialized) {
+ if (!psp->ras_context.context.mem_context.shared_buf) {
ret = psp_ta_init_shared_buf(psp, &psp->ras_context.context.mem_context);
if (ret)
return ret;
@@ -1631,7 +1617,9 @@ static int psp_ras_initialize(struct psp_context *psp)
else {
if (ras_cmd->ras_status)
dev_warn(psp->adev->dev, "RAS Init Status: 0x%X\n", ras_cmd->ras_status);
- amdgpu_ras_fini(psp->adev);
+
+ /* fail to load RAS TA */
+ psp->ras_context.context.initialized = false;
}
return ret;
@@ -1690,7 +1678,7 @@ static int psp_hdcp_initialize(struct psp_context *psp)
psp->hdcp_context.context.mem_context.shared_mem_size = PSP_HDCP_SHARED_MEM_SIZE;
psp->hdcp_context.context.ta_load_type = GFX_CMD_ID_LOAD_TA;
- if (!psp->hdcp_context.context.initialized) {
+ if (!psp->hdcp_context.context.mem_context.shared_buf) {
ret = psp_ta_init_shared_buf(psp, &psp->hdcp_context.context.mem_context);
if (ret)
return ret;
@@ -1757,7 +1745,7 @@ static int psp_dtm_initialize(struct psp_context *psp)
psp->dtm_context.context.mem_context.shared_mem_size = PSP_DTM_SHARED_MEM_SIZE;
psp->dtm_context.context.ta_load_type = GFX_CMD_ID_LOAD_TA;
- if (!psp->dtm_context.context.initialized) {
+ if (!psp->dtm_context.context.mem_context.shared_buf) {
ret = psp_ta_init_shared_buf(psp, &psp->dtm_context.context.mem_context);
if (ret)
return ret;
@@ -1825,7 +1813,7 @@ static int psp_rap_initialize(struct psp_context *psp)
psp->rap_context.context.mem_context.shared_mem_size = PSP_RAP_SHARED_MEM_SIZE;
psp->rap_context.context.ta_load_type = GFX_CMD_ID_LOAD_TA;
- if (!psp->rap_context.context.initialized) {
+ if (!psp->rap_context.context.mem_context.shared_buf) {
ret = psp_ta_init_shared_buf(psp, &psp->rap_context.context.mem_context);
if (ret)
return ret;
@@ -1906,7 +1894,7 @@ out_unlock:
static int psp_securedisplay_initialize(struct psp_context *psp)
{
int ret;
- struct securedisplay_cmd *securedisplay_cmd;
+ struct ta_securedisplay_cmd *securedisplay_cmd;
/*
* TODO: bypass the initialize in sriov for now
@@ -1938,10 +1926,15 @@ static int psp_securedisplay_initialize(struct psp_context *psp)
} else
return ret;
+ mutex_lock(&psp->securedisplay_context.mutex);
+
psp_prep_securedisplay_cmd_buf(psp, &securedisplay_cmd,
TA_SECUREDISPLAY_COMMAND__QUERY_TA);
ret = psp_securedisplay_invoke(psp, TA_SECUREDISPLAY_COMMAND__QUERY_TA);
+
+ mutex_unlock(&psp->securedisplay_context.mutex);
+
if (ret) {
psp_securedisplay_terminate(psp);
/* free securedisplay shared memory */
@@ -1990,12 +1983,8 @@ int psp_securedisplay_invoke(struct psp_context *psp, uint32_t ta_cmd_id)
ta_cmd_id != TA_SECUREDISPLAY_COMMAND__SEND_ROI_CRC)
return -EINVAL;
- mutex_lock(&psp->securedisplay_context.mutex);
-
ret = psp_ta_invoke(psp, ta_cmd_id, &psp->securedisplay_context.context);
- mutex_unlock(&psp->securedisplay_context.mutex);
-
return ret;
}
/* SECUREDISPLAY end */
@@ -2732,8 +2721,6 @@ static int psp_suspend(void *handle)
}
out:
- psp_free_shared_bufs(psp);
-
return ret;
}
@@ -2914,25 +2901,15 @@ int psp_ring_cmd_submit(struct psp_context *psp,
return 0;
}
-int psp_init_asd_microcode(struct psp_context *psp,
- const char *chip_name)
+int psp_init_asd_microcode(struct psp_context *psp, const char *chip_name)
{
struct amdgpu_device *adev = psp->adev;
char fw_name[PSP_FW_NAME_LEN];
const struct psp_firmware_header_v1_0 *asd_hdr;
int err = 0;
- if (!chip_name) {
- dev_err(adev->dev, "invalid chip name for asd microcode\n");
- return -EINVAL;
- }
-
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_asd.bin", chip_name);
- err = request_firmware(&adev->psp.asd_fw, fw_name, adev->dev);
- if (err)
- goto out;
-
- err = amdgpu_ucode_validate(adev->psp.asd_fw);
+ err = amdgpu_ucode_request(adev, &adev->psp.asd_fw, fw_name);
if (err)
goto out;
@@ -2944,31 +2921,19 @@ int psp_init_asd_microcode(struct psp_context *psp,
le32_to_cpu(asd_hdr->header.ucode_array_offset_bytes);
return 0;
out:
- dev_err(adev->dev, "fail to initialize asd microcode\n");
- release_firmware(adev->psp.asd_fw);
- adev->psp.asd_fw = NULL;
+ amdgpu_ucode_release(&adev->psp.asd_fw);
return err;
}
-int psp_init_toc_microcode(struct psp_context *psp,
- const char *chip_name)
+int psp_init_toc_microcode(struct psp_context *psp, const char *chip_name)
{
struct amdgpu_device *adev = psp->adev;
char fw_name[PSP_FW_NAME_LEN];
const struct psp_firmware_header_v1_0 *toc_hdr;
int err = 0;
- if (!chip_name) {
- dev_err(adev->dev, "invalid chip name for toc microcode\n");
- return -EINVAL;
- }
-
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_toc.bin", chip_name);
- err = request_firmware(&adev->psp.toc_fw, fw_name, adev->dev);
- if (err)
- goto out;
-
- err = amdgpu_ucode_validate(adev->psp.toc_fw);
+ err = amdgpu_ucode_request(adev, &adev->psp.toc_fw, fw_name);
if (err)
goto out;
@@ -2980,9 +2945,7 @@ int psp_init_toc_microcode(struct psp_context *psp,
le32_to_cpu(toc_hdr->header.ucode_array_offset_bytes);
return 0;
out:
- dev_err(adev->dev, "fail to request/validate toc microcode\n");
- release_firmware(adev->psp.toc_fw);
- adev->psp.toc_fw = NULL;
+ amdgpu_ucode_release(&adev->psp.toc_fw);
return err;
}
@@ -3113,8 +3076,7 @@ static int psp_init_sos_base_fw(struct amdgpu_device *adev)
return 0;
}
-int psp_init_sos_microcode(struct psp_context *psp,
- const char *chip_name)
+int psp_init_sos_microcode(struct psp_context *psp, const char *chip_name)
{
struct amdgpu_device *adev = psp->adev;
char fw_name[PSP_FW_NAME_LEN];
@@ -3127,17 +3089,8 @@ int psp_init_sos_microcode(struct psp_context *psp,
uint8_t *ucode_array_start_addr;
int fw_index = 0;
- if (!chip_name) {
- dev_err(adev->dev, "invalid chip name for sos microcode\n");
- return -EINVAL;
- }
-
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_sos.bin", chip_name);
- err = request_firmware(&adev->psp.sos_fw, fw_name, adev->dev);
- if (err)
- goto out;
-
- err = amdgpu_ucode_validate(adev->psp.sos_fw);
+ err = amdgpu_ucode_request(adev, &adev->psp.sos_fw, fw_name);
if (err)
goto out;
@@ -3209,10 +3162,7 @@ int psp_init_sos_microcode(struct psp_context *psp,
return 0;
out:
- dev_err(adev->dev,
- "failed to init sos firmware\n");
- release_firmware(adev->psp.sos_fw);
- adev->psp.sos_fw = NULL;
+ amdgpu_ucode_release(&adev->psp.sos_fw);
return err;
}
@@ -3278,41 +3228,76 @@ static int parse_ta_bin_descriptor(struct psp_context *psp,
return 0;
}
-int psp_init_ta_microcode(struct psp_context *psp,
- const char *chip_name)
+static int parse_ta_v1_microcode(struct psp_context *psp)
{
+ const struct ta_firmware_header_v1_0 *ta_hdr;
struct amdgpu_device *adev = psp->adev;
- char fw_name[PSP_FW_NAME_LEN];
- const struct ta_firmware_header_v2_0 *ta_hdr;
- int err = 0;
- int ta_index = 0;
- if (!chip_name) {
- dev_err(adev->dev, "invalid chip name for ta microcode\n");
+ ta_hdr = (const struct ta_firmware_header_v1_0 *) adev->psp.ta_fw->data;
+
+ if (le16_to_cpu(ta_hdr->header.header_version_major) != 1)
return -EINVAL;
- }
- snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_ta.bin", chip_name);
- err = request_firmware(&adev->psp.ta_fw, fw_name, adev->dev);
- if (err)
- goto out;
+ adev->psp.xgmi_context.context.bin_desc.fw_version =
+ le32_to_cpu(ta_hdr->xgmi.fw_version);
+ adev->psp.xgmi_context.context.bin_desc.size_bytes =
+ le32_to_cpu(ta_hdr->xgmi.size_bytes);
+ adev->psp.xgmi_context.context.bin_desc.start_addr =
+ (uint8_t *)ta_hdr +
+ le32_to_cpu(ta_hdr->header.ucode_array_offset_bytes);
+
+ adev->psp.ras_context.context.bin_desc.fw_version =
+ le32_to_cpu(ta_hdr->ras.fw_version);
+ adev->psp.ras_context.context.bin_desc.size_bytes =
+ le32_to_cpu(ta_hdr->ras.size_bytes);
+ adev->psp.ras_context.context.bin_desc.start_addr =
+ (uint8_t *)adev->psp.xgmi_context.context.bin_desc.start_addr +
+ le32_to_cpu(ta_hdr->ras.offset_bytes);
+
+ adev->psp.hdcp_context.context.bin_desc.fw_version =
+ le32_to_cpu(ta_hdr->hdcp.fw_version);
+ adev->psp.hdcp_context.context.bin_desc.size_bytes =
+ le32_to_cpu(ta_hdr->hdcp.size_bytes);
+ adev->psp.hdcp_context.context.bin_desc.start_addr =
+ (uint8_t *)ta_hdr +
+ le32_to_cpu(ta_hdr->header.ucode_array_offset_bytes);
+
+ adev->psp.dtm_context.context.bin_desc.fw_version =
+ le32_to_cpu(ta_hdr->dtm.fw_version);
+ adev->psp.dtm_context.context.bin_desc.size_bytes =
+ le32_to_cpu(ta_hdr->dtm.size_bytes);
+ adev->psp.dtm_context.context.bin_desc.start_addr =
+ (uint8_t *)adev->psp.hdcp_context.context.bin_desc.start_addr +
+ le32_to_cpu(ta_hdr->dtm.offset_bytes);
+
+ adev->psp.securedisplay_context.context.bin_desc.fw_version =
+ le32_to_cpu(ta_hdr->securedisplay.fw_version);
+ adev->psp.securedisplay_context.context.bin_desc.size_bytes =
+ le32_to_cpu(ta_hdr->securedisplay.size_bytes);
+ adev->psp.securedisplay_context.context.bin_desc.start_addr =
+ (uint8_t *)adev->psp.hdcp_context.context.bin_desc.start_addr +
+ le32_to_cpu(ta_hdr->securedisplay.offset_bytes);
+
+ adev->psp.ta_fw_version = le32_to_cpu(ta_hdr->header.ucode_version);
- err = amdgpu_ucode_validate(adev->psp.ta_fw);
- if (err)
- goto out;
+ return 0;
+}
+
+static int parse_ta_v2_microcode(struct psp_context *psp)
+{
+ const struct ta_firmware_header_v2_0 *ta_hdr;
+ struct amdgpu_device *adev = psp->adev;
+ int err = 0;
+ int ta_index = 0;
ta_hdr = (const struct ta_firmware_header_v2_0 *)adev->psp.ta_fw->data;
- if (le16_to_cpu(ta_hdr->header.header_version_major) != 2) {
- dev_err(adev->dev, "unsupported TA header version\n");
- err = -EINVAL;
- goto out;
- }
+ if (le16_to_cpu(ta_hdr->header.header_version_major) != 2)
+ return -EINVAL;
if (le32_to_cpu(ta_hdr->ta_fw_bin_count) >= UCODE_MAX_PSP_PACKAGING) {
dev_err(adev->dev, "packed TA count exceeds maximum limit\n");
- err = -EINVAL;
- goto out;
+ return -EINVAL;
}
for (ta_index = 0; ta_index < le32_to_cpu(ta_hdr->ta_fw_bin_count); ta_index++) {
@@ -3320,19 +3305,44 @@ int psp_init_ta_microcode(struct psp_context *psp,
&ta_hdr->ta_fw_bin[ta_index],
ta_hdr);
if (err)
- goto out;
+ return err;
}
return 0;
-out:
- dev_err(adev->dev, "fail to initialize ta microcode\n");
- release_firmware(adev->psp.ta_fw);
- adev->psp.ta_fw = NULL;
+}
+
+int psp_init_ta_microcode(struct psp_context *psp, const char *chip_name)
+{
+ const struct common_firmware_header *hdr;
+ struct amdgpu_device *adev = psp->adev;
+ char fw_name[PSP_FW_NAME_LEN];
+ int err;
+
+ snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_ta.bin", chip_name);
+ err = amdgpu_ucode_request(adev, &adev->psp.ta_fw, fw_name);
+ if (err)
+ return err;
+
+ hdr = (const struct common_firmware_header *)adev->psp.ta_fw->data;
+ switch (le16_to_cpu(hdr->header_version_major)) {
+ case 1:
+ err = parse_ta_v1_microcode(psp);
+ break;
+ case 2:
+ err = parse_ta_v2_microcode(psp);
+ break;
+ default:
+ dev_err(adev->dev, "unsupported TA header version\n");
+ err = -EINVAL;
+ }
+
+ if (err)
+ amdgpu_ucode_release(&adev->psp.ta_fw);
+
return err;
}
-int psp_init_cap_microcode(struct psp_context *psp,
- const char *chip_name)
+int psp_init_cap_microcode(struct psp_context *psp, const char *chip_name)
{
struct amdgpu_device *adev = psp->adev;
char fw_name[PSP_FW_NAME_LEN];
@@ -3340,28 +3350,20 @@ int psp_init_cap_microcode(struct psp_context *psp,
struct amdgpu_firmware_info *info = NULL;
int err = 0;
- if (!chip_name) {
- dev_err(adev->dev, "invalid chip name for cap microcode\n");
- return -EINVAL;
- }
-
if (!amdgpu_sriov_vf(adev)) {
dev_err(adev->dev, "cap microcode should only be loaded under SRIOV\n");
return -EINVAL;
}
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_cap.bin", chip_name);
- err = request_firmware(&adev->psp.cap_fw, fw_name, adev->dev);
- if (err) {
- dev_warn(adev->dev, "cap microcode does not exist, skip\n");
- err = 0;
- goto out;
- }
-
- err = amdgpu_ucode_validate(adev->psp.cap_fw);
+ err = amdgpu_ucode_request(adev, &adev->psp.cap_fw, fw_name);
if (err) {
+ if (err == -ENODEV) {
+ dev_warn(adev->dev, "cap microcode does not exist, skip\n");
+ err = 0;
+ goto out;
+ }
dev_err(adev->dev, "fail to initialize cap microcode\n");
- goto out;
}
info = &adev->firmware.ucode[AMDGPU_UCODE_ID_CAP];
@@ -3378,8 +3380,7 @@ int psp_init_cap_microcode(struct psp_context *psp,
return 0;
out:
- release_firmware(adev->psp.cap_fw);
- adev->psp.cap_fw = NULL;
+ amdgpu_ucode_release(&adev->psp.cap_fw);
return err;
}
@@ -3450,10 +3451,10 @@ static ssize_t psp_usbc_pd_fw_sysfs_write(struct device *dev,
/* LFB address which is aligned to 1MB boundary per PSP request */
ret = amdgpu_bo_create_kernel(adev, usbc_pd_fw->size, 0x100000,
- AMDGPU_GEM_DOMAIN_VRAM,
- &fw_buf_bo,
- &fw_pri_mc_addr,
- &fw_pri_cpu_addr);
+ AMDGPU_GEM_DOMAIN_VRAM |
+ AMDGPU_GEM_DOMAIN_GTT,
+ &fw_buf_bo, &fw_pri_mc_addr,
+ &fw_pri_cpu_addr);
if (ret)
goto rel_buf;
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_psp.h b/drivers/gpu/drm/amd/amdgpu/amdgpu_psp.h
index 58ce3ebb446c..cf4f60c66122 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_psp.h
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_psp.h
@@ -118,7 +118,6 @@ struct psp_funcs
int (*bootloader_load_dbg_drv)(struct psp_context *psp);
int (*bootloader_load_ras_drv)(struct psp_context *psp);
int (*bootloader_load_sos)(struct psp_context *psp);
- int (*ring_init)(struct psp_context *psp, enum psp_ring_type ring_type);
int (*ring_create)(struct psp_context *psp,
enum psp_ring_type ring_type);
int (*ring_stop)(struct psp_context *psp,
@@ -136,6 +135,12 @@ struct psp_funcs
int (*vbflash_stat)(struct psp_context *psp);
};
+struct ta_funcs {
+ int (*fn_ta_initialize)(struct psp_context *psp);
+ int (*fn_ta_invoke)(struct psp_context *psp, uint32_t ta_cmd_id);
+ int (*fn_ta_terminate)(struct psp_context *psp);
+};
+
#define AMDGPU_XGMI_MAX_CONNECTED_NODES 64
struct psp_xgmi_node_info {
uint64_t node_id;
@@ -309,6 +314,7 @@ struct psp_context
struct psp_gfx_cmd_resp *cmd;
const struct psp_funcs *funcs;
+ const struct ta_funcs *ta_funcs;
/* firmware buffer */
struct amdgpu_bo *fw_pri_bo;
@@ -389,7 +395,6 @@ struct amdgpu_psp_funcs {
};
-#define psp_ring_init(psp, type) (psp)->funcs->ring_init((psp), (type))
#define psp_ring_create(psp, type) (psp)->funcs->ring_create((psp), (type))
#define psp_ring_stop(psp, type) (psp)->funcs->ring_stop((psp), (type))
#define psp_ring_destroy(psp, type) ((psp)->funcs->ring_destroy((psp), (type)))
@@ -463,9 +468,6 @@ int psp_ta_load(struct psp_context *psp, struct ta_context *context);
int psp_ta_invoke(struct psp_context *psp,
uint32_t ta_cmd_id,
struct ta_context *context);
-int psp_ta_invoke_indirect(struct psp_context *psp,
- uint32_t ta_cmd_id,
- struct ta_context *context);
int psp_xgmi_initialize(struct psp_context *psp, bool set_extended_data, bool load_ta);
int psp_xgmi_terminate(struct psp_context *psp);
@@ -479,7 +481,7 @@ int psp_xgmi_get_topology_info(struct psp_context *psp,
int psp_xgmi_set_topology_info(struct psp_context *psp,
int number_devices,
struct psp_xgmi_topology_info *topology);
-
+int psp_ras_initialize(struct psp_context *psp);
int psp_ras_invoke(struct psp_context *psp, uint32_t ta_cmd_id);
int psp_ras_enable_features(struct psp_context *psp,
union ta_ras_cmd_input *info, bool enable);
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_psp_ta.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_psp_ta.c
index 0988e00612e5..468a67b302d4 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_psp_ta.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_psp_ta.c
@@ -41,30 +41,46 @@ static uint32_t get_bin_version(const uint8_t *bin)
return hdr->ucode_version;
}
-static void prep_ta_mem_context(struct psp_context *psp,
- struct ta_context *context,
+static int prep_ta_mem_context(struct ta_mem_context *mem_context,
uint8_t *shared_buf,
uint32_t shared_buf_len)
{
- context->mem_context.shared_mem_size = PAGE_ALIGN(shared_buf_len);
- psp_ta_init_shared_buf(psp, &context->mem_context);
+ if (mem_context->shared_mem_size < shared_buf_len)
+ return -EINVAL;
+ memset(mem_context->shared_buf, 0, mem_context->shared_mem_size);
+ memcpy((void *)mem_context->shared_buf, shared_buf, shared_buf_len);
- memcpy((void *)context->mem_context.shared_buf, shared_buf, shared_buf_len);
+ return 0;
}
static bool is_ta_type_valid(enum ta_type_id ta_type)
{
- bool ret = false;
+ switch (ta_type) {
+ case TA_TYPE_RAS:
+ return true;
+ default:
+ return false;
+ }
+}
+
+static const struct ta_funcs ras_ta_funcs = {
+ .fn_ta_initialize = psp_ras_initialize,
+ .fn_ta_invoke = psp_ras_invoke,
+ .fn_ta_terminate = psp_ras_terminate
+};
+static void set_ta_context_funcs(struct psp_context *psp,
+ enum ta_type_id ta_type,
+ struct ta_context **pcontext)
+{
switch (ta_type) {
case TA_TYPE_RAS:
- ret = true;
+ *pcontext = &psp->ras_context.context;
+ psp->ta_funcs = &ras_ta_funcs;
break;
default:
break;
}
-
- return ret;
}
static const struct file_operations ta_load_debugfs_fops = {
@@ -85,8 +101,7 @@ static const struct file_operations ta_invoke_debugfs_fops = {
.owner = THIS_MODULE
};
-
-/**
+/*
* DOC: AMDGPU TA debugfs interfaces
*
* Three debugfs interfaces can be opened by a program to
@@ -111,15 +126,18 @@ static const struct file_operations ta_invoke_debugfs_fops = {
*
* - For TA invoke debugfs interface:
* Transmit buffer:
+ * - TA type (4bytes)
* - TA ID (4bytes)
* - TA CMD ID (4bytes)
- * - TA shard buf length (4bytes)
+ * - TA shard buf length
+ * (4bytes, value not beyond TA shared memory size)
* - TA shared buf
* Receive buffer:
* - TA shared buf
*
* - For TA unload debugfs interface:
* Transmit buffer:
+ * - TA type (4bytes)
* - TA ID (4bytes)
*/
@@ -131,59 +149,92 @@ static ssize_t ta_if_load_debugfs_write(struct file *fp, const char *buf, size_t
uint32_t copy_pos = 0;
int ret = 0;
- struct amdgpu_device *adev = (struct amdgpu_device *)file_inode(fp)->i_private;
- struct psp_context *psp = &adev->psp;
- struct ta_context context = {0};
+ struct amdgpu_device *adev = (struct amdgpu_device *)file_inode(fp)->i_private;
+ struct psp_context *psp = &adev->psp;
+ struct ta_context *context = NULL;
if (!buf)
return -EINVAL;
ret = copy_from_user((void *)&ta_type, &buf[copy_pos], sizeof(uint32_t));
if (ret || (!is_ta_type_valid(ta_type)))
- return -EINVAL;
+ return -EFAULT;
copy_pos += sizeof(uint32_t);
ret = copy_from_user((void *)&ta_bin_len, &buf[copy_pos], sizeof(uint32_t));
if (ret)
- return -EINVAL;
+ return -EFAULT;
copy_pos += sizeof(uint32_t);
ta_bin = kzalloc(ta_bin_len, GFP_KERNEL);
if (!ta_bin)
- ret = -ENOMEM;
+ return -ENOMEM;
if (copy_from_user((void *)ta_bin, &buf[copy_pos], ta_bin_len)) {
ret = -EFAULT;
goto err_free_bin;
}
- ret = psp_ras_terminate(psp);
- if (ret) {
- dev_err(adev->dev, "Failed to unload embedded RAS TA\n");
+ /* Set TA context and functions */
+ set_ta_context_funcs(psp, ta_type, &context);
+
+ if (!psp->ta_funcs || !psp->ta_funcs->fn_ta_terminate) {
+ dev_err(adev->dev, "Unsupported function to terminate TA\n");
+ ret = -EOPNOTSUPP;
goto err_free_bin;
}
- context.ta_type = ta_type;
- context.ta_load_type = GFX_CMD_ID_LOAD_TA;
- context.bin_desc.fw_version = get_bin_version(ta_bin);
- context.bin_desc.size_bytes = ta_bin_len;
- context.bin_desc.start_addr = ta_bin;
+ /*
+ * Allocate TA shared buf in case shared buf was freed
+ * due to loading TA failed before.
+ */
+ if (!context->mem_context.shared_buf) {
+ ret = psp_ta_init_shared_buf(psp, &context->mem_context);
+ if (ret) {
+ ret = -ENOMEM;
+ goto err_free_bin;
+ }
+ }
+
+ ret = psp_fn_ta_terminate(psp);
+ if (ret || context->resp_status) {
+ dev_err(adev->dev,
+ "Failed to unload embedded TA (%d) and status (0x%X)\n",
+ ret, context->resp_status);
+ if (!ret)
+ ret = -EINVAL;
+ goto err_free_ta_shared_buf;
+ }
+
+ /* Prepare TA context for TA initialization */
+ context->ta_type = ta_type;
+ context->bin_desc.fw_version = get_bin_version(ta_bin);
+ context->bin_desc.size_bytes = ta_bin_len;
+ context->bin_desc.start_addr = ta_bin;
- ret = psp_ta_load(psp, &context);
+ if (!psp->ta_funcs->fn_ta_initialize) {
+ dev_err(adev->dev, "Unsupported function to initialize TA\n");
+ ret = -EOPNOTSUPP;
+ goto err_free_ta_shared_buf;
+ }
- if (ret || context.resp_status) {
- dev_err(adev->dev, "TA load via debugfs failed (%d) status %d\n",
- ret, context.resp_status);
+ ret = psp_fn_ta_initialize(psp);
+ if (ret || context->resp_status) {
+ dev_err(adev->dev, "Failed to load TA via debugfs (%d) and status (0x%X)\n",
+ ret, context->resp_status);
if (!ret)
ret = -EINVAL;
- goto err_free_bin;
+ goto err_free_ta_shared_buf;
}
- context.initialized = true;
- if (copy_to_user((char *)buf, (void *)&context.session_id, sizeof(uint32_t)))
+ if (copy_to_user((char *)buf, (void *)&context->session_id, sizeof(uint32_t)))
ret = -EFAULT;
+err_free_ta_shared_buf:
+ /* Only free TA shared buf when returns error code */
+ if (ret && context->mem_context.shared_buf)
+ psp_ta_free_shared_buf(&context->mem_context);
err_free_bin:
kfree(ta_bin);
@@ -192,58 +243,85 @@ err_free_bin:
static ssize_t ta_if_unload_debugfs_write(struct file *fp, const char *buf, size_t len, loff_t *off)
{
- uint32_t ta_id = 0;
- int ret = 0;
+ uint32_t ta_type = 0;
+ uint32_t ta_id = 0;
+ uint32_t copy_pos = 0;
+ int ret = 0;
- struct amdgpu_device *adev = (struct amdgpu_device *)file_inode(fp)->i_private;
- struct psp_context *psp = &adev->psp;
- struct ta_context context = {0};
+ struct amdgpu_device *adev = (struct amdgpu_device *)file_inode(fp)->i_private;
+ struct psp_context *psp = &adev->psp;
+ struct ta_context *context = NULL;
if (!buf)
return -EINVAL;
- ret = copy_from_user((void *)&ta_id, buf, sizeof(uint32_t));
+ ret = copy_from_user((void *)&ta_type, &buf[copy_pos], sizeof(uint32_t));
+ if (ret || (!is_ta_type_valid(ta_type)))
+ return -EFAULT;
+
+ copy_pos += sizeof(uint32_t);
+
+ ret = copy_from_user((void *)&ta_id, &buf[copy_pos], sizeof(uint32_t));
if (ret)
- return -EINVAL;
+ return -EFAULT;
- context.session_id = ta_id;
+ set_ta_context_funcs(psp, ta_type, &context);
+ context->session_id = ta_id;
- ret = psp_ta_unload(psp, &context);
- if (!ret)
- context.initialized = false;
+ if (!psp->ta_funcs || !psp->ta_funcs->fn_ta_terminate) {
+ dev_err(adev->dev, "Unsupported function to terminate TA\n");
+ return -EOPNOTSUPP;
+ }
+
+ ret = psp_fn_ta_terminate(psp);
+ if (ret || context->resp_status) {
+ dev_err(adev->dev, "Failed to unload TA via debugfs (%d) and status (0x%X)\n",
+ ret, context->resp_status);
+ if (!ret)
+ ret = -EINVAL;
+ }
+
+ if (context->mem_context.shared_buf)
+ psp_ta_free_shared_buf(&context->mem_context);
return ret;
}
static ssize_t ta_if_invoke_debugfs_write(struct file *fp, const char *buf, size_t len, loff_t *off)
{
+ uint32_t ta_type = 0;
uint32_t ta_id = 0;
uint32_t cmd_id = 0;
uint32_t shared_buf_len = 0;
- uint8_t *shared_buf = NULL;
+ uint8_t *shared_buf = NULL;
uint32_t copy_pos = 0;
int ret = 0;
- struct amdgpu_device *adev = (struct amdgpu_device *)file_inode(fp)->i_private;
- struct psp_context *psp = &adev->psp;
- struct ta_context context = {0};
+ struct amdgpu_device *adev = (struct amdgpu_device *)file_inode(fp)->i_private;
+ struct psp_context *psp = &adev->psp;
+ struct ta_context *context = NULL;
if (!buf)
return -EINVAL;
+ ret = copy_from_user((void *)&ta_type, &buf[copy_pos], sizeof(uint32_t));
+ if (ret)
+ return -EFAULT;
+ copy_pos += sizeof(uint32_t);
+
ret = copy_from_user((void *)&ta_id, &buf[copy_pos], sizeof(uint32_t));
if (ret)
- return -EINVAL;
+ return -EFAULT;
copy_pos += sizeof(uint32_t);
ret = copy_from_user((void *)&cmd_id, &buf[copy_pos], sizeof(uint32_t));
if (ret)
- return -EINVAL;
+ return -EFAULT;
copy_pos += sizeof(uint32_t);
ret = copy_from_user((void *)&shared_buf_len, &buf[copy_pos], sizeof(uint32_t));
if (ret)
- return -EINVAL;
+ return -EFAULT;
copy_pos += sizeof(uint32_t);
shared_buf = kzalloc(shared_buf_len, GFP_KERNEL);
@@ -254,26 +332,39 @@ static ssize_t ta_if_invoke_debugfs_write(struct file *fp, const char *buf, size
goto err_free_shared_buf;
}
- context.session_id = ta_id;
+ set_ta_context_funcs(psp, ta_type, &context);
+
+ if (!context->initialized) {
+ dev_err(adev->dev, "TA is not initialized\n");
+ ret = -EINVAL;
+ goto err_free_shared_buf;
+ }
+
+ if (!psp->ta_funcs || !psp->ta_funcs->fn_ta_invoke) {
+ dev_err(adev->dev, "Unsupported function to invoke TA\n");
+ ret = -EOPNOTSUPP;
+ goto err_free_shared_buf;
+ }
- prep_ta_mem_context(psp, &context, shared_buf, shared_buf_len);
+ context->session_id = ta_id;
- ret = psp_ta_invoke_indirect(psp, cmd_id, &context);
+ ret = prep_ta_mem_context(&context->mem_context, shared_buf, shared_buf_len);
+ if (ret)
+ goto err_free_shared_buf;
- if (ret || context.resp_status) {
- dev_err(adev->dev, "TA invoke via debugfs failed (%d) status %d\n",
- ret, context.resp_status);
- if (!ret)
+ ret = psp_fn_ta_invoke(psp, cmd_id);
+ if (ret || context->resp_status) {
+ dev_err(adev->dev, "Failed to invoke TA via debugfs (%d) and status (0x%X)\n",
+ ret, context->resp_status);
+ if (!ret) {
ret = -EINVAL;
- goto err_free_ta_shared_buf;
+ goto err_free_shared_buf;
+ }
}
- if (copy_to_user((char *)buf, context.mem_context.shared_buf, shared_buf_len))
+ if (copy_to_user((char *)buf, context->mem_context.shared_buf, shared_buf_len))
ret = -EFAULT;
-err_free_ta_shared_buf:
- psp_ta_free_shared_buf(&context.mem_context);
-
err_free_shared_buf:
kfree(shared_buf);
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_psp_ta.h b/drivers/gpu/drm/amd/amdgpu/amdgpu_psp_ta.h
index cfc1542f63ef..14cd1c81c3e6 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_psp_ta.h
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_psp_ta.h
@@ -24,6 +24,11 @@
#ifndef __AMDGPU_PSP_TA_H__
#define __AMDGPU_PSP_TA_H__
+/* Calling set_ta_context_funcs is required before using the following macros */
+#define psp_fn_ta_initialize(psp) ((psp)->ta_funcs->fn_ta_initialize((psp)))
+#define psp_fn_ta_invoke(psp, ta_cmd_id) ((psp)->ta_funcs->fn_ta_invoke((psp), (ta_cmd_id)))
+#define psp_fn_ta_terminate(psp) ((psp)->ta_funcs->fn_ta_terminate((psp)))
+
void amdgpu_ta_if_debugfs_init(struct amdgpu_device *adev);
#endif
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_ras.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_ras.c
index a4b47e1bd111..3ab8a88789c8 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_ras.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_ras.c
@@ -34,6 +34,7 @@
#include "amdgpu_atomfirmware.h"
#include "amdgpu_xgmi.h"
#include "ivsrcid/nbio/irqsrcs_nbif_7_4.h"
+#include "nbio_v4_3.h"
#include "atom.h"
#include "amdgpu_reset.h"
@@ -176,7 +177,7 @@ static int amdgpu_reserve_page_direct(struct amdgpu_device *adev, uint64_t addre
if (amdgpu_bad_page_threshold != 0) {
amdgpu_ras_add_bad_pages(adev, err_data.err_addr,
err_data.err_addr_cnt);
- amdgpu_ras_save_bad_pages(adev);
+ amdgpu_ras_save_bad_pages(adev, NULL);
}
dev_warn(adev->dev, "WARNING: THIS IS ONLY FOR TEST PURPOSES AND WILL CORRUPT RAS EEPROM\n");
@@ -706,13 +707,23 @@ static int __amdgpu_ras_feature_enable(struct amdgpu_device *adev,
return 0;
}
+static int amdgpu_ras_check_feature_allowed(struct amdgpu_device *adev,
+ struct ras_common_if *head)
+{
+ if (amdgpu_ras_is_feature_allowed(adev, head) ||
+ amdgpu_ras_is_poison_mode_supported(adev))
+ return 1;
+ else
+ return 0;
+}
+
/* wrapper of psp_ras_enable_features */
int amdgpu_ras_feature_enable(struct amdgpu_device *adev,
struct ras_common_if *head, bool enable)
{
struct amdgpu_ras *con = amdgpu_ras_get_context(adev);
union ta_ras_cmd_input *info;
- int ret;
+ int ret = 0;
if (!con)
return -EINVAL;
@@ -736,7 +747,8 @@ int amdgpu_ras_feature_enable(struct amdgpu_device *adev,
}
/* Do not enable if it is not allowed. */
- WARN_ON(enable && !amdgpu_ras_is_feature_allowed(adev, head));
+ if (enable && !amdgpu_ras_check_feature_allowed(adev, head))
+ goto out;
/* Only enable ras feature operation handle on host side */
if (head->block == AMDGPU_RAS_BLOCK__GFX &&
@@ -754,7 +766,6 @@ int amdgpu_ras_feature_enable(struct amdgpu_device *adev,
/* setup the obj */
__amdgpu_ras_feature_enable(adev, head, enable);
- ret = 0;
out:
if (head->block == AMDGPU_RAS_BLOCK__GFX)
kfree(info);
@@ -910,9 +921,6 @@ static struct amdgpu_ras_block_object *amdgpu_ras_get_ras_block(struct amdgpu_de
if (block >= AMDGPU_RAS_BLOCK__LAST)
return NULL;
- if (!amdgpu_ras_is_supported(adev, block))
- return NULL;
-
list_for_each_entry_safe(node, tmp, &adev->ras_list, node) {
if (!node->ras_obj) {
dev_warn(adev->dev, "Warning: abnormal ras list node.\n");
@@ -1087,6 +1095,10 @@ int amdgpu_ras_error_inject(struct amdgpu_device *adev,
info->head.block,
info->head.sub_block_index);
+ /* inject on guest isn't allowed, return success directly */
+ if (amdgpu_sriov_vf(adev))
+ return 0;
+
if (!obj)
return -EINVAL;
@@ -1122,11 +1134,54 @@ int amdgpu_ras_error_inject(struct amdgpu_device *adev,
}
/**
- * amdgpu_ras_query_error_count -- Get error counts of all IPs
+ * amdgpu_ras_query_error_count_helper -- Get error counter for specific IP
+ * @adev: pointer to AMD GPU device
+ * @ce_count: pointer to an integer to be set to the count of correctible errors.
+ * @ue_count: pointer to an integer to be set to the count of uncorrectible errors.
+ * @query_info: pointer to ras_query_if
+ *
+ * Return 0 for query success or do nothing, otherwise return an error
+ * on failures
+ */
+static int amdgpu_ras_query_error_count_helper(struct amdgpu_device *adev,
+ unsigned long *ce_count,
+ unsigned long *ue_count,
+ struct ras_query_if *query_info)
+{
+ int ret;
+
+ if (!query_info)
+ /* do nothing if query_info is not specified */
+ return 0;
+
+ ret = amdgpu_ras_query_error_status(adev, query_info);
+ if (ret)
+ return ret;
+
+ *ce_count += query_info->ce_count;
+ *ue_count += query_info->ue_count;
+
+ /* some hardware/IP supports read to clear
+ * no need to explictly reset the err status after the query call */
+ if (adev->ip_versions[MP0_HWIP][0] != IP_VERSION(11, 0, 2) &&
+ adev->ip_versions[MP0_HWIP][0] != IP_VERSION(11, 0, 4)) {
+ if (amdgpu_ras_reset_error_status(adev, query_info->head.block))
+ dev_warn(adev->dev,
+ "Failed to reset error counter and error status\n");
+ }
+
+ return 0;
+}
+
+/**
+ * amdgpu_ras_query_error_count -- Get error counts of all IPs or specific IP
* @adev: pointer to AMD GPU device
* @ce_count: pointer to an integer to be set to the count of correctible errors.
* @ue_count: pointer to an integer to be set to the count of uncorrectible
* errors.
+ * @query_info: pointer to ras_query_if if the query request is only for
+ * specific ip block; if info is NULL, then the qurey request is for
+ * all the ip blocks that support query ras error counters/status
*
* If set, @ce_count or @ue_count, count and return the corresponding
* error counts in those integer pointers. Return 0 if the device
@@ -1134,11 +1189,13 @@ int amdgpu_ras_error_inject(struct amdgpu_device *adev,
*/
int amdgpu_ras_query_error_count(struct amdgpu_device *adev,
unsigned long *ce_count,
- unsigned long *ue_count)
+ unsigned long *ue_count,
+ struct ras_query_if *query_info)
{
struct amdgpu_ras *con = amdgpu_ras_get_context(adev);
struct ras_manager *obj;
unsigned long ce, ue;
+ int ret;
if (!adev->ras_enabled || !con)
return -EOPNOTSUPP;
@@ -1150,26 +1207,23 @@ int amdgpu_ras_query_error_count(struct amdgpu_device *adev,
ce = 0;
ue = 0;
- list_for_each_entry(obj, &con->head, node) {
- struct ras_query_if info = {
- .head = obj->head,
- };
- int res;
-
- res = amdgpu_ras_query_error_status(adev, &info);
- if (res)
- return res;
+ if (!query_info) {
+ /* query all the ip blocks that support ras query interface */
+ list_for_each_entry(obj, &con->head, node) {
+ struct ras_query_if info = {
+ .head = obj->head,
+ };
- if (adev->ip_versions[MP0_HWIP][0] != IP_VERSION(11, 0, 2) &&
- adev->ip_versions[MP0_HWIP][0] != IP_VERSION(11, 0, 4)) {
- if (amdgpu_ras_reset_error_status(adev, info.head.block))
- dev_warn(adev->dev, "Failed to reset error counter and error status");
+ ret = amdgpu_ras_query_error_count_helper(adev, &ce, &ue, &info);
}
-
- ce += info.ce_count;
- ue += info.ue_count;
+ } else {
+ /* query specific ip block */
+ ret = amdgpu_ras_query_error_count_helper(adev, &ce, &ue, query_info);
}
+ if (ret)
+ return ret;
+
if (ce_count)
*ce_count = ce;
@@ -1267,7 +1321,7 @@ static ssize_t amdgpu_ras_sysfs_features_read(struct device *dev,
struct amdgpu_ras *con =
container_of(attr, struct amdgpu_ras, features_attr);
- return scnprintf(buf, PAGE_SIZE, "feature mask: 0x%x\n", con->features);
+ return sysfs_emit(buf, "feature mask: 0x%x\n", con->features);
}
static void amdgpu_ras_sysfs_remove_bad_page_node(struct amdgpu_device *adev)
@@ -1561,18 +1615,17 @@ static void amdgpu_ras_interrupt_poison_consumption_handler(struct ras_manager *
{
bool poison_stat = false;
struct amdgpu_device *adev = obj->adev;
- struct ras_err_data err_data = {0, 0, 0, NULL};
struct amdgpu_ras_block_object *block_obj =
amdgpu_ras_get_ras_block(adev, obj->head.block, 0);
- if (!block_obj || !block_obj->hw_ops)
+ if (!block_obj)
return;
/* both query_poison_status and handle_poison_consumption are optional,
* but at least one of them should be implemented if we need poison
* consumption handler
*/
- if (block_obj->hw_ops->query_poison_status) {
+ if (block_obj->hw_ops && block_obj->hw_ops->query_poison_status) {
poison_stat = block_obj->hw_ops->query_poison_status(adev);
if (!poison_stat) {
/* Not poison consumption interrupt, no need to handle it */
@@ -1584,9 +1637,9 @@ static void amdgpu_ras_interrupt_poison_consumption_handler(struct ras_manager *
}
if (!adev->gmc.xgmi.connected_to_cpu)
- amdgpu_umc_poison_handler(adev, &err_data, false);
+ amdgpu_umc_poison_handler(adev, false);
- if (block_obj->hw_ops->handle_poison_consumption)
+ if (block_obj->hw_ops && block_obj->hw_ops->handle_poison_consumption)
poison_stat = block_obj->hw_ops->handle_poison_consumption(adev);
/* gpu reset is fallback for failed and default cases */
@@ -1594,6 +1647,8 @@ static void amdgpu_ras_interrupt_poison_consumption_handler(struct ras_manager *
dev_info(adev->dev, "GPU reset for %s RAS poison consumption is issued!\n",
block_obj->ras_comm.name);
amdgpu_ras_reset_gpu(adev);
+ } else {
+ amdgpu_gfx_poison_consumption_handler(adev, entry);
}
}
@@ -1949,7 +2004,12 @@ static void amdgpu_ras_do_recovery(struct work_struct *work)
reset_context.method = AMD_RESET_METHOD_NONE;
reset_context.reset_req_dev = adev;
- clear_bit(AMDGPU_NEED_FULL_RESET, &reset_context.flags);
+
+ /* Perform full reset in fatal error mode */
+ if (!amdgpu_ras_is_poison_mode_supported(ras->adev))
+ set_bit(AMDGPU_NEED_FULL_RESET, &reset_context.flags);
+ else
+ clear_bit(AMDGPU_NEED_FULL_RESET, &reset_context.flags);
amdgpu_device_gpu_recover(ras->adev, NULL, &reset_context);
}
@@ -2025,22 +2085,32 @@ out:
/*
* write error record array to eeprom, the function should be
* protected by recovery_lock
+ * new_cnt: new added UE count, excluding reserved bad pages, can be NULL
*/
-int amdgpu_ras_save_bad_pages(struct amdgpu_device *adev)
+int amdgpu_ras_save_bad_pages(struct amdgpu_device *adev,
+ unsigned long *new_cnt)
{
struct amdgpu_ras *con = amdgpu_ras_get_context(adev);
struct ras_err_handler_data *data;
struct amdgpu_ras_eeprom_control *control;
int save_count;
- if (!con || !con->eh_data)
+ if (!con || !con->eh_data) {
+ if (new_cnt)
+ *new_cnt = 0;
+
return 0;
+ }
mutex_lock(&con->recovery_lock);
control = &con->eeprom_control;
data = con->eh_data;
save_count = data->count - control->ras_num_recs;
mutex_unlock(&con->recovery_lock);
+
+ if (new_cnt)
+ *new_cnt = save_count / adev->umc.retire_unit;
+
/* only new entries are saved */
if (save_count > 0) {
if (amdgpu_ras_eeprom_append(control,
@@ -2127,11 +2197,12 @@ static void amdgpu_ras_validate_threshold(struct amdgpu_device *adev,
/*
* Justification of value bad_page_cnt_threshold in ras structure
*
- * Generally, -1 <= amdgpu_bad_page_threshold <= max record length
- * in eeprom, and introduce two scenarios accordingly.
+ * Generally, 0 <= amdgpu_bad_page_threshold <= max record length
+ * in eeprom or amdgpu_bad_page_threshold == -2, introduce two
+ * scenarios accordingly.
*
* Bad page retirement enablement:
- * - If amdgpu_bad_page_threshold = -1,
+ * - If amdgpu_bad_page_threshold = -2,
* bad_page_cnt_threshold = typical value by formula.
*
* - When the value from user is 0 < amdgpu_bad_page_threshold <
@@ -2340,21 +2411,31 @@ static void amdgpu_ras_check_supported(struct amdgpu_device *adev)
if (amdgpu_atomfirmware_sram_ecc_supported(adev)) {
dev_info(adev->dev, "SRAM ECC is active.\n");
- if (!amdgpu_sriov_vf(adev)) {
+ if (!amdgpu_sriov_vf(adev))
adev->ras_hw_enabled |= ~(1 << AMDGPU_RAS_BLOCK__UMC |
1 << AMDGPU_RAS_BLOCK__DF);
-
- if (adev->ip_versions[VCN_HWIP][0] == IP_VERSION(2, 6, 0))
- adev->ras_hw_enabled |= (1 << AMDGPU_RAS_BLOCK__VCN |
- 1 << AMDGPU_RAS_BLOCK__JPEG);
- else
- adev->ras_hw_enabled &= ~(1 << AMDGPU_RAS_BLOCK__VCN |
- 1 << AMDGPU_RAS_BLOCK__JPEG);
- } else {
+ else
adev->ras_hw_enabled |= (1 << AMDGPU_RAS_BLOCK__PCIE_BIF |
1 << AMDGPU_RAS_BLOCK__SDMA |
1 << AMDGPU_RAS_BLOCK__GFX);
- }
+
+ /* VCN/JPEG RAS can be supported on both bare metal and
+ * SRIOV environment
+ */
+ if (adev->ip_versions[VCN_HWIP][0] == IP_VERSION(2, 6, 0) ||
+ adev->ip_versions[VCN_HWIP][0] == IP_VERSION(4, 0, 0))
+ adev->ras_hw_enabled |= (1 << AMDGPU_RAS_BLOCK__VCN |
+ 1 << AMDGPU_RAS_BLOCK__JPEG);
+ else
+ adev->ras_hw_enabled &= ~(1 << AMDGPU_RAS_BLOCK__VCN |
+ 1 << AMDGPU_RAS_BLOCK__JPEG);
+
+ /*
+ * XGMI RAS is not supported if xgmi num physical nodes
+ * is zero
+ */
+ if (!adev->gmc.xgmi.num_physical_nodes)
+ adev->ras_hw_enabled &= ~(1 << AMDGPU_RAS_BLOCK__XGMI_WAFL);
} else {
dev_info(adev->dev, "SRAM ECC is not presented.\n");
}
@@ -2390,7 +2471,7 @@ static void amdgpu_ras_counte_dw(struct work_struct *work)
/* Cache new values.
*/
- if (amdgpu_ras_query_error_count(adev, &ce_count, &ue_count) == 0) {
+ if (amdgpu_ras_query_error_count(adev, &ce_count, &ue_count, NULL) == 0) {
atomic_set(&con->ras_ce_count, ce_count);
atomic_set(&con->ras_ue_count, ue_count);
}
@@ -2400,11 +2481,42 @@ Out:
pm_runtime_put_autosuspend(dev->dev);
}
+static void amdgpu_ras_query_poison_mode(struct amdgpu_device *adev)
+{
+ struct amdgpu_ras *con = amdgpu_ras_get_context(adev);
+ bool df_poison, umc_poison;
+
+ /* poison setting is useless on SRIOV guest */
+ if (amdgpu_sriov_vf(adev) || !con)
+ return;
+
+ /* Init poison supported flag, the default value is false */
+ if (adev->gmc.xgmi.connected_to_cpu) {
+ /* enabled by default when GPU is connected to CPU */
+ con->poison_supported = true;
+ } else if (adev->df.funcs &&
+ adev->df.funcs->query_ras_poison_mode &&
+ adev->umc.ras &&
+ adev->umc.ras->query_ras_poison_mode) {
+ df_poison =
+ adev->df.funcs->query_ras_poison_mode(adev);
+ umc_poison =
+ adev->umc.ras->query_ras_poison_mode(adev);
+
+ /* Only poison is set in both DF and UMC, we can support it */
+ if (df_poison && umc_poison)
+ con->poison_supported = true;
+ else if (df_poison != umc_poison)
+ dev_warn(adev->dev,
+ "Poison setting is inconsistent in DF/UMC(%d:%d)!\n",
+ df_poison, umc_poison);
+ }
+}
+
int amdgpu_ras_init(struct amdgpu_device *adev)
{
struct amdgpu_ras *con = amdgpu_ras_get_context(adev);
int r;
- bool df_poison, umc_poison;
if (con)
return 0;
@@ -2450,21 +2562,34 @@ int amdgpu_ras_init(struct amdgpu_device *adev)
/* initialize nbio ras function ahead of any other
* ras functions so hardware fatal error interrupt
* can be enabled as early as possible */
- switch (adev->asic_type) {
- case CHIP_VEGA20:
- case CHIP_ARCTURUS:
- case CHIP_ALDEBARAN:
- if (!adev->gmc.xgmi.connected_to_cpu) {
+ switch (adev->ip_versions[NBIO_HWIP][0]) {
+ case IP_VERSION(7, 4, 0):
+ case IP_VERSION(7, 4, 1):
+ case IP_VERSION(7, 4, 4):
+ if (!adev->gmc.xgmi.connected_to_cpu)
adev->nbio.ras = &nbio_v7_4_ras;
- amdgpu_ras_register_ras_block(adev, &adev->nbio.ras->ras_block);
- adev->nbio.ras_if = &adev->nbio.ras->ras_block.ras_comm;
- }
+ break;
+ case IP_VERSION(4, 3, 0):
+ if (adev->ras_hw_enabled & (1 << AMDGPU_RAS_BLOCK__DF))
+ /* unlike other generation of nbio ras,
+ * nbio v4_3 only support fatal error interrupt
+ * to inform software that DF is freezed due to
+ * system fatal error event. driver should not
+ * enable nbio ras in such case. Instead,
+ * check DF RAS */
+ adev->nbio.ras = &nbio_v4_3_ras;
break;
default:
/* nbio ras is not available */
break;
}
+ /* nbio ras block needs to be enabled ahead of other ras blocks
+ * to handle fatal error */
+ r = amdgpu_nbio_ras_sw_init(adev);
+ if (r)
+ return r;
+
if (adev->nbio.ras &&
adev->nbio.ras->init_ras_controller_interrupt) {
r = adev->nbio.ras->init_ras_controller_interrupt(adev);
@@ -2479,26 +2604,7 @@ int amdgpu_ras_init(struct amdgpu_device *adev)
goto release_con;
}
- /* Init poison supported flag, the default value is false */
- if (adev->gmc.xgmi.connected_to_cpu) {
- /* enabled by default when GPU is connected to CPU */
- con->poison_supported = true;
- }
- else if (adev->df.funcs &&
- adev->df.funcs->query_ras_poison_mode &&
- adev->umc.ras &&
- adev->umc.ras->query_ras_poison_mode) {
- df_poison =
- adev->df.funcs->query_ras_poison_mode(adev);
- umc_poison =
- adev->umc.ras->query_ras_poison_mode(adev);
- /* Only poison is set in both DF and UMC, we can support it */
- if (df_poison && umc_poison)
- con->poison_supported = true;
- else if (df_poison != umc_poison)
- dev_warn(adev->dev, "Poison setting is inconsistent in DF/UMC(%d:%d)!\n",
- df_poison, umc_poison);
- }
+ amdgpu_ras_query_poison_mode(adev);
if (amdgpu_ras_fs_init(adev)) {
r = -EINVAL;
@@ -2559,6 +2665,7 @@ int amdgpu_ras_block_late_init(struct amdgpu_device *adev,
{
struct amdgpu_ras_block_object *ras_obj = NULL;
struct amdgpu_ras *con = amdgpu_ras_get_context(adev);
+ struct ras_query_if *query_info;
unsigned long ue_count, ce_count;
int r;
@@ -2600,11 +2707,17 @@ int amdgpu_ras_block_late_init(struct amdgpu_device *adev,
/* Those are the cached values at init.
*/
- if (amdgpu_ras_query_error_count(adev, &ce_count, &ue_count) == 0) {
+ query_info = kzalloc(sizeof(struct ras_query_if), GFP_KERNEL);
+ if (!query_info)
+ return -ENOMEM;
+ memcpy(&query_info->head, ras_block, sizeof(struct ras_common_if));
+
+ if (amdgpu_ras_query_error_count(adev, &ce_count, &ue_count, query_info) == 0) {
atomic_set(&con->ras_ce_count, ce_count);
atomic_set(&con->ras_ue_count, ue_count);
}
+ kfree(query_info);
return 0;
interrupt:
@@ -2848,7 +2961,6 @@ static int amdgpu_bad_page_notifier(struct notifier_block *nb,
struct amdgpu_device *adev = NULL;
uint32_t gpu_id = 0;
uint32_t umc_inst = 0, ch_inst = 0;
- struct ras_err_data err_data = {0, 0, 0, NULL};
/*
* If the error was generated in UMC_V2, which belongs to GPU UMCs,
@@ -2887,31 +2999,10 @@ static int amdgpu_bad_page_notifier(struct notifier_block *nb,
dev_info(adev->dev, "Uncorrectable error detected in UMC inst: %d, chan_idx: %d",
umc_inst, ch_inst);
- err_data.err_addr =
- kcalloc(adev->umc.max_ras_err_cnt_per_query,
- sizeof(struct eeprom_table_record), GFP_KERNEL);
- if (!err_data.err_addr) {
- dev_warn(adev->dev,
- "Failed to alloc memory for umc error record in mca notifier!\n");
+ if (!amdgpu_umc_page_retirement_mca(adev, m->addr, ch_inst, umc_inst))
+ return NOTIFY_OK;
+ else
return NOTIFY_DONE;
- }
-
- /*
- * Translate UMC channel address to Physical address
- */
- if (adev->umc.ras &&
- adev->umc.ras->convert_ras_error_address)
- adev->umc.ras->convert_ras_error_address(adev,
- &err_data, m->addr, ch_inst, umc_inst);
-
- if (amdgpu_bad_page_threshold != 0) {
- amdgpu_ras_add_bad_pages(adev, err_data.err_addr,
- err_data.err_addr_cnt);
- amdgpu_ras_save_bad_pages(adev);
- }
-
- kfree(err_data.err_addr);
- return NOTIFY_OK;
}
static struct notifier_block amdgpu_bad_page_nb = {
@@ -2963,11 +3054,26 @@ int amdgpu_ras_set_context(struct amdgpu_device *adev, struct amdgpu_ras *ras_co
int amdgpu_ras_is_supported(struct amdgpu_device *adev,
unsigned int block)
{
+ int ret = 0;
struct amdgpu_ras *ras = amdgpu_ras_get_context(adev);
if (block >= AMDGPU_RAS_BLOCK_COUNT)
return 0;
- return ras && (adev->ras_enabled & (1 << block));
+
+ ret = ras && (adev->ras_enabled & (1 << block));
+
+ /* For the special asic with mem ecc enabled but sram ecc
+ * not enabled, even if the ras block is not supported on
+ * .ras_enabled, if the asic supports poison mode and the
+ * ras block has ras configuration, it can be considered
+ * that the ras block supports ras function.
+ */
+ if (!ret &&
+ amdgpu_ras_is_poison_mode_supported(adev) &&
+ amdgpu_ras_get_ras_block(adev, block, 0))
+ ret = 1;
+
+ return ret;
}
int amdgpu_ras_reset_gpu(struct amdgpu_device *adev)
@@ -2988,9 +3094,6 @@ int amdgpu_ras_register_ras_block(struct amdgpu_device *adev,
if (!adev || !ras_block_obj)
return -EINVAL;
- if (!amdgpu_ras_asic_supported(adev))
- return 0;
-
ras_node = kzalloc(sizeof(*ras_node), GFP_KERNEL);
if (!ras_node)
return -ENOMEM;
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_ras.h b/drivers/gpu/drm/amd/amdgpu/amdgpu_ras.h
index bf5a95104ec1..17b3d1992e80 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_ras.h
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_ras.h
@@ -540,13 +540,15 @@ void amdgpu_ras_suspend(struct amdgpu_device *adev);
int amdgpu_ras_query_error_count(struct amdgpu_device *adev,
unsigned long *ce_count,
- unsigned long *ue_count);
+ unsigned long *ue_count,
+ struct ras_query_if *query_info);
/* error handling functions */
int amdgpu_ras_add_bad_pages(struct amdgpu_device *adev,
struct eeprom_table_record *bps, int pages);
-int amdgpu_ras_save_bad_pages(struct amdgpu_device *adev);
+int amdgpu_ras_save_bad_pages(struct amdgpu_device *adev,
+ unsigned long *new_cnt);
static inline enum ta_ras_block
amdgpu_ras_block_to_ta(enum amdgpu_ras_block block) {
@@ -581,6 +583,10 @@ amdgpu_ras_block_to_ta(enum amdgpu_ras_block block) {
return TA_RAS_BLOCK__FUSE;
case AMDGPU_RAS_BLOCK__MCA:
return TA_RAS_BLOCK__MCA;
+ case AMDGPU_RAS_BLOCK__VCN:
+ return TA_RAS_BLOCK__VCN;
+ case AMDGPU_RAS_BLOCK__JPEG:
+ return TA_RAS_BLOCK__JPEG;
default:
WARN_ONCE(1, "RAS ERROR: unexpected block id %d\n", block);
return TA_RAS_BLOCK__UMC;
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_ras_eeprom.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_ras_eeprom.c
index 84c241b9a2a1..c2c2a7718613 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_ras_eeprom.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_ras_eeprom.c
@@ -33,12 +33,29 @@
#include "amdgpu_reset.h"
-#define EEPROM_I2C_MADDR_VEGA20 0x0
-#define EEPROM_I2C_MADDR_ARCTURUS 0x40000
-#define EEPROM_I2C_MADDR_ARCTURUS_D342 0x0
-#define EEPROM_I2C_MADDR_SIENNA_CICHLID 0x0
-#define EEPROM_I2C_MADDR_ALDEBARAN 0x0
-#define EEPROM_I2C_MADDR_SMU_13_0_0 (0x54UL << 16)
+/* These are memory addresses as would be seen by one or more EEPROM
+ * chips strung on the I2C bus, usually by manipulating pins 1-3 of a
+ * set of EEPROM devices. They form a continuous memory space.
+ *
+ * The I2C device address includes the device type identifier, 1010b,
+ * which is a reserved value and indicates that this is an I2C EEPROM
+ * device. It also includes the top 3 bits of the 19 bit EEPROM memory
+ * address, namely bits 18, 17, and 16. This makes up the 7 bit
+ * address sent on the I2C bus with bit 0 being the direction bit,
+ * which is not represented here, and sent by the hardware directly.
+ *
+ * For instance,
+ * 50h = 1010000b => device type identifier 1010b, bits 18:16 = 000b, address 0.
+ * 54h = 1010100b => --"--, bits 18:16 = 100b, address 40000h.
+ * 56h = 1010110b => --"--, bits 18:16 = 110b, address 60000h.
+ * Depending on the size of the I2C EEPROM device(s), bits 18:16 may
+ * address memory in a device or a device on the I2C bus, depending on
+ * the status of pins 1-3. See top of amdgpu_eeprom.c.
+ *
+ * The RAS table lives either at address 0 or address 40000h of EEPROM.
+ */
+#define EEPROM_I2C_MADDR_0 0x0
+#define EEPROM_I2C_MADDR_4 0x40000
/*
* The 2 macros bellow represent the actual size in bytes that
@@ -90,33 +107,22 @@
static bool __is_ras_eeprom_supported(struct amdgpu_device *adev)
{
- return adev->asic_type == CHIP_VEGA20 ||
- adev->asic_type == CHIP_ARCTURUS ||
- adev->asic_type == CHIP_SIENNA_CICHLID ||
- adev->asic_type == CHIP_ALDEBARAN;
-}
-
-static bool __get_eeprom_i2c_addr_arct(struct amdgpu_device *adev,
- struct amdgpu_ras_eeprom_control *control)
-{
- struct atom_context *atom_ctx = adev->mode_info.atom_context;
-
- if (!control || !atom_ctx)
+ switch (adev->ip_versions[MP1_HWIP][0]) {
+ case IP_VERSION(11, 0, 2): /* VEGA20 and ARCTURUS */
+ case IP_VERSION(11, 0, 7): /* Sienna cichlid */
+ case IP_VERSION(13, 0, 0):
+ case IP_VERSION(13, 0, 2): /* Aldebaran */
+ case IP_VERSION(13, 0, 10):
+ return true;
+ default:
return false;
-
- if (strnstr(atom_ctx->vbios_version,
- "D342",
- sizeof(atom_ctx->vbios_version)))
- control->i2c_address = EEPROM_I2C_MADDR_ARCTURUS_D342;
- else
- control->i2c_address = EEPROM_I2C_MADDR_ARCTURUS;
-
- return true;
+ }
}
static bool __get_eeprom_i2c_addr(struct amdgpu_device *adev,
struct amdgpu_ras_eeprom_control *control)
{
+ struct atom_context *atom_ctx = adev->mode_info.atom_context;
u8 i2c_addr;
if (!control)
@@ -137,36 +143,35 @@ static bool __get_eeprom_i2c_addr(struct amdgpu_device *adev,
return true;
}
- switch (adev->asic_type) {
- case CHIP_VEGA20:
- control->i2c_address = EEPROM_I2C_MADDR_VEGA20;
- break;
-
- case CHIP_ARCTURUS:
- return __get_eeprom_i2c_addr_arct(adev, control);
-
- case CHIP_SIENNA_CICHLID:
- control->i2c_address = EEPROM_I2C_MADDR_SIENNA_CICHLID;
- break;
-
- case CHIP_ALDEBARAN:
- control->i2c_address = EEPROM_I2C_MADDR_ALDEBARAN;
- break;
-
- default:
- return false;
- }
-
switch (adev->ip_versions[MP1_HWIP][0]) {
+ case IP_VERSION(11, 0, 2):
+ /* VEGA20 and ARCTURUS */
+ if (adev->asic_type == CHIP_VEGA20)
+ control->i2c_address = EEPROM_I2C_MADDR_0;
+ else if (strnstr(atom_ctx->vbios_version,
+ "D342",
+ sizeof(atom_ctx->vbios_version)))
+ control->i2c_address = EEPROM_I2C_MADDR_0;
+ else
+ control->i2c_address = EEPROM_I2C_MADDR_4;
+ return true;
+ case IP_VERSION(11, 0, 7):
+ control->i2c_address = EEPROM_I2C_MADDR_0;
+ return true;
+ case IP_VERSION(13, 0, 2):
+ if (strnstr(atom_ctx->vbios_version, "D673",
+ sizeof(atom_ctx->vbios_version)))
+ control->i2c_address = EEPROM_I2C_MADDR_4;
+ else
+ control->i2c_address = EEPROM_I2C_MADDR_0;
+ return true;
case IP_VERSION(13, 0, 0):
- control->i2c_address = EEPROM_I2C_MADDR_SMU_13_0_0;
- break;
-
+ case IP_VERSION(13, 0, 10):
+ control->i2c_address = EEPROM_I2C_MADDR_4;
+ return true;
default:
- break;
+ return false;
}
-
- return true;
}
static void
@@ -369,7 +374,8 @@ bool amdgpu_ras_eeprom_check_err_threshold(struct amdgpu_device *adev)
{
struct amdgpu_ras *con = amdgpu_ras_get_context(adev);
- if (!__is_ras_eeprom_supported(adev))
+ if (!__is_ras_eeprom_supported(adev) ||
+ !amdgpu_bad_page_threshold)
return false;
/* skip check eeprom table for VEGA20 Gaming */
@@ -380,10 +386,18 @@ bool amdgpu_ras_eeprom_check_err_threshold(struct amdgpu_device *adev)
return false;
if (con->eeprom_control.tbl_hdr.header == RAS_TABLE_HDR_BAD) {
- dev_warn(adev->dev, "This GPU is in BAD status.");
- dev_warn(adev->dev, "Please retire it or set a larger "
- "threshold value when reloading driver.\n");
- return true;
+ if (amdgpu_bad_page_threshold == -1) {
+ dev_warn(adev->dev, "RAS records:%d exceed threshold:%d",
+ con->eeprom_control.ras_num_recs, con->bad_page_cnt_threshold);
+ dev_warn(adev->dev,
+ "But GPU can be operated due to bad_page_threshold = -1.\n");
+ return false;
+ } else {
+ dev_warn(adev->dev, "This GPU is in BAD status.");
+ dev_warn(adev->dev, "Please retire it or set a larger "
+ "threshold value when reloading driver.\n");
+ return true;
+ }
}
return false;
@@ -1143,8 +1157,8 @@ int amdgpu_ras_eeprom_init(struct amdgpu_ras_eeprom_control *control,
} else {
dev_err(adev->dev, "RAS records:%d exceed threshold:%d",
control->ras_num_recs, ras->bad_page_cnt_threshold);
- if (amdgpu_bad_page_threshold == -2) {
- dev_warn(adev->dev, "GPU will be initialized due to bad_page_threshold = -2.");
+ if (amdgpu_bad_page_threshold == -1) {
+ dev_warn(adev->dev, "GPU will be initialized due to bad_page_threshold = -1.");
res = 0;
} else {
*exceed_err_limit = true;
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_res_cursor.h b/drivers/gpu/drm/amd/amdgpu/amdgpu_res_cursor.h
index 6546552e596c..5c4f93ee0c57 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_res_cursor.h
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_res_cursor.h
@@ -62,7 +62,7 @@ static inline void amdgpu_res_first(struct ttm_resource *res,
if (!res)
goto fallback;
- BUG_ON(start + size > res->num_pages << PAGE_SHIFT);
+ BUG_ON(start + size > res->size);
cur->mem_type = res->mem_type;
@@ -110,7 +110,7 @@ fallback:
cur->size = size;
cur->remaining = size;
cur->node = NULL;
- WARN_ON(res && start + size > res->num_pages << PAGE_SHIFT);
+ WARN_ON(res && start + size > res->size);
return;
}
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_reset.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_reset.c
index f778466bb9db..6437ead87e5f 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_reset.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_reset.c
@@ -24,6 +24,7 @@
#include "amdgpu_reset.h"
#include "aldebaran.h"
#include "sienna_cichlid.h"
+#include "smu_v13_0_10.h"
int amdgpu_reset_add_handler(struct amdgpu_reset_control *reset_ctl,
struct amdgpu_reset_handler *handler)
@@ -44,6 +45,9 @@ int amdgpu_reset_init(struct amdgpu_device *adev)
case IP_VERSION(11, 0, 7):
ret = sienna_cichlid_reset_init(adev);
break;
+ case IP_VERSION(13, 0, 10):
+ ret = smu_v13_0_10_reset_init(adev);
+ break;
default:
break;
}
@@ -62,6 +66,9 @@ int amdgpu_reset_fini(struct amdgpu_device *adev)
case IP_VERSION(11, 0, 7):
ret = sienna_cichlid_reset_fini(adev);
break;
+ case IP_VERSION(13, 0, 10):
+ ret = smu_v13_0_10_reset_fini(adev);
+ break;
default:
break;
}
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_ring.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_ring.c
index d3558c34d406..dc474b809604 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_ring.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_ring.c
@@ -569,3 +569,15 @@ int amdgpu_ring_init_mqd(struct amdgpu_ring *ring)
return mqd_mgr->init_mqd(adev, ring->mqd_ptr, &prop);
}
+
+void amdgpu_ring_ib_begin(struct amdgpu_ring *ring)
+{
+ if (ring->is_sw_ring)
+ amdgpu_sw_ring_ib_begin(ring);
+}
+
+void amdgpu_ring_ib_end(struct amdgpu_ring *ring)
+{
+ if (ring->is_sw_ring)
+ amdgpu_sw_ring_ib_end(ring);
+}
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_ring.h b/drivers/gpu/drm/amd/amdgpu/amdgpu_ring.h
index 82c178a9033a..d8749444b689 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_ring.h
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_ring.h
@@ -27,6 +27,7 @@
#include <drm/amdgpu_drm.h>
#include <drm/gpu_scheduler.h>
#include <drm/drm_print.h>
+#include <drm/drm_suballoc.h>
struct amdgpu_device;
struct amdgpu_ring;
@@ -39,6 +40,7 @@ struct amdgpu_vm;
#define AMDGPU_MAX_RINGS 28
#define AMDGPU_MAX_HWIP_RINGS 8
#define AMDGPU_MAX_GFX_RINGS 2
+#define AMDGPU_MAX_SW_GFX_RINGS 2
#define AMDGPU_MAX_COMPUTE_RINGS 8
#define AMDGPU_MAX_VCE_RINGS 3
#define AMDGPU_MAX_UVD_ENC_RINGS 2
@@ -59,6 +61,7 @@ enum amdgpu_ring_priority_level {
#define AMDGPU_FENCE_FLAG_64BIT (1 << 0)
#define AMDGPU_FENCE_FLAG_INT (1 << 1)
#define AMDGPU_FENCE_FLAG_TC_WB_ONLY (1 << 2)
+#define AMDGPU_FENCE_FLAG_EXEC (1 << 3)
#define to_amdgpu_ring(s) container_of((s), struct amdgpu_ring, sched)
@@ -90,7 +93,7 @@ enum amdgpu_ib_pool_type {
};
struct amdgpu_ib {
- struct amdgpu_sa_bo *sa_bo;
+ struct drm_suballoc *sa_bo;
uint32_t length_dw;
uint64_t gpu_addr;
uint32_t *ptr;
@@ -143,8 +146,13 @@ signed long amdgpu_fence_wait_polling(struct amdgpu_ring *ring,
uint32_t wait_seq,
signed long timeout);
unsigned amdgpu_fence_count_emitted(struct amdgpu_ring *ring);
+
void amdgpu_fence_driver_isr_toggle(struct amdgpu_device *adev, bool stop);
+u64 amdgpu_fence_last_unsignaled_time_us(struct amdgpu_ring *ring);
+void amdgpu_fence_update_start_timestamp(struct amdgpu_ring *ring, uint32_t seq,
+ ktime_t timestamp);
+
/*
* Rings.
*/
@@ -157,7 +165,6 @@ struct amdgpu_ring_funcs {
bool support_64bit_ptrs;
bool no_user_fence;
bool secure_submission_supported;
- unsigned vmhub;
unsigned extra_dw;
/* ring read/write ptr handling */
@@ -242,6 +249,7 @@ struct amdgpu_ring {
uint64_t ptr_mask;
uint32_t buf_mask;
u32 idx;
+ u32 xcc_id;
u32 me;
u32 pipe;
u32 queue;
@@ -267,6 +275,7 @@ struct amdgpu_ring {
unsigned cond_exe_offs;
u64 cond_exe_gpu_addr;
volatile u32 *cond_exe_cpu_addr;
+ unsigned vm_hub;
unsigned vm_inv_eng;
struct dma_fence *vmid_wait;
bool has_compute_vm_bug;
@@ -279,12 +288,16 @@ struct amdgpu_ring {
bool is_mes_queue;
uint32_t hw_queue_id;
struct amdgpu_mes_ctx_data *mes_ctx;
+
+ bool is_sw_ring;
+ unsigned int entry_index;
+
};
#define amdgpu_ring_parse_cs(r, p, job, ib) ((r)->funcs->parse_cs((p), (job), (ib)))
#define amdgpu_ring_patch_cs_in_place(r, p, job, ib) ((r)->funcs->patch_cs_in_place((p), (job), (ib)))
#define amdgpu_ring_test_ring(r) (r)->funcs->test_ring((r))
-#define amdgpu_ring_test_ib(r, t) (r)->funcs->test_ib((r), (t))
+#define amdgpu_ring_test_ib(r, t) ((r)->funcs->test_ib ? (r)->funcs->test_ib((r), (t)) : 0)
#define amdgpu_ring_get_rptr(r) (r)->funcs->get_rptr((r))
#define amdgpu_ring_get_wptr(r) (r)->funcs->get_wptr((r))
#define amdgpu_ring_set_wptr(r) (r)->funcs->set_wptr((r))
@@ -307,6 +320,9 @@ struct amdgpu_ring {
#define amdgpu_ring_preempt_ib(r) (r)->funcs->preempt_ib(r)
int amdgpu_ring_alloc(struct amdgpu_ring *ring, unsigned ndw);
+void amdgpu_ring_ib_begin(struct amdgpu_ring *ring);
+void amdgpu_ring_ib_end(struct amdgpu_ring *ring);
+
void amdgpu_ring_insert_nop(struct amdgpu_ring *ring, uint32_t count);
void amdgpu_ring_generic_pad_ib(struct amdgpu_ring *ring, struct amdgpu_ib *ib);
void amdgpu_ring_commit(struct amdgpu_ring *ring);
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_ring_mux.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_ring_mux.c
new file mode 100644
index 000000000000..62079f0e3ee8
--- /dev/null
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_ring_mux.c
@@ -0,0 +1,514 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ */
+#include <linux/slab.h>
+#include <drm/drm_print.h>
+
+#include "amdgpu_ring_mux.h"
+#include "amdgpu_ring.h"
+#include "amdgpu.h"
+
+#define AMDGPU_MUX_RESUBMIT_JIFFIES_TIMEOUT (HZ / 2)
+#define AMDGPU_MAX_LAST_UNSIGNALED_THRESHOLD_US 10000
+
+static const struct ring_info {
+ unsigned int hw_pio;
+ const char *ring_name;
+} sw_ring_info[] = {
+ { AMDGPU_RING_PRIO_DEFAULT, "gfx_low"},
+ { AMDGPU_RING_PRIO_2, "gfx_high"},
+};
+
+static struct kmem_cache *amdgpu_mux_chunk_slab;
+
+static inline struct amdgpu_mux_entry *amdgpu_ring_mux_sw_entry(struct amdgpu_ring_mux *mux,
+ struct amdgpu_ring *ring)
+{
+ return ring->entry_index < mux->ring_entry_size ?
+ &mux->ring_entry[ring->entry_index] : NULL;
+}
+
+/* copy packages on sw ring range[begin, end) */
+static void amdgpu_ring_mux_copy_pkt_from_sw_ring(struct amdgpu_ring_mux *mux,
+ struct amdgpu_ring *ring,
+ u64 s_start, u64 s_end)
+{
+ u64 start, end;
+ struct amdgpu_ring *real_ring = mux->real_ring;
+
+ start = s_start & ring->buf_mask;
+ end = s_end & ring->buf_mask;
+
+ if (start == end) {
+ DRM_ERROR("no more data copied from sw ring\n");
+ return;
+ }
+ if (start > end) {
+ amdgpu_ring_alloc(real_ring, (ring->ring_size >> 2) + end - start);
+ amdgpu_ring_write_multiple(real_ring, (void *)&ring->ring[start],
+ (ring->ring_size >> 2) - start);
+ amdgpu_ring_write_multiple(real_ring, (void *)&ring->ring[0], end);
+ } else {
+ amdgpu_ring_alloc(real_ring, end - start);
+ amdgpu_ring_write_multiple(real_ring, (void *)&ring->ring[start], end - start);
+ }
+}
+
+static void amdgpu_mux_resubmit_chunks(struct amdgpu_ring_mux *mux)
+{
+ struct amdgpu_mux_entry *e = NULL;
+ struct amdgpu_mux_chunk *chunk;
+ uint32_t seq, last_seq;
+ int i;
+
+ /*find low priority entries:*/
+ if (!mux->s_resubmit)
+ return;
+
+ for (i = 0; i < mux->num_ring_entries; i++) {
+ if (mux->ring_entry[i].ring->hw_prio <= AMDGPU_RING_PRIO_DEFAULT) {
+ e = &mux->ring_entry[i];
+ break;
+ }
+ }
+
+ if (!e) {
+ DRM_ERROR("%s no low priority ring found\n", __func__);
+ return;
+ }
+
+ last_seq = atomic_read(&e->ring->fence_drv.last_seq);
+ seq = mux->seqno_to_resubmit;
+ if (last_seq < seq) {
+ /*resubmit all the fences between (last_seq, seq]*/
+ list_for_each_entry(chunk, &e->list, entry) {
+ if (chunk->sync_seq > last_seq && chunk->sync_seq <= seq) {
+ amdgpu_fence_update_start_timestamp(e->ring,
+ chunk->sync_seq,
+ ktime_get());
+ amdgpu_ring_mux_copy_pkt_from_sw_ring(mux, e->ring,
+ chunk->start,
+ chunk->end);
+ mux->wptr_resubmit = chunk->end;
+ amdgpu_ring_commit(mux->real_ring);
+ }
+ }
+ }
+
+ del_timer(&mux->resubmit_timer);
+ mux->s_resubmit = false;
+}
+
+static void amdgpu_ring_mux_schedule_resubmit(struct amdgpu_ring_mux *mux)
+{
+ mod_timer(&mux->resubmit_timer, jiffies + AMDGPU_MUX_RESUBMIT_JIFFIES_TIMEOUT);
+}
+
+static void amdgpu_mux_resubmit_fallback(struct timer_list *t)
+{
+ struct amdgpu_ring_mux *mux = from_timer(mux, t, resubmit_timer);
+
+ if (!spin_trylock(&mux->lock)) {
+ amdgpu_ring_mux_schedule_resubmit(mux);
+ DRM_ERROR("reschedule resubmit\n");
+ return;
+ }
+ amdgpu_mux_resubmit_chunks(mux);
+ spin_unlock(&mux->lock);
+}
+
+int amdgpu_ring_mux_init(struct amdgpu_ring_mux *mux, struct amdgpu_ring *ring,
+ unsigned int entry_size)
+{
+ mux->real_ring = ring;
+ mux->num_ring_entries = 0;
+
+ mux->ring_entry = kcalloc(entry_size, sizeof(struct amdgpu_mux_entry), GFP_KERNEL);
+ if (!mux->ring_entry)
+ return -ENOMEM;
+
+ mux->ring_entry_size = entry_size;
+ mux->s_resubmit = false;
+
+ amdgpu_mux_chunk_slab = kmem_cache_create("amdgpu_mux_chunk",
+ sizeof(struct amdgpu_mux_chunk), 0,
+ SLAB_HWCACHE_ALIGN, NULL);
+ if (!amdgpu_mux_chunk_slab) {
+ DRM_ERROR("create amdgpu_mux_chunk cache failed\n");
+ return -ENOMEM;
+ }
+
+ spin_lock_init(&mux->lock);
+ timer_setup(&mux->resubmit_timer, amdgpu_mux_resubmit_fallback, 0);
+
+ return 0;
+}
+
+void amdgpu_ring_mux_fini(struct amdgpu_ring_mux *mux)
+{
+ struct amdgpu_mux_entry *e;
+ struct amdgpu_mux_chunk *chunk, *chunk2;
+ int i;
+
+ for (i = 0; i < mux->num_ring_entries; i++) {
+ e = &mux->ring_entry[i];
+ list_for_each_entry_safe(chunk, chunk2, &e->list, entry) {
+ list_del(&chunk->entry);
+ kmem_cache_free(amdgpu_mux_chunk_slab, chunk);
+ }
+ }
+ kmem_cache_destroy(amdgpu_mux_chunk_slab);
+ kfree(mux->ring_entry);
+ mux->ring_entry = NULL;
+ mux->num_ring_entries = 0;
+ mux->ring_entry_size = 0;
+}
+
+int amdgpu_ring_mux_add_sw_ring(struct amdgpu_ring_mux *mux, struct amdgpu_ring *ring)
+{
+ struct amdgpu_mux_entry *e;
+
+ if (mux->num_ring_entries >= mux->ring_entry_size) {
+ DRM_ERROR("add sw ring exceeding max entry size\n");
+ return -ENOENT;
+ }
+
+ e = &mux->ring_entry[mux->num_ring_entries];
+ ring->entry_index = mux->num_ring_entries;
+ e->ring = ring;
+
+ INIT_LIST_HEAD(&e->list);
+ mux->num_ring_entries += 1;
+ return 0;
+}
+
+void amdgpu_ring_mux_set_wptr(struct amdgpu_ring_mux *mux, struct amdgpu_ring *ring, u64 wptr)
+{
+ struct amdgpu_mux_entry *e;
+
+ spin_lock(&mux->lock);
+
+ if (ring->hw_prio <= AMDGPU_RING_PRIO_DEFAULT)
+ amdgpu_mux_resubmit_chunks(mux);
+
+ e = amdgpu_ring_mux_sw_entry(mux, ring);
+ if (!e) {
+ DRM_ERROR("cannot find entry for sw ring\n");
+ spin_unlock(&mux->lock);
+ return;
+ }
+
+ /* We could skip this set wptr as preemption in process. */
+ if (ring->hw_prio <= AMDGPU_RING_PRIO_DEFAULT && mux->pending_trailing_fence_signaled) {
+ spin_unlock(&mux->lock);
+ return;
+ }
+
+ e->sw_cptr = e->sw_wptr;
+ /* Update cptr if the package already copied in resubmit functions */
+ if (ring->hw_prio <= AMDGPU_RING_PRIO_DEFAULT && e->sw_cptr < mux->wptr_resubmit)
+ e->sw_cptr = mux->wptr_resubmit;
+ e->sw_wptr = wptr;
+ e->start_ptr_in_hw_ring = mux->real_ring->wptr;
+
+ /* Skip copying for the packages already resubmitted.*/
+ if (ring->hw_prio > AMDGPU_RING_PRIO_DEFAULT || mux->wptr_resubmit < wptr) {
+ amdgpu_ring_mux_copy_pkt_from_sw_ring(mux, ring, e->sw_cptr, wptr);
+ e->end_ptr_in_hw_ring = mux->real_ring->wptr;
+ amdgpu_ring_commit(mux->real_ring);
+ } else {
+ e->end_ptr_in_hw_ring = mux->real_ring->wptr;
+ }
+ spin_unlock(&mux->lock);
+}
+
+u64 amdgpu_ring_mux_get_wptr(struct amdgpu_ring_mux *mux, struct amdgpu_ring *ring)
+{
+ struct amdgpu_mux_entry *e;
+
+ e = amdgpu_ring_mux_sw_entry(mux, ring);
+ if (!e) {
+ DRM_ERROR("cannot find entry for sw ring\n");
+ return 0;
+ }
+
+ return e->sw_wptr;
+}
+
+/**
+ * amdgpu_ring_mux_get_rptr - get the readptr of the software ring
+ * @mux: the multiplexer the software rings attach to
+ * @ring: the software ring of which we calculate the readptr
+ *
+ * The return value of the readptr is not precise while the other rings could
+ * write data onto the real ring buffer.After overwriting on the real ring, we
+ * can not decide if our packages have been excuted or not read yet. However,
+ * this function is only called by the tools such as umr to collect the latest
+ * packages for the hang analysis. We assume the hang happens near our latest
+ * submit. Thus we could use the following logic to give the clue:
+ * If the readptr is between start and end, then we return the copy pointer
+ * plus the distance from start to readptr. If the readptr is before start, we
+ * return the copy pointer. Lastly, if the readptr is past end, we return the
+ * write pointer.
+ */
+u64 amdgpu_ring_mux_get_rptr(struct amdgpu_ring_mux *mux, struct amdgpu_ring *ring)
+{
+ struct amdgpu_mux_entry *e;
+ u64 readp, offset, start, end;
+
+ e = amdgpu_ring_mux_sw_entry(mux, ring);
+ if (!e) {
+ DRM_ERROR("no sw entry found!\n");
+ return 0;
+ }
+
+ readp = amdgpu_ring_get_rptr(mux->real_ring);
+
+ start = e->start_ptr_in_hw_ring & mux->real_ring->buf_mask;
+ end = e->end_ptr_in_hw_ring & mux->real_ring->buf_mask;
+ if (start > end) {
+ if (readp <= end)
+ readp += mux->real_ring->ring_size >> 2;
+ end += mux->real_ring->ring_size >> 2;
+ }
+
+ if (start <= readp && readp <= end) {
+ offset = readp - start;
+ e->sw_rptr = (e->sw_cptr + offset) & ring->buf_mask;
+ } else if (readp < start) {
+ e->sw_rptr = e->sw_cptr;
+ } else {
+ /* end < readptr */
+ e->sw_rptr = e->sw_wptr;
+ }
+
+ return e->sw_rptr;
+}
+
+u64 amdgpu_sw_ring_get_rptr_gfx(struct amdgpu_ring *ring)
+{
+ struct amdgpu_device *adev = ring->adev;
+ struct amdgpu_ring_mux *mux = &adev->gfx.muxer;
+
+ WARN_ON(!ring->is_sw_ring);
+ return amdgpu_ring_mux_get_rptr(mux, ring);
+}
+
+u64 amdgpu_sw_ring_get_wptr_gfx(struct amdgpu_ring *ring)
+{
+ struct amdgpu_device *adev = ring->adev;
+ struct amdgpu_ring_mux *mux = &adev->gfx.muxer;
+
+ WARN_ON(!ring->is_sw_ring);
+ return amdgpu_ring_mux_get_wptr(mux, ring);
+}
+
+void amdgpu_sw_ring_set_wptr_gfx(struct amdgpu_ring *ring)
+{
+ struct amdgpu_device *adev = ring->adev;
+ struct amdgpu_ring_mux *mux = &adev->gfx.muxer;
+
+ WARN_ON(!ring->is_sw_ring);
+ amdgpu_ring_mux_set_wptr(mux, ring, ring->wptr);
+}
+
+/* Override insert_nop to prevent emitting nops to the software rings */
+void amdgpu_sw_ring_insert_nop(struct amdgpu_ring *ring, uint32_t count)
+{
+ WARN_ON(!ring->is_sw_ring);
+}
+
+const char *amdgpu_sw_ring_name(int idx)
+{
+ return idx < ARRAY_SIZE(sw_ring_info) ?
+ sw_ring_info[idx].ring_name : NULL;
+}
+
+unsigned int amdgpu_sw_ring_priority(int idx)
+{
+ return idx < ARRAY_SIZE(sw_ring_info) ?
+ sw_ring_info[idx].hw_pio : AMDGPU_RING_PRIO_DEFAULT;
+}
+
+/*Scan on low prio rings to have unsignaled fence and high ring has no fence.*/
+static int amdgpu_mcbp_scan(struct amdgpu_ring_mux *mux)
+{
+ struct amdgpu_ring *ring;
+ int i, need_preempt;
+
+ need_preempt = 0;
+ for (i = 0; i < mux->num_ring_entries; i++) {
+ ring = mux->ring_entry[i].ring;
+ if (ring->hw_prio > AMDGPU_RING_PRIO_DEFAULT &&
+ amdgpu_fence_count_emitted(ring) > 0)
+ return 0;
+ if (ring->hw_prio <= AMDGPU_RING_PRIO_DEFAULT &&
+ amdgpu_fence_last_unsignaled_time_us(ring) >
+ AMDGPU_MAX_LAST_UNSIGNALED_THRESHOLD_US)
+ need_preempt = 1;
+ }
+ return need_preempt && !mux->s_resubmit;
+}
+
+/* Trigger Mid-Command Buffer Preemption (MCBP) and find if we need to resubmit. */
+static int amdgpu_mcbp_trigger_preempt(struct amdgpu_ring_mux *mux)
+{
+ int r;
+
+ spin_lock(&mux->lock);
+ mux->pending_trailing_fence_signaled = true;
+ r = amdgpu_ring_preempt_ib(mux->real_ring);
+ spin_unlock(&mux->lock);
+ return r;
+}
+
+void amdgpu_sw_ring_ib_begin(struct amdgpu_ring *ring)
+{
+ struct amdgpu_device *adev = ring->adev;
+ struct amdgpu_ring_mux *mux = &adev->gfx.muxer;
+
+ WARN_ON(!ring->is_sw_ring);
+ if (ring->hw_prio > AMDGPU_RING_PRIO_DEFAULT) {
+ if (amdgpu_mcbp_scan(mux) > 0)
+ amdgpu_mcbp_trigger_preempt(mux);
+ return;
+ }
+
+ amdgpu_ring_mux_start_ib(mux, ring);
+}
+
+void amdgpu_sw_ring_ib_end(struct amdgpu_ring *ring)
+{
+ struct amdgpu_device *adev = ring->adev;
+ struct amdgpu_ring_mux *mux = &adev->gfx.muxer;
+
+ WARN_ON(!ring->is_sw_ring);
+ if (ring->hw_prio > AMDGPU_RING_PRIO_DEFAULT)
+ return;
+ amdgpu_ring_mux_end_ib(mux, ring);
+}
+
+void amdgpu_ring_mux_start_ib(struct amdgpu_ring_mux *mux, struct amdgpu_ring *ring)
+{
+ struct amdgpu_mux_entry *e;
+ struct amdgpu_mux_chunk *chunk;
+
+ spin_lock(&mux->lock);
+ amdgpu_mux_resubmit_chunks(mux);
+ spin_unlock(&mux->lock);
+
+ e = amdgpu_ring_mux_sw_entry(mux, ring);
+ if (!e) {
+ DRM_ERROR("cannot find entry!\n");
+ return;
+ }
+
+ chunk = kmem_cache_alloc(amdgpu_mux_chunk_slab, GFP_KERNEL);
+ if (!chunk) {
+ DRM_ERROR("alloc amdgpu_mux_chunk_slab failed\n");
+ return;
+ }
+
+ chunk->start = ring->wptr;
+ list_add_tail(&chunk->entry, &e->list);
+}
+
+static void scan_and_remove_signaled_chunk(struct amdgpu_ring_mux *mux, struct amdgpu_ring *ring)
+{
+ uint32_t last_seq = 0;
+ struct amdgpu_mux_entry *e;
+ struct amdgpu_mux_chunk *chunk, *tmp;
+
+ e = amdgpu_ring_mux_sw_entry(mux, ring);
+ if (!e) {
+ DRM_ERROR("cannot find entry!\n");
+ return;
+ }
+
+ last_seq = atomic_read(&ring->fence_drv.last_seq);
+
+ list_for_each_entry_safe(chunk, tmp, &e->list, entry) {
+ if (chunk->sync_seq <= last_seq) {
+ list_del(&chunk->entry);
+ kmem_cache_free(amdgpu_mux_chunk_slab, chunk);
+ }
+ }
+}
+
+void amdgpu_ring_mux_end_ib(struct amdgpu_ring_mux *mux, struct amdgpu_ring *ring)
+{
+ struct amdgpu_mux_entry *e;
+ struct amdgpu_mux_chunk *chunk;
+
+ e = amdgpu_ring_mux_sw_entry(mux, ring);
+ if (!e) {
+ DRM_ERROR("cannot find entry!\n");
+ return;
+ }
+
+ chunk = list_last_entry(&e->list, struct amdgpu_mux_chunk, entry);
+ if (!chunk) {
+ DRM_ERROR("cannot find chunk!\n");
+ return;
+ }
+
+ chunk->end = ring->wptr;
+ chunk->sync_seq = READ_ONCE(ring->fence_drv.sync_seq);
+
+ scan_and_remove_signaled_chunk(mux, ring);
+}
+
+bool amdgpu_mcbp_handle_trailing_fence_irq(struct amdgpu_ring_mux *mux)
+{
+ struct amdgpu_mux_entry *e;
+ struct amdgpu_ring *ring = NULL;
+ int i;
+
+ if (!mux->pending_trailing_fence_signaled)
+ return false;
+
+ if (mux->real_ring->trail_seq != le32_to_cpu(*mux->real_ring->trail_fence_cpu_addr))
+ return false;
+
+ for (i = 0; i < mux->num_ring_entries; i++) {
+ e = &mux->ring_entry[i];
+ if (e->ring->hw_prio <= AMDGPU_RING_PRIO_DEFAULT) {
+ ring = e->ring;
+ break;
+ }
+ }
+
+ if (!ring) {
+ DRM_ERROR("cannot find low priority ring\n");
+ return false;
+ }
+
+ amdgpu_fence_process(ring);
+ if (amdgpu_fence_count_emitted(ring) > 0) {
+ mux->s_resubmit = true;
+ mux->seqno_to_resubmit = ring->fence_drv.sync_seq;
+ amdgpu_ring_mux_schedule_resubmit(mux);
+ }
+
+ mux->pending_trailing_fence_signaled = false;
+ return true;
+}
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_ring_mux.h b/drivers/gpu/drm/amd/amdgpu/amdgpu_ring_mux.h
new file mode 100644
index 000000000000..4be45fc14954
--- /dev/null
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_ring_mux.h
@@ -0,0 +1,103 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ */
+
+#ifndef __AMDGPU_RING_MUX__
+#define __AMDGPU_RING_MUX__
+
+#include <linux/timer.h>
+#include <linux/spinlock.h>
+#include "amdgpu_ring.h"
+
+struct amdgpu_ring;
+
+/**
+ * struct amdgpu_mux_entry - the entry recording software rings copying information.
+ * @ring: the pointer to the software ring.
+ * @start_ptr_in_hw_ring: last start location copied to in the hardware ring.
+ * @end_ptr_in_hw_ring: last end location copied to in the hardware ring.
+ * @sw_cptr: the position of the copy pointer in the sw ring.
+ * @sw_rptr: the read pointer in software ring.
+ * @sw_wptr: the write pointer in software ring.
+ * @list: list head for amdgpu_mux_chunk
+ */
+struct amdgpu_mux_entry {
+ struct amdgpu_ring *ring;
+ u64 start_ptr_in_hw_ring;
+ u64 end_ptr_in_hw_ring;
+ u64 sw_cptr;
+ u64 sw_rptr;
+ u64 sw_wptr;
+ struct list_head list;
+};
+
+struct amdgpu_ring_mux {
+ struct amdgpu_ring *real_ring;
+
+ struct amdgpu_mux_entry *ring_entry;
+ unsigned int num_ring_entries;
+ unsigned int ring_entry_size;
+ /*the lock for copy data from different software rings*/
+ spinlock_t lock;
+ bool s_resubmit;
+ uint32_t seqno_to_resubmit;
+ u64 wptr_resubmit;
+ struct timer_list resubmit_timer;
+
+ bool pending_trailing_fence_signaled;
+};
+
+/**
+ * struct amdgpu_mux_chunk - save the location of indirect buffer's package on softare rings.
+ * @entry: the list entry.
+ * @sync_seq: the fence seqno related with the saved IB.
+ * @start:- start location on the software ring.
+ * @end:- end location on the software ring.
+ */
+struct amdgpu_mux_chunk {
+ struct list_head entry;
+ uint32_t sync_seq;
+ u64 start;
+ u64 end;
+};
+
+int amdgpu_ring_mux_init(struct amdgpu_ring_mux *mux, struct amdgpu_ring *ring,
+ unsigned int entry_size);
+void amdgpu_ring_mux_fini(struct amdgpu_ring_mux *mux);
+int amdgpu_ring_mux_add_sw_ring(struct amdgpu_ring_mux *mux, struct amdgpu_ring *ring);
+void amdgpu_ring_mux_set_wptr(struct amdgpu_ring_mux *mux, struct amdgpu_ring *ring, u64 wptr);
+u64 amdgpu_ring_mux_get_wptr(struct amdgpu_ring_mux *mux, struct amdgpu_ring *ring);
+u64 amdgpu_ring_mux_get_rptr(struct amdgpu_ring_mux *mux, struct amdgpu_ring *ring);
+void amdgpu_ring_mux_start_ib(struct amdgpu_ring_mux *mux, struct amdgpu_ring *ring);
+void amdgpu_ring_mux_end_ib(struct amdgpu_ring_mux *mux, struct amdgpu_ring *ring);
+bool amdgpu_mcbp_handle_trailing_fence_irq(struct amdgpu_ring_mux *mux);
+
+u64 amdgpu_sw_ring_get_rptr_gfx(struct amdgpu_ring *ring);
+u64 amdgpu_sw_ring_get_wptr_gfx(struct amdgpu_ring *ring);
+void amdgpu_sw_ring_set_wptr_gfx(struct amdgpu_ring *ring);
+void amdgpu_sw_ring_insert_nop(struct amdgpu_ring *ring, uint32_t count);
+void amdgpu_sw_ring_ib_begin(struct amdgpu_ring *ring);
+void amdgpu_sw_ring_ib_end(struct amdgpu_ring *ring);
+const char *amdgpu_sw_ring_name(int idx);
+unsigned int amdgpu_sw_ring_priority(int idx);
+
+#endif
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_rlc.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_rlc.c
index 012b72d00e04..85fb730d9fc8 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_rlc.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_rlc.c
@@ -93,7 +93,8 @@ int amdgpu_gfx_rlc_init_sr(struct amdgpu_device *adev, u32 dws)
/* allocate save restore block */
r = amdgpu_bo_create_reserved(adev, dws * 4, PAGE_SIZE,
- AMDGPU_GEM_DOMAIN_VRAM,
+ AMDGPU_GEM_DOMAIN_VRAM |
+ AMDGPU_GEM_DOMAIN_GTT,
&adev->gfx.rlc.save_restore_obj,
&adev->gfx.rlc.save_restore_gpu_addr,
(void **)&adev->gfx.rlc.sr_ptr);
@@ -130,7 +131,8 @@ int amdgpu_gfx_rlc_init_csb(struct amdgpu_device *adev)
/* allocate clear state block */
adev->gfx.rlc.clear_state_size = dws = adev->gfx.rlc.funcs->get_csb_size(adev);
r = amdgpu_bo_create_kernel(adev, dws * 4, PAGE_SIZE,
- AMDGPU_GEM_DOMAIN_VRAM,
+ AMDGPU_GEM_DOMAIN_VRAM |
+ AMDGPU_GEM_DOMAIN_GTT,
&adev->gfx.rlc.clear_state_obj,
&adev->gfx.rlc.clear_state_gpu_addr,
(void **)&adev->gfx.rlc.cs_ptr);
@@ -156,7 +158,8 @@ int amdgpu_gfx_rlc_init_cpt(struct amdgpu_device *adev)
int r;
r = amdgpu_bo_create_reserved(adev, adev->gfx.rlc.cp_table_size,
- PAGE_SIZE, AMDGPU_GEM_DOMAIN_VRAM,
+ PAGE_SIZE, AMDGPU_GEM_DOMAIN_VRAM |
+ AMDGPU_GEM_DOMAIN_GTT,
&adev->gfx.rlc.cp_table_obj,
&adev->gfx.rlc.cp_table_gpu_addr,
(void **)&adev->gfx.rlc.cp_table_ptr);
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_sa.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_sa.c
index 524d10b21041..c6b4337eb20c 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_sa.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_sa.c
@@ -44,327 +44,63 @@
#include "amdgpu.h"
-static void amdgpu_sa_bo_remove_locked(struct amdgpu_sa_bo *sa_bo);
-static void amdgpu_sa_bo_try_free(struct amdgpu_sa_manager *sa_manager);
-
int amdgpu_sa_bo_manager_init(struct amdgpu_device *adev,
struct amdgpu_sa_manager *sa_manager,
- unsigned size, u32 align, u32 domain)
+ unsigned int size, u32 suballoc_align, u32 domain)
{
- int i, r;
-
- init_waitqueue_head(&sa_manager->wq);
- sa_manager->bo = NULL;
- sa_manager->size = size;
- sa_manager->domain = domain;
- sa_manager->align = align;
- sa_manager->hole = &sa_manager->olist;
- INIT_LIST_HEAD(&sa_manager->olist);
- for (i = 0; i < AMDGPU_SA_NUM_FENCE_LISTS; ++i)
- INIT_LIST_HEAD(&sa_manager->flist[i]);
+ int r;
- r = amdgpu_bo_create_kernel(adev, size, align, domain, &sa_manager->bo,
- &sa_manager->gpu_addr, &sa_manager->cpu_ptr);
+ r = amdgpu_bo_create_kernel(adev, size, AMDGPU_GPU_PAGE_SIZE, domain,
+ &sa_manager->bo, &sa_manager->gpu_addr,
+ &sa_manager->cpu_ptr);
if (r) {
dev_err(adev->dev, "(%d) failed to allocate bo for manager\n", r);
return r;
}
- memset(sa_manager->cpu_ptr, 0, sa_manager->size);
+ memset(sa_manager->cpu_ptr, 0, size);
+ drm_suballoc_manager_init(&sa_manager->base, size, suballoc_align);
return r;
}
void amdgpu_sa_bo_manager_fini(struct amdgpu_device *adev,
struct amdgpu_sa_manager *sa_manager)
{
- struct amdgpu_sa_bo *sa_bo, *tmp;
-
if (sa_manager->bo == NULL) {
dev_err(adev->dev, "no bo for sa manager\n");
return;
}
- if (!list_empty(&sa_manager->olist)) {
- sa_manager->hole = &sa_manager->olist,
- amdgpu_sa_bo_try_free(sa_manager);
- if (!list_empty(&sa_manager->olist)) {
- dev_err(adev->dev, "sa_manager is not empty, clearing anyway\n");
- }
- }
- list_for_each_entry_safe(sa_bo, tmp, &sa_manager->olist, olist) {
- amdgpu_sa_bo_remove_locked(sa_bo);
- }
+ drm_suballoc_manager_fini(&sa_manager->base);
amdgpu_bo_free_kernel(&sa_manager->bo, &sa_manager->gpu_addr, &sa_manager->cpu_ptr);
- sa_manager->size = 0;
}
-static void amdgpu_sa_bo_remove_locked(struct amdgpu_sa_bo *sa_bo)
-{
- struct amdgpu_sa_manager *sa_manager = sa_bo->manager;
- if (sa_manager->hole == &sa_bo->olist) {
- sa_manager->hole = sa_bo->olist.prev;
- }
- list_del_init(&sa_bo->olist);
- list_del_init(&sa_bo->flist);
- dma_fence_put(sa_bo->fence);
- kfree(sa_bo);
-}
-
-static void amdgpu_sa_bo_try_free(struct amdgpu_sa_manager *sa_manager)
+int amdgpu_sa_bo_new(struct amdgpu_sa_manager *sa_manager,
+ struct drm_suballoc **sa_bo,
+ unsigned int size)
{
- struct amdgpu_sa_bo *sa_bo, *tmp;
+ struct drm_suballoc *sa = drm_suballoc_new(&sa_manager->base, size,
+ GFP_KERNEL, true, 0);
- if (sa_manager->hole->next == &sa_manager->olist)
- return;
+ if (IS_ERR(sa)) {
+ *sa_bo = NULL;
- sa_bo = list_entry(sa_manager->hole->next, struct amdgpu_sa_bo, olist);
- list_for_each_entry_safe_from(sa_bo, tmp, &sa_manager->olist, olist) {
- if (sa_bo->fence == NULL ||
- !dma_fence_is_signaled(sa_bo->fence)) {
- return;
- }
- amdgpu_sa_bo_remove_locked(sa_bo);
+ return PTR_ERR(sa);
}
-}
-static inline unsigned amdgpu_sa_bo_hole_soffset(struct amdgpu_sa_manager *sa_manager)
-{
- struct list_head *hole = sa_manager->hole;
-
- if (hole != &sa_manager->olist) {
- return list_entry(hole, struct amdgpu_sa_bo, olist)->eoffset;
- }
+ *sa_bo = sa;
return 0;
}
-static inline unsigned amdgpu_sa_bo_hole_eoffset(struct amdgpu_sa_manager *sa_manager)
-{
- struct list_head *hole = sa_manager->hole;
-
- if (hole->next != &sa_manager->olist) {
- return list_entry(hole->next, struct amdgpu_sa_bo, olist)->soffset;
- }
- return sa_manager->size;
-}
-
-static bool amdgpu_sa_bo_try_alloc(struct amdgpu_sa_manager *sa_manager,
- struct amdgpu_sa_bo *sa_bo,
- unsigned size, unsigned align)
-{
- unsigned soffset, eoffset, wasted;
-
- soffset = amdgpu_sa_bo_hole_soffset(sa_manager);
- eoffset = amdgpu_sa_bo_hole_eoffset(sa_manager);
- wasted = (align - (soffset % align)) % align;
-
- if ((eoffset - soffset) >= (size + wasted)) {
- soffset += wasted;
-
- sa_bo->manager = sa_manager;
- sa_bo->soffset = soffset;
- sa_bo->eoffset = soffset + size;
- list_add(&sa_bo->olist, sa_manager->hole);
- INIT_LIST_HEAD(&sa_bo->flist);
- sa_manager->hole = &sa_bo->olist;
- return true;
- }
- return false;
-}
-
-/**
- * amdgpu_sa_event - Check if we can stop waiting
- *
- * @sa_manager: pointer to the sa_manager
- * @size: number of bytes we want to allocate
- * @align: alignment we need to match
- *
- * Check if either there is a fence we can wait for or
- * enough free memory to satisfy the allocation directly
- */
-static bool amdgpu_sa_event(struct amdgpu_sa_manager *sa_manager,
- unsigned size, unsigned align)
-{
- unsigned soffset, eoffset, wasted;
- int i;
-
- for (i = 0; i < AMDGPU_SA_NUM_FENCE_LISTS; ++i)
- if (!list_empty(&sa_manager->flist[i]))
- return true;
-
- soffset = amdgpu_sa_bo_hole_soffset(sa_manager);
- eoffset = amdgpu_sa_bo_hole_eoffset(sa_manager);
- wasted = (align - (soffset % align)) % align;
-
- if ((eoffset - soffset) >= (size + wasted)) {
- return true;
- }
-
- return false;
-}
-
-static bool amdgpu_sa_bo_next_hole(struct amdgpu_sa_manager *sa_manager,
- struct dma_fence **fences,
- unsigned *tries)
-{
- struct amdgpu_sa_bo *best_bo = NULL;
- unsigned i, soffset, best, tmp;
-
- /* if hole points to the end of the buffer */
- if (sa_manager->hole->next == &sa_manager->olist) {
- /* try again with its beginning */
- sa_manager->hole = &sa_manager->olist;
- return true;
- }
-
- soffset = amdgpu_sa_bo_hole_soffset(sa_manager);
- /* to handle wrap around we add sa_manager->size */
- best = sa_manager->size * 2;
- /* go over all fence list and try to find the closest sa_bo
- * of the current last
- */
- for (i = 0; i < AMDGPU_SA_NUM_FENCE_LISTS; ++i) {
- struct amdgpu_sa_bo *sa_bo;
-
- fences[i] = NULL;
-
- if (list_empty(&sa_manager->flist[i]))
- continue;
-
- sa_bo = list_first_entry(&sa_manager->flist[i],
- struct amdgpu_sa_bo, flist);
-
- if (!dma_fence_is_signaled(sa_bo->fence)) {
- fences[i] = sa_bo->fence;
- continue;
- }
-
- /* limit the number of tries each ring gets */
- if (tries[i] > 2) {
- continue;
- }
-
- tmp = sa_bo->soffset;
- if (tmp < soffset) {
- /* wrap around, pretend it's after */
- tmp += sa_manager->size;
- }
- tmp -= soffset;
- if (tmp < best) {
- /* this sa bo is the closest one */
- best = tmp;
- best_bo = sa_bo;
- }
- }
-
- if (best_bo) {
- uint32_t idx = best_bo->fence->context;
-
- idx %= AMDGPU_SA_NUM_FENCE_LISTS;
- ++tries[idx];
- sa_manager->hole = best_bo->olist.prev;
-
- /* we knew that this one is signaled,
- so it's save to remote it */
- amdgpu_sa_bo_remove_locked(best_bo);
- return true;
- }
- return false;
-}
-
-int amdgpu_sa_bo_new(struct amdgpu_sa_manager *sa_manager,
- struct amdgpu_sa_bo **sa_bo,
- unsigned size, unsigned align)
-{
- struct dma_fence *fences[AMDGPU_SA_NUM_FENCE_LISTS];
- unsigned tries[AMDGPU_SA_NUM_FENCE_LISTS];
- unsigned count;
- int i, r;
- signed long t;
-
- if (WARN_ON_ONCE(align > sa_manager->align))
- return -EINVAL;
-
- if (WARN_ON_ONCE(size > sa_manager->size))
- return -EINVAL;
-
- *sa_bo = kmalloc(sizeof(struct amdgpu_sa_bo), GFP_KERNEL);
- if (!(*sa_bo))
- return -ENOMEM;
- (*sa_bo)->manager = sa_manager;
- (*sa_bo)->fence = NULL;
- INIT_LIST_HEAD(&(*sa_bo)->olist);
- INIT_LIST_HEAD(&(*sa_bo)->flist);
-
- spin_lock(&sa_manager->wq.lock);
- do {
- for (i = 0; i < AMDGPU_SA_NUM_FENCE_LISTS; ++i)
- tries[i] = 0;
-
- do {
- amdgpu_sa_bo_try_free(sa_manager);
-
- if (amdgpu_sa_bo_try_alloc(sa_manager, *sa_bo,
- size, align)) {
- spin_unlock(&sa_manager->wq.lock);
- return 0;
- }
-
- /* see if we can skip over some allocations */
- } while (amdgpu_sa_bo_next_hole(sa_manager, fences, tries));
-
- for (i = 0, count = 0; i < AMDGPU_SA_NUM_FENCE_LISTS; ++i)
- if (fences[i])
- fences[count++] = dma_fence_get(fences[i]);
-
- if (count) {
- spin_unlock(&sa_manager->wq.lock);
- t = dma_fence_wait_any_timeout(fences, count, false,
- MAX_SCHEDULE_TIMEOUT,
- NULL);
- for (i = 0; i < count; ++i)
- dma_fence_put(fences[i]);
-
- r = (t > 0) ? 0 : t;
- spin_lock(&sa_manager->wq.lock);
- } else {
- /* if we have nothing to wait for block */
- r = wait_event_interruptible_locked(
- sa_manager->wq,
- amdgpu_sa_event(sa_manager, size, align)
- );
- }
-
- } while (!r);
-
- spin_unlock(&sa_manager->wq.lock);
- kfree(*sa_bo);
- *sa_bo = NULL;
- return r;
-}
-
-void amdgpu_sa_bo_free(struct amdgpu_device *adev, struct amdgpu_sa_bo **sa_bo,
+void amdgpu_sa_bo_free(struct amdgpu_device *adev, struct drm_suballoc **sa_bo,
struct dma_fence *fence)
{
- struct amdgpu_sa_manager *sa_manager;
-
if (sa_bo == NULL || *sa_bo == NULL) {
return;
}
- sa_manager = (*sa_bo)->manager;
- spin_lock(&sa_manager->wq.lock);
- if (fence && !dma_fence_is_signaled(fence)) {
- uint32_t idx;
-
- (*sa_bo)->fence = dma_fence_get(fence);
- idx = fence->context % AMDGPU_SA_NUM_FENCE_LISTS;
- list_add_tail(&(*sa_bo)->flist, &sa_manager->flist[idx]);
- } else {
- amdgpu_sa_bo_remove_locked(*sa_bo);
- }
- wake_up_all_locked(&sa_manager->wq);
- spin_unlock(&sa_manager->wq.lock);
+ drm_suballoc_free(*sa_bo, fence);
*sa_bo = NULL;
}
@@ -373,26 +109,8 @@ void amdgpu_sa_bo_free(struct amdgpu_device *adev, struct amdgpu_sa_bo **sa_bo,
void amdgpu_sa_bo_dump_debug_info(struct amdgpu_sa_manager *sa_manager,
struct seq_file *m)
{
- struct amdgpu_sa_bo *i;
-
- spin_lock(&sa_manager->wq.lock);
- list_for_each_entry(i, &sa_manager->olist, olist) {
- uint64_t soffset = i->soffset + sa_manager->gpu_addr;
- uint64_t eoffset = i->eoffset + sa_manager->gpu_addr;
- if (&i->olist == sa_manager->hole) {
- seq_printf(m, ">");
- } else {
- seq_printf(m, " ");
- }
- seq_printf(m, "[0x%010llx 0x%010llx] size %8lld",
- soffset, eoffset, eoffset - soffset);
+ struct drm_printer p = drm_seq_file_printer(m);
- if (i->fence)
- seq_printf(m, " protected by 0x%016llx on context %llu",
- i->fence->seqno, i->fence->context);
-
- seq_printf(m, "\n");
- }
- spin_unlock(&sa_manager->wq.lock);
+ drm_suballoc_dump_debug_info(&sa_manager->base, &p, sa_manager->gpu_addr);
}
#endif
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_sched.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_sched.c
index e9b45089a28a..863b2a34b2d6 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_sched.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_sched.c
@@ -38,6 +38,7 @@ static int amdgpu_sched_process_priority_override(struct amdgpu_device *adev,
{
struct fd f = fdget(fd);
struct amdgpu_fpriv *fpriv;
+ struct amdgpu_ctx_mgr *mgr;
struct amdgpu_ctx *ctx;
uint32_t id;
int r;
@@ -51,8 +52,11 @@ static int amdgpu_sched_process_priority_override(struct amdgpu_device *adev,
return r;
}
- idr_for_each_entry(&fpriv->ctx_mgr.ctx_handles, ctx, id)
+ mgr = &fpriv->ctx_mgr;
+ mutex_lock(&mgr->lock);
+ idr_for_each_entry(&mgr->ctx_handles, ctx, id)
amdgpu_ctx_priority_override(ctx, priority);
+ mutex_unlock(&mgr->lock);
fdput(f);
return 0;
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_sdma.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_sdma.c
index ea5278f094c0..231ca06bc9c7 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_sdma.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_sdma.c
@@ -154,16 +154,11 @@ int amdgpu_sdma_process_ecc_irq(struct amdgpu_device *adev,
static int amdgpu_sdma_init_inst_ctx(struct amdgpu_sdma_instance *sdma_inst)
{
- int err = 0;
uint16_t version_major;
const struct common_firmware_header *header = NULL;
const struct sdma_firmware_header_v1_0 *hdr;
const struct sdma_firmware_header_v2_0 *hdr_v2;
- err = amdgpu_ucode_validate(sdma_inst->fw);
- if (err)
- return err;
-
header = (const struct common_firmware_header *)
sdma_inst->fw->data;
version_major = le16_to_cpu(header->header_version_major);
@@ -195,7 +190,7 @@ void amdgpu_sdma_destroy_inst_ctx(struct amdgpu_device *adev,
int i;
for (i = 0; i < adev->sdma.num_instances; i++) {
- release_firmware(adev->sdma.instance[i].fw);
+ amdgpu_ucode_release(&adev->sdma.instance[i].fw);
if (duplicate)
break;
}
@@ -205,16 +200,22 @@ void amdgpu_sdma_destroy_inst_ctx(struct amdgpu_device *adev,
}
int amdgpu_sdma_init_microcode(struct amdgpu_device *adev,
- char *fw_name, u32 instance,
- bool duplicate)
+ u32 instance, bool duplicate)
{
struct amdgpu_firmware_info *info = NULL;
const struct common_firmware_header *header = NULL;
- int err = 0, i;
+ int err, i;
const struct sdma_firmware_header_v2_0 *sdma_hdr;
uint16_t version_major;
-
- err = request_firmware(&adev->sdma.instance[instance].fw, fw_name, adev->dev);
+ char ucode_prefix[30];
+ char fw_name[40];
+
+ amdgpu_ucode_ip_version_decode(adev, SDMA0_HWIP, ucode_prefix, sizeof(ucode_prefix));
+ if (instance == 0)
+ snprintf(fw_name, sizeof(fw_name), "amdgpu/%s.bin", ucode_prefix);
+ else
+ snprintf(fw_name, sizeof(fw_name), "amdgpu/%s%d.bin", ucode_prefix, instance);
+ err = amdgpu_ucode_request(adev, &adev->sdma.instance[instance].fw, fw_name);
if (err)
goto out;
@@ -279,10 +280,8 @@ int amdgpu_sdma_init_microcode(struct amdgpu_device *adev,
}
out:
- if (err) {
- DRM_ERROR("SDMA: Failed to init firmware \"%s\"\n", fw_name);
+ if (err)
amdgpu_sdma_destroy_inst_ctx(adev, duplicate);
- }
return err;
}
@@ -306,3 +305,38 @@ void amdgpu_sdma_unset_buffer_funcs_helper(struct amdgpu_device *adev)
}
}
}
+
+int amdgpu_sdma_ras_sw_init(struct amdgpu_device *adev)
+{
+ int err = 0;
+ struct amdgpu_sdma_ras *ras = NULL;
+
+ /* adev->sdma.ras is NULL, which means sdma does not
+ * support ras function, then do nothing here.
+ */
+ if (!adev->sdma.ras)
+ return 0;
+
+ ras = adev->sdma.ras;
+
+ err = amdgpu_ras_register_ras_block(adev, &ras->ras_block);
+ if (err) {
+ dev_err(adev->dev, "Failed to register sdma ras block!\n");
+ return err;
+ }
+
+ strcpy(ras->ras_block.ras_comm.name, "sdma");
+ ras->ras_block.ras_comm.block = AMDGPU_RAS_BLOCK__SDMA;
+ ras->ras_block.ras_comm.type = AMDGPU_RAS_ERROR__MULTI_UNCORRECTABLE;
+ adev->sdma.ras_if = &ras->ras_block.ras_comm;
+
+ /* If not define special ras_late_init function, use default ras_late_init */
+ if (!ras->ras_block.ras_late_init)
+ ras->ras_block.ras_late_init = amdgpu_sdma_ras_late_init;
+
+ /* If not defined special ras_cb function, use default ras_cb */
+ if (!ras->ras_block.ras_cb)
+ ras->ras_block.ras_cb = amdgpu_sdma_process_ras_data_cb;
+
+ return 0;
+}
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_sdma.h b/drivers/gpu/drm/amd/amdgpu/amdgpu_sdma.h
index 7d99205c2e01..fc8528812598 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_sdma.h
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_sdma.h
@@ -124,10 +124,11 @@ int amdgpu_sdma_process_ras_data_cb(struct amdgpu_device *adev,
int amdgpu_sdma_process_ecc_irq(struct amdgpu_device *adev,
struct amdgpu_irq_src *source,
struct amdgpu_iv_entry *entry);
-int amdgpu_sdma_init_microcode(struct amdgpu_device *adev,
- char *fw_name, u32 instance, bool duplicate);
+int amdgpu_sdma_init_microcode(struct amdgpu_device *adev, u32 instance,
+ bool duplicate);
void amdgpu_sdma_destroy_inst_ctx(struct amdgpu_device *adev,
bool duplicate);
void amdgpu_sdma_unset_buffer_funcs_helper(struct amdgpu_device *adev);
+int amdgpu_sdma_ras_sw_init(struct amdgpu_device *adev);
#endif
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_securedisplay.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_securedisplay.c
index cc7597a15fe9..8ed0e073656f 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_securedisplay.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_securedisplay.c
@@ -77,11 +77,11 @@ void psp_securedisplay_parse_resp_status(struct psp_context *psp,
}
}
-void psp_prep_securedisplay_cmd_buf(struct psp_context *psp, struct securedisplay_cmd **cmd,
+void psp_prep_securedisplay_cmd_buf(struct psp_context *psp, struct ta_securedisplay_cmd **cmd,
enum ta_securedisplay_command command_id)
{
- *cmd = (struct securedisplay_cmd *)psp->securedisplay_context.context.mem_context.shared_buf;
- memset(*cmd, 0, sizeof(struct securedisplay_cmd));
+ *cmd = (struct ta_securedisplay_cmd *)psp->securedisplay_context.context.mem_context.shared_buf;
+ memset(*cmd, 0, sizeof(struct ta_securedisplay_cmd));
(*cmd)->status = TA_SECUREDISPLAY_STATUS__GENERIC_FAILURE;
(*cmd)->cmd_id = command_id;
}
@@ -93,7 +93,7 @@ static ssize_t amdgpu_securedisplay_debugfs_write(struct file *f, const char __u
{
struct amdgpu_device *adev = (struct amdgpu_device *)file_inode(f)->i_private;
struct psp_context *psp = &adev->psp;
- struct securedisplay_cmd *securedisplay_cmd;
+ struct ta_securedisplay_cmd *securedisplay_cmd;
struct drm_device *dev = adev_to_drm(adev);
uint32_t phy_id;
uint32_t op;
@@ -121,6 +121,7 @@ static ssize_t amdgpu_securedisplay_debugfs_write(struct file *f, const char __u
switch (op) {
case 1:
+ mutex_lock(&psp->securedisplay_context.mutex);
psp_prep_securedisplay_cmd_buf(psp, &securedisplay_cmd,
TA_SECUREDISPLAY_COMMAND__QUERY_TA);
ret = psp_securedisplay_invoke(psp, TA_SECUREDISPLAY_COMMAND__QUERY_TA);
@@ -131,8 +132,10 @@ static ssize_t amdgpu_securedisplay_debugfs_write(struct file *f, const char __u
else
psp_securedisplay_parse_resp_status(psp, securedisplay_cmd->status);
}
+ mutex_unlock(&psp->securedisplay_context.mutex);
break;
case 2:
+ mutex_lock(&psp->securedisplay_context.mutex);
psp_prep_securedisplay_cmd_buf(psp, &securedisplay_cmd,
TA_SECUREDISPLAY_COMMAND__SEND_ROI_CRC);
securedisplay_cmd->securedisplay_in_message.send_roi_crc.phy_id = phy_id;
@@ -146,6 +149,7 @@ static ssize_t amdgpu_securedisplay_debugfs_write(struct file *f, const char __u
psp_securedisplay_parse_resp_status(psp, securedisplay_cmd->status);
}
}
+ mutex_unlock(&psp->securedisplay_context.mutex);
break;
default:
dev_err(adev->dev, "Invalid input: %s\n", str);
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_securedisplay.h b/drivers/gpu/drm/amd/amdgpu/amdgpu_securedisplay.h
index fe98574748f4..456ad68ed4b2 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_securedisplay.h
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_securedisplay.h
@@ -30,7 +30,7 @@
void amdgpu_securedisplay_debugfs_init(struct amdgpu_device *adev);
void psp_securedisplay_parse_resp_status(struct psp_context *psp,
enum ta_securedisplay_status status);
-void psp_prep_securedisplay_cmd_buf(struct psp_context *psp, struct securedisplay_cmd **cmd,
+void psp_prep_securedisplay_cmd_buf(struct psp_context *psp, struct ta_securedisplay_cmd **cmd,
enum ta_securedisplay_command command_id);
#endif
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_sync.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_sync.c
index 090e66a1b284..dcd8c066bc1f 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_sync.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_sync.c
@@ -259,6 +259,14 @@ int amdgpu_sync_resv(struct amdgpu_device *adev, struct amdgpu_sync *sync,
return 0;
}
+/* Free the entry back to the slab */
+static void amdgpu_sync_entry_free(struct amdgpu_sync_entry *e)
+{
+ hash_del(&e->node);
+ dma_fence_put(e->fence);
+ kmem_cache_free(amdgpu_sync_slab, e);
+}
+
/**
* amdgpu_sync_peek_fence - get the next fence not signaled yet
*
@@ -280,9 +288,7 @@ struct dma_fence *amdgpu_sync_peek_fence(struct amdgpu_sync *sync,
struct drm_sched_fence *s_fence = to_drm_sched_fence(f);
if (dma_fence_is_signaled(f)) {
- hash_del(&e->node);
- dma_fence_put(f);
- kmem_cache_free(amdgpu_sync_slab, e);
+ amdgpu_sync_entry_free(e);
continue;
}
if (ring && s_fence) {
@@ -355,15 +361,44 @@ int amdgpu_sync_clone(struct amdgpu_sync *source, struct amdgpu_sync *clone)
if (r)
return r;
} else {
- hash_del(&e->node);
- dma_fence_put(f);
- kmem_cache_free(amdgpu_sync_slab, e);
+ amdgpu_sync_entry_free(e);
}
}
return 0;
}
+/**
+ * amdgpu_sync_push_to_job - push fences into job
+ * @sync: sync object to get the fences from
+ * @job: job to push the fences into
+ *
+ * Add all unsignaled fences from sync to job.
+ */
+int amdgpu_sync_push_to_job(struct amdgpu_sync *sync, struct amdgpu_job *job)
+{
+ struct amdgpu_sync_entry *e;
+ struct hlist_node *tmp;
+ struct dma_fence *f;
+ int i, r;
+
+ hash_for_each_safe(sync->fences, i, tmp, e, node) {
+ f = e->fence;
+ if (dma_fence_is_signaled(f)) {
+ amdgpu_sync_entry_free(e);
+ continue;
+ }
+
+ dma_fence_get(f);
+ r = drm_sched_job_add_dependency(&job->base, f);
+ if (r) {
+ dma_fence_put(f);
+ return r;
+ }
+ }
+ return 0;
+}
+
int amdgpu_sync_wait(struct amdgpu_sync *sync, bool intr)
{
struct amdgpu_sync_entry *e;
@@ -375,9 +410,7 @@ int amdgpu_sync_wait(struct amdgpu_sync *sync, bool intr)
if (r)
return r;
- hash_del(&e->node);
- dma_fence_put(e->fence);
- kmem_cache_free(amdgpu_sync_slab, e);
+ amdgpu_sync_entry_free(e);
}
return 0;
@@ -396,11 +429,8 @@ void amdgpu_sync_free(struct amdgpu_sync *sync)
struct hlist_node *tmp;
unsigned int i;
- hash_for_each_safe(sync->fences, i, tmp, e, node) {
- hash_del(&e->node);
- dma_fence_put(e->fence);
- kmem_cache_free(amdgpu_sync_slab, e);
- }
+ hash_for_each_safe(sync->fences, i, tmp, e, node)
+ amdgpu_sync_entry_free(e);
}
/**
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_sync.h b/drivers/gpu/drm/amd/amdgpu/amdgpu_sync.h
index 2d5c613cda10..cf1e9e858efd 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_sync.h
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_sync.h
@@ -30,6 +30,7 @@ struct dma_fence;
struct dma_resv;
struct amdgpu_device;
struct amdgpu_ring;
+struct amdgpu_job;
enum amdgpu_sync_mode {
AMDGPU_SYNC_ALWAYS,
@@ -54,6 +55,7 @@ struct dma_fence *amdgpu_sync_peek_fence(struct amdgpu_sync *sync,
struct amdgpu_ring *ring);
struct dma_fence *amdgpu_sync_get_fence(struct amdgpu_sync *sync);
int amdgpu_sync_clone(struct amdgpu_sync *source, struct amdgpu_sync *clone);
+int amdgpu_sync_push_to_job(struct amdgpu_sync *sync, struct amdgpu_job *job);
int amdgpu_sync_wait(struct amdgpu_sync *sync, bool intr);
void amdgpu_sync_free(struct amdgpu_sync *sync);
int amdgpu_sync_init(void);
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_trace.h b/drivers/gpu/drm/amd/amdgpu/amdgpu_trace.h
index 5e6ddc7e101c..525dffbe046a 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_trace.h
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_trace.h
@@ -127,7 +127,7 @@ TRACE_EVENT(amdgpu_bo_create,
TP_fast_assign(
__entry->bo = bo;
- __entry->pages = bo->tbo.resource->num_pages;
+ __entry->pages = PFN_UP(bo->tbo.resource->size);
__entry->type = bo->tbo.resource->mem_type;
__entry->prefer = bo->preferred_domains;
__entry->allow = bo->allowed_domains;
@@ -153,10 +153,10 @@ TRACE_EVENT(amdgpu_cs,
TP_fast_assign(
__entry->bo_list = p->bo_list;
- __entry->ring = to_amdgpu_ring(job->base.sched)->idx;
+ __entry->ring = to_amdgpu_ring(job->base.entity->rq->sched)->idx;
__entry->dw = ib->length_dw;
__entry->fences = amdgpu_fence_count_emitted(
- to_amdgpu_ring(job->base.sched));
+ to_amdgpu_ring(job->base.entity->rq->sched));
),
TP_printk("bo_list=%p, ring=%u, dw=%u, fences=%u",
__entry->bo_list, __entry->ring, __entry->dw,
@@ -233,7 +233,7 @@ TRACE_EVENT(amdgpu_vm_grab_id,
__entry->pasid = vm->pasid;
__assign_str(ring, ring->name);
__entry->vmid = job->vmid;
- __entry->vm_hub = ring->funcs->vmhub,
+ __entry->vm_hub = ring->vm_hub,
__entry->pd_addr = job->vm_pd_addr;
__entry->needs_flush = job->vm_needs_flush;
),
@@ -427,7 +427,7 @@ TRACE_EVENT(amdgpu_vm_flush,
TP_fast_assign(
__assign_str(ring, ring->name);
__entry->vmid = vmid;
- __entry->vm_hub = ring->funcs->vmhub;
+ __entry->vm_hub = ring->vm_hub;
__entry->pd_addr = pd_addr;
),
TP_printk("ring=%s, id=%u, hub=%u, pd_addr=%010Lx",
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_ttm.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_ttm.c
index 57277b1cf183..2cd081cbf706 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_ttm.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_ttm.c
@@ -44,10 +44,10 @@
#include <linux/module.h>
#include <drm/drm_drv.h>
-#include <drm/ttm/ttm_bo_api.h>
-#include <drm/ttm/ttm_bo_driver.h>
+#include <drm/ttm/ttm_bo.h>
#include <drm/ttm/ttm_placement.h>
#include <drm/ttm/ttm_range_manager.h>
+#include <drm/ttm/ttm_tt.h>
#include <drm/amdgpu_drm.h>
#include <drm/drm_drv.h>
@@ -58,6 +58,7 @@
#include "amdgpu_amdkfd.h"
#include "amdgpu_sdma.h"
#include "amdgpu_ras.h"
+#include "amdgpu_hmm.h"
#include "amdgpu_atomfirmware.h"
#include "amdgpu_res_cursor.h"
#include "bif/bif_4_1_d.h"
@@ -189,7 +190,6 @@ static int amdgpu_ttm_map_buffer(struct ttm_buffer_object *bo,
struct amdgpu_device *adev = ring->adev;
unsigned offset, num_pages, num_dw, num_bytes;
uint64_t src_addr, dst_addr;
- struct dma_fence *fence;
struct amdgpu_job *job;
void *cpu_addr;
uint64_t flags;
@@ -229,7 +229,9 @@ static int amdgpu_ttm_map_buffer(struct ttm_buffer_object *bo,
num_dw = ALIGN(adev->mman.buffer_funcs->copy_num_dw, 8);
num_bytes = num_pages * 8 * AMDGPU_GPU_PAGES_IN_CPU_PAGE;
- r = amdgpu_job_alloc_with_ib(adev, num_dw * 4 + num_bytes,
+ r = amdgpu_job_alloc_with_ib(adev, &adev->mman.entity,
+ AMDGPU_FENCE_OWNER_UNDEFINED,
+ num_dw * 4 + num_bytes,
AMDGPU_IB_POOL_DELAYED, &job);
if (r)
return r;
@@ -269,18 +271,8 @@ static int amdgpu_ttm_map_buffer(struct ttm_buffer_object *bo,
}
}
- r = amdgpu_job_submit(job, &adev->mman.entity,
- AMDGPU_FENCE_OWNER_UNDEFINED, &fence);
- if (r)
- goto error_free;
-
- dma_fence_put(fence);
-
- return r;
-
-error_free:
- amdgpu_job_free(job);
- return r;
+ dma_fence_put(amdgpu_job_submit(job));
+ return 0;
}
/**
@@ -381,7 +373,7 @@ static int amdgpu_move_blit(struct ttm_buffer_object *bo,
dst.offset = 0;
r = amdgpu_ttm_copy_mem_to_mem(adev, &src, &dst,
- new_mem->num_pages << PAGE_SHIFT,
+ new_mem->size,
amdgpu_bo_encrypted(abo),
bo->base.resv, &fence);
if (r)
@@ -424,7 +416,7 @@ error:
static bool amdgpu_mem_visible(struct amdgpu_device *adev,
struct ttm_resource *mem)
{
- u64 mem_size = (u64)mem->num_pages << PAGE_SHIFT;
+ u64 mem_size = (u64)mem->size;
struct amdgpu_res_cursor cursor;
u64 end;
@@ -474,11 +466,7 @@ static int amdgpu_bo_move(struct ttm_buffer_object *bo, bool evict,
return r;
}
- /* Can't move a pinned BO */
abo = ttm_to_amdgpu_bo(bo);
- if (WARN_ON_ONCE(abo->tbo.pin_count > 0))
- return -EINVAL;
-
adev = amdgpu_ttm_adev(bo->bdev);
if (!old_mem || (old_mem->mem_type == TTM_PL_SYSTEM &&
@@ -571,7 +559,7 @@ static int amdgpu_ttm_io_mem_reserve(struct ttm_device *bdev,
struct ttm_resource *mem)
{
struct amdgpu_device *adev = amdgpu_ttm_adev(bdev);
- size_t bus_size = (size_t)mem->num_pages << PAGE_SHIFT;
+ size_t bus_size = (size_t)mem->size;
switch (mem->mem_type) {
case TTM_PL_SYSTEM:
@@ -643,9 +631,6 @@ struct amdgpu_ttm_tt {
struct task_struct *usertask;
uint32_t userflags;
bool bound;
-#if IS_ENABLED(CONFIG_DRM_AMDGPU_USERPTR)
- struct hmm_range *range;
-#endif
};
#define ttm_to_amdgpu_ttm_tt(ptr) container_of(ptr, struct amdgpu_ttm_tt, ttm)
@@ -658,7 +643,8 @@ struct amdgpu_ttm_tt {
* Calling function must call amdgpu_ttm_tt_userptr_range_done() once and only
* once afterwards to stop HMM tracking
*/
-int amdgpu_ttm_tt_get_user_pages(struct amdgpu_bo *bo, struct page **pages)
+int amdgpu_ttm_tt_get_user_pages(struct amdgpu_bo *bo, struct page **pages,
+ struct hmm_range **range)
{
struct ttm_tt *ttm = bo->tbo.ttm;
struct amdgpu_ttm_tt *gtt = ttm_to_amdgpu_ttm_tt(ttm);
@@ -668,16 +654,15 @@ int amdgpu_ttm_tt_get_user_pages(struct amdgpu_bo *bo, struct page **pages)
bool readonly;
int r = 0;
+ /* Make sure get_user_pages_done() can cleanup gracefully */
+ *range = NULL;
+
mm = bo->notifier.mm;
if (unlikely(!mm)) {
DRM_DEBUG_DRIVER("BO is not registered?\n");
return -EFAULT;
}
- /* Another get_user_pages is running at the same time?? */
- if (WARN_ON(gtt->range))
- return -EFAULT;
-
if (!mmget_not_zero(mm)) /* Happens during process shutdown */
return -ESRCH;
@@ -694,9 +679,8 @@ int amdgpu_ttm_tt_get_user_pages(struct amdgpu_bo *bo, struct page **pages)
}
readonly = amdgpu_ttm_tt_is_readonly(ttm);
- r = amdgpu_hmm_range_get_pages(&bo->notifier, mm, pages, start,
- ttm->num_pages, &gtt->range, readonly,
- true, NULL);
+ r = amdgpu_hmm_range_get_pages(&bo->notifier, start, ttm->num_pages,
+ readonly, NULL, pages, range);
out_unlock:
mmap_read_unlock(mm);
if (r)
@@ -707,36 +691,37 @@ out_unlock:
return r;
}
+/* amdgpu_ttm_tt_discard_user_pages - Discard range and pfn array allocations
+ */
+void amdgpu_ttm_tt_discard_user_pages(struct ttm_tt *ttm,
+ struct hmm_range *range)
+{
+ struct amdgpu_ttm_tt *gtt = (void *)ttm;
+
+ if (gtt && gtt->userptr && range)
+ amdgpu_hmm_range_get_pages_done(range);
+}
+
/*
- * amdgpu_ttm_tt_userptr_range_done - stop HMM track the CPU page table change
+ * amdgpu_ttm_tt_get_user_pages_done - stop HMM track the CPU page table change
* Check if the pages backing this ttm range have been invalidated
*
* Returns: true if pages are still valid
*/
-bool amdgpu_ttm_tt_get_user_pages_done(struct ttm_tt *ttm)
+bool amdgpu_ttm_tt_get_user_pages_done(struct ttm_tt *ttm,
+ struct hmm_range *range)
{
struct amdgpu_ttm_tt *gtt = ttm_to_amdgpu_ttm_tt(ttm);
- bool r = false;
- if (!gtt || !gtt->userptr)
+ if (!gtt || !gtt->userptr || !range)
return false;
DRM_DEBUG_DRIVER("user_pages_done 0x%llx pages 0x%x\n",
gtt->userptr, ttm->num_pages);
- WARN_ONCE(!gtt->range || !gtt->range->hmm_pfns,
- "No user pages to check\n");
-
- if (gtt->range) {
- /*
- * FIXME: Must always hold notifier_lock for this, and must
- * not ignore the return code.
- */
- r = amdgpu_hmm_range_get_pages_done(gtt->range);
- gtt->range = NULL;
- }
+ WARN_ONCE(!range->hmm_pfns, "No user pages to check\n");
- return !r;
+ return !amdgpu_hmm_range_get_pages_done(range);
}
#endif
@@ -813,20 +798,6 @@ static void amdgpu_ttm_tt_unpin_userptr(struct ttm_device *bdev,
/* unmap the pages mapped to the device */
dma_unmap_sgtable(adev->dev, ttm->sg, direction, 0);
sg_free_table(ttm->sg);
-
-#if IS_ENABLED(CONFIG_DRM_AMDGPU_USERPTR)
- if (gtt->range) {
- unsigned long i;
-
- for (i = 0; i < ttm->num_pages; i++) {
- if (ttm->pages[i] !=
- hmm_pfn_to_page(gtt->range->hmm_pfns[i]))
- break;
- }
-
- WARN((i == ttm->num_pages), "Missing get_user_page_done\n");
- }
-#endif
}
static void amdgpu_ttm_gart_bind(struct amdgpu_device *adev,
@@ -1177,8 +1148,9 @@ int amdgpu_ttm_tt_get_userptr(const struct ttm_buffer_object *tbo,
* @addr: The address in the current tasks VM space to use
* @flags: Requirements of userptr object.
*
- * Called by amdgpu_gem_userptr_ioctl() to bind userptr pages
- * to current task
+ * Called by amdgpu_gem_userptr_ioctl() and kfd_ioctl_alloc_memory_of_gpu() to
+ * bind userptr pages to current task and by kfd_ioctl_acquire_vm() to
+ * initialize GPU VM for a KFD process.
*/
int amdgpu_ttm_tt_set_userptr(struct ttm_buffer_object *bo,
uint64_t addr, uint32_t flags)
@@ -1417,7 +1389,8 @@ static void amdgpu_ttm_vram_mm_access(struct amdgpu_device *adev, loff_t pos,
}
static int amdgpu_ttm_access_memory_sdma(struct ttm_buffer_object *bo,
- unsigned long offset, void *buf, int len, int write)
+ unsigned long offset, void *buf,
+ int len, int write)
{
struct amdgpu_bo *abo = ttm_to_amdgpu_bo(bo);
struct amdgpu_device *adev = amdgpu_ttm_adev(abo->tbo.bdev);
@@ -1441,26 +1414,27 @@ static int amdgpu_ttm_access_memory_sdma(struct ttm_buffer_object *bo,
memcpy(adev->mman.sdma_access_ptr, buf, len);
num_dw = ALIGN(adev->mman.buffer_funcs->copy_num_dw, 8);
- r = amdgpu_job_alloc_with_ib(adev, num_dw * 4, AMDGPU_IB_POOL_DELAYED, &job);
+ r = amdgpu_job_alloc_with_ib(adev, &adev->mman.entity,
+ AMDGPU_FENCE_OWNER_UNDEFINED,
+ num_dw * 4, AMDGPU_IB_POOL_DELAYED,
+ &job);
if (r)
goto out;
amdgpu_res_first(abo->tbo.resource, offset, len, &src_mm);
- src_addr = amdgpu_ttm_domain_start(adev, bo->resource->mem_type) + src_mm.start;
+ src_addr = amdgpu_ttm_domain_start(adev, bo->resource->mem_type) +
+ src_mm.start;
dst_addr = amdgpu_bo_gpu_offset(adev->mman.sdma_access_bo);
if (write)
swap(src_addr, dst_addr);
- amdgpu_emit_copy_buffer(adev, &job->ibs[0], src_addr, dst_addr, PAGE_SIZE, false);
+ amdgpu_emit_copy_buffer(adev, &job->ibs[0], src_addr, dst_addr,
+ PAGE_SIZE, false);
amdgpu_ring_pad_ib(adev->mman.buffer_funcs_ring, &job->ibs[0]);
WARN_ON(job->ibs[0].length_dw > num_dw);
- r = amdgpu_job_submit(job, &adev->mman.entity, AMDGPU_FENCE_OWNER_UNDEFINED, &fence);
- if (r) {
- amdgpu_job_free(job);
- goto out;
- }
+ fence = amdgpu_job_submit(job);
if (!dma_fence_wait_timeout(fence, false, adev->sdma_timeout))
r = -ETIMEDOUT;
@@ -1560,6 +1534,23 @@ static void amdgpu_ttm_fw_reserve_vram_fini(struct amdgpu_device *adev)
NULL, &adev->mman.fw_vram_usage_va);
}
+/*
+ * Driver Reservation functions
+ */
+/**
+ * amdgpu_ttm_drv_reserve_vram_fini - free drv reserved vram
+ *
+ * @adev: amdgpu_device pointer
+ *
+ * free drv reserved vram if it has been reserved.
+ */
+static void amdgpu_ttm_drv_reserve_vram_fini(struct amdgpu_device *adev)
+{
+ amdgpu_bo_free_kernel(&adev->mman.drv_vram_usage_reserved_bo,
+ NULL,
+ &adev->mman.drv_vram_usage_va);
+}
+
/**
* amdgpu_ttm_fw_reserve_vram_init - create bo vram reservation from fw
*
@@ -1581,11 +1572,35 @@ static int amdgpu_ttm_fw_reserve_vram_init(struct amdgpu_device *adev)
return amdgpu_bo_create_kernel_at(adev,
adev->mman.fw_vram_usage_start_offset,
adev->mman.fw_vram_usage_size,
- AMDGPU_GEM_DOMAIN_VRAM,
&adev->mman.fw_vram_usage_reserved_bo,
&adev->mman.fw_vram_usage_va);
}
+/**
+ * amdgpu_ttm_drv_reserve_vram_init - create bo vram reservation from driver
+ *
+ * @adev: amdgpu_device pointer
+ *
+ * create bo vram reservation from drv.
+ */
+static int amdgpu_ttm_drv_reserve_vram_init(struct amdgpu_device *adev)
+{
+ u64 vram_size = adev->gmc.visible_vram_size;
+
+ adev->mman.drv_vram_usage_va = NULL;
+ adev->mman.drv_vram_usage_reserved_bo = NULL;
+
+ if (adev->mman.drv_vram_usage_size == 0 ||
+ adev->mman.drv_vram_usage_size > vram_size)
+ return 0;
+
+ return amdgpu_bo_create_kernel_at(adev,
+ adev->mman.drv_vram_usage_start_offset,
+ adev->mman.drv_vram_usage_size,
+ &adev->mman.drv_vram_usage_reserved_bo,
+ &adev->mman.drv_vram_usage_va);
+}
+
/*
* Memoy training reservation functions
*/
@@ -1660,11 +1675,10 @@ static int amdgpu_ttm_reserve_tmr(struct amdgpu_device *adev)
/* reserve vram for mem train according to TMR location */
amdgpu_ttm_training_data_block_init(adev);
ret = amdgpu_bo_create_kernel_at(adev,
- ctx->c2p_train_data_offset,
- ctx->train_data_size,
- AMDGPU_GEM_DOMAIN_VRAM,
- &ctx->c2p_bo,
- NULL);
+ ctx->c2p_train_data_offset,
+ ctx->train_data_size,
+ &ctx->c2p_bo,
+ NULL);
if (ret) {
DRM_ERROR("alloc c2p_bo failed(%d)!\n", ret);
amdgpu_ttm_training_reserve_vram_fini(adev);
@@ -1674,11 +1688,10 @@ static int amdgpu_ttm_reserve_tmr(struct amdgpu_device *adev)
}
ret = amdgpu_bo_create_kernel_at(adev,
- adev->gmc.real_vram_size - adev->mman.discovery_tmr_size,
- adev->mman.discovery_tmr_size,
- AMDGPU_GEM_DOMAIN_VRAM,
- &adev->mman.discovery_memory,
- NULL);
+ adev->gmc.real_vram_size - adev->mman.discovery_tmr_size,
+ adev->mman.discovery_tmr_size,
+ &adev->mman.discovery_memory,
+ NULL);
if (ret) {
DRM_ERROR("alloc tmr failed(%d)!\n", ret);
amdgpu_bo_free_kernel(&adev->mman.discovery_memory, NULL, NULL);
@@ -1701,7 +1714,6 @@ int amdgpu_ttm_init(struct amdgpu_device *adev)
{
uint64_t gtt_size;
int r;
- u64 vis_vram_limit;
mutex_init(&adev->mman.gtt_window_lock);
@@ -1724,12 +1736,6 @@ int amdgpu_ttm_init(struct amdgpu_device *adev)
return r;
}
- /* Reduce size of CPU-visible VRAM if requested */
- vis_vram_limit = (u64)amdgpu_vis_vram_limit * 1024 * 1024;
- if (amdgpu_vis_vram_limit > 0 &&
- vis_vram_limit <= adev->gmc.visible_vram_size)
- adev->gmc.visible_vram_size = vis_vram_limit;
-
/* Change the size here instead of the init above so only lpfn is affected */
amdgpu_ttm_set_buffer_funcs_status(adev, false);
#ifdef CONFIG_64BIT
@@ -1754,6 +1760,14 @@ int amdgpu_ttm_init(struct amdgpu_device *adev)
}
/*
+ *The reserved vram for driver must be pinned to the specified
+ *place on the VRAM, so reserve it early.
+ */
+ r = amdgpu_ttm_drv_reserve_vram_init(adev);
+ if (r)
+ return r;
+
+ /*
* only NAVI10 and onwards ASIC support for IP discovery.
* If IP discovery enabled, a block of memory should be
* reserved for IP discovey.
@@ -1769,21 +1783,18 @@ int amdgpu_ttm_init(struct amdgpu_device *adev)
* avoid display artifacts while transitioning between pre-OS
* and driver. */
r = amdgpu_bo_create_kernel_at(adev, 0, adev->mman.stolen_vga_size,
- AMDGPU_GEM_DOMAIN_VRAM,
&adev->mman.stolen_vga_memory,
NULL);
if (r)
return r;
r = amdgpu_bo_create_kernel_at(adev, adev->mman.stolen_vga_size,
adev->mman.stolen_extended_size,
- AMDGPU_GEM_DOMAIN_VRAM,
&adev->mman.stolen_extended_memory,
NULL);
if (r)
return r;
r = amdgpu_bo_create_kernel_at(adev, adev->mman.stolen_reserved_offset,
adev->mman.stolen_reserved_size,
- AMDGPU_GEM_DOMAIN_VRAM,
&adev->mman.stolen_reserved_memory,
NULL);
if (r)
@@ -1878,6 +1889,7 @@ void amdgpu_ttm_fini(struct amdgpu_device *adev)
amdgpu_bo_free_kernel(&adev->mman.sdma_access_bo, NULL,
&adev->mman.sdma_access_ptr);
amdgpu_ttm_fw_reserve_vram_fini(adev);
+ amdgpu_ttm_drv_reserve_vram_fini(adev);
if (drm_dev_enter(adev_to_drm(adev), &idx)) {
@@ -1959,7 +1971,9 @@ static int amdgpu_ttm_prepare_job(struct amdgpu_device *adev,
AMDGPU_IB_POOL_DELAYED;
int r;
- r = amdgpu_job_alloc_with_ib(adev, num_dw * 4, pool, job);
+ r = amdgpu_job_alloc_with_ib(adev, &adev->mman.entity,
+ AMDGPU_FENCE_OWNER_UNDEFINED,
+ num_dw * 4, pool, job);
if (r)
return r;
@@ -1969,17 +1983,11 @@ static int amdgpu_ttm_prepare_job(struct amdgpu_device *adev,
adev->gart.bo);
(*job)->vm_needs_flush = true;
}
- if (resv) {
- r = amdgpu_sync_resv(adev, &(*job)->sync, resv,
- AMDGPU_SYNC_ALWAYS,
- AMDGPU_FENCE_OWNER_UNDEFINED);
- if (r) {
- DRM_ERROR("sync failed (%d).\n", r);
- amdgpu_job_free(*job);
- return r;
- }
- }
- return 0;
+ if (!resv)
+ return 0;
+
+ return drm_sched_job_add_resv_dependencies(&(*job)->base, resv,
+ DMA_RESV_USAGE_BOOKKEEP);
}
int amdgpu_copy_buffer(struct amdgpu_ring *ring, uint64_t src_offset,
@@ -2024,8 +2032,7 @@ int amdgpu_copy_buffer(struct amdgpu_ring *ring, uint64_t src_offset,
if (direct_submit)
r = amdgpu_job_submit_direct(job, ring, fence);
else
- r = amdgpu_job_submit(job, &adev->mman.entity,
- AMDGPU_FENCE_OWNER_UNDEFINED, fence);
+ *fence = amdgpu_job_submit(job);
if (r)
goto error_free;
@@ -2070,16 +2077,8 @@ static int amdgpu_ttm_fill_mem(struct amdgpu_ring *ring, uint32_t src_data,
amdgpu_ring_pad_ib(ring, &job->ibs[0]);
WARN_ON(job->ibs[0].length_dw > num_dw);
- r = amdgpu_job_submit(job, &adev->mman.entity,
- AMDGPU_FENCE_OWNER_UNDEFINED, fence);
- if (r)
- goto error_free;
-
+ *fence = amdgpu_job_submit(job);
return 0;
-
-error_free:
- amdgpu_job_free(job);
- return r;
}
int amdgpu_fill_buffer(struct amdgpu_bo *bo,
@@ -2295,9 +2294,9 @@ static ssize_t amdgpu_iomem_read(struct file *f, char __user *buf,
if (p->mapping != adev->mman.bdev.dev_mapping)
return -EPERM;
- ptr = kmap(p);
+ ptr = kmap_local_page(p);
r = copy_to_user(buf, ptr + off, bytes);
- kunmap(p);
+ kunmap_local(ptr);
if (r)
return -EFAULT;
@@ -2346,9 +2345,9 @@ static ssize_t amdgpu_iomem_write(struct file *f, const char __user *buf,
if (p->mapping != adev->mman.bdev.dev_mapping)
return -EPERM;
- ptr = kmap(p);
+ ptr = kmap_local_page(p);
r = copy_from_user(ptr + off, buf, bytes);
- kunmap(p);
+ kunmap_local(ptr);
if (r)
return -EFAULT;
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_ttm.h b/drivers/gpu/drm/amd/amdgpu/amdgpu_ttm.h
index 6a70818039dd..e2cd5894afc9 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_ttm.h
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_ttm.h
@@ -39,6 +39,8 @@
#define AMDGPU_POISON 0xd0bed0be
+struct hmm_range;
+
struct amdgpu_gtt_mgr {
struct ttm_resource_manager manager;
struct drm_mm mm;
@@ -84,6 +86,12 @@ struct amdgpu_mman {
struct amdgpu_bo *fw_vram_usage_reserved_bo;
void *fw_vram_usage_va;
+ /* driver VRAM reservation */
+ u64 drv_vram_usage_start_offset;
+ u64 drv_vram_usage_size;
+ struct amdgpu_bo *drv_vram_usage_reserved_bo;
+ void *drv_vram_usage_va;
+
/* PAGE_SIZE'd BO for process memory r/w over SDMA. */
struct amdgpu_bo *sdma_access_bo;
void *sdma_access_ptr;
@@ -149,15 +157,25 @@ void amdgpu_ttm_recover_gart(struct ttm_buffer_object *tbo);
uint64_t amdgpu_ttm_domain_start(struct amdgpu_device *adev, uint32_t type);
#if IS_ENABLED(CONFIG_DRM_AMDGPU_USERPTR)
-int amdgpu_ttm_tt_get_user_pages(struct amdgpu_bo *bo, struct page **pages);
-bool amdgpu_ttm_tt_get_user_pages_done(struct ttm_tt *ttm);
+int amdgpu_ttm_tt_get_user_pages(struct amdgpu_bo *bo, struct page **pages,
+ struct hmm_range **range);
+void amdgpu_ttm_tt_discard_user_pages(struct ttm_tt *ttm,
+ struct hmm_range *range);
+bool amdgpu_ttm_tt_get_user_pages_done(struct ttm_tt *ttm,
+ struct hmm_range *range);
#else
static inline int amdgpu_ttm_tt_get_user_pages(struct amdgpu_bo *bo,
- struct page **pages)
+ struct page **pages,
+ struct hmm_range **range)
{
return -EPERM;
}
-static inline bool amdgpu_ttm_tt_get_user_pages_done(struct ttm_tt *ttm)
+static inline void amdgpu_ttm_tt_discard_user_pages(struct ttm_tt *ttm,
+ struct hmm_range *range)
+{
+}
+static inline bool amdgpu_ttm_tt_get_user_pages_done(struct ttm_tt *ttm,
+ struct hmm_range *range)
{
return false;
}
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_ucode.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_ucode.c
index 5cb62e6249c2..f76b1cb8baf8 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_ucode.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_ucode.c
@@ -126,19 +126,6 @@ void amdgpu_ucode_print_gfx_hdr(const struct common_firmware_header *hdr)
}
}
-void amdgpu_ucode_print_imu_hdr(const struct common_firmware_header *hdr)
-{
- uint16_t version_major = le16_to_cpu(hdr->header_version_major);
- uint16_t version_minor = le16_to_cpu(hdr->header_version_minor);
-
- DRM_DEBUG("IMU\n");
- amdgpu_ucode_print_common_hdr(hdr);
-
- if (version_major != 1) {
- DRM_ERROR("Unknown GFX ucode version: %u.%u\n", version_major, version_minor);
- }
-}
-
void amdgpu_ucode_print_rlc_hdr(const struct common_firmware_header *hdr)
{
uint16_t version_major = le16_to_cpu(hdr->header_version_major);
@@ -472,6 +459,12 @@ void amdgpu_ucode_print_psp_hdr(const struct common_firmware_header *hdr)
DRM_DEBUG("psp_dbg_drv_size_bytes: %u\n",
le32_to_cpu(desc->size_bytes));
break;
+ case PSP_FW_TYPE_PSP_RAS_DRV:
+ DRM_DEBUG("psp_ras_drv_version: %u\n",
+ le32_to_cpu(desc->fw_version));
+ DRM_DEBUG("psp_ras_drv_size_bytes: %u\n",
+ le32_to_cpu(desc->size_bytes));
+ break;
default:
DRM_DEBUG("Unsupported PSP fw type: %d\n", desc->fw_type);
break;
@@ -504,7 +497,7 @@ void amdgpu_ucode_print_gpu_info_hdr(const struct common_firmware_header *hdr)
}
}
-int amdgpu_ucode_validate(const struct firmware *fw)
+static int amdgpu_ucode_validate(const struct firmware *fw)
{
const struct common_firmware_header *hdr =
(const struct common_firmware_header *)fw->data;
@@ -669,6 +662,8 @@ const char *amdgpu_ucode_name(enum AMDGPU_UCODE_ID ucode_id)
return "VCN1_RAM";
case AMDGPU_UCODE_ID_DMCUB:
return "DMCUB";
+ case AMDGPU_UCODE_ID_CAP:
+ return "CAP";
default:
return "UNKNOWN UCODE";
}
@@ -1059,12 +1054,229 @@ int amdgpu_ucode_init_bo(struct amdgpu_device *adev)
return 0;
}
+static const char *amdgpu_ucode_legacy_naming(struct amdgpu_device *adev, int block_type)
+{
+ if (block_type == MP0_HWIP) {
+ switch (adev->ip_versions[MP0_HWIP][0]) {
+ case IP_VERSION(9, 0, 0):
+ switch (adev->asic_type) {
+ case CHIP_VEGA10:
+ return "vega10";
+ case CHIP_VEGA12:
+ return "vega12";
+ default:
+ return NULL;
+ }
+ case IP_VERSION(10, 0, 0):
+ case IP_VERSION(10, 0, 1):
+ if (adev->asic_type == CHIP_RAVEN) {
+ if (adev->apu_flags & AMD_APU_IS_RAVEN2)
+ return "raven2";
+ else if (adev->apu_flags & AMD_APU_IS_PICASSO)
+ return "picasso";
+ return "raven";
+ }
+ break;
+ case IP_VERSION(11, 0, 0):
+ return "navi10";
+ case IP_VERSION(11, 0, 2):
+ return "vega20";
+ case IP_VERSION(11, 0, 3):
+ return "renoir";
+ case IP_VERSION(11, 0, 4):
+ return "arcturus";
+ case IP_VERSION(11, 0, 5):
+ return "navi14";
+ case IP_VERSION(11, 0, 7):
+ return "sienna_cichlid";
+ case IP_VERSION(11, 0, 9):
+ return "navi12";
+ case IP_VERSION(11, 0, 11):
+ return "navy_flounder";
+ case IP_VERSION(11, 0, 12):
+ return "dimgrey_cavefish";
+ case IP_VERSION(11, 0, 13):
+ return "beige_goby";
+ case IP_VERSION(11, 5, 0):
+ return "vangogh";
+ case IP_VERSION(12, 0, 1):
+ return "green_sardine";
+ case IP_VERSION(13, 0, 2):
+ return "aldebaran";
+ case IP_VERSION(13, 0, 1):
+ case IP_VERSION(13, 0, 3):
+ return "yellow_carp";
+ }
+ } else if (block_type == MP1_HWIP) {
+ switch (adev->ip_versions[MP1_HWIP][0]) {
+ case IP_VERSION(9, 0, 0):
+ case IP_VERSION(10, 0, 0):
+ case IP_VERSION(10, 0, 1):
+ case IP_VERSION(11, 0, 2):
+ if (adev->asic_type == CHIP_ARCTURUS)
+ return "arcturus_smc";
+ return NULL;
+ case IP_VERSION(11, 0, 0):
+ return "navi10_smc";
+ case IP_VERSION(11, 0, 5):
+ return "navi14_smc";
+ case IP_VERSION(11, 0, 9):
+ return "navi12_smc";
+ case IP_VERSION(11, 0, 7):
+ return "sienna_cichlid_smc";
+ case IP_VERSION(11, 0, 11):
+ return "navy_flounder_smc";
+ case IP_VERSION(11, 0, 12):
+ return "dimgrey_cavefish_smc";
+ case IP_VERSION(11, 0, 13):
+ return "beige_goby_smc";
+ case IP_VERSION(13, 0, 2):
+ return "aldebaran_smc";
+ }
+ } else if (block_type == SDMA0_HWIP) {
+ switch (adev->ip_versions[SDMA0_HWIP][0]) {
+ case IP_VERSION(4, 0, 0):
+ return "vega10_sdma";
+ case IP_VERSION(4, 0, 1):
+ return "vega12_sdma";
+ case IP_VERSION(4, 1, 0):
+ case IP_VERSION(4, 1, 1):
+ if (adev->apu_flags & AMD_APU_IS_RAVEN2)
+ return "raven2_sdma";
+ else if (adev->apu_flags & AMD_APU_IS_PICASSO)
+ return "picasso_sdma";
+ return "raven_sdma";
+ case IP_VERSION(4, 1, 2):
+ if (adev->apu_flags & AMD_APU_IS_RENOIR)
+ return "renoir_sdma";
+ return "green_sardine_sdma";
+ case IP_VERSION(4, 2, 0):
+ return "vega20_sdma";
+ case IP_VERSION(4, 2, 2):
+ return "arcturus_sdma";
+ case IP_VERSION(4, 4, 0):
+ return "aldebaran_sdma";
+ case IP_VERSION(5, 0, 0):
+ return "navi10_sdma";
+ case IP_VERSION(5, 0, 1):
+ return "cyan_skillfish2_sdma";
+ case IP_VERSION(5, 0, 2):
+ return "navi14_sdma";
+ case IP_VERSION(5, 0, 5):
+ return "navi12_sdma";
+ case IP_VERSION(5, 2, 0):
+ return "sienna_cichlid_sdma";
+ case IP_VERSION(5, 2, 2):
+ return "navy_flounder_sdma";
+ case IP_VERSION(5, 2, 4):
+ return "dimgrey_cavefish_sdma";
+ case IP_VERSION(5, 2, 5):
+ return "beige_goby_sdma";
+ case IP_VERSION(5, 2, 3):
+ return "yellow_carp_sdma";
+ case IP_VERSION(5, 2, 1):
+ return "vangogh_sdma";
+ }
+ } else if (block_type == UVD_HWIP) {
+ switch (adev->ip_versions[UVD_HWIP][0]) {
+ case IP_VERSION(1, 0, 0):
+ case IP_VERSION(1, 0, 1):
+ if (adev->apu_flags & AMD_APU_IS_RAVEN2)
+ return "raven2_vcn";
+ else if (adev->apu_flags & AMD_APU_IS_PICASSO)
+ return "picasso_vcn";
+ return "raven_vcn";
+ case IP_VERSION(2, 5, 0):
+ return "arcturus_vcn";
+ case IP_VERSION(2, 2, 0):
+ if (adev->apu_flags & AMD_APU_IS_RENOIR)
+ return "renoir_vcn";
+ return "green_sardine_vcn";
+ case IP_VERSION(2, 6, 0):
+ return "aldebaran_vcn";
+ case IP_VERSION(2, 0, 0):
+ return "navi10_vcn";
+ case IP_VERSION(2, 0, 2):
+ if (adev->asic_type == CHIP_NAVI12)
+ return "navi12_vcn";
+ return "navi14_vcn";
+ case IP_VERSION(3, 0, 0):
+ case IP_VERSION(3, 0, 64):
+ case IP_VERSION(3, 0, 192):
+ if (adev->ip_versions[GC_HWIP][0] == IP_VERSION(10, 3, 0))
+ return "sienna_cichlid_vcn";
+ return "navy_flounder_vcn";
+ case IP_VERSION(3, 0, 2):
+ return "vangogh_vcn";
+ case IP_VERSION(3, 0, 16):
+ return "dimgrey_cavefish_vcn";
+ case IP_VERSION(3, 0, 33):
+ return "beige_goby_vcn";
+ case IP_VERSION(3, 1, 1):
+ return "yellow_carp_vcn";
+ }
+ } else if (block_type == GC_HWIP) {
+ switch (adev->ip_versions[GC_HWIP][0]) {
+ case IP_VERSION(9, 0, 1):
+ return "vega10";
+ case IP_VERSION(9, 2, 1):
+ return "vega12";
+ case IP_VERSION(9, 4, 0):
+ return "vega20";
+ case IP_VERSION(9, 2, 2):
+ case IP_VERSION(9, 1, 0):
+ if (adev->apu_flags & AMD_APU_IS_RAVEN2)
+ return "raven2";
+ else if (adev->apu_flags & AMD_APU_IS_PICASSO)
+ return "picasso";
+ return "raven";
+ case IP_VERSION(9, 4, 1):
+ return "arcturus";
+ case IP_VERSION(9, 3, 0):
+ if (adev->apu_flags & AMD_APU_IS_RENOIR)
+ return "renoir";
+ return "green_sardine";
+ case IP_VERSION(9, 4, 2):
+ return "aldebaran";
+ case IP_VERSION(10, 1, 10):
+ return "navi10";
+ case IP_VERSION(10, 1, 1):
+ return "navi14";
+ case IP_VERSION(10, 1, 2):
+ return "navi12";
+ case IP_VERSION(10, 3, 0):
+ return "sienna_cichlid";
+ case IP_VERSION(10, 3, 2):
+ return "navy_flounder";
+ case IP_VERSION(10, 3, 1):
+ return "vangogh";
+ case IP_VERSION(10, 3, 4):
+ return "dimgrey_cavefish";
+ case IP_VERSION(10, 3, 5):
+ return "beige_goby";
+ case IP_VERSION(10, 3, 3):
+ return "yellow_carp";
+ case IP_VERSION(10, 1, 3):
+ case IP_VERSION(10, 1, 4):
+ return "cyan_skillfish2";
+ }
+ }
+ return NULL;
+}
+
void amdgpu_ucode_ip_version_decode(struct amdgpu_device *adev, int block_type, char *ucode_prefix, int len)
{
int maj, min, rev;
char *ip_name;
+ const char *legacy;
uint32_t version = adev->ip_versions[block_type][0];
+ legacy = amdgpu_ucode_legacy_naming(adev, block_type);
+ if (legacy) {
+ snprintf(ucode_prefix, len, "%s", legacy);
+ return;
+ }
+
switch (block_type) {
case GC_HWIP:
ip_name = "gc";
@@ -1091,3 +1303,39 @@ void amdgpu_ucode_ip_version_decode(struct amdgpu_device *adev, int block_type,
snprintf(ucode_prefix, len, "%s_%d_%d_%d", ip_name, maj, min, rev);
}
+
+/*
+ * amdgpu_ucode_request - Fetch and validate amdgpu microcode
+ *
+ * @adev: amdgpu device
+ * @fw: pointer to load firmware to
+ * @fw_name: firmware to load
+ *
+ * This is a helper that will use request_firmware and amdgpu_ucode_validate
+ * to load and run basic validation on firmware. If the load fails, remap
+ * the error code to -ENODEV, so that early_init functions will fail to load.
+ */
+int amdgpu_ucode_request(struct amdgpu_device *adev, const struct firmware **fw,
+ const char *fw_name)
+{
+ int err = request_firmware(fw, fw_name, adev->dev);
+
+ if (err)
+ return -ENODEV;
+ err = amdgpu_ucode_validate(*fw);
+ if (err)
+ dev_dbg(adev->dev, "\"%s\" failed to validate\n", fw_name);
+
+ return err;
+}
+
+/*
+ * amdgpu_ucode_release - Release firmware microcode
+ *
+ * @fw: pointer to firmware to release
+ */
+void amdgpu_ucode_release(const struct firmware **fw)
+{
+ release_firmware(*fw);
+ *fw = NULL;
+}
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_ucode.h b/drivers/gpu/drm/amd/amdgpu/amdgpu_ucode.h
index 1c36235b4539..b03321e7d2d8 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_ucode.h
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_ucode.h
@@ -125,6 +125,7 @@ enum psp_fw_type {
PSP_FW_TYPE_PSP_INTF_DRV,
PSP_FW_TYPE_PSP_DBG_DRV,
PSP_FW_TYPE_PSP_RAS_DRV,
+ PSP_FW_TYPE_MAX_INDEX,
};
/* version_major=2, version_minor=0 */
@@ -537,12 +538,15 @@ struct amdgpu_firmware {
void amdgpu_ucode_print_mc_hdr(const struct common_firmware_header *hdr);
void amdgpu_ucode_print_smc_hdr(const struct common_firmware_header *hdr);
+void amdgpu_ucode_print_imu_hdr(const struct common_firmware_header *hdr);
void amdgpu_ucode_print_gfx_hdr(const struct common_firmware_header *hdr);
void amdgpu_ucode_print_rlc_hdr(const struct common_firmware_header *hdr);
void amdgpu_ucode_print_sdma_hdr(const struct common_firmware_header *hdr);
void amdgpu_ucode_print_psp_hdr(const struct common_firmware_header *hdr);
void amdgpu_ucode_print_gpu_info_hdr(const struct common_firmware_header *hdr);
-int amdgpu_ucode_validate(const struct firmware *fw);
+int amdgpu_ucode_request(struct amdgpu_device *adev, const struct firmware **fw,
+ const char *fw_name);
+void amdgpu_ucode_release(const struct firmware **fw);
bool amdgpu_ucode_hdr_version(union amdgpu_firmware_header *hdr,
uint16_t hdr_major, uint16_t hdr_minor);
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_umc.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_umc.c
index aad3c8b4c810..1edf8e6aeb16 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_umc.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_umc.c
@@ -22,6 +22,59 @@
*/
#include "amdgpu.h"
+#include "umc_v6_7.h"
+
+static int amdgpu_umc_convert_error_address(struct amdgpu_device *adev,
+ struct ras_err_data *err_data, uint64_t err_addr,
+ uint32_t ch_inst, uint32_t umc_inst)
+{
+ switch (adev->ip_versions[UMC_HWIP][0]) {
+ case IP_VERSION(6, 7, 0):
+ umc_v6_7_convert_error_address(adev,
+ err_data, err_addr, ch_inst, umc_inst);
+ break;
+ default:
+ dev_warn(adev->dev,
+ "UMC address to Physical address translation is not supported\n");
+ return AMDGPU_RAS_FAIL;
+ }
+
+ return AMDGPU_RAS_SUCCESS;
+}
+
+int amdgpu_umc_page_retirement_mca(struct amdgpu_device *adev,
+ uint64_t err_addr, uint32_t ch_inst, uint32_t umc_inst)
+{
+ struct ras_err_data err_data = {0, 0, 0, NULL};
+ int ret = AMDGPU_RAS_FAIL;
+
+ err_data.err_addr =
+ kcalloc(adev->umc.max_ras_err_cnt_per_query,
+ sizeof(struct eeprom_table_record), GFP_KERNEL);
+ if (!err_data.err_addr) {
+ dev_warn(adev->dev,
+ "Failed to alloc memory for umc error record in MCA notifier!\n");
+ return AMDGPU_RAS_FAIL;
+ }
+
+ /*
+ * Translate UMC channel address to Physical address
+ */
+ ret = amdgpu_umc_convert_error_address(adev, &err_data, err_addr,
+ ch_inst, umc_inst);
+ if (ret)
+ goto out;
+
+ if (amdgpu_bad_page_threshold != 0) {
+ amdgpu_ras_add_bad_pages(adev, err_data.err_addr,
+ err_data.err_addr_cnt);
+ amdgpu_ras_save_bad_pages(adev, NULL);
+ }
+
+out:
+ kfree(err_data.err_addr);
+ return ret;
+}
static int amdgpu_umc_do_page_retirement(struct amdgpu_device *adev,
void *ras_error_status,
@@ -94,7 +147,7 @@ static int amdgpu_umc_do_page_retirement(struct amdgpu_device *adev,
err_data->err_addr_cnt) {
amdgpu_ras_add_bad_pages(adev, err_data->err_addr,
err_data->err_addr_cnt);
- amdgpu_ras_save_bad_pages(adev);
+ amdgpu_ras_save_bad_pages(adev, &(err_data->ue_count));
amdgpu_dpm_send_hbm_bad_pages_num(adev, con->eeprom_control.ras_num_recs);
@@ -112,23 +165,37 @@ static int amdgpu_umc_do_page_retirement(struct amdgpu_device *adev,
return AMDGPU_RAS_SUCCESS;
}
-int amdgpu_umc_poison_handler(struct amdgpu_device *adev,
- void *ras_error_status,
- bool reset)
+int amdgpu_umc_poison_handler(struct amdgpu_device *adev, bool reset)
{
- int ret;
- struct ras_err_data *err_data = (struct ras_err_data *)ras_error_status;
- struct ras_common_if head = {
- .block = AMDGPU_RAS_BLOCK__UMC,
- };
- struct ras_manager *obj = amdgpu_ras_find_obj(adev, &head);
+ int ret = AMDGPU_RAS_SUCCESS;
- ret =
- amdgpu_umc_do_page_retirement(adev, ras_error_status, NULL, reset);
+ if (!amdgpu_sriov_vf(adev)) {
+ if (!adev->gmc.xgmi.connected_to_cpu) {
+ struct ras_err_data err_data = {0, 0, 0, NULL};
+ struct ras_common_if head = {
+ .block = AMDGPU_RAS_BLOCK__UMC,
+ };
+ struct ras_manager *obj = amdgpu_ras_find_obj(adev, &head);
- if (ret == AMDGPU_RAS_SUCCESS && obj) {
- obj->err_data.ue_count += err_data->ue_count;
- obj->err_data.ce_count += err_data->ce_count;
+ ret = amdgpu_umc_do_page_retirement(adev, &err_data, NULL, reset);
+
+ if (ret == AMDGPU_RAS_SUCCESS && obj) {
+ obj->err_data.ue_count += err_data.ue_count;
+ obj->err_data.ce_count += err_data.ce_count;
+ }
+ } else if (reset) {
+ /* MCA poison handler is only responsible for GPU reset,
+ * let MCA notifier do page retirement.
+ */
+ kgd2kfd_set_sram_ecc_flag(adev->kfd.dev);
+ amdgpu_ras_reset_gpu(adev);
+ }
+ } else {
+ if (adev->virt.ops && adev->virt.ops->ras_poison_handler)
+ adev->virt.ops->ras_poison_handler(adev);
+ else
+ dev_warn(adev->dev,
+ "No ras_poison_handler interface in SRIOV!\n");
}
return ret;
@@ -141,6 +208,36 @@ int amdgpu_umc_process_ras_data_cb(struct amdgpu_device *adev,
return amdgpu_umc_do_page_retirement(adev, ras_error_status, entry, true);
}
+int amdgpu_umc_ras_sw_init(struct amdgpu_device *adev)
+{
+ int err;
+ struct amdgpu_umc_ras *ras;
+
+ if (!adev->umc.ras)
+ return 0;
+
+ ras = adev->umc.ras;
+
+ err = amdgpu_ras_register_ras_block(adev, &ras->ras_block);
+ if (err) {
+ dev_err(adev->dev, "Failed to register umc ras block!\n");
+ return err;
+ }
+
+ strcpy(adev->umc.ras->ras_block.ras_comm.name, "umc");
+ ras->ras_block.ras_comm.block = AMDGPU_RAS_BLOCK__UMC;
+ ras->ras_block.ras_comm.type = AMDGPU_RAS_ERROR__MULTI_UNCORRECTABLE;
+ adev->umc.ras_if = &ras->ras_block.ras_comm;
+
+ if (!ras->ras_block.ras_late_init)
+ ras->ras_block.ras_late_init = amdgpu_umc_ras_late_init;
+
+ if (!ras->ras_block.ras_cb)
+ ras->ras_block.ras_cb = amdgpu_umc_process_ras_data_cb;
+
+ return 0;
+}
+
int amdgpu_umc_ras_late_init(struct amdgpu_device *adev, struct ras_common_if *ras_block)
{
int r;
@@ -205,3 +302,34 @@ void amdgpu_umc_fill_error_record(struct ras_err_data *err_data,
err_data->err_addr_cnt++;
}
+
+int amdgpu_umc_loop_channels(struct amdgpu_device *adev,
+ umc_func func, void *data)
+{
+ uint32_t node_inst = 0;
+ uint32_t umc_inst = 0;
+ uint32_t ch_inst = 0;
+ int ret = 0;
+
+ if (adev->umc.node_inst_num) {
+ LOOP_UMC_EACH_NODE_INST_AND_CH(node_inst, umc_inst, ch_inst) {
+ ret = func(adev, node_inst, umc_inst, ch_inst, data);
+ if (ret) {
+ dev_err(adev->dev, "Node %d umc %d ch %d func returns %d\n",
+ node_inst, umc_inst, ch_inst, ret);
+ return ret;
+ }
+ }
+ } else {
+ LOOP_UMC_INST_AND_CH(umc_inst, ch_inst) {
+ ret = func(adev, 0, umc_inst, ch_inst, data);
+ if (ret) {
+ dev_err(adev->dev, "Umc %d ch %d func returns %d\n",
+ umc_inst, ch_inst, ret);
+ return ret;
+ }
+ }
+ }
+
+ return 0;
+}
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_umc.h b/drivers/gpu/drm/amd/amdgpu/amdgpu_umc.h
index e46439274f3a..86133f77a9a4 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_umc.h
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_umc.h
@@ -42,18 +42,19 @@
#define LOOP_UMC_INST_AND_CH(umc_inst, ch_inst) LOOP_UMC_INST((umc_inst)) LOOP_UMC_CH_INST((ch_inst))
#define LOOP_UMC_NODE_INST(node_inst) \
- for ((node_inst) = 0; (node_inst) < adev->umc.node_inst_num; (node_inst)++)
+ for_each_set_bit((node_inst), &(adev->umc.active_mask), adev->umc.node_inst_num)
#define LOOP_UMC_EACH_NODE_INST_AND_CH(node_inst, umc_inst, ch_inst) \
LOOP_UMC_NODE_INST((node_inst)) LOOP_UMC_INST_AND_CH((umc_inst), (ch_inst))
+
+typedef int (*umc_func)(struct amdgpu_device *adev, uint32_t node_inst,
+ uint32_t umc_inst, uint32_t ch_inst, void *data);
+
struct amdgpu_umc_ras {
struct amdgpu_ras_block_object ras_block;
void (*err_cnt_init)(struct amdgpu_device *adev);
bool (*query_ras_poison_mode)(struct amdgpu_device *adev);
- void (*convert_ras_error_address)(struct amdgpu_device *adev,
- struct ras_err_data *err_data, uint64_t err_addr,
- uint32_t ch_inst, uint32_t umc_inst);
void (*ecc_info_query_ras_error_count)(struct amdgpu_device *adev,
void *ras_error_status);
void (*ecc_info_query_ras_error_address)(struct amdgpu_device *adev,
@@ -72,23 +73,27 @@ struct amdgpu_umc {
/* number of umc instance with memory map register access */
uint32_t umc_inst_num;
- /*number of umc node instance with memory map register access*/
+ /* Total number of umc node instance including harvest one */
uint32_t node_inst_num;
/* UMC regiser per channel offset */
uint32_t channel_offs;
+ /* how many pages are retired in one UE */
+ uint32_t retire_unit;
/* channel index table of interleaved memory */
const uint32_t *channel_idx_tbl;
struct ras_common_if *ras_if;
const struct amdgpu_umc_funcs *funcs;
struct amdgpu_umc_ras *ras;
+
+ /* active mask for umc node instance */
+ unsigned long active_mask;
};
+int amdgpu_umc_ras_sw_init(struct amdgpu_device *adev);
int amdgpu_umc_ras_late_init(struct amdgpu_device *adev, struct ras_common_if *ras_block);
-int amdgpu_umc_poison_handler(struct amdgpu_device *adev,
- void *ras_error_status,
- bool reset);
+int amdgpu_umc_poison_handler(struct amdgpu_device *adev, bool reset);
int amdgpu_umc_process_ecc_irq(struct amdgpu_device *adev,
struct amdgpu_irq_src *source,
struct amdgpu_iv_entry *entry);
@@ -101,4 +106,9 @@ void amdgpu_umc_fill_error_record(struct ras_err_data *err_data,
int amdgpu_umc_process_ras_data_cb(struct amdgpu_device *adev,
void *ras_error_status,
struct amdgpu_iv_entry *entry);
+int amdgpu_umc_page_retirement_mca(struct amdgpu_device *adev,
+ uint64_t err_addr, uint32_t ch_inst, uint32_t umc_inst);
+
+int amdgpu_umc_loop_channels(struct amdgpu_device *adev,
+ umc_func func, void *data);
#endif
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_uvd.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_uvd.c
index 6eac649499d3..6887109abb13 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_uvd.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_uvd.c
@@ -260,19 +260,11 @@ int amdgpu_uvd_sw_init(struct amdgpu_device *adev)
return -EINVAL;
}
- r = request_firmware(&adev->uvd.fw, fw_name, adev->dev);
- if (r) {
- dev_err(adev->dev, "amdgpu_uvd: Can't load firmware \"%s\"\n",
- fw_name);
- return r;
- }
-
- r = amdgpu_ucode_validate(adev->uvd.fw);
+ r = amdgpu_ucode_request(adev, &adev->uvd.fw, fw_name);
if (r) {
dev_err(adev->dev, "amdgpu_uvd: Can't validate firmware \"%s\"\n",
fw_name);
- release_firmware(adev->uvd.fw);
- adev->uvd.fw = NULL;
+ amdgpu_ucode_release(&adev->uvd.fw);
return r;
}
@@ -331,8 +323,11 @@ int amdgpu_uvd_sw_init(struct amdgpu_device *adev)
if (adev->uvd.harvest_config & (1 << j))
continue;
r = amdgpu_bo_create_kernel(adev, bo_size, PAGE_SIZE,
- AMDGPU_GEM_DOMAIN_VRAM, &adev->uvd.inst[j].vcpu_bo,
- &adev->uvd.inst[j].gpu_addr, &adev->uvd.inst[j].cpu_addr);
+ AMDGPU_GEM_DOMAIN_VRAM |
+ AMDGPU_GEM_DOMAIN_GTT,
+ &adev->uvd.inst[j].vcpu_bo,
+ &adev->uvd.inst[j].gpu_addr,
+ &adev->uvd.inst[j].cpu_addr);
if (r) {
dev_err(adev->dev, "(%d) failed to allocate UVD bo\n", r);
return r;
@@ -394,7 +389,7 @@ int amdgpu_uvd_sw_fini(struct amdgpu_device *adev)
amdgpu_ring_fini(&adev->uvd.inst[j].ring_enc[i]);
}
amdgpu_bo_free_kernel(&adev->uvd.ib_bo, NULL, &addr);
- release_firmware(adev->uvd.fw);
+ amdgpu_ucode_release(&adev->uvd.fw);
return 0;
}
@@ -1123,30 +1118,28 @@ static int amdgpu_uvd_send_msg(struct amdgpu_ring *ring, struct amdgpu_bo *bo,
{
struct amdgpu_device *adev = ring->adev;
struct dma_fence *f = NULL;
+ uint32_t offset, data[4];
struct amdgpu_job *job;
struct amdgpu_ib *ib;
- uint32_t data[4];
uint64_t addr;
- long r;
- int i;
- unsigned offset_idx = 0;
- unsigned offset[3] = { UVD_BASE_SI, 0, 0 };
+ int i, r;
- r = amdgpu_job_alloc_with_ib(adev, 64, direct ? AMDGPU_IB_POOL_DIRECT :
+ r = amdgpu_job_alloc_with_ib(ring->adev, &adev->uvd.entity,
+ AMDGPU_FENCE_OWNER_UNDEFINED,
+ 64, direct ? AMDGPU_IB_POOL_DIRECT :
AMDGPU_IB_POOL_DELAYED, &job);
if (r)
return r;
- if (adev->asic_type >= CHIP_VEGA10) {
- offset_idx = 1 + ring->me;
- offset[1] = adev->reg_offset[UVD_HWIP][0][1];
- offset[2] = adev->reg_offset[UVD_HWIP][1][1];
- }
+ if (adev->asic_type >= CHIP_VEGA10)
+ offset = adev->reg_offset[UVD_HWIP][ring->me][1];
+ else
+ offset = UVD_BASE_SI;
- data[0] = PACKET0(offset[offset_idx] + UVD_GPCOM_VCPU_DATA0, 0);
- data[1] = PACKET0(offset[offset_idx] + UVD_GPCOM_VCPU_DATA1, 0);
- data[2] = PACKET0(offset[offset_idx] + UVD_GPCOM_VCPU_CMD, 0);
- data[3] = PACKET0(offset[offset_idx] + UVD_NO_OP, 0);
+ data[0] = PACKET0(offset + UVD_GPCOM_VCPU_DATA0, 0);
+ data[1] = PACKET0(offset + UVD_GPCOM_VCPU_DATA1, 0);
+ data[2] = PACKET0(offset + UVD_GPCOM_VCPU_CMD, 0);
+ data[3] = PACKET0(offset + UVD_NO_OP, 0);
ib = &job->ibs[0];
addr = amdgpu_bo_gpu_offset(bo);
@@ -1163,28 +1156,17 @@ static int amdgpu_uvd_send_msg(struct amdgpu_ring *ring, struct amdgpu_bo *bo,
ib->length_dw = 16;
if (direct) {
- r = dma_resv_wait_timeout(bo->tbo.base.resv,
- DMA_RESV_USAGE_KERNEL, false,
- msecs_to_jiffies(10));
- if (r == 0)
- r = -ETIMEDOUT;
- if (r < 0)
- goto err_free;
-
r = amdgpu_job_submit_direct(job, ring, &f);
if (r)
goto err_free;
} else {
- r = amdgpu_sync_resv(adev, &job->sync, bo->tbo.base.resv,
- AMDGPU_SYNC_ALWAYS,
- AMDGPU_FENCE_OWNER_UNDEFINED);
+ r = drm_sched_job_add_resv_dependencies(&job->base,
+ bo->tbo.base.resv,
+ DMA_RESV_USAGE_KERNEL);
if (r)
goto err_free;
- r = amdgpu_job_submit(job, &adev->uvd.entity,
- AMDGPU_FENCE_OWNER_UNDEFINED, &f);
- if (r)
- goto err_free;
+ f = amdgpu_job_submit(job);
}
amdgpu_bo_reserve(bo, true);
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_vce.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_vce.c
index 02cb3a12dd76..e2b7324a70cb 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_vce.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_vce.c
@@ -158,19 +158,11 @@ int amdgpu_vce_sw_init(struct amdgpu_device *adev, unsigned long size)
return -EINVAL;
}
- r = request_firmware(&adev->vce.fw, fw_name, adev->dev);
- if (r) {
- dev_err(adev->dev, "amdgpu_vce: Can't load firmware \"%s\"\n",
- fw_name);
- return r;
- }
-
- r = amdgpu_ucode_validate(adev->vce.fw);
+ r = amdgpu_ucode_request(adev, &adev->vce.fw, fw_name);
if (r) {
dev_err(adev->dev, "amdgpu_vce: Can't validate firmware \"%s\"\n",
fw_name);
- release_firmware(adev->vce.fw);
- adev->vce.fw = NULL;
+ amdgpu_ucode_release(&adev->vce.fw);
return r;
}
@@ -186,7 +178,9 @@ int amdgpu_vce_sw_init(struct amdgpu_device *adev, unsigned long size)
(binary_id << 8));
r = amdgpu_bo_create_kernel(adev, size, PAGE_SIZE,
- AMDGPU_GEM_DOMAIN_VRAM, &adev->vce.vcpu_bo,
+ AMDGPU_GEM_DOMAIN_VRAM |
+ AMDGPU_GEM_DOMAIN_GTT,
+ &adev->vce.vcpu_bo,
&adev->vce.gpu_addr, &adev->vce.cpu_addr);
if (r) {
dev_err(adev->dev, "(%d) failed to allocate VCE bo\n", r);
@@ -226,7 +220,7 @@ int amdgpu_vce_sw_fini(struct amdgpu_device *adev)
for (i = 0; i < adev->vce.num_rings; i++)
amdgpu_ring_fini(&adev->vce.ring[i]);
- release_firmware(adev->vce.fw);
+ amdgpu_ucode_release(&adev->vce.fw);
mutex_destroy(&adev->vce.idle_mutex);
return 0;
@@ -450,8 +444,10 @@ static int amdgpu_vce_get_create_msg(struct amdgpu_ring *ring, uint32_t handle,
uint64_t addr;
int i, r;
- r = amdgpu_job_alloc_with_ib(ring->adev, ib_size_dw * 4,
- AMDGPU_IB_POOL_DIRECT, &job);
+ r = amdgpu_job_alloc_with_ib(ring->adev, &ring->adev->vce.entity,
+ AMDGPU_FENCE_OWNER_UNDEFINED,
+ ib_size_dw * 4, AMDGPU_IB_POOL_DIRECT,
+ &job);
if (r)
return r;
@@ -538,7 +534,9 @@ static int amdgpu_vce_get_destroy_msg(struct amdgpu_ring *ring, uint32_t handle,
struct dma_fence *f = NULL;
int i, r;
- r = amdgpu_job_alloc_with_ib(ring->adev, ib_size_dw * 4,
+ r = amdgpu_job_alloc_with_ib(ring->adev, &ring->adev->vce.entity,
+ AMDGPU_FENCE_OWNER_UNDEFINED,
+ ib_size_dw * 4,
direct ? AMDGPU_IB_POOL_DIRECT :
AMDGPU_IB_POOL_DELAYED, &job);
if (r)
@@ -570,8 +568,7 @@ static int amdgpu_vce_get_destroy_msg(struct amdgpu_ring *ring, uint32_t handle,
if (direct)
r = amdgpu_job_submit_direct(job, ring, &f);
else
- r = amdgpu_job_submit(job, &ring->adev->vce.entity,
- AMDGPU_FENCE_OWNER_UNDEFINED, &f);
+ f = amdgpu_job_submit(job);
if (r)
goto err;
@@ -588,6 +585,7 @@ err:
/**
* amdgpu_vce_validate_bo - make sure not to cross 4GB boundary
*
+ * @p: cs parser
* @ib: indirect buffer to use
* @lo: address of lower dword
* @hi: address of higher dword
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_vcn.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_vcn.c
index 0b52af415b28..e63fcc58e8e0 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_vcn.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_vcn.c
@@ -26,6 +26,7 @@
#include <linux/firmware.h>
#include <linux/module.h>
+#include <linux/dmi.h>
#include <linux/pci.h>
#include <linux/debugfs.h>
#include <drm/drm_drv.h>
@@ -36,26 +37,26 @@
#include "soc15d.h"
/* Firmware Names */
-#define FIRMWARE_RAVEN "amdgpu/raven_vcn.bin"
-#define FIRMWARE_PICASSO "amdgpu/picasso_vcn.bin"
-#define FIRMWARE_RAVEN2 "amdgpu/raven2_vcn.bin"
-#define FIRMWARE_ARCTURUS "amdgpu/arcturus_vcn.bin"
-#define FIRMWARE_RENOIR "amdgpu/renoir_vcn.bin"
-#define FIRMWARE_GREEN_SARDINE "amdgpu/green_sardine_vcn.bin"
-#define FIRMWARE_NAVI10 "amdgpu/navi10_vcn.bin"
-#define FIRMWARE_NAVI14 "amdgpu/navi14_vcn.bin"
-#define FIRMWARE_NAVI12 "amdgpu/navi12_vcn.bin"
-#define FIRMWARE_SIENNA_CICHLID "amdgpu/sienna_cichlid_vcn.bin"
-#define FIRMWARE_NAVY_FLOUNDER "amdgpu/navy_flounder_vcn.bin"
-#define FIRMWARE_VANGOGH "amdgpu/vangogh_vcn.bin"
+#define FIRMWARE_RAVEN "amdgpu/raven_vcn.bin"
+#define FIRMWARE_PICASSO "amdgpu/picasso_vcn.bin"
+#define FIRMWARE_RAVEN2 "amdgpu/raven2_vcn.bin"
+#define FIRMWARE_ARCTURUS "amdgpu/arcturus_vcn.bin"
+#define FIRMWARE_RENOIR "amdgpu/renoir_vcn.bin"
+#define FIRMWARE_GREEN_SARDINE "amdgpu/green_sardine_vcn.bin"
+#define FIRMWARE_NAVI10 "amdgpu/navi10_vcn.bin"
+#define FIRMWARE_NAVI14 "amdgpu/navi14_vcn.bin"
+#define FIRMWARE_NAVI12 "amdgpu/navi12_vcn.bin"
+#define FIRMWARE_SIENNA_CICHLID "amdgpu/sienna_cichlid_vcn.bin"
+#define FIRMWARE_NAVY_FLOUNDER "amdgpu/navy_flounder_vcn.bin"
+#define FIRMWARE_VANGOGH "amdgpu/vangogh_vcn.bin"
#define FIRMWARE_DIMGREY_CAVEFISH "amdgpu/dimgrey_cavefish_vcn.bin"
-#define FIRMWARE_ALDEBARAN "amdgpu/aldebaran_vcn.bin"
-#define FIRMWARE_BEIGE_GOBY "amdgpu/beige_goby_vcn.bin"
-#define FIRMWARE_YELLOW_CARP "amdgpu/yellow_carp_vcn.bin"
-#define FIRMWARE_VCN_3_1_2 "amdgpu/vcn_3_1_2.bin"
-#define FIRMWARE_VCN4_0_0 "amdgpu/vcn_4_0_0.bin"
-#define FIRMWARE_VCN4_0_2 "amdgpu/vcn_4_0_2.bin"
-#define FIRMWARE_VCN4_0_4 "amdgpu/vcn_4_0_4.bin"
+#define FIRMWARE_ALDEBARAN "amdgpu/aldebaran_vcn.bin"
+#define FIRMWARE_BEIGE_GOBY "amdgpu/beige_goby_vcn.bin"
+#define FIRMWARE_YELLOW_CARP "amdgpu/yellow_carp_vcn.bin"
+#define FIRMWARE_VCN_3_1_2 "amdgpu/vcn_3_1_2.bin"
+#define FIRMWARE_VCN4_0_0 "amdgpu/vcn_4_0_0.bin"
+#define FIRMWARE_VCN4_0_2 "amdgpu/vcn_4_0_2.bin"
+#define FIRMWARE_VCN4_0_4 "amdgpu/vcn_4_0_4.bin"
MODULE_FIRMWARE(FIRMWARE_RAVEN);
MODULE_FIRMWARE(FIRMWARE_PICASSO);
@@ -80,10 +81,24 @@ MODULE_FIRMWARE(FIRMWARE_VCN4_0_4);
static void amdgpu_vcn_idle_work_handler(struct work_struct *work);
+int amdgpu_vcn_early_init(struct amdgpu_device *adev)
+{
+ char ucode_prefix[30];
+ char fw_name[40];
+ int r;
+
+ amdgpu_ucode_ip_version_decode(adev, UVD_HWIP, ucode_prefix, sizeof(ucode_prefix));
+ snprintf(fw_name, sizeof(fw_name), "amdgpu/%s.bin", ucode_prefix);
+ r = amdgpu_ucode_request(adev, &adev->vcn.fw, fw_name);
+ if (r)
+ amdgpu_ucode_release(&adev->vcn.fw);
+
+ return r;
+}
+
int amdgpu_vcn_sw_init(struct amdgpu_device *adev)
{
unsigned long bo_size;
- const char *fw_name;
const struct common_firmware_header *hdr;
unsigned char fw_check;
unsigned int fw_shared_size, log_offset;
@@ -96,127 +111,26 @@ int amdgpu_vcn_sw_init(struct amdgpu_device *adev)
for (i = 0; i < adev->vcn.num_vcn_inst; i++)
atomic_set(&adev->vcn.inst[i].dpg_enc_submission_cnt, 0);
- switch (adev->ip_versions[UVD_HWIP][0]) {
- case IP_VERSION(1, 0, 0):
- case IP_VERSION(1, 0, 1):
- if (adev->apu_flags & AMD_APU_IS_RAVEN2)
- fw_name = FIRMWARE_RAVEN2;
- else if (adev->apu_flags & AMD_APU_IS_PICASSO)
- fw_name = FIRMWARE_PICASSO;
- else
- fw_name = FIRMWARE_RAVEN;
- break;
- case IP_VERSION(2, 5, 0):
- fw_name = FIRMWARE_ARCTURUS;
- if ((adev->firmware.load_type == AMDGPU_FW_LOAD_PSP) &&
- (adev->pg_flags & AMD_PG_SUPPORT_VCN_DPG))
- adev->vcn.indirect_sram = true;
- break;
- case IP_VERSION(2, 2, 0):
- if (adev->apu_flags & AMD_APU_IS_RENOIR)
- fw_name = FIRMWARE_RENOIR;
- else
- fw_name = FIRMWARE_GREEN_SARDINE;
-
- if ((adev->firmware.load_type == AMDGPU_FW_LOAD_PSP) &&
- (adev->pg_flags & AMD_PG_SUPPORT_VCN_DPG))
- adev->vcn.indirect_sram = true;
- break;
- case IP_VERSION(2, 6, 0):
- fw_name = FIRMWARE_ALDEBARAN;
- if ((adev->firmware.load_type == AMDGPU_FW_LOAD_PSP) &&
- (adev->pg_flags & AMD_PG_SUPPORT_VCN_DPG))
- adev->vcn.indirect_sram = true;
- break;
- case IP_VERSION(2, 0, 0):
- fw_name = FIRMWARE_NAVI10;
- if ((adev->firmware.load_type == AMDGPU_FW_LOAD_PSP) &&
- (adev->pg_flags & AMD_PG_SUPPORT_VCN_DPG))
- adev->vcn.indirect_sram = true;
- break;
- case IP_VERSION(2, 0, 2):
- if (adev->asic_type == CHIP_NAVI12)
- fw_name = FIRMWARE_NAVI12;
- else
- fw_name = FIRMWARE_NAVI14;
- if ((adev->firmware.load_type == AMDGPU_FW_LOAD_PSP) &&
- (adev->pg_flags & AMD_PG_SUPPORT_VCN_DPG))
- adev->vcn.indirect_sram = true;
- break;
- case IP_VERSION(3, 0, 0):
- case IP_VERSION(3, 0, 64):
- case IP_VERSION(3, 0, 192):
- if (adev->ip_versions[GC_HWIP][0] == IP_VERSION(10, 3, 0))
- fw_name = FIRMWARE_SIENNA_CICHLID;
- else
- fw_name = FIRMWARE_NAVY_FLOUNDER;
- if ((adev->firmware.load_type == AMDGPU_FW_LOAD_PSP) &&
- (adev->pg_flags & AMD_PG_SUPPORT_VCN_DPG))
- adev->vcn.indirect_sram = true;
- break;
- case IP_VERSION(3, 0, 2):
- fw_name = FIRMWARE_VANGOGH;
- break;
- case IP_VERSION(3, 0, 16):
- fw_name = FIRMWARE_DIMGREY_CAVEFISH;
- if ((adev->firmware.load_type == AMDGPU_FW_LOAD_PSP) &&
- (adev->pg_flags & AMD_PG_SUPPORT_VCN_DPG))
- adev->vcn.indirect_sram = true;
- break;
- case IP_VERSION(3, 0, 33):
- fw_name = FIRMWARE_BEIGE_GOBY;
- if ((adev->firmware.load_type == AMDGPU_FW_LOAD_PSP) &&
- (adev->pg_flags & AMD_PG_SUPPORT_VCN_DPG))
- adev->vcn.indirect_sram = true;
- break;
- case IP_VERSION(3, 1, 1):
- fw_name = FIRMWARE_YELLOW_CARP;
- if ((adev->firmware.load_type == AMDGPU_FW_LOAD_PSP) &&
- (adev->pg_flags & AMD_PG_SUPPORT_VCN_DPG))
- adev->vcn.indirect_sram = true;
- break;
- case IP_VERSION(3, 1, 2):
- fw_name = FIRMWARE_VCN_3_1_2;
- if ((adev->firmware.load_type == AMDGPU_FW_LOAD_PSP) &&
- (adev->pg_flags & AMD_PG_SUPPORT_VCN_DPG))
- adev->vcn.indirect_sram = true;
- break;
- case IP_VERSION(4, 0, 0):
- fw_name = FIRMWARE_VCN4_0_0;
- if ((adev->firmware.load_type == AMDGPU_FW_LOAD_PSP) &&
- (adev->pg_flags & AMD_PG_SUPPORT_VCN_DPG))
- adev->vcn.indirect_sram = true;
- break;
- case IP_VERSION(4, 0, 2):
- fw_name = FIRMWARE_VCN4_0_2;
- if ((adev->firmware.load_type == AMDGPU_FW_LOAD_PSP) &&
- (adev->pg_flags & AMD_PG_SUPPORT_VCN_DPG))
- adev->vcn.indirect_sram = true;
- break;
- case IP_VERSION(4, 0, 4):
- fw_name = FIRMWARE_VCN4_0_4;
- if ((adev->firmware.load_type == AMDGPU_FW_LOAD_PSP) &&
- (adev->pg_flags & AMD_PG_SUPPORT_VCN_DPG))
- adev->vcn.indirect_sram = true;
- break;
- default:
- return -EINVAL;
- }
-
- r = request_firmware(&adev->vcn.fw, fw_name, adev->dev);
- if (r) {
- dev_err(adev->dev, "amdgpu_vcn: Can't load firmware \"%s\"\n",
- fw_name);
- return r;
- }
+ if ((adev->firmware.load_type == AMDGPU_FW_LOAD_PSP) &&
+ (adev->pg_flags & AMD_PG_SUPPORT_VCN_DPG))
+ adev->vcn.indirect_sram = true;
- r = amdgpu_ucode_validate(adev->vcn.fw);
- if (r) {
- dev_err(adev->dev, "amdgpu_vcn: Can't validate firmware \"%s\"\n",
- fw_name);
- release_firmware(adev->vcn.fw);
- adev->vcn.fw = NULL;
- return r;
+ /*
+ * Some Steam Deck's BIOS versions are incompatible with the
+ * indirect SRAM mode, leading to amdgpu being unable to get
+ * properly probed (and even potentially crashing the kernel).
+ * Hence, check for these versions here - notice this is
+ * restricted to Vangogh (Deck's APU).
+ */
+ if (adev->ip_versions[UVD_HWIP][0] == IP_VERSION(3, 0, 2)) {
+ const char *bios_ver = dmi_get_system_info(DMI_BIOS_VERSION);
+
+ if (bios_ver && (!strncmp("F7A0113", bios_ver, 7) ||
+ !strncmp("F7A0114", bios_ver, 7))) {
+ adev->vcn.indirect_sram = false;
+ dev_info(adev->dev,
+ "Steam Deck quirk: indirect SRAM disabled on BIOS %s\n", bios_ver);
+ }
}
hdr = (const struct common_firmware_header *)adev->vcn.fw->data;
@@ -271,8 +185,11 @@ int amdgpu_vcn_sw_init(struct amdgpu_device *adev)
continue;
r = amdgpu_bo_create_kernel(adev, bo_size, PAGE_SIZE,
- AMDGPU_GEM_DOMAIN_VRAM, &adev->vcn.inst[i].vcpu_bo,
- &adev->vcn.inst[i].gpu_addr, &adev->vcn.inst[i].cpu_addr);
+ AMDGPU_GEM_DOMAIN_VRAM |
+ AMDGPU_GEM_DOMAIN_GTT,
+ &adev->vcn.inst[i].vcpu_bo,
+ &adev->vcn.inst[i].gpu_addr,
+ &adev->vcn.inst[i].cpu_addr);
if (r) {
dev_err(adev->dev, "(%d) failed to allocate vcn bo\n", r);
return r;
@@ -293,8 +210,11 @@ int amdgpu_vcn_sw_init(struct amdgpu_device *adev)
if (adev->vcn.indirect_sram) {
r = amdgpu_bo_create_kernel(adev, 64 * 2 * 4, PAGE_SIZE,
- AMDGPU_GEM_DOMAIN_VRAM, &adev->vcn.inst[i].dpg_sram_bo,
- &adev->vcn.inst[i].dpg_sram_gpu_addr, &adev->vcn.inst[i].dpg_sram_cpu_addr);
+ AMDGPU_GEM_DOMAIN_VRAM |
+ AMDGPU_GEM_DOMAIN_GTT,
+ &adev->vcn.inst[i].dpg_sram_bo,
+ &adev->vcn.inst[i].dpg_sram_gpu_addr,
+ &adev->vcn.inst[i].dpg_sram_cpu_addr);
if (r) {
dev_err(adev->dev, "VCN %d (%d) failed to allocate DPG bo\n", i, r);
return r;
@@ -330,7 +250,7 @@ int amdgpu_vcn_sw_fini(struct amdgpu_device *adev)
amdgpu_ring_fini(&adev->vcn.inst[j].ring_enc[i]);
}
- release_firmware(adev->vcn.fw);
+ amdgpu_ucode_release(&adev->vcn.fw);
mutex_destroy(&adev->vcn.vcn1_jpeg1_workaround);
mutex_destroy(&adev->vcn.vcn_pg_lock);
@@ -600,15 +520,16 @@ static int amdgpu_vcn_dec_send_msg(struct amdgpu_ring *ring,
struct amdgpu_ib *ib_msg,
struct dma_fence **fence)
{
+ u64 addr = AMDGPU_GPU_PAGE_ALIGN(ib_msg->gpu_addr);
struct amdgpu_device *adev = ring->adev;
struct dma_fence *f = NULL;
struct amdgpu_job *job;
struct amdgpu_ib *ib;
- uint64_t addr = AMDGPU_GPU_PAGE_ALIGN(ib_msg->gpu_addr);
int i, r;
- r = amdgpu_job_alloc_with_ib(adev, 64,
- AMDGPU_IB_POOL_DIRECT, &job);
+ r = amdgpu_job_alloc_with_ib(ring->adev, NULL, NULL,
+ 64, AMDGPU_IB_POOL_DIRECT,
+ &job);
if (r)
goto err;
@@ -787,8 +708,9 @@ static int amdgpu_vcn_dec_sw_send_msg(struct amdgpu_ring *ring,
if (sq)
ib_size_dw += 8;
- r = amdgpu_job_alloc_with_ib(adev, ib_size_dw * 4,
- AMDGPU_IB_POOL_DIRECT, &job);
+ r = amdgpu_job_alloc_with_ib(ring->adev, NULL, NULL,
+ ib_size_dw * 4, AMDGPU_IB_POOL_DIRECT,
+ &job);
if (r)
goto err;
@@ -916,8 +838,9 @@ static int amdgpu_vcn_enc_get_create_msg(struct amdgpu_ring *ring, uint32_t hand
if (sq)
ib_size_dw += 8;
- r = amdgpu_job_alloc_with_ib(ring->adev, ib_size_dw * 4,
- AMDGPU_IB_POOL_DIRECT, &job);
+ r = amdgpu_job_alloc_with_ib(ring->adev, NULL, NULL,
+ ib_size_dw * 4, AMDGPU_IB_POOL_DIRECT,
+ &job);
if (r)
return r;
@@ -982,8 +905,9 @@ static int amdgpu_vcn_enc_get_destroy_msg(struct amdgpu_ring *ring, uint32_t han
if (sq)
ib_size_dw += 8;
- r = amdgpu_job_alloc_with_ib(ring->adev, ib_size_dw * 4,
- AMDGPU_IB_POOL_DIRECT, &job);
+ r = amdgpu_job_alloc_with_ib(ring->adev, NULL, NULL,
+ ib_size_dw * 4, AMDGPU_IB_POOL_DIRECT,
+ &job);
if (r)
return r;
@@ -1243,8 +1167,42 @@ int amdgpu_vcn_process_poison_irq(struct amdgpu_device *adev,
if (!ras_if)
return 0;
- ih_data.head = *ras_if;
- amdgpu_ras_interrupt_dispatch(adev, &ih_data);
+ if (!amdgpu_sriov_vf(adev)) {
+ ih_data.head = *ras_if;
+ amdgpu_ras_interrupt_dispatch(adev, &ih_data);
+ } else {
+ if (adev->virt.ops && adev->virt.ops->ras_poison_handler)
+ adev->virt.ops->ras_poison_handler(adev);
+ else
+ dev_warn(adev->dev,
+ "No ras_poison_handler interface in SRIOV for VCN!\n");
+ }
+
+ return 0;
+}
+
+int amdgpu_vcn_ras_sw_init(struct amdgpu_device *adev)
+{
+ int err;
+ struct amdgpu_vcn_ras *ras;
+
+ if (!adev->vcn.ras)
+ return 0;
+
+ ras = adev->vcn.ras;
+ err = amdgpu_ras_register_ras_block(adev, &ras->ras_block);
+ if (err) {
+ dev_err(adev->dev, "Failed to register vcn ras block!\n");
+ return err;
+ }
+
+ strcpy(ras->ras_block.ras_comm.name, "vcn");
+ ras->ras_block.ras_comm.block = AMDGPU_RAS_BLOCK__VCN;
+ ras->ras_block.ras_comm.type = AMDGPU_RAS_ERROR__POISON;
+ adev->vcn.ras_if = &ras->ras_block.ras_comm;
+
+ if (!ras->ras_block.ras_late_init)
+ ras->ras_block.ras_late_init = amdgpu_ras_block_late_init;
return 0;
}
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_vcn.h b/drivers/gpu/drm/amd/amdgpu/amdgpu_vcn.h
index 253ea6b159df..c730949ece7d 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_vcn.h
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_vcn.h
@@ -369,6 +369,7 @@ enum vcn_ring_type {
VCN_UNIFIED_RING,
};
+int amdgpu_vcn_early_init(struct amdgpu_device *adev);
int amdgpu_vcn_sw_init(struct amdgpu_device *adev);
int amdgpu_vcn_sw_fini(struct amdgpu_device *adev);
int amdgpu_vcn_suspend(struct amdgpu_device *adev);
@@ -399,5 +400,6 @@ void amdgpu_debugfs_vcn_fwlog_init(struct amdgpu_device *adev,
int amdgpu_vcn_process_poison_irq(struct amdgpu_device *adev,
struct amdgpu_irq_src *source,
struct amdgpu_iv_entry *entry);
+int amdgpu_vcn_ras_sw_init(struct amdgpu_device *adev);
#endif
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_virt.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_virt.c
index c73abe54d974..f2e2cbaa7fde 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_virt.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_virt.c
@@ -64,6 +64,10 @@ void amdgpu_virt_init_setting(struct amdgpu_device *adev)
ddev->driver_features &= ~DRIVER_ATOMIC;
adev->cg_flags = 0;
adev->pg_flags = 0;
+
+ /* enable mcbp for sriov asic_type before soc21 */
+ amdgpu_mcbp = (adev->asic_type < CHIP_IP_DISCOVERY) ? 1 : 0;
+
}
void amdgpu_virt_kiq_reg_write_reg_wait(struct amdgpu_device *adev,
@@ -228,7 +232,8 @@ int amdgpu_virt_alloc_mm_table(struct amdgpu_device *adev)
return 0;
r = amdgpu_bo_create_kernel(adev, PAGE_SIZE, PAGE_SIZE,
- AMDGPU_GEM_DOMAIN_VRAM,
+ AMDGPU_GEM_DOMAIN_VRAM |
+ AMDGPU_GEM_DOMAIN_GTT,
&adev->virt.mm_table.bo,
&adev->virt.mm_table.gpu_addr,
(void *)&adev->virt.mm_table.cpu_addr);
@@ -391,7 +396,6 @@ static void amdgpu_virt_ras_reserve_bps(struct amdgpu_device *adev)
*/
if (amdgpu_bo_create_kernel_at(adev, bp << AMDGPU_GPU_PAGE_SHIFT,
AMDGPU_GPU_PAGE_SIZE,
- AMDGPU_GEM_DOMAIN_VRAM,
&bo, NULL))
DRM_DEBUG("RAS WARN: reserve vram for retired page %llx fail\n", bp);
@@ -424,11 +428,17 @@ static void amdgpu_virt_add_bad_page(struct amdgpu_device *adev,
struct eeprom_table_record bp;
uint64_t retired_page;
uint32_t bp_idx, bp_cnt;
+ void *vram_usage_va = NULL;
+
+ if (adev->mman.fw_vram_usage_va)
+ vram_usage_va = adev->mman.fw_vram_usage_va;
+ else
+ vram_usage_va = adev->mman.drv_vram_usage_va;
if (bp_block_size) {
bp_cnt = bp_block_size / sizeof(uint64_t);
for (bp_idx = 0; bp_idx < bp_cnt; bp_idx++) {
- retired_page = *(uint64_t *)(adev->mman.fw_vram_usage_va +
+ retired_page = *(uint64_t *)(vram_usage_va +
bp_block_offset + bp_idx * sizeof(uint64_t));
bp.retired_page = retired_page;
@@ -639,7 +649,9 @@ void amdgpu_virt_init_data_exchange(struct amdgpu_device *adev)
adev->virt.fw_reserve.p_vf2pf = NULL;
adev->virt.vf2pf_update_interval_ms = 0;
- if (adev->mman.fw_vram_usage_va != NULL) {
+ if (adev->mman.fw_vram_usage_va && adev->mman.drv_vram_usage_va) {
+ DRM_WARN("Currently fw_vram and drv_vram should not have values at the same time!");
+ } else if (adev->mman.fw_vram_usage_va || adev->mman.drv_vram_usage_va) {
/* go through this logic in ip_init and reset to init workqueue*/
amdgpu_virt_exchange_data(adev);
@@ -662,32 +674,40 @@ void amdgpu_virt_exchange_data(struct amdgpu_device *adev)
uint32_t bp_block_size = 0;
struct amd_sriov_msg_pf2vf_info *pf2vf_v2 = NULL;
- if (adev->mman.fw_vram_usage_va != NULL) {
-
- adev->virt.fw_reserve.p_pf2vf =
- (struct amd_sriov_msg_pf2vf_info_header *)
- (adev->mman.fw_vram_usage_va + (AMD_SRIOV_MSG_PF2VF_OFFSET_KB << 10));
- adev->virt.fw_reserve.p_vf2pf =
- (struct amd_sriov_msg_vf2pf_info_header *)
- (adev->mman.fw_vram_usage_va + (AMD_SRIOV_MSG_VF2PF_OFFSET_KB << 10));
+ if (adev->mman.fw_vram_usage_va || adev->mman.drv_vram_usage_va) {
+ if (adev->mman.fw_vram_usage_va) {
+ adev->virt.fw_reserve.p_pf2vf =
+ (struct amd_sriov_msg_pf2vf_info_header *)
+ (adev->mman.fw_vram_usage_va + (AMD_SRIOV_MSG_PF2VF_OFFSET_KB << 10));
+ adev->virt.fw_reserve.p_vf2pf =
+ (struct amd_sriov_msg_vf2pf_info_header *)
+ (adev->mman.fw_vram_usage_va + (AMD_SRIOV_MSG_VF2PF_OFFSET_KB << 10));
+ } else if (adev->mman.drv_vram_usage_va) {
+ adev->virt.fw_reserve.p_pf2vf =
+ (struct amd_sriov_msg_pf2vf_info_header *)
+ (adev->mman.drv_vram_usage_va + (AMD_SRIOV_MSG_PF2VF_OFFSET_KB << 10));
+ adev->virt.fw_reserve.p_vf2pf =
+ (struct amd_sriov_msg_vf2pf_info_header *)
+ (adev->mman.drv_vram_usage_va + (AMD_SRIOV_MSG_VF2PF_OFFSET_KB << 10));
+ }
amdgpu_virt_read_pf2vf_data(adev);
amdgpu_virt_write_vf2pf_data(adev);
/* bad page handling for version 2 */
if (adev->virt.fw_reserve.p_pf2vf->version == 2) {
- pf2vf_v2 = (struct amd_sriov_msg_pf2vf_info *)adev->virt.fw_reserve.p_pf2vf;
+ pf2vf_v2 = (struct amd_sriov_msg_pf2vf_info *)adev->virt.fw_reserve.p_pf2vf;
- bp_block_offset = ((uint64_t)pf2vf_v2->bp_block_offset_low & 0xFFFFFFFF) |
- ((((uint64_t)pf2vf_v2->bp_block_offset_high) << 32) & 0xFFFFFFFF00000000);
- bp_block_size = pf2vf_v2->bp_block_size;
+ bp_block_offset = ((uint64_t)pf2vf_v2->bp_block_offset_low & 0xFFFFFFFF) |
+ ((((uint64_t)pf2vf_v2->bp_block_offset_high) << 32) & 0xFFFFFFFF00000000);
+ bp_block_size = pf2vf_v2->bp_block_size;
- if (bp_block_size && !adev->virt.ras_init_done)
- amdgpu_virt_init_ras_err_handler_data(adev);
+ if (bp_block_size && !adev->virt.ras_init_done)
+ amdgpu_virt_init_ras_err_handler_data(adev);
- if (adev->virt.ras_init_done)
- amdgpu_virt_add_bad_page(adev, bp_block_offset, bp_block_size);
- }
+ if (adev->virt.ras_init_done)
+ amdgpu_virt_add_bad_page(adev, bp_block_offset, bp_block_size);
+ }
}
}
@@ -963,11 +983,13 @@ static u32 amdgpu_virt_rlcg_reg_rw(struct amdgpu_device *adev, u32 offset, u32 v
if (offset == reg_access_ctrl->grbm_cntl) {
/* if the target reg offset is grbm_cntl, write to scratch_reg2 */
writel(v, scratch_reg2);
- writel(v, ((void __iomem *)adev->rmmio) + (offset * 4));
+ if (flag == AMDGPU_RLCG_GC_WRITE_LEGACY)
+ writel(v, ((void __iomem *)adev->rmmio) + (offset * 4));
} else if (offset == reg_access_ctrl->grbm_idx) {
/* if the target reg offset is grbm_idx, write to scratch_reg3 */
writel(v, scratch_reg3);
- writel(v, ((void __iomem *)adev->rmmio) + (offset * 4));
+ if (flag == AMDGPU_RLCG_GC_WRITE_LEGACY)
+ writel(v, ((void __iomem *)adev->rmmio) + (offset * 4));
} else {
/*
* SCRATCH_REG0 = read/write value
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_virt.h b/drivers/gpu/drm/amd/amdgpu/amdgpu_virt.h
index 49c4347d154c..4f7bab52282a 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_virt.h
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_virt.h
@@ -75,6 +75,8 @@ struct amdgpu_vf_error_buffer {
uint64_t data[AMDGPU_VF_ERROR_ENTRY_SIZE];
};
+enum idh_request;
+
/**
* struct amdgpu_virt_ops - amdgpu device virt operations
*/
@@ -84,7 +86,9 @@ struct amdgpu_virt_ops {
int (*req_init_data)(struct amdgpu_device *adev);
int (*reset_gpu)(struct amdgpu_device *adev);
int (*wait_reset)(struct amdgpu_device *adev);
- void (*trans_msg)(struct amdgpu_device *adev, u32 req, u32 data1, u32 data2, u32 data3);
+ void (*trans_msg)(struct amdgpu_device *adev, enum idh_request req,
+ u32 data1, u32 data2, u32 data3);
+ void (*ras_poison_handler)(struct amdgpu_device *adev);
};
/*
@@ -120,6 +124,8 @@ enum AMDGIM_FEATURE_FLAG {
AMDGIM_FEATURE_PP_ONE_VF = (1 << 4),
/* Indirect Reg Access enabled */
AMDGIM_FEATURE_INDIRECT_REG_ACCESS = (1 << 5),
+ /* AV1 Support MODE*/
+ AMDGIM_FEATURE_AV1_SUPPORT = (1 << 6),
};
enum AMDGIM_REG_ACCESS_FLAG {
@@ -318,6 +324,8 @@ static inline bool is_virtual_machine(void)
((!amdgpu_in_reset(adev)) && adev->virt.tdr_debug)
#define amdgpu_sriov_is_normal(adev) \
((!amdgpu_in_reset(adev)) && (!adev->virt.tdr_debug))
+#define amdgpu_sriov_is_av1_support(adev) \
+ ((adev)->virt.gim_feature & AMDGIM_FEATURE_AV1_SUPPORT)
bool amdgpu_virt_mmio_blocked(struct amdgpu_device *adev);
void amdgpu_virt_init_setting(struct amdgpu_device *adev);
void amdgpu_virt_kiq_reg_write_reg_wait(struct amdgpu_device *adev,
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_vkms.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_vkms.c
index 500a1dc4fe02..53ff91fc6cf6 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_vkms.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_vkms.c
@@ -498,7 +498,7 @@ static int amdgpu_vkms_sw_init(void *handle)
adev_to_drm(adev)->mode_config.preferred_depth = 24;
adev_to_drm(adev)->mode_config.prefer_shadow = 1;
- adev_to_drm(adev)->mode_config.fb_base = adev->gmc.aper_base;
+ adev_to_drm(adev)->mode_config.fb_modifiers_not_supported = true;
adev_to_drm(adev)->mode_config.fb_modifiers_not_supported = true;
@@ -513,6 +513,10 @@ static int amdgpu_vkms_sw_init(void *handle)
return r;
}
+ r = drm_vblank_init(adev_to_drm(adev), adev->mode_info.num_crtc);
+ if (r)
+ return r;
+
drm_kms_helper_poll_init(adev_to_drm(adev));
adev->mode_info.mode_config_initialized = true;
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_vm.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_vm.c
index 003aa9e47085..3c0310576b3b 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_vm.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_vm.c
@@ -33,6 +33,7 @@
#include <drm/amdgpu_drm.h>
#include <drm/drm_drv.h>
+#include <drm/ttm/ttm_tt.h>
#include "amdgpu.h"
#include "amdgpu_trace.h"
#include "amdgpu_amdkfd.h"
@@ -45,22 +46,43 @@
/**
* DOC: GPUVM
*
- * GPUVM is similar to the legacy gart on older asics, however
- * rather than there being a single global gart table
- * for the entire GPU, there are multiple VM page tables active
- * at any given time. The VM page tables can contain a mix
- * vram pages and system memory pages and system memory pages
+ * GPUVM is the MMU functionality provided on the GPU.
+ * GPUVM is similar to the legacy GART on older asics, however
+ * rather than there being a single global GART table
+ * for the entire GPU, there can be multiple GPUVM page tables active
+ * at any given time. The GPUVM page tables can contain a mix
+ * VRAM pages and system pages (both memory and MMIO) and system pages
* can be mapped as snooped (cached system pages) or unsnooped
* (uncached system pages).
- * Each VM has an ID associated with it and there is a page table
- * associated with each VMID. When executing a command buffer,
- * the kernel tells the ring what VMID to use for that command
+ *
+ * Each active GPUVM has an ID associated with it and there is a page table
+ * linked with each VMID. When executing a command buffer,
+ * the kernel tells the engine what VMID to use for that command
* buffer. VMIDs are allocated dynamically as commands are submitted.
* The userspace drivers maintain their own address space and the kernel
* sets up their pages tables accordingly when they submit their
* command buffers and a VMID is assigned.
- * Cayman/Trinity support up to 8 active VMs at any given time;
- * SI supports 16.
+ * The hardware supports up to 16 active GPUVMs at any given time.
+ *
+ * Each GPUVM is represented by a 1-2 or 1-5 level page table, depending
+ * on the ASIC family. GPUVM supports RWX attributes on each page as well
+ * as other features such as encryption and caching attributes.
+ *
+ * VMID 0 is special. It is the GPUVM used for the kernel driver. In
+ * addition to an aperture managed by a page table, VMID 0 also has
+ * several other apertures. There is an aperture for direct access to VRAM
+ * and there is a legacy AGP aperture which just forwards accesses directly
+ * to the matching system physical addresses (or IOVAs when an IOMMU is
+ * present). These apertures provide direct access to these memories without
+ * incurring the overhead of a page table. VMID 0 is used by the kernel
+ * driver for tasks like memory management.
+ *
+ * GPU clients (i.e., engines on the GPU) use GPUVM VMIDs to access memory.
+ * For user applications, each application can have their own unique GPUVM
+ * address space. The application manages the address space and the kernel
+ * driver manages the GPUVM page tables for each process. If an GPU client
+ * accesses an invalid page, it will generate a GPU page fault, similar to
+ * accessing an invalid page on a CPU.
*/
#define START(node) ((node)->start)
@@ -461,27 +483,22 @@ bool amdgpu_vm_need_pipeline_sync(struct amdgpu_ring *ring,
struct amdgpu_job *job)
{
struct amdgpu_device *adev = ring->adev;
- unsigned vmhub = ring->funcs->vmhub;
+ unsigned vmhub = ring->vm_hub;
struct amdgpu_vmid_mgr *id_mgr = &adev->vm_manager.id_mgr[vmhub];
- struct amdgpu_vmid *id;
- bool gds_switch_needed;
- bool vm_flush_needed = job->vm_needs_flush || ring->has_compute_vm_bug;
if (job->vmid == 0)
return false;
- id = &id_mgr->ids[job->vmid];
- gds_switch_needed = ring->funcs->emit_gds_switch && (
- id->gds_base != job->gds_base ||
- id->gds_size != job->gds_size ||
- id->gws_base != job->gws_base ||
- id->gws_size != job->gws_size ||
- id->oa_base != job->oa_base ||
- id->oa_size != job->oa_size);
-
- if (amdgpu_vmid_had_gpu_reset(adev, id))
+
+ if (job->vm_needs_flush || ring->has_compute_vm_bug)
return true;
- return vm_flush_needed || gds_switch_needed;
+ if (ring->funcs->emit_gds_switch && job->gds_switch_needed)
+ return true;
+
+ if (amdgpu_vmid_had_gpu_reset(adev, &id_mgr->ids[job->vmid]))
+ return true;
+
+ return false;
}
/**
@@ -500,30 +517,23 @@ int amdgpu_vm_flush(struct amdgpu_ring *ring, struct amdgpu_job *job,
bool need_pipe_sync)
{
struct amdgpu_device *adev = ring->adev;
- unsigned vmhub = ring->funcs->vmhub;
+ unsigned vmhub = ring->vm_hub;
struct amdgpu_vmid_mgr *id_mgr = &adev->vm_manager.id_mgr[vmhub];
struct amdgpu_vmid *id = &id_mgr->ids[job->vmid];
- bool gds_switch_needed = ring->funcs->emit_gds_switch && (
- id->gds_base != job->gds_base ||
- id->gds_size != job->gds_size ||
- id->gws_base != job->gws_base ||
- id->gws_size != job->gws_size ||
- id->oa_base != job->oa_base ||
- id->oa_size != job->oa_size);
+ bool spm_update_needed = job->spm_update_needed;
+ bool gds_switch_needed = ring->funcs->emit_gds_switch &&
+ job->gds_switch_needed;
bool vm_flush_needed = job->vm_needs_flush;
struct dma_fence *fence = NULL;
bool pasid_mapping_needed = false;
unsigned patch_offset = 0;
- bool update_spm_vmid_needed = (job->vm && (job->vm->reserved_vmid[vmhub] != NULL));
int r;
- if (update_spm_vmid_needed && adev->gfx.rlc.funcs->update_spm_vmid)
- adev->gfx.rlc.funcs->update_spm_vmid(adev, job->vmid);
-
if (amdgpu_vmid_had_gpu_reset(adev, id)) {
gds_switch_needed = true;
vm_flush_needed = true;
pasid_mapping_needed = true;
+ spm_update_needed = true;
}
mutex_lock(&id_mgr->lock);
@@ -541,6 +551,7 @@ int amdgpu_vm_flush(struct amdgpu_ring *ring, struct amdgpu_job *job,
if (!vm_flush_needed && !gds_switch_needed && !need_pipe_sync)
return 0;
+ amdgpu_ring_ib_begin(ring);
if (ring->funcs->init_cond_exec)
patch_offset = amdgpu_ring_init_cond_exec(ring);
@@ -555,6 +566,17 @@ int amdgpu_vm_flush(struct amdgpu_ring *ring, struct amdgpu_job *job,
if (pasid_mapping_needed)
amdgpu_gmc_emit_pasid_mapping(ring, job->vmid, job->pasid);
+ if (spm_update_needed && adev->gfx.rlc.funcs->update_spm_vmid)
+ adev->gfx.rlc.funcs->update_spm_vmid(adev, job->vmid);
+
+ if (!ring->is_mes_queue && ring->funcs->emit_gds_switch &&
+ gds_switch_needed) {
+ amdgpu_ring_emit_gds_switch(ring, job->vmid, job->gds_base,
+ job->gds_size, job->gws_base,
+ job->gws_size, job->oa_base,
+ job->oa_size);
+ }
+
if (vm_flush_needed || pasid_mapping_needed) {
r = amdgpu_fence_emit(ring, &fence, NULL, 0);
if (r)
@@ -579,20 +601,6 @@ int amdgpu_vm_flush(struct amdgpu_ring *ring, struct amdgpu_job *job,
}
dma_fence_put(fence);
- if (!ring->is_mes_queue && ring->funcs->emit_gds_switch &&
- gds_switch_needed) {
- id->gds_base = job->gds_base;
- id->gds_size = job->gds_size;
- id->gws_base = job->gws_base;
- id->gws_size = job->gws_size;
- id->oa_base = job->oa_base;
- id->oa_size = job->oa_size;
- amdgpu_ring_emit_gds_switch(ring, job->vmid, job->gds_base,
- job->gds_size, job->gws_base,
- job->gws_size, job->oa_base,
- job->oa_size);
- }
-
if (ring->funcs->patch_cond_exec)
amdgpu_ring_patch_cond_exec(ring, patch_offset);
@@ -601,6 +609,7 @@ int amdgpu_vm_flush(struct amdgpu_ring *ring, struct amdgpu_job *job,
amdgpu_ring_emit_switch_buffer(ring);
amdgpu_ring_emit_switch_buffer(ring);
}
+ amdgpu_ring_ib_end(ring);
return 0;
}
@@ -858,6 +867,8 @@ int amdgpu_vm_update_range(struct amdgpu_device *adev, struct amdgpu_vm *vm,
pages_addr[idx - 1] + PAGE_SIZE))
break;
}
+ if (!contiguous)
+ count--;
num_entries = count *
AMDGPU_GPU_PAGES_IN_CPU_PAGE;
}
@@ -909,8 +920,8 @@ error_unlock:
return r;
}
-void amdgpu_vm_get_memory(struct amdgpu_vm *vm, uint64_t *vram_mem,
- uint64_t *gtt_mem, uint64_t *cpu_mem)
+void amdgpu_vm_get_memory(struct amdgpu_vm *vm,
+ struct amdgpu_mem_stats *stats)
{
struct amdgpu_bo_va *bo_va, *tmp;
@@ -918,41 +929,36 @@ void amdgpu_vm_get_memory(struct amdgpu_vm *vm, uint64_t *vram_mem,
list_for_each_entry_safe(bo_va, tmp, &vm->idle, base.vm_status) {
if (!bo_va->base.bo)
continue;
- amdgpu_bo_get_memory(bo_va->base.bo, vram_mem,
- gtt_mem, cpu_mem);
+ amdgpu_bo_get_memory(bo_va->base.bo, stats);
}
list_for_each_entry_safe(bo_va, tmp, &vm->evicted, base.vm_status) {
if (!bo_va->base.bo)
continue;
- amdgpu_bo_get_memory(bo_va->base.bo, vram_mem,
- gtt_mem, cpu_mem);
+ amdgpu_bo_get_memory(bo_va->base.bo, stats);
}
list_for_each_entry_safe(bo_va, tmp, &vm->relocated, base.vm_status) {
if (!bo_va->base.bo)
continue;
- amdgpu_bo_get_memory(bo_va->base.bo, vram_mem,
- gtt_mem, cpu_mem);
+ amdgpu_bo_get_memory(bo_va->base.bo, stats);
}
list_for_each_entry_safe(bo_va, tmp, &vm->moved, base.vm_status) {
if (!bo_va->base.bo)
continue;
- amdgpu_bo_get_memory(bo_va->base.bo, vram_mem,
- gtt_mem, cpu_mem);
+ amdgpu_bo_get_memory(bo_va->base.bo, stats);
}
list_for_each_entry_safe(bo_va, tmp, &vm->invalidated, base.vm_status) {
if (!bo_va->base.bo)
continue;
- amdgpu_bo_get_memory(bo_va->base.bo, vram_mem,
- gtt_mem, cpu_mem);
+ amdgpu_bo_get_memory(bo_va->base.bo, stats);
}
list_for_each_entry_safe(bo_va, tmp, &vm->done, base.vm_status) {
if (!bo_va->base.bo)
continue;
- amdgpu_bo_get_memory(bo_va->base.bo, vram_mem,
- gtt_mem, cpu_mem);
+ amdgpu_bo_get_memory(bo_va->base.bo, stats);
}
spin_unlock(&vm->status_lock);
}
+
/**
* amdgpu_vm_bo_update - update all BO mappings in the vm page table
*
@@ -2360,7 +2366,6 @@ int amdgpu_vm_ioctl(struct drm_device *dev, void *data, struct drm_file *filp)
union drm_amdgpu_vm *args = data;
struct amdgpu_device *adev = drm_to_adev(dev);
struct amdgpu_fpriv *fpriv = filp->driver_priv;
- long timeout = msecs_to_jiffies(2000);
int r;
switch (args->in.op) {
@@ -2372,21 +2377,6 @@ int amdgpu_vm_ioctl(struct drm_device *dev, void *data, struct drm_file *filp)
return r;
break;
case AMDGPU_VM_OP_UNRESERVE_VMID:
- if (amdgpu_sriov_runtime(adev))
- timeout = 8 * timeout;
-
- /* Wait vm idle to make sure the vmid set in SPM_VMID is
- * not referenced anymore.
- */
- r = amdgpu_bo_reserve(fpriv->vm.root.bo, true);
- if (r)
- return r;
-
- r = amdgpu_vm_wait_idle(&fpriv->vm, timeout);
- if (r < 0)
- return r;
-
- amdgpu_bo_unreserve(fpriv->vm.root.bo);
amdgpu_vmid_free_reserved(adev, &fpriv->vm, AMDGPU_GFXHUB_0);
break;
default:
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_vm.h b/drivers/gpu/drm/amd/amdgpu/amdgpu_vm.h
index 6546e786bf00..6f085f0b4ef3 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_vm.h
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_vm.h
@@ -29,7 +29,7 @@
#include <linux/rbtree.h>
#include <drm/gpu_scheduler.h>
#include <drm/drm_file.h>
-#include <drm/ttm/ttm_bo_driver.h>
+#include <drm/ttm/ttm_bo.h>
#include <linux/sched/mm.h>
#include "amdgpu_sync.h"
@@ -40,6 +40,7 @@ struct amdgpu_bo_va;
struct amdgpu_job;
struct amdgpu_bo_list_entry;
struct amdgpu_bo_vm;
+struct amdgpu_mem_stats;
/*
* GPUVM handling
@@ -119,9 +120,6 @@ struct amdgpu_bo_vm;
/* Reserve 2MB at top/bottom of address space for kernel use */
#define AMDGPU_VA_RESERVED_SIZE (2ULL << 20)
-/* max vmids dedicated for process */
-#define AMDGPU_VM_MAX_RESERVED_VMID 1
-
/* See vm_update_mode */
#define AMDGPU_VM_USE_CPU_FOR_GFX (1 << 0)
#define AMDGPU_VM_USE_CPU_FOR_COMPUTE (1 << 1)
@@ -298,8 +296,7 @@ struct amdgpu_vm {
struct dma_fence *last_unlocked;
unsigned int pasid;
- /* dedicated to vm */
- struct amdgpu_vmid *reserved_vmid[AMDGPU_MAX_VMHUBS];
+ bool reserved_vmid[AMDGPU_MAX_VMHUBS];
/* Flag to indicate if VM tables are updated by CPU or GPU (SDMA) */
bool use_cpu_for_update;
@@ -461,8 +458,8 @@ void amdgpu_vm_set_task_info(struct amdgpu_vm *vm);
void amdgpu_vm_move_to_lru_tail(struct amdgpu_device *adev,
struct amdgpu_vm *vm);
-void amdgpu_vm_get_memory(struct amdgpu_vm *vm, uint64_t *vram_mem,
- uint64_t *gtt_mem, uint64_t *cpu_mem);
+void amdgpu_vm_get_memory(struct amdgpu_vm *vm,
+ struct amdgpu_mem_stats *stats);
int amdgpu_vm_pt_clear(struct amdgpu_device *adev, struct amdgpu_vm *vm,
struct amdgpu_bo_vm *vmbo, bool immediate);
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_vm_pt.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_vm_pt.c
index b5f3bba851db..df63dc3bca18 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_vm_pt.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_vm_pt.c
@@ -673,6 +673,7 @@ void amdgpu_vm_pt_free_work(struct work_struct *work)
* @adev: amdgpu device structure
* @vm: amdgpu vm structure
* @start: optional cursor where to start freeing PDs/PTs
+ * @unlocked: vm resv unlock status
*
* Free the page directory or page table level and all sub levels.
*/
@@ -974,7 +975,7 @@ int amdgpu_vm_ptes_update(struct amdgpu_vm_update_params *params,
trace_amdgpu_vm_update_ptes(params, frag_start, upd_end,
min(nptes, 32u), dst, incr,
upd_flags,
- vm->task_info.pid,
+ vm->task_info.tgid,
vm->immediate.fence_context);
amdgpu_vm_pte_update_flags(params, to_amdgpu_bo_vm(pt),
cursor.level, pe_start, dst,
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_vm_sdma.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_vm_sdma.c
index 69e105fa41f6..349416e176a1 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_vm_sdma.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_vm_sdma.c
@@ -47,6 +47,32 @@ static int amdgpu_vm_sdma_map_table(struct amdgpu_bo_vm *table)
return r;
}
+/* Allocate a new job for @count PTE updates */
+static int amdgpu_vm_sdma_alloc_job(struct amdgpu_vm_update_params *p,
+ unsigned int count)
+{
+ enum amdgpu_ib_pool_type pool = p->immediate ? AMDGPU_IB_POOL_IMMEDIATE
+ : AMDGPU_IB_POOL_DELAYED;
+ struct drm_sched_entity *entity = p->immediate ? &p->vm->immediate
+ : &p->vm->delayed;
+ unsigned int ndw;
+ int r;
+
+ /* estimate how many dw we need */
+ ndw = AMDGPU_VM_SDMA_MIN_NUM_DW;
+ if (p->pages_addr)
+ ndw += count * 2;
+ ndw = min(ndw, AMDGPU_VM_SDMA_MAX_NUM_DW);
+
+ r = amdgpu_job_alloc_with_ib(p->adev, entity, AMDGPU_FENCE_OWNER_VM,
+ ndw * 4, pool, &p->job);
+ if (r)
+ return r;
+
+ p->num_dw_left = ndw;
+ return 0;
+}
+
/**
* amdgpu_vm_sdma_prepare - prepare SDMA command submission
*
@@ -61,21 +87,22 @@ static int amdgpu_vm_sdma_prepare(struct amdgpu_vm_update_params *p,
struct dma_resv *resv,
enum amdgpu_sync_mode sync_mode)
{
- enum amdgpu_ib_pool_type pool = p->immediate ? AMDGPU_IB_POOL_IMMEDIATE
- : AMDGPU_IB_POOL_DELAYED;
- unsigned int ndw = AMDGPU_VM_SDMA_MIN_NUM_DW;
+ struct amdgpu_sync sync;
int r;
- r = amdgpu_job_alloc_with_ib(p->adev, ndw * 4, pool, &p->job);
+ r = amdgpu_vm_sdma_alloc_job(p, 0);
if (r)
return r;
- p->num_dw_left = ndw;
-
if (!resv)
return 0;
- return amdgpu_sync_resv(p->adev, &p->job->sync, resv, sync_mode, p->vm);
+ amdgpu_sync_create(&sync);
+ r = amdgpu_sync_resv(p->adev, &sync, resv, sync_mode, p->vm);
+ if (!r)
+ r = amdgpu_sync_push_to_job(&sync, p->job);
+ amdgpu_sync_free(&sync);
+ return r;
}
/**
@@ -91,20 +118,16 @@ static int amdgpu_vm_sdma_commit(struct amdgpu_vm_update_params *p,
struct dma_fence **fence)
{
struct amdgpu_ib *ib = p->job->ibs;
- struct drm_sched_entity *entity;
struct amdgpu_ring *ring;
struct dma_fence *f;
- int r;
- entity = p->immediate ? &p->vm->immediate : &p->vm->delayed;
- ring = container_of(entity->rq->sched, struct amdgpu_ring, sched);
+ ring = container_of(p->vm->delayed.rq->sched, struct amdgpu_ring,
+ sched);
WARN_ON(ib->length_dw == 0);
amdgpu_ring_pad_ib(ring, ib);
WARN_ON(ib->length_dw > p->num_dw_left);
- r = amdgpu_job_submit(p->job, entity, AMDGPU_FENCE_OWNER_VM, &f);
- if (r)
- goto error;
+ f = amdgpu_job_submit(p->job);
if (p->unlocked) {
struct dma_fence *tmp = dma_fence_get(f);
@@ -127,10 +150,6 @@ static int amdgpu_vm_sdma_commit(struct amdgpu_vm_update_params *p,
}
dma_fence_put(f);
return 0;
-
-error:
- amdgpu_job_free(p->job);
- return r;
}
/**
@@ -152,7 +171,7 @@ static void amdgpu_vm_sdma_copy_ptes(struct amdgpu_vm_update_params *p,
src += p->num_dw_left * 4;
- pe += amdgpu_gmc_sign_extend(amdgpu_bo_gpu_offset_no_check(bo));
+ pe += amdgpu_bo_gpu_offset_no_check(bo);
trace_amdgpu_vm_copy_ptes(pe, src, count, p->immediate);
amdgpu_vm_copy_pte(p->adev, ib, pe, src, count);
@@ -179,7 +198,7 @@ static void amdgpu_vm_sdma_set_ptes(struct amdgpu_vm_update_params *p,
{
struct amdgpu_ib *ib = p->job->ibs;
- pe += amdgpu_gmc_sign_extend(amdgpu_bo_gpu_offset_no_check(bo));
+ pe += amdgpu_bo_gpu_offset_no_check(bo);
trace_amdgpu_vm_set_ptes(pe, addr, count, incr, flags, p->immediate);
if (count < 3) {
amdgpu_vm_write_pte(p->adev, ib, pe, addr | flags,
@@ -210,8 +229,6 @@ static int amdgpu_vm_sdma_update(struct amdgpu_vm_update_params *p,
uint64_t flags)
{
struct amdgpu_bo *bo = &vmbo->bo;
- enum amdgpu_ib_pool_type pool = p->immediate ? AMDGPU_IB_POOL_IMMEDIATE
- : AMDGPU_IB_POOL_DELAYED;
struct dma_resv_iter cursor;
unsigned int i, ndw, nptes;
struct dma_fence *fence;
@@ -221,8 +238,10 @@ static int amdgpu_vm_sdma_update(struct amdgpu_vm_update_params *p,
/* Wait for PD/PT moves to be completed */
dma_resv_iter_begin(&cursor, bo->tbo.base.resv, DMA_RESV_USAGE_KERNEL);
dma_resv_for_each_fence_unlocked(&cursor, fence) {
- r = amdgpu_sync_fence(&p->job->sync, fence);
+ dma_fence_get(fence);
+ r = drm_sched_job_add_dependency(&p->job->base, fence);
if (r) {
+ dma_fence_put(fence);
dma_resv_iter_end(&cursor);
return r;
}
@@ -238,19 +257,9 @@ static int amdgpu_vm_sdma_update(struct amdgpu_vm_update_params *p,
if (r)
return r;
- /* estimate how many dw we need */
- ndw = 32;
- if (p->pages_addr)
- ndw += count * 2;
- ndw = max(ndw, AMDGPU_VM_SDMA_MIN_NUM_DW);
- ndw = min(ndw, AMDGPU_VM_SDMA_MAX_NUM_DW);
-
- r = amdgpu_job_alloc_with_ib(p->adev, ndw * 4, pool,
- &p->job);
+ r = amdgpu_vm_sdma_alloc_job(p, count);
if (r)
return r;
-
- p->num_dw_left = ndw;
}
if (!p->pages_addr) {
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_vram_mgr.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_vram_mgr.c
index 80dd1343594c..43d6a9d6a538 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_vram_mgr.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_vram_mgr.c
@@ -439,7 +439,7 @@ static int amdgpu_vram_mgr_new(struct ttm_resource_manager *man,
/* Allocate blocks in desired range */
vres->flags |= DRM_BUDDY_RANGE_ALLOCATION;
- remaining_size = (u64)vres->base.num_pages << PAGE_SHIFT;
+ remaining_size = (u64)vres->base.size;
mutex_lock(&mgr->lock);
while (remaining_size) {
@@ -453,7 +453,8 @@ static int amdgpu_vram_mgr_new(struct ttm_resource_manager *man,
/* Limit maximum size to 2GiB due to SG table limitations */
size = min(remaining_size, 2ULL << 30);
- if (size >= (u64)pages_per_block << PAGE_SHIFT)
+ if ((size >= (u64)pages_per_block << PAGE_SHIFT) &&
+ !(size & (((u64)pages_per_block << PAGE_SHIFT) - 1)))
min_block_size = (u64)pages_per_block << PAGE_SHIFT;
cur_size = size;
@@ -498,7 +499,7 @@ static int amdgpu_vram_mgr_new(struct ttm_resource_manager *man,
LIST_HEAD(temp);
trim_list = &vres->blocks;
- original_size = (u64)vres->base.num_pages << PAGE_SHIFT;
+ original_size = (u64)vres->base.size;
/*
* If size value is rounded up to min_block_size, trim the last
@@ -533,8 +534,8 @@ static int amdgpu_vram_mgr_new(struct ttm_resource_manager *man,
amdgpu_vram_mgr_block_size(block);
start >>= PAGE_SHIFT;
- if (start > vres->base.num_pages)
- start -= vres->base.num_pages;
+ if (start > PFN_UP(vres->base.size))
+ start -= PFN_UP(vres->base.size);
else
start = 0;
vres->base.start = max(vres->base.start, start);
@@ -882,7 +883,7 @@ void amdgpu_vram_mgr_fini(struct amdgpu_device *adev)
kfree(rsv);
list_for_each_entry_safe(rsv, temp, &mgr->reserved_pages, blocks) {
- drm_buddy_free_list(&mgr->mm, &rsv->blocks);
+ drm_buddy_free_list(&mgr->mm, &rsv->allocated);
kfree(rsv);
}
drm_buddy_fini(&mgr->mm);
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_xgmi.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_xgmi.c
index 47159e9a0884..439925477fb8 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_xgmi.c
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_xgmi.c
@@ -29,13 +29,16 @@
#include "df/df_3_6_offset.h"
#include "xgmi/xgmi_4_0_0_smn.h"
#include "xgmi/xgmi_4_0_0_sh_mask.h"
+#include "xgmi/xgmi_6_1_0_sh_mask.h"
#include "wafl/wafl2_4_0_0_smn.h"
#include "wafl/wafl2_4_0_0_sh_mask.h"
#include "amdgpu_reset.h"
#define smnPCS_XGMI3X16_PCS_ERROR_STATUS 0x11a0020c
+#define smnPCS_XGMI3X16_PCS_ERROR_NONCORRECTABLE_MASK 0x11a00218
#define smnPCS_GOPX1_PCS_ERROR_STATUS 0x12200210
+#define smnPCS_GOPX1_PCS_ERROR_NONCORRECTABLE_MASK 0x12200218
static DEFINE_MUTEX(xgmi_mutex);
@@ -79,11 +82,27 @@ static const int xgmi3x16_pcs_err_status_reg_aldebaran[] = {
smnPCS_XGMI3X16_PCS_ERROR_STATUS + 0x700000
};
+static const int xgmi3x16_pcs_err_noncorrectable_mask_reg_aldebaran[] = {
+ smnPCS_XGMI3X16_PCS_ERROR_NONCORRECTABLE_MASK,
+ smnPCS_XGMI3X16_PCS_ERROR_NONCORRECTABLE_MASK + 0x100000,
+ smnPCS_XGMI3X16_PCS_ERROR_NONCORRECTABLE_MASK + 0x200000,
+ smnPCS_XGMI3X16_PCS_ERROR_NONCORRECTABLE_MASK + 0x300000,
+ smnPCS_XGMI3X16_PCS_ERROR_NONCORRECTABLE_MASK + 0x400000,
+ smnPCS_XGMI3X16_PCS_ERROR_NONCORRECTABLE_MASK + 0x500000,
+ smnPCS_XGMI3X16_PCS_ERROR_NONCORRECTABLE_MASK + 0x600000,
+ smnPCS_XGMI3X16_PCS_ERROR_NONCORRECTABLE_MASK + 0x700000
+};
+
static const int walf_pcs_err_status_reg_aldebaran[] = {
smnPCS_GOPX1_PCS_ERROR_STATUS,
smnPCS_GOPX1_PCS_ERROR_STATUS + 0x100000
};
+static const int walf_pcs_err_noncorrectable_mask_reg_aldebaran[] = {
+ smnPCS_GOPX1_PCS_ERROR_NONCORRECTABLE_MASK,
+ smnPCS_GOPX1_PCS_ERROR_NONCORRECTABLE_MASK + 0x100000
+};
+
static const struct amdgpu_pcs_ras_field xgmi_pcs_ras_fields[] = {
{"XGMI PCS DataLossErr",
SOC15_REG_FIELD(XGMI0_PCS_GOPX16_PCS_ERROR_STATUS, DataLossErr)},
@@ -162,6 +181,67 @@ static const struct amdgpu_pcs_ras_field wafl_pcs_ras_fields[] = {
SOC15_REG_FIELD(PCS_GOPX1_0_PCS_GOPX1_PCS_ERROR_STATUS, RecoveryRelockAttemptErr)},
};
+static const struct amdgpu_pcs_ras_field xgmi3x16_pcs_ras_fields[] = {
+ {"XGMI3X16 PCS DataLossErr",
+ SOC15_REG_FIELD(PCS_XGMI3X16_PCS_ERROR_STATUS, DataLossErr)},
+ {"XGMI3X16 PCS TrainingErr",
+ SOC15_REG_FIELD(PCS_XGMI3X16_PCS_ERROR_STATUS, TrainingErr)},
+ {"XGMI3X16 PCS FlowCtrlAckErr",
+ SOC15_REG_FIELD(PCS_XGMI3X16_PCS_ERROR_STATUS, FlowCtrlAckErr)},
+ {"XGMI3X16 PCS RxFifoUnderflowErr",
+ SOC15_REG_FIELD(PCS_XGMI3X16_PCS_ERROR_STATUS, RxFifoUnderflowErr)},
+ {"XGMI3X16 PCS RxFifoOverflowErr",
+ SOC15_REG_FIELD(PCS_XGMI3X16_PCS_ERROR_STATUS, RxFifoOverflowErr)},
+ {"XGMI3X16 PCS CRCErr",
+ SOC15_REG_FIELD(PCS_XGMI3X16_PCS_ERROR_STATUS, CRCErr)},
+ {"XGMI3X16 PCS BERExceededErr",
+ SOC15_REG_FIELD(PCS_XGMI3X16_PCS_ERROR_STATUS, BERExceededErr)},
+ {"XGMI3X16 PCS TxVcidDataErr",
+ SOC15_REG_FIELD(PCS_XGMI3X16_PCS_ERROR_STATUS, TxVcidDataErr)},
+ {"XGMI3X16 PCS ReplayBufParityErr",
+ SOC15_REG_FIELD(PCS_XGMI3X16_PCS_ERROR_STATUS, ReplayBufParityErr)},
+ {"XGMI3X16 PCS DataParityErr",
+ SOC15_REG_FIELD(PCS_XGMI3X16_PCS_ERROR_STATUS, DataParityErr)},
+ {"XGMI3X16 PCS ReplayFifoOverflowErr",
+ SOC15_REG_FIELD(PCS_XGMI3X16_PCS_ERROR_STATUS, ReplayFifoOverflowErr)},
+ {"XGMI3X16 PCS ReplayFifoUnderflowErr",
+ SOC15_REG_FIELD(PCS_XGMI3X16_PCS_ERROR_STATUS, ReplayFifoUnderflowErr)},
+ {"XGMI3X16 PCS ElasticFifoOverflowErr",
+ SOC15_REG_FIELD(PCS_XGMI3X16_PCS_ERROR_STATUS, ElasticFifoOverflowErr)},
+ {"XGMI3X16 PCS DeskewErr",
+ SOC15_REG_FIELD(PCS_XGMI3X16_PCS_ERROR_STATUS, DeskewErr)},
+ {"XGMI3X16 PCS FlowCtrlCRCErr",
+ SOC15_REG_FIELD(PCS_XGMI3X16_PCS_ERROR_STATUS, FlowCtrlCRCErr)},
+ {"XGMI3X16 PCS DataStartupLimitErr",
+ SOC15_REG_FIELD(PCS_XGMI3X16_PCS_ERROR_STATUS, DataStartupLimitErr)},
+ {"XGMI3X16 PCS FCInitTimeoutErr",
+ SOC15_REG_FIELD(PCS_XGMI3X16_PCS_ERROR_STATUS, FCInitTimeoutErr)},
+ {"XGMI3X16 PCS RecoveryTimeoutErr",
+ SOC15_REG_FIELD(PCS_XGMI3X16_PCS_ERROR_STATUS, RecoveryTimeoutErr)},
+ {"XGMI3X16 PCS ReadySerialTimeoutErr",
+ SOC15_REG_FIELD(PCS_XGMI3X16_PCS_ERROR_STATUS, ReadySerialTimeoutErr)},
+ {"XGMI3X16 PCS ReadySerialAttemptErr",
+ SOC15_REG_FIELD(PCS_XGMI3X16_PCS_ERROR_STATUS, ReadySerialAttemptErr)},
+ {"XGMI3X16 PCS RecoveryAttemptErr",
+ SOC15_REG_FIELD(PCS_XGMI3X16_PCS_ERROR_STATUS, RecoveryAttemptErr)},
+ {"XGMI3X16 PCS RecoveryRelockAttemptErr",
+ SOC15_REG_FIELD(PCS_XGMI3X16_PCS_ERROR_STATUS, RecoveryRelockAttemptErr)},
+ {"XGMI3X16 PCS ReplayAttemptErr",
+ SOC15_REG_FIELD(PCS_XGMI3X16_PCS_ERROR_STATUS, ReplayAttemptErr)},
+ {"XGMI3X16 PCS SyncHdrErr",
+ SOC15_REG_FIELD(PCS_XGMI3X16_PCS_ERROR_STATUS, SyncHdrErr)},
+ {"XGMI3X16 PCS TxReplayTimeoutErr",
+ SOC15_REG_FIELD(PCS_XGMI3X16_PCS_ERROR_STATUS, TxReplayTimeoutErr)},
+ {"XGMI3X16 PCS RxReplayTimeoutErr",
+ SOC15_REG_FIELD(PCS_XGMI3X16_PCS_ERROR_STATUS, RxReplayTimeoutErr)},
+ {"XGMI3X16 PCS LinkSubTxTimeoutErr",
+ SOC15_REG_FIELD(PCS_XGMI3X16_PCS_ERROR_STATUS, LinkSubTxTimeoutErr)},
+ {"XGMI3X16 PCS LinkSubRxTimeoutErr",
+ SOC15_REG_FIELD(PCS_XGMI3X16_PCS_ERROR_STATUS, LinkSubRxTimeoutErr)},
+ {"XGMI3X16 PCS RxCMDPktErr",
+ SOC15_REG_FIELD(PCS_XGMI3X16_PCS_ERROR_STATUS, RxCMDPktErr)},
+};
+
/**
* DOC: AMDGPU XGMI Support
*
@@ -228,7 +308,7 @@ static const struct sysfs_ops amdgpu_xgmi_hive_ops = {
.show = amdgpu_xgmi_show_attrs,
};
-struct kobj_type amdgpu_xgmi_hive_type = {
+static const struct kobj_type amdgpu_xgmi_hive_type = {
.release = amdgpu_xgmi_hive_release,
.sysfs_ops = &amdgpu_xgmi_hive_ops,
.default_groups = amdgpu_xgmi_hive_groups,
@@ -386,7 +466,6 @@ struct amdgpu_hive_info *amdgpu_get_xgmi_hive(struct amdgpu_device *adev)
if (ret) {
dev_err(adev->dev, "XGMI: failed initializing kobject for xgmi hive\n");
kobject_put(&hive->kobj);
- kfree(hive);
hive = NULL;
goto pro_end;
}
@@ -410,7 +489,6 @@ struct amdgpu_hive_info *amdgpu_get_xgmi_hive(struct amdgpu_device *adev)
dev_err(adev->dev, "XGMI: failed initializing reset domain for xgmi hive\n");
ret = -ENOMEM;
kobject_put(&hive->kobj);
- kfree(hive);
hive = NULL;
goto pro_end;
}
@@ -811,39 +889,47 @@ static void amdgpu_xgmi_reset_ras_error_count(struct amdgpu_device *adev)
static int amdgpu_xgmi_query_pcs_error_status(struct amdgpu_device *adev,
uint32_t value,
+ uint32_t mask_value,
uint32_t *ue_count,
uint32_t *ce_count,
- bool is_xgmi_pcs)
+ bool is_xgmi_pcs,
+ bool check_mask)
{
int i;
- int ue_cnt;
+ int ue_cnt = 0;
+ const struct amdgpu_pcs_ras_field *pcs_ras_fields = NULL;
+ uint32_t field_array_size = 0;
if (is_xgmi_pcs) {
- /* query xgmi pcs error status,
- * only ue is supported */
- for (i = 0; i < ARRAY_SIZE(xgmi_pcs_ras_fields); i ++) {
- ue_cnt = (value &
- xgmi_pcs_ras_fields[i].pcs_err_mask) >>
- xgmi_pcs_ras_fields[i].pcs_err_shift;
- if (ue_cnt) {
- dev_info(adev->dev, "%s detected\n",
- xgmi_pcs_ras_fields[i].err_name);
- *ue_count += ue_cnt;
- }
+ if (adev->ip_versions[XGMI_HWIP][0] == IP_VERSION(6, 1, 0)) {
+ pcs_ras_fields = &xgmi3x16_pcs_ras_fields[0];
+ field_array_size = ARRAY_SIZE(xgmi3x16_pcs_ras_fields);
+ } else {
+ pcs_ras_fields = &xgmi_pcs_ras_fields[0];
+ field_array_size = ARRAY_SIZE(xgmi_pcs_ras_fields);
}
} else {
- /* query wafl pcs error status,
- * only ue is supported */
- for (i = 0; i < ARRAY_SIZE(wafl_pcs_ras_fields); i++) {
- ue_cnt = (value &
- wafl_pcs_ras_fields[i].pcs_err_mask) >>
- wafl_pcs_ras_fields[i].pcs_err_shift;
- if (ue_cnt) {
- dev_info(adev->dev, "%s detected\n",
- wafl_pcs_ras_fields[i].err_name);
- *ue_count += ue_cnt;
- }
+ pcs_ras_fields = &wafl_pcs_ras_fields[0];
+ field_array_size = ARRAY_SIZE(wafl_pcs_ras_fields);
+ }
+
+ if (check_mask)
+ value = value & ~mask_value;
+
+ /* query xgmi/walf pcs error status,
+ * only ue is supported */
+ for (i = 0; value && i < field_array_size; i++) {
+ ue_cnt = (value &
+ pcs_ras_fields[i].pcs_err_mask) >>
+ pcs_ras_fields[i].pcs_err_shift;
+ if (ue_cnt) {
+ dev_info(adev->dev, "%s detected\n",
+ pcs_ras_fields[i].err_name);
+ *ue_count += ue_cnt;
}
+
+ /* reset bit value if the bit is checked */
+ value &= ~(pcs_ras_fields[i].pcs_err_mask);
}
return 0;
@@ -854,7 +940,7 @@ static void amdgpu_xgmi_query_ras_error_count(struct amdgpu_device *adev,
{
struct ras_err_data *err_data = (struct ras_err_data *)ras_error_status;
int i;
- uint32_t data;
+ uint32_t data, mask_data = 0;
uint32_t ue_cnt = 0, ce_cnt = 0;
if (!amdgpu_ras_is_supported(adev, AMDGPU_RAS_BLOCK__XGMI_WAFL))
@@ -869,15 +955,15 @@ static void amdgpu_xgmi_query_ras_error_count(struct amdgpu_device *adev,
for (i = 0; i < ARRAY_SIZE(xgmi_pcs_err_status_reg_arct); i++) {
data = RREG32_PCIE(xgmi_pcs_err_status_reg_arct[i]);
if (data)
- amdgpu_xgmi_query_pcs_error_status(adev,
- data, &ue_cnt, &ce_cnt, true);
+ amdgpu_xgmi_query_pcs_error_status(adev, data,
+ mask_data, &ue_cnt, &ce_cnt, true, false);
}
/* check wafl pcs error */
for (i = 0; i < ARRAY_SIZE(wafl_pcs_err_status_reg_arct); i++) {
data = RREG32_PCIE(wafl_pcs_err_status_reg_arct[i]);
if (data)
- amdgpu_xgmi_query_pcs_error_status(adev,
- data, &ue_cnt, &ce_cnt, false);
+ amdgpu_xgmi_query_pcs_error_status(adev, data,
+ mask_data, &ue_cnt, &ce_cnt, false, false);
}
break;
case CHIP_VEGA20:
@@ -885,31 +971,35 @@ static void amdgpu_xgmi_query_ras_error_count(struct amdgpu_device *adev,
for (i = 0; i < ARRAY_SIZE(xgmi_pcs_err_status_reg_vg20); i++) {
data = RREG32_PCIE(xgmi_pcs_err_status_reg_vg20[i]);
if (data)
- amdgpu_xgmi_query_pcs_error_status(adev,
- data, &ue_cnt, &ce_cnt, true);
+ amdgpu_xgmi_query_pcs_error_status(adev, data,
+ mask_data, &ue_cnt, &ce_cnt, true, false);
}
/* check wafl pcs error */
for (i = 0; i < ARRAY_SIZE(wafl_pcs_err_status_reg_vg20); i++) {
data = RREG32_PCIE(wafl_pcs_err_status_reg_vg20[i]);
if (data)
- amdgpu_xgmi_query_pcs_error_status(adev,
- data, &ue_cnt, &ce_cnt, false);
+ amdgpu_xgmi_query_pcs_error_status(adev, data,
+ mask_data, &ue_cnt, &ce_cnt, false, false);
}
break;
case CHIP_ALDEBARAN:
/* check xgmi3x16 pcs error */
for (i = 0; i < ARRAY_SIZE(xgmi3x16_pcs_err_status_reg_aldebaran); i++) {
data = RREG32_PCIE(xgmi3x16_pcs_err_status_reg_aldebaran[i]);
+ mask_data =
+ RREG32_PCIE(xgmi3x16_pcs_err_noncorrectable_mask_reg_aldebaran[i]);
if (data)
- amdgpu_xgmi_query_pcs_error_status(adev,
- data, &ue_cnt, &ce_cnt, true);
+ amdgpu_xgmi_query_pcs_error_status(adev, data,
+ mask_data, &ue_cnt, &ce_cnt, true, true);
}
/* check wafl pcs error */
for (i = 0; i < ARRAY_SIZE(walf_pcs_err_status_reg_aldebaran); i++) {
data = RREG32_PCIE(walf_pcs_err_status_reg_aldebaran[i]);
+ mask_data =
+ RREG32_PCIE(walf_pcs_err_noncorrectable_mask_reg_aldebaran[i]);
if (data)
- amdgpu_xgmi_query_pcs_error_status(adev,
- data, &ue_cnt, &ce_cnt, false);
+ amdgpu_xgmi_query_pcs_error_status(adev, data,
+ mask_data, &ue_cnt, &ce_cnt, false, true);
}
break;
default:
@@ -958,12 +1048,30 @@ struct amdgpu_ras_block_hw_ops xgmi_ras_hw_ops = {
struct amdgpu_xgmi_ras xgmi_ras = {
.ras_block = {
- .ras_comm = {
- .name = "xgmi_wafl",
- .block = AMDGPU_RAS_BLOCK__XGMI_WAFL,
- .type = AMDGPU_RAS_ERROR__MULTI_UNCORRECTABLE,
- },
.hw_ops = &xgmi_ras_hw_ops,
.ras_late_init = amdgpu_xgmi_ras_late_init,
},
};
+
+int amdgpu_xgmi_ras_sw_init(struct amdgpu_device *adev)
+{
+ int err;
+ struct amdgpu_xgmi_ras *ras;
+
+ if (!adev->gmc.xgmi.ras)
+ return 0;
+
+ ras = adev->gmc.xgmi.ras;
+ err = amdgpu_ras_register_ras_block(adev, &ras->ras_block);
+ if (err) {
+ dev_err(adev->dev, "Failed to register xgmi_wafl_pcs ras block!\n");
+ return err;
+ }
+
+ strcpy(ras->ras_block.ras_comm.name, "xgmi_wafl");
+ ras->ras_block.ras_comm.block = AMDGPU_RAS_BLOCK__XGMI_WAFL;
+ ras->ras_block.ras_comm.type = AMDGPU_RAS_ERROR__MULTI_UNCORRECTABLE;
+ adev->gmc.xgmi.ras_if = &ras->ras_block.ras_comm;
+
+ return 0;
+}
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_xgmi.h b/drivers/gpu/drm/amd/amdgpu/amdgpu_xgmi.h
index 30dcc1681b4e..86fbf56938f4 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgpu_xgmi.h
+++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_xgmi.h
@@ -73,5 +73,6 @@ static inline bool amdgpu_xgmi_same_hive(struct amdgpu_device *adev,
adev->gmc.xgmi.hive_id &&
adev->gmc.xgmi.hive_id == bo_adev->gmc.xgmi.hive_id);
}
+int amdgpu_xgmi_ras_sw_init(struct amdgpu_device *adev);
#endif
diff --git a/drivers/gpu/drm/amd/amdgpu/amdgv_sriovmsg.h b/drivers/gpu/drm/amd/amdgpu/amdgv_sriovmsg.h
index 6c97148ca0ed..24d42d24e6a0 100644
--- a/drivers/gpu/drm/amd/amdgpu/amdgv_sriovmsg.h
+++ b/drivers/gpu/drm/amd/amdgpu/amdgv_sriovmsg.h
@@ -93,7 +93,8 @@ union amd_sriov_msg_feature_flags {
uint32_t mm_bw_management : 1;
uint32_t pp_one_vf_mode : 1;
uint32_t reg_indirect_acc : 1;
- uint32_t reserved : 26;
+ uint32_t av1_support : 1;
+ uint32_t reserved : 25;
} flags;
uint32_t all;
};
diff --git a/drivers/gpu/drm/amd/amdgpu/atombios_crtc.c b/drivers/gpu/drm/amd/amdgpu/atombios_crtc.c
index afad094f84c2..10098fdd33fc 100644
--- a/drivers/gpu/drm/amd/amdgpu/atombios_crtc.c
+++ b/drivers/gpu/drm/amd/amdgpu/atombios_crtc.c
@@ -24,7 +24,6 @@
* Alex Deucher
*/
-#include <drm/drm_crtc_helper.h>
#include <drm/amdgpu_drm.h>
#include <drm/drm_fixed.h>
#include "amdgpu.h"
diff --git a/drivers/gpu/drm/amd/amdgpu/atombios_encoders.c b/drivers/gpu/drm/amd/amdgpu/atombios_encoders.c
index 6be9ac2b9c5b..d95b2dc78063 100644
--- a/drivers/gpu/drm/amd/amdgpu/atombios_encoders.c
+++ b/drivers/gpu/drm/amd/amdgpu/atombios_encoders.c
@@ -28,7 +28,6 @@
#include <acpi/video.h>
-#include <drm/drm_crtc_helper.h>
#include <drm/amdgpu_drm.h>
#include "amdgpu.h"
#include "amdgpu_connectors.h"
@@ -2081,8 +2080,11 @@ amdgpu_atombios_encoder_get_lcd_info(struct amdgpu_encoder *encoder)
}
}
record += fake_edid_record->ucFakeEDIDLength ?
- fake_edid_record->ucFakeEDIDLength + 2 :
- sizeof(ATOM_FAKE_EDID_PATCH_RECORD);
+ struct_size(fake_edid_record,
+ ucFakeEDIDString,
+ fake_edid_record->ucFakeEDIDLength) :
+ /* empty fake edid record must be 3 bytes long */
+ sizeof(ATOM_FAKE_EDID_PATCH_RECORD) + 1;
break;
case LCD_PANEL_RESOLUTION_RECORD_TYPE:
panel_res_record = (ATOM_PANEL_RESOLUTION_PATCH_RECORD *)record;
diff --git a/drivers/gpu/drm/amd/amdgpu/cik_sdma.c b/drivers/gpu/drm/amd/amdgpu/cik_sdma.c
index cbca9866645c..67d16236b216 100644
--- a/drivers/gpu/drm/amd/amdgpu/cik_sdma.c
+++ b/drivers/gpu/drm/amd/amdgpu/cik_sdma.c
@@ -73,10 +73,9 @@ u32 amdgpu_cik_gpu_check_soft_reset(struct amdgpu_device *adev);
static void cik_sdma_free_microcode(struct amdgpu_device *adev)
{
int i;
- for (i = 0; i < adev->sdma.num_instances; i++) {
- release_firmware(adev->sdma.instance[i].fw);
- adev->sdma.instance[i].fw = NULL;
- }
+
+ for (i = 0; i < adev->sdma.num_instances; i++)
+ amdgpu_ucode_release(&adev->sdma.instance[i].fw);
}
/*
@@ -137,18 +136,15 @@ static int cik_sdma_init_microcode(struct amdgpu_device *adev)
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_sdma.bin", chip_name);
else
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_sdma1.bin", chip_name);
- err = request_firmware(&adev->sdma.instance[i].fw, fw_name, adev->dev);
+ err = amdgpu_ucode_request(adev, &adev->sdma.instance[i].fw, fw_name);
if (err)
goto out;
- err = amdgpu_ucode_validate(adev->sdma.instance[i].fw);
}
out:
if (err) {
pr_err("cik_sdma: Failed to load firmware \"%s\"\n", fw_name);
- for (i = 0; i < adev->sdma.num_instances; i++) {
- release_firmware(adev->sdma.instance[i].fw);
- adev->sdma.instance[i].fw = NULL;
- }
+ for (i = 0; i < adev->sdma.num_instances; i++)
+ amdgpu_ucode_release(&adev->sdma.instance[i].fw);
}
return err;
}
diff --git a/drivers/gpu/drm/amd/amdgpu/dce_v10_0.c b/drivers/gpu/drm/amd/amdgpu/dce_v10_0.c
index 288fce7dc0ed..9a24ed463abd 100644
--- a/drivers/gpu/drm/amd/amdgpu/dce_v10_0.c
+++ b/drivers/gpu/drm/amd/amdgpu/dce_v10_0.c
@@ -22,6 +22,8 @@
*/
#include <drm/drm_fourcc.h>
+#include <drm/drm_modeset_helper.h>
+#include <drm/drm_modeset_helper_vtables.h>
#include <drm/drm_vblank.h>
#include "amdgpu.h"
@@ -2800,8 +2802,6 @@ static int dce_v10_0_sw_init(void *handle)
adev_to_drm(adev)->mode_config.fb_modifiers_not_supported = true;
- adev_to_drm(adev)->mode_config.fb_base = adev->gmc.aper_base;
-
r = amdgpu_display_modeset_create_props(adev);
if (r)
return r;
@@ -2830,6 +2830,17 @@ static int dce_v10_0_sw_init(void *handle)
if (r)
return r;
+ /* Disable vblank IRQs aggressively for power-saving */
+ /* XXX: can this be enabled for DC? */
+ adev_to_drm(adev)->vblank_disable_immediate = true;
+
+ r = drm_vblank_init(adev_to_drm(adev), adev->mode_info.num_crtc);
+ if (r)
+ return r;
+
+ INIT_DELAYED_WORK(&adev->hotplug_work,
+ amdgpu_display_hotplug_work_func);
+
drm_kms_helper_poll_init(adev_to_drm(adev));
adev->mode_info.mode_config_initialized = true;
@@ -2892,6 +2903,8 @@ static int dce_v10_0_hw_fini(void *handle)
dce_v10_0_pageflip_interrupt_fini(adev);
+ flush_delayed_work(&adev->hotplug_work);
+
return 0;
}
@@ -3290,7 +3303,7 @@ static int dce_v10_0_hpd_irq(struct amdgpu_device *adev,
if (disp_int & mask) {
dce_v10_0_hpd_int_ack(adev, hpd);
- schedule_work(&adev->hotplug_work);
+ schedule_delayed_work(&adev->hotplug_work, 0);
DRM_DEBUG("IH: HPD%d\n", hpd + 1);
}
diff --git a/drivers/gpu/drm/amd/amdgpu/dce_v11_0.c b/drivers/gpu/drm/amd/amdgpu/dce_v11_0.c
index cbe5250b31cb..c14b70350a51 100644
--- a/drivers/gpu/drm/amd/amdgpu/dce_v11_0.c
+++ b/drivers/gpu/drm/amd/amdgpu/dce_v11_0.c
@@ -22,6 +22,8 @@
*/
#include <drm/drm_fourcc.h>
+#include <drm/drm_modeset_helper.h>
+#include <drm/drm_modeset_helper_vtables.h>
#include <drm/drm_vblank.h>
#include "amdgpu.h"
@@ -2918,8 +2920,6 @@ static int dce_v11_0_sw_init(void *handle)
adev_to_drm(adev)->mode_config.fb_modifiers_not_supported = true;
- adev_to_drm(adev)->mode_config.fb_base = adev->gmc.aper_base;
-
r = amdgpu_display_modeset_create_props(adev);
if (r)
return r;
@@ -2949,6 +2949,17 @@ static int dce_v11_0_sw_init(void *handle)
if (r)
return r;
+ /* Disable vblank IRQs aggressively for power-saving */
+ /* XXX: can this be enabled for DC? */
+ adev_to_drm(adev)->vblank_disable_immediate = true;
+
+ r = drm_vblank_init(adev_to_drm(adev), adev->mode_info.num_crtc);
+ if (r)
+ return r;
+
+ INIT_DELAYED_WORK(&adev->hotplug_work,
+ amdgpu_display_hotplug_work_func);
+
drm_kms_helper_poll_init(adev_to_drm(adev));
adev->mode_info.mode_config_initialized = true;
@@ -3022,6 +3033,8 @@ static int dce_v11_0_hw_fini(void *handle)
dce_v11_0_pageflip_interrupt_fini(adev);
+ flush_delayed_work(&adev->hotplug_work);
+
return 0;
}
@@ -3414,7 +3427,7 @@ static int dce_v11_0_hpd_irq(struct amdgpu_device *adev,
if (disp_int & mask) {
dce_v11_0_hpd_int_ack(adev, hpd);
- schedule_work(&adev->hotplug_work);
+ schedule_delayed_work(&adev->hotplug_work, 0);
DRM_DEBUG("IH: HPD%d\n", hpd + 1);
}
diff --git a/drivers/gpu/drm/amd/amdgpu/dce_v6_0.c b/drivers/gpu/drm/amd/amdgpu/dce_v6_0.c
index b1c44fab074f..7f85ba5b726f 100644
--- a/drivers/gpu/drm/amd/amdgpu/dce_v6_0.c
+++ b/drivers/gpu/drm/amd/amdgpu/dce_v6_0.c
@@ -24,6 +24,8 @@
#include <linux/pci.h>
#include <drm/drm_fourcc.h>
+#include <drm/drm_modeset_helper.h>
+#include <drm/drm_modeset_helper_vtables.h>
#include <drm/drm_vblank.h>
#include "amdgpu.h"
@@ -2675,7 +2677,6 @@ static int dce_v6_0_sw_init(void *handle)
adev_to_drm(adev)->mode_config.preferred_depth = 24;
adev_to_drm(adev)->mode_config.prefer_shadow = 1;
adev_to_drm(adev)->mode_config.fb_modifiers_not_supported = true;
- adev_to_drm(adev)->mode_config.fb_base = adev->gmc.aper_base;
r = amdgpu_display_modeset_create_props(adev);
if (r)
@@ -2706,6 +2707,18 @@ static int dce_v6_0_sw_init(void *handle)
if (r)
return r;
+ /* Disable vblank IRQs aggressively for power-saving */
+ /* XXX: can this be enabled for DC? */
+ adev_to_drm(adev)->vblank_disable_immediate = true;
+
+ r = drm_vblank_init(adev_to_drm(adev), adev->mode_info.num_crtc);
+ if (r)
+ return r;
+
+ /* Pre-DCE11 */
+ INIT_DELAYED_WORK(&adev->hotplug_work,
+ amdgpu_display_hotplug_work_func);
+
drm_kms_helper_poll_init(adev_to_drm(adev));
return r;
@@ -2764,6 +2777,8 @@ static int dce_v6_0_hw_fini(void *handle)
dce_v6_0_pageflip_interrupt_fini(adev);
+ flush_delayed_work(&adev->hotplug_work);
+
return 0;
}
@@ -3089,7 +3104,7 @@ static int dce_v6_0_hpd_irq(struct amdgpu_device *adev,
tmp = RREG32(mmDC_HPD1_INT_CONTROL + hpd_offsets[hpd]);
tmp |= DC_HPD1_INT_CONTROL__DC_HPD1_INT_ACK_MASK;
WREG32(mmDC_HPD1_INT_CONTROL + hpd_offsets[hpd], tmp);
- schedule_work(&adev->hotplug_work);
+ schedule_delayed_work(&adev->hotplug_work, 0);
DRM_DEBUG("IH: HPD%d\n", hpd + 1);
}
diff --git a/drivers/gpu/drm/amd/amdgpu/dce_v8_0.c b/drivers/gpu/drm/amd/amdgpu/dce_v8_0.c
index a22b45c92792..d421a268c9ff 100644
--- a/drivers/gpu/drm/amd/amdgpu/dce_v8_0.c
+++ b/drivers/gpu/drm/amd/amdgpu/dce_v8_0.c
@@ -22,6 +22,8 @@
*/
#include <drm/drm_fourcc.h>
+#include <drm/drm_modeset_helper.h>
+#include <drm/drm_modeset_helper_vtables.h>
#include <drm/drm_vblank.h>
#include "amdgpu.h"
@@ -2701,8 +2703,6 @@ static int dce_v8_0_sw_init(void *handle)
adev_to_drm(adev)->mode_config.fb_modifiers_not_supported = true;
- adev_to_drm(adev)->mode_config.fb_base = adev->gmc.aper_base;
-
r = amdgpu_display_modeset_create_props(adev);
if (r)
return r;
@@ -2731,6 +2731,18 @@ static int dce_v8_0_sw_init(void *handle)
if (r)
return r;
+ /* Disable vblank IRQs aggressively for power-saving */
+ /* XXX: can this be enabled for DC? */
+ adev_to_drm(adev)->vblank_disable_immediate = true;
+
+ r = drm_vblank_init(adev_to_drm(adev), adev->mode_info.num_crtc);
+ if (r)
+ return r;
+
+ /* Pre-DCE11 */
+ INIT_DELAYED_WORK(&adev->hotplug_work,
+ amdgpu_display_hotplug_work_func);
+
drm_kms_helper_poll_init(adev_to_drm(adev));
adev->mode_info.mode_config_initialized = true;
@@ -2791,6 +2803,8 @@ static int dce_v8_0_hw_fini(void *handle)
dce_v8_0_pageflip_interrupt_fini(adev);
+ flush_delayed_work(&adev->hotplug_work);
+
return 0;
}
@@ -3182,7 +3196,7 @@ static int dce_v8_0_hpd_irq(struct amdgpu_device *adev,
tmp = RREG32(mmDC_HPD1_INT_CONTROL + hpd_offsets[hpd]);
tmp |= DC_HPD1_INT_CONTROL__DC_HPD1_INT_ACK_MASK;
WREG32(mmDC_HPD1_INT_CONTROL + hpd_offsets[hpd], tmp);
- schedule_work(&adev->hotplug_work);
+ schedule_delayed_work(&adev->hotplug_work, 0);
DRM_DEBUG("IH: HPD%d\n", hpd + 1);
}
diff --git a/drivers/gpu/drm/amd/amdgpu/df_v1_7.c b/drivers/gpu/drm/amd/amdgpu/df_v1_7.c
index b991609f46c1..5dfab80ffff2 100644
--- a/drivers/gpu/drm/amd/amdgpu/df_v1_7.c
+++ b/drivers/gpu/drm/amd/amdgpu/df_v1_7.c
@@ -94,7 +94,7 @@ static void df_v1_7_update_medium_grain_clock_gating(struct amdgpu_device *adev,
WREG32_SOC15(DF, 0, mmDF_PIE_AON0_DfGlobalClkGater, tmp);
}
- /* Exit boradcast mode */
+ /* Exit broadcast mode */
adev->df.funcs->enable_broadcast_mode(adev, false);
}
diff --git a/drivers/gpu/drm/amd/amdgpu/df_v4_3.c b/drivers/gpu/drm/amd/amdgpu/df_v4_3.c
new file mode 100644
index 000000000000..e8b9e19ede2e
--- /dev/null
+++ b/drivers/gpu/drm/amd/amdgpu/df_v4_3.c
@@ -0,0 +1,61 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ */
+#include "amdgpu.h"
+#include "df_v4_3.h"
+
+#include "df/df_4_3_offset.h"
+#include "df/df_4_3_sh_mask.h"
+
+static bool df_v4_3_query_ras_poison_mode(struct amdgpu_device *adev)
+{
+ uint32_t hw_assert_msklo, hw_assert_mskhi;
+ uint32_t v0, v1, v28, v31;
+
+ hw_assert_msklo = RREG32_SOC15(DF, 0,
+ regDF_CS_UMC_AON0_HardwareAssertMaskLow);
+ hw_assert_mskhi = RREG32_SOC15(DF, 0,
+ regDF_NCS_PG0_HardwareAssertMaskHigh);
+
+ v0 = REG_GET_FIELD(hw_assert_msklo,
+ DF_CS_UMC_AON0_HardwareAssertMaskLow, HWAssertMsk0);
+ v1 = REG_GET_FIELD(hw_assert_msklo,
+ DF_CS_UMC_AON0_HardwareAssertMaskLow, HWAssertMsk1);
+ v28 = REG_GET_FIELD(hw_assert_mskhi,
+ DF_NCS_PG0_HardwareAssertMaskHigh, HWAssertMsk28);
+ v31 = REG_GET_FIELD(hw_assert_mskhi,
+ DF_NCS_PG0_HardwareAssertMaskHigh, HWAssertMsk31);
+
+ if (v0 && v1 && v28 && v31)
+ return true;
+ else if (!v0 && !v1 && !v28 && !v31)
+ return false;
+ else {
+ dev_warn(adev->dev, "DF poison setting is inconsistent(%d:%d:%d:%d)!\n",
+ v0, v1, v28, v31);
+ return false;
+ }
+}
+
+const struct amdgpu_df_funcs df_v4_3_funcs = {
+ .query_ras_poison_mode = df_v4_3_query_ras_poison_mode,
+};
diff --git a/drivers/gpu/drm/amd/display/dc/link/link_hwss_hpo_frl.h b/drivers/gpu/drm/amd/amdgpu/df_v4_3.h
index ea8d9760132f..06ef0724edd3 100644
--- a/drivers/gpu/drm/amd/display/dc/link/link_hwss_hpo_frl.h
+++ b/drivers/gpu/drm/amd/amdgpu/df_v4_3.h
@@ -19,16 +19,13 @@
* ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
* OTHER DEALINGS IN THE SOFTWARE.
*
- * Authors: AMD
- *
*/
-#ifndef __LINK_HWSS_HPO_FRL_H__
-#define __LINK_HWSS_HPO_FRL_H__
-#include "link_hwss.h"
+#ifndef __DF_V4_3_H__
+#define __DF_V4_3_H__
+
+#include "soc15_common.h"
-bool can_use_hpo_frl_link_hwss(const struct dc_link *link,
- const struct link_resource *link_res);
-const struct link_hwss *get_hpo_frl_link_hwss(void);
+extern const struct amdgpu_df_funcs df_v4_3_funcs;
-#endif /* __LINK_HWSS_HPO_FRL_H__ */
+#endif
diff --git a/drivers/gpu/drm/amd/amdgpu/gfx_v10_0.c b/drivers/gpu/drm/amd/amdgpu/gfx_v10_0.c
index af94ac580d3e..f5b5ce1051a2 100644
--- a/drivers/gpu/drm/amd/amdgpu/gfx_v10_0.c
+++ b/drivers/gpu/drm/amd/amdgpu/gfx_v10_0.c
@@ -3891,18 +3891,12 @@ err1:
static void gfx_v10_0_free_microcode(struct amdgpu_device *adev)
{
- release_firmware(adev->gfx.pfp_fw);
- adev->gfx.pfp_fw = NULL;
- release_firmware(adev->gfx.me_fw);
- adev->gfx.me_fw = NULL;
- release_firmware(adev->gfx.ce_fw);
- adev->gfx.ce_fw = NULL;
- release_firmware(adev->gfx.rlc_fw);
- adev->gfx.rlc_fw = NULL;
- release_firmware(adev->gfx.mec_fw);
- adev->gfx.mec_fw = NULL;
- release_firmware(adev->gfx.mec2_fw);
- adev->gfx.mec2_fw = NULL;
+ amdgpu_ucode_release(&adev->gfx.pfp_fw);
+ amdgpu_ucode_release(&adev->gfx.me_fw);
+ amdgpu_ucode_release(&adev->gfx.ce_fw);
+ amdgpu_ucode_release(&adev->gfx.rlc_fw);
+ amdgpu_ucode_release(&adev->gfx.mec_fw);
+ amdgpu_ucode_release(&adev->gfx.mec2_fw);
kfree(adev->gfx.rlc.register_list_format);
}
@@ -3974,9 +3968,9 @@ static void gfx_v10_0_check_gfxoff_flag(struct amdgpu_device *adev)
static int gfx_v10_0_init_microcode(struct amdgpu_device *adev)
{
- const char *chip_name;
char fw_name[40];
- char *wks = "";
+ char ucode_prefix[30];
+ const char *wks = "";
int err;
const struct rlc_firmware_header_v2_0 *rlc_hdr;
uint16_t version_major;
@@ -3984,90 +3978,40 @@ static int gfx_v10_0_init_microcode(struct amdgpu_device *adev)
DRM_DEBUG("\n");
- switch (adev->ip_versions[GC_HWIP][0]) {
- case IP_VERSION(10, 1, 10):
- chip_name = "navi10";
- break;
- case IP_VERSION(10, 1, 1):
- chip_name = "navi14";
- if (!(adev->pdev->device == 0x7340 &&
- adev->pdev->revision != 0x00))
- wks = "_wks";
- break;
- case IP_VERSION(10, 1, 2):
- chip_name = "navi12";
- break;
- case IP_VERSION(10, 3, 0):
- chip_name = "sienna_cichlid";
- break;
- case IP_VERSION(10, 3, 2):
- chip_name = "navy_flounder";
- break;
- case IP_VERSION(10, 3, 1):
- chip_name = "vangogh";
- break;
- case IP_VERSION(10, 3, 4):
- chip_name = "dimgrey_cavefish";
- break;
- case IP_VERSION(10, 3, 5):
- chip_name = "beige_goby";
- break;
- case IP_VERSION(10, 3, 3):
- chip_name = "yellow_carp";
- break;
- case IP_VERSION(10, 3, 6):
- chip_name = "gc_10_3_6";
- break;
- case IP_VERSION(10, 1, 3):
- case IP_VERSION(10, 1, 4):
- chip_name = "cyan_skillfish2";
- break;
- case IP_VERSION(10, 3, 7):
- chip_name = "gc_10_3_7";
- break;
- default:
- BUG();
- }
+ if (adev->ip_versions[GC_HWIP][0] == IP_VERSION(10, 1, 1) &&
+ (!(adev->pdev->device == 0x7340 && adev->pdev->revision != 0x00)))
+ wks = "_wks";
+ amdgpu_ucode_ip_version_decode(adev, GC_HWIP, ucode_prefix, sizeof(ucode_prefix));
- snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_pfp%s.bin", chip_name, wks);
- err = request_firmware(&adev->gfx.pfp_fw, fw_name, adev->dev);
- if (err)
- goto out;
- err = amdgpu_ucode_validate(adev->gfx.pfp_fw);
+ snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_pfp%s.bin", ucode_prefix, wks);
+ err = amdgpu_ucode_request(adev, &adev->gfx.pfp_fw, fw_name);
if (err)
goto out;
amdgpu_gfx_cp_init_microcode(adev, AMDGPU_UCODE_ID_CP_PFP);
- snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_me%s.bin", chip_name, wks);
- err = request_firmware(&adev->gfx.me_fw, fw_name, adev->dev);
- if (err)
- goto out;
- err = amdgpu_ucode_validate(adev->gfx.me_fw);
+ snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_me%s.bin", ucode_prefix, wks);
+ err = amdgpu_ucode_request(adev, &adev->gfx.me_fw, fw_name);
if (err)
goto out;
amdgpu_gfx_cp_init_microcode(adev, AMDGPU_UCODE_ID_CP_ME);
- snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_ce%s.bin", chip_name, wks);
- err = request_firmware(&adev->gfx.ce_fw, fw_name, adev->dev);
- if (err)
- goto out;
- err = amdgpu_ucode_validate(adev->gfx.ce_fw);
+ snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_ce%s.bin", ucode_prefix, wks);
+ err = amdgpu_ucode_request(adev, &adev->gfx.ce_fw, fw_name);
if (err)
goto out;
amdgpu_gfx_cp_init_microcode(adev, AMDGPU_UCODE_ID_CP_CE);
if (!amdgpu_sriov_vf(adev)) {
- snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_rlc.bin", chip_name);
- err = request_firmware(&adev->gfx.rlc_fw, fw_name, adev->dev);
- if (err)
- goto out;
+ snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_rlc.bin", ucode_prefix);
+ err = amdgpu_ucode_request(adev, &adev->gfx.rlc_fw, fw_name);
/* don't check this. There are apparently firmwares in the wild with
* incorrect size in the header
*/
- err = amdgpu_ucode_validate(adev->gfx.rlc_fw);
+ if (err == -ENODEV)
+ goto out;
if (err)
dev_dbg(adev->dev,
- "gfx10: amdgpu_ucode_validate() failed \"%s\"\n",
+ "gfx10: amdgpu_ucode_request() failed \"%s\"\n",
fw_name);
rlc_hdr = (const struct rlc_firmware_header_v2_0 *)adev->gfx.rlc_fw->data;
version_major = le16_to_cpu(rlc_hdr->header.header_version_major);
@@ -4077,47 +4021,34 @@ static int gfx_v10_0_init_microcode(struct amdgpu_device *adev)
goto out;
}
- snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_mec%s.bin", chip_name, wks);
- err = request_firmware(&adev->gfx.mec_fw, fw_name, adev->dev);
- if (err)
- goto out;
- err = amdgpu_ucode_validate(adev->gfx.mec_fw);
+ snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_mec%s.bin", ucode_prefix, wks);
+ err = amdgpu_ucode_request(adev, &adev->gfx.mec_fw, fw_name);
if (err)
goto out;
amdgpu_gfx_cp_init_microcode(adev, AMDGPU_UCODE_ID_CP_MEC1);
amdgpu_gfx_cp_init_microcode(adev, AMDGPU_UCODE_ID_CP_MEC1_JT);
- snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_mec2%s.bin", chip_name, wks);
- err = request_firmware(&adev->gfx.mec2_fw, fw_name, adev->dev);
+ snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_mec2%s.bin", ucode_prefix, wks);
+ err = amdgpu_ucode_request(adev, &adev->gfx.mec2_fw, fw_name);
if (!err) {
- err = amdgpu_ucode_validate(adev->gfx.mec2_fw);
- if (err)
- goto out;
amdgpu_gfx_cp_init_microcode(adev, AMDGPU_UCODE_ID_CP_MEC2);
amdgpu_gfx_cp_init_microcode(adev, AMDGPU_UCODE_ID_CP_MEC2_JT);
} else {
err = 0;
adev->gfx.mec2_fw = NULL;
}
+ amdgpu_gfx_cp_init_microcode(adev, AMDGPU_UCODE_ID_CP_MEC2);
+ amdgpu_gfx_cp_init_microcode(adev, AMDGPU_UCODE_ID_CP_MEC2_JT);
gfx_v10_0_check_fw_write_wait(adev);
out:
if (err) {
- dev_err(adev->dev,
- "gfx10: Failed to init firmware \"%s\"\n",
- fw_name);
- release_firmware(adev->gfx.pfp_fw);
- adev->gfx.pfp_fw = NULL;
- release_firmware(adev->gfx.me_fw);
- adev->gfx.me_fw = NULL;
- release_firmware(adev->gfx.ce_fw);
- adev->gfx.ce_fw = NULL;
- release_firmware(adev->gfx.rlc_fw);
- adev->gfx.rlc_fw = NULL;
- release_firmware(adev->gfx.mec_fw);
- adev->gfx.mec_fw = NULL;
- release_firmware(adev->gfx.mec2_fw);
- adev->gfx.mec2_fw = NULL;
+ amdgpu_ucode_release(&adev->gfx.pfp_fw);
+ amdgpu_ucode_release(&adev->gfx.me_fw);
+ amdgpu_ucode_release(&adev->gfx.ce_fw);
+ amdgpu_ucode_release(&adev->gfx.rlc_fw);
+ amdgpu_ucode_release(&adev->gfx.mec_fw);
+ amdgpu_ucode_release(&adev->gfx.mec2_fw);
}
gfx_v10_0_check_gfxoff_flag(adev);
@@ -4270,19 +4201,11 @@ static void gfx_v10_0_mec_fini(struct amdgpu_device *adev)
amdgpu_bo_free_kernel(&adev->gfx.mec.mec_fw_obj, NULL, NULL);
}
-static int gfx_v10_0_me_init(struct amdgpu_device *adev)
+static void gfx_v10_0_me_init(struct amdgpu_device *adev)
{
- int r;
-
bitmap_zero(adev->gfx.me.queue_bitmap, AMDGPU_MAX_GFX_QUEUES);
amdgpu_gfx_graphics_queue_acquire(adev);
-
- r = gfx_v10_0_init_microcode(adev);
- if (r)
- DRM_ERROR("Failed to load gfx firmware!\n");
-
- return r;
}
static int gfx_v10_0_mec_init(struct amdgpu_device *adev)
@@ -4453,8 +4376,6 @@ static void gfx_v10_0_gpu_early_init(struct amdgpu_device *adev)
{
u32 gb_addr_config;
- adev->gfx.funcs = &gfx_v10_0_gfx_funcs;
-
switch (adev->ip_versions[GC_HWIP][0]) {
case IP_VERSION(10, 1, 10):
case IP_VERSION(10, 1, 1):
@@ -4540,6 +4461,7 @@ static int gfx_v10_0_gfx_ring_init(struct amdgpu_device *adev, int ring_id,
ring->doorbell_index = adev->doorbell_index.gfx_ring0 << 1;
else
ring->doorbell_index = adev->doorbell_index.gfx_ring1 << 1;
+ ring->vm_hub = AMDGPU_GFXHUB_0;
sprintf(ring->name, "gfx_%d.%d.%d", ring->me, ring->pipe, ring->queue);
irq_type = AMDGPU_CP_IRQ_GFX_ME0_PIPE0_EOP + ring->pipe;
@@ -4568,6 +4490,7 @@ static int gfx_v10_0_compute_ring_init(struct amdgpu_device *adev, int ring_id,
ring->doorbell_index = (adev->doorbell_index.mec_ring0 + ring_id) << 1;
ring->eop_gpu_addr = adev->gfx.mec.hpd_eop_gpu_addr
+ (ring_id * GFX10_MEC_HPD_SIZE);
+ ring->vm_hub = AMDGPU_GFXHUB_0;
sprintf(ring->name, "comp_%d.%d.%d", ring->me, ring->pipe, ring->queue);
irq_type = AMDGPU_CP_IRQ_COMPUTE_MEC1_PIPE0_EOP
@@ -4652,9 +4575,7 @@ static int gfx_v10_0_sw_init(void *handle)
adev->gfx.gfx_current_status = AMDGPU_GFX_NORMAL_MODE;
- r = gfx_v10_0_me_init(adev);
- if (r)
- return r;
+ gfx_v10_0_me_init(adev);
if (adev->gfx.rlc.funcs) {
if (adev->gfx.rlc.funcs->init) {
@@ -6911,6 +6832,8 @@ static int gfx_v10_0_kiq_init_queue(struct amdgpu_ring *ring)
mutex_unlock(&adev->srbm_mutex);
} else {
memset((void *)mqd, 0, sizeof(*mqd));
+ if (amdgpu_sriov_vf(adev) && adev->in_suspend)
+ amdgpu_ring_clear_ring(ring);
mutex_lock(&adev->srbm_mutex);
nv_grbm_select(adev, ring->me, ring->pipe, ring->queue, 0);
amdgpu_ring_init_mqd(ring);
@@ -7345,7 +7268,6 @@ static int gfx_v10_0_hw_fini(void *handle)
{
struct amdgpu_device *adev = (struct amdgpu_device *)handle;
int r;
- uint32_t tmp;
amdgpu_irq_put(adev, &adev->gfx.priv_reg_irq, 0);
amdgpu_irq_put(adev, &adev->gfx.priv_inst_irq, 0);
@@ -7364,17 +7286,9 @@ static int gfx_v10_0_hw_fini(void *handle)
if (amdgpu_sriov_vf(adev)) {
gfx_v10_0_cp_gfx_enable(adev, false);
- /* Program KIQ position of RLC_CP_SCHEDULERS during destroy */
- if (adev->ip_versions[GC_HWIP][0] >= IP_VERSION(10, 3, 0)) {
- tmp = RREG32_SOC15(GC, 0, mmRLC_CP_SCHEDULERS_Sienna_Cichlid);
- tmp &= 0xffffff00;
- WREG32_SOC15(GC, 0, mmRLC_CP_SCHEDULERS_Sienna_Cichlid, tmp);
- } else {
- tmp = RREG32_SOC15(GC, 0, mmRLC_CP_SCHEDULERS);
- tmp &= 0xffffff00;
- WREG32_SOC15(GC, 0, mmRLC_CP_SCHEDULERS, tmp);
- }
-
+ /* Remove the steps of clearing KIQ position.
+ * It causes GFX hang when another Win guest is rendering.
+ */
return 0;
}
gfx_v10_0_cp_enable(adev, false);
@@ -7593,6 +7507,8 @@ static int gfx_v10_0_early_init(void *handle)
{
struct amdgpu_device *adev = (struct amdgpu_device *)handle;
+ adev->gfx.funcs = &gfx_v10_0_gfx_funcs;
+
switch (adev->ip_versions[GC_HWIP][0]) {
case IP_VERSION(10, 1, 10):
case IP_VERSION(10, 1, 1):
@@ -7628,7 +7544,7 @@ static int gfx_v10_0_early_init(void *handle)
/* init rlcg reg access ctrl */
gfx_v10_0_init_rlcg_reg_access_ctrl(adev);
- return 0;
+ return gfx_v10_0_init_microcode(adev);
}
static int gfx_v10_0_late_init(void *handle)
@@ -8489,7 +8405,7 @@ static void gfx_v10_0_ring_emit_ib_gfx(struct amdgpu_ring *ring,
control |= ib->length_dw | (vmid << 24);
- if ((amdgpu_sriov_vf(ring->adev) || amdgpu_mcbp) && (ib->flags & AMDGPU_IB_FLAG_PREEMPT)) {
+ if (amdgpu_mcbp && (ib->flags & AMDGPU_IB_FLAG_PREEMPT)) {
control |= INDIRECT_BUFFER_PRE_ENB(1);
if (flags & AMDGPU_IB_PREEMPTED)
@@ -8664,7 +8580,7 @@ static void gfx_v10_0_ring_emit_cntxcntl(struct amdgpu_ring *ring,
{
uint32_t dw2 = 0;
- if (amdgpu_mcbp || amdgpu_sriov_vf(ring->adev))
+ if (amdgpu_mcbp)
gfx_v10_0_ring_emit_ce_meta(ring,
(!amdgpu_sriov_vf(ring->adev) && flags & AMDGPU_IB_PREEMPTED) ? true : false);
@@ -9335,7 +9251,6 @@ static const struct amdgpu_ring_funcs gfx_v10_0_ring_funcs_gfx = {
.nop = PACKET3(PACKET3_NOP, 0x3FFF),
.support_64bit_ptrs = true,
.secure_submission_supported = true,
- .vmhub = AMDGPU_GFXHUB_0,
.get_rptr = gfx_v10_0_ring_get_rptr_gfx,
.get_wptr = gfx_v10_0_ring_get_wptr_gfx,
.set_wptr = gfx_v10_0_ring_set_wptr_gfx,
@@ -9390,7 +9305,6 @@ static const struct amdgpu_ring_funcs gfx_v10_0_ring_funcs_compute = {
.align_mask = 0xff,
.nop = PACKET3(PACKET3_NOP, 0x3FFF),
.support_64bit_ptrs = true,
- .vmhub = AMDGPU_GFXHUB_0,
.get_rptr = gfx_v10_0_ring_get_rptr_compute,
.get_wptr = gfx_v10_0_ring_get_wptr_compute,
.set_wptr = gfx_v10_0_ring_set_wptr_compute,
@@ -9426,7 +9340,6 @@ static const struct amdgpu_ring_funcs gfx_v10_0_ring_funcs_kiq = {
.align_mask = 0xff,
.nop = PACKET3(PACKET3_NOP, 0x3FFF),
.support_64bit_ptrs = true,
- .vmhub = AMDGPU_GFXHUB_0,
.get_rptr = gfx_v10_0_ring_get_rptr_compute,
.get_wptr = gfx_v10_0_ring_get_wptr_compute,
.set_wptr = gfx_v10_0_ring_set_wptr_compute,
diff --git a/drivers/gpu/drm/amd/amdgpu/gfx_v11_0.c b/drivers/gpu/drm/amd/amdgpu/gfx_v11_0.c
index 0fecc5bf45bc..f5c376276984 100644
--- a/drivers/gpu/drm/amd/amdgpu/gfx_v11_0.c
+++ b/drivers/gpu/drm/amd/amdgpu/gfx_v11_0.c
@@ -46,6 +46,7 @@
#include "clearstate_gfx11.h"
#include "v11_structs.h"
#include "gfx_v11_0.h"
+#include "gfx_v11_0_3.h"
#include "nbio_v4_3.h"
#include "mes_v11_0.h"
@@ -77,6 +78,10 @@ MODULE_FIRMWARE("amdgpu/gc_11_0_3_pfp.bin");
MODULE_FIRMWARE("amdgpu/gc_11_0_3_me.bin");
MODULE_FIRMWARE("amdgpu/gc_11_0_3_mec.bin");
MODULE_FIRMWARE("amdgpu/gc_11_0_3_rlc.bin");
+MODULE_FIRMWARE("amdgpu/gc_11_0_4_pfp.bin");
+MODULE_FIRMWARE("amdgpu/gc_11_0_4_me.bin");
+MODULE_FIRMWARE("amdgpu/gc_11_0_4_mec.bin");
+MODULE_FIRMWARE("amdgpu/gc_11_0_4_rlc.bin");
static const struct soc15_reg_golden golden_settings_gc_11_0_1[] =
{
@@ -262,6 +267,7 @@ static void gfx_v11_0_init_golden_registers(struct amdgpu_device *adev)
{
switch (adev->ip_versions[GC_HWIP][0]) {
case IP_VERSION(11, 0, 1):
+ case IP_VERSION(11, 0, 4):
soc15_program_register_sequence(adev,
golden_settings_gc_11_0_1,
(const u32)ARRAY_SIZE(golden_settings_gc_11_0_1));
@@ -426,18 +432,37 @@ err1:
static void gfx_v11_0_free_microcode(struct amdgpu_device *adev)
{
- release_firmware(adev->gfx.pfp_fw);
- adev->gfx.pfp_fw = NULL;
- release_firmware(adev->gfx.me_fw);
- adev->gfx.me_fw = NULL;
- release_firmware(adev->gfx.rlc_fw);
- adev->gfx.rlc_fw = NULL;
- release_firmware(adev->gfx.mec_fw);
- adev->gfx.mec_fw = NULL;
+ amdgpu_ucode_release(&adev->gfx.pfp_fw);
+ amdgpu_ucode_release(&adev->gfx.me_fw);
+ amdgpu_ucode_release(&adev->gfx.rlc_fw);
+ amdgpu_ucode_release(&adev->gfx.mec_fw);
kfree(adev->gfx.rlc.register_list_format);
}
+static int gfx_v11_0_init_toc_microcode(struct amdgpu_device *adev, const char *ucode_prefix)
+{
+ const struct psp_firmware_header_v1_0 *toc_hdr;
+ int err = 0;
+ char fw_name[40];
+
+ snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_toc.bin", ucode_prefix);
+ err = amdgpu_ucode_request(adev, &adev->psp.toc_fw, fw_name);
+ if (err)
+ goto out;
+
+ toc_hdr = (const struct psp_firmware_header_v1_0 *)adev->psp.toc_fw->data;
+ adev->psp.toc.fw_version = le32_to_cpu(toc_hdr->header.ucode_version);
+ adev->psp.toc.feature_version = le32_to_cpu(toc_hdr->sos.fw_version);
+ adev->psp.toc.size_bytes = le32_to_cpu(toc_hdr->header.ucode_size_bytes);
+ adev->psp.toc.start_addr = (uint8_t *)toc_hdr +
+ le32_to_cpu(toc_hdr->header.ucode_array_offset_bytes);
+ return 0;
+out:
+ amdgpu_ucode_release(&adev->psp.toc_fw);
+ return err;
+}
+
static int gfx_v11_0_init_microcode(struct amdgpu_device *adev)
{
char fw_name[40];
@@ -452,10 +477,7 @@ static int gfx_v11_0_init_microcode(struct amdgpu_device *adev)
amdgpu_ucode_ip_version_decode(adev, GC_HWIP, ucode_prefix, sizeof(ucode_prefix));
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_pfp.bin", ucode_prefix);
- err = request_firmware(&adev->gfx.pfp_fw, fw_name, adev->dev);
- if (err)
- goto out;
- err = amdgpu_ucode_validate(adev->gfx.pfp_fw);
+ err = amdgpu_ucode_request(adev, &adev->gfx.pfp_fw, fw_name);
if (err)
goto out;
/* check pfp fw hdr version to decide if enable rs64 for gfx11.*/
@@ -472,10 +494,7 @@ static int gfx_v11_0_init_microcode(struct amdgpu_device *adev)
}
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_me.bin", ucode_prefix);
- err = request_firmware(&adev->gfx.me_fw, fw_name, adev->dev);
- if (err)
- goto out;
- err = amdgpu_ucode_validate(adev->gfx.me_fw);
+ err = amdgpu_ucode_request(adev, &adev->gfx.me_fw, fw_name);
if (err)
goto out;
if (adev->gfx.rs64_enable) {
@@ -488,10 +507,7 @@ static int gfx_v11_0_init_microcode(struct amdgpu_device *adev)
if (!amdgpu_sriov_vf(adev)) {
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_rlc.bin", ucode_prefix);
- err = request_firmware(&adev->gfx.rlc_fw, fw_name, adev->dev);
- if (err)
- goto out;
- err = amdgpu_ucode_validate(adev->gfx.rlc_fw);
+ err = amdgpu_ucode_request(adev, &adev->gfx.rlc_fw, fw_name);
if (err)
goto out;
rlc_hdr = (const struct rlc_firmware_header_v2_0 *)adev->gfx.rlc_fw->data;
@@ -503,10 +519,7 @@ static int gfx_v11_0_init_microcode(struct amdgpu_device *adev)
}
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_mec.bin", ucode_prefix);
- err = request_firmware(&adev->gfx.mec_fw, fw_name, adev->dev);
- if (err)
- goto out;
- err = amdgpu_ucode_validate(adev->gfx.mec_fw);
+ err = amdgpu_ucode_request(adev, &adev->gfx.mec_fw, fw_name);
if (err)
goto out;
if (adev->gfx.rs64_enable) {
@@ -520,59 +533,23 @@ static int gfx_v11_0_init_microcode(struct amdgpu_device *adev)
amdgpu_gfx_cp_init_microcode(adev, AMDGPU_UCODE_ID_CP_MEC1_JT);
}
+ if (adev->firmware.load_type == AMDGPU_FW_LOAD_RLC_BACKDOOR_AUTO)
+ err = gfx_v11_0_init_toc_microcode(adev, ucode_prefix);
+
/* only one MEC for gfx 11.0.0. */
adev->gfx.mec2_fw = NULL;
out:
if (err) {
- dev_err(adev->dev,
- "gfx11: Failed to init firmware \"%s\"\n",
- fw_name);
- release_firmware(adev->gfx.pfp_fw);
- adev->gfx.pfp_fw = NULL;
- release_firmware(adev->gfx.me_fw);
- adev->gfx.me_fw = NULL;
- release_firmware(adev->gfx.rlc_fw);
- adev->gfx.rlc_fw = NULL;
- release_firmware(adev->gfx.mec_fw);
- adev->gfx.mec_fw = NULL;
+ amdgpu_ucode_release(&adev->gfx.pfp_fw);
+ amdgpu_ucode_release(&adev->gfx.me_fw);
+ amdgpu_ucode_release(&adev->gfx.rlc_fw);
+ amdgpu_ucode_release(&adev->gfx.mec_fw);
}
return err;
}
-static int gfx_v11_0_init_toc_microcode(struct amdgpu_device *adev)
-{
- const struct psp_firmware_header_v1_0 *toc_hdr;
- int err = 0;
- char fw_name[40];
- char ucode_prefix[30];
-
- amdgpu_ucode_ip_version_decode(adev, GC_HWIP, ucode_prefix, sizeof(ucode_prefix));
-
- snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_toc.bin", ucode_prefix);
- err = request_firmware(&adev->psp.toc_fw, fw_name, adev->dev);
- if (err)
- goto out;
-
- err = amdgpu_ucode_validate(adev->psp.toc_fw);
- if (err)
- goto out;
-
- toc_hdr = (const struct psp_firmware_header_v1_0 *)adev->psp.toc_fw->data;
- adev->psp.toc.fw_version = le32_to_cpu(toc_hdr->header.ucode_version);
- adev->psp.toc.feature_version = le32_to_cpu(toc_hdr->sos.fw_version);
- adev->psp.toc.size_bytes = le32_to_cpu(toc_hdr->header.ucode_size_bytes);
- adev->psp.toc.start_addr = (uint8_t *)toc_hdr +
- le32_to_cpu(toc_hdr->header.ucode_array_offset_bytes);
- return 0;
-out:
- dev_err(adev->dev, "Failed to load TOC microcode\n");
- release_firmware(adev->psp.toc_fw);
- adev->psp.toc_fw = NULL;
- return err;
-}
-
static u32 gfx_v11_0_get_csb_size(struct amdgpu_device *adev)
{
u32 count = 0;
@@ -709,19 +686,11 @@ static void gfx_v11_0_mec_fini(struct amdgpu_device *adev)
amdgpu_bo_free_kernel(&adev->gfx.mec.mec_fw_data_obj, NULL, NULL);
}
-static int gfx_v11_0_me_init(struct amdgpu_device *adev)
+static void gfx_v11_0_me_init(struct amdgpu_device *adev)
{
- int r;
-
bitmap_zero(adev->gfx.me.queue_bitmap, AMDGPU_MAX_GFX_QUEUES);
amdgpu_gfx_graphics_queue_acquire(adev);
-
- r = gfx_v11_0_init_microcode(adev);
- if (r)
- DRM_ERROR("Failed to load gfx firmware!\n");
-
- return r;
}
static int gfx_v11_0_mec_init(struct amdgpu_device *adev)
@@ -785,8 +754,8 @@ static void gfx_v11_0_read_wave_data(struct amdgpu_device *adev, uint32_t simd,
* zero here */
WARN_ON(simd != 0);
- /* type 2 wave data */
- dst[(*no_fields)++] = 2;
+ /* type 3 wave data */
+ dst[(*no_fields)++] = 3;
dst[(*no_fields)++] = wave_read_ind(adev, wave, ixSQ_WAVE_STATUS);
dst[(*no_fields)++] = wave_read_ind(adev, wave, ixSQ_WAVE_PC_LO);
dst[(*no_fields)++] = wave_read_ind(adev, wave, ixSQ_WAVE_PC_HI);
@@ -843,12 +812,18 @@ static const struct amdgpu_gfx_funcs gfx_v11_0_gfx_funcs = {
static int gfx_v11_0_gpu_early_init(struct amdgpu_device *adev)
{
- adev->gfx.funcs = &gfx_v11_0_gfx_funcs;
switch (adev->ip_versions[GC_HWIP][0]) {
case IP_VERSION(11, 0, 0):
case IP_VERSION(11, 0, 2):
+ adev->gfx.config.max_hw_contexts = 8;
+ adev->gfx.config.sc_prim_fifo_size_frontend = 0x20;
+ adev->gfx.config.sc_prim_fifo_size_backend = 0x100;
+ adev->gfx.config.sc_hiz_tile_fifo_size = 0;
+ adev->gfx.config.sc_earlyz_tile_fifo_size = 0x4C0;
+ break;
case IP_VERSION(11, 0, 3):
+ adev->gfx.ras = &gfx_v11_0_3_ras;
adev->gfx.config.max_hw_contexts = 8;
adev->gfx.config.sc_prim_fifo_size_frontend = 0x20;
adev->gfx.config.sc_prim_fifo_size_backend = 0x100;
@@ -856,6 +831,7 @@ static int gfx_v11_0_gpu_early_init(struct amdgpu_device *adev)
adev->gfx.config.sc_earlyz_tile_fifo_size = 0x4C0;
break;
case IP_VERSION(11, 0, 1):
+ case IP_VERSION(11, 0, 4):
adev->gfx.config.max_hw_contexts = 8;
adev->gfx.config.sc_prim_fifo_size_frontend = 0x20;
adev->gfx.config.sc_prim_fifo_size_backend = 0x100;
@@ -890,6 +866,7 @@ static int gfx_v11_0_gfx_ring_init(struct amdgpu_device *adev, int ring_id,
ring->doorbell_index = adev->doorbell_index.gfx_ring0 << 1;
else
ring->doorbell_index = adev->doorbell_index.gfx_ring1 << 1;
+ ring->vm_hub = AMDGPU_GFXHUB_0;
sprintf(ring->name, "gfx_%d.%d.%d", ring->me, ring->pipe, ring->queue);
irq_type = AMDGPU_CP_IRQ_GFX_ME0_PIPE0_EOP + ring->pipe;
@@ -920,6 +897,7 @@ static int gfx_v11_0_compute_ring_init(struct amdgpu_device *adev, int ring_id,
ring->doorbell_index = (adev->doorbell_index.mec_ring0 + ring_id) << 1;
ring->eop_gpu_addr = adev->gfx.mec.hpd_eop_gpu_addr
+ (ring_id * GFX11_MEC_HPD_SIZE);
+ ring->vm_hub = AMDGPU_GFXHUB_0;
sprintf(ring->name, "comp_%d.%d.%d", ring->me, ring->pipe, ring->queue);
irq_type = AMDGPU_CP_IRQ_COMPUTE_MEC1_PIPE0_EOP
@@ -982,10 +960,11 @@ static int gfx_v11_0_rlc_autoload_buffer_init(struct amdgpu_device *adev)
total_size = gfx_v11_0_calc_toc_total_size(adev);
r = amdgpu_bo_create_reserved(adev, total_size, 64 * 1024,
- AMDGPU_GEM_DOMAIN_VRAM,
- &adev->gfx.rlc.rlc_autoload_bo,
- &adev->gfx.rlc.rlc_autoload_gpu_addr,
- (void **)&adev->gfx.rlc.rlc_autoload_ptr);
+ AMDGPU_GEM_DOMAIN_VRAM |
+ AMDGPU_GEM_DOMAIN_GTT,
+ &adev->gfx.rlc.rlc_autoload_bo,
+ &adev->gfx.rlc.rlc_autoload_gpu_addr,
+ (void **)&adev->gfx.rlc.rlc_autoload_ptr);
if (r) {
dev_err(adev->dev, "(%d) failed to create fw autoload bo\n", r);
@@ -1282,7 +1261,6 @@ static int gfx_v11_0_sw_init(void *handle)
switch (adev->ip_versions[GC_HWIP][0]) {
case IP_VERSION(11, 0, 0):
- case IP_VERSION(11, 0, 1):
case IP_VERSION(11, 0, 2):
case IP_VERSION(11, 0, 3):
adev->gfx.me.num_me = 1;
@@ -1292,6 +1270,15 @@ static int gfx_v11_0_sw_init(void *handle)
adev->gfx.mec.num_pipe_per_mec = 4;
adev->gfx.mec.num_queue_per_pipe = 4;
break;
+ case IP_VERSION(11, 0, 1):
+ case IP_VERSION(11, 0, 4):
+ adev->gfx.me.num_me = 1;
+ adev->gfx.me.num_pipe_per_me = 1;
+ adev->gfx.me.num_queue_per_pipe = 1;
+ adev->gfx.mec.num_mec = 1;
+ adev->gfx.mec.num_pipe_per_mec = 4;
+ adev->gfx.mec.num_queue_per_pipe = 4;
+ break;
default:
adev->gfx.me.num_me = 1;
adev->gfx.me.num_pipe_per_me = 1;
@@ -1302,6 +1289,11 @@ static int gfx_v11_0_sw_init(void *handle)
break;
}
+ /* Enable CG flag in one VF mode for enabling RLC safe mode enter/exit */
+ if (adev->ip_versions[GC_HWIP][0] == IP_VERSION(11, 0, 3) &&
+ amdgpu_sriov_is_pp_one_vf(adev))
+ adev->cg_flags = AMD_CG_SUPPORT_GFX_CGCG;
+
/* EOP Event */
r = amdgpu_irq_add_id(adev, SOC21_IH_CLIENTID_GRBM_CP,
GFX_11_0_0__SRCID__CP_EOP_INTERRUPT,
@@ -1323,6 +1315,13 @@ static int gfx_v11_0_sw_init(void *handle)
if (r)
return r;
+ /* FED error */
+ r = amdgpu_irq_add_id(adev, SOC21_IH_CLIENTID_GFX,
+ GFX_11_0_0__SRCID__RLC_GC_FED_INTERRUPT,
+ &adev->gfx.rlc_gc_fed_irq);
+ if (r)
+ return r;
+
adev->gfx.gfx_current_status = AMDGPU_GFX_NORMAL_MODE;
if (adev->gfx.imu.funcs) {
@@ -1333,9 +1332,7 @@ static int gfx_v11_0_sw_init(void *handle)
}
}
- r = gfx_v11_0_me_init(adev);
- if (r)
- return r;
+ gfx_v11_0_me_init(adev);
r = gfx_v11_0_rlc_init(adev);
if (r) {
@@ -1403,9 +1400,6 @@ static int gfx_v11_0_sw_init(void *handle)
/* allocate visible FB for rlc auto-loading fw */
if (adev->firmware.load_type == AMDGPU_FW_LOAD_RLC_BACKDOOR_AUTO) {
- r = gfx_v11_0_init_toc_microcode(adev);
- if (r)
- dev_err(adev->dev, "Failed to load toc firmware!\n");
r = gfx_v11_0_rlc_autoload_buffer_init(adev);
if (r)
return r;
@@ -1415,6 +1409,11 @@ static int gfx_v11_0_sw_init(void *handle)
if (r)
return r;
+ if (amdgpu_gfx_ras_sw_init(adev)) {
+ dev_err(adev->dev, "Failed to initialize gfx ras block!\n");
+ return -EINVAL;
+ }
+
return 0;
}
@@ -1504,44 +1503,70 @@ static void gfx_v11_0_select_se_sh(struct amdgpu_device *adev, u32 se_num,
WREG32_SOC15(GC, 0, regGRBM_GFX_INDEX, data);
}
-static u32 gfx_v11_0_get_rb_active_bitmap(struct amdgpu_device *adev)
+static u32 gfx_v11_0_get_sa_active_bitmap(struct amdgpu_device *adev)
{
- u32 data, mask;
+ u32 gc_disabled_sa_mask, gc_user_disabled_sa_mask, sa_mask;
- data = RREG32_SOC15(GC, 0, regCC_RB_BACKEND_DISABLE);
- data |= RREG32_SOC15(GC, 0, regGC_USER_RB_BACKEND_DISABLE);
+ gc_disabled_sa_mask = RREG32_SOC15(GC, 0, regCC_GC_SA_UNIT_DISABLE);
+ gc_disabled_sa_mask = REG_GET_FIELD(gc_disabled_sa_mask,
+ CC_GC_SA_UNIT_DISABLE,
+ SA_DISABLE);
+ gc_user_disabled_sa_mask = RREG32_SOC15(GC, 0, regGC_USER_SA_UNIT_DISABLE);
+ gc_user_disabled_sa_mask = REG_GET_FIELD(gc_user_disabled_sa_mask,
+ GC_USER_SA_UNIT_DISABLE,
+ SA_DISABLE);
+ sa_mask = amdgpu_gfx_create_bitmask(adev->gfx.config.max_sh_per_se *
+ adev->gfx.config.max_shader_engines);
- data &= CC_RB_BACKEND_DISABLE__BACKEND_DISABLE_MASK;
- data >>= GC_USER_RB_BACKEND_DISABLE__BACKEND_DISABLE__SHIFT;
+ return sa_mask & (~(gc_disabled_sa_mask | gc_user_disabled_sa_mask));
+}
- mask = amdgpu_gfx_create_bitmask(adev->gfx.config.max_backends_per_se /
- adev->gfx.config.max_sh_per_se);
+static u32 gfx_v11_0_get_rb_active_bitmap(struct amdgpu_device *adev)
+{
+ u32 gc_disabled_rb_mask, gc_user_disabled_rb_mask;
+ u32 rb_mask;
+
+ gc_disabled_rb_mask = RREG32_SOC15(GC, 0, regCC_RB_BACKEND_DISABLE);
+ gc_disabled_rb_mask = REG_GET_FIELD(gc_disabled_rb_mask,
+ CC_RB_BACKEND_DISABLE,
+ BACKEND_DISABLE);
+ gc_user_disabled_rb_mask = RREG32_SOC15(GC, 0, regGC_USER_RB_BACKEND_DISABLE);
+ gc_user_disabled_rb_mask = REG_GET_FIELD(gc_user_disabled_rb_mask,
+ GC_USER_RB_BACKEND_DISABLE,
+ BACKEND_DISABLE);
+ rb_mask = amdgpu_gfx_create_bitmask(adev->gfx.config.max_backends_per_se *
+ adev->gfx.config.max_shader_engines);
- return (~data) & mask;
+ return rb_mask & (~(gc_disabled_rb_mask | gc_user_disabled_rb_mask));
}
static void gfx_v11_0_setup_rb(struct amdgpu_device *adev)
{
- int i, j;
- u32 data;
- u32 active_rbs = 0;
- u32 rb_bitmap_width_per_sh = adev->gfx.config.max_backends_per_se /
- adev->gfx.config.max_sh_per_se;
+ u32 rb_bitmap_width_per_sa;
+ u32 max_sa;
+ u32 active_sa_bitmap;
+ u32 global_active_rb_bitmap;
+ u32 active_rb_bitmap = 0;
+ u32 i;
- mutex_lock(&adev->grbm_idx_mutex);
- for (i = 0; i < adev->gfx.config.max_shader_engines; i++) {
- for (j = 0; j < adev->gfx.config.max_sh_per_se; j++) {
- gfx_v11_0_select_se_sh(adev, i, j, 0xffffffff);
- data = gfx_v11_0_get_rb_active_bitmap(adev);
- active_rbs |= data << ((i * adev->gfx.config.max_sh_per_se + j) *
- rb_bitmap_width_per_sh);
- }
+ /* query sa bitmap from SA_UNIT_DISABLE registers */
+ active_sa_bitmap = gfx_v11_0_get_sa_active_bitmap(adev);
+ /* query rb bitmap from RB_BACKEND_DISABLE registers */
+ global_active_rb_bitmap = gfx_v11_0_get_rb_active_bitmap(adev);
+
+ /* generate active rb bitmap according to active sa bitmap */
+ max_sa = adev->gfx.config.max_shader_engines *
+ adev->gfx.config.max_sh_per_se;
+ rb_bitmap_width_per_sa = adev->gfx.config.max_backends_per_se /
+ adev->gfx.config.max_sh_per_se;
+ for (i = 0; i < max_sa; i++) {
+ if (active_sa_bitmap & (1 << i))
+ active_rb_bitmap |= (0x3 << (i * rb_bitmap_width_per_sa));
}
- gfx_v11_0_select_se_sh(adev, 0xffffffff, 0xffffffff, 0xffffffff);
- mutex_unlock(&adev->grbm_idx_mutex);
- adev->gfx.config.backend_enable_mask = active_rbs;
- adev->gfx.config.num_rbs = hweight32(active_rbs);
+ active_rb_bitmap |= global_active_rb_bitmap;
+ adev->gfx.config.backend_enable_mask = active_rb_bitmap;
+ adev->gfx.config.num_rbs = hweight32(active_rb_bitmap);
}
#define DEFAULT_SH_MEM_BASES (0x6000)
@@ -1626,13 +1651,19 @@ static void gfx_v11_0_constants_init(struct amdgpu_device *adev)
u32 tmp;
int i;
- WREG32_FIELD15_PREREG(GC, 0, GRBM_CNTL, READ_TIMEOUT, 0xff);
+ if (!amdgpu_sriov_vf(adev))
+ WREG32_FIELD15_PREREG(GC, 0, GRBM_CNTL, READ_TIMEOUT, 0xff);
gfx_v11_0_setup_rb(adev);
gfx_v11_0_get_cu_info(adev, &adev->gfx.cu_info);
gfx_v11_0_get_tcc_info(adev);
adev->gfx.config.pa_sc_tile_steering_override = 0;
+ /* Set whether texture coordinate truncation is conformant. */
+ tmp = RREG32_SOC15(GC, 0, regTA_CNTL2);
+ adev->gfx.config.ta_cntl2_truncate_coord_mode =
+ REG_GET_FIELD(tmp, TA_CNTL2, TRUNCATE_COORD_MODE);
+
/* XXX SH_MEM regs */
/* where to put LDS, scratch, GPUVM in FSA64 space */
mutex_lock(&adev->srbm_mutex);
@@ -2486,7 +2517,8 @@ static int gfx_v11_0_wait_for_rlc_autoload_complete(struct amdgpu_device *adev)
for (i = 0; i < adev->usec_timeout; i++) {
cp_status = RREG32_SOC15(GC, 0, regCP_STAT);
- if (adev->ip_versions[GC_HWIP][0] == IP_VERSION(11, 0, 1))
+ if (adev->ip_versions[GC_HWIP][0] == IP_VERSION(11, 0, 1) ||
+ adev->ip_versions[GC_HWIP][0] == IP_VERSION(11, 0, 4))
bootload_status = RREG32_SOC15(GC, 0,
regRLC_RLCS_BOOTLOAD_STATUS_gc_11_0_1);
else
@@ -2641,7 +2673,9 @@ static int gfx_v11_0_cp_gfx_load_pfp_microcode_rs64(struct amdgpu_device *adev)
/* 64kb align */
r = amdgpu_bo_create_reserved(adev, fw_ucode_size,
- 64 * 1024, AMDGPU_GEM_DOMAIN_VRAM,
+ 64 * 1024,
+ AMDGPU_GEM_DOMAIN_VRAM |
+ AMDGPU_GEM_DOMAIN_GTT,
&adev->gfx.pfp.pfp_fw_obj,
&adev->gfx.pfp.pfp_fw_gpu_addr,
(void **)&adev->gfx.pfp.pfp_fw_ptr);
@@ -2652,7 +2686,9 @@ static int gfx_v11_0_cp_gfx_load_pfp_microcode_rs64(struct amdgpu_device *adev)
}
r = amdgpu_bo_create_reserved(adev, fw_data_size,
- 64 * 1024, AMDGPU_GEM_DOMAIN_VRAM,
+ 64 * 1024,
+ AMDGPU_GEM_DOMAIN_VRAM |
+ AMDGPU_GEM_DOMAIN_GTT,
&adev->gfx.pfp.pfp_fw_data_obj,
&adev->gfx.pfp.pfp_fw_data_gpu_addr,
(void **)&adev->gfx.pfp.pfp_fw_data_ptr);
@@ -2855,7 +2891,9 @@ static int gfx_v11_0_cp_gfx_load_me_microcode_rs64(struct amdgpu_device *adev)
/* 64kb align*/
r = amdgpu_bo_create_reserved(adev, fw_ucode_size,
- 64 * 1024, AMDGPU_GEM_DOMAIN_VRAM,
+ 64 * 1024,
+ AMDGPU_GEM_DOMAIN_VRAM |
+ AMDGPU_GEM_DOMAIN_GTT,
&adev->gfx.me.me_fw_obj,
&adev->gfx.me.me_fw_gpu_addr,
(void **)&adev->gfx.me.me_fw_ptr);
@@ -2866,7 +2904,9 @@ static int gfx_v11_0_cp_gfx_load_me_microcode_rs64(struct amdgpu_device *adev)
}
r = amdgpu_bo_create_reserved(adev, fw_data_size,
- 64 * 1024, AMDGPU_GEM_DOMAIN_VRAM,
+ 64 * 1024,
+ AMDGPU_GEM_DOMAIN_VRAM |
+ AMDGPU_GEM_DOMAIN_GTT,
&adev->gfx.me.me_fw_data_obj,
&adev->gfx.me.me_fw_data_gpu_addr,
(void **)&adev->gfx.me.me_fw_data_ptr);
@@ -3372,7 +3412,9 @@ static int gfx_v11_0_cp_compute_load_microcode_rs64(struct amdgpu_device *adev)
fw_data_size = le32_to_cpu(mec_hdr->data_size_bytes);
r = amdgpu_bo_create_reserved(adev, fw_ucode_size,
- 64 * 1024, AMDGPU_GEM_DOMAIN_VRAM,
+ 64 * 1024,
+ AMDGPU_GEM_DOMAIN_VRAM |
+ AMDGPU_GEM_DOMAIN_GTT,
&adev->gfx.mec.mec_fw_obj,
&adev->gfx.mec.mec_fw_gpu_addr,
(void **)&fw_ucode_ptr);
@@ -3383,7 +3425,9 @@ static int gfx_v11_0_cp_compute_load_microcode_rs64(struct amdgpu_device *adev)
}
r = amdgpu_bo_create_reserved(adev, fw_data_size,
- 64 * 1024, AMDGPU_GEM_DOMAIN_VRAM,
+ 64 * 1024,
+ AMDGPU_GEM_DOMAIN_VRAM |
+ AMDGPU_GEM_DOMAIN_GTT,
&adev->gfx.mec.mec_fw_data_obj,
&adev->gfx.mec.mec_fw_data_gpu_addr,
(void **)&fw_data_ptr);
@@ -4004,6 +4048,8 @@ static int gfx_v11_0_kiq_init_queue(struct amdgpu_ring *ring)
mutex_unlock(&adev->srbm_mutex);
} else {
memset((void *)mqd, 0, sizeof(*mqd));
+ if (amdgpu_sriov_vf(adev) && adev->in_suspend)
+ amdgpu_ring_clear_ring(ring);
mutex_lock(&adev->srbm_mutex);
soc21_grbm_select(adev, ring->me, ring->pipe, ring->queue, 0);
amdgpu_ring_init_mqd(ring);
@@ -4390,7 +4436,6 @@ static int gfx_v11_0_hw_fini(void *handle)
{
struct amdgpu_device *adev = (struct amdgpu_device *)handle;
int r;
- uint32_t tmp;
amdgpu_irq_put(adev, &adev->gfx.priv_reg_irq, 0);
amdgpu_irq_put(adev, &adev->gfx.priv_inst_irq, 0);
@@ -4409,15 +4454,14 @@ static int gfx_v11_0_hw_fini(void *handle)
amdgpu_mes_kiq_hw_fini(adev);
}
- if (amdgpu_sriov_vf(adev)) {
- gfx_v11_0_cp_gfx_enable(adev, false);
- /* Program KIQ position of RLC_CP_SCHEDULERS during destroy */
- tmp = RREG32_SOC15(GC, 0, regRLC_CP_SCHEDULERS);
- tmp &= 0xffffff00;
- WREG32_SOC15(GC, 0, regRLC_CP_SCHEDULERS, tmp);
-
+ if (amdgpu_sriov_vf(adev))
+ /* Remove the steps disabling CPG and clearing KIQ position,
+ * so that CP could perform IDLE-SAVE during switch. Those
+ * steps are necessary to avoid a DMAR error in gfx9 but it is
+ * not reproduced on gfx11.
+ */
return 0;
- }
+
gfx_v11_0_cp_enable(adev, false);
gfx_v11_0_enable_gui_idle_interrupt(adev, false);
@@ -4610,14 +4654,35 @@ static bool gfx_v11_0_check_soft_reset(void *handle)
return false;
}
+static int gfx_v11_0_post_soft_reset(void *handle)
+{
+ /**
+ * GFX soft reset will impact MES, need resume MES when do GFX soft reset
+ */
+ return amdgpu_mes_resume((struct amdgpu_device *)handle);
+}
+
static uint64_t gfx_v11_0_get_gpu_clock_counter(struct amdgpu_device *adev)
{
uint64_t clock;
+ uint64_t clock_counter_lo, clock_counter_hi_pre, clock_counter_hi_after;
amdgpu_gfx_off_ctrl(adev, false);
mutex_lock(&adev->gfx.gpu_clock_mutex);
- clock = (uint64_t)RREG32_SOC15(SMUIO, 0, regGOLDEN_TSC_COUNT_LOWER) |
- ((uint64_t)RREG32_SOC15(SMUIO, 0, regGOLDEN_TSC_COUNT_UPPER) << 32ULL);
+ if (amdgpu_sriov_vf(adev)) {
+ clock_counter_hi_pre = (uint64_t)RREG32_SOC15(GC, 0, regCP_MES_MTIME_HI);
+ clock_counter_lo = (uint64_t)RREG32_SOC15(GC, 0, regCP_MES_MTIME_LO);
+ clock_counter_hi_after = (uint64_t)RREG32_SOC15(GC, 0, regCP_MES_MTIME_HI);
+ if (clock_counter_hi_pre != clock_counter_hi_after)
+ clock_counter_lo = (uint64_t)RREG32_SOC15(GC, 0, regCP_MES_MTIME_LO);
+ } else {
+ clock_counter_hi_pre = (uint64_t)RREG32_SOC15(SMUIO, 0, regGOLDEN_TSC_COUNT_UPPER);
+ clock_counter_lo = (uint64_t)RREG32_SOC15(SMUIO, 0, regGOLDEN_TSC_COUNT_LOWER);
+ clock_counter_hi_after = (uint64_t)RREG32_SOC15(SMUIO, 0, regGOLDEN_TSC_COUNT_UPPER);
+ if (clock_counter_hi_pre != clock_counter_hi_after)
+ clock_counter_lo = (uint64_t)RREG32_SOC15(SMUIO, 0, regGOLDEN_TSC_COUNT_LOWER);
+ }
+ clock = clock_counter_lo | (clock_counter_hi_after << 32ULL);
mutex_unlock(&adev->gfx.gpu_clock_mutex);
amdgpu_gfx_off_ctrl(adev, true);
return clock;
@@ -4656,6 +4721,8 @@ static int gfx_v11_0_early_init(void *handle)
{
struct amdgpu_device *adev = (struct amdgpu_device *)handle;
+ adev->gfx.funcs = &gfx_v11_0_gfx_funcs;
+
adev->gfx.num_gfx_rings = GFX11_NUM_GFX_RINGS;
adev->gfx.num_compute_rings = min(amdgpu_gfx_get_num_kcq(adev),
AMDGPU_MAX_COMPUTE_RINGS);
@@ -4670,6 +4737,26 @@ static int gfx_v11_0_early_init(void *handle)
gfx_v11_0_init_rlcg_reg_access_ctrl(adev);
+ return gfx_v11_0_init_microcode(adev);
+}
+
+static int gfx_v11_0_ras_late_init(void *handle)
+{
+ struct amdgpu_device *adev = (struct amdgpu_device *)handle;
+ struct ras_common_if *gfx_common_if;
+ int ret;
+
+ gfx_common_if = kzalloc(sizeof(struct ras_common_if), GFP_KERNEL);
+ if (!gfx_common_if)
+ return -ENOMEM;
+
+ gfx_common_if->block = AMDGPU_RAS_BLOCK__GFX;
+
+ ret = amdgpu_ras_feature_enable(adev, gfx_common_if, true);
+ if (ret)
+ dev_warn(adev->dev, "Failed to enable gfx11 ras feature\n");
+
+ kfree(gfx_common_if);
return 0;
}
@@ -4686,6 +4773,12 @@ static int gfx_v11_0_late_init(void *handle)
if (r)
return r;
+ if (adev->ip_versions[GC_HWIP][0] == IP_VERSION(11, 0, 3)) {
+ r = gfx_v11_0_ras_late_init(handle);
+ if (r)
+ return r;
+ }
+
return 0;
}
@@ -5022,6 +5115,7 @@ static void gfx_v11_cntl_power_gating(struct amdgpu_device *adev, bool enable)
if (enable && (adev->pg_flags & AMD_PG_SUPPORT_GFX_PG)) {
switch (adev->ip_versions[GC_HWIP][0]) {
case IP_VERSION(11, 0, 1):
+ case IP_VERSION(11, 0, 4):
WREG32_SOC15(GC, 0, regRLC_PG_DELAY_3, RLC_PG_DELAY_3_DEFAULT_GC_11_0_1);
break;
default:
@@ -5055,6 +5149,7 @@ static int gfx_v11_0_set_powergating_state(void *handle,
amdgpu_gfx_off_ctrl(adev, enable);
break;
case IP_VERSION(11, 0, 1):
+ case IP_VERSION(11, 0, 4):
gfx_v11_cntl_pg(adev, enable);
amdgpu_gfx_off_ctrl(adev, enable);
break;
@@ -5078,6 +5173,7 @@ static int gfx_v11_0_set_clockgating_state(void *handle,
case IP_VERSION(11, 0, 1):
case IP_VERSION(11, 0, 2):
case IP_VERSION(11, 0, 3):
+ case IP_VERSION(11, 0, 4):
gfx_v11_0_update_gfx_clock_gating(adev,
state == AMD_CG_STATE_GATE);
break;
@@ -5299,7 +5395,7 @@ static void gfx_v11_0_ring_emit_ib_gfx(struct amdgpu_ring *ring,
control |= ib->length_dw | (vmid << 24);
- if ((amdgpu_sriov_vf(ring->adev) || amdgpu_mcbp) && (ib->flags & AMDGPU_IB_FLAG_PREEMPT)) {
+ if (amdgpu_mcbp && (ib->flags & AMDGPU_IB_FLAG_PREEMPT)) {
control |= INDIRECT_BUFFER_PRE_ENB(1);
if (flags & AMDGPU_IB_PREEMPTED)
@@ -5969,6 +6065,16 @@ static int gfx_v11_0_priv_inst_irq(struct amdgpu_device *adev,
return 0;
}
+static int gfx_v11_0_rlc_gc_fed_irq(struct amdgpu_device *adev,
+ struct amdgpu_irq_src *source,
+ struct amdgpu_iv_entry *entry)
+{
+ if (adev->gfx.ras && adev->gfx.ras->rlc_gc_fed_irq)
+ return adev->gfx.ras->rlc_gc_fed_irq(adev, source, entry);
+
+ return 0;
+}
+
#if 0
static int gfx_v11_0_kiq_set_interrupt_state(struct amdgpu_device *adev,
struct amdgpu_irq_src *src,
@@ -6050,6 +6156,7 @@ static const struct amd_ip_funcs gfx_v11_0_ip_funcs = {
.wait_for_idle = gfx_v11_0_wait_for_idle,
.soft_reset = gfx_v11_0_soft_reset,
.check_soft_reset = gfx_v11_0_check_soft_reset,
+ .post_soft_reset = gfx_v11_0_post_soft_reset,
.set_clockgating_state = gfx_v11_0_set_clockgating_state,
.set_powergating_state = gfx_v11_0_set_powergating_state,
.get_clockgating_state = gfx_v11_0_get_clockgating_state,
@@ -6060,7 +6167,7 @@ static const struct amdgpu_ring_funcs gfx_v11_0_ring_funcs_gfx = {
.align_mask = 0xff,
.nop = PACKET3(PACKET3_NOP, 0x3FFF),
.support_64bit_ptrs = true,
- .vmhub = AMDGPU_GFXHUB_0,
+ .secure_submission_supported = true,
.get_rptr = gfx_v11_0_ring_get_rptr_gfx,
.get_wptr = gfx_v11_0_ring_get_wptr_gfx,
.set_wptr = gfx_v11_0_ring_set_wptr_gfx,
@@ -6108,7 +6215,6 @@ static const struct amdgpu_ring_funcs gfx_v11_0_ring_funcs_compute = {
.align_mask = 0xff,
.nop = PACKET3(PACKET3_NOP, 0x3FFF),
.support_64bit_ptrs = true,
- .vmhub = AMDGPU_GFXHUB_0,
.get_rptr = gfx_v11_0_ring_get_rptr_compute,
.get_wptr = gfx_v11_0_ring_get_wptr_compute,
.set_wptr = gfx_v11_0_ring_set_wptr_compute,
@@ -6144,7 +6250,6 @@ static const struct amdgpu_ring_funcs gfx_v11_0_ring_funcs_kiq = {
.align_mask = 0xff,
.nop = PACKET3(PACKET3_NOP, 0x3FFF),
.support_64bit_ptrs = true,
- .vmhub = AMDGPU_GFXHUB_0,
.get_rptr = gfx_v11_0_ring_get_rptr_compute,
.get_wptr = gfx_v11_0_ring_get_wptr_compute,
.set_wptr = gfx_v11_0_ring_set_wptr_compute,
@@ -6198,6 +6303,10 @@ static const struct amdgpu_irq_src_funcs gfx_v11_0_priv_inst_irq_funcs = {
.process = gfx_v11_0_priv_inst_irq,
};
+static const struct amdgpu_irq_src_funcs gfx_v11_0_rlc_gc_fed_irq_funcs = {
+ .process = gfx_v11_0_rlc_gc_fed_irq,
+};
+
static void gfx_v11_0_set_irq_funcs(struct amdgpu_device *adev)
{
adev->gfx.eop_irq.num_types = AMDGPU_CP_IRQ_LAST;
@@ -6208,6 +6317,10 @@ static void gfx_v11_0_set_irq_funcs(struct amdgpu_device *adev)
adev->gfx.priv_inst_irq.num_types = 1;
adev->gfx.priv_inst_irq.funcs = &gfx_v11_0_priv_inst_irq_funcs;
+
+ adev->gfx.rlc_gc_fed_irq.num_types = 1; /* 0x80 FED error */
+ adev->gfx.rlc_gc_fed_irq.funcs = &gfx_v11_0_rlc_gc_fed_irq_funcs;
+
}
static void gfx_v11_0_set_imu_funcs(struct amdgpu_device *adev)
diff --git a/drivers/gpu/drm/amd/amdgpu/gfx_v11_0_3.c b/drivers/gpu/drm/amd/amdgpu/gfx_v11_0_3.c
new file mode 100644
index 000000000000..068b9586a223
--- /dev/null
+++ b/drivers/gpu/drm/amd/amdgpu/gfx_v11_0_3.c
@@ -0,0 +1,96 @@
+/*
+ * Copyright 2023 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ */
+
+#include "amdgpu.h"
+#include "soc21.h"
+#include "gc/gc_11_0_3_offset.h"
+#include "gc/gc_11_0_3_sh_mask.h"
+#include "ivsrcid/gfx/irqsrcs_gfx_11_0_0.h"
+#include "soc15.h"
+#include "soc15d.h"
+#include "gfx_v11_0.h"
+
+
+static int gfx_v11_0_3_rlc_gc_fed_irq(struct amdgpu_device *adev,
+ struct amdgpu_irq_src *source,
+ struct amdgpu_iv_entry *entry)
+{
+ uint32_t rlc_status0 = 0, rlc_status1 = 0;
+ struct ras_common_if *ras_if = NULL;
+ struct ras_dispatch_if ih_data = {
+ .entry = entry,
+ };
+
+ rlc_status0 = RREG32(SOC15_REG_OFFSET(GC, 0, regRLC_RLCS_FED_STATUS_0));
+ rlc_status1 = RREG32(SOC15_REG_OFFSET(GC, 0, regRLC_RLCS_FED_STATUS_1));
+
+ if (!rlc_status0 && !rlc_status1) {
+ dev_warn(adev->dev, "RLC_GC_FED irq is generated, but rlc_status0 and rlc_status1 are empty!\n");
+ return 0;
+ }
+
+ /* Use RLC_RLCS_FED_STATUS_0/1 to distinguish FED error block. */
+ if (REG_GET_FIELD(rlc_status0, RLC_RLCS_FED_STATUS_0, SDMA0_FED_ERR) ||
+ REG_GET_FIELD(rlc_status0, RLC_RLCS_FED_STATUS_0, SDMA1_FED_ERR))
+ ras_if = adev->sdma.ras_if;
+ else
+ ras_if = adev->gfx.ras_if;
+
+ if (!ras_if) {
+ dev_err(adev->dev, "Gfx or sdma ras block not initialized, rlc_status0:0x%x.\n",
+ rlc_status0);
+ return -EINVAL;
+ }
+
+ dev_warn(adev->dev, "RLC %s FED IRQ\n", ras_if->name);
+
+ if (!amdgpu_sriov_vf(adev)) {
+ ih_data.head = *ras_if;
+ amdgpu_ras_interrupt_dispatch(adev, &ih_data);
+ } else {
+ if (adev->virt.ops && adev->virt.ops->ras_poison_handler)
+ adev->virt.ops->ras_poison_handler(adev);
+ else
+ dev_warn(adev->dev,
+ "No ras_poison_handler interface in SRIOV for %s!\n", ras_if->name);
+ }
+
+ return 0;
+}
+
+static int gfx_v11_0_3_poison_consumption_handler(struct amdgpu_device *adev,
+ struct amdgpu_iv_entry *entry)
+{
+ /* Workaround: when vmid and pasid are both zero, trigger gpu reset in KGD. */
+ if (entry && (entry->client_id == SOC21_IH_CLIENTID_GFX) &&
+ (entry->src_id == GFX_11_0_0__SRCID__RLC_GC_FED_INTERRUPT) &&
+ !entry->vmid && !entry->pasid)
+ amdgpu_ras_reset_gpu(adev);
+
+ return 0;
+}
+
+struct amdgpu_gfx_ras gfx_v11_0_3_ras = {
+ .rlc_gc_fed_irq = gfx_v11_0_3_rlc_gc_fed_irq,
+ .poison_consumption_handler = gfx_v11_0_3_poison_consumption_handler,
+};
diff --git a/drivers/gpu/drm/amd/amdgpu/gfx_v11_0_3.h b/drivers/gpu/drm/amd/amdgpu/gfx_v11_0_3.h
new file mode 100644
index 000000000000..672c7920b3d0
--- /dev/null
+++ b/drivers/gpu/drm/amd/amdgpu/gfx_v11_0_3.h
@@ -0,0 +1,29 @@
+/*
+ * Copyright 2023 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ */
+
+#ifndef __GFX_V11_0_3_H__
+#define __GFX_V11_0_3_H__
+
+extern struct amdgpu_gfx_ras gfx_v11_0_3_ras;
+
+#endif
diff --git a/drivers/gpu/drm/amd/amdgpu/gfx_v6_0.c b/drivers/gpu/drm/amd/amdgpu/gfx_v6_0.c
index 204b246f0e3f..c41219e23151 100644
--- a/drivers/gpu/drm/amd/amdgpu/gfx_v6_0.c
+++ b/drivers/gpu/drm/amd/amdgpu/gfx_v6_0.c
@@ -338,10 +338,7 @@ static int gfx_v6_0_init_microcode(struct amdgpu_device *adev)
}
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_pfp.bin", chip_name);
- err = request_firmware(&adev->gfx.pfp_fw, fw_name, adev->dev);
- if (err)
- goto out;
- err = amdgpu_ucode_validate(adev->gfx.pfp_fw);
+ err = amdgpu_ucode_request(adev, &adev->gfx.pfp_fw, fw_name);
if (err)
goto out;
cp_hdr = (const struct gfx_firmware_header_v1_0 *)adev->gfx.pfp_fw->data;
@@ -349,10 +346,7 @@ static int gfx_v6_0_init_microcode(struct amdgpu_device *adev)
adev->gfx.pfp_feature_version = le32_to_cpu(cp_hdr->ucode_feature_version);
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_me.bin", chip_name);
- err = request_firmware(&adev->gfx.me_fw, fw_name, adev->dev);
- if (err)
- goto out;
- err = amdgpu_ucode_validate(adev->gfx.me_fw);
+ err = amdgpu_ucode_request(adev, &adev->gfx.me_fw, fw_name);
if (err)
goto out;
cp_hdr = (const struct gfx_firmware_header_v1_0 *)adev->gfx.me_fw->data;
@@ -360,10 +354,7 @@ static int gfx_v6_0_init_microcode(struct amdgpu_device *adev)
adev->gfx.me_feature_version = le32_to_cpu(cp_hdr->ucode_feature_version);
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_ce.bin", chip_name);
- err = request_firmware(&adev->gfx.ce_fw, fw_name, adev->dev);
- if (err)
- goto out;
- err = amdgpu_ucode_validate(adev->gfx.ce_fw);
+ err = amdgpu_ucode_request(adev, &adev->gfx.ce_fw, fw_name);
if (err)
goto out;
cp_hdr = (const struct gfx_firmware_header_v1_0 *)adev->gfx.ce_fw->data;
@@ -371,10 +362,9 @@ static int gfx_v6_0_init_microcode(struct amdgpu_device *adev)
adev->gfx.ce_feature_version = le32_to_cpu(cp_hdr->ucode_feature_version);
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_rlc.bin", chip_name);
- err = request_firmware(&adev->gfx.rlc_fw, fw_name, adev->dev);
+ err = amdgpu_ucode_request(adev, &adev->gfx.rlc_fw, fw_name);
if (err)
goto out;
- err = amdgpu_ucode_validate(adev->gfx.rlc_fw);
rlc_hdr = (const struct rlc_firmware_header_v1_0 *)adev->gfx.rlc_fw->data;
adev->gfx.rlc_fw_version = le32_to_cpu(rlc_hdr->header.ucode_version);
adev->gfx.rlc_feature_version = le32_to_cpu(rlc_hdr->ucode_feature_version);
@@ -382,14 +372,10 @@ static int gfx_v6_0_init_microcode(struct amdgpu_device *adev)
out:
if (err) {
pr_err("gfx6: Failed to load firmware \"%s\"\n", fw_name);
- release_firmware(adev->gfx.pfp_fw);
- adev->gfx.pfp_fw = NULL;
- release_firmware(adev->gfx.me_fw);
- adev->gfx.me_fw = NULL;
- release_firmware(adev->gfx.ce_fw);
- adev->gfx.ce_fw = NULL;
- release_firmware(adev->gfx.rlc_fw);
- adev->gfx.rlc_fw = NULL;
+ amdgpu_ucode_release(&adev->gfx.pfp_fw);
+ amdgpu_ucode_release(&adev->gfx.me_fw);
+ amdgpu_ucode_release(&adev->gfx.ce_fw);
+ amdgpu_ucode_release(&adev->gfx.rlc_fw);
}
return err;
}
@@ -2375,7 +2361,8 @@ static int gfx_v6_0_rlc_init(struct amdgpu_device *adev)
dws = adev->gfx.rlc.clear_state_size + (256 / 4);
r = amdgpu_bo_create_reserved(adev, dws * 4, PAGE_SIZE,
- AMDGPU_GEM_DOMAIN_VRAM,
+ AMDGPU_GEM_DOMAIN_VRAM |
+ AMDGPU_GEM_DOMAIN_GTT,
&adev->gfx.rlc.clear_state_obj,
&adev->gfx.rlc.clear_state_gpu_addr,
(void **)&adev->gfx.rlc.cs_ptr);
diff --git a/drivers/gpu/drm/amd/amdgpu/gfx_v7_0.c b/drivers/gpu/drm/amd/amdgpu/gfx_v7_0.c
index 0f2976507e48..9d5c1e29b4a3 100644
--- a/drivers/gpu/drm/amd/amdgpu/gfx_v7_0.c
+++ b/drivers/gpu/drm/amd/amdgpu/gfx_v7_0.c
@@ -887,6 +887,16 @@ static void gfx_v7_0_get_csb_buffer(struct amdgpu_device *adev, volatile u32 *bu
static void gfx_v7_0_init_pg(struct amdgpu_device *adev);
static void gfx_v7_0_get_cu_info(struct amdgpu_device *adev);
+static void gfx_v7_0_free_microcode(struct amdgpu_device *adev)
+{
+ amdgpu_ucode_release(&adev->gfx.pfp_fw);
+ amdgpu_ucode_release(&adev->gfx.me_fw);
+ amdgpu_ucode_release(&adev->gfx.ce_fw);
+ amdgpu_ucode_release(&adev->gfx.mec_fw);
+ amdgpu_ucode_release(&adev->gfx.mec2_fw);
+ amdgpu_ucode_release(&adev->gfx.rlc_fw);
+}
+
/*
* Core functions
*/
@@ -927,88 +937,44 @@ static int gfx_v7_0_init_microcode(struct amdgpu_device *adev)
}
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_pfp.bin", chip_name);
- err = request_firmware(&adev->gfx.pfp_fw, fw_name, adev->dev);
- if (err)
- goto out;
- err = amdgpu_ucode_validate(adev->gfx.pfp_fw);
+ err = amdgpu_ucode_request(adev, &adev->gfx.pfp_fw, fw_name);
if (err)
goto out;
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_me.bin", chip_name);
- err = request_firmware(&adev->gfx.me_fw, fw_name, adev->dev);
- if (err)
- goto out;
- err = amdgpu_ucode_validate(adev->gfx.me_fw);
+ err = amdgpu_ucode_request(adev, &adev->gfx.me_fw, fw_name);
if (err)
goto out;
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_ce.bin", chip_name);
- err = request_firmware(&adev->gfx.ce_fw, fw_name, adev->dev);
- if (err)
- goto out;
- err = amdgpu_ucode_validate(adev->gfx.ce_fw);
+ err = amdgpu_ucode_request(adev, &adev->gfx.ce_fw, fw_name);
if (err)
goto out;
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_mec.bin", chip_name);
- err = request_firmware(&adev->gfx.mec_fw, fw_name, adev->dev);
- if (err)
- goto out;
- err = amdgpu_ucode_validate(adev->gfx.mec_fw);
+ err = amdgpu_ucode_request(adev, &adev->gfx.mec_fw, fw_name);
if (err)
goto out;
if (adev->asic_type == CHIP_KAVERI) {
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_mec2.bin", chip_name);
- err = request_firmware(&adev->gfx.mec2_fw, fw_name, adev->dev);
- if (err)
- goto out;
- err = amdgpu_ucode_validate(adev->gfx.mec2_fw);
+ err = amdgpu_ucode_request(adev, &adev->gfx.mec2_fw, fw_name);
if (err)
goto out;
}
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_rlc.bin", chip_name);
- err = request_firmware(&adev->gfx.rlc_fw, fw_name, adev->dev);
+ err = amdgpu_ucode_request(adev, &adev->gfx.rlc_fw, fw_name);
if (err)
goto out;
- err = amdgpu_ucode_validate(adev->gfx.rlc_fw);
-
out:
if (err) {
pr_err("gfx7: Failed to load firmware \"%s\"\n", fw_name);
- release_firmware(adev->gfx.pfp_fw);
- adev->gfx.pfp_fw = NULL;
- release_firmware(adev->gfx.me_fw);
- adev->gfx.me_fw = NULL;
- release_firmware(adev->gfx.ce_fw);
- adev->gfx.ce_fw = NULL;
- release_firmware(adev->gfx.mec_fw);
- adev->gfx.mec_fw = NULL;
- release_firmware(adev->gfx.mec2_fw);
- adev->gfx.mec2_fw = NULL;
- release_firmware(adev->gfx.rlc_fw);
- adev->gfx.rlc_fw = NULL;
+ gfx_v7_0_free_microcode(adev);
}
return err;
}
-static void gfx_v7_0_free_microcode(struct amdgpu_device *adev)
-{
- release_firmware(adev->gfx.pfp_fw);
- adev->gfx.pfp_fw = NULL;
- release_firmware(adev->gfx.me_fw);
- adev->gfx.me_fw = NULL;
- release_firmware(adev->gfx.ce_fw);
- adev->gfx.ce_fw = NULL;
- release_firmware(adev->gfx.mec_fw);
- adev->gfx.mec_fw = NULL;
- release_firmware(adev->gfx.mec2_fw);
- adev->gfx.mec2_fw = NULL;
- release_firmware(adev->gfx.rlc_fw);
- adev->gfx.rlc_fw = NULL;
-}
-
/**
* gfx_v7_0_tiling_mode_table_init - init the hw tiling table
*
@@ -2772,7 +2738,8 @@ static int gfx_v7_0_mec_init(struct amdgpu_device *adev)
* GFX7_MEC_HPD_SIZE * 2;
r = amdgpu_bo_create_reserved(adev, mec_hpd_size, PAGE_SIZE,
- AMDGPU_GEM_DOMAIN_VRAM,
+ AMDGPU_GEM_DOMAIN_VRAM |
+ AMDGPU_GEM_DOMAIN_GTT,
&adev->gfx.mec.hpd_eop_obj,
&adev->gfx.mec.hpd_eop_gpu_addr,
(void **)&hpd);
diff --git a/drivers/gpu/drm/amd/amdgpu/gfx_v8_0.c b/drivers/gpu/drm/amd/amdgpu/gfx_v8_0.c
index 7f0b18b0d4c4..b1f2684d854a 100644
--- a/drivers/gpu/drm/amd/amdgpu/gfx_v8_0.c
+++ b/drivers/gpu/drm/amd/amdgpu/gfx_v8_0.c
@@ -924,20 +924,14 @@ err1:
static void gfx_v8_0_free_microcode(struct amdgpu_device *adev)
{
- release_firmware(adev->gfx.pfp_fw);
- adev->gfx.pfp_fw = NULL;
- release_firmware(adev->gfx.me_fw);
- adev->gfx.me_fw = NULL;
- release_firmware(adev->gfx.ce_fw);
- adev->gfx.ce_fw = NULL;
- release_firmware(adev->gfx.rlc_fw);
- adev->gfx.rlc_fw = NULL;
- release_firmware(adev->gfx.mec_fw);
- adev->gfx.mec_fw = NULL;
+ amdgpu_ucode_release(&adev->gfx.pfp_fw);
+ amdgpu_ucode_release(&adev->gfx.me_fw);
+ amdgpu_ucode_release(&adev->gfx.ce_fw);
+ amdgpu_ucode_release(&adev->gfx.rlc_fw);
+ amdgpu_ucode_release(&adev->gfx.mec_fw);
if ((adev->asic_type != CHIP_STONEY) &&
(adev->asic_type != CHIP_TOPAZ))
- release_firmware(adev->gfx.mec2_fw);
- adev->gfx.mec2_fw = NULL;
+ amdgpu_ucode_release(&adev->gfx.mec2_fw);
kfree(adev->gfx.rlc.register_list_format);
}
@@ -989,40 +983,34 @@ static int gfx_v8_0_init_microcode(struct amdgpu_device *adev)
if (adev->asic_type >= CHIP_POLARIS10 && adev->asic_type <= CHIP_POLARIS12) {
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_pfp_2.bin", chip_name);
- err = request_firmware(&adev->gfx.pfp_fw, fw_name, adev->dev);
- if (err == -ENOENT) {
+ err = amdgpu_ucode_request(adev, &adev->gfx.pfp_fw, fw_name);
+ if (err == -ENODEV) {
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_pfp.bin", chip_name);
- err = request_firmware(&adev->gfx.pfp_fw, fw_name, adev->dev);
+ err = amdgpu_ucode_request(adev, &adev->gfx.pfp_fw, fw_name);
}
} else {
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_pfp.bin", chip_name);
- err = request_firmware(&adev->gfx.pfp_fw, fw_name, adev->dev);
+ err = amdgpu_ucode_request(adev, &adev->gfx.pfp_fw, fw_name);
}
if (err)
goto out;
- err = amdgpu_ucode_validate(adev->gfx.pfp_fw);
- if (err)
- goto out;
cp_hdr = (const struct gfx_firmware_header_v1_0 *)adev->gfx.pfp_fw->data;
adev->gfx.pfp_fw_version = le32_to_cpu(cp_hdr->header.ucode_version);
adev->gfx.pfp_feature_version = le32_to_cpu(cp_hdr->ucode_feature_version);
if (adev->asic_type >= CHIP_POLARIS10 && adev->asic_type <= CHIP_POLARIS12) {
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_me_2.bin", chip_name);
- err = request_firmware(&adev->gfx.me_fw, fw_name, adev->dev);
- if (err == -ENOENT) {
+ err = amdgpu_ucode_request(adev, &adev->gfx.me_fw, fw_name);
+ if (err == -ENODEV) {
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_me.bin", chip_name);
- err = request_firmware(&adev->gfx.me_fw, fw_name, adev->dev);
+ err = amdgpu_ucode_request(adev, &adev->gfx.me_fw, fw_name);
}
} else {
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_me.bin", chip_name);
- err = request_firmware(&adev->gfx.me_fw, fw_name, adev->dev);
+ err = amdgpu_ucode_request(adev, &adev->gfx.me_fw, fw_name);
}
if (err)
goto out;
- err = amdgpu_ucode_validate(adev->gfx.me_fw);
- if (err)
- goto out;
cp_hdr = (const struct gfx_firmware_header_v1_0 *)adev->gfx.me_fw->data;
adev->gfx.me_fw_version = le32_to_cpu(cp_hdr->header.ucode_version);
@@ -1030,20 +1018,17 @@ static int gfx_v8_0_init_microcode(struct amdgpu_device *adev)
if (adev->asic_type >= CHIP_POLARIS10 && adev->asic_type <= CHIP_POLARIS12) {
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_ce_2.bin", chip_name);
- err = request_firmware(&adev->gfx.ce_fw, fw_name, adev->dev);
- if (err == -ENOENT) {
+ err = amdgpu_ucode_request(adev, &adev->gfx.ce_fw, fw_name);
+ if (err == -ENODEV) {
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_ce.bin", chip_name);
- err = request_firmware(&adev->gfx.ce_fw, fw_name, adev->dev);
+ err = amdgpu_ucode_request(adev, &adev->gfx.ce_fw, fw_name);
}
} else {
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_ce.bin", chip_name);
- err = request_firmware(&adev->gfx.ce_fw, fw_name, adev->dev);
+ err = amdgpu_ucode_request(adev, &adev->gfx.ce_fw, fw_name);
}
if (err)
goto out;
- err = amdgpu_ucode_validate(adev->gfx.ce_fw);
- if (err)
- goto out;
cp_hdr = (const struct gfx_firmware_header_v1_0 *)adev->gfx.ce_fw->data;
adev->gfx.ce_fw_version = le32_to_cpu(cp_hdr->header.ucode_version);
adev->gfx.ce_feature_version = le32_to_cpu(cp_hdr->ucode_feature_version);
@@ -1060,10 +1045,9 @@ static int gfx_v8_0_init_microcode(struct amdgpu_device *adev)
adev->virt.chained_ib_support = false;
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_rlc.bin", chip_name);
- err = request_firmware(&adev->gfx.rlc_fw, fw_name, adev->dev);
+ err = amdgpu_ucode_request(adev, &adev->gfx.rlc_fw, fw_name);
if (err)
goto out;
- err = amdgpu_ucode_validate(adev->gfx.rlc_fw);
rlc_hdr = (const struct rlc_firmware_header_v2_0 *)adev->gfx.rlc_fw->data;
adev->gfx.rlc_fw_version = le32_to_cpu(rlc_hdr->header.ucode_version);
adev->gfx.rlc_feature_version = le32_to_cpu(rlc_hdr->ucode_feature_version);
@@ -1110,20 +1094,17 @@ static int gfx_v8_0_init_microcode(struct amdgpu_device *adev)
if (adev->asic_type >= CHIP_POLARIS10 && adev->asic_type <= CHIP_POLARIS12) {
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_mec_2.bin", chip_name);
- err = request_firmware(&adev->gfx.mec_fw, fw_name, adev->dev);
- if (err == -ENOENT) {
+ err = amdgpu_ucode_request(adev, &adev->gfx.mec_fw, fw_name);
+ if (err == -ENODEV) {
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_mec.bin", chip_name);
- err = request_firmware(&adev->gfx.mec_fw, fw_name, adev->dev);
+ err = amdgpu_ucode_request(adev, &adev->gfx.mec_fw, fw_name);
}
} else {
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_mec.bin", chip_name);
- err = request_firmware(&adev->gfx.mec_fw, fw_name, adev->dev);
+ err = amdgpu_ucode_request(adev, &adev->gfx.mec_fw, fw_name);
}
if (err)
goto out;
- err = amdgpu_ucode_validate(adev->gfx.mec_fw);
- if (err)
- goto out;
cp_hdr = (const struct gfx_firmware_header_v1_0 *)adev->gfx.mec_fw->data;
adev->gfx.mec_fw_version = le32_to_cpu(cp_hdr->header.ucode_version);
adev->gfx.mec_feature_version = le32_to_cpu(cp_hdr->ucode_feature_version);
@@ -1132,19 +1113,16 @@ static int gfx_v8_0_init_microcode(struct amdgpu_device *adev)
(adev->asic_type != CHIP_TOPAZ)) {
if (adev->asic_type >= CHIP_POLARIS10 && adev->asic_type <= CHIP_POLARIS12) {
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_mec2_2.bin", chip_name);
- err = request_firmware(&adev->gfx.mec2_fw, fw_name, adev->dev);
- if (err == -ENOENT) {
+ err = amdgpu_ucode_request(adev, &adev->gfx.mec2_fw, fw_name);
+ if (err == -ENODEV) {
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_mec2.bin", chip_name);
- err = request_firmware(&adev->gfx.mec2_fw, fw_name, adev->dev);
+ err = amdgpu_ucode_request(adev, &adev->gfx.mec2_fw, fw_name);
}
} else {
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_mec2.bin", chip_name);
- err = request_firmware(&adev->gfx.mec2_fw, fw_name, adev->dev);
+ err = amdgpu_ucode_request(adev, &adev->gfx.mec2_fw, fw_name);
}
if (!err) {
- err = amdgpu_ucode_validate(adev->gfx.mec2_fw);
- if (err)
- goto out;
cp_hdr = (const struct gfx_firmware_header_v1_0 *)
adev->gfx.mec2_fw->data;
adev->gfx.mec2_fw_version =
@@ -1219,18 +1197,12 @@ out:
dev_err(adev->dev,
"gfx8: Failed to load firmware \"%s\"\n",
fw_name);
- release_firmware(adev->gfx.pfp_fw);
- adev->gfx.pfp_fw = NULL;
- release_firmware(adev->gfx.me_fw);
- adev->gfx.me_fw = NULL;
- release_firmware(adev->gfx.ce_fw);
- adev->gfx.ce_fw = NULL;
- release_firmware(adev->gfx.rlc_fw);
- adev->gfx.rlc_fw = NULL;
- release_firmware(adev->gfx.mec_fw);
- adev->gfx.mec_fw = NULL;
- release_firmware(adev->gfx.mec2_fw);
- adev->gfx.mec2_fw = NULL;
+ amdgpu_ucode_release(&adev->gfx.pfp_fw);
+ amdgpu_ucode_release(&adev->gfx.me_fw);
+ amdgpu_ucode_release(&adev->gfx.ce_fw);
+ amdgpu_ucode_release(&adev->gfx.rlc_fw);
+ amdgpu_ucode_release(&adev->gfx.mec_fw);
+ amdgpu_ucode_release(&adev->gfx.mec2_fw);
}
return err;
}
@@ -1340,7 +1312,8 @@ static int gfx_v8_0_mec_init(struct amdgpu_device *adev)
mec_hpd_size = adev->gfx.num_compute_rings * GFX8_MEC_HPD_SIZE;
if (mec_hpd_size) {
r = amdgpu_bo_create_reserved(adev, mec_hpd_size, PAGE_SIZE,
- AMDGPU_GEM_DOMAIN_VRAM,
+ AMDGPU_GEM_DOMAIN_VRAM |
+ AMDGPU_GEM_DOMAIN_GTT,
&adev->gfx.mec.hpd_eop_obj,
&adev->gfx.mec.hpd_eop_gpu_addr,
(void **)&hpd);
@@ -4643,6 +4616,8 @@ static int gfx_v8_0_kiq_init_queue(struct amdgpu_ring *ring)
memset((void *)mqd, 0, sizeof(struct vi_mqd_allocation));
((struct vi_mqd_allocation *)mqd)->dynamic_cu_mask = 0xFFFFFFFF;
((struct vi_mqd_allocation *)mqd)->dynamic_rb_mask = 0xFFFFFFFF;
+ if (amdgpu_sriov_vf(adev) && adev->in_suspend)
+ amdgpu_ring_clear_ring(ring);
mutex_lock(&adev->srbm_mutex);
vi_srbm_select(adev, ring->me, ring->pipe, ring->queue, 0);
gfx_v8_0_mqd_init(ring);
diff --git a/drivers/gpu/drm/amd/amdgpu/gfx_v9_0.c b/drivers/gpu/drm/amd/amdgpu/gfx_v9_0.c
index 0320be4a5fc6..f46d4b18a3fa 100644
--- a/drivers/gpu/drm/amd/amdgpu/gfx_v9_0.c
+++ b/drivers/gpu/drm/amd/amdgpu/gfx_v9_0.c
@@ -47,6 +47,7 @@
#include "amdgpu_ras.h"
+#include "amdgpu_ring_mux.h"
#include "gfx_v9_4.h"
#include "gfx_v9_0.h"
#include "gfx_v9_4_2.h"
@@ -56,6 +57,7 @@
#include "asic_reg/gc/gc_9_0_default.h"
#define GFX9_NUM_GFX_RINGS 1
+#define GFX9_NUM_SW_GFX_RINGS 2
#define GFX9_MEC_HPD_SIZE 4096
#define RLCG_UCODE_LOADING_START_ADDRESS 0x00002000L
#define RLC_SAVE_RESTORE_ADDR_STARTING_OFFSET 0x00000000L
@@ -147,6 +149,16 @@ MODULE_FIRMWARE("amdgpu/aldebaran_sjt_mec2.bin");
#define mmGOLDEN_TSC_COUNT_LOWER_Renoir 0x0026
#define mmGOLDEN_TSC_COUNT_LOWER_Renoir_BASE_IDX 1
+#define mmGOLDEN_TSC_COUNT_UPPER_Raven 0x007a
+#define mmGOLDEN_TSC_COUNT_UPPER_Raven_BASE_IDX 0
+#define mmGOLDEN_TSC_COUNT_LOWER_Raven 0x007b
+#define mmGOLDEN_TSC_COUNT_LOWER_Raven_BASE_IDX 0
+
+#define mmGOLDEN_TSC_COUNT_UPPER_Raven2 0x0068
+#define mmGOLDEN_TSC_COUNT_UPPER_Raven2_BASE_IDX 0
+#define mmGOLDEN_TSC_COUNT_LOWER_Raven2 0x0069
+#define mmGOLDEN_TSC_COUNT_LOWER_Raven2_BASE_IDX 0
+
enum ta_ras_gfx_subblock {
/*CPC*/
TA_RAS_BLOCK__GFX_CPC_INDEX_START = 0,
@@ -753,7 +765,7 @@ static void gfx_v9_0_set_rlc_funcs(struct amdgpu_device *adev);
static int gfx_v9_0_get_cu_info(struct amdgpu_device *adev,
struct amdgpu_cu_info *cu_info);
static uint64_t gfx_v9_0_get_gpu_clock_counter(struct amdgpu_device *adev);
-static void gfx_v9_0_ring_emit_de_meta(struct amdgpu_ring *ring);
+static void gfx_v9_0_ring_emit_de_meta(struct amdgpu_ring *ring, bool resume);
static u64 gfx_v9_0_ring_get_rptr_compute(struct amdgpu_ring *ring);
static void gfx_v9_0_query_ras_error_count(struct amdgpu_device *adev,
void *ras_error_status);
@@ -826,9 +838,10 @@ static void gfx_v9_0_kiq_unmap_queues(struct amdgpu_ring *kiq_ring,
PACKET3_UNMAP_QUEUES_DOORBELL_OFFSET0(ring->doorbell_index));
if (action == PREEMPT_QUEUES_NO_UNMAP) {
- amdgpu_ring_write(kiq_ring, lower_32_bits(gpu_addr));
- amdgpu_ring_write(kiq_ring, upper_32_bits(gpu_addr));
- amdgpu_ring_write(kiq_ring, seq);
+ amdgpu_ring_write(kiq_ring, lower_32_bits(ring->wptr & ring->buf_mask));
+ amdgpu_ring_write(kiq_ring, 0);
+ amdgpu_ring_write(kiq_ring, 0);
+
} else {
amdgpu_ring_write(kiq_ring, 0);
amdgpu_ring_write(kiq_ring, 0);
@@ -1075,18 +1088,12 @@ err1:
static void gfx_v9_0_free_microcode(struct amdgpu_device *adev)
{
- release_firmware(adev->gfx.pfp_fw);
- adev->gfx.pfp_fw = NULL;
- release_firmware(adev->gfx.me_fw);
- adev->gfx.me_fw = NULL;
- release_firmware(adev->gfx.ce_fw);
- adev->gfx.ce_fw = NULL;
- release_firmware(adev->gfx.rlc_fw);
- adev->gfx.rlc_fw = NULL;
- release_firmware(adev->gfx.mec_fw);
- adev->gfx.mec_fw = NULL;
- release_firmware(adev->gfx.mec2_fw);
- adev->gfx.mec2_fw = NULL;
+ amdgpu_ucode_release(&adev->gfx.pfp_fw);
+ amdgpu_ucode_release(&adev->gfx.me_fw);
+ amdgpu_ucode_release(&adev->gfx.ce_fw);
+ amdgpu_ucode_release(&adev->gfx.rlc_fw);
+ amdgpu_ucode_release(&adev->gfx.mec_fw);
+ amdgpu_ucode_release(&adev->gfx.mec2_fw);
kfree(adev->gfx.rlc.register_list_format);
}
@@ -1248,55 +1255,40 @@ static void gfx_v9_0_check_if_need_gfxoff(struct amdgpu_device *adev)
}
static int gfx_v9_0_init_cp_gfx_microcode(struct amdgpu_device *adev,
- const char *chip_name)
+ char *chip_name)
{
char fw_name[30];
int err;
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_pfp.bin", chip_name);
- err = request_firmware(&adev->gfx.pfp_fw, fw_name, adev->dev);
- if (err)
- goto out;
- err = amdgpu_ucode_validate(adev->gfx.pfp_fw);
+ err = amdgpu_ucode_request(adev, &adev->gfx.pfp_fw, fw_name);
if (err)
goto out;
amdgpu_gfx_cp_init_microcode(adev, AMDGPU_UCODE_ID_CP_PFP);
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_me.bin", chip_name);
- err = request_firmware(&adev->gfx.me_fw, fw_name, adev->dev);
- if (err)
- goto out;
- err = amdgpu_ucode_validate(adev->gfx.me_fw);
+ err = amdgpu_ucode_request(adev, &adev->gfx.me_fw, fw_name);
if (err)
goto out;
amdgpu_gfx_cp_init_microcode(adev, AMDGPU_UCODE_ID_CP_ME);
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_ce.bin", chip_name);
- err = request_firmware(&adev->gfx.ce_fw, fw_name, adev->dev);
- if (err)
- goto out;
- err = amdgpu_ucode_validate(adev->gfx.ce_fw);
+ err = amdgpu_ucode_request(adev, &adev->gfx.ce_fw, fw_name);
if (err)
goto out;
amdgpu_gfx_cp_init_microcode(adev, AMDGPU_UCODE_ID_CP_CE);
out:
if (err) {
- dev_err(adev->dev,
- "gfx9: Failed to init firmware \"%s\"\n",
- fw_name);
- release_firmware(adev->gfx.pfp_fw);
- adev->gfx.pfp_fw = NULL;
- release_firmware(adev->gfx.me_fw);
- adev->gfx.me_fw = NULL;
- release_firmware(adev->gfx.ce_fw);
- adev->gfx.ce_fw = NULL;
+ amdgpu_ucode_release(&adev->gfx.pfp_fw);
+ amdgpu_ucode_release(&adev->gfx.me_fw);
+ amdgpu_ucode_release(&adev->gfx.ce_fw);
}
return err;
}
static int gfx_v9_0_init_rlc_microcode(struct amdgpu_device *adev,
- const char *chip_name)
+ char *chip_name)
{
char fw_name[30];
int err;
@@ -1325,10 +1317,7 @@ static int gfx_v9_0_init_rlc_microcode(struct amdgpu_device *adev,
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_kicker_rlc.bin", chip_name);
else
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_rlc.bin", chip_name);
- err = request_firmware(&adev->gfx.rlc_fw, fw_name, adev->dev);
- if (err)
- goto out;
- err = amdgpu_ucode_validate(adev->gfx.rlc_fw);
+ err = amdgpu_ucode_request(adev, &adev->gfx.rlc_fw, fw_name);
if (err)
goto out;
rlc_hdr = (const struct rlc_firmware_header_v2_0 *)adev->gfx.rlc_fw->data;
@@ -1337,13 +1326,9 @@ static int gfx_v9_0_init_rlc_microcode(struct amdgpu_device *adev,
version_minor = le16_to_cpu(rlc_hdr->header.header_version_minor);
err = amdgpu_gfx_rlc_init_microcode(adev, version_major, version_minor);
out:
- if (err) {
- dev_err(adev->dev,
- "gfx9: Failed to init firmware \"%s\"\n",
- fw_name);
- release_firmware(adev->gfx.rlc_fw);
- adev->gfx.rlc_fw = NULL;
- }
+ if (err)
+ amdgpu_ucode_release(&adev->gfx.rlc_fw);
+
return err;
}
@@ -1358,7 +1343,7 @@ static bool gfx_v9_0_load_mec2_fw_bin_support(struct amdgpu_device *adev)
}
static int gfx_v9_0_init_cp_compute_microcode(struct amdgpu_device *adev,
- const char *chip_name)
+ char *chip_name)
{
char fw_name[30];
int err;
@@ -1368,10 +1353,7 @@ static int gfx_v9_0_init_cp_compute_microcode(struct amdgpu_device *adev,
else
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_mec.bin", chip_name);
- err = request_firmware(&adev->gfx.mec_fw, fw_name, adev->dev);
- if (err)
- goto out;
- err = amdgpu_ucode_validate(adev->gfx.mec_fw);
+ err = amdgpu_ucode_request(adev, &adev->gfx.mec_fw, fw_name);
if (err)
goto out;
amdgpu_gfx_cp_init_microcode(adev, AMDGPU_UCODE_ID_CP_MEC1);
@@ -1383,91 +1365,49 @@ static int gfx_v9_0_init_cp_compute_microcode(struct amdgpu_device *adev,
else
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_mec2.bin", chip_name);
- err = request_firmware(&adev->gfx.mec2_fw, fw_name, adev->dev);
+ /* ignore failures to load */
+ err = amdgpu_ucode_request(adev, &adev->gfx.mec2_fw, fw_name);
if (!err) {
- err = amdgpu_ucode_validate(adev->gfx.mec2_fw);
- if (err)
- goto out;
amdgpu_gfx_cp_init_microcode(adev, AMDGPU_UCODE_ID_CP_MEC2);
amdgpu_gfx_cp_init_microcode(adev, AMDGPU_UCODE_ID_CP_MEC2_JT);
} else {
err = 0;
- adev->gfx.mec2_fw = NULL;
+ amdgpu_ucode_release(&adev->gfx.mec2_fw);
}
} else {
adev->gfx.mec2_fw_version = adev->gfx.mec_fw_version;
adev->gfx.mec2_feature_version = adev->gfx.mec_feature_version;
}
-out:
gfx_v9_0_check_if_need_gfxoff(adev);
gfx_v9_0_check_fw_write_wait(adev);
- if (err) {
- dev_err(adev->dev,
- "gfx9: Failed to init firmware \"%s\"\n",
- fw_name);
- release_firmware(adev->gfx.mec_fw);
- adev->gfx.mec_fw = NULL;
- release_firmware(adev->gfx.mec2_fw);
- adev->gfx.mec2_fw = NULL;
- }
+
+out:
+ if (err)
+ amdgpu_ucode_release(&adev->gfx.mec_fw);
return err;
}
static int gfx_v9_0_init_microcode(struct amdgpu_device *adev)
{
- const char *chip_name;
+ char ucode_prefix[30];
int r;
DRM_DEBUG("\n");
-
- switch (adev->ip_versions[GC_HWIP][0]) {
- case IP_VERSION(9, 0, 1):
- chip_name = "vega10";
- break;
- case IP_VERSION(9, 2, 1):
- chip_name = "vega12";
- break;
- case IP_VERSION(9, 4, 0):
- chip_name = "vega20";
- break;
- case IP_VERSION(9, 2, 2):
- case IP_VERSION(9, 1, 0):
- if (adev->apu_flags & AMD_APU_IS_RAVEN2)
- chip_name = "raven2";
- else if (adev->apu_flags & AMD_APU_IS_PICASSO)
- chip_name = "picasso";
- else
- chip_name = "raven";
- break;
- case IP_VERSION(9, 4, 1):
- chip_name = "arcturus";
- break;
- case IP_VERSION(9, 3, 0):
- if (adev->apu_flags & AMD_APU_IS_RENOIR)
- chip_name = "renoir";
- else
- chip_name = "green_sardine";
- break;
- case IP_VERSION(9, 4, 2):
- chip_name = "aldebaran";
- break;
- default:
- BUG();
- }
+ amdgpu_ucode_ip_version_decode(adev, GC_HWIP, ucode_prefix, sizeof(ucode_prefix));
/* No CPG in Arcturus */
if (adev->gfx.num_gfx_rings) {
- r = gfx_v9_0_init_cp_gfx_microcode(adev, chip_name);
+ r = gfx_v9_0_init_cp_gfx_microcode(adev, ucode_prefix);
if (r)
return r;
}
- r = gfx_v9_0_init_rlc_microcode(adev, chip_name);
+ r = gfx_v9_0_init_rlc_microcode(adev, ucode_prefix);
if (r)
return r;
- r = gfx_v9_0_init_cp_compute_microcode(adev, chip_name);
+ r = gfx_v9_0_init_cp_compute_microcode(adev, ucode_prefix);
if (r)
return r;
@@ -1564,7 +1504,7 @@ static void gfx_v9_0_init_always_on_cu_mask(struct amdgpu_device *adev)
mask = 1;
cu_bitmap = 0;
counter = 0;
- gfx_v9_0_select_se_sh(adev, i, j, 0xffffffff);
+ amdgpu_gfx_select_se_sh(adev, i, j, 0xffffffff);
for (k = 0; k < adev->gfx.config.max_cu_per_sh; k ++) {
if (cu_info->bitmap[i][j] & mask) {
@@ -1583,7 +1523,7 @@ static void gfx_v9_0_init_always_on_cu_mask(struct amdgpu_device *adev)
cu_info->ao_cu_bitmap[i][j] = cu_bitmap;
}
}
- gfx_v9_0_select_se_sh(adev, 0xffffffff, 0xffffffff, 0xffffffff);
+ amdgpu_gfx_select_se_sh(adev, 0xffffffff, 0xffffffff, 0xffffffff);
mutex_unlock(&adev->grbm_idx_mutex);
}
@@ -1605,7 +1545,7 @@ static void gfx_v9_0_init_lbpw(struct amdgpu_device *adev)
mutex_lock(&adev->grbm_idx_mutex);
/* set mmRLC_LB_INIT_CU_MASK thru broadcast mode to enable all SE/SH*/
- gfx_v9_0_select_se_sh(adev, 0xffffffff, 0xffffffff, 0xffffffff);
+ amdgpu_gfx_select_se_sh(adev, 0xffffffff, 0xffffffff, 0xffffffff);
WREG32_SOC15(GC, 0, mmRLC_LB_INIT_CU_MASK, 0xffffffff);
/* set mmRLC_LB_PARAMS = 0x003F_1006 */
@@ -1654,7 +1594,7 @@ static void gfx_v9_4_init_lbpw(struct amdgpu_device *adev)
mutex_lock(&adev->grbm_idx_mutex);
/* set mmRLC_LB_INIT_CU_MASK thru broadcast mode to enable all SE/SH*/
- gfx_v9_0_select_se_sh(adev, 0xffffffff, 0xffffffff, 0xffffffff);
+ amdgpu_gfx_select_se_sh(adev, 0xffffffff, 0xffffffff, 0xffffffff);
WREG32_SOC15(GC, 0, mmRLC_LB_INIT_CU_MASK, 0xffffffff);
/* set mmRLC_LB_PARAMS = 0x003F_1006 */
@@ -1780,7 +1720,8 @@ static int gfx_v9_0_mec_init(struct amdgpu_device *adev)
mec_hpd_size = adev->gfx.num_compute_rings * GFX9_MEC_HPD_SIZE;
if (mec_hpd_size) {
r = amdgpu_bo_create_reserved(adev, mec_hpd_size, PAGE_SIZE,
- AMDGPU_GEM_DOMAIN_VRAM,
+ AMDGPU_GEM_DOMAIN_VRAM |
+ AMDGPU_GEM_DOMAIN_GTT,
&adev->gfx.mec.hpd_eop_obj,
&adev->gfx.mec.hpd_eop_gpu_addr,
(void **)&hpd);
@@ -1919,8 +1860,6 @@ static int gfx_v9_0_gpu_early_init(struct amdgpu_device *adev)
u32 gb_addr_config;
int err;
- adev->gfx.funcs = &gfx_v9_0_gfx_funcs;
-
switch (adev->ip_versions[GC_HWIP][0]) {
case IP_VERSION(9, 0, 1):
adev->gfx.config.max_hw_contexts = 8;
@@ -2007,27 +1946,6 @@ static int gfx_v9_0_gpu_early_init(struct amdgpu_device *adev)
break;
}
- if (adev->gfx.ras) {
- err = amdgpu_ras_register_ras_block(adev, &adev->gfx.ras->ras_block);
- if (err) {
- DRM_ERROR("Failed to register gfx ras block!\n");
- return err;
- }
-
- strcpy(adev->gfx.ras->ras_block.ras_comm.name, "gfx");
- adev->gfx.ras->ras_block.ras_comm.block = AMDGPU_RAS_BLOCK__GFX;
- adev->gfx.ras->ras_block.ras_comm.type = AMDGPU_RAS_ERROR__MULTI_UNCORRECTABLE;
- adev->gfx.ras_if = &adev->gfx.ras->ras_block.ras_comm;
-
- /* If not define special ras_late_init function, use gfx default ras_late_init */
- if (!adev->gfx.ras->ras_block.ras_late_init)
- adev->gfx.ras->ras_block.ras_late_init = amdgpu_gfx_ras_late_init;
-
- /* If not defined special ras_cb function, use default ras_cb */
- if (!adev->gfx.ras->ras_block.ras_cb)
- adev->gfx.ras->ras_block.ras_cb = amdgpu_gfx_process_ras_data_cb;
- }
-
adev->gfx.config.gb_addr_config = gb_addr_config;
adev->gfx.config.gb_addr_config_fields.num_pipes = 1 <<
@@ -2087,6 +2005,7 @@ static int gfx_v9_0_compute_ring_init(struct amdgpu_device *adev, int ring_id,
ring->doorbell_index = (adev->doorbell_index.mec_ring0 + ring_id) << 1;
ring->eop_gpu_addr = adev->gfx.mec.hpd_eop_gpu_addr
+ (ring_id * GFX9_MEC_HPD_SIZE);
+ ring->vm_hub = AMDGPU_GFXHUB_0;
sprintf(ring->name, "comp_%d.%d.%d", ring->me, ring->pipe, ring->queue);
irq_type = AMDGPU_CP_IRQ_COMPUTE_MEC1_PIPE0_EOP
@@ -2105,6 +2024,7 @@ static int gfx_v9_0_sw_init(void *handle)
struct amdgpu_ring *ring;
struct amdgpu_kiq *kiq;
struct amdgpu_device *adev = (struct amdgpu_device *)handle;
+ unsigned int hw_prio;
switch (adev->ip_versions[GC_HWIP][0]) {
case IP_VERSION(9, 0, 1):
@@ -2156,12 +2076,6 @@ static int gfx_v9_0_sw_init(void *handle)
adev->gfx.gfx_current_status = AMDGPU_GFX_NORMAL_MODE;
- r = gfx_v9_0_init_microcode(adev);
- if (r) {
- DRM_ERROR("Failed to load gfx firmware!\n");
- return r;
- }
-
if (adev->gfx.rlc.funcs) {
if (adev->gfx.rlc.funcs->init) {
r = adev->gfx.rlc.funcs->init(adev);
@@ -2188,6 +2102,10 @@ static int gfx_v9_0_sw_init(void *handle)
sprintf(ring->name, "gfx_%d", i);
ring->use_doorbell = true;
ring->doorbell_index = adev->doorbell_index.gfx_ring0 << 1;
+
+ /* disable scheduler on the real ring */
+ ring->no_scheduler = true;
+ ring->vm_hub = AMDGPU_GFXHUB_0;
r = amdgpu_ring_init(adev, ring, 1024, &adev->gfx.eop_irq,
AMDGPU_CP_IRQ_GFX_ME0_PIPE0_EOP,
AMDGPU_RING_PRIO_DEFAULT, NULL);
@@ -2195,6 +2113,42 @@ static int gfx_v9_0_sw_init(void *handle)
return r;
}
+ /* set up the software rings */
+ if (adev->gfx.num_gfx_rings) {
+ for (i = 0; i < GFX9_NUM_SW_GFX_RINGS; i++) {
+ ring = &adev->gfx.sw_gfx_ring[i];
+ ring->ring_obj = NULL;
+ sprintf(ring->name, amdgpu_sw_ring_name(i));
+ ring->use_doorbell = true;
+ ring->doorbell_index = adev->doorbell_index.gfx_ring0 << 1;
+ ring->is_sw_ring = true;
+ hw_prio = amdgpu_sw_ring_priority(i);
+ ring->vm_hub = AMDGPU_GFXHUB_0;
+ r = amdgpu_ring_init(adev, ring, 1024, &adev->gfx.eop_irq,
+ AMDGPU_CP_IRQ_GFX_ME0_PIPE0_EOP, hw_prio,
+ NULL);
+ if (r)
+ return r;
+ ring->wptr = 0;
+ }
+
+ /* init the muxer and add software rings */
+ r = amdgpu_ring_mux_init(&adev->gfx.muxer, &adev->gfx.gfx_ring[0],
+ GFX9_NUM_SW_GFX_RINGS);
+ if (r) {
+ DRM_ERROR("amdgpu_ring_mux_init failed(%d)\n", r);
+ return r;
+ }
+ for (i = 0; i < GFX9_NUM_SW_GFX_RINGS; i++) {
+ r = amdgpu_ring_mux_add_sw_ring(&adev->gfx.muxer,
+ &adev->gfx.sw_gfx_ring[i]);
+ if (r) {
+ DRM_ERROR("amdgpu_ring_mux_add_sw_ring failed(%d)\n", r);
+ return r;
+ }
+ }
+ }
+
/* set up the compute queues - allocate horizontally across pipes */
ring_id = 0;
for (i = 0; i < adev->gfx.mec.num_mec; ++i) {
@@ -2236,6 +2190,11 @@ static int gfx_v9_0_sw_init(void *handle)
if (r)
return r;
+ if (amdgpu_gfx_ras_sw_init(adev)) {
+ dev_err(adev->dev, "Failed to initialize gfx ras block!\n");
+ return -EINVAL;
+ }
+
return 0;
}
@@ -2245,6 +2204,12 @@ static int gfx_v9_0_sw_fini(void *handle)
int i;
struct amdgpu_device *adev = (struct amdgpu_device *)handle;
+ if (adev->gfx.num_gfx_rings) {
+ for (i = 0; i < GFX9_NUM_SW_GFX_RINGS; i++)
+ amdgpu_ring_fini(&adev->gfx.sw_gfx_ring[i]);
+ amdgpu_ring_mux_fini(&adev->gfx.muxer);
+ }
+
for (i = 0; i < adev->gfx.num_gfx_rings; i++)
amdgpu_ring_fini(&adev->gfx.gfx_ring[i]);
for (i = 0; i < adev->gfx.num_compute_rings; i++)
@@ -2324,13 +2289,13 @@ static void gfx_v9_0_setup_rb(struct amdgpu_device *adev)
mutex_lock(&adev->grbm_idx_mutex);
for (i = 0; i < adev->gfx.config.max_shader_engines; i++) {
for (j = 0; j < adev->gfx.config.max_sh_per_se; j++) {
- gfx_v9_0_select_se_sh(adev, i, j, 0xffffffff);
+ amdgpu_gfx_select_se_sh(adev, i, j, 0xffffffff);
data = gfx_v9_0_get_rb_active_bitmap(adev);
active_rbs |= data << ((i * adev->gfx.config.max_sh_per_se + j) *
rb_bitmap_width_per_sh);
}
}
- gfx_v9_0_select_se_sh(adev, 0xffffffff, 0xffffffff, 0xffffffff);
+ amdgpu_gfx_select_se_sh(adev, 0xffffffff, 0xffffffff, 0xffffffff);
mutex_unlock(&adev->grbm_idx_mutex);
adev->gfx.config.backend_enable_mask = active_rbs;
@@ -2467,14 +2432,14 @@ static void gfx_v9_0_wait_for_rlc_serdes(struct amdgpu_device *adev)
mutex_lock(&adev->grbm_idx_mutex);
for (i = 0; i < adev->gfx.config.max_shader_engines; i++) {
for (j = 0; j < adev->gfx.config.max_sh_per_se; j++) {
- gfx_v9_0_select_se_sh(adev, i, j, 0xffffffff);
+ amdgpu_gfx_select_se_sh(adev, i, j, 0xffffffff);
for (k = 0; k < adev->usec_timeout; k++) {
if (RREG32_SOC15(GC, 0, mmRLC_SERDES_CU_MASTER_BUSY) == 0)
break;
udelay(1);
}
if (k == adev->usec_timeout) {
- gfx_v9_0_select_se_sh(adev, 0xffffffff,
+ amdgpu_gfx_select_se_sh(adev, 0xffffffff,
0xffffffff, 0xffffffff);
mutex_unlock(&adev->grbm_idx_mutex);
DRM_INFO("Timeout wait for RLC serdes %u,%u\n",
@@ -2483,7 +2448,7 @@ static void gfx_v9_0_wait_for_rlc_serdes(struct amdgpu_device *adev)
}
}
}
- gfx_v9_0_select_se_sh(adev, 0xffffffff, 0xffffffff, 0xffffffff);
+ amdgpu_gfx_select_se_sh(adev, 0xffffffff, 0xffffffff, 0xffffffff);
mutex_unlock(&adev->grbm_idx_mutex);
mask = RLC_SERDES_NONCU_MASTER_BUSY__SE_MASTER_BUSY_MASK |
@@ -3583,6 +3548,8 @@ static int gfx_v9_0_kiq_init_queue(struct amdgpu_ring *ring)
memset((void *)mqd, 0, sizeof(struct v9_mqd_allocation));
((struct v9_mqd_allocation *)mqd)->dynamic_cu_mask = 0xFFFFFFFF;
((struct v9_mqd_allocation *)mqd)->dynamic_rb_mask = 0xFFFFFFFF;
+ if (amdgpu_sriov_vf(adev) && adev->in_suspend)
+ amdgpu_ring_clear_ring(ring);
mutex_lock(&adev->srbm_mutex);
soc15_grbm_select(adev, ring->me, ring->pipe, ring->queue, 0);
gfx_v9_0_mqd_init(ring);
@@ -3797,7 +3764,8 @@ static int gfx_v9_0_hw_fini(void *handle)
{
struct amdgpu_device *adev = (struct amdgpu_device *)handle;
- amdgpu_irq_put(adev, &adev->gfx.cp_ecc_error_irq, 0);
+ if (amdgpu_ras_is_supported(adev, AMDGPU_RAS_BLOCK__GFX))
+ amdgpu_irq_put(adev, &adev->gfx.cp_ecc_error_irq, 0);
amdgpu_irq_put(adev, &adev->gfx.priv_reg_irq, 0);
amdgpu_irq_put(adev, &adev->gfx.priv_inst_irq, 0);
@@ -4034,6 +4002,36 @@ static uint64_t gfx_v9_0_get_gpu_clock_counter(struct amdgpu_device *adev)
preempt_enable();
clock = clock_lo | (clock_hi << 32ULL);
break;
+ case IP_VERSION(9, 1, 0):
+ preempt_disable();
+ clock_hi = RREG32_SOC15_NO_KIQ(PWR, 0, mmGOLDEN_TSC_COUNT_UPPER_Raven);
+ clock_lo = RREG32_SOC15_NO_KIQ(PWR, 0, mmGOLDEN_TSC_COUNT_LOWER_Raven);
+ hi_check = RREG32_SOC15_NO_KIQ(PWR, 0, mmGOLDEN_TSC_COUNT_UPPER_Raven);
+ /* The PWR TSC clock frequency is 100MHz, which sets 32-bit carry over
+ * roughly every 42 seconds.
+ */
+ if (hi_check != clock_hi) {
+ clock_lo = RREG32_SOC15_NO_KIQ(PWR, 0, mmGOLDEN_TSC_COUNT_LOWER_Raven);
+ clock_hi = hi_check;
+ }
+ preempt_enable();
+ clock = clock_lo | (clock_hi << 32ULL);
+ break;
+ case IP_VERSION(9, 2, 2):
+ preempt_disable();
+ clock_hi = RREG32_SOC15_NO_KIQ(PWR, 0, mmGOLDEN_TSC_COUNT_UPPER_Raven2);
+ clock_lo = RREG32_SOC15_NO_KIQ(PWR, 0, mmGOLDEN_TSC_COUNT_LOWER_Raven2);
+ hi_check = RREG32_SOC15_NO_KIQ(PWR, 0, mmGOLDEN_TSC_COUNT_UPPER_Raven2);
+ /* The PWR TSC clock frequency is 100MHz, which sets 32-bit carry over
+ * roughly every 42 seconds.
+ */
+ if (hi_check != clock_hi) {
+ clock_lo = RREG32_SOC15_NO_KIQ(PWR, 0, mmGOLDEN_TSC_COUNT_LOWER_Raven2);
+ clock_hi = hi_check;
+ }
+ preempt_enable();
+ clock = clock_lo | (clock_hi << 32ULL);
+ break;
default:
amdgpu_gfx_off_ctrl(adev, false);
mutex_lock(&adev->gfx.gpu_clock_mutex);
@@ -4539,6 +4537,8 @@ static int gfx_v9_0_early_init(void *handle)
{
struct amdgpu_device *adev = (struct amdgpu_device *)handle;
+ adev->gfx.funcs = &gfx_v9_0_gfx_funcs;
+
if (adev->ip_versions[GC_HWIP][0] == IP_VERSION(9, 4, 1) ||
adev->ip_versions[GC_HWIP][0] == IP_VERSION(9, 4, 2))
adev->gfx.num_gfx_rings = 0;
@@ -4555,7 +4555,7 @@ static int gfx_v9_0_early_init(void *handle)
/* init rlcg reg access ctrl */
gfx_v9_0_init_rlcg_reg_access_ctrl(adev);
- return 0;
+ return gfx_v9_0_init_microcode(adev);
}
static int gfx_v9_0_ecc_late_init(void *handle)
@@ -5155,11 +5155,17 @@ static void gfx_v9_0_ring_emit_ib_gfx(struct amdgpu_ring *ring,
control |= ib->length_dw | (vmid << 24);
- if (amdgpu_sriov_vf(ring->adev) && (ib->flags & AMDGPU_IB_FLAG_PREEMPT)) {
+ if (ib->flags & AMDGPU_IB_FLAG_PREEMPT) {
control |= INDIRECT_BUFFER_PRE_ENB(1);
+ if (flags & AMDGPU_IB_PREEMPTED)
+ control |= INDIRECT_BUFFER_PRE_RESUME(1);
+
if (!(ib->flags & AMDGPU_IB_FLAG_CE) && vmid)
- gfx_v9_0_ring_emit_de_meta(ring);
+ gfx_v9_0_ring_emit_de_meta(ring,
+ (!amdgpu_sriov_vf(ring->adev) &&
+ flags & AMDGPU_IB_PREEMPTED) ?
+ true : false);
}
amdgpu_ring_write(ring, header);
@@ -5214,17 +5220,24 @@ static void gfx_v9_0_ring_emit_fence(struct amdgpu_ring *ring, u64 addr,
bool write64bit = flags & AMDGPU_FENCE_FLAG_64BIT;
bool int_sel = flags & AMDGPU_FENCE_FLAG_INT;
bool writeback = flags & AMDGPU_FENCE_FLAG_TC_WB_ONLY;
+ bool exec = flags & AMDGPU_FENCE_FLAG_EXEC;
+ uint32_t dw2 = 0;
/* RELEASE_MEM - flush caches, send int */
amdgpu_ring_write(ring, PACKET3(PACKET3_RELEASE_MEM, 6));
- amdgpu_ring_write(ring, ((writeback ? (EOP_TC_WB_ACTION_EN |
- EOP_TC_NC_ACTION_EN) :
- (EOP_TCL1_ACTION_EN |
- EOP_TC_ACTION_EN |
- EOP_TC_WB_ACTION_EN |
- EOP_TC_MD_ACTION_EN)) |
- EVENT_TYPE(CACHE_FLUSH_AND_INV_TS_EVENT) |
- EVENT_INDEX(5)));
+
+ if (writeback) {
+ dw2 = EOP_TC_NC_ACTION_EN;
+ } else {
+ dw2 = EOP_TCL1_ACTION_EN | EOP_TC_ACTION_EN |
+ EOP_TC_MD_ACTION_EN;
+ }
+ dw2 |= EOP_TC_WB_ACTION_EN | EVENT_TYPE(CACHE_FLUSH_AND_INV_TS_EVENT) |
+ EVENT_INDEX(5);
+ if (exec)
+ dw2 |= EOP_EXEC;
+
+ amdgpu_ring_write(ring, dw2);
amdgpu_ring_write(ring, DATA_SEL(write64bit ? 2 : 1) | INT_SEL(int_sel ? 2 : 0));
/*
@@ -5329,33 +5342,135 @@ static void gfx_v9_ring_emit_sb(struct amdgpu_ring *ring)
amdgpu_ring_write(ring, 0);
}
-static void gfx_v9_0_ring_emit_ce_meta(struct amdgpu_ring *ring)
+static void gfx_v9_0_ring_emit_ce_meta(struct amdgpu_ring *ring, bool resume)
{
+ struct amdgpu_device *adev = ring->adev;
struct v9_ce_ib_state ce_payload = {0};
- uint64_t csa_addr;
+ uint64_t offset, ce_payload_gpu_addr;
+ void *ce_payload_cpu_addr;
int cnt;
cnt = (sizeof(ce_payload) >> 2) + 4 - 2;
- csa_addr = amdgpu_csa_vaddr(ring->adev);
+
+ if (ring->is_mes_queue) {
+ offset = offsetof(struct amdgpu_mes_ctx_meta_data,
+ gfx[0].gfx_meta_data) +
+ offsetof(struct v9_gfx_meta_data, ce_payload);
+ ce_payload_gpu_addr =
+ amdgpu_mes_ctx_get_offs_gpu_addr(ring, offset);
+ ce_payload_cpu_addr =
+ amdgpu_mes_ctx_get_offs_cpu_addr(ring, offset);
+ } else {
+ offset = offsetof(struct v9_gfx_meta_data, ce_payload);
+ ce_payload_gpu_addr = amdgpu_csa_vaddr(ring->adev) + offset;
+ ce_payload_cpu_addr = adev->virt.csa_cpu_addr + offset;
+ }
amdgpu_ring_write(ring, PACKET3(PACKET3_WRITE_DATA, cnt));
amdgpu_ring_write(ring, (WRITE_DATA_ENGINE_SEL(2) |
WRITE_DATA_DST_SEL(8) |
WR_CONFIRM) |
WRITE_DATA_CACHE_POLICY(0));
- amdgpu_ring_write(ring, lower_32_bits(csa_addr + offsetof(struct v9_gfx_meta_data, ce_payload)));
- amdgpu_ring_write(ring, upper_32_bits(csa_addr + offsetof(struct v9_gfx_meta_data, ce_payload)));
- amdgpu_ring_write_multiple(ring, (void *)&ce_payload, sizeof(ce_payload) >> 2);
+ amdgpu_ring_write(ring, lower_32_bits(ce_payload_gpu_addr));
+ amdgpu_ring_write(ring, upper_32_bits(ce_payload_gpu_addr));
+
+ if (resume)
+ amdgpu_ring_write_multiple(ring, ce_payload_cpu_addr,
+ sizeof(ce_payload) >> 2);
+ else
+ amdgpu_ring_write_multiple(ring, (void *)&ce_payload,
+ sizeof(ce_payload) >> 2);
+}
+
+static int gfx_v9_0_ring_preempt_ib(struct amdgpu_ring *ring)
+{
+ int i, r = 0;
+ struct amdgpu_device *adev = ring->adev;
+ struct amdgpu_kiq *kiq = &adev->gfx.kiq;
+ struct amdgpu_ring *kiq_ring = &kiq->ring;
+ unsigned long flags;
+
+ if (!kiq->pmf || !kiq->pmf->kiq_unmap_queues)
+ return -EINVAL;
+
+ spin_lock_irqsave(&kiq->ring_lock, flags);
+
+ if (amdgpu_ring_alloc(kiq_ring, kiq->pmf->unmap_queues_size)) {
+ spin_unlock_irqrestore(&kiq->ring_lock, flags);
+ return -ENOMEM;
+ }
+
+ /* assert preemption condition */
+ amdgpu_ring_set_preempt_cond_exec(ring, false);
+
+ ring->trail_seq += 1;
+ amdgpu_ring_alloc(ring, 13);
+ gfx_v9_0_ring_emit_fence(ring, ring->trail_fence_gpu_addr,
+ ring->trail_seq, AMDGPU_FENCE_FLAG_EXEC | AMDGPU_FENCE_FLAG_INT);
+ /*reset the CP_VMID_PREEMPT after trailing fence*/
+ amdgpu_ring_emit_wreg(ring,
+ SOC15_REG_OFFSET(GC, 0, mmCP_VMID_PREEMPT),
+ 0x0);
+
+ /* assert IB preemption, emit the trailing fence */
+ kiq->pmf->kiq_unmap_queues(kiq_ring, ring, PREEMPT_QUEUES_NO_UNMAP,
+ ring->trail_fence_gpu_addr,
+ ring->trail_seq);
+
+ amdgpu_ring_commit(kiq_ring);
+ spin_unlock_irqrestore(&kiq->ring_lock, flags);
+
+ /* poll the trailing fence */
+ for (i = 0; i < adev->usec_timeout; i++) {
+ if (ring->trail_seq ==
+ le32_to_cpu(*ring->trail_fence_cpu_addr))
+ break;
+ udelay(1);
+ }
+
+ if (i >= adev->usec_timeout) {
+ r = -EINVAL;
+ DRM_WARN("ring %d timeout to preempt ib\n", ring->idx);
+ }
+
+ amdgpu_ring_commit(ring);
+
+ /* deassert preemption condition */
+ amdgpu_ring_set_preempt_cond_exec(ring, true);
+ return r;
}
-static void gfx_v9_0_ring_emit_de_meta(struct amdgpu_ring *ring)
+static void gfx_v9_0_ring_emit_de_meta(struct amdgpu_ring *ring, bool resume)
{
+ struct amdgpu_device *adev = ring->adev;
struct v9_de_ib_state de_payload = {0};
- uint64_t csa_addr, gds_addr;
+ uint64_t offset, gds_addr, de_payload_gpu_addr;
+ void *de_payload_cpu_addr;
int cnt;
- csa_addr = amdgpu_csa_vaddr(ring->adev);
- gds_addr = csa_addr + 4096;
+ if (ring->is_mes_queue) {
+ offset = offsetof(struct amdgpu_mes_ctx_meta_data,
+ gfx[0].gfx_meta_data) +
+ offsetof(struct v9_gfx_meta_data, de_payload);
+ de_payload_gpu_addr =
+ amdgpu_mes_ctx_get_offs_gpu_addr(ring, offset);
+ de_payload_cpu_addr =
+ amdgpu_mes_ctx_get_offs_cpu_addr(ring, offset);
+
+ offset = offsetof(struct amdgpu_mes_ctx_meta_data,
+ gfx[0].gds_backup) +
+ offsetof(struct v9_gfx_meta_data, de_payload);
+ gds_addr = amdgpu_mes_ctx_get_offs_gpu_addr(ring, offset);
+ } else {
+ offset = offsetof(struct v9_gfx_meta_data, de_payload);
+ de_payload_gpu_addr = amdgpu_csa_vaddr(ring->adev) + offset;
+ de_payload_cpu_addr = adev->virt.csa_cpu_addr + offset;
+
+ gds_addr = ALIGN(amdgpu_csa_vaddr(ring->adev) +
+ AMDGPU_CSA_SIZE - adev->gds.gds_size,
+ PAGE_SIZE);
+ }
+
de_payload.gds_backup_addrlo = lower_32_bits(gds_addr);
de_payload.gds_backup_addrhi = upper_32_bits(gds_addr);
@@ -5365,9 +5480,15 @@ static void gfx_v9_0_ring_emit_de_meta(struct amdgpu_ring *ring)
WRITE_DATA_DST_SEL(8) |
WR_CONFIRM) |
WRITE_DATA_CACHE_POLICY(0));
- amdgpu_ring_write(ring, lower_32_bits(csa_addr + offsetof(struct v9_gfx_meta_data, de_payload)));
- amdgpu_ring_write(ring, upper_32_bits(csa_addr + offsetof(struct v9_gfx_meta_data, de_payload)));
- amdgpu_ring_write_multiple(ring, (void *)&de_payload, sizeof(de_payload) >> 2);
+ amdgpu_ring_write(ring, lower_32_bits(de_payload_gpu_addr));
+ amdgpu_ring_write(ring, upper_32_bits(de_payload_gpu_addr));
+
+ if (resume)
+ amdgpu_ring_write_multiple(ring, de_payload_cpu_addr,
+ sizeof(de_payload) >> 2);
+ else
+ amdgpu_ring_write_multiple(ring, (void *)&de_payload,
+ sizeof(de_payload) >> 2);
}
static void gfx_v9_0_ring_emit_frame_cntl(struct amdgpu_ring *ring, bool start,
@@ -5383,8 +5504,9 @@ static void gfx_v9_ring_emit_cntxcntl(struct amdgpu_ring *ring, uint32_t flags)
{
uint32_t dw2 = 0;
- if (amdgpu_sriov_vf(ring->adev))
- gfx_v9_0_ring_emit_ce_meta(ring);
+ gfx_v9_0_ring_emit_ce_meta(ring,
+ (!amdgpu_sriov_vf(ring->adev) &&
+ flags & AMDGPU_IB_PREEMPTED) ? true : false);
dw2 |= 0x80000000; /* set load_enable otherwise this package is just NOPs */
if (flags & AMDGPU_HAVE_CTX_SWITCH) {
@@ -5710,7 +5832,12 @@ static int gfx_v9_0_eop_irq(struct amdgpu_device *adev,
switch (me_id) {
case 0:
- amdgpu_fence_process(&adev->gfx.gfx_ring[0]);
+ if (adev->gfx.num_gfx_rings &&
+ !amdgpu_mcbp_handle_trailing_fence_irq(&adev->gfx.muxer)) {
+ /* Fence signals are handled on the software rings*/
+ for (i = 0; i < GFX9_NUM_SW_GFX_RINGS; i++)
+ amdgpu_fence_process(&adev->gfx.sw_gfx_ring[i]);
+ }
break;
case 1:
case 2:
@@ -6482,7 +6609,7 @@ static void gfx_v9_0_reset_ras_error_count(struct amdgpu_device *adev)
for (i = 0; i < ARRAY_SIZE(gfx_v9_0_edc_counter_regs); i++) {
for (j = 0; j < gfx_v9_0_edc_counter_regs[i].se_num; j++) {
for (k = 0; k < gfx_v9_0_edc_counter_regs[i].instance; k++) {
- gfx_v9_0_select_se_sh(adev, j, 0x0, k);
+ amdgpu_gfx_select_se_sh(adev, j, 0x0, k);
RREG32(SOC15_REG_ENTRY_OFFSET(gfx_v9_0_edc_counter_regs[i]));
}
}
@@ -6544,7 +6671,7 @@ static void gfx_v9_0_query_ras_error_count(struct amdgpu_device *adev,
for (i = 0; i < ARRAY_SIZE(gfx_v9_0_edc_counter_regs); i++) {
for (j = 0; j < gfx_v9_0_edc_counter_regs[i].se_num; j++) {
for (k = 0; k < gfx_v9_0_edc_counter_regs[i].instance; k++) {
- gfx_v9_0_select_se_sh(adev, j, 0, k);
+ amdgpu_gfx_select_se_sh(adev, j, 0, k);
reg_value =
RREG32(SOC15_REG_ENTRY_OFFSET(gfx_v9_0_edc_counter_regs[i]));
if (reg_value)
@@ -6559,7 +6686,7 @@ static void gfx_v9_0_query_ras_error_count(struct amdgpu_device *adev,
err_data->ce_count += sec_count;
err_data->ue_count += ded_count;
- gfx_v9_0_select_se_sh(adev, 0xffffffff, 0xffffffff, 0xffffffff);
+ amdgpu_gfx_select_se_sh(adev, 0xffffffff, 0xffffffff, 0xffffffff);
mutex_unlock(&adev->grbm_idx_mutex);
gfx_v9_0_query_utc_edc_status(adev, err_data);
@@ -6667,7 +6794,6 @@ static const struct amdgpu_ring_funcs gfx_v9_0_ring_funcs_gfx = {
.nop = PACKET3(PACKET3_NOP, 0x3FFF),
.support_64bit_ptrs = true,
.secure_submission_supported = true,
- .vmhub = AMDGPU_GFXHUB_0,
.get_rptr = gfx_v9_0_ring_get_rptr_gfx,
.get_wptr = gfx_v9_0_ring_get_wptr_gfx,
.set_wptr = gfx_v9_0_ring_set_wptr_gfx,
@@ -6700,13 +6826,67 @@ static const struct amdgpu_ring_funcs gfx_v9_0_ring_funcs_gfx = {
.emit_gds_switch = gfx_v9_0_ring_emit_gds_switch,
.emit_hdp_flush = gfx_v9_0_ring_emit_hdp_flush,
.test_ring = gfx_v9_0_ring_test_ring,
- .test_ib = gfx_v9_0_ring_test_ib,
.insert_nop = amdgpu_ring_insert_nop,
.pad_ib = amdgpu_ring_generic_pad_ib,
.emit_switch_buffer = gfx_v9_ring_emit_sb,
.emit_cntxcntl = gfx_v9_ring_emit_cntxcntl,
.init_cond_exec = gfx_v9_0_ring_emit_init_cond_exec,
.patch_cond_exec = gfx_v9_0_ring_emit_patch_cond_exec,
+ .preempt_ib = gfx_v9_0_ring_preempt_ib,
+ .emit_frame_cntl = gfx_v9_0_ring_emit_frame_cntl,
+ .emit_wreg = gfx_v9_0_ring_emit_wreg,
+ .emit_reg_wait = gfx_v9_0_ring_emit_reg_wait,
+ .emit_reg_write_reg_wait = gfx_v9_0_ring_emit_reg_write_reg_wait,
+ .soft_recovery = gfx_v9_0_ring_soft_recovery,
+ .emit_mem_sync = gfx_v9_0_emit_mem_sync,
+};
+
+static const struct amdgpu_ring_funcs gfx_v9_0_sw_ring_funcs_gfx = {
+ .type = AMDGPU_RING_TYPE_GFX,
+ .align_mask = 0xff,
+ .nop = PACKET3(PACKET3_NOP, 0x3FFF),
+ .support_64bit_ptrs = true,
+ .secure_submission_supported = true,
+ .get_rptr = amdgpu_sw_ring_get_rptr_gfx,
+ .get_wptr = amdgpu_sw_ring_get_wptr_gfx,
+ .set_wptr = amdgpu_sw_ring_set_wptr_gfx,
+ .emit_frame_size = /* totally 242 maximum if 16 IBs */
+ 5 + /* COND_EXEC */
+ 7 + /* PIPELINE_SYNC */
+ SOC15_FLUSH_GPU_TLB_NUM_WREG * 5 +
+ SOC15_FLUSH_GPU_TLB_NUM_REG_WAIT * 7 +
+ 2 + /* VM_FLUSH */
+ 8 + /* FENCE for VM_FLUSH */
+ 20 + /* GDS switch */
+ 4 + /* double SWITCH_BUFFER,
+ * the first COND_EXEC jump to the place just
+ * prior to this double SWITCH_BUFFER
+ */
+ 5 + /* COND_EXEC */
+ 7 + /* HDP_flush */
+ 4 + /* VGT_flush */
+ 14 + /* CE_META */
+ 31 + /* DE_META */
+ 3 + /* CNTX_CTRL */
+ 5 + /* HDP_INVL */
+ 8 + 8 + /* FENCE x2 */
+ 2 + /* SWITCH_BUFFER */
+ 7, /* gfx_v9_0_emit_mem_sync */
+ .emit_ib_size = 4, /* gfx_v9_0_ring_emit_ib_gfx */
+ .emit_ib = gfx_v9_0_ring_emit_ib_gfx,
+ .emit_fence = gfx_v9_0_ring_emit_fence,
+ .emit_pipeline_sync = gfx_v9_0_ring_emit_pipeline_sync,
+ .emit_vm_flush = gfx_v9_0_ring_emit_vm_flush,
+ .emit_gds_switch = gfx_v9_0_ring_emit_gds_switch,
+ .emit_hdp_flush = gfx_v9_0_ring_emit_hdp_flush,
+ .test_ring = gfx_v9_0_ring_test_ring,
+ .test_ib = gfx_v9_0_ring_test_ib,
+ .insert_nop = amdgpu_sw_ring_insert_nop,
+ .pad_ib = amdgpu_ring_generic_pad_ib,
+ .emit_switch_buffer = gfx_v9_ring_emit_sb,
+ .emit_cntxcntl = gfx_v9_ring_emit_cntxcntl,
+ .init_cond_exec = gfx_v9_0_ring_emit_init_cond_exec,
+ .patch_cond_exec = gfx_v9_0_ring_emit_patch_cond_exec,
.emit_frame_cntl = gfx_v9_0_ring_emit_frame_cntl,
.emit_wreg = gfx_v9_0_ring_emit_wreg,
.emit_reg_wait = gfx_v9_0_ring_emit_reg_wait,
@@ -6720,7 +6900,6 @@ static const struct amdgpu_ring_funcs gfx_v9_0_ring_funcs_compute = {
.align_mask = 0xff,
.nop = PACKET3(PACKET3_NOP, 0x3FFF),
.support_64bit_ptrs = true,
- .vmhub = AMDGPU_GFXHUB_0,
.get_rptr = gfx_v9_0_ring_get_rptr_compute,
.get_wptr = gfx_v9_0_ring_get_wptr_compute,
.set_wptr = gfx_v9_0_ring_set_wptr_compute,
@@ -6759,7 +6938,6 @@ static const struct amdgpu_ring_funcs gfx_v9_0_ring_funcs_kiq = {
.align_mask = 0xff,
.nop = PACKET3(PACKET3_NOP, 0x3FFF),
.support_64bit_ptrs = true,
- .vmhub = AMDGPU_GFXHUB_0,
.get_rptr = gfx_v9_0_ring_get_rptr_compute,
.get_wptr = gfx_v9_0_ring_get_wptr_compute,
.set_wptr = gfx_v9_0_ring_set_wptr_compute,
@@ -6792,6 +6970,11 @@ static void gfx_v9_0_set_ring_funcs(struct amdgpu_device *adev)
for (i = 0; i < adev->gfx.num_gfx_rings; i++)
adev->gfx.gfx_ring[i].funcs = &gfx_v9_0_ring_funcs_gfx;
+ if (adev->gfx.num_gfx_rings) {
+ for (i = 0; i < GFX9_NUM_SW_GFX_RINGS; i++)
+ adev->gfx.sw_gfx_ring[i].funcs = &gfx_v9_0_sw_ring_funcs_gfx;
+ }
+
for (i = 0; i < adev->gfx.num_compute_rings; i++)
adev->gfx.compute_ring[i].funcs = &gfx_v9_0_ring_funcs_compute;
}
@@ -6963,7 +7146,7 @@ static int gfx_v9_0_get_cu_info(struct amdgpu_device *adev,
mask = 1;
ao_bitmap = 0;
counter = 0;
- gfx_v9_0_select_se_sh(adev, i, j, 0xffffffff);
+ amdgpu_gfx_select_se_sh(adev, i, j, 0xffffffff);
gfx_v9_0_set_user_cu_inactive_bitmap(
adev, disable_masks[i * adev->gfx.config.max_sh_per_se + j]);
bitmap = gfx_v9_0_get_cu_active_bitmap(adev);
@@ -6996,7 +7179,7 @@ static int gfx_v9_0_get_cu_info(struct amdgpu_device *adev,
cu_info->ao_cu_bitmap[i % 4][j + i / 4] = ao_bitmap;
}
}
- gfx_v9_0_select_se_sh(adev, 0xffffffff, 0xffffffff, 0xffffffff);
+ amdgpu_gfx_select_se_sh(adev, 0xffffffff, 0xffffffff, 0xffffffff);
mutex_unlock(&adev->grbm_idx_mutex);
cu_info->number = active_cu_number;
diff --git a/drivers/gpu/drm/amd/amdgpu/gfx_v9_4_3.c b/drivers/gpu/drm/amd/amdgpu/gfx_v9_4_3.c
new file mode 100644
index 000000000000..5f8500577c02
--- /dev/null
+++ b/drivers/gpu/drm/amd/amdgpu/gfx_v9_4_3.c
@@ -0,0 +1,430 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ */
+#include <linux/firmware.h>
+
+#include "amdgpu.h"
+#include "amdgpu_gfx.h"
+#include "soc15.h"
+#include "soc15_common.h"
+#include "vega10_enum.h"
+
+#include "gc/gc_9_4_3_offset.h"
+#include "gc/gc_9_4_3_sh_mask.h"
+
+#include "gfx_v9_4_3.h"
+
+#define RLCG_UCODE_LOADING_START_ADDRESS 0x00002000L
+
+static uint64_t gfx_v9_4_3_get_gpu_clock_counter(struct amdgpu_device *adev)
+{
+ uint64_t clock;
+
+ amdgpu_gfx_off_ctrl(adev, false);
+ mutex_lock(&adev->gfx.gpu_clock_mutex);
+ WREG32_SOC15(GC, 0, regRLC_CAPTURE_GPU_CLOCK_COUNT, 1);
+ clock = (uint64_t)RREG32_SOC15(GC, 0, regRLC_GPU_CLOCK_COUNT_LSB) |
+ ((uint64_t)RREG32_SOC15(GC, 0, regRLC_GPU_CLOCK_COUNT_MSB) << 32ULL);
+ mutex_unlock(&adev->gfx.gpu_clock_mutex);
+ amdgpu_gfx_off_ctrl(adev, true);
+
+ return clock;
+}
+
+static void gfx_v9_4_3_select_se_sh(struct amdgpu_device *adev,
+ u32 se_num,
+ u32 sh_num,
+ u32 instance)
+{
+ u32 data;
+
+ if (instance == 0xffffffff)
+ data = REG_SET_FIELD(0, GRBM_GFX_INDEX,
+ INSTANCE_BROADCAST_WRITES, 1);
+ else
+ data = REG_SET_FIELD(0, GRBM_GFX_INDEX,
+ INSTANCE_INDEX, instance);
+
+ if (se_num == 0xffffffff)
+ data = REG_SET_FIELD(data, GRBM_GFX_INDEX,
+ SE_BROADCAST_WRITES, 1);
+ else
+ data = REG_SET_FIELD(data, GRBM_GFX_INDEX, SE_INDEX, se_num);
+
+ if (sh_num == 0xffffffff)
+ data = REG_SET_FIELD(data, GRBM_GFX_INDEX,
+ SH_BROADCAST_WRITES, 1);
+ else
+ data = REG_SET_FIELD(data, GRBM_GFX_INDEX, SH_INDEX, sh_num);
+
+ WREG32_SOC15_RLC_SHADOW_EX(reg, GC, 0, regGRBM_GFX_INDEX, data);
+}
+
+static uint32_t wave_read_ind(struct amdgpu_device *adev, uint32_t simd, uint32_t wave, uint32_t address)
+{
+ WREG32_SOC15_RLC(GC, 0, regSQ_IND_INDEX,
+ (wave << SQ_IND_INDEX__WAVE_ID__SHIFT) |
+ (simd << SQ_IND_INDEX__SIMD_ID__SHIFT) |
+ (address << SQ_IND_INDEX__INDEX__SHIFT) |
+ (SQ_IND_INDEX__FORCE_READ_MASK));
+ return RREG32_SOC15(GC, 0, regSQ_IND_DATA);
+}
+
+static void wave_read_regs(struct amdgpu_device *adev, uint32_t simd,
+ uint32_t wave, uint32_t thread,
+ uint32_t regno, uint32_t num, uint32_t *out)
+{
+ WREG32_SOC15_RLC(GC, 0, regSQ_IND_INDEX,
+ (wave << SQ_IND_INDEX__WAVE_ID__SHIFT) |
+ (simd << SQ_IND_INDEX__SIMD_ID__SHIFT) |
+ (regno << SQ_IND_INDEX__INDEX__SHIFT) |
+ (thread << SQ_IND_INDEX__THREAD_ID__SHIFT) |
+ (SQ_IND_INDEX__FORCE_READ_MASK) |
+ (SQ_IND_INDEX__AUTO_INCR_MASK));
+ while (num--)
+ *(out++) = RREG32_SOC15(GC, 0, regSQ_IND_DATA);
+}
+
+static void gfx_v9_4_3_read_wave_data(struct amdgpu_device *adev,
+ uint32_t simd, uint32_t wave,
+ uint32_t *dst, int *no_fields)
+{
+ /* type 1 wave data */
+ dst[(*no_fields)++] = 1;
+ dst[(*no_fields)++] = wave_read_ind(adev, simd, wave, ixSQ_WAVE_STATUS);
+ dst[(*no_fields)++] = wave_read_ind(adev, simd, wave, ixSQ_WAVE_PC_LO);
+ dst[(*no_fields)++] = wave_read_ind(adev, simd, wave, ixSQ_WAVE_PC_HI);
+ dst[(*no_fields)++] = wave_read_ind(adev, simd, wave, ixSQ_WAVE_EXEC_LO);
+ dst[(*no_fields)++] = wave_read_ind(adev, simd, wave, ixSQ_WAVE_EXEC_HI);
+ dst[(*no_fields)++] = wave_read_ind(adev, simd, wave, ixSQ_WAVE_HW_ID);
+ dst[(*no_fields)++] = wave_read_ind(adev, simd, wave, ixSQ_WAVE_INST_DW0);
+ dst[(*no_fields)++] = wave_read_ind(adev, simd, wave, ixSQ_WAVE_INST_DW1);
+ dst[(*no_fields)++] = wave_read_ind(adev, simd, wave, ixSQ_WAVE_GPR_ALLOC);
+ dst[(*no_fields)++] = wave_read_ind(adev, simd, wave, ixSQ_WAVE_LDS_ALLOC);
+ dst[(*no_fields)++] = wave_read_ind(adev, simd, wave, ixSQ_WAVE_TRAPSTS);
+ dst[(*no_fields)++] = wave_read_ind(adev, simd, wave, ixSQ_WAVE_IB_STS);
+ dst[(*no_fields)++] = wave_read_ind(adev, simd, wave, ixSQ_WAVE_IB_DBG0);
+ dst[(*no_fields)++] = wave_read_ind(adev, simd, wave, ixSQ_WAVE_M0);
+ dst[(*no_fields)++] = wave_read_ind(adev, simd, wave, ixSQ_WAVE_MODE);
+}
+
+static void gfx_v9_4_3_read_wave_sgprs(struct amdgpu_device *adev, uint32_t simd,
+ uint32_t wave, uint32_t start,
+ uint32_t size, uint32_t *dst)
+{
+ wave_read_regs(adev, simd, wave, 0,
+ start + SQIND_WAVE_SGPRS_OFFSET, size, dst);
+}
+
+static void gfx_v9_4_3_read_wave_vgprs(struct amdgpu_device *adev, uint32_t simd,
+ uint32_t wave, uint32_t thread,
+ uint32_t start, uint32_t size,
+ uint32_t *dst)
+{
+ wave_read_regs(adev, simd, wave, thread,
+ start + SQIND_WAVE_VGPRS_OFFSET, size, dst);
+}
+
+static void gfx_v9_4_3_select_me_pipe_q(struct amdgpu_device *adev,
+ u32 me, u32 pipe, u32 q, u32 vm)
+{
+ soc15_grbm_select(adev, me, pipe, q, vm);
+}
+
+static bool gfx_v9_4_3_is_rlc_enabled(struct amdgpu_device *adev)
+{
+ uint32_t rlc_setting;
+
+ /* if RLC is not enabled, do nothing */
+ rlc_setting = RREG32_SOC15(GC, 0, regRLC_CNTL);
+ if (!(rlc_setting & RLC_CNTL__RLC_ENABLE_F32_MASK))
+ return false;
+
+ return true;
+}
+
+static void gfx_v9_4_3_set_safe_mode(struct amdgpu_device *adev)
+{
+ uint32_t data;
+ unsigned i;
+
+ data = RLC_SAFE_MODE__CMD_MASK;
+ data |= (1 << RLC_SAFE_MODE__MESSAGE__SHIFT);
+ WREG32_SOC15(GC, 0, regRLC_SAFE_MODE, data);
+
+ /* wait for RLC_SAFE_MODE */
+ for (i = 0; i < adev->usec_timeout; i++) {
+ if (!REG_GET_FIELD(RREG32_SOC15(GC, 0, regRLC_SAFE_MODE), RLC_SAFE_MODE, CMD))
+ break;
+ udelay(1);
+ }
+}
+
+static void gfx_v9_4_3_unset_safe_mode(struct amdgpu_device *adev)
+{
+ uint32_t data;
+
+ data = RLC_SAFE_MODE__CMD_MASK;
+ WREG32_SOC15(GC, 0, regRLC_SAFE_MODE, data);
+}
+
+static int gfx_v9_4_3_rlc_init(struct amdgpu_device *adev)
+{
+ /* init spm vmid with 0xf */
+ if (adev->gfx.rlc.funcs->update_spm_vmid)
+ adev->gfx.rlc.funcs->update_spm_vmid(adev, 0xf);
+
+ return 0;
+}
+
+static void gfx_v9_4_3_wait_for_rlc_serdes(struct amdgpu_device *adev)
+{
+ u32 i, j, k;
+ u32 mask;
+
+ mutex_lock(&adev->grbm_idx_mutex);
+ for (i = 0; i < adev->gfx.config.max_shader_engines; i++) {
+ for (j = 0; j < adev->gfx.config.max_sh_per_se; j++) {
+ gfx_v9_4_3_select_se_sh(adev, i, j, 0xffffffff);
+ for (k = 0; k < adev->usec_timeout; k++) {
+ if (RREG32_SOC15(GC, 0, regRLC_SERDES_CU_MASTER_BUSY) == 0)
+ break;
+ udelay(1);
+ }
+ if (k == adev->usec_timeout) {
+ gfx_v9_4_3_select_se_sh(adev, 0xffffffff,
+ 0xffffffff, 0xffffffff);
+ mutex_unlock(&adev->grbm_idx_mutex);
+ DRM_INFO("Timeout wait for RLC serdes %u,%u\n",
+ i, j);
+ return;
+ }
+ }
+ }
+ gfx_v9_4_3_select_se_sh(adev, 0xffffffff, 0xffffffff, 0xffffffff);
+ mutex_unlock(&adev->grbm_idx_mutex);
+
+ mask = RLC_SERDES_NONCU_MASTER_BUSY__SE_MASTER_BUSY_MASK |
+ RLC_SERDES_NONCU_MASTER_BUSY__GC_MASTER_BUSY_MASK |
+ RLC_SERDES_NONCU_MASTER_BUSY__TC0_MASTER_BUSY_MASK |
+ RLC_SERDES_NONCU_MASTER_BUSY__TC1_MASTER_BUSY_MASK;
+ for (k = 0; k < adev->usec_timeout; k++) {
+ if ((RREG32_SOC15(GC, 0, regRLC_SERDES_NONCU_MASTER_BUSY) & mask) == 0)
+ break;
+ udelay(1);
+ }
+}
+
+static void gfx_v9_4_3_enable_gui_idle_interrupt(struct amdgpu_device *adev,
+ bool enable)
+{
+ u32 tmp;
+
+ /* These interrupts should be enabled to drive DS clock */
+
+ tmp = RREG32_SOC15(GC, 0, regCP_INT_CNTL_RING0);
+
+ tmp = REG_SET_FIELD(tmp, CP_INT_CNTL_RING0, CNTX_BUSY_INT_ENABLE, enable ? 1 : 0);
+ tmp = REG_SET_FIELD(tmp, CP_INT_CNTL_RING0, CNTX_EMPTY_INT_ENABLE, enable ? 1 : 0);
+ tmp = REG_SET_FIELD(tmp, CP_INT_CNTL_RING0, CMP_BUSY_INT_ENABLE, enable ? 1 : 0);
+ if (adev->gfx.num_gfx_rings)
+ tmp = REG_SET_FIELD(tmp, CP_INT_CNTL_RING0, GFX_IDLE_INT_ENABLE, enable ? 1 : 0);
+
+ WREG32_SOC15(GC, 0, regCP_INT_CNTL_RING0, tmp);
+}
+
+static void gfx_v9_4_3_rlc_stop(struct amdgpu_device *adev)
+{
+ WREG32_FIELD15_PREREG(GC, 0, RLC_CNTL, RLC_ENABLE_F32, 0);
+ gfx_v9_4_3_enable_gui_idle_interrupt(adev, false);
+ gfx_v9_4_3_wait_for_rlc_serdes(adev);
+}
+
+static void gfx_v9_4_3_rlc_reset(struct amdgpu_device *adev)
+{
+ WREG32_FIELD15_PREREG(GC, 0, GRBM_SOFT_RESET, SOFT_RESET_RLC, 1);
+ udelay(50);
+ WREG32_FIELD15_PREREG(GC, 0, GRBM_SOFT_RESET, SOFT_RESET_RLC, 0);
+ udelay(50);
+}
+
+static void gfx_v9_4_3_rlc_start(struct amdgpu_device *adev)
+{
+#ifdef AMDGPU_RLC_DEBUG_RETRY
+ u32 rlc_ucode_ver;
+#endif
+
+ WREG32_FIELD15_PREREG(GC, 0, RLC_CNTL, RLC_ENABLE_F32, 1);
+ udelay(50);
+
+ /* carrizo do enable cp interrupt after cp inited */
+ if (!(adev->flags & AMD_IS_APU)) {
+ gfx_v9_4_3_enable_gui_idle_interrupt(adev, true);
+ udelay(50);
+ }
+
+#ifdef AMDGPU_RLC_DEBUG_RETRY
+ /* RLC_GPM_GENERAL_6 : RLC Ucode version */
+ rlc_ucode_ver = RREG32_SOC15(GC, 0, regRLC_GPM_GENERAL_6);
+ if (rlc_ucode_ver == 0x108) {
+ dev_info(adev->dev,
+ "Using rlc debug ucode. regRLC_GPM_GENERAL_6 ==0x08%x / fw_ver == %i \n",
+ rlc_ucode_ver, adev->gfx.rlc_fw_version);
+ /* RLC_GPM_TIMER_INT_3 : Timer interval in RefCLK cycles,
+ * default is 0x9C4 to create a 100us interval */
+ WREG32_SOC15(GC, 0, regRLC_GPM_TIMER_INT_3, 0x9C4);
+ /* RLC_GPM_GENERAL_12 : Minimum gap between wptr and rptr
+ * to disable the page fault retry interrupts, default is
+ * 0x100 (256) */
+ WREG32_SOC15(GC, 0, regRLC_GPM_GENERAL_12, 0x100);
+ }
+#endif
+}
+
+static int gfx_v9_4_3_rlc_load_microcode(struct amdgpu_device *adev)
+{
+ const struct rlc_firmware_header_v2_0 *hdr;
+ const __le32 *fw_data;
+ unsigned i, fw_size;
+
+ if (!adev->gfx.rlc_fw)
+ return -EINVAL;
+
+ hdr = (const struct rlc_firmware_header_v2_0 *)adev->gfx.rlc_fw->data;
+ amdgpu_ucode_print_rlc_hdr(&hdr->header);
+
+ fw_data = (const __le32 *)(adev->gfx.rlc_fw->data +
+ le32_to_cpu(hdr->header.ucode_array_offset_bytes));
+ fw_size = le32_to_cpu(hdr->header.ucode_size_bytes) / 4;
+
+ WREG32_SOC15(GC, 0, regRLC_GPM_UCODE_ADDR,
+ RLCG_UCODE_LOADING_START_ADDRESS);
+ for (i = 0; i < fw_size; i++) {
+ if (amdgpu_emu_mode == 1 && i % 100 == 0) {
+ dev_info(adev->dev, "Write RLC ucode data %u DWs\n", i);
+ msleep(1);
+ }
+ WREG32_SOC15(GC, 0, regRLC_GPM_UCODE_DATA, le32_to_cpup(fw_data++));
+ }
+ WREG32_SOC15(GC, 0, regRLC_GPM_UCODE_ADDR, adev->gfx.rlc_fw_version);
+
+ return 0;
+}
+
+static int gfx_v9_4_3_rlc_resume(struct amdgpu_device *adev)
+{
+ int r;
+
+ adev->gfx.rlc.funcs->stop(adev);
+
+ /* disable CG */
+ WREG32_SOC15(GC, 0, regRLC_CGCG_CGLS_CTRL, 0);
+
+ /* TODO: revisit pg function */
+ /* gfx_v9_4_3_init_pg(adev);*/
+
+ if (adev->firmware.load_type != AMDGPU_FW_LOAD_PSP) {
+ /* legacy rlc firmware loading */
+ r = gfx_v9_4_3_rlc_load_microcode(adev);
+ if (r)
+ return r;
+ }
+
+ adev->gfx.rlc.funcs->start(adev);
+
+ return 0;
+}
+
+static void gfx_v9_4_3_update_spm_vmid(struct amdgpu_device *adev, unsigned vmid)
+{
+ u32 reg, data;
+
+ reg = SOC15_REG_OFFSET(GC, 0, regRLC_SPM_MC_CNTL);
+ if (amdgpu_sriov_is_pp_one_vf(adev))
+ data = RREG32_NO_KIQ(reg);
+ else
+ data = RREG32(reg);
+
+ data &= ~RLC_SPM_MC_CNTL__RLC_SPM_VMID_MASK;
+ data |= (vmid & RLC_SPM_MC_CNTL__RLC_SPM_VMID_MASK) << RLC_SPM_MC_CNTL__RLC_SPM_VMID__SHIFT;
+
+ if (amdgpu_sriov_is_pp_one_vf(adev))
+ WREG32_SOC15_NO_KIQ(GC, 0, regRLC_SPM_MC_CNTL, data);
+ else
+ WREG32_SOC15(GC, 0, regRLC_SPM_MC_CNTL, data);
+}
+
+static const struct soc15_reg_rlcg rlcg_access_gc_9_4_3[] = {
+ {SOC15_REG_ENTRY(GC, 0, regGRBM_GFX_INDEX)},
+ {SOC15_REG_ENTRY(GC, 0, regSQ_IND_INDEX)},
+};
+
+static bool gfx_v9_4_3_check_rlcg_range(struct amdgpu_device *adev,
+ uint32_t offset,
+ struct soc15_reg_rlcg *entries, int arr_size)
+{
+ int i;
+ uint32_t reg;
+
+ if (!entries)
+ return false;
+
+ for (i = 0; i < arr_size; i++) {
+ const struct soc15_reg_rlcg *entry;
+
+ entry = &entries[i];
+ reg = adev->reg_offset[entry->hwip][entry->instance][entry->segment] + entry->reg;
+ if (offset == reg)
+ return true;
+ }
+
+ return false;
+}
+
+static bool gfx_v9_4_3_is_rlcg_access_range(struct amdgpu_device *adev, u32 offset)
+{
+ return gfx_v9_4_3_check_rlcg_range(adev, offset,
+ (void *)rlcg_access_gc_9_4_3,
+ ARRAY_SIZE(rlcg_access_gc_9_4_3));
+}
+
+const struct amdgpu_gfx_funcs gfx_v9_4_3_gfx_funcs = {
+ .get_gpu_clock_counter = &gfx_v9_4_3_get_gpu_clock_counter,
+ .select_se_sh = &gfx_v9_4_3_select_se_sh,
+ .read_wave_data = &gfx_v9_4_3_read_wave_data,
+ .read_wave_sgprs = &gfx_v9_4_3_read_wave_sgprs,
+ .read_wave_vgprs = &gfx_v9_4_3_read_wave_vgprs,
+ .select_me_pipe_q = &gfx_v9_4_3_select_me_pipe_q,
+};
+
+const struct amdgpu_rlc_funcs gfx_v9_4_3_rlc_funcs = {
+ .is_rlc_enabled = gfx_v9_4_3_is_rlc_enabled,
+ .set_safe_mode = gfx_v9_4_3_set_safe_mode,
+ .unset_safe_mode = gfx_v9_4_3_unset_safe_mode,
+ .init = gfx_v9_4_3_rlc_init,
+ .resume = gfx_v9_4_3_rlc_resume,
+ .stop = gfx_v9_4_3_rlc_stop,
+ .reset = gfx_v9_4_3_rlc_reset,
+ .start = gfx_v9_4_3_rlc_start,
+ .update_spm_vmid = gfx_v9_4_3_update_spm_vmid,
+ .is_rlcg_access_range = gfx_v9_4_3_is_rlcg_access_range,
+};
diff --git a/drivers/gpu/drm/amd/amdgpu/gfx_v9_4_3.h b/drivers/gpu/drm/amd/amdgpu/gfx_v9_4_3.h
new file mode 100644
index 000000000000..84e69701b81a
--- /dev/null
+++ b/drivers/gpu/drm/amd/amdgpu/gfx_v9_4_3.h
@@ -0,0 +1,30 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ */
+
+#ifndef __GFX_V9_4_3_H__
+#define __GFX_V9_4_3_H__
+
+extern const struct amdgpu_gfx_funcs gfx_v9_4_3_gfx_funcs;
+extern const struct amdgpu_rlc_funcs gfx_v9_4_3_rlc_funcs;
+
+#endif /* __GFX_V9_4_3_H__ */
diff --git a/drivers/gpu/drm/amd/amdgpu/gfxhub_v1_0.c b/drivers/gpu/drm/amd/amdgpu/gfxhub_v1_0.c
index ec4d5e15b766..ab2325f6c7ac 100644
--- a/drivers/gpu/drm/amd/amdgpu/gfxhub_v1_0.c
+++ b/drivers/gpu/drm/amd/amdgpu/gfxhub_v1_0.c
@@ -120,7 +120,7 @@ static void gfxhub_v1_0_init_system_aperture_regs(struct amdgpu_device *adev)
max(adev->gmc.fb_end, adev->gmc.agp_end) >> 18);
/* Set default page address. */
- value = amdgpu_gmc_vram_mc2pa(adev, adev->vram_scratch.gpu_addr);
+ value = amdgpu_gmc_vram_mc2pa(adev, adev->mem_scratch.gpu_addr);
WREG32_SOC15(GC, 0, mmMC_VM_SYSTEM_APERTURE_DEFAULT_ADDR_LSB,
(u32)(value >> 12));
WREG32_SOC15(GC, 0, mmMC_VM_SYSTEM_APERTURE_DEFAULT_ADDR_MSB,
diff --git a/drivers/gpu/drm/amd/amdgpu/gfxhub_v1_2.c b/drivers/gpu/drm/amd/amdgpu/gfxhub_v1_2.c
new file mode 100644
index 000000000000..c59c6c85fbff
--- /dev/null
+++ b/drivers/gpu/drm/amd/amdgpu/gfxhub_v1_2.c
@@ -0,0 +1,471 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ */
+#include "amdgpu.h"
+#include "gfxhub_v1_2.h"
+#include "gfxhub_v1_1.h"
+
+#include "gc/gc_9_4_3_offset.h"
+#include "gc/gc_9_4_3_sh_mask.h"
+#include "vega10_enum.h"
+
+#include "soc15_common.h"
+
+#define regVM_L2_CNTL3_DEFAULT 0x80100007
+#define regVM_L2_CNTL4_DEFAULT 0x000000c1
+
+static u64 gfxhub_v1_2_get_mc_fb_offset(struct amdgpu_device *adev)
+{
+ return (u64)RREG32_SOC15(GC, 0, regMC_VM_FB_OFFSET) << 24;
+}
+
+static void gfxhub_v1_2_setup_vm_pt_regs(struct amdgpu_device *adev,
+ uint32_t vmid,
+ uint64_t page_table_base)
+{
+ struct amdgpu_vmhub *hub = &adev->vmhub[AMDGPU_GFXHUB_0];
+
+ WREG32_SOC15_OFFSET(GC, 0, regVM_CONTEXT0_PAGE_TABLE_BASE_ADDR_LO32,
+ hub->ctx_addr_distance * vmid,
+ lower_32_bits(page_table_base));
+
+ WREG32_SOC15_OFFSET(GC, 0, regVM_CONTEXT0_PAGE_TABLE_BASE_ADDR_HI32,
+ hub->ctx_addr_distance * vmid,
+ upper_32_bits(page_table_base));
+}
+
+static void gfxhub_v1_2_init_gart_aperture_regs(struct amdgpu_device *adev)
+{
+ uint64_t pt_base;
+
+ if (adev->gmc.pdb0_bo)
+ pt_base = amdgpu_gmc_pd_addr(adev->gmc.pdb0_bo);
+ else
+ pt_base = amdgpu_gmc_pd_addr(adev->gart.bo);
+
+ gfxhub_v1_2_setup_vm_pt_regs(adev, 0, pt_base);
+
+ /* If use GART for FB translation, vmid0 page table covers both
+ * vram and system memory (gart)
+ */
+ if (adev->gmc.pdb0_bo) {
+ WREG32_SOC15(GC, 0, regVM_CONTEXT0_PAGE_TABLE_START_ADDR_LO32,
+ (u32)(adev->gmc.fb_start >> 12));
+ WREG32_SOC15(GC, 0, regVM_CONTEXT0_PAGE_TABLE_START_ADDR_HI32,
+ (u32)(adev->gmc.fb_start >> 44));
+
+ WREG32_SOC15(GC, 0, regVM_CONTEXT0_PAGE_TABLE_END_ADDR_LO32,
+ (u32)(adev->gmc.gart_end >> 12));
+ WREG32_SOC15(GC, 0, regVM_CONTEXT0_PAGE_TABLE_END_ADDR_HI32,
+ (u32)(adev->gmc.gart_end >> 44));
+ } else {
+ WREG32_SOC15(GC, 0, regVM_CONTEXT0_PAGE_TABLE_START_ADDR_LO32,
+ (u32)(adev->gmc.gart_start >> 12));
+ WREG32_SOC15(GC, 0, regVM_CONTEXT0_PAGE_TABLE_START_ADDR_HI32,
+ (u32)(adev->gmc.gart_start >> 44));
+
+ WREG32_SOC15(GC, 0, regVM_CONTEXT0_PAGE_TABLE_END_ADDR_LO32,
+ (u32)(adev->gmc.gart_end >> 12));
+ WREG32_SOC15(GC, 0, regVM_CONTEXT0_PAGE_TABLE_END_ADDR_HI32,
+ (u32)(adev->gmc.gart_end >> 44));
+ }
+}
+
+static void gfxhub_v1_2_init_system_aperture_regs(struct amdgpu_device *adev)
+{
+ uint64_t value;
+ uint32_t tmp;
+
+ /* Program the AGP BAR */
+ WREG32_SOC15_RLC(GC, 0, regMC_VM_AGP_BASE, 0);
+ WREG32_SOC15_RLC(GC, 0, regMC_VM_AGP_BOT, adev->gmc.agp_start >> 24);
+ WREG32_SOC15_RLC(GC, 0, regMC_VM_AGP_TOP, adev->gmc.agp_end >> 24);
+
+ if (!amdgpu_sriov_vf(adev) || adev->asic_type <= CHIP_VEGA10) {
+ /* Program the system aperture low logical page number. */
+ WREG32_SOC15_RLC(GC, 0, regMC_VM_SYSTEM_APERTURE_LOW_ADDR,
+ min(adev->gmc.fb_start, adev->gmc.agp_start) >> 18);
+
+ if (adev->apu_flags & AMD_APU_IS_RAVEN2)
+ /*
+ * Raven2 has a HW issue that it is unable to use the
+ * vram which is out of MC_VM_SYSTEM_APERTURE_HIGH_ADDR.
+ * So here is the workaround that increase system
+ * aperture high address (add 1) to get rid of the VM
+ * fault and hardware hang.
+ */
+ WREG32_SOC15_RLC(GC, 0,
+ regMC_VM_SYSTEM_APERTURE_HIGH_ADDR,
+ max((adev->gmc.fb_end >> 18) + 0x1,
+ adev->gmc.agp_end >> 18));
+ else
+ WREG32_SOC15_RLC(GC, 0,
+ regMC_VM_SYSTEM_APERTURE_HIGH_ADDR,
+ max(adev->gmc.fb_end, adev->gmc.agp_end) >> 18);
+
+ /* Set default page address. */
+ value = amdgpu_gmc_vram_mc2pa(adev, adev->mem_scratch.gpu_addr);
+ WREG32_SOC15(GC, 0, regMC_VM_SYSTEM_APERTURE_DEFAULT_ADDR_LSB,
+ (u32)(value >> 12));
+ WREG32_SOC15(GC, 0, regMC_VM_SYSTEM_APERTURE_DEFAULT_ADDR_MSB,
+ (u32)(value >> 44));
+
+ /* Program "protection fault". */
+ WREG32_SOC15(GC, 0, regVM_L2_PROTECTION_FAULT_DEFAULT_ADDR_LO32,
+ (u32)(adev->dummy_page_addr >> 12));
+ WREG32_SOC15(GC, 0, regVM_L2_PROTECTION_FAULT_DEFAULT_ADDR_HI32,
+ (u32)((u64)adev->dummy_page_addr >> 44));
+
+ tmp = RREG32_SOC15(GC, 0, regVM_L2_PROTECTION_FAULT_CNTL2);
+ tmp = REG_SET_FIELD(tmp, VM_L2_PROTECTION_FAULT_CNTL2,
+ ACTIVE_PAGE_MIGRATION_PTE_READ_RETRY, 1);
+ WREG32_SOC15(GC, 0, regVM_L2_PROTECTION_FAULT_CNTL2, tmp);
+ }
+
+ /* In the case squeezing vram into GART aperture, we don't use
+ * FB aperture and AGP aperture. Disable them.
+ */
+ if (adev->gmc.pdb0_bo) {
+ WREG32_SOC15(GC, 0, regMC_VM_FB_LOCATION_TOP, 0);
+ WREG32_SOC15(GC, 0, regMC_VM_FB_LOCATION_BASE, 0x00FFFFFF);
+ WREG32_SOC15(GC, 0, regMC_VM_AGP_TOP, 0);
+ WREG32_SOC15(GC, 0, regMC_VM_AGP_BOT, 0xFFFFFF);
+ WREG32_SOC15(GC, 0, regMC_VM_SYSTEM_APERTURE_LOW_ADDR, 0x3FFFFFFF);
+ WREG32_SOC15(GC, 0, regMC_VM_SYSTEM_APERTURE_HIGH_ADDR, 0);
+ }
+}
+
+static void gfxhub_v1_2_init_tlb_regs(struct amdgpu_device *adev)
+{
+ uint32_t tmp;
+
+ /* Setup TLB control */
+ tmp = RREG32_SOC15(GC, 0, regMC_VM_MX_L1_TLB_CNTL);
+
+ tmp = REG_SET_FIELD(tmp, MC_VM_MX_L1_TLB_CNTL, ENABLE_L1_TLB, 1);
+ tmp = REG_SET_FIELD(tmp, MC_VM_MX_L1_TLB_CNTL, SYSTEM_ACCESS_MODE, 3);
+ tmp = REG_SET_FIELD(tmp, MC_VM_MX_L1_TLB_CNTL,
+ ENABLE_ADVANCED_DRIVER_MODEL, 1);
+ tmp = REG_SET_FIELD(tmp, MC_VM_MX_L1_TLB_CNTL,
+ SYSTEM_APERTURE_UNMAPPED_ACCESS, 0);
+ tmp = REG_SET_FIELD(tmp, MC_VM_MX_L1_TLB_CNTL,
+ MTYPE, MTYPE_UC);/* XXX for emulation. */
+ tmp = REG_SET_FIELD(tmp, MC_VM_MX_L1_TLB_CNTL, ATC_EN, 1);
+
+ WREG32_SOC15_RLC(GC, 0, regMC_VM_MX_L1_TLB_CNTL, tmp);
+}
+
+static void gfxhub_v1_2_init_cache_regs(struct amdgpu_device *adev)
+{
+ uint32_t tmp;
+
+ /* Setup L2 cache */
+ tmp = RREG32_SOC15(GC, 0, regVM_L2_CNTL);
+ tmp = REG_SET_FIELD(tmp, VM_L2_CNTL, ENABLE_L2_CACHE, 1);
+ tmp = REG_SET_FIELD(tmp, VM_L2_CNTL, ENABLE_L2_FRAGMENT_PROCESSING, 1);
+ /* XXX for emulation, Refer to closed source code.*/
+ tmp = REG_SET_FIELD(tmp, VM_L2_CNTL, L2_PDE0_CACHE_TAG_GENERATION_MODE,
+ 0);
+ tmp = REG_SET_FIELD(tmp, VM_L2_CNTL, PDE_FAULT_CLASSIFICATION, 0);
+ tmp = REG_SET_FIELD(tmp, VM_L2_CNTL, CONTEXT1_IDENTITY_ACCESS_MODE, 1);
+ tmp = REG_SET_FIELD(tmp, VM_L2_CNTL, IDENTITY_MODE_FRAGMENT_SIZE, 0);
+ WREG32_SOC15_RLC(GC, 0, regVM_L2_CNTL, tmp);
+
+ tmp = RREG32_SOC15(GC, 0, regVM_L2_CNTL2);
+ tmp = REG_SET_FIELD(tmp, VM_L2_CNTL2, INVALIDATE_ALL_L1_TLBS, 1);
+ tmp = REG_SET_FIELD(tmp, VM_L2_CNTL2, INVALIDATE_L2_CACHE, 1);
+ WREG32_SOC15_RLC(GC, 0, regVM_L2_CNTL2, tmp);
+
+ tmp = regVM_L2_CNTL3_DEFAULT;
+ if (adev->gmc.translate_further) {
+ tmp = REG_SET_FIELD(tmp, VM_L2_CNTL3, BANK_SELECT, 12);
+ tmp = REG_SET_FIELD(tmp, VM_L2_CNTL3,
+ L2_CACHE_BIGK_FRAGMENT_SIZE, 9);
+ } else {
+ tmp = REG_SET_FIELD(tmp, VM_L2_CNTL3, BANK_SELECT, 9);
+ tmp = REG_SET_FIELD(tmp, VM_L2_CNTL3,
+ L2_CACHE_BIGK_FRAGMENT_SIZE, 6);
+ }
+ WREG32_SOC15_RLC(GC, 0, regVM_L2_CNTL3, tmp);
+
+ tmp = regVM_L2_CNTL4_DEFAULT;
+ if (adev->gmc.xgmi.connected_to_cpu) {
+ tmp = REG_SET_FIELD(tmp, VM_L2_CNTL4, VMC_TAP_PDE_REQUEST_PHYSICAL, 1);
+ tmp = REG_SET_FIELD(tmp, VM_L2_CNTL4, VMC_TAP_PTE_REQUEST_PHYSICAL, 1);
+ } else {
+ tmp = REG_SET_FIELD(tmp, VM_L2_CNTL4, VMC_TAP_PDE_REQUEST_PHYSICAL, 0);
+ tmp = REG_SET_FIELD(tmp, VM_L2_CNTL4, VMC_TAP_PTE_REQUEST_PHYSICAL, 0);
+ }
+ WREG32_SOC15_RLC(GC, 0, regVM_L2_CNTL4, tmp);
+}
+
+static void gfxhub_v1_2_enable_system_domain(struct amdgpu_device *adev)
+{
+ uint32_t tmp;
+
+ tmp = RREG32_SOC15(GC, 0, regVM_CONTEXT0_CNTL);
+ tmp = REG_SET_FIELD(tmp, VM_CONTEXT0_CNTL, ENABLE_CONTEXT, 1);
+ tmp = REG_SET_FIELD(tmp, VM_CONTEXT0_CNTL, PAGE_TABLE_DEPTH,
+ adev->gmc.vmid0_page_table_depth);
+ tmp = REG_SET_FIELD(tmp, VM_CONTEXT0_CNTL, PAGE_TABLE_BLOCK_SIZE,
+ adev->gmc.vmid0_page_table_block_size);
+ tmp = REG_SET_FIELD(tmp, VM_CONTEXT0_CNTL,
+ RETRY_PERMISSION_OR_INVALID_PAGE_FAULT, 0);
+ WREG32_SOC15(GC, 0, regVM_CONTEXT0_CNTL, tmp);
+}
+
+static void gfxhub_v1_2_disable_identity_aperture(struct amdgpu_device *adev)
+{
+ WREG32_SOC15(GC, 0, regVM_L2_CONTEXT1_IDENTITY_APERTURE_LOW_ADDR_LO32,
+ 0XFFFFFFFF);
+ WREG32_SOC15(GC, 0, regVM_L2_CONTEXT1_IDENTITY_APERTURE_LOW_ADDR_HI32,
+ 0x0000000F);
+
+ WREG32_SOC15(GC, 0, regVM_L2_CONTEXT1_IDENTITY_APERTURE_HIGH_ADDR_LO32,
+ 0);
+ WREG32_SOC15(GC, 0, regVM_L2_CONTEXT1_IDENTITY_APERTURE_HIGH_ADDR_HI32,
+ 0);
+
+ WREG32_SOC15(GC, 0, regVM_L2_CONTEXT_IDENTITY_PHYSICAL_OFFSET_LO32, 0);
+ WREG32_SOC15(GC, 0, regVM_L2_CONTEXT_IDENTITY_PHYSICAL_OFFSET_HI32, 0);
+
+}
+
+static void gfxhub_v1_2_setup_vmid_config(struct amdgpu_device *adev)
+{
+ struct amdgpu_vmhub *hub = &adev->vmhub[AMDGPU_GFXHUB_0];
+ unsigned num_level, block_size;
+ uint32_t tmp;
+ int i;
+
+ num_level = adev->vm_manager.num_level;
+ block_size = adev->vm_manager.block_size;
+ if (adev->gmc.translate_further)
+ num_level -= 1;
+ else
+ block_size -= 9;
+
+ for (i = 0; i <= 14; i++) {
+ tmp = RREG32_SOC15_OFFSET(GC, 0, regVM_CONTEXT1_CNTL, i);
+ tmp = REG_SET_FIELD(tmp, VM_CONTEXT1_CNTL, ENABLE_CONTEXT, 1);
+ tmp = REG_SET_FIELD(tmp, VM_CONTEXT1_CNTL, PAGE_TABLE_DEPTH,
+ num_level);
+ tmp = REG_SET_FIELD(tmp, VM_CONTEXT1_CNTL,
+ RANGE_PROTECTION_FAULT_ENABLE_DEFAULT, 1);
+ tmp = REG_SET_FIELD(tmp, VM_CONTEXT1_CNTL,
+ DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT,
+ 1);
+ tmp = REG_SET_FIELD(tmp, VM_CONTEXT1_CNTL,
+ PDE0_PROTECTION_FAULT_ENABLE_DEFAULT, 1);
+ tmp = REG_SET_FIELD(tmp, VM_CONTEXT1_CNTL,
+ VALID_PROTECTION_FAULT_ENABLE_DEFAULT, 1);
+ tmp = REG_SET_FIELD(tmp, VM_CONTEXT1_CNTL,
+ READ_PROTECTION_FAULT_ENABLE_DEFAULT, 1);
+ tmp = REG_SET_FIELD(tmp, VM_CONTEXT1_CNTL,
+ WRITE_PROTECTION_FAULT_ENABLE_DEFAULT, 1);
+ tmp = REG_SET_FIELD(tmp, VM_CONTEXT1_CNTL,
+ EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT, 1);
+ tmp = REG_SET_FIELD(tmp, VM_CONTEXT1_CNTL,
+ PAGE_TABLE_BLOCK_SIZE,
+ block_size);
+ /* Send no-retry XNACK on fault to suppress VM fault storm.
+ * On Aldebaran, XNACK can be enabled in the SQ per-process.
+ * Retry faults need to be enabled for that to work.
+ */
+ tmp = REG_SET_FIELD(tmp, VM_CONTEXT1_CNTL,
+ RETRY_PERMISSION_OR_INVALID_PAGE_FAULT,
+ !adev->gmc.noretry ||
+ adev->asic_type == CHIP_ALDEBARAN);
+ WREG32_SOC15_OFFSET(GC, 0, regVM_CONTEXT1_CNTL,
+ i * hub->ctx_distance, tmp);
+ WREG32_SOC15_OFFSET(GC, 0,
+ regVM_CONTEXT1_PAGE_TABLE_START_ADDR_LO32,
+ i * hub->ctx_addr_distance, 0);
+ WREG32_SOC15_OFFSET(GC, 0,
+ regVM_CONTEXT1_PAGE_TABLE_START_ADDR_HI32,
+ i * hub->ctx_addr_distance, 0);
+ WREG32_SOC15_OFFSET(GC, 0,
+ regVM_CONTEXT1_PAGE_TABLE_END_ADDR_LO32,
+ i * hub->ctx_addr_distance,
+ lower_32_bits(adev->vm_manager.max_pfn - 1));
+ WREG32_SOC15_OFFSET(GC, 0,
+ regVM_CONTEXT1_PAGE_TABLE_END_ADDR_HI32,
+ i * hub->ctx_addr_distance,
+ upper_32_bits(adev->vm_manager.max_pfn - 1));
+ }
+}
+
+static void gfxhub_v1_2_program_invalidation(struct amdgpu_device *adev)
+{
+ struct amdgpu_vmhub *hub = &adev->vmhub[AMDGPU_GFXHUB_0];
+ unsigned i;
+
+ for (i = 0 ; i < 18; ++i) {
+ WREG32_SOC15_OFFSET(GC, 0, regVM_INVALIDATE_ENG0_ADDR_RANGE_LO32,
+ i * hub->eng_addr_distance, 0xffffffff);
+ WREG32_SOC15_OFFSET(GC, 0, regVM_INVALIDATE_ENG0_ADDR_RANGE_HI32,
+ i * hub->eng_addr_distance, 0x1f);
+ }
+}
+
+static int gfxhub_v1_2_gart_enable(struct amdgpu_device *adev)
+{
+ if (amdgpu_sriov_vf(adev) && adev->asic_type != CHIP_ARCTURUS) {
+ /*
+ * MC_VM_FB_LOCATION_BASE/TOP is NULL for VF, becuase they are
+ * VF copy registers so vbios post doesn't program them, for
+ * SRIOV driver need to program them
+ */
+ WREG32_SOC15_RLC(GC, 0, regMC_VM_FB_LOCATION_BASE,
+ adev->gmc.vram_start >> 24);
+ WREG32_SOC15_RLC(GC, 0, regMC_VM_FB_LOCATION_TOP,
+ adev->gmc.vram_end >> 24);
+ }
+
+ /* GART Enable. */
+ gfxhub_v1_2_init_gart_aperture_regs(adev);
+ gfxhub_v1_2_init_system_aperture_regs(adev);
+ gfxhub_v1_2_init_tlb_regs(adev);
+ if (!amdgpu_sriov_vf(adev))
+ gfxhub_v1_2_init_cache_regs(adev);
+
+ gfxhub_v1_2_enable_system_domain(adev);
+ if (!amdgpu_sriov_vf(adev))
+ gfxhub_v1_2_disable_identity_aperture(adev);
+ gfxhub_v1_2_setup_vmid_config(adev);
+ gfxhub_v1_2_program_invalidation(adev);
+
+ return 0;
+}
+
+static void gfxhub_v1_2_gart_disable(struct amdgpu_device *adev)
+{
+ struct amdgpu_vmhub *hub = &adev->vmhub[AMDGPU_GFXHUB_0];
+ u32 tmp;
+ u32 i;
+
+ /* Disable all tables */
+ for (i = 0; i < 16; i++)
+ WREG32_SOC15_OFFSET(GC, 0, regVM_CONTEXT0_CNTL,
+ i * hub->ctx_distance, 0);
+
+ /* Setup TLB control */
+ tmp = RREG32_SOC15(GC, 0, regMC_VM_MX_L1_TLB_CNTL);
+ tmp = REG_SET_FIELD(tmp, MC_VM_MX_L1_TLB_CNTL, ENABLE_L1_TLB, 0);
+ tmp = REG_SET_FIELD(tmp,
+ MC_VM_MX_L1_TLB_CNTL,
+ ENABLE_ADVANCED_DRIVER_MODEL,
+ 0);
+ WREG32_SOC15_RLC(GC, 0, regMC_VM_MX_L1_TLB_CNTL, tmp);
+
+ /* Setup L2 cache */
+ tmp = RREG32_SOC15(GC, 0, regVM_L2_CNTL);
+ tmp = REG_SET_FIELD(tmp, VM_L2_CNTL, ENABLE_L2_CACHE, 0);
+ WREG32_SOC15(GC, 0, regVM_L2_CNTL, tmp);
+ WREG32_SOC15(GC, 0, regVM_L2_CNTL3, 0);
+}
+
+/**
+ * gfxhub_v1_2_set_fault_enable_default - update GART/VM fault handling
+ *
+ * @adev: amdgpu_device pointer
+ * @value: true redirects VM faults to the default page
+ */
+static void gfxhub_v1_2_set_fault_enable_default(struct amdgpu_device *adev,
+ bool value)
+{
+ u32 tmp;
+ tmp = RREG32_SOC15(GC, 0, regVM_L2_PROTECTION_FAULT_CNTL);
+ tmp = REG_SET_FIELD(tmp, VM_L2_PROTECTION_FAULT_CNTL,
+ RANGE_PROTECTION_FAULT_ENABLE_DEFAULT, value);
+ tmp = REG_SET_FIELD(tmp, VM_L2_PROTECTION_FAULT_CNTL,
+ PDE0_PROTECTION_FAULT_ENABLE_DEFAULT, value);
+ tmp = REG_SET_FIELD(tmp, VM_L2_PROTECTION_FAULT_CNTL,
+ PDE1_PROTECTION_FAULT_ENABLE_DEFAULT, value);
+ tmp = REG_SET_FIELD(tmp, VM_L2_PROTECTION_FAULT_CNTL,
+ PDE2_PROTECTION_FAULT_ENABLE_DEFAULT, value);
+ tmp = REG_SET_FIELD(tmp,
+ VM_L2_PROTECTION_FAULT_CNTL,
+ TRANSLATE_FURTHER_PROTECTION_FAULT_ENABLE_DEFAULT,
+ value);
+ tmp = REG_SET_FIELD(tmp, VM_L2_PROTECTION_FAULT_CNTL,
+ NACK_PROTECTION_FAULT_ENABLE_DEFAULT, value);
+ tmp = REG_SET_FIELD(tmp, VM_L2_PROTECTION_FAULT_CNTL,
+ DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT, value);
+ tmp = REG_SET_FIELD(tmp, VM_L2_PROTECTION_FAULT_CNTL,
+ VALID_PROTECTION_FAULT_ENABLE_DEFAULT, value);
+ tmp = REG_SET_FIELD(tmp, VM_L2_PROTECTION_FAULT_CNTL,
+ READ_PROTECTION_FAULT_ENABLE_DEFAULT, value);
+ tmp = REG_SET_FIELD(tmp, VM_L2_PROTECTION_FAULT_CNTL,
+ WRITE_PROTECTION_FAULT_ENABLE_DEFAULT, value);
+ tmp = REG_SET_FIELD(tmp, VM_L2_PROTECTION_FAULT_CNTL,
+ EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT, value);
+ if (!value) {
+ tmp = REG_SET_FIELD(tmp, VM_L2_PROTECTION_FAULT_CNTL,
+ CRASH_ON_NO_RETRY_FAULT, 1);
+ tmp = REG_SET_FIELD(tmp, VM_L2_PROTECTION_FAULT_CNTL,
+ CRASH_ON_RETRY_FAULT, 1);
+ }
+ WREG32_SOC15(GC, 0, regVM_L2_PROTECTION_FAULT_CNTL, tmp);
+}
+
+static void gfxhub_v1_2_init(struct amdgpu_device *adev)
+{
+ struct amdgpu_vmhub *hub = &adev->vmhub[AMDGPU_GFXHUB_0];
+
+ hub->ctx0_ptb_addr_lo32 =
+ SOC15_REG_OFFSET(GC, 0,
+ regVM_CONTEXT0_PAGE_TABLE_BASE_ADDR_LO32);
+ hub->ctx0_ptb_addr_hi32 =
+ SOC15_REG_OFFSET(GC, 0,
+ regVM_CONTEXT0_PAGE_TABLE_BASE_ADDR_HI32);
+ hub->vm_inv_eng0_sem =
+ SOC15_REG_OFFSET(GC, 0, regVM_INVALIDATE_ENG0_SEM);
+ hub->vm_inv_eng0_req =
+ SOC15_REG_OFFSET(GC, 0, regVM_INVALIDATE_ENG0_REQ);
+ hub->vm_inv_eng0_ack =
+ SOC15_REG_OFFSET(GC, 0, regVM_INVALIDATE_ENG0_ACK);
+ hub->vm_context0_cntl =
+ SOC15_REG_OFFSET(GC, 0, regVM_CONTEXT0_CNTL);
+ hub->vm_l2_pro_fault_status =
+ SOC15_REG_OFFSET(GC, 0, regVM_L2_PROTECTION_FAULT_STATUS);
+ hub->vm_l2_pro_fault_cntl =
+ SOC15_REG_OFFSET(GC, 0, regVM_L2_PROTECTION_FAULT_CNTL);
+
+ hub->ctx_distance = regVM_CONTEXT1_CNTL - regVM_CONTEXT0_CNTL;
+ hub->ctx_addr_distance = regVM_CONTEXT1_PAGE_TABLE_BASE_ADDR_LO32 -
+ regVM_CONTEXT0_PAGE_TABLE_BASE_ADDR_LO32;
+ hub->eng_distance = regVM_INVALIDATE_ENG1_REQ - regVM_INVALIDATE_ENG0_REQ;
+ hub->eng_addr_distance = regVM_INVALIDATE_ENG1_ADDR_RANGE_LO32 -
+ regVM_INVALIDATE_ENG0_ADDR_RANGE_LO32;
+}
+
+
+const struct amdgpu_gfxhub_funcs gfxhub_v1_2_funcs = {
+ .get_mc_fb_offset = gfxhub_v1_2_get_mc_fb_offset,
+ .setup_vm_pt_regs = gfxhub_v1_2_setup_vm_pt_regs,
+ .gart_enable = gfxhub_v1_2_gart_enable,
+ .gart_disable = gfxhub_v1_2_gart_disable,
+ .set_fault_enable_default = gfxhub_v1_2_set_fault_enable_default,
+ .init = gfxhub_v1_2_init,
+ .get_xgmi_info = gfxhub_v1_1_get_xgmi_info,
+};
diff --git a/drivers/gpu/drm/amd/amdgpu/gfxhub_v1_2.h b/drivers/gpu/drm/amd/amdgpu/gfxhub_v1_2.h
new file mode 100644
index 000000000000..e2d508f5a7ee
--- /dev/null
+++ b/drivers/gpu/drm/amd/amdgpu/gfxhub_v1_2.h
@@ -0,0 +1,29 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ */
+
+#ifndef __GFXHUB_V1_2_H__
+#define __GFXHUB_V1_2_H__
+
+extern const struct amdgpu_gfxhub_funcs gfxhub_v1_2_funcs;
+
+#endif
diff --git a/drivers/gpu/drm/amd/amdgpu/gfxhub_v2_0.c b/drivers/gpu/drm/amd/amdgpu/gfxhub_v2_0.c
index 34513e8e1519..9b3a02527318 100644
--- a/drivers/gpu/drm/amd/amdgpu/gfxhub_v2_0.c
+++ b/drivers/gpu/drm/amd/amdgpu/gfxhub_v2_0.c
@@ -165,7 +165,7 @@ static void gfxhub_v2_0_init_system_aperture_regs(struct amdgpu_device *adev)
max(adev->gmc.fb_end, adev->gmc.agp_end) >> 18);
/* Set default page address. */
- value = amdgpu_gmc_vram_mc2pa(adev, adev->vram_scratch.gpu_addr);
+ value = amdgpu_gmc_vram_mc2pa(adev, adev->mem_scratch.gpu_addr);
WREG32_SOC15(GC, 0, mmGCMC_VM_SYSTEM_APERTURE_DEFAULT_ADDR_LSB,
(u32)(value >> 12));
WREG32_SOC15(GC, 0, mmGCMC_VM_SYSTEM_APERTURE_DEFAULT_ADDR_MSB,
diff --git a/drivers/gpu/drm/amd/amdgpu/gfxhub_v2_1.c b/drivers/gpu/drm/amd/amdgpu/gfxhub_v2_1.c
index 8cf53e039c11..4aacbbec31e2 100644
--- a/drivers/gpu/drm/amd/amdgpu/gfxhub_v2_1.c
+++ b/drivers/gpu/drm/amd/amdgpu/gfxhub_v2_1.c
@@ -167,7 +167,7 @@ static void gfxhub_v2_1_init_system_aperture_regs(struct amdgpu_device *adev)
max(adev->gmc.fb_end, adev->gmc.agp_end) >> 18);
/* Set default page address. */
- value = amdgpu_gmc_vram_mc2pa(adev, adev->vram_scratch.gpu_addr);
+ value = amdgpu_gmc_vram_mc2pa(adev, adev->mem_scratch.gpu_addr);
WREG32_SOC15(GC, 0, mmGCMC_VM_SYSTEM_APERTURE_DEFAULT_ADDR_LSB,
(u32)(value >> 12));
WREG32_SOC15(GC, 0, mmGCMC_VM_SYSTEM_APERTURE_DEFAULT_ADDR_MSB,
@@ -397,6 +397,9 @@ static void gfxhub_v2_1_gart_disable(struct amdgpu_device *adev)
ENABLE_ADVANCED_DRIVER_MODEL, 0);
WREG32_SOC15(GC, 0, mmGCMC_VM_MX_L1_TLB_CNTL, tmp);
+ if (amdgpu_sriov_vf(adev))
+ return;
+
/* Setup L2 cache */
WREG32_FIELD15(GC, 0, GCVM_L2_CNTL, ENABLE_L2_CACHE, 0);
WREG32_SOC15(GC, 0, mmGCVM_L2_CNTL3, 0);
diff --git a/drivers/gpu/drm/amd/amdgpu/gfxhub_v3_0.c b/drivers/gpu/drm/amd/amdgpu/gfxhub_v3_0.c
index 0e13370c2057..13712640fa46 100644
--- a/drivers/gpu/drm/amd/amdgpu/gfxhub_v3_0.c
+++ b/drivers/gpu/drm/amd/amdgpu/gfxhub_v3_0.c
@@ -151,19 +151,20 @@ static void gfxhub_v3_0_init_system_aperture_regs(struct amdgpu_device *adev)
{
uint64_t value;
- /* Disable AGP. */
+ /* Program the AGP BAR */
WREG32_SOC15(GC, 0, regGCMC_VM_AGP_BASE, 0);
- WREG32_SOC15(GC, 0, regGCMC_VM_AGP_TOP, 0);
- WREG32_SOC15(GC, 0, regGCMC_VM_AGP_BOT, 0x00FFFFFF);
+ WREG32_SOC15(GC, 0, regGCMC_VM_AGP_BOT, adev->gmc.agp_start >> 24);
+ WREG32_SOC15(GC, 0, regGCMC_VM_AGP_TOP, adev->gmc.agp_end >> 24);
+
/* Program the system aperture low logical page number. */
WREG32_SOC15(GC, 0, regGCMC_VM_SYSTEM_APERTURE_LOW_ADDR,
- adev->gmc.vram_start >> 18);
+ min(adev->gmc.fb_start, adev->gmc.agp_start) >> 18);
WREG32_SOC15(GC, 0, regGCMC_VM_SYSTEM_APERTURE_HIGH_ADDR,
- adev->gmc.vram_end >> 18);
+ max(adev->gmc.fb_end, adev->gmc.agp_end) >> 18);
/* Set default page address. */
- value = adev->vram_scratch.gpu_addr - adev->gmc.vram_start
+ value = adev->mem_scratch.gpu_addr - adev->gmc.vram_start
+ adev->vm_manager.vram_base_offset;
WREG32_SOC15(GC, 0, regGCMC_VM_SYSTEM_APERTURE_DEFAULT_ADDR_LSB,
(u32)(value >> 12));
@@ -416,34 +417,12 @@ static void gfxhub_v3_0_set_fault_enable_default(struct amdgpu_device *adev,
tmp = REG_SET_FIELD(tmp, CP_DEBUG, CPG_UTCL1_ERROR_HALT_DISABLE, 1);
WREG32_SOC15(GC, 0, regCP_DEBUG, tmp);
- /**
- * Set GRBM_GFX_INDEX in broad cast mode
- * before programming GL1C_UTCL0_CNTL1 and SQG_CONFIG
- */
- WREG32_SOC15(GC, 0, regGRBM_GFX_INDEX, regGRBM_GFX_INDEX_DEFAULT);
-
- /**
- * Retry respond mode: RETRY
- * Error (no retry) respond mode: SUCCESS
- */
- tmp = RREG32_SOC15(GC, 0, regGL1C_UTCL0_CNTL1);
- tmp = REG_SET_FIELD(tmp, GL1C_UTCL0_CNTL1, RESP_MODE, 0);
- tmp = REG_SET_FIELD(tmp, GL1C_UTCL0_CNTL1, RESP_FAULT_MODE, 0x2);
- WREG32_SOC15(GC, 0, regGL1C_UTCL0_CNTL1, tmp);
-
/* These registers are not accessible to VF-SRIOV.
* The PF will program them instead.
*/
if (amdgpu_sriov_vf(adev))
return;
- /* Disable SQ XNACK interrupt for all VMIDs */
- tmp = RREG32_SOC15(GC, 0, regSQG_CONFIG);
- tmp = REG_SET_FIELD(tmp, SQG_CONFIG, XNACK_INTR_MASK,
- SQG_CONFIG__XNACK_INTR_MASK_MASK >>
- SQG_CONFIG__XNACK_INTR_MASK__SHIFT);
- WREG32_SOC15(GC, 0, regSQG_CONFIG, tmp);
-
tmp = RREG32_SOC15(GC, 0, regGCVM_L2_PROTECTION_FAULT_CNTL);
tmp = REG_SET_FIELD(tmp, GCVM_L2_PROTECTION_FAULT_CNTL,
RANGE_PROTECTION_FAULT_ENABLE_DEFAULT, value);
diff --git a/drivers/gpu/drm/amd/amdgpu/gfxhub_v3_0_3.c b/drivers/gpu/drm/amd/amdgpu/gfxhub_v3_0_3.c
index 5d3fffd4929f..6e0bd628c889 100644
--- a/drivers/gpu/drm/amd/amdgpu/gfxhub_v3_0_3.c
+++ b/drivers/gpu/drm/amd/amdgpu/gfxhub_v3_0_3.c
@@ -154,19 +154,22 @@ static void gfxhub_v3_0_3_init_system_aperture_regs(struct amdgpu_device *adev)
{
uint64_t value;
+ if (amdgpu_sriov_vf(adev))
+ return;
+
/* Disable AGP. */
WREG32_SOC15(GC, 0, regGCMC_VM_AGP_BASE, 0);
- WREG32_SOC15(GC, 0, regGCMC_VM_AGP_TOP, 0);
- WREG32_SOC15(GC, 0, regGCMC_VM_AGP_BOT, 0x00FFFFFF);
+ WREG32_SOC15(GC, 0, regGCMC_VM_AGP_BOT, adev->gmc.agp_start >> 24);
+ WREG32_SOC15(GC, 0, regGCMC_VM_AGP_TOP, adev->gmc.agp_end >> 24);
/* Program the system aperture low logical page number. */
WREG32_SOC15(GC, 0, regGCMC_VM_SYSTEM_APERTURE_LOW_ADDR,
- adev->gmc.vram_start >> 18);
+ min(adev->gmc.fb_start, adev->gmc.agp_start) >> 18);
WREG32_SOC15(GC, 0, regGCMC_VM_SYSTEM_APERTURE_HIGH_ADDR,
- adev->gmc.vram_end >> 18);
+ max(adev->gmc.fb_end, adev->gmc.agp_end) >> 18);
/* Set default page address. */
- value = adev->vram_scratch.gpu_addr - adev->gmc.vram_start
+ value = adev->mem_scratch.gpu_addr - adev->gmc.vram_start
+ adev->vm_manager.vram_base_offset;
WREG32_SOC15(GC, 0, regGCMC_VM_SYSTEM_APERTURE_DEFAULT_ADDR_LSB,
(u32)(value >> 12));
@@ -354,18 +357,6 @@ static void gfxhub_v3_0_3_program_invalidation(struct amdgpu_device *adev)
static int gfxhub_v3_0_3_gart_enable(struct amdgpu_device *adev)
{
- if (amdgpu_sriov_vf(adev)) {
- /*
- * GCMC_VM_FB_LOCATION_BASE/TOP is NULL for VF, becuase they are
- * VF copy registers so vbios post doesn't program them, for
- * SRIOV driver need to program them
- */
- WREG32_SOC15(GC, 0, regGCMC_VM_FB_LOCATION_BASE,
- adev->gmc.vram_start >> 24);
- WREG32_SOC15(GC, 0, regGCMC_VM_FB_LOCATION_TOP,
- adev->gmc.vram_end >> 24);
- }
-
/* GART Enable. */
gfxhub_v3_0_3_init_gart_aperture_regs(adev);
gfxhub_v3_0_3_init_system_aperture_regs(adev);
diff --git a/drivers/gpu/drm/amd/amdgpu/gmc_v10_0.c b/drivers/gpu/drm/amd/amdgpu/gmc_v10_0.c
index f513e2c2e964..b213dcf8ca06 100644
--- a/drivers/gpu/drm/amd/amdgpu/gmc_v10_0.c
+++ b/drivers/gpu/drm/amd/amdgpu/gmc_v10_0.c
@@ -78,13 +78,25 @@ gmc_v10_0_vm_fault_interrupt_state(struct amdgpu_device *adev,
/* MM HUB */
amdgpu_gmc_set_vm_fault_masks(adev, AMDGPU_MMHUB_0, false);
/* GFX HUB */
- amdgpu_gmc_set_vm_fault_masks(adev, AMDGPU_GFXHUB_0, false);
+ /* This works because this interrupt is only
+ * enabled at init/resume and disabled in
+ * fini/suspend, so the overall state doesn't
+ * change over the course of suspend/resume.
+ */
+ if (!adev->in_s0ix)
+ amdgpu_gmc_set_vm_fault_masks(adev, AMDGPU_GFXHUB_0, false);
break;
case AMDGPU_IRQ_STATE_ENABLE:
/* MM HUB */
amdgpu_gmc_set_vm_fault_masks(adev, AMDGPU_MMHUB_0, true);
/* GFX HUB */
- amdgpu_gmc_set_vm_fault_masks(adev, AMDGPU_GFXHUB_0, true);
+ /* This works because this interrupt is only
+ * enabled at init/resume and disabled in
+ * fini/suspend, so the overall state doesn't
+ * change over the course of suspend/resume.
+ */
+ if (!adev->in_s0ix)
+ amdgpu_gmc_set_vm_fault_masks(adev, AMDGPU_GFXHUB_0, true);
break;
default:
break;
@@ -371,7 +383,9 @@ static void gmc_v10_0_flush_gpu_tlb(struct amdgpu_device *adev, uint32_t vmid,
* translation. Avoid this by doing the invalidation from the SDMA
* itself.
*/
- r = amdgpu_job_alloc_with_ib(adev, 16 * 4, AMDGPU_IB_POOL_IMMEDIATE,
+ r = amdgpu_job_alloc_with_ib(ring->adev, &adev->mman.entity,
+ AMDGPU_FENCE_OWNER_UNDEFINED,
+ 16 * 4, AMDGPU_IB_POOL_IMMEDIATE,
&job);
if (r)
goto error_alloc;
@@ -380,10 +394,7 @@ static void gmc_v10_0_flush_gpu_tlb(struct amdgpu_device *adev, uint32_t vmid,
job->vm_needs_flush = true;
job->ibs->ptr[job->ibs->length_dw++] = ring->funcs->nop;
amdgpu_ring_pad_ib(ring, &job->ibs[0]);
- r = amdgpu_job_submit(job, &adev->mman.entity,
- AMDGPU_FENCE_OWNER_UNDEFINED, &fence);
- if (r)
- goto error_submit;
+ fence = amdgpu_job_submit(job);
mutex_unlock(&adev->mman.gtt_window_lock);
@@ -392,9 +403,6 @@ static void gmc_v10_0_flush_gpu_tlb(struct amdgpu_device *adev, uint32_t vmid,
return;
-error_submit:
- amdgpu_job_free(job);
-
error_alloc:
mutex_unlock(&adev->mman.gtt_window_lock);
DRM_ERROR("Error flushing GPU TLB using the SDMA (%d)!\n", r);
@@ -471,8 +479,8 @@ static int gmc_v10_0_flush_gpu_tlb_pasid(struct amdgpu_device *adev,
static uint64_t gmc_v10_0_emit_flush_gpu_tlb(struct amdgpu_ring *ring,
unsigned vmid, uint64_t pd_addr)
{
- bool use_semaphore = gmc_v10_0_use_invalidate_semaphore(ring->adev, ring->funcs->vmhub);
- struct amdgpu_vmhub *hub = &ring->adev->vmhub[ring->funcs->vmhub];
+ bool use_semaphore = gmc_v10_0_use_invalidate_semaphore(ring->adev, ring->vm_hub);
+ struct amdgpu_vmhub *hub = &ring->adev->vmhub[ring->vm_hub];
uint32_t req = hub->vmhub_funcs->get_invalidate_req(vmid, 0);
unsigned eng = ring->vm_inv_eng;
@@ -526,7 +534,7 @@ static void gmc_v10_0_emit_pasid_mapping(struct amdgpu_ring *ring, unsigned vmid
if (ring->is_mes_queue)
return;
- if (ring->funcs->vmhub == AMDGPU_GFXHUB_0)
+ if (ring->vm_hub == AMDGPU_GFXHUB_0)
reg = SOC15_REG_OFFSET(OSSSYS, 0, mmIH_VMID_0_LUT) + vmid;
else
reg = SOC15_REG_OFFSET(OSSSYS, 0, mmIH_VMID_0_LUT_MM) + vmid;
@@ -612,6 +620,8 @@ static void gmc_v10_0_get_vm_pte(struct amdgpu_device *adev,
struct amdgpu_bo_va_mapping *mapping,
uint64_t *flags)
{
+ struct amdgpu_bo *bo = mapping->bo_va->base.bo;
+
*flags &= ~AMDGPU_PTE_EXECUTABLE;
*flags |= mapping->flags & AMDGPU_PTE_EXECUTABLE;
@@ -628,6 +638,11 @@ static void gmc_v10_0_get_vm_pte(struct amdgpu_device *adev,
*flags |= AMDGPU_PTE_SYSTEM;
*flags &= ~AMDGPU_PTE_VALID;
}
+
+ if (bo && bo->flags & (AMDGPU_GEM_CREATE_COHERENT |
+ AMDGPU_GEM_CREATE_UNCACHED))
+ *flags = (*flags & ~AMDGPU_PTE_MTYPE_NV10_MASK) |
+ AMDGPU_PTE_MTYPE_NV10(MTYPE_UC);
}
static unsigned gmc_v10_0_get_vbios_fb_size(struct amdgpu_device *adev)
@@ -677,31 +692,15 @@ static void gmc_v10_0_set_umc_funcs(struct amdgpu_device *adev)
adev->umc.channel_inst_num = UMC_V8_7_CHANNEL_INSTANCE_NUM;
adev->umc.umc_inst_num = UMC_V8_7_UMC_INSTANCE_NUM;
adev->umc.channel_offs = UMC_V8_7_PER_CHANNEL_OFFSET_SIENNA;
+ adev->umc.retire_unit = 1;
adev->umc.channel_idx_tbl = &umc_v8_7_channel_idx_tbl[0][0];
adev->umc.ras = &umc_v8_7_ras;
break;
default:
break;
}
- if (adev->umc.ras) {
- amdgpu_ras_register_ras_block(adev, &adev->umc.ras->ras_block);
-
- strcpy(adev->umc.ras->ras_block.ras_comm.name, "umc");
- adev->umc.ras->ras_block.ras_comm.block = AMDGPU_RAS_BLOCK__UMC;
- adev->umc.ras->ras_block.ras_comm.type = AMDGPU_RAS_ERROR__MULTI_UNCORRECTABLE;
- adev->umc.ras_if = &adev->umc.ras->ras_block.ras_comm;
-
- /* If don't define special ras_late_init function, use default ras_late_init */
- if (!adev->umc.ras->ras_block.ras_late_init)
- adev->umc.ras->ras_block.ras_late_init = amdgpu_umc_ras_late_init;
-
- /* If not defined special ras_cb function, use default ras_cb */
- if (!adev->umc.ras->ras_block.ras_cb)
- adev->umc.ras->ras_block.ras_cb = amdgpu_umc_process_ras_data_cb;
- }
}
-
static void gmc_v10_0_set_mmhub_funcs(struct amdgpu_device *adev)
{
switch (adev->ip_versions[MMHUB_HWIP][0]) {
@@ -738,7 +737,6 @@ static void gmc_v10_0_set_gfxhub_funcs(struct amdgpu_device *adev)
static int gmc_v10_0_early_init(void *handle)
{
- int r;
struct amdgpu_device *adev = (struct amdgpu_device *)handle;
gmc_v10_0_set_mmhub_funcs(adev);
@@ -754,10 +752,6 @@ static int gmc_v10_0_early_init(void *handle)
adev->gmc.private_aperture_end =
adev->gmc.private_aperture_start + (4ULL << 30) - 1;
- r = amdgpu_gmc_ras_early_init(adev);
- if (r)
- return r;
-
return 0;
}
@@ -832,10 +826,7 @@ static int gmc_v10_0_mc_init(struct amdgpu_device *adev)
}
#endif
- /* In case the PCI BAR is larger than the actual amount of vram */
adev->gmc.visible_vram_size = adev->gmc.aper_size;
- if (adev->gmc.visible_vram_size > adev->gmc.real_vram_size)
- adev->gmc.visible_vram_size = adev->gmc.real_vram_size;
/* set the gart size */
if (amdgpu_gart_size == -1) {
@@ -1011,6 +1002,10 @@ static int gmc_v10_0_sw_init(void *handle)
amdgpu_vm_manager_init(adev);
+ r = amdgpu_gmc_ras_sw_init(adev);
+ if (r)
+ return r;
+
return 0;
}
@@ -1058,9 +1053,12 @@ static int gmc_v10_0_gart_enable(struct amdgpu_device *adev)
}
amdgpu_gtt_mgr_recover(&adev->mman.gtt_mgr);
- r = adev->gfxhub.funcs->gart_enable(adev);
- if (r)
- return r;
+
+ if (!adev->in_s0ix) {
+ r = adev->gfxhub.funcs->gart_enable(adev);
+ if (r)
+ return r;
+ }
r = adev->mmhub.funcs->gart_enable(adev);
if (r)
@@ -1074,10 +1072,12 @@ static int gmc_v10_0_gart_enable(struct amdgpu_device *adev)
value = (amdgpu_vm_fault_stop == AMDGPU_VM_FAULT_STOP_ALWAYS) ?
false : true;
- adev->gfxhub.funcs->set_fault_enable_default(adev, value);
+ if (!adev->in_s0ix)
+ adev->gfxhub.funcs->set_fault_enable_default(adev, value);
adev->mmhub.funcs->set_fault_enable_default(adev, value);
gmc_v10_0_flush_gpu_tlb(adev, 0, AMDGPU_MMHUB_0, 0);
- gmc_v10_0_flush_gpu_tlb(adev, 0, AMDGPU_GFXHUB_0, 0);
+ if (!adev->in_s0ix)
+ gmc_v10_0_flush_gpu_tlb(adev, 0, AMDGPU_GFXHUB_0, 0);
DRM_INFO("PCIE GART of %uM enabled (table at 0x%016llX).\n",
(unsigned)(adev->gmc.gart_size >> 20),
@@ -1098,7 +1098,7 @@ static int gmc_v10_0_hw_init(void *handle)
* harvestable groups in gc_utcl2 need to be programmed before any GFX block
* register setup within GMC, or else system hang when harvesting SA.
*/
- if (adev->gfxhub.funcs && adev->gfxhub.funcs->utcl2_harvest)
+ if (!adev->in_s0ix && adev->gfxhub.funcs && adev->gfxhub.funcs->utcl2_harvest)
adev->gfxhub.funcs->utcl2_harvest(adev);
r = gmc_v10_0_gart_enable(adev);
@@ -1126,7 +1126,8 @@ static int gmc_v10_0_hw_init(void *handle)
*/
static void gmc_v10_0_gart_disable(struct amdgpu_device *adev)
{
- adev->gfxhub.funcs->gart_disable(adev);
+ if (!adev->in_s0ix)
+ adev->gfxhub.funcs->gart_disable(adev);
adev->mmhub.funcs->gart_disable(adev);
}
@@ -1142,7 +1143,6 @@ static int gmc_v10_0_hw_fini(void *handle)
return 0;
}
- amdgpu_irq_put(adev, &adev->gmc.ecc_irq, 0);
amdgpu_irq_put(adev, &adev->gmc.vm_fault, 0);
return 0;
diff --git a/drivers/gpu/drm/amd/amdgpu/gmc_v11_0.c b/drivers/gpu/drm/amd/amdgpu/gmc_v11_0.c
index 66dfb574cc7d..d95f9fe8f1c5 100644
--- a/drivers/gpu/drm/amd/amdgpu/gmc_v11_0.c
+++ b/drivers/gpu/drm/amd/amdgpu/gmc_v11_0.c
@@ -64,13 +64,25 @@ gmc_v11_0_vm_fault_interrupt_state(struct amdgpu_device *adev,
/* MM HUB */
amdgpu_gmc_set_vm_fault_masks(adev, AMDGPU_MMHUB_0, false);
/* GFX HUB */
- amdgpu_gmc_set_vm_fault_masks(adev, AMDGPU_GFXHUB_0, false);
+ /* This works because this interrupt is only
+ * enabled at init/resume and disabled in
+ * fini/suspend, so the overall state doesn't
+ * change over the course of suspend/resume.
+ */
+ if (!adev->in_s0ix)
+ amdgpu_gmc_set_vm_fault_masks(adev, AMDGPU_GFXHUB_0, false);
break;
case AMDGPU_IRQ_STATE_ENABLE:
/* MM HUB */
amdgpu_gmc_set_vm_fault_masks(adev, AMDGPU_MMHUB_0, true);
/* GFX HUB */
- amdgpu_gmc_set_vm_fault_masks(adev, AMDGPU_GFXHUB_0, true);
+ /* This works because this interrupt is only
+ * enabled at init/resume and disabled in
+ * fini/suspend, so the overall state doesn't
+ * change over the course of suspend/resume.
+ */
+ if (!adev->in_s0ix)
+ amdgpu_gmc_set_vm_fault_masks(adev, AMDGPU_GFXHUB_0, true);
break;
default:
break;
@@ -262,6 +274,8 @@ static void gmc_v11_0_flush_vm_hub(struct amdgpu_device *adev, uint32_t vmid,
*
* @adev: amdgpu_device pointer
* @vmid: vm instance to flush
+ * @vmhub: which hub to flush
+ * @flush_type: the flush type
*
* Flush the TLB for the requested page table.
*/
@@ -301,6 +315,8 @@ static void gmc_v11_0_flush_gpu_tlb(struct amdgpu_device *adev, uint32_t vmid,
*
* @adev: amdgpu_device pointer
* @pasid: pasid to be flush
+ * @flush_type: the flush type
+ * @all_hub: flush all hubs
*
* Flush the TLB for the requested pasid.
*/
@@ -362,8 +378,8 @@ static int gmc_v11_0_flush_gpu_tlb_pasid(struct amdgpu_device *adev,
static uint64_t gmc_v11_0_emit_flush_gpu_tlb(struct amdgpu_ring *ring,
unsigned vmid, uint64_t pd_addr)
{
- bool use_semaphore = gmc_v11_0_use_invalidate_semaphore(ring->adev, ring->funcs->vmhub);
- struct amdgpu_vmhub *hub = &ring->adev->vmhub[ring->funcs->vmhub];
+ bool use_semaphore = gmc_v11_0_use_invalidate_semaphore(ring->adev, ring->vm_hub);
+ struct amdgpu_vmhub *hub = &ring->adev->vmhub[ring->vm_hub];
uint32_t req = hub->vmhub_funcs->get_invalidate_req(vmid, 0);
unsigned eng = ring->vm_inv_eng;
@@ -417,7 +433,7 @@ static void gmc_v11_0_emit_pasid_mapping(struct amdgpu_ring *ring, unsigned vmid
if (ring->is_mes_queue)
return;
- if (ring->funcs->vmhub == AMDGPU_GFXHUB_0)
+ if (ring->vm_hub == AMDGPU_GFXHUB_0)
reg = SOC15_REG_OFFSET(OSSSYS, 0, regIH_VMID_0_LUT) + vmid;
else
reg = SOC15_REG_OFFSET(OSSSYS, 0, regIH_VMID_0_LUT_MM) + vmid;
@@ -503,6 +519,8 @@ static void gmc_v11_0_get_vm_pte(struct amdgpu_device *adev,
struct amdgpu_bo_va_mapping *mapping,
uint64_t *flags)
{
+ struct amdgpu_bo *bo = mapping->bo_va->base.bo;
+
*flags &= ~AMDGPU_PTE_EXECUTABLE;
*flags |= mapping->flags & AMDGPU_PTE_EXECUTABLE;
@@ -519,6 +537,11 @@ static void gmc_v11_0_get_vm_pte(struct amdgpu_device *adev,
*flags |= AMDGPU_PTE_SYSTEM;
*flags &= ~AMDGPU_PTE_VALID;
}
+
+ if (bo && bo->flags & (AMDGPU_GEM_CREATE_COHERENT |
+ AMDGPU_GEM_CREATE_UNCACHED))
+ *flags = (*flags & ~AMDGPU_PTE_MTYPE_NV10_MASK) |
+ AMDGPU_PTE_MTYPE_NV10(MTYPE_UC);
}
static unsigned gmc_v11_0_get_vbios_fb_size(struct amdgpu_device *adev)
@@ -548,10 +571,13 @@ static void gmc_v11_0_set_umc_funcs(struct amdgpu_device *adev)
case IP_VERSION(8, 10, 0):
adev->umc.channel_inst_num = UMC_V8_10_CHANNEL_INSTANCE_NUM;
adev->umc.umc_inst_num = UMC_V8_10_UMC_INSTANCE_NUM;
- adev->umc.node_inst_num = adev->gmc.num_umc;
adev->umc.max_ras_err_cnt_per_query = UMC_V8_10_TOTAL_CHANNEL_NUM(adev);
adev->umc.channel_offs = UMC_V8_10_PER_CHANNEL_OFFSET;
- adev->umc.channel_idx_tbl = &umc_v8_10_channel_idx_tbl[0][0][0];
+ adev->umc.retire_unit = UMC_V8_10_NA_COL_2BITS_POWER_OF_2_NUM;
+ if (adev->umc.node_inst_num == 4)
+ adev->umc.channel_idx_tbl = &umc_v8_10_channel_idx_tbl_ext0[0][0][0];
+ else
+ adev->umc.channel_idx_tbl = &umc_v8_10_channel_idx_tbl[0][0][0];
adev->umc.ras = &umc_v8_10_ras;
break;
case IP_VERSION(8, 11, 0):
@@ -559,23 +585,6 @@ static void gmc_v11_0_set_umc_funcs(struct amdgpu_device *adev)
default:
break;
}
-
- if (adev->umc.ras) {
- amdgpu_ras_register_ras_block(adev, &adev->umc.ras->ras_block);
-
- strcpy(adev->umc.ras->ras_block.ras_comm.name, "umc");
- adev->umc.ras->ras_block.ras_comm.block = AMDGPU_RAS_BLOCK__UMC;
- adev->umc.ras->ras_block.ras_comm.type = AMDGPU_RAS_ERROR__MULTI_UNCORRECTABLE;
- adev->umc.ras_if = &adev->umc.ras->ras_block.ras_comm;
-
- /* If don't define special ras_late_init function, use default ras_late_init */
- if (!adev->umc.ras->ras_block.ras_late_init)
- adev->umc.ras->ras_block.ras_late_init = amdgpu_umc_ras_late_init;
-
- /* If not define special ras_cb function, use default ras_cb */
- if (!adev->umc.ras->ras_block.ras_cb)
- adev->umc.ras->ras_block.ras_cb = amdgpu_umc_process_ras_data_cb;
- }
}
@@ -651,6 +660,7 @@ static void gmc_v11_0_vram_gtt_location(struct amdgpu_device *adev,
amdgpu_gmc_vram_location(adev, &adev->gmc, base);
amdgpu_gmc_gart_location(adev, mc);
+ amdgpu_gmc_agp_location(adev, mc);
/* base offset of vram pages */
if (amdgpu_sriov_vf(adev))
@@ -749,6 +759,7 @@ static int gmc_v11_0_sw_init(void *handle)
case IP_VERSION(11, 0, 1):
case IP_VERSION(11, 0, 2):
case IP_VERSION(11, 0, 3):
+ case IP_VERSION(11, 0, 4):
adev->num_vmhubs = 2;
/*
* To fulfill 4-level page support,
@@ -822,6 +833,10 @@ static int gmc_v11_0_sw_init(void *handle)
amdgpu_vm_manager_init(adev);
+ r = amdgpu_gmc_ras_sw_init(adev);
+ if (r)
+ return r;
+
return 0;
}
@@ -851,6 +866,12 @@ static int gmc_v11_0_sw_fini(void *handle)
static void gmc_v11_0_init_golden_registers(struct amdgpu_device *adev)
{
+ if (amdgpu_sriov_vf(adev)) {
+ struct amdgpu_vmhub *hub = &adev->vmhub[AMDGPU_MMHUB_0];
+
+ WREG32(hub->vm_contexts_disable, 0);
+ return;
+ }
}
/**
@@ -930,7 +951,6 @@ static int gmc_v11_0_hw_fini(void *handle)
return 0;
}
- amdgpu_irq_put(adev, &adev->gmc.ecc_irq, 0);
amdgpu_irq_put(adev, &adev->gmc.vm_fault, 0);
gmc_v11_0_gart_disable(adev);
diff --git a/drivers/gpu/drm/amd/amdgpu/gmc_v6_0.c b/drivers/gpu/drm/amd/amdgpu/gmc_v6_0.c
index ec291d28edff..b7dad4e67813 100644
--- a/drivers/gpu/drm/amd/amdgpu/gmc_v6_0.c
+++ b/drivers/gpu/drm/amd/amdgpu/gmc_v6_0.c
@@ -131,19 +131,12 @@ static int gmc_v6_0_init_microcode(struct amdgpu_device *adev)
snprintf(fw_name, sizeof(fw_name), "amdgpu/si58_mc.bin");
else
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_mc.bin", chip_name);
- err = request_firmware(&adev->gmc.fw, fw_name, adev->dev);
- if (err)
- goto out;
-
- err = amdgpu_ucode_validate(adev->gmc.fw);
-
-out:
+ err = amdgpu_ucode_request(adev, &adev->gmc.fw, fw_name);
if (err) {
dev_err(adev->dev,
"si_mc: Failed to load firmware \"%s\"\n",
fw_name);
- release_firmware(adev->gmc.fw);
- adev->gmc.fw = NULL;
+ amdgpu_ucode_release(&adev->gmc.fw);
}
return err;
}
@@ -258,7 +251,7 @@ static void gmc_v6_0_mc_program(struct amdgpu_device *adev)
WREG32(mmMC_VM_SYSTEM_APERTURE_HIGH_ADDR,
adev->gmc.vram_end >> 12);
WREG32(mmMC_VM_SYSTEM_APERTURE_DEFAULT_ADDR,
- adev->vram_scratch.gpu_addr >> 12);
+ adev->mem_scratch.gpu_addr >> 12);
WREG32(mmMC_VM_AGP_BASE, 0);
WREG32(mmMC_VM_AGP_TOP, 0x0FFFFFFF);
WREG32(mmMC_VM_AGP_BOT, 0x0FFFFFFF);
@@ -894,8 +887,7 @@ static int gmc_v6_0_sw_fini(void *handle)
amdgpu_vm_manager_fini(adev);
amdgpu_gart_table_vram_free(adev);
amdgpu_bo_fini(adev);
- release_firmware(adev->gmc.fw);
- adev->gmc.fw = NULL;
+ amdgpu_ucode_release(&adev->gmc.fw);
return 0;
}
diff --git a/drivers/gpu/drm/amd/amdgpu/gmc_v7_0.c b/drivers/gpu/drm/amd/amdgpu/gmc_v7_0.c
index 979da6f510e8..402960b0174e 100644
--- a/drivers/gpu/drm/amd/amdgpu/gmc_v7_0.c
+++ b/drivers/gpu/drm/amd/amdgpu/gmc_v7_0.c
@@ -156,16 +156,10 @@ static int gmc_v7_0_init_microcode(struct amdgpu_device *adev)
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_mc.bin", chip_name);
- err = request_firmware(&adev->gmc.fw, fw_name, adev->dev);
- if (err)
- goto out;
- err = amdgpu_ucode_validate(adev->gmc.fw);
-
-out:
+ err = amdgpu_ucode_request(adev, &adev->gmc.fw, fw_name);
if (err) {
pr_err("cik_mc: Failed to load firmware \"%s\"\n", fw_name);
- release_firmware(adev->gmc.fw);
- adev->gmc.fw = NULL;
+ amdgpu_ucode_release(&adev->gmc.fw);
}
return err;
}
@@ -292,7 +286,7 @@ static void gmc_v7_0_mc_program(struct amdgpu_device *adev)
WREG32(mmMC_VM_SYSTEM_APERTURE_HIGH_ADDR,
adev->gmc.vram_end >> 12);
WREG32(mmMC_VM_SYSTEM_APERTURE_DEFAULT_ADDR,
- adev->vram_scratch.gpu_addr >> 12);
+ adev->mem_scratch.gpu_addr >> 12);
WREG32(mmMC_VM_AGP_BASE, 0);
WREG32(mmMC_VM_AGP_TOP, 0x0FFFFFFF);
WREG32(mmMC_VM_AGP_BOT, 0x0FFFFFFF);
@@ -389,10 +383,7 @@ static int gmc_v7_0_mc_init(struct amdgpu_device *adev)
}
#endif
- /* In case the PCI BAR is larger than the actual amount of vram */
adev->gmc.visible_vram_size = adev->gmc.aper_size;
- if (adev->gmc.visible_vram_size > adev->gmc.real_vram_size)
- adev->gmc.visible_vram_size = adev->gmc.real_vram_size;
/* set the gart size */
if (amdgpu_gart_size == -1) {
@@ -1081,8 +1072,7 @@ static int gmc_v7_0_sw_fini(void *handle)
kfree(adev->gmc.vm_fault_info);
amdgpu_gart_table_vram_free(adev);
amdgpu_bo_fini(adev);
- release_firmware(adev->gmc.fw);
- adev->gmc.fw = NULL;
+ amdgpu_ucode_release(&adev->gmc.fw);
return 0;
}
diff --git a/drivers/gpu/drm/amd/amdgpu/gmc_v8_0.c b/drivers/gpu/drm/amd/amdgpu/gmc_v8_0.c
index 382dde1ce74c..504c1b34dab7 100644
--- a/drivers/gpu/drm/amd/amdgpu/gmc_v8_0.c
+++ b/drivers/gpu/drm/amd/amdgpu/gmc_v8_0.c
@@ -264,16 +264,10 @@ static int gmc_v8_0_init_microcode(struct amdgpu_device *adev)
}
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_mc.bin", chip_name);
- err = request_firmware(&adev->gmc.fw, fw_name, adev->dev);
- if (err)
- goto out;
- err = amdgpu_ucode_validate(adev->gmc.fw);
-
-out:
+ err = amdgpu_ucode_request(adev, &adev->gmc.fw, fw_name);
if (err) {
pr_err("mc: Failed to load firmware \"%s\"\n", fw_name);
- release_firmware(adev->gmc.fw);
- adev->gmc.fw = NULL;
+ amdgpu_ucode_release(&adev->gmc.fw);
}
return err;
}
@@ -474,7 +468,7 @@ static void gmc_v8_0_mc_program(struct amdgpu_device *adev)
WREG32(mmMC_VM_SYSTEM_APERTURE_HIGH_ADDR,
adev->gmc.vram_end >> 12);
WREG32(mmMC_VM_SYSTEM_APERTURE_DEFAULT_ADDR,
- adev->vram_scratch.gpu_addr >> 12);
+ adev->mem_scratch.gpu_addr >> 12);
if (amdgpu_sriov_vf(adev)) {
tmp = ((adev->gmc.vram_end >> 24) & 0xFFFF) << 16;
@@ -587,10 +581,7 @@ static int gmc_v8_0_mc_init(struct amdgpu_device *adev)
}
#endif
- /* In case the PCI BAR is larger than the actual amount of vram */
adev->gmc.visible_vram_size = adev->gmc.aper_size;
- if (adev->gmc.visible_vram_size > adev->gmc.real_vram_size)
- adev->gmc.visible_vram_size = adev->gmc.real_vram_size;
/* set the gart size */
if (amdgpu_gart_size == -1) {
@@ -1203,8 +1194,7 @@ static int gmc_v8_0_sw_fini(void *handle)
kfree(adev->gmc.vm_fault_info);
amdgpu_gart_table_vram_free(adev);
amdgpu_bo_fini(adev);
- release_firmware(adev->gmc.fw);
- adev->gmc.fw = NULL;
+ amdgpu_ucode_release(&adev->gmc.fw);
return 0;
}
diff --git a/drivers/gpu/drm/amd/amdgpu/gmc_v9_0.c b/drivers/gpu/drm/amd/amdgpu/gmc_v9_0.c
index 67ca16a8027c..2fe21cefd772 100644
--- a/drivers/gpu/drm/amd/amdgpu/gmc_v9_0.c
+++ b/drivers/gpu/drm/amd/amdgpu/gmc_v9_0.c
@@ -49,8 +49,10 @@
#include "mmhub_v1_0.h"
#include "athub_v1_0.h"
#include "gfxhub_v1_1.h"
+#include "gfxhub_v1_2.h"
#include "mmhub_v9_4.h"
#include "mmhub_v1_7.h"
+#include "mmhub_v1_8.h"
#include "umc_v6_1.h"
#include "umc_v6_0.h"
#include "umc_v6_7.h"
@@ -484,6 +486,14 @@ static int gmc_v9_0_vm_fault_interrupt_state(struct amdgpu_device *adev,
for (i = 0; i < 16; i++) {
reg = hub->vm_context0_cntl + i;
+ /* This works because this interrupt is only
+ * enabled at init/resume and disabled in
+ * fini/suspend, so the overall state doesn't
+ * change over the course of suspend/resume.
+ */
+ if (adev->in_s0ix && (j == AMDGPU_GFXHUB_0))
+ continue;
+
if (j == AMDGPU_GFXHUB_0)
tmp = RREG32_SOC15_IP(GC, reg);
else
@@ -504,6 +514,14 @@ static int gmc_v9_0_vm_fault_interrupt_state(struct amdgpu_device *adev,
for (i = 0; i < 16; i++) {
reg = hub->vm_context0_cntl + i;
+ /* This works because this interrupt is only
+ * enabled at init/resume and disabled in
+ * fini/suspend, so the overall state doesn't
+ * change over the course of suspend/resume.
+ */
+ if (adev->in_s0ix && (j == AMDGPU_GFXHUB_0))
+ continue;
+
if (j == AMDGPU_GFXHUB_0)
tmp = RREG32_SOC15_IP(GC, reg);
else
@@ -537,32 +555,49 @@ static int gmc_v9_0_process_interrupt(struct amdgpu_device *adev,
const char *mmhub_cid;
const char *hub_name;
u64 addr;
+ uint32_t cam_index = 0;
+ int ret;
addr = (u64)entry->src_data[0] << 12;
addr |= ((u64)entry->src_data[1] & 0xf) << 44;
if (retry_fault) {
- /* Returning 1 here also prevents sending the IV to the KFD */
+ if (adev->irq.retry_cam_enabled) {
+ /* Delegate it to a different ring if the hardware hasn't
+ * already done it.
+ */
+ if (entry->ih == &adev->irq.ih) {
+ amdgpu_irq_delegate(adev, entry, 8);
+ return 1;
+ }
+
+ cam_index = entry->src_data[2] & 0x3ff;
- /* Process it onyl if it's the first fault for this address */
- if (entry->ih != &adev->irq.ih_soft &&
- amdgpu_gmc_filter_faults(adev, entry->ih, addr, entry->pasid,
+ ret = amdgpu_vm_handle_fault(adev, entry->pasid, addr, write_fault);
+ WDOORBELL32(adev->irq.retry_cam_doorbell_index, cam_index);
+ if (ret)
+ return 1;
+ } else {
+ /* Process it onyl if it's the first fault for this address */
+ if (entry->ih != &adev->irq.ih_soft &&
+ amdgpu_gmc_filter_faults(adev, entry->ih, addr, entry->pasid,
entry->timestamp))
- return 1;
+ return 1;
+
+ /* Delegate it to a different ring if the hardware hasn't
+ * already done it.
+ */
+ if (entry->ih == &adev->irq.ih) {
+ amdgpu_irq_delegate(adev, entry, 8);
+ return 1;
+ }
- /* Delegate it to a different ring if the hardware hasn't
- * already done it.
- */
- if (entry->ih == &adev->irq.ih) {
- amdgpu_irq_delegate(adev, entry, 8);
- return 1;
+ /* Try to handle the recoverable page faults by filling page
+ * tables
+ */
+ if (amdgpu_vm_handle_fault(adev, entry->pasid, addr, write_fault))
+ return 1;
}
-
- /* Try to handle the recoverable page faults by filling page
- * tables
- */
- if (amdgpu_vm_handle_fault(adev, entry->pasid, addr, write_fault))
- return 1;
}
if (!printk_ratelimit())
@@ -641,6 +676,7 @@ static int gmc_v9_0_process_interrupt(struct amdgpu_device *adev,
case IP_VERSION(2, 4, 0):
mmhub_cid = mmhub_client_ids_renoir[cid][rw];
break;
+ case IP_VERSION(1, 8, 0):
case IP_VERSION(9, 4, 2):
mmhub_cid = mmhub_client_ids_aldebaran[cid][rw];
break;
@@ -719,7 +755,8 @@ static uint32_t gmc_v9_0_get_invalidate_req(unsigned int vmid,
static bool gmc_v9_0_use_invalidate_semaphore(struct amdgpu_device *adev,
uint32_t vmhub)
{
- if (adev->ip_versions[GC_HWIP][0] == IP_VERSION(9, 4, 2))
+ if (adev->ip_versions[GC_HWIP][0] == IP_VERSION(9, 4, 2) ||
+ adev->ip_versions[GC_HWIP][0] == IP_VERSION(9, 4, 3))
return false;
return ((vmhub == AMDGPU_MMHUB_0 ||
@@ -970,9 +1007,9 @@ static int gmc_v9_0_flush_gpu_tlb_pasid(struct amdgpu_device *adev,
static uint64_t gmc_v9_0_emit_flush_gpu_tlb(struct amdgpu_ring *ring,
unsigned vmid, uint64_t pd_addr)
{
- bool use_semaphore = gmc_v9_0_use_invalidate_semaphore(ring->adev, ring->funcs->vmhub);
+ bool use_semaphore = gmc_v9_0_use_invalidate_semaphore(ring->adev, ring->vm_hub);
struct amdgpu_device *adev = ring->adev;
- struct amdgpu_vmhub *hub = &adev->vmhub[ring->funcs->vmhub];
+ struct amdgpu_vmhub *hub = &adev->vmhub[ring->vm_hub];
uint32_t req = gmc_v9_0_get_invalidate_req(vmid, 0);
unsigned eng = ring->vm_inv_eng;
@@ -1023,10 +1060,10 @@ static void gmc_v9_0_emit_pasid_mapping(struct amdgpu_ring *ring, unsigned vmid,
uint32_t reg;
/* Do nothing because there's no lut register for mmhub1. */
- if (ring->funcs->vmhub == AMDGPU_MMHUB_1)
+ if (ring->vm_hub == AMDGPU_MMHUB_1)
return;
- if (ring->funcs->vmhub == AMDGPU_GFXHUB_0)
+ if (ring->vm_hub == AMDGPU_GFXHUB_0)
reg = SOC15_REG_OFFSET(OSSSYS, 0, mmIH_VMID_0_LUT) + vmid;
else
reg = SOC15_REG_OFFSET(OSSSYS, 0, mmIH_VMID_0_LUT_MM) + vmid;
@@ -1113,10 +1150,81 @@ static void gmc_v9_0_get_vm_pde(struct amdgpu_device *adev, int level,
}
}
+static void gmc_v9_0_get_coherence_flags(struct amdgpu_device *adev,
+ struct amdgpu_bo *bo,
+ struct amdgpu_bo_va_mapping *mapping,
+ uint64_t *flags)
+{
+ struct amdgpu_device *bo_adev = amdgpu_ttm_adev(bo->tbo.bdev);
+ bool is_vram = bo->tbo.resource->mem_type == TTM_PL_VRAM;
+ bool coherent = bo->flags & AMDGPU_GEM_CREATE_COHERENT;
+ bool uncached = bo->flags & AMDGPU_GEM_CREATE_UNCACHED;
+ unsigned int mtype;
+ bool snoop = false;
+
+ switch (adev->ip_versions[GC_HWIP][0]) {
+ case IP_VERSION(9, 4, 1):
+ case IP_VERSION(9, 4, 2):
+ case IP_VERSION(9, 4, 3):
+ if (is_vram) {
+ if (bo_adev == adev) {
+ if (uncached)
+ mtype = MTYPE_UC;
+ else if (coherent)
+ mtype = MTYPE_CC;
+ else
+ mtype = MTYPE_RW;
+ /* FIXME: is this still needed? Or does
+ * amdgpu_ttm_tt_pde_flags already handle this?
+ */
+ if ((adev->ip_versions[GC_HWIP][0] == IP_VERSION(9, 4, 2) ||
+ adev->ip_versions[GC_HWIP][0] == IP_VERSION(9, 4, 3)) &&
+ adev->gmc.xgmi.connected_to_cpu)
+ snoop = true;
+ } else {
+ if (uncached || coherent)
+ mtype = MTYPE_UC;
+ else
+ mtype = MTYPE_NC;
+ if (mapping->bo_va->is_xgmi)
+ snoop = true;
+ }
+ } else {
+ if (uncached || coherent)
+ mtype = MTYPE_UC;
+ else
+ mtype = MTYPE_NC;
+ /* FIXME: is this still needed? Or does
+ * amdgpu_ttm_tt_pde_flags already handle this?
+ */
+ snoop = true;
+ }
+ break;
+ default:
+ if (uncached || coherent)
+ mtype = MTYPE_UC;
+ else
+ mtype = MTYPE_NC;
+
+ /* FIXME: is this still needed? Or does
+ * amdgpu_ttm_tt_pde_flags already handle this?
+ */
+ if (!is_vram)
+ snoop = true;
+ }
+
+ if (mtype != MTYPE_NC)
+ *flags = (*flags & ~AMDGPU_PTE_MTYPE_VG10_MASK) |
+ AMDGPU_PTE_MTYPE_VG10(mtype);
+ *flags |= snoop ? AMDGPU_PTE_SNOOPED : 0;
+}
+
static void gmc_v9_0_get_vm_pte(struct amdgpu_device *adev,
struct amdgpu_bo_va_mapping *mapping,
uint64_t *flags)
{
+ struct amdgpu_bo *bo = mapping->bo_va->base.bo;
+
*flags &= ~AMDGPU_PTE_EXECUTABLE;
*flags |= mapping->flags & AMDGPU_PTE_EXECUTABLE;
@@ -1128,14 +1236,9 @@ static void gmc_v9_0_get_vm_pte(struct amdgpu_device *adev,
*flags &= ~AMDGPU_PTE_VALID;
}
- if ((adev->ip_versions[GC_HWIP][0] == IP_VERSION(9, 4, 1) ||
- adev->ip_versions[GC_HWIP][0] == IP_VERSION(9, 4, 2)) &&
- !(*flags & AMDGPU_PTE_SYSTEM) &&
- mapping->bo_va->is_xgmi)
- *flags |= AMDGPU_PTE_SNOOPED;
-
- if (adev->ip_versions[GC_HWIP][0] == IP_VERSION(9, 4, 2))
- *flags |= mapping->flags & AMDGPU_PTE_SNOOPED;
+ if (bo && bo->tbo.resource)
+ gmc_v9_0_get_coherence_flags(adev, mapping->bo_va->base.bo,
+ mapping, flags);
}
static unsigned gmc_v9_0_get_vbios_fb_size(struct amdgpu_device *adev)
@@ -1207,6 +1310,7 @@ static void gmc_v9_0_set_umc_funcs(struct amdgpu_device *adev)
adev->umc.channel_inst_num = UMC_V6_1_CHANNEL_INSTANCE_NUM;
adev->umc.umc_inst_num = UMC_V6_1_UMC_INSTANCE_NUM;
adev->umc.channel_offs = UMC_V6_1_PER_CHANNEL_OFFSET_VG20;
+ adev->umc.retire_unit = 1;
adev->umc.channel_idx_tbl = &umc_v6_1_channel_idx_tbl[0][0];
adev->umc.ras = &umc_v6_1_ras;
break;
@@ -1215,6 +1319,7 @@ static void gmc_v9_0_set_umc_funcs(struct amdgpu_device *adev)
adev->umc.channel_inst_num = UMC_V6_1_CHANNEL_INSTANCE_NUM;
adev->umc.umc_inst_num = UMC_V6_1_UMC_INSTANCE_NUM;
adev->umc.channel_offs = UMC_V6_1_PER_CHANNEL_OFFSET_ARCT;
+ adev->umc.retire_unit = 1;
adev->umc.channel_idx_tbl = &umc_v6_1_channel_idx_tbl[0][0];
adev->umc.ras = &umc_v6_1_ras;
break;
@@ -1224,6 +1329,7 @@ static void gmc_v9_0_set_umc_funcs(struct amdgpu_device *adev)
adev->umc.channel_inst_num = UMC_V6_7_CHANNEL_INSTANCE_NUM;
adev->umc.umc_inst_num = UMC_V6_7_UMC_INSTANCE_NUM;
adev->umc.channel_offs = UMC_V6_7_PER_CHANNEL_OFFSET;
+ adev->umc.retire_unit = (UMC_V6_7_NA_MAP_PA_NUM * 2);
if (!adev->gmc.xgmi.connected_to_cpu)
adev->umc.ras = &umc_v6_7_ras;
if (1 & adev->smuio.funcs->get_die_id(adev))
@@ -1234,23 +1340,6 @@ static void gmc_v9_0_set_umc_funcs(struct amdgpu_device *adev)
default:
break;
}
-
- if (adev->umc.ras) {
- amdgpu_ras_register_ras_block(adev, &adev->umc.ras->ras_block);
-
- strcpy(adev->umc.ras->ras_block.ras_comm.name, "umc");
- adev->umc.ras->ras_block.ras_comm.block = AMDGPU_RAS_BLOCK__UMC;
- adev->umc.ras->ras_block.ras_comm.type = AMDGPU_RAS_ERROR__MULTI_UNCORRECTABLE;
- adev->umc.ras_if = &adev->umc.ras->ras_block.ras_comm;
-
- /* If don't define special ras_late_init function, use default ras_late_init */
- if (!adev->umc.ras->ras_block.ras_late_init)
- adev->umc.ras->ras_block.ras_late_init = amdgpu_umc_ras_late_init;
-
- /* If not defined special ras_cb function, use default ras_cb */
- if (!adev->umc.ras->ras_block.ras_cb)
- adev->umc.ras->ras_block.ras_cb = amdgpu_umc_process_ras_data_cb;
- }
}
static void gmc_v9_0_set_mmhub_funcs(struct amdgpu_device *adev)
@@ -1262,6 +1351,9 @@ static void gmc_v9_0_set_mmhub_funcs(struct amdgpu_device *adev)
case IP_VERSION(9, 4, 2):
adev->mmhub.funcs = &mmhub_v1_7_funcs;
break;
+ case IP_VERSION(1, 8, 0):
+ adev->mmhub.funcs = &mmhub_v1_8_funcs;
+ break;
default:
adev->mmhub.funcs = &mmhub_v1_0_funcs;
break;
@@ -1284,45 +1376,47 @@ static void gmc_v9_0_set_mmhub_ras_funcs(struct amdgpu_device *adev)
/* mmhub ras is not available */
break;
}
-
- if (adev->mmhub.ras) {
- amdgpu_ras_register_ras_block(adev, &adev->mmhub.ras->ras_block);
-
- strcpy(adev->mmhub.ras->ras_block.ras_comm.name, "mmhub");
- adev->mmhub.ras->ras_block.ras_comm.block = AMDGPU_RAS_BLOCK__MMHUB;
- adev->mmhub.ras->ras_block.ras_comm.type = AMDGPU_RAS_ERROR__MULTI_UNCORRECTABLE;
- adev->mmhub.ras_if = &adev->mmhub.ras->ras_block.ras_comm;
- }
}
static void gmc_v9_0_set_gfxhub_funcs(struct amdgpu_device *adev)
{
- adev->gfxhub.funcs = &gfxhub_v1_0_funcs;
+ if (adev->ip_versions[GC_HWIP][0] == IP_VERSION(9, 4, 3))
+ adev->gfxhub.funcs = &gfxhub_v1_2_funcs;
+ else
+ adev->gfxhub.funcs = &gfxhub_v1_0_funcs;
}
static void gmc_v9_0_set_hdp_ras_funcs(struct amdgpu_device *adev)
{
adev->hdp.ras = &hdp_v4_0_ras;
- amdgpu_ras_register_ras_block(adev, &adev->hdp.ras->ras_block);
- adev->hdp.ras_if = &adev->hdp.ras->ras_block.ras_comm;
}
-static void gmc_v9_0_set_mca_funcs(struct amdgpu_device *adev)
+static void gmc_v9_0_set_mca_ras_funcs(struct amdgpu_device *adev)
{
+ struct amdgpu_mca *mca = &adev->mca;
+
/* is UMC the right IP to check for MCA? Maybe DF? */
switch (adev->ip_versions[UMC_HWIP][0]) {
case IP_VERSION(6, 7, 0):
- if (!adev->gmc.xgmi.connected_to_cpu)
- adev->mca.funcs = &mca_v3_0_funcs;
+ if (!adev->gmc.xgmi.connected_to_cpu) {
+ mca->mp0.ras = &mca_v3_0_mp0_ras;
+ mca->mp1.ras = &mca_v3_0_mp1_ras;
+ mca->mpio.ras = &mca_v3_0_mpio_ras;
+ }
break;
default:
break;
}
}
+static void gmc_v9_0_set_xgmi_ras_funcs(struct amdgpu_device *adev)
+{
+ if (!adev->gmc.xgmi.connected_to_cpu)
+ adev->gmc.xgmi.ras = &xgmi_ras;
+}
+
static int gmc_v9_0_early_init(void *handle)
{
- int r;
struct amdgpu_device *adev = (struct amdgpu_device *)handle;
/* ARCT and VEGA20 don't have XGMI defined in their IP discovery tables */
@@ -1343,7 +1437,8 @@ static int gmc_v9_0_early_init(void *handle)
gmc_v9_0_set_mmhub_ras_funcs(adev);
gmc_v9_0_set_gfxhub_funcs(adev);
gmc_v9_0_set_hdp_ras_funcs(adev);
- gmc_v9_0_set_mca_funcs(adev);
+ gmc_v9_0_set_mca_ras_funcs(adev);
+ gmc_v9_0_set_xgmi_ras_funcs(adev);
adev->gmc.shared_aperture_start = 0x2000000000000000ULL;
adev->gmc.shared_aperture_end =
@@ -1352,10 +1447,6 @@ static int gmc_v9_0_early_init(void *handle)
adev->gmc.private_aperture_end =
adev->gmc.private_aperture_start + (4ULL << 30) - 1;
- r = amdgpu_gmc_ras_early_init(adev);
- if (r)
- return r;
-
return 0;
}
@@ -1471,10 +1562,7 @@ static int gmc_v9_0_mc_init(struct amdgpu_device *adev)
}
#endif
- /* In case the PCI BAR is larger than the actual amount of vram */
adev->gmc.visible_vram_size = adev->gmc.aper_size;
- if (adev->gmc.visible_vram_size > adev->gmc.real_vram_size)
- adev->gmc.visible_vram_size = adev->gmc.real_vram_size;
/* set the gart size */
if (amdgpu_gart_size == -1) {
@@ -1484,6 +1572,7 @@ static int gmc_v9_0_mc_init(struct amdgpu_device *adev)
case IP_VERSION(9, 4, 0):
case IP_VERSION(9, 4, 1):
case IP_VERSION(9, 4, 2):
+ case IP_VERSION(9, 4, 3):
default:
adev->gmc.gart_size = 512ULL << 20;
break;
@@ -1563,8 +1652,6 @@ static int gmc_v9_0_sw_init(void *handle)
adev->gfxhub.funcs->init(adev);
adev->mmhub.funcs->init(adev);
- if (adev->mca.funcs)
- adev->mca.funcs->init(adev);
spin_lock_init(&adev->gmc.invalidate_lock);
@@ -1615,6 +1702,7 @@ static int gmc_v9_0_sw_init(void *handle)
case IP_VERSION(9, 4, 0):
case IP_VERSION(9, 3, 0):
case IP_VERSION(9, 4, 2):
+ case IP_VERSION(9, 4, 3):
adev->num_vmhubs = 2;
@@ -1711,12 +1799,17 @@ static int gmc_v9_0_sw_init(void *handle)
*/
adev->vm_manager.first_kfd_vmid =
(adev->ip_versions[GC_HWIP][0] == IP_VERSION(9, 4, 1) ||
- adev->ip_versions[GC_HWIP][0] == IP_VERSION(9, 4, 2)) ? 3 : 8;
+ adev->ip_versions[GC_HWIP][0] == IP_VERSION(9, 4, 2) ||
+ adev->ip_versions[GC_HWIP][0] == IP_VERSION(9, 4, 3)) ? 3 : 8;
amdgpu_vm_manager_init(adev);
gmc_v9_0_save_registers(adev);
+ r = amdgpu_gmc_ras_sw_init(adev);
+ if (r)
+ return r;
+
return 0;
}
@@ -1797,9 +1890,12 @@ static int gmc_v9_0_gart_enable(struct amdgpu_device *adev)
}
amdgpu_gtt_mgr_recover(&adev->mman.gtt_mgr);
- r = adev->gfxhub.funcs->gart_enable(adev);
- if (r)
- return r;
+
+ if (!adev->in_s0ix) {
+ r = adev->gfxhub.funcs->gart_enable(adev);
+ if (r)
+ return r;
+ }
r = adev->mmhub.funcs->gart_enable(adev);
if (r)
@@ -1846,11 +1942,15 @@ static int gmc_v9_0_hw_init(void *handle)
value = true;
if (!amdgpu_sriov_vf(adev)) {
- adev->gfxhub.funcs->set_fault_enable_default(adev, value);
+ if (!adev->in_s0ix)
+ adev->gfxhub.funcs->set_fault_enable_default(adev, value);
adev->mmhub.funcs->set_fault_enable_default(adev, value);
}
- for (i = 0; i < adev->num_vmhubs; ++i)
+ for (i = 0; i < adev->num_vmhubs; ++i) {
+ if (adev->in_s0ix && (i == AMDGPU_GFXHUB_0))
+ continue;
gmc_v9_0_flush_gpu_tlb(adev, 0, i, 0);
+ }
if (adev->umc.funcs && adev->umc.funcs->init_registers)
adev->umc.funcs->init_registers(adev);
@@ -1874,7 +1974,8 @@ static int gmc_v9_0_hw_init(void *handle)
*/
static void gmc_v9_0_gart_disable(struct amdgpu_device *adev)
{
- adev->gfxhub.funcs->gart_disable(adev);
+ if (!adev->in_s0ix)
+ adev->gfxhub.funcs->gart_disable(adev);
adev->mmhub.funcs->gart_disable(adev);
}
@@ -1898,7 +1999,6 @@ static int gmc_v9_0_hw_fini(void *handle)
if (adev->mmhub.funcs->update_power_gating)
adev->mmhub.funcs->update_power_gating(adev, false);
- amdgpu_irq_put(adev, &adev->gmc.ecc_irq, 0);
amdgpu_irq_put(adev, &adev->gmc.vm_fault, 0);
return 0;
diff --git a/drivers/gpu/drm/amd/amdgpu/hdp_v4_0.c b/drivers/gpu/drm/amd/amdgpu/hdp_v4_0.c
index adf89680f53e..71d1a2e3bac9 100644
--- a/drivers/gpu/drm/amd/amdgpu/hdp_v4_0.c
+++ b/drivers/gpu/drm/amd/amdgpu/hdp_v4_0.c
@@ -49,7 +49,8 @@ static void hdp_v4_0_flush_hdp(struct amdgpu_device *adev,
static void hdp_v4_0_invalidate_hdp(struct amdgpu_device *adev,
struct amdgpu_ring *ring)
{
- if (adev->ip_versions[HDP_HWIP][0] == IP_VERSION(4, 4, 0))
+ if (adev->ip_versions[HDP_HWIP][0] == IP_VERSION(4, 4, 0) ||
+ adev->ip_versions[HDP_HWIP][0] == IP_VERSION(4, 4, 2))
return;
if (!ring || !ring->funcs->emit_wreg)
@@ -160,11 +161,6 @@ struct amdgpu_ras_block_hw_ops hdp_v4_0_ras_hw_ops = {
struct amdgpu_hdp_ras hdp_v4_0_ras = {
.ras_block = {
- .ras_comm = {
- .name = "hdp",
- .block = AMDGPU_RAS_BLOCK__HDP,
- .type = AMDGPU_RAS_ERROR__MULTI_UNCORRECTABLE,
- },
.hw_ops = &hdp_v4_0_ras_hw_ops,
},
};
diff --git a/drivers/gpu/drm/amd/amdgpu/ih_v6_0.c b/drivers/gpu/drm/amd/amdgpu/ih_v6_0.c
index 7cd79a3844b2..b02e1cef78a7 100644
--- a/drivers/gpu/drm/amd/amdgpu/ih_v6_0.c
+++ b/drivers/gpu/drm/amd/amdgpu/ih_v6_0.c
@@ -119,7 +119,7 @@ force_update_wptr_for_self_int(struct amdgpu_device *adev,
* ih_v6_0_toggle_ring_interrupts - toggle the interrupt ring buffer
*
* @adev: amdgpu_device pointer
- * @ih: amdgpu_ih_ring pointet
+ * @ih: amdgpu_ih_ring pointer
* @enable: true - enable the interrupts, false - disable the interrupts
*
* Toggle the interrupt ring buffer (IH_V6_0)
@@ -381,6 +381,7 @@ static void ih_v6_0_irq_disable(struct amdgpu_device *adev)
* ih_v6_0_get_wptr - get the IH ring buffer wptr
*
* @adev: amdgpu_device pointer
+ * @ih: amdgpu_ih_ring pointer
*
* Get the IH ring buffer wptr from either the register
* or the writeback memory buffer. Also check for
@@ -425,6 +426,7 @@ out:
* ih_v6_0_irq_rearm - rearm IRQ if lost
*
* @adev: amdgpu_device pointer
+ * @ih: amdgpu_ih_ring pointer
*
*/
static void ih_v6_0_irq_rearm(struct amdgpu_device *adev,
@@ -450,6 +452,7 @@ static void ih_v6_0_irq_rearm(struct amdgpu_device *adev,
* ih_v6_0_set_rptr - set the IH ring buffer rptr
*
* @adev: amdgpu_device pointer
+ * @ih: amdgpu_ih_ring pointer
*
* Set the IH ring buffer rptr.
*/
diff --git a/drivers/gpu/drm/amd/amdgpu/imu_v11_0.c b/drivers/gpu/drm/amd/amdgpu/imu_v11_0.c
index 95548c512f4f..4ab90c7852c3 100644
--- a/drivers/gpu/drm/amd/amdgpu/imu_v11_0.c
+++ b/drivers/gpu/drm/amd/amdgpu/imu_v11_0.c
@@ -35,6 +35,7 @@ MODULE_FIRMWARE("amdgpu/gc_11_0_0_imu.bin");
MODULE_FIRMWARE("amdgpu/gc_11_0_1_imu.bin");
MODULE_FIRMWARE("amdgpu/gc_11_0_2_imu.bin");
MODULE_FIRMWARE("amdgpu/gc_11_0_3_imu.bin");
+MODULE_FIRMWARE("amdgpu/gc_11_0_4_imu.bin");
static int imu_v11_0_init_microcode(struct amdgpu_device *adev)
{
@@ -49,10 +50,7 @@ static int imu_v11_0_init_microcode(struct amdgpu_device *adev)
amdgpu_ucode_ip_version_decode(adev, GC_HWIP, ucode_prefix, sizeof(ucode_prefix));
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_imu.bin", ucode_prefix);
- err = request_firmware(&adev->gfx.imu_fw, fw_name, adev->dev);
- if (err)
- goto out;
- err = amdgpu_ucode_validate(adev->gfx.imu_fw);
+ err = amdgpu_ucode_request(adev, &adev->gfx.imu_fw, fw_name);
if (err)
goto out;
imu_hdr = (const struct imu_firmware_header_v1_0 *)adev->gfx.imu_fw->data;
@@ -77,7 +75,7 @@ out:
dev_err(adev->dev,
"gfx11: Failed to load firmware \"%s\"\n",
fw_name);
- release_firmware(adev->gfx.imu_fw);
+ amdgpu_ucode_release(&adev->gfx.imu_fw);
}
return err;
diff --git a/drivers/gpu/drm/amd/amdgpu/jpeg_v1_0.c b/drivers/gpu/drm/amd/amdgpu/jpeg_v1_0.c
index 9360204da7fb..a3076eb8af6a 100644
--- a/drivers/gpu/drm/amd/amdgpu/jpeg_v1_0.c
+++ b/drivers/gpu/drm/amd/amdgpu/jpeg_v1_0.c
@@ -376,7 +376,7 @@ static void jpeg_v1_0_decode_ring_emit_reg_wait(struct amdgpu_ring *ring,
static void jpeg_v1_0_decode_ring_emit_vm_flush(struct amdgpu_ring *ring,
unsigned vmid, uint64_t pd_addr)
{
- struct amdgpu_vmhub *hub = &ring->adev->vmhub[ring->funcs->vmhub];
+ struct amdgpu_vmhub *hub = &ring->adev->vmhub[ring->vm_hub];
uint32_t data0, data1, mask;
pd_addr = amdgpu_gmc_emit_flush_gpu_tlb(ring, vmid, pd_addr);
@@ -485,6 +485,7 @@ int jpeg_v1_0_sw_init(void *handle)
return r;
ring = &adev->jpeg.inst->ring_dec;
+ ring->vm_hub = AMDGPU_MMHUB_0;
sprintf(ring->name, "jpeg_dec");
r = amdgpu_ring_init(adev, ring, 512, &adev->jpeg.inst->irq,
0, AMDGPU_RING_PRIO_DEFAULT, NULL);
@@ -548,7 +549,6 @@ static const struct amdgpu_ring_funcs jpeg_v1_0_decode_ring_vm_funcs = {
.nop = PACKET0(0x81ff, 0),
.support_64bit_ptrs = false,
.no_user_fence = true,
- .vmhub = AMDGPU_MMHUB_0,
.extra_dw = 64,
.get_rptr = jpeg_v1_0_decode_ring_get_rptr,
.get_wptr = jpeg_v1_0_decode_ring_get_wptr,
diff --git a/drivers/gpu/drm/amd/amdgpu/jpeg_v2_0.c b/drivers/gpu/drm/amd/amdgpu/jpeg_v2_0.c
index f3c1af5130ab..0eddf7c824a7 100644
--- a/drivers/gpu/drm/amd/amdgpu/jpeg_v2_0.c
+++ b/drivers/gpu/drm/amd/amdgpu/jpeg_v2_0.c
@@ -86,6 +86,7 @@ static int jpeg_v2_0_sw_init(void *handle)
ring = &adev->jpeg.inst->ring_dec;
ring->use_doorbell = true;
ring->doorbell_index = (adev->doorbell_index.vcn.vcn_ring0_1 << 1) + 1;
+ ring->vm_hub = AMDGPU_MMHUB_0;
sprintf(ring->name, "jpeg_dec");
r = amdgpu_ring_init(adev, ring, 512, &adev->jpeg.inst->irq,
0, AMDGPU_RING_PRIO_DEFAULT, NULL);
@@ -613,7 +614,7 @@ void jpeg_v2_0_dec_ring_emit_reg_wait(struct amdgpu_ring *ring, uint32_t reg,
void jpeg_v2_0_dec_ring_emit_vm_flush(struct amdgpu_ring *ring,
unsigned vmid, uint64_t pd_addr)
{
- struct amdgpu_vmhub *hub = &ring->adev->vmhub[ring->funcs->vmhub];
+ struct amdgpu_vmhub *hub = &ring->adev->vmhub[ring->vm_hub];
uint32_t data0, data1, mask;
pd_addr = amdgpu_gmc_emit_flush_gpu_tlb(ring, vmid, pd_addr);
@@ -762,7 +763,6 @@ static const struct amd_ip_funcs jpeg_v2_0_ip_funcs = {
static const struct amdgpu_ring_funcs jpeg_v2_0_dec_ring_vm_funcs = {
.type = AMDGPU_RING_TYPE_VCN_JPEG,
.align_mask = 0xf,
- .vmhub = AMDGPU_MMHUB_0,
.get_rptr = jpeg_v2_0_dec_ring_get_rptr,
.get_wptr = jpeg_v2_0_dec_ring_get_wptr,
.set_wptr = jpeg_v2_0_dec_ring_set_wptr,
diff --git a/drivers/gpu/drm/amd/amdgpu/jpeg_v2_5.c b/drivers/gpu/drm/amd/amdgpu/jpeg_v2_5.c
index f87d0f6ffc93..b040f51d9aa9 100644
--- a/drivers/gpu/drm/amd/amdgpu/jpeg_v2_5.c
+++ b/drivers/gpu/drm/amd/amdgpu/jpeg_v2_5.c
@@ -127,6 +127,10 @@ static int jpeg_v2_5_sw_init(void *handle)
ring = &adev->jpeg.inst[i].ring_dec;
ring->use_doorbell = true;
+ if (adev->ip_versions[UVD_HWIP][0] == IP_VERSION(2, 5, 0))
+ ring->vm_hub = AMDGPU_MMHUB_1;
+ else
+ ring->vm_hub = AMDGPU_MMHUB_0;
ring->doorbell_index = (adev->doorbell_index.vcn.vcn_ring0_1 << 1) + 1 + 8 * i;
sprintf(ring->name, "jpeg_dec_%d", i);
r = amdgpu_ring_init(adev, ring, 512, &adev->jpeg.inst[i].irq,
@@ -138,6 +142,10 @@ static int jpeg_v2_5_sw_init(void *handle)
adev->jpeg.inst[i].external.jpeg_pitch = SOC15_REG_OFFSET(JPEG, i, mmUVD_JPEG_PITCH);
}
+ r = amdgpu_jpeg_ras_sw_init(adev);
+ if (r)
+ return r;
+
return 0;
}
@@ -641,7 +649,6 @@ static const struct amd_ip_funcs jpeg_v2_6_ip_funcs = {
static const struct amdgpu_ring_funcs jpeg_v2_5_dec_ring_vm_funcs = {
.type = AMDGPU_RING_TYPE_VCN_JPEG,
.align_mask = 0xf,
- .vmhub = AMDGPU_MMHUB_1,
.get_rptr = jpeg_v2_5_dec_ring_get_rptr,
.get_wptr = jpeg_v2_5_dec_ring_get_wptr,
.set_wptr = jpeg_v2_5_dec_ring_set_wptr,
@@ -671,7 +678,6 @@ static const struct amdgpu_ring_funcs jpeg_v2_5_dec_ring_vm_funcs = {
static const struct amdgpu_ring_funcs jpeg_v2_6_dec_ring_vm_funcs = {
.type = AMDGPU_RING_TYPE_VCN_JPEG,
.align_mask = 0xf,
- .vmhub = AMDGPU_MMHUB_0,
.get_rptr = jpeg_v2_5_dec_ring_get_rptr,
.get_wptr = jpeg_v2_5_dec_ring_get_wptr,
.set_wptr = jpeg_v2_5_dec_ring_set_wptr,
@@ -806,17 +812,4 @@ static void jpeg_v2_5_set_ras_funcs(struct amdgpu_device *adev)
default:
break;
}
-
- if (adev->jpeg.ras) {
- amdgpu_ras_register_ras_block(adev, &adev->jpeg.ras->ras_block);
-
- strcpy(adev->jpeg.ras->ras_block.ras_comm.name, "jpeg");
- adev->jpeg.ras->ras_block.ras_comm.block = AMDGPU_RAS_BLOCK__JPEG;
- adev->jpeg.ras->ras_block.ras_comm.type = AMDGPU_RAS_ERROR__POISON;
- adev->jpeg.ras_if = &adev->jpeg.ras->ras_block.ras_comm;
-
- /* If don't define special ras_late_init function, use default ras_late_init */
- if (!adev->jpeg.ras->ras_block.ras_late_init)
- adev->jpeg.ras->ras_block.ras_late_init = amdgpu_ras_block_late_init;
- }
}
diff --git a/drivers/gpu/drm/amd/amdgpu/jpeg_v3_0.c b/drivers/gpu/drm/amd/amdgpu/jpeg_v3_0.c
index a1b751d9ac06..1c2292cc5f2c 100644
--- a/drivers/gpu/drm/amd/amdgpu/jpeg_v3_0.c
+++ b/drivers/gpu/drm/amd/amdgpu/jpeg_v3_0.c
@@ -54,6 +54,7 @@ static int jpeg_v3_0_early_init(void *handle)
switch (adev->ip_versions[UVD_HWIP][0]) {
case IP_VERSION(3, 1, 1):
+ case IP_VERSION(3, 1, 2):
break;
default:
harvest = RREG32_SOC15(JPEG, 0, mmCC_UVD_HARVESTING);
@@ -100,6 +101,7 @@ static int jpeg_v3_0_sw_init(void *handle)
ring = &adev->jpeg.inst->ring_dec;
ring->use_doorbell = true;
ring->doorbell_index = (adev->doorbell_index.vcn.vcn_ring0_1 << 1) + 1;
+ ring->vm_hub = AMDGPU_MMHUB_0;
sprintf(ring->name, "jpeg_dec");
r = amdgpu_ring_init(adev, ring, 512, &adev->jpeg.inst->irq, 0,
AMDGPU_RING_PRIO_DEFAULT, NULL);
@@ -559,7 +561,6 @@ static const struct amd_ip_funcs jpeg_v3_0_ip_funcs = {
static const struct amdgpu_ring_funcs jpeg_v3_0_dec_ring_vm_funcs = {
.type = AMDGPU_RING_TYPE_VCN_JPEG,
.align_mask = 0xf,
- .vmhub = AMDGPU_MMHUB_0,
.get_rptr = jpeg_v3_0_dec_ring_get_rptr,
.get_wptr = jpeg_v3_0_dec_ring_get_wptr,
.set_wptr = jpeg_v3_0_dec_ring_set_wptr,
diff --git a/drivers/gpu/drm/amd/amdgpu/jpeg_v4_0.c b/drivers/gpu/drm/amd/amdgpu/jpeg_v4_0.c
index 63b0d0b810ec..77e1e64aa1d1 100644
--- a/drivers/gpu/drm/amd/amdgpu/jpeg_v4_0.c
+++ b/drivers/gpu/drm/amd/amdgpu/jpeg_v4_0.c
@@ -27,6 +27,8 @@
#include "soc15.h"
#include "soc15d.h"
#include "jpeg_v2_0.h"
+#include "jpeg_v4_0.h"
+#include "mmsch_v4_0.h"
#include "vcn/vcn_4_0_0_offset.h"
#include "vcn/vcn_4_0_0_sh_mask.h"
@@ -34,10 +36,14 @@
#define regUVD_JPEG_PITCH_INTERNAL_OFFSET 0x401f
+static int jpeg_v4_0_start_sriov(struct amdgpu_device *adev);
static void jpeg_v4_0_set_dec_ring_funcs(struct amdgpu_device *adev);
static void jpeg_v4_0_set_irq_funcs(struct amdgpu_device *adev);
static int jpeg_v4_0_set_powergating_state(void *handle,
enum amd_powergating_state state);
+static void jpeg_v4_0_set_ras_funcs(struct amdgpu_device *adev);
+
+static void jpeg_v4_0_dec_ring_set_wptr(struct amdgpu_ring *ring);
/**
* jpeg_v4_0_early_init - set function pointers
@@ -55,6 +61,7 @@ static int jpeg_v4_0_early_init(void *handle)
jpeg_v4_0_set_dec_ring_funcs(adev);
jpeg_v4_0_set_irq_funcs(adev);
+ jpeg_v4_0_set_ras_funcs(adev);
return 0;
}
@@ -78,6 +85,18 @@ static int jpeg_v4_0_sw_init(void *handle)
if (r)
return r;
+ /* JPEG DJPEG POISON EVENT */
+ r = amdgpu_irq_add_id(adev, SOC15_IH_CLIENTID_VCN,
+ VCN_4_0__SRCID_DJPEG0_POISON, &adev->jpeg.inst->irq);
+ if (r)
+ return r;
+
+ /* JPEG EJPEG POISON EVENT */
+ r = amdgpu_irq_add_id(adev, SOC15_IH_CLIENTID_VCN,
+ VCN_4_0__SRCID_EJPEG0_POISON, &adev->jpeg.inst->irq);
+ if (r)
+ return r;
+
r = amdgpu_jpeg_sw_init(adev);
if (r)
return r;
@@ -88,7 +107,9 @@ static int jpeg_v4_0_sw_init(void *handle)
ring = &adev->jpeg.inst->ring_dec;
ring->use_doorbell = true;
- ring->doorbell_index = (adev->doorbell_index.vcn.vcn_ring0_1 << 1) + 1;
+ ring->doorbell_index = amdgpu_sriov_vf(adev) ? (((adev->doorbell_index.vcn.vcn_ring0_1) << 1) + 4) : ((adev->doorbell_index.vcn.vcn_ring0_1 << 1) + 1);
+ ring->vm_hub = AMDGPU_MMHUB_0;
+
sprintf(ring->name, "jpeg_dec");
r = amdgpu_ring_init(adev, ring, 512, &adev->jpeg.inst->irq, 0,
AMDGPU_RING_PRIO_DEFAULT, NULL);
@@ -98,6 +119,10 @@ static int jpeg_v4_0_sw_init(void *handle)
adev->jpeg.internal.jpeg_pitch = regUVD_JPEG_PITCH_INTERNAL_OFFSET;
adev->jpeg.inst->external.jpeg_pitch = SOC15_REG_OFFSET(JPEG, 0, regUVD_JPEG_PITCH);
+ r = amdgpu_jpeg_ras_sw_init(adev);
+ if (r)
+ return r;
+
return 0;
}
@@ -134,16 +159,26 @@ static int jpeg_v4_0_hw_init(void *handle)
struct amdgpu_ring *ring = &adev->jpeg.inst->ring_dec;
int r;
- adev->nbio.funcs->vcn_doorbell_range(adev, ring->use_doorbell,
- (adev->doorbell_index.vcn.vcn_ring0_1 << 1), 0);
+ if (amdgpu_sriov_vf(adev)) {
+ r = jpeg_v4_0_start_sriov(adev);
+ if (r)
+ return r;
+ ring->wptr = 0;
+ ring->wptr_old = 0;
+ jpeg_v4_0_dec_ring_set_wptr(ring);
+ ring->sched.ready = true;
+ } else {
+ adev->nbio.funcs->vcn_doorbell_range(adev, ring->use_doorbell,
+ (adev->doorbell_index.vcn.vcn_ring0_1 << 1), 0);
- WREG32_SOC15(VCN, 0, regVCN_JPEG_DB_CTRL,
- ring->doorbell_index << VCN_JPEG_DB_CTRL__OFFSET__SHIFT |
- VCN_JPEG_DB_CTRL__EN_MASK);
+ WREG32_SOC15(VCN, 0, regVCN_JPEG_DB_CTRL,
+ ring->doorbell_index << VCN_JPEG_DB_CTRL__OFFSET__SHIFT |
+ VCN_JPEG_DB_CTRL__EN_MASK);
- r = amdgpu_ring_test_helper(ring);
- if (r)
- return r;
+ r = amdgpu_ring_test_helper(ring);
+ if (r)
+ return r;
+ }
DRM_DEV_INFO(adev->dev, "JPEG decode initialized successfully.\n");
@@ -162,10 +197,12 @@ static int jpeg_v4_0_hw_fini(void *handle)
struct amdgpu_device *adev = (struct amdgpu_device *)handle;
cancel_delayed_work_sync(&adev->vcn.idle_work);
-
- if (adev->jpeg.cur_state != AMD_PG_STATE_GATE &&
- RREG32_SOC15(JPEG, 0, regUVD_JRBC_STATUS))
- jpeg_v4_0_set_powergating_state(adev, AMD_PG_STATE_GATE);
+ if (!amdgpu_sriov_vf(adev)) {
+ if (adev->jpeg.cur_state != AMD_PG_STATE_GATE &&
+ RREG32_SOC15(JPEG, 0, regUVD_JRBC_STATUS))
+ jpeg_v4_0_set_powergating_state(adev, AMD_PG_STATE_GATE);
+ }
+ amdgpu_irq_put(adev, &adev->jpeg.inst->irq, 0);
return 0;
}
@@ -369,6 +406,120 @@ static int jpeg_v4_0_start(struct amdgpu_device *adev)
return 0;
}
+static int jpeg_v4_0_start_sriov(struct amdgpu_device *adev)
+{
+ struct amdgpu_ring *ring;
+ uint64_t ctx_addr;
+ uint32_t param, resp, expected;
+ uint32_t tmp, timeout;
+
+ struct amdgpu_mm_table *table = &adev->virt.mm_table;
+ uint32_t *table_loc;
+ uint32_t table_size;
+ uint32_t size, size_dw;
+ uint32_t init_status;
+
+ struct mmsch_v4_0_cmd_direct_write
+ direct_wt = { {0} };
+ struct mmsch_v4_0_cmd_end end = { {0} };
+ struct mmsch_v4_0_init_header header;
+
+ direct_wt.cmd_header.command_type =
+ MMSCH_COMMAND__DIRECT_REG_WRITE;
+ end.cmd_header.command_type =
+ MMSCH_COMMAND__END;
+
+ header.version = MMSCH_VERSION;
+ header.total_size = RREG32_SOC15(VCN, 0, regMMSCH_VF_CTX_SIZE);
+
+ header.jpegdec.init_status = 0;
+ header.jpegdec.table_offset = 0;
+ header.jpegdec.table_size = 0;
+
+ table_loc = (uint32_t *)table->cpu_addr;
+ table_loc += header.total_size;
+
+ table_size = 0;
+
+ ring = &adev->jpeg.inst->ring_dec;
+
+ MMSCH_V4_0_INSERT_DIRECT_WT(SOC15_REG_OFFSET(JPEG, 0,
+ regUVD_LMI_JRBC_RB_64BIT_BAR_LOW),
+ lower_32_bits(ring->gpu_addr));
+ MMSCH_V4_0_INSERT_DIRECT_WT(SOC15_REG_OFFSET(JPEG, 0,
+ regUVD_LMI_JRBC_RB_64BIT_BAR_HIGH),
+ upper_32_bits(ring->gpu_addr));
+ MMSCH_V4_0_INSERT_DIRECT_WT(SOC15_REG_OFFSET(JPEG, 0,
+ regUVD_JRBC_RB_SIZE), ring->ring_size / 4);
+
+ /* add end packet */
+ MMSCH_V4_0_INSERT_END();
+
+ /* refine header */
+ header.jpegdec.init_status = 0;
+ header.jpegdec.table_offset = header.total_size;
+ header.jpegdec.table_size = table_size;
+ header.total_size += table_size;
+
+ /* Update init table header in memory */
+ size = sizeof(struct mmsch_v4_0_init_header);
+ table_loc = (uint32_t *)table->cpu_addr;
+ memcpy((void *)table_loc, &header, size);
+
+ /* message MMSCH (in VCN[0]) to initialize this client
+ * 1, write to mmsch_vf_ctx_addr_lo/hi register with GPU mc addr
+ * of memory descriptor location
+ */
+ ctx_addr = table->gpu_addr;
+ WREG32_SOC15(VCN, 0, regMMSCH_VF_CTX_ADDR_LO, lower_32_bits(ctx_addr));
+ WREG32_SOC15(VCN, 0, regMMSCH_VF_CTX_ADDR_HI, upper_32_bits(ctx_addr));
+
+ /* 2, update vmid of descriptor */
+ tmp = RREG32_SOC15(VCN, 0, regMMSCH_VF_VMID);
+ tmp &= ~MMSCH_VF_VMID__VF_CTX_VMID_MASK;
+ /* use domain0 for MM scheduler */
+ tmp |= (0 << MMSCH_VF_VMID__VF_CTX_VMID__SHIFT);
+ WREG32_SOC15(VCN, 0, regMMSCH_VF_VMID, tmp);
+
+ /* 3, notify mmsch about the size of this descriptor */
+ size = header.total_size;
+ WREG32_SOC15(VCN, 0, regMMSCH_VF_CTX_SIZE, size);
+
+ /* 4, set resp to zero */
+ WREG32_SOC15(VCN, 0, regMMSCH_VF_MAILBOX_RESP, 0);
+
+ /* 5, kick off the initialization and wait until
+ * MMSCH_VF_MAILBOX_RESP becomes non-zero
+ */
+ param = 0x00000001;
+ WREG32_SOC15(VCN, 0, regMMSCH_VF_MAILBOX_HOST, param);
+ tmp = 0;
+ timeout = 1000;
+ resp = 0;
+ expected = MMSCH_VF_MAILBOX_RESP__OK;
+ init_status = ((struct mmsch_v4_0_init_header *)(table_loc))->jpegdec.init_status;
+ while (resp != expected) {
+ resp = RREG32_SOC15(VCN, 0, regMMSCH_VF_MAILBOX_RESP);
+
+ if (resp != 0)
+ break;
+ udelay(10);
+ tmp = tmp + 10;
+ if (tmp >= timeout) {
+ DRM_ERROR("failed to init MMSCH. TIME-OUT after %d usec"\
+ " waiting for regMMSCH_VF_MAILBOX_RESP "\
+ "(expected=0x%08x, readback=0x%08x)\n",
+ tmp, expected, resp);
+ return -EBUSY;
+ }
+ }
+ if (resp != expected && resp != MMSCH_VF_MAILBOX_RESP__INCOMPLETE && init_status != MMSCH_VF_ENGINE_STATUS__PASS)
+ DRM_ERROR("MMSCH init status is incorrect! readback=0x%08x, header init status for jpeg: %x\n", resp, init_status);
+
+ return 0;
+
+}
+
/**
* jpeg_v4_0_stop - stop JPEG block
*
@@ -492,6 +643,11 @@ static int jpeg_v4_0_set_powergating_state(void *handle,
struct amdgpu_device *adev = (struct amdgpu_device *)handle;
int ret;
+ if (amdgpu_sriov_vf(adev)) {
+ adev->jpeg.cur_state = AMD_PG_STATE_UNGATE;
+ return 0;
+ }
+
if (state == adev->jpeg.cur_state)
return 0;
@@ -524,6 +680,10 @@ static int jpeg_v4_0_process_interrupt(struct amdgpu_device *adev,
case VCN_4_0__SRCID__JPEG_DECODE:
amdgpu_fence_process(&adev->jpeg.inst->ring_dec);
break;
+ case VCN_4_0__SRCID_DJPEG0_POISON:
+ case VCN_4_0__SRCID_EJPEG0_POISON:
+ amdgpu_jpeg_process_poison_irq(adev, source, entry);
+ break;
default:
DRM_DEV_ERROR(adev->dev, "Unhandled interrupt: %d %d\n",
entry->src_id, entry->src_data[0]);
@@ -556,7 +716,6 @@ static const struct amd_ip_funcs jpeg_v4_0_ip_funcs = {
static const struct amdgpu_ring_funcs jpeg_v4_0_dec_ring_vm_funcs = {
.type = AMDGPU_RING_TYPE_VCN_JPEG,
.align_mask = 0xf,
- .vmhub = AMDGPU_MMHUB_0,
.get_rptr = jpeg_v4_0_dec_ring_get_rptr,
.get_wptr = jpeg_v4_0_dec_ring_get_wptr,
.set_wptr = jpeg_v4_0_dec_ring_set_wptr,
@@ -607,3 +766,61 @@ const struct amdgpu_ip_block_version jpeg_v4_0_ip_block = {
.rev = 0,
.funcs = &jpeg_v4_0_ip_funcs,
};
+
+static uint32_t jpeg_v4_0_query_poison_by_instance(struct amdgpu_device *adev,
+ uint32_t instance, uint32_t sub_block)
+{
+ uint32_t poison_stat = 0, reg_value = 0;
+
+ switch (sub_block) {
+ case AMDGPU_JPEG_V4_0_JPEG0:
+ reg_value = RREG32_SOC15(JPEG, instance, regUVD_RAS_JPEG0_STATUS);
+ poison_stat = REG_GET_FIELD(reg_value, UVD_RAS_JPEG0_STATUS, POISONED_PF);
+ break;
+ case AMDGPU_JPEG_V4_0_JPEG1:
+ reg_value = RREG32_SOC15(JPEG, instance, regUVD_RAS_JPEG1_STATUS);
+ poison_stat = REG_GET_FIELD(reg_value, UVD_RAS_JPEG1_STATUS, POISONED_PF);
+ break;
+ default:
+ break;
+ }
+
+ if (poison_stat)
+ dev_info(adev->dev, "Poison detected in JPEG%d sub_block%d\n",
+ instance, sub_block);
+
+ return poison_stat;
+}
+
+static bool jpeg_v4_0_query_ras_poison_status(struct amdgpu_device *adev)
+{
+ uint32_t inst = 0, sub = 0, poison_stat = 0;
+
+ for (inst = 0; inst < adev->jpeg.num_jpeg_inst; inst++)
+ for (sub = 0; sub < AMDGPU_JPEG_V4_0_MAX_SUB_BLOCK; sub++)
+ poison_stat +=
+ jpeg_v4_0_query_poison_by_instance(adev, inst, sub);
+
+ return !!poison_stat;
+}
+
+const struct amdgpu_ras_block_hw_ops jpeg_v4_0_ras_hw_ops = {
+ .query_poison_status = jpeg_v4_0_query_ras_poison_status,
+};
+
+static struct amdgpu_jpeg_ras jpeg_v4_0_ras = {
+ .ras_block = {
+ .hw_ops = &jpeg_v4_0_ras_hw_ops,
+ },
+};
+
+static void jpeg_v4_0_set_ras_funcs(struct amdgpu_device *adev)
+{
+ switch (adev->ip_versions[JPEG_HWIP][0]) {
+ case IP_VERSION(4, 0, 0):
+ adev->jpeg.ras = &jpeg_v4_0_ras;
+ break;
+ default:
+ break;
+ }
+}
diff --git a/drivers/gpu/drm/amd/amdgpu/jpeg_v4_0.h b/drivers/gpu/drm/amd/amdgpu/jpeg_v4_0.h
index f1ed6ccfedca..07d36c2abd6b 100644
--- a/drivers/gpu/drm/amd/amdgpu/jpeg_v4_0.h
+++ b/drivers/gpu/drm/amd/amdgpu/jpeg_v4_0.h
@@ -24,6 +24,13 @@
#ifndef __JPEG_V4_0_H__
#define __JPEG_V4_0_H__
+enum amdgpu_jpeg_v4_0_sub_block {
+ AMDGPU_JPEG_V4_0_JPEG0 = 0,
+ AMDGPU_JPEG_V4_0_JPEG1,
+
+ AMDGPU_JPEG_V4_0_MAX_SUB_BLOCK,
+};
+
extern const struct amdgpu_ip_block_version jpeg_v4_0_ip_block;
#endif /* __JPEG_V4_0_H__ */
diff --git a/drivers/gpu/drm/amd/amdgpu/mca_v3_0.c b/drivers/gpu/drm/amd/amdgpu/mca_v3_0.c
index d4bd7d1d2649..6dae4a2e2767 100644
--- a/drivers/gpu/drm/amd/amdgpu/mca_v3_0.c
+++ b/drivers/gpu/drm/amd/amdgpu/mca_v3_0.c
@@ -51,19 +51,13 @@ static int mca_v3_0_ras_block_match(struct amdgpu_ras_block_object *block_obj,
return -EINVAL;
}
-const struct amdgpu_ras_block_hw_ops mca_v3_0_mp0_hw_ops = {
+static const struct amdgpu_ras_block_hw_ops mca_v3_0_mp0_hw_ops = {
.query_ras_error_count = mca_v3_0_mp0_query_ras_error_count,
.query_ras_error_address = NULL,
};
struct amdgpu_mca_ras_block mca_v3_0_mp0_ras = {
.ras_block = {
- .ras_comm = {
- .block = AMDGPU_RAS_BLOCK__MCA,
- .sub_block_index = AMDGPU_RAS_MCA_BLOCK__MP0,
- .type = AMDGPU_RAS_ERROR__MULTI_UNCORRECTABLE,
- .name = "mp0",
- },
.hw_ops = &mca_v3_0_mp0_hw_ops,
.ras_block_match = mca_v3_0_ras_block_match,
},
@@ -77,19 +71,13 @@ static void mca_v3_0_mp1_query_ras_error_count(struct amdgpu_device *adev,
ras_error_status);
}
-const struct amdgpu_ras_block_hw_ops mca_v3_0_mp1_hw_ops = {
+static const struct amdgpu_ras_block_hw_ops mca_v3_0_mp1_hw_ops = {
.query_ras_error_count = mca_v3_0_mp1_query_ras_error_count,
.query_ras_error_address = NULL,
};
struct amdgpu_mca_ras_block mca_v3_0_mp1_ras = {
.ras_block = {
- .ras_comm = {
- .block = AMDGPU_RAS_BLOCK__MCA,
- .sub_block_index = AMDGPU_RAS_MCA_BLOCK__MP1,
- .type = AMDGPU_RAS_ERROR__MULTI_UNCORRECTABLE,
- .name = "mp1",
- },
.hw_ops = &mca_v3_0_mp1_hw_ops,
.ras_block_match = mca_v3_0_ras_block_match,
},
@@ -103,40 +91,14 @@ static void mca_v3_0_mpio_query_ras_error_count(struct amdgpu_device *adev,
ras_error_status);
}
-const struct amdgpu_ras_block_hw_ops mca_v3_0_mpio_hw_ops = {
+static const struct amdgpu_ras_block_hw_ops mca_v3_0_mpio_hw_ops = {
.query_ras_error_count = mca_v3_0_mpio_query_ras_error_count,
.query_ras_error_address = NULL,
};
struct amdgpu_mca_ras_block mca_v3_0_mpio_ras = {
.ras_block = {
- .ras_comm = {
- .block = AMDGPU_RAS_BLOCK__MCA,
- .sub_block_index = AMDGPU_RAS_MCA_BLOCK__MPIO,
- .type = AMDGPU_RAS_ERROR__MULTI_UNCORRECTABLE,
- .name = "mpio",
- },
.hw_ops = &mca_v3_0_mpio_hw_ops,
.ras_block_match = mca_v3_0_ras_block_match,
},
};
-
-
-static void mca_v3_0_init(struct amdgpu_device *adev)
-{
- struct amdgpu_mca *mca = &adev->mca;
-
- mca->mp0.ras = &mca_v3_0_mp0_ras;
- mca->mp1.ras = &mca_v3_0_mp1_ras;
- mca->mpio.ras = &mca_v3_0_mpio_ras;
- amdgpu_ras_register_ras_block(adev, &mca->mp0.ras->ras_block);
- amdgpu_ras_register_ras_block(adev, &mca->mp1.ras->ras_block);
- amdgpu_ras_register_ras_block(adev, &mca->mpio.ras->ras_block);
- mca->mp0.ras_if = &mca->mp0.ras->ras_block.ras_comm;
- mca->mp1.ras_if = &mca->mp1.ras->ras_block.ras_comm;
- mca->mpio.ras_if = &mca->mpio.ras->ras_block.ras_comm;
-}
-
-const struct amdgpu_mca_funcs mca_v3_0_funcs = {
- .init = mca_v3_0_init,
-}; \ No newline at end of file
diff --git a/drivers/gpu/drm/amd/amdgpu/mca_v3_0.h b/drivers/gpu/drm/amd/amdgpu/mca_v3_0.h
index b899b86194c2..d3eaef0d7f2d 100644
--- a/drivers/gpu/drm/amd/amdgpu/mca_v3_0.h
+++ b/drivers/gpu/drm/amd/amdgpu/mca_v3_0.h
@@ -21,6 +21,8 @@
#ifndef __MCA_V3_0_H__
#define __MCA_V3_0_H__
-extern const struct amdgpu_mca_funcs mca_v3_0_funcs;
+extern struct amdgpu_mca_ras_block mca_v3_0_mp0_ras;
+extern struct amdgpu_mca_ras_block mca_v3_0_mp1_ras;
+extern struct amdgpu_mca_ras_block mca_v3_0_mpio_ras;
#endif
diff --git a/drivers/gpu/drm/amd/amdgpu/mes_v10_1.c b/drivers/gpu/drm/amd/amdgpu/mes_v10_1.c
index 067d10073a56..2e2062636d5f 100644
--- a/drivers/gpu/drm/amd/amdgpu/mes_v10_1.c
+++ b/drivers/gpu/drm/amd/amdgpu/mes_v10_1.c
@@ -121,6 +121,10 @@ static int mes_v10_1_submit_pkt_and_poll_completion(struct amdgpu_mes *mes,
if (r < 1) {
DRM_ERROR("MES failed to response msg=%d\n",
x_pkt->header.opcode);
+
+ while (halt_if_hws_hang)
+ schedule();
+
return -ETIMEDOUT;
}
@@ -375,93 +379,6 @@ static const struct amdgpu_mes_funcs mes_v10_1_funcs = {
.resume_gang = mes_v10_1_resume_gang,
};
-static int mes_v10_1_init_microcode(struct amdgpu_device *adev,
- enum admgpu_mes_pipe pipe)
-{
- const char *chip_name;
- char fw_name[30];
- int err;
- const struct mes_firmware_header_v1_0 *mes_hdr;
- struct amdgpu_firmware_info *info;
-
- switch (adev->ip_versions[GC_HWIP][0]) {
- case IP_VERSION(10, 1, 10):
- chip_name = "navi10";
- break;
- case IP_VERSION(10, 3, 0):
- chip_name = "sienna_cichlid";
- break;
- default:
- BUG();
- }
-
- if (pipe == AMDGPU_MES_SCHED_PIPE)
- snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_mes.bin",
- chip_name);
- else
- snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_mes1.bin",
- chip_name);
-
- err = request_firmware(&adev->mes.fw[pipe], fw_name, adev->dev);
- if (err)
- return err;
-
- err = amdgpu_ucode_validate(adev->mes.fw[pipe]);
- if (err) {
- release_firmware(adev->mes.fw[pipe]);
- adev->mes.fw[pipe] = NULL;
- return err;
- }
-
- mes_hdr = (const struct mes_firmware_header_v1_0 *)
- adev->mes.fw[pipe]->data;
- adev->mes.ucode_fw_version[pipe] =
- le32_to_cpu(mes_hdr->mes_ucode_version);
- adev->mes.ucode_fw_version[pipe] =
- le32_to_cpu(mes_hdr->mes_ucode_data_version);
- adev->mes.uc_start_addr[pipe] =
- le32_to_cpu(mes_hdr->mes_uc_start_addr_lo) |
- ((uint64_t)(le32_to_cpu(mes_hdr->mes_uc_start_addr_hi)) << 32);
- adev->mes.data_start_addr[pipe] =
- le32_to_cpu(mes_hdr->mes_data_start_addr_lo) |
- ((uint64_t)(le32_to_cpu(mes_hdr->mes_data_start_addr_hi)) << 32);
-
- if (adev->firmware.load_type == AMDGPU_FW_LOAD_PSP) {
- int ucode, ucode_data;
-
- if (pipe == AMDGPU_MES_SCHED_PIPE) {
- ucode = AMDGPU_UCODE_ID_CP_MES;
- ucode_data = AMDGPU_UCODE_ID_CP_MES_DATA;
- } else {
- ucode = AMDGPU_UCODE_ID_CP_MES1;
- ucode_data = AMDGPU_UCODE_ID_CP_MES1_DATA;
- }
-
- info = &adev->firmware.ucode[ucode];
- info->ucode_id = ucode;
- info->fw = adev->mes.fw[pipe];
- adev->firmware.fw_size +=
- ALIGN(le32_to_cpu(mes_hdr->mes_ucode_size_bytes),
- PAGE_SIZE);
-
- info = &adev->firmware.ucode[ucode_data];
- info->ucode_id = ucode_data;
- info->fw = adev->mes.fw[pipe];
- adev->firmware.fw_size +=
- ALIGN(le32_to_cpu(mes_hdr->mes_ucode_data_size_bytes),
- PAGE_SIZE);
- }
-
- return 0;
-}
-
-static void mes_v10_1_free_microcode(struct amdgpu_device *adev,
- enum admgpu_mes_pipe pipe)
-{
- release_firmware(adev->mes.fw[pipe]);
- adev->mes.fw[pipe] = NULL;
-}
-
static int mes_v10_1_allocate_ucode_buffer(struct amdgpu_device *adev,
enum admgpu_mes_pipe pipe)
{
@@ -1007,7 +924,6 @@ static int mes_v10_1_sw_init(void *handle)
struct amdgpu_device *adev = (struct amdgpu_device *)handle;
int pipe, r;
- adev->mes.adev = adev;
adev->mes.funcs = &mes_v10_1_funcs;
adev->mes.kiq_hw_init = &mes_v10_1_kiq_hw_init;
@@ -1019,10 +935,6 @@ static int mes_v10_1_sw_init(void *handle)
if (!adev->enable_mes_kiq && pipe == AMDGPU_MES_KIQ_PIPE)
continue;
- r = mes_v10_1_init_microcode(adev, pipe);
- if (r)
- return r;
-
r = mes_v10_1_allocate_eop_buf(adev, pipe);
if (r)
return r;
@@ -1059,8 +971,7 @@ static int mes_v10_1_sw_fini(void *handle)
amdgpu_bo_free_kernel(&adev->mes.eop_gpu_obj[pipe],
&adev->mes.eop_gpu_addr[pipe],
NULL);
-
- mes_v10_1_free_microcode(adev, pipe);
+ amdgpu_ucode_release(&adev->mes.fw[pipe]);
}
amdgpu_bo_free_kernel(&adev->gfx.kiq.ring.mqd_obj,
@@ -1229,6 +1140,22 @@ static int mes_v10_1_resume(void *handle)
return amdgpu_mes_resume(adev);
}
+static int mes_v10_0_early_init(void *handle)
+{
+ struct amdgpu_device *adev = (struct amdgpu_device *)handle;
+ int pipe, r;
+
+ for (pipe = 0; pipe < AMDGPU_MAX_MES_PIPES; pipe++) {
+ if (!adev->enable_mes_kiq && pipe == AMDGPU_MES_KIQ_PIPE)
+ continue;
+ r = amdgpu_mes_init_microcode(adev, pipe);
+ if (r)
+ return r;
+ }
+
+ return 0;
+}
+
static int mes_v10_0_late_init(void *handle)
{
struct amdgpu_device *adev = (struct amdgpu_device *)handle;
@@ -1241,6 +1168,7 @@ static int mes_v10_0_late_init(void *handle)
static const struct amd_ip_funcs mes_v10_1_ip_funcs = {
.name = "mes_v10_1",
+ .early_init = mes_v10_0_early_init,
.late_init = mes_v10_0_late_init,
.sw_init = mes_v10_1_sw_init,
.sw_fini = mes_v10_1_sw_fini,
diff --git a/drivers/gpu/drm/amd/amdgpu/mes_v11_0.c b/drivers/gpu/drm/amd/amdgpu/mes_v11_0.c
index f141fadd2d86..45280f047180 100644
--- a/drivers/gpu/drm/amd/amdgpu/mes_v11_0.c
+++ b/drivers/gpu/drm/amd/amdgpu/mes_v11_0.c
@@ -33,13 +33,20 @@
#include "mes_v11_api_def.h"
MODULE_FIRMWARE("amdgpu/gc_11_0_0_mes.bin");
+MODULE_FIRMWARE("amdgpu/gc_11_0_0_mes_2.bin");
MODULE_FIRMWARE("amdgpu/gc_11_0_0_mes1.bin");
MODULE_FIRMWARE("amdgpu/gc_11_0_1_mes.bin");
+MODULE_FIRMWARE("amdgpu/gc_11_0_1_mes_2.bin");
MODULE_FIRMWARE("amdgpu/gc_11_0_1_mes1.bin");
MODULE_FIRMWARE("amdgpu/gc_11_0_2_mes.bin");
+MODULE_FIRMWARE("amdgpu/gc_11_0_2_mes_2.bin");
MODULE_FIRMWARE("amdgpu/gc_11_0_2_mes1.bin");
MODULE_FIRMWARE("amdgpu/gc_11_0_3_mes.bin");
+MODULE_FIRMWARE("amdgpu/gc_11_0_3_mes_2.bin");
MODULE_FIRMWARE("amdgpu/gc_11_0_3_mes1.bin");
+MODULE_FIRMWARE("amdgpu/gc_11_0_4_mes.bin");
+MODULE_FIRMWARE("amdgpu/gc_11_0_4_mes_2.bin");
+MODULE_FIRMWARE("amdgpu/gc_11_0_4_mes1.bin");
static int mes_v11_0_hw_fini(void *handle);
static int mes_v11_0_kiq_hw_init(struct amdgpu_device *adev);
@@ -129,6 +136,10 @@ static int mes_v11_0_submit_pkt_and_poll_completion(struct amdgpu_mes *mes,
if (r < 1) {
DRM_ERROR("MES failed to response msg=%d\n",
x_pkt->header.opcode);
+
+ while (halt_if_hws_hang)
+ schedule();
+
return -ETIMEDOUT;
}
@@ -192,7 +203,6 @@ static int mes_v11_0_add_hw_queue(struct amdgpu_mes *mes,
mes_add_queue_pkt.trap_handler_addr = input->tba_addr;
mes_add_queue_pkt.tma_addr = input->tma_addr;
mes_add_queue_pkt.is_kfd_process = input->is_kfd_process;
- mes_add_queue_pkt.trap_en = 1;
/* For KFD, gds_size is re-used for queue size (needed in MES for AQL queues) */
mes_add_queue_pkt.is_aql_queue = input->is_aql_queue;
@@ -384,6 +394,7 @@ static int mes_v11_0_set_hw_resources(struct amdgpu_mes *mes)
mes_set_hw_res_pkt.disable_reset = 1;
mes_set_hw_res_pkt.disable_mes_log = 1;
mes_set_hw_res_pkt.use_different_vmid_compute = 1;
+ mes_set_hw_res_pkt.enable_reg_active_poll = 1;
mes_set_hw_res_pkt.oversubscription_timer = 50;
return mes_v11_0_submit_pkt_and_poll_completion(mes,
@@ -454,84 +465,6 @@ static const struct amdgpu_mes_funcs mes_v11_0_funcs = {
.misc_op = mes_v11_0_misc_op,
};
-static int mes_v11_0_init_microcode(struct amdgpu_device *adev,
- enum admgpu_mes_pipe pipe)
-{
- char fw_name[30];
- char ucode_prefix[30];
- int err;
- const struct mes_firmware_header_v1_0 *mes_hdr;
- struct amdgpu_firmware_info *info;
-
- amdgpu_ucode_ip_version_decode(adev, GC_HWIP, ucode_prefix, sizeof(ucode_prefix));
-
- if (pipe == AMDGPU_MES_SCHED_PIPE)
- snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_mes.bin",
- ucode_prefix);
- else
- snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_mes1.bin",
- ucode_prefix);
-
- err = request_firmware(&adev->mes.fw[pipe], fw_name, adev->dev);
- if (err)
- return err;
-
- err = amdgpu_ucode_validate(adev->mes.fw[pipe]);
- if (err) {
- release_firmware(adev->mes.fw[pipe]);
- adev->mes.fw[pipe] = NULL;
- return err;
- }
-
- mes_hdr = (const struct mes_firmware_header_v1_0 *)
- adev->mes.fw[pipe]->data;
- adev->mes.ucode_fw_version[pipe] =
- le32_to_cpu(mes_hdr->mes_ucode_version);
- adev->mes.ucode_fw_version[pipe] =
- le32_to_cpu(mes_hdr->mes_ucode_data_version);
- adev->mes.uc_start_addr[pipe] =
- le32_to_cpu(mes_hdr->mes_uc_start_addr_lo) |
- ((uint64_t)(le32_to_cpu(mes_hdr->mes_uc_start_addr_hi)) << 32);
- adev->mes.data_start_addr[pipe] =
- le32_to_cpu(mes_hdr->mes_data_start_addr_lo) |
- ((uint64_t)(le32_to_cpu(mes_hdr->mes_data_start_addr_hi)) << 32);
-
- if (adev->firmware.load_type == AMDGPU_FW_LOAD_PSP) {
- int ucode, ucode_data;
-
- if (pipe == AMDGPU_MES_SCHED_PIPE) {
- ucode = AMDGPU_UCODE_ID_CP_MES;
- ucode_data = AMDGPU_UCODE_ID_CP_MES_DATA;
- } else {
- ucode = AMDGPU_UCODE_ID_CP_MES1;
- ucode_data = AMDGPU_UCODE_ID_CP_MES1_DATA;
- }
-
- info = &adev->firmware.ucode[ucode];
- info->ucode_id = ucode;
- info->fw = adev->mes.fw[pipe];
- adev->firmware.fw_size +=
- ALIGN(le32_to_cpu(mes_hdr->mes_ucode_size_bytes),
- PAGE_SIZE);
-
- info = &adev->firmware.ucode[ucode_data];
- info->ucode_id = ucode_data;
- info->fw = adev->mes.fw[pipe];
- adev->firmware.fw_size +=
- ALIGN(le32_to_cpu(mes_hdr->mes_ucode_data_size_bytes),
- PAGE_SIZE);
- }
-
- return 0;
-}
-
-static void mes_v11_0_free_microcode(struct amdgpu_device *adev,
- enum admgpu_mes_pipe pipe)
-{
- release_firmware(adev->mes.fw[pipe]);
- adev->mes.fw[pipe] = NULL;
-}
-
static int mes_v11_0_allocate_ucode_buffer(struct amdgpu_device *adev,
enum admgpu_mes_pipe pipe)
{
@@ -548,7 +481,9 @@ static int mes_v11_0_allocate_ucode_buffer(struct amdgpu_device *adev,
fw_size = le32_to_cpu(mes_hdr->mes_ucode_size_bytes);
r = amdgpu_bo_create_reserved(adev, fw_size,
- PAGE_SIZE, AMDGPU_GEM_DOMAIN_VRAM,
+ PAGE_SIZE,
+ AMDGPU_GEM_DOMAIN_VRAM |
+ AMDGPU_GEM_DOMAIN_GTT,
&adev->mes.ucode_fw_obj[pipe],
&adev->mes.ucode_fw_gpu_addr[pipe],
(void **)&adev->mes.ucode_fw_ptr[pipe]);
@@ -581,7 +516,9 @@ static int mes_v11_0_allocate_ucode_data_buffer(struct amdgpu_device *adev,
fw_size = le32_to_cpu(mes_hdr->mes_ucode_data_size_bytes);
r = amdgpu_bo_create_reserved(adev, fw_size,
- 64 * 1024, AMDGPU_GEM_DOMAIN_VRAM,
+ 64 * 1024,
+ AMDGPU_GEM_DOMAIN_VRAM |
+ AMDGPU_GEM_DOMAIN_GTT,
&adev->mes.data_fw_obj[pipe],
&adev->mes.data_fw_gpu_addr[pipe],
(void **)&adev->mes.data_fw_ptr[pipe]);
@@ -1086,7 +1023,6 @@ static int mes_v11_0_sw_init(void *handle)
struct amdgpu_device *adev = (struct amdgpu_device *)handle;
int pipe, r;
- adev->mes.adev = adev;
adev->mes.funcs = &mes_v11_0_funcs;
adev->mes.kiq_hw_init = &mes_v11_0_kiq_hw_init;
adev->mes.kiq_hw_fini = &mes_v11_0_kiq_hw_fini;
@@ -1099,10 +1035,6 @@ static int mes_v11_0_sw_init(void *handle)
if (!adev->enable_mes_kiq && pipe == AMDGPU_MES_KIQ_PIPE)
continue;
- r = mes_v11_0_init_microcode(adev, pipe);
- if (r)
- return r;
-
r = mes_v11_0_allocate_eop_buf(adev, pipe);
if (r)
return r;
@@ -1139,8 +1071,7 @@ static int mes_v11_0_sw_fini(void *handle)
amdgpu_bo_free_kernel(&adev->mes.eop_gpu_obj[pipe],
&adev->mes.eop_gpu_addr[pipe],
NULL);
-
- mes_v11_0_free_microcode(adev, pipe);
+ amdgpu_ucode_release(&adev->mes.fw[pipe]);
}
amdgpu_bo_free_kernel(&adev->gfx.kiq.ring.mqd_obj,
@@ -1163,13 +1094,14 @@ static int mes_v11_0_sw_fini(void *handle)
return 0;
}
-static void mes_v11_0_kiq_dequeue_sched(struct amdgpu_device *adev)
+static void mes_v11_0_kiq_dequeue(struct amdgpu_ring *ring)
{
uint32_t data;
int i;
+ struct amdgpu_device *adev = ring->adev;
mutex_lock(&adev->srbm_mutex);
- soc21_grbm_select(adev, 3, AMDGPU_MES_SCHED_PIPE, 0, 0);
+ soc21_grbm_select(adev, 3, ring->pipe, 0, 0);
/* disable the queue if it's active */
if (RREG32_SOC15(GC, 0, regCP_HQD_ACTIVE) & 1) {
@@ -1195,8 +1127,6 @@ static void mes_v11_0_kiq_dequeue_sched(struct amdgpu_device *adev)
soc21_grbm_select(adev, 0, 0, 0, 0);
mutex_unlock(&adev->srbm_mutex);
-
- adev->mes.ring.sched.ready = false;
}
static void mes_v11_0_kiq_setting(struct amdgpu_ring *ring)
@@ -1213,6 +1143,16 @@ static void mes_v11_0_kiq_setting(struct amdgpu_ring *ring)
WREG32_SOC15(GC, 0, regRLC_CP_SCHEDULERS, tmp);
}
+static void mes_v11_0_kiq_clear(struct amdgpu_device *adev)
+{
+ uint32_t tmp;
+
+ /* tell RLC which is KIQ dequeue */
+ tmp = RREG32_SOC15(GC, 0, regRLC_CP_SCHEDULERS);
+ tmp &= ~RLC_CP_SCHEDULERS__scheduler0_MASK;
+ WREG32_SOC15(GC, 0, regRLC_CP_SCHEDULERS, tmp);
+}
+
static int mes_v11_0_kiq_hw_init(struct amdgpu_device *adev)
{
int r = 0;
@@ -1250,10 +1190,18 @@ failure:
static int mes_v11_0_kiq_hw_fini(struct amdgpu_device *adev)
{
- if (adev->mes.ring.sched.ready)
- mes_v11_0_kiq_dequeue_sched(adev);
+ if (adev->mes.ring.sched.ready) {
+ mes_v11_0_kiq_dequeue(&adev->mes.ring);
+ adev->mes.ring.sched.ready = false;
+ }
+
+ if (amdgpu_sriov_vf(adev)) {
+ mes_v11_0_kiq_dequeue(&adev->gfx.kiq.ring);
+ mes_v11_0_kiq_clear(adev);
+ }
mes_v11_0_enable(adev, false);
+
return 0;
}
@@ -1335,11 +1283,28 @@ static int mes_v11_0_resume(void *handle)
return amdgpu_mes_resume(adev);
}
+static int mes_v11_0_early_init(void *handle)
+{
+ struct amdgpu_device *adev = (struct amdgpu_device *)handle;
+ int pipe, r;
+
+ for (pipe = 0; pipe < AMDGPU_MAX_MES_PIPES; pipe++) {
+ if (!adev->enable_mes_kiq && pipe == AMDGPU_MES_KIQ_PIPE)
+ continue;
+ r = amdgpu_mes_init_microcode(adev, pipe);
+ if (r)
+ return r;
+ }
+
+ return 0;
+}
+
static int mes_v11_0_late_init(void *handle)
{
struct amdgpu_device *adev = (struct amdgpu_device *)handle;
- if (!amdgpu_in_reset(adev) &&
+ /* it's only intended for use in mes_self_test case, not for s0ix and reset */
+ if (!amdgpu_in_reset(adev) && !adev->in_s0ix && !adev->in_suspend &&
(adev->ip_versions[GC_HWIP][0] != IP_VERSION(11, 0, 3)))
amdgpu_mes_self_test(adev);
@@ -1348,6 +1313,7 @@ static int mes_v11_0_late_init(void *handle)
static const struct amd_ip_funcs mes_v11_0_ip_funcs = {
.name = "mes_v11_0",
+ .early_init = mes_v11_0_early_init,
.late_init = mes_v11_0_late_init,
.sw_init = mes_v11_0_sw_init,
.sw_fini = mes_v11_0_sw_fini,
diff --git a/drivers/gpu/drm/amd/amdgpu/mmhub_v1_0.c b/drivers/gpu/drm/amd/amdgpu/mmhub_v1_0.c
index 3e51e773f92b..15e7cbeae75b 100644
--- a/drivers/gpu/drm/amd/amdgpu/mmhub_v1_0.c
+++ b/drivers/gpu/drm/amd/amdgpu/mmhub_v1_0.c
@@ -114,7 +114,7 @@ static void mmhub_v1_0_init_system_aperture_regs(struct amdgpu_device *adev)
return;
/* Set default page address. */
- value = amdgpu_gmc_vram_mc2pa(adev, adev->vram_scratch.gpu_addr);
+ value = amdgpu_gmc_vram_mc2pa(adev, adev->mem_scratch.gpu_addr);
WREG32_SOC15(MMHUB, 0, mmMC_VM_SYSTEM_APERTURE_DEFAULT_ADDR_LSB,
(u32)(value >> 12));
WREG32_SOC15(MMHUB, 0, mmMC_VM_SYSTEM_APERTURE_DEFAULT_ADDR_MSB,
diff --git a/drivers/gpu/drm/amd/amdgpu/mmhub_v1_7.c b/drivers/gpu/drm/amd/amdgpu/mmhub_v1_7.c
index 6fa7090bc6cb..73afbf2facc9 100644
--- a/drivers/gpu/drm/amd/amdgpu/mmhub_v1_7.c
+++ b/drivers/gpu/drm/amd/amdgpu/mmhub_v1_7.c
@@ -134,7 +134,7 @@ static void mmhub_v1_7_init_system_aperture_regs(struct amdgpu_device *adev)
}
/* Set default page address. */
- value = amdgpu_gmc_vram_mc2pa(adev, adev->vram_scratch.gpu_addr);
+ value = amdgpu_gmc_vram_mc2pa(adev, adev->mem_scratch.gpu_addr);
WREG32_SOC15(MMHUB, 0, regMC_VM_SYSTEM_APERTURE_DEFAULT_ADDR_LSB,
(u32)(value >> 12));
WREG32_SOC15(MMHUB, 0, regMC_VM_SYSTEM_APERTURE_DEFAULT_ADDR_MSB,
diff --git a/drivers/gpu/drm/amd/amdgpu/mmhub_v1_8.c b/drivers/gpu/drm/amd/amdgpu/mmhub_v1_8.c
new file mode 100644
index 000000000000..342d1702104c
--- /dev/null
+++ b/drivers/gpu/drm/amd/amdgpu/mmhub_v1_8.c
@@ -0,0 +1,477 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ */
+#include "amdgpu.h"
+#include "mmhub_v1_8.h"
+
+#include "mmhub/mmhub_1_8_0_offset.h"
+#include "mmhub/mmhub_1_8_0_sh_mask.h"
+#include "vega10_enum.h"
+
+#include "soc15_common.h"
+#include "soc15.h"
+
+#define regVM_L2_CNTL3_DEFAULT 0x80100007
+#define regVM_L2_CNTL4_DEFAULT 0x000000c1
+
+static u64 mmhub_v1_8_get_fb_location(struct amdgpu_device *adev)
+{
+ u64 base = RREG32_SOC15(MMHUB, 0, regMC_VM_FB_LOCATION_BASE);
+ u64 top = RREG32_SOC15(MMHUB, 0, regMC_VM_FB_LOCATION_TOP);
+
+ base &= MC_VM_FB_LOCATION_BASE__FB_BASE_MASK;
+ base <<= 24;
+
+ top &= MC_VM_FB_LOCATION_TOP__FB_TOP_MASK;
+ top <<= 24;
+
+ adev->gmc.fb_start = base;
+ adev->gmc.fb_end = top;
+
+ return base;
+}
+
+static void mmhub_v1_8_setup_vm_pt_regs(struct amdgpu_device *adev, uint32_t vmid,
+ uint64_t page_table_base)
+{
+ struct amdgpu_vmhub *hub = &adev->vmhub[AMDGPU_MMHUB_0];
+
+ WREG32_SOC15_OFFSET(MMHUB, 0, regVM_CONTEXT0_PAGE_TABLE_BASE_ADDR_LO32,
+ hub->ctx_addr_distance * vmid, lower_32_bits(page_table_base));
+
+ WREG32_SOC15_OFFSET(MMHUB, 0, regVM_CONTEXT0_PAGE_TABLE_BASE_ADDR_HI32,
+ hub->ctx_addr_distance * vmid, upper_32_bits(page_table_base));
+}
+
+static void mmhub_v1_8_init_gart_aperture_regs(struct amdgpu_device *adev)
+{
+ uint64_t pt_base;
+
+ if (adev->gmc.pdb0_bo)
+ pt_base = amdgpu_gmc_pd_addr(adev->gmc.pdb0_bo);
+ else
+ pt_base = amdgpu_gmc_pd_addr(adev->gart.bo);
+
+ mmhub_v1_8_setup_vm_pt_regs(adev, 0, pt_base);
+
+ /* If use GART for FB translation, vmid0 page table covers both
+ * vram and system memory (gart)
+ */
+ if (adev->gmc.pdb0_bo) {
+ WREG32_SOC15(MMHUB, 0, regVM_CONTEXT0_PAGE_TABLE_START_ADDR_LO32,
+ (u32)(adev->gmc.fb_start >> 12));
+ WREG32_SOC15(MMHUB, 0, regVM_CONTEXT0_PAGE_TABLE_START_ADDR_HI32,
+ (u32)(adev->gmc.fb_start >> 44));
+
+ WREG32_SOC15(MMHUB, 0, regVM_CONTEXT0_PAGE_TABLE_END_ADDR_LO32,
+ (u32)(adev->gmc.gart_end >> 12));
+ WREG32_SOC15(MMHUB, 0, regVM_CONTEXT0_PAGE_TABLE_END_ADDR_HI32,
+ (u32)(adev->gmc.gart_end >> 44));
+
+ } else {
+ WREG32_SOC15(MMHUB, 0, regVM_CONTEXT0_PAGE_TABLE_START_ADDR_LO32,
+ (u32)(adev->gmc.gart_start >> 12));
+ WREG32_SOC15(MMHUB, 0, regVM_CONTEXT0_PAGE_TABLE_START_ADDR_HI32,
+ (u32)(adev->gmc.gart_start >> 44));
+
+ WREG32_SOC15(MMHUB, 0, regVM_CONTEXT0_PAGE_TABLE_END_ADDR_LO32,
+ (u32)(adev->gmc.gart_end >> 12));
+ WREG32_SOC15(MMHUB, 0, regVM_CONTEXT0_PAGE_TABLE_END_ADDR_HI32,
+ (u32)(adev->gmc.gart_end >> 44));
+ }
+}
+
+static void mmhub_v1_8_init_system_aperture_regs(struct amdgpu_device *adev)
+{
+ uint64_t value;
+ uint32_t tmp;
+
+ /* Program the AGP BAR */
+ WREG32_SOC15(MMHUB, 0, regMC_VM_AGP_BASE, 0);
+ WREG32_SOC15(MMHUB, 0, regMC_VM_AGP_BOT, adev->gmc.agp_start >> 24);
+ WREG32_SOC15(MMHUB, 0, regMC_VM_AGP_TOP, adev->gmc.agp_end >> 24);
+
+ /* Program the system aperture low logical page number. */
+ WREG32_SOC15(MMHUB, 0, regMC_VM_SYSTEM_APERTURE_LOW_ADDR,
+ min(adev->gmc.fb_start, adev->gmc.agp_start) >> 18);
+
+ WREG32_SOC15(MMHUB, 0, regMC_VM_SYSTEM_APERTURE_HIGH_ADDR,
+ max(adev->gmc.fb_end, adev->gmc.agp_end) >> 18);
+
+ /* In the case squeezing vram into GART aperture, we don't use
+ * FB aperture and AGP aperture. Disable them.
+ */
+ if (adev->gmc.pdb0_bo) {
+ WREG32_SOC15(MMHUB, 0, regMC_VM_AGP_BOT, 0xFFFFFF);
+ WREG32_SOC15(MMHUB, 0, regMC_VM_AGP_TOP, 0);
+ WREG32_SOC15(MMHUB, 0, regMC_VM_FB_LOCATION_TOP, 0);
+ WREG32_SOC15(MMHUB, 0, regMC_VM_FB_LOCATION_BASE, 0x00FFFFFF);
+ WREG32_SOC15(MMHUB, 0, regMC_VM_SYSTEM_APERTURE_LOW_ADDR, 0x3FFFFFFF);
+ WREG32_SOC15(MMHUB, 0, regMC_VM_SYSTEM_APERTURE_HIGH_ADDR, 0);
+ }
+ if (amdgpu_sriov_vf(adev))
+ return;
+
+ /* Set default page address. */
+ value = amdgpu_gmc_vram_mc2pa(adev, adev->mem_scratch.gpu_addr);
+ WREG32_SOC15(MMHUB, 0, regMC_VM_SYSTEM_APERTURE_DEFAULT_ADDR_LSB,
+ (u32)(value >> 12));
+ WREG32_SOC15(MMHUB, 0, regMC_VM_SYSTEM_APERTURE_DEFAULT_ADDR_MSB,
+ (u32)(value >> 44));
+
+ /* Program "protection fault". */
+ WREG32_SOC15(MMHUB, 0, regVM_L2_PROTECTION_FAULT_DEFAULT_ADDR_LO32,
+ (u32)(adev->dummy_page_addr >> 12));
+ WREG32_SOC15(MMHUB, 0, regVM_L2_PROTECTION_FAULT_DEFAULT_ADDR_HI32,
+ (u32)((u64)adev->dummy_page_addr >> 44));
+
+ tmp = RREG32_SOC15(MMHUB, 0, regVM_L2_PROTECTION_FAULT_CNTL2);
+ tmp = REG_SET_FIELD(tmp, VM_L2_PROTECTION_FAULT_CNTL2,
+ ACTIVE_PAGE_MIGRATION_PTE_READ_RETRY, 1);
+ WREG32_SOC15(MMHUB, 0, regVM_L2_PROTECTION_FAULT_CNTL2, tmp);
+}
+
+static void mmhub_v1_8_init_tlb_regs(struct amdgpu_device *adev)
+{
+ uint32_t tmp;
+
+ /* Setup TLB control */
+ tmp = RREG32_SOC15(MMHUB, 0, regMC_VM_MX_L1_TLB_CNTL);
+
+ tmp = REG_SET_FIELD(tmp, MC_VM_MX_L1_TLB_CNTL, ENABLE_L1_TLB, 1);
+ tmp = REG_SET_FIELD(tmp, MC_VM_MX_L1_TLB_CNTL, SYSTEM_ACCESS_MODE, 3);
+ tmp = REG_SET_FIELD(tmp, MC_VM_MX_L1_TLB_CNTL,
+ ENABLE_ADVANCED_DRIVER_MODEL, 1);
+ tmp = REG_SET_FIELD(tmp, MC_VM_MX_L1_TLB_CNTL,
+ SYSTEM_APERTURE_UNMAPPED_ACCESS, 0);
+ tmp = REG_SET_FIELD(tmp, MC_VM_MX_L1_TLB_CNTL,
+ MTYPE, MTYPE_UC);/* XXX for emulation. */
+ tmp = REG_SET_FIELD(tmp, MC_VM_MX_L1_TLB_CNTL, ATC_EN, 1);
+
+ WREG32_SOC15(MMHUB, 0, regMC_VM_MX_L1_TLB_CNTL, tmp);
+}
+
+static void mmhub_v1_8_init_cache_regs(struct amdgpu_device *adev)
+{
+ uint32_t tmp;
+
+ if (amdgpu_sriov_vf(adev))
+ return;
+
+ /* Setup L2 cache */
+ tmp = RREG32_SOC15(MMHUB, 0, regVM_L2_CNTL);
+ tmp = REG_SET_FIELD(tmp, VM_L2_CNTL, ENABLE_L2_CACHE, 1);
+ tmp = REG_SET_FIELD(tmp, VM_L2_CNTL, ENABLE_L2_FRAGMENT_PROCESSING, 1);
+ /* XXX for emulation, Refer to closed source code.*/
+ tmp = REG_SET_FIELD(tmp, VM_L2_CNTL, L2_PDE0_CACHE_TAG_GENERATION_MODE,
+ 0);
+ tmp = REG_SET_FIELD(tmp, VM_L2_CNTL, PDE_FAULT_CLASSIFICATION, 0);
+ tmp = REG_SET_FIELD(tmp, VM_L2_CNTL, CONTEXT1_IDENTITY_ACCESS_MODE, 1);
+ tmp = REG_SET_FIELD(tmp, VM_L2_CNTL, IDENTITY_MODE_FRAGMENT_SIZE, 0);
+ WREG32_SOC15(MMHUB, 0, regVM_L2_CNTL, tmp);
+
+ tmp = RREG32_SOC15(MMHUB, 0, regVM_L2_CNTL2);
+ tmp = REG_SET_FIELD(tmp, VM_L2_CNTL2, INVALIDATE_ALL_L1_TLBS, 1);
+ tmp = REG_SET_FIELD(tmp, VM_L2_CNTL2, INVALIDATE_L2_CACHE, 1);
+ WREG32_SOC15(MMHUB, 0, regVM_L2_CNTL2, tmp);
+
+ tmp = regVM_L2_CNTL3_DEFAULT;
+ if (adev->gmc.translate_further) {
+ tmp = REG_SET_FIELD(tmp, VM_L2_CNTL3, BANK_SELECT, 12);
+ tmp = REG_SET_FIELD(tmp, VM_L2_CNTL3,
+ L2_CACHE_BIGK_FRAGMENT_SIZE, 9);
+ } else {
+ tmp = REG_SET_FIELD(tmp, VM_L2_CNTL3, BANK_SELECT, 9);
+ tmp = REG_SET_FIELD(tmp, VM_L2_CNTL3,
+ L2_CACHE_BIGK_FRAGMENT_SIZE, 6);
+ }
+ WREG32_SOC15(MMHUB, 0, regVM_L2_CNTL3, tmp);
+
+ tmp = regVM_L2_CNTL4_DEFAULT;
+ if (adev->gmc.xgmi.connected_to_cpu) {
+ tmp = REG_SET_FIELD(tmp, VM_L2_CNTL4,
+ VMC_TAP_PDE_REQUEST_PHYSICAL, 1);
+ tmp = REG_SET_FIELD(tmp, VM_L2_CNTL4,
+ VMC_TAP_PTE_REQUEST_PHYSICAL, 1);
+ } else {
+ tmp = REG_SET_FIELD(tmp, VM_L2_CNTL4,
+ VMC_TAP_PDE_REQUEST_PHYSICAL, 0);
+ tmp = REG_SET_FIELD(tmp, VM_L2_CNTL4,
+ VMC_TAP_PTE_REQUEST_PHYSICAL, 0);
+ }
+ WREG32_SOC15(MMHUB, 0, regVM_L2_CNTL4, tmp);
+}
+
+static void mmhub_v1_8_enable_system_domain(struct amdgpu_device *adev)
+{
+ uint32_t tmp;
+
+ tmp = RREG32_SOC15(MMHUB, 0, regVM_CONTEXT0_CNTL);
+ tmp = REG_SET_FIELD(tmp, VM_CONTEXT0_CNTL, ENABLE_CONTEXT, 1);
+ tmp = REG_SET_FIELD(tmp, VM_CONTEXT0_CNTL, PAGE_TABLE_DEPTH,
+ adev->gmc.vmid0_page_table_depth);
+ tmp = REG_SET_FIELD(tmp, VM_CONTEXT0_CNTL, PAGE_TABLE_BLOCK_SIZE,
+ adev->gmc.vmid0_page_table_block_size);
+ tmp = REG_SET_FIELD(tmp, VM_CONTEXT0_CNTL,
+ RETRY_PERMISSION_OR_INVALID_PAGE_FAULT, 0);
+ WREG32_SOC15(MMHUB, 0, regVM_CONTEXT0_CNTL, tmp);
+}
+
+static void mmhub_v1_8_disable_identity_aperture(struct amdgpu_device *adev)
+{
+ if (amdgpu_sriov_vf(adev))
+ return;
+
+ WREG32_SOC15(MMHUB, 0, regVM_L2_CONTEXT1_IDENTITY_APERTURE_LOW_ADDR_LO32, 0xFFFFFFFF);
+ WREG32_SOC15(MMHUB, 0, regVM_L2_CONTEXT1_IDENTITY_APERTURE_LOW_ADDR_HI32, 0x0000000F);
+
+ WREG32_SOC15(MMHUB, 0, regVM_L2_CONTEXT1_IDENTITY_APERTURE_HIGH_ADDR_LO32, 0);
+ WREG32_SOC15(MMHUB, 0, regVM_L2_CONTEXT1_IDENTITY_APERTURE_HIGH_ADDR_HI32, 0);
+
+ WREG32_SOC15(MMHUB, 0, regVM_L2_CONTEXT_IDENTITY_PHYSICAL_OFFSET_LO32, 0);
+ WREG32_SOC15(MMHUB, 0, regVM_L2_CONTEXT_IDENTITY_PHYSICAL_OFFSET_HI32, 0);
+}
+
+static void mmhub_v1_8_setup_vmid_config(struct amdgpu_device *adev)
+{
+ struct amdgpu_vmhub *hub = &adev->vmhub[AMDGPU_MMHUB_0];
+ unsigned num_level, block_size;
+ uint32_t tmp;
+ int i;
+
+ num_level = adev->vm_manager.num_level;
+ block_size = adev->vm_manager.block_size;
+ if (adev->gmc.translate_further)
+ num_level -= 1;
+ else
+ block_size -= 9;
+
+ for (i = 0; i <= 14; i++) {
+ tmp = RREG32_SOC15_OFFSET(MMHUB, 0, regVM_CONTEXT1_CNTL, i);
+ tmp = REG_SET_FIELD(tmp, VM_CONTEXT1_CNTL, ENABLE_CONTEXT, 1);
+ tmp = REG_SET_FIELD(tmp, VM_CONTEXT1_CNTL, PAGE_TABLE_DEPTH,
+ num_level);
+ tmp = REG_SET_FIELD(tmp, VM_CONTEXT1_CNTL,
+ RANGE_PROTECTION_FAULT_ENABLE_DEFAULT, 1);
+ tmp = REG_SET_FIELD(tmp, VM_CONTEXT1_CNTL,
+ DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT,
+ 1);
+ tmp = REG_SET_FIELD(tmp, VM_CONTEXT1_CNTL,
+ PDE0_PROTECTION_FAULT_ENABLE_DEFAULT, 1);
+ tmp = REG_SET_FIELD(tmp, VM_CONTEXT1_CNTL,
+ VALID_PROTECTION_FAULT_ENABLE_DEFAULT, 1);
+ tmp = REG_SET_FIELD(tmp, VM_CONTEXT1_CNTL,
+ READ_PROTECTION_FAULT_ENABLE_DEFAULT, 1);
+ tmp = REG_SET_FIELD(tmp, VM_CONTEXT1_CNTL,
+ WRITE_PROTECTION_FAULT_ENABLE_DEFAULT, 1);
+ tmp = REG_SET_FIELD(tmp, VM_CONTEXT1_CNTL,
+ EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT, 1);
+ tmp = REG_SET_FIELD(tmp, VM_CONTEXT1_CNTL,
+ PAGE_TABLE_BLOCK_SIZE,
+ block_size);
+ /* On Aldebaran, XNACK can be enabled in the SQ per-process.
+ * Retry faults need to be enabled for that to work.
+ */
+ tmp = REG_SET_FIELD(tmp, VM_CONTEXT1_CNTL,
+ RETRY_PERMISSION_OR_INVALID_PAGE_FAULT,
+ 1);
+ WREG32_SOC15_OFFSET(MMHUB, 0, regVM_CONTEXT1_CNTL,
+ i * hub->ctx_distance, tmp);
+ WREG32_SOC15_OFFSET(MMHUB, 0, regVM_CONTEXT1_PAGE_TABLE_START_ADDR_LO32,
+ i * hub->ctx_addr_distance, 0);
+ WREG32_SOC15_OFFSET(MMHUB, 0, regVM_CONTEXT1_PAGE_TABLE_START_ADDR_HI32,
+ i * hub->ctx_addr_distance, 0);
+ WREG32_SOC15_OFFSET(MMHUB, 0, regVM_CONTEXT1_PAGE_TABLE_END_ADDR_LO32,
+ i * hub->ctx_addr_distance,
+ lower_32_bits(adev->vm_manager.max_pfn - 1));
+ WREG32_SOC15_OFFSET(MMHUB, 0, regVM_CONTEXT1_PAGE_TABLE_END_ADDR_HI32,
+ i * hub->ctx_addr_distance,
+ upper_32_bits(adev->vm_manager.max_pfn - 1));
+ }
+}
+
+static void mmhub_v1_8_program_invalidation(struct amdgpu_device *adev)
+{
+ struct amdgpu_vmhub *hub = &adev->vmhub[AMDGPU_MMHUB_0];
+ unsigned i;
+
+ for (i = 0; i < 18; ++i) {
+ WREG32_SOC15_OFFSET(MMHUB, 0, regVM_INVALIDATE_ENG0_ADDR_RANGE_LO32,
+ i * hub->eng_addr_distance, 0xffffffff);
+ WREG32_SOC15_OFFSET(MMHUB, 0, regVM_INVALIDATE_ENG0_ADDR_RANGE_HI32,
+ i * hub->eng_addr_distance, 0x1f);
+ }
+}
+
+static int mmhub_v1_8_gart_enable(struct amdgpu_device *adev)
+{
+ if (amdgpu_sriov_vf(adev)) {
+ /*
+ * MC_VM_FB_LOCATION_BASE/TOP is NULL for VF, becuase they are
+ * VF copy registers so vbios post doesn't program them, for
+ * SRIOV driver need to program them
+ */
+ WREG32_SOC15(MMHUB, 0, regMC_VM_FB_LOCATION_BASE,
+ adev->gmc.vram_start >> 24);
+ WREG32_SOC15(MMHUB, 0, regMC_VM_FB_LOCATION_TOP,
+ adev->gmc.vram_end >> 24);
+ }
+
+ /* GART Enable. */
+ mmhub_v1_8_init_gart_aperture_regs(adev);
+ mmhub_v1_8_init_system_aperture_regs(adev);
+ mmhub_v1_8_init_tlb_regs(adev);
+ mmhub_v1_8_init_cache_regs(adev);
+
+ mmhub_v1_8_enable_system_domain(adev);
+ mmhub_v1_8_disable_identity_aperture(adev);
+ mmhub_v1_8_setup_vmid_config(adev);
+ mmhub_v1_8_program_invalidation(adev);
+
+ return 0;
+}
+
+static void mmhub_v1_8_gart_disable(struct amdgpu_device *adev)
+{
+ struct amdgpu_vmhub *hub = &adev->vmhub[AMDGPU_MMHUB_0];
+ u32 tmp;
+ u32 i;
+
+ /* Disable all tables */
+ for (i = 0; i < 16; i++)
+ WREG32_SOC15_OFFSET(MMHUB, 0, regVM_CONTEXT0_CNTL,
+ i * hub->ctx_distance, 0);
+
+ /* Setup TLB control */
+ tmp = RREG32_SOC15(MMHUB, 0, regMC_VM_MX_L1_TLB_CNTL);
+ tmp = REG_SET_FIELD(tmp, MC_VM_MX_L1_TLB_CNTL, ENABLE_L1_TLB, 0);
+ tmp = REG_SET_FIELD(tmp, MC_VM_MX_L1_TLB_CNTL,
+ ENABLE_ADVANCED_DRIVER_MODEL, 0);
+ WREG32_SOC15(MMHUB, 0, regMC_VM_MX_L1_TLB_CNTL, tmp);
+
+ if (!amdgpu_sriov_vf(adev)) {
+ /* Setup L2 cache */
+ tmp = RREG32_SOC15(MMHUB, 0, regVM_L2_CNTL);
+ tmp = REG_SET_FIELD(tmp, VM_L2_CNTL, ENABLE_L2_CACHE, 0);
+ WREG32_SOC15(MMHUB, 0, regVM_L2_CNTL, tmp);
+ WREG32_SOC15(MMHUB, 0, regVM_L2_CNTL3, 0);
+ }
+}
+
+/**
+ * mmhub_v1_8_set_fault_enable_default - update GART/VM fault handling
+ *
+ * @adev: amdgpu_device pointer
+ * @value: true redirects VM faults to the default page
+ */
+static void mmhub_v1_8_set_fault_enable_default(struct amdgpu_device *adev, bool value)
+{
+ u32 tmp;
+
+ if (amdgpu_sriov_vf(adev))
+ return;
+
+ tmp = RREG32_SOC15(MMHUB, 0, regVM_L2_PROTECTION_FAULT_CNTL);
+ tmp = REG_SET_FIELD(tmp, VM_L2_PROTECTION_FAULT_CNTL,
+ RANGE_PROTECTION_FAULT_ENABLE_DEFAULT, value);
+ tmp = REG_SET_FIELD(tmp, VM_L2_PROTECTION_FAULT_CNTL,
+ PDE0_PROTECTION_FAULT_ENABLE_DEFAULT, value);
+ tmp = REG_SET_FIELD(tmp, VM_L2_PROTECTION_FAULT_CNTL,
+ PDE1_PROTECTION_FAULT_ENABLE_DEFAULT, value);
+ tmp = REG_SET_FIELD(tmp, VM_L2_PROTECTION_FAULT_CNTL,
+ PDE2_PROTECTION_FAULT_ENABLE_DEFAULT, value);
+ tmp = REG_SET_FIELD(tmp, VM_L2_PROTECTION_FAULT_CNTL,
+ TRANSLATE_FURTHER_PROTECTION_FAULT_ENABLE_DEFAULT,
+ value);
+ tmp = REG_SET_FIELD(tmp, VM_L2_PROTECTION_FAULT_CNTL,
+ NACK_PROTECTION_FAULT_ENABLE_DEFAULT, value);
+ tmp = REG_SET_FIELD(tmp, VM_L2_PROTECTION_FAULT_CNTL,
+ DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT, value);
+ tmp = REG_SET_FIELD(tmp, VM_L2_PROTECTION_FAULT_CNTL,
+ VALID_PROTECTION_FAULT_ENABLE_DEFAULT, value);
+ tmp = REG_SET_FIELD(tmp, VM_L2_PROTECTION_FAULT_CNTL,
+ READ_PROTECTION_FAULT_ENABLE_DEFAULT, value);
+ tmp = REG_SET_FIELD(tmp, VM_L2_PROTECTION_FAULT_CNTL,
+ WRITE_PROTECTION_FAULT_ENABLE_DEFAULT, value);
+ tmp = REG_SET_FIELD(tmp, VM_L2_PROTECTION_FAULT_CNTL,
+ EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT, value);
+ if (!value) {
+ tmp = REG_SET_FIELD(tmp, VM_L2_PROTECTION_FAULT_CNTL,
+ CRASH_ON_NO_RETRY_FAULT, 1);
+ tmp = REG_SET_FIELD(tmp, VM_L2_PROTECTION_FAULT_CNTL,
+ CRASH_ON_RETRY_FAULT, 1);
+ }
+
+ WREG32_SOC15(MMHUB, 0, regVM_L2_PROTECTION_FAULT_CNTL, tmp);
+}
+
+static void mmhub_v1_8_init(struct amdgpu_device *adev)
+{
+ struct amdgpu_vmhub *hub = &adev->vmhub[AMDGPU_MMHUB_0];
+
+ hub->ctx0_ptb_addr_lo32 =
+ SOC15_REG_OFFSET(MMHUB, 0,
+ regVM_CONTEXT0_PAGE_TABLE_BASE_ADDR_LO32);
+ hub->ctx0_ptb_addr_hi32 =
+ SOC15_REG_OFFSET(MMHUB, 0,
+ regVM_CONTEXT0_PAGE_TABLE_BASE_ADDR_HI32);
+ hub->vm_inv_eng0_req =
+ SOC15_REG_OFFSET(MMHUB, 0, regVM_INVALIDATE_ENG0_REQ);
+ hub->vm_inv_eng0_ack =
+ SOC15_REG_OFFSET(MMHUB, 0, regVM_INVALIDATE_ENG0_ACK);
+ hub->vm_context0_cntl =
+ SOC15_REG_OFFSET(MMHUB, 0, regVM_CONTEXT0_CNTL);
+ hub->vm_l2_pro_fault_status =
+ SOC15_REG_OFFSET(MMHUB, 0, regVM_L2_PROTECTION_FAULT_STATUS);
+ hub->vm_l2_pro_fault_cntl =
+ SOC15_REG_OFFSET(MMHUB, 0, regVM_L2_PROTECTION_FAULT_CNTL);
+
+ hub->ctx_distance = regVM_CONTEXT1_CNTL - regVM_CONTEXT0_CNTL;
+ hub->ctx_addr_distance = regVM_CONTEXT1_PAGE_TABLE_BASE_ADDR_LO32 -
+ regVM_CONTEXT0_PAGE_TABLE_BASE_ADDR_LO32;
+ hub->eng_distance = regVM_INVALIDATE_ENG1_REQ - regVM_INVALIDATE_ENG0_REQ;
+ hub->eng_addr_distance = regVM_INVALIDATE_ENG1_ADDR_RANGE_LO32 -
+ regVM_INVALIDATE_ENG0_ADDR_RANGE_LO32;
+
+}
+
+static int mmhub_v1_8_set_clockgating(struct amdgpu_device *adev,
+ enum amd_clockgating_state state)
+{
+ return 0;
+}
+
+static void mmhub_v1_8_get_clockgating(struct amdgpu_device *adev, u64 *flags)
+{
+
+}
+
+const struct amdgpu_mmhub_funcs mmhub_v1_8_funcs = {
+ .get_fb_location = mmhub_v1_8_get_fb_location,
+ .init = mmhub_v1_8_init,
+ .gart_enable = mmhub_v1_8_gart_enable,
+ .set_fault_enable_default = mmhub_v1_8_set_fault_enable_default,
+ .gart_disable = mmhub_v1_8_gart_disable,
+ .setup_vm_pt_regs = mmhub_v1_8_setup_vm_pt_regs,
+ .set_clockgating = mmhub_v1_8_set_clockgating,
+ .get_clockgating = mmhub_v1_8_get_clockgating,
+};
diff --git a/drivers/gpu/drm/amd/amdgpu/mmhub_v1_8.h b/drivers/gpu/drm/amd/amdgpu/mmhub_v1_8.h
new file mode 100644
index 000000000000..0bb36200e4e5
--- /dev/null
+++ b/drivers/gpu/drm/amd/amdgpu/mmhub_v1_8.h
@@ -0,0 +1,28 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ */
+#ifndef __MMHUB_V1_8_H__
+#define __MMHUB_V1_8_H__
+
+extern const struct amdgpu_mmhub_funcs mmhub_v1_8_funcs;
+
+#endif
diff --git a/drivers/gpu/drm/amd/amdgpu/mmhub_v2_0.c b/drivers/gpu/drm/amd/amdgpu/mmhub_v2_0.c
index 998b5d17b271..278e32db878d 100644
--- a/drivers/gpu/drm/amd/amdgpu/mmhub_v2_0.c
+++ b/drivers/gpu/drm/amd/amdgpu/mmhub_v2_0.c
@@ -234,7 +234,7 @@ static void mmhub_v2_0_init_system_aperture_regs(struct amdgpu_device *adev)
}
/* Set default page address. */
- value = amdgpu_gmc_vram_mc2pa(adev, adev->vram_scratch.gpu_addr);
+ value = amdgpu_gmc_vram_mc2pa(adev, adev->mem_scratch.gpu_addr);
WREG32_SOC15(MMHUB, 0, mmMMMC_VM_SYSTEM_APERTURE_DEFAULT_ADDR_LSB,
(u32)(value >> 12));
WREG32_SOC15(MMHUB, 0, mmMMMC_VM_SYSTEM_APERTURE_DEFAULT_ADDR_MSB,
@@ -319,7 +319,7 @@ static void mmhub_v2_0_init_cache_regs(struct amdgpu_device *adev)
tmp = mmMMVM_L2_CNTL5_DEFAULT;
tmp = REG_SET_FIELD(tmp, MMVM_L2_CNTL5, L2_CACHE_SMALLK_FRAGMENT_SIZE, 0);
- WREG32_SOC15(GC, 0, mmMMVM_L2_CNTL5, tmp);
+ WREG32_SOC15(MMHUB, 0, mmMMVM_L2_CNTL5, tmp);
}
static void mmhub_v2_0_enable_system_domain(struct amdgpu_device *adev)
diff --git a/drivers/gpu/drm/amd/amdgpu/mmhub_v2_3.c b/drivers/gpu/drm/amd/amdgpu/mmhub_v2_3.c
index 1b027d069ab4..fcf2813e70db 100644
--- a/drivers/gpu/drm/amd/amdgpu/mmhub_v2_3.c
+++ b/drivers/gpu/drm/amd/amdgpu/mmhub_v2_3.c
@@ -164,7 +164,7 @@ static void mmhub_v2_3_init_system_aperture_regs(struct amdgpu_device *adev)
max(adev->gmc.fb_end, adev->gmc.agp_end) >> 18);
/* Set default page address. */
- value = amdgpu_gmc_vram_mc2pa(adev, adev->vram_scratch.gpu_addr);
+ value = amdgpu_gmc_vram_mc2pa(adev, adev->mem_scratch.gpu_addr);
WREG32_SOC15(MMHUB, 0, mmMMMC_VM_SYSTEM_APERTURE_DEFAULT_ADDR_LSB,
(u32)(value >> 12));
WREG32_SOC15(MMHUB, 0, mmMMMC_VM_SYSTEM_APERTURE_DEFAULT_ADDR_MSB,
@@ -243,7 +243,7 @@ static void mmhub_v2_3_init_cache_regs(struct amdgpu_device *adev)
tmp = mmMMVM_L2_CNTL5_DEFAULT;
tmp = REG_SET_FIELD(tmp, MMVM_L2_CNTL5, L2_CACHE_SMALLK_FRAGMENT_SIZE, 0);
- WREG32_SOC15(GC, 0, mmMMVM_L2_CNTL5, tmp);
+ WREG32_SOC15(MMHUB, 0, mmMMVM_L2_CNTL5, tmp);
}
static void mmhub_v2_3_enable_system_domain(struct amdgpu_device *adev)
diff --git a/drivers/gpu/drm/amd/amdgpu/mmhub_v3_0.c b/drivers/gpu/drm/amd/amdgpu/mmhub_v3_0.c
index a1d26c4d80b8..17a792616979 100644
--- a/drivers/gpu/drm/amd/amdgpu/mmhub_v3_0.c
+++ b/drivers/gpu/drm/amd/amdgpu/mmhub_v3_0.c
@@ -169,26 +169,27 @@ static void mmhub_v3_0_init_system_aperture_regs(struct amdgpu_device *adev)
uint64_t value;
uint32_t tmp;
- if (!amdgpu_sriov_vf(adev)) {
- /*
- * the new L1 policy will block SRIOV guest from writing
- * these regs, and they will be programed at host.
- * so skip programing these regs.
- */
- /* Disable AGP. */
- WREG32_SOC15(MMHUB, 0, regMMMC_VM_AGP_BASE, 0);
- WREG32_SOC15(MMHUB, 0, regMMMC_VM_AGP_TOP, 0);
- WREG32_SOC15(MMHUB, 0, regMMMC_VM_AGP_BOT, 0x00FFFFFF);
-
- /* Program the system aperture low logical page number. */
- WREG32_SOC15(MMHUB, 0, regMMMC_VM_SYSTEM_APERTURE_LOW_ADDR,
- adev->gmc.vram_start >> 18);
- WREG32_SOC15(MMHUB, 0, regMMMC_VM_SYSTEM_APERTURE_HIGH_ADDR,
- adev->gmc.vram_end >> 18);
- }
+ if (amdgpu_sriov_vf(adev))
+ return;
+
+ /*
+ * the new L1 policy will block SRIOV guest from writing
+ * these regs, and they will be programed at host.
+ * so skip programing these regs.
+ */
+ /* Program the AGP BAR */
+ WREG32_SOC15(MMHUB, 0, regMMMC_VM_AGP_BASE, 0);
+ WREG32_SOC15(MMHUB, 0, regMMMC_VM_AGP_BOT, adev->gmc.agp_start >> 24);
+ WREG32_SOC15(MMHUB, 0, regMMMC_VM_AGP_TOP, adev->gmc.agp_end >> 24);
+
+ /* Program the system aperture low logical page number. */
+ WREG32_SOC15(MMHUB, 0, regMMMC_VM_SYSTEM_APERTURE_LOW_ADDR,
+ min(adev->gmc.fb_start, adev->gmc.agp_start) >> 18);
+ WREG32_SOC15(MMHUB, 0, regMMMC_VM_SYSTEM_APERTURE_HIGH_ADDR,
+ max(adev->gmc.fb_end, adev->gmc.agp_end) >> 18);
/* Set default page address. */
- value = adev->vram_scratch.gpu_addr - adev->gmc.vram_start +
+ value = adev->mem_scratch.gpu_addr - adev->gmc.vram_start +
adev->vm_manager.vram_base_offset;
WREG32_SOC15(MMHUB, 0, regMMMC_VM_SYSTEM_APERTURE_DEFAULT_ADDR_LSB,
(u32)(value >> 12));
@@ -275,7 +276,7 @@ static void mmhub_v3_0_init_cache_regs(struct amdgpu_device *adev)
tmp = regMMVM_L2_CNTL5_DEFAULT;
tmp = REG_SET_FIELD(tmp, MMVM_L2_CNTL5, L2_CACHE_SMALLK_FRAGMENT_SIZE, 0);
- WREG32_SOC15(GC, 0, regMMVM_L2_CNTL5, tmp);
+ WREG32_SOC15(MMHUB, 0, regMMVM_L2_CNTL5, tmp);
}
static void mmhub_v3_0_enable_system_domain(struct amdgpu_device *adev)
@@ -516,6 +517,9 @@ static void mmhub_v3_0_init(struct amdgpu_device *adev)
hub->vm_l2_bank_select_reserved_cid2 =
SOC15_REG_OFFSET(MMHUB, 0, regMMVM_L2_BANK_SELECT_RESERVED_CID2);
+ hub->vm_contexts_disable =
+ SOC15_REG_OFFSET(MMHUB, 0, regMMVM_CONTEXTS_DISABLE);
+
hub->vmhub_funcs = &mmhub_v3_0_vmhub_funcs;
}
diff --git a/drivers/gpu/drm/amd/amdgpu/mmhub_v3_0_1.c b/drivers/gpu/drm/amd/amdgpu/mmhub_v3_0_1.c
index e8058edc1d10..26509b6b8c24 100644
--- a/drivers/gpu/drm/amd/amdgpu/mmhub_v3_0_1.c
+++ b/drivers/gpu/drm/amd/amdgpu/mmhub_v3_0_1.c
@@ -183,12 +183,12 @@ static void mmhub_v3_0_1_init_system_aperture_regs(struct amdgpu_device *adev)
*/
/* Program the system aperture low logical page number. */
WREG32_SOC15(MMHUB, 0, regMMMC_VM_SYSTEM_APERTURE_LOW_ADDR,
- adev->gmc.vram_start >> 18);
+ min(adev->gmc.fb_start, adev->gmc.agp_start) >> 18);
WREG32_SOC15(MMHUB, 0, regMMMC_VM_SYSTEM_APERTURE_HIGH_ADDR,
- adev->gmc.vram_end >> 18);
+ max(adev->gmc.fb_end, adev->gmc.agp_end) >> 18);
/* Set default page address. */
- value = adev->vram_scratch.gpu_addr - adev->gmc.vram_start +
+ value = adev->mem_scratch.gpu_addr - adev->gmc.vram_start +
adev->vm_manager.vram_base_offset;
WREG32_SOC15(MMHUB, 0, regMMMC_VM_SYSTEM_APERTURE_DEFAULT_ADDR_LSB,
(u32)(value >> 12));
@@ -269,7 +269,7 @@ static void mmhub_v3_0_1_init_cache_regs(struct amdgpu_device *adev)
tmp = regMMVM_L2_CNTL5_DEFAULT;
tmp = REG_SET_FIELD(tmp, MMVM_L2_CNTL5, L2_CACHE_SMALLK_FRAGMENT_SIZE, 0);
- WREG32_SOC15(GC, 0, regMMVM_L2_CNTL5, tmp);
+ WREG32_SOC15(MMHUB, 0, regMMVM_L2_CNTL5, tmp);
}
static void mmhub_v3_0_1_enable_system_domain(struct amdgpu_device *adev)
diff --git a/drivers/gpu/drm/amd/amdgpu/mmhub_v3_0_2.c b/drivers/gpu/drm/amd/amdgpu/mmhub_v3_0_2.c
index 770be0a8f7ce..26abbc6a47ab 100644
--- a/drivers/gpu/drm/amd/amdgpu/mmhub_v3_0_2.c
+++ b/drivers/gpu/drm/amd/amdgpu/mmhub_v3_0_2.c
@@ -162,10 +162,10 @@ static void mmhub_v3_0_2_init_system_aperture_regs(struct amdgpu_device *adev)
uint64_t value;
uint32_t tmp;
- /* Disable AGP. */
+ /* Program the AGP BAR */
WREG32_SOC15(MMHUB, 0, regMMMC_VM_AGP_BASE, 0);
- WREG32_SOC15(MMHUB, 0, regMMMC_VM_AGP_TOP, 0);
- WREG32_SOC15(MMHUB, 0, regMMMC_VM_AGP_BOT, 0x00FFFFFF);
+ WREG32_SOC15(MMHUB, 0, regMMMC_VM_AGP_BOT, adev->gmc.agp_start >> 24);
+ WREG32_SOC15(MMHUB, 0, regMMMC_VM_AGP_TOP, adev->gmc.agp_end >> 24);
if (!amdgpu_sriov_vf(adev)) {
/*
@@ -175,13 +175,13 @@ static void mmhub_v3_0_2_init_system_aperture_regs(struct amdgpu_device *adev)
*/
/* Program the system aperture low logical page number. */
WREG32_SOC15(MMHUB, 0, regMMMC_VM_SYSTEM_APERTURE_LOW_ADDR,
- adev->gmc.vram_start >> 18);
+ min(adev->gmc.fb_start, adev->gmc.agp_start) >> 18);
WREG32_SOC15(MMHUB, 0, regMMMC_VM_SYSTEM_APERTURE_HIGH_ADDR,
- adev->gmc.vram_end >> 18);
+ max(adev->gmc.fb_end, adev->gmc.agp_end) >> 18);
}
/* Set default page address. */
- value = adev->vram_scratch.gpu_addr - adev->gmc.vram_start +
+ value = adev->mem_scratch.gpu_addr - adev->gmc.vram_start +
adev->vm_manager.vram_base_offset;
WREG32_SOC15(MMHUB, 0, regMMMC_VM_SYSTEM_APERTURE_DEFAULT_ADDR_LSB,
(u32)(value >> 12));
@@ -268,7 +268,7 @@ static void mmhub_v3_0_2_init_cache_regs(struct amdgpu_device *adev)
tmp = regMMVM_L2_CNTL5_DEFAULT;
tmp = REG_SET_FIELD(tmp, MMVM_L2_CNTL5, L2_CACHE_SMALLK_FRAGMENT_SIZE, 0);
- WREG32_SOC15(GC, 0, regMMVM_L2_CNTL5, tmp);
+ WREG32_SOC15(MMHUB, 0, regMMVM_L2_CNTL5, tmp);
}
static void mmhub_v3_0_2_enable_system_domain(struct amdgpu_device *adev)
diff --git a/drivers/gpu/drm/amd/amdgpu/mmhub_v9_4.c b/drivers/gpu/drm/amd/amdgpu/mmhub_v9_4.c
index 445cb06b9d26..72083e96222f 100644
--- a/drivers/gpu/drm/amd/amdgpu/mmhub_v9_4.c
+++ b/drivers/gpu/drm/amd/amdgpu/mmhub_v9_4.c
@@ -136,7 +136,7 @@ static void mmhub_v9_4_init_system_aperture_regs(struct amdgpu_device *adev,
max(adev->gmc.fb_end, adev->gmc.agp_end) >> 18);
/* Set default page address. */
- value = amdgpu_gmc_vram_mc2pa(adev, adev->vram_scratch.gpu_addr);
+ value = amdgpu_gmc_vram_mc2pa(adev, adev->mem_scratch.gpu_addr);
WREG32_SOC15_OFFSET(
MMHUB, 0,
mmVMSHAREDPF0_MC_VM_SYSTEM_APERTURE_DEFAULT_ADDR_LSB,
diff --git a/drivers/gpu/drm/amd/amdgpu/mmsch_v4_0.h b/drivers/gpu/drm/amd/amdgpu/mmsch_v4_0.h
index f772bb499f3e..83653a50a1a2 100644
--- a/drivers/gpu/drm/amd/amdgpu/mmsch_v4_0.h
+++ b/drivers/gpu/drm/amd/amdgpu/mmsch_v4_0.h
@@ -32,7 +32,11 @@
#define RB_ENABLED (1 << 0)
#define RB4_ENABLED (1 << 1)
-#define MMSCH_DOORBELL_OFFSET 0x8
+
+#define MMSCH_VF_ENGINE_STATUS__PASS 0x1
+
+#define MMSCH_VF_MAILBOX_RESP__OK 0x1
+#define MMSCH_VF_MAILBOX_RESP__INCOMPLETE 0x2
#define MMSCH_VF_ENGINE_STATUS__PASS 0x1
diff --git a/drivers/gpu/drm/amd/amdgpu/mxgpu_ai.c b/drivers/gpu/drm/amd/amdgpu/mxgpu_ai.c
index 12906ba74462..63725b2ebc03 100644
--- a/drivers/gpu/drm/amd/amdgpu/mxgpu_ai.c
+++ b/drivers/gpu/drm/amd/amdgpu/mxgpu_ai.c
@@ -404,6 +404,11 @@ static int xgpu_ai_request_init_data(struct amdgpu_device *adev)
return xgpu_ai_send_access_requests(adev, IDH_REQ_GPU_INIT_DATA);
}
+static void xgpu_ai_ras_poison_handler(struct amdgpu_device *adev)
+{
+ xgpu_ai_send_access_requests(adev, IDH_RAS_POISON);
+}
+
const struct amdgpu_virt_ops xgpu_ai_virt_ops = {
.req_full_gpu = xgpu_ai_request_full_gpu_access,
.rel_full_gpu = xgpu_ai_release_full_gpu_access,
@@ -411,4 +416,5 @@ const struct amdgpu_virt_ops xgpu_ai_virt_ops = {
.wait_reset = NULL,
.trans_msg = xgpu_ai_mailbox_trans_msg,
.req_init_data = xgpu_ai_request_init_data,
+ .ras_poison_handler = xgpu_ai_ras_poison_handler,
};
diff --git a/drivers/gpu/drm/amd/amdgpu/mxgpu_ai.h b/drivers/gpu/drm/amd/amdgpu/mxgpu_ai.h
index fa7e13e0459e..af1a784696bd 100644
--- a/drivers/gpu/drm/amd/amdgpu/mxgpu_ai.h
+++ b/drivers/gpu/drm/amd/amdgpu/mxgpu_ai.h
@@ -39,6 +39,7 @@ enum idh_request {
IDH_LOG_VF_ERROR = 200,
IDH_READY_TO_RESET = 201,
+ IDH_RAS_POISON = 202,
};
enum idh_event {
diff --git a/drivers/gpu/drm/amd/amdgpu/mxgpu_nv.c b/drivers/gpu/drm/amd/amdgpu/mxgpu_nv.c
index e07757eea7ad..cae1aaa4ddb6 100644
--- a/drivers/gpu/drm/amd/amdgpu/mxgpu_nv.c
+++ b/drivers/gpu/drm/amd/amdgpu/mxgpu_nv.c
@@ -426,6 +426,11 @@ void xgpu_nv_mailbox_put_irq(struct amdgpu_device *adev)
amdgpu_irq_put(adev, &adev->virt.rcv_irq, 0);
}
+static void xgpu_nv_ras_poison_handler(struct amdgpu_device *adev)
+{
+ xgpu_nv_send_access_requests(adev, IDH_RAS_POISON);
+}
+
const struct amdgpu_virt_ops xgpu_nv_virt_ops = {
.req_full_gpu = xgpu_nv_request_full_gpu_access,
.rel_full_gpu = xgpu_nv_release_full_gpu_access,
@@ -433,4 +438,5 @@ const struct amdgpu_virt_ops xgpu_nv_virt_ops = {
.reset_gpu = xgpu_nv_request_reset,
.wait_reset = NULL,
.trans_msg = xgpu_nv_mailbox_trans_msg,
+ .ras_poison_handler = xgpu_nv_ras_poison_handler,
};
diff --git a/drivers/gpu/drm/amd/amdgpu/mxgpu_nv.h b/drivers/gpu/drm/amd/amdgpu/mxgpu_nv.h
index 73887b0aa1d6..d0221ce08769 100644
--- a/drivers/gpu/drm/amd/amdgpu/mxgpu_nv.h
+++ b/drivers/gpu/drm/amd/amdgpu/mxgpu_nv.h
@@ -39,6 +39,7 @@ enum idh_request {
IDH_LOG_VF_ERROR = 200,
IDH_READY_TO_RESET = 201,
+ IDH_RAS_POISON = 202,
};
enum idh_event {
diff --git a/drivers/gpu/drm/amd/amdgpu/nbio_v4_3.c b/drivers/gpu/drm/amd/amdgpu/nbio_v4_3.c
index 15eb3658d70e..d5ed9e0e1a5f 100644
--- a/drivers/gpu/drm/amd/amdgpu/nbio_v4_3.c
+++ b/drivers/gpu/drm/amd/amdgpu/nbio_v4_3.c
@@ -26,6 +26,7 @@
#include "nbio/nbio_4_3_0_offset.h"
#include "nbio/nbio_4_3_0_sh_mask.h"
+#include "ivsrcid/nbio/irqsrcs_nbif_7_4.h"
#include <uapi/linux/kfd_ioctl.h>
static void nbio_v4_3_remap_hdp_registers(struct amdgpu_device *adev)
@@ -337,7 +338,13 @@ const struct nbio_hdp_flush_reg nbio_v4_3_hdp_flush_reg = {
static void nbio_v4_3_init_registers(struct amdgpu_device *adev)
{
- return;
+ if (adev->ip_versions[NBIO_HWIP][0] == IP_VERSION(4, 3, 0)) {
+ uint32_t data;
+
+ data = RREG32_SOC15(NBIO, 0, regRCC_DEV0_EPF2_STRAP2);
+ data &= ~RCC_DEV0_EPF2_STRAP2__STRAP_NO_SOFT_RESET_DEV0_F2_MASK;
+ WREG32_SOC15(NBIO, 0, regRCC_DEV0_EPF2_STRAP2, data);
+ }
}
static u32 nbio_v4_3_get_rom_offset(struct amdgpu_device *adev)
@@ -532,3 +539,81 @@ const struct amdgpu_nbio_funcs nbio_v4_3_sriov_funcs = {
.remap_hdp_registers = nbio_v4_3_remap_hdp_registers,
.get_rom_offset = nbio_v4_3_get_rom_offset,
};
+
+static int nbio_v4_3_set_ras_err_event_athub_irq_state(struct amdgpu_device *adev,
+ struct amdgpu_irq_src *src,
+ unsigned type,
+ enum amdgpu_interrupt_state state)
+{
+ /* The ras_controller_irq enablement should be done in psp bl when it
+ * tries to enable ras feature. Driver only need to set the correct interrupt
+ * vector for bare-metal and sriov use case respectively
+ */
+ uint32_t bif_doorbell_int_cntl;
+
+ bif_doorbell_int_cntl = RREG32_SOC15(NBIO, 0, regBIF_BX0_BIF_DOORBELL_INT_CNTL);
+ bif_doorbell_int_cntl = REG_SET_FIELD(bif_doorbell_int_cntl,
+ BIF_BX0_BIF_DOORBELL_INT_CNTL,
+ RAS_ATHUB_ERR_EVENT_INTERRUPT_DISABLE,
+ (state == AMDGPU_IRQ_STATE_ENABLE) ? 0 : 1);
+ WREG32_SOC15(NBIO, 0, regBIF_BX0_BIF_DOORBELL_INT_CNTL, bif_doorbell_int_cntl);
+
+ return 0;
+}
+
+static int nbio_v4_3_process_err_event_athub_irq(struct amdgpu_device *adev,
+ struct amdgpu_irq_src *source,
+ struct amdgpu_iv_entry *entry)
+{
+ /* By design, the ih cookie for err_event_athub_irq should be written
+ * to bif ring. since bif ring is not enabled, just leave process callback
+ * as a dummy one.
+ */
+ return 0;
+}
+
+static const struct amdgpu_irq_src_funcs nbio_v4_3_ras_err_event_athub_irq_funcs = {
+ .set = nbio_v4_3_set_ras_err_event_athub_irq_state,
+ .process = nbio_v4_3_process_err_event_athub_irq,
+};
+
+static void nbio_v4_3_handle_ras_err_event_athub_intr_no_bifring(struct amdgpu_device *adev)
+{
+ uint32_t bif_doorbell_int_cntl;
+
+ bif_doorbell_int_cntl = RREG32_SOC15(NBIO, 0, regBIF_BX0_BIF_DOORBELL_INT_CNTL);
+ if (REG_GET_FIELD(bif_doorbell_int_cntl,
+ BIF_DOORBELL_INT_CNTL,
+ RAS_ATHUB_ERR_EVENT_INTERRUPT_STATUS)) {
+ /* driver has to clear the interrupt status when bif ring is disabled */
+ bif_doorbell_int_cntl = REG_SET_FIELD(bif_doorbell_int_cntl,
+ BIF_DOORBELL_INT_CNTL,
+ RAS_ATHUB_ERR_EVENT_INTERRUPT_CLEAR, 1);
+ WREG32_SOC15(NBIO, 0, regBIF_BX0_BIF_DOORBELL_INT_CNTL, bif_doorbell_int_cntl);
+ amdgpu_ras_global_ras_isr(adev);
+ }
+}
+
+static int nbio_v4_3_init_ras_err_event_athub_interrupt(struct amdgpu_device *adev)
+{
+
+ int r;
+
+ /* init the irq funcs */
+ adev->nbio.ras_err_event_athub_irq.funcs =
+ &nbio_v4_3_ras_err_event_athub_irq_funcs;
+ adev->nbio.ras_err_event_athub_irq.num_types = 1;
+
+ /* register ras err event athub interrupt
+ * nbio v4_3 uses the same irq source as nbio v7_4 */
+ r = amdgpu_irq_add_id(adev, SOC21_IH_CLIENTID_BIF,
+ NBIF_7_4__SRCID__ERREVENT_ATHUB_INTERRUPT,
+ &adev->nbio.ras_err_event_athub_irq);
+
+ return r;
+}
+
+struct amdgpu_nbio_ras nbio_v4_3_ras = {
+ .handle_ras_err_event_athub_intr_no_bifring = nbio_v4_3_handle_ras_err_event_athub_intr_no_bifring,
+ .init_ras_err_event_athub_interrupt = nbio_v4_3_init_ras_err_event_athub_interrupt,
+};
diff --git a/drivers/gpu/drm/amd/amdgpu/nbio_v4_3.h b/drivers/gpu/drm/amd/amdgpu/nbio_v4_3.h
index 711999ceedf4..399037cdf4fb 100644
--- a/drivers/gpu/drm/amd/amdgpu/nbio_v4_3.h
+++ b/drivers/gpu/drm/amd/amdgpu/nbio_v4_3.h
@@ -29,5 +29,6 @@
extern const struct nbio_hdp_flush_reg nbio_v4_3_hdp_flush_reg;
extern const struct amdgpu_nbio_funcs nbio_v4_3_funcs;
extern const struct amdgpu_nbio_funcs nbio_v4_3_sriov_funcs;
+extern struct amdgpu_nbio_ras nbio_v4_3_ras;
#endif
diff --git a/drivers/gpu/drm/amd/amdgpu/nbio_v7_2.c b/drivers/gpu/drm/amd/amdgpu/nbio_v7_2.c
index 31776b12e4c4..4ef1fa4603c8 100644
--- a/drivers/gpu/drm/amd/amdgpu/nbio_v7_2.c
+++ b/drivers/gpu/drm/amd/amdgpu/nbio_v7_2.c
@@ -394,6 +394,15 @@ static void nbio_v7_2_init_registers(struct amdgpu_device *adev)
break;
}
+ switch (adev->ip_versions[NBIO_HWIP][0]) {
+ case IP_VERSION(7, 3, 0):
+ case IP_VERSION(7, 5, 1):
+ data = RREG32_SOC15(NBIO, 0, regRCC_DEV2_EPF0_STRAP2);
+ data &= ~RCC_DEV2_EPF0_STRAP2__STRAP_NO_SOFT_RESET_DEV2_F0_MASK;
+ WREG32_SOC15(NBIO, 0, regRCC_DEV2_EPF0_STRAP2, data);
+ break;
+ }
+
if (amdgpu_sriov_vf(adev))
adev->rmmio_remap.reg_offset = SOC15_REG_OFFSET(NBIO, 0,
regBIF_BX_PF0_HDP_MEM_COHERENCY_FLUSH_CNTL) << 2;
diff --git a/drivers/gpu/drm/amd/amdgpu/nbio_v7_4.c b/drivers/gpu/drm/amd/amdgpu/nbio_v7_4.c
index 19455a725939..685abf57ffdd 100644
--- a/drivers/gpu/drm/amd/amdgpu/nbio_v7_4.c
+++ b/drivers/gpu/drm/amd/amdgpu/nbio_v7_4.c
@@ -238,7 +238,7 @@ static void nbio_v7_4_ih_doorbell_range(struct amdgpu_device *adev,
if (use_doorbell) {
ih_doorbell_range = REG_SET_FIELD(ih_doorbell_range, BIF_IH_DOORBELL_RANGE, OFFSET, doorbell_index);
- ih_doorbell_range = REG_SET_FIELD(ih_doorbell_range, BIF_IH_DOORBELL_RANGE, SIZE, 4);
+ ih_doorbell_range = REG_SET_FIELD(ih_doorbell_range, BIF_IH_DOORBELL_RANGE, SIZE, 8);
} else
ih_doorbell_range = REG_SET_FIELD(ih_doorbell_range, BIF_IH_DOORBELL_RANGE, SIZE, 0);
diff --git a/drivers/gpu/drm/amd/amdgpu/nbio_v7_9.c b/drivers/gpu/drm/amd/amdgpu/nbio_v7_9.c
new file mode 100644
index 000000000000..24d12075ca3a
--- /dev/null
+++ b/drivers/gpu/drm/amd/amdgpu/nbio_v7_9.c
@@ -0,0 +1,369 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ */
+#include "amdgpu.h"
+#include "amdgpu_atombios.h"
+#include "nbio_v7_9.h"
+#include "amdgpu_ras.h"
+
+#include "nbio/nbio_7_9_0_offset.h"
+#include "nbio/nbio_7_9_0_sh_mask.h"
+#include "ivsrcid/nbio/irqsrcs_nbif_7_4.h"
+#include <uapi/linux/kfd_ioctl.h>
+
+static void nbio_v7_9_remap_hdp_registers(struct amdgpu_device *adev)
+{
+ WREG32_SOC15(NBIO, 0, regBIF_BX0_REMAP_HDP_MEM_FLUSH_CNTL,
+ adev->rmmio_remap.reg_offset + KFD_MMIO_REMAP_HDP_MEM_FLUSH_CNTL);
+ WREG32_SOC15(NBIO, 0, regBIF_BX0_REMAP_HDP_REG_FLUSH_CNTL,
+ adev->rmmio_remap.reg_offset + KFD_MMIO_REMAP_HDP_REG_FLUSH_CNTL);
+}
+
+static u32 nbio_v7_9_get_rev_id(struct amdgpu_device *adev)
+{
+ u32 tmp;
+
+ tmp = RREG32_SOC15(NBIO, 0, regRCC_STRAP0_RCC_DEV0_EPF0_STRAP0);
+ tmp = REG_GET_FIELD(tmp, RCC_STRAP0_RCC_DEV0_EPF0_STRAP0, STRAP_ATI_REV_ID_DEV0_F0);
+
+ return tmp;
+}
+
+static void nbio_v7_9_mc_access_enable(struct amdgpu_device *adev, bool enable)
+{
+ if (enable)
+ WREG32_SOC15(NBIO, 0, regBIF_BX0_BIF_FB_EN,
+ BIF_BX0_BIF_FB_EN__FB_READ_EN_MASK | BIF_BX0_BIF_FB_EN__FB_WRITE_EN_MASK);
+ else
+ WREG32_SOC15(NBIO, 0, regBIF_BX0_BIF_FB_EN, 0);
+}
+
+static u32 nbio_v7_9_get_memsize(struct amdgpu_device *adev)
+{
+ return RREG32_SOC15(NBIO, 0, regRCC_DEV0_EPF0_RCC_CONFIG_MEMSIZE);
+}
+
+static void nbio_v7_9_sdma_doorbell_range(struct amdgpu_device *adev, int instance,
+ bool use_doorbell, int doorbell_index, int doorbell_size)
+{
+ u32 doorbell_range = 0, doorbell_ctrl = 0;
+
+ doorbell_range =
+ REG_SET_FIELD(doorbell_range, DOORBELL0_CTRL_ENTRY_0,
+ BIF_DOORBELL0_RANGE_OFFSET_ENTRY, doorbell_index);
+ doorbell_range =
+ REG_SET_FIELD(doorbell_range, DOORBELL0_CTRL_ENTRY_0,
+ BIF_DOORBELL0_RANGE_SIZE_ENTRY, doorbell_size);
+ doorbell_ctrl =
+ REG_SET_FIELD(doorbell_ctrl, S2A_DOORBELL_ENTRY_1_CTRL,
+ S2A_DOORBELL_PORT1_ENABLE, 1);
+ doorbell_ctrl =
+ REG_SET_FIELD(doorbell_ctrl, S2A_DOORBELL_ENTRY_1_CTRL,
+ S2A_DOORBELL_PORT1_RANGE_SIZE, doorbell_size);
+
+ switch (instance) {
+ case 0:
+ WREG32_SOC15(NBIO, 0, regDOORBELL0_CTRL_ENTRY_1, doorbell_range);
+
+ doorbell_ctrl = REG_SET_FIELD(doorbell_ctrl,
+ S2A_DOORBELL_ENTRY_1_CTRL,
+ S2A_DOORBELL_PORT1_AWID, 0xe);
+ doorbell_ctrl = REG_SET_FIELD(doorbell_ctrl,
+ S2A_DOORBELL_ENTRY_1_CTRL,
+ S2A_DOORBELL_PORT1_RANGE_OFFSET, 0xe);
+ doorbell_ctrl = REG_SET_FIELD(doorbell_ctrl,
+ S2A_DOORBELL_ENTRY_1_CTRL,
+ S2A_DOORBELL_PORT1_AWADDR_31_28_VALUE,
+ 0x1);
+ WREG32_SOC15(NBIO, 0, regS2A_DOORBELL_ENTRY_1_CTRL, doorbell_ctrl);
+ break;
+ case 1:
+ WREG32_SOC15(NBIO, 0, regDOORBELL0_CTRL_ENTRY_2, doorbell_range);
+
+ doorbell_ctrl = REG_SET_FIELD(doorbell_ctrl,
+ S2A_DOORBELL_ENTRY_1_CTRL,
+ S2A_DOORBELL_PORT1_AWID, 0x8);
+ doorbell_ctrl = REG_SET_FIELD(doorbell_ctrl,
+ S2A_DOORBELL_ENTRY_1_CTRL,
+ S2A_DOORBELL_PORT1_RANGE_OFFSET, 0x8);
+ doorbell_ctrl = REG_SET_FIELD(doorbell_ctrl,
+ S2A_DOORBELL_ENTRY_1_CTRL,
+ S2A_DOORBELL_PORT1_AWADDR_31_28_VALUE,
+ 0x2);
+ WREG32_SOC15(NBIO, 0, regS2A_DOORBELL_ENTRY_2_CTRL, doorbell_ctrl);
+ break;
+ case 2:
+ WREG32_SOC15(NBIO, 0, regDOORBELL0_CTRL_ENTRY_3, doorbell_range);
+
+ doorbell_ctrl = REG_SET_FIELD(doorbell_ctrl,
+ S2A_DOORBELL_ENTRY_1_CTRL,
+ S2A_DOORBELL_PORT1_AWID, 0x9);
+ doorbell_ctrl = REG_SET_FIELD(doorbell_ctrl,
+ S2A_DOORBELL_ENTRY_1_CTRL,
+ S2A_DOORBELL_PORT1_RANGE_OFFSET, 0x9);
+ doorbell_ctrl = REG_SET_FIELD(doorbell_ctrl,
+ S2A_DOORBELL_ENTRY_1_CTRL,
+ S2A_DOORBELL_PORT1_AWADDR_31_28_VALUE,
+ 0x8);
+ WREG32_SOC15(NBIO, 0, regS2A_DOORBELL_ENTRY_5_CTRL, doorbell_ctrl);
+ break;
+ case 3:
+ WREG32_SOC15(NBIO, 0, regDOORBELL0_CTRL_ENTRY_4, doorbell_range);
+
+ doorbell_ctrl = REG_SET_FIELD(doorbell_ctrl,
+ S2A_DOORBELL_ENTRY_1_CTRL,
+ S2A_DOORBELL_PORT1_AWID, 0xa);
+ doorbell_ctrl = REG_SET_FIELD(doorbell_ctrl,
+ S2A_DOORBELL_ENTRY_1_CTRL,
+ S2A_DOORBELL_PORT1_RANGE_OFFSET, 0xa);
+ doorbell_ctrl = REG_SET_FIELD(doorbell_ctrl,
+ S2A_DOORBELL_ENTRY_1_CTRL,
+ S2A_DOORBELL_PORT1_AWADDR_31_28_VALUE,
+ 0x9);
+ WREG32_SOC15(NBIO, 0, regS2A_DOORBELL_ENTRY_6_CTRL, doorbell_ctrl);
+ break;
+ default:
+ break;
+ };
+
+ return;
+}
+
+static void nbio_v7_9_vcn_doorbell_range(struct amdgpu_device *adev, bool use_doorbell,
+ int doorbell_index, int instance)
+{
+ u32 doorbell_range = 0, doorbell_ctrl = 0;
+
+ if (use_doorbell) {
+ doorbell_range = REG_SET_FIELD(doorbell_range,
+ DOORBELL0_CTRL_ENTRY_0,
+ BIF_DOORBELL0_RANGE_OFFSET_ENTRY,
+ doorbell_index);
+ doorbell_range = REG_SET_FIELD(doorbell_range,
+ DOORBELL0_CTRL_ENTRY_0,
+ BIF_DOORBELL0_RANGE_SIZE_ENTRY,
+ 0x8);
+
+ doorbell_ctrl = REG_SET_FIELD(doorbell_ctrl,
+ S2A_DOORBELL_ENTRY_1_CTRL,
+ S2A_DOORBELL_PORT1_ENABLE, 1);
+ doorbell_ctrl = REG_SET_FIELD(doorbell_ctrl,
+ S2A_DOORBELL_ENTRY_1_CTRL,
+ S2A_DOORBELL_PORT1_AWID, 0x4);
+ doorbell_ctrl = REG_SET_FIELD(doorbell_ctrl,
+ S2A_DOORBELL_ENTRY_1_CTRL,
+ S2A_DOORBELL_PORT1_RANGE_OFFSET, 0x4);
+ doorbell_ctrl = REG_SET_FIELD(doorbell_ctrl,
+ S2A_DOORBELL_ENTRY_1_CTRL,
+ S2A_DOORBELL_PORT1_RANGE_SIZE, 0x8);
+ doorbell_ctrl = REG_SET_FIELD(doorbell_ctrl,
+ S2A_DOORBELL_ENTRY_1_CTRL,
+ S2A_DOORBELL_PORT1_AWADDR_31_28_VALUE, 0x4);
+ } else {
+ doorbell_range = REG_SET_FIELD(doorbell_range,
+ DOORBELL0_CTRL_ENTRY_0,
+ BIF_DOORBELL0_RANGE_SIZE_ENTRY, 0);
+ doorbell_ctrl = REG_SET_FIELD(doorbell_ctrl,
+ S2A_DOORBELL_ENTRY_1_CTRL,
+ S2A_DOORBELL_PORT1_RANGE_SIZE, 0);
+ }
+
+ WREG32_SOC15(NBIO, 0, regDOORBELL0_CTRL_ENTRY_17, doorbell_range);
+ WREG32_SOC15(NBIO, 0, regS2A_DOORBELL_ENTRY_4_CTRL, doorbell_ctrl);
+}
+
+static void nbio_v7_9_enable_doorbell_aperture(struct amdgpu_device *adev,
+ bool enable)
+{
+ /* Enable to allow doorbell pass thru on pre-silicon bare-metal */
+ WREG32_SOC15(NBIO, 0, regBIFC_DOORBELL_ACCESS_EN_PF, 0xfffff);
+ WREG32_FIELD15_PREREG(NBIO, 0, RCC_DEV0_EPF0_RCC_DOORBELL_APER_EN,
+ BIF_DOORBELL_APER_EN, enable ? 1 : 0);
+}
+
+static void nbio_v7_9_enable_doorbell_selfring_aperture(struct amdgpu_device *adev,
+ bool enable)
+{
+ u32 tmp = 0;
+
+ if (enable) {
+ tmp = REG_SET_FIELD(tmp, BIF_BX_PF0_DOORBELL_SELFRING_GPA_APER_CNTL,
+ DOORBELL_SELFRING_GPA_APER_EN, 1) |
+ REG_SET_FIELD(tmp, BIF_BX_PF0_DOORBELL_SELFRING_GPA_APER_CNTL,
+ DOORBELL_SELFRING_GPA_APER_MODE, 1) |
+ REG_SET_FIELD(tmp, BIF_BX_PF0_DOORBELL_SELFRING_GPA_APER_CNTL,
+ DOORBELL_SELFRING_GPA_APER_SIZE, 0);
+
+ WREG32_SOC15(NBIO, 0, regBIF_BX_PF0_DOORBELL_SELFRING_GPA_APER_BASE_LOW,
+ lower_32_bits(adev->doorbell.base));
+ WREG32_SOC15(NBIO, 0, regBIF_BX_PF0_DOORBELL_SELFRING_GPA_APER_BASE_HIGH,
+ upper_32_bits(adev->doorbell.base));
+ }
+
+ WREG32_SOC15(NBIO, 0, regBIF_BX_PF0_DOORBELL_SELFRING_GPA_APER_CNTL, tmp);
+}
+
+static void nbio_v7_9_ih_doorbell_range(struct amdgpu_device *adev,
+ bool use_doorbell, int doorbell_index)
+{
+ u32 ih_doorbell_range = 0, ih_doorbell_ctrl = 0;
+
+ if (use_doorbell) {
+ ih_doorbell_range = REG_SET_FIELD(ih_doorbell_range,
+ DOORBELL0_CTRL_ENTRY_0,
+ BIF_DOORBELL0_RANGE_OFFSET_ENTRY,
+ doorbell_index);
+ ih_doorbell_range = REG_SET_FIELD(ih_doorbell_range,
+ DOORBELL0_CTRL_ENTRY_0,
+ BIF_DOORBELL0_RANGE_SIZE_ENTRY,
+ 0x4);
+
+ ih_doorbell_ctrl = REG_SET_FIELD(ih_doorbell_ctrl,
+ S2A_DOORBELL_ENTRY_1_CTRL,
+ S2A_DOORBELL_PORT1_ENABLE, 1);
+ ih_doorbell_ctrl = REG_SET_FIELD(ih_doorbell_ctrl,
+ S2A_DOORBELL_ENTRY_1_CTRL,
+ S2A_DOORBELL_PORT1_AWID, 0);
+ ih_doorbell_ctrl = REG_SET_FIELD(ih_doorbell_ctrl,
+ S2A_DOORBELL_ENTRY_1_CTRL,
+ S2A_DOORBELL_PORT1_RANGE_OFFSET, 0);
+ ih_doorbell_ctrl = REG_SET_FIELD(ih_doorbell_ctrl,
+ S2A_DOORBELL_ENTRY_1_CTRL,
+ S2A_DOORBELL_PORT1_RANGE_SIZE, 0x4);
+ ih_doorbell_ctrl = REG_SET_FIELD(ih_doorbell_ctrl,
+ S2A_DOORBELL_ENTRY_1_CTRL,
+ S2A_DOORBELL_PORT1_AWADDR_31_28_VALUE, 0);
+ } else {
+ ih_doorbell_range = REG_SET_FIELD(ih_doorbell_range,
+ DOORBELL0_CTRL_ENTRY_0,
+ BIF_DOORBELL0_RANGE_SIZE_ENTRY, 0);
+ ih_doorbell_ctrl = REG_SET_FIELD(ih_doorbell_ctrl,
+ S2A_DOORBELL_ENTRY_1_CTRL,
+ S2A_DOORBELL_PORT1_RANGE_SIZE, 0);
+ }
+
+ WREG32_SOC15(NBIO, 0, regDOORBELL0_CTRL_ENTRY_0, ih_doorbell_range);
+ WREG32_SOC15(NBIO, 0, regS2A_DOORBELL_ENTRY_3_CTRL, ih_doorbell_ctrl);
+}
+
+
+static void nbio_v7_9_update_medium_grain_clock_gating(struct amdgpu_device *adev,
+ bool enable)
+{
+}
+
+static void nbio_v7_9_update_medium_grain_light_sleep(struct amdgpu_device *adev,
+ bool enable)
+{
+}
+
+static void nbio_v7_9_get_clockgating_state(struct amdgpu_device *adev,
+ u64 *flags)
+{
+}
+
+static void nbio_v7_9_ih_control(struct amdgpu_device *adev)
+{
+ u32 interrupt_cntl;
+
+ /* setup interrupt control */
+ WREG32_SOC15(NBIO, 0, regBIF_BX0_INTERRUPT_CNTL2, adev->dummy_page_addr >> 8);
+ interrupt_cntl = RREG32_SOC15(NBIO, 0, regBIF_BX0_INTERRUPT_CNTL);
+ /* INTERRUPT_CNTL__IH_DUMMY_RD_OVERRIDE_MASK=0 - dummy read disabled with msi, enabled without msi
+ * INTERRUPT_CNTL__IH_DUMMY_RD_OVERRIDE_MASK=1 - dummy read controlled by IH_DUMMY_RD_EN
+ */
+ interrupt_cntl =
+ REG_SET_FIELD(interrupt_cntl, BIF_BX0_INTERRUPT_CNTL, IH_DUMMY_RD_OVERRIDE, 0);
+ /* INTERRUPT_CNTL__IH_REQ_NONSNOOP_EN_MASK=1 if ring is in non-cacheable memory, e.g., vram */
+ interrupt_cntl =
+ REG_SET_FIELD(interrupt_cntl, BIF_BX0_INTERRUPT_CNTL, IH_REQ_NONSNOOP_EN, 0);
+ WREG32_SOC15(NBIO, 0, regBIF_BX0_INTERRUPT_CNTL, interrupt_cntl);
+}
+
+static u32 nbio_v7_9_get_hdp_flush_req_offset(struct amdgpu_device *adev)
+{
+ return SOC15_REG_OFFSET(NBIO, 0, regBIF_BX_PF0_GPU_HDP_FLUSH_REQ);
+}
+
+static u32 nbio_v7_9_get_hdp_flush_done_offset(struct amdgpu_device *adev)
+{
+ return SOC15_REG_OFFSET(NBIO, 0, regBIF_BX_PF0_GPU_HDP_FLUSH_DONE);
+}
+
+static u32 nbio_v7_9_get_pcie_index_offset(struct amdgpu_device *adev)
+{
+ return SOC15_REG_OFFSET(NBIO, 0, regBIF_BX0_PCIE_INDEX2);
+}
+
+static u32 nbio_v7_9_get_pcie_data_offset(struct amdgpu_device *adev)
+{
+ return SOC15_REG_OFFSET(NBIO, 0, regBIF_BX0_PCIE_DATA2);
+}
+
+const struct nbio_hdp_flush_reg nbio_v7_9_hdp_flush_reg = {
+ .ref_and_mask_cp0 = BIF_BX_PF0_GPU_HDP_FLUSH_DONE__CP0_MASK,
+ .ref_and_mask_cp1 = BIF_BX_PF0_GPU_HDP_FLUSH_DONE__CP1_MASK,
+ .ref_and_mask_cp2 = BIF_BX_PF0_GPU_HDP_FLUSH_DONE__CP2_MASK,
+ .ref_and_mask_cp3 = BIF_BX_PF0_GPU_HDP_FLUSH_DONE__CP3_MASK,
+ .ref_and_mask_cp4 = BIF_BX_PF0_GPU_HDP_FLUSH_DONE__CP4_MASK,
+ .ref_and_mask_cp5 = BIF_BX_PF0_GPU_HDP_FLUSH_DONE__CP5_MASK,
+ .ref_and_mask_cp6 = BIF_BX_PF0_GPU_HDP_FLUSH_DONE__CP6_MASK,
+ .ref_and_mask_cp7 = BIF_BX_PF0_GPU_HDP_FLUSH_DONE__CP7_MASK,
+ .ref_and_mask_cp8 = BIF_BX_PF0_GPU_HDP_FLUSH_DONE__CP8_MASK,
+ .ref_and_mask_cp9 = BIF_BX_PF0_GPU_HDP_FLUSH_DONE__CP9_MASK,
+ .ref_and_mask_sdma0 = BIF_BX_PF0_GPU_HDP_FLUSH_DONE__SDMA0_MASK,
+ .ref_and_mask_sdma1 = BIF_BX_PF0_GPU_HDP_FLUSH_DONE__SDMA1_MASK,
+ .ref_and_mask_sdma2 = BIF_BX_PF0_GPU_HDP_FLUSH_DONE__RSVD_ENG0_MASK,
+ .ref_and_mask_sdma3 = BIF_BX_PF0_GPU_HDP_FLUSH_DONE__RSVD_ENG1_MASK,
+ .ref_and_mask_sdma4 = BIF_BX_PF0_GPU_HDP_FLUSH_DONE__RSVD_ENG2_MASK,
+ .ref_and_mask_sdma5 = BIF_BX_PF0_GPU_HDP_FLUSH_DONE__RSVD_ENG3_MASK,
+ .ref_and_mask_sdma6 = BIF_BX_PF0_GPU_HDP_FLUSH_DONE__RSVD_ENG4_MASK,
+ .ref_and_mask_sdma7 = BIF_BX_PF0_GPU_HDP_FLUSH_DONE__RSVD_ENG5_MASK,
+};
+
+static void nbio_v7_9_enable_doorbell_interrupt(struct amdgpu_device *adev,
+ bool enable)
+{
+ WREG32_FIELD15_PREREG(NBIO, 0, BIF_BX0_BIF_DOORBELL_INT_CNTL,
+ DOORBELL_INTERRUPT_DISABLE, enable ? 0 : 1);
+}
+
+const struct amdgpu_nbio_funcs nbio_v7_9_funcs = {
+ .get_hdp_flush_req_offset = nbio_v7_9_get_hdp_flush_req_offset,
+ .get_hdp_flush_done_offset = nbio_v7_9_get_hdp_flush_done_offset,
+ .get_pcie_index_offset = nbio_v7_9_get_pcie_index_offset,
+ .get_pcie_data_offset = nbio_v7_9_get_pcie_data_offset,
+ .get_rev_id = nbio_v7_9_get_rev_id,
+ .mc_access_enable = nbio_v7_9_mc_access_enable,
+ .get_memsize = nbio_v7_9_get_memsize,
+ .sdma_doorbell_range = nbio_v7_9_sdma_doorbell_range,
+ .vcn_doorbell_range = nbio_v7_9_vcn_doorbell_range,
+ .enable_doorbell_aperture = nbio_v7_9_enable_doorbell_aperture,
+ .enable_doorbell_selfring_aperture = nbio_v7_9_enable_doorbell_selfring_aperture,
+ .ih_doorbell_range = nbio_v7_9_ih_doorbell_range,
+ .enable_doorbell_interrupt = nbio_v7_9_enable_doorbell_interrupt,
+ .update_medium_grain_clock_gating = nbio_v7_9_update_medium_grain_clock_gating,
+ .update_medium_grain_light_sleep = nbio_v7_9_update_medium_grain_light_sleep,
+ .get_clockgating_state = nbio_v7_9_get_clockgating_state,
+ .ih_control = nbio_v7_9_ih_control,
+ .remap_hdp_registers = nbio_v7_9_remap_hdp_registers,
+};
diff --git a/drivers/gpu/drm/amd/amdgpu/nbio_v7_9.h b/drivers/gpu/drm/amd/amdgpu/nbio_v7_9.h
new file mode 100644
index 000000000000..8e04eb484328
--- /dev/null
+++ b/drivers/gpu/drm/amd/amdgpu/nbio_v7_9.h
@@ -0,0 +1,32 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ */
+
+#ifndef __NBIO_V7_9_H__
+#define __NBIO_V7_9_H__
+
+#include "soc15_common.h"
+
+extern const struct nbio_hdp_flush_reg nbio_v7_9_hdp_flush_reg;
+extern const struct amdgpu_nbio_funcs nbio_v7_9_funcs;
+
+#endif
diff --git a/drivers/gpu/drm/amd/amdgpu/nv.c b/drivers/gpu/drm/amd/amdgpu/nv.c
index b3fba8dea63c..0fb6013441f0 100644
--- a/drivers/gpu/drm/amd/amdgpu/nv.c
+++ b/drivers/gpu/drm/amd/amdgpu/nv.c
@@ -82,10 +82,10 @@ static const struct amdgpu_video_codecs nv_video_codecs_encode =
/* Navi1x */
static const struct amdgpu_video_codec_info nv_video_codecs_decode_array[] =
{
- {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG2, 4096, 4906, 3)},
- {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG4, 4096, 4906, 5)},
- {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG4_AVC, 4096, 4906, 52)},
- {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_VC1, 4096, 4906, 4)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG2, 4096, 4096, 3)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG4, 4096, 4096, 5)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG4_AVC, 4096, 4096, 52)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_VC1, 4096, 4096, 4)},
{codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_HEVC, 8192, 4352, 186)},
{codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_JPEG, 4096, 4096, 0)},
{codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_VP9, 8192, 4352, 0)},
@@ -98,58 +98,102 @@ static const struct amdgpu_video_codecs nv_video_codecs_decode =
};
/* Sienna Cichlid */
-static const struct amdgpu_video_codec_info sc_video_codecs_decode_array[] =
+static const struct amdgpu_video_codec_info sc_video_codecs_encode_array[] = {
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG4_AVC, 4096, 2160, 0)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_HEVC, 7680, 4352, 0)},
+};
+
+static const struct amdgpu_video_codecs sc_video_codecs_encode = {
+ .codec_count = ARRAY_SIZE(sc_video_codecs_encode_array),
+ .codec_array = sc_video_codecs_encode_array,
+};
+
+static const struct amdgpu_video_codec_info sc_video_codecs_decode_array_vcn0[] =
{
- {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG2, 4096, 4906, 3)},
- {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG4, 4096, 4906, 5)},
- {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG4_AVC, 4096, 4906, 52)},
- {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_VC1, 4096, 4906, 4)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG2, 4096, 4096, 3)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG4, 4096, 4096, 5)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG4_AVC, 4096, 4096, 52)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_VC1, 4096, 4096, 4)},
{codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_HEVC, 8192, 4352, 186)},
{codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_JPEG, 4096, 4096, 0)},
{codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_VP9, 8192, 4352, 0)},
{codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_AV1, 8192, 4352, 0)},
};
-static const struct amdgpu_video_codecs sc_video_codecs_decode =
+static const struct amdgpu_video_codec_info sc_video_codecs_decode_array_vcn1[] =
+{
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG2, 4096, 4096, 3)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG4, 4096, 4096, 5)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG4_AVC, 4096, 4096, 52)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_VC1, 4096, 4096, 4)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_HEVC, 8192, 4352, 186)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_JPEG, 4096, 4096, 0)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_VP9, 8192, 4352, 0)},
+};
+
+static const struct amdgpu_video_codecs sc_video_codecs_decode_vcn0 =
{
- .codec_count = ARRAY_SIZE(sc_video_codecs_decode_array),
- .codec_array = sc_video_codecs_decode_array,
+ .codec_count = ARRAY_SIZE(sc_video_codecs_decode_array_vcn0),
+ .codec_array = sc_video_codecs_decode_array_vcn0,
+};
+
+static const struct amdgpu_video_codecs sc_video_codecs_decode_vcn1 =
+{
+ .codec_count = ARRAY_SIZE(sc_video_codecs_decode_array_vcn1),
+ .codec_array = sc_video_codecs_decode_array_vcn1,
};
/* SRIOV Sienna Cichlid, not const since data is controlled by host */
static struct amdgpu_video_codec_info sriov_sc_video_codecs_encode_array[] =
{
- {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG4_AVC, 4096, 2304, 0)},
- {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_HEVC, 4096, 2304, 0)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG4_AVC, 4096, 2160, 0)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_HEVC, 7680, 4352, 0)},
};
-static struct amdgpu_video_codec_info sriov_sc_video_codecs_decode_array[] =
+static struct amdgpu_video_codec_info sriov_sc_video_codecs_decode_array_vcn0[] =
{
- {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG2, 4096, 4906, 3)},
- {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG4, 4096, 4906, 5)},
- {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG4_AVC, 4096, 4906, 52)},
- {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_VC1, 4096, 4906, 4)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG2, 4096, 4096, 3)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG4, 4096, 4096, 5)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG4_AVC, 4096, 4096, 52)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_VC1, 4096, 4096, 4)},
{codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_HEVC, 8192, 4352, 186)},
{codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_JPEG, 4096, 4096, 0)},
{codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_VP9, 8192, 4352, 0)},
{codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_AV1, 8192, 4352, 0)},
};
+static struct amdgpu_video_codec_info sriov_sc_video_codecs_decode_array_vcn1[] =
+{
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG2, 4096, 4096, 3)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG4, 4096, 4096, 5)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG4_AVC, 4096, 4096, 52)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_VC1, 4096, 4096, 4)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_HEVC, 8192, 4352, 186)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_JPEG, 4096, 4096, 0)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_VP9, 8192, 4352, 0)},
+};
+
static struct amdgpu_video_codecs sriov_sc_video_codecs_encode =
{
.codec_count = ARRAY_SIZE(sriov_sc_video_codecs_encode_array),
.codec_array = sriov_sc_video_codecs_encode_array,
};
-static struct amdgpu_video_codecs sriov_sc_video_codecs_decode =
+static struct amdgpu_video_codecs sriov_sc_video_codecs_decode_vcn0 =
{
- .codec_count = ARRAY_SIZE(sriov_sc_video_codecs_decode_array),
- .codec_array = sriov_sc_video_codecs_decode_array,
+ .codec_count = ARRAY_SIZE(sriov_sc_video_codecs_decode_array_vcn0),
+ .codec_array = sriov_sc_video_codecs_decode_array_vcn0,
+};
+
+static struct amdgpu_video_codecs sriov_sc_video_codecs_decode_vcn1 =
+{
+ .codec_count = ARRAY_SIZE(sriov_sc_video_codecs_decode_array_vcn1),
+ .codec_array = sriov_sc_video_codecs_decode_array_vcn1,
};
/* Beige Goby*/
static const struct amdgpu_video_codec_info bg_video_codecs_decode_array[] = {
- {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG4_AVC, 4096, 4906, 52)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG4_AVC, 4096, 4096, 52)},
{codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_HEVC, 8192, 4352, 186)},
{codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_VP9, 8192, 4352, 0)},
};
@@ -166,7 +210,7 @@ static const struct amdgpu_video_codecs bg_video_codecs_encode = {
/* Yellow Carp*/
static const struct amdgpu_video_codec_info yc_video_codecs_decode_array[] = {
- {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG4_AVC, 4096, 4906, 52)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG4_AVC, 4096, 4096, 52)},
{codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_HEVC, 8192, 4352, 186)},
{codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_VP9, 8192, 4352, 0)},
{codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_JPEG, 4096, 4096, 0)},
@@ -181,33 +225,50 @@ static const struct amdgpu_video_codecs yc_video_codecs_decode = {
static int nv_query_video_codecs(struct amdgpu_device *adev, bool encode,
const struct amdgpu_video_codecs **codecs)
{
+ if (adev->vcn.num_vcn_inst == hweight8(adev->vcn.harvest_config))
+ return -EINVAL;
+
switch (adev->ip_versions[UVD_HWIP][0]) {
case IP_VERSION(3, 0, 0):
case IP_VERSION(3, 0, 64):
case IP_VERSION(3, 0, 192):
if (amdgpu_sriov_vf(adev)) {
- if (encode)
- *codecs = &sriov_sc_video_codecs_encode;
- else
- *codecs = &sriov_sc_video_codecs_decode;
+ if (adev->vcn.harvest_config & AMDGPU_VCN_HARVEST_VCN0) {
+ if (encode)
+ *codecs = &sriov_sc_video_codecs_encode;
+ else
+ *codecs = &sriov_sc_video_codecs_decode_vcn1;
+ } else {
+ if (encode)
+ *codecs = &sriov_sc_video_codecs_encode;
+ else
+ *codecs = &sriov_sc_video_codecs_decode_vcn0;
+ }
} else {
- if (encode)
- *codecs = &nv_video_codecs_encode;
- else
- *codecs = &sc_video_codecs_decode;
+ if (adev->vcn.harvest_config & AMDGPU_VCN_HARVEST_VCN0) {
+ if (encode)
+ *codecs = &sc_video_codecs_encode;
+ else
+ *codecs = &sc_video_codecs_decode_vcn1;
+ } else {
+ if (encode)
+ *codecs = &sc_video_codecs_encode;
+ else
+ *codecs = &sc_video_codecs_decode_vcn0;
+ }
}
return 0;
case IP_VERSION(3, 0, 16):
case IP_VERSION(3, 0, 2):
if (encode)
- *codecs = &nv_video_codecs_encode;
+ *codecs = &sc_video_codecs_encode;
else
- *codecs = &sc_video_codecs_decode;
+ *codecs = &sc_video_codecs_decode_vcn0;
return 0;
case IP_VERSION(3, 1, 1):
case IP_VERSION(3, 1, 2):
if (encode)
- *codecs = &nv_video_codecs_encode;
+ *codecs = &sc_video_codecs_encode;
else
*codecs = &yc_video_codecs_decode;
return 0;
@@ -229,47 +290,6 @@ static int nv_query_video_codecs(struct amdgpu_device *adev, bool encode,
}
}
-/*
- * Indirect registers accessor
- */
-static u32 nv_pcie_rreg(struct amdgpu_device *adev, u32 reg)
-{
- unsigned long address, data;
- address = adev->nbio.funcs->get_pcie_index_offset(adev);
- data = adev->nbio.funcs->get_pcie_data_offset(adev);
-
- return amdgpu_device_indirect_rreg(adev, address, data, reg);
-}
-
-static void nv_pcie_wreg(struct amdgpu_device *adev, u32 reg, u32 v)
-{
- unsigned long address, data;
-
- address = adev->nbio.funcs->get_pcie_index_offset(adev);
- data = adev->nbio.funcs->get_pcie_data_offset(adev);
-
- amdgpu_device_indirect_wreg(adev, address, data, reg, v);
-}
-
-static u64 nv_pcie_rreg64(struct amdgpu_device *adev, u32 reg)
-{
- unsigned long address, data;
- address = adev->nbio.funcs->get_pcie_index_offset(adev);
- data = adev->nbio.funcs->get_pcie_data_offset(adev);
-
- return amdgpu_device_indirect_rreg64(adev, address, data, reg);
-}
-
-static void nv_pcie_wreg64(struct amdgpu_device *adev, u32 reg, u64 v)
-{
- unsigned long address, data;
-
- address = adev->nbio.funcs->get_pcie_index_offset(adev);
- data = adev->nbio.funcs->get_pcie_data_offset(adev);
-
- amdgpu_device_indirect_wreg64(adev, address, data, reg, v);
-}
-
static u32 nv_didt_rreg(struct amdgpu_device *adev, u32 reg)
{
unsigned long flags, address, data;
@@ -393,9 +413,10 @@ static int nv_read_register(struct amdgpu_device *adev, u32 se_num,
*value = 0;
for (i = 0; i < ARRAY_SIZE(nv_allowed_read_registers); i++) {
en = &nv_allowed_read_registers[i];
- if (adev->reg_offset[en->hwip][en->inst] &&
- reg_offset != (adev->reg_offset[en->hwip][en->inst][en->seg]
- + en->reg_offset))
+ if (!adev->reg_offset[en->hwip][en->inst])
+ continue;
+ else if (reg_offset != (adev->reg_offset[en->hwip][en->inst][en->seg]
+ + en->reg_offset))
continue;
*value = nv_get_register_value(adev,
@@ -509,24 +530,9 @@ static int nv_set_vce_clocks(struct amdgpu_device *adev, u32 evclk, u32 ecclk)
return 0;
}
-static void nv_pcie_gen3_enable(struct amdgpu_device *adev)
-{
- if (pci_is_root_bus(adev->pdev->bus))
- return;
-
- if (amdgpu_pcie_gen2 == 0)
- return;
-
- if (!(adev->pm.pcie_gen_mask & (CAIL_PCIE_LINK_SPEED_SUPPORT_GEN2 |
- CAIL_PCIE_LINK_SPEED_SUPPORT_GEN3)))
- return;
-
- /* todo */
-}
-
static void nv_program_aspm(struct amdgpu_device *adev)
{
- if (!amdgpu_device_should_use_aspm(adev))
+ if (!amdgpu_device_should_use_aspm(adev) || !amdgpu_device_aspm_support_quirk())
return;
if (!(adev->flags & AMD_IS_APU) &&
@@ -535,13 +541,6 @@ static void nv_program_aspm(struct amdgpu_device *adev)
}
-static void nv_enable_doorbell_aperture(struct amdgpu_device *adev,
- bool enable)
-{
- adev->nbio.funcs->enable_doorbell_aperture(adev, enable);
- adev->nbio.funcs->enable_doorbell_selfring_aperture(adev, enable);
-}
-
const struct amdgpu_ip_block_version nv_common_ip_block =
{
.type = AMD_IP_BLOCK_TYPE_COMMON,
@@ -556,11 +555,6 @@ void nv_set_virt_ops(struct amdgpu_device *adev)
adev->virt.ops = &xgpu_nv_virt_ops;
}
-static uint32_t nv_get_rev_id(struct amdgpu_device *adev)
-{
- return adev->nbio.funcs->get_rev_id(adev);
-}
-
static bool nv_need_full_reset(struct amdgpu_device *adev)
{
return true;
@@ -686,10 +680,10 @@ static int nv_common_early_init(void *handle)
}
adev->smc_rreg = NULL;
adev->smc_wreg = NULL;
- adev->pcie_rreg = &nv_pcie_rreg;
- adev->pcie_wreg = &nv_pcie_wreg;
- adev->pcie_rreg64 = &nv_pcie_rreg64;
- adev->pcie_wreg64 = &nv_pcie_wreg64;
+ adev->pcie_rreg = &amdgpu_device_indirect_rreg;
+ adev->pcie_wreg = &amdgpu_device_indirect_wreg;
+ adev->pcie_rreg64 = &amdgpu_device_indirect_rreg64;
+ adev->pcie_wreg64 = &amdgpu_device_indirect_wreg64;
adev->pciep_rreg = amdgpu_device_pcie_port_rreg;
adev->pciep_wreg = amdgpu_device_pcie_port_wreg;
@@ -702,7 +696,7 @@ static int nv_common_early_init(void *handle)
adev->asic_funcs = &nv_asic_funcs;
- adev->rev_id = nv_get_rev_id(adev);
+ adev->rev_id = amdgpu_device_get_rev_id(adev);
adev->external_rev_id = 0xff;
/* TODO: split the GC and PG flags based on the relevant IP version for which
* they are relevant.
@@ -993,11 +987,26 @@ static int nv_common_late_init(void *handle)
if (amdgpu_sriov_vf(adev)) {
xgpu_nv_mailbox_get_irq(adev);
- amdgpu_virt_update_sriov_video_codec(adev,
- sriov_sc_video_codecs_encode_array, ARRAY_SIZE(sriov_sc_video_codecs_encode_array),
- sriov_sc_video_codecs_decode_array, ARRAY_SIZE(sriov_sc_video_codecs_decode_array));
+ if (adev->vcn.harvest_config & AMDGPU_VCN_HARVEST_VCN0) {
+ amdgpu_virt_update_sriov_video_codec(adev,
+ sriov_sc_video_codecs_encode_array,
+ ARRAY_SIZE(sriov_sc_video_codecs_encode_array),
+ sriov_sc_video_codecs_decode_array_vcn1,
+ ARRAY_SIZE(sriov_sc_video_codecs_decode_array_vcn1));
+ } else {
+ amdgpu_virt_update_sriov_video_codec(adev,
+ sriov_sc_video_codecs_encode_array,
+ ARRAY_SIZE(sriov_sc_video_codecs_encode_array),
+ sriov_sc_video_codecs_decode_array_vcn0,
+ ARRAY_SIZE(sriov_sc_video_codecs_decode_array_vcn0));
+ }
}
+ /* Enable selfring doorbell aperture late because doorbell BAR
+ * aperture will change if resize BAR successfully in gmc sw_init.
+ */
+ adev->nbio.funcs->enable_doorbell_selfring_aperture(adev, true);
+
return 0;
}
@@ -1026,8 +1035,6 @@ static int nv_common_hw_init(void *handle)
if (adev->nbio.funcs->apply_l1_link_width_reconfig_wa)
adev->nbio.funcs->apply_l1_link_width_reconfig_wa(adev);
- /* enable pcie gen2/3 link */
- nv_pcie_gen3_enable(adev);
/* enable aspm */
nv_program_aspm(adev);
/* setup nbio registers */
@@ -1039,7 +1046,7 @@ static int nv_common_hw_init(void *handle)
if (adev->nbio.funcs->remap_hdp_registers && !amdgpu_sriov_vf(adev))
adev->nbio.funcs->remap_hdp_registers(adev);
/* enable the doorbell aperture */
- nv_enable_doorbell_aperture(adev, true);
+ adev->nbio.funcs->enable_doorbell_aperture(adev, true);
return 0;
}
@@ -1048,8 +1055,13 @@ static int nv_common_hw_fini(void *handle)
{
struct amdgpu_device *adev = (struct amdgpu_device *)handle;
- /* disable the doorbell aperture */
- nv_enable_doorbell_aperture(adev, false);
+ /* Disable the doorbell aperture and selfring doorbell aperture
+ * separately in hw_fini because nv_enable_doorbell_aperture
+ * has been removed and there is no need to delay disabling
+ * selfring doorbell.
+ */
+ adev->nbio.funcs->enable_doorbell_aperture(adev, false);
+ adev->nbio.funcs->enable_doorbell_selfring_aperture(adev, false);
return 0;
}
diff --git a/drivers/gpu/drm/amd/amdgpu/psp_v10_0.c b/drivers/gpu/drm/amd/amdgpu/psp_v10_0.c
index ed2293686f0d..e1b7fca09666 100644
--- a/drivers/gpu/drm/amd/amdgpu/psp_v10_0.c
+++ b/drivers/gpu/drm/amd/amdgpu/psp_v10_0.c
@@ -47,109 +47,17 @@ MODULE_FIRMWARE("amdgpu/raven_ta.bin");
static int psp_v10_0_init_microcode(struct psp_context *psp)
{
struct amdgpu_device *adev = psp->adev;
- const char *chip_name;
- char fw_name[30];
+ char ucode_prefix[30];
int err = 0;
- const struct ta_firmware_header_v1_0 *ta_hdr;
DRM_DEBUG("\n");
- switch (adev->asic_type) {
- case CHIP_RAVEN:
- if (adev->apu_flags & AMD_APU_IS_RAVEN2)
- chip_name = "raven2";
- else if (adev->apu_flags & AMD_APU_IS_PICASSO)
- chip_name = "picasso";
- else
- chip_name = "raven";
- break;
- default: BUG();
- }
+ amdgpu_ucode_ip_version_decode(adev, MP0_HWIP, ucode_prefix, sizeof(ucode_prefix));
- err = psp_init_asd_microcode(psp, chip_name);
+ err = psp_init_asd_microcode(psp, ucode_prefix);
if (err)
- goto out;
+ return err;
- snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_ta.bin", chip_name);
- err = request_firmware(&adev->psp.ta_fw, fw_name, adev->dev);
- if (err) {
- release_firmware(adev->psp.ta_fw);
- adev->psp.ta_fw = NULL;
- dev_info(adev->dev,
- "psp v10.0: Failed to load firmware \"%s\"\n",
- fw_name);
- } else {
- err = amdgpu_ucode_validate(adev->psp.ta_fw);
- if (err)
- goto out2;
-
- ta_hdr = (const struct ta_firmware_header_v1_0 *)
- adev->psp.ta_fw->data;
- adev->psp.hdcp_context.context.bin_desc.fw_version =
- le32_to_cpu(ta_hdr->hdcp.fw_version);
- adev->psp.hdcp_context.context.bin_desc.size_bytes =
- le32_to_cpu(ta_hdr->hdcp.size_bytes);
- adev->psp.hdcp_context.context.bin_desc.start_addr =
- (uint8_t *)ta_hdr +
- le32_to_cpu(ta_hdr->header.ucode_array_offset_bytes);
-
- adev->psp.dtm_context.context.bin_desc.fw_version =
- le32_to_cpu(ta_hdr->dtm.fw_version);
- adev->psp.dtm_context.context.bin_desc.size_bytes =
- le32_to_cpu(ta_hdr->dtm.size_bytes);
- adev->psp.dtm_context.context.bin_desc.start_addr =
- (uint8_t *)adev->psp.hdcp_context.context.bin_desc.start_addr +
- le32_to_cpu(ta_hdr->dtm.offset_bytes);
-
- adev->psp.securedisplay_context.context.bin_desc.fw_version =
- le32_to_cpu(ta_hdr->securedisplay.fw_version);
- adev->psp.securedisplay_context.context.bin_desc.size_bytes =
- le32_to_cpu(ta_hdr->securedisplay.size_bytes);
- adev->psp.securedisplay_context.context.bin_desc.start_addr =
- (uint8_t *)adev->psp.hdcp_context.context.bin_desc.start_addr +
- le32_to_cpu(ta_hdr->securedisplay.offset_bytes);
-
- adev->psp.ta_fw_version = le32_to_cpu(ta_hdr->header.ucode_version);
- }
-
- return 0;
-
-out2:
- release_firmware(adev->psp.ta_fw);
- adev->psp.ta_fw = NULL;
-out:
- if (err) {
- dev_err(adev->dev,
- "psp v10.0: Failed to load firmware \"%s\"\n",
- fw_name);
- }
-
- return err;
-}
-
-static int psp_v10_0_ring_init(struct psp_context *psp,
- enum psp_ring_type ring_type)
-{
- int ret = 0;
- struct psp_ring *ring;
- struct amdgpu_device *adev = psp->adev;
-
- ring = &psp->km_ring;
-
- ring->ring_type = ring_type;
-
- /* allocate 4k Page of Local Frame Buffer memory for ring */
- ring->ring_size = 0x1000;
- ret = amdgpu_bo_create_kernel(adev, ring->ring_size, PAGE_SIZE,
- AMDGPU_GEM_DOMAIN_VRAM,
- &adev->firmware.rbuf,
- &ring->ring_mem_mc_addr,
- (void **)&ring->ring_mem);
- if (ret) {
- ring->ring_size = 0;
- return ret;
- }
-
- return 0;
+ return psp_init_ta_microcode(psp, ucode_prefix);
}
static int psp_v10_0_ring_create(struct psp_context *psp,
@@ -245,7 +153,6 @@ static void psp_v10_0_ring_set_wptr(struct psp_context *psp, uint32_t value)
static const struct psp_funcs psp_v10_0_funcs = {
.init_microcode = psp_v10_0_init_microcode,
- .ring_init = psp_v10_0_ring_init,
.ring_create = psp_v10_0_ring_create,
.ring_stop = psp_v10_0_ring_stop,
.ring_destroy = psp_v10_0_ring_destroy,
diff --git a/drivers/gpu/drm/amd/amdgpu/psp_v11_0.c b/drivers/gpu/drm/amd/amdgpu/psp_v11_0.c
index 9518b4394a6e..8f84fe40abbb 100644
--- a/drivers/gpu/drm/amd/amdgpu/psp_v11_0.c
+++ b/drivers/gpu/drm/amd/amdgpu/psp_v11_0.c
@@ -88,159 +88,56 @@ MODULE_FIRMWARE("amdgpu/beige_goby_ta.bin");
static int psp_v11_0_init_microcode(struct psp_context *psp)
{
struct amdgpu_device *adev = psp->adev;
- const char *chip_name;
- char fw_name[PSP_FW_NAME_LEN];
+ char ucode_prefix[30];
int err = 0;
- const struct ta_firmware_header_v1_0 *ta_hdr;
DRM_DEBUG("\n");
- switch (adev->ip_versions[MP0_HWIP][0]) {
- case IP_VERSION(11, 0, 2):
- chip_name = "vega20";
- break;
- case IP_VERSION(11, 0, 0):
- chip_name = "navi10";
- break;
- case IP_VERSION(11, 0, 5):
- chip_name = "navi14";
- break;
- case IP_VERSION(11, 0, 9):
- chip_name = "navi12";
- break;
- case IP_VERSION(11, 0, 4):
- chip_name = "arcturus";
- break;
- case IP_VERSION(11, 0, 7):
- chip_name = "sienna_cichlid";
- break;
- case IP_VERSION(11, 0, 11):
- chip_name = "navy_flounder";
- break;
- case IP_VERSION(11, 5, 0):
- chip_name = "vangogh";
- break;
- case IP_VERSION(11, 0, 12):
- chip_name = "dimgrey_cavefish";
- break;
- case IP_VERSION(11, 0, 13):
- chip_name = "beige_goby";
- break;
- default:
- BUG();
- }
-
+ amdgpu_ucode_ip_version_decode(adev, MP0_HWIP, ucode_prefix, sizeof(ucode_prefix));
switch (adev->ip_versions[MP0_HWIP][0]) {
case IP_VERSION(11, 0, 2):
case IP_VERSION(11, 0, 4):
- err = psp_init_sos_microcode(psp, chip_name);
+ err = psp_init_sos_microcode(psp, ucode_prefix);
if (err)
return err;
- err = psp_init_asd_microcode(psp, chip_name);
+ err = psp_init_asd_microcode(psp, ucode_prefix);
if (err)
return err;
- snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_ta.bin", chip_name);
- err = request_firmware(&adev->psp.ta_fw, fw_name, adev->dev);
- if (err) {
- release_firmware(adev->psp.ta_fw);
- adev->psp.ta_fw = NULL;
- dev_info(adev->dev,
- "psp v11.0: Failed to load firmware \"%s\"\n", fw_name);
- } else {
- err = amdgpu_ucode_validate(adev->psp.ta_fw);
- if (err)
- goto out2;
-
- ta_hdr = (const struct ta_firmware_header_v1_0 *)adev->psp.ta_fw->data;
- adev->psp.xgmi_context.context.bin_desc.fw_version =
- le32_to_cpu(ta_hdr->xgmi.fw_version);
- adev->psp.xgmi_context.context.bin_desc.size_bytes =
- le32_to_cpu(ta_hdr->xgmi.size_bytes);
- adev->psp.xgmi_context.context.bin_desc.start_addr =
- (uint8_t *)ta_hdr +
- le32_to_cpu(ta_hdr->header.ucode_array_offset_bytes);
- adev->psp.ta_fw_version = le32_to_cpu(ta_hdr->header.ucode_version);
- adev->psp.ras_context.context.bin_desc.fw_version =
- le32_to_cpu(ta_hdr->ras.fw_version);
- adev->psp.ras_context.context.bin_desc.size_bytes =
- le32_to_cpu(ta_hdr->ras.size_bytes);
- adev->psp.ras_context.context.bin_desc.start_addr =
- (uint8_t *)adev->psp.xgmi_context.context.bin_desc.start_addr +
- le32_to_cpu(ta_hdr->ras.offset_bytes);
- }
+ err = psp_init_ta_microcode(psp, ucode_prefix);
+ adev->psp.securedisplay_context.context.bin_desc.size_bytes = 0;
break;
case IP_VERSION(11, 0, 0):
case IP_VERSION(11, 0, 5):
case IP_VERSION(11, 0, 9):
- err = psp_init_sos_microcode(psp, chip_name);
+ err = psp_init_sos_microcode(psp, ucode_prefix);
if (err)
return err;
- err = psp_init_asd_microcode(psp, chip_name);
+ err = psp_init_asd_microcode(psp, ucode_prefix);
if (err)
return err;
- snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_ta.bin", chip_name);
- err = request_firmware(&adev->psp.ta_fw, fw_name, adev->dev);
- if (err) {
- release_firmware(adev->psp.ta_fw);
- adev->psp.ta_fw = NULL;
- dev_info(adev->dev,
- "psp v11.0: Failed to load firmware \"%s\"\n", fw_name);
- } else {
- err = amdgpu_ucode_validate(adev->psp.ta_fw);
- if (err)
- goto out2;
-
- ta_hdr = (const struct ta_firmware_header_v1_0 *)adev->psp.ta_fw->data;
- adev->psp.hdcp_context.context.bin_desc.fw_version =
- le32_to_cpu(ta_hdr->hdcp.fw_version);
- adev->psp.hdcp_context.context.bin_desc.size_bytes =
- le32_to_cpu(ta_hdr->hdcp.size_bytes);
- adev->psp.hdcp_context.context.bin_desc.start_addr =
- (uint8_t *)ta_hdr +
- le32_to_cpu(
- ta_hdr->header.ucode_array_offset_bytes);
-
- adev->psp.ta_fw_version = le32_to_cpu(ta_hdr->header.ucode_version);
-
- adev->psp.dtm_context.context.bin_desc.fw_version =
- le32_to_cpu(ta_hdr->dtm.fw_version);
- adev->psp.dtm_context.context.bin_desc.size_bytes =
- le32_to_cpu(ta_hdr->dtm.size_bytes);
- adev->psp.dtm_context.context.bin_desc.start_addr =
- (uint8_t *)adev->psp.hdcp_context.context
- .bin_desc.start_addr +
- le32_to_cpu(ta_hdr->dtm.offset_bytes);
- }
+ err = psp_init_ta_microcode(psp, ucode_prefix);
+ adev->psp.securedisplay_context.context.bin_desc.size_bytes = 0;
break;
case IP_VERSION(11, 0, 7):
case IP_VERSION(11, 0, 11):
case IP_VERSION(11, 0, 12):
case IP_VERSION(11, 0, 13):
- err = psp_init_sos_microcode(psp, chip_name);
- if (err)
- return err;
- err = psp_init_ta_microcode(psp, chip_name);
+ err = psp_init_sos_microcode(psp, ucode_prefix);
if (err)
return err;
+ err = psp_init_ta_microcode(psp, ucode_prefix);
break;
case IP_VERSION(11, 5, 0):
- err = psp_init_asd_microcode(psp, chip_name);
- if (err)
- return err;
- err = psp_init_toc_microcode(psp, chip_name);
+ err = psp_init_asd_microcode(psp, ucode_prefix);
if (err)
return err;
+ err = psp_init_toc_microcode(psp, ucode_prefix);
break;
default:
BUG();
}
- return 0;
-
-out2:
- release_firmware(adev->psp.ta_fw);
- adev->psp.ta_fw = NULL;
return err;
}
@@ -360,32 +257,6 @@ static int psp_v11_0_bootloader_load_sos(struct psp_context *psp)
return ret;
}
-static int psp_v11_0_ring_init(struct psp_context *psp,
- enum psp_ring_type ring_type)
-{
- int ret = 0;
- struct psp_ring *ring;
- struct amdgpu_device *adev = psp->adev;
-
- ring = &psp->km_ring;
-
- ring->ring_type = ring_type;
-
- /* allocate 4k Page of Local Frame Buffer memory for ring */
- ring->ring_size = 0x1000;
- ret = amdgpu_bo_create_kernel(adev, ring->ring_size, PAGE_SIZE,
- AMDGPU_GEM_DOMAIN_VRAM,
- &adev->firmware.rbuf,
- &ring->ring_mem_mc_addr,
- (void **)&ring->ring_mem);
- if (ret) {
- ring->ring_size = 0;
- return ret;
- }
-
- return 0;
-}
-
static int psp_v11_0_ring_stop(struct psp_context *psp,
enum psp_ring_type ring_type)
{
@@ -779,7 +650,6 @@ static const struct psp_funcs psp_v11_0_funcs = {
.bootloader_load_spl = psp_v11_0_bootloader_load_spl,
.bootloader_load_sysdrv = psp_v11_0_bootloader_load_sysdrv,
.bootloader_load_sos = psp_v11_0_bootloader_load_sos,
- .ring_init = psp_v11_0_ring_init,
.ring_create = psp_v11_0_ring_create,
.ring_stop = psp_v11_0_ring_stop,
.ring_destroy = psp_v11_0_ring_destroy,
diff --git a/drivers/gpu/drm/amd/amdgpu/psp_v11_0_8.c b/drivers/gpu/drm/amd/amdgpu/psp_v11_0_8.c
index ff13e1beb49b..5697760a819b 100644
--- a/drivers/gpu/drm/amd/amdgpu/psp_v11_0_8.c
+++ b/drivers/gpu/drm/amd/amdgpu/psp_v11_0_8.c
@@ -28,32 +28,6 @@
#include "mp/mp_11_0_8_offset.h"
-static int psp_v11_0_8_ring_init(struct psp_context *psp,
- enum psp_ring_type ring_type)
-{
- int ret = 0;
- struct psp_ring *ring;
- struct amdgpu_device *adev = psp->adev;
-
- ring = &psp->km_ring;
-
- ring->ring_type = ring_type;
-
- /* allocate 4k Page of Local Frame Buffer memory for ring */
- ring->ring_size = 0x1000;
- ret = amdgpu_bo_create_kernel(adev, ring->ring_size, PAGE_SIZE,
- AMDGPU_GEM_DOMAIN_VRAM,
- &adev->firmware.rbuf,
- &ring->ring_mem_mc_addr,
- (void **)&ring->ring_mem);
- if (ret) {
- ring->ring_size = 0;
- return ret;
- }
-
- return 0;
-}
-
static int psp_v11_0_8_ring_stop(struct psp_context *psp,
enum psp_ring_type ring_type)
{
@@ -194,7 +168,6 @@ static void psp_v11_0_8_ring_set_wptr(struct psp_context *psp, uint32_t value)
}
static const struct psp_funcs psp_v11_0_8_funcs = {
- .ring_init = psp_v11_0_8_ring_init,
.ring_create = psp_v11_0_8_ring_create,
.ring_stop = psp_v11_0_8_ring_stop,
.ring_destroy = psp_v11_0_8_ring_destroy,
diff --git a/drivers/gpu/drm/amd/amdgpu/psp_v12_0.c b/drivers/gpu/drm/amd/amdgpu/psp_v12_0.c
index 0b2ac418e4ac..fcd708eae75c 100644
--- a/drivers/gpu/drm/amd/amdgpu/psp_v12_0.c
+++ b/drivers/gpu/drm/amd/amdgpu/psp_v12_0.c
@@ -48,83 +48,25 @@ MODULE_FIRMWARE("amdgpu/green_sardine_ta.bin");
static int psp_v12_0_init_microcode(struct psp_context *psp)
{
struct amdgpu_device *adev = psp->adev;
- const char *chip_name;
- char fw_name[30];
+ char ucode_prefix[30];
int err = 0;
- const struct ta_firmware_header_v1_0 *ta_hdr;
DRM_DEBUG("\n");
- switch (adev->asic_type) {
- case CHIP_RENOIR:
- if (adev->apu_flags & AMD_APU_IS_RENOIR)
- chip_name = "renoir";
- else
- chip_name = "green_sardine";
- break;
- default:
- BUG();
- }
+ amdgpu_ucode_ip_version_decode(adev, MP0_HWIP, ucode_prefix, sizeof(ucode_prefix));
- err = psp_init_asd_microcode(psp, chip_name);
+ err = psp_init_asd_microcode(psp, ucode_prefix);
if (err)
return err;
- snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_ta.bin", chip_name);
- err = request_firmware(&adev->psp.ta_fw, fw_name, adev->dev);
- if (err) {
- release_firmware(adev->psp.ta_fw);
- adev->psp.ta_fw = NULL;
- dev_info(adev->dev,
- "psp v12.0: Failed to load firmware \"%s\"\n",
- fw_name);
- } else {
- err = amdgpu_ucode_validate(adev->psp.ta_fw);
- if (err)
- goto out;
-
- ta_hdr = (const struct ta_firmware_header_v1_0 *)
- adev->psp.ta_fw->data;
- adev->psp.hdcp_context.context.bin_desc.fw_version =
- le32_to_cpu(ta_hdr->hdcp.fw_version);
- adev->psp.hdcp_context.context.bin_desc.size_bytes =
- le32_to_cpu(ta_hdr->hdcp.size_bytes);
- adev->psp.hdcp_context.context.bin_desc.start_addr =
- (uint8_t *)ta_hdr +
- le32_to_cpu(ta_hdr->header.ucode_array_offset_bytes);
-
- adev->psp.ta_fw_version = le32_to_cpu(ta_hdr->header.ucode_version);
-
- adev->psp.dtm_context.context.bin_desc.fw_version =
- le32_to_cpu(ta_hdr->dtm.fw_version);
- adev->psp.dtm_context.context.bin_desc.size_bytes =
- le32_to_cpu(ta_hdr->dtm.size_bytes);
- adev->psp.dtm_context.context.bin_desc.start_addr =
- (uint8_t *)adev->psp.hdcp_context.context.bin_desc.start_addr +
- le32_to_cpu(ta_hdr->dtm.offset_bytes);
-
- if (adev->apu_flags & AMD_APU_IS_RENOIR) {
- adev->psp.securedisplay_context.context.bin_desc.fw_version =
- le32_to_cpu(ta_hdr->securedisplay.fw_version);
- adev->psp.securedisplay_context.context.bin_desc.size_bytes =
- le32_to_cpu(ta_hdr->securedisplay.size_bytes);
- adev->psp.securedisplay_context.context.bin_desc.start_addr =
- (uint8_t *)adev->psp.hdcp_context.context.bin_desc.start_addr +
- le32_to_cpu(ta_hdr->securedisplay.offset_bytes);
- }
- }
-
- return 0;
+ err = psp_init_ta_microcode(psp, ucode_prefix);
+ if (err)
+ return err;
-out:
- release_firmware(adev->psp.ta_fw);
- adev->psp.ta_fw = NULL;
- if (err) {
- dev_err(adev->dev,
- "psp v12.0: Failed to load firmware \"%s\"\n",
- fw_name);
- }
+ /* only supported on renoir */
+ if (!(adev->apu_flags & AMD_APU_IS_RENOIR))
+ adev->psp.securedisplay_context.context.bin_desc.size_bytes = 0;
- return err;
+ return 0;
}
static int psp_v12_0_bootloader_load_sysdrv(struct psp_context *psp)
@@ -236,34 +178,6 @@ static void psp_v12_0_reroute_ih(struct psp_context *psp)
0x80000000, 0x8000FFFF, false);
}
-static int psp_v12_0_ring_init(struct psp_context *psp,
- enum psp_ring_type ring_type)
-{
- int ret = 0;
- struct psp_ring *ring;
- struct amdgpu_device *adev = psp->adev;
-
- psp_v12_0_reroute_ih(psp);
-
- ring = &psp->km_ring;
-
- ring->ring_type = ring_type;
-
- /* allocate 4k Page of Local Frame Buffer memory for ring */
- ring->ring_size = 0x1000;
- ret = amdgpu_bo_create_kernel(adev, ring->ring_size, PAGE_SIZE,
- AMDGPU_GEM_DOMAIN_VRAM,
- &adev->firmware.rbuf,
- &ring->ring_mem_mc_addr,
- (void **)&ring->ring_mem);
- if (ret) {
- ring->ring_size = 0;
- return ret;
- }
-
- return 0;
-}
-
static int psp_v12_0_ring_create(struct psp_context *psp,
enum psp_ring_type ring_type)
{
@@ -272,6 +186,8 @@ static int psp_v12_0_ring_create(struct psp_context *psp,
struct psp_ring *ring = &psp->km_ring;
struct amdgpu_device *adev = psp->adev;
+ psp_v12_0_reroute_ih(psp);
+
if (amdgpu_sriov_vf(psp->adev)) {
/* Write low address of the ring to C2PMSG_102 */
psp_ring_reg = lower_32_bits(ring->ring_mem_mc_addr);
@@ -425,7 +341,6 @@ static const struct psp_funcs psp_v12_0_funcs = {
.init_microcode = psp_v12_0_init_microcode,
.bootloader_load_sysdrv = psp_v12_0_bootloader_load_sysdrv,
.bootloader_load_sos = psp_v12_0_bootloader_load_sos,
- .ring_init = psp_v12_0_ring_init,
.ring_create = psp_v12_0_ring_create,
.ring_stop = psp_v12_0_ring_stop,
.ring_destroy = psp_v12_0_ring_destroy,
diff --git a/drivers/gpu/drm/amd/amdgpu/psp_v13_0.c b/drivers/gpu/drm/amd/amdgpu/psp_v13_0.c
index 21d822b1d589..caee76ab7110 100644
--- a/drivers/gpu/drm/amd/amdgpu/psp_v13_0.c
+++ b/drivers/gpu/drm/amd/amdgpu/psp_v13_0.c
@@ -45,6 +45,10 @@ MODULE_FIRMWARE("amdgpu/psp_13_0_0_ta.bin");
MODULE_FIRMWARE("amdgpu/psp_13_0_7_sos.bin");
MODULE_FIRMWARE("amdgpu/psp_13_0_7_ta.bin");
MODULE_FIRMWARE("amdgpu/psp_13_0_10_sos.bin");
+MODULE_FIRMWARE("amdgpu/psp_13_0_10_ta.bin");
+MODULE_FIRMWARE("amdgpu/psp_13_0_11_toc.bin");
+MODULE_FIRMWARE("amdgpu/psp_13_0_11_ta.bin");
+MODULE_FIRMWARE("amdgpu/psp_13_0_6_sos.bin");
/* For large FW files the time to complete can be very long */
#define USBC_PD_POLLING_LIMIT_S 240
@@ -67,32 +71,19 @@ MODULE_FIRMWARE("amdgpu/psp_13_0_10_sos.bin");
static int psp_v13_0_init_microcode(struct psp_context *psp)
{
struct amdgpu_device *adev = psp->adev;
- const char *chip_name;
char ucode_prefix[30];
int err = 0;
- switch (adev->ip_versions[MP0_HWIP][0]) {
- case IP_VERSION(13, 0, 2):
- chip_name = "aldebaran";
- break;
- case IP_VERSION(13, 0, 1):
- case IP_VERSION(13, 0, 3):
- chip_name = "yellow_carp";
- break;
- default:
- amdgpu_ucode_ip_version_decode(adev, MP0_HWIP, ucode_prefix, sizeof(ucode_prefix));
- chip_name = ucode_prefix;
- break;
- }
+ amdgpu_ucode_ip_version_decode(adev, MP0_HWIP, ucode_prefix, sizeof(ucode_prefix));
switch (adev->ip_versions[MP0_HWIP][0]) {
case IP_VERSION(13, 0, 2):
- err = psp_init_sos_microcode(psp, chip_name);
+ err = psp_init_sos_microcode(psp, ucode_prefix);
if (err)
return err;
/* It's not necessary to load ras ta on Guest side */
if (!amdgpu_sriov_vf(adev)) {
- err = psp_init_ta_microcode(&adev->psp, chip_name);
+ err = psp_init_ta_microcode(psp, ucode_prefix);
if (err)
return err;
}
@@ -101,21 +92,23 @@ static int psp_v13_0_init_microcode(struct psp_context *psp)
case IP_VERSION(13, 0, 3):
case IP_VERSION(13, 0, 5):
case IP_VERSION(13, 0, 8):
- err = psp_init_toc_microcode(psp, chip_name);
+ case IP_VERSION(13, 0, 11):
+ err = psp_init_toc_microcode(psp, ucode_prefix);
if (err)
return err;
- err = psp_init_ta_microcode(psp, chip_name);
+ err = psp_init_ta_microcode(psp, ucode_prefix);
if (err)
return err;
break;
case IP_VERSION(13, 0, 0):
+ case IP_VERSION(13, 0, 6):
case IP_VERSION(13, 0, 7):
case IP_VERSION(13, 0, 10):
- err = psp_init_sos_microcode(psp, chip_name);
+ err = psp_init_sos_microcode(psp, ucode_prefix);
if (err)
return err;
/* It's not necessary to load ras ta on Guest side */
- err = psp_init_ta_microcode(psp, chip_name);
+ err = psp_init_ta_microcode(psp, ucode_prefix);
if (err)
return err;
break;
@@ -267,32 +260,6 @@ static int psp_v13_0_bootloader_load_sos(struct psp_context *psp)
return ret;
}
-static int psp_v13_0_ring_init(struct psp_context *psp,
- enum psp_ring_type ring_type)
-{
- int ret = 0;
- struct psp_ring *ring;
- struct amdgpu_device *adev = psp->adev;
-
- ring = &psp->km_ring;
-
- ring->ring_type = ring_type;
-
- /* allocate 4k Page of Local Frame Buffer memory for ring */
- ring->ring_size = 0x1000;
- ret = amdgpu_bo_create_kernel(adev, ring->ring_size, PAGE_SIZE,
- AMDGPU_GEM_DOMAIN_VRAM,
- &adev->firmware.rbuf,
- &ring->ring_mem_mc_addr,
- (void **)&ring->ring_mem);
- if (ret) {
- ring->ring_size = 0;
- return ret;
- }
-
- return 0;
-}
-
static int psp_v13_0_ring_stop(struct psp_context *psp,
enum psp_ring_type ring_type)
{
@@ -728,7 +695,6 @@ static const struct psp_funcs psp_v13_0_funcs = {
.bootloader_load_dbg_drv = psp_v13_0_bootloader_load_dbg_drv,
.bootloader_load_ras_drv = psp_v13_0_bootloader_load_ras_drv,
.bootloader_load_sos = psp_v13_0_bootloader_load_sos,
- .ring_init = psp_v13_0_ring_init,
.ring_create = psp_v13_0_ring_create,
.ring_stop = psp_v13_0_ring_stop,
.ring_destroy = psp_v13_0_ring_destroy,
diff --git a/drivers/gpu/drm/amd/amdgpu/psp_v13_0_4.c b/drivers/gpu/drm/amd/amdgpu/psp_v13_0_4.c
index 321089dfa7db..d5ba58eba3e2 100644
--- a/drivers/gpu/drm/amd/amdgpu/psp_v13_0_4.c
+++ b/drivers/gpu/drm/amd/amdgpu/psp_v13_0_4.c
@@ -35,25 +35,17 @@ MODULE_FIRMWARE("amdgpu/psp_13_0_4_ta.bin");
static int psp_v13_0_4_init_microcode(struct psp_context *psp)
{
struct amdgpu_device *adev = psp->adev;
- const char *chip_name;
char ucode_prefix[30];
int err = 0;
- switch (adev->ip_versions[MP0_HWIP][0]) {
- case IP_VERSION(13, 0, 4):
- amdgpu_ucode_ip_version_decode(adev, MP0_HWIP, ucode_prefix, sizeof(ucode_prefix));
- chip_name = ucode_prefix;
- break;
- default:
- BUG();
- }
+ amdgpu_ucode_ip_version_decode(adev, MP0_HWIP, ucode_prefix, sizeof(ucode_prefix));
switch (adev->ip_versions[MP0_HWIP][0]) {
case IP_VERSION(13, 0, 4):
- err = psp_init_toc_microcode(psp, chip_name);
+ err = psp_init_toc_microcode(psp, ucode_prefix);
if (err)
return err;
- err = psp_init_ta_microcode(psp, chip_name);
+ err = psp_init_ta_microcode(psp, ucode_prefix);
if (err)
return err;
break;
@@ -199,32 +191,6 @@ static int psp_v13_0_4_bootloader_load_sos(struct psp_context *psp)
return ret;
}
-static int psp_v13_0_4_ring_init(struct psp_context *psp,
- enum psp_ring_type ring_type)
-{
- int ret = 0;
- struct psp_ring *ring;
- struct amdgpu_device *adev = psp->adev;
-
- ring = &psp->km_ring;
-
- ring->ring_type = ring_type;
-
- /* allocate 4k Page of Local Frame Buffer memory for ring */
- ring->ring_size = 0x1000;
- ret = amdgpu_bo_create_kernel(adev, ring->ring_size, PAGE_SIZE,
- AMDGPU_GEM_DOMAIN_VRAM,
- &adev->firmware.rbuf,
- &ring->ring_mem_mc_addr,
- (void **)&ring->ring_mem);
- if (ret) {
- ring->ring_size = 0;
- return ret;
- }
-
- return 0;
-}
-
static int psp_v13_0_4_ring_stop(struct psp_context *psp,
enum psp_ring_type ring_type)
{
@@ -373,7 +339,6 @@ static const struct psp_funcs psp_v13_0_4_funcs = {
.bootloader_load_intf_drv = psp_v13_0_4_bootloader_load_intf_drv,
.bootloader_load_dbg_drv = psp_v13_0_4_bootloader_load_dbg_drv,
.bootloader_load_sos = psp_v13_0_4_bootloader_load_sos,
- .ring_init = psp_v13_0_4_ring_init,
.ring_create = psp_v13_0_4_ring_create,
.ring_stop = psp_v13_0_4_ring_stop,
.ring_destroy = psp_v13_0_4_ring_destroy,
diff --git a/drivers/gpu/drm/amd/amdgpu/psp_v3_1.c b/drivers/gpu/drm/amd/amdgpu/psp_v3_1.c
index 01f3bcc62a6c..f6b75e3e47ff 100644
--- a/drivers/gpu/drm/amd/amdgpu/psp_v3_1.c
+++ b/drivers/gpu/drm/amd/amdgpu/psp_v3_1.c
@@ -57,26 +57,18 @@ static int psp_v3_1_ring_stop(struct psp_context *psp,
static int psp_v3_1_init_microcode(struct psp_context *psp)
{
struct amdgpu_device *adev = psp->adev;
- const char *chip_name;
+ char ucode_prefix[30];
int err = 0;
DRM_DEBUG("\n");
- switch (adev->asic_type) {
- case CHIP_VEGA10:
- chip_name = "vega10";
- break;
- case CHIP_VEGA12:
- chip_name = "vega12";
- break;
- default: BUG();
- }
+ amdgpu_ucode_ip_version_decode(adev, MP0_HWIP, ucode_prefix, sizeof(ucode_prefix));
- err = psp_init_sos_microcode(psp, chip_name);
+ err = psp_init_sos_microcode(psp, ucode_prefix);
if (err)
return err;
- err = psp_init_asd_microcode(psp, chip_name);
+ err = psp_init_asd_microcode(psp, ucode_prefix);
if (err)
return err;
@@ -160,32 +152,6 @@ static int psp_v3_1_bootloader_load_sos(struct psp_context *psp)
return ret;
}
-static int psp_v3_1_ring_init(struct psp_context *psp,
- enum psp_ring_type ring_type)
-{
- int ret = 0;
- struct psp_ring *ring;
- struct amdgpu_device *adev = psp->adev;
-
- ring = &psp->km_ring;
-
- ring->ring_type = ring_type;
-
- /* allocate 4k Page of Local Frame Buffer memory for ring */
- ring->ring_size = 0x1000;
- ret = amdgpu_bo_create_kernel(adev, ring->ring_size, PAGE_SIZE,
- AMDGPU_GEM_DOMAIN_VRAM,
- &adev->firmware.rbuf,
- &ring->ring_mem_mc_addr,
- (void **)&ring->ring_mem);
- if (ret) {
- ring->ring_size = 0;
- return ret;
- }
-
- return 0;
-}
-
static void psp_v3_1_reroute_ih(struct psp_context *psp)
{
struct amdgpu_device *adev = psp->adev;
@@ -401,7 +367,6 @@ static const struct psp_funcs psp_v3_1_funcs = {
.init_microcode = psp_v3_1_init_microcode,
.bootloader_load_sysdrv = psp_v3_1_bootloader_load_sysdrv,
.bootloader_load_sos = psp_v3_1_bootloader_load_sos,
- .ring_init = psp_v3_1_ring_init,
.ring_create = psp_v3_1_ring_create,
.ring_stop = psp_v3_1_ring_stop,
.ring_destroy = psp_v3_1_ring_destroy,
diff --git a/drivers/gpu/drm/amd/amdgpu/sdma_v2_4.c b/drivers/gpu/drm/amd/amdgpu/sdma_v2_4.c
index c52d246a1d96..fd2a7b66ac56 100644
--- a/drivers/gpu/drm/amd/amdgpu/sdma_v2_4.c
+++ b/drivers/gpu/drm/amd/amdgpu/sdma_v2_4.c
@@ -113,10 +113,9 @@ static void sdma_v2_4_init_golden_registers(struct amdgpu_device *adev)
static void sdma_v2_4_free_microcode(struct amdgpu_device *adev)
{
int i;
- for (i = 0; i < adev->sdma.num_instances; i++) {
- release_firmware(adev->sdma.instance[i].fw);
- adev->sdma.instance[i].fw = NULL;
- }
+
+ for (i = 0; i < adev->sdma.num_instances; i++)
+ amdgpu_ucode_release(&adev->sdma.instance[i].fw);
}
/**
@@ -151,10 +150,7 @@ static int sdma_v2_4_init_microcode(struct amdgpu_device *adev)
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_sdma.bin", chip_name);
else
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_sdma1.bin", chip_name);
- err = request_firmware(&adev->sdma.instance[i].fw, fw_name, adev->dev);
- if (err)
- goto out;
- err = amdgpu_ucode_validate(adev->sdma.instance[i].fw);
+ err = amdgpu_ucode_request(adev, &adev->sdma.instance[i].fw, fw_name);
if (err)
goto out;
hdr = (const struct sdma_firmware_header_v1_0 *)adev->sdma.instance[i].fw->data;
@@ -176,10 +172,8 @@ static int sdma_v2_4_init_microcode(struct amdgpu_device *adev)
out:
if (err) {
pr_err("sdma_v2_4: Failed to load firmware \"%s\"\n", fw_name);
- for (i = 0; i < adev->sdma.num_instances; i++) {
- release_firmware(adev->sdma.instance[i].fw);
- adev->sdma.instance[i].fw = NULL;
- }
+ for (i = 0; i < adev->sdma.num_instances; i++)
+ amdgpu_ucode_release(&adev->sdma.instance[i].fw);
}
return err;
}
diff --git a/drivers/gpu/drm/amd/amdgpu/sdma_v3_0.c b/drivers/gpu/drm/amd/amdgpu/sdma_v3_0.c
index 486d9b5c1b9e..e572389089d2 100644
--- a/drivers/gpu/drm/amd/amdgpu/sdma_v3_0.c
+++ b/drivers/gpu/drm/amd/amdgpu/sdma_v3_0.c
@@ -250,10 +250,9 @@ static void sdma_v3_0_init_golden_registers(struct amdgpu_device *adev)
static void sdma_v3_0_free_microcode(struct amdgpu_device *adev)
{
int i;
- for (i = 0; i < adev->sdma.num_instances; i++) {
- release_firmware(adev->sdma.instance[i].fw);
- adev->sdma.instance[i].fw = NULL;
- }
+
+ for (i = 0; i < adev->sdma.num_instances; i++)
+ amdgpu_ucode_release(&adev->sdma.instance[i].fw);
}
/**
@@ -309,10 +308,7 @@ static int sdma_v3_0_init_microcode(struct amdgpu_device *adev)
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_sdma.bin", chip_name);
else
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_sdma1.bin", chip_name);
- err = request_firmware(&adev->sdma.instance[i].fw, fw_name, adev->dev);
- if (err)
- goto out;
- err = amdgpu_ucode_validate(adev->sdma.instance[i].fw);
+ err = amdgpu_ucode_request(adev, &adev->sdma.instance[i].fw, fw_name);
if (err)
goto out;
hdr = (const struct sdma_firmware_header_v1_0 *)adev->sdma.instance[i].fw->data;
@@ -332,10 +328,8 @@ static int sdma_v3_0_init_microcode(struct amdgpu_device *adev)
out:
if (err) {
pr_err("sdma_v3_0: Failed to load firmware \"%s\"\n", fw_name);
- for (i = 0; i < adev->sdma.num_instances; i++) {
- release_firmware(adev->sdma.instance[i].fw);
- adev->sdma.instance[i].fw = NULL;
- }
+ for (i = 0; i < adev->sdma.num_instances; i++)
+ amdgpu_ucode_release(&adev->sdma.instance[i].fw);
}
return err;
}
diff --git a/drivers/gpu/drm/amd/amdgpu/sdma_v4_0.c b/drivers/gpu/drm/amd/amdgpu/sdma_v4_0.c
index 1122bd4eae98..9295ac7edd56 100644
--- a/drivers/gpu/drm/amd/amdgpu/sdma_v4_0.c
+++ b/drivers/gpu/drm/amd/amdgpu/sdma_v4_0.c
@@ -575,60 +575,17 @@ static void sdma_v4_0_setup_ulv(struct amdgpu_device *adev)
// vega10 real chip need to use PSP to load firmware
static int sdma_v4_0_init_microcode(struct amdgpu_device *adev)
{
- const char *chip_name;
- char fw_name[30];
int ret, i;
- DRM_DEBUG("\n");
-
- switch (adev->ip_versions[SDMA0_HWIP][0]) {
- case IP_VERSION(4, 0, 0):
- chip_name = "vega10";
- break;
- case IP_VERSION(4, 0, 1):
- chip_name = "vega12";
- break;
- case IP_VERSION(4, 2, 0):
- chip_name = "vega20";
- break;
- case IP_VERSION(4, 1, 0):
- case IP_VERSION(4, 1, 1):
- if (adev->apu_flags & AMD_APU_IS_RAVEN2)
- chip_name = "raven2";
- else if (adev->apu_flags & AMD_APU_IS_PICASSO)
- chip_name = "picasso";
- else
- chip_name = "raven";
- break;
- case IP_VERSION(4, 2, 2):
- chip_name = "arcturus";
- break;
- case IP_VERSION(4, 1, 2):
- if (adev->apu_flags & AMD_APU_IS_RENOIR)
- chip_name = "renoir";
- else
- chip_name = "green_sardine";
- break;
- case IP_VERSION(4, 4, 0):
- chip_name = "aldebaran";
- break;
- default:
- BUG();
- }
-
for (i = 0; i < adev->sdma.num_instances; i++) {
- if (i == 0)
- snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_sdma.bin", chip_name);
- else
- snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_sdma%d.bin", chip_name, i);
if (adev->ip_versions[SDMA0_HWIP][0] == IP_VERSION(4, 2, 2) ||
adev->ip_versions[SDMA0_HWIP][0] == IP_VERSION(4, 4, 0)) {
/* Acturus & Aldebaran will leverage the same FW memory
for every SDMA instance */
- ret = amdgpu_sdma_init_microcode(adev, fw_name, 0, true);
+ ret = amdgpu_sdma_init_microcode(adev, 0, true);
break;
} else {
- ret = amdgpu_sdma_init_microcode(adev, fw_name, i, false);
+ ret = amdgpu_sdma_init_microcode(adev, i, false);
if (ret)
return ret;
}
@@ -907,13 +864,13 @@ static void sdma_v4_0_ring_emit_fence(struct amdgpu_ring *ring, u64 addr, u64 se
/**
- * sdma_v4_0_gfx_stop - stop the gfx async dma engines
+ * sdma_v4_0_gfx_enable - enable the gfx async dma engines
*
* @adev: amdgpu_device pointer
- *
- * Stop the gfx async dma ring buffers (VEGA10).
+ * @enable: enable SDMA RB/IB
+ * control the gfx async dma ring buffers (VEGA10).
*/
-static void sdma_v4_0_gfx_stop(struct amdgpu_device *adev)
+static void sdma_v4_0_gfx_enable(struct amdgpu_device *adev, bool enable)
{
u32 rb_cntl, ib_cntl;
int i;
@@ -922,10 +879,10 @@ static void sdma_v4_0_gfx_stop(struct amdgpu_device *adev)
for (i = 0; i < adev->sdma.num_instances; i++) {
rb_cntl = RREG32_SDMA(i, mmSDMA0_GFX_RB_CNTL);
- rb_cntl = REG_SET_FIELD(rb_cntl, SDMA0_GFX_RB_CNTL, RB_ENABLE, 0);
+ rb_cntl = REG_SET_FIELD(rb_cntl, SDMA0_GFX_RB_CNTL, RB_ENABLE, enable ? 1 : 0);
WREG32_SDMA(i, mmSDMA0_GFX_RB_CNTL, rb_cntl);
ib_cntl = RREG32_SDMA(i, mmSDMA0_GFX_IB_CNTL);
- ib_cntl = REG_SET_FIELD(ib_cntl, SDMA0_GFX_IB_CNTL, IB_ENABLE, 0);
+ ib_cntl = REG_SET_FIELD(ib_cntl, SDMA0_GFX_IB_CNTL, IB_ENABLE, enable ? 1 : 0);
WREG32_SDMA(i, mmSDMA0_GFX_IB_CNTL, ib_cntl);
}
}
@@ -1044,7 +1001,7 @@ static void sdma_v4_0_enable(struct amdgpu_device *adev, bool enable)
int i;
if (!enable) {
- sdma_v4_0_gfx_stop(adev);
+ sdma_v4_0_gfx_enable(adev, enable);
sdma_v4_0_rlc_stop(adev);
if (adev->sdma.has_page_queue)
sdma_v4_0_page_stop(adev);
@@ -1866,6 +1823,15 @@ static int sdma_v4_0_sw_init(void *handle)
/* doorbell size is 2 dwords, get DWORD offset */
ring->doorbell_index = adev->doorbell_index.sdma_engine[i] << 1;
+ /*
+ * On Arcturus, SDMA instance 5~7 has a different vmhub
+ * type(AMDGPU_MMHUB_1).
+ */
+ if (adev->ip_versions[SDMA0_HWIP][0] == IP_VERSION(4, 2, 2) && i >= 5)
+ ring->vm_hub = AMDGPU_MMHUB_1;
+ else
+ ring->vm_hub = AMDGPU_MMHUB_0;
+
sprintf(ring->name, "sdma%d", i);
r = amdgpu_ring_init(adev, ring, 1024, &adev->sdma.trap_irq,
AMDGPU_SDMA_IRQ_INSTANCE0 + i,
@@ -1884,6 +1850,11 @@ static int sdma_v4_0_sw_init(void *handle)
ring->doorbell_index = adev->doorbell_index.sdma_engine[i] << 1;
ring->doorbell_index += 0x400;
+ if (adev->ip_versions[SDMA0_HWIP][0] == IP_VERSION(4, 2, 2) && i >= 5)
+ ring->vm_hub = AMDGPU_MMHUB_1;
+ else
+ ring->vm_hub = AMDGPU_MMHUB_0;
+
sprintf(ring->name, "page%d", i);
r = amdgpu_ring_init(adev, ring, 1024,
&adev->sdma.trap_irq,
@@ -1894,6 +1865,11 @@ static int sdma_v4_0_sw_init(void *handle)
}
}
+ if (amdgpu_sdma_ras_sw_init(adev)) {
+ dev_err(adev->dev, "Failed to initialize sdma ras block!\n");
+ return -EINVAL;
+ }
+
return r;
}
@@ -1908,7 +1884,7 @@ static int sdma_v4_0_sw_fini(void *handle)
amdgpu_ring_fini(&adev->sdma.instance[i].page);
}
- if (adev->ip_versions[SDMA0_HWIP][0] == IP_VERSION(4, 2, 0) ||
+ if (adev->ip_versions[SDMA0_HWIP][0] == IP_VERSION(4, 2, 2) ||
adev->ip_versions[SDMA0_HWIP][0] == IP_VERSION(4, 4, 0))
amdgpu_sdma_destroy_inst_ctx(adev, true);
else
@@ -1941,9 +1917,11 @@ static int sdma_v4_0_hw_fini(void *handle)
return 0;
}
- for (i = 0; i < adev->sdma.num_instances; i++) {
- amdgpu_irq_put(adev, &adev->sdma.ecc_irq,
- AMDGPU_SDMA_IRQ_INSTANCE0 + i);
+ if (amdgpu_ras_is_supported(adev, AMDGPU_RAS_BLOCK__SDMA)) {
+ for (i = 0; i < adev->sdma.num_instances; i++) {
+ amdgpu_irq_put(adev, &adev->sdma.ecc_irq,
+ AMDGPU_SDMA_IRQ_INSTANCE0 + i);
+ }
}
sdma_v4_0_ctx_switch_enable(adev, false);
@@ -1960,8 +1938,10 @@ static int sdma_v4_0_suspend(void *handle)
struct amdgpu_device *adev = (struct amdgpu_device *)handle;
/* SMU saves SDMA state for us */
- if (adev->in_s0ix)
+ if (adev->in_s0ix) {
+ sdma_v4_0_gfx_enable(adev, false);
return 0;
+ }
return sdma_v4_0_hw_fini(adev);
}
@@ -1971,8 +1951,12 @@ static int sdma_v4_0_resume(void *handle)
struct amdgpu_device *adev = (struct amdgpu_device *)handle;
/* SMU restores SDMA state for us */
- if (adev->in_s0ix)
+ if (adev->in_s0ix) {
+ sdma_v4_0_enable(adev, true);
+ sdma_v4_0_gfx_enable(adev, true);
+ amdgpu_ttm_set_buffer_funcs_status(adev, true);
return 0;
+ }
return sdma_v4_0_hw_init(adev);
}
@@ -2326,44 +2310,6 @@ static const struct amdgpu_ring_funcs sdma_v4_0_ring_funcs = {
.nop = SDMA_PKT_NOP_HEADER_OP(SDMA_OP_NOP),
.support_64bit_ptrs = true,
.secure_submission_supported = true,
- .vmhub = AMDGPU_MMHUB_0,
- .get_rptr = sdma_v4_0_ring_get_rptr,
- .get_wptr = sdma_v4_0_ring_get_wptr,
- .set_wptr = sdma_v4_0_ring_set_wptr,
- .emit_frame_size =
- 6 + /* sdma_v4_0_ring_emit_hdp_flush */
- 3 + /* hdp invalidate */
- 6 + /* sdma_v4_0_ring_emit_pipeline_sync */
- /* sdma_v4_0_ring_emit_vm_flush */
- SOC15_FLUSH_GPU_TLB_NUM_WREG * 3 +
- SOC15_FLUSH_GPU_TLB_NUM_REG_WAIT * 6 +
- 10 + 10 + 10, /* sdma_v4_0_ring_emit_fence x3 for user fence, vm fence */
- .emit_ib_size = 7 + 6, /* sdma_v4_0_ring_emit_ib */
- .emit_ib = sdma_v4_0_ring_emit_ib,
- .emit_fence = sdma_v4_0_ring_emit_fence,
- .emit_pipeline_sync = sdma_v4_0_ring_emit_pipeline_sync,
- .emit_vm_flush = sdma_v4_0_ring_emit_vm_flush,
- .emit_hdp_flush = sdma_v4_0_ring_emit_hdp_flush,
- .test_ring = sdma_v4_0_ring_test_ring,
- .test_ib = sdma_v4_0_ring_test_ib,
- .insert_nop = sdma_v4_0_ring_insert_nop,
- .pad_ib = sdma_v4_0_ring_pad_ib,
- .emit_wreg = sdma_v4_0_ring_emit_wreg,
- .emit_reg_wait = sdma_v4_0_ring_emit_reg_wait,
- .emit_reg_write_reg_wait = amdgpu_ring_emit_reg_write_reg_wait_helper,
-};
-
-/*
- * On Arcturus, SDMA instance 5~7 has a different vmhub type(AMDGPU_MMHUB_1).
- * So create a individual constant ring_funcs for those instances.
- */
-static const struct amdgpu_ring_funcs sdma_v4_0_ring_funcs_2nd_mmhub = {
- .type = AMDGPU_RING_TYPE_SDMA,
- .align_mask = 0xf,
- .nop = SDMA_PKT_NOP_HEADER_OP(SDMA_OP_NOP),
- .support_64bit_ptrs = true,
- .secure_submission_supported = true,
- .vmhub = AMDGPU_MMHUB_1,
.get_rptr = sdma_v4_0_ring_get_rptr,
.get_wptr = sdma_v4_0_ring_get_wptr,
.set_wptr = sdma_v4_0_ring_set_wptr,
@@ -2396,40 +2342,6 @@ static const struct amdgpu_ring_funcs sdma_v4_0_page_ring_funcs = {
.nop = SDMA_PKT_NOP_HEADER_OP(SDMA_OP_NOP),
.support_64bit_ptrs = true,
.secure_submission_supported = true,
- .vmhub = AMDGPU_MMHUB_0,
- .get_rptr = sdma_v4_0_ring_get_rptr,
- .get_wptr = sdma_v4_0_page_ring_get_wptr,
- .set_wptr = sdma_v4_0_page_ring_set_wptr,
- .emit_frame_size =
- 6 + /* sdma_v4_0_ring_emit_hdp_flush */
- 3 + /* hdp invalidate */
- 6 + /* sdma_v4_0_ring_emit_pipeline_sync */
- /* sdma_v4_0_ring_emit_vm_flush */
- SOC15_FLUSH_GPU_TLB_NUM_WREG * 3 +
- SOC15_FLUSH_GPU_TLB_NUM_REG_WAIT * 6 +
- 10 + 10 + 10, /* sdma_v4_0_ring_emit_fence x3 for user fence, vm fence */
- .emit_ib_size = 7 + 6, /* sdma_v4_0_ring_emit_ib */
- .emit_ib = sdma_v4_0_ring_emit_ib,
- .emit_fence = sdma_v4_0_ring_emit_fence,
- .emit_pipeline_sync = sdma_v4_0_ring_emit_pipeline_sync,
- .emit_vm_flush = sdma_v4_0_ring_emit_vm_flush,
- .emit_hdp_flush = sdma_v4_0_ring_emit_hdp_flush,
- .test_ring = sdma_v4_0_ring_test_ring,
- .test_ib = sdma_v4_0_ring_test_ib,
- .insert_nop = sdma_v4_0_ring_insert_nop,
- .pad_ib = sdma_v4_0_ring_pad_ib,
- .emit_wreg = sdma_v4_0_ring_emit_wreg,
- .emit_reg_wait = sdma_v4_0_ring_emit_reg_wait,
- .emit_reg_write_reg_wait = amdgpu_ring_emit_reg_write_reg_wait_helper,
-};
-
-static const struct amdgpu_ring_funcs sdma_v4_0_page_ring_funcs_2nd_mmhub = {
- .type = AMDGPU_RING_TYPE_SDMA,
- .align_mask = 0xf,
- .nop = SDMA_PKT_NOP_HEADER_OP(SDMA_OP_NOP),
- .support_64bit_ptrs = true,
- .secure_submission_supported = true,
- .vmhub = AMDGPU_MMHUB_1,
.get_rptr = sdma_v4_0_ring_get_rptr,
.get_wptr = sdma_v4_0_page_ring_get_wptr,
.set_wptr = sdma_v4_0_page_ring_set_wptr,
@@ -2461,19 +2373,10 @@ static void sdma_v4_0_set_ring_funcs(struct amdgpu_device *adev)
int i;
for (i = 0; i < adev->sdma.num_instances; i++) {
- if (adev->ip_versions[SDMA0_HWIP][0] == IP_VERSION(4, 2, 2) && i >= 5)
- adev->sdma.instance[i].ring.funcs =
- &sdma_v4_0_ring_funcs_2nd_mmhub;
- else
- adev->sdma.instance[i].ring.funcs =
- &sdma_v4_0_ring_funcs;
+ adev->sdma.instance[i].ring.funcs = &sdma_v4_0_ring_funcs;
adev->sdma.instance[i].ring.me = i;
if (adev->sdma.has_page_queue) {
- if (adev->ip_versions[SDMA0_HWIP][0] == IP_VERSION(4, 2, 2) && i >= 5)
- adev->sdma.instance[i].page.funcs =
- &sdma_v4_0_page_ring_funcs_2nd_mmhub;
- else
- adev->sdma.instance[i].page.funcs =
+ adev->sdma.instance[i].page.funcs =
&sdma_v4_0_page_ring_funcs;
adev->sdma.instance[i].page.me = i;
}
@@ -2725,22 +2628,6 @@ static void sdma_v4_0_set_ras_funcs(struct amdgpu_device *adev)
break;
}
- if (adev->sdma.ras) {
- amdgpu_ras_register_ras_block(adev, &adev->sdma.ras->ras_block);
-
- strcpy(adev->sdma.ras->ras_block.ras_comm.name, "sdma");
- adev->sdma.ras->ras_block.ras_comm.block = AMDGPU_RAS_BLOCK__SDMA;
- adev->sdma.ras->ras_block.ras_comm.type = AMDGPU_RAS_ERROR__MULTI_UNCORRECTABLE;
- adev->sdma.ras_if = &adev->sdma.ras->ras_block.ras_comm;
-
- /* If don't define special ras_late_init function, use default ras_late_init */
- if (!adev->sdma.ras->ras_block.ras_late_init)
- adev->sdma.ras->ras_block.ras_late_init = amdgpu_sdma_ras_late_init;
-
- /* If not defined special ras_cb function, use default ras_cb */
- if (!adev->sdma.ras->ras_block.ras_cb)
- adev->sdma.ras->ras_block.ras_cb = amdgpu_sdma_process_ras_data_cb;
- }
}
const struct amdgpu_ip_block_version sdma_v4_0_ip_block = {
diff --git a/drivers/gpu/drm/amd/amdgpu/sdma_v4_4_2.c b/drivers/gpu/drm/amd/amdgpu/sdma_v4_4_2.c
new file mode 100644
index 000000000000..64dcaa2670dd
--- /dev/null
+++ b/drivers/gpu/drm/amd/amdgpu/sdma_v4_4_2.c
@@ -0,0 +1,1967 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ */
+
+#include <linux/delay.h>
+#include <linux/firmware.h>
+#include <linux/module.h>
+#include <linux/pci.h>
+
+#include "amdgpu.h"
+#include "amdgpu_ucode.h"
+#include "amdgpu_trace.h"
+
+#include "sdma/sdma_4_4_2_offset.h"
+#include "sdma/sdma_4_4_2_sh_mask.h"
+
+#include "soc15_common.h"
+#include "soc15.h"
+#include "vega10_sdma_pkt_open.h"
+
+#include "ivsrcid/sdma0/irqsrcs_sdma0_4_0.h"
+#include "ivsrcid/sdma1/irqsrcs_sdma1_4_0.h"
+
+#include "amdgpu_ras.h"
+
+MODULE_FIRMWARE("amdgpu/sdma_4_4_2.bin");
+
+#define WREG32_SDMA(instance, offset, value) \
+ WREG32(sdma_v4_4_2_get_reg_offset(adev, (instance), (offset)), value)
+#define RREG32_SDMA(instance, offset) \
+ RREG32(sdma_v4_4_2_get_reg_offset(adev, (instance), (offset)))
+
+static void sdma_v4_4_2_set_ring_funcs(struct amdgpu_device *adev);
+static void sdma_v4_4_2_set_buffer_funcs(struct amdgpu_device *adev);
+static void sdma_v4_4_2_set_vm_pte_funcs(struct amdgpu_device *adev);
+static void sdma_v4_4_2_set_irq_funcs(struct amdgpu_device *adev);
+
+static u32 sdma_v4_4_2_get_reg_offset(struct amdgpu_device *adev,
+ u32 instance, u32 offset)
+{
+ return (adev->reg_offset[SDMA0_HWIP][instance][0] + offset);
+}
+
+static unsigned sdma_v4_4_2_seq_to_irq_id(int seq_num)
+{
+ switch (seq_num) {
+ case 0:
+ return SOC15_IH_CLIENTID_SDMA0;
+ case 1:
+ return SOC15_IH_CLIENTID_SDMA1;
+ case 2:
+ return SOC15_IH_CLIENTID_SDMA2;
+ case 3:
+ return SOC15_IH_CLIENTID_SDMA3;
+ default:
+ return -EINVAL;
+ }
+}
+
+static int sdma_v4_4_2_irq_id_to_seq(unsigned client_id)
+{
+ switch (client_id) {
+ case SOC15_IH_CLIENTID_SDMA0:
+ return 0;
+ case SOC15_IH_CLIENTID_SDMA1:
+ return 1;
+ case SOC15_IH_CLIENTID_SDMA2:
+ return 2;
+ case SOC15_IH_CLIENTID_SDMA3:
+ return 3;
+ default:
+ return -EINVAL;
+ }
+}
+
+static void sdma_v4_4_2_init_golden_registers(struct amdgpu_device *adev)
+{
+ switch (adev->ip_versions[SDMA0_HWIP][0]) {
+ case IP_VERSION(4, 4, 2):
+ break;
+ default:
+ break;
+ }
+}
+
+/**
+ * sdma_v4_4_2_init_microcode - load ucode images from disk
+ *
+ * @adev: amdgpu_device pointer
+ *
+ * Use the firmware interface to load the ucode images into
+ * the driver (not loaded into hw).
+ * Returns 0 on success, error on failure.
+ */
+static int sdma_v4_4_2_init_microcode(struct amdgpu_device *adev)
+{
+ int ret, i;
+
+ for (i = 0; i < adev->sdma.num_instances; i++) {
+ if (adev->ip_versions[SDMA0_HWIP][0] == IP_VERSION(4, 4, 2)) {
+ ret = amdgpu_sdma_init_microcode(adev, 0, true);
+ break;
+ } else {
+ ret = amdgpu_sdma_init_microcode(adev, i, false);
+ if (ret)
+ return ret;
+ }
+ }
+
+ return ret;
+}
+
+/**
+ * sdma_v4_4_2_ring_get_rptr - get the current read pointer
+ *
+ * @ring: amdgpu ring pointer
+ *
+ * Get the current rptr from the hardware.
+ */
+static uint64_t sdma_v4_4_2_ring_get_rptr(struct amdgpu_ring *ring)
+{
+ u64 *rptr;
+
+ /* XXX check if swapping is necessary on BE */
+ rptr = ((u64 *)&ring->adev->wb.wb[ring->rptr_offs]);
+
+ DRM_DEBUG("rptr before shift == 0x%016llx\n", *rptr);
+ return ((*rptr) >> 2);
+}
+
+/**
+ * sdma_v4_4_2_ring_get_wptr - get the current write pointer
+ *
+ * @ring: amdgpu ring pointer
+ *
+ * Get the current wptr from the hardware.
+ */
+static uint64_t sdma_v4_4_2_ring_get_wptr(struct amdgpu_ring *ring)
+{
+ struct amdgpu_device *adev = ring->adev;
+ u64 wptr;
+
+ if (ring->use_doorbell) {
+ /* XXX check if swapping is necessary on BE */
+ wptr = READ_ONCE(*((u64 *)&adev->wb.wb[ring->wptr_offs]));
+ DRM_DEBUG("wptr/doorbell before shift == 0x%016llx\n", wptr);
+ } else {
+ wptr = RREG32_SDMA(ring->me, regSDMA_GFX_RB_WPTR_HI);
+ wptr = wptr << 32;
+ wptr |= RREG32_SDMA(ring->me, regSDMA_GFX_RB_WPTR);
+ DRM_DEBUG("wptr before shift [%i] wptr == 0x%016llx\n",
+ ring->me, wptr);
+ }
+
+ return wptr >> 2;
+}
+
+/**
+ * sdma_v4_4_2_ring_set_wptr - commit the write pointer
+ *
+ * @ring: amdgpu ring pointer
+ *
+ * Write the wptr back to the hardware.
+ */
+static void sdma_v4_4_2_ring_set_wptr(struct amdgpu_ring *ring)
+{
+ struct amdgpu_device *adev = ring->adev;
+
+ DRM_DEBUG("Setting write pointer\n");
+ if (ring->use_doorbell) {
+ u64 *wb = (u64 *)&adev->wb.wb[ring->wptr_offs];
+
+ DRM_DEBUG("Using doorbell -- "
+ "wptr_offs == 0x%08x "
+ "lower_32_bits(ring->wptr) << 2 == 0x%08x "
+ "upper_32_bits(ring->wptr) << 2 == 0x%08x\n",
+ ring->wptr_offs,
+ lower_32_bits(ring->wptr << 2),
+ upper_32_bits(ring->wptr << 2));
+ /* XXX check if swapping is necessary on BE */
+ WRITE_ONCE(*wb, (ring->wptr << 2));
+ DRM_DEBUG("calling WDOORBELL64(0x%08x, 0x%016llx)\n",
+ ring->doorbell_index, ring->wptr << 2);
+ WDOORBELL64(ring->doorbell_index, ring->wptr << 2);
+ } else {
+ DRM_DEBUG("Not using doorbell -- "
+ "regSDMA%i_GFX_RB_WPTR == 0x%08x "
+ "regSDMA%i_GFX_RB_WPTR_HI == 0x%08x\n",
+ ring->me,
+ lower_32_bits(ring->wptr << 2),
+ ring->me,
+ upper_32_bits(ring->wptr << 2));
+ WREG32_SDMA(ring->me, regSDMA_GFX_RB_WPTR,
+ lower_32_bits(ring->wptr << 2));
+ WREG32_SDMA(ring->me, regSDMA_GFX_RB_WPTR_HI,
+ upper_32_bits(ring->wptr << 2));
+ }
+}
+
+/**
+ * sdma_v4_4_2_page_ring_get_wptr - get the current write pointer
+ *
+ * @ring: amdgpu ring pointer
+ *
+ * Get the current wptr from the hardware.
+ */
+static uint64_t sdma_v4_4_2_page_ring_get_wptr(struct amdgpu_ring *ring)
+{
+ struct amdgpu_device *adev = ring->adev;
+ u64 wptr;
+
+ if (ring->use_doorbell) {
+ /* XXX check if swapping is necessary on BE */
+ wptr = READ_ONCE(*((u64 *)&adev->wb.wb[ring->wptr_offs]));
+ } else {
+ wptr = RREG32_SDMA(ring->me, regSDMA_PAGE_RB_WPTR_HI);
+ wptr = wptr << 32;
+ wptr |= RREG32_SDMA(ring->me, regSDMA_PAGE_RB_WPTR);
+ }
+
+ return wptr >> 2;
+}
+
+/**
+ * sdma_v4_4_2_page_ring_set_wptr - commit the write pointer
+ *
+ * @ring: amdgpu ring pointer
+ *
+ * Write the wptr back to the hardware.
+ */
+static void sdma_v4_4_2_page_ring_set_wptr(struct amdgpu_ring *ring)
+{
+ struct amdgpu_device *adev = ring->adev;
+
+ if (ring->use_doorbell) {
+ u64 *wb = (u64 *)&adev->wb.wb[ring->wptr_offs];
+
+ /* XXX check if swapping is necessary on BE */
+ WRITE_ONCE(*wb, (ring->wptr << 2));
+ WDOORBELL64(ring->doorbell_index, ring->wptr << 2);
+ } else {
+ uint64_t wptr = ring->wptr << 2;
+
+ WREG32_SDMA(ring->me, regSDMA_PAGE_RB_WPTR,
+ lower_32_bits(wptr));
+ WREG32_SDMA(ring->me, regSDMA_PAGE_RB_WPTR_HI,
+ upper_32_bits(wptr));
+ }
+}
+
+static void sdma_v4_4_2_ring_insert_nop(struct amdgpu_ring *ring, uint32_t count)
+{
+ struct amdgpu_sdma_instance *sdma = amdgpu_sdma_get_instance_from_ring(ring);
+ int i;
+
+ for (i = 0; i < count; i++)
+ if (sdma && sdma->burst_nop && (i == 0))
+ amdgpu_ring_write(ring, ring->funcs->nop |
+ SDMA_PKT_NOP_HEADER_COUNT(count - 1));
+ else
+ amdgpu_ring_write(ring, ring->funcs->nop);
+}
+
+/**
+ * sdma_v4_4_2_ring_emit_ib - Schedule an IB on the DMA engine
+ *
+ * @ring: amdgpu ring pointer
+ * @job: job to retrieve vmid from
+ * @ib: IB object to schedule
+ * @flags: unused
+ *
+ * Schedule an IB in the DMA ring.
+ */
+static void sdma_v4_4_2_ring_emit_ib(struct amdgpu_ring *ring,
+ struct amdgpu_job *job,
+ struct amdgpu_ib *ib,
+ uint32_t flags)
+{
+ unsigned vmid = AMDGPU_JOB_GET_VMID(job);
+
+ /* IB packet must end on a 8 DW boundary */
+ sdma_v4_4_2_ring_insert_nop(ring, (2 - lower_32_bits(ring->wptr)) & 7);
+
+ amdgpu_ring_write(ring, SDMA_PKT_HEADER_OP(SDMA_OP_INDIRECT) |
+ SDMA_PKT_INDIRECT_HEADER_VMID(vmid & 0xf));
+ /* base must be 32 byte aligned */
+ amdgpu_ring_write(ring, lower_32_bits(ib->gpu_addr) & 0xffffffe0);
+ amdgpu_ring_write(ring, upper_32_bits(ib->gpu_addr));
+ amdgpu_ring_write(ring, ib->length_dw);
+ amdgpu_ring_write(ring, 0);
+ amdgpu_ring_write(ring, 0);
+
+}
+
+static void sdma_v4_4_2_wait_reg_mem(struct amdgpu_ring *ring,
+ int mem_space, int hdp,
+ uint32_t addr0, uint32_t addr1,
+ uint32_t ref, uint32_t mask,
+ uint32_t inv)
+{
+ amdgpu_ring_write(ring, SDMA_PKT_HEADER_OP(SDMA_OP_POLL_REGMEM) |
+ SDMA_PKT_POLL_REGMEM_HEADER_HDP_FLUSH(hdp) |
+ SDMA_PKT_POLL_REGMEM_HEADER_MEM_POLL(mem_space) |
+ SDMA_PKT_POLL_REGMEM_HEADER_FUNC(3)); /* == */
+ if (mem_space) {
+ /* memory */
+ amdgpu_ring_write(ring, addr0);
+ amdgpu_ring_write(ring, addr1);
+ } else {
+ /* registers */
+ amdgpu_ring_write(ring, addr0 << 2);
+ amdgpu_ring_write(ring, addr1 << 2);
+ }
+ amdgpu_ring_write(ring, ref); /* reference */
+ amdgpu_ring_write(ring, mask); /* mask */
+ amdgpu_ring_write(ring, SDMA_PKT_POLL_REGMEM_DW5_RETRY_COUNT(0xfff) |
+ SDMA_PKT_POLL_REGMEM_DW5_INTERVAL(inv)); /* retry count, poll interval */
+}
+
+/**
+ * sdma_v4_4_2_ring_emit_hdp_flush - emit an hdp flush on the DMA ring
+ *
+ * @ring: amdgpu ring pointer
+ *
+ * Emit an hdp flush packet on the requested DMA ring.
+ */
+static void sdma_v4_4_2_ring_emit_hdp_flush(struct amdgpu_ring *ring)
+{
+ struct amdgpu_device *adev = ring->adev;
+ u32 ref_and_mask = 0;
+ const struct nbio_hdp_flush_reg *nbio_hf_reg = adev->nbio.hdp_flush_reg;
+
+ ref_and_mask = nbio_hf_reg->ref_and_mask_sdma0 << ring->me;
+
+ sdma_v4_4_2_wait_reg_mem(ring, 0, 1,
+ adev->nbio.funcs->get_hdp_flush_done_offset(adev),
+ adev->nbio.funcs->get_hdp_flush_req_offset(adev),
+ ref_and_mask, ref_and_mask, 10);
+}
+
+/**
+ * sdma_v4_4_2_ring_emit_fence - emit a fence on the DMA ring
+ *
+ * @ring: amdgpu ring pointer
+ * @addr: address
+ * @seq: sequence number
+ * @flags: fence related flags
+ *
+ * Add a DMA fence packet to the ring to write
+ * the fence seq number and DMA trap packet to generate
+ * an interrupt if needed.
+ */
+static void sdma_v4_4_2_ring_emit_fence(struct amdgpu_ring *ring, u64 addr, u64 seq,
+ unsigned flags)
+{
+ bool write64bit = flags & AMDGPU_FENCE_FLAG_64BIT;
+ /* write the fence */
+ amdgpu_ring_write(ring, SDMA_PKT_HEADER_OP(SDMA_OP_FENCE));
+ /* zero in first two bits */
+ BUG_ON(addr & 0x3);
+ amdgpu_ring_write(ring, lower_32_bits(addr));
+ amdgpu_ring_write(ring, upper_32_bits(addr));
+ amdgpu_ring_write(ring, lower_32_bits(seq));
+
+ /* optionally write high bits as well */
+ if (write64bit) {
+ addr += 4;
+ amdgpu_ring_write(ring, SDMA_PKT_HEADER_OP(SDMA_OP_FENCE));
+ /* zero in first two bits */
+ BUG_ON(addr & 0x3);
+ amdgpu_ring_write(ring, lower_32_bits(addr));
+ amdgpu_ring_write(ring, upper_32_bits(addr));
+ amdgpu_ring_write(ring, upper_32_bits(seq));
+ }
+
+ /* generate an interrupt */
+ amdgpu_ring_write(ring, SDMA_PKT_HEADER_OP(SDMA_OP_TRAP));
+ amdgpu_ring_write(ring, SDMA_PKT_TRAP_INT_CONTEXT_INT_CONTEXT(0));
+}
+
+
+/**
+ * sdma_v4_4_2_gfx_stop - stop the gfx async dma engines
+ *
+ * @adev: amdgpu_device pointer
+ *
+ * Stop the gfx async dma ring buffers.
+ */
+static void sdma_v4_4_2_gfx_stop(struct amdgpu_device *adev)
+{
+ struct amdgpu_ring *sdma[AMDGPU_MAX_SDMA_INSTANCES];
+ u32 rb_cntl, ib_cntl;
+ int i, unset = 0;
+
+ for (i = 0; i < adev->sdma.num_instances; i++) {
+ sdma[i] = &adev->sdma.instance[i].ring;
+
+ if ((adev->mman.buffer_funcs_ring == sdma[i]) && unset != 1) {
+ amdgpu_ttm_set_buffer_funcs_status(adev, false);
+ unset = 1;
+ }
+
+ rb_cntl = RREG32_SDMA(i, regSDMA_GFX_RB_CNTL);
+ rb_cntl = REG_SET_FIELD(rb_cntl, SDMA_GFX_RB_CNTL, RB_ENABLE, 0);
+ WREG32_SDMA(i, regSDMA_GFX_RB_CNTL, rb_cntl);
+ ib_cntl = RREG32_SDMA(i, regSDMA_GFX_IB_CNTL);
+ ib_cntl = REG_SET_FIELD(ib_cntl, SDMA_GFX_IB_CNTL, IB_ENABLE, 0);
+ WREG32_SDMA(i, regSDMA_GFX_IB_CNTL, ib_cntl);
+ }
+}
+
+/**
+ * sdma_v4_4_2_rlc_stop - stop the compute async dma engines
+ *
+ * @adev: amdgpu_device pointer
+ *
+ * Stop the compute async dma queues.
+ */
+static void sdma_v4_4_2_rlc_stop(struct amdgpu_device *adev)
+{
+ /* XXX todo */
+}
+
+/**
+ * sdma_v4_4_2_page_stop - stop the page async dma engines
+ *
+ * @adev: amdgpu_device pointer
+ *
+ * Stop the page async dma ring buffers.
+ */
+static void sdma_v4_4_2_page_stop(struct amdgpu_device *adev)
+{
+ struct amdgpu_ring *sdma[AMDGPU_MAX_SDMA_INSTANCES];
+ u32 rb_cntl, ib_cntl;
+ int i;
+ bool unset = false;
+
+ for (i = 0; i < adev->sdma.num_instances; i++) {
+ sdma[i] = &adev->sdma.instance[i].page;
+
+ if ((adev->mman.buffer_funcs_ring == sdma[i]) &&
+ (!unset)) {
+ amdgpu_ttm_set_buffer_funcs_status(adev, false);
+ unset = true;
+ }
+
+ rb_cntl = RREG32_SDMA(i, regSDMA_PAGE_RB_CNTL);
+ rb_cntl = REG_SET_FIELD(rb_cntl, SDMA_PAGE_RB_CNTL,
+ RB_ENABLE, 0);
+ WREG32_SDMA(i, regSDMA_PAGE_RB_CNTL, rb_cntl);
+ ib_cntl = RREG32_SDMA(i, regSDMA_PAGE_IB_CNTL);
+ ib_cntl = REG_SET_FIELD(ib_cntl, SDMA_PAGE_IB_CNTL,
+ IB_ENABLE, 0);
+ WREG32_SDMA(i, regSDMA_PAGE_IB_CNTL, ib_cntl);
+ }
+}
+
+/**
+ * sdma_v4_4_2_ctx_switch_enable - stop the async dma engines context switch
+ *
+ * @adev: amdgpu_device pointer
+ * @enable: enable/disable the DMA MEs context switch.
+ *
+ * Halt or unhalt the async dma engines context switch.
+ */
+static void sdma_v4_4_2_ctx_switch_enable(struct amdgpu_device *adev, bool enable)
+{
+ u32 f32_cntl, phase_quantum = 0;
+ int i;
+
+ if (amdgpu_sdma_phase_quantum) {
+ unsigned value = amdgpu_sdma_phase_quantum;
+ unsigned unit = 0;
+
+ while (value > (SDMA_PHASE0_QUANTUM__VALUE_MASK >>
+ SDMA_PHASE0_QUANTUM__VALUE__SHIFT)) {
+ value = (value + 1) >> 1;
+ unit++;
+ }
+ if (unit > (SDMA_PHASE0_QUANTUM__UNIT_MASK >>
+ SDMA_PHASE0_QUANTUM__UNIT__SHIFT)) {
+ value = (SDMA_PHASE0_QUANTUM__VALUE_MASK >>
+ SDMA_PHASE0_QUANTUM__VALUE__SHIFT);
+ unit = (SDMA_PHASE0_QUANTUM__UNIT_MASK >>
+ SDMA_PHASE0_QUANTUM__UNIT__SHIFT);
+ WARN_ONCE(1,
+ "clamping sdma_phase_quantum to %uK clock cycles\n",
+ value << unit);
+ }
+ phase_quantum =
+ value << SDMA_PHASE0_QUANTUM__VALUE__SHIFT |
+ unit << SDMA_PHASE0_QUANTUM__UNIT__SHIFT;
+ }
+
+ for (i = 0; i < adev->sdma.num_instances; i++) {
+ f32_cntl = RREG32_SDMA(i, regSDMA_CNTL);
+ f32_cntl = REG_SET_FIELD(f32_cntl, SDMA_CNTL,
+ AUTO_CTXSW_ENABLE, enable ? 1 : 0);
+ if (enable && amdgpu_sdma_phase_quantum) {
+ WREG32_SDMA(i, regSDMA_PHASE0_QUANTUM, phase_quantum);
+ WREG32_SDMA(i, regSDMA_PHASE1_QUANTUM, phase_quantum);
+ WREG32_SDMA(i, regSDMA_PHASE2_QUANTUM, phase_quantum);
+ }
+ WREG32_SDMA(i, regSDMA_CNTL, f32_cntl);
+
+ /* Extend page fault timeout to avoid interrupt storm */
+ WREG32_SDMA(i, regSDMA_UTCL1_TIMEOUT, 0x00800080);
+ }
+
+}
+
+/**
+ * sdma_v4_4_2_enable - stop the async dma engines
+ *
+ * @adev: amdgpu_device pointer
+ * @enable: enable/disable the DMA MEs.
+ *
+ * Halt or unhalt the async dma engines.
+ */
+static void sdma_v4_4_2_enable(struct amdgpu_device *adev, bool enable)
+{
+ u32 f32_cntl;
+ int i;
+
+ if (!enable) {
+ sdma_v4_4_2_gfx_stop(adev);
+ sdma_v4_4_2_rlc_stop(adev);
+ if (adev->sdma.has_page_queue)
+ sdma_v4_4_2_page_stop(adev);
+ }
+
+ for (i = 0; i < adev->sdma.num_instances; i++) {
+ f32_cntl = RREG32_SDMA(i, regSDMA_F32_CNTL);
+ f32_cntl = REG_SET_FIELD(f32_cntl, SDMA_F32_CNTL, HALT, enable ? 0 : 1);
+ WREG32_SDMA(i, regSDMA_F32_CNTL, f32_cntl);
+ }
+}
+
+/*
+ * sdma_v4_4_2_rb_cntl - get parameters for rb_cntl
+ */
+static uint32_t sdma_v4_4_2_rb_cntl(struct amdgpu_ring *ring, uint32_t rb_cntl)
+{
+ /* Set ring buffer size in dwords */
+ uint32_t rb_bufsz = order_base_2(ring->ring_size / 4);
+
+ barrier(); /* work around https://bugs.llvm.org/show_bug.cgi?id=42576 */
+ rb_cntl = REG_SET_FIELD(rb_cntl, SDMA_GFX_RB_CNTL, RB_SIZE, rb_bufsz);
+#ifdef __BIG_ENDIAN
+ rb_cntl = REG_SET_FIELD(rb_cntl, SDMA_GFX_RB_CNTL, RB_SWAP_ENABLE, 1);
+ rb_cntl = REG_SET_FIELD(rb_cntl, SDMA_GFX_RB_CNTL,
+ RPTR_WRITEBACK_SWAP_ENABLE, 1);
+#endif
+ return rb_cntl;
+}
+
+/**
+ * sdma_v4_4_2_gfx_resume - setup and start the async dma engines
+ *
+ * @adev: amdgpu_device pointer
+ * @i: instance to resume
+ *
+ * Set up the gfx DMA ring buffers and enable them.
+ * Returns 0 for success, error for failure.
+ */
+static void sdma_v4_4_2_gfx_resume(struct amdgpu_device *adev, unsigned int i)
+{
+ struct amdgpu_ring *ring = &adev->sdma.instance[i].ring;
+ u32 rb_cntl, ib_cntl, wptr_poll_cntl;
+ u32 wb_offset;
+ u32 doorbell;
+ u32 doorbell_offset;
+ u64 wptr_gpu_addr;
+
+ wb_offset = (ring->rptr_offs * 4);
+
+ rb_cntl = RREG32_SDMA(i, regSDMA_GFX_RB_CNTL);
+ rb_cntl = sdma_v4_4_2_rb_cntl(ring, rb_cntl);
+ WREG32_SDMA(i, regSDMA_GFX_RB_CNTL, rb_cntl);
+
+ /* Initialize the ring buffer's read and write pointers */
+ WREG32_SDMA(i, regSDMA_GFX_RB_RPTR, 0);
+ WREG32_SDMA(i, regSDMA_GFX_RB_RPTR_HI, 0);
+ WREG32_SDMA(i, regSDMA_GFX_RB_WPTR, 0);
+ WREG32_SDMA(i, regSDMA_GFX_RB_WPTR_HI, 0);
+
+ /* set the wb address whether it's enabled or not */
+ WREG32_SDMA(i, regSDMA_GFX_RB_RPTR_ADDR_HI,
+ upper_32_bits(adev->wb.gpu_addr + wb_offset) & 0xFFFFFFFF);
+ WREG32_SDMA(i, regSDMA_GFX_RB_RPTR_ADDR_LO,
+ lower_32_bits(adev->wb.gpu_addr + wb_offset) & 0xFFFFFFFC);
+
+ rb_cntl = REG_SET_FIELD(rb_cntl, SDMA_GFX_RB_CNTL,
+ RPTR_WRITEBACK_ENABLE, 1);
+
+ WREG32_SDMA(i, regSDMA_GFX_RB_BASE, ring->gpu_addr >> 8);
+ WREG32_SDMA(i, regSDMA_GFX_RB_BASE_HI, ring->gpu_addr >> 40);
+
+ ring->wptr = 0;
+
+ /* before programing wptr to a less value, need set minor_ptr_update first */
+ WREG32_SDMA(i, regSDMA_GFX_MINOR_PTR_UPDATE, 1);
+
+ doorbell = RREG32_SDMA(i, regSDMA_GFX_DOORBELL);
+ doorbell_offset = RREG32_SDMA(i, regSDMA_GFX_DOORBELL_OFFSET);
+
+ doorbell = REG_SET_FIELD(doorbell, SDMA_GFX_DOORBELL, ENABLE,
+ ring->use_doorbell);
+ doorbell_offset = REG_SET_FIELD(doorbell_offset,
+ SDMA_GFX_DOORBELL_OFFSET,
+ OFFSET, ring->doorbell_index);
+ WREG32_SDMA(i, regSDMA_GFX_DOORBELL, doorbell);
+ WREG32_SDMA(i, regSDMA_GFX_DOORBELL_OFFSET, doorbell_offset);
+
+ sdma_v4_4_2_ring_set_wptr(ring);
+
+ /* set minor_ptr_update to 0 after wptr programed */
+ WREG32_SDMA(i, regSDMA_GFX_MINOR_PTR_UPDATE, 0);
+
+ /* setup the wptr shadow polling */
+ wptr_gpu_addr = adev->wb.gpu_addr + (ring->wptr_offs * 4);
+ WREG32_SDMA(i, regSDMA_GFX_RB_WPTR_POLL_ADDR_LO,
+ lower_32_bits(wptr_gpu_addr));
+ WREG32_SDMA(i, regSDMA_GFX_RB_WPTR_POLL_ADDR_HI,
+ upper_32_bits(wptr_gpu_addr));
+ wptr_poll_cntl = RREG32_SDMA(i, regSDMA_GFX_RB_WPTR_POLL_CNTL);
+ wptr_poll_cntl = REG_SET_FIELD(wptr_poll_cntl,
+ SDMA_GFX_RB_WPTR_POLL_CNTL,
+ F32_POLL_ENABLE, amdgpu_sriov_vf(adev)? 1 : 0);
+ WREG32_SDMA(i, regSDMA_GFX_RB_WPTR_POLL_CNTL, wptr_poll_cntl);
+
+ /* enable DMA RB */
+ rb_cntl = REG_SET_FIELD(rb_cntl, SDMA_GFX_RB_CNTL, RB_ENABLE, 1);
+ WREG32_SDMA(i, regSDMA_GFX_RB_CNTL, rb_cntl);
+
+ ib_cntl = RREG32_SDMA(i, regSDMA_GFX_IB_CNTL);
+ ib_cntl = REG_SET_FIELD(ib_cntl, SDMA_GFX_IB_CNTL, IB_ENABLE, 1);
+#ifdef __BIG_ENDIAN
+ ib_cntl = REG_SET_FIELD(ib_cntl, SDMA_GFX_IB_CNTL, IB_SWAP_ENABLE, 1);
+#endif
+ /* enable DMA IBs */
+ WREG32_SDMA(i, regSDMA_GFX_IB_CNTL, ib_cntl);
+
+ ring->sched.ready = true;
+}
+
+/**
+ * sdma_v4_4_2_page_resume - setup and start the async dma engines
+ *
+ * @adev: amdgpu_device pointer
+ * @i: instance to resume
+ *
+ * Set up the page DMA ring buffers and enable them.
+ * Returns 0 for success, error for failure.
+ */
+static void sdma_v4_4_2_page_resume(struct amdgpu_device *adev, unsigned int i)
+{
+ struct amdgpu_ring *ring = &adev->sdma.instance[i].page;
+ u32 rb_cntl, ib_cntl, wptr_poll_cntl;
+ u32 wb_offset;
+ u32 doorbell;
+ u32 doorbell_offset;
+ u64 wptr_gpu_addr;
+
+ wb_offset = (ring->rptr_offs * 4);
+
+ rb_cntl = RREG32_SDMA(i, regSDMA_PAGE_RB_CNTL);
+ rb_cntl = sdma_v4_4_2_rb_cntl(ring, rb_cntl);
+ WREG32_SDMA(i, regSDMA_PAGE_RB_CNTL, rb_cntl);
+
+ /* Initialize the ring buffer's read and write pointers */
+ WREG32_SDMA(i, regSDMA_PAGE_RB_RPTR, 0);
+ WREG32_SDMA(i, regSDMA_PAGE_RB_RPTR_HI, 0);
+ WREG32_SDMA(i, regSDMA_PAGE_RB_WPTR, 0);
+ WREG32_SDMA(i, regSDMA_PAGE_RB_WPTR_HI, 0);
+
+ /* set the wb address whether it's enabled or not */
+ WREG32_SDMA(i, regSDMA_PAGE_RB_RPTR_ADDR_HI,
+ upper_32_bits(adev->wb.gpu_addr + wb_offset) & 0xFFFFFFFF);
+ WREG32_SDMA(i, regSDMA_PAGE_RB_RPTR_ADDR_LO,
+ lower_32_bits(adev->wb.gpu_addr + wb_offset) & 0xFFFFFFFC);
+
+ rb_cntl = REG_SET_FIELD(rb_cntl, SDMA_PAGE_RB_CNTL,
+ RPTR_WRITEBACK_ENABLE, 1);
+
+ WREG32_SDMA(i, regSDMA_PAGE_RB_BASE, ring->gpu_addr >> 8);
+ WREG32_SDMA(i, regSDMA_PAGE_RB_BASE_HI, ring->gpu_addr >> 40);
+
+ ring->wptr = 0;
+
+ /* before programing wptr to a less value, need set minor_ptr_update first */
+ WREG32_SDMA(i, regSDMA_PAGE_MINOR_PTR_UPDATE, 1);
+
+ doorbell = RREG32_SDMA(i, regSDMA_PAGE_DOORBELL);
+ doorbell_offset = RREG32_SDMA(i, regSDMA_PAGE_DOORBELL_OFFSET);
+
+ doorbell = REG_SET_FIELD(doorbell, SDMA_PAGE_DOORBELL, ENABLE,
+ ring->use_doorbell);
+ doorbell_offset = REG_SET_FIELD(doorbell_offset,
+ SDMA_PAGE_DOORBELL_OFFSET,
+ OFFSET, ring->doorbell_index);
+ WREG32_SDMA(i, regSDMA_PAGE_DOORBELL, doorbell);
+ WREG32_SDMA(i, regSDMA_PAGE_DOORBELL_OFFSET, doorbell_offset);
+
+ /* paging queue doorbell range is setup at sdma_v4_4_2_gfx_resume */
+ sdma_v4_4_2_page_ring_set_wptr(ring);
+
+ /* set minor_ptr_update to 0 after wptr programed */
+ WREG32_SDMA(i, regSDMA_PAGE_MINOR_PTR_UPDATE, 0);
+
+ /* setup the wptr shadow polling */
+ wptr_gpu_addr = adev->wb.gpu_addr + (ring->wptr_offs * 4);
+ WREG32_SDMA(i, regSDMA_PAGE_RB_WPTR_POLL_ADDR_LO,
+ lower_32_bits(wptr_gpu_addr));
+ WREG32_SDMA(i, regSDMA_PAGE_RB_WPTR_POLL_ADDR_HI,
+ upper_32_bits(wptr_gpu_addr));
+ wptr_poll_cntl = RREG32_SDMA(i, regSDMA_PAGE_RB_WPTR_POLL_CNTL);
+ wptr_poll_cntl = REG_SET_FIELD(wptr_poll_cntl,
+ SDMA_PAGE_RB_WPTR_POLL_CNTL,
+ F32_POLL_ENABLE, amdgpu_sriov_vf(adev)? 1 : 0);
+ WREG32_SDMA(i, regSDMA_PAGE_RB_WPTR_POLL_CNTL, wptr_poll_cntl);
+
+ /* enable DMA RB */
+ rb_cntl = REG_SET_FIELD(rb_cntl, SDMA_PAGE_RB_CNTL, RB_ENABLE, 1);
+ WREG32_SDMA(i, regSDMA_PAGE_RB_CNTL, rb_cntl);
+
+ ib_cntl = RREG32_SDMA(i, regSDMA_PAGE_IB_CNTL);
+ ib_cntl = REG_SET_FIELD(ib_cntl, SDMA_PAGE_IB_CNTL, IB_ENABLE, 1);
+#ifdef __BIG_ENDIAN
+ ib_cntl = REG_SET_FIELD(ib_cntl, SDMA_PAGE_IB_CNTL, IB_SWAP_ENABLE, 1);
+#endif
+ /* enable DMA IBs */
+ WREG32_SDMA(i, regSDMA_PAGE_IB_CNTL, ib_cntl);
+
+ ring->sched.ready = true;
+}
+
+static void sdma_v4_4_2_init_pg(struct amdgpu_device *adev)
+{
+
+}
+
+/**
+ * sdma_v4_4_2_rlc_resume - setup and start the async dma engines
+ *
+ * @adev: amdgpu_device pointer
+ *
+ * Set up the compute DMA queues and enable them.
+ * Returns 0 for success, error for failure.
+ */
+static int sdma_v4_4_2_rlc_resume(struct amdgpu_device *adev)
+{
+ sdma_v4_4_2_init_pg(adev);
+
+ return 0;
+}
+
+/**
+ * sdma_v4_4_2_load_microcode - load the sDMA ME ucode
+ *
+ * @adev: amdgpu_device pointer
+ *
+ * Loads the sDMA0/1 ucode.
+ * Returns 0 for success, -EINVAL if the ucode is not available.
+ */
+static int sdma_v4_4_2_load_microcode(struct amdgpu_device *adev)
+{
+ const struct sdma_firmware_header_v1_0 *hdr;
+ const __le32 *fw_data;
+ u32 fw_size;
+ int i, j;
+
+ /* halt the MEs */
+ sdma_v4_4_2_enable(adev, false);
+
+ for (i = 0; i < adev->sdma.num_instances; i++) {
+ if (!adev->sdma.instance[i].fw)
+ return -EINVAL;
+
+ hdr = (const struct sdma_firmware_header_v1_0 *)adev->sdma.instance[i].fw->data;
+ amdgpu_ucode_print_sdma_hdr(&hdr->header);
+ fw_size = le32_to_cpu(hdr->header.ucode_size_bytes) / 4;
+
+ fw_data = (const __le32 *)
+ (adev->sdma.instance[i].fw->data +
+ le32_to_cpu(hdr->header.ucode_array_offset_bytes));
+
+ WREG32_SDMA(i, regSDMA_UCODE_ADDR, 0);
+
+ for (j = 0; j < fw_size; j++)
+ WREG32_SDMA(i, regSDMA_UCODE_DATA,
+ le32_to_cpup(fw_data++));
+
+ WREG32_SDMA(i, regSDMA_UCODE_ADDR,
+ adev->sdma.instance[i].fw_version);
+ }
+
+ return 0;
+}
+
+/**
+ * sdma_v4_4_2_start - setup and start the async dma engines
+ *
+ * @adev: amdgpu_device pointer
+ *
+ * Set up the DMA engines and enable them.
+ * Returns 0 for success, error for failure.
+ */
+static int sdma_v4_4_2_start(struct amdgpu_device *adev)
+{
+ struct amdgpu_ring *ring;
+ int i, r = 0;
+
+ if (amdgpu_sriov_vf(adev)) {
+ sdma_v4_4_2_ctx_switch_enable(adev, false);
+ sdma_v4_4_2_enable(adev, false);
+ } else {
+ /* bypass sdma microcode loading on Gopher */
+ if (adev->firmware.load_type != AMDGPU_FW_LOAD_PSP &&
+ !(adev->pdev->device == 0x49) && !(adev->pdev->device == 0x50)) {
+ r = sdma_v4_4_2_load_microcode(adev);
+ if (r)
+ return r;
+ }
+
+ /* unhalt the MEs */
+ sdma_v4_4_2_enable(adev, true);
+ /* enable sdma ring preemption */
+ sdma_v4_4_2_ctx_switch_enable(adev, true);
+ }
+
+ /* start the gfx rings and rlc compute queues */
+ for (i = 0; i < adev->sdma.num_instances; i++) {
+ uint32_t temp;
+
+ WREG32_SDMA(i, regSDMA_SEM_WAIT_FAIL_TIMER_CNTL, 0);
+ sdma_v4_4_2_gfx_resume(adev, i);
+ if (adev->sdma.has_page_queue)
+ sdma_v4_4_2_page_resume(adev, i);
+
+ /* set utc l1 enable flag always to 1 */
+ temp = RREG32_SDMA(i, regSDMA_CNTL);
+ temp = REG_SET_FIELD(temp, SDMA_CNTL, UTC_L1_ENABLE, 1);
+ WREG32_SDMA(i, regSDMA_CNTL, temp);
+
+ if (!amdgpu_sriov_vf(adev)) {
+ ring = &adev->sdma.instance[i].ring;
+ adev->nbio.funcs->sdma_doorbell_range(adev, i,
+ ring->use_doorbell, ring->doorbell_index,
+ adev->doorbell_index.sdma_doorbell_range);
+
+ /* unhalt engine */
+ temp = RREG32_SDMA(i, regSDMA_F32_CNTL);
+ temp = REG_SET_FIELD(temp, SDMA_F32_CNTL, HALT, 0);
+ WREG32_SDMA(i, regSDMA_F32_CNTL, temp);
+ }
+ }
+
+ if (amdgpu_sriov_vf(adev)) {
+ sdma_v4_4_2_ctx_switch_enable(adev, true);
+ sdma_v4_4_2_enable(adev, true);
+ } else {
+ r = sdma_v4_4_2_rlc_resume(adev);
+ if (r)
+ return r;
+ }
+
+ for (i = 0; i < adev->sdma.num_instances; i++) {
+ ring = &adev->sdma.instance[i].ring;
+
+ r = amdgpu_ring_test_helper(ring);
+ if (r)
+ return r;
+
+ if (adev->sdma.has_page_queue) {
+ struct amdgpu_ring *page = &adev->sdma.instance[i].page;
+
+ r = amdgpu_ring_test_helper(page);
+ if (r)
+ return r;
+
+ if (adev->mman.buffer_funcs_ring == page)
+ amdgpu_ttm_set_buffer_funcs_status(adev, true);
+ }
+
+ if (adev->mman.buffer_funcs_ring == ring)
+ amdgpu_ttm_set_buffer_funcs_status(adev, true);
+ }
+
+ return r;
+}
+
+/**
+ * sdma_v4_4_2_ring_test_ring - simple async dma engine test
+ *
+ * @ring: amdgpu_ring structure holding ring information
+ *
+ * Test the DMA engine by writing using it to write an
+ * value to memory.
+ * Returns 0 for success, error for failure.
+ */
+static int sdma_v4_4_2_ring_test_ring(struct amdgpu_ring *ring)
+{
+ struct amdgpu_device *adev = ring->adev;
+ unsigned i;
+ unsigned index;
+ int r;
+ u32 tmp;
+ u64 gpu_addr;
+
+ r = amdgpu_device_wb_get(adev, &index);
+ if (r)
+ return r;
+
+ gpu_addr = adev->wb.gpu_addr + (index * 4);
+ tmp = 0xCAFEDEAD;
+ adev->wb.wb[index] = cpu_to_le32(tmp);
+
+ r = amdgpu_ring_alloc(ring, 5);
+ if (r)
+ goto error_free_wb;
+
+ amdgpu_ring_write(ring, SDMA_PKT_HEADER_OP(SDMA_OP_WRITE) |
+ SDMA_PKT_HEADER_SUB_OP(SDMA_SUBOP_WRITE_LINEAR));
+ amdgpu_ring_write(ring, lower_32_bits(gpu_addr));
+ amdgpu_ring_write(ring, upper_32_bits(gpu_addr));
+ amdgpu_ring_write(ring, SDMA_PKT_WRITE_UNTILED_DW_3_COUNT(0));
+ amdgpu_ring_write(ring, 0xDEADBEEF);
+ amdgpu_ring_commit(ring);
+
+ for (i = 0; i < adev->usec_timeout; i++) {
+ tmp = le32_to_cpu(adev->wb.wb[index]);
+ if (tmp == 0xDEADBEEF)
+ break;
+ udelay(1);
+ }
+
+ if (i >= adev->usec_timeout)
+ r = -ETIMEDOUT;
+
+error_free_wb:
+ amdgpu_device_wb_free(adev, index);
+ return r;
+}
+
+/**
+ * sdma_v4_4_2_ring_test_ib - test an IB on the DMA engine
+ *
+ * @ring: amdgpu_ring structure holding ring information
+ * @timeout: timeout value in jiffies, or MAX_SCHEDULE_TIMEOUT
+ *
+ * Test a simple IB in the DMA ring.
+ * Returns 0 on success, error on failure.
+ */
+static int sdma_v4_4_2_ring_test_ib(struct amdgpu_ring *ring, long timeout)
+{
+ struct amdgpu_device *adev = ring->adev;
+ struct amdgpu_ib ib;
+ struct dma_fence *f = NULL;
+ unsigned index;
+ long r;
+ u32 tmp = 0;
+ u64 gpu_addr;
+
+ r = amdgpu_device_wb_get(adev, &index);
+ if (r)
+ return r;
+
+ gpu_addr = adev->wb.gpu_addr + (index * 4);
+ tmp = 0xCAFEDEAD;
+ adev->wb.wb[index] = cpu_to_le32(tmp);
+ memset(&ib, 0, sizeof(ib));
+ r = amdgpu_ib_get(adev, NULL, 256,
+ AMDGPU_IB_POOL_DIRECT, &ib);
+ if (r)
+ goto err0;
+
+ ib.ptr[0] = SDMA_PKT_HEADER_OP(SDMA_OP_WRITE) |
+ SDMA_PKT_HEADER_SUB_OP(SDMA_SUBOP_WRITE_LINEAR);
+ ib.ptr[1] = lower_32_bits(gpu_addr);
+ ib.ptr[2] = upper_32_bits(gpu_addr);
+ ib.ptr[3] = SDMA_PKT_WRITE_UNTILED_DW_3_COUNT(0);
+ ib.ptr[4] = 0xDEADBEEF;
+ ib.ptr[5] = SDMA_PKT_NOP_HEADER_OP(SDMA_OP_NOP);
+ ib.ptr[6] = SDMA_PKT_NOP_HEADER_OP(SDMA_OP_NOP);
+ ib.ptr[7] = SDMA_PKT_NOP_HEADER_OP(SDMA_OP_NOP);
+ ib.length_dw = 8;
+
+ r = amdgpu_ib_schedule(ring, 1, &ib, NULL, &f);
+ if (r)
+ goto err1;
+
+ r = dma_fence_wait_timeout(f, false, timeout);
+ if (r == 0) {
+ r = -ETIMEDOUT;
+ goto err1;
+ } else if (r < 0) {
+ goto err1;
+ }
+ tmp = le32_to_cpu(adev->wb.wb[index]);
+ if (tmp == 0xDEADBEEF)
+ r = 0;
+ else
+ r = -EINVAL;
+
+err1:
+ amdgpu_ib_free(adev, &ib, NULL);
+ dma_fence_put(f);
+err0:
+ amdgpu_device_wb_free(adev, index);
+ return r;
+}
+
+
+/**
+ * sdma_v4_4_2_vm_copy_pte - update PTEs by copying them from the GART
+ *
+ * @ib: indirect buffer to fill with commands
+ * @pe: addr of the page entry
+ * @src: src addr to copy from
+ * @count: number of page entries to update
+ *
+ * Update PTEs by copying them from the GART using sDMA.
+ */
+static void sdma_v4_4_2_vm_copy_pte(struct amdgpu_ib *ib,
+ uint64_t pe, uint64_t src,
+ unsigned count)
+{
+ unsigned bytes = count * 8;
+
+ ib->ptr[ib->length_dw++] = SDMA_PKT_HEADER_OP(SDMA_OP_COPY) |
+ SDMA_PKT_HEADER_SUB_OP(SDMA_SUBOP_COPY_LINEAR);
+ ib->ptr[ib->length_dw++] = bytes - 1;
+ ib->ptr[ib->length_dw++] = 0; /* src/dst endian swap */
+ ib->ptr[ib->length_dw++] = lower_32_bits(src);
+ ib->ptr[ib->length_dw++] = upper_32_bits(src);
+ ib->ptr[ib->length_dw++] = lower_32_bits(pe);
+ ib->ptr[ib->length_dw++] = upper_32_bits(pe);
+
+}
+
+/**
+ * sdma_v4_4_2_vm_write_pte - update PTEs by writing them manually
+ *
+ * @ib: indirect buffer to fill with commands
+ * @pe: addr of the page entry
+ * @value: dst addr to write into pe
+ * @count: number of page entries to update
+ * @incr: increase next addr by incr bytes
+ *
+ * Update PTEs by writing them manually using sDMA.
+ */
+static void sdma_v4_4_2_vm_write_pte(struct amdgpu_ib *ib, uint64_t pe,
+ uint64_t value, unsigned count,
+ uint32_t incr)
+{
+ unsigned ndw = count * 2;
+
+ ib->ptr[ib->length_dw++] = SDMA_PKT_HEADER_OP(SDMA_OP_WRITE) |
+ SDMA_PKT_HEADER_SUB_OP(SDMA_SUBOP_WRITE_LINEAR);
+ ib->ptr[ib->length_dw++] = lower_32_bits(pe);
+ ib->ptr[ib->length_dw++] = upper_32_bits(pe);
+ ib->ptr[ib->length_dw++] = ndw - 1;
+ for (; ndw > 0; ndw -= 2) {
+ ib->ptr[ib->length_dw++] = lower_32_bits(value);
+ ib->ptr[ib->length_dw++] = upper_32_bits(value);
+ value += incr;
+ }
+}
+
+/**
+ * sdma_v4_4_2_vm_set_pte_pde - update the page tables using sDMA
+ *
+ * @ib: indirect buffer to fill with commands
+ * @pe: addr of the page entry
+ * @addr: dst addr to write into pe
+ * @count: number of page entries to update
+ * @incr: increase next addr by incr bytes
+ * @flags: access flags
+ *
+ * Update the page tables using sDMA.
+ */
+static void sdma_v4_4_2_vm_set_pte_pde(struct amdgpu_ib *ib,
+ uint64_t pe,
+ uint64_t addr, unsigned count,
+ uint32_t incr, uint64_t flags)
+{
+ /* for physically contiguous pages (vram) */
+ ib->ptr[ib->length_dw++] = SDMA_PKT_HEADER_OP(SDMA_OP_PTEPDE);
+ ib->ptr[ib->length_dw++] = lower_32_bits(pe); /* dst addr */
+ ib->ptr[ib->length_dw++] = upper_32_bits(pe);
+ ib->ptr[ib->length_dw++] = lower_32_bits(flags); /* mask */
+ ib->ptr[ib->length_dw++] = upper_32_bits(flags);
+ ib->ptr[ib->length_dw++] = lower_32_bits(addr); /* value */
+ ib->ptr[ib->length_dw++] = upper_32_bits(addr);
+ ib->ptr[ib->length_dw++] = incr; /* increment size */
+ ib->ptr[ib->length_dw++] = 0;
+ ib->ptr[ib->length_dw++] = count - 1; /* number of entries */
+}
+
+/**
+ * sdma_v4_4_2_ring_pad_ib - pad the IB to the required number of dw
+ *
+ * @ring: amdgpu_ring structure holding ring information
+ * @ib: indirect buffer to fill with padding
+ */
+static void sdma_v4_4_2_ring_pad_ib(struct amdgpu_ring *ring, struct amdgpu_ib *ib)
+{
+ struct amdgpu_sdma_instance *sdma = amdgpu_sdma_get_instance_from_ring(ring);
+ u32 pad_count;
+ int i;
+
+ pad_count = (-ib->length_dw) & 7;
+ for (i = 0; i < pad_count; i++)
+ if (sdma && sdma->burst_nop && (i == 0))
+ ib->ptr[ib->length_dw++] =
+ SDMA_PKT_HEADER_OP(SDMA_OP_NOP) |
+ SDMA_PKT_NOP_HEADER_COUNT(pad_count - 1);
+ else
+ ib->ptr[ib->length_dw++] =
+ SDMA_PKT_HEADER_OP(SDMA_OP_NOP);
+}
+
+
+/**
+ * sdma_v4_4_2_ring_emit_pipeline_sync - sync the pipeline
+ *
+ * @ring: amdgpu_ring pointer
+ *
+ * Make sure all previous operations are completed (CIK).
+ */
+static void sdma_v4_4_2_ring_emit_pipeline_sync(struct amdgpu_ring *ring)
+{
+ uint32_t seq = ring->fence_drv.sync_seq;
+ uint64_t addr = ring->fence_drv.gpu_addr;
+
+ /* wait for idle */
+ sdma_v4_4_2_wait_reg_mem(ring, 1, 0,
+ addr & 0xfffffffc,
+ upper_32_bits(addr) & 0xffffffff,
+ seq, 0xffffffff, 4);
+}
+
+
+/**
+ * sdma_v4_4_2_ring_emit_vm_flush - vm flush using sDMA
+ *
+ * @ring: amdgpu_ring pointer
+ * @vmid: vmid number to use
+ * @pd_addr: address
+ *
+ * Update the page table base and flush the VM TLB
+ * using sDMA.
+ */
+static void sdma_v4_4_2_ring_emit_vm_flush(struct amdgpu_ring *ring,
+ unsigned vmid, uint64_t pd_addr)
+{
+ amdgpu_gmc_emit_flush_gpu_tlb(ring, vmid, pd_addr);
+}
+
+static void sdma_v4_4_2_ring_emit_wreg(struct amdgpu_ring *ring,
+ uint32_t reg, uint32_t val)
+{
+ amdgpu_ring_write(ring, SDMA_PKT_HEADER_OP(SDMA_OP_SRBM_WRITE) |
+ SDMA_PKT_SRBM_WRITE_HEADER_BYTE_EN(0xf));
+ amdgpu_ring_write(ring, reg);
+ amdgpu_ring_write(ring, val);
+}
+
+static void sdma_v4_4_2_ring_emit_reg_wait(struct amdgpu_ring *ring, uint32_t reg,
+ uint32_t val, uint32_t mask)
+{
+ sdma_v4_4_2_wait_reg_mem(ring, 0, 0, reg, 0, val, mask, 10);
+}
+
+static bool sdma_v4_4_2_fw_support_paging_queue(struct amdgpu_device *adev)
+{
+ switch (adev->ip_versions[SDMA0_HWIP][0]) {
+ case IP_VERSION(4, 4, 2):
+ return false;
+ default:
+ return false;
+ }
+}
+
+static int sdma_v4_4_2_early_init(void *handle)
+{
+ struct amdgpu_device *adev = (struct amdgpu_device *)handle;
+ int r;
+
+ r = sdma_v4_4_2_init_microcode(adev);
+ if (r) {
+ DRM_ERROR("Failed to load sdma firmware!\n");
+ return r;
+ }
+
+ /* TODO: Page queue breaks driver reload under SRIOV */
+ if (sdma_v4_4_2_fw_support_paging_queue(adev))
+ adev->sdma.has_page_queue = true;
+
+ sdma_v4_4_2_set_ring_funcs(adev);
+ sdma_v4_4_2_set_buffer_funcs(adev);
+ sdma_v4_4_2_set_vm_pte_funcs(adev);
+ sdma_v4_4_2_set_irq_funcs(adev);
+
+ return 0;
+}
+
+#if 0
+static int sdma_v4_4_2_process_ras_data_cb(struct amdgpu_device *adev,
+ void *err_data,
+ struct amdgpu_iv_entry *entry);
+#endif
+
+static int sdma_v4_4_2_late_init(void *handle)
+{
+ struct amdgpu_device *adev = (struct amdgpu_device *)handle;
+#if 0
+ struct ras_ih_if ih_info = {
+ .cb = sdma_v4_4_2_process_ras_data_cb,
+ };
+#endif
+ if (!amdgpu_persistent_edc_harvesting_supported(adev)) {
+ if (adev->sdma.ras && adev->sdma.ras->ras_block.hw_ops &&
+ adev->sdma.ras->ras_block.hw_ops->reset_ras_error_count)
+ adev->sdma.ras->ras_block.hw_ops->reset_ras_error_count(adev);
+ }
+
+ return 0;
+}
+
+static int sdma_v4_4_2_sw_init(void *handle)
+{
+ struct amdgpu_ring *ring;
+ int r, i;
+ struct amdgpu_device *adev = (struct amdgpu_device *)handle;
+
+ /* SDMA trap event */
+ for (i = 0; i < adev->sdma.num_instances; i++) {
+ r = amdgpu_irq_add_id(adev, sdma_v4_4_2_seq_to_irq_id(i),
+ SDMA0_4_0__SRCID__SDMA_TRAP,
+ &adev->sdma.trap_irq);
+ if (r)
+ return r;
+ }
+
+ /* SDMA SRAM ECC event */
+ for (i = 0; i < adev->sdma.num_instances; i++) {
+ r = amdgpu_irq_add_id(adev, sdma_v4_4_2_seq_to_irq_id(i),
+ SDMA0_4_0__SRCID__SDMA_SRAM_ECC,
+ &adev->sdma.ecc_irq);
+ if (r)
+ return r;
+ }
+
+ /* SDMA VM_HOLE/DOORBELL_INV/POLL_TIMEOUT/SRBM_WRITE_PROTECTION event*/
+ for (i = 0; i < adev->sdma.num_instances; i++) {
+ r = amdgpu_irq_add_id(adev, sdma_v4_4_2_seq_to_irq_id(i),
+ SDMA0_4_0__SRCID__SDMA_VM_HOLE,
+ &adev->sdma.vm_hole_irq);
+ if (r)
+ return r;
+
+ r = amdgpu_irq_add_id(adev, sdma_v4_4_2_seq_to_irq_id(i),
+ SDMA0_4_0__SRCID__SDMA_DOORBELL_INVALID,
+ &adev->sdma.doorbell_invalid_irq);
+ if (r)
+ return r;
+
+ r = amdgpu_irq_add_id(adev, sdma_v4_4_2_seq_to_irq_id(i),
+ SDMA0_4_0__SRCID__SDMA_POLL_TIMEOUT,
+ &adev->sdma.pool_timeout_irq);
+ if (r)
+ return r;
+
+ r = amdgpu_irq_add_id(adev, sdma_v4_4_2_seq_to_irq_id(i),
+ SDMA0_4_0__SRCID__SDMA_SRBMWRITE,
+ &adev->sdma.srbm_write_irq);
+ if (r)
+ return r;
+ }
+
+ for (i = 0; i < adev->sdma.num_instances; i++) {
+ ring = &adev->sdma.instance[i].ring;
+ ring->ring_obj = NULL;
+ ring->use_doorbell = true;
+
+ DRM_DEBUG("SDMA %d use_doorbell being set to: [%s]\n", i,
+ ring->use_doorbell?"true":"false");
+
+ /* doorbell size is 2 dwords, get DWORD offset */
+ ring->doorbell_index = adev->doorbell_index.sdma_engine[i] << 1;
+ ring->vm_hub = AMDGPU_MMHUB_0;
+
+ sprintf(ring->name, "sdma%d", i);
+ r = amdgpu_ring_init(adev, ring, 1024, &adev->sdma.trap_irq,
+ AMDGPU_SDMA_IRQ_INSTANCE0 + i,
+ AMDGPU_RING_PRIO_DEFAULT, NULL);
+ if (r)
+ return r;
+
+ if (adev->sdma.has_page_queue) {
+ ring = &adev->sdma.instance[i].page;
+ ring->ring_obj = NULL;
+ ring->use_doorbell = true;
+
+ /* paging queue use same doorbell index/routing as gfx queue
+ * with 0x400 (4096 dwords) offset on second doorbell page
+ */
+ ring->doorbell_index = adev->doorbell_index.sdma_engine[i] << 1;
+ ring->doorbell_index += 0x400;
+ ring->vm_hub = AMDGPU_MMHUB_0;
+
+ sprintf(ring->name, "page%d", i);
+ r = amdgpu_ring_init(adev, ring, 1024,
+ &adev->sdma.trap_irq,
+ AMDGPU_SDMA_IRQ_INSTANCE0 + i,
+ AMDGPU_RING_PRIO_DEFAULT, NULL);
+ if (r)
+ return r;
+ }
+ }
+
+ return r;
+}
+
+static int sdma_v4_4_2_sw_fini(void *handle)
+{
+ struct amdgpu_device *adev = (struct amdgpu_device *)handle;
+ int i;
+
+ for (i = 0; i < adev->sdma.num_instances; i++) {
+ amdgpu_ring_fini(&adev->sdma.instance[i].ring);
+ if (adev->sdma.has_page_queue)
+ amdgpu_ring_fini(&adev->sdma.instance[i].page);
+ }
+
+ if (adev->ip_versions[SDMA0_HWIP][0] == IP_VERSION(4, 4, 2))
+ amdgpu_sdma_destroy_inst_ctx(adev, true);
+ else
+ amdgpu_sdma_destroy_inst_ctx(adev, false);
+
+ return 0;
+}
+
+static int sdma_v4_4_2_hw_init(void *handle)
+{
+ int r;
+ struct amdgpu_device *adev = (struct amdgpu_device *)handle;
+
+ if (adev->flags & AMD_IS_APU)
+ amdgpu_dpm_set_powergating_by_smu(adev, AMD_IP_BLOCK_TYPE_SDMA, false);
+
+ if (!amdgpu_sriov_vf(adev))
+ sdma_v4_4_2_init_golden_registers(adev);
+
+ r = sdma_v4_4_2_start(adev);
+
+ return r;
+}
+
+static int sdma_v4_4_2_hw_fini(void *handle)
+{
+ struct amdgpu_device *adev = (struct amdgpu_device *)handle;
+ int i;
+
+ if (amdgpu_sriov_vf(adev))
+ return 0;
+
+ for (i = 0; i < adev->sdma.num_instances; i++) {
+ amdgpu_irq_put(adev, &adev->sdma.ecc_irq,
+ AMDGPU_SDMA_IRQ_INSTANCE0 + i);
+ }
+
+ sdma_v4_4_2_ctx_switch_enable(adev, false);
+ sdma_v4_4_2_enable(adev, false);
+
+ return 0;
+}
+
+static int sdma_v4_4_2_suspend(void *handle)
+{
+ struct amdgpu_device *adev = (struct amdgpu_device *)handle;
+
+ return sdma_v4_4_2_hw_fini(adev);
+}
+
+static int sdma_v4_4_2_resume(void *handle)
+{
+ struct amdgpu_device *adev = (struct amdgpu_device *)handle;
+
+ return sdma_v4_4_2_hw_init(adev);
+}
+
+static bool sdma_v4_4_2_is_idle(void *handle)
+{
+ struct amdgpu_device *adev = (struct amdgpu_device *)handle;
+ u32 i;
+
+ for (i = 0; i < adev->sdma.num_instances; i++) {
+ u32 tmp = RREG32_SDMA(i, regSDMA_STATUS_REG);
+
+ if (!(tmp & SDMA_STATUS_REG__IDLE_MASK))
+ return false;
+ }
+
+ return true;
+}
+
+static int sdma_v4_4_2_wait_for_idle(void *handle)
+{
+ unsigned i, j;
+ u32 sdma[AMDGPU_MAX_SDMA_INSTANCES];
+ struct amdgpu_device *adev = (struct amdgpu_device *)handle;
+
+ for (i = 0; i < adev->usec_timeout; i++) {
+ for (j = 0; j < adev->sdma.num_instances; j++) {
+ sdma[j] = RREG32_SDMA(j, regSDMA_STATUS_REG);
+ if (!(sdma[j] & SDMA_STATUS_REG__IDLE_MASK))
+ break;
+ }
+ if (j == adev->sdma.num_instances)
+ return 0;
+ udelay(1);
+ }
+ return -ETIMEDOUT;
+}
+
+static int sdma_v4_4_2_soft_reset(void *handle)
+{
+ /* todo */
+
+ return 0;
+}
+
+static int sdma_v4_4_2_set_trap_irq_state(struct amdgpu_device *adev,
+ struct amdgpu_irq_src *source,
+ unsigned type,
+ enum amdgpu_interrupt_state state)
+{
+ u32 sdma_cntl;
+
+ sdma_cntl = RREG32_SDMA(type, regSDMA_CNTL);
+ sdma_cntl = REG_SET_FIELD(sdma_cntl, SDMA_CNTL, TRAP_ENABLE,
+ state == AMDGPU_IRQ_STATE_ENABLE ? 1 : 0);
+ WREG32_SDMA(type, regSDMA_CNTL, sdma_cntl);
+
+ return 0;
+}
+
+static int sdma_v4_4_2_process_trap_irq(struct amdgpu_device *adev,
+ struct amdgpu_irq_src *source,
+ struct amdgpu_iv_entry *entry)
+{
+ uint32_t instance;
+
+ DRM_DEBUG("IH: SDMA trap\n");
+ instance = sdma_v4_4_2_irq_id_to_seq(entry->client_id);
+ switch (entry->ring_id) {
+ case 0:
+ amdgpu_fence_process(&adev->sdma.instance[instance].ring);
+ break;
+ default:
+ break;
+ }
+ return 0;
+}
+
+#if 0
+static int sdma_v4_4_2_process_ras_data_cb(struct amdgpu_device *adev,
+ void *err_data,
+ struct amdgpu_iv_entry *entry)
+{
+ int instance;
+
+ /* When “Full RAS” is enabled, the per-IP interrupt sources should
+ * be disabled and the driver should only look for the aggregated
+ * interrupt via sync flood
+ */
+ if (amdgpu_ras_is_supported(adev, AMDGPU_RAS_BLOCK__GFX))
+ goto out;
+
+ instance = sdma_v4_4_2_irq_id_to_seq(entry->client_id);
+ if (instance < 0)
+ goto out;
+
+ amdgpu_sdma_process_ras_data_cb(adev, err_data, entry);
+
+out:
+ return AMDGPU_RAS_SUCCESS;
+}
+#endif
+
+static int sdma_v4_4_2_process_illegal_inst_irq(struct amdgpu_device *adev,
+ struct amdgpu_irq_src *source,
+ struct amdgpu_iv_entry *entry)
+{
+ int instance;
+
+ DRM_ERROR("Illegal instruction in SDMA command stream\n");
+
+ instance = sdma_v4_4_2_irq_id_to_seq(entry->client_id);
+ if (instance < 0)
+ return 0;
+
+ switch (entry->ring_id) {
+ case 0:
+ drm_sched_fault(&adev->sdma.instance[instance].ring.sched);
+ break;
+ }
+ return 0;
+}
+
+static int sdma_v4_4_2_set_ecc_irq_state(struct amdgpu_device *adev,
+ struct amdgpu_irq_src *source,
+ unsigned type,
+ enum amdgpu_interrupt_state state)
+{
+ u32 sdma_edc_config;
+
+ sdma_edc_config = RREG32_SDMA(type, regCC_SDMA_EDC_CONFIG);
+ /*
+ * FIXME: This was inherited from Aldebaran, but no this field
+ * definition in the regspec of both Aldebaran and SDMA 4.4.2
+ */
+ sdma_edc_config |= (state == AMDGPU_IRQ_STATE_ENABLE) ? (1 << 2) : 0;
+ WREG32_SDMA(type, regCC_SDMA_EDC_CONFIG, sdma_edc_config);
+
+ return 0;
+}
+
+static int sdma_v4_4_2_print_iv_entry(struct amdgpu_device *adev,
+ struct amdgpu_iv_entry *entry)
+{
+ int instance;
+ struct amdgpu_task_info task_info;
+ u64 addr;
+
+ instance = sdma_v4_4_2_irq_id_to_seq(entry->client_id);
+ if (instance < 0 || instance >= adev->sdma.num_instances) {
+ dev_err(adev->dev, "sdma instance invalid %d\n", instance);
+ return -EINVAL;
+ }
+
+ addr = (u64)entry->src_data[0] << 12;
+ addr |= ((u64)entry->src_data[1] & 0xf) << 44;
+
+ memset(&task_info, 0, sizeof(struct amdgpu_task_info));
+ amdgpu_vm_get_task_info(adev, entry->pasid, &task_info);
+
+ dev_dbg_ratelimited(adev->dev,
+ "[sdma%d] address:0x%016llx src_id:%u ring:%u vmid:%u "
+ "pasid:%u, for process %s pid %d thread %s pid %d\n",
+ instance, addr, entry->src_id, entry->ring_id, entry->vmid,
+ entry->pasid, task_info.process_name, task_info.tgid,
+ task_info.task_name, task_info.pid);
+ return 0;
+}
+
+static int sdma_v4_4_2_process_vm_hole_irq(struct amdgpu_device *adev,
+ struct amdgpu_irq_src *source,
+ struct amdgpu_iv_entry *entry)
+{
+ dev_dbg_ratelimited(adev->dev, "MC or SEM address in VM hole\n");
+ sdma_v4_4_2_print_iv_entry(adev, entry);
+ return 0;
+}
+
+static int sdma_v4_4_2_process_doorbell_invalid_irq(struct amdgpu_device *adev,
+ struct amdgpu_irq_src *source,
+ struct amdgpu_iv_entry *entry)
+{
+
+ dev_dbg_ratelimited(adev->dev, "SDMA received a doorbell from BIF with byte_enable !=0xff\n");
+ sdma_v4_4_2_print_iv_entry(adev, entry);
+ return 0;
+}
+
+static int sdma_v4_4_2_process_pool_timeout_irq(struct amdgpu_device *adev,
+ struct amdgpu_irq_src *source,
+ struct amdgpu_iv_entry *entry)
+{
+ dev_dbg_ratelimited(adev->dev,
+ "Polling register/memory timeout executing POLL_REG/MEM with finite timer\n");
+ sdma_v4_4_2_print_iv_entry(adev, entry);
+ return 0;
+}
+
+static int sdma_v4_4_2_process_srbm_write_irq(struct amdgpu_device *adev,
+ struct amdgpu_irq_src *source,
+ struct amdgpu_iv_entry *entry)
+{
+ dev_dbg_ratelimited(adev->dev,
+ "SDMA gets an Register Write SRBM_WRITE command in non-privilege command buffer\n");
+ sdma_v4_4_2_print_iv_entry(adev, entry);
+ return 0;
+}
+
+static void sdma_v4_4_2_update_medium_grain_clock_gating(
+ struct amdgpu_device *adev,
+ bool enable)
+{
+ uint32_t data, def;
+ int i;
+
+ if (enable && (adev->cg_flags & AMD_CG_SUPPORT_SDMA_MGCG)) {
+ for (i = 0; i < adev->sdma.num_instances; i++) {
+ def = data = RREG32_SDMA(i, regSDMA_CLK_CTRL);
+ data &= ~(SDMA_CLK_CTRL__SOFT_OVERRIDE7_MASK |
+ SDMA_CLK_CTRL__SOFT_OVERRIDE6_MASK |
+ SDMA_CLK_CTRL__SOFT_OVERRIDE5_MASK |
+ SDMA_CLK_CTRL__SOFT_OVERRIDE4_MASK |
+ SDMA_CLK_CTRL__SOFT_OVERRIDE3_MASK |
+ SDMA_CLK_CTRL__SOFT_OVERRIDE2_MASK |
+ SDMA_CLK_CTRL__SOFT_OVERRIDE1_MASK |
+ SDMA_CLK_CTRL__SOFT_OVERRIDE0_MASK);
+ if (def != data)
+ WREG32_SDMA(i, regSDMA_CLK_CTRL, data);
+ }
+ } else {
+ for (i = 0; i < adev->sdma.num_instances; i++) {
+ def = data = RREG32_SDMA(i, regSDMA_CLK_CTRL);
+ data |= (SDMA_CLK_CTRL__SOFT_OVERRIDE7_MASK |
+ SDMA_CLK_CTRL__SOFT_OVERRIDE6_MASK |
+ SDMA_CLK_CTRL__SOFT_OVERRIDE5_MASK |
+ SDMA_CLK_CTRL__SOFT_OVERRIDE4_MASK |
+ SDMA_CLK_CTRL__SOFT_OVERRIDE3_MASK |
+ SDMA_CLK_CTRL__SOFT_OVERRIDE2_MASK |
+ SDMA_CLK_CTRL__SOFT_OVERRIDE1_MASK |
+ SDMA_CLK_CTRL__SOFT_OVERRIDE0_MASK);
+ if (def != data)
+ WREG32_SDMA(i, regSDMA_CLK_CTRL, data);
+ }
+ }
+}
+
+
+static void sdma_v4_4_2_update_medium_grain_light_sleep(
+ struct amdgpu_device *adev,
+ bool enable)
+{
+ uint32_t data, def;
+ int i;
+
+ if (enable && (adev->cg_flags & AMD_CG_SUPPORT_SDMA_LS)) {
+ for (i = 0; i < adev->sdma.num_instances; i++) {
+ /* 1-not override: enable sdma mem light sleep */
+ def = data = RREG32_SDMA(0, regSDMA_POWER_CNTL);
+ data |= SDMA_POWER_CNTL__MEM_POWER_OVERRIDE_MASK;
+ if (def != data)
+ WREG32_SDMA(0, regSDMA_POWER_CNTL, data);
+ }
+ } else {
+ for (i = 0; i < adev->sdma.num_instances; i++) {
+ /* 0-override:disable sdma mem light sleep */
+ def = data = RREG32_SDMA(0, regSDMA_POWER_CNTL);
+ data &= ~SDMA_POWER_CNTL__MEM_POWER_OVERRIDE_MASK;
+ if (def != data)
+ WREG32_SDMA(0, regSDMA_POWER_CNTL, data);
+ }
+ }
+}
+
+static int sdma_v4_4_2_set_clockgating_state(void *handle,
+ enum amd_clockgating_state state)
+{
+ struct amdgpu_device *adev = (struct amdgpu_device *)handle;
+
+ if (amdgpu_sriov_vf(adev))
+ return 0;
+
+ sdma_v4_4_2_update_medium_grain_clock_gating(adev,
+ state == AMD_CG_STATE_GATE);
+ sdma_v4_4_2_update_medium_grain_light_sleep(adev,
+ state == AMD_CG_STATE_GATE);
+ return 0;
+}
+
+static int sdma_v4_4_2_set_powergating_state(void *handle,
+ enum amd_powergating_state state)
+{
+ return 0;
+}
+
+static void sdma_v4_4_2_get_clockgating_state(void *handle, u64 *flags)
+{
+ struct amdgpu_device *adev = (struct amdgpu_device *)handle;
+ int data;
+
+ if (amdgpu_sriov_vf(adev))
+ *flags = 0;
+
+ /* AMD_CG_SUPPORT_SDMA_MGCG */
+ data = RREG32(SOC15_REG_OFFSET(SDMA0, 0, regSDMA_CLK_CTRL));
+ if (!(data & SDMA_CLK_CTRL__SOFT_OVERRIDE7_MASK))
+ *flags |= AMD_CG_SUPPORT_SDMA_MGCG;
+
+ /* AMD_CG_SUPPORT_SDMA_LS */
+ data = RREG32(SOC15_REG_OFFSET(SDMA0, 0, regSDMA_POWER_CNTL));
+ if (data & SDMA_POWER_CNTL__MEM_POWER_OVERRIDE_MASK)
+ *flags |= AMD_CG_SUPPORT_SDMA_LS;
+}
+
+const struct amd_ip_funcs sdma_v4_4_2_ip_funcs = {
+ .name = "sdma_v4_4_2",
+ .early_init = sdma_v4_4_2_early_init,
+ .late_init = sdma_v4_4_2_late_init,
+ .sw_init = sdma_v4_4_2_sw_init,
+ .sw_fini = sdma_v4_4_2_sw_fini,
+ .hw_init = sdma_v4_4_2_hw_init,
+ .hw_fini = sdma_v4_4_2_hw_fini,
+ .suspend = sdma_v4_4_2_suspend,
+ .resume = sdma_v4_4_2_resume,
+ .is_idle = sdma_v4_4_2_is_idle,
+ .wait_for_idle = sdma_v4_4_2_wait_for_idle,
+ .soft_reset = sdma_v4_4_2_soft_reset,
+ .set_clockgating_state = sdma_v4_4_2_set_clockgating_state,
+ .set_powergating_state = sdma_v4_4_2_set_powergating_state,
+ .get_clockgating_state = sdma_v4_4_2_get_clockgating_state,
+};
+
+static const struct amdgpu_ring_funcs sdma_v4_4_2_ring_funcs = {
+ .type = AMDGPU_RING_TYPE_SDMA,
+ .align_mask = 0xf,
+ .nop = SDMA_PKT_NOP_HEADER_OP(SDMA_OP_NOP),
+ .support_64bit_ptrs = true,
+ .get_rptr = sdma_v4_4_2_ring_get_rptr,
+ .get_wptr = sdma_v4_4_2_ring_get_wptr,
+ .set_wptr = sdma_v4_4_2_ring_set_wptr,
+ .emit_frame_size =
+ 6 + /* sdma_v4_4_2_ring_emit_hdp_flush */
+ 3 + /* hdp invalidate */
+ 6 + /* sdma_v4_4_2_ring_emit_pipeline_sync */
+ /* sdma_v4_4_2_ring_emit_vm_flush */
+ SOC15_FLUSH_GPU_TLB_NUM_WREG * 3 +
+ SOC15_FLUSH_GPU_TLB_NUM_REG_WAIT * 6 +
+ 10 + 10 + 10, /* sdma_v4_4_2_ring_emit_fence x3 for user fence, vm fence */
+ .emit_ib_size = 7 + 6, /* sdma_v4_4_2_ring_emit_ib */
+ .emit_ib = sdma_v4_4_2_ring_emit_ib,
+ .emit_fence = sdma_v4_4_2_ring_emit_fence,
+ .emit_pipeline_sync = sdma_v4_4_2_ring_emit_pipeline_sync,
+ .emit_vm_flush = sdma_v4_4_2_ring_emit_vm_flush,
+ .emit_hdp_flush = sdma_v4_4_2_ring_emit_hdp_flush,
+ .test_ring = sdma_v4_4_2_ring_test_ring,
+ .test_ib = sdma_v4_4_2_ring_test_ib,
+ .insert_nop = sdma_v4_4_2_ring_insert_nop,
+ .pad_ib = sdma_v4_4_2_ring_pad_ib,
+ .emit_wreg = sdma_v4_4_2_ring_emit_wreg,
+ .emit_reg_wait = sdma_v4_4_2_ring_emit_reg_wait,
+ .emit_reg_write_reg_wait = amdgpu_ring_emit_reg_write_reg_wait_helper,
+};
+
+static const struct amdgpu_ring_funcs sdma_v4_4_2_page_ring_funcs = {
+ .type = AMDGPU_RING_TYPE_SDMA,
+ .align_mask = 0xf,
+ .nop = SDMA_PKT_NOP_HEADER_OP(SDMA_OP_NOP),
+ .support_64bit_ptrs = true,
+ .get_rptr = sdma_v4_4_2_ring_get_rptr,
+ .get_wptr = sdma_v4_4_2_page_ring_get_wptr,
+ .set_wptr = sdma_v4_4_2_page_ring_set_wptr,
+ .emit_frame_size =
+ 6 + /* sdma_v4_4_2_ring_emit_hdp_flush */
+ 3 + /* hdp invalidate */
+ 6 + /* sdma_v4_4_2_ring_emit_pipeline_sync */
+ /* sdma_v4_4_2_ring_emit_vm_flush */
+ SOC15_FLUSH_GPU_TLB_NUM_WREG * 3 +
+ SOC15_FLUSH_GPU_TLB_NUM_REG_WAIT * 6 +
+ 10 + 10 + 10, /* sdma_v4_4_2_ring_emit_fence x3 for user fence, vm fence */
+ .emit_ib_size = 7 + 6, /* sdma_v4_4_2_ring_emit_ib */
+ .emit_ib = sdma_v4_4_2_ring_emit_ib,
+ .emit_fence = sdma_v4_4_2_ring_emit_fence,
+ .emit_pipeline_sync = sdma_v4_4_2_ring_emit_pipeline_sync,
+ .emit_vm_flush = sdma_v4_4_2_ring_emit_vm_flush,
+ .emit_hdp_flush = sdma_v4_4_2_ring_emit_hdp_flush,
+ .test_ring = sdma_v4_4_2_ring_test_ring,
+ .test_ib = sdma_v4_4_2_ring_test_ib,
+ .insert_nop = sdma_v4_4_2_ring_insert_nop,
+ .pad_ib = sdma_v4_4_2_ring_pad_ib,
+ .emit_wreg = sdma_v4_4_2_ring_emit_wreg,
+ .emit_reg_wait = sdma_v4_4_2_ring_emit_reg_wait,
+ .emit_reg_write_reg_wait = amdgpu_ring_emit_reg_write_reg_wait_helper,
+};
+
+static void sdma_v4_4_2_set_ring_funcs(struct amdgpu_device *adev)
+{
+ int i;
+
+ for (i = 0; i < adev->sdma.num_instances; i++) {
+ adev->sdma.instance[i].ring.funcs = &sdma_v4_4_2_ring_funcs;
+ adev->sdma.instance[i].ring.me = i;
+ if (adev->sdma.has_page_queue) {
+ adev->sdma.instance[i].page.funcs =
+ &sdma_v4_4_2_page_ring_funcs;
+ adev->sdma.instance[i].page.me = i;
+ }
+ }
+}
+
+static const struct amdgpu_irq_src_funcs sdma_v4_4_2_trap_irq_funcs = {
+ .set = sdma_v4_4_2_set_trap_irq_state,
+ .process = sdma_v4_4_2_process_trap_irq,
+};
+
+static const struct amdgpu_irq_src_funcs sdma_v4_4_2_illegal_inst_irq_funcs = {
+ .process = sdma_v4_4_2_process_illegal_inst_irq,
+};
+
+static const struct amdgpu_irq_src_funcs sdma_v4_4_2_ecc_irq_funcs = {
+ .set = sdma_v4_4_2_set_ecc_irq_state,
+ .process = amdgpu_sdma_process_ecc_irq,
+};
+
+static const struct amdgpu_irq_src_funcs sdma_v4_4_2_vm_hole_irq_funcs = {
+ .process = sdma_v4_4_2_process_vm_hole_irq,
+};
+
+static const struct amdgpu_irq_src_funcs sdma_v4_4_2_doorbell_invalid_irq_funcs = {
+ .process = sdma_v4_4_2_process_doorbell_invalid_irq,
+};
+
+static const struct amdgpu_irq_src_funcs sdma_v4_4_2_pool_timeout_irq_funcs = {
+ .process = sdma_v4_4_2_process_pool_timeout_irq,
+};
+
+static const struct amdgpu_irq_src_funcs sdma_v4_4_2_srbm_write_irq_funcs = {
+ .process = sdma_v4_4_2_process_srbm_write_irq,
+};
+
+static void sdma_v4_4_2_set_irq_funcs(struct amdgpu_device *adev)
+{
+ adev->sdma.trap_irq.num_types = adev->sdma.num_instances;
+ adev->sdma.ecc_irq.num_types = adev->sdma.num_instances;
+ adev->sdma.vm_hole_irq.num_types = adev->sdma.num_instances;
+ adev->sdma.doorbell_invalid_irq.num_types = adev->sdma.num_instances;
+ adev->sdma.pool_timeout_irq.num_types = adev->sdma.num_instances;
+ adev->sdma.srbm_write_irq.num_types = adev->sdma.num_instances;
+
+ adev->sdma.trap_irq.funcs = &sdma_v4_4_2_trap_irq_funcs;
+ adev->sdma.illegal_inst_irq.funcs = &sdma_v4_4_2_illegal_inst_irq_funcs;
+ adev->sdma.ecc_irq.funcs = &sdma_v4_4_2_ecc_irq_funcs;
+ adev->sdma.vm_hole_irq.funcs = &sdma_v4_4_2_vm_hole_irq_funcs;
+ adev->sdma.doorbell_invalid_irq.funcs = &sdma_v4_4_2_doorbell_invalid_irq_funcs;
+ adev->sdma.pool_timeout_irq.funcs = &sdma_v4_4_2_pool_timeout_irq_funcs;
+ adev->sdma.srbm_write_irq.funcs = &sdma_v4_4_2_srbm_write_irq_funcs;
+}
+
+/**
+ * sdma_v4_4_2_emit_copy_buffer - copy buffer using the sDMA engine
+ *
+ * @ib: indirect buffer to copy to
+ * @src_offset: src GPU address
+ * @dst_offset: dst GPU address
+ * @byte_count: number of bytes to xfer
+ * @tmz: if a secure copy should be used
+ *
+ * Copy GPU buffers using the DMA engine.
+ * Used by the amdgpu ttm implementation to move pages if
+ * registered as the asic copy callback.
+ */
+static void sdma_v4_4_2_emit_copy_buffer(struct amdgpu_ib *ib,
+ uint64_t src_offset,
+ uint64_t dst_offset,
+ uint32_t byte_count,
+ bool tmz)
+{
+ ib->ptr[ib->length_dw++] = SDMA_PKT_HEADER_OP(SDMA_OP_COPY) |
+ SDMA_PKT_HEADER_SUB_OP(SDMA_SUBOP_COPY_LINEAR) |
+ SDMA_PKT_COPY_LINEAR_HEADER_TMZ(tmz ? 1 : 0);
+ ib->ptr[ib->length_dw++] = byte_count - 1;
+ ib->ptr[ib->length_dw++] = 0; /* src/dst endian swap */
+ ib->ptr[ib->length_dw++] = lower_32_bits(src_offset);
+ ib->ptr[ib->length_dw++] = upper_32_bits(src_offset);
+ ib->ptr[ib->length_dw++] = lower_32_bits(dst_offset);
+ ib->ptr[ib->length_dw++] = upper_32_bits(dst_offset);
+}
+
+/**
+ * sdma_v4_4_2_emit_fill_buffer - fill buffer using the sDMA engine
+ *
+ * @ib: indirect buffer to copy to
+ * @src_data: value to write to buffer
+ * @dst_offset: dst GPU address
+ * @byte_count: number of bytes to xfer
+ *
+ * Fill GPU buffers using the DMA engine.
+ */
+static void sdma_v4_4_2_emit_fill_buffer(struct amdgpu_ib *ib,
+ uint32_t src_data,
+ uint64_t dst_offset,
+ uint32_t byte_count)
+{
+ ib->ptr[ib->length_dw++] = SDMA_PKT_HEADER_OP(SDMA_OP_CONST_FILL);
+ ib->ptr[ib->length_dw++] = lower_32_bits(dst_offset);
+ ib->ptr[ib->length_dw++] = upper_32_bits(dst_offset);
+ ib->ptr[ib->length_dw++] = src_data;
+ ib->ptr[ib->length_dw++] = byte_count - 1;
+}
+
+static const struct amdgpu_buffer_funcs sdma_v4_4_2_buffer_funcs = {
+ .copy_max_bytes = 0x400000,
+ .copy_num_dw = 7,
+ .emit_copy_buffer = sdma_v4_4_2_emit_copy_buffer,
+
+ .fill_max_bytes = 0x400000,
+ .fill_num_dw = 5,
+ .emit_fill_buffer = sdma_v4_4_2_emit_fill_buffer,
+};
+
+static void sdma_v4_4_2_set_buffer_funcs(struct amdgpu_device *adev)
+{
+ adev->mman.buffer_funcs = &sdma_v4_4_2_buffer_funcs;
+ if (adev->sdma.has_page_queue)
+ adev->mman.buffer_funcs_ring = &adev->sdma.instance[0].page;
+ else
+ adev->mman.buffer_funcs_ring = &adev->sdma.instance[0].ring;
+}
+
+static const struct amdgpu_vm_pte_funcs sdma_v4_4_2_vm_pte_funcs = {
+ .copy_pte_num_dw = 7,
+ .copy_pte = sdma_v4_4_2_vm_copy_pte,
+
+ .write_pte = sdma_v4_4_2_vm_write_pte,
+ .set_pte_pde = sdma_v4_4_2_vm_set_pte_pde,
+};
+
+static void sdma_v4_4_2_set_vm_pte_funcs(struct amdgpu_device *adev)
+{
+ struct drm_gpu_scheduler *sched;
+ unsigned i;
+
+ adev->vm_manager.vm_pte_funcs = &sdma_v4_4_2_vm_pte_funcs;
+ for (i = 0; i < adev->sdma.num_instances; i++) {
+ if (adev->sdma.has_page_queue)
+ sched = &adev->sdma.instance[i].page.sched;
+ else
+ sched = &adev->sdma.instance[i].ring.sched;
+ adev->vm_manager.vm_pte_scheds[i] = sched;
+ }
+ adev->vm_manager.vm_pte_num_scheds = adev->sdma.num_instances;
+}
+
+const struct amdgpu_ip_block_version sdma_v4_4_2_ip_block = {
+ .type = AMD_IP_BLOCK_TYPE_SDMA,
+ .major = 4,
+ .minor = 4,
+ .rev = 0,
+ .funcs = &sdma_v4_4_2_ip_funcs,
+};
diff --git a/drivers/gpu/drm/amd/amdgpu/sdma_v4_4_2.h b/drivers/gpu/drm/amd/amdgpu/sdma_v4_4_2.h
new file mode 100644
index 000000000000..4814e8a074d6
--- /dev/null
+++ b/drivers/gpu/drm/amd/amdgpu/sdma_v4_4_2.h
@@ -0,0 +1,30 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ */
+
+#ifndef __SDMA_V4_4_2_H__
+#define __SDMA_V4_4_2_H__
+
+extern const struct amd_ip_funcs sdma_v4_4_2_ip_funcs;
+extern const struct amdgpu_ip_block_version sdma_v4_4_2_ip_block;
+
+#endif
diff --git a/drivers/gpu/drm/amd/amdgpu/sdma_v5_0.c b/drivers/gpu/drm/amd/amdgpu/sdma_v5_0.c
index d4d9f196db83..92e1299be021 100644
--- a/drivers/gpu/drm/amd/amdgpu/sdma_v5_0.c
+++ b/drivers/gpu/drm/amd/amdgpu/sdma_v5_0.c
@@ -237,39 +237,13 @@ static void sdma_v5_0_init_golden_registers(struct amdgpu_device *adev)
// emulation only, won't work on real chip
// navi10 real chip need to use PSP to load firmware
static int sdma_v5_0_init_microcode(struct amdgpu_device *adev)
-{
- const char *chip_name;
- char fw_name[40];
- int ret, i;
+{ int ret, i;
if (amdgpu_sriov_vf(adev) && (adev->ip_versions[SDMA0_HWIP][0] == IP_VERSION(5, 0, 5)))
return 0;
- DRM_DEBUG("\n");
-
- switch (adev->ip_versions[SDMA0_HWIP][0]) {
- case IP_VERSION(5, 0, 0):
- chip_name = "navi10";
- break;
- case IP_VERSION(5, 0, 2):
- chip_name = "navi14";
- break;
- case IP_VERSION(5, 0, 5):
- chip_name = "navi12";
- break;
- case IP_VERSION(5, 0, 1):
- chip_name = "cyan_skillfish2";
- break;
- default:
- BUG();
- }
-
for (i = 0; i < adev->sdma.num_instances; i++) {
- if (i == 0)
- snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_sdma.bin", chip_name);
- else
- snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_sdma1.bin", chip_name);
- ret = amdgpu_sdma_init_microcode(adev, fw_name, i, false);
+ ret = amdgpu_sdma_init_microcode(adev, i, false);
if (ret)
return ret;
}
@@ -1415,6 +1389,7 @@ static int sdma_v5_0_sw_init(void *handle)
(adev->doorbell_index.sdma_engine[0] << 1) //get DWORD offset
: (adev->doorbell_index.sdma_engine[1] << 1); // get DWORD offset
+ ring->vm_hub = AMDGPU_GFXHUB_0;
sprintf(ring->name, "sdma%d", i);
r = amdgpu_ring_init(adev, ring, 1024, &adev->sdma.trap_irq,
(i == 0) ? AMDGPU_SDMA_IRQ_INSTANCE0 :
@@ -1791,7 +1766,6 @@ static const struct amdgpu_ring_funcs sdma_v5_0_ring_funcs = {
.nop = SDMA_PKT_NOP_HEADER_OP(SDMA_OP_NOP),
.support_64bit_ptrs = true,
.secure_submission_supported = true,
- .vmhub = AMDGPU_GFXHUB_0,
.get_rptr = sdma_v5_0_ring_get_rptr,
.get_wptr = sdma_v5_0_ring_get_wptr,
.set_wptr = sdma_v5_0_ring_set_wptr,
diff --git a/drivers/gpu/drm/amd/amdgpu/sdma_v5_2.c b/drivers/gpu/drm/amd/amdgpu/sdma_v5_2.c
index 809eca54fc61..ca7e8757d78e 100644
--- a/drivers/gpu/drm/amd/amdgpu/sdma_v5_2.c
+++ b/drivers/gpu/drm/amd/amdgpu/sdma_v5_2.c
@@ -89,59 +89,6 @@ static u32 sdma_v5_2_get_reg_offset(struct amdgpu_device *adev, u32 instance, u3
return base + internal_offset;
}
-/**
- * sdma_v5_2_init_microcode - load ucode images from disk
- *
- * @adev: amdgpu_device pointer
- *
- * Use the firmware interface to load the ucode images into
- * the driver (not loaded into hw).
- * Returns 0 on success, error on failure.
- */
-
-// emulation only, won't work on real chip
-// navi10 real chip need to use PSP to load firmware
-static int sdma_v5_2_init_microcode(struct amdgpu_device *adev)
-{
- const char *chip_name;
- char fw_name[40];
-
- DRM_DEBUG("\n");
-
- switch (adev->ip_versions[SDMA0_HWIP][0]) {
- case IP_VERSION(5, 2, 0):
- chip_name = "sienna_cichlid_sdma";
- break;
- case IP_VERSION(5, 2, 2):
- chip_name = "navy_flounder_sdma";
- break;
- case IP_VERSION(5, 2, 1):
- chip_name = "vangogh_sdma";
- break;
- case IP_VERSION(5, 2, 4):
- chip_name = "dimgrey_cavefish_sdma";
- break;
- case IP_VERSION(5, 2, 5):
- chip_name = "beige_goby_sdma";
- break;
- case IP_VERSION(5, 2, 3):
- chip_name = "yellow_carp_sdma";
- break;
- case IP_VERSION(5, 2, 6):
- chip_name = "sdma_5_2_6";
- break;
- case IP_VERSION(5, 2, 7):
- chip_name = "sdma_5_2_7";
- break;
- default:
- BUG();
- }
-
- snprintf(fw_name, sizeof(fw_name), "amdgpu/%s.bin", chip_name);
-
- return amdgpu_sdma_init_microcode(adev, fw_name, 0, true);
-}
-
static unsigned sdma_v5_2_ring_init_cond_exec(struct amdgpu_ring *ring)
{
unsigned ret;
@@ -809,12 +756,6 @@ static int sdma_v5_2_start(struct amdgpu_device *adev)
msleep(1000);
}
- /* TODO: check whether can submit a doorbell request to raise
- * a doorbell fence to exit gfxoff.
- */
- if (adev->in_s0ix)
- amdgpu_gfx_off_ctrl(adev, false);
-
sdma_v5_2_soft_reset(adev);
/* unhalt the MEs */
sdma_v5_2_enable(adev, true);
@@ -823,8 +764,6 @@ static int sdma_v5_2_start(struct amdgpu_device *adev)
/* start the gfx rings and rlc compute queues */
r = sdma_v5_2_gfx_resume(adev);
- if (adev->in_s0ix)
- amdgpu_gfx_off_ctrl(adev, true);
if (r)
return r;
r = sdma_v5_2_rlc_resume(adev);
@@ -1296,7 +1235,7 @@ static int sdma_v5_2_sw_init(void *handle)
return r;
}
- r = sdma_v5_2_init_microcode(adev);
+ r = amdgpu_sdma_init_microcode(adev, 0, true);
if (r) {
DRM_ERROR("Failed to load sdma firmware!\n");
return r;
@@ -1314,6 +1253,7 @@ static int sdma_v5_2_sw_init(void *handle)
ring->doorbell_index =
(adev->doorbell_index.sdma_engine[i] << 1); //get DWORD offset
+ ring->vm_hub = AMDGPU_GFXHUB_0;
sprintf(ring->name, "sdma%d", i);
r = amdgpu_ring_init(adev, ring, 1024, &adev->sdma.trap_irq,
AMDGPU_SDMA_IRQ_INSTANCE0 + i,
@@ -1714,7 +1654,6 @@ static const struct amdgpu_ring_funcs sdma_v5_2_ring_funcs = {
.nop = SDMA_PKT_NOP_HEADER_OP(SDMA_OP_NOP),
.support_64bit_ptrs = true,
.secure_submission_supported = true,
- .vmhub = AMDGPU_GFXHUB_0,
.get_rptr = sdma_v5_2_ring_get_rptr,
.get_wptr = sdma_v5_2_ring_get_wptr,
.set_wptr = sdma_v5_2_ring_set_wptr,
diff --git a/drivers/gpu/drm/amd/amdgpu/sdma_v6_0.c b/drivers/gpu/drm/amd/amdgpu/sdma_v6_0.c
index da3beb0bf2fa..3d9a80511a45 100644
--- a/drivers/gpu/drm/amd/amdgpu/sdma_v6_0.c
+++ b/drivers/gpu/drm/amd/amdgpu/sdma_v6_0.c
@@ -78,29 +78,6 @@ static u32 sdma_v6_0_get_reg_offset(struct amdgpu_device *adev, u32 instance, u3
return base + internal_offset;
}
-/**
- * sdma_v6_0_init_microcode - load ucode images from disk
- *
- * @adev: amdgpu_device pointer
- *
- * Use the firmware interface to load the ucode images into
- * the driver (not loaded into hw).
- * Returns 0 on success, error on failure.
- */
-static int sdma_v6_0_init_microcode(struct amdgpu_device *adev)
-{
- char fw_name[30];
- char ucode_prefix[30];
-
- DRM_DEBUG("\n");
-
- amdgpu_ucode_ip_version_decode(adev, SDMA0_HWIP, ucode_prefix, sizeof(ucode_prefix));
-
- snprintf(fw_name, sizeof(fw_name), "amdgpu/%s.bin", ucode_prefix);
-
- return amdgpu_sdma_init_microcode(adev, fw_name, 0, true);
-}
-
static unsigned sdma_v6_0_ring_init_cond_exec(struct amdgpu_ring *ring)
{
unsigned ret;
@@ -296,8 +273,6 @@ static void sdma_v6_0_ring_emit_ib(struct amdgpu_ring *ring,
* sdma_v6_0_ring_emit_mem_sync - flush the IB by graphics cache rinse
*
* @ring: amdgpu ring pointer
- * @job: job to retrieve vmid from
- * @ib: IB object to schedule
*
* flush the IB by graphics cache rinse.
*/
@@ -349,7 +324,9 @@ static void sdma_v6_0_ring_emit_hdp_flush(struct amdgpu_ring *ring)
* sdma_v6_0_ring_emit_fence - emit a fence on the DMA ring
*
* @ring: amdgpu ring pointer
- * @fence: amdgpu fence object
+ * @addr: address
+ * @seq: fence seq number
+ * @flags: fence flags
*
* Add a DMA fence packet to the ring to write
* the fence seq number and DMA trap packet to generate
@@ -426,15 +403,26 @@ static void sdma_v6_0_rlc_stop(struct amdgpu_device *adev)
}
/**
- * sdma_v6_0_ctx_switch_enable - stop the async dma engines context switch
+ * sdma_v6_0_ctxempty_int_enable - enable or disable context empty interrupts
*
* @adev: amdgpu_device pointer
- * @enable: enable/disable the DMA MEs context switch.
+ * @enable: enable/disable context switching due to queue empty conditions
*
- * Halt or unhalt the async dma engines context switch.
+ * Enable or disable the async dma engines queue empty context switch.
*/
-static void sdma_v6_0_ctx_switch_enable(struct amdgpu_device *adev, bool enable)
+static void sdma_v6_0_ctxempty_int_enable(struct amdgpu_device *adev, bool enable)
{
+ u32 f32_cntl;
+ int i;
+
+ if (!amdgpu_sriov_vf(adev)) {
+ for (i = 0; i < adev->sdma.num_instances; i++) {
+ f32_cntl = RREG32(sdma_v6_0_get_reg_offset(adev, i, regSDMA0_CNTL));
+ f32_cntl = REG_SET_FIELD(f32_cntl, SDMA0_CNTL,
+ CTXEMPTY_INT_ENABLE, enable ? 1 : 0);
+ WREG32(sdma_v6_0_get_reg_offset(adev, i, regSDMA0_CNTL), f32_cntl);
+ }
+ }
}
/**
@@ -455,6 +443,9 @@ static void sdma_v6_0_enable(struct amdgpu_device *adev, bool enable)
sdma_v6_0_rlc_stop(adev);
}
+ if (amdgpu_sriov_vf(adev))
+ return;
+
for (i = 0; i < adev->sdma.num_instances; i++) {
f32_cntl = RREG32_SOC15_IP(GC, sdma_v6_0_get_reg_offset(adev, i, regSDMA0_F32_CNTL));
f32_cntl = REG_SET_FIELD(f32_cntl, SDMA0_F32_CNTL, HALT, enable ? 0 : 1);
@@ -519,10 +510,7 @@ static int sdma_v6_0_gfx_resume(struct amdgpu_device *adev)
lower_32_bits(ring->rptr_gpu_addr) & 0xFFFFFFFC);
rb_cntl = REG_SET_FIELD(rb_cntl, SDMA0_QUEUE0_RB_CNTL, RPTR_WRITEBACK_ENABLE, 1);
- if (amdgpu_sriov_vf(adev))
- rb_cntl = REG_SET_FIELD(rb_cntl, SDMA0_QUEUE0_RB_CNTL, WPTR_POLL_ENABLE, 1);
- else
- rb_cntl = REG_SET_FIELD(rb_cntl, SDMA0_QUEUE0_RB_CNTL, WPTR_POLL_ENABLE, 0);
+ rb_cntl = REG_SET_FIELD(rb_cntl, SDMA0_QUEUE0_RB_CNTL, WPTR_POLL_ENABLE, 0);
rb_cntl = REG_SET_FIELD(rb_cntl, SDMA0_QUEUE0_RB_CNTL, F32_WPTR_POLL_ENABLE, 1);
WREG32_SOC15_IP(GC, sdma_v6_0_get_reg_offset(adev, i, regSDMA0_QUEUE0_RB_BASE), ring->gpu_addr >> 8);
@@ -599,10 +587,8 @@ static int sdma_v6_0_gfx_resume(struct amdgpu_device *adev)
ring->sched.ready = true;
- if (amdgpu_sriov_vf(adev)) { /* bare-metal sequence doesn't need below to lines */
- sdma_v6_0_ctx_switch_enable(adev, true);
+ if (amdgpu_sriov_vf(adev))
sdma_v6_0_enable(adev, true);
- }
r = amdgpu_ring_test_helper(ring);
if (r) {
@@ -798,7 +784,6 @@ static int sdma_v6_0_start(struct amdgpu_device *adev)
int r = 0;
if (amdgpu_sriov_vf(adev)) {
- sdma_v6_0_ctx_switch_enable(adev, false);
sdma_v6_0_enable(adev, false);
/* set RB registers */
@@ -819,7 +804,7 @@ static int sdma_v6_0_start(struct amdgpu_device *adev)
/* unhalt the MEs */
sdma_v6_0_enable(adev, true);
/* enable sdma ring preemption */
- sdma_v6_0_ctx_switch_enable(adev, true);
+ sdma_v6_0_ctxempty_int_enable(adev, true);
/* start the gfx rings and rlc compute queues */
r = sdma_v6_0_gfx_resume(adev);
@@ -1080,10 +1065,9 @@ static void sdma_v6_0_vm_copy_pte(struct amdgpu_ib *ib,
*
* @ib: indirect buffer to fill with commands
* @pe: addr of the page entry
- * @addr: dst addr to write into pe
+ * @value: dst addr to write into pe
* @count: number of page entries to update
* @incr: increase next addr by incr bytes
- * @flags: access flags
*
* Update PTEs by writing them manually using sDMA.
*/
@@ -1187,7 +1171,6 @@ static void sdma_v6_0_ring_emit_pipeline_sync(struct amdgpu_ring *ring)
* sdma_v6_0_ring_emit_vm_flush - vm flush using sDMA
*
* @ring: amdgpu_ring pointer
- * @vm: amdgpu_vm pointer
*
* Update the page table base and flush the VM TLB
* using sDMA.
@@ -1195,7 +1178,28 @@ static void sdma_v6_0_ring_emit_pipeline_sync(struct amdgpu_ring *ring)
static void sdma_v6_0_ring_emit_vm_flush(struct amdgpu_ring *ring,
unsigned vmid, uint64_t pd_addr)
{
- amdgpu_gmc_emit_flush_gpu_tlb(ring, vmid, pd_addr);
+ struct amdgpu_vmhub *hub = &ring->adev->vmhub[ring->vm_hub];
+ uint32_t req = hub->vmhub_funcs->get_invalidate_req(vmid, 0);
+
+ /* Update the PD address for this VMID. */
+ amdgpu_ring_emit_wreg(ring, hub->ctx0_ptb_addr_lo32 +
+ (hub->ctx_addr_distance * vmid),
+ lower_32_bits(pd_addr));
+ amdgpu_ring_emit_wreg(ring, hub->ctx0_ptb_addr_hi32 +
+ (hub->ctx_addr_distance * vmid),
+ upper_32_bits(pd_addr));
+
+ /* Trigger invalidation. */
+ amdgpu_ring_write(ring,
+ SDMA_PKT_VM_INVALIDATION_HEADER_OP(SDMA_OP_POLL_REGMEM) |
+ SDMA_PKT_VM_INVALIDATION_HEADER_SUB_OP(SDMA_SUBOP_VM_INVALIDATION) |
+ SDMA_PKT_VM_INVALIDATION_HEADER_GFX_ENG_ID(ring->vm_inv_eng) |
+ SDMA_PKT_VM_INVALIDATION_HEADER_MM_ENG_ID(0x1f));
+ amdgpu_ring_write(ring, req);
+ amdgpu_ring_write(ring, 0xFFFFFFFF);
+ amdgpu_ring_write(ring,
+ SDMA_PKT_VM_INVALIDATION_ADDRESSRANGEHI_INVALIDATEACK(1 << vmid) |
+ SDMA_PKT_VM_INVALIDATION_ADDRESSRANGEHI_ADDRESSRANGEHI(0x1F));
}
static void sdma_v6_0_ring_emit_wreg(struct amdgpu_ring *ring,
@@ -1231,6 +1235,24 @@ static void sdma_v6_0_ring_emit_reg_write_reg_wait(struct amdgpu_ring *ring,
amdgpu_ring_emit_reg_wait(ring, reg1, mask, mask);
}
+static struct amdgpu_sdma_ras sdma_v6_0_3_ras = {
+ .ras_block = {
+ .ras_late_init = amdgpu_ras_block_late_init,
+ },
+};
+
+static void sdma_v6_0_set_ras_funcs(struct amdgpu_device *adev)
+{
+ switch (adev->ip_versions[SDMA0_HWIP][0]) {
+ case IP_VERSION(6, 0, 3):
+ adev->sdma.ras = &sdma_v6_0_3_ras;
+ break;
+ default:
+ break;
+ }
+
+}
+
static int sdma_v6_0_early_init(void *handle)
{
struct amdgpu_device *adev = (struct amdgpu_device *)handle;
@@ -1240,6 +1262,7 @@ static int sdma_v6_0_early_init(void *handle)
sdma_v6_0_set_vm_pte_funcs(adev);
sdma_v6_0_set_irq_funcs(adev);
sdma_v6_0_set_mqd_funcs(adev);
+ sdma_v6_0_set_ras_funcs(adev);
return 0;
}
@@ -1257,7 +1280,7 @@ static int sdma_v6_0_sw_init(void *handle)
if (r)
return r;
- r = sdma_v6_0_init_microcode(adev);
+ r = amdgpu_sdma_init_microcode(adev, 0, true);
if (r) {
DRM_ERROR("Failed to load sdma firmware!\n");
return r;
@@ -1275,6 +1298,7 @@ static int sdma_v6_0_sw_init(void *handle)
ring->doorbell_index =
(adev->doorbell_index.sdma_engine[i] << 1); // get DWORD offset
+ ring->vm_hub = AMDGPU_GFXHUB_0;
sprintf(ring->name, "sdma%d", i);
r = amdgpu_ring_init(adev, ring, 1024,
&adev->sdma.trap_irq,
@@ -1284,6 +1308,11 @@ static int sdma_v6_0_sw_init(void *handle)
return r;
}
+ if (amdgpu_sdma_ras_sw_init(adev)) {
+ dev_err(adev->dev, "Failed to initialize sdma ras block!\n");
+ return -EINVAL;
+ }
+
return r;
}
@@ -1317,7 +1346,7 @@ static int sdma_v6_0_hw_fini(void *handle)
return 0;
}
- sdma_v6_0_ctx_switch_enable(adev, false);
+ sdma_v6_0_ctxempty_int_enable(adev, false);
sdma_v6_0_enable(adev, false);
return 0;
@@ -1423,10 +1452,12 @@ static int sdma_v6_0_set_trap_irq_state(struct amdgpu_device *adev,
u32 reg_offset = sdma_v6_0_get_reg_offset(adev, type, regSDMA0_CNTL);
- sdma_cntl = RREG32(reg_offset);
- sdma_cntl = REG_SET_FIELD(sdma_cntl, SDMA0_CNTL, TRAP_ENABLE,
- state == AMDGPU_IRQ_STATE_ENABLE ? 1 : 0);
- WREG32(reg_offset, sdma_cntl);
+ if (!amdgpu_sriov_vf(adev)) {
+ sdma_cntl = RREG32(reg_offset);
+ sdma_cntl = REG_SET_FIELD(sdma_cntl, SDMA0_CNTL, TRAP_ENABLE,
+ state == AMDGPU_IRQ_STATE_ENABLE ? 1 : 0);
+ WREG32(reg_offset, sdma_cntl);
+ }
return 0;
}
@@ -1523,7 +1554,7 @@ static const struct amdgpu_ring_funcs sdma_v6_0_ring_funcs = {
.align_mask = 0xf,
.nop = SDMA_PKT_NOP_HEADER_OP(SDMA_OP_NOP),
.support_64bit_ptrs = true,
- .vmhub = AMDGPU_GFXHUB_0,
+ .secure_submission_supported = true,
.get_rptr = sdma_v6_0_ring_get_rptr,
.get_wptr = sdma_v6_0_ring_get_wptr,
.set_wptr = sdma_v6_0_ring_set_wptr,
@@ -1584,10 +1615,11 @@ static void sdma_v6_0_set_irq_funcs(struct amdgpu_device *adev)
/**
* sdma_v6_0_emit_copy_buffer - copy buffer using the sDMA engine
*
- * @ring: amdgpu_ring structure holding ring information
+ * @ib: indirect buffer to fill with commands
* @src_offset: src GPU address
* @dst_offset: dst GPU address
* @byte_count: number of bytes to xfer
+ * @tmz: if a secure copy should be used
*
* Copy GPU buffers using the DMA engine.
* Used by the amdgpu ttm implementation to move pages if
@@ -1613,7 +1645,7 @@ static void sdma_v6_0_emit_copy_buffer(struct amdgpu_ib *ib,
/**
* sdma_v6_0_emit_fill_buffer - fill buffer using the sDMA engine
*
- * @ring: amdgpu_ring structure holding ring information
+ * @ib: indirect buffer to fill
* @src_data: value to write to buffer
* @dst_offset: dst GPU address
* @byte_count: number of bytes to xfer
diff --git a/drivers/gpu/drm/amd/amdgpu/si_dma.c b/drivers/gpu/drm/amd/amdgpu/si_dma.c
index 4d5e718540aa..abca8b529721 100644
--- a/drivers/gpu/drm/amd/amdgpu/si_dma.c
+++ b/drivers/gpu/drm/amd/amdgpu/si_dma.c
@@ -112,14 +112,12 @@ static void si_dma_ring_emit_fence(struct amdgpu_ring *ring, u64 addr, u64 seq,
static void si_dma_stop(struct amdgpu_device *adev)
{
- struct amdgpu_ring *ring;
u32 rb_cntl;
unsigned i;
amdgpu_sdma_unset_buffer_funcs_helper(adev);
for (i = 0; i < adev->sdma.num_instances; i++) {
- ring = &adev->sdma.instance[i].ring;
/* dma0 */
rb_cntl = RREG32(DMA_RB_CNTL + sdma_offsets[i]);
rb_cntl &= ~DMA_RB_ENABLE;
diff --git a/drivers/gpu/drm/amd/amdgpu/sienna_cichlid.c b/drivers/gpu/drm/amd/amdgpu/sienna_cichlid.c
index 81a6d5b94987..8b8086d5c864 100644
--- a/drivers/gpu/drm/amd/amdgpu/sienna_cichlid.c
+++ b/drivers/gpu/drm/amd/amdgpu/sienna_cichlid.c
@@ -40,7 +40,7 @@ static bool sienna_cichlid_is_mode2_default(struct amdgpu_reset_control *reset_c
adev->pm.fw_version >= 0x3a5500 && !amdgpu_sriov_vf(adev))
return true;
#endif
- return false;
+ return amdgpu_reset_method == AMD_RESET_METHOD_MODE2;
}
static struct amdgpu_reset_handler *
diff --git a/drivers/gpu/drm/amd/amdgpu/smu_v13_0_10.c b/drivers/gpu/drm/amd/amdgpu/smu_v13_0_10.c
new file mode 100644
index 000000000000..ae29620b1ea4
--- /dev/null
+++ b/drivers/gpu/drm/amd/amdgpu/smu_v13_0_10.c
@@ -0,0 +1,303 @@
+/*
+ * Copyright 2023 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ */
+
+#include "smu_v13_0_10.h"
+#include "amdgpu_reset.h"
+#include "amdgpu_dpm.h"
+#include "amdgpu_job.h"
+#include "amdgpu_ring.h"
+#include "amdgpu_ras.h"
+#include "amdgpu_psp.h"
+
+static bool smu_v13_0_10_is_mode2_default(struct amdgpu_reset_control *reset_ctl)
+{
+ struct amdgpu_device *adev = (struct amdgpu_device *)reset_ctl->handle;
+ if (adev->pm.fw_version >= 0x00502005 && !amdgpu_sriov_vf(adev))
+ return true;
+
+ return false;
+}
+
+static struct amdgpu_reset_handler *
+smu_v13_0_10_get_reset_handler(struct amdgpu_reset_control *reset_ctl,
+ struct amdgpu_reset_context *reset_context)
+{
+ struct amdgpu_reset_handler *handler;
+ struct amdgpu_device *adev = (struct amdgpu_device *)reset_ctl->handle;
+
+ if (reset_context->method != AMD_RESET_METHOD_NONE) {
+ list_for_each_entry(handler, &reset_ctl->reset_handlers,
+ handler_list) {
+ if (handler->reset_method == reset_context->method)
+ return handler;
+ }
+ }
+
+ if (smu_v13_0_10_is_mode2_default(reset_ctl) &&
+ amdgpu_asic_reset_method(adev) == AMD_RESET_METHOD_MODE2) {
+ list_for_each_entry (handler, &reset_ctl->reset_handlers,
+ handler_list) {
+ if (handler->reset_method == AMD_RESET_METHOD_MODE2)
+ return handler;
+ }
+ }
+
+ return NULL;
+}
+
+static int smu_v13_0_10_mode2_suspend_ip(struct amdgpu_device *adev)
+{
+ int r, i;
+
+ amdgpu_device_set_pg_state(adev, AMD_PG_STATE_UNGATE);
+ amdgpu_device_set_cg_state(adev, AMD_CG_STATE_UNGATE);
+
+ for (i = adev->num_ip_blocks - 1; i >= 0; i--) {
+ if (!(adev->ip_blocks[i].version->type ==
+ AMD_IP_BLOCK_TYPE_GFX ||
+ adev->ip_blocks[i].version->type ==
+ AMD_IP_BLOCK_TYPE_SDMA ||
+ adev->ip_blocks[i].version->type ==
+ AMD_IP_BLOCK_TYPE_MES))
+ continue;
+
+ r = adev->ip_blocks[i].version->funcs->suspend(adev);
+
+ if (r) {
+ dev_err(adev->dev,
+ "suspend of IP block <%s> failed %d\n",
+ adev->ip_blocks[i].version->funcs->name, r);
+ return r;
+ }
+ adev->ip_blocks[i].status.hw = false;
+ }
+
+ return r;
+}
+
+static int
+smu_v13_0_10_mode2_prepare_hwcontext(struct amdgpu_reset_control *reset_ctl,
+ struct amdgpu_reset_context *reset_context)
+{
+ int r = 0;
+ struct amdgpu_device *adev = (struct amdgpu_device *)reset_ctl->handle;
+
+ if (!amdgpu_sriov_vf(adev))
+ r = smu_v13_0_10_mode2_suspend_ip(adev);
+
+ return r;
+}
+
+static int smu_v13_0_10_mode2_reset(struct amdgpu_device *adev)
+{
+ return amdgpu_dpm_mode2_reset(adev);
+}
+
+static void smu_v13_0_10_async_reset(struct work_struct *work)
+{
+ struct amdgpu_reset_handler *handler;
+ struct amdgpu_reset_control *reset_ctl =
+ container_of(work, struct amdgpu_reset_control, reset_work);
+ struct amdgpu_device *adev = (struct amdgpu_device *)reset_ctl->handle;
+
+ list_for_each_entry(handler, &reset_ctl->reset_handlers,
+ handler_list) {
+ if (handler->reset_method == reset_ctl->active_reset) {
+ dev_dbg(adev->dev, "Resetting device\n");
+ handler->do_reset(adev);
+ break;
+ }
+ }
+}
+static int
+smu_v13_0_10_mode2_perform_reset(struct amdgpu_reset_control *reset_ctl,
+ struct amdgpu_reset_context *reset_context)
+{
+ struct amdgpu_device *adev = (struct amdgpu_device *)reset_ctl->handle;
+ int r;
+
+ r = smu_v13_0_10_mode2_reset(adev);
+ if (r) {
+ dev_err(adev->dev,
+ "ASIC reset failed with error, %d ", r);
+ }
+ return r;
+}
+
+static int smu_v13_0_10_mode2_restore_ip(struct amdgpu_device *adev)
+{
+ int i, r;
+ struct psp_context *psp = &adev->psp;
+ struct amdgpu_firmware_info *ucode;
+ struct amdgpu_firmware_info *ucode_list[2];
+ int ucode_count = 0;
+
+ for (i = 0; i < adev->firmware.max_ucodes; i++) {
+ ucode = &adev->firmware.ucode[i];
+
+ switch (ucode->ucode_id) {
+ case AMDGPU_UCODE_ID_IMU_I:
+ case AMDGPU_UCODE_ID_IMU_D:
+ ucode_list[ucode_count++] = ucode;
+ break;
+ default:
+ break;
+ }
+ }
+
+ r = psp_load_fw_list(psp, ucode_list, ucode_count);
+ if (r) {
+ dev_err(adev->dev, "IMU ucode load failed after mode2 reset\n");
+ return r;
+ }
+
+ r = psp_rlc_autoload_start(psp);
+ if (r) {
+ DRM_ERROR("Failed to start rlc autoload after mode2 reset\n");
+ return r;
+ }
+
+ amdgpu_dpm_enable_gfx_features(adev);
+
+ for (i = 0; i < adev->num_ip_blocks; i++) {
+ if (!(adev->ip_blocks[i].version->type ==
+ AMD_IP_BLOCK_TYPE_GFX ||
+ adev->ip_blocks[i].version->type ==
+ AMD_IP_BLOCK_TYPE_MES ||
+ adev->ip_blocks[i].version->type ==
+ AMD_IP_BLOCK_TYPE_SDMA))
+ continue;
+ r = adev->ip_blocks[i].version->funcs->resume(adev);
+ if (r) {
+ dev_err(adev->dev,
+ "resume of IP block <%s> failed %d\n",
+ adev->ip_blocks[i].version->funcs->name, r);
+ return r;
+ }
+
+ adev->ip_blocks[i].status.hw = true;
+ }
+
+ for (i = 0; i < adev->num_ip_blocks; i++) {
+ if (!(adev->ip_blocks[i].version->type ==
+ AMD_IP_BLOCK_TYPE_GFX ||
+ adev->ip_blocks[i].version->type ==
+ AMD_IP_BLOCK_TYPE_MES ||
+ adev->ip_blocks[i].version->type ==
+ AMD_IP_BLOCK_TYPE_SDMA))
+ continue;
+
+ if (adev->ip_blocks[i].version->funcs->late_init) {
+ r = adev->ip_blocks[i].version->funcs->late_init(
+ (void *)adev);
+ if (r) {
+ dev_err(adev->dev,
+ "late_init of IP block <%s> failed %d after reset\n",
+ adev->ip_blocks[i].version->funcs->name,
+ r);
+ return r;
+ }
+ }
+ adev->ip_blocks[i].status.late_initialized = true;
+ }
+
+ amdgpu_device_set_cg_state(adev, AMD_CG_STATE_GATE);
+ amdgpu_device_set_pg_state(adev, AMD_PG_STATE_GATE);
+
+ return r;
+}
+
+static int
+smu_v13_0_10_mode2_restore_hwcontext(struct amdgpu_reset_control *reset_ctl,
+ struct amdgpu_reset_context *reset_context)
+{
+ int r;
+ struct amdgpu_device *tmp_adev = (struct amdgpu_device *)reset_ctl->handle;
+
+ dev_info(tmp_adev->dev,
+ "GPU reset succeeded, trying to resume\n");
+ r = smu_v13_0_10_mode2_restore_ip(tmp_adev);
+ if (r)
+ goto end;
+
+ amdgpu_register_gpu_instance(tmp_adev);
+
+ /* Resume RAS */
+ amdgpu_ras_resume(tmp_adev);
+
+ amdgpu_irq_gpu_reset_resume_helper(tmp_adev);
+
+ r = amdgpu_ib_ring_tests(tmp_adev);
+ if (r) {
+ dev_err(tmp_adev->dev,
+ "ib ring test failed (%d).\n", r);
+ r = -EAGAIN;
+ goto end;
+ }
+
+end:
+ if (r)
+ return -EAGAIN;
+ else
+ return r;
+}
+
+static struct amdgpu_reset_handler smu_v13_0_10_mode2_handler = {
+ .reset_method = AMD_RESET_METHOD_MODE2,
+ .prepare_env = NULL,
+ .prepare_hwcontext = smu_v13_0_10_mode2_prepare_hwcontext,
+ .perform_reset = smu_v13_0_10_mode2_perform_reset,
+ .restore_hwcontext = smu_v13_0_10_mode2_restore_hwcontext,
+ .restore_env = NULL,
+ .do_reset = smu_v13_0_10_mode2_reset,
+};
+
+int smu_v13_0_10_reset_init(struct amdgpu_device *adev)
+{
+ struct amdgpu_reset_control *reset_ctl;
+
+ reset_ctl = kzalloc(sizeof(*reset_ctl), GFP_KERNEL);
+ if (!reset_ctl)
+ return -ENOMEM;
+
+ reset_ctl->handle = adev;
+ reset_ctl->async_reset = smu_v13_0_10_async_reset;
+ reset_ctl->active_reset = AMD_RESET_METHOD_NONE;
+ reset_ctl->get_reset_handler = smu_v13_0_10_get_reset_handler;
+
+ INIT_LIST_HEAD(&reset_ctl->reset_handlers);
+ INIT_WORK(&reset_ctl->reset_work, reset_ctl->async_reset);
+ /* Only mode2 is handled through reset control now */
+ amdgpu_reset_add_handler(reset_ctl, &smu_v13_0_10_mode2_handler);
+
+ adev->reset_cntl = reset_ctl;
+
+ return 0;
+}
+
+int smu_v13_0_10_reset_fini(struct amdgpu_device *adev)
+{
+ kfree(adev->reset_cntl);
+ adev->reset_cntl = NULL;
+ return 0;
+}
diff --git a/drivers/gpu/drm/amd/amdgpu/smu_v13_0_10.h b/drivers/gpu/drm/amd/amdgpu/smu_v13_0_10.h
new file mode 100644
index 000000000000..e0cb72a0eec6
--- /dev/null
+++ b/drivers/gpu/drm/amd/amdgpu/smu_v13_0_10.h
@@ -0,0 +1,32 @@
+/*
+ * Copyright 2023 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ */
+
+#ifndef __SMU_V13_0_10_H__
+#define __SMU_V13_0_10_H__
+
+#include "amdgpu.h"
+
+int smu_v13_0_10_reset_init(struct amdgpu_device *adev);
+int smu_v13_0_10_reset_fini(struct amdgpu_device *adev);
+
+#endif
diff --git a/drivers/gpu/drm/amd/amdgpu/soc15.c b/drivers/gpu/drm/amd/amdgpu/soc15.c
index e3b2b6b4f1a6..6d15d5cd9e07 100644
--- a/drivers/gpu/drm/amd/amdgpu/soc15.c
+++ b/drivers/gpu/drm/amd/amdgpu/soc15.c
@@ -103,10 +103,10 @@ static const struct amdgpu_video_codecs vega_video_codecs_encode =
/* Vega */
static const struct amdgpu_video_codec_info vega_video_codecs_decode_array[] =
{
- {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG2, 4096, 4906, 3)},
- {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG4, 4096, 4906, 5)},
- {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG4_AVC, 4096, 4906, 52)},
- {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_VC1, 4096, 4906, 4)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG2, 4096, 4096, 3)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG4, 4096, 4096, 5)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG4_AVC, 4096, 4096, 52)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_VC1, 4096, 4096, 4)},
{codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_HEVC, 4096, 4096, 186)},
{codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_JPEG, 4096, 4096, 0)},
};
@@ -120,10 +120,10 @@ static const struct amdgpu_video_codecs vega_video_codecs_decode =
/* Raven */
static const struct amdgpu_video_codec_info rv_video_codecs_decode_array[] =
{
- {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG2, 4096, 4906, 3)},
- {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG4, 4096, 4906, 5)},
- {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG4_AVC, 4096, 4906, 52)},
- {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_VC1, 4096, 4906, 4)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG2, 4096, 4096, 3)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG4, 4096, 4096, 5)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG4_AVC, 4096, 4096, 52)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_VC1, 4096, 4096, 4)},
{codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_HEVC, 4096, 4096, 186)},
{codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_JPEG, 4096, 4096, 0)},
{codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_VP9, 4096, 4096, 0)},
@@ -138,10 +138,10 @@ static const struct amdgpu_video_codecs rv_video_codecs_decode =
/* Renoir, Arcturus */
static const struct amdgpu_video_codec_info rn_video_codecs_decode_array[] =
{
- {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG2, 4096, 4906, 3)},
- {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG4, 4096, 4906, 5)},
- {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG4_AVC, 4096, 4906, 52)},
- {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_VC1, 4096, 4906, 4)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG2, 4096, 4096, 3)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG4, 4096, 4096, 5)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG4_AVC, 4096, 4096, 52)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_VC1, 4096, 4096, 4)},
{codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_HEVC, 8192, 4352, 186)},
{codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_JPEG, 4096, 4096, 0)},
{codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_VP9, 8192, 4352, 0)},
@@ -191,47 +191,6 @@ static int soc15_query_video_codecs(struct amdgpu_device *adev, bool encode,
}
}
-/*
- * Indirect registers accessor
- */
-static u32 soc15_pcie_rreg(struct amdgpu_device *adev, u32 reg)
-{
- unsigned long address, data;
- address = adev->nbio.funcs->get_pcie_index_offset(adev);
- data = adev->nbio.funcs->get_pcie_data_offset(adev);
-
- return amdgpu_device_indirect_rreg(adev, address, data, reg);
-}
-
-static void soc15_pcie_wreg(struct amdgpu_device *adev, u32 reg, u32 v)
-{
- unsigned long address, data;
-
- address = adev->nbio.funcs->get_pcie_index_offset(adev);
- data = adev->nbio.funcs->get_pcie_data_offset(adev);
-
- amdgpu_device_indirect_wreg(adev, address, data, reg, v);
-}
-
-static u64 soc15_pcie_rreg64(struct amdgpu_device *adev, u32 reg)
-{
- unsigned long address, data;
- address = adev->nbio.funcs->get_pcie_index_offset(adev);
- data = adev->nbio.funcs->get_pcie_data_offset(adev);
-
- return amdgpu_device_indirect_rreg64(adev, address, data, reg);
-}
-
-static void soc15_pcie_wreg64(struct amdgpu_device *adev, u32 reg, u64 v)
-{
- unsigned long address, data;
-
- address = adev->nbio.funcs->get_pcie_index_offset(adev);
- data = adev->nbio.funcs->get_pcie_data_offset(adev);
-
- amdgpu_device_indirect_wreg64(adev, address, data, reg, v);
-}
-
static u32 soc15_uvd_ctx_rreg(struct amdgpu_device *adev, u32 reg)
{
unsigned long flags, address, data;
@@ -342,11 +301,10 @@ static u32 soc15_get_xclk(struct amdgpu_device *adev)
u32 reference_clock = adev->clock.spll.reference_freq;
if (adev->ip_versions[MP1_HWIP][0] == IP_VERSION(12, 0, 0) ||
- adev->ip_versions[MP1_HWIP][0] == IP_VERSION(12, 0, 1))
- return 10000;
- if (adev->ip_versions[MP1_HWIP][0] == IP_VERSION(10, 0, 0) ||
+ adev->ip_versions[MP1_HWIP][0] == IP_VERSION(12, 0, 1) ||
+ adev->ip_versions[MP1_HWIP][0] == IP_VERSION(10, 0, 0) ||
adev->ip_versions[MP1_HWIP][0] == IP_VERSION(10, 0, 1))
- return reference_clock / 4;
+ return 10000;
return reference_clock;
}
@@ -439,8 +397,9 @@ static int soc15_read_register(struct amdgpu_device *adev, u32 se_num,
*value = 0;
for (i = 0; i < ARRAY_SIZE(soc15_allowed_read_registers); i++) {
en = &soc15_allowed_read_registers[i];
- if (adev->reg_offset[en->hwip][en->inst] &&
- reg_offset != (adev->reg_offset[en->hwip][en->inst][en->seg]
+ if (!adev->reg_offset[en->hwip][en->inst])
+ continue;
+ else if (reg_offset != (adev->reg_offset[en->hwip][en->inst][en->seg]
+ en->reg_offset))
continue;
@@ -650,24 +609,6 @@ static int soc15_set_vce_clocks(struct amdgpu_device *adev, u32 evclk, u32 ecclk
return 0;
}
-static void soc15_pcie_gen3_enable(struct amdgpu_device *adev)
-{
- if (pci_is_root_bus(adev->pdev->bus))
- return;
-
- if (amdgpu_pcie_gen2 == 0)
- return;
-
- if (adev->flags & AMD_IS_APU)
- return;
-
- if (!(adev->pm.pcie_gen_mask & (CAIL_PCIE_LINK_SPEED_SUPPORT_GEN2 |
- CAIL_PCIE_LINK_SPEED_SUPPORT_GEN3)))
- return;
-
- /* todo */
-}
-
static void soc15_program_aspm(struct amdgpu_device *adev)
{
if (!amdgpu_device_should_use_aspm(adev))
@@ -678,13 +619,6 @@ static void soc15_program_aspm(struct amdgpu_device *adev)
adev->nbio.funcs->program_aspm(adev);
}
-static void soc15_enable_doorbell_aperture(struct amdgpu_device *adev,
- bool enable)
-{
- adev->nbio.funcs->enable_doorbell_aperture(adev, enable);
- adev->nbio.funcs->enable_doorbell_selfring_aperture(adev, enable);
-}
-
const struct amdgpu_ip_block_version vega10_common_ip_block =
{
.type = AMD_IP_BLOCK_TYPE_COMMON,
@@ -694,11 +628,6 @@ const struct amdgpu_ip_block_version vega10_common_ip_block =
.funcs = &soc15_common_ip_funcs,
};
-static uint32_t soc15_get_rev_id(struct amdgpu_device *adev)
-{
- return adev->nbio.funcs->get_rev_id(adev);
-}
-
static void soc15_reg_base_init(struct amdgpu_device *adev)
{
/* Set IP register base before any HW register access */
@@ -935,10 +864,10 @@ static int soc15_common_early_init(void *handle)
}
adev->smc_rreg = NULL;
adev->smc_wreg = NULL;
- adev->pcie_rreg = &soc15_pcie_rreg;
- adev->pcie_wreg = &soc15_pcie_wreg;
- adev->pcie_rreg64 = &soc15_pcie_rreg64;
- adev->pcie_wreg64 = &soc15_pcie_wreg64;
+ adev->pcie_rreg = &amdgpu_device_indirect_rreg;
+ adev->pcie_wreg = &amdgpu_device_indirect_wreg;
+ adev->pcie_rreg64 = &amdgpu_device_indirect_rreg64;
+ adev->pcie_wreg64 = &amdgpu_device_indirect_wreg64;
adev->uvd_ctx_rreg = &soc15_uvd_ctx_rreg;
adev->uvd_ctx_wreg = &soc15_uvd_ctx_wreg;
adev->didt_rreg = &soc15_didt_rreg;
@@ -948,7 +877,7 @@ static int soc15_common_early_init(void *handle)
adev->se_cac_rreg = &soc15_se_cac_rreg;
adev->se_cac_wreg = &soc15_se_cac_wreg;
- adev->rev_id = soc15_get_rev_id(adev);
+ adev->rev_id = amdgpu_device_get_rev_id(adev);
adev->external_rev_id = 0xFF;
/* TODO: split the GC and PG flags based on the relevant IP version for which
* they are relevant.
@@ -1164,6 +1093,11 @@ static int soc15_common_early_init(void *handle)
adev->pg_flags = AMD_PG_SUPPORT_VCN_DPG;
adev->external_rev_id = adev->rev_id + 0x3c;
break;
+ case IP_VERSION(9, 4, 3):
+ adev->asic_funcs = &vega20_asic_funcs;
+ adev->cg_flags = 0;
+ adev->pg_flags = 0;
+ break;
default:
/* FIXME: not supported yet */
return -EINVAL;
@@ -1184,6 +1118,11 @@ static int soc15_common_late_init(void *handle)
if (amdgpu_sriov_vf(adev))
xgpu_ai_mailbox_get_irq(adev);
+ /* Enable selfring doorbell aperture late because doorbell BAR
+ * aperture will change if resize BAR successfully in gmc sw_init.
+ */
+ adev->nbio.funcs->enable_doorbell_selfring_aperture(adev, true);
+
return 0;
}
@@ -1229,8 +1168,6 @@ static int soc15_common_hw_init(void *handle)
{
struct amdgpu_device *adev = (struct amdgpu_device *)handle;
- /* enable pcie gen2/3 link */
- soc15_pcie_gen3_enable(adev);
/* enable aspm */
soc15_program_aspm(adev);
/* setup nbio registers */
@@ -1243,7 +1180,8 @@ static int soc15_common_hw_init(void *handle)
adev->nbio.funcs->remap_hdp_registers(adev);
/* enable the doorbell aperture */
- soc15_enable_doorbell_aperture(adev, true);
+ adev->nbio.funcs->enable_doorbell_aperture(adev, true);
+
/* HW doorbell routing policy: doorbell writing not
* in SDMA/IH/MM/ACV range will be routed to CP. So
* we need to init SDMA doorbell range prior
@@ -1259,8 +1197,14 @@ static int soc15_common_hw_fini(void *handle)
{
struct amdgpu_device *adev = (struct amdgpu_device *)handle;
- /* disable the doorbell aperture */
- soc15_enable_doorbell_aperture(adev, false);
+ /* Disable the doorbell aperture and selfring doorbell aperture
+ * separately in hw_fini because soc15_enable_doorbell_aperture
+ * has been removed and there is no need to delay disabling
+ * selfring doorbell.
+ */
+ adev->nbio.funcs->enable_doorbell_aperture(adev, false);
+ adev->nbio.funcs->enable_doorbell_selfring_aperture(adev, false);
+
if (amdgpu_sriov_vf(adev))
xgpu_ai_mailbox_put_irq(adev);
diff --git a/drivers/gpu/drm/amd/amdgpu/soc15d.h b/drivers/gpu/drm/amd/amdgpu/soc15d.h
index 799925d22fc8..2357ff39323f 100644
--- a/drivers/gpu/drm/amd/amdgpu/soc15d.h
+++ b/drivers/gpu/drm/amd/amdgpu/soc15d.h
@@ -162,6 +162,7 @@
* 2 - Bypass
*/
#define INDIRECT_BUFFER_PRE_ENB(x) ((x) << 21)
+#define INDIRECT_BUFFER_PRE_RESUME(x) ((x) << 30)
#define PACKET3_COPY_DATA 0x40
#define PACKET3_PFP_SYNC_ME 0x42
#define PACKET3_COND_WRITE 0x45
@@ -184,6 +185,7 @@
#define EOP_TC_ACTION_EN (1 << 17) /* L2 */
#define EOP_TC_NC_ACTION_EN (1 << 19)
#define EOP_TC_MD_ACTION_EN (1 << 21) /* L2 metadata */
+#define EOP_EXEC (1 << 28) /* For Trailing Fence */
#define DATA_SEL(x) ((x) << 29)
/* 0 - discard
diff --git a/drivers/gpu/drm/amd/amdgpu/soc21.c b/drivers/gpu/drm/amd/amdgpu/soc21.c
index e08044008186..d77162536514 100644
--- a/drivers/gpu/drm/amd/amdgpu/soc21.c
+++ b/drivers/gpu/drm/amd/amdgpu/soc21.c
@@ -43,92 +43,158 @@
#include "soc15.h"
#include "soc15_common.h"
#include "soc21.h"
+#include "mxgpu_nv.h"
static const struct amd_ip_funcs soc21_common_ip_funcs;
/* SOC21 */
-static const struct amdgpu_video_codec_info vcn_4_0_0_video_codecs_encode_array[] =
+static const struct amdgpu_video_codec_info vcn_4_0_0_video_codecs_encode_array_vcn0[] =
{
{codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG4_AVC, 4096, 2304, 0)},
{codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_HEVC, 4096, 2304, 0)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_AV1, 8192, 4352, 0)},
+};
+
+static const struct amdgpu_video_codec_info vcn_4_0_0_video_codecs_encode_array_vcn1[] =
+{
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG4_AVC, 4096, 2304, 0)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_HEVC, 4096, 2304, 0)},
+};
+
+static const struct amdgpu_video_codecs vcn_4_0_0_video_codecs_encode_vcn0 =
+{
+ .codec_count = ARRAY_SIZE(vcn_4_0_0_video_codecs_encode_array_vcn0),
+ .codec_array = vcn_4_0_0_video_codecs_encode_array_vcn0,
};
-static const struct amdgpu_video_codecs vcn_4_0_0_video_codecs_encode =
+static const struct amdgpu_video_codecs vcn_4_0_0_video_codecs_encode_vcn1 =
{
- .codec_count = ARRAY_SIZE(vcn_4_0_0_video_codecs_encode_array),
- .codec_array = vcn_4_0_0_video_codecs_encode_array,
+ .codec_count = ARRAY_SIZE(vcn_4_0_0_video_codecs_encode_array_vcn1),
+ .codec_array = vcn_4_0_0_video_codecs_encode_array_vcn1,
};
-static const struct amdgpu_video_codec_info vcn_4_0_0_video_codecs_decode_array[] =
+static const struct amdgpu_video_codec_info vcn_4_0_0_video_codecs_decode_array_vcn0[] =
{
- {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG4_AVC, 4096, 4906, 52)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG4_AVC, 4096, 4096, 52)},
{codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_HEVC, 8192, 4352, 186)},
{codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_JPEG, 4096, 4096, 0)},
{codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_VP9, 8192, 4352, 0)},
{codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_AV1, 8192, 4352, 0)},
};
-static const struct amdgpu_video_codecs vcn_4_0_0_video_codecs_decode =
+static const struct amdgpu_video_codec_info vcn_4_0_0_video_codecs_decode_array_vcn1[] =
{
- .codec_count = ARRAY_SIZE(vcn_4_0_0_video_codecs_decode_array),
- .codec_array = vcn_4_0_0_video_codecs_decode_array,
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG4_AVC, 4096, 4096, 52)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_HEVC, 8192, 4352, 186)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_JPEG, 4096, 4096, 0)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_VP9, 8192, 4352, 0)},
};
-static int soc21_query_video_codecs(struct amdgpu_device *adev, bool encode,
- const struct amdgpu_video_codecs **codecs)
+static const struct amdgpu_video_codecs vcn_4_0_0_video_codecs_decode_vcn0 =
{
- switch (adev->ip_versions[UVD_HWIP][0]) {
+ .codec_count = ARRAY_SIZE(vcn_4_0_0_video_codecs_decode_array_vcn0),
+ .codec_array = vcn_4_0_0_video_codecs_decode_array_vcn0,
+};
- case IP_VERSION(4, 0, 0):
- case IP_VERSION(4, 0, 2):
- if (encode)
- *codecs = &vcn_4_0_0_video_codecs_encode;
- else
- *codecs = &vcn_4_0_0_video_codecs_decode;
- return 0;
- default:
- return -EINVAL;
- }
-}
-/*
- * Indirect registers accessor
- */
-static u32 soc21_pcie_rreg(struct amdgpu_device *adev, u32 reg)
+static const struct amdgpu_video_codecs vcn_4_0_0_video_codecs_decode_vcn1 =
{
- unsigned long address, data;
- address = adev->nbio.funcs->get_pcie_index_offset(adev);
- data = adev->nbio.funcs->get_pcie_data_offset(adev);
+ .codec_count = ARRAY_SIZE(vcn_4_0_0_video_codecs_decode_array_vcn1),
+ .codec_array = vcn_4_0_0_video_codecs_decode_array_vcn1,
+};
- return amdgpu_device_indirect_rreg(adev, address, data, reg);
-}
+/* SRIOV SOC21, not const since data is controlled by host */
+static struct amdgpu_video_codec_info sriov_vcn_4_0_0_video_codecs_encode_array_vcn0[] = {
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG4_AVC, 4096, 2304, 0)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_HEVC, 4096, 2304, 0)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_AV1, 8192, 4352, 0)},
+};
-static void soc21_pcie_wreg(struct amdgpu_device *adev, u32 reg, u32 v)
-{
- unsigned long address, data;
+static struct amdgpu_video_codec_info sriov_vcn_4_0_0_video_codecs_encode_array_vcn1[] = {
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG4_AVC, 4096, 2304, 0)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_HEVC, 4096, 2304, 0)},
+};
- address = adev->nbio.funcs->get_pcie_index_offset(adev);
- data = adev->nbio.funcs->get_pcie_data_offset(adev);
+static struct amdgpu_video_codecs sriov_vcn_4_0_0_video_codecs_encode_vcn0 = {
+ .codec_count = ARRAY_SIZE(sriov_vcn_4_0_0_video_codecs_encode_array_vcn0),
+ .codec_array = sriov_vcn_4_0_0_video_codecs_encode_array_vcn0,
+};
- amdgpu_device_indirect_wreg(adev, address, data, reg, v);
-}
+static struct amdgpu_video_codecs sriov_vcn_4_0_0_video_codecs_encode_vcn1 = {
+ .codec_count = ARRAY_SIZE(sriov_vcn_4_0_0_video_codecs_encode_array_vcn1),
+ .codec_array = sriov_vcn_4_0_0_video_codecs_encode_array_vcn1,
+};
-static u64 soc21_pcie_rreg64(struct amdgpu_device *adev, u32 reg)
-{
- unsigned long address, data;
- address = adev->nbio.funcs->get_pcie_index_offset(adev);
- data = adev->nbio.funcs->get_pcie_data_offset(adev);
+static struct amdgpu_video_codec_info sriov_vcn_4_0_0_video_codecs_decode_array_vcn0[] = {
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG2, 4096, 4096, 3)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG4, 4096, 4096, 5)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG4_AVC, 4096, 4096, 52)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_VC1, 4096, 4096, 4)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_HEVC, 8192, 4352, 186)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_JPEG, 4096, 4096, 0)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_VP9, 8192, 4352, 0)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_AV1, 8192, 4352, 0)},
+};
- return amdgpu_device_indirect_rreg64(adev, address, data, reg);
-}
+static struct amdgpu_video_codec_info sriov_vcn_4_0_0_video_codecs_decode_array_vcn1[] = {
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG2, 4096, 4096, 3)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG4, 4096, 4096, 5)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_MPEG4_AVC, 4096, 4096, 52)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_VC1, 4096, 4096, 4)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_HEVC, 8192, 4352, 186)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_JPEG, 4096, 4096, 0)},
+ {codec_info_build(AMDGPU_INFO_VIDEO_CAPS_CODEC_IDX_VP9, 8192, 4352, 0)},
+};
-static void soc21_pcie_wreg64(struct amdgpu_device *adev, u32 reg, u64 v)
-{
- unsigned long address, data;
+static struct amdgpu_video_codecs sriov_vcn_4_0_0_video_codecs_decode_vcn0 = {
+ .codec_count = ARRAY_SIZE(sriov_vcn_4_0_0_video_codecs_decode_array_vcn0),
+ .codec_array = sriov_vcn_4_0_0_video_codecs_decode_array_vcn0,
+};
+
+static struct amdgpu_video_codecs sriov_vcn_4_0_0_video_codecs_decode_vcn1 = {
+ .codec_count = ARRAY_SIZE(sriov_vcn_4_0_0_video_codecs_decode_array_vcn1),
+ .codec_array = sriov_vcn_4_0_0_video_codecs_decode_array_vcn1,
+};
- address = adev->nbio.funcs->get_pcie_index_offset(adev);
- data = adev->nbio.funcs->get_pcie_data_offset(adev);
+static int soc21_query_video_codecs(struct amdgpu_device *adev, bool encode,
+ const struct amdgpu_video_codecs **codecs)
+{
+ if (adev->vcn.num_vcn_inst == hweight8(adev->vcn.harvest_config))
+ return -EINVAL;
- amdgpu_device_indirect_wreg64(adev, address, data, reg, v);
+ switch (adev->ip_versions[UVD_HWIP][0]) {
+ case IP_VERSION(4, 0, 0):
+ case IP_VERSION(4, 0, 2):
+ case IP_VERSION(4, 0, 4):
+ if (amdgpu_sriov_vf(adev)) {
+ if ((adev->vcn.harvest_config & AMDGPU_VCN_HARVEST_VCN0) ||
+ !amdgpu_sriov_is_av1_support(adev)) {
+ if (encode)
+ *codecs = &sriov_vcn_4_0_0_video_codecs_encode_vcn1;
+ else
+ *codecs = &sriov_vcn_4_0_0_video_codecs_decode_vcn1;
+ } else {
+ if (encode)
+ *codecs = &sriov_vcn_4_0_0_video_codecs_encode_vcn0;
+ else
+ *codecs = &sriov_vcn_4_0_0_video_codecs_decode_vcn0;
+ }
+ } else {
+ if ((adev->vcn.harvest_config & AMDGPU_VCN_HARVEST_VCN0)) {
+ if (encode)
+ *codecs = &vcn_4_0_0_video_codecs_encode_vcn1;
+ else
+ *codecs = &vcn_4_0_0_video_codecs_decode_vcn1;
+ } else {
+ if (encode)
+ *codecs = &vcn_4_0_0_video_codecs_encode_vcn0;
+ else
+ *codecs = &vcn_4_0_0_video_codecs_decode_vcn0;
+ }
+ }
+ return 0;
+ default:
+ return -EINVAL;
+ }
}
static u32 soc21_didt_rreg(struct amdgpu_device *adev, u32 reg)
@@ -254,9 +320,10 @@ static int soc21_read_register(struct amdgpu_device *adev, u32 se_num,
*value = 0;
for (i = 0; i < ARRAY_SIZE(soc21_allowed_read_registers); i++) {
en = &soc21_allowed_read_registers[i];
- if (adev->reg_offset[en->hwip][en->inst] &&
- reg_offset != (adev->reg_offset[en->hwip][en->inst][en->seg]
- + en->reg_offset))
+ if (!adev->reg_offset[en->hwip][en->inst])
+ continue;
+ else if (reg_offset != (adev->reg_offset[en->hwip][en->inst][en->seg]
+ + en->reg_offset))
continue;
*value = soc21_get_register_value(adev,
@@ -322,8 +389,10 @@ soc21_asic_reset_method(struct amdgpu_device *adev)
switch (adev->ip_versions[MP1_HWIP][0]) {
case IP_VERSION(13, 0, 0):
case IP_VERSION(13, 0, 7):
+ case IP_VERSION(13, 0, 10):
return AMD_RESET_METHOD_MODE1;
case IP_VERSION(13, 0, 4):
+ case IP_VERSION(13, 0, 11):
return AMD_RESET_METHOD_MODE2;
default:
if (amdgpu_dpm_is_baco_supported(adev))
@@ -371,21 +440,6 @@ static int soc21_set_vce_clocks(struct amdgpu_device *adev, u32 evclk, u32 ecclk
return 0;
}
-static void soc21_pcie_gen3_enable(struct amdgpu_device *adev)
-{
- if (pci_is_root_bus(adev->pdev->bus))
- return;
-
- if (amdgpu_pcie_gen2 == 0)
- return;
-
- if (!(adev->pm.pcie_gen_mask & (CAIL_PCIE_LINK_SPEED_SUPPORT_GEN2 |
- CAIL_PCIE_LINK_SPEED_SUPPORT_GEN3)))
- return;
-
- /* todo */
-}
-
static void soc21_program_aspm(struct amdgpu_device *adev)
{
if (!amdgpu_device_should_use_aspm(adev))
@@ -396,13 +450,6 @@ static void soc21_program_aspm(struct amdgpu_device *adev)
adev->nbio.funcs->program_aspm(adev);
}
-static void soc21_enable_doorbell_aperture(struct amdgpu_device *adev,
- bool enable)
-{
- adev->nbio.funcs->enable_doorbell_aperture(adev, enable);
- adev->nbio.funcs->enable_doorbell_selfring_aperture(adev, enable);
-}
-
const struct amdgpu_ip_block_version soc21_common_ip_block =
{
.type = AMD_IP_BLOCK_TYPE_COMMON,
@@ -412,11 +459,6 @@ const struct amdgpu_ip_block_version soc21_common_ip_block =
.funcs = &soc21_common_ip_funcs,
};
-static uint32_t soc21_get_rev_id(struct amdgpu_device *adev)
-{
- return adev->nbio.funcs->get_rev_id(adev);
-}
-
static bool soc21_need_full_reset(struct amdgpu_device *adev)
{
switch (adev->ip_versions[GC_HWIP][0]) {
@@ -541,10 +583,10 @@ static int soc21_common_early_init(void *handle)
adev->rmmio_remap.bus_addr = adev->rmmio_base + MMIO_REG_HOLE_OFFSET;
adev->smc_rreg = NULL;
adev->smc_wreg = NULL;
- adev->pcie_rreg = &soc21_pcie_rreg;
- adev->pcie_wreg = &soc21_pcie_wreg;
- adev->pcie_rreg64 = &soc21_pcie_rreg64;
- adev->pcie_wreg64 = &soc21_pcie_wreg64;
+ adev->pcie_rreg = &amdgpu_device_indirect_rreg;
+ adev->pcie_wreg = &amdgpu_device_indirect_wreg;
+ adev->pcie_rreg64 = &amdgpu_device_indirect_rreg64;
+ adev->pcie_wreg64 = &amdgpu_device_indirect_wreg64;
adev->pciep_rreg = amdgpu_device_pcie_port_rreg;
adev->pciep_wreg = amdgpu_device_pcie_port_wreg;
@@ -557,7 +599,7 @@ static int soc21_common_early_init(void *handle)
adev->asic_funcs = &soc21_asic_funcs;
- adev->rev_id = soc21_get_rev_id(adev);
+ adev->rev_id = amdgpu_device_get_rev_id(adev);
adev->external_rev_id = 0xff;
switch (adev->ip_versions[GC_HWIP][0]) {
case IP_VERSION(11, 0, 0):
@@ -584,10 +626,6 @@ static int soc21_common_early_init(void *handle)
AMD_PG_SUPPORT_JPEG |
AMD_PG_SUPPORT_ATHUB |
AMD_PG_SUPPORT_MMHUB;
- if (amdgpu_sriov_vf(adev)) {
- adev->cg_flags = 0;
- adev->pg_flags = 0;
- }
adev->external_rev_id = adev->rev_id + 0x1; // TODO: need update
break;
case IP_VERSION(11, 0, 2):
@@ -641,32 +679,99 @@ static int soc21_common_early_init(void *handle)
AMD_CG_SUPPORT_GFX_CGCG |
AMD_CG_SUPPORT_GFX_CGLS |
AMD_CG_SUPPORT_REPEATER_FGCG |
- AMD_CG_SUPPORT_GFX_MGCG;
+ AMD_CG_SUPPORT_GFX_MGCG |
+ AMD_CG_SUPPORT_HDP_SD |
+ AMD_CG_SUPPORT_ATHUB_MGCG |
+ AMD_CG_SUPPORT_ATHUB_LS;
adev->pg_flags = AMD_PG_SUPPORT_VCN |
AMD_PG_SUPPORT_VCN_DPG |
AMD_PG_SUPPORT_JPEG;
- if (amdgpu_sriov_vf(adev)) {
- /* hypervisor control CG and PG enablement */
- adev->cg_flags = 0;
- adev->pg_flags = 0;
- }
adev->external_rev_id = adev->rev_id + 0x20;
break;
+ case IP_VERSION(11, 0, 4):
+ adev->cg_flags =
+ AMD_CG_SUPPORT_GFX_CGCG |
+ AMD_CG_SUPPORT_GFX_CGLS |
+ AMD_CG_SUPPORT_GFX_MGCG |
+ AMD_CG_SUPPORT_GFX_FGCG |
+ AMD_CG_SUPPORT_REPEATER_FGCG |
+ AMD_CG_SUPPORT_GFX_PERF_CLK |
+ AMD_CG_SUPPORT_MC_MGCG |
+ AMD_CG_SUPPORT_MC_LS |
+ AMD_CG_SUPPORT_HDP_MGCG |
+ AMD_CG_SUPPORT_HDP_LS |
+ AMD_CG_SUPPORT_ATHUB_MGCG |
+ AMD_CG_SUPPORT_ATHUB_LS |
+ AMD_CG_SUPPORT_IH_CG |
+ AMD_CG_SUPPORT_BIF_MGCG |
+ AMD_CG_SUPPORT_BIF_LS |
+ AMD_CG_SUPPORT_VCN_MGCG |
+ AMD_CG_SUPPORT_JPEG_MGCG;
+ adev->pg_flags = AMD_PG_SUPPORT_VCN |
+ AMD_PG_SUPPORT_VCN_DPG |
+ AMD_PG_SUPPORT_GFX_PG |
+ AMD_PG_SUPPORT_JPEG;
+ adev->external_rev_id = adev->rev_id + 0x80;
+ break;
+
default:
/* FIXME: not supported yet */
return -EINVAL;
}
+ if (amdgpu_sriov_vf(adev)) {
+ amdgpu_virt_init_setting(adev);
+ xgpu_nv_mailbox_set_irq_funcs(adev);
+ }
+
return 0;
}
static int soc21_common_late_init(void *handle)
{
+ struct amdgpu_device *adev = (struct amdgpu_device *)handle;
+
+ if (amdgpu_sriov_vf(adev)) {
+ xgpu_nv_mailbox_get_irq(adev);
+ if ((adev->vcn.harvest_config & AMDGPU_VCN_HARVEST_VCN0) ||
+ !amdgpu_sriov_is_av1_support(adev)) {
+ amdgpu_virt_update_sriov_video_codec(adev,
+ sriov_vcn_4_0_0_video_codecs_encode_array_vcn1,
+ ARRAY_SIZE(sriov_vcn_4_0_0_video_codecs_encode_array_vcn1),
+ sriov_vcn_4_0_0_video_codecs_decode_array_vcn1,
+ ARRAY_SIZE(sriov_vcn_4_0_0_video_codecs_decode_array_vcn1));
+ } else {
+ amdgpu_virt_update_sriov_video_codec(adev,
+ sriov_vcn_4_0_0_video_codecs_encode_array_vcn0,
+ ARRAY_SIZE(sriov_vcn_4_0_0_video_codecs_encode_array_vcn0),
+ sriov_vcn_4_0_0_video_codecs_decode_array_vcn0,
+ ARRAY_SIZE(sriov_vcn_4_0_0_video_codecs_decode_array_vcn0));
+ }
+ } else {
+ if (adev->nbio.ras &&
+ adev->nbio.ras_err_event_athub_irq.funcs)
+ /* don't need to fail gpu late init
+ * if enabling athub_err_event interrupt failed
+ * nbio v4_3 only support fatal error hanlding
+ * just enable the interrupt directly */
+ amdgpu_irq_get(adev, &adev->nbio.ras_err_event_athub_irq, 0);
+ }
+
+ /* Enable selfring doorbell aperture late because doorbell BAR
+ * aperture will change if resize BAR successfully in gmc sw_init.
+ */
+ adev->nbio.funcs->enable_doorbell_selfring_aperture(adev, true);
+
return 0;
}
static int soc21_common_sw_init(void *handle)
{
+ struct amdgpu_device *adev = (struct amdgpu_device *)handle;
+
+ if (amdgpu_sriov_vf(adev))
+ xgpu_nv_mailbox_add_irq_id(adev);
+
return 0;
}
@@ -679,8 +784,6 @@ static int soc21_common_hw_init(void *handle)
{
struct amdgpu_device *adev = (struct amdgpu_device *)handle;
- /* enable pcie gen2/3 link */
- soc21_pcie_gen3_enable(adev);
/* enable aspm */
soc21_program_aspm(adev);
/* setup nbio registers */
@@ -692,7 +795,7 @@ static int soc21_common_hw_init(void *handle)
if (adev->nbio.funcs->remap_hdp_registers)
adev->nbio.funcs->remap_hdp_registers(adev);
/* enable the doorbell aperture */
- soc21_enable_doorbell_aperture(adev, true);
+ adev->nbio.funcs->enable_doorbell_aperture(adev, true);
return 0;
}
@@ -701,8 +804,21 @@ static int soc21_common_hw_fini(void *handle)
{
struct amdgpu_device *adev = (struct amdgpu_device *)handle;
- /* disable the doorbell aperture */
- soc21_enable_doorbell_aperture(adev, false);
+ /* Disable the doorbell aperture and selfring doorbell aperture
+ * separately in hw_fini because soc21_enable_doorbell_aperture
+ * has been removed and there is no need to delay disabling
+ * selfring doorbell.
+ */
+ adev->nbio.funcs->enable_doorbell_aperture(adev, false);
+ adev->nbio.funcs->enable_doorbell_selfring_aperture(adev, false);
+
+ if (amdgpu_sriov_vf(adev)) {
+ xgpu_nv_mailbox_put_irq(adev);
+ } else {
+ if (adev->nbio.ras &&
+ adev->nbio.ras_err_event_athub_irq.funcs)
+ amdgpu_irq_put(adev, &adev->nbio.ras_err_event_athub_irq, 0);
+ }
return 0;
}
diff --git a/drivers/gpu/drm/amd/amdgpu/ta_ras_if.h b/drivers/gpu/drm/amd/amdgpu/ta_ras_if.h
index 509d8a1945eb..30d0482ac466 100644
--- a/drivers/gpu/drm/amd/amdgpu/ta_ras_if.h
+++ b/drivers/gpu/drm/amd/amdgpu/ta_ras_if.h
@@ -84,6 +84,8 @@ enum ta_ras_block {
TA_RAS_BLOCK__MP1,
TA_RAS_BLOCK__FUSE,
TA_RAS_BLOCK__MCA,
+ TA_RAS_BLOCK__VCN,
+ TA_RAS_BLOCK__JPEG,
TA_NUM_BLOCK_MAX
};
diff --git a/drivers/gpu/drm/amd/amdgpu/ta_secureDisplay_if.h b/drivers/gpu/drm/amd/amdgpu/ta_secureDisplay_if.h
index cf8ff064dc72..00d8bdb8254f 100644
--- a/drivers/gpu/drm/amd/amdgpu/ta_secureDisplay_if.h
+++ b/drivers/gpu/drm/amd/amdgpu/ta_secureDisplay_if.h
@@ -55,10 +55,10 @@ enum ta_securedisplay_status {
TA_SECUREDISPLAY_STATUS__MAX = 0x7FFFFFFF,/* Maximum Value for status*/
};
-/** @enum ta_securedisplay_max_phy
+/** @enum ta_securedisplay_phy_ID
* Physical ID number to use for reading corresponding DIO Scratch register for ROI
*/
-enum ta_securedisplay_max_phy {
+enum ta_securedisplay_phy_ID {
TA_SECUREDISPLAY_PHY0 = 0,
TA_SECUREDISPLAY_PHY1 = 1,
TA_SECUREDISPLAY_PHY2 = 2,
@@ -139,16 +139,16 @@ union ta_securedisplay_cmd_output {
uint32_t reserved[4];
};
-/** @struct securedisplay_cmd
- * Secure Display Command which is shared buffer memory
- */
-struct securedisplay_cmd {
- uint32_t cmd_id; /* +0 Bytes Command ID */
- enum ta_securedisplay_status status; /* +4 Bytes Status of Secure Display TA */
- uint32_t reserved[2]; /* +8 Bytes Reserved */
- union ta_securedisplay_cmd_input securedisplay_in_message; /* +16 Bytes Input Buffer */
- union ta_securedisplay_cmd_output securedisplay_out_message;/* +32 Bytes Output Buffer */
- /**@note Total 48 Bytes */
+/** @struct ta_securedisplay_cmd
+* Secure display command which is shared buffer memory
+*/
+struct ta_securedisplay_cmd {
+ uint32_t cmd_id; /**< +0 Bytes Command ID */
+ enum ta_securedisplay_status status; /**< +4 Bytes Status code returned by the secure display TA */
+ uint32_t reserved[2]; /**< +8 Bytes Reserved */
+ union ta_securedisplay_cmd_input securedisplay_in_message; /**< +16 Bytes Command input buffer */
+ union ta_securedisplay_cmd_output securedisplay_out_message; /**< +32 Bytes Command output buffer */
+ /**@note Total 48 Bytes */
};
#endif //_TA_SECUREDISPLAY_IF_H
diff --git a/drivers/gpu/drm/amd/amdgpu/umc_v6_7.c b/drivers/gpu/drm/amd/amdgpu/umc_v6_7.c
index 5d5d031c9e7d..530549314ce4 100644
--- a/drivers/gpu/drm/amd/amdgpu/umc_v6_7.c
+++ b/drivers/gpu/drm/amd/amdgpu/umc_v6_7.c
@@ -57,13 +57,6 @@ static inline uint32_t get_umc_v6_7_reg_offset(struct amdgpu_device *adev,
return adev->umc.channel_offs * ch_inst + UMC_V6_7_INST_DIST * umc_inst;
}
-static inline uint32_t get_umc_v6_7_channel_index(struct amdgpu_device *adev,
- uint32_t umc_inst,
- uint32_t ch_inst)
-{
- return adev->umc.channel_idx_tbl[umc_inst * adev->umc.channel_inst_num + ch_inst];
-}
-
static void umc_v6_7_query_error_status_helper(struct amdgpu_device *adev,
uint64_t mc_umc_status, uint32_t umc_reg_offset)
{
@@ -167,29 +160,33 @@ static void umc_v6_7_ecc_info_querry_uncorrectable_error_count(struct amdgpu_dev
}
}
+static int umc_v6_7_ecc_info_querry_ecc_error_count(struct amdgpu_device *adev,
+ uint32_t node_inst, uint32_t umc_inst,
+ uint32_t ch_inst, void *data)
+{
+ struct ras_err_data *err_data = (struct ras_err_data *)data;
+
+ umc_v6_7_ecc_info_query_correctable_error_count(adev,
+ umc_inst, ch_inst,
+ &(err_data->ce_count));
+
+ umc_v6_7_ecc_info_querry_uncorrectable_error_count(adev,
+ umc_inst, ch_inst,
+ &(err_data->ue_count));
+
+ return 0;
+}
+
static void umc_v6_7_ecc_info_query_ras_error_count(struct amdgpu_device *adev,
void *ras_error_status)
{
- struct ras_err_data *err_data = (struct ras_err_data *)ras_error_status;
-
- uint32_t umc_inst = 0;
- uint32_t ch_inst = 0;
-
- /*TODO: driver needs to toggle DF Cstate to ensure
- * safe access of UMC registers. Will add the protection */
- LOOP_UMC_INST_AND_CH(umc_inst, ch_inst) {
- umc_v6_7_ecc_info_query_correctable_error_count(adev,
- umc_inst, ch_inst,
- &(err_data->ce_count));
- umc_v6_7_ecc_info_querry_uncorrectable_error_count(adev,
- umc_inst, ch_inst,
- &(err_data->ue_count));
- }
+ amdgpu_umc_loop_channels(adev,
+ umc_v6_7_ecc_info_querry_ecc_error_count, ras_error_status);
}
-static void umc_v6_7_convert_error_address(struct amdgpu_device *adev,
- struct ras_err_data *err_data, uint64_t err_addr,
- uint32_t ch_inst, uint32_t umc_inst)
+void umc_v6_7_convert_error_address(struct amdgpu_device *adev,
+ struct ras_err_data *err_data, uint64_t err_addr,
+ uint32_t ch_inst, uint32_t umc_inst)
{
uint32_t channel_index;
uint64_t soc_pa, retired_page, column;
@@ -222,23 +219,23 @@ static void umc_v6_7_convert_error_address(struct amdgpu_device *adev,
}
}
-static void umc_v6_7_ecc_info_query_error_address(struct amdgpu_device *adev,
- struct ras_err_data *err_data,
- uint32_t ch_inst,
- uint32_t umc_inst)
+static int umc_v6_7_ecc_info_query_error_address(struct amdgpu_device *adev,
+ uint32_t node_inst, uint32_t umc_inst,
+ uint32_t ch_inst, void *data)
{
uint64_t mc_umc_status, err_addr;
uint32_t eccinfo_table_idx;
struct amdgpu_ras *ras = amdgpu_ras_get_context(adev);
+ struct ras_err_data *err_data = (struct ras_err_data *)data;
eccinfo_table_idx = umc_inst * adev->umc.channel_inst_num + ch_inst;
mc_umc_status = ras->umc_ecc.ecc[eccinfo_table_idx].mca_umc_status;
if (mc_umc_status == 0)
- return;
+ return 0;
if (!err_data->err_addr)
- return;
+ return 0;
/* calculate error address if ue error is detected */
if (REG_GET_FIELD(mc_umc_status, MCA_UMC_UMC0_MCUMC_STATUST0, Val) == 1 &&
@@ -250,25 +247,15 @@ static void umc_v6_7_ecc_info_query_error_address(struct amdgpu_device *adev,
umc_v6_7_convert_error_address(adev, err_data, err_addr,
ch_inst, umc_inst);
}
+
+ return 0;
}
static void umc_v6_7_ecc_info_query_ras_error_address(struct amdgpu_device *adev,
void *ras_error_status)
{
- struct ras_err_data *err_data = (struct ras_err_data *)ras_error_status;
-
- uint32_t umc_inst = 0;
- uint32_t ch_inst = 0;
-
- /*TODO: driver needs to toggle DF Cstate to ensure
- * safe access of UMC resgisters. Will add the protection
- * when firmware interface is ready */
- LOOP_UMC_INST_AND_CH(umc_inst, ch_inst) {
- umc_v6_7_ecc_info_query_error_address(adev,
- err_data,
- ch_inst,
- umc_inst);
- }
+ amdgpu_umc_loop_channels(adev,
+ umc_v6_7_ecc_info_query_error_address, ras_error_status);
}
static void umc_v6_7_query_correctable_error_count(struct amdgpu_device *adev,
@@ -371,11 +358,14 @@ static void umc_v6_7_querry_uncorrectable_error_count(struct amdgpu_device *adev
}
}
-static void umc_v6_7_reset_error_count_per_channel(struct amdgpu_device *adev,
- uint32_t umc_reg_offset)
+static int umc_v6_7_reset_error_count_per_channel(struct amdgpu_device *adev,
+ uint32_t node_inst, uint32_t umc_inst,
+ uint32_t ch_inst, void *data)
{
uint32_t ecc_err_cnt_addr;
uint32_t ecc_err_cnt_sel, ecc_err_cnt_sel_addr;
+ uint32_t umc_reg_offset =
+ get_umc_v6_7_reg_offset(adev, umc_inst, ch_inst);
ecc_err_cnt_sel_addr =
SOC15_REG_OFFSET(UMC, 0,
@@ -409,58 +399,54 @@ static void umc_v6_7_reset_error_count_per_channel(struct amdgpu_device *adev,
/* clear higher chip error count */
WREG32_PCIE((ecc_err_cnt_addr + umc_reg_offset) * 4,
UMC_V6_7_CE_CNT_INIT);
+
+ return 0;
}
static void umc_v6_7_reset_error_count(struct amdgpu_device *adev)
{
- uint32_t umc_inst = 0;
- uint32_t ch_inst = 0;
- uint32_t umc_reg_offset = 0;
+ amdgpu_umc_loop_channels(adev,
+ umc_v6_7_reset_error_count_per_channel, NULL);
+}
- LOOP_UMC_INST_AND_CH(umc_inst, ch_inst) {
- umc_reg_offset = get_umc_v6_7_reg_offset(adev,
- umc_inst,
- ch_inst);
+static int umc_v6_7_query_ecc_error_count(struct amdgpu_device *adev,
+ uint32_t node_inst, uint32_t umc_inst,
+ uint32_t ch_inst, void *data)
+{
+ struct ras_err_data *err_data = (struct ras_err_data *)data;
+ uint32_t umc_reg_offset =
+ get_umc_v6_7_reg_offset(adev, umc_inst, ch_inst);
- umc_v6_7_reset_error_count_per_channel(adev,
- umc_reg_offset);
- }
+ umc_v6_7_query_correctable_error_count(adev,
+ umc_reg_offset,
+ &(err_data->ce_count),
+ ch_inst, umc_inst);
+
+ umc_v6_7_querry_uncorrectable_error_count(adev,
+ umc_reg_offset,
+ &(err_data->ue_count));
+
+ return 0;
}
static void umc_v6_7_query_ras_error_count(struct amdgpu_device *adev,
void *ras_error_status)
{
- struct ras_err_data *err_data = (struct ras_err_data *)ras_error_status;
-
- uint32_t umc_inst = 0;
- uint32_t ch_inst = 0;
- uint32_t umc_reg_offset = 0;
-
- /*TODO: driver needs to toggle DF Cstate to ensure
- * safe access of UMC registers. Will add the protection */
- LOOP_UMC_INST_AND_CH(umc_inst, ch_inst) {
- umc_reg_offset = get_umc_v6_7_reg_offset(adev,
- umc_inst,
- ch_inst);
- umc_v6_7_query_correctable_error_count(adev,
- umc_reg_offset,
- &(err_data->ce_count),
- ch_inst, umc_inst);
- umc_v6_7_querry_uncorrectable_error_count(adev,
- umc_reg_offset,
- &(err_data->ue_count));
- }
+ amdgpu_umc_loop_channels(adev,
+ umc_v6_7_query_ecc_error_count, ras_error_status);
umc_v6_7_reset_error_count(adev);
}
-static void umc_v6_7_query_error_address(struct amdgpu_device *adev,
- struct ras_err_data *err_data,
- uint32_t umc_reg_offset, uint32_t ch_inst,
- uint32_t umc_inst)
+static int umc_v6_7_query_error_address(struct amdgpu_device *adev,
+ uint32_t node_inst, uint32_t umc_inst,
+ uint32_t ch_inst, void *data)
{
uint32_t mc_umc_status_addr;
uint64_t mc_umc_status = 0, mc_umc_addrt0, err_addr;
+ struct ras_err_data *err_data = (struct ras_err_data *)data;
+ uint32_t umc_reg_offset =
+ get_umc_v6_7_reg_offset(adev, umc_inst, ch_inst);
mc_umc_status_addr =
SOC15_REG_OFFSET(UMC, 0, regMCA_UMC_UMC0_MCUMC_STATUST0);
@@ -470,12 +456,12 @@ static void umc_v6_7_query_error_address(struct amdgpu_device *adev,
mc_umc_status = RREG64_PCIE((mc_umc_status_addr + umc_reg_offset) * 4);
if (mc_umc_status == 0)
- return;
+ return 0;
if (!err_data->err_addr) {
/* clear umc status */
WREG64_PCIE((mc_umc_status_addr + umc_reg_offset) * 4, 0x0ULL);
- return;
+ return 0;
}
/* calculate error address if ue error is detected */
@@ -491,29 +477,15 @@ static void umc_v6_7_query_error_address(struct amdgpu_device *adev,
/* clear umc status */
WREG64_PCIE((mc_umc_status_addr + umc_reg_offset) * 4, 0x0ULL);
+
+ return 0;
}
static void umc_v6_7_query_ras_error_address(struct amdgpu_device *adev,
void *ras_error_status)
{
- struct ras_err_data *err_data = (struct ras_err_data *)ras_error_status;
-
- uint32_t umc_inst = 0;
- uint32_t ch_inst = 0;
- uint32_t umc_reg_offset = 0;
-
- /*TODO: driver needs to toggle DF Cstate to ensure
- * safe access of UMC resgisters. Will add the protection
- * when firmware interface is ready */
- LOOP_UMC_INST_AND_CH(umc_inst, ch_inst) {
- umc_reg_offset = get_umc_v6_7_reg_offset(adev,
- umc_inst,
- ch_inst);
- umc_v6_7_query_error_address(adev,
- err_data,
- umc_reg_offset, ch_inst,
- umc_inst);
- }
+ amdgpu_umc_loop_channels(adev,
+ umc_v6_7_query_error_address, ras_error_status);
}
static uint32_t umc_v6_7_query_ras_poison_mode_per_channel(
@@ -553,5 +525,4 @@ struct amdgpu_umc_ras umc_v6_7_ras = {
.query_ras_poison_mode = umc_v6_7_query_ras_poison_mode,
.ecc_info_query_ras_error_count = umc_v6_7_ecc_info_query_ras_error_count,
.ecc_info_query_ras_error_address = umc_v6_7_ecc_info_query_ras_error_address,
- .convert_ras_error_address = umc_v6_7_convert_error_address,
};
diff --git a/drivers/gpu/drm/amd/amdgpu/umc_v6_7.h b/drivers/gpu/drm/amd/amdgpu/umc_v6_7.h
index fe41ed2f5945..105245d5b6e5 100644
--- a/drivers/gpu/drm/amd/amdgpu/umc_v6_7.h
+++ b/drivers/gpu/drm/amd/amdgpu/umc_v6_7.h
@@ -71,5 +71,7 @@ extern const uint32_t
umc_v6_7_channel_idx_tbl_second[UMC_V6_7_UMC_INSTANCE_NUM][UMC_V6_7_CHANNEL_INSTANCE_NUM];
extern const uint32_t
umc_v6_7_channel_idx_tbl_first[UMC_V6_7_UMC_INSTANCE_NUM][UMC_V6_7_CHANNEL_INSTANCE_NUM];
-
+void umc_v6_7_convert_error_address(struct amdgpu_device *adev,
+ struct ras_err_data *err_data, uint64_t err_addr,
+ uint32_t ch_inst, uint32_t umc_inst);
#endif
diff --git a/drivers/gpu/drm/amd/amdgpu/umc_v8_10.c b/drivers/gpu/drm/amd/amdgpu/umc_v8_10.c
index 91235df54e22..d51ae0bc36f7 100644
--- a/drivers/gpu/drm/amd/amdgpu/umc_v8_10.c
+++ b/drivers/gpu/drm/amd/amdgpu/umc_v8_10.c
@@ -46,6 +46,16 @@ const struct channelnum_map_colbit umc_v8_10_channelnum_map_colbit_table[] = {
};
const uint32_t
+ umc_v8_10_channel_idx_tbl_ext0[]
+ [UMC_V8_10_UMC_INSTANCE_NUM]
+ [UMC_V8_10_CHANNEL_INSTANCE_NUM] = {
+ {{1, 5}, {7, 3}},
+ {{14, 15}, {13, 12}},
+ {{10, 11}, {9, 8}},
+ {{6, 2}, {0, 4}}
+ };
+
+const uint32_t
umc_v8_10_channel_idx_tbl[]
[UMC_V8_10_UMC_INSTANCE_NUM]
[UMC_V8_10_CHANNEL_INSTANCE_NUM] = {
@@ -66,10 +76,13 @@ static inline uint32_t get_umc_v8_10_reg_offset(struct amdgpu_device *adev,
UMC_8_NODE_DIST * node_inst;
}
-static void umc_v8_10_clear_error_count_per_channel(struct amdgpu_device *adev,
- uint32_t umc_reg_offset)
+static int umc_v8_10_clear_error_count_per_channel(struct amdgpu_device *adev,
+ uint32_t node_inst, uint32_t umc_inst,
+ uint32_t ch_inst, void *data)
{
uint32_t ecc_err_cnt_addr;
+ uint32_t umc_reg_offset =
+ get_umc_v8_10_reg_offset(adev, node_inst, umc_inst, ch_inst);
ecc_err_cnt_addr =
SOC15_REG_OFFSET(UMC, 0, regUMCCH0_0_GeccErrCnt);
@@ -77,24 +90,14 @@ static void umc_v8_10_clear_error_count_per_channel(struct amdgpu_device *adev,
/* clear error count */
WREG32_PCIE((ecc_err_cnt_addr + umc_reg_offset) * 4,
UMC_V8_10_CE_CNT_INIT);
+
+ return 0;
}
static void umc_v8_10_clear_error_count(struct amdgpu_device *adev)
{
- uint32_t node_inst = 0;
- uint32_t umc_inst = 0;
- uint32_t ch_inst = 0;
- uint32_t umc_reg_offset = 0;
-
- LOOP_UMC_EACH_NODE_INST_AND_CH(node_inst, umc_inst, ch_inst) {
- umc_reg_offset = get_umc_v8_10_reg_offset(adev,
- node_inst,
- umc_inst,
- ch_inst);
-
- umc_v8_10_clear_error_count_per_channel(adev,
- umc_reg_offset);
- }
+ amdgpu_umc_loop_channels(adev,
+ umc_v8_10_clear_error_count_per_channel, NULL);
}
static void umc_v8_10_query_correctable_error_count(struct amdgpu_device *adev,
@@ -137,29 +140,29 @@ static void umc_v8_10_query_uncorrectable_error_count(struct amdgpu_device *adev
*error_count += 1;
}
+static int umc_v8_10_query_ecc_error_count(struct amdgpu_device *adev,
+ uint32_t node_inst, uint32_t umc_inst,
+ uint32_t ch_inst, void *data)
+{
+ struct ras_err_data *err_data = (struct ras_err_data *)data;
+ uint32_t umc_reg_offset =
+ get_umc_v8_10_reg_offset(adev, node_inst, umc_inst, ch_inst);
+
+ umc_v8_10_query_correctable_error_count(adev,
+ umc_reg_offset,
+ &(err_data->ce_count));
+ umc_v8_10_query_uncorrectable_error_count(adev,
+ umc_reg_offset,
+ &(err_data->ue_count));
+
+ return 0;
+}
+
static void umc_v8_10_query_ras_error_count(struct amdgpu_device *adev,
void *ras_error_status)
{
- struct ras_err_data *err_data = (struct ras_err_data *)ras_error_status;
-
- uint32_t node_inst = 0;
- uint32_t umc_inst = 0;
- uint32_t ch_inst = 0;
- uint32_t umc_reg_offset = 0;
-
- LOOP_UMC_EACH_NODE_INST_AND_CH(node_inst, umc_inst, ch_inst) {
- umc_reg_offset = get_umc_v8_10_reg_offset(adev,
- node_inst,
- umc_inst,
- ch_inst);
-
- umc_v8_10_query_correctable_error_count(adev,
- umc_reg_offset,
- &(err_data->ce_count));
- umc_v8_10_query_uncorrectable_error_count(adev,
- umc_reg_offset,
- &(err_data->ue_count));
- }
+ amdgpu_umc_loop_channels(adev,
+ umc_v8_10_query_ecc_error_count, ras_error_status);
umc_v8_10_clear_error_count(adev);
}
@@ -199,39 +202,69 @@ static int umc_v8_10_swizzle_mode_na_to_pa(struct amdgpu_device *adev,
return 0;
}
-static void umc_v8_10_query_error_address(struct amdgpu_device *adev,
- struct ras_err_data *err_data,
- uint32_t umc_reg_offset,
- uint32_t node_inst,
- uint32_t ch_inst,
- uint32_t umc_inst)
+static void umc_v8_10_convert_error_address(struct amdgpu_device *adev,
+ struct ras_err_data *err_data, uint64_t err_addr,
+ uint32_t ch_inst, uint32_t umc_inst,
+ uint32_t node_inst, uint64_t mc_umc_status)
{
- uint64_t mc_umc_status_addr;
- uint64_t mc_umc_status, err_addr;
- uint64_t mc_umc_addrt0, na_err_addr_base;
+ uint64_t na_err_addr_base;
uint64_t na_err_addr, retired_page_addr;
uint32_t channel_index, addr_lsb, col = 0;
int ret = 0;
+ channel_index =
+ adev->umc.channel_idx_tbl[node_inst * adev->umc.umc_inst_num *
+ adev->umc.channel_inst_num +
+ umc_inst * adev->umc.channel_inst_num +
+ ch_inst];
+
+ /* the lowest lsb bits should be ignored */
+ addr_lsb = REG_GET_FIELD(mc_umc_status, MCA_UMC_UMC0_MCUMC_STATUST0, AddrLsb);
+ err_addr &= ~((0x1ULL << addr_lsb) - 1);
+ na_err_addr_base = err_addr & ~(0x3ULL << UMC_V8_10_NA_C5_BIT);
+
+ /* loop for all possibilities of [C6 C5] in normal address. */
+ for (col = 0; col < UMC_V8_10_NA_COL_2BITS_POWER_OF_2_NUM; col++) {
+ na_err_addr = na_err_addr_base | (col << UMC_V8_10_NA_C5_BIT);
+
+ /* Mapping normal error address to retired soc physical address. */
+ ret = umc_v8_10_swizzle_mode_na_to_pa(adev, channel_index,
+ na_err_addr, &retired_page_addr);
+ if (ret) {
+ dev_err(adev->dev, "Failed to map pa from umc na.\n");
+ break;
+ }
+ dev_info(adev->dev, "Error Address(PA): 0x%llx\n",
+ retired_page_addr);
+ amdgpu_umc_fill_error_record(err_data, na_err_addr,
+ retired_page_addr, channel_index, umc_inst);
+ }
+}
+
+static int umc_v8_10_query_error_address(struct amdgpu_device *adev,
+ uint32_t node_inst, uint32_t umc_inst,
+ uint32_t ch_inst, void *data)
+{
+ uint64_t mc_umc_status_addr;
+ uint64_t mc_umc_status, err_addr;
+ uint64_t mc_umc_addrt0;
+ struct ras_err_data *err_data = (struct ras_err_data *)data;
+ uint32_t umc_reg_offset =
+ get_umc_v8_10_reg_offset(adev, node_inst, umc_inst, ch_inst);
+
mc_umc_status_addr =
SOC15_REG_OFFSET(UMC, 0, regMCA_UMC_UMC0_MCUMC_STATUST0);
mc_umc_status = RREG64_PCIE((mc_umc_status_addr + umc_reg_offset) * 4);
if (mc_umc_status == 0)
- return;
+ return 0;
if (!err_data->err_addr) {
/* clear umc status */
WREG64_PCIE((mc_umc_status_addr + umc_reg_offset) * 4, 0x0ULL);
- return;
+ return 0;
}
- channel_index =
- adev->umc.channel_idx_tbl[node_inst * adev->umc.umc_inst_num *
- adev->umc.channel_inst_num +
- umc_inst * adev->umc.channel_inst_num +
- ch_inst];
-
/* calculate error address if ue error is detected */
if (REG_GET_FIELD(mc_umc_status, MCA_UMC_UMC0_MCUMC_STATUST0, Val) == 1 &&
REG_GET_FIELD(mc_umc_status, MCA_UMC_UMC0_MCUMC_STATUST0, AddrV) == 1 &&
@@ -241,62 +274,31 @@ static void umc_v8_10_query_error_address(struct amdgpu_device *adev,
err_addr = RREG64_PCIE((mc_umc_addrt0 + umc_reg_offset) * 4);
err_addr = REG_GET_FIELD(err_addr, MCA_UMC_UMC0_MCUMC_ADDRT0, ErrorAddr);
- /* the lowest lsb bits should be ignored */
- addr_lsb = REG_GET_FIELD(mc_umc_status, MCA_UMC_UMC0_MCUMC_STATUST0, AddrLsb);
- err_addr &= ~((0x1ULL << addr_lsb) - 1);
- na_err_addr_base = err_addr & ~(0x3ULL << UMC_V8_10_NA_C5_BIT);
-
- /* loop for all possibilities of [C6 C5] in normal address. */
- for (col = 0; col < UMC_V8_10_NA_COL_2BITS_POWER_OF_2_NUM; col++) {
- na_err_addr = na_err_addr_base | (col << UMC_V8_10_NA_C5_BIT);
-
- /* Mapping normal error address to retired soc physical address. */
- ret = umc_v8_10_swizzle_mode_na_to_pa(adev, channel_index,
- na_err_addr, &retired_page_addr);
- if (ret) {
- dev_err(adev->dev, "Failed to map pa from umc na.\n");
- break;
- }
- dev_info(adev->dev, "Error Address(PA): 0x%llx\n",
- retired_page_addr);
- amdgpu_umc_fill_error_record(err_data, na_err_addr,
- retired_page_addr, channel_index, umc_inst);
- }
+ umc_v8_10_convert_error_address(adev, err_data, err_addr,
+ ch_inst, umc_inst, node_inst, mc_umc_status);
}
/* clear umc status */
WREG64_PCIE((mc_umc_status_addr + umc_reg_offset) * 4, 0x0ULL);
+
+ return 0;
}
static void umc_v8_10_query_ras_error_address(struct amdgpu_device *adev,
void *ras_error_status)
{
- struct ras_err_data *err_data = (struct ras_err_data *)ras_error_status;
- uint32_t node_inst = 0;
- uint32_t umc_inst = 0;
- uint32_t ch_inst = 0;
- uint32_t umc_reg_offset = 0;
-
- LOOP_UMC_EACH_NODE_INST_AND_CH(node_inst, umc_inst, ch_inst) {
- umc_reg_offset = get_umc_v8_10_reg_offset(adev,
- node_inst,
- umc_inst,
- ch_inst);
-
- umc_v8_10_query_error_address(adev,
- err_data,
- umc_reg_offset,
- node_inst,
- ch_inst,
- umc_inst);
- }
+ amdgpu_umc_loop_channels(adev,
+ umc_v8_10_query_error_address, ras_error_status);
}
-static void umc_v8_10_err_cnt_init_per_channel(struct amdgpu_device *adev,
- uint32_t umc_reg_offset)
+static int umc_v8_10_err_cnt_init_per_channel(struct amdgpu_device *adev,
+ uint32_t node_inst, uint32_t umc_inst,
+ uint32_t ch_inst, void *data)
{
uint32_t ecc_err_cnt_sel, ecc_err_cnt_sel_addr;
uint32_t ecc_err_cnt_addr;
+ uint32_t umc_reg_offset =
+ get_umc_v8_10_reg_offset(adev, node_inst, umc_inst, ch_inst);
ecc_err_cnt_sel_addr =
SOC15_REG_OFFSET(UMC, 0, regUMCCH0_0_GeccErrCntSel);
@@ -311,48 +313,135 @@ static void umc_v8_10_err_cnt_init_per_channel(struct amdgpu_device *adev,
WREG32_PCIE((ecc_err_cnt_sel_addr + umc_reg_offset) * 4, ecc_err_cnt_sel);
/* set error count to initial value */
WREG32_PCIE((ecc_err_cnt_addr + umc_reg_offset) * 4, UMC_V8_10_CE_CNT_INIT);
+
+ return 0;
}
static void umc_v8_10_err_cnt_init(struct amdgpu_device *adev)
{
- uint32_t node_inst = 0;
- uint32_t umc_inst = 0;
- uint32_t ch_inst = 0;
- uint32_t umc_reg_offset = 0;
-
- LOOP_UMC_EACH_NODE_INST_AND_CH(node_inst, umc_inst, ch_inst) {
- umc_reg_offset = get_umc_v8_10_reg_offset(adev,
- node_inst,
- umc_inst,
- ch_inst);
-
- umc_v8_10_err_cnt_init_per_channel(adev, umc_reg_offset);
+ amdgpu_umc_loop_channels(adev,
+ umc_v8_10_err_cnt_init_per_channel, NULL);
+}
+
+static bool umc_v8_10_query_ras_poison_mode(struct amdgpu_device *adev)
+{
+ /*
+ * Force return true, because UMCCH0_0_GeccCtrl
+ * is not accessible from host side
+ */
+ return true;
+}
+
+static void umc_v8_10_ecc_info_query_correctable_error_count(struct amdgpu_device *adev,
+ uint32_t node_inst, uint32_t umc_inst, uint32_t ch_inst,
+ unsigned long *error_count)
+{
+ uint64_t mc_umc_status;
+ uint32_t eccinfo_table_idx;
+ struct amdgpu_ras *ras = amdgpu_ras_get_context(adev);
+
+ eccinfo_table_idx = node_inst * adev->umc.umc_inst_num *
+ adev->umc.channel_inst_num +
+ umc_inst * adev->umc.channel_inst_num +
+ ch_inst;
+
+ /* check the MCUMC_STATUS */
+ mc_umc_status = ras->umc_ecc.ecc[eccinfo_table_idx].mca_umc_status;
+ if (REG_GET_FIELD(mc_umc_status, MCA_UMC_UMC0_MCUMC_STATUST0, Val) == 1 &&
+ REG_GET_FIELD(mc_umc_status, MCA_UMC_UMC0_MCUMC_STATUST0, CECC) == 1) {
+ *error_count += 1;
}
}
-static uint32_t umc_v8_10_query_ras_poison_mode_per_channel(
- struct amdgpu_device *adev,
- uint32_t umc_reg_offset)
+static void umc_v8_10_ecc_info_query_uncorrectable_error_count(struct amdgpu_device *adev,
+ uint32_t node_inst, uint32_t umc_inst, uint32_t ch_inst,
+ unsigned long *error_count)
{
- uint32_t ecc_ctrl_addr, ecc_ctrl;
+ uint64_t mc_umc_status;
+ uint32_t eccinfo_table_idx;
+ struct amdgpu_ras *ras = amdgpu_ras_get_context(adev);
- ecc_ctrl_addr =
- SOC15_REG_OFFSET(UMC, 0, regUMCCH0_0_GeccCtrl);
- ecc_ctrl = RREG32_PCIE((ecc_ctrl_addr +
- umc_reg_offset) * 4);
+ eccinfo_table_idx = node_inst * adev->umc.umc_inst_num *
+ adev->umc.channel_inst_num +
+ umc_inst * adev->umc.channel_inst_num +
+ ch_inst;
- return REG_GET_FIELD(ecc_ctrl, UMCCH0_0_GeccCtrl, UCFatalEn);
+ /* check the MCUMC_STATUS */
+ mc_umc_status = ras->umc_ecc.ecc[eccinfo_table_idx].mca_umc_status;
+ if ((REG_GET_FIELD(mc_umc_status, MCA_UMC_UMC0_MCUMC_STATUST0, Val) == 1) &&
+ (REG_GET_FIELD(mc_umc_status, MCA_UMC_UMC0_MCUMC_STATUST0, Deferred) == 1 ||
+ REG_GET_FIELD(mc_umc_status, MCA_UMC_UMC0_MCUMC_STATUST0, UECC) == 1 ||
+ REG_GET_FIELD(mc_umc_status, MCA_UMC_UMC0_MCUMC_STATUST0, PCC) == 1 ||
+ REG_GET_FIELD(mc_umc_status, MCA_UMC_UMC0_MCUMC_STATUST0, UC) == 1 ||
+ REG_GET_FIELD(mc_umc_status, MCA_UMC_UMC0_MCUMC_STATUST0, TCC) == 1)) {
+ *error_count += 1;
+ }
}
-static bool umc_v8_10_query_ras_poison_mode(struct amdgpu_device *adev)
+static int umc_v8_10_ecc_info_query_ecc_error_count(struct amdgpu_device *adev,
+ uint32_t node_inst, uint32_t umc_inst,
+ uint32_t ch_inst, void *data)
{
- uint32_t umc_reg_offset = 0;
+ struct ras_err_data *err_data = (struct ras_err_data *)data;
+
+ umc_v8_10_ecc_info_query_correctable_error_count(adev,
+ node_inst, umc_inst, ch_inst,
+ &(err_data->ce_count));
+ umc_v8_10_ecc_info_query_uncorrectable_error_count(adev,
+ node_inst, umc_inst, ch_inst,
+ &(err_data->ue_count));
+ return 0;
+}
- /* Enabling fatal error in umc node0 instance0 channel0 will be
- * considered as fatal error mode
- */
- umc_reg_offset = get_umc_v8_10_reg_offset(adev, 0, 0, 0);
- return !umc_v8_10_query_ras_poison_mode_per_channel(adev, umc_reg_offset);
+static void umc_v8_10_ecc_info_query_ras_error_count(struct amdgpu_device *adev,
+ void *ras_error_status)
+{
+ amdgpu_umc_loop_channels(adev,
+ umc_v8_10_ecc_info_query_ecc_error_count, ras_error_status);
+}
+
+static int umc_v8_10_ecc_info_query_error_address(struct amdgpu_device *adev,
+ uint32_t node_inst, uint32_t umc_inst,
+ uint32_t ch_inst, void *data)
+{
+ uint32_t eccinfo_table_idx;
+ uint64_t mc_umc_status, err_addr;
+ struct ras_err_data *err_data = (struct ras_err_data *)data;
+ struct amdgpu_ras *ras = amdgpu_ras_get_context(adev);
+
+ eccinfo_table_idx = node_inst * adev->umc.umc_inst_num *
+ adev->umc.channel_inst_num +
+ umc_inst * adev->umc.channel_inst_num +
+ ch_inst;
+
+ mc_umc_status = ras->umc_ecc.ecc[eccinfo_table_idx].mca_umc_status;
+
+ if (mc_umc_status == 0)
+ return 0;
+
+ if (!err_data->err_addr)
+ return 0;
+
+ /* calculate error address if ue error is detected */
+ if (REG_GET_FIELD(mc_umc_status, MCA_UMC_UMC0_MCUMC_STATUST0, Val) == 1 &&
+ REG_GET_FIELD(mc_umc_status, MCA_UMC_UMC0_MCUMC_STATUST0, AddrV) == 1 &&
+ (REG_GET_FIELD(mc_umc_status, MCA_UMC_UMC0_MCUMC_STATUST0, UECC) == 1)) {
+
+ err_addr = ras->umc_ecc.ecc[eccinfo_table_idx].mca_umc_addr;
+ err_addr = REG_GET_FIELD(err_addr, MCA_UMC_UMC0_MCUMC_ADDRT0, ErrorAddr);
+
+ umc_v8_10_convert_error_address(adev, err_data, err_addr,
+ ch_inst, umc_inst, node_inst, mc_umc_status);
+ }
+
+ return 0;
+}
+
+static void umc_v8_10_ecc_info_query_ras_error_address(struct amdgpu_device *adev,
+ void *ras_error_status)
+{
+ amdgpu_umc_loop_channels(adev,
+ umc_v8_10_ecc_info_query_error_address, ras_error_status);
}
const struct amdgpu_ras_block_hw_ops umc_v8_10_ras_hw_ops = {
@@ -366,4 +455,6 @@ struct amdgpu_umc_ras umc_v8_10_ras = {
},
.err_cnt_init = umc_v8_10_err_cnt_init,
.query_ras_poison_mode = umc_v8_10_query_ras_poison_mode,
+ .ecc_info_query_ras_error_count = umc_v8_10_ecc_info_query_ras_error_count,
+ .ecc_info_query_ras_error_address = umc_v8_10_ecc_info_query_ras_error_address,
};
diff --git a/drivers/gpu/drm/amd/amdgpu/umc_v8_10.h b/drivers/gpu/drm/amd/amdgpu/umc_v8_10.h
index 849ede88e111..c6dfd433fec7 100644
--- a/drivers/gpu/drm/amd/amdgpu/umc_v8_10.h
+++ b/drivers/gpu/drm/amd/amdgpu/umc_v8_10.h
@@ -31,9 +31,9 @@
/* number of umc instance with memory map register access */
#define UMC_V8_10_UMC_INSTANCE_NUM 2
-/* Total channel instances for all umc nodes */
+/* Total channel instances for all available umc nodes */
#define UMC_V8_10_TOTAL_CHANNEL_NUM(adev) \
- (UMC_V8_10_CHANNEL_INSTANCE_NUM * UMC_V8_10_UMC_INSTANCE_NUM * (adev)->umc.node_inst_num)
+ (UMC_V8_10_CHANNEL_INSTANCE_NUM * UMC_V8_10_UMC_INSTANCE_NUM * (adev)->gmc.num_umc)
/* UMC regiser per channel offset */
#define UMC_V8_10_PER_CHANNEL_OFFSET 0x400
@@ -66,5 +66,9 @@ extern const uint32_t
[UMC_V8_10_UMC_INSTANCE_NUM]
[UMC_V8_10_CHANNEL_INSTANCE_NUM];
+extern const uint32_t
+ umc_v8_10_channel_idx_tbl_ext0[]
+ [UMC_V8_10_UMC_INSTANCE_NUM]
+ [UMC_V8_10_CHANNEL_INSTANCE_NUM];
#endif
diff --git a/drivers/gpu/drm/amd/amdgpu/uvd_v6_0.c b/drivers/gpu/drm/amd/amdgpu/uvd_v6_0.c
index 375c440957dc..5fe872f4bea7 100644
--- a/drivers/gpu/drm/amd/amdgpu/uvd_v6_0.c
+++ b/drivers/gpu/drm/amd/amdgpu/uvd_v6_0.c
@@ -216,8 +216,8 @@ static int uvd_v6_0_enc_get_create_msg(struct amdgpu_ring *ring, uint32_t handle
uint64_t addr;
int i, r;
- r = amdgpu_job_alloc_with_ib(ring->adev, ib_size_dw * 4,
- AMDGPU_IB_POOL_DIRECT, &job);
+ r = amdgpu_job_alloc_with_ib(ring->adev, NULL, NULL, ib_size_dw * 4,
+ AMDGPU_IB_POOL_DIRECT, &job);
if (r)
return r;
@@ -280,8 +280,8 @@ static int uvd_v6_0_enc_get_destroy_msg(struct amdgpu_ring *ring,
uint64_t addr;
int i, r;
- r = amdgpu_job_alloc_with_ib(ring->adev, ib_size_dw * 4,
- AMDGPU_IB_POOL_DIRECT, &job);
+ r = amdgpu_job_alloc_with_ib(ring->adev, NULL, NULL, ib_size_dw * 4,
+ AMDGPU_IB_POOL_DIRECT, &job);
if (r)
return r;
diff --git a/drivers/gpu/drm/amd/amdgpu/uvd_v7_0.c b/drivers/gpu/drm/amd/amdgpu/uvd_v7_0.c
index e668b3baa8c6..e32b656b3dab 100644
--- a/drivers/gpu/drm/amd/amdgpu/uvd_v7_0.c
+++ b/drivers/gpu/drm/amd/amdgpu/uvd_v7_0.c
@@ -213,7 +213,7 @@ static int uvd_v7_0_enc_ring_test_ring(struct amdgpu_ring *ring)
*
* Open up a stream for HW test
*/
-static int uvd_v7_0_enc_get_create_msg(struct amdgpu_ring *ring, uint32_t handle,
+static int uvd_v7_0_enc_get_create_msg(struct amdgpu_ring *ring, u32 handle,
struct amdgpu_bo *bo,
struct dma_fence **fence)
{
@@ -224,8 +224,8 @@ static int uvd_v7_0_enc_get_create_msg(struct amdgpu_ring *ring, uint32_t handle
uint64_t addr;
int i, r;
- r = amdgpu_job_alloc_with_ib(ring->adev, ib_size_dw * 4,
- AMDGPU_IB_POOL_DIRECT, &job);
+ r = amdgpu_job_alloc_with_ib(ring->adev, NULL, NULL, ib_size_dw * 4,
+ AMDGPU_IB_POOL_DIRECT, &job);
if (r)
return r;
@@ -276,7 +276,7 @@ err:
*
* Close up a stream for HW test or if userspace failed to do so
*/
-static int uvd_v7_0_enc_get_destroy_msg(struct amdgpu_ring *ring, uint32_t handle,
+static int uvd_v7_0_enc_get_destroy_msg(struct amdgpu_ring *ring, u32 handle,
struct amdgpu_bo *bo,
struct dma_fence **fence)
{
@@ -287,8 +287,8 @@ static int uvd_v7_0_enc_get_destroy_msg(struct amdgpu_ring *ring, uint32_t handl
uint64_t addr;
int i, r;
- r = amdgpu_job_alloc_with_ib(ring->adev, ib_size_dw * 4,
- AMDGPU_IB_POOL_DIRECT, &job);
+ r = amdgpu_job_alloc_with_ib(ring->adev, NULL, NULL, ib_size_dw * 4,
+ AMDGPU_IB_POOL_DIRECT, &job);
if (r)
return r;
@@ -444,6 +444,7 @@ static int uvd_v7_0_sw_init(void *handle)
continue;
if (!amdgpu_sriov_vf(adev)) {
ring = &adev->uvd.inst[j].ring;
+ ring->vm_hub = AMDGPU_MMHUB_0;
sprintf(ring->name, "uvd_%d", ring->me);
r = amdgpu_ring_init(adev, ring, 512,
&adev->uvd.inst[j].irq, 0,
@@ -454,6 +455,7 @@ static int uvd_v7_0_sw_init(void *handle)
for (i = 0; i < adev->uvd.num_enc_rings; ++i) {
ring = &adev->uvd.inst[j].ring_enc[i];
+ ring->vm_hub = AMDGPU_MMHUB_0;
sprintf(ring->name, "uvd_enc_%d.%d", ring->me, i);
if (amdgpu_sriov_vf(adev)) {
ring->use_doorbell = true;
@@ -1397,7 +1399,7 @@ static void uvd_v7_0_ring_emit_reg_wait(struct amdgpu_ring *ring, uint32_t reg,
static void uvd_v7_0_ring_emit_vm_flush(struct amdgpu_ring *ring,
unsigned vmid, uint64_t pd_addr)
{
- struct amdgpu_vmhub *hub = &ring->adev->vmhub[ring->funcs->vmhub];
+ struct amdgpu_vmhub *hub = &ring->adev->vmhub[ring->vm_hub];
uint32_t data0, data1, mask;
pd_addr = amdgpu_gmc_emit_flush_gpu_tlb(ring, vmid, pd_addr);
@@ -1440,7 +1442,7 @@ static void uvd_v7_0_enc_ring_emit_reg_wait(struct amdgpu_ring *ring,
static void uvd_v7_0_enc_ring_emit_vm_flush(struct amdgpu_ring *ring,
unsigned int vmid, uint64_t pd_addr)
{
- struct amdgpu_vmhub *hub = &ring->adev->vmhub[ring->funcs->vmhub];
+ struct amdgpu_vmhub *hub = &ring->adev->vmhub[ring->vm_hub];
pd_addr = amdgpu_gmc_emit_flush_gpu_tlb(ring, vmid, pd_addr);
@@ -1802,7 +1804,6 @@ static const struct amdgpu_ring_funcs uvd_v7_0_ring_vm_funcs = {
.align_mask = 0xf,
.support_64bit_ptrs = false,
.no_user_fence = true,
- .vmhub = AMDGPU_MMHUB_0,
.get_rptr = uvd_v7_0_ring_get_rptr,
.get_wptr = uvd_v7_0_ring_get_wptr,
.set_wptr = uvd_v7_0_ring_set_wptr,
@@ -1835,7 +1836,6 @@ static const struct amdgpu_ring_funcs uvd_v7_0_enc_ring_vm_funcs = {
.nop = HEVC_ENC_CMD_NO_OP,
.support_64bit_ptrs = false,
.no_user_fence = true,
- .vmhub = AMDGPU_MMHUB_0,
.get_rptr = uvd_v7_0_enc_ring_get_rptr,
.get_wptr = uvd_v7_0_enc_ring_get_wptr,
.set_wptr = uvd_v7_0_enc_ring_set_wptr,
diff --git a/drivers/gpu/drm/amd/amdgpu/vce_v4_0.c b/drivers/gpu/drm/amd/amdgpu/vce_v4_0.c
index 66cd3d11aa4b..57b85bb6a1e4 100644
--- a/drivers/gpu/drm/amd/amdgpu/vce_v4_0.c
+++ b/drivers/gpu/drm/amd/amdgpu/vce_v4_0.c
@@ -466,6 +466,7 @@ static int vce_v4_0_sw_init(void *handle)
enum amdgpu_ring_priority_level hw_prio = amdgpu_vce_get_ring_prio(i);
ring = &adev->vce.ring[i];
+ ring->vm_hub = AMDGPU_MMHUB_0;
sprintf(ring->name, "vce%d", i);
if (amdgpu_sriov_vf(adev)) {
/* DOORBELL only works under SRIOV */
@@ -1021,7 +1022,7 @@ static void vce_v4_0_emit_reg_wait(struct amdgpu_ring *ring, uint32_t reg,
static void vce_v4_0_emit_vm_flush(struct amdgpu_ring *ring,
unsigned int vmid, uint64_t pd_addr)
{
- struct amdgpu_vmhub *hub = &ring->adev->vmhub[ring->funcs->vmhub];
+ struct amdgpu_vmhub *hub = &ring->adev->vmhub[ring->vm_hub];
pd_addr = amdgpu_gmc_emit_flush_gpu_tlb(ring, vmid, pd_addr);
@@ -1103,7 +1104,6 @@ static const struct amdgpu_ring_funcs vce_v4_0_ring_vm_funcs = {
.nop = VCE_CMD_NO_OP,
.support_64bit_ptrs = false,
.no_user_fence = true,
- .vmhub = AMDGPU_MMHUB_0,
.get_rptr = vce_v4_0_ring_get_rptr,
.get_wptr = vce_v4_0_ring_get_wptr,
.set_wptr = vce_v4_0_ring_set_wptr,
diff --git a/drivers/gpu/drm/amd/amdgpu/vcn_sw_ring.c b/drivers/gpu/drm/amd/amdgpu/vcn_sw_ring.c
index 1ceda3d0cd5b..2b9ddb3d2fe1 100644
--- a/drivers/gpu/drm/amd/amdgpu/vcn_sw_ring.c
+++ b/drivers/gpu/drm/amd/amdgpu/vcn_sw_ring.c
@@ -65,7 +65,7 @@ void vcn_dec_sw_ring_emit_reg_wait(struct amdgpu_ring *ring, uint32_t reg,
void vcn_dec_sw_ring_emit_vm_flush(struct amdgpu_ring *ring,
uint32_t vmid, uint64_t pd_addr)
{
- struct amdgpu_vmhub *hub = &ring->adev->vmhub[ring->funcs->vmhub];
+ struct amdgpu_vmhub *hub = &ring->adev->vmhub[ring->vm_hub];
uint32_t data0, data1, mask;
pd_addr = amdgpu_gmc_emit_flush_gpu_tlb(ring, vmid, pd_addr);
diff --git a/drivers/gpu/drm/amd/amdgpu/vcn_v1_0.c b/drivers/gpu/drm/amd/amdgpu/vcn_v1_0.c
index f0fbcda76f5e..761c28fa6ec1 100644
--- a/drivers/gpu/drm/amd/amdgpu/vcn_v1_0.c
+++ b/drivers/gpu/drm/amd/amdgpu/vcn_v1_0.c
@@ -57,11 +57,12 @@ static void vcn_v1_0_idle_work_handler(struct work_struct *work);
static void vcn_v1_0_ring_begin_use(struct amdgpu_ring *ring);
/**
- * vcn_v1_0_early_init - set function pointers
+ * vcn_v1_0_early_init - set function pointers and load microcode
*
* @handle: amdgpu_device pointer
*
* Set ring and irq function pointers
+ * Load microcode from filesystem
*/
static int vcn_v1_0_early_init(void *handle)
{
@@ -75,7 +76,7 @@ static int vcn_v1_0_early_init(void *handle)
jpeg_v1_0_early_init(handle);
- return 0;
+ return amdgpu_vcn_early_init(adev);
}
/**
@@ -119,6 +120,7 @@ static int vcn_v1_0_sw_init(void *handle)
return r;
ring = &adev->vcn.inst->ring_dec;
+ ring->vm_hub = AMDGPU_MMHUB_0;
sprintf(ring->name, "vcn_dec");
r = amdgpu_ring_init(adev, ring, 512, &adev->vcn.inst->irq, 0,
AMDGPU_RING_PRIO_DEFAULT, NULL);
@@ -140,6 +142,7 @@ static int vcn_v1_0_sw_init(void *handle)
enum amdgpu_ring_priority_level hw_prio = amdgpu_vcn_get_enc_ring_prio(i);
ring = &adev->vcn.inst->ring_enc[i];
+ ring->vm_hub = AMDGPU_MMHUB_0;
sprintf(ring->name, "vcn_enc%d", i);
r = amdgpu_ring_init(adev, ring, 512, &adev->vcn.inst->irq, 0,
hw_prio, NULL);
@@ -1547,7 +1550,7 @@ static void vcn_v1_0_dec_ring_emit_reg_wait(struct amdgpu_ring *ring,
static void vcn_v1_0_dec_ring_emit_vm_flush(struct amdgpu_ring *ring,
unsigned vmid, uint64_t pd_addr)
{
- struct amdgpu_vmhub *hub = &ring->adev->vmhub[ring->funcs->vmhub];
+ struct amdgpu_vmhub *hub = &ring->adev->vmhub[ring->vm_hub];
uint32_t data0, data1, mask;
pd_addr = amdgpu_gmc_emit_flush_gpu_tlb(ring, vmid, pd_addr);
@@ -1692,7 +1695,7 @@ static void vcn_v1_0_enc_ring_emit_reg_wait(struct amdgpu_ring *ring,
static void vcn_v1_0_enc_ring_emit_vm_flush(struct amdgpu_ring *ring,
unsigned int vmid, uint64_t pd_addr)
{
- struct amdgpu_vmhub *hub = &ring->adev->vmhub[ring->funcs->vmhub];
+ struct amdgpu_vmhub *hub = &ring->adev->vmhub[ring->vm_hub];
pd_addr = amdgpu_gmc_emit_flush_gpu_tlb(ring, vmid, pd_addr);
@@ -1976,7 +1979,6 @@ static const struct amdgpu_ring_funcs vcn_v1_0_dec_ring_vm_funcs = {
.support_64bit_ptrs = false,
.no_user_fence = true,
.secure_submission_supported = true,
- .vmhub = AMDGPU_MMHUB_0,
.get_rptr = vcn_v1_0_dec_ring_get_rptr,
.get_wptr = vcn_v1_0_dec_ring_get_wptr,
.set_wptr = vcn_v1_0_dec_ring_set_wptr,
@@ -2011,7 +2013,6 @@ static const struct amdgpu_ring_funcs vcn_v1_0_enc_ring_vm_funcs = {
.nop = VCN_ENC_CMD_NO_OP,
.support_64bit_ptrs = false,
.no_user_fence = true,
- .vmhub = AMDGPU_MMHUB_0,
.get_rptr = vcn_v1_0_enc_ring_get_rptr,
.get_wptr = vcn_v1_0_enc_ring_get_wptr,
.set_wptr = vcn_v1_0_enc_ring_set_wptr,
diff --git a/drivers/gpu/drm/amd/amdgpu/vcn_v2_0.c b/drivers/gpu/drm/amd/amdgpu/vcn_v2_0.c
index 08871bad9994..7c2b3aa48083 100644
--- a/drivers/gpu/drm/amd/amdgpu/vcn_v2_0.c
+++ b/drivers/gpu/drm/amd/amdgpu/vcn_v2_0.c
@@ -62,11 +62,12 @@ static int vcn_v2_0_pause_dpg_mode(struct amdgpu_device *adev,
int inst_idx, struct dpg_pause_state *new_state);
static int vcn_v2_0_start_sriov(struct amdgpu_device *adev);
/**
- * vcn_v2_0_early_init - set function pointers
+ * vcn_v2_0_early_init - set function pointers and load microcode
*
* @handle: amdgpu_device pointer
*
* Set ring and irq function pointers
+ * Load microcode from filesystem
*/
static int vcn_v2_0_early_init(void *handle)
{
@@ -81,7 +82,7 @@ static int vcn_v2_0_early_init(void *handle)
vcn_v2_0_set_enc_ring_funcs(adev);
vcn_v2_0_set_irq_funcs(adev);
- return 0;
+ return amdgpu_vcn_early_init(adev);
}
/**
@@ -128,6 +129,7 @@ static int vcn_v2_0_sw_init(void *handle)
ring->use_doorbell = true;
ring->doorbell_index = adev->doorbell_index.vcn.vcn_ring0_1 << 1;
+ ring->vm_hub = AMDGPU_MMHUB_0;
sprintf(ring->name, "vcn_dec");
r = amdgpu_ring_init(adev, ring, 512, &adev->vcn.inst->irq, 0,
@@ -158,6 +160,7 @@ static int vcn_v2_0_sw_init(void *handle)
ring = &adev->vcn.inst->ring_enc[i];
ring->use_doorbell = true;
+ ring->vm_hub = AMDGPU_MMHUB_0;
if (!amdgpu_sriov_vf(adev))
ring->doorbell_index = (adev->doorbell_index.vcn.vcn_ring0_1 << 1) + 2 + i;
else
@@ -1510,7 +1513,7 @@ void vcn_v2_0_dec_ring_emit_reg_wait(struct amdgpu_ring *ring, uint32_t reg,
void vcn_v2_0_dec_ring_emit_vm_flush(struct amdgpu_ring *ring,
unsigned vmid, uint64_t pd_addr)
{
- struct amdgpu_vmhub *hub = &ring->adev->vmhub[ring->funcs->vmhub];
+ struct amdgpu_vmhub *hub = &ring->adev->vmhub[ring->vm_hub];
uint32_t data0, data1, mask;
pd_addr = amdgpu_gmc_emit_flush_gpu_tlb(ring, vmid, pd_addr);
@@ -1670,7 +1673,7 @@ void vcn_v2_0_enc_ring_emit_reg_wait(struct amdgpu_ring *ring, uint32_t reg,
void vcn_v2_0_enc_ring_emit_vm_flush(struct amdgpu_ring *ring,
unsigned int vmid, uint64_t pd_addr)
{
- struct amdgpu_vmhub *hub = &ring->adev->vmhub[ring->funcs->vmhub];
+ struct amdgpu_vmhub *hub = &ring->adev->vmhub[ring->vm_hub];
pd_addr = amdgpu_gmc_emit_flush_gpu_tlb(ring, vmid, pd_addr);
@@ -2013,7 +2016,6 @@ static const struct amdgpu_ring_funcs vcn_v2_0_dec_ring_vm_funcs = {
.type = AMDGPU_RING_TYPE_VCN_DEC,
.align_mask = 0xf,
.secure_submission_supported = true,
- .vmhub = AMDGPU_MMHUB_0,
.get_rptr = vcn_v2_0_dec_ring_get_rptr,
.get_wptr = vcn_v2_0_dec_ring_get_wptr,
.set_wptr = vcn_v2_0_dec_ring_set_wptr,
@@ -2044,7 +2046,6 @@ static const struct amdgpu_ring_funcs vcn_v2_0_enc_ring_vm_funcs = {
.type = AMDGPU_RING_TYPE_VCN_ENC,
.align_mask = 0x3f,
.nop = VCN_ENC_CMD_NO_OP,
- .vmhub = AMDGPU_MMHUB_0,
.get_rptr = vcn_v2_0_enc_ring_get_rptr,
.get_wptr = vcn_v2_0_enc_ring_get_wptr,
.set_wptr = vcn_v2_0_enc_ring_set_wptr,
diff --git a/drivers/gpu/drm/amd/amdgpu/vcn_v2_5.c b/drivers/gpu/drm/amd/amdgpu/vcn_v2_5.c
index 8a7006d62a87..ab0b45d0ead1 100644
--- a/drivers/gpu/drm/amd/amdgpu/vcn_v2_5.c
+++ b/drivers/gpu/drm/amd/amdgpu/vcn_v2_5.c
@@ -71,11 +71,12 @@ static int amdgpu_ih_clientid_vcns[] = {
};
/**
- * vcn_v2_5_early_init - set function pointers
+ * vcn_v2_5_early_init - set function pointers and load microcode
*
* @handle: amdgpu_device pointer
*
* Set ring and irq function pointers
+ * Load microcode from filesystem
*/
static int vcn_v2_5_early_init(void *handle)
{
@@ -107,7 +108,7 @@ static int vcn_v2_5_early_init(void *handle)
vcn_v2_5_set_irq_funcs(adev);
vcn_v2_5_set_ras_funcs(adev);
- return 0;
+ return amdgpu_vcn_early_init(adev);
}
/**
@@ -185,6 +186,12 @@ static int vcn_v2_5_sw_init(void *handle)
ring->doorbell_index = (adev->doorbell_index.vcn.vcn_ring0_1 << 1) +
(amdgpu_sriov_vf(adev) ? 2*j : 8*j);
+
+ if (adev->ip_versions[UVD_HWIP][0] == IP_VERSION(2, 5, 0))
+ ring->vm_hub = AMDGPU_MMHUB_1;
+ else
+ ring->vm_hub = AMDGPU_MMHUB_0;
+
sprintf(ring->name, "vcn_dec_%d", j);
r = amdgpu_ring_init(adev, ring, 512, &adev->vcn.inst[j].irq,
0, AMDGPU_RING_PRIO_DEFAULT, NULL);
@@ -200,6 +207,11 @@ static int vcn_v2_5_sw_init(void *handle)
ring->doorbell_index = (adev->doorbell_index.vcn.vcn_ring0_1 << 1) +
(amdgpu_sriov_vf(adev) ? (1 + i + 2*j) : (2 + i + 8*j));
+ if (adev->ip_versions[UVD_HWIP][0] == IP_VERSION(2, 5, 0))
+ ring->vm_hub = AMDGPU_MMHUB_1;
+ else
+ ring->vm_hub = AMDGPU_MMHUB_0;
+
sprintf(ring->name, "vcn_enc_%d.%d", j, i);
r = amdgpu_ring_init(adev, ring, 512,
&adev->vcn.inst[j].irq, 0,
@@ -224,6 +236,10 @@ static int vcn_v2_5_sw_init(void *handle)
if (adev->pg_flags & AMD_PG_SUPPORT_VCN_DPG)
adev->vcn.pause_dpg_mode = vcn_v2_5_pause_dpg_mode;
+ r = amdgpu_vcn_ras_sw_init(adev);
+ if (r)
+ return r;
+
return 0;
}
@@ -770,6 +786,33 @@ static void vcn_v2_5_enable_clock_gating(struct amdgpu_device *adev)
}
}
+static void vcn_v2_6_enable_ras(struct amdgpu_device *adev, int inst_idx,
+ bool indirect)
+{
+ uint32_t tmp;
+
+ if (adev->ip_versions[UVD_HWIP][0] != IP_VERSION(2, 6, 0))
+ return;
+
+ tmp = VCN_RAS_CNTL__VCPU_VCODEC_REARM_MASK |
+ VCN_RAS_CNTL__VCPU_VCODEC_IH_EN_MASK |
+ VCN_RAS_CNTL__VCPU_VCODEC_PMI_EN_MASK |
+ VCN_RAS_CNTL__VCPU_VCODEC_STALL_EN_MASK;
+ WREG32_SOC15_DPG_MODE(inst_idx,
+ SOC15_DPG_MODE_OFFSET(VCN, 0, mmVCN_RAS_CNTL),
+ tmp, 0, indirect);
+
+ tmp = UVD_VCPU_INT_EN__RASCNTL_VCPU_VCODEC_EN_MASK;
+ WREG32_SOC15_DPG_MODE(inst_idx,
+ SOC15_DPG_MODE_OFFSET(VCN, 0, mmUVD_VCPU_INT_EN),
+ tmp, 0, indirect);
+
+ tmp = UVD_SYS_INT_EN__RASCNTL_VCPU_VCODEC_EN_MASK;
+ WREG32_SOC15_DPG_MODE(inst_idx,
+ SOC15_DPG_MODE_OFFSET(VCN, 0, mmUVD_SYS_INT_EN),
+ tmp, 0, indirect);
+}
+
static int vcn_v2_5_start_dpg_mode(struct amdgpu_device *adev, int inst_idx, bool indirect)
{
volatile struct amdgpu_fw_shared *fw_shared = adev->vcn.inst[inst_idx].fw_shared.cpu_addr;
@@ -849,6 +892,8 @@ static int vcn_v2_5_start_dpg_mode(struct amdgpu_device *adev, int inst_idx, boo
WREG32_SOC15_DPG_MODE(inst_idx, SOC15_DPG_MODE_OFFSET(
VCN, 0, mmUVD_LMI_CTRL2), 0, 0, indirect);
+ vcn_v2_6_enable_ras(adev, inst_idx, indirect);
+
/* unblock VCPU register access */
WREG32_SOC15_DPG_MODE(inst_idx, SOC15_DPG_MODE_OFFSET(
VCN, 0, mmUVD_RB_ARB_CTRL), 0, 0, indirect);
@@ -1528,38 +1573,6 @@ static const struct amdgpu_ring_funcs vcn_v2_5_dec_ring_vm_funcs = {
.type = AMDGPU_RING_TYPE_VCN_DEC,
.align_mask = 0xf,
.secure_submission_supported = true,
- .vmhub = AMDGPU_MMHUB_1,
- .get_rptr = vcn_v2_5_dec_ring_get_rptr,
- .get_wptr = vcn_v2_5_dec_ring_get_wptr,
- .set_wptr = vcn_v2_5_dec_ring_set_wptr,
- .emit_frame_size =
- SOC15_FLUSH_GPU_TLB_NUM_WREG * 6 +
- SOC15_FLUSH_GPU_TLB_NUM_REG_WAIT * 8 +
- 8 + /* vcn_v2_0_dec_ring_emit_vm_flush */
- 14 + 14 + /* vcn_v2_0_dec_ring_emit_fence x2 vm fence */
- 6,
- .emit_ib_size = 8, /* vcn_v2_0_dec_ring_emit_ib */
- .emit_ib = vcn_v2_0_dec_ring_emit_ib,
- .emit_fence = vcn_v2_0_dec_ring_emit_fence,
- .emit_vm_flush = vcn_v2_0_dec_ring_emit_vm_flush,
- .test_ring = vcn_v2_0_dec_ring_test_ring,
- .test_ib = amdgpu_vcn_dec_ring_test_ib,
- .insert_nop = vcn_v2_0_dec_ring_insert_nop,
- .insert_start = vcn_v2_0_dec_ring_insert_start,
- .insert_end = vcn_v2_0_dec_ring_insert_end,
- .pad_ib = amdgpu_ring_generic_pad_ib,
- .begin_use = amdgpu_vcn_ring_begin_use,
- .end_use = amdgpu_vcn_ring_end_use,
- .emit_wreg = vcn_v2_0_dec_ring_emit_wreg,
- .emit_reg_wait = vcn_v2_0_dec_ring_emit_reg_wait,
- .emit_reg_write_reg_wait = amdgpu_ring_emit_reg_write_reg_wait_helper,
-};
-
-static const struct amdgpu_ring_funcs vcn_v2_6_dec_ring_vm_funcs = {
- .type = AMDGPU_RING_TYPE_VCN_DEC,
- .align_mask = 0xf,
- .secure_submission_supported = true,
- .vmhub = AMDGPU_MMHUB_0,
.get_rptr = vcn_v2_5_dec_ring_get_rptr,
.get_wptr = vcn_v2_5_dec_ring_get_wptr,
.set_wptr = vcn_v2_5_dec_ring_set_wptr,
@@ -1659,7 +1672,6 @@ static const struct amdgpu_ring_funcs vcn_v2_5_enc_ring_vm_funcs = {
.type = AMDGPU_RING_TYPE_VCN_ENC,
.align_mask = 0x3f,
.nop = VCN_ENC_CMD_NO_OP,
- .vmhub = AMDGPU_MMHUB_1,
.get_rptr = vcn_v2_5_enc_ring_get_rptr,
.get_wptr = vcn_v2_5_enc_ring_get_wptr,
.set_wptr = vcn_v2_5_enc_ring_set_wptr,
@@ -1685,36 +1697,6 @@ static const struct amdgpu_ring_funcs vcn_v2_5_enc_ring_vm_funcs = {
.emit_reg_write_reg_wait = amdgpu_ring_emit_reg_write_reg_wait_helper,
};
-static const struct amdgpu_ring_funcs vcn_v2_6_enc_ring_vm_funcs = {
- .type = AMDGPU_RING_TYPE_VCN_ENC,
- .align_mask = 0x3f,
- .nop = VCN_ENC_CMD_NO_OP,
- .vmhub = AMDGPU_MMHUB_0,
- .get_rptr = vcn_v2_5_enc_ring_get_rptr,
- .get_wptr = vcn_v2_5_enc_ring_get_wptr,
- .set_wptr = vcn_v2_5_enc_ring_set_wptr,
- .emit_frame_size =
- SOC15_FLUSH_GPU_TLB_NUM_WREG * 3 +
- SOC15_FLUSH_GPU_TLB_NUM_REG_WAIT * 4 +
- 4 + /* vcn_v2_0_enc_ring_emit_vm_flush */
- 5 + 5 + /* vcn_v2_0_enc_ring_emit_fence x2 vm fence */
- 1, /* vcn_v2_0_enc_ring_insert_end */
- .emit_ib_size = 5, /* vcn_v2_0_enc_ring_emit_ib */
- .emit_ib = vcn_v2_0_enc_ring_emit_ib,
- .emit_fence = vcn_v2_0_enc_ring_emit_fence,
- .emit_vm_flush = vcn_v2_0_enc_ring_emit_vm_flush,
- .test_ring = amdgpu_vcn_enc_ring_test_ring,
- .test_ib = amdgpu_vcn_enc_ring_test_ib,
- .insert_nop = amdgpu_ring_insert_nop,
- .insert_end = vcn_v2_0_enc_ring_insert_end,
- .pad_ib = amdgpu_ring_generic_pad_ib,
- .begin_use = amdgpu_vcn_ring_begin_use,
- .end_use = amdgpu_vcn_ring_end_use,
- .emit_wreg = vcn_v2_0_enc_ring_emit_wreg,
- .emit_reg_wait = vcn_v2_0_enc_ring_emit_reg_wait,
- .emit_reg_write_reg_wait = amdgpu_ring_emit_reg_write_reg_wait_helper,
-};
-
static void vcn_v2_5_set_dec_ring_funcs(struct amdgpu_device *adev)
{
int i;
@@ -1722,10 +1704,7 @@ static void vcn_v2_5_set_dec_ring_funcs(struct amdgpu_device *adev)
for (i = 0; i < adev->vcn.num_vcn_inst; ++i) {
if (adev->vcn.harvest_config & (1 << i))
continue;
- if (adev->ip_versions[UVD_HWIP][0] == IP_VERSION(2, 5, 0))
- adev->vcn.inst[i].ring_dec.funcs = &vcn_v2_5_dec_ring_vm_funcs;
- else /* CHIP_ALDEBARAN */
- adev->vcn.inst[i].ring_dec.funcs = &vcn_v2_6_dec_ring_vm_funcs;
+ adev->vcn.inst[i].ring_dec.funcs = &vcn_v2_5_dec_ring_vm_funcs;
adev->vcn.inst[i].ring_dec.me = i;
DRM_INFO("VCN(%d) decode is enabled in VM mode\n", i);
}
@@ -1739,10 +1718,7 @@ static void vcn_v2_5_set_enc_ring_funcs(struct amdgpu_device *adev)
if (adev->vcn.harvest_config & (1 << j))
continue;
for (i = 0; i < adev->vcn.num_enc_rings; ++i) {
- if (adev->ip_versions[UVD_HWIP][0] == IP_VERSION(2, 5, 0))
- adev->vcn.inst[j].ring_enc[i].funcs = &vcn_v2_5_enc_ring_vm_funcs;
- else /* CHIP_ALDEBARAN */
- adev->vcn.inst[j].ring_enc[i].funcs = &vcn_v2_6_enc_ring_vm_funcs;
+ adev->vcn.inst[j].ring_enc[i].funcs = &vcn_v2_5_enc_ring_vm_funcs;
adev->vcn.inst[j].ring_enc[i].me = j;
}
DRM_INFO("VCN(%d) encode is enabled in VM mode\n", j);
@@ -2001,17 +1977,4 @@ static void vcn_v2_5_set_ras_funcs(struct amdgpu_device *adev)
default:
break;
}
-
- if (adev->vcn.ras) {
- amdgpu_ras_register_ras_block(adev, &adev->vcn.ras->ras_block);
-
- strcpy(adev->vcn.ras->ras_block.ras_comm.name, "vcn");
- adev->vcn.ras->ras_block.ras_comm.block = AMDGPU_RAS_BLOCK__VCN;
- adev->vcn.ras->ras_block.ras_comm.type = AMDGPU_RAS_ERROR__POISON;
- adev->vcn.ras_if = &adev->vcn.ras->ras_block.ras_comm;
-
- /* If don't define special ras_late_init function, use default ras_late_init */
- if (!adev->vcn.ras->ras_block.ras_late_init)
- adev->vcn.ras->ras_block.ras_late_init = amdgpu_ras_block_late_init;
- }
}
diff --git a/drivers/gpu/drm/amd/amdgpu/vcn_v3_0.c b/drivers/gpu/drm/amd/amdgpu/vcn_v3_0.c
index 9c8b5fd99037..3eab186261aa 100644
--- a/drivers/gpu/drm/amd/amdgpu/vcn_v3_0.c
+++ b/drivers/gpu/drm/amd/amdgpu/vcn_v3_0.c
@@ -78,11 +78,12 @@ static void vcn_v3_0_dec_ring_set_wptr(struct amdgpu_ring *ring);
static void vcn_v3_0_enc_ring_set_wptr(struct amdgpu_ring *ring);
/**
- * vcn_v3_0_early_init - set function pointers
+ * vcn_v3_0_early_init - set function pointers and load microcode
*
* @handle: amdgpu_device pointer
*
* Set ring and irq function pointers
+ * Load microcode from filesystem
*/
static int vcn_v3_0_early_init(void *handle)
{
@@ -109,7 +110,7 @@ static int vcn_v3_0_early_init(void *handle)
vcn_v3_0_set_enc_ring_funcs(adev);
vcn_v3_0_set_irq_funcs(adev);
- return 0;
+ return amdgpu_vcn_early_init(adev);
}
/**
@@ -188,6 +189,7 @@ static int vcn_v3_0_sw_init(void *handle)
} else {
ring->doorbell_index = (adev->doorbell_index.vcn.vcn_ring0_1 << 1) + 8 * i;
}
+ ring->vm_hub = AMDGPU_MMHUB_0;
sprintf(ring->name, "vcn_dec_%d", i);
r = amdgpu_ring_init(adev, ring, 512, &adev->vcn.inst[i].irq, 0,
AMDGPU_RING_PRIO_DEFAULT,
@@ -211,6 +213,7 @@ static int vcn_v3_0_sw_init(void *handle)
} else {
ring->doorbell_index = (adev->doorbell_index.vcn.vcn_ring0_1 << 1) + 2 + j + 8 * i;
}
+ ring->vm_hub = AMDGPU_MMHUB_0;
sprintf(ring->name, "vcn_enc_%d.%d", i, j);
r = amdgpu_ring_init(adev, ring, 512, &adev->vcn.inst[i].irq, 0,
hw_prio, &adev->vcn.inst[i].sched_score);
@@ -1737,7 +1740,6 @@ static const struct amdgpu_ring_funcs vcn_v3_0_dec_sw_ring_vm_funcs = {
.align_mask = 0x3f,
.nop = VCN_DEC_SW_CMD_NO_OP,
.secure_submission_supported = true,
- .vmhub = AMDGPU_MMHUB_0,
.get_rptr = vcn_v3_0_dec_ring_get_rptr,
.get_wptr = vcn_v3_0_dec_ring_get_wptr,
.set_wptr = vcn_v3_0_dec_ring_set_wptr,
@@ -1770,6 +1772,10 @@ static int vcn_v3_0_limit_sched(struct amdgpu_cs_parser *p,
if (atomic_read(&job->base.entity->fence_seq))
return -EINVAL;
+ /* if VCN0 is harvested, we can't support AV1 */
+ if (p->adev->vcn.harvest_config & AMDGPU_VCN_HARVEST_VCN0)
+ return -EINVAL;
+
scheds = p->adev->gpu_sched[AMDGPU_HW_IP_VCN_DEC]
[AMDGPU_RING_PRIO_DEFAULT].sched;
drm_sched_entity_modify_sched(job->base.entity, scheds, 1);
@@ -1894,7 +1900,6 @@ static const struct amdgpu_ring_funcs vcn_v3_0_dec_ring_vm_funcs = {
.type = AMDGPU_RING_TYPE_VCN_DEC,
.align_mask = 0xf,
.secure_submission_supported = true,
- .vmhub = AMDGPU_MMHUB_0,
.get_rptr = vcn_v3_0_dec_ring_get_rptr,
.get_wptr = vcn_v3_0_dec_ring_get_wptr,
.set_wptr = vcn_v3_0_dec_ring_set_wptr,
@@ -1995,7 +2000,6 @@ static const struct amdgpu_ring_funcs vcn_v3_0_enc_ring_vm_funcs = {
.type = AMDGPU_RING_TYPE_VCN_ENC,
.align_mask = 0x3f,
.nop = VCN_ENC_CMD_NO_OP,
- .vmhub = AMDGPU_MMHUB_0,
.get_rptr = vcn_v3_0_enc_ring_get_rptr,
.get_wptr = vcn_v3_0_enc_ring_get_wptr,
.set_wptr = vcn_v3_0_enc_ring_set_wptr,
diff --git a/drivers/gpu/drm/amd/amdgpu/vcn_v4_0.c b/drivers/gpu/drm/amd/amdgpu/vcn_v4_0.c
index 897a5ce9c9da..bf0674039598 100644
--- a/drivers/gpu/drm/amd/amdgpu/vcn_v4_0.c
+++ b/drivers/gpu/drm/amd/amdgpu/vcn_v4_0.c
@@ -31,6 +31,7 @@
#include "soc15_hw_ip.h"
#include "vcn_v2_0.h"
#include "mmsch_v4_0.h"
+#include "vcn_v4_0.h"
#include "vcn/vcn_4_0_0_offset.h"
#include "vcn/vcn_4_0_0_sh_mask.h"
@@ -64,28 +65,39 @@ static int vcn_v4_0_set_powergating_state(void *handle,
static int vcn_v4_0_pause_dpg_mode(struct amdgpu_device *adev,
int inst_idx, struct dpg_pause_state *new_state);
static void vcn_v4_0_unified_ring_set_wptr(struct amdgpu_ring *ring);
+static void vcn_v4_0_set_ras_funcs(struct amdgpu_device *adev);
/**
- * vcn_v4_0_early_init - set function pointers
+ * vcn_v4_0_early_init - set function pointers and load microcode
*
* @handle: amdgpu_device pointer
*
* Set ring and irq function pointers
+ * Load microcode from filesystem
*/
static int vcn_v4_0_early_init(void *handle)
{
struct amdgpu_device *adev = (struct amdgpu_device *)handle;
+ int i;
- if (amdgpu_sriov_vf(adev))
+ if (amdgpu_sriov_vf(adev)) {
adev->vcn.harvest_config = VCN_HARVEST_MMSCH;
+ for (i = 0; i < adev->vcn.num_vcn_inst; ++i) {
+ if (amdgpu_vcn_is_disabled_vcn(adev, VCN_ENCODE_RING, i)) {
+ adev->vcn.harvest_config |= 1 << i;
+ dev_info(adev->dev, "VCN%d is disabled by hypervisor\n", i);
+ }
+ }
+ }
/* re-use enc ring as unified ring */
adev->vcn.num_enc_rings = 1;
vcn_v4_0_set_unified_ring_funcs(adev);
vcn_v4_0_set_irq_funcs(adev);
+ vcn_v4_0_set_ras_funcs(adev);
- return 0;
+ return amdgpu_vcn_early_init(adev);
}
/**
@@ -100,7 +112,6 @@ static int vcn_v4_0_sw_init(void *handle)
struct amdgpu_ring *ring;
struct amdgpu_device *adev = (struct amdgpu_device *)handle;
int i, r;
- int vcn_doorbell_index = 0;
r = amdgpu_vcn_sw_init(adev);
if (r)
@@ -112,12 +123,6 @@ static int vcn_v4_0_sw_init(void *handle)
if (r)
return r;
- if (amdgpu_sriov_vf(adev)) {
- vcn_doorbell_index = adev->doorbell_index.vcn.vcn_ring0_1 - MMSCH_DOORBELL_OFFSET;
- /* get DWORD offset */
- vcn_doorbell_index = vcn_doorbell_index << 1;
- }
-
for (i = 0; i < adev->vcn.num_vcn_inst; i++) {
volatile struct amdgpu_vcn4_fw_shared *fw_shared;
@@ -132,13 +137,19 @@ static int vcn_v4_0_sw_init(void *handle)
if (r)
return r;
+ /* VCN POISON TRAP */
+ r = amdgpu_irq_add_id(adev, amdgpu_ih_clientid_vcns[i],
+ VCN_4_0__SRCID_UVD_POISON, &adev->vcn.inst[i].irq);
+ if (r)
+ return r;
+
ring = &adev->vcn.inst[i].ring_enc[0];
ring->use_doorbell = true;
if (amdgpu_sriov_vf(adev))
- ring->doorbell_index = vcn_doorbell_index + i * (adev->vcn.num_enc_rings + 1) + 1;
+ ring->doorbell_index = (adev->doorbell_index.vcn.vcn_ring0_1 << 1) + i * (adev->vcn.num_enc_rings + 1) + 1;
else
ring->doorbell_index = (adev->doorbell_index.vcn.vcn_ring0_1 << 1) + 2 + 8 * i;
-
+ ring->vm_hub = AMDGPU_MMHUB_0;
sprintf(ring->name, "vcn_unified_%d", i);
r = amdgpu_ring_init(adev, ring, 512, &adev->vcn.inst[i].irq, 0,
@@ -170,6 +181,10 @@ static int vcn_v4_0_sw_init(void *handle)
if (adev->pg_flags & AMD_PG_SUPPORT_VCN_DPG)
adev->vcn.pause_dpg_mode = vcn_v4_0_pause_dpg_mode;
+ r = amdgpu_vcn_ras_sw_init(adev);
+ if (r)
+ return r;
+
return 0;
}
@@ -235,16 +250,11 @@ static int vcn_v4_0_hw_init(void *handle)
continue;
ring = &adev->vcn.inst[i].ring_enc[0];
- if (amdgpu_vcn_is_disabled_vcn(adev, VCN_ENCODE_RING, i)) {
- ring->sched.ready = false;
- ring->no_scheduler = true;
- dev_info(adev->dev, "ring %s is disabled by hypervisor\n", ring->name);
- } else {
- ring->wptr = 0;
- ring->wptr_old = 0;
- vcn_v4_0_unified_ring_set_wptr(ring);
- ring->sched.ready = true;
- }
+ ring->wptr = 0;
+ ring->wptr_old = 0;
+ vcn_v4_0_unified_ring_set_wptr(ring);
+ ring->sched.ready = true;
+
}
} else {
for (i = 0; i < adev->vcn.num_vcn_inst; ++i) {
@@ -296,6 +306,7 @@ static int vcn_v4_0_hw_fini(void *handle)
}
}
+ amdgpu_irq_put(adev, &adev->vcn.inst[i].irq, 0);
}
return 0;
@@ -859,6 +870,28 @@ static void vcn_v4_0_enable_clock_gating(struct amdgpu_device *adev, int inst)
return;
}
+static void vcn_v4_0_enable_ras(struct amdgpu_device *adev, int inst_idx,
+ bool indirect)
+{
+ uint32_t tmp;
+
+ if (!amdgpu_ras_is_supported(adev, AMDGPU_RAS_BLOCK__VCN))
+ return;
+
+ tmp = VCN_RAS_CNTL__VCPU_VCODEC_REARM_MASK |
+ VCN_RAS_CNTL__VCPU_VCODEC_IH_EN_MASK |
+ VCN_RAS_CNTL__VCPU_VCODEC_PMI_EN_MASK |
+ VCN_RAS_CNTL__VCPU_VCODEC_STALL_EN_MASK;
+ WREG32_SOC15_DPG_MODE(inst_idx,
+ SOC15_DPG_MODE_OFFSET(VCN, 0, regVCN_RAS_CNTL),
+ tmp, 0, indirect);
+
+ tmp = UVD_SYS_INT_EN__RASCNTL_VCPU_VCODEC_EN_MASK;
+ WREG32_SOC15_DPG_MODE(inst_idx,
+ SOC15_DPG_MODE_OFFSET(VCN, 0, regUVD_SYS_INT_EN),
+ tmp, 0, indirect);
+}
+
/**
* vcn_v4_0_start_dpg_mode - VCN start with dpg mode
*
@@ -947,6 +980,8 @@ static int vcn_v4_0_start_dpg_mode(struct amdgpu_device *adev, int inst_idx, boo
WREG32_SOC15_DPG_MODE(inst_idx, SOC15_DPG_MODE_OFFSET(
VCN, inst_idx, regUVD_LMI_CTRL2), tmp, 0, indirect);
+ vcn_v4_0_enable_ras(adev, inst_idx, indirect);
+
/* enable master interrupt */
WREG32_SOC15_DPG_MODE(inst_idx, SOC15_DPG_MODE_OFFSET(
VCN, inst_idx, regUVD_MASTINT_EN),
@@ -1604,6 +1639,10 @@ static int vcn_v4_0_limit_sched(struct amdgpu_cs_parser *p,
if (atomic_read(&job->base.entity->fence_seq))
return -EINVAL;
+ /* if VCN0 is harvested, we can't support AV1 */
+ if (p->adev->vcn.harvest_config & AMDGPU_VCN_HARVEST_VCN0)
+ return -EINVAL;
+
scheds = p->adev->gpu_sched[AMDGPU_HW_IP_VCN_ENC]
[AMDGPU_RING_PRIO_0].sched;
drm_sched_entity_modify_sched(job->base.entity, scheds, 1);
@@ -1678,7 +1717,7 @@ static int vcn_v4_0_dec_msg(struct amdgpu_cs_parser *p, struct amdgpu_job *job,
create = ptr + addr + offset - start;
- /* H246, HEVC and VP9 can run on any instance */
+ /* H264, HEVC and VP9 can run on any instance */
if (create[0] == 0x7 || create[0] == 0x10 || create[0] == 0x11)
continue;
@@ -1692,7 +1731,29 @@ out:
return r;
}
-#define RADEON_VCN_ENGINE_TYPE_DECODE (0x00000003)
+#define RADEON_VCN_ENGINE_TYPE_ENCODE (0x00000002)
+#define RADEON_VCN_ENGINE_TYPE_DECODE (0x00000003)
+
+#define RADEON_VCN_ENGINE_INFO (0x30000001)
+#define RADEON_VCN_ENGINE_INFO_MAX_OFFSET 16
+
+#define RENCODE_ENCODE_STANDARD_AV1 2
+#define RENCODE_IB_PARAM_SESSION_INIT 0x00000003
+#define RENCODE_IB_PARAM_SESSION_INIT_MAX_OFFSET 64
+
+/* return the offset in ib if id is found, -1 otherwise
+ * to speed up the searching we only search upto max_offset
+ */
+static int vcn_v4_0_enc_find_ib_param(struct amdgpu_ib *ib, uint32_t id, int max_offset)
+{
+ int i;
+
+ for (i = 0; i < ib->length_dw && i < max_offset && ib->ptr[i] >= 8; i += ib->ptr[i]/4) {
+ if (ib->ptr[i + 1] == id)
+ return i;
+ }
+ return -1;
+}
static int vcn_v4_0_ring_patch_cs_in_place(struct amdgpu_cs_parser *p,
struct amdgpu_job *job,
@@ -1702,34 +1763,41 @@ static int vcn_v4_0_ring_patch_cs_in_place(struct amdgpu_cs_parser *p,
struct amdgpu_vcn_decode_buffer *decode_buffer;
uint64_t addr;
uint32_t val;
+ int idx;
/* The first instance can decode anything */
if (!ring->me)
return 0;
- /* unified queue ib header has 8 double words. */
- if (ib->length_dw < 8)
- return 0;
-
- val = amdgpu_ib_get_value(ib, 6); //RADEON_VCN_ENGINE_TYPE
- if (val != RADEON_VCN_ENGINE_TYPE_DECODE)
+ /* RADEON_VCN_ENGINE_INFO is at the top of ib block */
+ idx = vcn_v4_0_enc_find_ib_param(ib, RADEON_VCN_ENGINE_INFO,
+ RADEON_VCN_ENGINE_INFO_MAX_OFFSET);
+ if (idx < 0) /* engine info is missing */
return 0;
- decode_buffer = (struct amdgpu_vcn_decode_buffer *)&ib->ptr[10];
-
- if (!(decode_buffer->valid_buf_flag & 0x1))
- return 0;
-
- addr = ((u64)decode_buffer->msg_buffer_address_hi) << 32 |
- decode_buffer->msg_buffer_address_lo;
- return vcn_v4_0_dec_msg(p, job, addr);
+ val = amdgpu_ib_get_value(ib, idx + 2); /* RADEON_VCN_ENGINE_TYPE */
+ if (val == RADEON_VCN_ENGINE_TYPE_DECODE) {
+ decode_buffer = (struct amdgpu_vcn_decode_buffer *)&ib->ptr[idx + 6];
+
+ if (!(decode_buffer->valid_buf_flag & 0x1))
+ return 0;
+
+ addr = ((u64)decode_buffer->msg_buffer_address_hi) << 32 |
+ decode_buffer->msg_buffer_address_lo;
+ return vcn_v4_0_dec_msg(p, job, addr);
+ } else if (val == RADEON_VCN_ENGINE_TYPE_ENCODE) {
+ idx = vcn_v4_0_enc_find_ib_param(ib, RENCODE_IB_PARAM_SESSION_INIT,
+ RENCODE_IB_PARAM_SESSION_INIT_MAX_OFFSET);
+ if (idx >= 0 && ib->ptr[idx + 2] == RENCODE_ENCODE_STANDARD_AV1)
+ return vcn_v4_0_limit_sched(p, job);
+ }
+ return 0;
}
static const struct amdgpu_ring_funcs vcn_v4_0_unified_ring_vm_funcs = {
.type = AMDGPU_RING_TYPE_VCN_ENC,
.align_mask = 0x3f,
.nop = VCN_ENC_CMD_NO_OP,
- .vmhub = AMDGPU_MMHUB_0,
.get_rptr = vcn_v4_0_unified_ring_get_rptr,
.get_wptr = vcn_v4_0_unified_ring_get_wptr,
.set_wptr = vcn_v4_0_unified_ring_set_wptr,
@@ -1939,6 +2007,9 @@ static int vcn_v4_0_process_interrupt(struct amdgpu_device *adev, struct amdgpu_
case VCN_4_0__SRCID__UVD_ENC_GENERAL_PURPOSE:
amdgpu_fence_process(&adev->vcn.inst[ip_instance].ring_enc[0]);
break;
+ case VCN_4_0__SRCID_UVD_POISON:
+ amdgpu_vcn_process_poison_irq(adev, source, entry);
+ break;
default:
DRM_ERROR("Unhandled interrupt: %d %d\n",
entry->src_id, entry->src_data[0]);
@@ -2001,3 +2072,58 @@ const struct amdgpu_ip_block_version vcn_v4_0_ip_block =
.rev = 0,
.funcs = &vcn_v4_0_ip_funcs,
};
+
+static uint32_t vcn_v4_0_query_poison_by_instance(struct amdgpu_device *adev,
+ uint32_t instance, uint32_t sub_block)
+{
+ uint32_t poison_stat = 0, reg_value = 0;
+
+ switch (sub_block) {
+ case AMDGPU_VCN_V4_0_VCPU_VCODEC:
+ reg_value = RREG32_SOC15(VCN, instance, regUVD_RAS_VCPU_VCODEC_STATUS);
+ poison_stat = REG_GET_FIELD(reg_value, UVD_RAS_VCPU_VCODEC_STATUS, POISONED_PF);
+ break;
+ default:
+ break;
+ }
+
+ if (poison_stat)
+ dev_info(adev->dev, "Poison detected in VCN%d, sub_block%d\n",
+ instance, sub_block);
+
+ return poison_stat;
+}
+
+static bool vcn_v4_0_query_ras_poison_status(struct amdgpu_device *adev)
+{
+ uint32_t inst, sub;
+ uint32_t poison_stat = 0;
+
+ for (inst = 0; inst < adev->vcn.num_vcn_inst; inst++)
+ for (sub = 0; sub < AMDGPU_VCN_V4_0_MAX_SUB_BLOCK; sub++)
+ poison_stat +=
+ vcn_v4_0_query_poison_by_instance(adev, inst, sub);
+
+ return !!poison_stat;
+}
+
+const struct amdgpu_ras_block_hw_ops vcn_v4_0_ras_hw_ops = {
+ .query_poison_status = vcn_v4_0_query_ras_poison_status,
+};
+
+static struct amdgpu_vcn_ras vcn_v4_0_ras = {
+ .ras_block = {
+ .hw_ops = &vcn_v4_0_ras_hw_ops,
+ },
+};
+
+static void vcn_v4_0_set_ras_funcs(struct amdgpu_device *adev)
+{
+ switch (adev->ip_versions[VCN_HWIP][0]) {
+ case IP_VERSION(4, 0, 0):
+ adev->vcn.ras = &vcn_v4_0_ras;
+ break;
+ default:
+ break;
+ }
+}
diff --git a/drivers/gpu/drm/amd/amdgpu/vcn_v4_0.h b/drivers/gpu/drm/amd/amdgpu/vcn_v4_0.h
index 7c5c9d91bb52..7d3d11f40f27 100644
--- a/drivers/gpu/drm/amd/amdgpu/vcn_v4_0.h
+++ b/drivers/gpu/drm/amd/amdgpu/vcn_v4_0.h
@@ -24,6 +24,12 @@
#ifndef __VCN_V4_0_H__
#define __VCN_V4_0_H__
+enum amdgpu_vcn_v4_0_sub_block {
+ AMDGPU_VCN_V4_0_VCPU_VCODEC = 0,
+
+ AMDGPU_VCN_V4_0_MAX_SUB_BLOCK,
+};
+
extern const struct amdgpu_ip_block_version vcn_v4_0_ip_block;
#endif /* __VCN_V4_0_H__ */
diff --git a/drivers/gpu/drm/amd/amdgpu/vega20_ih.c b/drivers/gpu/drm/amd/amdgpu/vega20_ih.c
index 59dfca093155..536128447b71 100644
--- a/drivers/gpu/drm/amd/amdgpu/vega20_ih.c
+++ b/drivers/gpu/drm/amd/amdgpu/vega20_ih.c
@@ -38,6 +38,11 @@
#define mmIH_CHICKEN_ALDEBARAN 0x18d
#define mmIH_CHICKEN_ALDEBARAN_BASE_IDX 0
+#define mmIH_RETRY_INT_CAM_CNTL_ALDEBARAN 0x00ea
+#define mmIH_RETRY_INT_CAM_CNTL_ALDEBARAN_BASE_IDX 0
+#define IH_RETRY_INT_CAM_CNTL_ALDEBARAN__ENABLE__SHIFT 0x10
+#define IH_RETRY_INT_CAM_CNTL_ALDEBARAN__ENABLE_MASK 0x00010000L
+
static void vega20_ih_set_interrupt_funcs(struct amdgpu_device *adev);
/**
@@ -251,36 +256,14 @@ static int vega20_ih_enable_ring(struct amdgpu_device *adev,
return 0;
}
-/**
- * vega20_ih_reroute_ih - reroute VMC/UTCL2 ih to an ih ring
- *
- * @adev: amdgpu_device pointer
- *
- * Reroute VMC and UMC interrupts on primary ih ring to
- * ih ring 1 so they won't lose when bunches of page faults
- * interrupts overwhelms the interrupt handler(VEGA20)
- */
-static void vega20_ih_reroute_ih(struct amdgpu_device *adev)
+static uint32_t vega20_setup_retry_doorbell(u32 doorbell_index)
{
- uint32_t tmp;
+ u32 val = 0;
- /* vega20 ih reroute will go through psp this
- * function is used for newer asics starting arcturus
- */
- if (adev->asic_type >= CHIP_ARCTURUS) {
- /* Reroute to IH ring 1 for VMC */
- WREG32_SOC15(OSSSYS, 0, mmIH_CLIENT_CFG_INDEX, 0x12);
- tmp = RREG32_SOC15(OSSSYS, 0, mmIH_CLIENT_CFG_DATA);
- tmp = REG_SET_FIELD(tmp, IH_CLIENT_CFG_DATA, CLIENT_TYPE, 1);
- tmp = REG_SET_FIELD(tmp, IH_CLIENT_CFG_DATA, RING_ID, 1);
- WREG32_SOC15(OSSSYS, 0, mmIH_CLIENT_CFG_DATA, tmp);
-
- /* Reroute IH ring 1 for UTCL2 */
- WREG32_SOC15(OSSSYS, 0, mmIH_CLIENT_CFG_INDEX, 0x1B);
- tmp = RREG32_SOC15(OSSSYS, 0, mmIH_CLIENT_CFG_DATA);
- tmp = REG_SET_FIELD(tmp, IH_CLIENT_CFG_DATA, RING_ID, 1);
- WREG32_SOC15(OSSSYS, 0, mmIH_CLIENT_CFG_DATA, tmp);
- }
+ val = REG_SET_FIELD(val, IH_DOORBELL_RPTR, OFFSET, doorbell_index);
+ val = REG_SET_FIELD(val, IH_DOORBELL_RPTR, ENABLE, 1);
+
+ return val;
}
/**
@@ -308,7 +291,7 @@ static int vega20_ih_irq_init(struct amdgpu_device *adev)
adev->nbio.funcs->ih_control(adev);
- if (adev->asic_type == CHIP_ARCTURUS &&
+ if ((adev->ip_versions[OSSSYS_HWIP][0] == IP_VERSION(4, 2, 1)) &&
adev->firmware.load_type == AMDGPU_FW_LOAD_DIRECT) {
ih_chicken = RREG32_SOC15(OSSSYS, 0, mmIH_CHICKEN);
if (adev->irq.ih.use_bus_addr) {
@@ -321,7 +304,8 @@ static int vega20_ih_irq_init(struct amdgpu_device *adev)
/* psp firmware won't program IH_CHICKEN for aldebaran
* driver needs to program it properly according to
* MC_SPACE type in IH_RB_CNTL */
- if (adev->asic_type == CHIP_ALDEBARAN) {
+ if ((adev->ip_versions[OSSSYS_HWIP][0] == IP_VERSION(4, 4, 0)) ||
+ (adev->ip_versions[OSSSYS_HWIP][0] == IP_VERSION(4, 4, 2))) {
ih_chicken = RREG32_SOC15(OSSSYS, 0, mmIH_CHICKEN_ALDEBARAN);
if (adev->irq.ih.use_bus_addr) {
ih_chicken = REG_SET_FIELD(ih_chicken, IH_CHICKEN,
@@ -332,8 +316,6 @@ static int vega20_ih_irq_init(struct amdgpu_device *adev)
for (i = 0; i < ARRAY_SIZE(ih); i++) {
if (ih[i]->ring_size) {
- if (i == 1)
- vega20_ih_reroute_ih(adev);
ret = vega20_ih_enable_ring(adev, ih[i]);
if (ret)
return ret;
@@ -346,6 +328,20 @@ static int vega20_ih_irq_init(struct amdgpu_device *adev)
pci_set_master(adev->pdev);
+ /* Allocate the doorbell for IH Retry CAM */
+ adev->irq.retry_cam_doorbell_index = (adev->doorbell_index.ih + 3) << 1;
+ WREG32_SOC15(OSSSYS, 0, mmIH_DOORBELL_RETRY_CAM,
+ vega20_setup_retry_doorbell(adev->irq.retry_cam_doorbell_index));
+
+ /* Enable IH Retry CAM */
+ if (adev->ip_versions[OSSSYS_HWIP][0] == IP_VERSION(4, 4, 0))
+ WREG32_FIELD15(OSSSYS, 0, IH_RETRY_INT_CAM_CNTL_ALDEBARAN,
+ ENABLE, 1);
+ else
+ WREG32_FIELD15(OSSSYS, 0, IH_RETRY_INT_CAM_CNTL, ENABLE, 1);
+
+ adev->irq.retry_cam_enabled = true;
+
/* enable interrupts */
ret = vega20_ih_toggle_interrupts(adev, true);
if (ret)
@@ -551,12 +547,14 @@ static int vega20_ih_sw_init(void *handle)
adev->irq.ih1.use_doorbell = true;
adev->irq.ih1.doorbell_index = (adev->doorbell_index.ih + 1) << 1;
- r = amdgpu_ih_ring_init(adev, &adev->irq.ih2, PAGE_SIZE, true);
- if (r)
- return r;
+ if (adev->ip_versions[OSSSYS_HWIP][0] != IP_VERSION(4, 4, 2)) {
+ r = amdgpu_ih_ring_init(adev, &adev->irq.ih2, PAGE_SIZE, true);
+ if (r)
+ return r;
- adev->irq.ih2.use_doorbell = true;
- adev->irq.ih2.doorbell_index = (adev->doorbell_index.ih + 2) << 1;
+ adev->irq.ih2.use_doorbell = true;
+ adev->irq.ih2.doorbell_index = (adev->doorbell_index.ih + 2) << 1;
+ }
/* initialize ih control registers offset */
vega20_ih_init_register_offset(adev);
diff --git a/drivers/gpu/drm/amd/amdgpu/vi.c b/drivers/gpu/drm/amd/amdgpu/vi.c
index f6ffd7c96ff9..531f173ade2d 100644
--- a/drivers/gpu/drm/amd/amdgpu/vi.c
+++ b/drivers/gpu/drm/amd/amdgpu/vi.c
@@ -81,10 +81,6 @@
#include "mxgpu_vi.h"
#include "amdgpu_dm.h"
-#if IS_ENABLED(CONFIG_X86)
-#include <asm/intel-family.h>
-#endif
-
#define ixPCIE_LC_L1_PM_SUBSTATE 0x100100C6
#define PCIE_LC_L1_PM_SUBSTATE__LC_L1_SUBSTATES_OVERRIDE_EN_MASK 0x00000001L
#define PCIE_LC_L1_PM_SUBSTATE__LC_PCI_PM_L1_2_OVERRIDE_MASK 0x00000002L
@@ -1105,24 +1101,6 @@ static int vi_set_vce_clocks(struct amdgpu_device *adev, u32 evclk, u32 ecclk)
return 0;
}
-static void vi_pcie_gen3_enable(struct amdgpu_device *adev)
-{
- if (pci_is_root_bus(adev->pdev->bus))
- return;
-
- if (amdgpu_pcie_gen2 == 0)
- return;
-
- if (adev->flags & AMD_IS_APU)
- return;
-
- if (!(adev->pm.pcie_gen_mask & (CAIL_PCIE_LINK_SPEED_SUPPORT_GEN2 |
- CAIL_PCIE_LINK_SPEED_SUPPORT_GEN3)))
- return;
-
- /* todo */
-}
-
static void vi_enable_aspm(struct amdgpu_device *adev)
{
u32 data, orig;
@@ -1138,24 +1116,13 @@ static void vi_enable_aspm(struct amdgpu_device *adev)
WREG32_PCIE(ixPCIE_LC_CNTL, data);
}
-static bool aspm_support_quirk_check(void)
-{
-#if IS_ENABLED(CONFIG_X86)
- struct cpuinfo_x86 *c = &cpu_data(0);
-
- return !(c->x86 == 6 && c->x86_model == INTEL_FAM6_ALDERLAKE);
-#else
- return true;
-#endif
-}
-
static void vi_program_aspm(struct amdgpu_device *adev)
{
u32 data, data1, orig;
bool bL1SS = false;
bool bClkReqSupport = true;
- if (!amdgpu_device_should_use_aspm(adev) || !aspm_support_quirk_check())
+ if (!amdgpu_device_should_use_aspm(adev) || !amdgpu_device_aspm_support_quirk())
return;
if (adev->flags & AMD_IS_APU ||
@@ -1743,8 +1710,6 @@ static int vi_common_hw_init(void *handle)
/* move the golden regs per IP block */
vi_init_golden_registers(adev);
- /* enable pcie gen2/3 link */
- vi_pcie_gen3_enable(adev);
/* enable aspm */
vi_program_aspm(adev);
/* enable the doorbell aperture */
@@ -2111,6 +2076,8 @@ void vi_set_virt_ops(struct amdgpu_device *adev)
int vi_set_ip_blocks(struct amdgpu_device *adev)
{
+ amdgpu_device_set_sriov_virtual_display(adev);
+
switch (adev->asic_type) {
case CHIP_TOPAZ:
/* topaz has no DCE, UVD, VCE */
@@ -2130,7 +2097,7 @@ int vi_set_ip_blocks(struct amdgpu_device *adev)
amdgpu_device_ip_block_add(adev, &gfx_v8_0_ip_block);
amdgpu_device_ip_block_add(adev, &sdma_v3_0_ip_block);
amdgpu_device_ip_block_add(adev, &pp_smu_ip_block);
- if (adev->enable_virtual_display || amdgpu_sriov_vf(adev))
+ if (adev->enable_virtual_display)
amdgpu_device_ip_block_add(adev, &amdgpu_vkms_ip_block);
#if defined(CONFIG_DRM_AMD_DC)
else if (amdgpu_device_has_dc_support(adev))
@@ -2150,7 +2117,7 @@ int vi_set_ip_blocks(struct amdgpu_device *adev)
amdgpu_device_ip_block_add(adev, &gfx_v8_0_ip_block);
amdgpu_device_ip_block_add(adev, &sdma_v3_0_ip_block);
amdgpu_device_ip_block_add(adev, &pp_smu_ip_block);
- if (adev->enable_virtual_display || amdgpu_sriov_vf(adev))
+ if (adev->enable_virtual_display)
amdgpu_device_ip_block_add(adev, &amdgpu_vkms_ip_block);
#if defined(CONFIG_DRM_AMD_DC)
else if (amdgpu_device_has_dc_support(adev))
diff --git a/drivers/gpu/drm/amd/amdkfd/cwsr_trap_handler.h b/drivers/gpu/drm/amd/amdkfd/cwsr_trap_handler.h
index 0c4c5499bb5c..73ca9aebf086 100644
--- a/drivers/gpu/drm/amd/amdkfd/cwsr_trap_handler.h
+++ b/drivers/gpu/drm/amd/amdkfd/cwsr_trap_handler.h
@@ -2936,3 +2936,490 @@ static const uint32_t cwsr_trap_gfx11_hex[] = {
0xbf9f0000, 0xbf9f0000,
0xbf9f0000, 0x00000000,
};
+
+static const uint32_t cwsr_trap_gfx9_4_3_hex[] = {
+ 0xbf820001, 0xbf8202d6,
+ 0xb8f8f802, 0x89788678,
+ 0xb8fbf803, 0x866eff78,
+ 0x00002000, 0xbf840009,
+ 0x866eff6d, 0x00ff0000,
+ 0xbf85001a, 0x866eff7b,
+ 0x00000400, 0xbf85004d,
+ 0xbf8e0010, 0xb8fbf803,
+ 0xbf82fffa, 0x866eff7b,
+ 0x03c00900, 0xbf850011,
+ 0x866eff7b, 0x000071ff,
+ 0xbf840008, 0x866fff7b,
+ 0x00007080, 0xbf840001,
+ 0xbeee1a87, 0xb8eff801,
+ 0x8e6e8c6e, 0x866e6f6e,
+ 0xbf850006, 0x866eff6d,
+ 0x00ff0000, 0xbf850003,
+ 0x866eff7b, 0x00000400,
+ 0xbf850036, 0xb8faf807,
+ 0x867aff7a, 0x001f8000,
+ 0x8e7a8b7a, 0x8979ff79,
+ 0xfc000000, 0x87797a79,
+ 0xba7ff807, 0x00000000,
+ 0xb8faf812, 0xb8fbf813,
+ 0x8efa887a, 0xc0031bbd,
+ 0x00000010, 0xbf8cc07f,
+ 0x8e6e976e, 0x8979ff79,
+ 0x00800000, 0x87796e79,
+ 0xc0071bbd, 0x00000000,
+ 0xbf8cc07f, 0xc0071ebd,
+ 0x00000008, 0xbf8cc07f,
+ 0x86ee6e6e, 0xbf840001,
+ 0xbe801d6e, 0x866eff6d,
+ 0x01ff0000, 0xbf850005,
+ 0x8778ff78, 0x00002000,
+ 0x80ec886c, 0x82ed806d,
+ 0xbf820005, 0x866eff6d,
+ 0x01000000, 0xbf850002,
+ 0x806c846c, 0x826d806d,
+ 0x866dff6d, 0x0000ffff,
+ 0x8f7a8b79, 0x867aff7a,
+ 0x001f8000, 0xb97af807,
+ 0x86fe7e7e, 0x86ea6a6a,
+ 0x8f6e8378, 0xb96ee0c2,
+ 0xbf800002, 0xb9780002,
+ 0xbe801f6c, 0x866dff6d,
+ 0x0000ffff, 0xbefa0080,
+ 0xb97a0283, 0xb8faf807,
+ 0x867aff7a, 0x001f8000,
+ 0x8e7a8b7a, 0x8979ff79,
+ 0xfc000000, 0x87797a79,
+ 0xba7ff807, 0x00000000,
+ 0xbeee007e, 0xbeef007f,
+ 0xbefe0180, 0xbf900004,
+ 0x877a8478, 0xb97af802,
+ 0xbf8e0002, 0xbf88fffe,
+ 0xb8fa2985, 0x807a817a,
+ 0x8e7a8a7a, 0x8e7a817a,
+ 0xb8fb1605, 0x807b817b,
+ 0x8e7b867b, 0x807a7b7a,
+ 0x807a7e7a, 0x827b807f,
+ 0x867bff7b, 0x0000ffff,
+ 0xc04b1c3d, 0x00000050,
+ 0xbf8cc07f, 0xc04b1d3d,
+ 0x00000060, 0xbf8cc07f,
+ 0xc0431e7d, 0x00000074,
+ 0xbf8cc07f, 0xbef4007e,
+ 0x8675ff7f, 0x0000ffff,
+ 0x8775ff75, 0x00040000,
+ 0xbef60080, 0xbef700ff,
+ 0x00807fac, 0xbef1007c,
+ 0xbef00080, 0xb8f02985,
+ 0x80708170, 0x8e708a70,
+ 0x8e708170, 0xb8fa1605,
+ 0x807a817a, 0x8e7a867a,
+ 0x80707a70, 0xbef60084,
+ 0xbef600ff, 0x01000000,
+ 0xbefe007c, 0xbefc0070,
+ 0xc0611c7a, 0x0000007c,
+ 0xbf8cc07f, 0x80708470,
+ 0xbefc007e, 0xbefe007c,
+ 0xbefc0070, 0xc0611b3a,
+ 0x0000007c, 0xbf8cc07f,
+ 0x80708470, 0xbefc007e,
+ 0xbefe007c, 0xbefc0070,
+ 0xc0611b7a, 0x0000007c,
+ 0xbf8cc07f, 0x80708470,
+ 0xbefc007e, 0xbefe007c,
+ 0xbefc0070, 0xc0611bba,
+ 0x0000007c, 0xbf8cc07f,
+ 0x80708470, 0xbefc007e,
+ 0xbefe007c, 0xbefc0070,
+ 0xc0611bfa, 0x0000007c,
+ 0xbf8cc07f, 0x80708470,
+ 0xbefc007e, 0xbefe007c,
+ 0xbefc0070, 0xc0611e3a,
+ 0x0000007c, 0xbf8cc07f,
+ 0x80708470, 0xbefc007e,
+ 0xb8fbf803, 0xbefe007c,
+ 0xbefc0070, 0xc0611efa,
+ 0x0000007c, 0xbf8cc07f,
+ 0x80708470, 0xbefc007e,
+ 0xbefe007c, 0xbefc0070,
+ 0xc0611a3a, 0x0000007c,
+ 0xbf8cc07f, 0x80708470,
+ 0xbefc007e, 0xbefe007c,
+ 0xbefc0070, 0xc0611a7a,
+ 0x0000007c, 0xbf8cc07f,
+ 0x80708470, 0xbefc007e,
+ 0xb8f1f801, 0xbefe007c,
+ 0xbefc0070, 0xc0611c7a,
+ 0x0000007c, 0xbf8cc07f,
+ 0x80708470, 0xbefc007e,
+ 0x867aff7f, 0x04000000,
+ 0xbeef0080, 0x876f6f7a,
+ 0xb8f02985, 0x80708170,
+ 0x8e708a70, 0x8e708170,
+ 0xb8fb1605, 0x807b817b,
+ 0x8e7b847b, 0x8e76827b,
+ 0xbef600ff, 0x01000000,
+ 0xbef20174, 0x80747074,
+ 0x82758075, 0xbefc0080,
+ 0xbf800000, 0xbe802b00,
+ 0xbe822b02, 0xbe842b04,
+ 0xbe862b06, 0xbe882b08,
+ 0xbe8a2b0a, 0xbe8c2b0c,
+ 0xbe8e2b0e, 0xc06b003a,
+ 0x00000000, 0xbf8cc07f,
+ 0xc06b013a, 0x00000010,
+ 0xbf8cc07f, 0xc06b023a,
+ 0x00000020, 0xbf8cc07f,
+ 0xc06b033a, 0x00000030,
+ 0xbf8cc07f, 0x8074c074,
+ 0x82758075, 0x807c907c,
+ 0xbf0a7b7c, 0xbf85ffe7,
+ 0xbef40172, 0xbef00080,
+ 0xbefe00c1, 0xbeff00c1,
+ 0xbee80080, 0xbee90080,
+ 0xbef600ff, 0x01000000,
+ 0x867aff78, 0x00400000,
+ 0xbf850003, 0xb8faf803,
+ 0x897a7aff, 0x10000000,
+ 0xbf85004d, 0xbe840080,
+ 0xd2890000, 0x00000900,
+ 0x80048104, 0xd2890001,
+ 0x00000900, 0x80048104,
+ 0xd2890002, 0x00000900,
+ 0x80048104, 0xd2890003,
+ 0x00000900, 0x80048104,
+ 0xc069003a, 0x00000070,
+ 0xbf8cc07f, 0x80709070,
+ 0xbf06c004, 0xbf84ffee,
+ 0xbe840080, 0xd2890000,
+ 0x00000901, 0x80048104,
+ 0xd2890001, 0x00000901,
+ 0x80048104, 0xd2890002,
+ 0x00000901, 0x80048104,
+ 0xd2890003, 0x00000901,
+ 0x80048104, 0xc069003a,
+ 0x00000070, 0xbf8cc07f,
+ 0x80709070, 0xbf06c004,
+ 0xbf84ffee, 0xbe840080,
+ 0xd2890000, 0x00000902,
+ 0x80048104, 0xd2890001,
+ 0x00000902, 0x80048104,
+ 0xd2890002, 0x00000902,
+ 0x80048104, 0xd2890003,
+ 0x00000902, 0x80048104,
+ 0xc069003a, 0x00000070,
+ 0xbf8cc07f, 0x80709070,
+ 0xbf06c004, 0xbf84ffee,
+ 0xbe840080, 0xd2890000,
+ 0x00000903, 0x80048104,
+ 0xd2890001, 0x00000903,
+ 0x80048104, 0xd2890002,
+ 0x00000903, 0x80048104,
+ 0xd2890003, 0x00000903,
+ 0x80048104, 0xc069003a,
+ 0x00000070, 0xbf8cc07f,
+ 0x80709070, 0xbf06c004,
+ 0xbf84ffee, 0xbf820008,
+ 0xe0724000, 0x701d0000,
+ 0xe0724100, 0x701d0100,
+ 0xe0724200, 0x701d0200,
+ 0xe0724300, 0x701d0300,
+ 0xbefe00c1, 0xbeff00c1,
+ 0xb8fb4306, 0x867bc17b,
+ 0xbf840064, 0xbf8a0000,
+ 0x867aff6f, 0x04000000,
+ 0xbf840060, 0x8e7b867b,
+ 0x8e7b827b, 0xbef6007b,
+ 0xb8f02985, 0x80708170,
+ 0x8e708a70, 0x8e708170,
+ 0xb8fa1605, 0x807a817a,
+ 0x8e7a867a, 0x80707a70,
+ 0x8070ff70, 0x00000080,
+ 0xbef600ff, 0x01000000,
+ 0xbefc0080, 0xd28c0002,
+ 0x000100c1, 0xd28d0003,
+ 0x000204c1, 0x867aff78,
+ 0x00400000, 0xbf850003,
+ 0xb8faf803, 0x897a7aff,
+ 0x10000000, 0xbf850030,
+ 0x24040682, 0xd86e4000,
+ 0x00000002, 0xbf8cc07f,
+ 0xbe840080, 0xd2890000,
+ 0x00000900, 0x80048104,
+ 0xd2890001, 0x00000900,
+ 0x80048104, 0xd2890002,
+ 0x00000900, 0x80048104,
+ 0xd2890003, 0x00000900,
+ 0x80048104, 0xc069003a,
+ 0x00000070, 0xbf8cc07f,
+ 0x80709070, 0xbf06c004,
+ 0xbf84ffee, 0xbe840080,
+ 0xd2890000, 0x00000901,
+ 0x80048104, 0xd2890001,
+ 0x00000901, 0x80048104,
+ 0xd2890002, 0x00000901,
+ 0x80048104, 0xd2890003,
+ 0x00000901, 0x80048104,
+ 0xc069003a, 0x00000070,
+ 0xbf8cc07f, 0x80709070,
+ 0xbf06c004, 0xbf84ffee,
+ 0x680404ff, 0x00000200,
+ 0xd0c9006a, 0x0000f702,
+ 0xbf87ffd2, 0xbf820015,
+ 0xd1060002, 0x00011103,
+ 0x7e0602ff, 0x00000200,
+ 0xbefc00ff, 0x00010000,
+ 0xbe800077, 0x8677ff77,
+ 0xff7fffff, 0x8777ff77,
+ 0x00058000, 0xd8ec0000,
+ 0x00000002, 0xbf8cc07f,
+ 0xe0765000, 0x701d0002,
+ 0x68040702, 0xd0c9006a,
+ 0x0000f702, 0xbf87fff7,
+ 0xbef70000, 0xbef000ff,
+ 0x00000400, 0xbefe00c1,
+ 0xbeff00c1, 0xb8fb2b05,
+ 0x807b817b, 0x8e7b827b,
+ 0xbef600ff, 0x01000000,
+ 0xbefc0084, 0xbf0a7b7c,
+ 0xbf84006d, 0xbf11017c,
+ 0x807bff7b, 0x00001000,
+ 0x867aff78, 0x00400000,
+ 0xbf850003, 0xb8faf803,
+ 0x897a7aff, 0x10000000,
+ 0xbf850051, 0xbe840080,
+ 0xd2890000, 0x00000900,
+ 0x80048104, 0xd2890001,
+ 0x00000900, 0x80048104,
+ 0xd2890002, 0x00000900,
+ 0x80048104, 0xd2890003,
+ 0x00000900, 0x80048104,
+ 0xc069003a, 0x00000070,
+ 0xbf8cc07f, 0x80709070,
+ 0xbf06c004, 0xbf84ffee,
+ 0xbe840080, 0xd2890000,
+ 0x00000901, 0x80048104,
+ 0xd2890001, 0x00000901,
+ 0x80048104, 0xd2890002,
+ 0x00000901, 0x80048104,
+ 0xd2890003, 0x00000901,
+ 0x80048104, 0xc069003a,
+ 0x00000070, 0xbf8cc07f,
+ 0x80709070, 0xbf06c004,
+ 0xbf84ffee, 0xbe840080,
+ 0xd2890000, 0x00000902,
+ 0x80048104, 0xd2890001,
+ 0x00000902, 0x80048104,
+ 0xd2890002, 0x00000902,
+ 0x80048104, 0xd2890003,
+ 0x00000902, 0x80048104,
+ 0xc069003a, 0x00000070,
+ 0xbf8cc07f, 0x80709070,
+ 0xbf06c004, 0xbf84ffee,
+ 0xbe840080, 0xd2890000,
+ 0x00000903, 0x80048104,
+ 0xd2890001, 0x00000903,
+ 0x80048104, 0xd2890002,
+ 0x00000903, 0x80048104,
+ 0xd2890003, 0x00000903,
+ 0x80048104, 0xc069003a,
+ 0x00000070, 0xbf8cc07f,
+ 0x80709070, 0xbf06c004,
+ 0xbf84ffee, 0x807c847c,
+ 0xbf0a7b7c, 0xbf85ffb1,
+ 0xbf9c0000, 0xbf820012,
+ 0x7e000300, 0x7e020301,
+ 0x7e040302, 0x7e060303,
+ 0xe0724000, 0x701d0000,
+ 0xe0724100, 0x701d0100,
+ 0xe0724200, 0x701d0200,
+ 0xe0724300, 0x701d0300,
+ 0x807c847c, 0x8070ff70,
+ 0x00000400, 0xbf0a7b7c,
+ 0xbf85ffef, 0xbf9c0000,
+ 0xb8fb2985, 0x807b817b,
+ 0x8e7b837b, 0xb8fa2b05,
+ 0x807a817a, 0x8e7a827a,
+ 0x80fb7a7b, 0x867b7b7b,
+ 0xbf84007a, 0x807bff7b,
+ 0x00001000, 0xbefc0080,
+ 0xbf11017c, 0x867aff78,
+ 0x00400000, 0xbf850003,
+ 0xb8faf803, 0x897a7aff,
+ 0x10000000, 0xbf850059,
+ 0xd3d84000, 0x18000100,
+ 0xd3d84001, 0x18000101,
+ 0xd3d84002, 0x18000102,
+ 0xd3d84003, 0x18000103,
+ 0xbe840080, 0xd2890000,
+ 0x00000900, 0x80048104,
+ 0xd2890001, 0x00000900,
+ 0x80048104, 0xd2890002,
+ 0x00000900, 0x80048104,
+ 0xd2890003, 0x00000900,
+ 0x80048104, 0xc069003a,
+ 0x00000070, 0xbf8cc07f,
+ 0x80709070, 0xbf06c004,
+ 0xbf84ffee, 0xbe840080,
+ 0xd2890000, 0x00000901,
+ 0x80048104, 0xd2890001,
+ 0x00000901, 0x80048104,
+ 0xd2890002, 0x00000901,
+ 0x80048104, 0xd2890003,
+ 0x00000901, 0x80048104,
+ 0xc069003a, 0x00000070,
+ 0xbf8cc07f, 0x80709070,
+ 0xbf06c004, 0xbf84ffee,
+ 0xbe840080, 0xd2890000,
+ 0x00000902, 0x80048104,
+ 0xd2890001, 0x00000902,
+ 0x80048104, 0xd2890002,
+ 0x00000902, 0x80048104,
+ 0xd2890003, 0x00000902,
+ 0x80048104, 0xc069003a,
+ 0x00000070, 0xbf8cc07f,
+ 0x80709070, 0xbf06c004,
+ 0xbf84ffee, 0xbe840080,
+ 0xd2890000, 0x00000903,
+ 0x80048104, 0xd2890001,
+ 0x00000903, 0x80048104,
+ 0xd2890002, 0x00000903,
+ 0x80048104, 0xd2890003,
+ 0x00000903, 0x80048104,
+ 0xc069003a, 0x00000070,
+ 0xbf8cc07f, 0x80709070,
+ 0xbf06c004, 0xbf84ffee,
+ 0x807c847c, 0xbf0a7b7c,
+ 0xbf85ffa9, 0xbf9c0000,
+ 0xbf820016, 0xd3d84000,
+ 0x18000100, 0xd3d84001,
+ 0x18000101, 0xd3d84002,
+ 0x18000102, 0xd3d84003,
+ 0x18000103, 0xe0724000,
+ 0x701d0000, 0xe0724100,
+ 0x701d0100, 0xe0724200,
+ 0x701d0200, 0xe0724300,
+ 0x701d0300, 0x807c847c,
+ 0x8070ff70, 0x00000400,
+ 0xbf0a7b7c, 0xbf85ffeb,
+ 0xbf9c0000, 0xbf8200ee,
+ 0xbef4007e, 0x8675ff7f,
+ 0x0000ffff, 0x8775ff75,
+ 0x00040000, 0xbef60080,
+ 0xbef700ff, 0x00807fac,
+ 0x866eff7f, 0x04000000,
+ 0xbf84001f, 0xbefe00c1,
+ 0xbeff00c1, 0xb8ef4306,
+ 0x866fc16f, 0xbf84001a,
+ 0x8e6f866f, 0x8e6f826f,
+ 0xbef6006f, 0xb8f82985,
+ 0x80788178, 0x8e788a78,
+ 0x8e788178, 0xb8ee1605,
+ 0x806e816e, 0x8e6e866e,
+ 0x80786e78, 0x8078ff78,
+ 0x00000080, 0xbef600ff,
+ 0x01000000, 0xbefc0080,
+ 0xe0510000, 0x781d0000,
+ 0xe0510100, 0x781d0000,
+ 0x807cff7c, 0x00000200,
+ 0x8078ff78, 0x00000200,
+ 0xbf0a6f7c, 0xbf85fff6,
+ 0xbefe00c1, 0xbeff00c1,
+ 0xbef600ff, 0x01000000,
+ 0xb8ef2b05, 0x806f816f,
+ 0x8e6f826f, 0x806fff6f,
+ 0x00008000, 0xbef80080,
+ 0xbeee0078, 0x8078ff78,
+ 0x00000400, 0xbefc0084,
+ 0xbf11087c, 0xe0524000,
+ 0x781d0000, 0xe0524100,
+ 0x781d0100, 0xe0524200,
+ 0x781d0200, 0xe0524300,
+ 0x781d0300, 0xbf8c0f70,
+ 0x7e000300, 0x7e020301,
+ 0x7e040302, 0x7e060303,
+ 0x807c847c, 0x8078ff78,
+ 0x00000400, 0xbf0a6f7c,
+ 0xbf85ffee, 0xb8ef2985,
+ 0x806f816f, 0x8e6f836f,
+ 0xb8f92b05, 0x80798179,
+ 0x8e798279, 0x80ef796f,
+ 0x866f6f6f, 0xbf84001a,
+ 0x806fff6f, 0x00008000,
+ 0xbefc0080, 0xbf11087c,
+ 0xe0524000, 0x781d0000,
+ 0xe0524100, 0x781d0100,
+ 0xe0524200, 0x781d0200,
+ 0xe0524300, 0x781d0300,
+ 0xbf8c0f70, 0xd3d94000,
+ 0x18000100, 0xd3d94001,
+ 0x18000101, 0xd3d94002,
+ 0x18000102, 0xd3d94003,
+ 0x18000103, 0x807c847c,
+ 0x8078ff78, 0x00000400,
+ 0xbf0a6f7c, 0xbf85ffea,
+ 0xbf9c0000, 0xe0524000,
+ 0x6e1d0000, 0xe0524100,
+ 0x6e1d0100, 0xe0524200,
+ 0x6e1d0200, 0xe0524300,
+ 0x6e1d0300, 0xbf8c0f70,
+ 0xb8f82985, 0x80788178,
+ 0x8e788a78, 0x8e788178,
+ 0xb8ee1605, 0x806e816e,
+ 0x8e6e866e, 0x80786e78,
+ 0x80f8c078, 0xb8ef1605,
+ 0x806f816f, 0x8e6f846f,
+ 0x8e76826f, 0xbef600ff,
+ 0x01000000, 0xbefc006f,
+ 0xc031003a, 0x00000078,
+ 0x80f8c078, 0xbf8cc07f,
+ 0x80fc907c, 0xbf800000,
+ 0xbe802d00, 0xbe822d02,
+ 0xbe842d04, 0xbe862d06,
+ 0xbe882d08, 0xbe8a2d0a,
+ 0xbe8c2d0c, 0xbe8e2d0e,
+ 0xbf06807c, 0xbf84fff0,
+ 0xb8f82985, 0x80788178,
+ 0x8e788a78, 0x8e788178,
+ 0xb8ee1605, 0x806e816e,
+ 0x8e6e866e, 0x80786e78,
+ 0xbef60084, 0xbef600ff,
+ 0x01000000, 0xc0211bfa,
+ 0x00000078, 0x80788478,
+ 0xc0211b3a, 0x00000078,
+ 0x80788478, 0xc0211b7a,
+ 0x00000078, 0x80788478,
+ 0xc0211c3a, 0x00000078,
+ 0x80788478, 0xc0211c7a,
+ 0x00000078, 0x80788478,
+ 0xc0211eba, 0x00000078,
+ 0x80788478, 0xc0211efa,
+ 0x00000078, 0x80788478,
+ 0xc0211a3a, 0x00000078,
+ 0x80788478, 0xc0211a7a,
+ 0x00000078, 0x80788478,
+ 0xc0211cfa, 0x00000078,
+ 0x80788478, 0xbf8cc07f,
+ 0xbefc006f, 0xbefe0070,
+ 0xbeff0071, 0x866f7bff,
+ 0x000003ff, 0xb96f4803,
+ 0x866f7bff, 0xfffff800,
+ 0x8f6f8b6f, 0xb96fa2c3,
+ 0xb973f801, 0xb8ee2985,
+ 0x806e816e, 0x8e6e8a6e,
+ 0x8e6e816e, 0xb8ef1605,
+ 0x806f816f, 0x8e6f866f,
+ 0x806e6f6e, 0x806e746e,
+ 0x826f8075, 0x866fff6f,
+ 0x0000ffff, 0xc00b1c37,
+ 0x00000050, 0xc00b1d37,
+ 0x00000060, 0xc0031e77,
+ 0x00000074, 0xbf8cc07f,
+ 0x8f6e8b79, 0x866eff6e,
+ 0x001f8000, 0xb96ef807,
+ 0x866dff6d, 0x0000ffff,
+ 0x86fe7e7e, 0x86ea6a6a,
+ 0x8f6e837a, 0xb96ee0c2,
+ 0xbf800002, 0xb97a0002,
+ 0xbf8a0000, 0xbe801f6c,
+ 0xbf810000, 0x00000000,
+};
diff --git a/drivers/gpu/drm/amd/amdkfd/cwsr_trap_handler_gfx9.asm b/drivers/gpu/drm/amd/amdkfd/cwsr_trap_handler_gfx9.asm
index 6770cbe3250a..f2087cc2e89d 100644
--- a/drivers/gpu/drm/amd/amdkfd/cwsr_trap_handler_gfx9.asm
+++ b/drivers/gpu/drm/amd/amdkfd/cwsr_trap_handler_gfx9.asm
@@ -33,15 +33,20 @@
* aldebaran:
* cpp -DASIC_FAMILY=CHIP_ALDEBARAN cwsr_trap_handler_gfx9.asm -P -o aldebaran.sp3
* sp3 aldebaran.sp3 -hex aldebaran.hex
+ *
+ * gc_9_4_3:
+ * cpp -DASIC_FAMILY=GC_9_4_3 cwsr_trap_handler_gfx9.asm -P -o gc_9_4_3.sp3
+ * sp3 gc_9_4_3.sp3 -hex gc_9_4_3.hex
*/
#define CHIP_VEGAM 18
#define CHIP_ARCTURUS 23
#define CHIP_ALDEBARAN 25
+#define CHIP_GC_9_4_3 26
var ACK_SQC_STORE = 1 //workaround for suspected SQC store bug causing incorrect stores under concurrency
var SAVE_AFTER_XNACK_ERROR = 1 //workaround for TCP store failure after XNACK error when ALLOW_REPLAY=0, for debugger
-var SINGLE_STEP_MISSED_WORKAROUND = 1 //workaround for lost MODE.DEBUG_EN exception when SAVECTX raised
+var SINGLE_STEP_MISSED_WORKAROUND = (ASIC_FAMILY <= CHIP_ALDEBARAN) //workaround for lost MODE.DEBUG_EN exception when SAVECTX raised
/**************************************************************************/
/* variables */
@@ -77,6 +82,10 @@ var SQ_WAVE_TRAPSTS_ADDR_WATCH_MASK = 0x80
var SQ_WAVE_TRAPSTS_ADDR_WATCH_SHIFT = 7
var SQ_WAVE_TRAPSTS_MEM_VIOL_MASK = 0x100
var SQ_WAVE_TRAPSTS_MEM_VIOL_SHIFT = 8
+var SQ_WAVE_TRAPSTS_HOST_TRAP_MASK = 0x400000
+var SQ_WAVE_TRAPSTS_WAVE_BEGIN_MASK = 0x800000
+var SQ_WAVE_TRAPSTS_WAVE_END_MASK = 0x1000000
+var SQ_WAVE_TRAPSTS_TRAP_AFTER_INST_MASK = 0x2000000
var SQ_WAVE_TRAPSTS_PRE_SAVECTX_MASK = 0x3FF
var SQ_WAVE_TRAPSTS_PRE_SAVECTX_SHIFT = 0x0
var SQ_WAVE_TRAPSTS_PRE_SAVECTX_SIZE = 10
@@ -95,10 +104,10 @@ var SQ_WAVE_IB_STS_RCNT_FIRST_REPLAY_MASK = 0x1F8000
var SQ_WAVE_MODE_DEBUG_EN_MASK = 0x800
-var TTMP11_SAVE_RCNT_FIRST_REPLAY_SHIFT = 26 // bits [31:26] unused by SPI debug data
-var TTMP11_SAVE_RCNT_FIRST_REPLAY_MASK = 0xFC000000
-var TTMP11_DEBUG_TRAP_ENABLED_SHIFT = 23
-var TTMP11_DEBUG_TRAP_ENABLED_MASK = 0x800000
+var TTMP_SAVE_RCNT_FIRST_REPLAY_SHIFT = 26 // bits [31:26] unused by SPI debug data
+var TTMP_SAVE_RCNT_FIRST_REPLAY_MASK = 0xFC000000
+var TTMP_DEBUG_TRAP_ENABLED_SHIFT = 23
+var TTMP_DEBUG_TRAP_ENABLED_MASK = 0x800000
/* Save */
var S_SAVE_BUF_RSRC_WORD1_STRIDE = 0x00040000 //stride is 4 bytes
@@ -129,6 +138,11 @@ var s_save_alloc_size = s_save_trapsts //conflict
var s_save_m0 = ttmp5
var s_save_ttmps_lo = s_save_tmp //no conflict
var s_save_ttmps_hi = s_save_trapsts //no conflict
+#if ASIC_FAMILY >= CHIP_GC_9_4_3
+var s_save_ib_sts = ttmp13
+#else
+var s_save_ib_sts = ttmp11
+#endif
/* Restore */
var S_RESTORE_BUF_RSRC_WORD1_STRIDE = S_SAVE_BUF_RSRC_WORD1_STRIDE
@@ -215,9 +229,15 @@ L_NOT_HALTED:
// Any concurrent SAVECTX will be handled upon re-entry once halted.
// Check non-maskable exceptions. memory_violation, illegal_instruction
- // and xnack_error exceptions always cause the wave to enter the trap
- // handler.
- s_and_b32 ttmp2, s_save_trapsts, SQ_WAVE_TRAPSTS_MEM_VIOL_MASK|SQ_WAVE_TRAPSTS_ILLEGAL_INST_MASK
+ // and debugger (host trap, wave start/end, trap after instruction)
+ // exceptions always cause the wave to enter the trap handler.
+ s_and_b32 ttmp2, s_save_trapsts, \
+ SQ_WAVE_TRAPSTS_MEM_VIOL_MASK | \
+ SQ_WAVE_TRAPSTS_ILLEGAL_INST_MASK | \
+ SQ_WAVE_TRAPSTS_HOST_TRAP_MASK | \
+ SQ_WAVE_TRAPSTS_WAVE_BEGIN_MASK | \
+ SQ_WAVE_TRAPSTS_WAVE_END_MASK | \
+ SQ_WAVE_TRAPSTS_TRAP_AFTER_INST_MASK
s_cbranch_scc1 L_FETCH_2ND_TRAP
// Check for maskable exceptions in trapsts.excp and trapsts.excp_hi.
@@ -265,9 +285,9 @@ L_FETCH_2ND_TRAP:
s_load_dword ttmp2, [ttmp14, ttmp15], 0x10 glc:1 // debug trap enabled flag
s_waitcnt lgkmcnt(0)
- s_lshl_b32 ttmp2, ttmp2, TTMP11_DEBUG_TRAP_ENABLED_SHIFT
- s_andn2_b32 ttmp11, ttmp11, TTMP11_DEBUG_TRAP_ENABLED_MASK
- s_or_b32 ttmp11, ttmp11, ttmp2
+ s_lshl_b32 ttmp2, ttmp2, TTMP_DEBUG_TRAP_ENABLED_SHIFT
+ s_andn2_b32 s_save_ib_sts, s_save_ib_sts, TTMP_DEBUG_TRAP_ENABLED_MASK
+ s_or_b32 s_save_ib_sts, s_save_ib_sts, ttmp2
s_load_dwordx2 [ttmp2, ttmp3], [ttmp14, ttmp15], 0x0 glc:1 // second-level TBA
s_waitcnt lgkmcnt(0)
@@ -1058,17 +1078,17 @@ function set_status_without_spi_prio(status, tmp)
end
function save_and_clear_ib_sts(tmp)
- // Save IB_STS.FIRST_REPLAY[15] and IB_STS.RCNT[20:16] into unused space ttmp11[31:26].
+ // Save IB_STS.FIRST_REPLAY[15] and IB_STS.RCNT[20:16] into unused space s_save_ib_sts[31:26].
s_getreg_b32 tmp, hwreg(HW_REG_IB_STS)
s_and_b32 tmp, tmp, SQ_WAVE_IB_STS_RCNT_FIRST_REPLAY_MASK
- s_lshl_b32 tmp, tmp, (TTMP11_SAVE_RCNT_FIRST_REPLAY_SHIFT - SQ_WAVE_IB_STS_FIRST_REPLAY_SHIFT)
- s_andn2_b32 ttmp11, ttmp11, TTMP11_SAVE_RCNT_FIRST_REPLAY_MASK
- s_or_b32 ttmp11, ttmp11, tmp
+ s_lshl_b32 tmp, tmp, (TTMP_SAVE_RCNT_FIRST_REPLAY_SHIFT - SQ_WAVE_IB_STS_FIRST_REPLAY_SHIFT)
+ s_andn2_b32 s_save_ib_sts, s_save_ib_sts, TTMP_SAVE_RCNT_FIRST_REPLAY_MASK
+ s_or_b32 s_save_ib_sts, s_save_ib_sts, tmp
s_setreg_imm32_b32 hwreg(HW_REG_IB_STS), 0x0
end
function restore_ib_sts(tmp)
- s_lshr_b32 tmp, ttmp11, (TTMP11_SAVE_RCNT_FIRST_REPLAY_SHIFT - SQ_WAVE_IB_STS_FIRST_REPLAY_SHIFT)
+ s_lshr_b32 tmp, s_save_ib_sts, (TTMP_SAVE_RCNT_FIRST_REPLAY_SHIFT - SQ_WAVE_IB_STS_FIRST_REPLAY_SHIFT)
s_and_b32 tmp, tmp, SQ_WAVE_IB_STS_RCNT_FIRST_REPLAY_MASK
s_setreg_b32 hwreg(HW_REG_IB_STS), tmp
end
diff --git a/drivers/gpu/drm/amd/amdkfd/kfd_chardev.c b/drivers/gpu/drm/amd/amdkfd/kfd_chardev.c
index 6d291aa6386b..1b54a9aaae70 100644
--- a/drivers/gpu/drm/amd/amdkfd/kfd_chardev.c
+++ b/drivers/gpu/drm/amd/amdkfd/kfd_chardev.c
@@ -93,7 +93,7 @@ int kfd_chardev_init(void)
if (err < 0)
goto err_register_chrdev;
- kfd_class = class_create(THIS_MODULE, kfd_dev_name);
+ kfd_class = class_create(kfd_dev_name);
err = PTR_ERR(kfd_class);
if (IS_ERR(kfd_class))
goto err_class_create;
@@ -1065,6 +1065,20 @@ static int kfd_ioctl_alloc_memory_of_gpu(struct file *filep,
mutex_unlock(&p->svms.lock);
return -EADDRINUSE;
}
+
+ /* When register user buffer check if it has been registered by svm by
+ * buffer cpu virtual address.
+ */
+ if ((flags & KFD_IOC_ALLOC_MEM_FLAGS_USERPTR) &&
+ interval_tree_iter_first(&p->svms.objects,
+ args->mmap_offset >> PAGE_SHIFT,
+ (args->mmap_offset + args->size - 1) >> PAGE_SHIFT)) {
+ pr_err("User Buffer Address: 0x%llx already allocated by SVM\n",
+ args->mmap_offset);
+ mutex_unlock(&p->svms.lock);
+ return -EADDRINUSE;
+ }
+
mutex_unlock(&p->svms.lock);
#endif
mutex_lock(&p->mutex);
@@ -1127,8 +1141,13 @@ static int kfd_ioctl_alloc_memory_of_gpu(struct file *filep,
}
/* Update the VRAM usage count */
- if (flags & KFD_IOC_ALLOC_MEM_FLAGS_VRAM)
- WRITE_ONCE(pdd->vram_usage, pdd->vram_usage + args->size);
+ if (flags & KFD_IOC_ALLOC_MEM_FLAGS_VRAM) {
+ uint64_t size = args->size;
+
+ if (flags & KFD_IOC_ALLOC_MEM_FLAGS_AQL_QUEUE_MEM)
+ size >>= 1;
+ WRITE_ONCE(pdd->vram_usage, pdd->vram_usage + PAGE_ALIGN(size));
+ }
mutex_unlock(&p->mutex);
@@ -1293,14 +1312,14 @@ static int kfd_ioctl_map_memory_to_gpu(struct file *filep,
args->n_success = i+1;
}
- mutex_unlock(&p->mutex);
-
err = amdgpu_amdkfd_gpuvm_sync_memory(dev->adev, (struct kgd_mem *) mem, true);
if (err) {
pr_debug("Sync memory failed, wait interrupted by user signal\n");
goto sync_memory_failed;
}
+ mutex_unlock(&p->mutex);
+
/* Flush TLBs after waiting for the page table updates to complete */
for (i = 0; i < args->n_devices; i++) {
peer_pdd = kfd_process_device_data_by_id(p, devices_arr[i]);
@@ -1316,9 +1335,9 @@ get_process_device_data_failed:
bind_process_to_device_failed:
get_mem_obj_from_handle_failed:
map_memory_to_gpu_failed:
+sync_memory_failed:
mutex_unlock(&p->mutex);
copy_from_user_failed:
-sync_memory_failed:
kfree(devices_arr);
return err;
@@ -1332,6 +1351,7 @@ static int kfd_ioctl_unmap_memory_from_gpu(struct file *filep,
void *mem;
long err = 0;
uint32_t *devices_arr = NULL, i;
+ bool flush_tlb;
if (!args->n_devices) {
pr_debug("Device IDs array empty\n");
@@ -1384,16 +1404,19 @@ static int kfd_ioctl_unmap_memory_from_gpu(struct file *filep,
}
args->n_success = i+1;
}
- mutex_unlock(&p->mutex);
- if (kfd_flush_tlb_after_unmap(pdd->dev)) {
+ flush_tlb = kfd_flush_tlb_after_unmap(pdd->dev);
+ if (flush_tlb) {
err = amdgpu_amdkfd_gpuvm_sync_memory(pdd->dev->adev,
(struct kgd_mem *) mem, true);
if (err) {
pr_debug("Sync memory failed, wait interrupted by user signal\n");
goto sync_memory_failed;
}
+ }
+ mutex_unlock(&p->mutex);
+ if (flush_tlb) {
/* Flush TLBs after waiting for the page table updates to complete */
for (i = 0; i < args->n_devices; i++) {
peer_pdd = kfd_process_device_data_by_id(p, devices_arr[i]);
@@ -1409,9 +1432,9 @@ static int kfd_ioctl_unmap_memory_from_gpu(struct file *filep,
bind_process_to_device_failed:
get_mem_obj_from_handle_failed:
unmap_memory_from_gpu_failed:
+sync_memory_failed:
mutex_unlock(&p->mutex);
copy_from_user_failed:
-sync_memory_failed:
kfree(devices_arr);
return err;
}
@@ -1567,6 +1590,58 @@ err_unlock:
return r;
}
+static int kfd_ioctl_export_dmabuf(struct file *filep,
+ struct kfd_process *p, void *data)
+{
+ struct kfd_ioctl_export_dmabuf_args *args = data;
+ struct kfd_process_device *pdd;
+ struct dma_buf *dmabuf;
+ struct kfd_dev *dev;
+ void *mem;
+ int ret = 0;
+
+ dev = kfd_device_by_id(GET_GPU_ID(args->handle));
+ if (!dev)
+ return -EINVAL;
+
+ mutex_lock(&p->mutex);
+
+ pdd = kfd_get_process_device_data(dev, p);
+ if (!pdd) {
+ ret = -EINVAL;
+ goto err_unlock;
+ }
+
+ mem = kfd_process_device_translate_handle(pdd,
+ GET_IDR_HANDLE(args->handle));
+ if (!mem) {
+ ret = -EINVAL;
+ goto err_unlock;
+ }
+
+ ret = amdgpu_amdkfd_gpuvm_export_dmabuf(mem, &dmabuf);
+ mutex_unlock(&p->mutex);
+ if (ret)
+ goto err_out;
+
+ ret = dma_buf_fd(dmabuf, args->flags);
+ if (ret < 0) {
+ dma_buf_put(dmabuf);
+ goto err_out;
+ }
+ /* dma_buf_fd assigns the reference count to the fd, no need to
+ * put the reference here.
+ */
+ args->dmabuf_fd = ret;
+
+ return 0;
+
+err_unlock:
+ mutex_unlock(&p->mutex);
+err_out:
+ return ret;
+}
+
/* Handle requests for watching SMI events */
static int kfd_ioctl_smi_events(struct file *filep,
struct kfd_process *p, void *data)
@@ -2749,6 +2824,9 @@ static const struct amdkfd_ioctl_desc amdkfd_ioctls[] = {
AMDKFD_IOCTL_DEF(AMDKFD_IOC_AVAILABLE_MEMORY,
kfd_ioctl_get_available_memory, 0),
+
+ AMDKFD_IOCTL_DEF(AMDKFD_IOC_EXPORT_DMABUF,
+ kfd_ioctl_export_dmabuf, 0),
};
#define AMDKFD_CORE_IOCTL_COUNT ARRAY_SIZE(amdkfd_ioctls)
@@ -2879,8 +2957,8 @@ static int kfd_mmio_mmap(struct kfd_dev *dev, struct kfd_process *process,
address = dev->adev->rmmio_remap.bus_addr;
- vma->vm_flags |= VM_IO | VM_DONTCOPY | VM_DONTEXPAND | VM_NORESERVE |
- VM_DONTDUMP | VM_PFNMAP;
+ vm_flags_set(vma, VM_IO | VM_DONTCOPY | VM_DONTEXPAND | VM_NORESERVE |
+ VM_DONTDUMP | VM_PFNMAP);
vma->vm_page_prot = pgprot_noncached(vma->vm_page_prot);
diff --git a/drivers/gpu/drm/amd/amdkfd/kfd_crat.c b/drivers/gpu/drm/amd/amdkfd/kfd_crat.c
index 8bfdfd062ff6..475e47027354 100644
--- a/drivers/gpu/drm/amd/amdkfd/kfd_crat.c
+++ b/drivers/gpu/drm/amd/amdkfd/kfd_crat.c
@@ -50,16 +50,6 @@ static inline unsigned int get_and_inc_gpu_processor_id(
return current_id;
}
-/* Static table to describe GPU Cache information */
-struct kfd_gpu_cache_info {
- uint32_t cache_size;
- uint32_t cache_level;
- uint32_t flags;
- /* Indicates how many Compute Units share this cache
- * within a SA. Value = 1 indicates the cache is not shared
- */
- uint32_t num_cu_shared;
-};
static struct kfd_gpu_cache_info kaveri_cache_info[] = {
{
@@ -891,6 +881,54 @@ static struct kfd_gpu_cache_info gc_10_3_6_cache_info[] = {
},
};
+static struct kfd_gpu_cache_info dummy_cache_info[] = {
+ {
+ /* TCP L1 Cache per CU */
+ .cache_size = 16,
+ .cache_level = 1,
+ .flags = (CRAT_CACHE_FLAGS_ENABLED |
+ CRAT_CACHE_FLAGS_DATA_CACHE |
+ CRAT_CACHE_FLAGS_SIMD_CACHE),
+ .num_cu_shared = 1,
+ },
+ {
+ /* Scalar L1 Instruction Cache per SQC */
+ .cache_size = 32,
+ .cache_level = 1,
+ .flags = (CRAT_CACHE_FLAGS_ENABLED |
+ CRAT_CACHE_FLAGS_INST_CACHE |
+ CRAT_CACHE_FLAGS_SIMD_CACHE),
+ .num_cu_shared = 2,
+ },
+ {
+ /* Scalar L1 Data Cache per SQC */
+ .cache_size = 16,
+ .cache_level = 1,
+ .flags = (CRAT_CACHE_FLAGS_ENABLED |
+ CRAT_CACHE_FLAGS_DATA_CACHE |
+ CRAT_CACHE_FLAGS_SIMD_CACHE),
+ .num_cu_shared = 2,
+ },
+ {
+ /* GL1 Data Cache per SA */
+ .cache_size = 128,
+ .cache_level = 1,
+ .flags = (CRAT_CACHE_FLAGS_ENABLED |
+ CRAT_CACHE_FLAGS_DATA_CACHE |
+ CRAT_CACHE_FLAGS_SIMD_CACHE),
+ .num_cu_shared = 6,
+ },
+ {
+ /* L2 Data Cache per GPU (Total Tex Cache) */
+ .cache_size = 2048,
+ .cache_level = 2,
+ .flags = (CRAT_CACHE_FLAGS_ENABLED |
+ CRAT_CACHE_FLAGS_DATA_CACHE |
+ CRAT_CACHE_FLAGS_SIMD_CACHE),
+ .num_cu_shared = 6,
+ },
+};
+
static void kfd_populated_cu_info_cpu(struct kfd_topology_device *dev,
struct crat_subtype_computeunit *cu)
{
@@ -1071,8 +1109,12 @@ static int kfd_parse_subtype_cache(struct crat_subtype_cache *cache,
props->cachelines_per_tag = cache->lines_per_tag;
props->cache_assoc = cache->associativity;
props->cache_latency = cache->cache_latency;
+
memcpy(props->sibling_map, cache->sibling_map,
- sizeof(props->sibling_map));
+ CRAT_SIBLINGMAP_SIZE);
+
+ /* set the sibling_map_size as 32 for CRAT from ACPI */
+ props->sibling_map_size = CRAT_SIBLINGMAP_SIZE;
if (cache->flags & CRAT_CACHE_FLAGS_DATA_CACHE)
props->cache_type |= HSA_CACHE_TYPE_DATA;
@@ -1083,7 +1125,6 @@ static int kfd_parse_subtype_cache(struct crat_subtype_cache *cache,
if (cache->flags & CRAT_CACHE_FLAGS_SIMD_CACHE)
props->cache_type |= HSA_CACHE_TYPE_HSACU;
- dev->cache_count++;
dev->node_props.caches_count++;
list_add_tail(&props->list, &dev->cache_props);
@@ -1291,125 +1332,6 @@ err:
return ret;
}
-/* Helper function. See kfd_fill_gpu_cache_info for parameter description */
-static int fill_in_l1_pcache(struct crat_subtype_cache *pcache,
- struct kfd_gpu_cache_info *pcache_info,
- struct kfd_cu_info *cu_info,
- int mem_available,
- int cu_bitmask,
- int cache_type, unsigned int cu_processor_id,
- int cu_block)
-{
- unsigned int cu_sibling_map_mask;
- int first_active_cu;
-
- /* First check if enough memory is available */
- if (sizeof(struct crat_subtype_cache) > mem_available)
- return -ENOMEM;
-
- cu_sibling_map_mask = cu_bitmask;
- cu_sibling_map_mask >>= cu_block;
- cu_sibling_map_mask &=
- ((1 << pcache_info[cache_type].num_cu_shared) - 1);
- first_active_cu = ffs(cu_sibling_map_mask);
-
- /* CU could be inactive. In case of shared cache find the first active
- * CU. and incase of non-shared cache check if the CU is inactive. If
- * inactive active skip it
- */
- if (first_active_cu) {
- memset(pcache, 0, sizeof(struct crat_subtype_cache));
- pcache->type = CRAT_SUBTYPE_CACHE_AFFINITY;
- pcache->length = sizeof(struct crat_subtype_cache);
- pcache->flags = pcache_info[cache_type].flags;
- pcache->processor_id_low = cu_processor_id
- + (first_active_cu - 1);
- pcache->cache_level = pcache_info[cache_type].cache_level;
- pcache->cache_size = pcache_info[cache_type].cache_size;
-
- /* Sibling map is w.r.t processor_id_low, so shift out
- * inactive CU
- */
- cu_sibling_map_mask =
- cu_sibling_map_mask >> (first_active_cu - 1);
-
- pcache->sibling_map[0] = (uint8_t)(cu_sibling_map_mask & 0xFF);
- pcache->sibling_map[1] =
- (uint8_t)((cu_sibling_map_mask >> 8) & 0xFF);
- pcache->sibling_map[2] =
- (uint8_t)((cu_sibling_map_mask >> 16) & 0xFF);
- pcache->sibling_map[3] =
- (uint8_t)((cu_sibling_map_mask >> 24) & 0xFF);
- return 0;
- }
- return 1;
-}
-
-/* Helper function. See kfd_fill_gpu_cache_info for parameter description */
-static int fill_in_l2_l3_pcache(struct crat_subtype_cache *pcache,
- struct kfd_gpu_cache_info *pcache_info,
- struct kfd_cu_info *cu_info,
- int mem_available,
- int cache_type, unsigned int cu_processor_id)
-{
- unsigned int cu_sibling_map_mask;
- int first_active_cu;
- int i, j, k;
-
- /* First check if enough memory is available */
- if (sizeof(struct crat_subtype_cache) > mem_available)
- return -ENOMEM;
-
- cu_sibling_map_mask = cu_info->cu_bitmap[0][0];
- cu_sibling_map_mask &=
- ((1 << pcache_info[cache_type].num_cu_shared) - 1);
- first_active_cu = ffs(cu_sibling_map_mask);
-
- /* CU could be inactive. In case of shared cache find the first active
- * CU. and incase of non-shared cache check if the CU is inactive. If
- * inactive active skip it
- */
- if (first_active_cu) {
- memset(pcache, 0, sizeof(struct crat_subtype_cache));
- pcache->type = CRAT_SUBTYPE_CACHE_AFFINITY;
- pcache->length = sizeof(struct crat_subtype_cache);
- pcache->flags = pcache_info[cache_type].flags;
- pcache->processor_id_low = cu_processor_id
- + (first_active_cu - 1);
- pcache->cache_level = pcache_info[cache_type].cache_level;
- pcache->cache_size = pcache_info[cache_type].cache_size;
-
- /* Sibling map is w.r.t processor_id_low, so shift out
- * inactive CU
- */
- cu_sibling_map_mask =
- cu_sibling_map_mask >> (first_active_cu - 1);
- k = 0;
- for (i = 0; i < cu_info->num_shader_engines; i++) {
- for (j = 0; j < cu_info->num_shader_arrays_per_engine;
- j++) {
- pcache->sibling_map[k] =
- (uint8_t)(cu_sibling_map_mask & 0xFF);
- pcache->sibling_map[k+1] =
- (uint8_t)((cu_sibling_map_mask >> 8) & 0xFF);
- pcache->sibling_map[k+2] =
- (uint8_t)((cu_sibling_map_mask >> 16) & 0xFF);
- pcache->sibling_map[k+3] =
- (uint8_t)((cu_sibling_map_mask >> 24) & 0xFF);
- k += 4;
- cu_sibling_map_mask =
- cu_info->cu_bitmap[i % 4][j + i / 4];
- cu_sibling_map_mask &= (
- (1 << pcache_info[cache_type].num_cu_shared)
- - 1);
- }
- }
- return 0;
- }
- return 1;
-}
-
-#define KFD_MAX_CACHE_TYPES 6
static int kfd_fill_gpu_cache_info_from_gfx_config(struct kfd_dev *kdev,
struct kfd_gpu_cache_info *pcache_info)
@@ -1483,228 +1405,135 @@ static int kfd_fill_gpu_cache_info_from_gfx_config(struct kfd_dev *kdev,
return i;
}
-/* kfd_fill_gpu_cache_info - Fill GPU cache info using kfd_gpu_cache_info
- * tables
- *
- * @kdev - [IN] GPU device
- * @gpu_processor_id - [IN] GPU processor ID to which these caches
- * associate
- * @available_size - [IN] Amount of memory available in pcache
- * @cu_info - [IN] Compute Unit info obtained from KGD
- * @pcache - [OUT] memory into which cache data is to be filled in.
- * @size_filled - [OUT] amount of data used up in pcache.
- * @num_of_entries - [OUT] number of caches added
- */
-static int kfd_fill_gpu_cache_info(struct kfd_dev *kdev,
- int gpu_processor_id,
- int available_size,
- struct kfd_cu_info *cu_info,
- struct crat_subtype_cache *pcache,
- int *size_filled,
- int *num_of_entries)
+int kfd_get_gpu_cache_info(struct kfd_dev *kdev, struct kfd_gpu_cache_info **pcache_info)
{
- struct kfd_gpu_cache_info *pcache_info;
- struct kfd_gpu_cache_info cache_info[KFD_MAX_CACHE_TYPES];
int num_of_cache_types = 0;
- int i, j, k;
- int ct = 0;
- int mem_available = available_size;
- unsigned int cu_processor_id;
- int ret;
- unsigned int num_cu_shared;
switch (kdev->adev->asic_type) {
case CHIP_KAVERI:
- pcache_info = kaveri_cache_info;
+ *pcache_info = kaveri_cache_info;
num_of_cache_types = ARRAY_SIZE(kaveri_cache_info);
break;
case CHIP_HAWAII:
- pcache_info = hawaii_cache_info;
+ *pcache_info = hawaii_cache_info;
num_of_cache_types = ARRAY_SIZE(hawaii_cache_info);
break;
case CHIP_CARRIZO:
- pcache_info = carrizo_cache_info;
+ *pcache_info = carrizo_cache_info;
num_of_cache_types = ARRAY_SIZE(carrizo_cache_info);
break;
case CHIP_TONGA:
- pcache_info = tonga_cache_info;
+ *pcache_info = tonga_cache_info;
num_of_cache_types = ARRAY_SIZE(tonga_cache_info);
break;
case CHIP_FIJI:
- pcache_info = fiji_cache_info;
+ *pcache_info = fiji_cache_info;
num_of_cache_types = ARRAY_SIZE(fiji_cache_info);
break;
case CHIP_POLARIS10:
- pcache_info = polaris10_cache_info;
+ *pcache_info = polaris10_cache_info;
num_of_cache_types = ARRAY_SIZE(polaris10_cache_info);
break;
case CHIP_POLARIS11:
- pcache_info = polaris11_cache_info;
+ *pcache_info = polaris11_cache_info;
num_of_cache_types = ARRAY_SIZE(polaris11_cache_info);
break;
case CHIP_POLARIS12:
- pcache_info = polaris12_cache_info;
+ *pcache_info = polaris12_cache_info;
num_of_cache_types = ARRAY_SIZE(polaris12_cache_info);
break;
case CHIP_VEGAM:
- pcache_info = vegam_cache_info;
+ *pcache_info = vegam_cache_info;
num_of_cache_types = ARRAY_SIZE(vegam_cache_info);
break;
default:
switch (KFD_GC_VERSION(kdev)) {
case IP_VERSION(9, 0, 1):
- pcache_info = vega10_cache_info;
+ *pcache_info = vega10_cache_info;
num_of_cache_types = ARRAY_SIZE(vega10_cache_info);
break;
case IP_VERSION(9, 2, 1):
- pcache_info = vega12_cache_info;
+ *pcache_info = vega12_cache_info;
num_of_cache_types = ARRAY_SIZE(vega12_cache_info);
break;
case IP_VERSION(9, 4, 0):
case IP_VERSION(9, 4, 1):
- pcache_info = vega20_cache_info;
+ *pcache_info = vega20_cache_info;
num_of_cache_types = ARRAY_SIZE(vega20_cache_info);
break;
case IP_VERSION(9, 4, 2):
- pcache_info = aldebaran_cache_info;
+ case IP_VERSION(9, 4, 3):
+ *pcache_info = aldebaran_cache_info;
num_of_cache_types = ARRAY_SIZE(aldebaran_cache_info);
break;
case IP_VERSION(9, 1, 0):
case IP_VERSION(9, 2, 2):
- pcache_info = raven_cache_info;
+ *pcache_info = raven_cache_info;
num_of_cache_types = ARRAY_SIZE(raven_cache_info);
break;
case IP_VERSION(9, 3, 0):
- pcache_info = renoir_cache_info;
+ *pcache_info = renoir_cache_info;
num_of_cache_types = ARRAY_SIZE(renoir_cache_info);
break;
case IP_VERSION(10, 1, 10):
case IP_VERSION(10, 1, 2):
case IP_VERSION(10, 1, 3):
case IP_VERSION(10, 1, 4):
- pcache_info = navi10_cache_info;
+ *pcache_info = navi10_cache_info;
num_of_cache_types = ARRAY_SIZE(navi10_cache_info);
break;
case IP_VERSION(10, 1, 1):
- pcache_info = navi14_cache_info;
+ *pcache_info = navi14_cache_info;
num_of_cache_types = ARRAY_SIZE(navi14_cache_info);
break;
case IP_VERSION(10, 3, 0):
- pcache_info = sienna_cichlid_cache_info;
+ *pcache_info = sienna_cichlid_cache_info;
num_of_cache_types = ARRAY_SIZE(sienna_cichlid_cache_info);
break;
case IP_VERSION(10, 3, 2):
- pcache_info = navy_flounder_cache_info;
+ *pcache_info = navy_flounder_cache_info;
num_of_cache_types = ARRAY_SIZE(navy_flounder_cache_info);
break;
case IP_VERSION(10, 3, 4):
- pcache_info = dimgrey_cavefish_cache_info;
+ *pcache_info = dimgrey_cavefish_cache_info;
num_of_cache_types = ARRAY_SIZE(dimgrey_cavefish_cache_info);
break;
case IP_VERSION(10, 3, 1):
- pcache_info = vangogh_cache_info;
+ *pcache_info = vangogh_cache_info;
num_of_cache_types = ARRAY_SIZE(vangogh_cache_info);
break;
case IP_VERSION(10, 3, 5):
- pcache_info = beige_goby_cache_info;
+ *pcache_info = beige_goby_cache_info;
num_of_cache_types = ARRAY_SIZE(beige_goby_cache_info);
break;
case IP_VERSION(10, 3, 3):
- pcache_info = yellow_carp_cache_info;
+ *pcache_info = yellow_carp_cache_info;
num_of_cache_types = ARRAY_SIZE(yellow_carp_cache_info);
break;
case IP_VERSION(10, 3, 6):
- pcache_info = gc_10_3_6_cache_info;
+ *pcache_info = gc_10_3_6_cache_info;
num_of_cache_types = ARRAY_SIZE(gc_10_3_6_cache_info);
break;
case IP_VERSION(10, 3, 7):
- pcache_info = gfx1037_cache_info;
+ *pcache_info = gfx1037_cache_info;
num_of_cache_types = ARRAY_SIZE(gfx1037_cache_info);
break;
case IP_VERSION(11, 0, 0):
case IP_VERSION(11, 0, 1):
case IP_VERSION(11, 0, 2):
case IP_VERSION(11, 0, 3):
- pcache_info = cache_info;
+ case IP_VERSION(11, 0, 4):
num_of_cache_types =
- kfd_fill_gpu_cache_info_from_gfx_config(kdev, pcache_info);
+ kfd_fill_gpu_cache_info_from_gfx_config(kdev, *pcache_info);
break;
default:
- return -EINVAL;
- }
- }
-
- *size_filled = 0;
- *num_of_entries = 0;
-
- /* For each type of cache listed in the kfd_gpu_cache_info table,
- * go through all available Compute Units.
- * The [i,j,k] loop will
- * if kfd_gpu_cache_info.num_cu_shared = 1
- * will parse through all available CU
- * If (kfd_gpu_cache_info.num_cu_shared != 1)
- * then it will consider only one CU from
- * the shared unit
- */
-
- for (ct = 0; ct < num_of_cache_types; ct++) {
- cu_processor_id = gpu_processor_id;
- if (pcache_info[ct].cache_level == 1) {
- for (i = 0; i < cu_info->num_shader_engines; i++) {
- for (j = 0; j < cu_info->num_shader_arrays_per_engine; j++) {
- for (k = 0; k < cu_info->num_cu_per_sh;
- k += pcache_info[ct].num_cu_shared) {
- ret = fill_in_l1_pcache(pcache,
- pcache_info,
- cu_info,
- mem_available,
- cu_info->cu_bitmap[i % 4][j + i / 4],
- ct,
- cu_processor_id,
- k);
-
- if (ret < 0)
+ *pcache_info = dummy_cache_info;
+ num_of_cache_types = ARRAY_SIZE(dummy_cache_info);
+ pr_warn("dummy cache info is used temporarily and real cache info need update later.\n");
break;
-
- if (!ret) {
- pcache++;
- (*num_of_entries)++;
- mem_available -= sizeof(*pcache);
- (*size_filled) += sizeof(*pcache);
- }
-
- /* Move to next CU block */
- num_cu_shared = ((k + pcache_info[ct].num_cu_shared) <=
- cu_info->num_cu_per_sh) ?
- pcache_info[ct].num_cu_shared :
- (cu_info->num_cu_per_sh - k);
- cu_processor_id += num_cu_shared;
}
- }
- }
- } else {
- ret = fill_in_l2_l3_pcache(pcache,
- pcache_info,
- cu_info,
- mem_available,
- ct,
- cu_processor_id);
-
- if (ret < 0)
- break;
-
- if (!ret) {
- pcache++;
- (*num_of_entries)++;
- mem_available -= sizeof(*pcache);
- (*size_filled) += sizeof(*pcache);
- }
- }
}
-
- pr_debug("Added [%d] GPU cache entries\n", *num_of_entries);
-
- return 0;
+ return num_of_cache_types;
}
static bool kfd_ignore_crat(void)
@@ -2063,8 +1892,8 @@ static void kfd_find_numa_node_in_srat(struct kfd_dev *kdev)
struct acpi_table_header *table_header = NULL;
struct acpi_subtable_header *sub_header = NULL;
unsigned long table_end, subtable_len;
- u32 pci_id = pci_domain_nr(kdev->pdev->bus) << 16 |
- pci_dev_id(kdev->pdev);
+ u32 pci_id = pci_domain_nr(kdev->adev->pdev->bus) << 16 |
+ pci_dev_id(kdev->adev->pdev);
u32 bdf;
acpi_status status;
struct acpi_srat_cpu_affinity *cpu;
@@ -2139,7 +1968,7 @@ static void kfd_find_numa_node_in_srat(struct kfd_dev *kdev)
numa_node = 0;
if (numa_node != NUMA_NO_NODE)
- set_dev_node(&kdev->pdev->dev, numa_node);
+ set_dev_node(&kdev->adev->pdev->dev, numa_node);
}
#endif
@@ -2200,14 +2029,14 @@ static int kfd_fill_gpu_direct_io_link_to_cpu(int *avail_size,
sub_type_hdr->proximity_domain_from = proximity_domain;
#ifdef CONFIG_ACPI_NUMA
- if (kdev->pdev->dev.numa_node == NUMA_NO_NODE)
+ if (kdev->adev->pdev->dev.numa_node == NUMA_NO_NODE)
kfd_find_numa_node_in_srat(kdev);
#endif
#ifdef CONFIG_NUMA
- if (kdev->pdev->dev.numa_node == NUMA_NO_NODE)
+ if (kdev->adev->pdev->dev.numa_node == NUMA_NO_NODE)
sub_type_hdr->proximity_domain_to = 0;
else
- sub_type_hdr->proximity_domain_to = kdev->pdev->dev.numa_node;
+ sub_type_hdr->proximity_domain_to = kdev->adev->pdev->dev.numa_node;
#else
sub_type_hdr->proximity_domain_to = 0;
#endif
@@ -2263,8 +2092,6 @@ static int kfd_create_vcrat_image_gpu(void *pcrat_image,
struct kfd_cu_info cu_info;
int avail_size = *size;
uint32_t total_num_of_cu;
- int num_of_cache_entries = 0;
- int cache_mem_filled = 0;
uint32_t nid = 0;
int ret = 0;
@@ -2365,31 +2192,12 @@ static int kfd_create_vcrat_image_gpu(void *pcrat_image,
crat_table->length += sizeof(struct crat_subtype_memory);
crat_table->total_entries++;
- /* TODO: Fill in cache information. This information is NOT readily
- * available in KGD
- */
- sub_type_hdr = (typeof(sub_type_hdr))((char *)sub_type_hdr +
- sub_type_hdr->length);
- ret = kfd_fill_gpu_cache_info(kdev, cu->processor_id_low,
- avail_size,
- &cu_info,
- (struct crat_subtype_cache *)sub_type_hdr,
- &cache_mem_filled,
- &num_of_cache_entries);
-
- if (ret < 0)
- return ret;
-
- crat_table->length += cache_mem_filled;
- crat_table->total_entries += num_of_cache_entries;
- avail_size -= cache_mem_filled;
-
/* Fill in Subtype: IO_LINKS
* Only direct links are added here which is Link from GPU to
* its NUMA node. Indirect links are added by userspace.
*/
sub_type_hdr = (typeof(sub_type_hdr))((char *)sub_type_hdr +
- cache_mem_filled);
+ sub_type_hdr->length);
ret = kfd_fill_gpu_direct_io_link_to_cpu(&avail_size, kdev,
(struct crat_subtype_iolink *)sub_type_hdr, proximity_domain);
diff --git a/drivers/gpu/drm/amd/amdkfd/kfd_crat.h b/drivers/gpu/drm/amd/amdkfd/kfd_crat.h
index 482ba84a728d..8d1e8ba58dee 100644
--- a/drivers/gpu/drm/amd/amdkfd/kfd_crat.h
+++ b/drivers/gpu/drm/amd/amdkfd/kfd_crat.h
@@ -29,11 +29,10 @@
#pragma pack(1)
/*
- * 4CC signature values for the CRAT and CDIT ACPI tables
+ * 4CC signature value for the CRAT ACPI table
*/
#define CRAT_SIGNATURE "CRAT"
-#define CDIT_SIGNATURE "CDIT"
/*
* Component Resource Association Table (CRAT)
@@ -292,31 +291,22 @@ struct crat_subtype_generic {
uint32_t flags;
};
-/*
- * Component Locality Distance Information Table (CDIT)
- */
-#define CDIT_OEMID_LENGTH 6
-#define CDIT_OEMTABLEID_LENGTH 8
-
-struct cdit_header {
- uint32_t signature;
- uint32_t length;
- uint8_t revision;
- uint8_t checksum;
- uint8_t oem_id[CDIT_OEMID_LENGTH];
- uint8_t oem_table_id[CDIT_OEMTABLEID_LENGTH];
- uint32_t oem_revision;
- uint32_t creator_id;
- uint32_t creator_revision;
- uint32_t total_entries;
- uint16_t num_domains;
- uint8_t entry[1];
-};
-
#pragma pack()
struct kfd_dev;
+/* Static table to describe GPU Cache information */
+struct kfd_gpu_cache_info {
+ uint32_t cache_size;
+ uint32_t cache_level;
+ uint32_t flags;
+ /* Indicates how many Compute Units share this cache
+ * within a SA. Value = 1 indicates the cache is not shared
+ */
+ uint32_t num_cu_shared;
+};
+int kfd_get_gpu_cache_info(struct kfd_dev *kdev, struct kfd_gpu_cache_info **pcache_info);
+
int kfd_create_crat_image_acpi(void **crat_image, size_t *size);
void kfd_destroy_crat_image(void *crat_image);
int kfd_parse_crat_table(void *crat_image, struct list_head *device_list,
diff --git a/drivers/gpu/drm/amd/amdkfd/kfd_device.c b/drivers/gpu/drm/amd/amdkfd/kfd_device.c
index 65a1d4f9004b..00f528eb9812 100644
--- a/drivers/gpu/drm/amd/amdkfd/kfd_device.c
+++ b/drivers/gpu/drm/amd/amdkfd/kfd_device.c
@@ -59,6 +59,7 @@ static int kfd_gtt_sa_init(struct kfd_dev *kfd, unsigned int buf_size,
unsigned int chunk_size);
static void kfd_gtt_sa_fini(struct kfd_dev *kfd);
+static int kfd_resume_iommu(struct kfd_dev *kfd);
static int kfd_resume(struct kfd_dev *kfd);
static void kfd_device_info_set_sdma_info(struct kfd_dev *kfd)
@@ -153,6 +154,7 @@ static void kfd_device_info_set_event_interrupt_class(struct kfd_dev *kfd)
case IP_VERSION(11, 0, 1):
case IP_VERSION(11, 0, 2):
case IP_VERSION(11, 0, 3):
+ case IP_VERSION(11, 0, 4):
kfd->device_info.event_interrupt_class = &event_interrupt_class_v11;
break;
default:
@@ -202,6 +204,14 @@ static void kfd_device_info_init(struct kfd_dev *kfd,
/* Navi1x+ */
if (gc_version >= IP_VERSION(10, 1, 1))
kfd->device_info.needs_pci_atomics = true;
+ } else if (gc_version < IP_VERSION(12, 0, 0)) {
+ /*
+ * PCIe atomics support acknowledgment in GFX11 RS64 CPFW requires
+ * MEC version >= 509. Prior RS64 CPFW versions (and all F32) require
+ * PCIe atomics support.
+ */
+ kfd->device_info.needs_pci_atomics = true;
+ kfd->device_info.no_atomic_fw_version = kfd->adev->gfx.rs64_enable ? 509 : 0;
}
} else {
kfd->device_info.doorbell_size = 4;
@@ -227,7 +237,6 @@ struct kfd_dev *kgd2kfd_probe(struct amdgpu_device *adev, bool vf)
{
struct kfd_dev *kfd = NULL;
const struct kfd2kgd_calls *f2g = NULL;
- struct pci_dev *pdev = adev->pdev;
uint32_t gfx_target_version = 0;
switch (adev->asic_type) {
@@ -262,23 +271,12 @@ struct kfd_dev *kgd2kfd_probe(struct amdgpu_device *adev, bool vf)
f2g = &gfx_v8_kfd2kgd;
break;
case CHIP_FIJI:
- gfx_target_version = 80003;
- f2g = &gfx_v8_kfd2kgd;
- break;
case CHIP_POLARIS10:
gfx_target_version = 80003;
f2g = &gfx_v8_kfd2kgd;
break;
case CHIP_POLARIS11:
- gfx_target_version = 80003;
- if (!vf)
- f2g = &gfx_v8_kfd2kgd;
- break;
case CHIP_POLARIS12:
- gfx_target_version = 80003;
- if (!vf)
- f2g = &gfx_v8_kfd2kgd;
- break;
case CHIP_VEGAM:
gfx_target_version = 80003;
if (!vf)
@@ -328,6 +326,10 @@ struct kfd_dev *kgd2kfd_probe(struct amdgpu_device *adev, bool vf)
gfx_target_version = 90010;
f2g = &aldebaran_kfd2kgd;
break;
+ case IP_VERSION(9, 4, 3):
+ gfx_target_version = 90400;
+ f2g = &aldebaran_kfd2kgd;
+ break;
/* Navi10 */
case IP_VERSION(10, 1, 10):
gfx_target_version = 100100;
@@ -395,6 +397,7 @@ struct kfd_dev *kgd2kfd_probe(struct amdgpu_device *adev, bool vf)
f2g = &gfx_v11_kfd2kgd;
break;
case IP_VERSION(11, 0, 1):
+ case IP_VERSION(11, 0, 4):
gfx_target_version = 110003;
f2g = &gfx_v11_kfd2kgd;
break;
@@ -429,7 +432,6 @@ struct kfd_dev *kgd2kfd_probe(struct amdgpu_device *adev, bool vf)
kfd->adev = adev;
kfd_device_info_init(kfd, vf, gfx_target_version);
- kfd->pdev = pdev;
kfd->init_complete = false;
kfd->kfd2kgd = f2g;
atomic_set(&kfd->compute_profile, 0);
@@ -460,6 +462,10 @@ static void kfd_cwsr_init(struct kfd_dev *kfd)
BUILD_BUG_ON(sizeof(cwsr_trap_aldebaran_hex) > PAGE_SIZE);
kfd->cwsr_isa = cwsr_trap_aldebaran_hex;
kfd->cwsr_isa_size = sizeof(cwsr_trap_aldebaran_hex);
+ } else if (KFD_GC_VERSION(kfd) == IP_VERSION(9, 4, 3)) {
+ BUILD_BUG_ON(sizeof(cwsr_trap_gfx9_4_3_hex) > PAGE_SIZE);
+ kfd->cwsr_isa = cwsr_trap_gfx9_4_3_hex;
+ kfd->cwsr_isa_size = sizeof(cwsr_trap_gfx9_4_3_hex);
} else if (KFD_GC_VERSION(kfd) < IP_VERSION(10, 1, 1)) {
BUILD_BUG_ON(sizeof(cwsr_trap_gfx9_hex) > PAGE_SIZE);
kfd->cwsr_isa = cwsr_trap_gfx9_hex;
@@ -497,7 +503,10 @@ static int kfd_gws_init(struct kfd_dev *kfd)
(KFD_GC_VERSION(kfd) == IP_VERSION(9, 4, 1)
&& kfd->mec2_fw_version >= 0x30) ||
(KFD_GC_VERSION(kfd) == IP_VERSION(9, 4, 2)
- && kfd->mec2_fw_version >= 0x28))))
+ && kfd->mec2_fw_version >= 0x28) ||
+ (KFD_GC_VERSION(kfd) >= IP_VERSION(10, 3, 0)
+ && KFD_GC_VERSION(kfd) < IP_VERSION(11, 0, 0)
+ && kfd->mec2_fw_version >= 0x6b))))
ret = amdgpu_amdkfd_alloc_gws(kfd->adev,
kfd->adev->gds.gws_size, &kfd->gws);
@@ -511,12 +520,10 @@ static void kfd_smi_init(struct kfd_dev *dev)
}
bool kgd2kfd_device_init(struct kfd_dev *kfd,
- struct drm_device *ddev,
const struct kgd2kfd_shared_resources *gpu_resources)
{
unsigned int size, map_process_packet_size;
- kfd->ddev = ddev;
kfd->mec_fw_version = amdgpu_amdkfd_get_fw_version(kfd->adev,
KGD_ENGINE_MEC1);
kfd->mec2_fw_version = amdgpu_amdkfd_get_fw_version(kfd->adev,
@@ -541,7 +548,7 @@ bool kgd2kfd_device_init(struct kfd_dev *kfd,
kfd->mec_fw_version < kfd->device_info.no_atomic_fw_version)) {
dev_info(kfd_device,
"skipped device %x:%x, PCI rejects atomics %d<%d\n",
- kfd->pdev->vendor, kfd->pdev->device,
+ kfd->adev->pdev->vendor, kfd->adev->pdev->device,
kfd->mec_fw_version,
kfd->device_info.no_atomic_fw_version);
return false;
@@ -634,7 +641,7 @@ bool kgd2kfd_device_init(struct kfd_dev *kfd,
svm_migrate_init(kfd->adev);
- if (kgd2kfd_resume_iommu(kfd))
+ if (kfd_resume_iommu(kfd))
goto device_iommu_error;
if (kfd_resume(kfd))
@@ -650,8 +657,8 @@ bool kgd2kfd_device_init(struct kfd_dev *kfd,
kfd_smi_init(kfd);
kfd->init_complete = true;
- dev_info(kfd_device, "added device %x:%x\n", kfd->pdev->vendor,
- kfd->pdev->device);
+ dev_info(kfd_device, "added device %x:%x\n", kfd->adev->pdev->vendor,
+ kfd->adev->pdev->device);
pr_debug("Starting kfd with the following scheduling policy %d\n",
kfd->dqm->sched_policy);
@@ -676,7 +683,7 @@ alloc_gtt_mem_failure:
amdgpu_amdkfd_free_gws(kfd->adev, kfd->gws);
dev_err(kfd_device,
"device %x:%x NOT added due to errors\n",
- kfd->pdev->vendor, kfd->pdev->device);
+ kfd->adev->pdev->vendor, kfd->adev->pdev->device);
out:
return kfd->init_complete;
}
@@ -783,13 +790,21 @@ int kgd2kfd_resume(struct kfd_dev *kfd, bool run_pm)
int kgd2kfd_resume_iommu(struct kfd_dev *kfd)
{
+ if (!kfd->init_complete)
+ return 0;
+
+ return kfd_resume_iommu(kfd);
+}
+
+static int kfd_resume_iommu(struct kfd_dev *kfd)
+{
int err = 0;
err = kfd_iommu_resume(kfd);
if (err)
dev_err(kfd_device,
"Failed to resume IOMMU for device %x:%x\n",
- kfd->pdev->vendor, kfd->pdev->device);
+ kfd->adev->pdev->vendor, kfd->adev->pdev->device);
return err;
}
@@ -801,7 +816,7 @@ static int kfd_resume(struct kfd_dev *kfd)
if (err)
dev_err(kfd_device,
"Error starting queue manager for device %x:%x\n",
- kfd->pdev->vendor, kfd->pdev->device);
+ kfd->adev->pdev->vendor, kfd->adev->pdev->device);
return err;
}
diff --git a/drivers/gpu/drm/amd/amdkfd/kfd_device_queue_manager.c b/drivers/gpu/drm/amd/amdkfd/kfd_device_queue_manager.c
index ecb4c3abc629..7a95698d83f7 100644
--- a/drivers/gpu/drm/amd/amdkfd/kfd_device_queue_manager.c
+++ b/drivers/gpu/drm/amd/amdkfd/kfd_device_queue_manager.c
@@ -200,7 +200,7 @@ static int add_queue_mes(struct device_queue_manager *dqm, struct queue *q,
queue_input.wptr_addr = (uint64_t)q->properties.write_ptr;
if (q->wptr_bo) {
- wptr_addr_off = (uint64_t)q->properties.write_ptr - (uint64_t)q->wptr_bo->kfd_bo->va;
+ wptr_addr_off = (uint64_t)q->properties.write_ptr & (PAGE_SIZE - 1);
queue_input.wptr_mc_addr = ((uint64_t)q->wptr_bo->tbo.resource->start << PAGE_SHIFT) + wptr_addr_off;
}
@@ -2373,7 +2373,7 @@ struct device_queue_manager *device_queue_manager_init(struct kfd_dev *dev)
if (init_mqd_managers(dqm))
goto out_free;
- if (allocate_hiq_sdma_mqd(dqm)) {
+ if (!dev->shared_resources.enable_mes && allocate_hiq_sdma_mqd(dqm)) {
pr_err("Failed to allocate hiq sdma mqd trunk buffer\n");
goto out_free;
}
@@ -2397,7 +2397,8 @@ static void deallocate_hiq_sdma_mqd(struct kfd_dev *dev,
void device_queue_manager_uninit(struct device_queue_manager *dqm)
{
dqm->ops.uninitialize(dqm);
- deallocate_hiq_sdma_mqd(dqm->dev, &dqm->hiq_sdma_mqd);
+ if (!dqm->dev->shared_resources.enable_mes)
+ deallocate_hiq_sdma_mqd(dqm->dev, &dqm->hiq_sdma_mqd);
kfree(dqm);
}
diff --git a/drivers/gpu/drm/amd/amdkfd/kfd_device_queue_manager_v9.c b/drivers/gpu/drm/amd/amdkfd/kfd_device_queue_manager_v9.c
index d119070956fb..8b2dd2670ab7 100644
--- a/drivers/gpu/drm/amd/amdkfd/kfd_device_queue_manager_v9.c
+++ b/drivers/gpu/drm/amd/amdkfd/kfd_device_queue_manager_v9.c
@@ -59,30 +59,27 @@ static int update_qpd_v9(struct device_queue_manager *dqm,
/* check if sh_mem_config register already configured */
if (qpd->sh_mem_config == 0) {
- qpd->sh_mem_config =
- SH_MEM_ALIGNMENT_MODE_UNALIGNED <<
+ qpd->sh_mem_config = SH_MEM_ALIGNMENT_MODE_UNALIGNED <<
SH_MEM_CONFIG__ALIGNMENT_MODE__SHIFT;
- if (KFD_GC_VERSION(dqm->dev) == IP_VERSION(9, 4, 2)) {
- /* Aldebaran can safely support different XNACK modes
- * per process
- */
- if (!pdd->process->xnack_enabled)
- qpd->sh_mem_config |=
- 1 << SH_MEM_CONFIG__RETRY_DISABLE__SHIFT;
- } else if (dqm->dev->noretry &&
- !dqm->dev->use_iommu_v2) {
- qpd->sh_mem_config |=
- 1 << SH_MEM_CONFIG__RETRY_DISABLE__SHIFT;
- }
+ if (dqm->dev->noretry && !dqm->dev->use_iommu_v2)
+ qpd->sh_mem_config |= 1 << SH_MEM_CONFIG__RETRY_DISABLE__SHIFT;
qpd->sh_mem_ape1_limit = 0;
qpd->sh_mem_ape1_base = 0;
}
+ if (KFD_SUPPORT_XNACK_PER_PROCESS(dqm->dev)) {
+ if (!pdd->process->xnack_enabled)
+ qpd->sh_mem_config |= 1 << SH_MEM_CONFIG__RETRY_DISABLE__SHIFT;
+ else
+ qpd->sh_mem_config &= ~(1 << SH_MEM_CONFIG__RETRY_DISABLE__SHIFT);
+ }
+
qpd->sh_mem_bases = compute_sh_mem_bases_64bit(pdd);
- pr_debug("sh_mem_bases 0x%X\n", qpd->sh_mem_bases);
+ pr_debug("sh_mem_bases 0x%X sh_mem_config 0x%X\n", qpd->sh_mem_bases,
+ qpd->sh_mem_config);
return 0;
}
diff --git a/drivers/gpu/drm/amd/amdkfd/kfd_doorbell.c b/drivers/gpu/drm/amd/amdkfd/kfd_doorbell.c
index cd4e61bf0493..38c9e1ca6691 100644
--- a/drivers/gpu/drm/amd/amdkfd/kfd_doorbell.c
+++ b/drivers/gpu/drm/amd/amdkfd/kfd_doorbell.c
@@ -159,8 +159,8 @@ int kfd_doorbell_mmap(struct kfd_dev *dev, struct kfd_process *process,
address = kfd_get_process_doorbells(pdd);
if (!address)
return -ENOMEM;
- vma->vm_flags |= VM_IO | VM_DONTCOPY | VM_DONTEXPAND | VM_NORESERVE |
- VM_DONTDUMP | VM_PFNMAP;
+ vm_flags_set(vma, VM_IO | VM_DONTCOPY | VM_DONTEXPAND | VM_NORESERVE |
+ VM_DONTDUMP | VM_PFNMAP);
vma->vm_page_prot = pgprot_noncached(vma->vm_page_prot);
@@ -280,7 +280,7 @@ phys_addr_t kfd_get_process_doorbells(struct kfd_process_device *pdd)
if (!pdd->doorbell_index) {
int r = kfd_alloc_process_doorbells(pdd->dev,
&pdd->doorbell_index);
- if (r)
+ if (r < 0)
return 0;
}
diff --git a/drivers/gpu/drm/amd/amdkfd/kfd_events.c b/drivers/gpu/drm/amd/amdkfd/kfd_events.c
index 729d26d648af..c894cf8f7c50 100644
--- a/drivers/gpu/drm/amd/amdkfd/kfd_events.c
+++ b/drivers/gpu/drm/amd/amdkfd/kfd_events.c
@@ -778,16 +778,13 @@ static struct kfd_event_waiter *alloc_event_waiters(uint32_t num_events)
struct kfd_event_waiter *event_waiters;
uint32_t i;
- event_waiters = kmalloc_array(num_events,
- sizeof(struct kfd_event_waiter),
- GFP_KERNEL);
+ event_waiters = kcalloc(num_events, sizeof(struct kfd_event_waiter),
+ GFP_KERNEL);
if (!event_waiters)
return NULL;
- for (i = 0; (event_waiters) && (i < num_events) ; i++) {
+ for (i = 0; i < num_events; i++)
init_wait(&event_waiters[i].wait);
- event_waiters[i].activated = false;
- }
return event_waiters;
}
@@ -1052,8 +1049,8 @@ int kfd_event_mmap(struct kfd_process *p, struct vm_area_struct *vma)
pfn = __pa(page->kernel_address);
pfn >>= PAGE_SHIFT;
- vma->vm_flags |= VM_IO | VM_DONTCOPY | VM_DONTEXPAND | VM_NORESERVE
- | VM_DONTDUMP | VM_PFNMAP;
+ vm_flags_set(vma, VM_IO | VM_DONTCOPY | VM_DONTEXPAND | VM_NORESERVE
+ | VM_DONTDUMP | VM_PFNMAP);
pr_debug("Mapping signal page\n");
pr_debug(" start user address == 0x%08lx\n", vma->vm_start);
diff --git a/drivers/gpu/drm/amd/amdkfd/kfd_iommu.c b/drivers/gpu/drm/amd/amdkfd/kfd_iommu.c
index fbd0afe4da42..ec1bf611624e 100644
--- a/drivers/gpu/drm/amd/amdkfd/kfd_iommu.c
+++ b/drivers/gpu/drm/amd/amdkfd/kfd_iommu.c
@@ -49,7 +49,7 @@ int kfd_iommu_check_device(struct kfd_dev *kfd)
return -ENODEV;
iommu_info.flags = 0;
- err = amd_iommu_device_info(kfd->pdev, &iommu_info);
+ err = amd_iommu_device_info(kfd->adev->pdev, &iommu_info);
if (err)
return err;
@@ -71,7 +71,7 @@ int kfd_iommu_device_init(struct kfd_dev *kfd)
return 0;
iommu_info.flags = 0;
- err = amd_iommu_device_info(kfd->pdev, &iommu_info);
+ err = amd_iommu_device_info(kfd->adev->pdev, &iommu_info);
if (err < 0) {
dev_err(kfd_device,
"error getting iommu info. is the iommu enabled?\n");
@@ -121,7 +121,7 @@ int kfd_iommu_bind_process_to_device(struct kfd_process_device *pdd)
return -EINVAL;
}
- err = amd_iommu_bind_pasid(dev->pdev, p->pasid, p->lead_thread);
+ err = amd_iommu_bind_pasid(dev->adev->pdev, p->pasid, p->lead_thread);
if (!err)
pdd->bound = PDD_BOUND;
@@ -139,7 +139,8 @@ void kfd_iommu_unbind_process(struct kfd_process *p)
for (i = 0; i < p->n_pdds; i++)
if (p->pdds[i]->bound == PDD_BOUND)
- amd_iommu_unbind_pasid(p->pdds[i]->dev->pdev, p->pasid);
+ amd_iommu_unbind_pasid(p->pdds[i]->dev->adev->pdev,
+ p->pasid);
}
/* Callback for process shutdown invoked by the IOMMU driver */
@@ -222,7 +223,7 @@ static int kfd_bind_processes_to_device(struct kfd_dev *kfd)
continue;
}
- err = amd_iommu_bind_pasid(kfd->pdev, p->pasid,
+ err = amd_iommu_bind_pasid(kfd->adev->pdev, p->pasid,
p->lead_thread);
if (err < 0) {
pr_err("Unexpected pasid 0x%x binding failure\n",
@@ -282,9 +283,9 @@ void kfd_iommu_suspend(struct kfd_dev *kfd)
kfd_unbind_processes_from_device(kfd);
- amd_iommu_set_invalidate_ctx_cb(kfd->pdev, NULL);
- amd_iommu_set_invalid_ppr_cb(kfd->pdev, NULL);
- amd_iommu_free_device(kfd->pdev);
+ amd_iommu_set_invalidate_ctx_cb(kfd->adev->pdev, NULL);
+ amd_iommu_set_invalid_ppr_cb(kfd->adev->pdev, NULL);
+ amd_iommu_free_device(kfd->adev->pdev);
}
/** kfd_iommu_resume - Restore IOMMU after resume
@@ -302,20 +303,20 @@ int kfd_iommu_resume(struct kfd_dev *kfd)
pasid_limit = kfd_get_pasid_limit();
- err = amd_iommu_init_device(kfd->pdev, pasid_limit);
+ err = amd_iommu_init_device(kfd->adev->pdev, pasid_limit);
if (err)
return -ENXIO;
- amd_iommu_set_invalidate_ctx_cb(kfd->pdev,
+ amd_iommu_set_invalidate_ctx_cb(kfd->adev->pdev,
iommu_pasid_shutdown_callback);
- amd_iommu_set_invalid_ppr_cb(kfd->pdev,
+ amd_iommu_set_invalid_ppr_cb(kfd->adev->pdev,
iommu_invalid_ppr_cb);
err = kfd_bind_processes_to_device(kfd);
if (err) {
- amd_iommu_set_invalidate_ctx_cb(kfd->pdev, NULL);
- amd_iommu_set_invalid_ppr_cb(kfd->pdev, NULL);
- amd_iommu_free_device(kfd->pdev);
+ amd_iommu_set_invalidate_ctx_cb(kfd->adev->pdev, NULL);
+ amd_iommu_set_invalid_ppr_cb(kfd->adev->pdev, NULL);
+ amd_iommu_free_device(kfd->adev->pdev);
return err;
}
diff --git a/drivers/gpu/drm/amd/amdkfd/kfd_migrate.c b/drivers/gpu/drm/amd/amdkfd/kfd_migrate.c
index 22b077ac9a19..54933903bcb8 100644
--- a/drivers/gpu/drm/amd/amdkfd/kfd_migrate.c
+++ b/drivers/gpu/drm/amd/amdkfd/kfd_migrate.c
@@ -28,7 +28,6 @@
#include "amdgpu_sync.h"
#include "amdgpu_object.h"
#include "amdgpu_vm.h"
-#include "amdgpu_mn.h"
#include "amdgpu_res_cursor.h"
#include "kfd_priv.h"
#include "kfd_svm.h"
@@ -65,8 +64,11 @@ svm_migrate_gart_map(struct amdgpu_ring *ring, uint64_t npages,
num_dw = ALIGN(adev->mman.buffer_funcs->copy_num_dw, 8);
num_bytes = npages * 8;
- r = amdgpu_job_alloc_with_ib(adev, num_dw * 4 + num_bytes,
- AMDGPU_IB_POOL_DELAYED, &job);
+ r = amdgpu_job_alloc_with_ib(adev, &adev->mman.entity,
+ AMDGPU_FENCE_OWNER_UNDEFINED,
+ num_dw * 4 + num_bytes,
+ AMDGPU_IB_POOL_DELAYED,
+ &job);
if (r)
return r;
@@ -89,18 +91,10 @@ svm_migrate_gart_map(struct amdgpu_ring *ring, uint64_t npages,
cpu_addr = &job->ibs[0].ptr[num_dw];
amdgpu_gart_map(adev, 0, npages, addr, pte_flags, cpu_addr);
- r = amdgpu_job_submit(job, &adev->mman.entity,
- AMDGPU_FENCE_OWNER_UNDEFINED, &fence);
- if (r)
- goto error_free;
-
+ fence = amdgpu_job_submit(job);
dma_fence_put(fence);
return r;
-
-error_free:
- amdgpu_job_free(job);
- return r;
}
/**
@@ -295,7 +289,7 @@ static unsigned long svm_migrate_unsuccessful_pages(struct migrate_vma *migrate)
static int
svm_migrate_copy_to_vram(struct amdgpu_device *adev, struct svm_range *prange,
struct migrate_vma *migrate, struct dma_fence **mfence,
- dma_addr_t *scratch)
+ dma_addr_t *scratch, uint64_t ttm_res_offset)
{
uint64_t npages = migrate->npages;
struct device *dev = adev->dev;
@@ -305,19 +299,13 @@ svm_migrate_copy_to_vram(struct amdgpu_device *adev, struct svm_range *prange,
uint64_t i, j;
int r;
- pr_debug("svms 0x%p [0x%lx 0x%lx]\n", prange->svms, prange->start,
- prange->last);
+ pr_debug("svms 0x%p [0x%lx 0x%lx 0x%llx]\n", prange->svms, prange->start,
+ prange->last, ttm_res_offset);
src = scratch;
dst = (uint64_t *)(scratch + npages);
- r = svm_range_vram_node_new(adev, prange, true);
- if (r) {
- dev_dbg(adev->dev, "fail %d to alloc vram\n", r);
- goto out;
- }
-
- amdgpu_res_first(prange->ttm_res, prange->offset << PAGE_SHIFT,
+ amdgpu_res_first(prange->ttm_res, ttm_res_offset,
npages << PAGE_SHIFT, &cursor);
for (i = j = 0; i < npages; i++) {
struct page *spage;
@@ -397,14 +385,14 @@ out_free_vram_pages:
migrate->dst[i + 3] = 0;
}
#endif
-out:
+
return r;
}
static long
svm_migrate_vma_to_vram(struct amdgpu_device *adev, struct svm_range *prange,
struct vm_area_struct *vma, uint64_t start,
- uint64_t end, uint32_t trigger)
+ uint64_t end, uint32_t trigger, uint64_t ttm_res_offset)
{
struct kfd_process *p = container_of(prange->svms, struct kfd_process, svms);
uint64_t npages = (end - start) >> PAGE_SHIFT;
@@ -457,7 +445,7 @@ svm_migrate_vma_to_vram(struct amdgpu_device *adev, struct svm_range *prange,
else
pr_debug("0x%lx pages migrated\n", cpages);
- r = svm_migrate_copy_to_vram(adev, prange, &migrate, &mfence, scratch);
+ r = svm_migrate_copy_to_vram(adev, prange, &migrate, &mfence, scratch, ttm_res_offset);
migrate_vma_pages(&migrate);
pr_debug("successful/cpages/npages 0x%lx/0x%lx/0x%lx\n",
@@ -505,6 +493,7 @@ svm_migrate_ram_to_vram(struct svm_range *prange, uint32_t best_loc,
unsigned long addr, start, end;
struct vm_area_struct *vma;
struct amdgpu_device *adev;
+ uint64_t ttm_res_offset;
unsigned long cpages = 0;
long r = 0;
@@ -526,26 +515,36 @@ svm_migrate_ram_to_vram(struct svm_range *prange, uint32_t best_loc,
start = prange->start << PAGE_SHIFT;
end = (prange->last + 1) << PAGE_SHIFT;
+ r = svm_range_vram_node_new(adev, prange, true);
+ if (r) {
+ dev_dbg(adev->dev, "fail %ld to alloc vram\n", r);
+ return r;
+ }
+ ttm_res_offset = prange->offset << PAGE_SHIFT;
+
for (addr = start; addr < end;) {
unsigned long next;
- vma = find_vma(mm, addr);
- if (!vma || addr < vma->vm_start)
+ vma = vma_lookup(mm, addr);
+ if (!vma)
break;
next = min(vma->vm_end, end);
- r = svm_migrate_vma_to_vram(adev, prange, vma, addr, next, trigger);
+ r = svm_migrate_vma_to_vram(adev, prange, vma, addr, next, trigger, ttm_res_offset);
if (r < 0) {
pr_debug("failed %ld to migrate\n", r);
break;
} else {
cpages += r;
}
+ ttm_res_offset += next - addr;
addr = next;
}
if (cpages)
prange->actual_loc = best_loc;
+ else
+ svm_range_vram_node_free(prange);
return r < 0 ? r : 0;
}
@@ -798,8 +797,8 @@ int svm_migrate_vram_to_ram(struct svm_range *prange, struct mm_struct *mm,
for (addr = start; addr < end;) {
unsigned long next;
- vma = find_vma(mm, addr);
- if (!vma || addr < vma->vm_start) {
+ vma = vma_lookup(mm, addr);
+ if (!vma) {
pr_debug("failed to find vma for prange %p\n", prange);
r = -EFAULT;
break;
@@ -1033,8 +1032,7 @@ int svm_migrate_init(struct amdgpu_device *adev)
/* Disable SVM support capability */
pgmap->type = 0;
if (pgmap->type == MEMORY_DEVICE_PRIVATE)
- devm_release_mem_region(adev->dev, res->start,
- res->end - res->start + 1);
+ devm_release_mem_region(adev->dev, res->start, resource_size(res));
return PTR_ERR(r);
}
diff --git a/drivers/gpu/drm/amd/amdkfd/kfd_module.c b/drivers/gpu/drm/amd/amdkfd/kfd_module.c
index 09b966dc3768..aee2212e52f6 100644
--- a/drivers/gpu/drm/amd/amdkfd/kfd_module.c
+++ b/drivers/gpu/drm/amd/amdkfd/kfd_module.c
@@ -77,6 +77,7 @@ err_ioctl:
static void kfd_exit(void)
{
+ kfd_cleanup_processes();
kfd_debugfs_fini();
kfd_process_destroy_wq();
kfd_procfs_shutdown();
diff --git a/drivers/gpu/drm/amd/amdkfd/kfd_mqd_manager_v11.c b/drivers/gpu/drm/amd/amdkfd/kfd_mqd_manager_v11.c
index 4f6390f3236e..5aa75f72caa1 100644
--- a/drivers/gpu/drm/amd/amdkfd/kfd_mqd_manager_v11.c
+++ b/drivers/gpu/drm/amd/amdkfd/kfd_mqd_manager_v11.c
@@ -143,6 +143,13 @@ static void init_mqd(struct mqd_manager *mm, void **mqd,
1 << CP_HQD_QUANTUM__QUANTUM_SCALE__SHIFT |
1 << CP_HQD_QUANTUM__QUANTUM_DURATION__SHIFT;
+ /*
+ * GFX11 RS64 CPFW version >= 509 supports PCIe atomics support
+ * acknowledgment.
+ */
+ if (amdgpu_amdkfd_have_atomics_support(mm->dev->adev))
+ m->cp_hqd_hq_status0 |= 1 << 29;
+
if (q->format == KFD_QUEUE_FORMAT_AQL) {
m->cp_hqd_aql_control =
1 << CP_HQD_AQL_CONTROL__CONTROL0__SHIFT;
@@ -308,11 +315,16 @@ static void init_mqd_sdma(struct mqd_manager *mm, void **mqd,
struct queue_properties *q)
{
struct v11_sdma_mqd *m;
+ int size;
m = (struct v11_sdma_mqd *) mqd_mem_obj->cpu_ptr;
- memset(m, 0, sizeof(struct v11_sdma_mqd));
+ if (mm->dev->shared_resources.enable_mes)
+ size = PAGE_SIZE;
+ else
+ size = sizeof(struct v11_sdma_mqd);
+ memset(m, 0, size);
*mqd = m;
if (gart_addr)
*gart_addr = mqd_mem_obj->gpu_addr;
@@ -345,6 +357,10 @@ static void update_mqd_sdma(struct mqd_manager *mm, void *mqd,
m->sdmax_rlcx_doorbell_offset =
q->doorbell_off << SDMA0_QUEUE0_DOORBELL_OFFSET__OFFSET__SHIFT;
+ m->sdmax_rlcx_sched_cntl = (amdgpu_sdma_phase_quantum
+ << SDMA0_QUEUE0_SCHEDULE_CNTL__CONTEXT_QUANTUM__SHIFT)
+ & SDMA0_QUEUE0_SCHEDULE_CNTL__CONTEXT_QUANTUM_MASK;
+
m->sdma_engine_id = q->sdma_engine_id;
m->sdma_queue_id = q->sdma_queue_id;
m->sdmax_rlcx_dummy_reg = SDMA_RLC_DUMMY_DEFAULT;
@@ -443,6 +459,14 @@ struct mqd_manager *mqd_manager_init_v11(enum KFD_MQD_TYPE type,
#if defined(CONFIG_DEBUG_FS)
mqd->debugfs_show_mqd = debugfs_show_mqd_sdma;
#endif
+ /*
+ * To allocate SDMA MQDs by generic functions
+ * when MES is enabled.
+ */
+ if (dev->shared_resources.enable_mes) {
+ mqd->allocate_mqd = allocate_mqd;
+ mqd->free_mqd = kfd_free_mqd_cp;
+ }
pr_debug("%s@%i\n", __func__, __LINE__);
break;
default:
diff --git a/drivers/gpu/drm/amd/amdkfd/kfd_mqd_manager_v9.c b/drivers/gpu/drm/amd/amdkfd/kfd_mqd_manager_v9.c
index 0778e587a2d6..fdbfd725841f 100644
--- a/drivers/gpu/drm/amd/amdkfd/kfd_mqd_manager_v9.c
+++ b/drivers/gpu/drm/amd/amdkfd/kfd_mqd_manager_v9.c
@@ -135,6 +135,7 @@ static void init_mqd(struct mqd_manager *mm, void **mqd,
{
uint64_t addr;
struct v9_mqd *m;
+ struct amdgpu_device *adev = (struct amdgpu_device *)mm->dev->adev;
m = (struct v9_mqd *) mqd_mem_obj->cpu_ptr;
addr = mqd_mem_obj->gpu_addr;
@@ -167,6 +168,20 @@ static void init_mqd(struct mqd_manager *mm, void **mqd,
if (q->format == KFD_QUEUE_FORMAT_AQL) {
m->cp_hqd_aql_control =
1 << CP_HQD_AQL_CONTROL__CONTROL0__SHIFT;
+ if (adev->ip_versions[GC_HWIP][0] == IP_VERSION(9, 4, 3)) {
+ /* On GC 9.4.3, DW 41 is re-purposed as
+ * compute_tg_chunk_size.
+ * TODO: review this setting when active CUs in the
+ * partition play a role
+ */
+ m->compute_static_thread_mgmt_se6 = 1;
+ }
+ } else {
+ /* PM4 queue */
+ if (adev->ip_versions[GC_HWIP][0] == IP_VERSION(9, 4, 3)) {
+ m->compute_static_thread_mgmt_se6 = 0;
+ /* TODO: program pm4_target_xcc */
+ }
}
if (q->tba_addr) {
@@ -209,6 +224,7 @@ static void update_mqd(struct mqd_manager *mm, void *mqd,
struct queue_properties *q,
struct mqd_update_info *minfo)
{
+ struct amdgpu_device *adev = (struct amdgpu_device *)mm->dev->adev;
struct v9_mqd *m;
m = get_mqd(mqd);
@@ -254,10 +270,13 @@ static void update_mqd(struct mqd_manager *mm, void *mqd,
m->cp_hqd_vmid = q->vmid;
if (q->format == KFD_QUEUE_FORMAT_AQL) {
- m->cp_hqd_pq_control |= CP_HQD_PQ_CONTROL__NO_UPDATE_RPTR_MASK |
+ m->cp_hqd_pq_control |=
2 << CP_HQD_PQ_CONTROL__SLOT_BASED_WPTR__SHIFT |
1 << CP_HQD_PQ_CONTROL__QUEUE_FULL_EN__SHIFT |
1 << CP_HQD_PQ_CONTROL__WPP_CLAMP_EN__SHIFT;
+ if (adev->ip_versions[GC_HWIP][0] != IP_VERSION(9, 4, 3))
+ m->cp_hqd_pq_control |=
+ CP_HQD_PQ_CONTROL__NO_UPDATE_RPTR_MASK;
m->cp_hqd_pq_doorbell_control |= 1 <<
CP_HQD_PQ_DOORBELL_CONTROL__DOORBELL_BIF_DROP__SHIFT;
}
diff --git a/drivers/gpu/drm/amd/amdkfd/kfd_packet_manager.c b/drivers/gpu/drm/amd/amdkfd/kfd_packet_manager.c
index ed02b6d8bf63..f612325241aa 100644
--- a/drivers/gpu/drm/amd/amdkfd/kfd_packet_manager.c
+++ b/drivers/gpu/drm/amd/amdkfd/kfd_packet_manager.c
@@ -238,7 +238,8 @@ int pm_init(struct packet_manager *pm, struct device_queue_manager *dqm)
pm->pmf = &kfd_vi_pm_funcs;
break;
default:
- if (KFD_GC_VERSION(dqm->dev) == IP_VERSION(9, 4, 2))
+ if (KFD_GC_VERSION(dqm->dev) == IP_VERSION(9, 4, 2) ||
+ KFD_GC_VERSION(dqm->dev) == IP_VERSION(9, 4, 3))
pm->pmf = &kfd_aldebaran_pm_funcs;
else if (KFD_GC_VERSION(dqm->dev) >= IP_VERSION(9, 0, 1))
pm->pmf = &kfd_v9_pm_funcs;
diff --git a/drivers/gpu/drm/amd/amdkfd/kfd_pm4_headers_diq.h b/drivers/gpu/drm/amd/amdkfd/kfd_pm4_headers_diq.h
deleted file mode 100644
index f9cd28690151..000000000000
--- a/drivers/gpu/drm/amd/amdkfd/kfd_pm4_headers_diq.h
+++ /dev/null
@@ -1,291 +0,0 @@
-/* SPDX-License-Identifier: GPL-2.0 OR MIT */
-/*
- * Copyright 2014-2022 Advanced Micro Devices, Inc.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice shall be included in
- * all copies or substantial portions of the Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
- * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
- * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
- * OTHER DEALINGS IN THE SOFTWARE.
- *
- */
-
-#ifndef KFD_PM4_HEADERS_DIQ_H_
-#define KFD_PM4_HEADERS_DIQ_H_
-
-/*--------------------_INDIRECT_BUFFER-------------------- */
-
-#ifndef _PM4__INDIRECT_BUFFER_DEFINED
-#define _PM4__INDIRECT_BUFFER_DEFINED
-enum _INDIRECT_BUFFER_cache_policy_enum {
- cache_policy___indirect_buffer__lru = 0,
- cache_policy___indirect_buffer__stream = 1,
- cache_policy___indirect_buffer__bypass = 2
-};
-
-enum {
- IT_INDIRECT_BUFFER_PASID = 0x5C
-};
-
-struct pm4__indirect_buffer_pasid {
- union {
- union PM4_MES_TYPE_3_HEADER header; /* header */
- unsigned int ordinal1;
- };
-
- union {
- struct {
- unsigned int reserved1:2;
- unsigned int ib_base_lo:30;
- } bitfields2;
- unsigned int ordinal2;
- };
-
- union {
- struct {
- unsigned int ib_base_hi:16;
- unsigned int reserved2:16;
- } bitfields3;
- unsigned int ordinal3;
- };
-
- union {
- unsigned int control;
- unsigned int ordinal4;
- };
-
- union {
- struct {
- unsigned int pasid:10;
- unsigned int reserved4:22;
- } bitfields5;
- unsigned int ordinal5;
- };
-
-};
-
-#endif
-
-/*--------------------_RELEASE_MEM-------------------- */
-
-#ifndef _PM4__RELEASE_MEM_DEFINED
-#define _PM4__RELEASE_MEM_DEFINED
-enum _RELEASE_MEM_event_index_enum {
- event_index___release_mem__end_of_pipe = 5,
- event_index___release_mem__shader_done = 6
-};
-
-enum _RELEASE_MEM_cache_policy_enum {
- cache_policy___release_mem__lru = 0,
- cache_policy___release_mem__stream = 1,
- cache_policy___release_mem__bypass = 2
-};
-
-enum _RELEASE_MEM_dst_sel_enum {
- dst_sel___release_mem__memory_controller = 0,
- dst_sel___release_mem__tc_l2 = 1,
- dst_sel___release_mem__queue_write_pointer_register = 2,
- dst_sel___release_mem__queue_write_pointer_poll_mask_bit = 3
-};
-
-enum _RELEASE_MEM_int_sel_enum {
- int_sel___release_mem__none = 0,
- int_sel___release_mem__send_interrupt_only = 1,
- int_sel___release_mem__send_interrupt_after_write_confirm = 2,
- int_sel___release_mem__send_data_after_write_confirm = 3
-};
-
-enum _RELEASE_MEM_data_sel_enum {
- data_sel___release_mem__none = 0,
- data_sel___release_mem__send_32_bit_low = 1,
- data_sel___release_mem__send_64_bit_data = 2,
- data_sel___release_mem__send_gpu_clock_counter = 3,
- data_sel___release_mem__send_cp_perfcounter_hi_lo = 4,
- data_sel___release_mem__store_gds_data_to_memory = 5
-};
-
-struct pm4__release_mem {
- union {
- union PM4_MES_TYPE_3_HEADER header; /*header */
- unsigned int ordinal1;
- };
-
- union {
- struct {
- unsigned int event_type:6;
- unsigned int reserved1:2;
- enum _RELEASE_MEM_event_index_enum event_index:4;
- unsigned int tcl1_vol_action_ena:1;
- unsigned int tc_vol_action_ena:1;
- unsigned int reserved2:1;
- unsigned int tc_wb_action_ena:1;
- unsigned int tcl1_action_ena:1;
- unsigned int tc_action_ena:1;
- unsigned int reserved3:6;
- unsigned int atc:1;
- enum _RELEASE_MEM_cache_policy_enum cache_policy:2;
- unsigned int reserved4:5;
- } bitfields2;
- unsigned int ordinal2;
- };
-
- union {
- struct {
- unsigned int reserved5:16;
- enum _RELEASE_MEM_dst_sel_enum dst_sel:2;
- unsigned int reserved6:6;
- enum _RELEASE_MEM_int_sel_enum int_sel:3;
- unsigned int reserved7:2;
- enum _RELEASE_MEM_data_sel_enum data_sel:3;
- } bitfields3;
- unsigned int ordinal3;
- };
-
- union {
- struct {
- unsigned int reserved8:2;
- unsigned int address_lo_32b:30;
- } bitfields4;
- struct {
- unsigned int reserved9:3;
- unsigned int address_lo_64b:29;
- } bitfields5;
- unsigned int ordinal4;
- };
-
- unsigned int address_hi;
-
- unsigned int data_lo;
-
- unsigned int data_hi;
-
-};
-#endif
-
-
-/*--------------------_SET_CONFIG_REG-------------------- */
-
-#ifndef _PM4__SET_CONFIG_REG_DEFINED
-#define _PM4__SET_CONFIG_REG_DEFINED
-
-struct pm4__set_config_reg {
- union {
- union PM4_MES_TYPE_3_HEADER header; /*header */
- unsigned int ordinal1;
- };
-
- union {
- struct {
- unsigned int reg_offset:16;
- unsigned int reserved1:7;
- unsigned int vmid_shift:5;
- unsigned int insert_vmid:1;
- unsigned int reserved2:3;
- } bitfields2;
- unsigned int ordinal2;
- };
-
- unsigned int reg_data[1]; /*1..N of these fields */
-
-};
-#endif
-
-/*--------------------_WAIT_REG_MEM-------------------- */
-
-#ifndef _PM4__WAIT_REG_MEM_DEFINED
-#define _PM4__WAIT_REG_MEM_DEFINED
-enum _WAIT_REG_MEM_function_enum {
- function___wait_reg_mem__always_pass = 0,
- function___wait_reg_mem__less_than_ref_value = 1,
- function___wait_reg_mem__less_than_equal_to_the_ref_value = 2,
- function___wait_reg_mem__equal_to_the_reference_value = 3,
- function___wait_reg_mem__not_equal_reference_value = 4,
- function___wait_reg_mem__greater_than_or_equal_reference_value = 5,
- function___wait_reg_mem__greater_than_reference_value = 6,
- function___wait_reg_mem__reserved = 7
-};
-
-enum _WAIT_REG_MEM_mem_space_enum {
- mem_space___wait_reg_mem__register_space = 0,
- mem_space___wait_reg_mem__memory_space = 1
-};
-
-enum _WAIT_REG_MEM_operation_enum {
- operation___wait_reg_mem__wait_reg_mem = 0,
- operation___wait_reg_mem__wr_wait_wr_reg = 1
-};
-
-struct pm4__wait_reg_mem {
- union {
- union PM4_MES_TYPE_3_HEADER header; /*header */
- unsigned int ordinal1;
- };
-
- union {
- struct {
- enum _WAIT_REG_MEM_function_enum function:3;
- unsigned int reserved1:1;
- enum _WAIT_REG_MEM_mem_space_enum mem_space:2;
- enum _WAIT_REG_MEM_operation_enum operation:2;
- unsigned int reserved2:24;
- } bitfields2;
- unsigned int ordinal2;
- };
-
- union {
- struct {
- unsigned int reserved3:2;
- unsigned int memory_poll_addr_lo:30;
- } bitfields3;
- struct {
- unsigned int register_poll_addr:16;
- unsigned int reserved4:16;
- } bitfields4;
- struct {
- unsigned int register_write_addr:16;
- unsigned int reserved5:16;
- } bitfields5;
- unsigned int ordinal3;
- };
-
- union {
- struct {
- unsigned int poll_address_hi:16;
- unsigned int reserved6:16;
- } bitfields6;
- struct {
- unsigned int register_write_addr:16;
- unsigned int reserved7:16;
- } bitfields7;
- unsigned int ordinal4;
- };
-
- unsigned int reference;
-
- unsigned int mask;
-
- union {
- struct {
- unsigned int poll_interval:16;
- unsigned int reserved8:16;
- } bitfields8;
- unsigned int ordinal7;
- };
-
-};
-#endif
-
-
-#endif /* KFD_PM4_HEADERS_DIQ_H_ */
diff --git a/drivers/gpu/drm/amd/amdkfd/kfd_priv.h b/drivers/gpu/drm/amd/amdkfd/kfd_priv.h
index bf610e3b683b..94a438956868 100644
--- a/drivers/gpu/drm/amd/amdkfd/kfd_priv.h
+++ b/drivers/gpu/drm/amd/amdkfd/kfd_priv.h
@@ -206,6 +206,9 @@ enum cache_policy {
#define KFD_GC_VERSION(dev) ((dev)->adev->ip_versions[GC_HWIP][0])
#define KFD_IS_SOC15(dev) ((KFD_GC_VERSION(dev)) >= (IP_VERSION(9, 0, 1)))
+#define KFD_SUPPORT_XNACK_PER_PROCESS(dev)\
+ ((KFD_GC_VERSION(dev) == IP_VERSION(9, 4, 2)) || \
+ (KFD_GC_VERSION(dev) == IP_VERSION(9, 4, 3)))
struct kfd_event_interrupt_class {
bool (*interrupt_isr)(struct kfd_dev *dev,
@@ -254,8 +257,6 @@ struct kfd_dev {
struct amdgpu_device *adev;
struct kfd_device_info device_info;
- struct pci_dev *pdev;
- struct drm_device *ddev;
unsigned int id; /* topology stub index */
@@ -928,6 +929,7 @@ bool kfd_dev_is_large_bar(struct kfd_dev *dev);
int kfd_process_create_wq(void);
void kfd_process_destroy_wq(void);
+void kfd_cleanup_processes(void);
struct kfd_process *kfd_create_process(struct file *filep);
struct kfd_process *kfd_get_process(const struct task_struct *task);
struct kfd_process *kfd_lookup_process_by_pasid(u32 pasid);
@@ -1365,7 +1367,7 @@ void kfd_dec_compute_active(struct kfd_dev *dev);
static inline int kfd_devcgroup_check_permission(struct kfd_dev *kfd)
{
#if defined(CONFIG_CGROUP_DEVICE) || defined(CONFIG_CGROUP_BPF)
- struct drm_device *ddev = kfd->ddev;
+ struct drm_device *ddev = adev_to_drm(kfd->adev);
return devcgroup_check_permission(DEVCG_DEV_CHAR, DRM_MAJOR,
ddev->render->index,
diff --git a/drivers/gpu/drm/amd/amdkfd/kfd_process.c b/drivers/gpu/drm/amd/amdkfd/kfd_process.c
index 951b63677248..07a9eaf9b7d8 100644
--- a/drivers/gpu/drm/amd/amdkfd/kfd_process.c
+++ b/drivers/gpu/drm/amd/amdkfd/kfd_process.c
@@ -344,7 +344,7 @@ static const struct sysfs_ops kfd_procfs_ops = {
.show = kfd_procfs_show,
};
-static struct kobj_type procfs_type = {
+static const struct kobj_type procfs_type = {
.release = kfd_procfs_kobj_release,
.sysfs_ops = &kfd_procfs_ops,
};
@@ -469,7 +469,7 @@ static const struct sysfs_ops procfs_queue_ops = {
.show = kfd_procfs_queue_show,
};
-static struct kobj_type procfs_queue_type = {
+static const struct kobj_type procfs_queue_type = {
.sysfs_ops = &procfs_queue_ops,
.default_groups = procfs_queue_groups,
};
@@ -478,7 +478,7 @@ static const struct sysfs_ops procfs_stats_ops = {
.show = kfd_procfs_stats_show,
};
-static struct kobj_type procfs_stats_type = {
+static const struct kobj_type procfs_stats_type = {
.sysfs_ops = &procfs_stats_ops,
.release = kfd_procfs_kobj_release,
};
@@ -487,7 +487,7 @@ static const struct sysfs_ops sysfs_counters_ops = {
.show = kfd_sysfs_counters_show,
};
-static struct kobj_type sysfs_counters_type = {
+static const struct kobj_type sysfs_counters_type = {
.sysfs_ops = &sysfs_counters_ops,
.release = kfd_procfs_kobj_release,
};
@@ -689,13 +689,13 @@ void kfd_process_destroy_wq(void)
}
static void kfd_process_free_gpuvm(struct kgd_mem *mem,
- struct kfd_process_device *pdd, void *kptr)
+ struct kfd_process_device *pdd, void **kptr)
{
struct kfd_dev *dev = pdd->dev;
- if (kptr) {
+ if (kptr && *kptr) {
amdgpu_amdkfd_gpuvm_unmap_gtt_bo_from_kernel(mem);
- kptr = NULL;
+ *kptr = NULL;
}
amdgpu_amdkfd_gpuvm_unmap_memory_from_gpu(dev->adev, mem, pdd->drm_priv);
@@ -795,7 +795,7 @@ static void kfd_process_device_destroy_ib_mem(struct kfd_process_device *pdd)
if (!qpd->ib_kaddr || !qpd->ib_base)
return;
- kfd_process_free_gpuvm(qpd->ib_mem, pdd, qpd->ib_kaddr);
+ kfd_process_free_gpuvm(qpd->ib_mem, pdd, &qpd->ib_kaddr);
}
struct kfd_process *kfd_create_process(struct file *filep)
@@ -1050,8 +1050,8 @@ static void kfd_process_destroy_pdds(struct kfd_process *p)
* for auto suspend
*/
if (pdd->runtime_inuse) {
- pm_runtime_mark_last_busy(pdd->dev->ddev->dev);
- pm_runtime_put_autosuspend(pdd->dev->ddev->dev);
+ pm_runtime_mark_last_busy(adev_to_drm(pdd->dev->adev)->dev);
+ pm_runtime_put_autosuspend(adev_to_drm(pdd->dev->adev)->dev);
pdd->runtime_inuse = false;
}
@@ -1167,6 +1167,17 @@ static void kfd_process_free_notifier(struct mmu_notifier *mn)
kfd_unref_process(container_of(mn, struct kfd_process, mmu_notifier));
}
+static void kfd_process_notifier_release_internal(struct kfd_process *p)
+{
+ cancel_delayed_work_sync(&p->eviction_work);
+ cancel_delayed_work_sync(&p->restore_work);
+
+ /* Indicate to other users that MM is no longer valid */
+ p->mm = NULL;
+
+ mmu_notifier_put(&p->mmu_notifier);
+}
+
static void kfd_process_notifier_release(struct mmu_notifier *mn,
struct mm_struct *mm)
{
@@ -1181,17 +1192,22 @@ static void kfd_process_notifier_release(struct mmu_notifier *mn,
return;
mutex_lock(&kfd_processes_mutex);
+ /*
+ * Do early return if table is empty.
+ *
+ * This could potentially happen if this function is called concurrently
+ * by mmu_notifier and by kfd_cleanup_pocesses.
+ *
+ */
+ if (hash_empty(kfd_processes_table)) {
+ mutex_unlock(&kfd_processes_mutex);
+ return;
+ }
hash_del_rcu(&p->kfd_processes);
mutex_unlock(&kfd_processes_mutex);
synchronize_srcu(&kfd_processes_srcu);
- cancel_delayed_work_sync(&p->eviction_work);
- cancel_delayed_work_sync(&p->restore_work);
-
- /* Indicate to other users that MM is no longer valid */
- p->mm = NULL;
-
- mmu_notifier_put(&p->mmu_notifier);
+ kfd_process_notifier_release_internal(p);
}
static const struct mmu_notifier_ops kfd_process_mmu_notifier_ops = {
@@ -1200,6 +1216,43 @@ static const struct mmu_notifier_ops kfd_process_mmu_notifier_ops = {
.free_notifier = kfd_process_free_notifier,
};
+/*
+ * This code handles the case when driver is being unloaded before all
+ * mm_struct are released. We need to safely free the kfd_process and
+ * avoid race conditions with mmu_notifier that might try to free them.
+ *
+ */
+void kfd_cleanup_processes(void)
+{
+ struct kfd_process *p;
+ struct hlist_node *p_temp;
+ unsigned int temp;
+ HLIST_HEAD(cleanup_list);
+
+ /*
+ * Move all remaining kfd_process from the process table to a
+ * temp list for processing. Once done, callback from mmu_notifier
+ * release will not see the kfd_process in the table and do early return,
+ * avoiding double free issues.
+ */
+ mutex_lock(&kfd_processes_mutex);
+ hash_for_each_safe(kfd_processes_table, temp, p_temp, p, kfd_processes) {
+ hash_del_rcu(&p->kfd_processes);
+ synchronize_srcu(&kfd_processes_srcu);
+ hlist_add_head(&p->kfd_processes, &cleanup_list);
+ }
+ mutex_unlock(&kfd_processes_mutex);
+
+ hlist_for_each_entry_safe(p, p_temp, &cleanup_list, kfd_processes)
+ kfd_process_notifier_release_internal(p);
+
+ /*
+ * Ensures that all outstanding free_notifier get called, triggering
+ * the release of the kfd_process struct.
+ */
+ mmu_notifier_synchronize();
+}
+
static int kfd_process_init_cwsr_apu(struct kfd_process *p, struct file *filep)
{
unsigned long offset;
@@ -1277,7 +1330,7 @@ static void kfd_process_device_destroy_cwsr_dgpu(struct kfd_process_device *pdd)
if (!dev->cwsr_enabled || !qpd->cwsr_kaddr || !qpd->cwsr_base)
return;
- kfd_process_free_gpuvm(qpd->cwsr_mem, pdd, qpd->cwsr_kaddr);
+ kfd_process_free_gpuvm(qpd->cwsr_mem, pdd, &qpd->cwsr_kaddr);
}
void kfd_process_set_trap_handler(struct qcm_process_device *qpd,
@@ -1330,7 +1383,7 @@ bool kfd_process_xnack_mode(struct kfd_process *p, bool supported)
* per-process XNACK mode selection. But let the dev->noretry
* setting still influence the default XNACK mode.
*/
- if (supported && KFD_GC_VERSION(dev) == IP_VERSION(9, 4, 2))
+ if (supported && KFD_SUPPORT_XNACK_PER_PROCESS(dev))
continue;
/* GFXv10 and later GPUs do not support shader preemption
@@ -1563,6 +1616,8 @@ err_free_pdd:
int kfd_process_device_init_vm(struct kfd_process_device *pdd,
struct file *drm_file)
{
+ struct amdgpu_fpriv *drv_priv;
+ struct amdgpu_vm *avm;
struct kfd_process *p;
struct kfd_dev *dev;
int ret;
@@ -1573,12 +1628,17 @@ int kfd_process_device_init_vm(struct kfd_process_device *pdd,
if (pdd->drm_priv)
return -EBUSY;
+ ret = amdgpu_file_to_fpriv(drm_file, &drv_priv);
+ if (ret)
+ return ret;
+ avm = &drv_priv->vm;
+
p = pdd->process;
dev = pdd->dev;
- ret = amdgpu_amdkfd_gpuvm_acquire_process_vm(
- dev->adev, drm_file, p->pasid,
- &p->kgd_process_info, &p->ef);
+ ret = amdgpu_amdkfd_gpuvm_acquire_process_vm(dev->adev, avm,
+ &p->kgd_process_info,
+ &p->ef);
if (ret) {
pr_err("Failed to create process VM object\n");
return ret;
@@ -1593,14 +1653,21 @@ int kfd_process_device_init_vm(struct kfd_process_device *pdd,
if (ret)
goto err_init_cwsr;
+ ret = amdgpu_amdkfd_gpuvm_set_vm_pasid(dev->adev, avm, p->pasid);
+ if (ret)
+ goto err_set_pasid;
+
pdd->drm_file = drm_file;
return 0;
+err_set_pasid:
+ kfd_process_device_destroy_cwsr_dgpu(pdd);
err_init_cwsr:
+ kfd_process_device_destroy_ib_mem(pdd);
err_reserve_ib_mem:
- kfd_process_device_free_bos(pdd);
pdd->drm_priv = NULL;
+ amdgpu_amdkfd_gpuvm_destroy_cb(dev->adev, avm);
return ret;
}
@@ -1633,9 +1700,9 @@ struct kfd_process_device *kfd_bind_process_to_device(struct kfd_dev *dev,
* pdd is destroyed.
*/
if (!pdd->runtime_inuse) {
- err = pm_runtime_get_sync(dev->ddev->dev);
+ err = pm_runtime_get_sync(adev_to_drm(dev->adev)->dev);
if (err < 0) {
- pm_runtime_put_autosuspend(dev->ddev->dev);
+ pm_runtime_put_autosuspend(adev_to_drm(dev->adev)->dev);
return ERR_PTR(err);
}
}
@@ -1655,8 +1722,8 @@ struct kfd_process_device *kfd_bind_process_to_device(struct kfd_dev *dev,
out:
/* balance runpm reference count and exit with error */
if (!pdd->runtime_inuse) {
- pm_runtime_mark_last_busy(dev->ddev->dev);
- pm_runtime_put_autosuspend(dev->ddev->dev);
+ pm_runtime_mark_last_busy(adev_to_drm(dev->adev)->dev);
+ pm_runtime_put_autosuspend(adev_to_drm(dev->adev)->dev);
}
return ERR_PTR(err);
@@ -1972,8 +2039,8 @@ int kfd_reserved_mem_mmap(struct kfd_dev *dev, struct kfd_process *process,
return -ENOMEM;
}
- vma->vm_flags |= VM_IO | VM_DONTCOPY | VM_DONTEXPAND
- | VM_NORESERVE | VM_DONTDUMP | VM_PFNMAP;
+ vm_flags_set(vma, VM_IO | VM_DONTCOPY | VM_DONTEXPAND
+ | VM_NORESERVE | VM_DONTDUMP | VM_PFNMAP);
/* Mapping pages to user process */
return remap_pfn_range(vma, vma->vm_start,
PFN_DOWN(__pa(qpd->cwsr_kaddr)),
diff --git a/drivers/gpu/drm/amd/amdkfd/kfd_process_queue_manager.c b/drivers/gpu/drm/amd/amdkfd/kfd_process_queue_manager.c
index 5137476ec18e..4236539d9f93 100644
--- a/drivers/gpu/drm/amd/amdkfd/kfd_process_queue_manager.c
+++ b/drivers/gpu/drm/amd/amdkfd/kfd_process_queue_manager.c
@@ -218,8 +218,8 @@ static int init_user_queue(struct process_queue_manager *pqm,
return 0;
cleanup:
- if (dev->shared_resources.enable_mes)
- uninit_queue(*q);
+ uninit_queue(*q);
+ *q = NULL;
return retval;
}
diff --git a/drivers/gpu/drm/amd/amdkfd/kfd_svm.c b/drivers/gpu/drm/amd/amdkfd/kfd_svm.c
index 64fdf63093a0..96a138a39515 100644
--- a/drivers/gpu/drm/amd/amdkfd/kfd_svm.c
+++ b/drivers/gpu/drm/amd/amdkfd/kfd_svm.c
@@ -23,10 +23,11 @@
#include <linux/types.h>
#include <linux/sched/task.h>
+#include <drm/ttm/ttm_tt.h>
#include "amdgpu_sync.h"
#include "amdgpu_object.h"
#include "amdgpu_vm.h"
-#include "amdgpu_mn.h"
+#include "amdgpu_hmm.h"
#include "amdgpu.h"
#include "amdgpu_xgmi.h"
#include "kfd_priv.h"
@@ -259,7 +260,7 @@ void svm_range_free_dma_mappings(struct svm_range *prange)
pr_debug("failed to find device idx %d\n", gpuidx);
continue;
}
- dev = &pdd->dev->pdev->dev;
+ dev = &pdd->dev->adev->pdev->dev;
svm_range_dma_unmap(dev, dma_addr, 0, prange->npages);
kvfree(dma_addr);
prange->dma_addr[gpuidx] = NULL;
@@ -570,6 +571,15 @@ svm_range_vram_node_new(struct amdgpu_device *adev, struct svm_range *prange,
goto reserve_bo_failed;
}
+ if (clear) {
+ r = amdgpu_bo_sync_wait(bo, AMDGPU_FENCE_OWNER_KFD, false);
+ if (r) {
+ pr_debug("failed %d to sync bo\n", r);
+ amdgpu_bo_unreserve(bo);
+ goto reserve_bo_failed;
+ }
+ }
+
r = dma_resv_reserve_fences(bo->tbo.base.resv, 1);
if (r) {
pr_debug("failed %d to reserve bo\n", r);
@@ -1586,8 +1596,8 @@ static int svm_range_validate_and_map(struct mm_struct *mm,
unsigned long npages;
bool readonly;
- vma = find_vma(mm, addr);
- if (!vma || addr < vma->vm_start) {
+ vma = vma_lookup(mm, addr);
+ if (!vma) {
r = -EFAULT;
goto unreserve_out;
}
@@ -1596,9 +1606,9 @@ static int svm_range_validate_and_map(struct mm_struct *mm,
next = min(vma->vm_end, end);
npages = (next - addr) >> PAGE_SHIFT;
WRITE_ONCE(p->svms.faulting_task, current);
- r = amdgpu_hmm_range_get_pages(&prange->notifier, mm, NULL,
- addr, npages, &hmm_range,
- readonly, true, owner);
+ r = amdgpu_hmm_range_get_pages(&prange->notifier, addr, npages,
+ readonly, owner, NULL,
+ &hmm_range);
WRITE_ONCE(p->svms.faulting_task, NULL);
if (r) {
pr_debug("failed %d to get svm range pages\n", r);
@@ -2162,7 +2172,15 @@ restart:
pr_debug("drain retry fault gpu %d svms %p\n", i, svms);
amdgpu_ih_wait_on_checkpoint_process_ts(pdd->dev->adev,
- &pdd->dev->adev->irq.ih1);
+ pdd->dev->adev->irq.retry_cam_enabled ?
+ &pdd->dev->adev->irq.ih :
+ &pdd->dev->adev->irq.ih1);
+
+ if (pdd->dev->adev->irq.retry_cam_enabled)
+ amdgpu_ih_wait_on_checkpoint_process_ts(pdd->dev->adev,
+ &pdd->dev->adev->irq.ih_soft);
+
+
pr_debug("drain retry fault gpu %d svms 0x%p done\n", i, svms);
}
if (atomic_cmpxchg(&svms->drain_pagefaults, drain, 0) != drain)
@@ -2542,8 +2560,8 @@ svm_range_get_range_boundaries(struct kfd_process *p, int64_t addr,
struct interval_tree_node *node;
unsigned long start_limit, end_limit;
- vma = find_vma(p->mm, addr << PAGE_SHIFT);
- if (!vma || (addr << PAGE_SHIFT) < vma->vm_start) {
+ vma = vma_lookup(p->mm, addr << PAGE_SHIFT);
+ if (!vma) {
pr_debug("VMA does not exist in address [0x%llx]\n", addr);
return -EFAULT;
}
@@ -2871,8 +2889,8 @@ retry_write_locked:
/* __do_munmap removed VMA, return success as we are handling stale
* retry fault.
*/
- vma = find_vma(mm, addr << PAGE_SHIFT);
- if (!vma || (addr << PAGE_SHIFT) < vma->vm_start) {
+ vma = vma_lookup(mm, addr << PAGE_SHIFT);
+ if (!vma) {
pr_debug("address 0x%llx VMA is removed\n", addr);
r = 0;
goto out_unlock_range;
@@ -3152,9 +3170,8 @@ svm_range_is_valid(struct kfd_process *p, uint64_t start, uint64_t size)
start <<= PAGE_SHIFT;
end = start + (size << PAGE_SHIFT);
do {
- vma = find_vma(p->mm, start);
- if (!vma || start < vma->vm_start ||
- (vma->vm_flags & device_vma))
+ vma = vma_lookup(p->mm, start);
+ if (!vma || (vma->vm_flags & device_vma))
return -EFAULT;
start = min(end, vma->vm_end);
} while (start < end);
diff --git a/drivers/gpu/drm/amd/amdkfd/kfd_topology.c b/drivers/gpu/drm/amd/amdkfd/kfd_topology.c
index 3f0a4a415907..8e4124dcb6e4 100644
--- a/drivers/gpu/drm/amd/amdkfd/kfd_topology.c
+++ b/drivers/gpu/drm/amd/amdkfd/kfd_topology.c
@@ -115,7 +115,7 @@ struct kfd_dev *kfd_device_by_pci_dev(const struct pci_dev *pdev)
down_read(&topology_lock);
list_for_each_entry(top_dev, &topology_device_list, list)
- if (top_dev->gpu && top_dev->gpu->pdev == pdev) {
+ if (top_dev->gpu && top_dev->gpu->adev->pdev == pdev) {
device = top_dev->gpu;
break;
}
@@ -278,7 +278,7 @@ static const struct sysfs_ops sysprops_ops = {
.show = sysprops_show,
};
-static struct kobj_type sysprops_type = {
+static const struct kobj_type sysprops_type = {
.release = kfd_topology_kobj_release,
.sysfs_ops = &sysprops_ops,
};
@@ -318,7 +318,7 @@ static const struct sysfs_ops iolink_ops = {
.show = iolink_show,
};
-static struct kobj_type iolink_type = {
+static const struct kobj_type iolink_type = {
.release = kfd_topology_kobj_release,
.sysfs_ops = &iolink_ops,
};
@@ -350,7 +350,7 @@ static const struct sysfs_ops mem_ops = {
.show = mem_show,
};
-static struct kobj_type mem_type = {
+static const struct kobj_type mem_type = {
.release = kfd_topology_kobj_release,
.sysfs_ops = &mem_ops,
};
@@ -364,7 +364,6 @@ static ssize_t kfd_cache_show(struct kobject *kobj, struct attribute *attr,
/* Making sure that the buffer is an empty string */
buffer[0] = 0;
-
cache = container_of(attr, struct kfd_cache_properties, attr);
if (cache->gpu && kfd_devcgroup_check_permission(cache->gpu))
return -EPERM;
@@ -379,12 +378,13 @@ static ssize_t kfd_cache_show(struct kobject *kobj, struct attribute *attr,
sysfs_show_32bit_prop(buffer, offs, "association", cache->cache_assoc);
sysfs_show_32bit_prop(buffer, offs, "latency", cache->cache_latency);
sysfs_show_32bit_prop(buffer, offs, "type", cache->cache_type);
+
offs += snprintf(buffer+offs, PAGE_SIZE-offs, "sibling_map ");
- for (i = 0; i < CRAT_SIBLINGMAP_SIZE; i++)
+ for (i = 0; i < cache->sibling_map_size; i++)
for (j = 0; j < sizeof(cache->sibling_map[0])*8; j++)
/* Check each bit */
offs += snprintf(buffer+offs, PAGE_SIZE-offs, "%d,",
- (cache->sibling_map[i] >> j) & 1);
+ (cache->sibling_map[i] >> j) & 1);
/* Replace the last "," with end of line */
buffer[offs-1] = '\n';
@@ -395,7 +395,7 @@ static const struct sysfs_ops cache_ops = {
.show = kfd_cache_show,
};
-static struct kobj_type cache_type = {
+static const struct kobj_type cache_type = {
.release = kfd_topology_kobj_release,
.sysfs_ops = &cache_ops,
};
@@ -566,7 +566,7 @@ static const struct sysfs_ops node_ops = {
.show = node_show,
};
-static struct kobj_type node_type = {
+static const struct kobj_type node_type = {
.release = kfd_topology_kobj_release,
.sysfs_ops = &node_ops,
};
@@ -801,7 +801,7 @@ static int kfd_build_sysfs_node_entry(struct kfd_topology_device *dev,
p2plink->attr.name = "properties";
p2plink->attr.mode = KFD_SYSFS_FILE_MODE;
- sysfs_attr_init(&iolink->attr);
+ sysfs_attr_init(&p2plink->attr);
ret = sysfs_create_file(p2plink->kobj, &p2plink->attr);
if (ret < 0)
return ret;
@@ -1169,13 +1169,12 @@ static uint32_t kfd_generate_gpu_id(struct kfd_dev *gpu)
local_mem_size = gpu->local_mem_info.local_mem_size_private +
gpu->local_mem_info.local_mem_size_public;
-
- buf[0] = gpu->pdev->devfn;
- buf[1] = gpu->pdev->subsystem_vendor |
- (gpu->pdev->subsystem_device << 16);
- buf[2] = pci_domain_nr(gpu->pdev->bus);
- buf[3] = gpu->pdev->device;
- buf[4] = gpu->pdev->bus->number;
+ buf[0] = gpu->adev->pdev->devfn;
+ buf[1] = gpu->adev->pdev->subsystem_vendor |
+ (gpu->adev->pdev->subsystem_device << 16);
+ buf[2] = pci_domain_nr(gpu->adev->pdev->bus);
+ buf[3] = gpu->adev->pdev->device;
+ buf[4] = gpu->adev->pdev->bus->number;
buf[5] = lower_32_bits(local_mem_size);
buf[6] = upper_32_bits(local_mem_size);
@@ -1198,7 +1197,6 @@ static struct kfd_topology_device *kfd_assign_gpu(struct kfd_dev *gpu)
struct kfd_iolink_properties *iolink;
struct kfd_iolink_properties *p2plink;
- down_write(&topology_lock);
list_for_each_entry(dev, &topology_device_list, list) {
/* Discrete GPUs need their own topology device list
* entries. Don't assign them to CPU/APU nodes.
@@ -1222,7 +1220,6 @@ static struct kfd_topology_device *kfd_assign_gpu(struct kfd_dev *gpu)
break;
}
}
- up_write(&topology_lock);
return out_dev;
}
@@ -1269,7 +1266,7 @@ static void kfd_set_iolink_no_atomics(struct kfd_topology_device *dev,
if (target_gpu_dev) {
uint32_t cap;
- pcie_capability_read_dword(target_gpu_dev->gpu->pdev,
+ pcie_capability_read_dword(target_gpu_dev->gpu->adev->pdev,
PCI_EXP_DEVCAP2, &cap);
if (!(cap & (PCI_EXP_DEVCAP2_ATOMIC_COMP32 |
@@ -1593,21 +1590,290 @@ out:
return ret;
}
+
+/* Helper function. See kfd_fill_gpu_cache_info for parameter description */
+static int fill_in_l1_pcache(struct kfd_cache_properties **props_ext,
+ struct kfd_gpu_cache_info *pcache_info,
+ struct kfd_cu_info *cu_info,
+ int cu_bitmask,
+ int cache_type, unsigned int cu_processor_id,
+ int cu_block)
+{
+ unsigned int cu_sibling_map_mask;
+ int first_active_cu;
+ struct kfd_cache_properties *pcache = NULL;
+
+ cu_sibling_map_mask = cu_bitmask;
+ cu_sibling_map_mask >>= cu_block;
+ cu_sibling_map_mask &= ((1 << pcache_info[cache_type].num_cu_shared) - 1);
+ first_active_cu = ffs(cu_sibling_map_mask);
+
+ /* CU could be inactive. In case of shared cache find the first active
+ * CU. and incase of non-shared cache check if the CU is inactive. If
+ * inactive active skip it
+ */
+ if (first_active_cu) {
+ pcache = kfd_alloc_struct(pcache);
+ if (!pcache)
+ return -ENOMEM;
+
+ memset(pcache, 0, sizeof(struct kfd_cache_properties));
+ pcache->processor_id_low = cu_processor_id + (first_active_cu - 1);
+ pcache->cache_level = pcache_info[cache_type].cache_level;
+ pcache->cache_size = pcache_info[cache_type].cache_size;
+
+ if (pcache_info[cache_type].flags & CRAT_CACHE_FLAGS_DATA_CACHE)
+ pcache->cache_type |= HSA_CACHE_TYPE_DATA;
+ if (pcache_info[cache_type].flags & CRAT_CACHE_FLAGS_INST_CACHE)
+ pcache->cache_type |= HSA_CACHE_TYPE_INSTRUCTION;
+ if (pcache_info[cache_type].flags & CRAT_CACHE_FLAGS_CPU_CACHE)
+ pcache->cache_type |= HSA_CACHE_TYPE_CPU;
+ if (pcache_info[cache_type].flags & CRAT_CACHE_FLAGS_SIMD_CACHE)
+ pcache->cache_type |= HSA_CACHE_TYPE_HSACU;
+
+ /* Sibling map is w.r.t processor_id_low, so shift out
+ * inactive CU
+ */
+ cu_sibling_map_mask =
+ cu_sibling_map_mask >> (first_active_cu - 1);
+
+ pcache->sibling_map[0] = (uint8_t)(cu_sibling_map_mask & 0xFF);
+ pcache->sibling_map[1] =
+ (uint8_t)((cu_sibling_map_mask >> 8) & 0xFF);
+ pcache->sibling_map[2] =
+ (uint8_t)((cu_sibling_map_mask >> 16) & 0xFF);
+ pcache->sibling_map[3] =
+ (uint8_t)((cu_sibling_map_mask >> 24) & 0xFF);
+
+ pcache->sibling_map_size = 4;
+ *props_ext = pcache;
+
+ return 0;
+ }
+ return 1;
+}
+
+/* Helper function. See kfd_fill_gpu_cache_info for parameter description */
+static int fill_in_l2_l3_pcache(struct kfd_cache_properties **props_ext,
+ struct kfd_gpu_cache_info *pcache_info,
+ struct kfd_cu_info *cu_info,
+ int cache_type, unsigned int cu_processor_id)
+{
+ unsigned int cu_sibling_map_mask;
+ int first_active_cu;
+ int i, j, k;
+ struct kfd_cache_properties *pcache = NULL;
+
+ cu_sibling_map_mask = cu_info->cu_bitmap[0][0];
+ cu_sibling_map_mask &=
+ ((1 << pcache_info[cache_type].num_cu_shared) - 1);
+ first_active_cu = ffs(cu_sibling_map_mask);
+
+ /* CU could be inactive. In case of shared cache find the first active
+ * CU. and incase of non-shared cache check if the CU is inactive. If
+ * inactive active skip it
+ */
+ if (first_active_cu) {
+ pcache = kfd_alloc_struct(pcache);
+ if (!pcache)
+ return -ENOMEM;
+
+ memset(pcache, 0, sizeof(struct kfd_cache_properties));
+ pcache->processor_id_low = cu_processor_id
+ + (first_active_cu - 1);
+ pcache->cache_level = pcache_info[cache_type].cache_level;
+ pcache->cache_size = pcache_info[cache_type].cache_size;
+
+ if (pcache_info[cache_type].flags & CRAT_CACHE_FLAGS_DATA_CACHE)
+ pcache->cache_type |= HSA_CACHE_TYPE_DATA;
+ if (pcache_info[cache_type].flags & CRAT_CACHE_FLAGS_INST_CACHE)
+ pcache->cache_type |= HSA_CACHE_TYPE_INSTRUCTION;
+ if (pcache_info[cache_type].flags & CRAT_CACHE_FLAGS_CPU_CACHE)
+ pcache->cache_type |= HSA_CACHE_TYPE_CPU;
+ if (pcache_info[cache_type].flags & CRAT_CACHE_FLAGS_SIMD_CACHE)
+ pcache->cache_type |= HSA_CACHE_TYPE_HSACU;
+
+ /* Sibling map is w.r.t processor_id_low, so shift out
+ * inactive CU
+ */
+ cu_sibling_map_mask = cu_sibling_map_mask >> (first_active_cu - 1);
+ k = 0;
+
+ for (i = 0; i < cu_info->num_shader_engines; i++) {
+ for (j = 0; j < cu_info->num_shader_arrays_per_engine; j++) {
+ pcache->sibling_map[k] = (uint8_t)(cu_sibling_map_mask & 0xFF);
+ pcache->sibling_map[k+1] = (uint8_t)((cu_sibling_map_mask >> 8) & 0xFF);
+ pcache->sibling_map[k+2] = (uint8_t)((cu_sibling_map_mask >> 16) & 0xFF);
+ pcache->sibling_map[k+3] = (uint8_t)((cu_sibling_map_mask >> 24) & 0xFF);
+ k += 4;
+
+ cu_sibling_map_mask = cu_info->cu_bitmap[i % 4][j + i / 4];
+ cu_sibling_map_mask &= ((1 << pcache_info[cache_type].num_cu_shared) - 1);
+ }
+ }
+ pcache->sibling_map_size = k;
+ *props_ext = pcache;
+ return 0;
+ }
+ return 1;
+}
+
+#define KFD_MAX_CACHE_TYPES 6
+
+/* kfd_fill_cache_non_crat_info - Fill GPU cache info using kfd_gpu_cache_info
+ * tables
+ */
+static void kfd_fill_cache_non_crat_info(struct kfd_topology_device *dev, struct kfd_dev *kdev)
+{
+ struct kfd_gpu_cache_info *pcache_info = NULL;
+ int i, j, k;
+ int ct = 0;
+ unsigned int cu_processor_id;
+ int ret;
+ unsigned int num_cu_shared;
+ struct kfd_cu_info cu_info;
+ struct kfd_cu_info *pcu_info;
+ int gpu_processor_id;
+ struct kfd_cache_properties *props_ext;
+ int num_of_entries = 0;
+ int num_of_cache_types = 0;
+ struct kfd_gpu_cache_info cache_info[KFD_MAX_CACHE_TYPES];
+
+ amdgpu_amdkfd_get_cu_info(kdev->adev, &cu_info);
+ pcu_info = &cu_info;
+
+ gpu_processor_id = dev->node_props.simd_id_base;
+
+ pcache_info = cache_info;
+ num_of_cache_types = kfd_get_gpu_cache_info(kdev, &pcache_info);
+ if (!num_of_cache_types) {
+ pr_warn("no cache info found\n");
+ return;
+ }
+
+ /* For each type of cache listed in the kfd_gpu_cache_info table,
+ * go through all available Compute Units.
+ * The [i,j,k] loop will
+ * if kfd_gpu_cache_info.num_cu_shared = 1
+ * will parse through all available CU
+ * If (kfd_gpu_cache_info.num_cu_shared != 1)
+ * then it will consider only one CU from
+ * the shared unit
+ */
+ for (ct = 0; ct < num_of_cache_types; ct++) {
+ cu_processor_id = gpu_processor_id;
+ if (pcache_info[ct].cache_level == 1) {
+ for (i = 0; i < pcu_info->num_shader_engines; i++) {
+ for (j = 0; j < pcu_info->num_shader_arrays_per_engine; j++) {
+ for (k = 0; k < pcu_info->num_cu_per_sh; k += pcache_info[ct].num_cu_shared) {
+
+ ret = fill_in_l1_pcache(&props_ext, pcache_info, pcu_info,
+ pcu_info->cu_bitmap[i % 4][j + i / 4], ct,
+ cu_processor_id, k);
+
+ if (ret < 0)
+ break;
+
+ if (!ret) {
+ num_of_entries++;
+ list_add_tail(&props_ext->list, &dev->cache_props);
+ }
+
+ /* Move to next CU block */
+ num_cu_shared = ((k + pcache_info[ct].num_cu_shared) <=
+ pcu_info->num_cu_per_sh) ?
+ pcache_info[ct].num_cu_shared :
+ (pcu_info->num_cu_per_sh - k);
+ cu_processor_id += num_cu_shared;
+ }
+ }
+ }
+ } else {
+ ret = fill_in_l2_l3_pcache(&props_ext, pcache_info,
+ pcu_info, ct, cu_processor_id);
+
+ if (ret < 0)
+ break;
+
+ if (!ret) {
+ num_of_entries++;
+ list_add_tail(&props_ext->list, &dev->cache_props);
+ }
+ }
+ }
+ dev->node_props.caches_count += num_of_entries;
+ pr_debug("Added [%d] GPU cache entries\n", num_of_entries);
+}
+
+static int kfd_topology_add_device_locked(struct kfd_dev *gpu, uint32_t gpu_id,
+ struct kfd_topology_device **dev)
+{
+ int proximity_domain = ++topology_crat_proximity_domain;
+ struct list_head temp_topology_device_list;
+ void *crat_image = NULL;
+ size_t image_size = 0;
+ int res;
+
+ res = kfd_create_crat_image_virtual(&crat_image, &image_size,
+ COMPUTE_UNIT_GPU, gpu,
+ proximity_domain);
+ if (res) {
+ pr_err("Error creating VCRAT for GPU (ID: 0x%x)\n",
+ gpu_id);
+ topology_crat_proximity_domain--;
+ goto err;
+ }
+
+ INIT_LIST_HEAD(&temp_topology_device_list);
+
+ res = kfd_parse_crat_table(crat_image,
+ &temp_topology_device_list,
+ proximity_domain);
+ if (res) {
+ pr_err("Error parsing VCRAT for GPU (ID: 0x%x)\n",
+ gpu_id);
+ topology_crat_proximity_domain--;
+ goto err;
+ }
+
+ kfd_topology_update_device_list(&temp_topology_device_list,
+ &topology_device_list);
+
+ *dev = kfd_assign_gpu(gpu);
+ if (WARN_ON(!*dev)) {
+ res = -ENODEV;
+ goto err;
+ }
+
+ /* Fill the cache affinity information here for the GPUs
+ * using VCRAT
+ */
+ kfd_fill_cache_non_crat_info(*dev, gpu);
+
+ /* Update the SYSFS tree, since we added another topology
+ * device
+ */
+ res = kfd_topology_update_sysfs();
+ if (!res)
+ sys_props.generation_count++;
+ else
+ pr_err("Failed to update GPU (ID: 0x%x) to sysfs topology. res=%d\n",
+ gpu_id, res);
+
+err:
+ kfd_destroy_crat_image(crat_image);
+ return res;
+}
+
int kfd_topology_add_device(struct kfd_dev *gpu)
{
uint32_t gpu_id;
struct kfd_topology_device *dev;
struct kfd_cu_info cu_info;
int res = 0;
- struct list_head temp_topology_device_list;
- void *crat_image = NULL;
- size_t image_size = 0;
- int proximity_domain;
int i;
const char *asic_name = amdgpu_asic_name[gpu->adev->asic_type];
- INIT_LIST_HEAD(&temp_topology_device_list);
-
gpu_id = kfd_generate_gpu_id(gpu);
pr_debug("Adding new GPU (ID: 0x%x) to topology\n", gpu_id);
@@ -1617,50 +1883,13 @@ int kfd_topology_add_device(struct kfd_dev *gpu)
* CRAT to create a new topology device. Once created assign the gpu to
* that topology device
*/
+ down_write(&topology_lock);
dev = kfd_assign_gpu(gpu);
- if (!dev) {
- down_write(&topology_lock);
- proximity_domain = ++topology_crat_proximity_domain;
-
- res = kfd_create_crat_image_virtual(&crat_image, &image_size,
- COMPUTE_UNIT_GPU, gpu,
- proximity_domain);
- if (res) {
- pr_err("Error creating VCRAT for GPU (ID: 0x%x)\n",
- gpu_id);
- topology_crat_proximity_domain--;
- return res;
- }
- res = kfd_parse_crat_table(crat_image,
- &temp_topology_device_list,
- proximity_domain);
- if (res) {
- pr_err("Error parsing VCRAT for GPU (ID: 0x%x)\n",
- gpu_id);
- topology_crat_proximity_domain--;
- goto err;
- }
-
- kfd_topology_update_device_list(&temp_topology_device_list,
- &topology_device_list);
-
- /* Update the SYSFS tree, since we added another topology
- * device
- */
- res = kfd_topology_update_sysfs();
- up_write(&topology_lock);
-
- if (!res)
- sys_props.generation_count++;
- else
- pr_err("Failed to update GPU (ID: 0x%x) to sysfs topology. res=%d\n",
- gpu_id, res);
- dev = kfd_assign_gpu(gpu);
- if (WARN_ON(!dev)) {
- res = -ENODEV;
- goto err;
- }
- }
+ if (!dev)
+ res = kfd_topology_add_device_locked(gpu, gpu_id, &dev);
+ up_write(&topology_lock);
+ if (res)
+ return res;
dev->gpu_id = gpu_id;
gpu->id = gpu_id;
@@ -1688,13 +1917,13 @@ int kfd_topology_add_device(struct kfd_dev *gpu)
cu_info.num_shader_arrays_per_engine;
dev->node_props.gfx_target_version = gpu->device_info.gfx_target_version;
- dev->node_props.vendor_id = gpu->pdev->vendor;
- dev->node_props.device_id = gpu->pdev->device;
+ dev->node_props.vendor_id = gpu->adev->pdev->vendor;
+ dev->node_props.device_id = gpu->adev->pdev->device;
dev->node_props.capability |=
((dev->gpu->adev->rev_id << HSA_CAP_ASIC_REVISION_SHIFT) &
HSA_CAP_ASIC_REVISION_MASK);
- dev->node_props.location_id = pci_dev_id(gpu->pdev);
- dev->node_props.domain = pci_domain_nr(gpu->pdev->bus);
+ dev->node_props.location_id = pci_dev_id(gpu->adev->pdev);
+ dev->node_props.domain = pci_domain_nr(gpu->adev->pdev->bus);
dev->node_props.max_engine_clk_fcompute =
amdgpu_amdkfd_get_max_engine_clock_in_mhz(dev->gpu->adev);
dev->node_props.max_engine_clk_ccompute =
@@ -1783,11 +2012,9 @@ int kfd_topology_add_device(struct kfd_dev *gpu)
kfd_debug_print_topology();
- if (!res)
- kfd_notify_gpu_change(gpu_id, 1);
-err:
- kfd_destroy_crat_image(crat_image);
- return res;
+ kfd_notify_gpu_change(gpu_id, 1);
+
+ return 0;
}
/**
diff --git a/drivers/gpu/drm/amd/amdkfd/kfd_topology.h b/drivers/gpu/drm/amd/amdkfd/kfd_topology.h
index 9f6c949186c1..fca30d00a9bb 100644
--- a/drivers/gpu/drm/amd/amdkfd/kfd_topology.h
+++ b/drivers/gpu/drm/amd/amdkfd/kfd_topology.h
@@ -80,6 +80,8 @@ struct kfd_mem_properties {
struct attribute attr;
};
+#define CACHE_SIBLINGMAP_SIZE 64
+
struct kfd_cache_properties {
struct list_head list;
uint32_t processor_id_low;
@@ -90,10 +92,11 @@ struct kfd_cache_properties {
uint32_t cache_assoc;
uint32_t cache_latency;
uint32_t cache_type;
- uint8_t sibling_map[CRAT_SIBLINGMAP_SIZE];
+ uint8_t sibling_map[CACHE_SIBLINGMAP_SIZE];
struct kfd_dev *gpu;
struct kobject *kobj;
struct attribute attr;
+ uint32_t sibling_map_size;
};
struct kfd_iolink_properties {
@@ -128,7 +131,6 @@ struct kfd_topology_device {
uint32_t proximity_domain;
struct kfd_node_properties node_props;
struct list_head mem_props;
- uint32_t cache_count;
struct list_head cache_props;
struct list_head io_link_props;
struct list_head p2p_link_props;
diff --git a/drivers/gpu/drm/amd/display/Kconfig b/drivers/gpu/drm/amd/display/Kconfig
index 6925e0280dbe..2d8e55e29637 100644
--- a/drivers/gpu/drm/amd/display/Kconfig
+++ b/drivers/gpu/drm/amd/display/Kconfig
@@ -5,24 +5,25 @@ menu "Display Engine Configuration"
config DRM_AMD_DC
bool "AMD DC - Enable new display engine"
default y
+ depends on BROKEN || !CC_IS_CLANG || X86_64 || SPARC64 || ARM64
select SND_HDA_COMPONENT if SND_HDA_CORE
- select DRM_AMD_DC_DCN if (X86 || PPC_LONG_DOUBLE_128)
+ # !CC_IS_CLANG: https://github.com/ClangBuiltLinux/linux/issues/1752
+ select DRM_AMD_DC_FP if (X86 || (PPC64 && ALTIVEC) || (ARM64 && KERNEL_MODE_NEON && !CC_IS_CLANG))
help
Choose this option if you want to use the new display engine
support for AMDGPU. This adds required support for Vega and
Raven ASICs.
-config DRM_AMD_DC_DCN
- def_bool n
- help
- Raven, Navi, and newer family support for display engine
+ calculate_bandwidth() is presently broken on all !(X86_64 || SPARC64 || ARM64)
+ architectures built with Clang (all released versions), whereby the stack
+ frame gets blown up to well over 5k. This would cause an immediate kernel
+ panic on most architectures. We'll revert this when the following bug report
+ has been resolved: https://github.com/llvm/llvm-project/issues/41896.
-config DRM_AMD_DC_HDCP
- bool "Enable HDCP support in DC"
- depends on DRM_AMD_DC
- select DRM_DISPLAY_HDCP_HELPER
+config DRM_AMD_DC_FP
+ def_bool n
help
- Choose this option if you want to support HDCP authentication.
+ Floating point support, required for DCN-based SoCs
config DRM_AMD_DC_SI
bool "AMD DC support for Southern Islands ASICs"
@@ -43,7 +44,7 @@ config DEBUG_KERNEL_DC
config DRM_AMD_SECURE_DISPLAY
bool "Enable secure display support"
depends on DEBUG_FS
- depends on DRM_AMD_DC_DCN
+ depends on DRM_AMD_DC_FP
help
Choose this option if you want to
support secure display
diff --git a/drivers/gpu/drm/amd/display/Makefile b/drivers/gpu/drm/amd/display/Makefile
index 2633de77de5e..0d610cb376bb 100644
--- a/drivers/gpu/drm/amd/display/Makefile
+++ b/drivers/gpu/drm/amd/display/Makefile
@@ -36,18 +36,14 @@ subdir-ccflags-y += -I$(FULL_AMD_DISPLAY_PATH)/modules/info_packet
subdir-ccflags-y += -I$(FULL_AMD_DISPLAY_PATH)/modules/power
subdir-ccflags-y += -I$(FULL_AMD_DISPLAY_PATH)/dmub/inc
-ifdef CONFIG_DRM_AMD_DC_HDCP
subdir-ccflags-y += -I$(FULL_AMD_DISPLAY_PATH)/modules/hdcp
-endif
#TODO: remove when Timing Sync feature is complete
subdir-ccflags-y += -DBUILD_FEATURE_TIMING_SYNC=0
DAL_LIBS = amdgpu_dm dc modules/freesync modules/color modules/info_packet modules/power dmub/src
-ifdef CONFIG_DRM_AMD_DC_HDCP
DAL_LIBS += modules/hdcp
-endif
AMD_DAL = $(addsuffix /Makefile, $(addprefix $(FULL_AMD_DISPLAY_PATH)/,$(DAL_LIBS)))
diff --git a/drivers/gpu/drm/amd/display/amdgpu_dm/Makefile b/drivers/gpu/drm/amd/display/amdgpu_dm/Makefile
index 90fb0f3cdb6f..249b073f6a23 100644
--- a/drivers/gpu/drm/amd/display/amdgpu_dm/Makefile
+++ b/drivers/gpu/drm/amd/display/amdgpu_dm/Makefile
@@ -33,7 +33,7 @@ AMDGPUDM = \
amdgpu_dm_mst_types.o \
amdgpu_dm_color.o
-ifdef CONFIG_DRM_AMD_DC_DCN
+ifdef CONFIG_DRM_AMD_DC_FP
AMDGPUDM += dc_fpu.o
endif
@@ -41,9 +41,7 @@ ifneq ($(CONFIG_DRM_AMD_DC),)
AMDGPUDM += amdgpu_dm_services.o amdgpu_dm_helpers.o amdgpu_dm_pp_smu.o amdgpu_dm_psr.o
endif
-ifdef CONFIG_DRM_AMD_DC_HDCP
AMDGPUDM += amdgpu_dm_hdcp.o
-endif
ifneq ($(CONFIG_DEBUG_FS),)
AMDGPUDM += amdgpu_dm_crc.o amdgpu_dm_debugfs.o
diff --git a/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm.c b/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm.c
index 509739d83b5a..8b4b186c57f5 100644
--- a/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm.c
+++ b/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm.c
@@ -28,7 +28,6 @@
#include "dm_services_types.h"
#include "dc.h"
-#include "dc_link_dp.h"
#include "link_enc_cfg.h"
#include "dc/inc/core_types.h"
#include "dal_asic_id.h"
@@ -39,6 +38,11 @@
#include "dc/dc_edid_parser.h"
#include "dc/dc_stat.h"
#include "amdgpu_dm_trace.h"
+#include "dpcd_defs.h"
+#include "link/protocols/link_dpcd.h"
+#include "link_service_types.h"
+#include "link/protocols/link_dp_capability.h"
+#include "link/protocols/link_ddc.h"
#include "vid.h"
#include "amdgpu.h"
@@ -48,10 +52,8 @@
#include "amdgpu_dm.h"
#include "amdgpu_dm_plane.h"
#include "amdgpu_dm_crtc.h"
-#ifdef CONFIG_DRM_AMD_DC_HDCP
#include "amdgpu_dm_hdcp.h"
#include <drm/display/drm_hdcp_helper.h>
-#endif
#include "amdgpu_pm.h"
#include "amdgpu_atombios.h"
@@ -66,7 +68,7 @@
#include "ivsrcid/ivsrcid_vislands30.h"
-#include "i2caux_interface.h"
+#include <linux/backlight.h>
#include <linux/module.h>
#include <linux/moduleparam.h>
#include <linux/types.h>
@@ -82,7 +84,6 @@
#include <drm/drm_atomic_uapi.h>
#include <drm/drm_atomic_helper.h>
#include <drm/drm_blend.h>
-#include <drm/drm_fb_helper.h>
#include <drm/drm_fourcc.h>
#include <drm/drm_edid.h>
#include <drm/drm_vblank.h>
@@ -105,7 +106,6 @@
#include "modules/inc/mod_freesync.h"
#include "modules/power/power_helpers.h"
-#include "modules/inc/mod_info_packet.h"
#define FIRMWARE_RENOIR_DMUB "amdgpu/renoir_dmcub.bin"
MODULE_FIRMWARE(FIRMWARE_RENOIR_DMUB);
@@ -211,7 +211,7 @@ static void amdgpu_dm_destroy_drm_device(struct amdgpu_display_manager *dm);
static int amdgpu_dm_connector_init(struct amdgpu_display_manager *dm,
struct amdgpu_dm_connector *amdgpu_dm_connector,
- uint32_t link_index,
+ u32 link_index,
struct amdgpu_encoder *amdgpu_encoder);
static int amdgpu_dm_encoder_init(struct drm_device *dev,
struct amdgpu_encoder *aencoder,
@@ -263,7 +263,7 @@ static u32 dm_vblank_get_counter(struct amdgpu_device *adev, int crtc)
static int dm_crtc_get_scanoutpos(struct amdgpu_device *adev, int crtc,
u32 *vbl, u32 *position)
{
- uint32_t v_blank_start, v_blank_end, h_position, v_position;
+ u32 v_blank_start, v_blank_end, h_position, v_position;
if ((crtc < 0) || (crtc >= adev->mode_info.num_crtc))
return -EINVAL;
@@ -342,12 +342,52 @@ static inline bool is_dc_timing_adjust_needed(struct dm_crtc_state *old_state,
{
if (new_state->freesync_config.state == VRR_STATE_ACTIVE_FIXED)
return true;
- else if (amdgpu_dm_vrr_active(old_state) != amdgpu_dm_vrr_active(new_state))
+ else if (amdgpu_dm_crtc_vrr_active(old_state) != amdgpu_dm_crtc_vrr_active(new_state))
return true;
else
return false;
}
+static inline void reverse_planes_order(struct dc_surface_update *array_of_surface_update,
+ int planes_count)
+{
+ int i, j;
+
+ for (i = 0, j = planes_count - 1; i < j; i++, j--)
+ swap(array_of_surface_update[i], array_of_surface_update[j]);
+}
+
+/**
+ * update_planes_and_stream_adapter() - Send planes to be updated in DC
+ *
+ * DC has a generic way to update planes and stream via
+ * dc_update_planes_and_stream function; however, DM might need some
+ * adjustments and preparation before calling it. This function is a wrapper
+ * for the dc_update_planes_and_stream that does any required configuration
+ * before passing control to DC.
+ */
+static inline bool update_planes_and_stream_adapter(struct dc *dc,
+ int update_type,
+ int planes_count,
+ struct dc_stream_state *stream,
+ struct dc_stream_update *stream_update,
+ struct dc_surface_update *array_of_surface_update)
+{
+ reverse_planes_order(array_of_surface_update, planes_count);
+
+ /*
+ * Previous frame finished and HW is ready for optimization.
+ */
+ if (update_type == UPDATE_TYPE_FAST)
+ dc_post_update_surfaces_to_stream(dc);
+
+ return dc_update_planes_and_stream(dc,
+ array_of_surface_update,
+ planes_count,
+ stream,
+ stream_update);
+}
+
/**
* dm_pflip_high_irq() - Handle pageflip interrupt
* @interrupt_params: ignored
@@ -362,7 +402,7 @@ static void dm_pflip_high_irq(void *interrupt_params)
struct amdgpu_device *adev = irq_params->adev;
unsigned long flags;
struct drm_pending_vblank_event *e;
- uint32_t vpos, hpos, v_blank_start, v_blank_end;
+ u32 vpos, hpos, v_blank_start, v_blank_end;
bool vrr_active;
amdgpu_crtc = get_crtc_by_otg_inst(adev, irq_params->irq_src - IRQ_TYPE_PFLIP);
@@ -392,7 +432,7 @@ static void dm_pflip_high_irq(void *interrupt_params)
WARN_ON(!e);
- vrr_active = amdgpu_dm_vrr_active_irq(amdgpu_crtc);
+ vrr_active = amdgpu_dm_crtc_vrr_active_irq(amdgpu_crtc);
/* Fixed refresh rate, or VRR scanout position outside front-porch? */
if (!vrr_active ||
@@ -466,7 +506,7 @@ static void dm_vupdate_high_irq(void *interrupt_params)
acrtc = get_crtc_by_otg_inst(adev, irq_params->irq_src - IRQ_TYPE_VUPDATE);
if (acrtc) {
- vrr_active = amdgpu_dm_vrr_active_irq(acrtc);
+ vrr_active = amdgpu_dm_crtc_vrr_active_irq(acrtc);
drm_dev = acrtc->base.dev;
vblank = &drm_dev->vblank[acrtc->base.index];
previous_timestamp = atomic64_read(&irq_params->previous_timestamp);
@@ -490,7 +530,7 @@ static void dm_vupdate_high_irq(void *interrupt_params)
* if a pageflip happened inside front-porch.
*/
if (vrr_active) {
- dm_crtc_handle_vblank(acrtc);
+ amdgpu_dm_crtc_handle_vblank(acrtc);
/* BTR processing for pre-DCE12 ASICs */
if (acrtc->dm_irq_params.stream &&
@@ -530,7 +570,7 @@ static void dm_crtc_high_irq(void *interrupt_params)
if (!acrtc)
return;
- vrr_active = amdgpu_dm_vrr_active_irq(acrtc);
+ vrr_active = amdgpu_dm_crtc_vrr_active_irq(acrtc);
DC_LOG_VBLANK("crtc:%d, vupdate-vrr:%d, planes:%d\n", acrtc->crtc_id,
vrr_active, acrtc->dm_irq_params.active_planes);
@@ -542,7 +582,7 @@ static void dm_crtc_high_irq(void *interrupt_params)
* to dm_vupdate_high_irq after end of front-porch.
*/
if (!vrr_active)
- dm_crtc_handle_vblank(acrtc);
+ amdgpu_dm_crtc_handle_vblank(acrtc);
/**
* Following stuff must happen at start of vblank, for crc
@@ -649,7 +689,7 @@ static void dmub_hpd_callback(struct amdgpu_device *adev,
struct drm_connector *connector;
struct drm_connector_list_iter iter;
struct dc_link *link;
- uint8_t link_index = 0;
+ u8 link_index = 0;
struct drm_device *dev;
if (adev == NULL)
@@ -673,7 +713,14 @@ static void dmub_hpd_callback(struct amdgpu_device *adev,
drm_for_each_connector_iter(connector, &iter) {
aconnector = to_amdgpu_dm_connector(connector);
if (link && aconnector->dc_link == link) {
- DRM_INFO("DMUB HPD callback: link_index=%u\n", link_index);
+ if (notify->type == DMUB_NOTIFICATION_HPD)
+ DRM_INFO("DMUB HPD callback: link_index=%u\n", link_index);
+ else if (notify->type == DMUB_NOTIFICATION_HPD_IRQ)
+ DRM_INFO("DMUB HPD IRQ callback: link_index=%u\n", link_index);
+ else
+ DRM_WARN("DMUB Unknown HPD callback type %d, link_index=%u\n",
+ notify->type, link_index);
+
hpd_aconnector = aconnector;
break;
}
@@ -750,7 +797,7 @@ static void dm_dmub_outbox1_low_irq(void *interrupt_params)
struct amdgpu_device *adev = irq_params->adev;
struct amdgpu_display_manager *dm = &adev->dm;
struct dmcub_trace_buf_entry entry = { 0 };
- uint32_t count = 0;
+ u32 count = 0;
struct dmub_hpd_work *dmub_hpd_wrk;
struct dc_link *plink = NULL;
@@ -773,15 +820,14 @@ static void dm_dmub_outbox1_low_irq(void *interrupt_params)
DRM_ERROR("Failed to allocate dmub_hpd_wrk");
return;
}
- dmub_hpd_wrk->dmub_notify = kzalloc(sizeof(struct dmub_notification), GFP_ATOMIC);
+ dmub_hpd_wrk->dmub_notify = kmemdup(&notify, sizeof(struct dmub_notification),
+ GFP_ATOMIC);
if (!dmub_hpd_wrk->dmub_notify) {
kfree(dmub_hpd_wrk);
DRM_ERROR("Failed to allocate dmub_hpd_wrk->dmub_notify");
return;
}
INIT_WORK(&dmub_hpd_wrk->handle_hpd_work, dm_handle_hpd_work);
- if (dmub_hpd_wrk->dmub_notify)
- memcpy(dmub_hpd_wrk->dmub_notify, &notify, sizeof(struct dmub_notification));
dmub_hpd_wrk->adev = adev;
if (notify.type == DMUB_NOTIFICATION_HPD) {
plink = adev->dm.dc->links[notify.link_index];
@@ -1016,7 +1062,7 @@ static int dm_dmub_hw_init(struct amdgpu_device *adev)
struct dmub_srv_hw_params hw_params;
enum dmub_status status;
const unsigned char *fw_inst_const, *fw_bss_data;
- uint32_t i, fw_inst_const_size, fw_bss_data_size;
+ u32 i, fw_inst_const_size, fw_bss_data_size;
bool has_hw_support;
if (!dmub_srv)
@@ -1097,7 +1143,7 @@ static int dm_dmub_hw_init(struct amdgpu_device *adev)
/* Initialize hardware. */
memset(&hw_params, 0, sizeof(hw_params));
hw_params.fb_base = adev->gmc.fb_start;
- hw_params.fb_offset = adev->gmc.aper_base;
+ hw_params.fb_offset = adev->vm_manager.vram_base_offset;
/* backdoor load firmware and trigger dmub running */
if (adev->firmware.load_type != AMDGPU_FW_LOAD_PSP)
@@ -1177,32 +1223,46 @@ static void dm_dmub_hw_resume(struct amdgpu_device *adev)
static void mmhub_read_system_context(struct amdgpu_device *adev, struct dc_phy_addr_space_config *pa_config)
{
- uint64_t pt_base;
- uint32_t logical_addr_low;
- uint32_t logical_addr_high;
- uint32_t agp_base, agp_bot, agp_top;
+ u64 pt_base;
+ u32 logical_addr_low;
+ u32 logical_addr_high;
+ u32 agp_base, agp_bot, agp_top;
PHYSICAL_ADDRESS_LOC page_table_start, page_table_end, page_table_base;
memset(pa_config, 0, sizeof(*pa_config));
- logical_addr_low = min(adev->gmc.fb_start, adev->gmc.agp_start) >> 18;
- pt_base = amdgpu_gmc_pd_addr(adev->gart.bo);
-
- if (adev->apu_flags & AMD_APU_IS_RAVEN2)
- /*
- * Raven2 has a HW issue that it is unable to use the vram which
- * is out of MC_VM_SYSTEM_APERTURE_HIGH_ADDR. So here is the
- * workaround that increase system aperture high address (add 1)
- * to get rid of the VM fault and hardware hang.
- */
- logical_addr_high = max((adev->gmc.fb_end >> 18) + 0x1, adev->gmc.agp_end >> 18);
- else
- logical_addr_high = max(adev->gmc.fb_end, adev->gmc.agp_end) >> 18;
-
agp_base = 0;
agp_bot = adev->gmc.agp_start >> 24;
agp_top = adev->gmc.agp_end >> 24;
+ /* AGP aperture is disabled */
+ if (agp_bot == agp_top) {
+ logical_addr_low = adev->gmc.fb_start >> 18;
+ if (adev->apu_flags & AMD_APU_IS_RAVEN2)
+ /*
+ * Raven2 has a HW issue that it is unable to use the vram which
+ * is out of MC_VM_SYSTEM_APERTURE_HIGH_ADDR. So here is the
+ * workaround that increase system aperture high address (add 1)
+ * to get rid of the VM fault and hardware hang.
+ */
+ logical_addr_high = (adev->gmc.fb_end >> 18) + 0x1;
+ else
+ logical_addr_high = adev->gmc.fb_end >> 18;
+ } else {
+ logical_addr_low = min(adev->gmc.fb_start, adev->gmc.agp_start) >> 18;
+ if (adev->apu_flags & AMD_APU_IS_RAVEN2)
+ /*
+ * Raven2 has a HW issue that it is unable to use the vram which
+ * is out of MC_VM_SYSTEM_APERTURE_HIGH_ADDR. So here is the
+ * workaround that increase system aperture high address (add 1)
+ * to get rid of the VM fault and hardware hang.
+ */
+ logical_addr_high = max((adev->gmc.fb_end >> 18) + 0x1, adev->gmc.agp_end >> 18);
+ else
+ logical_addr_high = max(adev->gmc.fb_end, adev->gmc.agp_end) >> 18;
+ }
+
+ pt_base = amdgpu_gmc_pd_addr(adev->gart.bo);
page_table_start.high_part = (u32)(adev->gmc.gart_start >> 44) & 0xF;
page_table_start.low_part = (u32)(adev->gmc.gart_start >> 12);
@@ -1219,15 +1279,30 @@ static void mmhub_read_system_context(struct amdgpu_device *adev, struct dc_phy_
pa_config->system_aperture.agp_top = (uint64_t)agp_top << 24;
pa_config->system_aperture.fb_base = adev->gmc.fb_start;
- pa_config->system_aperture.fb_offset = adev->gmc.aper_base;
+ pa_config->system_aperture.fb_offset = adev->vm_manager.vram_base_offset;
pa_config->system_aperture.fb_top = adev->gmc.fb_end;
pa_config->gart_config.page_table_start_addr = page_table_start.quad_part << 12;
pa_config->gart_config.page_table_end_addr = page_table_end.quad_part << 12;
pa_config->gart_config.page_table_base_addr = page_table_base.quad_part;
- pa_config->is_hvm_enabled = 0;
+ pa_config->is_hvm_enabled = adev->mode_info.gpu_vm_support;
+
+}
+
+static void force_connector_state(
+ struct amdgpu_dm_connector *aconnector,
+ enum drm_connector_force force_state)
+{
+ struct drm_connector *connector = &aconnector->base;
+
+ mutex_lock(&connector->dev->mode_config.mutex);
+ aconnector->base.force = force_state;
+ mutex_unlock(&connector->dev->mode_config.mutex);
+ mutex_lock(&aconnector->hpd_lock);
+ drm_kms_helper_connector_hotplug_event(connector);
+ mutex_unlock(&aconnector->hpd_lock);
}
static void dm_handle_hpd_rx_offload_work(struct work_struct *work)
@@ -1238,6 +1313,9 @@ static void dm_handle_hpd_rx_offload_work(struct work_struct *work)
struct amdgpu_device *adev;
enum dc_connection_type new_connection_type = dc_connection_none;
unsigned long flags;
+ union test_response test_response;
+
+ memset(&test_response, 0, sizeof(test_response));
offload_work = container_of(work, struct hpd_rx_irq_offload_work, work);
aconnector = offload_work->offload_wq->aconnector;
@@ -1251,7 +1329,7 @@ static void dm_handle_hpd_rx_offload_work(struct work_struct *work)
dc_link = aconnector->dc_link;
mutex_lock(&aconnector->hpd_lock);
- if (!dc_link_detect_sink(dc_link, &new_connection_type))
+ if (!dc_link_detect_connection_type(dc_link, &new_connection_type))
DRM_ERROR("KMS: Failed to detect connector\n");
mutex_unlock(&aconnector->hpd_lock);
@@ -1262,15 +1340,49 @@ static void dm_handle_hpd_rx_offload_work(struct work_struct *work)
goto skip;
mutex_lock(&adev->dm.dc_lock);
- if (offload_work->data.bytes.device_service_irq.bits.AUTOMATED_TEST)
+ if (offload_work->data.bytes.device_service_irq.bits.AUTOMATED_TEST) {
dc_link_dp_handle_automated_test(dc_link);
+
+ if (aconnector->timing_changed) {
+ /* force connector disconnect and reconnect */
+ force_connector_state(aconnector, DRM_FORCE_OFF);
+ msleep(100);
+ force_connector_state(aconnector, DRM_FORCE_UNSPECIFIED);
+ }
+
+ test_response.bits.ACK = 1;
+
+ core_link_write_dpcd(
+ dc_link,
+ DP_TEST_RESPONSE,
+ &test_response.raw,
+ sizeof(test_response));
+ }
else if ((dc_link->connector_signal != SIGNAL_TYPE_EDP) &&
- hpd_rx_irq_check_link_loss_status(dc_link, &offload_work->data) &&
+ dc_link_check_link_loss_status(dc_link, &offload_work->data) &&
dc_link_dp_allow_hpd_rx_irq(dc_link)) {
- dc_link_dp_handle_link_loss(dc_link);
+ /* offload_work->data is from handle_hpd_rx_irq->
+ * schedule_hpd_rx_offload_work.this is defer handle
+ * for hpd short pulse. upon here, link status may be
+ * changed, need get latest link status from dpcd
+ * registers. if link status is good, skip run link
+ * training again.
+ */
+ union hpd_irq_data irq_data;
+
+ memset(&irq_data, 0, sizeof(irq_data));
+
+ /* before dc_link_dp_handle_link_loss, allow new link lost handle
+ * request be added to work queue if link lost at end of dc_link_
+ * dp_handle_link_loss
+ */
spin_lock_irqsave(&offload_work->offload_wq->offload_lock, flags);
offload_work->offload_wq->is_handling_link_loss = false;
spin_unlock_irqrestore(&offload_work->offload_wq->offload_lock, flags);
+
+ if ((dc_link_dp_read_hpd_rx_irq_data(dc_link, &irq_data) == DC_OK) &&
+ dc_link_check_link_loss_status(dc_link, &irq_data))
+ dc_link_dp_handle_link_loss(dc_link);
}
mutex_unlock(&adev->dm.dc_lock);
@@ -1364,7 +1476,44 @@ static const struct dmi_system_id hpd_disconnect_quirk_table[] = {
DMI_MATCH(DMI_PRODUCT_NAME, "Precision 3460"),
},
},
+ {
+ .matches = {
+ DMI_MATCH(DMI_SYS_VENDOR, "Dell Inc."),
+ DMI_MATCH(DMI_PRODUCT_NAME, "OptiPlex Tower Plus 7010"),
+ },
+ },
+ {
+ .matches = {
+ DMI_MATCH(DMI_SYS_VENDOR, "Dell Inc."),
+ DMI_MATCH(DMI_PRODUCT_NAME, "OptiPlex Tower 7010"),
+ },
+ },
+ {
+ .matches = {
+ DMI_MATCH(DMI_SYS_VENDOR, "Dell Inc."),
+ DMI_MATCH(DMI_PRODUCT_NAME, "OptiPlex SFF Plus 7010"),
+ },
+ },
+ {
+ .matches = {
+ DMI_MATCH(DMI_SYS_VENDOR, "Dell Inc."),
+ DMI_MATCH(DMI_PRODUCT_NAME, "OptiPlex SFF 7010"),
+ },
+ },
+ {
+ .matches = {
+ DMI_MATCH(DMI_SYS_VENDOR, "Dell Inc."),
+ DMI_MATCH(DMI_PRODUCT_NAME, "OptiPlex Micro Plus 7010"),
+ },
+ },
+ {
+ .matches = {
+ DMI_MATCH(DMI_SYS_VENDOR, "Dell Inc."),
+ DMI_MATCH(DMI_PRODUCT_NAME, "OptiPlex Micro 7010"),
+ },
+ },
{}
+ /* TODO: refactor this from a fixed table to a dynamic option */
};
static void retrieve_dmi_info(struct amdgpu_display_manager *dm)
@@ -1383,9 +1532,7 @@ static void retrieve_dmi_info(struct amdgpu_display_manager *dm)
static int amdgpu_dm_init(struct amdgpu_device *adev)
{
struct dc_init_data init_data;
-#ifdef CONFIG_DRM_AMD_DC_HDCP
struct dc_callback_init init_params;
-#endif
int r;
adev->dm.ddev = adev_to_drm(adev);
@@ -1393,13 +1540,11 @@ static int amdgpu_dm_init(struct amdgpu_device *adev)
/* Zero all the fields */
memset(&init_data, 0, sizeof(init_data));
-#ifdef CONFIG_DRM_AMD_DC_HDCP
memset(&init_params, 0, sizeof(init_params));
-#endif
+ mutex_init(&adev->dm.dpia_aux_lock);
mutex_init(&adev->dm.dc_lock);
mutex_init(&adev->dm.audio_lock);
- spin_lock_init(&adev->dm.vblank_lock);
if(amdgpu_dm_irq_init(adev)) {
DRM_ERROR("amdgpu: failed to initialize DM IRQ support.\n");
@@ -1467,6 +1612,7 @@ static int amdgpu_dm_init(struct amdgpu_device *adev)
case IP_VERSION(3, 0, 1):
case IP_VERSION(3, 1, 2):
case IP_VERSION(3, 1, 3):
+ case IP_VERSION(3, 1, 4):
case IP_VERSION(3, 1, 5):
case IP_VERSION(3, 1, 6):
init_data.flags.gpu_vm_support = true;
@@ -1476,6 +1622,9 @@ static int amdgpu_dm_init(struct amdgpu_device *adev)
}
break;
}
+ if (init_data.flags.gpu_vm_support &&
+ (amdgpu_sg_display == 0))
+ init_data.flags.gpu_vm_support = false;
if (init_data.flags.gpu_vm_support)
adev->mode_info.gpu_vm_support = true;
@@ -1497,6 +1646,11 @@ static int amdgpu_dm_init(struct amdgpu_device *adev)
if (amdgpu_dc_feature_mask & DC_DISABLE_LTTPR_DP2_0)
init_data.flags.allow_lttpr_non_transparent_mode.bits.DP2_0 = true;
+ /* Disable SubVP + DRR config by default */
+ init_data.flags.disable_subvp_drr = true;
+ if (amdgpu_dc_feature_mask & DC_ENABLE_SUBVP_DRR)
+ init_data.flags.disable_subvp_drr = false;
+
init_data.flags.seamless_boot_edp_requested = false;
if (check_seamless_boot_capability(adev)) {
@@ -1552,6 +1706,26 @@ static int amdgpu_dm_init(struct amdgpu_device *adev)
/* TODO: Remove after DP2 receiver gets proper support of Cable ID feature */
adev->dm.dc->debug.ignore_cable_id = true;
+ /* TODO: There is a new drm mst change where the freedom of
+ * vc_next_start_slot update is revoked/moved into drm, instead of in
+ * driver. This forces us to make sure to get vc_next_start_slot updated
+ * in drm function each time without considering if mst_state is active
+ * or not. Otherwise, next time hotplug will give wrong start_slot
+ * number. We are implementing a temporary solution to even notify drm
+ * mst deallocation when link is no longer of MST type when uncommitting
+ * the stream so we will have more time to work on a proper solution.
+ * Ideally when dm_helpers_dp_mst_stop_top_mgr message is triggered, we
+ * should notify drm to do a complete "reset" of its states and stop
+ * calling further drm mst functions when link is no longer of an MST
+ * type. This could happen when we unplug an MST hubs/displays. When
+ * uncommit stream comes later after unplug, we should just reset
+ * hardware states only.
+ */
+ adev->dm.dc->debug.temp_mst_deallocation_sequence = true;
+
+ if (adev->dm.dc->caps.dp_hdmi21_pcon_support)
+ DRM_INFO("DP-HDMI FRL PCON supported\n");
+
r = dm_dmub_hw_init(adev);
if (r) {
DRM_ERROR("DMUB interface failed to initialize: status=%d\n", r);
@@ -1592,7 +1766,6 @@ static int amdgpu_dm_init(struct amdgpu_device *adev)
DRM_ERROR("amdgpu: failed to initialize vblank_workqueue.\n");
}
-#ifdef CONFIG_DRM_AMD_DC_HDCP
if (adev->dm.dc->caps.max_links > 0 && adev->family >= AMDGPU_FAMILY_RV) {
adev->dm.hdcp_workqueue = hdcp_create_workqueue(adev, &init_params.cp_psp, adev->dm.dc);
@@ -1603,9 +1776,11 @@ static int amdgpu_dm_init(struct amdgpu_device *adev)
dc_init_callbacks(adev->dm.dc, &init_params);
}
-#endif
#if defined(CONFIG_DRM_AMD_SECURE_DISPLAY)
- adev->dm.crc_rd_wrk = amdgpu_dm_crtc_secure_display_create_work();
+ adev->dm.secure_display_ctxs = amdgpu_dm_crtc_secure_display_create_contexts(adev);
+ if (!adev->dm.secure_display_ctxs) {
+ DRM_ERROR("amdgpu: failed to initialize secure_display_ctxs.\n");
+ }
#endif
if (dc_is_dmub_outbox_supported(adev->dm.dc)) {
init_completion(&adev->dm.dmub_aux_transfer_done);
@@ -1637,12 +1812,6 @@ static int amdgpu_dm_init(struct amdgpu_device *adev)
}
}
- if (amdgpu_dm_initialize_drm_device(adev)) {
- DRM_ERROR(
- "amdgpu: failed to initialize sw for display support.\n");
- goto error;
- }
-
/* Enable outbox notification only after IRQ handlers are registered and DMUB is alive.
* It is expected that DMUB will resend any pending notifications at this point, for
* example HPD from DPIA.
@@ -1650,6 +1819,12 @@ static int amdgpu_dm_init(struct amdgpu_device *adev)
if (dc_is_dmub_outbox_supported(adev->dm.dc))
dc_enable_dmub_outbox(adev->dm.dc);
+ if (amdgpu_dm_initialize_drm_device(adev)) {
+ DRM_ERROR(
+ "amdgpu: failed to initialize sw for display support.\n");
+ goto error;
+ }
+
/* create fake encoders for MST */
dm_dp_create_fake_mst_encoders(adev);
@@ -1693,20 +1868,20 @@ static void amdgpu_dm_fini(struct amdgpu_device *adev)
adev->dm.vblank_control_workqueue = NULL;
}
- for (i = 0; i < adev->dm.display_indexes_num; i++) {
- drm_encoder_cleanup(&adev->dm.mst_encoders[i].base);
- }
-
amdgpu_dm_destroy_drm_device(&adev->dm);
#if defined(CONFIG_DRM_AMD_SECURE_DISPLAY)
- if (adev->dm.crc_rd_wrk) {
- flush_work(&adev->dm.crc_rd_wrk->notify_ta_work);
- kfree(adev->dm.crc_rd_wrk);
- adev->dm.crc_rd_wrk = NULL;
+ if (adev->dm.secure_display_ctxs) {
+ for (i = 0; i < adev->mode_info.num_crtc; i++) {
+ if (adev->dm.secure_display_ctxs[i].crtc) {
+ flush_work(&adev->dm.secure_display_ctxs[i].notify_ta_work);
+ flush_work(&adev->dm.secure_display_ctxs[i].forward_roi_work);
+ }
+ }
+ kfree(adev->dm.secure_display_ctxs);
+ adev->dm.secure_display_ctxs = NULL;
}
#endif
-#ifdef CONFIG_DRM_AMD_DC_HDCP
if (adev->dm.hdcp_workqueue) {
hdcp_destroy(&adev->dev->kobj, adev->dm.hdcp_workqueue);
adev->dm.hdcp_workqueue = NULL;
@@ -1714,9 +1889,9 @@ static void amdgpu_dm_fini(struct amdgpu_device *adev)
if (adev->dm.dc)
dc_deinit_callbacks(adev->dm.dc);
-#endif
- dc_dmub_srv_destroy(&adev->dm.dc->ctx->dmub_srv);
+ if (adev->dm.dc)
+ dc_dmub_srv_destroy(&adev->dm.dc->ctx->dmub_srv);
if (dc_enable_dmub_notifications(adev->dm.dc)) {
kfree(adev->dm.dmub_notify);
@@ -1762,6 +1937,7 @@ static void amdgpu_dm_fini(struct amdgpu_device *adev)
mutex_destroy(&adev->dm.audio_lock);
mutex_destroy(&adev->dm.dc_lock);
+ mutex_destroy(&adev->dm.dpia_aux_lock);
return;
}
@@ -1837,25 +2013,17 @@ static int load_dmcu_fw(struct amdgpu_device *adev)
return 0;
}
- r = request_firmware_direct(&adev->dm.fw_dmcu, fw_name_dmcu, adev->dev);
- if (r == -ENOENT) {
+ r = amdgpu_ucode_request(adev, &adev->dm.fw_dmcu, fw_name_dmcu);
+ if (r == -ENODEV) {
/* DMCU firmware is not necessary, so don't raise a fuss if it's missing */
DRM_DEBUG_KMS("dm: DMCU firmware not found\n");
adev->dm.fw_dmcu = NULL;
return 0;
}
if (r) {
- dev_err(adev->dev, "amdgpu_dm: Can't load firmware \"%s\"\n",
- fw_name_dmcu);
- return r;
- }
-
- r = amdgpu_ucode_validate(adev->dm.fw_dmcu);
- if (r) {
dev_err(adev->dev, "amdgpu_dm: Can't validate firmware \"%s\"\n",
fw_name_dmcu);
- release_firmware(adev->dm.fw_dmcu);
- adev->dm.fw_dmcu = NULL;
+ amdgpu_ucode_release(&adev->dm.fw_dmcu);
return r;
}
@@ -1901,7 +2069,6 @@ static int dm_dmub_sw_init(struct amdgpu_device *adev)
struct dmub_srv_fb_info *fb_info;
struct dmub_srv *dmub_srv;
const struct dmcub_firmware_header_v1_0 *hdr;
- const char *fw_name_dmub;
enum dmub_asic dmub_asic;
enum dmub_status status;
int r;
@@ -1909,73 +2076,43 @@ static int dm_dmub_sw_init(struct amdgpu_device *adev)
switch (adev->ip_versions[DCE_HWIP][0]) {
case IP_VERSION(2, 1, 0):
dmub_asic = DMUB_ASIC_DCN21;
- fw_name_dmub = FIRMWARE_RENOIR_DMUB;
- if (ASICREV_IS_GREEN_SARDINE(adev->external_rev_id))
- fw_name_dmub = FIRMWARE_GREEN_SARDINE_DMUB;
break;
case IP_VERSION(3, 0, 0):
- if (adev->ip_versions[GC_HWIP][0] == IP_VERSION(10, 3, 0)) {
- dmub_asic = DMUB_ASIC_DCN30;
- fw_name_dmub = FIRMWARE_SIENNA_CICHLID_DMUB;
- } else {
- dmub_asic = DMUB_ASIC_DCN30;
- fw_name_dmub = FIRMWARE_NAVY_FLOUNDER_DMUB;
- }
+ dmub_asic = DMUB_ASIC_DCN30;
break;
case IP_VERSION(3, 0, 1):
dmub_asic = DMUB_ASIC_DCN301;
- fw_name_dmub = FIRMWARE_VANGOGH_DMUB;
break;
case IP_VERSION(3, 0, 2):
dmub_asic = DMUB_ASIC_DCN302;
- fw_name_dmub = FIRMWARE_DIMGREY_CAVEFISH_DMUB;
break;
case IP_VERSION(3, 0, 3):
dmub_asic = DMUB_ASIC_DCN303;
- fw_name_dmub = FIRMWARE_BEIGE_GOBY_DMUB;
break;
case IP_VERSION(3, 1, 2):
case IP_VERSION(3, 1, 3):
dmub_asic = (adev->external_rev_id == YELLOW_CARP_B0) ? DMUB_ASIC_DCN31B : DMUB_ASIC_DCN31;
- fw_name_dmub = FIRMWARE_YELLOW_CARP_DMUB;
break;
case IP_VERSION(3, 1, 4):
dmub_asic = DMUB_ASIC_DCN314;
- fw_name_dmub = FIRMWARE_DCN_314_DMUB;
break;
case IP_VERSION(3, 1, 5):
dmub_asic = DMUB_ASIC_DCN315;
- fw_name_dmub = FIRMWARE_DCN_315_DMUB;
break;
case IP_VERSION(3, 1, 6):
dmub_asic = DMUB_ASIC_DCN316;
- fw_name_dmub = FIRMWARE_DCN316_DMUB;
break;
case IP_VERSION(3, 2, 0):
dmub_asic = DMUB_ASIC_DCN32;
- fw_name_dmub = FIRMWARE_DCN_V3_2_0_DMCUB;
break;
case IP_VERSION(3, 2, 1):
dmub_asic = DMUB_ASIC_DCN321;
- fw_name_dmub = FIRMWARE_DCN_V3_2_1_DMCUB;
break;
default:
/* ASIC doesn't support DMUB. */
return 0;
}
- r = request_firmware_direct(&adev->dm.dmub_fw, fw_name_dmub, adev->dev);
- if (r) {
- DRM_ERROR("DMUB firmware loading failed: %d\n", r);
- return 0;
- }
-
- r = amdgpu_ucode_validate(adev->dm.dmub_fw);
- if (r) {
- DRM_ERROR("Couldn't validate DMUB firmware: %d\n", r);
- return 0;
- }
-
hdr = (const struct dmcub_firmware_header_v1_0 *)adev->dm.dmub_fw->data;
adev->dm.dmcub_fw_version = le32_to_cpu(hdr->header.ucode_version);
@@ -2042,7 +2179,9 @@ static int dm_dmub_sw_init(struct amdgpu_device *adev)
* TODO: Move this into GART.
*/
r = amdgpu_bo_create_kernel(adev, region_info.fb_size, PAGE_SIZE,
- AMDGPU_GEM_DOMAIN_VRAM, &adev->dm.dmub_bo,
+ AMDGPU_GEM_DOMAIN_VRAM |
+ AMDGPU_GEM_DOMAIN_GTT,
+ &adev->dm.dmub_bo,
&adev->dm.dmub_bo_gpu_addr,
&adev->dm.dmub_bo_cpu_addr);
if (r)
@@ -2097,11 +2236,8 @@ static int dm_sw_fini(void *handle)
adev->dm.dmub_srv = NULL;
}
- release_firmware(adev->dm.dmub_fw);
- adev->dm.dmub_fw = NULL;
-
- release_firmware(adev->dm.fw_dmcu);
- adev->dm.fw_dmcu = NULL;
+ amdgpu_ucode_release(&adev->dm.dmub_fw);
+ amdgpu_ucode_release(&adev->dm.fw_dmcu);
return 0;
}
@@ -2127,6 +2263,8 @@ static int detect_mst_link_for_all_connectors(struct drm_device *dev)
DRM_ERROR("DM_MST: Failed to start MST\n");
aconnector->dc_link->type =
dc_connection_single;
+ ret = dm_helpers_dp_mst_stop_top_mgr(aconnector->dc_link->ctx,
+ aconnector->dc_link);
break;
}
}
@@ -2162,9 +2300,9 @@ static int dm_late_init(void *handle)
*/
params.min_abm_backlight = 0x28F;
/* In the case where abm is implemented on dmcub,
- * dmcu object will be null.
- * ABM 2.4 and up are implemented on dmcub.
- */
+ * dmcu object will be null.
+ * ABM 2.4 and up are implemented on dmcub.
+ */
if (dmcu) {
if (!dmcu_load_iram(dmcu, params))
return -EINVAL;
@@ -2172,7 +2310,7 @@ static int dm_late_init(void *handle)
struct dc_link *edp_links[MAX_NUM_EDP];
int edp_num;
- get_edp_links(adev->dm.dc, edp_links, &edp_num);
+ dc_get_edp_links(adev->dm.dc, edp_links, &edp_num);
for (i = 0; i < edp_num; i++) {
if (!dmub_init_abm_config(adev->dm.dc->res_pool, params, i))
return -EINVAL;
@@ -2195,7 +2333,7 @@ static void s3_handle_mst(struct drm_device *dev, bool suspend)
drm_for_each_connector_iter(connector, &iter) {
aconnector = to_amdgpu_dm_connector(connector);
if (aconnector->dc_link->type != dc_connection_mst_branch ||
- aconnector->mst_port)
+ aconnector->mst_root)
continue;
mgr = &aconnector->mst_mgr;
@@ -2203,6 +2341,14 @@ static void s3_handle_mst(struct drm_device *dev, bool suspend)
if (suspend) {
drm_dp_mst_topology_mgr_suspend(mgr);
} else {
+ /* if extended timeout is supported in hardware,
+ * default to LTTPR timeout (3.2ms) first as a W/A for DP link layer
+ * CTS 4.2.1.1 regression introduced by CTS specs requirement update.
+ */
+ try_to_configure_aux_timeout(aconnector->dc_link->ddc, LINK_AUX_DEFAULT_LTTPR_TIMEOUT_PERIOD);
+ if (!dp_is_lttpr_present(aconnector->dc_link))
+ try_to_configure_aux_timeout(aconnector->dc_link->ddc, LINK_AUX_DEFAULT_TIMEOUT_PERIOD);
+
ret = drm_dp_mst_topology_mgr_resume(mgr, true);
if (ret < 0) {
dm_helpers_dp_mst_stop_top_mgr(aconnector->dc_link->ctx,
@@ -2340,11 +2486,11 @@ static void dm_gpureset_toggle_interrupts(struct amdgpu_device *adev,
enable ? "enable" : "disable");
if (enable) {
- rc = dm_enable_vblank(&acrtc->base);
+ rc = amdgpu_dm_crtc_enable_vblank(&acrtc->base);
if (rc)
DRM_WARN("Failed to enable vblank interrupts\n");
} else {
- dm_disable_vblank(&acrtc->base);
+ amdgpu_dm_crtc_disable_vblank(&acrtc->base);
}
}
@@ -2387,7 +2533,7 @@ static enum dc_status amdgpu_dm_commit_zero_streams(struct dc *dc)
goto fail;
}
- res = dc_commit_state(dc, context);
+ res = dc_commit_streams(dc, context->streams, context->stream_count);
fail:
dc_release_state(context);
@@ -2448,7 +2594,7 @@ struct amdgpu_dm_connector *
amdgpu_dm_find_first_crtc_matching_connector(struct drm_atomic_state *state,
struct drm_crtc *crtc)
{
- uint32_t i;
+ u32 i;
struct drm_connector_state *new_con_state;
struct drm_connector *connector;
struct drm_crtc *crtc_from_state;
@@ -2573,10 +2719,13 @@ static void dm_gpureset_commit_state(struct dc_state *dc_state,
bundle->surface_updates[m].surface->force_full_update =
true;
}
- dc_commit_updates_for_stream(
- dm->dc, bundle->surface_updates,
- dc_state->stream_status->plane_count,
- dc_state->streams[k], &bundle->stream_update, dc_state);
+
+ update_planes_and_stream_adapter(dm->dc,
+ UPDATE_TYPE_FULL,
+ dc_state->stream_status->plane_count,
+ dc_state->streams[k],
+ &bundle->stream_update,
+ bundle->surface_updates);
}
cleanup:
@@ -2646,7 +2795,7 @@ static int dm_resume(void *handle)
dc_enable_dmub_outbox(adev->dm.dc);
}
- WARN_ON(!dc_commit_state(dm->dc, dc_state));
+ WARN_ON(!dc_commit_streams(dm->dc, dc_state->streams, dc_state->stream_count));
dm_gpureset_commit_state(dm->cached_dc_state, dm);
@@ -2696,16 +2845,18 @@ static int dm_resume(void *handle)
drm_for_each_connector_iter(connector, &iter) {
aconnector = to_amdgpu_dm_connector(connector);
+ if (!aconnector->dc_link)
+ continue;
+
/*
* this is the case when traversing through already created
* MST connectors, should be skipped
*/
- if (aconnector->dc_link &&
- aconnector->dc_link->type == dc_connection_mst_branch)
+ if (aconnector->dc_link->type == dc_connection_mst_branch)
continue;
mutex_lock(&aconnector->hpd_lock);
- if (!dc_link_detect_sink(aconnector->dc_link, &new_connection_type))
+ if (!dc_link_detect_connection_type(aconnector->dc_link, &new_connection_type))
DRM_ERROR("KMS: Failed to detect connector\n");
if (aconnector->base.force && new_connection_type == dc_connection_none) {
@@ -2812,8 +2963,7 @@ const struct amdgpu_ip_block_version dm_ip_block =
static const struct drm_mode_config_funcs amdgpu_dm_mode_funcs = {
.fb_create = amdgpu_display_user_framebuffer_create,
- .get_format_info = amd_get_format_info,
- .output_poll_changed = drm_fb_helper_output_poll_changed,
+ .get_format_info = amdgpu_dm_plane_get_format_info,
.atomic_check = amdgpu_dm_atomic_check,
.atomic_commit = drm_atomic_helper_commit,
};
@@ -2826,30 +2976,18 @@ static struct drm_mode_config_helper_funcs amdgpu_dm_mode_config_helperfuncs = {
static void update_connector_ext_caps(struct amdgpu_dm_connector *aconnector)
{
struct amdgpu_dm_backlight_caps *caps;
- struct amdgpu_display_manager *dm;
struct drm_connector *conn_base;
struct amdgpu_device *adev;
- struct dc_link *link = NULL;
struct drm_luminance_range_info *luminance_range;
- int i;
-
- if (!aconnector || !aconnector->dc_link)
- return;
- link = aconnector->dc_link;
- if (link->connector_signal != SIGNAL_TYPE_EDP)
+ if (aconnector->bl_idx == -1 ||
+ aconnector->dc_link->connector_signal != SIGNAL_TYPE_EDP)
return;
conn_base = &aconnector->base;
adev = drm_to_adev(conn_base->dev);
- dm = &adev->dm;
- for (i = 0; i < dm->num_of_edps; i++) {
- if (link == dm->backlight_link[i])
- break;
- }
- if (i >= dm->num_of_edps)
- return;
- caps = &dm->backlight_caps[i];
+
+ caps = &adev->dm.backlight_caps[aconnector->bl_idx];
caps->ext_caps = &aconnector->dc_link->dpcd_sink_ext_caps;
caps->aux_support = false;
@@ -2864,8 +3002,14 @@ static void update_connector_ext_caps(struct amdgpu_dm_connector *aconnector)
caps->aux_support = true;
luminance_range = &conn_base->display_info.luminance_range;
- caps->aux_min_input_signal = luminance_range->min_luminance;
- caps->aux_max_input_signal = luminance_range->max_luminance;
+
+ if (luminance_range->max_luminance) {
+ caps->aux_min_input_signal = luminance_range->min_luminance;
+ caps->aux_max_input_signal = luminance_range->max_luminance;
+ } else {
+ caps->aux_min_input_signal = 0;
+ caps->aux_max_input_signal = 512;
+ }
}
void amdgpu_dm_update_connector_after_detect(
@@ -2984,6 +3128,13 @@ void amdgpu_dm_update_connector_after_detect(
aconnector->edid);
}
+ if (!aconnector->timing_requested) {
+ aconnector->timing_requested =
+ kzalloc(sizeof(struct dc_crtc_timing), GFP_KERNEL);
+ if (!aconnector->timing_requested)
+ dm_error("failed to create aconnector->requested_timing\n");
+ }
+
drm_connector_update_edid_property(connector, aconnector->edid);
amdgpu_dm_update_freesync_caps(connector, aconnector->edid);
update_connector_ext_caps(aconnector);
@@ -2995,11 +3146,11 @@ void amdgpu_dm_update_connector_after_detect(
dc_sink_release(aconnector->dc_sink);
aconnector->dc_sink = NULL;
aconnector->edid = NULL;
-#ifdef CONFIG_DRM_AMD_DC_HDCP
+ kfree(aconnector->timing_requested);
+ aconnector->timing_requested = NULL;
/* Set CP to DESIRED if it was ENABLED, so we can re-enable it again on hotplug */
if (connector->state->content_protection == DRM_MODE_CONTENT_PROTECTION_ENABLED)
connector->state->content_protection = DRM_MODE_CONTENT_PROTECTION_DESIRED;
-#endif
}
mutex_unlock(&dev->mode_config.mutex);
@@ -3016,9 +3167,7 @@ static void handle_hpd_irq_helper(struct amdgpu_dm_connector *aconnector)
struct drm_device *dev = connector->dev;
enum dc_connection_type new_connection_type = dc_connection_none;
struct amdgpu_device *adev = drm_to_adev(dev);
-#ifdef CONFIG_DRM_AMD_DC_HDCP
struct dm_connector_state *dm_con_state = to_dm_connector_state(connector->state);
-#endif
bool ret = false;
if (adev->dm.disable_hpd_irq)
@@ -3030,16 +3179,16 @@ static void handle_hpd_irq_helper(struct amdgpu_dm_connector *aconnector)
*/
mutex_lock(&aconnector->hpd_lock);
-#ifdef CONFIG_DRM_AMD_DC_HDCP
if (adev->dm.hdcp_workqueue) {
hdcp_reset_display(adev->dm.hdcp_workqueue, aconnector->dc_link->link_index);
dm_con_state->update_hdcp = true;
}
-#endif
if (aconnector->fake_enable)
aconnector->fake_enable = false;
- if (!dc_link_detect_sink(aconnector->dc_link, &new_connection_type))
+ aconnector->timing_changed = false;
+
+ if (!dc_link_detect_connection_type(aconnector->dc_link, &new_connection_type))
DRM_ERROR("KMS: Failed to detect connector\n");
if (aconnector->base.force && new_connection_type == dc_connection_none) {
@@ -3080,8 +3229,8 @@ static void handle_hpd_irq(void *param)
static void dm_handle_mst_sideband_msg(struct amdgpu_dm_connector *aconnector)
{
- uint8_t esi[DP_PSR_ERROR_STATUS - DP_SINK_COUNT_ESI] = { 0 };
- uint8_t dret;
+ u8 esi[DP_PSR_ERROR_STATUS - DP_SINK_COUNT_ESI] = { 0 };
+ u8 dret;
bool new_irq_handled = false;
int dpcd_addr;
int dpcd_bytes_to_read;
@@ -3109,7 +3258,7 @@ static void dm_handle_mst_sideband_msg(struct amdgpu_dm_connector *aconnector)
while (dret == dpcd_bytes_to_read &&
process_count < max_process_count) {
- uint8_t retry;
+ u8 retry;
dret = 0;
process_count++;
@@ -3128,7 +3277,7 @@ static void dm_handle_mst_sideband_msg(struct amdgpu_dm_connector *aconnector)
dpcd_bytes_to_read - 1;
for (retry = 0; retry < 3; retry++) {
- uint8_t wret;
+ u8 wret;
wret = drm_dp_dpcd_write(
&aconnector->dm_dp_aux.aux,
@@ -3188,7 +3337,7 @@ static void handle_hpd_rx_irq(void *param)
union hpd_irq_data hpd_irq_data;
bool link_loss = false;
bool has_left_work = false;
- int idx = aconnector->base.index;
+ int idx = dc_link->link_index;
struct hpd_rx_irq_offload_work_queue *offload_wq = &adev->dm.hpd_rx_offload_wq[idx];
memset(&hpd_irq_data, 0, sizeof(hpd_irq_data));
@@ -3242,7 +3391,7 @@ static void handle_hpd_rx_irq(void *param)
out:
if (result && !is_mst_root_connector) {
/* Downstream Port status changed. */
- if (!dc_link_detect_sink(dc_link, &new_connection_type))
+ if (!dc_link_detect_connection_type(dc_link, &new_connection_type))
DRM_ERROR("KMS: Failed to detect connector\n");
if (aconnector->base.force && new_connection_type == dc_connection_none) {
@@ -3280,12 +3429,10 @@ out:
}
}
}
-#ifdef CONFIG_DRM_AMD_DC_HDCP
if (hpd_irq_data.bytes.device_service_irq.bits.CP_IRQ) {
if (adev->dm.hdcp_workqueue)
hdcp_handle_cpirq(adev->dm.hdcp_workqueue, aconnector->base.index);
}
-#endif
if (dc_link->type != dc_connection_mst_branch)
drm_dp_cec_irq(&aconnector->dm_dp_aux.aux);
@@ -3330,7 +3477,7 @@ static void register_hpd_handlers(struct amdgpu_device *adev)
(void *) aconnector);
if (adev->dm.hpd_rx_offload_wq)
- adev->dm.hpd_rx_offload_wq[connector->index].aconnector =
+ adev->dm.hpd_rx_offload_wq[dc_link->link_index].aconnector =
aconnector;
}
}
@@ -3819,8 +3966,6 @@ static int amdgpu_dm_mode_config_init(struct amdgpu_device *adev)
/* indicates support for immediate flip */
adev_to_drm(adev)->mode_config.async_page_flip = true;
- adev_to_drm(adev)->mode_config.fb_base = adev->gmc.aper_base;
-
state = kzalloc(sizeof(*state), GFP_KERNEL);
if (!state)
return -ENOMEM;
@@ -4036,16 +4181,18 @@ static const struct backlight_ops amdgpu_dm_backlight_ops = {
};
static void
-amdgpu_dm_register_backlight_device(struct amdgpu_display_manager *dm)
+amdgpu_dm_register_backlight_device(struct amdgpu_dm_connector *aconnector)
{
- char bl_name[16];
+ struct drm_device *drm = aconnector->base.dev;
+ struct amdgpu_display_manager *dm = &drm_to_adev(drm)->dm;
struct backlight_properties props = { 0 };
+ char bl_name[16];
- amdgpu_dm_update_backlight_caps(dm, dm->num_of_edps);
- dm->brightness[dm->num_of_edps] = AMDGPU_MAX_BL_LEVEL;
+ if (aconnector->bl_idx == -1)
+ return;
if (!acpi_video_backlight_use_native()) {
- drm_info(adev_to_drm(dm->adev), "Skipping amdgpu DM backlight registration\n");
+ drm_info(drm, "Skipping amdgpu DM backlight registration\n");
/* Try registering an ACPI video backlight device instead. */
acpi_video_register_backlight();
return;
@@ -4056,17 +4203,16 @@ amdgpu_dm_register_backlight_device(struct amdgpu_display_manager *dm)
props.type = BACKLIGHT_RAW;
snprintf(bl_name, sizeof(bl_name), "amdgpu_bl%d",
- adev_to_drm(dm->adev)->primary->index + dm->num_of_edps);
+ drm->primary->index + aconnector->bl_idx);
- dm->backlight_dev[dm->num_of_edps] = backlight_device_register(bl_name,
- adev_to_drm(dm->adev)->dev,
- dm,
- &amdgpu_dm_backlight_ops,
- &props);
+ dm->backlight_dev[aconnector->bl_idx] =
+ backlight_device_register(bl_name, aconnector->base.kdev, dm,
+ &amdgpu_dm_backlight_ops, &props);
- if (IS_ERR(dm->backlight_dev[dm->num_of_edps]))
+ if (IS_ERR(dm->backlight_dev[aconnector->bl_idx])) {
DRM_ERROR("DM: Backlight registration failed!\n");
- else
+ dm->backlight_dev[aconnector->bl_idx] = NULL;
+ } else
DRM_DEBUG_DRIVER("DM: Registered Backlight device: %s\n", bl_name);
}
@@ -4111,24 +4257,29 @@ static int initialize_plane(struct amdgpu_display_manager *dm,
}
-static void register_backlight_device(struct amdgpu_display_manager *dm,
- struct dc_link *link)
+static void setup_backlight_device(struct amdgpu_display_manager *dm,
+ struct amdgpu_dm_connector *aconnector)
{
- if ((link->connector_signal & (SIGNAL_TYPE_EDP | SIGNAL_TYPE_LVDS)) &&
- link->type != dc_connection_none) {
- /*
- * Event if registration failed, we should continue with
- * DM initialization because not having a backlight control
- * is better then a black screen.
- */
- if (!dm->backlight_dev[dm->num_of_edps])
- amdgpu_dm_register_backlight_device(dm);
+ struct dc_link *link = aconnector->dc_link;
+ int bl_idx = dm->num_of_edps;
- if (dm->backlight_dev[dm->num_of_edps]) {
- dm->backlight_link[dm->num_of_edps] = link;
- dm->num_of_edps++;
- }
+ if (!(link->connector_signal & (SIGNAL_TYPE_EDP | SIGNAL_TYPE_LVDS)) ||
+ link->type == dc_connection_none)
+ return;
+
+ if (dm->num_of_edps >= AMDGPU_DM_MAX_NUM_EDP) {
+ drm_warn(adev_to_drm(dm->adev), "Too much eDP connections, skipping backlight setup for additional eDPs\n");
+ return;
}
+
+ aconnector->bl_idx = bl_idx;
+
+ amdgpu_dm_update_backlight_caps(dm, bl_idx);
+ dm->brightness[bl_idx] = AMDGPU_MAX_BL_LEVEL;
+ dm->backlight_link[bl_idx] = link;
+ dm->num_of_edps++;
+
+ update_connector_ext_caps(aconnector);
}
static void amdgpu_set_panel_orientation(struct drm_connector *connector);
@@ -4144,20 +4295,23 @@ static void amdgpu_set_panel_orientation(struct drm_connector *connector);
static int amdgpu_dm_initialize_drm_device(struct amdgpu_device *adev)
{
struct amdgpu_display_manager *dm = &adev->dm;
- int32_t i;
+ s32 i;
struct amdgpu_dm_connector *aconnector = NULL;
struct amdgpu_encoder *aencoder = NULL;
struct amdgpu_mode_info *mode_info = &adev->mode_info;
- uint32_t link_cnt;
- int32_t primary_planes;
+ u32 link_cnt;
+ s32 primary_planes;
enum dc_connection_type new_connection_type = dc_connection_none;
const struct dc_plane_cap *plane;
bool psr_feature_enabled = false;
+ int max_overlay = dm->dc->caps.max_slave_planes;
dm->display_indexes_num = dm->dc->caps.max_streams;
/* Update the actual used number of crtc */
adev->mode_info.num_crtc = adev->dm.display_indexes_num;
+ amdgpu_dm_set_irq_funcs(adev);
+
link_cnt = dm->dc->caps.max_links;
if (amdgpu_dm_mode_config_init(dm->adev)) {
DRM_ERROR("DM: Failed to initialize mode config\n");
@@ -4201,20 +4355,17 @@ static int amdgpu_dm_initialize_drm_device(struct amdgpu_device *adev)
if (plane->type != DC_PLANE_TYPE_DCN_UNIVERSAL)
continue;
- if (!plane->blends_with_above || !plane->blends_with_below)
- continue;
-
if (!plane->pixel_format_support.argb8888)
continue;
+ if (max_overlay-- == 0)
+ break;
+
if (initialize_plane(dm, NULL, primary_planes + i,
DRM_PLANE_TYPE_OVERLAY, plane)) {
DRM_ERROR("KMS: Failed to initialize overlay plane\n");
goto fail;
}
-
- /* Only create one overlay plane. */
- break;
}
for (i = 0; i < dm->dc->caps.max_streams; i++)
@@ -4293,7 +4444,7 @@ static int amdgpu_dm_initialize_drm_device(struct amdgpu_device *adev)
link = dc_get_link_at_index(dm->dc, i);
- if (!dc_link_detect_sink(link, &new_connection_type))
+ if (!dc_link_detect_connection_type(link, &new_connection_type))
DRM_ERROR("KMS: Failed to detect connector\n");
if (aconnector->base.force && new_connection_type == dc_connection_none) {
@@ -4308,10 +4459,7 @@ static int amdgpu_dm_initialize_drm_device(struct amdgpu_device *adev)
if (ret) {
amdgpu_dm_update_connector_after_detect(aconnector);
- register_backlight_device(dm, link);
-
- if (dm->num_of_edps)
- update_connector_ext_caps(aconnector);
+ setup_backlight_device(dm, aconnector);
if (psr_feature_enabled)
amdgpu_dm_set_psr_caps(link);
@@ -4465,9 +4613,75 @@ DEVICE_ATTR_WO(s3_debug);
#endif
+static int dm_init_microcode(struct amdgpu_device *adev)
+{
+ char *fw_name_dmub;
+ int r;
+
+ switch (adev->ip_versions[DCE_HWIP][0]) {
+ case IP_VERSION(2, 1, 0):
+ fw_name_dmub = FIRMWARE_RENOIR_DMUB;
+ if (ASICREV_IS_GREEN_SARDINE(adev->external_rev_id))
+ fw_name_dmub = FIRMWARE_GREEN_SARDINE_DMUB;
+ break;
+ case IP_VERSION(3, 0, 0):
+ if (adev->ip_versions[GC_HWIP][0] == IP_VERSION(10, 3, 0))
+ fw_name_dmub = FIRMWARE_SIENNA_CICHLID_DMUB;
+ else
+ fw_name_dmub = FIRMWARE_NAVY_FLOUNDER_DMUB;
+ break;
+ case IP_VERSION(3, 0, 1):
+ fw_name_dmub = FIRMWARE_VANGOGH_DMUB;
+ break;
+ case IP_VERSION(3, 0, 2):
+ fw_name_dmub = FIRMWARE_DIMGREY_CAVEFISH_DMUB;
+ break;
+ case IP_VERSION(3, 0, 3):
+ fw_name_dmub = FIRMWARE_BEIGE_GOBY_DMUB;
+ break;
+ case IP_VERSION(3, 1, 2):
+ case IP_VERSION(3, 1, 3):
+ fw_name_dmub = FIRMWARE_YELLOW_CARP_DMUB;
+ break;
+ case IP_VERSION(3, 1, 4):
+ fw_name_dmub = FIRMWARE_DCN_314_DMUB;
+ break;
+ case IP_VERSION(3, 1, 5):
+ fw_name_dmub = FIRMWARE_DCN_315_DMUB;
+ break;
+ case IP_VERSION(3, 1, 6):
+ fw_name_dmub = FIRMWARE_DCN316_DMUB;
+ break;
+ case IP_VERSION(3, 2, 0):
+ fw_name_dmub = FIRMWARE_DCN_V3_2_0_DMCUB;
+ break;
+ case IP_VERSION(3, 2, 1):
+ fw_name_dmub = FIRMWARE_DCN_V3_2_1_DMCUB;
+ break;
+ default:
+ /* ASIC doesn't support DMUB. */
+ return 0;
+ }
+ r = amdgpu_ucode_request(adev, &adev->dm.dmub_fw, fw_name_dmub);
+ if (r)
+ DRM_ERROR("DMUB firmware loading failed: %d\n", r);
+ return r;
+}
+
static int dm_early_init(void *handle)
{
struct amdgpu_device *adev = (struct amdgpu_device *)handle;
+ struct amdgpu_mode_info *mode_info = &adev->mode_info;
+ struct atom_context *ctx = mode_info->atom_context;
+ int index = GetIndexIntoMasterTable(DATA, Object_Header);
+ u16 data_offset;
+
+ /* if there is no object header, skip DM */
+ if (!amdgpu_atom_parse_data_header(ctx, index, NULL, NULL, NULL, &data_offset)) {
+ adev->harvest_ip_mask |= AMD_HARVEST_IP_DMU_MASK;
+ dev_info(adev->dev, "No object header, skipping DM\n");
+ return -ENOENT;
+ }
switch (adev->asic_type) {
#if defined(CONFIG_DRM_AMD_DC_SI)
@@ -4580,8 +4794,6 @@ static int dm_early_init(void *handle)
break;
}
- amdgpu_dm_set_irq_funcs(adev);
-
if (adev->mode_info.funcs == NULL)
adev->mode_info.funcs = &dm_display_funcs;
@@ -4595,8 +4807,9 @@ static int dm_early_init(void *handle)
adev_to_drm(adev)->dev,
&dev_attr_s3_debug);
#endif
+ adev->dc_enabled = true;
- return 0;
+ return dm_init_microcode(adev);
}
static bool modereset_required(struct drm_crtc_state *crtc_state)
@@ -4661,7 +4874,7 @@ fill_plane_color_attributes(const struct drm_plane_state *plane_state,
static int
fill_dc_plane_info_and_addr(struct amdgpu_device *adev,
const struct drm_plane_state *plane_state,
- const uint64_t tiling_flags,
+ const u64 tiling_flags,
struct dc_plane_info *plane_info,
struct dc_plane_address *address,
bool tmz_surface,
@@ -4759,7 +4972,7 @@ fill_dc_plane_info_and_addr(struct amdgpu_device *adev,
if (ret)
return ret;
- ret = fill_plane_buffer_attributes(adev, afb, plane_info->format,
+ ret = amdgpu_dm_plane_fill_plane_buffer_attributes(adev, afb, plane_info->format,
plane_info->rotation, tiling_flags,
&plane_info->tiling_info,
&plane_info->plane_size,
@@ -4768,7 +4981,7 @@ fill_dc_plane_info_and_addr(struct amdgpu_device *adev,
if (ret)
return ret;
- fill_blending_from_plane_state(
+ amdgpu_dm_plane_fill_blending_from_plane_state(
plane_state, &plane_info->per_pixel_alpha, &plane_info->pre_multiplied_alpha,
&plane_info->global_alpha, &plane_info->global_alpha_value);
@@ -4787,7 +5000,7 @@ static int fill_dc_plane_attributes(struct amdgpu_device *adev,
int ret;
bool force_disable_dcc = false;
- ret = fill_dc_scaling_info(adev, plane_state, &scaling_info);
+ ret = amdgpu_dm_plane_fill_dc_scaling_info(adev, plane_state, &scaling_info);
if (ret)
return ret;
@@ -4834,6 +5047,35 @@ static int fill_dc_plane_attributes(struct amdgpu_device *adev,
return 0;
}
+static inline void fill_dc_dirty_rect(struct drm_plane *plane,
+ struct rect *dirty_rect, int32_t x,
+ s32 y, s32 width, s32 height,
+ int *i, bool ffu)
+{
+ if (*i > DC_MAX_DIRTY_RECTS)
+ return;
+
+ if (*i == DC_MAX_DIRTY_RECTS)
+ goto out;
+
+ dirty_rect->x = x;
+ dirty_rect->y = y;
+ dirty_rect->width = width;
+ dirty_rect->height = height;
+
+ if (ffu)
+ drm_dbg(plane->dev,
+ "[PLANE:%d] PSR FFU dirty rect size (%d, %d)\n",
+ plane->base.id, width, height);
+ else
+ drm_dbg(plane->dev,
+ "[PLANE:%d] PSR SU dirty rect at (%d, %d) size (%d, %d)",
+ plane->base.id, x, y, width, height);
+
+out:
+ (*i)++;
+}
+
/**
* fill_dc_dirty_rects() - Fill DC dirty regions for PSR selective updates
*
@@ -4843,6 +5085,7 @@ static int fill_dc_plane_attributes(struct amdgpu_device *adev,
* @new_plane_state: New state of @plane
* @crtc_state: New state of CRTC connected to the @plane
* @flip_addrs: DC flip tracking struct, which also tracts dirty rects
+ * @dirty_regions_changed: dirty regions changed
*
* For PSR SU, DC informs the DMUB uController of dirty rectangle regions
* (referred to as "damage clips" in DRM nomenclature) that require updating on
@@ -4854,25 +5097,22 @@ static int fill_dc_plane_attributes(struct amdgpu_device *adev,
* addition, certain use cases - such as cursor and multi-plane overlay (MPO) -
* implicitly provide damage clips without any client support via the plane
* bounds.
- *
- * Today, amdgpu_dm only supports the MPO and cursor usecase.
- *
- * TODO: Also enable for FB_DAMAGE_CLIPS
*/
static void fill_dc_dirty_rects(struct drm_plane *plane,
struct drm_plane_state *old_plane_state,
struct drm_plane_state *new_plane_state,
struct drm_crtc_state *crtc_state,
- struct dc_flip_addrs *flip_addrs)
+ struct dc_flip_addrs *flip_addrs,
+ bool *dirty_regions_changed)
{
struct dm_crtc_state *dm_crtc_state = to_dm_crtc_state(crtc_state);
struct rect *dirty_rects = flip_addrs->dirty_rects;
- uint32_t num_clips;
+ u32 num_clips;
+ struct drm_mode_rect *clips;
bool bb_changed;
bool fb_changed;
- uint32_t i = 0;
-
- flip_addrs->dirty_rect_count = 0;
+ u32 i = 0;
+ *dirty_regions_changed = false;
/*
* Cursor plane has it's own dirty rect update interface. See
@@ -4881,20 +5121,20 @@ static void fill_dc_dirty_rects(struct drm_plane *plane,
if (plane->type == DRM_PLANE_TYPE_CURSOR)
return;
- /*
- * Today, we only consider MPO use-case for PSR SU. If MPO not
- * requested, and there is a plane update, do FFU.
- */
+ num_clips = drm_plane_get_damage_clips_count(new_plane_state);
+ clips = drm_plane_get_damage_clips(new_plane_state);
+
if (!dm_crtc_state->mpo_requested) {
- dirty_rects[0].x = 0;
- dirty_rects[0].y = 0;
- dirty_rects[0].width = dm_crtc_state->base.mode.crtc_hdisplay;
- dirty_rects[0].height = dm_crtc_state->base.mode.crtc_vdisplay;
- flip_addrs->dirty_rect_count = 1;
- DRM_DEBUG_DRIVER("[PLANE:%d] PSR FFU dirty rect size (%d, %d)\n",
- new_plane_state->plane->base.id,
- dm_crtc_state->base.mode.crtc_hdisplay,
- dm_crtc_state->base.mode.crtc_vdisplay);
+ if (!num_clips || num_clips > DC_MAX_DIRTY_RECTS)
+ goto ffu;
+
+ for (; flip_addrs->dirty_rect_count < num_clips; clips++)
+ fill_dc_dirty_rect(new_plane_state->plane,
+ &dirty_rects[flip_addrs->dirty_rect_count],
+ clips->x1, clips->y1,
+ clips->x2 - clips->x1, clips->y2 - clips->y1,
+ &flip_addrs->dirty_rect_count,
+ false);
return;
}
@@ -4905,7 +5145,6 @@ static void fill_dc_dirty_rects(struct drm_plane *plane,
* If plane is moved or resized, also add old bounding box to dirty
* rects.
*/
- num_clips = drm_plane_get_damage_clips_count(new_plane_state);
fb_changed = old_plane_state->fb->base.id !=
new_plane_state->fb->base.id;
bb_changed = (old_plane_state->crtc_x != new_plane_state->crtc_x ||
@@ -4913,36 +5152,53 @@ static void fill_dc_dirty_rects(struct drm_plane *plane,
old_plane_state->crtc_w != new_plane_state->crtc_w ||
old_plane_state->crtc_h != new_plane_state->crtc_h);
- DRM_DEBUG_DRIVER("[PLANE:%d] PSR bb_changed:%d fb_changed:%d num_clips:%d\n",
- new_plane_state->plane->base.id,
- bb_changed, fb_changed, num_clips);
+ drm_dbg(plane->dev,
+ "[PLANE:%d] PSR bb_changed:%d fb_changed:%d num_clips:%d\n",
+ new_plane_state->plane->base.id,
+ bb_changed, fb_changed, num_clips);
- if (num_clips || fb_changed || bb_changed) {
- dirty_rects[i].x = new_plane_state->crtc_x;
- dirty_rects[i].y = new_plane_state->crtc_y;
- dirty_rects[i].width = new_plane_state->crtc_w;
- dirty_rects[i].height = new_plane_state->crtc_h;
- DRM_DEBUG_DRIVER("[PLANE:%d] PSR SU dirty rect at (%d, %d) size (%d, %d)\n",
- new_plane_state->plane->base.id,
- dirty_rects[i].x, dirty_rects[i].y,
- dirty_rects[i].width, dirty_rects[i].height);
- i += 1;
- }
+ *dirty_regions_changed = bb_changed;
- /* Add old plane bounding-box if plane is moved or resized */
if (bb_changed) {
- dirty_rects[i].x = old_plane_state->crtc_x;
- dirty_rects[i].y = old_plane_state->crtc_y;
- dirty_rects[i].width = old_plane_state->crtc_w;
- dirty_rects[i].height = old_plane_state->crtc_h;
- DRM_DEBUG_DRIVER("[PLANE:%d] PSR SU dirty rect at (%d, %d) size (%d, %d)\n",
- old_plane_state->plane->base.id,
- dirty_rects[i].x, dirty_rects[i].y,
- dirty_rects[i].width, dirty_rects[i].height);
- i += 1;
- }
+ fill_dc_dirty_rect(new_plane_state->plane, &dirty_rects[i],
+ new_plane_state->crtc_x,
+ new_plane_state->crtc_y,
+ new_plane_state->crtc_w,
+ new_plane_state->crtc_h, &i, false);
+
+ /* Add old plane bounding-box if plane is moved or resized */
+ fill_dc_dirty_rect(new_plane_state->plane, &dirty_rects[i],
+ old_plane_state->crtc_x,
+ old_plane_state->crtc_y,
+ old_plane_state->crtc_w,
+ old_plane_state->crtc_h, &i, false);
+ }
+
+ if (num_clips) {
+ for (; i < num_clips; clips++)
+ fill_dc_dirty_rect(new_plane_state->plane,
+ &dirty_rects[i], clips->x1,
+ clips->y1, clips->x2 - clips->x1,
+ clips->y2 - clips->y1, &i, false);
+ } else if (fb_changed && !bb_changed) {
+ fill_dc_dirty_rect(new_plane_state->plane, &dirty_rects[i],
+ new_plane_state->crtc_x,
+ new_plane_state->crtc_y,
+ new_plane_state->crtc_w,
+ new_plane_state->crtc_h, &i, false);
+ }
+
+ if (i > DC_MAX_DIRTY_RECTS)
+ goto ffu;
flip_addrs->dirty_rect_count = i;
+ return;
+
+ffu:
+ fill_dc_dirty_rect(new_plane_state->plane, &dirty_rects[0], 0, 0,
+ dm_crtc_state->base.mode.crtc_hdisplay,
+ dm_crtc_state->base.mode.crtc_vdisplay,
+ &flip_addrs->dirty_rect_count, true);
}
static void update_stream_scaling_settings(const struct drm_display_mode *mode,
@@ -5004,7 +5260,7 @@ static enum dc_color_depth
convert_color_depth_from_display_info(const struct drm_connector *connector,
bool is_y420, int requested_bpc)
{
- uint8_t bpc;
+ u8 bpc;
if (is_y420) {
bpc = 8;
@@ -5233,8 +5489,6 @@ static void fill_stream_properties_from_drm_display_mode(
timing_out->aspect_ratio = get_aspect_ratio(mode_in);
- stream->output_color_space = get_output_color_space(timing_out);
-
stream->out_transfer_func->type = TF_TYPE_PREDEFINED;
stream->out_transfer_func->tf = TRANSFER_FUNCTION_SRGB;
if (stream->signal == SIGNAL_TYPE_HDMI_TYPE_A) {
@@ -5245,6 +5499,8 @@ static void fill_stream_properties_from_drm_display_mode(
adjust_colour_depth_from_display_info(timing_out, info);
}
}
+
+ stream->output_color_space = get_output_color_space(timing_out);
}
static void fill_audio_info(struct audio_info *audio_info,
@@ -5522,7 +5778,6 @@ static bool is_freesync_video_mode(const struct drm_display_mode *mode,
return true;
}
-#if defined(CONFIG_DRM_AMD_DC_DCN)
static void update_dsc_caps(struct amdgpu_dm_connector *aconnector,
struct dc_sink *sink, struct dc_stream_state *stream,
struct dsc_dec_dpcd_caps *dsc_caps)
@@ -5548,11 +5803,15 @@ static void apply_dsc_policy_for_edp(struct amdgpu_dm_connector *aconnector,
uint32_t max_dsc_target_bpp_limit_override)
{
const struct dc_link_settings *verified_link_cap = NULL;
- uint32_t link_bw_in_kbps;
- uint32_t edp_min_bpp_x16, edp_max_bpp_x16;
+ u32 link_bw_in_kbps;
+ u32 edp_min_bpp_x16, edp_max_bpp_x16;
struct dc *dc = sink->ctx->dc;
struct dc_dsc_bw_range bw_range = {0};
struct dc_dsc_config dsc_cfg = {0};
+ struct dc_dsc_config_options dsc_options = {0};
+
+ dc_dsc_get_default_config_option(dc, &dsc_options);
+ dsc_options.max_target_bpp_limit_override_x16 = max_dsc_target_bpp_limit_override * 16;
verified_link_cap = dc_link_get_link_cap(stream->link);
link_bw_in_kbps = dc_link_bandwidth_kbps(stream->link, verified_link_cap);
@@ -5575,8 +5834,7 @@ static void apply_dsc_policy_for_edp(struct amdgpu_dm_connector *aconnector,
if (bw_range.max_kbps < link_bw_in_kbps) {
if (dc_dsc_compute_config(dc->res_pool->dscs[0],
dsc_caps,
- dc->debug.dsc_min_slice_height_override,
- max_dsc_target_bpp_limit_override,
+ &dsc_options,
0,
&stream->timing,
&dsc_cfg)) {
@@ -5590,8 +5848,7 @@ static void apply_dsc_policy_for_edp(struct amdgpu_dm_connector *aconnector,
if (dc_dsc_compute_config(dc->res_pool->dscs[0],
dsc_caps,
- dc->debug.dsc_min_slice_height_override,
- max_dsc_target_bpp_limit_override,
+ &dsc_options,
link_bw_in_kbps,
&stream->timing,
&dsc_cfg)) {
@@ -5606,17 +5863,19 @@ static void apply_dsc_policy_for_stream(struct amdgpu_dm_connector *aconnector,
struct dsc_dec_dpcd_caps *dsc_caps)
{
struct drm_connector *drm_connector = &aconnector->base;
- uint32_t link_bandwidth_kbps;
- uint32_t max_dsc_target_bpp_limit_override = 0;
+ u32 link_bandwidth_kbps;
struct dc *dc = sink->ctx->dc;
- uint32_t max_supported_bw_in_kbps, timing_bw_in_kbps;
- uint32_t dsc_max_supported_bw_in_kbps;
+ u32 max_supported_bw_in_kbps, timing_bw_in_kbps;
+ u32 dsc_max_supported_bw_in_kbps;
+ u32 max_dsc_target_bpp_limit_override =
+ drm_connector->display_info.max_dsc_bpp;
+ struct dc_dsc_config_options dsc_options = {0};
+
+ dc_dsc_get_default_config_option(dc, &dsc_options);
+ dsc_options.max_target_bpp_limit_override_x16 = max_dsc_target_bpp_limit_override * 16;
link_bandwidth_kbps = dc_link_bandwidth_kbps(aconnector->dc_link,
dc_link_get_link_cap(aconnector->dc_link));
- if (stream->link && stream->link->local_sink)
- max_dsc_target_bpp_limit_override =
- stream->link->local_sink->edid_caps.panel_patch.max_dsc_target_bpp_limit;
/* Set DSC policy according to dsc_clock_en */
dc_dsc_policy_set_enable_dsc_when_not_needed(
@@ -5632,8 +5891,7 @@ static void apply_dsc_policy_for_stream(struct amdgpu_dm_connector *aconnector,
if (sink->link->dpcd_caps.dongle_type == DISPLAY_DONGLE_NONE) {
if (dc_dsc_compute_config(aconnector->dc_link->ctx->dc->res_pool->dscs[0],
dsc_caps,
- aconnector->dc_link->ctx->dc->debug.dsc_min_slice_height_override,
- max_dsc_target_bpp_limit_override,
+ &dsc_options,
link_bandwidth_kbps,
&stream->timing,
&stream->timing.dsc_cfg)) {
@@ -5650,8 +5908,7 @@ static void apply_dsc_policy_for_stream(struct amdgpu_dm_connector *aconnector,
dsc_max_supported_bw_in_kbps > 0)
if (dc_dsc_compute_config(aconnector->dc_link->ctx->dc->res_pool->dscs[0],
dsc_caps,
- aconnector->dc_link->ctx->dc->debug.dsc_min_slice_height_override,
- max_dsc_target_bpp_limit_override,
+ &dsc_options,
dsc_max_supported_bw_in_kbps,
&stream->timing,
&stream->timing.dsc_cfg)) {
@@ -5675,7 +5932,6 @@ static void apply_dsc_policy_for_stream(struct amdgpu_dm_connector *aconnector,
if (stream->timing.flags.DSC && aconnector->dsc_settings.dsc_bits_per_pixel)
stream->timing.dsc_cfg.bits_per_pixel = aconnector->dsc_settings.dsc_bits_per_pixel;
}
-#endif /* CONFIG_DRM_AMD_DC_DCN */
static struct dc_stream_state *
create_stream_for_sink(struct amdgpu_dm_connector *aconnector,
@@ -5689,7 +5945,7 @@ create_stream_for_sink(struct amdgpu_dm_connector *aconnector,
const struct drm_connector_state *con_state =
dm_state ? &dm_state->base : NULL;
struct dc_stream_state *stream = NULL;
- struct drm_display_mode mode = *drm_mode;
+ struct drm_display_mode mode;
struct drm_display_mode saved_mode;
struct drm_display_mode *freesync_mode = NULL;
bool native_mode_found = false;
@@ -5697,12 +5953,12 @@ create_stream_for_sink(struct amdgpu_dm_connector *aconnector,
bool scale = dm_state ? (dm_state->scaling != RMX_OFF) : false;
int mode_refresh;
int preferred_refresh = 0;
-#if defined(CONFIG_DRM_AMD_DC_DCN)
+ enum color_transfer_func tf = TRANSFER_FUNC_UNKNOWN;
struct dsc_dec_dpcd_caps dsc_caps;
-#endif
struct dc_sink *sink = NULL;
+ drm_mode_init(&mode, drm_mode);
memset(&saved_mode, 0, sizeof(saved_mode));
if (aconnector == NULL) {
@@ -5757,7 +6013,8 @@ create_stream_for_sink(struct amdgpu_dm_connector *aconnector,
*/
DRM_DEBUG_DRIVER("No preferred mode found\n");
} else {
- recalculate_timing = is_freesync_video_mode(&mode, aconnector);
+ recalculate_timing = amdgpu_freesync_vid_mode &&
+ is_freesync_video_mode(&mode, aconnector);
if (recalculate_timing) {
freesync_mode = get_highest_refresh_rate_mode(aconnector, false);
drm_mode_copy(&saved_mode, &mode);
@@ -5788,12 +6045,18 @@ create_stream_for_sink(struct amdgpu_dm_connector *aconnector,
stream, &mode, &aconnector->base, con_state, old_stream,
requested_bpc);
-#if defined(CONFIG_DRM_AMD_DC_DCN)
+ if (aconnector->timing_changed) {
+ DC_LOG_DEBUG("%s: overriding timing for automated test, bpc %d, changing to %d\n",
+ __func__,
+ stream->timing.display_color_depth,
+ aconnector->timing_requested->display_color_depth);
+ stream->timing = *aconnector->timing_requested;
+ }
+
/* SST DSC determination policy */
update_dsc_caps(aconnector, sink, stream, &dsc_caps);
if (aconnector->dsc_settings.dsc_force_enable != DSC_CLK_FORCE_DISABLE && dsc_caps.is_dsc_supported)
apply_dsc_policy_for_stream(aconnector, sink, stream, &dsc_caps);
-#endif
update_stream_scaling_settings(&mode, dm_state, stream);
@@ -5820,7 +6083,9 @@ create_stream_for_sink(struct amdgpu_dm_connector *aconnector,
if (stream->link->dpcd_caps.dprx_feature.bits.VSC_SDP_COLORIMETRY_SUPPORTED)
stream->use_vsc_sdp_for_colorimetry = true;
}
- mod_build_vsc_infopacket(stream, &stream->vsc_infopacket, stream->output_color_space);
+ if (stream->out_transfer_func->tf == TRANSFER_FUNCTION_GAMMA22)
+ tf = TRANSFER_FUNC_GAMMA_22;
+ mod_build_vsc_infopacket(stream, &stream->vsc_infopacket, stream->output_color_space, tf);
aconnector->psr_skip_count = AMDGPU_DM_PSR_ENTRY_DELAY;
}
@@ -5966,10 +6231,8 @@ static void amdgpu_dm_connector_unregister(struct drm_connector *connector)
static void amdgpu_dm_connector_destroy(struct drm_connector *connector)
{
struct amdgpu_dm_connector *aconnector = to_amdgpu_dm_connector(connector);
- const struct dc_link *link = aconnector->dc_link;
struct amdgpu_device *adev = drm_to_adev(connector->dev);
struct amdgpu_display_manager *dm = &adev->dm;
- int i;
/*
* Call only if mst_mgr was initialized before since it's not done
@@ -5978,15 +6241,10 @@ static void amdgpu_dm_connector_destroy(struct drm_connector *connector)
if (aconnector->mst_mgr.dev)
drm_dp_mst_topology_mgr_destroy(&aconnector->mst_mgr);
-#if defined(CONFIG_BACKLIGHT_CLASS_DEVICE) ||\
- defined(CONFIG_BACKLIGHT_CLASS_DEVICE_MODULE)
- for (i = 0; i < dm->num_of_edps; i++) {
- if ((link == dm->backlight_link[i]) && dm->backlight_dev[i]) {
- backlight_device_unregister(dm->backlight_dev[i]);
- dm->backlight_dev[i] = NULL;
- }
+ if (aconnector->bl_idx != -1) {
+ backlight_device_unregister(dm->backlight_dev[aconnector->bl_idx]);
+ dm->backlight_dev[aconnector->bl_idx] = NULL;
}
-#endif
if (aconnector->dc_em_sink)
dc_sink_release(aconnector->dc_em_sink);
@@ -6067,6 +6325,8 @@ amdgpu_dm_connector_late_register(struct drm_connector *connector)
to_amdgpu_dm_connector(connector);
int r;
+ amdgpu_dm_register_backlight_device(amdgpu_dm_connector);
+
if ((connector->connector_type == DRM_MODE_CONNECTOR_DisplayPort) ||
(connector->connector_type == DRM_MODE_CONNECTOR_eDP)) {
amdgpu_dm_connector->dm_dp_aux.aux.dev = connector->kdev;
@@ -6113,7 +6373,6 @@ static void create_eml_sink(struct amdgpu_dm_connector *aconnector)
aconnector->base.name);
aconnector->base.force = DRM_FORCE_OFF;
- aconnector->base.override_edid = false;
return;
}
@@ -6148,11 +6407,72 @@ static void handle_edid_mgmt(struct amdgpu_dm_connector *aconnector)
link->verified_link_cap.link_rate = LINK_RATE_HIGH2;
}
-
- aconnector->base.override_edid = true;
create_eml_sink(aconnector);
}
+static enum dc_status dm_validate_stream_and_context(struct dc *dc,
+ struct dc_stream_state *stream)
+{
+ enum dc_status dc_result = DC_ERROR_UNEXPECTED;
+ struct dc_plane_state *dc_plane_state = NULL;
+ struct dc_state *dc_state = NULL;
+
+ if (!stream)
+ goto cleanup;
+
+ dc_plane_state = dc_create_plane_state(dc);
+ if (!dc_plane_state)
+ goto cleanup;
+
+ dc_state = dc_create_state(dc);
+ if (!dc_state)
+ goto cleanup;
+
+ /* populate stream to plane */
+ dc_plane_state->src_rect.height = stream->src.height;
+ dc_plane_state->src_rect.width = stream->src.width;
+ dc_plane_state->dst_rect.height = stream->src.height;
+ dc_plane_state->dst_rect.width = stream->src.width;
+ dc_plane_state->clip_rect.height = stream->src.height;
+ dc_plane_state->clip_rect.width = stream->src.width;
+ dc_plane_state->plane_size.surface_pitch = ((stream->src.width + 255) / 256) * 256;
+ dc_plane_state->plane_size.surface_size.height = stream->src.height;
+ dc_plane_state->plane_size.surface_size.width = stream->src.width;
+ dc_plane_state->plane_size.chroma_size.height = stream->src.height;
+ dc_plane_state->plane_size.chroma_size.width = stream->src.width;
+ dc_plane_state->format = SURFACE_PIXEL_FORMAT_GRPH_ARGB8888;
+ dc_plane_state->tiling_info.gfx9.swizzle = DC_SW_UNKNOWN;
+ dc_plane_state->rotation = ROTATION_ANGLE_0;
+ dc_plane_state->is_tiling_rotated = false;
+ dc_plane_state->tiling_info.gfx8.array_mode = DC_ARRAY_LINEAR_GENERAL;
+
+ dc_result = dc_validate_stream(dc, stream);
+ if (dc_result == DC_OK)
+ dc_result = dc_validate_plane(dc, dc_plane_state);
+
+ if (dc_result == DC_OK)
+ dc_result = dc_add_stream_to_ctx(dc, dc_state, stream);
+
+ if (dc_result == DC_OK && !dc_add_plane_to_context(
+ dc,
+ stream,
+ dc_plane_state,
+ dc_state))
+ dc_result = DC_FAIL_ATTACH_SURFACES;
+
+ if (dc_result == DC_OK)
+ dc_result = dc_validate_global_state(dc, dc_state, true);
+
+cleanup:
+ if (dc_state)
+ dc_release_state(dc_state);
+
+ if (dc_plane_state)
+ dc_plane_state_release(dc_plane_state);
+
+ return dc_result;
+}
+
struct dc_stream_state *
create_validate_stream_for_sink(struct amdgpu_dm_connector *aconnector,
const struct drm_display_mode *drm_mode,
@@ -6179,6 +6499,9 @@ create_validate_stream_for_sink(struct amdgpu_dm_connector *aconnector,
if (dc_result == DC_OK && stream->signal == SIGNAL_TYPE_DISPLAY_PORT_MST)
dc_result = dm_dp_mst_is_port_support_mode(aconnector, stream);
+ if (dc_result == DC_OK)
+ dc_result = dm_validate_stream_and_context(adev->dm.dc, stream);
+
if (dc_result != DC_OK) {
DRM_DEBUG_KMS("Mode %dx%d (clk %d) failed DC validation with error %d (%s)\n",
drm_mode->hdisplay,
@@ -6414,11 +6737,11 @@ static int dm_encoder_helper_atomic_check(struct drm_encoder *encoder,
int clock, bpp = 0;
bool is_y420 = false;
- if (!aconnector->port || !aconnector->dc_sink)
+ if (!aconnector->mst_output_port || !aconnector->dc_sink)
return 0;
- mst_port = aconnector->port;
- mst_mgr = &aconnector->mst_port->mst_mgr;
+ mst_port = aconnector->mst_output_port;
+ mst_mgr = &aconnector->mst_root->mst_mgr;
if (!crtc_state->connectors_changed && !crtc_state->mode_changed)
return 0;
@@ -6428,7 +6751,7 @@ static int dm_encoder_helper_atomic_check(struct drm_encoder *encoder,
return PTR_ERR(mst_state);
if (!mst_state->pbn_div)
- mst_state->pbn_div = dm_mst_get_pbn_divider(aconnector->mst_port->dc_link);
+ mst_state->pbn_div = dm_mst_get_pbn_divider(aconnector->mst_root->dc_link);
if (!state->duplicated) {
int max_bpc = conn_state->max_requested_bpc;
@@ -6457,7 +6780,6 @@ const struct drm_encoder_helper_funcs amdgpu_dm_encoder_helper_funcs = {
.atomic_check = dm_encoder_helper_atomic_check
};
-#if defined(CONFIG_DRM_AMD_DC_DCN)
static int dm_update_mst_vcpi_slots_for_dsc(struct drm_atomic_state *state,
struct dc_state *dc_state,
struct dsc_mst_fairness_vars *vars)
@@ -6467,14 +6789,14 @@ static int dm_update_mst_vcpi_slots_for_dsc(struct drm_atomic_state *state,
struct drm_connector_state *new_con_state;
struct amdgpu_dm_connector *aconnector;
struct dm_connector_state *dm_conn_state;
- int i, j;
+ int i, j, ret;
int vcpi, pbn_div, pbn, slot_num = 0;
for_each_new_connector_in_state(state, connector, new_con_state, i) {
aconnector = to_amdgpu_dm_connector(connector);
- if (!aconnector->port)
+ if (!aconnector->mst_output_port)
continue;
if (!new_con_state || !new_con_state->crtc)
@@ -6514,12 +6836,15 @@ static int dm_update_mst_vcpi_slots_for_dsc(struct drm_atomic_state *state,
dm_conn_state->pbn = pbn;
dm_conn_state->vcpi_slots = slot_num;
- drm_dp_mst_atomic_enable_dsc(state, aconnector->port, dm_conn_state->pbn,
- false);
+ ret = drm_dp_mst_atomic_enable_dsc(state, aconnector->mst_output_port,
+ dm_conn_state->pbn, false);
+ if (ret < 0)
+ return ret;
+
continue;
}
- vcpi = drm_dp_mst_atomic_enable_dsc(state, aconnector->port, pbn, true);
+ vcpi = drm_dp_mst_atomic_enable_dsc(state, aconnector->mst_output_port, pbn, true);
if (vcpi < 0)
return vcpi;
@@ -6528,7 +6853,6 @@ static int dm_update_mst_vcpi_slots_for_dsc(struct drm_atomic_state *state,
}
return 0;
}
-#endif
static int to_drm_connector_type(enum signal_type st)
{
@@ -6762,21 +7086,21 @@ static uint add_fs_modes(struct amdgpu_dm_connector *aconnector)
const struct drm_display_mode *m;
struct drm_display_mode *new_mode;
uint i;
- uint32_t new_modes_count = 0;
+ u32 new_modes_count = 0;
/* Standard FPS values
*
* 23.976 - TV/NTSC
- * 24 - Cinema
- * 25 - TV/PAL
+ * 24 - Cinema
+ * 25 - TV/PAL
* 29.97 - TV/NTSC
- * 30 - TV/NTSC
- * 48 - Cinema HFR
- * 50 - TV/PAL
- * 60 - Commonly used
+ * 30 - TV/NTSC
+ * 48 - Cinema HFR
+ * 50 - TV/PAL
+ * 60 - Commonly used
* 48,72,96,120 - Multiples of 24
*/
- static const uint32_t common_rates[] = {
+ static const u32 common_rates[] = {
23976, 24000, 25000, 29970, 30000,
48000, 50000, 60000, 72000, 96000, 120000
};
@@ -6792,8 +7116,8 @@ static uint add_fs_modes(struct amdgpu_dm_connector *aconnector)
return 0;
for (i = 0; i < ARRAY_SIZE(common_rates); i++) {
- uint64_t target_vtotal, target_vtotal_diff;
- uint64_t num, den;
+ u64 target_vtotal, target_vtotal_diff;
+ u64 num, den;
if (drm_mode_vrefresh(m) * 1000 < common_rates[i])
continue;
@@ -6839,7 +7163,7 @@ static void amdgpu_dm_connector_add_freesync_modes(struct drm_connector *connect
struct amdgpu_dm_connector *amdgpu_dm_connector =
to_amdgpu_dm_connector(connector);
- if (!edid)
+ if (!(amdgpu_freesync_vid_mode && edid))
return;
if (amdgpu_dm_connector->max_vfreq - amdgpu_dm_connector->min_vfreq > 10)
@@ -6853,12 +7177,18 @@ static int amdgpu_dm_connector_get_modes(struct drm_connector *connector)
to_amdgpu_dm_connector(connector);
struct drm_encoder *encoder;
struct edid *edid = amdgpu_dm_connector->edid;
+ struct dc_link_settings *verified_link_cap =
+ &amdgpu_dm_connector->dc_link->verified_link_cap;
+ const struct dc *dc = amdgpu_dm_connector->dc_link->dc;
encoder = amdgpu_dm_connector_to_encoder(connector);
if (!drm_edid_is_valid(edid)) {
amdgpu_dm_connector->num_modes =
drm_add_modes_noedid(connector, 640, 480);
+ if (dc->link_srv->dp_get_encoding_format(verified_link_cap) == DP_128b_132b_ENCODING)
+ amdgpu_dm_connector->num_modes +=
+ drm_add_modes_noedid(connector, 1920, 1080);
} else {
amdgpu_dm_connector_ddc_get_modes(connector, edid);
amdgpu_dm_connector_add_common_modes(encoder, connector);
@@ -6885,6 +7215,7 @@ void amdgpu_dm_connector_init_helper(struct amdgpu_display_manager *dm,
aconnector->base.funcs->reset(&aconnector->base);
aconnector->connector_id = link_index;
+ aconnector->bl_idx = -1;
aconnector->dc_link = link;
aconnector->base.interlace_allowed = false;
aconnector->base.doublescan_allowed = false;
@@ -6892,6 +7223,9 @@ void amdgpu_dm_connector_init_helper(struct amdgpu_display_manager *dm,
aconnector->base.dpms = DRM_MODE_DPMS_OFF;
aconnector->hpd.hpd = AMDGPU_HPD_NONE; /* not used */
aconnector->audio_inst = -1;
+ aconnector->pack_sdp_v1_3 = false;
+ aconnector->as_type = ADAPTIVE_SYNC_TYPE_NONE;
+ memset(&aconnector->vsdb_info, 0, sizeof(aconnector->vsdb_info));
mutex_init(&aconnector->hpd_lock);
/*
@@ -6933,11 +7267,10 @@ void amdgpu_dm_connector_init_helper(struct amdgpu_display_manager *dm,
adev->mode_info.underscan_vborder_property,
0);
- if (!aconnector->mst_port)
+ if (!aconnector->mst_root)
drm_connector_attach_max_bpc_property(&aconnector->base, 8, 16);
- /* This defaults to the max in the range, but we want 8bpc for non-edp. */
- aconnector->base.state->max_bpc = (connector_type == DRM_MODE_CONNECTOR_eDP) ? 16 : 8;
+ aconnector->base.state->max_bpc = 16;
aconnector->base.state->max_requested_bpc = aconnector->base.state->max_bpc;
if (connector_type == DRM_MODE_CONNECTOR_eDP &&
@@ -6951,13 +7284,11 @@ void amdgpu_dm_connector_init_helper(struct amdgpu_display_manager *dm,
connector_type == DRM_MODE_CONNECTOR_eDP) {
drm_connector_attach_hdr_output_metadata_property(&aconnector->base);
- if (!aconnector->mst_port)
+ if (!aconnector->mst_root)
drm_connector_attach_vrr_capable_property(&aconnector->base);
-#ifdef CONFIG_DRM_AMD_DC_HDCP
if (adev->dm.hdcp_workqueue)
drm_connector_attach_content_protection_property(&aconnector->base, true);
-#endif
}
}
@@ -7035,7 +7366,7 @@ create_i2c(struct ddc_service *ddc_service,
*/
static int amdgpu_dm_connector_init(struct amdgpu_display_manager *dm,
struct amdgpu_dm_connector *aconnector,
- uint32_t link_index,
+ u32 link_index,
struct amdgpu_encoder *aencoder)
{
int res = 0;
@@ -7219,28 +7550,55 @@ is_scaling_state_different(const struct dm_connector_state *dm_state,
return false;
}
-#ifdef CONFIG_DRM_AMD_DC_HDCP
-static bool is_content_protection_different(struct drm_connector_state *state,
- const struct drm_connector_state *old_state,
- const struct drm_connector *connector, struct hdcp_workqueue *hdcp_w)
+static bool is_content_protection_different(struct drm_crtc_state *new_crtc_state,
+ struct drm_crtc_state *old_crtc_state,
+ struct drm_connector_state *new_conn_state,
+ struct drm_connector_state *old_conn_state,
+ const struct drm_connector *connector,
+ struct hdcp_workqueue *hdcp_w)
{
struct amdgpu_dm_connector *aconnector = to_amdgpu_dm_connector(connector);
struct dm_connector_state *dm_con_state = to_dm_connector_state(connector->state);
- /* Handle: Type0/1 change */
- if (old_state->hdcp_content_type != state->hdcp_content_type &&
- state->content_protection != DRM_MODE_CONTENT_PROTECTION_UNDESIRED) {
- state->content_protection = DRM_MODE_CONTENT_PROTECTION_DESIRED;
+ pr_debug("[HDCP_DM] connector->index: %x connect_status: %x dpms: %x\n",
+ connector->index, connector->status, connector->dpms);
+ pr_debug("[HDCP_DM] state protection old: %x new: %x\n",
+ old_conn_state->content_protection, new_conn_state->content_protection);
+
+ if (old_crtc_state)
+ pr_debug("[HDCP_DM] old crtc en: %x a: %x m: %x a-chg: %x c-chg: %x\n",
+ old_crtc_state->enable,
+ old_crtc_state->active,
+ old_crtc_state->mode_changed,
+ old_crtc_state->active_changed,
+ old_crtc_state->connectors_changed);
+
+ if (new_crtc_state)
+ pr_debug("[HDCP_DM] NEW crtc en: %x a: %x m: %x a-chg: %x c-chg: %x\n",
+ new_crtc_state->enable,
+ new_crtc_state->active,
+ new_crtc_state->mode_changed,
+ new_crtc_state->active_changed,
+ new_crtc_state->connectors_changed);
+
+ /* hdcp content type change */
+ if (old_conn_state->hdcp_content_type != new_conn_state->hdcp_content_type &&
+ new_conn_state->content_protection != DRM_MODE_CONTENT_PROTECTION_UNDESIRED) {
+ new_conn_state->content_protection = DRM_MODE_CONTENT_PROTECTION_DESIRED;
+ pr_debug("[HDCP_DM] Type0/1 change %s :true\n", __func__);
return true;
}
- /* CP is being re enabled, ignore this
- *
- * Handles: ENABLED -> DESIRED
- */
- if (old_state->content_protection == DRM_MODE_CONTENT_PROTECTION_ENABLED &&
- state->content_protection == DRM_MODE_CONTENT_PROTECTION_DESIRED) {
- state->content_protection = DRM_MODE_CONTENT_PROTECTION_ENABLED;
+ /* CP is being re enabled, ignore this */
+ if (old_conn_state->content_protection == DRM_MODE_CONTENT_PROTECTION_ENABLED &&
+ new_conn_state->content_protection == DRM_MODE_CONTENT_PROTECTION_DESIRED) {
+ if (new_crtc_state && new_crtc_state->mode_changed) {
+ new_conn_state->content_protection = DRM_MODE_CONTENT_PROTECTION_DESIRED;
+ pr_debug("[HDCP_DM] ENABLED->DESIRED & mode_changed %s :true\n", __func__);
+ return true;
+ }
+ new_conn_state->content_protection = DRM_MODE_CONTENT_PROTECTION_ENABLED;
+ pr_debug("[HDCP_DM] ENABLED -> DESIRED %s :false\n", __func__);
return false;
}
@@ -7248,9 +7606,9 @@ static bool is_content_protection_different(struct drm_connector_state *state,
*
* Handles: UNDESIRED -> ENABLED
*/
- if (old_state->content_protection == DRM_MODE_CONTENT_PROTECTION_UNDESIRED &&
- state->content_protection == DRM_MODE_CONTENT_PROTECTION_ENABLED)
- state->content_protection = DRM_MODE_CONTENT_PROTECTION_DESIRED;
+ if (old_conn_state->content_protection == DRM_MODE_CONTENT_PROTECTION_UNDESIRED &&
+ new_conn_state->content_protection == DRM_MODE_CONTENT_PROTECTION_ENABLED)
+ new_conn_state->content_protection = DRM_MODE_CONTENT_PROTECTION_DESIRED;
/* Stream removed and re-enabled
*
@@ -7260,10 +7618,12 @@ static bool is_content_protection_different(struct drm_connector_state *state,
*
* Handles: DESIRED -> DESIRED (Special case)
*/
- if (!(old_state->crtc && old_state->crtc->enabled) &&
- state->crtc && state->crtc->enabled &&
+ if (!(old_conn_state->crtc && old_conn_state->crtc->enabled) &&
+ new_conn_state->crtc && new_conn_state->crtc->enabled &&
connector->state->content_protection == DRM_MODE_CONTENT_PROTECTION_DESIRED) {
dm_con_state->update_hdcp = false;
+ pr_debug("[HDCP_DM] DESIRED->DESIRED (Stream removed and re-enabled) %s :true\n",
+ __func__);
return true;
}
@@ -7275,35 +7635,41 @@ static bool is_content_protection_different(struct drm_connector_state *state,
*
* Handles: DESIRED -> DESIRED (Special case)
*/
- if (dm_con_state->update_hdcp && state->content_protection == DRM_MODE_CONTENT_PROTECTION_DESIRED &&
- connector->dpms == DRM_MODE_DPMS_ON && aconnector->dc_sink != NULL) {
+ if (dm_con_state->update_hdcp &&
+ new_conn_state->content_protection == DRM_MODE_CONTENT_PROTECTION_DESIRED &&
+ connector->dpms == DRM_MODE_DPMS_ON && aconnector->dc_sink != NULL) {
dm_con_state->update_hdcp = false;
+ pr_debug("[HDCP_DM] DESIRED->DESIRED (Hot-plug, headless s3, dpms) %s :true\n",
+ __func__);
return true;
}
- /*
- * Handles: UNDESIRED -> UNDESIRED
- * DESIRED -> DESIRED
- * ENABLED -> ENABLED
- */
- if (old_state->content_protection == state->content_protection)
+ if (old_conn_state->content_protection == new_conn_state->content_protection) {
+ if (new_conn_state->content_protection >= DRM_MODE_CONTENT_PROTECTION_DESIRED) {
+ if (new_crtc_state && new_crtc_state->mode_changed) {
+ pr_debug("[HDCP_DM] DESIRED->DESIRED or ENABLE->ENABLE mode_change %s :true\n",
+ __func__);
+ return true;
+ }
+ pr_debug("[HDCP_DM] DESIRED->DESIRED & ENABLE->ENABLE %s :false\n",
+ __func__);
+ return false;
+ }
+
+ pr_debug("[HDCP_DM] UNDESIRED->UNDESIRED %s :false\n", __func__);
return false;
+ }
- /*
- * Handles: UNDESIRED -> DESIRED
- * DESIRED -> UNDESIRED
- * ENABLED -> UNDESIRED
- */
- if (state->content_protection != DRM_MODE_CONTENT_PROTECTION_ENABLED)
+ if (new_conn_state->content_protection != DRM_MODE_CONTENT_PROTECTION_ENABLED) {
+ pr_debug("[HDCP_DM] UNDESIRED->DESIRED or DESIRED->UNDESIRED or ENABLED->UNDESIRED %s :true\n",
+ __func__);
return true;
+ }
- /*
- * Handles: DESIRED -> ENABLED
- */
+ pr_debug("[HDCP_DM] DESIRED->ENABLED %s :false\n", __func__);
return false;
}
-#endif
static void remove_stream(struct amdgpu_device *adev,
struct amdgpu_crtc *acrtc,
struct dc_stream_state *stream)
@@ -7345,6 +7711,8 @@ static void update_freesync_state_on_stream(
struct amdgpu_crtc *acrtc = to_amdgpu_crtc(new_crtc_state->base.crtc);
unsigned long flags;
bool pack_sdp_v1_3 = false;
+ struct amdgpu_dm_connector *aconn;
+ enum vrr_packet_type packet_type = PACKET_TYPE_VRR;
if (!new_stream)
return;
@@ -7358,7 +7726,7 @@ static void update_freesync_state_on_stream(
return;
spin_lock_irqsave(&adev_to_drm(adev)->event_lock, flags);
- vrr_params = acrtc->dm_irq_params.vrr_params;
+ vrr_params = acrtc->dm_irq_params.vrr_params;
if (surface) {
mod_freesync_handle_preflip(
@@ -7369,7 +7737,7 @@ static void update_freesync_state_on_stream(
&vrr_params);
if (adev->family < AMDGPU_FAMILY_AI &&
- amdgpu_dm_vrr_active(new_crtc_state)) {
+ amdgpu_dm_crtc_vrr_active(new_crtc_state)) {
mod_freesync_handle_v_update(dm->freesync_module,
new_stream, &vrr_params);
@@ -7380,11 +7748,27 @@ static void update_freesync_state_on_stream(
}
}
+ aconn = (struct amdgpu_dm_connector *)new_stream->dm_stream_context;
+
+ if (aconn && aconn->as_type == FREESYNC_TYPE_PCON_IN_WHITELIST) {
+ pack_sdp_v1_3 = aconn->pack_sdp_v1_3;
+
+ if (aconn->vsdb_info.amd_vsdb_version == 1)
+ packet_type = PACKET_TYPE_FS_V1;
+ else if (aconn->vsdb_info.amd_vsdb_version == 2)
+ packet_type = PACKET_TYPE_FS_V2;
+ else if (aconn->vsdb_info.amd_vsdb_version == 3)
+ packet_type = PACKET_TYPE_FS_V3;
+
+ mod_build_adaptive_sync_infopacket(new_stream, aconn->as_type, NULL,
+ &new_stream->adaptive_sync_infopacket);
+ }
+
mod_freesync_build_vrr_infopacket(
dm->freesync_module,
new_stream,
&vrr_params,
- PACKET_TYPE_VRR,
+ packet_type,
TRANSFER_FUNC_UNKNOWN,
&vrr_infopacket,
pack_sdp_v1_3);
@@ -7398,6 +7782,7 @@ static void update_freesync_state_on_stream(
new_crtc_state->vrr_infopacket = vrr_infopacket;
new_stream->vrr_infopacket = vrr_infopacket;
+ new_stream->allow_freesync = mod_freesync_get_freesync_enabled(&vrr_params);
if (new_crtc_state->freesync_vrr_info_changed)
DRM_DEBUG_KMS("VRR packet update: crtc=%u enabled=%d state=%d",
@@ -7470,8 +7855,8 @@ static void update_stream_irq_parameters(
static void amdgpu_dm_handle_vrr_transition(struct dm_crtc_state *old_state,
struct dm_crtc_state *new_state)
{
- bool old_vrr_active = amdgpu_dm_vrr_active(old_state);
- bool new_vrr_active = amdgpu_dm_vrr_active(new_state);
+ bool old_vrr_active = amdgpu_dm_crtc_vrr_active(old_state);
+ bool new_vrr_active = amdgpu_dm_crtc_vrr_active(new_state);
if (!old_vrr_active && new_vrr_active) {
/* Transition VRR inactive -> active:
@@ -7482,7 +7867,7 @@ static void amdgpu_dm_handle_vrr_transition(struct dm_crtc_state *old_state,
* We also need vupdate irq for the actual core vblank handling
* at end of vblank.
*/
- WARN_ON(dm_set_vupdate_irq(new_state->base.crtc, true) != 0);
+ WARN_ON(amdgpu_dm_crtc_set_vupdate_irq(new_state->base.crtc, true) != 0);
WARN_ON(drm_crtc_vblank_get(new_state->base.crtc) != 0);
DRM_DEBUG_DRIVER("%s: crtc=%u VRR off->on: Get vblank ref\n",
__func__, new_state->base.crtc->base.id);
@@ -7490,7 +7875,7 @@ static void amdgpu_dm_handle_vrr_transition(struct dm_crtc_state *old_state,
/* Transition VRR active -> inactive:
* Allow vblank irq disable again for fixed refresh rate.
*/
- WARN_ON(dm_set_vupdate_irq(new_state->base.crtc, false) != 0);
+ WARN_ON(amdgpu_dm_crtc_set_vupdate_irq(new_state->base.crtc, false) != 0);
drm_crtc_vblank_put(new_state->base.crtc);
DRM_DEBUG_DRIVER("%s: crtc=%u VRR on->off: Drop vblank ref\n",
__func__, new_state->base.crtc->base.id);
@@ -7509,7 +7894,14 @@ static void amdgpu_dm_commit_cursors(struct drm_atomic_state *state)
*/
for_each_old_plane_in_state(state, plane, old_plane_state, i)
if (plane->type == DRM_PLANE_TYPE_CURSOR)
- handle_cursor_update(plane, old_plane_state);
+ amdgpu_dm_plane_handle_cursor_update(plane, old_plane_state);
+}
+
+static inline uint32_t get_mem_type(struct drm_framebuffer *fb)
+{
+ struct amdgpu_bo *abo = gem_to_amdgpu_bo(fb->obj[0]);
+
+ return abo->tbo.resource ? abo->tbo.resource->mem_type : 0;
}
static void amdgpu_dm_commit_planes(struct drm_atomic_state *state,
@@ -7519,8 +7911,8 @@ static void amdgpu_dm_commit_planes(struct drm_atomic_state *state,
struct drm_crtc *pcrtc,
bool wait_for_vblank)
{
- uint32_t i;
- uint64_t timestamp_ns;
+ u32 i;
+ u64 timestamp_ns = ktime_get_ns();
struct drm_plane *plane;
struct drm_plane_state *old_plane_state, *new_plane_state;
struct amdgpu_crtc *acrtc_attach = to_amdgpu_crtc(pcrtc);
@@ -7531,10 +7923,11 @@ static void amdgpu_dm_commit_planes(struct drm_atomic_state *state,
to_dm_crtc_state(drm_atomic_get_old_crtc_state(state, pcrtc));
int planes_count = 0, vpos, hpos;
unsigned long flags;
- uint32_t target_vblank, last_flip_vblank;
- bool vrr_active = amdgpu_dm_vrr_active(acrtc_state);
+ u32 target_vblank, last_flip_vblank;
+ bool vrr_active = amdgpu_dm_crtc_vrr_active(acrtc_state);
bool cursor_update = false;
bool pflip_present = false;
+ bool dirty_rects_changed = false;
struct {
struct dc_surface_update surface_updates[MAX_SURFACES];
struct dc_plane_info plane_infos[MAX_SURFACES];
@@ -7585,6 +7978,8 @@ static void amdgpu_dm_commit_planes(struct drm_atomic_state *state,
continue;
dc_plane = dm_new_plane_state->dc_state;
+ if (!dc_plane)
+ continue;
bundle->surface_updates[planes_count].surface = dc_plane;
if (new_pcrtc_state->color_mgmt_changed) {
@@ -7593,7 +7988,7 @@ static void amdgpu_dm_commit_planes(struct drm_atomic_state *state,
bundle->surface_updates[planes_count].gamut_remap_matrix = &dc_plane->gamut_remap_matrix;
}
- fill_dc_scaling_info(dm->adev, new_plane_state,
+ amdgpu_dm_plane_fill_dc_scaling_info(dm->adev, new_plane_state,
&bundle->scaling_infos[planes_count]);
bundle->surface_updates[planes_count].scaling_info =
@@ -7622,18 +8017,42 @@ static void amdgpu_dm_commit_planes(struct drm_atomic_state *state,
bundle->surface_updates[planes_count].plane_info =
&bundle->plane_infos[planes_count];
- if (acrtc_state->stream->link->psr_settings.psr_feature_enabled)
+ if (acrtc_state->stream->link->psr_settings.psr_feature_enabled) {
fill_dc_dirty_rects(plane, old_plane_state,
new_plane_state, new_crtc_state,
- &bundle->flip_addrs[planes_count]);
+ &bundle->flip_addrs[planes_count],
+ &dirty_rects_changed);
+
+ /*
+ * If the dirty regions changed, PSR-SU need to be disabled temporarily
+ * and enabled it again after dirty regions are stable to avoid video glitch.
+ * PSR-SU will be enabled in vblank_control_worker() if user pause the video
+ * during the PSR-SU was disabled.
+ */
+ if (acrtc_state->stream->link->psr_settings.psr_version >= DC_PSR_VERSION_SU_1 &&
+ acrtc_attach->dm_irq_params.allow_psr_entry &&
+#ifdef CONFIG_DRM_AMD_SECURE_DISPLAY
+ !amdgpu_dm_crc_window_is_activated(acrtc_state->base.crtc) &&
+#endif
+ dirty_rects_changed) {
+ mutex_lock(&dm->dc_lock);
+ acrtc_state->stream->link->psr_settings.psr_dirty_rects_change_timestamp_ns =
+ timestamp_ns;
+ if (acrtc_state->stream->link->psr_settings.psr_allow_active)
+ amdgpu_dm_psr_disable(acrtc_state->stream);
+ mutex_unlock(&dm->dc_lock);
+ }
+ }
/*
* Only allow immediate flips for fast updates that don't
- * change FB pitch, DCC state, rotation or mirroing.
+ * change memory domain, FB pitch, DCC state, rotation or
+ * mirroring.
*/
bundle->flip_addrs[planes_count].flip_immediate =
crtc->state->async_flip &&
- acrtc_state->update_type == UPDATE_TYPE_FAST;
+ acrtc_state->update_type == UPDATE_TYPE_FAST &&
+ get_mem_type(old_plane_state->fb) == get_mem_type(fb);
timestamp_ns = ktime_get_ns();
bundle->flip_addrs[planes_count].flip_timestamp_in_us = div_u64(timestamp_ns, 1000);
@@ -7791,12 +8210,12 @@ static void amdgpu_dm_commit_planes(struct drm_atomic_state *state,
acrtc_state->stream->link->psr_settings.psr_allow_active)
amdgpu_dm_psr_disable(acrtc_state->stream);
- dc_commit_updates_for_stream(dm->dc,
- bundle->surface_updates,
- planes_count,
- acrtc_state->stream,
- &bundle->stream_update,
- dc_state);
+ update_planes_and_stream_adapter(dm->dc,
+ acrtc_state->update_type,
+ planes_count,
+ acrtc_state->stream,
+ &bundle->stream_update,
+ bundle->surface_updates);
/**
* Enable or disable the interrupts on the backend.
@@ -7841,7 +8260,13 @@ static void amdgpu_dm_commit_planes(struct drm_atomic_state *state,
*/
if (acrtc_state->stream->link->psr_settings.psr_version >= DC_PSR_VERSION_SU_1 &&
acrtc_attach->dm_irq_params.allow_psr_entry &&
- !acrtc_state->stream->link->psr_settings.psr_allow_active)
+#ifdef CONFIG_DRM_AMD_SECURE_DISPLAY
+ !amdgpu_dm_crc_window_is_activated(acrtc_state->base.crtc) &&
+#endif
+ !acrtc_state->stream->link->psr_settings.psr_allow_active &&
+ (timestamp_ns -
+ acrtc_state->stream->link->psr_settings.psr_dirty_rects_change_timestamp_ns) >
+ 500000000)
amdgpu_dm_psr_enable(acrtc_state->stream);
} else {
acrtc_attach->dm_irq_params.allow_psr_entry = false;
@@ -7893,7 +8318,7 @@ static void amdgpu_dm_commit_audio(struct drm_device *dev,
if (!drm_atomic_crtc_needs_modeset(new_crtc_state))
continue;
- notify:
+notify:
aconnector = to_amdgpu_dm_connector(connector);
mutex_lock(&adev->dm.audio_lock);
@@ -7966,7 +8391,7 @@ static void amdgpu_dm_atomic_commit_tail(struct drm_atomic_state *state)
struct amdgpu_display_manager *dm = &adev->dm;
struct dm_atomic_state *dm_state;
struct dc_state *dc_state = NULL, *dc_state_temp = NULL;
- uint32_t i, j;
+ u32 i, j;
struct drm_crtc *crtc;
struct drm_crtc_state *old_crtc_state, *new_crtc_state;
unsigned long flags;
@@ -8053,7 +8478,7 @@ static void amdgpu_dm_atomic_commit_tail(struct drm_atomic_state *state)
* aconnector as needed
*/
- if (modeset_required(new_crtc_state, dm_new_crtc_state->stream, dm_old_crtc_state->stream)) {
+ if (amdgpu_dm_crtc_modeset_required(new_crtc_state, dm_new_crtc_state->stream, dm_old_crtc_state->stream)) {
DRM_DEBUG_ATOMIC("Atomic commit: SET crtc id %d: [%p]\n", acrtc->crtc_id, acrtc);
@@ -8108,7 +8533,7 @@ static void amdgpu_dm_atomic_commit_tail(struct drm_atomic_state *state)
dm_enable_per_frame_crtc_master_sync(dc_state);
mutex_lock(&dm->dc_lock);
- WARN_ON(!dc_commit_state(dm->dc, dc_state));
+ WARN_ON(!dc_commit_streams(dm->dc, dc_state->streams, dc_state->stream_count));
/* Allow idle optimization when vblank count is 0 for display off */
if (dm->active_vblank_irq_count == 0)
@@ -8134,16 +8559,72 @@ static void amdgpu_dm_atomic_commit_tail(struct drm_atomic_state *state)
acrtc->otg_inst = status->primary_otg_inst;
}
}
-#ifdef CONFIG_DRM_AMD_DC_HDCP
for_each_oldnew_connector_in_state(state, connector, old_con_state, new_con_state, i) {
struct dm_connector_state *dm_new_con_state = to_dm_connector_state(new_con_state);
struct amdgpu_crtc *acrtc = to_amdgpu_crtc(dm_new_con_state->base.crtc);
struct amdgpu_dm_connector *aconnector = to_amdgpu_dm_connector(connector);
+ if (!adev->dm.hdcp_workqueue)
+ continue;
+
+ pr_debug("[HDCP_DM] -------------- i : %x ----------\n", i);
+
+ if (!connector)
+ continue;
+
+ pr_debug("[HDCP_DM] connector->index: %x connect_status: %x dpms: %x\n",
+ connector->index, connector->status, connector->dpms);
+ pr_debug("[HDCP_DM] state protection old: %x new: %x\n",
+ old_con_state->content_protection, new_con_state->content_protection);
+
+ if (aconnector->dc_sink) {
+ if (aconnector->dc_sink->sink_signal != SIGNAL_TYPE_VIRTUAL &&
+ aconnector->dc_sink->sink_signal != SIGNAL_TYPE_NONE) {
+ pr_debug("[HDCP_DM] pipe_ctx dispname=%s\n",
+ aconnector->dc_sink->edid_caps.display_name);
+ }
+ }
+
new_crtc_state = NULL;
+ old_crtc_state = NULL;
- if (acrtc)
+ if (acrtc) {
new_crtc_state = drm_atomic_get_new_crtc_state(state, &acrtc->base);
+ old_crtc_state = drm_atomic_get_old_crtc_state(state, &acrtc->base);
+ }
+
+ if (old_crtc_state)
+ pr_debug("old crtc en: %x a: %x m: %x a-chg: %x c-chg: %x\n",
+ old_crtc_state->enable,
+ old_crtc_state->active,
+ old_crtc_state->mode_changed,
+ old_crtc_state->active_changed,
+ old_crtc_state->connectors_changed);
+
+ if (new_crtc_state)
+ pr_debug("NEW crtc en: %x a: %x m: %x a-chg: %x c-chg: %x\n",
+ new_crtc_state->enable,
+ new_crtc_state->active,
+ new_crtc_state->mode_changed,
+ new_crtc_state->active_changed,
+ new_crtc_state->connectors_changed);
+ }
+
+ for_each_oldnew_connector_in_state(state, connector, old_con_state, new_con_state, i) {
+ struct dm_connector_state *dm_new_con_state = to_dm_connector_state(new_con_state);
+ struct amdgpu_crtc *acrtc = to_amdgpu_crtc(dm_new_con_state->base.crtc);
+ struct amdgpu_dm_connector *aconnector = to_amdgpu_dm_connector(connector);
+
+ if (!adev->dm.hdcp_workqueue)
+ continue;
+
+ new_crtc_state = NULL;
+ old_crtc_state = NULL;
+
+ if (acrtc) {
+ new_crtc_state = drm_atomic_get_new_crtc_state(state, &acrtc->base);
+ old_crtc_state = drm_atomic_get_old_crtc_state(state, &acrtc->base);
+ }
dm_new_crtc_state = to_dm_crtc_state(new_crtc_state);
@@ -8155,13 +8636,45 @@ static void amdgpu_dm_atomic_commit_tail(struct drm_atomic_state *state)
continue;
}
- if (is_content_protection_different(new_con_state, old_con_state, connector, adev->dm.hdcp_workqueue))
+ if (is_content_protection_different(new_crtc_state, old_crtc_state, new_con_state,
+ old_con_state, connector, adev->dm.hdcp_workqueue)) {
+ /* when display is unplugged from mst hub, connctor will
+ * be destroyed within dm_dp_mst_connector_destroy. connector
+ * hdcp perperties, like type, undesired, desired, enabled,
+ * will be lost. So, save hdcp properties into hdcp_work within
+ * amdgpu_dm_atomic_commit_tail. if the same display is
+ * plugged back with same display index, its hdcp properties
+ * will be retrieved from hdcp_work within dm_dp_mst_get_modes
+ */
+
+ bool enable_encryption = false;
+
+ if (new_con_state->content_protection == DRM_MODE_CONTENT_PROTECTION_DESIRED)
+ enable_encryption = true;
+
+ if (aconnector->dc_link && aconnector->dc_sink &&
+ aconnector->dc_link->type == dc_connection_mst_branch) {
+ struct hdcp_workqueue *hdcp_work = adev->dm.hdcp_workqueue;
+ struct hdcp_workqueue *hdcp_w =
+ &hdcp_work[aconnector->dc_link->link_index];
+
+ hdcp_w->hdcp_content_type[connector->index] =
+ new_con_state->hdcp_content_type;
+ hdcp_w->content_protection[connector->index] =
+ new_con_state->content_protection;
+ }
+
+ if (new_crtc_state && new_crtc_state->mode_changed &&
+ new_con_state->content_protection >= DRM_MODE_CONTENT_PROTECTION_DESIRED)
+ enable_encryption = true;
+
+ DRM_INFO("[HDCP_DM] hdcp_update_display enable_encryption = %x\n", enable_encryption);
+
hdcp_update_display(
adev->dm.hdcp_workqueue, aconnector->dc_link->link_index, aconnector,
- new_con_state->hdcp_content_type,
- new_con_state->content_protection == DRM_MODE_CONTENT_PROTECTION_DESIRED);
+ new_con_state->hdcp_content_type, enable_encryption);
+ }
}
-#endif
/* Handle connector state changes */
for_each_oldnew_connector_in_state(state, connector, old_con_state, new_con_state, i) {
@@ -8238,12 +8751,11 @@ static void amdgpu_dm_atomic_commit_tail(struct drm_atomic_state *state)
mutex_lock(&dm->dc_lock);
- dc_commit_updates_for_stream(dm->dc,
- dummy_updates,
- status->plane_count,
- dm_new_crtc_state->stream,
- &stream_update,
- dc_state);
+ dc_update_planes_and_stream(dm->dc,
+ dummy_updates,
+ status->plane_count,
+ dm_new_crtc_state->stream,
+ &stream_update);
mutex_unlock(&dm->dc_lock);
}
@@ -8257,9 +8769,6 @@ static void amdgpu_dm_atomic_commit_tail(struct drm_atomic_state *state)
struct amdgpu_crtc *acrtc = to_amdgpu_crtc(crtc);
#ifdef CONFIG_DEBUG_FS
enum amdgpu_dm_pipe_crc_source cur_crc_src;
-#if defined(CONFIG_DRM_AMD_SECURE_DISPLAY)
- struct crc_rd_work *crc_rd_wrk;
-#endif
#endif
/* Count number of newly disabled CRTCs for dropping PM refs later. */
if (old_crtc_state->active && !new_crtc_state->active)
@@ -8272,9 +8781,6 @@ static void amdgpu_dm_atomic_commit_tail(struct drm_atomic_state *state)
update_stream_irq_parameters(dm, dm_new_crtc_state);
#ifdef CONFIG_DEBUG_FS
-#if defined(CONFIG_DRM_AMD_SECURE_DISPLAY)
- crc_rd_wrk = dm->crc_rd_wrk;
-#endif
spin_lock_irqsave(&adev_to_drm(adev)->event_lock, flags);
cur_crc_src = acrtc->dm_irq_params.crc_src;
spin_unlock_irqrestore(&adev_to_drm(adev)->event_lock, flags);
@@ -8302,11 +8808,13 @@ static void amdgpu_dm_atomic_commit_tail(struct drm_atomic_state *state)
#if defined(CONFIG_DRM_AMD_SECURE_DISPLAY)
if (amdgpu_dm_crc_window_is_activated(crtc)) {
spin_lock_irqsave(&adev_to_drm(adev)->event_lock, flags);
- acrtc->dm_irq_params.crc_window.update_win = true;
- acrtc->dm_irq_params.crc_window.skip_frame_cnt = 2;
- spin_lock_irq(&crc_rd_wrk->crc_rd_work_lock);
- crc_rd_wrk->crtc = crtc;
- spin_unlock_irq(&crc_rd_wrk->crc_rd_work_lock);
+ acrtc->dm_irq_params.window_param.update_win = true;
+
+ /**
+ * It takes 2 frames for HW to stably generate CRC when
+ * resuming from suspend, so we set skip_frame_cnt 2.
+ */
+ acrtc->dm_irq_params.window_param.skip_frame_cnt = 2;
spin_unlock_irqrestore(&adev_to_drm(adev)->event_lock, flags);
}
#endif
@@ -8597,7 +9105,7 @@ is_timing_unchanged_for_freesync(struct drm_crtc_state *old_crtc_state,
}
static void set_freesync_fixed_config(struct dm_crtc_state *dm_new_crtc_state) {
- uint64_t num, den, res;
+ u64 num, den, res;
struct drm_crtc_state *new_crtc_state = &dm_new_crtc_state->base;
dm_new_crtc_state->freesync_config.state = VRR_STATE_ACTIVE_FIXED;
@@ -8700,7 +9208,8 @@ static int dm_update_crtc_state(struct amdgpu_display_manager *dm,
* TODO: Refactor this function to allow this check to work
* in all conditions.
*/
- if (dm_new_crtc_state->stream &&
+ if (amdgpu_freesync_vid_mode &&
+ dm_new_crtc_state->stream &&
is_timing_unchanged_for_freesync(new_crtc_state, old_crtc_state))
goto skip_modeset;
@@ -8735,7 +9244,14 @@ static int dm_update_crtc_state(struct amdgpu_display_manager *dm,
if (!dm_old_crtc_state->stream)
goto skip_modeset;
- if (dm_new_crtc_state->stream &&
+ /* Unset freesync video if it was active before */
+ if (dm_old_crtc_state->freesync_config.state == VRR_STATE_ACTIVE_FIXED) {
+ dm_new_crtc_state->freesync_config.state = VRR_STATE_INACTIVE;
+ dm_new_crtc_state->freesync_config.fixed_refresh_in_uhz = 0;
+ }
+
+ /* Now check if we should set freesync video mode */
+ if (amdgpu_freesync_vid_mode && dm_new_crtc_state->stream &&
is_timing_unchanged_for_freesync(new_crtc_state,
old_crtc_state)) {
new_crtc_state->mode_changed = false;
@@ -8747,7 +9263,7 @@ static int dm_update_crtc_state(struct amdgpu_display_manager *dm,
set_freesync_fixed_config(dm_new_crtc_state);
goto skip_modeset;
- } else if (aconnector &&
+ } else if (amdgpu_freesync_vid_mode && aconnector &&
is_freesync_video_mode(&new_crtc_state->mode,
aconnector)) {
struct drm_display_mode *high_mode;
@@ -8793,7 +9309,7 @@ static int dm_update_crtc_state(struct amdgpu_display_manager *dm,
if (modereset_required(new_crtc_state))
goto skip_modeset;
- if (modeset_required(new_crtc_state, new_stream,
+ if (amdgpu_dm_crtc_modeset_required(new_crtc_state, new_stream,
dm_old_crtc_state->stream)) {
WARN_ON(dm_new_crtc_state->stream);
@@ -8824,7 +9340,7 @@ static int dm_update_crtc_state(struct amdgpu_display_manager *dm,
skip_modeset:
/* Release extra reference */
if (new_stream)
- dc_stream_release(new_stream);
+ dc_stream_release(new_stream);
/*
* We want to do dc stream updates that do not require a
@@ -9045,7 +9561,8 @@ static int dm_update_plane_state(struct dc *dc,
struct drm_plane_state *old_plane_state,
struct drm_plane_state *new_plane_state,
bool enable,
- bool *lock_and_validation_needed)
+ bool *lock_and_validation_needed,
+ bool *is_top_most_overlay)
{
struct dm_atomic_state *dm_state = NULL;
@@ -9119,8 +9636,9 @@ static int dm_update_plane_state(struct dc *dc,
return -EINVAL;
}
+ if (dm_old_plane_state->dc_state)
+ dc_plane_state_release(dm_old_plane_state->dc_state);
- dc_plane_state_release(dm_old_plane_state->dc_state);
dm_new_plane_state->dc_state = NULL;
*lock_and_validation_needed = true;
@@ -9143,7 +9661,7 @@ static int dm_update_plane_state(struct dc *dc,
if (!needs_reset)
return 0;
- ret = dm_plane_helper_check_state(new_plane_state, new_crtc_state);
+ ret = amdgpu_dm_plane_helper_check_state(new_plane_state, new_crtc_state);
if (ret)
return ret;
@@ -9153,6 +9671,14 @@ static int dm_update_plane_state(struct dc *dc,
if (!dc_new_plane_state)
return -ENOMEM;
+ /* Block top most plane from being a video plane */
+ if (plane->type == DRM_PLANE_TYPE_OVERLAY) {
+ if (is_video_format(new_plane_state->fb->format->format) && *is_top_most_overlay)
+ return -EINVAL;
+ else
+ *is_top_most_overlay = false;
+ }
+
DRM_DEBUG_ATOMIC("Enabling DRM plane: %d on DRM crtc %d\n",
plane->base.id, new_plane_crtc->base.id);
@@ -9281,7 +9807,6 @@ static int dm_check_crtc_cursor(struct drm_atomic_state *state,
return 0;
}
-#if defined(CONFIG_DRM_AMD_DC_DCN)
static int add_affected_mst_dsc_crtcs(struct drm_atomic_state *state, struct drm_crtc *crtc)
{
struct drm_connector *connector;
@@ -9296,7 +9821,7 @@ static int add_affected_mst_dsc_crtcs(struct drm_atomic_state *state, struct drm
continue;
aconnector = to_amdgpu_dm_connector(connector);
- if (!aconnector->port || !aconnector->mst_port)
+ if (!aconnector->mst_output_port || !aconnector->mst_root)
aconnector = NULL;
else
break;
@@ -9305,9 +9830,8 @@ static int add_affected_mst_dsc_crtcs(struct drm_atomic_state *state, struct drm
if (!aconnector)
return 0;
- return drm_dp_mst_add_affected_dsc_crtcs(state, &aconnector->mst_port->mst_mgr);
+ return drm_dp_mst_add_affected_dsc_crtcs(state, &aconnector->mst_root->mst_mgr);
}
-#endif
/**
* amdgpu_dm_atomic_check() - Atomic check implementation for AMDgpu DM.
@@ -9349,10 +9873,11 @@ static int amdgpu_dm_atomic_check(struct drm_device *dev,
enum dc_status status;
int ret, i;
bool lock_and_validation_needed = false;
+ bool is_top_most_overlay = true;
struct dm_crtc_state *dm_old_crtc_state, *dm_new_crtc_state;
-#if defined(CONFIG_DRM_AMD_DC_DCN)
+ struct drm_dp_mst_topology_mgr *mgr;
+ struct drm_dp_mst_topology_state *mst_state;
struct dsc_mst_fairness_vars vars[MAX_PIPES];
-#endif
trace_amdgpu_dm_atomic_check_begin(state);
@@ -9378,12 +9903,11 @@ static int amdgpu_dm_atomic_check(struct drm_device *dev,
goto fail;
}
- if (dm_old_con_state->abm_level !=
- dm_new_con_state->abm_level)
+ if (dm_old_con_state->abm_level != dm_new_con_state->abm_level ||
+ dm_old_con_state->scaling != dm_new_con_state->scaling)
new_crtc_state->connectors_changed = true;
}
-#if defined(CONFIG_DRM_AMD_DC_DCN)
if (dc_resource_is_dsc_encoding_supported(dc)) {
for_each_oldnew_crtc_in_state(state, crtc, old_crtc_state, new_crtc_state, i) {
if (drm_atomic_crtc_needs_modeset(new_crtc_state)) {
@@ -9395,7 +9919,6 @@ static int amdgpu_dm_atomic_check(struct drm_device *dev,
}
}
}
-#endif
for_each_oldnew_crtc_in_state(state, crtc, old_crtc_state, new_crtc_state, i) {
dm_old_crtc_state = to_dm_crtc_state(old_crtc_state);
@@ -9473,7 +9996,11 @@ static int amdgpu_dm_atomic_check(struct drm_device *dev,
* `dcn10_can_pipe_disable_cursor`). By now, all modified planes are in
* atomic state, so call drm helper to normalize zpos.
*/
- drm_atomic_normalize_zpos(dev, state);
+ ret = drm_atomic_normalize_zpos(dev, state);
+ if (ret) {
+ drm_dbg(dev, "drm_atomic_normalize_zpos() failed\n");
+ goto fail;
+ }
/* Remove exiting planes if they are modified */
for_each_oldnew_plane_in_state_reverse(state, plane, old_plane_state, new_plane_state, i) {
@@ -9481,7 +10008,8 @@ static int amdgpu_dm_atomic_check(struct drm_device *dev,
old_plane_state,
new_plane_state,
false,
- &lock_and_validation_needed);
+ &lock_and_validation_needed,
+ &is_top_most_overlay);
if (ret) {
DRM_DEBUG_DRIVER("dm_update_plane_state() failed\n");
goto fail;
@@ -9520,21 +10048,19 @@ static int amdgpu_dm_atomic_check(struct drm_device *dev,
old_plane_state,
new_plane_state,
true,
- &lock_and_validation_needed);
+ &lock_and_validation_needed,
+ &is_top_most_overlay);
if (ret) {
DRM_DEBUG_DRIVER("dm_update_plane_state() failed\n");
goto fail;
}
}
-#if defined(CONFIG_DRM_AMD_DC_DCN)
if (dc_resource_is_dsc_encoding_supported(dc)) {
- if (!pre_validate_dsc(state, &dm_state, vars)) {
- ret = -EINVAL;
+ ret = pre_validate_dsc(state, &dm_state, vars);
+ if (ret != 0)
goto fail;
- }
}
-#endif
/* Run this here since we want to validate the streams we created */
ret = drm_atomic_helper_check_planes(dev, state);
@@ -9600,6 +10126,26 @@ static int amdgpu_dm_atomic_check(struct drm_device *dev,
lock_and_validation_needed = true;
}
+ /* set the slot info for each mst_state based on the link encoding format */
+ for_each_new_mst_mgr_in_state(state, mgr, mst_state, i) {
+ struct amdgpu_dm_connector *aconnector;
+ struct drm_connector *connector;
+ struct drm_connector_list_iter iter;
+ u8 link_coding_cap;
+
+ drm_connector_list_iter_begin(dev, &iter);
+ drm_for_each_connector_iter(connector, &iter) {
+ if (connector->index == mst_state->mgr->conn_base_id) {
+ aconnector = to_amdgpu_dm_connector(connector);
+ link_coding_cap = dc_link_dp_mst_decide_link_encoding_format(aconnector->dc_link);
+ drm_dp_mst_update_slots(mst_state, link_coding_cap);
+
+ break;
+ }
+ }
+ drm_connector_list_iter_end(&iter);
+ }
+
/**
* Streams and planes are reset when there are changes that affect
* bandwidth. Anything that affects bandwidth needs to go through
@@ -9626,8 +10172,8 @@ static int amdgpu_dm_atomic_check(struct drm_device *dev,
goto fail;
}
-#if defined(CONFIG_DRM_AMD_DC_DCN)
- if (!compute_mst_dsc_configs_for_state(state, dm_state->context, vars)) {
+ ret = compute_mst_dsc_configs_for_state(state, dm_state->context, vars);
+ if (ret) {
DRM_DEBUG_DRIVER("compute_mst_dsc_configs_for_state() failed\n");
ret = -EINVAL;
goto fail;
@@ -9638,7 +10184,6 @@ static int amdgpu_dm_atomic_check(struct drm_device *dev,
DRM_DEBUG_DRIVER("dm_update_mst_vcpi_slots_for_dsc() failed\n");
goto fail;
}
-#endif
/*
* Perform validation of MST topology in the state:
@@ -9734,7 +10279,7 @@ fail:
static bool is_dp_capable_without_timing_msa(struct dc *dc,
struct amdgpu_dm_connector *amdgpu_dm_connector)
{
- uint8_t dpcd_data;
+ u8 dpcd_data;
bool capable = false;
if (amdgpu_dm_connector->dc_link &&
@@ -9753,7 +10298,7 @@ static bool is_dp_capable_without_timing_msa(struct dc *dc,
static bool dm_edid_parser_send_cea(struct amdgpu_display_manager *dm,
unsigned int offset,
unsigned int total_length,
- uint8_t *data,
+ u8 *data,
unsigned int length,
struct amdgpu_hdmi_vsdb_info *vsdb)
{
@@ -9808,7 +10353,7 @@ static bool dm_edid_parser_send_cea(struct amdgpu_display_manager *dm,
}
static bool parse_edid_cea_dmcu(struct amdgpu_display_manager *dm,
- uint8_t *edid_ext, int len,
+ u8 *edid_ext, int len,
struct amdgpu_hdmi_vsdb_info *vsdb_info)
{
int i;
@@ -9849,7 +10394,7 @@ static bool parse_edid_cea_dmcu(struct amdgpu_display_manager *dm,
}
static bool parse_edid_cea_dmub(struct amdgpu_display_manager *dm,
- uint8_t *edid_ext, int len,
+ u8 *edid_ext, int len,
struct amdgpu_hdmi_vsdb_info *vsdb_info)
{
int i;
@@ -9865,21 +10410,25 @@ static bool parse_edid_cea_dmub(struct amdgpu_display_manager *dm,
}
static bool parse_edid_cea(struct amdgpu_dm_connector *aconnector,
- uint8_t *edid_ext, int len,
+ u8 *edid_ext, int len,
struct amdgpu_hdmi_vsdb_info *vsdb_info)
{
struct amdgpu_device *adev = drm_to_adev(aconnector->base.dev);
+ bool ret;
+ mutex_lock(&adev->dm.dc_lock);
if (adev->dm.dmub_srv)
- return parse_edid_cea_dmub(&adev->dm, edid_ext, len, vsdb_info);
+ ret = parse_edid_cea_dmub(&adev->dm, edid_ext, len, vsdb_info);
else
- return parse_edid_cea_dmcu(&adev->dm, edid_ext, len, vsdb_info);
+ ret = parse_edid_cea_dmcu(&adev->dm, edid_ext, len, vsdb_info);
+ mutex_unlock(&adev->dm.dc_lock);
+ return ret;
}
static int parse_hdmi_amd_vsdb(struct amdgpu_dm_connector *aconnector,
struct edid *edid, struct amdgpu_hdmi_vsdb_info *vsdb_info)
{
- uint8_t *edid_ext = NULL;
+ u8 *edid_ext = NULL;
int i;
bool valid_vsdb_found = false;
@@ -9934,6 +10483,7 @@ void amdgpu_dm_update_freesync_caps(struct drm_connector *connector,
struct amdgpu_device *adev = drm_to_adev(dev);
struct amdgpu_hdmi_vsdb_info vsdb_info = {0};
bool freesync_capable = false;
+ enum adaptive_sync_type as_type = ADAPTIVE_SYNC_TYPE_NONE;
if (!connector->state) {
DRM_ERROR("%s - Connector has no state", __func__);
@@ -10026,6 +10576,26 @@ void amdgpu_dm_update_freesync_caps(struct drm_connector *connector,
}
}
+ as_type = dm_get_adaptive_sync_support_type(amdgpu_dm_connector->dc_link);
+
+ if (as_type == FREESYNC_TYPE_PCON_IN_WHITELIST) {
+ i = parse_hdmi_amd_vsdb(amdgpu_dm_connector, edid, &vsdb_info);
+ if (i >= 0 && vsdb_info.freesync_supported && vsdb_info.amd_vsdb_version > 0) {
+
+ amdgpu_dm_connector->pack_sdp_v1_3 = true;
+ amdgpu_dm_connector->as_type = as_type;
+ amdgpu_dm_connector->vsdb_info = vsdb_info;
+
+ amdgpu_dm_connector->min_vfreq = vsdb_info.min_refresh_rate_hz;
+ amdgpu_dm_connector->max_vfreq = vsdb_info.max_refresh_rate_hz;
+ if (amdgpu_dm_connector->max_vfreq - amdgpu_dm_connector->min_vfreq > 10)
+ freesync_capable = true;
+
+ connector->display_info.monitor_range.min_vfreq = vsdb_info.min_refresh_rate_hz;
+ connector->display_info.monitor_range.max_vfreq = vsdb_info.max_refresh_rate_hz;
+ }
+ }
+
update:
if (dm_con_state)
dm_con_state->freesync_capable = freesync_capable;
@@ -10055,7 +10625,7 @@ void amdgpu_dm_trigger_timing_sync(struct drm_device *dev)
}
void dm_write_reg_func(const struct dc_context *ctx, uint32_t address,
- uint32_t value, const char *func_name)
+ u32 value, const char *func_name)
{
#ifdef DM_CHECK_ADDR_0
if (address == 0) {
@@ -10070,7 +10640,7 @@ void dm_write_reg_func(const struct dc_context *ctx, uint32_t address,
uint32_t dm_read_reg_func(const struct dc_context *ctx, uint32_t address,
const char *func_name)
{
- uint32_t value;
+ u32 value;
#ifdef DM_CHECK_ADDR_0
if (address == 0) {
DC_ERR("invalid register read; address = 0\n");
@@ -10092,79 +10662,95 @@ uint32_t dm_read_reg_func(const struct dc_context *ctx, uint32_t address,
return value;
}
-static int amdgpu_dm_set_dmub_async_sync_status(bool is_cmd_aux,
- struct dc_context *ctx,
- uint8_t status_type,
- uint32_t *operation_result)
+int amdgpu_dm_process_dmub_aux_transfer_sync(
+ struct dc_context *ctx,
+ unsigned int link_index,
+ struct aux_payload *payload,
+ enum aux_return_code_type *operation_result)
{
struct amdgpu_device *adev = ctx->driver_context;
- int return_status = -1;
struct dmub_notification *p_notify = adev->dm.dmub_notify;
+ int ret = -1;
- if (is_cmd_aux) {
- if (status_type == DMUB_ASYNC_TO_SYNC_ACCESS_SUCCESS) {
- return_status = p_notify->aux_reply.length;
- *operation_result = p_notify->result;
- } else if (status_type == DMUB_ASYNC_TO_SYNC_ACCESS_TIMEOUT) {
- *operation_result = AUX_RET_ERROR_TIMEOUT;
- } else if (status_type == DMUB_ASYNC_TO_SYNC_ACCESS_FAIL) {
- *operation_result = AUX_RET_ERROR_ENGINE_ACQUIRE;
- } else {
- *operation_result = AUX_RET_ERROR_UNKNOWN;
+ mutex_lock(&adev->dm.dpia_aux_lock);
+ if (!dc_process_dmub_aux_transfer_async(ctx->dc, link_index, payload)) {
+ *operation_result = AUX_RET_ERROR_ENGINE_ACQUIRE;
+ goto out;
+ }
+
+ if (!wait_for_completion_timeout(&adev->dm.dmub_aux_transfer_done, 10 * HZ)) {
+ DRM_ERROR("wait_for_completion_timeout timeout!");
+ *operation_result = AUX_RET_ERROR_TIMEOUT;
+ goto out;
+ }
+
+ if (p_notify->result != AUX_RET_SUCCESS) {
+ /*
+ * Transient states before tunneling is enabled could
+ * lead to this error. We can ignore this for now.
+ */
+ if (p_notify->result != AUX_RET_ERROR_PROTOCOL_ERROR) {
+ DRM_WARN("DPIA AUX failed on 0x%x(%d), error %d\n",
+ payload->address, payload->length,
+ p_notify->result);
}
- } else {
- if (status_type == DMUB_ASYNC_TO_SYNC_ACCESS_SUCCESS) {
- return_status = 0;
- *operation_result = p_notify->sc_status;
- } else {
- *operation_result = SET_CONFIG_UNKNOWN_ERROR;
+ *operation_result = AUX_RET_ERROR_INVALID_REPLY;
+ goto out;
+ }
+
+
+ payload->reply[0] = adev->dm.dmub_notify->aux_reply.command;
+ if (!payload->write && p_notify->aux_reply.length &&
+ (payload->reply[0] == AUX_TRANSACTION_REPLY_AUX_ACK)) {
+
+ if (payload->length != p_notify->aux_reply.length) {
+ DRM_WARN("invalid read length %d from DPIA AUX 0x%x(%d)!\n",
+ p_notify->aux_reply.length,
+ payload->address, payload->length);
+ *operation_result = AUX_RET_ERROR_INVALID_REPLY;
+ goto out;
}
+
+ memcpy(payload->data, p_notify->aux_reply.data,
+ p_notify->aux_reply.length);
}
- return return_status;
+ /* success */
+ ret = p_notify->aux_reply.length;
+ *operation_result = p_notify->result;
+out:
+ reinit_completion(&adev->dm.dmub_aux_transfer_done);
+ mutex_unlock(&adev->dm.dpia_aux_lock);
+ return ret;
}
-int amdgpu_dm_process_dmub_aux_transfer_sync(bool is_cmd_aux, struct dc_context *ctx,
- unsigned int link_index, void *cmd_payload, void *operation_result)
+int amdgpu_dm_process_dmub_set_config_sync(
+ struct dc_context *ctx,
+ unsigned int link_index,
+ struct set_config_cmd_payload *payload,
+ enum set_config_status *operation_result)
{
struct amdgpu_device *adev = ctx->driver_context;
- int ret = 0;
+ bool is_cmd_complete;
+ int ret;
- if (is_cmd_aux) {
- dc_process_dmub_aux_transfer_async(ctx->dc,
- link_index, (struct aux_payload *)cmd_payload);
- } else if (dc_process_dmub_set_config_async(ctx->dc, link_index,
- (struct set_config_cmd_payload *)cmd_payload,
- adev->dm.dmub_notify)) {
- return amdgpu_dm_set_dmub_async_sync_status(is_cmd_aux,
- ctx, DMUB_ASYNC_TO_SYNC_ACCESS_SUCCESS,
- (uint32_t *)operation_result);
- }
+ mutex_lock(&adev->dm.dpia_aux_lock);
+ is_cmd_complete = dc_process_dmub_set_config_async(ctx->dc,
+ link_index, payload, adev->dm.dmub_notify);
- ret = wait_for_completion_timeout(&adev->dm.dmub_aux_transfer_done, 10 * HZ);
- if (ret == 0) {
+ if (is_cmd_complete || wait_for_completion_timeout(&adev->dm.dmub_aux_transfer_done, 10 * HZ)) {
+ ret = 0;
+ *operation_result = adev->dm.dmub_notify->sc_status;
+ } else {
DRM_ERROR("wait_for_completion_timeout timeout!");
- return amdgpu_dm_set_dmub_async_sync_status(is_cmd_aux,
- ctx, DMUB_ASYNC_TO_SYNC_ACCESS_TIMEOUT,
- (uint32_t *)operation_result);
+ ret = -1;
+ *operation_result = SET_CONFIG_UNKNOWN_ERROR;
}
- if (is_cmd_aux) {
- if (adev->dm.dmub_notify->result == AUX_RET_SUCCESS) {
- struct aux_payload *payload = (struct aux_payload *)cmd_payload;
-
- payload->reply[0] = adev->dm.dmub_notify->aux_reply.command;
- if (!payload->write && adev->dm.dmub_notify->aux_reply.length &&
- payload->reply[0] == AUX_TRANSACTION_REPLY_AUX_ACK) {
- memcpy(payload->data, adev->dm.dmub_notify->aux_reply.data,
- adev->dm.dmub_notify->aux_reply.length);
- }
- }
- }
-
- return amdgpu_dm_set_dmub_async_sync_status(is_cmd_aux,
- ctx, DMUB_ASYNC_TO_SYNC_ACCESS_SUCCESS,
- (uint32_t *)operation_result);
+ if (!is_cmd_complete)
+ reinit_completion(&adev->dm.dmub_aux_transfer_done);
+ mutex_unlock(&adev->dm.dpia_aux_lock);
+ return ret;
}
/*
@@ -10176,8 +10762,8 @@ int amdgpu_dm_process_dmub_aux_transfer_sync(bool is_cmd_aux, struct dc_context
*/
bool check_seamless_boot_capability(struct amdgpu_device *adev)
{
- switch (adev->asic_type) {
- case CHIP_VANGOGH:
+ switch (adev->ip_versions[DCE_HWIP][0]) {
+ case IP_VERSION(3, 0, 1):
if (!adev->mman.keep_stolen_vga_memory)
return true;
break;
diff --git a/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm.h b/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm.h
index b5ce15c43bcc..2e2413fd73a4 100644
--- a/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm.h
+++ b/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm.h
@@ -31,6 +31,7 @@
#include <drm/drm_connector.h>
#include <drm/drm_crtc.h>
#include <drm/drm_plane.h>
+#include "link_service_types.h"
/*
* This file contains the definition for amdgpu_display_manager
@@ -51,12 +52,6 @@
#define AMDGPU_DMUB_NOTIFICATION_MAX 5
/*
- * DMUB Async to Sync Mechanism Status
- */
-#define DMUB_ASYNC_TO_SYNC_ACCESS_FAIL 1
-#define DMUB_ASYNC_TO_SYNC_ACCESS_TIMEOUT 2
-#define DMUB_ASYNC_TO_SYNC_ACCESS_SUCCESS 3
-/*
#include "include/amdgpu_dal_power_if.h"
#include "amdgpu_dm_irq.h"
*/
@@ -64,8 +59,11 @@
#include "irq_types.h"
#include "signal_types.h"
#include "amdgpu_dm_crc.h"
+#include "mod_info_packet.h"
struct aux_payload;
+struct set_config_cmd_payload;
enum aux_return_code_type;
+enum set_config_status;
/* Forward declarations */
struct amdgpu_device;
@@ -366,13 +364,6 @@ struct amdgpu_display_manager {
struct mutex audio_lock;
/**
- * @vblank_lock:
- *
- * Guards access to deferred vblank work state.
- */
- spinlock_t vblank_lock;
-
- /**
* @audio_component:
*
* Used to notify ELD changes to sound driver.
@@ -470,9 +461,7 @@ struct amdgpu_display_manager {
struct amdgpu_dm_backlight_caps backlight_caps[AMDGPU_DM_MAX_NUM_EDP];
struct mod_freesync *freesync_module;
-#ifdef CONFIG_DRM_AMD_DC_HDCP
struct hdcp_workqueue *hdcp_workqueue;
-#endif
/**
* @vblank_control_workqueue:
@@ -505,11 +494,12 @@ struct amdgpu_display_manager {
#if defined(CONFIG_DRM_AMD_SECURE_DISPLAY)
/**
- * @crc_rd_wrk:
+ * @secure_display_ctxs:
*
- * Work to be executed in a separate thread to communicate with PSP.
+ * Store the ROI information and the work_struct to command dmub and psp for
+ * all crtcs.
*/
- struct crc_rd_work *crc_rd_wrk;
+ struct secure_display_context *secure_display_ctxs;
#endif
/**
* @hpd_rx_offload_wq:
@@ -555,6 +545,13 @@ struct amdgpu_display_manager {
* occurred on certain intel platform
*/
bool aux_hpd_discon_quirk;
+
+ /**
+ * @dpia_aux_lock:
+ *
+ * Guards access to DPIA AUX
+ */
+ struct mutex dpia_aux_lock;
};
enum dsc_clock_force_state {
@@ -579,10 +576,41 @@ enum mst_progress_status {
MST_CLEAR_ALLOCATED_PAYLOAD = BIT(3),
};
+/**
+ * struct amdgpu_hdmi_vsdb_info - Keep track of the VSDB info
+ *
+ * AMDGPU supports FreeSync over HDMI by using the VSDB section, and this
+ * struct is useful to keep track of the display-specific information about
+ * FreeSync.
+ */
+struct amdgpu_hdmi_vsdb_info {
+ /**
+ * @amd_vsdb_version: Vendor Specific Data Block Version, should be
+ * used to determine which Vendor Specific InfoFrame (VSIF) to send.
+ */
+ unsigned int amd_vsdb_version;
+
+ /**
+ * @freesync_supported: FreeSync Supported.
+ */
+ bool freesync_supported;
+
+ /**
+ * @min_refresh_rate_hz: FreeSync Minimum Refresh Rate in Hz.
+ */
+ unsigned int min_refresh_rate_hz;
+
+ /**
+ * @max_refresh_rate_hz: FreeSync Maximum Refresh Rate in Hz
+ */
+ unsigned int max_refresh_rate_hz;
+};
+
struct amdgpu_dm_connector {
struct drm_connector base;
uint32_t connector_id;
+ int bl_idx;
/* we need to mind the EDID between detect
and get modes due to analog/digital/tvencoder */
@@ -607,8 +635,8 @@ struct amdgpu_dm_connector {
/* DM only */
struct drm_dp_mst_topology_mgr mst_mgr;
struct amdgpu_dm_dp_aux dm_dp_aux;
- struct drm_dp_mst_port *port;
- struct amdgpu_dm_connector *mst_port;
+ struct drm_dp_mst_port *mst_output_port;
+ struct amdgpu_dm_connector *mst_root;
struct drm_dp_aux *dsc_aux;
/* TODO see if we can merge with ddc_bus or make a dm_connector */
struct amdgpu_i2c_adapter *i2c;
@@ -647,6 +675,15 @@ struct amdgpu_dm_connector {
/* Record progress status of mst*/
uint8_t mst_status;
+
+ /* Automated testing */
+ bool timing_changed;
+ struct dc_crtc_timing *timing_requested;
+
+ /* Adaptive Sync */
+ bool pack_sdp_v1_3;
+ enum adaptive_sync_type as_type;
+ struct amdgpu_hdmi_vsdb_info vsdb_info;
};
static inline void amdgpu_dm_set_mst_status(uint8_t *status,
@@ -709,45 +746,12 @@ struct dm_connector_state {
uint8_t underscan_hborder;
bool underscan_enable;
bool freesync_capable;
-#ifdef CONFIG_DRM_AMD_DC_HDCP
bool update_hdcp;
-#endif
uint8_t abm_level;
int vcpi_slots;
uint64_t pbn;
};
-/**
- * struct amdgpu_hdmi_vsdb_info - Keep track of the VSDB info
- *
- * AMDGPU supports FreeSync over HDMI by using the VSDB section, and this
- * struct is useful to keep track of the display-specific information about
- * FreeSync.
- */
-struct amdgpu_hdmi_vsdb_info {
- /**
- * @amd_vsdb_version: Vendor Specific Data Block Version, should be
- * used to determine which Vendor Specific InfoFrame (VSIF) to send.
- */
- unsigned int amd_vsdb_version;
-
- /**
- * @freesync_supported: FreeSync Supported.
- */
- bool freesync_supported;
-
- /**
- * @min_refresh_rate_hz: FreeSync Minimum Refresh Rate in Hz.
- */
- unsigned int min_refresh_rate_hz;
-
- /**
- * @max_refresh_rate_hz: FreeSync Maximum Refresh Rate in Hz
- */
- unsigned int max_refresh_rate_hz;
-};
-
-
#define to_dm_connector_state(x)\
container_of((x), struct dm_connector_state, base)
@@ -798,9 +802,11 @@ void amdgpu_dm_update_connector_after_detect(
extern const struct drm_encoder_helper_funcs amdgpu_dm_encoder_helper_funcs;
-int amdgpu_dm_process_dmub_aux_transfer_sync(bool is_cmd_aux,
- struct dc_context *ctx, unsigned int link_index,
- void *payload, void *operation_result);
+int amdgpu_dm_process_dmub_aux_transfer_sync(struct dc_context *ctx, unsigned int link_index,
+ struct aux_payload *payload, enum aux_return_code_type *operation_result);
+
+int amdgpu_dm_process_dmub_set_config_sync(struct dc_context *ctx, unsigned int link_index,
+ struct set_config_cmd_payload *payload, enum set_config_status *operation_result);
bool check_seamless_boot_capability(struct amdgpu_device *adev);
diff --git a/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_crc.c b/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_crc.c
index 8a441a22c46e..27711743c22c 100644
--- a/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_crc.c
+++ b/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_crc.c
@@ -89,50 +89,85 @@ static void amdgpu_dm_set_crc_window_default(struct drm_crtc *crtc)
struct amdgpu_crtc *acrtc = to_amdgpu_crtc(crtc);
spin_lock_irq(&drm_dev->event_lock);
- acrtc->dm_irq_params.crc_window.x_start = 0;
- acrtc->dm_irq_params.crc_window.y_start = 0;
- acrtc->dm_irq_params.crc_window.x_end = 0;
- acrtc->dm_irq_params.crc_window.y_end = 0;
- acrtc->dm_irq_params.crc_window.activated = false;
- acrtc->dm_irq_params.crc_window.update_win = false;
- acrtc->dm_irq_params.crc_window.skip_frame_cnt = 0;
+ acrtc->dm_irq_params.window_param.x_start = 0;
+ acrtc->dm_irq_params.window_param.y_start = 0;
+ acrtc->dm_irq_params.window_param.x_end = 0;
+ acrtc->dm_irq_params.window_param.y_end = 0;
+ acrtc->dm_irq_params.window_param.activated = false;
+ acrtc->dm_irq_params.window_param.update_win = false;
+ acrtc->dm_irq_params.window_param.skip_frame_cnt = 0;
spin_unlock_irq(&drm_dev->event_lock);
}
static void amdgpu_dm_crtc_notify_ta_to_read(struct work_struct *work)
{
- struct crc_rd_work *crc_rd_wrk;
- struct amdgpu_device *adev;
+ struct secure_display_context *secure_display_ctx;
struct psp_context *psp;
- struct securedisplay_cmd *securedisplay_cmd;
+ struct ta_securedisplay_cmd *securedisplay_cmd;
struct drm_crtc *crtc;
- uint8_t phy_id;
+ struct dc_stream_state *stream;
+ uint8_t phy_inst;
int ret;
- crc_rd_wrk = container_of(work, struct crc_rd_work, notify_ta_work);
- spin_lock_irq(&crc_rd_wrk->crc_rd_work_lock);
- crtc = crc_rd_wrk->crtc;
+ secure_display_ctx = container_of(work, struct secure_display_context, notify_ta_work);
+ crtc = secure_display_ctx->crtc;
if (!crtc) {
- spin_unlock_irq(&crc_rd_wrk->crc_rd_work_lock);
return;
}
- adev = drm_to_adev(crtc->dev);
- psp = &adev->psp;
- phy_id = crc_rd_wrk->phy_inst;
- spin_unlock_irq(&crc_rd_wrk->crc_rd_work_lock);
+ psp = &drm_to_adev(crtc->dev)->psp;
+
+ if (!psp->securedisplay_context.context.initialized) {
+ DRM_DEBUG_DRIVER("Secure Display fails to notify PSP TA\n");
+ return;
+ }
+
+ stream = to_amdgpu_crtc(crtc)->dm_irq_params.stream;
+ phy_inst = stream->link->link_enc_hw_inst;
+
+ /* need lock for multiple crtcs to use the command buffer */
+ mutex_lock(&psp->securedisplay_context.mutex);
psp_prep_securedisplay_cmd_buf(psp, &securedisplay_cmd,
TA_SECUREDISPLAY_COMMAND__SEND_ROI_CRC);
- securedisplay_cmd->securedisplay_in_message.send_roi_crc.phy_id =
- phy_id;
+
+ securedisplay_cmd->securedisplay_in_message.send_roi_crc.phy_id = phy_inst;
+
+ /* PSP TA is expected to finish data transmission over I2C within current frame,
+ * even there are up to 4 crtcs request to send in this frame.
+ */
ret = psp_securedisplay_invoke(psp, TA_SECUREDISPLAY_COMMAND__SEND_ROI_CRC);
+
if (!ret) {
if (securedisplay_cmd->status != TA_SECUREDISPLAY_STATUS__SUCCESS) {
psp_securedisplay_parse_resp_status(psp, securedisplay_cmd->status);
}
}
+
+ mutex_unlock(&psp->securedisplay_context.mutex);
+}
+
+static void
+amdgpu_dm_forward_crc_window(struct work_struct *work)
+{
+ struct secure_display_context *secure_display_ctx;
+ struct amdgpu_display_manager *dm;
+ struct drm_crtc *crtc;
+ struct dc_stream_state *stream;
+
+ secure_display_ctx = container_of(work, struct secure_display_context, forward_roi_work);
+ crtc = secure_display_ctx->crtc;
+
+ if (!crtc)
+ return;
+
+ dm = &drm_to_adev(crtc->dev)->dm;
+ stream = to_amdgpu_crtc(crtc)->dm_irq_params.stream;
+
+ mutex_lock(&dm->dc_lock);
+ dc_stream_forward_crc_window(stream, &secure_display_ctx->rect, false);
+ mutex_unlock(&dm->dc_lock);
}
bool amdgpu_dm_crc_window_is_activated(struct drm_crtc *crtc)
@@ -142,7 +177,7 @@ bool amdgpu_dm_crc_window_is_activated(struct drm_crtc *crtc)
bool ret = false;
spin_lock_irq(&drm_dev->event_lock);
- ret = acrtc->dm_irq_params.crc_window.activated;
+ ret = acrtc->dm_irq_params.window_param.activated;
spin_unlock_irq(&drm_dev->event_lock);
return ret;
@@ -169,6 +204,9 @@ int amdgpu_dm_crtc_configure_crc_source(struct drm_crtc *crtc,
struct dm_crtc_state *dm_crtc_state,
enum amdgpu_dm_pipe_crc_source source)
{
+#if defined(CONFIG_DRM_AMD_SECURE_DISPLAY)
+ int i;
+#endif
struct amdgpu_device *adev = drm_to_adev(crtc->dev);
struct dc_stream_state *stream_state = dm_crtc_state->stream;
bool enable = amdgpu_dm_is_valid_crc_source(source);
@@ -180,19 +218,18 @@ int amdgpu_dm_crtc_configure_crc_source(struct drm_crtc *crtc,
mutex_lock(&adev->dm.dc_lock);
- /* Enable CRTC CRC generation if necessary. */
+ /* Enable or disable CRTC CRC generation */
if (dm_is_crc_source_crtc(source) || source == AMDGPU_DM_PIPE_CRC_SOURCE_NONE) {
#if defined(CONFIG_DRM_AMD_SECURE_DISPLAY)
+ /* Disable secure_display if it was enabled */
if (!enable) {
- if (adev->dm.crc_rd_wrk) {
- flush_work(&adev->dm.crc_rd_wrk->notify_ta_work);
- spin_lock_irq(&adev->dm.crc_rd_wrk->crc_rd_work_lock);
- if (adev->dm.crc_rd_wrk->crtc == crtc) {
- dc_stream_stop_dmcu_crc_win_update(stream_state->ctx->dc,
- dm_crtc_state->stream);
- adev->dm.crc_rd_wrk->crtc = NULL;
+ for (i = 0; i < adev->mode_info.num_crtc; i++) {
+ if (adev->dm.secure_display_ctxs[i].crtc == crtc) {
+ /* stop ROI update on this crtc */
+ flush_work(&adev->dm.secure_display_ctxs[i].notify_ta_work);
+ flush_work(&adev->dm.secure_display_ctxs[i].forward_roi_work);
+ dc_stream_forward_crc_window(stream_state, NULL, true);
}
- spin_unlock_irq(&adev->dm.crc_rd_wrk->crc_rd_work_lock);
}
}
#endif
@@ -307,7 +344,7 @@ int amdgpu_dm_crtc_set_crc_source(struct drm_crtc *crtc, const char *src_name)
goto cleanup;
}
- aux = (aconn->port) ? &aconn->port->aux : &aconn->dm_dp_aux.aux;
+ aux = (aconn->mst_output_port) ? &aconn->mst_output_port->aux : &aconn->dm_dp_aux.aux;
if (!aux) {
DRM_DEBUG_DRIVER("No dp aux for amd connector\n");
@@ -325,6 +362,7 @@ int amdgpu_dm_crtc_set_crc_source(struct drm_crtc *crtc, const char *src_name)
}
#if defined(CONFIG_DRM_AMD_SECURE_DISPLAY)
+ /* Reset secure_display when we change crc source from debugfs */
amdgpu_dm_set_crc_window_default(crtc);
#endif
@@ -434,19 +472,12 @@ void amdgpu_dm_crtc_handle_crc_irq(struct drm_crtc *crtc)
#if defined(CONFIG_DRM_AMD_SECURE_DISPLAY)
void amdgpu_dm_crtc_handle_crc_window_irq(struct drm_crtc *crtc)
{
- struct dc_stream_state *stream_state;
struct drm_device *drm_dev = NULL;
enum amdgpu_dm_pipe_crc_source cur_crc_src;
struct amdgpu_crtc *acrtc = NULL;
struct amdgpu_device *adev = NULL;
- struct crc_rd_work *crc_rd_wrk = NULL;
- struct crc_params *crc_window = NULL, tmp_window;
- unsigned long flags1, flags2;
- struct crtc_position position;
- uint32_t v_blank;
- uint32_t v_back_porch;
- uint32_t crc_window_latch_up_line;
- struct dc_crtc_timing *timing_out;
+ struct secure_display_context *secure_display_ctx = NULL;
+ unsigned long flags1;
if (crtc == NULL)
return;
@@ -456,95 +487,76 @@ void amdgpu_dm_crtc_handle_crc_window_irq(struct drm_crtc *crtc)
drm_dev = crtc->dev;
spin_lock_irqsave(&drm_dev->event_lock, flags1);
- stream_state = acrtc->dm_irq_params.stream;
cur_crc_src = acrtc->dm_irq_params.crc_src;
- timing_out = &stream_state->timing;
/* Early return if CRC capture is not enabled. */
- if (!amdgpu_dm_is_valid_crc_source(cur_crc_src))
+ if (!amdgpu_dm_is_valid_crc_source(cur_crc_src) ||
+ !dm_is_crc_source_crtc(cur_crc_src))
goto cleanup;
- if (dm_is_crc_source_crtc(cur_crc_src)) {
- if (acrtc->dm_irq_params.crc_window.activated) {
- if (acrtc->dm_irq_params.crc_window.update_win) {
- if (acrtc->dm_irq_params.crc_window.skip_frame_cnt) {
- acrtc->dm_irq_params.crc_window.skip_frame_cnt -= 1;
- goto cleanup;
- }
- crc_window = &tmp_window;
-
- tmp_window.windowa_x_start =
- acrtc->dm_irq_params.crc_window.x_start;
- tmp_window.windowa_y_start =
- acrtc->dm_irq_params.crc_window.y_start;
- tmp_window.windowa_x_end =
- acrtc->dm_irq_params.crc_window.x_end;
- tmp_window.windowa_y_end =
- acrtc->dm_irq_params.crc_window.y_end;
- tmp_window.windowb_x_start =
- acrtc->dm_irq_params.crc_window.x_start;
- tmp_window.windowb_y_start =
- acrtc->dm_irq_params.crc_window.y_start;
- tmp_window.windowb_x_end =
- acrtc->dm_irq_params.crc_window.x_end;
- tmp_window.windowb_y_end =
- acrtc->dm_irq_params.crc_window.y_end;
-
- dc_stream_forward_dmcu_crc_window(stream_state->ctx->dc,
- stream_state, crc_window);
-
- acrtc->dm_irq_params.crc_window.update_win = false;
-
- dc_stream_get_crtc_position(stream_state->ctx->dc, &stream_state, 1,
- &position.vertical_count,
- &position.nominal_vcount);
-
- v_blank = timing_out->v_total - timing_out->v_border_top -
- timing_out->v_addressable - timing_out->v_border_bottom;
-
- v_back_porch = v_blank - timing_out->v_front_porch -
- timing_out->v_sync_width;
-
- crc_window_latch_up_line = v_back_porch + timing_out->v_sync_width;
-
- /* take 3 lines margin*/
- if ((position.vertical_count + 3) >= crc_window_latch_up_line)
- acrtc->dm_irq_params.crc_window.skip_frame_cnt = 1;
- else
- acrtc->dm_irq_params.crc_window.skip_frame_cnt = 0;
- } else {
- if (acrtc->dm_irq_params.crc_window.skip_frame_cnt == 0) {
- if (adev->dm.crc_rd_wrk) {
- crc_rd_wrk = adev->dm.crc_rd_wrk;
- spin_lock_irqsave(&crc_rd_wrk->crc_rd_work_lock, flags2);
- crc_rd_wrk->phy_inst =
- stream_state->link->link_enc_hw_inst;
- spin_unlock_irqrestore(&crc_rd_wrk->crc_rd_work_lock, flags2);
- schedule_work(&crc_rd_wrk->notify_ta_work);
- }
- } else {
- acrtc->dm_irq_params.crc_window.skip_frame_cnt -= 1;
- }
- }
- }
+ if (!acrtc->dm_irq_params.window_param.activated)
+ goto cleanup;
+
+ if (acrtc->dm_irq_params.window_param.skip_frame_cnt) {
+ acrtc->dm_irq_params.window_param.skip_frame_cnt -= 1;
+ goto cleanup;
+ }
+
+ secure_display_ctx = &adev->dm.secure_display_ctxs[acrtc->crtc_id];
+ if (WARN_ON(secure_display_ctx->crtc != crtc)) {
+ /* We have set the crtc when creating secure_display_context,
+ * don't expect it to be changed here.
+ */
+ secure_display_ctx->crtc = crtc;
+ }
+
+ if (acrtc->dm_irq_params.window_param.update_win) {
+ /* prepare work for dmub to update ROI */
+ secure_display_ctx->rect.x = acrtc->dm_irq_params.window_param.x_start;
+ secure_display_ctx->rect.y = acrtc->dm_irq_params.window_param.y_start;
+ secure_display_ctx->rect.width = acrtc->dm_irq_params.window_param.x_end -
+ acrtc->dm_irq_params.window_param.x_start;
+ secure_display_ctx->rect.height = acrtc->dm_irq_params.window_param.y_end -
+ acrtc->dm_irq_params.window_param.y_start;
+ schedule_work(&secure_display_ctx->forward_roi_work);
+
+ acrtc->dm_irq_params.window_param.update_win = false;
+
+ /* Statically skip 1 frame, because we may need to wait below things
+ * before sending ROI to dmub:
+ * 1. We defer the work by using system workqueue.
+ * 2. We may need to wait for dc_lock before accessing dmub.
+ */
+ acrtc->dm_irq_params.window_param.skip_frame_cnt = 1;
+
+ } else {
+ /* prepare work for psp to read ROI/CRC and send to I2C */
+ schedule_work(&secure_display_ctx->notify_ta_work);
}
cleanup:
spin_unlock_irqrestore(&drm_dev->event_lock, flags1);
}
-struct crc_rd_work *amdgpu_dm_crtc_secure_display_create_work(void)
+struct secure_display_context *
+amdgpu_dm_crtc_secure_display_create_contexts(struct amdgpu_device *adev)
{
- struct crc_rd_work *crc_rd_wrk = NULL;
+ struct secure_display_context *secure_display_ctxs = NULL;
+ int i;
- crc_rd_wrk = kzalloc(sizeof(*crc_rd_wrk), GFP_KERNEL);
+ secure_display_ctxs = kcalloc(adev->mode_info.num_crtc,
+ sizeof(struct secure_display_context),
+ GFP_KERNEL);
- if (!crc_rd_wrk)
+ if (!secure_display_ctxs)
return NULL;
- spin_lock_init(&crc_rd_wrk->crc_rd_work_lock);
- INIT_WORK(&crc_rd_wrk->notify_ta_work, amdgpu_dm_crtc_notify_ta_to_read);
+ for (i = 0; i < adev->mode_info.num_crtc; i++) {
+ INIT_WORK(&secure_display_ctxs[i].forward_roi_work, amdgpu_dm_forward_crc_window);
+ INIT_WORK(&secure_display_ctxs[i].notify_ta_work, amdgpu_dm_crtc_notify_ta_to_read);
+ secure_display_ctxs[i].crtc = &adev->mode_info.crtcs[i]->base;
+ }
- return crc_rd_wrk;
+ return secure_display_ctxs;
}
#endif
diff --git a/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_crc.h b/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_crc.h
index f07850db60a6..935adca6f048 100644
--- a/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_crc.h
+++ b/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_crc.h
@@ -40,12 +40,12 @@ enum amdgpu_dm_pipe_crc_source {
};
#ifdef CONFIG_DRM_AMD_SECURE_DISPLAY
-struct crc_window_parm {
+struct crc_window_param {
uint16_t x_start;
uint16_t y_start;
uint16_t x_end;
uint16_t y_end;
- /* CRC windwo is activated or not*/
+ /* CRC window is activated or not*/
bool activated;
/* Update crc window during vertical blank or not */
bool update_win;
@@ -53,12 +53,17 @@ struct crc_window_parm {
int skip_frame_cnt;
};
-struct crc_rd_work {
+struct secure_display_context {
+ /* work to notify PSP TA*/
struct work_struct notify_ta_work;
- /* To protect crc_rd_work carried fields*/
- spinlock_t crc_rd_work_lock;
+
+ /* work to forward ROI to dmcu/dmub */
+ struct work_struct forward_roi_work;
+
struct drm_crtc *crtc;
- uint8_t phy_inst;
+
+ /* Region of Interest (ROI) */
+ struct rect rect;
};
#endif
@@ -90,11 +95,12 @@ void amdgpu_dm_crtc_handle_crc_irq(struct drm_crtc *crtc);
#ifdef CONFIG_DRM_AMD_SECURE_DISPLAY
bool amdgpu_dm_crc_window_is_activated(struct drm_crtc *crtc);
void amdgpu_dm_crtc_handle_crc_window_irq(struct drm_crtc *crtc);
-struct crc_rd_work *amdgpu_dm_crtc_secure_display_create_work(void);
+struct secure_display_context *amdgpu_dm_crtc_secure_display_create_contexts(
+ struct amdgpu_device *adev);
#else
#define amdgpu_dm_crc_window_is_activated(x)
#define amdgpu_dm_crtc_handle_crc_window_irq(x)
-#define amdgpu_dm_crtc_secure_display_create_work()
+#define amdgpu_dm_crtc_secure_display_create_contexts()
#endif
#endif /* AMD_DAL_DEV_AMDGPU_DM_AMDGPU_DM_CRC_H_ */
diff --git a/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_crtc.c b/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_crtc.c
index 594fe8a4d02b..e3762e806617 100644
--- a/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_crtc.c
+++ b/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_crtc.c
@@ -34,7 +34,7 @@
#include "amdgpu_dm_trace.h"
#include "amdgpu_dm_debugfs.h"
-void dm_crtc_handle_vblank(struct amdgpu_crtc *acrtc)
+void amdgpu_dm_crtc_handle_vblank(struct amdgpu_crtc *acrtc)
{
struct drm_crtc *crtc = &acrtc->base;
struct drm_device *dev = crtc->dev;
@@ -54,14 +54,14 @@ void dm_crtc_handle_vblank(struct amdgpu_crtc *acrtc)
spin_unlock_irqrestore(&dev->event_lock, flags);
}
-bool modeset_required(struct drm_crtc_state *crtc_state,
+bool amdgpu_dm_crtc_modeset_required(struct drm_crtc_state *crtc_state,
struct dc_stream_state *new_stream,
struct dc_stream_state *old_stream)
{
return crtc_state->active && drm_atomic_crtc_needs_modeset(crtc_state);
}
-bool amdgpu_dm_vrr_active_irq(struct amdgpu_crtc *acrtc)
+bool amdgpu_dm_crtc_vrr_active_irq(struct amdgpu_crtc *acrtc)
{
return acrtc->dm_irq_params.freesync_config.state ==
@@ -70,13 +70,16 @@ bool amdgpu_dm_vrr_active_irq(struct amdgpu_crtc *acrtc)
VRR_STATE_ACTIVE_FIXED;
}
-int dm_set_vupdate_irq(struct drm_crtc *crtc, bool enable)
+int amdgpu_dm_crtc_set_vupdate_irq(struct drm_crtc *crtc, bool enable)
{
enum dc_irq_source irq_source;
struct amdgpu_crtc *acrtc = to_amdgpu_crtc(crtc);
struct amdgpu_device *adev = drm_to_adev(crtc->dev);
int rc;
+ if (acrtc->otg_inst == -1)
+ return 0;
+
irq_source = IRQ_TYPE_VUPDATE + acrtc->otg_inst;
rc = dc_interrupt_set(adev->dm.dc, irq_source, enable) ? 0 : -EBUSY;
@@ -86,7 +89,7 @@ int dm_set_vupdate_irq(struct drm_crtc *crtc, bool enable)
return rc;
}
-bool amdgpu_dm_vrr_active(struct dm_crtc_state *dm_state)
+bool amdgpu_dm_crtc_vrr_active(struct dm_crtc_state *dm_state)
{
return dm_state->freesync_config.state == VRR_STATE_ACTIVE_VARIABLE ||
dm_state->freesync_config.state == VRR_STATE_ACTIVE_FIXED;
@@ -105,8 +108,7 @@ static void vblank_control_worker(struct work_struct *work)
else if (dm->active_vblank_irq_count)
dm->active_vblank_irq_count--;
- dc_allow_idle_optimizations(
- dm->dc, dm->active_vblank_irq_count == 0 ? true : false);
+ dc_allow_idle_optimizations(dm->dc, dm->active_vblank_irq_count == 0);
DRM_DEBUG_KMS("Allow idle optimizations (MALL): %d\n", dm->active_vblank_irq_count == 0);
@@ -127,6 +129,9 @@ static void vblank_control_worker(struct work_struct *work)
amdgpu_dm_psr_disable(vblank_work->stream);
} else if (vblank_work->stream->link->psr_settings.psr_feature_enabled &&
!vblank_work->stream->link->psr_settings.psr_allow_active &&
+#ifdef CONFIG_DRM_AMD_SECURE_DISPLAY
+ !amdgpu_dm_crc_window_is_activated(&vblank_work->acrtc->base) &&
+#endif
vblank_work->acrtc->dm_irq_params.allow_psr_entry) {
amdgpu_dm_psr_enable(vblank_work->stream);
}
@@ -149,23 +154,38 @@ static inline int dm_set_vblank(struct drm_crtc *crtc, bool enable)
struct vblank_control_work *work;
int rc = 0;
+ if (acrtc->otg_inst == -1)
+ goto skip;
+
if (enable) {
/* vblank irq on -> Only need vupdate irq in vrr mode */
- if (amdgpu_dm_vrr_active(acrtc_state))
- rc = dm_set_vupdate_irq(crtc, true);
+ if (amdgpu_dm_crtc_vrr_active(acrtc_state))
+ rc = amdgpu_dm_crtc_set_vupdate_irq(crtc, true);
} else {
/* vblank irq off -> vupdate irq off */
- rc = dm_set_vupdate_irq(crtc, false);
+ rc = amdgpu_dm_crtc_set_vupdate_irq(crtc, false);
}
if (rc)
return rc;
- irq_source = IRQ_TYPE_VBLANK + acrtc->otg_inst;
+ if (amdgpu_in_reset(adev)) {
+ irq_source = IRQ_TYPE_VBLANK + acrtc->otg_inst;
+ /* During gpu-reset we disable and then enable vblank irq, so
+ * don't use amdgpu_irq_get/put() to avoid refcount change.
+ */
+ if (!dc_interrupt_set(adev->dm.dc, irq_source, enable))
+ rc = -EBUSY;
+ } else {
+ rc = (enable)
+ ? amdgpu_irq_get(adev, &adev->crtc_irq, acrtc->crtc_id)
+ : amdgpu_irq_put(adev, &adev->crtc_irq, acrtc->crtc_id);
+ }
- if (!dc_interrupt_set(adev->dm.dc, irq_source, enable))
- return -EBUSY;
+ if (rc)
+ return rc;
+skip:
if (amdgpu_in_reset(adev))
return 0;
@@ -190,12 +210,12 @@ static inline int dm_set_vblank(struct drm_crtc *crtc, bool enable)
return 0;
}
-int dm_enable_vblank(struct drm_crtc *crtc)
+int amdgpu_dm_crtc_enable_vblank(struct drm_crtc *crtc)
{
return dm_set_vblank(crtc, true);
}
-void dm_disable_vblank(struct drm_crtc *crtc)
+void amdgpu_dm_crtc_disable_vblank(struct drm_crtc *crtc)
{
dm_set_vblank(crtc, false);
}
@@ -291,8 +311,8 @@ static const struct drm_crtc_funcs amdgpu_dm_crtc_funcs = {
.verify_crc_source = amdgpu_dm_crtc_verify_crc_source,
.get_crc_sources = amdgpu_dm_crtc_get_crc_sources,
.get_vblank_counter = amdgpu_get_vblank_counter_kms,
- .enable_vblank = dm_enable_vblank,
- .disable_vblank = dm_disable_vblank,
+ .enable_vblank = amdgpu_dm_crtc_enable_vblank,
+ .disable_vblank = amdgpu_dm_crtc_disable_vblank,
.get_vblank_timestamp = drm_crtc_vblank_helper_get_vblank_timestamp,
#if defined(CONFIG_DEBUG_FS)
.late_register = amdgpu_dm_crtc_late_register,
@@ -372,7 +392,7 @@ static int dm_crtc_helper_atomic_check(struct drm_crtc *crtc,
dm_update_crtc_active_planes(crtc, crtc_state);
if (WARN_ON(unlikely(!dm_crtc_state->stream &&
- modeset_required(crtc_state, NULL, dm_crtc_state->stream)))) {
+ amdgpu_dm_crtc_modeset_required(crtc_state, NULL, dm_crtc_state->stream)))) {
return ret;
}
@@ -412,7 +432,7 @@ int amdgpu_dm_crtc_init(struct amdgpu_display_manager *dm,
{
struct amdgpu_crtc *acrtc = NULL;
struct drm_plane *cursor_plane;
-
+ bool is_dcn;
int res = -ENOMEM;
cursor_plane = kzalloc(sizeof(*cursor_plane), GFP_KERNEL);
@@ -450,8 +470,14 @@ int amdgpu_dm_crtc_init(struct amdgpu_display_manager *dm,
acrtc->otg_inst = -1;
dm->adev->mode_info.crtcs[crtc_index] = acrtc;
- drm_crtc_enable_color_mgmt(&acrtc->base, MAX_COLOR_LUT_ENTRIES,
+
+ /* Don't enable DRM CRTC degamma property for DCE since it doesn't
+ * support programmable degamma anywhere.
+ */
+ is_dcn = dm->adev->dm.dc->caps.color.dpp.dcn_arch;
+ drm_crtc_enable_color_mgmt(&acrtc->base, is_dcn ? MAX_COLOR_LUT_ENTRIES : 0,
true, MAX_COLOR_LUT_ENTRIES);
+
drm_mode_crtc_set_gamma_size(&acrtc->base, MAX_COLOR_LEGACY_LUT_ENTRIES);
return 0;
diff --git a/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_crtc.h b/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_crtc.h
index 1ac8692354cf..17e948753f59 100644
--- a/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_crtc.h
+++ b/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_crtc.h
@@ -27,21 +27,21 @@
#ifndef __AMDGPU_DM_CRTC_H__
#define __AMDGPU_DM_CRTC_H__
-void dm_crtc_handle_vblank(struct amdgpu_crtc *acrtc);
+void amdgpu_dm_crtc_handle_vblank(struct amdgpu_crtc *acrtc);
-bool modeset_required(struct drm_crtc_state *crtc_state,
+bool amdgpu_dm_crtc_modeset_required(struct drm_crtc_state *crtc_state,
struct dc_stream_state *new_stream,
struct dc_stream_state *old_stream);
-int dm_set_vupdate_irq(struct drm_crtc *crtc, bool enable);
+int amdgpu_dm_crtc_set_vupdate_irq(struct drm_crtc *crtc, bool enable);
-bool amdgpu_dm_vrr_active_irq(struct amdgpu_crtc *acrtc);
+bool amdgpu_dm_crtc_vrr_active_irq(struct amdgpu_crtc *acrtc);
-bool amdgpu_dm_vrr_active(struct dm_crtc_state *dm_state);
+bool amdgpu_dm_crtc_vrr_active(struct dm_crtc_state *dm_state);
-int dm_enable_vblank(struct drm_crtc *crtc);
+int amdgpu_dm_crtc_enable_vblank(struct drm_crtc *crtc);
-void dm_disable_vblank(struct drm_crtc *crtc);
+void amdgpu_dm_crtc_disable_vblank(struct drm_crtc *crtc);
int amdgpu_dm_crtc_init(struct amdgpu_display_manager *dm,
struct drm_plane *plane,
diff --git a/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_debugfs.c b/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_debugfs.c
index ee242d9d8b06..827fcb4fb3b3 100644
--- a/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_debugfs.c
+++ b/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_debugfs.c
@@ -34,9 +34,13 @@
#include "dmub/dmub_srv.h"
#include "resource.h"
#include "dsc.h"
-#include "dc_link_dp.h"
#include "link_hwss.h"
#include "dc/dc_dmub_srv.h"
+#include "link/protocols/link_dp_capability.h"
+
+#ifdef CONFIG_DRM_AMD_SECURE_DISPLAY
+#include "amdgpu_dm_psr.h"
+#endif
struct dmub_debugfs_trace_header {
uint32_t entry_count;
@@ -299,6 +303,8 @@ static ssize_t dp_link_settings_write(struct file *f, const char __user *buf,
case LINK_RATE_HIGH2:
case LINK_RATE_HIGH3:
case LINK_RATE_UHBR10:
+ case LINK_RATE_UHBR13_5:
+ case LINK_RATE_UHBR20:
break;
default:
valid_input = false;
@@ -413,67 +419,38 @@ static ssize_t dp_phy_settings_read(struct file *f, char __user *buf,
return result;
}
-static int dp_lttpr_status_show(struct seq_file *m, void *d)
+static int dp_lttpr_status_show(struct seq_file *m, void *unused)
{
- char *data;
- struct amdgpu_dm_connector *connector = file_inode(m->file)->i_private;
- struct dc_link *link = connector->dc_link;
- uint32_t read_size = 1;
- uint8_t repeater_count = 0;
+ struct drm_connector *connector = m->private;
+ struct amdgpu_dm_connector *aconnector =
+ to_amdgpu_dm_connector(connector);
+ struct dc_lttpr_caps caps = aconnector->dc_link->dpcd_caps.lttpr_caps;
- data = kzalloc(read_size, GFP_KERNEL);
- if (!data)
- return 0;
+ if (connector->status != connector_status_connected)
+ return -ENODEV;
- dm_helpers_dp_read_dpcd(link->ctx, link, 0xF0002, data, read_size);
+ seq_printf(m, "phy repeater count: %u (raw: 0x%x)\n",
+ dp_parse_lttpr_repeater_count(caps.phy_repeater_cnt),
+ caps.phy_repeater_cnt);
- switch ((uint8_t)*data) {
- case 0x80:
- repeater_count = 1;
- break;
- case 0x40:
- repeater_count = 2;
- break;
- case 0x20:
- repeater_count = 3;
- break;
- case 0x10:
- repeater_count = 4;
- break;
- case 0x8:
- repeater_count = 5;
- break;
- case 0x4:
- repeater_count = 6;
- break;
- case 0x2:
- repeater_count = 7;
+ seq_puts(m, "phy repeater mode: ");
+
+ switch (caps.mode) {
+ case DP_PHY_REPEATER_MODE_TRANSPARENT:
+ seq_puts(m, "transparent");
break;
- case 0x1:
- repeater_count = 8;
+ case DP_PHY_REPEATER_MODE_NON_TRANSPARENT:
+ seq_puts(m, "non-transparent");
break;
- case 0x0:
- repeater_count = 0;
+ case 0x00:
+ seq_puts(m, "non lttpr");
break;
default:
- repeater_count = (uint8_t)*data;
+ seq_printf(m, "read error (raw: 0x%x)", caps.mode);
break;
}
- seq_printf(m, "phy repeater count: %d\n", repeater_count);
-
- dm_helpers_dp_read_dpcd(link->ctx, link, 0xF0003, data, read_size);
-
- if ((uint8_t)*data == 0x55)
- seq_printf(m, "phy repeater mode: transparent\n");
- else if ((uint8_t)*data == 0xAA)
- seq_printf(m, "phy repeater mode: non-transparent\n");
- else if ((uint8_t)*data == 0x00)
- seq_printf(m, "phy repeater mode: non lttpr\n");
- else
- seq_printf(m, "phy repeater mode: read error\n");
-
- kfree(data);
+ seq_puts(m, "\n");
return 0;
}
@@ -747,7 +724,7 @@ static ssize_t dp_phy_test_pattern_debugfs_write(struct file *f, const char __us
for (i = 0; i < (unsigned int)(link_training_settings.link_settings.lane_count); i++)
link_training_settings.hw_lane_settings[i] = link->cur_lane_setting[i];
- dc_link_set_test_pattern(
+ dc_link_dp_set_test_pattern(
link,
test_pattern,
DP_TEST_PATTERN_COLOR_SPACE_RGB,
@@ -970,7 +947,6 @@ static ssize_t dp_dsc_passthrough_set(struct file *f, const char __user *buf,
return 0;
}
-#ifdef CONFIG_DRM_AMD_DC_HDCP
/*
* Returns the HDCP capability of the Display (1.4 for now).
*
@@ -1007,7 +983,6 @@ static int hdcp_sink_capability_show(struct seq_file *m, void *data)
return 0;
}
-#endif
/*
* Returns whether the connected display is internal and not hotpluggable.
@@ -1186,7 +1161,7 @@ static int dp_dsc_fec_support_show(struct seq_file *m, void *data)
break;
}
dpcd_caps = aconnector->dc_link->dpcd_caps;
- if (aconnector->port) {
+ if (aconnector->mst_output_port) {
/* aconnector sets dsc_aux during get_modes call
* if MST connector has it means it can either
* enable DSC on the sink device or on MST branch
@@ -1273,14 +1248,14 @@ static ssize_t trigger_hotplug(struct file *f, const char __user *buf,
mutex_lock(&aconnector->hpd_lock);
/* Don't support for mst end device*/
- if (aconnector->mst_port) {
+ if (aconnector->mst_root) {
mutex_unlock(&aconnector->hpd_lock);
return -EINVAL;
}
if (param[0] == 1) {
- if (!dc_link_detect_sink(aconnector->dc_link, &new_connection_type) &&
+ if (!dc_link_detect_connection_type(aconnector->dc_link, &new_connection_type) &&
new_connection_type != dc_connection_none)
goto unlock;
@@ -1317,7 +1292,7 @@ static ssize_t trigger_hotplug(struct file *f, const char __user *buf,
/* If the aconnector is the root node in mst topology */
if (aconnector->mst_mgr.mst_state == true)
- reset_cur_dp_mst_topology(link);
+ dc_link_reset_cur_dp_mst_topology(link);
drm_modeset_lock_all(dev);
dm_restore_drm_connector_state(dev, connector);
@@ -1369,16 +1344,11 @@ static ssize_t dp_dsc_clock_en_read(struct file *f, char __user *buf,
for (i = 0; i < MAX_PIPES; i++) {
pipe_ctx = &aconnector->dc_link->dc->current_state->res_ctx.pipe_ctx[i];
- if (pipe_ctx && pipe_ctx->stream &&
+ if (pipe_ctx->stream &&
pipe_ctx->stream->link == aconnector->dc_link)
break;
}
- if (!pipe_ctx) {
- kfree(rd_buf);
- return -ENXIO;
- }
-
dsc = pipe_ctx->stream_res.dsc;
if (dsc)
dsc->funcs->dsc_read_state(dsc, &dsc_state);
@@ -1475,12 +1445,12 @@ static ssize_t dp_dsc_clock_en_write(struct file *f, const char __user *buf,
for (i = 0; i < MAX_PIPES; i++) {
pipe_ctx = &aconnector->dc_link->dc->current_state->res_ctx.pipe_ctx[i];
- if (pipe_ctx && pipe_ctx->stream &&
+ if (pipe_ctx->stream &&
pipe_ctx->stream->link == aconnector->dc_link)
break;
}
- if (!pipe_ctx || !pipe_ctx->stream)
+ if (!pipe_ctx->stream)
goto done;
// Get CRTC state
@@ -1560,16 +1530,11 @@ static ssize_t dp_dsc_slice_width_read(struct file *f, char __user *buf,
for (i = 0; i < MAX_PIPES; i++) {
pipe_ctx = &aconnector->dc_link->dc->current_state->res_ctx.pipe_ctx[i];
- if (pipe_ctx && pipe_ctx->stream &&
+ if (pipe_ctx->stream &&
pipe_ctx->stream->link == aconnector->dc_link)
break;
}
- if (!pipe_ctx) {
- kfree(rd_buf);
- return -ENXIO;
- }
-
dsc = pipe_ctx->stream_res.dsc;
if (dsc)
dsc->funcs->dsc_read_state(dsc, &dsc_state);
@@ -1664,12 +1629,12 @@ static ssize_t dp_dsc_slice_width_write(struct file *f, const char __user *buf,
for (i = 0; i < MAX_PIPES; i++) {
pipe_ctx = &aconnector->dc_link->dc->current_state->res_ctx.pipe_ctx[i];
- if (pipe_ctx && pipe_ctx->stream &&
+ if (pipe_ctx->stream &&
pipe_ctx->stream->link == aconnector->dc_link)
break;
}
- if (!pipe_ctx || !pipe_ctx->stream)
+ if (!pipe_ctx->stream)
goto done;
// Safely get CRTC state
@@ -1749,16 +1714,11 @@ static ssize_t dp_dsc_slice_height_read(struct file *f, char __user *buf,
for (i = 0; i < MAX_PIPES; i++) {
pipe_ctx = &aconnector->dc_link->dc->current_state->res_ctx.pipe_ctx[i];
- if (pipe_ctx && pipe_ctx->stream &&
+ if (pipe_ctx->stream &&
pipe_ctx->stream->link == aconnector->dc_link)
break;
}
- if (!pipe_ctx) {
- kfree(rd_buf);
- return -ENXIO;
- }
-
dsc = pipe_ctx->stream_res.dsc;
if (dsc)
dsc->funcs->dsc_read_state(dsc, &dsc_state);
@@ -1853,12 +1813,12 @@ static ssize_t dp_dsc_slice_height_write(struct file *f, const char __user *buf,
for (i = 0; i < MAX_PIPES; i++) {
pipe_ctx = &aconnector->dc_link->dc->current_state->res_ctx.pipe_ctx[i];
- if (pipe_ctx && pipe_ctx->stream &&
+ if (pipe_ctx->stream &&
pipe_ctx->stream->link == aconnector->dc_link)
break;
}
- if (!pipe_ctx || !pipe_ctx->stream)
+ if (!pipe_ctx->stream)
goto done;
// Get CRTC state
@@ -1934,16 +1894,11 @@ static ssize_t dp_dsc_bits_per_pixel_read(struct file *f, char __user *buf,
for (i = 0; i < MAX_PIPES; i++) {
pipe_ctx = &aconnector->dc_link->dc->current_state->res_ctx.pipe_ctx[i];
- if (pipe_ctx && pipe_ctx->stream &&
+ if (pipe_ctx->stream &&
pipe_ctx->stream->link == aconnector->dc_link)
break;
}
- if (!pipe_ctx) {
- kfree(rd_buf);
- return -ENXIO;
- }
-
dsc = pipe_ctx->stream_res.dsc;
if (dsc)
dsc->funcs->dsc_read_state(dsc, &dsc_state);
@@ -2035,12 +1990,12 @@ static ssize_t dp_dsc_bits_per_pixel_write(struct file *f, const char __user *bu
for (i = 0; i < MAX_PIPES; i++) {
pipe_ctx = &aconnector->dc_link->dc->current_state->res_ctx.pipe_ctx[i];
- if (pipe_ctx && pipe_ctx->stream &&
+ if (pipe_ctx->stream &&
pipe_ctx->stream->link == aconnector->dc_link)
break;
}
- if (!pipe_ctx || !pipe_ctx->stream)
+ if (!pipe_ctx->stream)
goto done;
// Get CRTC state
@@ -2114,16 +2069,11 @@ static ssize_t dp_dsc_pic_width_read(struct file *f, char __user *buf,
for (i = 0; i < MAX_PIPES; i++) {
pipe_ctx = &aconnector->dc_link->dc->current_state->res_ctx.pipe_ctx[i];
- if (pipe_ctx && pipe_ctx->stream &&
+ if (pipe_ctx->stream &&
pipe_ctx->stream->link == aconnector->dc_link)
break;
}
- if (!pipe_ctx) {
- kfree(rd_buf);
- return -ENXIO;
- }
-
dsc = pipe_ctx->stream_res.dsc;
if (dsc)
dsc->funcs->dsc_read_state(dsc, &dsc_state);
@@ -2175,16 +2125,11 @@ static ssize_t dp_dsc_pic_height_read(struct file *f, char __user *buf,
for (i = 0; i < MAX_PIPES; i++) {
pipe_ctx = &aconnector->dc_link->dc->current_state->res_ctx.pipe_ctx[i];
- if (pipe_ctx && pipe_ctx->stream &&
+ if (pipe_ctx->stream &&
pipe_ctx->stream->link == aconnector->dc_link)
break;
}
- if (!pipe_ctx) {
- kfree(rd_buf);
- return -ENXIO;
- }
-
dsc = pipe_ctx->stream_res.dsc;
if (dsc)
dsc->funcs->dsc_read_state(dsc, &dsc_state);
@@ -2251,16 +2196,11 @@ static ssize_t dp_dsc_chunk_size_read(struct file *f, char __user *buf,
for (i = 0; i < MAX_PIPES; i++) {
pipe_ctx = &aconnector->dc_link->dc->current_state->res_ctx.pipe_ctx[i];
- if (pipe_ctx && pipe_ctx->stream &&
+ if (pipe_ctx->stream &&
pipe_ctx->stream->link == aconnector->dc_link)
break;
}
- if (!pipe_ctx) {
- kfree(rd_buf);
- return -ENXIO;
- }
-
dsc = pipe_ctx->stream_res.dsc;
if (dsc)
dsc->funcs->dsc_read_state(dsc, &dsc_state);
@@ -2327,16 +2267,11 @@ static ssize_t dp_dsc_slice_bpg_offset_read(struct file *f, char __user *buf,
for (i = 0; i < MAX_PIPES; i++) {
pipe_ctx = &aconnector->dc_link->dc->current_state->res_ctx.pipe_ctx[i];
- if (pipe_ctx && pipe_ctx->stream &&
+ if (pipe_ctx->stream &&
pipe_ctx->stream->link == aconnector->dc_link)
break;
}
- if (!pipe_ctx) {
- kfree(rd_buf);
- return -ENXIO;
- }
-
dsc = pipe_ctx->stream_res.dsc;
if (dsc)
dsc->funcs->dsc_read_state(dsc, &dsc_state);
@@ -2572,13 +2507,13 @@ static int dp_is_mst_connector_show(struct seq_file *m, void *unused)
if (aconnector->mst_mgr.mst_state) {
role = "root";
- } else if (aconnector->mst_port &&
- aconnector->mst_port->mst_mgr.mst_state) {
+ } else if (aconnector->mst_root &&
+ aconnector->mst_root->mst_mgr.mst_state) {
role = "end";
- mgr = &aconnector->mst_port->mst_mgr;
- port = aconnector->port;
+ mgr = &aconnector->mst_root->mst_mgr;
+ port = aconnector->mst_output_port;
drm_modeset_lock(&mgr->base.lock, NULL);
if (port->pdt == DP_PEER_DEVICE_MST_BRANCHING &&
@@ -2633,17 +2568,35 @@ static int dp_mst_progress_status_show(struct seq_file *m, void *unused)
return 0;
}
+/*
+ * Reports whether the connected display is a USB4 DPIA tunneled display
+ * Example usage: cat /sys/kernel/debug/dri/0/DP-8/is_dpia_link
+ */
+static int is_dpia_link_show(struct seq_file *m, void *data)
+{
+ struct drm_connector *connector = m->private;
+ struct amdgpu_dm_connector *aconnector = to_amdgpu_dm_connector(connector);
+ struct dc_link *link = aconnector->dc_link;
+
+ if (connector->status != connector_status_connected)
+ return -ENODEV;
+
+ seq_printf(m, "%s\n", (link->ep_type == DISPLAY_ENDPOINT_USB4_DPIA) ? "yes" :
+ (link->ep_type == DISPLAY_ENDPOINT_PHY) ? "no" : "unknown");
+
+ return 0;
+}
+
DEFINE_SHOW_ATTRIBUTE(dp_dsc_fec_support);
DEFINE_SHOW_ATTRIBUTE(dmub_fw_state);
DEFINE_SHOW_ATTRIBUTE(dmub_tracebuffer);
DEFINE_SHOW_ATTRIBUTE(dp_lttpr_status);
-#ifdef CONFIG_DRM_AMD_DC_HDCP
DEFINE_SHOW_ATTRIBUTE(hdcp_sink_capability);
-#endif
DEFINE_SHOW_ATTRIBUTE(internal_display);
DEFINE_SHOW_ATTRIBUTE(psr_capability);
DEFINE_SHOW_ATTRIBUTE(dp_is_mst_connector);
DEFINE_SHOW_ATTRIBUTE(dp_mst_progress_status);
+DEFINE_SHOW_ATTRIBUTE(is_dpia_link);
static const struct file_operations dp_dsc_clock_en_debugfs_fops = {
.owner = THIS_MODULE,
@@ -2769,9 +2722,7 @@ static const struct {
{"phy_settings", &dp_phy_settings_debugfs_fop},
{"lttpr_status", &dp_lttpr_status_fops},
{"test_pattern", &dp_phy_test_pattern_fops},
-#ifdef CONFIG_DRM_AMD_DC_HDCP
{"hdcp_sink_capability", &hdcp_sink_capability_fops},
-#endif
{"sdp_message", &sdp_message_fops},
{"aux_dpcd_address", &dp_dpcd_address_debugfs_fops},
{"aux_dpcd_size", &dp_dpcd_size_debugfs_fops},
@@ -2788,17 +2739,17 @@ static const struct {
{"max_bpc", &dp_max_bpc_debugfs_fops},
{"dsc_disable_passthrough", &dp_dsc_disable_passthrough_debugfs_fops},
{"is_mst_connector", &dp_is_mst_connector_fops},
- {"mst_progress_status", &dp_mst_progress_status_fops}
+ {"mst_progress_status", &dp_mst_progress_status_fops},
+ {"is_dpia_link", &is_dpia_link_fops}
};
-#ifdef CONFIG_DRM_AMD_DC_HDCP
static const struct {
char *name;
const struct file_operations *fops;
} hdmi_debugfs_entries[] = {
{"hdcp_sink_capability", &hdcp_sink_capability_fops}
};
-#endif
+
/*
* Force YUV420 output if available from the given mode
*/
@@ -2843,6 +2794,22 @@ static int psr_get(void *data, u64 *val)
}
/*
+ * Read PSR state residency
+ */
+static int psr_read_residency(void *data, u64 *val)
+{
+ struct amdgpu_dm_connector *connector = data;
+ struct dc_link *link = connector->dc_link;
+ u32 residency;
+
+ link->dc->link_srv->edp_get_psr_residency(link, &residency);
+
+ *val = (u64)residency;
+
+ return 0;
+}
+
+/*
* Set dmcub trace event IRQ enable or disable.
* Usage to enable dmcub trace event IRQ: echo 1 > /sys/kernel/debug/dri/0/amdgpu_dm_dmcub_trace_event_en
* Usage to disable dmcub trace event IRQ: echo 0 > /sys/kernel/debug/dri/0/amdgpu_dm_dmcub_trace_event_en
@@ -2877,6 +2844,8 @@ DEFINE_DEBUGFS_ATTRIBUTE(dmcub_trace_event_state_fops, dmcub_trace_event_state_g
dmcub_trace_event_state_set, "%llu\n");
DEFINE_DEBUGFS_ATTRIBUTE(psr_fops, psr_get, NULL, "%llu\n");
+DEFINE_DEBUGFS_ATTRIBUTE(psr_residency_fops, psr_read_residency, NULL,
+ "%llu\n");
DEFINE_SHOW_ATTRIBUTE(current_backlight);
DEFINE_SHOW_ATTRIBUTE(target_backlight);
@@ -3040,6 +3009,8 @@ void connector_debugfs_init(struct amdgpu_dm_connector *connector)
if (connector->base.connector_type == DRM_MODE_CONNECTOR_eDP) {
debugfs_create_file_unsafe("psr_capability", 0444, dir, connector, &psr_capability_fops);
debugfs_create_file_unsafe("psr_state", 0444, dir, connector, &psr_fops);
+ debugfs_create_file_unsafe("psr_residency", 0444, dir,
+ connector, &psr_residency_fops);
debugfs_create_file("amdgpu_current_backlight_pwm", 0444, dir, connector,
&current_backlight_fops);
debugfs_create_file("amdgpu_target_backlight_pwm", 0444, dir, connector,
@@ -3057,7 +3028,6 @@ void connector_debugfs_init(struct amdgpu_dm_connector *connector)
connector->debugfs_dpcd_address = 0;
connector->debugfs_dpcd_size = 0;
-#ifdef CONFIG_DRM_AMD_DC_HDCP
if (connector->base.connector_type == DRM_MODE_CONNECTOR_HDMIA) {
for (i = 0; i < ARRAY_SIZE(hdmi_debugfs_entries); i++) {
debugfs_create_file(hdmi_debugfs_entries[i].name,
@@ -3065,7 +3035,6 @@ void connector_debugfs_init(struct amdgpu_dm_connector *connector)
hdmi_debugfs_entries[i].fops);
}
}
-#endif
}
#ifdef CONFIG_DRM_AMD_SECURE_DISPLAY
@@ -3079,8 +3048,8 @@ static int crc_win_x_start_set(void *data, u64 val)
struct amdgpu_crtc *acrtc = to_amdgpu_crtc(crtc);
spin_lock_irq(&drm_dev->event_lock);
- acrtc->dm_irq_params.crc_window.x_start = (uint16_t) val;
- acrtc->dm_irq_params.crc_window.update_win = false;
+ acrtc->dm_irq_params.window_param.x_start = (uint16_t) val;
+ acrtc->dm_irq_params.window_param.update_win = false;
spin_unlock_irq(&drm_dev->event_lock);
return 0;
@@ -3096,7 +3065,7 @@ static int crc_win_x_start_get(void *data, u64 *val)
struct amdgpu_crtc *acrtc = to_amdgpu_crtc(crtc);
spin_lock_irq(&drm_dev->event_lock);
- *val = acrtc->dm_irq_params.crc_window.x_start;
+ *val = acrtc->dm_irq_params.window_param.x_start;
spin_unlock_irq(&drm_dev->event_lock);
return 0;
@@ -3116,8 +3085,8 @@ static int crc_win_y_start_set(void *data, u64 val)
struct amdgpu_crtc *acrtc = to_amdgpu_crtc(crtc);
spin_lock_irq(&drm_dev->event_lock);
- acrtc->dm_irq_params.crc_window.y_start = (uint16_t) val;
- acrtc->dm_irq_params.crc_window.update_win = false;
+ acrtc->dm_irq_params.window_param.y_start = (uint16_t) val;
+ acrtc->dm_irq_params.window_param.update_win = false;
spin_unlock_irq(&drm_dev->event_lock);
return 0;
@@ -3133,7 +3102,7 @@ static int crc_win_y_start_get(void *data, u64 *val)
struct amdgpu_crtc *acrtc = to_amdgpu_crtc(crtc);
spin_lock_irq(&drm_dev->event_lock);
- *val = acrtc->dm_irq_params.crc_window.y_start;
+ *val = acrtc->dm_irq_params.window_param.y_start;
spin_unlock_irq(&drm_dev->event_lock);
return 0;
@@ -3152,8 +3121,8 @@ static int crc_win_x_end_set(void *data, u64 val)
struct amdgpu_crtc *acrtc = to_amdgpu_crtc(crtc);
spin_lock_irq(&drm_dev->event_lock);
- acrtc->dm_irq_params.crc_window.x_end = (uint16_t) val;
- acrtc->dm_irq_params.crc_window.update_win = false;
+ acrtc->dm_irq_params.window_param.x_end = (uint16_t) val;
+ acrtc->dm_irq_params.window_param.update_win = false;
spin_unlock_irq(&drm_dev->event_lock);
return 0;
@@ -3169,7 +3138,7 @@ static int crc_win_x_end_get(void *data, u64 *val)
struct amdgpu_crtc *acrtc = to_amdgpu_crtc(crtc);
spin_lock_irq(&drm_dev->event_lock);
- *val = acrtc->dm_irq_params.crc_window.x_end;
+ *val = acrtc->dm_irq_params.window_param.x_end;
spin_unlock_irq(&drm_dev->event_lock);
return 0;
@@ -3188,8 +3157,8 @@ static int crc_win_y_end_set(void *data, u64 val)
struct amdgpu_crtc *acrtc = to_amdgpu_crtc(crtc);
spin_lock_irq(&drm_dev->event_lock);
- acrtc->dm_irq_params.crc_window.y_end = (uint16_t) val;
- acrtc->dm_irq_params.crc_window.update_win = false;
+ acrtc->dm_irq_params.window_param.y_end = (uint16_t) val;
+ acrtc->dm_irq_params.window_param.update_win = false;
spin_unlock_irq(&drm_dev->event_lock);
return 0;
@@ -3205,7 +3174,7 @@ static int crc_win_y_end_get(void *data, u64 *val)
struct amdgpu_crtc *acrtc = to_amdgpu_crtc(crtc);
spin_lock_irq(&drm_dev->event_lock);
- *val = acrtc->dm_irq_params.crc_window.y_end;
+ *val = acrtc->dm_irq_params.window_param.y_end;
spin_unlock_irq(&drm_dev->event_lock);
return 0;
@@ -3218,41 +3187,26 @@ DEFINE_DEBUGFS_ATTRIBUTE(crc_win_y_end_fops, crc_win_y_end_get,
*/
static int crc_win_update_set(void *data, u64 val)
{
- struct drm_crtc *new_crtc = data;
- struct drm_crtc *old_crtc = NULL;
- struct amdgpu_crtc *new_acrtc, *old_acrtc;
- struct amdgpu_device *adev = drm_to_adev(new_crtc->dev);
- struct crc_rd_work *crc_rd_wrk = adev->dm.crc_rd_wrk;
-
- if (!crc_rd_wrk)
- return 0;
+ struct drm_crtc *crtc = data;
+ struct amdgpu_crtc *acrtc;
+ struct amdgpu_device *adev = drm_to_adev(crtc->dev);
if (val) {
+ acrtc = to_amdgpu_crtc(crtc);
+ mutex_lock(&adev->dm.dc_lock);
+ /* PSR may write to OTG CRC window control register,
+ * so close it before starting secure_display.
+ */
+ amdgpu_dm_psr_disable(acrtc->dm_irq_params.stream);
+
spin_lock_irq(&adev_to_drm(adev)->event_lock);
- spin_lock_irq(&crc_rd_wrk->crc_rd_work_lock);
- if (crc_rd_wrk->crtc) {
- old_crtc = crc_rd_wrk->crtc;
- old_acrtc = to_amdgpu_crtc(old_crtc);
- }
- new_acrtc = to_amdgpu_crtc(new_crtc);
- if (old_crtc && old_crtc != new_crtc) {
- old_acrtc->dm_irq_params.crc_window.activated = false;
- old_acrtc->dm_irq_params.crc_window.update_win = false;
- old_acrtc->dm_irq_params.crc_window.skip_frame_cnt = 0;
+ acrtc->dm_irq_params.window_param.activated = true;
+ acrtc->dm_irq_params.window_param.update_win = true;
+ acrtc->dm_irq_params.window_param.skip_frame_cnt = 0;
- new_acrtc->dm_irq_params.crc_window.activated = true;
- new_acrtc->dm_irq_params.crc_window.update_win = true;
- new_acrtc->dm_irq_params.crc_window.skip_frame_cnt = 0;
- crc_rd_wrk->crtc = new_crtc;
- } else {
- new_acrtc->dm_irq_params.crc_window.activated = true;
- new_acrtc->dm_irq_params.crc_window.update_win = true;
- new_acrtc->dm_irq_params.crc_window.skip_frame_cnt = 0;
- crc_rd_wrk->crtc = new_crtc;
- }
- spin_unlock_irq(&crc_rd_wrk->crc_rd_work_lock);
spin_unlock_irq(&adev_to_drm(adev)->event_lock);
+ mutex_unlock(&adev->dm.dc_lock);
}
return 0;
@@ -3419,12 +3373,12 @@ static int trigger_hpd_mst_set(void *data, u64 val)
if (!aconnector->dc_link)
continue;
- if (!aconnector->mst_port)
+ if (!aconnector->mst_root)
continue;
link = aconnector->dc_link;
- dp_receiver_power_ctrl(link, false);
- drm_dp_mst_topology_mgr_set_mst(&aconnector->mst_port->mst_mgr, false);
+ dc_link_dp_receiver_power_ctrl(link, false);
+ drm_dp_mst_topology_mgr_set_mst(&aconnector->mst_root->mst_mgr, false);
link->mst_stream_alloc_table.stream_count = 0;
memset(link->mst_stream_alloc_table.stream_allocations, 0,
sizeof(link->mst_stream_alloc_table.stream_allocations));
diff --git a/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_hdcp.c b/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_hdcp.c
index 6202e31c7e3a..5536d17306d0 100644
--- a/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_hdcp.c
+++ b/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_hdcp.c
@@ -170,9 +170,10 @@ void hdcp_update_display(struct hdcp_workqueue *hdcp_work,
struct mod_hdcp_display *display = &hdcp_work[link_index].display;
struct mod_hdcp_link *link = &hdcp_work[link_index].link;
struct mod_hdcp_display_query query;
+ unsigned int conn_index = aconnector->base.index;
mutex_lock(&hdcp_w->mutex);
- hdcp_w->aconnector = aconnector;
+ hdcp_w->aconnector[conn_index] = aconnector;
query.display = NULL;
mod_hdcp_query_display(&hdcp_w->hdcp, aconnector->base.index, &query);
@@ -204,7 +205,7 @@ void hdcp_update_display(struct hdcp_workqueue *hdcp_work,
msecs_to_jiffies(DRM_HDCP_CHECK_PERIOD_MS));
} else {
display->adjust.disable = MOD_HDCP_DISPLAY_DISABLE_AUTHENTICATION;
- hdcp_w->encryption_status = MOD_HDCP_ENCRYPTION_STATUS_HDCP_OFF;
+ hdcp_w->encryption_status[conn_index] = MOD_HDCP_ENCRYPTION_STATUS_HDCP_OFF;
cancel_delayed_work(&hdcp_w->property_validate_dwork);
}
@@ -223,9 +224,10 @@ static void hdcp_remove_display(struct hdcp_workqueue *hdcp_work,
{
struct hdcp_workqueue *hdcp_w = &hdcp_work[link_index];
struct drm_connector_state *conn_state = aconnector->base.state;
+ unsigned int conn_index = aconnector->base.index;
mutex_lock(&hdcp_w->mutex);
- hdcp_w->aconnector = aconnector;
+ hdcp_w->aconnector[conn_index] = aconnector;
/* the removal of display will invoke auth reset -> hdcp destroy and
* we'd expect the Content Protection (CP) property changed back to
@@ -247,13 +249,18 @@ static void hdcp_remove_display(struct hdcp_workqueue *hdcp_work,
void hdcp_reset_display(struct hdcp_workqueue *hdcp_work, unsigned int link_index)
{
struct hdcp_workqueue *hdcp_w = &hdcp_work[link_index];
+ unsigned int conn_index;
mutex_lock(&hdcp_w->mutex);
mod_hdcp_reset_connection(&hdcp_w->hdcp, &hdcp_w->output);
cancel_delayed_work(&hdcp_w->property_validate_dwork);
- hdcp_w->encryption_status = MOD_HDCP_ENCRYPTION_STATUS_HDCP_OFF;
+
+ for (conn_index = 0; conn_index < AMDGPU_DM_MAX_DISPLAY_INDEX; conn_index++) {
+ hdcp_w->encryption_status[conn_index] =
+ MOD_HDCP_ENCRYPTION_STATUS_HDCP_OFF;
+ }
process_output(hdcp_w);
@@ -290,49 +297,80 @@ static void event_callback(struct work_struct *work)
}
+
static void event_property_update(struct work_struct *work)
{
-
struct hdcp_workqueue *hdcp_work = container_of(work, struct hdcp_workqueue, property_update_work);
- struct amdgpu_dm_connector *aconnector = hdcp_work->aconnector;
- struct drm_device *dev = hdcp_work->aconnector->base.dev;
+ struct amdgpu_dm_connector *aconnector = NULL;
+ struct drm_device *dev;
long ret;
+ unsigned int conn_index;
+ struct drm_connector *connector;
+ struct drm_connector_state *conn_state;
- drm_modeset_lock(&dev->mode_config.connection_mutex, NULL);
- mutex_lock(&hdcp_work->mutex);
+ for (conn_index = 0; conn_index < AMDGPU_DM_MAX_DISPLAY_INDEX; conn_index++) {
+ aconnector = hdcp_work->aconnector[conn_index];
+ if (!aconnector)
+ continue;
- if (aconnector->base.state && aconnector->base.state->commit) {
- ret = wait_for_completion_interruptible_timeout(&aconnector->base.state->commit->hw_done, 10 * HZ);
+ connector = &aconnector->base;
- if (ret == 0) {
- DRM_ERROR("HDCP state unknown! Setting it to DESIRED");
- hdcp_work->encryption_status = MOD_HDCP_ENCRYPTION_STATUS_HDCP_OFF;
- }
- }
+ /* check if display connected */
+ if (connector->status != connector_status_connected)
+ continue;
- if (aconnector->base.state) {
- if (hdcp_work->encryption_status != MOD_HDCP_ENCRYPTION_STATUS_HDCP_OFF) {
- if (aconnector->base.state->hdcp_content_type ==
+ conn_state = aconnector->base.state;
+
+ if (!conn_state)
+ continue;
+
+ dev = connector->dev;
+
+ if (!dev)
+ continue;
+
+ drm_modeset_lock(&dev->mode_config.connection_mutex, NULL);
+ mutex_lock(&hdcp_work->mutex);
+
+ if (conn_state->commit) {
+ ret = wait_for_completion_interruptible_timeout(
+ &conn_state->commit->hw_done, 10 * HZ);
+ if (ret == 0) {
+ DRM_ERROR(
+ "HDCP state unknown! Setting it to DESIRED");
+ hdcp_work->encryption_status[conn_index] =
+ MOD_HDCP_ENCRYPTION_STATUS_HDCP_OFF;
+ }
+ }
+ if (hdcp_work->encryption_status[conn_index] !=
+ MOD_HDCP_ENCRYPTION_STATUS_HDCP_OFF) {
+ if (conn_state->hdcp_content_type ==
DRM_MODE_HDCP_CONTENT_TYPE0 &&
- hdcp_work->encryption_status <=
- MOD_HDCP_ENCRYPTION_STATUS_HDCP2_TYPE0_ON)
- drm_hdcp_update_content_protection(&aconnector->base,
+ hdcp_work->encryption_status[conn_index] <=
+ MOD_HDCP_ENCRYPTION_STATUS_HDCP2_TYPE0_ON) {
+
+ DRM_DEBUG_DRIVER("[HDCP_DM] DRM_MODE_CONTENT_PROTECTION_ENABLED\n");
+ drm_hdcp_update_content_protection(
+ connector,
DRM_MODE_CONTENT_PROTECTION_ENABLED);
- else if (aconnector->base.state->hdcp_content_type ==
+ } else if (conn_state->hdcp_content_type ==
DRM_MODE_HDCP_CONTENT_TYPE1 &&
- hdcp_work->encryption_status ==
- MOD_HDCP_ENCRYPTION_STATUS_HDCP2_TYPE1_ON)
- drm_hdcp_update_content_protection(&aconnector->base,
+ hdcp_work->encryption_status[conn_index] ==
+ MOD_HDCP_ENCRYPTION_STATUS_HDCP2_TYPE1_ON) {
+ drm_hdcp_update_content_protection(
+ connector,
DRM_MODE_CONTENT_PROTECTION_ENABLED);
+ }
} else {
- drm_hdcp_update_content_protection(&aconnector->base,
- DRM_MODE_CONTENT_PROTECTION_DESIRED);
+ DRM_DEBUG_DRIVER("[HDCP_DM] DRM_MODE_CONTENT_PROTECTION_DESIRED\n");
+ drm_hdcp_update_content_protection(
+ connector, DRM_MODE_CONTENT_PROTECTION_DESIRED);
+
}
+ mutex_unlock(&hdcp_work->mutex);
+ drm_modeset_unlock(&dev->mode_config.connection_mutex);
}
-
- mutex_unlock(&hdcp_work->mutex);
- drm_modeset_unlock(&dev->mode_config.connection_mutex);
}
static void event_property_validate(struct work_struct *work)
@@ -340,19 +378,47 @@ static void event_property_validate(struct work_struct *work)
struct hdcp_workqueue *hdcp_work =
container_of(to_delayed_work(work), struct hdcp_workqueue, property_validate_dwork);
struct mod_hdcp_display_query query;
- struct amdgpu_dm_connector *aconnector = hdcp_work->aconnector;
-
- if (!aconnector)
- return;
+ struct amdgpu_dm_connector *aconnector;
+ unsigned int conn_index;
mutex_lock(&hdcp_work->mutex);
- query.encryption_status = MOD_HDCP_ENCRYPTION_STATUS_HDCP_OFF;
- mod_hdcp_query_display(&hdcp_work->hdcp, aconnector->base.index, &query);
+ for (conn_index = 0; conn_index < AMDGPU_DM_MAX_DISPLAY_INDEX;
+ conn_index++) {
+ aconnector = hdcp_work->aconnector[conn_index];
+
+ if (!aconnector)
+ continue;
+
+ /* check if display connected */
+ if (aconnector->base.status != connector_status_connected)
+ continue;
- if (query.encryption_status != hdcp_work->encryption_status) {
- hdcp_work->encryption_status = query.encryption_status;
- schedule_work(&hdcp_work->property_update_work);
+ if (!aconnector->base.state)
+ continue;
+
+ query.encryption_status = MOD_HDCP_ENCRYPTION_STATUS_HDCP_OFF;
+ mod_hdcp_query_display(&hdcp_work->hdcp, aconnector->base.index,
+ &query);
+
+ DRM_DEBUG_DRIVER("[HDCP_DM] disp %d, connector->CP %u, (query, work): (%d, %d)\n",
+ aconnector->base.index,
+ aconnector->base.state->content_protection,
+ query.encryption_status,
+ hdcp_work->encryption_status[conn_index]);
+
+ if (query.encryption_status !=
+ hdcp_work->encryption_status[conn_index]) {
+ DRM_DEBUG_DRIVER("[HDCP_DM] encryption_status change from %x to %x\n",
+ hdcp_work->encryption_status[conn_index], query.encryption_status);
+
+ hdcp_work->encryption_status[conn_index] =
+ query.encryption_status;
+
+ DRM_DEBUG_DRIVER("[HDCP_DM] trigger property_update_work\n");
+
+ schedule_work(&hdcp_work->property_update_work);
+ }
}
mutex_unlock(&hdcp_work->mutex);
@@ -493,9 +559,10 @@ static void update_config(void *handle, struct cp_psp_stream_config *config)
link->dp.rev = aconnector->dc_link->dpcd_caps.dpcd_rev.raw;
link->dp.assr_enabled = config->assr_enabled;
link->dp.mst_enabled = config->mst_enabled;
+ link->dp.dp2_enabled = config->dp2_enabled;
link->dp.usb4_enabled = config->usb4_enabled;
display->adjust.disable = MOD_HDCP_DISPLAY_DISABLE_AUTHENTICATION;
- link->adjust.auth_delay = 3;
+ link->adjust.auth_delay = 2;
link->adjust.hdcp1.disable = 0;
conn_state = aconnector->base.state;
@@ -686,6 +753,13 @@ struct hdcp_workqueue *hdcp_create_workqueue(struct amdgpu_device *adev, struct
hdcp_work[i].hdcp.config.ddc.funcs.read_i2c = lp_read_i2c;
hdcp_work[i].hdcp.config.ddc.funcs.write_dpcd = lp_write_dpcd;
hdcp_work[i].hdcp.config.ddc.funcs.read_dpcd = lp_read_dpcd;
+
+ memset(hdcp_work[i].aconnector, 0,
+ sizeof(struct amdgpu_dm_connector *) *
+ AMDGPU_DM_MAX_DISPLAY_INDEX);
+ memset(hdcp_work[i].encryption_status, 0,
+ sizeof(enum mod_hdcp_encryption_status) *
+ AMDGPU_DM_MAX_DISPLAY_INDEX);
}
cp_psp->funcs.update_stream_config = update_config;
diff --git a/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_hdcp.h b/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_hdcp.h
index 09294ff122fe..69b445b011c8 100644
--- a/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_hdcp.h
+++ b/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_hdcp.h
@@ -43,7 +43,7 @@ struct hdcp_workqueue {
struct delayed_work callback_dwork;
struct delayed_work watchdog_timer_dwork;
struct delayed_work property_validate_dwork;
- struct amdgpu_dm_connector *aconnector;
+ struct amdgpu_dm_connector *aconnector[AMDGPU_DM_MAX_DISPLAY_INDEX];
struct mutex mutex;
struct mod_hdcp hdcp;
@@ -51,7 +51,20 @@ struct hdcp_workqueue {
struct mod_hdcp_display display;
struct mod_hdcp_link link;
- enum mod_hdcp_encryption_status encryption_status;
+ enum mod_hdcp_encryption_status encryption_status[AMDGPU_DM_MAX_DISPLAY_INDEX];
+ /* when display is unplugged from mst hub, connctor will be
+ * destroyed within dm_dp_mst_connector_destroy. connector
+ * hdcp perperties, like type, undesired, desired, enabled,
+ * will be lost. So, save hdcp properties into hdcp_work within
+ * amdgpu_dm_atomic_commit_tail. if the same display is
+ * plugged back with same display index, its hdcp properties
+ * will be retrieved from hdcp_work within dm_dp_mst_get_modes
+ */
+ /* un-desired, desired, enabled */
+ unsigned int content_protection[AMDGPU_DM_MAX_DISPLAY_INDEX];
+ /* hdcp1.x, hdcp2.x */
+ unsigned int hdcp_content_type[AMDGPU_DM_MAX_DISPLAY_INDEX];
+
uint8_t max_link;
uint8_t *srm;
diff --git a/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_helpers.c b/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_helpers.c
index f0b01c8dc4a6..c6ce2b7123b7 100644
--- a/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_helpers.c
+++ b/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_helpers.c
@@ -38,42 +38,14 @@
#include "amdgpu_dm.h"
#include "amdgpu_dm_irq.h"
#include "amdgpu_dm_mst_types.h"
+#include "dpcd_defs.h"
+#include "dc/inc/core_types.h"
#include "dm_helpers.h"
#include "ddc_service_types.h"
-struct monitor_patch_info {
- unsigned int manufacturer_id;
- unsigned int product_id;
- void (*patch_func)(struct dc_edid_caps *edid_caps, unsigned int param);
- unsigned int patch_param;
-};
-static void set_max_dsc_bpp_limit(struct dc_edid_caps *edid_caps, unsigned int param);
-
-static const struct monitor_patch_info monitor_patch_table[] = {
-{0x6D1E, 0x5BBF, set_max_dsc_bpp_limit, 15},
-{0x6D1E, 0x5B9A, set_max_dsc_bpp_limit, 15},
-};
-
-static void set_max_dsc_bpp_limit(struct dc_edid_caps *edid_caps, unsigned int param)
-{
- if (edid_caps)
- edid_caps->panel_patch.max_dsc_target_bpp_limit = param;
-}
-
-static int amdgpu_dm_patch_edid_caps(struct dc_edid_caps *edid_caps)
-{
- int i, ret = 0;
-
- for (i = 0; i < ARRAY_SIZE(monitor_patch_table); i++)
- if ((edid_caps->manufacturer_id == monitor_patch_table[i].manufacturer_id)
- && (edid_caps->product_id == monitor_patch_table[i].product_id)) {
- monitor_patch_table[i].patch_func(edid_caps, monitor_patch_table[i].patch_param);
- ret++;
- }
-
- return ret;
-}
+/* MST Dock */
+static const uint8_t SYNAPTICS_DEVICE_ID[] = "SYNA";
/* dm_helpers_parse_edid_caps
*
@@ -149,29 +121,54 @@ enum dc_edid_status dm_helpers_parse_edid_caps(
kfree(sads);
kfree(sadb);
- amdgpu_dm_patch_edid_caps(edid_caps);
-
return result;
}
static void
-fill_dc_mst_payload_table_from_drm(struct drm_dp_mst_topology_state *mst_state,
- struct amdgpu_dm_connector *aconnector,
+fill_dc_mst_payload_table_from_drm(struct dc_link *link,
+ bool enable,
+ struct drm_dp_mst_atomic_payload *target_payload,
struct dc_dp_mst_stream_allocation_table *table)
{
struct dc_dp_mst_stream_allocation_table new_table = { 0 };
struct dc_dp_mst_stream_allocation *sa;
- struct drm_dp_mst_atomic_payload *payload;
+ struct link_mst_stream_allocation_table copy_of_link_table =
+ link->mst_stream_alloc_table;
- /* Fill payload info*/
- list_for_each_entry(payload, &mst_state->payloads, next) {
- if (payload->delete)
- continue;
+ int i;
+ int current_hw_table_stream_cnt = copy_of_link_table.stream_count;
+ struct link_mst_stream_allocation *dc_alloc;
+
+ /* TODO: refactor to set link->mst_stream_alloc_table directly if possible.*/
+ if (enable) {
+ dc_alloc =
+ &copy_of_link_table.stream_allocations[current_hw_table_stream_cnt];
+ dc_alloc->vcp_id = target_payload->vcpi;
+ dc_alloc->slot_count = target_payload->time_slots;
+ } else {
+ for (i = 0; i < copy_of_link_table.stream_count; i++) {
+ dc_alloc =
+ &copy_of_link_table.stream_allocations[i];
+
+ if (dc_alloc->vcp_id == target_payload->vcpi) {
+ dc_alloc->vcp_id = 0;
+ dc_alloc->slot_count = 0;
+ break;
+ }
+ }
+ ASSERT(i != copy_of_link_table.stream_count);
+ }
- sa = &new_table.stream_allocations[new_table.stream_count];
- sa->slot_count = payload->time_slots;
- sa->vcp_id = payload->vcpi;
- new_table.stream_count++;
+ /* Fill payload info*/
+ for (i = 0; i < MAX_CONTROLLER_NUM; i++) {
+ dc_alloc =
+ &copy_of_link_table.stream_allocations[i];
+ if (dc_alloc->vcp_id > 0 && dc_alloc->slot_count > 0) {
+ sa = &new_table.stream_allocations[new_table.stream_count];
+ sa->slot_count = dc_alloc->slot_count;
+ sa->vcp_id = dc_alloc->vcp_id;
+ new_table.stream_count++;
+ }
}
/* Overwrite the old table */
@@ -183,6 +180,40 @@ void dm_helpers_dp_update_branch_info(
const struct dc_link *link)
{}
+static void dm_helpers_construct_old_payload(
+ struct dc_link *link,
+ int pbn_per_slot,
+ struct drm_dp_mst_atomic_payload *new_payload,
+ struct drm_dp_mst_atomic_payload *old_payload)
+{
+ struct link_mst_stream_allocation_table current_link_table =
+ link->mst_stream_alloc_table;
+ struct link_mst_stream_allocation *dc_alloc;
+ int i;
+
+ *old_payload = *new_payload;
+
+ /* Set correct time_slots/PBN of old payload.
+ * other fields (delete & dsc_enabled) in
+ * struct drm_dp_mst_atomic_payload are don't care fields
+ * while calling drm_dp_remove_payload()
+ */
+ for (i = 0; i < current_link_table.stream_count; i++) {
+ dc_alloc =
+ &current_link_table.stream_allocations[i];
+
+ if (dc_alloc->vcp_id == new_payload->vcpi) {
+ old_payload->time_slots = dc_alloc->slot_count;
+ old_payload->pbn = dc_alloc->slot_count * pbn_per_slot;
+ break;
+ }
+ }
+
+ /* make sure there is an old payload*/
+ ASSERT(i != current_link_table.stream_count);
+
+}
+
/*
* Writes payload allocation table in immediate downstream device.
*/
@@ -194,7 +225,7 @@ bool dm_helpers_dp_mst_write_payload_allocation_table(
{
struct amdgpu_dm_connector *aconnector;
struct drm_dp_mst_topology_state *mst_state;
- struct drm_dp_mst_atomic_payload *payload;
+ struct drm_dp_mst_atomic_payload *target_payload, *new_payload, old_payload;
struct drm_dp_mst_topology_mgr *mst_mgr;
aconnector = (struct amdgpu_dm_connector *)stream->dm_stream_context;
@@ -203,24 +234,33 @@ bool dm_helpers_dp_mst_write_payload_allocation_table(
* that blocks before commit guaranteeing that the state
* is not gonna be swapped while still in use in commit tail */
- if (!aconnector || !aconnector->mst_port)
+ if (!aconnector || !aconnector->mst_root)
return false;
- mst_mgr = &aconnector->mst_port->mst_mgr;
+ mst_mgr = &aconnector->mst_root->mst_mgr;
mst_state = to_drm_dp_mst_topology_state(mst_mgr->base.state);
/* It's OK for this to fail */
- payload = drm_atomic_get_mst_payload_state(mst_state, aconnector->port);
- if (enable)
- drm_dp_add_payload_part1(mst_mgr, mst_state, payload);
- else
- drm_dp_remove_payload(mst_mgr, mst_state, payload);
+ new_payload = drm_atomic_get_mst_payload_state(mst_state, aconnector->mst_output_port);
+
+ if (enable) {
+ target_payload = new_payload;
+
+ drm_dp_add_payload_part1(mst_mgr, mst_state, new_payload);
+ } else {
+ /* construct old payload by VCPI*/
+ dm_helpers_construct_old_payload(stream->link, mst_state->pbn_div,
+ new_payload, &old_payload);
+ target_payload = &old_payload;
+
+ drm_dp_remove_payload(mst_mgr, mst_state, &old_payload, new_payload);
+ }
/* mst_mgr->->payloads are VC payload notify MST branch using DPCD or
* AUX message. The sequence is slot 1-63 allocated sequence for each
* stream. AMD ASIC stream slot allocation should follow the same
* sequence. copy DRM MST allocation to dc */
- fill_dc_mst_payload_table_from_drm(mst_state, aconnector, proposed_table);
+ fill_dc_mst_payload_table_from_drm(stream->link, enable, target_payload, proposed_table);
return true;
}
@@ -255,10 +295,10 @@ enum act_return_status dm_helpers_dp_mst_poll_for_allocation_change_trigger(
aconnector = (struct amdgpu_dm_connector *)stream->dm_stream_context;
- if (!aconnector || !aconnector->mst_port)
+ if (!aconnector || !aconnector->mst_root)
return ACT_FAILED;
- mst_mgr = &aconnector->mst_port->mst_mgr;
+ mst_mgr = &aconnector->mst_root->mst_mgr;
if (!mst_mgr->mst_state)
return ACT_FAILED;
@@ -282,22 +322,27 @@ bool dm_helpers_dp_mst_send_payload_allocation(
struct drm_dp_mst_atomic_payload *payload;
enum mst_progress_status set_flag = MST_ALLOCATE_NEW_PAYLOAD;
enum mst_progress_status clr_flag = MST_CLEAR_ALLOCATED_PAYLOAD;
+ int ret = 0;
aconnector = (struct amdgpu_dm_connector *)stream->dm_stream_context;
- if (!aconnector || !aconnector->mst_port)
+ if (!aconnector || !aconnector->mst_root)
return false;
- mst_mgr = &aconnector->mst_port->mst_mgr;
+ mst_mgr = &aconnector->mst_root->mst_mgr;
mst_state = to_drm_dp_mst_topology_state(mst_mgr->base.state);
- payload = drm_atomic_get_mst_payload_state(mst_state, aconnector->port);
+ payload = drm_atomic_get_mst_payload_state(mst_state, aconnector->mst_output_port);
+
if (!enable) {
set_flag = MST_CLEAR_ALLOCATED_PAYLOAD;
clr_flag = MST_ALLOCATE_NEW_PAYLOAD;
}
- if (enable && drm_dp_add_payload_part2(mst_mgr, mst_state->base.state, payload)) {
+ if (enable)
+ ret = drm_dp_add_payload_part2(mst_mgr, mst_state->base.state, payload);
+
+ if (ret) {
amdgpu_dm_set_mst_status(&aconnector->mst_status,
set_flag, false);
} else {
@@ -404,6 +449,7 @@ bool dm_helpers_dp_mst_start_top_mgr(
bool boot)
{
struct amdgpu_dm_connector *aconnector = link->priv;
+ int ret;
if (!aconnector) {
DRM_ERROR("Failed to find connector for link!");
@@ -419,7 +465,16 @@ bool dm_helpers_dp_mst_start_top_mgr(
DRM_INFO("DM_MST: starting TM on aconnector: %p [id: %d]\n",
aconnector, aconnector->base.base.id);
- return (drm_dp_mst_topology_mgr_set_mst(&aconnector->mst_mgr, true) == 0);
+ ret = drm_dp_mst_topology_mgr_set_mst(&aconnector->mst_mgr, true);
+ if (ret < 0) {
+ DRM_ERROR("DM_MST: Failed to set the device into MST mode!");
+ return false;
+ }
+
+ DRM_INFO("DM_MST: DP%x, %d-lane link detected\n", aconnector->mst_mgr.dpcd[0],
+ aconnector->mst_mgr.dpcd[2] & DP_MAX_LANE_COUNT_MASK);
+
+ return true;
}
bool dm_helpers_dp_mst_stop_top_mgr(
@@ -459,8 +514,8 @@ bool dm_helpers_dp_read_dpcd(
return false;
}
- return drm_dp_dpcd_read(&aconnector->dm_dp_aux.aux, address,
- data, size) > 0;
+ return drm_dp_dpcd_read(&aconnector->dm_dp_aux.aux, address, data,
+ size) == size;
}
bool dm_helpers_dp_write_dpcd(
@@ -516,7 +571,6 @@ bool dm_helpers_submit_i2c(
return result;
}
-#if defined(CONFIG_DRM_AMD_DC_DCN)
static bool execute_synaptics_rc_command(struct drm_dp_aux *aux,
bool is_write_cmd,
unsigned char cmd,
@@ -633,7 +687,6 @@ static void apply_synaptics_fifo_reset_wa(struct drm_dp_aux *aux)
return;
data[0] |= (1 << 1); // set bit 1 to 1
- return;
if (!execute_synaptics_rc_command(aux, false, 0x31, 4, 0x221198, data))
return;
@@ -684,7 +737,6 @@ static uint8_t write_dsc_enable_synaptics_non_virtual_dpcd_mst(
return ret;
}
-#endif
bool dm_helpers_dp_write_dsc_enable(
struct dc_context *ctx,
@@ -710,15 +762,13 @@ bool dm_helpers_dp_write_dsc_enable(
if (!aconnector->dsc_aux)
return false;
-#if defined(CONFIG_DRM_AMD_DC_DCN)
// apply w/a to synaptics
if (needs_dsc_aux_workaround(aconnector->dc_link) &&
(aconnector->mst_downstream_port_present.byte & 0x7) != 0x3)
return write_dsc_enable_synaptics_non_virtual_dpcd_mst(
aconnector->dsc_aux, stream, enable_dsc);
-#endif
- port = aconnector->port;
+ port = aconnector->mst_output_port;
if (enable) {
if (port->passthrough_aux) {
@@ -754,17 +804,13 @@ bool dm_helpers_dp_write_dsc_enable(
}
if (stream->signal == SIGNAL_TYPE_DISPLAY_PORT || stream->signal == SIGNAL_TYPE_EDP) {
-#if defined(CONFIG_DRM_AMD_DC_DCN)
if (stream->sink->link->dpcd_caps.dongle_type == DISPLAY_DONGLE_NONE) {
-#endif
ret = dm_helpers_dp_write_dpcd(ctx, stream->link, DP_DSC_ENABLE, &enable_dsc, 1);
DC_LOG_DC("Send DSC %s to SST RX\n", enable_dsc ? "enable" : "disable");
-#if defined(CONFIG_DRM_AMD_DC_DCN)
} else if (stream->sink->link->dpcd_caps.dongle_type == DISPLAY_DONGLE_DP_HDMI_CONVERTER) {
ret = dm_helpers_dp_write_dpcd(ctx, stream->link, DP_DSC_ENABLE, &enable_dsc, 1);
DC_LOG_DC("Send DSC %s to DP-HDMI PCON\n", enable_dsc ? "enable" : "disable");
}
-#endif
}
return ret;
@@ -852,9 +898,8 @@ int dm_helper_dmub_aux_transfer_sync(
struct aux_payload *payload,
enum aux_return_code_type *operation_result)
{
- return amdgpu_dm_process_dmub_aux_transfer_sync(true, ctx,
- link->link_index, (void *)payload,
- (void *)operation_result);
+ return amdgpu_dm_process_dmub_aux_transfer_sync(ctx, link->link_index, payload,
+ operation_result);
}
int dm_helpers_dmub_set_config_sync(struct dc_context *ctx,
@@ -862,9 +907,8 @@ int dm_helpers_dmub_set_config_sync(struct dc_context *ctx,
struct set_config_cmd_payload *payload,
enum set_config_status *operation_result)
{
- return amdgpu_dm_process_dmub_aux_transfer_sync(false, ctx,
- link->link_index, (void *)payload,
- (void *)operation_result);
+ return amdgpu_dm_process_dmub_set_config_sync(ctx, link->link_index, payload,
+ operation_result);
}
void dm_set_dcn_clocks(struct dc_context *ctx, struct dc_clocks *clks)
@@ -997,6 +1041,128 @@ void dm_helpers_mst_enable_stream_features(const struct dc_stream_state *stream)
sizeof(new_downspread));
}
+bool dm_helpers_dp_handle_test_pattern_request(
+ struct dc_context *ctx,
+ const struct dc_link *link,
+ union link_test_pattern dpcd_test_pattern,
+ union test_misc dpcd_test_params)
+{
+ enum dp_test_pattern test_pattern;
+ enum dp_test_pattern_color_space test_pattern_color_space =
+ DP_TEST_PATTERN_COLOR_SPACE_UNDEFINED;
+ enum dc_color_depth requestColorDepth = COLOR_DEPTH_UNDEFINED;
+ enum dc_pixel_encoding requestPixelEncoding = PIXEL_ENCODING_UNDEFINED;
+ struct pipe_ctx *pipes = link->dc->current_state->res_ctx.pipe_ctx;
+ struct pipe_ctx *pipe_ctx = NULL;
+ struct amdgpu_dm_connector *aconnector = link->priv;
+ int i;
+
+ for (i = 0; i < MAX_PIPES; i++) {
+ if (pipes[i].stream == NULL)
+ continue;
+
+ if (pipes[i].stream->link == link && !pipes[i].top_pipe &&
+ !pipes[i].prev_odm_pipe) {
+ pipe_ctx = &pipes[i];
+ break;
+ }
+ }
+
+ if (pipe_ctx == NULL)
+ return false;
+
+ switch (dpcd_test_pattern.bits.PATTERN) {
+ case LINK_TEST_PATTERN_COLOR_RAMP:
+ test_pattern = DP_TEST_PATTERN_COLOR_RAMP;
+ break;
+ case LINK_TEST_PATTERN_VERTICAL_BARS:
+ test_pattern = DP_TEST_PATTERN_VERTICAL_BARS;
+ break; /* black and white */
+ case LINK_TEST_PATTERN_COLOR_SQUARES:
+ test_pattern = (dpcd_test_params.bits.DYN_RANGE ==
+ TEST_DYN_RANGE_VESA ?
+ DP_TEST_PATTERN_COLOR_SQUARES :
+ DP_TEST_PATTERN_COLOR_SQUARES_CEA);
+ break;
+ default:
+ test_pattern = DP_TEST_PATTERN_VIDEO_MODE;
+ break;
+ }
+
+ if (dpcd_test_params.bits.CLR_FORMAT == 0)
+ test_pattern_color_space = DP_TEST_PATTERN_COLOR_SPACE_RGB;
+ else
+ test_pattern_color_space = dpcd_test_params.bits.YCBCR_COEFS ?
+ DP_TEST_PATTERN_COLOR_SPACE_YCBCR709 :
+ DP_TEST_PATTERN_COLOR_SPACE_YCBCR601;
+
+ switch (dpcd_test_params.bits.BPC) {
+ case 0: // 6 bits
+ requestColorDepth = COLOR_DEPTH_666;
+ break;
+ case 1: // 8 bits
+ requestColorDepth = COLOR_DEPTH_888;
+ break;
+ case 2: // 10 bits
+ requestColorDepth = COLOR_DEPTH_101010;
+ break;
+ case 3: // 12 bits
+ requestColorDepth = COLOR_DEPTH_121212;
+ break;
+ default:
+ break;
+ }
+
+ switch (dpcd_test_params.bits.CLR_FORMAT) {
+ case 0:
+ requestPixelEncoding = PIXEL_ENCODING_RGB;
+ break;
+ case 1:
+ requestPixelEncoding = PIXEL_ENCODING_YCBCR422;
+ break;
+ case 2:
+ requestPixelEncoding = PIXEL_ENCODING_YCBCR444;
+ break;
+ default:
+ requestPixelEncoding = PIXEL_ENCODING_RGB;
+ break;
+ }
+
+ if ((requestColorDepth != COLOR_DEPTH_UNDEFINED
+ && pipe_ctx->stream->timing.display_color_depth != requestColorDepth)
+ || (requestPixelEncoding != PIXEL_ENCODING_UNDEFINED
+ && pipe_ctx->stream->timing.pixel_encoding != requestPixelEncoding)) {
+ DC_LOG_DEBUG("%s: original bpc %d pix encoding %d, changing to %d %d\n",
+ __func__,
+ pipe_ctx->stream->timing.display_color_depth,
+ pipe_ctx->stream->timing.pixel_encoding,
+ requestColorDepth,
+ requestPixelEncoding);
+ pipe_ctx->stream->timing.display_color_depth = requestColorDepth;
+ pipe_ctx->stream->timing.pixel_encoding = requestPixelEncoding;
+
+ dc_link_update_dsc_config(pipe_ctx);
+
+ aconnector->timing_changed = true;
+ /* store current timing */
+ if (aconnector->timing_requested)
+ *aconnector->timing_requested = pipe_ctx->stream->timing;
+ else
+ DC_LOG_ERROR("%s: timing storage failed\n", __func__);
+
+ }
+
+ dc_link_dp_set_test_pattern(
+ (struct dc_link *) link,
+ test_pattern,
+ test_pattern_color_space,
+ NULL,
+ NULL,
+ 0);
+
+ return false;
+}
+
void dm_set_phyd32clk(struct dc_context *ctx, int freq_khz)
{
// TODO
@@ -1006,3 +1172,46 @@ void dm_helpers_enable_periodic_detection(struct dc_context *ctx, bool enable)
{
/* TODO: add periodic detection implementation */
}
+
+void dm_helpers_dp_mst_update_branch_bandwidth(
+ struct dc_context *ctx,
+ struct dc_link *link)
+{
+ // TODO
+}
+
+static bool dm_is_freesync_pcon_whitelist(const uint32_t branch_dev_id)
+{
+ bool ret_val = false;
+
+ switch (branch_dev_id) {
+ case DP_BRANCH_DEVICE_ID_0060AD:
+ case DP_BRANCH_DEVICE_ID_00E04C:
+ case DP_BRANCH_DEVICE_ID_90CC24:
+ ret_val = true;
+ break;
+ default:
+ break;
+ }
+
+ return ret_val;
+}
+
+enum adaptive_sync_type dm_get_adaptive_sync_support_type(struct dc_link *link)
+{
+ struct dpcd_caps *dpcd_caps = &link->dpcd_caps;
+ enum adaptive_sync_type as_type = ADAPTIVE_SYNC_TYPE_NONE;
+
+ switch (dpcd_caps->dongle_type) {
+ case DISPLAY_DONGLE_DP_HDMI_CONVERTER:
+ if (dpcd_caps->adaptive_sync_caps.dp_adap_sync_caps.bits.ADAPTIVE_SYNC_SDP_SUPPORT == true &&
+ dpcd_caps->allow_invalid_MSA_timing_param == true &&
+ dm_is_freesync_pcon_whitelist(dpcd_caps->branch_dev_id))
+ as_type = FREESYNC_TYPE_PCON_IN_WHITELIST;
+ break;
+ default:
+ break;
+ }
+
+ return as_type;
+}
diff --git a/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_irq_params.h b/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_irq_params.h
index 79b5f9999fec..5c9303241aeb 100644
--- a/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_irq_params.h
+++ b/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_irq_params.h
@@ -39,7 +39,7 @@ struct dm_irq_params {
#ifdef CONFIG_DEBUG_FS
enum amdgpu_dm_pipe_crc_source crc_src;
#ifdef CONFIG_DRM_AMD_SECURE_DISPLAY
- struct crc_window_parm crc_window;
+ struct crc_window_param window_param;
#endif
#endif
};
diff --git a/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_mst_types.c b/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_mst_types.c
index 6ff96b4bdda5..810ab682f424 100644
--- a/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_mst_types.c
+++ b/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_mst_types.c
@@ -31,16 +31,14 @@
#include "amdgpu.h"
#include "amdgpu_dm.h"
#include "amdgpu_dm_mst_types.h"
+#include "amdgpu_dm_hdcp.h"
#include "dc.h"
#include "dm_helpers.h"
-#include "dc_link_ddc.h"
-#include "dc_link_dp.h"
#include "ddc_service_types.h"
#include "dpcd_defs.h"
-#include "i2caux_interface.h"
#include "dmub_cmd.h"
#if defined(CONFIG_DEBUG_FS)
#include "amdgpu_dm_debugfs.h"
@@ -49,7 +47,7 @@
#include "dc/dcn20/dcn20_resource.h"
bool is_timing_changed(struct dc_stream_state *cur_stream,
struct dc_stream_state *new_stream);
-
+#define PEAK_FACTOR_X1000 1006
static ssize_t dm_dp_aux_transfer(struct drm_dp_aux *aux,
struct drm_dp_aux_msg *msg)
@@ -132,7 +130,7 @@ dm_dp_mst_connector_destroy(struct drm_connector *connector)
kfree(aconnector->edid);
drm_connector_cleanup(connector);
- drm_dp_mst_put_port_malloc(aconnector->port);
+ drm_dp_mst_put_port_malloc(aconnector->mst_output_port);
kfree(aconnector);
}
@@ -144,7 +142,7 @@ amdgpu_dm_mst_connector_late_register(struct drm_connector *connector)
int r;
r = drm_dp_mst_connector_late_register(connector,
- amdgpu_dm_connector->port);
+ amdgpu_dm_connector->mst_output_port);
if (r < 0)
return r;
@@ -160,8 +158,8 @@ amdgpu_dm_mst_connector_early_unregister(struct drm_connector *connector)
{
struct amdgpu_dm_connector *aconnector =
to_amdgpu_dm_connector(connector);
- struct drm_dp_mst_port *port = aconnector->port;
- struct amdgpu_dm_connector *root = aconnector->mst_port;
+ struct drm_dp_mst_port *port = aconnector->mst_output_port;
+ struct amdgpu_dm_connector *root = aconnector->mst_root;
struct dc_link *dc_link = aconnector->dc_link;
struct dc_sink *dc_sink = aconnector->dc_sink;
@@ -176,6 +174,9 @@ amdgpu_dm_mst_connector_early_unregister(struct drm_connector *connector)
if (dc_link->sink_count)
dc_link_remove_remote_sink(dc_link, dc_sink);
+ DC_LOG_MST("DM_MST: remove remote sink 0x%p, %d remaining\n",
+ dc_sink, dc_link->sink_count);
+
dc_sink_release(dc_sink);
aconnector->dc_sink = NULL;
aconnector->edid = NULL;
@@ -197,7 +198,6 @@ static const struct drm_connector_funcs dm_dp_mst_connector_funcs = {
.early_unregister = amdgpu_dm_mst_connector_early_unregister,
};
-#if defined(CONFIG_DRM_AMD_DC_DCN)
bool needs_dsc_aux_workaround(struct dc_link *link)
{
if (link->dpcd_caps.branch_dev_id == DP_BRANCH_DEVICE_ID_90CC24 &&
@@ -208,10 +208,25 @@ bool needs_dsc_aux_workaround(struct dc_link *link)
return false;
}
+static bool is_synaptics_cascaded_panamera(struct dc_link *link, struct drm_dp_mst_port *port)
+{
+ u8 branch_vendor_data[4] = { 0 }; // Vendor data 0x50C ~ 0x50F
+
+ if (drm_dp_dpcd_read(port->mgr->aux, DP_BRANCH_VENDOR_SPECIFIC_START, &branch_vendor_data, 4) == 4) {
+ if (link->dpcd_caps.branch_dev_id == DP_BRANCH_DEVICE_ID_90CC24 &&
+ IS_SYNAPTICS_CASCADED_PANAMERA(link->dpcd_caps.branch_dev_name, branch_vendor_data)) {
+ DRM_INFO("Synaptics Cascaded MST hub\n");
+ return true;
+ }
+ }
+
+ return false;
+}
+
static bool validate_dsc_caps_on_connector(struct amdgpu_dm_connector *aconnector)
{
struct dc_sink *dc_sink = aconnector->dc_sink;
- struct drm_dp_mst_port *port = aconnector->port;
+ struct drm_dp_mst_port *port = aconnector->mst_output_port;
u8 dsc_caps[16] = { 0 };
u8 dsc_branch_dec_caps_raw[3] = { 0 }; // DSC branch decoder caps 0xA0 ~ 0xA2
u8 *dsc_branch_dec_caps = NULL;
@@ -229,7 +244,11 @@ static bool validate_dsc_caps_on_connector(struct amdgpu_dm_connector *aconnecto
*/
if (!aconnector->dsc_aux && !port->parent->port_parent &&
needs_dsc_aux_workaround(aconnector->dc_link))
- aconnector->dsc_aux = &aconnector->mst_port->dm_dp_aux.aux;
+ aconnector->dsc_aux = &aconnector->mst_root->dm_dp_aux.aux;
+
+ /* synaptics cascaded MST hub case */
+ if (!aconnector->dsc_aux && is_synaptics_cascaded_panamera(aconnector->dc_link, port))
+ aconnector->dsc_aux = port->mgr->aux;
if (!aconnector->dsc_aux)
return false;
@@ -267,7 +286,6 @@ static bool retrieve_downstream_port_device(struct amdgpu_dm_connector *aconnect
return true;
}
-#endif
static int dm_dp_mst_get_modes(struct drm_connector *connector)
{
@@ -279,7 +297,7 @@ static int dm_dp_mst_get_modes(struct drm_connector *connector)
if (!aconnector->edid) {
struct edid *edid;
- edid = drm_dp_mst_get_edid(connector, &aconnector->mst_port->mst_mgr, aconnector->port);
+ edid = drm_dp_mst_get_edid(connector, &aconnector->mst_root->mst_mgr, aconnector->mst_output_port);
if (!edid) {
amdgpu_dm_set_mst_status(&aconnector->mst_status,
@@ -307,6 +325,9 @@ static int dm_dp_mst_get_modes(struct drm_connector *connector)
return 0;
}
+ DC_LOG_MST("DM_MST: add remote sink 0x%p, %d remaining\n",
+ dc_sink, aconnector->dc_link->sink_count);
+
dc_sink->priv = aconnector;
aconnector->dc_sink = dc_sink;
}
@@ -340,15 +361,41 @@ static int dm_dp_mst_get_modes(struct drm_connector *connector)
return 0;
}
+ DC_LOG_MST("DM_MST: add remote sink 0x%p, %d remaining\n",
+ dc_sink, aconnector->dc_link->sink_count);
+
dc_sink->priv = aconnector;
/* dc_link_add_remote_sink returns a new reference */
aconnector->dc_sink = dc_sink;
+ /* when display is unplugged from mst hub, connctor will be
+ * destroyed within dm_dp_mst_connector_destroy. connector
+ * hdcp perperties, like type, undesired, desired, enabled,
+ * will be lost. So, save hdcp properties into hdcp_work within
+ * amdgpu_dm_atomic_commit_tail. if the same display is
+ * plugged back with same display index, its hdcp properties
+ * will be retrieved from hdcp_work within dm_dp_mst_get_modes
+ */
+ if (aconnector->dc_sink && connector->state) {
+ struct drm_device *dev = connector->dev;
+ struct amdgpu_device *adev = drm_to_adev(dev);
+
+ if (adev->dm.hdcp_workqueue) {
+ struct hdcp_workqueue *hdcp_work = adev->dm.hdcp_workqueue;
+ struct hdcp_workqueue *hdcp_w =
+ &hdcp_work[aconnector->dc_link->link_index];
+
+ connector->state->hdcp_content_type =
+ hdcp_w->hdcp_content_type[connector->index];
+ connector->state->content_protection =
+ hdcp_w->content_protection[connector->index];
+ }
+ }
+
if (aconnector->dc_sink) {
amdgpu_dm_update_freesync_caps(
connector, aconnector->edid);
-#if defined(CONFIG_DRM_AMD_DC_DCN)
if (!validate_dsc_caps_on_connector(aconnector))
memset(&aconnector->dc_sink->dsc_caps,
0, sizeof(aconnector->dc_sink->dsc_caps));
@@ -356,7 +403,6 @@ static int dm_dp_mst_get_modes(struct drm_connector *connector)
if (!retrieve_downstream_port_device(aconnector))
memset(&aconnector->mst_downstream_port_present,
0, sizeof(aconnector->mst_downstream_port_present));
-#endif
}
}
@@ -386,15 +432,15 @@ dm_dp_mst_detect(struct drm_connector *connector,
struct drm_modeset_acquire_ctx *ctx, bool force)
{
struct amdgpu_dm_connector *aconnector = to_amdgpu_dm_connector(connector);
- struct amdgpu_dm_connector *master = aconnector->mst_port;
- struct drm_dp_mst_port *port = aconnector->port;
+ struct amdgpu_dm_connector *master = aconnector->mst_root;
+ struct drm_dp_mst_port *port = aconnector->mst_output_port;
int connection_status;
if (drm_connector_is_unregistered(connector))
return connector_status_disconnected;
connection_status = drm_dp_mst_detect_port(connector, ctx, &master->mst_mgr,
- aconnector->port);
+ aconnector->mst_output_port);
if (port->pdt != DP_PEER_DEVICE_NONE && !port->dpcd_rev) {
uint8_t dpcd_rev;
@@ -435,6 +481,9 @@ dm_dp_mst_detect(struct drm_connector *connector,
if (aconnector->dc_link->sink_count)
dc_link_remove_remote_sink(aconnector->dc_link, aconnector->dc_sink);
+ DC_LOG_MST("DM_MST: remove remote sink 0x%p, %d remaining\n",
+ aconnector->dc_link, aconnector->dc_link->sink_count);
+
dc_sink_release(aconnector->dc_sink);
aconnector->dc_sink = NULL;
aconnector->edid = NULL;
@@ -451,8 +500,8 @@ static int dm_dp_mst_atomic_check(struct drm_connector *connector,
struct drm_atomic_state *state)
{
struct amdgpu_dm_connector *aconnector = to_amdgpu_dm_connector(connector);
- struct drm_dp_mst_topology_mgr *mst_mgr = &aconnector->mst_port->mst_mgr;
- struct drm_dp_mst_port *mst_port = aconnector->port;
+ struct drm_dp_mst_topology_mgr *mst_mgr = &aconnector->mst_root->mst_mgr;
+ struct drm_dp_mst_port *mst_port = aconnector->mst_output_port;
return drm_dp_atomic_release_time_slots(state, mst_mgr, mst_port);
}
@@ -468,7 +517,6 @@ static const struct drm_connector_helper_funcs dm_dp_mst_connector_helper_funcs
static void amdgpu_dm_encoder_destroy(struct drm_encoder *encoder)
{
drm_encoder_cleanup(encoder);
- kfree(encoder);
}
static const struct drm_encoder_funcs amdgpu_dm_encoder_funcs = {
@@ -515,8 +563,8 @@ dm_dp_add_mst_connector(struct drm_dp_mst_topology_mgr *mgr,
return NULL;
connector = &aconnector->base;
- aconnector->port = port;
- aconnector->mst_port = master;
+ aconnector->mst_output_port = port;
+ aconnector->mst_root = master;
amdgpu_dm_set_mst_status(&aconnector->mst_status,
MST_PROBE, true);
@@ -613,8 +661,6 @@ int dm_mst_get_pbn_divider(struct dc_link *link)
dc_link_get_link_cap(link)) / (8 * 1000 * 54);
}
-#if defined(CONFIG_DRM_AMD_DC_DCN)
-
struct dsc_mst_fairness_params {
struct dc_crtc_timing *timing;
struct dc_sink *sink;
@@ -628,12 +674,25 @@ struct dsc_mst_fairness_params {
struct amdgpu_dm_connector *aconnector;
};
-static int kbps_to_peak_pbn(int kbps)
+static uint16_t get_fec_overhead_multiplier(struct dc_link *dc_link)
+{
+ u8 link_coding_cap;
+ uint16_t fec_overhead_multiplier_x1000 = PBN_FEC_OVERHEAD_MULTIPLIER_8B_10B;
+
+ link_coding_cap = dc_link_dp_mst_decide_link_encoding_format(dc_link);
+ if (link_coding_cap == DP_128b_132b_ENCODING)
+ fec_overhead_multiplier_x1000 = PBN_FEC_OVERHEAD_MULTIPLIER_128B_132B;
+
+ return fec_overhead_multiplier_x1000;
+}
+
+static int kbps_to_peak_pbn(int kbps, uint16_t fec_overhead_multiplier_x1000)
{
u64 peak_kbps = kbps;
peak_kbps *= 1006;
- peak_kbps = div_u64(peak_kbps, 1000);
+ peak_kbps *= fec_overhead_multiplier_x1000;
+ peak_kbps = div_u64(peak_kbps, 1000 * 1000);
return (int) DIV64_U64_ROUND_UP(peak_kbps * 64, (54 * 8 * 1000));
}
@@ -642,15 +701,21 @@ static void set_dsc_configs_from_fairness_vars(struct dsc_mst_fairness_params *p
int count,
int k)
{
+ struct drm_connector *drm_connector;
int i;
+ struct dc_dsc_config_options dsc_options = {0};
for (i = 0; i < count; i++) {
+ drm_connector = &params[i].aconnector->base;
+
+ dc_dsc_get_default_config_option(params[i].sink->ctx->dc, &dsc_options);
+ dsc_options.max_target_bpp_limit_override_x16 = drm_connector->display_info.max_dsc_bpp * 16;
+
memset(&params[i].timing->dsc_cfg, 0, sizeof(params[i].timing->dsc_cfg));
if (vars[i + k].dsc_enabled && dc_dsc_compute_config(
params[i].sink->ctx->dc->res_pool->dscs[0],
&params[i].sink->dsc_caps.dsc_dec_caps,
- params[i].sink->ctx->dc->debug.dsc_min_slice_height_override,
- params[i].sink->edid_caps.panel_patch.max_dsc_target_bpp_limit,
+ &dsc_options,
0,
params[i].timing,
&params[i].timing->dsc_cfg)) {
@@ -692,24 +757,29 @@ static int bpp_x16_from_pbn(struct dsc_mst_fairness_params param, int pbn)
struct dc_dsc_config dsc_config;
u64 kbps;
+ struct drm_connector *drm_connector = &param.aconnector->base;
+ struct dc_dsc_config_options dsc_options = {0};
+
+ dc_dsc_get_default_config_option(param.sink->ctx->dc, &dsc_options);
+ dsc_options.max_target_bpp_limit_override_x16 = drm_connector->display_info.max_dsc_bpp * 16;
+
kbps = div_u64((u64)pbn * 994 * 8 * 54, 64);
dc_dsc_compute_config(
param.sink->ctx->dc->res_pool->dscs[0],
&param.sink->dsc_caps.dsc_dec_caps,
- param.sink->ctx->dc->debug.dsc_min_slice_height_override,
- param.sink->edid_caps.panel_patch.max_dsc_target_bpp_limit,
+ &dsc_options,
(int) kbps, param.timing, &dsc_config);
return dsc_config.bits_per_pixel;
}
-static bool increase_dsc_bpp(struct drm_atomic_state *state,
- struct drm_dp_mst_topology_state *mst_state,
- struct dc_link *dc_link,
- struct dsc_mst_fairness_params *params,
- struct dsc_mst_fairness_vars *vars,
- int count,
- int k)
+static int increase_dsc_bpp(struct drm_atomic_state *state,
+ struct drm_dp_mst_topology_state *mst_state,
+ struct dc_link *dc_link,
+ struct dsc_mst_fairness_params *params,
+ struct dsc_mst_fairness_vars *vars,
+ int count,
+ int k)
{
int i;
bool bpp_increased[MAX_PIPES];
@@ -719,11 +789,13 @@ static bool increase_dsc_bpp(struct drm_atomic_state *state,
int remaining_to_increase = 0;
int link_timeslots_used;
int fair_pbn_alloc;
+ int ret = 0;
+ uint16_t fec_overhead_multiplier_x1000 = get_fec_overhead_multiplier(dc_link);
for (i = 0; i < count; i++) {
if (vars[i + k].dsc_enabled) {
initial_slack[i] =
- kbps_to_peak_pbn(params[i].bw_range.max_kbps) - vars[i + k].pbn;
+ kbps_to_peak_pbn(params[i].bw_range.max_kbps, fec_overhead_multiplier_x1000) - vars[i + k].pbn;
bpp_increased[i] = false;
remaining_to_increase += 1;
} else {
@@ -757,52 +829,60 @@ static bool increase_dsc_bpp(struct drm_atomic_state *state,
if (initial_slack[next_index] > fair_pbn_alloc) {
vars[next_index].pbn += fair_pbn_alloc;
- if (drm_dp_atomic_find_time_slots(state,
- params[next_index].port->mgr,
- params[next_index].port,
- vars[next_index].pbn) < 0)
- return false;
- if (!drm_dp_mst_atomic_check(state)) {
+ ret = drm_dp_atomic_find_time_slots(state,
+ params[next_index].port->mgr,
+ params[next_index].port,
+ vars[next_index].pbn);
+ if (ret < 0)
+ return ret;
+
+ ret = drm_dp_mst_atomic_check(state);
+ if (ret == 0) {
vars[next_index].bpp_x16 = bpp_x16_from_pbn(params[next_index], vars[next_index].pbn);
} else {
vars[next_index].pbn -= fair_pbn_alloc;
- if (drm_dp_atomic_find_time_slots(state,
- params[next_index].port->mgr,
- params[next_index].port,
- vars[next_index].pbn) < 0)
- return false;
+ ret = drm_dp_atomic_find_time_slots(state,
+ params[next_index].port->mgr,
+ params[next_index].port,
+ vars[next_index].pbn);
+ if (ret < 0)
+ return ret;
}
} else {
vars[next_index].pbn += initial_slack[next_index];
- if (drm_dp_atomic_find_time_slots(state,
- params[next_index].port->mgr,
- params[next_index].port,
- vars[next_index].pbn) < 0)
- return false;
- if (!drm_dp_mst_atomic_check(state)) {
+ ret = drm_dp_atomic_find_time_slots(state,
+ params[next_index].port->mgr,
+ params[next_index].port,
+ vars[next_index].pbn);
+ if (ret < 0)
+ return ret;
+
+ ret = drm_dp_mst_atomic_check(state);
+ if (ret == 0) {
vars[next_index].bpp_x16 = params[next_index].bw_range.max_target_bpp_x16;
} else {
vars[next_index].pbn -= initial_slack[next_index];
- if (drm_dp_atomic_find_time_slots(state,
- params[next_index].port->mgr,
- params[next_index].port,
- vars[next_index].pbn) < 0)
- return false;
+ ret = drm_dp_atomic_find_time_slots(state,
+ params[next_index].port->mgr,
+ params[next_index].port,
+ vars[next_index].pbn);
+ if (ret < 0)
+ return ret;
}
}
bpp_increased[next_index] = true;
remaining_to_increase--;
}
- return true;
+ return 0;
}
-static bool try_disable_dsc(struct drm_atomic_state *state,
- struct dc_link *dc_link,
- struct dsc_mst_fairness_params *params,
- struct dsc_mst_fairness_vars *vars,
- int count,
- int k)
+static int try_disable_dsc(struct drm_atomic_state *state,
+ struct dc_link *dc_link,
+ struct dsc_mst_fairness_params *params,
+ struct dsc_mst_fairness_vars *vars,
+ int count,
+ int k)
{
int i;
bool tried[MAX_PIPES];
@@ -810,6 +890,8 @@ static bool try_disable_dsc(struct drm_atomic_state *state,
int max_kbps_increase;
int next_index;
int remaining_to_try = 0;
+ int ret;
+ uint16_t fec_overhead_multiplier_x1000 = get_fec_overhead_multiplier(dc_link);
for (i = 0; i < count; i++) {
if (vars[i + k].dsc_enabled
@@ -839,55 +921,54 @@ static bool try_disable_dsc(struct drm_atomic_state *state,
if (next_index == -1)
break;
- vars[next_index].pbn = kbps_to_peak_pbn(params[next_index].bw_range.stream_kbps);
- if (drm_dp_atomic_find_time_slots(state,
- params[next_index].port->mgr,
- params[next_index].port,
- vars[next_index].pbn) < 0)
- return false;
+ vars[next_index].pbn = kbps_to_peak_pbn(params[next_index].bw_range.stream_kbps, fec_overhead_multiplier_x1000);
+ ret = drm_dp_atomic_find_time_slots(state,
+ params[next_index].port->mgr,
+ params[next_index].port,
+ vars[next_index].pbn);
+ if (ret < 0)
+ return ret;
- if (!drm_dp_mst_atomic_check(state)) {
+ ret = drm_dp_mst_atomic_check(state);
+ if (ret == 0) {
vars[next_index].dsc_enabled = false;
vars[next_index].bpp_x16 = 0;
} else {
- vars[next_index].pbn = kbps_to_peak_pbn(params[next_index].bw_range.max_kbps);
- if (drm_dp_atomic_find_time_slots(state,
- params[next_index].port->mgr,
- params[next_index].port,
- vars[next_index].pbn) < 0)
- return false;
+ vars[next_index].pbn = kbps_to_peak_pbn(params[next_index].bw_range.max_kbps, fec_overhead_multiplier_x1000);
+ ret = drm_dp_atomic_find_time_slots(state,
+ params[next_index].port->mgr,
+ params[next_index].port,
+ vars[next_index].pbn);
+ if (ret < 0)
+ return ret;
}
tried[next_index] = true;
remaining_to_try--;
}
- return true;
+ return 0;
}
-static bool compute_mst_dsc_configs_for_link(struct drm_atomic_state *state,
- struct dc_state *dc_state,
- struct dc_link *dc_link,
- struct dsc_mst_fairness_vars *vars,
- struct drm_dp_mst_topology_mgr *mgr,
- int *link_vars_start_index)
+static int compute_mst_dsc_configs_for_link(struct drm_atomic_state *state,
+ struct dc_state *dc_state,
+ struct dc_link *dc_link,
+ struct dsc_mst_fairness_vars *vars,
+ struct drm_dp_mst_topology_mgr *mgr,
+ int *link_vars_start_index)
{
struct dc_stream_state *stream;
struct dsc_mst_fairness_params params[MAX_PIPES];
struct amdgpu_dm_connector *aconnector;
struct drm_dp_mst_topology_state *mst_state = drm_atomic_get_mst_topology_state(state, mgr);
int count = 0;
- int i, k;
+ int i, k, ret;
bool debugfs_overwrite = false;
+ uint16_t fec_overhead_multiplier_x1000 = get_fec_overhead_multiplier(dc_link);
memset(params, 0, sizeof(params));
if (IS_ERR(mst_state))
- return false;
-
- mst_state->pbn_div = dm_mst_get_pbn_divider(dc_link);
-#if defined(CONFIG_DRM_AMD_DC_DCN)
- drm_dp_mst_update_slots(mst_state, dc_link_dp_mst_decide_link_encoding_format(dc_link));
-#endif
+ return PTR_ERR(mst_state);
/* Set up params */
for (i = 0; i < dc_state->stream_count; i++) {
@@ -902,7 +983,7 @@ static bool compute_mst_dsc_configs_for_link(struct drm_atomic_state *state,
if (!aconnector)
continue;
- if (!aconnector->port)
+ if (!aconnector->mst_output_port)
continue;
stream->timing.flags.DSC = 0;
@@ -910,7 +991,7 @@ static bool compute_mst_dsc_configs_for_link(struct drm_atomic_state *state,
params[count].timing = &stream->timing;
params[count].sink = stream->sink;
params[count].aconnector = aconnector;
- params[count].port = aconnector->port;
+ params[count].port = aconnector->mst_output_port;
params[count].clock_force_enable = aconnector->dsc_settings.dsc_force_enable;
if (params[count].clock_force_enable == DSC_CLK_FORCE_ENABLE)
debugfs_overwrite = true;
@@ -933,7 +1014,7 @@ static bool compute_mst_dsc_configs_for_link(struct drm_atomic_state *state,
if (count == 0) {
ASSERT(0);
- return true;
+ return 0;
}
/* k is start index of vars for current phy link used by mst hub */
@@ -944,49 +1025,58 @@ static bool compute_mst_dsc_configs_for_link(struct drm_atomic_state *state,
/* Try no compression */
for (i = 0; i < count; i++) {
vars[i + k].aconnector = params[i].aconnector;
- vars[i + k].pbn = kbps_to_peak_pbn(params[i].bw_range.stream_kbps);
+ vars[i + k].pbn = kbps_to_peak_pbn(params[i].bw_range.stream_kbps, fec_overhead_multiplier_x1000);
vars[i + k].dsc_enabled = false;
vars[i + k].bpp_x16 = 0;
- if (drm_dp_atomic_find_time_slots(state, params[i].port->mgr, params[i].port,
- vars[i + k].pbn) < 0)
- return false;
+ ret = drm_dp_atomic_find_time_slots(state, params[i].port->mgr, params[i].port,
+ vars[i + k].pbn);
+ if (ret < 0)
+ return ret;
}
- if (!drm_dp_mst_atomic_check(state) && !debugfs_overwrite) {
+ ret = drm_dp_mst_atomic_check(state);
+ if (ret == 0 && !debugfs_overwrite) {
set_dsc_configs_from_fairness_vars(params, vars, count, k);
- return true;
+ return 0;
+ } else if (ret != -ENOSPC) {
+ return ret;
}
/* Try max compression */
for (i = 0; i < count; i++) {
if (params[i].compression_possible && params[i].clock_force_enable != DSC_CLK_FORCE_DISABLE) {
- vars[i + k].pbn = kbps_to_peak_pbn(params[i].bw_range.min_kbps);
+ vars[i + k].pbn = kbps_to_peak_pbn(params[i].bw_range.min_kbps, fec_overhead_multiplier_x1000);
vars[i + k].dsc_enabled = true;
vars[i + k].bpp_x16 = params[i].bw_range.min_target_bpp_x16;
- if (drm_dp_atomic_find_time_slots(state, params[i].port->mgr,
- params[i].port, vars[i + k].pbn) < 0)
- return false;
+ ret = drm_dp_atomic_find_time_slots(state, params[i].port->mgr,
+ params[i].port, vars[i + k].pbn);
+ if (ret < 0)
+ return ret;
} else {
- vars[i + k].pbn = kbps_to_peak_pbn(params[i].bw_range.stream_kbps);
+ vars[i + k].pbn = kbps_to_peak_pbn(params[i].bw_range.stream_kbps, fec_overhead_multiplier_x1000);
vars[i + k].dsc_enabled = false;
vars[i + k].bpp_x16 = 0;
- if (drm_dp_atomic_find_time_slots(state, params[i].port->mgr,
- params[i].port, vars[i + k].pbn) < 0)
- return false;
+ ret = drm_dp_atomic_find_time_slots(state, params[i].port->mgr,
+ params[i].port, vars[i + k].pbn);
+ if (ret < 0)
+ return ret;
}
}
- if (drm_dp_mst_atomic_check(state))
- return false;
+ ret = drm_dp_mst_atomic_check(state);
+ if (ret != 0)
+ return ret;
/* Optimize degree of compression */
- if (!increase_dsc_bpp(state, mst_state, dc_link, params, vars, count, k))
- return false;
+ ret = increase_dsc_bpp(state, mst_state, dc_link, params, vars, count, k);
+ if (ret < 0)
+ return ret;
- if (!try_disable_dsc(state, dc_link, params, vars, count, k))
- return false;
+ ret = try_disable_dsc(state, dc_link, params, vars, count, k);
+ if (ret < 0)
+ return ret;
set_dsc_configs_from_fairness_vars(params, vars, count, k);
- return true;
+ return 0;
}
static bool is_dsc_need_re_compute(
@@ -1087,28 +1177,32 @@ static bool is_dsc_need_re_compute(
return is_dsc_need_re_compute;
}
-bool compute_mst_dsc_configs_for_state(struct drm_atomic_state *state,
- struct dc_state *dc_state,
- struct dsc_mst_fairness_vars *vars)
+int compute_mst_dsc_configs_for_state(struct drm_atomic_state *state,
+ struct dc_state *dc_state,
+ struct dsc_mst_fairness_vars *vars)
{
int i, j;
struct dc_stream_state *stream;
bool computed_streams[MAX_PIPES];
struct amdgpu_dm_connector *aconnector;
+ struct drm_dp_mst_topology_mgr *mst_mgr;
+ struct resource_pool *res_pool;
int link_vars_start_index = 0;
+ int ret = 0;
for (i = 0; i < dc_state->stream_count; i++)
computed_streams[i] = false;
for (i = 0; i < dc_state->stream_count; i++) {
stream = dc_state->streams[i];
+ res_pool = stream->ctx->dc->res_pool;
if (stream->signal != SIGNAL_TYPE_DISPLAY_PORT_MST)
continue;
aconnector = (struct amdgpu_dm_connector *)stream->dm_stream_context;
- if (!aconnector || !aconnector->dc_sink)
+ if (!aconnector || !aconnector->dc_sink || !aconnector->mst_output_port)
continue;
if (!aconnector->dc_sink->dsc_caps.dsc_dec_caps.is_dsc_supported)
@@ -1117,20 +1211,18 @@ bool compute_mst_dsc_configs_for_state(struct drm_atomic_state *state,
if (computed_streams[i])
continue;
- if (dcn20_remove_stream_from_ctx(stream->ctx->dc, dc_state, stream) != DC_OK)
- return false;
+ if (!res_pool->funcs->remove_stream_from_ctx ||
+ res_pool->funcs->remove_stream_from_ctx(stream->ctx->dc, dc_state, stream) != DC_OK)
+ return -EINVAL;
if (!is_dsc_need_re_compute(state, dc_state, stream->link))
continue;
- mutex_lock(&aconnector->mst_mgr.lock);
- if (!compute_mst_dsc_configs_for_link(state, dc_state, stream->link, vars,
- &aconnector->mst_mgr,
- &link_vars_start_index)) {
- mutex_unlock(&aconnector->mst_mgr.lock);
- return false;
- }
- mutex_unlock(&aconnector->mst_mgr.lock);
+ mst_mgr = aconnector->mst_output_port->mgr;
+ ret = compute_mst_dsc_configs_for_link(state, dc_state, stream->link, vars, mst_mgr,
+ &link_vars_start_index);
+ if (ret != 0)
+ return ret;
for (j = 0; j < dc_state->stream_count; j++) {
if (dc_state->streams[j]->link == stream->link)
@@ -1143,22 +1235,23 @@ bool compute_mst_dsc_configs_for_state(struct drm_atomic_state *state,
if (stream->timing.flags.DSC == 1)
if (dc_stream_add_dsc_to_resource(stream->ctx->dc, dc_state, stream) != DC_OK)
- return false;
+ return -EINVAL;
}
- return true;
+ return ret;
}
-static bool
- pre_compute_mst_dsc_configs_for_state(struct drm_atomic_state *state,
- struct dc_state *dc_state,
- struct dsc_mst_fairness_vars *vars)
+static int pre_compute_mst_dsc_configs_for_state(struct drm_atomic_state *state,
+ struct dc_state *dc_state,
+ struct dsc_mst_fairness_vars *vars)
{
int i, j;
struct dc_stream_state *stream;
bool computed_streams[MAX_PIPES];
struct amdgpu_dm_connector *aconnector;
+ struct drm_dp_mst_topology_mgr *mst_mgr;
int link_vars_start_index = 0;
+ int ret = 0;
for (i = 0; i < dc_state->stream_count; i++)
computed_streams[i] = false;
@@ -1171,7 +1264,7 @@ static bool
aconnector = (struct amdgpu_dm_connector *)stream->dm_stream_context;
- if (!aconnector || !aconnector->dc_sink)
+ if (!aconnector || !aconnector->dc_sink || !aconnector->mst_output_port)
continue;
if (!aconnector->dc_sink->dsc_caps.dsc_dec_caps.is_dsc_supported)
@@ -1183,14 +1276,11 @@ static bool
if (!is_dsc_need_re_compute(state, dc_state, stream->link))
continue;
- mutex_lock(&aconnector->mst_mgr.lock);
- if (!compute_mst_dsc_configs_for_link(state, dc_state, stream->link, vars,
- &aconnector->mst_mgr,
- &link_vars_start_index)) {
- mutex_unlock(&aconnector->mst_mgr.lock);
- return false;
- }
- mutex_unlock(&aconnector->mst_mgr.lock);
+ mst_mgr = aconnector->mst_output_port->mgr;
+ ret = compute_mst_dsc_configs_for_link(state, dc_state, stream->link, vars, mst_mgr,
+ &link_vars_start_index);
+ if (ret != 0)
+ return ret;
for (j = 0; j < dc_state->stream_count; j++) {
if (dc_state->streams[j]->link == stream->link)
@@ -1198,7 +1288,7 @@ static bool
}
}
- return true;
+ return ret;
}
static int find_crtc_index_in_state_by_stream(struct drm_atomic_state *state,
@@ -1253,9 +1343,9 @@ static bool is_dsc_precompute_needed(struct drm_atomic_state *state)
return ret;
}
-bool pre_validate_dsc(struct drm_atomic_state *state,
- struct dm_atomic_state **dm_state_ptr,
- struct dsc_mst_fairness_vars *vars)
+int pre_validate_dsc(struct drm_atomic_state *state,
+ struct dm_atomic_state **dm_state_ptr,
+ struct dsc_mst_fairness_vars *vars)
{
int i;
struct dm_atomic_state *dm_state;
@@ -1264,11 +1354,12 @@ bool pre_validate_dsc(struct drm_atomic_state *state,
if (!is_dsc_precompute_needed(state)) {
DRM_INFO_ONCE("DSC precompute is not needed.\n");
- return true;
+ return 0;
}
- if (dm_atomic_get_state(state, dm_state_ptr)) {
+ ret = dm_atomic_get_state(state, dm_state_ptr);
+ if (ret != 0) {
DRM_INFO_ONCE("dm_atomic_get_state() failed\n");
- return false;
+ return ret;
}
dm_state = *dm_state_ptr;
@@ -1280,7 +1371,7 @@ bool pre_validate_dsc(struct drm_atomic_state *state,
local_dc_state = kmemdup(dm_state->context, sizeof(struct dc_state), GFP_KERNEL);
if (!local_dc_state)
- return false;
+ return -ENOMEM;
for (i = 0; i < local_dc_state->stream_count; i++) {
struct dc_stream_state *stream = dm_state->context->streams[i];
@@ -1316,7 +1407,8 @@ bool pre_validate_dsc(struct drm_atomic_state *state,
if (ret != 0)
goto clean_exit;
- if (!pre_compute_mst_dsc_configs_for_state(state, local_dc_state, vars)) {
+ ret = pre_compute_mst_dsc_configs_for_state(state, local_dc_state, vars);
+ if (ret != 0) {
DRM_INFO_ONCE("pre_compute_mst_dsc_configs_for_state() failed\n");
ret = -EINVAL;
goto clean_exit;
@@ -1349,7 +1441,7 @@ clean_exit:
kfree(local_dc_state);
- return (ret == 0);
+ return ret;
}
static unsigned int kbps_from_pbn(unsigned int pbn)
@@ -1379,19 +1471,18 @@ static bool is_dsc_common_config_possible(struct dc_stream_state *stream,
return bw_range->max_target_bpp_x16 && bw_range->min_target_bpp_x16;
}
-#endif /* CONFIG_DRM_AMD_DC_DCN */
enum dc_status dm_dp_mst_is_port_support_mode(
struct amdgpu_dm_connector *aconnector,
struct dc_stream_state *stream)
{
int bpp, pbn, branch_max_throughput_mps = 0;
-#if defined(CONFIG_DRM_AMD_DC_DCN)
struct dc_link_settings cur_link_settings;
unsigned int end_to_end_bw_in_kbps = 0;
unsigned int upper_link_bw_in_kbps = 0, down_link_bw_in_kbps = 0;
unsigned int max_compressed_bw_in_kbps = 0;
struct dc_dsc_bw_range bw_range = {0};
+ struct drm_dp_mst_topology_mgr *mst_mgr;
/*
* check if the mode could be supported if DSC pass-through is supported
@@ -1399,21 +1490,22 @@ enum dc_status dm_dp_mst_is_port_support_mode(
* with DSC enabled.
*/
if (is_dsc_common_config_possible(stream, &bw_range) &&
- aconnector->port->passthrough_aux) {
- mutex_lock(&aconnector->mst_mgr.lock);
+ aconnector->mst_output_port->passthrough_aux) {
+ mst_mgr = aconnector->mst_output_port->mgr;
+ mutex_lock(&mst_mgr->lock);
cur_link_settings = stream->link->verified_link_cap;
upper_link_bw_in_kbps = dc_link_bandwidth_kbps(aconnector->dc_link,
&cur_link_settings
);
- down_link_bw_in_kbps = kbps_from_pbn(aconnector->port->full_pbn);
+ down_link_bw_in_kbps = kbps_from_pbn(aconnector->mst_output_port->full_pbn);
/* pick the bottleneck */
end_to_end_bw_in_kbps = min(upper_link_bw_in_kbps,
down_link_bw_in_kbps);
- mutex_unlock(&aconnector->mst_mgr.lock);
+ mutex_unlock(&mst_mgr->lock);
/*
* use the maximum dsc compression bandwidth as the required
@@ -1426,16 +1518,13 @@ enum dc_status dm_dp_mst_is_port_support_mode(
return DC_FAIL_BANDWIDTH_VALIDATE;
}
} else {
-#endif
/* check if mode could be supported within full_pbn */
bpp = convert_dc_color_depth_into_bpc(stream->timing.display_color_depth) * 3;
pbn = drm_dp_calc_pbn_mode(stream->timing.pix_clk_100hz / 10, bpp, false);
- if (pbn > aconnector->port->full_pbn)
+ if (pbn > aconnector->mst_output_port->full_pbn)
return DC_FAIL_BANDWIDTH_VALIDATE;
-#if defined(CONFIG_DRM_AMD_DC_DCN)
}
-#endif
/* check is mst dsc output bandwidth branch_overall_throughput_0_mps */
switch (stream->timing.pixel_encoding) {
diff --git a/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_mst_types.h b/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_mst_types.h
index b92a7c5671aa..1e4ede1e57ab 100644
--- a/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_mst_types.h
+++ b/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_mst_types.h
@@ -34,6 +34,21 @@
#define SYNAPTICS_RC_OFFSET 0x4BC
#define SYNAPTICS_RC_DATA 0x4C0
+#define DP_BRANCH_VENDOR_SPECIFIC_START 0x50C
+
+/**
+ * Panamera MST Hub detection
+ * Offset DPCD 050Eh == 0x5A indicates cascaded MST hub case
+ * Check from beginning of branch device vendor specific field (050Ch)
+ */
+#define IS_SYNAPTICS_PANAMERA(branchDevName) (((int)branchDevName[4] & 0xF0) == 0x50 ? 1 : 0)
+#define BRANCH_HW_REVISION_PANAMERA_A2 0x10
+#define SYNAPTICS_CASCADED_HUB_ID 0x5A
+#define IS_SYNAPTICS_CASCADED_PANAMERA(devName, data) ((IS_SYNAPTICS_PANAMERA(devName) && ((int)data[2] == SYNAPTICS_CASCADED_HUB_ID)) ? 1 : 0)
+
+#define PBN_FEC_OVERHEAD_MULTIPLIER_8B_10B 1031
+#define PBN_FEC_OVERHEAD_MULTIPLIER_128B_132B 1000
+
struct amdgpu_display_manager;
struct amdgpu_dm_connector;
@@ -53,15 +68,15 @@ struct dsc_mst_fairness_vars {
struct amdgpu_dm_connector *aconnector;
};
-bool compute_mst_dsc_configs_for_state(struct drm_atomic_state *state,
- struct dc_state *dc_state,
- struct dsc_mst_fairness_vars *vars);
+int compute_mst_dsc_configs_for_state(struct drm_atomic_state *state,
+ struct dc_state *dc_state,
+ struct dsc_mst_fairness_vars *vars);
bool needs_dsc_aux_workaround(struct dc_link *link);
-bool pre_validate_dsc(struct drm_atomic_state *state,
- struct dm_atomic_state **dm_state_ptr,
- struct dsc_mst_fairness_vars *vars);
+int pre_validate_dsc(struct drm_atomic_state *state,
+ struct dm_atomic_state **dm_state_ptr,
+ struct dsc_mst_fairness_vars *vars);
enum dc_status dm_dp_mst_is_port_support_mode(
struct amdgpu_dm_connector *aconnector,
diff --git a/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_plane.c b/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_plane.c
index e6854f7270a6..322668973747 100644
--- a/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_plane.c
+++ b/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_plane.c
@@ -67,7 +67,16 @@ static const uint32_t overlay_formats[] = {
DRM_FORMAT_RGBA8888,
DRM_FORMAT_XBGR8888,
DRM_FORMAT_ABGR8888,
- DRM_FORMAT_RGB565
+ DRM_FORMAT_RGB565,
+ DRM_FORMAT_NV21,
+ DRM_FORMAT_NV12,
+ DRM_FORMAT_P010
+};
+
+static const uint32_t video_formats[] = {
+ DRM_FORMAT_NV21,
+ DRM_FORMAT_NV12,
+ DRM_FORMAT_P010
};
static const u32 cursor_formats[] = {
@@ -81,12 +90,12 @@ enum dm_micro_swizzle {
MICRO_SWIZZLE_R = 3
};
-const struct drm_format_info *amd_get_format_info(const struct drm_mode_fb_cmd2 *cmd)
+const struct drm_format_info *amdgpu_dm_plane_get_format_info(const struct drm_mode_fb_cmd2 *cmd)
{
return amdgpu_lookup_format_info(cmd->pixel_format, cmd->modifier[0]);
}
-void fill_blending_from_plane_state(const struct drm_plane_state *plane_state,
+void amdgpu_dm_plane_fill_blending_from_plane_state(const struct drm_plane_state *plane_state,
bool *per_pixel_alpha, bool *pre_multiplied_alpha,
bool *global_alpha, int *global_alpha_value)
{
@@ -732,25 +741,7 @@ static int get_plane_formats(const struct drm_plane *plane,
return num_formats;
}
-#ifdef CONFIG_DRM_AMD_DC_HDR
-static int attach_color_mgmt_properties(struct amdgpu_display_manager *dm, struct drm_plane *plane)
-{
- drm_object_attach_property(&plane->base,
- dm->degamma_lut_property,
- 0);
- drm_object_attach_property(&plane->base,
- dm->degamma_lut_size_property,
- MAX_COLOR_LUT_ENTRIES);
- drm_object_attach_property(&plane->base, dm->ctm_property,
- 0);
- drm_object_attach_property(&plane->base, dm->sdr_boost_property,
- DEFAULT_SDR_BOOST);
-
- return 0;
-}
-#endif
-
-int fill_plane_buffer_attributes(struct amdgpu_device *adev,
+int amdgpu_dm_plane_fill_plane_buffer_attributes(struct amdgpu_device *adev,
const struct amdgpu_framebuffer *afb,
const enum surface_pixel_format format,
const enum dc_rotation_angle rotation,
@@ -909,7 +900,7 @@ static int dm_plane_helper_prepare_fb(struct drm_plane *plane,
dm_plane_state_new->dc_state;
bool force_disable_dcc = !plane_state->dcc.enable;
- fill_plane_buffer_attributes(
+ amdgpu_dm_plane_fill_plane_buffer_attributes(
adev, afb, plane_state->format, plane_state->rotation,
afb->tiling_flags,
&plane_state->tiling_info, &plane_state->plane_size,
@@ -990,7 +981,7 @@ static void get_min_max_dc_plane_scaling(struct drm_device *dev,
*min_downscale = 1000;
}
-int dm_plane_helper_check_state(struct drm_plane_state *state,
+int amdgpu_dm_plane_helper_check_state(struct drm_plane_state *state,
struct drm_crtc_state *new_crtc_state)
{
struct drm_framebuffer *fb = state->fb;
@@ -1044,7 +1035,7 @@ int dm_plane_helper_check_state(struct drm_plane_state *state,
state, new_crtc_state, min_scale, max_scale, true, true);
}
-int fill_dc_scaling_info(struct amdgpu_device *adev,
+int amdgpu_dm_plane_fill_dc_scaling_info(struct amdgpu_device *adev,
const struct drm_plane_state *state,
struct dc_scaling_info *scaling_info)
{
@@ -1152,11 +1143,11 @@ static int dm_plane_atomic_check(struct drm_plane *plane,
if (!new_crtc_state)
return -EINVAL;
- ret = dm_plane_helper_check_state(new_plane_state, new_crtc_state);
+ ret = amdgpu_dm_plane_helper_check_state(new_plane_state, new_crtc_state);
if (ret)
return ret;
- ret = fill_dc_scaling_info(adev, new_plane_state, &scaling_info);
+ ret = amdgpu_dm_plane_fill_dc_scaling_info(adev, new_plane_state, &scaling_info);
if (ret)
return ret;
@@ -1220,7 +1211,7 @@ static int get_cursor_position(struct drm_plane *plane, struct drm_crtc *crtc,
return 0;
}
-void handle_cursor_update(struct drm_plane *plane,
+void amdgpu_dm_plane_handle_cursor_update(struct drm_plane *plane,
struct drm_plane_state *old_plane_state)
{
struct amdgpu_device *adev = drm_to_adev(plane->dev);
@@ -1305,7 +1296,7 @@ static void dm_plane_atomic_async_update(struct drm_plane *plane,
plane->state->crtc_w = new_state->crtc_w;
plane->state->crtc_h = new_state->crtc_h;
- handle_cursor_update(plane, old_state);
+ amdgpu_dm_plane_handle_cursor_update(plane, old_state);
}
static const struct drm_plane_helper_funcs dm_plane_helper_funcs = {
@@ -1328,10 +1319,6 @@ static void dm_drm_plane_reset(struct drm_plane *plane)
if (amdgpu_state)
__drm_atomic_helper_plane_reset(plane, &amdgpu_state->base);
-#ifdef CONFIG_DRM_AMD_DC_HDR
- if (amdgpu_state)
- amdgpu_state->sdr_boost = DEFAULT_SDR_BOOST;
-#endif
}
static struct drm_plane_state *
@@ -1351,15 +1338,6 @@ dm_drm_plane_duplicate_state(struct drm_plane *plane)
dc_plane_state_retain(dm_plane_state->dc_state);
}
-#ifdef CONFIG_DRM_AMD_DC_HDR
- if (dm_plane_state->degamma_lut)
- drm_property_blob_get(dm_plane_state->degamma_lut);
- if (dm_plane_state->ctm)
- drm_property_blob_get(dm_plane_state->ctm);
-
- dm_plane_state->sdr_boost = old_dm_plane_state->sdr_boost;
-#endif
-
return &dm_plane_state->base;
}
@@ -1427,103 +1405,12 @@ static void dm_drm_plane_destroy_state(struct drm_plane *plane,
{
struct dm_plane_state *dm_plane_state = to_dm_plane_state(state);
-#ifdef CONFIG_DRM_AMD_DC_HDR
- drm_property_blob_put(dm_plane_state->degamma_lut);
- drm_property_blob_put(dm_plane_state->ctm);
-#endif
if (dm_plane_state->dc_state)
dc_plane_state_release(dm_plane_state->dc_state);
drm_atomic_helper_plane_destroy_state(plane, state);
}
-#ifdef CONFIG_DRM_AMD_DC_HDR
-/* copied from drm_atomic_uapi.c */
-static int atomic_replace_property_blob_from_id(struct drm_device *dev,
- struct drm_property_blob **blob,
- uint64_t blob_id,
- ssize_t expected_size,
- ssize_t expected_elem_size,
- bool *replaced)
-{
- struct drm_property_blob *new_blob = NULL;
-
- if (blob_id != 0) {
- new_blob = drm_property_lookup_blob(dev, blob_id);
- if (new_blob == NULL)
- return -EINVAL;
-
- if (expected_size > 0 &&
- new_blob->length != expected_size) {
- drm_property_blob_put(new_blob);
- return -EINVAL;
- }
- if (expected_elem_size > 0 &&
- new_blob->length % expected_elem_size != 0) {
- drm_property_blob_put(new_blob);
- return -EINVAL;
- }
- }
-
- *replaced |= drm_property_replace_blob(blob, new_blob);
- drm_property_blob_put(new_blob);
-
- return 0;
-}
-
-int dm_drm_plane_set_property(struct drm_plane *plane,
- struct drm_plane_state *state,
- struct drm_property *property,
- uint64_t val)
-{
- struct amdgpu_device *adev = drm_to_adev(plane->dev);
- struct dm_plane_state *dm_plane_state = to_dm_plane_state(state);
- int ret = 0;
- bool replaced;
-
- if (property == adev->dm.degamma_lut_property) {
- ret = atomic_replace_property_blob_from_id(adev_to_drm(adev),
- &dm_plane_state->degamma_lut,
- val, -1, sizeof(struct drm_color_lut),
- &replaced);
- } else if (property == adev->dm.ctm_property) {
- ret = atomic_replace_property_blob_from_id(adev_to_drm(adev),
- &dm_plane_state->ctm,
- val,
- sizeof(struct drm_color_ctm), -1,
- &replaced);
- } else if (property == adev->dm.sdr_boost_property) {
- dm_plane_state->sdr_boost = val;
- } else {
- return -EINVAL;
- }
-
- return ret;
-}
-
-int dm_drm_plane_get_property(struct drm_plane *plane,
- const struct drm_plane_state *state,
- struct drm_property *property,
- uint64_t *val)
-{
- struct dm_plane_state *dm_plane_state = to_dm_plane_state(state);
- struct amdgpu_device *adev = drm_to_adev(plane->dev);
-
- if (property == adev->dm.degamma_lut_property) {
- *val = (dm_plane_state->degamma_lut) ?
- dm_plane_state->degamma_lut->base.id : 0;
- } else if (property == adev->dm.ctm_property) {
- *val = (dm_plane_state->ctm) ? dm_plane_state->ctm->base.id : 0;
- } else if (property == adev->dm.sdr_boost_property) {
- *val = dm_plane_state->sdr_boost;
- } else {
- return -EINVAL;
- }
-
- return 0;
-}
-#endif
-
static const struct drm_plane_funcs dm_plane_funcs = {
.update_plane = drm_atomic_helper_update_plane,
.disable_plane = drm_atomic_helper_disable_plane,
@@ -1532,10 +1419,6 @@ static const struct drm_plane_funcs dm_plane_funcs = {
.atomic_duplicate_state = dm_drm_plane_duplicate_state,
.atomic_destroy_state = dm_drm_plane_destroy_state,
.format_mod_supported = dm_plane_format_mod_supported,
-#ifdef CONFIG_DRM_AMD_DC_HDR
- .atomic_set_property = dm_drm_plane_set_property,
- .atomic_get_property = dm_drm_plane_get_property,
-#endif
};
int amdgpu_dm_plane_init(struct amdgpu_display_manager *dm,
@@ -1600,11 +1483,12 @@ int amdgpu_dm_plane_init(struct amdgpu_display_manager *dm,
drm_plane_create_rotation_property(plane, DRM_MODE_ROTATE_0,
supported_rotations);
+ if (dm->adev->ip_versions[DCE_HWIP][0] > IP_VERSION(3, 0, 1) &&
+ plane->type != DRM_PLANE_TYPE_CURSOR)
+ drm_plane_enable_fb_damage_clips(plane);
+
drm_plane_helper_add(plane, &dm_plane_helper_funcs);
-#ifdef CONFIG_DRM_AMD_DC_HDR
- attach_color_mgmt_properties(dm, plane);
-#endif
/* Create (reset) the plane state */
if (plane->funcs->reset)
plane->funcs->reset(plane);
@@ -1612,3 +1496,14 @@ int amdgpu_dm_plane_init(struct amdgpu_display_manager *dm,
return 0;
}
+bool is_video_format(uint32_t format)
+{
+ int i;
+
+ for (i = 0; i < ARRAY_SIZE(video_formats); i++)
+ if (format == video_formats[i])
+ return true;
+
+ return false;
+}
+
diff --git a/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_plane.h b/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_plane.h
index 286981a2dd40..930f1572f898 100644
--- a/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_plane.h
+++ b/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_plane.h
@@ -29,17 +29,17 @@
#include "dc.h"
-void handle_cursor_update(struct drm_plane *plane,
+void amdgpu_dm_plane_handle_cursor_update(struct drm_plane *plane,
struct drm_plane_state *old_plane_state);
-int fill_dc_scaling_info(struct amdgpu_device *adev,
+int amdgpu_dm_plane_fill_dc_scaling_info(struct amdgpu_device *adev,
const struct drm_plane_state *state,
struct dc_scaling_info *scaling_info);
-int dm_plane_helper_check_state(struct drm_plane_state *state,
+int amdgpu_dm_plane_helper_check_state(struct drm_plane_state *state,
struct drm_crtc_state *new_crtc_state);
-int fill_plane_buffer_attributes(struct amdgpu_device *adev,
+int amdgpu_dm_plane_fill_plane_buffer_attributes(struct amdgpu_device *adev,
const struct amdgpu_framebuffer *afb,
const enum surface_pixel_format format,
const enum dc_rotation_angle rotation,
@@ -56,10 +56,11 @@ int amdgpu_dm_plane_init(struct amdgpu_display_manager *dm,
unsigned long possible_crtcs,
const struct dc_plane_cap *plane_cap);
-const struct drm_format_info *amd_get_format_info(const struct drm_mode_fb_cmd2 *cmd);
+const struct drm_format_info *amdgpu_dm_plane_get_format_info(const struct drm_mode_fb_cmd2 *cmd);
-void fill_blending_from_plane_state(const struct drm_plane_state *plane_state,
+void amdgpu_dm_plane_fill_blending_from_plane_state(const struct drm_plane_state *plane_state,
bool *per_pixel_alpha, bool *pre_multiplied_alpha,
bool *global_alpha, int *global_alpha_value);
+bool is_video_format(uint32_t format);
#endif
diff --git a/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_psr.c b/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_psr.c
index 26291db0a3cf..d647f68fd563 100644
--- a/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_psr.c
+++ b/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_psr.c
@@ -122,6 +122,9 @@ bool amdgpu_dm_link_setup_psr(struct dc_stream_state *stream)
psr_config.allow_multi_disp_optimizations =
(amdgpu_dc_feature_mask & DC_PSR_ALLOW_MULTI_DISP_OPT);
+ if (!psr_su_set_dsc_slice_height(dc, link, stream, &psr_config))
+ return false;
+
ret = dc_link_setup_psr(link, stream, &psr_config, &psr_context);
}
diff --git a/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_trace.h b/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_trace.h
index d3bc9dc21771..0f580ea37576 100644
--- a/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_trace.h
+++ b/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_trace.h
@@ -37,6 +37,7 @@
#include <drm/drm_framebuffer.h>
#include <drm/drm_encoder.h>
#include <drm/drm_atomic.h>
+#include "dcn10/dcn10_optc.h"
#include "dc/inc/core_types.h"
@@ -662,6 +663,69 @@ TRACE_EVENT(dcn_fpu,
)
);
+TRACE_EVENT(dcn_optc_lock_unlock_state,
+ TP_PROTO(const struct optc *optc_state, int instance, bool lock, const char *function, const int line),
+ TP_ARGS(optc_state, instance, lock, function, line),
+
+ TP_STRUCT__entry(
+ __field(const char *, function)
+ __field(int, instance)
+ __field(bool, lock)
+ __field(int, line)
+ __field(int, opp_count)
+ __field(int, max_h_total)
+ __field(int, max_v_total)
+ __field(int, min_h_blank)
+ __field(int, min_h_sync_width)
+ __field(int, min_v_sync_width)
+ __field(int, min_v_blank)
+ __field(int, min_v_blank_interlace)
+ __field(int, vstartup_start)
+ __field(int, vupdate_offset)
+ __field(int, vupdate_width)
+ __field(int, vready_offset)
+ ),
+ TP_fast_assign(
+ __entry->function = function;
+ __entry->instance = instance;
+ __entry->lock = lock;
+ __entry->line = line;
+ __entry->opp_count = optc_state->opp_count;
+ __entry->max_h_total = optc_state->max_h_total;
+ __entry->max_v_total = optc_state->max_v_total;
+ __entry->min_h_blank = optc_state->min_h_blank;
+ __entry->min_h_sync_width = optc_state->min_h_sync_width;
+ __entry->min_v_sync_width = optc_state->min_v_sync_width;
+ __entry->min_v_blank = optc_state->min_v_blank;
+ __entry->min_v_blank_interlace = optc_state->min_v_blank_interlace;
+ __entry->vstartup_start = optc_state->vstartup_start;
+ __entry->vupdate_offset = optc_state->vupdate_offset;
+ __entry->vupdate_width = optc_state->vupdate_width;
+ __entry->vready_offset = optc_state->vupdate_offset;
+ ),
+ TP_printk("%s: %s()+%d: optc_instance=%d opp_count=%d max_h_total=%d max_v_total=%d "
+ "min_h_blank=%d min_h_sync_width=%d min_v_sync_width=%d min_v_blank=%d "
+ "min_v_blank_interlace=%d vstartup_start=%d vupdate_offset=%d vupdate_width=%d "
+ "vready_offset=%d",
+ __entry->lock ? "Lock" : "Unlock",
+ __entry->function,
+ __entry->line,
+ __entry->instance,
+ __entry->opp_count,
+ __entry->max_h_total,
+ __entry->max_v_total,
+ __entry->min_h_blank,
+ __entry->min_h_sync_width,
+ __entry->min_v_sync_width,
+ __entry->min_v_blank,
+ __entry->min_v_blank_interlace,
+ __entry->vstartup_start,
+ __entry->vupdate_offset,
+ __entry->vupdate_width,
+ __entry->vready_offset
+ )
+);
+
#endif /* _AMDGPU_DM_TRACE_H_ */
#undef TRACE_INCLUDE_PATH
diff --git a/drivers/gpu/drm/amd/display/amdgpu_dm/dc_fpu.c b/drivers/gpu/drm/amd/display/amdgpu_dm/dc_fpu.c
index ab0c6d191038..c42aa947c969 100644
--- a/drivers/gpu/drm/amd/display/amdgpu_dm/dc_fpu.c
+++ b/drivers/gpu/drm/amd/display/amdgpu_dm/dc_fpu.c
@@ -31,6 +31,8 @@
#elif defined(CONFIG_PPC64)
#include <asm/switch_to.h>
#include <asm/cputable.h>
+#elif defined(CONFIG_ARM64)
+#include <asm/neon.h>
#endif
/**
@@ -87,6 +89,7 @@ void dc_fpu_begin(const char *function_name, const int line)
if (*pcpu == 1) {
#if defined(CONFIG_X86)
+ migrate_disable();
kernel_fpu_begin();
#elif defined(CONFIG_PPC64)
if (cpu_has_feature(CPU_FTR_VSX_COMP)) {
@@ -99,6 +102,8 @@ void dc_fpu_begin(const char *function_name, const int line)
preempt_disable();
enable_kernel_fp();
}
+#elif defined(CONFIG_ARM64)
+ kernel_neon_begin();
#endif
}
@@ -125,6 +130,7 @@ void dc_fpu_end(const char *function_name, const int line)
if (*pcpu <= 0) {
#if defined(CONFIG_X86)
kernel_fpu_end();
+ migrate_enable();
#elif defined(CONFIG_PPC64)
if (cpu_has_feature(CPU_FTR_VSX_COMP)) {
disable_kernel_vsx();
@@ -136,6 +142,8 @@ void dc_fpu_end(const char *function_name, const int line)
disable_kernel_fp();
preempt_enable();
}
+#elif defined(CONFIG_ARM64)
+ kernel_neon_end();
#endif
}
diff --git a/drivers/gpu/drm/amd/display/dc/Makefile b/drivers/gpu/drm/amd/display/dc/Makefile
index b9effadfc4bb..69ffd4424dc7 100644
--- a/drivers/gpu/drm/amd/display/dc/Makefile
+++ b/drivers/gpu/drm/amd/display/dc/Makefile
@@ -22,14 +22,13 @@
#
# Makefile for Display Core (dc) component.
-DC_LIBS = basics bios dml clk_mgr dce gpio irq link virtual
+DC_LIBS = basics bios dml clk_mgr dce gpio irq link virtual dsc
-ifdef CONFIG_DRM_AMD_DC_DCN
+ifdef CONFIG_DRM_AMD_DC_FP
KCOV_INSTRUMENT := n
DC_LIBS += dcn20
-DC_LIBS += dsc
DC_LIBS += dcn10
DC_LIBS += dcn21
DC_LIBS += dcn201
@@ -56,17 +55,14 @@ ifdef CONFIG_DRM_AMD_DC_SI
DC_LIBS += dce60
endif
-ifdef CONFIG_DRM_AMD_DC_HDCP
DC_LIBS += hdcp
-endif
AMD_DC = $(addsuffix /Makefile, $(addprefix $(FULL_AMD_DISPLAY_PATH)/dc/,$(DC_LIBS)))
include $(AMD_DC)
-DISPLAY_CORE = dc.o dc_stat.o dc_link.o dc_resource.o dc_hw_sequencer.o dc_sink.o \
-dc_surface.o dc_link_dp.o dc_link_ddc.o dc_debug.o dc_stream.o \
-dc_link_enc_cfg.o dc_link_dpia.o dc_link_dpcd.o
+DISPLAY_CORE = dc.o dc_stat.o dc_resource.o dc_hw_sequencer.o dc_sink.o \
+dc_surface.o dc_debug.o dc_stream.o dc_link_enc_cfg.o dc_link_exports.o
DISPLAY_CORE += dc_vm_helper.o
diff --git a/drivers/gpu/drm/amd/display/dc/bios/bios_parser.c b/drivers/gpu/drm/amd/display/dc/bios/bios_parser.c
index 9b8ea6e9a2b9..27af9d3c2b73 100644
--- a/drivers/gpu/drm/amd/display/dc/bios/bios_parser.c
+++ b/drivers/gpu/drm/amd/display/dc/bios/bios_parser.c
@@ -33,7 +33,6 @@
#include "include/gpio_service_interface.h"
#include "include/grph_object_ctrl_defs.h"
#include "include/bios_parser_interface.h"
-#include "include/i2caux_interface.h"
#include "include/logger_interface.h"
#include "command_table.h"
@@ -138,7 +137,9 @@ static uint8_t get_number_of_objects(struct bios_parser *bp, uint32_t offset)
uint32_t object_table_offset = bp->object_info_tbl_offset + offset;
- table = GET_IMAGE(ATOM_OBJECT_TABLE, object_table_offset);
+ table = ((ATOM_OBJECT_TABLE *) bios_get_image(&bp->base,
+ object_table_offset,
+ struct_size(table, asObjects, 1)));
if (!table)
return 0;
@@ -166,8 +167,9 @@ static struct graphics_object_id bios_parser_get_connector_id(
uint32_t connector_table_offset = bp->object_info_tbl_offset
+ le16_to_cpu(bp->object_info_tbl.v1_1->usConnectorObjectTableOffset);
- ATOM_OBJECT_TABLE *tbl =
- GET_IMAGE(ATOM_OBJECT_TABLE, connector_table_offset);
+ ATOM_OBJECT_TABLE *tbl = ((ATOM_OBJECT_TABLE *) bios_get_image(&bp->base,
+ connector_table_offset,
+ struct_size(tbl, asObjects, 1)));
if (!tbl) {
dm_error("Can't get connector table from atom bios.\n");
@@ -662,8 +664,9 @@ static enum bp_result get_ss_info_v3_1(
if (!DATA_TABLES(ASIC_InternalSS_Info))
return BP_RESULT_UNSUPPORTED;
- ss_table_header_include = GET_IMAGE(ATOM_ASIC_INTERNAL_SS_INFO_V3,
- DATA_TABLES(ASIC_InternalSS_Info));
+ ss_table_header_include = ((ATOM_ASIC_INTERNAL_SS_INFO_V3 *) bios_get_image(&bp->base,
+ DATA_TABLES(ASIC_InternalSS_Info),
+ struct_size(ss_table_header_include, asSpreadSpectrum, 1)));
table_size =
(le16_to_cpu(ss_table_header_include->sHeader.usStructureSize)
- sizeof(ATOM_COMMON_TABLE_HEADER))
@@ -1029,8 +1032,10 @@ static enum bp_result get_ss_info_from_internal_ss_info_tbl_V2_1(
if (!DATA_TABLES(ASIC_InternalSS_Info))
return result;
- header = GET_IMAGE(ATOM_ASIC_INTERNAL_SS_INFO_V2,
- DATA_TABLES(ASIC_InternalSS_Info));
+ header = ((ATOM_ASIC_INTERNAL_SS_INFO_V2 *) bios_get_image(
+ &bp->base,
+ DATA_TABLES(ASIC_InternalSS_Info),
+ struct_size(header, asSpreadSpectrum, 1)));
memset(info, 0, sizeof(struct spread_spectrum_info));
@@ -1709,8 +1714,10 @@ static uint32_t get_ss_entry_number_from_internal_ss_info_tbl_v2_1(
if (!DATA_TABLES(ASIC_InternalSS_Info))
return 0;
- header_include = GET_IMAGE(ATOM_ASIC_INTERNAL_SS_INFO_V2,
- DATA_TABLES(ASIC_InternalSS_Info));
+ header_include = ((ATOM_ASIC_INTERNAL_SS_INFO_V2 *) bios_get_image(
+ &bp->base,
+ DATA_TABLES(ASIC_InternalSS_Info),
+ struct_size(header_include, asSpreadSpectrum, 1)));
size = (le16_to_cpu(header_include->sHeader.usStructureSize)
- sizeof(ATOM_COMMON_TABLE_HEADER))
@@ -1746,8 +1753,9 @@ static uint32_t get_ss_entry_number_from_internal_ss_info_tbl_V3_1(
if (!DATA_TABLES(ASIC_InternalSS_Info))
return number;
- header_include = GET_IMAGE(ATOM_ASIC_INTERNAL_SS_INFO_V3,
- DATA_TABLES(ASIC_InternalSS_Info));
+ header_include = ((ATOM_ASIC_INTERNAL_SS_INFO_V3 *) bios_get_image(&bp->base,
+ DATA_TABLES(ASIC_InternalSS_Info),
+ struct_size(header_include, asSpreadSpectrum, 1)));
size = (le16_to_cpu(header_include->sHeader.usStructureSize) -
sizeof(ATOM_COMMON_TABLE_HEADER)) /
sizeof(ATOM_ASIC_SS_ASSIGNMENT_V3);
@@ -1789,11 +1797,13 @@ static enum bp_result bios_parser_get_gpio_pin_info(
if (!DATA_TABLES(GPIO_Pin_LUT))
return BP_RESULT_BADBIOSTABLE;
- header = GET_IMAGE(ATOM_GPIO_PIN_LUT, DATA_TABLES(GPIO_Pin_LUT));
+ header = ((ATOM_GPIO_PIN_LUT *) bios_get_image(&bp->base,
+ DATA_TABLES(GPIO_Pin_LUT),
+ struct_size(header, asGPIO_Pin, 1)));
if (!header)
return BP_RESULT_BADBIOSTABLE;
- if (sizeof(ATOM_COMMON_TABLE_HEADER) + sizeof(ATOM_GPIO_PIN_LUT)
+ if (sizeof(ATOM_COMMON_TABLE_HEADER) + struct_size(header, asGPIO_Pin, 1)
> le16_to_cpu(header->sHeader.usStructureSize))
return BP_RESULT_BADBIOSTABLE;
@@ -1978,7 +1988,8 @@ static ATOM_OBJECT *get_bios_object(struct bios_parser *bp,
offset += bp->object_info_tbl_offset;
- tbl = GET_IMAGE(ATOM_OBJECT_TABLE, offset);
+ tbl = ((ATOM_OBJECT_TABLE *) bios_get_image(&bp->base, offset,
+ struct_size(tbl, asObjects, 1)));
if (!tbl)
return NULL;
@@ -2600,8 +2611,7 @@ static enum bp_result update_slot_layout_info(
for (;;) {
- record_header = (ATOM_COMMON_RECORD_HEADER *)
- GET_IMAGE(ATOM_COMMON_RECORD_HEADER, record_offset);
+ record_header = GET_IMAGE(ATOM_COMMON_RECORD_HEADER, record_offset);
if (record_header == NULL) {
result = BP_RESULT_BADBIOSTABLE;
break;
@@ -2615,7 +2625,7 @@ static enum bp_result update_slot_layout_info(
if (record_header->ucRecordType ==
ATOM_BRACKET_LAYOUT_RECORD_TYPE &&
- sizeof(ATOM_BRACKET_LAYOUT_RECORD)
+ struct_size(record, asConnInfo, 1)
<= record_header->ucRecordSize) {
record = (ATOM_BRACKET_LAYOUT_RECORD *)
(record_header);
@@ -2709,8 +2719,9 @@ static enum bp_result get_bracket_layout_record(
genericTableOffset = bp->object_info_tbl_offset +
bp->object_info_tbl.v1_3->usMiscObjectTableOffset;
- object_table = (ATOM_OBJECT_TABLE *)
- GET_IMAGE(ATOM_OBJECT_TABLE, genericTableOffset);
+ object_table = ((ATOM_OBJECT_TABLE *) bios_get_image(&bp->base,
+ genericTableOffset,
+ struct_size(object_table, asObjects, 1)));
if (!object_table)
return BP_RESULT_FAILURE;
diff --git a/drivers/gpu/drm/amd/display/dc/bios/bios_parser2.c b/drivers/gpu/drm/amd/display/dc/bios/bios_parser2.c
index ee0456b5e14e..cce47d3f1a13 100644
--- a/drivers/gpu/drm/amd/display/dc/bios/bios_parser2.c
+++ b/drivers/gpu/drm/amd/display/dc/bios/bios_parser2.c
@@ -32,7 +32,6 @@
#include "dc_bios_types.h"
#include "include/grph_object_ctrl_defs.h"
#include "include/bios_parser_interface.h"
-#include "include/i2caux_interface.h"
#include "include/logger_interface.h"
#include "command_table2.h"
@@ -462,6 +461,7 @@ static enum bp_result get_gpio_i2c_info(
uint32_t count = 0;
unsigned int table_index = 0;
bool find_valid = false;
+ struct atom_gpio_pin_assignment *pin;
if (!info)
return BP_RESULT_BADINPUT;
@@ -489,20 +489,17 @@ static enum bp_result get_gpio_i2c_info(
- sizeof(struct atom_common_table_header))
/ sizeof(struct atom_gpio_pin_assignment);
+ pin = (struct atom_gpio_pin_assignment *) header->gpio_pin;
+
for (table_index = 0; table_index < count; table_index++) {
- if (((record->i2c_id & I2C_HW_CAP) == (
- header->gpio_pin[table_index].gpio_id &
- I2C_HW_CAP)) &&
- ((record->i2c_id & I2C_HW_ENGINE_ID_MASK) ==
- (header->gpio_pin[table_index].gpio_id &
- I2C_HW_ENGINE_ID_MASK)) &&
- ((record->i2c_id & I2C_HW_LANE_MUX) ==
- (header->gpio_pin[table_index].gpio_id &
- I2C_HW_LANE_MUX))) {
+ if (((record->i2c_id & I2C_HW_CAP) == (pin->gpio_id & I2C_HW_CAP)) &&
+ ((record->i2c_id & I2C_HW_ENGINE_ID_MASK) == (pin->gpio_id & I2C_HW_ENGINE_ID_MASK)) &&
+ ((record->i2c_id & I2C_HW_LANE_MUX) == (pin->gpio_id & I2C_HW_LANE_MUX))) {
/* still valid */
find_valid = true;
break;
}
+ pin = (struct atom_gpio_pin_assignment *)((uint8_t *)pin + sizeof(struct atom_gpio_pin_assignment));
}
/* If we don't find the entry that we are looking for then
@@ -518,11 +515,8 @@ static enum bp_result get_gpio_i2c_info(
info->i2c_slave_address = record->i2c_slave_addr;
/* TODO: check how to get register offset for en, Y, etc. */
- info->gpio_info.clk_a_register_index =
- le16_to_cpu(
- header->gpio_pin[table_index].data_a_reg_index);
- info->gpio_info.clk_a_shift =
- header->gpio_pin[table_index].gpio_bitshift;
+ info->gpio_info.clk_a_register_index = le16_to_cpu(pin->data_a_reg_index);
+ info->gpio_info.clk_a_shift = pin->gpio_bitshift;
return BP_RESULT_OK;
}
@@ -1700,14 +1694,15 @@ static enum bp_result bios_parser_enable_disp_power_gating(
static enum bp_result bios_parser_enable_lvtma_control(
struct dc_bios *dcb,
uint8_t uc_pwr_on,
- uint8_t panel_instance)
+ uint8_t panel_instance,
+ uint8_t bypass_panel_control_wait)
{
struct bios_parser *bp = BP_FROM_DCB(dcb);
if (!bp->cmd_tbl.enable_lvtma_control)
return BP_RESULT_FAILURE;
- return bp->cmd_tbl.enable_lvtma_control(bp, uc_pwr_on, panel_instance);
+ return bp->cmd_tbl.enable_lvtma_control(bp, uc_pwr_on, panel_instance, bypass_panel_control_wait);
}
static bool bios_parser_is_accelerated_mode(
@@ -2066,7 +2061,7 @@ static enum bp_result bios_parser_get_encoder_cap_info(
if (!info)
return BP_RESULT_BADINPUT;
-#if defined(CONFIG_DRM_AMD_DC_DCN)
+#if defined(CONFIG_DRM_AMD_DC_FP)
/* encoder cap record not available in v1_5 */
if (bp->object_info_tbl.revision.minor == 5)
return BP_RESULT_NORECORD;
@@ -2393,6 +2388,26 @@ static enum bp_result get_vram_info_v25(
return result;
}
+static enum bp_result get_vram_info_v30(
+ struct bios_parser *bp,
+ struct dc_vram_info *info)
+{
+ struct atom_vram_info_header_v3_0 *info_v30;
+ enum bp_result result = BP_RESULT_OK;
+
+ info_v30 = GET_IMAGE(struct atom_vram_info_header_v3_0,
+ DATA_TABLES(vram_info));
+
+ if (info_v30 == NULL)
+ return BP_RESULT_BADBIOSTABLE;
+
+ info->num_chans = info_v30->channel_num;
+ info->dram_channel_width_bytes = (1 << info_v30->channel_width) / 8;
+
+ return result;
+}
+
+
/*
* get_integrated_info_v11
*
@@ -2911,7 +2926,6 @@ static enum bp_result construct_integrated_info(
struct atom_common_table_header *header;
struct atom_data_revision revision;
- struct clock_voltage_caps temp = {0, 0};
uint32_t i;
uint32_t j;
@@ -3014,14 +3028,8 @@ static enum bp_result construct_integrated_info(
for (i = 1; i < NUMBER_OF_DISP_CLK_VOLTAGE; ++i) {
for (j = i; j > 0; --j) {
if (info->disp_clk_voltage[j].max_supported_clk <
- info->disp_clk_voltage[j-1].max_supported_clk
- ) {
- /* swap j and j - 1*/
- temp = info->disp_clk_voltage[j-1];
- info->disp_clk_voltage[j-1] =
- info->disp_clk_voltage[j];
- info->disp_clk_voltage[j] = temp;
- }
+ info->disp_clk_voltage[j-1].max_supported_clk)
+ swap(info->disp_clk_voltage[j-1], info->disp_clk_voltage[j]);
}
}
@@ -3060,6 +3068,16 @@ static enum bp_result bios_parser_get_vram_info(
}
break;
+ case 3:
+ switch (revision.minor) {
+ case 0:
+ result = get_vram_info_v30(bp, info);
+ break;
+ default:
+ break;
+ }
+ break;
+
default:
return result;
}
diff --git a/drivers/gpu/drm/amd/display/dc/bios/command_table2.c b/drivers/gpu/drm/amd/display/dc/bios/command_table2.c
index f52f7ff7ead4..1ef9e4053bb7 100644
--- a/drivers/gpu/drm/amd/display/dc/bios/command_table2.c
+++ b/drivers/gpu/drm/amd/display/dc/bios/command_table2.c
@@ -986,7 +986,8 @@ static unsigned int get_smu_clock_info_v3_1(struct bios_parser *bp, uint8_t id)
static enum bp_result enable_lvtma_control(
struct bios_parser *bp,
uint8_t uc_pwr_on,
- uint8_t panel_instance);
+ uint8_t panel_instance,
+ uint8_t bypass_panel_control_wait);
static void init_enable_lvtma_control(struct bios_parser *bp)
{
@@ -998,7 +999,8 @@ static void init_enable_lvtma_control(struct bios_parser *bp)
static void enable_lvtma_control_dmcub(
struct dc_dmub_srv *dmcub,
uint8_t uc_pwr_on,
- uint8_t panel_instance)
+ uint8_t panel_instance,
+ uint8_t bypass_panel_control_wait)
{
union dmub_rb_cmd cmd;
@@ -1012,6 +1014,8 @@ static void enable_lvtma_control_dmcub(
uc_pwr_on;
cmd.lvtma_control.data.panel_inst =
panel_instance;
+ cmd.lvtma_control.data.bypass_panel_control_wait =
+ bypass_panel_control_wait;
dc_dmub_srv_cmd_queue(dmcub, &cmd);
dc_dmub_srv_cmd_execute(dmcub);
dc_dmub_srv_wait_idle(dmcub);
@@ -1021,7 +1025,8 @@ static void enable_lvtma_control_dmcub(
static enum bp_result enable_lvtma_control(
struct bios_parser *bp,
uint8_t uc_pwr_on,
- uint8_t panel_instance)
+ uint8_t panel_instance,
+ uint8_t bypass_panel_control_wait)
{
enum bp_result result = BP_RESULT_FAILURE;
@@ -1029,7 +1034,8 @@ static enum bp_result enable_lvtma_control(
bp->base.ctx->dc->debug.dmub_command_table) {
enable_lvtma_control_dmcub(bp->base.ctx->dmub_srv,
uc_pwr_on,
- panel_instance);
+ panel_instance,
+ bypass_panel_control_wait);
return BP_RESULT_OK;
}
return result;
diff --git a/drivers/gpu/drm/amd/display/dc/bios/command_table2.h b/drivers/gpu/drm/amd/display/dc/bios/command_table2.h
index be060b4b87db..b6d09bf6cf72 100644
--- a/drivers/gpu/drm/amd/display/dc/bios/command_table2.h
+++ b/drivers/gpu/drm/amd/display/dc/bios/command_table2.h
@@ -96,7 +96,8 @@ struct cmd_tbl {
struct bios_parser *bp, uint8_t id);
enum bp_result (*enable_lvtma_control)(struct bios_parser *bp,
uint8_t uc_pwr_on,
- uint8_t panel_instance);
+ uint8_t panel_instance,
+ uint8_t bypass_panel_control_wait);
};
void dal_firmware_parser_init_cmd_tbl(struct bios_parser *bp);
diff --git a/drivers/gpu/drm/amd/display/dc/clk_mgr/Makefile b/drivers/gpu/drm/amd/display/dc/clk_mgr/Makefile
index 271d8e573181..ad390e4cd0a9 100644
--- a/drivers/gpu/drm/amd/display/dc/clk_mgr/Makefile
+++ b/drivers/gpu/drm/amd/display/dc/clk_mgr/Makefile
@@ -74,7 +74,7 @@ CLK_MGR_DCE120 = dce120_clk_mgr.o
AMD_DAL_CLK_MGR_DCE120 = $(addprefix $(AMDDALPATH)/dc/clk_mgr/dce120/,$(CLK_MGR_DCE120))
AMD_DISPLAY_FILES += $(AMD_DAL_CLK_MGR_DCE120)
-ifdef CONFIG_DRM_AMD_DC_DCN
+ifdef CONFIG_DRM_AMD_DC_FP
###############################################################################
# DCN10
###############################################################################
diff --git a/drivers/gpu/drm/amd/display/dc/clk_mgr/clk_mgr.c b/drivers/gpu/drm/amd/display/dc/clk_mgr/clk_mgr.c
index f276abb63bcd..6127d6045336 100644
--- a/drivers/gpu/drm/amd/display/dc/clk_mgr/clk_mgr.c
+++ b/drivers/gpu/drm/amd/display/dc/clk_mgr/clk_mgr.c
@@ -29,6 +29,7 @@
#include "dc_types.h"
#include "dccg.h"
#include "clk_mgr_internal.h"
+#include "link.h"
#include "dce100/dce_clk_mgr.h"
#include "dce110/dce110_clk_mgr.h"
@@ -103,7 +104,7 @@ void clk_mgr_exit_optimized_pwr_state(const struct dc *dc, struct clk_mgr *clk_m
int edp_num;
unsigned int panel_inst;
- get_edp_links(dc, edp_links, &edp_num);
+ dc_get_edp_links(dc, edp_links, &edp_num);
if (dc->hwss.exit_optimized_pwr_state)
dc->hwss.exit_optimized_pwr_state(dc, dc->current_state);
@@ -115,7 +116,7 @@ void clk_mgr_exit_optimized_pwr_state(const struct dc *dc, struct clk_mgr *clk_m
if (!edp_link->psr_settings.psr_feature_enabled)
continue;
clk_mgr->psr_allow_active_cache = edp_link->psr_settings.psr_allow_active;
- dc_link_set_psr_allow_active(edp_link, &allow_active, false, false, NULL);
+ dc->link_srv->edp_set_psr_allow_active(edp_link, &allow_active, false, false, NULL);
}
}
@@ -128,13 +129,13 @@ void clk_mgr_optimize_pwr_state(const struct dc *dc, struct clk_mgr *clk_mgr)
int edp_num;
unsigned int panel_inst;
- get_edp_links(dc, edp_links, &edp_num);
+ dc_get_edp_links(dc, edp_links, &edp_num);
if (edp_num) {
for (panel_inst = 0; panel_inst < edp_num; panel_inst++) {
edp_link = edp_links[panel_inst];
if (!edp_link->psr_settings.psr_feature_enabled)
continue;
- dc_link_set_psr_allow_active(edp_link,
+ dc->link_srv->edp_set_psr_allow_active(edp_link,
&clk_mgr->psr_allow_active_cache, false, false, NULL);
}
}
@@ -220,7 +221,7 @@ struct clk_mgr *dc_clk_mgr_create(struct dc_context *ctx, struct pp_smu_funcs *p
dce120_clk_mgr_construct(ctx, clk_mgr);
return &clk_mgr->base;
}
-#if defined(CONFIG_DRM_AMD_DC_DCN)
+#if defined(CONFIG_DRM_AMD_DC_FP)
case FAMILY_RV: {
struct clk_mgr_internal *clk_mgr = kzalloc(sizeof(*clk_mgr), GFP_KERNEL);
@@ -350,7 +351,7 @@ struct clk_mgr *dc_clk_mgr_create(struct dc_context *ctx, struct pp_smu_funcs *p
}
break;
-#endif
+#endif /* CONFIG_DRM_AMD_DC_FP - Family RV */
default:
ASSERT(0); /* Unknown Asic */
break;
@@ -363,7 +364,7 @@ void dc_destroy_clk_mgr(struct clk_mgr *clk_mgr_base)
{
struct clk_mgr_internal *clk_mgr = TO_CLK_MGR_INTERNAL(clk_mgr_base);
-#ifdef CONFIG_DRM_AMD_DC_DCN
+#ifdef CONFIG_DRM_AMD_DC_FP
switch (clk_mgr_base->ctx->asic_id.chip_family) {
case FAMILY_NV:
if (ASICREV_IS_SIENNA_CICHLID_P(clk_mgr_base->ctx->asic_id.hw_internal_rev)) {
@@ -404,7 +405,7 @@ void dc_destroy_clk_mgr(struct clk_mgr *clk_mgr_base)
default:
break;
}
-#endif
+#endif /* CONFIG_DRM_AMD_DC_FP */
kfree(clk_mgr);
}
diff --git a/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn201/dcn201_clk_mgr.c b/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn201/dcn201_clk_mgr.c
index f0577dcd1af6..811720749faf 100644
--- a/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn201/dcn201_clk_mgr.c
+++ b/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn201/dcn201_clk_mgr.c
@@ -162,7 +162,7 @@ static void dcn201_update_clocks(struct clk_mgr *clk_mgr_base,
}
}
-struct clk_mgr_funcs dcn201_funcs = {
+static struct clk_mgr_funcs dcn201_funcs = {
.get_dp_ref_clk_frequency = dce12_get_dp_ref_freq_khz,
.update_clocks = dcn201_update_clocks,
.init_clocks = dcn201_init_clocks,
diff --git a/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn21/rn_clk_mgr.c b/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn21/rn_clk_mgr.c
index ca6dfd2d7561..bd9fd0b54f46 100644
--- a/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn21/rn_clk_mgr.c
+++ b/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn21/rn_clk_mgr.c
@@ -706,7 +706,7 @@ void rn_clk_mgr_construct(
enum pp_smu_status status = 0;
int is_green_sardine = 0;
-#if defined(CONFIG_DRM_AMD_DC_DCN)
+#if defined(CONFIG_DRM_AMD_DC_FP)
is_green_sardine = ASICREV_IS_GREEN_SARDINE(ctx->asic_id.hw_internal_rev);
#endif
diff --git a/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn21/rn_clk_mgr_vbios_smu.h b/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn21/rn_clk_mgr_vbios_smu.h
index 3e5df27aa96f..1ce19d875358 100644
--- a/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn21/rn_clk_mgr_vbios_smu.h
+++ b/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn21/rn_clk_mgr_vbios_smu.h
@@ -26,6 +26,8 @@
#ifndef DAL_DC_RN_CLK_MGR_VBIOS_SMU_H_
#define DAL_DC_RN_CLK_MGR_VBIOS_SMU_H_
+enum dcn_pwr_state;
+
int rn_vbios_smu_get_smu_version(struct clk_mgr_internal *clk_mgr);
int rn_vbios_smu_set_dispclk(struct clk_mgr_internal *clk_mgr, int requested_dispclk_khz);
int rn_vbios_smu_set_dprefclk(struct clk_mgr_internal *clk_mgr);
@@ -33,7 +35,7 @@ int rn_vbios_smu_set_hard_min_dcfclk(struct clk_mgr_internal *clk_mgr, int reque
int rn_vbios_smu_set_min_deep_sleep_dcfclk(struct clk_mgr_internal *clk_mgr, int requested_min_ds_dcfclk_khz);
void rn_vbios_smu_set_phyclk(struct clk_mgr_internal *clk_mgr, int requested_phyclk_khz);
int rn_vbios_smu_set_dppclk(struct clk_mgr_internal *clk_mgr, int requested_dpp_khz);
-void rn_vbios_smu_set_dcn_low_power_state(struct clk_mgr_internal *clk_mgr, int display_count);
+void rn_vbios_smu_set_dcn_low_power_state(struct clk_mgr_internal *clk_mgr, enum dcn_pwr_state);
void rn_vbios_smu_enable_48mhz_tmdp_refclk_pwrdwn(struct clk_mgr_internal *clk_mgr, bool enable);
void rn_vbios_smu_enable_pme_wa(struct clk_mgr_internal *clk_mgr);
int rn_vbios_smu_is_periodic_retraining_disabled(struct clk_mgr_internal *clk_mgr);
diff --git a/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn30/dcn30_clk_mgr.c b/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn30/dcn30_clk_mgr.c
index 3ce0ee0d012f..694a9d3d92ae 100644
--- a/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn30/dcn30_clk_mgr.c
+++ b/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn30/dcn30_clk_mgr.c
@@ -577,8 +577,7 @@ void dcn3_clk_mgr_construct(
void dcn3_clk_mgr_destroy(struct clk_mgr_internal *clk_mgr)
{
- if (clk_mgr->base.bw_params)
- kfree(clk_mgr->base.bw_params);
+ kfree(clk_mgr->base.bw_params);
if (clk_mgr->wm_range_table)
dm_helpers_free_gpu_mem(clk_mgr->base.ctx, DC_MEM_ALLOC_TYPE_GART,
diff --git a/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn30/dcn30_smu11_driver_if.h b/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn30/dcn30_smu11_driver_if.h
index 8ea8ee57b39f..61bb1d86182e 100644
--- a/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn30/dcn30_smu11_driver_if.h
+++ b/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn30/dcn30_smu11_driver_if.h
@@ -1,3 +1,4 @@
+// SPDX-License-Identifier: MIT
// This is a stripped-down version of the smu11_driver_if.h file for the relevant DAL interfaces.
#define SMU11_DRIVER_IF_VERSION 0x40
diff --git a/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn301/vg_clk_mgr.c b/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn301/vg_clk_mgr.c
index 24715ca2fa94..01383aac6b41 100644
--- a/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn301/vg_clk_mgr.c
+++ b/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn301/vg_clk_mgr.c
@@ -529,6 +529,19 @@ static struct clk_bw_params vg_bw_params = {
};
+static uint32_t find_max_clk_value(const uint32_t clocks[], uint32_t num_clocks)
+{
+ uint32_t max = 0;
+ int i;
+
+ for (i = 0; i < num_clocks; ++i) {
+ if (clocks[i] > max)
+ max = clocks[i];
+ }
+
+ return max;
+}
+
static unsigned int find_dcfclk_for_voltage(const struct vg_dpm_clocks *clock_table,
unsigned int voltage)
{
@@ -572,12 +585,16 @@ static void vg_clk_mgr_helper_populate_bw_params(
bw_params->clk_table.num_entries = j + 1;
- for (i = 0; i < bw_params->clk_table.num_entries; i++, j--) {
+ for (i = 0; i < bw_params->clk_table.num_entries - 1; i++, j--) {
bw_params->clk_table.entries[i].fclk_mhz = clock_table->DfPstateTable[j].fclk;
bw_params->clk_table.entries[i].memclk_mhz = clock_table->DfPstateTable[j].memclk;
bw_params->clk_table.entries[i].voltage = clock_table->DfPstateTable[j].voltage;
bw_params->clk_table.entries[i].dcfclk_mhz = find_dcfclk_for_voltage(clock_table, clock_table->DfPstateTable[j].voltage);
}
+ bw_params->clk_table.entries[i].fclk_mhz = clock_table->DfPstateTable[j].fclk;
+ bw_params->clk_table.entries[i].memclk_mhz = clock_table->DfPstateTable[j].memclk;
+ bw_params->clk_table.entries[i].voltage = clock_table->DfPstateTable[j].voltage;
+ bw_params->clk_table.entries[i].dcfclk_mhz = find_max_clk_value(clock_table->DcfClocks, VG_NUM_DCFCLK_DPM_LEVELS);
bw_params->vram_type = bios_info->memory_type;
bw_params->num_channels = bios_info->ma_channel_number;
diff --git a/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn31/dcn31_clk_mgr.c b/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn31/dcn31_clk_mgr.c
index c1eaf571407a..f9e2e0c3095e 100644
--- a/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn31/dcn31_clk_mgr.c
+++ b/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn31/dcn31_clk_mgr.c
@@ -47,6 +47,7 @@
#include "dcn30/dcn30_clk_mgr.h"
#include "dc_dmub_srv.h"
+#include "link.h"
#include "logger_types.h"
#undef DC_LOGGER
@@ -609,8 +610,10 @@ static void dcn31_clk_mgr_helper_populate_bw_params(struct clk_mgr_internal *clk
}
bw_params->vram_type = bios_info->memory_type;
- bw_params->num_channels = bios_info->ma_channel_number;
+ bw_params->dram_channel_width_bytes = bios_info->memory_type == 0x22 ? 8 : 4;
+ //bw_params->dram_channel_width_bytes = dc->ctx->asic_id.vram_width;
+ bw_params->num_channels = bios_info->ma_channel_number ? bios_info->ma_channel_number : 4;
for (i = 0; i < WM_SET_COUNT; i++) {
bw_params->wm_table.entries[i].wm_inst = i;
diff --git a/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn31/dcn31_smu.c b/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn31/dcn31_smu.c
index 090b2c02aee1..0827c7df2855 100644
--- a/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn31/dcn31_smu.c
+++ b/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn31/dcn31_smu.c
@@ -333,8 +333,8 @@ void dcn31_smu_set_zstate_support(struct clk_mgr_internal *clk_mgr, enum dcn_zst
(support == DCN_ZSTATE_SUPPORT_ALLOW_Z10_ONLY))
support = DCN_ZSTATE_SUPPORT_DISALLOW;
-
- if (support == DCN_ZSTATE_SUPPORT_ALLOW_Z10_ONLY)
+ if (support == DCN_ZSTATE_SUPPORT_ALLOW_Z10_ONLY ||
+ support == DCN_ZSTATE_SUPPORT_ALLOW_Z8_Z10_ONLY)
param = 1;
else
param = 0;
diff --git a/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn314/dcn314_clk_mgr.c b/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn314/dcn314_clk_mgr.c
index 20a06c04e4a1..5cb44f838bde 100644
--- a/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn314/dcn314_clk_mgr.c
+++ b/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn314/dcn314_clk_mgr.c
@@ -48,7 +48,7 @@
#include "dcn31/dcn31_clk_mgr.h"
#include "dc_dmub_srv.h"
-#include "dc_link_dp.h"
+#include "link.h"
#include "dcn314_smu.h"
@@ -108,6 +108,11 @@ static int dcn314_get_active_display_cnt_wa(
stream->signal == SIGNAL_TYPE_DVI_SINGLE_LINK ||
stream->signal == SIGNAL_TYPE_DVI_DUAL_LINK)
tmds_present = true;
+
+ /* Checking stream / link detection ensuring that PHY is active*/
+ if (dc_is_dp_signal(stream->signal) && !stream->dpms_off)
+ display_count++;
+
}
for (i = 0; i < dc->link_count; i++) {
diff --git a/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn314/dcn314_smu.c b/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn314/dcn314_smu.c
index ef0795b14a1f..0765334f0825 100644
--- a/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn314/dcn314_smu.c
+++ b/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn314/dcn314_smu.c
@@ -123,9 +123,10 @@ static int dcn314_smu_send_msg_with_param(struct clk_mgr_internal *clk_mgr,
uint32_t result;
result = dcn314_smu_wait_for_response(clk_mgr, 10, 200000);
- ASSERT(result == VBIOSSMC_Result_OK);
- smu_print("SMU response after wait: %d\n", result);
+ if (result != VBIOSSMC_Result_OK)
+ smu_print("SMU Response was not OK. SMU response after wait received is: %d\n",
+ result);
if (result == VBIOSSMC_Status_BUSY)
return -1;
@@ -145,6 +146,9 @@ static int dcn314_smu_send_msg_with_param(struct clk_mgr_internal *clk_mgr,
if (msg_id == VBIOSSMC_MSG_TransferTableDram2Smu &&
param == TABLE_WATERMARKS)
DC_LOG_WARNING("Watermarks table not configured properly by SMU");
+ else if (msg_id == VBIOSSMC_MSG_SetHardMinDcfclkByFreq ||
+ msg_id == VBIOSSMC_MSG_SetMinDeepSleepDcfclk)
+ DC_LOG_WARNING("DCFCLK_DPM is not enabled by BIOS");
else
ASSERT(0);
REG_WRITE(MP1_SMN_C2PMSG_91, VBIOSSMC_Result_OK);
@@ -216,6 +220,12 @@ int dcn314_smu_set_hard_min_dcfclk(struct clk_mgr_internal *clk_mgr, int request
VBIOSSMC_MSG_SetHardMinDcfclkByFreq,
khz_to_mhz_ceil(requested_dcfclk_khz));
+#ifdef DBG
+ smu_print("actual_dcfclk_set_mhz %d is set to : %d\n",
+ actual_dcfclk_set_mhz,
+ actual_dcfclk_set_mhz * 1000);
+#endif
+
return actual_dcfclk_set_mhz * 1000;
}
@@ -339,8 +349,6 @@ void dcn314_smu_set_zstate_support(struct clk_mgr_internal *clk_mgr, enum dcn_zs
if (!clk_mgr->smu_present)
return;
- // Arg[15:0] = 8/9/0 for Z8/Z9/disallow -> existing bits
- // Arg[16] = Disallow Z9 -> new bit
switch (support) {
case DCN_ZSTATE_SUPPORT_ALLOW:
@@ -359,6 +367,16 @@ void dcn314_smu_set_zstate_support(struct clk_mgr_internal *clk_mgr, enum dcn_zs
param = (1 << 10);
break;
+ case DCN_ZSTATE_SUPPORT_ALLOW_Z8_Z10_ONLY:
+ msg_id = VBIOSSMC_MSG_AllowZstatesEntry;
+ param = (1 << 10) | (1 << 8);
+ break;
+
+ case DCN_ZSTATE_SUPPORT_ALLOW_Z8_ONLY:
+ msg_id = VBIOSSMC_MSG_AllowZstatesEntry;
+ param = (1 << 8);
+ break;
+
default: //DCN_ZSTATE_SUPPORT_UNKNOWN
msg_id = VBIOSSMC_MSG_AllowZstatesEntry;
param = 0;
diff --git a/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn315/dcn315_clk_mgr.c b/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn315/dcn315_clk_mgr.c
index 893991a0eb97..b737cbc468f5 100644
--- a/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn315/dcn315_clk_mgr.c
+++ b/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn315/dcn315_clk_mgr.c
@@ -46,7 +46,7 @@
#define DC_LOGGER \
clk_mgr->base.base.ctx->logger
-#include "dc_link_dp.h"
+#include "link.h"
#define TO_CLK_MGR_DCN315(clk_mgr)\
container_of(clk_mgr, struct clk_mgr_dcn315, base)
@@ -87,6 +87,16 @@ static int dcn315_get_active_display_cnt_wa(
return display_count;
}
+static bool should_disable_otg(struct pipe_ctx *pipe)
+{
+ bool ret = true;
+
+ if (pipe->stream->link->link_enc && pipe->stream->link->link_enc->funcs->is_dig_enabled &&
+ pipe->stream->link->link_enc->funcs->is_dig_enabled(pipe->stream->link->link_enc))
+ ret = false;
+ return ret;
+}
+
static void dcn315_disable_otg_wa(struct clk_mgr *clk_mgr_base, struct dc_state *context, bool disable)
{
struct dc *dc = clk_mgr_base->ctx->dc;
@@ -98,12 +108,16 @@ static void dcn315_disable_otg_wa(struct clk_mgr *clk_mgr_base, struct dc_state
if (pipe->top_pipe || pipe->prev_odm_pipe)
continue;
if (pipe->stream && (pipe->stream->dpms_off || pipe->plane_state == NULL ||
- dc_is_virtual_signal(pipe->stream->signal))) {
- if (disable) {
- pipe->stream_res.tg->funcs->immediate_disable_crtc(pipe->stream_res.tg);
- reset_sync_context_for_pipe(dc, context, i);
- } else
- pipe->stream_res.tg->funcs->enable_crtc(pipe->stream_res.tg);
+ dc_is_virtual_signal(pipe->stream->signal))) {
+
+ /* This w/a should not trigger when we have a dig active */
+ if (should_disable_otg(pipe)) {
+ if (disable) {
+ pipe->stream_res.tg->funcs->immediate_disable_crtc(pipe->stream_res.tg);
+ reset_sync_context_for_pipe(dc, context, i);
+ } else
+ pipe->stream_res.tg->funcs->enable_crtc(pipe->stream_res.tg);
+ }
}
}
}
@@ -458,19 +472,6 @@ static void dcn315_get_dpm_table_from_smu(struct clk_mgr_internal *clk_mgr,
dcn315_smu_transfer_dpm_table_smu_2_dram(clk_mgr);
}
-static uint32_t find_max_clk_value(const uint32_t clocks[], uint32_t num_clocks)
-{
- uint32_t max = 0;
- int i;
-
- for (i = 0; i < num_clocks; ++i) {
- if (clocks[i] > max)
- max = clocks[i];
- }
-
- return max;
-}
-
static void dcn315_clk_mgr_helper_populate_bw_params(
struct clk_mgr_internal *clk_mgr,
struct integrated_info *bios_info,
@@ -478,29 +479,21 @@ static void dcn315_clk_mgr_helper_populate_bw_params(
{
int i;
struct clk_bw_params *bw_params = clk_mgr->base.bw_params;
- uint32_t max_pstate = 0, max_fclk = 0, min_pstate = 0;
+ uint32_t max_pstate = clock_table->NumDfPstatesEnabled - 1;
struct clk_limit_table_entry def_max = bw_params->clk_table.entries[bw_params->clk_table.num_entries - 1];
- /* Find highest fclk pstate */
- for (i = 0; i < clock_table->NumDfPstatesEnabled; i++) {
- if (clock_table->DfPstateTable[i].FClk > max_fclk) {
- max_fclk = clock_table->DfPstateTable[i].FClk;
- max_pstate = i;
- }
- }
-
/* For 315 we want to base clock table on dcfclk, need at least one entry regardless of pmfw table */
for (i = 0; i < clock_table->NumDcfClkLevelsEnabled; i++) {
int j;
- uint32_t min_fclk = clock_table->DfPstateTable[0].FClk;
- for (j = 1; j < clock_table->NumDfPstatesEnabled; j++) {
- if (clock_table->DfPstateTable[j].Voltage <= clock_table->SocVoltage[i]
- && clock_table->DfPstateTable[j].FClk < min_fclk) {
- min_fclk = clock_table->DfPstateTable[j].FClk;
- min_pstate = j;
- }
+ /* DF table is sorted with clocks decreasing */
+ for (j = clock_table->NumDfPstatesEnabled - 2; j >= 0; j--) {
+ if (clock_table->DfPstateTable[j].Voltage <= clock_table->SocVoltage[i])
+ max_pstate = j;
}
+ /* Max DCFCLK should match up with max pstate */
+ if (i == clock_table->NumDcfClkLevelsEnabled - 1)
+ max_pstate = 0;
/* First search defaults for the clocks we don't read using closest lower or equal default dcfclk */
for (j = bw_params->clk_table.num_entries - 1; j > 0; j--)
@@ -511,9 +504,9 @@ static void dcn315_clk_mgr_helper_populate_bw_params(
bw_params->clk_table.entries[i].dtbclk_mhz = bw_params->clk_table.entries[j].dtbclk_mhz;
/* Now update clocks we do read */
- bw_params->clk_table.entries[i].fclk_mhz = min_fclk;
- bw_params->clk_table.entries[i].memclk_mhz = clock_table->DfPstateTable[min_pstate].MemClk;
- bw_params->clk_table.entries[i].voltage = clock_table->DfPstateTable[min_pstate].Voltage;
+ bw_params->clk_table.entries[i].fclk_mhz = clock_table->DfPstateTable[max_pstate].FClk;
+ bw_params->clk_table.entries[i].memclk_mhz = clock_table->DfPstateTable[max_pstate].MemClk;
+ bw_params->clk_table.entries[i].voltage = clock_table->SocVoltage[i];
bw_params->clk_table.entries[i].dcfclk_mhz = clock_table->DcfClocks[i];
bw_params->clk_table.entries[i].socclk_mhz = clock_table->SocClocks[i];
bw_params->clk_table.entries[i].dispclk_mhz = clock_table->DispClocks[i];
@@ -521,25 +514,21 @@ static void dcn315_clk_mgr_helper_populate_bw_params(
bw_params->clk_table.entries[i].wck_ratio = 1;
}
- /* Make sure to include at least one entry and highest pstate */
- if (max_pstate != min_pstate || i == 0) {
- bw_params->clk_table.entries[i].fclk_mhz = max_fclk;
- bw_params->clk_table.entries[i].memclk_mhz = clock_table->DfPstateTable[max_pstate].MemClk;
- bw_params->clk_table.entries[i].voltage = clock_table->DfPstateTable[max_pstate].Voltage;
- bw_params->clk_table.entries[i].dcfclk_mhz = find_max_clk_value(clock_table->DcfClocks, NUM_DCFCLK_DPM_LEVELS);
+ /* Make sure to include at least one entry */
+ if (i == 0) {
+ bw_params->clk_table.entries[i].fclk_mhz = clock_table->DfPstateTable[0].FClk;
+ bw_params->clk_table.entries[i].memclk_mhz = clock_table->DfPstateTable[0].MemClk;
+ bw_params->clk_table.entries[i].voltage = clock_table->DfPstateTable[0].Voltage;
+ bw_params->clk_table.entries[i].dcfclk_mhz = clock_table->DcfClocks[0];
bw_params->clk_table.entries[i].wck_ratio = 1;
i++;
+ } else if (clock_table->NumDcfClkLevelsEnabled != clock_table->NumSocClkLevelsEnabled) {
+ bw_params->clk_table.entries[i-1].voltage = clock_table->SocVoltage[clock_table->NumSocClkLevelsEnabled - 1];
+ bw_params->clk_table.entries[i-1].socclk_mhz = clock_table->SocClocks[clock_table->NumSocClkLevelsEnabled - 1];
+ bw_params->clk_table.entries[i-1].dispclk_mhz = clock_table->DispClocks[clock_table->NumDispClkLevelsEnabled - 1];
+ bw_params->clk_table.entries[i-1].dppclk_mhz = clock_table->DppClocks[clock_table->NumDispClkLevelsEnabled - 1];
}
- bw_params->clk_table.num_entries = i--;
-
- /* Make sure all highest clocks are included*/
- bw_params->clk_table.entries[i].socclk_mhz = find_max_clk_value(clock_table->SocClocks, NUM_SOCCLK_DPM_LEVELS);
- bw_params->clk_table.entries[i].dispclk_mhz = find_max_clk_value(clock_table->DispClocks, NUM_DISPCLK_DPM_LEVELS);
- bw_params->clk_table.entries[i].dppclk_mhz = find_max_clk_value(clock_table->DppClocks, NUM_DPPCLK_DPM_LEVELS);
- ASSERT(clock_table->DcfClocks[i] == find_max_clk_value(clock_table->DcfClocks, NUM_DCFCLK_DPM_LEVELS));
- bw_params->clk_table.entries[i].phyclk_mhz = def_max.phyclk_mhz;
- bw_params->clk_table.entries[i].phyclk_d18_mhz = def_max.phyclk_d18_mhz;
- bw_params->clk_table.entries[i].dtbclk_mhz = def_max.dtbclk_mhz;
+ bw_params->clk_table.num_entries = i;
/* Set any 0 clocks to max default setting. Not an issue for
* power since we aren't doing switching in such case anyway
@@ -565,6 +554,11 @@ static void dcn315_clk_mgr_helper_populate_bw_params(
if (!bw_params->clk_table.entries[i].dtbclk_mhz)
bw_params->clk_table.entries[i].dtbclk_mhz = def_max.dtbclk_mhz;
}
+
+ /* Make sure all highest default clocks are included*/
+ ASSERT(bw_params->clk_table.entries[i-1].phyclk_mhz == def_max.phyclk_mhz);
+ ASSERT(bw_params->clk_table.entries[i-1].phyclk_d18_mhz == def_max.phyclk_d18_mhz);
+ ASSERT(bw_params->clk_table.entries[i-1].dtbclk_mhz == def_max.dtbclk_mhz);
ASSERT(bw_params->clk_table.entries[i-1].dcfclk_mhz);
bw_params->vram_type = bios_info->memory_type;
bw_params->num_channels = bios_info->ma_channel_number;
diff --git a/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn316/dcn316_clk_mgr.c b/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn316/dcn316_clk_mgr.c
index 187f5b27fdc8..93db4dbee713 100644
--- a/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn316/dcn316_clk_mgr.c
+++ b/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn316/dcn316_clk_mgr.c
@@ -39,7 +39,7 @@
#include "dcn316_smu.h"
#include "dm_helpers.h"
#include "dc_dmub_srv.h"
-#include "dc_link_dp.h"
+#include "link.h"
// DCN316 this is CLK1 instance
#define MAX_INSTANCE 7
@@ -553,6 +553,7 @@ static void dcn316_clk_mgr_helper_populate_bw_params(
bw_params->vram_type = bios_info->memory_type;
bw_params->num_channels = bios_info->ma_channel_number;
+ bw_params->dram_channel_width_bytes = bios_info->memory_type == 0x22 ? 8 : 4;
for (i = 0; i < WM_SET_COUNT; i++) {
bw_params->wm_table.entries[i].wm_inst = i;
diff --git a/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn32/dcn32_clk_mgr.c b/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn32/dcn32_clk_mgr.c
index 6f77d8e538ab..8d9444db092a 100644
--- a/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn32/dcn32_clk_mgr.c
+++ b/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn32/dcn32_clk_mgr.c
@@ -33,7 +33,7 @@
#include "reg_helper.h"
#include "core_types.h"
#include "dm_helpers.h"
-#include "dc_link_dp.h"
+#include "link.h"
#include "atomfirmware.h"
#include "smu13_driver_if.h"
@@ -233,41 +233,6 @@ void dcn32_init_clocks(struct clk_mgr *clk_mgr_base)
DC_FP_END();
}
-static void dcn32_update_clocks_update_dtb_dto(struct clk_mgr_internal *clk_mgr,
- struct dc_state *context,
- int ref_dtbclk_khz)
-{
- struct dccg *dccg = clk_mgr->dccg;
- uint32_t tg_mask = 0;
- int i;
-
- for (i = 0; i < clk_mgr->base.ctx->dc->res_pool->pipe_count; i++) {
- struct pipe_ctx *pipe_ctx = &context->res_ctx.pipe_ctx[i];
- struct dtbclk_dto_params dto_params = {0};
-
- /* use mask to program DTO once per tg */
- if (pipe_ctx->stream_res.tg &&
- !(tg_mask & (1 << pipe_ctx->stream_res.tg->inst))) {
- tg_mask |= (1 << pipe_ctx->stream_res.tg->inst);
-
- dto_params.otg_inst = pipe_ctx->stream_res.tg->inst;
- dto_params.ref_dtbclk_khz = ref_dtbclk_khz;
-
- if (is_dp_128b_132b_signal(pipe_ctx)) {
- dto_params.pixclk_khz = pipe_ctx->stream->phy_pix_clk;
-
- if (pipe_ctx->stream_res.audio != NULL)
- dto_params.req_audio_dtbclk_khz = 24000;
- }
- if (dc_is_hdmi_signal(pipe_ctx->stream->signal))
- dto_params.is_hdmi = true;
-
- dccg->funcs->set_dtbclk_dto(clk_mgr->dccg, &dto_params);
- //dccg->funcs->set_audio_dtbclk_dto(clk_mgr->dccg, &dto_params);
- }
- }
-}
-
/* Since DPPCLK request to PMFW needs to be exact (due to DPP DTO programming),
* update DPPCLK to be the exact frequency that will be set after the DPPCLK
* divider is updated. This will prevent rounding issues that could cause DPP
@@ -290,6 +255,167 @@ static void dcn32_update_dppclk_dispclk_freq(struct clk_mgr_internal *clk_mgr, s
}
}
+void dcn32_update_clocks_update_dpp_dto(struct clk_mgr_internal *clk_mgr,
+ struct dc_state *context, bool safe_to_lower)
+{
+ int i;
+
+ clk_mgr->dccg->ref_dppclk = clk_mgr->base.clks.dppclk_khz;
+ for (i = 0; i < clk_mgr->base.ctx->dc->res_pool->pipe_count; i++) {
+ int dpp_inst, dppclk_khz, prev_dppclk_khz;
+
+ dppclk_khz = context->res_ctx.pipe_ctx[i].plane_res.bw.dppclk_khz;
+
+ if (context->res_ctx.pipe_ctx[i].plane_res.dpp)
+ dpp_inst = context->res_ctx.pipe_ctx[i].plane_res.dpp->inst;
+ else if (!context->res_ctx.pipe_ctx[i].plane_res.dpp && dppclk_khz == 0) {
+ /* dpp == NULL && dppclk_khz == 0 is valid because of pipe harvesting.
+ * In this case just continue in loop
+ */
+ continue;
+ } else if (!context->res_ctx.pipe_ctx[i].plane_res.dpp && dppclk_khz > 0) {
+ /* The software state is not valid if dpp resource is NULL and
+ * dppclk_khz > 0.
+ */
+ ASSERT(false);
+ continue;
+ }
+
+ prev_dppclk_khz = clk_mgr->dccg->pipe_dppclk_khz[i];
+
+ if (safe_to_lower || prev_dppclk_khz < dppclk_khz)
+ clk_mgr->dccg->funcs->update_dpp_dto(
+ clk_mgr->dccg, dpp_inst, dppclk_khz);
+ }
+}
+
+static void dcn32_update_clocks_update_dentist(
+ struct clk_mgr_internal *clk_mgr,
+ struct dc_state *context)
+{
+ uint32_t new_disp_divider = 0;
+ uint32_t new_dispclk_wdivider = 0;
+ uint32_t old_dispclk_wdivider = 0;
+ uint32_t i;
+ uint32_t dentist_dispclk_wdivider_readback = 0;
+ struct dc *dc = clk_mgr->base.ctx->dc;
+
+ if (clk_mgr->base.clks.dispclk_khz == 0)
+ return;
+
+ new_disp_divider = DENTIST_DIVIDER_RANGE_SCALE_FACTOR
+ * clk_mgr->base.dentist_vco_freq_khz / clk_mgr->base.clks.dispclk_khz;
+
+ new_dispclk_wdivider = dentist_get_did_from_divider(new_disp_divider);
+ REG_GET(DENTIST_DISPCLK_CNTL,
+ DENTIST_DISPCLK_WDIVIDER, &old_dispclk_wdivider);
+
+ /* When changing divider to or from 127, some extra programming is required to prevent corruption */
+ if (old_dispclk_wdivider == 127 && new_dispclk_wdivider != 127) {
+ for (i = 0; i < clk_mgr->base.ctx->dc->res_pool->pipe_count; i++) {
+ struct pipe_ctx *pipe_ctx = &context->res_ctx.pipe_ctx[i];
+ uint32_t fifo_level;
+ struct dccg *dccg = clk_mgr->base.ctx->dc->res_pool->dccg;
+ struct stream_encoder *stream_enc = pipe_ctx->stream_res.stream_enc;
+ int32_t N;
+ int32_t j;
+
+ if (!pipe_ctx->stream)
+ continue;
+ /* Virtual encoders don't have this function */
+ if (!stream_enc->funcs->get_fifo_cal_average_level)
+ continue;
+ fifo_level = stream_enc->funcs->get_fifo_cal_average_level(
+ stream_enc);
+ N = fifo_level / 4;
+ dccg->funcs->set_fifo_errdet_ovr_en(
+ dccg,
+ true);
+ for (j = 0; j < N - 4; j++)
+ dccg->funcs->otg_drop_pixel(
+ dccg,
+ pipe_ctx->stream_res.tg->inst);
+ dccg->funcs->set_fifo_errdet_ovr_en(
+ dccg,
+ false);
+ }
+ } else if (new_dispclk_wdivider == 127 && old_dispclk_wdivider != 127) {
+ /* request clock with 126 divider first */
+ uint32_t temp_disp_divider = dentist_get_divider_from_did(126);
+ uint32_t temp_dispclk_khz = (DENTIST_DIVIDER_RANGE_SCALE_FACTOR * clk_mgr->base.dentist_vco_freq_khz) / temp_disp_divider;
+
+ if (clk_mgr->smu_present)
+ dcn32_smu_set_hard_min_by_freq(clk_mgr, PPCLK_DISPCLK, khz_to_mhz_ceil(temp_dispclk_khz));
+
+ if (dc->debug.override_dispclk_programming) {
+ REG_GET(DENTIST_DISPCLK_CNTL,
+ DENTIST_DISPCLK_WDIVIDER, &dentist_dispclk_wdivider_readback);
+
+ if (dentist_dispclk_wdivider_readback != 126) {
+ REG_UPDATE(DENTIST_DISPCLK_CNTL,
+ DENTIST_DISPCLK_WDIVIDER, 126);
+ REG_WAIT(DENTIST_DISPCLK_CNTL, DENTIST_DISPCLK_CHG_DONE, 1, 50, 2000);
+ }
+ }
+
+ for (i = 0; i < clk_mgr->base.ctx->dc->res_pool->pipe_count; i++) {
+ struct pipe_ctx *pipe_ctx = &context->res_ctx.pipe_ctx[i];
+ struct dccg *dccg = clk_mgr->base.ctx->dc->res_pool->dccg;
+ struct stream_encoder *stream_enc = pipe_ctx->stream_res.stream_enc;
+ uint32_t fifo_level;
+ int32_t N;
+ int32_t j;
+
+ if (!pipe_ctx->stream)
+ continue;
+ /* Virtual encoders don't have this function */
+ if (!stream_enc->funcs->get_fifo_cal_average_level)
+ continue;
+ fifo_level = stream_enc->funcs->get_fifo_cal_average_level(
+ stream_enc);
+ N = fifo_level / 4;
+ dccg->funcs->set_fifo_errdet_ovr_en(dccg, true);
+ for (j = 0; j < 12 - N; j++)
+ dccg->funcs->otg_add_pixel(dccg,
+ pipe_ctx->stream_res.tg->inst);
+ dccg->funcs->set_fifo_errdet_ovr_en(dccg, false);
+ }
+ }
+
+ /* do requested DISPCLK updates*/
+ if (clk_mgr->smu_present)
+ dcn32_smu_set_hard_min_by_freq(clk_mgr, PPCLK_DISPCLK, khz_to_mhz_ceil(clk_mgr->base.clks.dispclk_khz));
+
+ if (dc->debug.override_dispclk_programming) {
+ REG_GET(DENTIST_DISPCLK_CNTL,
+ DENTIST_DISPCLK_WDIVIDER, &dentist_dispclk_wdivider_readback);
+
+ if (dentist_dispclk_wdivider_readback > new_dispclk_wdivider) {
+ REG_UPDATE(DENTIST_DISPCLK_CNTL,
+ DENTIST_DISPCLK_WDIVIDER, new_dispclk_wdivider);
+ REG_WAIT(DENTIST_DISPCLK_CNTL, DENTIST_DISPCLK_CHG_DONE, 1, 50, 2000);
+ }
+ }
+
+}
+
+static int dcn32_get_dispclk_from_dentist(struct clk_mgr *clk_mgr_base)
+{
+ struct clk_mgr_internal *clk_mgr = TO_CLK_MGR_INTERNAL(clk_mgr_base);
+ uint32_t dispclk_wdivider;
+ int disp_divider;
+
+ REG_GET(DENTIST_DISPCLK_CNTL, DENTIST_DISPCLK_WDIVIDER, &dispclk_wdivider);
+ disp_divider = dentist_get_divider_from_did(dispclk_wdivider);
+
+ /* Return DISPCLK freq in Khz */
+ if (disp_divider)
+ return (DENTIST_DIVIDER_RANGE_SCALE_FACTOR * clk_mgr->base.dentist_vco_freq_khz) / disp_divider;
+
+ return 0;
+}
+
+
static void dcn32_update_clocks(struct clk_mgr *clk_mgr_base,
struct dc_state *context,
bool safe_to_lower)
@@ -431,14 +557,11 @@ static void dcn32_update_clocks(struct clk_mgr *clk_mgr_base,
if (should_set_clock(safe_to_lower, new_clocks->dispclk_khz, clk_mgr_base->clks.dispclk_khz)) {
clk_mgr_base->clks.dispclk_khz = new_clocks->dispclk_khz;
- if (clk_mgr->smu_present)
- dcn32_smu_set_hard_min_by_freq(clk_mgr, PPCLK_DISPCLK, khz_to_mhz_ceil(clk_mgr_base->clks.dispclk_khz));
-
update_dispclk = true;
}
if (!new_clocks->dtbclk_en) {
- new_clocks->ref_dtbclk_khz = 0;
+ new_clocks->ref_dtbclk_khz = clk_mgr_base->bw_params->clk_table.entries[0].dtbclk_mhz * 1000;
}
/* clock limits are received with MHz precision, divide by 1000 to prevent setting clocks at every call */
@@ -447,26 +570,24 @@ static void dcn32_update_clocks(struct clk_mgr *clk_mgr_base,
/* DCCG requires KHz precision for DTBCLK */
clk_mgr_base->clks.ref_dtbclk_khz =
dcn32_smu_set_hard_min_by_freq(clk_mgr, PPCLK_DTBCLK, khz_to_mhz_ceil(new_clocks->ref_dtbclk_khz));
-
- dcn32_update_clocks_update_dtb_dto(clk_mgr, context, clk_mgr_base->clks.ref_dtbclk_khz);
}
if (dc->config.forced_clocks == false || (force_reset && safe_to_lower)) {
if (dpp_clock_lowered) {
/* if clock is being lowered, increase DTO before lowering refclk */
- dcn20_update_clocks_update_dpp_dto(clk_mgr, context, safe_to_lower);
- dcn20_update_clocks_update_dentist(clk_mgr, context);
+ dcn32_update_clocks_update_dpp_dto(clk_mgr, context, safe_to_lower);
+ dcn32_update_clocks_update_dentist(clk_mgr, context);
if (clk_mgr->smu_present)
dcn32_smu_set_hard_min_by_freq(clk_mgr, PPCLK_DPPCLK, khz_to_mhz_ceil(clk_mgr_base->clks.dppclk_khz));
} else {
/* if clock is being raised, increase refclk before lowering DTO */
if (update_dppclk || update_dispclk)
- dcn20_update_clocks_update_dentist(clk_mgr, context);
+ dcn32_update_clocks_update_dentist(clk_mgr, context);
/* There is a check inside dcn20_update_clocks_update_dpp_dto which ensures
* that we do not lower dto when it is not safe to lower. We do not need to
* compare the current and new dppclk before calling this function.
*/
- dcn20_update_clocks_update_dpp_dto(clk_mgr, context, safe_to_lower);
+ dcn32_update_clocks_update_dpp_dto(clk_mgr, context, safe_to_lower);
}
}
@@ -748,6 +869,7 @@ static struct clk_mgr_funcs dcn32_funcs = {
.are_clock_states_equal = dcn32_are_clock_states_equal,
.enable_pme_wa = dcn32_enable_pme_wa,
.is_smu_present = dcn32_is_smu_present,
+ .get_dispclk_from_dentist = dcn32_get_dispclk_from_dentist,
};
void dcn32_clk_mgr_construct(
@@ -756,6 +878,8 @@ void dcn32_clk_mgr_construct(
struct pp_smu_funcs *pp_smu,
struct dccg *dccg)
{
+ struct clk_log_info log_info = {0};
+
clk_mgr->base.ctx = ctx;
clk_mgr->base.funcs = &dcn32_funcs;
if (ASICREV_IS_GC_11_0_2(clk_mgr->base.ctx->asic_id.hw_internal_rev)) {
@@ -789,6 +913,7 @@ void dcn32_clk_mgr_construct(
clk_mgr->base.clks.ref_dtbclk_khz = 268750;
}
+
/* integer part is now VCO frequency in kHz */
clk_mgr->base.dentist_vco_freq_khz = dcn32_get_vco_frequency_from_reg(clk_mgr);
@@ -796,6 +921,8 @@ void dcn32_clk_mgr_construct(
if (clk_mgr->base.dentist_vco_freq_khz == 0)
clk_mgr->base.dentist_vco_freq_khz = 4300000; /* Updated as per HW docs */
+ dcn32_dump_clk_registers(&clk_mgr->base.boot_snapshot, &clk_mgr->base, &log_info);
+
if (ctx->dc->debug.disable_dtb_ref_clk_switch &&
clk_mgr->base.clks.ref_dtbclk_khz != clk_mgr->base.boot_snapshot.dtbclk) {
clk_mgr->base.clks.ref_dtbclk_khz = clk_mgr->base.boot_snapshot.dtbclk;
@@ -820,8 +947,7 @@ void dcn32_clk_mgr_construct(
void dcn32_clk_mgr_destroy(struct clk_mgr_internal *clk_mgr)
{
- if (clk_mgr->base.bw_params)
- kfree(clk_mgr->base.bw_params);
+ kfree(clk_mgr->base.bw_params);
if (clk_mgr->wm_range_table)
dm_helpers_free_gpu_mem(clk_mgr->base.ctx, DC_MEM_ALLOC_TYPE_GART,
diff --git a/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn32/dcn32_clk_mgr.h b/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn32/dcn32_clk_mgr.h
index 57e09c7c95f5..186daada7b03 100644
--- a/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn32/dcn32_clk_mgr.h
+++ b/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn32/dcn32_clk_mgr.h
@@ -32,6 +32,9 @@ void dcn32_clk_mgr_construct(struct dc_context *ctx,
struct pp_smu_funcs *pp_smu,
struct dccg *dccg);
+void dcn32_update_clocks_update_dpp_dto(struct clk_mgr_internal *clk_mgr,
+ struct dc_state *context, bool safe_to_lower);
+
void dcn32_clk_mgr_destroy(struct clk_mgr_internal *clk_mgr);
diff --git a/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn32/dcn32_smu13_driver_if.h b/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn32/dcn32_smu13_driver_if.h
index d30fbbdd1792..d3d5a8caccf8 100644
--- a/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn32/dcn32_smu13_driver_if.h
+++ b/drivers/gpu/drm/amd/display/dc/clk_mgr/dcn32/dcn32_smu13_driver_if.h
@@ -1,3 +1,4 @@
+// SPDX-License-Identifier: MIT
// This is a stripped-down version of the smu13_driver_if.h file for the relevant DAL interfaces.
#define SMU13_DRIVER_IF_VERSION 0x18
diff --git a/drivers/gpu/drm/amd/display/dc/core/dc.c b/drivers/gpu/drm/amd/display/dc/core/dc.c
index 997ab031f816..52564b93f7eb 100644
--- a/drivers/gpu/drm/amd/display/dc/core/dc.c
+++ b/drivers/gpu/drm/amd/display/dc/core/dc.c
@@ -33,6 +33,7 @@
#include "resource.h"
+#include "gpio_service_interface.h"
#include "clk_mgr.h"
#include "clock_source.h"
#include "dc_bios_types.h"
@@ -52,12 +53,10 @@
#include "link_encoder.h"
#include "link_enc_cfg.h"
-#include "dc_link.h"
-#include "dc_link_ddc.h"
+#include "link.h"
#include "dm_helpers.h"
#include "mem_input.h"
-#include "dc_link_dp.h"
#include "dc_dmub_srv.h"
#include "dsc.h"
@@ -68,14 +67,14 @@
#include "dmub/dmub_srv.h"
-#include "i2caux_interface.h"
-
#include "dce/dmub_psr.h"
#include "dce/dmub_hw_lock_mgr.h"
#include "dc_trace.h"
+#include "hw_sequencer_private.h"
+
#include "dce/dmub_outbox.h"
#define CTX \
@@ -135,9 +134,7 @@ static const char DC_BUILD_ID[] = "production-build";
* one or two (in the pipe-split case).
*/
-/*******************************************************************************
- * Private functions
- ******************************************************************************/
+/* Private functions */
static inline void elevate_update_type(enum surface_update_type *original, enum surface_update_type new)
{
@@ -151,7 +148,7 @@ static void destroy_links(struct dc *dc)
for (i = 0; i < dc->link_count; i++) {
if (NULL != dc->links[i])
- link_destroy(&dc->links[i]);
+ dc->link_srv->destroy_link(&dc->links[i]);
}
}
@@ -220,7 +217,7 @@ static bool create_links(
link_init_params.connector_index = i;
link_init_params.link_index = dc->link_count;
link_init_params.dc = dc;
- link = link_create(&link_init_params);
+ link = dc->link_srv->create_link(&link_init_params);
if (link) {
dc->links[dc->link_count] = link;
@@ -242,7 +239,7 @@ static bool create_links(
link_init_params.dc = dc;
link_init_params.is_dpia_link = true;
- link = link_create(&link_init_params);
+ link = dc->link_srv->create_link(&link_init_params);
if (link) {
dc->links[dc->link_count] = link;
link->dc = dc;
@@ -384,16 +381,18 @@ static void dc_perf_trace_destroy(struct dc_perf_trace **perf_trace)
}
/**
- * dc_stream_adjust_vmin_vmax:
+ * dc_stream_adjust_vmin_vmax - look up pipe context & update parts of DRR
+ * @dc: dc reference
+ * @stream: Initial dc stream state
+ * @adjust: Updated parameters for vertical_total_min and vertical_total_max
*
* Looks up the pipe context of dc_stream_state and updates the
* vertical_total_min and vertical_total_max of the DRR, Dynamic Refresh
* Rate, which is a power-saving feature that targets reducing panel
* refresh rate while the screen is static
*
- * @dc: dc reference
- * @stream: Initial dc stream state
- * @adjust: Updated parameters for vertical_total_min and vertical_total_max
+ * Return: %true if the pipe context is found and adjusted;
+ * %false if the pipe context is not found.
*/
bool dc_stream_adjust_vmin_vmax(struct dc *dc,
struct dc_stream_state *stream,
@@ -401,8 +400,13 @@ bool dc_stream_adjust_vmin_vmax(struct dc *dc,
{
int i;
- if (memcmp(adjust, &stream->adjust, sizeof(struct dc_crtc_timing_adjust)) == 0)
- return true;
+ /*
+ * Don't adjust DRR while there's bandwidth optimizations pending to
+ * avoid conflicting with firmware updates.
+ */
+ if (dc->ctx->dce_version > DCE_VERSION_MAX)
+ if (dc->optimized_required || dc->wm_optimized_required)
+ return false;
stream->adjust.v_total_max = adjust->v_total_max;
stream->adjust.v_total_mid = adjust->v_total_mid;
@@ -424,18 +428,17 @@ bool dc_stream_adjust_vmin_vmax(struct dc *dc,
}
/**
- *****************************************************************************
- * Function: dc_stream_get_last_vrr_vtotal
+ * dc_stream_get_last_used_drr_vtotal - Looks up the pipe context of
+ * dc_stream_state and gets the last VTOTAL used by DRR (Dynamic Refresh Rate)
*
- * @brief
- * Looks up the pipe context of dc_stream_state and gets the
- * last VTOTAL used by DRR (Dynamic Refresh Rate)
+ * @dc: [in] dc reference
+ * @stream: [in] Initial dc stream state
+ * @refresh_rate: [in] new refresh_rate
*
- * @param [in] dc: dc reference
- * @param [in] stream: Initial dc stream state
- * @param [in] adjust: Updated parameters for vertical_total_min and
- * vertical_total_max
- *****************************************************************************
+ * Return: %true if the pipe context is found and there is an associated
+ * timing_generator for the DC;
+ * %false if the pipe context is not found or there is no
+ * timing_generator for the DC.
*/
bool dc_stream_get_last_used_drr_vtotal(struct dc *dc,
struct dc_stream_state *stream,
@@ -491,86 +494,80 @@ bool dc_stream_get_crtc_position(struct dc *dc,
}
#if defined(CONFIG_DRM_AMD_SECURE_DISPLAY)
-bool dc_stream_forward_dmcu_crc_window(struct dc *dc, struct dc_stream_state *stream,
- struct crc_params *crc_window)
+static inline void
+dc_stream_forward_dmub_crc_window(struct dc_dmub_srv *dmub_srv,
+ struct rect *rect, struct otg_phy_mux *mux_mapping, bool is_stop)
{
- int i;
- struct dmcu *dmcu = dc->res_pool->dmcu;
- struct pipe_ctx *pipe;
- struct crc_region tmp_win, *crc_win;
- struct otg_phy_mux mapping_tmp, *mux_mapping;
-
- /*crc window can't be null*/
- if (!crc_window)
- return false;
-
- if ((dmcu != NULL && dmcu->funcs->is_dmcu_initialized(dmcu))) {
- crc_win = &tmp_win;
- mux_mapping = &mapping_tmp;
- /*set crc window*/
- tmp_win.x_start = crc_window->windowa_x_start;
- tmp_win.y_start = crc_window->windowa_y_start;
- tmp_win.x_end = crc_window->windowa_x_end;
- tmp_win.y_end = crc_window->windowa_y_end;
-
- for (i = 0; i < MAX_PIPES; i++) {
- pipe = &dc->current_state->res_ctx.pipe_ctx[i];
- if (pipe->stream == stream && !pipe->top_pipe && !pipe->prev_odm_pipe)
- break;
- }
-
- /* Stream not found */
- if (i == MAX_PIPES)
- return false;
-
+ union dmub_rb_cmd cmd = {0};
- /*set mux routing info*/
- mapping_tmp.phy_output_num = stream->link->link_enc_hw_inst;
- mapping_tmp.otg_output_num = pipe->stream_res.tg->inst;
+ cmd.secure_display.roi_info.phy_id = mux_mapping->phy_output_num;
+ cmd.secure_display.roi_info.otg_id = mux_mapping->otg_output_num;
- dmcu->funcs->forward_crc_window(dmcu, crc_win, mux_mapping);
+ if (is_stop) {
+ cmd.secure_display.header.type = DMUB_CMD__SECURE_DISPLAY;
+ cmd.secure_display.header.sub_type = DMUB_CMD__SECURE_DISPLAY_CRC_STOP_UPDATE;
} else {
- DC_LOG_DC("dmcu is not initialized");
- return false;
+ cmd.secure_display.header.type = DMUB_CMD__SECURE_DISPLAY;
+ cmd.secure_display.header.sub_type = DMUB_CMD__SECURE_DISPLAY_CRC_WIN_NOTIFY;
+ cmd.secure_display.roi_info.x_start = rect->x;
+ cmd.secure_display.roi_info.y_start = rect->y;
+ cmd.secure_display.roi_info.x_end = rect->x + rect->width;
+ cmd.secure_display.roi_info.y_end = rect->y + rect->height;
}
- return true;
+ dc_dmub_srv_cmd_queue(dmub_srv, &cmd);
+ dc_dmub_srv_cmd_execute(dmub_srv);
}
-bool dc_stream_stop_dmcu_crc_win_update(struct dc *dc, struct dc_stream_state *stream)
+static inline void
+dc_stream_forward_dmcu_crc_window(struct dmcu *dmcu,
+ struct rect *rect, struct otg_phy_mux *mux_mapping, bool is_stop)
{
- int i;
- struct dmcu *dmcu = dc->res_pool->dmcu;
- struct pipe_ctx *pipe;
- struct otg_phy_mux mapping_tmp, *mux_mapping;
+ if (is_stop)
+ dmcu->funcs->stop_crc_win_update(dmcu, mux_mapping);
+ else
+ dmcu->funcs->forward_crc_window(dmcu, rect, mux_mapping);
+}
- if ((dmcu != NULL && dmcu->funcs->is_dmcu_initialized(dmcu))) {
- mux_mapping = &mapping_tmp;
+bool
+dc_stream_forward_crc_window(struct dc_stream_state *stream,
+ struct rect *rect, bool is_stop)
+{
+ struct dmcu *dmcu;
+ struct dc_dmub_srv *dmub_srv;
+ struct otg_phy_mux mux_mapping;
+ struct pipe_ctx *pipe;
+ int i;
+ struct dc *dc = stream->ctx->dc;
- for (i = 0; i < MAX_PIPES; i++) {
- pipe = &dc->current_state->res_ctx.pipe_ctx[i];
- if (pipe->stream == stream && !pipe->top_pipe && !pipe->prev_odm_pipe)
- break;
- }
+ for (i = 0; i < MAX_PIPES; i++) {
+ pipe = &dc->current_state->res_ctx.pipe_ctx[i];
+ if (pipe->stream == stream && !pipe->top_pipe && !pipe->prev_odm_pipe)
+ break;
+ }
- /* Stream not found */
- if (i == MAX_PIPES)
- return false;
+ /* Stream not found */
+ if (i == MAX_PIPES)
+ return false;
+ mux_mapping.phy_output_num = stream->link->link_enc_hw_inst;
+ mux_mapping.otg_output_num = pipe->stream_res.tg->inst;
- /*set mux routing info*/
- mapping_tmp.phy_output_num = stream->link->link_enc_hw_inst;
- mapping_tmp.otg_output_num = pipe->stream_res.tg->inst;
+ dmcu = dc->res_pool->dmcu;
+ dmub_srv = dc->ctx->dmub_srv;
- dmcu->funcs->stop_crc_win_update(dmcu, mux_mapping);
- } else {
- DC_LOG_DC("dmcu is not initialized");
+ /* forward to dmub */
+ if (dmub_srv)
+ dc_stream_forward_dmub_crc_window(dmub_srv, rect, &mux_mapping, is_stop);
+ /* forward to dmcu */
+ else if (dmcu && dmcu->funcs->is_dmcu_initialized(dmcu))
+ dc_stream_forward_dmcu_crc_window(dmcu, rect, &mux_mapping, is_stop);
+ else
return false;
- }
return true;
}
-#endif
+#endif /* CONFIG_DRM_AMD_SECURE_DISPLAY */
/**
* dc_stream_configure_crc() - Configure CRC capture for the given stream.
@@ -582,7 +579,10 @@ bool dc_stream_stop_dmcu_crc_win_update(struct dc *dc, struct dc_stream_state *s
* once.
*
* By default, only CRC0 is configured, and the entire frame is used to
- * calculate the crc.
+ * calculate the CRC.
+ *
+ * Return: %false if the stream is not found or CRC capture is not supported;
+ * %true if the stream has been configured.
*/
bool dc_stream_configure_crc(struct dc *dc, struct dc_stream_state *stream,
struct crc_params *crc_window, bool enable, bool continuous)
@@ -651,7 +651,7 @@ bool dc_stream_configure_crc(struct dc *dc, struct dc_stream_state *stream,
* dc_stream_configure_crc needs to be called beforehand to enable CRCs.
*
* Return:
- * false if stream is not found, or if CRCs are not enabled.
+ * %false if stream is not found, or if CRCs are not enabled.
*/
bool dc_stream_get_crc(struct dc *dc, struct dc_stream_state *stream,
uint32_t *r_cr, uint32_t *g_y, uint32_t *b_cb)
@@ -823,6 +823,9 @@ static void dc_destruct(struct dc *dc)
dc_destroy_resource_pool(dc);
+ if (dc->link_srv)
+ link_destroy_link_service(&dc->link_srv);
+
if (dc->ctx->gpio_service)
dal_gpio_service_destroy(&dc->ctx->gpio_service);
@@ -878,12 +881,17 @@ static bool dc_construct_ctx(struct dc *dc,
dc_ctx->perf_trace = dc_perf_trace_create();
if (!dc_ctx->perf_trace) {
+ kfree(dc_ctx);
ASSERT_CRITICAL(false);
return false;
}
dc->ctx = dc_ctx;
+ dc->link_srv = link_create_link_service();
+ if (!dc->link_srv)
+ return false;
+
return true;
}
@@ -992,7 +1000,7 @@ static bool dc_construct(struct dc *dc,
dc->clk_mgr = dc_clk_mgr_create(dc->ctx, dc->res_pool->pp_smu, dc->res_pool->dccg);
if (!dc->clk_mgr)
goto fail;
-#ifdef CONFIG_DRM_AMD_DC_DCN
+#ifdef CONFIG_DRM_AMD_DC_FP
dc->clk_mgr->force_smu_not_present = init_params->force_smu_not_present;
if (dc->res_pool->funcs->update_bw_bounding_box) {
@@ -1065,11 +1073,60 @@ static void apply_ctx_interdependent_lock(struct dc *dc, struct dc_state *contex
}
}
+static void phantom_pipe_blank(
+ struct dc *dc,
+ struct timing_generator *tg,
+ int width,
+ int height)
+{
+ struct dce_hwseq *hws = dc->hwseq;
+ enum dc_color_space color_space;
+ struct tg_color black_color = {0};
+ struct output_pixel_processor *opp = NULL;
+ uint32_t num_opps, opp_id_src0, opp_id_src1;
+ uint32_t otg_active_width, otg_active_height;
+ uint32_t i;
+
+ /* program opp dpg blank color */
+ color_space = COLOR_SPACE_SRGB;
+ color_space_to_black_color(dc, color_space, &black_color);
+
+ otg_active_width = width;
+ otg_active_height = height;
+
+ /* get the OPTC source */
+ tg->funcs->get_optc_source(tg, &num_opps, &opp_id_src0, &opp_id_src1);
+ ASSERT(opp_id_src0 < dc->res_pool->res_cap->num_opp);
+
+ for (i = 0; i < dc->res_pool->res_cap->num_opp; i++) {
+ if (dc->res_pool->opps[i] != NULL && dc->res_pool->opps[i]->inst == opp_id_src0) {
+ opp = dc->res_pool->opps[i];
+ break;
+ }
+ }
+
+ if (opp && opp->funcs->opp_set_disp_pattern_generator)
+ opp->funcs->opp_set_disp_pattern_generator(
+ opp,
+ CONTROLLER_DP_TEST_PATTERN_SOLID_COLOR,
+ CONTROLLER_DP_COLOR_SPACE_UDEFINED,
+ COLOR_DEPTH_UNDEFINED,
+ &black_color,
+ otg_active_width,
+ otg_active_height,
+ 0);
+
+ if (tg->funcs->is_tg_enabled(tg))
+ hws->funcs.wait_for_blank_complete(opp);
+}
+
static void disable_dangling_plane(struct dc *dc, struct dc_state *context)
{
int i, j;
struct dc_state *dangling_context = dc_create_state(dc);
struct dc_state *current_ctx;
+ struct pipe_ctx *pipe;
+ struct timing_generator *tg;
if (dangling_context == NULL)
return;
@@ -1112,6 +1169,24 @@ static void disable_dangling_plane(struct dc *dc, struct dc_state *context)
}
if (should_disable && old_stream) {
+ pipe = &dc->current_state->res_ctx.pipe_ctx[i];
+ tg = pipe->stream_res.tg;
+ /* When disabling plane for a phantom pipe, we must turn on the
+ * phantom OTG so the disable programming gets the double buffer
+ * update. Otherwise the pipe will be left in a partially disabled
+ * state that can result in underflow or hang when enabling it
+ * again for different use.
+ */
+ if (old_stream->mall_stream_config.type == SUBVP_PHANTOM) {
+ if (tg->funcs->enable_crtc) {
+ int main_pipe_width, main_pipe_height;
+
+ main_pipe_width = old_stream->mall_stream_config.paired_stream->dst.width;
+ main_pipe_height = old_stream->mall_stream_config.paired_stream->dst.height;
+ phantom_pipe_blank(dc, tg, main_pipe_width, main_pipe_height);
+ tg->funcs->enable_crtc(tg);
+ }
+ }
dc_rem_all_planes_for_stream(dc, old_stream, dangling_context);
disable_all_writeback_pipes_for_stream(dc, old_stream, dangling_context);
@@ -1127,6 +1202,15 @@ static void disable_dangling_plane(struct dc *dc, struct dc_state *context)
dc->hwss.interdependent_update_lock(dc, dc->current_state, false);
dc->hwss.post_unlock_program_front_end(dc, dangling_context);
}
+ /* We need to put the phantom OTG back into it's default (disabled) state or we
+ * can get corruption when transition from one SubVP config to a different one.
+ * The OTG is set to disable on falling edge of VUPDATE so the plane disable
+ * will still get it's double buffer update.
+ */
+ if (old_stream->mall_stream_config.type == SUBVP_PHANTOM) {
+ if (tg->funcs->disable_phantom_crtc)
+ tg->funcs->disable_phantom_crtc(tg);
+ }
}
}
@@ -1184,7 +1268,7 @@ static void disable_vbios_mode_if_required(
pipe->stream_res.pix_clk_params.requested_pix_clk_100hz;
if (pix_clk_100hz != requested_pix_clk_100hz) {
- core_link_disable_stream(pipe);
+ dc->link_srv->set_dpms_off(pipe);
pipe->stream->dpms_off = false;
}
}
@@ -1219,9 +1303,7 @@ static void wait_for_no_pipes_pending(struct dc *dc, struct dc_state *context)
PERF_TRACE();
}
-/*******************************************************************************
- * Public functions
- ******************************************************************************/
+/* Public functions */
struct dc *dc_create(const struct dc_init_data *init_params)
{
@@ -1285,7 +1367,7 @@ static void detect_edp_presence(struct dc *dc)
int i;
int edp_num;
- get_edp_links(dc, edp_links, &edp_num);
+ dc_get_edp_links(dc, edp_links, &edp_num);
if (!edp_num)
return;
@@ -1294,7 +1376,7 @@ static void detect_edp_presence(struct dc *dc)
if (dc->config.edp_not_connected) {
edp_link->edp_sink_present = false;
} else {
- dc_link_detect_sink(edp_link, &type);
+ dc_link_detect_connection_type(edp_link, &type);
edp_link->edp_sink_present = (type != dc_connection_none);
}
}
@@ -1311,16 +1393,12 @@ void dc_hardware_init(struct dc *dc)
void dc_init_callbacks(struct dc *dc,
const struct dc_callback_init *init_params)
{
-#ifdef CONFIG_DRM_AMD_DC_HDCP
dc->ctx->cp_psp = init_params->cp_psp;
-#endif
}
void dc_deinit_callbacks(struct dc *dc)
{
-#ifdef CONFIG_DRM_AMD_DC_HDCP
memset(&dc->ctx->cp_psp, 0, sizeof(dc->ctx->cp_psp));
-#endif
}
void dc_destroy(struct dc **dc)
@@ -1488,17 +1566,19 @@ static void program_timing_sync(
}
}
-static bool context_changed(
- struct dc *dc,
- struct dc_state *context)
+static bool streams_changed(struct dc *dc,
+ struct dc_stream_state *streams[],
+ uint8_t stream_count)
{
uint8_t i;
- if (context->stream_count != dc->current_state->stream_count)
+ if (stream_count != dc->current_state->stream_count)
return true;
for (i = 0; i < dc->current_state->stream_count; i++) {
- if (dc->current_state->streams[i] != context->streams[i])
+ if (dc->current_state->streams[i] != streams[i])
+ return true;
+ if (!streams[i]->link->link_state_valid)
return true;
}
@@ -1549,6 +1629,9 @@ bool dc_validate_boot_timing(const struct dc *dc,
if (tg_inst >= dc->res_pool->timing_generator_count)
return false;
+ if (tg_inst != link->link_enc->preferred_engine)
+ return false;
+
tg = dc->res_pool->timing_generators[tg_inst];
if (!tg->funcs->get_hw_timing)
@@ -1640,7 +1723,7 @@ bool dc_validate_boot_timing(const struct dc *dc,
return false;
}
- if (is_edp_ilr_optimization_required(link, crtc_timing)) {
+ if (dc->link_srv->edp_is_ilr_optimization_required(link, crtc_timing)) {
DC_LOG_EVENT_LINK_TRAINING("Seamless boot disabled to optimize eDP link rate\n");
return false;
}
@@ -1722,9 +1805,16 @@ void dc_z10_save_init(struct dc *dc)
dc->hwss.z10_save_init(dc);
}
-/*
- * Applies given context to HW and copy it into current context.
+/**
+ * dc_commit_state_no_check - Apply context to the hardware
+ *
+ * @dc: DC object with the current status to be updated
+ * @context: New state that will become the current status at the end of this function
+ *
+ * Applies given context to the hardware and copy it into current context.
* It's up to the user to release the src context afterwards.
+ *
+ * Return: an enum dc_status result code for the operation
*/
static enum dc_status dc_commit_state_no_check(struct dc *dc, struct dc_state *context)
{
@@ -1760,6 +1850,12 @@ static enum dc_status dc_commit_state_no_check(struct dc *dc, struct dc_state *c
context->stream_count == 0)
dc->hwss.prepare_bandwidth(dc, context);
+ /* When SubVP is active, all HW programming must be done while
+ * SubVP lock is acquired
+ */
+ if (dc->hwss.subvp_pipe_control_lock)
+ dc->hwss.subvp_pipe_control_lock(dc, context, true, true, NULL, subvp_prev_use);
+
if (dc->debug.enable_double_buffered_dsc_pg_support)
dc->hwss.update_dsc_pg(dc, context, false);
@@ -1787,9 +1883,6 @@ static enum dc_status dc_commit_state_no_check(struct dc *dc, struct dc_state *c
dc->hwss.wait_for_mpcc_disconnect(dc, dc->res_pool, pipe);
}
- if (dc->hwss.subvp_pipe_control_lock)
- dc->hwss.subvp_pipe_control_lock(dc, context, true, true, NULL, subvp_prev_use);
-
result = dc->hwss.apply_ctx_to_hw(dc, context);
if (result != DC_OK) {
@@ -1888,39 +1981,89 @@ static enum dc_status dc_commit_state_no_check(struct dc *dc, struct dc_state *c
return result;
}
-bool dc_commit_state(struct dc *dc, struct dc_state *context)
+/**
+ * dc_commit_streams - Commit current stream state
+ *
+ * @dc: DC object with the commit state to be configured in the hardware
+ * @streams: Array with a list of stream state
+ * @stream_count: Total of streams
+ *
+ * Function responsible for commit streams change to the hardware.
+ *
+ * Return:
+ * Return DC_OK if everything work as expected, otherwise, return a dc_status
+ * code.
+ */
+enum dc_status dc_commit_streams(struct dc *dc,
+ struct dc_stream_state *streams[],
+ uint8_t stream_count)
{
- enum dc_status result = DC_ERROR_UNEXPECTED;
- int i;
+ int i, j;
+ struct dc_state *context;
+ enum dc_status res = DC_OK;
+ struct dc_validation_set set[MAX_STREAMS] = {0};
- if (!context_changed(dc, context))
- return DC_OK;
+ if (dc->ctx->dce_environment == DCE_ENV_VIRTUAL_HW)
+ return res;
- DC_LOG_DC("%s: %d streams\n",
- __func__, context->stream_count);
+ if (!streams_changed(dc, streams, stream_count))
+ return res;
- for (i = 0; i < context->stream_count; i++) {
- struct dc_stream_state *stream = context->streams[i];
+ DC_LOG_DC("%s: %d streams\n", __func__, stream_count);
+
+ for (i = 0; i < stream_count; i++) {
+ struct dc_stream_state *stream = streams[i];
+ struct dc_stream_status *status = dc_stream_get_status(stream);
dc_stream_log(dc, stream);
+
+ set[i].stream = stream;
+
+ if (status) {
+ set[i].plane_count = status->plane_count;
+ for (j = 0; j < status->plane_count; j++)
+ set[i].plane_states[j] = status->plane_states[j];
+ }
}
- /*
- * Previous validation was perfomred with fast_validation = true and
- * the full DML state required for hardware programming was skipped.
- *
- * Re-validate here to calculate these parameters / watermarks.
- */
- result = dc_validate_global_state(dc, context, false);
- if (result != DC_OK) {
- DC_LOG_ERROR("DC commit global validation failure: %s (%d)",
- dc_status_to_str(result), result);
- return result;
+ context = dc_create_state(dc);
+ if (!context)
+ goto context_alloc_fail;
+
+ dc_resource_state_copy_construct_current(dc, context);
+
+ res = dc_validate_with_context(dc, set, stream_count, context, false);
+ if (res != DC_OK) {
+ BREAK_TO_DEBUGGER();
+ goto fail;
}
- result = dc_commit_state_no_check(dc, context);
+ res = dc_commit_state_no_check(dc, context);
+
+ for (i = 0; i < stream_count; i++) {
+ for (j = 0; j < context->stream_count; j++) {
+ if (streams[i]->stream_id == context->streams[j]->stream_id)
+ streams[i]->out.otg_offset = context->stream_status[j].primary_otg_inst;
+
+ if (dc_is_embedded_signal(streams[i]->signal)) {
+ struct dc_stream_status *status = dc_stream_get_status_from_state(context, streams[i]);
+
+ if (dc->hwss.is_abm_supported)
+ status->is_abm_supported = dc->hwss.is_abm_supported(dc, context, streams[i]);
+ else
+ status->is_abm_supported = true;
+ }
+ }
+ }
+
+fail:
+ dc_release_state(context);
- return (result == DC_OK);
+context_alloc_fail:
+
+ DC_LOG_DC("%s Finished.\n", __func__);
+
+ return res;
}
bool dc_acquire_release_mpc_3dlut(
@@ -2009,27 +2152,33 @@ void dc_post_update_surfaces_to_stream(struct dc *dc)
post_surface_trace(dc);
- if (dc->ctx->dce_version >= DCE_VERSION_MAX)
- TRACE_DCN_CLOCK_STATE(&context->bw_ctx.bw.dcn.clk);
- else
+ /*
+ * Only relevant for DCN behavior where we can guarantee the optimization
+ * is safe to apply - retain the legacy behavior for DCE.
+ */
+
+ if (dc->ctx->dce_version < DCE_VERSION_MAX)
TRACE_DCE_CLOCK_STATE(&context->bw_ctx.bw.dce);
+ else {
+ TRACE_DCN_CLOCK_STATE(&context->bw_ctx.bw.dcn.clk);
- if (is_flip_pending_in_pipes(dc, context))
- return;
+ if (is_flip_pending_in_pipes(dc, context))
+ return;
- for (i = 0; i < dc->res_pool->pipe_count; i++)
- if (context->res_ctx.pipe_ctx[i].stream == NULL ||
- context->res_ctx.pipe_ctx[i].plane_state == NULL) {
- context->res_ctx.pipe_ctx[i].pipe_idx = i;
- dc->hwss.disable_plane(dc, &context->res_ctx.pipe_ctx[i]);
- }
+ for (i = 0; i < dc->res_pool->pipe_count; i++)
+ if (context->res_ctx.pipe_ctx[i].stream == NULL ||
+ context->res_ctx.pipe_ctx[i].plane_state == NULL) {
+ context->res_ctx.pipe_ctx[i].pipe_idx = i;
+ dc->hwss.disable_plane(dc, &context->res_ctx.pipe_ctx[i]);
+ }
- process_deferred_updates(dc);
+ process_deferred_updates(dc);
- dc->hwss.optimize_bandwidth(dc, context);
+ dc->hwss.optimize_bandwidth(dc, context);
- if (dc->debug.enable_double_buffered_dsc_pg_support)
- dc->hwss.update_dsc_pg(dc, context, true);
+ if (dc->debug.enable_double_buffered_dsc_pg_support)
+ dc->hwss.update_dsc_pg(dc, context, true);
+ }
dc->optimized_required = false;
dc->wm_optimized_required = false;
@@ -2834,6 +2983,9 @@ static void copy_stream_update_to_stream(struct dc *dc,
if (update->vsp_infopacket)
stream->vsp_infopacket = *update->vsp_infopacket;
+ if (update->adaptive_sync_infopacket)
+ stream->adaptive_sync_infopacket = *update->adaptive_sync_infopacket;
+
if (update->dither_option)
stream->dither_option = *update->dither_option;
@@ -2950,7 +3102,7 @@ static bool update_planes_and_stream_state(struct dc *dc,
* Ensures that we have enough pipes for newly added MPO planes
*/
if (dc->res_pool->funcs->remove_phantom_pipes)
- dc->res_pool->funcs->remove_phantom_pipes(dc, context);
+ dc->res_pool->funcs->remove_phantom_pipes(dc, context, false);
/*remove old surfaces from context */
if (!dc_rem_all_planes_for_stream(dc, stream, context)) {
@@ -2987,6 +3139,19 @@ static bool update_planes_and_stream_state(struct dc *dc,
if (update_type == UPDATE_TYPE_FULL) {
if (!dc->res_pool->funcs->validate_bandwidth(dc, context, false)) {
+ /* For phantom pipes we remove and create a new set of phantom pipes
+ * for each full update (because we don't know if we'll need phantom
+ * pipes until after the first round of validation). However, if validation
+ * fails we need to keep the existing phantom pipes (because we don't update
+ * the dc->current_state).
+ *
+ * The phantom stream/plane refcount is decremented for validation because
+ * we assume it'll be removed (the free comes when the dc_state is freed),
+ * but if validation fails we have to increment back the refcount so it's
+ * consistent.
+ */
+ if (dc->res_pool->funcs->retain_phantom_pipes)
+ dc->res_pool->funcs->retain_phantom_pipes(dc, dc->current_state);
BREAK_TO_DEBUGGER();
goto fail;
}
@@ -3026,12 +3191,15 @@ static void commit_planes_do_stream_update(struct dc *dc,
stream_update->vsc_infopacket ||
stream_update->vsp_infopacket ||
stream_update->hfvsif_infopacket ||
+ stream_update->adaptive_sync_infopacket ||
stream_update->vtem_infopacket) {
resource_build_info_frame(pipe_ctx);
dc->hwss.update_info_frame(pipe_ctx);
if (dc_is_dp_signal(pipe_ctx->stream->signal))
- dp_source_sequence_trace(pipe_ctx->stream->link, DPCD_SOURCE_SEQ_AFTER_UPDATE_INFO_FRAME);
+ dc->link_srv->dp_trace_source_sequence(
+ pipe_ctx->stream->link,
+ DPCD_SOURCE_SEQ_AFTER_UPDATE_INFO_FRAME);
}
if (stream_update->hdr_static_metadata &&
@@ -3067,14 +3235,16 @@ static void commit_planes_do_stream_update(struct dc *dc,
continue;
if (stream_update->dsc_config)
- dp_update_dsc_config(pipe_ctx);
+ dc->link_srv->update_dsc_config(pipe_ctx);
if (stream_update->mst_bw_update) {
if (stream_update->mst_bw_update->is_increase)
- dc_link_increase_mst_payload(pipe_ctx, stream_update->mst_bw_update->mst_stream_bw);
- else
- dc_link_reduce_mst_payload(pipe_ctx, stream_update->mst_bw_update->mst_stream_bw);
- }
+ dc->link_srv->increase_mst_payload(pipe_ctx,
+ stream_update->mst_bw_update->mst_stream_bw);
+ else
+ dc->link_srv->reduce_mst_payload(pipe_ctx,
+ stream_update->mst_bw_update->mst_stream_bw);
+ }
if (stream_update->pending_test_pattern) {
dc_link_dp_set_test_pattern(stream->link,
@@ -3087,7 +3257,7 @@ static void commit_planes_do_stream_update(struct dc *dc,
if (stream_update->dpms_off) {
if (*stream_update->dpms_off) {
- core_link_disable_stream(pipe_ctx);
+ dc->link_srv->set_dpms_off(pipe_ctx);
/* for dpms, keep acquired resources*/
if (pipe_ctx->stream_res.audio && !dc->debug.az_endpoint_mute_only)
pipe_ctx->stream_res.audio->funcs->az_disable(pipe_ctx->stream_res.audio);
@@ -3097,7 +3267,7 @@ static void commit_planes_do_stream_update(struct dc *dc,
} else {
if (get_seamless_boot_stream_count(context) == 0)
dc->hwss.prepare_bandwidth(dc, dc->current_state);
- core_link_enable_stream(dc->current_state, pipe_ctx);
+ dc->link_srv->set_dpms_on(dc->current_state, pipe_ctx);
}
}
@@ -3198,6 +3368,7 @@ static void commit_planes_for_stream(struct dc *dc,
struct pipe_ctx *top_pipe_to_program = NULL;
bool should_lock_all_pipes = (update_type != UPDATE_TYPE_FAST);
bool subvp_prev_use = false;
+ bool subvp_curr_use = false;
// Once we apply the new subvp context to hardware it won't be in the
// dc->current_state anymore, so we have to cache it before we apply
@@ -3207,6 +3378,21 @@ static void commit_planes_for_stream(struct dc *dc,
dc_z10_restore(dc);
+ if (update_type == UPDATE_TYPE_FULL) {
+ /* wait for all double-buffer activity to clear on all pipes */
+ int pipe_idx;
+
+ for (pipe_idx = 0; pipe_idx < dc->res_pool->pipe_count; pipe_idx++) {
+ struct pipe_ctx *pipe_ctx = &context->res_ctx.pipe_ctx[pipe_idx];
+
+ if (!pipe_ctx->stream)
+ continue;
+
+ if (pipe_ctx->stream_res.tg->funcs->wait_drr_doublebuffer_pending_clear)
+ pipe_ctx->stream_res.tg->funcs->wait_drr_doublebuffer_pending_clear(pipe_ctx->stream_res.tg);
+ }
+ }
+
if (get_seamless_boot_stream_count(context) > 0 && surface_count > 0) {
/* Optimize seamless boot flag keeps clocks and watermarks high until
* first flip. After first flip, optimization is required to lower
@@ -3254,6 +3440,15 @@ static void commit_planes_for_stream(struct dc *dc,
break;
}
+ for (i = 0; i < dc->res_pool->pipe_count; i++) {
+ struct pipe_ctx *pipe = &context->res_ctx.pipe_ctx[i];
+
+ if (pipe->stream && pipe->stream->mall_stream_config.type == SUBVP_PHANTOM) {
+ subvp_curr_use = true;
+ break;
+ }
+ }
+
if (stream->test_pattern.type != DP_TEST_PATTERN_VIDEO_MODE) {
struct pipe_ctx *mpcc_pipe;
struct pipe_ctx *odm_pipe;
@@ -3297,40 +3492,8 @@ static void commit_planes_for_stream(struct dc *dc,
dc->hwss.pipe_control_lock(dc, top_pipe_to_program, true);
}
- if (update_type != UPDATE_TYPE_FAST) {
- for (i = 0; i < dc->res_pool->pipe_count; i++) {
- struct pipe_ctx *new_pipe = &context->res_ctx.pipe_ctx[i];
-
- if ((new_pipe->stream && new_pipe->stream->mall_stream_config.type == SUBVP_PHANTOM) ||
- subvp_prev_use) {
- // If old context or new context has phantom pipes, apply
- // the phantom timings now. We can't change the phantom
- // pipe configuration safely without driver acquiring
- // the DMCUB lock first.
- dc->hwss.apply_ctx_to_hw(dc, context);
- break;
- }
- }
- }
-
dc_dmub_update_dirty_rect(dc, surface_count, stream, srf_updates, context);
- if (update_type != UPDATE_TYPE_FAST) {
- for (i = 0; i < dc->res_pool->pipe_count; i++) {
- struct pipe_ctx *new_pipe = &context->res_ctx.pipe_ctx[i];
-
- if ((new_pipe->stream && new_pipe->stream->mall_stream_config.type == SUBVP_PHANTOM) ||
- subvp_prev_use) {
- // If old context or new context has phantom pipes, apply
- // the phantom timings now. We can't change the phantom
- // pipe configuration safely without driver acquiring
- // the DMCUB lock first.
- dc->hwss.apply_ctx_to_hw(dc, context);
- break;
- }
- }
- }
-
// Stream updates
if (stream_update)
commit_planes_do_stream_update(dc, stream, stream_update, update_type, context);
@@ -3359,17 +3522,30 @@ static void commit_planes_for_stream(struct dc *dc,
/* Since phantom pipe programming is moved to post_unlock_program_front_end,
* move the SubVP lock to after the phantom pipes have been setup
*/
- if (should_lock_all_pipes && dc->hwss.interdependent_update_lock) {
- if (dc->hwss.subvp_pipe_control_lock)
- dc->hwss.subvp_pipe_control_lock(dc, context, false, should_lock_all_pipes, NULL, subvp_prev_use);
- } else {
- if (dc->hwss.subvp_pipe_control_lock)
- dc->hwss.subvp_pipe_control_lock(dc, context, false, should_lock_all_pipes, NULL, subvp_prev_use);
- }
-
+ if (dc->hwss.subvp_pipe_control_lock)
+ dc->hwss.subvp_pipe_control_lock(dc, context, false, should_lock_all_pipes,
+ NULL, subvp_prev_use);
return;
}
+ if (update_type != UPDATE_TYPE_FAST) {
+ for (j = 0; j < dc->res_pool->pipe_count; j++) {
+ struct pipe_ctx *pipe_ctx = &context->res_ctx.pipe_ctx[j];
+
+ if (dc->debug.visual_confirm == VISUAL_CONFIRM_SUBVP &&
+ pipe_ctx->stream && pipe_ctx->plane_state) {
+ /* Only update visual confirm for SUBVP here.
+ * The bar appears on all pipes, so we need to update the bar on all displays,
+ * so the information doesn't get stale.
+ */
+ struct mpcc_blnd_cfg blnd_cfg = { 0 };
+
+ dc->hwss.update_visual_confirm_color(dc, pipe_ctx, &blnd_cfg.black_color,
+ pipe_ctx->plane_res.hubp->inst);
+ }
+ }
+ }
+
if (!IS_DIAG_DC(dc->ctx->dce_environment)) {
for (i = 0; i < surface_count; i++) {
struct dc_plane_state *plane_state = srf_updates[i].surface;
@@ -3487,7 +3663,6 @@ static void commit_planes_for_stream(struct dc *dc,
dc->hwss.update_plane_addr(dc, pipe_ctx);
}
}
-
}
if (should_lock_all_pipes && dc->hwss.interdependent_update_lock) {
@@ -3524,16 +3699,30 @@ static void commit_planes_for_stream(struct dc *dc,
top_pipe_to_program->stream_res.tg);
}
+ if (subvp_curr_use) {
+ /* If enabling subvp or transitioning from subvp->subvp, enable the
+ * phantom streams before we program front end for the phantom pipes.
+ */
+ if (update_type != UPDATE_TYPE_FAST) {
+ if (dc->hwss.enable_phantom_streams)
+ dc->hwss.enable_phantom_streams(dc, context);
+ }
+ }
+
if (update_type != UPDATE_TYPE_FAST)
dc->hwss.post_unlock_program_front_end(dc, context);
- if (update_type != UPDATE_TYPE_FAST)
- if (dc->hwss.commit_subvp_config)
- dc->hwss.commit_subvp_config(dc, context);
+
+ if (subvp_prev_use && !subvp_curr_use) {
+ /* If disabling subvp, disable phantom streams after front end
+ * programming has completed (we turn on phantom OTG in order
+ * to complete the plane disable for phantom pipes).
+ */
+ dc->hwss.apply_ctx_to_hw(dc, context);
+ }
if (update_type != UPDATE_TYPE_FAST)
if (dc->hwss.commit_subvp_config)
dc->hwss.commit_subvp_config(dc, context);
-
/* Since phantom pipe programming is moved to post_unlock_program_front_end,
* move the SubVP lock to after the phantom pipes have been setup
*/
@@ -3563,10 +3752,24 @@ static void commit_planes_for_stream(struct dc *dc,
}
}
-/* Determines if the incoming context requires a applying transition state with unnecessary
- * pipe splitting and ODM disabled, due to hardware limitations. In a case where
- * the OPP associated with an MPCC might change due to plane additions, this function
+/**
+ * could_mpcc_tree_change_for_active_pipes - Check if an OPP associated with MPCC might change
+ *
+ * @dc: Used to get the current state status
+ * @stream: Target stream, which we want to remove the attached planes
+ * @surface_count: Number of surface update
+ * @is_plane_addition: [in] Fill out with true if it is a plane addition case
+ *
+ * DCN32x and newer support a feature named Dynamic ODM which can conflict with
+ * the MPO if used simultaneously in some specific configurations (e.g.,
+ * 4k@144). This function checks if the incoming context requires applying a
+ * transition state with unnecessary pipe splitting and ODM disabled to
+ * circumvent our hardware limitations to prevent this edge case. If the OPP
+ * associated with an MPCC might change due to plane additions, this function
* returns true.
+ *
+ * Return:
+ * Return true if OPP and MPCC might change, otherwise, return false.
*/
static bool could_mpcc_tree_change_for_active_pipes(struct dc *dc,
struct dc_stream_state *stream,
@@ -3576,6 +3779,7 @@ static bool could_mpcc_tree_change_for_active_pipes(struct dc *dc,
struct dc_stream_status *cur_stream_status = stream_get_status(dc->current_state, stream);
bool force_minimal_pipe_splitting = false;
+ bool subvp_active = false;
uint32_t i;
*is_plane_addition = false;
@@ -3608,39 +3812,55 @@ static bool could_mpcc_tree_change_for_active_pipes(struct dc *dc,
}
}
- /* For SubVP pipe split case when adding MPO video
- * we need to add a minimal transition. In this case
- * there will be 2 streams (1 main stream, 1 phantom
- * stream).
- */
- if (cur_stream_status &&
- dc->current_state->stream_count == 2 &&
- stream->mall_stream_config.type == SUBVP_MAIN) {
- bool is_pipe_split = false;
+ for (i = 0; i < dc->res_pool->pipe_count; i++) {
+ struct pipe_ctx *pipe = &dc->current_state->res_ctx.pipe_ctx[i];
- for (i = 0; i < dc->res_pool->pipe_count; i++) {
- if (dc->current_state->res_ctx.pipe_ctx[i].stream == stream &&
- (dc->current_state->res_ctx.pipe_ctx[i].bottom_pipe ||
- dc->current_state->res_ctx.pipe_ctx[i].next_odm_pipe)) {
- is_pipe_split = true;
- break;
- }
+ if (pipe->stream && pipe->stream->mall_stream_config.type != SUBVP_NONE) {
+ subvp_active = true;
+ break;
}
+ }
+ /* For SubVP when adding or removing planes we need to add a minimal transition
+ * (even when disabling all planes). Whenever disabling a phantom pipe, we
+ * must use the minimal transition path to disable the pipe correctly.
+ *
+ * We want to use the minimal transition whenever subvp is active, not only if
+ * a plane is being added / removed from a subvp stream (MPO plane can be added
+ * to a DRR pipe of SubVP + DRR config, in which case we still want to run through
+ * a min transition to disable subvp.
+ */
+ if (cur_stream_status && subvp_active) {
/* determine if minimal transition is required due to SubVP*/
- if (surface_count > 0 && is_pipe_split) {
- if (cur_stream_status->plane_count > surface_count) {
- force_minimal_pipe_splitting = true;
- } else if (cur_stream_status->plane_count < surface_count) {
- force_minimal_pipe_splitting = true;
- *is_plane_addition = true;
- }
+ if (cur_stream_status->plane_count > surface_count) {
+ force_minimal_pipe_splitting = true;
+ } else if (cur_stream_status->plane_count < surface_count) {
+ force_minimal_pipe_splitting = true;
+ *is_plane_addition = true;
}
}
return force_minimal_pipe_splitting;
}
+/**
+ * commit_minimal_transition_state - Create a transition pipe split state
+ *
+ * @dc: Used to get the current state status
+ * @transition_base_context: New transition state
+ *
+ * In some specific configurations, such as pipe split on multi-display with
+ * MPO and/or Dynamic ODM, removing a plane may cause unsupported pipe
+ * programming when moving to new planes. To mitigate those types of problems,
+ * this function adds a transition state that minimizes pipe usage before
+ * programming the new configuration. When adding a new plane, the current
+ * state requires the least pipes, so it is applied without splitting. When
+ * removing a plane, the new state requires the least pipes, so it is applied
+ * without splitting.
+ *
+ * Return:
+ * Return false if something is wrong in the transition state.
+ */
static bool commit_minimal_transition_state(struct dc *dc,
struct dc_state *transition_base_context)
{
@@ -3650,9 +3870,48 @@ static bool commit_minimal_transition_state(struct dc *dc,
bool temp_subvp_policy;
enum dc_status ret = DC_ERROR_UNEXPECTED;
unsigned int i, j;
+ unsigned int pipe_in_use = 0;
+ bool subvp_in_use = false;
if (!transition_context)
return false;
+ /* Setup:
+ * Store the current ODM and MPC config in some temp variables to be
+ * restored after we commit the transition state.
+ */
+
+ /* check current pipes in use*/
+ for (i = 0; i < dc->res_pool->pipe_count; i++) {
+ struct pipe_ctx *pipe = &transition_base_context->res_ctx.pipe_ctx[i];
+
+ if (pipe->plane_state)
+ pipe_in_use++;
+ }
+
+ /* If SubVP is enabled and we are adding or removing planes from any main subvp
+ * pipe, we must use the minimal transition.
+ */
+ for (i = 0; i < dc->res_pool->pipe_count; i++) {
+ struct pipe_ctx *pipe = &dc->current_state->res_ctx.pipe_ctx[i];
+
+ if (pipe->stream && pipe->stream->mall_stream_config.type == SUBVP_PHANTOM) {
+ subvp_in_use = true;
+ break;
+ }
+ }
+
+ /* When the OS add a new surface if we have been used all of pipes with odm combine
+ * and mpc split feature, it need use commit_minimal_transition_state to transition safely.
+ * After OS exit MPO, it will back to use odm and mpc split with all of pipes, we need
+ * call it again. Otherwise return true to skip.
+ *
+ * Reduce the scenarios to use dc_commit_state_no_check in the stage of flip. Especially
+ * enter/exit MPO when DCN still have enough resources.
+ */
+ if (pipe_in_use != dc->res_pool->pipe_count && !subvp_in_use) {
+ dc_release_state(transition_context);
+ return true;
+ }
if (!dc->config.is_vmin_only_asic) {
tmp_mpc_policy = dc->debug.pipe_split_policy;
@@ -3667,7 +3926,7 @@ static bool commit_minimal_transition_state(struct dc *dc,
dc_resource_state_copy_construct(transition_base_context, transition_context);
- //commit minimal state
+ /* commit minimal state */
if (dc->res_pool->funcs->validate_bandwidth(dc, transition_context, false)) {
for (i = 0; i < transition_context->stream_count; i++) {
struct dc_stream_status *stream_status = &transition_context->stream_status[i];
@@ -3685,10 +3944,12 @@ static bool commit_minimal_transition_state(struct dc *dc,
ret = dc_commit_state_no_check(dc, transition_context);
}
- /*always release as dc_commit_state_no_check retains in good case*/
+ /* always release as dc_commit_state_no_check retains in good case */
dc_release_state(transition_context);
- /*restore previous pipe split and odm policy*/
+ /* TearDown:
+ * Restore original configuration for ODM and MPO.
+ */
if (!dc->config.is_vmin_only_asic)
dc->debug.pipe_split_policy = tmp_mpc_policy;
@@ -3696,12 +3957,12 @@ static bool commit_minimal_transition_state(struct dc *dc,
dc->debug.force_disable_subvp = temp_subvp_policy;
if (ret != DC_OK) {
- /*this should never happen*/
+ /* this should never happen */
BREAK_TO_DEBUGGER();
return false;
}
- /*force full surface update*/
+ /* force full surface update */
for (i = 0; i < dc->current_state->stream_count; i++) {
for (j = 0; j < dc->current_state->stream_status[i].plane_count; j++) {
dc->current_state->stream_status[i].plane_states[j]->update_flags.raw = 0xFFFFFFFF;
@@ -3719,6 +3980,7 @@ bool dc_update_planes_and_stream(struct dc *dc,
struct dc_state *context;
enum surface_update_type update_type;
int i;
+ struct mall_temp_config mall_temp_config;
/* In cases where MPO and split or ODM are used transitions can
* cause underflow. Apply stream configuration with minimal pipe
@@ -3750,11 +4012,29 @@ bool dc_update_planes_and_stream(struct dc *dc,
/* on plane removal, minimal state is the new one */
if (force_minimal_pipe_splitting && !is_plane_addition) {
+ /* Since all phantom pipes are removed in full validation,
+ * we have to save and restore the subvp/mall config when
+ * we do a minimal transition since the flags marking the
+ * pipe as subvp/phantom will be cleared (dc copy constructor
+ * creates a shallow copy).
+ */
+ if (dc->res_pool->funcs->save_mall_state)
+ dc->res_pool->funcs->save_mall_state(dc, context, &mall_temp_config);
if (!commit_minimal_transition_state(dc, context)) {
dc_release_state(context);
return false;
}
-
+ if (dc->res_pool->funcs->restore_mall_state)
+ dc->res_pool->funcs->restore_mall_state(dc, context, &mall_temp_config);
+
+ /* If we do a minimal transition with plane removal and the context
+ * has subvp we also have to retain back the phantom stream / planes
+ * since the refcount is decremented as part of the min transition
+ * (we commit a state with no subvp, so the phantom streams / planes
+ * had to be removed).
+ */
+ if (dc->res_pool->funcs->retain_phantom_pipes)
+ dc->res_pool->funcs->retain_phantom_pipes(dc, context);
update_type = UPDATE_TYPE_FULL;
}
@@ -3812,6 +4092,24 @@ void dc_commit_updates_for_stream(struct dc *dc,
update_type = dc_check_update_surfaces_for_stream(
dc, srf_updates, surface_count, stream_update, stream_status);
+ /* TODO: Since change commit sequence can have a huge impact,
+ * we decided to only enable it for DCN3x. However, as soon as
+ * we get more confident about this change we'll need to enable
+ * the new sequence for all ASICs.
+ */
+ if (dc->ctx->dce_version >= DCN_VERSION_3_2) {
+ /*
+ * Previous frame finished and HW is ready for optimization.
+ */
+ if (update_type == UPDATE_TYPE_FAST)
+ dc_post_update_surfaces_to_stream(dc);
+
+ dc_update_planes_and_stream(dc, srf_updates,
+ surface_count, stream,
+ stream_update);
+ return;
+ }
+
if (update_type >= update_surface_trace_level)
update_surface_trace(dc, srf_updates, surface_count);
@@ -3834,12 +4132,9 @@ void dc_commit_updates_for_stream(struct dc *dc,
if (new_pipe->plane_state && new_pipe->plane_state != old_pipe->plane_state)
new_pipe->plane_state->force_full_update = true;
}
- } else if (update_type == UPDATE_TYPE_FAST && dc_ctx->dce_version >= DCE_VERSION_MAX) {
+ } else if (update_type == UPDATE_TYPE_FAST) {
/*
* Previous frame finished and HW is ready for optimization.
- *
- * Only relevant for DCN behavior where we can guarantee the optimization
- * is safe to apply - retain the legacy behavior for DCE.
*/
dc_post_update_surfaces_to_stream(dc);
}
@@ -4016,7 +4311,7 @@ void dc_resume(struct dc *dc)
uint32_t i;
for (i = 0; i < dc->link_count; i++)
- core_link_resume(dc->links[i]);
+ dc->link_srv->resume(dc->links[i]);
}
bool dc_is_dmcu_initialized(struct dc *dc)
@@ -4028,157 +4323,6 @@ bool dc_is_dmcu_initialized(struct dc *dc)
return false;
}
-bool dc_is_oem_i2c_device_present(
- struct dc *dc,
- size_t slave_address)
-{
- if (dc->res_pool->oem_device)
- return dce_i2c_oem_device_present(
- dc->res_pool,
- dc->res_pool->oem_device,
- slave_address);
-
- return false;
-}
-
-bool dc_submit_i2c(
- struct dc *dc,
- uint32_t link_index,
- struct i2c_command *cmd)
-{
-
- struct dc_link *link = dc->links[link_index];
- struct ddc_service *ddc = link->ddc;
- return dce_i2c_submit_command(
- dc->res_pool,
- ddc->ddc_pin,
- cmd);
-}
-
-bool dc_submit_i2c_oem(
- struct dc *dc,
- struct i2c_command *cmd)
-{
- struct ddc_service *ddc = dc->res_pool->oem_device;
- if (ddc)
- return dce_i2c_submit_command(
- dc->res_pool,
- ddc->ddc_pin,
- cmd);
-
- return false;
-}
-
-static bool link_add_remote_sink_helper(struct dc_link *dc_link, struct dc_sink *sink)
-{
- if (dc_link->sink_count >= MAX_SINKS_PER_LINK) {
- BREAK_TO_DEBUGGER();
- return false;
- }
-
- dc_sink_retain(sink);
-
- dc_link->remote_sinks[dc_link->sink_count] = sink;
- dc_link->sink_count++;
-
- return true;
-}
-
-/*
- * dc_link_add_remote_sink() - Create a sink and attach it to an existing link
- *
- * EDID length is in bytes
- */
-struct dc_sink *dc_link_add_remote_sink(
- struct dc_link *link,
- const uint8_t *edid,
- int len,
- struct dc_sink_init_data *init_data)
-{
- struct dc_sink *dc_sink;
- enum dc_edid_status edid_status;
-
- if (len > DC_MAX_EDID_BUFFER_SIZE) {
- dm_error("Max EDID buffer size breached!\n");
- return NULL;
- }
-
- if (!init_data) {
- BREAK_TO_DEBUGGER();
- return NULL;
- }
-
- if (!init_data->link) {
- BREAK_TO_DEBUGGER();
- return NULL;
- }
-
- dc_sink = dc_sink_create(init_data);
-
- if (!dc_sink)
- return NULL;
-
- memmove(dc_sink->dc_edid.raw_edid, edid, len);
- dc_sink->dc_edid.length = len;
-
- if (!link_add_remote_sink_helper(
- link,
- dc_sink))
- goto fail_add_sink;
-
- edid_status = dm_helpers_parse_edid_caps(
- link,
- &dc_sink->dc_edid,
- &dc_sink->edid_caps);
-
- /*
- * Treat device as no EDID device if EDID
- * parsing fails
- */
- if (edid_status != EDID_OK && edid_status != EDID_PARTIAL_VALID) {
- dc_sink->dc_edid.length = 0;
- dm_error("Bad EDID, status%d!\n", edid_status);
- }
-
- return dc_sink;
-
-fail_add_sink:
- dc_sink_release(dc_sink);
- return NULL;
-}
-
-/*
- * dc_link_remove_remote_sink() - Remove a remote sink from a dc_link
- *
- * Note that this just removes the struct dc_sink - it doesn't
- * program hardware or alter other members of dc_link
- */
-void dc_link_remove_remote_sink(struct dc_link *link, struct dc_sink *sink)
-{
- int i;
-
- if (!link->sink_count) {
- BREAK_TO_DEBUGGER();
- return;
- }
-
- for (i = 0; i < link->sink_count; i++) {
- if (link->remote_sinks[i] == sink) {
- dc_sink_release(sink);
- link->remote_sinks[i] = NULL;
-
- /* shrink array to remove empty place */
- while (i < link->sink_count - 1) {
- link->remote_sinks[i] = link->remote_sinks[i+1];
- i++;
- }
- link->remote_sinks[i] = NULL;
- link->sink_count--;
- return;
- }
- }
-}
-
void get_clock_requirements_for_state(struct dc_state *state, struct AsicStateEx *info)
{
info->displayClock = (unsigned int)state->bw_ctx.bw.dcn.clk.dispclk_khz;
@@ -4387,21 +4531,17 @@ void dc_mclk_switch_using_fw_based_vblank_stretch_shut_down(struct dc *dc)
dc->current_state->bw_ctx.bw.dcn.clk.fw_based_mclk_switching_shut_down = true;
}
-/*
- *****************************************************************************
- * Function: dc_is_dmub_outbox_supported -
+/**
+ * dc_is_dmub_outbox_supported - Check if DMUB firmware support outbox notification
*
- * @brief
- * Checks whether DMUB FW supports outbox notifications, if supported
- * DM should register outbox interrupt prior to actually enabling interrupts
- * via dc_enable_dmub_outbox
+ * @dc: [in] dc structure
*
- * @param
- * [in] dc: dc structure
+ * Checks whether DMUB FW supports outbox notifications, if supported DM
+ * should register outbox interrupt prior to actually enabling interrupts
+ * via dc_enable_dmub_outbox
*
- * @return
- * True if DMUB FW supports outbox notifications, False otherwise
- *****************************************************************************
+ * Return:
+ * True if DMUB FW supports outbox notifications, False otherwise
*/
bool dc_is_dmub_outbox_supported(struct dc *dc)
{
@@ -4419,21 +4559,17 @@ bool dc_is_dmub_outbox_supported(struct dc *dc)
return dc->debug.enable_dmub_aux_for_legacy_ddc;
}
-/*
- *****************************************************************************
- * Function: dc_enable_dmub_notifications
+/**
+ * dc_enable_dmub_notifications - Check if dmub fw supports outbox
*
- * @brief
- * Calls dc_is_dmub_outbox_supported to check if dmub fw supports outbox
- * notifications. All DMs shall switch to dc_is_dmub_outbox_supported.
- * This API shall be removed after switching.
+ * @dc: [in] dc structure
*
- * @param
- * [in] dc: dc structure
+ * Calls dc_is_dmub_outbox_supported to check if dmub fw supports outbox
+ * notifications. All DMs shall switch to dc_is_dmub_outbox_supported. This
+ * API shall be removed after switching.
*
- * @return
- * True if DMUB FW supports outbox notifications, False otherwise
- *****************************************************************************
+ * Return:
+ * True if DMUB FW supports outbox notifications, False otherwise
*/
bool dc_enable_dmub_notifications(struct dc *dc)
{
@@ -4441,18 +4577,11 @@ bool dc_enable_dmub_notifications(struct dc *dc)
}
/**
- *****************************************************************************
- * Function: dc_enable_dmub_outbox
- *
- * @brief
- * Enables DMUB unsolicited notifications to x86 via outbox
+ * dc_enable_dmub_outbox - Enables DMUB unsolicited notification
*
- * @param
- * [in] dc: dc structure
+ * @dc: [in] dc structure
*
- * @return
- * None
- *****************************************************************************
+ * Enables DMUB unsolicited notifications to x86 via outbox.
*/
void dc_enable_dmub_outbox(struct dc *dc)
{
@@ -4553,21 +4682,17 @@ uint8_t get_link_index_from_dpia_port_index(const struct dc *dc,
}
/**
- *****************************************************************************
- * Function: dc_process_dmub_set_config_async
+ * dc_process_dmub_set_config_async - Submits set_config command
*
- * @brief
- * Submits set_config command to dmub via inbox message
+ * @dc: [in] dc structure
+ * @link_index: [in] link_index: link index
+ * @payload: [in] aux payload
+ * @notify: [out] set_config immediate reply
*
- * @param
- * [in] dc: dc structure
- * [in] link_index: link index
- * [in] payload: aux payload
- * [out] notify: set_config immediate reply
+ * Submits set_config command to dmub via inbox message.
*
- * @return
- * True if successful, False if failure
- *****************************************************************************
+ * Return:
+ * True if successful, False if failure
*/
bool dc_process_dmub_set_config_async(struct dc *dc,
uint32_t link_index,
@@ -4603,21 +4728,17 @@ bool dc_process_dmub_set_config_async(struct dc *dc,
}
/**
- *****************************************************************************
- * Function: dc_process_dmub_set_mst_slots
+ * dc_process_dmub_set_mst_slots - Submits MST solt allocation
*
- * @brief
- * Submits mst slot allocation command to dmub via inbox message
+ * @dc: [in] dc structure
+ * @link_index: [in] link index
+ * @mst_alloc_slots: [in] mst slots to be allotted
+ * @mst_slots_in_use: [out] mst slots in use returned in failure case
*
- * @param
- * [in] dc: dc structure
- * [in] link_index: link index
- * [in] mst_alloc_slots: mst slots to be allotted
- * [out] mst_slots_in_use: mst slots in use returned in failure case
+ * Submits mst slot allocation command to dmub via inbox message
*
- * @return
- * DC_OK if successful, DC_ERROR if failure
- *****************************************************************************
+ * Return:
+ * DC_OK if successful, DC_ERROR if failure
*/
enum dc_status dc_process_dmub_set_mst_slots(const struct dc *dc,
uint32_t link_index,
@@ -4657,19 +4778,12 @@ enum dc_status dc_process_dmub_set_mst_slots(const struct dc *dc,
}
/**
- *****************************************************************************
- * Function: dc_process_dmub_dpia_hpd_int_enable
- *
- * @brief
- * Submits dpia hpd int enable command to dmub via inbox message
+ * dc_process_dmub_dpia_hpd_int_enable - Submits DPIA DPD interruption
*
- * @param
- * [in] dc: dc structure
- * [in] hpd_int_enable: 1 for hpd int enable, 0 to disable
+ * @dc: [in] dc structure
+ * @hpd_int_enable: [in] 1 for hpd int enable, 0 to disable
*
- * @return
- * None
- *****************************************************************************
+ * Submits dpia hpd int enable command to dmub via inbox message
*/
void dc_process_dmub_dpia_hpd_int_enable(const struct dc *dc,
uint32_t hpd_int_enable)
@@ -4698,16 +4812,13 @@ void dc_disable_accelerated_mode(struct dc *dc)
/**
- *****************************************************************************
- * dc_notify_vsync_int_state() - notifies vsync enable/disable state
+ * dc_notify_vsync_int_state - notifies vsync enable/disable state
* @dc: dc structure
- * @stream: stream where vsync int state changed
- * @enable: whether vsync is enabled or disabled
- *
- * Called when vsync is enabled/disabled
- * Will notify DMUB to start/stop ABM interrupts after steady state is reached
+ * @stream: stream where vsync int state changed
+ * @enable: whether vsync is enabled or disabled
*
- *****************************************************************************
+ * Called when vsync is enabled/disabled Will notify DMUB to start/stop ABM
+ * interrupts after steady state is reached.
*/
void dc_notify_vsync_int_state(struct dc *dc, struct dc_stream_state *stream, bool enable)
{
@@ -4734,7 +4845,7 @@ void dc_notify_vsync_int_state(struct dc *dc, struct dc_stream_state *stream, bo
return;
}
- get_edp_links(dc, edp_links, &edp_num);
+ dc_get_edp_links(dc, edp_links, &edp_num);
/* Determine panel inst */
for (i = 0; i < edp_num; i++) {
@@ -4749,14 +4860,18 @@ void dc_notify_vsync_int_state(struct dc *dc, struct dc_stream_state *stream, bo
if (pipe->stream_res.abm && pipe->stream_res.abm->funcs->set_abm_pause)
pipe->stream_res.abm->funcs->set_abm_pause(pipe->stream_res.abm, !enable, i, pipe->stream_res.tg->inst);
}
-/*
- * dc_extended_blank_supported: Decide whether extended blank is supported
+
+/**
+ * dc_extended_blank_supported - Decide whether extended blank is supported
*
- * Extended blank is a freesync optimization feature to be enabled in the future.
- * During the extra vblank period gained from freesync, we have the ability to enter z9/z10.
+ * @dc: [in] Current DC state
*
- * @param [in] dc: Current DC state
- * @return: Indicate whether extended blank is supported (true or false)
+ * Extended blank is a freesync optimization feature to be enabled in the
+ * future. During the extra vblank period gained from freesync, we have the
+ * ability to enter z9/z10.
+ *
+ * Return:
+ * Indicate whether extended blank is supported (%true or %false)
*/
bool dc_extended_blank_supported(struct dc *dc)
{
diff --git a/drivers/gpu/drm/amd/display/dc/core/dc_hw_sequencer.c b/drivers/gpu/drm/amd/display/dc/core/dc_hw_sequencer.c
index 7c2e3b8dc26a..2acbf692193f 100644
--- a/drivers/gpu/drm/amd/display/dc/core/dc_hw_sequencer.c
+++ b/drivers/gpu/drm/amd/display/dc/core/dc_hw_sequencer.c
@@ -73,28 +73,38 @@ struct out_csc_color_matrix_type {
static const struct out_csc_color_matrix_type output_csc_matrix[] = {
{ COLOR_SPACE_RGB_TYPE,
- { 0x2000, 0, 0, 0, 0, 0x2000, 0, 0, 0, 0, 0x2000, 0} },
+ { 0x2000, 0, 0, 0,
+ 0, 0x2000, 0, 0,
+ 0, 0, 0x2000, 0} },
{ COLOR_SPACE_RGB_LIMITED_TYPE,
- { 0x1B67, 0, 0, 0x201, 0, 0x1B67, 0, 0x201, 0, 0, 0x1B67, 0x201} },
+ { 0x1B67, 0, 0, 0x201,
+ 0, 0x1B67, 0, 0x201,
+ 0, 0, 0x1B67, 0x201} },
{ COLOR_SPACE_YCBCR601_TYPE,
- { 0xE04, 0xF444, 0xFDB9, 0x1004, 0x831, 0x1016, 0x320, 0x201, 0xFB45,
- 0xF6B7, 0xE04, 0x1004} },
+ { 0xE04, 0xF444, 0xFDB9, 0x1004,
+ 0x831, 0x1016, 0x320, 0x201,
+ 0xFB45, 0xF6B7, 0xE04, 0x1004} },
{ COLOR_SPACE_YCBCR709_TYPE,
- { 0xE04, 0xF345, 0xFEB7, 0x1004, 0x5D3, 0x1399, 0x1FA,
- 0x201, 0xFCCA, 0xF533, 0xE04, 0x1004} },
+ { 0xE04, 0xF345, 0xFEB7, 0x1004,
+ 0x5D3, 0x1399, 0x1FA, 0x201,
+ 0xFCCA, 0xF533, 0xE04, 0x1004} },
/* TODO: correct values below */
{ COLOR_SPACE_YCBCR601_LIMITED_TYPE,
- { 0xE00, 0xF447, 0xFDB9, 0x1000, 0x991,
- 0x12C9, 0x3A6, 0x200, 0xFB47, 0xF6B9, 0xE00, 0x1000} },
+ { 0xE00, 0xF447, 0xFDB9, 0x1000,
+ 0x991, 0x12C9, 0x3A6, 0x200,
+ 0xFB47, 0xF6B9, 0xE00, 0x1000} },
{ COLOR_SPACE_YCBCR709_LIMITED_TYPE,
- { 0xE00, 0xF349, 0xFEB7, 0x1000, 0x6CE, 0x16E3,
- 0x24F, 0x200, 0xFCCB, 0xF535, 0xE00, 0x1000} },
+ { 0xE00, 0xF349, 0xFEB7, 0x1000,
+ 0x6CE, 0x16E3, 0x24F, 0x200,
+ 0xFCCB, 0xF535, 0xE00, 0x1000} },
{ COLOR_SPACE_YCBCR2020_TYPE,
- { 0x1000, 0xF149, 0xFEB7, 0x0000, 0x0868, 0x15B2,
- 0x01E6, 0x0000, 0xFB88, 0xF478, 0x1000, 0x0000} },
+ { 0x1000, 0xF149, 0xFEB7, 0x1004,
+ 0x0868, 0x15B2, 0x01E6, 0x201,
+ 0xFB88, 0xF478, 0x1000, 0x1004} },
{ COLOR_SPACE_YCBCR709_BLACK_TYPE,
- { 0x0000, 0x0000, 0x0000, 0x1000, 0x0000, 0x0000,
- 0x0000, 0x0200, 0x0000, 0x0000, 0x0000, 0x1000} },
+ { 0x0000, 0x0000, 0x0000, 0x1000,
+ 0x0000, 0x0000, 0x0000, 0x0200,
+ 0x0000, 0x0000, 0x0000, 0x1000} },
};
static bool is_rgb_type(
@@ -366,6 +376,7 @@ void get_hdr_visual_confirm_color(
struct tg_color *color)
{
uint32_t color_value = MAX_TG_COLOR_VALUE;
+ bool is_sdr = false;
/* Determine the overscan color based on the top-most (desktop) plane's context */
struct pipe_ctx *top_pipe_ctx = pipe_ctx;
@@ -382,7 +393,8 @@ void get_hdr_visual_confirm_color(
/* FreeSync 2 ARGB2101010 - set border color to pink */
color->color_r_cr = color_value;
color->color_b_cb = color_value;
- }
+ } else
+ is_sdr = true;
break;
case PIXEL_FORMAT_FP16:
if (top_pipe_ctx->stream->out_transfer_func->tf == TRANSFER_FUNCTION_PQ) {
@@ -391,14 +403,19 @@ void get_hdr_visual_confirm_color(
} else if (top_pipe_ctx->stream->out_transfer_func->tf == TRANSFER_FUNCTION_GAMMA22) {
/* FreeSync 2 HDR - set border color to green */
color->color_g_y = color_value;
- }
+ } else
+ is_sdr = true;
break;
default:
+ is_sdr = true;
+ break;
+ }
+
+ if (is_sdr) {
/* SDR - set border color to Gray */
color->color_r_cr = color_value/2;
color->color_b_cb = color_value/2;
color->color_g_y = color_value/2;
- break;
}
}
diff --git a/drivers/gpu/drm/amd/display/dc/core/dc_link.c b/drivers/gpu/drm/amd/display/dc/core/dc_link.c
deleted file mode 100644
index d7b1ace6328a..000000000000
--- a/drivers/gpu/drm/amd/display/dc/core/dc_link.c
+++ /dev/null
@@ -1,4959 +0,0 @@
-/*
- * Copyright 2012-15 Advanced Micro Devices, Inc.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice shall be included in
- * all copies or substantial portions of the Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
- * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
- * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
- * OTHER DEALINGS IN THE SOFTWARE.
- *
- * Authors: AMD
- *
- */
-
-#include <linux/slab.h>
-
-#include "dm_services.h"
-#include "atomfirmware.h"
-#include "dm_helpers.h"
-#include "dc.h"
-#include "grph_object_id.h"
-#include "gpio_service_interface.h"
-#include "core_status.h"
-#include "dc_link_dp.h"
-#include "dc_link_dpia.h"
-#include "dc_link_ddc.h"
-#include "link_hwss.h"
-#include "opp.h"
-
-#include "link_encoder.h"
-#include "hw_sequencer.h"
-#include "resource.h"
-#include "abm.h"
-#include "fixed31_32.h"
-#include "dpcd_defs.h"
-#include "dmcu.h"
-#include "hw/clk_mgr.h"
-#include "dce/dmub_psr.h"
-#include "dmub/dmub_srv.h"
-#include "inc/hw/panel_cntl.h"
-#include "inc/link_enc_cfg.h"
-#include "inc/link_dpcd.h"
-#include "link/link_dp_trace.h"
-
-#include "dc/dcn30/dcn30_vpg.h"
-
-#define DC_LOGGER_INIT(logger)
-
-#define LINK_INFO(...) \
- DC_LOG_HW_HOTPLUG( \
- __VA_ARGS__)
-
-#define RETIMER_REDRIVER_INFO(...) \
- DC_LOG_RETIMER_REDRIVER( \
- __VA_ARGS__)
-
-/*******************************************************************************
- * Private functions
- ******************************************************************************/
-static void dc_link_destruct(struct dc_link *link)
-{
- int i;
-
- if (link->hpd_gpio) {
- dal_gpio_destroy_irq(&link->hpd_gpio);
- link->hpd_gpio = NULL;
- }
-
- if (link->ddc)
- dal_ddc_service_destroy(&link->ddc);
-
- if (link->panel_cntl)
- link->panel_cntl->funcs->destroy(&link->panel_cntl);
-
- if (link->link_enc) {
- /* Update link encoder resource tracking variables. These are used for
- * the dynamic assignment of link encoders to streams. Virtual links
- * are not assigned encoder resources on creation.
- */
- if (link->link_id.id != CONNECTOR_ID_VIRTUAL) {
- link->dc->res_pool->link_encoders[link->eng_id - ENGINE_ID_DIGA] = NULL;
- link->dc->res_pool->dig_link_enc_count--;
- }
- link->link_enc->funcs->destroy(&link->link_enc);
- }
-
- if (link->local_sink)
- dc_sink_release(link->local_sink);
-
- for (i = 0; i < link->sink_count; ++i)
- dc_sink_release(link->remote_sinks[i]);
-}
-
-struct gpio *get_hpd_gpio(struct dc_bios *dcb,
- struct graphics_object_id link_id,
- struct gpio_service *gpio_service)
-{
- enum bp_result bp_result;
- struct graphics_object_hpd_info hpd_info;
- struct gpio_pin_info pin_info;
-
- if (dcb->funcs->get_hpd_info(dcb, link_id, &hpd_info) != BP_RESULT_OK)
- return NULL;
-
- bp_result = dcb->funcs->get_gpio_pin_info(dcb,
- hpd_info.hpd_int_gpio_uid, &pin_info);
-
- if (bp_result != BP_RESULT_OK) {
- ASSERT(bp_result == BP_RESULT_NORECORD);
- return NULL;
- }
-
- return dal_gpio_service_create_irq(gpio_service,
- pin_info.offset,
- pin_info.mask);
-}
-
-/*
- * Function: program_hpd_filter
- *
- * @brief
- * Programs HPD filter on associated HPD line
- *
- * @param [in] delay_on_connect_in_ms: Connect filter timeout
- * @param [in] delay_on_disconnect_in_ms: Disconnect filter timeout
- *
- * @return
- * true on success, false otherwise
- */
-static bool program_hpd_filter(const struct dc_link *link)
-{
- bool result = false;
- struct gpio *hpd;
- int delay_on_connect_in_ms = 0;
- int delay_on_disconnect_in_ms = 0;
-
- if (link->is_hpd_filter_disabled)
- return false;
- /* Verify feature is supported */
- switch (link->connector_signal) {
- case SIGNAL_TYPE_DVI_SINGLE_LINK:
- case SIGNAL_TYPE_DVI_DUAL_LINK:
- case SIGNAL_TYPE_HDMI_TYPE_A:
- /* Program hpd filter */
- delay_on_connect_in_ms = 500;
- delay_on_disconnect_in_ms = 100;
- break;
- case SIGNAL_TYPE_DISPLAY_PORT:
- case SIGNAL_TYPE_DISPLAY_PORT_MST:
- /* Program hpd filter to allow DP signal to settle */
- /* 500: not able to detect MST <-> SST switch as HPD is low for
- * only 100ms on DELL U2413
- * 0: some passive dongle still show aux mode instead of i2c
- * 20-50: not enough to hide bouncing HPD with passive dongle.
- * also see intermittent i2c read issues.
- */
- delay_on_connect_in_ms = 80;
- delay_on_disconnect_in_ms = 0;
- break;
- case SIGNAL_TYPE_LVDS:
- case SIGNAL_TYPE_EDP:
- default:
- /* Don't program hpd filter */
- return false;
- }
-
- /* Obtain HPD handle */
- hpd = get_hpd_gpio(link->ctx->dc_bios, link->link_id,
- link->ctx->gpio_service);
-
- if (!hpd)
- return result;
-
- /* Setup HPD filtering */
- if (dal_gpio_open(hpd, GPIO_MODE_INTERRUPT) == GPIO_RESULT_OK) {
- struct gpio_hpd_config config;
-
- config.delay_on_connect = delay_on_connect_in_ms;
- config.delay_on_disconnect = delay_on_disconnect_in_ms;
-
- dal_irq_setup_hpd_filter(hpd, &config);
-
- dal_gpio_close(hpd);
-
- result = true;
- } else {
- ASSERT_CRITICAL(false);
- }
-
- /* Release HPD handle */
- dal_gpio_destroy_irq(&hpd);
-
- return result;
-}
-
-bool dc_link_wait_for_t12(struct dc_link *link)
-{
- if (link->connector_signal == SIGNAL_TYPE_EDP && link->dc->hwss.edp_wait_for_T12) {
- link->dc->hwss.edp_wait_for_T12(link);
-
- return true;
- }
-
- return false;
-}
-
-/**
- * dc_link_detect_sink() - Determine if there is a sink connected
- *
- * @link: pointer to the dc link
- * @type: Returned connection type
- * Does not detect downstream devices, such as MST sinks
- * or display connected through active dongles
- */
-bool dc_link_detect_sink(struct dc_link *link, enum dc_connection_type *type)
-{
- uint32_t is_hpd_high = 0;
- struct gpio *hpd_pin;
-
- if (link->connector_signal == SIGNAL_TYPE_LVDS) {
- *type = dc_connection_single;
- return true;
- }
-
- if (link->connector_signal == SIGNAL_TYPE_EDP) {
- /*in case it is not on*/
- if (!link->dc->config.edp_no_power_sequencing)
- link->dc->hwss.edp_power_control(link, true);
- link->dc->hwss.edp_wait_for_hpd_ready(link, true);
- }
-
- /* Link may not have physical HPD pin. */
- if (link->ep_type != DISPLAY_ENDPOINT_PHY) {
- if (link->is_hpd_pending || !dc_link_dpia_query_hpd_status(link))
- *type = dc_connection_none;
- else
- *type = dc_connection_single;
-
- return true;
- }
-
- /* todo: may need to lock gpio access */
- hpd_pin = get_hpd_gpio(link->ctx->dc_bios, link->link_id,
- link->ctx->gpio_service);
- if (!hpd_pin)
- goto hpd_gpio_failure;
-
- dal_gpio_open(hpd_pin, GPIO_MODE_INTERRUPT);
- dal_gpio_get_value(hpd_pin, &is_hpd_high);
- dal_gpio_close(hpd_pin);
- dal_gpio_destroy_irq(&hpd_pin);
-
- if (is_hpd_high) {
- *type = dc_connection_single;
- /* TODO: need to do the actual detection */
- } else {
- *type = dc_connection_none;
- }
-
- return true;
-
-hpd_gpio_failure:
- return false;
-}
-
-static enum ddc_transaction_type get_ddc_transaction_type(enum signal_type sink_signal)
-{
- enum ddc_transaction_type transaction_type = DDC_TRANSACTION_TYPE_NONE;
-
- switch (sink_signal) {
- case SIGNAL_TYPE_DVI_SINGLE_LINK:
- case SIGNAL_TYPE_DVI_DUAL_LINK:
- case SIGNAL_TYPE_HDMI_TYPE_A:
- case SIGNAL_TYPE_LVDS:
- case SIGNAL_TYPE_RGB:
- transaction_type = DDC_TRANSACTION_TYPE_I2C;
- break;
-
- case SIGNAL_TYPE_DISPLAY_PORT:
- case SIGNAL_TYPE_EDP:
- transaction_type = DDC_TRANSACTION_TYPE_I2C_OVER_AUX;
- break;
-
- case SIGNAL_TYPE_DISPLAY_PORT_MST:
- /* MST does not use I2COverAux, but there is the
- * SPECIAL use case for "immediate dwnstrm device
- * access" (EPR#370830).
- */
- transaction_type = DDC_TRANSACTION_TYPE_I2C_OVER_AUX;
- break;
-
- default:
- break;
- }
-
- return transaction_type;
-}
-
-static enum signal_type get_basic_signal_type(struct graphics_object_id encoder,
- struct graphics_object_id downstream)
-{
- if (downstream.type == OBJECT_TYPE_CONNECTOR) {
- switch (downstream.id) {
- case CONNECTOR_ID_SINGLE_LINK_DVII:
- switch (encoder.id) {
- case ENCODER_ID_INTERNAL_DAC1:
- case ENCODER_ID_INTERNAL_KLDSCP_DAC1:
- case ENCODER_ID_INTERNAL_DAC2:
- case ENCODER_ID_INTERNAL_KLDSCP_DAC2:
- return SIGNAL_TYPE_RGB;
- default:
- return SIGNAL_TYPE_DVI_SINGLE_LINK;
- }
- break;
- case CONNECTOR_ID_DUAL_LINK_DVII:
- {
- switch (encoder.id) {
- case ENCODER_ID_INTERNAL_DAC1:
- case ENCODER_ID_INTERNAL_KLDSCP_DAC1:
- case ENCODER_ID_INTERNAL_DAC2:
- case ENCODER_ID_INTERNAL_KLDSCP_DAC2:
- return SIGNAL_TYPE_RGB;
- default:
- return SIGNAL_TYPE_DVI_DUAL_LINK;
- }
- }
- break;
- case CONNECTOR_ID_SINGLE_LINK_DVID:
- return SIGNAL_TYPE_DVI_SINGLE_LINK;
- case CONNECTOR_ID_DUAL_LINK_DVID:
- return SIGNAL_TYPE_DVI_DUAL_LINK;
- case CONNECTOR_ID_VGA:
- return SIGNAL_TYPE_RGB;
- case CONNECTOR_ID_HDMI_TYPE_A:
- return SIGNAL_TYPE_HDMI_TYPE_A;
- case CONNECTOR_ID_LVDS:
- return SIGNAL_TYPE_LVDS;
- case CONNECTOR_ID_DISPLAY_PORT:
- case CONNECTOR_ID_USBC:
- return SIGNAL_TYPE_DISPLAY_PORT;
- case CONNECTOR_ID_EDP:
- return SIGNAL_TYPE_EDP;
- default:
- return SIGNAL_TYPE_NONE;
- }
- } else if (downstream.type == OBJECT_TYPE_ENCODER) {
- switch (downstream.id) {
- case ENCODER_ID_EXTERNAL_NUTMEG:
- case ENCODER_ID_EXTERNAL_TRAVIS:
- return SIGNAL_TYPE_DISPLAY_PORT;
- default:
- return SIGNAL_TYPE_NONE;
- }
- }
-
- return SIGNAL_TYPE_NONE;
-}
-
-/*
- * dc_link_is_dp_sink_present() - Check if there is a native DP
- * or passive DP-HDMI dongle connected
- */
-bool dc_link_is_dp_sink_present(struct dc_link *link)
-{
- enum gpio_result gpio_result;
- uint32_t clock_pin = 0;
- uint8_t retry = 0;
- struct ddc *ddc;
-
- enum connector_id connector_id =
- dal_graphics_object_id_get_connector_id(link->link_id);
-
- bool present =
- ((connector_id == CONNECTOR_ID_DISPLAY_PORT) ||
- (connector_id == CONNECTOR_ID_EDP) ||
- (connector_id == CONNECTOR_ID_USBC));
-
- ddc = dal_ddc_service_get_ddc_pin(link->ddc);
-
- if (!ddc) {
- BREAK_TO_DEBUGGER();
- return present;
- }
-
- /* Open GPIO and set it to I2C mode */
- /* Note: this GpioMode_Input will be converted
- * to GpioConfigType_I2cAuxDualMode in GPIO component,
- * which indicates we need additional delay
- */
-
- if (dal_ddc_open(ddc, GPIO_MODE_INPUT,
- GPIO_DDC_CONFIG_TYPE_MODE_I2C) != GPIO_RESULT_OK) {
- dal_ddc_close(ddc);
-
- return present;
- }
-
- /*
- * Read GPIO: DP sink is present if both clock and data pins are zero
- *
- * [W/A] plug-unplug DP cable, sometimes customer board has
- * one short pulse on clk_pin(1V, < 1ms). DP will be config to HDMI/DVI
- * then monitor can't br light up. Add retry 3 times
- * But in real passive dongle, it need additional 3ms to detect
- */
- do {
- gpio_result = dal_gpio_get_value(ddc->pin_clock, &clock_pin);
- ASSERT(gpio_result == GPIO_RESULT_OK);
- if (clock_pin)
- udelay(1000);
- else
- break;
- } while (retry++ < 3);
-
- present = (gpio_result == GPIO_RESULT_OK) && !clock_pin;
-
- dal_ddc_close(ddc);
-
- return present;
-}
-
-/*
- * @brief
- * Detect output sink type
- */
-static enum signal_type link_detect_sink(struct dc_link *link,
- enum dc_detect_reason reason)
-{
- enum signal_type result;
- struct graphics_object_id enc_id;
-
- if (link->is_dig_mapping_flexible)
- enc_id = (struct graphics_object_id){.id = ENCODER_ID_UNKNOWN};
- else
- enc_id = link->link_enc->id;
- result = get_basic_signal_type(enc_id, link->link_id);
-
- /* Use basic signal type for link without physical connector. */
- if (link->ep_type != DISPLAY_ENDPOINT_PHY)
- return result;
-
- /* Internal digital encoder will detect only dongles
- * that require digital signal
- */
-
- /* Detection mechanism is different
- * for different native connectors.
- * LVDS connector supports only LVDS signal;
- * PCIE is a bus slot, the actual connector needs to be detected first;
- * eDP connector supports only eDP signal;
- * HDMI should check straps for audio
- */
-
- /* PCIE detects the actual connector on add-on board */
- if (link->link_id.id == CONNECTOR_ID_PCIE) {
- /* ZAZTODO implement PCIE add-on card detection */
- }
-
- switch (link->link_id.id) {
- case CONNECTOR_ID_HDMI_TYPE_A: {
- /* check audio support:
- * if native HDMI is not supported, switch to DVI
- */
- struct audio_support *aud_support =
- &link->dc->res_pool->audio_support;
-
- if (!aud_support->hdmi_audio_native)
- if (link->link_id.id == CONNECTOR_ID_HDMI_TYPE_A)
- result = SIGNAL_TYPE_DVI_SINGLE_LINK;
- }
- break;
- case CONNECTOR_ID_DISPLAY_PORT:
- case CONNECTOR_ID_USBC: {
- /* DP HPD short pulse. Passive DP dongle will not
- * have short pulse
- */
- if (reason != DETECT_REASON_HPDRX) {
- /* Check whether DP signal detected: if not -
- * we assume signal is DVI; it could be corrected
- * to HDMI after dongle detection
- */
- if (!dm_helpers_is_dp_sink_present(link))
- result = SIGNAL_TYPE_DVI_SINGLE_LINK;
- }
- }
- break;
- default:
- break;
- }
-
- return result;
-}
-
-static enum signal_type decide_signal_from_strap_and_dongle_type(enum display_dongle_type dongle_type,
- struct audio_support *audio_support)
-{
- enum signal_type signal = SIGNAL_TYPE_NONE;
-
- switch (dongle_type) {
- case DISPLAY_DONGLE_DP_HDMI_DONGLE:
- if (audio_support->hdmi_audio_on_dongle)
- signal = SIGNAL_TYPE_HDMI_TYPE_A;
- else
- signal = SIGNAL_TYPE_DVI_SINGLE_LINK;
- break;
- case DISPLAY_DONGLE_DP_DVI_DONGLE:
- signal = SIGNAL_TYPE_DVI_SINGLE_LINK;
- break;
- case DISPLAY_DONGLE_DP_HDMI_MISMATCHED_DONGLE:
- if (audio_support->hdmi_audio_native)
- signal = SIGNAL_TYPE_HDMI_TYPE_A;
- else
- signal = SIGNAL_TYPE_DVI_SINGLE_LINK;
- break;
- default:
- signal = SIGNAL_TYPE_NONE;
- break;
- }
-
- return signal;
-}
-
-static enum signal_type dp_passive_dongle_detection(struct ddc_service *ddc,
- struct display_sink_capability *sink_cap,
- struct audio_support *audio_support)
-{
- dal_ddc_service_i2c_query_dp_dual_mode_adaptor(ddc, sink_cap);
-
- return decide_signal_from_strap_and_dongle_type(sink_cap->dongle_type,
- audio_support);
-}
-
-static void link_disconnect_sink(struct dc_link *link)
-{
- if (link->local_sink) {
- dc_sink_release(link->local_sink);
- link->local_sink = NULL;
- }
-
- link->dpcd_sink_count = 0;
- //link->dpcd_caps.dpcd_rev.raw = 0;
-}
-
-static void link_disconnect_remap(struct dc_sink *prev_sink, struct dc_link *link)
-{
- dc_sink_release(link->local_sink);
- link->local_sink = prev_sink;
-}
-
-#if defined(CONFIG_DRM_AMD_DC_HDCP)
-bool dc_link_is_hdcp14(struct dc_link *link, enum signal_type signal)
-{
- bool ret = false;
-
- switch (signal) {
- case SIGNAL_TYPE_DISPLAY_PORT:
- case SIGNAL_TYPE_DISPLAY_PORT_MST:
- ret = link->hdcp_caps.bcaps.bits.HDCP_CAPABLE;
- break;
- case SIGNAL_TYPE_DVI_SINGLE_LINK:
- case SIGNAL_TYPE_DVI_DUAL_LINK:
- case SIGNAL_TYPE_HDMI_TYPE_A:
- /* HDMI doesn't tell us its HDCP(1.4) capability, so assume to always be capable,
- * we can poll for bksv but some displays have an issue with this. Since its so rare
- * for a display to not be 1.4 capable, this assumtion is ok
- */
- ret = true;
- break;
- default:
- break;
- }
- return ret;
-}
-
-bool dc_link_is_hdcp22(struct dc_link *link, enum signal_type signal)
-{
- bool ret = false;
-
- switch (signal) {
- case SIGNAL_TYPE_DISPLAY_PORT:
- case SIGNAL_TYPE_DISPLAY_PORT_MST:
- ret = (link->hdcp_caps.bcaps.bits.HDCP_CAPABLE &&
- link->hdcp_caps.rx_caps.fields.byte0.hdcp_capable &&
- (link->hdcp_caps.rx_caps.fields.version == 0x2)) ? 1 : 0;
- break;
- case SIGNAL_TYPE_DVI_SINGLE_LINK:
- case SIGNAL_TYPE_DVI_DUAL_LINK:
- case SIGNAL_TYPE_HDMI_TYPE_A:
- ret = (link->hdcp_caps.rx_caps.fields.version == 0x4) ? 1:0;
- break;
- default:
- break;
- }
-
- return ret;
-}
-
-static void query_hdcp_capability(enum signal_type signal, struct dc_link *link)
-{
- struct hdcp_protection_message msg22;
- struct hdcp_protection_message msg14;
-
- memset(&msg22, 0, sizeof(struct hdcp_protection_message));
- memset(&msg14, 0, sizeof(struct hdcp_protection_message));
- memset(link->hdcp_caps.rx_caps.raw, 0,
- sizeof(link->hdcp_caps.rx_caps.raw));
-
- if ((link->connector_signal == SIGNAL_TYPE_DISPLAY_PORT &&
- link->ddc->transaction_type ==
- DDC_TRANSACTION_TYPE_I2C_OVER_AUX) ||
- link->connector_signal == SIGNAL_TYPE_EDP) {
- msg22.data = link->hdcp_caps.rx_caps.raw;
- msg22.length = sizeof(link->hdcp_caps.rx_caps.raw);
- msg22.msg_id = HDCP_MESSAGE_ID_RX_CAPS;
- } else {
- msg22.data = &link->hdcp_caps.rx_caps.fields.version;
- msg22.length = sizeof(link->hdcp_caps.rx_caps.fields.version);
- msg22.msg_id = HDCP_MESSAGE_ID_HDCP2VERSION;
- }
- msg22.version = HDCP_VERSION_22;
- msg22.link = HDCP_LINK_PRIMARY;
- msg22.max_retries = 5;
- dc_process_hdcp_msg(signal, link, &msg22);
-
- if (signal == SIGNAL_TYPE_DISPLAY_PORT || signal == SIGNAL_TYPE_DISPLAY_PORT_MST) {
- msg14.data = &link->hdcp_caps.bcaps.raw;
- msg14.length = sizeof(link->hdcp_caps.bcaps.raw);
- msg14.msg_id = HDCP_MESSAGE_ID_READ_BCAPS;
- msg14.version = HDCP_VERSION_14;
- msg14.link = HDCP_LINK_PRIMARY;
- msg14.max_retries = 5;
-
- dc_process_hdcp_msg(signal, link, &msg14);
- }
-
-}
-#endif
-
-static void read_current_link_settings_on_detect(struct dc_link *link)
-{
- union lane_count_set lane_count_set = {0};
- uint8_t link_bw_set;
- uint8_t link_rate_set;
- uint32_t read_dpcd_retry_cnt = 10;
- enum dc_status status = DC_ERROR_UNEXPECTED;
- int i;
- union max_down_spread max_down_spread = {0};
-
- // Read DPCD 00101h to find out the number of lanes currently set
- for (i = 0; i < read_dpcd_retry_cnt; i++) {
- status = core_link_read_dpcd(link,
- DP_LANE_COUNT_SET,
- &lane_count_set.raw,
- sizeof(lane_count_set));
- /* First DPCD read after VDD ON can fail if the particular board
- * does not have HPD pin wired correctly. So if DPCD read fails,
- * which it should never happen, retry a few times. Target worst
- * case scenario of 80 ms.
- */
- if (status == DC_OK) {
- link->cur_link_settings.lane_count =
- lane_count_set.bits.LANE_COUNT_SET;
- break;
- }
-
- msleep(8);
- }
-
- // Read DPCD 00100h to find if standard link rates are set
- core_link_read_dpcd(link, DP_LINK_BW_SET,
- &link_bw_set, sizeof(link_bw_set));
-
- if (link_bw_set == 0) {
- if (link->connector_signal == SIGNAL_TYPE_EDP) {
- /* If standard link rates are not being used,
- * Read DPCD 00115h to find the edp link rate set used
- */
- core_link_read_dpcd(link, DP_LINK_RATE_SET,
- &link_rate_set, sizeof(link_rate_set));
-
- // edp_supported_link_rates_count = 0 for DP
- if (link_rate_set < link->dpcd_caps.edp_supported_link_rates_count) {
- link->cur_link_settings.link_rate =
- link->dpcd_caps.edp_supported_link_rates[link_rate_set];
- link->cur_link_settings.link_rate_set = link_rate_set;
- link->cur_link_settings.use_link_rate_set = true;
- }
- } else {
- // Link Rate not found. Seamless boot may not work.
- ASSERT(false);
- }
- } else {
- link->cur_link_settings.link_rate = link_bw_set;
- link->cur_link_settings.use_link_rate_set = false;
- }
- // Read DPCD 00003h to find the max down spread.
- core_link_read_dpcd(link, DP_MAX_DOWNSPREAD,
- &max_down_spread.raw, sizeof(max_down_spread));
- link->cur_link_settings.link_spread =
- max_down_spread.bits.MAX_DOWN_SPREAD ?
- LINK_SPREAD_05_DOWNSPREAD_30KHZ : LINK_SPREAD_DISABLED;
-}
-
-static bool detect_dp(struct dc_link *link,
- struct display_sink_capability *sink_caps,
- enum dc_detect_reason reason)
-{
- struct audio_support *audio_support = &link->dc->res_pool->audio_support;
-
- sink_caps->signal = link_detect_sink(link, reason);
- sink_caps->transaction_type =
- get_ddc_transaction_type(sink_caps->signal);
-
- if (sink_caps->transaction_type == DDC_TRANSACTION_TYPE_I2C_OVER_AUX) {
- sink_caps->signal = SIGNAL_TYPE_DISPLAY_PORT;
- if (!detect_dp_sink_caps(link))
- return false;
-
- if (is_dp_branch_device(link))
- /* DP SST branch */
- link->type = dc_connection_sst_branch;
- } else {
- /* DP passive dongles */
- sink_caps->signal = dp_passive_dongle_detection(link->ddc,
- sink_caps,
- audio_support);
- link->dpcd_caps.dongle_type = sink_caps->dongle_type;
- link->dpcd_caps.is_dongle_type_one = sink_caps->is_dongle_type_one;
- link->dpcd_caps.dpcd_rev.raw = 0;
- }
-
- return true;
-}
-
-static bool is_same_edid(struct dc_edid *old_edid, struct dc_edid *new_edid)
-{
- if (old_edid->length != new_edid->length)
- return false;
-
- if (new_edid->length == 0)
- return false;
-
- return (memcmp(old_edid->raw_edid,
- new_edid->raw_edid, new_edid->length) == 0);
-}
-
-static bool wait_for_entering_dp_alt_mode(struct dc_link *link)
-{
- /**
- * something is terribly wrong if time out is > 200ms. (5Hz)
- * 500 microseconds * 400 tries us 200 ms
- **/
- unsigned int sleep_time_in_microseconds = 500;
- unsigned int tries_allowed = 400;
- bool is_in_alt_mode;
- unsigned long long enter_timestamp;
- unsigned long long finish_timestamp;
- unsigned long long time_taken_in_ns;
- int tries_taken;
-
- DC_LOGGER_INIT(link->ctx->logger);
-
- if (!link->link_enc->funcs->is_in_alt_mode)
- return true;
-
- is_in_alt_mode = link->link_enc->funcs->is_in_alt_mode(link->link_enc);
- DC_LOG_WARNING("DP Alt mode state on HPD: %d\n", is_in_alt_mode);
-
- if (is_in_alt_mode)
- return true;
-
- enter_timestamp = dm_get_timestamp(link->ctx);
-
- for (tries_taken = 0; tries_taken < tries_allowed; tries_taken++) {
- udelay(sleep_time_in_microseconds);
- /* ask the link if alt mode is enabled, if so return ok */
- if (link->link_enc->funcs->is_in_alt_mode(link->link_enc)) {
- finish_timestamp = dm_get_timestamp(link->ctx);
- time_taken_in_ns =
- dm_get_elapse_time_in_ns(link->ctx,
- finish_timestamp,
- enter_timestamp);
- DC_LOG_WARNING("Alt mode entered finished after %llu ms\n",
- div_u64(time_taken_in_ns, 1000000));
- return true;
- }
- }
- finish_timestamp = dm_get_timestamp(link->ctx);
- time_taken_in_ns = dm_get_elapse_time_in_ns(link->ctx, finish_timestamp,
- enter_timestamp);
- DC_LOG_WARNING("Alt mode has timed out after %llu ms\n",
- div_u64(time_taken_in_ns, 1000000));
- return false;
-}
-
-static void apply_dpia_mst_dsc_always_on_wa(struct dc_link *link)
-{
- /* Apply work around for tunneled MST on certain USB4 docks. Always use DSC if dock
- * reports DSC support.
- */
- if (link->ep_type == DISPLAY_ENDPOINT_USB4_DPIA &&
- link->type == dc_connection_mst_branch &&
- link->dpcd_caps.branch_dev_id == DP_BRANCH_DEVICE_ID_90CC24 &&
- link->dpcd_caps.branch_hw_revision == DP_BRANCH_HW_REV_20 &&
- link->dpcd_caps.dsc_caps.dsc_basic_caps.fields.dsc_support.DSC_SUPPORT &&
- !link->dc->debug.dpia_debug.bits.disable_mst_dsc_work_around)
- link->wa_flags.dpia_mst_dsc_always_on = true;
-}
-
-static void revert_dpia_mst_dsc_always_on_wa(struct dc_link *link)
-{
- /* Disable work around which keeps DSC on for tunneled MST on certain USB4 docks. */
- if (link->ep_type == DISPLAY_ENDPOINT_USB4_DPIA)
- link->wa_flags.dpia_mst_dsc_always_on = false;
-}
-
-static bool discover_dp_mst_topology(struct dc_link *link, enum dc_detect_reason reason)
-{
- DC_LOGGER_INIT(link->ctx->logger);
-
- LINK_INFO("link=%d, mst branch is now Connected\n",
- link->link_index);
-
- link->type = dc_connection_mst_branch;
- apply_dpia_mst_dsc_always_on_wa(link);
-
- dm_helpers_dp_update_branch_info(link->ctx, link);
- if (dm_helpers_dp_mst_start_top_mgr(link->ctx,
- link, (reason == DETECT_REASON_BOOT || reason == DETECT_REASON_RESUMEFROMS3S4))) {
- link_disconnect_sink(link);
- } else {
- link->type = dc_connection_sst_branch;
- }
-
- return link->type == dc_connection_mst_branch;
-}
-
-bool reset_cur_dp_mst_topology(struct dc_link *link)
-{
- DC_LOGGER_INIT(link->ctx->logger);
-
- LINK_INFO("link=%d, mst branch is now Disconnected\n",
- link->link_index);
-
- revert_dpia_mst_dsc_always_on_wa(link);
- return dm_helpers_dp_mst_stop_top_mgr(link->ctx, link);
-}
-
-static bool should_prepare_phy_clocks_for_link_verification(const struct dc *dc,
- enum dc_detect_reason reason)
-{
- int i;
- bool can_apply_seamless_boot = false;
-
- for (i = 0; i < dc->current_state->stream_count; i++) {
- if (dc->current_state->streams[i]->apply_seamless_boot_optimization) {
- can_apply_seamless_boot = true;
- break;
- }
- }
-
- return !can_apply_seamless_boot && reason != DETECT_REASON_BOOT;
-}
-
-static void prepare_phy_clocks_for_destructive_link_verification(const struct dc *dc)
-{
- dc_z10_restore(dc);
- clk_mgr_exit_optimized_pwr_state(dc, dc->clk_mgr);
-}
-
-static void restore_phy_clocks_for_destructive_link_verification(const struct dc *dc)
-{
- clk_mgr_optimize_pwr_state(dc, dc->clk_mgr);
-}
-
-static void set_all_streams_dpms_off_for_link(struct dc_link *link)
-{
- int i;
- struct pipe_ctx *pipe_ctx;
- struct dc_stream_update stream_update;
- bool dpms_off = true;
- struct link_resource link_res = {0};
-
- memset(&stream_update, 0, sizeof(stream_update));
- stream_update.dpms_off = &dpms_off;
-
- for (i = 0; i < MAX_PIPES; i++) {
- pipe_ctx = &link->dc->current_state->res_ctx.pipe_ctx[i];
- if (pipe_ctx && pipe_ctx->stream && !pipe_ctx->stream->dpms_off &&
- pipe_ctx->stream->link == link && !pipe_ctx->prev_odm_pipe) {
- stream_update.stream = pipe_ctx->stream;
- dc_commit_updates_for_stream(link->ctx->dc, NULL, 0,
- pipe_ctx->stream, &stream_update,
- link->ctx->dc->current_state);
- }
- }
-
- /* link can be also enabled by vbios. In this case it is not recorded
- * in pipe_ctx. Disable link phy here to make sure it is completely off
- */
- dp_disable_link_phy(link, &link_res, link->connector_signal);
-}
-
-static void verify_link_capability_destructive(struct dc_link *link,
- struct dc_sink *sink,
- enum dc_detect_reason reason)
-{
- bool should_prepare_phy_clocks =
- should_prepare_phy_clocks_for_link_verification(link->dc, reason);
-
- if (should_prepare_phy_clocks)
- prepare_phy_clocks_for_destructive_link_verification(link->dc);
-
- if (dc_is_dp_signal(link->local_sink->sink_signal)) {
- struct dc_link_settings known_limit_link_setting =
- dp_get_max_link_cap(link);
- set_all_streams_dpms_off_for_link(link);
- dp_verify_link_cap_with_retries(
- link, &known_limit_link_setting,
- LINK_TRAINING_MAX_VERIFY_RETRY);
- } else {
- ASSERT(0);
- }
-
- if (should_prepare_phy_clocks)
- restore_phy_clocks_for_destructive_link_verification(link->dc);
-}
-
-static void verify_link_capability_non_destructive(struct dc_link *link)
-{
- if (dc_is_dp_signal(link->local_sink->sink_signal)) {
- if (dc_is_embedded_signal(link->local_sink->sink_signal) ||
- link->ep_type == DISPLAY_ENDPOINT_USB4_DPIA)
- /* TODO - should we check link encoder's max link caps here?
- * How do we know which link encoder to check from?
- */
- link->verified_link_cap = link->reported_link_cap;
- else
- link->verified_link_cap = dp_get_max_link_cap(link);
- }
-}
-
-static bool should_verify_link_capability_destructively(struct dc_link *link,
- enum dc_detect_reason reason)
-{
- bool destrictive = false;
- struct dc_link_settings max_link_cap;
- bool is_link_enc_unavailable = link->link_enc &&
- link->dc->res_pool->funcs->link_encs_assign &&
- !link_enc_cfg_is_link_enc_avail(
- link->ctx->dc,
- link->link_enc->preferred_engine,
- link);
-
- if (dc_is_dp_signal(link->local_sink->sink_signal)) {
- max_link_cap = dp_get_max_link_cap(link);
- destrictive = true;
-
- if (link->dc->debug.skip_detection_link_training ||
- dc_is_embedded_signal(link->local_sink->sink_signal) ||
- link->ep_type == DISPLAY_ENDPOINT_USB4_DPIA) {
- destrictive = false;
- } else if (dp_get_link_encoding_format(&max_link_cap) ==
- DP_8b_10b_ENCODING) {
- if (link->dpcd_caps.is_mst_capable ||
- is_link_enc_unavailable) {
- destrictive = false;
- }
- }
- }
-
- return destrictive;
-}
-
-static void verify_link_capability(struct dc_link *link, struct dc_sink *sink,
- enum dc_detect_reason reason)
-{
- if (should_verify_link_capability_destructively(link, reason))
- verify_link_capability_destructive(link, sink, reason);
- else
- verify_link_capability_non_destructive(link);
-}
-
-
-/**
- * detect_link_and_local_sink() - Detect if a sink is attached to a given link
- *
- * link->local_sink is created or destroyed as needed.
- *
- * This does not create remote sinks.
- */
-static bool detect_link_and_local_sink(struct dc_link *link,
- enum dc_detect_reason reason)
-{
- struct dc_sink_init_data sink_init_data = { 0 };
- struct display_sink_capability sink_caps = { 0 };
- uint32_t i;
- bool converter_disable_audio = false;
- struct audio_support *aud_support = &link->dc->res_pool->audio_support;
- bool same_edid = false;
- enum dc_edid_status edid_status;
- struct dc_context *dc_ctx = link->ctx;
- struct dc *dc = dc_ctx->dc;
- struct dc_sink *sink = NULL;
- struct dc_sink *prev_sink = NULL;
- struct dpcd_caps prev_dpcd_caps;
- enum dc_connection_type new_connection_type = dc_connection_none;
- const uint32_t post_oui_delay = 30; // 30ms
-
- DC_LOGGER_INIT(link->ctx->logger);
-
- if (dc_is_virtual_signal(link->connector_signal))
- return false;
-
- if (((link->connector_signal == SIGNAL_TYPE_LVDS ||
- link->connector_signal == SIGNAL_TYPE_EDP) &&
- (!link->dc->config.allow_edp_hotplug_detection)) &&
- link->local_sink) {
- // need to re-write OUI and brightness in resume case
- if (link->connector_signal == SIGNAL_TYPE_EDP &&
- (link->dpcd_sink_ext_caps.bits.oled == 1)) {
- dpcd_set_source_specific_data(link);
- msleep(post_oui_delay);
- dc_link_set_default_brightness_aux(link);
- //TODO: use cached
- }
-
- return true;
- }
-
- if (!dc_link_detect_sink(link, &new_connection_type)) {
- BREAK_TO_DEBUGGER();
- return false;
- }
-
- prev_sink = link->local_sink;
- if (prev_sink) {
- dc_sink_retain(prev_sink);
- memcpy(&prev_dpcd_caps, &link->dpcd_caps, sizeof(struct dpcd_caps));
- }
-
- link_disconnect_sink(link);
- if (new_connection_type != dc_connection_none) {
- link->type = new_connection_type;
- link->link_state_valid = false;
-
- /* From Disconnected-to-Connected. */
- switch (link->connector_signal) {
- case SIGNAL_TYPE_HDMI_TYPE_A: {
- sink_caps.transaction_type = DDC_TRANSACTION_TYPE_I2C;
- if (aud_support->hdmi_audio_native)
- sink_caps.signal = SIGNAL_TYPE_HDMI_TYPE_A;
- else
- sink_caps.signal = SIGNAL_TYPE_DVI_SINGLE_LINK;
- break;
- }
-
- case SIGNAL_TYPE_DVI_SINGLE_LINK: {
- sink_caps.transaction_type = DDC_TRANSACTION_TYPE_I2C;
- sink_caps.signal = SIGNAL_TYPE_DVI_SINGLE_LINK;
- break;
- }
-
- case SIGNAL_TYPE_DVI_DUAL_LINK: {
- sink_caps.transaction_type = DDC_TRANSACTION_TYPE_I2C;
- sink_caps.signal = SIGNAL_TYPE_DVI_DUAL_LINK;
- break;
- }
-
- case SIGNAL_TYPE_LVDS: {
- sink_caps.transaction_type = DDC_TRANSACTION_TYPE_I2C;
- sink_caps.signal = SIGNAL_TYPE_LVDS;
- break;
- }
-
- case SIGNAL_TYPE_EDP: {
- read_current_link_settings_on_detect(link);
-
- detect_edp_sink_caps(link);
- read_current_link_settings_on_detect(link);
-
- /* Disable power sequence on MIPI panel + converter
- */
- if (dc->config.enable_mipi_converter_optimization &&
- dc_ctx->dce_version == DCN_VERSION_3_01 &&
- link->dpcd_caps.sink_dev_id == DP_BRANCH_DEVICE_ID_0022B9 &&
- memcmp(&link->dpcd_caps.branch_dev_name, DP_SINK_BRANCH_DEV_NAME_7580,
- sizeof(link->dpcd_caps.branch_dev_name)) == 0) {
- dc->config.edp_no_power_sequencing = true;
-
- if (!link->dpcd_caps.set_power_state_capable_edp)
- link->wa_flags.dp_keep_receiver_powered = true;
- }
-
- sink_caps.transaction_type = DDC_TRANSACTION_TYPE_I2C_OVER_AUX;
- sink_caps.signal = SIGNAL_TYPE_EDP;
- break;
- }
-
- case SIGNAL_TYPE_DISPLAY_PORT: {
- /* wa HPD high coming too early*/
- if (link->ep_type == DISPLAY_ENDPOINT_PHY &&
- link->link_enc->features.flags.bits.DP_IS_USB_C == 1) {
- /* if alt mode times out, return false */
- if (!wait_for_entering_dp_alt_mode(link))
- return false;
- }
-
- if (!detect_dp(link, &sink_caps, reason)) {
- if (prev_sink)
- dc_sink_release(prev_sink);
- return false;
- }
-
- /* Active SST downstream branch device unplug*/
- if (link->type == dc_connection_sst_branch &&
- link->dpcd_caps.sink_count.bits.SINK_COUNT == 0) {
- if (prev_sink)
- /* Downstream unplug */
- dc_sink_release(prev_sink);
- return true;
- }
-
- /* disable audio for non DP to HDMI active sst converter */
- if (link->type == dc_connection_sst_branch &&
- is_dp_active_dongle(link) &&
- (link->dpcd_caps.dongle_type !=
- DISPLAY_DONGLE_DP_HDMI_CONVERTER))
- converter_disable_audio = true;
- break;
- }
-
- default:
- DC_ERROR("Invalid connector type! signal:%d\n",
- link->connector_signal);
- if (prev_sink)
- dc_sink_release(prev_sink);
- return false;
- } /* switch() */
-
- if (link->dpcd_caps.sink_count.bits.SINK_COUNT)
- link->dpcd_sink_count =
- link->dpcd_caps.sink_count.bits.SINK_COUNT;
- else
- link->dpcd_sink_count = 1;
-
- dal_ddc_service_set_transaction_type(link->ddc,
- sink_caps.transaction_type);
-
- link->aux_mode =
- dal_ddc_service_is_in_aux_transaction_mode(link->ddc);
-
- sink_init_data.link = link;
- sink_init_data.sink_signal = sink_caps.signal;
-
- sink = dc_sink_create(&sink_init_data);
- if (!sink) {
- DC_ERROR("Failed to create sink!\n");
- if (prev_sink)
- dc_sink_release(prev_sink);
- return false;
- }
-
- sink->link->dongle_max_pix_clk = sink_caps.max_hdmi_pixel_clock;
- sink->converter_disable_audio = converter_disable_audio;
-
- /* dc_sink_create returns a new reference */
- link->local_sink = sink;
-
- edid_status = dm_helpers_read_local_edid(link->ctx,
- link, sink);
-
- switch (edid_status) {
- case EDID_BAD_CHECKSUM:
- DC_LOG_ERROR("EDID checksum invalid.\n");
- break;
- case EDID_PARTIAL_VALID:
- DC_LOG_ERROR("Partial EDID valid, abandon invalid blocks.\n");
- break;
- case EDID_NO_RESPONSE:
- DC_LOG_ERROR("No EDID read.\n");
- /*
- * Abort detection for non-DP connectors if we have
- * no EDID
- *
- * DP needs to report as connected if HDP is high
- * even if we have no EDID in order to go to
- * fail-safe mode
- */
- if (dc_is_hdmi_signal(link->connector_signal) ||
- dc_is_dvi_signal(link->connector_signal)) {
- if (prev_sink)
- dc_sink_release(prev_sink);
-
- return false;
- }
-
- if (link->type == dc_connection_sst_branch &&
- link->dpcd_caps.dongle_type ==
- DISPLAY_DONGLE_DP_VGA_CONVERTER &&
- reason == DETECT_REASON_HPDRX) {
- /* Abort detection for DP-VGA adapters when EDID
- * can't be read and detection reason is VGA-side
- * hotplug
- */
- if (prev_sink)
- dc_sink_release(prev_sink);
- link_disconnect_sink(link);
-
- return true;
- }
-
- break;
- default:
- break;
- }
-
- // Check if edid is the same
- if ((prev_sink) &&
- (edid_status == EDID_THE_SAME || edid_status == EDID_OK))
- same_edid = is_same_edid(&prev_sink->dc_edid,
- &sink->dc_edid);
-
- if (sink->edid_caps.panel_patch.skip_scdc_overwrite)
- link->ctx->dc->debug.hdmi20_disable = true;
-
- if (link->connector_signal == SIGNAL_TYPE_DISPLAY_PORT &&
- sink_caps.transaction_type ==
- DDC_TRANSACTION_TYPE_I2C_OVER_AUX) {
- /*
- * TODO debug why Dell 2413 doesn't like
- * two link trainings
- */
-#if defined(CONFIG_DRM_AMD_DC_HDCP)
- query_hdcp_capability(sink->sink_signal, link);
-#endif
- } else {
- // If edid is the same, then discard new sink and revert back to original sink
- if (same_edid) {
- link_disconnect_remap(prev_sink, link);
- sink = prev_sink;
- prev_sink = NULL;
- }
-#if defined(CONFIG_DRM_AMD_DC_HDCP)
- query_hdcp_capability(sink->sink_signal, link);
-#endif
- }
-
- /* HDMI-DVI Dongle */
- if (sink->sink_signal == SIGNAL_TYPE_HDMI_TYPE_A &&
- !sink->edid_caps.edid_hdmi)
- sink->sink_signal = SIGNAL_TYPE_DVI_SINGLE_LINK;
-
- if (link->local_sink && dc_is_dp_signal(sink_caps.signal))
- dp_trace_init(link);
-
- /* Connectivity log: detection */
- for (i = 0; i < sink->dc_edid.length / DC_EDID_BLOCK_SIZE; i++) {
- CONN_DATA_DETECT(link,
- &sink->dc_edid.raw_edid[i * DC_EDID_BLOCK_SIZE],
- DC_EDID_BLOCK_SIZE,
- "%s: [Block %d] ", sink->edid_caps.display_name, i);
- }
-
- DC_LOG_DETECTION_EDID_PARSER("%s: "
- "manufacturer_id = %X, "
- "product_id = %X, "
- "serial_number = %X, "
- "manufacture_week = %d, "
- "manufacture_year = %d, "
- "display_name = %s, "
- "speaker_flag = %d, "
- "audio_mode_count = %d\n",
- __func__,
- sink->edid_caps.manufacturer_id,
- sink->edid_caps.product_id,
- sink->edid_caps.serial_number,
- sink->edid_caps.manufacture_week,
- sink->edid_caps.manufacture_year,
- sink->edid_caps.display_name,
- sink->edid_caps.speaker_flags,
- sink->edid_caps.audio_mode_count);
-
- for (i = 0; i < sink->edid_caps.audio_mode_count; i++) {
- DC_LOG_DETECTION_EDID_PARSER("%s: mode number = %d, "
- "format_code = %d, "
- "channel_count = %d, "
- "sample_rate = %d, "
- "sample_size = %d\n",
- __func__,
- i,
- sink->edid_caps.audio_modes[i].format_code,
- sink->edid_caps.audio_modes[i].channel_count,
- sink->edid_caps.audio_modes[i].sample_rate,
- sink->edid_caps.audio_modes[i].sample_size);
- }
-
- if (link->connector_signal == SIGNAL_TYPE_EDP) {
- /* Init dc_panel_config by HW config */
- if (dc_ctx->dc->res_pool->funcs->get_panel_config_defaults)
- dc_ctx->dc->res_pool->funcs->get_panel_config_defaults(&link->panel_config);
- /* Pickup base DM settings */
- dm_helpers_init_panel_settings(dc_ctx, &link->panel_config, sink);
- // Override dc_panel_config if system has specific settings
- dm_helpers_override_panel_settings(dc_ctx, &link->panel_config);
- }
-
- } else {
- /* From Connected-to-Disconnected. */
- link->type = dc_connection_none;
- sink_caps.signal = SIGNAL_TYPE_NONE;
- /* When we unplug a passive DP-HDMI dongle connection, dongle_max_pix_clk
- * is not cleared. If we emulate a DP signal on this connection, it thinks
- * the dongle is still there and limits the number of modes we can emulate.
- * Clear dongle_max_pix_clk on disconnect to fix this
- */
- link->dongle_max_pix_clk = 0;
-
- dc_link_clear_dprx_states(link);
- dp_trace_reset(link);
- }
-
- LINK_INFO("link=%d, dc_sink_in=%p is now %s prev_sink=%p edid same=%d\n",
- link->link_index, sink,
- (sink_caps.signal ==
- SIGNAL_TYPE_NONE ? "Disconnected" : "Connected"),
- prev_sink, same_edid);
-
- if (prev_sink)
- dc_sink_release(prev_sink);
-
- return true;
-}
-
-bool dc_link_detect(struct dc_link *link, enum dc_detect_reason reason)
-{
- bool is_local_sink_detect_success;
- bool is_delegated_to_mst_top_mgr = false;
- enum dc_connection_type pre_link_type = link->type;
-
- is_local_sink_detect_success = detect_link_and_local_sink(link, reason);
-
- if (is_local_sink_detect_success && link->local_sink)
- verify_link_capability(link, link->local_sink, reason);
-
- if (is_local_sink_detect_success && link->local_sink &&
- dc_is_dp_signal(link->local_sink->sink_signal) &&
- link->dpcd_caps.is_mst_capable)
- is_delegated_to_mst_top_mgr = discover_dp_mst_topology(link, reason);
-
- if (is_local_sink_detect_success &&
- pre_link_type == dc_connection_mst_branch &&
- link->type != dc_connection_mst_branch)
- is_delegated_to_mst_top_mgr = reset_cur_dp_mst_topology(link);
-
- return is_local_sink_detect_success && !is_delegated_to_mst_top_mgr;
-}
-
-bool dc_link_get_hpd_state(struct dc_link *dc_link)
-{
- uint32_t state;
-
- dal_gpio_lock_pin(dc_link->hpd_gpio);
- dal_gpio_get_value(dc_link->hpd_gpio, &state);
- dal_gpio_unlock_pin(dc_link->hpd_gpio);
-
- return state;
-}
-
-static enum hpd_source_id get_hpd_line(struct dc_link *link)
-{
- struct gpio *hpd;
- enum hpd_source_id hpd_id;
-
- hpd_id = HPD_SOURCEID_UNKNOWN;
-
- hpd = get_hpd_gpio(link->ctx->dc_bios, link->link_id,
- link->ctx->gpio_service);
-
- if (hpd) {
- switch (dal_irq_get_source(hpd)) {
- case DC_IRQ_SOURCE_HPD1:
- hpd_id = HPD_SOURCEID1;
- break;
- case DC_IRQ_SOURCE_HPD2:
- hpd_id = HPD_SOURCEID2;
- break;
- case DC_IRQ_SOURCE_HPD3:
- hpd_id = HPD_SOURCEID3;
- break;
- case DC_IRQ_SOURCE_HPD4:
- hpd_id = HPD_SOURCEID4;
- break;
- case DC_IRQ_SOURCE_HPD5:
- hpd_id = HPD_SOURCEID5;
- break;
- case DC_IRQ_SOURCE_HPD6:
- hpd_id = HPD_SOURCEID6;
- break;
- default:
- BREAK_TO_DEBUGGER();
- break;
- }
-
- dal_gpio_destroy_irq(&hpd);
- }
-
- return hpd_id;
-}
-
-static enum channel_id get_ddc_line(struct dc_link *link)
-{
- struct ddc *ddc;
- enum channel_id channel;
-
- channel = CHANNEL_ID_UNKNOWN;
-
- ddc = dal_ddc_service_get_ddc_pin(link->ddc);
-
- if (ddc) {
- switch (dal_ddc_get_line(ddc)) {
- case GPIO_DDC_LINE_DDC1:
- channel = CHANNEL_ID_DDC1;
- break;
- case GPIO_DDC_LINE_DDC2:
- channel = CHANNEL_ID_DDC2;
- break;
- case GPIO_DDC_LINE_DDC3:
- channel = CHANNEL_ID_DDC3;
- break;
- case GPIO_DDC_LINE_DDC4:
- channel = CHANNEL_ID_DDC4;
- break;
- case GPIO_DDC_LINE_DDC5:
- channel = CHANNEL_ID_DDC5;
- break;
- case GPIO_DDC_LINE_DDC6:
- channel = CHANNEL_ID_DDC6;
- break;
- case GPIO_DDC_LINE_DDC_VGA:
- channel = CHANNEL_ID_DDC_VGA;
- break;
- case GPIO_DDC_LINE_I2C_PAD:
- channel = CHANNEL_ID_I2C_PAD;
- break;
- default:
- BREAK_TO_DEBUGGER();
- break;
- }
- }
-
- return channel;
-}
-
-static enum transmitter translate_encoder_to_transmitter(struct graphics_object_id encoder)
-{
- switch (encoder.id) {
- case ENCODER_ID_INTERNAL_UNIPHY:
- switch (encoder.enum_id) {
- case ENUM_ID_1:
- return TRANSMITTER_UNIPHY_A;
- case ENUM_ID_2:
- return TRANSMITTER_UNIPHY_B;
- default:
- return TRANSMITTER_UNKNOWN;
- }
- break;
- case ENCODER_ID_INTERNAL_UNIPHY1:
- switch (encoder.enum_id) {
- case ENUM_ID_1:
- return TRANSMITTER_UNIPHY_C;
- case ENUM_ID_2:
- return TRANSMITTER_UNIPHY_D;
- default:
- return TRANSMITTER_UNKNOWN;
- }
- break;
- case ENCODER_ID_INTERNAL_UNIPHY2:
- switch (encoder.enum_id) {
- case ENUM_ID_1:
- return TRANSMITTER_UNIPHY_E;
- case ENUM_ID_2:
- return TRANSMITTER_UNIPHY_F;
- default:
- return TRANSMITTER_UNKNOWN;
- }
- break;
- case ENCODER_ID_INTERNAL_UNIPHY3:
- switch (encoder.enum_id) {
- case ENUM_ID_1:
- return TRANSMITTER_UNIPHY_G;
- default:
- return TRANSMITTER_UNKNOWN;
- }
- break;
- case ENCODER_ID_EXTERNAL_NUTMEG:
- switch (encoder.enum_id) {
- case ENUM_ID_1:
- return TRANSMITTER_NUTMEG_CRT;
- default:
- return TRANSMITTER_UNKNOWN;
- }
- break;
- case ENCODER_ID_EXTERNAL_TRAVIS:
- switch (encoder.enum_id) {
- case ENUM_ID_1:
- return TRANSMITTER_TRAVIS_CRT;
- case ENUM_ID_2:
- return TRANSMITTER_TRAVIS_LCD;
- default:
- return TRANSMITTER_UNKNOWN;
- }
- break;
- default:
- return TRANSMITTER_UNKNOWN;
- }
-}
-
-static bool dc_link_construct_legacy(struct dc_link *link,
- const struct link_init_data *init_params)
-{
- uint8_t i;
- struct ddc_service_init_data ddc_service_init_data = { 0 };
- struct dc_context *dc_ctx = init_params->ctx;
- struct encoder_init_data enc_init_data = { 0 };
- struct panel_cntl_init_data panel_cntl_init_data = { 0 };
- struct integrated_info *info;
- struct dc_bios *bios = init_params->dc->ctx->dc_bios;
- const struct dc_vbios_funcs *bp_funcs = bios->funcs;
- struct bp_disp_connector_caps_info disp_connect_caps_info = { 0 };
-
- DC_LOGGER_INIT(dc_ctx->logger);
-
- info = kzalloc(sizeof(*info), GFP_KERNEL);
- if (!info)
- goto create_fail;
-
- link->irq_source_hpd = DC_IRQ_SOURCE_INVALID;
- link->irq_source_hpd_rx = DC_IRQ_SOURCE_INVALID;
-
- link->link_status.dpcd_caps = &link->dpcd_caps;
-
- link->dc = init_params->dc;
- link->ctx = dc_ctx;
- link->link_index = init_params->link_index;
-
- memset(&link->preferred_training_settings, 0,
- sizeof(struct dc_link_training_overrides));
- memset(&link->preferred_link_setting, 0,
- sizeof(struct dc_link_settings));
-
- link->link_id =
- bios->funcs->get_connector_id(bios, init_params->connector_index);
-
- link->ep_type = DISPLAY_ENDPOINT_PHY;
-
- DC_LOG_DC("BIOS object table - link_id: %d", link->link_id.id);
-
- if (bios->funcs->get_disp_connector_caps_info) {
- bios->funcs->get_disp_connector_caps_info(bios, link->link_id, &disp_connect_caps_info);
- link->is_internal_display = disp_connect_caps_info.INTERNAL_DISPLAY;
- DC_LOG_DC("BIOS object table - is_internal_display: %d", link->is_internal_display);
- }
-
- if (link->link_id.type != OBJECT_TYPE_CONNECTOR) {
- dm_output_to_console("%s: Invalid Connector ObjectID from Adapter Service for connector index:%d! type %d expected %d\n",
- __func__, init_params->connector_index,
- link->link_id.type, OBJECT_TYPE_CONNECTOR);
- goto create_fail;
- }
-
- if (link->dc->res_pool->funcs->link_init)
- link->dc->res_pool->funcs->link_init(link);
-
- link->hpd_gpio = get_hpd_gpio(link->ctx->dc_bios, link->link_id,
- link->ctx->gpio_service);
-
- if (link->hpd_gpio) {
- dal_gpio_open(link->hpd_gpio, GPIO_MODE_INTERRUPT);
- dal_gpio_unlock_pin(link->hpd_gpio);
- link->irq_source_hpd = dal_irq_get_source(link->hpd_gpio);
-
- DC_LOG_DC("BIOS object table - hpd_gpio id: %d", link->hpd_gpio->id);
- DC_LOG_DC("BIOS object table - hpd_gpio en: %d", link->hpd_gpio->en);
- }
-
- switch (link->link_id.id) {
- case CONNECTOR_ID_HDMI_TYPE_A:
- link->connector_signal = SIGNAL_TYPE_HDMI_TYPE_A;
-
- break;
- case CONNECTOR_ID_SINGLE_LINK_DVID:
- case CONNECTOR_ID_SINGLE_LINK_DVII:
- link->connector_signal = SIGNAL_TYPE_DVI_SINGLE_LINK;
- break;
- case CONNECTOR_ID_DUAL_LINK_DVID:
- case CONNECTOR_ID_DUAL_LINK_DVII:
- link->connector_signal = SIGNAL_TYPE_DVI_DUAL_LINK;
- break;
- case CONNECTOR_ID_DISPLAY_PORT:
- case CONNECTOR_ID_USBC:
- link->connector_signal = SIGNAL_TYPE_DISPLAY_PORT;
-
- if (link->hpd_gpio)
- link->irq_source_hpd_rx =
- dal_irq_get_rx_source(link->hpd_gpio);
-
- break;
- case CONNECTOR_ID_EDP:
- link->connector_signal = SIGNAL_TYPE_EDP;
-
- if (link->hpd_gpio) {
- if (!link->dc->config.allow_edp_hotplug_detection)
- link->irq_source_hpd = DC_IRQ_SOURCE_INVALID;
-
- switch (link->dc->config.allow_edp_hotplug_detection) {
- case 1: // only the 1st eDP handles hotplug
- if (link->link_index == 0)
- link->irq_source_hpd_rx =
- dal_irq_get_rx_source(link->hpd_gpio);
- else
- link->irq_source_hpd = DC_IRQ_SOURCE_INVALID;
- break;
- case 2: // only the 2nd eDP handles hotplug
- if (link->link_index == 1)
- link->irq_source_hpd_rx =
- dal_irq_get_rx_source(link->hpd_gpio);
- else
- link->irq_source_hpd = DC_IRQ_SOURCE_INVALID;
- break;
- default:
- break;
- }
- }
-
- break;
- case CONNECTOR_ID_LVDS:
- link->connector_signal = SIGNAL_TYPE_LVDS;
- break;
- default:
- DC_LOG_WARNING("Unsupported Connector type:%d!\n",
- link->link_id.id);
- goto create_fail;
- }
-
- /* TODO: #DAL3 Implement id to str function.*/
- LINK_INFO("Connector[%d] description:"
- "signal %d\n",
- init_params->connector_index,
- link->connector_signal);
-
- ddc_service_init_data.ctx = link->ctx;
- ddc_service_init_data.id = link->link_id;
- ddc_service_init_data.link = link;
- link->ddc = dal_ddc_service_create(&ddc_service_init_data);
-
- if (!link->ddc) {
- DC_ERROR("Failed to create ddc_service!\n");
- goto ddc_create_fail;
- }
-
- if (!link->ddc->ddc_pin) {
- DC_ERROR("Failed to get I2C info for connector!\n");
- goto ddc_create_fail;
- }
-
- link->ddc_hw_inst =
- dal_ddc_get_line(dal_ddc_service_get_ddc_pin(link->ddc));
-
-
- if (link->dc->res_pool->funcs->panel_cntl_create &&
- (link->link_id.id == CONNECTOR_ID_EDP ||
- link->link_id.id == CONNECTOR_ID_LVDS)) {
- panel_cntl_init_data.ctx = dc_ctx;
- panel_cntl_init_data.inst =
- panel_cntl_init_data.ctx->dc_edp_id_count;
- link->panel_cntl =
- link->dc->res_pool->funcs->panel_cntl_create(
- &panel_cntl_init_data);
- panel_cntl_init_data.ctx->dc_edp_id_count++;
-
- if (link->panel_cntl == NULL) {
- DC_ERROR("Failed to create link panel_cntl!\n");
- goto panel_cntl_create_fail;
- }
- }
-
- enc_init_data.ctx = dc_ctx;
- bp_funcs->get_src_obj(dc_ctx->dc_bios, link->link_id, 0,
- &enc_init_data.encoder);
- enc_init_data.connector = link->link_id;
- enc_init_data.channel = get_ddc_line(link);
- enc_init_data.hpd_source = get_hpd_line(link);
-
- link->hpd_src = enc_init_data.hpd_source;
-
- enc_init_data.transmitter =
- translate_encoder_to_transmitter(enc_init_data.encoder);
- link->link_enc =
- link->dc->res_pool->funcs->link_enc_create(dc_ctx, &enc_init_data);
-
- if (!link->link_enc) {
- DC_ERROR("Failed to create link encoder!\n");
- goto link_enc_create_fail;
- }
-
- DC_LOG_DC("BIOS object table - DP_IS_USB_C: %d", link->link_enc->features.flags.bits.DP_IS_USB_C);
- DC_LOG_DC("BIOS object table - IS_DP2_CAPABLE: %d", link->link_enc->features.flags.bits.IS_DP2_CAPABLE);
-
- /* Update link encoder tracking variables. These are used for the dynamic
- * assignment of link encoders to streams.
- */
- link->eng_id = link->link_enc->preferred_engine;
- link->dc->res_pool->link_encoders[link->eng_id - ENGINE_ID_DIGA] = link->link_enc;
- link->dc->res_pool->dig_link_enc_count++;
-
- link->link_enc_hw_inst = link->link_enc->transmitter;
-
- for (i = 0; i < 4; i++) {
- if (bp_funcs->get_device_tag(dc_ctx->dc_bios,
- link->link_id, i,
- &link->device_tag) != BP_RESULT_OK) {
- DC_ERROR("Failed to find device tag!\n");
- goto device_tag_fail;
- }
-
- /* Look for device tag that matches connector signal,
- * CRT for rgb, LCD for other supported signal tyes
- */
- if (!bp_funcs->is_device_id_supported(dc_ctx->dc_bios,
- link->device_tag.dev_id))
- continue;
- if (link->device_tag.dev_id.device_type == DEVICE_TYPE_CRT &&
- link->connector_signal != SIGNAL_TYPE_RGB)
- continue;
- if (link->device_tag.dev_id.device_type == DEVICE_TYPE_LCD &&
- link->connector_signal == SIGNAL_TYPE_RGB)
- continue;
-
- DC_LOG_DC("BIOS object table - device_tag.acpi_device: %d", link->device_tag.acpi_device);
- DC_LOG_DC("BIOS object table - device_tag.dev_id.device_type: %d", link->device_tag.dev_id.device_type);
- DC_LOG_DC("BIOS object table - device_tag.dev_id.enum_id: %d", link->device_tag.dev_id.enum_id);
- break;
- }
-
- if (bios->integrated_info)
- memcpy(info, bios->integrated_info, sizeof(*info));
-
- /* Look for channel mapping corresponding to connector and device tag */
- for (i = 0; i < MAX_NUMBER_OF_EXT_DISPLAY_PATH; i++) {
- struct external_display_path *path =
- &info->ext_disp_conn_info.path[i];
-
- if (path->device_connector_id.enum_id == link->link_id.enum_id &&
- path->device_connector_id.id == link->link_id.id &&
- path->device_connector_id.type == link->link_id.type) {
- if (link->device_tag.acpi_device != 0 &&
- path->device_acpi_enum == link->device_tag.acpi_device) {
- link->ddi_channel_mapping = path->channel_mapping;
- link->chip_caps = path->caps;
- DC_LOG_DC("BIOS object table - ddi_channel_mapping: 0x%04X", link->ddi_channel_mapping.raw);
- DC_LOG_DC("BIOS object table - chip_caps: %d", link->chip_caps);
- } else if (path->device_tag ==
- link->device_tag.dev_id.raw_device_tag) {
- link->ddi_channel_mapping = path->channel_mapping;
- link->chip_caps = path->caps;
- DC_LOG_DC("BIOS object table - ddi_channel_mapping: 0x%04X", link->ddi_channel_mapping.raw);
- DC_LOG_DC("BIOS object table - chip_caps: %d", link->chip_caps);
- }
-
- if (link->chip_caps & EXT_DISPLAY_PATH_CAPS__DP_FIXED_VS_EN) {
- link->bios_forced_drive_settings.VOLTAGE_SWING =
- (info->ext_disp_conn_info.fixdpvoltageswing & 0x3);
- link->bios_forced_drive_settings.PRE_EMPHASIS =
- ((info->ext_disp_conn_info.fixdpvoltageswing >> 2) & 0x3);
- }
-
- break;
- }
- }
-
- if (bios->funcs->get_atom_dc_golden_table)
- bios->funcs->get_atom_dc_golden_table(bios);
-
- /*
- * TODO check if GPIO programmed correctly
- *
- * If GPIO isn't programmed correctly HPD might not rise or drain
- * fast enough, leading to bounces.
- */
- program_hpd_filter(link);
-
- link->psr_settings.psr_vtotal_control_support = false;
- link->psr_settings.psr_version = DC_PSR_VERSION_UNSUPPORTED;
-
- DC_LOG_DC("BIOS object table - %s finished successfully.\n", __func__);
- kfree(info);
- return true;
-device_tag_fail:
- link->link_enc->funcs->destroy(&link->link_enc);
-link_enc_create_fail:
- if (link->panel_cntl != NULL)
- link->panel_cntl->funcs->destroy(&link->panel_cntl);
-panel_cntl_create_fail:
- dal_ddc_service_destroy(&link->ddc);
-ddc_create_fail:
-create_fail:
-
- if (link->hpd_gpio) {
- dal_gpio_destroy_irq(&link->hpd_gpio);
- link->hpd_gpio = NULL;
- }
-
- DC_LOG_DC("BIOS object table - %s failed.\n", __func__);
- kfree(info);
-
- return false;
-}
-
-static bool dc_link_construct_dpia(struct dc_link *link,
- const struct link_init_data *init_params)
-{
- struct ddc_service_init_data ddc_service_init_data = { 0 };
- struct dc_context *dc_ctx = init_params->ctx;
-
- DC_LOGGER_INIT(dc_ctx->logger);
-
- /* Initialized irq source for hpd and hpd rx */
- link->irq_source_hpd = DC_IRQ_SOURCE_INVALID;
- link->irq_source_hpd_rx = DC_IRQ_SOURCE_INVALID;
- link->link_status.dpcd_caps = &link->dpcd_caps;
-
- link->dc = init_params->dc;
- link->ctx = dc_ctx;
- link->link_index = init_params->link_index;
-
- memset(&link->preferred_training_settings, 0,
- sizeof(struct dc_link_training_overrides));
- memset(&link->preferred_link_setting, 0,
- sizeof(struct dc_link_settings));
-
- /* Dummy Init for linkid */
- link->link_id.type = OBJECT_TYPE_CONNECTOR;
- link->link_id.id = CONNECTOR_ID_DISPLAY_PORT;
- link->link_id.enum_id = ENUM_ID_1 + init_params->connector_index;
- link->is_internal_display = false;
- link->connector_signal = SIGNAL_TYPE_DISPLAY_PORT;
- LINK_INFO("Connector[%d] description:signal %d\n",
- init_params->connector_index,
- link->connector_signal);
-
- link->ep_type = DISPLAY_ENDPOINT_USB4_DPIA;
- link->is_dig_mapping_flexible = true;
-
- /* TODO: Initialize link : funcs->link_init */
-
- ddc_service_init_data.ctx = link->ctx;
- ddc_service_init_data.id = link->link_id;
- ddc_service_init_data.link = link;
- /* Set indicator for dpia link so that ddc won't be created */
- ddc_service_init_data.is_dpia_link = true;
-
- link->ddc = dal_ddc_service_create(&ddc_service_init_data);
- if (!link->ddc) {
- DC_ERROR("Failed to create ddc_service!\n");
- goto ddc_create_fail;
- }
-
- /* Set dpia port index : 0 to number of dpia ports */
- link->ddc_hw_inst = init_params->connector_index;
-
- /* TODO: Create link encoder */
-
- link->psr_settings.psr_version = DC_PSR_VERSION_UNSUPPORTED;
-
- /* Some docks seem to NAK I2C writes to segment pointer with mot=0. */
- link->wa_flags.dp_mot_reset_segment = true;
-
- return true;
-
-ddc_create_fail:
- return false;
-}
-
-static bool dc_link_construct(struct dc_link *link,
- const struct link_init_data *init_params)
-{
- /* Handle dpia case */
- if (init_params->is_dpia_link)
- return dc_link_construct_dpia(link, init_params);
- else
- return dc_link_construct_legacy(link, init_params);
-}
-/*******************************************************************************
- * Public functions
- ******************************************************************************/
-struct dc_link *link_create(const struct link_init_data *init_params)
-{
- struct dc_link *link =
- kzalloc(sizeof(*link), GFP_KERNEL);
-
- if (NULL == link)
- goto alloc_fail;
-
- if (false == dc_link_construct(link, init_params))
- goto construct_fail;
-
- /*
- * Must use preferred_link_setting, not reported_link_cap or verified_link_cap,
- * since struct preferred_link_setting won't be reset after S3.
- */
- link->preferred_link_setting.dpcd_source_device_specific_field_support = true;
-
- return link;
-
-construct_fail:
- kfree(link);
-
-alloc_fail:
- return NULL;
-}
-
-void link_destroy(struct dc_link **link)
-{
- dc_link_destruct(*link);
- kfree(*link);
- *link = NULL;
-}
-
-static void enable_stream_features(struct pipe_ctx *pipe_ctx)
-{
- struct dc_stream_state *stream = pipe_ctx->stream;
-
- if (pipe_ctx->stream->signal != SIGNAL_TYPE_DISPLAY_PORT_MST) {
- struct dc_link *link = stream->link;
- union down_spread_ctrl old_downspread;
- union down_spread_ctrl new_downspread;
-
- memset(&old_downspread, 0, sizeof(old_downspread));
-
- core_link_read_dpcd(link, DP_DOWNSPREAD_CTRL,
- &old_downspread.raw, sizeof(old_downspread));
-
- new_downspread.raw = old_downspread.raw;
-
- new_downspread.bits.IGNORE_MSA_TIMING_PARAM =
- (stream->ignore_msa_timing_param) ? 1 : 0;
-
- if (new_downspread.raw != old_downspread.raw) {
- core_link_write_dpcd(link, DP_DOWNSPREAD_CTRL,
- &new_downspread.raw, sizeof(new_downspread));
- }
-
- } else {
- dm_helpers_mst_enable_stream_features(stream);
- }
-}
-
-static enum dc_status enable_link_dp(struct dc_state *state,
- struct pipe_ctx *pipe_ctx)
-{
- struct dc_stream_state *stream = pipe_ctx->stream;
- enum dc_status status;
- bool skip_video_pattern;
- struct dc_link *link = stream->link;
- const struct dc_link_settings *link_settings =
- &pipe_ctx->link_config.dp_link_settings;
- bool fec_enable;
- int i;
- bool apply_seamless_boot_optimization = false;
- uint32_t bl_oled_enable_delay = 50; // in ms
- uint32_t post_oui_delay = 30; // 30ms
- /* Reduce link bandwidth between failed link training attempts. */
- bool do_fallback = false;
-
- // check for seamless boot
- for (i = 0; i < state->stream_count; i++) {
- if (state->streams[i]->apply_seamless_boot_optimization) {
- apply_seamless_boot_optimization = true;
- break;
- }
- }
-
- /* Train with fallback when enabling DPIA link. Conventional links are
- * trained with fallback during sink detection.
- */
- if (link->ep_type == DISPLAY_ENDPOINT_USB4_DPIA)
- do_fallback = true;
-
- /*
- * Temporary w/a to get DP2.0 link rates to work with SST.
- * TODO DP2.0 - Workaround: Remove w/a if and when the issue is resolved.
- */
- if (dp_get_link_encoding_format(link_settings) == DP_128b_132b_ENCODING &&
- pipe_ctx->stream->signal == SIGNAL_TYPE_DISPLAY_PORT &&
- link->dc->debug.set_mst_en_for_sst) {
- dp_enable_mst_on_sink(link, true);
- }
-
- if (pipe_ctx->stream->signal == SIGNAL_TYPE_EDP) {
- /*in case it is not on*/
- if (!link->dc->config.edp_no_power_sequencing)
- link->dc->hwss.edp_power_control(link, true);
- link->dc->hwss.edp_wait_for_hpd_ready(link, true);
- }
-
- if (dp_get_link_encoding_format(link_settings) == DP_128b_132b_ENCODING) {
- /* TODO - DP2.0 HW: calculate 32 symbol clock for HPO encoder */
- } else {
- pipe_ctx->stream_res.pix_clk_params.requested_sym_clk =
- link_settings->link_rate * LINK_RATE_REF_FREQ_IN_KHZ;
- if (state->clk_mgr && !apply_seamless_boot_optimization)
- state->clk_mgr->funcs->update_clocks(state->clk_mgr,
- state, false);
- }
-
- // during mode switch we do DP_SET_POWER off then on, and OUI is lost
- dpcd_set_source_specific_data(link);
- if (link->dpcd_sink_ext_caps.raw != 0) {
- post_oui_delay += link->panel_config.pps.extra_post_OUI_ms;
- msleep(post_oui_delay);
- }
-
- // similarly, mode switch can cause loss of cable ID
- dpcd_write_cable_id_to_dprx(link);
-
- skip_video_pattern = true;
-
- if (link_settings->link_rate == LINK_RATE_LOW)
- skip_video_pattern = false;
-
- if (perform_link_training_with_retries(link_settings,
- skip_video_pattern,
- LINK_TRAINING_ATTEMPTS,
- pipe_ctx,
- pipe_ctx->stream->signal,
- do_fallback)) {
- status = DC_OK;
- } else {
- status = DC_FAIL_DP_LINK_TRAINING;
- }
-
- if (link->preferred_training_settings.fec_enable)
- fec_enable = *link->preferred_training_settings.fec_enable;
- else
- fec_enable = true;
-
- if (dp_get_link_encoding_format(link_settings) == DP_8b_10b_ENCODING)
- dp_set_fec_enable(link, fec_enable);
-
- // during mode set we do DP_SET_POWER off then on, aux writes are lost
- if (link->dpcd_sink_ext_caps.bits.oled == 1 ||
- link->dpcd_sink_ext_caps.bits.sdr_aux_backlight_control == 1 ||
- link->dpcd_sink_ext_caps.bits.hdr_aux_backlight_control == 1) {
- dc_link_set_default_brightness_aux(link); // TODO: use cached if known
- if (link->dpcd_sink_ext_caps.bits.oled == 1)
- msleep(bl_oled_enable_delay);
- dc_link_backlight_enable_aux(link, true);
- }
-
- return status;
-}
-
-static enum dc_status enable_link_edp(
- struct dc_state *state,
- struct pipe_ctx *pipe_ctx)
-{
- return enable_link_dp(state, pipe_ctx);
-}
-
-static enum dc_status enable_link_dp_mst(
- struct dc_state *state,
- struct pipe_ctx *pipe_ctx)
-{
- struct dc_link *link = pipe_ctx->stream->link;
-
- /* sink signal type after MST branch is MST. Multiple MST sinks
- * share one link. Link DP PHY is enable or training only once.
- */
- if (link->link_status.link_active)
- return DC_OK;
-
- /* clear payload table */
- dm_helpers_dp_mst_clear_payload_allocation_table(link->ctx, link);
-
- /* to make sure the pending down rep can be processed
- * before enabling the link
- */
- dm_helpers_dp_mst_poll_pending_down_reply(link->ctx, link);
-
- /* set the sink to MST mode before enabling the link */
- dp_enable_mst_on_sink(link, true);
-
- return enable_link_dp(state, pipe_ctx);
-}
-
-void dc_link_blank_all_dp_displays(struct dc *dc)
-{
- unsigned int i;
- uint8_t dpcd_power_state = '\0';
- enum dc_status status = DC_ERROR_UNEXPECTED;
-
- for (i = 0; i < dc->link_count; i++) {
- if ((dc->links[i]->connector_signal != SIGNAL_TYPE_DISPLAY_PORT) ||
- (dc->links[i]->priv == NULL) || (dc->links[i]->local_sink == NULL))
- continue;
-
- /* DP 2.0 spec requires that we read LTTPR caps first */
- dp_retrieve_lttpr_cap(dc->links[i]);
- /* if any of the displays are lit up turn them off */
- status = core_link_read_dpcd(dc->links[i], DP_SET_POWER,
- &dpcd_power_state, sizeof(dpcd_power_state));
-
- if (status == DC_OK && dpcd_power_state == DP_POWER_STATE_D0)
- dc_link_blank_dp_stream(dc->links[i], true);
- }
-
-}
-
-void dc_link_blank_all_edp_displays(struct dc *dc)
-{
- unsigned int i;
- uint8_t dpcd_power_state = '\0';
- enum dc_status status = DC_ERROR_UNEXPECTED;
-
- for (i = 0; i < dc->link_count; i++) {
- if ((dc->links[i]->connector_signal != SIGNAL_TYPE_EDP) ||
- (!dc->links[i]->edp_sink_present))
- continue;
-
- /* if any of the displays are lit up turn them off */
- status = core_link_read_dpcd(dc->links[i], DP_SET_POWER,
- &dpcd_power_state, sizeof(dpcd_power_state));
-
- if (status == DC_OK && dpcd_power_state == DP_POWER_STATE_D0)
- dc_link_blank_dp_stream(dc->links[i], true);
- }
-}
-
-void dc_link_blank_dp_stream(struct dc_link *link, bool hw_init)
-{
- unsigned int j;
- struct dc *dc = link->ctx->dc;
- enum signal_type signal = link->connector_signal;
-
- if ((signal == SIGNAL_TYPE_EDP) ||
- (signal == SIGNAL_TYPE_DISPLAY_PORT)) {
- if (link->ep_type == DISPLAY_ENDPOINT_PHY &&
- link->link_enc->funcs->get_dig_frontend &&
- link->link_enc->funcs->is_dig_enabled(link->link_enc)) {
- unsigned int fe = link->link_enc->funcs->get_dig_frontend(link->link_enc);
-
- if (fe != ENGINE_ID_UNKNOWN)
- for (j = 0; j < dc->res_pool->stream_enc_count; j++) {
- if (fe == dc->res_pool->stream_enc[j]->id) {
- dc->res_pool->stream_enc[j]->funcs->dp_blank(link,
- dc->res_pool->stream_enc[j]);
- break;
- }
- }
- }
-
- if ((!link->wa_flags.dp_keep_receiver_powered) || hw_init)
- dp_receiver_power_ctrl(link, false);
- }
-}
-
-static bool get_ext_hdmi_settings(struct pipe_ctx *pipe_ctx,
- enum engine_id eng_id,
- struct ext_hdmi_settings *settings)
-{
- bool result = false;
- int i = 0;
- struct integrated_info *integrated_info =
- pipe_ctx->stream->ctx->dc_bios->integrated_info;
-
- if (integrated_info == NULL)
- return false;
-
- /*
- * Get retimer settings from sbios for passing SI eye test for DCE11
- * The setting values are varied based on board revision and port id
- * Therefore the setting values of each ports is passed by sbios.
- */
-
- // Check if current bios contains ext Hdmi settings
- if (integrated_info->gpu_cap_info & 0x20) {
- switch (eng_id) {
- case ENGINE_ID_DIGA:
- settings->slv_addr = integrated_info->dp0_ext_hdmi_slv_addr;
- settings->reg_num = integrated_info->dp0_ext_hdmi_6g_reg_num;
- settings->reg_num_6g = integrated_info->dp0_ext_hdmi_6g_reg_num;
- memmove(settings->reg_settings,
- integrated_info->dp0_ext_hdmi_reg_settings,
- sizeof(integrated_info->dp0_ext_hdmi_reg_settings));
- memmove(settings->reg_settings_6g,
- integrated_info->dp0_ext_hdmi_6g_reg_settings,
- sizeof(integrated_info->dp0_ext_hdmi_6g_reg_settings));
- result = true;
- break;
- case ENGINE_ID_DIGB:
- settings->slv_addr = integrated_info->dp1_ext_hdmi_slv_addr;
- settings->reg_num = integrated_info->dp1_ext_hdmi_6g_reg_num;
- settings->reg_num_6g = integrated_info->dp1_ext_hdmi_6g_reg_num;
- memmove(settings->reg_settings,
- integrated_info->dp1_ext_hdmi_reg_settings,
- sizeof(integrated_info->dp1_ext_hdmi_reg_settings));
- memmove(settings->reg_settings_6g,
- integrated_info->dp1_ext_hdmi_6g_reg_settings,
- sizeof(integrated_info->dp1_ext_hdmi_6g_reg_settings));
- result = true;
- break;
- case ENGINE_ID_DIGC:
- settings->slv_addr = integrated_info->dp2_ext_hdmi_slv_addr;
- settings->reg_num = integrated_info->dp2_ext_hdmi_6g_reg_num;
- settings->reg_num_6g = integrated_info->dp2_ext_hdmi_6g_reg_num;
- memmove(settings->reg_settings,
- integrated_info->dp2_ext_hdmi_reg_settings,
- sizeof(integrated_info->dp2_ext_hdmi_reg_settings));
- memmove(settings->reg_settings_6g,
- integrated_info->dp2_ext_hdmi_6g_reg_settings,
- sizeof(integrated_info->dp2_ext_hdmi_6g_reg_settings));
- result = true;
- break;
- case ENGINE_ID_DIGD:
- settings->slv_addr = integrated_info->dp3_ext_hdmi_slv_addr;
- settings->reg_num = integrated_info->dp3_ext_hdmi_6g_reg_num;
- settings->reg_num_6g = integrated_info->dp3_ext_hdmi_6g_reg_num;
- memmove(settings->reg_settings,
- integrated_info->dp3_ext_hdmi_reg_settings,
- sizeof(integrated_info->dp3_ext_hdmi_reg_settings));
- memmove(settings->reg_settings_6g,
- integrated_info->dp3_ext_hdmi_6g_reg_settings,
- sizeof(integrated_info->dp3_ext_hdmi_6g_reg_settings));
- result = true;
- break;
- default:
- break;
- }
-
- if (result == true) {
- // Validate settings from bios integrated info table
- if (settings->slv_addr == 0)
- return false;
- if (settings->reg_num > 9)
- return false;
- if (settings->reg_num_6g > 3)
- return false;
-
- for (i = 0; i < settings->reg_num; i++) {
- if (settings->reg_settings[i].i2c_reg_index > 0x20)
- return false;
- }
-
- for (i = 0; i < settings->reg_num_6g; i++) {
- if (settings->reg_settings_6g[i].i2c_reg_index > 0x20)
- return false;
- }
- }
- }
-
- return result;
-}
-
-static bool i2c_write(struct pipe_ctx *pipe_ctx,
- uint8_t address, uint8_t *buffer, uint32_t length)
-{
- struct i2c_command cmd = {0};
- struct i2c_payload payload = {0};
-
- memset(&payload, 0, sizeof(payload));
- memset(&cmd, 0, sizeof(cmd));
-
- cmd.number_of_payloads = 1;
- cmd.engine = I2C_COMMAND_ENGINE_DEFAULT;
- cmd.speed = pipe_ctx->stream->ctx->dc->caps.i2c_speed_in_khz;
-
- payload.address = address;
- payload.data = buffer;
- payload.length = length;
- payload.write = true;
- cmd.payloads = &payload;
-
- if (dm_helpers_submit_i2c(pipe_ctx->stream->ctx,
- pipe_ctx->stream->link, &cmd))
- return true;
-
- return false;
-}
-
-static void write_i2c_retimer_setting(
- struct pipe_ctx *pipe_ctx,
- bool is_vga_mode,
- bool is_over_340mhz,
- struct ext_hdmi_settings *settings)
-{
- uint8_t slave_address = (settings->slv_addr >> 1);
- uint8_t buffer[2];
- const uint8_t apply_rx_tx_change = 0x4;
- uint8_t offset = 0xA;
- uint8_t value = 0;
- int i = 0;
- bool i2c_success = false;
- DC_LOGGER_INIT(pipe_ctx->stream->ctx->logger);
-
- memset(&buffer, 0, sizeof(buffer));
-
- /* Start Ext-Hdmi programming*/
-
- for (i = 0; i < settings->reg_num; i++) {
- /* Apply 3G settings */
- if (settings->reg_settings[i].i2c_reg_index <= 0x20) {
-
- buffer[0] = settings->reg_settings[i].i2c_reg_index;
- buffer[1] = settings->reg_settings[i].i2c_reg_val;
- i2c_success = i2c_write(pipe_ctx, slave_address,
- buffer, sizeof(buffer));
- RETIMER_REDRIVER_INFO("retimer write to slave_address = 0x%x,\
- offset = 0x%x, reg_val= 0x%x, i2c_success = %d\n",
- slave_address, buffer[0], buffer[1], i2c_success?1:0);
-
- if (!i2c_success)
- goto i2c_write_fail;
-
- /* Based on DP159 specs, APPLY_RX_TX_CHANGE bit in 0x0A
- * needs to be set to 1 on every 0xA-0xC write.
- */
- if (settings->reg_settings[i].i2c_reg_index == 0xA ||
- settings->reg_settings[i].i2c_reg_index == 0xB ||
- settings->reg_settings[i].i2c_reg_index == 0xC) {
-
- /* Query current value from offset 0xA */
- if (settings->reg_settings[i].i2c_reg_index == 0xA)
- value = settings->reg_settings[i].i2c_reg_val;
- else {
- i2c_success =
- dal_ddc_service_query_ddc_data(
- pipe_ctx->stream->link->ddc,
- slave_address, &offset, 1, &value, 1);
- if (!i2c_success)
- goto i2c_write_fail;
- }
-
- buffer[0] = offset;
- /* Set APPLY_RX_TX_CHANGE bit to 1 */
- buffer[1] = value | apply_rx_tx_change;
- i2c_success = i2c_write(pipe_ctx, slave_address,
- buffer, sizeof(buffer));
- RETIMER_REDRIVER_INFO("retimer write to slave_address = 0x%x,\
- offset = 0x%x, reg_val = 0x%x, i2c_success = %d\n",
- slave_address, buffer[0], buffer[1], i2c_success?1:0);
- if (!i2c_success)
- goto i2c_write_fail;
- }
- }
- }
-
- /* Apply 3G settings */
- if (is_over_340mhz) {
- for (i = 0; i < settings->reg_num_6g; i++) {
- /* Apply 3G settings */
- if (settings->reg_settings[i].i2c_reg_index <= 0x20) {
-
- buffer[0] = settings->reg_settings_6g[i].i2c_reg_index;
- buffer[1] = settings->reg_settings_6g[i].i2c_reg_val;
- i2c_success = i2c_write(pipe_ctx, slave_address,
- buffer, sizeof(buffer));
- RETIMER_REDRIVER_INFO("above 340Mhz: retimer write to slave_address = 0x%x,\
- offset = 0x%x, reg_val = 0x%x, i2c_success = %d\n",
- slave_address, buffer[0], buffer[1], i2c_success?1:0);
-
- if (!i2c_success)
- goto i2c_write_fail;
-
- /* Based on DP159 specs, APPLY_RX_TX_CHANGE bit in 0x0A
- * needs to be set to 1 on every 0xA-0xC write.
- */
- if (settings->reg_settings_6g[i].i2c_reg_index == 0xA ||
- settings->reg_settings_6g[i].i2c_reg_index == 0xB ||
- settings->reg_settings_6g[i].i2c_reg_index == 0xC) {
-
- /* Query current value from offset 0xA */
- if (settings->reg_settings_6g[i].i2c_reg_index == 0xA)
- value = settings->reg_settings_6g[i].i2c_reg_val;
- else {
- i2c_success =
- dal_ddc_service_query_ddc_data(
- pipe_ctx->stream->link->ddc,
- slave_address, &offset, 1, &value, 1);
- if (!i2c_success)
- goto i2c_write_fail;
- }
-
- buffer[0] = offset;
- /* Set APPLY_RX_TX_CHANGE bit to 1 */
- buffer[1] = value | apply_rx_tx_change;
- i2c_success = i2c_write(pipe_ctx, slave_address,
- buffer, sizeof(buffer));
- RETIMER_REDRIVER_INFO("retimer write to slave_address = 0x%x,\
- offset = 0x%x, reg_val = 0x%x, i2c_success = %d\n",
- slave_address, buffer[0], buffer[1], i2c_success?1:0);
- if (!i2c_success)
- goto i2c_write_fail;
- }
- }
- }
- }
-
- if (is_vga_mode) {
- /* Program additional settings if using 640x480 resolution */
-
- /* Write offset 0xFF to 0x01 */
- buffer[0] = 0xff;
- buffer[1] = 0x01;
- i2c_success = i2c_write(pipe_ctx, slave_address,
- buffer, sizeof(buffer));
- RETIMER_REDRIVER_INFO("retimer write to slave_address = 0x%x,\
- offset = 0x%x, reg_val = 0x%x, i2c_success = %d\n",
- slave_address, buffer[0], buffer[1], i2c_success?1:0);
- if (!i2c_success)
- goto i2c_write_fail;
-
- /* Write offset 0x00 to 0x23 */
- buffer[0] = 0x00;
- buffer[1] = 0x23;
- i2c_success = i2c_write(pipe_ctx, slave_address,
- buffer, sizeof(buffer));
- RETIMER_REDRIVER_INFO("retimer write to slave_address = 0x%x,\
- offset = 0x%x, reg_val = 0x%x, i2c_success = %d\n",
- slave_address, buffer[0], buffer[1], i2c_success?1:0);
- if (!i2c_success)
- goto i2c_write_fail;
-
- /* Write offset 0xff to 0x00 */
- buffer[0] = 0xff;
- buffer[1] = 0x00;
- i2c_success = i2c_write(pipe_ctx, slave_address,
- buffer, sizeof(buffer));
- RETIMER_REDRIVER_INFO("retimer write to slave_address = 0x%x,\
- offset = 0x%x, reg_val = 0x%x, i2c_success = %d\n",
- slave_address, buffer[0], buffer[1], i2c_success?1:0);
- if (!i2c_success)
- goto i2c_write_fail;
-
- }
-
- return;
-
-i2c_write_fail:
- DC_LOG_DEBUG("Set retimer failed");
-}
-
-static void write_i2c_default_retimer_setting(
- struct pipe_ctx *pipe_ctx,
- bool is_vga_mode,
- bool is_over_340mhz)
-{
- uint8_t slave_address = (0xBA >> 1);
- uint8_t buffer[2];
- bool i2c_success = false;
- DC_LOGGER_INIT(pipe_ctx->stream->ctx->logger);
-
- memset(&buffer, 0, sizeof(buffer));
-
- /* Program Slave Address for tuning single integrity */
- /* Write offset 0x0A to 0x13 */
- buffer[0] = 0x0A;
- buffer[1] = 0x13;
- i2c_success = i2c_write(pipe_ctx, slave_address,
- buffer, sizeof(buffer));
- RETIMER_REDRIVER_INFO("retimer writes default setting to slave_address = 0x%x,\
- offset = 0x%x, reg_val = 0x%x, i2c_success = %d\n",
- slave_address, buffer[0], buffer[1], i2c_success?1:0);
- if (!i2c_success)
- goto i2c_write_fail;
-
- /* Write offset 0x0A to 0x17 */
- buffer[0] = 0x0A;
- buffer[1] = 0x17;
- i2c_success = i2c_write(pipe_ctx, slave_address,
- buffer, sizeof(buffer));
- RETIMER_REDRIVER_INFO("retimer write to slave_addr = 0x%x,\
- offset = 0x%x, reg_val = 0x%x, i2c_success = %d\n",
- slave_address, buffer[0], buffer[1], i2c_success?1:0);
- if (!i2c_success)
- goto i2c_write_fail;
-
- /* Write offset 0x0B to 0xDA or 0xD8 */
- buffer[0] = 0x0B;
- buffer[1] = is_over_340mhz ? 0xDA : 0xD8;
- i2c_success = i2c_write(pipe_ctx, slave_address,
- buffer, sizeof(buffer));
- RETIMER_REDRIVER_INFO("retimer write to slave_addr = 0x%x,\
- offset = 0x%x, reg_val = 0x%x, i2c_success = %d\n",
- slave_address, buffer[0], buffer[1], i2c_success?1:0);
- if (!i2c_success)
- goto i2c_write_fail;
-
- /* Write offset 0x0A to 0x17 */
- buffer[0] = 0x0A;
- buffer[1] = 0x17;
- i2c_success = i2c_write(pipe_ctx, slave_address,
- buffer, sizeof(buffer));
- RETIMER_REDRIVER_INFO("retimer write to slave_addr = 0x%x,\
- offset = 0x%x, reg_val= 0x%x, i2c_success = %d\n",
- slave_address, buffer[0], buffer[1], i2c_success?1:0);
- if (!i2c_success)
- goto i2c_write_fail;
-
- /* Write offset 0x0C to 0x1D or 0x91 */
- buffer[0] = 0x0C;
- buffer[1] = is_over_340mhz ? 0x1D : 0x91;
- i2c_success = i2c_write(pipe_ctx, slave_address,
- buffer, sizeof(buffer));
- RETIMER_REDRIVER_INFO("retimer write to slave_addr = 0x%x,\
- offset = 0x%x, reg_val = 0x%x, i2c_success = %d\n",
- slave_address, buffer[0], buffer[1], i2c_success?1:0);
- if (!i2c_success)
- goto i2c_write_fail;
-
- /* Write offset 0x0A to 0x17 */
- buffer[0] = 0x0A;
- buffer[1] = 0x17;
- i2c_success = i2c_write(pipe_ctx, slave_address,
- buffer, sizeof(buffer));
- RETIMER_REDRIVER_INFO("retimer write to slave_addr = 0x%x,\
- offset = 0x%x, reg_val = 0x%x, i2c_success = %d\n",
- slave_address, buffer[0], buffer[1], i2c_success?1:0);
- if (!i2c_success)
- goto i2c_write_fail;
-
-
- if (is_vga_mode) {
- /* Program additional settings if using 640x480 resolution */
-
- /* Write offset 0xFF to 0x01 */
- buffer[0] = 0xff;
- buffer[1] = 0x01;
- i2c_success = i2c_write(pipe_ctx, slave_address,
- buffer, sizeof(buffer));
- RETIMER_REDRIVER_INFO("retimer write to slave_addr = 0x%x,\
- offset = 0x%x, reg_val = 0x%x, i2c_success = %d\n",
- slave_address, buffer[0], buffer[1], i2c_success?1:0);
- if (!i2c_success)
- goto i2c_write_fail;
-
- /* Write offset 0x00 to 0x23 */
- buffer[0] = 0x00;
- buffer[1] = 0x23;
- i2c_success = i2c_write(pipe_ctx, slave_address,
- buffer, sizeof(buffer));
- RETIMER_REDRIVER_INFO("retimer write to slave_addr = 0x%x,\
- offset = 0x%x, reg_val= 0x%x, i2c_success = %d\n",
- slave_address, buffer[0], buffer[1], i2c_success?1:0);
- if (!i2c_success)
- goto i2c_write_fail;
-
- /* Write offset 0xff to 0x00 */
- buffer[0] = 0xff;
- buffer[1] = 0x00;
- i2c_success = i2c_write(pipe_ctx, slave_address,
- buffer, sizeof(buffer));
- RETIMER_REDRIVER_INFO("retimer write default setting to slave_addr = 0x%x,\
- offset = 0x%x, reg_val= 0x%x, i2c_success = %d end here\n",
- slave_address, buffer[0], buffer[1], i2c_success?1:0);
- if (!i2c_success)
- goto i2c_write_fail;
- }
-
- return;
-
-i2c_write_fail:
- DC_LOG_DEBUG("Set default retimer failed");
-}
-
-static void write_i2c_redriver_setting(
- struct pipe_ctx *pipe_ctx,
- bool is_over_340mhz)
-{
- uint8_t slave_address = (0xF0 >> 1);
- uint8_t buffer[16];
- bool i2c_success = false;
- DC_LOGGER_INIT(pipe_ctx->stream->ctx->logger);
-
- memset(&buffer, 0, sizeof(buffer));
-
- // Program Slave Address for tuning single integrity
- buffer[3] = 0x4E;
- buffer[4] = 0x4E;
- buffer[5] = 0x4E;
- buffer[6] = is_over_340mhz ? 0x4E : 0x4A;
-
- i2c_success = i2c_write(pipe_ctx, slave_address,
- buffer, sizeof(buffer));
- RETIMER_REDRIVER_INFO("redriver write 0 to all 16 reg offset expect following:\n\
- \t slave_addr = 0x%x, offset[3] = 0x%x, offset[4] = 0x%x,\
- offset[5] = 0x%x,offset[6] is_over_340mhz = 0x%x,\
- i2c_success = %d\n",
- slave_address, buffer[3], buffer[4], buffer[5], buffer[6], i2c_success?1:0);
-
- if (!i2c_success)
- DC_LOG_DEBUG("Set redriver failed");
-}
-
-static void disable_link(struct dc_link *link, const struct link_resource *link_res,
- enum signal_type signal)
-{
- /*
- * TODO: implement call for dp_set_hw_test_pattern
- * it is needed for compliance testing
- */
-
- /* Here we need to specify that encoder output settings
- * need to be calculated as for the set mode,
- * it will lead to querying dynamic link capabilities
- * which should be done before enable output
- */
-
- if (dc_is_dp_signal(signal)) {
- /* SST DP, eDP */
- struct dc_link_settings link_settings = link->cur_link_settings;
- if (dc_is_dp_sst_signal(signal))
- dp_disable_link_phy(link, link_res, signal);
- else
- dp_disable_link_phy_mst(link, link_res, signal);
-
- if (dc_is_dp_sst_signal(signal) ||
- link->mst_stream_alloc_table.stream_count == 0) {
- if (dp_get_link_encoding_format(&link_settings) == DP_8b_10b_ENCODING) {
- dp_set_fec_enable(link, false);
- dp_set_fec_ready(link, link_res, false);
- }
- }
- } else if (signal != SIGNAL_TYPE_VIRTUAL) {
- link->dc->hwss.disable_link_output(link, link_res, signal);
- }
-
- if (signal == SIGNAL_TYPE_DISPLAY_PORT_MST) {
- /* MST disable link only when no stream use the link */
- if (link->mst_stream_alloc_table.stream_count <= 0)
- link->link_status.link_active = false;
- } else {
- link->link_status.link_active = false;
- }
-}
-
-static void enable_link_hdmi(struct pipe_ctx *pipe_ctx)
-{
- struct dc_stream_state *stream = pipe_ctx->stream;
- struct dc_link *link = stream->link;
- enum dc_color_depth display_color_depth;
- enum engine_id eng_id;
- struct ext_hdmi_settings settings = {0};
- bool is_over_340mhz = false;
- bool is_vga_mode = (stream->timing.h_addressable == 640)
- && (stream->timing.v_addressable == 480);
- struct dc *dc = pipe_ctx->stream->ctx->dc;
-
- if (stream->phy_pix_clk == 0)
- stream->phy_pix_clk = stream->timing.pix_clk_100hz / 10;
- if (stream->phy_pix_clk > 340000)
- is_over_340mhz = true;
-
- if (dc_is_hdmi_signal(pipe_ctx->stream->signal)) {
- unsigned short masked_chip_caps = pipe_ctx->stream->link->chip_caps &
- EXT_DISPLAY_PATH_CAPS__EXT_CHIP_MASK;
- if (masked_chip_caps == EXT_DISPLAY_PATH_CAPS__HDMI20_TISN65DP159RSBT) {
- /* DP159, Retimer settings */
- eng_id = pipe_ctx->stream_res.stream_enc->id;
-
- if (get_ext_hdmi_settings(pipe_ctx, eng_id, &settings)) {
- write_i2c_retimer_setting(pipe_ctx,
- is_vga_mode, is_over_340mhz, &settings);
- } else {
- write_i2c_default_retimer_setting(pipe_ctx,
- is_vga_mode, is_over_340mhz);
- }
- } else if (masked_chip_caps == EXT_DISPLAY_PATH_CAPS__HDMI20_PI3EQX1204) {
- /* PI3EQX1204, Redriver settings */
- write_i2c_redriver_setting(pipe_ctx, is_over_340mhz);
- }
- }
-
- if (dc_is_hdmi_signal(pipe_ctx->stream->signal))
- dal_ddc_service_write_scdc_data(
- stream->link->ddc,
- stream->phy_pix_clk,
- stream->timing.flags.LTE_340MCSC_SCRAMBLE);
-
- memset(&stream->link->cur_link_settings, 0,
- sizeof(struct dc_link_settings));
-
- display_color_depth = stream->timing.display_color_depth;
- if (stream->timing.pixel_encoding == PIXEL_ENCODING_YCBCR422)
- display_color_depth = COLOR_DEPTH_888;
-
- dc->hwss.enable_tmds_link_output(
- link,
- &pipe_ctx->link_res,
- pipe_ctx->stream->signal,
- pipe_ctx->clock_source->id,
- display_color_depth,
- stream->phy_pix_clk);
-
- if (dc_is_hdmi_signal(pipe_ctx->stream->signal))
- dal_ddc_service_read_scdc_data(link->ddc);
-}
-
-static void enable_link_lvds(struct pipe_ctx *pipe_ctx)
-{
- struct dc_stream_state *stream = pipe_ctx->stream;
- struct dc_link *link = stream->link;
- struct dc *dc = stream->ctx->dc;
-
- if (stream->phy_pix_clk == 0)
- stream->phy_pix_clk = stream->timing.pix_clk_100hz / 10;
-
- memset(&stream->link->cur_link_settings, 0,
- sizeof(struct dc_link_settings));
- dc->hwss.enable_lvds_link_output(
- link,
- &pipe_ctx->link_res,
- pipe_ctx->clock_source->id,
- stream->phy_pix_clk);
-
-}
-
-bool dc_power_alpm_dpcd_enable(struct dc_link *link, bool enable)
-{
- bool ret = false;
- union dpcd_alpm_configuration alpm_config;
-
- if (link->psr_settings.psr_version == DC_PSR_VERSION_SU_1) {
- memset(&alpm_config, 0, sizeof(alpm_config));
-
- alpm_config.bits.ENABLE = (enable ? true : false);
- ret = dm_helpers_dp_write_dpcd(link->ctx, link,
- DP_RECEIVER_ALPM_CONFIG, &alpm_config.raw,
- sizeof(alpm_config.raw));
- }
- return ret;
-}
-
-/****************************enable_link***********************************/
-static enum dc_status enable_link(
- struct dc_state *state,
- struct pipe_ctx *pipe_ctx)
-{
- enum dc_status status = DC_ERROR_UNEXPECTED;
- struct dc_stream_state *stream = pipe_ctx->stream;
- struct dc_link *link = stream->link;
-
- /* There's some scenarios where driver is unloaded with display
- * still enabled. When driver is reloaded, it may cause a display
- * to not light up if there is a mismatch between old and new
- * link settings. Need to call disable first before enabling at
- * new link settings.
- */
- if (link->link_status.link_active) {
- disable_link(link, &pipe_ctx->link_res, pipe_ctx->stream->signal);
- }
-
- switch (pipe_ctx->stream->signal) {
- case SIGNAL_TYPE_DISPLAY_PORT:
- status = enable_link_dp(state, pipe_ctx);
- break;
- case SIGNAL_TYPE_EDP:
- status = enable_link_edp(state, pipe_ctx);
- break;
- case SIGNAL_TYPE_DISPLAY_PORT_MST:
- status = enable_link_dp_mst(state, pipe_ctx);
- msleep(200);
- break;
- case SIGNAL_TYPE_DVI_SINGLE_LINK:
- case SIGNAL_TYPE_DVI_DUAL_LINK:
- case SIGNAL_TYPE_HDMI_TYPE_A:
- enable_link_hdmi(pipe_ctx);
- status = DC_OK;
- break;
- case SIGNAL_TYPE_LVDS:
- enable_link_lvds(pipe_ctx);
- status = DC_OK;
- break;
- case SIGNAL_TYPE_VIRTUAL:
- status = DC_OK;
- break;
- default:
- break;
- }
-
- if (status == DC_OK)
- pipe_ctx->stream->link->link_status.link_active = true;
-
- return status;
-}
-
-static uint32_t get_timing_pixel_clock_100hz(const struct dc_crtc_timing *timing)
-{
-
- uint32_t pxl_clk = timing->pix_clk_100hz;
-
- if (timing->pixel_encoding == PIXEL_ENCODING_YCBCR420)
- pxl_clk /= 2;
- else if (timing->pixel_encoding == PIXEL_ENCODING_YCBCR422)
- pxl_clk = pxl_clk * 2 / 3;
-
- if (timing->display_color_depth == COLOR_DEPTH_101010)
- pxl_clk = pxl_clk * 10 / 8;
- else if (timing->display_color_depth == COLOR_DEPTH_121212)
- pxl_clk = pxl_clk * 12 / 8;
-
- return pxl_clk;
-}
-
-static bool dp_active_dongle_validate_timing(
- const struct dc_crtc_timing *timing,
- const struct dpcd_caps *dpcd_caps)
-{
- const struct dc_dongle_caps *dongle_caps = &dpcd_caps->dongle_caps;
-
- switch (dpcd_caps->dongle_type) {
- case DISPLAY_DONGLE_DP_VGA_CONVERTER:
- case DISPLAY_DONGLE_DP_DVI_CONVERTER:
- case DISPLAY_DONGLE_DP_DVI_DONGLE:
- if (timing->pixel_encoding == PIXEL_ENCODING_RGB)
- return true;
- else
- return false;
- default:
- break;
- }
-
- if (dpcd_caps->dongle_type == DISPLAY_DONGLE_DP_HDMI_CONVERTER &&
- dongle_caps->extendedCapValid == true) {
- /* Check Pixel Encoding */
- switch (timing->pixel_encoding) {
- case PIXEL_ENCODING_RGB:
- case PIXEL_ENCODING_YCBCR444:
- break;
- case PIXEL_ENCODING_YCBCR422:
- if (!dongle_caps->is_dp_hdmi_ycbcr422_pass_through)
- return false;
- break;
- case PIXEL_ENCODING_YCBCR420:
- if (!dongle_caps->is_dp_hdmi_ycbcr420_pass_through)
- return false;
- break;
- default:
- /* Invalid Pixel Encoding*/
- return false;
- }
-
- switch (timing->display_color_depth) {
- case COLOR_DEPTH_666:
- case COLOR_DEPTH_888:
- /*888 and 666 should always be supported*/
- break;
- case COLOR_DEPTH_101010:
- if (dongle_caps->dp_hdmi_max_bpc < 10)
- return false;
- break;
- case COLOR_DEPTH_121212:
- if (dongle_caps->dp_hdmi_max_bpc < 12)
- return false;
- break;
- case COLOR_DEPTH_141414:
- case COLOR_DEPTH_161616:
- default:
- /* These color depths are currently not supported */
- return false;
- }
-
- /* Check 3D format */
- switch (timing->timing_3d_format) {
- case TIMING_3D_FORMAT_NONE:
- case TIMING_3D_FORMAT_FRAME_ALTERNATE:
- /*Only frame alternate 3D is supported on active dongle*/
- break;
- default:
- /*other 3D formats are not supported due to bad infoframe translation */
- return false;
- }
-
-#if defined(CONFIG_DRM_AMD_DC_DCN)
- if (dongle_caps->dp_hdmi_frl_max_link_bw_in_kbps > 0) { // DP to HDMI FRL converter
- struct dc_crtc_timing outputTiming = *timing;
-
- if (timing->flags.DSC && !timing->dsc_cfg.is_frl)
- /* DP input has DSC, HDMI FRL output doesn't have DSC, remove DSC from output timing */
- outputTiming.flags.DSC = 0;
- if (dc_bandwidth_in_kbps_from_timing(&outputTiming) > dongle_caps->dp_hdmi_frl_max_link_bw_in_kbps)
- return false;
- } else { // DP to HDMI TMDS converter
- if (get_timing_pixel_clock_100hz(timing) > (dongle_caps->dp_hdmi_max_pixel_clk_in_khz * 10))
- return false;
- }
-#else
- if (get_timing_pixel_clock_100hz(timing) > (dongle_caps->dp_hdmi_max_pixel_clk_in_khz * 10))
- return false;
-#endif
- }
-
- if (dpcd_caps->channel_coding_cap.bits.DP_128b_132b_SUPPORTED == 0 &&
- dpcd_caps->dsc_caps.dsc_basic_caps.fields.dsc_support.DSC_PASSTHROUGH_SUPPORT == 0 &&
- dongle_caps->dfp_cap_ext.supported) {
-
- if (dongle_caps->dfp_cap_ext.max_pixel_rate_in_mps < (timing->pix_clk_100hz / 10000))
- return false;
-
- if (dongle_caps->dfp_cap_ext.max_video_h_active_width < timing->h_addressable)
- return false;
-
- if (dongle_caps->dfp_cap_ext.max_video_v_active_height < timing->v_addressable)
- return false;
-
- if (timing->pixel_encoding == PIXEL_ENCODING_RGB) {
- if (!dongle_caps->dfp_cap_ext.encoding_format_caps.support_rgb)
- return false;
- if (timing->display_color_depth == COLOR_DEPTH_666 &&
- !dongle_caps->dfp_cap_ext.rgb_color_depth_caps.support_6bpc)
- return false;
- else if (timing->display_color_depth == COLOR_DEPTH_888 &&
- !dongle_caps->dfp_cap_ext.rgb_color_depth_caps.support_8bpc)
- return false;
- else if (timing->display_color_depth == COLOR_DEPTH_101010 &&
- !dongle_caps->dfp_cap_ext.rgb_color_depth_caps.support_10bpc)
- return false;
- else if (timing->display_color_depth == COLOR_DEPTH_121212 &&
- !dongle_caps->dfp_cap_ext.rgb_color_depth_caps.support_12bpc)
- return false;
- else if (timing->display_color_depth == COLOR_DEPTH_161616 &&
- !dongle_caps->dfp_cap_ext.rgb_color_depth_caps.support_16bpc)
- return false;
- } else if (timing->pixel_encoding == PIXEL_ENCODING_YCBCR444) {
- if (!dongle_caps->dfp_cap_ext.encoding_format_caps.support_rgb)
- return false;
- if (timing->display_color_depth == COLOR_DEPTH_888 &&
- !dongle_caps->dfp_cap_ext.ycbcr444_color_depth_caps.support_8bpc)
- return false;
- else if (timing->display_color_depth == COLOR_DEPTH_101010 &&
- !dongle_caps->dfp_cap_ext.ycbcr444_color_depth_caps.support_10bpc)
- return false;
- else if (timing->display_color_depth == COLOR_DEPTH_121212 &&
- !dongle_caps->dfp_cap_ext.ycbcr444_color_depth_caps.support_12bpc)
- return false;
- else if (timing->display_color_depth == COLOR_DEPTH_161616 &&
- !dongle_caps->dfp_cap_ext.ycbcr444_color_depth_caps.support_16bpc)
- return false;
- } else if (timing->pixel_encoding == PIXEL_ENCODING_YCBCR422) {
- if (!dongle_caps->dfp_cap_ext.encoding_format_caps.support_rgb)
- return false;
- if (timing->display_color_depth == COLOR_DEPTH_888 &&
- !dongle_caps->dfp_cap_ext.ycbcr422_color_depth_caps.support_8bpc)
- return false;
- else if (timing->display_color_depth == COLOR_DEPTH_101010 &&
- !dongle_caps->dfp_cap_ext.ycbcr422_color_depth_caps.support_10bpc)
- return false;
- else if (timing->display_color_depth == COLOR_DEPTH_121212 &&
- !dongle_caps->dfp_cap_ext.ycbcr422_color_depth_caps.support_12bpc)
- return false;
- else if (timing->display_color_depth == COLOR_DEPTH_161616 &&
- !dongle_caps->dfp_cap_ext.ycbcr422_color_depth_caps.support_16bpc)
- return false;
- } else if (timing->pixel_encoding == PIXEL_ENCODING_YCBCR420) {
- if (!dongle_caps->dfp_cap_ext.encoding_format_caps.support_rgb)
- return false;
- if (timing->display_color_depth == COLOR_DEPTH_888 &&
- !dongle_caps->dfp_cap_ext.ycbcr420_color_depth_caps.support_8bpc)
- return false;
- else if (timing->display_color_depth == COLOR_DEPTH_101010 &&
- !dongle_caps->dfp_cap_ext.ycbcr420_color_depth_caps.support_10bpc)
- return false;
- else if (timing->display_color_depth == COLOR_DEPTH_121212 &&
- !dongle_caps->dfp_cap_ext.ycbcr420_color_depth_caps.support_12bpc)
- return false;
- else if (timing->display_color_depth == COLOR_DEPTH_161616 &&
- !dongle_caps->dfp_cap_ext.ycbcr420_color_depth_caps.support_16bpc)
- return false;
- }
- }
-
- return true;
-}
-
-enum dc_status dc_link_validate_mode_timing(
- const struct dc_stream_state *stream,
- struct dc_link *link,
- const struct dc_crtc_timing *timing)
-{
- uint32_t max_pix_clk = stream->link->dongle_max_pix_clk * 10;
- struct dpcd_caps *dpcd_caps = &link->dpcd_caps;
-
- /* A hack to avoid failing any modes for EDID override feature on
- * topology change such as lower quality cable for DP or different dongle
- */
- if (link->remote_sinks[0] && link->remote_sinks[0]->sink_signal == SIGNAL_TYPE_VIRTUAL)
- return DC_OK;
-
- /* Passive Dongle */
- if (max_pix_clk != 0 && get_timing_pixel_clock_100hz(timing) > max_pix_clk)
- return DC_EXCEED_DONGLE_CAP;
-
- /* Active Dongle*/
- if (!dp_active_dongle_validate_timing(timing, dpcd_caps))
- return DC_EXCEED_DONGLE_CAP;
-
- switch (stream->signal) {
- case SIGNAL_TYPE_EDP:
- case SIGNAL_TYPE_DISPLAY_PORT:
- if (!dp_validate_mode_timing(
- link,
- timing))
- return DC_NO_DP_LINK_BANDWIDTH;
- break;
-
- default:
- break;
- }
-
- return DC_OK;
-}
-
-static struct abm *get_abm_from_stream_res(const struct dc_link *link)
-{
- int i;
- struct dc *dc = NULL;
- struct abm *abm = NULL;
-
- if (!link || !link->ctx)
- return NULL;
-
- dc = link->ctx->dc;
-
- for (i = 0; i < MAX_PIPES; i++) {
- struct pipe_ctx pipe_ctx = dc->current_state->res_ctx.pipe_ctx[i];
- struct dc_stream_state *stream = pipe_ctx.stream;
-
- if (stream && stream->link == link) {
- abm = pipe_ctx.stream_res.abm;
- break;
- }
- }
- return abm;
-}
-
-int dc_link_get_backlight_level(const struct dc_link *link)
-{
- struct abm *abm = get_abm_from_stream_res(link);
- struct panel_cntl *panel_cntl = link->panel_cntl;
- struct dc *dc = link->ctx->dc;
- struct dmcu *dmcu = dc->res_pool->dmcu;
- bool fw_set_brightness = true;
-
- if (dmcu)
- fw_set_brightness = dmcu->funcs->is_dmcu_initialized(dmcu);
-
- if (!fw_set_brightness && panel_cntl->funcs->get_current_backlight)
- return panel_cntl->funcs->get_current_backlight(panel_cntl);
- else if (abm != NULL && abm->funcs->get_current_backlight != NULL)
- return (int) abm->funcs->get_current_backlight(abm);
- else
- return DC_ERROR_UNEXPECTED;
-}
-
-int dc_link_get_target_backlight_pwm(const struct dc_link *link)
-{
- struct abm *abm = get_abm_from_stream_res(link);
-
- if (abm == NULL || abm->funcs->get_target_backlight == NULL)
- return DC_ERROR_UNEXPECTED;
-
- return (int) abm->funcs->get_target_backlight(abm);
-}
-
-static struct pipe_ctx *get_pipe_from_link(const struct dc_link *link)
-{
- int i;
- struct dc *dc = link->ctx->dc;
- struct pipe_ctx *pipe_ctx = NULL;
-
- for (i = 0; i < MAX_PIPES; i++) {
- if (dc->current_state->res_ctx.pipe_ctx[i].stream) {
- if (dc->current_state->res_ctx.pipe_ctx[i].stream->link == link) {
- pipe_ctx = &dc->current_state->res_ctx.pipe_ctx[i];
- break;
- }
- }
- }
-
- return pipe_ctx;
-}
-
-bool dc_link_set_backlight_level(const struct dc_link *link,
- uint32_t backlight_pwm_u16_16,
- uint32_t frame_ramp)
-{
- struct dc *dc = link->ctx->dc;
-
- DC_LOGGER_INIT(link->ctx->logger);
- DC_LOG_BACKLIGHT("New Backlight level: %d (0x%X)\n",
- backlight_pwm_u16_16, backlight_pwm_u16_16);
-
- if (dc_is_embedded_signal(link->connector_signal)) {
- struct pipe_ctx *pipe_ctx = get_pipe_from_link(link);
-
- if (pipe_ctx) {
- /* Disable brightness ramping when the display is blanked
- * as it can hang the DMCU
- */
- if (pipe_ctx->plane_state == NULL)
- frame_ramp = 0;
- } else {
- return false;
- }
-
- dc->hwss.set_backlight_level(
- pipe_ctx,
- backlight_pwm_u16_16,
- frame_ramp);
- }
- return true;
-}
-
-bool dc_link_set_psr_allow_active(struct dc_link *link, const bool *allow_active,
- bool wait, bool force_static, const unsigned int *power_opts)
-{
- struct dc *dc = link->ctx->dc;
- struct dmcu *dmcu = dc->res_pool->dmcu;
- struct dmub_psr *psr = dc->res_pool->psr;
- unsigned int panel_inst;
-
- if (psr == NULL && force_static)
- return false;
-
- if (!dc_get_edp_link_panel_inst(dc, link, &panel_inst))
- return false;
-
- if ((allow_active != NULL) && (*allow_active == true) && (link->type == dc_connection_none)) {
- // Don't enter PSR if panel is not connected
- return false;
- }
-
- /* Set power optimization flag */
- if (power_opts && link->psr_settings.psr_power_opt != *power_opts) {
- link->psr_settings.psr_power_opt = *power_opts;
-
- if (psr != NULL && link->psr_settings.psr_feature_enabled && psr->funcs->psr_set_power_opt)
- psr->funcs->psr_set_power_opt(psr, link->psr_settings.psr_power_opt, panel_inst);
- }
-
- if (psr != NULL && link->psr_settings.psr_feature_enabled &&
- force_static && psr->funcs->psr_force_static)
- psr->funcs->psr_force_static(psr, panel_inst);
-
- /* Enable or Disable PSR */
- if (allow_active && link->psr_settings.psr_allow_active != *allow_active) {
- link->psr_settings.psr_allow_active = *allow_active;
-
- if (!link->psr_settings.psr_allow_active)
- dc_z10_restore(dc);
-
- if (psr != NULL && link->psr_settings.psr_feature_enabled) {
- psr->funcs->psr_enable(psr, link->psr_settings.psr_allow_active, wait, panel_inst);
- } else if ((dmcu != NULL && dmcu->funcs->is_dmcu_initialized(dmcu)) &&
- link->psr_settings.psr_feature_enabled)
- dmcu->funcs->set_psr_enable(dmcu, link->psr_settings.psr_allow_active, wait);
- else
- return false;
- }
-
- return true;
-}
-
-bool dc_link_get_psr_state(const struct dc_link *link, enum dc_psr_state *state)
-{
- struct dc *dc = link->ctx->dc;
- struct dmcu *dmcu = dc->res_pool->dmcu;
- struct dmub_psr *psr = dc->res_pool->psr;
- unsigned int panel_inst;
-
- if (!dc_get_edp_link_panel_inst(dc, link, &panel_inst))
- return false;
-
- if (psr != NULL && link->psr_settings.psr_feature_enabled)
- psr->funcs->psr_get_state(psr, state, panel_inst);
- else if (dmcu != NULL && link->psr_settings.psr_feature_enabled)
- dmcu->funcs->get_psr_state(dmcu, state);
-
- return true;
-}
-
-static inline enum physical_phy_id
-transmitter_to_phy_id(enum transmitter transmitter_value)
-{
- switch (transmitter_value) {
- case TRANSMITTER_UNIPHY_A:
- return PHYLD_0;
- case TRANSMITTER_UNIPHY_B:
- return PHYLD_1;
- case TRANSMITTER_UNIPHY_C:
- return PHYLD_2;
- case TRANSMITTER_UNIPHY_D:
- return PHYLD_3;
- case TRANSMITTER_UNIPHY_E:
- return PHYLD_4;
- case TRANSMITTER_UNIPHY_F:
- return PHYLD_5;
- case TRANSMITTER_NUTMEG_CRT:
- return PHYLD_6;
- case TRANSMITTER_TRAVIS_CRT:
- return PHYLD_7;
- case TRANSMITTER_TRAVIS_LCD:
- return PHYLD_8;
- case TRANSMITTER_UNIPHY_G:
- return PHYLD_9;
- case TRANSMITTER_COUNT:
- return PHYLD_COUNT;
- case TRANSMITTER_UNKNOWN:
- return PHYLD_UNKNOWN;
- default:
- WARN_ONCE(1, "Unknown transmitter value %d\n",
- transmitter_value);
- return PHYLD_UNKNOWN;
- }
-}
-
-bool dc_link_setup_psr(struct dc_link *link,
- const struct dc_stream_state *stream, struct psr_config *psr_config,
- struct psr_context *psr_context)
-{
- struct dc *dc;
- struct dmcu *dmcu;
- struct dmub_psr *psr;
- int i;
- unsigned int panel_inst;
- /* updateSinkPsrDpcdConfig*/
- union dpcd_psr_configuration psr_configuration;
- union dpcd_sink_active_vtotal_control_mode vtotal_control = {0};
-
- psr_context->controllerId = CONTROLLER_ID_UNDEFINED;
-
- if (!link)
- return false;
-
- dc = link->ctx->dc;
- dmcu = dc->res_pool->dmcu;
- psr = dc->res_pool->psr;
-
- if (!dmcu && !psr)
- return false;
-
- if (!dc_get_edp_link_panel_inst(dc, link, &panel_inst))
- return false;
-
-
- memset(&psr_configuration, 0, sizeof(psr_configuration));
-
- psr_configuration.bits.ENABLE = 1;
- psr_configuration.bits.CRC_VERIFICATION = 1;
- psr_configuration.bits.FRAME_CAPTURE_INDICATION =
- psr_config->psr_frame_capture_indication_req;
-
- /* Check for PSR v2*/
- if (link->psr_settings.psr_version == DC_PSR_VERSION_SU_1) {
- /* For PSR v2 selective update.
- * Indicates whether sink should start capturing
- * immediately following active scan line,
- * or starting with the 2nd active scan line.
- */
- psr_configuration.bits.LINE_CAPTURE_INDICATION = 0;
- /*For PSR v2, determines whether Sink should generate
- * IRQ_HPD when CRC mismatch is detected.
- */
- psr_configuration.bits.IRQ_HPD_WITH_CRC_ERROR = 1;
- /* For PSR v2, set the bit when the Source device will
- * be enabling PSR2 operation.
- */
- psr_configuration.bits.ENABLE_PSR2 = 1;
- /* For PSR v2, the Sink device must be able to receive
- * SU region updates early in the frame time.
- */
- psr_configuration.bits.EARLY_TRANSPORT_ENABLE = 1;
- }
-
- dm_helpers_dp_write_dpcd(
- link->ctx,
- link,
- 368,
- &psr_configuration.raw,
- sizeof(psr_configuration.raw));
-
- if (link->psr_settings.psr_version == DC_PSR_VERSION_SU_1) {
- dc_power_alpm_dpcd_enable(link, true);
- psr_context->su_granularity_required =
- psr_config->su_granularity_required;
- psr_context->su_y_granularity =
- psr_config->su_y_granularity;
- psr_context->line_time_in_us =
- psr_config->line_time_in_us;
-
- if (link->psr_settings.psr_vtotal_control_support) {
- psr_context->rate_control_caps = psr_config->rate_control_caps;
- vtotal_control.bits.ENABLE = true;
- core_link_write_dpcd(link, DP_SINK_PSR_ACTIVE_VTOTAL_CONTROL_MODE,
- &vtotal_control.raw, sizeof(vtotal_control.raw));
- }
- }
-
- psr_context->channel = link->ddc->ddc_pin->hw_info.ddc_channel;
- psr_context->transmitterId = link->link_enc->transmitter;
- psr_context->engineId = link->link_enc->preferred_engine;
-
- for (i = 0; i < MAX_PIPES; i++) {
- if (dc->current_state->res_ctx.pipe_ctx[i].stream
- == stream) {
- /* dmcu -1 for all controller id values,
- * therefore +1 here
- */
- psr_context->controllerId =
- dc->current_state->res_ctx.
- pipe_ctx[i].stream_res.tg->inst + 1;
- break;
- }
- }
-
- /* Hardcoded for now. Can be Pcie or Uniphy (or Unknown)*/
- psr_context->phyType = PHY_TYPE_UNIPHY;
- /*PhyId is associated with the transmitter id*/
- psr_context->smuPhyId =
- transmitter_to_phy_id(link->link_enc->transmitter);
-
- psr_context->crtcTimingVerticalTotal = stream->timing.v_total;
- psr_context->vsync_rate_hz = div64_u64(div64_u64((stream->
- timing.pix_clk_100hz * 100),
- stream->timing.v_total),
- stream->timing.h_total);
-
- psr_context->psrSupportedDisplayConfig = true;
- psr_context->psrExitLinkTrainingRequired =
- psr_config->psr_exit_link_training_required;
- psr_context->sdpTransmitLineNumDeadline =
- psr_config->psr_sdp_transmit_line_num_deadline;
- psr_context->psrFrameCaptureIndicationReq =
- psr_config->psr_frame_capture_indication_req;
-
- psr_context->skipPsrWaitForPllLock = 0; /* only = 1 in KV */
-
- psr_context->numberOfControllers =
- link->dc->res_pool->timing_generator_count;
-
- psr_context->rfb_update_auto_en = true;
-
- /* 2 frames before enter PSR. */
- psr_context->timehyst_frames = 2;
- /* half a frame
- * (units in 100 lines, i.e. a value of 1 represents 100 lines)
- */
- psr_context->hyst_lines = stream->timing.v_total / 2 / 100;
- psr_context->aux_repeats = 10;
-
- psr_context->psr_level.u32all = 0;
-
- /*skip power down the single pipe since it blocks the cstate*/
-#if defined(CONFIG_DRM_AMD_DC_DCN)
- if (link->ctx->asic_id.chip_family >= FAMILY_RV) {
- switch(link->ctx->asic_id.chip_family) {
- case FAMILY_YELLOW_CARP:
- case AMDGPU_FAMILY_GC_10_3_6:
- case AMDGPU_FAMILY_GC_11_0_1:
- if (dc->debug.disable_z10)
- psr_context->psr_level.bits.SKIP_CRTC_DISABLE = true;
- break;
- default:
- psr_context->psr_level.bits.SKIP_CRTC_DISABLE = true;
- break;
- }
- }
-#else
- if (link->ctx->asic_id.chip_family >= FAMILY_RV)
- psr_context->psr_level.bits.SKIP_CRTC_DISABLE = true;
-#endif
-
- /* SMU will perform additional powerdown sequence.
- * For unsupported ASICs, set psr_level flag to skip PSR
- * static screen notification to SMU.
- * (Always set for DAL2, did not check ASIC)
- */
- psr_context->allow_smu_optimizations = psr_config->allow_smu_optimizations;
- psr_context->allow_multi_disp_optimizations = psr_config->allow_multi_disp_optimizations;
-
- /* Complete PSR entry before aborting to prevent intermittent
- * freezes on certain eDPs
- */
- psr_context->psr_level.bits.DISABLE_PSR_ENTRY_ABORT = 1;
-
- /* enable ALPM */
- psr_context->psr_level.bits.DISABLE_ALPM = 0;
- psr_context->psr_level.bits.ALPM_DEFAULT_PD_MODE = 1;
-
- /* Controls additional delay after remote frame capture before
- * continuing power down, default = 0
- */
- psr_context->frame_delay = 0;
-
- if (psr) {
- link->psr_settings.psr_feature_enabled = psr->funcs->psr_copy_settings(psr,
- link, psr_context, panel_inst);
- link->psr_settings.psr_power_opt = 0;
- link->psr_settings.psr_allow_active = 0;
- }
- else
- link->psr_settings.psr_feature_enabled = dmcu->funcs->setup_psr(dmcu, link, psr_context);
-
- /* psr_enabled == 0 indicates setup_psr did not succeed, but this
- * should not happen since firmware should be running at this point
- */
- if (link->psr_settings.psr_feature_enabled == 0)
- ASSERT(0);
-
- return true;
-
-}
-
-void dc_link_get_psr_residency(const struct dc_link *link, uint32_t *residency)
-{
- struct dc *dc = link->ctx->dc;
- struct dmub_psr *psr = dc->res_pool->psr;
- unsigned int panel_inst;
-
- if (!dc_get_edp_link_panel_inst(dc, link, &panel_inst))
- return;
-
- /* PSR residency measurements only supported on DMCUB */
- if (psr != NULL && link->psr_settings.psr_feature_enabled)
- psr->funcs->psr_get_residency(psr, residency, panel_inst);
- else
- *residency = 0;
-}
-
-bool dc_link_set_sink_vtotal_in_psr_active(const struct dc_link *link, uint16_t psr_vtotal_idle, uint16_t psr_vtotal_su)
-{
- struct dc *dc = link->ctx->dc;
- struct dmub_psr *psr = dc->res_pool->psr;
-
- if (psr == NULL || !link->psr_settings.psr_feature_enabled || !link->psr_settings.psr_vtotal_control_support)
- return false;
-
- psr->funcs->psr_set_sink_vtotal_in_psr_active(psr, psr_vtotal_idle, psr_vtotal_su);
-
- return true;
-}
-
-const struct dc_link_status *dc_link_get_status(const struct dc_link *link)
-{
- return &link->link_status;
-}
-
-void core_link_resume(struct dc_link *link)
-{
- if (link->connector_signal != SIGNAL_TYPE_VIRTUAL)
- program_hpd_filter(link);
-}
-
-static struct fixed31_32 get_pbn_per_slot(struct dc_stream_state *stream)
-{
- struct fixed31_32 mbytes_per_sec;
- uint32_t link_rate_in_mbytes_per_sec = dc_link_bandwidth_kbps(stream->link,
- &stream->link->cur_link_settings);
- link_rate_in_mbytes_per_sec /= 8000; /* Kbits to MBytes */
-
- mbytes_per_sec = dc_fixpt_from_int(link_rate_in_mbytes_per_sec);
-
- return dc_fixpt_div_int(mbytes_per_sec, 54);
-}
-
-static struct fixed31_32 get_pbn_from_bw_in_kbps(uint64_t kbps)
-{
- struct fixed31_32 peak_kbps;
- uint32_t numerator = 0;
- uint32_t denominator = 1;
-
- /*
- * margin 5300ppm + 300ppm ~ 0.6% as per spec, factor is 1.006
- * The unit of 54/64Mbytes/sec is an arbitrary unit chosen based on
- * common multiplier to render an integer PBN for all link rate/lane
- * counts combinations
- * calculate
- * peak_kbps *= (1006/1000)
- * peak_kbps *= (64/54)
- * peak_kbps *= 8 convert to bytes
- */
-
- numerator = 64 * PEAK_FACTOR_X1000;
- denominator = 54 * 8 * 1000 * 1000;
- kbps *= numerator;
- peak_kbps = dc_fixpt_from_fraction(kbps, denominator);
-
- return peak_kbps;
-}
-
-static struct fixed31_32 get_pbn_from_timing(struct pipe_ctx *pipe_ctx)
-{
- uint64_t kbps;
-
- kbps = dc_bandwidth_in_kbps_from_timing(&pipe_ctx->stream->timing);
- return get_pbn_from_bw_in_kbps(kbps);
-}
-
-static void update_mst_stream_alloc_table(
- struct dc_link *link,
- struct stream_encoder *stream_enc,
- struct hpo_dp_stream_encoder *hpo_dp_stream_enc, // TODO: Rename stream_enc to dio_stream_enc?
- const struct dc_dp_mst_stream_allocation_table *proposed_table)
-{
- struct link_mst_stream_allocation work_table[MAX_CONTROLLER_NUM] = { 0 };
- struct link_mst_stream_allocation *dc_alloc;
-
- int i;
- int j;
-
- /* if DRM proposed_table has more than one new payload */
- ASSERT(proposed_table->stream_count -
- link->mst_stream_alloc_table.stream_count < 2);
-
- /* copy proposed_table to link, add stream encoder */
- for (i = 0; i < proposed_table->stream_count; i++) {
-
- for (j = 0; j < link->mst_stream_alloc_table.stream_count; j++) {
- dc_alloc =
- &link->mst_stream_alloc_table.stream_allocations[j];
-
- if (dc_alloc->vcp_id ==
- proposed_table->stream_allocations[i].vcp_id) {
-
- work_table[i] = *dc_alloc;
- work_table[i].slot_count = proposed_table->stream_allocations[i].slot_count;
- break; /* exit j loop */
- }
- }
-
- /* new vcp_id */
- if (j == link->mst_stream_alloc_table.stream_count) {
- work_table[i].vcp_id =
- proposed_table->stream_allocations[i].vcp_id;
- work_table[i].slot_count =
- proposed_table->stream_allocations[i].slot_count;
- work_table[i].stream_enc = stream_enc;
- work_table[i].hpo_dp_stream_enc = hpo_dp_stream_enc;
- }
- }
-
- /* update link->mst_stream_alloc_table with work_table */
- link->mst_stream_alloc_table.stream_count =
- proposed_table->stream_count;
- for (i = 0; i < MAX_CONTROLLER_NUM; i++)
- link->mst_stream_alloc_table.stream_allocations[i] =
- work_table[i];
-}
-
-static void remove_stream_from_alloc_table(
- struct dc_link *link,
- struct stream_encoder *dio_stream_enc,
- struct hpo_dp_stream_encoder *hpo_dp_stream_enc)
-{
- int i = 0;
- struct link_mst_stream_allocation_table *table =
- &link->mst_stream_alloc_table;
-
- if (hpo_dp_stream_enc) {
- for (; i < table->stream_count; i++)
- if (hpo_dp_stream_enc == table->stream_allocations[i].hpo_dp_stream_enc)
- break;
- } else {
- for (; i < table->stream_count; i++)
- if (dio_stream_enc == table->stream_allocations[i].stream_enc)
- break;
- }
-
- if (i < table->stream_count) {
- i++;
- for (; i < table->stream_count; i++)
- table->stream_allocations[i-1] = table->stream_allocations[i];
- memset(&table->stream_allocations[table->stream_count-1], 0,
- sizeof(struct link_mst_stream_allocation));
- table->stream_count--;
- }
-}
-
-static void dc_log_vcp_x_y(const struct dc_link *link, struct fixed31_32 avg_time_slots_per_mtp)
-{
- const uint32_t VCP_Y_PRECISION = 1000;
- uint64_t vcp_x, vcp_y;
-
- // Add 0.5*(1/VCP_Y_PRECISION) to round up to decimal precision
- avg_time_slots_per_mtp = dc_fixpt_add(
- avg_time_slots_per_mtp, dc_fixpt_from_fraction(1, 2 * VCP_Y_PRECISION));
-
- vcp_x = dc_fixpt_floor(avg_time_slots_per_mtp);
- vcp_y = dc_fixpt_floor(
- dc_fixpt_mul_int(
- dc_fixpt_sub_int(avg_time_slots_per_mtp, dc_fixpt_floor(avg_time_slots_per_mtp)),
- VCP_Y_PRECISION));
-
- if (link->type == dc_connection_mst_branch)
- DC_LOG_DP2("MST Update Payload: set_throttled_vcp_size slot X.Y for MST stream "
- "X: %lld Y: %lld/%d", vcp_x, vcp_y, VCP_Y_PRECISION);
- else
- DC_LOG_DP2("SST Update Payload: set_throttled_vcp_size slot X.Y for SST stream "
- "X: %lld Y: %lld/%d", vcp_x, vcp_y, VCP_Y_PRECISION);
-}
-
-/*
- * Payload allocation/deallocation for SST introduced in DP2.0
- */
-static enum dc_status dc_link_update_sst_payload(struct pipe_ctx *pipe_ctx,
- bool allocate)
-{
- struct dc_stream_state *stream = pipe_ctx->stream;
- struct dc_link *link = stream->link;
- struct link_mst_stream_allocation_table proposed_table = {0};
- struct fixed31_32 avg_time_slots_per_mtp;
- const struct dc_link_settings empty_link_settings = {0};
- const struct link_hwss *link_hwss = get_link_hwss(link, &pipe_ctx->link_res);
- DC_LOGGER_INIT(link->ctx->logger);
-
- /* slot X.Y for SST payload deallocate */
- if (!allocate) {
- avg_time_slots_per_mtp = dc_fixpt_from_int(0);
-
- dc_log_vcp_x_y(link, avg_time_slots_per_mtp);
-
- if (link_hwss->ext.set_throttled_vcp_size)
- link_hwss->ext.set_throttled_vcp_size(pipe_ctx,
- avg_time_slots_per_mtp);
- if (link_hwss->ext.set_hblank_min_symbol_width)
- link_hwss->ext.set_hblank_min_symbol_width(pipe_ctx,
- &empty_link_settings,
- avg_time_slots_per_mtp);
- }
-
- /* calculate VC payload and update branch with new payload allocation table*/
- if (!dpcd_write_128b_132b_sst_payload_allocation_table(
- stream,
- link,
- &proposed_table,
- allocate)) {
- DC_LOG_ERROR("SST Update Payload: Failed to update "
- "allocation table for "
- "pipe idx: %d\n",
- pipe_ctx->pipe_idx);
- return DC_FAIL_DP_PAYLOAD_ALLOCATION;
- }
-
- proposed_table.stream_allocations[0].hpo_dp_stream_enc = pipe_ctx->stream_res.hpo_dp_stream_enc;
-
- ASSERT(proposed_table.stream_count == 1);
-
- //TODO - DP2.0 Logging: Instead of hpo_dp_stream_enc pointer, log instance id
- DC_LOG_DP2("SST Update Payload: hpo_dp_stream_enc: %p "
- "vcp_id: %d "
- "slot_count: %d\n",
- (void *) proposed_table.stream_allocations[0].hpo_dp_stream_enc,
- proposed_table.stream_allocations[0].vcp_id,
- proposed_table.stream_allocations[0].slot_count);
-
- /* program DP source TX for payload */
- link_hwss->ext.update_stream_allocation_table(link, &pipe_ctx->link_res,
- &proposed_table);
-
- /* poll for ACT handled */
- if (!dpcd_poll_for_allocation_change_trigger(link)) {
- // Failures will result in blackscreen and errors logged
- BREAK_TO_DEBUGGER();
- }
-
- /* slot X.Y for SST payload allocate */
- if (allocate && dp_get_link_encoding_format(&link->cur_link_settings) ==
- DP_128b_132b_ENCODING) {
- avg_time_slots_per_mtp = calculate_sst_avg_time_slots_per_mtp(stream, link);
-
- dc_log_vcp_x_y(link, avg_time_slots_per_mtp);
-
- if (link_hwss->ext.set_throttled_vcp_size)
- link_hwss->ext.set_throttled_vcp_size(pipe_ctx,
- avg_time_slots_per_mtp);
- if (link_hwss->ext.set_hblank_min_symbol_width)
- link_hwss->ext.set_hblank_min_symbol_width(pipe_ctx,
- &link->cur_link_settings,
- avg_time_slots_per_mtp);
- }
-
- /* Always return DC_OK.
- * If part of sequence fails, log failure(s) and show blackscreen
- */
- return DC_OK;
-}
-
-/* convert link_mst_stream_alloc_table to dm dp_mst_stream_alloc_table
- * because stream_encoder is not exposed to dm
- */
-enum dc_status dc_link_allocate_mst_payload(struct pipe_ctx *pipe_ctx)
-{
- struct dc_stream_state *stream = pipe_ctx->stream;
- struct dc_link *link = stream->link;
- struct dc_dp_mst_stream_allocation_table proposed_table = {0};
- struct fixed31_32 avg_time_slots_per_mtp;
- struct fixed31_32 pbn;
- struct fixed31_32 pbn_per_slot;
- int i;
- enum act_return_status ret;
- const struct link_hwss *link_hwss = get_link_hwss(link, &pipe_ctx->link_res);
- DC_LOGGER_INIT(link->ctx->logger);
-
- /* enable_link_dp_mst already check link->enabled_stream_count
- * and stream is in link->stream[]. This is called during set mode,
- * stream_enc is available.
- */
-
- /* get calculate VC payload for stream: stream_alloc */
- if (dm_helpers_dp_mst_write_payload_allocation_table(
- stream->ctx,
- stream,
- &proposed_table,
- true))
- update_mst_stream_alloc_table(
- link,
- pipe_ctx->stream_res.stream_enc,
- pipe_ctx->stream_res.hpo_dp_stream_enc,
- &proposed_table);
- else
- DC_LOG_WARNING("Failed to update"
- "MST allocation table for"
- "pipe idx:%d\n",
- pipe_ctx->pipe_idx);
-
- DC_LOG_MST("%s "
- "stream_count: %d: \n ",
- __func__,
- link->mst_stream_alloc_table.stream_count);
-
- for (i = 0; i < MAX_CONTROLLER_NUM; i++) {
- DC_LOG_MST("stream_enc[%d]: %p "
- "stream[%d].hpo_dp_stream_enc: %p "
- "stream[%d].vcp_id: %d "
- "stream[%d].slot_count: %d\n",
- i,
- (void *) link->mst_stream_alloc_table.stream_allocations[i].stream_enc,
- i,
- (void *) link->mst_stream_alloc_table.stream_allocations[i].hpo_dp_stream_enc,
- i,
- link->mst_stream_alloc_table.stream_allocations[i].vcp_id,
- i,
- link->mst_stream_alloc_table.stream_allocations[i].slot_count);
- }
-
- ASSERT(proposed_table.stream_count > 0);
-
- /* program DP source TX for payload */
- if (link_hwss->ext.update_stream_allocation_table == NULL ||
- dp_get_link_encoding_format(&link->cur_link_settings) == DP_UNKNOWN_ENCODING) {
- DC_LOG_ERROR("Failure: unknown encoding format\n");
- return DC_ERROR_UNEXPECTED;
- }
-
- link_hwss->ext.update_stream_allocation_table(link,
- &pipe_ctx->link_res,
- &link->mst_stream_alloc_table);
-
- /* send down message */
- ret = dm_helpers_dp_mst_poll_for_allocation_change_trigger(
- stream->ctx,
- stream);
-
- if (ret != ACT_LINK_LOST) {
- dm_helpers_dp_mst_send_payload_allocation(
- stream->ctx,
- stream,
- true);
- }
-
- /* slot X.Y for only current stream */
- pbn_per_slot = get_pbn_per_slot(stream);
- if (pbn_per_slot.value == 0) {
- DC_LOG_ERROR("Failure: pbn_per_slot==0 not allowed. Cannot continue, returning DC_UNSUPPORTED_VALUE.\n");
- return DC_UNSUPPORTED_VALUE;
- }
- pbn = get_pbn_from_timing(pipe_ctx);
- avg_time_slots_per_mtp = dc_fixpt_div(pbn, pbn_per_slot);
-
- dc_log_vcp_x_y(link, avg_time_slots_per_mtp);
-
- if (link_hwss->ext.set_throttled_vcp_size)
- link_hwss->ext.set_throttled_vcp_size(pipe_ctx, avg_time_slots_per_mtp);
- if (link_hwss->ext.set_hblank_min_symbol_width)
- link_hwss->ext.set_hblank_min_symbol_width(pipe_ctx,
- &link->cur_link_settings,
- avg_time_slots_per_mtp);
-
- return DC_OK;
-
-}
-
-enum dc_status dc_link_reduce_mst_payload(struct pipe_ctx *pipe_ctx, uint32_t bw_in_kbps)
-{
- struct dc_stream_state *stream = pipe_ctx->stream;
- struct dc_link *link = stream->link;
- struct fixed31_32 avg_time_slots_per_mtp;
- struct fixed31_32 pbn;
- struct fixed31_32 pbn_per_slot;
- struct dc_dp_mst_stream_allocation_table proposed_table = {0};
- uint8_t i;
- const struct link_hwss *link_hwss = get_link_hwss(link, &pipe_ctx->link_res);
- DC_LOGGER_INIT(link->ctx->logger);
-
- /* decrease throttled vcp size */
- pbn_per_slot = get_pbn_per_slot(stream);
- pbn = get_pbn_from_bw_in_kbps(bw_in_kbps);
- avg_time_slots_per_mtp = dc_fixpt_div(pbn, pbn_per_slot);
-
- if (link_hwss->ext.set_throttled_vcp_size)
- link_hwss->ext.set_throttled_vcp_size(pipe_ctx, avg_time_slots_per_mtp);
- if (link_hwss->ext.set_hblank_min_symbol_width)
- link_hwss->ext.set_hblank_min_symbol_width(pipe_ctx,
- &link->cur_link_settings,
- avg_time_slots_per_mtp);
-
- /* send ALLOCATE_PAYLOAD sideband message with updated pbn */
- dm_helpers_dp_mst_send_payload_allocation(
- stream->ctx,
- stream,
- true);
-
- /* notify immediate branch device table update */
- if (dm_helpers_dp_mst_write_payload_allocation_table(
- stream->ctx,
- stream,
- &proposed_table,
- true)) {
- /* update mst stream allocation table software state */
- update_mst_stream_alloc_table(
- link,
- pipe_ctx->stream_res.stream_enc,
- pipe_ctx->stream_res.hpo_dp_stream_enc,
- &proposed_table);
- } else {
- DC_LOG_WARNING("Failed to update"
- "MST allocation table for"
- "pipe idx:%d\n",
- pipe_ctx->pipe_idx);
- }
-
- DC_LOG_MST("%s "
- "stream_count: %d: \n ",
- __func__,
- link->mst_stream_alloc_table.stream_count);
-
- for (i = 0; i < MAX_CONTROLLER_NUM; i++) {
- DC_LOG_MST("stream_enc[%d]: %p "
- "stream[%d].hpo_dp_stream_enc: %p "
- "stream[%d].vcp_id: %d "
- "stream[%d].slot_count: %d\n",
- i,
- (void *) link->mst_stream_alloc_table.stream_allocations[i].stream_enc,
- i,
- (void *) link->mst_stream_alloc_table.stream_allocations[i].hpo_dp_stream_enc,
- i,
- link->mst_stream_alloc_table.stream_allocations[i].vcp_id,
- i,
- link->mst_stream_alloc_table.stream_allocations[i].slot_count);
- }
-
- ASSERT(proposed_table.stream_count > 0);
-
- /* update mst stream allocation table hardware state */
- if (link_hwss->ext.update_stream_allocation_table == NULL ||
- dp_get_link_encoding_format(&link->cur_link_settings) == DP_UNKNOWN_ENCODING) {
- DC_LOG_ERROR("Failure: unknown encoding format\n");
- return DC_ERROR_UNEXPECTED;
- }
-
- link_hwss->ext.update_stream_allocation_table(link, &pipe_ctx->link_res,
- &link->mst_stream_alloc_table);
-
- /* poll for immediate branch device ACT handled */
- dm_helpers_dp_mst_poll_for_allocation_change_trigger(
- stream->ctx,
- stream);
-
- return DC_OK;
-}
-
-enum dc_status dc_link_increase_mst_payload(struct pipe_ctx *pipe_ctx, uint32_t bw_in_kbps)
-{
- struct dc_stream_state *stream = pipe_ctx->stream;
- struct dc_link *link = stream->link;
- struct fixed31_32 avg_time_slots_per_mtp;
- struct fixed31_32 pbn;
- struct fixed31_32 pbn_per_slot;
- struct dc_dp_mst_stream_allocation_table proposed_table = {0};
- uint8_t i;
- enum act_return_status ret;
- const struct link_hwss *link_hwss = get_link_hwss(link, &pipe_ctx->link_res);
- DC_LOGGER_INIT(link->ctx->logger);
-
- /* notify immediate branch device table update */
- if (dm_helpers_dp_mst_write_payload_allocation_table(
- stream->ctx,
- stream,
- &proposed_table,
- true)) {
- /* update mst stream allocation table software state */
- update_mst_stream_alloc_table(
- link,
- pipe_ctx->stream_res.stream_enc,
- pipe_ctx->stream_res.hpo_dp_stream_enc,
- &proposed_table);
- }
-
- DC_LOG_MST("%s "
- "stream_count: %d: \n ",
- __func__,
- link->mst_stream_alloc_table.stream_count);
-
- for (i = 0; i < MAX_CONTROLLER_NUM; i++) {
- DC_LOG_MST("stream_enc[%d]: %p "
- "stream[%d].hpo_dp_stream_enc: %p "
- "stream[%d].vcp_id: %d "
- "stream[%d].slot_count: %d\n",
- i,
- (void *) link->mst_stream_alloc_table.stream_allocations[i].stream_enc,
- i,
- (void *) link->mst_stream_alloc_table.stream_allocations[i].hpo_dp_stream_enc,
- i,
- link->mst_stream_alloc_table.stream_allocations[i].vcp_id,
- i,
- link->mst_stream_alloc_table.stream_allocations[i].slot_count);
- }
-
- ASSERT(proposed_table.stream_count > 0);
-
- /* update mst stream allocation table hardware state */
- if (link_hwss->ext.update_stream_allocation_table == NULL ||
- dp_get_link_encoding_format(&link->cur_link_settings) == DP_UNKNOWN_ENCODING) {
- DC_LOG_ERROR("Failure: unknown encoding format\n");
- return DC_ERROR_UNEXPECTED;
- }
-
- link_hwss->ext.update_stream_allocation_table(link, &pipe_ctx->link_res,
- &link->mst_stream_alloc_table);
-
- /* poll for immediate branch device ACT handled */
- ret = dm_helpers_dp_mst_poll_for_allocation_change_trigger(
- stream->ctx,
- stream);
-
- if (ret != ACT_LINK_LOST) {
- /* send ALLOCATE_PAYLOAD sideband message with updated pbn */
- dm_helpers_dp_mst_send_payload_allocation(
- stream->ctx,
- stream,
- true);
- }
-
- /* increase throttled vcp size */
- pbn = get_pbn_from_bw_in_kbps(bw_in_kbps);
- pbn_per_slot = get_pbn_per_slot(stream);
- avg_time_slots_per_mtp = dc_fixpt_div(pbn, pbn_per_slot);
-
- if (link_hwss->ext.set_throttled_vcp_size)
- link_hwss->ext.set_throttled_vcp_size(pipe_ctx, avg_time_slots_per_mtp);
- if (link_hwss->ext.set_hblank_min_symbol_width)
- link_hwss->ext.set_hblank_min_symbol_width(pipe_ctx,
- &link->cur_link_settings,
- avg_time_slots_per_mtp);
-
- return DC_OK;
-}
-
-static enum dc_status deallocate_mst_payload(struct pipe_ctx *pipe_ctx)
-{
- struct dc_stream_state *stream = pipe_ctx->stream;
- struct dc_link *link = stream->link;
- struct dc_dp_mst_stream_allocation_table proposed_table = {0};
- struct fixed31_32 avg_time_slots_per_mtp = dc_fixpt_from_int(0);
- int i;
- bool mst_mode = (link->type == dc_connection_mst_branch);
- const struct link_hwss *link_hwss = get_link_hwss(link, &pipe_ctx->link_res);
- const struct dc_link_settings empty_link_settings = {0};
- DC_LOGGER_INIT(link->ctx->logger);
-
- /* deallocate_mst_payload is called before disable link. When mode or
- * disable/enable monitor, new stream is created which is not in link
- * stream[] yet. For this, payload is not allocated yet, so de-alloc
- * should not done. For new mode set, map_resources will get engine
- * for new stream, so stream_enc->id should be validated until here.
- */
-
- /* slot X.Y */
- if (link_hwss->ext.set_throttled_vcp_size)
- link_hwss->ext.set_throttled_vcp_size(pipe_ctx, avg_time_slots_per_mtp);
- if (link_hwss->ext.set_hblank_min_symbol_width)
- link_hwss->ext.set_hblank_min_symbol_width(pipe_ctx,
- &empty_link_settings,
- avg_time_slots_per_mtp);
-
- if (mst_mode) {
- /* when link is in mst mode, reply on mst manager to remove
- * payload
- */
- if (dm_helpers_dp_mst_write_payload_allocation_table(
- stream->ctx,
- stream,
- &proposed_table,
- false))
-
- update_mst_stream_alloc_table(
- link,
- pipe_ctx->stream_res.stream_enc,
- pipe_ctx->stream_res.hpo_dp_stream_enc,
- &proposed_table);
- else
- DC_LOG_WARNING("Failed to update"
- "MST allocation table for"
- "pipe idx:%d\n",
- pipe_ctx->pipe_idx);
- } else {
- /* when link is no longer in mst mode (mst hub unplugged),
- * remove payload with default dc logic
- */
- remove_stream_from_alloc_table(link, pipe_ctx->stream_res.stream_enc,
- pipe_ctx->stream_res.hpo_dp_stream_enc);
- }
-
- DC_LOG_MST("%s"
- "stream_count: %d: ",
- __func__,
- link->mst_stream_alloc_table.stream_count);
-
- for (i = 0; i < MAX_CONTROLLER_NUM; i++) {
- DC_LOG_MST("stream_enc[%d]: %p "
- "stream[%d].hpo_dp_stream_enc: %p "
- "stream[%d].vcp_id: %d "
- "stream[%d].slot_count: %d\n",
- i,
- (void *) link->mst_stream_alloc_table.stream_allocations[i].stream_enc,
- i,
- (void *) link->mst_stream_alloc_table.stream_allocations[i].hpo_dp_stream_enc,
- i,
- link->mst_stream_alloc_table.stream_allocations[i].vcp_id,
- i,
- link->mst_stream_alloc_table.stream_allocations[i].slot_count);
- }
-
- /* update mst stream allocation table hardware state */
- if (link_hwss->ext.update_stream_allocation_table == NULL ||
- dp_get_link_encoding_format(&link->cur_link_settings) == DP_UNKNOWN_ENCODING) {
- DC_LOG_DEBUG("Unknown encoding format\n");
- return DC_ERROR_UNEXPECTED;
- }
-
- link_hwss->ext.update_stream_allocation_table(link, &pipe_ctx->link_res,
- &link->mst_stream_alloc_table);
-
- if (mst_mode) {
- dm_helpers_dp_mst_poll_for_allocation_change_trigger(
- stream->ctx,
- stream);
-
- dm_helpers_dp_mst_send_payload_allocation(
- stream->ctx,
- stream,
- false);
- }
-
- return DC_OK;
-}
-
-
-#if defined(CONFIG_DRM_AMD_DC_HDCP)
-static void update_psp_stream_config(struct pipe_ctx *pipe_ctx, bool dpms_off)
-{
- struct cp_psp *cp_psp = &pipe_ctx->stream->ctx->cp_psp;
- struct link_encoder *link_enc = NULL;
- struct cp_psp_stream_config config = {0};
- enum dp_panel_mode panel_mode =
- dp_get_panel_mode(pipe_ctx->stream->link);
-
- if (cp_psp == NULL || cp_psp->funcs.update_stream_config == NULL)
- return;
-
- link_enc = link_enc_cfg_get_link_enc(pipe_ctx->stream->link);
- ASSERT(link_enc);
- if (link_enc == NULL)
- return;
-
- /* otg instance */
- config.otg_inst = (uint8_t) pipe_ctx->stream_res.tg->inst;
-
- /* dig front end */
- config.dig_fe = (uint8_t) pipe_ctx->stream_res.stream_enc->stream_enc_inst;
-
- /* stream encoder index */
- config.stream_enc_idx = pipe_ctx->stream_res.stream_enc->id - ENGINE_ID_DIGA;
- if (is_dp_128b_132b_signal(pipe_ctx))
- config.stream_enc_idx =
- pipe_ctx->stream_res.hpo_dp_stream_enc->id - ENGINE_ID_HPO_DP_0;
-
- /* dig back end */
- config.dig_be = pipe_ctx->stream->link->link_enc_hw_inst;
-
- /* link encoder index */
- config.link_enc_idx = link_enc->transmitter - TRANSMITTER_UNIPHY_A;
- if (is_dp_128b_132b_signal(pipe_ctx))
- config.link_enc_idx = pipe_ctx->link_res.hpo_dp_link_enc->inst;
-
- /* dio output index is dpia index for DPIA endpoint & dcio index by default */
- if (pipe_ctx->stream->link->ep_type == DISPLAY_ENDPOINT_USB4_DPIA)
- config.dio_output_idx = pipe_ctx->stream->link->link_id.enum_id - ENUM_ID_1;
- else
- config.dio_output_idx = link_enc->transmitter - TRANSMITTER_UNIPHY_A;
-
-
- /* phy index */
- config.phy_idx = resource_transmitter_to_phy_idx(
- pipe_ctx->stream->link->dc, link_enc->transmitter);
- if (pipe_ctx->stream->link->ep_type == DISPLAY_ENDPOINT_USB4_DPIA)
- /* USB4 DPIA doesn't use PHY in our soc, initialize it to 0 */
- config.phy_idx = 0;
-
- /* stream properties */
- config.assr_enabled = (panel_mode == DP_PANEL_MODE_EDP) ? 1 : 0;
- config.mst_enabled = (pipe_ctx->stream->signal ==
- SIGNAL_TYPE_DISPLAY_PORT_MST) ? 1 : 0;
- config.dp2_enabled = is_dp_128b_132b_signal(pipe_ctx) ? 1 : 0;
- config.usb4_enabled = (pipe_ctx->stream->link->ep_type == DISPLAY_ENDPOINT_USB4_DPIA) ?
- 1 : 0;
- config.dpms_off = dpms_off;
-
- /* dm stream context */
- config.dm_stream_ctx = pipe_ctx->stream->dm_stream_context;
-
- cp_psp->funcs.update_stream_config(cp_psp->handle, &config);
-}
-#endif
-
-static void fpga_dp_hpo_enable_link_and_stream(struct dc_state *state, struct pipe_ctx *pipe_ctx)
-{
- struct dc *dc = pipe_ctx->stream->ctx->dc;
- struct dc_stream_state *stream = pipe_ctx->stream;
- struct link_mst_stream_allocation_table proposed_table = {0};
- struct fixed31_32 avg_time_slots_per_mtp;
- uint8_t req_slot_count = 0;
- uint8_t vc_id = 1; /// VC ID always 1 for SST
- struct dc_link_settings link_settings = pipe_ctx->link_config.dp_link_settings;
- const struct link_hwss *link_hwss = get_link_hwss(stream->link, &pipe_ctx->link_res);
- DC_LOGGER_INIT(pipe_ctx->stream->ctx->logger);
-
- stream->link->cur_link_settings = link_settings;
-
- if (link_hwss->ext.enable_dp_link_output)
- link_hwss->ext.enable_dp_link_output(stream->link, &pipe_ctx->link_res,
- stream->signal, pipe_ctx->clock_source->id,
- &link_settings);
-
-#ifdef DIAGS_BUILD
- /* Workaround for FPGA HPO capture DP link data:
- * HPO capture will set link to active mode
- * This workaround is required to get a capture from start of frame
- */
- if (!dc->debug.fpga_hpo_capture_en) {
- struct encoder_set_dp_phy_pattern_param params = {0};
- params.dp_phy_pattern = DP_TEST_PATTERN_VIDEO_MODE;
-
- /* Set link active */
- stream->link->hpo_dp_link_enc->funcs->set_link_test_pattern(
- stream->link->hpo_dp_link_enc,
- &params);
- }
-#endif
-
- /* Enable DP_STREAM_ENC */
- dc->hwss.enable_stream(pipe_ctx);
-
- /* Set DPS PPS SDP (AKA "info frames") */
- if (pipe_ctx->stream->timing.flags.DSC) {
- dp_set_dsc_pps_sdp(pipe_ctx, true, true);
- }
-
- /* Allocate Payload */
- if ((stream->signal == SIGNAL_TYPE_DISPLAY_PORT_MST) && (state->stream_count > 1)) {
- // MST case
- uint8_t i;
-
- proposed_table.stream_count = state->stream_count;
- for (i = 0; i < state->stream_count; i++) {
- avg_time_slots_per_mtp = calculate_sst_avg_time_slots_per_mtp(state->streams[i], state->streams[i]->link);
- req_slot_count = dc_fixpt_ceil(avg_time_slots_per_mtp);
- proposed_table.stream_allocations[i].slot_count = req_slot_count;
- proposed_table.stream_allocations[i].vcp_id = i+1;
- /* NOTE: This makes assumption that pipe_ctx index is same as stream index */
- proposed_table.stream_allocations[i].hpo_dp_stream_enc = state->res_ctx.pipe_ctx[i].stream_res.hpo_dp_stream_enc;
- }
- } else {
- // SST case
- avg_time_slots_per_mtp = calculate_sst_avg_time_slots_per_mtp(stream, stream->link);
- req_slot_count = dc_fixpt_ceil(avg_time_slots_per_mtp);
- proposed_table.stream_count = 1; /// Always 1 stream for SST
- proposed_table.stream_allocations[0].slot_count = req_slot_count;
- proposed_table.stream_allocations[0].vcp_id = vc_id;
- proposed_table.stream_allocations[0].hpo_dp_stream_enc = pipe_ctx->stream_res.hpo_dp_stream_enc;
- }
-
- link_hwss->ext.update_stream_allocation_table(stream->link,
- &pipe_ctx->link_res,
- &proposed_table);
-
- if (link_hwss->ext.set_throttled_vcp_size)
- link_hwss->ext.set_throttled_vcp_size(pipe_ctx, avg_time_slots_per_mtp);
-
- dc->hwss.unblank_stream(pipe_ctx, &stream->link->cur_link_settings);
-}
-
-void core_link_enable_stream(
- struct dc_state *state,
- struct pipe_ctx *pipe_ctx)
-{
- struct dc *dc = pipe_ctx->stream->ctx->dc;
- struct dc_stream_state *stream = pipe_ctx->stream;
- struct dc_link *link = stream->sink->link;
- enum dc_status status;
- struct link_encoder *link_enc;
- enum otg_out_mux_dest otg_out_dest = OUT_MUX_DIO;
- struct vpg *vpg = pipe_ctx->stream_res.stream_enc->vpg;
- const struct link_hwss *link_hwss = get_link_hwss(link, &pipe_ctx->link_res);
-
- if (is_dp_128b_132b_signal(pipe_ctx))
- vpg = pipe_ctx->stream_res.hpo_dp_stream_enc->vpg;
-
- DC_LOGGER_INIT(pipe_ctx->stream->ctx->logger);
-
- if (pipe_ctx->stream->sink) {
- if (pipe_ctx->stream->sink->sink_signal != SIGNAL_TYPE_VIRTUAL &&
- pipe_ctx->stream->sink->sink_signal != SIGNAL_TYPE_NONE) {
- DC_LOG_DC("%s pipe_ctx dispname=%s signal=%x\n", __func__,
- pipe_ctx->stream->sink->edid_caps.display_name,
- pipe_ctx->stream->signal);
- }
- }
-
- if (!IS_DIAG_DC(dc->ctx->dce_environment) &&
- dc_is_virtual_signal(pipe_ctx->stream->signal))
- return;
-
- link_enc = link_enc_cfg_get_link_enc(link);
- ASSERT(link_enc);
-
- if (!dc_is_virtual_signal(pipe_ctx->stream->signal)
- && !is_dp_128b_132b_signal(pipe_ctx)) {
- if (link_enc)
- link_enc->funcs->setup(
- link_enc,
- pipe_ctx->stream->signal);
- }
-
- pipe_ctx->stream->link->link_state_valid = true;
-
- if (pipe_ctx->stream_res.tg->funcs->set_out_mux) {
- if (is_dp_128b_132b_signal(pipe_ctx))
- otg_out_dest = OUT_MUX_HPO_DP;
- else
- otg_out_dest = OUT_MUX_DIO;
- pipe_ctx->stream_res.tg->funcs->set_out_mux(pipe_ctx->stream_res.tg, otg_out_dest);
- }
-
- link_hwss->setup_stream_attribute(pipe_ctx);
-
- if (!IS_FPGA_MAXIMUS_DC(dc->ctx->dce_environment)) {
- bool apply_edp_fast_boot_optimization =
- pipe_ctx->stream->apply_edp_fast_boot_optimization;
-
- pipe_ctx->stream->apply_edp_fast_boot_optimization = false;
-
- // Enable VPG before building infoframe
- if (vpg && vpg->funcs->vpg_poweron)
- vpg->funcs->vpg_poweron(vpg);
-
- resource_build_info_frame(pipe_ctx);
- dc->hwss.update_info_frame(pipe_ctx);
-
- if (dc_is_dp_signal(pipe_ctx->stream->signal))
- dp_source_sequence_trace(link, DPCD_SOURCE_SEQ_AFTER_UPDATE_INFO_FRAME);
-
- /* Do not touch link on seamless boot optimization. */
- if (pipe_ctx->stream->apply_seamless_boot_optimization) {
- pipe_ctx->stream->dpms_off = false;
-
- /* Still enable stream features & audio on seamless boot for DP external displays */
- if (pipe_ctx->stream->signal == SIGNAL_TYPE_DISPLAY_PORT) {
- enable_stream_features(pipe_ctx);
- if (pipe_ctx->stream_res.audio != NULL) {
- pipe_ctx->stream_res.stream_enc->funcs->dp_audio_enable(pipe_ctx->stream_res.stream_enc);
- dc->hwss.enable_audio_stream(pipe_ctx);
- }
- }
-
-#if defined(CONFIG_DRM_AMD_DC_HDCP)
- update_psp_stream_config(pipe_ctx, false);
-#endif
- return;
- }
-
- /* eDP lit up by bios already, no need to enable again. */
- if (pipe_ctx->stream->signal == SIGNAL_TYPE_EDP &&
- apply_edp_fast_boot_optimization &&
- !pipe_ctx->stream->timing.flags.DSC &&
- !pipe_ctx->next_odm_pipe) {
- pipe_ctx->stream->dpms_off = false;
-#if defined(CONFIG_DRM_AMD_DC_HDCP)
- update_psp_stream_config(pipe_ctx, false);
-#endif
- return;
- }
-
- if (pipe_ctx->stream->dpms_off)
- return;
-
- /* Have to setup DSC before DIG FE and BE are connected (which happens before the
- * link training). This is to make sure the bandwidth sent to DIG BE won't be
- * bigger than what the link and/or DIG BE can handle. VBID[6]/CompressedStream_flag
- * will be automatically set at a later time when the video is enabled
- * (DP_VID_STREAM_EN = 1).
- */
- if (pipe_ctx->stream->timing.flags.DSC) {
- if (dc_is_dp_signal(pipe_ctx->stream->signal) ||
- dc_is_virtual_signal(pipe_ctx->stream->signal))
- dp_set_dsc_enable(pipe_ctx, true);
-
- }
-
- status = enable_link(state, pipe_ctx);
-
- if (status != DC_OK) {
- DC_LOG_WARNING("enabling link %u failed: %d\n",
- pipe_ctx->stream->link->link_index,
- status);
-
- /* Abort stream enable *unless* the failure was due to
- * DP link training - some DP monitors will recover and
- * show the stream anyway. But MST displays can't proceed
- * without link training.
- */
- if (status != DC_FAIL_DP_LINK_TRAINING ||
- pipe_ctx->stream->signal == SIGNAL_TYPE_DISPLAY_PORT_MST) {
- if (false == stream->link->link_status.link_active)
- disable_link(stream->link, &pipe_ctx->link_res,
- pipe_ctx->stream->signal);
- BREAK_TO_DEBUGGER();
- return;
- }
- }
-
- /* turn off otg test pattern if enable */
- if (pipe_ctx->stream_res.tg->funcs->set_test_pattern)
- pipe_ctx->stream_res.tg->funcs->set_test_pattern(pipe_ctx->stream_res.tg,
- CONTROLLER_DP_TEST_PATTERN_VIDEOMODE,
- COLOR_DEPTH_UNDEFINED);
-
- /* This second call is needed to reconfigure the DIG
- * as a workaround for the incorrect value being applied
- * from transmitter control.
- */
- if (!(dc_is_virtual_signal(pipe_ctx->stream->signal) ||
- is_dp_128b_132b_signal(pipe_ctx)))
- if (link_enc)
- link_enc->funcs->setup(
- link_enc,
- pipe_ctx->stream->signal);
-
- dc->hwss.enable_stream(pipe_ctx);
-
- /* Set DPS PPS SDP (AKA "info frames") */
- if (pipe_ctx->stream->timing.flags.DSC) {
- if (dc_is_dp_signal(pipe_ctx->stream->signal) ||
- dc_is_virtual_signal(pipe_ctx->stream->signal)) {
- dp_set_dsc_on_rx(pipe_ctx, true);
- dp_set_dsc_pps_sdp(pipe_ctx, true, true);
- }
- }
-
- if (pipe_ctx->stream->signal == SIGNAL_TYPE_DISPLAY_PORT_MST)
- dc_link_allocate_mst_payload(pipe_ctx);
- else if (pipe_ctx->stream->signal == SIGNAL_TYPE_DISPLAY_PORT &&
- is_dp_128b_132b_signal(pipe_ctx))
- dc_link_update_sst_payload(pipe_ctx, true);
-
- dc->hwss.unblank_stream(pipe_ctx,
- &pipe_ctx->stream->link->cur_link_settings);
-
- if (stream->sink_patches.delay_ignore_msa > 0)
- msleep(stream->sink_patches.delay_ignore_msa);
-
- if (dc_is_dp_signal(pipe_ctx->stream->signal))
- enable_stream_features(pipe_ctx);
-#if defined(CONFIG_DRM_AMD_DC_HDCP)
- update_psp_stream_config(pipe_ctx, false);
-#endif
-
- dc->hwss.enable_audio_stream(pipe_ctx);
-
- } else { // if (IS_FPGA_MAXIMUS_DC(dc->ctx->dce_environment))
- if (is_dp_128b_132b_signal(pipe_ctx))
- fpga_dp_hpo_enable_link_and_stream(state, pipe_ctx);
- if (dc_is_dp_signal(pipe_ctx->stream->signal) ||
- dc_is_virtual_signal(pipe_ctx->stream->signal))
- dp_set_dsc_enable(pipe_ctx, true);
- }
-
- if (dc_is_hdmi_signal(pipe_ctx->stream->signal)) {
- core_link_set_avmute(pipe_ctx, false);
- }
-}
-
-void core_link_disable_stream(struct pipe_ctx *pipe_ctx)
-{
- struct dc *dc = pipe_ctx->stream->ctx->dc;
- struct dc_stream_state *stream = pipe_ctx->stream;
- struct dc_link *link = stream->sink->link;
- struct vpg *vpg = pipe_ctx->stream_res.stream_enc->vpg;
-
- if (is_dp_128b_132b_signal(pipe_ctx))
- vpg = pipe_ctx->stream_res.hpo_dp_stream_enc->vpg;
-
- DC_LOGGER_INIT(pipe_ctx->stream->ctx->logger);
-
- if (pipe_ctx->stream->sink) {
- if (pipe_ctx->stream->sink->sink_signal != SIGNAL_TYPE_VIRTUAL &&
- pipe_ctx->stream->sink->sink_signal != SIGNAL_TYPE_NONE) {
- DC_LOG_DC("%s pipe_ctx dispname=%s signal=%x\n", __func__,
- pipe_ctx->stream->sink->edid_caps.display_name,
- pipe_ctx->stream->signal);
- }
- }
-
- if (!IS_DIAG_DC(dc->ctx->dce_environment) &&
- dc_is_virtual_signal(pipe_ctx->stream->signal))
- return;
-
- if (!pipe_ctx->stream->sink->edid_caps.panel_patch.skip_avmute) {
- if (dc_is_hdmi_signal(pipe_ctx->stream->signal))
- core_link_set_avmute(pipe_ctx, true);
- }
-
- dc->hwss.disable_audio_stream(pipe_ctx);
-
-#if defined(CONFIG_DRM_AMD_DC_HDCP)
- update_psp_stream_config(pipe_ctx, true);
-#endif
- dc->hwss.blank_stream(pipe_ctx);
-
- if (pipe_ctx->stream->signal == SIGNAL_TYPE_DISPLAY_PORT_MST)
- deallocate_mst_payload(pipe_ctx);
- else if (pipe_ctx->stream->signal == SIGNAL_TYPE_DISPLAY_PORT &&
- is_dp_128b_132b_signal(pipe_ctx))
- dc_link_update_sst_payload(pipe_ctx, false);
-
- if (dc_is_hdmi_signal(pipe_ctx->stream->signal)) {
- struct ext_hdmi_settings settings = {0};
- enum engine_id eng_id = pipe_ctx->stream_res.stream_enc->id;
-
- unsigned short masked_chip_caps = link->chip_caps &
- EXT_DISPLAY_PATH_CAPS__EXT_CHIP_MASK;
- //Need to inform that sink is going to use legacy HDMI mode.
- dal_ddc_service_write_scdc_data(
- link->ddc,
- 165000,//vbios only handles 165Mhz.
- false);
- if (masked_chip_caps == EXT_DISPLAY_PATH_CAPS__HDMI20_TISN65DP159RSBT) {
- /* DP159, Retimer settings */
- if (get_ext_hdmi_settings(pipe_ctx, eng_id, &settings))
- write_i2c_retimer_setting(pipe_ctx,
- false, false, &settings);
- else
- write_i2c_default_retimer_setting(pipe_ctx,
- false, false);
- } else if (masked_chip_caps == EXT_DISPLAY_PATH_CAPS__HDMI20_PI3EQX1204) {
- /* PI3EQX1204, Redriver settings */
- write_i2c_redriver_setting(pipe_ctx, false);
- }
- }
-
- if (pipe_ctx->stream->signal == SIGNAL_TYPE_DISPLAY_PORT &&
- !is_dp_128b_132b_signal(pipe_ctx)) {
-
- /* In DP1.x SST mode, our encoder will go to TPS1
- * when link is on but stream is off.
- * Disabling link before stream will avoid exposing TPS1 pattern
- * during the disable sequence as it will confuse some receivers
- * state machine.
- * In DP2 or MST mode, our encoder will stay video active
- */
- disable_link(pipe_ctx->stream->link, &pipe_ctx->link_res, pipe_ctx->stream->signal);
- dc->hwss.disable_stream(pipe_ctx);
- } else {
- dc->hwss.disable_stream(pipe_ctx);
- disable_link(pipe_ctx->stream->link, &pipe_ctx->link_res, pipe_ctx->stream->signal);
- }
-
- if (pipe_ctx->stream->timing.flags.DSC) {
- if (dc_is_dp_signal(pipe_ctx->stream->signal))
- dp_set_dsc_enable(pipe_ctx, false);
- }
- if (is_dp_128b_132b_signal(pipe_ctx)) {
- if (pipe_ctx->stream_res.tg->funcs->set_out_mux)
- pipe_ctx->stream_res.tg->funcs->set_out_mux(pipe_ctx->stream_res.tg, OUT_MUX_DIO);
- }
-
- if (vpg && vpg->funcs->vpg_powerdown)
- vpg->funcs->vpg_powerdown(vpg);
-}
-
-void core_link_set_avmute(struct pipe_ctx *pipe_ctx, bool enable)
-{
- struct dc *dc = pipe_ctx->stream->ctx->dc;
-
- if (!dc_is_hdmi_signal(pipe_ctx->stream->signal))
- return;
-
- dc->hwss.set_avmute(pipe_ctx, enable);
-}
-
-/**
- * dc_link_enable_hpd_filter:
- * If enable is true, programs HPD filter on associated HPD line using
- * delay_on_disconnect/delay_on_connect values dependent on
- * link->connector_signal
- *
- * If enable is false, programs HPD filter on associated HPD line with no
- * delays on connect or disconnect
- *
- * @link: pointer to the dc link
- * @enable: boolean specifying whether to enable hbd
- */
-void dc_link_enable_hpd_filter(struct dc_link *link, bool enable)
-{
- struct gpio *hpd;
-
- if (enable) {
- link->is_hpd_filter_disabled = false;
- program_hpd_filter(link);
- } else {
- link->is_hpd_filter_disabled = true;
- /* Obtain HPD handle */
- hpd = get_hpd_gpio(link->ctx->dc_bios, link->link_id, link->ctx->gpio_service);
-
- if (!hpd)
- return;
-
- /* Setup HPD filtering */
- if (dal_gpio_open(hpd, GPIO_MODE_INTERRUPT) == GPIO_RESULT_OK) {
- struct gpio_hpd_config config;
-
- config.delay_on_connect = 0;
- config.delay_on_disconnect = 0;
-
- dal_irq_setup_hpd_filter(hpd, &config);
-
- dal_gpio_close(hpd);
- } else {
- ASSERT_CRITICAL(false);
- }
- /* Release HPD handle */
- dal_gpio_destroy_irq(&hpd);
- }
-}
-
-void dc_link_set_drive_settings(struct dc *dc,
- struct link_training_settings *lt_settings,
- const struct dc_link *link)
-{
-
- int i;
- struct link_resource link_res;
-
- for (i = 0; i < dc->link_count; i++)
- if (dc->links[i] == link)
- break;
-
- if (i >= dc->link_count)
- ASSERT_CRITICAL(false);
-
- dc_link_get_cur_link_res(link, &link_res);
- dc_link_dp_set_drive_settings(dc->links[i], &link_res, lt_settings);
-}
-
-void dc_link_set_preferred_link_settings(struct dc *dc,
- struct dc_link_settings *link_setting,
- struct dc_link *link)
-{
- int i;
- struct pipe_ctx *pipe;
- struct dc_stream_state *link_stream;
- struct dc_link_settings store_settings = *link_setting;
-
- link->preferred_link_setting = store_settings;
-
- /* Retrain with preferred link settings only relevant for
- * DP signal type
- * Check for non-DP signal or if passive dongle present
- */
- if (!dc_is_dp_signal(link->connector_signal) ||
- link->dongle_max_pix_clk > 0)
- return;
-
- for (i = 0; i < MAX_PIPES; i++) {
- pipe = &dc->current_state->res_ctx.pipe_ctx[i];
- if (pipe->stream && pipe->stream->link) {
- if (pipe->stream->link == link) {
- link_stream = pipe->stream;
- break;
- }
- }
- }
-
- /* Stream not found */
- if (i == MAX_PIPES)
- return;
-
- /* Cannot retrain link if backend is off */
- if (link_stream->dpms_off)
- return;
-
- if (decide_link_settings(link_stream, &store_settings))
- dp_retrain_link_dp_test(link, &store_settings, false);
-}
-
-void dc_link_set_preferred_training_settings(struct dc *dc,
- struct dc_link_settings *link_setting,
- struct dc_link_training_overrides *lt_overrides,
- struct dc_link *link,
- bool skip_immediate_retrain)
-{
- if (lt_overrides != NULL)
- link->preferred_training_settings = *lt_overrides;
- else
- memset(&link->preferred_training_settings, 0, sizeof(link->preferred_training_settings));
-
- if (link_setting != NULL) {
- link->preferred_link_setting = *link_setting;
- if (dp_get_link_encoding_format(link_setting) == DP_128b_132b_ENCODING)
- /* TODO: add dc update for acquiring link res */
- skip_immediate_retrain = true;
- } else {
- link->preferred_link_setting.lane_count = LANE_COUNT_UNKNOWN;
- link->preferred_link_setting.link_rate = LINK_RATE_UNKNOWN;
- }
-
- /* Retrain now, or wait until next stream update to apply */
- if (skip_immediate_retrain == false)
- dc_link_set_preferred_link_settings(dc, &link->preferred_link_setting, link);
-}
-
-void dc_link_enable_hpd(const struct dc_link *link)
-{
- dc_link_dp_enable_hpd(link);
-}
-
-void dc_link_disable_hpd(const struct dc_link *link)
-{
- dc_link_dp_disable_hpd(link);
-}
-
-void dc_link_set_test_pattern(struct dc_link *link,
- enum dp_test_pattern test_pattern,
- enum dp_test_pattern_color_space test_pattern_color_space,
- const struct link_training_settings *p_link_settings,
- const unsigned char *p_custom_pattern,
- unsigned int cust_pattern_size)
-{
- if (link != NULL)
- dc_link_dp_set_test_pattern(
- link,
- test_pattern,
- test_pattern_color_space,
- p_link_settings,
- p_custom_pattern,
- cust_pattern_size);
-}
-
-uint32_t dc_link_bandwidth_kbps(
- const struct dc_link *link,
- const struct dc_link_settings *link_setting)
-{
- uint32_t total_data_bw_efficiency_x10000 = 0;
- uint32_t link_rate_per_lane_kbps = 0;
-
- switch (dp_get_link_encoding_format(link_setting)) {
- case DP_8b_10b_ENCODING:
- /* For 8b/10b encoding:
- * link rate is defined in the unit of LINK_RATE_REF_FREQ_IN_KHZ per DP byte per lane.
- * data bandwidth efficiency is 80% with additional 3% overhead if FEC is supported.
- */
- link_rate_per_lane_kbps = link_setting->link_rate * LINK_RATE_REF_FREQ_IN_KHZ * BITS_PER_DP_BYTE;
- total_data_bw_efficiency_x10000 = DATA_EFFICIENCY_8b_10b_x10000;
- if (dc_link_should_enable_fec(link)) {
- total_data_bw_efficiency_x10000 /= 100;
- total_data_bw_efficiency_x10000 *= DATA_EFFICIENCY_8b_10b_FEC_EFFICIENCY_x100;
- }
- break;
- case DP_128b_132b_ENCODING:
- /* For 128b/132b encoding:
- * link rate is defined in the unit of 10mbps per lane.
- * total data bandwidth efficiency is always 96.71%.
- */
- link_rate_per_lane_kbps = link_setting->link_rate * 10000;
- total_data_bw_efficiency_x10000 = DATA_EFFICIENCY_128b_132b_x10000;
- break;
- default:
- break;
- }
-
- /* overall effective link bandwidth = link rate per lane * lane count * total data bandwidth efficiency */
- return link_rate_per_lane_kbps * link_setting->lane_count / 10000 * total_data_bw_efficiency_x10000;
-}
-
-const struct dc_link_settings *dc_link_get_link_cap(
- const struct dc_link *link)
-{
- if (link->preferred_link_setting.lane_count != LANE_COUNT_UNKNOWN &&
- link->preferred_link_setting.link_rate != LINK_RATE_UNKNOWN)
- return &link->preferred_link_setting;
- return &link->verified_link_cap;
-}
-
-void dc_link_overwrite_extended_receiver_cap(
- struct dc_link *link)
-{
- dp_overwrite_extended_receiver_cap(link);
-}
-
-bool dc_link_is_fec_supported(const struct dc_link *link)
-{
- /* TODO - use asic cap instead of link_enc->features
- * we no longer know which link enc to use for this link before commit
- */
- struct link_encoder *link_enc = NULL;
-
- link_enc = link_enc_cfg_get_link_enc(link);
- ASSERT(link_enc);
-
- return (dc_is_dp_signal(link->connector_signal) && link_enc &&
- link_enc->features.fec_supported &&
- link->dpcd_caps.fec_cap.bits.FEC_CAPABLE &&
- !IS_FPGA_MAXIMUS_DC(link->ctx->dce_environment));
-}
-
-bool dc_link_should_enable_fec(const struct dc_link *link)
-{
- bool force_disable = false;
-
- if (link->fec_state == dc_link_fec_enabled)
- force_disable = false;
- else if (link->connector_signal != SIGNAL_TYPE_DISPLAY_PORT_MST &&
- link->local_sink &&
- link->local_sink->edid_caps.panel_patch.disable_fec)
- force_disable = true;
- else if (link->connector_signal == SIGNAL_TYPE_EDP
- && (link->dpcd_caps.dsc_caps.dsc_basic_caps.fields.
- dsc_support.DSC_SUPPORT == false
- || link->panel_config.dsc.disable_dsc_edp
- || !link->dc->caps.edp_dsc_support))
- force_disable = true;
-
- return !force_disable && dc_link_is_fec_supported(link);
-}
-
-uint32_t dc_bandwidth_in_kbps_from_timing(
- const struct dc_crtc_timing *timing)
-{
- uint32_t bits_per_channel = 0;
- uint32_t kbps;
-
-#if defined(CONFIG_DRM_AMD_DC_DCN)
- if (timing->flags.DSC)
- return dc_dsc_stream_bandwidth_in_kbps(timing,
- timing->dsc_cfg.bits_per_pixel,
- timing->dsc_cfg.num_slices_h,
- timing->dsc_cfg.is_dp);
-#endif /* CONFIG_DRM_AMD_DC_DCN */
-
- switch (timing->display_color_depth) {
- case COLOR_DEPTH_666:
- bits_per_channel = 6;
- break;
- case COLOR_DEPTH_888:
- bits_per_channel = 8;
- break;
- case COLOR_DEPTH_101010:
- bits_per_channel = 10;
- break;
- case COLOR_DEPTH_121212:
- bits_per_channel = 12;
- break;
- case COLOR_DEPTH_141414:
- bits_per_channel = 14;
- break;
- case COLOR_DEPTH_161616:
- bits_per_channel = 16;
- break;
- default:
- ASSERT(bits_per_channel != 0);
- bits_per_channel = 8;
- break;
- }
-
- kbps = timing->pix_clk_100hz / 10;
- kbps *= bits_per_channel;
-
- if (timing->flags.Y_ONLY != 1) {
- /*Only YOnly make reduce bandwidth by 1/3 compares to RGB*/
- kbps *= 3;
- if (timing->pixel_encoding == PIXEL_ENCODING_YCBCR420)
- kbps /= 2;
- else if (timing->pixel_encoding == PIXEL_ENCODING_YCBCR422)
- kbps = kbps * 2 / 3;
- }
-
- return kbps;
-
-}
-
-void dc_link_get_cur_link_res(const struct dc_link *link,
- struct link_resource *link_res)
-{
- int i;
- struct pipe_ctx *pipe = NULL;
-
- memset(link_res, 0, sizeof(*link_res));
-
- for (i = 0; i < MAX_PIPES; i++) {
- pipe = &link->dc->current_state->res_ctx.pipe_ctx[i];
- if (pipe->stream && pipe->stream->link && pipe->top_pipe == NULL) {
- if (pipe->stream->link == link) {
- *link_res = pipe->link_res;
- break;
- }
- }
- }
-
-}
-
-/**
- * dc_get_cur_link_res_map() - take a snapshot of current link resource allocation state
- * @dc: pointer to dc of the dm calling this
- * @map: a dc link resource snapshot defined internally to dc.
- *
- * DM needs to capture a snapshot of current link resource allocation mapping
- * and store it in its persistent storage.
- *
- * Some of the link resource is using first come first serve policy.
- * The allocation mapping depends on original hotplug order. This information
- * is lost after driver is loaded next time. The snapshot is used in order to
- * restore link resource to its previous state so user will get consistent
- * link capability allocation across reboot.
- *
- * Return: none (void function)
- *
- */
-void dc_get_cur_link_res_map(const struct dc *dc, uint32_t *map)
-{
- struct dc_link *link;
- uint32_t i;
- uint32_t hpo_dp_recycle_map = 0;
-
- *map = 0;
-
- if (dc->caps.dp_hpo) {
- for (i = 0; i < dc->caps.max_links; i++) {
- link = dc->links[i];
- if (link->link_status.link_active &&
- dp_get_link_encoding_format(&link->reported_link_cap) == DP_128b_132b_ENCODING &&
- dp_get_link_encoding_format(&link->cur_link_settings) != DP_128b_132b_ENCODING)
- /* hpo dp link encoder is considered as recycled, when RX reports 128b/132b encoding capability
- * but current link doesn't use it.
- */
- hpo_dp_recycle_map |= (1 << i);
- }
- *map |= (hpo_dp_recycle_map << LINK_RES_HPO_DP_REC_MAP__SHIFT);
- }
-}
-
-/**
- * dc_restore_link_res_map() - restore link resource allocation state from a snapshot
- * @dc: pointer to dc of the dm calling this
- * @map: a dc link resource snapshot defined internally to dc.
- *
- * DM needs to call this function after initial link detection on boot and
- * before first commit streams to restore link resource allocation state
- * from previous boot session.
- *
- * Some of the link resource is using first come first serve policy.
- * The allocation mapping depends on original hotplug order. This information
- * is lost after driver is loaded next time. The snapshot is used in order to
- * restore link resource to its previous state so user will get consistent
- * link capability allocation across reboot.
- *
- * Return: none (void function)
- *
- */
-void dc_restore_link_res_map(const struct dc *dc, uint32_t *map)
-{
- struct dc_link *link;
- uint32_t i;
- unsigned int available_hpo_dp_count;
- uint32_t hpo_dp_recycle_map = (*map & LINK_RES_HPO_DP_REC_MAP__MASK)
- >> LINK_RES_HPO_DP_REC_MAP__SHIFT;
-
- if (dc->caps.dp_hpo) {
- available_hpo_dp_count = dc->res_pool->hpo_dp_link_enc_count;
- /* remove excess 128b/132b encoding support for not recycled links */
- for (i = 0; i < dc->caps.max_links; i++) {
- if ((hpo_dp_recycle_map & (1 << i)) == 0) {
- link = dc->links[i];
- if (link->type != dc_connection_none &&
- dp_get_link_encoding_format(&link->verified_link_cap) == DP_128b_132b_ENCODING) {
- if (available_hpo_dp_count > 0)
- available_hpo_dp_count--;
- else
- /* remove 128b/132b encoding capability by limiting verified link rate to HBR3 */
- link->verified_link_cap.link_rate = LINK_RATE_HIGH3;
- }
- }
- }
- /* remove excess 128b/132b encoding support for recycled links */
- for (i = 0; i < dc->caps.max_links; i++) {
- if ((hpo_dp_recycle_map & (1 << i)) != 0) {
- link = dc->links[i];
- if (link->type != dc_connection_none &&
- dp_get_link_encoding_format(&link->verified_link_cap) == DP_128b_132b_ENCODING) {
- if (available_hpo_dp_count > 0)
- available_hpo_dp_count--;
- else
- /* remove 128b/132b encoding capability by limiting verified link rate to HBR3 */
- link->verified_link_cap.link_rate = LINK_RATE_HIGH3;
- }
- }
- }
- }
-}
diff --git a/drivers/gpu/drm/amd/display/dc/core/dc_link_dp.c b/drivers/gpu/drm/amd/display/dc/core/dc_link_dp.c
deleted file mode 100644
index 1254d38f1778..000000000000
--- a/drivers/gpu/drm/amd/display/dc/core/dc_link_dp.c
+++ /dev/null
@@ -1,7598 +0,0 @@
-/*
- * Copyright 2015 Advanced Micro Devices, Inc.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice shall be included in
- * all copies or substantial portions of the Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
- * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
- * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
- * OTHER DEALINGS IN THE SOFTWARE.
- *
- * Authors: AMD
- */
-#include "dm_services.h"
-#include "dc.h"
-#include "dc_link_dp.h"
-#include "dm_helpers.h"
-#include "opp.h"
-#include "dsc.h"
-#include "clk_mgr.h"
-#include "resource.h"
-
-#include "inc/core_types.h"
-#include "link_hwss.h"
-#include "dc_link_ddc.h"
-#include "core_status.h"
-#include "dpcd_defs.h"
-#include "dc_dmub_srv.h"
-#include "dce/dmub_hw_lock_mgr.h"
-#include "inc/dc_link_dpia.h"
-#include "inc/link_enc_cfg.h"
-#include "link/link_dp_trace.h"
-
-/*Travis*/
-static const uint8_t DP_VGA_LVDS_CONVERTER_ID_2[] = "sivarT";
-/*Nutmeg*/
-static const uint8_t DP_VGA_LVDS_CONVERTER_ID_3[] = "dnomlA";
-
-#define DC_LOGGER \
- link->ctx->logger
-#define DC_TRACE_LEVEL_MESSAGE(...) /* do nothing */
-
-#include "link_dpcd.h"
-
-#ifndef MAX
-#define MAX(X, Y) ((X) > (Y) ? (X) : (Y))
-#endif
-#ifndef MIN
-#define MIN(X, Y) ((X) < (Y) ? (X) : (Y))
-#endif
-
- /* maximum pre emphasis level allowed for each voltage swing level*/
- static const enum dc_pre_emphasis
- voltage_swing_to_pre_emphasis[] = { PRE_EMPHASIS_LEVEL3,
- PRE_EMPHASIS_LEVEL2,
- PRE_EMPHASIS_LEVEL1,
- PRE_EMPHASIS_DISABLED };
-
-enum {
- POST_LT_ADJ_REQ_LIMIT = 6,
- POST_LT_ADJ_REQ_TIMEOUT = 200
-};
-
-struct dp_lt_fallback_entry {
- enum dc_lane_count lane_count;
- enum dc_link_rate link_rate;
-};
-
-static const struct dp_lt_fallback_entry dp_lt_fallbacks[] = {
- /* This link training fallback array is ordered by
- * link bandwidth from highest to lowest.
- * DP specs makes it a normative policy to always
- * choose the next highest link bandwidth during
- * link training fallback.
- */
- {LANE_COUNT_FOUR, LINK_RATE_UHBR20},
- {LANE_COUNT_FOUR, LINK_RATE_UHBR13_5},
- {LANE_COUNT_TWO, LINK_RATE_UHBR20},
- {LANE_COUNT_FOUR, LINK_RATE_UHBR10},
- {LANE_COUNT_TWO, LINK_RATE_UHBR13_5},
- {LANE_COUNT_FOUR, LINK_RATE_HIGH3},
- {LANE_COUNT_ONE, LINK_RATE_UHBR20},
- {LANE_COUNT_TWO, LINK_RATE_UHBR10},
- {LANE_COUNT_FOUR, LINK_RATE_HIGH2},
- {LANE_COUNT_ONE, LINK_RATE_UHBR13_5},
- {LANE_COUNT_TWO, LINK_RATE_HIGH3},
- {LANE_COUNT_ONE, LINK_RATE_UHBR10},
- {LANE_COUNT_TWO, LINK_RATE_HIGH2},
- {LANE_COUNT_FOUR, LINK_RATE_HIGH},
- {LANE_COUNT_ONE, LINK_RATE_HIGH3},
- {LANE_COUNT_FOUR, LINK_RATE_LOW},
- {LANE_COUNT_ONE, LINK_RATE_HIGH2},
- {LANE_COUNT_TWO, LINK_RATE_HIGH},
- {LANE_COUNT_TWO, LINK_RATE_LOW},
- {LANE_COUNT_ONE, LINK_RATE_HIGH},
- {LANE_COUNT_ONE, LINK_RATE_LOW},
-};
-
-static const struct dc_link_settings fail_safe_link_settings = {
- .lane_count = LANE_COUNT_ONE,
- .link_rate = LINK_RATE_LOW,
- .link_spread = LINK_SPREAD_DISABLED,
-};
-
-static bool decide_fallback_link_setting(
- struct dc_link *link,
- struct dc_link_settings *max,
- struct dc_link_settings *cur,
- enum link_training_result training_result);
-static void maximize_lane_settings(const struct link_training_settings *lt_settings,
- struct dc_lane_settings lane_settings[LANE_COUNT_DP_MAX]);
-static void override_lane_settings(const struct link_training_settings *lt_settings,
- struct dc_lane_settings lane_settings[LANE_COUNT_DP_MAX]);
-
-static uint32_t get_cr_training_aux_rd_interval(struct dc_link *link,
- const struct dc_link_settings *link_settings)
-{
- union training_aux_rd_interval training_rd_interval;
- uint32_t wait_in_micro_secs = 100;
-
- memset(&training_rd_interval, 0, sizeof(training_rd_interval));
- if (dp_get_link_encoding_format(link_settings) == DP_8b_10b_ENCODING &&
- link->dpcd_caps.dpcd_rev.raw >= DPCD_REV_12) {
- core_link_read_dpcd(
- link,
- DP_TRAINING_AUX_RD_INTERVAL,
- (uint8_t *)&training_rd_interval,
- sizeof(training_rd_interval));
- if (training_rd_interval.bits.TRAINIG_AUX_RD_INTERVAL)
- wait_in_micro_secs = training_rd_interval.bits.TRAINIG_AUX_RD_INTERVAL * 4000;
- }
-
- return wait_in_micro_secs;
-}
-
-static uint32_t get_eq_training_aux_rd_interval(
- struct dc_link *link,
- const struct dc_link_settings *link_settings)
-{
- union training_aux_rd_interval training_rd_interval;
-
- memset(&training_rd_interval, 0, sizeof(training_rd_interval));
- if (dp_get_link_encoding_format(link_settings) == DP_128b_132b_ENCODING) {
- core_link_read_dpcd(
- link,
- DP_128b_132b_TRAINING_AUX_RD_INTERVAL,
- (uint8_t *)&training_rd_interval,
- sizeof(training_rd_interval));
- } else if (dp_get_link_encoding_format(link_settings) == DP_8b_10b_ENCODING &&
- link->dpcd_caps.dpcd_rev.raw >= DPCD_REV_12) {
- core_link_read_dpcd(
- link,
- DP_TRAINING_AUX_RD_INTERVAL,
- (uint8_t *)&training_rd_interval,
- sizeof(training_rd_interval));
- }
-
- switch (training_rd_interval.bits.TRAINIG_AUX_RD_INTERVAL) {
- case 0: return 400;
- case 1: return 4000;
- case 2: return 8000;
- case 3: return 12000;
- case 4: return 16000;
- case 5: return 32000;
- case 6: return 64000;
- default: return 400;
- }
-}
-
-void dp_wait_for_training_aux_rd_interval(
- struct dc_link *link,
- uint32_t wait_in_micro_secs)
-{
- if (wait_in_micro_secs > 1000)
- msleep(wait_in_micro_secs/1000);
- else
- udelay(wait_in_micro_secs);
-
- DC_LOG_HW_LINK_TRAINING("%s:\n wait = %d\n",
- __func__,
- wait_in_micro_secs);
-}
-
-enum dpcd_training_patterns
- dc_dp_training_pattern_to_dpcd_training_pattern(
- struct dc_link *link,
- enum dc_dp_training_pattern pattern)
-{
- enum dpcd_training_patterns dpcd_tr_pattern =
- DPCD_TRAINING_PATTERN_VIDEOIDLE;
-
- switch (pattern) {
- case DP_TRAINING_PATTERN_SEQUENCE_1:
- dpcd_tr_pattern = DPCD_TRAINING_PATTERN_1;
- break;
- case DP_TRAINING_PATTERN_SEQUENCE_2:
- dpcd_tr_pattern = DPCD_TRAINING_PATTERN_2;
- break;
- case DP_TRAINING_PATTERN_SEQUENCE_3:
- dpcd_tr_pattern = DPCD_TRAINING_PATTERN_3;
- break;
- case DP_TRAINING_PATTERN_SEQUENCE_4:
- dpcd_tr_pattern = DPCD_TRAINING_PATTERN_4;
- break;
- case DP_128b_132b_TPS1:
- dpcd_tr_pattern = DPCD_128b_132b_TPS1;
- break;
- case DP_128b_132b_TPS2:
- dpcd_tr_pattern = DPCD_128b_132b_TPS2;
- break;
- case DP_128b_132b_TPS2_CDS:
- dpcd_tr_pattern = DPCD_128b_132b_TPS2_CDS;
- break;
- case DP_TRAINING_PATTERN_VIDEOIDLE:
- dpcd_tr_pattern = DPCD_TRAINING_PATTERN_VIDEOIDLE;
- break;
- default:
- ASSERT(0);
- DC_LOG_HW_LINK_TRAINING("%s: Invalid HW Training pattern: %d\n",
- __func__, pattern);
- break;
- }
-
- return dpcd_tr_pattern;
-}
-
-static void dpcd_set_training_pattern(
- struct dc_link *link,
- enum dc_dp_training_pattern training_pattern)
-{
- union dpcd_training_pattern dpcd_pattern = {0};
-
- dpcd_pattern.v1_4.TRAINING_PATTERN_SET =
- dc_dp_training_pattern_to_dpcd_training_pattern(
- link, training_pattern);
-
- core_link_write_dpcd(
- link,
- DP_TRAINING_PATTERN_SET,
- &dpcd_pattern.raw,
- 1);
-
- DC_LOG_HW_LINK_TRAINING("%s\n %x pattern = %x\n",
- __func__,
- DP_TRAINING_PATTERN_SET,
- dpcd_pattern.v1_4.TRAINING_PATTERN_SET);
-}
-
-static enum dc_dp_training_pattern decide_cr_training_pattern(
- const struct dc_link_settings *link_settings)
-{
- switch (dp_get_link_encoding_format(link_settings)) {
- case DP_8b_10b_ENCODING:
- default:
- return DP_TRAINING_PATTERN_SEQUENCE_1;
- case DP_128b_132b_ENCODING:
- return DP_128b_132b_TPS1;
- }
-}
-
-static enum dc_dp_training_pattern decide_eq_training_pattern(struct dc_link *link,
- const struct dc_link_settings *link_settings)
-{
- struct link_encoder *link_enc;
- struct encoder_feature_support *enc_caps;
- struct dpcd_caps *rx_caps = &link->dpcd_caps;
- enum dc_dp_training_pattern pattern = DP_TRAINING_PATTERN_SEQUENCE_2;
-
- link_enc = link_enc_cfg_get_link_enc(link);
- ASSERT(link_enc);
- enc_caps = &link_enc->features;
-
- switch (dp_get_link_encoding_format(link_settings)) {
- case DP_8b_10b_ENCODING:
- if (enc_caps->flags.bits.IS_TPS4_CAPABLE &&
- rx_caps->max_down_spread.bits.TPS4_SUPPORTED)
- pattern = DP_TRAINING_PATTERN_SEQUENCE_4;
- else if (enc_caps->flags.bits.IS_TPS3_CAPABLE &&
- rx_caps->max_ln_count.bits.TPS3_SUPPORTED)
- pattern = DP_TRAINING_PATTERN_SEQUENCE_3;
- else
- pattern = DP_TRAINING_PATTERN_SEQUENCE_2;
- break;
- case DP_128b_132b_ENCODING:
- pattern = DP_128b_132b_TPS2;
- break;
- default:
- pattern = DP_TRAINING_PATTERN_SEQUENCE_2;
- break;
- }
- return pattern;
-}
-
-static uint8_t get_dpcd_link_rate(const struct dc_link_settings *link_settings)
-{
- uint8_t link_rate = 0;
- enum dp_link_encoding encoding = dp_get_link_encoding_format(link_settings);
-
- if (encoding == DP_128b_132b_ENCODING)
- switch (link_settings->link_rate) {
- case LINK_RATE_UHBR10:
- link_rate = 0x1;
- break;
- case LINK_RATE_UHBR20:
- link_rate = 0x2;
- break;
- case LINK_RATE_UHBR13_5:
- link_rate = 0x4;
- break;
- default:
- link_rate = 0;
- break;
- }
- else if (encoding == DP_8b_10b_ENCODING)
- link_rate = (uint8_t) link_settings->link_rate;
- else
- link_rate = 0;
-
- return link_rate;
-}
-
-static void dp_fixed_vs_pe_read_lane_adjust(
- struct dc_link *link,
- union dpcd_training_lane dpcd_lane_adjust[LANE_COUNT_DP_MAX])
-{
- const uint8_t vendor_lttpr_write_data_vs[3] = {0x0, 0x53, 0x63};
- const uint8_t vendor_lttpr_write_data_pe[3] = {0x0, 0x54, 0x63};
- const uint8_t offset = dp_convert_to_count(
- link->dpcd_caps.lttpr_caps.phy_repeater_cnt);
- uint32_t vendor_lttpr_write_address = 0xF004F;
- uint32_t vendor_lttpr_read_address = 0xF0053;
- uint8_t dprx_vs = 0;
- uint8_t dprx_pe = 0;
- uint8_t lane;
-
- if (offset != 0xFF) {
- vendor_lttpr_write_address +=
- ((DP_REPEATER_CONFIGURATION_AND_STATUS_SIZE) * (offset - 1));
- vendor_lttpr_read_address +=
- ((DP_REPEATER_CONFIGURATION_AND_STATUS_SIZE) * (offset - 1));
- }
-
- /* W/A to read lane settings requested by DPRX */
- core_link_write_dpcd(
- link,
- vendor_lttpr_write_address,
- &vendor_lttpr_write_data_vs[0],
- sizeof(vendor_lttpr_write_data_vs));
- core_link_read_dpcd(
- link,
- vendor_lttpr_read_address,
- &dprx_vs,
- 1);
- core_link_write_dpcd(
- link,
- vendor_lttpr_write_address,
- &vendor_lttpr_write_data_pe[0],
- sizeof(vendor_lttpr_write_data_pe));
- core_link_read_dpcd(
- link,
- vendor_lttpr_read_address,
- &dprx_pe,
- 1);
-
- for (lane = 0; lane < LANE_COUNT_DP_MAX; lane++) {
- dpcd_lane_adjust[lane].bits.VOLTAGE_SWING_SET = (dprx_vs >> (2 * lane)) & 0x3;
- dpcd_lane_adjust[lane].bits.PRE_EMPHASIS_SET = (dprx_pe >> (2 * lane)) & 0x3;
- }
-}
-
-static void dp_fixed_vs_pe_set_retimer_lane_settings(
- struct dc_link *link,
- const union dpcd_training_lane dpcd_lane_adjust[LANE_COUNT_DP_MAX],
- uint8_t lane_count)
-{
- const uint8_t offset = dp_convert_to_count(
- link->dpcd_caps.lttpr_caps.phy_repeater_cnt);
- const uint8_t vendor_lttpr_write_data_reset[4] = {0x1, 0x50, 0x63, 0xFF};
- uint32_t vendor_lttpr_write_address = 0xF004F;
- uint8_t vendor_lttpr_write_data_vs[4] = {0x1, 0x51, 0x63, 0x0};
- uint8_t vendor_lttpr_write_data_pe[4] = {0x1, 0x52, 0x63, 0x0};
- uint8_t lane = 0;
-
- if (offset != 0xFF) {
- vendor_lttpr_write_address +=
- ((DP_REPEATER_CONFIGURATION_AND_STATUS_SIZE) * (offset - 1));
- }
-
- for (lane = 0; lane < lane_count; lane++) {
- vendor_lttpr_write_data_vs[3] |=
- dpcd_lane_adjust[lane].bits.VOLTAGE_SWING_SET << (2 * lane);
- vendor_lttpr_write_data_pe[3] |=
- dpcd_lane_adjust[lane].bits.PRE_EMPHASIS_SET << (2 * lane);
- }
-
- /* Force LTTPR to output desired VS and PE */
- core_link_write_dpcd(
- link,
- vendor_lttpr_write_address,
- &vendor_lttpr_write_data_reset[0],
- sizeof(vendor_lttpr_write_data_reset));
- core_link_write_dpcd(
- link,
- vendor_lttpr_write_address,
- &vendor_lttpr_write_data_vs[0],
- sizeof(vendor_lttpr_write_data_vs));
- core_link_write_dpcd(
- link,
- vendor_lttpr_write_address,
- &vendor_lttpr_write_data_pe[0],
- sizeof(vendor_lttpr_write_data_pe));
-}
-
-enum dc_status dpcd_set_link_settings(
- struct dc_link *link,
- const struct link_training_settings *lt_settings)
-{
- uint8_t rate;
- enum dc_status status;
-
- union down_spread_ctrl downspread = {0};
- union lane_count_set lane_count_set = {0};
-
- downspread.raw = (uint8_t)
- (lt_settings->link_settings.link_spread);
-
- lane_count_set.bits.LANE_COUNT_SET =
- lt_settings->link_settings.lane_count;
-
- lane_count_set.bits.ENHANCED_FRAMING = lt_settings->enhanced_framing;
- lane_count_set.bits.POST_LT_ADJ_REQ_GRANTED = 0;
-
-
- if (link->ep_type == DISPLAY_ENDPOINT_PHY &&
- lt_settings->pattern_for_eq < DP_TRAINING_PATTERN_SEQUENCE_4) {
- lane_count_set.bits.POST_LT_ADJ_REQ_GRANTED =
- link->dpcd_caps.max_ln_count.bits.POST_LT_ADJ_REQ_SUPPORTED;
- }
-
- status = core_link_write_dpcd(link, DP_DOWNSPREAD_CTRL,
- &downspread.raw, sizeof(downspread));
-
- status = core_link_write_dpcd(link, DP_LANE_COUNT_SET,
- &lane_count_set.raw, 1);
-
- if (link->dpcd_caps.dpcd_rev.raw >= DPCD_REV_13 &&
- lt_settings->link_settings.use_link_rate_set == true) {
- rate = 0;
- /* WA for some MUX chips that will power down with eDP and lose supported
- * link rate set for eDP 1.4. Source reads DPCD 0x010 again to ensure
- * MUX chip gets link rate set back before link training.
- */
- if (link->connector_signal == SIGNAL_TYPE_EDP) {
- uint8_t supported_link_rates[16];
-
- core_link_read_dpcd(link, DP_SUPPORTED_LINK_RATES,
- supported_link_rates, sizeof(supported_link_rates));
- }
- status = core_link_write_dpcd(link, DP_LINK_BW_SET, &rate, 1);
- status = core_link_write_dpcd(link, DP_LINK_RATE_SET,
- &lt_settings->link_settings.link_rate_set, 1);
- } else {
- rate = get_dpcd_link_rate(&lt_settings->link_settings);
-
- status = core_link_write_dpcd(link, DP_LINK_BW_SET, &rate, 1);
- }
-
- if (rate) {
- DC_LOG_HW_LINK_TRAINING("%s\n %x rate = %x\n %x lane = %x framing = %x\n %x spread = %x\n",
- __func__,
- DP_LINK_BW_SET,
- lt_settings->link_settings.link_rate,
- DP_LANE_COUNT_SET,
- lt_settings->link_settings.lane_count,
- lt_settings->enhanced_framing,
- DP_DOWNSPREAD_CTRL,
- lt_settings->link_settings.link_spread);
- } else {
- DC_LOG_HW_LINK_TRAINING("%s\n %x rate set = %x\n %x lane = %x framing = %x\n %x spread = %x\n",
- __func__,
- DP_LINK_RATE_SET,
- lt_settings->link_settings.link_rate_set,
- DP_LANE_COUNT_SET,
- lt_settings->link_settings.lane_count,
- lt_settings->enhanced_framing,
- DP_DOWNSPREAD_CTRL,
- lt_settings->link_settings.link_spread);
- }
-
- return status;
-}
-
-uint8_t dc_dp_initialize_scrambling_data_symbols(
- struct dc_link *link,
- enum dc_dp_training_pattern pattern)
-{
- uint8_t disable_scrabled_data_symbols = 0;
-
- switch (pattern) {
- case DP_TRAINING_PATTERN_SEQUENCE_1:
- case DP_TRAINING_PATTERN_SEQUENCE_2:
- case DP_TRAINING_PATTERN_SEQUENCE_3:
- disable_scrabled_data_symbols = 1;
- break;
- case DP_TRAINING_PATTERN_SEQUENCE_4:
- case DP_128b_132b_TPS1:
- case DP_128b_132b_TPS2:
- disable_scrabled_data_symbols = 0;
- break;
- default:
- ASSERT(0);
- DC_LOG_HW_LINK_TRAINING("%s: Invalid HW Training pattern: %d\n",
- __func__, pattern);
- break;
- }
- return disable_scrabled_data_symbols;
-}
-
-static inline bool is_repeater(const struct link_training_settings *lt_settings, uint32_t offset)
-{
- return (lt_settings->lttpr_mode == LTTPR_MODE_NON_TRANSPARENT) && (offset != 0);
-}
-
-static void dpcd_set_lt_pattern_and_lane_settings(
- struct dc_link *link,
- const struct link_training_settings *lt_settings,
- enum dc_dp_training_pattern pattern,
- uint32_t offset)
-{
- uint32_t dpcd_base_lt_offset;
-
- uint8_t dpcd_lt_buffer[5] = {0};
- union dpcd_training_pattern dpcd_pattern = {0};
- uint32_t size_in_bytes;
- bool edp_workaround = false; /* TODO link_prop.INTERNAL */
- dpcd_base_lt_offset = DP_TRAINING_PATTERN_SET;
-
- if (is_repeater(lt_settings, offset))
- dpcd_base_lt_offset = DP_TRAINING_PATTERN_SET_PHY_REPEATER1 +
- ((DP_REPEATER_CONFIGURATION_AND_STATUS_SIZE) * (offset - 1));
-
- /*****************************************************************
- * DpcdAddress_TrainingPatternSet
- *****************************************************************/
- dpcd_pattern.v1_4.TRAINING_PATTERN_SET =
- dc_dp_training_pattern_to_dpcd_training_pattern(link, pattern);
-
- dpcd_pattern.v1_4.SCRAMBLING_DISABLE =
- dc_dp_initialize_scrambling_data_symbols(link, pattern);
-
- dpcd_lt_buffer[DP_TRAINING_PATTERN_SET - DP_TRAINING_PATTERN_SET]
- = dpcd_pattern.raw;
-
- if (is_repeater(lt_settings, offset)) {
- DC_LOG_HW_LINK_TRAINING("%s\n LTTPR Repeater ID: %d\n 0x%X pattern = %x\n",
- __func__,
- offset,
- dpcd_base_lt_offset,
- dpcd_pattern.v1_4.TRAINING_PATTERN_SET);
- } else {
- DC_LOG_HW_LINK_TRAINING("%s\n 0x%X pattern = %x\n",
- __func__,
- dpcd_base_lt_offset,
- dpcd_pattern.v1_4.TRAINING_PATTERN_SET);
- }
-
- /* concatenate everything into one buffer*/
- size_in_bytes = lt_settings->link_settings.lane_count *
- sizeof(lt_settings->dpcd_lane_settings[0]);
-
- // 0x00103 - 0x00102
- memmove(
- &dpcd_lt_buffer[DP_TRAINING_LANE0_SET - DP_TRAINING_PATTERN_SET],
- lt_settings->dpcd_lane_settings,
- size_in_bytes);
-
- if (is_repeater(lt_settings, offset)) {
- if (dp_get_link_encoding_format(&lt_settings->link_settings) ==
- DP_128b_132b_ENCODING)
- DC_LOG_HW_LINK_TRAINING("%s:\n LTTPR Repeater ID: %d\n"
- " 0x%X TX_FFE_PRESET_VALUE = %x\n",
- __func__,
- offset,
- dpcd_base_lt_offset,
- lt_settings->dpcd_lane_settings[0].tx_ffe.PRESET_VALUE);
- else if (dp_get_link_encoding_format(&lt_settings->link_settings) ==
- DP_8b_10b_ENCODING)
- DC_LOG_HW_LINK_TRAINING("%s:\n LTTPR Repeater ID: %d\n"
- " 0x%X VS set = %x PE set = %x max VS Reached = %x max PE Reached = %x\n",
- __func__,
- offset,
- dpcd_base_lt_offset,
- lt_settings->dpcd_lane_settings[0].bits.VOLTAGE_SWING_SET,
- lt_settings->dpcd_lane_settings[0].bits.PRE_EMPHASIS_SET,
- lt_settings->dpcd_lane_settings[0].bits.MAX_SWING_REACHED,
- lt_settings->dpcd_lane_settings[0].bits.MAX_PRE_EMPHASIS_REACHED);
- } else {
- if (dp_get_link_encoding_format(&lt_settings->link_settings) ==
- DP_128b_132b_ENCODING)
- DC_LOG_HW_LINK_TRAINING("%s:\n 0x%X TX_FFE_PRESET_VALUE = %x\n",
- __func__,
- dpcd_base_lt_offset,
- lt_settings->dpcd_lane_settings[0].tx_ffe.PRESET_VALUE);
- else if (dp_get_link_encoding_format(&lt_settings->link_settings) ==
- DP_8b_10b_ENCODING)
- DC_LOG_HW_LINK_TRAINING("%s:\n 0x%X VS set = %x PE set = %x max VS Reached = %x max PE Reached = %x\n",
- __func__,
- dpcd_base_lt_offset,
- lt_settings->dpcd_lane_settings[0].bits.VOLTAGE_SWING_SET,
- lt_settings->dpcd_lane_settings[0].bits.PRE_EMPHASIS_SET,
- lt_settings->dpcd_lane_settings[0].bits.MAX_SWING_REACHED,
- lt_settings->dpcd_lane_settings[0].bits.MAX_PRE_EMPHASIS_REACHED);
- }
- if (edp_workaround) {
- /* for eDP write in 2 parts because the 5-byte burst is
- * causing issues on some eDP panels (EPR#366724)
- */
- core_link_write_dpcd(
- link,
- DP_TRAINING_PATTERN_SET,
- &dpcd_pattern.raw,
- sizeof(dpcd_pattern.raw));
-
- core_link_write_dpcd(
- link,
- DP_TRAINING_LANE0_SET,
- (uint8_t *)(lt_settings->dpcd_lane_settings),
- size_in_bytes);
-
- } else if (dp_get_link_encoding_format(&lt_settings->link_settings) ==
- DP_128b_132b_ENCODING) {
- core_link_write_dpcd(
- link,
- dpcd_base_lt_offset,
- dpcd_lt_buffer,
- sizeof(dpcd_lt_buffer));
- } else
- /* write it all in (1 + number-of-lanes)-byte burst*/
- core_link_write_dpcd(
- link,
- dpcd_base_lt_offset,
- dpcd_lt_buffer,
- size_in_bytes + sizeof(dpcd_pattern.raw));
-}
-
-bool dp_is_cr_done(enum dc_lane_count ln_count,
- union lane_status *dpcd_lane_status)
-{
- uint32_t lane;
- /*LANEx_CR_DONE bits All 1's?*/
- for (lane = 0; lane < (uint32_t)(ln_count); lane++) {
- if (!dpcd_lane_status[lane].bits.CR_DONE_0)
- return false;
- }
- return true;
-}
-
-bool dp_is_ch_eq_done(enum dc_lane_count ln_count,
- union lane_status *dpcd_lane_status)
-{
- bool done = true;
- uint32_t lane;
- for (lane = 0; lane < (uint32_t)(ln_count); lane++)
- if (!dpcd_lane_status[lane].bits.CHANNEL_EQ_DONE_0)
- done = false;
- return done;
-}
-
-bool dp_is_symbol_locked(enum dc_lane_count ln_count,
- union lane_status *dpcd_lane_status)
-{
- bool locked = true;
- uint32_t lane;
- for (lane = 0; lane < (uint32_t)(ln_count); lane++)
- if (!dpcd_lane_status[lane].bits.SYMBOL_LOCKED_0)
- locked = false;
- return locked;
-}
-
-bool dp_is_interlane_aligned(union lane_align_status_updated align_status)
-{
- return align_status.bits.INTERLANE_ALIGN_DONE == 1;
-}
-
-void dp_hw_to_dpcd_lane_settings(
- const struct link_training_settings *lt_settings,
- const struct dc_lane_settings hw_lane_settings[LANE_COUNT_DP_MAX],
- union dpcd_training_lane dpcd_lane_settings[])
-{
- uint8_t lane = 0;
-
- for (lane = 0; lane < LANE_COUNT_DP_MAX; lane++) {
- if (dp_get_link_encoding_format(&lt_settings->link_settings) ==
- DP_8b_10b_ENCODING) {
- dpcd_lane_settings[lane].bits.VOLTAGE_SWING_SET =
- (uint8_t)(hw_lane_settings[lane].VOLTAGE_SWING);
- dpcd_lane_settings[lane].bits.PRE_EMPHASIS_SET =
- (uint8_t)(hw_lane_settings[lane].PRE_EMPHASIS);
- dpcd_lane_settings[lane].bits.MAX_SWING_REACHED =
- (hw_lane_settings[lane].VOLTAGE_SWING ==
- VOLTAGE_SWING_MAX_LEVEL ? 1 : 0);
- dpcd_lane_settings[lane].bits.MAX_PRE_EMPHASIS_REACHED =
- (hw_lane_settings[lane].PRE_EMPHASIS ==
- PRE_EMPHASIS_MAX_LEVEL ? 1 : 0);
- }
- else if (dp_get_link_encoding_format(&lt_settings->link_settings) ==
- DP_128b_132b_ENCODING) {
- dpcd_lane_settings[lane].tx_ffe.PRESET_VALUE =
- hw_lane_settings[lane].FFE_PRESET.settings.level;
- }
- }
-}
-
-void dp_decide_lane_settings(
- const struct link_training_settings *lt_settings,
- const union lane_adjust ln_adjust[LANE_COUNT_DP_MAX],
- struct dc_lane_settings hw_lane_settings[LANE_COUNT_DP_MAX],
- union dpcd_training_lane dpcd_lane_settings[])
-{
- uint32_t lane;
-
- for (lane = 0; lane < LANE_COUNT_DP_MAX; lane++) {
- if (dp_get_link_encoding_format(&lt_settings->link_settings) ==
- DP_8b_10b_ENCODING) {
- hw_lane_settings[lane].VOLTAGE_SWING =
- (enum dc_voltage_swing)(ln_adjust[lane].bits.
- VOLTAGE_SWING_LANE);
- hw_lane_settings[lane].PRE_EMPHASIS =
- (enum dc_pre_emphasis)(ln_adjust[lane].bits.
- PRE_EMPHASIS_LANE);
- }
- else if (dp_get_link_encoding_format(&lt_settings->link_settings) ==
- DP_128b_132b_ENCODING) {
- hw_lane_settings[lane].FFE_PRESET.raw =
- ln_adjust[lane].tx_ffe.PRESET_VALUE;
- }
- }
- dp_hw_to_dpcd_lane_settings(lt_settings, hw_lane_settings, dpcd_lane_settings);
-
- if (lt_settings->disallow_per_lane_settings) {
- /* we find the maximum of the requested settings across all lanes*/
- /* and set this maximum for all lanes*/
- maximize_lane_settings(lt_settings, hw_lane_settings);
- override_lane_settings(lt_settings, hw_lane_settings);
-
- if (lt_settings->always_match_dpcd_with_hw_lane_settings)
- dp_hw_to_dpcd_lane_settings(lt_settings, hw_lane_settings, dpcd_lane_settings);
- }
-
-}
-
-static uint8_t get_nibble_at_index(const uint8_t *buf,
- uint32_t index)
-{
- uint8_t nibble;
- nibble = buf[index / 2];
-
- if (index % 2)
- nibble >>= 4;
- else
- nibble &= 0x0F;
-
- return nibble;
-}
-
-static enum dc_pre_emphasis get_max_pre_emphasis_for_voltage_swing(
- enum dc_voltage_swing voltage)
-{
- enum dc_pre_emphasis pre_emphasis;
- pre_emphasis = PRE_EMPHASIS_MAX_LEVEL;
-
- if (voltage <= VOLTAGE_SWING_MAX_LEVEL)
- pre_emphasis = voltage_swing_to_pre_emphasis[voltage];
-
- return pre_emphasis;
-
-}
-
-static void maximize_lane_settings(const struct link_training_settings *lt_settings,
- struct dc_lane_settings lane_settings[LANE_COUNT_DP_MAX])
-{
- uint32_t lane;
- struct dc_lane_settings max_requested;
-
- max_requested.VOLTAGE_SWING = lane_settings[0].VOLTAGE_SWING;
- max_requested.PRE_EMPHASIS = lane_settings[0].PRE_EMPHASIS;
- max_requested.FFE_PRESET = lane_settings[0].FFE_PRESET;
-
- /* Determine what the maximum of the requested settings are*/
- for (lane = 1; lane < lt_settings->link_settings.lane_count; lane++) {
- if (lane_settings[lane].VOLTAGE_SWING > max_requested.VOLTAGE_SWING)
- max_requested.VOLTAGE_SWING = lane_settings[lane].VOLTAGE_SWING;
-
- if (lane_settings[lane].PRE_EMPHASIS > max_requested.PRE_EMPHASIS)
- max_requested.PRE_EMPHASIS = lane_settings[lane].PRE_EMPHASIS;
- if (lane_settings[lane].FFE_PRESET.settings.level >
- max_requested.FFE_PRESET.settings.level)
- max_requested.FFE_PRESET.settings.level =
- lane_settings[lane].FFE_PRESET.settings.level;
- }
-
- /* make sure the requested settings are
- * not higher than maximum settings*/
- if (max_requested.VOLTAGE_SWING > VOLTAGE_SWING_MAX_LEVEL)
- max_requested.VOLTAGE_SWING = VOLTAGE_SWING_MAX_LEVEL;
-
- if (max_requested.PRE_EMPHASIS > PRE_EMPHASIS_MAX_LEVEL)
- max_requested.PRE_EMPHASIS = PRE_EMPHASIS_MAX_LEVEL;
- if (max_requested.FFE_PRESET.settings.level > DP_FFE_PRESET_MAX_LEVEL)
- max_requested.FFE_PRESET.settings.level = DP_FFE_PRESET_MAX_LEVEL;
-
- /* make sure the pre-emphasis matches the voltage swing*/
- if (max_requested.PRE_EMPHASIS >
- get_max_pre_emphasis_for_voltage_swing(
- max_requested.VOLTAGE_SWING))
- max_requested.PRE_EMPHASIS =
- get_max_pre_emphasis_for_voltage_swing(
- max_requested.VOLTAGE_SWING);
-
- for (lane = 0; lane < LANE_COUNT_DP_MAX; lane++) {
- lane_settings[lane].VOLTAGE_SWING = max_requested.VOLTAGE_SWING;
- lane_settings[lane].PRE_EMPHASIS = max_requested.PRE_EMPHASIS;
- lane_settings[lane].FFE_PRESET = max_requested.FFE_PRESET;
- }
-}
-
-static void override_lane_settings(const struct link_training_settings *lt_settings,
- struct dc_lane_settings lane_settings[LANE_COUNT_DP_MAX])
-{
- uint32_t lane;
-
- if (lt_settings->voltage_swing == NULL &&
- lt_settings->pre_emphasis == NULL &&
- lt_settings->ffe_preset == NULL &&
- lt_settings->post_cursor2 == NULL)
-
- return;
-
- for (lane = 0; lane < LANE_COUNT_DP_MAX; lane++) {
- if (lt_settings->voltage_swing)
- lane_settings[lane].VOLTAGE_SWING = *lt_settings->voltage_swing;
- if (lt_settings->pre_emphasis)
- lane_settings[lane].PRE_EMPHASIS = *lt_settings->pre_emphasis;
- if (lt_settings->post_cursor2)
- lane_settings[lane].POST_CURSOR2 = *lt_settings->post_cursor2;
- if (lt_settings->ffe_preset)
- lane_settings[lane].FFE_PRESET = *lt_settings->ffe_preset;
- }
-}
-
-enum dc_status dp_get_lane_status_and_lane_adjust(
- struct dc_link *link,
- const struct link_training_settings *link_training_setting,
- union lane_status ln_status[LANE_COUNT_DP_MAX],
- union lane_align_status_updated *ln_align,
- union lane_adjust ln_adjust[LANE_COUNT_DP_MAX],
- uint32_t offset)
-{
- unsigned int lane01_status_address = DP_LANE0_1_STATUS;
- uint8_t lane_adjust_offset = 4;
- unsigned int lane01_adjust_address;
- uint8_t dpcd_buf[6] = {0};
- uint32_t lane;
- enum dc_status status;
-
- if (is_repeater(link_training_setting, offset)) {
- lane01_status_address =
- DP_LANE0_1_STATUS_PHY_REPEATER1 +
- ((DP_REPEATER_CONFIGURATION_AND_STATUS_SIZE) * (offset - 1));
- lane_adjust_offset = 3;
- }
-
- status = core_link_read_dpcd(
- link,
- lane01_status_address,
- (uint8_t *)(dpcd_buf),
- sizeof(dpcd_buf));
-
- if (status != DC_OK) {
- DC_LOG_HW_LINK_TRAINING("%s:\n Failed to read from address 0x%X,"
- " keep current lane status and lane adjust unchanged",
- __func__,
- lane01_status_address);
- return status;
- }
-
- for (lane = 0; lane <
- (uint32_t)(link_training_setting->link_settings.lane_count);
- lane++) {
-
- ln_status[lane].raw =
- get_nibble_at_index(&dpcd_buf[0], lane);
- ln_adjust[lane].raw =
- get_nibble_at_index(&dpcd_buf[lane_adjust_offset], lane);
- }
-
- ln_align->raw = dpcd_buf[2];
-
- if (is_repeater(link_training_setting, offset)) {
- DC_LOG_HW_LINK_TRAINING("%s:\n LTTPR Repeater ID: %d\n"
- " 0x%X Lane01Status = %x\n 0x%X Lane23Status = %x\n ",
- __func__,
- offset,
- lane01_status_address, dpcd_buf[0],
- lane01_status_address + 1, dpcd_buf[1]);
-
- lane01_adjust_address = DP_ADJUST_REQUEST_LANE0_1_PHY_REPEATER1 +
- ((DP_REPEATER_CONFIGURATION_AND_STATUS_SIZE) * (offset - 1));
-
- DC_LOG_HW_LINK_TRAINING("%s:\n LTTPR Repeater ID: %d\n"
- " 0x%X Lane01AdjustRequest = %x\n 0x%X Lane23AdjustRequest = %x\n",
- __func__,
- offset,
- lane01_adjust_address,
- dpcd_buf[lane_adjust_offset],
- lane01_adjust_address + 1,
- dpcd_buf[lane_adjust_offset + 1]);
- } else {
- DC_LOG_HW_LINK_TRAINING("%s:\n 0x%X Lane01Status = %x\n 0x%X Lane23Status = %x\n ",
- __func__,
- lane01_status_address, dpcd_buf[0],
- lane01_status_address + 1, dpcd_buf[1]);
-
- lane01_adjust_address = DP_ADJUST_REQUEST_LANE0_1;
-
- DC_LOG_HW_LINK_TRAINING("%s:\n 0x%X Lane01AdjustRequest = %x\n 0x%X Lane23AdjustRequest = %x\n",
- __func__,
- lane01_adjust_address,
- dpcd_buf[lane_adjust_offset],
- lane01_adjust_address + 1,
- dpcd_buf[lane_adjust_offset + 1]);
- }
-
- return status;
-}
-
-static enum dc_status dpcd_128b_132b_set_lane_settings(
- struct dc_link *link,
- const struct link_training_settings *link_training_setting)
-{
- enum dc_status status = core_link_write_dpcd(link,
- DP_TRAINING_LANE0_SET,
- (uint8_t *)(link_training_setting->dpcd_lane_settings),
- sizeof(link_training_setting->dpcd_lane_settings));
-
- DC_LOG_HW_LINK_TRAINING("%s:\n 0x%X TX_FFE_PRESET_VALUE = %x\n",
- __func__,
- DP_TRAINING_LANE0_SET,
- link_training_setting->dpcd_lane_settings[0].tx_ffe.PRESET_VALUE);
- return status;
-}
-
-
-enum dc_status dpcd_set_lane_settings(
- struct dc_link *link,
- const struct link_training_settings *link_training_setting,
- uint32_t offset)
-{
- unsigned int lane0_set_address;
- enum dc_status status;
-
- lane0_set_address = DP_TRAINING_LANE0_SET;
-
- if (is_repeater(link_training_setting, offset))
- lane0_set_address = DP_TRAINING_LANE0_SET_PHY_REPEATER1 +
- ((DP_REPEATER_CONFIGURATION_AND_STATUS_SIZE) * (offset - 1));
-
- status = core_link_write_dpcd(link,
- lane0_set_address,
- (uint8_t *)(link_training_setting->dpcd_lane_settings),
- link_training_setting->link_settings.lane_count);
-
- if (is_repeater(link_training_setting, offset)) {
- DC_LOG_HW_LINK_TRAINING("%s\n LTTPR Repeater ID: %d\n"
- " 0x%X VS set = %x PE set = %x max VS Reached = %x max PE Reached = %x\n",
- __func__,
- offset,
- lane0_set_address,
- link_training_setting->dpcd_lane_settings[0].bits.VOLTAGE_SWING_SET,
- link_training_setting->dpcd_lane_settings[0].bits.PRE_EMPHASIS_SET,
- link_training_setting->dpcd_lane_settings[0].bits.MAX_SWING_REACHED,
- link_training_setting->dpcd_lane_settings[0].bits.MAX_PRE_EMPHASIS_REACHED);
-
- } else {
- DC_LOG_HW_LINK_TRAINING("%s\n 0x%X VS set = %x PE set = %x max VS Reached = %x max PE Reached = %x\n",
- __func__,
- lane0_set_address,
- link_training_setting->dpcd_lane_settings[0].bits.VOLTAGE_SWING_SET,
- link_training_setting->dpcd_lane_settings[0].bits.PRE_EMPHASIS_SET,
- link_training_setting->dpcd_lane_settings[0].bits.MAX_SWING_REACHED,
- link_training_setting->dpcd_lane_settings[0].bits.MAX_PRE_EMPHASIS_REACHED);
- }
-
- return status;
-}
-
-bool dp_is_max_vs_reached(
- const struct link_training_settings *lt_settings)
-{
- uint32_t lane;
- for (lane = 0; lane <
- (uint32_t)(lt_settings->link_settings.lane_count);
- lane++) {
- if (lt_settings->dpcd_lane_settings[lane].bits.VOLTAGE_SWING_SET
- == VOLTAGE_SWING_MAX_LEVEL)
- return true;
- }
- return false;
-
-}
-
-static bool perform_post_lt_adj_req_sequence(
- struct dc_link *link,
- const struct link_resource *link_res,
- struct link_training_settings *lt_settings)
-{
- enum dc_lane_count lane_count =
- lt_settings->link_settings.lane_count;
-
- uint32_t adj_req_count;
- uint32_t adj_req_timer;
- bool req_drv_setting_changed;
- uint32_t lane;
- union lane_status dpcd_lane_status[LANE_COUNT_DP_MAX] = {0};
- union lane_align_status_updated dpcd_lane_status_updated = {0};
- union lane_adjust dpcd_lane_adjust[LANE_COUNT_DP_MAX] = {0};
-
- req_drv_setting_changed = false;
- for (adj_req_count = 0; adj_req_count < POST_LT_ADJ_REQ_LIMIT;
- adj_req_count++) {
-
- req_drv_setting_changed = false;
-
- for (adj_req_timer = 0;
- adj_req_timer < POST_LT_ADJ_REQ_TIMEOUT;
- adj_req_timer++) {
-
- dp_get_lane_status_and_lane_adjust(
- link,
- lt_settings,
- dpcd_lane_status,
- &dpcd_lane_status_updated,
- dpcd_lane_adjust,
- DPRX);
-
- if (dpcd_lane_status_updated.bits.
- POST_LT_ADJ_REQ_IN_PROGRESS == 0)
- return true;
-
- if (!dp_is_cr_done(lane_count, dpcd_lane_status))
- return false;
-
- if (!dp_is_ch_eq_done(lane_count, dpcd_lane_status) ||
- !dp_is_symbol_locked(lane_count, dpcd_lane_status) ||
- !dp_is_interlane_aligned(dpcd_lane_status_updated))
- return false;
-
- for (lane = 0; lane < (uint32_t)(lane_count); lane++) {
-
- if (lt_settings->
- dpcd_lane_settings[lane].bits.VOLTAGE_SWING_SET !=
- dpcd_lane_adjust[lane].bits.VOLTAGE_SWING_LANE ||
- lt_settings->dpcd_lane_settings[lane].bits.PRE_EMPHASIS_SET !=
- dpcd_lane_adjust[lane].bits.PRE_EMPHASIS_LANE) {
-
- req_drv_setting_changed = true;
- break;
- }
- }
-
- if (req_drv_setting_changed) {
- dp_decide_lane_settings(lt_settings, dpcd_lane_adjust,
- lt_settings->hw_lane_settings, lt_settings->dpcd_lane_settings);
-
- dc_link_dp_set_drive_settings(link,
- link_res,
- lt_settings);
- break;
- }
-
- msleep(1);
- }
-
- if (!req_drv_setting_changed) {
- DC_LOG_WARNING("%s: Post Link Training Adjust Request Timed out\n",
- __func__);
-
- ASSERT(0);
- return true;
- }
- }
- DC_LOG_WARNING("%s: Post Link Training Adjust Request limit reached\n",
- __func__);
-
- ASSERT(0);
- return true;
-
-}
-
-/* Only used for channel equalization */
-uint32_t dp_translate_training_aux_read_interval(uint32_t dpcd_aux_read_interval)
-{
- unsigned int aux_rd_interval_us = 400;
-
- switch (dpcd_aux_read_interval) {
- case 0x01:
- aux_rd_interval_us = 4000;
- break;
- case 0x02:
- aux_rd_interval_us = 8000;
- break;
- case 0x03:
- aux_rd_interval_us = 12000;
- break;
- case 0x04:
- aux_rd_interval_us = 16000;
- break;
- case 0x05:
- aux_rd_interval_us = 32000;
- break;
- case 0x06:
- aux_rd_interval_us = 64000;
- break;
- default:
- break;
- }
-
- return aux_rd_interval_us;
-}
-
-enum link_training_result dp_get_cr_failure(enum dc_lane_count ln_count,
- union lane_status *dpcd_lane_status)
-{
- enum link_training_result result = LINK_TRAINING_SUCCESS;
-
- if (ln_count >= LANE_COUNT_ONE && !dpcd_lane_status[0].bits.CR_DONE_0)
- result = LINK_TRAINING_CR_FAIL_LANE0;
- else if (ln_count >= LANE_COUNT_TWO && !dpcd_lane_status[1].bits.CR_DONE_0)
- result = LINK_TRAINING_CR_FAIL_LANE1;
- else if (ln_count >= LANE_COUNT_FOUR && !dpcd_lane_status[2].bits.CR_DONE_0)
- result = LINK_TRAINING_CR_FAIL_LANE23;
- else if (ln_count >= LANE_COUNT_FOUR && !dpcd_lane_status[3].bits.CR_DONE_0)
- result = LINK_TRAINING_CR_FAIL_LANE23;
- return result;
-}
-
-static enum link_training_result perform_channel_equalization_sequence(
- struct dc_link *link,
- const struct link_resource *link_res,
- struct link_training_settings *lt_settings,
- uint32_t offset)
-{
- enum dc_dp_training_pattern tr_pattern;
- uint32_t retries_ch_eq;
- uint32_t wait_time_microsec;
- enum dc_lane_count lane_count = lt_settings->link_settings.lane_count;
- union lane_align_status_updated dpcd_lane_status_updated = {0};
- union lane_status dpcd_lane_status[LANE_COUNT_DP_MAX] = {0};
- union lane_adjust dpcd_lane_adjust[LANE_COUNT_DP_MAX] = {0};
-
- /* Note: also check that TPS4 is a supported feature*/
- tr_pattern = lt_settings->pattern_for_eq;
-
- if (is_repeater(lt_settings, offset) && dp_get_link_encoding_format(&lt_settings->link_settings) == DP_8b_10b_ENCODING)
- tr_pattern = DP_TRAINING_PATTERN_SEQUENCE_4;
-
- dp_set_hw_training_pattern(link, link_res, tr_pattern, offset);
-
- for (retries_ch_eq = 0; retries_ch_eq <= LINK_TRAINING_MAX_RETRY_COUNT;
- retries_ch_eq++) {
-
- dp_set_hw_lane_settings(link, link_res, lt_settings, offset);
-
- /* 2. update DPCD*/
- if (!retries_ch_eq)
- /* EPR #361076 - write as a 5-byte burst,
- * but only for the 1-st iteration
- */
-
- dpcd_set_lt_pattern_and_lane_settings(
- link,
- lt_settings,
- tr_pattern, offset);
- else
- dpcd_set_lane_settings(link, lt_settings, offset);
-
- /* 3. wait for receiver to lock-on*/
- wait_time_microsec = lt_settings->eq_pattern_time;
-
- if (is_repeater(lt_settings, offset))
- wait_time_microsec =
- dp_translate_training_aux_read_interval(
- link->dpcd_caps.lttpr_caps.aux_rd_interval[offset - 1]);
-
- dp_wait_for_training_aux_rd_interval(
- link,
- wait_time_microsec);
-
- /* 4. Read lane status and requested
- * drive settings as set by the sink*/
-
- dp_get_lane_status_and_lane_adjust(
- link,
- lt_settings,
- dpcd_lane_status,
- &dpcd_lane_status_updated,
- dpcd_lane_adjust,
- offset);
-
- /* 5. check CR done*/
- if (!dp_is_cr_done(lane_count, dpcd_lane_status))
- return dpcd_lane_status[0].bits.CR_DONE_0 ?
- LINK_TRAINING_EQ_FAIL_CR_PARTIAL :
- LINK_TRAINING_EQ_FAIL_CR;
-
- /* 6. check CHEQ done*/
- if (dp_is_ch_eq_done(lane_count, dpcd_lane_status) &&
- dp_is_symbol_locked(lane_count, dpcd_lane_status) &&
- dp_is_interlane_aligned(dpcd_lane_status_updated))
- return LINK_TRAINING_SUCCESS;
-
- /* 7. update VS/PE/PC2 in lt_settings*/
- dp_decide_lane_settings(lt_settings, dpcd_lane_adjust,
- lt_settings->hw_lane_settings, lt_settings->dpcd_lane_settings);
- }
-
- return LINK_TRAINING_EQ_FAIL_EQ;
-
-}
-
-static void start_clock_recovery_pattern_early(struct dc_link *link,
- const struct link_resource *link_res,
- struct link_training_settings *lt_settings,
- uint32_t offset)
-{
- DC_LOG_HW_LINK_TRAINING("%s\n GPU sends TPS1. Wait 400us.\n",
- __func__);
- dp_set_hw_training_pattern(link, link_res, lt_settings->pattern_for_cr, offset);
- dp_set_hw_lane_settings(link, link_res, lt_settings, offset);
- udelay(400);
-}
-
-static enum link_training_result perform_clock_recovery_sequence(
- struct dc_link *link,
- const struct link_resource *link_res,
- struct link_training_settings *lt_settings,
- uint32_t offset)
-{
- uint32_t retries_cr;
- uint32_t retry_count;
- uint32_t wait_time_microsec;
- enum dc_lane_count lane_count = lt_settings->link_settings.lane_count;
- union lane_status dpcd_lane_status[LANE_COUNT_DP_MAX];
- union lane_align_status_updated dpcd_lane_status_updated;
- union lane_adjust dpcd_lane_adjust[LANE_COUNT_DP_MAX] = {0};
-
- retries_cr = 0;
- retry_count = 0;
-
- memset(&dpcd_lane_status, '\0', sizeof(dpcd_lane_status));
- memset(&dpcd_lane_status_updated, '\0',
- sizeof(dpcd_lane_status_updated));
-
- if (!link->ctx->dc->work_arounds.lt_early_cr_pattern)
- dp_set_hw_training_pattern(link, link_res, lt_settings->pattern_for_cr, offset);
-
- /* najeeb - The synaptics MST hub can put the LT in
- * infinite loop by switching the VS
- */
- /* between level 0 and level 1 continuously, here
- * we try for CR lock for LinkTrainingMaxCRRetry count*/
- while ((retries_cr < LINK_TRAINING_MAX_RETRY_COUNT) &&
- (retry_count < LINK_TRAINING_MAX_CR_RETRY)) {
-
-
- /* 1. call HWSS to set lane settings*/
- dp_set_hw_lane_settings(
- link,
- link_res,
- lt_settings,
- offset);
-
- /* 2. update DPCD of the receiver*/
- if (!retry_count)
- /* EPR #361076 - write as a 5-byte burst,
- * but only for the 1-st iteration.*/
- dpcd_set_lt_pattern_and_lane_settings(
- link,
- lt_settings,
- lt_settings->pattern_for_cr,
- offset);
- else
- dpcd_set_lane_settings(
- link,
- lt_settings,
- offset);
-
- /* 3. wait receiver to lock-on*/
- wait_time_microsec = lt_settings->cr_pattern_time;
-
- dp_wait_for_training_aux_rd_interval(
- link,
- wait_time_microsec);
-
- /* 4. Read lane status and requested drive
- * settings as set by the sink
- */
- dp_get_lane_status_and_lane_adjust(
- link,
- lt_settings,
- dpcd_lane_status,
- &dpcd_lane_status_updated,
- dpcd_lane_adjust,
- offset);
-
- /* 5. check CR done*/
- if (dp_is_cr_done(lane_count, dpcd_lane_status))
- return LINK_TRAINING_SUCCESS;
-
- /* 6. max VS reached*/
- if ((dp_get_link_encoding_format(&lt_settings->link_settings) ==
- DP_8b_10b_ENCODING) &&
- dp_is_max_vs_reached(lt_settings))
- break;
-
- /* 7. same lane settings*/
- /* Note: settings are the same for all lanes,
- * so comparing first lane is sufficient*/
- if ((dp_get_link_encoding_format(&lt_settings->link_settings) == DP_8b_10b_ENCODING) &&
- lt_settings->dpcd_lane_settings[0].bits.VOLTAGE_SWING_SET ==
- dpcd_lane_adjust[0].bits.VOLTAGE_SWING_LANE)
- retries_cr++;
- else if ((dp_get_link_encoding_format(&lt_settings->link_settings) == DP_128b_132b_ENCODING) &&
- lt_settings->dpcd_lane_settings[0].tx_ffe.PRESET_VALUE ==
- dpcd_lane_adjust[0].tx_ffe.PRESET_VALUE)
- retries_cr++;
- else
- retries_cr = 0;
-
- /* 8. update VS/PE/PC2 in lt_settings*/
- dp_decide_lane_settings(lt_settings, dpcd_lane_adjust,
- lt_settings->hw_lane_settings, lt_settings->dpcd_lane_settings);
- retry_count++;
- }
-
- if (retry_count >= LINK_TRAINING_MAX_CR_RETRY) {
- ASSERT(0);
- DC_LOG_ERROR("%s: Link Training Error, could not get CR after %d tries. Possibly voltage swing issue",
- __func__,
- LINK_TRAINING_MAX_CR_RETRY);
-
- }
-
- return dp_get_cr_failure(lane_count, dpcd_lane_status);
-}
-
-static inline enum link_training_result dp_transition_to_video_idle(
- struct dc_link *link,
- const struct link_resource *link_res,
- struct link_training_settings *lt_settings,
- enum link_training_result status)
-{
- union lane_count_set lane_count_set = {0};
-
- /* 4. mainlink output idle pattern*/
- dp_set_hw_test_pattern(link, link_res, DP_TEST_PATTERN_VIDEO_MODE, NULL, 0);
-
- /*
- * 5. post training adjust if required
- * If the upstream DPTX and downstream DPRX both support TPS4,
- * TPS4 must be used instead of POST_LT_ADJ_REQ.
- */
- if (link->dpcd_caps.max_ln_count.bits.POST_LT_ADJ_REQ_SUPPORTED != 1 ||
- lt_settings->pattern_for_eq >= DP_TRAINING_PATTERN_SEQUENCE_4) {
- /* delay 5ms after Main Link output idle pattern and then check
- * DPCD 0202h.
- */
- if (link->connector_signal != SIGNAL_TYPE_EDP && status == LINK_TRAINING_SUCCESS) {
- msleep(5);
- status = dp_check_link_loss_status(link, lt_settings);
- }
- return status;
- }
-
- if (status == LINK_TRAINING_SUCCESS &&
- perform_post_lt_adj_req_sequence(link, link_res, lt_settings) == false)
- status = LINK_TRAINING_LQA_FAIL;
-
- lane_count_set.bits.LANE_COUNT_SET = lt_settings->link_settings.lane_count;
- lane_count_set.bits.ENHANCED_FRAMING = lt_settings->enhanced_framing;
- lane_count_set.bits.POST_LT_ADJ_REQ_GRANTED = 0;
-
- core_link_write_dpcd(
- link,
- DP_LANE_COUNT_SET,
- &lane_count_set.raw,
- sizeof(lane_count_set));
-
- return status;
-}
-
-enum link_training_result dp_check_link_loss_status(
- struct dc_link *link,
- const struct link_training_settings *link_training_setting)
-{
- enum link_training_result status = LINK_TRAINING_SUCCESS;
- union lane_status lane_status;
- uint8_t dpcd_buf[6] = {0};
- uint32_t lane;
-
- core_link_read_dpcd(
- link,
- DP_SINK_COUNT,
- (uint8_t *)(dpcd_buf),
- sizeof(dpcd_buf));
-
- /*parse lane status*/
- for (lane = 0; lane < link->cur_link_settings.lane_count; lane++) {
- /*
- * check lanes status
- */
- lane_status.raw = get_nibble_at_index(&dpcd_buf[2], lane);
-
- if (!lane_status.bits.CHANNEL_EQ_DONE_0 ||
- !lane_status.bits.CR_DONE_0 ||
- !lane_status.bits.SYMBOL_LOCKED_0) {
- /* if one of the channel equalization, clock
- * recovery or symbol lock is dropped
- * consider it as (link has been
- * dropped) dp sink status has changed
- */
- status = LINK_TRAINING_LINK_LOSS;
- break;
- }
- }
-
- return status;
-}
-
-static inline void decide_8b_10b_training_settings(
- struct dc_link *link,
- const struct dc_link_settings *link_setting,
- struct link_training_settings *lt_settings)
-{
- memset(lt_settings, '\0', sizeof(struct link_training_settings));
-
- /* Initialize link settings */
- lt_settings->link_settings.use_link_rate_set = link_setting->use_link_rate_set;
- lt_settings->link_settings.link_rate_set = link_setting->link_rate_set;
- lt_settings->link_settings.link_rate = link_setting->link_rate;
- lt_settings->link_settings.lane_count = link_setting->lane_count;
- /* TODO hard coded to SS for now
- * lt_settings.link_settings.link_spread =
- * dal_display_path_is_ss_supported(
- * path_mode->display_path) ?
- * LINK_SPREAD_05_DOWNSPREAD_30KHZ :
- * LINK_SPREAD_DISABLED;
- */
- lt_settings->link_settings.link_spread = link->dp_ss_off ?
- LINK_SPREAD_DISABLED : LINK_SPREAD_05_DOWNSPREAD_30KHZ;
- lt_settings->cr_pattern_time = get_cr_training_aux_rd_interval(link, link_setting);
- lt_settings->eq_pattern_time = get_eq_training_aux_rd_interval(link, link_setting);
- lt_settings->pattern_for_cr = decide_cr_training_pattern(link_setting);
- lt_settings->pattern_for_eq = decide_eq_training_pattern(link, link_setting);
- lt_settings->enhanced_framing = 1;
- lt_settings->should_set_fec_ready = true;
- lt_settings->disallow_per_lane_settings = true;
- lt_settings->always_match_dpcd_with_hw_lane_settings = true;
- lt_settings->lttpr_mode = dp_decide_8b_10b_lttpr_mode(link);
- dp_hw_to_dpcd_lane_settings(lt_settings, lt_settings->hw_lane_settings, lt_settings->dpcd_lane_settings);
-}
-
-static inline void decide_128b_132b_training_settings(struct dc_link *link,
- const struct dc_link_settings *link_settings,
- struct link_training_settings *lt_settings)
-{
- memset(lt_settings, 0, sizeof(*lt_settings));
-
- lt_settings->link_settings = *link_settings;
- /* TODO: should decide link spread when populating link_settings */
- lt_settings->link_settings.link_spread = link->dp_ss_off ? LINK_SPREAD_DISABLED :
- LINK_SPREAD_05_DOWNSPREAD_30KHZ;
-
- lt_settings->pattern_for_cr = decide_cr_training_pattern(link_settings);
- lt_settings->pattern_for_eq = decide_eq_training_pattern(link, link_settings);
- lt_settings->eq_pattern_time = 2500;
- lt_settings->eq_wait_time_limit = 400000;
- lt_settings->eq_loop_count_limit = 20;
- lt_settings->pattern_for_cds = DP_128b_132b_TPS2_CDS;
- lt_settings->cds_pattern_time = 2500;
- lt_settings->cds_wait_time_limit = (dp_convert_to_count(
- link->dpcd_caps.lttpr_caps.phy_repeater_cnt) + 1) * 20000;
- lt_settings->disallow_per_lane_settings = true;
- lt_settings->lttpr_mode = dp_decide_128b_132b_lttpr_mode(link);
- dp_hw_to_dpcd_lane_settings(lt_settings,
- lt_settings->hw_lane_settings, lt_settings->dpcd_lane_settings);
-}
-
-void dp_decide_training_settings(
- struct dc_link *link,
- const struct dc_link_settings *link_settings,
- struct link_training_settings *lt_settings)
-{
- if (dp_get_link_encoding_format(link_settings) == DP_8b_10b_ENCODING)
- decide_8b_10b_training_settings(link, link_settings, lt_settings);
- else if (dp_get_link_encoding_format(link_settings) == DP_128b_132b_ENCODING)
- decide_128b_132b_training_settings(link, link_settings, lt_settings);
-}
-
-static void override_training_settings(
- struct dc_link *link,
- const struct dc_link_training_overrides *overrides,
- struct link_training_settings *lt_settings)
-{
- uint32_t lane;
-
- /* Override link spread */
- if (!link->dp_ss_off && overrides->downspread != NULL)
- lt_settings->link_settings.link_spread = *overrides->downspread ?
- LINK_SPREAD_05_DOWNSPREAD_30KHZ
- : LINK_SPREAD_DISABLED;
-
- /* Override lane settings */
- if (overrides->voltage_swing != NULL)
- lt_settings->voltage_swing = overrides->voltage_swing;
- if (overrides->pre_emphasis != NULL)
- lt_settings->pre_emphasis = overrides->pre_emphasis;
- if (overrides->post_cursor2 != NULL)
- lt_settings->post_cursor2 = overrides->post_cursor2;
- if (overrides->ffe_preset != NULL)
- lt_settings->ffe_preset = overrides->ffe_preset;
- /* Override HW lane settings with BIOS forced values if present */
- if (link->chip_caps & EXT_DISPLAY_PATH_CAPS__DP_FIXED_VS_EN &&
- lt_settings->lttpr_mode == LTTPR_MODE_TRANSPARENT) {
- lt_settings->voltage_swing = &link->bios_forced_drive_settings.VOLTAGE_SWING;
- lt_settings->pre_emphasis = &link->bios_forced_drive_settings.PRE_EMPHASIS;
- lt_settings->always_match_dpcd_with_hw_lane_settings = false;
- }
- for (lane = 0; lane < LANE_COUNT_DP_MAX; lane++) {
- lt_settings->hw_lane_settings[lane].VOLTAGE_SWING =
- lt_settings->voltage_swing != NULL ?
- *lt_settings->voltage_swing :
- VOLTAGE_SWING_LEVEL0;
- lt_settings->hw_lane_settings[lane].PRE_EMPHASIS =
- lt_settings->pre_emphasis != NULL ?
- *lt_settings->pre_emphasis
- : PRE_EMPHASIS_DISABLED;
- lt_settings->hw_lane_settings[lane].POST_CURSOR2 =
- lt_settings->post_cursor2 != NULL ?
- *lt_settings->post_cursor2
- : POST_CURSOR2_DISABLED;
- }
-
- if (lt_settings->always_match_dpcd_with_hw_lane_settings)
- dp_hw_to_dpcd_lane_settings(lt_settings,
- lt_settings->hw_lane_settings, lt_settings->dpcd_lane_settings);
-
- /* Initialize training timings */
- if (overrides->cr_pattern_time != NULL)
- lt_settings->cr_pattern_time = *overrides->cr_pattern_time;
-
- if (overrides->eq_pattern_time != NULL)
- lt_settings->eq_pattern_time = *overrides->eq_pattern_time;
-
- if (overrides->pattern_for_cr != NULL)
- lt_settings->pattern_for_cr = *overrides->pattern_for_cr;
- if (overrides->pattern_for_eq != NULL)
- lt_settings->pattern_for_eq = *overrides->pattern_for_eq;
-
- if (overrides->enhanced_framing != NULL)
- lt_settings->enhanced_framing = *overrides->enhanced_framing;
-
- if (link->preferred_training_settings.fec_enable != NULL)
- lt_settings->should_set_fec_ready = *link->preferred_training_settings.fec_enable;
-
- #if defined(CONFIG_DRM_AMD_DC_DCN)
- /* Check DP tunnel LTTPR mode debug option. */
- if (link->ep_type == DISPLAY_ENDPOINT_USB4_DPIA && link->dc->debug.dpia_debug.bits.force_non_lttpr)
- lt_settings->lttpr_mode = LTTPR_MODE_NON_LTTPR;
-
-#endif
- dp_get_lttpr_mode_override(link, &lt_settings->lttpr_mode);
-
-}
-
-uint8_t dp_convert_to_count(uint8_t lttpr_repeater_count)
-{
- switch (lttpr_repeater_count) {
- case 0x80: // 1 lttpr repeater
- return 1;
- case 0x40: // 2 lttpr repeaters
- return 2;
- case 0x20: // 3 lttpr repeaters
- return 3;
- case 0x10: // 4 lttpr repeaters
- return 4;
- case 0x08: // 5 lttpr repeaters
- return 5;
- case 0x04: // 6 lttpr repeaters
- return 6;
- case 0x02: // 7 lttpr repeaters
- return 7;
- case 0x01: // 8 lttpr repeaters
- return 8;
- default:
- break;
- }
- return 0; // invalid value
-}
-
-static enum dc_status configure_lttpr_mode_transparent(struct dc_link *link)
-{
- uint8_t repeater_mode = DP_PHY_REPEATER_MODE_TRANSPARENT;
-
- DC_LOG_HW_LINK_TRAINING("%s\n Set LTTPR to Transparent Mode\n", __func__);
- return core_link_write_dpcd(link,
- DP_PHY_REPEATER_MODE,
- (uint8_t *)&repeater_mode,
- sizeof(repeater_mode));
-}
-
-static enum dc_status configure_lttpr_mode_non_transparent(
- struct dc_link *link,
- const struct link_training_settings *lt_settings)
-{
- /* aux timeout is already set to extended */
- /* RESET/SET lttpr mode to enable non transparent mode */
- uint8_t repeater_cnt;
- uint32_t aux_interval_address;
- uint8_t repeater_id;
- enum dc_status result = DC_ERROR_UNEXPECTED;
- uint8_t repeater_mode = DP_PHY_REPEATER_MODE_TRANSPARENT;
-
- enum dp_link_encoding encoding = dp_get_link_encoding_format(&lt_settings->link_settings);
-
- if (encoding == DP_8b_10b_ENCODING) {
- DC_LOG_HW_LINK_TRAINING("%s\n Set LTTPR to Transparent Mode\n", __func__);
- result = core_link_write_dpcd(link,
- DP_PHY_REPEATER_MODE,
- (uint8_t *)&repeater_mode,
- sizeof(repeater_mode));
-
- }
-
- if (result == DC_OK) {
- link->dpcd_caps.lttpr_caps.mode = repeater_mode;
- }
-
- if (lt_settings->lttpr_mode == LTTPR_MODE_NON_TRANSPARENT) {
-
- DC_LOG_HW_LINK_TRAINING("%s\n Set LTTPR to Non Transparent Mode\n", __func__);
-
- repeater_mode = DP_PHY_REPEATER_MODE_NON_TRANSPARENT;
- result = core_link_write_dpcd(link,
- DP_PHY_REPEATER_MODE,
- (uint8_t *)&repeater_mode,
- sizeof(repeater_mode));
-
- if (result == DC_OK) {
- link->dpcd_caps.lttpr_caps.mode = repeater_mode;
- }
-
- if (encoding == DP_8b_10b_ENCODING) {
- repeater_cnt = dp_convert_to_count(link->dpcd_caps.lttpr_caps.phy_repeater_cnt);
-
- /* Driver does not need to train the first hop. Skip DPCD read and clear
- * AUX_RD_INTERVAL for DPTX-to-DPIA hop.
- */
- if (link->ep_type == DISPLAY_ENDPOINT_USB4_DPIA)
- link->dpcd_caps.lttpr_caps.aux_rd_interval[--repeater_cnt] = 0;
-
- for (repeater_id = repeater_cnt; repeater_id > 0; repeater_id--) {
- aux_interval_address = DP_TRAINING_AUX_RD_INTERVAL_PHY_REPEATER1 +
- ((DP_REPEATER_CONFIGURATION_AND_STATUS_SIZE) * (repeater_id - 1));
- core_link_read_dpcd(
- link,
- aux_interval_address,
- (uint8_t *)&link->dpcd_caps.lttpr_caps.aux_rd_interval[repeater_id - 1],
- sizeof(link->dpcd_caps.lttpr_caps.aux_rd_interval[repeater_id - 1]));
- link->dpcd_caps.lttpr_caps.aux_rd_interval[repeater_id - 1] &= 0x7F;
- }
- }
- }
-
- return result;
-}
-
-static void repeater_training_done(struct dc_link *link, uint32_t offset)
-{
- union dpcd_training_pattern dpcd_pattern = {0};
-
- const uint32_t dpcd_base_lt_offset =
- DP_TRAINING_PATTERN_SET_PHY_REPEATER1 +
- ((DP_REPEATER_CONFIGURATION_AND_STATUS_SIZE) * (offset - 1));
- /* Set training not in progress*/
- dpcd_pattern.v1_4.TRAINING_PATTERN_SET = DPCD_TRAINING_PATTERN_VIDEOIDLE;
-
- core_link_write_dpcd(
- link,
- dpcd_base_lt_offset,
- &dpcd_pattern.raw,
- 1);
-
- DC_LOG_HW_LINK_TRAINING("%s\n LTTPR Id: %d 0x%X pattern = %x\n",
- __func__,
- offset,
- dpcd_base_lt_offset,
- dpcd_pattern.v1_4.TRAINING_PATTERN_SET);
-}
-
-static void print_status_message(
- struct dc_link *link,
- const struct link_training_settings *lt_settings,
- enum link_training_result status)
-{
- char *link_rate = "Unknown";
- char *lt_result = "Unknown";
- char *lt_spread = "Disabled";
-
- switch (lt_settings->link_settings.link_rate) {
- case LINK_RATE_LOW:
- link_rate = "RBR";
- break;
- case LINK_RATE_RATE_2:
- link_rate = "R2";
- break;
- case LINK_RATE_RATE_3:
- link_rate = "R3";
- break;
- case LINK_RATE_HIGH:
- link_rate = "HBR";
- break;
- case LINK_RATE_RBR2:
- link_rate = "RBR2";
- break;
- case LINK_RATE_RATE_6:
- link_rate = "R6";
- break;
- case LINK_RATE_HIGH2:
- link_rate = "HBR2";
- break;
- case LINK_RATE_HIGH3:
- link_rate = "HBR3";
- break;
- case LINK_RATE_UHBR10:
- link_rate = "UHBR10";
- break;
- case LINK_RATE_UHBR13_5:
- link_rate = "UHBR13.5";
- break;
- case LINK_RATE_UHBR20:
- link_rate = "UHBR20";
- break;
- default:
- break;
- }
-
- switch (status) {
- case LINK_TRAINING_SUCCESS:
- lt_result = "pass";
- break;
- case LINK_TRAINING_CR_FAIL_LANE0:
- lt_result = "CR failed lane0";
- break;
- case LINK_TRAINING_CR_FAIL_LANE1:
- lt_result = "CR failed lane1";
- break;
- case LINK_TRAINING_CR_FAIL_LANE23:
- lt_result = "CR failed lane23";
- break;
- case LINK_TRAINING_EQ_FAIL_CR:
- lt_result = "CR failed in EQ";
- break;
- case LINK_TRAINING_EQ_FAIL_CR_PARTIAL:
- lt_result = "CR failed in EQ partially";
- break;
- case LINK_TRAINING_EQ_FAIL_EQ:
- lt_result = "EQ failed";
- break;
- case LINK_TRAINING_LQA_FAIL:
- lt_result = "LQA failed";
- break;
- case LINK_TRAINING_LINK_LOSS:
- lt_result = "Link loss";
- break;
- case DP_128b_132b_LT_FAILED:
- lt_result = "LT_FAILED received";
- break;
- case DP_128b_132b_MAX_LOOP_COUNT_REACHED:
- lt_result = "max loop count reached";
- break;
- case DP_128b_132b_CHANNEL_EQ_DONE_TIMEOUT:
- lt_result = "channel EQ timeout";
- break;
- case DP_128b_132b_CDS_DONE_TIMEOUT:
- lt_result = "CDS timeout";
- break;
- default:
- break;
- }
-
- switch (lt_settings->link_settings.link_spread) {
- case LINK_SPREAD_DISABLED:
- lt_spread = "Disabled";
- break;
- case LINK_SPREAD_05_DOWNSPREAD_30KHZ:
- lt_spread = "0.5% 30KHz";
- break;
- case LINK_SPREAD_05_DOWNSPREAD_33KHZ:
- lt_spread = "0.5% 33KHz";
- break;
- default:
- break;
- }
-
- /* Connectivity log: link training */
-
- /* TODO - DP2.0 Log: add connectivity log for FFE PRESET */
-
- CONN_MSG_LT(link, "%sx%d %s VS=%d, PE=%d, DS=%s",
- link_rate,
- lt_settings->link_settings.lane_count,
- lt_result,
- lt_settings->hw_lane_settings[0].VOLTAGE_SWING,
- lt_settings->hw_lane_settings[0].PRE_EMPHASIS,
- lt_spread);
-}
-
-void dc_link_dp_set_drive_settings(
- struct dc_link *link,
- const struct link_resource *link_res,
- struct link_training_settings *lt_settings)
-{
- /* program ASIC PHY settings*/
- dp_set_hw_lane_settings(link, link_res, lt_settings, DPRX);
-
- dp_hw_to_dpcd_lane_settings(lt_settings,
- lt_settings->hw_lane_settings, lt_settings->dpcd_lane_settings);
-
- /* Notify DP sink the PHY settings from source */
- dpcd_set_lane_settings(link, lt_settings, DPRX);
-}
-
-bool dc_link_dp_perform_link_training_skip_aux(
- struct dc_link *link,
- const struct link_resource *link_res,
- const struct dc_link_settings *link_setting)
-{
- struct link_training_settings lt_settings = {0};
-
- dp_decide_training_settings(
- link,
- link_setting,
- &lt_settings);
- override_training_settings(
- link,
- &link->preferred_training_settings,
- &lt_settings);
-
- /* 1. Perform_clock_recovery_sequence. */
-
- /* transmit training pattern for clock recovery */
- dp_set_hw_training_pattern(link, link_res, lt_settings.pattern_for_cr, DPRX);
-
- /* call HWSS to set lane settings*/
- dp_set_hw_lane_settings(link, link_res, &lt_settings, DPRX);
-
- /* wait receiver to lock-on*/
- dp_wait_for_training_aux_rd_interval(link, lt_settings.cr_pattern_time);
-
- /* 2. Perform_channel_equalization_sequence. */
-
- /* transmit training pattern for channel equalization. */
- dp_set_hw_training_pattern(link, link_res, lt_settings.pattern_for_eq, DPRX);
-
- /* call HWSS to set lane settings*/
- dp_set_hw_lane_settings(link, link_res, &lt_settings, DPRX);
-
- /* wait receiver to lock-on. */
- dp_wait_for_training_aux_rd_interval(link, lt_settings.eq_pattern_time);
-
- /* 3. Perform_link_training_int. */
-
- /* Mainlink output idle pattern. */
- dp_set_hw_test_pattern(link, link_res, DP_TEST_PATTERN_VIDEO_MODE, NULL, 0);
-
- print_status_message(link, &lt_settings, LINK_TRAINING_SUCCESS);
-
- return true;
-}
-
-enum dc_status dpcd_configure_lttpr_mode(struct dc_link *link, struct link_training_settings *lt_settings)
-{
- enum dc_status status = DC_OK;
-
- if (lt_settings->lttpr_mode == LTTPR_MODE_TRANSPARENT)
- status = configure_lttpr_mode_transparent(link);
-
- else if (lt_settings->lttpr_mode == LTTPR_MODE_NON_TRANSPARENT)
- status = configure_lttpr_mode_non_transparent(link, lt_settings);
-
- return status;
-}
-
-static void dpcd_exit_training_mode(struct dc_link *link)
-{
- uint8_t sink_status = 0;
- uint8_t i;
-
- /* clear training pattern set */
- dpcd_set_training_pattern(link, DP_TRAINING_PATTERN_VIDEOIDLE);
-
- /* poll for intra-hop disable */
- for (i = 0; i < 10; i++) {
- if ((core_link_read_dpcd(link, DP_SINK_STATUS, &sink_status, 1) == DC_OK) &&
- (sink_status & DP_INTRA_HOP_AUX_REPLY_INDICATION) == 0)
- break;
- udelay(1000);
- }
-}
-
-enum dc_status dpcd_configure_channel_coding(struct dc_link *link,
- struct link_training_settings *lt_settings)
-{
- enum dp_link_encoding encoding =
- dp_get_link_encoding_format(
- &lt_settings->link_settings);
- enum dc_status status;
-
- status = core_link_write_dpcd(
- link,
- DP_MAIN_LINK_CHANNEL_CODING_SET,
- (uint8_t *) &encoding,
- 1);
- DC_LOG_HW_LINK_TRAINING("%s:\n 0x%X MAIN_LINK_CHANNEL_CODING_SET = %x\n",
- __func__,
- DP_MAIN_LINK_CHANNEL_CODING_SET,
- encoding);
-
- return status;
-}
-
-static void dpcd_128b_132b_get_aux_rd_interval(struct dc_link *link,
- uint32_t *interval_in_us)
-{
- union dp_128b_132b_training_aux_rd_interval dpcd_interval;
- uint32_t interval_unit = 0;
-
- dpcd_interval.raw = 0;
- core_link_read_dpcd(link, DP_128b_132b_TRAINING_AUX_RD_INTERVAL,
- &dpcd_interval.raw, sizeof(dpcd_interval.raw));
- interval_unit = dpcd_interval.bits.UNIT ? 1 : 2; /* 0b = 2 ms, 1b = 1 ms */
- /* (128b/132b_TRAINING_AUX_RD_INTERVAL value + 1) *
- * INTERVAL_UNIT. The maximum is 256 ms
- */
- *interval_in_us = (dpcd_interval.bits.VALUE + 1) * interval_unit * 1000;
-}
-
-static enum link_training_result dp_perform_128b_132b_channel_eq_done_sequence(
- struct dc_link *link,
- const struct link_resource *link_res,
- struct link_training_settings *lt_settings)
-{
- uint8_t loop_count;
- uint32_t aux_rd_interval = 0;
- uint32_t wait_time = 0;
- union lane_align_status_updated dpcd_lane_status_updated = {0};
- union lane_status dpcd_lane_status[LANE_COUNT_DP_MAX] = {0};
- enum dc_status status = DC_OK;
- enum link_training_result result = LINK_TRAINING_SUCCESS;
- union lane_adjust dpcd_lane_adjust[LANE_COUNT_DP_MAX] = {0};
-
- /* Transmit 128b/132b_TPS1 over Main-Link */
- dp_set_hw_training_pattern(link, link_res, lt_settings->pattern_for_cr, DPRX);
- /* Set TRAINING_PATTERN_SET to 01h */
- dpcd_set_training_pattern(link, lt_settings->pattern_for_cr);
-
- /* Adjust TX_FFE_PRESET_VALUE and Transmit 128b/132b_TPS2 over Main-Link */
- dpcd_128b_132b_get_aux_rd_interval(link, &aux_rd_interval);
- dp_get_lane_status_and_lane_adjust(link, lt_settings, dpcd_lane_status,
- &dpcd_lane_status_updated, dpcd_lane_adjust, DPRX);
- dp_decide_lane_settings(lt_settings, dpcd_lane_adjust,
- lt_settings->hw_lane_settings, lt_settings->dpcd_lane_settings);
- dp_set_hw_lane_settings(link, link_res, lt_settings, DPRX);
- dp_set_hw_training_pattern(link, link_res, lt_settings->pattern_for_eq, DPRX);
-
- /* Set loop counter to start from 1 */
- loop_count = 1;
-
- /* Set TRAINING_PATTERN_SET to 02h and TX_FFE_PRESET_VALUE in one AUX transaction */
- dpcd_set_lt_pattern_and_lane_settings(link, lt_settings,
- lt_settings->pattern_for_eq, DPRX);
-
- /* poll for channel EQ done */
- while (result == LINK_TRAINING_SUCCESS) {
- dp_wait_for_training_aux_rd_interval(link, aux_rd_interval);
- wait_time += aux_rd_interval;
- status = dp_get_lane_status_and_lane_adjust(link, lt_settings, dpcd_lane_status,
- &dpcd_lane_status_updated, dpcd_lane_adjust, DPRX);
- dp_decide_lane_settings(lt_settings, dpcd_lane_adjust,
- lt_settings->hw_lane_settings, lt_settings->dpcd_lane_settings);
- dpcd_128b_132b_get_aux_rd_interval(link, &aux_rd_interval);
- if (status != DC_OK) {
- result = LINK_TRAINING_ABORT;
- } else if (dp_is_ch_eq_done(lt_settings->link_settings.lane_count,
- dpcd_lane_status)) {
- /* pass */
- break;
- } else if (loop_count >= lt_settings->eq_loop_count_limit) {
- result = DP_128b_132b_MAX_LOOP_COUNT_REACHED;
- } else if (dpcd_lane_status_updated.bits.LT_FAILED_128b_132b) {
- result = DP_128b_132b_LT_FAILED;
- } else {
- dp_set_hw_lane_settings(link, link_res, lt_settings, DPRX);
- dpcd_128b_132b_set_lane_settings(link, lt_settings);
- }
- loop_count++;
- }
-
- /* poll for EQ interlane align done */
- while (result == LINK_TRAINING_SUCCESS) {
- if (status != DC_OK) {
- result = LINK_TRAINING_ABORT;
- } else if (dpcd_lane_status_updated.bits.EQ_INTERLANE_ALIGN_DONE_128b_132b) {
- /* pass */
- break;
- } else if (wait_time >= lt_settings->eq_wait_time_limit) {
- result = DP_128b_132b_CHANNEL_EQ_DONE_TIMEOUT;
- } else if (dpcd_lane_status_updated.bits.LT_FAILED_128b_132b) {
- result = DP_128b_132b_LT_FAILED;
- } else {
- dp_wait_for_training_aux_rd_interval(link,
- lt_settings->eq_pattern_time);
- wait_time += lt_settings->eq_pattern_time;
- status = dp_get_lane_status_and_lane_adjust(link, lt_settings, dpcd_lane_status,
- &dpcd_lane_status_updated, dpcd_lane_adjust, DPRX);
- }
- }
-
- return result;
-}
-
-static enum link_training_result dp_perform_128b_132b_cds_done_sequence(
- struct dc_link *link,
- const struct link_resource *link_res,
- struct link_training_settings *lt_settings)
-{
- /* Assumption: assume hardware has transmitted eq pattern */
- enum dc_status status = DC_OK;
- enum link_training_result result = LINK_TRAINING_SUCCESS;
- union lane_align_status_updated dpcd_lane_status_updated = {0};
- union lane_status dpcd_lane_status[LANE_COUNT_DP_MAX] = {0};
- union lane_adjust dpcd_lane_adjust[LANE_COUNT_DP_MAX] = {0};
- uint32_t wait_time = 0;
-
- /* initiate CDS done sequence */
- dpcd_set_training_pattern(link, lt_settings->pattern_for_cds);
-
- /* poll for CDS interlane align done and symbol lock */
- while (result == LINK_TRAINING_SUCCESS) {
- dp_wait_for_training_aux_rd_interval(link,
- lt_settings->cds_pattern_time);
- wait_time += lt_settings->cds_pattern_time;
- status = dp_get_lane_status_and_lane_adjust(link, lt_settings, dpcd_lane_status,
- &dpcd_lane_status_updated, dpcd_lane_adjust, DPRX);
- if (status != DC_OK) {
- result = LINK_TRAINING_ABORT;
- } else if (dp_is_symbol_locked(lt_settings->link_settings.lane_count, dpcd_lane_status) &&
- dpcd_lane_status_updated.bits.CDS_INTERLANE_ALIGN_DONE_128b_132b) {
- /* pass */
- break;
- } else if (dpcd_lane_status_updated.bits.LT_FAILED_128b_132b) {
- result = DP_128b_132b_LT_FAILED;
- } else if (wait_time >= lt_settings->cds_wait_time_limit) {
- result = DP_128b_132b_CDS_DONE_TIMEOUT;
- }
- }
-
- return result;
-}
-
-static enum link_training_result dp_perform_8b_10b_link_training(
- struct dc_link *link,
- const struct link_resource *link_res,
- struct link_training_settings *lt_settings)
-{
- enum link_training_result status = LINK_TRAINING_SUCCESS;
-
- uint8_t repeater_cnt;
- uint8_t repeater_id;
- uint8_t lane = 0;
-
- if (link->ctx->dc->work_arounds.lt_early_cr_pattern)
- start_clock_recovery_pattern_early(link, link_res, lt_settings, DPRX);
-
- /* 1. set link rate, lane count and spread. */
- dpcd_set_link_settings(link, lt_settings);
-
- if (lt_settings->lttpr_mode == LTTPR_MODE_NON_TRANSPARENT) {
-
- /* 2. perform link training (set link training done
- * to false is done as well)
- */
- repeater_cnt = dp_convert_to_count(link->dpcd_caps.lttpr_caps.phy_repeater_cnt);
-
- for (repeater_id = repeater_cnt; (repeater_id > 0 && status == LINK_TRAINING_SUCCESS);
- repeater_id--) {
- status = perform_clock_recovery_sequence(link, link_res, lt_settings, repeater_id);
-
- if (status != LINK_TRAINING_SUCCESS) {
- repeater_training_done(link, repeater_id);
- break;
- }
-
- status = perform_channel_equalization_sequence(link,
- link_res,
- lt_settings,
- repeater_id);
-
- repeater_training_done(link, repeater_id);
-
- if (status != LINK_TRAINING_SUCCESS)
- break;
-
- for (lane = 0; lane < LANE_COUNT_DP_MAX; lane++) {
- lt_settings->dpcd_lane_settings[lane].raw = 0;
- lt_settings->hw_lane_settings[lane].VOLTAGE_SWING = 0;
- lt_settings->hw_lane_settings[lane].PRE_EMPHASIS = 0;
- }
- }
- }
-
- if (status == LINK_TRAINING_SUCCESS) {
- status = perform_clock_recovery_sequence(link, link_res, lt_settings, DPRX);
- if (status == LINK_TRAINING_SUCCESS) {
- status = perform_channel_equalization_sequence(link,
- link_res,
- lt_settings,
- DPRX);
- }
- }
-
- return status;
-}
-
-static enum link_training_result dp_perform_128b_132b_link_training(
- struct dc_link *link,
- const struct link_resource *link_res,
- struct link_training_settings *lt_settings)
-{
- enum link_training_result result = LINK_TRAINING_SUCCESS;
-
- /* TODO - DP2.0 Link: remove legacy_dp2_lt logic */
- if (link->dc->debug.legacy_dp2_lt) {
- struct link_training_settings legacy_settings;
-
- decide_8b_10b_training_settings(link,
- &lt_settings->link_settings,
- &legacy_settings);
- return dp_perform_8b_10b_link_training(link, link_res, &legacy_settings);
- }
-
- dpcd_set_link_settings(link, lt_settings);
-
- if (result == LINK_TRAINING_SUCCESS)
- result = dp_perform_128b_132b_channel_eq_done_sequence(link, link_res, lt_settings);
-
- if (result == LINK_TRAINING_SUCCESS)
- result = dp_perform_128b_132b_cds_done_sequence(link, link_res, lt_settings);
-
- return result;
-}
-
-static enum link_training_result perform_fixed_vs_pe_nontransparent_training_sequence(
- struct dc_link *link,
- const struct link_resource *link_res,
- struct link_training_settings *lt_settings)
-{
- enum link_training_result status = LINK_TRAINING_SUCCESS;
- uint8_t lane = 0;
- uint8_t toggle_rate = 0x6;
- uint8_t target_rate = 0x6;
- bool apply_toggle_rate_wa = false;
- uint8_t repeater_cnt;
- uint8_t repeater_id;
-
- /* Fixed VS/PE specific: Force CR AUX RD Interval to at least 16ms */
- if (lt_settings->cr_pattern_time < 16000)
- lt_settings->cr_pattern_time = 16000;
-
- /* Fixed VS/PE specific: Toggle link rate */
- apply_toggle_rate_wa = (link->vendor_specific_lttpr_link_rate_wa == target_rate);
- target_rate = get_dpcd_link_rate(&lt_settings->link_settings);
- toggle_rate = (target_rate == 0x6) ? 0xA : 0x6;
-
- if (apply_toggle_rate_wa)
- lt_settings->link_settings.link_rate = toggle_rate;
-
- if (link->ctx->dc->work_arounds.lt_early_cr_pattern)
- start_clock_recovery_pattern_early(link, link_res, lt_settings, DPRX);
-
- /* 1. set link rate, lane count and spread. */
- dpcd_set_link_settings(link, lt_settings);
-
- /* Fixed VS/PE specific: Toggle link rate back*/
- if (apply_toggle_rate_wa) {
- core_link_write_dpcd(
- link,
- DP_LINK_BW_SET,
- &target_rate,
- 1);
- }
-
- link->vendor_specific_lttpr_link_rate_wa = target_rate;
-
- if (lt_settings->lttpr_mode == LTTPR_MODE_NON_TRANSPARENT) {
-
- /* 2. perform link training (set link training done
- * to false is done as well)
- */
- repeater_cnt = dp_convert_to_count(link->dpcd_caps.lttpr_caps.phy_repeater_cnt);
-
- for (repeater_id = repeater_cnt; (repeater_id > 0 && status == LINK_TRAINING_SUCCESS);
- repeater_id--) {
- status = perform_clock_recovery_sequence(link, link_res, lt_settings, repeater_id);
-
- if (status != LINK_TRAINING_SUCCESS) {
- repeater_training_done(link, repeater_id);
- break;
- }
-
- status = perform_channel_equalization_sequence(link,
- link_res,
- lt_settings,
- repeater_id);
-
- repeater_training_done(link, repeater_id);
-
- if (status != LINK_TRAINING_SUCCESS)
- break;
-
- for (lane = 0; lane < LANE_COUNT_DP_MAX; lane++) {
- lt_settings->dpcd_lane_settings[lane].raw = 0;
- lt_settings->hw_lane_settings[lane].VOLTAGE_SWING = 0;
- lt_settings->hw_lane_settings[lane].PRE_EMPHASIS = 0;
- }
- }
- }
-
- if (status == LINK_TRAINING_SUCCESS) {
- status = perform_clock_recovery_sequence(link, link_res, lt_settings, DPRX);
- if (status == LINK_TRAINING_SUCCESS) {
- status = perform_channel_equalization_sequence(link,
- link_res,
- lt_settings,
- DPRX);
- }
- }
-
- return status;
-}
-
-static enum link_training_result dp_perform_fixed_vs_pe_training_sequence(
- struct dc_link *link,
- const struct link_resource *link_res,
- struct link_training_settings *lt_settings)
-{
- const uint8_t vendor_lttpr_write_data_reset[4] = {0x1, 0x50, 0x63, 0xFF};
- const uint8_t offset = dp_convert_to_count(
- link->dpcd_caps.lttpr_caps.phy_repeater_cnt);
- const uint8_t vendor_lttpr_write_data_intercept_en[4] = {0x1, 0x55, 0x63, 0x0};
- const uint8_t vendor_lttpr_write_data_intercept_dis[4] = {0x1, 0x55, 0x63, 0x68};
- uint32_t pre_disable_intercept_delay_ms = link->dc->debug.fixed_vs_aux_delay_config_wa;
- uint8_t vendor_lttpr_write_data_vs[4] = {0x1, 0x51, 0x63, 0x0};
- uint8_t vendor_lttpr_write_data_pe[4] = {0x1, 0x52, 0x63, 0x0};
- uint32_t vendor_lttpr_write_address = 0xF004F;
- enum link_training_result status = LINK_TRAINING_SUCCESS;
- uint8_t lane = 0;
- union down_spread_ctrl downspread = {0};
- union lane_count_set lane_count_set = {0};
- uint8_t toggle_rate;
- uint8_t rate;
-
- /* Only 8b/10b is supported */
- ASSERT(dp_get_link_encoding_format(&lt_settings->link_settings) ==
- DP_8b_10b_ENCODING);
-
- if (lt_settings->lttpr_mode == LTTPR_MODE_NON_TRANSPARENT) {
- status = perform_fixed_vs_pe_nontransparent_training_sequence(link, link_res, lt_settings);
- return status;
- }
-
- if (offset != 0xFF) {
- vendor_lttpr_write_address +=
- ((DP_REPEATER_CONFIGURATION_AND_STATUS_SIZE) * (offset - 1));
-
- /* Certain display and cable configuration require extra delay */
- if (offset > 2)
- pre_disable_intercept_delay_ms = link->dc->debug.fixed_vs_aux_delay_config_wa * 2;
- }
-
- /* Vendor specific: Reset lane settings */
- core_link_write_dpcd(
- link,
- vendor_lttpr_write_address,
- &vendor_lttpr_write_data_reset[0],
- sizeof(vendor_lttpr_write_data_reset));
- core_link_write_dpcd(
- link,
- vendor_lttpr_write_address,
- &vendor_lttpr_write_data_vs[0],
- sizeof(vendor_lttpr_write_data_vs));
- core_link_write_dpcd(
- link,
- vendor_lttpr_write_address,
- &vendor_lttpr_write_data_pe[0],
- sizeof(vendor_lttpr_write_data_pe));
-
- /* Vendor specific: Enable intercept */
- core_link_write_dpcd(
- link,
- vendor_lttpr_write_address,
- &vendor_lttpr_write_data_intercept_en[0],
- sizeof(vendor_lttpr_write_data_intercept_en));
-
- /* 1. set link rate, lane count and spread. */
-
- downspread.raw = (uint8_t)(lt_settings->link_settings.link_spread);
-
- lane_count_set.bits.LANE_COUNT_SET =
- lt_settings->link_settings.lane_count;
-
- lane_count_set.bits.ENHANCED_FRAMING = lt_settings->enhanced_framing;
- lane_count_set.bits.POST_LT_ADJ_REQ_GRANTED = 0;
-
-
- if (lt_settings->pattern_for_eq < DP_TRAINING_PATTERN_SEQUENCE_4) {
- lane_count_set.bits.POST_LT_ADJ_REQ_GRANTED =
- link->dpcd_caps.max_ln_count.bits.POST_LT_ADJ_REQ_SUPPORTED;
- }
-
- core_link_write_dpcd(link, DP_DOWNSPREAD_CTRL,
- &downspread.raw, sizeof(downspread));
-
- core_link_write_dpcd(link, DP_LANE_COUNT_SET,
- &lane_count_set.raw, 1);
-
- rate = get_dpcd_link_rate(&lt_settings->link_settings);
-
- /* Vendor specific: Toggle link rate */
- toggle_rate = (rate == 0x6) ? 0xA : 0x6;
-
- if (link->vendor_specific_lttpr_link_rate_wa == rate) {
- core_link_write_dpcd(
- link,
- DP_LINK_BW_SET,
- &toggle_rate,
- 1);
- }
-
- link->vendor_specific_lttpr_link_rate_wa = rate;
-
- core_link_write_dpcd(link, DP_LINK_BW_SET, &rate, 1);
-
- DC_LOG_HW_LINK_TRAINING("%s\n %x rate = %x\n %x lane = %x framing = %x\n %x spread = %x\n",
- __func__,
- DP_LINK_BW_SET,
- lt_settings->link_settings.link_rate,
- DP_LANE_COUNT_SET,
- lt_settings->link_settings.lane_count,
- lt_settings->enhanced_framing,
- DP_DOWNSPREAD_CTRL,
- lt_settings->link_settings.link_spread);
-
- /* 2. Perform link training */
-
- /* Perform Clock Recovery Sequence */
- if (status == LINK_TRAINING_SUCCESS) {
- const uint8_t max_vendor_dpcd_retries = 10;
- uint32_t retries_cr;
- uint32_t retry_count;
- uint32_t wait_time_microsec;
- enum dc_lane_count lane_count = lt_settings->link_settings.lane_count;
- union lane_status dpcd_lane_status[LANE_COUNT_DP_MAX];
- union lane_align_status_updated dpcd_lane_status_updated;
- union lane_adjust dpcd_lane_adjust[LANE_COUNT_DP_MAX] = {0};
- enum dc_status dpcd_status = DC_OK;
- uint8_t i = 0;
-
- retries_cr = 0;
- retry_count = 0;
-
- memset(&dpcd_lane_status, '\0', sizeof(dpcd_lane_status));
- memset(&dpcd_lane_status_updated, '\0',
- sizeof(dpcd_lane_status_updated));
-
- while ((retries_cr < LINK_TRAINING_MAX_RETRY_COUNT) &&
- (retry_count < LINK_TRAINING_MAX_CR_RETRY)) {
-
-
- /* 1. call HWSS to set lane settings */
- dp_set_hw_lane_settings(
- link,
- link_res,
- lt_settings,
- 0);
-
- /* 2. update DPCD of the receiver */
- if (!retry_count) {
- /* EPR #361076 - write as a 5-byte burst,
- * but only for the 1-st iteration.
- */
- dpcd_set_lt_pattern_and_lane_settings(
- link,
- lt_settings,
- lt_settings->pattern_for_cr,
- 0);
- /* Vendor specific: Disable intercept */
- for (i = 0; i < max_vendor_dpcd_retries; i++) {
- msleep(pre_disable_intercept_delay_ms);
- dpcd_status = core_link_write_dpcd(
- link,
- vendor_lttpr_write_address,
- &vendor_lttpr_write_data_intercept_dis[0],
- sizeof(vendor_lttpr_write_data_intercept_dis));
-
- if (dpcd_status == DC_OK)
- break;
-
- core_link_write_dpcd(
- link,
- vendor_lttpr_write_address,
- &vendor_lttpr_write_data_intercept_en[0],
- sizeof(vendor_lttpr_write_data_intercept_en));
- }
- } else {
- vendor_lttpr_write_data_vs[3] = 0;
- vendor_lttpr_write_data_pe[3] = 0;
-
- for (lane = 0; lane < lane_count; lane++) {
- vendor_lttpr_write_data_vs[3] |=
- lt_settings->dpcd_lane_settings[lane].bits.VOLTAGE_SWING_SET << (2 * lane);
- vendor_lttpr_write_data_pe[3] |=
- lt_settings->dpcd_lane_settings[lane].bits.PRE_EMPHASIS_SET << (2 * lane);
- }
-
- /* Vendor specific: Update VS and PE to DPRX requested value */
- core_link_write_dpcd(
- link,
- vendor_lttpr_write_address,
- &vendor_lttpr_write_data_vs[0],
- sizeof(vendor_lttpr_write_data_vs));
- core_link_write_dpcd(
- link,
- vendor_lttpr_write_address,
- &vendor_lttpr_write_data_pe[0],
- sizeof(vendor_lttpr_write_data_pe));
-
- dpcd_set_lane_settings(
- link,
- lt_settings,
- 0);
- }
-
- /* 3. wait receiver to lock-on*/
- wait_time_microsec = lt_settings->cr_pattern_time;
-
- dp_wait_for_training_aux_rd_interval(
- link,
- wait_time_microsec);
-
- /* 4. Read lane status and requested drive
- * settings as set by the sink
- */
- dp_get_lane_status_and_lane_adjust(
- link,
- lt_settings,
- dpcd_lane_status,
- &dpcd_lane_status_updated,
- dpcd_lane_adjust,
- 0);
-
- /* 5. check CR done*/
- if (dp_is_cr_done(lane_count, dpcd_lane_status)) {
- status = LINK_TRAINING_SUCCESS;
- break;
- }
-
- /* 6. max VS reached*/
- if (dp_is_max_vs_reached(lt_settings))
- break;
-
- /* 7. same lane settings */
- /* Note: settings are the same for all lanes,
- * so comparing first lane is sufficient
- */
- if (lt_settings->dpcd_lane_settings[0].bits.VOLTAGE_SWING_SET ==
- dpcd_lane_adjust[0].bits.VOLTAGE_SWING_LANE)
- retries_cr++;
- else
- retries_cr = 0;
-
- /* 8. update VS/PE/PC2 in lt_settings*/
- dp_decide_lane_settings(lt_settings, dpcd_lane_adjust,
- lt_settings->hw_lane_settings, lt_settings->dpcd_lane_settings);
- retry_count++;
- }
-
- if (retry_count >= LINK_TRAINING_MAX_CR_RETRY) {
- ASSERT(0);
- DC_LOG_ERROR("%s: Link Training Error, could not get CR after %d tries. Possibly voltage swing issue",
- __func__,
- LINK_TRAINING_MAX_CR_RETRY);
-
- }
-
- status = dp_get_cr_failure(lane_count, dpcd_lane_status);
- }
-
- /* Perform Channel EQ Sequence */
- if (status == LINK_TRAINING_SUCCESS) {
- enum dc_dp_training_pattern tr_pattern;
- uint32_t retries_ch_eq;
- uint32_t wait_time_microsec;
- enum dc_lane_count lane_count = lt_settings->link_settings.lane_count;
- union lane_align_status_updated dpcd_lane_status_updated = {0};
- union lane_status dpcd_lane_status[LANE_COUNT_DP_MAX] = {0};
- union lane_adjust dpcd_lane_adjust[LANE_COUNT_DP_MAX] = {0};
-
- /* Note: also check that TPS4 is a supported feature*/
- tr_pattern = lt_settings->pattern_for_eq;
-
- dp_set_hw_training_pattern(link, link_res, tr_pattern, 0);
-
- status = LINK_TRAINING_EQ_FAIL_EQ;
-
- for (retries_ch_eq = 0; retries_ch_eq <= LINK_TRAINING_MAX_RETRY_COUNT;
- retries_ch_eq++) {
-
- dp_set_hw_lane_settings(link, link_res, lt_settings, 0);
-
- vendor_lttpr_write_data_vs[3] = 0;
- vendor_lttpr_write_data_pe[3] = 0;
-
- for (lane = 0; lane < lane_count; lane++) {
- vendor_lttpr_write_data_vs[3] |=
- lt_settings->dpcd_lane_settings[lane].bits.VOLTAGE_SWING_SET << (2 * lane);
- vendor_lttpr_write_data_pe[3] |=
- lt_settings->dpcd_lane_settings[lane].bits.PRE_EMPHASIS_SET << (2 * lane);
- }
-
- /* Vendor specific: Update VS and PE to DPRX requested value */
- core_link_write_dpcd(
- link,
- vendor_lttpr_write_address,
- &vendor_lttpr_write_data_vs[0],
- sizeof(vendor_lttpr_write_data_vs));
- core_link_write_dpcd(
- link,
- vendor_lttpr_write_address,
- &vendor_lttpr_write_data_pe[0],
- sizeof(vendor_lttpr_write_data_pe));
-
- /* 2. update DPCD*/
- if (!retries_ch_eq)
- /* EPR #361076 - write as a 5-byte burst,
- * but only for the 1-st iteration
- */
-
- dpcd_set_lt_pattern_and_lane_settings(
- link,
- lt_settings,
- tr_pattern, 0);
- else
- dpcd_set_lane_settings(link, lt_settings, 0);
-
- /* 3. wait for receiver to lock-on*/
- wait_time_microsec = lt_settings->eq_pattern_time;
-
- dp_wait_for_training_aux_rd_interval(
- link,
- wait_time_microsec);
-
- /* 4. Read lane status and requested
- * drive settings as set by the sink
- */
- dp_get_lane_status_and_lane_adjust(
- link,
- lt_settings,
- dpcd_lane_status,
- &dpcd_lane_status_updated,
- dpcd_lane_adjust,
- 0);
-
- /* 5. check CR done*/
- if (!dp_is_cr_done(lane_count, dpcd_lane_status)) {
- status = LINK_TRAINING_EQ_FAIL_CR;
- break;
- }
-
- /* 6. check CHEQ done*/
- if (dp_is_ch_eq_done(lane_count, dpcd_lane_status) &&
- dp_is_symbol_locked(lane_count, dpcd_lane_status) &&
- dp_is_interlane_aligned(dpcd_lane_status_updated)) {
- status = LINK_TRAINING_SUCCESS;
- break;
- }
-
- /* 7. update VS/PE/PC2 in lt_settings*/
- dp_decide_lane_settings(lt_settings, dpcd_lane_adjust,
- lt_settings->hw_lane_settings, lt_settings->dpcd_lane_settings);
- }
- }
-
- return status;
-}
-
-
-enum link_training_result dc_link_dp_perform_link_training(
- struct dc_link *link,
- const struct link_resource *link_res,
- const struct dc_link_settings *link_settings,
- bool skip_video_pattern)
-{
- enum link_training_result status = LINK_TRAINING_SUCCESS;
- struct link_training_settings lt_settings = {0};
- enum dp_link_encoding encoding =
- dp_get_link_encoding_format(link_settings);
-
- /* decide training settings */
- dp_decide_training_settings(
- link,
- link_settings,
- &lt_settings);
-
- override_training_settings(
- link,
- &link->preferred_training_settings,
- &lt_settings);
-
- /* reset previous training states */
- dpcd_exit_training_mode(link);
-
- /* configure link prior to entering training mode */
- dpcd_configure_lttpr_mode(link, &lt_settings);
- dp_set_fec_ready(link, link_res, lt_settings.should_set_fec_ready);
- dpcd_configure_channel_coding(link, &lt_settings);
-
- /* enter training mode:
- * Per DP specs starting from here, DPTX device shall not issue
- * Non-LT AUX transactions inside training mode.
- */
- if (link->chip_caps & EXT_DISPLAY_PATH_CAPS__DP_FIXED_VS_EN && encoding == DP_8b_10b_ENCODING)
- status = dp_perform_fixed_vs_pe_training_sequence(link, link_res, &lt_settings);
- else if (encoding == DP_8b_10b_ENCODING)
- status = dp_perform_8b_10b_link_training(link, link_res, &lt_settings);
- else if (encoding == DP_128b_132b_ENCODING)
- status = dp_perform_128b_132b_link_training(link, link_res, &lt_settings);
- else
- ASSERT(0);
-
- /* exit training mode */
- dpcd_exit_training_mode(link);
-
- /* switch to video idle */
- if ((status == LINK_TRAINING_SUCCESS) || !skip_video_pattern)
- status = dp_transition_to_video_idle(link,
- link_res,
- &lt_settings,
- status);
-
- /* dump debug data */
- print_status_message(link, &lt_settings, status);
- if (status != LINK_TRAINING_SUCCESS)
- link->ctx->dc->debug_data.ltFailCount++;
- return status;
-}
-
-bool perform_link_training_with_retries(
- const struct dc_link_settings *link_setting,
- bool skip_video_pattern,
- int attempts,
- struct pipe_ctx *pipe_ctx,
- enum signal_type signal,
- bool do_fallback)
-{
- int j;
- uint8_t delay_between_attempts = LINK_TRAINING_RETRY_DELAY;
- struct dc_stream_state *stream = pipe_ctx->stream;
- struct dc_link *link = stream->link;
- enum dp_panel_mode panel_mode = dp_get_panel_mode(link);
- enum link_training_result status = LINK_TRAINING_CR_FAIL_LANE0;
- struct dc_link_settings cur_link_settings = *link_setting;
- struct dc_link_settings max_link_settings = *link_setting;
- const struct link_hwss *link_hwss = get_link_hwss(link, &pipe_ctx->link_res);
- int fail_count = 0;
- bool is_link_bw_low = false; /* link bandwidth < stream bandwidth */
- bool is_link_bw_min = /* RBR x 1 */
- (cur_link_settings.link_rate <= LINK_RATE_LOW) &&
- (cur_link_settings.lane_count <= LANE_COUNT_ONE);
-
- dp_trace_commit_lt_init(link);
-
- if (dp_get_link_encoding_format(&cur_link_settings) == DP_8b_10b_ENCODING)
- /* We need to do this before the link training to ensure the idle
- * pattern in SST mode will be sent right after the link training
- */
- link_hwss->setup_stream_encoder(pipe_ctx);
-
- dp_trace_set_lt_start_timestamp(link, false);
- j = 0;
- while (j < attempts && fail_count < (attempts * 10)) {
-
- DC_LOG_HW_LINK_TRAINING("%s: Beginning link(%d) training attempt %u of %d @ rate(%d) x lane(%d)\n",
- __func__, link->link_index, (unsigned int)j + 1, attempts, cur_link_settings.link_rate,
- cur_link_settings.lane_count);
-
- dp_enable_link_phy(
- link,
- &pipe_ctx->link_res,
- signal,
- pipe_ctx->clock_source->id,
- &cur_link_settings);
-
- if (stream->sink_patches.dppowerup_delay > 0) {
- int delay_dp_power_up_in_ms = stream->sink_patches.dppowerup_delay;
-
- msleep(delay_dp_power_up_in_ms);
- }
-
-#ifdef CONFIG_DRM_AMD_DC_HDCP
- if (panel_mode == DP_PANEL_MODE_EDP) {
- struct cp_psp *cp_psp = &stream->ctx->cp_psp;
-
- if (cp_psp && cp_psp->funcs.enable_assr)
- /* ASSR is bound to fail with unsigned PSP
- * verstage used during devlopment phase.
- * Report and continue with eDP panel mode to
- * perform eDP link training with right settings
- */
- cp_psp->funcs.enable_assr(cp_psp->handle, link);
- }
-#endif
-
- dp_set_panel_mode(link, panel_mode);
-
- if (link->aux_access_disabled) {
- dc_link_dp_perform_link_training_skip_aux(link, &pipe_ctx->link_res, &cur_link_settings);
- return true;
- } else {
- /** @todo Consolidate USB4 DP and DPx.x training. */
- if (link->ep_type == DISPLAY_ENDPOINT_USB4_DPIA) {
- status = dc_link_dpia_perform_link_training(link,
- &pipe_ctx->link_res,
- &cur_link_settings,
- skip_video_pattern);
-
- /* Transmit idle pattern once training successful. */
- if (status == LINK_TRAINING_SUCCESS && !is_link_bw_low) {
- dp_set_hw_test_pattern(link, &pipe_ctx->link_res, DP_TEST_PATTERN_VIDEO_MODE, NULL, 0);
- /* Update verified link settings to current one
- * Because DPIA LT might fallback to lower link setting.
- */
- link->verified_link_cap.link_rate = link->cur_link_settings.link_rate;
- link->verified_link_cap.lane_count = link->cur_link_settings.lane_count;
- }
- } else {
- status = dc_link_dp_perform_link_training(link,
- &pipe_ctx->link_res,
- &cur_link_settings,
- skip_video_pattern);
- }
-
- dp_trace_lt_total_count_increment(link, false);
- dp_trace_lt_result_update(link, status, false);
- dp_trace_set_lt_end_timestamp(link, false);
- if (status == LINK_TRAINING_SUCCESS && !is_link_bw_low)
- return true;
- }
-
- fail_count++;
- dp_trace_lt_fail_count_update(link, fail_count, false);
- if (link->ep_type == DISPLAY_ENDPOINT_PHY) {
- /* latest link training still fail or link training is aborted
- * skip delay and keep PHY on
- */
- if (j == (attempts - 1) || (status == LINK_TRAINING_ABORT))
- break;
- }
-
- DC_LOG_WARNING("%s: Link(%d) training attempt %u of %d failed @ rate(%d) x lane(%d) : fail reason:(%d)\n",
- __func__, link->link_index, (unsigned int)j + 1, attempts, cur_link_settings.link_rate,
- cur_link_settings.lane_count, status);
-
- dp_disable_link_phy(link, &pipe_ctx->link_res, signal);
-
- /* Abort link training if failure due to sink being unplugged. */
- if (status == LINK_TRAINING_ABORT) {
- enum dc_connection_type type = dc_connection_none;
-
- dc_link_detect_sink(link, &type);
- if (type == dc_connection_none) {
- DC_LOG_HW_LINK_TRAINING("%s: Aborting training because sink unplugged\n", __func__);
- break;
- }
- }
-
- /* Try to train again at original settings if:
- * - not falling back between training attempts;
- * - aborted previous attempt due to reasons other than sink unplug;
- * - successfully trained but at a link rate lower than that required by stream;
- * - reached minimum link bandwidth.
- */
- if (!do_fallback || (status == LINK_TRAINING_ABORT) ||
- (status == LINK_TRAINING_SUCCESS && is_link_bw_low) ||
- is_link_bw_min) {
- j++;
- cur_link_settings = *link_setting;
- delay_between_attempts += LINK_TRAINING_RETRY_DELAY;
- is_link_bw_low = false;
- is_link_bw_min = (cur_link_settings.link_rate <= LINK_RATE_LOW) &&
- (cur_link_settings.lane_count <= LANE_COUNT_ONE);
-
- } else if (do_fallback) { /* Try training at lower link bandwidth if doing fallback. */
- uint32_t req_bw;
- uint32_t link_bw;
-
- decide_fallback_link_setting(link, &max_link_settings,
- &cur_link_settings, status);
- /* Fail link training if reduced link bandwidth no longer meets
- * stream requirements.
- */
- req_bw = dc_bandwidth_in_kbps_from_timing(&stream->timing);
- link_bw = dc_link_bandwidth_kbps(link, &cur_link_settings);
- is_link_bw_low = (req_bw > link_bw);
- is_link_bw_min = ((cur_link_settings.link_rate <= LINK_RATE_LOW) &&
- (cur_link_settings.lane_count <= LANE_COUNT_ONE));
- if (is_link_bw_low)
- DC_LOG_WARNING(
- "%s: Link(%d) bandwidth too low after fallback req_bw(%d) > link_bw(%d)\n",
- __func__, link->link_index, req_bw, link_bw);
- }
-
- msleep(delay_between_attempts);
- }
- return false;
-}
-
-static enum clock_source_id get_clock_source_id(struct dc_link *link)
-{
- enum clock_source_id dp_cs_id = CLOCK_SOURCE_ID_UNDEFINED;
- struct clock_source *dp_cs = link->dc->res_pool->dp_clock_source;
-
- if (dp_cs != NULL) {
- dp_cs_id = dp_cs->id;
- } else {
- /*
- * dp clock source is not initialized for some reason.
- * Should not happen, CLOCK_SOURCE_ID_EXTERNAL will be used
- */
- ASSERT(dp_cs);
- }
-
- return dp_cs_id;
-}
-
-static void set_dp_mst_mode(struct dc_link *link, const struct link_resource *link_res,
- bool mst_enable)
-{
- if (mst_enable == false &&
- link->type == dc_connection_mst_branch) {
- /* Disable MST on link. Use only local sink. */
- dp_disable_link_phy_mst(link, link_res, link->connector_signal);
-
- link->type = dc_connection_single;
- link->local_sink = link->remote_sinks[0];
- link->local_sink->sink_signal = SIGNAL_TYPE_DISPLAY_PORT;
- dc_sink_retain(link->local_sink);
- dm_helpers_dp_mst_stop_top_mgr(link->ctx, link);
- } else if (mst_enable == true &&
- link->type == dc_connection_single &&
- link->remote_sinks[0] != NULL) {
- /* Re-enable MST on link. */
- dp_disable_link_phy(link, link_res, link->connector_signal);
- dp_enable_mst_on_sink(link, true);
-
- link->type = dc_connection_mst_branch;
- link->local_sink->sink_signal = SIGNAL_TYPE_DISPLAY_PORT_MST;
- }
-}
-
-bool dc_link_dp_sync_lt_begin(struct dc_link *link)
-{
- /* Begin Sync LT. During this time,
- * DPCD:600h must not be powered down.
- */
- link->sync_lt_in_progress = true;
-
- /*Clear any existing preferred settings.*/
- memset(&link->preferred_training_settings, 0,
- sizeof(struct dc_link_training_overrides));
- memset(&link->preferred_link_setting, 0,
- sizeof(struct dc_link_settings));
-
- return true;
-}
-
-enum link_training_result dc_link_dp_sync_lt_attempt(
- struct dc_link *link,
- const struct link_resource *link_res,
- struct dc_link_settings *link_settings,
- struct dc_link_training_overrides *lt_overrides)
-{
- struct link_training_settings lt_settings = {0};
- enum link_training_result lt_status = LINK_TRAINING_SUCCESS;
- enum dp_panel_mode panel_mode = DP_PANEL_MODE_DEFAULT;
- enum clock_source_id dp_cs_id = CLOCK_SOURCE_ID_EXTERNAL;
- bool fec_enable = false;
-
- dp_decide_training_settings(
- link,
- link_settings,
- &lt_settings);
- override_training_settings(
- link,
- lt_overrides,
- &lt_settings);
- /* Setup MST Mode */
- if (lt_overrides->mst_enable)
- set_dp_mst_mode(link, link_res, *lt_overrides->mst_enable);
-
- /* Disable link */
- dp_disable_link_phy(link, link_res, link->connector_signal);
-
- /* Enable link */
- dp_cs_id = get_clock_source_id(link);
- dp_enable_link_phy(link, link_res, link->connector_signal,
- dp_cs_id, link_settings);
-
- /* Set FEC enable */
- if (dp_get_link_encoding_format(link_settings) == DP_8b_10b_ENCODING) {
- fec_enable = lt_overrides->fec_enable && *lt_overrides->fec_enable;
- dp_set_fec_ready(link, NULL, fec_enable);
- }
-
- if (lt_overrides->alternate_scrambler_reset) {
- if (*lt_overrides->alternate_scrambler_reset)
- panel_mode = DP_PANEL_MODE_EDP;
- else
- panel_mode = DP_PANEL_MODE_DEFAULT;
- } else
- panel_mode = dp_get_panel_mode(link);
-
- dp_set_panel_mode(link, panel_mode);
-
- /* Attempt to train with given link training settings */
- if (link->ctx->dc->work_arounds.lt_early_cr_pattern)
- start_clock_recovery_pattern_early(link, link_res, &lt_settings, DPRX);
-
- /* Set link rate, lane count and spread. */
- dpcd_set_link_settings(link, &lt_settings);
-
- /* 2. perform link training (set link training done
- * to false is done as well)
- */
- lt_status = perform_clock_recovery_sequence(link, link_res, &lt_settings, DPRX);
- if (lt_status == LINK_TRAINING_SUCCESS) {
- lt_status = perform_channel_equalization_sequence(link,
- link_res,
- &lt_settings,
- DPRX);
- }
-
- /* 3. Sync LT must skip TRAINING_PATTERN_SET:0 (video pattern)*/
- /* 4. print status message*/
- print_status_message(link, &lt_settings, lt_status);
-
- return lt_status;
-}
-
-bool dc_link_dp_sync_lt_end(struct dc_link *link, bool link_down)
-{
- /* If input parameter is set, shut down phy.
- * Still shouldn't turn off dp_receiver (DPCD:600h)
- */
- if (link_down == true) {
- struct dc_link_settings link_settings = link->cur_link_settings;
- dp_disable_link_phy(link, NULL, link->connector_signal);
- if (dp_get_link_encoding_format(&link_settings) == DP_8b_10b_ENCODING)
- dp_set_fec_ready(link, NULL, false);
- }
-
- link->sync_lt_in_progress = false;
- return true;
-}
-
-static enum dc_link_rate get_lttpr_max_link_rate(struct dc_link *link)
-{
- enum dc_link_rate lttpr_max_link_rate = link->dpcd_caps.lttpr_caps.max_link_rate;
-
- if (link->dpcd_caps.lttpr_caps.supported_128b_132b_rates.bits.UHBR20)
- lttpr_max_link_rate = LINK_RATE_UHBR20;
- else if (link->dpcd_caps.lttpr_caps.supported_128b_132b_rates.bits.UHBR13_5)
- lttpr_max_link_rate = LINK_RATE_UHBR13_5;
- else if (link->dpcd_caps.lttpr_caps.supported_128b_132b_rates.bits.UHBR10)
- lttpr_max_link_rate = LINK_RATE_UHBR10;
-
- return lttpr_max_link_rate;
-}
-
-static enum dc_link_rate get_cable_max_link_rate(struct dc_link *link)
-{
- enum dc_link_rate cable_max_link_rate = LINK_RATE_HIGH3;
-
- if (link->dpcd_caps.cable_id.bits.UHBR10_20_CAPABILITY & DP_UHBR20)
- cable_max_link_rate = LINK_RATE_UHBR20;
- else if (link->dpcd_caps.cable_id.bits.UHBR13_5_CAPABILITY)
- cable_max_link_rate = LINK_RATE_UHBR13_5;
- else if (link->dpcd_caps.cable_id.bits.UHBR10_20_CAPABILITY & DP_UHBR10)
- cable_max_link_rate = LINK_RATE_UHBR10;
-
- return cable_max_link_rate;
-}
-
-bool dc_link_dp_get_max_link_enc_cap(const struct dc_link *link, struct dc_link_settings *max_link_enc_cap)
-{
- struct link_encoder *link_enc = NULL;
-
- if (!max_link_enc_cap) {
- DC_LOG_ERROR("%s: Could not return max link encoder caps", __func__);
- return false;
- }
-
- link_enc = link_enc_cfg_get_link_enc(link);
- ASSERT(link_enc);
-
- if (link_enc && link_enc->funcs->get_max_link_cap) {
- link_enc->funcs->get_max_link_cap(link_enc, max_link_enc_cap);
- return true;
- }
-
- DC_LOG_ERROR("%s: Max link encoder caps unknown", __func__);
- max_link_enc_cap->lane_count = 1;
- max_link_enc_cap->link_rate = 6;
- return false;
-}
-
-
-struct dc_link_settings dp_get_max_link_cap(struct dc_link *link)
-{
- struct dc_link_settings max_link_cap = {0};
- enum dc_link_rate lttpr_max_link_rate;
- enum dc_link_rate cable_max_link_rate;
- struct link_encoder *link_enc = NULL;
-
-
- link_enc = link_enc_cfg_get_link_enc(link);
- ASSERT(link_enc);
-
- /* get max link encoder capability */
- if (link_enc)
- link_enc->funcs->get_max_link_cap(link_enc, &max_link_cap);
-
- /* Lower link settings based on sink's link cap */
- if (link->reported_link_cap.lane_count < max_link_cap.lane_count)
- max_link_cap.lane_count =
- link->reported_link_cap.lane_count;
- if (link->reported_link_cap.link_rate < max_link_cap.link_rate)
- max_link_cap.link_rate =
- link->reported_link_cap.link_rate;
- if (link->reported_link_cap.link_spread <
- max_link_cap.link_spread)
- max_link_cap.link_spread =
- link->reported_link_cap.link_spread;
-
- /* Lower link settings based on cable attributes */
- cable_max_link_rate = get_cable_max_link_rate(link);
-
- if (!link->dc->debug.ignore_cable_id &&
- cable_max_link_rate < max_link_cap.link_rate)
- max_link_cap.link_rate = cable_max_link_rate;
-
- /*
- * account for lttpr repeaters cap
- * notes: repeaters do not snoop in the DPRX Capabilities addresses (3.6.3).
- */
- if (dp_is_lttpr_present(link)) {
- if (link->dpcd_caps.lttpr_caps.max_lane_count < max_link_cap.lane_count)
- max_link_cap.lane_count = link->dpcd_caps.lttpr_caps.max_lane_count;
- lttpr_max_link_rate = get_lttpr_max_link_rate(link);
-
- if (lttpr_max_link_rate < max_link_cap.link_rate)
- max_link_cap.link_rate = lttpr_max_link_rate;
-
- DC_LOG_HW_LINK_TRAINING("%s\n Training with LTTPR, max_lane count %d max_link rate %d \n",
- __func__,
- max_link_cap.lane_count,
- max_link_cap.link_rate);
- }
-
- if (dp_get_link_encoding_format(&max_link_cap) == DP_128b_132b_ENCODING &&
- link->dc->debug.disable_uhbr)
- max_link_cap.link_rate = LINK_RATE_HIGH3;
-
- return max_link_cap;
-}
-
-static enum dc_status read_hpd_rx_irq_data(
- struct dc_link *link,
- union hpd_irq_data *irq_data)
-{
- static enum dc_status retval;
-
- /* The HW reads 16 bytes from 200h on HPD,
- * but if we get an AUX_DEFER, the HW cannot retry
- * and this causes the CTS tests 4.3.2.1 - 3.2.4 to
- * fail, so we now explicitly read 6 bytes which is
- * the req from the above mentioned test cases.
- *
- * For DP 1.4 we need to read those from 2002h range.
- */
- if (link->dpcd_caps.dpcd_rev.raw < DPCD_REV_14)
- retval = core_link_read_dpcd(
- link,
- DP_SINK_COUNT,
- irq_data->raw,
- sizeof(union hpd_irq_data));
- else {
- /* Read 14 bytes in a single read and then copy only the required fields.
- * This is more efficient than doing it in two separate AUX reads. */
-
- uint8_t tmp[DP_SINK_STATUS_ESI - DP_SINK_COUNT_ESI + 1];
-
- retval = core_link_read_dpcd(
- link,
- DP_SINK_COUNT_ESI,
- tmp,
- sizeof(tmp));
-
- if (retval != DC_OK)
- return retval;
-
- irq_data->bytes.sink_cnt.raw = tmp[DP_SINK_COUNT_ESI - DP_SINK_COUNT_ESI];
- irq_data->bytes.device_service_irq.raw = tmp[DP_DEVICE_SERVICE_IRQ_VECTOR_ESI0 - DP_SINK_COUNT_ESI];
- irq_data->bytes.lane01_status.raw = tmp[DP_LANE0_1_STATUS_ESI - DP_SINK_COUNT_ESI];
- irq_data->bytes.lane23_status.raw = tmp[DP_LANE2_3_STATUS_ESI - DP_SINK_COUNT_ESI];
- irq_data->bytes.lane_status_updated.raw = tmp[DP_LANE_ALIGN_STATUS_UPDATED_ESI - DP_SINK_COUNT_ESI];
- irq_data->bytes.sink_status.raw = tmp[DP_SINK_STATUS_ESI - DP_SINK_COUNT_ESI];
- }
-
- return retval;
-}
-
-bool hpd_rx_irq_check_link_loss_status(
- struct dc_link *link,
- union hpd_irq_data *hpd_irq_dpcd_data)
-{
- uint8_t irq_reg_rx_power_state = 0;
- enum dc_status dpcd_result = DC_ERROR_UNEXPECTED;
- union lane_status lane_status;
- uint32_t lane;
- bool sink_status_changed;
- bool return_code;
-
- sink_status_changed = false;
- return_code = false;
-
- if (link->cur_link_settings.lane_count == 0)
- return return_code;
-
- /*1. Check that Link Status changed, before re-training.*/
-
- /*parse lane status*/
- for (lane = 0; lane < link->cur_link_settings.lane_count; lane++) {
- /* check status of lanes 0,1
- * changed DpcdAddress_Lane01Status (0x202)
- */
- lane_status.raw = get_nibble_at_index(
- &hpd_irq_dpcd_data->bytes.lane01_status.raw,
- lane);
-
- if (!lane_status.bits.CHANNEL_EQ_DONE_0 ||
- !lane_status.bits.CR_DONE_0 ||
- !lane_status.bits.SYMBOL_LOCKED_0) {
- /* if one of the channel equalization, clock
- * recovery or symbol lock is dropped
- * consider it as (link has been
- * dropped) dp sink status has changed
- */
- sink_status_changed = true;
- break;
- }
- }
-
- /* Check interlane align.*/
- if (sink_status_changed ||
- !hpd_irq_dpcd_data->bytes.lane_status_updated.bits.INTERLANE_ALIGN_DONE) {
-
- DC_LOG_HW_HPD_IRQ("%s: Link Status changed.\n", __func__);
-
- return_code = true;
-
- /*2. Check that we can handle interrupt: Not in FS DOS,
- * Not in "Display Timeout" state, Link is trained.
- */
- dpcd_result = core_link_read_dpcd(link,
- DP_SET_POWER,
- &irq_reg_rx_power_state,
- sizeof(irq_reg_rx_power_state));
-
- if (dpcd_result != DC_OK) {
- DC_LOG_HW_HPD_IRQ("%s: DPCD read failed to obtain power state.\n",
- __func__);
- } else {
- if (irq_reg_rx_power_state != DP_SET_POWER_D0)
- return_code = false;
- }
- }
-
- return return_code;
-}
-
-static bool dp_verify_link_cap(
- struct dc_link *link,
- struct dc_link_settings *known_limit_link_setting,
- int *fail_count)
-{
- struct dc_link_settings cur_link_settings = {0};
- struct dc_link_settings max_link_settings = *known_limit_link_setting;
- bool success = false;
- bool skip_video_pattern;
- enum clock_source_id dp_cs_id = get_clock_source_id(link);
- enum link_training_result status = LINK_TRAINING_SUCCESS;
- union hpd_irq_data irq_data;
- struct link_resource link_res;
-
- memset(&irq_data, 0, sizeof(irq_data));
- cur_link_settings = max_link_settings;
-
- /* Grant extended timeout request */
- if (dp_is_lttpr_present(link) && link->dpcd_caps.lttpr_caps.max_ext_timeout > 0) {
- uint8_t grant = link->dpcd_caps.lttpr_caps.max_ext_timeout & 0x80;
-
- core_link_write_dpcd(link, DP_PHY_REPEATER_EXTENDED_WAIT_TIMEOUT, &grant, sizeof(grant));
- }
-
- do {
- if (!get_temp_dp_link_res(link, &link_res, &cur_link_settings))
- continue;
-
- skip_video_pattern = cur_link_settings.link_rate != LINK_RATE_LOW;
- dp_enable_link_phy(
- link,
- &link_res,
- link->connector_signal,
- dp_cs_id,
- &cur_link_settings);
-
- status = dc_link_dp_perform_link_training(
- link,
- &link_res,
- &cur_link_settings,
- skip_video_pattern);
-
- if (status == LINK_TRAINING_SUCCESS) {
- success = true;
- udelay(1000);
- if (read_hpd_rx_irq_data(link, &irq_data) == DC_OK &&
- hpd_rx_irq_check_link_loss_status(
- link,
- &irq_data))
- (*fail_count)++;
-
- } else {
- (*fail_count)++;
- }
- dp_trace_lt_total_count_increment(link, true);
- dp_trace_lt_result_update(link, status, true);
- dp_disable_link_phy(link, &link_res, link->connector_signal);
- } while (!success && decide_fallback_link_setting(link,
- &max_link_settings, &cur_link_settings, status));
-
- link->verified_link_cap = success ?
- cur_link_settings : fail_safe_link_settings;
- return success;
-}
-
-static void apply_usbc_combo_phy_reset_wa(struct dc_link *link,
- struct dc_link_settings *link_settings)
-{
- /* Temporary Renoir-specific workaround PHY will sometimes be in bad
- * state on hotplugging display from certain USB-C dongle, so add extra
- * cycle of enabling and disabling the PHY before first link training.
- */
- struct link_resource link_res = {0};
- enum clock_source_id dp_cs_id = get_clock_source_id(link);
-
- dp_enable_link_phy(link, &link_res, link->connector_signal,
- dp_cs_id, link_settings);
- dp_disable_link_phy(link, &link_res, link->connector_signal);
-}
-
-bool dp_verify_link_cap_with_retries(
- struct dc_link *link,
- struct dc_link_settings *known_limit_link_setting,
- int attempts)
-{
- int i = 0;
- bool success = false;
- int fail_count = 0;
-
- dp_trace_detect_lt_init(link);
-
- if (link->link_enc && link->link_enc->features.flags.bits.DP_IS_USB_C &&
- link->dc->debug.usbc_combo_phy_reset_wa)
- apply_usbc_combo_phy_reset_wa(link, known_limit_link_setting);
-
- dp_trace_set_lt_start_timestamp(link, false);
- for (i = 0; i < attempts; i++) {
- enum dc_connection_type type = dc_connection_none;
-
- memset(&link->verified_link_cap, 0,
- sizeof(struct dc_link_settings));
- if (!dc_link_detect_sink(link, &type) || type == dc_connection_none) {
- link->verified_link_cap = fail_safe_link_settings;
- break;
- } else if (dp_verify_link_cap(link, known_limit_link_setting,
- &fail_count) && fail_count == 0) {
- success = true;
- break;
- }
- msleep(10);
- }
-
- dp_trace_lt_fail_count_update(link, fail_count, true);
- dp_trace_set_lt_end_timestamp(link, true);
-
- return success;
-}
-
-/* in DP compliance test, DPR-120 may have
- * a random value in its MAX_LINK_BW dpcd field.
- * We map it to the maximum supported link rate that
- * is smaller than MAX_LINK_BW in this case.
- */
-static enum dc_link_rate get_link_rate_from_max_link_bw(
- uint8_t max_link_bw)
-{
- enum dc_link_rate link_rate;
-
- if (max_link_bw >= LINK_RATE_HIGH3) {
- link_rate = LINK_RATE_HIGH3;
- } else if (max_link_bw < LINK_RATE_HIGH3
- && max_link_bw >= LINK_RATE_HIGH2) {
- link_rate = LINK_RATE_HIGH2;
- } else if (max_link_bw < LINK_RATE_HIGH2
- && max_link_bw >= LINK_RATE_HIGH) {
- link_rate = LINK_RATE_HIGH;
- } else if (max_link_bw < LINK_RATE_HIGH
- && max_link_bw >= LINK_RATE_LOW) {
- link_rate = LINK_RATE_LOW;
- } else {
- link_rate = LINK_RATE_UNKNOWN;
- }
-
- return link_rate;
-}
-
-static inline bool reached_minimum_lane_count(enum dc_lane_count lane_count)
-{
- return lane_count <= LANE_COUNT_ONE;
-}
-
-static inline bool reached_minimum_link_rate(enum dc_link_rate link_rate)
-{
- return link_rate <= LINK_RATE_LOW;
-}
-
-static enum dc_lane_count reduce_lane_count(enum dc_lane_count lane_count)
-{
- switch (lane_count) {
- case LANE_COUNT_FOUR:
- return LANE_COUNT_TWO;
- case LANE_COUNT_TWO:
- return LANE_COUNT_ONE;
- case LANE_COUNT_ONE:
- return LANE_COUNT_UNKNOWN;
- default:
- return LANE_COUNT_UNKNOWN;
- }
-}
-
-static enum dc_link_rate reduce_link_rate(enum dc_link_rate link_rate)
-{
- switch (link_rate) {
- case LINK_RATE_UHBR20:
- return LINK_RATE_UHBR13_5;
- case LINK_RATE_UHBR13_5:
- return LINK_RATE_UHBR10;
- case LINK_RATE_UHBR10:
- return LINK_RATE_HIGH3;
- case LINK_RATE_HIGH3:
- return LINK_RATE_HIGH2;
- case LINK_RATE_HIGH2:
- return LINK_RATE_HIGH;
- case LINK_RATE_HIGH:
- return LINK_RATE_LOW;
- case LINK_RATE_LOW:
- return LINK_RATE_UNKNOWN;
- default:
- return LINK_RATE_UNKNOWN;
- }
-}
-
-static enum dc_lane_count increase_lane_count(enum dc_lane_count lane_count)
-{
- switch (lane_count) {
- case LANE_COUNT_ONE:
- return LANE_COUNT_TWO;
- case LANE_COUNT_TWO:
- return LANE_COUNT_FOUR;
- default:
- return LANE_COUNT_UNKNOWN;
- }
-}
-
-static enum dc_link_rate increase_link_rate(struct dc_link *link,
- enum dc_link_rate link_rate)
-{
- switch (link_rate) {
- case LINK_RATE_LOW:
- return LINK_RATE_HIGH;
- case LINK_RATE_HIGH:
- return LINK_RATE_HIGH2;
- case LINK_RATE_HIGH2:
- return LINK_RATE_HIGH3;
- case LINK_RATE_HIGH3:
- return LINK_RATE_UHBR10;
- case LINK_RATE_UHBR10:
- /* upto DP2.x specs UHBR13.5 is the only link rate that could be
- * not supported by DPRX when higher link rate is supported.
- * so we treat it as a special case for code simplicity. When we
- * have new specs with more link rates like this, we should
- * consider a more generic solution to handle discrete link
- * rate capabilities.
- */
- return link->dpcd_caps.dp_128b_132b_supported_link_rates.bits.UHBR13_5 ?
- LINK_RATE_UHBR13_5 : LINK_RATE_UHBR20;
- case LINK_RATE_UHBR13_5:
- return LINK_RATE_UHBR20;
- default:
- return LINK_RATE_UNKNOWN;
- }
-}
-
-static bool decide_fallback_link_setting_max_bw_policy(
- struct dc_link *link,
- const struct dc_link_settings *max,
- struct dc_link_settings *cur,
- enum link_training_result training_result)
-{
- uint8_t cur_idx = 0, next_idx;
- bool found = false;
-
- if (training_result == LINK_TRAINING_ABORT)
- return false;
-
- while (cur_idx < ARRAY_SIZE(dp_lt_fallbacks))
- /* find current index */
- if (dp_lt_fallbacks[cur_idx].lane_count == cur->lane_count &&
- dp_lt_fallbacks[cur_idx].link_rate == cur->link_rate)
- break;
- else
- cur_idx++;
-
- next_idx = cur_idx + 1;
-
- while (next_idx < ARRAY_SIZE(dp_lt_fallbacks))
- /* find next index */
- if (dp_lt_fallbacks[next_idx].lane_count > max->lane_count ||
- dp_lt_fallbacks[next_idx].link_rate > max->link_rate)
- next_idx++;
- else if (dp_lt_fallbacks[next_idx].link_rate == LINK_RATE_UHBR13_5 &&
- link->dpcd_caps.dp_128b_132b_supported_link_rates.bits.UHBR13_5 == 0)
- /* upto DP2.x specs UHBR13.5 is the only link rate that
- * could be not supported by DPRX when higher link rate
- * is supported. so we treat it as a special case for
- * code simplicity. When we have new specs with more
- * link rates like this, we should consider a more
- * generic solution to handle discrete link rate
- * capabilities.
- */
- next_idx++;
- else
- break;
-
- if (next_idx < ARRAY_SIZE(dp_lt_fallbacks)) {
- cur->lane_count = dp_lt_fallbacks[next_idx].lane_count;
- cur->link_rate = dp_lt_fallbacks[next_idx].link_rate;
- found = true;
- }
-
- return found;
-}
-
-/*
- * function: set link rate and lane count fallback based
- * on current link setting and last link training result
- * return value:
- * true - link setting could be set
- * false - has reached minimum setting
- * and no further fallback could be done
- */
-static bool decide_fallback_link_setting(
- struct dc_link *link,
- struct dc_link_settings *max,
- struct dc_link_settings *cur,
- enum link_training_result training_result)
-{
- if (dp_get_link_encoding_format(max) == DP_128b_132b_ENCODING ||
- link->dc->debug.force_dp2_lt_fallback_method)
- return decide_fallback_link_setting_max_bw_policy(link, max, cur,
- training_result);
-
- switch (training_result) {
- case LINK_TRAINING_CR_FAIL_LANE0:
- case LINK_TRAINING_CR_FAIL_LANE1:
- case LINK_TRAINING_CR_FAIL_LANE23:
- case LINK_TRAINING_LQA_FAIL:
- {
- if (!reached_minimum_link_rate(cur->link_rate)) {
- cur->link_rate = reduce_link_rate(cur->link_rate);
- } else if (!reached_minimum_lane_count(cur->lane_count)) {
- cur->link_rate = max->link_rate;
- if (training_result == LINK_TRAINING_CR_FAIL_LANE0)
- return false;
- else if (training_result == LINK_TRAINING_CR_FAIL_LANE1)
- cur->lane_count = LANE_COUNT_ONE;
- else if (training_result == LINK_TRAINING_CR_FAIL_LANE23)
- cur->lane_count = LANE_COUNT_TWO;
- else
- cur->lane_count = reduce_lane_count(cur->lane_count);
- } else {
- return false;
- }
- break;
- }
- case LINK_TRAINING_EQ_FAIL_EQ:
- case LINK_TRAINING_EQ_FAIL_CR_PARTIAL:
- {
- if (!reached_minimum_lane_count(cur->lane_count)) {
- cur->lane_count = reduce_lane_count(cur->lane_count);
- } else if (!reached_minimum_link_rate(cur->link_rate)) {
- cur->link_rate = reduce_link_rate(cur->link_rate);
- /* Reduce max link rate to avoid potential infinite loop.
- * Needed so that any subsequent CR_FAIL fallback can't
- * re-set the link rate higher than the link rate from
- * the latest EQ_FAIL fallback.
- */
- max->link_rate = cur->link_rate;
- cur->lane_count = max->lane_count;
- } else {
- return false;
- }
- break;
- }
- case LINK_TRAINING_EQ_FAIL_CR:
- {
- if (!reached_minimum_link_rate(cur->link_rate)) {
- cur->link_rate = reduce_link_rate(cur->link_rate);
- /* Reduce max link rate to avoid potential infinite loop.
- * Needed so that any subsequent CR_FAIL fallback can't
- * re-set the link rate higher than the link rate from
- * the latest EQ_FAIL fallback.
- */
- max->link_rate = cur->link_rate;
- cur->lane_count = max->lane_count;
- } else {
- return false;
- }
- break;
- }
- default:
- return false;
- }
- return true;
-}
-
-bool dp_validate_mode_timing(
- struct dc_link *link,
- const struct dc_crtc_timing *timing)
-{
- uint32_t req_bw;
- uint32_t max_bw;
-
- const struct dc_link_settings *link_setting;
-
- /* According to spec, VSC SDP should be used if pixel format is YCbCr420 */
- if (timing->pixel_encoding == PIXEL_ENCODING_YCBCR420 &&
- !link->dpcd_caps.dprx_feature.bits.VSC_SDP_COLORIMETRY_SUPPORTED &&
- dal_graphics_object_id_get_connector_id(link->link_id) != CONNECTOR_ID_VIRTUAL)
- return false;
-
- /*always DP fail safe mode*/
- if ((timing->pix_clk_100hz / 10) == (uint32_t) 25175 &&
- timing->h_addressable == (uint32_t) 640 &&
- timing->v_addressable == (uint32_t) 480)
- return true;
-
- link_setting = dc_link_get_link_cap(link);
-
- /* TODO: DYNAMIC_VALIDATION needs to be implemented */
- /*if (flags.DYNAMIC_VALIDATION == 1 &&
- link->verified_link_cap.lane_count != LANE_COUNT_UNKNOWN)
- link_setting = &link->verified_link_cap;
- */
-
- req_bw = dc_bandwidth_in_kbps_from_timing(timing);
- max_bw = dc_link_bandwidth_kbps(link, link_setting);
-
- if (req_bw <= max_bw) {
- /* remember the biggest mode here, during
- * initial link training (to get
- * verified_link_cap), LS sends event about
- * cannot train at reported cap to upper
- * layer and upper layer will re-enumerate modes.
- * this is not necessary if the lower
- * verified_link_cap is enough to drive
- * all the modes */
-
- /* TODO: DYNAMIC_VALIDATION needs to be implemented */
- /* if (flags.DYNAMIC_VALIDATION == 1)
- dpsst->max_req_bw_for_verified_linkcap = dal_max(
- dpsst->max_req_bw_for_verified_linkcap, req_bw); */
- return true;
- } else
- return false;
-}
-
-static bool decide_dp_link_settings(struct dc_link *link, struct dc_link_settings *link_setting, uint32_t req_bw)
-{
- struct dc_link_settings initial_link_setting = {
- LANE_COUNT_ONE, LINK_RATE_LOW, LINK_SPREAD_DISABLED, false, 0};
- struct dc_link_settings current_link_setting =
- initial_link_setting;
- uint32_t link_bw;
-
- if (req_bw > dc_link_bandwidth_kbps(link, &link->verified_link_cap))
- return false;
-
- /* search for the minimum link setting that:
- * 1. is supported according to the link training result
- * 2. could support the b/w requested by the timing
- */
- while (current_link_setting.link_rate <=
- link->verified_link_cap.link_rate) {
- link_bw = dc_link_bandwidth_kbps(
- link,
- &current_link_setting);
- if (req_bw <= link_bw) {
- *link_setting = current_link_setting;
- return true;
- }
-
- if (current_link_setting.lane_count <
- link->verified_link_cap.lane_count) {
- current_link_setting.lane_count =
- increase_lane_count(
- current_link_setting.lane_count);
- } else {
- current_link_setting.link_rate =
- increase_link_rate(link,
- current_link_setting.link_rate);
- current_link_setting.lane_count =
- initial_link_setting.lane_count;
- }
- }
-
- return false;
-}
-
-bool decide_edp_link_settings(struct dc_link *link, struct dc_link_settings *link_setting, uint32_t req_bw)
-{
- struct dc_link_settings initial_link_setting;
- struct dc_link_settings current_link_setting;
- uint32_t link_bw;
-
- /*
- * edp_supported_link_rates_count is only valid for eDP v1.4 or higher.
- * Per VESA eDP spec, "The DPCD revision for eDP v1.4 is 13h"
- */
- if (link->dpcd_caps.dpcd_rev.raw < DPCD_REV_13 ||
- link->dpcd_caps.edp_supported_link_rates_count == 0) {
- *link_setting = link->verified_link_cap;
- return true;
- }
-
- memset(&initial_link_setting, 0, sizeof(initial_link_setting));
- initial_link_setting.lane_count = LANE_COUNT_ONE;
- initial_link_setting.link_rate = link->dpcd_caps.edp_supported_link_rates[0];
- initial_link_setting.link_spread = LINK_SPREAD_DISABLED;
- initial_link_setting.use_link_rate_set = true;
- initial_link_setting.link_rate_set = 0;
- current_link_setting = initial_link_setting;
-
- /* search for the minimum link setting that:
- * 1. is supported according to the link training result
- * 2. could support the b/w requested by the timing
- */
- while (current_link_setting.link_rate <=
- link->verified_link_cap.link_rate) {
- link_bw = dc_link_bandwidth_kbps(
- link,
- &current_link_setting);
- if (req_bw <= link_bw) {
- *link_setting = current_link_setting;
- return true;
- }
-
- if (current_link_setting.lane_count <
- link->verified_link_cap.lane_count) {
- current_link_setting.lane_count =
- increase_lane_count(
- current_link_setting.lane_count);
- } else {
- if (current_link_setting.link_rate_set < link->dpcd_caps.edp_supported_link_rates_count) {
- current_link_setting.link_rate_set++;
- current_link_setting.link_rate =
- link->dpcd_caps.edp_supported_link_rates[current_link_setting.link_rate_set];
- current_link_setting.lane_count =
- initial_link_setting.lane_count;
- } else
- break;
- }
- }
- return false;
-}
-
-static bool decide_edp_link_settings_with_dsc(struct dc_link *link,
- struct dc_link_settings *link_setting,
- uint32_t req_bw,
- enum dc_link_rate max_link_rate)
-{
- struct dc_link_settings initial_link_setting;
- struct dc_link_settings current_link_setting;
- uint32_t link_bw;
-
- unsigned int policy = 0;
-
- policy = link->panel_config.dsc.force_dsc_edp_policy;
- if (max_link_rate == LINK_RATE_UNKNOWN)
- max_link_rate = link->verified_link_cap.link_rate;
- /*
- * edp_supported_link_rates_count is only valid for eDP v1.4 or higher.
- * Per VESA eDP spec, "The DPCD revision for eDP v1.4 is 13h"
- */
- if ((link->dpcd_caps.dpcd_rev.raw < DPCD_REV_13 ||
- link->dpcd_caps.edp_supported_link_rates_count == 0)) {
- /* for DSC enabled case, we search for minimum lane count */
- memset(&initial_link_setting, 0, sizeof(initial_link_setting));
- initial_link_setting.lane_count = LANE_COUNT_ONE;
- initial_link_setting.link_rate = LINK_RATE_LOW;
- initial_link_setting.link_spread = LINK_SPREAD_DISABLED;
- initial_link_setting.use_link_rate_set = false;
- initial_link_setting.link_rate_set = 0;
- current_link_setting = initial_link_setting;
- if (req_bw > dc_link_bandwidth_kbps(link, &link->verified_link_cap))
- return false;
-
- /* search for the minimum link setting that:
- * 1. is supported according to the link training result
- * 2. could support the b/w requested by the timing
- */
- while (current_link_setting.link_rate <=
- max_link_rate) {
- link_bw = dc_link_bandwidth_kbps(
- link,
- &current_link_setting);
- if (req_bw <= link_bw) {
- *link_setting = current_link_setting;
- return true;
- }
- if (policy) {
- /* minimize lane */
- if (current_link_setting.link_rate < max_link_rate) {
- current_link_setting.link_rate =
- increase_link_rate(link,
- current_link_setting.link_rate);
- } else {
- if (current_link_setting.lane_count <
- link->verified_link_cap.lane_count) {
- current_link_setting.lane_count =
- increase_lane_count(
- current_link_setting.lane_count);
- current_link_setting.link_rate = initial_link_setting.link_rate;
- } else
- break;
- }
- } else {
- /* minimize link rate */
- if (current_link_setting.lane_count <
- link->verified_link_cap.lane_count) {
- current_link_setting.lane_count =
- increase_lane_count(
- current_link_setting.lane_count);
- } else {
- current_link_setting.link_rate =
- increase_link_rate(link,
- current_link_setting.link_rate);
- current_link_setting.lane_count =
- initial_link_setting.lane_count;
- }
- }
- }
- return false;
- }
-
- /* if optimize edp link is supported */
- memset(&initial_link_setting, 0, sizeof(initial_link_setting));
- initial_link_setting.lane_count = LANE_COUNT_ONE;
- initial_link_setting.link_rate = link->dpcd_caps.edp_supported_link_rates[0];
- initial_link_setting.link_spread = LINK_SPREAD_DISABLED;
- initial_link_setting.use_link_rate_set = true;
- initial_link_setting.link_rate_set = 0;
- current_link_setting = initial_link_setting;
-
- /* search for the minimum link setting that:
- * 1. is supported according to the link training result
- * 2. could support the b/w requested by the timing
- */
- while (current_link_setting.link_rate <=
- max_link_rate) {
- link_bw = dc_link_bandwidth_kbps(
- link,
- &current_link_setting);
- if (req_bw <= link_bw) {
- *link_setting = current_link_setting;
- return true;
- }
- if (policy) {
- /* minimize lane */
- if (current_link_setting.link_rate_set <
- link->dpcd_caps.edp_supported_link_rates_count
- && current_link_setting.link_rate < max_link_rate) {
- current_link_setting.link_rate_set++;
- current_link_setting.link_rate =
- link->dpcd_caps.edp_supported_link_rates[current_link_setting.link_rate_set];
- } else {
- if (current_link_setting.lane_count < link->verified_link_cap.lane_count) {
- current_link_setting.lane_count =
- increase_lane_count(
- current_link_setting.lane_count);
- current_link_setting.link_rate_set = initial_link_setting.link_rate_set;
- current_link_setting.link_rate =
- link->dpcd_caps.edp_supported_link_rates[current_link_setting.link_rate_set];
- } else
- break;
- }
- } else {
- /* minimize link rate */
- if (current_link_setting.lane_count <
- link->verified_link_cap.lane_count) {
- current_link_setting.lane_count =
- increase_lane_count(
- current_link_setting.lane_count);
- } else {
- if (current_link_setting.link_rate_set < link->dpcd_caps.edp_supported_link_rates_count) {
- current_link_setting.link_rate_set++;
- current_link_setting.link_rate =
- link->dpcd_caps.edp_supported_link_rates[current_link_setting.link_rate_set];
- current_link_setting.lane_count =
- initial_link_setting.lane_count;
- } else
- break;
- }
- }
- }
- return false;
-}
-
-static bool decide_mst_link_settings(const struct dc_link *link, struct dc_link_settings *link_setting)
-{
- *link_setting = link->verified_link_cap;
- return true;
-}
-
-bool decide_link_settings(struct dc_stream_state *stream,
- struct dc_link_settings *link_setting)
-{
- struct dc_link *link = stream->link;
- uint32_t req_bw = dc_bandwidth_in_kbps_from_timing(&stream->timing);
-
- memset(link_setting, 0, sizeof(*link_setting));
-
- /* if preferred is specified through AMDDP, use it, if it's enough
- * to drive the mode
- */
- if (link->preferred_link_setting.lane_count !=
- LANE_COUNT_UNKNOWN &&
- link->preferred_link_setting.link_rate !=
- LINK_RATE_UNKNOWN) {
- *link_setting = link->preferred_link_setting;
- return true;
- }
-
- /* MST doesn't perform link training for now
- * TODO: add MST specific link training routine
- */
- if (stream->signal == SIGNAL_TYPE_DISPLAY_PORT_MST) {
- decide_mst_link_settings(link, link_setting);
- } else if (link->connector_signal == SIGNAL_TYPE_EDP) {
- /* enable edp link optimization for DSC eDP case */
- if (stream->timing.flags.DSC) {
- enum dc_link_rate max_link_rate = LINK_RATE_UNKNOWN;
-
- if (link->panel_config.dsc.force_dsc_edp_policy) {
- /* calculate link max link rate cap*/
- struct dc_link_settings tmp_link_setting;
- struct dc_crtc_timing tmp_timing = stream->timing;
- uint32_t orig_req_bw;
-
- tmp_link_setting.link_rate = LINK_RATE_UNKNOWN;
- tmp_timing.flags.DSC = 0;
- orig_req_bw = dc_bandwidth_in_kbps_from_timing(&tmp_timing);
- decide_edp_link_settings(link, &tmp_link_setting, orig_req_bw);
- max_link_rate = tmp_link_setting.link_rate;
- }
- decide_edp_link_settings_with_dsc(link, link_setting, req_bw, max_link_rate);
- } else {
- decide_edp_link_settings(link, link_setting, req_bw);
- }
- } else {
- decide_dp_link_settings(link, link_setting, req_bw);
- }
-
- return link_setting->lane_count != LANE_COUNT_UNKNOWN &&
- link_setting->link_rate != LINK_RATE_UNKNOWN;
-}
-
-/*************************Short Pulse IRQ***************************/
-bool dc_link_dp_allow_hpd_rx_irq(const struct dc_link *link)
-{
- /*
- * Don't handle RX IRQ unless one of following is met:
- * 1) The link is established (cur_link_settings != unknown)
- * 2) We know we're dealing with a branch device, SST or MST
- */
-
- if ((link->cur_link_settings.lane_count != LANE_COUNT_UNKNOWN) ||
- is_dp_branch_device(link))
- return true;
-
- return false;
-}
-
-static bool handle_hpd_irq_psr_sink(struct dc_link *link)
-{
- union dpcd_psr_configuration psr_configuration;
-
- if (!link->psr_settings.psr_feature_enabled)
- return false;
-
- dm_helpers_dp_read_dpcd(
- link->ctx,
- link,
- 368,/*DpcdAddress_PSR_Enable_Cfg*/
- &psr_configuration.raw,
- sizeof(psr_configuration.raw));
-
- if (psr_configuration.bits.ENABLE) {
- unsigned char dpcdbuf[3] = {0};
- union psr_error_status psr_error_status;
- union psr_sink_psr_status psr_sink_psr_status;
-
- dm_helpers_dp_read_dpcd(
- link->ctx,
- link,
- 0x2006, /*DpcdAddress_PSR_Error_Status*/
- (unsigned char *) dpcdbuf,
- sizeof(dpcdbuf));
-
- /*DPCD 2006h ERROR STATUS*/
- psr_error_status.raw = dpcdbuf[0];
- /*DPCD 2008h SINK PANEL SELF REFRESH STATUS*/
- psr_sink_psr_status.raw = dpcdbuf[2];
-
- if (psr_error_status.bits.LINK_CRC_ERROR ||
- psr_error_status.bits.RFB_STORAGE_ERROR ||
- psr_error_status.bits.VSC_SDP_ERROR) {
- bool allow_active;
-
- /* Acknowledge and clear error bits */
- dm_helpers_dp_write_dpcd(
- link->ctx,
- link,
- 8198,/*DpcdAddress_PSR_Error_Status*/
- &psr_error_status.raw,
- sizeof(psr_error_status.raw));
-
- /* PSR error, disable and re-enable PSR */
- if (link->psr_settings.psr_allow_active) {
- allow_active = false;
- dc_link_set_psr_allow_active(link, &allow_active, true, false, NULL);
- allow_active = true;
- dc_link_set_psr_allow_active(link, &allow_active, true, false, NULL);
- }
-
- return true;
- } else if (psr_sink_psr_status.bits.SINK_SELF_REFRESH_STATUS ==
- PSR_SINK_STATE_ACTIVE_DISPLAY_FROM_SINK_RFB){
- /* No error is detect, PSR is active.
- * We should return with IRQ_HPD handled without
- * checking for loss of sync since PSR would have
- * powered down main link.
- */
- return true;
- }
- }
- return false;
-}
-
-static enum dc_link_rate get_link_rate_from_test_link_rate(uint8_t test_rate)
-{
- switch (test_rate) {
- case DP_TEST_LINK_RATE_RBR:
- return LINK_RATE_LOW;
- case DP_TEST_LINK_RATE_HBR:
- return LINK_RATE_HIGH;
- case DP_TEST_LINK_RATE_HBR2:
- return LINK_RATE_HIGH2;
- case DP_TEST_LINK_RATE_HBR3:
- return LINK_RATE_HIGH3;
- case DP_TEST_LINK_RATE_UHBR10:
- return LINK_RATE_UHBR10;
- case DP_TEST_LINK_RATE_UHBR20:
- return LINK_RATE_UHBR20;
- case DP_TEST_LINK_RATE_UHBR13_5:
- return LINK_RATE_UHBR13_5;
- default:
- return LINK_RATE_UNKNOWN;
- }
-}
-
-static void dp_test_send_link_training(struct dc_link *link)
-{
- struct dc_link_settings link_settings = {0};
- uint8_t test_rate = 0;
-
- core_link_read_dpcd(
- link,
- DP_TEST_LANE_COUNT,
- (unsigned char *)(&link_settings.lane_count),
- 1);
- core_link_read_dpcd(
- link,
- DP_TEST_LINK_RATE,
- &test_rate,
- 1);
- link_settings.link_rate = get_link_rate_from_test_link_rate(test_rate);
-
- /* Set preferred link settings */
- link->verified_link_cap.lane_count = link_settings.lane_count;
- link->verified_link_cap.link_rate = link_settings.link_rate;
-
- dp_retrain_link_dp_test(link, &link_settings, false);
-}
-
-/* TODO Raven hbr2 compliance eye output is unstable
- * (toggling on and off) with debugger break
- * This caueses intermittent PHY automation failure
- * Need to look into the root cause */
-static void dp_test_send_phy_test_pattern(struct dc_link *link)
-{
- union phy_test_pattern dpcd_test_pattern;
- union lane_adjust dpcd_lane_adjustment[2];
- unsigned char dpcd_post_cursor_2_adjustment = 0;
- unsigned char test_pattern_buffer[
- (DP_TEST_264BIT_CUSTOM_PATTERN_263_256 -
- DP_TEST_264BIT_CUSTOM_PATTERN_7_0)+1] = {0};
- unsigned int test_pattern_size = 0;
- enum dp_test_pattern test_pattern;
- union lane_adjust dpcd_lane_adjust;
- unsigned int lane;
- struct link_training_settings link_training_settings;
-
- dpcd_test_pattern.raw = 0;
- memset(dpcd_lane_adjustment, 0, sizeof(dpcd_lane_adjustment));
- memset(&link_training_settings, 0, sizeof(link_training_settings));
-
- /* get phy test pattern and pattern parameters from DP receiver */
- core_link_read_dpcd(
- link,
- DP_PHY_TEST_PATTERN,
- &dpcd_test_pattern.raw,
- sizeof(dpcd_test_pattern));
- core_link_read_dpcd(
- link,
- DP_ADJUST_REQUEST_LANE0_1,
- &dpcd_lane_adjustment[0].raw,
- sizeof(dpcd_lane_adjustment));
-
- /* prepare link training settings */
- link_training_settings.link_settings = link->cur_link_settings;
-
- link_training_settings.lttpr_mode = dp_decide_lttpr_mode(link, &link->cur_link_settings);
-
- if ((link->chip_caps & EXT_DISPLAY_PATH_CAPS__DP_FIXED_VS_EN) &&
- link_training_settings.lttpr_mode == LTTPR_MODE_TRANSPARENT)
- dp_fixed_vs_pe_read_lane_adjust(
- link,
- link_training_settings.dpcd_lane_settings);
-
- /*get post cursor 2 parameters
- * For DP 1.1a or eariler, this DPCD register's value is 0
- * For DP 1.2 or later:
- * Bits 1:0 = POST_CURSOR2_LANE0; Bits 3:2 = POST_CURSOR2_LANE1
- * Bits 5:4 = POST_CURSOR2_LANE2; Bits 7:6 = POST_CURSOR2_LANE3
- */
- core_link_read_dpcd(
- link,
- DP_ADJUST_REQUEST_POST_CURSOR2,
- &dpcd_post_cursor_2_adjustment,
- sizeof(dpcd_post_cursor_2_adjustment));
-
- /* translate request */
- switch (dpcd_test_pattern.bits.PATTERN) {
- case PHY_TEST_PATTERN_D10_2:
- test_pattern = DP_TEST_PATTERN_D102;
- break;
- case PHY_TEST_PATTERN_SYMBOL_ERROR:
- test_pattern = DP_TEST_PATTERN_SYMBOL_ERROR;
- break;
- case PHY_TEST_PATTERN_PRBS7:
- test_pattern = DP_TEST_PATTERN_PRBS7;
- break;
- case PHY_TEST_PATTERN_80BIT_CUSTOM:
- test_pattern = DP_TEST_PATTERN_80BIT_CUSTOM;
- break;
- case PHY_TEST_PATTERN_CP2520_1:
- /* CP2520 pattern is unstable, temporarily use TPS4 instead */
- test_pattern = (link->dc->caps.force_dp_tps4_for_cp2520 == 1) ?
- DP_TEST_PATTERN_TRAINING_PATTERN4 :
- DP_TEST_PATTERN_HBR2_COMPLIANCE_EYE;
- break;
- case PHY_TEST_PATTERN_CP2520_2:
- /* CP2520 pattern is unstable, temporarily use TPS4 instead */
- test_pattern = (link->dc->caps.force_dp_tps4_for_cp2520 == 1) ?
- DP_TEST_PATTERN_TRAINING_PATTERN4 :
- DP_TEST_PATTERN_HBR2_COMPLIANCE_EYE;
- break;
- case PHY_TEST_PATTERN_CP2520_3:
- test_pattern = DP_TEST_PATTERN_TRAINING_PATTERN4;
- break;
- case PHY_TEST_PATTERN_128b_132b_TPS1:
- test_pattern = DP_TEST_PATTERN_128b_132b_TPS1;
- break;
- case PHY_TEST_PATTERN_128b_132b_TPS2:
- test_pattern = DP_TEST_PATTERN_128b_132b_TPS2;
- break;
- case PHY_TEST_PATTERN_PRBS9:
- test_pattern = DP_TEST_PATTERN_PRBS9;
- break;
- case PHY_TEST_PATTERN_PRBS11:
- test_pattern = DP_TEST_PATTERN_PRBS11;
- break;
- case PHY_TEST_PATTERN_PRBS15:
- test_pattern = DP_TEST_PATTERN_PRBS15;
- break;
- case PHY_TEST_PATTERN_PRBS23:
- test_pattern = DP_TEST_PATTERN_PRBS23;
- break;
- case PHY_TEST_PATTERN_PRBS31:
- test_pattern = DP_TEST_PATTERN_PRBS31;
- break;
- case PHY_TEST_PATTERN_264BIT_CUSTOM:
- test_pattern = DP_TEST_PATTERN_264BIT_CUSTOM;
- break;
- case PHY_TEST_PATTERN_SQUARE_PULSE:
- test_pattern = DP_TEST_PATTERN_SQUARE_PULSE;
- break;
- default:
- test_pattern = DP_TEST_PATTERN_VIDEO_MODE;
- break;
- }
-
- if (test_pattern == DP_TEST_PATTERN_80BIT_CUSTOM) {
- test_pattern_size = (DP_TEST_80BIT_CUSTOM_PATTERN_79_72 -
- DP_TEST_80BIT_CUSTOM_PATTERN_7_0) + 1;
- core_link_read_dpcd(
- link,
- DP_TEST_80BIT_CUSTOM_PATTERN_7_0,
- test_pattern_buffer,
- test_pattern_size);
- }
-
- if (test_pattern == DP_TEST_PATTERN_SQUARE_PULSE) {
- test_pattern_size = 1; // Square pattern data is 1 byte (DP spec)
- core_link_read_dpcd(
- link,
- DP_PHY_SQUARE_PATTERN,
- test_pattern_buffer,
- test_pattern_size);
- }
-
- if (test_pattern == DP_TEST_PATTERN_264BIT_CUSTOM) {
- test_pattern_size = (DP_TEST_264BIT_CUSTOM_PATTERN_263_256-
- DP_TEST_264BIT_CUSTOM_PATTERN_7_0) + 1;
- core_link_read_dpcd(
- link,
- DP_TEST_264BIT_CUSTOM_PATTERN_7_0,
- test_pattern_buffer,
- test_pattern_size);
- }
-
- for (lane = 0; lane <
- (unsigned int)(link->cur_link_settings.lane_count);
- lane++) {
- dpcd_lane_adjust.raw =
- get_nibble_at_index(&dpcd_lane_adjustment[0].raw, lane);
- if (dp_get_link_encoding_format(&link->cur_link_settings) ==
- DP_8b_10b_ENCODING) {
- link_training_settings.hw_lane_settings[lane].VOLTAGE_SWING =
- (enum dc_voltage_swing)
- (dpcd_lane_adjust.bits.VOLTAGE_SWING_LANE);
- link_training_settings.hw_lane_settings[lane].PRE_EMPHASIS =
- (enum dc_pre_emphasis)
- (dpcd_lane_adjust.bits.PRE_EMPHASIS_LANE);
- link_training_settings.hw_lane_settings[lane].POST_CURSOR2 =
- (enum dc_post_cursor2)
- ((dpcd_post_cursor_2_adjustment >> (lane * 2)) & 0x03);
- } else if (dp_get_link_encoding_format(&link->cur_link_settings) ==
- DP_128b_132b_ENCODING) {
- link_training_settings.hw_lane_settings[lane].FFE_PRESET.raw =
- dpcd_lane_adjust.tx_ffe.PRESET_VALUE;
- }
- }
-
- dp_hw_to_dpcd_lane_settings(&link_training_settings,
- link_training_settings.hw_lane_settings,
- link_training_settings.dpcd_lane_settings);
- /*Usage: Measure DP physical lane signal
- * by DP SI test equipment automatically.
- * PHY test pattern request is generated by equipment via HPD interrupt.
- * HPD needs to be active all the time. HPD should be active
- * all the time. Do not touch it.
- * forward request to DS
- */
- dc_link_dp_set_test_pattern(
- link,
- test_pattern,
- DP_TEST_PATTERN_COLOR_SPACE_UNDEFINED,
- &link_training_settings,
- test_pattern_buffer,
- test_pattern_size);
-}
-
-static void dp_test_send_link_test_pattern(struct dc_link *link)
-{
- union link_test_pattern dpcd_test_pattern;
- union test_misc dpcd_test_params;
- enum dp_test_pattern test_pattern;
- enum dp_test_pattern_color_space test_pattern_color_space =
- DP_TEST_PATTERN_COLOR_SPACE_UNDEFINED;
- enum dc_color_depth requestColorDepth = COLOR_DEPTH_UNDEFINED;
- struct pipe_ctx *pipes = link->dc->current_state->res_ctx.pipe_ctx;
- struct pipe_ctx *pipe_ctx = NULL;
- int i;
-
- memset(&dpcd_test_pattern, 0, sizeof(dpcd_test_pattern));
- memset(&dpcd_test_params, 0, sizeof(dpcd_test_params));
-
- for (i = 0; i < MAX_PIPES; i++) {
- if (pipes[i].stream == NULL)
- continue;
-
- if (pipes[i].stream->link == link && !pipes[i].top_pipe && !pipes[i].prev_odm_pipe) {
- pipe_ctx = &pipes[i];
- break;
- }
- }
-
- if (pipe_ctx == NULL)
- return;
-
- /* get link test pattern and pattern parameters */
- core_link_read_dpcd(
- link,
- DP_TEST_PATTERN,
- &dpcd_test_pattern.raw,
- sizeof(dpcd_test_pattern));
- core_link_read_dpcd(
- link,
- DP_TEST_MISC0,
- &dpcd_test_params.raw,
- sizeof(dpcd_test_params));
-
- switch (dpcd_test_pattern.bits.PATTERN) {
- case LINK_TEST_PATTERN_COLOR_RAMP:
- test_pattern = DP_TEST_PATTERN_COLOR_RAMP;
- break;
- case LINK_TEST_PATTERN_VERTICAL_BARS:
- test_pattern = DP_TEST_PATTERN_VERTICAL_BARS;
- break; /* black and white */
- case LINK_TEST_PATTERN_COLOR_SQUARES:
- test_pattern = (dpcd_test_params.bits.DYN_RANGE ==
- TEST_DYN_RANGE_VESA ?
- DP_TEST_PATTERN_COLOR_SQUARES :
- DP_TEST_PATTERN_COLOR_SQUARES_CEA);
- break;
- default:
- test_pattern = DP_TEST_PATTERN_VIDEO_MODE;
- break;
- }
-
- if (dpcd_test_params.bits.CLR_FORMAT == 0)
- test_pattern_color_space = DP_TEST_PATTERN_COLOR_SPACE_RGB;
- else
- test_pattern_color_space = dpcd_test_params.bits.YCBCR_COEFS ?
- DP_TEST_PATTERN_COLOR_SPACE_YCBCR709 :
- DP_TEST_PATTERN_COLOR_SPACE_YCBCR601;
-
- switch (dpcd_test_params.bits.BPC) {
- case 0: // 6 bits
- requestColorDepth = COLOR_DEPTH_666;
- break;
- case 1: // 8 bits
- requestColorDepth = COLOR_DEPTH_888;
- break;
- case 2: // 10 bits
- requestColorDepth = COLOR_DEPTH_101010;
- break;
- case 3: // 12 bits
- requestColorDepth = COLOR_DEPTH_121212;
- break;
- default:
- break;
- }
-
- switch (dpcd_test_params.bits.CLR_FORMAT) {
- case 0:
- pipe_ctx->stream->timing.pixel_encoding = PIXEL_ENCODING_RGB;
- break;
- case 1:
- pipe_ctx->stream->timing.pixel_encoding = PIXEL_ENCODING_YCBCR422;
- break;
- case 2:
- pipe_ctx->stream->timing.pixel_encoding = PIXEL_ENCODING_YCBCR444;
- break;
- default:
- pipe_ctx->stream->timing.pixel_encoding = PIXEL_ENCODING_RGB;
- break;
- }
-
-
- if (requestColorDepth != COLOR_DEPTH_UNDEFINED
- && pipe_ctx->stream->timing.display_color_depth != requestColorDepth) {
- DC_LOG_DEBUG("%s: original bpc %d, changing to %d\n",
- __func__,
- pipe_ctx->stream->timing.display_color_depth,
- requestColorDepth);
- pipe_ctx->stream->timing.display_color_depth = requestColorDepth;
- }
-
- dp_update_dsc_config(pipe_ctx);
-
- dc_link_dp_set_test_pattern(
- link,
- test_pattern,
- test_pattern_color_space,
- NULL,
- NULL,
- 0);
-}
-
-static void dp_test_get_audio_test_data(struct dc_link *link, bool disable_video)
-{
- union audio_test_mode dpcd_test_mode = {0};
- struct audio_test_pattern_type dpcd_pattern_type = {0};
- union audio_test_pattern_period dpcd_pattern_period[AUDIO_CHANNELS_COUNT] = {0};
- enum dp_test_pattern test_pattern = DP_TEST_PATTERN_AUDIO_OPERATOR_DEFINED;
-
- struct pipe_ctx *pipes = link->dc->current_state->res_ctx.pipe_ctx;
- struct pipe_ctx *pipe_ctx = &pipes[0];
- unsigned int channel_count;
- unsigned int channel = 0;
- unsigned int modes = 0;
- unsigned int sampling_rate_in_hz = 0;
-
- // get audio test mode and test pattern parameters
- core_link_read_dpcd(
- link,
- DP_TEST_AUDIO_MODE,
- &dpcd_test_mode.raw,
- sizeof(dpcd_test_mode));
-
- core_link_read_dpcd(
- link,
- DP_TEST_AUDIO_PATTERN_TYPE,
- &dpcd_pattern_type.value,
- sizeof(dpcd_pattern_type));
-
- channel_count = min(dpcd_test_mode.bits.channel_count + 1, AUDIO_CHANNELS_COUNT);
-
- // read pattern periods for requested channels when sawTooth pattern is requested
- if (dpcd_pattern_type.value == AUDIO_TEST_PATTERN_SAWTOOTH ||
- dpcd_pattern_type.value == AUDIO_TEST_PATTERN_OPERATOR_DEFINED) {
-
- test_pattern = (dpcd_pattern_type.value == AUDIO_TEST_PATTERN_SAWTOOTH) ?
- DP_TEST_PATTERN_AUDIO_SAWTOOTH : DP_TEST_PATTERN_AUDIO_OPERATOR_DEFINED;
- // read period for each channel
- for (channel = 0; channel < channel_count; channel++) {
- core_link_read_dpcd(
- link,
- DP_TEST_AUDIO_PERIOD_CH1 + channel,
- &dpcd_pattern_period[channel].raw,
- sizeof(dpcd_pattern_period[channel]));
- }
- }
-
- // translate sampling rate
- switch (dpcd_test_mode.bits.sampling_rate) {
- case AUDIO_SAMPLING_RATE_32KHZ:
- sampling_rate_in_hz = 32000;
- break;
- case AUDIO_SAMPLING_RATE_44_1KHZ:
- sampling_rate_in_hz = 44100;
- break;
- case AUDIO_SAMPLING_RATE_48KHZ:
- sampling_rate_in_hz = 48000;
- break;
- case AUDIO_SAMPLING_RATE_88_2KHZ:
- sampling_rate_in_hz = 88200;
- break;
- case AUDIO_SAMPLING_RATE_96KHZ:
- sampling_rate_in_hz = 96000;
- break;
- case AUDIO_SAMPLING_RATE_176_4KHZ:
- sampling_rate_in_hz = 176400;
- break;
- case AUDIO_SAMPLING_RATE_192KHZ:
- sampling_rate_in_hz = 192000;
- break;
- default:
- sampling_rate_in_hz = 0;
- break;
- }
-
- link->audio_test_data.flags.test_requested = 1;
- link->audio_test_data.flags.disable_video = disable_video;
- link->audio_test_data.sampling_rate = sampling_rate_in_hz;
- link->audio_test_data.channel_count = channel_count;
- link->audio_test_data.pattern_type = test_pattern;
-
- if (test_pattern == DP_TEST_PATTERN_AUDIO_SAWTOOTH) {
- for (modes = 0; modes < pipe_ctx->stream->audio_info.mode_count; modes++) {
- link->audio_test_data.pattern_period[modes] = dpcd_pattern_period[modes].bits.pattern_period;
- }
- }
-}
-
-void dc_link_dp_handle_automated_test(struct dc_link *link)
-{
- union test_request test_request;
- union test_response test_response;
-
- memset(&test_request, 0, sizeof(test_request));
- memset(&test_response, 0, sizeof(test_response));
-
- core_link_read_dpcd(
- link,
- DP_TEST_REQUEST,
- &test_request.raw,
- sizeof(union test_request));
- if (test_request.bits.LINK_TRAINING) {
- /* ACK first to let DP RX test box monitor LT sequence */
- test_response.bits.ACK = 1;
- core_link_write_dpcd(
- link,
- DP_TEST_RESPONSE,
- &test_response.raw,
- sizeof(test_response));
- dp_test_send_link_training(link);
- /* no acknowledge request is needed again */
- test_response.bits.ACK = 0;
- }
- if (test_request.bits.LINK_TEST_PATTRN) {
- dp_test_send_link_test_pattern(link);
- test_response.bits.ACK = 1;
- }
-
- if (test_request.bits.AUDIO_TEST_PATTERN) {
- dp_test_get_audio_test_data(link, test_request.bits.TEST_AUDIO_DISABLED_VIDEO);
- test_response.bits.ACK = 1;
- }
-
- if (test_request.bits.PHY_TEST_PATTERN) {
- dp_test_send_phy_test_pattern(link);
- test_response.bits.ACK = 1;
- }
-
- /* send request acknowledgment */
- if (test_response.bits.ACK)
- core_link_write_dpcd(
- link,
- DP_TEST_RESPONSE,
- &test_response.raw,
- sizeof(test_response));
-}
-
-void dc_link_dp_handle_link_loss(struct dc_link *link)
-{
- int i;
- struct pipe_ctx *pipe_ctx;
-
- for (i = 0; i < MAX_PIPES; i++) {
- pipe_ctx = &link->dc->current_state->res_ctx.pipe_ctx[i];
- if (pipe_ctx && pipe_ctx->stream && pipe_ctx->stream->link == link)
- break;
- }
-
- if (pipe_ctx == NULL || pipe_ctx->stream == NULL)
- return;
-
- for (i = 0; i < MAX_PIPES; i++) {
- pipe_ctx = &link->dc->current_state->res_ctx.pipe_ctx[i];
- if (pipe_ctx && pipe_ctx->stream && !pipe_ctx->stream->dpms_off &&
- pipe_ctx->stream->link == link && !pipe_ctx->prev_odm_pipe)
- core_link_disable_stream(pipe_ctx);
- }
-
- for (i = 0; i < MAX_PIPES; i++) {
- pipe_ctx = &link->dc->current_state->res_ctx.pipe_ctx[i];
- if (pipe_ctx && pipe_ctx->stream && !pipe_ctx->stream->dpms_off &&
- pipe_ctx->stream->link == link && !pipe_ctx->prev_odm_pipe)
- core_link_enable_stream(link->dc->current_state, pipe_ctx);
- }
-}
-
-bool dc_link_handle_hpd_rx_irq(struct dc_link *link, union hpd_irq_data *out_hpd_irq_dpcd_data, bool *out_link_loss,
- bool defer_handling, bool *has_left_work)
-{
- union hpd_irq_data hpd_irq_dpcd_data = {0};
- union device_service_irq device_service_clear = {0};
- enum dc_status result;
- bool status = false;
-
- if (out_link_loss)
- *out_link_loss = false;
-
- if (has_left_work)
- *has_left_work = false;
- /* For use cases related to down stream connection status change,
- * PSR and device auto test, refer to function handle_sst_hpd_irq
- * in DAL2.1*/
-
- DC_LOG_HW_HPD_IRQ("%s: Got short pulse HPD on link %d\n",
- __func__, link->link_index);
-
-
- /* All the "handle_hpd_irq_xxx()" methods
- * should be called only after
- * dal_dpsst_ls_read_hpd_irq_data
- * Order of calls is important too
- */
- result = read_hpd_rx_irq_data(link, &hpd_irq_dpcd_data);
- if (out_hpd_irq_dpcd_data)
- *out_hpd_irq_dpcd_data = hpd_irq_dpcd_data;
-
- if (result != DC_OK) {
- DC_LOG_HW_HPD_IRQ("%s: DPCD read failed to obtain irq data\n",
- __func__);
- return false;
- }
-
- if (hpd_irq_dpcd_data.bytes.device_service_irq.bits.AUTOMATED_TEST) {
- device_service_clear.bits.AUTOMATED_TEST = 1;
- core_link_write_dpcd(
- link,
- DP_DEVICE_SERVICE_IRQ_VECTOR,
- &device_service_clear.raw,
- sizeof(device_service_clear.raw));
- device_service_clear.raw = 0;
- if (defer_handling && has_left_work)
- *has_left_work = true;
- else
- dc_link_dp_handle_automated_test(link);
- return false;
- }
-
- if (!dc_link_dp_allow_hpd_rx_irq(link)) {
- DC_LOG_HW_HPD_IRQ("%s: skipping HPD handling on %d\n",
- __func__, link->link_index);
- return false;
- }
-
- if (handle_hpd_irq_psr_sink(link))
- /* PSR-related error was detected and handled */
- return true;
-
- /* If PSR-related error handled, Main link may be off,
- * so do not handle as a normal sink status change interrupt.
- */
-
- if (hpd_irq_dpcd_data.bytes.device_service_irq.bits.UP_REQ_MSG_RDY) {
- if (defer_handling && has_left_work)
- *has_left_work = true;
- return true;
- }
-
- /* check if we have MST msg and return since we poll for it */
- if (hpd_irq_dpcd_data.bytes.device_service_irq.bits.DOWN_REP_MSG_RDY) {
- if (defer_handling && has_left_work)
- *has_left_work = true;
- return false;
- }
-
- /* For now we only handle 'Downstream port status' case.
- * If we got sink count changed it means
- * Downstream port status changed,
- * then DM should call DC to do the detection.
- * NOTE: Do not handle link loss on eDP since it is internal link*/
- if ((link->connector_signal != SIGNAL_TYPE_EDP) &&
- hpd_rx_irq_check_link_loss_status(
- link,
- &hpd_irq_dpcd_data)) {
- /* Connectivity log: link loss */
- CONN_DATA_LINK_LOSS(link,
- hpd_irq_dpcd_data.raw,
- sizeof(hpd_irq_dpcd_data),
- "Status: ");
-
- if (defer_handling && has_left_work)
- *has_left_work = true;
- else
- dc_link_dp_handle_link_loss(link);
-
- status = false;
- if (out_link_loss)
- *out_link_loss = true;
-
- dp_trace_link_loss_increment(link);
- }
-
- if (link->type == dc_connection_sst_branch &&
- hpd_irq_dpcd_data.bytes.sink_cnt.bits.SINK_COUNT
- != link->dpcd_sink_count)
- status = true;
-
- /* reasons for HPD RX:
- * 1. Link Loss - ie Re-train the Link
- * 2. MST sideband message
- * 3. Automated Test - ie. Internal Commit
- * 4. CP (copy protection) - (not interesting for DM???)
- * 5. DRR
- * 6. Downstream Port status changed
- * -ie. Detect - this the only one
- * which is interesting for DM because
- * it must call dc_link_detect.
- */
- return status;
-}
-
-/*query dpcd for version and mst cap addresses*/
-bool is_mst_supported(struct dc_link *link)
-{
- bool mst = false;
- enum dc_status st = DC_OK;
- union dpcd_rev rev;
- union mstm_cap cap;
-
- if (link->preferred_training_settings.mst_enable &&
- *link->preferred_training_settings.mst_enable == false) {
- return false;
- }
-
- rev.raw = 0;
- cap.raw = 0;
-
- st = core_link_read_dpcd(link, DP_DPCD_REV, &rev.raw,
- sizeof(rev));
-
- if (st == DC_OK && rev.raw >= DPCD_REV_12) {
-
- st = core_link_read_dpcd(link, DP_MSTM_CAP,
- &cap.raw, sizeof(cap));
- if (st == DC_OK && cap.bits.MST_CAP == 1)
- mst = true;
- }
- return mst;
-
-}
-
-bool is_dp_active_dongle(const struct dc_link *link)
-{
- return (link->dpcd_caps.dongle_type >= DISPLAY_DONGLE_DP_VGA_CONVERTER) &&
- (link->dpcd_caps.dongle_type <= DISPLAY_DONGLE_DP_HDMI_CONVERTER);
-}
-
-bool is_dp_branch_device(const struct dc_link *link)
-{
- return link->dpcd_caps.is_branch_dev;
-}
-
-static int translate_dpcd_max_bpc(enum dpcd_downstream_port_max_bpc bpc)
-{
- switch (bpc) {
- case DOWN_STREAM_MAX_8BPC:
- return 8;
- case DOWN_STREAM_MAX_10BPC:
- return 10;
- case DOWN_STREAM_MAX_12BPC:
- return 12;
- case DOWN_STREAM_MAX_16BPC:
- return 16;
- default:
- break;
- }
-
- return -1;
-}
-
-#if defined(CONFIG_DRM_AMD_DC_DCN)
-uint32_t dc_link_bw_kbps_from_raw_frl_link_rate_data(uint8_t bw)
-{
- switch (bw) {
- case 0b001:
- return 9000000;
- case 0b010:
- return 18000000;
- case 0b011:
- return 24000000;
- case 0b100:
- return 32000000;
- case 0b101:
- return 40000000;
- case 0b110:
- return 48000000;
- }
-
- return 0;
-}
-
-/*
- * Return PCON's post FRL link training supported BW if its non-zero, otherwise return max_supported_frl_bw.
- */
-static uint32_t intersect_frl_link_bw_support(
- const uint32_t max_supported_frl_bw_in_kbps,
- const union hdmi_encoded_link_bw hdmi_encoded_link_bw)
-{
- uint32_t supported_bw_in_kbps = max_supported_frl_bw_in_kbps;
-
- // HDMI_ENCODED_LINK_BW bits are only valid if HDMI Link Configuration bit is 1 (FRL mode)
- if (hdmi_encoded_link_bw.bits.FRL_MODE) {
- if (hdmi_encoded_link_bw.bits.BW_48Gbps)
- supported_bw_in_kbps = 48000000;
- else if (hdmi_encoded_link_bw.bits.BW_40Gbps)
- supported_bw_in_kbps = 40000000;
- else if (hdmi_encoded_link_bw.bits.BW_32Gbps)
- supported_bw_in_kbps = 32000000;
- else if (hdmi_encoded_link_bw.bits.BW_24Gbps)
- supported_bw_in_kbps = 24000000;
- else if (hdmi_encoded_link_bw.bits.BW_18Gbps)
- supported_bw_in_kbps = 18000000;
- else if (hdmi_encoded_link_bw.bits.BW_9Gbps)
- supported_bw_in_kbps = 9000000;
- }
-
- return supported_bw_in_kbps;
-}
-#endif
-
-static void read_dp_device_vendor_id(struct dc_link *link)
-{
- struct dp_device_vendor_id dp_id;
-
- /* read IEEE branch device id */
- core_link_read_dpcd(
- link,
- DP_BRANCH_OUI,
- (uint8_t *)&dp_id,
- sizeof(dp_id));
-
- link->dpcd_caps.branch_dev_id =
- (dp_id.ieee_oui[0] << 16) +
- (dp_id.ieee_oui[1] << 8) +
- dp_id.ieee_oui[2];
-
- memmove(
- link->dpcd_caps.branch_dev_name,
- dp_id.ieee_device_id,
- sizeof(dp_id.ieee_device_id));
-}
-
-
-
-static void get_active_converter_info(
- uint8_t data, struct dc_link *link)
-{
- union dp_downstream_port_present ds_port = { .byte = data };
- memset(&link->dpcd_caps.dongle_caps, 0, sizeof(link->dpcd_caps.dongle_caps));
-
- /* decode converter info*/
- if (!ds_port.fields.PORT_PRESENT) {
- link->dpcd_caps.dongle_type = DISPLAY_DONGLE_NONE;
- ddc_service_set_dongle_type(link->ddc,
- link->dpcd_caps.dongle_type);
- link->dpcd_caps.is_branch_dev = false;
- return;
- }
-
- /* DPCD 0x5 bit 0 = 1, it indicate it's branch device */
- link->dpcd_caps.is_branch_dev = ds_port.fields.PORT_PRESENT;
-
- switch (ds_port.fields.PORT_TYPE) {
- case DOWNSTREAM_VGA:
- link->dpcd_caps.dongle_type = DISPLAY_DONGLE_DP_VGA_CONVERTER;
- break;
- case DOWNSTREAM_DVI_HDMI_DP_PLUS_PLUS:
- /* At this point we don't know is it DVI or HDMI or DP++,
- * assume DVI.*/
- link->dpcd_caps.dongle_type = DISPLAY_DONGLE_DP_DVI_CONVERTER;
- break;
- default:
- link->dpcd_caps.dongle_type = DISPLAY_DONGLE_NONE;
- break;
- }
-
- if (link->dpcd_caps.dpcd_rev.raw >= DPCD_REV_11) {
- uint8_t det_caps[16]; /* CTS 4.2.2.7 expects source to read Detailed Capabilities Info : 00080h-0008F.*/
- union dwnstream_port_caps_byte0 *port_caps =
- (union dwnstream_port_caps_byte0 *)det_caps;
- if (core_link_read_dpcd(link, DP_DOWNSTREAM_PORT_0,
- det_caps, sizeof(det_caps)) == DC_OK) {
-
- switch (port_caps->bits.DWN_STRM_PORTX_TYPE) {
- /*Handle DP case as DONGLE_NONE*/
- case DOWN_STREAM_DETAILED_DP:
- link->dpcd_caps.dongle_type = DISPLAY_DONGLE_NONE;
- break;
- case DOWN_STREAM_DETAILED_VGA:
- link->dpcd_caps.dongle_type =
- DISPLAY_DONGLE_DP_VGA_CONVERTER;
- break;
- case DOWN_STREAM_DETAILED_DVI:
- link->dpcd_caps.dongle_type =
- DISPLAY_DONGLE_DP_DVI_CONVERTER;
- break;
- case DOWN_STREAM_DETAILED_HDMI:
- case DOWN_STREAM_DETAILED_DP_PLUS_PLUS:
- /*Handle DP++ active converter case, process DP++ case as HDMI case according DP1.4 spec*/
- link->dpcd_caps.dongle_type =
- DISPLAY_DONGLE_DP_HDMI_CONVERTER;
-
- link->dpcd_caps.dongle_caps.dongle_type = link->dpcd_caps.dongle_type;
- if (ds_port.fields.DETAILED_CAPS) {
-
- union dwnstream_port_caps_byte3_hdmi
- hdmi_caps = {.raw = det_caps[3] };
- union dwnstream_port_caps_byte2
- hdmi_color_caps = {.raw = det_caps[2] };
- link->dpcd_caps.dongle_caps.dp_hdmi_max_pixel_clk_in_khz =
- det_caps[1] * 2500;
-
- link->dpcd_caps.dongle_caps.is_dp_hdmi_s3d_converter =
- hdmi_caps.bits.FRAME_SEQ_TO_FRAME_PACK;
- /*YCBCR capability only for HDMI case*/
- if (port_caps->bits.DWN_STRM_PORTX_TYPE
- == DOWN_STREAM_DETAILED_HDMI) {
- link->dpcd_caps.dongle_caps.is_dp_hdmi_ycbcr422_pass_through =
- hdmi_caps.bits.YCrCr422_PASS_THROUGH;
- link->dpcd_caps.dongle_caps.is_dp_hdmi_ycbcr420_pass_through =
- hdmi_caps.bits.YCrCr420_PASS_THROUGH;
- link->dpcd_caps.dongle_caps.is_dp_hdmi_ycbcr422_converter =
- hdmi_caps.bits.YCrCr422_CONVERSION;
- link->dpcd_caps.dongle_caps.is_dp_hdmi_ycbcr420_converter =
- hdmi_caps.bits.YCrCr420_CONVERSION;
- }
-
- link->dpcd_caps.dongle_caps.dp_hdmi_max_bpc =
- translate_dpcd_max_bpc(
- hdmi_color_caps.bits.MAX_BITS_PER_COLOR_COMPONENT);
-
-#if defined(CONFIG_DRM_AMD_DC_DCN)
- if (link->dc->caps.dp_hdmi21_pcon_support) {
- union hdmi_encoded_link_bw hdmi_encoded_link_bw;
-
- link->dpcd_caps.dongle_caps.dp_hdmi_frl_max_link_bw_in_kbps =
- dc_link_bw_kbps_from_raw_frl_link_rate_data(
- hdmi_color_caps.bits.MAX_ENCODED_LINK_BW_SUPPORT);
-
- // Intersect reported max link bw support with the supported link rate post FRL link training
- if (core_link_read_dpcd(link, DP_PCON_HDMI_POST_FRL_STATUS,
- &hdmi_encoded_link_bw.raw, sizeof(hdmi_encoded_link_bw)) == DC_OK) {
- link->dpcd_caps.dongle_caps.dp_hdmi_frl_max_link_bw_in_kbps = intersect_frl_link_bw_support(
- link->dpcd_caps.dongle_caps.dp_hdmi_frl_max_link_bw_in_kbps,
- hdmi_encoded_link_bw);
- }
-
- if (link->dpcd_caps.dongle_caps.dp_hdmi_frl_max_link_bw_in_kbps > 0)
- link->dpcd_caps.dongle_caps.extendedCapValid = true;
- }
-#endif
-
- if (link->dpcd_caps.dongle_caps.dp_hdmi_max_pixel_clk_in_khz != 0)
- link->dpcd_caps.dongle_caps.extendedCapValid = true;
- }
-
- break;
- }
- }
- }
-
- ddc_service_set_dongle_type(link->ddc, link->dpcd_caps.dongle_type);
-
- {
- struct dp_sink_hw_fw_revision dp_hw_fw_revision;
-
- core_link_read_dpcd(
- link,
- DP_BRANCH_REVISION_START,
- (uint8_t *)&dp_hw_fw_revision,
- sizeof(dp_hw_fw_revision));
-
- link->dpcd_caps.branch_hw_revision =
- dp_hw_fw_revision.ieee_hw_rev;
-
- memmove(
- link->dpcd_caps.branch_fw_revision,
- dp_hw_fw_revision.ieee_fw_rev,
- sizeof(dp_hw_fw_revision.ieee_fw_rev));
- }
- if (link->dpcd_caps.dpcd_rev.raw >= DPCD_REV_14 &&
- link->dpcd_caps.dongle_type != DISPLAY_DONGLE_NONE) {
- union dp_dfp_cap_ext dfp_cap_ext;
- memset(&dfp_cap_ext, '\0', sizeof (dfp_cap_ext));
- core_link_read_dpcd(
- link,
- DP_DFP_CAPABILITY_EXTENSION_SUPPORT,
- dfp_cap_ext.raw,
- sizeof(dfp_cap_ext.raw));
- link->dpcd_caps.dongle_caps.dfp_cap_ext.supported = dfp_cap_ext.fields.supported;
- link->dpcd_caps.dongle_caps.dfp_cap_ext.max_pixel_rate_in_mps =
- dfp_cap_ext.fields.max_pixel_rate_in_mps[0] +
- (dfp_cap_ext.fields.max_pixel_rate_in_mps[1] << 8);
- link->dpcd_caps.dongle_caps.dfp_cap_ext.max_video_h_active_width =
- dfp_cap_ext.fields.max_video_h_active_width[0] +
- (dfp_cap_ext.fields.max_video_h_active_width[1] << 8);
- link->dpcd_caps.dongle_caps.dfp_cap_ext.max_video_v_active_height =
- dfp_cap_ext.fields.max_video_v_active_height[0] +
- (dfp_cap_ext.fields.max_video_v_active_height[1] << 8);
- link->dpcd_caps.dongle_caps.dfp_cap_ext.encoding_format_caps =
- dfp_cap_ext.fields.encoding_format_caps;
- link->dpcd_caps.dongle_caps.dfp_cap_ext.rgb_color_depth_caps =
- dfp_cap_ext.fields.rgb_color_depth_caps;
- link->dpcd_caps.dongle_caps.dfp_cap_ext.ycbcr444_color_depth_caps =
- dfp_cap_ext.fields.ycbcr444_color_depth_caps;
- link->dpcd_caps.dongle_caps.dfp_cap_ext.ycbcr422_color_depth_caps =
- dfp_cap_ext.fields.ycbcr422_color_depth_caps;
- link->dpcd_caps.dongle_caps.dfp_cap_ext.ycbcr420_color_depth_caps =
- dfp_cap_ext.fields.ycbcr420_color_depth_caps;
- DC_LOG_DP2("DFP capability extension is read at link %d", link->link_index);
- DC_LOG_DP2("\tdfp_cap_ext.supported = %s", link->dpcd_caps.dongle_caps.dfp_cap_ext.supported ? "true" : "false");
- DC_LOG_DP2("\tdfp_cap_ext.max_pixel_rate_in_mps = %d", link->dpcd_caps.dongle_caps.dfp_cap_ext.max_pixel_rate_in_mps);
- DC_LOG_DP2("\tdfp_cap_ext.max_video_h_active_width = %d", link->dpcd_caps.dongle_caps.dfp_cap_ext.max_video_h_active_width);
- DC_LOG_DP2("\tdfp_cap_ext.max_video_v_active_height = %d", link->dpcd_caps.dongle_caps.dfp_cap_ext.max_video_v_active_height);
- }
-}
-
-static void dp_wa_power_up_0010FA(struct dc_link *link, uint8_t *dpcd_data,
- int length)
-{
- int retry = 0;
-
- if (!link->dpcd_caps.dpcd_rev.raw) {
- do {
- dp_receiver_power_ctrl(link, true);
- core_link_read_dpcd(link, DP_DPCD_REV,
- dpcd_data, length);
- link->dpcd_caps.dpcd_rev.raw = dpcd_data[
- DP_DPCD_REV -
- DP_DPCD_REV];
- } while (retry++ < 4 && !link->dpcd_caps.dpcd_rev.raw);
- }
-
- if (link->dpcd_caps.dongle_type == DISPLAY_DONGLE_DP_VGA_CONVERTER) {
- switch (link->dpcd_caps.branch_dev_id) {
- /* 0010FA active dongles (DP-VGA, DP-DLDVI converters) power down
- * all internal circuits including AUX communication preventing
- * reading DPCD table and EDID (spec violation).
- * Encoder will skip DP RX power down on disable_output to
- * keep receiver powered all the time.*/
- case DP_BRANCH_DEVICE_ID_0010FA:
- case DP_BRANCH_DEVICE_ID_0080E1:
- case DP_BRANCH_DEVICE_ID_00E04C:
- link->wa_flags.dp_keep_receiver_powered = true;
- break;
-
- /* TODO: May need work around for other dongles. */
- default:
- link->wa_flags.dp_keep_receiver_powered = false;
- break;
- }
- } else
- link->wa_flags.dp_keep_receiver_powered = false;
-}
-
-/* Read additional sink caps defined in source specific DPCD area
- * This function currently only reads from SinkCapability address (DP_SOURCE_SINK_CAP)
- */
-static bool dpcd_read_sink_ext_caps(struct dc_link *link)
-{
- uint8_t dpcd_data;
-
- if (!link)
- return false;
-
- if (core_link_read_dpcd(link, DP_SOURCE_SINK_CAP, &dpcd_data, 1) != DC_OK)
- return false;
-
- link->dpcd_sink_ext_caps.raw = dpcd_data;
- return true;
-}
-
-bool dp_retrieve_lttpr_cap(struct dc_link *link)
-{
- uint8_t lttpr_dpcd_data[8];
- enum dc_status status = DC_ERROR_UNEXPECTED;
- bool is_lttpr_present = false;
-
- /* Logic to determine LTTPR support*/
- bool vbios_lttpr_interop = link->dc->caps.vbios_lttpr_aware;
-
- if (!vbios_lttpr_interop || !link->dc->caps.extended_aux_timeout_support)
- return false;
-
- /* By reading LTTPR capability, RX assumes that we will enable
- * LTTPR extended aux timeout if LTTPR is present.
- */
- status = core_link_read_dpcd(link,
- DP_LT_TUNABLE_PHY_REPEATER_FIELD_DATA_STRUCTURE_REV,
- lttpr_dpcd_data,
- sizeof(lttpr_dpcd_data));
-
- link->dpcd_caps.lttpr_caps.revision.raw =
- lttpr_dpcd_data[DP_LT_TUNABLE_PHY_REPEATER_FIELD_DATA_STRUCTURE_REV -
- DP_LT_TUNABLE_PHY_REPEATER_FIELD_DATA_STRUCTURE_REV];
-
- link->dpcd_caps.lttpr_caps.max_link_rate =
- lttpr_dpcd_data[DP_MAX_LINK_RATE_PHY_REPEATER -
- DP_LT_TUNABLE_PHY_REPEATER_FIELD_DATA_STRUCTURE_REV];
-
- link->dpcd_caps.lttpr_caps.phy_repeater_cnt =
- lttpr_dpcd_data[DP_PHY_REPEATER_CNT -
- DP_LT_TUNABLE_PHY_REPEATER_FIELD_DATA_STRUCTURE_REV];
-
- link->dpcd_caps.lttpr_caps.max_lane_count =
- lttpr_dpcd_data[DP_MAX_LANE_COUNT_PHY_REPEATER -
- DP_LT_TUNABLE_PHY_REPEATER_FIELD_DATA_STRUCTURE_REV];
-
- link->dpcd_caps.lttpr_caps.mode =
- lttpr_dpcd_data[DP_PHY_REPEATER_MODE -
- DP_LT_TUNABLE_PHY_REPEATER_FIELD_DATA_STRUCTURE_REV];
-
- link->dpcd_caps.lttpr_caps.max_ext_timeout =
- lttpr_dpcd_data[DP_PHY_REPEATER_EXTENDED_WAIT_TIMEOUT -
- DP_LT_TUNABLE_PHY_REPEATER_FIELD_DATA_STRUCTURE_REV];
- link->dpcd_caps.lttpr_caps.main_link_channel_coding.raw =
- lttpr_dpcd_data[DP_MAIN_LINK_CHANNEL_CODING_PHY_REPEATER -
- DP_LT_TUNABLE_PHY_REPEATER_FIELD_DATA_STRUCTURE_REV];
-
- link->dpcd_caps.lttpr_caps.supported_128b_132b_rates.raw =
- lttpr_dpcd_data[DP_PHY_REPEATER_128B132B_RATES -
- DP_LT_TUNABLE_PHY_REPEATER_FIELD_DATA_STRUCTURE_REV];
-
- /* If this chip cap is set, at least one retimer must exist in the chain
- * Override count to 1 if we receive a known bad count (0 or an invalid value)
- */
- if (link->chip_caps & EXT_DISPLAY_PATH_CAPS__DP_FIXED_VS_EN &&
- (dp_convert_to_count(link->dpcd_caps.lttpr_caps.phy_repeater_cnt) == 0)) {
- ASSERT(0);
- link->dpcd_caps.lttpr_caps.phy_repeater_cnt = 0x80;
- DC_LOG_DC("lttpr_caps forced phy_repeater_cnt = %d\n", link->dpcd_caps.lttpr_caps.phy_repeater_cnt);
- }
-
- /* Attempt to train in LTTPR transparent mode if repeater count exceeds 8. */
- is_lttpr_present = dp_is_lttpr_present(link);
-
- if (is_lttpr_present)
- CONN_DATA_DETECT(link, lttpr_dpcd_data, sizeof(lttpr_dpcd_data), "LTTPR Caps: ");
-
- DC_LOG_DC("is_lttpr_present = %d\n", is_lttpr_present);
- return is_lttpr_present;
-}
-
-bool dp_is_lttpr_present(struct dc_link *link)
-{
- return (dp_convert_to_count(link->dpcd_caps.lttpr_caps.phy_repeater_cnt) != 0 &&
- link->dpcd_caps.lttpr_caps.max_lane_count > 0 &&
- link->dpcd_caps.lttpr_caps.max_lane_count <= 4 &&
- link->dpcd_caps.lttpr_caps.revision.raw >= 0x14);
-}
-
-enum lttpr_mode dp_decide_lttpr_mode(struct dc_link *link, struct dc_link_settings *link_setting)
-{
- enum dp_link_encoding encoding = dp_get_link_encoding_format(link_setting);
-
- if (encoding == DP_8b_10b_ENCODING)
- return dp_decide_8b_10b_lttpr_mode(link);
- else if (encoding == DP_128b_132b_ENCODING)
- return dp_decide_128b_132b_lttpr_mode(link);
-
- ASSERT(0);
- return LTTPR_MODE_NON_LTTPR;
-}
-
-void dp_get_lttpr_mode_override(struct dc_link *link, enum lttpr_mode *override)
-{
- if (!dp_is_lttpr_present(link))
- return;
-
- if (link->dc->debug.lttpr_mode_override == LTTPR_MODE_TRANSPARENT) {
- *override = LTTPR_MODE_TRANSPARENT;
- } else if (link->dc->debug.lttpr_mode_override == LTTPR_MODE_NON_TRANSPARENT) {
- *override = LTTPR_MODE_NON_TRANSPARENT;
- } else if (link->dc->debug.lttpr_mode_override == LTTPR_MODE_NON_LTTPR) {
- *override = LTTPR_MODE_NON_LTTPR;
- }
- DC_LOG_DC("lttpr_mode_override chose LTTPR_MODE = %d\n", (uint8_t)(*override));
-}
-
-enum lttpr_mode dp_decide_8b_10b_lttpr_mode(struct dc_link *link)
-{
- bool is_lttpr_present = dp_is_lttpr_present(link);
- bool vbios_lttpr_force_non_transparent = link->dc->caps.vbios_lttpr_enable;
- bool vbios_lttpr_aware = link->dc->caps.vbios_lttpr_aware;
-
- if (!is_lttpr_present)
- return LTTPR_MODE_NON_LTTPR;
-
- if (vbios_lttpr_aware) {
- if (vbios_lttpr_force_non_transparent) {
- DC_LOG_DC("chose LTTPR_MODE_NON_TRANSPARENT due to VBIOS DCE_INFO_CAPS_LTTPR_SUPPORT_ENABLE set to 1.\n");
- return LTTPR_MODE_NON_TRANSPARENT;
- } else {
- DC_LOG_DC("chose LTTPR_MODE_NON_TRANSPARENT by default due to VBIOS not set DCE_INFO_CAPS_LTTPR_SUPPORT_ENABLE set to 1.\n");
- return LTTPR_MODE_TRANSPARENT;
- }
- }
-
- if (link->dc->config.allow_lttpr_non_transparent_mode.bits.DP1_4A &&
- link->dc->caps.extended_aux_timeout_support) {
- DC_LOG_DC("chose LTTPR_MODE_NON_TRANSPARENT by default and dc->config.allow_lttpr_non_transparent_mode.bits.DP1_4A set to 1.\n");
- return LTTPR_MODE_NON_TRANSPARENT;
- }
-
- DC_LOG_DC("chose LTTPR_MODE_NON_LTTPR.\n");
- return LTTPR_MODE_NON_LTTPR;
-}
-
-enum lttpr_mode dp_decide_128b_132b_lttpr_mode(struct dc_link *link)
-{
- enum lttpr_mode mode = LTTPR_MODE_NON_LTTPR;
-
- if (dp_is_lttpr_present(link))
- mode = LTTPR_MODE_NON_TRANSPARENT;
-
- DC_LOG_DC("128b_132b chose LTTPR_MODE %d.\n", mode);
- return mode;
-}
-
-static bool get_usbc_cable_id(struct dc_link *link, union dp_cable_id *cable_id)
-{
- union dmub_rb_cmd cmd;
-
- if (!link->ctx->dmub_srv ||
- link->ep_type != DISPLAY_ENDPOINT_PHY ||
- link->link_enc->features.flags.bits.DP_IS_USB_C == 0)
- return false;
-
- memset(&cmd, 0, sizeof(cmd));
- cmd.cable_id.header.type = DMUB_CMD_GET_USBC_CABLE_ID;
- cmd.cable_id.header.payload_bytes = sizeof(cmd.cable_id.data);
- cmd.cable_id.data.input.phy_inst = resource_transmitter_to_phy_idx(
- link->dc, link->link_enc->transmitter);
- if (dc_dmub_srv_cmd_with_reply_data(link->ctx->dmub_srv, &cmd) &&
- cmd.cable_id.header.ret_status == 1) {
- cable_id->raw = cmd.cable_id.data.output_raw;
- DC_LOG_DC("usbc_cable_id = %d.\n", cable_id->raw);
- }
- return cmd.cable_id.header.ret_status == 1;
-}
-
-static union dp_cable_id intersect_cable_id(
- union dp_cable_id *a, union dp_cable_id *b)
-{
- union dp_cable_id out;
-
- out.bits.UHBR10_20_CAPABILITY = MIN(a->bits.UHBR10_20_CAPABILITY,
- b->bits.UHBR10_20_CAPABILITY);
- out.bits.UHBR13_5_CAPABILITY = MIN(a->bits.UHBR13_5_CAPABILITY,
- b->bits.UHBR13_5_CAPABILITY);
- out.bits.CABLE_TYPE = MAX(a->bits.CABLE_TYPE, b->bits.CABLE_TYPE);
-
- return out;
-}
-
-static void retrieve_cable_id(struct dc_link *link)
-{
- union dp_cable_id usbc_cable_id;
-
- link->dpcd_caps.cable_id.raw = 0;
- core_link_read_dpcd(link, DP_CABLE_ATTRIBUTES_UPDATED_BY_DPRX,
- &link->dpcd_caps.cable_id.raw, sizeof(uint8_t));
-
- if (get_usbc_cable_id(link, &usbc_cable_id))
- link->dpcd_caps.cable_id = intersect_cable_id(
- &link->dpcd_caps.cable_id, &usbc_cable_id);
-}
-
-/* DPRX may take some time to respond to AUX messages after HPD asserted.
- * If AUX read unsuccessful, try to wake unresponsive DPRX by toggling DPCD SET_POWER (0x600).
- */
-static enum dc_status wa_try_to_wake_dprx(struct dc_link *link, uint64_t timeout_ms)
-{
- enum dc_status status = DC_ERROR_UNEXPECTED;
- uint8_t dpcd_data = 0;
- uint64_t start_ts = 0;
- uint64_t current_ts = 0;
- uint64_t time_taken_ms = 0;
- enum dc_connection_type type = dc_connection_none;
- bool lttpr_present;
- bool vbios_lttpr_interop = link->dc->caps.vbios_lttpr_aware;
-
- lttpr_present = dp_is_lttpr_present(link) ||
- (!vbios_lttpr_interop || !link->dc->caps.extended_aux_timeout_support);
- DC_LOG_DC("lttpr_present = %d.\n", lttpr_present ? 1 : 0);
-
- /* Issue an AUX read to test DPRX responsiveness. If LTTPR is supported the first read is expected to
- * be to determine LTTPR capabilities. Otherwise trying to read power state should be an innocuous AUX read.
- */
- if (lttpr_present)
- status = core_link_read_dpcd(
- link,
- DP_LT_TUNABLE_PHY_REPEATER_FIELD_DATA_STRUCTURE_REV,
- &dpcd_data,
- sizeof(dpcd_data));
- else
- status = core_link_read_dpcd(
- link,
- DP_SET_POWER,
- &dpcd_data,
- sizeof(dpcd_data));
-
- if (status != DC_OK) {
- DC_LOG_WARNING("%s: Read DPCD LTTPR_CAP failed - try to toggle DPCD SET_POWER for %lld ms.",
- __func__,
- timeout_ms);
- start_ts = dm_get_timestamp(link->ctx);
-
- do {
- if (!dc_link_detect_sink(link, &type) || type == dc_connection_none)
- break;
-
- dpcd_data = DP_SET_POWER_D3;
- status = core_link_write_dpcd(
- link,
- DP_SET_POWER,
- &dpcd_data,
- sizeof(dpcd_data));
-
- dpcd_data = DP_SET_POWER_D0;
- status = core_link_write_dpcd(
- link,
- DP_SET_POWER,
- &dpcd_data,
- sizeof(dpcd_data));
-
- current_ts = dm_get_timestamp(link->ctx);
- time_taken_ms = div_u64(dm_get_elapse_time_in_ns(link->ctx, current_ts, start_ts), 1000000);
- } while (status != DC_OK && time_taken_ms < timeout_ms);
-
- DC_LOG_WARNING("%s: DPCD SET_POWER %s after %lld ms%s",
- __func__,
- (status == DC_OK) ? "succeeded" : "failed",
- time_taken_ms,
- (type == dc_connection_none) ? ". Unplugged." : ".");
- }
-
- return status;
-}
-
-static bool retrieve_link_cap(struct dc_link *link)
-{
- /* DP_ADAPTER_CAP - DP_DPCD_REV + 1 == 16 and also DP_DSC_BITS_PER_PIXEL_INC - DP_DSC_SUPPORT + 1 == 16,
- * which means size 16 will be good for both of those DPCD register block reads
- */
- uint8_t dpcd_data[16];
- /*Only need to read 1 byte starting from DP_DPRX_FEATURE_ENUMERATION_LIST.
- */
- uint8_t dpcd_dprx_data = '\0';
- uint8_t dpcd_power_state = '\0';
-
- struct dp_device_vendor_id sink_id;
- union down_stream_port_count down_strm_port_count;
- union edp_configuration_cap edp_config_cap;
- union dp_downstream_port_present ds_port = { 0 };
- enum dc_status status = DC_ERROR_UNEXPECTED;
- uint32_t read_dpcd_retry_cnt = 3;
- uint32_t aux_channel_retry_cnt = 0;
- int i;
- struct dp_sink_hw_fw_revision dp_hw_fw_revision;
- const uint32_t post_oui_delay = 30; // 30ms
- bool is_lttpr_present = false;
-
- memset(dpcd_data, '\0', sizeof(dpcd_data));
- memset(&down_strm_port_count,
- '\0', sizeof(union down_stream_port_count));
- memset(&edp_config_cap, '\0',
- sizeof(union edp_configuration_cap));
-
- /* if extended timeout is supported in hardware,
- * default to LTTPR timeout (3.2ms) first as a W/A for DP link layer
- * CTS 4.2.1.1 regression introduced by CTS specs requirement update.
- */
- dc_link_aux_try_to_configure_timeout(link->ddc,
- LINK_AUX_DEFAULT_LTTPR_TIMEOUT_PERIOD);
-
- /* Try to ensure AUX channel active before proceeding. */
- if (link->dc->debug.aux_wake_wa.bits.enable_wa) {
- uint64_t timeout_ms = link->dc->debug.aux_wake_wa.bits.timeout_ms;
-
- if (link->dc->debug.aux_wake_wa.bits.use_default_timeout)
- timeout_ms = LINK_AUX_WAKE_TIMEOUT_MS;
- status = wa_try_to_wake_dprx(link, timeout_ms);
- }
-
- while (status != DC_OK && aux_channel_retry_cnt < 10) {
- status = core_link_read_dpcd(link, DP_SET_POWER,
- &dpcd_power_state, sizeof(dpcd_power_state));
-
- /* Delay 1 ms if AUX CH is in power down state. Based on spec
- * section 2.3.1.2, if AUX CH may be powered down due to
- * write to DPCD 600h = 2. Sink AUX CH is monitoring differential
- * signal and may need up to 1 ms before being able to reply.
- */
- if (status != DC_OK || dpcd_power_state == DP_SET_POWER_D3) {
- udelay(1000);
- aux_channel_retry_cnt++;
- }
- }
-
- /* If aux channel is not active, return false and trigger another detect*/
- if (status != DC_OK) {
- dpcd_power_state = DP_SET_POWER_D0;
- status = core_link_write_dpcd(
- link,
- DP_SET_POWER,
- &dpcd_power_state,
- sizeof(dpcd_power_state));
-
- dpcd_power_state = DP_SET_POWER_D3;
- status = core_link_write_dpcd(
- link,
- DP_SET_POWER,
- &dpcd_power_state,
- sizeof(dpcd_power_state));
- return false;
- }
-
- is_lttpr_present = dp_retrieve_lttpr_cap(link);
-
- if (is_lttpr_present)
- configure_lttpr_mode_transparent(link);
-
- /* Read DP tunneling information. */
- status = dpcd_get_tunneling_device_data(link);
-
- dpcd_set_source_specific_data(link);
- /* Sink may need to configure internals based on vendor, so allow some
- * time before proceeding with possibly vendor specific transactions
- */
- msleep(post_oui_delay);
-
- for (i = 0; i < read_dpcd_retry_cnt; i++) {
- status = core_link_read_dpcd(
- link,
- DP_DPCD_REV,
- dpcd_data,
- sizeof(dpcd_data));
- if (status == DC_OK)
- break;
- }
-
- if (status != DC_OK) {
- dm_error("%s: Read receiver caps dpcd data failed.\n", __func__);
- return false;
- }
-
- if (!is_lttpr_present)
- dc_link_aux_try_to_configure_timeout(link->ddc, LINK_AUX_DEFAULT_TIMEOUT_PERIOD);
-
- {
- union training_aux_rd_interval aux_rd_interval;
-
- aux_rd_interval.raw =
- dpcd_data[DP_TRAINING_AUX_RD_INTERVAL];
-
- link->dpcd_caps.ext_receiver_cap_field_present =
- aux_rd_interval.bits.EXT_RECEIVER_CAP_FIELD_PRESENT == 1;
-
- if (aux_rd_interval.bits.EXT_RECEIVER_CAP_FIELD_PRESENT == 1) {
- uint8_t ext_cap_data[16];
-
- memset(ext_cap_data, '\0', sizeof(ext_cap_data));
- for (i = 0; i < read_dpcd_retry_cnt; i++) {
- status = core_link_read_dpcd(
- link,
- DP_DP13_DPCD_REV,
- ext_cap_data,
- sizeof(ext_cap_data));
- if (status == DC_OK) {
- memcpy(dpcd_data, ext_cap_data, sizeof(dpcd_data));
- break;
- }
- }
- if (status != DC_OK)
- dm_error("%s: Read extend caps data failed, use cap from dpcd 0.\n", __func__);
- }
- }
-
- link->dpcd_caps.dpcd_rev.raw =
- dpcd_data[DP_DPCD_REV - DP_DPCD_REV];
-
- if (link->dpcd_caps.ext_receiver_cap_field_present) {
- for (i = 0; i < read_dpcd_retry_cnt; i++) {
- status = core_link_read_dpcd(
- link,
- DP_DPRX_FEATURE_ENUMERATION_LIST,
- &dpcd_dprx_data,
- sizeof(dpcd_dprx_data));
- if (status == DC_OK)
- break;
- }
-
- link->dpcd_caps.dprx_feature.raw = dpcd_dprx_data;
-
- if (status != DC_OK)
- dm_error("%s: Read DPRX caps data failed.\n", __func__);
- }
-
- else {
- link->dpcd_caps.dprx_feature.raw = 0;
- }
-
-
- /* Error condition checking...
- * It is impossible for Sink to report Max Lane Count = 0.
- * It is possible for Sink to report Max Link Rate = 0, if it is
- * an eDP device that is reporting specialized link rates in the
- * SUPPORTED_LINK_RATE table.
- */
- if (dpcd_data[DP_MAX_LANE_COUNT - DP_DPCD_REV] == 0)
- return false;
-
- ds_port.byte = dpcd_data[DP_DOWNSTREAMPORT_PRESENT -
- DP_DPCD_REV];
-
- read_dp_device_vendor_id(link);
-
- /* TODO - decouple raw mst capability from policy decision */
- link->dpcd_caps.is_mst_capable = is_mst_supported(link);
-
- get_active_converter_info(ds_port.byte, link);
-
- dp_wa_power_up_0010FA(link, dpcd_data, sizeof(dpcd_data));
-
- down_strm_port_count.raw = dpcd_data[DP_DOWN_STREAM_PORT_COUNT -
- DP_DPCD_REV];
-
- link->dpcd_caps.allow_invalid_MSA_timing_param =
- down_strm_port_count.bits.IGNORE_MSA_TIMING_PARAM;
-
- link->dpcd_caps.max_ln_count.raw = dpcd_data[
- DP_MAX_LANE_COUNT - DP_DPCD_REV];
-
- link->dpcd_caps.max_down_spread.raw = dpcd_data[
- DP_MAX_DOWNSPREAD - DP_DPCD_REV];
-
- link->reported_link_cap.lane_count =
- link->dpcd_caps.max_ln_count.bits.MAX_LANE_COUNT;
- link->reported_link_cap.link_rate = get_link_rate_from_max_link_bw(
- dpcd_data[DP_MAX_LINK_RATE - DP_DPCD_REV]);
- link->reported_link_cap.link_spread =
- link->dpcd_caps.max_down_spread.bits.MAX_DOWN_SPREAD ?
- LINK_SPREAD_05_DOWNSPREAD_30KHZ : LINK_SPREAD_DISABLED;
-
- edp_config_cap.raw = dpcd_data[
- DP_EDP_CONFIGURATION_CAP - DP_DPCD_REV];
- link->dpcd_caps.panel_mode_edp =
- edp_config_cap.bits.ALT_SCRAMBLER_RESET;
- link->dpcd_caps.dpcd_display_control_capable =
- edp_config_cap.bits.DPCD_DISPLAY_CONTROL_CAPABLE;
- link->dpcd_caps.channel_coding_cap.raw =
- dpcd_data[DP_MAIN_LINK_CHANNEL_CODING - DP_DPCD_REV];
- link->test_pattern_enabled = false;
- link->compliance_test_state.raw = 0;
-
- /* read sink count */
- core_link_read_dpcd(link,
- DP_SINK_COUNT,
- &link->dpcd_caps.sink_count.raw,
- sizeof(link->dpcd_caps.sink_count.raw));
-
- /* read sink ieee oui */
- core_link_read_dpcd(link,
- DP_SINK_OUI,
- (uint8_t *)(&sink_id),
- sizeof(sink_id));
-
- link->dpcd_caps.sink_dev_id =
- (sink_id.ieee_oui[0] << 16) +
- (sink_id.ieee_oui[1] << 8) +
- (sink_id.ieee_oui[2]);
-
- memmove(
- link->dpcd_caps.sink_dev_id_str,
- sink_id.ieee_device_id,
- sizeof(sink_id.ieee_device_id));
-
- /* Quirk Apple MBP 2017 15" Retina panel: Wrong DP_MAX_LINK_RATE */
- {
- uint8_t str_mbp_2017[] = { 101, 68, 21, 101, 98, 97 };
-
- if ((link->dpcd_caps.sink_dev_id == 0x0010fa) &&
- !memcmp(link->dpcd_caps.sink_dev_id_str, str_mbp_2017,
- sizeof(str_mbp_2017))) {
- link->reported_link_cap.link_rate = 0x0c;
- }
- }
-
- core_link_read_dpcd(
- link,
- DP_SINK_HW_REVISION_START,
- (uint8_t *)&dp_hw_fw_revision,
- sizeof(dp_hw_fw_revision));
-
- link->dpcd_caps.sink_hw_revision =
- dp_hw_fw_revision.ieee_hw_rev;
-
- memmove(
- link->dpcd_caps.sink_fw_revision,
- dp_hw_fw_revision.ieee_fw_rev,
- sizeof(dp_hw_fw_revision.ieee_fw_rev));
-
- /* Quirk for Apple MBP 2018 15" Retina panels: wrong DP_MAX_LINK_RATE */
- {
- uint8_t str_mbp_2018[] = { 101, 68, 21, 103, 98, 97 };
- uint8_t fwrev_mbp_2018[] = { 7, 4 };
- uint8_t fwrev_mbp_2018_vega[] = { 8, 4 };
-
- /* We also check for the firmware revision as 16,1 models have an
- * identical device id and are incorrectly quirked otherwise.
- */
- if ((link->dpcd_caps.sink_dev_id == 0x0010fa) &&
- !memcmp(link->dpcd_caps.sink_dev_id_str, str_mbp_2018,
- sizeof(str_mbp_2018)) &&
- (!memcmp(link->dpcd_caps.sink_fw_revision, fwrev_mbp_2018,
- sizeof(fwrev_mbp_2018)) ||
- !memcmp(link->dpcd_caps.sink_fw_revision, fwrev_mbp_2018_vega,
- sizeof(fwrev_mbp_2018_vega)))) {
- link->reported_link_cap.link_rate = LINK_RATE_RBR2;
- }
- }
-
- memset(&link->dpcd_caps.dsc_caps, '\0',
- sizeof(link->dpcd_caps.dsc_caps));
- memset(&link->dpcd_caps.fec_cap, '\0', sizeof(link->dpcd_caps.fec_cap));
- /* Read DSC and FEC sink capabilities if DP revision is 1.4 and up */
- if (link->dpcd_caps.dpcd_rev.raw >= DPCD_REV_14) {
- status = core_link_read_dpcd(
- link,
- DP_FEC_CAPABILITY,
- &link->dpcd_caps.fec_cap.raw,
- sizeof(link->dpcd_caps.fec_cap.raw));
- status = core_link_read_dpcd(
- link,
- DP_DSC_SUPPORT,
- link->dpcd_caps.dsc_caps.dsc_basic_caps.raw,
- sizeof(link->dpcd_caps.dsc_caps.dsc_basic_caps.raw));
- if (link->dpcd_caps.dongle_type != DISPLAY_DONGLE_NONE) {
- status = core_link_read_dpcd(
- link,
- DP_DSC_BRANCH_OVERALL_THROUGHPUT_0,
- link->dpcd_caps.dsc_caps.dsc_branch_decoder_caps.raw,
- sizeof(link->dpcd_caps.dsc_caps.dsc_branch_decoder_caps.raw));
- DC_LOG_DSC("DSC branch decoder capability is read at link %d", link->link_index);
- DC_LOG_DSC("\tBRANCH_OVERALL_THROUGHPUT_0 = 0x%02x",
- link->dpcd_caps.dsc_caps.dsc_branch_decoder_caps.fields.BRANCH_OVERALL_THROUGHPUT_0);
- DC_LOG_DSC("\tBRANCH_OVERALL_THROUGHPUT_1 = 0x%02x",
- link->dpcd_caps.dsc_caps.dsc_branch_decoder_caps.fields.BRANCH_OVERALL_THROUGHPUT_1);
- DC_LOG_DSC("\tBRANCH_MAX_LINE_WIDTH 0x%02x",
- link->dpcd_caps.dsc_caps.dsc_branch_decoder_caps.fields.BRANCH_MAX_LINE_WIDTH);
- }
-
- /* Apply work around to disable FEC and DSC for USB4 tunneling in TBT3 compatibility mode
- * only if required.
- */
- if (link->ep_type == DISPLAY_ENDPOINT_USB4_DPIA &&
- link->dc->debug.dpia_debug.bits.enable_force_tbt3_work_around &&
- link->dpcd_caps.is_branch_dev &&
- link->dpcd_caps.branch_dev_id == DP_BRANCH_DEVICE_ID_90CC24 &&
- link->dpcd_caps.branch_hw_revision == DP_BRANCH_HW_REV_10 &&
- (link->dpcd_caps.fec_cap.bits.FEC_CAPABLE ||
- link->dpcd_caps.dsc_caps.dsc_basic_caps.fields.dsc_support.DSC_SUPPORT)) {
- /* A TBT3 device is expected to report no support for FEC or DSC to a USB4 DPIA.
- * Clear FEC and DSC capabilities as a work around if that is not the case.
- */
- link->wa_flags.dpia_forced_tbt3_mode = true;
- memset(&link->dpcd_caps.dsc_caps, '\0', sizeof(link->dpcd_caps.dsc_caps));
- memset(&link->dpcd_caps.fec_cap, '\0', sizeof(link->dpcd_caps.fec_cap));
- DC_LOG_DSC("Clear DSC SUPPORT for USB4 link(%d) in TBT3 compatibility mode", link->link_index);
- } else
- link->wa_flags.dpia_forced_tbt3_mode = false;
- }
-
- if (!dpcd_read_sink_ext_caps(link))
- link->dpcd_sink_ext_caps.raw = 0;
-
- if (link->dpcd_caps.channel_coding_cap.bits.DP_128b_132b_SUPPORTED) {
- DC_LOG_DP2("128b/132b encoding is supported at link %d", link->link_index);
-
- core_link_read_dpcd(link,
- DP_128b_132b_SUPPORTED_LINK_RATES,
- &link->dpcd_caps.dp_128b_132b_supported_link_rates.raw,
- sizeof(link->dpcd_caps.dp_128b_132b_supported_link_rates.raw));
- if (link->dpcd_caps.dp_128b_132b_supported_link_rates.bits.UHBR20)
- link->reported_link_cap.link_rate = LINK_RATE_UHBR20;
- else if (link->dpcd_caps.dp_128b_132b_supported_link_rates.bits.UHBR13_5)
- link->reported_link_cap.link_rate = LINK_RATE_UHBR13_5;
- else if (link->dpcd_caps.dp_128b_132b_supported_link_rates.bits.UHBR10)
- link->reported_link_cap.link_rate = LINK_RATE_UHBR10;
- else
- dm_error("%s: Invalid RX 128b_132b_supported_link_rates\n", __func__);
- DC_LOG_DP2("128b/132b supported link rates is read at link %d", link->link_index);
- DC_LOG_DP2("\tmax 128b/132b link rate support is %d.%d GHz",
- link->reported_link_cap.link_rate / 100,
- link->reported_link_cap.link_rate % 100);
-
- core_link_read_dpcd(link,
- DP_SINK_VIDEO_FALLBACK_FORMATS,
- &link->dpcd_caps.fallback_formats.raw,
- sizeof(link->dpcd_caps.fallback_formats.raw));
- DC_LOG_DP2("sink video fallback format is read at link %d", link->link_index);
- if (link->dpcd_caps.fallback_formats.bits.dp_1920x1080_60Hz_24bpp_support)
- DC_LOG_DP2("\t1920x1080@60Hz 24bpp fallback format supported");
- if (link->dpcd_caps.fallback_formats.bits.dp_1280x720_60Hz_24bpp_support)
- DC_LOG_DP2("\t1280x720@60Hz 24bpp fallback format supported");
- if (link->dpcd_caps.fallback_formats.bits.dp_1024x768_60Hz_24bpp_support)
- DC_LOG_DP2("\t1024x768@60Hz 24bpp fallback format supported");
- if (link->dpcd_caps.fallback_formats.raw == 0) {
- DC_LOG_DP2("\tno supported fallback formats, assume 1920x1080@60Hz 24bpp is supported");
- link->dpcd_caps.fallback_formats.bits.dp_1920x1080_60Hz_24bpp_support = 1;
- }
-
- core_link_read_dpcd(link,
- DP_FEC_CAPABILITY_1,
- &link->dpcd_caps.fec_cap1.raw,
- sizeof(link->dpcd_caps.fec_cap1.raw));
- DC_LOG_DP2("FEC CAPABILITY 1 is read at link %d", link->link_index);
- if (link->dpcd_caps.fec_cap1.bits.AGGREGATED_ERROR_COUNTERS_CAPABLE)
- DC_LOG_DP2("\tFEC aggregated error counters are supported");
- }
-
- retrieve_cable_id(link);
- dpcd_write_cable_id_to_dprx(link);
-
- /* Connectivity log: detection */
- CONN_DATA_DETECT(link, dpcd_data, sizeof(dpcd_data), "Rx Caps: ");
-
- return true;
-}
-
-bool dp_overwrite_extended_receiver_cap(struct dc_link *link)
-{
- uint8_t dpcd_data[16];
- uint32_t read_dpcd_retry_cnt = 3;
- enum dc_status status = DC_ERROR_UNEXPECTED;
- union dp_downstream_port_present ds_port = { 0 };
- union down_stream_port_count down_strm_port_count;
- union edp_configuration_cap edp_config_cap;
-
- int i;
-
- for (i = 0; i < read_dpcd_retry_cnt; i++) {
- status = core_link_read_dpcd(
- link,
- DP_DPCD_REV,
- dpcd_data,
- sizeof(dpcd_data));
- if (status == DC_OK)
- break;
- }
-
- link->dpcd_caps.dpcd_rev.raw =
- dpcd_data[DP_DPCD_REV - DP_DPCD_REV];
-
- if (dpcd_data[DP_MAX_LANE_COUNT - DP_DPCD_REV] == 0)
- return false;
-
- ds_port.byte = dpcd_data[DP_DOWNSTREAMPORT_PRESENT -
- DP_DPCD_REV];
-
- get_active_converter_info(ds_port.byte, link);
-
- down_strm_port_count.raw = dpcd_data[DP_DOWN_STREAM_PORT_COUNT -
- DP_DPCD_REV];
-
- link->dpcd_caps.allow_invalid_MSA_timing_param =
- down_strm_port_count.bits.IGNORE_MSA_TIMING_PARAM;
-
- link->dpcd_caps.max_ln_count.raw = dpcd_data[
- DP_MAX_LANE_COUNT - DP_DPCD_REV];
-
- link->dpcd_caps.max_down_spread.raw = dpcd_data[
- DP_MAX_DOWNSPREAD - DP_DPCD_REV];
-
- link->reported_link_cap.lane_count =
- link->dpcd_caps.max_ln_count.bits.MAX_LANE_COUNT;
- link->reported_link_cap.link_rate = dpcd_data[
- DP_MAX_LINK_RATE - DP_DPCD_REV];
- link->reported_link_cap.link_spread =
- link->dpcd_caps.max_down_spread.bits.MAX_DOWN_SPREAD ?
- LINK_SPREAD_05_DOWNSPREAD_30KHZ : LINK_SPREAD_DISABLED;
-
- edp_config_cap.raw = dpcd_data[
- DP_EDP_CONFIGURATION_CAP - DP_DPCD_REV];
- link->dpcd_caps.panel_mode_edp =
- edp_config_cap.bits.ALT_SCRAMBLER_RESET;
- link->dpcd_caps.dpcd_display_control_capable =
- edp_config_cap.bits.DPCD_DISPLAY_CONTROL_CAPABLE;
-
- return true;
-}
-
-bool detect_dp_sink_caps(struct dc_link *link)
-{
- return retrieve_link_cap(link);
-}
-
-static enum dc_link_rate linkRateInKHzToLinkRateMultiplier(uint32_t link_rate_in_khz)
-{
- enum dc_link_rate link_rate;
- // LinkRate is normally stored as a multiplier of 0.27 Gbps per lane. Do the translation.
- switch (link_rate_in_khz) {
- case 1620000:
- link_rate = LINK_RATE_LOW; // Rate_1 (RBR) - 1.62 Gbps/Lane
- break;
- case 2160000:
- link_rate = LINK_RATE_RATE_2; // Rate_2 - 2.16 Gbps/Lane
- break;
- case 2430000:
- link_rate = LINK_RATE_RATE_3; // Rate_3 - 2.43 Gbps/Lane
- break;
- case 2700000:
- link_rate = LINK_RATE_HIGH; // Rate_4 (HBR) - 2.70 Gbps/Lane
- break;
- case 3240000:
- link_rate = LINK_RATE_RBR2; // Rate_5 (RBR2) - 3.24 Gbps/Lane
- break;
- case 4320000:
- link_rate = LINK_RATE_RATE_6; // Rate_6 - 4.32 Gbps/Lane
- break;
- case 5400000:
- link_rate = LINK_RATE_HIGH2; // Rate_7 (HBR2) - 5.40 Gbps/Lane
- break;
- case 8100000:
- link_rate = LINK_RATE_HIGH3; // Rate_8 (HBR3) - 8.10 Gbps/Lane
- break;
- default:
- link_rate = LINK_RATE_UNKNOWN;
- break;
- }
- return link_rate;
-}
-
-void detect_edp_sink_caps(struct dc_link *link)
-{
- uint8_t supported_link_rates[16];
- uint32_t entry;
- uint32_t link_rate_in_khz;
- enum dc_link_rate link_rate = LINK_RATE_UNKNOWN;
- uint8_t backlight_adj_cap;
- uint8_t general_edp_cap;
-
- retrieve_link_cap(link);
- link->dpcd_caps.edp_supported_link_rates_count = 0;
- memset(supported_link_rates, 0, sizeof(supported_link_rates));
-
- /*
- * edp_supported_link_rates_count is only valid for eDP v1.4 or higher.
- * Per VESA eDP spec, "The DPCD revision for eDP v1.4 is 13h"
- */
- if (link->dpcd_caps.dpcd_rev.raw >= DPCD_REV_13 &&
- (link->panel_config.ilr.optimize_edp_link_rate ||
- link->reported_link_cap.link_rate == LINK_RATE_UNKNOWN)) {
- // Read DPCD 00010h - 0001Fh 16 bytes at one shot
- core_link_read_dpcd(link, DP_SUPPORTED_LINK_RATES,
- supported_link_rates, sizeof(supported_link_rates));
-
- for (entry = 0; entry < 16; entry += 2) {
- // DPCD register reports per-lane link rate = 16-bit link rate capability
- // value X 200 kHz. Need multiplier to find link rate in kHz.
- link_rate_in_khz = (supported_link_rates[entry+1] * 0x100 +
- supported_link_rates[entry]) * 200;
-
- if (link_rate_in_khz != 0) {
- link_rate = linkRateInKHzToLinkRateMultiplier(link_rate_in_khz);
- link->dpcd_caps.edp_supported_link_rates[link->dpcd_caps.edp_supported_link_rates_count] = link_rate;
- link->dpcd_caps.edp_supported_link_rates_count++;
-
- if (link->reported_link_cap.link_rate < link_rate)
- link->reported_link_cap.link_rate = link_rate;
- }
- }
- }
- core_link_read_dpcd(link, DP_EDP_BACKLIGHT_ADJUSTMENT_CAP,
- &backlight_adj_cap, sizeof(backlight_adj_cap));
-
- link->dpcd_caps.dynamic_backlight_capable_edp =
- (backlight_adj_cap & DP_EDP_DYNAMIC_BACKLIGHT_CAP) ? true:false;
-
- core_link_read_dpcd(link, DP_EDP_GENERAL_CAP_1,
- &general_edp_cap, sizeof(general_edp_cap));
-
- link->dpcd_caps.set_power_state_capable_edp =
- (general_edp_cap & DP_EDP_SET_POWER_CAP) ? true:false;
-
- dc_link_set_default_brightness_aux(link);
-
- core_link_read_dpcd(link, DP_EDP_DPCD_REV,
- &link->dpcd_caps.edp_rev,
- sizeof(link->dpcd_caps.edp_rev));
- /*
- * PSR is only valid for eDP v1.3 or higher.
- */
- if (link->dpcd_caps.edp_rev >= DP_EDP_13) {
- core_link_read_dpcd(link, DP_PSR_SUPPORT,
- &link->dpcd_caps.psr_info.psr_version,
- sizeof(link->dpcd_caps.psr_info.psr_version));
- if (link->dpcd_caps.sink_dev_id == DP_BRANCH_DEVICE_ID_001CF8)
- core_link_read_dpcd(link, DP_FORCE_PSRSU_CAPABILITY,
- &link->dpcd_caps.psr_info.force_psrsu_cap,
- sizeof(link->dpcd_caps.psr_info.force_psrsu_cap));
- core_link_read_dpcd(link, DP_PSR_CAPS,
- &link->dpcd_caps.psr_info.psr_dpcd_caps.raw,
- sizeof(link->dpcd_caps.psr_info.psr_dpcd_caps.raw));
- if (link->dpcd_caps.psr_info.psr_dpcd_caps.bits.Y_COORDINATE_REQUIRED) {
- core_link_read_dpcd(link, DP_PSR2_SU_Y_GRANULARITY,
- &link->dpcd_caps.psr_info.psr2_su_y_granularity_cap,
- sizeof(link->dpcd_caps.psr_info.psr2_su_y_granularity_cap));
- }
- }
-
- /*
- * ALPM is only valid for eDP v1.4 or higher.
- */
- if (link->dpcd_caps.dpcd_rev.raw >= DP_EDP_14)
- core_link_read_dpcd(link, DP_RECEIVER_ALPM_CAP,
- &link->dpcd_caps.alpm_caps.raw,
- sizeof(link->dpcd_caps.alpm_caps.raw));
-}
-
-void dc_link_dp_enable_hpd(const struct dc_link *link)
-{
- struct link_encoder *encoder = link->link_enc;
-
- if (encoder != NULL && encoder->funcs->enable_hpd != NULL)
- encoder->funcs->enable_hpd(encoder);
-}
-
-void dc_link_dp_disable_hpd(const struct dc_link *link)
-{
- struct link_encoder *encoder = link->link_enc;
-
- if (encoder != NULL && encoder->funcs->enable_hpd != NULL)
- encoder->funcs->disable_hpd(encoder);
-}
-
-static bool is_dp_phy_pattern(enum dp_test_pattern test_pattern)
-{
- if ((DP_TEST_PATTERN_PHY_PATTERN_BEGIN <= test_pattern &&
- test_pattern <= DP_TEST_PATTERN_PHY_PATTERN_END) ||
- test_pattern == DP_TEST_PATTERN_VIDEO_MODE)
- return true;
- else
- return false;
-}
-
-static void set_crtc_test_pattern(struct dc_link *link,
- struct pipe_ctx *pipe_ctx,
- enum dp_test_pattern test_pattern,
- enum dp_test_pattern_color_space test_pattern_color_space)
-{
- enum controller_dp_test_pattern controller_test_pattern;
- enum dc_color_depth color_depth = pipe_ctx->
- stream->timing.display_color_depth;
- struct bit_depth_reduction_params params;
- struct output_pixel_processor *opp = pipe_ctx->stream_res.opp;
- int width = pipe_ctx->stream->timing.h_addressable +
- pipe_ctx->stream->timing.h_border_left +
- pipe_ctx->stream->timing.h_border_right;
- int height = pipe_ctx->stream->timing.v_addressable +
- pipe_ctx->stream->timing.v_border_bottom +
- pipe_ctx->stream->timing.v_border_top;
-
- memset(&params, 0, sizeof(params));
-
- switch (test_pattern) {
- case DP_TEST_PATTERN_COLOR_SQUARES:
- controller_test_pattern =
- CONTROLLER_DP_TEST_PATTERN_COLORSQUARES;
- break;
- case DP_TEST_PATTERN_COLOR_SQUARES_CEA:
- controller_test_pattern =
- CONTROLLER_DP_TEST_PATTERN_COLORSQUARES_CEA;
- break;
- case DP_TEST_PATTERN_VERTICAL_BARS:
- controller_test_pattern =
- CONTROLLER_DP_TEST_PATTERN_VERTICALBARS;
- break;
- case DP_TEST_PATTERN_HORIZONTAL_BARS:
- controller_test_pattern =
- CONTROLLER_DP_TEST_PATTERN_HORIZONTALBARS;
- break;
- case DP_TEST_PATTERN_COLOR_RAMP:
- controller_test_pattern =
- CONTROLLER_DP_TEST_PATTERN_COLORRAMP;
- break;
- default:
- controller_test_pattern =
- CONTROLLER_DP_TEST_PATTERN_VIDEOMODE;
- break;
- }
-
- switch (test_pattern) {
- case DP_TEST_PATTERN_COLOR_SQUARES:
- case DP_TEST_PATTERN_COLOR_SQUARES_CEA:
- case DP_TEST_PATTERN_VERTICAL_BARS:
- case DP_TEST_PATTERN_HORIZONTAL_BARS:
- case DP_TEST_PATTERN_COLOR_RAMP:
- {
- /* disable bit depth reduction */
- pipe_ctx->stream->bit_depth_params = params;
- opp->funcs->opp_program_bit_depth_reduction(opp, &params);
- if (pipe_ctx->stream_res.tg->funcs->set_test_pattern)
- pipe_ctx->stream_res.tg->funcs->set_test_pattern(pipe_ctx->stream_res.tg,
- controller_test_pattern, color_depth);
- else if (link->dc->hwss.set_disp_pattern_generator) {
- struct pipe_ctx *odm_pipe;
- enum controller_dp_color_space controller_color_space;
- int opp_cnt = 1;
- int offset = 0;
- int dpg_width = width;
-
- switch (test_pattern_color_space) {
- case DP_TEST_PATTERN_COLOR_SPACE_RGB:
- controller_color_space = CONTROLLER_DP_COLOR_SPACE_RGB;
- break;
- case DP_TEST_PATTERN_COLOR_SPACE_YCBCR601:
- controller_color_space = CONTROLLER_DP_COLOR_SPACE_YCBCR601;
- break;
- case DP_TEST_PATTERN_COLOR_SPACE_YCBCR709:
- controller_color_space = CONTROLLER_DP_COLOR_SPACE_YCBCR709;
- break;
- case DP_TEST_PATTERN_COLOR_SPACE_UNDEFINED:
- default:
- controller_color_space = CONTROLLER_DP_COLOR_SPACE_UDEFINED;
- DC_LOG_ERROR("%s: Color space must be defined for test pattern", __func__);
- ASSERT(0);
- break;
- }
-
- for (odm_pipe = pipe_ctx->next_odm_pipe; odm_pipe; odm_pipe = odm_pipe->next_odm_pipe)
- opp_cnt++;
- dpg_width = width / opp_cnt;
- offset = dpg_width;
-
- link->dc->hwss.set_disp_pattern_generator(link->dc,
- pipe_ctx,
- controller_test_pattern,
- controller_color_space,
- color_depth,
- NULL,
- dpg_width,
- height,
- 0);
-
- for (odm_pipe = pipe_ctx->next_odm_pipe; odm_pipe; odm_pipe = odm_pipe->next_odm_pipe) {
- struct output_pixel_processor *odm_opp = odm_pipe->stream_res.opp;
-
- odm_opp->funcs->opp_program_bit_depth_reduction(odm_opp, &params);
- link->dc->hwss.set_disp_pattern_generator(link->dc,
- odm_pipe,
- controller_test_pattern,
- controller_color_space,
- color_depth,
- NULL,
- dpg_width,
- height,
- offset);
- offset += offset;
- }
- }
- }
- break;
- case DP_TEST_PATTERN_VIDEO_MODE:
- {
- /* restore bitdepth reduction */
- resource_build_bit_depth_reduction_params(pipe_ctx->stream, &params);
- pipe_ctx->stream->bit_depth_params = params;
- opp->funcs->opp_program_bit_depth_reduction(opp, &params);
- if (pipe_ctx->stream_res.tg->funcs->set_test_pattern)
- pipe_ctx->stream_res.tg->funcs->set_test_pattern(pipe_ctx->stream_res.tg,
- CONTROLLER_DP_TEST_PATTERN_VIDEOMODE,
- color_depth);
- else if (link->dc->hwss.set_disp_pattern_generator) {
- struct pipe_ctx *odm_pipe;
- int opp_cnt = 1;
- int dpg_width;
-
- for (odm_pipe = pipe_ctx->next_odm_pipe; odm_pipe; odm_pipe = odm_pipe->next_odm_pipe)
- opp_cnt++;
-
- dpg_width = width / opp_cnt;
- for (odm_pipe = pipe_ctx->next_odm_pipe; odm_pipe; odm_pipe = odm_pipe->next_odm_pipe) {
- struct output_pixel_processor *odm_opp = odm_pipe->stream_res.opp;
-
- odm_opp->funcs->opp_program_bit_depth_reduction(odm_opp, &params);
- link->dc->hwss.set_disp_pattern_generator(link->dc,
- odm_pipe,
- CONTROLLER_DP_TEST_PATTERN_VIDEOMODE,
- CONTROLLER_DP_COLOR_SPACE_UDEFINED,
- color_depth,
- NULL,
- dpg_width,
- height,
- 0);
- }
- link->dc->hwss.set_disp_pattern_generator(link->dc,
- pipe_ctx,
- CONTROLLER_DP_TEST_PATTERN_VIDEOMODE,
- CONTROLLER_DP_COLOR_SPACE_UDEFINED,
- color_depth,
- NULL,
- dpg_width,
- height,
- 0);
- }
- }
- break;
-
- default:
- break;
- }
-}
-
-bool dc_link_dp_set_test_pattern(
- struct dc_link *link,
- enum dp_test_pattern test_pattern,
- enum dp_test_pattern_color_space test_pattern_color_space,
- const struct link_training_settings *p_link_settings,
- const unsigned char *p_custom_pattern,
- unsigned int cust_pattern_size)
-{
- struct pipe_ctx *pipes = link->dc->current_state->res_ctx.pipe_ctx;
- struct pipe_ctx *pipe_ctx = NULL;
- unsigned int lane;
- unsigned int i;
- unsigned char link_qual_pattern[LANE_COUNT_DP_MAX] = {0};
- union dpcd_training_pattern training_pattern;
- enum dpcd_phy_test_patterns pattern;
-
- memset(&training_pattern, 0, sizeof(training_pattern));
-
- for (i = 0; i < MAX_PIPES; i++) {
- if (pipes[i].stream == NULL)
- continue;
-
- if (pipes[i].stream->link == link && !pipes[i].top_pipe && !pipes[i].prev_odm_pipe) {
- pipe_ctx = &pipes[i];
- break;
- }
- }
-
- if (pipe_ctx == NULL)
- return false;
-
- /* Reset CRTC Test Pattern if it is currently running and request is VideoMode */
- if (link->test_pattern_enabled && test_pattern ==
- DP_TEST_PATTERN_VIDEO_MODE) {
- /* Set CRTC Test Pattern */
- set_crtc_test_pattern(link, pipe_ctx, test_pattern, test_pattern_color_space);
- dp_set_hw_test_pattern(link, &pipe_ctx->link_res, test_pattern,
- (uint8_t *)p_custom_pattern,
- (uint32_t)cust_pattern_size);
-
- /* Unblank Stream */
- link->dc->hwss.unblank_stream(
- pipe_ctx,
- &link->verified_link_cap);
- /* TODO:m_pHwss->MuteAudioEndpoint
- * (pPathMode->pDisplayPath, false);
- */
-
- /* Reset Test Pattern state */
- link->test_pattern_enabled = false;
-
- return true;
- }
-
- /* Check for PHY Test Patterns */
- if (is_dp_phy_pattern(test_pattern)) {
- /* Set DPCD Lane Settings before running test pattern */
- if (p_link_settings != NULL) {
- if ((link->chip_caps & EXT_DISPLAY_PATH_CAPS__DP_FIXED_VS_EN) &&
- p_link_settings->lttpr_mode == LTTPR_MODE_TRANSPARENT) {
- dp_fixed_vs_pe_set_retimer_lane_settings(
- link,
- p_link_settings->dpcd_lane_settings,
- p_link_settings->link_settings.lane_count);
- } else {
- dp_set_hw_lane_settings(link, &pipe_ctx->link_res, p_link_settings, DPRX);
- }
- dpcd_set_lane_settings(link, p_link_settings, DPRX);
- }
-
- /* Blank stream if running test pattern */
- if (test_pattern != DP_TEST_PATTERN_VIDEO_MODE) {
- /*TODO:
- * m_pHwss->
- * MuteAudioEndpoint(pPathMode->pDisplayPath, true);
- */
- /* Blank stream */
- pipes->stream_res.stream_enc->funcs->dp_blank(link, pipe_ctx->stream_res.stream_enc);
- }
-
- dp_set_hw_test_pattern(link, &pipe_ctx->link_res, test_pattern,
- (uint8_t *)p_custom_pattern,
- (uint32_t)cust_pattern_size);
-
- if (test_pattern != DP_TEST_PATTERN_VIDEO_MODE) {
- /* Set Test Pattern state */
- link->test_pattern_enabled = true;
- if (p_link_settings != NULL)
- dpcd_set_link_settings(link,
- p_link_settings);
- }
-
- switch (test_pattern) {
- case DP_TEST_PATTERN_VIDEO_MODE:
- pattern = PHY_TEST_PATTERN_NONE;
- break;
- case DP_TEST_PATTERN_D102:
- pattern = PHY_TEST_PATTERN_D10_2;
- break;
- case DP_TEST_PATTERN_SYMBOL_ERROR:
- pattern = PHY_TEST_PATTERN_SYMBOL_ERROR;
- break;
- case DP_TEST_PATTERN_PRBS7:
- pattern = PHY_TEST_PATTERN_PRBS7;
- break;
- case DP_TEST_PATTERN_80BIT_CUSTOM:
- pattern = PHY_TEST_PATTERN_80BIT_CUSTOM;
- break;
- case DP_TEST_PATTERN_CP2520_1:
- pattern = PHY_TEST_PATTERN_CP2520_1;
- break;
- case DP_TEST_PATTERN_CP2520_2:
- pattern = PHY_TEST_PATTERN_CP2520_2;
- break;
- case DP_TEST_PATTERN_CP2520_3:
- pattern = PHY_TEST_PATTERN_CP2520_3;
- break;
- case DP_TEST_PATTERN_128b_132b_TPS1:
- pattern = PHY_TEST_PATTERN_128b_132b_TPS1;
- break;
- case DP_TEST_PATTERN_128b_132b_TPS2:
- pattern = PHY_TEST_PATTERN_128b_132b_TPS2;
- break;
- case DP_TEST_PATTERN_PRBS9:
- pattern = PHY_TEST_PATTERN_PRBS9;
- break;
- case DP_TEST_PATTERN_PRBS11:
- pattern = PHY_TEST_PATTERN_PRBS11;
- break;
- case DP_TEST_PATTERN_PRBS15:
- pattern = PHY_TEST_PATTERN_PRBS15;
- break;
- case DP_TEST_PATTERN_PRBS23:
- pattern = PHY_TEST_PATTERN_PRBS23;
- break;
- case DP_TEST_PATTERN_PRBS31:
- pattern = PHY_TEST_PATTERN_PRBS31;
- break;
- case DP_TEST_PATTERN_264BIT_CUSTOM:
- pattern = PHY_TEST_PATTERN_264BIT_CUSTOM;
- break;
- case DP_TEST_PATTERN_SQUARE_PULSE:
- pattern = PHY_TEST_PATTERN_SQUARE_PULSE;
- break;
- default:
- return false;
- }
-
- if (test_pattern == DP_TEST_PATTERN_VIDEO_MODE
- /*TODO:&& !pPathMode->pDisplayPath->IsTargetPoweredOn()*/)
- return false;
-
- if (link->dpcd_caps.dpcd_rev.raw >= DPCD_REV_12) {
-#if defined(CONFIG_DRM_AMD_DC_DCN)
- if (test_pattern == DP_TEST_PATTERN_SQUARE_PULSE)
- core_link_write_dpcd(link,
- DP_LINK_SQUARE_PATTERN,
- p_custom_pattern,
- 1);
-
-#endif
- /* tell receiver that we are sending qualification
- * pattern DP 1.2 or later - DP receiver's link quality
- * pattern is set using DPCD LINK_QUAL_LANEx_SET
- * register (0x10B~0x10E)\
- */
- for (lane = 0; lane < LANE_COUNT_DP_MAX; lane++)
- link_qual_pattern[lane] =
- (unsigned char)(pattern);
-
- core_link_write_dpcd(link,
- DP_LINK_QUAL_LANE0_SET,
- link_qual_pattern,
- sizeof(link_qual_pattern));
- } else if (link->dpcd_caps.dpcd_rev.raw >= DPCD_REV_10 ||
- link->dpcd_caps.dpcd_rev.raw == 0) {
- /* tell receiver that we are sending qualification
- * pattern DP 1.1a or earlier - DP receiver's link
- * quality pattern is set using
- * DPCD TRAINING_PATTERN_SET -> LINK_QUAL_PATTERN_SET
- * register (0x102). We will use v_1.3 when we are
- * setting test pattern for DP 1.1.
- */
- core_link_read_dpcd(link, DP_TRAINING_PATTERN_SET,
- &training_pattern.raw,
- sizeof(training_pattern));
- training_pattern.v1_3.LINK_QUAL_PATTERN_SET = pattern;
- core_link_write_dpcd(link, DP_TRAINING_PATTERN_SET,
- &training_pattern.raw,
- sizeof(training_pattern));
- }
- } else {
- enum dc_color_space color_space = COLOR_SPACE_UNKNOWN;
-
- switch (test_pattern_color_space) {
- case DP_TEST_PATTERN_COLOR_SPACE_RGB:
- color_space = COLOR_SPACE_SRGB;
- if (test_pattern == DP_TEST_PATTERN_COLOR_SQUARES_CEA)
- color_space = COLOR_SPACE_SRGB_LIMITED;
- break;
-
- case DP_TEST_PATTERN_COLOR_SPACE_YCBCR601:
- color_space = COLOR_SPACE_YCBCR601;
- if (test_pattern == DP_TEST_PATTERN_COLOR_SQUARES_CEA)
- color_space = COLOR_SPACE_YCBCR601_LIMITED;
- break;
- case DP_TEST_PATTERN_COLOR_SPACE_YCBCR709:
- color_space = COLOR_SPACE_YCBCR709;
- if (test_pattern == DP_TEST_PATTERN_COLOR_SQUARES_CEA)
- color_space = COLOR_SPACE_YCBCR709_LIMITED;
- break;
- default:
- break;
- }
-
- if (pipe_ctx->stream_res.tg->funcs->lock_doublebuffer_enable) {
- if (pipe_ctx->stream && should_use_dmub_lock(pipe_ctx->stream->link)) {
- union dmub_hw_lock_flags hw_locks = { 0 };
- struct dmub_hw_lock_inst_flags inst_flags = { 0 };
-
- hw_locks.bits.lock_dig = 1;
- inst_flags.dig_inst = pipe_ctx->stream_res.tg->inst;
-
- dmub_hw_lock_mgr_cmd(link->ctx->dmub_srv,
- true,
- &hw_locks,
- &inst_flags);
- } else
- pipe_ctx->stream_res.tg->funcs->lock_doublebuffer_enable(
- pipe_ctx->stream_res.tg);
- }
-
- pipe_ctx->stream_res.tg->funcs->lock(pipe_ctx->stream_res.tg);
- /* update MSA to requested color space */
- pipe_ctx->stream_res.stream_enc->funcs->dp_set_stream_attribute(pipe_ctx->stream_res.stream_enc,
- &pipe_ctx->stream->timing,
- color_space,
- pipe_ctx->stream->use_vsc_sdp_for_colorimetry,
- link->dpcd_caps.dprx_feature.bits.SST_SPLIT_SDP_CAP);
-
- if (pipe_ctx->stream->use_vsc_sdp_for_colorimetry) {
- if (test_pattern == DP_TEST_PATTERN_COLOR_SQUARES_CEA)
- pipe_ctx->stream->vsc_infopacket.sb[17] |= (1 << 7); // sb17 bit 7 Dynamic Range: 0 = VESA range, 1 = CTA range
- else
- pipe_ctx->stream->vsc_infopacket.sb[17] &= ~(1 << 7);
- resource_build_info_frame(pipe_ctx);
- link->dc->hwss.update_info_frame(pipe_ctx);
- }
-
- /* CRTC Patterns */
- set_crtc_test_pattern(link, pipe_ctx, test_pattern, test_pattern_color_space);
- pipe_ctx->stream_res.tg->funcs->unlock(pipe_ctx->stream_res.tg);
- pipe_ctx->stream_res.tg->funcs->wait_for_state(pipe_ctx->stream_res.tg,
- CRTC_STATE_VACTIVE);
- pipe_ctx->stream_res.tg->funcs->wait_for_state(pipe_ctx->stream_res.tg,
- CRTC_STATE_VBLANK);
- pipe_ctx->stream_res.tg->funcs->wait_for_state(pipe_ctx->stream_res.tg,
- CRTC_STATE_VACTIVE);
-
- if (pipe_ctx->stream_res.tg->funcs->lock_doublebuffer_disable) {
- if (pipe_ctx->stream && should_use_dmub_lock(pipe_ctx->stream->link)) {
- union dmub_hw_lock_flags hw_locks = { 0 };
- struct dmub_hw_lock_inst_flags inst_flags = { 0 };
-
- hw_locks.bits.lock_dig = 1;
- inst_flags.dig_inst = pipe_ctx->stream_res.tg->inst;
-
- dmub_hw_lock_mgr_cmd(link->ctx->dmub_srv,
- false,
- &hw_locks,
- &inst_flags);
- } else
- pipe_ctx->stream_res.tg->funcs->lock_doublebuffer_disable(
- pipe_ctx->stream_res.tg);
- }
-
- /* Set Test Pattern state */
- link->test_pattern_enabled = true;
- }
-
- return true;
-}
-
-void dp_enable_mst_on_sink(struct dc_link *link, bool enable)
-{
- unsigned char mstmCntl;
-
- core_link_read_dpcd(link, DP_MSTM_CTRL, &mstmCntl, 1);
- if (enable)
- mstmCntl |= DP_MST_EN;
- else
- mstmCntl &= (~DP_MST_EN);
-
- core_link_write_dpcd(link, DP_MSTM_CTRL, &mstmCntl, 1);
-}
-
-void dp_set_panel_mode(struct dc_link *link, enum dp_panel_mode panel_mode)
-{
- union dpcd_edp_config edp_config_set;
- bool panel_mode_edp = false;
-
- memset(&edp_config_set, '\0', sizeof(union dpcd_edp_config));
-
- if (panel_mode != DP_PANEL_MODE_DEFAULT) {
-
- switch (panel_mode) {
- case DP_PANEL_MODE_EDP:
- case DP_PANEL_MODE_SPECIAL:
- panel_mode_edp = true;
- break;
-
- default:
- break;
- }
-
- /*set edp panel mode in receiver*/
- core_link_read_dpcd(
- link,
- DP_EDP_CONFIGURATION_SET,
- &edp_config_set.raw,
- sizeof(edp_config_set.raw));
-
- if (edp_config_set.bits.PANEL_MODE_EDP
- != panel_mode_edp) {
- enum dc_status result;
-
- edp_config_set.bits.PANEL_MODE_EDP =
- panel_mode_edp;
- result = core_link_write_dpcd(
- link,
- DP_EDP_CONFIGURATION_SET,
- &edp_config_set.raw,
- sizeof(edp_config_set.raw));
-
- ASSERT(result == DC_OK);
- }
- }
- DC_LOG_DETECTION_DP_CAPS("Link: %d eDP panel mode supported: %d "
- "eDP panel mode enabled: %d \n",
- link->link_index,
- link->dpcd_caps.panel_mode_edp,
- panel_mode_edp);
-}
-
-enum dp_panel_mode dp_get_panel_mode(struct dc_link *link)
-{
- /* We need to explicitly check that connector
- * is not DP. Some Travis_VGA get reported
- * by video bios as DP.
- */
- if (link->connector_signal != SIGNAL_TYPE_DISPLAY_PORT) {
-
- switch (link->dpcd_caps.branch_dev_id) {
- case DP_BRANCH_DEVICE_ID_0022B9:
- /* alternate scrambler reset is required for Travis
- * for the case when external chip does not
- * provide sink device id, alternate scrambler
- * scheme will be overriden later by querying
- * Encoder features
- */
- if (strncmp(
- link->dpcd_caps.branch_dev_name,
- DP_VGA_LVDS_CONVERTER_ID_2,
- sizeof(
- link->dpcd_caps.
- branch_dev_name)) == 0) {
- return DP_PANEL_MODE_SPECIAL;
- }
- break;
- case DP_BRANCH_DEVICE_ID_00001A:
- /* alternate scrambler reset is required for Travis
- * for the case when external chip does not provide
- * sink device id, alternate scrambler scheme will
- * be overriden later by querying Encoder feature
- */
- if (strncmp(link->dpcd_caps.branch_dev_name,
- DP_VGA_LVDS_CONVERTER_ID_3,
- sizeof(
- link->dpcd_caps.
- branch_dev_name)) == 0) {
- return DP_PANEL_MODE_SPECIAL;
- }
- break;
- default:
- break;
- }
- }
-
- if (link->dpcd_caps.panel_mode_edp &&
- (link->connector_signal == SIGNAL_TYPE_EDP ||
- (link->connector_signal == SIGNAL_TYPE_DISPLAY_PORT &&
- link->is_internal_display))) {
- return DP_PANEL_MODE_EDP;
- }
-
- return DP_PANEL_MODE_DEFAULT;
-}
-
-enum dc_status dp_set_fec_ready(struct dc_link *link, const struct link_resource *link_res, bool ready)
-{
- /* FEC has to be "set ready" before the link training.
- * The policy is to always train with FEC
- * if the sink supports it and leave it enabled on link.
- * If FEC is not supported, disable it.
- */
- struct link_encoder *link_enc = NULL;
- enum dc_status status = DC_OK;
- uint8_t fec_config = 0;
-
- link_enc = link_enc_cfg_get_link_enc(link);
- ASSERT(link_enc);
-
- if (!dc_link_should_enable_fec(link))
- return status;
-
- if (link_enc->funcs->fec_set_ready &&
- link->dpcd_caps.fec_cap.bits.FEC_CAPABLE) {
- if (ready) {
- fec_config = 1;
- status = core_link_write_dpcd(link,
- DP_FEC_CONFIGURATION,
- &fec_config,
- sizeof(fec_config));
- if (status == DC_OK) {
- link_enc->funcs->fec_set_ready(link_enc, true);
- link->fec_state = dc_link_fec_ready;
- } else {
- link_enc->funcs->fec_set_ready(link_enc, false);
- link->fec_state = dc_link_fec_not_ready;
- dm_error("dpcd write failed to set fec_ready");
- }
- } else if (link->fec_state == dc_link_fec_ready) {
- fec_config = 0;
- status = core_link_write_dpcd(link,
- DP_FEC_CONFIGURATION,
- &fec_config,
- sizeof(fec_config));
- link_enc->funcs->fec_set_ready(link_enc, false);
- link->fec_state = dc_link_fec_not_ready;
- }
- }
-
- return status;
-}
-
-void dp_set_fec_enable(struct dc_link *link, bool enable)
-{
- struct link_encoder *link_enc = NULL;
-
- link_enc = link_enc_cfg_get_link_enc(link);
- ASSERT(link_enc);
-
- if (!dc_link_should_enable_fec(link))
- return;
-
- if (link_enc->funcs->fec_set_enable &&
- link->dpcd_caps.fec_cap.bits.FEC_CAPABLE) {
- if (link->fec_state == dc_link_fec_ready && enable) {
- /* Accord to DP spec, FEC enable sequence can first
- * be transmitted anytime after 1000 LL codes have
- * been transmitted on the link after link training
- * completion. Using 1 lane RBR should have the maximum
- * time for transmitting 1000 LL codes which is 6.173 us.
- * So use 7 microseconds delay instead.
- */
- udelay(7);
- link_enc->funcs->fec_set_enable(link_enc, true);
- link->fec_state = dc_link_fec_enabled;
- } else if (link->fec_state == dc_link_fec_enabled && !enable) {
- link_enc->funcs->fec_set_enable(link_enc, false);
- link->fec_state = dc_link_fec_ready;
- }
- }
-}
-
-void dpcd_set_source_specific_data(struct dc_link *link)
-{
- if (!link->dc->vendor_signature.is_valid) {
- enum dc_status __maybe_unused result_write_min_hblank = DC_NOT_SUPPORTED;
- struct dpcd_amd_signature amd_signature = {0};
- struct dpcd_amd_device_id amd_device_id = {0};
-
- amd_device_id.device_id_byte1 =
- (uint8_t)(link->ctx->asic_id.chip_id);
- amd_device_id.device_id_byte2 =
- (uint8_t)(link->ctx->asic_id.chip_id >> 8);
- amd_device_id.dce_version =
- (uint8_t)(link->ctx->dce_version);
- amd_device_id.dal_version_byte1 = 0x0; // needed? where to get?
- amd_device_id.dal_version_byte2 = 0x0; // needed? where to get?
-
- core_link_read_dpcd(link, DP_SOURCE_OUI,
- (uint8_t *)(&amd_signature),
- sizeof(amd_signature));
-
- if (!((amd_signature.AMD_IEEE_TxSignature_byte1 == 0x0) &&
- (amd_signature.AMD_IEEE_TxSignature_byte2 == 0x0) &&
- (amd_signature.AMD_IEEE_TxSignature_byte3 == 0x1A))) {
-
- amd_signature.AMD_IEEE_TxSignature_byte1 = 0x0;
- amd_signature.AMD_IEEE_TxSignature_byte2 = 0x0;
- amd_signature.AMD_IEEE_TxSignature_byte3 = 0x1A;
-
- core_link_write_dpcd(link, DP_SOURCE_OUI,
- (uint8_t *)(&amd_signature),
- sizeof(amd_signature));
- }
-
- core_link_write_dpcd(link, DP_SOURCE_OUI+0x03,
- (uint8_t *)(&amd_device_id),
- sizeof(amd_device_id));
-
- if (link->ctx->dce_version >= DCN_VERSION_2_0 &&
- link->dc->caps.min_horizontal_blanking_period != 0) {
-
- uint8_t hblank_size = (uint8_t)link->dc->caps.min_horizontal_blanking_period;
-
- if (link->preferred_link_setting.dpcd_source_device_specific_field_support) {
- result_write_min_hblank = core_link_write_dpcd(link,
- DP_SOURCE_MINIMUM_HBLANK_SUPPORTED, (uint8_t *)(&hblank_size),
- sizeof(hblank_size));
-
- if (result_write_min_hblank == DC_ERROR_UNEXPECTED)
- link->preferred_link_setting.dpcd_source_device_specific_field_support = false;
- } else {
- DC_LOG_DC("Sink device does not support 00340h DPCD write. Skipping on purpose.\n");
- }
- }
-
- DC_TRACE_LEVEL_MESSAGE(DAL_TRACE_LEVEL_INFORMATION,
- WPP_BIT_FLAG_DC_DETECTION_DP_CAPS,
- "result=%u link_index=%u enum dce_version=%d DPCD=0x%04X min_hblank=%u branch_dev_id=0x%x branch_dev_name='%c%c%c%c%c%c'",
- result_write_min_hblank,
- link->link_index,
- link->ctx->dce_version,
- DP_SOURCE_MINIMUM_HBLANK_SUPPORTED,
- link->dc->caps.min_horizontal_blanking_period,
- link->dpcd_caps.branch_dev_id,
- link->dpcd_caps.branch_dev_name[0],
- link->dpcd_caps.branch_dev_name[1],
- link->dpcd_caps.branch_dev_name[2],
- link->dpcd_caps.branch_dev_name[3],
- link->dpcd_caps.branch_dev_name[4],
- link->dpcd_caps.branch_dev_name[5]);
- } else {
- core_link_write_dpcd(link, DP_SOURCE_OUI,
- link->dc->vendor_signature.data.raw,
- sizeof(link->dc->vendor_signature.data.raw));
- }
-}
-
-void dpcd_write_cable_id_to_dprx(struct dc_link *link)
-{
- if (!link->dpcd_caps.channel_coding_cap.bits.DP_128b_132b_SUPPORTED ||
- link->dpcd_caps.cable_id.raw == 0 ||
- link->dprx_states.cable_id_written)
- return;
-
- core_link_write_dpcd(link, DP_CABLE_ATTRIBUTES_UPDATED_BY_DPTX,
- &link->dpcd_caps.cable_id.raw,
- sizeof(link->dpcd_caps.cable_id.raw));
-
- link->dprx_states.cable_id_written = 1;
-}
-
-bool dc_link_set_backlight_level_nits(struct dc_link *link,
- bool isHDR,
- uint32_t backlight_millinits,
- uint32_t transition_time_in_ms)
-{
- struct dpcd_source_backlight_set dpcd_backlight_set;
- uint8_t backlight_control = isHDR ? 1 : 0;
-
- if (!link || (link->connector_signal != SIGNAL_TYPE_EDP &&
- link->connector_signal != SIGNAL_TYPE_DISPLAY_PORT))
- return false;
-
- // OLEDs have no PWM, they can only use AUX
- if (link->dpcd_sink_ext_caps.bits.oled == 1)
- backlight_control = 1;
-
- *(uint32_t *)&dpcd_backlight_set.backlight_level_millinits = backlight_millinits;
- *(uint16_t *)&dpcd_backlight_set.backlight_transition_time_ms = (uint16_t)transition_time_in_ms;
-
-
- if (core_link_write_dpcd(link, DP_SOURCE_BACKLIGHT_LEVEL,
- (uint8_t *)(&dpcd_backlight_set),
- sizeof(dpcd_backlight_set)) != DC_OK)
- return false;
-
- if (core_link_write_dpcd(link, DP_SOURCE_BACKLIGHT_CONTROL,
- &backlight_control, 1) != DC_OK)
- return false;
-
- return true;
-}
-
-bool dc_link_get_backlight_level_nits(struct dc_link *link,
- uint32_t *backlight_millinits_avg,
- uint32_t *backlight_millinits_peak)
-{
- union dpcd_source_backlight_get dpcd_backlight_get;
-
- memset(&dpcd_backlight_get, 0, sizeof(union dpcd_source_backlight_get));
-
- if (!link || (link->connector_signal != SIGNAL_TYPE_EDP &&
- link->connector_signal != SIGNAL_TYPE_DISPLAY_PORT))
- return false;
-
- if (core_link_read_dpcd(link, DP_SOURCE_BACKLIGHT_CURRENT_PEAK,
- dpcd_backlight_get.raw,
- sizeof(union dpcd_source_backlight_get)) != DC_OK)
- return false;
-
- *backlight_millinits_avg =
- dpcd_backlight_get.bytes.backlight_millinits_avg;
- *backlight_millinits_peak =
- dpcd_backlight_get.bytes.backlight_millinits_peak;
-
- /* On non-supported panels dpcd_read usually succeeds with 0 returned */
- if (*backlight_millinits_avg == 0 ||
- *backlight_millinits_avg > *backlight_millinits_peak)
- return false;
-
- return true;
-}
-
-bool dc_link_backlight_enable_aux(struct dc_link *link, bool enable)
-{
- uint8_t backlight_enable = enable ? 1 : 0;
-
- if (!link || (link->connector_signal != SIGNAL_TYPE_EDP &&
- link->connector_signal != SIGNAL_TYPE_DISPLAY_PORT))
- return false;
-
- if (core_link_write_dpcd(link, DP_SOURCE_BACKLIGHT_ENABLE,
- &backlight_enable, 1) != DC_OK)
- return false;
-
- return true;
-}
-
-// we read default from 0x320 because we expect BIOS wrote it there
-// regular get_backlight_nit reads from panel set at 0x326
-bool dc_link_read_default_bl_aux(struct dc_link *link, uint32_t *backlight_millinits)
-{
- if (!link || (link->connector_signal != SIGNAL_TYPE_EDP &&
- link->connector_signal != SIGNAL_TYPE_DISPLAY_PORT))
- return false;
-
- if (core_link_read_dpcd(link, DP_SOURCE_BACKLIGHT_LEVEL,
- (uint8_t *) backlight_millinits,
- sizeof(uint32_t)) != DC_OK)
- return false;
-
- return true;
-}
-
-bool dc_link_set_default_brightness_aux(struct dc_link *link)
-{
- uint32_t default_backlight;
-
- if (link && link->dpcd_sink_ext_caps.bits.oled == 1) {
- if (!dc_link_read_default_bl_aux(link, &default_backlight))
- default_backlight = 150000;
- // if < 5 nits or > 5000, it might be wrong readback
- if (default_backlight < 5000 || default_backlight > 5000000)
- default_backlight = 150000; //
-
- return dc_link_set_backlight_level_nits(link, true,
- default_backlight, 0);
- }
- return false;
-}
-
-bool is_edp_ilr_optimization_required(struct dc_link *link, struct dc_crtc_timing *crtc_timing)
-{
- struct dc_link_settings link_setting;
- uint8_t link_bw_set;
- uint8_t link_rate_set;
- uint32_t req_bw;
- union lane_count_set lane_count_set = {0};
-
- ASSERT(link || crtc_timing); // invalid input
-
- if (link->dpcd_caps.edp_supported_link_rates_count == 0 ||
- !link->panel_config.ilr.optimize_edp_link_rate)
- return false;
-
-
- // Read DPCD 00100h to find if standard link rates are set
- core_link_read_dpcd(link, DP_LINK_BW_SET,
- &link_bw_set, sizeof(link_bw_set));
-
- if (link_bw_set) {
- DC_LOG_EVENT_LINK_TRAINING("eDP ILR: Optimization required, VBIOS used link_bw_set\n");
- return true;
- }
-
- // Read DPCD 00115h to find the edp link rate set used
- core_link_read_dpcd(link, DP_LINK_RATE_SET,
- &link_rate_set, sizeof(link_rate_set));
-
- // Read DPCD 00101h to find out the number of lanes currently set
- core_link_read_dpcd(link, DP_LANE_COUNT_SET,
- &lane_count_set.raw, sizeof(lane_count_set));
-
- req_bw = dc_bandwidth_in_kbps_from_timing(crtc_timing);
-
- if (!crtc_timing->flags.DSC)
- decide_edp_link_settings(link, &link_setting, req_bw);
- else
- decide_edp_link_settings_with_dsc(link, &link_setting, req_bw, LINK_RATE_UNKNOWN);
-
- if (link->dpcd_caps.edp_supported_link_rates[link_rate_set] != link_setting.link_rate ||
- lane_count_set.bits.LANE_COUNT_SET != link_setting.lane_count) {
- DC_LOG_EVENT_LINK_TRAINING("eDP ILR: Optimization required, VBIOS link_rate_set not optimal\n");
- return true;
- }
-
- DC_LOG_EVENT_LINK_TRAINING("eDP ILR: No optimization required, VBIOS set optimal link_rate_set\n");
- return false;
-}
-
-enum dp_link_encoding dp_get_link_encoding_format(const struct dc_link_settings *link_settings)
-{
- if ((link_settings->link_rate >= LINK_RATE_LOW) &&
- (link_settings->link_rate <= LINK_RATE_HIGH3))
- return DP_8b_10b_ENCODING;
- else if ((link_settings->link_rate >= LINK_RATE_UHBR10) &&
- (link_settings->link_rate <= LINK_RATE_UHBR20))
- return DP_128b_132b_ENCODING;
- return DP_UNKNOWN_ENCODING;
-}
-
-enum dp_link_encoding dc_link_dp_mst_decide_link_encoding_format(const struct dc_link *link)
-{
- struct dc_link_settings link_settings = {0};
-
- if (!dc_is_dp_signal(link->connector_signal))
- return DP_UNKNOWN_ENCODING;
-
- if (link->preferred_link_setting.lane_count !=
- LANE_COUNT_UNKNOWN &&
- link->preferred_link_setting.link_rate !=
- LINK_RATE_UNKNOWN) {
- link_settings = link->preferred_link_setting;
- } else {
- decide_mst_link_settings(link, &link_settings);
- }
-
- return dp_get_link_encoding_format(&link_settings);
-}
-
-// TODO - DP2.0 Link: Fix get_lane_status to handle LTTPR offset (SST and MST)
-static void get_lane_status(
- struct dc_link *link,
- uint32_t lane_count,
- union lane_status *status,
- union lane_align_status_updated *status_updated)
-{
- unsigned int lane;
- uint8_t dpcd_buf[3] = {0};
-
- if (status == NULL || status_updated == NULL) {
- return;
- }
-
- core_link_read_dpcd(
- link,
- DP_LANE0_1_STATUS,
- dpcd_buf,
- sizeof(dpcd_buf));
-
- for (lane = 0; lane < lane_count; lane++) {
- status[lane].raw = get_nibble_at_index(&dpcd_buf[0], lane);
- }
-
- status_updated->raw = dpcd_buf[2];
-}
-
-bool dpcd_write_128b_132b_sst_payload_allocation_table(
- const struct dc_stream_state *stream,
- struct dc_link *link,
- struct link_mst_stream_allocation_table *proposed_table,
- bool allocate)
-{
- const uint8_t vc_id = 1; /// VC ID always 1 for SST
- const uint8_t start_time_slot = 0; /// Always start at time slot 0 for SST
- bool result = false;
- uint8_t req_slot_count = 0;
- struct fixed31_32 avg_time_slots_per_mtp = { 0 };
- union payload_table_update_status update_status = { 0 };
- const uint32_t max_retries = 30;
- uint32_t retries = 0;
-
- if (allocate) {
- avg_time_slots_per_mtp = calculate_sst_avg_time_slots_per_mtp(stream, link);
- req_slot_count = dc_fixpt_ceil(avg_time_slots_per_mtp);
- /// Validation should filter out modes that exceed link BW
- ASSERT(req_slot_count <= MAX_MTP_SLOT_COUNT);
- if (req_slot_count > MAX_MTP_SLOT_COUNT)
- return false;
- } else {
- /// Leave req_slot_count = 0 if allocate is false.
- }
-
- proposed_table->stream_count = 1; /// Always 1 stream for SST
- proposed_table->stream_allocations[0].slot_count = req_slot_count;
- proposed_table->stream_allocations[0].vcp_id = vc_id;
-
- if (link->aux_access_disabled)
- return true;
-
- /// Write DPCD 2C0 = 1 to start updating
- update_status.bits.VC_PAYLOAD_TABLE_UPDATED = 1;
- core_link_write_dpcd(
- link,
- DP_PAYLOAD_TABLE_UPDATE_STATUS,
- &update_status.raw,
- 1);
-
- /// Program the changes in DPCD 1C0 - 1C2
- ASSERT(vc_id == 1);
- core_link_write_dpcd(
- link,
- DP_PAYLOAD_ALLOCATE_SET,
- &vc_id,
- 1);
-
- ASSERT(start_time_slot == 0);
- core_link_write_dpcd(
- link,
- DP_PAYLOAD_ALLOCATE_START_TIME_SLOT,
- &start_time_slot,
- 1);
-
- core_link_write_dpcd(
- link,
- DP_PAYLOAD_ALLOCATE_TIME_SLOT_COUNT,
- &req_slot_count,
- 1);
-
- /// Poll till DPCD 2C0 read 1
- /// Try for at least 150ms (30 retries, with 5ms delay after each attempt)
-
- while (retries < max_retries) {
- if (core_link_read_dpcd(
- link,
- DP_PAYLOAD_TABLE_UPDATE_STATUS,
- &update_status.raw,
- 1) == DC_OK) {
- if (update_status.bits.VC_PAYLOAD_TABLE_UPDATED == 1) {
- DC_LOG_DP2("SST Update Payload: downstream payload table updated.");
- result = true;
- break;
- }
- } else {
- union dpcd_rev dpcdRev;
-
- if (core_link_read_dpcd(
- link,
- DP_DPCD_REV,
- &dpcdRev.raw,
- 1) != DC_OK) {
- DC_LOG_ERROR("SST Update Payload: Unable to read DPCD revision "
- "of sink while polling payload table "
- "updated status bit.");
- break;
- }
- }
- retries++;
- msleep(5);
- }
-
- if (!result && retries == max_retries) {
- DC_LOG_ERROR("SST Update Payload: Payload table not updated after retries, "
- "continue on. Something is wrong with the branch.");
- // TODO - DP2.0 Payload: Read and log the payload table from downstream branch
- }
-
- return result;
-}
-
-bool dpcd_poll_for_allocation_change_trigger(struct dc_link *link)
-{
- /*
- * wait for ACT handled
- */
- int i;
- const int act_retries = 30;
- enum act_return_status result = ACT_FAILED;
- union payload_table_update_status update_status = {0};
- union lane_status dpcd_lane_status[LANE_COUNT_DP_MAX];
- union lane_align_status_updated lane_status_updated;
-
- if (link->aux_access_disabled)
- return true;
- for (i = 0; i < act_retries; i++) {
- get_lane_status(link, link->cur_link_settings.lane_count, dpcd_lane_status, &lane_status_updated);
-
- if (!dp_is_cr_done(link->cur_link_settings.lane_count, dpcd_lane_status) ||
- !dp_is_ch_eq_done(link->cur_link_settings.lane_count, dpcd_lane_status) ||
- !dp_is_symbol_locked(link->cur_link_settings.lane_count, dpcd_lane_status) ||
- !dp_is_interlane_aligned(lane_status_updated)) {
- DC_LOG_ERROR("SST Update Payload: Link loss occurred while "
- "polling for ACT handled.");
- result = ACT_LINK_LOST;
- break;
- }
- core_link_read_dpcd(
- link,
- DP_PAYLOAD_TABLE_UPDATE_STATUS,
- &update_status.raw,
- 1);
-
- if (update_status.bits.ACT_HANDLED == 1) {
- DC_LOG_DP2("SST Update Payload: ACT handled by downstream.");
- result = ACT_SUCCESS;
- break;
- }
-
- msleep(5);
- }
-
- if (result == ACT_FAILED) {
- DC_LOG_ERROR("SST Update Payload: ACT still not handled after retries, "
- "continue on. Something is wrong with the branch.");
- }
-
- return (result == ACT_SUCCESS);
-}
-
-struct fixed31_32 calculate_sst_avg_time_slots_per_mtp(
- const struct dc_stream_state *stream,
- const struct dc_link *link)
-{
- struct fixed31_32 link_bw_effective =
- dc_fixpt_from_int(
- dc_link_bandwidth_kbps(link, &link->cur_link_settings));
- struct fixed31_32 timeslot_bw_effective =
- dc_fixpt_div_int(link_bw_effective, MAX_MTP_SLOT_COUNT);
- struct fixed31_32 timing_bw =
- dc_fixpt_from_int(
- dc_bandwidth_in_kbps_from_timing(&stream->timing));
- struct fixed31_32 avg_time_slots_per_mtp =
- dc_fixpt_div(timing_bw, timeslot_bw_effective);
-
- return avg_time_slots_per_mtp;
-}
-
-bool is_dp_128b_132b_signal(struct pipe_ctx *pipe_ctx)
-{
- /* If this assert is hit then we have a link encoder dynamic management issue */
- ASSERT(pipe_ctx->stream_res.hpo_dp_stream_enc ? pipe_ctx->link_res.hpo_dp_link_enc != NULL : true);
- return (pipe_ctx->stream_res.hpo_dp_stream_enc &&
- pipe_ctx->link_res.hpo_dp_link_enc &&
- dc_is_dp_signal(pipe_ctx->stream->signal));
-}
-
-void edp_panel_backlight_power_on(struct dc_link *link, bool wait_for_hpd)
-{
- if (link->connector_signal != SIGNAL_TYPE_EDP)
- return;
-
- link->dc->hwss.edp_power_control(link, true);
- if (wait_for_hpd)
- link->dc->hwss.edp_wait_for_hpd_ready(link, true);
- if (link->dc->hwss.edp_backlight_control)
- link->dc->hwss.edp_backlight_control(link, true);
-}
-
-void dc_link_clear_dprx_states(struct dc_link *link)
-{
- memset(&link->dprx_states, 0, sizeof(link->dprx_states));
-}
-
-void dp_receiver_power_ctrl(struct dc_link *link, bool on)
-{
- uint8_t state;
-
- state = on ? DP_POWER_STATE_D0 : DP_POWER_STATE_D3;
-
- if (link->sync_lt_in_progress)
- return;
-
- core_link_write_dpcd(link, DP_SET_POWER, &state,
- sizeof(state));
-
-}
-
-void dp_source_sequence_trace(struct dc_link *link, uint8_t dp_test_mode)
-{
- if (link != NULL && link->dc->debug.enable_driver_sequence_debug)
- core_link_write_dpcd(link, DP_SOURCE_SEQUENCE,
- &dp_test_mode, sizeof(dp_test_mode));
-}
-
-
-static uint8_t convert_to_count(uint8_t lttpr_repeater_count)
-{
- switch (lttpr_repeater_count) {
- case 0x80: // 1 lttpr repeater
- return 1;
- case 0x40: // 2 lttpr repeaters
- return 2;
- case 0x20: // 3 lttpr repeaters
- return 3;
- case 0x10: // 4 lttpr repeaters
- return 4;
- case 0x08: // 5 lttpr repeaters
- return 5;
- case 0x04: // 6 lttpr repeaters
- return 6;
- case 0x02: // 7 lttpr repeaters
- return 7;
- case 0x01: // 8 lttpr repeaters
- return 8;
- default:
- break;
- }
- return 0; // invalid value
-}
-
-static inline bool is_immediate_downstream(struct dc_link *link, uint32_t offset)
-{
- return (convert_to_count(link->dpcd_caps.lttpr_caps.phy_repeater_cnt) == offset);
-}
-
-void dp_enable_link_phy(
- struct dc_link *link,
- const struct link_resource *link_res,
- enum signal_type signal,
- enum clock_source_id clock_source,
- const struct dc_link_settings *link_settings)
-{
- link->cur_link_settings = *link_settings;
- link->dc->hwss.enable_dp_link_output(link, link_res, signal,
- clock_source, link_settings);
- dp_receiver_power_ctrl(link, true);
-}
-
-void edp_add_delay_for_T9(struct dc_link *link)
-{
- if (link && link->panel_config.pps.extra_delay_backlight_off > 0)
- udelay(link->panel_config.pps.extra_delay_backlight_off * 1000);
-}
-
-bool edp_receiver_ready_T9(struct dc_link *link)
-{
- unsigned int tries = 0;
- unsigned char sinkstatus = 0;
- unsigned char edpRev = 0;
- enum dc_status result = DC_OK;
-
- result = core_link_read_dpcd(link, DP_EDP_DPCD_REV, &edpRev, sizeof(edpRev));
-
- /* start from eDP version 1.2, SINK_STAUS indicate the sink is ready.*/
- if (result == DC_OK && edpRev >= DP_EDP_12) {
- do {
- sinkstatus = 1;
- result = core_link_read_dpcd(link, DP_SINK_STATUS, &sinkstatus, sizeof(sinkstatus));
- if (sinkstatus == 0)
- break;
- if (result != DC_OK)
- break;
- udelay(100); //MAx T9
- } while (++tries < 50);
- }
-
- return result;
-}
-bool edp_receiver_ready_T7(struct dc_link *link)
-{
- unsigned char sinkstatus = 0;
- unsigned char edpRev = 0;
- enum dc_status result = DC_OK;
-
- /* use absolute time stamp to constrain max T7*/
- unsigned long long enter_timestamp = 0;
- unsigned long long finish_timestamp = 0;
- unsigned long long time_taken_in_ns = 0;
-
- result = core_link_read_dpcd(link, DP_EDP_DPCD_REV, &edpRev, sizeof(edpRev));
-
- if (result == DC_OK && edpRev >= DP_EDP_12) {
- /* start from eDP version 1.2, SINK_STAUS indicate the sink is ready.*/
- enter_timestamp = dm_get_timestamp(link->ctx);
- do {
- sinkstatus = 0;
- result = core_link_read_dpcd(link, DP_SINK_STATUS, &sinkstatus, sizeof(sinkstatus));
- if (sinkstatus == 1)
- break;
- if (result != DC_OK)
- break;
- udelay(25);
- finish_timestamp = dm_get_timestamp(link->ctx);
- time_taken_in_ns = dm_get_elapse_time_in_ns(link->ctx, finish_timestamp, enter_timestamp);
- } while (time_taken_in_ns < 50 * 1000000); //MAx T7 is 50ms
- }
-
- if (link && link->panel_config.pps.extra_t7_ms > 0)
- udelay(link->panel_config.pps.extra_t7_ms * 1000);
-
- return result;
-}
-
-void dp_disable_link_phy(struct dc_link *link, const struct link_resource *link_res,
- enum signal_type signal)
-{
- struct dc *dc = link->ctx->dc;
-
- if (!link->wa_flags.dp_keep_receiver_powered)
- dp_receiver_power_ctrl(link, false);
-
- dc->hwss.disable_link_output(link, link_res, signal);
- /* Clear current link setting.*/
- memset(&link->cur_link_settings, 0,
- sizeof(link->cur_link_settings));
-
- if (dc->clk_mgr->funcs->notify_link_rate_change)
- dc->clk_mgr->funcs->notify_link_rate_change(dc->clk_mgr, link);
-}
-
-void dp_disable_link_phy_mst(struct dc_link *link, const struct link_resource *link_res,
- enum signal_type signal)
-{
- /* MST disable link only when no stream use the link */
- if (link->mst_stream_alloc_table.stream_count > 0)
- return;
-
- dp_disable_link_phy(link, link_res, signal);
-
- /* set the sink to SST mode after disabling the link */
- dp_enable_mst_on_sink(link, false);
-}
-
-bool dp_set_hw_training_pattern(
- struct dc_link *link,
- const struct link_resource *link_res,
- enum dc_dp_training_pattern pattern,
- uint32_t offset)
-{
- enum dp_test_pattern test_pattern = DP_TEST_PATTERN_UNSUPPORTED;
-
- switch (pattern) {
- case DP_TRAINING_PATTERN_SEQUENCE_1:
- test_pattern = DP_TEST_PATTERN_TRAINING_PATTERN1;
- break;
- case DP_TRAINING_PATTERN_SEQUENCE_2:
- test_pattern = DP_TEST_PATTERN_TRAINING_PATTERN2;
- break;
- case DP_TRAINING_PATTERN_SEQUENCE_3:
- test_pattern = DP_TEST_PATTERN_TRAINING_PATTERN3;
- break;
- case DP_TRAINING_PATTERN_SEQUENCE_4:
- test_pattern = DP_TEST_PATTERN_TRAINING_PATTERN4;
- break;
- case DP_128b_132b_TPS1:
- test_pattern = DP_TEST_PATTERN_128b_132b_TPS1_TRAINING_MODE;
- break;
- case DP_128b_132b_TPS2:
- test_pattern = DP_TEST_PATTERN_128b_132b_TPS2_TRAINING_MODE;
- break;
- default:
- break;
- }
-
- dp_set_hw_test_pattern(link, link_res, test_pattern, NULL, 0);
-
- return true;
-}
-
-void dp_set_hw_lane_settings(
- struct dc_link *link,
- const struct link_resource *link_res,
- const struct link_training_settings *link_settings,
- uint32_t offset)
-{
- const struct link_hwss *link_hwss = get_link_hwss(link, link_res);
-
- if ((link_settings->lttpr_mode == LTTPR_MODE_NON_TRANSPARENT) && !is_immediate_downstream(link, offset))
- return;
-
- if (link_hwss->ext.set_dp_lane_settings)
- link_hwss->ext.set_dp_lane_settings(link, link_res,
- &link_settings->link_settings,
- link_settings->hw_lane_settings);
-
- memmove(link->cur_lane_setting,
- link_settings->hw_lane_settings,
- sizeof(link->cur_lane_setting));
-}
-
-void dp_set_hw_test_pattern(
- struct dc_link *link,
- const struct link_resource *link_res,
- enum dp_test_pattern test_pattern,
- uint8_t *custom_pattern,
- uint32_t custom_pattern_size)
-{
- const struct link_hwss *link_hwss = get_link_hwss(link, link_res);
- struct encoder_set_dp_phy_pattern_param pattern_param = {0};
-
- pattern_param.dp_phy_pattern = test_pattern;
- pattern_param.custom_pattern = custom_pattern;
- pattern_param.custom_pattern_size = custom_pattern_size;
- pattern_param.dp_panel_mode = dp_get_panel_mode(link);
-
- if (link_hwss->ext.set_dp_link_test_pattern)
- link_hwss->ext.set_dp_link_test_pattern(link, link_res, &pattern_param);
-}
-
-void dp_retrain_link_dp_test(struct dc_link *link,
- struct dc_link_settings *link_setting,
- bool skip_video_pattern)
-{
- struct pipe_ctx *pipes =
- &link->dc->current_state->res_ctx.pipe_ctx[0];
- unsigned int i;
-
-
- for (i = 0; i < MAX_PIPES; i++) {
- if (pipes[i].stream != NULL &&
- !pipes[i].top_pipe && !pipes[i].prev_odm_pipe &&
- pipes[i].stream->link != NULL &&
- pipes[i].stream_res.stream_enc != NULL &&
- pipes[i].stream->link == link) {
- udelay(100);
-
- pipes[i].stream_res.stream_enc->funcs->dp_blank(link,
- pipes[i].stream_res.stream_enc);
-
- /* disable any test pattern that might be active */
- dp_set_hw_test_pattern(link, &pipes[i].link_res,
- DP_TEST_PATTERN_VIDEO_MODE, NULL, 0);
-
- dp_receiver_power_ctrl(link, false);
-
- link->dc->hwss.disable_stream(&pipes[i]);
- if ((&pipes[i])->stream_res.audio && !link->dc->debug.az_endpoint_mute_only)
- (&pipes[i])->stream_res.audio->funcs->az_disable((&pipes[i])->stream_res.audio);
-
- if (link->link_enc)
- link->link_enc->funcs->disable_output(
- link->link_enc,
- SIGNAL_TYPE_DISPLAY_PORT);
-
- /* Clear current link setting. */
- memset(&link->cur_link_settings, 0,
- sizeof(link->cur_link_settings));
-
- perform_link_training_with_retries(
- link_setting,
- skip_video_pattern,
- LINK_TRAINING_ATTEMPTS,
- &pipes[i],
- SIGNAL_TYPE_DISPLAY_PORT,
- false);
-
- link->dc->hwss.enable_stream(&pipes[i]);
-
- link->dc->hwss.unblank_stream(&pipes[i],
- link_setting);
-
- if (pipes[i].stream_res.audio) {
- /* notify audio driver for
- * audio modes of monitor */
- pipes[i].stream_res.audio->funcs->az_enable(
- pipes[i].stream_res.audio);
-
- /* un-mute audio */
- /* TODO: audio should be per stream rather than
- * per link */
- pipes[i].stream_res.stream_enc->funcs->
- audio_mute_control(
- pipes[i].stream_res.stream_enc, false);
- }
- }
- }
-}
-
-#undef DC_LOGGER
-#define DC_LOGGER \
- dsc->ctx->logger
-static void dsc_optc_config_log(struct display_stream_compressor *dsc,
- struct dsc_optc_config *config)
-{
- uint32_t precision = 1 << 28;
- uint32_t bytes_per_pixel_int = config->bytes_per_pixel / precision;
- uint32_t bytes_per_pixel_mod = config->bytes_per_pixel % precision;
- uint64_t ll_bytes_per_pix_fraq = bytes_per_pixel_mod;
-
- /* 7 fractional digits decimal precision for bytes per pixel is enough because DSC
- * bits per pixel precision is 1/16th of a pixel, which means bytes per pixel precision is
- * 1/16/8 = 1/128 of a byte, or 0.0078125 decimal
- */
- ll_bytes_per_pix_fraq *= 10000000;
- ll_bytes_per_pix_fraq /= precision;
-
- DC_LOG_DSC("\tbytes_per_pixel 0x%08x (%d.%07d)",
- config->bytes_per_pixel, bytes_per_pixel_int, (uint32_t)ll_bytes_per_pix_fraq);
- DC_LOG_DSC("\tis_pixel_format_444 %d", config->is_pixel_format_444);
- DC_LOG_DSC("\tslice_width %d", config->slice_width);
-}
-
-bool dp_set_dsc_on_rx(struct pipe_ctx *pipe_ctx, bool enable)
-{
- struct dc *dc = pipe_ctx->stream->ctx->dc;
- struct dc_stream_state *stream = pipe_ctx->stream;
- bool result = false;
-
- if (dc_is_virtual_signal(stream->signal) || IS_FPGA_MAXIMUS_DC(dc->ctx->dce_environment))
- result = true;
- else
- result = dm_helpers_dp_write_dsc_enable(dc->ctx, stream, enable);
- return result;
-}
-
-/* The stream with these settings can be sent (unblanked) only after DSC was enabled on RX first,
- * i.e. after dp_enable_dsc_on_rx() had been called
- */
-void dp_set_dsc_on_stream(struct pipe_ctx *pipe_ctx, bool enable)
-{
- struct display_stream_compressor *dsc = pipe_ctx->stream_res.dsc;
- struct dc *dc = pipe_ctx->stream->ctx->dc;
- struct dc_stream_state *stream = pipe_ctx->stream;
- struct pipe_ctx *odm_pipe;
- int opp_cnt = 1;
-
- for (odm_pipe = pipe_ctx->next_odm_pipe; odm_pipe; odm_pipe = odm_pipe->next_odm_pipe)
- opp_cnt++;
-
- if (enable) {
- struct dsc_config dsc_cfg;
- struct dsc_optc_config dsc_optc_cfg;
- enum optc_dsc_mode optc_dsc_mode;
-
- /* Enable DSC hw block */
- dsc_cfg.pic_width = (stream->timing.h_addressable + stream->timing.h_border_left + stream->timing.h_border_right) / opp_cnt;
- dsc_cfg.pic_height = stream->timing.v_addressable + stream->timing.v_border_top + stream->timing.v_border_bottom;
- dsc_cfg.pixel_encoding = stream->timing.pixel_encoding;
- dsc_cfg.color_depth = stream->timing.display_color_depth;
- dsc_cfg.is_odm = pipe_ctx->next_odm_pipe ? true : false;
- dsc_cfg.dc_dsc_cfg = stream->timing.dsc_cfg;
- ASSERT(dsc_cfg.dc_dsc_cfg.num_slices_h % opp_cnt == 0);
- dsc_cfg.dc_dsc_cfg.num_slices_h /= opp_cnt;
-
- dsc->funcs->dsc_set_config(dsc, &dsc_cfg, &dsc_optc_cfg);
- dsc->funcs->dsc_enable(dsc, pipe_ctx->stream_res.opp->inst);
- for (odm_pipe = pipe_ctx->next_odm_pipe; odm_pipe; odm_pipe = odm_pipe->next_odm_pipe) {
- struct display_stream_compressor *odm_dsc = odm_pipe->stream_res.dsc;
-
- odm_dsc->funcs->dsc_set_config(odm_dsc, &dsc_cfg, &dsc_optc_cfg);
- odm_dsc->funcs->dsc_enable(odm_dsc, odm_pipe->stream_res.opp->inst);
- }
- dsc_cfg.dc_dsc_cfg.num_slices_h *= opp_cnt;
- dsc_cfg.pic_width *= opp_cnt;
-
- optc_dsc_mode = dsc_optc_cfg.is_pixel_format_444 ? OPTC_DSC_ENABLED_444 : OPTC_DSC_ENABLED_NATIVE_SUBSAMPLED;
-
- /* Enable DSC in encoder */
- if (dc_is_dp_signal(stream->signal) && !IS_FPGA_MAXIMUS_DC(dc->ctx->dce_environment)
- && !is_dp_128b_132b_signal(pipe_ctx)) {
- DC_LOG_DSC("Setting stream encoder DSC config for engine %d:", (int)pipe_ctx->stream_res.stream_enc->id);
- dsc_optc_config_log(dsc, &dsc_optc_cfg);
- pipe_ctx->stream_res.stream_enc->funcs->dp_set_dsc_config(pipe_ctx->stream_res.stream_enc,
- optc_dsc_mode,
- dsc_optc_cfg.bytes_per_pixel,
- dsc_optc_cfg.slice_width);
-
- /* PPS SDP is set elsewhere because it has to be done after DIG FE is connected to DIG BE */
- }
-
- /* Enable DSC in OPTC */
- DC_LOG_DSC("Setting optc DSC config for tg instance %d:", pipe_ctx->stream_res.tg->inst);
- dsc_optc_config_log(dsc, &dsc_optc_cfg);
- pipe_ctx->stream_res.tg->funcs->set_dsc_config(pipe_ctx->stream_res.tg,
- optc_dsc_mode,
- dsc_optc_cfg.bytes_per_pixel,
- dsc_optc_cfg.slice_width);
- } else {
- /* disable DSC in OPTC */
- pipe_ctx->stream_res.tg->funcs->set_dsc_config(
- pipe_ctx->stream_res.tg,
- OPTC_DSC_DISABLED, 0, 0);
-
- /* disable DSC in stream encoder */
- if (dc_is_dp_signal(stream->signal)) {
- if (is_dp_128b_132b_signal(pipe_ctx))
- pipe_ctx->stream_res.hpo_dp_stream_enc->funcs->dp_set_dsc_pps_info_packet(
- pipe_ctx->stream_res.hpo_dp_stream_enc,
- false,
- NULL,
- true);
- else if (!IS_FPGA_MAXIMUS_DC(dc->ctx->dce_environment)) {
- pipe_ctx->stream_res.stream_enc->funcs->dp_set_dsc_config(
- pipe_ctx->stream_res.stream_enc,
- OPTC_DSC_DISABLED, 0, 0);
- pipe_ctx->stream_res.stream_enc->funcs->dp_set_dsc_pps_info_packet(
- pipe_ctx->stream_res.stream_enc, false, NULL, true);
- }
- }
-
- /* disable DSC block */
- pipe_ctx->stream_res.dsc->funcs->dsc_disable(pipe_ctx->stream_res.dsc);
- for (odm_pipe = pipe_ctx->next_odm_pipe; odm_pipe; odm_pipe = odm_pipe->next_odm_pipe)
- odm_pipe->stream_res.dsc->funcs->dsc_disable(odm_pipe->stream_res.dsc);
- }
-}
-
-bool dp_set_dsc_enable(struct pipe_ctx *pipe_ctx, bool enable)
-{
- struct display_stream_compressor *dsc = pipe_ctx->stream_res.dsc;
- bool result = false;
-
- if (!pipe_ctx->stream->timing.flags.DSC)
- goto out;
- if (!dsc)
- goto out;
-
- if (enable) {
- {
- dp_set_dsc_on_stream(pipe_ctx, true);
- result = true;
- }
- } else {
- dp_set_dsc_on_rx(pipe_ctx, false);
- dp_set_dsc_on_stream(pipe_ctx, false);
- result = true;
- }
-out:
- return result;
-}
-
-/*
- * For dynamic bpp change case, dsc is programmed with MASTER_UPDATE_LOCK enabled;
- * hence PPS info packet update need to use frame update instead of immediate update.
- * Added parameter immediate_update for this purpose.
- * The decision to use frame update is hard-coded in function dp_update_dsc_config(),
- * which is the only place where a "false" would be passed in for param immediate_update.
- *
- * immediate_update is only applicable when DSC is enabled.
- */
-bool dp_set_dsc_pps_sdp(struct pipe_ctx *pipe_ctx, bool enable, bool immediate_update)
-{
- struct display_stream_compressor *dsc = pipe_ctx->stream_res.dsc;
- struct dc_stream_state *stream = pipe_ctx->stream;
-
- if (!pipe_ctx->stream->timing.flags.DSC || !dsc)
- return false;
-
- if (enable) {
- struct dsc_config dsc_cfg;
- uint8_t dsc_packed_pps[128];
-
- memset(&dsc_cfg, 0, sizeof(dsc_cfg));
- memset(dsc_packed_pps, 0, 128);
-
- /* Enable DSC hw block */
- dsc_cfg.pic_width = stream->timing.h_addressable + stream->timing.h_border_left + stream->timing.h_border_right;
- dsc_cfg.pic_height = stream->timing.v_addressable + stream->timing.v_border_top + stream->timing.v_border_bottom;
- dsc_cfg.pixel_encoding = stream->timing.pixel_encoding;
- dsc_cfg.color_depth = stream->timing.display_color_depth;
- dsc_cfg.is_odm = pipe_ctx->next_odm_pipe ? true : false;
- dsc_cfg.dc_dsc_cfg = stream->timing.dsc_cfg;
-
- DC_LOG_DSC(" ");
- dsc->funcs->dsc_get_packed_pps(dsc, &dsc_cfg, &dsc_packed_pps[0]);
- memcpy(&stream->dsc_packed_pps[0], &dsc_packed_pps[0], sizeof(stream->dsc_packed_pps));
- if (dc_is_dp_signal(stream->signal)) {
- DC_LOG_DSC("Setting stream encoder DSC PPS SDP for engine %d\n", (int)pipe_ctx->stream_res.stream_enc->id);
- if (is_dp_128b_132b_signal(pipe_ctx))
- pipe_ctx->stream_res.hpo_dp_stream_enc->funcs->dp_set_dsc_pps_info_packet(
- pipe_ctx->stream_res.hpo_dp_stream_enc,
- true,
- &dsc_packed_pps[0],
- immediate_update);
- else
- pipe_ctx->stream_res.stream_enc->funcs->dp_set_dsc_pps_info_packet(
- pipe_ctx->stream_res.stream_enc,
- true,
- &dsc_packed_pps[0],
- immediate_update);
- }
- } else {
- /* disable DSC PPS in stream encoder */
- memset(&stream->dsc_packed_pps[0], 0, sizeof(stream->dsc_packed_pps));
- if (dc_is_dp_signal(stream->signal)) {
- if (is_dp_128b_132b_signal(pipe_ctx))
- pipe_ctx->stream_res.hpo_dp_stream_enc->funcs->dp_set_dsc_pps_info_packet(
- pipe_ctx->stream_res.hpo_dp_stream_enc,
- false,
- NULL,
- true);
- else
- pipe_ctx->stream_res.stream_enc->funcs->dp_set_dsc_pps_info_packet(
- pipe_ctx->stream_res.stream_enc, false, NULL, true);
- }
- }
-
- return true;
-}
-
-
-bool dp_update_dsc_config(struct pipe_ctx *pipe_ctx)
-{
- struct display_stream_compressor *dsc = pipe_ctx->stream_res.dsc;
-
- if (!pipe_ctx->stream->timing.flags.DSC)
- return false;
- if (!dsc)
- return false;
-
- dp_set_dsc_on_stream(pipe_ctx, true);
- dp_set_dsc_pps_sdp(pipe_ctx, true, false);
- return true;
-}
-
-#undef DC_LOGGER
-#define DC_LOGGER \
- link->ctx->logger
diff --git a/drivers/gpu/drm/amd/display/dc/core/dc_link_enc_cfg.c b/drivers/gpu/drm/amd/display/dc/core/dc_link_enc_cfg.c
index 614f022d1cff..30c0644d4418 100644
--- a/drivers/gpu/drm/amd/display/dc/core/dc_link_enc_cfg.c
+++ b/drivers/gpu/drm/amd/display/dc/core/dc_link_enc_cfg.c
@@ -24,7 +24,7 @@
#include "link_enc_cfg.h"
#include "resource.h"
-#include "dc_link_dp.h"
+#include "link.h"
#define DC_LOGGER dc->ctx->logger
@@ -48,7 +48,7 @@ static bool is_dig_link_enc_stream(struct dc_stream_state *stream)
/* DIGs do not support DP2.0 streams with 128b/132b encoding. */
struct dc_link_settings link_settings = {0};
- decide_link_settings(stream, &link_settings);
+ stream->ctx->dc->link_srv->dp_decide_link_settings(stream, &link_settings);
if ((link_settings.link_rate >= LINK_RATE_LOW) &&
link_settings.link_rate <= LINK_RATE_HIGH3) {
is_dig_stream = true;
@@ -305,15 +305,17 @@ void link_enc_cfg_link_encs_assign(
for (i = 0; i < stream_count; i++) {
struct dc_stream_state *stream = streams[i];
+ /* skip it if the link is mappable endpoint. */
+ if (stream->link->is_dig_mapping_flexible)
+ continue;
+
/* Skip stream if not supported by DIG link encoder. */
if (!is_dig_link_enc_stream(stream))
continue;
/* Physical endpoints have a fixed mapping to DIG link encoders. */
- if (!stream->link->is_dig_mapping_flexible) {
- eng_id = stream->link->eng_id;
- add_link_enc_assignment(state, stream, eng_id);
- }
+ eng_id = stream->link->eng_id;
+ add_link_enc_assignment(state, stream, eng_id);
}
/* (b) Retain previous assignments for mappable endpoints if encoders still available. */
@@ -325,11 +327,12 @@ void link_enc_cfg_link_encs_assign(
for (i = 0; i < stream_count; i++) {
struct dc_stream_state *stream = state->streams[i];
- /* Skip stream if not supported by DIG link encoder. */
- if (!is_dig_link_enc_stream(stream))
+ /* Skip it if the link is NOT mappable endpoint. */
+ if (!stream->link->is_dig_mapping_flexible)
continue;
- if (!stream->link->is_dig_mapping_flexible)
+ /* Skip stream if not supported by DIG link encoder. */
+ if (!is_dig_link_enc_stream(stream))
continue;
for (j = 0; j < prev_state->stream_count; j++) {
@@ -338,6 +341,7 @@ void link_enc_cfg_link_encs_assign(
if (stream == prev_stream && stream->link == prev_stream->link &&
prev_state->res_ctx.link_enc_cfg_ctx.link_enc_assignments[j].valid) {
eng_id = prev_state->res_ctx.link_enc_cfg_ctx.link_enc_assignments[j].eng_id;
+
if (is_avail_link_enc(state, eng_id, stream))
add_link_enc_assignment(state, stream, eng_id);
}
@@ -350,6 +354,15 @@ void link_enc_cfg_link_encs_assign(
for (i = 0; i < stream_count; i++) {
struct dc_stream_state *stream = streams[i];
+ struct link_encoder *link_enc = NULL;
+
+ /* Skip it if the link is NOT mappable endpoint. */
+ if (!stream->link->is_dig_mapping_flexible)
+ continue;
+
+ /* Skip if encoder assignment retained in step (b) above. */
+ if (stream->link_enc)
+ continue;
/* Skip stream if not supported by DIG link encoder. */
if (!is_dig_link_enc_stream(stream)) {
@@ -358,24 +371,18 @@ void link_enc_cfg_link_encs_assign(
}
/* Mappable endpoints have a flexible mapping to DIG link encoders. */
- if (stream->link->is_dig_mapping_flexible) {
- struct link_encoder *link_enc = NULL;
- /* Skip if encoder assignment retained in step (b) above. */
- if (stream->link_enc)
- continue;
+ /* For MST, multiple streams will share the same link / display
+ * endpoint. These streams should use the same link encoder
+ * assigned to that endpoint.
+ */
+ link_enc = get_link_enc_used_by_link(state, stream->link);
+ if (link_enc == NULL)
+ eng_id = find_first_avail_link_enc(stream->ctx, state);
+ else
+ eng_id = link_enc->preferred_engine;
- /* For MST, multiple streams will share the same link / display
- * endpoint. These streams should use the same link encoder
- * assigned to that endpoint.
- */
- link_enc = get_link_enc_used_by_link(state, stream->link);
- if (link_enc == NULL)
- eng_id = find_first_avail_link_enc(stream->ctx, state);
- else
- eng_id = link_enc->preferred_engine;
- add_link_enc_assignment(state, stream, eng_id);
- }
+ add_link_enc_assignment(state, stream, eng_id);
}
link_enc_cfg_validate(dc, state);
@@ -420,10 +427,6 @@ void link_enc_cfg_link_enc_unassign(
{
enum engine_id eng_id = ENGINE_ID_UNKNOWN;
- /* Only DIG link encoders. */
- if (!is_dig_link_enc_stream(stream))
- return;
-
if (stream->link_enc)
eng_id = stream->link_enc->preferred_engine;
@@ -619,7 +622,6 @@ bool link_enc_cfg_validate(struct dc *dc, struct dc_state *state)
int i, j;
uint8_t valid_count = 0;
uint8_t dig_stream_count = 0;
- int matching_stream_ptrs = 0;
int eng_ids_per_ep_id[MAX_PIPES] = {0};
int ep_ids_per_eng_id[MAX_PIPES] = {0};
int valid_bitmap = 0;
@@ -642,9 +644,7 @@ bool link_enc_cfg_validate(struct dc *dc, struct dc_state *state)
struct link_enc_assignment assignment = state->res_ctx.link_enc_cfg_ctx.link_enc_assignments[i];
if (assignment.valid) {
- if (assignment.stream == state->streams[i])
- matching_stream_ptrs++;
- else
+ if (assignment.stream != state->streams[i])
valid_stream_ptrs = false;
}
}
diff --git a/drivers/gpu/drm/amd/display/dc/core/dc_link_exports.c b/drivers/gpu/drm/amd/display/dc/core/dc_link_exports.c
new file mode 100644
index 000000000000..18e098568cb4
--- /dev/null
+++ b/drivers/gpu/drm/amd/display/dc/core/dc_link_exports.c
@@ -0,0 +1,480 @@
+/*
+ * Copyright 2023 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ * Authors: AMD
+ *
+ */
+
+/* FILE POLICY AND INTENDED USAGE:
+ * This file provides single entrance to link functionality declared in dc
+ * public headers. The file is intended to be used as a thin translation layer
+ * that directly calls link internal functions without adding new functional
+ * behavior.
+ *
+ * When exporting a new link related dc function, add function declaration in
+ * dc.h with detail interface documentation, then add function implementation
+ * in this file which calls link functions.
+ */
+#include "link.h"
+#include "dce/dce_i2c.h"
+struct dc_link *dc_get_link_at_index(struct dc *dc, uint32_t link_index)
+{
+ return dc->links[link_index];
+}
+
+void dc_get_edp_links(const struct dc *dc,
+ struct dc_link **edp_links,
+ int *edp_num)
+{
+ int i;
+
+ *edp_num = 0;
+ for (i = 0; i < dc->link_count; i++) {
+ // report any eDP links, even unconnected DDI's
+ if (!dc->links[i])
+ continue;
+ if (dc->links[i]->connector_signal == SIGNAL_TYPE_EDP) {
+ edp_links[*edp_num] = dc->links[i];
+ if (++(*edp_num) == MAX_NUM_EDP)
+ return;
+ }
+ }
+}
+
+bool dc_get_edp_link_panel_inst(const struct dc *dc,
+ const struct dc_link *link,
+ unsigned int *inst_out)
+{
+ struct dc_link *edp_links[MAX_NUM_EDP];
+ int edp_num, i;
+
+ *inst_out = 0;
+ if (link->connector_signal != SIGNAL_TYPE_EDP)
+ return false;
+ dc_get_edp_links(dc, edp_links, &edp_num);
+ for (i = 0; i < edp_num; i++) {
+ if (link == edp_links[i])
+ break;
+ (*inst_out)++;
+ }
+ return true;
+}
+
+bool dc_link_detect(struct dc_link *link, enum dc_detect_reason reason)
+{
+ return link->dc->link_srv->detect_link(link, reason);
+}
+
+bool dc_link_detect_connection_type(struct dc_link *link,
+ enum dc_connection_type *type)
+{
+ return link->dc->link_srv->detect_connection_type(link, type);
+}
+
+const struct dc_link_status *dc_link_get_status(const struct dc_link *link)
+{
+ return link->dc->link_srv->get_status(link);
+}
+
+/* return true if the connected receiver supports the hdcp version */
+bool dc_link_is_hdcp14(struct dc_link *link, enum signal_type signal)
+{
+ return link->dc->link_srv->is_hdcp1x_supported(link, signal);
+}
+
+bool dc_link_is_hdcp22(struct dc_link *link, enum signal_type signal)
+{
+ return link->dc->link_srv->is_hdcp2x_supported(link, signal);
+}
+
+void dc_link_clear_dprx_states(struct dc_link *link)
+{
+ link->dc->link_srv->clear_dprx_states(link);
+}
+
+bool dc_link_reset_cur_dp_mst_topology(struct dc_link *link)
+{
+ return link->dc->link_srv->reset_cur_dp_mst_topology(link);
+}
+
+uint32_t dc_link_bandwidth_kbps(
+ const struct dc_link *link,
+ const struct dc_link_settings *link_settings)
+{
+ return link->dc->link_srv->dp_link_bandwidth_kbps(link, link_settings);
+}
+
+void dc_get_cur_link_res_map(const struct dc *dc, uint32_t *map)
+{
+ dc->link_srv->get_cur_res_map(dc, map);
+}
+
+void dc_restore_link_res_map(const struct dc *dc, uint32_t *map)
+{
+ dc->link_srv->restore_res_map(dc, map);
+}
+
+bool dc_link_update_dsc_config(struct pipe_ctx *pipe_ctx)
+{
+ struct dc_link *link = pipe_ctx->stream->link;
+
+ return link->dc->link_srv->update_dsc_config(pipe_ctx);
+}
+
+bool dc_is_oem_i2c_device_present(
+ struct dc *dc,
+ size_t slave_address)
+{
+ if (dc->res_pool->oem_device)
+ return dce_i2c_oem_device_present(
+ dc->res_pool,
+ dc->res_pool->oem_device,
+ slave_address);
+
+ return false;
+}
+
+bool dc_submit_i2c(
+ struct dc *dc,
+ uint32_t link_index,
+ struct i2c_command *cmd)
+{
+
+ struct dc_link *link = dc->links[link_index];
+ struct ddc_service *ddc = link->ddc;
+
+ return dce_i2c_submit_command(
+ dc->res_pool,
+ ddc->ddc_pin,
+ cmd);
+}
+
+bool dc_submit_i2c_oem(
+ struct dc *dc,
+ struct i2c_command *cmd)
+{
+ struct ddc_service *ddc = dc->res_pool->oem_device;
+
+ if (ddc)
+ return dce_i2c_submit_command(
+ dc->res_pool,
+ ddc->ddc_pin,
+ cmd);
+
+ return false;
+}
+
+void dc_link_dp_handle_automated_test(struct dc_link *link)
+{
+ link->dc->link_srv->dp_handle_automated_test(link);
+}
+
+bool dc_link_dp_set_test_pattern(
+ struct dc_link *link,
+ enum dp_test_pattern test_pattern,
+ enum dp_test_pattern_color_space test_pattern_color_space,
+ const struct link_training_settings *p_link_settings,
+ const unsigned char *p_custom_pattern,
+ unsigned int cust_pattern_size)
+{
+ return link->dc->link_srv->dp_set_test_pattern(link, test_pattern,
+ test_pattern_color_space, p_link_settings,
+ p_custom_pattern, cust_pattern_size);
+}
+
+void dc_link_set_drive_settings(struct dc *dc,
+ struct link_training_settings *lt_settings,
+ struct dc_link *link)
+{
+ struct link_resource link_res;
+
+ dc->link_srv->get_cur_link_res(link, &link_res);
+ dc->link_srv->dp_set_drive_settings(link, &link_res, lt_settings);
+}
+
+void dc_link_set_preferred_link_settings(struct dc *dc,
+ struct dc_link_settings *link_setting,
+ struct dc_link *link)
+{
+ dc->link_srv->dp_set_preferred_link_settings(dc, link_setting, link);
+}
+
+void dc_link_set_preferred_training_settings(struct dc *dc,
+ struct dc_link_settings *link_setting,
+ struct dc_link_training_overrides *lt_overrides,
+ struct dc_link *link,
+ bool skip_immediate_retrain)
+{
+ dc->link_srv->dp_set_preferred_training_settings(dc, link_setting,
+ lt_overrides, link, skip_immediate_retrain);
+}
+
+bool dc_dp_trace_is_initialized(struct dc_link *link)
+{
+ return link->dc->link_srv->dp_trace_is_initialized(link);
+}
+
+void dc_dp_trace_set_is_logged_flag(struct dc_link *link,
+ bool in_detection,
+ bool is_logged)
+{
+ link->dc->link_srv->dp_trace_set_is_logged_flag(link, in_detection, is_logged);
+}
+
+bool dc_dp_trace_is_logged(struct dc_link *link, bool in_detection)
+{
+ return link->dc->link_srv->dp_trace_is_logged(link, in_detection);
+}
+
+unsigned long long dc_dp_trace_get_lt_end_timestamp(struct dc_link *link,
+ bool in_detection)
+{
+ return link->dc->link_srv->dp_trace_get_lt_end_timestamp(link, in_detection);
+}
+
+const struct dp_trace_lt_counts *dc_dp_trace_get_lt_counts(struct dc_link *link,
+ bool in_detection)
+{
+ return link->dc->link_srv->dp_trace_get_lt_counts(link, in_detection);
+}
+
+unsigned int dc_dp_trace_get_link_loss_count(struct dc_link *link)
+{
+ return link->dc->link_srv->dp_trace_get_link_loss_count(link);
+}
+
+struct dc_sink *dc_link_add_remote_sink(
+ struct dc_link *link,
+ const uint8_t *edid,
+ int len,
+ struct dc_sink_init_data *init_data)
+{
+ return link->dc->link_srv->add_remote_sink(link, edid, len, init_data);
+}
+
+void dc_link_remove_remote_sink(struct dc_link *link, struct dc_sink *sink)
+{
+ link->dc->link_srv->remove_remote_sink(link, sink);
+}
+
+int dc_link_aux_transfer_raw(struct ddc_service *ddc,
+ struct aux_payload *payload,
+ enum aux_return_code_type *operation_result)
+{
+ const struct dc *dc = ddc->link->dc;
+
+ return dc->link_srv->aux_transfer_raw(
+ ddc, payload, operation_result);
+}
+
+uint32_t dc_link_bw_kbps_from_raw_frl_link_rate_data(const struct dc *dc, uint8_t bw)
+{
+ return dc->link_srv->bw_kbps_from_raw_frl_link_rate_data(bw);
+}
+
+bool dc_link_decide_edp_link_settings(struct dc_link *link,
+ struct dc_link_settings *link_setting, uint32_t req_bw)
+{
+ return link->dc->link_srv->edp_decide_link_settings(link, link_setting, req_bw);
+}
+
+
+bool dc_link_dp_get_max_link_enc_cap(const struct dc_link *link,
+ struct dc_link_settings *max_link_enc_cap)
+{
+ return link->dc->link_srv->dp_get_max_link_enc_cap(link, max_link_enc_cap);
+}
+
+enum dp_link_encoding dc_link_dp_mst_decide_link_encoding_format(
+ const struct dc_link *link)
+{
+ return link->dc->link_srv->mst_decide_link_encoding_format(link);
+}
+
+const struct dc_link_settings *dc_link_get_link_cap(const struct dc_link *link)
+{
+ return link->dc->link_srv->dp_get_verified_link_cap(link);
+}
+
+bool dc_link_is_dp_sink_present(struct dc_link *link)
+{
+ return link->dc->link_srv->dp_is_sink_present(link);
+}
+
+bool dc_link_is_fec_supported(const struct dc_link *link)
+{
+ return link->dc->link_srv->dp_is_fec_supported(link);
+}
+
+void dc_link_overwrite_extended_receiver_cap(
+ struct dc_link *link)
+{
+ link->dc->link_srv->dp_overwrite_extended_receiver_cap(link);
+}
+
+bool dc_link_should_enable_fec(const struct dc_link *link)
+{
+ return link->dc->link_srv->dp_should_enable_fec(link);
+}
+
+int dc_link_dp_dpia_handle_usb4_bandwidth_allocation_for_link(
+ struct dc_link *link, int peak_bw)
+{
+ return link->dc->link_srv->dpia_handle_usb4_bandwidth_allocation_for_link(link, peak_bw);
+}
+
+void dc_link_handle_usb4_bw_alloc_response(struct dc_link *link, uint8_t bw, uint8_t result)
+{
+ link->dc->link_srv->dpia_handle_bw_alloc_response(link, bw, result);
+}
+
+bool dc_link_check_link_loss_status(
+ struct dc_link *link,
+ union hpd_irq_data *hpd_irq_dpcd_data)
+{
+ return link->dc->link_srv->dp_parse_link_loss_status(link, hpd_irq_dpcd_data);
+}
+
+bool dc_link_dp_allow_hpd_rx_irq(const struct dc_link *link)
+{
+ return link->dc->link_srv->dp_should_allow_hpd_rx_irq(link);
+}
+
+void dc_link_dp_handle_link_loss(struct dc_link *link)
+{
+ link->dc->link_srv->dp_handle_link_loss(link);
+}
+
+enum dc_status dc_link_dp_read_hpd_rx_irq_data(
+ struct dc_link *link,
+ union hpd_irq_data *irq_data)
+{
+ return link->dc->link_srv->dp_read_hpd_rx_irq_data(link, irq_data);
+}
+
+bool dc_link_handle_hpd_rx_irq(struct dc_link *link,
+ union hpd_irq_data *out_hpd_irq_dpcd_data, bool *out_link_loss,
+ bool defer_handling, bool *has_left_work)
+{
+ return link->dc->link_srv->dp_handle_hpd_rx_irq(link, out_hpd_irq_dpcd_data,
+ out_link_loss, defer_handling, has_left_work);
+}
+
+void dc_link_dp_receiver_power_ctrl(struct dc_link *link, bool on)
+{
+ link->dc->link_srv->dpcd_write_rx_power_ctrl(link, on);
+}
+
+enum lttpr_mode dc_link_decide_lttpr_mode(struct dc_link *link,
+ struct dc_link_settings *link_setting)
+{
+ return link->dc->link_srv->dp_decide_lttpr_mode(link, link_setting);
+}
+
+void dc_link_edp_panel_backlight_power_on(struct dc_link *link, bool wait_for_hpd)
+{
+ link->dc->link_srv->edp_panel_backlight_power_on(link, wait_for_hpd);
+}
+
+int dc_link_get_backlight_level(const struct dc_link *link)
+{
+ return link->dc->link_srv->edp_get_backlight_level(link);
+}
+
+bool dc_link_get_backlight_level_nits(struct dc_link *link,
+ uint32_t *backlight_millinits_avg,
+ uint32_t *backlight_millinits_peak)
+{
+ return link->dc->link_srv->edp_get_backlight_level_nits(link,
+ backlight_millinits_avg,
+ backlight_millinits_peak);
+}
+
+bool dc_link_set_backlight_level(const struct dc_link *link,
+ uint32_t backlight_pwm_u16_16,
+ uint32_t frame_ramp)
+{
+ return link->dc->link_srv->edp_set_backlight_level(link,
+ backlight_pwm_u16_16, frame_ramp);
+}
+
+bool dc_link_set_backlight_level_nits(struct dc_link *link,
+ bool isHDR,
+ uint32_t backlight_millinits,
+ uint32_t transition_time_in_ms)
+{
+ return link->dc->link_srv->edp_set_backlight_level_nits(link, isHDR,
+ backlight_millinits, transition_time_in_ms);
+}
+
+int dc_link_get_target_backlight_pwm(const struct dc_link *link)
+{
+ return link->dc->link_srv->edp_get_target_backlight_pwm(link);
+}
+
+bool dc_link_get_psr_state(const struct dc_link *link, enum dc_psr_state *state)
+{
+ return link->dc->link_srv->edp_get_psr_state(link, state);
+}
+
+bool dc_link_set_psr_allow_active(struct dc_link *link, const bool *allow_active,
+ bool wait, bool force_static, const unsigned int *power_opts)
+{
+ return link->dc->link_srv->edp_set_psr_allow_active(link, allow_active, wait,
+ force_static, power_opts);
+}
+
+bool dc_link_setup_psr(struct dc_link *link,
+ const struct dc_stream_state *stream, struct psr_config *psr_config,
+ struct psr_context *psr_context)
+{
+ return link->dc->link_srv->edp_setup_psr(link, stream, psr_config, psr_context);
+}
+
+bool dc_link_wait_for_t12(struct dc_link *link)
+{
+ return link->dc->link_srv->edp_wait_for_t12(link);
+}
+
+bool dc_link_get_hpd_state(struct dc_link *link)
+{
+ return link->dc->link_srv->get_hpd_state(link);
+}
+
+void dc_link_enable_hpd(const struct dc_link *link)
+{
+ link->dc->link_srv->enable_hpd(link);
+}
+
+void dc_link_disable_hpd(const struct dc_link *link)
+{
+ link->dc->link_srv->disable_hpd(link);
+}
+
+void dc_link_enable_hpd_filter(struct dc_link *link, bool enable)
+{
+ link->dc->link_srv->enable_hpd_filter(link, enable);
+}
+
+bool dc_link_validate(struct dc *dc, const struct dc_stream_state *streams, const unsigned int count)
+{
+ return dc->link_srv->validate_dpia_bandwidth(streams, count);
+}
diff --git a/drivers/gpu/drm/amd/display/dc/core/dc_resource.c b/drivers/gpu/drm/amd/display/dc/core/dc_resource.c
index fd8db482e56f..117d80cb36fb 100644
--- a/drivers/gpu/drm/amd/display/dc/core/dc_resource.c
+++ b/drivers/gpu/drm/amd/display/dc/core/dc_resource.c
@@ -40,11 +40,11 @@
#include "virtual/virtual_stream_encoder.h"
#include "dpcd_defs.h"
#include "link_enc_cfg.h"
-#include "dc_link_dp.h"
+#include "link.h"
#include "virtual/virtual_link_hwss.h"
-#include "link/link_hwss_dio.h"
-#include "link/link_hwss_dpia.h"
-#include "link/link_hwss_hpo_dp.h"
+#include "link/hwss/link_hwss_dio.h"
+#include "link/hwss/link_hwss_dpia.h"
+#include "link/hwss/link_hwss_hpo_dp.h"
#if defined(CONFIG_DRM_AMD_DC_SI)
#include "dce60/dce60_resource.h"
@@ -232,7 +232,7 @@ struct resource_pool *dc_create_resource_pool(struct dc *dc,
init_data->num_virtual_links, dc);
break;
-#if defined(CONFIG_DRM_AMD_DC_DCN)
+#if defined(CONFIG_DRM_AMD_DC_FP)
case DCN_VERSION_1_0:
case DCN_VERSION_1_01:
res_pool = dcn10_create_resource_pool(init_data, dc);
@@ -276,7 +276,7 @@ struct resource_pool *dc_create_resource_pool(struct dc *dc,
case DCN_VERSION_3_21:
res_pool = dcn321_create_resource_pool(init_data, dc);
break;
-#endif
+#endif /* CONFIG_DRM_AMD_DC_FP */
default:
break;
}
@@ -1707,6 +1707,9 @@ bool dc_remove_plane_from_context(
struct dc_stream_status *stream_status = NULL;
struct resource_pool *pool = dc->res_pool;
+ if (!plane_state)
+ return true;
+
for (i = 0; i < context->stream_count; i++)
if (context->streams[i] == stream) {
stream_status = &context->stream_status[i];
@@ -1768,6 +1771,17 @@ bool dc_remove_plane_from_context(
return true;
}
+/**
+ * dc_rem_all_planes_for_stream - Remove planes attached to the target stream.
+ *
+ * @dc: Current dc state.
+ * @stream: Target stream, which we want to remove the attached plans.
+ * @context: New context.
+ *
+ * Return:
+ * Return true if DC was able to remove all planes from the target
+ * stream, otherwise, return false.
+ */
bool dc_rem_all_planes_for_stream(
const struct dc *dc,
struct dc_stream_state *stream,
@@ -2202,7 +2216,7 @@ enum dc_status dc_remove_stream_from_ctx(
del_pipe->stream_res.stream_enc,
false);
- if (is_dp_128b_132b_signal(del_pipe)) {
+ if (dc->link_srv->dp_is_128b_132b_signal(del_pipe)) {
update_hpo_dp_stream_engine_usage(
&new_ctx->res_ctx, dc->res_pool,
del_pipe->stream_res.hpo_dp_stream_enc,
@@ -2502,9 +2516,10 @@ enum dc_status resource_map_pool_resources(
* and link settings
*/
if (dc_is_dp_signal(stream->signal)) {
- if (!decide_link_settings(stream, &pipe_ctx->link_config.dp_link_settings))
+ if (!dc->link_srv->dp_decide_link_settings(stream, &pipe_ctx->link_config.dp_link_settings))
return DC_FAIL_DP_LINK_BANDWIDTH;
- if (dp_get_link_encoding_format(&pipe_ctx->link_config.dp_link_settings) == DP_128b_132b_ENCODING) {
+ if (dc->link_srv->dp_get_encoding_format(
+ &pipe_ctx->link_config.dp_link_settings) == DP_128b_132b_ENCODING) {
pipe_ctx->stream_res.hpo_dp_stream_enc =
find_first_free_match_hpo_dp_stream_enc_for_link(
&context->res_ctx, pool, stream);
@@ -2562,9 +2577,12 @@ enum dc_status resource_map_pool_resources(
/**
* dc_resource_state_copy_construct_current() - Creates a new dc_state from existing state
- * Is a shallow copy. Increments refcounts on existing streams and planes.
+ *
* @dc: copy out of dc->current_state
* @dst_ctx: copy into this
+ *
+ * This function makes a shallow copy of the current DC state and increments
+ * refcounts on existing streams and planes.
*/
void dc_resource_state_copy_construct_current(
const struct dc *dc,
@@ -2593,15 +2611,241 @@ bool dc_resource_is_dsc_encoding_supported(const struct dc *dc)
return dc->res_pool->res_cap->num_dsc > 0;
}
+static bool planes_changed_for_existing_stream(struct dc_state *context,
+ struct dc_stream_state *stream,
+ const struct dc_validation_set set[],
+ int set_count)
+{
+ int i, j;
+ struct dc_stream_status *stream_status = NULL;
+
+ for (i = 0; i < context->stream_count; i++) {
+ if (context->streams[i] == stream) {
+ stream_status = &context->stream_status[i];
+ break;
+ }
+ }
+
+ if (!stream_status)
+ ASSERT(0);
+
+ for (i = 0; i < set_count; i++)
+ if (set[i].stream == stream)
+ break;
+
+ if (i == set_count)
+ ASSERT(0);
+
+ if (set[i].plane_count != stream_status->plane_count)
+ return true;
+
+ for (j = 0; j < set[i].plane_count; j++)
+ if (set[i].plane_states[j] != stream_status->plane_states[j])
+ return true;
+
+ return false;
+}
+
+/**
+ * dc_validate_with_context - Validate and update the potential new stream in the context object
+ *
+ * @dc: Used to get the current state status
+ * @set: An array of dc_validation_set with all the current streams reference
+ * @set_count: Total of streams
+ * @context: New context
+ * @fast_validate: Enable or disable fast validation
+ *
+ * This function updates the potential new stream in the context object. It
+ * creates multiple lists for the add, remove, and unchanged streams. In
+ * particular, if the unchanged streams have a plane that changed, it is
+ * necessary to remove all planes from the unchanged streams. In summary, this
+ * function is responsible for validating the new context.
+ *
+ * Return:
+ * In case of success, return DC_OK (1), otherwise, return a DC error.
+ */
+enum dc_status dc_validate_with_context(struct dc *dc,
+ const struct dc_validation_set set[],
+ int set_count,
+ struct dc_state *context,
+ bool fast_validate)
+{
+ struct dc_stream_state *unchanged_streams[MAX_PIPES] = { 0 };
+ struct dc_stream_state *del_streams[MAX_PIPES] = { 0 };
+ struct dc_stream_state *add_streams[MAX_PIPES] = { 0 };
+ int old_stream_count = context->stream_count;
+ enum dc_status res = DC_ERROR_UNEXPECTED;
+ int unchanged_streams_count = 0;
+ int del_streams_count = 0;
+ int add_streams_count = 0;
+ bool found = false;
+ int i, j, k;
+
+ DC_LOGGER_INIT(dc->ctx->logger);
+
+ /* First build a list of streams to be remove from current context */
+ for (i = 0; i < old_stream_count; i++) {
+ struct dc_stream_state *stream = context->streams[i];
+
+ for (j = 0; j < set_count; j++) {
+ if (stream == set[j].stream) {
+ found = true;
+ break;
+ }
+ }
+
+ if (!found)
+ del_streams[del_streams_count++] = stream;
+
+ found = false;
+ }
+
+ /* Second, build a list of new streams */
+ for (i = 0; i < set_count; i++) {
+ struct dc_stream_state *stream = set[i].stream;
+
+ for (j = 0; j < old_stream_count; j++) {
+ if (stream == context->streams[j]) {
+ found = true;
+ break;
+ }
+ }
+
+ if (!found)
+ add_streams[add_streams_count++] = stream;
+
+ found = false;
+ }
+
+ /* Build a list of unchanged streams which is necessary for handling
+ * planes change such as added, removed, and updated.
+ */
+ for (i = 0; i < set_count; i++) {
+ /* Check if stream is part of the delete list */
+ for (j = 0; j < del_streams_count; j++) {
+ if (set[i].stream == del_streams[j]) {
+ found = true;
+ break;
+ }
+ }
+
+ if (!found) {
+ /* Check if stream is part of the add list */
+ for (j = 0; j < add_streams_count; j++) {
+ if (set[i].stream == add_streams[j]) {
+ found = true;
+ break;
+ }
+ }
+ }
+
+ if (!found)
+ unchanged_streams[unchanged_streams_count++] = set[i].stream;
+
+ found = false;
+ }
+
+ /* Remove all planes for unchanged streams if planes changed */
+ for (i = 0; i < unchanged_streams_count; i++) {
+ if (planes_changed_for_existing_stream(context,
+ unchanged_streams[i],
+ set,
+ set_count)) {
+ if (!dc_rem_all_planes_for_stream(dc,
+ unchanged_streams[i],
+ context)) {
+ res = DC_FAIL_DETACH_SURFACES;
+ goto fail;
+ }
+ }
+ }
+
+ /* Remove all planes for removed streams and then remove the streams */
+ for (i = 0; i < del_streams_count; i++) {
+ /* Need to cpy the dwb data from the old stream in order to efc to work */
+ if (del_streams[i]->num_wb_info > 0) {
+ for (j = 0; j < add_streams_count; j++) {
+ if (del_streams[i]->sink == add_streams[j]->sink) {
+ add_streams[j]->num_wb_info = del_streams[i]->num_wb_info;
+ for (k = 0; k < del_streams[i]->num_wb_info; k++)
+ add_streams[j]->writeback_info[k] = del_streams[i]->writeback_info[k];
+ }
+ }
+ }
+
+ if (!dc_rem_all_planes_for_stream(dc, del_streams[i], context)) {
+ res = DC_FAIL_DETACH_SURFACES;
+ goto fail;
+ }
+
+ res = dc_remove_stream_from_ctx(dc, context, del_streams[i]);
+ if (res != DC_OK)
+ goto fail;
+ }
+
+ /* Swap seamless boot stream to pipe 0 (if needed) to ensure pipe_ctx
+ * matches. This may change in the future if seamless_boot_stream can be
+ * multiple.
+ */
+ for (i = 0; i < add_streams_count; i++) {
+ mark_seamless_boot_stream(dc, add_streams[i]);
+ if (add_streams[i]->apply_seamless_boot_optimization && i != 0) {
+ struct dc_stream_state *temp = add_streams[0];
+
+ add_streams[0] = add_streams[i];
+ add_streams[i] = temp;
+ break;
+ }
+ }
+
+ /* Add new streams and then add all planes for the new stream */
+ for (i = 0; i < add_streams_count; i++) {
+ calculate_phy_pix_clks(add_streams[i]);
+ res = dc_add_stream_to_ctx(dc, context, add_streams[i]);
+ if (res != DC_OK)
+ goto fail;
+
+ if (!add_all_planes_for_stream(dc, add_streams[i], set, set_count, context)) {
+ res = DC_FAIL_ATTACH_SURFACES;
+ goto fail;
+ }
+ }
+
+ /* Add all planes for unchanged streams if planes changed */
+ for (i = 0; i < unchanged_streams_count; i++) {
+ if (planes_changed_for_existing_stream(context,
+ unchanged_streams[i],
+ set,
+ set_count)) {
+ if (!add_all_planes_for_stream(dc, unchanged_streams[i], set, set_count, context)) {
+ res = DC_FAIL_ATTACH_SURFACES;
+ goto fail;
+ }
+ }
+ }
+
+ res = dc_validate_global_state(dc, context, fast_validate);
+
+fail:
+ if (res != DC_OK)
+ DC_LOG_WARNING("%s:resource validation failed, dc_status:%d\n",
+ __func__,
+ res);
+
+ return res;
+}
/**
- * dc_validate_global_state() - Determine if HW can support a given state
- * Checks HW resource availability and bandwidth requirement.
+ * dc_validate_global_state() - Determine if hardware can support a given state
+ *
* @dc: dc struct for this driver
* @new_ctx: state to be validated
* @fast_validate: set to true if only yes/no to support matters
*
- * Return: DC_OK if the result can be programmed. Otherwise, an error code.
+ * Checks hardware resource availability and bandwidth requirement.
+ *
+ * Return:
+ * DC_OK if the result can be programmed. Otherwise, an error code.
*/
enum dc_status dc_validate_global_state(
struct dc *dc,
@@ -2789,6 +3033,12 @@ static void set_avi_info_frame(
hdmi_info.bits.C0_C1 = COLORIMETRY_EXTENDED;
}
+ if (pixel_encoding && color_space == COLOR_SPACE_2020_YCBCR &&
+ stream->out_transfer_func->tf == TRANSFER_FUNCTION_GAMMA22) {
+ hdmi_info.bits.EC0_EC2 = 0;
+ hdmi_info.bits.C0_C1 = COLORIMETRY_ITU709;
+ }
+
/* TODO: un-hardcode aspect ratio */
aspect = stream->timing.aspect_ratio;
@@ -3023,6 +3273,50 @@ static void set_hfvs_info_packet(
*info_packet = stream->hfvsif_infopacket;
}
+static void adaptive_sync_override_dp_info_packets_sdp_line_num(
+ const struct dc_crtc_timing *timing,
+ struct enc_sdp_line_num *sdp_line_num,
+ struct _vcs_dpi_display_pipe_dest_params_st *pipe_dlg_param)
+{
+ uint32_t asic_blank_start = 0;
+ uint32_t asic_blank_end = 0;
+ uint32_t v_update = 0;
+
+ const struct dc_crtc_timing *tg = timing;
+
+ /* blank_start = frame end - front porch */
+ asic_blank_start = tg->v_total - tg->v_front_porch;
+
+ /* blank_end = blank_start - active */
+ asic_blank_end = (asic_blank_start - tg->v_border_bottom -
+ tg->v_addressable - tg->v_border_top);
+
+ if (pipe_dlg_param->vstartup_start > asic_blank_end) {
+ v_update = (tg->v_total - (pipe_dlg_param->vstartup_start - asic_blank_end));
+ sdp_line_num->adaptive_sync_line_num_valid = true;
+ sdp_line_num->adaptive_sync_line_num = (tg->v_total - v_update - 1);
+ } else {
+ sdp_line_num->adaptive_sync_line_num_valid = false;
+ sdp_line_num->adaptive_sync_line_num = 0;
+ }
+}
+
+static void set_adaptive_sync_info_packet(
+ struct dc_info_packet *info_packet,
+ const struct dc_stream_state *stream,
+ struct encoder_info_frame *info_frame,
+ struct _vcs_dpi_display_pipe_dest_params_st *pipe_dlg_param)
+{
+ if (!stream->adaptive_sync_infopacket.valid)
+ return;
+
+ adaptive_sync_override_dp_info_packets_sdp_line_num(
+ &stream->timing,
+ &info_frame->sdp_line_num,
+ pipe_dlg_param);
+
+ *info_packet = stream->adaptive_sync_infopacket;
+}
static void set_vtem_info_packet(
struct dc_info_packet *info_packet,
@@ -3115,6 +3409,7 @@ void resource_build_info_frame(struct pipe_ctx *pipe_ctx)
info->vsc.valid = false;
info->hfvsif.valid = false;
info->vtem.valid = false;
+ info->adaptive_sync.valid = false;
signal = pipe_ctx->stream->signal;
/* HDMi and DP have different info packets*/
@@ -3135,6 +3430,10 @@ void resource_build_info_frame(struct pipe_ctx *pipe_ctx)
set_spd_info_packet(&info->spd, pipe_ctx->stream);
set_hdr_static_info_packet(&info->hdrsmd, pipe_ctx->stream);
+ set_adaptive_sync_info_packet(&info->adaptive_sync,
+ pipe_ctx->stream,
+ info,
+ &pipe_ctx->pipe_dlg_param);
}
patch_gamut_packet_checksum(&info->gamut);
@@ -3390,7 +3689,7 @@ enum dc_status dc_validate_stream(struct dc *dc, struct dc_stream_state *stream)
/* TODO: validate audio ASIC caps, encoder */
if (res == DC_OK)
- res = dc_link_validate_mode_timing(stream,
+ res = dc->link_srv->validate_mode_timing(stream,
link,
&stream->timing);
@@ -3517,7 +3816,7 @@ bool get_temp_dp_link_res(struct dc_link *link,
memset(link_res, 0, sizeof(*link_res));
- if (dp_get_link_encoding_format(link_settings) == DP_128b_132b_ENCODING) {
+ if (dc->link_srv->dp_get_encoding_format(link_settings) == DP_128b_132b_ENCODING) {
link_res->hpo_dp_link_enc = get_temp_hpo_dp_link_enc(res_ctx,
dc->res_pool, link);
if (!link_res->hpo_dp_link_enc)
@@ -3574,9 +3873,20 @@ void check_syncd_pipes_for_disabled_master_pipe(struct dc *dc,
pipe_ctx_check = &context->res_ctx.pipe_ctx[i];
if ((GET_PIPE_SYNCD_FROM_PIPE(pipe_ctx_check) == disabled_master_pipe_idx) &&
- IS_PIPE_SYNCD_VALID(pipe_ctx_check) && (i != disabled_master_pipe_idx))
+ IS_PIPE_SYNCD_VALID(pipe_ctx_check) && (i != disabled_master_pipe_idx)) {
+ struct pipe_ctx *first_pipe = pipe_ctx_check;
+
+ while (first_pipe->prev_odm_pipe)
+ first_pipe = first_pipe->prev_odm_pipe;
+ /* When ODM combine is enabled, this case is expected. If the disabled pipe
+ * is part of the ODM tree, then we should not print an error.
+ * */
+ if (first_pipe->pipe_idx == disabled_master_pipe_idx)
+ continue;
+
DC_ERR("DC: Failure: pipe_idx[%d] syncd with disabled master pipe_idx[%d]\n",
- i, disabled_master_pipe_idx);
+ i, disabled_master_pipe_idx);
+ }
}
}
@@ -3721,17 +4031,56 @@ bool dc_resource_acquire_secondary_pipe_for_mpc_odm(
else
sec_pipe->stream_res.opp = sec_pipe->top_pipe->stream_res.opp;
if (sec_pipe->stream->timing.flags.DSC == 1) {
-#if defined(CONFIG_DRM_AMD_DC_DCN)
+#if defined(CONFIG_DRM_AMD_DC_FP)
dcn20_acquire_dsc(dc, &state->res_ctx, &sec_pipe->stream_res.dsc, pipe_idx);
#endif
ASSERT(sec_pipe->stream_res.dsc);
if (sec_pipe->stream_res.dsc == NULL)
return false;
}
-#if defined(CONFIG_DRM_AMD_DC_DCN)
+#if defined(CONFIG_DRM_AMD_DC_FP)
dcn20_build_mapped_resource(dc, state, sec_pipe->stream);
#endif
}
return true;
-} \ No newline at end of file
+}
+
+enum dc_status update_dp_encoder_resources_for_test_harness(const struct dc *dc,
+ struct dc_state *context,
+ struct pipe_ctx *pipe_ctx)
+{
+ if (dc->link_srv->dp_get_encoding_format(&pipe_ctx->link_config.dp_link_settings) == DP_128b_132b_ENCODING) {
+ if (pipe_ctx->stream_res.hpo_dp_stream_enc == NULL) {
+ pipe_ctx->stream_res.hpo_dp_stream_enc =
+ find_first_free_match_hpo_dp_stream_enc_for_link(
+ &context->res_ctx, dc->res_pool, pipe_ctx->stream);
+
+ if (!pipe_ctx->stream_res.hpo_dp_stream_enc)
+ return DC_NO_STREAM_ENC_RESOURCE;
+
+ update_hpo_dp_stream_engine_usage(
+ &context->res_ctx, dc->res_pool,
+ pipe_ctx->stream_res.hpo_dp_stream_enc,
+ true);
+ }
+
+ if (pipe_ctx->link_res.hpo_dp_link_enc == NULL) {
+ if (!add_hpo_dp_link_enc_to_ctx(&context->res_ctx, dc->res_pool, pipe_ctx, pipe_ctx->stream))
+ return DC_NO_LINK_ENC_RESOURCE;
+ }
+ } else {
+ if (pipe_ctx->stream_res.hpo_dp_stream_enc) {
+ update_hpo_dp_stream_engine_usage(
+ &context->res_ctx, dc->res_pool,
+ pipe_ctx->stream_res.hpo_dp_stream_enc,
+ false);
+ pipe_ctx->stream_res.hpo_dp_stream_enc = NULL;
+ }
+ if (pipe_ctx->link_res.hpo_dp_link_enc)
+ remove_hpo_dp_link_enc_from_ctx(&context->res_ctx, pipe_ctx, pipe_ctx->stream);
+ }
+
+ return DC_OK;
+}
+
diff --git a/drivers/gpu/drm/amd/display/dc/core/dc_stat.c b/drivers/gpu/drm/amd/display/dc/core/dc_stat.c
index 4b372aa52801..5f6392ae31a6 100644
--- a/drivers/gpu/drm/amd/display/dc/core/dc_stat.c
+++ b/drivers/gpu/drm/amd/display/dc/core/dc_stat.c
@@ -35,19 +35,15 @@
*/
/**
- *****************************************************************************
- * Function: dc_stat_get_dmub_notification
+ * dc_stat_get_dmub_notification
*
- * @brief
- * Calls dmub layer to retrieve dmub notification
+ * Calls dmub layer to retrieve dmub notification
*
- * @param
- * [in] dc: dc structure
- * [in] notify: dmub notification structure
+ * @dc: dc structure
+ * @notify: dmub notification structure
*
- * @return
+ * Returns
* None
- *****************************************************************************
*/
void dc_stat_get_dmub_notification(const struct dc *dc, struct dmub_notification *notify)
{
@@ -65,6 +61,7 @@ void dc_stat_get_dmub_notification(const struct dc *dc, struct dmub_notification
/* For HPD/HPD RX, convert dpia port index into link index */
if (notify->type == DMUB_NOTIFICATION_HPD ||
notify->type == DMUB_NOTIFICATION_HPD_IRQ ||
+ notify->type == DMUB_NOTIFICATION_DPIA_NOTIFICATION ||
notify->type == DMUB_NOTIFICATION_SET_CONFIG_REPLY) {
notify->link_index =
get_link_index_from_dpia_port_index(dc, notify->link_index);
@@ -72,19 +69,15 @@ void dc_stat_get_dmub_notification(const struct dc *dc, struct dmub_notification
}
/**
- *****************************************************************************
- * Function: dc_stat_get_dmub_dataout
+ * dc_stat_get_dmub_dataout
*
- * @brief
- * Calls dmub layer to retrieve dmub gpint dataout
+ * Calls dmub layer to retrieve dmub gpint dataout
*
- * @param
- * [in] dc: dc structure
- * [in] dataout: dmub gpint dataout
+ * @dc: dc structure
+ * @dataout: dmub gpint dataout
*
- * @return
+ * Returns
* None
- *****************************************************************************
*/
void dc_stat_get_dmub_dataout(const struct dc *dc, uint32_t *dataout)
{
diff --git a/drivers/gpu/drm/amd/display/dc/core/dc_stream.c b/drivers/gpu/drm/amd/display/dc/core/dc_stream.c
index 38d71b5c1f2d..72b261ad9587 100644
--- a/drivers/gpu/drm/amd/display/dc/core/dc_stream.c
+++ b/drivers/gpu/drm/amd/display/dc/core/dc_stream.c
@@ -332,9 +332,21 @@ bool dc_stream_set_cursor_attributes(
dc = stream->ctx->dc;
- if (dc->debug.allow_sw_cursor_fallback && attributes->height * attributes->width * 4 > 16384)
- if (stream->mall_stream_config.type == SUBVP_MAIN)
+ /* SubVP is not compatible with HW cursor larger than 64 x 64 x 4.
+ * Therefore, if cursor is greater than 64 x 64 x 4, fallback to SW cursor in the following case:
+ * 1. For single display cases, if resolution is >= 5K and refresh rate < 120hz
+ * 2. For multi display cases, if resolution is >= 4K and refresh rate < 120hz
+ *
+ * [< 120hz is a requirement for SubVP configs]
+ */
+ if (dc->debug.allow_sw_cursor_fallback && attributes->height * attributes->width * 4 > 16384) {
+ if (dc->current_state->stream_count == 1 && stream->timing.v_addressable >= 2880 &&
+ ((stream->timing.pix_clk_100hz * 100) / stream->timing.v_total / stream->timing.h_total) < 120)
return false;
+ else if (dc->current_state->stream_count > 1 && stream->timing.v_addressable >= 2160 &&
+ ((stream->timing.pix_clk_100hz * 100) / stream->timing.v_total / stream->timing.h_total) < 120)
+ return false;
+ }
stream->cursor_attributes = *attributes;
@@ -396,7 +408,7 @@ bool dc_stream_set_cursor_position(
struct dc_stream_state *stream,
const struct dc_cursor_position *position)
{
- struct dc *dc = stream->ctx->dc;
+ struct dc *dc;
bool reset_idle_optimizations = false;
if (NULL == stream) {
@@ -469,6 +481,7 @@ bool dc_stream_add_writeback(struct dc *dc,
}
if (!isDrc) {
+ ASSERT(stream->num_wb_info + 1 <= MAX_DWB_PIPES);
stream->writeback_info[stream->num_wb_info++] = *wb_info;
}
@@ -514,6 +527,11 @@ bool dc_stream_remove_writeback(struct dc *dc,
return false;
}
+ if (stream->num_wb_info > MAX_DWB_PIPES) {
+ dm_error("DC: num_wb_info is invalid!\n");
+ return false;
+ }
+
// stream->writeback_info[dwb_pipe_inst].wb_enabled = false;
for (i = 0; i < stream->num_wb_info; i++) {
/*dynamic update*/
@@ -528,7 +546,8 @@ bool dc_stream_remove_writeback(struct dc *dc,
if (stream->writeback_info[i].wb_enabled) {
if (j < i)
/* trim the array */
- stream->writeback_info[j] = stream->writeback_info[i];
+ memcpy(&stream->writeback_info[j], &stream->writeback_info[i],
+ sizeof(struct dc_writeback_info));
j++;
}
}
diff --git a/drivers/gpu/drm/amd/display/dc/core/dc_vm_helper.c b/drivers/gpu/drm/amd/display/dc/core/dc_vm_helper.c
index cde8ed2560b3..eda2152dcd1f 100644
--- a/drivers/gpu/drm/amd/display/dc/core/dc_vm_helper.c
+++ b/drivers/gpu/drm/amd/display/dc/core/dc_vm_helper.c
@@ -47,9 +47,7 @@ int dc_setup_system_context(struct dc *dc, struct dc_phy_addr_space_config *pa_c
*/
memcpy(&dc->vm_pa_config, pa_config, sizeof(struct dc_phy_addr_space_config));
dc->vm_pa_config.valid = true;
-#if defined(CONFIG_DRM_AMD_DC_DCN)
dc_z10_save_init(dc);
-#endif
}
return num_vmids;
diff --git a/drivers/gpu/drm/amd/display/dc/dc.h b/drivers/gpu/drm/amd/display/dc/dc.h
index 0598465fd1a1..30f0ba05a6e6 100644
--- a/drivers/gpu/drm/amd/display/dc/dc.h
+++ b/drivers/gpu/drm/amd/display/dc/dc.h
@@ -29,9 +29,7 @@
#include "dc_types.h"
#include "grph_object_defs.h"
#include "logger_types.h"
-#if defined(CONFIG_DRM_AMD_DC_HDCP)
-#include "hdcp_types.h"
-#endif
+#include "hdcp_msg_types.h"
#include "gpio_types.h"
#include "link_service_types.h"
#include "grph_object_ctrl_defs.h"
@@ -47,18 +45,15 @@ struct aux_payload;
struct set_config_cmd_payload;
struct dmub_notification;
-#define DC_VER "3.2.207"
+#define DC_VER "3.2.230"
#define MAX_SURFACES 3
#define MAX_PLANES 6
#define MAX_STREAMS 6
-#define MAX_SINKS_PER_LINK 4
#define MIN_VIEWPORT_SIZE 12
#define MAX_NUM_EDP 2
-/*******************************************************************************
- * Display Core Interfaces
- ******************************************************************************/
+/* Display Core Interfaces */
struct dc_versions {
const char *dc_ver;
struct dmcu_version dmcu_version;
@@ -87,8 +82,6 @@ enum det_size {
struct dc_plane_cap {
enum dc_plane_type type;
- uint32_t blends_with_above : 1;
- uint32_t blends_with_below : 1;
uint32_t per_pixel_alpha : 1;
struct {
uint32_t argb8888 : 1;
@@ -263,11 +256,13 @@ struct dc_caps {
uint32_t cache_line_size;
uint32_t cache_num_ways;
uint16_t subvp_fw_processing_delay_us;
+ uint8_t subvp_drr_max_vblank_margin_us;
uint16_t subvp_prefetch_end_to_mall_start_us;
uint8_t subvp_swath_height_margin_lines; // subvp start line must be aligned to 2 x swath height
uint16_t subvp_pstate_allow_width_us;
uint16_t subvp_vertical_int_margin_us;
bool seamless_odm;
+ uint8_t subvp_drr_vblank_start_margin_us;
};
struct dc_bug_wa {
@@ -395,6 +390,7 @@ struct dc_config {
bool disable_dmcu;
bool enable_4to1MPC;
bool enable_windowed_mpo_odm;
+ bool forceHBR2CP2520; // Used for switching between test patterns TPS4 and CP2520
uint32_t allow_edp_hotplug_detection;
bool clamp_min_dcfclk;
uint64_t vblank_alignment_dto_params;
@@ -408,7 +404,9 @@ struct dc_config {
bool use_default_clock_table;
bool force_bios_enable_lttpr;
uint8_t force_bios_fixed_vs;
-
+ int sdpif_request_limit_words_per_umc;
+ bool use_old_fixed_vs_sequence;
+ bool disable_subvp_drr;
};
enum visual_confirm {
@@ -457,15 +455,15 @@ enum pipe_split_policy {
MPC_SPLIT_DYNAMIC = 0,
/**
- * @MPC_SPLIT_DYNAMIC: Avoid pipe split, which means that DC will not
+ * @MPC_SPLIT_AVOID: Avoid pipe split, which means that DC will not
* try any sort of split optimization.
*/
MPC_SPLIT_AVOID = 1,
/**
- * @MPC_SPLIT_DYNAMIC: With this option, DC will only try to optimize
- * the pipe utilization when using a single display; if the user
- * connects to a second display, DC will avoid pipe split.
+ * @MPC_SPLIT_AVOID_MULT_DISP: With this option, DC will only try to
+ * optimize the pipe utilization when using a single display; if the
+ * user connects to a second display, DC will avoid pipe split.
*/
MPC_SPLIT_AVOID_MULT_DISP = 2,
};
@@ -491,12 +489,17 @@ enum dcn_pwr_state {
enum dcn_zstate_support_state {
DCN_ZSTATE_SUPPORT_UNKNOWN,
DCN_ZSTATE_SUPPORT_ALLOW,
+ DCN_ZSTATE_SUPPORT_ALLOW_Z8_ONLY,
+ DCN_ZSTATE_SUPPORT_ALLOW_Z8_Z10_ONLY,
DCN_ZSTATE_SUPPORT_ALLOW_Z10_ONLY,
DCN_ZSTATE_SUPPORT_DISALLOW,
};
-/*
- * For any clocks that may differ per pipe
- * only the max is stored in this structure
+
+/**
+ * struct dc_clocks - DC pipe clocks
+ *
+ * For any clocks that may differ per pipe only the max is stored in this
+ * structure
*/
struct dc_clocks {
int dispclk_khz;
@@ -523,6 +526,16 @@ struct dc_clocks {
bool prev_p_state_change_support;
bool fclk_prev_p_state_change_support;
int num_ways;
+
+ /*
+ * @fw_based_mclk_switching
+ *
+ * DC has a mechanism that leverage the variable refresh rate to switch
+ * memory clock in cases that we have a large latency to achieve the
+ * memory clock change and a short vblank window. DC has some
+ * requirements to enable this feature, and this field describes if the
+ * system support or not such a feature.
+ */
bool fw_based_mclk_switching;
bool fw_based_mclk_switching_shut_down;
int prev_num_ways;
@@ -700,6 +713,7 @@ struct dc_bounding_box_overrides {
struct dc_state;
struct resource_pool;
struct dce_hwseq;
+struct link_service;
/**
* struct dc_debug_options - DC debug struct
@@ -764,7 +778,6 @@ struct dc_debug_options {
bool disable_mem_low_power;
bool pstate_enabled;
bool disable_dmcu;
- bool disable_psr;
bool force_abm_enable;
bool disable_stereo_support;
bool vsr_support;
@@ -780,6 +793,7 @@ struct dc_debug_options {
unsigned int force_odm_combine; //bit vector based on otg inst
unsigned int seamless_boot_odm_combine;
unsigned int force_odm_combine_4to1; //bit vector based on otg inst
+ int minimum_z8_residency_time;
bool disable_z9_mpc;
unsigned int force_fclk_khz;
bool enable_tri_buf;
@@ -828,6 +842,7 @@ struct dc_debug_options {
int crb_alloc_policy_min_disp_count;
bool disable_z10;
bool enable_z9_disable_interface;
+ bool psr_skip_crtc_disable;
union dpia_debug_options dpia_debug;
bool disable_fixed_vs_aux_timeout_wa;
bool force_disable_subvp;
@@ -836,6 +851,7 @@ struct dc_debug_options {
unsigned int force_subvp_num_ways;
unsigned int force_mall_ss_num_ways;
bool alloc_extra_way_for_cursor;
+ uint32_t subvp_extra_lines;
bool force_usr_allow;
/* uses value at boot and disables switch */
bool disable_dtb_ref_clk_switch;
@@ -854,6 +870,15 @@ struct dc_debug_options {
enum lttpr_mode lttpr_mode_override;
unsigned int dsc_delay_factor_wa_x1000;
unsigned int min_prefetch_in_strobe_ns;
+ bool disable_unbounded_requesting;
+ bool dig_fifo_off_in_blank;
+ bool temp_mst_deallocation_sequence;
+ bool override_dispclk_programming;
+ bool disable_fpo_optimizations;
+ bool support_eDP1_5;
+ uint32_t fpo_vactive_margin_us;
+ bool disable_fpo_vactive;
+ bool disable_boot_optimizations;
};
struct gpu_info_soc_bounding_box_v1_0;
@@ -870,6 +895,7 @@ struct dc {
uint8_t link_count;
struct dc_link *links[MAX_PIPES * 2];
+ struct link_service *link_srv;
struct dc_state *current_state;
struct resource_pool *res_pool;
@@ -971,11 +997,7 @@ struct dc_init_data {
};
struct dc_callback_init {
-#ifdef CONFIG_DRM_AMD_DC_HDCP
struct cp_psp cp_psp;
-#else
- uint8_t reserved;
-#endif
};
struct dc *dc_create(const struct dc_init_data *init_params);
@@ -990,9 +1012,7 @@ void dc_init_callbacks(struct dc *dc,
void dc_deinit_callbacks(struct dc *dc);
void dc_destroy(struct dc **dc);
-/*******************************************************************************
- * Surface Interfaces
- ******************************************************************************/
+/* Surface Interfaces */
enum {
TRANSFER_FUNC_POINTS = 1025
@@ -1271,12 +1291,23 @@ void dc_post_update_surfaces_to_stream(
#include "dc_stream.h"
-/*
- * Structure to store surface/stream associations for validation
+/**
+ * struct dc_validation_set - Struct to store surface/stream associations for validation
*/
struct dc_validation_set {
+ /**
+ * @stream: Stream state properties
+ */
struct dc_stream_state *stream;
+
+ /**
+ * @plane_state: Surface state
+ */
struct dc_plane_state *plane_states[MAX_SURFACES];
+
+ /**
+ * @plane_count: Total of active planes
+ */
uint8_t plane_count;
};
@@ -1288,6 +1319,12 @@ enum dc_status dc_validate_plane(struct dc *dc, const struct dc_plane_state *pla
void get_clock_requirements_for_state(struct dc_state *state, struct AsicStateEx *info);
+enum dc_status dc_validate_with_context(struct dc *dc,
+ const struct dc_validation_set set[],
+ int set_count,
+ struct dc_state *context,
+ bool fast_validate);
+
bool dc_set_generic_gpio_for_stereo(bool enable,
struct gpio_service *gpio_service);
@@ -1323,129 +1360,695 @@ void dc_resource_state_destruct(struct dc_state *context);
bool dc_resource_is_dsc_encoding_supported(const struct dc *dc);
-/*
- * TODO update to make it about validation sets
- * Set up streams and links associated to drive sinks
- * The streams parameter is an absolute set of all active streams.
- *
- * After this call:
- * Phy, Encoder, Timing Generator are programmed and enabled.
- * New streams are enabled with blank stream; no memory read.
- */
-bool dc_commit_state(struct dc *dc, struct dc_state *context);
+enum dc_status dc_commit_streams(struct dc *dc,
+ struct dc_stream_state *streams[],
+ uint8_t stream_count);
struct dc_state *dc_create_state(struct dc *dc);
struct dc_state *dc_copy_state(struct dc_state *src_ctx);
void dc_retain_state(struct dc_state *context);
void dc_release_state(struct dc_state *context);
-/*******************************************************************************
- * Link Interfaces
- ******************************************************************************/
-
-struct dpcd_caps {
- union dpcd_rev dpcd_rev;
- union max_lane_count max_ln_count;
- union max_down_spread max_down_spread;
- union dprx_feature dprx_feature;
-
- /* valid only for eDP v1.4 or higher*/
- uint8_t edp_supported_link_rates_count;
- enum dc_link_rate edp_supported_link_rates[8];
-
- /* dongle type (DP converter, CV smart dongle) */
- enum display_dongle_type dongle_type;
- bool is_dongle_type_one;
- /* branch device or sink device */
- bool is_branch_dev;
- /* Dongle's downstream count. */
- union sink_count sink_count;
- bool is_mst_capable;
- /* If dongle_type == DISPLAY_DONGLE_DP_HDMI_CONVERTER,
- indicates 'Frame Sequential-to-lllFrame Pack' conversion capability.*/
- struct dc_dongle_caps dongle_caps;
-
- uint32_t sink_dev_id;
- int8_t sink_dev_id_str[6];
- int8_t sink_hw_revision;
- int8_t sink_fw_revision[2];
-
- uint32_t branch_dev_id;
- int8_t branch_dev_name[6];
- int8_t branch_hw_revision;
- int8_t branch_fw_revision[2];
-
- bool allow_invalid_MSA_timing_param;
- bool panel_mode_edp;
- bool dpcd_display_control_capable;
- bool ext_receiver_cap_field_present;
- bool set_power_state_capable_edp;
- bool dynamic_backlight_capable_edp;
- union dpcd_fec_capability fec_cap;
- struct dpcd_dsc_capabilities dsc_caps;
- struct dc_lttpr_caps lttpr_caps;
- struct dpcd_usb4_dp_tunneling_info usb4_dp_tun_info;
-
- union dp_128b_132b_supported_link_rates dp_128b_132b_supported_link_rates;
- union dp_main_line_channel_coding_cap channel_coding_cap;
- union dp_sink_video_fallback_formats fallback_formats;
- union dp_fec_capability1 fec_cap1;
- union dp_cable_id cable_id;
- uint8_t edp_rev;
- union edp_alpm_caps alpm_caps;
- struct edp_psr_info psr_info;
-};
-
-union dpcd_sink_ext_caps {
- struct {
- /* 0 - Sink supports backlight adjust via PWM during SDR/HDR mode
- * 1 - Sink supports backlight adjust via AUX during SDR/HDR mode.
- */
- uint8_t sdr_aux_backlight_control : 1;
- uint8_t hdr_aux_backlight_control : 1;
- uint8_t reserved_1 : 2;
- uint8_t oled : 1;
- uint8_t reserved : 3;
- } bits;
- uint8_t raw;
-};
+struct dc_plane_state *dc_get_surface_for_mpcc(struct dc *dc,
+ struct dc_stream_state *stream,
+ int mpcc_inst);
-#if defined(CONFIG_DRM_AMD_DC_HDCP)
-union hdcp_rx_caps {
- struct {
- uint8_t version;
- uint8_t reserved;
- struct {
- uint8_t repeater : 1;
- uint8_t hdcp_capable : 1;
- uint8_t reserved : 6;
- } byte0;
- } fields;
- uint8_t raw[3];
-};
-union hdcp_bcaps {
- struct {
- uint8_t HDCP_CAPABLE:1;
- uint8_t REPEATER:1;
- uint8_t RESERVED:6;
- } bits;
- uint8_t raw;
-};
+uint32_t dc_get_opp_for_plane(struct dc *dc, struct dc_plane_state *plane);
-struct hdcp_caps {
- union hdcp_rx_caps rx_caps;
- union hdcp_bcaps bcaps;
-};
-#endif
+/* The function returns minimum bandwidth required to drive a given timing
+ * return - minimum required timing bandwidth in kbps.
+ */
+uint32_t dc_bandwidth_in_kbps_from_timing(const struct dc_crtc_timing *timing);
-#include "dc_link.h"
+/* Link Interfaces */
+/*
+ * A link contains one or more sinks and their connected status.
+ * The currently active signal type (HDMI, DP-SST, DP-MST) is also reported.
+ */
+struct dc_link {
+ struct dc_sink *remote_sinks[MAX_SINKS_PER_LINK];
+ unsigned int sink_count;
+ struct dc_sink *local_sink;
+ unsigned int link_index;
+ enum dc_connection_type type;
+ enum signal_type connector_signal;
+ enum dc_irq_source irq_source_hpd;
+ enum dc_irq_source irq_source_hpd_rx;/* aka DP Short Pulse */
+
+ bool is_hpd_filter_disabled;
+ bool dp_ss_off;
-uint32_t dc_get_opp_for_plane(struct dc *dc, struct dc_plane_state *plane);
+ /**
+ * @link_state_valid:
+ *
+ * If there is no link and local sink, this variable should be set to
+ * false. Otherwise, it should be set to true; usually, the function
+ * core_link_enable_stream sets this field to true.
+ */
+ bool link_state_valid;
+ bool aux_access_disabled;
+ bool sync_lt_in_progress;
+ bool skip_stream_reenable;
+ bool is_internal_display;
+ /** @todo Rename. Flag an endpoint as having a programmable mapping to a DIG encoder. */
+ bool is_dig_mapping_flexible;
+ bool hpd_status; /* HPD status of link without physical HPD pin. */
+ bool is_hpd_pending; /* Indicates a new received hpd */
+ bool is_automated; /* Indicates automated testing */
+
+ bool edp_sink_present;
+
+ struct dp_trace dp_trace;
+
+ /* caps is the same as reported_link_cap. link_traing use
+ * reported_link_cap. Will clean up. TODO
+ */
+ struct dc_link_settings reported_link_cap;
+ struct dc_link_settings verified_link_cap;
+ struct dc_link_settings cur_link_settings;
+ struct dc_lane_settings cur_lane_setting[LANE_COUNT_DP_MAX];
+ struct dc_link_settings preferred_link_setting;
+ /* preferred_training_settings are override values that
+ * come from DM. DM is responsible for the memory
+ * management of the override pointers.
+ */
+ struct dc_link_training_overrides preferred_training_settings;
+ struct dp_audio_test_data audio_test_data;
+
+ uint8_t ddc_hw_inst;
+
+ uint8_t hpd_src;
+
+ uint8_t link_enc_hw_inst;
+ /* DIG link encoder ID. Used as index in link encoder resource pool.
+ * For links with fixed mapping to DIG, this is not changed after dc_link
+ * object creation.
+ */
+ enum engine_id eng_id;
-/*******************************************************************************
- * Sink Interfaces - A sink corresponds to a display output device
- ******************************************************************************/
+ bool test_pattern_enabled;
+ union compliance_test_state compliance_test_state;
+
+ void *priv;
+
+ struct ddc_service *ddc;
+
+ enum dp_panel_mode panel_mode;
+ bool aux_mode;
+
+ /* Private to DC core */
+
+ const struct dc *dc;
+
+ struct dc_context *ctx;
+
+ struct panel_cntl *panel_cntl;
+ struct link_encoder *link_enc;
+ struct graphics_object_id link_id;
+ /* Endpoint type distinguishes display endpoints which do not have entries
+ * in the BIOS connector table from those that do. Helps when tracking link
+ * encoder to display endpoint assignments.
+ */
+ enum display_endpoint_type ep_type;
+ union ddi_channel_mapping ddi_channel_mapping;
+ struct connector_device_tag_info device_tag;
+ struct dpcd_caps dpcd_caps;
+ uint32_t dongle_max_pix_clk;
+ unsigned short chip_caps;
+ unsigned int dpcd_sink_count;
+ struct hdcp_caps hdcp_caps;
+ enum edp_revision edp_revision;
+ union dpcd_sink_ext_caps dpcd_sink_ext_caps;
+
+ struct psr_settings psr_settings;
+
+ /* Drive settings read from integrated info table */
+ struct dc_lane_settings bios_forced_drive_settings;
+
+ /* Vendor specific LTTPR workaround variables */
+ uint8_t vendor_specific_lttpr_link_rate_wa;
+ bool apply_vendor_specific_lttpr_link_rate_wa;
+
+ /* MST record stream using this link */
+ struct link_flags {
+ bool dp_keep_receiver_powered;
+ bool dp_skip_DID2;
+ bool dp_skip_reset_segment;
+ bool dp_skip_fs_144hz;
+ bool dp_mot_reset_segment;
+ /* Some USB4 docks do not handle turning off MST DSC once it has been enabled. */
+ bool dpia_mst_dsc_always_on;
+ /* Forced DPIA into TBT3 compatibility mode. */
+ bool dpia_forced_tbt3_mode;
+ bool dongle_mode_timing_override;
+ } wa_flags;
+ struct link_mst_stream_allocation_table mst_stream_alloc_table;
+
+ struct dc_link_status link_status;
+ struct dprx_states dprx_states;
+
+ struct gpio *hpd_gpio;
+ enum dc_link_fec_state fec_state;
+ bool link_powered_externally; // Used to bypass hardware sequencing delays when panel is powered down forcibly
+
+ struct dc_panel_config panel_config;
+ struct phy_state phy_state;
+ // BW ALLOCATON USB4 ONLY
+ struct dc_dpia_bw_alloc dpia_bw_alloc_config;
+};
+
+/* Return an enumerated dc_link.
+ * dc_link order is constant and determined at
+ * boot time. They cannot be created or destroyed.
+ * Use dc_get_caps() to get number of links.
+ */
+struct dc_link *dc_get_link_at_index(struct dc *dc, uint32_t link_index);
+
+/* Return instance id of the edp link. Inst 0 is primary edp link. */
+bool dc_get_edp_link_panel_inst(const struct dc *dc,
+ const struct dc_link *link,
+ unsigned int *inst_out);
+
+/* Return an array of link pointers to edp links. */
+void dc_get_edp_links(const struct dc *dc,
+ struct dc_link **edp_links,
+ int *edp_num);
+
+/* The function initiates detection handshake over the given link. It first
+ * determines if there are display connections over the link. If so it initiates
+ * detection protocols supported by the connected receiver device. The function
+ * contains protocol specific handshake sequences which are sometimes mandatory
+ * to establish a proper connection between TX and RX. So it is always
+ * recommended to call this function as the first link operation upon HPD event
+ * or power up event. Upon completion, the function will update link structure
+ * in place based on latest RX capabilities. The function may also cause dpms
+ * to be reset to off for all currently enabled streams to the link. It is DM's
+ * responsibility to serialize detection and DPMS updates.
+ *
+ * @reason - Indicate which event triggers this detection. dc may customize
+ * detection flow depending on the triggering events.
+ * return false - if detection is not fully completed. This could happen when
+ * there is an unrecoverable error during detection or detection is partially
+ * completed (detection has been delegated to dm mst manager ie.
+ * link->connection_type == dc_connection_mst_branch when returning false).
+ * return true - detection is completed, link has been fully updated with latest
+ * detection result.
+ */
+bool dc_link_detect(struct dc_link *link, enum dc_detect_reason reason);
+
+struct dc_sink_init_data;
+
+/* When link connection type is dc_connection_mst_branch, remote sink can be
+ * added to the link. The interface creates a remote sink and associates it with
+ * current link. The sink will be retained by link until remove remote sink is
+ * called.
+ *
+ * @dc_link - link the remote sink will be added to.
+ * @edid - byte array of EDID raw data.
+ * @len - size of the edid in byte
+ * @init_data -
+ */
+struct dc_sink *dc_link_add_remote_sink(
+ struct dc_link *dc_link,
+ const uint8_t *edid,
+ int len,
+ struct dc_sink_init_data *init_data);
+
+/* Remove remote sink from a link with dc_connection_mst_branch connection type.
+ * @link - link the sink should be removed from
+ * @sink - sink to be removed.
+ */
+void dc_link_remove_remote_sink(
+ struct dc_link *link,
+ struct dc_sink *sink);
+
+/* Enable HPD interrupt handler for a given link */
+void dc_link_enable_hpd(const struct dc_link *link);
+
+/* Disable HPD interrupt handler for a given link */
+void dc_link_disable_hpd(const struct dc_link *link);
+
+/* determine if there is a sink connected to the link
+ *
+ * @type - dc_connection_single if connected, dc_connection_none otherwise.
+ * return - false if an unexpected error occurs, true otherwise.
+ *
+ * NOTE: This function doesn't detect downstream sink connections i.e
+ * dc_connection_mst_branch, dc_connection_sst_branch. In this case, it will
+ * return dc_connection_single if the branch device is connected despite of
+ * downstream sink's connection status.
+ */
+bool dc_link_detect_connection_type(struct dc_link *link,
+ enum dc_connection_type *type);
+
+/* query current hpd pin value
+ * return - true HPD is asserted (HPD high), false otherwise (HPD low)
+ *
+ */
+bool dc_link_get_hpd_state(struct dc_link *link);
+
+/* Getter for cached link status from given link */
+const struct dc_link_status *dc_link_get_status(const struct dc_link *link);
+
+/* enable/disable hardware HPD filter.
+ *
+ * @link - The link the HPD pin is associated with.
+ * @enable = true - enable hardware HPD filter. HPD event will only queued to irq
+ * handler once after no HPD change has been detected within dc default HPD
+ * filtering interval since last HPD event. i.e if display keeps toggling hpd
+ * pulses within default HPD interval, no HPD event will be received until HPD
+ * toggles have stopped. Then HPD event will be queued to irq handler once after
+ * dc default HPD filtering interval since last HPD event.
+ *
+ * @enable = false - disable hardware HPD filter. HPD event will be queued
+ * immediately to irq handler after no HPD change has been detected within
+ * IRQ_HPD (aka HPD short pulse) interval (i.e 2ms).
+ */
+void dc_link_enable_hpd_filter(struct dc_link *link, bool enable);
+
+/* submit i2c read/write payloads through ddc channel
+ * @link_index - index to a link with ddc in i2c mode
+ * @cmd - i2c command structure
+ * return - true if success, false otherwise.
+ */
+bool dc_submit_i2c(
+ struct dc *dc,
+ uint32_t link_index,
+ struct i2c_command *cmd);
+
+/* submit i2c read/write payloads through oem channel
+ * @link_index - index to a link with ddc in i2c mode
+ * @cmd - i2c command structure
+ * return - true if success, false otherwise.
+ */
+bool dc_submit_i2c_oem(
+ struct dc *dc,
+ struct i2c_command *cmd);
+
+enum aux_return_code_type;
+/* Attempt to transfer the given aux payload. This function does not perform
+ * retries or handle error states. The reply is returned in the payload->reply
+ * and the result through operation_result. Returns the number of bytes
+ * transferred,or -1 on a failure.
+ */
+int dc_link_aux_transfer_raw(struct ddc_service *ddc,
+ struct aux_payload *payload,
+ enum aux_return_code_type *operation_result);
+
+bool dc_is_oem_i2c_device_present(
+ struct dc *dc,
+ size_t slave_address
+);
+
+/* return true if the connected receiver supports the hdcp version */
+bool dc_link_is_hdcp14(struct dc_link *link, enum signal_type signal);
+bool dc_link_is_hdcp22(struct dc_link *link, enum signal_type signal);
+
+/* Notify DC about DP RX Interrupt (aka DP IRQ_HPD).
+ *
+ * TODO - When defer_handling is true the function will have a different purpose.
+ * It no longer does complete hpd rx irq handling. We should create a separate
+ * interface specifically for this case.
+ *
+ * Return:
+ * true - Downstream port status changed. DM should call DC to do the
+ * detection.
+ * false - no change in Downstream port status. No further action required
+ * from DM.
+ */
+bool dc_link_handle_hpd_rx_irq(struct dc_link *dc_link,
+ union hpd_irq_data *hpd_irq_dpcd_data, bool *out_link_loss,
+ bool defer_handling, bool *has_left_work);
+/* handle DP specs define test automation sequence*/
+void dc_link_dp_handle_automated_test(struct dc_link *link);
+
+/* handle DP Link loss sequence and try to recover RX link loss with best
+ * effort
+ */
+void dc_link_dp_handle_link_loss(struct dc_link *link);
+
+/* Determine if hpd rx irq should be handled or ignored
+ * return true - hpd rx irq should be handled.
+ * return false - it is safe to ignore hpd rx irq event
+ */
+bool dc_link_dp_allow_hpd_rx_irq(const struct dc_link *link);
+
+/* Determine if link loss is indicated with a given hpd_irq_dpcd_data.
+ * @link - link the hpd irq data associated with
+ * @hpd_irq_dpcd_data - input hpd irq data
+ * return - true if hpd irq data indicates a link lost
+ */
+bool dc_link_check_link_loss_status(struct dc_link *link,
+ union hpd_irq_data *hpd_irq_dpcd_data);
+
+/* Read hpd rx irq data from a given link
+ * @link - link where the hpd irq data should be read from
+ * @irq_data - output hpd irq data
+ * return - DC_OK if hpd irq data is read successfully, otherwise hpd irq data
+ * read has failed.
+ */
+enum dc_status dc_link_dp_read_hpd_rx_irq_data(
+ struct dc_link *link,
+ union hpd_irq_data *irq_data);
+
+/* The function clears recorded DP RX states in the link. DM should call this
+ * function when it is resuming from S3 power state to previously connected links.
+ *
+ * TODO - in the future we should consider to expand link resume interface to
+ * support clearing previous rx states. So we don't have to rely on dm to call
+ * this interface explicitly.
+ */
+void dc_link_clear_dprx_states(struct dc_link *link);
+
+/* Destruct the mst topology of the link and reset the allocated payload table
+ *
+ * NOTE: this should only be called if DM chooses not to call dc_link_detect but
+ * still wants to reset MST topology on an unplug event */
+bool dc_link_reset_cur_dp_mst_topology(struct dc_link *link);
+
+/* The function calculates effective DP link bandwidth when a given link is
+ * using the given link settings.
+ *
+ * return - total effective link bandwidth in kbps.
+ */
+uint32_t dc_link_bandwidth_kbps(
+ const struct dc_link *link,
+ const struct dc_link_settings *link_setting);
+
+/* The function takes a snapshot of current link resource allocation state
+ * @dc: pointer to dc of the dm calling this
+ * @map: a dc link resource snapshot defined internally to dc.
+ *
+ * DM needs to capture a snapshot of current link resource allocation mapping
+ * and store it in its persistent storage.
+ *
+ * Some of the link resource is using first come first serve policy.
+ * The allocation mapping depends on original hotplug order. This information
+ * is lost after driver is loaded next time. The snapshot is used in order to
+ * restore link resource to its previous state so user will get consistent
+ * link capability allocation across reboot.
+ *
+ */
+void dc_get_cur_link_res_map(const struct dc *dc, uint32_t *map);
+
+/* This function restores link resource allocation state from a snapshot
+ * @dc: pointer to dc of the dm calling this
+ * @map: a dc link resource snapshot defined internally to dc.
+ *
+ * DM needs to call this function after initial link detection on boot and
+ * before first commit streams to restore link resource allocation state
+ * from previous boot session.
+ *
+ * Some of the link resource is using first come first serve policy.
+ * The allocation mapping depends on original hotplug order. This information
+ * is lost after driver is loaded next time. The snapshot is used in order to
+ * restore link resource to its previous state so user will get consistent
+ * link capability allocation across reboot.
+ *
+ */
+void dc_restore_link_res_map(const struct dc *dc, uint32_t *map);
+
+/* TODO: this is not meant to be exposed to DM. Should switch to stream update
+ * interface i.e stream_update->dsc_config
+ */
+bool dc_link_update_dsc_config(struct pipe_ctx *pipe_ctx);
+
+/* translate a raw link rate data to bandwidth in kbps */
+uint32_t dc_link_bw_kbps_from_raw_frl_link_rate_data(const struct dc *dc, uint8_t bw);
+
+/* determine the optimal bandwidth given link and required bw.
+ * @link - current detected link
+ * @req_bw - requested bandwidth in kbps
+ * @link_settings - returned most optimal link settings that can fit the
+ * requested bandwidth
+ * return - false if link can't support requested bandwidth, true if link
+ * settings is found.
+ */
+bool dc_link_decide_edp_link_settings(struct dc_link *link,
+ struct dc_link_settings *link_settings,
+ uint32_t req_bw);
+
+/* return the max dp link settings can be driven by the link without considering
+ * connected RX device and its capability
+ */
+bool dc_link_dp_get_max_link_enc_cap(const struct dc_link *link,
+ struct dc_link_settings *max_link_enc_cap);
+
+/* determine when the link is driving MST mode, what DP link channel coding
+ * format will be used. The decision will remain unchanged until next HPD event.
+ *
+ * @link - a link with DP RX connection
+ * return - if stream is committed to this link with MST signal type, type of
+ * channel coding format dc will choose.
+ */
+enum dp_link_encoding dc_link_dp_mst_decide_link_encoding_format(
+ const struct dc_link *link);
+
+/* get max dp link settings the link can enable with all things considered. (i.e
+ * TX/RX/Cable capabilities and dp override policies.
+ *
+ * @link - a link with DP RX connection
+ * return - max dp link settings the link can enable.
+ *
+ */
+const struct dc_link_settings *dc_link_get_link_cap(const struct dc_link *link);
+
+/* Check if a RX (ex. DP sink, MST hub, passive or active dongle) is connected
+ * to a link with dp connector signal type.
+ * @link - a link with dp connector signal type
+ * return - true if connected, false otherwise
+ */
+bool dc_link_is_dp_sink_present(struct dc_link *link);
+
+/* Force DP lane settings update to main-link video signal and notify the change
+ * to DP RX via DPCD. This is a debug interface used for video signal integrity
+ * tuning purpose. The interface assumes link has already been enabled with DP
+ * signal.
+ *
+ * @lt_settings - a container structure with desired hw_lane_settings
+ */
+void dc_link_set_drive_settings(struct dc *dc,
+ struct link_training_settings *lt_settings,
+ struct dc_link *link);
+
+/* Enable a test pattern in Link or PHY layer in an active link for compliance
+ * test or debugging purpose. The test pattern will remain until next un-plug.
+ *
+ * @link - active link with DP signal output enabled.
+ * @test_pattern - desired test pattern to output.
+ * NOTE: set to DP_TEST_PATTERN_VIDEO_MODE to disable previous test pattern.
+ * @test_pattern_color_space - for video test pattern choose a desired color
+ * space.
+ * @p_link_settings - For PHY pattern choose a desired link settings
+ * @p_custom_pattern - some test pattern will require a custom input to
+ * customize some pattern details. Otherwise keep it to NULL.
+ * @cust_pattern_size - size of the custom pattern input.
+ *
+ */
+bool dc_link_dp_set_test_pattern(
+ struct dc_link *link,
+ enum dp_test_pattern test_pattern,
+ enum dp_test_pattern_color_space test_pattern_color_space,
+ const struct link_training_settings *p_link_settings,
+ const unsigned char *p_custom_pattern,
+ unsigned int cust_pattern_size);
+
+/* Force DP link settings to always use a specific value until reboot to a
+ * specific link. If link has already been enabled, the interface will also
+ * switch to desired link settings immediately. This is a debug interface to
+ * generic dp issue trouble shooting.
+ */
+void dc_link_set_preferred_link_settings(struct dc *dc,
+ struct dc_link_settings *link_setting,
+ struct dc_link *link);
+
+/* Force DP link to customize a specific link training behavior by overriding to
+ * standard DP specs defined protocol. This is a debug interface to trouble shoot
+ * display specific link training issues or apply some display specific
+ * workaround in link training.
+ *
+ * @link_settings - if not NULL, force preferred link settings to the link.
+ * @lt_override - a set of override pointers. If any pointer is none NULL, dc
+ * will apply this particular override in future link training. If NULL is
+ * passed in, dc resets previous overrides.
+ * NOTE: DM must keep the memory from override pointers until DM resets preferred
+ * training settings.
+ */
+void dc_link_set_preferred_training_settings(struct dc *dc,
+ struct dc_link_settings *link_setting,
+ struct dc_link_training_overrides *lt_overrides,
+ struct dc_link *link,
+ bool skip_immediate_retrain);
+
+/* return - true if FEC is supported with connected DP RX, false otherwise */
+bool dc_link_is_fec_supported(const struct dc_link *link);
+
+/* query FEC enablement policy to determine if FEC will be enabled by dc during
+ * link enablement.
+ * return - true if FEC should be enabled, false otherwise.
+ */
+bool dc_link_should_enable_fec(const struct dc_link *link);
+
+/* determine lttpr mode the current link should be enabled with a specific link
+ * settings.
+ */
+enum lttpr_mode dc_link_decide_lttpr_mode(struct dc_link *link,
+ struct dc_link_settings *link_setting);
+
+/* Force DP RX to update its power state.
+ * NOTE: this interface doesn't update dp main-link. Calling this function will
+ * cause DP TX main-link and DP RX power states out of sync. DM has to restore
+ * RX power state back upon finish DM specific execution requiring DP RX in a
+ * specific power state.
+ * @on - true to set DP RX in D0 power state, false to set DP RX in D3 power
+ * state.
+ */
+void dc_link_dp_receiver_power_ctrl(struct dc_link *link, bool on);
+
+/* Force link to read base dp receiver caps from dpcd 000h - 00Fh and overwrite
+ * current value read from extended receiver cap from 02200h - 0220Fh.
+ * Some DP RX has problems of providing accurate DP receiver caps from extended
+ * field, this interface is a workaround to revert link back to use base caps.
+ */
+void dc_link_overwrite_extended_receiver_cap(
+ struct dc_link *link);
+
+void dc_link_edp_panel_backlight_power_on(struct dc_link *link,
+ bool wait_for_hpd);
+
+/* Set backlight level of an embedded panel (eDP, LVDS).
+ * backlight_pwm_u16_16 is unsigned 32 bit with 16 bit integer
+ * and 16 bit fractional, where 1.0 is max backlight value.
+ */
+bool dc_link_set_backlight_level(const struct dc_link *dc_link,
+ uint32_t backlight_pwm_u16_16,
+ uint32_t frame_ramp);
+
+/* Set/get nits-based backlight level of an embedded panel (eDP, LVDS). */
+bool dc_link_set_backlight_level_nits(struct dc_link *link,
+ bool isHDR,
+ uint32_t backlight_millinits,
+ uint32_t transition_time_in_ms);
+
+bool dc_link_get_backlight_level_nits(struct dc_link *link,
+ uint32_t *backlight_millinits,
+ uint32_t *backlight_millinits_peak);
+
+int dc_link_get_backlight_level(const struct dc_link *dc_link);
+
+int dc_link_get_target_backlight_pwm(const struct dc_link *link);
+
+bool dc_link_set_psr_allow_active(struct dc_link *dc_link, const bool *enable,
+ bool wait, bool force_static, const unsigned int *power_opts);
+
+bool dc_link_get_psr_state(const struct dc_link *dc_link, enum dc_psr_state *state);
+
+bool dc_link_setup_psr(struct dc_link *dc_link,
+ const struct dc_stream_state *stream, struct psr_config *psr_config,
+ struct psr_context *psr_context);
+
+/* On eDP links this function call will stall until T12 has elapsed.
+ * If the panel is not in power off state, this function will return
+ * immediately.
+ */
+bool dc_link_wait_for_t12(struct dc_link *link);
+
+/* Determine if dp trace has been initialized to reflect upto date result *
+ * return - true if trace is initialized and has valid data. False dp trace
+ * doesn't have valid result.
+ */
+bool dc_dp_trace_is_initialized(struct dc_link *link);
+
+/* Query a dp trace flag to indicate if the current dp trace data has been
+ * logged before
+ */
+bool dc_dp_trace_is_logged(struct dc_link *link,
+ bool in_detection);
+
+/* Set dp trace flag to indicate whether DM has already logged the current dp
+ * trace data. DM can set is_logged to true upon logging and check
+ * dc_dp_trace_is_logged before logging to avoid logging the same result twice.
+ */
+void dc_dp_trace_set_is_logged_flag(struct dc_link *link,
+ bool in_detection,
+ bool is_logged);
+
+/* Obtain driver time stamp for last dp link training end. The time stamp is
+ * formatted based on dm_get_timestamp DM function.
+ * @in_detection - true to get link training end time stamp of last link
+ * training in detection sequence. false to get link training end time stamp
+ * of last link training in commit (dpms) sequence
+ */
+unsigned long long dc_dp_trace_get_lt_end_timestamp(struct dc_link *link,
+ bool in_detection);
+
+/* Get how many link training attempts dc has done with latest sequence.
+ * @in_detection - true to get link training count of last link
+ * training in detection sequence. false to get link training count of last link
+ * training in commit (dpms) sequence
+ */
+const struct dp_trace_lt_counts *dc_dp_trace_get_lt_counts(struct dc_link *link,
+ bool in_detection);
+
+/* Get how many link loss has happened since last link training attempts */
+unsigned int dc_dp_trace_get_link_loss_count(struct dc_link *link);
+
+/*
+ * USB4 DPIA BW ALLOCATION PUBLIC FUNCTIONS
+ */
+/*
+ * Send a request from DP-Tx requesting to allocate BW remotely after
+ * allocating it locally. This will get processed by CM and a CB function
+ * will be called.
+ *
+ * @link: pointer to the dc_link struct instance
+ * @req_bw: The requested bw in Kbyte to allocated
+ *
+ * return: none
+ */
+void dc_link_set_usb4_req_bw_req(struct dc_link *link, int req_bw);
+
+/*
+ * Handle function for when the status of the Request above is complete.
+ * We will find out the result of allocating on CM and update structs.
+ *
+ * @link: pointer to the dc_link struct instance
+ * @bw: Allocated or Estimated BW depending on the result
+ * @result: Response type
+ *
+ * return: none
+ */
+void dc_link_handle_usb4_bw_alloc_response(struct dc_link *link,
+ uint8_t bw, uint8_t result);
+
+/*
+ * Handle the USB4 BW Allocation related functionality here:
+ * Plug => Try to allocate max bw from timing parameters supported by the sink
+ * Unplug => de-allocate bw
+ *
+ * @link: pointer to the dc_link struct instance
+ * @peak_bw: Peak bw used by the link/sink
+ *
+ * return: allocated bw else return 0
+ */
+int dc_link_dp_dpia_handle_usb4_bandwidth_allocation_for_link(
+ struct dc_link *link, int peak_bw);
+
+/*
+ * Validate the BW of all the valid DPIA links to make sure it doesn't exceed
+ * available BW for each host router
+ *
+ * @dc: pointer to dc struct
+ * @stream: pointer to all possible streams
+ * @num_streams: number of valid DPIA streams
+ *
+ * return: TRUE if bw used by DPIAs doesn't exceed available BW else return FALSE
+ */
+bool dc_link_validate(struct dc *dc, const struct dc_stream_state *streams,
+ const unsigned int count);
+
+/* Sink Interfaces - A sink corresponds to a display output device */
struct dc_container_id {
// 128bit GUID in binary form
@@ -1463,7 +2066,7 @@ struct dc_sink_dsc_caps {
// 'true' if these are virtual DPCD's DSC caps (immediately upstream of sink in MST topology),
// 'false' if they are sink's DSC caps
bool is_virtual_dpcd_dsc;
-#if defined(CONFIG_DRM_AMD_DC_DCN)
+#if defined(CONFIG_DRM_AMD_DC_FP)
// 'true' if MST topology supports DSC passthrough for sink
// 'false' if MST topology does not support DSC passthrough
bool is_dsc_passthrough_supported;
@@ -1476,6 +2079,11 @@ struct dc_sink_fec_caps {
bool is_topology_fec_supported;
};
+struct scdc_caps {
+ union hdmi_scdc_manufacturer_OUI_data manufacturer_OUI;
+ union hdmi_scdc_device_id_data device_id;
+};
+
/*
* The sink structure contains EDID and other display device properties
*/
@@ -1489,6 +2097,7 @@ struct dc_sink {
struct stereo_3d_features features_3d[TIMING_3D_FORMAT_MAX];
bool converter_disable_audio;
+ struct scdc_caps scdc_caps;
struct dc_sink_dsc_caps dsc_caps;
struct dc_sink_fec_caps fec_caps;
@@ -1528,9 +2137,7 @@ struct dc_cursor {
};
-/*******************************************************************************
- * Interrupt interfaces
- ******************************************************************************/
+/* Interrupt interfaces */
enum dc_irq_source dc_interrupt_to_irq_source(
struct dc *dc,
uint32_t src_id,
@@ -1542,9 +2149,7 @@ enum dc_irq_source dc_get_hpd_irq_source_at_index(
void dc_notify_vsync_int_state(struct dc *dc, struct dc_stream_state *stream, bool enable);
-/*******************************************************************************
- * Power Interfaces
- ******************************************************************************/
+/* Power Interfaces */
void dc_set_power_state(
struct dc *dc,
@@ -1553,7 +2158,6 @@ void dc_resume(struct dc *dc);
void dc_power_down_on_boot(struct dc *dc);
-#if defined(CONFIG_DRM_AMD_DC_HDCP)
/*
* HDCP Interfaces
*/
@@ -1561,7 +2165,6 @@ enum hdcp_message_status dc_process_hdcp_msg(
enum signal_type signal,
struct dc_link *link,
struct hdcp_protection_message *message_info);
-#endif
bool dc_is_dmcu_initialized(struct dc *dc);
enum dc_status dc_set_clock(struct dc *dc, enum dc_clock_type clock_type, uint32_t clk_khz, uint32_t stepping);
@@ -1617,14 +2220,10 @@ enum dc_status dc_process_dmub_set_mst_slots(const struct dc *dc,
void dc_process_dmub_dpia_hpd_int_enable(const struct dc *dc,
uint32_t hpd_int_enable);
-/*******************************************************************************
- * DSC Interfaces
- ******************************************************************************/
+/* DSC Interfaces */
#include "dc_dsc.h"
-/*******************************************************************************
- * Disable acc mode Interfaces
- ******************************************************************************/
+/* Disable acc mode Interfaces */
void dc_disable_accelerated_mode(struct dc *dc);
#endif /* DC_INTERFACE_H_ */
diff --git a/drivers/gpu/drm/amd/display/dc/dc_bios_types.h b/drivers/gpu/drm/amd/display/dc/dc_bios_types.h
index 260ac4458870..be9aa1a71847 100644
--- a/drivers/gpu/drm/amd/display/dc/dc_bios_types.h
+++ b/drivers/gpu/drm/amd/display/dc/dc_bios_types.h
@@ -140,7 +140,8 @@ struct dc_vbios_funcs {
enum bp_result (*enable_lvtma_control)(
struct dc_bios *bios,
uint8_t uc_pwr_on,
- uint8_t panel_instance);
+ uint8_t panel_instance,
+ uint8_t bypass_panel_control_wait);
enum bp_result (*get_soc_bb_info)(
struct dc_bios *dcb,
diff --git a/drivers/gpu/drm/amd/display/dc/dc_ddc_types.h b/drivers/gpu/drm/amd/display/dc/dc_ddc_types.h
index 7769bd099a5a..428e3a9ab65a 100644
--- a/drivers/gpu/drm/amd/display/dc/dc_ddc_types.h
+++ b/drivers/gpu/drm/amd/display/dc/dc_ddc_types.h
@@ -77,6 +77,32 @@ struct aux_reply_transaction_data {
uint8_t *data;
};
+struct aux_payload {
+ /* set following flag to read/write I2C data,
+ * reset it to read/write DPCD data */
+ bool i2c_over_aux;
+ /* set following flag to write data,
+ * reset it to read data */
+ bool write;
+ bool mot;
+ bool write_status_update;
+
+ uint32_t address;
+ uint32_t length;
+ uint8_t *data;
+ /*
+ * used to return the reply type of the transaction
+ * ignored if NULL
+ */
+ uint8_t *reply;
+ /* expressed in milliseconds
+ * zero means "use default value"
+ */
+ uint32_t defer_delay;
+
+};
+#define DEFAULT_AUX_MAX_DATA_SIZE 16
+
struct i2c_payload {
bool write;
uint8_t address;
@@ -90,6 +116,8 @@ enum i2c_command_engine {
I2C_COMMAND_ENGINE_HW
};
+#define DDC_I2C_COMMAND_ENGINE I2C_COMMAND_ENGINE_SW
+
struct i2c_command {
struct i2c_payload *payloads;
uint8_t number_of_payloads;
@@ -150,6 +178,9 @@ enum display_dongle_type {
DISPLAY_DONGLE_DP_HDMI_MISMATCHED_DONGLE,
};
+#define DC_MAX_EDID_BUFFER_SIZE 2048
+#define DC_EDID_BLOCK_SIZE 128
+
struct ddc_service {
struct ddc *ddc_pin;
struct ddc_flags flags;
diff --git a/drivers/gpu/drm/amd/display/dc/dc_dmub_srv.c b/drivers/gpu/drm/amd/display/dc/dc_dmub_srv.c
index 0541e87e4f38..a9b9490a532c 100644
--- a/drivers/gpu/drm/amd/display/dc/dc_dmub_srv.c
+++ b/drivers/gpu/drm/amd/display/dc/dc_dmub_srv.c
@@ -302,29 +302,32 @@ static uint8_t dc_dmub_srv_get_pipes_for_stream(struct dc *dc, struct dc_stream_
return pipes;
}
-static int dc_dmub_srv_get_timing_generator_offset(struct dc *dc, struct dc_stream_state *stream)
+static void dc_dmub_srv_populate_fams_pipe_info(struct dc *dc, struct dc_state *context,
+ struct pipe_ctx *head_pipe,
+ struct dmub_cmd_fw_assisted_mclk_switch_pipe_data *fams_pipe_data)
{
- int tg_inst = 0;
- int i = 0;
+ int j;
+ int pipe_idx = 0;
- for (i = 0; i < MAX_PIPES; i++) {
- struct pipe_ctx *pipe = &dc->current_state->res_ctx.pipe_ctx[i];
+ fams_pipe_data->pipe_index[pipe_idx++] = head_pipe->plane_res.hubp->inst;
+ for (j = 0; j < dc->res_pool->pipe_count; j++) {
+ struct pipe_ctx *split_pipe = &context->res_ctx.pipe_ctx[j];
- if (pipe->stream == stream && pipe->stream_res.tg) {
- tg_inst = pipe->stream_res.tg->inst;
- break;
+ if (split_pipe->stream == head_pipe->stream && (split_pipe->top_pipe || split_pipe->prev_odm_pipe)) {
+ fams_pipe_data->pipe_index[pipe_idx++] = split_pipe->plane_res.hubp->inst;
}
}
- return tg_inst;
+ fams_pipe_data->pipe_count = pipe_idx;
}
bool dc_dmub_srv_p_state_delegate(struct dc *dc, bool should_manage_pstate, struct dc_state *context)
{
union dmub_rb_cmd cmd = { 0 };
struct dmub_cmd_fw_assisted_mclk_switch_config *config_data = &cmd.fw_assisted_mclk_switch.config_data;
- int i = 0;
+ int i = 0, k = 0;
int ramp_up_num_steps = 1; // TODO: Ramp is currently disabled. Reenable it.
uint8_t visual_confirm_enabled;
+ int pipe_idx = 0;
if (dc == NULL)
return false;
@@ -337,17 +340,40 @@ bool dc_dmub_srv_p_state_delegate(struct dc *dc, bool should_manage_pstate, stru
cmd.fw_assisted_mclk_switch.config_data.fams_enabled = should_manage_pstate;
cmd.fw_assisted_mclk_switch.config_data.visual_confirm_enabled = visual_confirm_enabled;
- for (i = 0; context && i < context->stream_count; i++) {
- struct dc_stream_state *stream = context->streams[i];
- uint8_t min_refresh_in_hz = (stream->timing.min_refresh_in_uhz + 999999) / 1000000;
- int tg_inst = dc_dmub_srv_get_timing_generator_offset(dc, stream);
+ if (should_manage_pstate) {
+ for (i = 0, pipe_idx = 0; i < dc->res_pool->pipe_count; i++) {
+ struct pipe_ctx *pipe = &context->res_ctx.pipe_ctx[i];
+
+ if (!pipe->stream)
+ continue;
- config_data->pipe_data[tg_inst].pix_clk_100hz = stream->timing.pix_clk_100hz;
- config_data->pipe_data[tg_inst].min_refresh_in_hz = min_refresh_in_hz;
- config_data->pipe_data[tg_inst].max_ramp_step = ramp_up_num_steps;
- config_data->pipe_data[tg_inst].pipes = dc_dmub_srv_get_pipes_for_stream(dc, stream);
+ /* If FAMS is being used to support P-State and there is a stream
+ * that does not use FAMS, we are in an FPO + VActive scenario.
+ * Assign vactive stretch margin in this case.
+ */
+ if (!pipe->stream->fpo_in_use) {
+ cmd.fw_assisted_mclk_switch.config_data.vactive_stretch_margin_us = dc->debug.fpo_vactive_margin_us;
+ break;
+ }
+ pipe_idx++;
+ }
}
+ for (i = 0, k = 0; context && i < dc->res_pool->pipe_count; i++) {
+ struct pipe_ctx *pipe = &context->res_ctx.pipe_ctx[i];
+
+ if (!pipe->top_pipe && !pipe->prev_odm_pipe && pipe->stream && pipe->stream->fpo_in_use) {
+ struct pipe_ctx *pipe = &context->res_ctx.pipe_ctx[i];
+ uint8_t min_refresh_in_hz = (pipe->stream->timing.min_refresh_in_uhz + 999999) / 1000000;
+
+ config_data->pipe_data[k].pix_clk_100hz = pipe->stream->timing.pix_clk_100hz;
+ config_data->pipe_data[k].min_refresh_in_hz = min_refresh_in_hz;
+ config_data->pipe_data[k].max_ramp_step = ramp_up_num_steps;
+ config_data->pipe_data[k].pipes = dc_dmub_srv_get_pipes_for_stream(dc, pipe->stream);
+ dc_dmub_srv_populate_fams_pipe_info(dc, context, pipe, &config_data->pipe_data[k]);
+ k++;
+ }
+ }
cmd.fw_assisted_mclk_switch.header.payload_bytes =
sizeof(cmd.fw_assisted_mclk_switch) - sizeof(cmd.fw_assisted_mclk_switch.header);
@@ -421,27 +447,21 @@ void dc_dmub_srv_get_visual_confirm_color_cmd(struct dc *dc, struct pipe_ctx *pi
}
}
-#ifdef CONFIG_DRM_AMD_DC_DCN
/**
- * ***********************************************************************************************
- * populate_subvp_cmd_drr_info: Helper to populate DRR pipe info for the DMCUB subvp command
+ * populate_subvp_cmd_drr_info - Helper to populate DRR pipe info for the DMCUB subvp command
*
- * Populate the DMCUB SubVP command with DRR pipe info. All the information required for calculating
- * the SubVP + DRR microschedule is populated here.
+ * @dc: [in] current dc state
+ * @subvp_pipe: [in] pipe_ctx for the SubVP pipe
+ * @vblank_pipe: [in] pipe_ctx for the DRR pipe
+ * @pipe_data: [in] Pipe data which stores the VBLANK/DRR info
+ *
+ * Populate the DMCUB SubVP command with DRR pipe info. All the information
+ * required for calculating the SubVP + DRR microschedule is populated here.
*
* High level algorithm:
* 1. Get timing for SubVP pipe, phantom pipe, and DRR pipe
* 2. Calculate the min and max vtotal which supports SubVP + DRR microschedule
* 3. Populate the drr_info with the min and max supported vtotal values
- *
- * @param [in] dc: current dc state
- * @param [in] subvp_pipe: pipe_ctx for the SubVP pipe
- * @param [in] vblank_pipe: pipe_ctx for the DRR pipe
- * @param [in] pipe_data: Pipe data which stores the VBLANK/DRR info
- *
- * @return: void
- *
- * ***********************************************************************************************
*/
static void populate_subvp_cmd_drr_info(struct dc *dc,
struct pipe_ctx *subvp_pipe,
@@ -482,33 +502,38 @@ static void populate_subvp_cmd_drr_info(struct dc *dc,
(((uint64_t)main_timing->pix_clk_100hz * 100)));
drr_active_us = div64_u64(((uint64_t)drr_timing->v_addressable * drr_timing->h_total * 1000000),
(((uint64_t)drr_timing->pix_clk_100hz * 100)));
- max_drr_vblank_us = div64_u64((subvp_active_us - prefetch_us - drr_active_us), 2) + drr_active_us;
- max_drr_mallregion_us = subvp_active_us - prefetch_us - mall_region_us;
+ max_drr_vblank_us = div64_u64((subvp_active_us - prefetch_us -
+ dc->caps.subvp_fw_processing_delay_us - drr_active_us), 2) + drr_active_us;
+ max_drr_mallregion_us = subvp_active_us - prefetch_us - mall_region_us - dc->caps.subvp_fw_processing_delay_us;
max_drr_supported_us = max_drr_vblank_us > max_drr_mallregion_us ? max_drr_vblank_us : max_drr_mallregion_us;
max_vtotal_supported = div64_u64(((uint64_t)drr_timing->pix_clk_100hz * 100 * max_drr_supported_us),
(((uint64_t)drr_timing->h_total * 1000000)));
+ /* When calculating the max vtotal supported for SubVP + DRR cases, add
+ * margin due to possible rounding errors (being off by 1 line in the
+ * FW calculation can incorrectly push the P-State switch to wait 1 frame
+ * longer).
+ */
+ max_vtotal_supported = max_vtotal_supported - dc->caps.subvp_drr_max_vblank_margin_us;
+
pipe_data->pipe_config.vblank_data.drr_info.min_vtotal_supported = min_vtotal_supported;
pipe_data->pipe_config.vblank_data.drr_info.max_vtotal_supported = max_vtotal_supported;
+ pipe_data->pipe_config.vblank_data.drr_info.drr_vblank_start_margin = dc->caps.subvp_drr_vblank_start_margin_us;
}
/**
- * ***********************************************************************************************
- * populate_subvp_cmd_vblank_pipe_info: Helper to populate VBLANK pipe info for the DMUB subvp command
+ * populate_subvp_cmd_vblank_pipe_info - Helper to populate VBLANK pipe info for the DMUB subvp command
*
- * Populate the DMCUB SubVP command with VBLANK pipe info. All the information required to calculate
- * the microschedule for SubVP + VBLANK case is stored in the pipe_data (subvp_data and vblank_data).
- * Also check if the VBLANK pipe is a DRR display -- if it is make a call to populate drr_info.
+ * @dc: [in] current dc state
+ * @context: [in] new dc state
+ * @cmd: [in] DMUB cmd to be populated with SubVP info
+ * @vblank_pipe: [in] pipe_ctx for the VBLANK pipe
+ * @cmd_pipe_index: [in] index for the pipe array in DMCUB SubVP cmd
*
- * @param [in] dc: current dc state
- * @param [in] context: new dc state
- * @param [in] cmd: DMUB cmd to be populated with SubVP info
- * @param [in] vblank_pipe: pipe_ctx for the VBLANK pipe
- * @param [in] cmd_pipe_index: index for the pipe array in DMCUB SubVP cmd
- *
- * @return: void
- *
- * ***********************************************************************************************
+ * Populate the DMCUB SubVP command with VBLANK pipe info. All the information
+ * required to calculate the microschedule for SubVP + VBLANK case is stored in
+ * the pipe_data (subvp_data and vblank_data). Also check if the VBLANK pipe
+ * is a DRR display -- if it is make a call to populate drr_info.
*/
static void populate_subvp_cmd_vblank_pipe_info(struct dc *dc,
struct dc_state *context,
@@ -551,22 +576,18 @@ static void populate_subvp_cmd_vblank_pipe_info(struct dc *dc,
}
/**
- * ***********************************************************************************************
- * update_subvp_prefetch_end_to_mall_start: Helper for SubVP + SubVP case
- *
- * For SubVP + SubVP, we use a single vertical interrupt to start the microschedule for both
- * SubVP pipes. In order for this to work correctly, the MALL REGION of both SubVP pipes must
- * start at the same time. This function lengthens the prefetch end to mall start delay of the
- * SubVP pipe that has the shorter prefetch so that both MALL REGION's will start at the same time.
- *
- * @param [in] dc: current dc state
- * @param [in] context: new dc state
- * @param [in] cmd: DMUB cmd to be populated with SubVP info
- * @param [in] subvp_pipes: Array of SubVP pipes (should always be length 2)
+ * update_subvp_prefetch_end_to_mall_start - Helper for SubVP + SubVP case
*
- * @return: void
+ * @dc: [in] current dc state
+ * @context: [in] new dc state
+ * @cmd: [in] DMUB cmd to be populated with SubVP info
+ * @subvp_pipes: [in] Array of SubVP pipes (should always be length 2)
*
- * ***********************************************************************************************
+ * For SubVP + SubVP, we use a single vertical interrupt to start the
+ * microschedule for both SubVP pipes. In order for this to work correctly, the
+ * MALL REGION of both SubVP pipes must start at the same time. This function
+ * lengthens the prefetch end to mall start delay of the SubVP pipe that has
+ * the shorter prefetch so that both MALL REGION's will start at the same time.
*/
static void update_subvp_prefetch_end_to_mall_start(struct dc *dc,
struct dc_state *context,
@@ -608,22 +629,17 @@ static void update_subvp_prefetch_end_to_mall_start(struct dc *dc,
}
/**
- * ***************************************************************************************
- * setup_subvp_dmub_command: Helper to populate the SubVP pipe info for the DMUB subvp command
+ * populate_subvp_cmd_pipe_info - Helper to populate the SubVP pipe info for the DMUB subvp command
*
- * Populate the DMCUB SubVP command with SubVP pipe info. All the information required to
- * calculate the microschedule for the SubVP pipe is stored in the pipe_data of the DMCUB
- * SubVP command.
+ * @dc: [in] current dc state
+ * @context: [in] new dc state
+ * @cmd: [in] DMUB cmd to be populated with SubVP info
+ * @subvp_pipe: [in] pipe_ctx for the SubVP pipe
+ * @cmd_pipe_index: [in] index for the pipe array in DMCUB SubVP cmd
*
- * @param [in] dc: current dc state
- * @param [in] context: new dc state
- * @param [in] cmd: DMUB cmd to be populated with SubVP info
- * @param [in] subvp_pipe: pipe_ctx for the SubVP pipe
- * @param [in] cmd_pipe_index: index for the pipe array in DMCUB SubVP cmd
- *
- * @return: void
- *
- * ***************************************************************************************
+ * Populate the DMCUB SubVP command with SubVP pipe info. All the information
+ * required to calculate the microschedule for the SubVP pipe is stored in the
+ * pipe_data of the DMCUB SubVP command.
*/
static void populate_subvp_cmd_pipe_info(struct dc *dc,
struct dc_state *context,
@@ -647,7 +663,7 @@ static void populate_subvp_cmd_pipe_info(struct dc *dc,
pipe_data->pipe_config.subvp_data.main_vblank_end =
main_timing->v_total - main_timing->v_front_porch - main_timing->v_addressable;
pipe_data->pipe_config.subvp_data.mall_region_lines = phantom_timing->v_addressable;
- pipe_data->pipe_config.subvp_data.main_pipe_index = subvp_pipe->pipe_idx;
+ pipe_data->pipe_config.subvp_data.main_pipe_index = subvp_pipe->stream_res.tg->inst;
pipe_data->pipe_config.subvp_data.is_drr = subvp_pipe->stream->ignore_msa_timing_param;
/* Calculate the scaling factor from the src and dst height.
@@ -689,11 +705,11 @@ static void populate_subvp_cmd_pipe_info(struct dc *dc,
struct pipe_ctx *phantom_pipe = &context->res_ctx.pipe_ctx[j];
if (phantom_pipe->stream == subvp_pipe->stream->mall_stream_config.paired_stream) {
- pipe_data->pipe_config.subvp_data.phantom_pipe_index = phantom_pipe->pipe_idx;
+ pipe_data->pipe_config.subvp_data.phantom_pipe_index = phantom_pipe->stream_res.tg->inst;
if (phantom_pipe->bottom_pipe) {
- pipe_data->pipe_config.subvp_data.phantom_split_pipe_index = phantom_pipe->bottom_pipe->pipe_idx;
+ pipe_data->pipe_config.subvp_data.phantom_split_pipe_index = phantom_pipe->bottom_pipe->plane_res.hubp->inst;
} else if (phantom_pipe->next_odm_pipe) {
- pipe_data->pipe_config.subvp_data.phantom_split_pipe_index = phantom_pipe->next_odm_pipe->pipe_idx;
+ pipe_data->pipe_config.subvp_data.phantom_split_pipe_index = phantom_pipe->next_odm_pipe->plane_res.hubp->inst;
} else {
pipe_data->pipe_config.subvp_data.phantom_split_pipe_index = 0;
}
@@ -703,19 +719,14 @@ static void populate_subvp_cmd_pipe_info(struct dc *dc,
}
/**
- * ***************************************************************************************
- * dc_dmub_setup_subvp_dmub_command: Populate the DMCUB SubVP command
- *
- * This function loops through each pipe and populates the DMUB
- * SubVP CMD info based on the pipe (e.g. SubVP, VBLANK).
+ * dc_dmub_setup_subvp_dmub_command - Populate the DMCUB SubVP command
*
- * @param [in] dc: current dc state
- * @param [in] context: new dc state
- * @param [in] cmd: DMUB cmd to be populated with SubVP info
+ * @dc: [in] current dc state
+ * @context: [in] new dc state
+ * @enable: [in] if true enables the pipes population
*
- * @return: void
- *
- * ***************************************************************************************
+ * This function loops through each pipe and populates the DMUB SubVP CMD info
+ * based on the pipe (e.g. SubVP, VBLANK).
*/
void dc_dmub_setup_subvp_dmub_command(struct dc *dc,
struct dc_state *context,
@@ -764,7 +775,8 @@ void dc_dmub_setup_subvp_dmub_command(struct dc *dc,
!pipe->top_pipe && !pipe->prev_odm_pipe &&
pipe->stream->mall_stream_config.type == SUBVP_MAIN) {
populate_subvp_cmd_pipe_info(dc, context, &cmd, pipe, cmd_pipe_index++);
- } else if (pipe->plane_state && pipe->stream->mall_stream_config.type == SUBVP_NONE) {
+ } else if (pipe->plane_state && pipe->stream->mall_stream_config.type == SUBVP_NONE &&
+ !pipe->top_pipe && !pipe->prev_odm_pipe) {
// Don't need to check for ActiveDRAMClockChangeMargin < 0, not valid in cases where
// we run through DML without calculating "natural" P-state support
populate_subvp_cmd_vblank_pipe_info(dc, context, &cmd, pipe, cmd_pipe_index++);
@@ -789,7 +801,6 @@ void dc_dmub_setup_subvp_dmub_command(struct dc *dc,
dc_dmub_srv_cmd_execute(dc->ctx->dmub_srv);
dc_dmub_srv_wait_idle(dc->ctx->dmub_srv);
}
-#endif
bool dc_dmub_srv_get_diagnostic_data(struct dc_dmub_srv *dc_dmub_srv, struct dmub_diagnostic_data *diag_data)
{
@@ -882,11 +893,59 @@ void dc_dmub_srv_log_diagnostic_data(struct dc_dmub_srv *dc_dmub_srv)
diag_data.is_cw6_enabled);
}
+static bool dc_can_pipe_disable_cursor(struct pipe_ctx *pipe_ctx)
+{
+ struct pipe_ctx *test_pipe, *split_pipe;
+ const struct scaler_data *scl_data = &pipe_ctx->plane_res.scl_data;
+ struct rect r1 = scl_data->recout, r2, r2_half;
+ int r1_r = r1.x + r1.width, r1_b = r1.y + r1.height, r2_r, r2_b;
+ int cur_layer = pipe_ctx->plane_state->layer_index;
+
+ /**
+ * Disable the cursor if there's another pipe above this with a
+ * plane that contains this pipe's viewport to prevent double cursor
+ * and incorrect scaling artifacts.
+ */
+ for (test_pipe = pipe_ctx->top_pipe; test_pipe;
+ test_pipe = test_pipe->top_pipe) {
+ // Skip invisible layer and pipe-split plane on same layer
+ if (!test_pipe->plane_state->visible || test_pipe->plane_state->layer_index == cur_layer)
+ continue;
+
+ r2 = test_pipe->plane_res.scl_data.recout;
+ r2_r = r2.x + r2.width;
+ r2_b = r2.y + r2.height;
+ split_pipe = test_pipe;
+
+ /**
+ * There is another half plane on same layer because of
+ * pipe-split, merge together per same height.
+ */
+ for (split_pipe = pipe_ctx->top_pipe; split_pipe;
+ split_pipe = split_pipe->top_pipe)
+ if (split_pipe->plane_state->layer_index == test_pipe->plane_state->layer_index) {
+ r2_half = split_pipe->plane_res.scl_data.recout;
+ r2.x = (r2_half.x < r2.x) ? r2_half.x : r2.x;
+ r2.width = r2.width + r2_half.width;
+ r2_r = r2.x + r2.width;
+ break;
+ }
+
+ if (r1.x >= r2.x && r1.y >= r2.y && r1_r <= r2_r && r1_b <= r2_b)
+ return true;
+ }
+
+ return false;
+}
+
static bool dc_dmub_should_update_cursor_data(struct pipe_ctx *pipe_ctx)
{
if (pipe_ctx->plane_state != NULL) {
if (pipe_ctx->plane_state->address.type == PLN_ADDR_TYPE_VIDEO_PROGRESSIVE)
return false;
+
+ if (dc_can_pipe_disable_cursor(pipe_ctx))
+ return false;
}
if ((pipe_ctx->stream->link->psr_settings.psr_version == DC_PSR_VERSION_SU_1 ||
@@ -962,19 +1021,14 @@ static void dc_build_cursor_attribute_update_payload1(
}
/**
- * ***************************************************************************************
- * dc_send_update_cursor_info_to_dmu: Populate the DMCUB Cursor update info command
+ * dc_send_update_cursor_info_to_dmu - Populate the DMCUB Cursor update info command
*
- * This function would store the cursor related information and pass it into dmub
+ * @pCtx: [in] pipe context
+ * @pipe_idx: [in] pipe index
*
- * @param [in] pCtx: pipe context
- * @param [in] pipe_idx: pipe index
- *
- * @return: void
- *
- * ***************************************************************************************
+ * This function would store the cursor related information and pass it into
+ * dmub
*/
-
void dc_send_update_cursor_info_to_dmu(
struct pipe_ctx *pCtx, uint8_t pipe_idx)
{
diff --git a/drivers/gpu/drm/amd/display/dc/dc_dp_types.h b/drivers/gpu/drm/amd/display/dc/dc_dp_types.h
index 2c54b6e0498b..49aab1924665 100644
--- a/drivers/gpu/drm/amd/display/dc/dc_dp_types.h
+++ b/drivers/gpu/drm/amd/display/dc/dc_dp_types.h
@@ -27,6 +27,7 @@
#define DC_DP_TYPES_H
#include "os_types.h"
+#include "dc_ddc_types.h"
enum dc_lane_count {
LANE_COUNT_UNKNOWN = 0,
@@ -46,14 +47,15 @@ enum dc_lane_count {
*/
enum dc_link_rate {
LINK_RATE_UNKNOWN = 0,
- LINK_RATE_LOW = 0x06, // Rate_1 (RBR) - 1.62 Gbps/Lane
- LINK_RATE_RATE_2 = 0x08, // Rate_2 - 2.16 Gbps/Lane
- LINK_RATE_RATE_3 = 0x09, // Rate_3 - 2.43 Gbps/Lane
- LINK_RATE_HIGH = 0x0A, // Rate_4 (HBR) - 2.70 Gbps/Lane
- LINK_RATE_RBR2 = 0x0C, // Rate_5 (RBR2)- 3.24 Gbps/Lane
- LINK_RATE_RATE_6 = 0x10, // Rate_6 - 4.32 Gbps/Lane
- LINK_RATE_HIGH2 = 0x14, // Rate_7 (HBR2)- 5.40 Gbps/Lane
- LINK_RATE_HIGH3 = 0x1E, // Rate_8 (HBR3)- 8.10 Gbps/Lane
+ LINK_RATE_LOW = 0x06, // Rate_1 (RBR) - 1.62 Gbps/Lane
+ LINK_RATE_RATE_2 = 0x08, // Rate_2 - 2.16 Gbps/Lane
+ LINK_RATE_RATE_3 = 0x09, // Rate_3 - 2.43 Gbps/Lane
+ LINK_RATE_HIGH = 0x0A, // Rate_4 (HBR) - 2.70 Gbps/Lane
+ LINK_RATE_RBR2 = 0x0C, // Rate_5 (RBR2) - 3.24 Gbps/Lane
+ LINK_RATE_RATE_6 = 0x10, // Rate_6 - 4.32 Gbps/Lane
+ LINK_RATE_HIGH2 = 0x14, // Rate_7 (HBR2) - 5.40 Gbps/Lane
+ LINK_RATE_RATE_8 = 0x19, // Rate_8 - 6.75 Gbps/Lane
+ LINK_RATE_HIGH3 = 0x1E, // Rate_9 (HBR3) - 8.10 Gbps/Lane
/* Starting from DP2.0 link rate enum directly represents actual
* link rate value in unit of 10 mbps
*/
@@ -149,7 +151,6 @@ struct dc_link_settings {
enum dc_link_spread link_spread;
bool use_link_rate_set;
uint8_t link_rate_set;
- bool dpcd_source_device_specific_field_support;
};
union dc_dp_ffe_preset {
@@ -362,14 +363,10 @@ enum dpcd_downstream_port_detailed_type {
union dwnstream_port_caps_byte2 {
struct {
uint8_t MAX_BITS_PER_COLOR_COMPONENT:2;
-#if defined(CONFIG_DRM_AMD_DC_DCN)
uint8_t MAX_ENCODED_LINK_BW_SUPPORT:3;
uint8_t SOURCE_CONTROL_MODE_SUPPORT:1;
uint8_t CONCURRENT_LINK_BRING_UP_SEQ_SUPPORT:1;
uint8_t RESERVED:1;
-#else
- uint8_t RESERVED:6;
-#endif
} bits;
uint8_t raw;
};
@@ -407,7 +404,6 @@ union dwnstream_port_caps_byte3_hdmi {
uint8_t raw;
};
-#if defined(CONFIG_DRM_AMD_DC_DCN)
union hdmi_sink_encoded_link_bw_support {
struct {
uint8_t HDMI_SINK_ENCODED_LINK_BW_SUPPORT:3;
@@ -429,7 +425,6 @@ union hdmi_encoded_link_bw {
} bits;
uint8_t raw;
};
-#endif
/*4-byte structure for detailed capabilities of a down-stream port
(DP-to-TMDS converter).*/
@@ -509,7 +504,11 @@ union down_spread_ctrl {
1 = Main link signal is downspread <= 0.5%
with frequency in the range of 30kHz ~ 33kHz*/
uint8_t SPREAD_AMP:1;
- uint8_t RESERVED2:2;/*Bit 6:5 = RESERVED. Read all 0s*/
+ uint8_t RESERVED2:1;/*Bit 5 = RESERVED. Read all 0s*/
+ /* Bit 6 = FIXED_VTOTAL_AS_SDP_EN_IN_PR_ACTIVE.
+ 0 = FIXED_VTOTAL_AS_SDP_EN_IN_PR_ACTIVE is not enabled by the Source device (default)
+ 1 = FIXED_VTOTAL_AS_SDP_EN_IN_PR_ACTIVE is enabled by Source device */
+ uint8_t FIXED_VTOTAL_AS_SDP_EN_IN_PR_ACTIVE:1;
/*Bit 7 = MSA_TIMING_PAR_IGNORE_EN
0 = Source device will send valid data for the MSA Timing Params
1 = Source device may send invalid data for these MSA Timing Params*/
@@ -865,6 +864,21 @@ struct psr_caps {
unsigned int psr_power_opt_flag;
};
+union dpcd_dprx_feature_enumeration_list_cont_1 {
+ struct {
+ uint8_t ADAPTIVE_SYNC_SDP_SUPPORT:1;
+ uint8_t AS_SDP_FIRST_HALF_LINE_OR_3840_PIXEL_CYCLE_WINDOW_NOT_SUPPORTED: 1;
+ uint8_t RESERVED0: 2;
+ uint8_t VSC_EXT_SDP_VER1_SUPPORT: 1;
+ uint8_t RESERVED1: 3;
+ } bits;
+ uint8_t raw;
+};
+
+struct adaptive_sync_caps {
+ union dpcd_dprx_feature_enumeration_list_cont_1 dp_adap_sync_caps;
+};
+
/* Length of router topology ID read from DPCD in bytes. */
#define DPCD_USB4_TOPOLOGY_ID_LEN 5
@@ -908,12 +922,6 @@ struct dpcd_usb4_dp_tunneling_info {
#ifndef DP_DFP_CAPABILITY_EXTENSION_SUPPORT
#define DP_DFP_CAPABILITY_EXTENSION_SUPPORT 0x0A3
#endif
-#ifndef DP_LINK_SQUARE_PATTERN
-#define DP_LINK_SQUARE_PATTERN 0x10F
-#endif
-#ifndef DP_CABLE_ATTRIBUTES_UPDATED_BY_DPTX
-#define DP_CABLE_ATTRIBUTES_UPDATED_BY_DPTX 0x110
-#endif
#ifndef DP_DSC_CONFIGURATION
#define DP_DSC_CONFIGURATION 0x161
#endif
@@ -926,9 +934,6 @@ struct dpcd_usb4_dp_tunneling_info {
#ifndef DP_128b_132b_TRAINING_AUX_RD_INTERVAL
#define DP_128b_132b_TRAINING_AUX_RD_INTERVAL 0x2216
#endif
-#ifndef DP_CABLE_ATTRIBUTES_UPDATED_BY_DPRX
-#define DP_CABLE_ATTRIBUTES_UPDATED_BY_DPRX 0x2217
-#endif
#ifndef DP_TEST_264BIT_CUSTOM_PATTERN_7_0
#define DP_TEST_264BIT_CUSTOM_PATTERN_7_0 0X2230
#endif
@@ -972,7 +977,6 @@ struct dpcd_usb4_dp_tunneling_info {
#define DP_INTRA_HOP_AUX_REPLY_INDICATION (1 << 3)
/* TODO - Use DRM header to replace above once available */
#endif // DP_INTRA_HOP_AUX_REPLY_INDICATION
-
union dp_main_line_channel_coding_cap {
struct {
uint8_t DP_8b_10b_SUPPORTED :1;
@@ -1107,4 +1111,296 @@ struct edp_psr_info {
uint8_t force_psrsu_cap;
};
+struct dprx_states {
+ bool cable_id_written;
+};
+
+enum dpcd_downstream_port_max_bpc {
+ DOWN_STREAM_MAX_8BPC = 0,
+ DOWN_STREAM_MAX_10BPC,
+ DOWN_STREAM_MAX_12BPC,
+ DOWN_STREAM_MAX_16BPC
+};
+
+enum link_training_offset {
+ DPRX = 0,
+ LTTPR_PHY_REPEATER1 = 1,
+ LTTPR_PHY_REPEATER2 = 2,
+ LTTPR_PHY_REPEATER3 = 3,
+ LTTPR_PHY_REPEATER4 = 4,
+ LTTPR_PHY_REPEATER5 = 5,
+ LTTPR_PHY_REPEATER6 = 6,
+ LTTPR_PHY_REPEATER7 = 7,
+ LTTPR_PHY_REPEATER8 = 8
+};
+
+#define MAX_REPEATER_CNT 8
+
+struct dc_lttpr_caps {
+ union dpcd_rev revision;
+ uint8_t mode;
+ uint8_t max_lane_count;
+ uint8_t max_link_rate;
+ uint8_t phy_repeater_cnt;
+ uint8_t max_ext_timeout;
+ union dp_main_link_channel_coding_lttpr_cap main_link_channel_coding;
+ union dp_128b_132b_supported_lttpr_link_rates supported_128b_132b_rates;
+ uint8_t aux_rd_interval[MAX_REPEATER_CNT - 1];
+};
+
+struct dc_dongle_dfp_cap_ext {
+ bool supported;
+ uint16_t max_pixel_rate_in_mps;
+ uint16_t max_video_h_active_width;
+ uint16_t max_video_v_active_height;
+ struct dp_encoding_format_caps encoding_format_caps;
+ struct dp_color_depth_caps rgb_color_depth_caps;
+ struct dp_color_depth_caps ycbcr444_color_depth_caps;
+ struct dp_color_depth_caps ycbcr422_color_depth_caps;
+ struct dp_color_depth_caps ycbcr420_color_depth_caps;
+};
+
+struct dc_dongle_caps {
+ /* dongle type (DP converter, CV smart dongle) */
+ enum display_dongle_type dongle_type;
+ bool extendedCapValid;
+ /* If dongle_type == DISPLAY_DONGLE_DP_HDMI_CONVERTER,
+ indicates 'Frame Sequential-to-lllFrame Pack' conversion capability.*/
+ bool is_dp_hdmi_s3d_converter;
+ bool is_dp_hdmi_ycbcr422_pass_through;
+ bool is_dp_hdmi_ycbcr420_pass_through;
+ bool is_dp_hdmi_ycbcr422_converter;
+ bool is_dp_hdmi_ycbcr420_converter;
+ uint32_t dp_hdmi_max_bpc;
+ uint32_t dp_hdmi_max_pixel_clk_in_khz;
+ uint32_t dp_hdmi_frl_max_link_bw_in_kbps;
+ struct dc_dongle_dfp_cap_ext dfp_cap_ext;
+};
+
+struct dpcd_caps {
+ union dpcd_rev dpcd_rev;
+ union max_lane_count max_ln_count;
+ union max_down_spread max_down_spread;
+ union dprx_feature dprx_feature;
+
+ /* valid only for eDP v1.4 or higher*/
+ uint8_t edp_supported_link_rates_count;
+ enum dc_link_rate edp_supported_link_rates[8];
+
+ /* dongle type (DP converter, CV smart dongle) */
+ enum display_dongle_type dongle_type;
+ bool is_dongle_type_one;
+ /* branch device or sink device */
+ bool is_branch_dev;
+ /* Dongle's downstream count. */
+ union sink_count sink_count;
+ bool is_mst_capable;
+ /* If dongle_type == DISPLAY_DONGLE_DP_HDMI_CONVERTER,
+ indicates 'Frame Sequential-to-lllFrame Pack' conversion capability.*/
+ struct dc_dongle_caps dongle_caps;
+
+ uint32_t sink_dev_id;
+ int8_t sink_dev_id_str[6];
+ int8_t sink_hw_revision;
+ int8_t sink_fw_revision[2];
+
+ uint32_t branch_dev_id;
+ int8_t branch_dev_name[6];
+ int8_t branch_hw_revision;
+ int8_t branch_fw_revision[2];
+
+ bool allow_invalid_MSA_timing_param;
+ bool panel_mode_edp;
+ bool dpcd_display_control_capable;
+ bool ext_receiver_cap_field_present;
+ bool set_power_state_capable_edp;
+ bool dynamic_backlight_capable_edp;
+ union dpcd_fec_capability fec_cap;
+ struct dpcd_dsc_capabilities dsc_caps;
+ struct dc_lttpr_caps lttpr_caps;
+ struct adaptive_sync_caps adaptive_sync_caps;
+ struct dpcd_usb4_dp_tunneling_info usb4_dp_tun_info;
+
+ union dp_128b_132b_supported_link_rates dp_128b_132b_supported_link_rates;
+ union dp_main_line_channel_coding_cap channel_coding_cap;
+ union dp_sink_video_fallback_formats fallback_formats;
+ union dp_fec_capability1 fec_cap1;
+ union dp_cable_id cable_id;
+ uint8_t edp_rev;
+ union edp_alpm_caps alpm_caps;
+ struct edp_psr_info psr_info;
+};
+
+union dpcd_sink_ext_caps {
+ struct {
+ /* 0 - Sink supports backlight adjust via PWM during SDR/HDR mode
+ * 1 - Sink supports backlight adjust via AUX during SDR/HDR mode.
+ */
+ uint8_t sdr_aux_backlight_control : 1;
+ uint8_t hdr_aux_backlight_control : 1;
+ uint8_t reserved_1 : 2;
+ uint8_t oled : 1;
+ uint8_t reserved_2 : 1;
+ uint8_t miniled : 1;
+ uint8_t reserved : 1;
+ } bits;
+ uint8_t raw;
+};
+
+enum dc_link_fec_state {
+ dc_link_fec_not_ready,
+ dc_link_fec_ready,
+ dc_link_fec_enabled
+};
+
+union dpcd_psr_configuration {
+ struct {
+ unsigned char ENABLE : 1;
+ unsigned char TRANSMITTER_ACTIVE_IN_PSR : 1;
+ unsigned char CRC_VERIFICATION : 1;
+ unsigned char FRAME_CAPTURE_INDICATION : 1;
+ /* For eDP 1.4, PSR v2*/
+ unsigned char LINE_CAPTURE_INDICATION : 1;
+ /* For eDP 1.4, PSR v2*/
+ unsigned char IRQ_HPD_WITH_CRC_ERROR : 1;
+ unsigned char ENABLE_PSR2 : 1;
+ unsigned char EARLY_TRANSPORT_ENABLE : 1;
+ } bits;
+ unsigned char raw;
+};
+
+union dpcd_alpm_configuration {
+ struct {
+ unsigned char ENABLE : 1;
+ unsigned char IRQ_HPD_ENABLE : 1;
+ unsigned char RESERVED : 6;
+ } bits;
+ unsigned char raw;
+};
+
+union dpcd_sink_active_vtotal_control_mode {
+ struct {
+ unsigned char ENABLE : 1;
+ unsigned char RESERVED : 7;
+ } bits;
+ unsigned char raw;
+};
+
+union psr_error_status {
+ struct {
+ unsigned char LINK_CRC_ERROR :1;
+ unsigned char RFB_STORAGE_ERROR :1;
+ unsigned char VSC_SDP_ERROR :1;
+ unsigned char RESERVED :5;
+ } bits;
+ unsigned char raw;
+};
+
+union psr_sink_psr_status {
+ struct {
+ unsigned char SINK_SELF_REFRESH_STATUS :3;
+ unsigned char RESERVED :5;
+ } bits;
+ unsigned char raw;
+};
+
+struct edp_trace_power_timestamps {
+ uint64_t poweroff;
+ uint64_t poweron;
+};
+
+struct dp_trace_lt_counts {
+ unsigned int total;
+ unsigned int fail;
+};
+
+enum link_training_result {
+ LINK_TRAINING_SUCCESS,
+ LINK_TRAINING_CR_FAIL_LANE0,
+ LINK_TRAINING_CR_FAIL_LANE1,
+ LINK_TRAINING_CR_FAIL_LANE23,
+ /* CR DONE bit is cleared during EQ step */
+ LINK_TRAINING_EQ_FAIL_CR,
+ /* CR DONE bit is cleared but LANE0_CR_DONE is set during EQ step */
+ LINK_TRAINING_EQ_FAIL_CR_PARTIAL,
+ /* other failure during EQ step */
+ LINK_TRAINING_EQ_FAIL_EQ,
+ LINK_TRAINING_LQA_FAIL,
+ /* one of the CR,EQ or symbol lock is dropped */
+ LINK_TRAINING_LINK_LOSS,
+ /* Abort link training (because sink unplugged) */
+ LINK_TRAINING_ABORT,
+ DP_128b_132b_LT_FAILED,
+ DP_128b_132b_MAX_LOOP_COUNT_REACHED,
+ DP_128b_132b_CHANNEL_EQ_DONE_TIMEOUT,
+ DP_128b_132b_CDS_DONE_TIMEOUT,
+};
+
+struct dp_trace_lt {
+ struct dp_trace_lt_counts counts;
+ struct dp_trace_timestamps {
+ unsigned long long start;
+ unsigned long long end;
+ } timestamps;
+ enum link_training_result result;
+ bool is_logged;
+};
+
+struct dp_trace {
+ struct dp_trace_lt detect_lt_trace;
+ struct dp_trace_lt commit_lt_trace;
+ unsigned int link_loss_count;
+ bool is_initialized;
+ struct edp_trace_power_timestamps edp_trace_power_timestamps;
+};
+
+/* TODO - This is a temporary location for any new DPCD definitions.
+ * We should move these to drm_dp header.
+ */
+#ifndef DP_LINK_SQUARE_PATTERN
+#define DP_LINK_SQUARE_PATTERN 0x10F
+#endif
+#ifndef DP_CABLE_ATTRIBUTES_UPDATED_BY_DPRX
+#define DP_CABLE_ATTRIBUTES_UPDATED_BY_DPRX 0x2217
+#endif
+#ifndef DP_CABLE_ATTRIBUTES_UPDATED_BY_DPTX
+#define DP_CABLE_ATTRIBUTES_UPDATED_BY_DPTX 0x110
+#endif
+#ifndef DP_REPEATER_CONFIGURATION_AND_STATUS_SIZE
+#define DP_REPEATER_CONFIGURATION_AND_STATUS_SIZE 0x50
+#endif
+#ifndef DP_TUNNELING_IRQ
+#define DP_TUNNELING_IRQ (1 << 5)
+#endif
+/** USB4 DPCD BW Allocation Registers Chapter 10.7 **/
+#ifndef DP_TUNNELING_CAPABILITIES
+#define DP_TUNNELING_CAPABILITIES 0xE000D /* 1.4a */
+#endif
+#ifndef USB4_DRIVER_ID
+#define USB4_DRIVER_ID 0xE000F /* 1.4a */
+#endif
+#ifndef USB4_DRIVER_BW_CAPABILITY
+#define USB4_DRIVER_BW_CAPABILITY 0xE0020 /* 1.4a */
+#endif
+#ifndef DP_IN_ADAPTER_TUNNEL_INFO
+#define DP_IN_ADAPTER_TUNNEL_INFO 0xE0021 /* 1.4a */
+#endif
+#ifndef DP_BW_GRANULALITY
+#define DP_BW_GRANULALITY 0xE0022 /* 1.4a */
+#endif
+#ifndef ESTIMATED_BW
+#define ESTIMATED_BW 0xE0023 /* 1.4a */
+#endif
+#ifndef ALLOCATED_BW
+#define ALLOCATED_BW 0xE0024 /* 1.4a */
+#endif
+#ifndef DP_TUNNELING_STATUS
+#define DP_TUNNELING_STATUS 0xE0025 /* 1.4a */
+#endif
+#ifndef DPTX_BW_ALLOCATION_MODE_CONTROL
+#define DPTX_BW_ALLOCATION_MODE_CONTROL 0xE0030 /* 1.4a */
+#endif
+#ifndef REQUESTED_BW
+#define REQUESTED_BW 0xE0031 /* 1.4a */
+#endif
#endif /* DC_DP_TYPES_H */
diff --git a/drivers/gpu/drm/amd/display/dc/dc_dsc.h b/drivers/gpu/drm/amd/display/dc/dc_dsc.h
index 684713b2cff7..0e92a322c2ed 100644
--- a/drivers/gpu/drm/amd/display/dc/dc_dsc.h
+++ b/drivers/gpu/drm/amd/display/dc/dc_dsc.h
@@ -54,6 +54,12 @@ struct dc_dsc_policy {
bool enable_dsc_when_not_needed;
};
+struct dc_dsc_config_options {
+ uint32_t dsc_min_slice_height_override;
+ uint32_t max_target_bpp_limit_override_x16;
+ uint32_t slice_height_granularity;
+};
+
bool dc_dsc_parse_dsc_dpcd(const struct dc *dc,
const uint8_t *dpcd_dsc_basic_data,
const uint8_t *dpcd_dsc_ext_data,
@@ -71,8 +77,7 @@ bool dc_dsc_compute_bandwidth_range(
bool dc_dsc_compute_config(
const struct display_stream_compressor *dsc,
const struct dsc_dec_dpcd_caps *dsc_sink_caps,
- uint32_t dsc_min_slice_height_override,
- uint32_t max_target_bpp_limit_override,
+ const struct dc_dsc_config_options *options,
uint32_t target_bandwidth_kbps,
const struct dc_crtc_timing *timing,
struct dc_dsc_config *dsc_cfg);
@@ -100,4 +105,6 @@ void dc_dsc_policy_set_enable_dsc_when_not_needed(bool enable);
void dc_dsc_policy_set_disable_dsc_stream_overhead(bool disable);
+void dc_dsc_get_default_config_option(const struct dc *dc, struct dc_dsc_config_options *options);
+
#endif
diff --git a/drivers/gpu/drm/amd/display/dc/dc_hdmi_types.h b/drivers/gpu/drm/amd/display/dc/dc_hdmi_types.h
new file mode 100644
index 000000000000..b015e80672ec
--- /dev/null
+++ b/drivers/gpu/drm/amd/display/dc/dc_hdmi_types.h
@@ -0,0 +1,133 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ * Authors: AMD
+ *
+ */
+
+#ifndef DC_HDMI_TYPES_H
+#define DC_HDMI_TYPES_H
+
+#include "os_types.h"
+
+/* Address range from 0x00 to 0x1F.*/
+#define DP_ADAPTOR_TYPE2_SIZE 0x20
+#define DP_ADAPTOR_TYPE2_REG_ID 0x10
+#define DP_ADAPTOR_TYPE2_REG_MAX_TMDS_CLK 0x1D
+/* Identifies adaptor as Dual-mode adaptor */
+#define DP_ADAPTOR_TYPE2_ID 0xA0
+/* MHz*/
+#define DP_ADAPTOR_TYPE2_MAX_TMDS_CLK 600
+/* MHz*/
+#define DP_ADAPTOR_TYPE2_MIN_TMDS_CLK 25
+/* kHZ*/
+#define DP_ADAPTOR_DVI_MAX_TMDS_CLK 165000
+/* kHZ*/
+#define DP_ADAPTOR_HDMI_SAFE_MAX_TMDS_CLK 165000
+
+struct dp_hdmi_dongle_signature_data {
+ int8_t id[15];/* "DP-HDMI ADAPTOR"*/
+ uint8_t eot;/* end of transmition '\x4' */
+};
+
+/* DP-HDMI dongle slave address for retrieving dongle signature*/
+#define DP_HDMI_DONGLE_ADDRESS 0x40
+#define DP_HDMI_DONGLE_SIGNATURE_EOT 0x04
+
+
+/* SCDC Address defines (HDMI 2.0)*/
+#define HDMI_SCDC_WRITE_UPDATE_0_ARRAY 3
+#define HDMI_SCDC_ADDRESS 0x54
+#define HDMI_SCDC_SINK_VERSION 0x01
+#define HDMI_SCDC_SOURCE_VERSION 0x02
+#define HDMI_SCDC_UPDATE_0 0x10
+#define HDMI_SCDC_TMDS_CONFIG 0x20
+#define HDMI_SCDC_SCRAMBLER_STATUS 0x21
+#define HDMI_SCDC_CONFIG_0 0x30
+#define HDMI_SCDC_CONFIG_1 0x31
+#define HDMI_SCDC_SOURCE_TEST_REQ 0x35
+#define HDMI_SCDC_STATUS_FLAGS 0x40
+#define HDMI_SCDC_ERR_DETECT 0x50
+#define HDMI_SCDC_TEST_CONFIG 0xC0
+
+#define HDMI_SCDC_MANUFACTURER_OUI 0xD0
+#define HDMI_SCDC_DEVICE_ID 0xDB
+
+union hdmi_scdc_update_read_data {
+ uint8_t byte[2];
+ struct {
+ uint8_t STATUS_UPDATE:1;
+ uint8_t CED_UPDATE:1;
+ uint8_t RR_TEST:1;
+ uint8_t RESERVED:5;
+ uint8_t RESERVED2:8;
+ } fields;
+};
+
+union hdmi_scdc_status_flags_data {
+ uint8_t byte;
+ struct {
+ uint8_t CLOCK_DETECTED:1;
+ uint8_t CH0_LOCKED:1;
+ uint8_t CH1_LOCKED:1;
+ uint8_t CH2_LOCKED:1;
+ uint8_t RESERVED:4;
+ } fields;
+};
+
+union hdmi_scdc_ced_data {
+ uint8_t byte[11];
+ struct {
+ uint8_t CH0_8LOW:8;
+ uint8_t CH0_7HIGH:7;
+ uint8_t CH0_VALID:1;
+ uint8_t CH1_8LOW:8;
+ uint8_t CH1_7HIGH:7;
+ uint8_t CH1_VALID:1;
+ uint8_t CH2_8LOW:8;
+ uint8_t CH2_7HIGH:7;
+ uint8_t CH2_VALID:1;
+ uint8_t CHECKSUM:8;
+ uint8_t RESERVED:8;
+ uint8_t RESERVED2:8;
+ uint8_t RESERVED3:8;
+ uint8_t RESERVED4:4;
+ } fields;
+};
+
+union hdmi_scdc_manufacturer_OUI_data {
+ uint8_t byte[3];
+ struct {
+ uint8_t Manufacturer_OUI_1:8;
+ uint8_t Manufacturer_OUI_2:8;
+ uint8_t Manufacturer_OUI_3:8;
+ } fields;
+};
+
+union hdmi_scdc_device_id_data {
+ uint8_t byte;
+ struct {
+ uint8_t Hardware_Minor_Rev:4;
+ uint8_t Hardware_Major_Rev:4;
+ } fields;
+};
+
+#endif /* DC_HDMI_TYPES_H */
diff --git a/drivers/gpu/drm/amd/display/dc/dc_hw_types.h b/drivers/gpu/drm/amd/display/dc/dc_hw_types.h
index 848db8676adf..100d62162b71 100644
--- a/drivers/gpu/drm/amd/display/dc/dc_hw_types.h
+++ b/drivers/gpu/drm/amd/display/dc/dc_hw_types.h
@@ -797,6 +797,29 @@ enum dc_timing_3d_format {
TIMING_3D_FORMAT_MAX,
};
+#define DC_DSC_QP_SET_SIZE 15
+#define DC_DSC_RC_BUF_THRESH_SIZE 14
+struct dc_dsc_rc_params_override {
+ int32_t rc_model_size;
+ int32_t rc_buf_thresh[DC_DSC_RC_BUF_THRESH_SIZE];
+ int32_t rc_minqp[DC_DSC_QP_SET_SIZE];
+ int32_t rc_maxqp[DC_DSC_QP_SET_SIZE];
+ int32_t rc_offset[DC_DSC_QP_SET_SIZE];
+
+ int32_t rc_tgt_offset_hi;
+ int32_t rc_tgt_offset_lo;
+ int32_t rc_edge_factor;
+ int32_t rc_quant_incr_limit0;
+ int32_t rc_quant_incr_limit1;
+
+ int32_t initial_fullness_offset;
+ int32_t initial_delay;
+
+ int32_t flatness_min_qp;
+ int32_t flatness_max_qp;
+ int32_t flatness_det_thresh;
+};
+
struct dc_dsc_config {
uint32_t num_slices_h; /* Number of DSC slices - horizontal */
uint32_t num_slices_v; /* Number of DSC slices - vertical */
@@ -806,11 +829,12 @@ struct dc_dsc_config {
uint32_t version_minor; /* DSC minor version. Full version is formed as 1.version_minor. */
bool ycbcr422_simple; /* Tell DSC engine to convert YCbCr 4:2:2 to 'YCbCr 4:2:2 simple'. */
int32_t rc_buffer_size; /* DSC RC buffer block size in bytes */
-#if defined(CONFIG_DRM_AMD_DC_DCN)
+#if defined(CONFIG_DRM_AMD_DC_FP)
bool is_frl; /* indicate if DSC is applied based on HDMI FRL sink's capability */
#endif
bool is_dp; /* indicate if DSC is applied based on DP's capability */
uint32_t mst_pbn; /* pbn of display on dsc mst hub */
+ const struct dc_dsc_rc_params_override *rc_params_ovrd; /* DM owned memory. If not NULL, apply custom dsc rc params */
};
/**
@@ -1061,5 +1085,19 @@ struct tg_color {
uint16_t color_b_cb;
};
+enum symclk_state {
+ SYMCLK_OFF_TX_OFF,
+ SYMCLK_ON_TX_ON,
+ SYMCLK_ON_TX_OFF,
+};
+
+struct phy_state {
+ struct {
+ uint8_t otg : 1;
+ uint8_t reserved : 7;
+ } symclk_ref_cnts;
+ enum symclk_state symclk_state;
+};
+
#endif /* DC_HW_TYPES_H */
diff --git a/drivers/gpu/drm/amd/display/dc/dc_link.h b/drivers/gpu/drm/amd/display/dc/dc_link.h
deleted file mode 100644
index caf0c7af2d0b..000000000000
--- a/drivers/gpu/drm/amd/display/dc/dc_link.h
+++ /dev/null
@@ -1,553 +0,0 @@
-/*
- * Copyright 2012-14 Advanced Micro Devices, Inc.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice shall be included in
- * all copies or substantial portions of the Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
- * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
- * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
- * OTHER DEALINGS IN THE SOFTWARE.
- *
- * Authors: AMD
- *
- */
-
-#ifndef DC_LINK_H_
-#define DC_LINK_H_
-
-#include "dc.h"
-#include "dc_types.h"
-#include "grph_object_defs.h"
-
-struct link_resource;
-
-enum dc_link_fec_state {
- dc_link_fec_not_ready,
- dc_link_fec_ready,
- dc_link_fec_enabled
-};
-
-struct dc_link_status {
- bool link_active;
- struct dpcd_caps *dpcd_caps;
-};
-
-struct dprx_states {
- bool cable_id_written;
-};
-
-/* DP MST stream allocation (payload bandwidth number) */
-struct link_mst_stream_allocation {
- /* DIG front */
- const struct stream_encoder *stream_enc;
- /* HPO DP Stream Encoder */
- const struct hpo_dp_stream_encoder *hpo_dp_stream_enc;
- /* associate DRM payload table with DC stream encoder */
- uint8_t vcp_id;
- /* number of slots required for the DP stream in transport packet */
- uint8_t slot_count;
-};
-
-/* DP MST stream allocation table */
-struct link_mst_stream_allocation_table {
- /* number of DP video streams */
- int stream_count;
- /* array of stream allocations */
- struct link_mst_stream_allocation stream_allocations[MAX_CONTROLLER_NUM];
-};
-
-struct edp_trace_power_timestamps {
- uint64_t poweroff;
- uint64_t poweron;
-};
-
-struct dp_trace_lt_counts {
- unsigned int total;
- unsigned int fail;
-};
-
-struct dp_trace_lt {
- struct dp_trace_lt_counts counts;
- struct dp_trace_timestamps {
- unsigned long long start;
- unsigned long long end;
- } timestamps;
- enum link_training_result result;
- bool is_logged;
-};
-
-struct dp_trace {
- struct dp_trace_lt detect_lt_trace;
- struct dp_trace_lt commit_lt_trace;
- unsigned int link_loss_count;
- bool is_initialized;
- struct edp_trace_power_timestamps edp_trace_power_timestamps;
-};
-
-/* PSR feature flags */
-struct psr_settings {
- bool psr_feature_enabled; // PSR is supported by sink
- bool psr_allow_active; // PSR is currently active
- enum dc_psr_version psr_version; // Internal PSR version, determined based on DPCD
- bool psr_vtotal_control_support; // Vtotal control is supported by sink
-
- /* These parameters are calculated in Driver,
- * based on display timing and Sink capabilities.
- * If VBLANK region is too small and Sink takes a long time
- * to set up RFB, it may take an extra frame to enter PSR state.
- */
- bool psr_frame_capture_indication_req;
- unsigned int psr_sdp_transmit_line_num_deadline;
- uint8_t force_ffu_mode;
- unsigned int psr_power_opt;
-};
-
-/* To split out "global" and "per-panel" config settings.
- * Add a struct dc_panel_config under dc_link
- */
-struct dc_panel_config {
- // extra panel power sequence parameters
- struct pps {
- unsigned int extra_t3_ms;
- unsigned int extra_t7_ms;
- unsigned int extra_delay_backlight_off;
- unsigned int extra_post_t7_ms;
- unsigned int extra_pre_t11_ms;
- unsigned int extra_t12_ms;
- unsigned int extra_post_OUI_ms;
- } pps;
- // ABM
- struct varib {
- unsigned int varibright_feature_enable;
- unsigned int def_varibright_level;
- unsigned int abm_config_setting;
- } varib;
- // edp DSC
- struct dsc {
- bool disable_dsc_edp;
- unsigned int force_dsc_edp_policy;
- } dsc;
- /* eDP ILR */
- struct ilr {
- bool optimize_edp_link_rate; /* eDP ILR */
- } ilr;
-};
-/*
- * A link contains one or more sinks and their connected status.
- * The currently active signal type (HDMI, DP-SST, DP-MST) is also reported.
- */
-struct dc_link {
- struct dc_sink *remote_sinks[MAX_SINKS_PER_LINK];
- unsigned int sink_count;
- struct dc_sink *local_sink;
- unsigned int link_index;
- enum dc_connection_type type;
- enum signal_type connector_signal;
- enum dc_irq_source irq_source_hpd;
- enum dc_irq_source irq_source_hpd_rx;/* aka DP Short Pulse */
- bool is_hpd_filter_disabled;
- bool dp_ss_off;
- bool link_state_valid;
- bool aux_access_disabled;
- bool sync_lt_in_progress;
- bool is_internal_display;
-
- /* TODO: Rename. Flag an endpoint as having a programmable mapping to a
- * DIG encoder. */
- bool is_dig_mapping_flexible;
- bool hpd_status; /* HPD status of link without physical HPD pin. */
- bool is_hpd_pending; /* Indicates a new received hpd */
-
- bool edp_sink_present;
-
- struct dp_trace dp_trace;
-
- /* caps is the same as reported_link_cap. link_traing use
- * reported_link_cap. Will clean up. TODO
- */
- struct dc_link_settings reported_link_cap;
- struct dc_link_settings verified_link_cap;
- struct dc_link_settings cur_link_settings;
- struct dc_lane_settings cur_lane_setting[LANE_COUNT_DP_MAX];
- struct dc_link_settings preferred_link_setting;
- /* preferred_training_settings are override values that
- * come from DM. DM is responsible for the memory
- * management of the override pointers.
- */
- struct dc_link_training_overrides preferred_training_settings;
- struct dp_audio_test_data audio_test_data;
-
- uint8_t ddc_hw_inst;
-
- uint8_t hpd_src;
-
- uint8_t link_enc_hw_inst;
- /* DIG link encoder ID. Used as index in link encoder resource pool.
- * For links with fixed mapping to DIG, this is not changed after dc_link
- * object creation.
- */
- enum engine_id eng_id;
-
- bool test_pattern_enabled;
- union compliance_test_state compliance_test_state;
-
- void *priv;
-
- struct ddc_service *ddc;
-
- bool aux_mode;
-
- /* Private to DC core */
-
- const struct dc *dc;
-
- struct dc_context *ctx;
-
- struct panel_cntl *panel_cntl;
- struct link_encoder *link_enc;
- struct graphics_object_id link_id;
- /* Endpoint type distinguishes display endpoints which do not have entries
- * in the BIOS connector table from those that do. Helps when tracking link
- * encoder to display endpoint assignments.
- */
- enum display_endpoint_type ep_type;
- union ddi_channel_mapping ddi_channel_mapping;
- struct connector_device_tag_info device_tag;
- struct dpcd_caps dpcd_caps;
- uint32_t dongle_max_pix_clk;
- unsigned short chip_caps;
- unsigned int dpcd_sink_count;
-#if defined(CONFIG_DRM_AMD_DC_HDCP)
- struct hdcp_caps hdcp_caps;
-#endif
- enum edp_revision edp_revision;
- union dpcd_sink_ext_caps dpcd_sink_ext_caps;
-
- struct psr_settings psr_settings;
-
- /* Drive settings read from integrated info table */
- struct dc_lane_settings bios_forced_drive_settings;
-
- /* Vendor specific LTTPR workaround variables */
- uint8_t vendor_specific_lttpr_link_rate_wa;
- bool apply_vendor_specific_lttpr_link_rate_wa;
-
- /* MST record stream using this link */
- struct link_flags {
- bool dp_keep_receiver_powered;
- bool dp_skip_DID2;
- bool dp_skip_reset_segment;
- bool dp_mot_reset_segment;
- /* Some USB4 docks do not handle turning off MST DSC once it has been enabled. */
- bool dpia_mst_dsc_always_on;
- /* Forced DPIA into TBT3 compatibility mode. */
- bool dpia_forced_tbt3_mode;
- bool dongle_mode_timing_override;
- } wa_flags;
- struct link_mst_stream_allocation_table mst_stream_alloc_table;
-
- struct dc_link_status link_status;
- struct dprx_states dprx_states;
-
- struct gpio *hpd_gpio;
- enum dc_link_fec_state fec_state;
- struct dc_panel_config panel_config;
- struct phy_state phy_state;
-};
-
-const struct dc_link_status *dc_link_get_status(const struct dc_link *dc_link);
-
-/**
- * dc_get_link_at_index() - Return an enumerated dc_link.
- *
- * dc_link order is constant and determined at
- * boot time. They cannot be created or destroyed.
- * Use dc_get_caps() to get number of links.
- */
-static inline struct dc_link *dc_get_link_at_index(struct dc *dc, uint32_t link_index)
-{
- return dc->links[link_index];
-}
-
-static inline void get_edp_links(const struct dc *dc,
- struct dc_link **edp_links,
- int *edp_num)
-{
- int i;
-
- *edp_num = 0;
- for (i = 0; i < dc->link_count; i++) {
- // report any eDP links, even unconnected DDI's
- if (!dc->links[i])
- continue;
- if (dc->links[i]->connector_signal == SIGNAL_TYPE_EDP) {
- edp_links[*edp_num] = dc->links[i];
- if (++(*edp_num) == MAX_NUM_EDP)
- return;
- }
- }
-}
-
-static inline bool dc_get_edp_link_panel_inst(const struct dc *dc,
- const struct dc_link *link,
- unsigned int *inst_out)
-{
- struct dc_link *edp_links[MAX_NUM_EDP];
- int edp_num;
-
- if (link->connector_signal != SIGNAL_TYPE_EDP)
- return false;
- get_edp_links(dc, edp_links, &edp_num);
- if ((edp_num > 1) && (link->link_index > edp_links[0]->link_index))
- *inst_out = 1;
- else
- *inst_out = 0;
- return true;
-}
-
-/* Set backlight level of an embedded panel (eDP, LVDS).
- * backlight_pwm_u16_16 is unsigned 32 bit with 16 bit integer
- * and 16 bit fractional, where 1.0 is max backlight value.
- */
-bool dc_link_set_backlight_level(const struct dc_link *dc_link,
- uint32_t backlight_pwm_u16_16,
- uint32_t frame_ramp);
-
-/* Set/get nits-based backlight level of an embedded panel (eDP, LVDS). */
-bool dc_link_set_backlight_level_nits(struct dc_link *link,
- bool isHDR,
- uint32_t backlight_millinits,
- uint32_t transition_time_in_ms);
-
-bool dc_link_get_backlight_level_nits(struct dc_link *link,
- uint32_t *backlight_millinits,
- uint32_t *backlight_millinits_peak);
-
-bool dc_link_backlight_enable_aux(struct dc_link *link, bool enable);
-
-bool dc_link_read_default_bl_aux(struct dc_link *link, uint32_t *backlight_millinits);
-bool dc_link_set_default_brightness_aux(struct dc_link *link);
-
-int dc_link_get_backlight_level(const struct dc_link *dc_link);
-
-int dc_link_get_target_backlight_pwm(const struct dc_link *link);
-
-bool dc_link_set_psr_allow_active(struct dc_link *dc_link, const bool *enable,
- bool wait, bool force_static, const unsigned int *power_opts);
-
-bool dc_link_get_psr_state(const struct dc_link *dc_link, enum dc_psr_state *state);
-
-bool dc_link_setup_psr(struct dc_link *dc_link,
- const struct dc_stream_state *stream, struct psr_config *psr_config,
- struct psr_context *psr_context);
-
-bool dc_power_alpm_dpcd_enable(struct dc_link *link, bool enable);
-
-void dc_link_get_psr_residency(const struct dc_link *link, uint32_t *residency);
-
-void dc_link_blank_all_dp_displays(struct dc *dc);
-void dc_link_blank_all_edp_displays(struct dc *dc);
-
-void dc_link_blank_dp_stream(struct dc_link *link, bool hw_init);
-bool dc_link_set_sink_vtotal_in_psr_active(const struct dc_link *link,
- uint16_t psr_vtotal_idle, uint16_t psr_vtotal_su);
-
-/* Request DC to detect if there is a Panel connected.
- * boot - If this call is during initial boot.
- * Return false for any type of detection failure or MST detection
- * true otherwise. True meaning further action is required (status update
- * and OS notification).
- */
-enum dc_detect_reason {
- DETECT_REASON_BOOT,
- DETECT_REASON_RESUMEFROMS3S4,
- DETECT_REASON_HPD,
- DETECT_REASON_HPDRX,
- DETECT_REASON_FALLBACK,
- DETECT_REASON_RETRAIN,
- DETECT_REASON_TDR,
-};
-
-bool dc_link_detect(struct dc_link *dc_link, enum dc_detect_reason reason);
-bool dc_link_get_hpd_state(struct dc_link *dc_link);
-enum dc_status dc_link_allocate_mst_payload(struct pipe_ctx *pipe_ctx);
-enum dc_status dc_link_reduce_mst_payload(struct pipe_ctx *pipe_ctx, uint32_t req_pbn);
-enum dc_status dc_link_increase_mst_payload(struct pipe_ctx *pipe_ctx, uint32_t req_pbn);
-
-/* Notify DC about DP RX Interrupt (aka Short Pulse Interrupt).
- * Return:
- * true - Downstream port status changed. DM should call DC to do the
- * detection.
- * false - no change in Downstream port status. No further action required
- * from DM. */
-bool dc_link_handle_hpd_rx_irq(struct dc_link *dc_link,
- union hpd_irq_data *hpd_irq_dpcd_data, bool *out_link_loss,
- bool defer_handling, bool *has_left_work);
-
-/*
- * On eDP links this function call will stall until T12 has elapsed.
- * If the panel is not in power off state, this function will return
- * immediately.
- */
-bool dc_link_wait_for_t12(struct dc_link *link);
-
-void dc_link_dp_handle_automated_test(struct dc_link *link);
-void dc_link_dp_handle_link_loss(struct dc_link *link);
-bool dc_link_dp_allow_hpd_rx_irq(const struct dc_link *link);
-
-struct dc_sink_init_data;
-
-struct dc_sink *dc_link_add_remote_sink(
- struct dc_link *dc_link,
- const uint8_t *edid,
- int len,
- struct dc_sink_init_data *init_data);
-
-void dc_link_remove_remote_sink(
- struct dc_link *link,
- struct dc_sink *sink);
-
-/* Used by diagnostics for virtual link at the moment */
-
-void dc_link_dp_set_drive_settings(
- struct dc_link *link,
- const struct link_resource *link_res,
- struct link_training_settings *lt_settings);
-
-bool dc_link_dp_perform_link_training_skip_aux(
- struct dc_link *link,
- const struct link_resource *link_res,
- const struct dc_link_settings *link_setting);
-
-enum link_training_result dc_link_dp_perform_link_training(
- struct dc_link *link,
- const struct link_resource *link_res,
- const struct dc_link_settings *link_settings,
- bool skip_video_pattern);
-
-bool dc_link_dp_sync_lt_begin(struct dc_link *link);
-
-enum link_training_result dc_link_dp_sync_lt_attempt(
- struct dc_link *link,
- const struct link_resource *link_res,
- struct dc_link_settings *link_setting,
- struct dc_link_training_overrides *lt_settings);
-
-bool dc_link_dp_sync_lt_end(struct dc_link *link, bool link_down);
-
-void dc_link_dp_enable_hpd(const struct dc_link *link);
-
-void dc_link_dp_disable_hpd(const struct dc_link *link);
-
-bool dc_link_dp_set_test_pattern(
- struct dc_link *link,
- enum dp_test_pattern test_pattern,
- enum dp_test_pattern_color_space test_pattern_color_space,
- const struct link_training_settings *p_link_settings,
- const unsigned char *p_custom_pattern,
- unsigned int cust_pattern_size);
-
-bool dc_link_dp_get_max_link_enc_cap(const struct dc_link *link, struct dc_link_settings *max_link_enc_cap);
-
-void dc_link_enable_hpd_filter(struct dc_link *link, bool enable);
-
-bool dc_link_is_dp_sink_present(struct dc_link *link);
-
-bool dc_link_detect_sink(struct dc_link *link, enum dc_connection_type *type);
-/*
- * DPCD access interfaces
- */
-
-#ifdef CONFIG_DRM_AMD_DC_HDCP
-bool dc_link_is_hdcp14(struct dc_link *link, enum signal_type signal);
-bool dc_link_is_hdcp22(struct dc_link *link, enum signal_type signal);
-#endif
-void dc_link_set_drive_settings(struct dc *dc,
- struct link_training_settings *lt_settings,
- const struct dc_link *link);
-void dc_link_set_preferred_link_settings(struct dc *dc,
- struct dc_link_settings *link_setting,
- struct dc_link *link);
-void dc_link_set_preferred_training_settings(struct dc *dc,
- struct dc_link_settings *link_setting,
- struct dc_link_training_overrides *lt_overrides,
- struct dc_link *link,
- bool skip_immediate_retrain);
-void dc_link_enable_hpd(const struct dc_link *link);
-void dc_link_disable_hpd(const struct dc_link *link);
-void dc_link_set_test_pattern(struct dc_link *link,
- enum dp_test_pattern test_pattern,
- enum dp_test_pattern_color_space test_pattern_color_space,
- const struct link_training_settings *p_link_settings,
- const unsigned char *p_custom_pattern,
- unsigned int cust_pattern_size);
-uint32_t dc_link_bandwidth_kbps(
- const struct dc_link *link,
- const struct dc_link_settings *link_setting);
-
-const struct dc_link_settings *dc_link_get_link_cap(
- const struct dc_link *link);
-
-void dc_link_overwrite_extended_receiver_cap(
- struct dc_link *link);
-
-bool dc_is_oem_i2c_device_present(
- struct dc *dc,
- size_t slave_address
-);
-
-bool dc_submit_i2c(
- struct dc *dc,
- uint32_t link_index,
- struct i2c_command *cmd);
-
-bool dc_submit_i2c_oem(
- struct dc *dc,
- struct i2c_command *cmd);
-
-uint32_t dc_bandwidth_in_kbps_from_timing(
- const struct dc_crtc_timing *timing);
-
-bool dc_link_is_fec_supported(const struct dc_link *link);
-bool dc_link_should_enable_fec(const struct dc_link *link);
-
-uint32_t dc_link_bw_kbps_from_raw_frl_link_rate_data(uint8_t bw);
-enum dp_link_encoding dc_link_dp_mst_decide_link_encoding_format(const struct dc_link *link);
-
-void dc_link_get_cur_link_res(const struct dc_link *link,
- struct link_resource *link_res);
-/* take a snapshot of current link resource allocation state */
-void dc_get_cur_link_res_map(const struct dc *dc, uint32_t *map);
-/* restore link resource allocation state from a snapshot */
-void dc_restore_link_res_map(const struct dc *dc, uint32_t *map);
-void dc_link_clear_dprx_states(struct dc_link *link);
-struct gpio *get_hpd_gpio(struct dc_bios *dcb,
- struct graphics_object_id link_id,
- struct gpio_service *gpio_service);
-void dp_trace_reset(struct dc_link *link);
-bool dc_dp_trace_is_initialized(struct dc_link *link);
-unsigned long long dc_dp_trace_get_lt_end_timestamp(struct dc_link *link,
- bool in_detection);
-void dc_dp_trace_set_is_logged_flag(struct dc_link *link,
- bool in_detection,
- bool is_logged);
-bool dc_dp_trace_is_logged(struct dc_link *link,
- bool in_detection);
-struct dp_trace_lt_counts *dc_dp_trace_get_lt_counts(struct dc_link *link,
- bool in_detection);
-unsigned int dc_dp_trace_get_link_loss_count(struct dc_link *link);
-
-/* Destruct the mst topology of the link and reset the allocated payload table */
-bool reset_cur_dp_mst_topology(struct dc_link *link);
-#endif /* DC_LINK_H_ */
diff --git a/drivers/gpu/drm/amd/display/dc/dc_stream.h b/drivers/gpu/drm/amd/display/dc/dc_stream.h
index 9e6025c98db9..25284006019c 100644
--- a/drivers/gpu/drm/amd/display/dc/dc_stream.h
+++ b/drivers/gpu/drm/amd/display/dc/dc_stream.h
@@ -41,6 +41,10 @@ struct timing_sync_info {
struct dc_stream_status {
int primary_otg_inst;
int stream_enc_inst;
+
+ /**
+ * @plane_count: Total of planes attached to a single stream
+ */
int plane_count;
int audio_inst;
struct timing_sync_info timing_sync_info;
@@ -140,7 +144,7 @@ struct test_pattern {
unsigned int cust_pattern_size;
};
-#define SUBVP_DRR_MARGIN_US 500 // 500us for DRR margin (SubVP + DRR)
+#define SUBVP_DRR_MARGIN_US 100 // 100us for DRR margin (SubVP + DRR)
enum mall_stream_type {
SUBVP_NONE, // subvp not in use
@@ -156,6 +160,17 @@ struct mall_stream_config {
struct dc_stream_state *paired_stream; // master / slave stream
};
+/* Temp struct used to save and restore MALL config
+ * during validation.
+ *
+ * TODO: Move MALL config into dc_state instead of stream struct
+ * to avoid needing to save/restore.
+ */
+struct mall_temp_config {
+ struct mall_stream_config mall_stream_config[MAX_PIPES];
+ bool is_phantom_plane[MAX_PIPES];
+};
+
struct dc_stream_state {
// sink is deprecated, new code should not reference
// this pointer
@@ -175,6 +190,7 @@ struct dc_stream_state {
struct dc_info_packet vsp_infopacket;
struct dc_info_packet hfvsif_infopacket;
struct dc_info_packet vtem_infopacket;
+ struct dc_info_packet adaptive_sync_infopacket;
uint8_t dsc_packed_pps[128];
struct rect src; /* composition area */
struct rect dst; /* stream addressable area */
@@ -197,7 +213,18 @@ struct dc_stream_state {
bool use_vsc_sdp_for_colorimetry;
bool ignore_msa_timing_param;
+ /**
+ * @allow_freesync:
+ *
+ * It say if Freesync is enabled or not.
+ */
bool allow_freesync;
+
+ /**
+ * @vrr_active_variable:
+ *
+ * It describes if VRR is in use.
+ */
bool vrr_active_variable;
bool freesync_on_desktop;
@@ -266,6 +293,7 @@ struct dc_stream_state {
bool has_non_synchronizable_pclk;
bool vblank_synchronized;
+ bool fpo_in_use;
struct mall_stream_config mall_stream_config;
};
@@ -287,6 +315,7 @@ struct dc_stream_update {
struct dc_info_packet *vsp_infopacket;
struct dc_info_packet *hfvsif_infopacket;
struct dc_info_packet *vtem_infopacket;
+ struct dc_info_packet *adaptive_sync_infopacket;
bool *dpms_off;
bool integer_scaling_update;
bool *allow_freesync;
@@ -517,10 +546,9 @@ bool dc_stream_get_crtc_position(struct dc *dc,
unsigned int *nom_v_pos);
#if defined(CONFIG_DRM_AMD_SECURE_DISPLAY)
-bool dc_stream_forward_dmcu_crc_window(struct dc *dc, struct dc_stream_state *stream,
- struct crc_params *crc_window);
-bool dc_stream_stop_dmcu_crc_win_update(struct dc *dc,
- struct dc_stream_state *stream);
+bool dc_stream_forward_crc_window(struct dc_stream_state *stream,
+ struct rect *rect,
+ bool is_stop);
#endif
bool dc_stream_configure_crc(struct dc *dc,
diff --git a/drivers/gpu/drm/amd/display/dc/dc_trace.h b/drivers/gpu/drm/amd/display/dc/dc_trace.h
index c711797e5c9e..bbec308a3a5e 100644
--- a/drivers/gpu/drm/amd/display/dc/dc_trace.h
+++ b/drivers/gpu/drm/amd/display/dc/dc_trace.h
@@ -40,3 +40,5 @@
#define TRACE_DCN_FPU(begin, function, line, ref_count) \
trace_dcn_fpu(begin, function, line, ref_count)
+#define TRACE_OPTC_LOCK_UNLOCK_STATE(optc, inst, lock) \
+ trace_dcn_optc_lock_unlock_state(optc, inst, lock, __func__, __LINE__)
diff --git a/drivers/gpu/drm/amd/display/dc/dc_types.h b/drivers/gpu/drm/amd/display/dc/dc_types.h
index ad9041472cca..45ab48fe5d00 100644
--- a/drivers/gpu/drm/amd/display/dc/dc_types.h
+++ b/drivers/gpu/drm/amd/display/dc/dc_types.h
@@ -32,14 +32,15 @@
#include "os_types.h"
#include "fixed31_32.h"
#include "irq_types.h"
+#include "dc_ddc_types.h"
#include "dc_dp_types.h"
+#include "dc_hdmi_types.h"
#include "dc_hw_types.h"
#include "dal_types.h"
#include "grph_object_defs.h"
+#include "grph_object_ctrl_defs.h"
-#ifdef CONFIG_DRM_AMD_DC_HDCP
#include "dm_cp_psp.h"
-#endif
/* forward declarations */
struct dc_plane_state;
@@ -82,13 +83,8 @@ struct dc_perf_trace {
unsigned long last_entry_write;
};
-#define DC_MAX_EDID_BUFFER_SIZE 2048
-#define DC_EDID_BLOCK_SIZE 128
#define MAX_SURFACE_NUM 4
#define NUM_PIXEL_FORMATS 10
-#define MAX_REPEATER_CNT 8
-
-#include "dc_ddc_types.h"
enum tiling_mode {
TILING_MODE_INVALID,
@@ -374,66 +370,6 @@ struct dc_csc_adjustments {
struct fixed31_32 hue;
};
-enum dpcd_downstream_port_max_bpc {
- DOWN_STREAM_MAX_8BPC = 0,
- DOWN_STREAM_MAX_10BPC,
- DOWN_STREAM_MAX_12BPC,
- DOWN_STREAM_MAX_16BPC
-};
-
-
-enum link_training_offset {
- DPRX = 0,
- LTTPR_PHY_REPEATER1 = 1,
- LTTPR_PHY_REPEATER2 = 2,
- LTTPR_PHY_REPEATER3 = 3,
- LTTPR_PHY_REPEATER4 = 4,
- LTTPR_PHY_REPEATER5 = 5,
- LTTPR_PHY_REPEATER6 = 6,
- LTTPR_PHY_REPEATER7 = 7,
- LTTPR_PHY_REPEATER8 = 8
-};
-
-struct dc_lttpr_caps {
- union dpcd_rev revision;
- uint8_t mode;
- uint8_t max_lane_count;
- uint8_t max_link_rate;
- uint8_t phy_repeater_cnt;
- uint8_t max_ext_timeout;
- union dp_main_link_channel_coding_lttpr_cap main_link_channel_coding;
- union dp_128b_132b_supported_lttpr_link_rates supported_128b_132b_rates;
- uint8_t aux_rd_interval[MAX_REPEATER_CNT - 1];
-};
-
-struct dc_dongle_dfp_cap_ext {
- bool supported;
- uint16_t max_pixel_rate_in_mps;
- uint16_t max_video_h_active_width;
- uint16_t max_video_v_active_height;
- struct dp_encoding_format_caps encoding_format_caps;
- struct dp_color_depth_caps rgb_color_depth_caps;
- struct dp_color_depth_caps ycbcr444_color_depth_caps;
- struct dp_color_depth_caps ycbcr422_color_depth_caps;
- struct dp_color_depth_caps ycbcr420_color_depth_caps;
-};
-
-struct dc_dongle_caps {
- /* dongle type (DP converter, CV smart dongle) */
- enum display_dongle_type dongle_type;
- bool extendedCapValid;
- /* If dongle_type == DISPLAY_DONGLE_DP_HDMI_CONVERTER,
- indicates 'Frame Sequential-to-lllFrame Pack' conversion capability.*/
- bool is_dp_hdmi_s3d_converter;
- bool is_dp_hdmi_ycbcr422_pass_through;
- bool is_dp_hdmi_ycbcr420_pass_through;
- bool is_dp_hdmi_ycbcr422_converter;
- bool is_dp_hdmi_ycbcr420_converter;
- uint32_t dp_hdmi_max_bpc;
- uint32_t dp_hdmi_max_pixel_clk_in_khz;
- uint32_t dp_hdmi_frl_max_link_bw_in_kbps;
- struct dc_dongle_dfp_cap_ext dfp_cap_ext;
-};
/* Scaling format */
enum scaling_transformation {
SCALING_TRANSFORMATION_UNINITIALIZED,
@@ -690,6 +626,7 @@ struct psr_config {
uint8_t su_y_granularity;
unsigned int line_time_in_us;
uint8_t rate_control_caps;
+ uint16_t dsc_slice_height;
};
union dmcu_psr_level {
@@ -801,6 +738,7 @@ struct psr_context {
uint8_t su_y_granularity;
unsigned int line_time_in_us;
uint8_t rate_control_caps;
+ uint16_t dsc_slice_height;
};
struct colorspace_transform {
@@ -873,9 +811,7 @@ struct dc_context {
uint32_t dc_edp_id_count;
uint64_t fbc_gpu_addr;
struct dc_dmub_srv *dmub_srv;
-#ifdef CONFIG_DRM_AMD_DC_HDCP
struct cp_psp cp_psp;
-#endif
uint32_t *dcn_reg_offsets;
uint32_t *nbio_reg_offsets;
};
@@ -993,4 +929,162 @@ struct display_endpoint_id {
enum display_endpoint_type ep_type;
};
+#if defined(CONFIG_DRM_AMD_SECURE_DISPLAY)
+struct otg_phy_mux {
+ uint8_t phy_output_num;
+ uint8_t otg_output_num;
+};
+#endif
+
+enum dc_detect_reason {
+ DETECT_REASON_BOOT,
+ DETECT_REASON_RESUMEFROMS3S4,
+ DETECT_REASON_HPD,
+ DETECT_REASON_HPDRX,
+ DETECT_REASON_FALLBACK,
+ DETECT_REASON_RETRAIN,
+ DETECT_REASON_TDR,
+};
+
+struct dc_link_status {
+ bool link_active;
+ struct dpcd_caps *dpcd_caps;
+};
+
+union hdcp_rx_caps {
+ struct {
+ uint8_t version;
+ uint8_t reserved;
+ struct {
+ uint8_t repeater : 1;
+ uint8_t hdcp_capable : 1;
+ uint8_t reserved : 6;
+ } byte0;
+ } fields;
+ uint8_t raw[3];
+};
+
+union hdcp_bcaps {
+ struct {
+ uint8_t HDCP_CAPABLE:1;
+ uint8_t REPEATER:1;
+ uint8_t RESERVED:6;
+ } bits;
+ uint8_t raw;
+};
+
+struct hdcp_caps {
+ union hdcp_rx_caps rx_caps;
+ union hdcp_bcaps bcaps;
+};
+
+/* DP MST stream allocation (payload bandwidth number) */
+struct link_mst_stream_allocation {
+ /* DIG front */
+ const struct stream_encoder *stream_enc;
+ /* HPO DP Stream Encoder */
+ const struct hpo_dp_stream_encoder *hpo_dp_stream_enc;
+ /* associate DRM payload table with DC stream encoder */
+ uint8_t vcp_id;
+ /* number of slots required for the DP stream in transport packet */
+ uint8_t slot_count;
+};
+
+#define MAX_CONTROLLER_NUM 6
+
+/* DP MST stream allocation table */
+struct link_mst_stream_allocation_table {
+ /* number of DP video streams */
+ int stream_count;
+ /* array of stream allocations */
+ struct link_mst_stream_allocation stream_allocations[MAX_CONTROLLER_NUM];
+};
+
+/* PSR feature flags */
+struct psr_settings {
+ bool psr_feature_enabled; // PSR is supported by sink
+ bool psr_allow_active; // PSR is currently active
+ enum dc_psr_version psr_version; // Internal PSR version, determined based on DPCD
+ bool psr_vtotal_control_support; // Vtotal control is supported by sink
+ unsigned long long psr_dirty_rects_change_timestamp_ns; // for delay of enabling PSR-SU
+
+ /* These parameters are calculated in Driver,
+ * based on display timing and Sink capabilities.
+ * If VBLANK region is too small and Sink takes a long time
+ * to set up RFB, it may take an extra frame to enter PSR state.
+ */
+ bool psr_frame_capture_indication_req;
+ unsigned int psr_sdp_transmit_line_num_deadline;
+ uint8_t force_ffu_mode;
+ unsigned int psr_power_opt;
+};
+
+/* To split out "global" and "per-panel" config settings.
+ * Add a struct dc_panel_config under dc_link
+ */
+struct dc_panel_config {
+ /* extra panel power sequence parameters */
+ struct pps {
+ unsigned int extra_t3_ms;
+ unsigned int extra_t7_ms;
+ unsigned int extra_delay_backlight_off;
+ unsigned int extra_post_t7_ms;
+ unsigned int extra_pre_t11_ms;
+ unsigned int extra_t12_ms;
+ unsigned int extra_post_OUI_ms;
+ } pps;
+ /* nit brightness */
+ struct nits_brightness {
+ unsigned int peak; /* nits */
+ unsigned int max_avg; /* nits */
+ unsigned int min; /* 1/10000 nits */
+ unsigned int max_nonboost_brightness_millinits;
+ unsigned int min_brightness_millinits;
+ } nits_brightness;
+ /* PSR */
+ struct psr {
+ bool disable_psr;
+ bool disallow_psrsu;
+ bool rc_disable;
+ bool rc_allow_static_screen;
+ bool rc_allow_fullscreen_VPB;
+ } psr;
+ /* ABM */
+ struct varib {
+ unsigned int varibright_feature_enable;
+ unsigned int def_varibright_level;
+ unsigned int abm_config_setting;
+ } varib;
+ /* edp DSC */
+ struct dsc {
+ bool disable_dsc_edp;
+ unsigned int force_dsc_edp_policy;
+ } dsc;
+ /* eDP ILR */
+ struct ilr {
+ bool optimize_edp_link_rate; /* eDP ILR */
+ } ilr;
+};
+
+/*
+ * USB4 DPIA BW ALLOCATION STRUCTS
+ */
+struct dc_dpia_bw_alloc {
+ int sink_verified_bw; // The Verified BW that sink can allocated and use that has been verified already
+ int sink_allocated_bw; // The Actual Allocated BW that sink currently allocated
+ int sink_max_bw; // The Max BW that sink can require/support
+ int estimated_bw; // The estimated available BW for this DPIA
+ int bw_granularity; // BW Granularity
+ bool bw_alloc_enabled; // The BW Alloc Mode Support is turned ON for all 3: DP-Tx & Dpia & CM
+ bool response_ready; // Response ready from the CM side
+};
+
+#define MAX_SINKS_PER_LINK 4
+
+enum dc_hpd_enable_select {
+ HPD_EN_FOR_ALL_EDP = 0,
+ HPD_EN_FOR_PRIMARY_EDP_ONLY,
+ HPD_EN_FOR_SECONDARY_EDP_ONLY,
+};
+
#endif /* DC_TYPES_H_ */
diff --git a/drivers/gpu/drm/amd/display/dc/dce/dce_aux.c b/drivers/gpu/drm/amd/display/dc/dce/dce_aux.c
index 140297c8ff55..739298d2dff3 100644
--- a/drivers/gpu/drm/amd/display/dc/dce/dce_aux.c
+++ b/drivers/gpu/drm/amd/display/dc/dce/dce_aux.c
@@ -832,13 +832,8 @@ bool dce_aux_transfer_with_retries(struct ddc_service *ddc,
LOG_FLAG_I2cAux_DceAux,
"dce_aux_transfer_with_retries: payload->defer_delay=%u",
payload->defer_delay);
- if (payload->defer_delay > 1) {
- msleep(payload->defer_delay);
- defer_time_in_ms += payload->defer_delay;
- } else if (payload->defer_delay <= 1) {
- udelay(payload->defer_delay * 1000);
- defer_time_in_ms += payload->defer_delay;
- }
+ fsleep(payload->defer_delay * 1000);
+ defer_time_in_ms += payload->defer_delay;
}
}
break;
diff --git a/drivers/gpu/drm/amd/display/dc/dce/dce_aux.h b/drivers/gpu/drm/amd/display/dc/dce/dce_aux.h
index e69f1899fbf0..c850ed49281f 100644
--- a/drivers/gpu/drm/amd/display/dc/dce/dce_aux.h
+++ b/drivers/gpu/drm/amd/display/dc/dce/dce_aux.h
@@ -26,7 +26,7 @@
#ifndef __DAL_AUX_ENGINE_DCE110_H__
#define __DAL_AUX_ENGINE_DCE110_H__
-#include "i2caux_interface.h"
+#include "gpio_service_interface.h"
#include "inc/hw/aux_engine.h"
enum aux_return_code_type;
diff --git a/drivers/gpu/drm/amd/display/dc/dce/dce_clock_source.c b/drivers/gpu/drm/amd/display/dc/dce/dce_clock_source.c
index 165392380842..462c7a3ec3cc 100644
--- a/drivers/gpu/drm/amd/display/dc/dce/dce_clock_source.c
+++ b/drivers/gpu/drm/amd/display/dc/dce/dce_clock_source.c
@@ -930,7 +930,13 @@ static bool dce112_program_pix_clk(
REG_WRITE(MODULO[inst], dp_dto_ref_100hz);
/* Enable DTO */
- REG_UPDATE(PIXEL_RATE_CNTL[inst], DP_DTO0_ENABLE, 1);
+ if (clk_src->cs_mask->PIPE0_DTO_SRC_SEL)
+ REG_UPDATE_2(PIXEL_RATE_CNTL[inst],
+ DP_DTO0_ENABLE, 1,
+ PIPE0_DTO_SRC_SEL, 1);
+ else
+ REG_UPDATE(PIXEL_RATE_CNTL[inst],
+ DP_DTO0_ENABLE, 1);
return true;
}
/* First disable SS
@@ -995,7 +1001,6 @@ static bool dcn31_program_pix_clk(
REG_WRITE(PHASE[inst], pll_settings->actual_pix_clk_100hz * 100);
REG_WRITE(MODULO[inst], dp_dto_ref_khz * 1000);
}
-#if defined(CONFIG_DRM_AMD_DC_DCN)
/* Enable DTO */
if (clk_src->cs_mask->PIPE0_DTO_SRC_SEL)
if (encoding == DP_128b_132b_ENCODING)
@@ -1009,9 +1014,6 @@ static bool dcn31_program_pix_clk(
else
REG_UPDATE(PIXEL_RATE_CNTL[inst],
DP_DTO0_ENABLE, 1);
-#else
- REG_UPDATE(PIXEL_RATE_CNTL[inst], DP_DTO0_ENABLE, 1);
-#endif
} else {
if (IS_FPGA_MAXIMUS_DC(clock_source->ctx->dce_environment)) {
unsigned int inst = pix_clk_params->controller_id - CONTROLLER_ID_D0;
@@ -1023,7 +1025,6 @@ static bool dcn31_program_pix_clk(
REG_WRITE(MODULO[inst], dp_dto_ref_100hz);
/* Enable DTO */
- #if defined(CONFIG_DRM_AMD_DC_DCN)
if (clk_src->cs_mask->PIPE0_DTO_SRC_SEL)
REG_UPDATE_2(PIXEL_RATE_CNTL[inst],
DP_DTO0_ENABLE, 1,
@@ -1031,17 +1032,12 @@ static bool dcn31_program_pix_clk(
else
REG_UPDATE(PIXEL_RATE_CNTL[inst],
DP_DTO0_ENABLE, 1);
- #else
- REG_UPDATE(PIXEL_RATE_CNTL[inst], DP_DTO0_ENABLE, 1);
- #endif
return true;
}
-#if defined(CONFIG_DRM_AMD_DC_DCN)
if (clk_src->cs_mask->PIPE0_DTO_SRC_SEL)
REG_UPDATE(PIXEL_RATE_CNTL[inst],
PIPE0_DTO_SRC_SEL, 0);
-#endif
/*ATOMBIOS expects pixel rate adjusted by deep color ratio)*/
bp_pc_params.controller_id = pix_clk_params->controller_id;
@@ -1161,6 +1157,7 @@ const struct pixel_rate_range_table_entry video_optimized_pixel_rates[] = {
{25170, 25180, 25200, 1000, 1001}, //25.2MHz -> 25.17
{59340, 59350, 59400, 1000, 1001}, //59.4Mhz -> 59.340
{74170, 74180, 74250, 1000, 1001}, //74.25Mhz -> 74.1758
+ {89910, 90000, 90000, 1000, 1001}, //90Mhz -> 89.91
{125870, 125880, 126000, 1000, 1001}, //126Mhz -> 125.87
{148350, 148360, 148500, 1000, 1001}, //148.5Mhz -> 148.3516
{167830, 167840, 168000, 1000, 1001}, //168Mhz -> 167.83
@@ -1274,7 +1271,14 @@ static bool dcn3_program_pix_clk(
REG_WRITE(PHASE[inst], pll_settings->actual_pix_clk_100hz * 100);
REG_WRITE(MODULO[inst], dp_dto_ref_khz * 1000);
}
- REG_UPDATE(PIXEL_RATE_CNTL[inst], DP_DTO0_ENABLE, 1);
+ /* Enable DTO */
+ if (clk_src->cs_mask->PIPE0_DTO_SRC_SEL)
+ REG_UPDATE_2(PIXEL_RATE_CNTL[inst],
+ DP_DTO0_ENABLE, 1,
+ PIPE0_DTO_SRC_SEL, 1);
+ else
+ REG_UPDATE(PIXEL_RATE_CNTL[inst],
+ DP_DTO0_ENABLE, 1);
} else
// For other signal types(HDMI_TYPE_A, DVI) Driver still to call VBIOS Command table
dce112_program_pix_clk(clock_source, pix_clk_params, encoding, pll_settings);
diff --git a/drivers/gpu/drm/amd/display/dc/dce/dce_clock_source.h b/drivers/gpu/drm/amd/display/dc/dce/dce_clock_source.h
index aaf33c79b09b..f600b7431e23 100644
--- a/drivers/gpu/drm/amd/display/dc/dce/dce_clock_source.h
+++ b/drivers/gpu/drm/amd/display/dc/dce/dce_clock_source.h
@@ -204,23 +204,17 @@
type DP_DTO0_MODULO; \
type DP_DTO0_ENABLE;
-#if defined(CONFIG_DRM_AMD_DC_DCN)
#define CS_REG_FIELD_LIST_DCN32(type) \
type PIPE0_DTO_SRC_SEL;
-#endif
struct dce110_clk_src_shift {
CS_REG_FIELD_LIST(uint8_t)
-#if defined(CONFIG_DRM_AMD_DC_DCN)
CS_REG_FIELD_LIST_DCN32(uint8_t)
-#endif
};
struct dce110_clk_src_mask{
CS_REG_FIELD_LIST(uint32_t)
-#if defined(CONFIG_DRM_AMD_DC_DCN)
CS_REG_FIELD_LIST_DCN32(uint32_t)
-#endif
};
struct dce110_clk_src_regs {
diff --git a/drivers/gpu/drm/amd/display/dc/dce/dce_dmcu.c b/drivers/gpu/drm/amd/display/dc/dce/dce_dmcu.c
index fbb19e253f50..e74266cc0098 100644
--- a/drivers/gpu/drm/amd/display/dc/dce/dce_dmcu.c
+++ b/drivers/gpu/drm/amd/display/dc/dce/dce_dmcu.c
@@ -586,7 +586,7 @@ static void dcn10_dmcu_set_psr_enable(struct dmcu *dmcu, bool enable, bool wait)
if (state == PSR_STATE0)
break;
}
- udelay(500);
+ fsleep(500);
}
/* assert if max retry hit */
@@ -927,19 +927,20 @@ static bool dcn10_recv_edid_cea_ack(struct dmcu *dmcu, int *offset)
#if defined(CONFIG_DRM_AMD_SECURE_DISPLAY)
static void dcn10_forward_crc_window(struct dmcu *dmcu,
- struct crc_region *crc_win,
+ struct rect *rect,
struct otg_phy_mux *mux_mapping)
{
struct dce_dmcu *dmcu_dce = TO_DCE_DMCU(dmcu);
unsigned int dmcu_max_retry_on_wait_reg_ready = 801;
unsigned int dmcu_wait_reg_ready_interval = 100;
unsigned int crc_start = 0, crc_end = 0, otg_phy_mux = 0;
+ int x_start, y_start, x_end, y_end;
/* If microcontroller is not running, do nothing */
if (dmcu->dmcu_state != DMCU_RUNNING)
return;
- if (!crc_win)
+ if (!rect)
return;
/* waitDMCUReadyForCmd */
@@ -947,9 +948,14 @@ static void dcn10_forward_crc_window(struct dmcu *dmcu,
dmcu_wait_reg_ready_interval,
dmcu_max_retry_on_wait_reg_ready);
+ x_start = rect->x;
+ y_start = rect->y;
+ x_end = x_start + rect->width;
+ y_end = y_start + rect->height;
+
/* build up nitification data */
- crc_start = (((unsigned int) crc_win->x_start) << 16) | crc_win->y_start;
- crc_end = (((unsigned int) crc_win->x_end) << 16) | crc_win->y_end;
+ crc_start = (((unsigned int) x_start) << 16) | y_start;
+ crc_end = (((unsigned int) x_end) << 16) | y_end;
otg_phy_mux =
(((unsigned int) mux_mapping->otg_output_num) << 16) | mux_mapping->phy_output_num;
diff --git a/drivers/gpu/drm/amd/display/dc/dce/dce_link_encoder.c b/drivers/gpu/drm/amd/display/dc/dce/dce_link_encoder.c
index 09260c23c3bd..fa314493ffc5 100644
--- a/drivers/gpu/drm/amd/display/dc/dce/dce_link_encoder.c
+++ b/drivers/gpu/drm/amd/display/dc/dce/dce_link_encoder.c
@@ -29,7 +29,6 @@
#include "link_encoder.h"
#include "dce_link_encoder.h"
#include "stream_encoder.h"
-#include "i2caux_interface.h"
#include "dc_bios_types.h"
#include "gpio_service_interface.h"
diff --git a/drivers/gpu/drm/amd/display/dc/dce/dce_transform.c b/drivers/gpu/drm/amd/display/dc/dce/dce_transform.c
index d9fd4ec60588..670d5ab9d998 100644
--- a/drivers/gpu/drm/amd/display/dc/dce/dce_transform.c
+++ b/drivers/gpu/drm/amd/display/dc/dce/dce_transform.c
@@ -1009,7 +1009,7 @@ static void dce_transform_set_pixel_storage_depth(
color_depth = COLOR_DEPTH_101010;
pixel_depth = 0;
expan_mode = 1;
- BREAK_TO_DEBUGGER();
+ DC_LOG_DC("The pixel depth %d is not valid, set COLOR_DEPTH_101010 instead.", depth);
break;
}
@@ -1023,8 +1023,7 @@ static void dce_transform_set_pixel_storage_depth(
if (!(xfm_dce->lb_pixel_depth_supported & depth)) {
/*we should use unsupported capabilities
* unless it is required by w/a*/
- DC_LOG_WARNING("%s: Capability not supported",
- __func__);
+ DC_LOG_DC("%s: Capability not supported", __func__);
}
}
diff --git a/drivers/gpu/drm/amd/display/dc/dce/dmub_abm.c b/drivers/gpu/drm/amd/display/dc/dce/dmub_abm.c
index fb0dec4ed3a6..9fc48208c2e4 100644
--- a/drivers/gpu/drm/amd/display/dc/dce/dmub_abm.c
+++ b/drivers/gpu/drm/amd/display/dc/dce/dmub_abm.c
@@ -148,7 +148,7 @@ static bool dmub_abm_set_level(struct abm *abm, uint32_t level)
int edp_num;
uint8_t panel_mask = 0;
- get_edp_links(dc->dc, edp_links, &edp_num);
+ dc_get_edp_links(dc->dc, edp_links, &edp_num);
for (i = 0; i < edp_num; i++) {
if (edp_links[i]->link_status.link_active)
diff --git a/drivers/gpu/drm/amd/display/dc/dce/dmub_psr.c b/drivers/gpu/drm/amd/display/dc/dce/dmub_psr.c
index bec5e9f787fc..9705d8f88382 100644
--- a/drivers/gpu/drm/amd/display/dc/dce/dmub_psr.c
+++ b/drivers/gpu/drm/amd/display/dc/dce/dmub_psr.c
@@ -33,6 +33,9 @@
#define MAX_PIPES 6
+static const uint8_t DP_SINK_DEVICE_STR_ID_1[] = {7, 1, 8, 7, 3};
+static const uint8_t DP_SINK_DEVICE_STR_ID_2[] = {7, 1, 8, 7, 5};
+
/*
* Convert dmcub psr state to dmcu psr state.
*/
@@ -215,7 +218,7 @@ static void dmub_psr_enable(struct dmub_psr *dmub, bool enable, bool wait, uint8
break;
}
- udelay(500);
+ fsleep(500);
}
/* assert if max retry hit */
@@ -250,7 +253,7 @@ static void dmub_psr_set_level(struct dmub_psr *dmub, uint16_t psr_level, uint8_
dc_dmub_srv_wait_idle(dc->dmub_srv);
}
-/**
+/*
* Set PSR vtotal requirement for FreeSync PSR.
*/
static void dmub_psr_set_sink_vtotal_in_psr_active(struct dmub_psr *dmub,
@@ -399,7 +402,11 @@ static bool dmub_psr_copy_settings(struct dmub_psr *dmub,
link->psr_settings.force_ffu_mode = 0;
copy_settings_data->force_ffu_mode = link->psr_settings.force_ffu_mode;
- if (link->fec_state == dc_link_fec_enabled &&
+ if (((link->dpcd_caps.fec_cap.bits.FEC_CAPABLE &&
+ !link->dc->debug.disable_fec) &&
+ (link->dpcd_caps.dsc_caps.dsc_basic_caps.fields.dsc_support.DSC_SUPPORT &&
+ !link->panel_config.dsc.disable_dsc_edp &&
+ link->dc->caps.edp_dsc_support)) &&
link->dpcd_caps.sink_dev_id == DP_DEVICE_ID_38EC11 &&
(!memcmp(link->dpcd_caps.sink_dev_id_str, DP_SINK_DEVICE_STR_ID_1,
sizeof(DP_SINK_DEVICE_STR_ID_1)) ||
@@ -409,6 +416,12 @@ static bool dmub_psr_copy_settings(struct dmub_psr *dmub,
else
copy_settings_data->debug.bitfields.force_wakeup_by_tps3 = 0;
+ //WA for PSR1 on specific TCON, require frame delay for frame re-lock
+ copy_settings_data->relock_delay_frame_cnt = 0;
+ if (link->dpcd_caps.sink_dev_id == DP_BRANCH_DEVICE_ID_001CF8)
+ copy_settings_data->relock_delay_frame_cnt = 2;
+ copy_settings_data->dsc_slice_height = psr_context->dsc_slice_height;
+
dc_dmub_srv_cmd_queue(dc->dmub_srv, &cmd);
dc_dmub_srv_cmd_execute(dc->dmub_srv);
dc_dmub_srv_wait_idle(dc->dmub_srv);
diff --git a/drivers/gpu/drm/amd/display/dc/dce/dmub_psr.h b/drivers/gpu/drm/amd/display/dc/dce/dmub_psr.h
index 74005b9d352a..289e42070ece 100644
--- a/drivers/gpu/drm/amd/display/dc/dce/dmub_psr.h
+++ b/drivers/gpu/drm/amd/display/dc/dce/dmub_psr.h
@@ -26,8 +26,9 @@
#ifndef _DMUB_PSR_H_
#define _DMUB_PSR_H_
-#include "os_types.h"
-#include "dc_link.h"
+#include "dc_types.h"
+struct dc_link;
+struct dmub_psr_funcs;
struct dmub_psr {
struct dc_context *ctx;
diff --git a/drivers/gpu/drm/amd/display/dc/dce110/dce110_hw_sequencer.c b/drivers/gpu/drm/amd/display/dc/dce110/dce110_hw_sequencer.c
index d260eaa1509e..8d2460d06bce 100644
--- a/drivers/gpu/drm/amd/display/dc/dce110/dce110_hw_sequencer.c
+++ b/drivers/gpu/drm/amd/display/dc/dce110/dce110_hw_sequencer.c
@@ -46,7 +46,7 @@
#include "link_encoder.h"
#include "link_enc_cfg.h"
#include "link_hwss.h"
-#include "dc_link_dp.h"
+#include "link.h"
#include "dccg.h"
#include "clock_source.h"
#include "clk_mgr.h"
@@ -54,7 +54,6 @@
#include "audio.h"
#include "reg_helper.h"
#include "panel_cntl.h"
-#include "inc/link_dpcd.h"
#include "dpcd_defs.h"
/* include DCE11 register header files */
#include "dce/dce_11_0_d.h"
@@ -65,7 +64,6 @@
#include "dcn10/dcn10_hw_sequencer.h"
-#include "link/link_dp_trace.h"
#include "dce110_hw_sequencer.h"
#define GAMMA_HW_POINTS_NUM 256
@@ -653,10 +651,16 @@ void dce110_update_info_frame(struct pipe_ctx *pipe_ctx)
pipe_ctx->stream_res.stream_enc->funcs->update_hdmi_info_packets(
pipe_ctx->stream_res.stream_enc,
&pipe_ctx->stream_res.encoder_info_frame);
- else
+ else {
+ if (pipe_ctx->stream_res.stream_enc->funcs->update_dp_info_packets_sdp_line_num)
+ pipe_ctx->stream_res.stream_enc->funcs->update_dp_info_packets_sdp_line_num(
+ pipe_ctx->stream_res.stream_enc,
+ &pipe_ctx->stream_res.encoder_info_frame);
+
pipe_ctx->stream_res.stream_enc->funcs->update_dp_info_packets(
pipe_ctx->stream_res.stream_enc,
&pipe_ctx->stream_res.encoder_info_frame);
+ }
}
void dce110_enable_stream(struct pipe_ctx *pipe_ctx)
@@ -688,16 +692,6 @@ void dce110_enable_stream(struct pipe_ctx *pipe_ctx)
early_control = lane_count;
tg->funcs->set_early_control(tg, early_control);
-
- /* enable audio only within mode set */
- if (pipe_ctx->stream_res.audio != NULL) {
- if (dc_is_dp_signal(pipe_ctx->stream->signal))
- pipe_ctx->stream_res.stream_enc->funcs->dp_audio_enable(pipe_ctx->stream_res.stream_enc);
- }
-
-
-
-
}
static enum bp_result link_transmitter_control(
@@ -747,7 +741,7 @@ void dce110_edp_wait_for_hpd_ready(
/* obtain HPD */
/* TODO what to do with this? */
- hpd = get_hpd_gpio(ctx->dc_bios, connector, ctx->gpio_service);
+ hpd = ctx->dc->link_srv->get_hpd_gpio(ctx->dc_bios, connector, ctx->gpio_service);
if (!hpd) {
BREAK_TO_DEBUGGER();
@@ -785,10 +779,8 @@ void dce110_edp_wait_for_hpd_ready(
dal_gpio_destroy_irq(&hpd);
- if (false == edp_hpd_high) {
- DC_LOG_WARNING(
- "%s: wait timed out!\n", __func__);
- }
+ /* ensure that the panel is detected */
+ ASSERT(edp_hpd_high);
}
void dce110_edp_power_control(
@@ -817,19 +809,19 @@ void dce110_edp_power_control(
div64_u64(dm_get_elapse_time_in_ns(
ctx,
current_ts,
- dp_trace_get_edp_poweroff_timestamp(link)), 1000000);
+ ctx->dc->link_srv->dp_trace_get_edp_poweroff_timestamp(link)), 1000000);
unsigned long long time_since_edp_poweron_ms =
div64_u64(dm_get_elapse_time_in_ns(
ctx,
current_ts,
- dp_trace_get_edp_poweron_timestamp(link)), 1000000);
+ ctx->dc->link_srv->dp_trace_get_edp_poweron_timestamp(link)), 1000000);
DC_LOG_HW_RESUME_S3(
"%s: transition: power_up=%d current_ts=%llu edp_poweroff=%llu edp_poweron=%llu time_since_edp_poweroff_ms=%llu time_since_edp_poweron_ms=%llu",
__func__,
power_up,
current_ts,
- dp_trace_get_edp_poweroff_timestamp(link),
- dp_trace_get_edp_poweron_timestamp(link),
+ ctx->dc->link_srv->dp_trace_get_edp_poweroff_timestamp(link),
+ ctx->dc->link_srv->dp_trace_get_edp_poweron_timestamp(link),
time_since_edp_poweroff_ms,
time_since_edp_poweron_ms);
@@ -844,7 +836,7 @@ void dce110_edp_power_control(
link->panel_config.pps.extra_t12_ms;
/* Adjust remaining_min_edp_poweroff_time_ms if this is not the first time. */
- if (dp_trace_get_edp_poweroff_timestamp(link) != 0) {
+ if (ctx->dc->link_srv->dp_trace_get_edp_poweroff_timestamp(link) != 0) {
if (time_since_edp_poweroff_ms < remaining_min_edp_poweroff_time_ms)
remaining_min_edp_poweroff_time_ms =
remaining_min_edp_poweroff_time_ms - time_since_edp_poweroff_ms;
@@ -885,14 +877,16 @@ void dce110_edp_power_control(
if (ctx->dc->ctx->dmub_srv &&
ctx->dc->debug.dmub_command_table) {
- if (cntl.action == TRANSMITTER_CONTROL_POWER_ON)
+
+ if (cntl.action == TRANSMITTER_CONTROL_POWER_ON) {
bp_result = ctx->dc_bios->funcs->enable_lvtma_control(ctx->dc_bios,
LVTMA_CONTROL_POWER_ON,
- panel_instance);
- else
+ panel_instance, link->link_powered_externally);
+ } else {
bp_result = ctx->dc_bios->funcs->enable_lvtma_control(ctx->dc_bios,
LVTMA_CONTROL_POWER_OFF,
- panel_instance);
+ panel_instance, link->link_powered_externally);
+ }
}
bp_result = link_transmitter_control(ctx->dc_bios, &cntl);
@@ -902,13 +896,13 @@ void dce110_edp_power_control(
__func__, (power_up ? "On":"Off"),
bp_result);
- dp_trace_set_edp_power_timestamp(link, power_up);
+ ctx->dc->link_srv->dp_trace_set_edp_power_timestamp(link, power_up);
DC_LOG_HW_RESUME_S3(
"%s: updated values: edp_poweroff=%llu edp_poweron=%llu\n",
__func__,
- dp_trace_get_edp_poweroff_timestamp(link),
- dp_trace_get_edp_poweron_timestamp(link));
+ ctx->dc->link_srv->dp_trace_get_edp_poweroff_timestamp(link),
+ ctx->dc->link_srv->dp_trace_get_edp_poweron_timestamp(link));
if (bp_result != BP_RESULT_OK)
DC_LOG_ERROR(
@@ -936,14 +930,14 @@ void dce110_edp_wait_for_T12(
return;
if (!link->panel_cntl->funcs->is_panel_powered_on(link->panel_cntl) &&
- dp_trace_get_edp_poweroff_timestamp(link) != 0) {
+ ctx->dc->link_srv->dp_trace_get_edp_poweroff_timestamp(link) != 0) {
unsigned int t12_duration = 500; // Default T12 as per spec
unsigned long long current_ts = dm_get_timestamp(ctx);
unsigned long long time_since_edp_poweroff_ms =
div64_u64(dm_get_elapse_time_in_ns(
ctx,
current_ts,
- dp_trace_get_edp_poweroff_timestamp(link)), 1000000);
+ ctx->dc->link_srv->dp_trace_get_edp_poweroff_timestamp(link)), 1000000);
t12_duration += link->panel_config.pps.extra_t12_ms; // Add extra T12
@@ -951,7 +945,6 @@ void dce110_edp_wait_for_T12(
msleep(t12_duration - time_since_edp_poweroff_ms);
}
}
-
/*todo: cloned in stream enc, fix*/
/*
* @brief
@@ -1025,21 +1018,25 @@ void dce110_edp_backlight_control(
* we shouldn't be doing power-sequencing, hence we can skip
* waiting for T7-ready.
*/
- edp_receiver_ready_T7(link);
+ ctx->dc->link_srv->edp_receiver_ready_T7(link);
else
DC_LOG_DC("edp_receiver_ready_T7 skipped\n");
}
+ /* Setting link_powered_externally will bypass delays in the backlight
+ * as they are not required if the link is being powered by a different
+ * source.
+ */
if (ctx->dc->ctx->dmub_srv &&
ctx->dc->debug.dmub_command_table) {
if (cntl.action == TRANSMITTER_CONTROL_BACKLIGHT_ON)
ctx->dc_bios->funcs->enable_lvtma_control(ctx->dc_bios,
LVTMA_CONTROL_LCD_BLON,
- panel_instance);
+ panel_instance, link->link_powered_externally);
else
ctx->dc_bios->funcs->enable_lvtma_control(ctx->dc_bios,
LVTMA_CONTROL_LCD_BLOFF,
- panel_instance);
+ panel_instance, link->link_powered_externally);
}
link_transmitter_control(ctx->dc_bios, &cntl);
@@ -1052,7 +1049,7 @@ void dce110_edp_backlight_control(
if (link->dpcd_sink_ext_caps.bits.oled ||
link->dpcd_sink_ext_caps.bits.hdr_aux_backlight_control == 1 ||
link->dpcd_sink_ext_caps.bits.sdr_aux_backlight_control == 1)
- dc_link_backlight_enable_aux(link, enable);
+ ctx->dc->link_srv->edp_backlight_enable_aux(link, enable);
/*edp 1.2*/
if (cntl.action == TRANSMITTER_CONTROL_BACKLIGHT_OFF) {
@@ -1064,7 +1061,7 @@ void dce110_edp_backlight_control(
* we shouldn't be doing power-sequencing, hence we can skip
* waiting for T9-ready.
*/
- edp_add_delay_for_T9(link);
+ ctx->dc->link_srv->edp_add_delay_for_T9(link);
else
DC_LOG_DC("edp_receiver_ready_T9 skipped\n");
}
@@ -1081,12 +1078,14 @@ void dce110_enable_audio_stream(struct pipe_ctx *pipe_ctx)
struct dc *dc;
struct clk_mgr *clk_mgr;
unsigned int i, num_audio = 1;
+ const struct link_hwss *link_hwss;
if (!pipe_ctx->stream)
return;
dc = pipe_ctx->stream->ctx->dc;
clk_mgr = dc->clk_mgr;
+ link_hwss = get_link_hwss(pipe_ctx->stream->link, &pipe_ctx->link_res);
if (pipe_ctx->stream_res.audio && pipe_ctx->stream_res.audio->enabled == true)
return;
@@ -1103,56 +1102,35 @@ void dce110_enable_audio_stream(struct pipe_ctx *pipe_ctx)
if (num_audio >= 1 && clk_mgr->funcs->enable_pme_wa)
/*this is the first audio. apply the PME w/a in order to wake AZ from D3*/
clk_mgr->funcs->enable_pme_wa(clk_mgr);
- /* un-mute audio */
- /* TODO: audio should be per stream rather than per link */
- if (is_dp_128b_132b_signal(pipe_ctx))
- pipe_ctx->stream_res.hpo_dp_stream_enc->funcs->audio_mute_control(
- pipe_ctx->stream_res.hpo_dp_stream_enc, false);
- else
- pipe_ctx->stream_res.stream_enc->funcs->audio_mute_control(
- pipe_ctx->stream_res.stream_enc, false);
+
+ link_hwss->enable_audio_packet(pipe_ctx);
+
if (pipe_ctx->stream_res.audio)
pipe_ctx->stream_res.audio->enabled = true;
}
-
- if (dc_is_dp_signal(pipe_ctx->stream->signal))
- dp_source_sequence_trace(pipe_ctx->stream->link, DPCD_SOURCE_SEQ_AFTER_ENABLE_AUDIO_STREAM);
}
void dce110_disable_audio_stream(struct pipe_ctx *pipe_ctx)
{
struct dc *dc;
struct clk_mgr *clk_mgr;
+ const struct link_hwss *link_hwss;
if (!pipe_ctx || !pipe_ctx->stream)
return;
dc = pipe_ctx->stream->ctx->dc;
clk_mgr = dc->clk_mgr;
+ link_hwss = get_link_hwss(pipe_ctx->stream->link, &pipe_ctx->link_res);
if (pipe_ctx->stream_res.audio && pipe_ctx->stream_res.audio->enabled == false)
return;
- if (is_dp_128b_132b_signal(pipe_ctx))
- pipe_ctx->stream_res.hpo_dp_stream_enc->funcs->audio_mute_control(
- pipe_ctx->stream_res.hpo_dp_stream_enc, true);
- else
- pipe_ctx->stream_res.stream_enc->funcs->audio_mute_control(
- pipe_ctx->stream_res.stream_enc, true);
+ link_hwss->disable_audio_packet(pipe_ctx);
+
if (pipe_ctx->stream_res.audio) {
pipe_ctx->stream_res.audio->enabled = false;
- if (dc_is_dp_signal(pipe_ctx->stream->signal))
- if (is_dp_128b_132b_signal(pipe_ctx))
- pipe_ctx->stream_res.hpo_dp_stream_enc->funcs->dp_audio_disable(
- pipe_ctx->stream_res.hpo_dp_stream_enc);
- else
- pipe_ctx->stream_res.stream_enc->funcs->dp_audio_disable(
- pipe_ctx->stream_res.stream_enc);
- else
- pipe_ctx->stream_res.stream_enc->funcs->hdmi_audio_disable(
- pipe_ctx->stream_res.stream_enc);
-
if (clk_mgr->funcs->enable_pme_wa)
/*this is the first audio. apply the PME w/a in order to wake AZ from D3*/
clk_mgr->funcs->enable_pme_wa(clk_mgr);
@@ -1163,9 +1141,6 @@ void dce110_disable_audio_stream(struct pipe_ctx *pipe_ctx)
* stream->stream_engine_id);
*/
}
-
- if (dc_is_dp_signal(pipe_ctx->stream->signal))
- dp_source_sequence_trace(pipe_ctx->stream->link, DPCD_SOURCE_SEQ_AFTER_DISABLE_AUDIO_STREAM);
}
void dce110_disable_stream(struct pipe_ctx *pipe_ctx)
@@ -1174,6 +1149,10 @@ void dce110_disable_stream(struct pipe_ctx *pipe_ctx)
struct dc_link *link = stream->link;
struct dc *dc = pipe_ctx->stream->ctx->dc;
const struct link_hwss *link_hwss = get_link_hwss(link, &pipe_ctx->link_res);
+ struct dccg *dccg = dc->res_pool->dccg;
+ struct timing_generator *tg = pipe_ctx->stream_res.tg;
+ struct dtbclk_dto_params dto_params = {0};
+ int dp_hpo_inst;
if (dc_is_hdmi_tmds_signal(pipe_ctx->stream->signal)) {
pipe_ctx->stream_res.stream_enc->funcs->stop_hdmi_info_packets(
@@ -1182,7 +1161,7 @@ void dce110_disable_stream(struct pipe_ctx *pipe_ctx)
pipe_ctx->stream_res.stream_enc);
}
- if (is_dp_128b_132b_signal(pipe_ctx)) {
+ if (dc->link_srv->dp_is_128b_132b_signal(pipe_ctx)) {
pipe_ctx->stream_res.hpo_dp_stream_enc->funcs->stop_dp_info_packets(
pipe_ctx->stream_res.hpo_dp_stream_enc);
} else if (dc_is_dp_signal(pipe_ctx->stream->signal))
@@ -1193,7 +1172,16 @@ void dce110_disable_stream(struct pipe_ctx *pipe_ctx)
link_hwss->reset_stream_encoder(pipe_ctx);
- if (is_dp_128b_132b_signal(pipe_ctx)) {
+ if (dc->link_srv->dp_is_128b_132b_signal(pipe_ctx)) {
+ dto_params.otg_inst = tg->inst;
+ dto_params.timing = &pipe_ctx->stream->timing;
+ dp_hpo_inst = pipe_ctx->stream_res.hpo_dp_stream_enc->inst;
+ dccg->funcs->set_dtbclk_dto(dccg, &dto_params);
+ dccg->funcs->disable_symclk32_se(dccg, dp_hpo_inst);
+ dccg->funcs->set_dpstreamclk(dccg, REFCLK, tg->inst, dp_hpo_inst);
+ }
+
+ if (dc->link_srv->dp_is_128b_132b_signal(pipe_ctx)) {
/* TODO: This looks like a bug to me as we are disabling HPO IO when
* we are just disabling a single HPO stream. Shouldn't we disable HPO
* HW control only when HPOs for all streams are disabled?
@@ -1235,7 +1223,7 @@ void dce110_blank_stream(struct pipe_ctx *pipe_ctx)
link->dc->hwss.set_abm_immediate_disable(pipe_ctx);
}
- if (is_dp_128b_132b_signal(pipe_ctx)) {
+ if (link->dc->link_srv->dp_is_128b_132b_signal(pipe_ctx)) {
/* TODO - DP2.0 HW: Set ODM mode in dp hpo encoder here */
pipe_ctx->stream_res.hpo_dp_stream_enc->funcs->dp_blank(
pipe_ctx->stream_res.hpo_dp_stream_enc);
@@ -1257,7 +1245,7 @@ void dce110_blank_stream(struct pipe_ctx *pipe_ctx)
* we shouldn't be doing power-sequencing, hence we can skip
* waiting for T9-ready.
*/
- edp_receiver_ready_T9(link);
+ link->dc->link_srv->edp_receiver_ready_T9(link);
}
}
}
@@ -1440,7 +1428,7 @@ static enum dc_status dce110_enable_stream_timing(
if (false == pipe_ctx->clock_source->funcs->program_pix_clk(
pipe_ctx->clock_source,
&pipe_ctx->stream_res.pix_clk_params,
- dp_get_link_encoding_format(&pipe_ctx->link_config.dp_link_settings),
+ dc->link_srv->dp_get_encoding_format(&pipe_ctx->link_config.dp_link_settings),
&pipe_ctx->pll_settings)) {
BREAK_TO_DEBUGGER();
return DC_ERROR_UNEXPECTED;
@@ -1487,6 +1475,9 @@ static enum dc_status apply_single_controller_ctx_to_hw(
unsigned int event_triggers = 0;
struct pipe_ctx *odm_pipe = pipe_ctx->next_odm_pipe;
struct dce_hwseq *hws = dc->hwseq;
+ const struct link_hwss *link_hwss = get_link_hwss(
+ link, &pipe_ctx->link_res);
+
if (hws->funcs.disable_stream_gating) {
hws->funcs.disable_stream_gating(dc, pipe_ctx);
@@ -1497,23 +1488,8 @@ static enum dc_status apply_single_controller_ctx_to_hw(
build_audio_output(context, pipe_ctx, &audio_output);
- if (dc_is_dp_signal(pipe_ctx->stream->signal))
- if (is_dp_128b_132b_signal(pipe_ctx))
- pipe_ctx->stream_res.hpo_dp_stream_enc->funcs->dp_audio_setup(
- pipe_ctx->stream_res.hpo_dp_stream_enc,
- pipe_ctx->stream_res.audio->inst,
- &pipe_ctx->stream->audio_info);
- else
- pipe_ctx->stream_res.stream_enc->funcs->dp_audio_setup(
- pipe_ctx->stream_res.stream_enc,
- pipe_ctx->stream_res.audio->inst,
- &pipe_ctx->stream->audio_info);
- else
- pipe_ctx->stream_res.stream_enc->funcs->hdmi_audio_setup(
- pipe_ctx->stream_res.stream_enc,
- pipe_ctx->stream_res.audio->inst,
- &pipe_ctx->stream->audio_info,
- &audio_output.crtc_info);
+ link_hwss->setup_audio_output(pipe_ctx, &audio_output,
+ pipe_ctx->stream_res.audio->inst);
pipe_ctx->stream_res.audio->funcs->az_configure(
pipe_ctx->stream_res.audio,
@@ -1556,7 +1532,7 @@ static enum dc_status apply_single_controller_ctx_to_hw(
* To do so, move calling function enable_stream_timing to only be done AFTER calling
* function core_link_enable_stream
*/
- if (!(hws->wa.dp_hpo_and_otg_sequence && is_dp_128b_132b_signal(pipe_ctx)))
+ if (!(hws->wa.dp_hpo_and_otg_sequence && dc->link_srv->dp_is_128b_132b_signal(pipe_ctx)))
/* */
/* Do not touch stream timing on seamless boot optimization. */
if (!pipe_ctx->stream->apply_seamless_boot_optimization)
@@ -1588,25 +1564,30 @@ static enum dc_status apply_single_controller_ctx_to_hw(
pipe_ctx->stream_res.tg->inst);
if (dc_is_dp_signal(pipe_ctx->stream->signal))
- dp_source_sequence_trace(link, DPCD_SOURCE_SEQ_AFTER_CONNECT_DIG_FE_OTG);
+ dc->link_srv->dp_trace_source_sequence(link, DPCD_SOURCE_SEQ_AFTER_CONNECT_DIG_FE_OTG);
if (!stream->dpms_off)
- core_link_enable_stream(context, pipe_ctx);
+ dc->link_srv->set_dpms_on(context, pipe_ctx);
/* DCN3.1 FPGA Workaround
* Need to enable HPO DP Stream Encoder before setting OTG master enable.
* To do so, move calling function enable_stream_timing to only be done AFTER calling
* function core_link_enable_stream
*/
- if (hws->wa.dp_hpo_and_otg_sequence && is_dp_128b_132b_signal(pipe_ctx)) {
+ if (hws->wa.dp_hpo_and_otg_sequence && dc->link_srv->dp_is_128b_132b_signal(pipe_ctx)) {
if (!pipe_ctx->stream->apply_seamless_boot_optimization)
hws->funcs.enable_stream_timing(pipe_ctx, context, dc);
}
pipe_ctx->plane_res.scl_data.lb_params.alpha_en = pipe_ctx->bottom_pipe != NULL;
- pipe_ctx->stream->link->psr_settings.psr_feature_enabled = false;
-
+ /* Phantom and main stream share the same link (because the stream
+ * is constructed with the same sink). Make sure not to override
+ * and link programming on the main.
+ */
+ if (pipe_ctx->stream->mall_stream_config.type != SUBVP_PHANTOM) {
+ pipe_ctx->stream->link->psr_settings.psr_feature_enabled = false;
+ }
return DC_OK;
}
@@ -1619,7 +1600,7 @@ static void power_down_encoders(struct dc *dc)
for (i = 0; i < dc->link_count; i++) {
enum signal_type signal = dc->links[i]->connector_signal;
- dc_link_blank_dp_stream(dc->links[i], false);
+ dc->link_srv->blank_dp_stream(dc->links[i], false);
if (signal != SIGNAL_TYPE_EDP)
signal = SIGNAL_TYPE_NONE;
@@ -1758,7 +1739,7 @@ void dce110_enable_accelerated_mode(struct dc *dc, struct dc_state *context)
get_edp_links_with_sink(dc, edp_links_with_sink, &edp_with_sink_num);
- get_edp_links(dc, edp_links, &edp_num);
+ dc_get_edp_links(dc, edp_links, &edp_num);
if (hws->funcs.init_pipes)
hws->funcs.init_pipes(dc, context);
@@ -2102,7 +2083,7 @@ static void dce110_reset_hw_ctx_wrap(
* disabled already, no need to disable again.
*/
if (!pipe_ctx->stream || !pipe_ctx->stream->dpms_off) {
- core_link_disable_stream(pipe_ctx_old);
+ dc->link_srv->set_dpms_off(pipe_ctx_old);
/* free acquired resources*/
if (pipe_ctx_old->stream_res.audio) {
@@ -3050,10 +3031,12 @@ void dce110_enable_dp_link_output(
const struct link_hwss *link_hwss = get_link_hwss(link, link_res);
unsigned int i;
-
+ /*
+ * Add the logic to extract BOTH power up and power down sequences
+ * from enable/disable link output and only call edp panel control
+ * in enable_link_dp and disable_link_dp once.
+ */
if (link->connector_signal == SIGNAL_TYPE_EDP) {
- if (!link->dc->config.edp_no_power_sequencing)
- link->dc->hwss.edp_power_control(link, true);
link->dc->hwss.edp_wait_for_hpd_ready(link, true);
}
@@ -3073,13 +3056,13 @@ void dce110_enable_dp_link_output(
pipes[i].clock_source->funcs->program_pix_clk(
pipes[i].clock_source,
&pipes[i].stream_res.pix_clk_params,
- dp_get_link_encoding_format(link_settings),
+ dc->link_srv->dp_get_encoding_format(link_settings),
&pipes[i].pll_settings);
}
}
}
- if (dp_get_link_encoding_format(link_settings) == DP_8b_10b_ENCODING) {
+ if (dc->link_srv->dp_get_encoding_format(link_settings) == DP_8b_10b_ENCODING) {
if (dc->clk_mgr->funcs->notify_link_rate_change)
dc->clk_mgr->funcs->notify_link_rate_change(dc->clk_mgr, link);
}
@@ -3096,7 +3079,7 @@ void dce110_enable_dp_link_output(
if (dmcu != NULL && dmcu->funcs->unlock_phy)
dmcu->funcs->unlock_phy(dmcu);
- dp_source_sequence_trace(link, DPCD_SOURCE_SEQ_AFTER_ENABLE_LINK_PHY);
+ dc->link_srv->dp_trace_source_sequence(link, DPCD_SOURCE_SEQ_AFTER_ENABLE_LINK_PHY);
}
void dce110_disable_link_output(struct dc_link *link,
@@ -3115,13 +3098,14 @@ void dce110_disable_link_output(struct dc_link *link,
link_hwss->disable_link_output(link, link_res, signal);
link->phy_state.symclk_state = SYMCLK_OFF_TX_OFF;
-
- if (signal == SIGNAL_TYPE_EDP &&
- link->dc->hwss.edp_backlight_control)
- link->dc->hwss.edp_power_control(link, false);
- else if (dmcu != NULL && dmcu->funcs->lock_phy)
+ /*
+ * Add the logic to extract BOTH power up and power down sequences
+ * from enable/disable link output and only call edp panel control
+ * in enable_link_dp and disable_link_dp once.
+ */
+ if (dmcu != NULL && dmcu->funcs->lock_phy)
dmcu->funcs->unlock_phy(dmcu);
- dp_source_sequence_trace(link, DPCD_SOURCE_SEQ_AFTER_DISABLE_LINK_PHY);
+ dc->link_srv->dp_trace_source_sequence(link, DPCD_SOURCE_SEQ_AFTER_DISABLE_LINK_PHY);
}
static const struct hw_sequencer_funcs dce110_funcs = {
diff --git a/drivers/gpu/drm/amd/display/dc/dce110/dce110_hw_sequencer.h b/drivers/gpu/drm/amd/display/dc/dce110/dce110_hw_sequencer.h
index 758f4b3b0087..08028a1779ae 100644
--- a/drivers/gpu/drm/amd/display/dc/dce110/dce110_hw_sequencer.h
+++ b/drivers/gpu/drm/amd/display/dc/dce110/dce110_hw_sequencer.h
@@ -71,8 +71,6 @@ void dce110_optimize_bandwidth(
struct dc *dc,
struct dc_state *context);
-void dp_receiver_power_ctrl(struct dc_link *link, bool on);
-
void dce110_edp_power_control(
struct dc_link *link,
bool power_up);
diff --git a/drivers/gpu/drm/amd/display/dc/dce110/dce110_resource.c b/drivers/gpu/drm/amd/display/dc/dce110/dce110_resource.c
index f808315b2835..a4a45a6ce61e 100644
--- a/drivers/gpu/drm/amd/display/dc/dce110/dce110_resource.c
+++ b/drivers/gpu/drm/amd/display/dc/dce110/dce110_resource.c
@@ -401,8 +401,6 @@ static const struct resource_caps stoney_resource_cap = {
static const struct dc_plane_cap plane_cap = {
.type = DC_PLANE_TYPE_DCE_RGB,
- .blends_with_below = true,
- .blends_with_above = true,
.per_pixel_alpha = 1,
.pixel_format_support = {
@@ -428,7 +426,6 @@ static const struct dc_plane_cap plane_cap = {
static const struct dc_plane_cap underlay_plane_cap = {
.type = DC_PLANE_TYPE_DCE_UNDERLAY,
- .blends_with_above = true,
.per_pixel_alpha = 1,
.pixel_format_support = {
diff --git a/drivers/gpu/drm/amd/display/dc/dce120/dce120_resource.c b/drivers/gpu/drm/amd/display/dc/dce120/dce120_resource.c
index 1b70b78e2fa1..af631085e88c 100644
--- a/drivers/gpu/drm/amd/display/dc/dce120/dce120_resource.c
+++ b/drivers/gpu/drm/amd/display/dc/dce120/dce120_resource.c
@@ -359,7 +359,8 @@ static const struct dce_audio_registers audio_regs[] = {
audio_regs(2),
audio_regs(3),
audio_regs(4),
- audio_regs(5)
+ audio_regs(5),
+ audio_regs(6),
};
#define DCE120_AUD_COMMON_MASK_SH_LIST(mask_sh)\
diff --git a/drivers/gpu/drm/amd/display/dc/dce60/Makefile b/drivers/gpu/drm/amd/display/dc/dce60/Makefile
index dda596fa1cd7..fee331accc0e 100644
--- a/drivers/gpu/drm/amd/display/dc/dce60/Makefile
+++ b/drivers/gpu/drm/amd/display/dc/dce60/Makefile
@@ -23,7 +23,7 @@
# Makefile for the 'controller' sub-component of DAL.
# It provides the control and status of HW CRTC block.
-CFLAGS_AMDDALPATH)/dc/dce60/dce60_resource.o = $(call cc-disable-warning, override-init)
+CFLAGS_$(AMDDALPATH)/dc/dce60/dce60_resource.o = $(call cc-disable-warning, override-init)
DCE60 = dce60_timing_generator.o dce60_hw_sequencer.o \
dce60_resource.o
diff --git a/drivers/gpu/drm/amd/display/dc/dce60/dce60_resource.c b/drivers/gpu/drm/amd/display/dc/dce60/dce60_resource.c
index fc6aa098bda0..8db9f7514466 100644
--- a/drivers/gpu/drm/amd/display/dc/dce60/dce60_resource.c
+++ b/drivers/gpu/drm/amd/display/dc/dce60/dce60_resource.c
@@ -1128,6 +1128,7 @@ struct resource_pool *dce60_create_resource_pool(
if (dce60_construct(num_virtual_links, dc, pool))
return &pool->base;
+ kfree(pool);
BREAK_TO_DEBUGGER();
return NULL;
}
@@ -1325,6 +1326,7 @@ struct resource_pool *dce61_create_resource_pool(
if (dce61_construct(num_virtual_links, dc, pool))
return &pool->base;
+ kfree(pool);
BREAK_TO_DEBUGGER();
return NULL;
}
@@ -1518,6 +1520,7 @@ struct resource_pool *dce64_create_resource_pool(
if (dce64_construct(num_virtual_links, dc, pool))
return &pool->base;
+ kfree(pool);
BREAK_TO_DEBUGGER();
return NULL;
}
diff --git a/drivers/gpu/drm/amd/display/dc/dce80/dce80_resource.c b/drivers/gpu/drm/amd/display/dc/dce80/dce80_resource.c
index b28025960050..5825e6f412bd 100644
--- a/drivers/gpu/drm/amd/display/dc/dce80/dce80_resource.c
+++ b/drivers/gpu/drm/amd/display/dc/dce80/dce80_resource.c
@@ -1137,6 +1137,7 @@ struct resource_pool *dce80_create_resource_pool(
if (dce80_construct(num_virtual_links, dc, pool))
return &pool->base;
+ kfree(pool);
BREAK_TO_DEBUGGER();
return NULL;
}
@@ -1336,6 +1337,7 @@ struct resource_pool *dce81_create_resource_pool(
if (dce81_construct(num_virtual_links, dc, pool))
return &pool->base;
+ kfree(pool);
BREAK_TO_DEBUGGER();
return NULL;
}
diff --git a/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_dpp.c b/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_dpp.c
index b9765b3899e1..ef52e6b6eccf 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_dpp.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_dpp.c
@@ -436,34 +436,48 @@ void dpp1_set_cursor_position(
uint32_t height)
{
struct dcn10_dpp *dpp = TO_DCN10_DPP(dpp_base);
- int src_x_offset = pos->x - pos->x_hotspot - param->viewport.x;
- int src_y_offset = pos->y - pos->y_hotspot - param->viewport.y;
+ int x_pos = pos->x - param->viewport.x;
+ int y_pos = pos->y - param->viewport.y;
+ int x_hotspot = pos->x_hotspot;
+ int y_hotspot = pos->y_hotspot;
+ int src_x_offset = x_pos - pos->x_hotspot;
+ int src_y_offset = y_pos - pos->y_hotspot;
+ int cursor_height = (int)height;
+ int cursor_width = (int)width;
uint32_t cur_en = pos->enable ? 1 : 0;
- // Cursor width/height and hotspots need to be rotated for offset calculation
+ // Transform cursor width / height and hotspots for offset calculations
if (param->rotation == ROTATION_ANGLE_90 || param->rotation == ROTATION_ANGLE_270) {
- swap(width, height);
+ swap(cursor_height, cursor_width);
+ swap(x_hotspot, y_hotspot);
+
if (param->rotation == ROTATION_ANGLE_90) {
- src_x_offset = pos->x - pos->y_hotspot - param->viewport.x;
- src_y_offset = pos->y - pos->x_hotspot - param->viewport.y;
+ // hotspot = (-y, x)
+ src_x_offset = x_pos - (cursor_width - x_hotspot);
+ src_y_offset = y_pos - y_hotspot;
+ } else if (param->rotation == ROTATION_ANGLE_270) {
+ // hotspot = (y, -x)
+ src_x_offset = x_pos - x_hotspot;
+ src_y_offset = y_pos - (cursor_height - y_hotspot);
}
} else if (param->rotation == ROTATION_ANGLE_180) {
+ // hotspot = (-x, -y)
if (!param->mirror)
- src_x_offset = pos->x - param->viewport.x;
+ src_x_offset = x_pos - (cursor_width - x_hotspot);
- src_y_offset = pos->y - param->viewport.y;
+ src_y_offset = y_pos - (cursor_height - y_hotspot);
}
if (src_x_offset >= (int)param->viewport.width)
cur_en = 0; /* not visible beyond right edge*/
- if (src_x_offset + (int)width <= 0)
+ if (src_x_offset + cursor_width <= 0)
cur_en = 0; /* not visible beyond left edge*/
if (src_y_offset >= (int)param->viewport.height)
cur_en = 0; /* not visible beyond bottom edge*/
- if (src_y_offset + (int)height <= 0)
+ if (src_y_offset + cursor_height <= 0)
cur_en = 0; /* not visible beyond top edge*/
REG_UPDATE(CURSOR0_CONTROL,
diff --git a/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_dpp.h b/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_dpp.h
index 71b3a6949001..c9e045666dcc 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_dpp.h
+++ b/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_dpp.h
@@ -59,6 +59,7 @@
SRI(LB_DATA_FORMAT, DSCL, id), \
SRI(LB_MEMORY_CTRL, DSCL, id), \
SRI(DSCL_AUTOCAL, DSCL, id), \
+ SRI(DSCL_CONTROL, DSCL, id), \
SRI(SCL_BLACK_OFFSET, DSCL, id), \
SRI(SCL_TAP_CONTROL, DSCL, id), \
SRI(SCL_COEF_RAM_TAP_SELECT, DSCL, id), \
@@ -209,6 +210,7 @@
TF_SF(DSCL0_DSCL_AUTOCAL, AUTOCAL_MODE, mask_sh),\
TF_SF(DSCL0_DSCL_AUTOCAL, AUTOCAL_NUM_PIPE, mask_sh),\
TF_SF(DSCL0_DSCL_AUTOCAL, AUTOCAL_PIPE_ID, mask_sh),\
+ TF_SF(DSCL0_DSCL_CONTROL, SCL_BOUNDARY_MODE, mask_sh),\
TF_SF(DSCL0_SCL_BLACK_OFFSET, SCL_BLACK_OFFSET_RGB_Y, mask_sh),\
TF_SF(DSCL0_SCL_BLACK_OFFSET, SCL_BLACK_OFFSET_CBCR, mask_sh),\
TF_SF(DSCL0_SCL_TAP_CONTROL, SCL_V_NUM_TAPS, mask_sh),\
@@ -495,6 +497,7 @@
type AUTOCAL_MODE; \
type AUTOCAL_NUM_PIPE; \
type AUTOCAL_PIPE_ID; \
+ type SCL_BOUNDARY_MODE; \
type SCL_BLACK_OFFSET_RGB_Y; \
type SCL_BLACK_OFFSET_CBCR; \
type SCL_V_NUM_TAPS; \
@@ -1108,6 +1111,7 @@ struct dcn_dpp_mask {
uint32_t LB_DATA_FORMAT; \
uint32_t LB_MEMORY_CTRL; \
uint32_t DSCL_AUTOCAL; \
+ uint32_t DSCL_CONTROL; \
uint32_t SCL_BLACK_OFFSET; \
uint32_t SCL_TAP_CONTROL; \
uint32_t SCL_COEF_RAM_TAP_SELECT; \
diff --git a/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_dpp_dscl.c b/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_dpp_dscl.c
index f607a0e28f14..b33955928bd0 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_dpp_dscl.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_dpp_dscl.c
@@ -581,7 +581,7 @@ static void dpp1_dscl_set_manual_ratio_init(
* dpp1_dscl_set_recout - Set the first pixel of RECOUT in the OTG active area
*
* @dpp: DPP data struct
- * @recount: Rectangle information
+ * @recout: Rectangle information
*
* This function sets the MPC RECOUT_START and RECOUT_SIZE registers based on
* the values specified in the recount parameter.
@@ -655,6 +655,10 @@ void dpp1_dscl_set_scaler_manual_scale(struct dpp *dpp_base,
AUTOCAL_NUM_PIPE, 0,
AUTOCAL_PIPE_ID, 0);
+ /*clean scaler boundary mode when Autocal off*/
+ REG_SET(DSCL_CONTROL, 0,
+ SCL_BOUNDARY_MODE, 0);
+
/* Recout */
dpp1_dscl_set_recout(dpp, &scl_data->recout);
diff --git a/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_dwb.c b/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_dwb.c
index b6391a5ead78..365a3215f6d5 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_dwb.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_dwb.c
@@ -23,8 +23,6 @@
*
*/
-#if defined(CONFIG_DRM_AMD_DC_DCN)
-
#include "reg_helper.h"
#include "resource.h"
#include "dwb.h"
@@ -129,6 +127,3 @@ void dcn10_dwbc_construct(struct dcn10_dwbc *dwbc10,
dwbc10->dwbc_shift = dwbc_shift;
dwbc10->dwbc_mask = dwbc_mask;
}
-
-
-#endif
diff --git a/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_dwb.h b/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_dwb.h
index d56ea7c8171e..5268c46ae907 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_dwb.h
+++ b/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_dwb.h
@@ -24,8 +24,6 @@
#ifndef __DC_DWBC_DCN10_H__
#define __DC_DWBC_DCN10_H__
-#if defined(CONFIG_DRM_AMD_DC_DCN)
-
/* DCN */
#define BASE_INNER(seg) \
DCE_BASE__INST0_SEG ## seg
@@ -267,5 +265,3 @@ void dcn10_dwbc_construct(struct dcn10_dwbc *dwbc10,
int inst);
#endif
-
-#endif
diff --git a/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_hubbub.c b/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_hubbub.c
index 0f746bb4e500..d51f1ce02874 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_hubbub.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_hubbub.c
@@ -55,7 +55,7 @@ void hubbub1_wm_read_state(struct hubbub *hubbub,
s->sr_enter = REG_READ(DCHUBBUB_ARB_ALLOW_SR_ENTER_WATERMARK_A);
s->sr_exit = REG_READ(DCHUBBUB_ARB_ALLOW_SR_EXIT_WATERMARK_A);
}
- s->dram_clk_chanage = REG_READ(DCHUBBUB_ARB_ALLOW_DRAM_CLK_CHANGE_WATERMARK_A);
+ s->dram_clk_change = REG_READ(DCHUBBUB_ARB_ALLOW_DRAM_CLK_CHANGE_WATERMARK_A);
s = &wm->sets[1];
s->wm_set = 1;
@@ -65,7 +65,7 @@ void hubbub1_wm_read_state(struct hubbub *hubbub,
s->sr_enter = REG_READ(DCHUBBUB_ARB_ALLOW_SR_ENTER_WATERMARK_B);
s->sr_exit = REG_READ(DCHUBBUB_ARB_ALLOW_SR_EXIT_WATERMARK_B);
}
- s->dram_clk_chanage = REG_READ(DCHUBBUB_ARB_ALLOW_DRAM_CLK_CHANGE_WATERMARK_B);
+ s->dram_clk_change = REG_READ(DCHUBBUB_ARB_ALLOW_DRAM_CLK_CHANGE_WATERMARK_B);
s = &wm->sets[2];
s->wm_set = 2;
@@ -75,7 +75,7 @@ void hubbub1_wm_read_state(struct hubbub *hubbub,
s->sr_enter = REG_READ(DCHUBBUB_ARB_ALLOW_SR_ENTER_WATERMARK_C);
s->sr_exit = REG_READ(DCHUBBUB_ARB_ALLOW_SR_EXIT_WATERMARK_C);
}
- s->dram_clk_chanage = REG_READ(DCHUBBUB_ARB_ALLOW_DRAM_CLK_CHANGE_WATERMARK_C);
+ s->dram_clk_change = REG_READ(DCHUBBUB_ARB_ALLOW_DRAM_CLK_CHANGE_WATERMARK_C);
s = &wm->sets[3];
s->wm_set = 3;
@@ -85,7 +85,7 @@ void hubbub1_wm_read_state(struct hubbub *hubbub,
s->sr_enter = REG_READ(DCHUBBUB_ARB_ALLOW_SR_ENTER_WATERMARK_D);
s->sr_exit = REG_READ(DCHUBBUB_ARB_ALLOW_SR_EXIT_WATERMARK_D);
}
- s->dram_clk_chanage = REG_READ(DCHUBBUB_ARB_ALLOW_DRAM_CLK_CHANGE_WATERMARK_D);
+ s->dram_clk_change = REG_READ(DCHUBBUB_ARB_ALLOW_DRAM_CLK_CHANGE_WATERMARK_D);
}
void hubbub1_allow_self_refresh_control(struct hubbub *hubbub, bool allow)
diff --git a/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_hubbub.h b/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_hubbub.h
index e48fd044f572..e8752077571a 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_hubbub.h
+++ b/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_hubbub.h
@@ -171,6 +171,11 @@ struct dcn_hubbub_registers {
uint32_t DCHUBBUB_ARB_FCLK_PSTATE_CHANGE_WATERMARK_B;
uint32_t DCHUBBUB_ARB_FCLK_PSTATE_CHANGE_WATERMARK_C;
uint32_t DCHUBBUB_ARB_FCLK_PSTATE_CHANGE_WATERMARK_D;
+ uint32_t SDPIF_REQUEST_RATE_LIMIT;
+ uint32_t DCHUBBUB_SDPIF_CFG0;
+ uint32_t DCHUBBUB_SDPIF_CFG1;
+ uint32_t DCHUBBUB_CLOCK_CNTL;
+ uint32_t DCHUBBUB_MEM_PWR_MODE_CTRL;
};
#define HUBBUB_REG_FIELD_LIST_DCN32(type) \
@@ -360,7 +365,14 @@ struct dcn_hubbub_registers {
type DCHUBBUB_ARB_ALLOW_SR_ENTER_WATERMARK_Z8_C;\
type DCHUBBUB_ARB_ALLOW_SR_EXIT_WATERMARK_Z8_C;\
type DCHUBBUB_ARB_ALLOW_SR_ENTER_WATERMARK_Z8_D;\
- type DCHUBBUB_ARB_ALLOW_SR_EXIT_WATERMARK_Z8_D
+ type DCHUBBUB_ARB_ALLOW_SR_EXIT_WATERMARK_Z8_D;\
+ type SDPIF_REQUEST_RATE_LIMIT;\
+ type DISPCLK_R_DCHUBBUB_GATE_DIS;\
+ type DCFCLK_R_DCHUBBUB_GATE_DIS;\
+ type SDPIF_MAX_NUM_OUTSTANDING;\
+ type DCHUBBUB_ARB_MAX_REQ_OUTSTAND;\
+ type SDPIF_PORT_CONTROL;\
+ type DET_MEM_PWR_LS_MODE
struct dcn_hubbub_shift {
diff --git a/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_hubp.c b/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_hubp.c
index 52e201e9b091..bf399819ca80 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_hubp.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_hubp.c
@@ -755,8 +755,8 @@ bool hubp1_is_flip_pending(struct hubp *hubp)
return false;
}
-uint32_t aperture_default_system = 1;
-uint32_t context0_default_system; /* = 0;*/
+static uint32_t aperture_default_system = 1;
+static uint32_t context0_default_system; /* = 0;*/
static void hubp1_set_vm_system_aperture_settings(struct hubp *hubp,
struct vm_system_aperture_param *apt)
@@ -1179,10 +1179,12 @@ void hubp1_cursor_set_position(
const struct dc_cursor_mi_param *param)
{
struct dcn10_hubp *hubp1 = TO_DCN10_HUBP(hubp);
- int src_x_offset = pos->x - pos->x_hotspot - param->viewport.x;
- int src_y_offset = pos->y - pos->y_hotspot - param->viewport.y;
+ int x_pos = pos->x - param->viewport.x;
+ int y_pos = pos->y - param->viewport.y;
int x_hotspot = pos->x_hotspot;
int y_hotspot = pos->y_hotspot;
+ int src_x_offset = x_pos - pos->x_hotspot;
+ int src_y_offset = y_pos - pos->y_hotspot;
int cursor_height = (int)hubp->curs_attr.height;
int cursor_width = (int)hubp->curs_attr.width;
uint32_t dst_x_offset;
@@ -1200,18 +1202,26 @@ void hubp1_cursor_set_position(
if (hubp->curs_attr.address.quad_part == 0)
return;
- // Rotated cursor width/height and hotspots tweaks for offset calculation
+ // Transform cursor width / height and hotspots for offset calculations
if (param->rotation == ROTATION_ANGLE_90 || param->rotation == ROTATION_ANGLE_270) {
swap(cursor_height, cursor_width);
+ swap(x_hotspot, y_hotspot);
+
if (param->rotation == ROTATION_ANGLE_90) {
- src_x_offset = pos->x - pos->y_hotspot - param->viewport.x;
- src_y_offset = pos->y - pos->x_hotspot - param->viewport.y;
+ // hotspot = (-y, x)
+ src_x_offset = x_pos - (cursor_width - x_hotspot);
+ src_y_offset = y_pos - y_hotspot;
+ } else if (param->rotation == ROTATION_ANGLE_270) {
+ // hotspot = (y, -x)
+ src_x_offset = x_pos - x_hotspot;
+ src_y_offset = y_pos - (cursor_height - y_hotspot);
}
} else if (param->rotation == ROTATION_ANGLE_180) {
+ // hotspot = (-x, -y)
if (!param->mirror)
- src_x_offset = pos->x - param->viewport.x;
+ src_x_offset = x_pos - (cursor_width - x_hotspot);
- src_y_offset = pos->y - param->viewport.y;
+ src_y_offset = y_pos - (cursor_height - y_hotspot);
}
dst_x_offset = (src_x_offset >= 0) ? src_x_offset : 0;
@@ -1248,8 +1258,8 @@ void hubp1_cursor_set_position(
CURSOR_Y_POSITION, pos->y);
REG_SET_2(CURSOR_HOT_SPOT, 0,
- CURSOR_HOT_SPOT_X, x_hotspot,
- CURSOR_HOT_SPOT_Y, y_hotspot);
+ CURSOR_HOT_SPOT_X, pos->x_hotspot,
+ CURSOR_HOT_SPOT_Y, pos->y_hotspot);
REG_SET(CURSOR_DST_OFFSET, 0,
CURSOR_DST_X_OFFSET, dst_x_offset);
diff --git a/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_hw_sequencer.c b/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_hw_sequencer.c
index 11e4c4e46947..1c3b6f25a782 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_hw_sequencer.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_hw_sequencer.c
@@ -45,7 +45,6 @@
#include "dcn10_hubp.h"
#include "dcn10_hubbub.h"
#include "dcn10_cm_common.h"
-#include "dc_link_dp.h"
#include "dccg.h"
#include "clk_mgr.h"
#include "link_hwss.h"
@@ -56,8 +55,7 @@
#include "dce/dmub_hw_lock_mgr.h"
#include "dc_trace.h"
#include "dce/dmub_outbox.h"
-#include "inc/dc_link_dp.h"
-#include "inc/link_dpcd.h"
+#include "link.h"
#define DC_LOGGER_INIT(logger)
@@ -97,10 +95,12 @@ void dcn10_lock_all_pipes(struct dc *dc,
bool lock)
{
struct pipe_ctx *pipe_ctx;
+ struct pipe_ctx *old_pipe_ctx;
struct timing_generator *tg;
int i;
for (i = 0; i < dc->res_pool->pipe_count; i++) {
+ old_pipe_ctx = &dc->current_state->res_ctx.pipe_ctx[i];
pipe_ctx = &context->res_ctx.pipe_ctx[i];
tg = pipe_ctx->stream_res.tg;
@@ -110,7 +110,7 @@ void dcn10_lock_all_pipes(struct dc *dc,
*/
if (pipe_ctx->top_pipe ||
!pipe_ctx->stream ||
- !pipe_ctx->plane_state ||
+ (!pipe_ctx->plane_state && !old_pipe_ctx->plane_state) ||
!tg->funcs->is_tg_enabled(tg))
continue;
@@ -157,7 +157,7 @@ static void dcn10_log_hubbub_state(struct dc *dc,
DTN_INFO_MICRO_SEC(s->pte_meta_urgent);
DTN_INFO_MICRO_SEC(s->sr_enter);
DTN_INFO_MICRO_SEC(s->sr_exit);
- DTN_INFO_MICRO_SEC(s->dram_clk_chanage);
+ DTN_INFO_MICRO_SEC(s->dram_clk_change);
DTN_INFO("\n");
}
@@ -726,11 +726,15 @@ void dcn10_hubp_pg_control(
}
}
-static void power_on_plane(
+static void power_on_plane_resources(
struct dce_hwseq *hws,
int plane_id)
{
DC_LOGGER_INIT(hws->ctx->logger);
+
+ if (hws->funcs.dpp_root_clock_control)
+ hws->funcs.dpp_root_clock_control(hws, plane_id, true);
+
if (REG(DC_IP_REQUEST_CNTL)) {
REG_SET(DC_IP_REQUEST_CNTL, 0,
IP_REQUEST_EN, 1);
@@ -867,6 +871,32 @@ static void false_optc_underflow_wa(
tg->funcs->clear_optc_underflow(tg);
}
+static int calculate_vready_offset_for_group(struct pipe_ctx *pipe)
+{
+ struct pipe_ctx *other_pipe;
+ int vready_offset = pipe->pipe_dlg_param.vready_offset;
+
+ /* Always use the largest vready_offset of all connected pipes */
+ for (other_pipe = pipe->bottom_pipe; other_pipe != NULL; other_pipe = other_pipe->bottom_pipe) {
+ if (other_pipe->pipe_dlg_param.vready_offset > vready_offset)
+ vready_offset = other_pipe->pipe_dlg_param.vready_offset;
+ }
+ for (other_pipe = pipe->top_pipe; other_pipe != NULL; other_pipe = other_pipe->top_pipe) {
+ if (other_pipe->pipe_dlg_param.vready_offset > vready_offset)
+ vready_offset = other_pipe->pipe_dlg_param.vready_offset;
+ }
+ for (other_pipe = pipe->next_odm_pipe; other_pipe != NULL; other_pipe = other_pipe->next_odm_pipe) {
+ if (other_pipe->pipe_dlg_param.vready_offset > vready_offset)
+ vready_offset = other_pipe->pipe_dlg_param.vready_offset;
+ }
+ for (other_pipe = pipe->prev_odm_pipe; other_pipe != NULL; other_pipe = other_pipe->prev_odm_pipe) {
+ if (other_pipe->pipe_dlg_param.vready_offset > vready_offset)
+ vready_offset = other_pipe->pipe_dlg_param.vready_offset;
+ }
+
+ return vready_offset;
+}
+
enum dc_status dcn10_enable_stream_timing(
struct pipe_ctx *pipe_ctx,
struct dc_state *context,
@@ -893,7 +923,7 @@ enum dc_status dcn10_enable_stream_timing(
if (false == pipe_ctx->clock_source->funcs->program_pix_clk(
pipe_ctx->clock_source,
&pipe_ctx->stream_res.pix_clk_params,
- dp_get_link_encoding_format(&pipe_ctx->link_config.dp_link_settings),
+ dc->link_srv->dp_get_encoding_format(&pipe_ctx->link_config.dp_link_settings),
&pipe_ctx->pll_settings)) {
BREAK_TO_DEBUGGER();
return DC_ERROR_UNEXPECTED;
@@ -910,7 +940,7 @@ enum dc_status dcn10_enable_stream_timing(
pipe_ctx->stream_res.tg->funcs->program_timing(
pipe_ctx->stream_res.tg,
&stream->timing,
- pipe_ctx->pipe_dlg_param.vready_offset,
+ calculate_vready_offset_for_group(pipe_ctx),
pipe_ctx->pipe_dlg_param.vstartup_start,
pipe_ctx->pipe_dlg_param.vupdate_offset,
pipe_ctx->pipe_dlg_param.vupdate_width,
@@ -991,7 +1021,7 @@ static void dcn10_reset_back_end_for_pipe(
* VBIOS lit up eDP, so check link status too.
*/
if (!pipe_ctx->stream->dpms_off || link->link_status.link_active)
- core_link_disable_stream(pipe_ctx);
+ dc->link_srv->set_dpms_off(pipe_ctx);
else if (pipe_ctx->stream_res.audio)
dc->hwss.disable_audio_stream(pipe_ctx);
@@ -1211,11 +1241,15 @@ void dcn10_plane_atomic_power_down(struct dc *dc,
hws->funcs.hubp_pg_control(hws, hubp->inst, false);
dpp->funcs->dpp_reset(dpp);
+
REG_SET(DC_IP_REQUEST_CNTL, 0,
IP_REQUEST_EN, 0);
DC_LOG_DEBUG(
"Power gated front end %d\n", hubp->inst);
}
+
+ if (hws->funcs.dpp_root_clock_control)
+ hws->funcs.dpp_root_clock_control(hws, dpp->inst, false);
}
/* disable HW used by plane.
@@ -1538,7 +1572,7 @@ void dcn10_init_hw(struct dc *dc)
}
/* we want to turn off all dp displays before doing detection */
- dc_link_blank_all_dp_displays(dc);
+ dc->link_srv->blank_all_dp_displays(dc);
if (hws->funcs.enable_power_gating_plane)
hws->funcs.enable_power_gating_plane(dc->hwseq, true);
@@ -1612,7 +1646,7 @@ void dcn10_power_down_on_boot(struct dc *dc)
int edp_num;
int i = 0;
- get_edp_links(dc, edp_links, &edp_num);
+ dc_get_edp_links(dc, edp_links, &edp_num);
if (edp_num)
edp_link = edp_links[0];
@@ -2188,6 +2222,12 @@ void dcn10_enable_vblanks_synchronization(
opp = grouped_pipes[i]->stream_res.opp;
tg = grouped_pipes[i]->stream_res.tg;
tg->funcs->get_otg_active_size(tg, &width, &height);
+
+ if (!tg->funcs->is_tg_enabled(tg)) {
+ DC_SYNC_INFO("Skipping timing sync on disabled OTG\n");
+ return;
+ }
+
if (opp->funcs->opp_program_dpg_dimensions)
opp->funcs->opp_program_dpg_dimensions(opp, width, 2*(height) + 1);
}
@@ -2250,6 +2290,12 @@ void dcn10_enable_timing_synchronization(
opp = grouped_pipes[i]->stream_res.opp;
tg = grouped_pipes[i]->stream_res.tg;
tg->funcs->get_otg_active_size(tg, &width, &height);
+
+ if (!tg->funcs->is_tg_enabled(tg)) {
+ DC_SYNC_INFO("Skipping timing sync on disabled OTG\n");
+ return;
+ }
+
if (opp->funcs->opp_program_dpg_dimensions)
opp->funcs->opp_program_dpg_dimensions(opp, width, 2*(height) + 1);
}
@@ -2424,7 +2470,7 @@ static void dcn10_enable_plane(
undo_DEGVIDCN10_253_wa(dc);
- power_on_plane(dc->hwseq,
+ power_on_plane_resources(dc->hwseq,
pipe_ctx->plane_res.hubp->inst);
/* enable DCFCLK current DCHUB */
@@ -2861,7 +2907,7 @@ void dcn10_blank_pixel_data(
dc->hwss.set_pipe(pipe_ctx);
stream_res->abm->funcs->set_abm_level(stream_res->abm, stream->abm_level);
}
- } else if (blank) {
+ } else {
dc->hwss.set_abm_immediate_disable(pipe_ctx);
if (stream_res->tg->funcs->set_blank) {
stream_res->tg->funcs->wait_for_state(stream_res->tg, CRTC_STATE_VBLANK);
@@ -2900,7 +2946,7 @@ void dcn10_program_pipe(
pipe_ctx->stream_res.tg->funcs->program_global_sync(
pipe_ctx->stream_res.tg,
- pipe_ctx->pipe_dlg_param.vready_offset,
+ calculate_vready_offset_for_group(pipe_ctx),
pipe_ctx->pipe_dlg_param.vstartup_start,
pipe_ctx->pipe_dlg_param.vupdate_offset,
pipe_ctx->pipe_dlg_param.vupdate_width);
@@ -3185,12 +3231,16 @@ static void dcn10_config_stereo_parameters(
timing_3d_format == TIMING_3D_FORMAT_INBAND_FA ||
timing_3d_format == TIMING_3D_FORMAT_DP_HDMI_INBAND_FA ||
timing_3d_format == TIMING_3D_FORMAT_SIDEBAND_FA) {
- enum display_dongle_type dongle = \
- stream->link->ddc->dongle_type;
- if (dongle == DISPLAY_DONGLE_DP_VGA_CONVERTER ||
- dongle == DISPLAY_DONGLE_DP_DVI_CONVERTER ||
- dongle == DISPLAY_DONGLE_DP_HDMI_CONVERTER)
- flags->DISABLE_STEREO_DP_SYNC = 1;
+
+ if (stream->link && stream->link->ddc) {
+ enum display_dongle_type dongle = \
+ stream->link->ddc->dongle_type;
+
+ if (dongle == DISPLAY_DONGLE_DP_VGA_CONVERTER ||
+ dongle == DISPLAY_DONGLE_DP_DVI_CONVERTER ||
+ dongle == DISPLAY_DONGLE_DP_HDMI_CONVERTER)
+ flags->DISABLE_STEREO_DP_SYNC = 1;
+ }
}
flags->RIGHT_EYE_POLARITY =\
stream->timing.flags.RIGHT_EYE_3D_POLARITY;
@@ -3343,7 +3393,9 @@ static bool dcn10_can_pipe_disable_cursor(struct pipe_ctx *pipe_ctx)
for (test_pipe = pipe_ctx->top_pipe; test_pipe;
test_pipe = test_pipe->top_pipe) {
// Skip invisible layer and pipe-split plane on same layer
- if (!test_pipe->plane_state->visible || test_pipe->plane_state->layer_index == cur_layer)
+ if (!test_pipe->plane_state ||
+ !test_pipe->plane_state->visible ||
+ test_pipe->plane_state->layer_index == cur_layer)
continue;
r2 = test_pipe->plane_res.scl_data.recout;
@@ -3586,7 +3638,7 @@ void dcn10_set_cursor_position(struct pipe_ctx *pipe_ctx)
(int)hubp->curs_attr.width || pos_cpy.x
<= (int)hubp->curs_attr.width +
pipe_ctx->plane_state->src_rect.x) {
- pos_cpy.x = temp_x + viewport_width;
+ pos_cpy.x = 2 * viewport_width - temp_x;
}
}
} else {
diff --git a/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_hw_sequencer_debug.c b/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_hw_sequencer_debug.c
index e8b6065fffad..a0f8e31d2adc 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_hw_sequencer_debug.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_hw_sequencer_debug.c
@@ -83,7 +83,7 @@ static unsigned int dcn10_get_hubbub_state(struct dc *dc, char *pBuf, unsigned i
memset(&wm, 0, sizeof(struct dcn_hubbub_wm));
dc->res_pool->hubbub->funcs->wm_read_state(dc->res_pool->hubbub, &wm);
- chars_printed = snprintf_count(pBuf, remaining_buffer, "wm_set_index,data_urgent,pte_meta_urgent,sr_enter,sr_exit,dram_clk_chanage\n");
+ chars_printed = snprintf_count(pBuf, remaining_buffer, "wm_set_index,data_urgent,pte_meta_urgent,sr_enter,sr_exit,dram_clk_change\n");
remaining_buffer -= chars_printed;
pBuf += chars_printed;
@@ -98,7 +98,7 @@ static unsigned int dcn10_get_hubbub_state(struct dc *dc, char *pBuf, unsigned i
(s->pte_meta_urgent * frac) / ref_clk_mhz / frac, (s->pte_meta_urgent * frac) / ref_clk_mhz % frac,
(s->sr_enter * frac) / ref_clk_mhz / frac, (s->sr_enter * frac) / ref_clk_mhz % frac,
(s->sr_exit * frac) / ref_clk_mhz / frac, (s->sr_exit * frac) / ref_clk_mhz % frac,
- (s->dram_clk_chanage * frac) / ref_clk_mhz / frac, (s->dram_clk_chanage * frac) / ref_clk_mhz % frac);
+ (s->dram_clk_change * frac) / ref_clk_mhz / frac, (s->dram_clk_change * frac) / ref_clk_mhz % frac);
remaining_buffer -= chars_printed;
pBuf += chars_printed;
}
diff --git a/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_link_encoder.c b/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_link_encoder.c
index fbccb7263ad2..ee08b545aaea 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_link_encoder.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_link_encoder.c
@@ -29,7 +29,6 @@
#include "link_encoder.h"
#include "dcn10_link_encoder.h"
#include "stream_encoder.h"
-#include "i2caux_interface.h"
#include "dc_bios_types.h"
#include "gpio_service_interface.h"
@@ -1220,7 +1219,6 @@ void dcn10_link_encoder_update_mst_stream_allocation_table(
const struct link_mst_stream_allocation_table *table)
{
struct dcn10_link_encoder *enc10 = TO_DCN10_LINK_ENC(enc);
- uint32_t value0 = 0;
uint32_t value1 = 0;
uint32_t value2 = 0;
uint32_t slots = 0;
@@ -1322,7 +1320,7 @@ void dcn10_link_encoder_update_mst_stream_allocation_table(
do {
udelay(10);
- value0 = REG_READ(DP_MSE_SAT_UPDATE);
+ REG_READ(DP_MSE_SAT_UPDATE);
REG_GET(DP_MSE_SAT_UPDATE,
DP_MSE_SAT_UPDATE, &value1);
diff --git a/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_optc.c b/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_optc.c
index 33d780218790..c9e53dc49c92 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_optc.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_optc.c
@@ -27,6 +27,7 @@
#include "reg_helper.h"
#include "dcn10_optc.h"
#include "dc.h"
+#include "dc_trace.h"
#define REG(reg)\
optc1->tg_regs->reg
@@ -657,6 +658,8 @@ void optc1_lock(struct timing_generator *optc)
REG_WAIT(OTG_MASTER_UPDATE_LOCK,
UPDATE_LOCK_STATUS, 1,
1, 10);
+
+ TRACE_OPTC_LOCK_UNLOCK_STATE(optc1, optc->inst, true);
}
void optc1_unlock(struct timing_generator *optc)
@@ -665,6 +668,8 @@ void optc1_unlock(struct timing_generator *optc)
REG_SET(OTG_MASTER_UPDATE_LOCK, 0,
OTG_MASTER_UPDATE_LOCK, 0);
+
+ TRACE_OPTC_LOCK_UNLOCK_STATE(optc1, optc->inst, false);
}
void optc1_get_position(struct timing_generator *optc,
diff --git a/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_optc.h b/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_optc.h
index 88ac5f6f4c96..db766689af58 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_optc.h
+++ b/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_optc.h
@@ -161,10 +161,20 @@ struct dcn_optc_registers {
uint32_t OTG_CRC_CNTL2;
uint32_t OTG_CRC0_DATA_RG;
uint32_t OTG_CRC0_DATA_B;
+ uint32_t OTG_CRC1_DATA_B;
+ uint32_t OTG_CRC2_DATA_B;
+ uint32_t OTG_CRC3_DATA_B;
+ uint32_t OTG_CRC1_DATA_RG;
+ uint32_t OTG_CRC2_DATA_RG;
+ uint32_t OTG_CRC3_DATA_RG;
uint32_t OTG_CRC0_WINDOWA_X_CONTROL;
uint32_t OTG_CRC0_WINDOWA_Y_CONTROL;
uint32_t OTG_CRC0_WINDOWB_X_CONTROL;
uint32_t OTG_CRC0_WINDOWB_Y_CONTROL;
+ uint32_t OTG_CRC1_WINDOWA_X_CONTROL;
+ uint32_t OTG_CRC1_WINDOWA_Y_CONTROL;
+ uint32_t OTG_CRC1_WINDOWB_X_CONTROL;
+ uint32_t OTG_CRC1_WINDOWB_Y_CONTROL;
uint32_t GSL_SOURCE_SELECT;
uint32_t DWB_SOURCE_SELECT;
uint32_t OTG_DSC_START_POSITION;
@@ -464,6 +474,15 @@ struct dcn_optc_registers {
type CRC0_R_CR;\
type CRC0_G_Y;\
type CRC0_B_CB;\
+ type CRC1_R_CR;\
+ type CRC1_G_Y;\
+ type CRC1_B_CB;\
+ type CRC2_R_CR;\
+ type CRC2_G_Y;\
+ type CRC2_B_CB;\
+ type CRC3_R_CR;\
+ type CRC3_G_Y;\
+ type CRC3_B_CB;\
type OTG_CRC0_WINDOWA_X_START;\
type OTG_CRC0_WINDOWA_X_END;\
type OTG_CRC0_WINDOWA_Y_START;\
@@ -472,6 +491,15 @@ struct dcn_optc_registers {
type OTG_CRC0_WINDOWB_X_END;\
type OTG_CRC0_WINDOWB_Y_START;\
type OTG_CRC0_WINDOWB_Y_END;\
+ type OTG_CRC_WINDOW_DB_EN;\
+ type OTG_CRC1_WINDOWA_X_START;\
+ type OTG_CRC1_WINDOWA_X_END;\
+ type OTG_CRC1_WINDOWA_Y_START;\
+ type OTG_CRC1_WINDOWA_Y_END;\
+ type OTG_CRC1_WINDOWB_X_START;\
+ type OTG_CRC1_WINDOWB_X_END;\
+ type OTG_CRC1_WINDOWB_Y_START;\
+ type OTG_CRC1_WINDOWB_Y_END;\
type GSL0_READY_SOURCE_SEL;\
type GSL1_READY_SOURCE_SEL;\
type GSL2_READY_SOURCE_SEL;\
@@ -519,11 +547,13 @@ struct dcn_optc_registers {
type OTG_CRC_DATA_STREAM_COMBINE_MODE;\
type OTG_CRC_DATA_STREAM_SPLIT_MODE;\
type OTG_CRC_DATA_FORMAT;\
- type OTG_V_TOTAL_LAST_USED_BY_DRR;
+ type OTG_V_TOTAL_LAST_USED_BY_DRR;\
+ type OTG_DRR_TIMING_DBUF_UPDATE_PENDING;
#define TG_REG_FIELD_LIST_DCN3_2(type) \
type OTG_H_TIMING_DIV_MODE_MANUAL;
+
struct dcn_optc_shift {
TG_REG_FIELD_LIST(uint8_t)
TG_REG_FIELD_LIST_DCN3_2(uint8_t)
diff --git a/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_resource.c b/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_resource.c
index 56d30baf12df..21ec1ba5ed75 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_resource.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_resource.c
@@ -504,8 +504,6 @@ static const struct resource_caps rv2_res_cap = {
static const struct dc_plane_cap plane_cap = {
.type = DC_PLANE_TYPE_DCN_UNIVERSAL,
- .blends_with_above = true,
- .blends_with_below = true,
.per_pixel_alpha = true,
.pixel_format_support = {
@@ -544,8 +542,8 @@ static const struct dc_debug_options debug_defaults_drv = {
.disable_pplib_clock_request = false,
.disable_pplib_wm_range = false,
.pplib_wm_report_mode = WM_REPORT_DEFAULT,
- .pipe_split_policy = MPC_SPLIT_AVOID,
- .force_single_disp_pipe_split = false,
+ .pipe_split_policy = MPC_SPLIT_DYNAMIC,
+ .force_single_disp_pipe_split = true,
.disable_dcc = DCC_ENABLE,
.voltage_align_fclk = true,
.disable_stereo_support = true,
@@ -1295,47 +1293,6 @@ static uint32_t read_pipe_fuses(struct dc_context *ctx)
return value;
}
-/*
- * Some architectures don't support soft-float (e.g. aarch64), on those
- * this function has to be called with hardfloat enabled, make sure not
- * to inline it so whatever fp stuff is done stays inside
- */
-static noinline void dcn10_resource_construct_fp(
- struct dc *dc)
-{
- if (dc->ctx->dce_version == DCN_VERSION_1_01) {
- struct dcn_soc_bounding_box *dcn_soc = dc->dcn_soc;
- struct dcn_ip_params *dcn_ip = dc->dcn_ip;
- struct display_mode_lib *dml = &dc->dml;
-
- dml->ip.max_num_dpp = 3;
- /* TODO how to handle 23.84? */
- dcn_soc->dram_clock_change_latency = 23;
- dcn_ip->max_num_dpp = 3;
- }
- if (ASICREV_IS_RV1_F0(dc->ctx->asic_id.hw_internal_rev)) {
- dc->dcn_soc->urgent_latency = 3;
- dc->debug.disable_dmcu = true;
- dc->dcn_soc->fabric_and_dram_bandwidth_vmax0p9 = 41.60f;
- }
-
-
- dc->dcn_soc->number_of_channels = dc->ctx->asic_id.vram_width / ddr4_dram_width;
- ASSERT(dc->dcn_soc->number_of_channels < 3);
- if (dc->dcn_soc->number_of_channels == 0)/*old sbios bug*/
- dc->dcn_soc->number_of_channels = 2;
-
- if (dc->dcn_soc->number_of_channels == 1) {
- dc->dcn_soc->fabric_and_dram_bandwidth_vmax0p9 = 19.2f;
- dc->dcn_soc->fabric_and_dram_bandwidth_vnom0p8 = 17.066f;
- dc->dcn_soc->fabric_and_dram_bandwidth_vmid0p72 = 14.933f;
- dc->dcn_soc->fabric_and_dram_bandwidth_vmin0p65 = 12.8f;
- if (ASICREV_IS_RV1_F0(dc->ctx->asic_id.hw_internal_rev)) {
- dc->dcn_soc->fabric_and_dram_bandwidth_vmax0p9 = 20.80f;
- }
- }
-}
-
static bool verify_clock_values(struct dm_pp_clock_levels_with_voltage *clks)
{
int i;
@@ -1510,8 +1467,9 @@ static bool dcn10_resource_construct(
memcpy(dc->dcn_ip, &dcn10_ip_defaults, sizeof(dcn10_ip_defaults));
memcpy(dc->dcn_soc, &dcn10_soc_defaults, sizeof(dcn10_soc_defaults));
- /* Other architectures we build for build this with soft-float */
+ DC_FP_START();
dcn10_resource_construct_fp(dc);
+ DC_FP_END();
if (!dc->config.is_vmin_only_asic)
if (ASICREV_IS_RAVEN2(dc->ctx->asic_id.hw_internal_rev))
diff --git a/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_stream_encoder.c b/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_stream_encoder.c
index 484e7cdf00b8..f496e952ceec 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_stream_encoder.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn10/dcn10_stream_encoder.c
@@ -28,7 +28,7 @@
#include "dcn10_stream_encoder.h"
#include "reg_helper.h"
#include "hw_shared.h"
-#include "inc/link_dpcd.h"
+#include "link.h"
#include "dpcd_defs.h"
#include "dcn30/dcn30_afmt.h"
@@ -753,12 +753,19 @@ void enc1_stream_encoder_update_dp_info_packets(
* use other packetIndex (such as 5,6) for other info packet
*/
+ if (info_frame->adaptive_sync.valid)
+ enc1_update_generic_info_packet(
+ enc1,
+ 5, /* packetIndex */
+ &info_frame->adaptive_sync);
+
/* enable/disable transmission of packet(s).
* If enabled, packet transmission begins on the next frame
*/
REG_UPDATE(DP_SEC_CNTL, DP_SEC_GSP0_ENABLE, info_frame->vsc.valid);
REG_UPDATE(DP_SEC_CNTL, DP_SEC_GSP2_ENABLE, info_frame->spd.valid);
REG_UPDATE(DP_SEC_CNTL, DP_SEC_GSP3_ENABLE, info_frame->hdrsmd.valid);
+ REG_UPDATE(DP_SEC_CNTL, DP_SEC_GSP5_ENABLE, info_frame->adaptive_sync.valid);
/* This bit is the master enable bit.
* When enabling secondary stream engine,
@@ -926,7 +933,7 @@ void enc1_stream_encoder_dp_blank(
/* disable DP stream */
REG_UPDATE(DP_VID_STREAM_CNTL, DP_VID_STREAM_ENABLE, 0);
- dp_source_sequence_trace(link, DPCD_SOURCE_SEQ_AFTER_DISABLE_DP_VID_STREAM);
+ link->dc->link_srv->dp_trace_source_sequence(link, DPCD_SOURCE_SEQ_AFTER_DISABLE_DP_VID_STREAM);
/* the encoder stops sending the video stream
* at the start of the vertical blanking.
@@ -945,7 +952,7 @@ void enc1_stream_encoder_dp_blank(
REG_UPDATE(DP_STEER_FIFO, DP_STEER_FIFO_RESET, true);
- dp_source_sequence_trace(link, DPCD_SOURCE_SEQ_AFTER_FIFO_STEER_RESET);
+ link->dc->link_srv->dp_trace_source_sequence(link, DPCD_SOURCE_SEQ_AFTER_FIFO_STEER_RESET);
}
/* output video stream to link encoder */
@@ -1018,7 +1025,8 @@ void enc1_stream_encoder_dp_unblank(
REG_UPDATE(DP_VID_STREAM_CNTL, DP_VID_STREAM_ENABLE, true);
- dp_source_sequence_trace(link, DPCD_SOURCE_SEQ_AFTER_ENABLE_DP_VID_STREAM);
+ link->dc->link_srv->dp_trace_source_sequence(link,
+ DPCD_SOURCE_SEQ_AFTER_ENABLE_DP_VID_STREAM);
}
void enc1_stream_encoder_set_avmute(
@@ -1463,10 +1471,9 @@ void enc1_se_hdmi_audio_setup(
void enc1_se_hdmi_audio_disable(
struct stream_encoder *enc)
{
-#if defined(CONFIG_DRM_AMD_DC_DCN)
if (enc->afmt && enc->afmt->funcs->afmt_powerdown)
enc->afmt->funcs->afmt_powerdown(enc->afmt);
-#endif
+
enc1_se_enable_audio_clock(enc, false);
}
diff --git a/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_dccg.h b/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_dccg.h
index 915a20461c77..7bdc146f7cb5 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_dccg.h
+++ b/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_dccg.h
@@ -205,6 +205,11 @@
type PHYDSYMCLK_GATE_DISABLE; \
type PHYESYMCLK_GATE_DISABLE;
+#define DCCG314_REG_FIELD_LIST(type) \
+ type DSCCLK3_DTO_PHASE;\
+ type DSCCLK3_DTO_MODULO;\
+ type DSCCLK3_DTO_ENABLE;
+
#define DCCG32_REG_FIELD_LIST(type) \
type DPSTREAMCLK0_EN;\
type DPSTREAMCLK1_EN;\
@@ -230,12 +235,14 @@
type DTBCLK_P2_SRC_SEL;\
type DTBCLK_P2_EN;\
type DTBCLK_P3_SRC_SEL;\
- type DTBCLK_P3_EN;
+ type DTBCLK_P3_EN;\
+ type DENTIST_DISPCLK_CHG_DONE;
struct dccg_shift {
DCCG_REG_FIELD_LIST(uint8_t)
DCCG3_REG_FIELD_LIST(uint8_t)
DCCG31_REG_FIELD_LIST(uint8_t)
+ DCCG314_REG_FIELD_LIST(uint8_t)
DCCG32_REG_FIELD_LIST(uint8_t)
};
@@ -243,6 +250,7 @@ struct dccg_mask {
DCCG_REG_FIELD_LIST(uint32_t)
DCCG3_REG_FIELD_LIST(uint32_t)
DCCG31_REG_FIELD_LIST(uint32_t)
+ DCCG314_REG_FIELD_LIST(uint32_t)
DCCG32_REG_FIELD_LIST(uint32_t)
};
@@ -272,6 +280,7 @@ struct dccg_registers {
uint32_t DSCCLK0_DTO_PARAM;
uint32_t DSCCLK1_DTO_PARAM;
uint32_t DSCCLK2_DTO_PARAM;
+ uint32_t DSCCLK3_DTO_PARAM;
uint32_t DPSTREAMCLK_ROOT_GATE_DISABLE;
uint32_t DPSTREAMCLK_GATE_DISABLE;
uint32_t DCCG_GATE_DISABLE_CNTL;
diff --git a/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_dsc.c b/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_dsc.c
index 784a8b6f360d..5bd698cd6d20 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_dsc.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_dsc.c
@@ -28,6 +28,7 @@
#include "reg_helper.h"
#include "dcn20_dsc.h"
#include "dsc/dscc_types.h"
+#include "dsc/rc_calc.h"
static void dsc_log_pps(struct display_stream_compressor *dsc, struct drm_dsc_config *pps);
static bool dsc_prepare_config(const struct dsc_config *dsc_cfg, struct dsc_reg_values *dsc_reg_vals,
@@ -49,7 +50,7 @@ static void dsc2_enable(struct display_stream_compressor *dsc, int opp_pipe);
static void dsc2_disable(struct display_stream_compressor *dsc);
static void dsc2_disconnect(struct display_stream_compressor *dsc);
-const struct dsc_funcs dcn20_dsc_funcs = {
+static const struct dsc_funcs dcn20_dsc_funcs = {
.dsc_get_enc_caps = dsc2_get_enc_caps,
.dsc_read_state = dsc2_read_state,
.dsc_validate_stream = dsc2_validate_stream,
@@ -200,7 +201,6 @@ static void dsc2_set_config(struct display_stream_compressor *dsc, const struct
bool is_config_ok;
struct dcn20_dsc *dsc20 = TO_DCN20_DSC(dsc);
- DC_LOG_DSC(" ");
DC_LOG_DSC("Setting DSC Config at DSC inst %d", dsc->inst);
dsc_config_log(dsc, dsc_cfg);
is_config_ok = dsc_prepare_config(dsc_cfg, &dsc20->reg_vals, dsc_optc_cfg);
@@ -345,10 +345,38 @@ static void dsc_log_pps(struct display_stream_compressor *dsc, struct drm_dsc_co
}
}
+static void dsc_override_rc_params(struct rc_params *rc, const struct dc_dsc_rc_params_override *override)
+{
+ uint8_t i;
+
+ rc->rc_model_size = override->rc_model_size;
+ for (i = 0; i < DC_DSC_RC_BUF_THRESH_SIZE; i++)
+ rc->rc_buf_thresh[i] = override->rc_buf_thresh[i];
+ for (i = 0; i < DC_DSC_QP_SET_SIZE; i++) {
+ rc->qp_min[i] = override->rc_minqp[i];
+ rc->qp_max[i] = override->rc_maxqp[i];
+ rc->ofs[i] = override->rc_offset[i];
+ }
+
+ rc->rc_tgt_offset_hi = override->rc_tgt_offset_hi;
+ rc->rc_tgt_offset_lo = override->rc_tgt_offset_lo;
+ rc->rc_edge_factor = override->rc_edge_factor;
+ rc->rc_quant_incr_limit0 = override->rc_quant_incr_limit0;
+ rc->rc_quant_incr_limit1 = override->rc_quant_incr_limit1;
+
+ rc->initial_fullness_offset = override->initial_fullness_offset;
+ rc->initial_xmit_delay = override->initial_delay;
+
+ rc->flatness_min_qp = override->flatness_min_qp;
+ rc->flatness_max_qp = override->flatness_max_qp;
+ rc->flatness_det_thresh = override->flatness_det_thresh;
+}
+
static bool dsc_prepare_config(const struct dsc_config *dsc_cfg, struct dsc_reg_values *dsc_reg_vals,
struct dsc_optc_config *dsc_optc_cfg)
{
struct dsc_parameters dsc_params;
+ struct rc_params rc;
/* Validate input parameters */
ASSERT(dsc_cfg->dc_dsc_cfg.num_slices_h);
@@ -413,7 +441,12 @@ static bool dsc_prepare_config(const struct dsc_config *dsc_cfg, struct dsc_reg_
dsc_reg_vals->pps.native_420 = (dsc_reg_vals->pixel_format == DSC_PIXFMT_NATIVE_YCBCR420);
dsc_reg_vals->pps.simple_422 = (dsc_reg_vals->pixel_format == DSC_PIXFMT_SIMPLE_YCBCR422);
- if (dscc_compute_dsc_parameters(&dsc_reg_vals->pps, &dsc_params)) {
+ calc_rc_params(&rc, &dsc_reg_vals->pps);
+
+ if (dsc_cfg->dc_dsc_cfg.rc_params_ovrd)
+ dsc_override_rc_params(&rc, dsc_cfg->dc_dsc_cfg.rc_params_ovrd);
+
+ if (dscc_compute_dsc_parameters(&dsc_reg_vals->pps, &rc, &dsc_params)) {
dm_output_to_console("%s: DSC config failed\n", __func__);
return false;
}
diff --git a/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_dwb.c b/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_dwb.c
index f1490e97b6ce..f8667be57046 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_dwb.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_dwb.c
@@ -301,7 +301,7 @@ void dwb2_set_scaler(struct dwbc *dwbc, struct dc_dwb_params *params)
}
-const struct dwbc_funcs dcn20_dwbc_funcs = {
+static const struct dwbc_funcs dcn20_dwbc_funcs = {
.get_caps = dwb2_get_caps,
.enable = dwb2_enable,
.disable = dwb2_disable,
diff --git a/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_dwb.h b/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_dwb.h
index a85ed228dfc2..a9dd9ae23ec9 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_dwb.h
+++ b/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_dwb.h
@@ -27,204 +27,177 @@
#define TO_DCN20_DWBC(dwbc_base) \
container_of(dwbc_base, struct dcn20_dwbc, base)
-/* DCN */
-#define BASE_INNER(seg) \
- DCE_BASE__INST0_SEG ## seg
-
-#define BASE(seg) \
- BASE_INNER(seg)
-
-#define SR(reg_name)\
- .reg_name = BASE(mm ## reg_name ## _BASE_IDX) + \
- mm ## reg_name
-
-#define SRI(reg_name, block, id)\
- .reg_name = BASE(mm ## block ## id ## _ ## reg_name ## _BASE_IDX) + \
- mm ## block ## id ## _ ## reg_name
-
-#define SRI2(reg_name, block, id)\
- .reg_name = BASE(mm ## reg_name ## _BASE_IDX) + \
- mm ## reg_name
-
-#define SRII(reg_name, block, id)\
- .reg_name[id] = BASE(mm ## block ## id ## _ ## reg_name ## _BASE_IDX) + \
- mm ## block ## id ## _ ## reg_name
-
-#define SF(reg_name, field_name, post_fix)\
- .field_name = reg_name ## __ ## field_name ## post_fix
-
-
#define DWBC_COMMON_REG_LIST_DCN2_0(inst) \
- SRI2(WB_ENABLE, CNV, inst),\
- SRI2(WB_EC_CONFIG, CNV, inst),\
- SRI2(CNV_MODE, CNV, inst),\
- SRI2(CNV_WINDOW_START, CNV, inst),\
- SRI2(CNV_WINDOW_SIZE, CNV, inst),\
- SRI2(CNV_UPDATE, CNV, inst),\
- SRI2(CNV_SOURCE_SIZE, CNV, inst),\
- SRI2(CNV_TEST_CNTL, CNV, inst),\
- SRI2(CNV_TEST_CRC_RED, CNV, inst),\
- SRI2(CNV_TEST_CRC_GREEN, CNV, inst),\
- SRI2(CNV_TEST_CRC_BLUE, CNV, inst),\
- SRI2(WBSCL_COEF_RAM_SELECT, WBSCL, inst),\
- SRI2(WBSCL_COEF_RAM_TAP_DATA, WBSCL, inst),\
- SRI2(WBSCL_MODE, WBSCL, inst),\
- SRI2(WBSCL_TAP_CONTROL, WBSCL, inst),\
- SRI2(WBSCL_DEST_SIZE, WBSCL, inst),\
- SRI2(WBSCL_HORZ_FILTER_SCALE_RATIO, WBSCL, inst),\
- SRI2(WBSCL_HORZ_FILTER_INIT_Y_RGB, WBSCL, inst),\
- SRI2(WBSCL_HORZ_FILTER_INIT_CBCR, WBSCL, inst),\
- SRI2(WBSCL_VERT_FILTER_SCALE_RATIO, WBSCL, inst),\
- SRI2(WBSCL_VERT_FILTER_INIT_Y_RGB, WBSCL, inst),\
- SRI2(WBSCL_VERT_FILTER_INIT_CBCR, WBSCL, inst),\
- SRI2(WBSCL_ROUND_OFFSET, WBSCL, inst),\
- SRI2(WBSCL_OVERFLOW_STATUS, WBSCL, inst),\
- SRI2(WBSCL_COEF_RAM_CONFLICT_STATUS, WBSCL, inst),\
- SRI2(WBSCL_TEST_CNTL, WBSCL, inst),\
- SRI2(WBSCL_TEST_CRC_RED, WBSCL, inst),\
- SRI2(WBSCL_TEST_CRC_GREEN, WBSCL, inst),\
- SRI2(WBSCL_TEST_CRC_BLUE, WBSCL, inst),\
- SRI2(WBSCL_BACKPRESSURE_CNT_EN, WBSCL, inst),\
- SRI2(WB_MCIF_BACKPRESSURE_CNT, WBSCL, inst),\
- SRI2(WBSCL_CLAMP_Y_RGB, WBSCL, inst),\
- SRI2(WBSCL_CLAMP_CBCR, WBSCL, inst),\
- SRI2(WBSCL_OUTSIDE_PIX_STRATEGY, WBSCL, inst),\
- SRI2(WBSCL_OUTSIDE_PIX_STRATEGY_CBCR, WBSCL, inst),\
- SRI2(WBSCL_DEBUG, WBSCL, inst),\
- SRI2(WBSCL_TEST_DEBUG_INDEX, WBSCL, inst),\
- SRI2(WBSCL_TEST_DEBUG_DATA, WBSCL, inst),\
- SRI2(WB_DEBUG_CTRL, CNV, inst),\
- SRI2(WB_DBG_MODE, CNV, inst),\
- SRI2(WB_HW_DEBUG, CNV, inst),\
- SRI2(CNV_TEST_DEBUG_INDEX, CNV, inst),\
- SRI2(CNV_TEST_DEBUG_DATA, CNV, inst),\
- SRI2(WB_SOFT_RESET, CNV, inst),\
- SRI2(WB_WARM_UP_MODE_CTL1, CNV, inst),\
- SRI2(WB_WARM_UP_MODE_CTL2, CNV, inst)
+ SRI2_DWB(WB_ENABLE, CNV, inst),\
+ SRI2_DWB(WB_EC_CONFIG, CNV, inst),\
+ SRI2_DWB(CNV_MODE, CNV, inst),\
+ SRI2_DWB(CNV_WINDOW_START, CNV, inst),\
+ SRI2_DWB(CNV_WINDOW_SIZE, CNV, inst),\
+ SRI2_DWB(CNV_UPDATE, CNV, inst),\
+ SRI2_DWB(CNV_SOURCE_SIZE, CNV, inst),\
+ SRI2_DWB(CNV_TEST_CNTL, CNV, inst),\
+ SRI2_DWB(CNV_TEST_CRC_RED, CNV, inst),\
+ SRI2_DWB(CNV_TEST_CRC_GREEN, CNV, inst),\
+ SRI2_DWB(CNV_TEST_CRC_BLUE, CNV, inst),\
+ SRI2_DWB(WBSCL_COEF_RAM_SELECT, WBSCL, inst),\
+ SRI2_DWB(WBSCL_COEF_RAM_TAP_DATA, WBSCL, inst),\
+ SRI2_DWB(WBSCL_MODE, WBSCL, inst),\
+ SRI2_DWB(WBSCL_TAP_CONTROL, WBSCL, inst),\
+ SRI2_DWB(WBSCL_DEST_SIZE, WBSCL, inst),\
+ SRI2_DWB(WBSCL_HORZ_FILTER_SCALE_RATIO, WBSCL, inst),\
+ SRI2_DWB(WBSCL_HORZ_FILTER_INIT_Y_RGB, WBSCL, inst),\
+ SRI2_DWB(WBSCL_HORZ_FILTER_INIT_CBCR, WBSCL, inst),\
+ SRI2_DWB(WBSCL_VERT_FILTER_SCALE_RATIO, WBSCL, inst),\
+ SRI2_DWB(WBSCL_VERT_FILTER_INIT_Y_RGB, WBSCL, inst),\
+ SRI2_DWB(WBSCL_VERT_FILTER_INIT_CBCR, WBSCL, inst),\
+ SRI2_DWB(WBSCL_ROUND_OFFSET, WBSCL, inst),\
+ SRI2_DWB(WBSCL_OVERFLOW_STATUS, WBSCL, inst),\
+ SRI2_DWB(WBSCL_COEF_RAM_CONFLICT_STATUS, WBSCL, inst),\
+ SRI2_DWB(WBSCL_TEST_CNTL, WBSCL, inst),\
+ SRI2_DWB(WBSCL_TEST_CRC_RED, WBSCL, inst),\
+ SRI2_DWB(WBSCL_TEST_CRC_GREEN, WBSCL, inst),\
+ SRI2_DWB(WBSCL_TEST_CRC_BLUE, WBSCL, inst),\
+ SRI2_DWB(WBSCL_BACKPRESSURE_CNT_EN, WBSCL, inst),\
+ SRI2_DWB(WB_MCIF_BACKPRESSURE_CNT, WBSCL, inst),\
+ SRI2_DWB(WBSCL_CLAMP_Y_RGB, WBSCL, inst),\
+ SRI2_DWB(WBSCL_CLAMP_CBCR, WBSCL, inst),\
+ SRI2_DWB(WBSCL_OUTSIDE_PIX_STRATEGY, WBSCL, inst),\
+ SRI2_DWB(WBSCL_OUTSIDE_PIX_STRATEGY_CBCR, WBSCL, inst),\
+ SRI2_DWB(WBSCL_DEBUG, WBSCL, inst),\
+ SRI2_DWB(WBSCL_TEST_DEBUG_INDEX, WBSCL, inst),\
+ SRI2_DWB(WBSCL_TEST_DEBUG_DATA, WBSCL, inst),\
+ SRI2_DWB(WB_DEBUG_CTRL, CNV, inst),\
+ SRI2_DWB(WB_DBG_MODE, CNV, inst),\
+ SRI2_DWB(WB_HW_DEBUG, CNV, inst),\
+ SRI2_DWB(CNV_TEST_DEBUG_INDEX, CNV, inst),\
+ SRI2_DWB(CNV_TEST_DEBUG_DATA, CNV, inst),\
+ SRI2_DWB(WB_SOFT_RESET, CNV, inst),\
+ SRI2_DWB(WB_WARM_UP_MODE_CTL1, CNV, inst),\
+ SRI2_DWB(WB_WARM_UP_MODE_CTL2, CNV, inst)
#define DWBC_COMMON_MASK_SH_LIST_DCN2_0(mask_sh) \
- SF(WB_ENABLE, WB_ENABLE, mask_sh),\
- SF(WB_EC_CONFIG, DISPCLK_R_WB_GATE_DIS, mask_sh),\
- SF(WB_EC_CONFIG, DISPCLK_G_WB_GATE_DIS, mask_sh),\
- SF(WB_EC_CONFIG, DISPCLK_G_WBSCL_GATE_DIS, mask_sh),\
- SF(WB_EC_CONFIG, WB_TEST_CLK_SEL, mask_sh),\
- SF(WB_EC_CONFIG, WB_LB_LS_DIS, mask_sh),\
- SF(WB_EC_CONFIG, WB_LB_SD_DIS, mask_sh),\
- SF(WB_EC_CONFIG, WB_LUT_LS_DIS, mask_sh),\
- SF(WB_EC_CONFIG, WBSCL_LB_MEM_PWR_MODE_SEL, mask_sh),\
- SF(WB_EC_CONFIG, WBSCL_LB_MEM_PWR_DIS, mask_sh),\
- SF(WB_EC_CONFIG, WBSCL_LB_MEM_PWR_FORCE, mask_sh),\
- SF(WB_EC_CONFIG, WBSCL_LB_MEM_PWR_STATE, mask_sh),\
- SF(WB_EC_CONFIG, WB_RAM_PW_SAVE_MODE, mask_sh),\
- SF(WB_EC_CONFIG, WBSCL_LUT_MEM_PWR_STATE, mask_sh),\
- SF(CNV_MODE, CNV_OUT_BPC, mask_sh),\
- SF(CNV_MODE, CNV_FRAME_CAPTURE_RATE, mask_sh),\
- SF(CNV_MODE, CNV_WINDOW_CROP_EN, mask_sh),\
- SF(CNV_MODE, CNV_STEREO_TYPE, mask_sh),\
- SF(CNV_MODE, CNV_INTERLACED_MODE, mask_sh),\
- SF(CNV_MODE, CNV_EYE_SELECTION, mask_sh),\
- SF(CNV_MODE, CNV_STEREO_POLARITY, mask_sh),\
- SF(CNV_MODE, CNV_INTERLACED_FIELD_ORDER, mask_sh),\
- SF(CNV_MODE, CNV_STEREO_SPLIT, mask_sh),\
- SF(CNV_MODE, CNV_NEW_CONTENT, mask_sh),\
- SF(CNV_MODE, CNV_FRAME_CAPTURE_EN_CURRENT, mask_sh),\
- SF(CNV_MODE, CNV_FRAME_CAPTURE_EN, mask_sh),\
- SF(CNV_WINDOW_START, CNV_WINDOW_START_X, mask_sh),\
- SF(CNV_WINDOW_START, CNV_WINDOW_START_Y, mask_sh),\
- SF(CNV_WINDOW_SIZE, CNV_WINDOW_WIDTH, mask_sh),\
- SF(CNV_WINDOW_SIZE, CNV_WINDOW_HEIGHT, mask_sh),\
- SF(CNV_UPDATE, CNV_UPDATE_PENDING, mask_sh),\
- SF(CNV_UPDATE, CNV_UPDATE_TAKEN, mask_sh),\
- SF(CNV_UPDATE, CNV_UPDATE_LOCK, mask_sh),\
- SF(CNV_SOURCE_SIZE, CNV_SOURCE_WIDTH, mask_sh),\
- SF(CNV_SOURCE_SIZE, CNV_SOURCE_HEIGHT, mask_sh),\
- SF(CNV_TEST_CNTL, CNV_TEST_CRC_EN, mask_sh),\
- SF(CNV_TEST_CNTL, CNV_TEST_CRC_CONT_EN, mask_sh),\
- SF(CNV_TEST_CRC_RED, CNV_TEST_CRC_RED_MASK, mask_sh),\
- SF(CNV_TEST_CRC_RED, CNV_TEST_CRC_SIG_RED, mask_sh),\
- SF(CNV_TEST_CRC_GREEN, CNV_TEST_CRC_GREEN_MASK, mask_sh),\
- SF(CNV_TEST_CRC_GREEN, CNV_TEST_CRC_SIG_GREEN, mask_sh),\
- SF(CNV_TEST_CRC_BLUE, CNV_TEST_CRC_BLUE_MASK, mask_sh),\
- SF(CNV_TEST_CRC_BLUE, CNV_TEST_CRC_SIG_BLUE, mask_sh),\
- SF(WB_DEBUG_CTRL, WB_DEBUG_EN, mask_sh),\
- SF(WB_DEBUG_CTRL, WB_DEBUG_SEL, mask_sh),\
- SF(WB_DBG_MODE, WB_DBG_MODE_EN, mask_sh),\
- SF(WB_DBG_MODE, WB_DBG_DIN_FMT, mask_sh),\
- SF(WB_DBG_MODE, WB_DBG_36MODE, mask_sh),\
- SF(WB_DBG_MODE, WB_DBG_CMAP, mask_sh),\
- SF(WB_DBG_MODE, WB_DBG_PXLRATE_ERROR, mask_sh),\
- SF(WB_DBG_MODE, WB_DBG_SOURCE_WIDTH, mask_sh),\
- SF(WB_HW_DEBUG, WB_HW_DEBUG, mask_sh),\
- SF(WB_SOFT_RESET, WB_SOFT_RESET, mask_sh),\
- SF(CNV_TEST_DEBUG_INDEX, CNV_TEST_DEBUG_INDEX, mask_sh),\
- SF(CNV_TEST_DEBUG_INDEX, CNV_TEST_DEBUG_WRITE_EN, mask_sh),\
- SF(CNV_TEST_DEBUG_DATA, CNV_TEST_DEBUG_DATA, mask_sh),\
- SF(WBSCL_COEF_RAM_SELECT, WBSCL_COEF_RAM_TAP_PAIR_IDX, mask_sh),\
- SF(WBSCL_COEF_RAM_SELECT, WBSCL_COEF_RAM_PHASE, mask_sh),\
- SF(WBSCL_COEF_RAM_SELECT, WBSCL_COEF_RAM_FILTER_TYPE, mask_sh),\
- SF(WBSCL_COEF_RAM_TAP_DATA, WBSCL_COEF_RAM_EVEN_TAP_COEF, mask_sh),\
- SF(WBSCL_COEF_RAM_TAP_DATA, WBSCL_COEF_RAM_EVEN_TAP_COEF_EN, mask_sh),\
- SF(WBSCL_COEF_RAM_TAP_DATA, WBSCL_COEF_RAM_ODD_TAP_COEF, mask_sh),\
- SF(WBSCL_COEF_RAM_TAP_DATA, WBSCL_COEF_RAM_ODD_TAP_COEF_EN, mask_sh),\
- SF(WBSCL_MODE, WBSCL_MODE, mask_sh),\
- SF(WBSCL_MODE, WBSCL_OUT_BIT_DEPTH, mask_sh),\
- SF(WBSCL_TAP_CONTROL, WBSCL_V_NUM_OF_TAPS_Y_RGB, mask_sh),\
- SF(WBSCL_TAP_CONTROL, WBSCL_V_NUM_OF_TAPS_CBCR, mask_sh),\
- SF(WBSCL_TAP_CONTROL, WBSCL_H_NUM_OF_TAPS_Y_RGB, mask_sh),\
- SF(WBSCL_TAP_CONTROL, WBSCL_H_NUM_OF_TAPS_CBCR, mask_sh),\
- SF(WBSCL_DEST_SIZE, WBSCL_DEST_HEIGHT, mask_sh),\
- SF(WBSCL_DEST_SIZE, WBSCL_DEST_WIDTH, mask_sh),\
- SF(WBSCL_HORZ_FILTER_SCALE_RATIO, WBSCL_H_SCALE_RATIO, mask_sh),\
- SF(WBSCL_HORZ_FILTER_INIT_Y_RGB, WBSCL_H_INIT_FRAC_Y_RGB, mask_sh),\
- SF(WBSCL_HORZ_FILTER_INIT_Y_RGB, WBSCL_H_INIT_INT_Y_RGB, mask_sh),\
- SF(WBSCL_HORZ_FILTER_INIT_CBCR, WBSCL_H_INIT_FRAC_CBCR, mask_sh),\
- SF(WBSCL_HORZ_FILTER_INIT_CBCR, WBSCL_H_INIT_INT_CBCR, mask_sh),\
- SF(WBSCL_VERT_FILTER_SCALE_RATIO, WBSCL_V_SCALE_RATIO, mask_sh),\
- SF(WBSCL_VERT_FILTER_INIT_Y_RGB, WBSCL_V_INIT_FRAC_Y_RGB, mask_sh),\
- SF(WBSCL_VERT_FILTER_INIT_Y_RGB, WBSCL_V_INIT_INT_Y_RGB, mask_sh),\
- SF(WBSCL_VERT_FILTER_INIT_CBCR, WBSCL_V_INIT_FRAC_CBCR, mask_sh),\
- SF(WBSCL_VERT_FILTER_INIT_CBCR, WBSCL_V_INIT_INT_CBCR, mask_sh),\
- SF(WBSCL_ROUND_OFFSET, WBSCL_ROUND_OFFSET_Y_RGB, mask_sh),\
- SF(WBSCL_ROUND_OFFSET, WBSCL_ROUND_OFFSET_CBCR, mask_sh),\
- SF(WBSCL_OVERFLOW_STATUS, WBSCL_DATA_OVERFLOW_FLAG, mask_sh),\
- SF(WBSCL_OVERFLOW_STATUS, WBSCL_DATA_OVERFLOW_ACK, mask_sh),\
- SF(WBSCL_OVERFLOW_STATUS, WBSCL_DATA_OVERFLOW_MASK, mask_sh),\
- SF(WBSCL_OVERFLOW_STATUS, WBSCL_DATA_OVERFLOW_INT_STATUS, mask_sh),\
- SF(WBSCL_OVERFLOW_STATUS, WBSCL_DATA_OVERFLOW_INT_TYPE, mask_sh),\
- SF(WBSCL_COEF_RAM_CONFLICT_STATUS, WBSCL_HOST_CONFLICT_FLAG, mask_sh),\
- SF(WBSCL_COEF_RAM_CONFLICT_STATUS, WBSCL_HOST_CONFLICT_ACK, mask_sh),\
- SF(WBSCL_COEF_RAM_CONFLICT_STATUS, WBSCL_HOST_CONFLICT_MASK, mask_sh),\
- SF(WBSCL_COEF_RAM_CONFLICT_STATUS, WBSCL_HOST_CONFLICT_INT_STATUS, mask_sh),\
- SF(WBSCL_COEF_RAM_CONFLICT_STATUS, WBSCL_HOST_CONFLICT_INT_TYPE, mask_sh),\
- SF(WBSCL_TEST_CNTL, WBSCL_TEST_CRC_EN, mask_sh),\
- SF(WBSCL_TEST_CNTL, WBSCL_TEST_CRC_CONT_EN, mask_sh),\
- SF(WBSCL_TEST_CRC_RED, WBSCL_TEST_CRC_RED_MASK, mask_sh),\
- SF(WBSCL_TEST_CRC_RED, WBSCL_TEST_CRC_SIG_RED, mask_sh),\
- SF(WBSCL_TEST_CRC_GREEN, WBSCL_TEST_CRC_GREEN_MASK, mask_sh),\
- SF(WBSCL_TEST_CRC_GREEN, WBSCL_TEST_CRC_SIG_GREEN, mask_sh),\
- SF(WBSCL_TEST_CRC_BLUE, WBSCL_TEST_CRC_BLUE_MASK, mask_sh),\
- SF(WBSCL_TEST_CRC_BLUE, WBSCL_TEST_CRC_SIG_BLUE, mask_sh),\
- SF(WBSCL_BACKPRESSURE_CNT_EN, WBSCL_BACKPRESSURE_CNT_EN, mask_sh),\
- SF(WB_MCIF_BACKPRESSURE_CNT, WB_MCIF_Y_MAX_BACKPRESSURE, mask_sh),\
- SF(WB_MCIF_BACKPRESSURE_CNT, WB_MCIF_C_MAX_BACKPRESSURE, mask_sh),\
- SF(WBSCL_CLAMP_Y_RGB, WBSCL_CLAMP_UPPER_Y_RGB, mask_sh),\
- SF(WBSCL_CLAMP_Y_RGB, WBSCL_CLAMP_LOWER_Y_RGB, mask_sh),\
- SF(WBSCL_CLAMP_CBCR, WBSCL_CLAMP_UPPER_CBCR, mask_sh),\
- SF(WBSCL_CLAMP_CBCR, WBSCL_CLAMP_LOWER_CBCR, mask_sh),\
- SF(WBSCL_OUTSIDE_PIX_STRATEGY, WBSCL_OUTSIDE_PIX_STRATEGY, mask_sh),\
- SF(WBSCL_OUTSIDE_PIX_STRATEGY, WBSCL_BLACK_COLOR_G_Y, mask_sh),\
- SF(WBSCL_OUTSIDE_PIX_STRATEGY_CBCR, WBSCL_BLACK_COLOR_B_CB, mask_sh),\
- SF(WBSCL_OUTSIDE_PIX_STRATEGY_CBCR, WBSCL_BLACK_COLOR_R_CR, mask_sh),\
- SF(WBSCL_DEBUG, WBSCL_DEBUG, mask_sh),\
- SF(WBSCL_TEST_DEBUG_INDEX, WBSCL_TEST_DEBUG_INDEX, mask_sh),\
- SF(WBSCL_TEST_DEBUG_INDEX, WBSCL_TEST_DEBUG_WRITE_EN, mask_sh),\
- SF(WBSCL_TEST_DEBUG_DATA, WBSCL_TEST_DEBUG_DATA, mask_sh),\
- SF(WB_WARM_UP_MODE_CTL1, WIDTH_WARMUP, mask_sh),\
- SF(WB_WARM_UP_MODE_CTL1, HEIGHT_WARMUP, mask_sh),\
- SF(WB_WARM_UP_MODE_CTL1, GMC_WARM_UP_ENABLE, mask_sh),\
- SF(WB_WARM_UP_MODE_CTL2, DATA_VALUE_WARMUP, mask_sh),\
- SF(WB_WARM_UP_MODE_CTL2, MODE_WARMUP, mask_sh),\
- SF(WB_WARM_UP_MODE_CTL2, DATA_DEPTH_WARMUP, mask_sh)
+ SF_DWB(WB_ENABLE, WB_ENABLE, mask_sh),\
+ SF_DWB(WB_EC_CONFIG, DISPCLK_R_WB_GATE_DIS, mask_sh),\
+ SF_DWB(WB_EC_CONFIG, DISPCLK_G_WB_GATE_DIS, mask_sh),\
+ SF_DWB(WB_EC_CONFIG, DISPCLK_G_WBSCL_GATE_DIS, mask_sh),\
+ SF_DWB(WB_EC_CONFIG, WB_TEST_CLK_SEL, mask_sh),\
+ SF_DWB(WB_EC_CONFIG, WB_LB_LS_DIS, mask_sh),\
+ SF_DWB(WB_EC_CONFIG, WB_LB_SD_DIS, mask_sh),\
+ SF_DWB(WB_EC_CONFIG, WB_LUT_LS_DIS, mask_sh),\
+ SF_DWB(WB_EC_CONFIG, WBSCL_LB_MEM_PWR_MODE_SEL, mask_sh),\
+ SF_DWB(WB_EC_CONFIG, WBSCL_LB_MEM_PWR_DIS, mask_sh),\
+ SF_DWB(WB_EC_CONFIG, WBSCL_LB_MEM_PWR_FORCE, mask_sh),\
+ SF_DWB(WB_EC_CONFIG, WBSCL_LB_MEM_PWR_STATE, mask_sh),\
+ SF_DWB(WB_EC_CONFIG, WB_RAM_PW_SAVE_MODE, mask_sh),\
+ SF_DWB(WB_EC_CONFIG, WBSCL_LUT_MEM_PWR_STATE, mask_sh),\
+ SF_DWB(CNV_MODE, CNV_OUT_BPC, mask_sh),\
+ SF_DWB(CNV_MODE, CNV_FRAME_CAPTURE_RATE, mask_sh),\
+ SF_DWB(CNV_MODE, CNV_WINDOW_CROP_EN, mask_sh),\
+ SF_DWB(CNV_MODE, CNV_STEREO_TYPE, mask_sh),\
+ SF_DWB(CNV_MODE, CNV_INTERLACED_MODE, mask_sh),\
+ SF_DWB(CNV_MODE, CNV_EYE_SELECTION, mask_sh),\
+ SF_DWB(CNV_MODE, CNV_STEREO_POLARITY, mask_sh),\
+ SF_DWB(CNV_MODE, CNV_INTERLACED_FIELD_ORDER, mask_sh),\
+ SF_DWB(CNV_MODE, CNV_STEREO_SPLIT, mask_sh),\
+ SF_DWB(CNV_MODE, CNV_NEW_CONTENT, mask_sh),\
+ SF_DWB(CNV_MODE, CNV_FRAME_CAPTURE_EN_CURRENT, mask_sh),\
+ SF_DWB(CNV_MODE, CNV_FRAME_CAPTURE_EN, mask_sh),\
+ SF_DWB(CNV_WINDOW_START, CNV_WINDOW_START_X, mask_sh),\
+ SF_DWB(CNV_WINDOW_START, CNV_WINDOW_START_Y, mask_sh),\
+ SF_DWB(CNV_WINDOW_SIZE, CNV_WINDOW_WIDTH, mask_sh),\
+ SF_DWB(CNV_WINDOW_SIZE, CNV_WINDOW_HEIGHT, mask_sh),\
+ SF_DWB(CNV_UPDATE, CNV_UPDATE_PENDING, mask_sh),\
+ SF_DWB(CNV_UPDATE, CNV_UPDATE_TAKEN, mask_sh),\
+ SF_DWB(CNV_UPDATE, CNV_UPDATE_LOCK, mask_sh),\
+ SF_DWB(CNV_SOURCE_SIZE, CNV_SOURCE_WIDTH, mask_sh),\
+ SF_DWB(CNV_SOURCE_SIZE, CNV_SOURCE_HEIGHT, mask_sh),\
+ SF_DWB(CNV_TEST_CNTL, CNV_TEST_CRC_EN, mask_sh),\
+ SF_DWB(CNV_TEST_CNTL, CNV_TEST_CRC_CONT_EN, mask_sh),\
+ SF_DWB(CNV_TEST_CRC_RED, CNV_TEST_CRC_RED_MASK, mask_sh),\
+ SF_DWB(CNV_TEST_CRC_RED, CNV_TEST_CRC_SIG_RED, mask_sh),\
+ SF_DWB(CNV_TEST_CRC_GREEN, CNV_TEST_CRC_GREEN_MASK, mask_sh),\
+ SF_DWB(CNV_TEST_CRC_GREEN, CNV_TEST_CRC_SIG_GREEN, mask_sh),\
+ SF_DWB(CNV_TEST_CRC_BLUE, CNV_TEST_CRC_BLUE_MASK, mask_sh),\
+ SF_DWB(CNV_TEST_CRC_BLUE, CNV_TEST_CRC_SIG_BLUE, mask_sh),\
+ SF_DWB(WB_DEBUG_CTRL, WB_DEBUG_EN, mask_sh),\
+ SF_DWB(WB_DEBUG_CTRL, WB_DEBUG_SEL, mask_sh),\
+ SF_DWB(WB_DBG_MODE, WB_DBG_MODE_EN, mask_sh),\
+ SF_DWB(WB_DBG_MODE, WB_DBG_DIN_FMT, mask_sh),\
+ SF_DWB(WB_DBG_MODE, WB_DBG_36MODE, mask_sh),\
+ SF_DWB(WB_DBG_MODE, WB_DBG_CMAP, mask_sh),\
+ SF_DWB(WB_DBG_MODE, WB_DBG_PXLRATE_ERROR, mask_sh),\
+ SF_DWB(WB_DBG_MODE, WB_DBG_SOURCE_WIDTH, mask_sh),\
+ SF_DWB(WB_HW_DEBUG, WB_HW_DEBUG, mask_sh),\
+ SF_DWB(WB_SOFT_RESET, WB_SOFT_RESET, mask_sh),\
+ SF_DWB(CNV_TEST_DEBUG_INDEX, CNV_TEST_DEBUG_INDEX, mask_sh),\
+ SF_DWB(CNV_TEST_DEBUG_INDEX, CNV_TEST_DEBUG_WRITE_EN, mask_sh),\
+ SF_DWB(CNV_TEST_DEBUG_DATA, CNV_TEST_DEBUG_DATA, mask_sh),\
+ SF_DWB(WBSCL_COEF_RAM_SELECT, WBSCL_COEF_RAM_TAP_PAIR_IDX, mask_sh),\
+ SF_DWB(WBSCL_COEF_RAM_SELECT, WBSCL_COEF_RAM_PHASE, mask_sh),\
+ SF_DWB(WBSCL_COEF_RAM_SELECT, WBSCL_COEF_RAM_FILTER_TYPE, mask_sh),\
+ SF_DWB(WBSCL_COEF_RAM_TAP_DATA, WBSCL_COEF_RAM_EVEN_TAP_COEF, mask_sh),\
+ SF_DWB(WBSCL_COEF_RAM_TAP_DATA, WBSCL_COEF_RAM_EVEN_TAP_COEF_EN, mask_sh),\
+ SF_DWB(WBSCL_COEF_RAM_TAP_DATA, WBSCL_COEF_RAM_ODD_TAP_COEF, mask_sh),\
+ SF_DWB(WBSCL_COEF_RAM_TAP_DATA, WBSCL_COEF_RAM_ODD_TAP_COEF_EN, mask_sh),\
+ SF_DWB(WBSCL_MODE, WBSCL_MODE, mask_sh),\
+ SF_DWB(WBSCL_MODE, WBSCL_OUT_BIT_DEPTH, mask_sh),\
+ SF_DWB(WBSCL_TAP_CONTROL, WBSCL_V_NUM_OF_TAPS_Y_RGB, mask_sh),\
+ SF_DWB(WBSCL_TAP_CONTROL, WBSCL_V_NUM_OF_TAPS_CBCR, mask_sh),\
+ SF_DWB(WBSCL_TAP_CONTROL, WBSCL_H_NUM_OF_TAPS_Y_RGB, mask_sh),\
+ SF_DWB(WBSCL_TAP_CONTROL, WBSCL_H_NUM_OF_TAPS_CBCR, mask_sh),\
+ SF_DWB(WBSCL_DEST_SIZE, WBSCL_DEST_HEIGHT, mask_sh),\
+ SF_DWB(WBSCL_DEST_SIZE, WBSCL_DEST_WIDTH, mask_sh),\
+ SF_DWB(WBSCL_HORZ_FILTER_SCALE_RATIO, WBSCL_H_SCALE_RATIO, mask_sh),\
+ SF_DWB(WBSCL_HORZ_FILTER_INIT_Y_RGB, WBSCL_H_INIT_FRAC_Y_RGB, mask_sh),\
+ SF_DWB(WBSCL_HORZ_FILTER_INIT_Y_RGB, WBSCL_H_INIT_INT_Y_RGB, mask_sh),\
+ SF_DWB(WBSCL_HORZ_FILTER_INIT_CBCR, WBSCL_H_INIT_FRAC_CBCR, mask_sh),\
+ SF_DWB(WBSCL_HORZ_FILTER_INIT_CBCR, WBSCL_H_INIT_INT_CBCR, mask_sh),\
+ SF_DWB(WBSCL_VERT_FILTER_SCALE_RATIO, WBSCL_V_SCALE_RATIO, mask_sh),\
+ SF_DWB(WBSCL_VERT_FILTER_INIT_Y_RGB, WBSCL_V_INIT_FRAC_Y_RGB, mask_sh),\
+ SF_DWB(WBSCL_VERT_FILTER_INIT_Y_RGB, WBSCL_V_INIT_INT_Y_RGB, mask_sh),\
+ SF_DWB(WBSCL_VERT_FILTER_INIT_CBCR, WBSCL_V_INIT_FRAC_CBCR, mask_sh),\
+ SF_DWB(WBSCL_VERT_FILTER_INIT_CBCR, WBSCL_V_INIT_INT_CBCR, mask_sh),\
+ SF_DWB(WBSCL_ROUND_OFFSET, WBSCL_ROUND_OFFSET_Y_RGB, mask_sh),\
+ SF_DWB(WBSCL_ROUND_OFFSET, WBSCL_ROUND_OFFSET_CBCR, mask_sh),\
+ SF_DWB(WBSCL_OVERFLOW_STATUS, WBSCL_DATA_OVERFLOW_FLAG, mask_sh),\
+ SF_DWB(WBSCL_OVERFLOW_STATUS, WBSCL_DATA_OVERFLOW_ACK, mask_sh),\
+ SF_DWB(WBSCL_OVERFLOW_STATUS, WBSCL_DATA_OVERFLOW_MASK, mask_sh),\
+ SF_DWB(WBSCL_OVERFLOW_STATUS, WBSCL_DATA_OVERFLOW_INT_STATUS, mask_sh),\
+ SF_DWB(WBSCL_OVERFLOW_STATUS, WBSCL_DATA_OVERFLOW_INT_TYPE, mask_sh),\
+ SF_DWB(WBSCL_COEF_RAM_CONFLICT_STATUS, WBSCL_HOST_CONFLICT_FLAG, mask_sh),\
+ SF_DWB(WBSCL_COEF_RAM_CONFLICT_STATUS, WBSCL_HOST_CONFLICT_ACK, mask_sh),\
+ SF_DWB(WBSCL_COEF_RAM_CONFLICT_STATUS, WBSCL_HOST_CONFLICT_MASK, mask_sh),\
+ SF_DWB(WBSCL_COEF_RAM_CONFLICT_STATUS, WBSCL_HOST_CONFLICT_INT_STATUS, mask_sh),\
+ SF_DWB(WBSCL_COEF_RAM_CONFLICT_STATUS, WBSCL_HOST_CONFLICT_INT_TYPE, mask_sh),\
+ SF_DWB(WBSCL_TEST_CNTL, WBSCL_TEST_CRC_EN, mask_sh),\
+ SF_DWB(WBSCL_TEST_CNTL, WBSCL_TEST_CRC_CONT_EN, mask_sh),\
+ SF_DWB(WBSCL_TEST_CRC_RED, WBSCL_TEST_CRC_RED_MASK, mask_sh),\
+ SF_DWB(WBSCL_TEST_CRC_RED, WBSCL_TEST_CRC_SIG_RED, mask_sh),\
+ SF_DWB(WBSCL_TEST_CRC_GREEN, WBSCL_TEST_CRC_GREEN_MASK, mask_sh),\
+ SF_DWB(WBSCL_TEST_CRC_GREEN, WBSCL_TEST_CRC_SIG_GREEN, mask_sh),\
+ SF_DWB(WBSCL_TEST_CRC_BLUE, WBSCL_TEST_CRC_BLUE_MASK, mask_sh),\
+ SF_DWB(WBSCL_TEST_CRC_BLUE, WBSCL_TEST_CRC_SIG_BLUE, mask_sh),\
+ SF_DWB(WBSCL_BACKPRESSURE_CNT_EN, WBSCL_BACKPRESSURE_CNT_EN, mask_sh),\
+ SF_DWB(WB_MCIF_BACKPRESSURE_CNT, WB_MCIF_Y_MAX_BACKPRESSURE, mask_sh),\
+ SF_DWB(WB_MCIF_BACKPRESSURE_CNT, WB_MCIF_C_MAX_BACKPRESSURE, mask_sh),\
+ SF_DWB(WBSCL_CLAMP_Y_RGB, WBSCL_CLAMP_UPPER_Y_RGB, mask_sh),\
+ SF_DWB(WBSCL_CLAMP_Y_RGB, WBSCL_CLAMP_LOWER_Y_RGB, mask_sh),\
+ SF_DWB(WBSCL_CLAMP_CBCR, WBSCL_CLAMP_UPPER_CBCR, mask_sh),\
+ SF_DWB(WBSCL_CLAMP_CBCR, WBSCL_CLAMP_LOWER_CBCR, mask_sh),\
+ SF_DWB(WBSCL_OUTSIDE_PIX_STRATEGY, WBSCL_OUTSIDE_PIX_STRATEGY, mask_sh),\
+ SF_DWB(WBSCL_OUTSIDE_PIX_STRATEGY, WBSCL_BLACK_COLOR_G_Y, mask_sh),\
+ SF_DWB(WBSCL_OUTSIDE_PIX_STRATEGY_CBCR, WBSCL_BLACK_COLOR_B_CB, mask_sh),\
+ SF_DWB(WBSCL_OUTSIDE_PIX_STRATEGY_CBCR, WBSCL_BLACK_COLOR_R_CR, mask_sh),\
+ SF_DWB(WBSCL_DEBUG, WBSCL_DEBUG, mask_sh),\
+ SF_DWB(WBSCL_TEST_DEBUG_INDEX, WBSCL_TEST_DEBUG_INDEX, mask_sh),\
+ SF_DWB(WBSCL_TEST_DEBUG_INDEX, WBSCL_TEST_DEBUG_WRITE_EN, mask_sh),\
+ SF_DWB(WBSCL_TEST_DEBUG_DATA, WBSCL_TEST_DEBUG_DATA, mask_sh),\
+ SF_DWB(WB_WARM_UP_MODE_CTL1, WIDTH_WARMUP, mask_sh),\
+ SF_DWB(WB_WARM_UP_MODE_CTL1, HEIGHT_WARMUP, mask_sh),\
+ SF_DWB(WB_WARM_UP_MODE_CTL1, GMC_WARM_UP_ENABLE, mask_sh),\
+ SF_DWB(WB_WARM_UP_MODE_CTL2, DATA_VALUE_WARMUP, mask_sh),\
+ SF_DWB(WB_WARM_UP_MODE_CTL2, MODE_WARMUP, mask_sh),\
+ SF_DWB(WB_WARM_UP_MODE_CTL2, DATA_DEPTH_WARMUP, mask_sh)
#define DWBC_REG_FIELD_LIST_DCN2_0(type) \
type WB_ENABLE;\
diff --git a/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_hubbub.c b/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_hubbub.c
index aacb1fb5c73e..24bd93219936 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_hubbub.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_hubbub.c
@@ -500,7 +500,7 @@ void hubbub2_wm_read_state(struct hubbub *hubbub,
s->sr_enter = REG_READ(DCHUBBUB_ARB_ALLOW_SR_ENTER_WATERMARK_A);
s->sr_exit = REG_READ(DCHUBBUB_ARB_ALLOW_SR_EXIT_WATERMARK_A);
}
- s->dram_clk_chanage = REG_READ(DCHUBBUB_ARB_ALLOW_DRAM_CLK_CHANGE_WATERMARK_A);
+ s->dram_clk_change = REG_READ(DCHUBBUB_ARB_ALLOW_DRAM_CLK_CHANGE_WATERMARK_A);
s = &wm->sets[1];
s->wm_set = 1;
@@ -511,7 +511,7 @@ void hubbub2_wm_read_state(struct hubbub *hubbub,
s->sr_enter = REG_READ(DCHUBBUB_ARB_ALLOW_SR_ENTER_WATERMARK_B);
s->sr_exit = REG_READ(DCHUBBUB_ARB_ALLOW_SR_EXIT_WATERMARK_B);
}
- s->dram_clk_chanage = REG_READ(DCHUBBUB_ARB_ALLOW_DRAM_CLK_CHANGE_WATERMARK_B);
+ s->dram_clk_change = REG_READ(DCHUBBUB_ARB_ALLOW_DRAM_CLK_CHANGE_WATERMARK_B);
s = &wm->sets[2];
s->wm_set = 2;
@@ -522,7 +522,7 @@ void hubbub2_wm_read_state(struct hubbub *hubbub,
s->sr_enter = REG_READ(DCHUBBUB_ARB_ALLOW_SR_ENTER_WATERMARK_C);
s->sr_exit = REG_READ(DCHUBBUB_ARB_ALLOW_SR_EXIT_WATERMARK_C);
}
- s->dram_clk_chanage = REG_READ(DCHUBBUB_ARB_ALLOW_DRAM_CLK_CHANGE_WATERMARK_C);
+ s->dram_clk_change = REG_READ(DCHUBBUB_ARB_ALLOW_DRAM_CLK_CHANGE_WATERMARK_C);
s = &wm->sets[3];
s->wm_set = 3;
@@ -533,7 +533,7 @@ void hubbub2_wm_read_state(struct hubbub *hubbub,
s->sr_enter = REG_READ(DCHUBBUB_ARB_ALLOW_SR_ENTER_WATERMARK_D);
s->sr_exit = REG_READ(DCHUBBUB_ARB_ALLOW_SR_EXIT_WATERMARK_D);
}
- s->dram_clk_chanage = REG_READ(DCHUBBUB_ARB_ALLOW_DRAM_CLK_CHANGE_WATERMARK_D);
+ s->dram_clk_change = REG_READ(DCHUBBUB_ARB_ALLOW_DRAM_CLK_CHANGE_WATERMARK_D);
}
void hubbub2_get_dchub_ref_freq(struct hubbub *hubbub,
diff --git a/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_hubp.c b/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_hubp.c
index 938dba5249d4..4566bc7abf17 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_hubp.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_hubp.c
@@ -973,10 +973,12 @@ void hubp2_cursor_set_position(
const struct dc_cursor_mi_param *param)
{
struct dcn20_hubp *hubp2 = TO_DCN20_HUBP(hubp);
- int src_x_offset = pos->x - pos->x_hotspot - param->viewport.x;
- int src_y_offset = pos->y - pos->y_hotspot - param->viewport.y;
+ int x_pos = pos->x - param->viewport.x;
+ int y_pos = pos->y - param->viewport.y;
int x_hotspot = pos->x_hotspot;
int y_hotspot = pos->y_hotspot;
+ int src_x_offset = x_pos - pos->x_hotspot;
+ int src_y_offset = y_pos - pos->y_hotspot;
int cursor_height = (int)hubp->curs_attr.height;
int cursor_width = (int)hubp->curs_attr.width;
uint32_t dst_x_offset;
@@ -994,18 +996,26 @@ void hubp2_cursor_set_position(
if (hubp->curs_attr.address.quad_part == 0)
return;
- // Rotated cursor width/height and hotspots tweaks for offset calculation
+ // Transform cursor width / height and hotspots for offset calculations
if (param->rotation == ROTATION_ANGLE_90 || param->rotation == ROTATION_ANGLE_270) {
swap(cursor_height, cursor_width);
+ swap(x_hotspot, y_hotspot);
+
if (param->rotation == ROTATION_ANGLE_90) {
- src_x_offset = pos->x - pos->y_hotspot - param->viewport.x;
- src_y_offset = pos->y - pos->x_hotspot - param->viewport.y;
+ // hotspot = (-y, x)
+ src_x_offset = x_pos - (cursor_width - x_hotspot);
+ src_y_offset = y_pos - y_hotspot;
+ } else if (param->rotation == ROTATION_ANGLE_270) {
+ // hotspot = (y, -x)
+ src_x_offset = x_pos - x_hotspot;
+ src_y_offset = y_pos - (cursor_height - y_hotspot);
}
} else if (param->rotation == ROTATION_ANGLE_180) {
+ // hotspot = (-x, -y)
if (!param->mirror)
- src_x_offset = pos->x - param->viewport.x;
+ src_x_offset = x_pos - (cursor_width - x_hotspot);
- src_y_offset = pos->y - param->viewport.y;
+ src_y_offset = y_pos - (cursor_height - y_hotspot);
}
dst_x_offset = (src_x_offset >= 0) ? src_x_offset : 0;
@@ -1042,8 +1052,8 @@ void hubp2_cursor_set_position(
CURSOR_Y_POSITION, pos->y);
REG_SET_2(CURSOR_HOT_SPOT, 0,
- CURSOR_HOT_SPOT_X, x_hotspot,
- CURSOR_HOT_SPOT_Y, y_hotspot);
+ CURSOR_HOT_SPOT_X, pos->x_hotspot,
+ CURSOR_HOT_SPOT_Y, pos->y_hotspot);
REG_SET(CURSOR_DST_OFFSET, 0,
CURSOR_DST_X_OFFSET, dst_x_offset);
@@ -1052,8 +1062,8 @@ void hubp2_cursor_set_position(
hubp->pos.cur_ctl.bits.cur_enable = cur_en;
hubp->pos.position.bits.x_pos = pos->x;
hubp->pos.position.bits.y_pos = pos->y;
- hubp->pos.hot_spot.bits.x_hot = x_hotspot;
- hubp->pos.hot_spot.bits.y_hot = y_hotspot;
+ hubp->pos.hot_spot.bits.x_hot = pos->x_hotspot;
+ hubp->pos.hot_spot.bits.y_hot = pos->y_hotspot;
hubp->pos.dst_offset.bits.dst_x_offset = dst_x_offset;
/* Cursor Rectangle Cache
* Cursor bitmaps have different hotspot values
diff --git a/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_hwseq.c b/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_hwseq.c
index a7e0001a8f46..422fbf79da64 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_hwseq.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_hwseq.c
@@ -46,16 +46,15 @@
#include "dchubbub.h"
#include "reg_helper.h"
#include "dcn10/dcn10_cm_common.h"
-#include "dc_link_dp.h"
#include "vm_helper.h"
#include "dccg.h"
#include "dc_dmub_srv.h"
#include "dce/dmub_hw_lock_mgr.h"
#include "hw_sequencer.h"
-#include "inc/link_dpcd.h"
#include "dpcd_defs.h"
#include "inc/link_enc_cfg.h"
#include "link_hwss.h"
+#include "link.h"
#define DC_LOGGER_INIT(logger)
@@ -191,10 +190,15 @@ void dcn20_enable_power_gating_plane(
bool enable)
{
bool force_on = true; /* disable power gating */
+ uint32_t org_ip_request_cntl = 0;
if (enable)
force_on = false;
+ REG_GET(DC_IP_REQUEST_CNTL, IP_REQUEST_EN, &org_ip_request_cntl);
+ if (org_ip_request_cntl == 0)
+ REG_SET(DC_IP_REQUEST_CNTL, 0, IP_REQUEST_EN, 1);
+
/* DCHUBP0/1/2/3/4/5 */
REG_UPDATE(DOMAIN0_PG_CONFIG, DOMAIN0_POWER_FORCEON, force_on);
REG_UPDATE(DOMAIN2_PG_CONFIG, DOMAIN2_POWER_FORCEON, force_on);
@@ -225,6 +229,10 @@ void dcn20_enable_power_gating_plane(
REG_UPDATE(DOMAIN20_PG_CONFIG, DOMAIN20_POWER_FORCEON, force_on);
if (REG(DOMAIN21_PG_CONFIG))
REG_UPDATE(DOMAIN21_PG_CONFIG, DOMAIN21_POWER_FORCEON, force_on);
+
+ if (org_ip_request_cntl == 0)
+ REG_SET(DC_IP_REQUEST_CNTL, 0, IP_REQUEST_EN, 0);
+
}
void dcn20_dccg_init(struct dce_hwseq *hws)
@@ -582,6 +590,9 @@ void dcn20_plane_atomic_disable(struct dc *dc, struct pipe_ctx *pipe_ctx)
if (pipe_ctx->stream_res.gsl_group != 0)
dcn20_setup_gsl_group_as_lock(dc, pipe_ctx, false);
+ if (hubp->funcs->hubp_update_mall_sel)
+ hubp->funcs->hubp_update_mall_sel(hubp, 0, false);
+
dc->hwss.set_flip_control_gsl(pipe_ctx, false);
hubp->funcs->hubp_clk_cntl(hubp, false);
@@ -605,6 +616,9 @@ void dcn20_plane_atomic_disable(struct dc *dc, struct pipe_ctx *pipe_ctx)
void dcn20_disable_plane(struct dc *dc, struct pipe_ctx *pipe_ctx)
{
+ bool is_phantom = pipe_ctx->plane_state && pipe_ctx->plane_state->is_phantom;
+ struct timing_generator *tg = is_phantom ? pipe_ctx->stream_res.tg : NULL;
+
DC_LOGGER_INIT(dc->ctx->logger);
if (!pipe_ctx->plane_res.hubp || pipe_ctx->plane_res.hubp->power_gated)
@@ -612,6 +626,12 @@ void dcn20_disable_plane(struct dc *dc, struct pipe_ctx *pipe_ctx)
dcn20_plane_atomic_disable(dc, pipe_ctx);
+ /* Turn back off the phantom OTG after the phantom plane is fully disabled
+ */
+ if (is_phantom)
+ if (tg && tg->funcs->disable_phantom_crtc)
+ tg->funcs->disable_phantom_crtc(tg);
+
DC_LOG_DC("Power down front end %d\n",
pipe_ctx->pipe_idx);
}
@@ -700,7 +720,7 @@ enum dc_status dcn20_enable_stream_timing(
if (false == pipe_ctx->clock_source->funcs->program_pix_clk(
pipe_ctx->clock_source,
&pipe_ctx->stream_res.pix_clk_params,
- dp_get_link_encoding_format(&pipe_ctx->link_config.dp_link_settings),
+ dc->link_srv->dp_get_encoding_format(&pipe_ctx->link_config.dp_link_settings),
&pipe_ctx->pll_settings)) {
BREAK_TO_DEBUGGER();
return DC_ERROR_UNEXPECTED;
@@ -1079,6 +1099,29 @@ void dcn20_blank_pixel_data(
0);
}
+ if (!blank && dc->debug.enable_single_display_2to1_odm_policy) {
+ /* when exiting dynamic ODM need to reinit DPG state for unused pipes */
+ struct pipe_ctx *old_odm_pipe = dc->current_state->res_ctx.pipe_ctx[pipe_ctx->pipe_idx].next_odm_pipe;
+
+ odm_pipe = pipe_ctx->next_odm_pipe;
+
+ while (old_odm_pipe) {
+ if (!odm_pipe || old_odm_pipe->pipe_idx != odm_pipe->pipe_idx)
+ dc->hwss.set_disp_pattern_generator(dc,
+ old_odm_pipe,
+ CONTROLLER_DP_TEST_PATTERN_VIDEOMODE,
+ CONTROLLER_DP_COLOR_SPACE_UDEFINED,
+ COLOR_DEPTH_888,
+ NULL,
+ 0,
+ 0,
+ 0);
+ old_odm_pipe = old_odm_pipe->next_odm_pipe;
+ if (odm_pipe)
+ odm_pipe = odm_pipe->next_odm_pipe;
+ }
+ }
+
if (!blank)
if (stream_res->abm) {
dc->hwss.set_pipe(pipe_ctx);
@@ -1087,11 +1130,15 @@ void dcn20_blank_pixel_data(
}
-static void dcn20_power_on_plane(
+static void dcn20_power_on_plane_resources(
struct dce_hwseq *hws,
struct pipe_ctx *pipe_ctx)
{
DC_LOGGER_INIT(hws->ctx->logger);
+
+ if (hws->funcs.dpp_root_clock_control)
+ hws->funcs.dpp_root_clock_control(hws, pipe_ctx->plane_res.dpp->inst, true);
+
if (REG(DC_IP_REQUEST_CNTL)) {
REG_SET(DC_IP_REQUEST_CNTL, 0,
IP_REQUEST_EN, 1);
@@ -1115,7 +1162,7 @@ static void dcn20_enable_plane(struct dc *dc, struct pipe_ctx *pipe_ctx,
//if (dc->debug.sanity_checks) {
// dcn10_verify_allow_pstate_change_high(dc);
//}
- dcn20_power_on_plane(dc->hwseq, pipe_ctx);
+ dcn20_power_on_plane_resources(dc->hwseq, pipe_ctx);
/* enable DCFCLK current DCHUB */
pipe_ctx->plane_res.hubp->funcs->hubp_clk_cntl(pipe_ctx->plane_res.hubp, true);
@@ -1287,6 +1334,19 @@ static void dcn20_detect_pipe_changes(struct pipe_ctx *old_pipe, struct pipe_ctx
{
new_pipe->update_flags.raw = 0;
+ /* If non-phantom pipe is being transitioned to a phantom pipe,
+ * set disable and return immediately. This is because the pipe
+ * that was previously in use must be fully disabled before we
+ * can "enable" it as a phantom pipe (since the OTG will certainly
+ * be different). The post_unlock sequence will set the correct
+ * update flags to enable the phantom pipe.
+ */
+ if (old_pipe->plane_state && !old_pipe->plane_state->is_phantom &&
+ new_pipe->plane_state && new_pipe->plane_state->is_phantom) {
+ new_pipe->update_flags.bits.disable = 1;
+ return;
+ }
+
/* Exit on unchanged, unused pipe */
if (!old_pipe->plane_state && !new_pipe->plane_state)
return;
@@ -1616,6 +1676,31 @@ static void dcn20_update_dchubp_dpp(
hubp->funcs->phantom_hubp_post_enable(hubp);
}
+static int calculate_vready_offset_for_group(struct pipe_ctx *pipe)
+{
+ struct pipe_ctx *other_pipe;
+ int vready_offset = pipe->pipe_dlg_param.vready_offset;
+
+ /* Always use the largest vready_offset of all connected pipes */
+ for (other_pipe = pipe->bottom_pipe; other_pipe != NULL; other_pipe = other_pipe->bottom_pipe) {
+ if (other_pipe->pipe_dlg_param.vready_offset > vready_offset)
+ vready_offset = other_pipe->pipe_dlg_param.vready_offset;
+ }
+ for (other_pipe = pipe->top_pipe; other_pipe != NULL; other_pipe = other_pipe->top_pipe) {
+ if (other_pipe->pipe_dlg_param.vready_offset > vready_offset)
+ vready_offset = other_pipe->pipe_dlg_param.vready_offset;
+ }
+ for (other_pipe = pipe->next_odm_pipe; other_pipe != NULL; other_pipe = other_pipe->next_odm_pipe) {
+ if (other_pipe->pipe_dlg_param.vready_offset > vready_offset)
+ vready_offset = other_pipe->pipe_dlg_param.vready_offset;
+ }
+ for (other_pipe = pipe->prev_odm_pipe; other_pipe != NULL; other_pipe = other_pipe->prev_odm_pipe) {
+ if (other_pipe->pipe_dlg_param.vready_offset > vready_offset)
+ vready_offset = other_pipe->pipe_dlg_param.vready_offset;
+ }
+
+ return vready_offset;
+}
static void dcn20_program_pipe(
struct dc *dc,
@@ -1634,17 +1719,13 @@ static void dcn20_program_pipe(
&& !pipe_ctx->prev_odm_pipe) {
pipe_ctx->stream_res.tg->funcs->program_global_sync(
pipe_ctx->stream_res.tg,
- pipe_ctx->pipe_dlg_param.vready_offset,
+ calculate_vready_offset_for_group(pipe_ctx),
pipe_ctx->pipe_dlg_param.vstartup_start,
pipe_ctx->pipe_dlg_param.vupdate_offset,
pipe_ctx->pipe_dlg_param.vupdate_width);
- if (pipe_ctx->stream->mall_stream_config.type != SUBVP_PHANTOM) {
- pipe_ctx->stream_res.tg->funcs->wait_for_state(
- pipe_ctx->stream_res.tg, CRTC_STATE_VBLANK);
- pipe_ctx->stream_res.tg->funcs->wait_for_state(
- pipe_ctx->stream_res.tg, CRTC_STATE_VACTIVE);
- }
+ if (pipe_ctx->stream->mall_stream_config.type != SUBVP_PHANTOM)
+ pipe_ctx->stream_res.tg->funcs->wait_for_state(pipe_ctx->stream_res.tg, CRTC_STATE_VACTIVE);
pipe_ctx->stream_res.tg->funcs->set_vtg_params(
pipe_ctx->stream_res.tg, &pipe_ctx->stream->timing, true);
@@ -1682,7 +1763,10 @@ static void dcn20_program_pipe(
* only do gamma programming for powering on, internal memcmp to avoid
* updating on slave planes
*/
- if (pipe_ctx->update_flags.bits.enable || pipe_ctx->stream->update_flags.bits.out_tf)
+ if (pipe_ctx->update_flags.bits.enable ||
+ pipe_ctx->update_flags.bits.plane_changed ||
+ pipe_ctx->stream->update_flags.bits.out_tf ||
+ pipe_ctx->plane_state->update_flags.bits.output_tf_change)
hws->funcs.set_output_transfer_func(dc, pipe_ctx, pipe_ctx->stream);
/* If the pipe has been enabled or has a different opp, we
@@ -1704,6 +1788,15 @@ static void dcn20_program_pipe(
&pipe_ctx->stream->bit_depth_params,
&pipe_ctx->stream->clamping);
}
+
+ /* Set ABM pipe after other pipe configurations done */
+ if (pipe_ctx->plane_state->visible) {
+ if (pipe_ctx->stream_res.abm) {
+ dc->hwss.set_pipe(pipe_ctx);
+ pipe_ctx->stream_res.abm->funcs->set_abm_level(pipe_ctx->stream_res.abm,
+ pipe_ctx->stream->abm_level);
+ }
+ }
}
void dcn20_program_front_end_for_ctx(
@@ -1741,6 +1834,20 @@ void dcn20_program_front_end_for_ctx(
dcn20_detect_pipe_changes(&dc->current_state->res_ctx.pipe_ctx[i],
&context->res_ctx.pipe_ctx[i]);
+ /* When disabling phantom pipes, turn on phantom OTG first (so we can get double
+ * buffer updates properly)
+ */
+ for (i = 0; i < dc->res_pool->pipe_count; i++) {
+ struct dc_stream_state *stream = dc->current_state->res_ctx.pipe_ctx[i].stream;
+
+ if (context->res_ctx.pipe_ctx[i].update_flags.bits.disable && stream &&
+ dc->current_state->res_ctx.pipe_ctx[i].stream->mall_stream_config.type == SUBVP_PHANTOM) {
+ struct timing_generator *tg = dc->current_state->res_ctx.pipe_ctx[i].stream_res.tg;
+
+ if (tg->funcs->enable_crtc)
+ tg->funcs->enable_crtc(tg);
+ }
+ }
/* OTG blank before disabling all front ends */
for (i = 0; i < dc->res_pool->pipe_count; i++)
if (context->res_ctx.pipe_ctx[i].update_flags.bits.disable
@@ -1813,6 +1920,17 @@ void dcn20_program_front_end_for_ctx(
context->stream_status[0].plane_count > 1) {
pipe->plane_res.hubp->funcs->hubp_wait_pipe_read_start(pipe->plane_res.hubp);
}
+
+ /* when dynamic ODM is active, pipes must be reconfigured when all planes are
+ * disabled, as some transitions will leave software and hardware state
+ * mismatched.
+ */
+ if (dc->debug.enable_single_display_2to1_odm_policy &&
+ pipe->stream &&
+ pipe->update_flags.bits.disable &&
+ !pipe->prev_odm_pipe &&
+ hws->funcs.update_odm)
+ hws->funcs.update_odm(dc, context, pipe);
}
}
@@ -1852,26 +1970,6 @@ void dcn20_post_unlock_program_front_end(
for (i = 0; i < dc->res_pool->pipe_count; i++) {
struct pipe_ctx *pipe = &context->res_ctx.pipe_ctx[i];
- struct pipe_ctx *old_pipe = &dc->current_state->res_ctx.pipe_ctx[i];
-
- /* If an active, non-phantom pipe is being transitioned into a phantom
- * pipe, wait for the double buffer update to complete first before we do
- * phantom pipe programming (HUBP_VTG_SEL updates right away so that can
- * cause issues).
- */
- if (pipe->stream && pipe->stream->mall_stream_config.type == SUBVP_PHANTOM &&
- old_pipe->stream && old_pipe->stream->mall_stream_config.type != SUBVP_PHANTOM) {
- old_pipe->stream_res.tg->funcs->wait_for_state(
- old_pipe->stream_res.tg,
- CRTC_STATE_VBLANK);
- old_pipe->stream_res.tg->funcs->wait_for_state(
- old_pipe->stream_res.tg,
- CRTC_STATE_VACTIVE);
- }
- }
-
- for (i = 0; i < dc->res_pool->pipe_count; i++) {
- struct pipe_ctx *pipe = &context->res_ctx.pipe_ctx[i];
if (pipe->plane_state && !pipe->top_pipe) {
/* Program phantom pipe here to prevent a frame of underflow in the MPO transition
@@ -1881,6 +1979,11 @@ void dcn20_post_unlock_program_front_end(
*/
while (pipe) {
if (pipe->stream && pipe->stream->mall_stream_config.type == SUBVP_PHANTOM) {
+ /* When turning on the phantom pipe we want to run through the
+ * entire enable sequence, so apply all the "enable" flags.
+ */
+ if (dc->hwss.apply_update_flags_for_phantom)
+ dc->hwss.apply_update_flags_for_phantom(pipe);
if (dc->hwss.update_phantom_vp_position)
dc->hwss.update_phantom_vp_position(dc, context, pipe);
dcn20_program_pipe(dc, pipe, context);
@@ -1890,6 +1993,16 @@ void dcn20_post_unlock_program_front_end(
}
}
+ /* P-State support transitions:
+ * Natural -> FPO: P-State disabled in prepare, force disallow anytime is safe
+ * FPO -> Natural: Unforce anytime after FW disable is safe (P-State will assert naturally)
+ * Unsupported -> FPO: P-State enabled in optimize, force disallow anytime is safe
+ * FPO -> Unsupported: P-State disabled in prepare, unforce disallow anytime is safe
+ * FPO <-> SubVP: Force disallow is maintained on the FPO / SubVP pipes
+ */
+ if (hwseq && hwseq->funcs.update_force_pstate)
+ dc->hwseq->funcs.update_force_pstate(dc, context);
+
/* Only program the MALL registers after all the main and phantom pipes
* are done programming.
*/
@@ -1941,8 +2054,11 @@ void dcn20_prepare_bandwidth(
}
}
- /* program dchubbub watermarks */
- dc->wm_optimized_required = hubbub->funcs->program_watermarks(hubbub,
+ /* program dchubbub watermarks:
+ * For assigning wm_optimized_required, use |= operator since we don't want
+ * to clear the value if the optimize has not happened yet
+ */
+ dc->wm_optimized_required |= hubbub->funcs->program_watermarks(hubbub,
&context->bw_ctx.bw.dcn.watermarks,
dc->res_pool->ref_clocks.dchub_ref_clock_inKhz / 1000,
false);
@@ -1953,10 +2069,13 @@ void dcn20_prepare_bandwidth(
/* decrease compbuf size */
if (hubbub->funcs->program_compbuf_size) {
- if (context->bw_ctx.dml.ip.min_comp_buffer_size_kbytes)
+ if (context->bw_ctx.dml.ip.min_comp_buffer_size_kbytes) {
compbuf_size_kb = context->bw_ctx.dml.ip.min_comp_buffer_size_kbytes;
- else
+ dc->wm_optimized_required |= (compbuf_size_kb != dc->current_state->bw_ctx.dml.ip.min_comp_buffer_size_kbytes);
+ } else {
compbuf_size_kb = context->bw_ctx.bw.dcn.compbuf_size_kb;
+ dc->wm_optimized_required |= (compbuf_size_kb != dc->current_state->bw_ctx.bw.dcn.compbuf_size_kb);
+ }
hubbub->funcs->program_compbuf_size(hubbub, compbuf_size_kb, false);
}
@@ -1994,6 +2113,15 @@ void dcn20_optimize_bandwidth(
if (hubbub->funcs->program_compbuf_size)
hubbub->funcs->program_compbuf_size(hubbub, context->bw_ctx.bw.dcn.compbuf_size_kb, true);
+ if (context->bw_ctx.bw.dcn.clk.fw_based_mclk_switching) {
+ dc_dmub_srv_p_state_delegate(dc,
+ true, context);
+ context->bw_ctx.bw.dcn.clk.p_state_change_support = true;
+ dc->clk_mgr->clks.fw_based_mclk_switching = true;
+ } else {
+ dc->clk_mgr->clks.fw_based_mclk_switching = false;
+ }
+
dc->clk_mgr->funcs->update_clocks(
dc->clk_mgr,
context,
@@ -2037,7 +2165,7 @@ bool dcn20_update_bandwidth(
pipe_ctx->stream_res.tg->funcs->program_global_sync(
pipe_ctx->stream_res.tg,
- pipe_ctx->pipe_dlg_param.vready_offset,
+ calculate_vready_offset_for_group(pipe_ctx),
pipe_ctx->pipe_dlg_param.vstartup_start,
pipe_ctx->pipe_dlg_param.vupdate_offset,
pipe_ctx->pipe_dlg_param.vupdate_width);
@@ -2298,7 +2426,7 @@ void dcn20_unblank_stream(struct pipe_ctx *pipe_ctx,
params.link_settings.link_rate = link_settings->link_rate;
- if (is_dp_128b_132b_signal(pipe_ctx)) {
+ if (link->dc->link_srv->dp_is_128b_132b_signal(pipe_ctx)) {
/* TODO - DP2.0 HW: Set ODM mode in dp hpo encoder here */
pipe_ctx->stream_res.hpo_dp_stream_enc->funcs->dp_unblank(
pipe_ctx->stream_res.hpo_dp_stream_enc,
@@ -2351,7 +2479,7 @@ static void dcn20_reset_back_end_for_pipe(
* VBIOS lit up eDP, so check link status too.
*/
if (!pipe_ctx->stream->dpms_off || link->link_status.link_active)
- core_link_disable_stream(pipe_ctx);
+ dc->link_srv->set_dpms_off(pipe_ctx);
else if (pipe_ctx->stream_res.audio)
dc->hwss.disable_audio_stream(pipe_ctx);
@@ -2371,7 +2499,7 @@ static void dcn20_reset_back_end_for_pipe(
}
}
else if (pipe_ctx->stream_res.dsc) {
- dp_set_dsc_enable(pipe_ctx, false);
+ dc->link_srv->set_dsc_enable(pipe_ctx, false);
}
/* by upper caller loop, parent pipe: pipe0, will be reset last.
@@ -2554,6 +2682,37 @@ void dcn20_update_mpcc(struct dc *dc, struct pipe_ctx *pipe_ctx)
hubp->mpcc_id = mpcc_id;
}
+static enum phyd32clk_clock_source get_phyd32clk_src(struct dc_link *link)
+{
+ switch (link->link_enc->transmitter) {
+ case TRANSMITTER_UNIPHY_A:
+ return PHYD32CLKA;
+ case TRANSMITTER_UNIPHY_B:
+ return PHYD32CLKB;
+ case TRANSMITTER_UNIPHY_C:
+ return PHYD32CLKC;
+ case TRANSMITTER_UNIPHY_D:
+ return PHYD32CLKD;
+ case TRANSMITTER_UNIPHY_E:
+ return PHYD32CLKE;
+ default:
+ return PHYD32CLKA;
+ }
+}
+
+static int get_odm_segment_count(struct pipe_ctx *pipe_ctx)
+{
+ struct pipe_ctx *odm_pipe = pipe_ctx->next_odm_pipe;
+ int count = 1;
+
+ while (odm_pipe != NULL) {
+ count++;
+ odm_pipe = odm_pipe->next_odm_pipe;
+ }
+
+ return count;
+}
+
void dcn20_enable_stream(struct pipe_ctx *pipe_ctx)
{
enum dc_lane_count lane_count =
@@ -2567,12 +2726,43 @@ void dcn20_enable_stream(struct pipe_ctx *pipe_ctx)
struct timing_generator *tg = pipe_ctx->stream_res.tg;
const struct link_hwss *link_hwss = get_link_hwss(link, &pipe_ctx->link_res);
struct dc *dc = pipe_ctx->stream->ctx->dc;
+ struct dtbclk_dto_params dto_params = {0};
+ struct dccg *dccg = dc->res_pool->dccg;
+ enum phyd32clk_clock_source phyd32clk;
+ int dp_hpo_inst;
+ struct dce_hwseq *hws = dc->hwseq;
+ unsigned int k1_div = PIXEL_RATE_DIV_NA;
+ unsigned int k2_div = PIXEL_RATE_DIV_NA;
- if (is_dp_128b_132b_signal(pipe_ctx)) {
+ if (dc->link_srv->dp_is_128b_132b_signal(pipe_ctx)) {
if (dc->hwseq->funcs.setup_hpo_hw_control)
dc->hwseq->funcs.setup_hpo_hw_control(dc->hwseq, true);
}
+ if (dc->link_srv->dp_is_128b_132b_signal(pipe_ctx)) {
+ dp_hpo_inst = pipe_ctx->stream_res.hpo_dp_stream_enc->inst;
+ dccg->funcs->set_dpstreamclk(dccg, DTBCLK0, tg->inst, dp_hpo_inst);
+
+ phyd32clk = get_phyd32clk_src(link);
+ dccg->funcs->enable_symclk32_se(dccg, dp_hpo_inst, phyd32clk);
+
+ dto_params.otg_inst = tg->inst;
+ dto_params.pixclk_khz = pipe_ctx->stream->timing.pix_clk_100hz / 10;
+ dto_params.num_odm_segments = get_odm_segment_count(pipe_ctx);
+ dto_params.timing = &pipe_ctx->stream->timing;
+ dto_params.ref_dtbclk_khz = dc->clk_mgr->funcs->get_dtb_ref_clk_frequency(dc->clk_mgr);
+ dccg->funcs->set_dtbclk_dto(dccg, &dto_params);
+ }
+
+ if (hws->funcs.calculate_dccg_k1_k2_values && dc->res_pool->dccg->funcs->set_pixel_rate_div) {
+ hws->funcs.calculate_dccg_k1_k2_values(pipe_ctx, &k1_div, &k2_div);
+
+ dc->res_pool->dccg->funcs->set_pixel_rate_div(
+ dc->res_pool->dccg,
+ pipe_ctx->stream_res.tg->inst,
+ k1_div, k2_div);
+ }
+
link_hwss->setup_stream_encoder(pipe_ctx);
if (pipe_ctx->plane_state && pipe_ctx->plane_state->flip_immediate != 1) {
@@ -2583,7 +2773,7 @@ void dcn20_enable_stream(struct pipe_ctx *pipe_ctx)
dc->hwss.update_info_frame(pipe_ctx);
if (dc_is_dp_signal(pipe_ctx->stream->signal))
- dp_source_sequence_trace(link, DPCD_SOURCE_SEQ_AFTER_UPDATE_INFO_FRAME);
+ dc->link_srv->dp_trace_source_sequence(link, DPCD_SOURCE_SEQ_AFTER_UPDATE_INFO_FRAME);
/* enable early control to avoid corruption on DP monitor*/
active_total_with_borders =
@@ -2601,14 +2791,6 @@ void dcn20_enable_stream(struct pipe_ctx *pipe_ctx)
if (dc->hwseq->funcs.set_pixels_per_cycle)
dc->hwseq->funcs.set_pixels_per_cycle(pipe_ctx);
-
- /* enable audio only within mode set */
- if (pipe_ctx->stream_res.audio != NULL) {
- if (is_dp_128b_132b_signal(pipe_ctx))
- pipe_ctx->stream_res.hpo_dp_stream_enc->funcs->dp_audio_enable(pipe_ctx->stream_res.hpo_dp_stream_enc);
- else if (dc_is_dp_signal(pipe_ctx->stream->signal))
- pipe_ctx->stream_res.stream_enc->funcs->dp_audio_enable(pipe_ctx->stream_res.stream_enc);
- }
}
void dcn20_program_dmdata_engine(struct pipe_ctx *pipe_ctx)
diff --git a/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_link_encoder.c b/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_link_encoder.c
index 2f9bfaeaba8d..51a57dae1811 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_link_encoder.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_link_encoder.c
@@ -29,7 +29,6 @@
#include "link_encoder.h"
#include "dcn20_link_encoder.h"
#include "stream_encoder.h"
-#include "i2caux_interface.h"
#include "dc_bios_types.h"
#include "gpio_service_interface.h"
diff --git a/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_mmhubbub.c b/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_mmhubbub.c
index ccd91792991b..259a98e4ee2c 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_mmhubbub.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_mmhubbub.c
@@ -297,7 +297,7 @@ void mcifwb2_dump_frame(struct mcif_wb *mcif_wb,
dump_info->size = dest_height * (mcif_params->luma_pitch + mcif_params->chroma_pitch);
}
-const struct mcif_wb_funcs dcn20_mmhubbub_funcs = {
+static const struct mcif_wb_funcs dcn20_mmhubbub_funcs = {
.enable_mcif = mmhubbub2_enable_mcif,
.disable_mcif = mmhubbub2_disable_mcif,
.config_mcif_buf = mmhubbub2_config_mcif_buf,
diff --git a/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_mmhubbub.h b/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_mmhubbub.h
index 7bcee5894d2e..5ab32aa51e13 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_mmhubbub.h
+++ b/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_mmhubbub.h
@@ -29,13 +29,6 @@
#define TO_DCN20_MMHUBBUB(mcif_wb_base) \
container_of(mcif_wb_base, struct dcn20_mmhubbub, base)
-/* DCN */
-#define BASE_INNER(seg) \
- DCE_BASE__INST0_SEG ## seg
-
-#define BASE(seg) \
- BASE_INNER(seg)
-
#define MCIF_WB_COMMON_REG_LIST_DCN2_0(inst) \
SRI(MCIF_WB_BUFMGR_SW_CONTROL, MCIF_WB, inst),\
SRI(MCIF_WB_BUFMGR_CUR_LINE_R, MCIF_WB, inst),\
diff --git a/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_mpc.c b/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_mpc.c
index 116f67a0b989..5da6e44f284a 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_mpc.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_mpc.c
@@ -542,7 +542,7 @@ static struct mpcc *mpc2_get_mpcc_for_dpp(struct mpc_tree *tree, int dpp_id)
return NULL;
}
-const struct mpc_funcs dcn20_mpc_funcs = {
+static const struct mpc_funcs dcn20_mpc_funcs = {
.read_mpcc_state = mpc1_read_mpcc_state,
.insert_plane = mpc1_insert_plane,
.remove_mpcc = mpc1_remove_mpcc,
diff --git a/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_resource.c b/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_resource.c
index 8224b9bf01d1..1d8c5805ef20 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_resource.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_resource.c
@@ -62,7 +62,6 @@
#include "dml/display_mode_vba.h"
#include "dcn20_dccg.h"
#include "dcn20_vmid.h"
-#include "dc_link_ddc.h"
#include "dce/dce_panel_cntl.h"
#include "navi10_ip_offset.h"
@@ -90,6 +89,7 @@
#include "amdgpu_socbb.h"
+#include "link.h"
#define DC_LOGGER_INIT(logger)
#ifndef mmDP0_DP_DPHY_INTERNAL_CTRL
@@ -124,8 +124,6 @@ enum dcn20_clk_src_array_id {
* macros to expend register list macro defined in HW object header file */
/* DCN */
-/* TODO awful hack. fixup dcn20_dwb.h */
-#undef BASE_INNER
#define BASE_INNER(seg) DCN_BASE__INST0_SEG ## seg
#define BASE(seg) BASE_INNER(seg)
@@ -138,6 +136,15 @@ enum dcn20_clk_src_array_id {
.reg_name = BASE(mm ## block ## id ## _ ## reg_name ## _BASE_IDX) + \
mm ## block ## id ## _ ## reg_name
+#define SRI2_DWB(reg_name, block, id)\
+ .reg_name = BASE(mm ## reg_name ## _BASE_IDX) + \
+ mm ## reg_name
+#define SF_DWB(reg_name, field_name, post_fix)\
+ .field_name = reg_name ## __ ## field_name ## post_fix
+
+#define SF_DWB2(reg_name, block, id, field_name, post_fix) \
+ .field_name = reg_name ## __ ## field_name ## post_fix
+
#define SRIR(var_name, reg_name, block, id)\
.var_name = BASE(mm ## block ## id ## _ ## reg_name ## _BASE_IDX) + \
mm ## block ## id ## _ ## reg_name
@@ -663,8 +670,6 @@ static const struct resource_caps res_cap_nv10 = {
static const struct dc_plane_cap plane_cap = {
.type = DC_PLANE_TYPE_DCN_UNIVERSAL,
- .blends_with_above = true,
- .blends_with_below = true,
.per_pixel_alpha = true,
.pixel_format_support = {
@@ -707,7 +712,7 @@ static const struct dc_debug_options debug_defaults_drv = {
.timing_trace = false,
.clock_trace = true,
.disable_pplib_clock_request = true,
- .pipe_split_policy = MPC_SPLIT_AVOID_MULT_DISP,
+ .pipe_split_policy = MPC_SPLIT_DYNAMIC,
.force_single_disp_pipe_split = false,
.disable_dcc = DCC_ENABLE,
.vsr_support = true,
@@ -1206,8 +1211,11 @@ static void dcn20_resource_destruct(struct dcn20_resource_pool *pool)
if (pool->base.pp_smu != NULL)
dcn20_pp_smu_destroy(&pool->base.pp_smu);
- if (pool->base.oem_device != NULL)
- dal_ddc_service_destroy(&pool->base.oem_device);
+ if (pool->base.oem_device != NULL) {
+ struct dc *dc = pool->base.oem_device->ctx->dc;
+
+ dc->link_srv->destroy_ddc_service(&pool->base.oem_device);
+ }
}
struct hubp *dcn20_hubp_create(
@@ -1382,6 +1390,9 @@ enum dc_status dcn20_add_dsc_to_stream_resource(struct dc *dc,
for (i = 0; i < dc->res_pool->pipe_count; i++) {
struct pipe_ctx *pipe_ctx = &dc_ctx->res_ctx.pipe_ctx[i];
+ if (pipe_ctx->top_pipe)
+ continue;
+
if (pipe_ctx->stream != dc_stream)
continue;
@@ -1454,6 +1465,22 @@ enum dc_status dcn20_remove_stream_from_ctx(struct dc *dc, struct dc_state *new_
return result;
}
+/**
+ * dcn20_split_stream_for_odm - Check if stream can be splited for ODM
+ *
+ * @dc: DC object with resource pool info required for pipe split
+ * @res_ctx: Persistent state of resources
+ * @prev_odm_pipe: Reference to the previous ODM pipe
+ * @next_odm_pipe: Reference to the next ODM pipe
+ *
+ * This function takes a logically active pipe and a logically free pipe and
+ * halves all the scaling parameters that need to be halved while populating
+ * the free pipe with the required resources and configuring the next/previous
+ * ODM pipe pointers.
+ *
+ * Return:
+ * Return true if split stream for ODM is possible, otherwise, return false.
+ */
bool dcn20_split_stream_for_odm(
const struct dc *dc,
struct resource_context *res_ctx,
@@ -2199,14 +2226,10 @@ enum dc_status dcn20_patch_unknown_plane_state(struct dc_plane_state *plane_stat
enum surface_pixel_format surf_pix_format = plane_state->format;
unsigned int bpp = resource_pixel_format_to_bpp(surf_pix_format);
- enum swizzle_mode_values swizzle = DC_SW_LINEAR;
-
+ plane_state->tiling_info.gfx9.swizzle = DC_SW_64KB_S;
if (bpp == 64)
- swizzle = DC_SW_64KB_D;
- else
- swizzle = DC_SW_64KB_S;
+ plane_state->tiling_info.gfx9.swizzle = DC_SW_64KB_D;
- plane_state->tiling_info.gfx9.swizzle = swizzle;
return DC_OK;
}
@@ -2743,7 +2766,7 @@ static bool dcn20_resource_construct(
ddc_init_data.id.id = dc->ctx->dc_bios->fw_info.oem_i2c_obj_id;
ddc_init_data.id.enum_id = 0;
ddc_init_data.id.type = OBJECT_TYPE_GENERIC;
- pool->base.oem_device = dal_ddc_service_create(&ddc_init_data);
+ pool->base.oem_device = dc->link_srv->create_ddc_service(&ddc_init_data);
} else {
pool->base.oem_device = NULL;
}
diff --git a/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_stream_encoder.c b/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_stream_encoder.c
index b40489e678f9..0b47aeb60e79 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_stream_encoder.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_stream_encoder.c
@@ -29,7 +29,7 @@
#include "dcn20_stream_encoder.h"
#include "reg_helper.h"
#include "hw_shared.h"
-#include "inc/link_dpcd.h"
+#include "link.h"
#include "dpcd_defs.h"
#define DC_LOGGER \
@@ -423,6 +423,22 @@ void enc2_set_dynamic_metadata(struct stream_encoder *enc,
}
}
+static void enc2_stream_encoder_update_dp_info_packets_sdp_line_num(
+ struct stream_encoder *enc,
+ struct encoder_info_frame *info_frame)
+{
+ struct dcn10_stream_encoder *enc1 = DCN10STRENC_FROM_STRENC(enc);
+
+ if (info_frame->adaptive_sync.valid == true &&
+ info_frame->sdp_line_num.adaptive_sync_line_num_valid == true) {
+ //00: REFER_TO_DP_SOF, 01: REFER_TO_OTG_SOF
+ REG_UPDATE(DP_SEC_CNTL1, DP_SEC_GSP5_LINE_REFERENCE, 1);
+
+ REG_UPDATE(DP_SEC_CNTL5, DP_SEC_GSP5_LINE_NUM,
+ info_frame->sdp_line_num.adaptive_sync_line_num);
+ }
+}
+
static void enc2_stream_encoder_update_dp_info_packets(
struct stream_encoder *enc,
const struct encoder_info_frame *info_frame)
@@ -530,7 +546,8 @@ void enc2_stream_encoder_dp_unblank(
REG_UPDATE(DP_VID_STREAM_CNTL, DP_VID_STREAM_ENABLE, true);
- dp_source_sequence_trace(link, DPCD_SOURCE_SEQ_AFTER_ENABLE_DP_VID_STREAM);
+ link->dc->link_srv->dp_trace_source_sequence(link,
+ DPCD_SOURCE_SEQ_AFTER_ENABLE_DP_VID_STREAM);
}
static void enc2_dp_set_odm_combine(
@@ -587,6 +604,8 @@ static const struct stream_encoder_funcs dcn20_str_enc_funcs = {
enc2_stream_encoder_update_hdmi_info_packets,
.stop_hdmi_info_packets =
enc2_stream_encoder_stop_hdmi_info_packets,
+ .update_dp_info_packets_sdp_line_num =
+ enc2_stream_encoder_update_dp_info_packets_sdp_line_num,
.update_dp_info_packets =
enc2_stream_encoder_update_dp_info_packets,
.send_immediate_sdp_message =
diff --git a/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_vmid.h b/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_vmid.h
index f1ef46e8da5b..e7a1b7fa2cce 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_vmid.h
+++ b/drivers/gpu/drm/amd/display/dc/dcn20/dcn20_vmid.h
@@ -28,12 +28,6 @@
#include "vmid.h"
-#define BASE_INNER(seg) \
- DCE_BASE__INST0_SEG ## seg
-
-#define BASE(seg) \
- BASE_INNER(seg)
-
#define DCN20_VMID_REG_LIST(id)\
SRI(CNTL, DCN_VM_CONTEXT, id),\
SRI(PAGE_TABLE_BASE_ADDR_HI32, DCN_VM_CONTEXT, id),\
diff --git a/drivers/gpu/drm/amd/display/dc/dcn201/dcn201_dpp.c b/drivers/gpu/drm/amd/display/dc/dcn201/dcn201_dpp.c
index f50ab961bc17..a7268027a472 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn201/dcn201_dpp.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn201/dcn201_dpp.c
@@ -185,13 +185,6 @@ static bool dpp201_get_optimal_number_of_taps(
struct scaler_data *scl_data,
const struct scaling_taps *in_taps)
{
- uint32_t pixel_width;
-
- if (scl_data->viewport.width > scl_data->recout.width)
- pixel_width = scl_data->recout.width;
- else
- pixel_width = scl_data->viewport.width;
-
if (scl_data->viewport.width != scl_data->h_active &&
scl_data->viewport.height != scl_data->v_active &&
dpp->caps->dscl_data_proc_format == DSCL_DATA_PRCESSING_FIXED_FORMAT &&
diff --git a/drivers/gpu/drm/amd/display/dc/dcn201/dcn201_hwseq.c b/drivers/gpu/drm/amd/display/dc/dcn201/dcn201_hwseq.c
index 61bcfa03c4e7..1aeb04fbd89d 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn201/dcn201_hwseq.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn201/dcn201_hwseq.c
@@ -541,8 +541,6 @@ void dcn201_pipe_control_lock(
bool lock)
{
struct dce_hwseq *hws = dc->hwseq;
- struct hubp *hubp = NULL;
- hubp = dc->res_pool->hubps[pipe->pipe_idx];
/* use TG master update lock to lock everything on the TG
* therefore only top pipe need to lock
*/
diff --git a/drivers/gpu/drm/amd/display/dc/dcn201/dcn201_link_encoder.c b/drivers/gpu/drm/amd/display/dc/dcn201/dcn201_link_encoder.c
index 7f9ec59ef443..8d31fa131cd6 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn201/dcn201_link_encoder.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn201/dcn201_link_encoder.c
@@ -29,7 +29,6 @@
#include "link_encoder.h"
#include "dcn201_link_encoder.h"
#include "stream_encoder.h"
-#include "i2caux_interface.h"
#include "dc_bios_types.h"
#include "gpio_service_interface.h"
diff --git a/drivers/gpu/drm/amd/display/dc/dcn201/dcn201_mpc.c b/drivers/gpu/drm/amd/display/dc/dcn201/dcn201_mpc.c
index 95c4c55f067c..1af03a86ec9b 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn201/dcn201_mpc.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn201/dcn201_mpc.c
@@ -76,7 +76,7 @@ static void mpc201_init_mpcc(struct mpcc *mpcc, int mpcc_inst)
mpcc->shared_bottom = false;
}
-const struct mpc_funcs dcn201_mpc_funcs = {
+static const struct mpc_funcs dcn201_mpc_funcs = {
.read_mpcc_state = mpc1_read_mpcc_state,
.insert_plane = mpc1_insert_plane,
.remove_mpcc = mpc1_remove_mpcc,
diff --git a/drivers/gpu/drm/amd/display/dc/dcn201/dcn201_resource.c b/drivers/gpu/drm/amd/display/dc/dcn201/dcn201_resource.c
index 407d995bfa99..6ea70da28aaa 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn201/dcn201_resource.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn201/dcn201_resource.c
@@ -74,7 +74,7 @@
#define MIN_DISP_CLK_KHZ 100000
#define MIN_DPP_CLK_KHZ 100000
-struct _vcs_dpi_ip_params_st dcn201_ip = {
+static struct _vcs_dpi_ip_params_st dcn201_ip = {
.gpuvm_enable = 0,
.hostvm_enable = 0,
.gpuvm_max_page_table_levels = 4,
@@ -136,7 +136,7 @@ struct _vcs_dpi_ip_params_st dcn201_ip = {
.number_of_cursors = 1,
};
-struct _vcs_dpi_soc_bounding_box_st dcn201_soc = {
+static struct _vcs_dpi_soc_bounding_box_st dcn201_soc = {
.clock_limits = {
{
.state = 0,
@@ -571,8 +571,6 @@ static const struct resource_caps res_cap_dnc201 = {
static const struct dc_plane_cap plane_cap = {
.type = DC_PLANE_TYPE_DCN_UNIVERSAL,
- .blends_with_above = true,
- .blends_with_below = true,
.per_pixel_alpha = true,
.pixel_format_support = {
diff --git a/drivers/gpu/drm/amd/display/dc/dcn21/dcn21_hubbub.c b/drivers/gpu/drm/amd/display/dc/dcn21/dcn21_hubbub.c
index c5e200d09038..aeb0e0d9b70a 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn21/dcn21_hubbub.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn21/dcn21_hubbub.c
@@ -635,7 +635,7 @@ void hubbub21_wm_read_state(struct hubbub *hubbub,
DCHUBBUB_ARB_ALLOW_SR_EXIT_WATERMARK_A, &s->sr_exit);
REG_GET(DCHUBBUB_ARB_ALLOW_DRAM_CLK_CHANGE_WATERMARK_A,
- DCHUBBUB_ARB_ALLOW_DRAM_CLK_CHANGE_WATERMARK_A, &s->dram_clk_chanage);
+ DCHUBBUB_ARB_ALLOW_DRAM_CLK_CHANGE_WATERMARK_A, &s->dram_clk_change);
s = &wm->sets[1];
s->wm_set = 1;
@@ -649,7 +649,7 @@ void hubbub21_wm_read_state(struct hubbub *hubbub,
DCHUBBUB_ARB_ALLOW_SR_EXIT_WATERMARK_B, &s->sr_exit);
REG_GET(DCHUBBUB_ARB_ALLOW_DRAM_CLK_CHANGE_WATERMARK_B,
- DCHUBBUB_ARB_ALLOW_DRAM_CLK_CHANGE_WATERMARK_B, &s->dram_clk_chanage);
+ DCHUBBUB_ARB_ALLOW_DRAM_CLK_CHANGE_WATERMARK_B, &s->dram_clk_change);
s = &wm->sets[2];
s->wm_set = 2;
@@ -663,7 +663,7 @@ void hubbub21_wm_read_state(struct hubbub *hubbub,
DCHUBBUB_ARB_ALLOW_SR_EXIT_WATERMARK_C, &s->sr_exit);
REG_GET(DCHUBBUB_ARB_ALLOW_DRAM_CLK_CHANGE_WATERMARK_C,
- DCHUBBUB_ARB_ALLOW_DRAM_CLK_CHANGE_WATERMARK_C, &s->dram_clk_chanage);
+ DCHUBBUB_ARB_ALLOW_DRAM_CLK_CHANGE_WATERMARK_C, &s->dram_clk_change);
s = &wm->sets[3];
s->wm_set = 3;
@@ -677,7 +677,7 @@ void hubbub21_wm_read_state(struct hubbub *hubbub,
DCHUBBUB_ARB_ALLOW_SR_EXIT_WATERMARK_D, &s->sr_exit);
REG_GET(DCHUBBUB_ARB_ALLOW_DRAM_CLK_CHANGE_WATERMARK_D,
- DCHUBBUB_ARB_ALLOW_DRAM_CLK_CHANGE_WATERMARK_D, &s->dram_clk_chanage);
+ DCHUBBUB_ARB_ALLOW_DRAM_CLK_CHANGE_WATERMARK_D, &s->dram_clk_change);
}
static void hubbub21_apply_DEDCN21_147_wa(struct hubbub *hubbub)
diff --git a/drivers/gpu/drm/amd/display/dc/dcn21/dcn21_hwseq.c b/drivers/gpu/drm/amd/display/dc/dcn21/dcn21_hwseq.c
index 69cc192a7e71..2a182c2f57d6 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn21/dcn21_hwseq.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn21/dcn21_hwseq.c
@@ -35,7 +35,7 @@
#include "hw/clk_mgr.h"
#include "dc_dmub_srv.h"
#include "abm.h"
-
+#include "link.h"
#define DC_LOGGER_INIT(logger)
@@ -132,8 +132,8 @@ void dcn21_PLAT_58856_wa(struct dc_state *context, struct pipe_ctx *pipe_ctx)
return;
pipe_ctx->stream->dpms_off = false;
- core_link_enable_stream(context, pipe_ctx);
- core_link_disable_stream(pipe_ctx);
+ pipe_ctx->stream->ctx->dc->link_srv->set_dpms_on(context, pipe_ctx);
+ pipe_ctx->stream->ctx->dc->link_srv->set_dpms_off(pipe_ctx);
pipe_ctx->stream->dpms_off = true;
}
diff --git a/drivers/gpu/drm/amd/display/dc/dcn21/dcn21_link_encoder.c b/drivers/gpu/drm/amd/display/dc/dcn21/dcn21_link_encoder.c
index 0a1ba6e7081c..eb9abb9f9698 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn21/dcn21_link_encoder.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn21/dcn21_link_encoder.c
@@ -31,7 +31,6 @@
#include "dcn21_link_encoder.h"
#include "stream_encoder.h"
-#include "i2caux_interface.h"
#include "dc_bios_types.h"
#include "gpio_service_interface.h"
diff --git a/drivers/gpu/drm/amd/display/dc/dcn21/dcn21_resource.c b/drivers/gpu/drm/amd/display/dc/dcn21/dcn21_resource.c
index 887081472c0d..19aaa557b2db 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn21/dcn21_resource.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn21/dcn21_resource.c
@@ -94,8 +94,6 @@
* macros to expend register list macro defined in HW object header file */
/* DCN */
-/* TODO awful hack. fixup dcn20_dwb.h */
-#undef BASE_INNER
#define BASE_INNER(seg) DMU_BASE__INST0_SEG ## seg
#define BASE(seg) BASE_INNER(seg)
@@ -611,8 +609,6 @@ static const struct resource_caps res_cap_rn_FPGA_2pipe_dsc = {
static const struct dc_plane_cap plane_cap = {
.type = DC_PLANE_TYPE_DCN_UNIVERSAL,
- .blends_with_above = true,
- .blends_with_below = true,
.per_pixel_alpha = true,
.pixel_format_support = {
@@ -644,7 +640,7 @@ static const struct dc_debug_options debug_defaults_drv = {
.clock_trace = true,
.disable_pplib_clock_request = true,
.min_disp_clk_khz = 100000,
- .pipe_split_policy = MPC_SPLIT_AVOID_MULT_DISP,
+ .pipe_split_policy = MPC_SPLIT_DYNAMIC,
.force_single_disp_pipe_split = false,
.disable_dcc = DCC_ENABLE,
.vsr_support = true,
@@ -671,12 +667,15 @@ static const struct dc_debug_options debug_defaults_diags = {
.disable_pplib_wm_range = true,
.disable_stutter = true,
.disable_48mhz_pwrdwn = true,
- .disable_psr = true,
.enable_tri_buf = true,
.use_max_lb = true
};
static const struct dc_panel_config panel_config_defaults = {
+ .psr = {
+ .disable_psr = false,
+ .disallow_psrsu = false,
+ },
.ilr = {
.optimize_edp_link_rate = true,
},
@@ -1392,15 +1391,13 @@ static uint32_t read_pipe_fuses(struct dc_context *ctx)
static enum dc_status dcn21_patch_unknown_plane_state(struct dc_plane_state *plane_state)
{
- enum dc_status result = DC_OK;
-
if (plane_state->ctx->dc->debug.disable_dcc == DCC_ENABLE) {
plane_state->dcc.enable = 1;
/* align to our worst case block width */
plane_state->dcc.meta_pitch = ((plane_state->src_rect.width + 1023) / 1024) * 1024;
}
- result = dcn20_patch_unknown_plane_state(plane_state);
- return result;
+
+ return dcn20_patch_unknown_plane_state(plane_state);
}
static const struct resource_funcs dcn21_res_pool_funcs = {
diff --git a/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_afmt.c b/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_afmt.c
index 95528e5ef89e..55e388c4c98b 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_afmt.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_afmt.c
@@ -123,7 +123,6 @@ void afmt3_se_audio_setup(
{
struct dcn30_afmt *afmt3 = DCN30_AFMT_FROM_AFMT(afmt);
- uint32_t speakers = 0;
uint32_t channels = 0;
ASSERT(audio_info);
@@ -131,7 +130,6 @@ void afmt3_se_audio_setup(
if (audio_info == NULL)
return;
- speakers = audio_info->flags.info.ALLSPEAKERS;
channels = speakers_to_channels(audio_info->flags.speaker_flags).all;
/* setup the audio stream source select (audio -> dig mapping) */
diff --git a/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_dio_link_encoder.c b/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_dio_link_encoder.c
index 6f3c2fb60790..1fb8fd7afc95 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_dio_link_encoder.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_dio_link_encoder.c
@@ -29,7 +29,6 @@
#include "link_encoder.h"
#include "dcn30_dio_link_encoder.h"
#include "stream_encoder.h"
-#include "i2caux_interface.h"
#include "dc_bios_types.h"
/* #include "dcn3ag/dcn3ag_phy_fw.h" */
diff --git a/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_dio_stream_encoder.c b/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_dio_stream_encoder.c
index 17df53793c92..9d08127d209b 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_dio_stream_encoder.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_dio_stream_encoder.c
@@ -28,6 +28,7 @@
#include "dcn30_dio_stream_encoder.h"
#include "reg_helper.h"
#include "hw_shared.h"
+#include "dc.h"
#include "core_types.h"
#include <linux/delay.h>
@@ -404,6 +405,22 @@ static void enc3_read_state(struct stream_encoder *enc, struct enc_state *s)
}
}
+void enc3_stream_encoder_update_dp_info_packets_sdp_line_num(
+ struct stream_encoder *enc,
+ struct encoder_info_frame *info_frame)
+{
+ struct dcn10_stream_encoder *enc1 = DCN10STRENC_FROM_STRENC(enc);
+
+ if (info_frame->adaptive_sync.valid == true &&
+ info_frame->sdp_line_num.adaptive_sync_line_num_valid == true) {
+ //00: REFER_TO_DP_SOF, 01: REFER_TO_OTG_SOF
+ REG_UPDATE(DP_SEC_CNTL1, DP_SEC_GSP5_LINE_REFERENCE, 1);
+
+ REG_UPDATE(DP_SEC_CNTL5, DP_SEC_GSP5_LINE_NUM,
+ info_frame->sdp_line_num.adaptive_sync_line_num);
+ }
+}
+
void enc3_stream_encoder_update_dp_info_packets(
struct stream_encoder *enc,
const struct encoder_info_frame *info_frame)
@@ -452,12 +469,20 @@ void enc3_stream_encoder_update_dp_info_packets(
* use other packetIndex (such as 5,6) for other info packet
*/
+ if (info_frame->adaptive_sync.valid)
+ enc->vpg->funcs->update_generic_info_packet(
+ enc->vpg,
+ 5, /* packetIndex */
+ &info_frame->adaptive_sync,
+ true);
+
/* enable/disable transmission of packet(s).
* If enabled, packet transmission begins on the next frame
*/
REG_UPDATE(DP_SEC_CNTL, DP_SEC_GSP0_ENABLE, info_frame->vsc.valid);
REG_UPDATE(DP_SEC_CNTL, DP_SEC_GSP2_ENABLE, info_frame->spd.valid);
REG_UPDATE(DP_SEC_CNTL, DP_SEC_GSP3_ENABLE, info_frame->hdrsmd.valid);
+ REG_UPDATE(DP_SEC_CNTL, DP_SEC_GSP5_ENABLE, info_frame->adaptive_sync.valid);
/* This bit is the master enable bit.
* When enabling secondary stream engine,
@@ -803,6 +828,8 @@ static const struct stream_encoder_funcs dcn30_str_enc_funcs = {
enc3_stream_encoder_update_hdmi_info_packets,
.stop_hdmi_info_packets =
enc3_stream_encoder_stop_hdmi_info_packets,
+ .update_dp_info_packets_sdp_line_num =
+ enc3_stream_encoder_update_dp_info_packets_sdp_line_num,
.update_dp_info_packets =
enc3_stream_encoder_update_dp_info_packets,
.stop_dp_info_packets =
diff --git a/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_dio_stream_encoder.h b/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_dio_stream_encoder.h
index 54ee230e7f98..06310973ded2 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_dio_stream_encoder.h
+++ b/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_dio_stream_encoder.h
@@ -292,6 +292,10 @@ void enc3_stream_encoder_update_hdmi_info_packets(
void enc3_stream_encoder_stop_hdmi_info_packets(
struct stream_encoder *enc);
+void enc3_stream_encoder_update_dp_info_packets_sdp_line_num(
+ struct stream_encoder *enc,
+ struct encoder_info_frame *info_frame);
+
void enc3_stream_encoder_update_dp_info_packets(
struct stream_encoder *enc,
const struct encoder_info_frame *info_frame);
diff --git a/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_dpp.h b/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_dpp.h
index 6263408d71fc..2082372d69ee 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_dpp.h
+++ b/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_dpp.h
@@ -102,6 +102,7 @@
SRI(LB_DATA_FORMAT, DSCL, id), \
SRI(LB_MEMORY_CTRL, DSCL, id), \
SRI(DSCL_AUTOCAL, DSCL, id), \
+ SRI(DSCL_CONTROL, DSCL, id), \
SRI(SCL_TAP_CONTROL, DSCL, id), \
SRI(SCL_COEF_RAM_TAP_SELECT, DSCL, id), \
SRI(SCL_COEF_RAM_TAP_DATA, DSCL, id), \
@@ -237,6 +238,7 @@
TF_SF(DSCL0_LB_MEMORY_CTRL, LB_MAX_PARTITIONS, mask_sh),\
TF_SF(DSCL0_DSCL_AUTOCAL, AUTOCAL_MODE, mask_sh),\
TF_SF(DSCL0_DSCL_AUTOCAL, AUTOCAL_NUM_PIPE, mask_sh),\
+ TF_SF(DSCL0_DSCL_CONTROL, SCL_BOUNDARY_MODE, mask_sh),\
TF_SF(DSCL0_DSCL_AUTOCAL, AUTOCAL_PIPE_ID, mask_sh),\
TF_SF(DSCL0_SCL_TAP_CONTROL, SCL_V_NUM_TAPS, mask_sh),\
TF_SF(DSCL0_SCL_TAP_CONTROL, SCL_H_NUM_TAPS, mask_sh),\
diff --git a/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_dwb.c b/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_dwb.c
index f14f69616692..0d98918bf0fc 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_dwb.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_dwb.c
@@ -220,7 +220,7 @@ void dwb3_set_denorm(struct dwbc *dwbc, struct dc_dwb_params *params)
}
-const struct dwbc_funcs dcn30_dwbc_funcs = {
+static const struct dwbc_funcs dcn30_dwbc_funcs = {
.get_caps = dwb3_get_caps,
.enable = dwb3_enable,
.disable = dwb3_disable,
diff --git a/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_dwb.h b/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_dwb.h
index 1010930cf071..fc00ec0a0881 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_dwb.h
+++ b/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_dwb.h
@@ -27,21 +27,6 @@
#define TO_DCN30_DWBC(dwbc_base) \
container_of(dwbc_base, struct dcn30_dwbc, base)
-/* DCN */
-#define BASE_INNER(seg) \
- DCE_BASE__INST0_SEG ## seg
-
-#define BASE(seg) \
- BASE_INNER(seg)
-
-#define SF_DWB(reg_name, block, id, field_name, post_fix)\
- .field_name = block ## id ## _ ## reg_name ## __ ## field_name ## post_fix
-
- /* set field name */
-#define SF_DWB2(reg_name, block, id, field_name, post_fix)\
- .field_name = reg_name ## __ ## field_name ## post_fix
-
-
#define DWBC_COMMON_REG_LIST_DCN30(inst) \
SR(DWB_ENABLE_CLK_CTRL),\
SR(DWB_MEM_PWR_CTRL),\
diff --git a/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_hubp.c b/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_hubp.c
index dc3e8df706b3..e46bbe7ddcc9 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_hubp.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_hubp.c
@@ -47,13 +47,9 @@ void hubp3_set_vm_system_aperture_settings(struct hubp *hubp,
{
struct dcn20_hubp *hubp2 = TO_DCN20_HUBP(hubp);
- PHYSICAL_ADDRESS_LOC mc_vm_apt_default;
PHYSICAL_ADDRESS_LOC mc_vm_apt_low;
PHYSICAL_ADDRESS_LOC mc_vm_apt_high;
- // The format of default addr is 48:12 of the 48 bit addr
- mc_vm_apt_default.quad_part = apt->sys_default.quad_part >> 12;
-
// The format of high/low are 48:18 of the 48 bit addr
mc_vm_apt_low.quad_part = apt->sys_low.quad_part >> 18;
mc_vm_apt_high.quad_part = apt->sys_high.quad_part >> 18;
diff --git a/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_hwseq.c b/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_hwseq.c
index 8c5045711264..8263a07f265f 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_hwseq.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_hwseq.c
@@ -50,8 +50,7 @@
#include "dpcd_defs.h"
#include "../dcn20/dcn20_hwseq.h"
#include "dcn30_resource.h"
-#include "inc/dc_link_dp.h"
-#include "inc/link_dpcd.h"
+#include "link.h"
@@ -91,8 +90,8 @@ bool dcn30_set_blend_lut(
return result;
}
-static bool dcn30_set_mpc_shaper_3dlut(
- struct pipe_ctx *pipe_ctx, const struct dc_stream_state *stream)
+static bool dcn30_set_mpc_shaper_3dlut(struct pipe_ctx *pipe_ctx,
+ const struct dc_stream_state *stream)
{
struct dpp *dpp_base = pipe_ctx->plane_res.dpp;
int mpcc_id = pipe_ctx->plane_res.hubp->inst;
@@ -104,19 +103,18 @@ static bool dcn30_set_mpc_shaper_3dlut(
const struct pwl_params *shaper_lut = NULL;
//get the shaper lut params
if (stream->func_shaper) {
- if (stream->func_shaper->type == TF_TYPE_HWPWL)
+ if (stream->func_shaper->type == TF_TYPE_HWPWL) {
shaper_lut = &stream->func_shaper->pwl;
- else if (stream->func_shaper->type == TF_TYPE_DISTRIBUTED_POINTS) {
- cm_helper_translate_curve_to_hw_format(
- stream->func_shaper,
- &dpp_base->shaper_params, true);
+ } else if (stream->func_shaper->type == TF_TYPE_DISTRIBUTED_POINTS) {
+ cm_helper_translate_curve_to_hw_format(stream->func_shaper,
+ &dpp_base->shaper_params, true);
shaper_lut = &dpp_base->shaper_params;
}
}
if (stream->lut3d_func &&
- stream->lut3d_func->state.bits.initialized == 1 &&
- stream->lut3d_func->state.bits.rmu_idx_valid == 1) {
+ stream->lut3d_func->state.bits.initialized == 1 &&
+ stream->lut3d_func->state.bits.rmu_idx_valid == 1) {
if (stream->lut3d_func->state.bits.rmu_mux_num == 0)
mpcc_id_projected = stream->lut3d_func->state.bits.mpc_rmu0_mux;
else if (stream->lut3d_func->state.bits.rmu_mux_num == 1)
@@ -125,20 +123,22 @@ static bool dcn30_set_mpc_shaper_3dlut(
mpcc_id_projected = stream->lut3d_func->state.bits.mpc_rmu2_mux;
if (mpcc_id_projected != mpcc_id)
BREAK_TO_DEBUGGER();
- /*find the reason why logical layer assigned a differant mpcc_id into acquire_post_bldn_3dlut*/
+ /* find the reason why logical layer assigned a different
+ * mpcc_id into acquire_post_bldn_3dlut
+ */
acquired_rmu = mpc->funcs->acquire_rmu(mpc, mpcc_id,
- stream->lut3d_func->state.bits.rmu_mux_num);
+ stream->lut3d_func->state.bits.rmu_mux_num);
if (acquired_rmu != stream->lut3d_func->state.bits.rmu_mux_num)
BREAK_TO_DEBUGGER();
- result = mpc->funcs->program_3dlut(mpc,
- &stream->lut3d_func->lut_3d,
- stream->lut3d_func->state.bits.rmu_mux_num);
+
+ result = mpc->funcs->program_3dlut(mpc, &stream->lut3d_func->lut_3d,
+ stream->lut3d_func->state.bits.rmu_mux_num);
result = mpc->funcs->program_shaper(mpc, shaper_lut,
- stream->lut3d_func->state.bits.rmu_mux_num);
- } else
- /*loop through the available mux and release the requested mpcc_id*/
+ stream->lut3d_func->state.bits.rmu_mux_num);
+ } else {
+ // loop through the available mux and release the requested mpcc_id
mpc->funcs->release_rmu(mpc, mpcc_id);
-
+ }
return result;
}
@@ -323,13 +323,10 @@ void dcn30_enable_writeback(
{
struct dwbc *dwb;
struct mcif_wb *mcif_wb;
- struct timing_generator *optc;
dwb = dc->res_pool->dwbc[wb_info->dwb_pipe_inst];
mcif_wb = dc->res_pool->mcif_wb[wb_info->dwb_pipe_inst];
- /* set the OPTC source mux */
- optc = dc->res_pool->timing_generators[dwb->otg_inst];
DC_LOG_DWB("%s dwb_pipe_inst = %d, mpcc_inst = %d",\
__func__, wb_info->dwb_pipe_inst,\
wb_info->mpcc_inst);
@@ -534,13 +531,8 @@ void dcn30_init_hw(struct dc *dc)
}
}
- /* Power gate DSCs */
- for (i = 0; i < res_pool->res_cap->num_dsc; i++)
- if (hws->funcs.dsc_pg_control != NULL)
- hws->funcs.dsc_pg_control(hws, res_pool->dscs[i]->inst, false);
-
/* we want to turn off all dp displays before doing detection */
- dc_link_blank_all_dp_displays(dc);
+ dc->link_srv->blank_all_dp_displays(dc);
if (hws->funcs.enable_power_gating_plane)
hws->funcs.enable_power_gating_plane(dc->hwseq, true);
@@ -567,7 +559,7 @@ void dcn30_init_hw(struct dc *dc)
struct dc_link *edp_links[MAX_NUM_EDP];
struct dc_link *edp_link = NULL;
- get_edp_links(dc, edp_links, &edp_num);
+ dc_get_edp_links(dc, edp_links, &edp_num);
if (edp_num)
edp_link = edp_links[0];
if (edp_link && edp_link->link_enc->funcs->is_dig_enabled &&
@@ -629,7 +621,8 @@ void dcn30_init_hw(struct dc *dc)
if (dc->clk_mgr->funcs->notify_wm_ranges)
dc->clk_mgr->funcs->notify_wm_ranges(dc->clk_mgr);
- if (dc->clk_mgr->funcs->set_hard_max_memclk)
+ //if softmax is enabled then hardmax will be set by a different call
+ if (dc->clk_mgr->funcs->set_hard_max_memclk && !dc->clk_mgr->dc_mode_softmax_enabled)
dc->clk_mgr->funcs->set_hard_max_memclk(dc->clk_mgr);
if (dc->res_pool->hubbub->funcs->force_pstate_change_control)
@@ -675,10 +668,16 @@ void dcn30_update_info_frame(struct pipe_ctx *pipe_ctx)
pipe_ctx->stream_res.stream_enc->funcs->update_hdmi_info_packets(
pipe_ctx->stream_res.stream_enc,
&pipe_ctx->stream_res.encoder_info_frame);
- else
+ else {
+ if (pipe_ctx->stream_res.stream_enc->funcs->update_dp_info_packets_sdp_line_num)
+ pipe_ctx->stream_res.stream_enc->funcs->update_dp_info_packets_sdp_line_num(
+ pipe_ctx->stream_res.stream_enc,
+ &pipe_ctx->stream_res.encoder_info_frame);
+
pipe_ctx->stream_res.stream_enc->funcs->update_dp_info_packets(
pipe_ctx->stream_res.stream_enc,
&pipe_ctx->stream_res.encoder_info_frame);
+ }
}
void dcn30_program_dmdata_engine(struct pipe_ctx *pipe_ctx)
@@ -984,16 +983,36 @@ void dcn30_set_disp_pattern_generator(const struct dc *dc,
}
void dcn30_prepare_bandwidth(struct dc *dc,
- struct dc_state *context)
+ struct dc_state *context)
{
+ bool p_state_change_support = context->bw_ctx.bw.dcn.clk.p_state_change_support;
+ /* Any transition into an FPO config should disable MCLK switching first to avoid
+ * driver and FW P-State synchronization issues.
+ */
+ if (context->bw_ctx.bw.dcn.clk.fw_based_mclk_switching || dc->clk_mgr->clks.fw_based_mclk_switching) {
+ dc->optimized_required = true;
+ context->bw_ctx.bw.dcn.clk.p_state_change_support = false;
+ }
+
if (dc->clk_mgr->dc_mode_softmax_enabled)
if (dc->clk_mgr->clks.dramclk_khz <= dc->clk_mgr->bw_params->dc_mode_softmax_memclk * 1000 &&
context->bw_ctx.bw.dcn.clk.dramclk_khz > dc->clk_mgr->bw_params->dc_mode_softmax_memclk * 1000)
dc->clk_mgr->funcs->set_max_memclk(dc->clk_mgr, dc->clk_mgr->bw_params->clk_table.entries[dc->clk_mgr->bw_params->clk_table.num_entries - 1].memclk_mhz);
dcn20_prepare_bandwidth(dc, context);
+ /*
+ * enabled -> enabled: do not disable
+ * enabled -> disabled: disable
+ * disabled -> enabled: don't care
+ * disabled -> disabled: don't care
+ */
+ if (!context->bw_ctx.bw.dcn.clk.fw_based_mclk_switching)
+ dc_dmub_srv_p_state_delegate(dc, false, context);
- dc_dmub_srv_p_state_delegate(dc,
- context->bw_ctx.bw.dcn.clk.fw_based_mclk_switching, context);
+ if (context->bw_ctx.bw.dcn.clk.fw_based_mclk_switching || dc->clk_mgr->clks.fw_based_mclk_switching) {
+ /* After disabling P-State, restore the original value to ensure we get the correct P-State
+ * on the next optimize. */
+ context->bw_ctx.bw.dcn.clk.p_state_change_support = p_state_change_support;
+ }
}
diff --git a/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_mmhubbub.c b/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_mmhubbub.c
index 7a93eff183d9..6f2a0d5d963b 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_mmhubbub.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_mmhubbub.c
@@ -211,7 +211,7 @@ static void mmhubbub3_config_mcif_arb(struct mcif_wb *mcif_wb,
REG_UPDATE(MCIF_WB_ARBITRATION_CONTROL, MCIF_WB_CLIENT_ARBITRATION_SLICE, params->arbitration_slice);
}
-const struct mcif_wb_funcs dcn30_mmhubbub_funcs = {
+static const struct mcif_wb_funcs dcn30_mmhubbub_funcs = {
.warmup_mcif = mmhubbub3_warmup_mcif,
.enable_mcif = mmhubbub2_enable_mcif,
.disable_mcif = mmhubbub2_disable_mcif,
diff --git a/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_mmhubbub.h b/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_mmhubbub.h
index 7446e54bf5aa..376620a8f02f 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_mmhubbub.h
+++ b/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_mmhubbub.h
@@ -31,13 +31,6 @@
#define TO_DCN30_MMHUBBUB(mcif_wb_base) \
container_of(mcif_wb_base, struct dcn30_mmhubbub, base)
-/* DCN */
-#define BASE_INNER(seg) \
- DCE_BASE__INST0_SEG ## seg
-
-#define BASE(seg) \
- BASE_INNER(seg)
-
#define MCIF_WB_COMMON_REG_LIST_DCN3_0(inst) \
SRI(MCIF_WB_BUFMGR_SW_CONTROL, MCIF_WB, inst),\
SRI(MCIF_WB_BUFMGR_STATUS, MCIF_WB, inst),\
diff --git a/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_mpc.c b/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_mpc.c
index ad1c1b703874..6cf40c1332bc 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_mpc.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_mpc.c
@@ -1399,7 +1399,7 @@ static void mpc3_set_mpc_mem_lp_mode(struct mpc *mpc)
}
}
-const struct mpc_funcs dcn30_mpc_funcs = {
+static const struct mpc_funcs dcn30_mpc_funcs = {
.read_mpcc_state = mpc1_read_mpcc_state,
.insert_plane = mpc1_insert_plane,
.remove_mpcc = mpc1_remove_mpcc,
diff --git a/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_optc.c b/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_optc.c
index 892d3c4d01a1..c95f000b63b2 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_optc.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_optc.c
@@ -30,6 +30,7 @@
#include "dc_dmub_srv.h"
#include "dml/dcn30/dcn30_fpu.h"
+#include "dc_trace.h"
#define REG(reg)\
optc1->tg_regs->reg
@@ -58,6 +59,8 @@ void optc3_triplebuffer_lock(struct timing_generator *optc)
REG_WAIT(OTG_MASTER_UPDATE_LOCK,
UPDATE_LOCK_STATUS, 1,
1, 10);
+
+ TRACE_OPTC_LOCK_UNLOCK_STATE(optc1, optc->inst, true);
}
void optc3_lock_doublebuffer_enable(struct timing_generator *optc)
@@ -93,6 +96,8 @@ void optc3_lock_doublebuffer_enable(struct timing_generator *optc)
MASTER_UPDATE_LOCK_VUPDATE_KEEPOUT_START_OFFSET, 0,
MASTER_UPDATE_LOCK_VUPDATE_KEEPOUT_END_OFFSET, 100,
OTG_MASTER_UPDATE_LOCK_VUPDATE_KEEPOUT_EN, 1);
+
+ TRACE_OPTC_LOCK_UNLOCK_STATE(optc1, optc->inst, true);
}
void optc3_lock_doublebuffer_disable(struct timing_generator *optc)
@@ -108,6 +113,8 @@ void optc3_lock_doublebuffer_disable(struct timing_generator *optc)
REG_UPDATE(OTG_GLOBAL_CONTROL2, GLOBAL_UPDATE_LOCK_EN, 0);
REG_UPDATE(OTG_GLOBAL_CONTROL0, MASTER_UPDATE_LOCK_DB_EN, 0);
+
+ TRACE_OPTC_LOCK_UNLOCK_STATE(optc1, optc->inst, true);
}
void optc3_lock(struct timing_generator *optc)
@@ -122,6 +129,8 @@ void optc3_lock(struct timing_generator *optc)
REG_WAIT(OTG_MASTER_UPDATE_LOCK,
UPDATE_LOCK_STATUS, 1,
1, 10);
+
+ TRACE_OPTC_LOCK_UNLOCK_STATE(optc1, optc->inst, true);
}
void optc3_set_out_mux(struct timing_generator *optc, enum otg_out_mux_dest dest)
@@ -282,6 +291,14 @@ static void optc3_set_timing_double_buffer(struct timing_generator *optc, bool e
OTG_DRR_TIMING_DBUF_UPDATE_MODE, mode);
}
+static void optc3_wait_drr_doublebuffer_pending_clear(struct timing_generator *optc)
+{
+ struct optc *optc1 = DCN10TG_FROM_TG(optc);
+
+ REG_WAIT(OTG_DOUBLE_BUFFER_CONTROL, OTG_DRR_TIMING_DBUF_UPDATE_PENDING, 0, 2, 100000); /* 1 vupdate at 5hz */
+
+}
+
void optc3_set_vtotal_min_max(struct timing_generator *optc, int vtotal_min, int vtotal_max)
{
optc1_set_vtotal_min_max(optc, vtotal_min, vtotal_max);
@@ -351,6 +368,7 @@ static struct timing_generator_funcs dcn30_tg_funcs = {
.program_manual_trigger = optc2_program_manual_trigger,
.setup_manual_trigger = optc2_setup_manual_trigger,
.get_hw_timing = optc1_get_hw_timing,
+ .wait_drr_doublebuffer_pending_clear = optc3_wait_drr_doublebuffer_pending_clear,
};
void dcn30_timing_generator_init(struct optc *optc1)
diff --git a/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_optc.h b/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_optc.h
index dd45a5499b07..fb06dc9a4893 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_optc.h
+++ b/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_optc.h
@@ -279,6 +279,7 @@
SF(OTG0_OTG_DRR_TRIGGER_WINDOW, OTG_DRR_TRIGGER_WINDOW_END_X, mask_sh),\
SF(OTG0_OTG_DRR_V_TOTAL_CHANGE, OTG_DRR_V_TOTAL_CHANGE_LIMIT, mask_sh),\
SF(OTG0_OTG_H_TIMING_CNTL, OTG_H_TIMING_DIV_BY2, mask_sh),\
+ SF(OTG0_OTG_DOUBLE_BUFFER_CONTROL, OTG_DRR_TIMING_DBUF_UPDATE_PENDING, mask_sh),\
SF(OTG0_OTG_DOUBLE_BUFFER_CONTROL, OTG_DRR_TIMING_DBUF_UPDATE_MODE, mask_sh),\
SF(OTG0_OTG_DOUBLE_BUFFER_CONTROL, OTG_BLANK_DATA_DOUBLE_BUFFER_EN, mask_sh)
@@ -317,6 +318,7 @@
SF(OTG0_OTG_DRR_TRIGGER_WINDOW, OTG_DRR_TRIGGER_WINDOW_END_X, mask_sh),\
SF(OTG0_OTG_DRR_V_TOTAL_CHANGE, OTG_DRR_V_TOTAL_CHANGE_LIMIT, mask_sh),\
SF(OTG0_OTG_H_TIMING_CNTL, OTG_H_TIMING_DIV_MODE, mask_sh),\
+ SF(OTG0_OTG_DOUBLE_BUFFER_CONTROL, OTG_DRR_TIMING_DBUF_UPDATE_PENDING, mask_sh),\
SF(OTG0_OTG_DOUBLE_BUFFER_CONTROL, OTG_DRR_TIMING_DBUF_UPDATE_MODE, mask_sh)
void dcn30_timing_generator_init(struct optc *optc1);
diff --git a/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_resource.c b/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_resource.c
index 020f512e9690..67a34cda3774 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_resource.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_resource.c
@@ -60,7 +60,7 @@
#include "dml/display_mode_vba.h"
#include "dcn30/dcn30_dccg.h"
#include "dcn10/dcn10_resource.h"
-#include "dc_link_ddc.h"
+#include "link.h"
#include "dce/dce_panel_cntl.h"
#include "dcn30/dcn30_dwb.h"
@@ -108,8 +108,6 @@ enum dcn30_clk_src_array_id {
*/
/* DCN */
-/* TODO awful hack. fixup dcn20_dwb.h */
-#undef BASE_INNER
#define BASE_INNER(seg) DCN_BASE__INST0_SEG ## seg
#define BASE(seg) BASE_INNER(seg)
@@ -142,6 +140,9 @@ enum dcn30_clk_src_array_id {
.reg_name[id] = BASE(mm ## block ## id ## _ ## temp_name ## _BASE_IDX) + \
mm ## block ## id ## _ ## temp_name
+#define SF_DWB2(reg_name, block, id, field_name, post_fix) \
+ .field_name = reg_name ## __ ## field_name ## post_fix
+
#define DCCG_SRII(reg_name, block, id)\
.block ## _ ## reg_name[id] = BASE(mm ## block ## id ## _ ## reg_name ## _BASE_IDX) + \
mm ## block ## id ## _ ## reg_name
@@ -679,8 +680,6 @@ static const struct resource_caps res_cap_dcn3 = {
static const struct dc_plane_cap plane_cap = {
.type = DC_PLANE_TYPE_DCN_UNIVERSAL,
- .blends_with_above = true,
- .blends_with_below = true,
.per_pixel_alpha = true,
.pixel_format_support = {
@@ -702,7 +701,9 @@ static const struct dc_plane_cap plane_cap = {
.argb8888 = 167,
.nv12 = 167,
.fp16 = 167
- }
+ },
+ 16,
+ 16
};
static const struct dc_debug_options debug_defaults_drv = {
@@ -723,7 +724,6 @@ static const struct dc_debug_options debug_defaults_drv = {
.underflow_assert_delay_us = 0xFFFFFFFF,
.dwb_fi_phase = -1, // -1 = disable,
.dmub_command_table = true,
- .disable_psr = false,
.use_max_lb = true,
.exit_idle_opt_for_cursor_updates = true
};
@@ -742,11 +742,17 @@ static const struct dc_debug_options debug_defaults_diags = {
.scl_reset_length10 = true,
.dwb_fi_phase = -1, // -1 = disable
.dmub_command_table = true,
- .disable_psr = true,
.enable_tri_buf = true,
.use_max_lb = true
};
+static const struct dc_panel_config panel_config_defaults = {
+ .psr = {
+ .disable_psr = false,
+ .disallow_psrsu = false,
+ },
+};
+
static void dcn30_dpp_destroy(struct dpp **dpp)
{
kfree(TO_DCN20_DPP(*dpp));
@@ -1201,8 +1207,11 @@ static void dcn30_resource_destruct(struct dcn30_resource_pool *pool)
if (pool->base.dccg != NULL)
dcn_dccg_destroy(&pool->base.dccg);
- if (pool->base.oem_device != NULL)
- dal_ddc_service_destroy(&pool->base.oem_device);
+ if (pool->base.oem_device != NULL) {
+ struct dc *dc = pool->base.oem_device->ctx->dc;
+
+ dc->link_srv->destroy_ddc_service(&pool->base.oem_device);
+ }
}
static struct hubp *dcn30_hubp_create(
@@ -1323,6 +1332,7 @@ static struct clock_source *dcn30_clock_source_create(
return &clk_src->base;
}
+ kfree(clk_src);
BREAK_TO_DEBUGGER();
return NULL;
}
@@ -1470,8 +1480,8 @@ bool dcn30_acquire_post_bldn_3dlut(
state->bits.mpc_rmu2_mux = mpcc_id;
ret = true;
break;
- }
}
+ }
return ret;
}
@@ -1641,7 +1651,8 @@ noinline bool dcn30_internal_validate_bw(
display_e2e_pipe_params_st *pipes,
int *pipe_cnt_out,
int *vlevel_out,
- bool fast_validate)
+ bool fast_validate,
+ bool allow_self_refresh_only)
{
bool out = false;
bool repopulate_pipes = false;
@@ -1668,7 +1679,7 @@ noinline bool dcn30_internal_validate_bw(
dml_log_pipe_params(&context->bw_ctx.dml, pipes, pipe_cnt);
- if (!fast_validate) {
+ if (!fast_validate || !allow_self_refresh_only) {
/*
* DML favors voltage over p-state, but we're more interested in
* supporting p-state over voltage. We can't support p-state in
@@ -1681,11 +1692,12 @@ noinline bool dcn30_internal_validate_bw(
if (vlevel < context->bw_ctx.dml.soc.num_states)
vlevel = dcn20_validate_apply_pipe_split_flags(dc, context, vlevel, split, merge);
}
- if (fast_validate || vlevel == context->bw_ctx.dml.soc.num_states ||
- vba->DRAMClockChangeSupport[vlevel][vba->maxMpcComb] == dm_dram_clock_change_unsupported) {
+ if (allow_self_refresh_only &&
+ (fast_validate || vlevel == context->bw_ctx.dml.soc.num_states ||
+ vba->DRAMClockChangeSupport[vlevel][vba->maxMpcComb] == dm_dram_clock_change_unsupported)) {
/*
- * If mode is unsupported or there's still no p-state support then
- * fall back to favoring voltage.
+ * If mode is unsupported or there's still no p-state support
+ * then fall back to favoring voltage.
*
* We don't actually support prefetch mode 2, so require that we
* at least support prefetch mode 1.
@@ -2006,6 +2018,8 @@ bool dcn30_can_support_mclk_switch_using_fw_based_vblank_stretch(struct dc *dc,
if (context->streams[0]->vrr_active_variable)
return false;
+ context->streams[0]->fpo_in_use = true;
+
return true;
}
@@ -2056,7 +2070,7 @@ bool dcn30_validate_bandwidth(struct dc *dc,
BW_VAL_TRACE_COUNT();
DC_FP_START();
- out = dcn30_internal_validate_bw(dc, context, pipes, &pipe_cnt, &vlevel, fast_validate);
+ out = dcn30_internal_validate_bw(dc, context, pipes, &pipe_cnt, &vlevel, fast_validate, true);
DC_FP_END();
if (pipe_cnt == 0)
@@ -2212,6 +2226,11 @@ void dcn30_update_bw_bounding_box(struct dc *dc, struct clk_bw_params *bw_params
}
}
+static void dcn30_get_panel_config_defaults(struct dc_panel_config *panel_config)
+{
+ *panel_config = panel_config_defaults;
+}
+
static const struct resource_funcs dcn30_res_pool_funcs = {
.destroy = dcn30_destroy_resource_pool,
.link_enc_create = dcn30_link_encoder_create,
@@ -2231,6 +2250,7 @@ static const struct resource_funcs dcn30_res_pool_funcs = {
.release_post_bldn_3dlut = dcn30_release_post_bldn_3dlut,
.update_bw_bounding_box = dcn30_update_bw_bounding_box,
.patch_unknown_plane_state = dcn20_patch_unknown_plane_state,
+ .get_panel_config_defaults = dcn30_get_panel_config_defaults,
};
#define CTX ctx
@@ -2577,7 +2597,7 @@ static bool dcn30_resource_construct(
ddc_init_data.id.id = dc->ctx->dc_bios->fw_info.oem_i2c_obj_id;
ddc_init_data.id.enum_id = 0;
ddc_init_data.id.type = OBJECT_TYPE_GENERIC;
- pool->base.oem_device = dal_ddc_service_create(&ddc_init_data);
+ pool->base.oem_device = dc->link_srv->create_ddc_service(&ddc_init_data);
} else {
pool->base.oem_device = NULL;
}
diff --git a/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_resource.h b/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_resource.h
index 7d063c7d6a4b..8e6b8b7368fd 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_resource.h
+++ b/drivers/gpu/drm/amd/display/dc/dcn30/dcn30_resource.h
@@ -64,7 +64,8 @@ bool dcn30_internal_validate_bw(
display_e2e_pipe_params_st *pipes,
int *pipe_cnt_out,
int *vlevel_out,
- bool fast_validate);
+ bool fast_validate,
+ bool allow_self_refresh_only);
void dcn30_calculate_wm_and_dlg(
struct dc *dc, struct dc_state *context,
display_e2e_pipe_params_st *pipes,
diff --git a/drivers/gpu/drm/amd/display/dc/dcn301/dcn301_dio_link_encoder.c b/drivers/gpu/drm/amd/display/dc/dcn301/dcn301_dio_link_encoder.c
index c9fbaed23965..1b39a6e8a1ac 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn301/dcn301_dio_link_encoder.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn301/dcn301_dio_link_encoder.c
@@ -29,7 +29,6 @@
#include "link_encoder.h"
#include "dcn301_dio_link_encoder.h"
#include "stream_encoder.h"
-#include "i2caux_interface.h"
#include "dc_bios_types.h"
#include "gpio_service_interface.h"
diff --git a/drivers/gpu/drm/amd/display/dc/dcn301/dcn301_resource.c b/drivers/gpu/drm/amd/display/dc/dcn301/dcn301_resource.c
index f04595b750ab..5ac2a272c380 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn301/dcn301_resource.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn301/dcn301_resource.c
@@ -107,8 +107,6 @@ enum dcn301_clk_src_array_id {
*/
/* DCN */
-/* TODO awful hack. fixup dcn20_dwb.h */
-#undef BASE_INNER
#define BASE_INNER(seg) DCN_BASE__INST0_SEG ## seg
#define BASE(seg) BASE_INNER(seg)
@@ -146,6 +144,9 @@ enum dcn301_clk_src_array_id {
.reg_name[id] = BASE(mm ## block ## id ## _ ## temp_name ## _BASE_IDX) + \
mm ## block ## id ## _ ## temp_name
+#define SF_DWB2(reg_name, block, id, field_name, post_fix) \
+ .field_name = reg_name ## __ ## field_name ## post_fix
+
#define DCCG_SRII(reg_name, block, id)\
.block ## _ ## reg_name[id] = BASE(mm ## block ## id ## _ ## reg_name ## _BASE_IDX) + \
mm ## block ## id ## _ ## reg_name
@@ -650,8 +651,6 @@ static struct resource_caps res_cap_dcn301 = {
static const struct dc_plane_cap plane_cap = {
.type = DC_PLANE_TYPE_DCN_UNIVERSAL,
- .blends_with_above = true,
- .blends_with_below = true,
.per_pixel_alpha = true,
.pixel_format_support = {
@@ -688,7 +687,7 @@ static const struct dc_debug_options debug_defaults_drv = {
.disable_clock_gate = true,
.disable_pplib_clock_request = true,
.disable_pplib_wm_range = true,
- .pipe_split_policy = MPC_SPLIT_AVOID,
+ .pipe_split_policy = MPC_SPLIT_DYNAMIC,
.force_single_disp_pipe_split = false,
.disable_dcc = DCC_ENABLE,
.vsr_support = true,
@@ -1288,6 +1287,7 @@ static struct clock_source *dcn301_clock_source_create(
return &clk_src->base;
}
+ kfree(clk_src);
BREAK_TO_DEBUGGER();
return NULL;
}
@@ -1412,7 +1412,8 @@ static struct resource_funcs dcn301_res_pool_funcs = {
.find_first_free_match_stream_enc_for_link = dcn10_find_first_free_match_stream_enc_for_link,
.acquire_post_bldn_3dlut = dcn30_acquire_post_bldn_3dlut,
.release_post_bldn_3dlut = dcn30_release_post_bldn_3dlut,
- .update_bw_bounding_box = dcn301_update_bw_bounding_box
+ .update_bw_bounding_box = dcn301_update_bw_bounding_box,
+ .patch_unknown_plane_state = dcn20_patch_unknown_plane_state
};
static bool dcn301_resource_construct(
@@ -1491,6 +1492,8 @@ static bool dcn301_resource_construct(
dc->caps.color.mpc.ogam_rom_caps.hlg = 0;
dc->caps.color.mpc.ocsc = 1;
+ dc->caps.dp_hdmi21_pcon_support = true;
+
/* read VBIOS LTTPR caps */
if (ctx->dc_bios->funcs->get_lttpr_caps) {
enum bp_result bp_query_result;
diff --git a/drivers/gpu/drm/amd/display/dc/dcn302/dcn302_resource.c b/drivers/gpu/drm/amd/display/dc/dcn302/dcn302_resource.c
index b925b6ddde5a..9f93c43115ba 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn302/dcn302_resource.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn302/dcn302_resource.c
@@ -47,6 +47,7 @@
#include "dcn10/dcn10_resource.h"
+#include "link.h"
#include "dce/dce_abm.h"
#include "dce/dce_audio.h"
#include "dce/dce_aux.h"
@@ -112,10 +113,16 @@ static const struct dc_debug_options debug_defaults_diags = {
.dwb_fi_phase = -1, // -1 = disable
.dmub_command_table = true,
.enable_tri_buf = true,
- .disable_psr = true,
.use_max_lb = true
};
+static const struct dc_panel_config panel_config_defaults = {
+ .psr = {
+ .disable_psr = false,
+ .disallow_psrsu = false,
+ },
+};
+
enum dcn302_clk_src_array_id {
DCN302_CLK_SRC_PLL0,
DCN302_CLK_SRC_PLL1,
@@ -140,8 +147,6 @@ static const struct resource_caps res_cap_dcn302 = {
static const struct dc_plane_cap plane_cap = {
.type = DC_PLANE_TYPE_DCN_UNIVERSAL,
- .blends_with_above = true,
- .blends_with_below = true,
.per_pixel_alpha = true,
.pixel_format_support = {
.argb8888 = true,
@@ -177,7 +182,6 @@ static const struct dc_plane_cap plane_cap = {
mm ## reg_name
/* DCN */
-#undef BASE_INNER
#define BASE_INNER(seg) DCN_BASE__INST0_SEG ## seg
#define BASE(seg) BASE_INNER(seg)
@@ -210,6 +214,9 @@ static const struct dc_plane_cap plane_cap = {
.reg_name[id] = BASE(mm ## block ## id ## _ ## temp_name ## _BASE_IDX) + \
mm ## block ## id ## _ ## temp_name
+#define SF_DWB2(reg_name, block, id, field_name, post_fix) \
+ .field_name = reg_name ## __ ## field_name ## post_fix
+
#define SRII_MPC_RMU(reg_name, block, id)\
.RMU##_##reg_name[id] = BASE(mm ## block ## id ## _ ## reg_name ## _BASE_IDX) + \
mm ## block ## id ## _ ## reg_name
@@ -458,6 +465,7 @@ static struct clock_source *dcn302_clock_source_create(struct dc_context *ctx, s
return &clk_src->base;
}
+ kfree(clk_src);
BREAK_TO_DEBUGGER();
return NULL;
}
@@ -1116,6 +1124,12 @@ static void dcn302_resource_destruct(struct resource_pool *pool)
if (pool->dccg != NULL)
dcn_dccg_destroy(&pool->dccg);
+
+ if (pool->oem_device != NULL) {
+ struct dc *dc = pool->oem_device->ctx->dc;
+
+ dc->link_srv->destroy_ddc_service(&pool->oem_device);
+ }
}
static void dcn302_destroy_resource_pool(struct resource_pool **pool)
@@ -1132,6 +1146,11 @@ void dcn302_update_bw_bounding_box(struct dc *dc, struct clk_bw_params *bw_param
DC_FP_END();
}
+static void dcn302_get_panel_config_defaults(struct dc_panel_config *panel_config)
+{
+ *panel_config = panel_config_defaults;
+}
+
static struct resource_funcs dcn302_res_pool_funcs = {
.destroy = dcn302_destroy_resource_pool,
.link_enc_create = dcn302_link_encoder_create,
@@ -1151,6 +1170,7 @@ static struct resource_funcs dcn302_res_pool_funcs = {
.release_post_bldn_3dlut = dcn30_release_post_bldn_3dlut,
.update_bw_bounding_box = dcn302_update_bw_bounding_box,
.patch_unknown_plane_state = dcn20_patch_unknown_plane_state,
+ .get_panel_config_defaults = dcn302_get_panel_config_defaults,
};
static struct dc_cap_funcs cap_funcs = {
@@ -1201,6 +1221,7 @@ static bool dcn302_resource_construct(
int i;
struct dc_context *ctx = dc->ctx;
struct irq_service_init_data init_data;
+ struct ddc_service_init_data ddc_init_data = {0};
ctx->dc_bios->regs = &bios_regs;
@@ -1266,6 +1287,8 @@ static bool dcn302_resource_construct(
dc->caps.color.mpc.ogam_rom_caps.hlg = 0;
dc->caps.color.mpc.ocsc = 1;
+ dc->caps.dp_hdmi21_pcon_support = true;
+
/* read VBIOS LTTPR caps */
if (ctx->dc_bios->funcs->get_lttpr_caps) {
enum bp_result bp_query_result;
@@ -1480,6 +1503,17 @@ static bool dcn302_resource_construct(
dc->cap_funcs = cap_funcs;
+ if (dc->ctx->dc_bios->fw_info.oem_i2c_present) {
+ ddc_init_data.ctx = dc->ctx;
+ ddc_init_data.link = NULL;
+ ddc_init_data.id.id = dc->ctx->dc_bios->fw_info.oem_i2c_obj_id;
+ ddc_init_data.id.enum_id = 0;
+ ddc_init_data.id.type = OBJECT_TYPE_GENERIC;
+ pool->oem_device = dc->link_srv->create_ddc_service(&ddc_init_data);
+ } else {
+ pool->oem_device = NULL;
+ }
+
return true;
create_fail:
diff --git a/drivers/gpu/drm/amd/display/dc/dcn303/dcn303_resource.c b/drivers/gpu/drm/amd/display/dc/dcn303/dcn303_resource.c
index 527d5c902878..7f72ef882ca4 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn303/dcn303_resource.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn303/dcn303_resource.c
@@ -29,7 +29,7 @@
#include "dcn10/dcn10_resource.h"
-#include "dc_link_ddc.h"
+#include "link.h"
#include "dce/dce_abm.h"
#include "dce/dce_audio.h"
@@ -96,7 +96,13 @@ static const struct dc_debug_options debug_defaults_diags = {
.dwb_fi_phase = -1, // -1 = disable
.dmub_command_table = true,
.enable_tri_buf = true,
- .disable_psr = true,
+};
+
+static const struct dc_panel_config panel_config_defaults = {
+ .psr = {
+ .disable_psr = false,
+ .disallow_psrsu = false,
+ },
};
enum dcn303_clk_src_array_id {
@@ -120,8 +126,6 @@ static const struct resource_caps res_cap_dcn303 = {
static const struct dc_plane_cap plane_cap = {
.type = DC_PLANE_TYPE_DCN_UNIVERSAL,
- .blends_with_above = true,
- .blends_with_below = true,
.per_pixel_alpha = true,
.pixel_format_support = {
.argb8888 = true,
@@ -156,7 +160,6 @@ static const struct dc_plane_cap plane_cap = {
mm ## reg_name
/* DCN */
-#undef BASE_INNER
#define BASE_INNER(seg) DCN_BASE__INST0_SEG ## seg
#define BASE(seg) BASE_INNER(seg)
@@ -189,6 +192,9 @@ static const struct dc_plane_cap plane_cap = {
.reg_name[id] = BASE(mm ## block ## id ## _ ## temp_name ## _BASE_IDX) + \
mm ## block ## id ## _ ## temp_name
+#define SF_DWB2(reg_name, block, id, field_name, post_fix) \
+ .field_name = reg_name ## __ ## field_name ## post_fix
+
#define SRII_MPC_RMU(reg_name, block, id)\
.RMU##_##reg_name[id] = BASE(mm ## block ## id ## _ ## reg_name ## _BASE_IDX) + \
mm ## block ## id ## _ ## reg_name
@@ -425,6 +431,7 @@ static struct clock_source *dcn303_clock_source_create(struct dc_context *ctx, s
return &clk_src->base;
}
+ kfree(clk_src);
BREAK_TO_DEBUGGER();
return NULL;
}
@@ -1044,8 +1051,11 @@ static void dcn303_resource_destruct(struct resource_pool *pool)
if (pool->dccg != NULL)
dcn_dccg_destroy(&pool->dccg);
- if (pool->oem_device != NULL)
- dal_ddc_service_destroy(&pool->oem_device);
+ if (pool->oem_device != NULL) {
+ struct dc *dc = pool->oem_device->ctx->dc;
+
+ dc->link_srv->destroy_ddc_service(&pool->oem_device);
+ }
}
static void dcn303_destroy_resource_pool(struct resource_pool **pool)
@@ -1055,6 +1065,10 @@ static void dcn303_destroy_resource_pool(struct resource_pool **pool)
*pool = NULL;
}
+static void dcn303_get_panel_config_defaults(struct dc_panel_config *panel_config)
+{
+ *panel_config = panel_config_defaults;
+}
void dcn303_update_bw_bounding_box(struct dc *dc, struct clk_bw_params *bw_params)
{
@@ -1082,6 +1096,7 @@ static struct resource_funcs dcn303_res_pool_funcs = {
.release_post_bldn_3dlut = dcn30_release_post_bldn_3dlut,
.update_bw_bounding_box = dcn303_update_bw_bounding_box,
.patch_unknown_plane_state = dcn20_patch_unknown_plane_state,
+ .get_panel_config_defaults = dcn303_get_panel_config_defaults,
};
static struct dc_cap_funcs cap_funcs = {
@@ -1149,7 +1164,6 @@ static bool dcn303_resource_construct(
dc->caps.max_cursor_size = 256;
dc->caps.min_horizontal_blanking_period = 80;
dc->caps.dmdata_alloc_size = 2048;
-#if defined(CONFIG_DRM_AMD_DC_DCN)
dc->caps.mall_size_per_mem_channel = 4;
/* total size = mall per channel * num channels * 1024 * 1024 */
dc->caps.mall_size_total = dc->caps.mall_size_per_mem_channel *
@@ -1157,7 +1171,6 @@ static bool dcn303_resource_construct(
1024 * 1024;
dc->caps.cursor_cache_size =
dc->caps.max_cursor_size * dc->caps.max_cursor_size * 8;
-#endif
dc->caps.max_slave_planes = 1;
dc->caps.post_blend_color_processing = true;
dc->caps.force_dp_tps4_for_cp2520 = true;
@@ -1198,6 +1211,8 @@ static bool dcn303_resource_construct(
dc->caps.color.mpc.ogam_rom_caps.hlg = 0;
dc->caps.color.mpc.ocsc = 1;
+ dc->caps.dp_hdmi21_pcon_support = true;
+
/* read VBIOS LTTPR caps */
if (ctx->dc_bios->funcs->get_lttpr_caps) {
enum bp_result bp_query_result;
@@ -1405,7 +1420,7 @@ static bool dcn303_resource_construct(
ddc_init_data.id.id = dc->ctx->dc_bios->fw_info.oem_i2c_obj_id;
ddc_init_data.id.enum_id = 0;
ddc_init_data.id.type = OBJECT_TYPE_GENERIC;
- pool->oem_device = dal_ddc_service_create(&ddc_init_data);
+ pool->oem_device = dc->link_srv->create_ddc_service(&ddc_init_data);
} else {
pool->oem_device = NULL;
}
diff --git a/drivers/gpu/drm/amd/display/dc/dcn31/dcn31_apg.c b/drivers/gpu/drm/amd/display/dc/dcn31/dcn31_apg.c
index de5e18c2a3ac..05aac3e444b4 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn31/dcn31_apg.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn31/dcn31_apg.c
@@ -72,40 +72,6 @@ static void apg31_disable(
REG_UPDATE(APG_CONTROL2, APG_ENABLE, 0);
}
-static union audio_cea_channels speakers_to_channels(
- struct audio_speaker_flags speaker_flags)
-{
- union audio_cea_channels cea_channels = {0};
-
- /* these are one to one */
- cea_channels.channels.FL = speaker_flags.FL_FR;
- cea_channels.channels.FR = speaker_flags.FL_FR;
- cea_channels.channels.LFE = speaker_flags.LFE;
- cea_channels.channels.FC = speaker_flags.FC;
-
- /* if Rear Left and Right exist move RC speaker to channel 7
- * otherwise to channel 5
- */
- if (speaker_flags.RL_RR) {
- cea_channels.channels.RL_RC = speaker_flags.RL_RR;
- cea_channels.channels.RR = speaker_flags.RL_RR;
- cea_channels.channels.RC_RLC_FLC = speaker_flags.RC;
- } else {
- cea_channels.channels.RL_RC = speaker_flags.RC;
- }
-
- /* FRONT Left Right Center and REAR Left Right Center are exclusive */
- if (speaker_flags.FLC_FRC) {
- cea_channels.channels.RC_RLC_FLC = speaker_flags.FLC_FRC;
- cea_channels.channels.RRC_FRC = speaker_flags.FLC_FRC;
- } else {
- cea_channels.channels.RC_RLC_FLC = speaker_flags.RLC_RRC;
- cea_channels.channels.RRC_FRC = speaker_flags.RLC_RRC;
- }
-
- return cea_channels;
-}
-
static void apg31_se_audio_setup(
struct apg *apg,
unsigned int az_inst,
@@ -113,44 +79,24 @@ static void apg31_se_audio_setup(
{
struct dcn31_apg *apg31 = DCN31_APG_FROM_APG(apg);
- uint32_t speakers = 0;
- uint32_t channels = 0;
-
ASSERT(audio_info);
/* This should not happen.it does so we don't get BSOD*/
if (audio_info == NULL)
return;
- speakers = audio_info->flags.info.ALLSPEAKERS;
- channels = speakers_to_channels(audio_info->flags.speaker_flags).all;
-
/* DisplayPort only allows for one audio stream with stream ID 0 */
REG_UPDATE(APG_CONTROL2, APG_DP_AUDIO_STREAM_ID, 0);
/* When running in "pair mode", pairs of audio channels have their own enable
* this is for really old audio drivers */
REG_UPDATE(APG_DBG_GEN_CONTROL, APG_DBG_AUDIO_CHANNEL_ENABLE, 0xFF);
- // REG_UPDATE(APG_DBG_GEN_CONTROL, APG_DBG_AUDIO_CHANNEL_ENABLE, channels);
/* Disable forced mem power off */
REG_UPDATE(APG_MEM_PWR, APG_MEM_PWR_FORCE, 0);
-
- apg31_enable(apg);
-}
-
-static void apg31_audio_mute_control(
- struct apg *apg,
- bool mute)
-{
- if (mute)
- apg31_disable(apg);
- else
- apg31_enable(apg);
}
static struct apg_funcs dcn31_apg_funcs = {
.se_audio_setup = apg31_se_audio_setup,
- .audio_mute_control = apg31_audio_mute_control,
.enable_apg = apg31_enable,
.disable_apg = apg31_disable,
};
diff --git a/drivers/gpu/drm/amd/display/dc/dcn31/dcn31_apg.h b/drivers/gpu/drm/amd/display/dc/dcn31/dcn31_apg.h
index 24f568e120d8..1b81f6773c53 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn31/dcn31_apg.h
+++ b/drivers/gpu/drm/amd/display/dc/dcn31/dcn31_apg.h
@@ -84,10 +84,6 @@ struct apg_funcs {
unsigned int az_inst,
struct audio_info *audio_info);
- void (*audio_mute_control)(
- struct apg *apg,
- bool mute);
-
void (*enable_apg)(
struct apg *apg);
diff --git a/drivers/gpu/drm/amd/display/dc/dcn31/dcn31_dccg.c b/drivers/gpu/drm/amd/display/dc/dcn31/dcn31_dccg.c
index 7f34418e6308..4c2fdfea162f 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn31/dcn31_dccg.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn31/dcn31_dccg.c
@@ -66,17 +66,8 @@ void dccg31_update_dpp_dto(struct dccg *dccg, int dpp_inst, int req_dppclk)
REG_UPDATE(DPPCLK_DTO_CTRL,
DPPCLK_DTO_ENABLE[dpp_inst], 1);
} else {
- //DTO must be enabled to generate a 0Hz clock output
- if (dccg->ctx->dc->debug.root_clock_optimization.bits.dpp) {
- REG_UPDATE(DPPCLK_DTO_CTRL,
- DPPCLK_DTO_ENABLE[dpp_inst], 1);
- REG_SET_2(DPPCLK_DTO_PARAM[dpp_inst], 0,
- DPPCLK0_DTO_PHASE, 0,
- DPPCLK0_DTO_MODULO, 1);
- } else {
- REG_UPDATE(DPPCLK_DTO_CTRL,
- DPPCLK_DTO_ENABLE[dpp_inst], 0);
- }
+ REG_UPDATE(DPPCLK_DTO_CTRL,
+ DPPCLK_DTO_ENABLE[dpp_inst], 0);
}
dccg->pipe_dppclk_khz[dpp_inst] = req_dppclk;
}
@@ -369,6 +360,15 @@ void dccg31_disable_dscclk(struct dccg *dccg, int inst)
DSCCLK2_DTO_PHASE, 0,
DSCCLK2_DTO_MODULO, 1);
break;
+ case 3:
+ if (REG(DSCCLK3_DTO_PARAM)) {
+ REG_UPDATE(DSCCLK_DTO_CTRL,
+ DSCCLK3_DTO_ENABLE, 1);
+ REG_UPDATE_2(DSCCLK3_DTO_PARAM,
+ DSCCLK3_DTO_PHASE, 0,
+ DSCCLK3_DTO_MODULO, 1);
+ }
+ break;
default:
BREAK_TO_DEBUGGER();
return;
@@ -404,6 +404,15 @@ void dccg31_enable_dscclk(struct dccg *dccg, int inst)
REG_UPDATE(DSCCLK_DTO_CTRL,
DSCCLK2_DTO_ENABLE, 0);
break;
+ case 3:
+ if (REG(DSCCLK3_DTO_PARAM)) {
+ REG_UPDATE(DSCCLK_DTO_CTRL,
+ DSCCLK3_DTO_ENABLE, 0);
+ REG_UPDATE_2(DSCCLK3_DTO_PARAM,
+ DSCCLK3_DTO_PHASE, 0,
+ DSCCLK3_DTO_MODULO, 0);
+ }
+ break;
default:
BREAK_TO_DEBUGGER();
return;
diff --git a/drivers/gpu/drm/amd/display/dc/dcn31/dcn31_dio_link_encoder.c b/drivers/gpu/drm/amd/display/dc/dcn31/dcn31_dio_link_encoder.c
index ab70ebd8f223..745a5d187a98 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn31/dcn31_dio_link_encoder.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn31/dcn31_dio_link_encoder.c
@@ -30,7 +30,6 @@
#include "link_encoder.h"
#include "dcn31_dio_link_encoder.h"
#include "stream_encoder.h"
-#include "i2caux_interface.h"
#include "dc_bios_types.h"
#include "gpio_service_interface.h"
@@ -38,6 +37,7 @@
#include "link_enc_cfg.h"
#include "dc_dmub_srv.h"
#include "dal_asic_id.h"
+#include "link.h"
#define CTX \
enc10->base.ctx
@@ -486,7 +486,7 @@ void dcn31_link_encoder_enable_dp_output(
if (link) {
dpia_control.dpia_id = link->ddc_hw_inst;
- dpia_control.fec_rdy = dc_link_should_enable_fec(link);
+ dpia_control.fec_rdy = link->dc->link_srv->dp_should_enable_fec(link);
} else {
DC_LOG_ERROR("%s: Failed to execute DPIA enable DMUB command.\n", __func__);
BREAK_TO_DEBUGGER();
@@ -533,7 +533,7 @@ void dcn31_link_encoder_enable_dp_mst_output(
if (link) {
dpia_control.dpia_id = link->ddc_hw_inst;
- dpia_control.fec_rdy = dc_link_should_enable_fec(link);
+ dpia_control.fec_rdy = link->dc->link_srv->dp_should_enable_fec(link);
} else {
DC_LOG_ERROR("%s: Failed to execute DPIA enable DMUB command.\n", __func__);
BREAK_TO_DEBUGGER();
diff --git a/drivers/gpu/drm/amd/display/dc/dcn31/dcn31_hpo_dp_link_encoder.c b/drivers/gpu/drm/amd/display/dc/dcn31/dcn31_hpo_dp_link_encoder.c
index 80dfaa4d4d81..5b7ad38f85e0 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn31/dcn31_hpo_dp_link_encoder.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn31/dcn31_hpo_dp_link_encoder.c
@@ -26,7 +26,6 @@
#include "dc_bios_types.h"
#include "dcn31_hpo_dp_link_encoder.h"
#include "reg_helper.h"
-#include "dc_link.h"
#include "stream_encoder.h"
#define DC_LOGGER \
@@ -242,7 +241,10 @@ void dcn31_hpo_dp_link_enc_set_link_test_pattern(
REG_UPDATE(DP_DPHY_SYM32_CONTROL,
MODE, DP2_TEST_PATTERN);
break;
- case DP_TEST_PATTERN_SQUARE_PULSE:
+ case DP_TEST_PATTERN_SQUARE:
+ case DP_TEST_PATTERN_SQUARE_PRESHOOT_DISABLED:
+ case DP_TEST_PATTERN_SQUARE_DEEMPHASIS_DISABLED:
+ case DP_TEST_PATTERN_SQUARE_PRESHOOT_DEEMPHASIS_DISABLED:
REG_SET(DP_DPHY_SYM32_TP_SQ_PULSE, 0,
TP_SQ_PULSE_WIDTH, tp_params->custom_pattern[0]);
diff --git a/drivers/gpu/drm/amd/display/dc/dcn31/dcn31_hpo_dp_stream_encoder.c b/drivers/gpu/drm/amd/display/dc/dcn31/dcn31_hpo_dp_stream_encoder.c
index 814f401db3b3..0278bae50a9d 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn31/dcn31_hpo_dp_stream_encoder.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn31/dcn31_hpo_dp_stream_encoder.c
@@ -26,7 +26,7 @@
#include "dc_bios_types.h"
#include "dcn31_hpo_dp_stream_encoder.h"
#include "reg_helper.h"
-#include "dc_link.h"
+#include "dc.h"
#define DC_LOGGER \
enc3->base.ctx->logger
@@ -430,6 +430,22 @@ static void dcn31_hpo_dp_stream_enc_set_stream_attribute(
MSA_DATA_LANE_3, 0);
}
+static void dcn31_hpo_dp_stream_enc_update_dp_info_packets_sdp_line_num(
+ struct hpo_dp_stream_encoder *enc,
+ struct encoder_info_frame *info_frame)
+{
+ struct dcn31_hpo_dp_stream_encoder *enc3 = DCN3_1_HPO_DP_STREAM_ENC_FROM_HPO_STREAM_ENC(enc);
+
+ if (info_frame->adaptive_sync.valid == true &&
+ info_frame->sdp_line_num.adaptive_sync_line_num_valid == true) {
+ //00: REFER_TO_DP_SOF, 01: REFER_TO_OTG_SOF
+ REG_UPDATE(DP_SYM32_ENC_SDP_GSP_CONTROL5, GSP_SOF_REFERENCE, 1);
+
+ REG_UPDATE(DP_SYM32_ENC_SDP_GSP_CONTROL5, GSP_TRANSMISSION_LINE_NUMBER,
+ info_frame->sdp_line_num.adaptive_sync_line_num);
+ }
+}
+
static void dcn31_hpo_dp_stream_enc_update_dp_info_packets(
struct hpo_dp_stream_encoder *enc,
const struct encoder_info_frame *info_frame)
@@ -458,12 +474,20 @@ static void dcn31_hpo_dp_stream_enc_update_dp_info_packets(
&info_frame->hdrsmd,
true);
+ if (info_frame->adaptive_sync.valid)
+ enc->vpg->funcs->update_generic_info_packet(
+ enc->vpg,
+ 5, /* packetIndex */
+ &info_frame->adaptive_sync,
+ true);
+
/* enable/disable transmission of packet(s).
* If enabled, packet transmission begins on the next frame
*/
REG_UPDATE(DP_SYM32_ENC_SDP_GSP_CONTROL0, GSP_VIDEO_CONTINUOUS_TRANSMISSION_ENABLE, info_frame->vsc.valid);
REG_UPDATE(DP_SYM32_ENC_SDP_GSP_CONTROL2, GSP_VIDEO_CONTINUOUS_TRANSMISSION_ENABLE, info_frame->spd.valid);
REG_UPDATE(DP_SYM32_ENC_SDP_GSP_CONTROL3, GSP_VIDEO_CONTINUOUS_TRANSMISSION_ENABLE, info_frame->hdrsmd.valid);
+ REG_UPDATE(DP_SYM32_ENC_SDP_GSP_CONTROL5, GSP_VIDEO_CONTINUOUS_TRANSMISSION_ENABLE, info_frame->adaptive_sync.valid);
/* check if dynamic metadata packet transmission is enabled */
REG_GET(DP_SYM32_ENC_SDP_METADATA_PACKET_CONTROL,
@@ -600,14 +624,6 @@ static void dcn31_hpo_dp_stream_enc_map_stream_to_link(
}
}
-static void dcn31_hpo_dp_stream_enc_mute_control(
- struct hpo_dp_stream_encoder *enc,
- bool mute)
-{
- ASSERT(enc->apg);
- enc->apg->funcs->audio_mute_control(enc->apg, mute);
-}
-
static void dcn31_hpo_dp_stream_enc_audio_setup(
struct hpo_dp_stream_encoder *enc,
unsigned int az_inst,
@@ -722,11 +738,11 @@ static const struct hpo_dp_stream_encoder_funcs dcn30_str_enc_funcs = {
.dp_blank = dcn31_hpo_dp_stream_enc_dp_blank,
.disable = dcn31_hpo_dp_stream_enc_disable,
.set_stream_attribute = dcn31_hpo_dp_stream_enc_set_stream_attribute,
+ .update_dp_info_packets_sdp_line_num = dcn31_hpo_dp_stream_enc_update_dp_info_packets_sdp_line_num,
.update_dp_info_packets = dcn31_hpo_dp_stream_enc_update_dp_info_packets,
.stop_dp_info_packets = dcn31_hpo_dp_stream_enc_stop_dp_info_packets,
.dp_set_dsc_pps_info_packet = dcn31_hpo_dp_stream_enc_set_dsc_pps_info_packet,
.map_stream_to_link = dcn31_hpo_dp_stream_enc_map_stream_to_link,
- .audio_mute_control = dcn31_hpo_dp_stream_enc_mute_control,
.dp_audio_setup = dcn31_hpo_dp_stream_enc_audio_setup,
.dp_audio_enable = dcn31_hpo_dp_stream_enc_audio_enable,
.dp_audio_disable = dcn31_hpo_dp_stream_enc_audio_disable,
diff --git a/drivers/gpu/drm/amd/display/dc/dcn31/dcn31_hubbub.c b/drivers/gpu/drm/amd/display/dc/dcn31/dcn31_hubbub.c
index 6360dc9502e7..7e7cd5b64e6a 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn31/dcn31_hubbub.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn31/dcn31_hubbub.c
@@ -1008,6 +1008,24 @@ static bool hubbub31_verify_allow_pstate_change_high(struct hubbub *hubbub)
return false;
}
+void hubbub31_init(struct hubbub *hubbub)
+{
+ struct dcn20_hubbub *hubbub2 = TO_DCN20_HUBBUB(hubbub);
+
+ /*Enable clock gate*/
+ if (hubbub->ctx->dc->debug.disable_clock_gate) {
+ /*done in hwseq*/
+ /*REG_UPDATE(DCFCLK_CNTL, DCFCLK_GATE_DIS, 0);*/
+ REG_UPDATE_2(DCHUBBUB_CLOCK_CNTL,
+ DISPCLK_R_DCHUBBUB_GATE_DIS, 0,
+ DCFCLK_R_DCHUBBUB_GATE_DIS, 0);
+ }
+
+ /*
+ only the DCN will determine when to connect the SDP port
+ */
+ REG_UPDATE(DCHUBBUB_SDPIF_CFG0, SDPIF_PORT_CONTROL, 1);
+}
static const struct hubbub_funcs hubbub31_funcs = {
.update_dchub = hubbub2_update_dchub,
.init_dchub_sys_ctx = hubbub31_init_dchub_sys_ctx,
diff --git a/drivers/gpu/drm/amd/display/dc/dcn31/dcn31_hubbub.h b/drivers/gpu/drm/amd/display/dc/dcn31/dcn31_hubbub.h
index 70c60de448ac..89d6208287b5 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn31/dcn31_hubbub.h
+++ b/drivers/gpu/drm/amd/display/dc/dcn31/dcn31_hubbub.h
@@ -42,6 +42,10 @@
SR(DCHUBBUB_COMPBUF_CTRL),\
SR(COMPBUF_RESERVED_SPACE),\
SR(DCHUBBUB_DEBUG_CTRL_0),\
+ SR(DCHUBBUB_CLOCK_CNTL),\
+ SR(DCHUBBUB_SDPIF_CFG0),\
+ SR(DCHUBBUB_SDPIF_CFG1),\
+ SR(DCHUBBUB_MEM_PWR_MODE_CTRL),\
SR(DCHUBBUB_ARB_ALLOW_SR_ENTER_WATERMARK_Z8_A),\
SR(DCHUBBUB_ARB_ALLOW_SR_EXIT_WATERMARK_Z8_A),\
SR(DCHUBBUB_ARB_ALLOW_SR_ENTER_WATERMARK_Z8_B),\
@@ -120,11 +124,17 @@
HUBBUB_SF(DCN_VM_FAULT_STATUS, DCN_VM_ERROR_VMID, mask_sh), \
HUBBUB_SF(DCN_VM_FAULT_STATUS, DCN_VM_ERROR_TABLE_LEVEL, mask_sh), \
HUBBUB_SF(DCN_VM_FAULT_STATUS, DCN_VM_ERROR_PIPE, mask_sh), \
- HUBBUB_SF(DCN_VM_FAULT_STATUS, DCN_VM_ERROR_INTERRUPT_STATUS, mask_sh)
+ HUBBUB_SF(DCN_VM_FAULT_STATUS, DCN_VM_ERROR_INTERRUPT_STATUS, mask_sh),\
+ HUBBUB_SF(DCHUBBUB_CLOCK_CNTL, DISPCLK_R_DCHUBBUB_GATE_DIS, mask_sh),\
+ HUBBUB_SF(DCHUBBUB_CLOCK_CNTL, DCFCLK_R_DCHUBBUB_GATE_DIS, mask_sh),\
+ HUBBUB_SF(DCHUBBUB_SDPIF_CFG0, SDPIF_PORT_CONTROL, mask_sh),\
+ HUBBUB_SF(DCHUBBUB_MEM_PWR_MODE_CTRL, DET_MEM_PWR_LS_MODE, mask_sh)
int hubbub31_init_dchub_sys_ctx(struct hubbub *hubbub,
struct dcn_hubbub_phys_addr_config *pa_config);
+void hubbub31_init(struct hubbub *hubbub);
+
void hubbub31_construct(struct dcn20_hubbub *hubbub3,
struct dc_context *ctx,
const struct dcn_hubbub_registers *hubbub_regs,
diff --git a/drivers/gpu/drm/amd/display/dc/dcn31/dcn31_hubp.c b/drivers/gpu/drm/amd/display/dc/dcn31/dcn31_hubp.c
index 84e1486f3d51..39a57bcd7866 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn31/dcn31_hubp.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn31/dcn31_hubp.c
@@ -87,6 +87,7 @@ static struct hubp_funcs dcn31_hubp_funcs = {
.hubp_init = hubp3_init,
.set_unbounded_requesting = hubp31_set_unbounded_requesting,
.hubp_soft_reset = hubp31_soft_reset,
+ .hubp_set_flip_int = hubp1_set_flip_int,
.hubp_in_blank = hubp1_in_blank,
.program_extended_blank = hubp31_program_extended_blank,
};
diff --git a/drivers/gpu/drm/amd/display/dc/dcn31/dcn31_hwseq.c b/drivers/gpu/drm/amd/display/dc/dcn31/dcn31_hwseq.c
index bdf101547484..62ce36c75c4d 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn31/dcn31_hwseq.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn31/dcn31_hwseq.c
@@ -45,8 +45,7 @@
#include "link_hwss.h"
#include "dpcd_defs.h"
#include "dce/dmub_outbox.h"
-#include "dc_link_dp.h"
-#include "inc/link_dpcd.h"
+#include "link.h"
#include "dcn10/dcn10_hw_sequencer.h"
#include "inc/link_enc_cfg.h"
#include "dcn30/dcn30_vpg.h"
@@ -89,7 +88,8 @@ static void enable_memory_low_power(struct dc *dc)
REG_UPDATE(MMHUBBUB_MEM_PWR_CNTL, VGA_MEM_PWR_FORCE, 1);
}
- if (dc->debug.enable_mem_low_power.bits.mpc)
+ if (dc->debug.enable_mem_low_power.bits.mpc &&
+ dc->res_pool->mpc->funcs->set_mpc_mem_lp_mode)
dc->res_pool->mpc->funcs->set_mpc_mem_lp_mode(dc->res_pool->mpc);
@@ -97,7 +97,7 @@ static void enable_memory_low_power(struct dc *dc)
// Power down VPGs
for (i = 0; i < dc->res_pool->stream_enc_count; i++)
dc->res_pool->stream_enc[i]->vpg->funcs->vpg_powerdown(dc->res_pool->stream_enc[i]->vpg);
-#if defined(CONFIG_DRM_AMD_DC_DCN)
+#if defined(CONFIG_DRM_AMD_DC_FP)
for (i = 0; i < dc->res_pool->hpo_dp_stream_enc_count; i++)
dc->res_pool->hpo_dp_stream_enc[i]->vpg->funcs->vpg_powerdown(dc->res_pool->hpo_dp_stream_enc[i]->vpg);
#endif
@@ -141,7 +141,8 @@ void dcn31_init_hw(struct dc *dc)
if (!dcb->funcs->is_accelerated_mode(dcb)) {
hws->funcs.bios_golden_init(dc);
- hws->funcs.disable_vga(dc->hwseq);
+ if (hws->funcs.disable_vga)
+ hws->funcs.disable_vga(dc->hwseq);
}
// Initialize the dccg
if (res_pool->dccg->funcs->dccg_init)
@@ -201,7 +202,7 @@ void dcn31_init_hw(struct dc *dc)
dmub_enable_outbox_notification(dc->ctx->dmub_srv);
/* we want to turn off all dp displays before doing detection */
- dc_link_blank_all_dp_displays(dc);
+ dc->link_srv->blank_all_dp_displays(dc);
if (hws->funcs.enable_power_gating_plane)
hws->funcs.enable_power_gating_plane(dc->hwseq, true);
@@ -229,7 +230,7 @@ void dcn31_init_hw(struct dc *dc)
}
if (num_opps > 1) {
- dc_link_blank_all_edp_displays(dc);
+ dc->link_srv->blank_all_edp_displays(dc);
break;
}
}
@@ -284,16 +285,20 @@ void dcn31_init_hw(struct dc *dc)
if (dc->clk_mgr->funcs->notify_wm_ranges)
dc->clk_mgr->funcs->notify_wm_ranges(dc->clk_mgr);
- if (dc->clk_mgr->funcs->set_hard_max_memclk)
+ if (dc->clk_mgr->funcs->set_hard_max_memclk && !dc->clk_mgr->dc_mode_softmax_enabled)
dc->clk_mgr->funcs->set_hard_max_memclk(dc->clk_mgr);
if (dc->res_pool->hubbub->funcs->force_pstate_change_control)
dc->res_pool->hubbub->funcs->force_pstate_change_control(
dc->res_pool->hubbub, false, false);
-#if defined(CONFIG_DRM_AMD_DC_DCN)
+#if defined(CONFIG_DRM_AMD_DC_FP)
if (dc->res_pool->hubbub->funcs->init_crb)
dc->res_pool->hubbub->funcs->init_crb(dc->res_pool->hubbub);
#endif
+
+ // Get DMCUB capabilities
+ dc_dmub_srv_query_caps_cmd(dc->ctx->dmub_srv->dmub);
+ dc->caps.dmub_caps.psr = dc->ctx->dmub_srv->dmub->feature_caps.psr;
}
void dcn31_dsc_pg_control(
@@ -413,7 +418,17 @@ void dcn31_update_info_frame(struct pipe_ctx *pipe_ctx)
pipe_ctx->stream_res.stream_enc->funcs->update_hdmi_info_packets(
pipe_ctx->stream_res.stream_enc,
&pipe_ctx->stream_res.encoder_info_frame);
- else {
+ else if (pipe_ctx->stream->ctx->dc->link_srv->dp_is_128b_132b_signal(pipe_ctx)) {
+ pipe_ctx->stream_res.hpo_dp_stream_enc->funcs->update_dp_info_packets(
+ pipe_ctx->stream_res.hpo_dp_stream_enc,
+ &pipe_ctx->stream_res.encoder_info_frame);
+ return;
+ } else {
+ if (pipe_ctx->stream_res.stream_enc->funcs->update_dp_info_packets_sdp_line_num)
+ pipe_ctx->stream_res.stream_enc->funcs->update_dp_info_packets_sdp_line_num(
+ pipe_ctx->stream_res.stream_enc,
+ &pipe_ctx->stream_res.encoder_info_frame);
+
pipe_ctx->stream_res.stream_enc->funcs->update_dp_info_packets(
pipe_ctx->stream_res.stream_enc,
&pipe_ctx->stream_res.encoder_info_frame);
@@ -554,7 +569,7 @@ static void dcn31_reset_back_end_for_pipe(
* VBIOS lit up eDP, so check link status too.
*/
if (!pipe_ctx->stream->dpms_off || link->link_status.link_active)
- core_link_disable_stream(pipe_ctx);
+ dc->link_srv->set_dpms_off(pipe_ctx);
else if (pipe_ctx->stream_res.audio)
dc->hwss.disable_audio_stream(pipe_ctx);
@@ -573,7 +588,7 @@ static void dcn31_reset_back_end_for_pipe(
}
}
} else if (pipe_ctx->stream_res.dsc) {
- dp_set_dsc_enable(pipe_ctx, false);
+ dc->link_srv->set_dsc_enable(pipe_ctx, false);
}
pipe_ctx->stream = NULL;
diff --git a/drivers/gpu/drm/amd/display/dc/dcn31/dcn31_resource.c b/drivers/gpu/drm/amd/display/dc/dcn31/dcn31_resource.c
index fddc21a5a04c..ff8cd5076434 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn31/dcn31_resource.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn31/dcn31_resource.c
@@ -119,8 +119,6 @@ enum dcn31_clk_src_array_id {
*/
/* DCN */
-/* TODO awful hack. fixup dcn20_dwb.h */
-#undef BASE_INNER
#define BASE_INNER(seg) DCN_BASE__INST0_SEG ## seg
#define BASE(seg) BASE_INNER(seg)
@@ -153,6 +151,9 @@ enum dcn31_clk_src_array_id {
.reg_name[id] = BASE(reg ## block ## id ## _ ## temp_name ## _BASE_IDX) + \
reg ## block ## id ## _ ## temp_name
+#define SF_DWB2(reg_name, block, id, field_name, post_fix) \
+ .field_name = reg_name ## __ ## field_name ## post_fix
+
#define DCCG_SRII(reg_name, block, id)\
.block ## _ ## reg_name[id] = BASE(reg ## block ## id ## _ ## reg_name ## _BASE_IDX) + \
reg ## block ## id ## _ ## reg_name
@@ -826,8 +827,6 @@ static const struct resource_caps res_cap_dcn31 = {
static const struct dc_plane_cap plane_cap = {
.type = DC_PLANE_TYPE_DCN_UNIVERSAL,
- .blends_with_above = true,
- .blends_with_below = true,
.per_pixel_alpha = true,
.pixel_format_support = {
@@ -911,6 +910,10 @@ static const struct dc_debug_options debug_defaults_diags = {
};
static const struct dc_panel_config panel_config_defaults = {
+ .psr = {
+ .disable_psr = false,
+ .disallow_psrsu = false,
+ },
.ilr = {
.optimize_edp_link_rate = true,
},
@@ -1625,6 +1628,7 @@ static struct clock_source *dcn31_clock_source_create(
return &clk_src->base;
}
+ kfree(clk_src);
BREAK_TO_DEBUGGER();
return NULL;
}
@@ -1634,6 +1638,31 @@ static bool is_dual_plane(enum surface_pixel_format format)
return format >= SURFACE_PIXEL_FORMAT_VIDEO_BEGIN || format == SURFACE_PIXEL_FORMAT_GRPH_RGBE_ALPHA;
}
+int dcn31x_populate_dml_pipes_from_context(struct dc *dc,
+ struct dc_state *context,
+ display_e2e_pipe_params_st *pipes,
+ bool fast_validate)
+{
+ uint32_t pipe_cnt;
+ int i;
+
+ dc_assert_fp_enabled();
+
+ pipe_cnt = dcn20_populate_dml_pipes_from_context(dc, context, pipes, fast_validate);
+
+ for (i = 0; i < pipe_cnt; i++) {
+ pipes[i].pipe.src.gpuvm = 1;
+ if (dc->debug.dml_hostvm_override == DML_HOSTVM_NO_OVERRIDE) {
+ //pipes[pipe_cnt].pipe.src.hostvm = dc->res_pool->hubbub->riommu_active;
+ pipes[i].pipe.src.hostvm = dc->vm_pa_config.is_hvm_enabled;
+ } else if (dc->debug.dml_hostvm_override == DML_HOSTVM_OVERRIDE_FALSE)
+ pipes[i].pipe.src.hostvm = false;
+ else if (dc->debug.dml_hostvm_override == DML_HOSTVM_OVERRIDE_TRUE)
+ pipes[i].pipe.src.hostvm = true;
+ }
+ return pipe_cnt;
+}
+
int dcn31_populate_dml_pipes_from_context(
struct dc *dc, struct dc_state *context,
display_e2e_pipe_params_st *pipes,
@@ -1645,7 +1674,7 @@ int dcn31_populate_dml_pipes_from_context(
bool upscaled = false;
DC_FP_START();
- dcn20_populate_dml_pipes_from_context(dc, context, pipes, fast_validate);
+ dcn31x_populate_dml_pipes_from_context(dc, context, pipes, fast_validate);
DC_FP_END();
for (i = 0, pipe_cnt = 0; i < dc->res_pool->pipe_count; i++) {
@@ -1675,12 +1704,6 @@ int dcn31_populate_dml_pipes_from_context(
dcn31_zero_pipe_dcc_fraction(pipes, pipe_cnt);
DC_FP_END();
- if (dc->debug.dml_hostvm_override == DML_HOSTVM_NO_OVERRIDE)
- pipes[pipe_cnt].pipe.src.hostvm = dc->res_pool->hubbub->riommu_active;
- else if (dc->debug.dml_hostvm_override == DML_HOSTVM_OVERRIDE_FALSE)
- pipes[pipe_cnt].pipe.src.hostvm = false;
- else if (dc->debug.dml_hostvm_override == DML_HOSTVM_OVERRIDE_TRUE)
- pipes[pipe_cnt].pipe.src.hostvm = true;
if (pipes[pipe_cnt].dout.dsc_enable) {
switch (timing->display_color_depth) {
@@ -1770,7 +1793,7 @@ bool dcn31_validate_bandwidth(struct dc *dc,
BW_VAL_TRACE_COUNT();
DC_FP_START();
- out = dcn30_internal_validate_bw(dc, context, pipes, &pipe_cnt, &vlevel, fast_validate);
+ out = dcn30_internal_validate_bw(dc, context, pipes, &pipe_cnt, &vlevel, fast_validate, true);
DC_FP_END();
// Disable fast_validate to set min dcfclk in alculate_wm_and_dlg
@@ -1898,6 +1921,8 @@ static bool dcn31_resource_construct(
dc->caps.max_slave_rgb_planes = 2;
dc->caps.post_blend_color_processing = true;
dc->caps.force_dp_tps4_for_cp2520 = true;
+ if (dc->config.forceHBR2CP2520)
+ dc->caps.force_dp_tps4_for_cp2520 = false;
dc->caps.dp_hpo = true;
dc->caps.dp_hdmi21_pcon_support = true;
dc->caps.edp_dsc_support = true;
@@ -1940,6 +1965,8 @@ static bool dcn31_resource_construct(
dc->caps.color.mpc.ogam_rom_caps.hlg = 0;
dc->caps.color.mpc.ocsc = 1;
+ dc->config.use_old_fixed_vs_sequence = true;
+
/* Use pipe context based otg sync logic */
dc->config.use_pipe_ctx_sync_logic = true;
diff --git a/drivers/gpu/drm/amd/display/dc/dcn314/dcn314_dccg.c b/drivers/gpu/drm/amd/display/dc/dcn314/dcn314_dccg.c
index 1bd7e0f327d8..de7bfba2c179 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn314/dcn314_dccg.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn314/dcn314_dccg.c
@@ -96,8 +96,15 @@ static void dccg314_set_pixel_rate_div(
struct dcn_dccg *dccg_dcn = TO_DCN_DCCG(dccg);
enum pixel_rate_div cur_k1 = PIXEL_RATE_DIV_NA, cur_k2 = PIXEL_RATE_DIV_NA;
+ // Don't program 0xF into the register field. Not valid since
+ // K1 / K2 field is only 1 / 2 bits wide
+ if (k1 == PIXEL_RATE_DIV_NA || k2 == PIXEL_RATE_DIV_NA) {
+ BREAK_TO_DEBUGGER();
+ return;
+ }
+
dccg314_get_pixel_rate_div(dccg, otg_inst, &cur_k1, &cur_k2);
- if (k1 == PIXEL_RATE_DIV_NA || k2 == PIXEL_RATE_DIV_NA || (k1 == cur_k1 && k2 == cur_k2))
+ if (k1 == cur_k1 && k2 == cur_k2)
return;
switch (otg_inst) {
@@ -267,6 +274,32 @@ static void dccg314_set_dpstreamclk(
}
}
+static void dccg314_init(struct dccg *dccg)
+{
+ int otg_inst;
+
+ /* Set HPO stream encoder to use refclk to avoid case where PHY is
+ * disabled and SYMCLK32 for HPO SE is sourced from PHYD32CLK which
+ * will cause DCN to hang.
+ */
+ for (otg_inst = 0; otg_inst < 4; otg_inst++)
+ dccg31_disable_symclk32_se(dccg, otg_inst);
+
+ if (dccg->ctx->dc->debug.root_clock_optimization.bits.symclk32_le)
+ for (otg_inst = 0; otg_inst < 2; otg_inst++)
+ dccg31_disable_symclk32_le(dccg, otg_inst);
+
+ if (dccg->ctx->dc->debug.root_clock_optimization.bits.dpstream)
+ for (otg_inst = 0; otg_inst < 4; otg_inst++)
+ dccg314_set_dpstreamclk(dccg, REFCLK, otg_inst,
+ otg_inst);
+
+ if (dccg->ctx->dc->debug.root_clock_optimization.bits.physymclk)
+ for (otg_inst = 0; otg_inst < 5; otg_inst++)
+ dccg31_set_physymclk(dccg, otg_inst,
+ PHYSYMCLK_FORCE_SRC_SYMCLK, false);
+}
+
static void dccg314_set_valid_pixel_rate(
struct dccg *dccg,
int ref_dtbclk_khz,
@@ -282,10 +315,33 @@ static void dccg314_set_valid_pixel_rate(
dccg314_set_dtbclk_dto(dccg, &dto_params);
}
+static void dccg314_dpp_root_clock_control(
+ struct dccg *dccg,
+ unsigned int dpp_inst,
+ bool clock_on)
+{
+ struct dcn_dccg *dccg_dcn = TO_DCN_DCCG(dccg);
+
+ if (clock_on) {
+ /* turn off the DTO and leave phase/modulo at max */
+ REG_UPDATE(DPPCLK_DTO_CTRL, DPPCLK_DTO_ENABLE[dpp_inst], 0);
+ REG_SET_2(DPPCLK_DTO_PARAM[dpp_inst], 0,
+ DPPCLK0_DTO_PHASE, 0xFF,
+ DPPCLK0_DTO_MODULO, 0xFF);
+ } else {
+ /* turn on the DTO to generate a 0hz clock */
+ REG_UPDATE(DPPCLK_DTO_CTRL, DPPCLK_DTO_ENABLE[dpp_inst], 1);
+ REG_SET_2(DPPCLK_DTO_PARAM[dpp_inst], 0,
+ DPPCLK0_DTO_PHASE, 0,
+ DPPCLK0_DTO_MODULO, 1);
+ }
+}
+
static const struct dccg_funcs dccg314_funcs = {
.update_dpp_dto = dccg31_update_dpp_dto,
+ .dpp_root_clock_control = dccg314_dpp_root_clock_control,
.get_dccg_ref_freq = dccg31_get_dccg_ref_freq,
- .dccg_init = dccg31_init,
+ .dccg_init = dccg314_init,
.set_dpstreamclk = dccg314_set_dpstreamclk,
.enable_symclk32_se = dccg31_enable_symclk32_se,
.disable_symclk32_se = dccg31_disable_symclk32_se,
diff --git a/drivers/gpu/drm/amd/display/dc/dcn314/dcn314_dccg.h b/drivers/gpu/drm/amd/display/dc/dcn314/dcn314_dccg.h
index 6a35986307af..90687a9e8fdd 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn314/dcn314_dccg.h
+++ b/drivers/gpu/drm/amd/display/dc/dcn314/dcn314_dccg.h
@@ -68,6 +68,7 @@
SR(DSCCLK0_DTO_PARAM),\
SR(DSCCLK1_DTO_PARAM),\
SR(DSCCLK2_DTO_PARAM),\
+ SR(DSCCLK3_DTO_PARAM),\
SR(DSCCLK_DTO_CTRL),\
SR(DCCG_GATE_DISABLE_CNTL2),\
SR(DCCG_GATE_DISABLE_CNTL3),\
@@ -149,12 +150,20 @@
DCCG_SF(DSCCLK1_DTO_PARAM, DSCCLK1_DTO_MODULO, mask_sh),\
DCCG_SF(DSCCLK2_DTO_PARAM, DSCCLK2_DTO_PHASE, mask_sh),\
DCCG_SF(DSCCLK2_DTO_PARAM, DSCCLK2_DTO_MODULO, mask_sh),\
+ DCCG_SF(DSCCLK3_DTO_PARAM, DSCCLK3_DTO_PHASE, mask_sh),\
+ DCCG_SF(DSCCLK3_DTO_PARAM, DSCCLK3_DTO_MODULO, mask_sh),\
DCCG_SF(DCCG_GATE_DISABLE_CNTL3, SYMCLK32_ROOT_SE0_GATE_DISABLE, mask_sh),\
DCCG_SF(DCCG_GATE_DISABLE_CNTL3, SYMCLK32_ROOT_SE1_GATE_DISABLE, mask_sh),\
DCCG_SF(DCCG_GATE_DISABLE_CNTL3, SYMCLK32_ROOT_SE2_GATE_DISABLE, mask_sh),\
DCCG_SF(DCCG_GATE_DISABLE_CNTL3, SYMCLK32_ROOT_SE3_GATE_DISABLE, mask_sh),\
DCCG_SF(DCCG_GATE_DISABLE_CNTL3, SYMCLK32_ROOT_LE0_GATE_DISABLE, mask_sh),\
DCCG_SF(DCCG_GATE_DISABLE_CNTL3, SYMCLK32_ROOT_LE1_GATE_DISABLE, mask_sh),\
+ DCCG_SF(DCCG_GATE_DISABLE_CNTL3, SYMCLK32_SE0_GATE_DISABLE, mask_sh),\
+ DCCG_SF(DCCG_GATE_DISABLE_CNTL3, SYMCLK32_SE1_GATE_DISABLE, mask_sh),\
+ DCCG_SF(DCCG_GATE_DISABLE_CNTL3, SYMCLK32_SE2_GATE_DISABLE, mask_sh),\
+ DCCG_SF(DCCG_GATE_DISABLE_CNTL3, SYMCLK32_SE3_GATE_DISABLE, mask_sh),\
+ DCCG_SF(DCCG_GATE_DISABLE_CNTL3, SYMCLK32_LE0_GATE_DISABLE, mask_sh),\
+ DCCG_SF(DCCG_GATE_DISABLE_CNTL3, SYMCLK32_LE1_GATE_DISABLE, mask_sh),\
DCCG_SF(HDMISTREAMCLK0_DTO_PARAM, HDMISTREAMCLK0_DTO_PHASE, mask_sh),\
DCCG_SF(HDMISTREAMCLK0_DTO_PARAM, HDMISTREAMCLK0_DTO_MODULO, mask_sh)
@@ -178,6 +187,7 @@
DCCG_SF(DSCCLK_DTO_CTRL, DSCCLK0_DTO_ENABLE, mask_sh),\
DCCG_SF(DSCCLK_DTO_CTRL, DSCCLK1_DTO_ENABLE, mask_sh),\
DCCG_SF(DSCCLK_DTO_CTRL, DSCCLK2_DTO_ENABLE, mask_sh),\
+ DCCG_SF(DSCCLK_DTO_CTRL, DSCCLK3_DTO_ENABLE, mask_sh),\
DCCG_SF(DCCG_GATE_DISABLE_CNTL2, PHYASYMCLK_GATE_DISABLE, mask_sh),\
DCCG_SF(DCCG_GATE_DISABLE_CNTL2, PHYBSYMCLK_GATE_DISABLE, mask_sh),\
DCCG_SF(DCCG_GATE_DISABLE_CNTL2, PHYCSYMCLK_GATE_DISABLE, mask_sh),\
diff --git a/drivers/gpu/drm/amd/display/dc/dcn314/dcn314_dio_stream_encoder.c b/drivers/gpu/drm/amd/display/dc/dcn314/dcn314_dio_stream_encoder.c
index 38842f938bed..467509a65fa7 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn314/dcn314_dio_stream_encoder.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn314/dcn314_dio_stream_encoder.c
@@ -30,7 +30,7 @@
#include "dcn314_dio_stream_encoder.h"
#include "reg_helper.h"
#include "hw_shared.h"
-#include "inc/link_dpcd.h"
+#include "link.h"
#include "dpcd_defs.h"
#define DC_LOGGER \
@@ -278,10 +278,11 @@ static void enc314_stream_encoder_dp_blank(
struct dc_link *link,
struct stream_encoder *enc)
{
- /* New to DCN314 - disable the FIFO before VID stream disable. */
- enc314_disable_fifo(enc);
-
enc1_stream_encoder_dp_blank(link, enc);
+
+ /* Disable FIFO after the DP vid stream is disabled to avoid corruption. */
+ if (enc->ctx->dc->debug.dig_fifo_off_in_blank)
+ enc314_disable_fifo(enc);
}
static void enc314_stream_encoder_dp_unblank(
@@ -295,12 +296,14 @@ static void enc314_stream_encoder_dp_unblank(
uint32_t n_vid = 0x8000;
uint32_t m_vid;
uint32_t n_multiply = 0;
+ uint32_t pix_per_cycle = 0;
uint64_t m_vid_l = n_vid;
/* YCbCr 4:2:0 : Computed VID_M will be 2X the input rate */
if (is_two_pixels_per_containter(&param->timing) || param->opp_cnt > 1) {
/*this logic should be the same in get_pixel_clock_parameters() */
n_multiply = 1;
+ pix_per_cycle = 1;
}
/* M / N = Fstream / Flink
* m_vid / n_vid = pixel rate / link rate
@@ -328,6 +331,10 @@ static void enc314_stream_encoder_dp_unblank(
REG_UPDATE_2(DP_VID_TIMING,
DP_VID_M_N_GEN_EN, 1,
DP_VID_N_MUL, n_multiply);
+
+ REG_UPDATE(DP_PIXEL_FORMAT,
+ DP_PIXEL_PER_CYCLE_PROCESSING_MODE,
+ pix_per_cycle);
}
/* make sure stream is disabled before resetting steer fifo */
@@ -365,7 +372,7 @@ static void enc314_stream_encoder_dp_unblank(
*/
enc314_enable_fifo(enc);
- dp_source_sequence_trace(link, DPCD_SOURCE_SEQ_AFTER_ENABLE_DP_VID_STREAM);
+ link->dc->link_srv->dp_trace_source_sequence(link, DPCD_SOURCE_SEQ_AFTER_ENABLE_DP_VID_STREAM);
}
/* Set DSC-related configuration.
@@ -428,6 +435,8 @@ static const struct stream_encoder_funcs dcn314_str_enc_funcs = {
enc3_stream_encoder_update_hdmi_info_packets,
.stop_hdmi_info_packets =
enc3_stream_encoder_stop_hdmi_info_packets,
+ .update_dp_info_packets_sdp_line_num =
+ enc3_stream_encoder_update_dp_info_packets_sdp_line_num,
.update_dp_info_packets =
enc3_stream_encoder_update_dp_info_packets,
.stop_dp_info_packets =
diff --git a/drivers/gpu/drm/amd/display/dc/dcn314/dcn314_dio_stream_encoder.h b/drivers/gpu/drm/amd/display/dc/dcn314/dcn314_dio_stream_encoder.h
index 33dfdf8b4100..ed0772387903 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn314/dcn314_dio_stream_encoder.h
+++ b/drivers/gpu/drm/amd/display/dc/dcn314/dcn314_dio_stream_encoder.h
@@ -280,6 +280,10 @@ void enc3_stream_encoder_update_hdmi_info_packets(
void enc3_stream_encoder_stop_hdmi_info_packets(
struct stream_encoder *enc);
+void enc3_stream_encoder_update_dp_info_packets_sdp_line_num(
+ struct stream_encoder *enc,
+ struct encoder_info_frame *info_frame);
+
void enc3_stream_encoder_update_dp_info_packets(
struct stream_encoder *enc,
const struct encoder_info_frame *info_frame);
diff --git a/drivers/gpu/drm/amd/display/dc/dcn314/dcn314_hwseq.c b/drivers/gpu/drm/amd/display/dc/dcn314/dcn314_hwseq.c
index 588c1c71241f..cc3fe9cac5b5 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn314/dcn314_hwseq.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn314/dcn314_hwseq.c
@@ -46,9 +46,7 @@
#include "link_hwss.h"
#include "dpcd_defs.h"
#include "dce/dmub_outbox.h"
-#include "dc_link_dp.h"
-#include "inc/dc_link_dp.h"
-#include "inc/link_dpcd.h"
+#include "link.h"
#include "dcn10/dcn10_hw_sequencer.h"
#include "inc/link_enc_cfg.h"
#include "dcn30/dcn30_vpg.h"
@@ -348,10 +346,8 @@ unsigned int dcn314_calculate_dccg_k1_k2_values(struct pipe_ctx *pipe_ctx, unsig
two_pix_per_container = optc2_is_two_pixels_per_containter(&stream->timing);
odm_combine_factor = get_odm_config(pipe_ctx, NULL);
- if (pipe_ctx->stream->signal == SIGNAL_TYPE_VIRTUAL)
- return odm_combine_factor;
-
- if (is_dp_128b_132b_signal(pipe_ctx)) {
+ if (stream->ctx->dc->link_srv->dp_is_128b_132b_signal(pipe_ctx)) {
+ *k1_div = PIXEL_RATE_DIV_BY_1;
*k2_div = PIXEL_RATE_DIV_BY_1;
} else if (dc_is_hdmi_tmds_signal(pipe_ctx->stream->signal) || dc_is_dvi_signal(pipe_ctx->stream->signal)) {
*k1_div = PIXEL_RATE_DIV_BY_1;
@@ -359,7 +355,7 @@ unsigned int dcn314_calculate_dccg_k1_k2_values(struct pipe_ctx *pipe_ctx, unsig
*k2_div = PIXEL_RATE_DIV_BY_2;
else
*k2_div = PIXEL_RATE_DIV_BY_4;
- } else if (dc_is_dp_signal(pipe_ctx->stream->signal)) {
+ } else if (dc_is_dp_signal(pipe_ctx->stream->signal) || dc_is_virtual_signal(pipe_ctx->stream->signal)) {
if (two_pix_per_container) {
*k1_div = PIXEL_RATE_DIV_BY_1;
*k2_div = PIXEL_RATE_DIV_BY_2;
@@ -393,3 +389,102 @@ void dcn314_set_pixels_per_cycle(struct pipe_ctx *pipe_ctx)
pipe_ctx->stream_res.stream_enc->funcs->set_input_mode(pipe_ctx->stream_res.stream_enc,
pix_per_cycle);
}
+
+void dcn314_dpp_root_clock_control(struct dce_hwseq *hws, unsigned int dpp_inst, bool clock_on)
+{
+ if (!hws->ctx->dc->debug.root_clock_optimization.bits.dpp)
+ return;
+
+ if (hws->ctx->dc->res_pool->dccg->funcs->dpp_root_clock_control)
+ hws->ctx->dc->res_pool->dccg->funcs->dpp_root_clock_control(
+ hws->ctx->dc->res_pool->dccg, dpp_inst, clock_on);
+}
+
+void dcn314_hubp_pg_control(struct dce_hwseq *hws, unsigned int hubp_inst, bool power_on)
+{
+ struct dc_context *ctx = hws->ctx;
+ union dmub_rb_cmd cmd;
+
+ if (hws->ctx->dc->debug.disable_hubp_power_gate)
+ return;
+
+ PERF_TRACE();
+
+ memset(&cmd, 0, sizeof(cmd));
+ cmd.domain_control.header.type = DMUB_CMD__VBIOS;
+ cmd.domain_control.header.sub_type = DMUB_CMD__VBIOS_DOMAIN_CONTROL;
+ cmd.domain_control.header.payload_bytes = sizeof(cmd.domain_control.data);
+ cmd.domain_control.data.inst = hubp_inst;
+ cmd.domain_control.data.power_gate = !power_on;
+
+ dc_dmub_srv_cmd_queue(ctx->dmub_srv, &cmd);
+ dc_dmub_srv_cmd_execute(ctx->dmub_srv);
+ dc_dmub_srv_wait_idle(ctx->dmub_srv);
+
+ PERF_TRACE();
+}
+static void apply_symclk_on_tx_off_wa(struct dc_link *link)
+{
+ /* There are use cases where SYMCLK is referenced by OTG. For instance
+ * for TMDS signal, OTG relies SYMCLK even if TX video output is off.
+ * However current link interface will power off PHY when disabling link
+ * output. This will turn off SYMCLK generated by PHY. The workaround is
+ * to identify such case where SYMCLK is still in use by OTG when we
+ * power off PHY. When this is detected, we will temporarily power PHY
+ * back on and move PHY's SYMCLK state to SYMCLK_ON_TX_OFF by calling
+ * program_pix_clk interface. When OTG is disabled, we will then power
+ * off PHY by calling disable link output again.
+ *
+ * In future dcn generations, we plan to rework transmitter control
+ * interface so that we could have an option to set SYMCLK ON TX OFF
+ * state in one step without this workaround
+ */
+
+ struct dc *dc = link->ctx->dc;
+ struct pipe_ctx *pipe_ctx = NULL;
+ uint8_t i;
+
+ if (link->phy_state.symclk_ref_cnts.otg > 0) {
+ for (i = 0; i < MAX_PIPES; i++) {
+ pipe_ctx = &dc->current_state->res_ctx.pipe_ctx[i];
+ if (pipe_ctx->stream && pipe_ctx->stream->link == link && pipe_ctx->top_pipe == NULL) {
+ pipe_ctx->clock_source->funcs->program_pix_clk(
+ pipe_ctx->clock_source,
+ &pipe_ctx->stream_res.pix_clk_params,
+ dc->link_srv->dp_get_encoding_format(
+ &pipe_ctx->link_config.dp_link_settings),
+ &pipe_ctx->pll_settings);
+ link->phy_state.symclk_state = SYMCLK_ON_TX_OFF;
+ break;
+ }
+ }
+ }
+}
+
+void dcn314_disable_link_output(struct dc_link *link,
+ const struct link_resource *link_res,
+ enum signal_type signal)
+{
+ struct dc *dc = link->ctx->dc;
+ const struct link_hwss *link_hwss = get_link_hwss(link, link_res);
+ struct dmcu *dmcu = dc->res_pool->dmcu;
+
+ if (signal == SIGNAL_TYPE_EDP &&
+ link->dc->hwss.edp_backlight_control)
+ link->dc->hwss.edp_backlight_control(link, false);
+ else if (dmcu != NULL && dmcu->funcs->lock_phy)
+ dmcu->funcs->lock_phy(dmcu);
+
+ link_hwss->disable_link_output(link, link_res, signal);
+ link->phy_state.symclk_state = SYMCLK_OFF_TX_OFF;
+ /*
+ * Add the logic to extract BOTH power up and power down sequences
+ * from enable/disable link output and only call edp panel control
+ * in enable_link_dp and disable_link_dp once.
+ */
+ if (dmcu != NULL && dmcu->funcs->lock_phy)
+ dmcu->funcs->unlock_phy(dmcu);
+ dc->link_srv->dp_trace_source_sequence(link, DPCD_SOURCE_SEQ_AFTER_DISABLE_LINK_PHY);
+
+ apply_symclk_on_tx_off_wa(link);
+}
diff --git a/drivers/gpu/drm/amd/display/dc/dcn314/dcn314_hwseq.h b/drivers/gpu/drm/amd/display/dc/dcn314/dcn314_hwseq.h
index 244280298212..6d0b62503caa 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn314/dcn314_hwseq.h
+++ b/drivers/gpu/drm/amd/display/dc/dcn314/dcn314_hwseq.h
@@ -41,4 +41,10 @@ unsigned int dcn314_calculate_dccg_k1_k2_values(struct pipe_ctx *pipe_ctx, unsig
void dcn314_set_pixels_per_cycle(struct pipe_ctx *pipe_ctx);
+void dcn314_hubp_pg_control(struct dce_hwseq *hws, unsigned int hubp_inst, bool power_on);
+
+void dcn314_dpp_root_clock_control(struct dce_hwseq *hws, unsigned int dpp_inst, bool clock_on);
+
+void dcn314_disable_link_output(struct dc_link *link, const struct link_resource *link_res, enum signal_type signal);
+
#endif /* __DC_HWSS_DCN314_H__ */
diff --git a/drivers/gpu/drm/amd/display/dc/dcn314/dcn314_init.c b/drivers/gpu/drm/amd/display/dc/dcn314/dcn314_init.c
index 5b6c2d94ec71..a588f46b166f 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn314/dcn314_init.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn314/dcn314_init.c
@@ -105,7 +105,7 @@ static const struct hw_sequencer_funcs dcn314_funcs = {
.enable_lvds_link_output = dce110_enable_lvds_link_output,
.enable_tmds_link_output = dce110_enable_tmds_link_output,
.enable_dp_link_output = dce110_enable_dp_link_output,
- .disable_link_output = dce110_disable_link_output,
+ .disable_link_output = dcn314_disable_link_output,
.z10_restore = dcn31_z10_restore,
.z10_save_init = dcn31_z10_save_init,
.set_disp_pattern_generator = dcn30_set_disp_pattern_generator,
@@ -137,7 +137,8 @@ static const struct hwseq_private_funcs dcn314_private_funcs = {
.plane_atomic_disable = dcn20_plane_atomic_disable,
.plane_atomic_power_down = dcn10_plane_atomic_power_down,
.enable_power_gating_plane = dcn314_enable_power_gating_plane,
- .hubp_pg_control = dcn31_hubp_pg_control,
+ .dpp_root_clock_control = dcn314_dpp_root_clock_control,
+ .hubp_pg_control = dcn314_hubp_pg_control,
.program_all_writeback_pipes_in_tree = dcn30_program_all_writeback_pipes_in_tree,
.update_odm = dcn314_update_odm,
.dsc_pg_control = dcn314_dsc_pg_control,
diff --git a/drivers/gpu/drm/amd/display/dc/dcn314/dcn314_optc.c b/drivers/gpu/drm/amd/display/dc/dcn314/dcn314_optc.c
index 47eb162f1a75..0086cafb0f7a 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn314/dcn314_optc.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn314/dcn314_optc.c
@@ -237,12 +237,10 @@ static struct timing_generator_funcs dcn314_tg_funcs = {
.clear_optc_underflow = optc1_clear_optc_underflow,
.setup_global_swap_lock = NULL,
.get_crc = optc1_get_crc,
- .configure_crc = optc2_configure_crc,
+ .configure_crc = optc1_configure_crc,
.set_dsc_config = optc3_set_dsc_config,
.get_dsc_status = optc2_get_dsc_status,
.set_dwb_source = NULL,
- .set_odm_bypass = optc3_set_odm_bypass,
- .set_odm_combine = optc314_set_odm_combine,
.get_optc_source = optc2_get_optc_source,
.set_out_mux = optc3_set_out_mux,
.set_drr_trigger_window = optc3_set_drr_trigger_window,
diff --git a/drivers/gpu/drm/amd/display/dc/dcn314/dcn314_resource.c b/drivers/gpu/drm/amd/display/dc/dcn314/dcn314_resource.c
index 9066c511a052..abeeede38fb3 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn314/dcn314_resource.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn314/dcn314_resource.c
@@ -184,6 +184,9 @@ enum dcn31_clk_src_array_id {
.reg_name[id] = BASE(reg ## block ## id ## _ ## temp_name ## _BASE_IDX) + \
reg ## block ## id ## _ ## temp_name
+#define SF_DWB2(reg_name, block, id, field_name, post_fix) \
+ .field_name = reg_name ## __ ## field_name ## post_fix
+
#define DCCG_SRII(reg_name, block, id)\
.block ## _ ## reg_name[id] = BASE(reg ## block ## id ## _ ## reg_name ## _BASE_IDX) + \
reg ## block ## id ## _ ## reg_name
@@ -852,8 +855,6 @@ static const struct resource_caps res_cap_dcn314 = {
static const struct dc_plane_cap plane_cap = {
.type = DC_PLANE_TYPE_DCN_UNIVERSAL,
- .blends_with_above = true,
- .blends_with_below = true,
.per_pixel_alpha = true,
.pixel_format_support = {
@@ -871,8 +872,9 @@ static const struct dc_plane_cap plane_cap = {
},
// 6:1 downscaling ratio: 1000/6 = 166.666
+ // 4:1 downscaling ratio for ARGB888 to prevent underflow during P010 playback: 1000/4 = 250
.max_downscale_factor = {
- .argb8888 = 167,
+ .argb8888 = 250,
.nv12 = 167,
.fp16 = 167
},
@@ -883,10 +885,14 @@ static const struct dc_plane_cap plane_cap = {
static const struct dc_debug_options debug_defaults_drv = {
.disable_z10 = false,
.enable_z9_disable_interface = true,
+ .minimum_z8_residency_time = 2000,
+ .psr_skip_crtc_disable = true,
.disable_dmcu = true,
.force_abm_enable = false,
.timing_trace = false,
.clock_trace = true,
+ .disable_dpp_power_gate = true,
+ .disable_hubp_power_gate = true,
.disable_pplib_clock_request = false,
.pipe_split_policy = MPC_SPLIT_DYNAMIC,
.force_single_disp_pipe_split = false,
@@ -896,7 +902,7 @@ static const struct dc_debug_options debug_defaults_drv = {
.max_downscale_src_width = 4096,/*upto true 4k*/
.disable_pplib_wm_range = false,
.scl_reset_length10 = true,
- .sanity_checks = false,
+ .sanity_checks = true,
.underflow_assert_delay_us = 0xFFFFFFFF,
.dwb_fi_phase = -1, // -1 = disable,
.dmub_command_table = true,
@@ -937,6 +943,10 @@ static const struct dc_debug_options debug_defaults_diags = {
};
static const struct dc_panel_config panel_config_defaults = {
+ .psr = {
+ .disable_psr = false,
+ .disallow_psrsu = false,
+ },
.ilr = {
.optimize_edp_link_rate = true,
},
@@ -1686,6 +1696,81 @@ static void dcn314_get_panel_config_defaults(struct dc_panel_config *panel_confi
*panel_config = panel_config_defaults;
}
+static bool filter_modes_for_single_channel_workaround(struct dc *dc,
+ struct dc_state *context)
+{
+ // Filter 2K@240Hz+8K@24fps above combination timing if memory only has single dimm LPDDR
+ if (dc->clk_mgr->bw_params->vram_type == 34 && dc->clk_mgr->bw_params->num_channels < 2) {
+ int total_phy_pix_clk = 0;
+
+ for (int i = 0; i < context->stream_count; i++)
+ if (context->res_ctx.pipe_ctx[i].stream)
+ total_phy_pix_clk += context->res_ctx.pipe_ctx[i].stream->phy_pix_clk;
+
+ if (total_phy_pix_clk >= (1148928+826260)) //2K@240Hz+8K@24fps
+ return true;
+ }
+ return false;
+}
+
+bool dcn314_validate_bandwidth(struct dc *dc,
+ struct dc_state *context,
+ bool fast_validate)
+{
+ bool out = false;
+
+ BW_VAL_TRACE_SETUP();
+
+ int vlevel = 0;
+ int pipe_cnt = 0;
+ display_e2e_pipe_params_st *pipes = kzalloc(dc->res_pool->pipe_count * sizeof(display_e2e_pipe_params_st), GFP_KERNEL);
+ DC_LOGGER_INIT(dc->ctx->logger);
+
+ BW_VAL_TRACE_COUNT();
+
+ if (filter_modes_for_single_channel_workaround(dc, context))
+ goto validate_fail;
+
+ DC_FP_START();
+ // do not support self refresh only
+ out = dcn30_internal_validate_bw(dc, context, pipes, &pipe_cnt, &vlevel, fast_validate, false);
+ DC_FP_END();
+
+ // Disable fast_validate to set min dcfclk in calculate_wm_and_dlg
+ if (pipe_cnt == 0)
+ fast_validate = false;
+
+ if (!out)
+ goto validate_fail;
+
+ BW_VAL_TRACE_END_VOLTAGE_LEVEL();
+
+ if (fast_validate) {
+ BW_VAL_TRACE_SKIP(fast);
+ goto validate_out;
+ }
+
+ dc->res_pool->funcs->calculate_wm_and_dlg(dc, context, pipes, pipe_cnt, vlevel);
+
+ BW_VAL_TRACE_END_WATERMARKS();
+
+ goto validate_out;
+
+validate_fail:
+ DC_LOG_WARNING("Mode Validation Warning: %s failed validation.\n",
+ dml_get_status_message(context->bw_ctx.dml.vba.ValidationStatus[context->bw_ctx.dml.vba.soc.num_states]));
+
+ BW_VAL_TRACE_SKIP(fail);
+ out = false;
+
+validate_out:
+ kfree(pipes);
+
+ BW_VAL_TRACE_FINISH();
+
+ return out;
+}
+
static struct resource_funcs dcn314_res_pool_funcs = {
.destroy = dcn314_destroy_resource_pool,
.link_enc_create = dcn31_link_encoder_create,
@@ -1693,7 +1778,7 @@ static struct resource_funcs dcn314_res_pool_funcs = {
.link_encs_assign = link_enc_cfg_link_encs_assign,
.link_enc_unassign = link_enc_cfg_link_enc_unassign,
.panel_cntl_create = dcn31_panel_cntl_create,
- .validate_bandwidth = dcn31_validate_bandwidth,
+ .validate_bandwidth = dcn314_validate_bandwidth,
.calculate_wm_and_dlg = dcn31_calculate_wm_and_dlg,
.update_soc_for_wm_a = dcn31_update_soc_for_wm_a,
.populate_dml_pipes = dcn314_populate_dml_pipes_from_context,
@@ -1755,7 +1840,7 @@ static bool dcn314_resource_construct(
pool->base.underlay_pipe_index = NO_UNDERLAY_PIPE;
pool->base.pipe_count = pool->base.res_cap->num_timing_generator;
pool->base.mpcc_count = pool->base.res_cap->num_timing_generator;
- dc->caps.max_downscale_ratio = 600;
+ dc->caps.max_downscale_ratio = 400;
dc->caps.i2c_speed_in_khz = 100;
dc->caps.i2c_speed_in_khz_hdcp = 100;
dc->caps.max_cursor_size = 256;
@@ -1766,6 +1851,8 @@ static bool dcn314_resource_construct(
dc->caps.max_slave_rgb_planes = 2;
dc->caps.post_blend_color_processing = true;
dc->caps.force_dp_tps4_for_cp2520 = true;
+ if (dc->config.forceHBR2CP2520)
+ dc->caps.force_dp_tps4_for_cp2520 = false;
dc->caps.dp_hpo = true;
dc->caps.dp_hdmi21_pcon_support = true;
dc->caps.edp_dsc_support = true;
diff --git a/drivers/gpu/drm/amd/display/dc/dcn314/dcn314_resource.h b/drivers/gpu/drm/amd/display/dc/dcn314/dcn314_resource.h
index 0dd3153aa5c1..49ffe71018df 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn314/dcn314_resource.h
+++ b/drivers/gpu/drm/amd/display/dc/dcn314/dcn314_resource.h
@@ -39,6 +39,10 @@ struct dcn314_resource_pool {
struct resource_pool base;
};
+bool dcn314_validate_bandwidth(struct dc *dc,
+ struct dc_state *context,
+ bool fast_validate);
+
struct resource_pool *dcn314_create_resource_pool(
const struct dc_init_data *init_data,
struct dc *dc);
diff --git a/drivers/gpu/drm/amd/display/dc/dcn315/dcn315_resource.c b/drivers/gpu/drm/amd/display/dc/dcn315/dcn315_resource.c
index 58746c437554..41c972c8eb19 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn315/dcn315_resource.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn315/dcn315_resource.c
@@ -151,8 +151,6 @@ enum dcn31_clk_src_array_id {
*/
/* DCN */
-/* TODO awful hack. fixup dcn20_dwb.h */
-#undef BASE_INNER
#define BASE_INNER(seg) DCN_BASE__INST0_SEG ## seg
#define BASE(seg) BASE_INNER(seg)
@@ -185,6 +183,9 @@ enum dcn31_clk_src_array_id {
.reg_name[id] = BASE(reg ## block ## id ## _ ## temp_name ## _BASE_IDX) + \
reg ## block ## id ## _ ## temp_name
+#define SF_DWB2(reg_name, block, id, field_name, post_fix) \
+ .field_name = reg_name ## __ ## field_name ## post_fix
+
#define DCCG_SRII(reg_name, block, id)\
.block ## _ ## reg_name[id] = BASE(reg ## block ## id ## _ ## reg_name ## _BASE_IDX) + \
reg ## block ## id ## _ ## reg_name
@@ -823,8 +824,6 @@ static const struct resource_caps res_cap_dcn31 = {
static const struct dc_plane_cap plane_cap = {
.type = DC_PLANE_TYPE_DCN_UNIVERSAL,
- .blends_with_above = true,
- .blends_with_below = true,
.per_pixel_alpha = true,
.pixel_format_support = {
@@ -907,6 +906,10 @@ static const struct dc_debug_options debug_defaults_diags = {
};
static const struct dc_panel_config panel_config_defaults = {
+ .psr = {
+ .disable_psr = false,
+ .disallow_psrsu = false,
+ },
.ilr = {
.optimize_edp_link_rate = true,
},
@@ -1623,6 +1626,7 @@ static struct clock_source *dcn31_clock_source_create(
return &clk_src->base;
}
+ kfree(clk_src);
BREAK_TO_DEBUGGER();
return NULL;
}
@@ -1643,7 +1647,7 @@ static int dcn315_populate_dml_pipes_from_context(
const int max_usable_det = context->bw_ctx.dml.ip.config_return_buffer_size_in_kbytes - DCN3_15_MIN_COMPBUF_SIZE_KB;
DC_FP_START();
- dcn20_populate_dml_pipes_from_context(dc, context, pipes, fast_validate);
+ dcn31x_populate_dml_pipes_from_context(dc, context, pipes, fast_validate);
DC_FP_END();
for (i = 0, pipe_cnt = 0; i < dc->res_pool->pipe_count; i++) {
@@ -1662,7 +1666,6 @@ static int dcn315_populate_dml_pipes_from_context(
pipes[pipe_cnt].pipe.src.immediate_flip = true;
pipes[pipe_cnt].pipe.src.unbounded_req_mode = false;
- pipes[pipe_cnt].pipe.src.gpuvm = true;
pipes[pipe_cnt].pipe.dest.vfront_porch = timing->v_front_porch;
pipes[pipe_cnt].pipe.src.dcc_rate = 3;
pipes[pipe_cnt].dout.dsc_input_bpc = 0;
@@ -1703,7 +1706,9 @@ static int dcn315_populate_dml_pipes_from_context(
dc->config.enable_4to1MPC = true;
context->bw_ctx.dml.ip.det_buffer_size_kbytes =
(max_usable_det / DCN3_15_CRB_SEGMENT_SIZE_KB / 4) * DCN3_15_CRB_SEGMENT_SIZE_KB;
- } else if (!is_dual_plane(pipe->plane_state->format) && pipe->plane_state->src_rect.width <= 5120) {
+ } else if (!is_dual_plane(pipe->plane_state->format)
+ && pipe->plane_state->src_rect.width <= 5120
+ && pipe->stream->timing.pix_clk_100hz < dcn_get_max_non_odm_pix_rate_100hz(&dc->dml.soc)) {
/* Limit to 5k max to avoid forced pipe split when there is not enough detile for swath */
context->bw_ctx.dml.ip.det_buffer_size_kbytes = 192;
pipes[0].pipe.src.unbounded_req_mode = true;
@@ -1779,6 +1784,8 @@ static bool dcn315_resource_construct(
dc->caps.max_slave_rgb_planes = 2;
dc->caps.post_blend_color_processing = true;
dc->caps.force_dp_tps4_for_cp2520 = true;
+ if (dc->config.forceHBR2CP2520)
+ dc->caps.force_dp_tps4_for_cp2520 = false;
dc->caps.dp_hpo = true;
dc->caps.dp_hdmi21_pcon_support = true;
dc->caps.edp_dsc_support = true;
diff --git a/drivers/gpu/drm/amd/display/dc/dcn316/dcn316_resource.c b/drivers/gpu/drm/amd/display/dc/dcn316/dcn316_resource.c
index 6b40a11ac83a..9ead347a33e9 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn316/dcn316_resource.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn316/dcn316_resource.c
@@ -142,8 +142,6 @@ enum dcn31_clk_src_array_id {
*/
/* DCN */
-/* TODO awful hack. fixup dcn20_dwb.h */
-#undef BASE_INNER
#define BASE_INNER(seg) DCN_BASE__INST0_SEG ## seg
#define BASE(seg) BASE_INNER(seg)
@@ -176,6 +174,9 @@ enum dcn31_clk_src_array_id {
.reg_name[id] = BASE(reg ## block ## id ## _ ## temp_name ## _BASE_IDX) + \
reg ## block ## id ## _ ## temp_name
+#define SF_DWB2(reg_name, block, id, field_name, post_fix) \
+ .field_name = reg_name ## __ ## field_name ## post_fix
+
#define DCCG_SRII(reg_name, block, id)\
.block ## _ ## reg_name[id] = BASE(reg ## block ## id ## _ ## reg_name ## _BASE_IDX) + \
reg ## block ## id ## _ ## reg_name
@@ -823,8 +824,6 @@ static const struct resource_caps res_cap_dcn31 = {
static const struct dc_plane_cap plane_cap = {
.type = DC_PLANE_TYPE_DCN_UNIVERSAL,
- .blends_with_above = true,
- .blends_with_below = true,
.per_pixel_alpha = true,
.pixel_format_support = {
@@ -906,6 +905,10 @@ static const struct dc_debug_options debug_defaults_diags = {
};
static const struct dc_panel_config panel_config_defaults = {
+ .psr = {
+ .disable_psr = false,
+ .disallow_psrsu = false,
+ },
.ilr = {
.optimize_edp_link_rate = true,
},
@@ -1646,7 +1649,7 @@ static int dcn316_populate_dml_pipes_from_context(
const int max_usable_det = context->bw_ctx.dml.ip.config_return_buffer_size_in_kbytes - DCN3_16_MIN_COMPBUF_SIZE_KB;
DC_FP_START();
- dcn20_populate_dml_pipes_from_context(dc, context, pipes, fast_validate);
+ dcn31x_populate_dml_pipes_from_context(dc, context, pipes, fast_validate);
DC_FP_END();
for (i = 0, pipe_cnt = 0; i < dc->res_pool->pipe_count; i++) {
@@ -1665,7 +1668,6 @@ static int dcn316_populate_dml_pipes_from_context(
pipes[pipe_cnt].pipe.src.immediate_flip = true;
pipes[pipe_cnt].pipe.src.unbounded_req_mode = false;
- pipes[pipe_cnt].pipe.src.gpuvm = true;
pipes[pipe_cnt].pipe.dest.vfront_porch = timing->v_front_porch;
pipes[pipe_cnt].pipe.src.dcc_rate = 3;
pipes[pipe_cnt].dout.dsc_input_bpc = 0;
@@ -1772,7 +1774,7 @@ static bool dcn316_resource_construct(
pool->base.mpcc_count = pool->base.res_cap->num_timing_generator;
dc->caps.max_downscale_ratio = 600;
dc->caps.i2c_speed_in_khz = 100;
- dc->caps.i2c_speed_in_khz_hdcp = 100;
+ dc->caps.i2c_speed_in_khz_hdcp = 5; /*1.5 w/a applied by default*/
dc->caps.max_cursor_size = 256;
dc->caps.min_horizontal_blanking_period = 80;
dc->caps.dmdata_alloc_size = 2048;
@@ -1781,6 +1783,8 @@ static bool dcn316_resource_construct(
dc->caps.max_slave_rgb_planes = 2;
dc->caps.post_blend_color_processing = true;
dc->caps.force_dp_tps4_for_cp2520 = true;
+ if (dc->config.forceHBR2CP2520)
+ dc->caps.force_dp_tps4_for_cp2520 = false;
dc->caps.dp_hpo = true;
dc->caps.dp_hdmi21_pcon_support = true;
dc->caps.edp_dsc_support = true;
diff --git a/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_dccg.c b/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_dccg.c
index e4daed44ef5f..ffbb739d85b6 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_dccg.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_dccg.c
@@ -42,6 +42,20 @@
#define DC_LOGGER \
dccg->ctx->logger
+/* This function is a workaround for writing to OTG_PIXEL_RATE_DIV
+ * without the probability of causing a DIG FIFO error.
+ */
+static void dccg32_wait_for_dentist_change_done(
+ struct dccg *dccg)
+{
+ struct dcn_dccg *dccg_dcn = TO_DCN_DCCG(dccg);
+
+ uint32_t dentist_dispclk_value = REG_READ(DENTIST_DISPCLK_CNTL);
+
+ REG_WRITE(DENTIST_DISPCLK_CNTL, dentist_dispclk_value);
+ REG_WAIT(DENTIST_DISPCLK_CNTL, DENTIST_DISPCLK_CHG_DONE, 1, 50, 2000);
+}
+
static void dccg32_get_pixel_rate_div(
struct dccg *dccg,
uint32_t otg_inst,
@@ -96,8 +110,10 @@ static void dccg32_set_pixel_rate_div(
// Don't program 0xF into the register field. Not valid since
// K1 / K2 field is only 1 / 2 bits wide
- if (k1 == PIXEL_RATE_DIV_NA || k2 == PIXEL_RATE_DIV_NA)
+ if (k1 == PIXEL_RATE_DIV_NA || k2 == PIXEL_RATE_DIV_NA) {
+ BREAK_TO_DEBUGGER();
return;
+ }
dccg32_get_pixel_rate_div(dccg, otg_inst, &cur_k1, &cur_k2);
if (k1 == cur_k1 && k2 == cur_k2)
@@ -108,21 +124,29 @@ static void dccg32_set_pixel_rate_div(
REG_UPDATE_2(OTG_PIXEL_RATE_DIV,
OTG0_PIXEL_RATE_DIVK1, k1,
OTG0_PIXEL_RATE_DIVK2, k2);
+
+ dccg32_wait_for_dentist_change_done(dccg);
break;
case 1:
REG_UPDATE_2(OTG_PIXEL_RATE_DIV,
OTG1_PIXEL_RATE_DIVK1, k1,
OTG1_PIXEL_RATE_DIVK2, k2);
+
+ dccg32_wait_for_dentist_change_done(dccg);
break;
case 2:
REG_UPDATE_2(OTG_PIXEL_RATE_DIV,
OTG2_PIXEL_RATE_DIVK1, k1,
OTG2_PIXEL_RATE_DIVK2, k2);
+
+ dccg32_wait_for_dentist_change_done(dccg);
break;
case 3:
REG_UPDATE_2(OTG_PIXEL_RATE_DIV,
OTG3_PIXEL_RATE_DIVK1, k1,
OTG3_PIXEL_RATE_DIVK2, k2);
+
+ dccg32_wait_for_dentist_change_done(dccg);
break;
default:
BREAK_TO_DEBUGGER();
@@ -223,11 +247,7 @@ static void dccg32_set_dtbclk_dto(
} else {
REG_UPDATE_2(OTG_PIXEL_RATE_CNTL[params->otg_inst],
DTBCLK_DTO_ENABLE[params->otg_inst], 0,
- PIPE_DTO_SRC_SEL[params->otg_inst], 1);
- if (params->is_hdmi)
- REG_UPDATE(OTG_PIXEL_RATE_CNTL[params->otg_inst],
- PIPE_DTO_SRC_SEL[params->otg_inst], 0);
-
+ PIPE_DTO_SRC_SEL[params->otg_inst], params->is_hdmi ? 0 : 1);
REG_WRITE(DTBCLK_DTO_MODULO[params->otg_inst], 0);
REG_WRITE(DTBCLK_DTO_PHASE[params->otg_inst], 0);
}
@@ -273,8 +293,7 @@ static void dccg32_set_dpstreamclk(
dccg32_set_dtbclk_p_src(dccg, src, otg_inst);
/* enabled to select one of the DTBCLKs for pipe */
- switch (otg_inst)
- {
+ switch (dp_hpo_inst) {
case 0:
REG_UPDATE_2(DPSTREAMCLK_CNTL,
DPSTREAMCLK0_EN,
diff --git a/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_dccg.h b/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_dccg.h
index 1c46fad0977b..8071ab98d708 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_dccg.h
+++ b/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_dccg.h
@@ -31,42 +31,6 @@
#define DCCG_SFII(block, reg_name, field_prefix, field_name, inst, post_fix)\
.field_prefix ## _ ## field_name[inst] = block ## inst ## _ ## reg_name ## __ ## field_prefix ## inst ## _ ## field_name ## post_fix
-
-#define DCCG_REG_LIST_DCN32() \
- SR(DPPCLK_DTO_CTRL),\
- DCCG_SRII(DTO_PARAM, DPPCLK, 0),\
- DCCG_SRII(DTO_PARAM, DPPCLK, 1),\
- DCCG_SRII(DTO_PARAM, DPPCLK, 2),\
- DCCG_SRII(DTO_PARAM, DPPCLK, 3),\
- DCCG_SRII(CLOCK_CNTL, HDMICHARCLK, 0),\
- SR(PHYASYMCLK_CLOCK_CNTL),\
- SR(PHYBSYMCLK_CLOCK_CNTL),\
- SR(PHYCSYMCLK_CLOCK_CNTL),\
- SR(PHYDSYMCLK_CLOCK_CNTL),\
- SR(PHYESYMCLK_CLOCK_CNTL),\
- SR(DPSTREAMCLK_CNTL),\
- SR(HDMISTREAMCLK_CNTL),\
- SR(SYMCLK32_SE_CNTL),\
- SR(SYMCLK32_LE_CNTL),\
- DCCG_SRII(PIXEL_RATE_CNTL, OTG, 0),\
- DCCG_SRII(PIXEL_RATE_CNTL, OTG, 1),\
- DCCG_SRII(PIXEL_RATE_CNTL, OTG, 2),\
- DCCG_SRII(PIXEL_RATE_CNTL, OTG, 3),\
- DCCG_SRII(MODULO, DTBCLK_DTO, 0),\
- DCCG_SRII(MODULO, DTBCLK_DTO, 1),\
- DCCG_SRII(MODULO, DTBCLK_DTO, 2),\
- DCCG_SRII(MODULO, DTBCLK_DTO, 3),\
- DCCG_SRII(PHASE, DTBCLK_DTO, 0),\
- DCCG_SRII(PHASE, DTBCLK_DTO, 1),\
- DCCG_SRII(PHASE, DTBCLK_DTO, 2),\
- DCCG_SRII(PHASE, DTBCLK_DTO, 3),\
- SR(DCCG_AUDIO_DTBCLK_DTO_MODULO),\
- SR(DCCG_AUDIO_DTBCLK_DTO_PHASE),\
- SR(OTG_PIXEL_RATE_DIV),\
- SR(DTBCLK_P_CNTL),\
- SR(DCCG_AUDIO_DTO_SOURCE)
-
-
#define DCCG_MASK_SH_LIST_DCN32(mask_sh) \
DCCG_SFI(DPPCLK_DTO_CTRL, DTO_ENABLE, DPPCLK, 0, mask_sh),\
DCCG_SFI(DPPCLK_DTO_CTRL, DTO_DB_EN, DPPCLK, 0, mask_sh),\
@@ -147,7 +111,8 @@
DCCG_SF(DTBCLK_P_CNTL, DTBCLK_P3_SRC_SEL, mask_sh),\
DCCG_SF(DTBCLK_P_CNTL, DTBCLK_P3_EN, mask_sh),\
DCCG_SF(DCCG_AUDIO_DTO_SOURCE, DCCG_AUDIO_DTO_SEL, mask_sh),\
- DCCG_SF(DCCG_AUDIO_DTO_SOURCE, DCCG_AUDIO_DTO0_SOURCE_SEL, mask_sh)
+ DCCG_SF(DCCG_AUDIO_DTO_SOURCE, DCCG_AUDIO_DTO0_SOURCE_SEL, mask_sh),\
+ DCCG_SF(DENTIST_DISPCLK_CNTL, DENTIST_DISPCLK_CHG_DONE, mask_sh)
struct dccg *dccg32_create(
diff --git a/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_dio_link_encoder.c b/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_dio_link_encoder.c
index 076969d928af..501388014855 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_dio_link_encoder.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_dio_link_encoder.c
@@ -31,7 +31,6 @@
#include "dcn31/dcn31_dio_link_encoder.h"
#include "dcn32_dio_link_encoder.h"
#include "stream_encoder.h"
-#include "i2caux_interface.h"
#include "dc_bios_types.h"
#include "link_enc_cfg.h"
diff --git a/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_dio_stream_encoder.c b/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_dio_stream_encoder.c
index d19fc93dbc75..2fef1419ae91 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_dio_stream_encoder.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_dio_stream_encoder.c
@@ -29,7 +29,7 @@
#include "dcn32_dio_stream_encoder.h"
#include "reg_helper.h"
#include "hw_shared.h"
-#include "inc/link_dpcd.h"
+#include "link.h"
#include "dpcd_defs.h"
#define DC_LOGGER \
@@ -211,10 +211,8 @@ static void enc32_stream_encoder_hdmi_set_stream_attribute(
HDMI_GC_SEND, 1,
HDMI_NULL_SEND, 1);
-#if defined(CONFIG_DRM_AMD_DC_HDCP)
/* Disable Audio Content Protection packet transmission */
REG_UPDATE(HDMI_VBI_PACKET_CONTROL, HDMI_ACP_SEND, 0);
-#endif
/* following belongs to audio */
/* Enable Audio InfoFrame packet transmission. */
@@ -276,10 +274,10 @@ static bool is_dp_dig_pixel_rate_div_policy(struct dc *dc, const struct dc_crtc_
dc->debug.enable_dp_dig_pixel_rate_div_policy;
}
-static void enc32_stream_encoder_dp_unblank(
- struct dc_link *link,
- struct stream_encoder *enc,
- const struct encoder_unblank_param *param)
+void enc32_stream_encoder_dp_unblank(
+ struct dc_link *link,
+ struct stream_encoder *enc,
+ const struct encoder_unblank_param *param)
{
struct dcn10_stream_encoder *enc1 = DCN10STRENC_FROM_STRENC(enc);
struct dc *dc = enc->ctx->dc;
@@ -288,6 +286,7 @@ static void enc32_stream_encoder_dp_unblank(
uint32_t n_vid = 0x8000;
uint32_t m_vid;
uint32_t n_multiply = 0;
+ uint32_t pix_per_cycle = 0;
uint64_t m_vid_l = n_vid;
/* YCbCr 4:2:0 : Computed VID_M will be 2X the input rate */
@@ -295,6 +294,7 @@ static void enc32_stream_encoder_dp_unblank(
|| is_dp_dig_pixel_rate_div_policy(dc, &param->timing)) {
/*this logic should be the same in get_pixel_clock_parameters() */
n_multiply = 1;
+ pix_per_cycle = 1;
}
/* M / N = Fstream / Flink
* m_vid / n_vid = pixel rate / link rate
@@ -322,6 +322,10 @@ static void enc32_stream_encoder_dp_unblank(
REG_UPDATE_2(DP_VID_TIMING,
DP_VID_M_N_GEN_EN, 1,
DP_VID_N_MUL, n_multiply);
+
+ REG_UPDATE(DP_PIXEL_FORMAT,
+ DP_PIXEL_PER_CYCLE_PROCESSING_MODE,
+ pix_per_cycle);
}
/* make sure stream is disabled before resetting steer fifo */
@@ -373,7 +377,7 @@ static void enc32_stream_encoder_dp_unblank(
REG_UPDATE(DP_VID_STREAM_CNTL, DP_VID_STREAM_ENABLE, true);
- dp_source_sequence_trace(link, DPCD_SOURCE_SEQ_AFTER_ENABLE_DP_VID_STREAM);
+ link->dc->link_srv->dp_trace_source_sequence(link, DPCD_SOURCE_SEQ_AFTER_ENABLE_DP_VID_STREAM);
}
/* Set DSC-related configuration.
@@ -421,6 +425,33 @@ static void enc32_set_dig_input_mode(struct stream_encoder *enc, unsigned int pi
REG_UPDATE(DIG_FIFO_CTRL0, DIG_FIFO_OUTPUT_PIXEL_MODE, pix_per_container == 2 ? 0x1 : 0x0);
}
+static void enc32_reset_fifo(struct stream_encoder *enc, bool reset)
+{
+ struct dcn10_stream_encoder *enc1 = DCN10STRENC_FROM_STRENC(enc);
+ uint32_t reset_val = reset ? 1 : 0;
+ uint32_t is_symclk_on;
+
+ REG_UPDATE(DIG_FIFO_CTRL0, DIG_FIFO_RESET, reset_val);
+ REG_GET(DIG_FE_CNTL, DIG_SYMCLK_FE_ON, &is_symclk_on);
+
+ if (is_symclk_on)
+ REG_WAIT(DIG_FIFO_CTRL0, DIG_FIFO_RESET_DONE, reset_val, 10, 5000);
+ else
+ udelay(10);
+}
+
+void enc32_enable_fifo(struct stream_encoder *enc)
+{
+ struct dcn10_stream_encoder *enc1 = DCN10STRENC_FROM_STRENC(enc);
+
+ REG_UPDATE(DIG_FIFO_CTRL0, DIG_FIFO_READ_START_LEVEL, 0x7);
+
+ enc32_reset_fifo(enc, true);
+ enc32_reset_fifo(enc, false);
+
+ REG_UPDATE(DIG_FIFO_CTRL0, DIG_FIFO_ENABLE, 1);
+}
+
static const struct stream_encoder_funcs dcn32_str_enc_funcs = {
.dp_set_odm_combine =
enc32_dp_set_odm_combine,
@@ -436,6 +467,8 @@ static const struct stream_encoder_funcs dcn32_str_enc_funcs = {
enc3_stream_encoder_update_hdmi_info_packets,
.stop_hdmi_info_packets =
enc3_stream_encoder_stop_hdmi_info_packets,
+ .update_dp_info_packets_sdp_line_num =
+ enc3_stream_encoder_update_dp_info_packets_sdp_line_num,
.update_dp_info_packets =
enc3_stream_encoder_update_dp_info_packets,
.stop_dp_info_packets =
@@ -466,6 +499,7 @@ static const struct stream_encoder_funcs dcn32_str_enc_funcs = {
.hdmi_reset_stream_attribute = enc1_reset_hdmi_stream_attribute,
.set_input_mode = enc32_set_dig_input_mode,
+ .enable_fifo = enc32_enable_fifo,
};
void dcn32_dio_stream_encoder_construct(
diff --git a/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_dio_stream_encoder.h b/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_dio_stream_encoder.h
index ecd041a446d2..1be5410cce97 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_dio_stream_encoder.h
+++ b/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_dio_stream_encoder.h
@@ -31,70 +31,6 @@
#include "stream_encoder.h"
#include "dcn20/dcn20_stream_encoder.h"
-#define SE_DCN32_REG_LIST(id)\
- SRI(AFMT_CNTL, DIG, id), \
- SRI(DIG_FE_CNTL, DIG, id), \
- SRI(HDMI_CONTROL, DIG, id), \
- SRI(HDMI_DB_CONTROL, DIG, id), \
- SRI(HDMI_GC, DIG, id), \
- SRI(HDMI_GENERIC_PACKET_CONTROL0, DIG, id), \
- SRI(HDMI_GENERIC_PACKET_CONTROL1, DIG, id), \
- SRI(HDMI_GENERIC_PACKET_CONTROL2, DIG, id), \
- SRI(HDMI_GENERIC_PACKET_CONTROL3, DIG, id), \
- SRI(HDMI_GENERIC_PACKET_CONTROL4, DIG, id), \
- SRI(HDMI_GENERIC_PACKET_CONTROL5, DIG, id), \
- SRI(HDMI_GENERIC_PACKET_CONTROL6, DIG, id), \
- SRI(HDMI_GENERIC_PACKET_CONTROL7, DIG, id), \
- SRI(HDMI_GENERIC_PACKET_CONTROL8, DIG, id), \
- SRI(HDMI_GENERIC_PACKET_CONTROL9, DIG, id), \
- SRI(HDMI_GENERIC_PACKET_CONTROL10, DIG, id), \
- SRI(HDMI_INFOFRAME_CONTROL0, DIG, id), \
- SRI(HDMI_INFOFRAME_CONTROL1, DIG, id), \
- SRI(HDMI_VBI_PACKET_CONTROL, DIG, id), \
- SRI(HDMI_AUDIO_PACKET_CONTROL, DIG, id),\
- SRI(HDMI_ACR_PACKET_CONTROL, DIG, id),\
- SRI(HDMI_ACR_32_0, DIG, id),\
- SRI(HDMI_ACR_32_1, DIG, id),\
- SRI(HDMI_ACR_44_0, DIG, id),\
- SRI(HDMI_ACR_44_1, DIG, id),\
- SRI(HDMI_ACR_48_0, DIG, id),\
- SRI(HDMI_ACR_48_1, DIG, id),\
- SRI(DP_DB_CNTL, DP, id), \
- SRI(DP_MSA_MISC, DP, id), \
- SRI(DP_MSA_VBID_MISC, DP, id), \
- SRI(DP_MSA_COLORIMETRY, DP, id), \
- SRI(DP_MSA_TIMING_PARAM1, DP, id), \
- SRI(DP_MSA_TIMING_PARAM2, DP, id), \
- SRI(DP_MSA_TIMING_PARAM3, DP, id), \
- SRI(DP_MSA_TIMING_PARAM4, DP, id), \
- SRI(DP_MSE_RATE_CNTL, DP, id), \
- SRI(DP_MSE_RATE_UPDATE, DP, id), \
- SRI(DP_PIXEL_FORMAT, DP, id), \
- SRI(DP_SEC_CNTL, DP, id), \
- SRI(DP_SEC_CNTL1, DP, id), \
- SRI(DP_SEC_CNTL2, DP, id), \
- SRI(DP_SEC_CNTL5, DP, id), \
- SRI(DP_SEC_CNTL6, DP, id), \
- SRI(DP_STEER_FIFO, DP, id), \
- SRI(DP_VID_M, DP, id), \
- SRI(DP_VID_N, DP, id), \
- SRI(DP_VID_STREAM_CNTL, DP, id), \
- SRI(DP_VID_TIMING, DP, id), \
- SRI(DP_SEC_AUD_N, DP, id), \
- SRI(DP_SEC_TIMESTAMP, DP, id), \
- SRI(DP_DSC_CNTL, DP, id), \
- SRI(DP_SEC_METADATA_TRANSMISSION, DP, id), \
- SRI(HDMI_METADATA_PACKET_CONTROL, DIG, id), \
- SRI(DP_SEC_FRAMING4, DP, id), \
- SRI(DP_GSP11_CNTL, DP, id), \
- SRI(DME_CONTROL, DME, id),\
- SRI(DP_SEC_METADATA_TRANSMISSION, DP, id), \
- SRI(HDMI_METADATA_PACKET_CONTROL, DIG, id), \
- SRI(DIG_FE_CNTL, DIG, id), \
- SRI(DIG_CLOCK_PATTERN, DIG, id), \
- SRI(DIG_FIFO_CTRL0, DIG, id)
-
-
#define SE_COMMON_MASK_SH_LIST_DCN32(mask_sh)\
SE_SF(DP0_DP_PIXEL_FORMAT, DP_PIXEL_ENCODING, mask_sh),\
SE_SF(DP0_DP_PIXEL_FORMAT, DP_COMPONENT_DEPTH, mask_sh),\
@@ -258,4 +194,12 @@ void dcn32_dio_stream_encoder_construct(
const struct dcn10_stream_encoder_shift *se_shift,
const struct dcn10_stream_encoder_mask *se_mask);
+
+void enc32_enable_fifo(struct stream_encoder *enc);
+
+void enc32_stream_encoder_dp_unblank(
+ struct dc_link *link,
+ struct stream_encoder *enc,
+ const struct encoder_unblank_param *param);
+
#endif /* __DC_DIO_STREAM_ENCODER_DCN32_H__ */
diff --git a/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_hpo_dp_link_encoder.c b/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_hpo_dp_link_encoder.c
index 4dbad8d4b4fc..8af01f579690 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_hpo_dp_link_encoder.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_hpo_dp_link_encoder.c
@@ -26,7 +26,6 @@
#include "dcn31/dcn31_hpo_dp_link_encoder.h"
#include "dcn32_hpo_dp_link_encoder.h"
#include "reg_helper.h"
-#include "dc_link.h"
#include "stream_encoder.h"
#define DC_LOGGER \
diff --git a/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_hubbub.c b/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_hubbub.c
index 9fbb72369c10..eb08ccc38e79 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_hubbub.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_hubbub.c
@@ -41,6 +41,10 @@
#define FN(reg_name, field_name) \
hubbub2->shifts->field_name, hubbub2->masks->field_name
+/**
+ * @DCN32_CRB_SEGMENT_SIZE_KB: Maximum Configurable Return Buffer size for
+ * DCN32
+ */
#define DCN32_CRB_SEGMENT_SIZE_KB 64
static void dcn32_init_crb(struct hubbub *hubbub)
@@ -68,6 +72,23 @@ static void dcn32_init_crb(struct hubbub *hubbub)
REG_UPDATE(DCHUBBUB_DEBUG_CTRL_0, DET_DEPTH, 0x47F);
}
+void hubbub32_set_request_limit(struct hubbub *hubbub, int memory_channel_count, int words_per_channel)
+{
+ struct dcn20_hubbub *hubbub2 = TO_DCN20_HUBBUB(hubbub);
+
+ uint32_t request_limit = 3 * memory_channel_count * words_per_channel / 4;
+
+ ASSERT((request_limit & (~0xFFF)) == 0); //field is only 24 bits long
+ ASSERT(request_limit > 0); //field is only 24 bits long
+
+ if (request_limit > 0xFFF)
+ request_limit = 0xFFF;
+
+ if (request_limit > 0)
+ REG_UPDATE(SDPIF_REQUEST_RATE_LIMIT, SDPIF_REQUEST_RATE_LIMIT, request_limit);
+}
+
+
void dcn32_program_det_size(struct hubbub *hubbub, int hubp_inst, unsigned int det_buffer_size_in_kbyte)
{
struct dcn20_hubbub *hubbub2 = TO_DCN20_HUBBUB(hubbub);
@@ -844,7 +865,7 @@ static void hubbub32_wm_read_state(struct hubbub *hubbub,
DCHUBBUB_ARB_ALLOW_SR_EXIT_WATERMARK_A, &s->sr_exit);
REG_GET(DCHUBBUB_ARB_UCLK_PSTATE_CHANGE_WATERMARK_A,
- DCHUBBUB_ARB_UCLK_PSTATE_CHANGE_WATERMARK_A, &s->dram_clk_chanage);
+ DCHUBBUB_ARB_UCLK_PSTATE_CHANGE_WATERMARK_A, &s->dram_clk_change);
REG_GET(DCHUBBUB_ARB_USR_RETRAINING_WATERMARK_A,
DCHUBBUB_ARB_USR_RETRAINING_WATERMARK_A, &s->usr_retrain);
@@ -864,7 +885,7 @@ static void hubbub32_wm_read_state(struct hubbub *hubbub,
DCHUBBUB_ARB_ALLOW_SR_EXIT_WATERMARK_B, &s->sr_exit);
REG_GET(DCHUBBUB_ARB_UCLK_PSTATE_CHANGE_WATERMARK_B,
- DCHUBBUB_ARB_UCLK_PSTATE_CHANGE_WATERMARK_B, &s->dram_clk_chanage);
+ DCHUBBUB_ARB_UCLK_PSTATE_CHANGE_WATERMARK_B, &s->dram_clk_change);
REG_GET(DCHUBBUB_ARB_USR_RETRAINING_WATERMARK_B,
DCHUBBUB_ARB_USR_RETRAINING_WATERMARK_B, &s->usr_retrain);
@@ -884,7 +905,7 @@ static void hubbub32_wm_read_state(struct hubbub *hubbub,
DCHUBBUB_ARB_ALLOW_SR_EXIT_WATERMARK_C, &s->sr_exit);
REG_GET(DCHUBBUB_ARB_UCLK_PSTATE_CHANGE_WATERMARK_C,
- DCHUBBUB_ARB_UCLK_PSTATE_CHANGE_WATERMARK_C, &s->dram_clk_chanage);
+ DCHUBBUB_ARB_UCLK_PSTATE_CHANGE_WATERMARK_C, &s->dram_clk_change);
REG_GET(DCHUBBUB_ARB_USR_RETRAINING_WATERMARK_C,
DCHUBBUB_ARB_USR_RETRAINING_WATERMARK_C, &s->usr_retrain);
@@ -904,7 +925,7 @@ static void hubbub32_wm_read_state(struct hubbub *hubbub,
DCHUBBUB_ARB_ALLOW_SR_EXIT_WATERMARK_D, &s->sr_exit);
REG_GET(DCHUBBUB_ARB_UCLK_PSTATE_CHANGE_WATERMARK_D,
- DCHUBBUB_ARB_UCLK_PSTATE_CHANGE_WATERMARK_D, &s->dram_clk_chanage);
+ DCHUBBUB_ARB_UCLK_PSTATE_CHANGE_WATERMARK_D, &s->dram_clk_change);
REG_GET(DCHUBBUB_ARB_USR_RETRAINING_WATERMARK_D,
DCHUBBUB_ARB_USR_RETRAINING_WATERMARK_D, &s->usr_retrain);
@@ -924,6 +945,35 @@ void hubbub32_force_wm_propagate_to_pipes(struct hubbub *hubbub)
DCHUBBUB_ARB_DATA_URGENCY_WATERMARK_A, prog_wm_value);
}
+void hubbub32_init(struct hubbub *hubbub)
+{
+ struct dcn20_hubbub *hubbub2 = TO_DCN20_HUBBUB(hubbub);
+
+ /* Enable clock gate*/
+ if (hubbub->ctx->dc->debug.disable_clock_gate) {
+ /*done in hwseq*/
+ /*REG_UPDATE(DCFCLK_CNTL, DCFCLK_GATE_DIS, 0);*/
+
+ REG_UPDATE_2(DCHUBBUB_CLOCK_CNTL,
+ DISPCLK_R_DCHUBBUB_GATE_DIS, 0,
+ DCFCLK_R_DCHUBBUB_GATE_DIS, 0);
+ }
+ /*
+ ignore the "df_pre_cstate_req" from the SDP port control.
+ only the DCN will determine when to connect the SDP port
+ */
+ REG_UPDATE(DCHUBBUB_SDPIF_CFG0,
+ SDPIF_PORT_CONTROL, 1);
+ /*Set SDP's max outstanding request to 512
+ must set the register back to 0 (max outstanding = 256) in zero frame buffer mode*/
+ REG_UPDATE(DCHUBBUB_SDPIF_CFG1,
+ SDPIF_MAX_NUM_OUTSTANDING, 1);
+ /*must set the registers back to 256 in zero frame buffer mode*/
+ REG_UPDATE_2(DCHUBBUB_ARB_DF_REQ_OUTSTAND,
+ DCHUBBUB_ARB_MAX_REQ_OUTSTAND, 512,
+ DCHUBBUB_ARB_MIN_REQ_OUTSTAND, 512);
+}
+
static const struct hubbub_funcs hubbub32_funcs = {
.update_dchub = hubbub2_update_dchub,
.init_dchub_sys_ctx = hubbub3_init_dchub_sys_ctx,
@@ -945,6 +995,7 @@ static const struct hubbub_funcs hubbub32_funcs = {
.init_crb = dcn32_init_crb,
.hubbub_read_state = hubbub2_read_state,
.force_usr_retraining_allow = hubbub32_force_usr_retraining_allow,
+ .set_request_limit = hubbub32_set_request_limit
};
void hubbub32_construct(struct dcn20_hubbub *hubbub2,
diff --git a/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_hubbub.h b/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_hubbub.h
index cda94e0e31bf..ad33427192c6 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_hubbub.h
+++ b/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_hubbub.h
@@ -28,62 +28,6 @@
#include "dcn21/dcn21_hubbub.h"
-#define HUBBUB_REG_LIST_DCN32(id)\
- SR(DCHUBBUB_ARB_DATA_URGENCY_WATERMARK_A),\
- SR(DCHUBBUB_ARB_DATA_URGENCY_WATERMARK_B),\
- SR(DCHUBBUB_ARB_DATA_URGENCY_WATERMARK_C),\
- SR(DCHUBBUB_ARB_DATA_URGENCY_WATERMARK_D),\
- SR(DCHUBBUB_ARB_WATERMARK_CHANGE_CNTL),\
- SR(DCHUBBUB_ARB_DRAM_STATE_CNTL),\
- SR(DCHUBBUB_ARB_SAT_LEVEL),\
- SR(DCHUBBUB_ARB_DF_REQ_OUTSTAND),\
- SR(DCHUBBUB_GLOBAL_TIMER_CNTL), \
- SR(DCHUBBUB_SOFT_RESET),\
- SR(DCHUBBUB_CRC_CTRL), \
- SR(DCN_VM_FB_LOCATION_BASE),\
- SR(DCN_VM_FB_LOCATION_TOP),\
- SR(DCN_VM_FB_OFFSET),\
- SR(DCN_VM_AGP_BOT),\
- SR(DCN_VM_AGP_TOP),\
- SR(DCN_VM_AGP_BASE),\
- HUBBUB_SR_WATERMARK_REG_LIST(), \
- SR(DCHUBBUB_ARB_FRAC_URG_BW_NOM_A),\
- SR(DCHUBBUB_ARB_FRAC_URG_BW_NOM_B),\
- SR(DCHUBBUB_ARB_FRAC_URG_BW_NOM_C),\
- SR(DCHUBBUB_ARB_FRAC_URG_BW_NOM_D),\
- SR(DCHUBBUB_ARB_FRAC_URG_BW_FLIP_A),\
- SR(DCHUBBUB_ARB_FRAC_URG_BW_FLIP_B),\
- SR(DCHUBBUB_ARB_FRAC_URG_BW_FLIP_C),\
- SR(DCHUBBUB_ARB_FRAC_URG_BW_FLIP_D),\
- SR(DCHUBBUB_ARB_REFCYC_PER_TRIP_TO_MEMORY_A),\
- SR(DCHUBBUB_ARB_REFCYC_PER_TRIP_TO_MEMORY_B),\
- SR(DCHUBBUB_ARB_REFCYC_PER_TRIP_TO_MEMORY_C),\
- SR(DCHUBBUB_ARB_REFCYC_PER_TRIP_TO_MEMORY_D),\
- SR(DCHUBBUB_DET0_CTRL),\
- SR(DCHUBBUB_DET1_CTRL),\
- SR(DCHUBBUB_DET2_CTRL),\
- SR(DCHUBBUB_DET3_CTRL),\
- SR(DCHUBBUB_COMPBUF_CTRL),\
- SR(COMPBUF_RESERVED_SPACE),\
- SR(DCHUBBUB_DEBUG_CTRL_0),\
- SR(DCHUBBUB_ARB_USR_RETRAINING_CNTL),\
- SR(DCHUBBUB_ARB_USR_RETRAINING_WATERMARK_A),\
- SR(DCHUBBUB_ARB_USR_RETRAINING_WATERMARK_B),\
- SR(DCHUBBUB_ARB_USR_RETRAINING_WATERMARK_C),\
- SR(DCHUBBUB_ARB_USR_RETRAINING_WATERMARK_D),\
- SR(DCHUBBUB_ARB_UCLK_PSTATE_CHANGE_WATERMARK_A),\
- SR(DCHUBBUB_ARB_UCLK_PSTATE_CHANGE_WATERMARK_B),\
- SR(DCHUBBUB_ARB_UCLK_PSTATE_CHANGE_WATERMARK_C),\
- SR(DCHUBBUB_ARB_UCLK_PSTATE_CHANGE_WATERMARK_D),\
- SR(DCHUBBUB_ARB_FCLK_PSTATE_CHANGE_WATERMARK_A),\
- SR(DCHUBBUB_ARB_FCLK_PSTATE_CHANGE_WATERMARK_B),\
- SR(DCHUBBUB_ARB_FCLK_PSTATE_CHANGE_WATERMARK_C),\
- SR(DCHUBBUB_ARB_FCLK_PSTATE_CHANGE_WATERMARK_D),\
- SR(DCN_VM_FAULT_ADDR_MSB),\
- SR(DCN_VM_FAULT_ADDR_LSB),\
- SR(DCN_VM_FAULT_CNTL),\
- SR(DCN_VM_FAULT_STATUS)
-
#define HUBBUB_MASK_SH_LIST_DCN32(mask_sh)\
HUBBUB_SF(DCHUBBUB_GLOBAL_TIMER_CNTL, DCHUBBUB_GLOBAL_TIMER_ENABLE, mask_sh), \
HUBBUB_SF(DCHUBBUB_SOFT_RESET, DCHUBBUB_GLOBAL_SOFT_RESET, mask_sh), \
@@ -95,6 +39,7 @@
HUBBUB_SF(DCHUBBUB_ARB_DRAM_STATE_CNTL, DCHUBBUB_ARB_ALLOW_PSTATE_CHANGE_FORCE_ENABLE, mask_sh), \
HUBBUB_SF(DCHUBBUB_ARB_SAT_LEVEL, DCHUBBUB_ARB_SAT_LEVEL, mask_sh), \
HUBBUB_SF(DCHUBBUB_ARB_DF_REQ_OUTSTAND, DCHUBBUB_ARB_MIN_REQ_OUTSTAND, mask_sh), \
+ HUBBUB_SF(DCHUBBUB_ARB_DF_REQ_OUTSTAND, DCHUBBUB_ARB_MAX_REQ_OUTSTAND, mask_sh), \
HUBBUB_SF(DCHUBBUB_ARB_DATA_URGENCY_WATERMARK_A, DCHUBBUB_ARB_DATA_URGENCY_WATERMARK_A, mask_sh), \
HUBBUB_SF(DCHUBBUB_ARB_DATA_URGENCY_WATERMARK_B, DCHUBBUB_ARB_DATA_URGENCY_WATERMARK_B, mask_sh), \
HUBBUB_SF(DCHUBBUB_ARB_DATA_URGENCY_WATERMARK_C, DCHUBBUB_ARB_DATA_URGENCY_WATERMARK_C, mask_sh), \
@@ -159,7 +104,15 @@
HUBBUB_SF(DCN_VM_FAULT_STATUS, DCN_VM_ERROR_VMID, mask_sh), \
HUBBUB_SF(DCN_VM_FAULT_STATUS, DCN_VM_ERROR_TABLE_LEVEL, mask_sh), \
HUBBUB_SF(DCN_VM_FAULT_STATUS, DCN_VM_ERROR_PIPE, mask_sh), \
- HUBBUB_SF(DCN_VM_FAULT_STATUS, DCN_VM_ERROR_INTERRUPT_STATUS, mask_sh)
+ HUBBUB_SF(DCN_VM_FAULT_STATUS, DCN_VM_ERROR_INTERRUPT_STATUS, mask_sh),\
+ HUBBUB_SF(SDPIF_REQUEST_RATE_LIMIT, SDPIF_REQUEST_RATE_LIMIT, mask_sh),\
+ HUBBUB_SF(DCHUBBUB_CLOCK_CNTL, DISPCLK_R_DCHUBBUB_GATE_DIS, mask_sh),\
+ HUBBUB_SF(DCHUBBUB_CLOCK_CNTL, DCFCLK_R_DCHUBBUB_GATE_DIS, mask_sh),\
+ HUBBUB_SF(DCHUBBUB_SDPIF_CFG0, SDPIF_PORT_CONTROL, mask_sh),\
+ HUBBUB_SF(DCHUBBUB_SDPIF_CFG1, SDPIF_MAX_NUM_OUTSTANDING, mask_sh),\
+ HUBBUB_SF(DCHUBBUB_MEM_PWR_MODE_CTRL, DET_MEM_PWR_LS_MODE, mask_sh)
+
+
bool hubbub32_program_urgent_watermarks(
struct hubbub *hubbub,
@@ -189,6 +142,8 @@ void hubbub32_force_usr_retraining_allow(struct hubbub *hubbub, bool allow);
void hubbub32_force_wm_propagate_to_pipes(struct hubbub *hubbub);
+void hubbub32_init(struct hubbub *hubbub);
+
void dcn32_program_det_size(struct hubbub *hubbub, int hubp_inst, unsigned int det_buffer_size_in_kbyte);
void hubbub32_construct(struct dcn20_hubbub *hubbub2,
@@ -200,4 +155,6 @@ void hubbub32_construct(struct dcn20_hubbub *hubbub2,
int pixel_chunk_size_kb,
int config_return_buffer_size_kb);
+void hubbub32_set_request_limit(struct hubbub *hubbub, int umc_count, int words_per_umc);
+
#endif
diff --git a/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_hubp.c b/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_hubp.c
index ac1c6458dd55..2d604f7ee782 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_hubp.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_hubp.c
@@ -47,6 +47,15 @@ void hubp32_update_force_pstate_disallow(struct hubp *hubp, bool pstate_disallow
DATA_UCLK_PSTATE_FORCE_VALUE, 0);
}
+void hubp32_update_force_cursor_pstate_disallow(struct hubp *hubp, bool pstate_disallow)
+{
+ struct dcn20_hubp *hubp2 = TO_DCN20_HUBP(hubp);
+
+ REG_UPDATE_2(UCLK_PSTATE_FORCE,
+ CURSOR_UCLK_PSTATE_FORCE_EN, pstate_disallow,
+ CURSOR_UCLK_PSTATE_FORCE_VALUE, 0);
+}
+
void hubp32_update_mall_sel(struct hubp *hubp, uint32_t mall_sel, bool c_cursor)
{
struct dcn20_hubp *hubp2 = TO_DCN20_HUBP(hubp);
@@ -155,7 +164,11 @@ void hubp32_cursor_set_attributes(
else
REG_UPDATE(DCHUBP_MALL_CONFIG, USE_MALL_FOR_CURSOR, false);
}
-
+void hubp32_init(struct hubp *hubp)
+{
+ struct dcn20_hubp *hubp2 = TO_DCN20_HUBP(hubp);
+ REG_WRITE(HUBPREQ_DEBUG_DB, 1 << 8);
+}
static struct hubp_funcs dcn32_hubp_funcs = {
.hubp_enable_tripleBuffer = hubp2_enable_triplebuffer,
.hubp_is_triplebuffer_enabled = hubp2_is_triplebuffer_enabled,
@@ -184,6 +197,7 @@ static struct hubp_funcs dcn32_hubp_funcs = {
.hubp_set_flip_int = hubp1_set_flip_int,
.hubp_in_blank = hubp1_in_blank,
.hubp_update_force_pstate_disallow = hubp32_update_force_pstate_disallow,
+ .hubp_update_force_cursor_pstate_disallow = hubp32_update_force_cursor_pstate_disallow,
.phantom_hubp_post_enable = hubp32_phantom_hubp_post_enable,
.hubp_update_mall_sel = hubp32_update_mall_sel,
.hubp_prepare_subvp_buffering = hubp32_prepare_subvp_buffering
diff --git a/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_hubp.h b/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_hubp.h
index 56ef71151536..d2acbc129609 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_hubp.h
+++ b/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_hubp.h
@@ -31,12 +31,6 @@
#include "dcn30/dcn30_hubp.h"
#include "dcn31/dcn31_hubp.h"
-#define HUBP_REG_LIST_DCN32(id)\
- HUBP_REG_LIST_DCN30(id),\
- SRI(DCHUBP_MALL_CONFIG, HUBP, id),\
- SRI(DCHUBP_VMPG_CONFIG, HUBP, id),\
- SRI(UCLK_PSTATE_FORCE, HUBPREQ, id)
-
#define HUBP_MASK_SH_LIST_DCN32(mask_sh)\
HUBP_MASK_SH_LIST_DCN31(mask_sh),\
HUBP_SF(HUBP0_DCHUBP_MALL_CONFIG, USE_MALL_SEL, mask_sh),\
@@ -52,6 +46,8 @@
void hubp32_update_force_pstate_disallow(struct hubp *hubp, bool pstate_disallow);
+void hubp32_update_force_cursor_pstate_disallow(struct hubp *hubp, bool pstate_disallow);
+
void hubp32_update_mall_sel(struct hubp *hubp, uint32_t mall_sel, bool c_cursor);
void hubp32_prepare_subvp_buffering(struct hubp *hubp, bool enable);
@@ -61,6 +57,8 @@ void hubp32_phantom_hubp_post_enable(struct hubp *hubp);
void hubp32_cursor_set_attributes(struct hubp *hubp,
const struct dc_cursor_attributes *attr);
+void hubp32_init(struct hubp *hubp);
+
bool hubp32_construct(
struct dcn20_hubp *hubp2,
struct dc_context *ctx,
diff --git a/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_hwseq.c b/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_hwseq.c
index cf5bd9713f54..1f5ee5cde6e1 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_hwseq.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_hwseq.c
@@ -50,7 +50,7 @@
#include "dmub_subvp_state.h"
#include "dce/dmub_hw_lock_mgr.h"
#include "dcn32_resource.h"
-#include "dc_link_dp.h"
+#include "link.h"
#include "dmub/inc/dmub_subvp_state.h"
#define DC_LOGGER_INIT(logger)
@@ -131,10 +131,15 @@ void dcn32_enable_power_gating_plane(
bool enable)
{
bool force_on = true; /* disable power gating */
+ uint32_t org_ip_request_cntl = 0;
if (enable)
force_on = false;
+ REG_GET(DC_IP_REQUEST_CNTL, IP_REQUEST_EN, &org_ip_request_cntl);
+ if (org_ip_request_cntl == 0)
+ REG_SET(DC_IP_REQUEST_CNTL, 0, IP_REQUEST_EN, 1);
+
/* DCHUBP0/1/2/3 */
REG_UPDATE(DOMAIN0_PG_CONFIG, DOMAIN_POWER_FORCEON, force_on);
REG_UPDATE(DOMAIN1_PG_CONFIG, DOMAIN_POWER_FORCEON, force_on);
@@ -146,6 +151,9 @@ void dcn32_enable_power_gating_plane(
REG_UPDATE(DOMAIN17_PG_CONFIG, DOMAIN_POWER_FORCEON, force_on);
REG_UPDATE(DOMAIN18_PG_CONFIG, DOMAIN_POWER_FORCEON, force_on);
REG_UPDATE(DOMAIN19_PG_CONFIG, DOMAIN_POWER_FORCEON, force_on);
+
+ if (org_ip_request_cntl == 0)
+ REG_SET(DC_IP_REQUEST_CNTL, 0, IP_REQUEST_EN, 0);
}
void dcn32_hubp_pg_control(struct dce_hwseq *hws, unsigned int hubp_inst, bool power_on)
@@ -188,7 +196,8 @@ static bool dcn32_check_no_memory_request_for_cab(struct dc *dc)
/* First, check no-memory-request case */
for (i = 0; i < dc->current_state->stream_count; i++) {
- if (dc->current_state->stream_status[i].plane_count)
+ if ((dc->current_state->stream_status[i].plane_count) &&
+ (dc->current_state->streams[i]->link->psr_settings.psr_version == DC_PSR_VERSION_UNSUPPORTED))
/* Fail eligibility on a visible stream */
break;
}
@@ -206,147 +215,31 @@ static bool dcn32_check_no_memory_request_for_cab(struct dc *dc)
*/
static uint32_t dcn32_calculate_cab_allocation(struct dc *dc, struct dc_state *ctx)
{
- int i, j;
- struct dc_stream_state *stream = NULL;
- struct dc_plane_state *plane = NULL;
- uint32_t cursor_size = 0;
- uint32_t total_lines = 0;
- uint32_t lines_per_way = 0;
+ int i;
uint8_t num_ways = 0;
- uint8_t bytes_per_pixel = 0;
- uint8_t cursor_bpp = 0;
- uint16_t mblk_width = 0;
- uint16_t mblk_height = 0;
- uint16_t mall_alloc_width_blk_aligned = 0;
- uint16_t mall_alloc_height_blk_aligned = 0;
- uint16_t num_mblks = 0;
- uint32_t bytes_in_mall = 0;
- uint32_t cache_lines_used = 0;
- uint32_t cache_lines_per_plane = 0;
-
- for (i = 0; i < dc->res_pool->pipe_count; i++) {
- struct pipe_ctx *pipe = &dc->current_state->res_ctx.pipe_ctx[i];
-
- if (!pipe->stream || !pipe->plane_state ||
- pipe->stream->link->psr_settings.psr_version != DC_PSR_VERSION_UNSUPPORTED ||
- pipe->stream->mall_stream_config.type == SUBVP_PHANTOM)
- continue;
-
- bytes_per_pixel = pipe->plane_state->format >= SURFACE_PIXEL_FORMAT_GRPH_ARGB16161616 ? 8 : 4;
- mblk_width = DCN3_2_MBLK_WIDTH;
- mblk_height = bytes_per_pixel == 4 ? DCN3_2_MBLK_HEIGHT_4BPE : DCN3_2_MBLK_HEIGHT_8BPE;
-
- /* full_vp_width_blk_aligned = FLOOR(vp_x_start + full_vp_width + blk_width - 1, blk_width) -
- * FLOOR(vp_x_start, blk_width)
- *
- * mall_alloc_width_blk_aligned_l/c = full_vp_width_blk_aligned_l/c
- */
- mall_alloc_width_blk_aligned = ((pipe->plane_res.scl_data.viewport.x +
- pipe->plane_res.scl_data.viewport.width + mblk_width - 1) / mblk_width * mblk_width) -
- (pipe->plane_res.scl_data.viewport.x / mblk_width * mblk_width);
+ uint32_t mall_ss_size_bytes = 0;
- /* full_vp_height_blk_aligned = FLOOR(vp_y_start + full_vp_height + blk_height - 1, blk_height) -
- * FLOOR(vp_y_start, blk_height)
- *
- * mall_alloc_height_blk_aligned_l/c = full_vp_height_blk_aligned_l/c
- */
- mall_alloc_height_blk_aligned = ((pipe->plane_res.scl_data.viewport.y +
- pipe->plane_res.scl_data.viewport.height + mblk_height - 1) / mblk_height * mblk_height) -
- (pipe->plane_res.scl_data.viewport.y / mblk_height * mblk_height);
-
- num_mblks = ((mall_alloc_width_blk_aligned + mblk_width - 1) / mblk_width) *
- ((mall_alloc_height_blk_aligned + mblk_height - 1) / mblk_height);
-
- /* For DCC:
- * meta_num_mblk = CEILING(full_mblk_width_ub_l*full_mblk_height_ub_l*Bpe/256/mblk_bytes, 1)
- */
- if (pipe->plane_state->dcc.enable)
- num_mblks += (mall_alloc_width_blk_aligned * mall_alloc_width_blk_aligned * bytes_per_pixel +
- (256 * DCN3_2_MALL_MBLK_SIZE_BYTES) - 1) / (256 * DCN3_2_MALL_MBLK_SIZE_BYTES);
-
- bytes_in_mall = num_mblks * DCN3_2_MALL_MBLK_SIZE_BYTES;
-
- /* (cache lines used is total bytes / cache_line size. Add +2 for worst case alignment
- * (MALL is 64-byte aligned)
- */
- cache_lines_per_plane = bytes_in_mall / dc->caps.cache_line_size + 2;
- cache_lines_used += cache_lines_per_plane;
- }
+ mall_ss_size_bytes = ctx->bw_ctx.bw.dcn.mall_ss_size_bytes;
+ // TODO add additional logic for PSR active stream exclusion optimization
+ // mall_ss_psr_active_size_bytes = ctx->bw_ctx.bw.dcn.mall_ss_psr_active_size_bytes;
// Include cursor size for CAB allocation
- for (j = 0; j < dc->res_pool->pipe_count; j++) {
- struct pipe_ctx *pipe = &ctx->res_ctx.pipe_ctx[j];
- struct hubp *hubp = pipe->plane_res.hubp;
-
- if (pipe->stream && pipe->plane_state && hubp)
- /* Find the cursor plane and use the exact size instead of
- using the max for calculation */
-
- if (hubp->curs_attr.width > 0) {
- // Round cursor width to next multiple of 64
- cursor_size = (((hubp->curs_attr.width + 63) / 64) * 64) * hubp->curs_attr.height;
-
- switch (pipe->stream->cursor_attributes.color_format) {
- case CURSOR_MODE_MONO:
- cursor_size /= 2;
- cursor_bpp = 4;
- break;
- case CURSOR_MODE_COLOR_1BIT_AND:
- case CURSOR_MODE_COLOR_PRE_MULTIPLIED_ALPHA:
- case CURSOR_MODE_COLOR_UN_PRE_MULTIPLIED_ALPHA:
- cursor_size *= 4;
- cursor_bpp = 4;
- break;
+ for (i = 0; i < dc->res_pool->pipe_count; i++) {
+ struct pipe_ctx *pipe = &ctx->res_ctx.pipe_ctx[i];
- case CURSOR_MODE_COLOR_64BIT_FP_PRE_MULTIPLIED:
- case CURSOR_MODE_COLOR_64BIT_FP_UN_PRE_MULTIPLIED:
- cursor_size *= 8;
- cursor_bpp = 8;
- break;
- }
+ if (!pipe->stream || !pipe->plane_state)
+ continue;
- if (pipe->stream->cursor_position.enable && !dc->debug.alloc_extra_way_for_cursor &&
- cursor_size > 16384) {
- /* cursor_num_mblk = CEILING(num_cursors*cursor_width*cursor_width*cursor_Bpe/mblk_bytes, 1)
- */
- cache_lines_used += (((hubp->curs_attr.width * hubp->curs_attr.height * cursor_bpp +
- DCN3_2_MALL_MBLK_SIZE_BYTES - 1) / DCN3_2_MALL_MBLK_SIZE_BYTES) *
- DCN3_2_MALL_MBLK_SIZE_BYTES) / dc->caps.cache_line_size + 2;
- }
- break;
- }
+ mall_ss_size_bytes += dcn32_helper_calculate_mall_bytes_for_cursor(dc, pipe, false);
}
// Convert number of cache lines required to number of ways
- total_lines = dc->caps.max_cab_allocation_bytes / dc->caps.cache_line_size;
- lines_per_way = total_lines / dc->caps.cache_num_ways;
- num_ways = cache_lines_used / lines_per_way;
-
- if (cache_lines_used % lines_per_way > 0)
- num_ways++;
-
- for (i = 0; i < ctx->stream_count; i++) {
- stream = ctx->streams[i];
- for (j = 0; j < ctx->stream_status[i].plane_count; j++) {
- plane = ctx->stream_status[i].plane_states[j];
-
- if (stream->cursor_position.enable && plane &&
- dc->debug.alloc_extra_way_for_cursor &&
- cursor_size > 16384) {
- /* Cursor caching is not supported since it won't be on the same line.
- * So we need an extra line to accommodate it. With large cursors and a single 4k monitor
- * this case triggers corruption. If we're at the edge, then dont trigger display refresh
- * from MALL. We only need to cache cursor if its greater that 64x64 at 4 bpp.
- */
- num_ways++;
- /* We only expect one cursor plane */
- break;
- }
- }
- }
if (dc->debug.force_mall_ss_num_ways > 0) {
num_ways = dc->debug.force_mall_ss_num_ways;
+ } else {
+ num_ways = dcn32_helper_mall_bytes_to_ways(dc, mall_ss_size_bytes);
}
+
return num_ways;
}
@@ -361,6 +254,13 @@ bool dcn32_apply_idle_power_optimizations(struct dc *dc, bool enable)
if (!dc->ctx->dmub_srv)
return false;
+ for (i = 0; i < dc->current_state->stream_count; i++) {
+ /* MALL SS messaging is not supported with PSR at this time */
+ if (dc->current_state->streams[i] != NULL &&
+ dc->current_state->streams[i]->link->psr_settings.psr_version != DC_PSR_VERSION_UNSUPPORTED)
+ return false;
+ }
+
if (enable) {
if (dc->current_state) {
@@ -514,7 +414,7 @@ void dcn32_subvp_pipe_control_lock(struct dc *dc,
}
-static bool dcn32_set_mpc_shaper_3dlut(
+bool dcn32_set_mpc_shaper_3dlut(
struct pipe_ctx *pipe_ctx, const struct dc_stream_state *stream)
{
struct dpp *dpp_base = pipe_ctx->plane_res.dpp;
@@ -671,43 +571,56 @@ bool dcn32_set_output_transfer_func(struct dc *dc,
return ret;
}
-/* Program P-State force value according to if pipe is using SubVP or not:
+/* Program P-State force value according to if pipe is using SubVP / FPO or not:
* 1. Reset P-State force on all pipes first
* 2. For each main pipe, force P-State disallow (P-State allow moderated by DMUB)
*/
-void dcn32_subvp_update_force_pstate(struct dc *dc, struct dc_state *context)
+void dcn32_update_force_pstate(struct dc *dc, struct dc_state *context)
{
int i;
- int num_subvp = 0;
- /* Unforce p-state for each pipe
+
+ /* Unforce p-state for each pipe if it is not FPO or SubVP.
+ * For FPO and SubVP, if it's already forced disallow, leave
+ * it as disallow.
*/
for (i = 0; i < dc->res_pool->pipe_count; i++) {
struct pipe_ctx *pipe = &context->res_ctx.pipe_ctx[i];
struct hubp *hubp = pipe->plane_res.hubp;
- if (hubp && hubp->funcs->hubp_update_force_pstate_disallow)
- hubp->funcs->hubp_update_force_pstate_disallow(hubp, false);
- if (pipe->stream && pipe->stream->mall_stream_config.type == SUBVP_MAIN)
- num_subvp++;
- }
+ if (!pipe->stream || (pipe->stream && !(pipe->stream->mall_stream_config.type == SUBVP_MAIN ||
+ pipe->stream->fpo_in_use))) {
+ if (hubp && hubp->funcs->hubp_update_force_pstate_disallow)
+ hubp->funcs->hubp_update_force_pstate_disallow(hubp, false);
+ }
- if (num_subvp == 0)
- return;
+ /* Today only FPO uses cursor P-State force. Only clear cursor P-State force
+ * if it's not FPO.
+ */
+ if (!pipe->stream || (pipe->stream && !pipe->stream->fpo_in_use)) {
+ if (hubp && hubp->funcs->hubp_update_force_cursor_pstate_disallow)
+ hubp->funcs->hubp_update_force_cursor_pstate_disallow(hubp, false);
+ }
+ }
/* Loop through each pipe -- for each subvp main pipe force p-state allow equal to false.
*/
for (i = 0; i < dc->res_pool->pipe_count; i++) {
struct pipe_ctx *pipe = &context->res_ctx.pipe_ctx[i];
+ struct hubp *hubp = pipe->plane_res.hubp;
- // For SubVP + DRR, also force disallow on the DRR pipe
- // (We will force allow in the DMUB sequence -- some DRR timings by default won't allow P-State so we have
- // to force once the vblank is stretched).
- if (pipe->stream && pipe->plane_state && (pipe->stream->mall_stream_config.type == SUBVP_MAIN ||
- (pipe->stream->mall_stream_config.type == SUBVP_NONE && pipe->stream->ignore_msa_timing_param))) {
- struct hubp *hubp = pipe->plane_res.hubp;
+ if (pipe->stream && pipe->plane_state && pipe->stream->mall_stream_config.type == SUBVP_MAIN) {
+ if (hubp && hubp->funcs->hubp_update_force_pstate_disallow)
+ hubp->funcs->hubp_update_force_pstate_disallow(hubp, true);
+ }
+ if (pipe->stream && pipe->stream->fpo_in_use) {
if (hubp && hubp->funcs->hubp_update_force_pstate_disallow)
hubp->funcs->hubp_update_force_pstate_disallow(hubp, true);
+ /* For now only force cursor p-state disallow for FPO
+ * Needs to be added for subvp once FW side gets updated
+ */
+ if (hubp && hubp->funcs->hubp_update_force_cursor_pstate_disallow)
+ hubp->funcs->hubp_update_force_cursor_pstate_disallow(hubp, true);
}
}
}
@@ -727,10 +640,7 @@ void dcn32_update_mall_sel(struct dc *dc, struct dc_state *context)
struct hubp *hubp = pipe->plane_res.hubp;
if (pipe->stream && pipe->plane_state && hubp && hubp->funcs->hubp_update_mall_sel) {
- //Round cursor width up to next multiple of 64
- int cursor_width = ((hubp->curs_attr.width + 63) / 64) * 64;
- int cursor_height = hubp->curs_attr.height;
- int cursor_size = cursor_width * cursor_height;
+ int cursor_size = hubp->curs_attr.pitch * hubp->curs_attr.height;
switch (hubp->curs_attr.color_format) {
case CURSOR_MODE_MONO:
@@ -802,6 +712,35 @@ void dcn32_program_mall_pipe_config(struct dc *dc, struct dc_state *context)
}
}
+static void dcn32_initialize_min_clocks(struct dc *dc)
+{
+ struct dc_clocks *clocks = &dc->current_state->bw_ctx.bw.dcn.clk;
+
+ clocks->dcfclk_deep_sleep_khz = DCN3_2_DCFCLK_DS_INIT_KHZ;
+ clocks->dcfclk_khz = dc->clk_mgr->bw_params->clk_table.entries[0].dcfclk_mhz * 1000;
+ clocks->socclk_khz = dc->clk_mgr->bw_params->clk_table.entries[0].socclk_mhz * 1000;
+ clocks->dramclk_khz = dc->clk_mgr->bw_params->clk_table.entries[0].memclk_mhz * 1000;
+ clocks->dppclk_khz = dc->clk_mgr->bw_params->clk_table.entries[0].dppclk_mhz * 1000;
+ if (dc->debug.disable_boot_optimizations) {
+ clocks->dispclk_khz = dc->clk_mgr->bw_params->clk_table.entries[0].dispclk_mhz * 1000;
+ } else {
+ /* Even though DPG_EN = 1 for the connected display, it still requires the
+ * correct timing so we cannot set DISPCLK to min freq or it could cause
+ * audio corruption. Read current DISPCLK from DENTIST and request the same
+ * freq to ensure that the timing is valid and unchanged.
+ */
+ clocks->dispclk_khz = dc->clk_mgr->funcs->get_dispclk_from_dentist(dc->clk_mgr);
+ clocks->ref_dtbclk_khz = dc->clk_mgr->bw_params->clk_table.entries[0].dtbclk_mhz * 1000;
+ clocks->fclk_p_state_change_support = true;
+ clocks->p_state_change_support = true;
+ }
+
+ dc->clk_mgr->funcs->update_clocks(
+ dc->clk_mgr,
+ dc->current_state,
+ true);
+}
+
void dcn32_init_hw(struct dc *dc)
{
struct abm **abms = dc->res_pool->multiple_abms;
@@ -877,13 +816,14 @@ void dcn32_init_hw(struct dc *dc)
}
}
- /* Power gate DSCs */
- for (i = 0; i < res_pool->res_cap->num_dsc; i++)
- if (hws->funcs.dsc_pg_control != NULL)
- hws->funcs.dsc_pg_control(hws, res_pool->dscs[i]->inst, false);
+ /* enable_power_gating_plane before dsc_pg_control because
+ * FORCEON = 1 with hw default value on bootup, resume from s3
+ */
+ if (hws->funcs.enable_power_gating_plane)
+ hws->funcs.enable_power_gating_plane(dc->hwseq, true);
/* we want to turn off all dp displays before doing detection */
- dc_link_blank_all_dp_displays(dc);
+ dc->link_srv->blank_all_dp_displays(dc);
/* If taking control over from VBIOS, we may want to optimize our first
* mode set, so we need to skip powering down pipes until we know which
@@ -892,10 +832,29 @@ void dcn32_init_hw(struct dc *dc)
* everything down.
*/
if (dcb->funcs->is_accelerated_mode(dcb) || !dc->config.seamless_boot_edp_requested) {
- hws->funcs.init_pipes(dc, dc->current_state);
+ /* Disable boot optimizations means power down everything including PHY, DIG,
+ * and OTG (i.e. the boot is not optimized because we do a full power down).
+ */
+ if (dc->hwss.enable_accelerated_mode && dc->debug.disable_boot_optimizations)
+ dc->hwss.enable_accelerated_mode(dc, dc->current_state);
+ else
+ hws->funcs.init_pipes(dc, dc->current_state);
+
if (dc->res_pool->hubbub->funcs->allow_self_refresh_control)
dc->res_pool->hubbub->funcs->allow_self_refresh_control(dc->res_pool->hubbub,
!dc->res_pool->hubbub->ctx->dc->debug.disable_stutter);
+
+ dcn32_initialize_min_clocks(dc);
+
+ /* On HW init, allow idle optimizations after pipes have been turned off.
+ *
+ * In certain D3 cases (i.e. BOCO / BOMACO) it's possible that hardware state
+ * is reset (i.e. not in idle at the time hw init is called), but software state
+ * still has idle_optimizations = true, so we must disable idle optimizations first
+ * (i.e. set false), then re-enable (set true).
+ */
+ dc_allow_idle_optimizations(dc, false);
+ dc_allow_idle_optimizations(dc, true);
}
/* In headless boot cases, DIG may be turned
@@ -907,7 +866,7 @@ void dcn32_init_hw(struct dc *dc)
struct dc_link *edp_links[MAX_NUM_EDP];
struct dc_link *edp_link;
- get_edp_links(dc, edp_links, &edp_num);
+ dc_get_edp_links(dc, edp_links, &edp_num);
if (edp_num) {
for (i = 0; i < edp_num; i++) {
edp_link = edp_links[i];
@@ -965,8 +924,6 @@ void dcn32_init_hw(struct dc *dc)
REG_UPDATE(DCFCLK_CNTL, DCFCLK_GATE_DIS, 0);
}
- if (hws->funcs.enable_power_gating_plane)
- hws->funcs.enable_power_gating_plane(dc->hwseq, true);
if (!dcb->funcs->is_accelerated_mode(dcb) && dc->res_pool->hubbub->funcs->init_watermarks)
dc->res_pool->hubbub->funcs->init_watermarks(dc->res_pool->hubbub);
@@ -974,7 +931,7 @@ void dcn32_init_hw(struct dc *dc)
if (dc->clk_mgr->funcs->notify_wm_ranges)
dc->clk_mgr->funcs->notify_wm_ranges(dc->clk_mgr);
- if (dc->clk_mgr->funcs->set_hard_max_memclk)
+ if (dc->clk_mgr->funcs->set_hard_max_memclk && !dc->clk_mgr->dc_mode_softmax_enabled)
dc->clk_mgr->funcs->set_hard_max_memclk(dc->clk_mgr);
if (dc->res_pool->hubbub->funcs->force_pstate_change_control)
@@ -984,15 +941,15 @@ void dcn32_init_hw(struct dc *dc)
if (dc->res_pool->hubbub->funcs->init_crb)
dc->res_pool->hubbub->funcs->init_crb(dc->res_pool->hubbub);
+ if (dc->res_pool->hubbub->funcs->set_request_limit && dc->config.sdpif_request_limit_words_per_umc > 0)
+ dc->res_pool->hubbub->funcs->set_request_limit(dc->res_pool->hubbub, dc->ctx->dc_bios->vram_info.num_chans, dc->config.sdpif_request_limit_words_per_umc);
+
// Get DMCUB capabilities
if (dc->ctx->dmub_srv) {
dc_dmub_srv_query_caps_cmd(dc->ctx->dmub_srv->dmub);
dc->caps.dmub_caps.psr = dc->ctx->dmub_srv->dmub->feature_caps.psr;
+ dc->caps.dmub_caps.mclk_sw = dc->ctx->dmub_srv->dmub->feature_caps.fw_assisted_mclk_switch;
}
-
- /* Enable support for ODM and windowed MPO if policy flag is set */
- if (dc->debug.enable_single_display_2to1_odm_policy)
- dc->config.enable_windowed_mpo_odm = true;
}
static int calc_mpc_flow_ctrl_cnt(const struct dc_stream_state *stream,
@@ -1175,18 +1132,16 @@ unsigned int dcn32_calculate_dccg_k1_k2_values(struct pipe_ctx *pipe_ctx, unsign
two_pix_per_container = optc2_is_two_pixels_per_containter(&stream->timing);
odm_combine_factor = get_odm_config(pipe_ctx, NULL);
- if (pipe_ctx->stream->signal == SIGNAL_TYPE_VIRTUAL)
- return odm_combine_factor;
-
- if (is_dp_128b_132b_signal(pipe_ctx)) {
+ if (stream->ctx->dc->link_srv->dp_is_128b_132b_signal(pipe_ctx)) {
+ *k1_div = PIXEL_RATE_DIV_BY_1;
*k2_div = PIXEL_RATE_DIV_BY_1;
- } else if (dc_is_hdmi_tmds_signal(pipe_ctx->stream->signal) || dc_is_dvi_signal(pipe_ctx->stream->signal)) {
+ } else if (dc_is_hdmi_tmds_signal(stream->signal) || dc_is_dvi_signal(stream->signal)) {
*k1_div = PIXEL_RATE_DIV_BY_1;
if (stream->timing.pixel_encoding == PIXEL_ENCODING_YCBCR420)
*k2_div = PIXEL_RATE_DIV_BY_2;
else
*k2_div = PIXEL_RATE_DIV_BY_4;
- } else if (dc_is_dp_signal(pipe_ctx->stream->signal)) {
+ } else if (dc_is_dp_signal(stream->signal) || dc_is_virtual_signal(stream->signal)) {
if (two_pix_per_container) {
*k1_div = PIXEL_RATE_DIV_BY_1;
*k2_div = PIXEL_RATE_DIV_BY_2;
@@ -1241,7 +1196,7 @@ void dcn32_unblank_stream(struct pipe_ctx *pipe_ctx,
params.link_settings.link_rate = link_settings->link_rate;
- if (is_dp_128b_132b_signal(pipe_ctx)) {
+ if (link->dc->link_srv->dp_is_128b_132b_signal(pipe_ctx)) {
/* TODO - DP2.0 HW: Set ODM mode in dp hpo encoder here */
pipe_ctx->stream_res.hpo_dp_stream_enc->funcs->dp_unblank(
pipe_ctx->stream_res.hpo_dp_stream_enc,
@@ -1268,7 +1223,7 @@ bool dcn32_is_dp_dig_pixel_rate_div_policy(struct pipe_ctx *pipe_ctx)
if (!is_h_timing_divisible_by_2(pipe_ctx->stream))
return false;
- if (dc_is_dp_signal(pipe_ctx->stream->signal) && !is_dp_128b_132b_signal(pipe_ctx) &&
+ if (dc_is_dp_signal(pipe_ctx->stream->signal) && !dc->link_srv->dp_is_128b_132b_signal(pipe_ctx) &&
dc->debug.enable_dp_dig_pixel_rate_div_policy)
return true;
return false;
@@ -1302,7 +1257,8 @@ static void apply_symclk_on_tx_off_wa(struct dc_link *link)
pipe_ctx->clock_source->funcs->program_pix_clk(
pipe_ctx->clock_source,
&pipe_ctx->stream_res.pix_clk_params,
- dp_get_link_encoding_format(&pipe_ctx->link_config.dp_link_settings),
+ dc->link_srv->dp_get_encoding_format(
+ &pipe_ctx->link_config.dp_link_settings),
&pipe_ctx->pll_settings);
link->phy_state.symclk_state = SYMCLK_ON_TX_OFF;
break;
@@ -1334,7 +1290,7 @@ void dcn32_disable_link_output(struct dc_link *link,
else if (dmcu != NULL && dmcu->funcs->lock_phy)
dmcu->funcs->unlock_phy(dmcu);
- dp_source_sequence_trace(link, DPCD_SOURCE_SEQ_AFTER_DISABLE_LINK_PHY);
+ dc->link_srv->dp_trace_source_sequence(link, DPCD_SOURCE_SEQ_AFTER_DISABLE_LINK_PHY);
apply_symclk_on_tx_off_wa(link);
}
@@ -1371,6 +1327,33 @@ void dcn32_update_phantom_vp_position(struct dc *dc,
}
}
+/* Treat the phantom pipe as if it needs to be fully enabled.
+ * If the pipe was previously in use but not phantom, it would
+ * have been disabled earlier in the sequence so we need to run
+ * the full enable sequence.
+ */
+void dcn32_apply_update_flags_for_phantom(struct pipe_ctx *phantom_pipe)
+{
+ phantom_pipe->update_flags.raw = 0;
+ if (phantom_pipe->stream && phantom_pipe->stream->mall_stream_config.type == SUBVP_PHANTOM) {
+ if (phantom_pipe->stream && phantom_pipe->plane_state) {
+ phantom_pipe->update_flags.bits.enable = 1;
+ phantom_pipe->update_flags.bits.mpcc = 1;
+ phantom_pipe->update_flags.bits.dppclk = 1;
+ phantom_pipe->update_flags.bits.hubp_interdependent = 1;
+ phantom_pipe->update_flags.bits.hubp_rq_dlg_ttu = 1;
+ phantom_pipe->update_flags.bits.gamut_remap = 1;
+ phantom_pipe->update_flags.bits.scaler = 1;
+ phantom_pipe->update_flags.bits.viewport = 1;
+ phantom_pipe->update_flags.bits.det_size = 1;
+ if (!phantom_pipe->top_pipe && !phantom_pipe->prev_odm_pipe) {
+ phantom_pipe->update_flags.bits.odm = 1;
+ phantom_pipe->update_flags.bits.global_sync = 1;
+ }
+ }
+ }
+}
+
bool dcn32_dsc_pg_status(
struct dce_hwseq *hws,
unsigned int dsc_inst)
@@ -1425,3 +1408,122 @@ void dcn32_update_dsc_pg(struct dc *dc,
}
}
}
+
+void dcn32_enable_phantom_streams(struct dc *dc, struct dc_state *context)
+{
+ unsigned int i;
+
+ for (i = 0; i < dc->res_pool->pipe_count; i++) {
+ struct pipe_ctx *pipe = &context->res_ctx.pipe_ctx[i];
+ struct pipe_ctx *old_pipe = &dc->current_state->res_ctx.pipe_ctx[i];
+
+ /* If an active, non-phantom pipe is being transitioned into a phantom
+ * pipe, wait for the double buffer update to complete first before we do
+ * ANY phantom pipe programming.
+ */
+ if (pipe->stream && pipe->stream->mall_stream_config.type == SUBVP_PHANTOM &&
+ old_pipe->stream && old_pipe->stream->mall_stream_config.type != SUBVP_PHANTOM) {
+ old_pipe->stream_res.tg->funcs->wait_for_state(
+ old_pipe->stream_res.tg,
+ CRTC_STATE_VBLANK);
+ old_pipe->stream_res.tg->funcs->wait_for_state(
+ old_pipe->stream_res.tg,
+ CRTC_STATE_VACTIVE);
+ }
+ }
+ for (i = 0; i < dc->res_pool->pipe_count; i++) {
+ struct pipe_ctx *new_pipe = &context->res_ctx.pipe_ctx[i];
+
+ if (new_pipe->stream && new_pipe->stream->mall_stream_config.type == SUBVP_PHANTOM) {
+ // If old context or new context has phantom pipes, apply
+ // the phantom timings now. We can't change the phantom
+ // pipe configuration safely without driver acquiring
+ // the DMCUB lock first.
+ dc->hwss.apply_ctx_to_hw(dc, context);
+ break;
+ }
+ }
+}
+
+/* Blank pixel data during initialization */
+void dcn32_init_blank(
+ struct dc *dc,
+ struct timing_generator *tg)
+{
+ struct dce_hwseq *hws = dc->hwseq;
+ enum dc_color_space color_space;
+ struct tg_color black_color = {0};
+ struct output_pixel_processor *opp = NULL;
+ struct output_pixel_processor *bottom_opp = NULL;
+ uint32_t num_opps, opp_id_src0, opp_id_src1;
+ uint32_t otg_active_width, otg_active_height;
+ uint32_t i;
+
+ /* program opp dpg blank color */
+ color_space = COLOR_SPACE_SRGB;
+ color_space_to_black_color(dc, color_space, &black_color);
+
+ /* get the OTG active size */
+ tg->funcs->get_otg_active_size(tg,
+ &otg_active_width,
+ &otg_active_height);
+
+ /* get the OPTC source */
+ tg->funcs->get_optc_source(tg, &num_opps, &opp_id_src0, &opp_id_src1);
+
+ if (opp_id_src0 >= dc->res_pool->res_cap->num_opp) {
+ ASSERT(false);
+ return;
+ }
+
+ for (i = 0; i < dc->res_pool->res_cap->num_opp; i++) {
+ if (dc->res_pool->opps[i] != NULL && dc->res_pool->opps[i]->inst == opp_id_src0) {
+ opp = dc->res_pool->opps[i];
+ break;
+ }
+ }
+
+ if (num_opps == 2) {
+ otg_active_width = otg_active_width / 2;
+
+ if (opp_id_src1 >= dc->res_pool->res_cap->num_opp) {
+ ASSERT(false);
+ return;
+ }
+ for (i = 0; i < dc->res_pool->res_cap->num_opp; i++) {
+ if (dc->res_pool->opps[i] != NULL && dc->res_pool->opps[i]->inst == opp_id_src1) {
+ bottom_opp = dc->res_pool->opps[i];
+ break;
+ }
+ }
+ }
+
+ if (opp && opp->funcs->opp_set_disp_pattern_generator)
+ opp->funcs->opp_set_disp_pattern_generator(
+ opp,
+ CONTROLLER_DP_TEST_PATTERN_SOLID_COLOR,
+ CONTROLLER_DP_COLOR_SPACE_UDEFINED,
+ COLOR_DEPTH_UNDEFINED,
+ &black_color,
+ otg_active_width,
+ otg_active_height,
+ 0);
+
+ if (num_opps == 2) {
+ if (bottom_opp && bottom_opp->funcs->opp_set_disp_pattern_generator) {
+ bottom_opp->funcs->opp_set_disp_pattern_generator(
+ bottom_opp,
+ CONTROLLER_DP_TEST_PATTERN_SOLID_COLOR,
+ CONTROLLER_DP_COLOR_SPACE_UDEFINED,
+ COLOR_DEPTH_UNDEFINED,
+ &black_color,
+ otg_active_width,
+ otg_active_height,
+ 0);
+ hws->funcs.wait_for_blank_complete(bottom_opp);
+ }
+ }
+
+ if (opp)
+ hws->funcs.wait_for_blank_complete(opp);
+}
diff --git a/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_hwseq.h b/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_hwseq.h
index ac3657a5b9ea..6694c1d14aa3 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_hwseq.h
+++ b/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_hwseq.h
@@ -54,6 +54,9 @@ bool dcn32_set_input_transfer_func(struct dc *dc,
struct pipe_ctx *pipe_ctx,
const struct dc_plane_state *plane_state);
+bool dcn32_set_mpc_shaper_3dlut(
+ struct pipe_ctx *pipe_ctx, const struct dc_stream_state *stream);
+
bool dcn32_set_output_transfer_func(struct dc *dc,
struct pipe_ctx *pipe_ctx,
const struct dc_stream_state *stream);
@@ -64,7 +67,7 @@ void dcn32_program_mall_pipe_config(struct dc *dc, struct dc_state *context);
void dcn32_update_mall_sel(struct dc *dc, struct dc_state *context);
-void dcn32_subvp_update_force_pstate(struct dc *dc, struct dc_state *context);
+void dcn32_update_force_pstate(struct dc *dc, struct dc_state *context);
void dcn32_update_odm(struct dc *dc, struct dc_state *context, struct pipe_ctx *pipe_ctx);
@@ -92,6 +95,8 @@ void dcn32_update_phantom_vp_position(struct dc *dc,
struct dc_state *context,
struct pipe_ctx *phantom_pipe);
+void dcn32_apply_update_flags_for_phantom(struct pipe_ctx *phantom_pipe);
+
bool dcn32_dsc_pg_status(
struct dce_hwseq *hws,
unsigned int dsc_inst);
@@ -100,4 +105,10 @@ void dcn32_update_dsc_pg(struct dc *dc,
struct dc_state *context,
bool safe_to_disable);
+void dcn32_enable_phantom_streams(struct dc *dc, struct dc_state *context);
+
+void dcn32_init_blank(
+ struct dc *dc,
+ struct timing_generator *tg);
+
#endif /* __DC_HWSS_DCN32_H__ */
diff --git a/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_init.c b/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_init.c
index 45a949ba6f3f..8085f2acb1a9 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_init.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_init.c
@@ -30,6 +30,7 @@
#include "dcn30/dcn30_hwseq.h"
#include "dcn31/dcn31_hwseq.h"
#include "dcn32_hwseq.h"
+#include "dcn32_init.h"
static const struct hw_sequencer_funcs dcn32_funcs = {
.program_gamut_remap = dcn10_program_gamut_remap,
@@ -94,7 +95,7 @@ static const struct hw_sequencer_funcs dcn32_funcs = {
.get_vupdate_offset_from_vsync = dcn10_get_vupdate_offset_from_vsync,
.calc_vupdate_position = dcn10_calc_vupdate_position,
.apply_idle_power_optimizations = dcn32_apply_idle_power_optimizations,
- .does_plane_fit_in_mall = dcn30_does_plane_fit_in_mall,
+ .does_plane_fit_in_mall = NULL,
.set_backlight_level = dcn21_set_backlight_level,
.set_abm_immediate_disable = dcn21_set_abm_immediate_disable,
.hardware_release = dcn30_hardware_release,
@@ -106,10 +107,12 @@ static const struct hw_sequencer_funcs dcn32_funcs = {
.set_disp_pattern_generator = dcn30_set_disp_pattern_generator,
.get_dcc_en_bits = dcn10_get_dcc_en_bits,
.commit_subvp_config = dcn32_commit_subvp_config,
+ .enable_phantom_streams = dcn32_enable_phantom_streams,
.subvp_pipe_control_lock = dcn32_subvp_pipe_control_lock,
.update_visual_confirm_color = dcn20_update_visual_confirm_color,
.update_phantom_vp_position = dcn32_update_phantom_vp_position,
.update_dsc_pg = dcn32_update_dsc_pg,
+ .apply_update_flags_for_phantom = dcn32_apply_update_flags_for_phantom,
};
static const struct hwseq_private_funcs dcn32_private_funcs = {
@@ -129,7 +132,7 @@ static const struct hwseq_private_funcs dcn32_private_funcs = {
.enable_stream_gating = dcn20_enable_stream_gating,
.setup_vupdate_interrupt = dcn20_setup_vupdate_interrupt,
.did_underflow_occur = dcn10_did_underflow_occur,
- .init_blank = dcn20_init_blank,
+ .init_blank = dcn32_init_blank,
.disable_vga = dcn20_disable_vga,
.bios_golden_init = dcn10_bios_golden_init,
.plane_atomic_disable = dcn20_plane_atomic_disable,
@@ -146,7 +149,7 @@ static const struct hwseq_private_funcs dcn32_private_funcs = {
.dccg_init = dcn20_dccg_init,
.set_mcm_luts = dcn32_set_mcm_luts,
.program_mall_pipe_config = dcn32_program_mall_pipe_config,
- .subvp_update_force_pstate = dcn32_subvp_update_force_pstate,
+ .update_force_pstate = dcn32_update_force_pstate,
.update_mall_sel = dcn32_update_mall_sel,
.calculate_dccg_k1_k2_values = dcn32_calculate_dccg_k1_k2_values,
.set_pixels_per_cycle = dcn32_set_pixels_per_cycle,
diff --git a/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_mmhubbub.c b/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_mmhubbub.c
index 41b0baf8e183..c3b089ba511a 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_mmhubbub.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_mmhubbub.c
@@ -211,7 +211,7 @@ static void mmhubbub32_config_mcif_arb(struct mcif_wb *mcif_wb,
REG_UPDATE(MCIF_WB_ARBITRATION_CONTROL, MCIF_WB_CLIENT_ARBITRATION_SLICE, params->arbitration_slice);
}
-const struct mcif_wb_funcs dcn32_mmhubbub_funcs = {
+static const struct mcif_wb_funcs dcn32_mmhubbub_funcs = {
.warmup_mcif = mmhubbub32_warmup_mcif,
.enable_mcif = mmhubbub2_enable_mcif,
.disable_mcif = mmhubbub2_disable_mcif,
diff --git a/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_mpc.c b/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_mpc.c
index 4edd0655965b..c8041cfd594d 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_mpc.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_mpc.c
@@ -42,7 +42,7 @@
mpc30->mpc_shift->field_name, mpc30->mpc_mask->field_name
-static void mpc32_mpc_init(struct mpc *mpc)
+void mpc32_mpc_init(struct mpc *mpc)
{
struct dcn30_mpc *mpc30 = TO_DCN30_MPC(mpc);
int mpcc_id;
@@ -254,7 +254,7 @@ static void mpc32_program_post1dlut_pwl(
}
}
-static bool mpc32_program_post1dlut(
+bool mpc32_program_post1dlut(
struct mpc *mpc,
const struct pwl_params *params,
uint32_t mpcc_id)
@@ -701,7 +701,7 @@ static void mpc32_power_on_shaper_3dlut(
}
-static bool mpc32_program_shaper(
+bool mpc32_program_shaper(
struct mpc *mpc,
const struct pwl_params *params,
uint32_t mpcc_id)
@@ -897,7 +897,7 @@ static void mpc32_set_3dlut_mode(
}
-static bool mpc32_program_3dlut(
+bool mpc32_program_3dlut(
struct mpc *mpc,
const struct tetrahedral_params *params,
int mpcc_id)
@@ -982,7 +982,7 @@ static bool mpc32_program_3dlut(
return true;
}
-const struct mpc_funcs dcn32_mpc_funcs = {
+static const struct mpc_funcs dcn32_mpc_funcs = {
.read_mpcc_state = mpc1_read_mpcc_state,
.insert_plane = mpc1_insert_plane,
.remove_mpcc = mpc1_remove_mpcc,
diff --git a/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_mpc.h b/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_mpc.h
index 61f33c0d8e59..2c2ecd053806 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_mpc.h
+++ b/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_mpc.h
@@ -310,6 +310,19 @@ struct dcn32_mpc_registers {
MPC_REG_VARIABLE_LIST_DCN3_0;
MPC_REG_VARIABLE_LIST_DCN32;
};
+void mpc32_mpc_init(struct mpc *mpc);
+bool mpc32_program_3dlut(
+ struct mpc *mpc,
+ const struct tetrahedral_params *params,
+ int mpcc_id);
+bool mpc32_program_post1dlut(
+ struct mpc *mpc,
+ const struct pwl_params *params,
+ uint32_t mpcc_id);
+bool mpc32_program_shaper(
+ struct mpc *mpc,
+ const struct pwl_params *params,
+ uint32_t mpcc_id);
void dcn32_mpc_construct(struct dcn30_mpc *mpc30,
struct dc_context *ctx,
diff --git a/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_optc.c b/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_optc.c
index 2b33eeb213e2..2ee798965bc2 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_optc.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_optc.c
@@ -167,6 +167,13 @@ static void optc32_phantom_crtc_post_enable(struct timing_generator *optc)
REG_WAIT(OTG_CLOCK_CONTROL, OTG_BUSY, 0, 1, 100000);
}
+static void optc32_disable_phantom_otg(struct timing_generator *optc)
+{
+ struct optc *optc1 = DCN10TG_FROM_TG(optc);
+
+ REG_UPDATE(OTG_CONTROL, OTG_MASTER_EN, 0);
+}
+
static void optc32_set_odm_bypass(struct timing_generator *optc,
const struct dc_crtc_timing *dc_crtc_timing)
{
@@ -260,6 +267,7 @@ static struct timing_generator_funcs dcn32_tg_funcs = {
.enable_crtc = optc32_enable_crtc,
.disable_crtc = optc32_disable_crtc,
.phantom_crtc_post_enable = optc32_phantom_crtc_post_enable,
+ .disable_phantom_crtc = optc32_disable_phantom_otg,
/* used by enable_timing_synchronization. Not need for FPGA */
.is_counter_moving = optc1_is_counter_moving,
.get_position = optc1_get_position,
diff --git a/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_optc.h b/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_optc.h
index 5e57c39235fa..b92ba8c75694 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_optc.h
+++ b/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_optc.h
@@ -28,77 +28,6 @@
#include "dcn10/dcn10_optc.h"
-#define OPTC_COMMON_REG_LIST_DCN3_2(inst) \
- SRI(OTG_VSTARTUP_PARAM, OTG, inst),\
- SRI(OTG_VUPDATE_PARAM, OTG, inst),\
- SRI(OTG_VREADY_PARAM, OTG, inst),\
- SRI(OTG_MASTER_UPDATE_LOCK, OTG, inst),\
- SRI(OTG_GLOBAL_CONTROL0, OTG, inst),\
- SRI(OTG_GLOBAL_CONTROL1, OTG, inst),\
- SRI(OTG_GLOBAL_CONTROL2, OTG, inst),\
- SRI(OTG_GLOBAL_CONTROL4, OTG, inst),\
- SRI(OTG_DOUBLE_BUFFER_CONTROL, OTG, inst),\
- SRI(OTG_H_TOTAL, OTG, inst),\
- SRI(OTG_H_BLANK_START_END, OTG, inst),\
- SRI(OTG_H_SYNC_A, OTG, inst),\
- SRI(OTG_H_SYNC_A_CNTL, OTG, inst),\
- SRI(OTG_H_TIMING_CNTL, OTG, inst),\
- SRI(OTG_V_TOTAL, OTG, inst),\
- SRI(OTG_V_BLANK_START_END, OTG, inst),\
- SRI(OTG_V_SYNC_A, OTG, inst),\
- SRI(OTG_V_SYNC_A_CNTL, OTG, inst),\
- SRI(OTG_CONTROL, OTG, inst),\
- SRI(OTG_STEREO_CONTROL, OTG, inst),\
- SRI(OTG_3D_STRUCTURE_CONTROL, OTG, inst),\
- SRI(OTG_STEREO_STATUS, OTG, inst),\
- SRI(OTG_V_TOTAL_MAX, OTG, inst),\
- SRI(OTG_V_TOTAL_MIN, OTG, inst),\
- SRI(OTG_V_TOTAL_CONTROL, OTG, inst),\
- SRI(OTG_TRIGA_CNTL, OTG, inst),\
- SRI(OTG_FORCE_COUNT_NOW_CNTL, OTG, inst),\
- SRI(OTG_STATIC_SCREEN_CONTROL, OTG, inst),\
- SRI(OTG_STATUS_FRAME_COUNT, OTG, inst),\
- SRI(OTG_STATUS, OTG, inst),\
- SRI(OTG_STATUS_POSITION, OTG, inst),\
- SRI(OTG_NOM_VERT_POSITION, OTG, inst),\
- SRI(OTG_M_CONST_DTO0, OTG, inst),\
- SRI(OTG_M_CONST_DTO1, OTG, inst),\
- SRI(OTG_CLOCK_CONTROL, OTG, inst),\
- SRI(OTG_VERTICAL_INTERRUPT0_CONTROL, OTG, inst),\
- SRI(OTG_VERTICAL_INTERRUPT0_POSITION, OTG, inst),\
- SRI(OTG_VERTICAL_INTERRUPT1_CONTROL, OTG, inst),\
- SRI(OTG_VERTICAL_INTERRUPT1_POSITION, OTG, inst),\
- SRI(OTG_VERTICAL_INTERRUPT2_CONTROL, OTG, inst),\
- SRI(OTG_VERTICAL_INTERRUPT2_POSITION, OTG, inst),\
- SRI(OPTC_INPUT_CLOCK_CONTROL, ODM, inst),\
- SRI(OPTC_DATA_SOURCE_SELECT, ODM, inst),\
- SRI(OPTC_INPUT_GLOBAL_CONTROL, ODM, inst),\
- SRI(CONTROL, VTG, inst),\
- SRI(OTG_VERT_SYNC_CONTROL, OTG, inst),\
- SRI(OTG_GSL_CONTROL, OTG, inst),\
- SRI(OTG_CRC_CNTL, OTG, inst),\
- SRI(OTG_CRC0_DATA_RG, OTG, inst),\
- SRI(OTG_CRC0_DATA_B, OTG, inst),\
- SRI(OTG_CRC0_WINDOWA_X_CONTROL, OTG, inst),\
- SRI(OTG_CRC0_WINDOWA_Y_CONTROL, OTG, inst),\
- SRI(OTG_CRC0_WINDOWB_X_CONTROL, OTG, inst),\
- SRI(OTG_CRC0_WINDOWB_Y_CONTROL, OTG, inst),\
- SR(GSL_SOURCE_SELECT),\
- SRI(OTG_TRIGA_MANUAL_TRIG, OTG, inst),\
- SRI(OTG_GLOBAL_CONTROL1, OTG, inst),\
- SRI(OTG_GLOBAL_CONTROL2, OTG, inst),\
- SRI(OTG_GSL_WINDOW_X, OTG, inst),\
- SRI(OTG_GSL_WINDOW_Y, OTG, inst),\
- SRI(OTG_VUPDATE_KEEPOUT, OTG, inst),\
- SRI(OTG_DSC_START_POSITION, OTG, inst),\
- SRI(OTG_DRR_TRIGGER_WINDOW, OTG, inst),\
- SRI(OTG_DRR_V_TOTAL_CHANGE, OTG, inst),\
- SRI(OPTC_DATA_FORMAT_CONTROL, ODM, inst),\
- SRI(OPTC_BYTES_PER_PIXEL, ODM, inst),\
- SRI(OPTC_WIDTH_CONTROL, ODM, inst),\
- SRI(OPTC_MEMORY_CONFIG, ODM, inst),\
- SRI(OTG_DRR_CONTROL, OTG, inst)
-
#define OPTC_COMMON_MASK_SH_LIST_DCN3_2(mask_sh)\
SF(OTG0_OTG_VSTARTUP_PARAM, VSTARTUP_START, mask_sh),\
SF(OTG0_OTG_VUPDATE_PARAM, VUPDATE_OFFSET, mask_sh),\
diff --git a/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_resource.c b/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_resource.c
index d1598e3131f6..22dd1ebea618 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_resource.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_resource.c
@@ -57,7 +57,6 @@
#include "dcn31/dcn31_hpo_dp_stream_encoder.h"
#include "dcn31/dcn31_hpo_dp_link_encoder.h"
#include "dcn32/dcn32_hpo_dp_link_encoder.h"
-#include "dc_link_dp.h"
#include "dcn31/dcn31_apg.h"
#include "dcn31/dcn31_dio_link_encoder.h"
#include "dcn32/dcn32_dio_link_encoder.h"
@@ -69,7 +68,7 @@
#include "dml/display_mode_vba.h"
#include "dcn32/dcn32_dccg.h"
#include "dcn10/dcn10_resource.h"
-#include "dc_link_ddc.h"
+#include "link.h"
#include "dcn31/dcn31_panel_cntl.h"
#include "dcn30/dcn30_dwb.h"
@@ -106,8 +105,6 @@ enum dcn32_clk_src_array_id {
*/
/* DCN */
-/* TODO awful hack. fixup dcn20_dwb.h */
-#undef BASE_INNER
#define BASE_INNER(seg) ctx->dcn_reg_offsets[seg]
#define BASE(seg) BASE_INNER(seg)
@@ -167,6 +164,9 @@ enum dcn32_clk_src_array_id {
REG_STRUCT.reg_name[id] = BASE(reg ## block ## id ## _ ## temp_name ## _BASE_IDX) + \
reg ## block ## id ## _ ## temp_name
+#define SF_DWB2(reg_name, block, id, field_name, post_fix) \
+ .field_name = reg_name ## __ ## field_name ## post_fix
+
#define DCCG_SRII(reg_name, block, id)\
REG_STRUCT.block ## _ ## reg_name[id] = BASE(reg ## block ## id ## _ ## reg_name ## _BASE_IDX) + \
reg ## block ## id ## _ ## reg_name
@@ -324,7 +324,6 @@ static const struct dcn10_link_enc_shift le_shift = {
static const struct dcn10_link_enc_mask le_mask = {
LINK_ENCODER_MASK_SH_LIST_DCN31(_MASK), \
-
//DPCS_DCN31_MASK_SH_LIST(_MASK)
};
@@ -657,8 +656,6 @@ static const struct resource_caps res_cap_dcn32 = {
static const struct dc_plane_cap plane_cap = {
.type = DC_PLANE_TYPE_DCN_UNIVERSAL,
- .blends_with_above = true,
- .blends_with_below = true,
.per_pixel_alpha = true,
.pixel_format_support = {
@@ -722,9 +719,15 @@ static const struct dc_debug_options debug_defaults_drv = {
/* Must match enable_single_display_2to1_odm_policy to support dynamic ODM transitions*/
.enable_double_buffered_dsc_pg_support = true,
.enable_dp_dig_pixel_rate_div_policy = 1,
- .allow_sw_cursor_fallback = false,
+ .allow_sw_cursor_fallback = false, // Linux can't do SW cursor "fallback"
.alloc_extra_way_for_cursor = true,
.min_prefetch_in_strobe_ns = 60000, // 60us
+ .disable_unbounded_requesting = false,
+ .override_dispclk_programming = true,
+ .disable_fpo_optimizations = false,
+ .fpo_vactive_margin_us = 2000, // 2000us
+ .disable_fpo_vactive = true,
+ .disable_boot_optimizations = false,
};
static const struct dc_debug_options debug_defaults_diags = {
@@ -830,6 +833,7 @@ static struct clock_source *dcn32_clock_source_create(
return &clk_src->base;
}
+ kfree(clk_src);
BREAK_TO_DEBUGGER();
return NULL;
}
@@ -1504,8 +1508,11 @@ static void dcn32_resource_destruct(struct dcn32_resource_pool *pool)
if (pool->base.dccg != NULL)
dcn_dccg_destroy(&pool->base.dccg);
- if (pool->base.oem_device != NULL)
- dal_ddc_service_destroy(&pool->base.oem_device);
+ if (pool->base.oem_device != NULL) {
+ struct dc *dc = pool->base.oem_device->ctx->dc;
+
+ dc->link_srv->destroy_ddc_service(&pool->base.oem_device);
+ }
}
@@ -1609,7 +1616,6 @@ bool dcn32_acquire_post_bldn_3dlut(
struct dc_transfer_func **shaper)
{
bool ret = false;
- union dc_3dlut_state *state;
ASSERT(*lut == NULL && *shaper == NULL);
*lut = NULL;
@@ -1618,7 +1624,6 @@ bool dcn32_acquire_post_bldn_3dlut(
if (!res_ctx->is_mpc_3dlut_acquired[mpcc_id]) {
*lut = pool->mpc_lut[mpcc_id];
*shaper = pool->mpc_shaper[mpcc_id];
- state = &pool->mpc_lut[mpcc_id]->state;
res_ctx->is_mpc_3dlut_acquired[mpcc_id] = true;
ret = true;
}
@@ -1679,7 +1684,7 @@ static void dcn32_enable_phantom_plane(struct dc *dc,
/* Shadow pipe has small viewport. */
phantom_plane->clip_rect.y = 0;
- phantom_plane->clip_rect.height = phantom_stream->timing.v_addressable;
+ phantom_plane->clip_rect.height = phantom_stream->src.height;
phantom_plane->is_phantom = true;
@@ -1719,8 +1724,29 @@ static struct dc_stream_state *dcn32_enable_phantom_stream(struct dc *dc,
return phantom_stream;
}
+void dcn32_retain_phantom_pipes(struct dc *dc, struct dc_state *context)
+{
+ int i;
+ struct dc_plane_state *phantom_plane = NULL;
+ struct dc_stream_state *phantom_stream = NULL;
+
+ for (i = 0; i < dc->res_pool->pipe_count; i++) {
+ struct pipe_ctx *pipe = &context->res_ctx.pipe_ctx[i];
+
+ if (!pipe->top_pipe && !pipe->prev_odm_pipe &&
+ pipe->plane_state && pipe->stream &&
+ pipe->stream->mall_stream_config.type == SUBVP_PHANTOM) {
+ phantom_plane = pipe->plane_state;
+ phantom_stream = pipe->stream;
+
+ dc_plane_state_retain(phantom_plane);
+ dc_stream_retain(phantom_stream);
+ }
+ }
+}
+
// return true if removed piped from ctx, false otherwise
-bool dcn32_remove_phantom_pipes(struct dc *dc, struct dc_state *context)
+bool dcn32_remove_phantom_pipes(struct dc *dc, struct dc_state *context, bool fast_update)
{
int i;
bool removed_pipe = false;
@@ -1747,14 +1773,23 @@ bool dcn32_remove_phantom_pipes(struct dc *dc, struct dc_state *context)
removed_pipe = true;
}
- // Clear all phantom stream info
- if (pipe->stream) {
- pipe->stream->mall_stream_config.type = SUBVP_NONE;
- pipe->stream->mall_stream_config.paired_stream = NULL;
- }
+ /* For non-full updates, a shallow copy of the current state
+ * is created. In this case we don't want to erase the current
+ * state (there can be 2 HIRQL threads, one in flip, and one in
+ * checkMPO) that can cause a race condition.
+ *
+ * This is just a workaround, needs a proper fix.
+ */
+ if (!fast_update) {
+ // Clear all phantom stream info
+ if (pipe->stream) {
+ pipe->stream->mall_stream_config.type = SUBVP_NONE;
+ pipe->stream->mall_stream_config.paired_stream = NULL;
+ }
- if (pipe->plane_state) {
- pipe->plane_state->is_phantom = false;
+ if (pipe->plane_state) {
+ pipe->plane_state->is_phantom = false;
+ }
}
}
return removed_pipe;
@@ -1881,8 +1916,8 @@ int dcn32_populate_dml_pipes_from_context(
struct resource_context *res_ctx = &context->res_ctx;
struct pipe_ctx *pipe;
bool subvp_in_use = false;
- uint8_t is_pipe_split_expected[MAX_PIPES] = {0};
struct dc_crtc_timing *timing;
+ bool vsr_odm_support = false;
dcn20_populate_dml_pipes_from_context(dc, context, pipes, fast_validate);
@@ -1900,12 +1935,15 @@ int dcn32_populate_dml_pipes_from_context(
timing = &pipe->stream->timing;
pipes[pipe_cnt].pipe.dest.odm_combine_policy = dm_odm_combine_policy_dal;
+ vsr_odm_support = (res_ctx->pipe_ctx[i].stream->src.width >= 5120 &&
+ res_ctx->pipe_ctx[i].stream->src.width > res_ctx->pipe_ctx[i].stream->dst.width);
if (context->stream_count == 1 &&
- context->stream_status[0].plane_count <= 1 &&
+ context->stream_status[0].plane_count == 1 &&
!dc_is_hdmi_signal(res_ctx->pipe_ctx[i].stream->signal) &&
is_h_timing_divisible_by_2(res_ctx->pipe_ctx[i].stream) &&
pipe->stream->timing.pix_clk_100hz * 100 > DCN3_2_VMIN_DISPCLK_HZ &&
- dc->debug.enable_single_display_2to1_odm_policy) {
+ dc->debug.enable_single_display_2to1_odm_policy &&
+ !vsr_odm_support) { //excluding 2to1 ODM combine on >= 5k vsr
pipes[pipe_cnt].pipe.dest.odm_combine_policy = dm_odm_combine_policy_2to1;
}
pipe_cnt++;
@@ -1919,30 +1957,36 @@ int dcn32_populate_dml_pipes_from_context(
timing = &pipe->stream->timing;
pipes[pipe_cnt].pipe.src.gpuvm = true;
- pipes[pipe_cnt].pipe.src.dcc_fraction_of_zs_req_luma = 0;
- pipes[pipe_cnt].pipe.src.dcc_fraction_of_zs_req_chroma = 0;
+ DC_FP_START();
+ dcn32_zero_pipe_dcc_fraction(pipes, pipe_cnt);
+ DC_FP_END();
pipes[pipe_cnt].pipe.dest.vfront_porch = timing->v_front_porch;
pipes[pipe_cnt].pipe.src.gpuvm_min_page_size_kbytes = 256; // according to spreadsheet
pipes[pipe_cnt].pipe.src.unbounded_req_mode = false;
pipes[pipe_cnt].pipe.scale_ratio_depth.lb_depth = dm_lb_19;
- switch (pipe->stream->mall_stream_config.type) {
- case SUBVP_MAIN:
- pipes[pipe_cnt].pipe.src.use_mall_for_pstate_change = dm_use_mall_pstate_change_sub_viewport;
- subvp_in_use = true;
- break;
- case SUBVP_PHANTOM:
- pipes[pipe_cnt].pipe.src.use_mall_for_pstate_change = dm_use_mall_pstate_change_phantom_pipe;
- pipes[pipe_cnt].pipe.src.use_mall_for_static_screen = dm_use_mall_static_screen_disable;
- // Disallow unbounded req for SubVP according to DCHUB programming guide
- pipes[pipe_cnt].pipe.src.unbounded_req_mode = false;
- break;
- case SUBVP_NONE:
- pipes[pipe_cnt].pipe.src.use_mall_for_pstate_change = dm_use_mall_pstate_change_disable;
- pipes[pipe_cnt].pipe.src.use_mall_for_static_screen = dm_use_mall_static_screen_disable;
- break;
- default:
- break;
+ /* Only populate DML input with subvp info for full updates.
+ * This is just a workaround -- needs a proper fix.
+ */
+ if (!fast_validate) {
+ switch (pipe->stream->mall_stream_config.type) {
+ case SUBVP_MAIN:
+ pipes[pipe_cnt].pipe.src.use_mall_for_pstate_change = dm_use_mall_pstate_change_sub_viewport;
+ subvp_in_use = true;
+ break;
+ case SUBVP_PHANTOM:
+ pipes[pipe_cnt].pipe.src.use_mall_for_pstate_change = dm_use_mall_pstate_change_phantom_pipe;
+ pipes[pipe_cnt].pipe.src.use_mall_for_static_screen = dm_use_mall_static_screen_disable;
+ // Disallow unbounded req for SubVP according to DCHUB programming guide
+ pipes[pipe_cnt].pipe.src.unbounded_req_mode = false;
+ break;
+ case SUBVP_NONE:
+ pipes[pipe_cnt].pipe.src.use_mall_for_pstate_change = dm_use_mall_pstate_change_disable;
+ pipes[pipe_cnt].pipe.src.use_mall_for_static_screen = dm_use_mall_static_screen_disable;
+ break;
+ default:
+ break;
+ }
}
pipes[pipe_cnt].dout.dsc_input_bpc = 0;
@@ -1964,7 +2008,7 @@ int dcn32_populate_dml_pipes_from_context(
}
DC_FP_START();
- is_pipe_split_expected[i] = dcn32_predict_pipe_split(context, &pipes[pipe_cnt]);
+ dcn32_predict_pipe_split(context, &pipes[pipe_cnt]);
DC_FP_END();
pipe_cnt++;
@@ -1979,7 +2023,7 @@ int dcn32_populate_dml_pipes_from_context(
// In general cases we want to keep the dram clock change requirement
// (prefer configs that support MCLK switch). Only override to false
// for SubVP
- if (subvp_in_use)
+ if (context->bw_ctx.bw.dcn.clk.fw_based_mclk_switching || subvp_in_use)
context->bw_ctx.dml.soc.dram_clock_change_requirement_final = false;
else
context->bw_ctx.dml.soc.dram_clock_change_requirement_final = true;
@@ -2030,8 +2074,19 @@ static struct resource_funcs dcn32_res_pool_funcs = {
.update_soc_for_wm_a = dcn30_update_soc_for_wm_a,
.add_phantom_pipes = dcn32_add_phantom_pipes,
.remove_phantom_pipes = dcn32_remove_phantom_pipes,
+ .retain_phantom_pipes = dcn32_retain_phantom_pipes,
+ .save_mall_state = dcn32_save_mall_state,
+ .restore_mall_state = dcn32_restore_mall_state,
};
+static uint32_t read_pipe_fuses(struct dc_context *ctx)
+{
+ uint32_t value = REG_READ(CC_DC_PIPE_DIS);
+ /* DCN32 support max 4 pipes */
+ value = value & 0xf;
+ return value;
+}
+
static bool dcn32_resource_construct(
uint8_t num_virtual_links,
@@ -2045,27 +2100,28 @@ static bool dcn32_resource_construct(
uint32_t pipe_fuses = 0;
uint32_t num_pipes = 4;
- #undef REG_STRUCT
- #define REG_STRUCT bios_regs
- bios_regs_init();
-
- #undef REG_STRUCT
- #define REG_STRUCT clk_src_regs
- clk_src_regs_init(0, A),
- clk_src_regs_init(1, B),
- clk_src_regs_init(2, C),
- clk_src_regs_init(3, D),
- clk_src_regs_init(4, E);
- #undef REG_STRUCT
- #define REG_STRUCT abm_regs
- abm_regs_init(0),
- abm_regs_init(1),
- abm_regs_init(2),
- abm_regs_init(3);
-
- #undef REG_STRUCT
- #define REG_STRUCT dccg_regs
- dccg_regs_init();
+#undef REG_STRUCT
+#define REG_STRUCT bios_regs
+ bios_regs_init();
+
+#undef REG_STRUCT
+#define REG_STRUCT clk_src_regs
+ clk_src_regs_init(0, A),
+ clk_src_regs_init(1, B),
+ clk_src_regs_init(2, C),
+ clk_src_regs_init(3, D),
+ clk_src_regs_init(4, E);
+
+#undef REG_STRUCT
+#define REG_STRUCT abm_regs
+ abm_regs_init(0),
+ abm_regs_init(1),
+ abm_regs_init(2),
+ abm_regs_init(3);
+
+#undef REG_STRUCT
+#define REG_STRUCT dccg_regs
+ dccg_regs_init();
DC_FP_START();
@@ -2074,7 +2130,7 @@ static bool dcn32_resource_construct(
pool->base.res_cap = &res_cap_dcn32;
/* max number of pipes for ASIC before checking for pipe fuses */
num_pipes = pool->base.res_cap->num_timing_generator;
- pipe_fuses = REG_READ(CC_DC_PIPE_DIS);
+ pipe_fuses = read_pipe_fuses(ctx);
for (i = 0; i < pool->base.res_cap->num_timing_generator; i++)
if (pipe_fuses & 1 << i)
@@ -2108,29 +2164,40 @@ static bool dcn32_resource_construct(
dc->caps.max_cursor_size = 64;
dc->caps.min_horizontal_blanking_period = 80;
dc->caps.dmdata_alloc_size = 2048;
- dc->caps.mall_size_per_mem_channel = 0;
+ dc->caps.mall_size_per_mem_channel = 4;
dc->caps.mall_size_total = 0;
dc->caps.cursor_cache_size = dc->caps.max_cursor_size * dc->caps.max_cursor_size * 8;
dc->caps.cache_line_size = 64;
dc->caps.cache_num_ways = 16;
- dc->caps.max_cab_allocation_bytes = 67108864; // 64MB = 1024 * 1024 * 64
+
+ /* Calculate the available MALL space */
+ dc->caps.max_cab_allocation_bytes = dcn32_calc_num_avail_chans_for_mall(
+ dc, dc->ctx->dc_bios->vram_info.num_chans) *
+ dc->caps.mall_size_per_mem_channel * 1024 * 1024;
+ dc->caps.mall_size_total = dc->caps.max_cab_allocation_bytes;
+
dc->caps.subvp_fw_processing_delay_us = 15;
+ dc->caps.subvp_drr_max_vblank_margin_us = 40;
dc->caps.subvp_prefetch_end_to_mall_start_us = 15;
dc->caps.subvp_swath_height_margin_lines = 16;
dc->caps.subvp_pstate_allow_width_us = 20;
dc->caps.subvp_vertical_int_margin_us = 30;
+ dc->caps.subvp_drr_vblank_start_margin_us = 100; // 100us margin
dc->caps.max_slave_planes = 2;
dc->caps.max_slave_yuv_planes = 2;
dc->caps.max_slave_rgb_planes = 2;
dc->caps.post_blend_color_processing = true;
dc->caps.force_dp_tps4_for_cp2520 = true;
+ if (dc->config.forceHBR2CP2520)
+ dc->caps.force_dp_tps4_for_cp2520 = false;
dc->caps.dp_hpo = true;
dc->caps.dp_hdmi21_pcon_support = true;
dc->caps.edp_dsc_support = true;
dc->caps.extended_aux_timeout_support = true;
dc->caps.dmcub_support = true;
+ dc->caps.seamless_odm = true;
/* Color pipeline capabilities */
dc->caps.color.dpp.dcn_arch = 1;
@@ -2404,11 +2471,14 @@ static bool dcn32_resource_construct(
ddc_init_data.id.id = dc->ctx->dc_bios->fw_info.oem_i2c_obj_id;
ddc_init_data.id.enum_id = 0;
ddc_init_data.id.type = OBJECT_TYPE_GENERIC;
- pool->base.oem_device = dal_ddc_service_create(&ddc_init_data);
+ pool->base.oem_device = dc->link_srv->create_ddc_service(&ddc_init_data);
} else {
pool->base.oem_device = NULL;
}
+ if (ASICREV_IS_GC_11_0_3(dc->ctx->asic_id.hw_internal_rev) && (dc->config.sdpif_request_limit_words_per_umc == 0))
+ dc->config.sdpif_request_limit_words_per_umc = 16;
+
DC_FP_END();
return true;
@@ -2544,3 +2614,55 @@ struct pipe_ctx *dcn32_acquire_idle_pipe_for_head_pipe_in_layer(
return idle_pipe;
}
+
+unsigned int dcn32_calc_num_avail_chans_for_mall(struct dc *dc, int num_chans)
+{
+ /*
+ * DCN32 and DCN321 SKUs may have different sizes for MALL
+ * but we may not be able to access all the MALL space.
+ * If the num_chans is power of 2, then we can access all
+ * of the available MALL space. Otherwise, we can only
+ * access:
+ *
+ * max_cab_size_in_bytes = total_cache_size_in_bytes *
+ * ((2^floor(log2(num_chans)))/num_chans)
+ *
+ * Calculating the MALL sizes for all available SKUs, we
+ * have come up with the follow simplified check.
+ * - we have max_chans which provides the max MALL size.
+ * Each chans supports 4MB of MALL so:
+ *
+ * total_cache_size_in_bytes = max_chans * 4 MB
+ *
+ * - we have avail_chans which shows the number of channels
+ * we can use if we can't access the entire MALL space.
+ * It is generally half of max_chans
+ * - so we use the following checks:
+ *
+ * if (num_chans == max_chans), return max_chans
+ * if (num_chans < max_chans), return avail_chans
+ *
+ * - exception is GC_11_0_0 where we can't access max_chans,
+ * so we define max_avail_chans as the maximum available
+ * MALL space
+ *
+ */
+ int gc_11_0_0_max_chans = 48;
+ int gc_11_0_0_max_avail_chans = 32;
+ int gc_11_0_0_avail_chans = 16;
+ int gc_11_0_3_max_chans = 16;
+ int gc_11_0_3_avail_chans = 8;
+ int gc_11_0_2_max_chans = 8;
+ int gc_11_0_2_avail_chans = 4;
+
+ if (ASICREV_IS_GC_11_0_0(dc->ctx->asic_id.hw_internal_rev)) {
+ return (num_chans == gc_11_0_0_max_chans) ?
+ gc_11_0_0_max_avail_chans : gc_11_0_0_avail_chans;
+ } else if (ASICREV_IS_GC_11_0_2(dc->ctx->asic_id.hw_internal_rev)) {
+ return (num_chans == gc_11_0_2_max_chans) ?
+ gc_11_0_2_max_chans : gc_11_0_2_avail_chans;
+ } else { // if (ASICREV_IS_GC_11_0_3(dc->ctx->asic_id.hw_internal_rev)) {
+ return (num_chans == gc_11_0_3_max_chans) ?
+ gc_11_0_3_max_chans : gc_11_0_3_avail_chans;
+ }
+}
diff --git a/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_resource.h b/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_resource.h
index f76120e67c16..3937dbc1e552 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_resource.h
+++ b/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_resource.h
@@ -38,6 +38,8 @@
#define DCN3_2_MBLK_HEIGHT_4BPE 128
#define DCN3_2_MBLK_HEIGHT_8BPE 64
#define DCN3_2_VMIN_DISPCLK_HZ 717000000
+#define DCN3_2_DCFCLK_DS_INIT_KHZ 10000 // Choose 10Mhz for init DCFCLK DS freq
+#define DCN3_2_MIN_ACTIVE_SWITCH_MARGIN_FPO_US 100 // Only allow FPO + Vactive if active margin >= 100
#define TO_DCN32_RES_POOL(pool)\
container_of(pool, struct dcn32_resource_pool, base)
@@ -45,17 +47,6 @@
extern struct _vcs_dpi_ip_params_st dcn3_2_ip;
extern struct _vcs_dpi_soc_bounding_box_st dcn3_2_soc;
-/* Temp struct used to save and restore MALL config
- * during validation.
- *
- * TODO: Move MALL config into dc_state instead of stream struct
- * to avoid needing to save/restore.
- */
-struct mall_temp_config {
- struct mall_stream_config mall_stream_config[MAX_PIPES];
- bool is_phantom_plane[MAX_PIPES];
-};
-
struct dcn32_resource_pool {
struct resource_pool base;
};
@@ -81,6 +72,9 @@ bool dcn32_release_post_bldn_3dlut(
struct dc_transfer_func **shaper);
bool dcn32_remove_phantom_pipes(struct dc *dc,
+ struct dc_state *context, bool fast_update);
+
+void dcn32_retain_phantom_pipes(struct dc *dc,
struct dc_state *context);
void dcn32_add_phantom_pipes(struct dc *dc,
@@ -104,8 +98,17 @@ void dcn32_calculate_wm_and_dlg(
int pipe_cnt,
int vlevel);
-uint32_t dcn32_helper_calculate_num_ways_for_subvp
- (struct dc *dc,
+uint32_t dcn32_helper_mall_bytes_to_ways(
+ struct dc *dc,
+ uint32_t total_size_in_mall_bytes);
+
+uint32_t dcn32_helper_calculate_mall_bytes_for_cursor(
+ struct dc *dc,
+ struct pipe_ctx *pipe_ctx,
+ bool ignore_cursor_buf);
+
+uint32_t dcn32_helper_calculate_num_ways_for_subvp(
+ struct dc *dc,
struct dc_state *context);
void dcn32_merge_pipes_for_subvp(struct dc *dc,
@@ -120,6 +123,8 @@ bool dcn32_subvp_in_use(struct dc *dc,
bool dcn32_mpo_in_use(struct dc_state *context);
bool dcn32_any_surfaces_rotated(struct dc *dc, struct dc_state *context);
+bool dcn32_is_center_timing(struct pipe_ctx *pipe);
+bool dcn32_is_psr_capable(struct pipe_ctx *pipe);
struct pipe_ctx *dcn32_acquire_idle_pipe_for_head_pipe_in_layer(
struct dc_state *state,
@@ -142,6 +147,14 @@ void dcn32_restore_mall_state(struct dc *dc,
struct dc_state *context,
struct mall_temp_config *temp_config);
+struct dc_stream_state *dcn32_can_support_mclk_switch_using_fw_based_vblank_stretch(struct dc *dc, const struct dc_state *context);
+
+bool dcn32_allow_subvp_with_active_margin(struct pipe_ctx *pipe);
+
+unsigned int dcn32_calc_num_avail_chans_for_mall(struct dc *dc, int num_chans);
+
+double dcn32_determine_max_vratio_prefetch(struct dc *dc, struct dc_state *context);
+
/* definitions for run time init of reg offsets */
/* CLK SRC */
@@ -462,6 +475,7 @@ void dcn32_restore_mall_state(struct dc *dc,
SRI_ARR(OTG_H_BLANK, DSCL, id), SRI_ARR(OTG_V_BLANK, DSCL, id), \
SRI_ARR(SCL_MODE, DSCL, id), SRI_ARR(LB_DATA_FORMAT, DSCL, id), \
SRI_ARR(LB_MEMORY_CTRL, DSCL, id), SRI_ARR(DSCL_AUTOCAL, DSCL, id), \
+ SRI_ARR(DSCL_CONTROL, DSCL, id), \
SRI_ARR(SCL_TAP_CONTROL, DSCL, id), \
SRI_ARR(SCL_COEF_RAM_TAP_SELECT, DSCL, id), \
SRI_ARR(SCL_COEF_RAM_TAP_DATA, DSCL, id), \
@@ -1244,7 +1258,8 @@ void dcn32_restore_mall_state(struct dc *dc,
SR(DCHUBBUB_ARB_FCLK_PSTATE_CHANGE_WATERMARK_C), \
SR(DCHUBBUB_ARB_FCLK_PSTATE_CHANGE_WATERMARK_D), \
SR(DCN_VM_FAULT_ADDR_MSB), SR(DCN_VM_FAULT_ADDR_LSB), \
- SR(DCN_VM_FAULT_CNTL), SR(DCN_VM_FAULT_STATUS) \
+ SR(DCN_VM_FAULT_CNTL), SR(DCN_VM_FAULT_STATUS), \
+ SR(SDPIF_REQUEST_RATE_LIMIT) \
)
/* DCCG */
@@ -1265,7 +1280,8 @@ void dcn32_restore_mall_state(struct dc *dc,
DCCG_SRII(PHASE, DTBCLK_DTO, 0), DCCG_SRII(PHASE, DTBCLK_DTO, 1), \
DCCG_SRII(PHASE, DTBCLK_DTO, 2), DCCG_SRII(PHASE, DTBCLK_DTO, 3), \
SR(DCCG_AUDIO_DTBCLK_DTO_MODULO), SR(DCCG_AUDIO_DTBCLK_DTO_PHASE), \
- SR(OTG_PIXEL_RATE_DIV), SR(DTBCLK_P_CNTL), SR(DCCG_AUDIO_DTO_SOURCE) \
+ SR(OTG_PIXEL_RATE_DIV), SR(DTBCLK_P_CNTL), \
+ SR(DCCG_AUDIO_DTO_SOURCE), SR(DENTIST_DISPCLK_CNTL) \
)
/* VMID */
diff --git a/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_resource_helpers.c b/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_resource_helpers.c
index b03a7814e96d..eeca16faf31a 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_resource_helpers.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn32/dcn32_resource_helpers.c
@@ -27,19 +27,78 @@
#include "dcn32_resource.h"
#include "dcn20/dcn20_resource.h"
#include "dml/dcn32/display_mode_vba_util_32.h"
+#include "dml/dcn32/dcn32_fpu.h"
static bool is_dual_plane(enum surface_pixel_format format)
{
return format >= SURFACE_PIXEL_FORMAT_VIDEO_BEGIN || format == SURFACE_PIXEL_FORMAT_GRPH_RGBE_ALPHA;
}
+
+uint32_t dcn32_helper_mall_bytes_to_ways(
+ struct dc *dc,
+ uint32_t total_size_in_mall_bytes)
+{
+ uint32_t cache_lines_used, lines_per_way, total_cache_lines, num_ways;
+
+ /* add 2 lines for worst case alignment */
+ cache_lines_used = total_size_in_mall_bytes / dc->caps.cache_line_size + 2;
+
+ total_cache_lines = dc->caps.max_cab_allocation_bytes / dc->caps.cache_line_size;
+ lines_per_way = total_cache_lines / dc->caps.cache_num_ways;
+ num_ways = cache_lines_used / lines_per_way;
+ if (cache_lines_used % lines_per_way > 0)
+ num_ways++;
+
+ return num_ways;
+}
+
+uint32_t dcn32_helper_calculate_mall_bytes_for_cursor(
+ struct dc *dc,
+ struct pipe_ctx *pipe_ctx,
+ bool ignore_cursor_buf)
+{
+ struct hubp *hubp = pipe_ctx->plane_res.hubp;
+ uint32_t cursor_size = hubp->curs_attr.pitch * hubp->curs_attr.height;
+ uint32_t cursor_mall_size_bytes = 0;
+
+ switch (pipe_ctx->stream->cursor_attributes.color_format) {
+ case CURSOR_MODE_MONO:
+ cursor_size /= 2;
+ break;
+ case CURSOR_MODE_COLOR_1BIT_AND:
+ case CURSOR_MODE_COLOR_PRE_MULTIPLIED_ALPHA:
+ case CURSOR_MODE_COLOR_UN_PRE_MULTIPLIED_ALPHA:
+ cursor_size *= 4;
+ break;
+
+ case CURSOR_MODE_COLOR_64BIT_FP_PRE_MULTIPLIED:
+ case CURSOR_MODE_COLOR_64BIT_FP_UN_PRE_MULTIPLIED:
+ cursor_size *= 8;
+ break;
+ }
+
+ /* only count if cursor is enabled, and if additional allocation needed outside of the
+ * DCN cursor buffer
+ */
+ if (pipe_ctx->stream->cursor_position.enable && (ignore_cursor_buf ||
+ cursor_size > 16384)) {
+ /* cursor_num_mblk = CEILING(num_cursors*cursor_width*cursor_width*cursor_Bpe/mblk_bytes, 1)
+ * Note: add 1 mblk in case of cursor misalignment
+ */
+ cursor_mall_size_bytes = ((cursor_size + DCN3_2_MALL_MBLK_SIZE_BYTES - 1) /
+ DCN3_2_MALL_MBLK_SIZE_BYTES + 1) * DCN3_2_MALL_MBLK_SIZE_BYTES;
+ }
+
+ return cursor_mall_size_bytes;
+}
+
/**
* ********************************************************************************************
* dcn32_helper_calculate_num_ways_for_subvp: Calculate number of ways needed for SubVP
*
- * This function first checks the bytes required per pixel on the SubVP pipe, then calculates
- * the total number of pixels required in the SubVP MALL region. These are used to calculate
- * the number of cache lines used (then number of ways required) for SubVP MCLK switching.
+ * Gets total allocation required for the phantom viewport calculated by DML in bytes and
+ * converts to number of cache ways.
*
* @param [in] dc: current dc state
* @param [in] context: new dc state
@@ -48,101 +107,19 @@ static bool is_dual_plane(enum surface_pixel_format format)
*
* ********************************************************************************************
*/
-uint32_t dcn32_helper_calculate_num_ways_for_subvp(struct dc *dc, struct dc_state *context)
+uint32_t dcn32_helper_calculate_num_ways_for_subvp(
+ struct dc *dc,
+ struct dc_state *context)
{
- uint32_t num_ways = 0;
- uint32_t bytes_per_pixel = 0;
- uint32_t cache_lines_used = 0;
- uint32_t lines_per_way = 0;
- uint32_t total_cache_lines = 0;
- uint32_t bytes_in_mall = 0;
- uint32_t num_mblks = 0;
- uint32_t cache_lines_per_plane = 0;
- uint32_t i = 0, j = 0;
- uint16_t mblk_width = 0;
- uint16_t mblk_height = 0;
- uint32_t full_vp_width_blk_aligned = 0;
- uint32_t full_vp_height_blk_aligned = 0;
- uint32_t mall_alloc_width_blk_aligned = 0;
- uint32_t mall_alloc_height_blk_aligned = 0;
- uint16_t full_vp_height = 0;
- bool subvp_in_use = false;
-
- for (i = 0; i < dc->res_pool->pipe_count; i++) {
- struct pipe_ctx *pipe = &context->res_ctx.pipe_ctx[i];
-
- /* Find the phantom pipes.
- * - For pipe split case we need to loop through the bottom and next ODM
- * pipes or only half the viewport size is counted
- */
- if (pipe->stream && pipe->plane_state &&
- pipe->stream->mall_stream_config.type == SUBVP_PHANTOM) {
- struct pipe_ctx *main_pipe = NULL;
-
- subvp_in_use = true;
- /* Get full viewport height from main pipe (required for MBLK calculation) */
- for (j = 0; j < dc->res_pool->pipe_count; j++) {
- main_pipe = &context->res_ctx.pipe_ctx[j];
- if (main_pipe->stream == pipe->stream->mall_stream_config.paired_stream) {
- full_vp_height = main_pipe->plane_res.scl_data.viewport.height;
- break;
- }
- }
-
- bytes_per_pixel = pipe->plane_state->format >= SURFACE_PIXEL_FORMAT_GRPH_ARGB16161616 ? 8 : 4;
- mblk_width = DCN3_2_MBLK_WIDTH;
- mblk_height = bytes_per_pixel == 4 ? DCN3_2_MBLK_HEIGHT_4BPE : DCN3_2_MBLK_HEIGHT_8BPE;
-
- /* full_vp_width_blk_aligned = FLOOR(vp_x_start + full_vp_width + blk_width - 1, blk_width) -
- * FLOOR(vp_x_start, blk_width)
- */
- full_vp_width_blk_aligned = ((pipe->plane_res.scl_data.viewport.x +
- pipe->plane_res.scl_data.viewport.width + mblk_width - 1) / mblk_width * mblk_width) +
- (pipe->plane_res.scl_data.viewport.x / mblk_width * mblk_width);
-
- /* full_vp_height_blk_aligned = FLOOR(vp_y_start + full_vp_height + blk_height - 1, blk_height) -
- * FLOOR(vp_y_start, blk_height)
- */
- full_vp_height_blk_aligned = ((pipe->plane_res.scl_data.viewport.y +
- full_vp_height + mblk_height - 1) / mblk_height * mblk_height) +
- (pipe->plane_res.scl_data.viewport.y / mblk_height * mblk_height);
-
- /* mall_alloc_width_blk_aligned_l/c = full_vp_width_blk_aligned_l/c */
- mall_alloc_width_blk_aligned = full_vp_width_blk_aligned;
-
- /* mall_alloc_height_blk_aligned_l/c = CEILING(sub_vp_height_l/c - 1, blk_height_l/c) + blk_height_l/c */
- mall_alloc_height_blk_aligned = (pipe->stream->timing.v_addressable - 1 + mblk_height - 1) /
- mblk_height * mblk_height + mblk_height;
-
- /* full_mblk_width_ub_l/c = mall_alloc_width_blk_aligned_l/c;
- * full_mblk_height_ub_l/c = mall_alloc_height_blk_aligned_l/c;
- * num_mblk_l/c = (full_mblk_width_ub_l/c / mblk_width_l/c) * (full_mblk_height_ub_l/c / mblk_height_l/c);
- * (Should be divisible, but round up if not)
- */
- num_mblks = ((mall_alloc_width_blk_aligned + mblk_width - 1) / mblk_width) *
- ((mall_alloc_height_blk_aligned + mblk_height - 1) / mblk_height);
- bytes_in_mall = num_mblks * DCN3_2_MALL_MBLK_SIZE_BYTES;
- // cache lines used is total bytes / cache_line size. Add +2 for worst case alignment
- // (MALL is 64-byte aligned)
- cache_lines_per_plane = bytes_in_mall / dc->caps.cache_line_size + 2;
-
- /* For DCC divide by 256 */
- if (pipe->plane_state->dcc.enable)
- cache_lines_per_plane = cache_lines_per_plane + (cache_lines_per_plane / 256) + 1;
- cache_lines_used += cache_lines_per_plane;
+ if (context->bw_ctx.bw.dcn.mall_subvp_size_bytes > 0) {
+ if (dc->debug.force_subvp_num_ways) {
+ return dc->debug.force_subvp_num_ways;
+ } else {
+ return dcn32_helper_mall_bytes_to_ways(dc, context->bw_ctx.bw.dcn.mall_subvp_size_bytes);
}
+ } else {
+ return 0;
}
-
- total_cache_lines = dc->caps.max_cab_allocation_bytes / dc->caps.cache_line_size;
- lines_per_way = total_cache_lines / dc->caps.cache_num_ways;
- num_ways = cache_lines_used / lines_per_way;
- if (cache_lines_used % lines_per_way > 0)
- num_ways++;
-
- if (subvp_in_use && dc->debug.force_subvp_num_ways > 0)
- num_ways = dc->debug.force_subvp_num_ways;
-
- return num_ways;
}
void dcn32_merge_pipes_for_subvp(struct dc *dc,
@@ -250,6 +227,39 @@ bool dcn32_any_surfaces_rotated(struct dc *dc, struct dc_state *context)
return false;
}
+bool dcn32_is_center_timing(struct pipe_ctx *pipe)
+{
+ bool is_center_timing = false;
+
+ if (pipe->stream) {
+ if (pipe->stream->timing.v_addressable != pipe->stream->dst.height ||
+ pipe->stream->timing.v_addressable != pipe->stream->src.height) {
+ is_center_timing = true;
+ }
+ }
+
+ if (pipe->plane_state) {
+ if (pipe->stream->timing.v_addressable != pipe->plane_state->dst_rect.height &&
+ pipe->stream->timing.v_addressable != pipe->plane_state->src_rect.height) {
+ is_center_timing = true;
+ }
+ }
+
+ return is_center_timing;
+}
+
+bool dcn32_is_psr_capable(struct pipe_ctx *pipe)
+{
+ bool psr_capable = false;
+
+ if (pipe->stream && pipe->stream->link->psr_settings.psr_version != DC_PSR_VERSION_UNSUPPORTED) {
+ psr_capable = true;
+ }
+ return psr_capable;
+}
+
+#define DCN3_2_NEW_DET_OVERRIDE_MIN_MULTIPLIER 7
+
/**
* *******************************************************************************************
* dcn32_determine_det_override: Determine DET allocation for each pipe
@@ -261,7 +271,6 @@ bool dcn32_any_surfaces_rotated(struct dc *dc, struct dc_state *context)
* If there is a plane that's driven by more than 1 pipe (i.e. pipe split), then the
* number of DET for that given plane will be split among the pipes driving that plane.
*
- *
* High level algorithm:
* 1. Split total DET among number of streams
* 2. For each stream, split DET among the planes
@@ -269,6 +278,18 @@ bool dcn32_any_surfaces_rotated(struct dc *dc, struct dc_state *context)
* among those pipes.
* 4. Assign the DET override to the DML pipes.
*
+ * Special cases:
+ *
+ * For two displays that have a large difference in pixel rate, we may experience
+ * underflow on the larger display when we divide the DET equally. For this, we
+ * will implement a modified algorithm to assign more DET to larger display.
+ *
+ * 1. Calculate difference in pixel rates ( multiplier ) between two displays
+ * 2. If the multiplier exceeds DCN3_2_NEW_DET_OVERRIDE_MIN_MULTIPLIER, then
+ * implement the modified DET override algorithm.
+ * 3. Assign smaller DET size for lower pixel display and higher DET size for
+ * higher pixel display
+ *
* @param [in]: dc: Current DC state
* @param [in]: context: New DC state to be programmed
* @param [in]: pipes: Array of DML pipes
@@ -288,18 +309,46 @@ void dcn32_determine_det_override(struct dc *dc,
struct dc_plane_state *current_plane = NULL;
uint8_t stream_count = 0;
+ int phy_pix_clk_mult, lower_mode_stream_index;
+ int phy_pix_clk[MAX_PIPES] = {0};
+ bool use_new_det_override_algorithm = false;
+
for (i = 0; i < context->stream_count; i++) {
/* Don't count SubVP streams for DET allocation */
if (context->streams[i]->mall_stream_config.type != SUBVP_PHANTOM) {
+ phy_pix_clk[i] = context->streams[i]->phy_pix_clk;
stream_count++;
}
}
+ /* Check for special case with two displays, one with much higher pixel rate */
+ if (stream_count == 2) {
+ ASSERT((phy_pix_clk[0] > 0) && (phy_pix_clk[1] > 0));
+ if (phy_pix_clk[0] < phy_pix_clk[1]) {
+ lower_mode_stream_index = 0;
+ phy_pix_clk_mult = phy_pix_clk[1] / phy_pix_clk[0];
+ } else {
+ lower_mode_stream_index = 1;
+ phy_pix_clk_mult = phy_pix_clk[0] / phy_pix_clk[1];
+ }
+
+ if (phy_pix_clk_mult >= DCN3_2_NEW_DET_OVERRIDE_MIN_MULTIPLIER)
+ use_new_det_override_algorithm = true;
+ }
+
if (stream_count > 0) {
stream_segments = 18 / stream_count;
for (i = 0; i < context->stream_count; i++) {
if (context->streams[i]->mall_stream_config.type == SUBVP_PHANTOM)
continue;
+
+ if (use_new_det_override_algorithm) {
+ if (i == lower_mode_stream_index)
+ stream_segments = 4;
+ else
+ stream_segments = 14;
+ }
+
if (context->stream_status[i].plane_count > 0)
plane_segments = stream_segments / context->stream_status[i].plane_count;
else
@@ -352,6 +401,7 @@ void dcn32_set_det_allocations(struct dc *dc, struct dc_state *context,
int i, pipe_cnt;
struct resource_context *res_ctx = &context->res_ctx;
struct pipe_ctx *pipe;
+ bool disable_unbounded_requesting = dc->debug.disable_z9_mpc || dc->debug.disable_unbounded_requesting;
for (i = 0, pipe_cnt = 0; i < dc->res_pool->pipe_count; i++) {
@@ -368,7 +418,7 @@ void dcn32_set_det_allocations(struct dc *dc, struct dc_state *context,
*/
if (pipe_cnt == 1) {
pipes[0].pipe.src.det_size_override = DCN3_2_MAX_DET_SIZE;
- if (pipe->plane_state && !dc->debug.disable_z9_mpc && pipe->plane_state->tiling_info.gfx9.swizzle != DC_SW_LINEAR) {
+ if (pipe->plane_state && !disable_unbounded_requesting && pipe->plane_state->tiling_info.gfx9.swizzle != DC_SW_LINEAR) {
if (!is_dual_plane(pipe->plane_state->format)) {
pipes[0].pipe.src.det_size_override = DCN3_2_DEFAULT_DET_SIZE;
pipes[0].pipe.src.unbounded_req_mode = true;
@@ -451,3 +501,158 @@ void dcn32_restore_mall_state(struct dc *dc,
pipe->plane_state->is_phantom = temp_config->is_phantom_plane[i];
}
}
+
+#define MAX_STRETCHED_V_BLANK 1000 // in micro-seconds (must ensure to match value in FW)
+/*
+ * Scaling factor for v_blank stretch calculations considering timing in
+ * micro-seconds and pixel clock in 100hz.
+ * Note: the parenthesis are necessary to ensure the correct order of
+ * operation where V_SCALE is used.
+ */
+#define V_SCALE (10000 / MAX_STRETCHED_V_BLANK)
+
+static int get_frame_rate_at_max_stretch_100hz(
+ struct dc_stream_state *fpo_candidate_stream,
+ uint32_t fpo_vactive_margin_us)
+{
+ struct dc_crtc_timing *timing = NULL;
+ uint32_t sec_per_100_lines;
+ uint32_t max_v_blank;
+ uint32_t curr_v_blank;
+ uint32_t v_stretch_max;
+ uint32_t stretched_frame_pix_cnt;
+ uint32_t scaled_stretched_frame_pix_cnt;
+ uint32_t scaled_refresh_rate;
+ uint32_t v_scale;
+
+ if (fpo_candidate_stream == NULL)
+ return 0;
+
+ /* check if refresh rate at least 120hz */
+ timing = &fpo_candidate_stream->timing;
+ if (timing == NULL)
+ return 0;
+
+ v_scale = 10000 / (MAX_STRETCHED_V_BLANK + fpo_vactive_margin_us);
+
+ sec_per_100_lines = timing->pix_clk_100hz / timing->h_total + 1;
+ max_v_blank = sec_per_100_lines / v_scale + 1;
+ curr_v_blank = timing->v_total - timing->v_addressable;
+ v_stretch_max = (max_v_blank > curr_v_blank) ? (max_v_blank - curr_v_blank) : (0);
+ stretched_frame_pix_cnt = (v_stretch_max + timing->v_total) * timing->h_total;
+ scaled_stretched_frame_pix_cnt = stretched_frame_pix_cnt / 10000;
+ scaled_refresh_rate = (timing->pix_clk_100hz) / scaled_stretched_frame_pix_cnt + 1;
+
+ return scaled_refresh_rate;
+
+}
+
+static bool is_refresh_rate_support_mclk_switch_using_fw_based_vblank_stretch(
+ struct dc_stream_state *fpo_candidate_stream, uint32_t fpo_vactive_margin_us)
+{
+ int refresh_rate_max_stretch_100hz;
+ int min_refresh_100hz;
+
+ if (fpo_candidate_stream == NULL)
+ return false;
+
+ refresh_rate_max_stretch_100hz = get_frame_rate_at_max_stretch_100hz(fpo_candidate_stream, fpo_vactive_margin_us);
+ min_refresh_100hz = fpo_candidate_stream->timing.min_refresh_in_uhz / 10000;
+
+ if (refresh_rate_max_stretch_100hz < min_refresh_100hz)
+ return false;
+
+ return true;
+}
+
+static int get_refresh_rate(struct dc_stream_state *fpo_candidate_stream)
+{
+ int refresh_rate = 0;
+ int h_v_total = 0;
+ struct dc_crtc_timing *timing = NULL;
+
+ if (fpo_candidate_stream == NULL)
+ return 0;
+
+ /* check if refresh rate at least 120hz */
+ timing = &fpo_candidate_stream->timing;
+ if (timing == NULL)
+ return 0;
+
+ h_v_total = timing->h_total * timing->v_total;
+ if (h_v_total == 0)
+ return 0;
+
+ refresh_rate = ((timing->pix_clk_100hz * 100) / (h_v_total)) + 1;
+ return refresh_rate;
+}
+
+/**
+ * dcn32_can_support_mclk_switch_using_fw_based_vblank_stretch - Determines if config can support FPO
+ *
+ * @param [in]: dc - current dc state
+ * @param [in]: context - new dc state
+ *
+ * Return: Pointer to FPO stream candidate if config can support FPO, otherwise NULL
+ */
+struct dc_stream_state *dcn32_can_support_mclk_switch_using_fw_based_vblank_stretch(struct dc *dc, const struct dc_state *context)
+{
+ int refresh_rate = 0;
+ const int minimum_refreshrate_supported = 120;
+ struct dc_stream_state *fpo_candidate_stream = NULL;
+ bool is_fpo_vactive = false;
+ uint32_t fpo_vactive_margin_us = 0;
+
+ if (context == NULL)
+ return NULL;
+
+ if (dc->debug.disable_fams)
+ return NULL;
+
+ if (!dc->caps.dmub_caps.mclk_sw)
+ return NULL;
+
+ if (context->bw_ctx.bw.dcn.clk.fw_based_mclk_switching_shut_down)
+ return NULL;
+
+ /* For FPO we can support up to 2 display configs if:
+ * - first display uses FPO
+ * - Second display switches in VACTIVE */
+ if (context->stream_count > 2)
+ return NULL;
+ else if (context->stream_count == 2) {
+ DC_FP_START();
+ dcn32_assign_fpo_vactive_candidate(dc, context, &fpo_candidate_stream);
+ DC_FP_END();
+
+ DC_FP_START();
+ is_fpo_vactive = dcn32_find_vactive_pipe(dc, context, DCN3_2_MIN_ACTIVE_SWITCH_MARGIN_FPO_US);
+ DC_FP_END();
+ if (!is_fpo_vactive || dc->debug.disable_fpo_vactive)
+ return NULL;
+ } else
+ fpo_candidate_stream = context->streams[0];
+
+ if (!fpo_candidate_stream)
+ return NULL;
+
+ if (fpo_candidate_stream->sink->edid_caps.panel_patch.disable_fams)
+ return NULL;
+
+ refresh_rate = get_refresh_rate(fpo_candidate_stream);
+ if (refresh_rate < minimum_refreshrate_supported)
+ return NULL;
+
+ fpo_vactive_margin_us = is_fpo_vactive ? dc->debug.fpo_vactive_margin_us : 0; // For now hardcode the FPO + Vactive stretch margin to be 2000us
+ if (!is_refresh_rate_support_mclk_switch_using_fw_based_vblank_stretch(fpo_candidate_stream, fpo_vactive_margin_us))
+ return NULL;
+
+ // check if freesync enabled
+ if (!fpo_candidate_stream->allow_freesync)
+ return NULL;
+
+ if (fpo_candidate_stream->vrr_active_variable)
+ return NULL;
+
+ return fpo_candidate_stream;
+}
diff --git a/drivers/gpu/drm/amd/display/dc/dcn321/dcn321_dio_link_encoder.c b/drivers/gpu/drm/amd/display/dc/dcn321/dcn321_dio_link_encoder.c
index fa9b6603cfd3..13be5f06d987 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn321/dcn321_dio_link_encoder.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn321/dcn321_dio_link_encoder.c
@@ -31,7 +31,6 @@
#include "dcn321_dio_link_encoder.h"
#include "dcn31/dcn31_dio_link_encoder.h"
#include "stream_encoder.h"
-#include "i2caux_interface.h"
#include "dc_bios_types.h"
#include "gpio_service_interface.h"
diff --git a/drivers/gpu/drm/amd/display/dc/dcn321/dcn321_resource.c b/drivers/gpu/drm/amd/display/dc/dcn321/dcn321_resource.c
index 6292ac515d1a..a60ddb343d13 100644
--- a/drivers/gpu/drm/amd/display/dc/dcn321/dcn321_resource.c
+++ b/drivers/gpu/drm/amd/display/dc/dcn321/dcn321_resource.c
@@ -60,7 +60,6 @@
#include "dcn31/dcn31_hpo_dp_stream_encoder.h"
#include "dcn31/dcn31_hpo_dp_link_encoder.h"
#include "dcn32/dcn32_hpo_dp_link_encoder.h"
-#include "dc_link_dp.h"
#include "dcn31/dcn31_apg.h"
#include "dcn31/dcn31_dio_link_encoder.h"
#include "dcn32/dcn32_dio_link_encoder.h"
@@ -73,7 +72,7 @@
#include "dml/display_mode_vba.h"
#include "dcn32/dcn32_dccg.h"
#include "dcn10/dcn10_resource.h"
-#include "dc_link_ddc.h"
+#include "link.h"
#include "dcn31/dcn31_panel_cntl.h"
#include "dcn30/dcn30_dwb.h"
@@ -109,8 +108,6 @@ enum dcn321_clk_src_array_id {
*/
/* DCN */
-/* TODO awful hack. fixup dcn20_dwb.h */
-#undef BASE_INNER
#define BASE_INNER(seg) ctx->dcn_reg_offsets[seg]
#define BASE(seg) BASE_INNER(seg)
@@ -174,6 +171,9 @@ enum dcn321_clk_src_array_id {
REG_STRUCT.block ## _ ## reg_name[id] = BASE(reg ## block ## id ## _ ## reg_name ## _BASE_IDX) + \
reg ## block ## id ## _ ## reg_name
+#define SF_DWB2(reg_name, block, id, field_name, post_fix) \
+ .field_name = reg_name ## __ ## field_name ## post_fix
+
#define VUPDATE_SRII(reg_name, block, id)\
REG_STRUCT.reg_name[id] = BASE(reg ## reg_name ## _ ## block ## id ## _BASE_IDX) + \
reg ## reg_name ## _ ## block ## id
@@ -655,8 +655,6 @@ static const struct resource_caps res_cap_dcn321 = {
static const struct dc_plane_cap plane_cap = {
.type = DC_PLANE_TYPE_DCN_UNIVERSAL,
- .blends_with_above = true,
- .blends_with_below = true,
.per_pixel_alpha = true,
.pixel_format_support = {
@@ -720,9 +718,15 @@ static const struct dc_debug_options debug_defaults_drv = {
/*must match enable_single_display_2to1_odm_policy to support dynamic ODM transitions*/
.enable_double_buffered_dsc_pg_support = true,
.enable_dp_dig_pixel_rate_div_policy = 1,
- .allow_sw_cursor_fallback = false,
+ .allow_sw_cursor_fallback = false, // Linux can't do SW cursor "fallback"
.alloc_extra_way_for_cursor = true,
.min_prefetch_in_strobe_ns = 60000, // 60us
+ .disable_unbounded_requesting = false,
+ .override_dispclk_programming = true,
+ .disable_fpo_optimizations = false,
+ .fpo_vactive_margin_us = 2000, // 2000us
+ .disable_fpo_vactive = true,
+ .disable_boot_optimizations = false,
};
static const struct dc_debug_options debug_defaults_diags = {
@@ -742,7 +746,7 @@ static const struct dc_debug_options debug_defaults_diags = {
.dmub_command_table = true,
.enable_tri_buf = true,
.use_max_lb = true,
- .force_disable_subvp = true
+ .force_disable_subvp = true,
};
@@ -829,6 +833,7 @@ static struct clock_source *dcn321_clock_source_create(
return &clk_src->base;
}
+ kfree(clk_src);
BREAK_TO_DEBUGGER();
return NULL;
}
@@ -1489,8 +1494,11 @@ static void dcn321_resource_destruct(struct dcn321_resource_pool *pool)
if (pool->base.dccg != NULL)
dcn_dccg_destroy(&pool->base.dccg);
- if (pool->base.oem_device != NULL)
- dal_ddc_service_destroy(&pool->base.oem_device);
+ if (pool->base.oem_device != NULL) {
+ struct dc *dc = pool->base.oem_device->ctx->dc;
+
+ dc->link_srv->destroy_ddc_service(&pool->base.oem_device);
+ }
}
@@ -1619,8 +1627,19 @@ static struct resource_funcs dcn321_res_pool_funcs = {
.update_soc_for_wm_a = dcn30_update_soc_for_wm_a,
.add_phantom_pipes = dcn32_add_phantom_pipes,
.remove_phantom_pipes = dcn32_remove_phantom_pipes,
+ .retain_phantom_pipes = dcn32_retain_phantom_pipes,
+ .save_mall_state = dcn32_save_mall_state,
+ .restore_mall_state = dcn32_restore_mall_state,
};
+static uint32_t read_pipe_fuses(struct dc_context *ctx)
+{
+ uint32_t value = REG_READ(CC_DC_PIPE_DIS);
+ /* DCN321 support max 4 pipes */
+ value = value & 0xf;
+ return value;
+}
+
static bool dcn321_resource_construct(
uint8_t num_virtual_links,
@@ -1663,7 +1682,7 @@ static bool dcn321_resource_construct(
pool->base.res_cap = &res_cap_dcn321;
/* max number of pipes for ASIC before checking for pipe fuses */
num_pipes = pool->base.res_cap->num_timing_generator;
- pipe_fuses = REG_READ(CC_DC_PIPE_DIS);
+ pipe_fuses = read_pipe_fuses(ctx);
for (i = 0; i < pool->base.res_cap->num_timing_generator; i++)
if (pipe_fuses & 1 << i)
@@ -1697,17 +1716,25 @@ static bool dcn321_resource_construct(
dc->caps.max_cursor_size = 64;
dc->caps.min_horizontal_blanking_period = 80;
dc->caps.dmdata_alloc_size = 2048;
- dc->caps.mall_size_per_mem_channel = 0;
+ dc->caps.mall_size_per_mem_channel = 4;
dc->caps.mall_size_total = 0;
dc->caps.cursor_cache_size = dc->caps.max_cursor_size * dc->caps.max_cursor_size * 8;
dc->caps.cache_line_size = 64;
dc->caps.cache_num_ways = 16;
- dc->caps.max_cab_allocation_bytes = 33554432; // 32MB = 1024 * 1024 * 32
+
+ /* Calculate the available MALL space */
+ dc->caps.max_cab_allocation_bytes = dcn32_calc_num_avail_chans_for_mall(
+ dc, dc->ctx->dc_bios->vram_info.num_chans) *
+ dc->caps.mall_size_per_mem_channel * 1024 * 1024;
+ dc->caps.mall_size_total = dc->caps.max_cab_allocation_bytes;
+
dc->caps.subvp_fw_processing_delay_us = 15;
+ dc->caps.subvp_drr_max_vblank_margin_us = 40;
dc->caps.subvp_prefetch_end_to_mall_start_us = 15;
dc->caps.subvp_swath_height_margin_lines = 16;
dc->caps.subvp_pstate_allow_width_us = 20;
dc->caps.subvp_vertical_int_margin_us = 30;
+ dc->caps.subvp_drr_vblank_start_margin_us = 100; // 100us margin
dc->caps.max_slave_planes = 1;
dc->caps.max_slave_yuv_planes = 1;
dc->caps.max_slave_rgb_planes = 1;
@@ -1983,7 +2010,7 @@ static bool dcn321_resource_construct(
ddc_init_data.id.id = dc->ctx->dc_bios->fw_info.oem_i2c_obj_id;
ddc_init_data.id.enum_id = 0;
ddc_init_data.id.type = OBJECT_TYPE_GENERIC;
- pool->base.oem_device = dal_ddc_service_create(&ddc_init_data);
+ pool->base.oem_device = dc->link_srv->create_ddc_service(&ddc_init_data);
} else {
pool->base.oem_device = NULL;
}
diff --git a/drivers/gpu/drm/amd/display/dc/dm_helpers.h b/drivers/gpu/drm/amd/display/dc/dm_helpers.h
index e3e5c39895a3..7ce9a5b6c33b 100644
--- a/drivers/gpu/drm/amd/display/dc/dm_helpers.h
+++ b/drivers/gpu/drm/amd/display/dc/dm_helpers.h
@@ -116,6 +116,11 @@ bool dm_helpers_dp_mst_start_top_mgr(
bool dm_helpers_dp_mst_stop_top_mgr(
struct dc_context *ctx,
struct dc_link *link);
+
+void dm_helpers_dp_mst_update_branch_bandwidth(
+ struct dc_context *ctx,
+ struct dc_link *link);
+
/**
* OS specific aux read callback.
*/
@@ -156,6 +161,12 @@ enum dc_edid_status dm_helpers_read_local_edid(
struct dc_link *link,
struct dc_sink *sink);
+bool dm_helpers_dp_handle_test_pattern_request(
+ struct dc_context *ctx,
+ const struct dc_link *link,
+ union link_test_pattern dpcd_test_pattern,
+ union test_misc dpcd_test_params);
+
void dm_set_dcn_clocks(
struct dc_context *ctx,
struct dc_clocks *clks);
@@ -188,6 +199,7 @@ int dm_helpers_dmub_set_config_sync(struct dc_context *ctx,
const struct dc_link *link,
struct set_config_cmd_payload *payload,
enum set_config_status *operation_result);
+enum adaptive_sync_type dm_get_adaptive_sync_support_type(struct dc_link *link);
enum dc_edid_status dm_helpers_get_sbios_edid(struct dc_link *link, struct dc_edid *edid);
diff --git a/drivers/gpu/drm/amd/display/dc/dml/Makefile b/drivers/gpu/drm/amd/display/dc/dml/Makefile
index ca7d24000621..01db035589c5 100644
--- a/drivers/gpu/drm/amd/display/dc/dml/Makefile
+++ b/drivers/gpu/drm/amd/display/dc/dml/Makefile
@@ -26,13 +26,18 @@
# subcomponents.
ifdef CONFIG_X86
-dml_ccflags := -mhard-float -msse
+dml_ccflags-$(CONFIG_CC_IS_GCC) := -mhard-float
+dml_ccflags := $(dml_ccflags-y) -msse
endif
ifdef CONFIG_PPC64
dml_ccflags := -mhard-float -maltivec
endif
+ifdef CONFIG_ARM64
+dml_rcflags := -mgeneral-regs-only
+endif
+
ifdef CONFIG_CC_IS_GCC
ifneq ($(call gcc-min-version, 70100),y)
IS_OLD_GCC = 1
@@ -55,8 +60,6 @@ frame_warn_flag := -Wframe-larger-than=2048
endif
CFLAGS_$(AMDDALPATH)/dc/dml/display_mode_lib.o := $(dml_ccflags)
-
-ifdef CONFIG_DRM_AMD_DC_DCN
CFLAGS_$(AMDDALPATH)/dc/dml/display_mode_vba.o := $(dml_ccflags)
CFLAGS_$(AMDDALPATH)/dc/dml/dcn10/dcn10_fpu.o := $(dml_ccflags)
CFLAGS_$(AMDDALPATH)/dc/dml/dcn20/dcn20_fpu.o := $(dml_ccflags)
@@ -88,7 +91,6 @@ CFLAGS_$(AMDDALPATH)/dc/dml/calcs/dcn_calcs.o := $(dml_ccflags)
CFLAGS_$(AMDDALPATH)/dc/dml/calcs/dcn_calc_auto.o := $(dml_ccflags)
CFLAGS_$(AMDDALPATH)/dc/dml/calcs/dcn_calc_math.o := $(dml_ccflags) -Wno-tautological-compare
CFLAGS_REMOVE_$(AMDDALPATH)/dc/dml/display_mode_vba.o := $(dml_rcflags)
-CFLAGS_REMOVE_$(AMDDALPATH)/dc/dml/dcn2x/dcn2x.o := $(dml_rcflags)
CFLAGS_REMOVE_$(AMDDALPATH)/dc/dml/dcn20/display_mode_vba_20.o := $(dml_rcflags)
CFLAGS_REMOVE_$(AMDDALPATH)/dc/dml/dcn20/display_rq_dlg_calc_20.o := $(dml_rcflags)
CFLAGS_REMOVE_$(AMDDALPATH)/dc/dml/dcn20/display_mode_vba_20v2.o := $(dml_rcflags)
@@ -105,7 +107,18 @@ CFLAGS_REMOVE_$(AMDDALPATH)/dc/dml/dcn32/display_mode_vba_util_32.o := $(dml_rcf
CFLAGS_REMOVE_$(AMDDALPATH)/dc/dml/dcn301/dcn301_fpu.o := $(dml_rcflags)
CFLAGS_REMOVE_$(AMDDALPATH)/dc/dml/display_mode_lib.o := $(dml_rcflags)
CFLAGS_REMOVE_$(AMDDALPATH)/dc/dml/dsc/rc_calc_fpu.o := $(dml_rcflags)
-endif
+CFLAGS_REMOVE_$(AMDDALPATH)/dc/dml/dcn10/dcn10_fpu.o := $(dml_rcflags)
+CFLAGS_REMOVE_$(AMDDALPATH)/dc/dml/dcn20/dcn20_fpu.o := $(dml_rcflags)
+CFLAGS_REMOVE_$(AMDDALPATH)/dc/dml/dcn314/display_mode_vba_314.o := $(dml_rcflags)
+CFLAGS_REMOVE_$(AMDDALPATH)/dc/dml/dcn314/display_rq_dlg_calc_314.o := $(dml_rcflags)
+CFLAGS_REMOVE_$(AMDDALPATH)/dc/dml/dcn314/dcn314_fpu.o := $(dml_rcflags)
+CFLAGS_REMOVE_$(AMDDALPATH)/dc/dml/dcn30/dcn30_fpu.o := $(dml_rcflags)
+CFLAGS_REMOVE_$(AMDDALPATH)/dc/dml/dcn32/dcn32_fpu.o := $(dml_rcflags)
+CFLAGS_REMOVE_$(AMDDALPATH)/dc/dml/dcn321/dcn321_fpu.o := $(dml_rcflags)
+CFLAGS_REMOVE_$(AMDDALPATH)/dc/dml/dcn31/dcn31_fpu.o := $(dml_rcflags)
+CFLAGS_REMOVE_$(AMDDALPATH)/dc/dml/dcn302/dcn302_fpu.o := $(dml_rcflags)
+CFLAGS_REMOVE_$(AMDDALPATH)/dc/dml/dcn303/dcn303_fpu.o := $(dml_rcflags)
+CFLAGS_REMOVE_$(AMDDALPATH)/dc/dml/calcs/dcn_calc_math.o := $(dml_rcflags)
CFLAGS_$(AMDDALPATH)/dc/dml/dml1_display_rq_dlg_calc.o := $(dml_ccflags)
CFLAGS_$(AMDDALPATH)/dc/dml/display_rq_dlg_helpers.o := $(dml_ccflags)
CFLAGS_REMOVE_$(AMDDALPATH)/dc/dml/dml1_display_rq_dlg_calc.o := $(dml_rcflags)
@@ -116,7 +129,7 @@ CFLAGS_REMOVE_$(AMDDALPATH)/dc/dml/calcs/dcn_calc_math.o := $(dml_rcflags)
DML = calcs/dce_calcs.o calcs/custom_float.o calcs/bw_fixed.o
-ifdef CONFIG_DRM_AMD_DC_DCN
+ifdef CONFIG_DRM_AMD_DC_FP
DML += display_mode_lib.o display_rq_dlg_helpers.o dml1_display_rq_dlg_calc.o
DML += dcn10/dcn10_fpu.o
DML += dcn20/dcn20_fpu.o
diff --git a/drivers/gpu/drm/amd/display/dc/dml/dc_features.h b/drivers/gpu/drm/amd/display/dc/dml/dc_features.h
index 74e86732e301..2cbdd75429ff 100644
--- a/drivers/gpu/drm/amd/display/dc/dml/dc_features.h
+++ b/drivers/gpu/drm/amd/display/dc/dml/dc_features.h
@@ -29,6 +29,13 @@
#define DC__PRESENT 1
#define DC__PRESENT__1 1
#define DC__NUM_DPP 4
+
+/**
+ * @DC__VOLTAGE_STATES:
+ *
+ * Define the maximum amount of states supported by the ASIC. Every ASIC has a
+ * specific number of states; this macro defines the maximum number of states.
+ */
#define DC__VOLTAGE_STATES 20
#define DC__NUM_DPP__4 1
#define DC__NUM_DPP__0_PRESENT 1
diff --git a/drivers/gpu/drm/amd/display/dc/dml/dcn10/dcn10_fpu.c b/drivers/gpu/drm/amd/display/dc/dml/dcn10/dcn10_fpu.c
index 99644d896222..c5e84190c17a 100644
--- a/drivers/gpu/drm/amd/display/dc/dml/dcn10/dcn10_fpu.c
+++ b/drivers/gpu/drm/amd/display/dc/dml/dcn10/dcn10_fpu.c
@@ -27,6 +27,8 @@
#include "dcn10/dcn10_resource.h"
#include "dcn10_fpu.h"
+#include "resource.h"
+#include "amdgpu_dm/dc_fpu.h"
/**
* DOC: DCN10 FPU manipulation Overview
@@ -121,3 +123,37 @@ struct _vcs_dpi_soc_bounding_box_st dcn1_0_soc = {
.writeback_dram_clock_change_latency_us = 23.0,
.return_bus_width_bytes = 64,
};
+
+void dcn10_resource_construct_fp(struct dc *dc)
+{
+ dc_assert_fp_enabled();
+ if (dc->ctx->dce_version == DCN_VERSION_1_01) {
+ struct dcn_soc_bounding_box *dcn_soc = dc->dcn_soc;
+ struct dcn_ip_params *dcn_ip = dc->dcn_ip;
+ struct display_mode_lib *dml = &dc->dml;
+
+ dml->ip.max_num_dpp = 3;
+ /* TODO how to handle 23.84? */
+ dcn_soc->dram_clock_change_latency = 23;
+ dcn_ip->max_num_dpp = 3;
+ }
+ if (ASICREV_IS_RV1_F0(dc->ctx->asic_id.hw_internal_rev)) {
+ dc->dcn_soc->urgent_latency = 3;
+ dc->debug.disable_dmcu = true;
+ dc->dcn_soc->fabric_and_dram_bandwidth_vmax0p9 = 41.60f;
+ }
+
+ dc->dcn_soc->number_of_channels = dc->ctx->asic_id.vram_width / ddr4_dram_width;
+ ASSERT(dc->dcn_soc->number_of_channels < 3);
+ if (dc->dcn_soc->number_of_channels == 0)/*old sbios bug*/
+ dc->dcn_soc->number_of_channels = 2;
+
+ if (dc->dcn_soc->number_of_channels == 1) {
+ dc->dcn_soc->fabric_and_dram_bandwidth_vmax0p9 = 19.2f;
+ dc->dcn_soc->fabric_and_dram_bandwidth_vnom0p8 = 17.066f;
+ dc->dcn_soc->fabric_and_dram_bandwidth_vmid0p72 = 14.933f;
+ dc->dcn_soc->fabric_and_dram_bandwidth_vmin0p65 = 12.8f;
+ if (ASICREV_IS_RV1_F0(dc->ctx->asic_id.hw_internal_rev))
+ dc->dcn_soc->fabric_and_dram_bandwidth_vmax0p9 = 20.80f;
+ }
+}
diff --git a/drivers/gpu/drm/amd/display/dc/dml/dcn10/dcn10_fpu.h b/drivers/gpu/drm/amd/display/dc/dml/dcn10/dcn10_fpu.h
index e74ed4b4ce5b..63219ecd8478 100644
--- a/drivers/gpu/drm/amd/display/dc/dml/dcn10/dcn10_fpu.h
+++ b/drivers/gpu/drm/amd/display/dc/dml/dcn10/dcn10_fpu.h
@@ -27,4 +27,6 @@
#ifndef __DCN10_FPU_H__
#define __DCN10_FPU_H__
+void dcn10_resource_construct_fp(struct dc *dc);
+
#endif /* __DCN20_FPU_H__ */
diff --git a/drivers/gpu/drm/amd/display/dc/dml/dcn20/dcn20_fpu.c b/drivers/gpu/drm/amd/display/dc/dml/dcn20/dcn20_fpu.c
index 45db40c41882..f1c1a4b5fcac 100644
--- a/drivers/gpu/drm/amd/display/dc/dml/dcn20/dcn20_fpu.c
+++ b/drivers/gpu/drm/amd/display/dc/dml/dcn20/dcn20_fpu.c
@@ -26,12 +26,12 @@
#include "resource.h"
#include "clk_mgr.h"
-#include "dc_link_dp.h"
#include "dchubbub.h"
#include "dcn20/dcn20_resource.h"
#include "dcn21/dcn21_resource.h"
#include "clk_mgr/dcn21/rn_clk_mgr.h"
+#include "link.h"
#include "dcn20_fpu.h"
#define DC_LOGGER_INIT(logger)
@@ -565,7 +565,7 @@ struct _vcs_dpi_soc_bounding_box_st dcn2_1_soc = {
.dppclk_mhz = 847.06,
.phyclk_mhz = 810.0,
.socclk_mhz = 953.0,
- .dscclk_mhz = 489.0,
+ .dscclk_mhz = 300.0,
.dram_speed_mts = 2400.0,
},
{
@@ -576,7 +576,7 @@ struct _vcs_dpi_soc_bounding_box_st dcn2_1_soc = {
.dppclk_mhz = 960.00,
.phyclk_mhz = 810.0,
.socclk_mhz = 278.0,
- .dscclk_mhz = 287.67,
+ .dscclk_mhz = 342.86,
.dram_speed_mts = 2666.0,
},
{
@@ -587,7 +587,7 @@ struct _vcs_dpi_soc_bounding_box_st dcn2_1_soc = {
.dppclk_mhz = 1028.57,
.phyclk_mhz = 810.0,
.socclk_mhz = 715.0,
- .dscclk_mhz = 318.334,
+ .dscclk_mhz = 369.23,
.dram_speed_mts = 3200.0,
},
{
@@ -917,19 +917,19 @@ void dcn20_populate_dml_writeback_from_context(struct dc *dc,
}
void dcn20_fpu_set_wb_arb_params(struct mcif_arb_params *wb_arb_params,
- struct dc_state *context,
- display_e2e_pipe_params_st *pipes,
- int pipe_cnt, int i)
+ struct dc_state *context,
+ display_e2e_pipe_params_st *pipes,
+ int pipe_cnt, int i)
{
- int k;
+ int k;
- dc_assert_fp_enabled();
+ dc_assert_fp_enabled();
- for (k = 0; k < sizeof(wb_arb_params->cli_watermark)/sizeof(wb_arb_params->cli_watermark[0]); k++) {
- wb_arb_params->cli_watermark[k] = get_wm_writeback_urgent(&context->bw_ctx.dml, pipes, pipe_cnt) * 1000;
- wb_arb_params->pstate_watermark[k] = get_wm_writeback_dram_clock_change(&context->bw_ctx.dml, pipes, pipe_cnt) * 1000;
- }
- wb_arb_params->time_per_pixel = 16.0 * 1000 / (context->res_ctx.pipe_ctx[i].stream->phy_pix_clk / 1000); /* 4 bit fraction, ms */
+ for (k = 0; k < sizeof(wb_arb_params->cli_watermark)/sizeof(wb_arb_params->cli_watermark[0]); k++) {
+ wb_arb_params->cli_watermark[k] = get_wm_writeback_urgent(&context->bw_ctx.dml, pipes, pipe_cnt) * 1000;
+ wb_arb_params->pstate_watermark[k] = get_wm_writeback_dram_clock_change(&context->bw_ctx.dml, pipes, pipe_cnt) * 1000;
+ }
+ wb_arb_params->time_per_pixel = 16.0 * 1000 / (context->res_ctx.pipe_ctx[i].stream->phy_pix_clk / 1000); /* 4 bit fraction, ms */
}
static bool is_dtbclk_required(struct dc *dc, struct dc_state *context)
@@ -938,7 +938,7 @@ static bool is_dtbclk_required(struct dc *dc, struct dc_state *context)
for (i = 0; i < dc->res_pool->pipe_count; i++) {
if (!context->res_ctx.pipe_ctx[i].stream)
continue;
- if (is_dp_128b_132b_signal(&context->res_ctx.pipe_ctx[i]))
+ if (dc->link_srv->dp_is_128b_132b_signal(&context->res_ctx.pipe_ctx[i]))
return true;
}
return false;
@@ -963,6 +963,8 @@ static enum dcn_zstate_support_state decide_zstate_support(struct dc *dc, struc
* 2. single eDP, on link 0, 1 plane and stutter period > 5ms
* Z10 only cases:
* 1. single eDP, on link 0, 1 plane and stutter period >= 5ms
+ * Z8 cases:
+ * 1. stutter period sufficient
* Zstate not allowed cases:
* 1. Everything else
*/
@@ -971,6 +973,9 @@ static enum dcn_zstate_support_state decide_zstate_support(struct dc *dc, struc
else if (context->stream_count == 1 && context->streams[0]->signal == SIGNAL_TYPE_EDP) {
struct dc_link *link = context->streams[0]->sink->link;
struct dc_stream_status *stream_status = &context->stream_status[0];
+ int minmum_z8_residency = dc->debug.minimum_z8_residency_time > 0 ? dc->debug.minimum_z8_residency_time : 1000;
+ bool allow_z8 = context->bw_ctx.dml.vba.StutterPeriod > (double)minmum_z8_residency;
+ bool is_pwrseq0 = link->link_index == 0;
if (dc_extended_blank_supported(dc)) {
for (i = 0; i < dc->res_pool->pipe_count; i++) {
@@ -983,25 +988,60 @@ static enum dcn_zstate_support_state decide_zstate_support(struct dc *dc, struc
}
}
}
- /* zstate only supported on PWRSEQ0 and when there's <2 planes*/
- if (link->link_index != 0 || stream_status->plane_count > 1)
+
+ /* Don't support multi-plane configurations */
+ if (stream_status->plane_count > 1)
return DCN_ZSTATE_SUPPORT_DISALLOW;
- if (context->bw_ctx.dml.vba.StutterPeriod > 5000.0 || optimized_min_dst_y_next_start_us > 5000)
+ if (is_pwrseq0 && (context->bw_ctx.dml.vba.StutterPeriod > 5000.0 || optimized_min_dst_y_next_start_us > 5000))
return DCN_ZSTATE_SUPPORT_ALLOW;
- else if (link->psr_settings.psr_version == DC_PSR_VERSION_1 && !dc->debug.disable_psr)
- return DCN_ZSTATE_SUPPORT_ALLOW_Z10_ONLY;
+ else if (is_pwrseq0 && link->psr_settings.psr_version == DC_PSR_VERSION_1 && !link->panel_config.psr.disable_psr)
+ return allow_z8 ? DCN_ZSTATE_SUPPORT_ALLOW_Z8_Z10_ONLY : DCN_ZSTATE_SUPPORT_ALLOW_Z10_ONLY;
else
- return DCN_ZSTATE_SUPPORT_DISALLOW;
- } else
+ return allow_z8 ? DCN_ZSTATE_SUPPORT_ALLOW_Z8_ONLY : DCN_ZSTATE_SUPPORT_DISALLOW;
+ } else {
return DCN_ZSTATE_SUPPORT_DISALLOW;
+ }
+}
+
+static void dcn20_adjust_freesync_v_startup(
+ const struct dc_crtc_timing *dc_crtc_timing, int *vstartup_start)
+{
+ struct dc_crtc_timing patched_crtc_timing;
+ uint32_t asic_blank_end = 0;
+ uint32_t asic_blank_start = 0;
+ uint32_t newVstartup = 0;
+
+ patched_crtc_timing = *dc_crtc_timing;
+
+ if (patched_crtc_timing.flags.INTERLACE == 1) {
+ if (patched_crtc_timing.v_front_porch < 2)
+ patched_crtc_timing.v_front_porch = 2;
+ } else {
+ if (patched_crtc_timing.v_front_porch < 1)
+ patched_crtc_timing.v_front_porch = 1;
+ }
+
+ /* blank_start = frame end - front porch */
+ asic_blank_start = patched_crtc_timing.v_total -
+ patched_crtc_timing.v_front_porch;
+
+ /* blank_end = blank_start - active */
+ asic_blank_end = asic_blank_start -
+ patched_crtc_timing.v_border_bottom -
+ patched_crtc_timing.v_addressable -
+ patched_crtc_timing.v_border_top;
+
+ newVstartup = asic_blank_end + (patched_crtc_timing.v_total - asic_blank_start);
+
+ *vstartup_start = ((newVstartup > *vstartup_start) ? newVstartup : *vstartup_start);
}
-void dcn20_calculate_dlg_params(
- struct dc *dc, struct dc_state *context,
- display_e2e_pipe_params_st *pipes,
- int pipe_cnt,
- int vlevel)
+void dcn20_calculate_dlg_params(struct dc *dc,
+ struct dc_state *context,
+ display_e2e_pipe_params_st *pipes,
+ int pipe_cnt,
+ int vlevel)
{
int i, pipe_idx;
@@ -1043,6 +1083,7 @@ void dcn20_calculate_dlg_params(
pipes[pipe_idx].pipe.dest.vupdate_offset = get_vupdate_offset(&context->bw_ctx.dml, pipes, pipe_cnt, pipe_idx);
pipes[pipe_idx].pipe.dest.vupdate_width = get_vupdate_width(&context->bw_ctx.dml, pipes, pipe_cnt, pipe_idx);
pipes[pipe_idx].pipe.dest.vready_offset = get_vready_offset(&context->bw_ctx.dml, pipes, pipe_cnt, pipe_idx);
+
if (context->res_ctx.pipe_ctx[i].stream->mall_stream_config.type == SUBVP_PHANTOM) {
// Phantom pipe requires that DET_SIZE = 0 and no unbounded requests
context->res_ctx.pipe_ctx[i].det_buffer_size_kb = 0;
@@ -1051,11 +1092,17 @@ void dcn20_calculate_dlg_params(
context->res_ctx.pipe_ctx[i].det_buffer_size_kb = context->bw_ctx.dml.ip.det_buffer_size_kbytes;
context->res_ctx.pipe_ctx[i].unbounded_req = pipes[pipe_idx].pipe.src.unbounded_req_mode;
}
+
if (context->bw_ctx.bw.dcn.clk.dppclk_khz < pipes[pipe_idx].clks_cfg.dppclk_mhz * 1000)
context->bw_ctx.bw.dcn.clk.dppclk_khz = pipes[pipe_idx].clks_cfg.dppclk_mhz * 1000;
context->res_ctx.pipe_ctx[i].plane_res.bw.dppclk_khz =
pipes[pipe_idx].clks_cfg.dppclk_mhz * 1000;
context->res_ctx.pipe_ctx[i].pipe_dlg_param = pipes[pipe_idx].pipe.dest;
+ if (context->res_ctx.pipe_ctx[i].stream->adaptive_sync_infopacket.valid)
+ dcn20_adjust_freesync_v_startup(
+ &context->res_ctx.pipe_ctx[i].stream->timing,
+ &context->res_ctx.pipe_ctx[i].pipe_dlg_param.vstartup_start);
+
pipe_idx++;
}
/*save a original dppclock copy*/
@@ -1073,6 +1120,7 @@ void dcn20_calculate_dlg_params(
if (!context->res_ctx.pipe_ctx[i].stream)
continue;
+ /* cstate disabled on 201 */
if (dc->ctx->dce_version == DCN_VERSION_2_01)
cstate_en = false;
@@ -1156,11 +1204,10 @@ static void swizzle_to_dml_params(
}
}
-int dcn20_populate_dml_pipes_from_context(
- struct dc *dc,
- struct dc_state *context,
- display_e2e_pipe_params_st *pipes,
- bool fast_validate)
+int dcn20_populate_dml_pipes_from_context(struct dc *dc,
+ struct dc_state *context,
+ display_e2e_pipe_params_st *pipes,
+ bool fast_validate)
{
int pipe_cnt, i;
bool synchronized_vblank = true;
@@ -1212,6 +1259,8 @@ int dcn20_populate_dml_pipes_from_context(
pipes[pipe_cnt].clks_cfg.refclk_mhz = dc->res_pool->ref_clocks.dchub_ref_clock_inKhz / 1000.0;
+ pipes[pipe_cnt].pipe.dest.use_maximum_vstartup = dc->ctx->dce_version == DCN_VERSION_2_01;
+
pipes[pipe_cnt].dout.dsc_enable = res_ctx->pipe_ctx[i].stream->timing.flags.DSC;
/* todo: rotation?*/
pipes[pipe_cnt].dout.dsc_slices = res_ctx->pipe_ctx[i].stream->timing.dsc_cfg.num_slices_h;
@@ -1251,8 +1300,7 @@ int dcn20_populate_dml_pipes_from_context(
pipes[pipe_cnt].pipe.dest.pixel_rate_mhz *= 2;
pipes[pipe_cnt].pipe.dest.otg_inst = res_ctx->pipe_ctx[i].stream_res.tg->inst;
pipes[pipe_cnt].dout.dp_lanes = 4;
- if (res_ctx->pipe_ctx[i].stream->link)
- pipes[pipe_cnt].dout.dp_rate = dm_dp_rate_na;
+ pipes[pipe_cnt].dout.dp_rate = dm_dp_rate_na;
pipes[pipe_cnt].dout.is_virtual = 0;
pipes[pipe_cnt].pipe.dest.vtotal_min = res_ctx->pipe_ctx[i].stream->adjust.v_total_min;
pipes[pipe_cnt].pipe.dest.vtotal_max = res_ctx->pipe_ctx[i].stream->adjust.v_total_max;
@@ -1296,6 +1344,8 @@ int dcn20_populate_dml_pipes_from_context(
case SIGNAL_TYPE_DISPLAY_PORT_MST:
case SIGNAL_TYPE_DISPLAY_PORT:
pipes[pipe_cnt].dout.output_type = dm_dp;
+ if (dc->link_srv->dp_is_128b_132b_signal(&res_ctx->pipe_ctx[i]))
+ pipes[pipe_cnt].dout.output_type = dm_dp2p0;
break;
case SIGNAL_TYPE_EDP:
pipes[pipe_cnt].dout.output_type = dm_edp;
@@ -1310,7 +1360,6 @@ int dcn20_populate_dml_pipes_from_context(
pipes[pipe_cnt].dout.is_virtual = 1;
pipes[pipe_cnt].dout.output_type = dm_dp;
pipes[pipe_cnt].dout.dp_lanes = 4;
- pipes[pipe_cnt].dout.dp_rate = dm_dp_rate_hbr2;
}
switch (res_ctx->pipe_ctx[i].stream->timing.display_color_depth) {
@@ -1460,6 +1509,7 @@ int dcn20_populate_dml_pipes_from_context(
default:
break;
}
+
pipes[pipe_cnt].pipe.src.viewport_y_y = scl->viewport.y;
pipes[pipe_cnt].pipe.src.viewport_y_c = scl->viewport_c.y;
pipes[pipe_cnt].pipe.src.viewport_x_y = scl->viewport.x;
@@ -1568,13 +1618,12 @@ int dcn20_populate_dml_pipes_from_context(
return pipe_cnt;
}
-void dcn20_calculate_wm(
- struct dc *dc, struct dc_state *context,
- display_e2e_pipe_params_st *pipes,
- int *out_pipe_cnt,
- int *pipe_split_from,
- int vlevel,
- bool fast_validate)
+void dcn20_calculate_wm(struct dc *dc, struct dc_state *context,
+ display_e2e_pipe_params_st *pipes,
+ int *out_pipe_cnt,
+ int *pipe_split_from,
+ int vlevel,
+ bool fast_validate)
{
int pipe_cnt, i, pipe_idx;
@@ -1686,8 +1735,11 @@ void dcn20_calculate_wm(
context->bw_ctx.bw.dcn.watermarks.a.frac_urg_bw_flip = get_fraction_of_urgent_bandwidth_imm_flip(&context->bw_ctx.dml, pipes, pipe_cnt) * 1000;
}
-void dcn20_update_bounding_box(struct dc *dc, struct _vcs_dpi_soc_bounding_box_st *bb,
- struct pp_smu_nv_clock_table *max_clocks, unsigned int *uclk_states, unsigned int num_states)
+void dcn20_update_bounding_box(struct dc *dc,
+ struct _vcs_dpi_soc_bounding_box_st *bb,
+ struct pp_smu_nv_clock_table *max_clocks,
+ unsigned int *uclk_states,
+ unsigned int num_states)
{
int num_calculated_states = 0;
int min_dcfclk = 0;
@@ -1749,9 +1801,8 @@ void dcn20_update_bounding_box(struct dc *dc, struct _vcs_dpi_soc_bounding_box_s
bb->clock_limits[num_calculated_states].state = bb->num_states;
}
-void dcn20_cap_soc_clocks(
- struct _vcs_dpi_soc_bounding_box_st *bb,
- struct pp_smu_nv_clock_table max_clocks)
+void dcn20_cap_soc_clocks(struct _vcs_dpi_soc_bounding_box_st *bb,
+ struct pp_smu_nv_clock_table max_clocks)
{
int i;
@@ -1907,80 +1958,80 @@ validate_out:
}
bool dcn20_validate_bandwidth_fp(struct dc *dc,
- struct dc_state *context,
- bool fast_validate)
+ struct dc_state *context,
+ bool fast_validate)
{
- bool voltage_supported = false;
- bool full_pstate_supported = false;
- bool dummy_pstate_supported = false;
- double p_state_latency_us;
+ bool voltage_supported = false;
+ bool full_pstate_supported = false;
+ bool dummy_pstate_supported = false;
+ double p_state_latency_us;
- dc_assert_fp_enabled();
+ dc_assert_fp_enabled();
- p_state_latency_us = context->bw_ctx.dml.soc.dram_clock_change_latency_us;
- context->bw_ctx.dml.soc.disable_dram_clock_change_vactive_support =
- dc->debug.disable_dram_clock_change_vactive_support;
- context->bw_ctx.dml.soc.allow_dram_clock_one_display_vactive =
- dc->debug.enable_dram_clock_change_one_display_vactive;
+ p_state_latency_us = context->bw_ctx.dml.soc.dram_clock_change_latency_us;
+ context->bw_ctx.dml.soc.disable_dram_clock_change_vactive_support =
+ dc->debug.disable_dram_clock_change_vactive_support;
+ context->bw_ctx.dml.soc.allow_dram_clock_one_display_vactive =
+ dc->debug.enable_dram_clock_change_one_display_vactive;
- /*Unsafe due to current pipe merge and split logic*/
- ASSERT(context != dc->current_state);
+ /*Unsafe due to current pipe merge and split logic*/
+ ASSERT(context != dc->current_state);
- if (fast_validate) {
- return dcn20_validate_bandwidth_internal(dc, context, true);
- }
+ if (fast_validate) {
+ return dcn20_validate_bandwidth_internal(dc, context, true);
+ }
- // Best case, we support full UCLK switch latency
- voltage_supported = dcn20_validate_bandwidth_internal(dc, context, false);
- full_pstate_supported = context->bw_ctx.bw.dcn.clk.p_state_change_support;
+ // Best case, we support full UCLK switch latency
+ voltage_supported = dcn20_validate_bandwidth_internal(dc, context, false);
+ full_pstate_supported = context->bw_ctx.bw.dcn.clk.p_state_change_support;
- if (context->bw_ctx.dml.soc.dummy_pstate_latency_us == 0 ||
- (voltage_supported && full_pstate_supported)) {
- context->bw_ctx.bw.dcn.clk.p_state_change_support = full_pstate_supported;
- goto restore_dml_state;
- }
+ if (context->bw_ctx.dml.soc.dummy_pstate_latency_us == 0 ||
+ (voltage_supported && full_pstate_supported)) {
+ context->bw_ctx.bw.dcn.clk.p_state_change_support = full_pstate_supported;
+ goto restore_dml_state;
+ }
- // Fallback: Try to only support G6 temperature read latency
- context->bw_ctx.dml.soc.dram_clock_change_latency_us = context->bw_ctx.dml.soc.dummy_pstate_latency_us;
+ // Fallback: Try to only support G6 temperature read latency
+ context->bw_ctx.dml.soc.dram_clock_change_latency_us = context->bw_ctx.dml.soc.dummy_pstate_latency_us;
- voltage_supported = dcn20_validate_bandwidth_internal(dc, context, false);
- dummy_pstate_supported = context->bw_ctx.bw.dcn.clk.p_state_change_support;
+ voltage_supported = dcn20_validate_bandwidth_internal(dc, context, false);
+ dummy_pstate_supported = context->bw_ctx.bw.dcn.clk.p_state_change_support;
- if (voltage_supported && (dummy_pstate_supported || !(context->stream_count))) {
- context->bw_ctx.bw.dcn.clk.p_state_change_support = false;
- goto restore_dml_state;
- }
+ if (voltage_supported && (dummy_pstate_supported || !(context->stream_count))) {
+ context->bw_ctx.bw.dcn.clk.p_state_change_support = false;
+ goto restore_dml_state;
+ }
- // ERROR: fallback is supposed to always work.
- ASSERT(false);
+ // ERROR: fallback is supposed to always work.
+ ASSERT(false);
restore_dml_state:
- context->bw_ctx.dml.soc.dram_clock_change_latency_us = p_state_latency_us;
- return voltage_supported;
+ context->bw_ctx.dml.soc.dram_clock_change_latency_us = p_state_latency_us;
+ return voltage_supported;
}
void dcn20_fpu_set_wm_ranges(int i,
- struct pp_smu_wm_range_sets *ranges,
- struct _vcs_dpi_soc_bounding_box_st *loaded_bb)
+ struct pp_smu_wm_range_sets *ranges,
+ struct _vcs_dpi_soc_bounding_box_st *loaded_bb)
{
- dc_assert_fp_enabled();
+ dc_assert_fp_enabled();
- ranges->reader_wm_sets[i].min_fill_clk_mhz = (i > 0) ? (loaded_bb->clock_limits[i - 1].dram_speed_mts / 16) + 1 : 0;
- ranges->reader_wm_sets[i].max_fill_clk_mhz = loaded_bb->clock_limits[i].dram_speed_mts / 16;
+ ranges->reader_wm_sets[i].min_fill_clk_mhz = (i > 0) ? (loaded_bb->clock_limits[i - 1].dram_speed_mts / 16) + 1 : 0;
+ ranges->reader_wm_sets[i].max_fill_clk_mhz = loaded_bb->clock_limits[i].dram_speed_mts / 16;
}
void dcn20_fpu_adjust_dppclk(struct vba_vars_st *v,
- int vlevel,
- int max_mpc_comb,
- int pipe_idx,
- bool is_validating_bw)
+ int vlevel,
+ int max_mpc_comb,
+ int pipe_idx,
+ bool is_validating_bw)
{
- dc_assert_fp_enabled();
+ dc_assert_fp_enabled();
- if (is_validating_bw)
- v->RequiredDPPCLK[vlevel][max_mpc_comb][pipe_idx] *= 2;
- else
- v->RequiredDPPCLK[vlevel][max_mpc_comb][pipe_idx] /= 2;
+ if (is_validating_bw)
+ v->RequiredDPPCLK[vlevel][max_mpc_comb][pipe_idx] *= 2;
+ else
+ v->RequiredDPPCLK[vlevel][max_mpc_comb][pipe_idx] /= 2;
}
int dcn21_populate_dml_pipes_from_context(struct dc *dc,
@@ -2282,7 +2333,7 @@ void dcn21_update_bw_bounding_box(struct dc *dc, struct clk_bw_params *bw_params
k++;
}
- memcpy(dcn2_1_soc.clock_limits, s, sizeof(dcn2_1_soc.clock_limits));
+ memcpy(&dcn2_1_soc.clock_limits, s, sizeof(dcn2_1_soc.clock_limits));
if (clk_table->num_entries) {
dcn2_1_soc.num_states = clk_table->num_entries + 1;
diff --git a/drivers/gpu/drm/amd/display/dc/dml/dcn20/display_mode_vba_20.c b/drivers/gpu/drm/amd/display/dc/dml/dcn20/display_mode_vba_20.c
index d3b5b6fedf04..6266b0788387 100644
--- a/drivers/gpu/drm/amd/display/dc/dml/dcn20/display_mode_vba_20.c
+++ b/drivers/gpu/drm/amd/display/dc/dml/dcn20/display_mode_vba_20.c
@@ -3897,14 +3897,14 @@ void dml20_ModeSupportAndSystemConfigurationFull(struct display_mode_lib *mode_l
mode_lib->vba.PlaneRequiredDISPCLKWithODMCombine = mode_lib->vba.PixelClock[k] / 2
* (1 + mode_lib->vba.DISPCLKDPPCLKDSCCLKDownSpreading / 100.0);
- locals->ODMCombineEnablePerState[i][k] = false;
+ locals->ODMCombineEnablePerState[i][k] = dm_odm_combine_mode_disabled;
mode_lib->vba.PlaneRequiredDISPCLK = mode_lib->vba.PlaneRequiredDISPCLKWithoutODMCombine;
if (mode_lib->vba.ODMCapability) {
if (locals->PlaneRequiredDISPCLKWithoutODMCombine > mode_lib->vba.MaxDispclkRoundedDownToDFSGranularity) {
- locals->ODMCombineEnablePerState[i][k] = true;
+ locals->ODMCombineEnablePerState[i][k] = dm_odm_combine_mode_2to1;
mode_lib->vba.PlaneRequiredDISPCLK = mode_lib->vba.PlaneRequiredDISPCLKWithODMCombine;
} else if (locals->HActive[k] > DCN20_MAX_420_IMAGE_WIDTH && locals->OutputFormat[k] == dm_420) {
- locals->ODMCombineEnablePerState[i][k] = true;
+ locals->ODMCombineEnablePerState[i][k] = dm_odm_combine_mode_2to1;
mode_lib->vba.PlaneRequiredDISPCLK = mode_lib->vba.PlaneRequiredDISPCLKWithODMCombine;
}
}
@@ -3957,7 +3957,7 @@ void dml20_ModeSupportAndSystemConfigurationFull(struct display_mode_lib *mode_l
locals->RequiredDISPCLK[i][j] = 0.0;
locals->DISPCLK_DPPCLK_Support[i][j] = true;
for (k = 0; k <= mode_lib->vba.NumberOfActivePlanes - 1; k++) {
- locals->ODMCombineEnablePerState[i][k] = false;
+ locals->ODMCombineEnablePerState[i][k] = dm_odm_combine_mode_disabled;
if (locals->SwathWidthYSingleDPP[k] <= locals->MaximumSwathWidth[k]) {
locals->NoOfDPP[i][j][k] = 1;
locals->RequiredDPPCLK[i][j][k] = locals->MinDPPCLKUsingSingleDPP[k]
diff --git a/drivers/gpu/drm/amd/display/dc/dml/dcn20/display_mode_vba_20v2.c b/drivers/gpu/drm/amd/display/dc/dml/dcn20/display_mode_vba_20v2.c
index edd098c7eb92..989d83ee3842 100644
--- a/drivers/gpu/drm/amd/display/dc/dml/dcn20/display_mode_vba_20v2.c
+++ b/drivers/gpu/drm/amd/display/dc/dml/dcn20/display_mode_vba_20v2.c
@@ -4008,17 +4008,17 @@ void dml20v2_ModeSupportAndSystemConfigurationFull(struct display_mode_lib *mode
mode_lib->vba.PlaneRequiredDISPCLKWithODMCombine = mode_lib->vba.PixelClock[k] / 2
* (1 + mode_lib->vba.DISPCLKDPPCLKDSCCLKDownSpreading / 100.0);
- locals->ODMCombineEnablePerState[i][k] = false;
+ locals->ODMCombineEnablePerState[i][k] = dm_odm_combine_mode_disabled;
mode_lib->vba.PlaneRequiredDISPCLK = mode_lib->vba.PlaneRequiredDISPCLKWithoutODMCombine;
if (mode_lib->vba.ODMCapability) {
if (locals->PlaneRequiredDISPCLKWithoutODMCombine > MaxMaxDispclkRoundedDown) {
- locals->ODMCombineEnablePerState[i][k] = true;
+ locals->ODMCombineEnablePerState[i][k] = dm_odm_combine_mode_2to1;
mode_lib->vba.PlaneRequiredDISPCLK = mode_lib->vba.PlaneRequiredDISPCLKWithODMCombine;
} else if (locals->DSCEnabled[k] && (locals->HActive[k] > DCN20_MAX_DSC_IMAGE_WIDTH)) {
- locals->ODMCombineEnablePerState[i][k] = true;
+ locals->ODMCombineEnablePerState[i][k] = dm_odm_combine_mode_2to1;
mode_lib->vba.PlaneRequiredDISPCLK = mode_lib->vba.PlaneRequiredDISPCLKWithODMCombine;
} else if (locals->HActive[k] > DCN20_MAX_420_IMAGE_WIDTH && locals->OutputFormat[k] == dm_420) {
- locals->ODMCombineEnablePerState[i][k] = true;
+ locals->ODMCombineEnablePerState[i][k] = dm_odm_combine_mode_2to1;
mode_lib->vba.PlaneRequiredDISPCLK = mode_lib->vba.PlaneRequiredDISPCLKWithODMCombine;
}
}
@@ -4071,7 +4071,7 @@ void dml20v2_ModeSupportAndSystemConfigurationFull(struct display_mode_lib *mode
locals->RequiredDISPCLK[i][j] = 0.0;
locals->DISPCLK_DPPCLK_Support[i][j] = true;
for (k = 0; k <= mode_lib->vba.NumberOfActivePlanes - 1; k++) {
- locals->ODMCombineEnablePerState[i][k] = false;
+ locals->ODMCombineEnablePerState[i][k] = dm_odm_combine_mode_disabled;
if (locals->SwathWidthYSingleDPP[k] <= locals->MaximumSwathWidth[k]) {
locals->NoOfDPP[i][j][k] = 1;
locals->RequiredDPPCLK[i][j][k] = locals->MinDPPCLKUsingSingleDPP[k]
diff --git a/drivers/gpu/drm/amd/display/dc/dml/dcn21/display_mode_vba_21.c b/drivers/gpu/drm/amd/display/dc/dml/dcn21/display_mode_vba_21.c
index 1d84ae50311d..b7c2844d0cbe 100644
--- a/drivers/gpu/drm/amd/display/dc/dml/dcn21/display_mode_vba_21.c
+++ b/drivers/gpu/drm/amd/display/dc/dml/dcn21/display_mode_vba_21.c
@@ -4102,17 +4102,17 @@ void dml21_ModeSupportAndSystemConfigurationFull(struct display_mode_lib *mode_l
mode_lib->vba.PlaneRequiredDISPCLKWithODMCombine = mode_lib->vba.PixelClock[k] / 2
* (1 + mode_lib->vba.DISPCLKDPPCLKDSCCLKDownSpreading / 100.0);
- locals->ODMCombineEnablePerState[i][k] = false;
+ locals->ODMCombineEnablePerState[i][k] = dm_odm_combine_mode_disabled;
mode_lib->vba.PlaneRequiredDISPCLK = mode_lib->vba.PlaneRequiredDISPCLKWithoutODMCombine;
if (mode_lib->vba.ODMCapability) {
if (locals->PlaneRequiredDISPCLKWithoutODMCombine > MaxMaxDispclkRoundedDown) {
- locals->ODMCombineEnablePerState[i][k] = true;
+ locals->ODMCombineEnablePerState[i][k] = dm_odm_combine_mode_2to1;
mode_lib->vba.PlaneRequiredDISPCLK = mode_lib->vba.PlaneRequiredDISPCLKWithODMCombine;
} else if (locals->DSCEnabled[k] && (locals->HActive[k] > DCN21_MAX_DSC_IMAGE_WIDTH)) {
- locals->ODMCombineEnablePerState[i][k] = true;
+ locals->ODMCombineEnablePerState[i][k] = dm_odm_combine_mode_2to1;
mode_lib->vba.PlaneRequiredDISPCLK = mode_lib->vba.PlaneRequiredDISPCLKWithODMCombine;
} else if (locals->HActive[k] > DCN21_MAX_420_IMAGE_WIDTH && locals->OutputFormat[k] == dm_420) {
- locals->ODMCombineEnablePerState[i][k] = true;
+ locals->ODMCombineEnablePerState[i][k] = dm_odm_combine_mode_2to1;
mode_lib->vba.PlaneRequiredDISPCLK = mode_lib->vba.PlaneRequiredDISPCLKWithODMCombine;
}
}
@@ -4165,7 +4165,7 @@ void dml21_ModeSupportAndSystemConfigurationFull(struct display_mode_lib *mode_l
locals->RequiredDISPCLK[i][j] = 0.0;
locals->DISPCLK_DPPCLK_Support[i][j] = true;
for (k = 0; k <= mode_lib->vba.NumberOfActivePlanes - 1; k++) {
- locals->ODMCombineEnablePerState[i][k] = false;
+ locals->ODMCombineEnablePerState[i][k] = dm_odm_combine_mode_disabled;
if (locals->SwathWidthYSingleDPP[k] <= locals->MaximumSwathWidth[k]) {
locals->NoOfDPP[i][j][k] = 1;
locals->RequiredDPPCLK[i][j][k] = locals->MinDPPCLKUsingSingleDPP[k]
@@ -5230,7 +5230,7 @@ void dml21_ModeSupportAndSystemConfigurationFull(struct display_mode_lib *mode_l
mode_lib->vba.ODMCombineEnabled[k] =
locals->ODMCombineEnablePerState[mode_lib->vba.VoltageLevel][k];
} else {
- mode_lib->vba.ODMCombineEnabled[k] = false;
+ mode_lib->vba.ODMCombineEnabled[k] = dm_odm_combine_mode_disabled;
}
mode_lib->vba.DSCEnabled[k] =
locals->RequiresDSC[mode_lib->vba.VoltageLevel][k];
diff --git a/drivers/gpu/drm/amd/display/dc/dml/dcn30/dcn30_fpu.c b/drivers/gpu/drm/amd/display/dc/dml/dcn30/dcn30_fpu.c
index e1e92daba668..a352c703e258 100644
--- a/drivers/gpu/drm/amd/display/dc/dml/dcn30/dcn30_fpu.c
+++ b/drivers/gpu/drm/amd/display/dc/dml/dcn30/dcn30_fpu.c
@@ -368,7 +368,9 @@ void dcn30_fpu_update_soc_for_wm_a(struct dc *dc, struct dc_state *context)
dc_assert_fp_enabled();
if (dc->clk_mgr->bw_params->wm_table.nv_entries[WM_A].valid) {
- context->bw_ctx.dml.soc.dram_clock_change_latency_us = dc->clk_mgr->bw_params->wm_table.nv_entries[WM_A].dml_input.pstate_latency_us;
+ if (!context->bw_ctx.bw.dcn.clk.fw_based_mclk_switching ||
+ context->bw_ctx.dml.soc.dram_clock_change_latency_us == 0)
+ context->bw_ctx.dml.soc.dram_clock_change_latency_us = dc->clk_mgr->bw_params->wm_table.nv_entries[WM_A].dml_input.pstate_latency_us;
context->bw_ctx.dml.soc.sr_enter_plus_exit_time_us = dc->clk_mgr->bw_params->wm_table.nv_entries[WM_A].dml_input.sr_enter_plus_exit_time_us;
context->bw_ctx.dml.soc.sr_exit_time_us = dc->clk_mgr->bw_params->wm_table.nv_entries[WM_A].dml_input.sr_exit_time_us;
}
@@ -384,9 +386,38 @@ void dcn30_fpu_calculate_wm_and_dlg(
int i, pipe_idx;
double dcfclk = context->bw_ctx.dml.vba.DCFCLKState[vlevel][maxMpcComb];
bool pstate_en = context->bw_ctx.dml.vba.DRAMClockChangeSupport[vlevel][maxMpcComb] != dm_dram_clock_change_unsupported;
+ unsigned int dummy_latency_index = 0;
dc_assert_fp_enabled();
+ context->bw_ctx.bw.dcn.clk.fw_based_mclk_switching = false;
+ for (i = 0; i < context->stream_count; i++) {
+ if (context->streams[i])
+ context->streams[i]->fpo_in_use = false;
+ }
+
+ if (!pstate_en) {
+ /* only when the mclk switch can not be natural, is the fw based vblank stretch attempted */
+ context->bw_ctx.bw.dcn.clk.fw_based_mclk_switching =
+ dcn30_can_support_mclk_switch_using_fw_based_vblank_stretch(dc, context);
+
+ if (context->bw_ctx.bw.dcn.clk.fw_based_mclk_switching) {
+ dummy_latency_index = dcn30_find_dummy_latency_index_for_fw_based_mclk_switch(dc,
+ context, pipes, pipe_cnt, vlevel);
+
+ /* After calling dcn30_find_dummy_latency_index_for_fw_based_mclk_switch
+ * we reinstate the original dram_clock_change_latency_us on the context
+ * and all variables that may have changed up to this point, except the
+ * newly found dummy_latency_index
+ */
+ context->bw_ctx.dml.soc.dram_clock_change_latency_us = dc->clk_mgr->bw_params->wm_table.nv_entries[WM_A].dml_input.pstate_latency_us;
+ dcn30_internal_validate_bw(dc, context, pipes, &pipe_cnt, &vlevel, false, true);
+ maxMpcComb = context->bw_ctx.dml.vba.maxMpcComb;
+ dcfclk = context->bw_ctx.dml.vba.DCFCLKState[vlevel][context->bw_ctx.dml.vba.maxMpcComb];
+ pstate_en = context->bw_ctx.dml.vba.DRAMClockChangeSupport[vlevel][maxMpcComb] != dm_dram_clock_change_unsupported;
+ }
+ }
+
if (context->bw_ctx.dml.soc.min_dcfclk > dcfclk)
dcfclk = context->bw_ctx.dml.soc.min_dcfclk;
@@ -449,15 +480,29 @@ void dcn30_fpu_calculate_wm_and_dlg(
unsigned int min_dram_speed_mts = context->bw_ctx.dml.vba.DRAMSpeed;
unsigned int min_dram_speed_mts_margin = 160;
- if (context->bw_ctx.dml.vba.DRAMClockChangeSupport[vlevel][context->bw_ctx.dml.vba.maxMpcComb] == dm_dram_clock_change_unsupported)
- min_dram_speed_mts = dc->clk_mgr->bw_params->clk_table.entries[dc->clk_mgr->bw_params->clk_table.num_entries - 1].memclk_mhz * 16;
+ context->bw_ctx.dml.soc.dram_clock_change_latency_us =
+ dc->clk_mgr->bw_params->dummy_pstate_table[0].dummy_pstate_latency_us;
- /* find largest table entry that is lower than dram speed, but lower than DPM0 still uses DPM0 */
- for (i = 3; i > 0; i--)
- if (min_dram_speed_mts + min_dram_speed_mts_margin > dc->clk_mgr->bw_params->dummy_pstate_table[i].dram_speed_mts)
- break;
+ if (context->bw_ctx.dml.vba.DRAMClockChangeSupport[vlevel][maxMpcComb] ==
+ dm_dram_clock_change_unsupported) {
+ int min_dram_speed_mts_offset = dc->clk_mgr->bw_params->clk_table.num_entries - 1;
- context->bw_ctx.dml.soc.dram_clock_change_latency_us = dc->clk_mgr->bw_params->dummy_pstate_table[i].dummy_pstate_latency_us;
+ min_dram_speed_mts =
+ dc->clk_mgr->bw_params->clk_table.entries[min_dram_speed_mts_offset].memclk_mhz * 16;
+ }
+
+ if (!context->bw_ctx.bw.dcn.clk.fw_based_mclk_switching) {
+ /* find largest table entry that is lower than dram speed,
+ * but lower than DPM0 still uses DPM0
+ */
+ for (dummy_latency_index = 3; dummy_latency_index > 0; dummy_latency_index--)
+ if (min_dram_speed_mts + min_dram_speed_mts_margin >
+ dc->clk_mgr->bw_params->dummy_pstate_table[dummy_latency_index].dram_speed_mts)
+ break;
+ }
+
+ context->bw_ctx.dml.soc.dram_clock_change_latency_us =
+ dc->clk_mgr->bw_params->dummy_pstate_table[dummy_latency_index].dummy_pstate_latency_us;
context->bw_ctx.dml.soc.sr_enter_plus_exit_time_us = dc->clk_mgr->bw_params->wm_table.nv_entries[WM_C].dml_input.sr_enter_plus_exit_time_us;
context->bw_ctx.dml.soc.sr_exit_time_us = dc->clk_mgr->bw_params->wm_table.nv_entries[WM_C].dml_input.sr_exit_time_us;
@@ -520,9 +565,21 @@ void dcn30_fpu_calculate_wm_and_dlg(
pipe_idx++;
}
- DC_FP_START();
+ // WA: restrict FPO to use first non-strobe mode (NV24 BW issue)
+ if (context->bw_ctx.bw.dcn.clk.fw_based_mclk_switching &&
+ dc->dml.soc.num_chans <= 4 &&
+ context->bw_ctx.dml.vba.DRAMSpeed <= 1700 &&
+ context->bw_ctx.dml.vba.DRAMSpeed >= 1500) {
+
+ for (i = 0; i < dc->dml.soc.num_states; i++) {
+ if (dc->dml.soc.clock_limits[i].dram_speed_mts > 1700) {
+ context->bw_ctx.dml.vba.DRAMSpeed = dc->dml.soc.clock_limits[i].dram_speed_mts;
+ break;
+ }
+ }
+ }
+
dcn20_calculate_dlg_params(dc, context, pipes, pipe_cnt, vlevel);
- DC_FP_END();
if (!pstate_en)
/* Restore full p-state latency */
@@ -636,7 +693,7 @@ int dcn30_find_dummy_latency_index_for_fw_based_mclk_switch(struct dc *dc,
while (dummy_latency_index < max_latency_table_entries) {
context->bw_ctx.dml.soc.dram_clock_change_latency_us =
dc->clk_mgr->bw_params->dummy_pstate_table[dummy_latency_index].dummy_pstate_latency_us;
- dcn30_internal_validate_bw(dc, context, pipes, &pipe_cnt, &vlevel, false);
+ dcn30_internal_validate_bw(dc, context, pipes, &pipe_cnt, &vlevel, false, true);
if (context->bw_ctx.dml.soc.allow_dram_self_refresh_or_dram_clock_change_in_vblank ==
dm_allow_self_refresh_and_mclk_switch)
diff --git a/drivers/gpu/drm/amd/display/dc/dml/dcn30/display_mode_vba_30.c b/drivers/gpu/drm/amd/display/dc/dml/dcn30/display_mode_vba_30.c
index 479e2c1a1301..7d0626e42ea6 100644
--- a/drivers/gpu/drm/amd/display/dc/dml/dcn30/display_mode_vba_30.c
+++ b/drivers/gpu/drm/amd/display/dc/dml/dcn30/display_mode_vba_30.c
@@ -23,9 +23,7 @@
*
*/
-#ifdef CONFIG_DRM_AMD_DC_DCN
#include "dc.h"
-#include "dc_link.h"
#include "../display_mode_lib.h"
#include "display_mode_vba_30.h"
#include "../dml_inline_defs.h"
@@ -1802,7 +1800,10 @@ static unsigned int CalculateVMAndRowBytes(
}
if (SurfaceTiling == dm_sw_linear) {
- *dpte_row_height = dml_min(128, 1 << (unsigned int) dml_floor(dml_log2(PTEBufferSizeInRequests * *PixelPTEReqWidth / Pitch), 1));
+ if (PTEBufferSizeInRequests == 0)
+ *dpte_row_height = 1;
+ else
+ *dpte_row_height = dml_min(128, 1 << (unsigned int) dml_floor(dml_log2(PTEBufferSizeInRequests * *PixelPTEReqWidth / Pitch), 1));
*dpte_row_width_ub = (dml_ceil(((double) SwathWidth - 1) / *PixelPTEReqWidth, 1) + 1) * *PixelPTEReqWidth;
*PixelPTEBytesPerRow = *dpte_row_width_ub / *PixelPTEReqWidth * *PTERequestSize;
} else if (ScanDirection != dm_vert) {
@@ -4851,7 +4852,7 @@ void dml30_ModeSupportAndSystemConfigurationFull(struct display_mode_lib *mode_l
v->SwathHeightYThisState[k],
v->SwathHeightCThisState[k],
v->HTotal[k] / v->PixelClock[k],
- v->UrgentLatency,
+ v->UrgLatency[i],
v->CursorBufferSize,
v->CursorWidth[k][0],
v->CursorBPP[k][0],
@@ -4863,7 +4864,7 @@ void dml30_ModeSupportAndSystemConfigurationFull(struct display_mode_lib *mode_l
v->DETBufferSizeCThisState[k],
&v->UrgentBurstFactorCursorPre[k],
&v->UrgentBurstFactorLumaPre[k],
- &v->UrgentBurstFactorChroma[k],
+ &v->UrgentBurstFactorChromaPre[k],
&v->NoUrgentLatencyHidingPre[k]);
}
@@ -6632,4 +6633,3 @@ static noinline_for_stack void UseMinimumDCFCLK(
}
}
-#endif /* CONFIG_DRM_AMD_DC_DCN */
diff --git a/drivers/gpu/drm/amd/display/dc/dml/dcn30/display_rq_dlg_calc_30.c b/drivers/gpu/drm/amd/display/dc/dml/dcn30/display_rq_dlg_calc_30.c
index 8179be1f34bb..cd3cfcb2a2b0 100644
--- a/drivers/gpu/drm/amd/display/dc/dml/dcn30/display_rq_dlg_calc_30.c
+++ b/drivers/gpu/drm/amd/display/dc/dml/dcn30/display_rq_dlg_calc_30.c
@@ -23,8 +23,6 @@
*
*/
-#ifdef CONFIG_DRM_AMD_DC_DCN
-
#include "../display_mode_lib.h"
#include "../display_mode_vba.h"
#include "../dml_inline_defs.h"
@@ -1792,4 +1790,3 @@ void dml30_rq_dlg_get_dlg_reg(struct display_mode_lib *mode_lib,
dml_print("DML_DLG: Calculation for pipe[%d] end\n", pipe_idx);
}
-#endif
diff --git a/drivers/gpu/drm/amd/display/dc/dml/dcn31/dcn31_fpu.c b/drivers/gpu/drm/amd/display/dc/dml/dcn31/dcn31_fpu.c
index 7dd0845d1bd9..59836570603a 100644
--- a/drivers/gpu/drm/amd/display/dc/dml/dcn31/dcn31_fpu.c
+++ b/drivers/gpu/drm/amd/display/dc/dml/dcn31/dcn31_fpu.c
@@ -222,7 +222,7 @@ struct _vcs_dpi_ip_params_st dcn3_15_ip = {
.maximum_dsc_bits_per_component = 10,
.dsc422_native_support = false,
.is_line_buffer_bpp_fixed = true,
- .line_buffer_fixed_bpp = 49,
+ .line_buffer_fixed_bpp = 48,
.line_buffer_size_bits = 789504,
.max_line_buffer_lines = 12,
.writeback_interface_buffer_size_kbytes = 90,
@@ -483,7 +483,7 @@ void dcn31_calculate_wm_and_dlg_fp(
int pipe_cnt,
int vlevel)
{
- int i, pipe_idx, active_dpp_count = 0;
+ int i, pipe_idx, active_hubp_count = 0;
double dcfclk = context->bw_ctx.dml.vba.DCFCLKState[vlevel][context->bw_ctx.dml.vba.maxMpcComb];
dc_assert_fp_enabled();
@@ -529,7 +529,7 @@ void dcn31_calculate_wm_and_dlg_fp(
continue;
if (context->res_ctx.pipe_ctx[i].plane_state)
- active_dpp_count++;
+ active_hubp_count++;
pipes[pipe_idx].clks_cfg.dispclk_mhz = get_dispclk_calculated(&context->bw_ctx.dml, pipes, pipe_cnt);
pipes[pipe_idx].clks_cfg.dppclk_mhz = get_dppclk_calculated(&context->bw_ctx.dml, pipes, pipe_cnt, pipe_idx);
@@ -547,9 +547,22 @@ void dcn31_calculate_wm_and_dlg_fp(
}
dcn20_calculate_dlg_params(dc, context, pipes, pipe_cnt, vlevel);
- /* For 31x apu pstate change is only supported if possible in vactive or if there are no active dpps */
+ /* For 31x apu pstate change is only supported if possible in vactive*/
context->bw_ctx.bw.dcn.clk.p_state_change_support =
- context->bw_ctx.dml.vba.DRAMClockChangeSupport[vlevel][context->bw_ctx.dml.vba.maxMpcComb] == dm_dram_clock_change_vactive || !active_dpp_count;
+ context->bw_ctx.dml.vba.DRAMClockChangeSupport[vlevel][context->bw_ctx.dml.vba.maxMpcComb] == dm_dram_clock_change_vactive;
+ /* If DCN isn't making memory requests we can allow pstate change and lower clocks */
+ if (!active_hubp_count) {
+ context->bw_ctx.bw.dcn.clk.socclk_khz = 0;
+ context->bw_ctx.bw.dcn.clk.dppclk_khz = 0;
+ context->bw_ctx.bw.dcn.clk.dcfclk_khz = 0;
+ context->bw_ctx.bw.dcn.clk.dcfclk_deep_sleep_khz = 0;
+ context->bw_ctx.bw.dcn.clk.dramclk_khz = 0;
+ context->bw_ctx.bw.dcn.clk.fclk_khz = 0;
+ context->bw_ctx.bw.dcn.clk.p_state_change_support = true;
+ for (i = 0; i < dc->res_pool->pipe_count; i++)
+ if (context->res_ctx.pipe_ctx[i].stream)
+ context->res_ctx.pipe_ctx[i].plane_res.bw.dppclk_khz = 0;
+ }
}
void dcn31_update_bw_bounding_box(struct dc *dc, struct clk_bw_params *bw_params)
@@ -797,3 +810,8 @@ void dcn316_update_bw_bounding_box(struct dc *dc, struct clk_bw_params *bw_param
else
dml_init_instance(&dc->dml, &dcn3_16_soc, &dcn3_16_ip, DML_PROJECT_DCN31_FPGA);
}
+
+int dcn_get_max_non_odm_pix_rate_100hz(struct _vcs_dpi_soc_bounding_box_st *soc)
+{
+ return soc->clock_limits[0].dispclk_mhz * 10000.0 / (1.0 + soc->dcn_downspread_percent / 100.0);
+}
diff --git a/drivers/gpu/drm/amd/display/dc/dml/dcn31/dcn31_fpu.h b/drivers/gpu/drm/amd/display/dc/dml/dcn31/dcn31_fpu.h
index fd58b2561ec9..687d3522cc33 100644
--- a/drivers/gpu/drm/amd/display/dc/dml/dcn31/dcn31_fpu.h
+++ b/drivers/gpu/drm/amd/display/dc/dml/dcn31/dcn31_fpu.h
@@ -46,5 +46,10 @@ void dcn31_calculate_wm_and_dlg_fp(
void dcn31_update_bw_bounding_box(struct dc *dc, struct clk_bw_params *bw_params);
void dcn315_update_bw_bounding_box(struct dc *dc, struct clk_bw_params *bw_params);
void dcn316_update_bw_bounding_box(struct dc *dc, struct clk_bw_params *bw_params);
+int dcn_get_max_non_odm_pix_rate_100hz(struct _vcs_dpi_soc_bounding_box_st *soc);
+int dcn31x_populate_dml_pipes_from_context(struct dc *dc,
+ struct dc_state *context,
+ display_e2e_pipe_params_st *pipes,
+ bool fast_validate);
#endif /* __DCN31_FPU_H__*/
diff --git a/drivers/gpu/drm/amd/display/dc/dml/dcn31/display_mode_vba_31.c b/drivers/gpu/drm/amd/display/dc/dml/dcn31/display_mode_vba_31.c
index b612edb14417..bd674dc30df3 100644
--- a/drivers/gpu/drm/amd/display/dc/dml/dcn31/display_mode_vba_31.c
+++ b/drivers/gpu/drm/amd/display/dc/dml/dcn31/display_mode_vba_31.c
@@ -24,7 +24,6 @@
*/
#include "dc.h"
-#include "dc_link.h"
#include "../display_mode_lib.h"
#include "../dcn30/display_mode_vba_30.h"
#include "display_mode_vba_31.h"
@@ -878,7 +877,9 @@ static bool CalculatePrefetchSchedule(
double DSTTotalPixelsAfterScaler;
double LineTime;
double dst_y_prefetch_equ;
+#ifdef __DML_VBA_DEBUG__
double Tsw_oto;
+#endif
double prefetch_bw_oto;
double prefetch_bw_pr;
double Tvm_oto;
@@ -1052,17 +1053,18 @@ static bool CalculatePrefetchSchedule(
else
bytes_pp = myPipe->BytePerPixelY + myPipe->BytePerPixelC;
/*rev 99*/
- prefetch_bw_pr = dml_min(1, bytes_pp * myPipe->PixelClock / (double) myPipe->DPPPerPlane);
+ prefetch_bw_pr = bytes_pp * myPipe->PixelClock / (double) myPipe->DPPPerPlane;
+ prefetch_bw_pr = dml_min(1, myPipe->VRatio) * prefetch_bw_pr;
max_Tsw = dml_max(PrefetchSourceLinesY, PrefetchSourceLinesC) * LineTime;
prefetch_sw_bytes = PrefetchSourceLinesY * swath_width_luma_ub * myPipe->BytePerPixelY + PrefetchSourceLinesC * swath_width_chroma_ub * myPipe->BytePerPixelC;
- prefetch_bw_oto = dml_max(bytes_pp * myPipe->PixelClock / myPipe->DPPPerPlane, prefetch_sw_bytes / (dml_max(PrefetchSourceLinesY, PrefetchSourceLinesC) * LineTime));
prefetch_bw_oto = dml_max(prefetch_bw_pr, prefetch_sw_bytes / max_Tsw);
min_Lsw = dml_max(1, dml_max(PrefetchSourceLinesY, PrefetchSourceLinesC) / max_vratio_pre);
Lsw_oto = dml_ceil(4 * dml_max(prefetch_sw_bytes / prefetch_bw_oto / LineTime, min_Lsw), 1) / 4;
+#ifdef __DML_VBA_DEBUG__
Tsw_oto = Lsw_oto * LineTime;
+#endif
- prefetch_bw_oto = (PrefetchSourceLinesY * swath_width_luma_ub * myPipe->BytePerPixelY + PrefetchSourceLinesC * swath_width_chroma_ub * myPipe->BytePerPixelC) / Tsw_oto;
#ifdef __DML_VBA_DEBUG__
dml_print("DML: HTotal: %d\n", myPipe->HTotal);
@@ -4305,11 +4307,11 @@ void dml31_ModeSupportAndSystemConfigurationFull(struct display_mode_lib *mode_l
v->AudioSampleRate[k],
v->AudioSampleLayout[k],
v->ODMCombineEnablePerState[i][k]);
- } else if (v->Output[k] == dm_dp || v->Output[k] == dm_edp) {
+ } else if (v->Output[k] == dm_dp || v->Output[k] == dm_edp || v->Output[k] == dm_dp2p0) {
if (v->DSCEnable[k] == true) {
v->RequiresDSC[i][k] = true;
v->LinkDSCEnable = true;
- if (v->Output[k] == dm_dp) {
+ if (v->Output[k] == dm_dp || v->Output[k] == dm_dp2p0) {
v->RequiresFEC[i][k] = true;
} else {
v->RequiresFEC[i][k] = false;
@@ -4317,107 +4319,201 @@ void dml31_ModeSupportAndSystemConfigurationFull(struct display_mode_lib *mode_l
} else {
v->RequiresDSC[i][k] = false;
v->LinkDSCEnable = false;
- v->RequiresFEC[i][k] = false;
- }
-
- v->Outbpp = BPP_INVALID;
- if (v->PHYCLKPerState[i] >= 270.0) {
- v->Outbpp = TruncToValidBPP(
- (1.0 - v->Downspreading / 100.0) * 2700,
- v->OutputLinkDPLanes[k],
- v->HTotal[k],
- v->HActive[k],
- v->PixelClockBackEnd[k],
- v->ForcedOutputLinkBPP[k],
- v->LinkDSCEnable,
- v->Output[k],
- v->OutputFormat[k],
- v->DSCInputBitPerComponent[k],
- v->NumberOfDSCSlices[k],
- v->AudioSampleRate[k],
- v->AudioSampleLayout[k],
- v->ODMCombineEnablePerState[i][k]);
- v->OutputBppPerState[i][k] = v->Outbpp;
- // TODO: Need some other way to handle this nonsense
- // v->OutputTypeAndRatePerState[i][k] = v->Output[k] & " HBR"
- }
- if (v->Outbpp == BPP_INVALID && v->PHYCLKPerState[i] >= 540.0) {
- v->Outbpp = TruncToValidBPP(
- (1.0 - v->Downspreading / 100.0) * 5400,
- v->OutputLinkDPLanes[k],
- v->HTotal[k],
- v->HActive[k],
- v->PixelClockBackEnd[k],
- v->ForcedOutputLinkBPP[k],
- v->LinkDSCEnable,
- v->Output[k],
- v->OutputFormat[k],
- v->DSCInputBitPerComponent[k],
- v->NumberOfDSCSlices[k],
- v->AudioSampleRate[k],
- v->AudioSampleLayout[k],
- v->ODMCombineEnablePerState[i][k]);
- v->OutputBppPerState[i][k] = v->Outbpp;
- // TODO: Need some other way to handle this nonsense
- // v->OutputTypeAndRatePerState[i][k] = v->Output[k] & " HBR2"
- }
- if (v->Outbpp == BPP_INVALID && v->PHYCLKPerState[i] >= 810.0) {
- v->Outbpp = TruncToValidBPP(
- (1.0 - v->Downspreading / 100.0) * 8100,
- v->OutputLinkDPLanes[k],
- v->HTotal[k],
- v->HActive[k],
- v->PixelClockBackEnd[k],
- v->ForcedOutputLinkBPP[k],
- v->LinkDSCEnable,
- v->Output[k],
- v->OutputFormat[k],
- v->DSCInputBitPerComponent[k],
- v->NumberOfDSCSlices[k],
- v->AudioSampleRate[k],
- v->AudioSampleLayout[k],
- v->ODMCombineEnablePerState[i][k]);
- v->OutputBppPerState[i][k] = v->Outbpp;
- // TODO: Need some other way to handle this nonsense
- // v->OutputTypeAndRatePerState[i][k] = v->Output[k] & " HBR3"
- }
- if (v->Outbpp == BPP_INVALID && v->PHYCLKD18PerState[i] >= 10000.0 / 18) {
- v->Outbpp = TruncToValidBPP(
- (1.0 - v->Downspreading / 100.0) * 10000,
- 4,
- v->HTotal[k],
- v->HActive[k],
- v->PixelClockBackEnd[k],
- v->ForcedOutputLinkBPP[k],
- v->LinkDSCEnable,
- v->Output[k],
- v->OutputFormat[k],
- v->DSCInputBitPerComponent[k],
- v->NumberOfDSCSlices[k],
- v->AudioSampleRate[k],
- v->AudioSampleLayout[k],
- v->ODMCombineEnablePerState[i][k]);
- v->OutputBppPerState[i][k] = v->Outbpp;
- //v->OutputTypeAndRatePerState[i][k] = v->Output[k] & "10x4";
+ if (v->Output[k] == dm_dp2p0) {
+ v->RequiresFEC[i][k] = true;
+ } else {
+ v->RequiresFEC[i][k] = false;
+ }
}
- if (v->Outbpp == BPP_INVALID && v->PHYCLKD18PerState[i] >= 12000.0 / 18) {
- v->Outbpp = TruncToValidBPP(
- 12000,
- 4,
- v->HTotal[k],
- v->HActive[k],
- v->PixelClockBackEnd[k],
- v->ForcedOutputLinkBPP[k],
- v->LinkDSCEnable,
- v->Output[k],
- v->OutputFormat[k],
- v->DSCInputBitPerComponent[k],
- v->NumberOfDSCSlices[k],
- v->AudioSampleRate[k],
- v->AudioSampleLayout[k],
- v->ODMCombineEnablePerState[i][k]);
- v->OutputBppPerState[i][k] = v->Outbpp;
- //v->OutputTypeAndRatePerState[i][k] = v->Output[k] & "12x4";
+ if (v->Output[k] == dm_dp2p0) {
+ v->Outbpp = BPP_INVALID;
+ if ((v->OutputLinkDPRate[k] == dm_dp_rate_na || v->OutputLinkDPRate[k] == dm_dp_rate_uhbr10) &&
+ v->PHYCLKD18PerState[k] >= 10000.0 / 18.0) {
+ v->Outbpp = TruncToValidBPP(
+ (1.0 - v->Downspreading / 100.0) * 10000,
+ v->OutputLinkDPLanes[k],
+ v->HTotal[k],
+ v->HActive[k],
+ v->PixelClockBackEnd[k],
+ v->ForcedOutputLinkBPP[k],
+ v->LinkDSCEnable,
+ v->Output[k],
+ v->OutputFormat[k],
+ v->DSCInputBitPerComponent[k],
+ v->NumberOfDSCSlices[k],
+ v->AudioSampleRate[k],
+ v->AudioSampleLayout[k],
+ v->ODMCombineEnablePerState[i][k]);
+ if (v->Outbpp == BPP_INVALID && v->PHYCLKD18PerState[k] < 13500.0 / 18.0 &&
+ v->DSCEnable[k] == true && v->ForcedOutputLinkBPP[k] == 0) {
+ v->RequiresDSC[i][k] = true;
+ v->LinkDSCEnable = true;
+ v->Outbpp = TruncToValidBPP(
+ (1.0 - v->Downspreading / 100.0) * 10000,
+ v->OutputLinkDPLanes[k],
+ v->HTotal[k],
+ v->HActive[k],
+ v->PixelClockBackEnd[k],
+ v->ForcedOutputLinkBPP[k],
+ v->LinkDSCEnable,
+ v->Output[k],
+ v->OutputFormat[k],
+ v->DSCInputBitPerComponent[k],
+ v->NumberOfDSCSlices[k],
+ v->AudioSampleRate[k],
+ v->AudioSampleLayout[k],
+ v->ODMCombineEnablePerState[i][k]);
+ }
+ v->OutputBppPerState[i][k] = v->Outbpp;
+ // TODO: Need some other way to handle this nonsense
+ // v->OutputTypeAndRatePerState[i][k] = v->Output[k] & " UHBR10"
+ }
+ if (v->Outbpp == BPP_INVALID &&
+ (v->OutputLinkDPRate[k] == dm_dp_rate_na || v->OutputLinkDPRate[k] == dm_dp_rate_uhbr13p5) &&
+ v->PHYCLKD18PerState[k] >= 13500.0 / 18.0) {
+ v->Outbpp = TruncToValidBPP(
+ (1.0 - v->Downspreading / 100.0) * 13500,
+ v->OutputLinkDPLanes[k],
+ v->HTotal[k],
+ v->HActive[k],
+ v->PixelClockBackEnd[k],
+ v->ForcedOutputLinkBPP[k],
+ v->LinkDSCEnable,
+ v->Output[k],
+ v->OutputFormat[k],
+ v->DSCInputBitPerComponent[k],
+ v->NumberOfDSCSlices[k],
+ v->AudioSampleRate[k],
+ v->AudioSampleLayout[k],
+ v->ODMCombineEnablePerState[i][k]);
+ if (v->Outbpp == BPP_INVALID && v->PHYCLKD18PerState[k] < 20000.0 / 18.0 &&
+ v->DSCEnable[k] == true && v->ForcedOutputLinkBPP[k] == 0) {
+ v->RequiresDSC[i][k] = true;
+ v->LinkDSCEnable = true;
+ v->Outbpp = TruncToValidBPP(
+ (1.0 - v->Downspreading / 100.0) * 13500,
+ v->OutputLinkDPLanes[k],
+ v->HTotal[k],
+ v->HActive[k],
+ v->PixelClockBackEnd[k],
+ v->ForcedOutputLinkBPP[k],
+ v->LinkDSCEnable,
+ v->Output[k],
+ v->OutputFormat[k],
+ v->DSCInputBitPerComponent[k],
+ v->NumberOfDSCSlices[k],
+ v->AudioSampleRate[k],
+ v->AudioSampleLayout[k],
+ v->ODMCombineEnablePerState[i][k]);
+ }
+ v->OutputBppPerState[i][k] = v->Outbpp;
+ // TODO: Need some other way to handle this nonsense
+ // v->OutputTypeAndRatePerState[i][k] = v->Output[k] & " UHBR13p5"
+ }
+ if (v->Outbpp == BPP_INVALID &&
+ (v->OutputLinkDPRate[k] == dm_dp_rate_na || v->OutputLinkDPRate[k] == dm_dp_rate_uhbr20) &&
+ v->PHYCLKD18PerState[k] >= 20000.0 / 18.0) {
+ v->Outbpp = TruncToValidBPP(
+ (1.0 - v->Downspreading / 100.0) * 20000,
+ v->OutputLinkDPLanes[k],
+ v->HTotal[k],
+ v->HActive[k],
+ v->PixelClockBackEnd[k],
+ v->ForcedOutputLinkBPP[k],
+ v->LinkDSCEnable,
+ v->Output[k],
+ v->OutputFormat[k],
+ v->DSCInputBitPerComponent[k],
+ v->NumberOfDSCSlices[k],
+ v->AudioSampleRate[k],
+ v->AudioSampleLayout[k],
+ v->ODMCombineEnablePerState[i][k]);
+ if (v->Outbpp == BPP_INVALID && v->DSCEnable[k] == true &&
+ v->ForcedOutputLinkBPP[k] == 0) {
+ v->RequiresDSC[i][k] = true;
+ v->LinkDSCEnable = true;
+ v->Outbpp = TruncToValidBPP(
+ (1.0 - v->Downspreading / 100.0) * 20000,
+ v->OutputLinkDPLanes[k],
+ v->HTotal[k],
+ v->HActive[k],
+ v->PixelClockBackEnd[k],
+ v->ForcedOutputLinkBPP[k],
+ v->LinkDSCEnable,
+ v->Output[k],
+ v->OutputFormat[k],
+ v->DSCInputBitPerComponent[k],
+ v->NumberOfDSCSlices[k],
+ v->AudioSampleRate[k],
+ v->AudioSampleLayout[k],
+ v->ODMCombineEnablePerState[i][k]);
+ }
+ v->OutputBppPerState[i][k] = v->Outbpp;
+ // TODO: Need some other way to handle this nonsense
+ // v->OutputTypeAndRatePerState[i][k] = v->Output[k] & " UHBR20"
+ }
+ } else {
+ v->Outbpp = BPP_INVALID;
+ if (v->PHYCLKPerState[i] >= 270.0) {
+ v->Outbpp = TruncToValidBPP(
+ (1.0 - v->Downspreading / 100.0) * 2700,
+ v->OutputLinkDPLanes[k],
+ v->HTotal[k],
+ v->HActive[k],
+ v->PixelClockBackEnd[k],
+ v->ForcedOutputLinkBPP[k],
+ v->LinkDSCEnable,
+ v->Output[k],
+ v->OutputFormat[k],
+ v->DSCInputBitPerComponent[k],
+ v->NumberOfDSCSlices[k],
+ v->AudioSampleRate[k],
+ v->AudioSampleLayout[k],
+ v->ODMCombineEnablePerState[i][k]);
+ v->OutputBppPerState[i][k] = v->Outbpp;
+ // TODO: Need some other way to handle this nonsense
+ // v->OutputTypeAndRatePerState[i][k] = v->Output[k] & " HBR"
+ }
+ if (v->Outbpp == BPP_INVALID && v->PHYCLKPerState[i] >= 540.0) {
+ v->Outbpp = TruncToValidBPP(
+ (1.0 - v->Downspreading / 100.0) * 5400,
+ v->OutputLinkDPLanes[k],
+ v->HTotal[k],
+ v->HActive[k],
+ v->PixelClockBackEnd[k],
+ v->ForcedOutputLinkBPP[k],
+ v->LinkDSCEnable,
+ v->Output[k],
+ v->OutputFormat[k],
+ v->DSCInputBitPerComponent[k],
+ v->NumberOfDSCSlices[k],
+ v->AudioSampleRate[k],
+ v->AudioSampleLayout[k],
+ v->ODMCombineEnablePerState[i][k]);
+ v->OutputBppPerState[i][k] = v->Outbpp;
+ // TODO: Need some other way to handle this nonsense
+ // v->OutputTypeAndRatePerState[i][k] = v->Output[k] & " HBR2"
+ }
+ if (v->Outbpp == BPP_INVALID && v->PHYCLKPerState[i] >= 810.0) {
+ v->Outbpp = TruncToValidBPP(
+ (1.0 - v->Downspreading / 100.0) * 8100,
+ v->OutputLinkDPLanes[k],
+ v->HTotal[k],
+ v->HActive[k],
+ v->PixelClockBackEnd[k],
+ v->ForcedOutputLinkBPP[k],
+ v->LinkDSCEnable,
+ v->Output[k],
+ v->OutputFormat[k],
+ v->DSCInputBitPerComponent[k],
+ v->NumberOfDSCSlices[k],
+ v->AudioSampleRate[k],
+ v->AudioSampleLayout[k],
+ v->ODMCombineEnablePerState[i][k]);
+ v->OutputBppPerState[i][k] = v->Outbpp;
+ // TODO: Need some other way to handle this nonsense
+ // v->OutputTypeAndRatePerState[i][k] = v->Output[k] & " HBR3"
+ }
}
}
} else {
@@ -5083,7 +5179,7 @@ void dml31_ModeSupportAndSystemConfigurationFull(struct display_mode_lib *mode_l
v->SwathHeightYThisState[k],
v->SwathHeightCThisState[k],
v->HTotal[k] / v->PixelClock[k],
- v->UrgentLatency,
+ v->UrgLatency[i],
v->CursorBufferSize,
v->CursorWidth[k][0],
v->CursorBPP[k][0],
@@ -5095,7 +5191,7 @@ void dml31_ModeSupportAndSystemConfigurationFull(struct display_mode_lib *mode_l
v->DETBufferSizeCThisState[k],
&v->UrgentBurstFactorCursorPre[k],
&v->UrgentBurstFactorLumaPre[k],
- &v->UrgentBurstFactorChroma[k],
+ &v->UrgentBurstFactorChromaPre[k],
&v->NotUrgentLatencyHidingPre[k]);
}
@@ -5361,6 +5457,58 @@ void dml31_ModeSupportAndSystemConfigurationFull(struct display_mode_lib *mode_l
v->ModeSupport[i][j] = true;
} else {
v->ModeSupport[i][j] = false;
+#ifdef __DML_VBA_DEBUG__
+ if (v->ScaleRatioAndTapsSupport == false)
+ dml_print("DML SUPPORT: ScaleRatioAndTapsSupport failed");
+ if (v->SourceFormatPixelAndScanSupport == false)
+ dml_print("DML SUPPORT: SourceFormatPixelAndScanSupport failed");
+ if (v->ViewportSizeSupport[i][j] == false)
+ dml_print("DML SUPPORT: ViewportSizeSupport failed");
+ if (v->LinkCapacitySupport[i] == false)
+ dml_print("DML SUPPORT: LinkCapacitySupport failed");
+ if (v->ODMCombine4To1SupportCheckOK[i] == false)
+ dml_print("DML SUPPORT: DSC422NativeNotSupported failed");
+ if (v->NotEnoughDSCUnits[i] == true)
+ dml_print("DML SUPPORT: NotEnoughDSCUnits");
+ if (v->DTBCLKRequiredMoreThanSupported[i] == true)
+ dml_print("DML SUPPORT: DTBCLKRequiredMoreThanSupported");
+ if (v->ROBSupport[i][j] == false)
+ dml_print("DML SUPPORT: ROBSupport failed");
+ if (v->DISPCLK_DPPCLK_Support[i][j] == false)
+ dml_print("DML SUPPORT: DISPCLK_DPPCLK_Support failed");
+ if (v->TotalAvailablePipesSupport[i][j] == false)
+ dml_print("DML SUPPORT: DSC422NativeNotSupported failed");
+ if (EnoughWritebackUnits == false)
+ dml_print("DML SUPPORT: DSC422NativeNotSupported failed");
+ if (v->WritebackLatencySupport == false)
+ dml_print("DML SUPPORT: WritebackLatencySupport failed");
+ if (v->WritebackScaleRatioAndTapsSupport == false)
+ dml_print("DML SUPPORT: DSC422NativeNotSupported ");
+ if (v->CursorSupport == false)
+ dml_print("DML SUPPORT: DSC422NativeNotSupported failed");
+ if (v->PitchSupport == false)
+ dml_print("DML SUPPORT: PitchSupport failed");
+ if (ViewportExceedsSurface == true)
+ dml_print("DML SUPPORT: ViewportExceedsSurface failed");
+ if (v->PrefetchSupported[i][j] == false)
+ dml_print("DML SUPPORT: PrefetchSupported failed");
+ if (v->DynamicMetadataSupported[i][j] == false)
+ dml_print("DML SUPPORT: DSC422NativeNotSupported failed");
+ if (v->TotalVerticalActiveBandwidthSupport[i][j] == false)
+ dml_print("DML SUPPORT: TotalVerticalActiveBandwidthSupport failed");
+ if (v->VRatioInPrefetchSupported[i][j] == false)
+ dml_print("DML SUPPORT: VRatioInPrefetchSupported failed");
+ if (v->PTEBufferSizeNotExceeded[i][j] == false)
+ dml_print("DML SUPPORT: PTEBufferSizeNotExceeded failed");
+ if (v->NonsupportedDSCInputBPC == true)
+ dml_print("DML SUPPORT: NonsupportedDSCInputBPC failed");
+ if (!((v->HostVMEnable == false
+ && v->ImmediateFlipRequirement[0] != dm_immediate_flip_required)
+ || v->ImmediateFlipSupportedForState[i][j] == true))
+ dml_print("DML SUPPORT: ImmediateFlipRequirement failed");
+ if (FMTBufferExceeded == true)
+ dml_print("DML SUPPORT: FMTBufferExceeded failed");
+#endif
}
}
}
diff --git a/drivers/gpu/drm/amd/display/dc/dml/dcn31/display_rq_dlg_calc_31.c b/drivers/gpu/drm/amd/display/dc/dml/dcn31/display_rq_dlg_calc_31.c
index 35d10b4d018b..2244e4fb8c96 100644
--- a/drivers/gpu/drm/amd/display/dc/dml/dcn31/display_rq_dlg_calc_31.c
+++ b/drivers/gpu/drm/amd/display/dc/dml/dcn31/display_rq_dlg_calc_31.c
@@ -902,7 +902,6 @@ static void dml_rq_dlg_get_dlg_params(
double hratio_c;
double vratio_l;
double vratio_c;
- bool scl_enable;
unsigned int swath_width_ub_l;
unsigned int dpte_groups_per_row_ub_l;
@@ -1020,7 +1019,6 @@ static void dml_rq_dlg_get_dlg_params(
hratio_c = scl->hscl_ratio_c;
vratio_l = scl->vscl_ratio;
vratio_c = scl->vscl_ratio_c;
- scl_enable = scl->scl_enable;
swath_width_ub_l = rq_dlg_param->rq_l.swath_width_ub;
dpte_groups_per_row_ub_l = rq_dlg_param->rq_l.dpte_groups_per_row_ub;
diff --git a/drivers/gpu/drm/amd/display/dc/dml/dcn314/dcn314_fpu.c b/drivers/gpu/drm/amd/display/dc/dml/dcn314/dcn314_fpu.c
index 34b6c763a455..9e54e3d0eb78 100644
--- a/drivers/gpu/drm/amd/display/dc/dml/dcn314/dcn314_fpu.c
+++ b/drivers/gpu/drm/amd/display/dc/dml/dcn314/dcn314_fpu.c
@@ -29,6 +29,7 @@
#include "dcn31/dcn31_hubbub.h"
#include "dcn314_fpu.h"
#include "dml/dcn20/dcn20_fpu.h"
+#include "dml/dcn31/dcn31_fpu.h"
#include "dml/display_mode_vba.h"
struct _vcs_dpi_ip_params_st dcn3_14_ip = {
@@ -96,7 +97,7 @@ struct _vcs_dpi_ip_params_st dcn3_14_ip = {
.dcc_supported = true,
};
-struct _vcs_dpi_soc_bounding_box_st dcn3_14_soc = {
+static struct _vcs_dpi_soc_bounding_box_st dcn3_14_soc = {
/*TODO: correct dispclk/dppclk voltage level determination*/
.clock_limits = {
{
@@ -148,8 +149,8 @@ struct _vcs_dpi_soc_bounding_box_st dcn3_14_soc = {
.num_states = 5,
.sr_exit_time_us = 16.5,
.sr_enter_plus_exit_time_us = 18.5,
- .sr_exit_z8_time_us = 442.0,
- .sr_enter_plus_exit_z8_time_us = 560.0,
+ .sr_exit_z8_time_us = 268.0,
+ .sr_enter_plus_exit_z8_time_us = 393.0,
.writeback_latency_us = 12.0,
.dram_channel_width_bytes = 4,
.round_trip_ping_latency_dcfclk_cycles = 106,
@@ -264,11 +265,8 @@ void dcn314_update_bw_bounding_box_fpu(struct dc *dc, struct clk_bw_params *bw_p
dc->dml.soc.dispclk_dppclk_vco_speed_mhz = max_dispclk_mhz * 2;
}
- if ((int)(dcn3_14_soc.dram_clock_change_latency_us * 1000)
- != dc->debug.dram_clock_change_latency_ns
- && dc->debug.dram_clock_change_latency_ns) {
- dcn3_14_soc.dram_clock_change_latency_us = dc->debug.dram_clock_change_latency_ns / 1000;
- }
+ dcn20_patch_bounding_box(dc, &dcn3_14_soc);
+
if (!IS_FPGA_MAXIMUS_DC(dc->ctx->dce_environment))
dml_init_instance(&dc->dml, &dcn3_14_soc, &dcn3_14_ip, DML_PROJECT_DCN314);
else
@@ -291,7 +289,7 @@ int dcn314_populate_dml_pipes_from_context_fpu(struct dc *dc, struct dc_state *c
dc_assert_fp_enabled();
- dcn20_populate_dml_pipes_from_context(dc, context, pipes, fast_validate);
+ dcn31x_populate_dml_pipes_from_context(dc, context, pipes, fast_validate);
for (i = 0, pipe_cnt = 0; i < dc->res_pool->pipe_count; i++) {
struct dc_crtc_timing *timing;
@@ -310,6 +308,10 @@ int dcn314_populate_dml_pipes_from_context_fpu(struct dc *dc, struct dc_state *c
pipe->plane_state->src_rect.width < pipe->plane_state->dst_rect.width))
upscaled = true;
+ /* Apply HostVM policy - either based on hypervisor globally enabled, or rIOMMU active */
+ if (dc->debug.dml_hostvm_override == DML_HOSTVM_NO_OVERRIDE)
+ pipes[i].pipe.src.hostvm = dc->vm_pa_config.is_hvm_enabled || dc->res_pool->hubbub->riommu_active;
+
/*
* Immediate flip can be set dynamically after enabling the plane.
* We need to require support for immediate flip or underflow can be
@@ -318,8 +320,6 @@ int dcn314_populate_dml_pipes_from_context_fpu(struct dc *dc, struct dc_state *c
pipes[pipe_cnt].pipe.src.immediate_flip = true;
pipes[pipe_cnt].pipe.src.unbounded_req_mode = false;
- pipes[pipe_cnt].pipe.src.hostvm = dc->res_pool->hubbub->riommu_active;
- pipes[pipe_cnt].pipe.src.gpuvm = true;
pipes[pipe_cnt].pipe.src.dcc_fraction_of_zs_req_luma = 0;
pipes[pipe_cnt].pipe.src.dcc_fraction_of_zs_req_chroma = 0;
pipes[pipe_cnt].pipe.dest.vfront_porch = timing->v_front_porch;
@@ -350,7 +350,8 @@ int dcn314_populate_dml_pipes_from_context_fpu(struct dc *dc, struct dc_state *c
context->bw_ctx.dml.ip.det_buffer_size_kbytes = DCN3_14_DEFAULT_DET_SIZE;
dc->config.enable_4to1MPC = false;
- if (pipe_cnt == 1 && pipe->plane_state && !dc->debug.disable_z9_mpc) {
+ if (pipe_cnt == 1 && pipe->plane_state
+ && pipe->plane_state->rotation == ROTATION_ANGLE_0 && !dc->debug.disable_z9_mpc) {
if (is_dual_plane(pipe->plane_state->format)
&& pipe->plane_state->src_rect.width <= 1920 && pipe->plane_state->src_rect.height <= 1080) {
dc->config.enable_4to1MPC = true;
diff --git a/drivers/gpu/drm/amd/display/dc/dml/dcn314/display_mode_vba_314.c b/drivers/gpu/drm/amd/display/dc/dml/dcn314/display_mode_vba_314.c
index 0d12fd079cd6..7eb2173b7691 100644
--- a/drivers/gpu/drm/amd/display/dc/dml/dcn314/display_mode_vba_314.c
+++ b/drivers/gpu/drm/amd/display/dc/dml/dcn314/display_mode_vba_314.c
@@ -27,7 +27,6 @@
#define UNIT_TEST 0
#if !UNIT_TEST
#include "dc.h"
-#include "dc_link.h"
#endif
#include "../display_mode_lib.h"
#include "display_mode_vba_314.h"
@@ -900,7 +899,9 @@ static bool CalculatePrefetchSchedule(
double DSTTotalPixelsAfterScaler;
double LineTime;
double dst_y_prefetch_equ;
+#ifdef __DML_VBA_DEBUG__
double Tsw_oto;
+#endif
double prefetch_bw_oto;
double prefetch_bw_pr;
double Tvm_oto;
@@ -1074,17 +1075,18 @@ static bool CalculatePrefetchSchedule(
else
bytes_pp = myPipe->BytePerPixelY + myPipe->BytePerPixelC;
/*rev 99*/
- prefetch_bw_pr = dml_min(1, bytes_pp * myPipe->PixelClock / (double) myPipe->DPPPerPlane);
+ prefetch_bw_pr = bytes_pp * myPipe->PixelClock / (double) myPipe->DPPPerPlane;
+ prefetch_bw_pr = dml_min(1, myPipe->VRatio) * prefetch_bw_pr;
max_Tsw = dml_max(PrefetchSourceLinesY, PrefetchSourceLinesC) * LineTime;
prefetch_sw_bytes = PrefetchSourceLinesY * swath_width_luma_ub * myPipe->BytePerPixelY + PrefetchSourceLinesC * swath_width_chroma_ub * myPipe->BytePerPixelC;
- prefetch_bw_oto = dml_max(bytes_pp * myPipe->PixelClock / myPipe->DPPPerPlane, prefetch_sw_bytes / (dml_max(PrefetchSourceLinesY, PrefetchSourceLinesC) * LineTime));
prefetch_bw_oto = dml_max(prefetch_bw_pr, prefetch_sw_bytes / max_Tsw);
min_Lsw = dml_max(1, dml_max(PrefetchSourceLinesY, PrefetchSourceLinesC) / max_vratio_pre);
Lsw_oto = dml_ceil(4 * dml_max(prefetch_sw_bytes / prefetch_bw_oto / LineTime, min_Lsw), 1) / 4;
+#ifdef __DML_VBA_DEBUG__
Tsw_oto = Lsw_oto * LineTime;
+#endif
- prefetch_bw_oto = (PrefetchSourceLinesY * swath_width_luma_ub * myPipe->BytePerPixelY + PrefetchSourceLinesC * swath_width_chroma_ub * myPipe->BytePerPixelC) / Tsw_oto;
#ifdef __DML_VBA_DEBUG__
dml_print("DML: HTotal: %d\n", myPipe->HTotal);
@@ -3184,7 +3186,7 @@ static void DISPCLKDPPCLKDCFCLKDeepSleepPrefetchParametersWatermarksAndPerforman
} else {
v->MIN_DST_Y_NEXT_START[k] = v->VTotal[k] - v->VFrontPorch[k] + v->VTotal[k] - v->VActive[k] - v->VStartup[k];
}
- v->MIN_DST_Y_NEXT_START[k] += dml_floor(4.0 * v->TSetup[k] / (double)v->HTotal[k] / v->PixelClock[k], 1.0) / 4.0;
+ v->MIN_DST_Y_NEXT_START[k] += dml_floor(4.0 * v->TSetup[k] / ((double)v->HTotal[k] / v->PixelClock[k]), 1.0) / 4.0;
if (((v->VUpdateOffsetPix[k] + v->VUpdateWidthPix[k] + v->VReadyOffsetPix[k]) / v->HTotal[k])
<= (isInterlaceTiming ?
dml_floor((v->VTotal[k] - v->VActive[k] - v->VFrontPorch[k] - v->VStartup[k]) / 2.0, 1.0) :
@@ -4403,11 +4405,11 @@ void dml314_ModeSupportAndSystemConfigurationFull(struct display_mode_lib *mode_
v->AudioSampleRate[k],
v->AudioSampleLayout[k],
v->ODMCombineEnablePerState[i][k]);
- } else if (v->Output[k] == dm_dp || v->Output[k] == dm_edp) {
+ } else if (v->Output[k] == dm_dp || v->Output[k] == dm_edp || v->Output[k] == dm_dp2p0) {
if (v->DSCEnable[k] == true) {
v->RequiresDSC[i][k] = true;
v->LinkDSCEnable = true;
- if (v->Output[k] == dm_dp) {
+ if (v->Output[k] == dm_dp || v->Output[k] == dm_dp2p0) {
v->RequiresFEC[i][k] = true;
} else {
v->RequiresFEC[i][k] = false;
@@ -4415,107 +4417,201 @@ void dml314_ModeSupportAndSystemConfigurationFull(struct display_mode_lib *mode_
} else {
v->RequiresDSC[i][k] = false;
v->LinkDSCEnable = false;
- v->RequiresFEC[i][k] = false;
- }
-
- v->Outbpp = BPP_INVALID;
- if (v->PHYCLKPerState[i] >= 270.0) {
- v->Outbpp = TruncToValidBPP(
- (1.0 - v->Downspreading / 100.0) * 2700,
- v->OutputLinkDPLanes[k],
- v->HTotal[k],
- v->HActive[k],
- v->PixelClockBackEnd[k],
- v->ForcedOutputLinkBPP[k],
- v->LinkDSCEnable,
- v->Output[k],
- v->OutputFormat[k],
- v->DSCInputBitPerComponent[k],
- v->NumberOfDSCSlices[k],
- v->AudioSampleRate[k],
- v->AudioSampleLayout[k],
- v->ODMCombineEnablePerState[i][k]);
- v->OutputBppPerState[i][k] = v->Outbpp;
- // TODO: Need some other way to handle this nonsense
- // v->OutputTypeAndRatePerState[i][k] = v->Output[k] & " HBR"
- }
- if (v->Outbpp == BPP_INVALID && v->PHYCLKPerState[i] >= 540.0) {
- v->Outbpp = TruncToValidBPP(
- (1.0 - v->Downspreading / 100.0) * 5400,
- v->OutputLinkDPLanes[k],
- v->HTotal[k],
- v->HActive[k],
- v->PixelClockBackEnd[k],
- v->ForcedOutputLinkBPP[k],
- v->LinkDSCEnable,
- v->Output[k],
- v->OutputFormat[k],
- v->DSCInputBitPerComponent[k],
- v->NumberOfDSCSlices[k],
- v->AudioSampleRate[k],
- v->AudioSampleLayout[k],
- v->ODMCombineEnablePerState[i][k]);
- v->OutputBppPerState[i][k] = v->Outbpp;
- // TODO: Need some other way to handle this nonsense
- // v->OutputTypeAndRatePerState[i][k] = v->Output[k] & " HBR2"
- }
- if (v->Outbpp == BPP_INVALID && v->PHYCLKPerState[i] >= 810.0) {
- v->Outbpp = TruncToValidBPP(
- (1.0 - v->Downspreading / 100.0) * 8100,
- v->OutputLinkDPLanes[k],
- v->HTotal[k],
- v->HActive[k],
- v->PixelClockBackEnd[k],
- v->ForcedOutputLinkBPP[k],
- v->LinkDSCEnable,
- v->Output[k],
- v->OutputFormat[k],
- v->DSCInputBitPerComponent[k],
- v->NumberOfDSCSlices[k],
- v->AudioSampleRate[k],
- v->AudioSampleLayout[k],
- v->ODMCombineEnablePerState[i][k]);
- v->OutputBppPerState[i][k] = v->Outbpp;
- // TODO: Need some other way to handle this nonsense
- // v->OutputTypeAndRatePerState[i][k] = v->Output[k] & " HBR3"
- }
- if (v->Outbpp == BPP_INVALID && v->PHYCLKD18PerState[i] >= 10000.0 / 18) {
- v->Outbpp = TruncToValidBPP(
- (1.0 - v->Downspreading / 100.0) * 10000,
- 4,
- v->HTotal[k],
- v->HActive[k],
- v->PixelClockBackEnd[k],
- v->ForcedOutputLinkBPP[k],
- v->LinkDSCEnable,
- v->Output[k],
- v->OutputFormat[k],
- v->DSCInputBitPerComponent[k],
- v->NumberOfDSCSlices[k],
- v->AudioSampleRate[k],
- v->AudioSampleLayout[k],
- v->ODMCombineEnablePerState[i][k]);
- v->OutputBppPerState[i][k] = v->Outbpp;
- //v->OutputTypeAndRatePerState[i][k] = v->Output[k] & "10x4";
+ if (v->Output[k] == dm_dp2p0) {
+ v->RequiresFEC[i][k] = true;
+ } else {
+ v->RequiresFEC[i][k] = false;
+ }
}
- if (v->Outbpp == BPP_INVALID && v->PHYCLKD18PerState[i] >= 12000.0 / 18) {
- v->Outbpp = TruncToValidBPP(
- 12000,
- 4,
- v->HTotal[k],
- v->HActive[k],
- v->PixelClockBackEnd[k],
- v->ForcedOutputLinkBPP[k],
- v->LinkDSCEnable,
- v->Output[k],
- v->OutputFormat[k],
- v->DSCInputBitPerComponent[k],
- v->NumberOfDSCSlices[k],
- v->AudioSampleRate[k],
- v->AudioSampleLayout[k],
- v->ODMCombineEnablePerState[i][k]);
- v->OutputBppPerState[i][k] = v->Outbpp;
- //v->OutputTypeAndRatePerState[i][k] = v->Output[k] & "12x4";
+ if (v->Output[k] == dm_dp2p0) {
+ v->Outbpp = BPP_INVALID;
+ if ((v->OutputLinkDPRate[k] == dm_dp_rate_na || v->OutputLinkDPRate[k] == dm_dp_rate_uhbr10) &&
+ v->PHYCLKD18PerState[k] >= 10000.0 / 18.0) {
+ v->Outbpp = TruncToValidBPP(
+ (1.0 - v->Downspreading / 100.0) * 10000,
+ v->OutputLinkDPLanes[k],
+ v->HTotal[k],
+ v->HActive[k],
+ v->PixelClockBackEnd[k],
+ v->ForcedOutputLinkBPP[k],
+ v->LinkDSCEnable,
+ v->Output[k],
+ v->OutputFormat[k],
+ v->DSCInputBitPerComponent[k],
+ v->NumberOfDSCSlices[k],
+ v->AudioSampleRate[k],
+ v->AudioSampleLayout[k],
+ v->ODMCombineEnablePerState[i][k]);
+ if (v->Outbpp == BPP_INVALID && v->PHYCLKD18PerState[k] < 13500.0 / 18.0 &&
+ v->DSCEnable[k] == true && v->ForcedOutputLinkBPP[k] == 0) {
+ v->RequiresDSC[i][k] = true;
+ v->LinkDSCEnable = true;
+ v->Outbpp = TruncToValidBPP(
+ (1.0 - v->Downspreading / 100.0) * 10000,
+ v->OutputLinkDPLanes[k],
+ v->HTotal[k],
+ v->HActive[k],
+ v->PixelClockBackEnd[k],
+ v->ForcedOutputLinkBPP[k],
+ v->LinkDSCEnable,
+ v->Output[k],
+ v->OutputFormat[k],
+ v->DSCInputBitPerComponent[k],
+ v->NumberOfDSCSlices[k],
+ v->AudioSampleRate[k],
+ v->AudioSampleLayout[k],
+ v->ODMCombineEnablePerState[i][k]);
+ }
+ v->OutputBppPerState[i][k] = v->Outbpp;
+ // TODO: Need some other way to handle this nonsense
+ // v->OutputTypeAndRatePerState[i][k] = v->Output[k] & " UHBR10"
+ }
+ if (v->Outbpp == BPP_INVALID &&
+ (v->OutputLinkDPRate[k] == dm_dp_rate_na || v->OutputLinkDPRate[k] == dm_dp_rate_uhbr13p5) &&
+ v->PHYCLKD18PerState[k] >= 13500.0 / 18.0) {
+ v->Outbpp = TruncToValidBPP(
+ (1.0 - v->Downspreading / 100.0) * 13500,
+ v->OutputLinkDPLanes[k],
+ v->HTotal[k],
+ v->HActive[k],
+ v->PixelClockBackEnd[k],
+ v->ForcedOutputLinkBPP[k],
+ v->LinkDSCEnable,
+ v->Output[k],
+ v->OutputFormat[k],
+ v->DSCInputBitPerComponent[k],
+ v->NumberOfDSCSlices[k],
+ v->AudioSampleRate[k],
+ v->AudioSampleLayout[k],
+ v->ODMCombineEnablePerState[i][k]);
+ if (v->Outbpp == BPP_INVALID && v->PHYCLKD18PerState[k] < 20000.0 / 18.0 &&
+ v->DSCEnable[k] == true && v->ForcedOutputLinkBPP[k] == 0) {
+ v->RequiresDSC[i][k] = true;
+ v->LinkDSCEnable = true;
+ v->Outbpp = TruncToValidBPP(
+ (1.0 - v->Downspreading / 100.0) * 13500,
+ v->OutputLinkDPLanes[k],
+ v->HTotal[k],
+ v->HActive[k],
+ v->PixelClockBackEnd[k],
+ v->ForcedOutputLinkBPP[k],
+ v->LinkDSCEnable,
+ v->Output[k],
+ v->OutputFormat[k],
+ v->DSCInputBitPerComponent[k],
+ v->NumberOfDSCSlices[k],
+ v->AudioSampleRate[k],
+ v->AudioSampleLayout[k],
+ v->ODMCombineEnablePerState[i][k]);
+ }
+ v->OutputBppPerState[i][k] = v->Outbpp;
+ // TODO: Need some other way to handle this nonsense
+ // v->OutputTypeAndRatePerState[i][k] = v->Output[k] & " UHBR13p5"
+ }
+ if (v->Outbpp == BPP_INVALID &&
+ (v->OutputLinkDPRate[k] == dm_dp_rate_na || v->OutputLinkDPRate[k] == dm_dp_rate_uhbr20) &&
+ v->PHYCLKD18PerState[k] >= 20000.0 / 18.0) {
+ v->Outbpp = TruncToValidBPP(
+ (1.0 - v->Downspreading / 100.0) * 20000,
+ v->OutputLinkDPLanes[k],
+ v->HTotal[k],
+ v->HActive[k],
+ v->PixelClockBackEnd[k],
+ v->ForcedOutputLinkBPP[k],
+ v->LinkDSCEnable,
+ v->Output[k],
+ v->OutputFormat[k],
+ v->DSCInputBitPerComponent[k],
+ v->NumberOfDSCSlices[k],
+ v->AudioSampleRate[k],
+ v->AudioSampleLayout[k],
+ v->ODMCombineEnablePerState[i][k]);
+ if (v->Outbpp == BPP_INVALID && v->DSCEnable[k] == true &&
+ v->ForcedOutputLinkBPP[k] == 0) {
+ v->RequiresDSC[i][k] = true;
+ v->LinkDSCEnable = true;
+ v->Outbpp = TruncToValidBPP(
+ (1.0 - v->Downspreading / 100.0) * 20000,
+ v->OutputLinkDPLanes[k],
+ v->HTotal[k],
+ v->HActive[k],
+ v->PixelClockBackEnd[k],
+ v->ForcedOutputLinkBPP[k],
+ v->LinkDSCEnable,
+ v->Output[k],
+ v->OutputFormat[k],
+ v->DSCInputBitPerComponent[k],
+ v->NumberOfDSCSlices[k],
+ v->AudioSampleRate[k],
+ v->AudioSampleLayout[k],
+ v->ODMCombineEnablePerState[i][k]);
+ }
+ v->OutputBppPerState[i][k] = v->Outbpp;
+ // TODO: Need some other way to handle this nonsense
+ // v->OutputTypeAndRatePerState[i][k] = v->Output[k] & " UHBR20"
+ }
+ } else {
+ v->Outbpp = BPP_INVALID;
+ if (v->PHYCLKPerState[i] >= 270.0) {
+ v->Outbpp = TruncToValidBPP(
+ (1.0 - v->Downspreading / 100.0) * 2700,
+ v->OutputLinkDPLanes[k],
+ v->HTotal[k],
+ v->HActive[k],
+ v->PixelClockBackEnd[k],
+ v->ForcedOutputLinkBPP[k],
+ v->LinkDSCEnable,
+ v->Output[k],
+ v->OutputFormat[k],
+ v->DSCInputBitPerComponent[k],
+ v->NumberOfDSCSlices[k],
+ v->AudioSampleRate[k],
+ v->AudioSampleLayout[k],
+ v->ODMCombineEnablePerState[i][k]);
+ v->OutputBppPerState[i][k] = v->Outbpp;
+ // TODO: Need some other way to handle this nonsense
+ // v->OutputTypeAndRatePerState[i][k] = v->Output[k] & " HBR"
+ }
+ if (v->Outbpp == BPP_INVALID && v->PHYCLKPerState[i] >= 540.0) {
+ v->Outbpp = TruncToValidBPP(
+ (1.0 - v->Downspreading / 100.0) * 5400,
+ v->OutputLinkDPLanes[k],
+ v->HTotal[k],
+ v->HActive[k],
+ v->PixelClockBackEnd[k],
+ v->ForcedOutputLinkBPP[k],
+ v->LinkDSCEnable,
+ v->Output[k],
+ v->OutputFormat[k],
+ v->DSCInputBitPerComponent[k],
+ v->NumberOfDSCSlices[k],
+ v->AudioSampleRate[k],
+ v->AudioSampleLayout[k],
+ v->ODMCombineEnablePerState[i][k]);
+ v->OutputBppPerState[i][k] = v->Outbpp;
+ // TODO: Need some other way to handle this nonsense
+ // v->OutputTypeAndRatePerState[i][k] = v->Output[k] & " HBR2"
+ }
+ if (v->Outbpp == BPP_INVALID && v->PHYCLKPerState[i] >= 810.0) {
+ v->Outbpp = TruncToValidBPP(
+ (1.0 - v->Downspreading / 100.0) * 8100,
+ v->OutputLinkDPLanes[k],
+ v->HTotal[k],
+ v->HActive[k],
+ v->PixelClockBackEnd[k],
+ v->ForcedOutputLinkBPP[k],
+ v->LinkDSCEnable,
+ v->Output[k],
+ v->OutputFormat[k],
+ v->DSCInputBitPerComponent[k],
+ v->NumberOfDSCSlices[k],
+ v->AudioSampleRate[k],
+ v->AudioSampleLayout[k],
+ v->ODMCombineEnablePerState[i][k]);
+ v->OutputBppPerState[i][k] = v->Outbpp;
+ // TODO: Need some other way to handle this nonsense
+ // v->OutputTypeAndRatePerState[i][k] = v->Output[k] & " HBR3"
+ }
}
}
} else {
@@ -5180,7 +5276,7 @@ void dml314_ModeSupportAndSystemConfigurationFull(struct display_mode_lib *mode_
v->SwathHeightYThisState[k],
v->SwathHeightCThisState[k],
v->HTotal[k] / v->PixelClock[k],
- v->UrgentLatency,
+ v->UrgLatency[i],
v->CursorBufferSize,
v->CursorWidth[k][0],
v->CursorBPP[k][0],
@@ -5192,7 +5288,7 @@ void dml314_ModeSupportAndSystemConfigurationFull(struct display_mode_lib *mode_
v->DETBufferSizeCThisState[k],
&v->UrgentBurstFactorCursorPre[k],
&v->UrgentBurstFactorLumaPre[k],
- &v->UrgentBurstFactorChroma[k],
+ &v->UrgentBurstFactorChromaPre[k],
&v->NotUrgentLatencyHidingPre[k]);
}
diff --git a/drivers/gpu/drm/amd/display/dc/dml/dcn314/display_rq_dlg_calc_314.c b/drivers/gpu/drm/amd/display/dc/dml/dcn314/display_rq_dlg_calc_314.c
index 61ee9ba063a7..ea4eb66066c4 100644
--- a/drivers/gpu/drm/amd/display/dc/dml/dcn314/display_rq_dlg_calc_314.c
+++ b/drivers/gpu/drm/amd/display/dc/dml/dcn314/display_rq_dlg_calc_314.c
@@ -51,7 +51,7 @@ static bool CalculateBytePerPixelAnd256BBlockSizes(
*BytePerPixelDETC = 0;
*BytePerPixelY = 4;
*BytePerPixelC = 0;
- } else if (SourcePixelFormat == dm_444_16 || SourcePixelFormat == dm_444_16) {
+ } else if (SourcePixelFormat == dm_444_16) {
*BytePerPixelDETY = 2;
*BytePerPixelDETC = 0;
*BytePerPixelY = 2;
@@ -988,7 +988,6 @@ static void dml_rq_dlg_get_dlg_params(
double hratio_c;
double vratio_l;
double vratio_c;
- bool scl_enable;
unsigned int swath_width_ub_l;
unsigned int dpte_groups_per_row_ub_l;
@@ -1001,7 +1000,6 @@ static void dml_rq_dlg_get_dlg_params(
unsigned int vupdate_width;
unsigned int vready_offset;
- unsigned int dppclk_delay_subtotal;
unsigned int dispclk_delay_subtotal;
unsigned int vstartup_start;
@@ -1118,7 +1116,6 @@ static void dml_rq_dlg_get_dlg_params(
hratio_c = scl->hscl_ratio_c;
vratio_l = scl->vscl_ratio;
vratio_c = scl->vscl_ratio_c;
- scl_enable = scl->scl_enable;
swath_width_ub_l = rq_dlg_param->rq_l.swath_width_ub;
dpte_groups_per_row_ub_l = rq_dlg_param->rq_l.dpte_groups_per_row_ub;
@@ -1130,17 +1127,8 @@ static void dml_rq_dlg_get_dlg_params(
vupdate_offset = dst->vupdate_offset;
vupdate_width = dst->vupdate_width;
vready_offset = dst->vready_offset;
-
- dppclk_delay_subtotal = mode_lib->ip.dppclk_delay_subtotal;
dispclk_delay_subtotal = mode_lib->ip.dispclk_delay_subtotal;
- if (scl_enable)
- dppclk_delay_subtotal += mode_lib->ip.dppclk_delay_scl;
- else
- dppclk_delay_subtotal += mode_lib->ip.dppclk_delay_scl_lb_only;
-
- dppclk_delay_subtotal += mode_lib->ip.dppclk_delay_cnvc_formatter + src->num_cursors * mode_lib->ip.dppclk_delay_cnvc_cursor;
-
if (dout->dsc_enable) {
double dsc_delay = get_dsc_delay(mode_lib, e2e_pipe_param, num_pipes, pipe_idx); // FROM VBA
diff --git a/drivers/gpu/drm/amd/display/dc/dml/dcn32/dcn32_fpu.c b/drivers/gpu/drm/amd/display/dc/dml/dcn32/dcn32_fpu.c
index 659323ebd79d..47beb4ea779d 100644
--- a/drivers/gpu/drm/amd/display/dc/dml/dcn32/dcn32_fpu.c
+++ b/drivers/gpu/drm/amd/display/dc/dml/dcn32/dcn32_fpu.c
@@ -24,13 +24,14 @@
*
*/
#include "dcn32_fpu.h"
-#include "dc_link_dp.h"
#include "dcn32/dcn32_resource.h"
#include "dcn20/dcn20_resource.h"
#include "display_mode_vba_util_32.h"
+#include "dml/dcn32/display_mode_vba_32.h"
// We need this includes for WATERMARKS_* defines
#include "clk_mgr/dcn32/dcn32_smu13_driver_if.h"
#include "dcn30/dcn30_resource.h"
+#include "link.h"
#define DC_LOGGER_INIT(logger)
@@ -108,7 +109,7 @@ struct _vcs_dpi_soc_bounding_box_st dcn3_2_soc = {
{
.state = 0,
.dcfclk_mhz = 1564.0,
- .fabricclk_mhz = 400.0,
+ .fabricclk_mhz = 2500.0,
.dispclk_mhz = 2150.0,
.dppclk_mhz = 2150.0,
.phyclk_mhz = 810.0,
@@ -116,7 +117,7 @@ struct _vcs_dpi_soc_bounding_box_st dcn3_2_soc = {
.phyclk_d32_mhz = 625.0,
.socclk_mhz = 1200.0,
.dscclk_mhz = 716.667,
- .dram_speed_mts = 16000.0,
+ .dram_speed_mts = 18000.0,
.dtbclk_mhz = 1564.0,
},
},
@@ -130,7 +131,7 @@ struct _vcs_dpi_soc_bounding_box_st dcn3_2_soc = {
.urgent_latency_pixel_data_only_us = 4.0,
.urgent_latency_pixel_mixed_with_vm_data_us = 4.0,
.urgent_latency_vm_data_only_us = 4.0,
- .fclk_change_latency_us = 20,
+ .fclk_change_latency_us = 25,
.usr_retraining_latency_us = 2,
.smn_latency_us = 2,
.mall_allocated_for_dcn_mbytes = 64,
@@ -147,7 +148,7 @@ struct _vcs_dpi_soc_bounding_box_st dcn3_2_soc = {
.max_avg_fabric_bw_use_normal_percent = 60.0,
.max_avg_dram_bw_use_normal_strobe_percent = 50.0,
.max_avg_dram_bw_use_normal_percent = 15.0,
- .num_chans = 8,
+ .num_chans = 24,
.dram_channel_width_bytes = 2,
.fabric_datapath_to_dcn_data_return_bytes = 64,
.return_bus_width_bytes = 64,
@@ -157,7 +158,7 @@ struct _vcs_dpi_soc_bounding_box_st dcn3_2_soc = {
.dispclk_dppclk_vco_speed_mhz = 4300.0,
.do_urgent_latency_adjustment = true,
.urgent_latency_adjustment_fabric_clock_component_us = 1.0,
- .urgent_latency_adjustment_fabric_clock_reference_mhz = 1000,
+ .urgent_latency_adjustment_fabric_clock_reference_mhz = 3000,
};
void dcn32_build_wm_range_table_fpu(struct clk_mgr_internal *clk_mgr)
@@ -211,7 +212,7 @@ void dcn32_build_wm_range_table_fpu(struct clk_mgr_internal *clk_mgr)
/* 'DalDummyClockChangeLatencyNs' registry key option set to 0x7FFFFFFF can be used to disable Set C for dummy p-state */
if (clk_mgr->base.ctx->dc->bb_overrides.dummy_clock_change_latency_ns != 0x7FFFFFFF) {
clk_mgr->base.bw_params->wm_table.nv_entries[WM_C].valid = true;
- clk_mgr->base.bw_params->wm_table.nv_entries[WM_C].dml_input.pstate_latency_us = 38;
+ clk_mgr->base.bw_params->wm_table.nv_entries[WM_C].dml_input.pstate_latency_us = 50;
clk_mgr->base.bw_params->wm_table.nv_entries[WM_C].dml_input.fclk_change_latency_us = fclk_change_latency_us;
clk_mgr->base.bw_params->wm_table.nv_entries[WM_C].dml_input.sr_exit_time_us = sr_exit_time_us;
clk_mgr->base.bw_params->wm_table.nv_entries[WM_C].dml_input.sr_enter_plus_exit_time_us = sr_enter_plus_exit_time_us;
@@ -221,7 +222,7 @@ void dcn32_build_wm_range_table_fpu(struct clk_mgr_internal *clk_mgr)
clk_mgr->base.bw_params->wm_table.nv_entries[WM_C].pmfw_breakdown.min_uclk = min_uclk_mhz;
clk_mgr->base.bw_params->wm_table.nv_entries[WM_C].pmfw_breakdown.max_uclk = 0xFFFF;
clk_mgr->base.bw_params->dummy_pstate_table[0].dram_speed_mts = clk_mgr->base.bw_params->clk_table.entries[0].memclk_mhz * 16;
- clk_mgr->base.bw_params->dummy_pstate_table[0].dummy_pstate_latency_us = 38;
+ clk_mgr->base.bw_params->dummy_pstate_table[0].dummy_pstate_latency_us = 50;
clk_mgr->base.bw_params->dummy_pstate_table[1].dram_speed_mts = clk_mgr->base.bw_params->clk_table.entries[1].memclk_mhz * 16;
clk_mgr->base.bw_params->dummy_pstate_table[1].dummy_pstate_latency_us = 9;
clk_mgr->base.bw_params->dummy_pstate_table[2].dram_speed_mts = clk_mgr->base.bw_params->clk_table.entries[2].memclk_mhz * 16;
@@ -256,16 +257,24 @@ int dcn32_find_dummy_latency_index_for_fw_based_mclk_switch(struct dc *dc,
int vlevel)
{
const int max_latency_table_entries = 4;
- const struct vba_vars_st *vba = &context->bw_ctx.dml.vba;
+ struct vba_vars_st *vba = &context->bw_ctx.dml.vba;
int dummy_latency_index = 0;
+ enum clock_change_support temp_clock_change_support = vba->DRAMClockChangeSupport[vlevel][context->bw_ctx.dml.vba.maxMpcComb];
dc_assert_fp_enabled();
while (dummy_latency_index < max_latency_table_entries) {
+ if (temp_clock_change_support != dm_dram_clock_change_unsupported)
+ vba->DRAMClockChangeSupport[vlevel][context->bw_ctx.dml.vba.maxMpcComb] = temp_clock_change_support;
context->bw_ctx.dml.soc.dram_clock_change_latency_us =
dc->clk_mgr->bw_params->dummy_pstate_table[dummy_latency_index].dummy_pstate_latency_us;
dcn32_internal_validate_bw(dc, context, pipes, &pipe_cnt, &vlevel, false);
+ /* for subvp + DRR case, if subvp pipes are still present we support pstate */
+ if (vba->DRAMClockChangeSupport[vlevel][vba->maxMpcComb] == dm_dram_clock_change_unsupported &&
+ dcn32_subvp_in_use(dc, context))
+ vba->DRAMClockChangeSupport[vlevel][context->bw_ctx.dml.vba.maxMpcComb] = temp_clock_change_support;
+
if (vlevel < context->bw_ctx.dml.vba.soc.num_states &&
vba->DRAMClockChangeSupport[vlevel][vba->maxMpcComb] != dm_dram_clock_change_unsupported)
break;
@@ -531,9 +540,12 @@ void dcn32_set_phantom_stream_timing(struct dc *dc,
unsigned int i, pipe_idx;
struct pipe_ctx *pipe;
uint32_t phantom_vactive, phantom_bp, pstate_width_fw_delay_lines;
+ unsigned int num_dpp;
unsigned int vlevel = context->bw_ctx.dml.vba.VoltageLevel;
unsigned int dcfclk = context->bw_ctx.dml.vba.DCFCLKState[vlevel][context->bw_ctx.dml.vba.maxMpcComb];
unsigned int socclk = context->bw_ctx.dml.vba.SOCCLKPerState[vlevel];
+ struct vba_vars_st *vba = &context->bw_ctx.dml.vba;
+ struct dc_stream_state *main_stream = ref_pipe->stream;
dc_assert_fp_enabled();
@@ -569,13 +581,26 @@ void dcn32_set_phantom_stream_timing(struct dc *dc,
phantom_vactive = get_subviewport_lines_needed_in_mall(&context->bw_ctx.dml, pipes, pipe_cnt, pipe_idx) +
pstate_width_fw_delay_lines + dc->caps.subvp_swath_height_margin_lines;
+ // W/A for DCC corruption with certain high resolution timings.
+ // Determing if pipesplit is used. If so, add meta_row_height to the phantom vactive.
+ num_dpp = vba->NoOfDPP[vba->VoltageLevel][vba->maxMpcComb][vba->pipe_plane[pipe_idx]];
+ phantom_vactive += num_dpp > 1 ? vba->meta_row_height[vba->pipe_plane[pipe_idx]] : 0;
+
+ /* dc->debug.subvp_extra_lines 0 by default*/
+ phantom_vactive += dc->debug.subvp_extra_lines;
+
// For backporch of phantom pipe, use vstartup of the main pipe
phantom_bp = get_vstartup(&context->bw_ctx.dml, pipes, pipe_cnt, pipe_idx);
phantom_stream->dst.y = 0;
phantom_stream->dst.height = phantom_vactive;
+ /* When scaling, DML provides the end to end required number of lines for MALL.
+ * dst.height is always correct for this case, but src.height is not which causes a
+ * delta between main and phantom pipe scaling outputs. Need to adjust src.height on
+ * phantom for this case.
+ */
phantom_stream->src.y = 0;
- phantom_stream->src.height = phantom_vactive;
+ phantom_stream->src.height = (double)phantom_vactive * (double)main_stream->src.height / (double)main_stream->dst.height;
phantom_stream->timing.v_addressable = phantom_vactive;
phantom_stream->timing.v_front_porch = 1;
@@ -667,9 +692,11 @@ static bool dcn32_assign_subvp_pipe(struct dc *dc,
* to combine this with SubVP can cause issues with the scheduling).
* - Not TMZ surface
*/
- if (pipe->plane_state && !pipe->top_pipe &&
+ if (pipe->plane_state && !pipe->top_pipe && !dcn32_is_center_timing(pipe) && !dcn32_is_psr_capable(pipe) &&
pipe->stream->mall_stream_config.type == SUBVP_NONE && refresh_rate < 120 && !pipe->plane_state->address.tmz_surface &&
- vba->ActiveDRAMClockChangeLatencyMarginPerState[vba->VoltageLevel][vba->maxMpcComb][vba->pipe_plane[pipe_idx]] <= 0) {
+ (vba->ActiveDRAMClockChangeLatencyMarginPerState[vba->VoltageLevel][vba->maxMpcComb][vba->pipe_plane[pipe_idx]] <= 0 ||
+ (vba->ActiveDRAMClockChangeLatencyMarginPerState[vba->VoltageLevel][vba->maxMpcComb][vba->pipe_plane[pipe_idx]] > 0 &&
+ dcn32_allow_subvp_with_active_margin(pipe)))) {
while (pipe) {
num_pipes++;
pipe = pipe->bottom_pipe;
@@ -853,6 +880,10 @@ static bool subvp_drr_schedulable(struct dc *dc, struct dc_state *context, struc
int16_t stretched_drr_us = 0;
int16_t drr_stretched_vblank_us = 0;
int16_t max_vblank_mallregion = 0;
+ const struct dc_config *config = &dc->config;
+
+ if (config->disable_subvp_drr)
+ return false;
// Find SubVP pipe
for (i = 0; i < dc->res_pool->pipe_count; i++) {
@@ -953,10 +984,12 @@ static bool subvp_vblank_schedulable(struct dc *dc, struct dc_state *context)
if (!subvp_pipe && pipe->stream->mall_stream_config.type == SUBVP_MAIN)
subvp_pipe = pipe;
}
- // Use ignore_msa_timing_param flag to identify as DRR
- if (found && context->res_ctx.pipe_ctx[vblank_index].stream->ignore_msa_timing_param) {
- // SUBVP + DRR case
- schedulable = subvp_drr_schedulable(dc, context, &context->res_ctx.pipe_ctx[vblank_index]);
+ // Use ignore_msa_timing_param and VRR active, or Freesync flag to identify as DRR On
+ if (found && context->res_ctx.pipe_ctx[vblank_index].stream->ignore_msa_timing_param &&
+ (context->res_ctx.pipe_ctx[vblank_index].stream->allow_freesync ||
+ context->res_ctx.pipe_ctx[vblank_index].stream->vrr_active_variable)) {
+ // SUBVP + DRR case -- only allowed if run through DRR validation path
+ schedulable = false;
} else if (found) {
main_timing = &subvp_pipe->stream->timing;
phantom_timing = &subvp_pipe->stream->mall_stream_config.paired_stream->timing;
@@ -1060,12 +1093,12 @@ static void dcn32_full_validate_bw_helper(struct dc *dc,
{
struct vba_vars_st *vba = &context->bw_ctx.dml.vba;
unsigned int dc_pipe_idx = 0;
+ int i = 0;
bool found_supported_config = false;
struct pipe_ctx *pipe = NULL;
uint32_t non_subvp_pipes = 0;
bool drr_pipe_found = false;
uint32_t drr_pipe_index = 0;
- uint32_t i = 0;
dc_assert_fp_enabled();
@@ -1128,7 +1161,7 @@ static void dcn32_full_validate_bw_helper(struct dc *dc,
context->bw_ctx.dml.soc.allow_for_pstate_or_stutter_in_vblank_final ==
dm_prefetch_support_uclk_fclk_and_stutter) {
context->bw_ctx.dml.soc.allow_for_pstate_or_stutter_in_vblank_final =
- dm_prefetch_support_stutter;
+ dm_prefetch_support_fclk_and_stutter;
/* There are params (such as FabricClock) that need to be recalculated
* after validation fails (otherwise it will be 0). Calculation for
* phantom vactive requires call into DML, so we must ensure all the
@@ -1145,15 +1178,25 @@ static void dcn32_full_validate_bw_helper(struct dc *dc,
pipes[0].clks_cfg.dppclk_mhz = get_dppclk_calculated(&context->bw_ctx.dml, pipes, *pipe_cnt, 0);
*vlevel = dml_get_voltage_level(&context->bw_ctx.dml, pipes, *pipe_cnt);
+ /* Check that vlevel requested supports pstate or not
+ * if not, select the lowest vlevel that supports it
+ */
+ for (i = *vlevel; i < context->bw_ctx.dml.soc.num_states; i++) {
+ if (vba->DRAMClockChangeSupport[i][vba->maxMpcComb] != dm_dram_clock_change_unsupported) {
+ *vlevel = i;
+ break;
+ }
+ }
+
if (*vlevel < context->bw_ctx.dml.soc.num_states &&
vba->DRAMClockChangeSupport[*vlevel][vba->maxMpcComb] != dm_dram_clock_change_unsupported
&& subvp_validate_static_schedulability(dc, context, *vlevel)) {
found_supported_config = true;
- } else if (*vlevel < context->bw_ctx.dml.soc.num_states &&
- vba->DRAMClockChangeSupport[*vlevel][vba->maxMpcComb] == dm_dram_clock_change_unsupported) {
- /* Case where 1 SubVP is added, and DML reports MCLK unsupported. This handles
- * the case for SubVP + DRR, where the DRR display does not support MCLK switch
- * at it's native refresh rate / timing.
+ } else if (*vlevel < context->bw_ctx.dml.soc.num_states) {
+ /* Case where 1 SubVP is added, and DML reports MCLK unsupported or DRR is allowed.
+ * This handles the case for SubVP + DRR, where the DRR display does not support MCLK
+ * switch at it's native refresh rate / timing, or DRR is allowed for the non-subvp
+ * display.
*/
for (i = 0; i < dc->res_pool->pipe_count; i++) {
pipe = &context->res_ctx.pipe_ctx[i];
@@ -1161,7 +1204,7 @@ static void dcn32_full_validate_bw_helper(struct dc *dc,
pipe->stream->mall_stream_config.type == SUBVP_NONE) {
non_subvp_pipes++;
// Use ignore_msa_timing_param flag to identify as DRR
- if (pipe->stream->ignore_msa_timing_param) {
+ if (pipe->stream->ignore_msa_timing_param && pipe->stream->allow_freesync) {
drr_pipe_found = true;
drr_pipe_index = i;
}
@@ -1170,6 +1213,15 @@ static void dcn32_full_validate_bw_helper(struct dc *dc,
// If there is only 1 remaining non SubVP pipe that is DRR, check static
// schedulability for SubVP + DRR.
if (non_subvp_pipes == 1 && drr_pipe_found) {
+ /* find lowest vlevel that supports the config */
+ for (i = *vlevel; i >= 0; i--) {
+ if (vba->ModeSupport[i][vba->maxMpcComb]) {
+ *vlevel = i;
+ } else {
+ break;
+ }
+ }
+
found_supported_config = subvp_drr_schedulable(dc, context,
&context->res_ctx.pipe_ctx[drr_pipe_index]);
}
@@ -1179,7 +1231,7 @@ static void dcn32_full_validate_bw_helper(struct dc *dc,
// If SubVP pipe config is unsupported (or cannot be used for UCLK switching)
// remove phantom pipes and repopulate dml pipes
if (!found_supported_config) {
- dc->res_pool->funcs->remove_phantom_pipes(dc, context);
+ dc->res_pool->funcs->remove_phantom_pipes(dc, context, false);
vba->DRAMClockChangeSupport[*vlevel][vba->maxMpcComb] = dm_dram_clock_change_unsupported;
*pipe_cnt = dc->res_pool->funcs->populate_dml_pipes(dc, context, pipes, false);
@@ -1191,9 +1243,7 @@ static void dcn32_full_validate_bw_helper(struct dc *dc,
}
} else {
// Most populate phantom DLG params before programming hardware / timing for phantom pipe
- DC_FP_START();
dcn32_helper_populate_phantom_dlg_params(dc, context, pipes, *pipe_cnt);
- DC_FP_END();
/* Call validate_apply_pipe_split flags after calling DML getters for
* phantom dlg params, or some of the VBA params indicating pipe split
@@ -1220,17 +1270,49 @@ static bool is_dtbclk_required(struct dc *dc, struct dc_state *context)
for (i = 0; i < dc->res_pool->pipe_count; i++) {
if (!context->res_ctx.pipe_ctx[i].stream)
continue;
- if (is_dp_128b_132b_signal(&context->res_ctx.pipe_ctx[i]))
+ if (dc->link_srv->dp_is_128b_132b_signal(&context->res_ctx.pipe_ctx[i]))
return true;
}
return false;
}
+static void dcn20_adjust_freesync_v_startup(const struct dc_crtc_timing *dc_crtc_timing, int *vstartup_start)
+{
+ struct dc_crtc_timing patched_crtc_timing;
+ uint32_t asic_blank_end = 0;
+ uint32_t asic_blank_start = 0;
+ uint32_t newVstartup = 0;
+
+ patched_crtc_timing = *dc_crtc_timing;
+
+ if (patched_crtc_timing.flags.INTERLACE == 1) {
+ if (patched_crtc_timing.v_front_porch < 2)
+ patched_crtc_timing.v_front_porch = 2;
+ } else {
+ if (patched_crtc_timing.v_front_porch < 1)
+ patched_crtc_timing.v_front_porch = 1;
+ }
+
+ /* blank_start = frame end - front porch */
+ asic_blank_start = patched_crtc_timing.v_total -
+ patched_crtc_timing.v_front_porch;
+
+ /* blank_end = blank_start - active */
+ asic_blank_end = asic_blank_start -
+ patched_crtc_timing.v_border_bottom -
+ patched_crtc_timing.v_addressable -
+ patched_crtc_timing.v_border_top;
+
+ newVstartup = asic_blank_end + (patched_crtc_timing.v_total - asic_blank_start);
+
+ *vstartup_start = ((newVstartup > *vstartup_start) ? newVstartup : *vstartup_start);
+}
+
static void dcn32_calculate_dlg_params(struct dc *dc, struct dc_state *context,
display_e2e_pipe_params_st *pipes,
int pipe_cnt, int vlevel)
{
- int i, pipe_idx;
+ int i, pipe_idx, active_hubp_count = 0;
bool usr_retraining_support = false;
bool unbounded_req_enabled = false;
@@ -1248,7 +1330,11 @@ static void dcn32_calculate_dlg_params(struct dc *dc, struct dc_state *context,
context->bw_ctx.bw.dcn.clk.p_state_change_support =
context->bw_ctx.dml.vba.DRAMClockChangeSupport[vlevel][context->bw_ctx.dml.vba.maxMpcComb]
!= dm_dram_clock_change_unsupported;
- context->bw_ctx.bw.dcn.clk.num_ways = dcn32_helper_calculate_num_ways_for_subvp(dc, context);
+
+ /* Pstate change might not be supported by hardware, but it might be
+ * possible with firmware driven vertical blank stretching.
+ */
+ context->bw_ctx.bw.dcn.clk.p_state_change_support |= context->bw_ctx.bw.dcn.clk.fw_based_mclk_switching;
context->bw_ctx.bw.dcn.clk.dppclk_khz = 0;
context->bw_ctx.bw.dcn.clk.dtbclk_en = is_dtbclk_required(dc, context);
@@ -1272,9 +1358,15 @@ static void dcn32_calculate_dlg_params(struct dc *dc, struct dc_state *context,
unbounded_req_enabled = false;
}
+ context->bw_ctx.bw.dcn.mall_ss_size_bytes = 0;
+ context->bw_ctx.bw.dcn.mall_ss_psr_active_size_bytes = 0;
+ context->bw_ctx.bw.dcn.mall_subvp_size_bytes = 0;
+
for (i = 0, pipe_idx = 0; i < dc->res_pool->pipe_count; i++) {
if (!context->res_ctx.pipe_ctx[i].stream)
continue;
+ if (context->res_ctx.pipe_ctx[i].plane_state)
+ active_hubp_count++;
pipes[pipe_idx].pipe.dest.vstartup_start = get_vstartup(&context->bw_ctx.dml, pipes, pipe_cnt,
pipe_idx);
pipes[pipe_idx].pipe.dest.vupdate_offset = get_vupdate_offset(&context->bw_ctx.dml, pipes, pipe_cnt,
@@ -1296,10 +1388,51 @@ static void dcn32_calculate_dlg_params(struct dc *dc, struct dc_state *context,
if (context->bw_ctx.bw.dcn.clk.dppclk_khz < pipes[pipe_idx].clks_cfg.dppclk_mhz * 1000)
context->bw_ctx.bw.dcn.clk.dppclk_khz = pipes[pipe_idx].clks_cfg.dppclk_mhz * 1000;
- context->res_ctx.pipe_ctx[i].plane_res.bw.dppclk_khz = pipes[pipe_idx].clks_cfg.dppclk_mhz * 1000;
+ if (context->res_ctx.pipe_ctx[i].plane_state)
+ context->res_ctx.pipe_ctx[i].plane_res.bw.dppclk_khz = pipes[pipe_idx].clks_cfg.dppclk_mhz * 1000;
+ else
+ context->res_ctx.pipe_ctx[i].plane_res.bw.dppclk_khz = 0;
context->res_ctx.pipe_ctx[i].pipe_dlg_param = pipes[pipe_idx].pipe.dest;
+
+ context->res_ctx.pipe_ctx[i].surface_size_in_mall_bytes = get_surface_size_in_mall(&context->bw_ctx.dml, pipes, pipe_cnt, pipe_idx);
+
+ /* MALL Allocation Sizes */
+ /* count from active, top pipes per plane only */
+ if (context->res_ctx.pipe_ctx[i].stream && context->res_ctx.pipe_ctx[i].plane_state &&
+ (context->res_ctx.pipe_ctx[i].top_pipe == NULL ||
+ context->res_ctx.pipe_ctx[i].plane_state != context->res_ctx.pipe_ctx[i].top_pipe->plane_state) &&
+ context->res_ctx.pipe_ctx[i].prev_odm_pipe == NULL) {
+ /* SS: all active surfaces stored in MALL */
+ if (context->res_ctx.pipe_ctx[i].stream->mall_stream_config.type != SUBVP_PHANTOM) {
+ context->bw_ctx.bw.dcn.mall_ss_size_bytes += context->res_ctx.pipe_ctx[i].surface_size_in_mall_bytes;
+
+ if (context->res_ctx.pipe_ctx[i].stream->link->psr_settings.psr_version == DC_PSR_VERSION_UNSUPPORTED) {
+ /* SS PSR On: all active surfaces part of streams not supporting PSR stored in MALL */
+ context->bw_ctx.bw.dcn.mall_ss_psr_active_size_bytes += context->res_ctx.pipe_ctx[i].surface_size_in_mall_bytes;
+ }
+ } else {
+ /* SUBVP: phantom surfaces only stored in MALL */
+ context->bw_ctx.bw.dcn.mall_subvp_size_bytes += context->res_ctx.pipe_ctx[i].surface_size_in_mall_bytes;
+ }
+ }
+
+ if (context->res_ctx.pipe_ctx[i].stream->adaptive_sync_infopacket.valid)
+ dcn20_adjust_freesync_v_startup(
+ &context->res_ctx.pipe_ctx[i].stream->timing,
+ &context->res_ctx.pipe_ctx[i].pipe_dlg_param.vstartup_start);
+
pipe_idx++;
}
+ /* If DCN isn't making memory requests we can allow pstate change and lower clocks */
+ if (!active_hubp_count) {
+ context->bw_ctx.bw.dcn.clk.socclk_khz = 0;
+ context->bw_ctx.bw.dcn.clk.dppclk_khz = 0;
+ context->bw_ctx.bw.dcn.clk.dcfclk_khz = 0;
+ context->bw_ctx.bw.dcn.clk.dcfclk_deep_sleep_khz = 0;
+ context->bw_ctx.bw.dcn.clk.dramclk_khz = 0;
+ context->bw_ctx.bw.dcn.clk.fclk_khz = 0;
+ context->bw_ctx.bw.dcn.clk.p_state_change_support = true;
+ }
/*save a original dppclock copy*/
context->bw_ctx.bw.dcn.clk.bw_dppclk_khz = context->bw_ctx.bw.dcn.clk.dppclk_khz;
context->bw_ctx.bw.dcn.clk.bw_dispclk_khz = context->bw_ctx.bw.dcn.clk.dispclk_khz;
@@ -1308,6 +1441,8 @@ static void dcn32_calculate_dlg_params(struct dc *dc, struct dc_state *context,
context->bw_ctx.bw.dcn.clk.max_supported_dispclk_khz = context->bw_ctx.dml.soc.clock_limits[vlevel].dispclk_mhz
* 1000;
+ context->bw_ctx.bw.dcn.clk.num_ways = dcn32_helper_calculate_num_ways_for_subvp(dc, context);
+
context->bw_ctx.bw.dcn.compbuf_size_kb = context->bw_ctx.dml.ip.config_return_buffer_size_in_kbytes;
for (i = 0; i < dc->res_pool->pipe_count; i++) {
@@ -1481,7 +1616,7 @@ bool dcn32_internal_validate_bw(struct dc *dc,
return false;
// For each full update, remove all existing phantom pipes first
- dc->res_pool->funcs->remove_phantom_pipes(dc, context);
+ dc->res_pool->funcs->remove_phantom_pipes(dc, context, fast_validate);
dc->res_pool->funcs->update_soc_for_wm_a(dc, context);
@@ -1493,12 +1628,10 @@ bool dcn32_internal_validate_bw(struct dc *dc,
}
dml_log_pipe_params(&context->bw_ctx.dml, pipes, pipe_cnt);
+ context->bw_ctx.dml.soc.max_vratio_pre = dcn32_determine_max_vratio_prefetch(dc, context);
- if (!fast_validate) {
- DC_FP_START();
+ if (!fast_validate)
dcn32_full_validate_bw_helper(dc, context, pipes, &vlevel, split, merge, &pipe_cnt);
- DC_FP_END();
- }
if (fast_validate ||
(dc->debug.dml_disallow_alternate_prefetch_modes &&
@@ -1515,16 +1648,12 @@ bool dcn32_internal_validate_bw(struct dc *dc,
* to support with Prefetch mode 1 (dm_prefetch_support_fclk_and_stutter == 2)
*/
context->bw_ctx.dml.soc.allow_for_pstate_or_stutter_in_vblank_final =
- dm_prefetch_support_fclk_and_stutter;
+ dm_prefetch_support_none;
+ context->bw_ctx.dml.validate_max_state = fast_validate;
vlevel = dml_get_voltage_level(&context->bw_ctx.dml, pipes, pipe_cnt);
- /* Last attempt with Prefetch mode 2 (dm_prefetch_support_stutter == 3) */
- if (vlevel == context->bw_ctx.dml.soc.num_states) {
- context->bw_ctx.dml.soc.allow_for_pstate_or_stutter_in_vblank_final =
- dm_prefetch_support_stutter;
- vlevel = dml_get_voltage_level(&context->bw_ctx.dml, pipes, pipe_cnt);
- }
+ context->bw_ctx.dml.validate_max_state = false;
if (vlevel < context->bw_ctx.dml.soc.num_states) {
memset(split, 0, sizeof(split));
@@ -1611,6 +1740,7 @@ bool dcn32_internal_validate_bw(struct dc *dc,
dcn20_release_dsc(&context->res_ctx, dc->res_pool, &pipe->stream_res.dsc);
memset(&pipe->plane_res, 0, sizeof(pipe->plane_res));
memset(&pipe->stream_res, 0, sizeof(pipe->stream_res));
+ memset(&pipe->link_res, 0, sizeof(pipe->link_res));
repopulate_pipes = true;
} else if (pipe->top_pipe && pipe->top_pipe->plane_state == pipe->plane_state) {
struct pipe_ctx *top_pipe = pipe->top_pipe;
@@ -1626,6 +1756,7 @@ bool dcn32_internal_validate_bw(struct dc *dc,
pipe->stream = NULL;
memset(&pipe->plane_res, 0, sizeof(pipe->plane_res));
memset(&pipe->stream_res, 0, sizeof(pipe->stream_res));
+ memset(&pipe->link_res, 0, sizeof(pipe->link_res));
repopulate_pipes = true;
} else
ASSERT(0); /* Should never try to merge master pipe */
@@ -1734,6 +1865,10 @@ bool dcn32_internal_validate_bw(struct dc *dc,
}
if (repopulate_pipes) {
+ int flag_max_mpc_comb = vba->maxMpcComb;
+ int flag_vlevel = vlevel;
+ int i;
+
pipe_cnt = dc->res_pool->funcs->populate_dml_pipes(dc, context, pipes, fast_validate);
/* repopulate_pipes = 1 means the pipes were either split or merged. In this case
@@ -1741,10 +1876,28 @@ bool dcn32_internal_validate_bw(struct dc *dc,
* ensure all the params are calculated correctly. We do not need to run the
* pipe split check again after this call (pipes are already split / merged).
* */
- if (!fast_validate) {
- context->bw_ctx.dml.soc.allow_for_pstate_or_stutter_in_vblank_final =
- dm_prefetch_support_uclk_fclk_and_stutter_if_possible;
- vlevel = dml_get_voltage_level(&context->bw_ctx.dml, pipes, pipe_cnt);
+ context->bw_ctx.dml.soc.allow_for_pstate_or_stutter_in_vblank_final =
+ dm_prefetch_support_uclk_fclk_and_stutter_if_possible;
+ vlevel = dml_get_voltage_level(&context->bw_ctx.dml, pipes, pipe_cnt);
+ if (vlevel == context->bw_ctx.dml.soc.num_states) {
+ /* failed after DET size changes */
+ goto validate_fail;
+ } else if (flag_max_mpc_comb == 0 &&
+ flag_max_mpc_comb != context->bw_ctx.dml.vba.maxMpcComb) {
+ /* check the context constructed with pipe split flags is still valid*/
+ bool flags_valid = false;
+ for (i = flag_vlevel; i < context->bw_ctx.dml.soc.num_states; i++) {
+ if (vba->ModeSupport[i][flag_max_mpc_comb]) {
+ vba->maxMpcComb = flag_max_mpc_comb;
+ vba->VoltageLevel = i;
+ vlevel = i;
+ flags_valid = true;
+ }
+ }
+
+ /* this should never happen */
+ if (!flags_valid)
+ goto validate_fail;
}
}
*vlevel_out = vlevel;
@@ -1775,22 +1928,57 @@ void dcn32_calculate_wm_and_dlg_fpu(struct dc *dc, struct dc_state *context,
unsigned int dummy_latency_index = 0;
int maxMpcComb = context->bw_ctx.dml.vba.maxMpcComb;
unsigned int min_dram_speed_mts = context->bw_ctx.dml.vba.DRAMSpeed;
+ bool subvp_in_use = dcn32_subvp_in_use(dc, context);
unsigned int min_dram_speed_mts_margin;
+ bool need_fclk_lat_as_dummy = false;
+ bool is_subvp_p_drr = false;
+ struct dc_stream_state *fpo_candidate_stream = NULL;
dc_assert_fp_enabled();
- // Override DRAMClockChangeSupport for SubVP + DRR case where the DRR cannot switch without stretching it's VBLANK
- if (!pstate_en && dcn32_subvp_in_use(dc, context)) {
- context->bw_ctx.dml.vba.DRAMClockChangeSupport[vlevel][context->bw_ctx.dml.vba.maxMpcComb] = dm_dram_clock_change_vblank_w_mall_sub_vp;
- pstate_en = true;
+ /* need to find dummy latency index for subvp */
+ if (subvp_in_use) {
+ /* Override DRAMClockChangeSupport for SubVP + DRR case where the DRR cannot switch without stretching it's VBLANK */
+ if (!pstate_en) {
+ context->bw_ctx.dml.vba.DRAMClockChangeSupport[vlevel][maxMpcComb] = dm_dram_clock_change_vblank_w_mall_sub_vp;
+ context->bw_ctx.dml.soc.allow_for_pstate_or_stutter_in_vblank_final = dm_prefetch_support_fclk_and_stutter;
+ pstate_en = true;
+ is_subvp_p_drr = true;
+ }
+ dummy_latency_index = dcn32_find_dummy_latency_index_for_fw_based_mclk_switch(dc,
+ context, pipes, pipe_cnt, vlevel);
+
+ /* For DCN32/321 need to validate with fclk pstate change latency equal to dummy so prefetch is
+ * scheduled correctly to account for dummy pstate.
+ */
+ if (context->bw_ctx.dml.soc.fclk_change_latency_us < dc->clk_mgr->bw_params->dummy_pstate_table[dummy_latency_index].dummy_pstate_latency_us) {
+ need_fclk_lat_as_dummy = true;
+ context->bw_ctx.dml.soc.fclk_change_latency_us =
+ dc->clk_mgr->bw_params->dummy_pstate_table[dummy_latency_index].dummy_pstate_latency_us;
+ }
+ context->bw_ctx.dml.soc.dram_clock_change_latency_us =
+ dc->clk_mgr->bw_params->wm_table.nv_entries[WM_A].dml_input.pstate_latency_us;
+ dcn32_internal_validate_bw(dc, context, pipes, &pipe_cnt, &vlevel, false);
+ maxMpcComb = context->bw_ctx.dml.vba.maxMpcComb;
+ if (is_subvp_p_drr) {
+ context->bw_ctx.dml.vba.DRAMClockChangeSupport[vlevel][maxMpcComb] = dm_dram_clock_change_vblank_w_mall_sub_vp;
+ }
}
context->bw_ctx.bw.dcn.clk.fw_based_mclk_switching = false;
+ for (i = 0; i < context->stream_count; i++) {
+ if (context->streams[i])
+ context->streams[i]->fpo_in_use = false;
+ }
- if (!pstate_en) {
+ if (!pstate_en || (!dc->debug.disable_fpo_optimizations &&
+ pstate_en && vlevel != 0)) {
/* only when the mclk switch can not be natural, is the fw based vblank stretch attempted */
- context->bw_ctx.bw.dcn.clk.fw_based_mclk_switching =
- dcn30_can_support_mclk_switch_using_fw_based_vblank_stretch(dc, context);
+ fpo_candidate_stream = dcn32_can_support_mclk_switch_using_fw_based_vblank_stretch(dc, context);
+ if (fpo_candidate_stream) {
+ fpo_candidate_stream->fpo_in_use = true;
+ context->bw_ctx.bw.dcn.clk.fw_based_mclk_switching = true;
+ }
if (context->bw_ctx.bw.dcn.clk.fw_based_mclk_switching) {
dummy_latency_index = dcn32_find_dummy_latency_index_for_fw_based_mclk_switch(dc,
@@ -1803,11 +1991,33 @@ void dcn32_calculate_wm_and_dlg_fpu(struct dc *dc, struct dc_state *context,
*/
context->bw_ctx.dml.soc.dram_clock_change_latency_us =
dc->clk_mgr->bw_params->wm_table.nv_entries[WM_A].dml_input.pstate_latency_us;
- dcn32_internal_validate_bw(dc, context, pipes, &pipe_cnt, &vlevel, false);
- maxMpcComb = context->bw_ctx.dml.vba.maxMpcComb;
- dcfclk_from_fw_based_mclk_switching = context->bw_ctx.dml.vba.DCFCLKState[vlevel][context->bw_ctx.dml.vba.maxMpcComb];
- pstate_en = context->bw_ctx.dml.vba.DRAMClockChangeSupport[vlevel][maxMpcComb] !=
- dm_dram_clock_change_unsupported;
+ /* For DCN32/321 need to validate with fclk pstate change latency equal to dummy so
+ * prefetch is scheduled correctly to account for dummy pstate.
+ */
+ if (context->bw_ctx.dml.soc.fclk_change_latency_us < dc->clk_mgr->bw_params->dummy_pstate_table[dummy_latency_index].dummy_pstate_latency_us) {
+ need_fclk_lat_as_dummy = true;
+ context->bw_ctx.dml.soc.fclk_change_latency_us =
+ dc->clk_mgr->bw_params->dummy_pstate_table[dummy_latency_index].dummy_pstate_latency_us;
+ }
+ dcn32_internal_validate_bw(dc, context, pipes, &pipe_cnt, &vlevel_temp, false);
+ if (vlevel_temp < vlevel) {
+ vlevel = vlevel_temp;
+ maxMpcComb = context->bw_ctx.dml.vba.maxMpcComb;
+ dcfclk_from_fw_based_mclk_switching = context->bw_ctx.dml.vba.DCFCLKState[vlevel][context->bw_ctx.dml.vba.maxMpcComb];
+ pstate_en = true;
+ } else {
+ /* Restore FCLK latency and re-run validation to go back to original validation
+ * output if we find that enabling FPO does not give us any benefit (i.e. lower
+ * voltage level)
+ */
+ context->bw_ctx.bw.dcn.clk.fw_based_mclk_switching = false;
+ for (i = 0; i < context->stream_count; i++) {
+ if (context->streams[i])
+ context->streams[i]->fpo_in_use = false;
+ }
+ context->bw_ctx.dml.soc.fclk_change_latency_us = dc->clk_mgr->bw_params->wm_table.nv_entries[WM_A].dml_input.fclk_change_latency_us;
+ dcn32_internal_validate_bw(dc, context, pipes, &pipe_cnt, &vlevel, false);
+ }
}
}
@@ -1904,13 +2114,13 @@ void dcn32_calculate_wm_and_dlg_fpu(struct dc *dc, struct dc_state *context,
if (context->bw_ctx.dml.vba.DRAMClockChangeSupport[vlevel][maxMpcComb] ==
dm_dram_clock_change_unsupported) {
- int min_dram_speed_mts_offset = dc->clk_mgr->bw_params->clk_table.num_entries - 1;
+ int min_dram_speed_mts_offset = dc->clk_mgr->bw_params->clk_table.num_entries_per_clk.num_memclk_levels - 1;
min_dram_speed_mts =
dc->clk_mgr->bw_params->clk_table.entries[min_dram_speed_mts_offset].memclk_mhz * 16;
}
- if (!context->bw_ctx.bw.dcn.clk.fw_based_mclk_switching) {
+ if (!context->bw_ctx.bw.dcn.clk.fw_based_mclk_switching && !subvp_in_use) {
/* find largest table entry that is lower than dram speed,
* but lower than DPM0 still uses DPM0
*/
@@ -1950,13 +2160,23 @@ void dcn32_calculate_wm_and_dlg_fpu(struct dc *dc, struct dc_state *context,
*/
context->bw_ctx.bw.dcn.watermarks.a = context->bw_ctx.bw.dcn.watermarks.c;
context->bw_ctx.bw.dcn.watermarks.a.cstate_pstate.pstate_change_ns = 0;
+ /* Calculate FCLK p-state change watermark based on FCLK pstate change latency in case
+ * UCLK p-state is not supported, to avoid underflow in case FCLK pstate is supported
+ */
+ context->bw_ctx.bw.dcn.watermarks.a.cstate_pstate.fclk_pstate_change_ns = get_fclk_watermark(&context->bw_ctx.dml, pipes, pipe_cnt) * 1000;
} else {
/* Set A:
* All clocks min.
* DCFCLK: Min, as reported by PM FW, when available
* UCLK: Min, as reported by PM FW, when available
*/
- dc->res_pool->funcs->update_soc_for_wm_a(dc, context);
+
+ /* For set A set the correct latency values (i.e. non-dummy values) unconditionally
+ */
+ context->bw_ctx.dml.soc.dram_clock_change_latency_us = dc->clk_mgr->bw_params->wm_table.nv_entries[WM_A].dml_input.pstate_latency_us;
+ context->bw_ctx.dml.soc.sr_enter_plus_exit_time_us = dc->clk_mgr->bw_params->wm_table.nv_entries[WM_A].dml_input.sr_enter_plus_exit_time_us;
+ context->bw_ctx.dml.soc.sr_exit_time_us = dc->clk_mgr->bw_params->wm_table.nv_entries[WM_A].dml_input.sr_exit_time_us;
+
context->bw_ctx.bw.dcn.watermarks.a.urgent_ns = get_wm_urgent(&context->bw_ctx.dml, pipes, pipe_cnt) * 1000;
context->bw_ctx.bw.dcn.watermarks.a.cstate_pstate.cstate_enter_plus_exit_ns = get_wm_stutter_enter_exit(&context->bw_ctx.dml, pipes, pipe_cnt) * 1000;
context->bw_ctx.bw.dcn.watermarks.a.cstate_pstate.cstate_exit_ns = get_wm_stutter_exit(&context->bw_ctx.dml, pipes, pipe_cnt) * 1000;
@@ -1990,6 +2210,11 @@ void dcn32_calculate_wm_and_dlg_fpu(struct dc *dc, struct dc_state *context,
context->perf_params.stutter_period_us = context->bw_ctx.dml.vba.StutterPeriod;
+ /* for proper prefetch calculations, if dummy lat > fclk lat, use fclk lat = dummy lat */
+ if (need_fclk_lat_as_dummy)
+ context->bw_ctx.dml.soc.fclk_change_latency_us =
+ dc->clk_mgr->bw_params->dummy_pstate_table[dummy_latency_index].dummy_pstate_latency_us;
+
dcn32_calculate_dlg_params(dc, context, pipes, pipe_cnt, vlevel);
if (!pstate_en)
@@ -1997,8 +2222,10 @@ void dcn32_calculate_wm_and_dlg_fpu(struct dc *dc, struct dc_state *context,
context->bw_ctx.dml.soc.dram_clock_change_latency_us =
dc->clk_mgr->bw_params->wm_table.nv_entries[WM_A].dml_input.pstate_latency_us;
- if (context->bw_ctx.bw.dcn.clk.fw_based_mclk_switching)
- dcn30_setup_mclk_switch_using_fw_based_vblank_stretch(dc, context);
+ /* revert fclk lat changes if required */
+ if (need_fclk_lat_as_dummy)
+ context->bw_ctx.dml.soc.fclk_change_latency_us =
+ dc->clk_mgr->bw_params->wm_table.nv_entries[WM_A].dml_input.fclk_change_latency_us;
}
static void dcn32_get_optimal_dcfclk_fclk_for_uclk(unsigned int uclk_mts,
@@ -2118,6 +2345,9 @@ static int build_synthetic_soc_states(struct clk_bw_params *bw_params,
num_dcfclk_dpms++;
}
+ if (num_dcfclk_dpms > 0 && bw_params->clk_table.entries[0].fclk_mhz > min_fclk_mhz)
+ min_fclk_mhz = bw_params->clk_table.entries[0].fclk_mhz;
+
if (!max_dcfclk_mhz || !max_dispclk_mhz || !max_dtbclk_mhz)
return -1;
@@ -2145,9 +2375,7 @@ static int build_synthetic_soc_states(struct clk_bw_params *bw_params,
entry.fabricclk_mhz = 0;
entry.dram_speed_mts = 0;
- DC_FP_START();
insert_entry_into_table_sorted(table, num_entries, &entry);
- DC_FP_END();
}
// Insert the max DCFCLK
@@ -2155,9 +2383,7 @@ static int build_synthetic_soc_states(struct clk_bw_params *bw_params,
entry.fabricclk_mhz = 0;
entry.dram_speed_mts = 0;
- DC_FP_START();
insert_entry_into_table_sorted(table, num_entries, &entry);
- DC_FP_END();
// Insert the UCLK DPMS
for (i = 0; i < num_uclk_dpms; i++) {
@@ -2165,9 +2391,7 @@ static int build_synthetic_soc_states(struct clk_bw_params *bw_params,
entry.fabricclk_mhz = 0;
entry.dram_speed_mts = bw_params->clk_table.entries[i].memclk_mhz * 16;
- DC_FP_START();
insert_entry_into_table_sorted(table, num_entries, &entry);
- DC_FP_END();
}
// If FCLK is coarse grained, insert individual DPMs.
@@ -2177,9 +2401,7 @@ static int build_synthetic_soc_states(struct clk_bw_params *bw_params,
entry.fabricclk_mhz = bw_params->clk_table.entries[i].fclk_mhz;
entry.dram_speed_mts = 0;
- DC_FP_START();
insert_entry_into_table_sorted(table, num_entries, &entry);
- DC_FP_END();
}
}
// If FCLK fine grained, only insert max
@@ -2188,9 +2410,7 @@ static int build_synthetic_soc_states(struct clk_bw_params *bw_params,
entry.fabricclk_mhz = max_fclk_mhz;
entry.dram_speed_mts = 0;
- DC_FP_START();
insert_entry_into_table_sorted(table, num_entries, &entry);
- DC_FP_END();
}
// At this point, the table contains all "points of interest" based on
@@ -2236,7 +2456,6 @@ static int build_synthetic_soc_states(struct clk_bw_params *bw_params,
for (i = *num_entries - 1; i >= 0 ; i--) {
if (table[i].fabricclk_mhz < min_fclk_mhz) {
table[i].fabricclk_mhz = min_fclk_mhz;
- break;
}
}
}
@@ -2245,7 +2464,6 @@ static int build_synthetic_soc_states(struct clk_bw_params *bw_params,
for (i = *num_entries - 1; i >= 0 ; i--) {
if (table[i].dcfclk_mhz < min_dcfclk_mhz) {
table[i].dcfclk_mhz = min_dcfclk_mhz;
- break;
}
}
@@ -2354,8 +2572,11 @@ void dcn32_update_bw_bounding_box_fpu(struct dc *dc, struct clk_bw_params *bw_pa
}
/* Override from VBIOS for num_chan */
- if (dc->ctx->dc_bios->vram_info.num_chans)
+ if (dc->ctx->dc_bios->vram_info.num_chans) {
dcn3_2_soc.num_chans = dc->ctx->dc_bios->vram_info.num_chans;
+ dcn3_2_soc.mall_allocated_for_dcn_mbytes = (double)(dcn32_calc_num_avail_chans_for_mall(dc,
+ dc->ctx->dc_bios->vram_info.num_chans) * dc->caps.mall_size_per_mem_channel);
+ }
if (dc->ctx->dc_bios->vram_info.dram_channel_width_bytes)
dcn3_2_soc.dram_channel_width_bytes = dc->ctx->dc_bios->vram_info.dram_channel_width_bytes;
@@ -2525,3 +2746,139 @@ void dcn32_update_bw_bounding_box_fpu(struct dc *dc, struct clk_bw_params *bw_pa
}
}
+void dcn32_zero_pipe_dcc_fraction(display_e2e_pipe_params_st *pipes,
+ int pipe_cnt)
+{
+ dc_assert_fp_enabled();
+
+ pipes[pipe_cnt].pipe.src.dcc_fraction_of_zs_req_luma = 0;
+ pipes[pipe_cnt].pipe.src.dcc_fraction_of_zs_req_chroma = 0;
+}
+
+bool dcn32_allow_subvp_with_active_margin(struct pipe_ctx *pipe)
+{
+ bool allow = false;
+ uint32_t refresh_rate = 0;
+
+ /* Allow subvp on displays that have active margin for 2560x1440@60hz displays
+ * only for now. There must be no scaling as well.
+ *
+ * For now we only enable on 2560x1440@60hz displays to enable 4K60 + 1440p60 configs
+ * for p-state switching.
+ */
+ if (pipe->stream && pipe->plane_state) {
+ refresh_rate = (pipe->stream->timing.pix_clk_100hz * 100 +
+ pipe->stream->timing.v_total * pipe->stream->timing.h_total - 1)
+ / (double)(pipe->stream->timing.v_total * pipe->stream->timing.h_total);
+ if (pipe->stream->timing.v_addressable == 1440 &&
+ pipe->stream->timing.h_addressable == 2560 &&
+ refresh_rate >= 55 && refresh_rate <= 65 &&
+ pipe->plane_state->src_rect.height == 1440 &&
+ pipe->plane_state->src_rect.width == 2560 &&
+ pipe->plane_state->dst_rect.height == 1440 &&
+ pipe->plane_state->dst_rect.width == 2560)
+ allow = true;
+ }
+ return allow;
+}
+
+/**
+ * *******************************************************************************************
+ * dcn32_determine_max_vratio_prefetch: Determine max Vratio for prefetch by driver policy
+ *
+ * @param [in]: dc: Current DC state
+ * @param [in]: context: New DC state to be programmed
+ *
+ * @return: Max vratio for prefetch
+ *
+ * *******************************************************************************************
+ */
+double dcn32_determine_max_vratio_prefetch(struct dc *dc, struct dc_state *context)
+{
+ double max_vratio_pre = __DML_MAX_BW_RATIO_PRE__; // Default value is 4
+ int i;
+
+ /* For single display MPO configs, allow the max vratio to be 8
+ * if any plane is YUV420 format
+ */
+ if (context->stream_count == 1 && context->stream_status[0].plane_count > 1) {
+ for (i = 0; i < context->stream_status[0].plane_count; i++) {
+ if (context->stream_status[0].plane_states[i]->format == SURFACE_PIXEL_FORMAT_VIDEO_420_YCbCr ||
+ context->stream_status[0].plane_states[i]->format == SURFACE_PIXEL_FORMAT_VIDEO_420_YCrCb) {
+ max_vratio_pre = __DML_MAX_VRATIO_PRE__;
+ }
+ }
+ }
+ return max_vratio_pre;
+}
+
+/**
+ * dcn32_assign_fpo_vactive_candidate - Assign the FPO stream candidate for FPO + VActive case
+ *
+ * This function chooses the FPO candidate stream for FPO + VActive cases (2 stream config).
+ * For FPO + VAtive cases, the assumption is that one display has ActiveMargin > 0, and the
+ * other display has ActiveMargin <= 0. This function will choose the pipe/stream that has
+ * ActiveMargin <= 0 to be the FPO stream candidate if found.
+ *
+ *
+ * @param [in]: dc - current dc state
+ * @param [in]: context - new dc state
+ * @param [out]: fpo_candidate_stream - pointer to FPO stream candidate if one is found
+ *
+ * Return: void
+ */
+void dcn32_assign_fpo_vactive_candidate(struct dc *dc, const struct dc_state *context, struct dc_stream_state **fpo_candidate_stream)
+{
+ unsigned int i, pipe_idx;
+ const struct vba_vars_st *vba = &context->bw_ctx.dml.vba;
+
+ for (i = 0, pipe_idx = 0; i < dc->res_pool->pipe_count; i++) {
+ const struct pipe_ctx *pipe = &context->res_ctx.pipe_ctx[i];
+
+ if (!pipe->stream)
+ continue;
+
+ if (vba->ActiveDRAMClockChangeLatencyMarginPerState[vba->VoltageLevel][vba->maxMpcComb][vba->pipe_plane[pipe_idx]] <= 0) {
+ *fpo_candidate_stream = pipe->stream;
+ break;
+ }
+ pipe_idx++;
+ }
+}
+
+/**
+ * dcn32_find_vactive_pipe - Determines if the config has a pipe that can switch in VACTIVE
+ *
+ * @param [in]: dc - current dc state
+ * @param [in]: context - new dc state
+ * @param [in]: vactive_margin_req_us - The vactive marign required for a vactive pipe to be
+ * considered "found"
+ *
+ * Return: True if VACTIVE display is found, false otherwise
+ */
+bool dcn32_find_vactive_pipe(struct dc *dc, const struct dc_state *context, uint32_t vactive_margin_req_us)
+{
+ unsigned int i, pipe_idx;
+ const struct vba_vars_st *vba = &context->bw_ctx.dml.vba;
+ bool vactive_found = false;
+
+ for (i = 0, pipe_idx = 0; i < dc->res_pool->pipe_count; i++) {
+ const struct pipe_ctx *pipe = &context->res_ctx.pipe_ctx[i];
+
+ if (!pipe->stream)
+ continue;
+
+ if (vba->ActiveDRAMClockChangeLatencyMarginPerState[vba->VoltageLevel][vba->maxMpcComb][vba->pipe_plane[pipe_idx]] >= vactive_margin_req_us) {
+ vactive_found = true;
+ break;
+ }
+ pipe_idx++;
+ }
+ return vactive_found;
+}
+
+void dcn32_set_clock_limits(const struct _vcs_dpi_soc_bounding_box_st *soc_bb)
+{
+ dc_assert_fp_enabled();
+ dcn3_2_soc.clock_limits[0].dcfclk_mhz = 1200.0;
+}
diff --git a/drivers/gpu/drm/amd/display/dc/dml/dcn32/dcn32_fpu.h b/drivers/gpu/drm/amd/display/dc/dml/dcn32/dcn32_fpu.h
index 3a3dc2ce4c73..dcf512cd3072 100644
--- a/drivers/gpu/drm/amd/display/dc/dml/dcn32/dcn32_fpu.h
+++ b/drivers/gpu/drm/amd/display/dc/dml/dcn32/dcn32_fpu.h
@@ -73,4 +73,13 @@ int dcn32_find_dummy_latency_index_for_fw_based_mclk_switch(struct dc *dc,
void dcn32_patch_dpm_table(struct clk_bw_params *bw_params);
+void dcn32_zero_pipe_dcc_fraction(display_e2e_pipe_params_st *pipes,
+ int pipe_cnt);
+
+void dcn32_assign_fpo_vactive_candidate(struct dc *dc, const struct dc_state *context, struct dc_stream_state **fpo_candidate_stream);
+
+bool dcn32_find_vactive_pipe(struct dc *dc, const struct dc_state *context, uint32_t vactive_margin_req);
+
+void dcn32_set_clock_limits(const struct _vcs_dpi_soc_bounding_box_st *soc_bb);
+
#endif
diff --git a/drivers/gpu/drm/amd/display/dc/dml/dcn32/display_mode_vba_32.c b/drivers/gpu/drm/amd/display/dc/dml/dcn32/display_mode_vba_32.c
index 244fd15d24b4..d75248b6cae9 100644
--- a/drivers/gpu/drm/amd/display/dc/dml/dcn32/display_mode_vba_32.c
+++ b/drivers/gpu/drm/amd/display/dc/dml/dcn32/display_mode_vba_32.c
@@ -24,7 +24,6 @@
*/
#include "dc.h"
-#include "dc_link.h"
#include "../display_mode_lib.h"
#include "display_mode_vba_32.h"
#include "../dml_inline_defs.h"
@@ -387,6 +386,7 @@ static void DISPCLKDPPCLKDCFCLKDeepSleepPrefetchParametersWatermarksAndPerforman
mode_lib->vba.NumberOfActiveSurfaces,
mode_lib->vba.MALLAllocatedForDCNFinal,
mode_lib->vba.UseMALLForStaticScreen,
+ mode_lib->vba.UsesMALLForPStateChange,
mode_lib->vba.DCCEnable,
mode_lib->vba.ViewportStationary,
mode_lib->vba.ViewportXStartY,
@@ -411,6 +411,8 @@ static void DISPCLKDPPCLKDCFCLKDeepSleepPrefetchParametersWatermarksAndPerforman
v->BlockWidthC,
v->BlockHeightY,
v->BlockHeightC,
+ mode_lib->vba.DCCMetaPitchY,
+ mode_lib->vba.DCCMetaPitchC,
/* Output */
v->SurfaceSizeInMALL,
@@ -670,6 +672,26 @@ static void DISPCLKDPPCLKDCFCLKDeepSleepPrefetchParametersWatermarksAndPerforman
v->cursor_bw[k] = mode_lib->vba.NumberOfCursors[k] * mode_lib->vba.CursorWidth[k][0] * mode_lib->vba.CursorBPP[k][0] / 8 / (mode_lib->vba.HTotal[k] / mode_lib->vba.PixelClock[k]) * mode_lib->vba.VRatio[k];
}
+ v->NotEnoughDETSwathFillLatencyHiding = dml32_CalculateDETSwathFillLatencyHiding(
+ mode_lib->vba.NumberOfActiveSurfaces,
+ mode_lib->vba.ReturnBW,
+ v->UrgentLatency,
+ mode_lib->vba.SwathHeightY,
+ mode_lib->vba.SwathHeightC,
+ v->swath_width_luma_ub,
+ v->swath_width_chroma_ub,
+ v->BytePerPixelDETY,
+ v->BytePerPixelDETC,
+ mode_lib->vba.DETBufferSizeY,
+ mode_lib->vba.DETBufferSizeC,
+ mode_lib->vba.DPPPerPlane,
+ mode_lib->vba.HTotal,
+ mode_lib->vba.PixelClock,
+ mode_lib->vba.VRatio,
+ mode_lib->vba.VRatioChroma,
+ mode_lib->vba.UsesMALLForPStateChange,
+ mode_lib->vba.UseUnboundedRequesting);
+
for (k = 0; k < mode_lib->vba.NumberOfActiveSurfaces; ++k) {
v->MaxVStartupLines[k] = ((mode_lib->vba.Interlace[k] &&
!mode_lib->vba.ProgressiveToInterlaceUnitInOPP) ?
@@ -718,6 +740,8 @@ static void DISPCLKDPPCLKDCFCLKDeepSleepPrefetchParametersWatermarksAndPerforman
do {
MaxTotalRDBandwidth = 0;
+ DestinationLineTimesForPrefetchLessThan2 = false;
+ VRatioPrefetchMoreThanMax = false;
#ifdef __DML_VBA_DEBUG__
dml_print("DML::%s: Start loop: VStartup = %d\n", __func__, mode_lib->vba.VStartupLines);
#endif
@@ -786,7 +810,8 @@ static void DISPCLKDPPCLKDCFCLKDeepSleepPrefetchParametersWatermarksAndPerforman
v->SwathHeightY[k],
v->SwathHeightC[k],
TWait,
- v->DRAMSpeedPerState[mode_lib->vba.VoltageLevel] <= MEM_STROBE_FREQ_MHZ ?
+ (v->DRAMSpeedPerState[mode_lib->vba.VoltageLevel] <= MEM_STROBE_FREQ_MHZ ||
+ v->DCFCLKPerState[mode_lib->vba.VoltageLevel] <= MIN_DCFCLK_FREQ_MHZ) ?
mode_lib->vba.ip.min_prefetch_in_strobe_us : 0,
/* Output */
&v->DSTXAfterScaler[k],
@@ -872,8 +897,8 @@ static void DISPCLKDPPCLKDCFCLKDeepSleepPrefetchParametersWatermarksAndPerforman
if (v->DestinationLinesForPrefetch[k] < 2)
DestinationLineTimesForPrefetchLessThan2 = true;
- if (v->VRatioPrefetchY[k] > __DML_MAX_VRATIO_PRE__
- || v->VRatioPrefetchC[k] > __DML_MAX_VRATIO_PRE__)
+ if (v->VRatioPrefetchY[k] > v->MaxVRatioPre
+ || v->VRatioPrefetchC[k] > v->MaxVRatioPre)
VRatioPrefetchMoreThanMax = true;
//bool DestinationLinesToRequestVMInVBlankEqualOrMoreThan32 = false;
@@ -918,6 +943,9 @@ static void DISPCLKDPPCLKDCFCLKDeepSleepPrefetchParametersWatermarksAndPerforman
v->UrgBurstFactorLumaPre,
v->UrgBurstFactorChromaPre,
v->UrgBurstFactorCursorPre,
+ v->PrefetchBandwidth,
+ v->VRatio,
+ v->MaxVRatioPre,
/* output */
&MaxTotalRDBandwidth,
@@ -948,6 +976,9 @@ static void DISPCLKDPPCLKDCFCLKDeepSleepPrefetchParametersWatermarksAndPerforman
v->dummy_vars.DISPCLKDPPCLKDCFCLKDeepSleepPrefetchParametersWatermarksAndPerformanceCalculation.dummy_unit_vector,
v->dummy_vars.DISPCLKDPPCLKDCFCLKDeepSleepPrefetchParametersWatermarksAndPerformanceCalculation.dummy_unit_vector,
v->dummy_vars.DISPCLKDPPCLKDCFCLKDeepSleepPrefetchParametersWatermarksAndPerformanceCalculation.dummy_unit_vector,
+ v->PrefetchBandwidth,
+ v->VRatio,
+ v->MaxVRatioPre,
/* output */
&v->dummy_vars.DISPCLKDPPCLKDCFCLKDeepSleepPrefetchParametersWatermarksAndPerformanceCalculation.dummy_single[0],
@@ -1615,9 +1646,14 @@ static void DISPCLKDPPCLKDCFCLKDeepSleepPrefetchParametersWatermarksAndPerforman
static void mode_support_configuration(struct vba_vars_st *v,
struct display_mode_lib *mode_lib)
{
- int i, j;
+ int i, j, start_state;
- for (i = v->soc.num_states - 1; i >= 0; i--) {
+ if (mode_lib->validate_max_state)
+ start_state = v->soc.num_states - 1;
+ else
+ start_state = 0;
+
+ for (i = v->soc.num_states - 1; i >= start_state; i--) {
for (j = 0; j < 2; j++) {
if (mode_lib->vba.ScaleRatioAndTapsSupport == true
&& mode_lib->vba.SourceFormatPixelAndScanSupport == true
@@ -1663,6 +1699,8 @@ static void mode_support_configuration(struct vba_vars_st *v,
&& mode_lib->vba.DCCMetaBufferSizeNotExceeded[i][j] == true
&& mode_lib->vba.NonsupportedDSCInputBPC == false
&& !mode_lib->vba.ExceededMALLSize
+ && (mode_lib->vba.NotEnoughDETSwathFillLatencyHidingPerState[i][j] == false
+ || i == v->soc.num_states - 1)
&& ((mode_lib->vba.HostVMEnable == false
&& !mode_lib->vba.ImmediateFlipRequiredFinal)
|| mode_lib->vba.ImmediateFlipSupportedForState[i][j])
@@ -1684,7 +1722,7 @@ static void mode_support_configuration(struct vba_vars_st *v,
void dml32_ModeSupportAndSystemConfigurationFull(struct display_mode_lib *mode_lib)
{
struct vba_vars_st *v = &mode_lib->vba;
- int i, j;
+ int i, j, start_state;
unsigned int k, m;
unsigned int MaximumMPCCombine;
unsigned int NumberOfNonCombinedSurfaceOfMaximumBandwidth;
@@ -1697,6 +1735,10 @@ void dml32_ModeSupportAndSystemConfigurationFull(struct display_mode_lib *mode_l
#endif
/*MODE SUPPORT, VOLTAGE STATE AND SOC CONFIGURATION*/
+ if (mode_lib->validate_max_state)
+ start_state = v->soc.num_states - 1;
+ else
+ start_state = 0;
/*Scale Ratio, taps Support Check*/
@@ -1986,7 +2028,7 @@ void dml32_ModeSupportAndSystemConfigurationFull(struct display_mode_lib *mode_l
mode_lib->vba.MPCCombineMethodIncompatible = v->dummy_vars.dml32_ModeSupportAndSystemConfigurationFull.MPCCombineMethodAsNeededForPStateChangeAndVoltage
&& v->dummy_vars.dml32_ModeSupportAndSystemConfigurationFull.MPCCombineMethodAsPossible;
- for (i = 0; i < v->soc.num_states; i++) {
+ for (i = start_state; i < v->soc.num_states; i++) {
for (j = 0; j < 2; j++) {
mode_lib->vba.TotalNumberOfActiveDPP[i][j] = 0;
mode_lib->vba.TotalAvailablePipesSupport[i][j] = true;
@@ -2263,7 +2305,7 @@ void dml32_ModeSupportAndSystemConfigurationFull(struct display_mode_lib *mode_l
}
}
- for (i = 0; i < v->soc.num_states; ++i) {
+ for (i = start_state; i < v->soc.num_states; ++i) {
mode_lib->vba.ExceededMultistreamSlots[i] = false;
for (k = 0; k < mode_lib->vba.NumberOfActiveSurfaces; ++k) {
if (mode_lib->vba.OutputMultistreamEn[k] == true && mode_lib->vba.OutputMultistreamId[k] == k) {
@@ -2312,8 +2354,7 @@ void dml32_ModeSupportAndSystemConfigurationFull(struct display_mode_lib *mode_l
if (mode_lib->vba.DSCEnable[k] && mode_lib->vba.ForcedOutputLinkBPP[k] != 0)
mode_lib->vba.DSCOnlyIfNecessaryWithBPP = true;
- if ((mode_lib->vba.DSCEnable[k] || mode_lib->vba.DSCEnable[k])
- && mode_lib->vba.OutputFormat[k] == dm_n422
+ if (mode_lib->vba.DSCEnable[k] && mode_lib->vba.OutputFormat[k] == dm_n422
&& !mode_lib->vba.DSC422NativeSupport)
mode_lib->vba.DSC422NativeNotSupported = true;
@@ -2363,7 +2404,7 @@ void dml32_ModeSupportAndSystemConfigurationFull(struct display_mode_lib *mode_l
}
}
- for (i = 0; i < v->soc.num_states; ++i) {
+ for (i = start_state; i < v->soc.num_states; ++i) {
mode_lib->vba.DTBCLKRequiredMoreThanSupported[i] = false;
for (k = 0; k < mode_lib->vba.NumberOfActiveSurfaces; ++k) {
if (mode_lib->vba.BlendingAndTiming[k] == k
@@ -2380,7 +2421,7 @@ void dml32_ModeSupportAndSystemConfigurationFull(struct display_mode_lib *mode_l
}
}
- for (i = 0; i < v->soc.num_states; ++i) {
+ for (i = start_state; i < v->soc.num_states; ++i) {
mode_lib->vba.ODMCombine2To1SupportCheckOK[i] = true;
mode_lib->vba.ODMCombine4To1SupportCheckOK[i] = true;
for (k = 0; k < mode_lib->vba.NumberOfActiveSurfaces; ++k) {
@@ -2398,7 +2439,7 @@ void dml32_ModeSupportAndSystemConfigurationFull(struct display_mode_lib *mode_l
}
}
- for (i = 0; i < v->soc.num_states; i++) {
+ for (i = start_state; i < v->soc.num_states; i++) {
mode_lib->vba.DSCCLKRequiredMoreThanSupported[i] = false;
for (k = 0; k <= mode_lib->vba.NumberOfActiveSurfaces - 1; k++) {
if (mode_lib->vba.BlendingAndTiming[k] == k) {
@@ -2435,7 +2476,7 @@ void dml32_ModeSupportAndSystemConfigurationFull(struct display_mode_lib *mode_l
/* Check DSC Unit and Slices Support */
v->dummy_vars.dml32_ModeSupportAndSystemConfigurationFull.TotalDSCUnitsRequired = 0;
- for (i = 0; i < v->soc.num_states; ++i) {
+ for (i = start_state; i < v->soc.num_states; ++i) {
mode_lib->vba.NotEnoughDSCUnits[i] = false;
mode_lib->vba.NotEnoughDSCSlices[i] = false;
v->dummy_vars.dml32_ModeSupportAndSystemConfigurationFull.TotalDSCUnitsRequired = 0;
@@ -2470,7 +2511,7 @@ void dml32_ModeSupportAndSystemConfigurationFull(struct display_mode_lib *mode_l
}
/*DSC Delay per state*/
- for (i = 0; i < v->soc.num_states; ++i) {
+ for (i = start_state; i < v->soc.num_states; ++i) {
for (k = 0; k < mode_lib->vba.NumberOfActiveSurfaces; ++k) {
mode_lib->vba.DSCDelayPerState[i][k] = dml32_DSCDelayRequirement(
mode_lib->vba.RequiresDSC[i][k], mode_lib->vba.ODMCombineEnablePerState[i][k],
@@ -2497,7 +2538,7 @@ void dml32_ModeSupportAndSystemConfigurationFull(struct display_mode_lib *mode_l
//Calculate Swath, DET Configuration, DCFCLKDeepSleep
//
- for (i = 0; i < (int) v->soc.num_states; ++i) {
+ for (i = start_state; i < (int) v->soc.num_states; ++i) {
for (j = 0; j <= 1; ++j) {
for (k = 0; k < mode_lib->vba.NumberOfActiveSurfaces; ++k) {
mode_lib->vba.RequiredDPPCLKThisState[k] = mode_lib->vba.RequiredDPPCLK[i][j][k];
@@ -2603,6 +2644,7 @@ void dml32_ModeSupportAndSystemConfigurationFull(struct display_mode_lib *mode_l
mode_lib->vba.NumberOfActiveSurfaces,
mode_lib->vba.MALLAllocatedForDCNFinal,
mode_lib->vba.UseMALLForStaticScreen,
+ mode_lib->vba.UsesMALLForPStateChange,
mode_lib->vba.DCCEnable,
mode_lib->vba.ViewportStationary,
mode_lib->vba.ViewportXStartY,
@@ -2627,12 +2669,14 @@ void dml32_ModeSupportAndSystemConfigurationFull(struct display_mode_lib *mode_l
mode_lib->vba.MacroTileWidthC,
mode_lib->vba.MacroTileHeightY,
mode_lib->vba.MacroTileHeightC,
+ mode_lib->vba.DCCMetaPitchY,
+ mode_lib->vba.DCCMetaPitchC,
/* Output */
mode_lib->vba.SurfaceSizeInMALL,
&mode_lib->vba.ExceededMALLSize);
- for (i = 0; i < v->soc.num_states; i++) {
+ for (i = start_state; i < v->soc.num_states; i++) {
for (j = 0; j < 2; j++) {
for (k = 0; k <= mode_lib->vba.NumberOfActiveSurfaces - 1; k++) {
mode_lib->vba.swath_width_luma_ub_this_state[k] =
@@ -2859,7 +2903,7 @@ void dml32_ModeSupportAndSystemConfigurationFull(struct display_mode_lib *mode_l
}
//Calculate Return BW
- for (i = 0; i < (int) v->soc.num_states; ++i) {
+ for (i = start_state; i < (int) v->soc.num_states; ++i) {
for (j = 0; j <= 1; ++j) {
for (k = 0; k <= mode_lib->vba.NumberOfActiveSurfaces - 1; k++) {
if (mode_lib->vba.BlendingAndTiming[k] == k) {
@@ -2938,7 +2982,7 @@ void dml32_ModeSupportAndSystemConfigurationFull(struct display_mode_lib *mode_l
&mode_lib->vba.MinPrefetchMode,
&mode_lib->vba.MaxPrefetchMode);
- for (i = 0; i < (int) v->soc.num_states; ++i) {
+ for (i = start_state; i < (int) v->soc.num_states; ++i) {
for (j = 0; j <= 1; ++j)
mode_lib->vba.DCFCLKState[i][j] = mode_lib->vba.DCFCLKPerState[i];
}
@@ -3060,7 +3104,7 @@ void dml32_ModeSupportAndSystemConfigurationFull(struct display_mode_lib *mode_l
mode_lib->vba.DCFCLKState);
} // UseMinimumRequiredDCFCLK == true
- for (i = 0; i < (int) v->soc.num_states; ++i) {
+ for (i = start_state; i < (int) v->soc.num_states; ++i) {
for (j = 0; j <= 1; ++j) {
mode_lib->vba.ReturnBWPerState[i][j] = dml32_get_return_bw_mbps(&mode_lib->vba.soc, i,
mode_lib->vba.HostVMEnable, mode_lib->vba.DCFCLKState[i][j],
@@ -3069,7 +3113,7 @@ void dml32_ModeSupportAndSystemConfigurationFull(struct display_mode_lib *mode_l
}
//Re-ordering Buffer Support Check
- for (i = 0; i < (int) v->soc.num_states; ++i) {
+ for (i = start_state; i < (int) v->soc.num_states; ++i) {
for (j = 0; j <= 1; ++j) {
if ((mode_lib->vba.ROBBufferSizeInKByte - mode_lib->vba.PixelChunkSizeInKByte) * 1024
/ mode_lib->vba.ReturnBWPerState[i][j]
@@ -3091,7 +3135,7 @@ void dml32_ModeSupportAndSystemConfigurationFull(struct display_mode_lib *mode_l
+ mode_lib->vba.ReadBandwidthChroma[k];
}
- for (i = 0; i < (int) v->soc.num_states; ++i) {
+ for (i = start_state; i < (int) v->soc.num_states; ++i) {
for (j = 0; j <= 1; ++j) {
mode_lib->vba.MaxTotalVerticalActiveAvailableBandwidth[i][j] =
dml_min3(mode_lib->vba.ReturnBusWidth * mode_lib->vba.DCFCLKState[i][j]
@@ -3115,7 +3159,7 @@ void dml32_ModeSupportAndSystemConfigurationFull(struct display_mode_lib *mode_l
/* Prefetch Check */
- for (i = 0; i < (int) v->soc.num_states; ++i) {
+ for (i = start_state; i < (int) v->soc.num_states; ++i) {
for (j = 0; j <= 1; ++j) {
mode_lib->vba.TimeCalc = 24 / mode_lib->vba.ProjectedDCFCLKDeepSleep[i][j];
@@ -3156,6 +3200,26 @@ void dml32_ModeSupportAndSystemConfigurationFull(struct display_mode_lib *mode_l
mode_lib->vba.UrgentBurstFactorChroma,
mode_lib->vba.UrgentBurstFactorCursor);
+ mode_lib->vba.NotEnoughDETSwathFillLatencyHidingPerState[i][j] = dml32_CalculateDETSwathFillLatencyHiding(
+ mode_lib->vba.NumberOfActiveSurfaces,
+ mode_lib->vba.ReturnBWPerState[i][j],
+ mode_lib->vba.UrgLatency[i],
+ mode_lib->vba.SwathHeightYThisState,
+ mode_lib->vba.SwathHeightCThisState,
+ mode_lib->vba.swath_width_luma_ub_this_state,
+ mode_lib->vba.swath_width_chroma_ub_this_state,
+ mode_lib->vba.BytePerPixelInDETY,
+ mode_lib->vba.BytePerPixelInDETC,
+ mode_lib->vba.DETBufferSizeYThisState,
+ mode_lib->vba.DETBufferSizeCThisState,
+ mode_lib->vba.NoOfDPPThisState,
+ mode_lib->vba.HTotal,
+ mode_lib->vba.PixelClock,
+ mode_lib->vba.VRatio,
+ mode_lib->vba.VRatioChroma,
+ mode_lib->vba.UsesMALLForPStateChange,
+ mode_lib->vba.UseUnboundedRequesting);
+
v->dummy_vars.dml32_ModeSupportAndSystemConfigurationFull.VMDataOnlyReturnBWPerState = dml32_get_return_bw_mbps_vm_only(&mode_lib->vba.soc, i,
mode_lib->vba.DCFCLKState[i][j], mode_lib->vba.FabricClockPerState[i],
mode_lib->vba.DRAMSpeedPerState[i]);
@@ -3247,7 +3311,7 @@ void dml32_ModeSupportAndSystemConfigurationFull(struct display_mode_lib *mode_l
v->swath_width_chroma_ub_this_state[k],
v->SwathHeightYThisState[k],
v->SwathHeightCThisState[k], v->TWait,
- v->DRAMSpeedPerState[i] <= MEM_STROBE_FREQ_MHZ ?
+ (v->DRAMSpeedPerState[i] <= MEM_STROBE_FREQ_MHZ || v->DCFCLKState[i][j] <= MIN_DCFCLK_FREQ_MHZ) ?
mode_lib->vba.ip.min_prefetch_in_strobe_us : 0,
/* Output */
@@ -3291,7 +3355,7 @@ void dml32_ModeSupportAndSystemConfigurationFull(struct display_mode_lib *mode_l
/* Output */
&mode_lib->vba.UrgentBurstFactorCursorPre[k],
&mode_lib->vba.UrgentBurstFactorLumaPre[k],
- &mode_lib->vba.UrgentBurstFactorChroma[k],
+ &mode_lib->vba.UrgentBurstFactorChromaPre[k],
&mode_lib->vba.NotUrgentLatencyHidingPre[k]);
}
@@ -3316,6 +3380,9 @@ void dml32_ModeSupportAndSystemConfigurationFull(struct display_mode_lib *mode_l
mode_lib->vba.UrgentBurstFactorLumaPre,
mode_lib->vba.UrgentBurstFactorChromaPre,
mode_lib->vba.UrgentBurstFactorCursorPre,
+ v->PrefetchBW,
+ v->VRatio,
+ v->MaxVRatioPre,
/* output */
&v->dummy_vars.dml32_ModeSupportAndSystemConfigurationFull.dummy_single[0], // Single *PrefetchBandwidth
@@ -3340,8 +3407,8 @@ void dml32_ModeSupportAndSystemConfigurationFull(struct display_mode_lib *mode_l
mode_lib->vba.VRatioInPrefetchSupported[i][j] = true;
for (k = 0; k <= mode_lib->vba.NumberOfActiveSurfaces - 1; k++) {
- if (mode_lib->vba.VRatioPreY[i][j][k] > __DML_MAX_VRATIO_PRE__
- || mode_lib->vba.VRatioPreC[i][j][k] > __DML_MAX_VRATIO_PRE__
+ if (mode_lib->vba.VRatioPreY[i][j][k] > mode_lib->vba.MaxVRatioPre
+ || mode_lib->vba.VRatioPreC[i][j][k] > mode_lib->vba.MaxVRatioPre
|| mode_lib->vba.NoTimeForPrefetch[i][j][k] == true) {
mode_lib->vba.VRatioInPrefetchSupported[i][j] = false;
}
@@ -3597,7 +3664,6 @@ void dml32_ModeSupportAndSystemConfigurationFull(struct display_mode_lib *mode_l
if (mode_lib->vba.SourcePixelFormat[k] != dm_444_64
&& mode_lib->vba.SourcePixelFormat[k] != dm_444_32
&& mode_lib->vba.SourcePixelFormat[k] != dm_444_16
- && mode_lib->vba.SourcePixelFormat[k] != dm_444_16
&& mode_lib->vba.SourcePixelFormat[k] != dm_444_8
&& mode_lib->vba.SourcePixelFormat[k] != dm_rgbe) {
if (mode_lib->vba.ViewportWidthChroma[k] > mode_lib->vba.SurfaceWidthC[k]
@@ -3614,7 +3680,7 @@ void dml32_ModeSupportAndSystemConfigurationFull(struct display_mode_lib *mode_l
MaximumMPCCombine = 0;
- for (i = v->soc.num_states; i >= 0; i--) {
+ for (i = v->soc.num_states; i >= start_state; i--) {
if (i == v->soc.num_states || mode_lib->vba.ModeSupport[i][0] == true ||
mode_lib->vba.ModeSupport[i][1] == true) {
mode_lib->vba.VoltageLevel = i;
diff --git a/drivers/gpu/drm/amd/display/dc/dml/dcn32/display_mode_vba_32.h b/drivers/gpu/drm/amd/display/dc/dml/dcn32/display_mode_vba_32.h
index f82e14cd9d8a..d98e36a9a09c 100644
--- a/drivers/gpu/drm/amd/display/dc/dml/dcn32/display_mode_vba_32.h
+++ b/drivers/gpu/drm/amd/display/dc/dml/dcn32/display_mode_vba_32.h
@@ -44,12 +44,16 @@
#define __DML_MIN_DCFCLK_FACTOR__ 1.15
// Prefetch schedule max vratio
-#define __DML_MAX_VRATIO_PRE__ 4.0
+#define __DML_MAX_VRATIO_PRE__ 7.9
+#define __DML_MAX_BW_RATIO_PRE__ 4.0
+
+#define __DML_VBA_MAX_DST_Y_PRE__ 63.75
#define BPP_INVALID 0
#define BPP_BLENDED_PIPE 0xffffffff
#define MEM_STROBE_FREQ_MHZ 1600
+#define MIN_DCFCLK_FREQ_MHZ 200
#define MEM_STROBE_MAX_DELIVERY_TIME_US 60.0
struct display_mode_lib;
diff --git a/drivers/gpu/drm/amd/display/dc/dml/dcn32/display_mode_vba_util_32.c b/drivers/gpu/drm/amd/display/dc/dml/dcn32/display_mode_vba_util_32.c
index 635fc54338fa..61cc4904ade4 100644
--- a/drivers/gpu/drm/amd/display/dc/dml/dcn32/display_mode_vba_util_32.c
+++ b/drivers/gpu/drm/amd/display/dc/dml/dcn32/display_mode_vba_util_32.c
@@ -1772,6 +1772,7 @@ void dml32_CalculateSurfaceSizeInMall(
unsigned int NumberOfActiveSurfaces,
unsigned int MALLAllocatedForDCN,
enum dm_use_mall_for_static_screen_mode UseMALLForStaticScreen[],
+ enum dm_use_mall_for_pstate_change_mode UsesMALLForPStateChange[],
bool DCCEnable[],
bool ViewportStationary[],
unsigned int ViewportXStartY[],
@@ -1796,13 +1797,17 @@ void dml32_CalculateSurfaceSizeInMall(
unsigned int ReadBlockWidthC[],
unsigned int ReadBlockHeightY[],
unsigned int ReadBlockHeightC[],
+ unsigned int DCCMetaPitchY[],
+ unsigned int DCCMetaPitchC[],
/* Output */
unsigned int SurfaceSizeInMALL[],
bool *ExceededMALLSize)
{
- unsigned int TotalSurfaceSizeInMALL = 0;
unsigned int k;
+ unsigned int TotalSurfaceSizeInMALLForSS = 0;
+ unsigned int TotalSurfaceSizeInMALLForSubVP = 0;
+ unsigned int MALLAllocatedForDCNInBytes = MALLAllocatedForDCN * 1024 * 1024;
for (k = 0; k < NumberOfActiveSurfaces; ++k) {
if (ViewportStationary[k]) {
@@ -1828,18 +1833,18 @@ void dml32_CalculateSurfaceSizeInMall(
}
if (DCCEnable[k] == true) {
SurfaceSizeInMALL[k] = SurfaceSizeInMALL[k] +
- dml_min(dml_ceil(SurfaceWidthY[k], 8 * Read256BytesBlockWidthY[k]),
+ (dml_min(dml_ceil(DCCMetaPitchY[k], 8 * Read256BytesBlockWidthY[k]),
dml_floor(ViewportXStartY[k] + ViewportWidthY[k] + 8 *
Read256BytesBlockWidthY[k] - 1, 8 * Read256BytesBlockWidthY[k])
- dml_floor(ViewportXStartY[k], 8 * Read256BytesBlockWidthY[k]))
* dml_min(dml_ceil(SurfaceHeightY[k], 8 *
Read256BytesBlockHeightY[k]), dml_floor(ViewportYStartY[k] +
ViewportHeightY[k] + 8 * Read256BytesBlockHeightY[k] - 1, 8 *
- Read256BytesBlockHeightY[k]) - dml_floor(ViewportYStartY[k], 8
- * Read256BytesBlockHeightY[k])) * BytesPerPixelY[k] / 256;
+ Read256BytesBlockHeightY[k]) - dml_floor(ViewportYStartY[k], 8 *
+ Read256BytesBlockHeightY[k])) * BytesPerPixelY[k] / 256) + (64 * 1024);
if (Read256BytesBlockWidthC[k] > 0) {
SurfaceSizeInMALL[k] = SurfaceSizeInMALL[k] +
- dml_min(dml_ceil(SurfaceWidthC[k], 8 *
+ dml_min(dml_ceil(DCCMetaPitchC[k], 8 *
Read256BytesBlockWidthC[k]),
dml_floor(ViewportXStartC[k] + ViewportWidthC[k] + 8
* Read256BytesBlockWidthC[k] - 1, 8 *
@@ -1872,16 +1877,16 @@ void dml32_CalculateSurfaceSizeInMall(
}
if (DCCEnable[k] == true) {
SurfaceSizeInMALL[k] = SurfaceSizeInMALL[k] +
- dml_ceil(dml_min(SurfaceWidthY[k], ViewportWidthY[k] + 8 *
+ (dml_ceil(dml_min(DCCMetaPitchY[k], ViewportWidthY[k] + 8 *
Read256BytesBlockWidthY[k] - 1), 8 *
Read256BytesBlockWidthY[k]) *
dml_ceil(dml_min(SurfaceHeightY[k], ViewportHeightY[k] + 8 *
Read256BytesBlockHeightY[k] - 1), 8 *
- Read256BytesBlockHeightY[k]) * BytesPerPixelY[k] / 256;
+ Read256BytesBlockHeightY[k]) * BytesPerPixelY[k] / 256) + (64 * 1024);
if (Read256BytesBlockWidthC[k] > 0) {
SurfaceSizeInMALL[k] = SurfaceSizeInMALL[k] +
- dml_ceil(dml_min(SurfaceWidthC[k], ViewportWidthC[k] + 8 *
+ dml_ceil(dml_min(DCCMetaPitchC[k], ViewportWidthC[k] + 8 *
Read256BytesBlockWidthC[k] - 1), 8 *
Read256BytesBlockWidthC[k]) *
dml_ceil(dml_min(SurfaceHeightC[k], ViewportHeightC[k] + 8 *
@@ -1894,10 +1899,14 @@ void dml32_CalculateSurfaceSizeInMall(
}
for (k = 0; k < NumberOfActiveSurfaces; ++k) {
- if (UseMALLForStaticScreen[k] == dm_use_mall_static_screen_enable)
- TotalSurfaceSizeInMALL = TotalSurfaceSizeInMALL + SurfaceSizeInMALL[k];
+ /* SS and Subvp counted separate as they are never used at the same time */
+ if (UsesMALLForPStateChange[k] == dm_use_mall_pstate_change_phantom_pipe)
+ TotalSurfaceSizeInMALLForSubVP = TotalSurfaceSizeInMALLForSubVP + SurfaceSizeInMALL[k];
+ else if (UseMALLForStaticScreen[k] == dm_use_mall_static_screen_enable)
+ TotalSurfaceSizeInMALLForSS = TotalSurfaceSizeInMALLForSS + SurfaceSizeInMALL[k];
}
- *ExceededMALLSize = (TotalSurfaceSizeInMALL > MALLAllocatedForDCN * 1024 * 1024);
+ *ExceededMALLSize = (TotalSurfaceSizeInMALLForSS > MALLAllocatedForDCNInBytes) ||
+ (TotalSurfaceSizeInMALLForSubVP > MALLAllocatedForDCNInBytes);
} // CalculateSurfaceSizeInMall
void dml32_CalculateVMRowAndSwath(
@@ -3471,11 +3480,10 @@ bool dml32_CalculatePrefetchSchedule(
double prefetch_sw_bytes;
double bytes_pp;
double dep_bytes;
- unsigned int max_vratio_pre = __DML_MAX_VRATIO_PRE__;
+ unsigned int max_vratio_pre = v->MaxVRatioPre;
double min_Lsw;
double Tsw_est1 = 0;
double Tsw_est3 = 0;
- double TPreMargin = 0;
if (v->GPUVMEnable == true && v->HostVMEnable == true)
HostVMDynamicLevelsTrips = v->HostVMMaxNonCachedPageTableLevels;
@@ -3669,6 +3677,7 @@ bool dml32_CalculatePrefetchSchedule(
dst_y_prefetch_equ = VStartup - (*TSetup + dml_max(TWait + TCalc, *Tdmdl)) / LineTime -
(*DSTYAfterScaler + (double) *DSTXAfterScaler / (double) myPipe->HTotal);
+ dst_y_prefetch_equ = dml_min(dst_y_prefetch_equ, __DML_VBA_MAX_DST_Y_PRE__);
#ifdef __DML_VBA_DEBUG__
dml_print("DML::%s: HTotal = %d\n", __func__, myPipe->HTotal);
dml_print("DML::%s: min_Lsw = %f\n", __func__, min_Lsw);
@@ -3701,8 +3710,6 @@ bool dml32_CalculatePrefetchSchedule(
dst_y_prefetch_equ = dml_floor(4.0 * (dst_y_prefetch_equ + 0.125), 1) / 4.0;
Tpre_rounded = dst_y_prefetch_equ * LineTime;
-
- TPreMargin = Tpre_rounded - TPreReq;
#ifdef __DML_VBA_DEBUG__
dml_print("DML::%s: dst_y_prefetch_equ: %f (after round)\n", __func__, dst_y_prefetch_equ);
dml_print("DML::%s: LineTime: %f\n", __func__, LineTime);
@@ -3730,7 +3737,8 @@ bool dml32_CalculatePrefetchSchedule(
*VRatioPrefetchY = 0;
*VRatioPrefetchC = 0;
*RequiredPrefetchPixDataBWLuma = 0;
- if (dst_y_prefetch_equ > 1 && TPreMargin > 0.0) {
+ if (dst_y_prefetch_equ > 1 &&
+ (Tpre_rounded >= TPreReq || dst_y_prefetch_equ == __DML_VBA_MAX_DST_Y_PRE__)) {
double PrefetchBandwidth1;
double PrefetchBandwidth2;
double PrefetchBandwidth3;
@@ -6135,29 +6143,46 @@ void dml32_CalculatePrefetchBandwithSupport(unsigned int NumberOfActiveSurfaces,
double UrgentBurstFactorLumaPre[],
double UrgentBurstFactorChromaPre[],
double UrgentBurstFactorCursorPre[],
+ double PrefetchBW[],
+ double VRatio[],
+ double MaxVRatioPre,
/* output */
- double *PrefetchBandwidth,
+ double *MaxPrefetchBandwidth,
double *FractionOfUrgentBandwidth,
bool *PrefetchBandwidthSupport)
{
unsigned int k;
+ double ActiveBandwidthPerSurface;
bool NotEnoughUrgentLatencyHiding = false;
+ double TotalActiveBandwidth = 0;
+ double TotalPrefetchBandwidth = 0;
+
for (k = 0; k < NumberOfActiveSurfaces; ++k) {
if (NotUrgentLatencyHiding[k]) {
NotEnoughUrgentLatencyHiding = true;
}
}
- *PrefetchBandwidth = 0;
+ *MaxPrefetchBandwidth = 0;
for (k = 0; k < NumberOfActiveSurfaces; ++k) {
- *PrefetchBandwidth = *PrefetchBandwidth + dml_max3(NumberOfDPP[k] * prefetch_vmrow_bw[k],
- ReadBandwidthLuma[k] * UrgentBurstFactorLuma[k] + ReadBandwidthChroma[k] * UrgentBurstFactorChroma[k] + cursor_bw[k] * UrgentBurstFactorCursor[k] + NumberOfDPP[k] * (meta_row_bandwidth[k] + dpte_row_bandwidth[k]),
+ ActiveBandwidthPerSurface = ReadBandwidthLuma[k] * UrgentBurstFactorLuma[k] + ReadBandwidthChroma[k] * UrgentBurstFactorChroma[k] + cursor_bw[k] * UrgentBurstFactorCursor[k] + NumberOfDPP[k] * (meta_row_bandwidth[k] + dpte_row_bandwidth[k]);
+
+ TotalActiveBandwidth += ActiveBandwidthPerSurface;
+
+ TotalPrefetchBandwidth = TotalPrefetchBandwidth + PrefetchBW[k] * VRatio[k];
+
+ *MaxPrefetchBandwidth = *MaxPrefetchBandwidth + dml_max3(NumberOfDPP[k] * prefetch_vmrow_bw[k],
+ ActiveBandwidthPerSurface,
NumberOfDPP[k] * (PrefetchBandwidthLuma[k] * UrgentBurstFactorLumaPre[k] + PrefetchBandwidthChroma[k] * UrgentBurstFactorChromaPre[k]) + cursor_bw_pre[k] * UrgentBurstFactorCursorPre[k]);
}
- *PrefetchBandwidthSupport = (*PrefetchBandwidth <= ReturnBW) && !NotEnoughUrgentLatencyHiding;
- *FractionOfUrgentBandwidth = *PrefetchBandwidth / ReturnBW;
+ if (MaxVRatioPre == __DML_MAX_VRATIO_PRE__)
+ *PrefetchBandwidthSupport = (*MaxPrefetchBandwidth <= ReturnBW) && (TotalPrefetchBandwidth <= TotalActiveBandwidth * __DML_MAX_BW_RATIO_PRE__) && !NotEnoughUrgentLatencyHiding;
+ else
+ *PrefetchBandwidthSupport = (*MaxPrefetchBandwidth <= ReturnBW) && !NotEnoughUrgentLatencyHiding;
+
+ *FractionOfUrgentBandwidth = *MaxPrefetchBandwidth / ReturnBW;
}
double dml32_CalculateBandwidthAvailableForImmediateFlip(unsigned int NumberOfActiveSurfaces,
@@ -6229,3 +6254,76 @@ void dml32_CalculateImmediateFlipBandwithSupport(unsigned int NumberOfActiveSurf
*ImmediateFlipBandwidthSupport = (*TotalBandwidth <= ReturnBW);
*FractionOfUrgentBandwidth = *TotalBandwidth / ReturnBW;
}
+
+bool dml32_CalculateDETSwathFillLatencyHiding(unsigned int NumberOfActiveSurfaces,
+ double ReturnBW,
+ double UrgentLatency,
+ unsigned int SwathHeightY[],
+ unsigned int SwathHeightC[],
+ unsigned int SwathWidthY[],
+ unsigned int SwathWidthC[],
+ double BytePerPixelInDETY[],
+ double BytePerPixelInDETC[],
+ unsigned int DETBufferSizeY[],
+ unsigned int DETBufferSizeC[],
+ unsigned int NumOfDPP[],
+ unsigned int HTotal[],
+ double PixelClock[],
+ double VRatioY[],
+ double VRatioC[],
+ enum dm_use_mall_for_pstate_change_mode UsesMALLForPStateChange[],
+ enum unbounded_requesting_policy UseUnboundedRequesting)
+{
+ int k;
+ double SwathSizeAllSurfaces = 0;
+ double SwathSizeAllSurfacesInFetchTimeUs;
+ double DETSwathLatencyHidingUs;
+ double DETSwathLatencyHidingYUs;
+ double DETSwathLatencyHidingCUs;
+ double SwathSizePerSurfaceY[DC__NUM_DPP__MAX];
+ double SwathSizePerSurfaceC[DC__NUM_DPP__MAX];
+ bool NotEnoughDETSwathFillLatencyHiding = false;
+
+ if (UseUnboundedRequesting == dm_unbounded_requesting)
+ return false;
+
+ /* calculate sum of single swath size for all pipes in bytes */
+ for (k = 0; k < NumberOfActiveSurfaces; k++) {
+ SwathSizePerSurfaceY[k] = SwathHeightY[k] * SwathWidthY[k] * BytePerPixelInDETY[k] * NumOfDPP[k];
+
+ if (SwathHeightC[k] != 0)
+ SwathSizePerSurfaceC[k] = SwathHeightC[k] * SwathWidthC[k] * BytePerPixelInDETC[k] * NumOfDPP[k];
+ else
+ SwathSizePerSurfaceC[k] = 0;
+
+ SwathSizeAllSurfaces += SwathSizePerSurfaceY[k] + SwathSizePerSurfaceC[k];
+ }
+
+ SwathSizeAllSurfacesInFetchTimeUs = SwathSizeAllSurfaces / ReturnBW + UrgentLatency;
+
+ /* ensure all DET - 1 swath can hide a fetch for all surfaces */
+ for (k = 0; k < NumberOfActiveSurfaces; k++) {
+ double LineTime = HTotal[k] / PixelClock[k];
+
+ /* only care if surface is not phantom */
+ if (UsesMALLForPStateChange[k] != dm_use_mall_pstate_change_phantom_pipe) {
+ DETSwathLatencyHidingYUs = (dml_floor(DETBufferSizeY[k] / BytePerPixelInDETY[k] / SwathWidthY[k], 1.0) - SwathHeightY[k]) / VRatioY[k] * LineTime;
+
+ if (SwathHeightC[k] != 0) {
+ DETSwathLatencyHidingCUs = (dml_floor(DETBufferSizeC[k] / BytePerPixelInDETC[k] / SwathWidthC[k], 1.0) - SwathHeightC[k]) / VRatioC[k] * LineTime;
+
+ DETSwathLatencyHidingUs = dml_min(DETSwathLatencyHidingYUs, DETSwathLatencyHidingCUs);
+ } else {
+ DETSwathLatencyHidingUs = DETSwathLatencyHidingYUs;
+ }
+
+ /* DET must be able to hide time to fetch 1 swath for each surface */
+ if (DETSwathLatencyHidingUs < SwathSizeAllSurfacesInFetchTimeUs) {
+ NotEnoughDETSwathFillLatencyHiding = true;
+ break;
+ }
+ }
+ }
+
+ return NotEnoughDETSwathFillLatencyHiding;
+}
diff --git a/drivers/gpu/drm/amd/display/dc/dml/dcn32/display_mode_vba_util_32.h b/drivers/gpu/drm/amd/display/dc/dml/dcn32/display_mode_vba_util_32.h
index 3989c2a28fae..592d174df6c6 100644
--- a/drivers/gpu/drm/amd/display/dc/dml/dcn32/display_mode_vba_util_32.h
+++ b/drivers/gpu/drm/amd/display/dc/dml/dcn32/display_mode_vba_util_32.h
@@ -334,6 +334,7 @@ void dml32_CalculateSurfaceSizeInMall(
unsigned int NumberOfActiveSurfaces,
unsigned int MALLAllocatedForDCN,
enum dm_use_mall_for_static_screen_mode UseMALLForStaticScreen[],
+ enum dm_use_mall_for_pstate_change_mode UsesMALLForPStateChange[],
bool DCCEnable[],
bool ViewportStationary[],
unsigned int ViewportXStartY[],
@@ -358,6 +359,8 @@ void dml32_CalculateSurfaceSizeInMall(
unsigned int ReadBlockWidthC[],
unsigned int ReadBlockHeightY[],
unsigned int ReadBlockHeightC[],
+ unsigned int DCCMetaPitchY[],
+ unsigned int DCCMetaPitchC[],
/* Output */
unsigned int SurfaceSizeInMALL[],
@@ -1093,9 +1096,12 @@ void dml32_CalculatePrefetchBandwithSupport(unsigned int NumberOfActiveSurfaces,
double UrgentBurstFactorLumaPre[],
double UrgentBurstFactorChromaPre[],
double UrgentBurstFactorCursorPre[],
+ double PrefetchBW[],
+ double VRatio[],
+ double MaxVRatioPre,
/* output */
- double *PrefetchBandwidth,
+ double *MaxPrefetchBandwidth,
double *FractionOfUrgentBandwidth,
bool *PrefetchBandwidthSupport);
@@ -1141,4 +1147,23 @@ void dml32_CalculateImmediateFlipBandwithSupport(unsigned int NumberOfActiveSurf
double *FractionOfUrgentBandwidth,
bool *ImmediateFlipBandwidthSupport);
+bool dml32_CalculateDETSwathFillLatencyHiding(unsigned int NumberOfActiveSurfaces,
+ double ReturnBW,
+ double UrgentLatency,
+ unsigned int SwathHeightY[],
+ unsigned int SwathHeightC[],
+ unsigned int SwathWidthY[],
+ unsigned int SwathWidthC[],
+ double BytePerPixelInDETY[],
+ double BytePerPixelInDETC[],
+ unsigned int DETBufferSizeY[],
+ unsigned int DETBufferSizeC[],
+ unsigned int NumOfDPP[],
+ unsigned int HTotal[],
+ double PixelClock[],
+ double VRatioY[],
+ double VRatioC[],
+ enum dm_use_mall_for_pstate_change_mode UsesMALLForPStateChange[],
+ enum unbounded_requesting_policy UseUnboundedRequesting);
+
#endif
diff --git a/drivers/gpu/drm/amd/display/dc/dml/dcn321/dcn321_fpu.c b/drivers/gpu/drm/amd/display/dc/dml/dcn321/dcn321_fpu.c
index 432b4ecd01a7..342a1bcb4927 100644
--- a/drivers/gpu/drm/amd/display/dc/dml/dcn321/dcn321_fpu.c
+++ b/drivers/gpu/drm/amd/display/dc/dml/dcn321/dcn321_fpu.c
@@ -106,16 +106,16 @@ struct _vcs_dpi_soc_bounding_box_st dcn3_21_soc = {
.clock_limits = {
{
.state = 0,
- .dcfclk_mhz = 1564.0,
- .fabricclk_mhz = 400.0,
- .dispclk_mhz = 2150.0,
- .dppclk_mhz = 2150.0,
+ .dcfclk_mhz = 1434.0,
+ .fabricclk_mhz = 2250.0,
+ .dispclk_mhz = 1720.0,
+ .dppclk_mhz = 1720.0,
.phyclk_mhz = 810.0,
.phyclk_d18_mhz = 667.0,
- .phyclk_d32_mhz = 625.0,
+ .phyclk_d32_mhz = 313.0,
.socclk_mhz = 1200.0,
- .dscclk_mhz = 716.667,
- .dram_speed_mts = 1600.0,
+ .dscclk_mhz = 573.333,
+ .dram_speed_mts = 16000.0,
.dtbclk_mhz = 1564.0,
},
},
@@ -125,18 +125,18 @@ struct _vcs_dpi_soc_bounding_box_st dcn3_21_soc = {
.sr_exit_z8_time_us = 285.0,
.sr_enter_plus_exit_z8_time_us = 320,
.writeback_latency_us = 12.0,
- .round_trip_ping_latency_dcfclk_cycles = 263,
- .urgent_latency_pixel_data_only_us = 9.35,
- .urgent_latency_pixel_mixed_with_vm_data_us = 9.35,
- .urgent_latency_vm_data_only_us = 9.35,
- .fclk_change_latency_us = 20,
- .usr_retraining_latency_us = 2,
- .smn_latency_us = 2,
- .mall_allocated_for_dcn_mbytes = 64,
+ .round_trip_ping_latency_dcfclk_cycles = 207,
+ .urgent_latency_pixel_data_only_us = 4,
+ .urgent_latency_pixel_mixed_with_vm_data_us = 4,
+ .urgent_latency_vm_data_only_us = 4,
+ .fclk_change_latency_us = 7,
+ .usr_retraining_latency_us = 0,
+ .smn_latency_us = 0,
+ .mall_allocated_for_dcn_mbytes = 32,
.urgent_out_of_order_return_per_channel_pixel_only_bytes = 4096,
.urgent_out_of_order_return_per_channel_pixel_and_vm_bytes = 4096,
.urgent_out_of_order_return_per_channel_vm_only_bytes = 4096,
- .pct_ideal_sdp_bw_after_urgent = 100.0,
+ .pct_ideal_sdp_bw_after_urgent = 90.0,
.pct_ideal_fabric_bw_after_urgent = 67.0,
.pct_ideal_dram_sdp_bw_after_urgent_pixel_only = 20.0,
.pct_ideal_dram_sdp_bw_after_urgent_pixel_and_vm = 60.0, // N/A, for now keep as is until DML implemented
@@ -156,7 +156,7 @@ struct _vcs_dpi_soc_bounding_box_st dcn3_21_soc = {
.dispclk_dppclk_vco_speed_mhz = 4300.0,
.do_urgent_latency_adjustment = true,
.urgent_latency_adjustment_fabric_clock_component_us = 1.0,
- .urgent_latency_adjustment_fabric_clock_reference_mhz = 1000,
+ .urgent_latency_adjustment_fabric_clock_reference_mhz = 3000,
};
static void get_optimal_ntuple(struct _vcs_dpi_voltage_scaling_st *entry)
@@ -294,6 +294,9 @@ static int build_synthetic_soc_states(struct clk_bw_params *bw_params,
num_dcfclk_dpms++;
}
+ if (num_dcfclk_dpms > 0 && bw_params->clk_table.entries[0].fclk_mhz > min_fclk_mhz)
+ min_fclk_mhz = bw_params->clk_table.entries[0].fclk_mhz;
+
if (!max_dcfclk_mhz || !max_dispclk_mhz || !max_dtbclk_mhz)
return -1;
@@ -402,7 +405,6 @@ static int build_synthetic_soc_states(struct clk_bw_params *bw_params,
for (i = *num_entries - 1; i >= 0 ; i--) {
if (table[i].fabricclk_mhz < min_fclk_mhz) {
table[i].fabricclk_mhz = min_fclk_mhz;
- break;
}
}
}
@@ -411,7 +413,6 @@ static int build_synthetic_soc_states(struct clk_bw_params *bw_params,
for (i = *num_entries - 1; i >= 0 ; i--) {
if (table[i].dcfclk_mhz < min_dcfclk_mhz) {
table[i].dcfclk_mhz = min_dcfclk_mhz;
- break;
}
}
@@ -534,8 +535,11 @@ void dcn321_update_bw_bounding_box_fpu(struct dc *dc, struct clk_bw_params *bw_p
}
/* Override from VBIOS for num_chan */
- if (dc->ctx->dc_bios->vram_info.num_chans)
+ if (dc->ctx->dc_bios->vram_info.num_chans) {
dcn3_21_soc.num_chans = dc->ctx->dc_bios->vram_info.num_chans;
+ dcn3_21_soc.mall_allocated_for_dcn_mbytes = (double)(dcn32_calc_num_avail_chans_for_mall(dc,
+ dc->ctx->dc_bios->vram_info.num_chans) * dc->caps.mall_size_per_mem_channel);
+ }
if (dc->ctx->dc_bios->vram_info.dram_channel_width_bytes)
dcn3_21_soc.dram_channel_width_bytes = dc->ctx->dc_bios->vram_info.dram_channel_width_bytes;
diff --git a/drivers/gpu/drm/amd/display/dc/dml/display_mode_enums.h b/drivers/gpu/drm/amd/display/dc/dml/display_mode_enums.h
index f394b3f3922a..0bffae95f3a2 100644
--- a/drivers/gpu/drm/amd/display/dc/dml/display_mode_enums.h
+++ b/drivers/gpu/drm/amd/display/dc/dml/display_mode_enums.h
@@ -105,14 +105,39 @@ enum source_macro_tile_size {
enum cursor_bpp {
dm_cur_2bit = 0, dm_cur_32bit = 1, dm_cur_64bit = 2
};
+
+/**
+ * @enum clock_change_support - It represents possible reasons to change the DRAM clock.
+ *
+ * DC may change the DRAM clock during its execution, and this enum tracks all
+ * the available methods. Note that every ASIC has their specific way to deal
+ * with these clock switch.
+ */
enum clock_change_support {
+ /**
+ * @dm_dram_clock_change_uninitialized: If you see this, we might have
+ * a code initialization issue
+ */
dm_dram_clock_change_uninitialized = 0,
+
+ /**
+ * @dm_dram_clock_change_vactive: Support DRAM switch in VActive
+ */
dm_dram_clock_change_vactive,
+
+ /**
+ * @dm_dram_clock_change_vblank: Support DRAM switch in VBlank
+ */
dm_dram_clock_change_vblank,
+
dm_dram_clock_change_vactive_w_mall_full_frame,
dm_dram_clock_change_vactive_w_mall_sub_vp,
dm_dram_clock_change_vblank_w_mall_full_frame,
dm_dram_clock_change_vblank_w_mall_sub_vp,
+
+ /**
+ * @dm_dram_clock_change_unsupported: Do not support DRAM switch
+ */
dm_dram_clock_change_unsupported
};
diff --git a/drivers/gpu/drm/amd/display/dc/dml/display_mode_lib.c b/drivers/gpu/drm/amd/display/dc/dml/display_mode_lib.c
index 4125d3d111d1..bdf3ac6cadd5 100644
--- a/drivers/gpu/drm/amd/display/dc/dml/display_mode_lib.c
+++ b/drivers/gpu/drm/amd/display/dc/dml/display_mode_lib.c
@@ -41,51 +41,51 @@
#include "dcn32/display_rq_dlg_calc_32.h"
#include "dml_logger.h"
-const struct dml_funcs dml20_funcs = {
+static const struct dml_funcs dml20_funcs = {
.validate = dml20_ModeSupportAndSystemConfigurationFull,
.recalculate = dml20_recalculate,
.rq_dlg_get_dlg_reg = dml20_rq_dlg_get_dlg_reg,
.rq_dlg_get_rq_reg = dml20_rq_dlg_get_rq_reg
};
-const struct dml_funcs dml20v2_funcs = {
+static const struct dml_funcs dml20v2_funcs = {
.validate = dml20v2_ModeSupportAndSystemConfigurationFull,
.recalculate = dml20v2_recalculate,
.rq_dlg_get_dlg_reg = dml20v2_rq_dlg_get_dlg_reg,
.rq_dlg_get_rq_reg = dml20v2_rq_dlg_get_rq_reg
};
-const struct dml_funcs dml21_funcs = {
- .validate = dml21_ModeSupportAndSystemConfigurationFull,
- .recalculate = dml21_recalculate,
- .rq_dlg_get_dlg_reg = dml21_rq_dlg_get_dlg_reg,
- .rq_dlg_get_rq_reg = dml21_rq_dlg_get_rq_reg
+static const struct dml_funcs dml21_funcs = {
+ .validate = dml21_ModeSupportAndSystemConfigurationFull,
+ .recalculate = dml21_recalculate,
+ .rq_dlg_get_dlg_reg = dml21_rq_dlg_get_dlg_reg,
+ .rq_dlg_get_rq_reg = dml21_rq_dlg_get_rq_reg
};
-const struct dml_funcs dml30_funcs = {
+static const struct dml_funcs dml30_funcs = {
.validate = dml30_ModeSupportAndSystemConfigurationFull,
.recalculate = dml30_recalculate,
.rq_dlg_get_dlg_reg = dml30_rq_dlg_get_dlg_reg,
.rq_dlg_get_rq_reg = dml30_rq_dlg_get_rq_reg
};
-const struct dml_funcs dml31_funcs = {
+static const struct dml_funcs dml31_funcs = {
.validate = dml31_ModeSupportAndSystemConfigurationFull,
.recalculate = dml31_recalculate,
.rq_dlg_get_dlg_reg = dml31_rq_dlg_get_dlg_reg,
.rq_dlg_get_rq_reg = dml31_rq_dlg_get_rq_reg
};
-const struct dml_funcs dml314_funcs = {
+static const struct dml_funcs dml314_funcs = {
.validate = dml314_ModeSupportAndSystemConfigurationFull,
.recalculate = dml314_recalculate,
.rq_dlg_get_dlg_reg = dml314_rq_dlg_get_dlg_reg,
.rq_dlg_get_rq_reg = dml314_rq_dlg_get_rq_reg
};
-const struct dml_funcs dml32_funcs = {
+static const struct dml_funcs dml32_funcs = {
.validate = dml32_ModeSupportAndSystemConfigurationFull,
- .recalculate = dml32_recalculate,
+ .recalculate = dml32_recalculate,
.rq_dlg_get_dlg_reg_v2 = dml32_rq_dlg_get_dlg_reg,
.rq_dlg_get_rq_reg_v2 = dml32_rq_dlg_get_rq_reg
};
diff --git a/drivers/gpu/drm/amd/display/dc/dml/display_mode_lib.h b/drivers/gpu/drm/amd/display/dc/dml/display_mode_lib.h
index 3d643d50c3eb..a9d49ef58fb5 100644
--- a/drivers/gpu/drm/amd/display/dc/dml/display_mode_lib.h
+++ b/drivers/gpu/drm/amd/display/dc/dml/display_mode_lib.h
@@ -91,6 +91,7 @@ struct display_mode_lib {
struct dal_logger *logger;
struct dml_funcs funcs;
struct _vcs_dpi_display_e2e_pipe_params_st dml_pipe_state[6];
+ bool validate_max_state;
};
void dml_init_instance(struct display_mode_lib *lib,
diff --git a/drivers/gpu/drm/amd/display/dc/dml/display_mode_structs.h b/drivers/gpu/drm/amd/display/dc/dml/display_mode_structs.h
index 64d602e6412f..3c077164f362 100644
--- a/drivers/gpu/drm/amd/display/dc/dml/display_mode_structs.h
+++ b/drivers/gpu/drm/amd/display/dc/dml/display_mode_structs.h
@@ -246,6 +246,7 @@ struct _vcs_dpi_soc_bounding_box_st {
bool disable_dram_clock_change_vactive_support;
bool allow_dram_clock_one_display_vactive;
enum self_refresh_affinity allow_dram_self_refresh_or_dram_clock_change_in_vblank;
+ double max_vratio_pre;
};
/**
diff --git a/drivers/gpu/drm/amd/display/dc/dml/display_mode_vba.c b/drivers/gpu/drm/amd/display/dc/dml/display_mode_vba.c
index 8e6585dab20e..f9653f511baa 100644
--- a/drivers/gpu/drm/amd/display/dc/dml/display_mode_vba.c
+++ b/drivers/gpu/drm/amd/display/dc/dml/display_mode_vba.c
@@ -202,6 +202,7 @@ dml_get_pipe_attr_func(vm_group_size_in_bytes, mode_lib->vba.vm_group_bytes);
dml_get_pipe_attr_func(dpte_row_height_linear_l, mode_lib->vba.dpte_row_height_linear);
dml_get_pipe_attr_func(pte_buffer_mode, mode_lib->vba.PTE_BUFFER_MODE);
dml_get_pipe_attr_func(subviewport_lines_needed_in_mall, mode_lib->vba.SubViewportLinesNeededInMALL);
+dml_get_pipe_attr_func(surface_size_in_mall, mode_lib->vba.SurfaceSizeInMALL)
double get_total_immediate_flip_bytes(
struct display_mode_lib *mode_lib,
@@ -411,6 +412,7 @@ static void fetch_socbb_params(struct display_mode_lib *mode_lib)
soc->urgent_latency_adjustment_fabric_clock_component_us;
mode_lib->vba.UrgentLatencyAdjustmentFabricClockReference =
soc->urgent_latency_adjustment_fabric_clock_reference_mhz;
+ mode_lib->vba.MaxVRatioPre = soc->max_vratio_pre;
}
static void fetch_ip_params(struct display_mode_lib *mode_lib)
diff --git a/drivers/gpu/drm/amd/display/dc/dml/display_mode_vba.h b/drivers/gpu/drm/amd/display/dc/dml/display_mode_vba.h
index 630f3395e90a..07993741f5e6 100644
--- a/drivers/gpu/drm/amd/display/dc/dml/display_mode_vba.h
+++ b/drivers/gpu/drm/amd/display/dc/dml/display_mode_vba.h
@@ -143,6 +143,7 @@ dml_get_pipe_attr_decl(vready_at_or_after_vsync);
dml_get_pipe_attr_decl(min_dst_y_next_start);
dml_get_pipe_attr_decl(vstartup_calculated);
dml_get_pipe_attr_decl(subviewport_lines_needed_in_mall);
+dml_get_pipe_attr_decl(surface_size_in_mall);
double get_total_immediate_flip_bytes(
struct display_mode_lib *mode_lib,
@@ -262,6 +263,7 @@ struct vba_vars_st {
int maxMpcComb;
bool UseMaximumVStartup;
+ double MaxVRatioPre;
double WritebackDISPCLK;
double DPPCLKUsingSingleDPPLuma;
double DPPCLKUsingSingleDPPChroma;
@@ -419,6 +421,15 @@ struct vba_vars_st {
double MinPixelChunkSizeBytes;
unsigned int DCCMetaBufferSizeBytes;
// Pipe/Plane Parameters
+
+ /** @VoltageLevel:
+ * Every ASIC has a fixed number of DPM states, and some devices might
+ * have some particular voltage configuration that does not map
+ * directly to the DPM states. This field tells how many states the
+ * target device supports; even though this field combines the DPM and
+ * special SOC voltages, it mostly matches the total number of DPM
+ * states.
+ */
int VoltageLevel;
double FabricClock;
double DRAMSpeed;
@@ -1041,6 +1052,7 @@ struct vba_vars_st {
double MinFullDETBufferingTime;
double AverageReadBandwidthGBytePerSecond;
bool FirstMainPlane;
+ bool NotEnoughDETSwathFillLatencyHiding;
unsigned int ViewportWidthChroma[DC__NUM_DPP__MAX];
unsigned int ViewportHeightChroma[DC__NUM_DPP__MAX];
@@ -1153,7 +1165,7 @@ struct vba_vars_st {
double UrgBurstFactorLumaPre[DC__NUM_DPP__MAX];
double UrgBurstFactorChromaPre[DC__NUM_DPP__MAX];
bool NotUrgentLatencyHidingPre[DC__NUM_DPP__MAX];
- bool LinkCapacitySupport[DC__NUM_DPP__MAX];
+ bool LinkCapacitySupport[DC__VOLTAGE_STATES];
bool VREADY_AT_OR_AFTER_VSYNC[DC__NUM_DPP__MAX];
unsigned int MIN_DST_Y_NEXT_START[DC__NUM_DPP__MAX];
unsigned int VFrontPorch[DC__NUM_DPP__MAX];
@@ -1224,6 +1236,7 @@ struct vba_vars_st {
unsigned int BlockWidthC[DC__NUM_DPP__MAX];
unsigned int SubViewportLinesNeededInMALL[DC__NUM_DPP__MAX];
bool VActiveBandwithSupport[DC__VOLTAGE_STATES][2];
+ bool NotEnoughDETSwathFillLatencyHidingPerState[DC__VOLTAGE_STATES][2];
struct dummy_vars dummy_vars;
};
diff --git a/drivers/gpu/drm/amd/display/dc/dml/dsc/qp_tables.h b/drivers/gpu/drm/amd/display/dc/dml/dsc/qp_tables.h
index e5fac9f4181d..dcff0dd2b6a1 100644
--- a/drivers/gpu/drm/amd/display/dc/dml/dsc/qp_tables.h
+++ b/drivers/gpu/drm/amd/display/dc/dml/dsc/qp_tables.h
@@ -25,7 +25,7 @@
*/
-const qp_table qp_table_422_10bpc_min = {
+static const qp_table qp_table_422_10bpc_min = {
{ 6, { 0, 4, 5, 6, 6, 6, 6, 7, 7, 8, 9, 9, 9, 12, 16} },
{ 6.5, { 0, 4, 5, 6, 6, 6, 6, 7, 7, 8, 9, 9, 9, 12, 16} },
{ 7, { 0, 4, 5, 6, 6, 6, 6, 7, 7, 7, 9, 9, 9, 11, 15} },
@@ -58,7 +58,7 @@ const qp_table qp_table_422_10bpc_min = {
};
-const qp_table qp_table_444_8bpc_max = {
+static const qp_table qp_table_444_8bpc_max = {
{ 6, { 4, 6, 8, 8, 9, 9, 9, 10, 11, 12, 12, 12, 12, 13, 15} },
{ 6.5, { 4, 6, 7, 8, 8, 8, 9, 10, 11, 11, 12, 12, 12, 13, 15} },
{ 7, { 4, 5, 7, 7, 8, 8, 8, 9, 10, 11, 11, 12, 12, 13, 14} },
@@ -99,7 +99,7 @@ const qp_table qp_table_444_8bpc_max = {
};
-const qp_table qp_table_420_12bpc_max = {
+static const qp_table qp_table_420_12bpc_max = {
{ 4, {11, 12, 13, 14, 15, 15, 15, 16, 17, 18, 18, 19, 19, 21, 22} },
{ 4.5, {10, 11, 12, 13, 14, 15, 15, 16, 17, 18, 18, 19, 19, 20, 21} },
{ 5, { 9, 11, 12, 13, 14, 15, 15, 16, 17, 17, 18, 18, 19, 20, 21} },
@@ -132,7 +132,7 @@ const qp_table qp_table_420_12bpc_max = {
};
-const qp_table qp_table_444_10bpc_min = {
+static const qp_table qp_table_444_10bpc_min = {
{ 6, { 0, 4, 7, 7, 9, 9, 9, 9, 9, 10, 10, 10, 10, 12, 18} },
{ 6.5, { 0, 4, 6, 7, 8, 8, 9, 9, 9, 9, 10, 10, 10, 12, 18} },
{ 7, { 0, 4, 6, 6, 8, 8, 8, 8, 8, 9, 9, 10, 10, 12, 17} },
@@ -185,7 +185,7 @@ const qp_table qp_table_444_10bpc_min = {
};
-const qp_table qp_table_420_8bpc_max = {
+static const qp_table qp_table_420_8bpc_max = {
{ 4, { 4, 4, 5, 6, 7, 7, 7, 8, 9, 10, 10, 11, 11, 13, 14} },
{ 4.5, { 4, 4, 5, 6, 7, 7, 7, 8, 9, 10, 10, 11, 11, 12, 13} },
{ 5, { 3, 4, 5, 6, 7, 7, 7, 8, 9, 9, 10, 10, 11, 12, 13} },
@@ -206,7 +206,7 @@ const qp_table qp_table_420_8bpc_max = {
};
-const qp_table qp_table_444_8bpc_min = {
+static const qp_table qp_table_444_8bpc_min = {
{ 6, { 0, 1, 3, 3, 5, 5, 5, 5, 5, 6, 6, 6, 6, 9, 14} },
{ 6.5, { 0, 1, 2, 3, 4, 4, 5, 5, 5, 5, 6, 6, 6, 9, 14} },
{ 7, { 0, 0, 2, 2, 4, 4, 4, 4, 4, 5, 5, 6, 6, 9, 13} },
@@ -247,7 +247,7 @@ const qp_table qp_table_444_8bpc_min = {
};
-const qp_table qp_table_444_12bpc_min = {
+static const qp_table qp_table_444_12bpc_min = {
{ 6, { 0, 5, 11, 11, 13, 13, 13, 13, 13, 14, 14, 14, 14, 17, 22} },
{ 6.5, { 0, 5, 10, 11, 12, 12, 13, 13, 13, 13, 14, 14, 14, 17, 22} },
{ 7, { 0, 5, 10, 10, 12, 12, 12, 12, 12, 13, 13, 14, 14, 17, 21} },
@@ -312,7 +312,7 @@ const qp_table qp_table_444_12bpc_min = {
};
-const qp_table qp_table_420_12bpc_min = {
+static const qp_table qp_table_420_12bpc_min = {
{ 4, { 0, 4, 9, 10, 11, 11, 11, 11, 11, 11, 13, 13, 13, 15, 21} },
{ 4.5, { 0, 4, 8, 9, 10, 11, 11, 11, 11, 11, 13, 13, 13, 15, 20} },
{ 5, { 0, 4, 8, 9, 10, 11, 11, 11, 11, 11, 13, 13, 13, 15, 20} },
@@ -345,7 +345,7 @@ const qp_table qp_table_420_12bpc_min = {
};
-const qp_table qp_table_422_12bpc_min = {
+static const qp_table qp_table_422_12bpc_min = {
{ 6, { 0, 4, 9, 10, 11, 11, 11, 11, 11, 11, 13, 13, 13, 16, 20} },
{ 6.5, { 0, 4, 9, 10, 11, 11, 11, 11, 11, 11, 13, 13, 13, 16, 20} },
{ 7, { 0, 4, 9, 10, 11, 11, 11, 11, 11, 11, 13, 13, 13, 15, 19} },
@@ -386,7 +386,7 @@ const qp_table qp_table_422_12bpc_min = {
};
-const qp_table qp_table_422_12bpc_max = {
+static const qp_table qp_table_422_12bpc_max = {
{ 6, {12, 12, 13, 14, 15, 15, 15, 16, 17, 18, 18, 19, 19, 20, 21} },
{ 6.5, {12, 12, 13, 14, 15, 15, 15, 16, 17, 18, 18, 19, 19, 20, 21} },
{ 7, {11, 12, 13, 14, 15, 15, 15, 16, 17, 17, 18, 18, 19, 19, 20} },
@@ -427,7 +427,7 @@ const qp_table qp_table_422_12bpc_max = {
};
-const qp_table qp_table_444_12bpc_max = {
+static const qp_table qp_table_444_12bpc_max = {
{ 6, {12, 14, 16, 16, 17, 17, 17, 18, 19, 20, 20, 20, 20, 21, 23} },
{ 6.5, {12, 14, 15, 16, 16, 16, 17, 18, 19, 19, 20, 20, 20, 21, 23} },
{ 7, {12, 13, 15, 15, 16, 16, 16, 17, 18, 19, 19, 20, 20, 21, 22} },
@@ -492,7 +492,7 @@ const qp_table qp_table_444_12bpc_max = {
};
-const qp_table qp_table_420_8bpc_min = {
+static const qp_table qp_table_420_8bpc_min = {
{ 4, { 0, 0, 1, 1, 3, 3, 3, 3, 3, 3, 5, 5, 5, 9, 13} },
{ 4.5, { 0, 0, 1, 1, 3, 3, 3, 3, 3, 3, 5, 5, 5, 8, 12} },
{ 5, { 0, 0, 1, 1, 3, 3, 3, 3, 3, 3, 5, 5, 5, 8, 12} },
@@ -513,7 +513,7 @@ const qp_table qp_table_420_8bpc_min = {
};
-const qp_table qp_table_422_8bpc_min = {
+static const qp_table qp_table_422_8bpc_min = {
{ 6, { 0, 0, 1, 2, 3, 3, 3, 3, 3, 3, 5, 5, 5, 8, 12} },
{ 6.5, { 0, 0, 1, 2, 3, 3, 3, 3, 3, 3, 5, 5, 5, 8, 12} },
{ 7, { 0, 0, 1, 2, 3, 3, 3, 3, 3, 3, 5, 5, 5, 7, 11} },
@@ -538,7 +538,7 @@ const qp_table qp_table_422_8bpc_min = {
};
-const qp_table qp_table_422_10bpc_max = {
+static const qp_table qp_table_422_10bpc_max = {
{ 6, { 8, 8, 9, 10, 11, 11, 11, 12, 13, 14, 14, 15, 15, 16, 17} },
{ 6.5, { 8, 8, 9, 10, 11, 11, 11, 12, 13, 14, 14, 15, 15, 16, 17} },
{ 7, { 7, 8, 9, 10, 11, 11, 11, 12, 13, 13, 14, 14, 15, 15, 16} },
@@ -571,7 +571,7 @@ const qp_table qp_table_422_10bpc_max = {
};
-const qp_table qp_table_420_10bpc_max = {
+static const qp_table qp_table_420_10bpc_max = {
{ 4, { 8, 8, 9, 10, 11, 11, 11, 12, 13, 14, 14, 15, 15, 17, 18} },
{ 4.5, { 8, 8, 9, 10, 11, 11, 11, 12, 13, 14, 14, 15, 15, 16, 17} },
{ 5, { 7, 8, 9, 10, 11, 11, 11, 12, 13, 13, 14, 14, 15, 16, 17} },
@@ -598,7 +598,7 @@ const qp_table qp_table_420_10bpc_max = {
};
-const qp_table qp_table_420_10bpc_min = {
+static const qp_table qp_table_420_10bpc_min = {
{ 4, { 0, 4, 4, 5, 7, 7, 7, 7, 7, 7, 9, 9, 9, 13, 17} },
{ 4.5, { 0, 4, 4, 5, 7, 7, 7, 7, 7, 7, 9, 9, 9, 12, 16} },
{ 5, { 0, 4, 4, 5, 7, 7, 7, 7, 7, 7, 9, 9, 9, 12, 16} },
@@ -625,7 +625,7 @@ const qp_table qp_table_420_10bpc_min = {
};
-const qp_table qp_table_444_10bpc_max = {
+static const qp_table qp_table_444_10bpc_max = {
{ 6, { 8, 10, 12, 12, 13, 13, 13, 14, 15, 16, 16, 16, 16, 17, 19} },
{ 6.5, { 8, 10, 11, 12, 12, 12, 13, 14, 15, 15, 16, 16, 16, 17, 19} },
{ 7, { 8, 9, 11, 11, 12, 12, 12, 13, 14, 15, 15, 16, 16, 17, 18} },
@@ -678,7 +678,7 @@ const qp_table qp_table_444_10bpc_max = {
};
-const qp_table qp_table_422_8bpc_max = {
+static const qp_table qp_table_422_8bpc_max = {
{ 6, { 4, 4, 5, 6, 7, 7, 7, 8, 9, 10, 10, 11, 11, 12, 13} },
{ 6.5, { 4, 4, 5, 6, 7, 7, 7, 8, 9, 10, 10, 11, 11, 12, 13} },
{ 7, { 3, 4, 5, 6, 7, 7, 7, 8, 9, 9, 10, 10, 11, 11, 12} },
diff --git a/drivers/gpu/drm/amd/display/dc/dsc/dc_dsc.c b/drivers/gpu/drm/amd/display/dc/dsc/dc_dsc.c
index d52cbc0e9b67..2bdc47615543 100644
--- a/drivers/gpu/drm/amd/display/dc/dsc/dc_dsc.c
+++ b/drivers/gpu/drm/amd/display/dc/dsc/dc_dsc.c
@@ -47,6 +47,59 @@ static bool dsc_policy_disable_dsc_stream_overhead;
#define MIN(X, Y) ((X) < (Y) ? (X) : (Y))
#endif
+uint32_t dc_bandwidth_in_kbps_from_timing(
+ const struct dc_crtc_timing *timing)
+{
+ uint32_t bits_per_channel = 0;
+ uint32_t kbps;
+
+ if (timing->flags.DSC)
+ return dc_dsc_stream_bandwidth_in_kbps(timing,
+ timing->dsc_cfg.bits_per_pixel,
+ timing->dsc_cfg.num_slices_h,
+ timing->dsc_cfg.is_dp);
+
+ switch (timing->display_color_depth) {
+ case COLOR_DEPTH_666:
+ bits_per_channel = 6;
+ break;
+ case COLOR_DEPTH_888:
+ bits_per_channel = 8;
+ break;
+ case COLOR_DEPTH_101010:
+ bits_per_channel = 10;
+ break;
+ case COLOR_DEPTH_121212:
+ bits_per_channel = 12;
+ break;
+ case COLOR_DEPTH_141414:
+ bits_per_channel = 14;
+ break;
+ case COLOR_DEPTH_161616:
+ bits_per_channel = 16;
+ break;
+ default:
+ ASSERT(bits_per_channel != 0);
+ bits_per_channel = 8;
+ break;
+ }
+
+ kbps = timing->pix_clk_100hz / 10;
+ kbps *= bits_per_channel;
+
+ if (timing->flags.Y_ONLY != 1) {
+ /*Only YOnly make reduce bandwidth by 1/3 compares to RGB*/
+ kbps *= 3;
+ if (timing->pixel_encoding == PIXEL_ENCODING_YCBCR420)
+ kbps /= 2;
+ else if (timing->pixel_encoding == PIXEL_ENCODING_YCBCR422)
+ kbps = kbps * 2 / 3;
+ }
+
+ return kbps;
+}
+
+
/* Forward Declerations */
static bool decide_dsc_bandwidth_range(
const uint32_t min_bpp_x16,
@@ -79,8 +132,7 @@ static bool setup_dsc_config(
const struct dsc_enc_caps *dsc_enc_caps,
int target_bandwidth_kbps,
const struct dc_crtc_timing *timing,
- int min_slice_height_override,
- int max_dsc_target_bpp_limit_override_x16,
+ const struct dc_dsc_config_options *options,
struct dc_dsc_config *dsc_cfg);
static bool dsc_buff_block_size_from_dpcd(int dpcd_buff_block_size, int *buff_block_size)
@@ -352,6 +404,11 @@ bool dc_dsc_compute_bandwidth_range(
struct dsc_enc_caps dsc_enc_caps;
struct dsc_enc_caps dsc_common_caps;
struct dc_dsc_config config;
+ struct dc_dsc_config_options options = {0};
+
+ options.dsc_min_slice_height_override = dsc_min_slice_height_override;
+ options.max_target_bpp_limit_override_x16 = max_bpp_x16;
+ options.slice_height_granularity = 1;
get_dsc_enc_caps(dsc, &dsc_enc_caps, timing->pix_clk_100hz);
@@ -360,7 +417,7 @@ bool dc_dsc_compute_bandwidth_range(
if (is_dsc_possible)
is_dsc_possible = setup_dsc_config(dsc_sink_caps, &dsc_enc_caps, 0, timing,
- dsc_min_slice_height_override, max_bpp_x16, &config);
+ &options, &config);
if (is_dsc_possible)
is_dsc_possible = decide_dsc_bandwidth_range(min_bpp_x16, max_bpp_x16,
@@ -740,8 +797,7 @@ static bool setup_dsc_config(
const struct dsc_enc_caps *dsc_enc_caps,
int target_bandwidth_kbps,
const struct dc_crtc_timing *timing,
- int min_slice_height_override,
- int max_dsc_target_bpp_limit_override_x16,
+ const struct dc_dsc_config_options *options,
struct dc_dsc_config *dsc_cfg)
{
struct dsc_enc_caps dsc_common_caps;
@@ -760,7 +816,7 @@ static bool setup_dsc_config(
memset(dsc_cfg, 0, sizeof(struct dc_dsc_config));
- dc_dsc_get_policy_for_timing(timing, max_dsc_target_bpp_limit_override_x16, &policy);
+ dc_dsc_get_policy_for_timing(timing, options->max_target_bpp_limit_override_x16, &policy);
pic_width = timing->h_addressable + timing->h_border_left + timing->h_border_right;
pic_height = timing->v_addressable + timing->v_border_top + timing->v_border_bottom;
@@ -909,12 +965,13 @@ static bool setup_dsc_config(
// Slice height (i.e. number of slices per column): start with policy and pick the first one that height is divisible by.
// For 4:2:0 make sure the slice height is divisible by 2 as well.
- if (min_slice_height_override == 0)
+ if (options->dsc_min_slice_height_override == 0)
slice_height = min(policy.min_slice_height, pic_height);
else
- slice_height = min(min_slice_height_override, pic_height);
+ slice_height = min((int)(options->dsc_min_slice_height_override), pic_height);
while (slice_height < pic_height && (pic_height % slice_height != 0 ||
+ slice_height % options->slice_height_granularity != 0 ||
(timing->pixel_encoding == PIXEL_ENCODING_YCBCR420 && slice_height % 2 != 0)))
slice_height++;
@@ -958,8 +1015,7 @@ done:
bool dc_dsc_compute_config(
const struct display_stream_compressor *dsc,
const struct dsc_dec_dpcd_caps *dsc_sink_caps,
- uint32_t dsc_min_slice_height_override,
- uint32_t max_target_bpp_limit_override,
+ const struct dc_dsc_config_options *options,
uint32_t target_bandwidth_kbps,
const struct dc_crtc_timing *timing,
struct dc_dsc_config *dsc_cfg)
@@ -971,8 +1027,7 @@ bool dc_dsc_compute_config(
is_dsc_possible = setup_dsc_config(dsc_sink_caps,
&dsc_enc_caps,
target_bandwidth_kbps,
- timing, dsc_min_slice_height_override,
- max_target_bpp_limit_override * 16, dsc_cfg);
+ timing, options, dsc_cfg);
return is_dsc_possible;
}
@@ -1104,3 +1159,10 @@ void dc_dsc_policy_set_disable_dsc_stream_overhead(bool disable)
{
dsc_policy_disable_dsc_stream_overhead = disable;
}
+
+void dc_dsc_get_default_config_option(const struct dc *dc, struct dc_dsc_config_options *options)
+{
+ options->dsc_min_slice_height_override = dc->debug.dsc_min_slice_height_override;
+ options->max_target_bpp_limit_override_x16 = 0;
+ options->slice_height_granularity = 1;
+}
diff --git a/drivers/gpu/drm/amd/display/dc/dsc/dscc_types.h b/drivers/gpu/drm/amd/display/dc/dsc/dscc_types.h
index ad80bde9bc0f..31574940ccc7 100644
--- a/drivers/gpu/drm/amd/display/dc/dsc/dscc_types.h
+++ b/drivers/gpu/drm/amd/display/dc/dsc/dscc_types.h
@@ -46,7 +46,10 @@ struct dsc_parameters {
uint32_t rc_buffer_model_size;
};
-int dscc_compute_dsc_parameters(const struct drm_dsc_config *pps, struct dsc_parameters *dsc_params);
+struct rc_params;
+int dscc_compute_dsc_parameters(const struct drm_dsc_config *pps,
+ const struct rc_params *rc,
+ struct dsc_parameters *dsc_params);
#endif
diff --git a/drivers/gpu/drm/amd/display/dc/dsc/rc_calc.c b/drivers/gpu/drm/amd/display/dc/dsc/rc_calc.c
index e97cf09be9d5..64cee8c80110 100644
--- a/drivers/gpu/drm/amd/display/dc/dsc/rc_calc.c
+++ b/drivers/gpu/drm/amd/display/dc/dsc/rc_calc.c
@@ -39,6 +39,7 @@
*/
void calc_rc_params(struct rc_params *rc, const struct drm_dsc_config *pps)
{
+#if defined(CONFIG_DRM_AMD_DC_FP)
enum colour_mode mode;
enum bits_per_comp bpc;
bool is_navite_422_or_420;
@@ -59,4 +60,5 @@ void calc_rc_params(struct rc_params *rc, const struct drm_dsc_config *pps)
slice_width, slice_height,
pps->dsc_version_minor);
DC_FP_END();
+#endif
}
diff --git a/drivers/gpu/drm/amd/display/dc/dsc/rc_calc_dpi.c b/drivers/gpu/drm/amd/display/dc/dsc/rc_calc_dpi.c
index f0aea988fef0..36d6c1646a51 100644
--- a/drivers/gpu/drm/amd/display/dc/dsc/rc_calc_dpi.c
+++ b/drivers/gpu/drm/amd/display/dc/dsc/rc_calc_dpi.c
@@ -95,19 +95,19 @@ static void copy_rc_to_cfg(struct drm_dsc_config *dsc_cfg, const struct rc_param
dsc_cfg->rc_buf_thresh[i] = rc->rc_buf_thresh[i];
}
-int dscc_compute_dsc_parameters(const struct drm_dsc_config *pps, struct dsc_parameters *dsc_params)
+int dscc_compute_dsc_parameters(const struct drm_dsc_config *pps,
+ const struct rc_params *rc,
+ struct dsc_parameters *dsc_params)
{
int ret;
- struct rc_params rc;
struct drm_dsc_config dsc_cfg;
unsigned long long tmp;
- calc_rc_params(&rc, pps);
dsc_params->pps = *pps;
- dsc_params->pps.initial_scale_value = 8 * rc.rc_model_size / (rc.rc_model_size - rc.initial_fullness_offset);
+ dsc_params->pps.initial_scale_value = 8 * rc->rc_model_size / (rc->rc_model_size - rc->initial_fullness_offset);
copy_pps_fields(&dsc_cfg, &dsc_params->pps);
- copy_rc_to_cfg(&dsc_cfg, &rc);
+ copy_rc_to_cfg(&dsc_cfg, rc);
dsc_cfg.mux_word_size = dsc_params->pps.bits_per_component <= 10 ? 48 : 64;
diff --git a/drivers/gpu/drm/amd/display/dc/gpio/dcn20/hw_factory_dcn20.c b/drivers/gpu/drm/amd/display/dc/gpio/dcn20/hw_factory_dcn20.c
index 9b63c6c0cc84..e0bd0c722e00 100644
--- a/drivers/gpu/drm/amd/display/dc/gpio/dcn20/hw_factory_dcn20.c
+++ b/drivers/gpu/drm/amd/display/dc/gpio/dcn20/hw_factory_dcn20.c
@@ -138,7 +138,8 @@ static const struct ddc_sh_mask ddc_shift[] = {
DDC_MASK_SH_LIST_DCN2(__SHIFT, 3),
DDC_MASK_SH_LIST_DCN2(__SHIFT, 4),
DDC_MASK_SH_LIST_DCN2(__SHIFT, 5),
- DDC_MASK_SH_LIST_DCN2(__SHIFT, 6)
+ DDC_MASK_SH_LIST_DCN2(__SHIFT, 6),
+ DDC_MASK_SH_LIST_DCN2_VGA(__SHIFT)
};
static const struct ddc_sh_mask ddc_mask[] = {
@@ -147,7 +148,8 @@ static const struct ddc_sh_mask ddc_mask[] = {
DDC_MASK_SH_LIST_DCN2(_MASK, 3),
DDC_MASK_SH_LIST_DCN2(_MASK, 4),
DDC_MASK_SH_LIST_DCN2(_MASK, 5),
- DDC_MASK_SH_LIST_DCN2(_MASK, 6)
+ DDC_MASK_SH_LIST_DCN2(_MASK, 6),
+ DDC_MASK_SH_LIST_DCN2_VGA(_MASK)
};
#include "../generic_regs.h"
diff --git a/drivers/gpu/drm/amd/display/dc/gpio/dcn30/hw_factory_dcn30.c b/drivers/gpu/drm/amd/display/dc/gpio/dcn30/hw_factory_dcn30.c
index 687d4f128480..36a5736c58c9 100644
--- a/drivers/gpu/drm/amd/display/dc/gpio/dcn30/hw_factory_dcn30.c
+++ b/drivers/gpu/drm/amd/display/dc/gpio/dcn30/hw_factory_dcn30.c
@@ -145,7 +145,8 @@ static const struct ddc_sh_mask ddc_shift[] = {
DDC_MASK_SH_LIST_DCN2(__SHIFT, 3),
DDC_MASK_SH_LIST_DCN2(__SHIFT, 4),
DDC_MASK_SH_LIST_DCN2(__SHIFT, 5),
- DDC_MASK_SH_LIST_DCN2(__SHIFT, 6)
+ DDC_MASK_SH_LIST_DCN2(__SHIFT, 6),
+ DDC_MASK_SH_LIST_DCN2_VGA(__SHIFT)
};
static const struct ddc_sh_mask ddc_mask[] = {
@@ -154,7 +155,8 @@ static const struct ddc_sh_mask ddc_mask[] = {
DDC_MASK_SH_LIST_DCN2(_MASK, 3),
DDC_MASK_SH_LIST_DCN2(_MASK, 4),
DDC_MASK_SH_LIST_DCN2(_MASK, 5),
- DDC_MASK_SH_LIST_DCN2(_MASK, 6)
+ DDC_MASK_SH_LIST_DCN2(_MASK, 6),
+ DDC_MASK_SH_LIST_DCN2_VGA(_MASK)
};
#include "../generic_regs.h"
diff --git a/drivers/gpu/drm/amd/display/dc/gpio/dcn32/hw_factory_dcn32.c b/drivers/gpu/drm/amd/display/dc/gpio/dcn32/hw_factory_dcn32.c
index 0ea52ba5ac82..985f10b39750 100644
--- a/drivers/gpu/drm/amd/display/dc/gpio/dcn32/hw_factory_dcn32.c
+++ b/drivers/gpu/drm/amd/display/dc/gpio/dcn32/hw_factory_dcn32.c
@@ -149,7 +149,8 @@ static const struct ddc_sh_mask ddc_shift[] = {
DDC_MASK_SH_LIST_DCN2(__SHIFT, 3),
DDC_MASK_SH_LIST_DCN2(__SHIFT, 4),
DDC_MASK_SH_LIST_DCN2(__SHIFT, 5),
- DDC_MASK_SH_LIST_DCN2(__SHIFT, 6)
+ DDC_MASK_SH_LIST_DCN2(__SHIFT, 6),
+ DDC_MASK_SH_LIST_DCN2_VGA(__SHIFT)
};
static const struct ddc_sh_mask ddc_mask[] = {
@@ -158,7 +159,8 @@ static const struct ddc_sh_mask ddc_mask[] = {
DDC_MASK_SH_LIST_DCN2(_MASK, 3),
DDC_MASK_SH_LIST_DCN2(_MASK, 4),
DDC_MASK_SH_LIST_DCN2(_MASK, 5),
- DDC_MASK_SH_LIST_DCN2(_MASK, 6)
+ DDC_MASK_SH_LIST_DCN2(_MASK, 6),
+ DDC_MASK_SH_LIST_DCN2_VGA(_MASK)
};
#include "../generic_regs.h"
@@ -256,8 +258,8 @@ static const struct hw_factory_funcs funcs = {
*/
void dal_hw_factory_dcn32_init(struct hw_factory *factory)
{
- factory->number_of_pins[GPIO_ID_DDC_DATA] = 6;
- factory->number_of_pins[GPIO_ID_DDC_CLOCK] = 6;
+ factory->number_of_pins[GPIO_ID_DDC_DATA] = 8;
+ factory->number_of_pins[GPIO_ID_DDC_CLOCK] = 8;
factory->number_of_pins[GPIO_ID_GENERIC] = 4;
factory->number_of_pins[GPIO_ID_HPD] = 5;
factory->number_of_pins[GPIO_ID_GPIO_PAD] = 28;
diff --git a/drivers/gpu/drm/amd/display/dc/gpio/ddc_regs.h b/drivers/gpu/drm/amd/display/dc/gpio/ddc_regs.h
index 308a543178a5..59884ef651b3 100644
--- a/drivers/gpu/drm/amd/display/dc/gpio/ddc_regs.h
+++ b/drivers/gpu/drm/amd/display/dc/gpio/ddc_regs.h
@@ -113,6 +113,13 @@
(PHY_AUX_CNTL__AUX## cd ##_PAD_RXSEL## mask_sh),\
(DC_GPIO_AUX_CTRL_5__DDC_PAD## cd ##_I2CMODE## mask_sh)}
+#define DDC_MASK_SH_LIST_DCN2_VGA(mask_sh) \
+ {DDC_MASK_SH_LIST_COMMON(mask_sh),\
+ 0,\
+ 0,\
+ 0,\
+ 0}
+
struct ddc_registers {
struct gpio_registers gpio;
uint32_t ddc_setup;
diff --git a/drivers/gpu/drm/amd/display/dc/hdcp/hdcp_msg.c b/drivers/gpu/drm/amd/display/dc/hdcp/hdcp_msg.c
index 4233955e3c47..25ffc052d53b 100644
--- a/drivers/gpu/drm/amd/display/dc/hdcp/hdcp_msg.c
+++ b/drivers/gpu/drm/amd/display/dc/hdcp/hdcp_msg.c
@@ -27,13 +27,12 @@
#include "dm_services.h"
#include "dm_helpers.h"
-#include "include/hdcp_types.h"
-#include "include/i2caux_interface.h"
+#include "include/hdcp_msg_types.h"
#include "include/signal_types.h"
#include "core_types.h"
-#include "dc_link_ddc.h"
+#include "link.h"
#include "link_hwss.h"
-#include "inc/link_dpcd.h"
+#include "link/protocols/link_dpcd.h"
#define DC_LOGGER \
link->ctx->logger
diff --git a/drivers/gpu/drm/amd/display/dc/inc/core_types.h b/drivers/gpu/drm/amd/display/dc/inc/core_types.h
index 9498105c98ab..2eb597a24425 100644
--- a/drivers/gpu/drm/amd/display/dc/inc/core_types.h
+++ b/drivers/gpu/drm/amd/display/dc/inc/core_types.h
@@ -51,38 +51,9 @@ void enable_surface_flip_reporting(struct dc_plane_state *plane_state,
#include "clock_source.h"
#include "audio.h"
#include "dm_pp_smu.h"
-#ifdef CONFIG_DRM_AMD_DC_HDCP
#include "dm_cp_psp.h"
-#endif
#include "link_hwss.h"
-/************ link *****************/
-struct link_init_data {
- const struct dc *dc;
- struct dc_context *ctx; /* TODO: remove 'dal' when DC is complete. */
- uint32_t connector_index; /* this will be mapped to the HPD pins */
- uint32_t link_index; /* this is mapped to DAL display_index
- TODO: remove it when DC is complete. */
- bool is_dpia_link;
-};
-
-struct dc_link *link_create(const struct link_init_data *init_params);
-void link_destroy(struct dc_link **link);
-
-enum dc_status dc_link_validate_mode_timing(
- const struct dc_stream_state *stream,
- struct dc_link *link,
- const struct dc_crtc_timing *timing);
-
-void core_link_resume(struct dc_link *link);
-
-void core_link_enable_stream(
- struct dc_state *state,
- struct pipe_ctx *pipe_ctx);
-
-void core_link_disable_stream(struct pipe_ctx *pipe_ctx);
-
-void core_link_set_avmute(struct pipe_ctx *pipe_ctx, bool enable);
/********** DAL Core*********************/
#include "transform.h"
#include "dpp.h"
@@ -115,6 +86,13 @@ struct resource_funcs {
int vlevel);
void (*update_soc_for_wm_a)(
struct dc *dc, struct dc_state *context);
+
+ /**
+ * @populate_dml_pipes - Populate pipe data struct
+ *
+ * Returns:
+ * Total of pipes available in the specific ASIC.
+ */
int (*populate_dml_pipes)(
struct dc *dc,
struct dc_state *context,
@@ -233,8 +211,11 @@ struct resource_funcs {
unsigned int pipe_cnt,
unsigned int index);
- bool (*remove_phantom_pipes)(struct dc *dc, struct dc_state *context);
+ bool (*remove_phantom_pipes)(struct dc *dc, struct dc_state *context, bool fast_update);
+ void (*retain_phantom_pipes)(struct dc *dc, struct dc_state *context);
void (*get_panel_config_defaults)(struct dc_panel_config *panel_config);
+ void (*save_mall_state)(struct dc *dc, struct dc_state *context, struct mall_temp_config *temp_config);
+ void (*restore_mall_state)(struct dc *dc, struct dc_state *context, struct mall_temp_config *temp_config);
};
struct audio_support{
@@ -413,7 +394,10 @@ struct pipe_ctx {
struct pll_settings pll_settings;
- /* link config records software decision for what link config should be
+ /**
+ * @link_config:
+ *
+ * link config records software decision for what link config should be
* enabled given current link capability and stream during hw resource
* mapping. This is to decouple the dependency on link capability during
* dc commit or update.
@@ -437,10 +421,11 @@ struct pipe_ctx {
struct _vcs_dpi_display_e2e_pipe_params_st dml_input;
int det_buffer_size_kb;
bool unbounded_req;
+ unsigned int surface_size_in_mall_bytes;
- union pipe_update_flags update_flags;
struct dwbc *dwbc;
struct mcif_wb *mcif_wb;
+ union pipe_update_flags update_flags;
};
/* Data used for dynamic link encoder assignment.
@@ -494,6 +479,9 @@ struct dcn_bw_output {
struct dcn_watermark_set watermarks;
struct dcn_bw_writeback bw_writeback;
int compbuf_size_kb;
+ unsigned int mall_ss_size_bytes;
+ unsigned int mall_ss_psr_active_size_bytes;
+ unsigned int mall_subvp_size_bytes;
unsigned int legacy_svp_drr_stream_index;
bool legacy_svp_drr_stream_index_valid;
};
@@ -507,33 +495,62 @@ struct bw_context {
union bw_output bw;
struct display_mode_lib dml;
};
+
/**
- * struct dc_state - The full description of a state requested by a user
- *
- * @streams: Stream properties
- * @stream_status: The planes on a given stream
- * @res_ctx: Persistent state of resources
- * @bw_ctx: The output from bandwidth and watermark calculations and the DML
- * @pp_display_cfg: PowerPlay clocks and settings
- * @dcn_bw_vars: non-stack memory to support bandwidth calculations
- *
+ * struct dc_state - The full description of a state requested by users
*/
struct dc_state {
+ /**
+ * @streams: Stream state properties
+ */
struct dc_stream_state *streams[MAX_PIPES];
+
+ /**
+ * @stream_status: Planes status on a given stream
+ */
struct dc_stream_status stream_status[MAX_PIPES];
+
+ /**
+ * @stream_count: Total of streams in use
+ */
uint8_t stream_count;
uint8_t stream_mask;
+ /**
+ * @res_ctx: Persistent state of resources
+ */
struct resource_context res_ctx;
- struct bw_context bw_ctx;
-
- /* Note: these are big structures, do *not* put on stack! */
+ /**
+ * @pp_display_cfg: PowerPlay clocks and settings
+ * Note: this is a big struct, do *not* put on stack!
+ */
struct dm_pp_display_configuration pp_display_cfg;
+
+ /**
+ * @dcn_bw_vars: non-stack memory to support bandwidth calculations
+ * Note: this is a big struct, do *not* put on stack!
+ */
struct dcn_bw_internal_vars dcn_bw_vars;
struct clk_mgr *clk_mgr;
+ /**
+ * @bw_ctx: The output from bandwidth and watermark calculations and the DML
+ *
+ * Each context must have its own instance of VBA, and in order to
+ * initialize and obtain IP and SOC, the base DML instance from DC is
+ * initially copied into every context.
+ */
+ struct bw_context bw_ctx;
+
+ /**
+ * @refcount: refcount reference
+ *
+ * Notice that dc_state is used around the code to capture the current
+ * context, so we need to pass it everywhere. That's why we want to use
+ * kref in this struct.
+ */
struct kref refcount;
struct {
diff --git a/drivers/gpu/drm/amd/display/dc/inc/dc_link_ddc.h b/drivers/gpu/drm/amd/display/dc/inc/dc_link_ddc.h
deleted file mode 100644
index 95fb61d62778..000000000000
--- a/drivers/gpu/drm/amd/display/dc/inc/dc_link_ddc.h
+++ /dev/null
@@ -1,133 +0,0 @@
-/*
- * Copyright 2012-15 Advanced Micro Devices, Inc.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice shall be included in
- * all copies or substantial portions of the Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
- * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
- * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
- * OTHER DEALINGS IN THE SOFTWARE.
- *
- * Authors: AMD
- *
- */
-
-#ifndef __DAL_DDC_SERVICE_H__
-#define __DAL_DDC_SERVICE_H__
-
-#include "include/ddc_service_types.h"
-#include "include/i2caux_interface.h"
-
-#define EDID_SEGMENT_SIZE 256
-
-/* Address range from 0x00 to 0x1F.*/
-#define DP_ADAPTOR_TYPE2_SIZE 0x20
-#define DP_ADAPTOR_TYPE2_REG_ID 0x10
-#define DP_ADAPTOR_TYPE2_REG_MAX_TMDS_CLK 0x1D
-/* Identifies adaptor as Dual-mode adaptor */
-#define DP_ADAPTOR_TYPE2_ID 0xA0
-/* MHz*/
-#define DP_ADAPTOR_TYPE2_MAX_TMDS_CLK 600
-/* MHz*/
-#define DP_ADAPTOR_TYPE2_MIN_TMDS_CLK 25
-/* kHZ*/
-#define DP_ADAPTOR_DVI_MAX_TMDS_CLK 165000
-/* kHZ*/
-#define DP_ADAPTOR_HDMI_SAFE_MAX_TMDS_CLK 165000
-
-#define DDC_I2C_COMMAND_ENGINE I2C_COMMAND_ENGINE_SW
-
-struct ddc_service;
-struct graphics_object_id;
-enum ddc_result;
-struct av_sync_data;
-struct dp_receiver_id_info;
-
-struct i2c_payloads;
-struct aux_payloads;
-enum aux_return_code_type;
-
-void dal_ddc_i2c_payloads_add(
- struct i2c_payloads *payloads,
- uint32_t address,
- uint32_t len,
- uint8_t *data,
- bool write);
-
-struct ddc_service_init_data {
- struct graphics_object_id id;
- struct dc_context *ctx;
- struct dc_link *link;
- bool is_dpia_link;
-};
-
-struct ddc_service *dal_ddc_service_create(
- struct ddc_service_init_data *ddc_init_data);
-
-void dal_ddc_service_destroy(struct ddc_service **ddc);
-
-enum ddc_service_type dal_ddc_service_get_type(struct ddc_service *ddc);
-
-void dal_ddc_service_set_transaction_type(
- struct ddc_service *ddc,
- enum ddc_transaction_type type);
-
-bool dal_ddc_service_is_in_aux_transaction_mode(struct ddc_service *ddc);
-
-void dal_ddc_service_i2c_query_dp_dual_mode_adaptor(
- struct ddc_service *ddc,
- struct display_sink_capability *sink_cap);
-
-bool dal_ddc_service_query_ddc_data(
- struct ddc_service *ddc,
- uint32_t address,
- uint8_t *write_buf,
- uint32_t write_size,
- uint8_t *read_buf,
- uint32_t read_size);
-
-bool dal_ddc_submit_aux_command(struct ddc_service *ddc,
- struct aux_payload *payload);
-
-int dc_link_aux_transfer_raw(struct ddc_service *ddc,
- struct aux_payload *payload,
- enum aux_return_code_type *operation_result);
-
-bool dc_link_aux_transfer_with_retries(struct ddc_service *ddc,
- struct aux_payload *payload);
-
-bool dc_link_aux_try_to_configure_timeout(struct ddc_service *ddc,
- uint32_t timeout);
-
-void dal_ddc_service_write_scdc_data(
- struct ddc_service *ddc_service,
- uint32_t pix_clk,
- bool lte_340_scramble);
-
-void dal_ddc_service_read_scdc_data(
- struct ddc_service *ddc_service);
-
-void ddc_service_set_dongle_type(struct ddc_service *ddc,
- enum display_dongle_type dongle_type);
-
-void dal_ddc_service_set_ddc_pin(
- struct ddc_service *ddc_service,
- struct ddc *ddc);
-
-struct ddc *dal_ddc_service_get_ddc_pin(struct ddc_service *ddc_service);
-
-uint32_t get_defer_delay(struct ddc_service *ddc);
-
-#endif /* __DAL_DDC_SERVICE_H__ */
-
diff --git a/drivers/gpu/drm/amd/display/dc/inc/dc_link_dp.h b/drivers/gpu/drm/amd/display/dc/inc/dc_link_dp.h
deleted file mode 100644
index b304d450b038..000000000000
--- a/drivers/gpu/drm/amd/display/dc/inc/dc_link_dp.h
+++ /dev/null
@@ -1,267 +0,0 @@
-/*
- * Copyright 2015 Advanced Micro Devices, Inc.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice shall be included in
- * all copies or substantial portions of the Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
- * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
- * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
- * OTHER DEALINGS IN THE SOFTWARE.
- *
- * Authors: AMD
- *
- */
-
-#ifndef __DC_LINK_DP_H__
-#define __DC_LINK_DP_H__
-
-#define LINK_TRAINING_ATTEMPTS 4
-#define LINK_TRAINING_RETRY_DELAY 50 /* ms */
-#define LINK_AUX_DEFAULT_LTTPR_TIMEOUT_PERIOD 3200 /*us*/
-#define LINK_AUX_DEFAULT_TIMEOUT_PERIOD 552 /*us*/
-#define MAX_MTP_SLOT_COUNT 64
-#define DP_REPEATER_CONFIGURATION_AND_STATUS_SIZE 0x50
-#define TRAINING_AUX_RD_INTERVAL 100 //us
-#define LINK_AUX_WAKE_TIMEOUT_MS 1500 // Timeout when trying to wake unresponsive DPRX.
-
-struct dc_link;
-struct dc_stream_state;
-struct dc_link_settings;
-
-enum {
- LINK_TRAINING_MAX_RETRY_COUNT = 5,
- /* to avoid infinite loop where-in the receiver
- * switches between different VS
- */
- LINK_TRAINING_MAX_CR_RETRY = 100,
- /*
- * Some receivers fail to train on first try and are good
- * on subsequent tries. 2 retries should be plenty. If we
- * don't have a successful training then we don't expect to
- * ever get one.
- */
- LINK_TRAINING_MAX_VERIFY_RETRY = 2,
- PEAK_FACTOR_X1000 = 1006,
-};
-
-struct dc_link_settings dp_get_max_link_cap(struct dc_link *link);
-
-bool dp_verify_link_cap_with_retries(
- struct dc_link *link,
- struct dc_link_settings *known_limit_link_setting,
- int attempts);
-
-bool dp_validate_mode_timing(
- struct dc_link *link,
- const struct dc_crtc_timing *timing);
-
-bool decide_edp_link_settings(struct dc_link *link,
- struct dc_link_settings *link_setting,
- uint32_t req_bw);
-
-bool decide_link_settings(
- struct dc_stream_state *stream,
- struct dc_link_settings *link_setting);
-
-bool perform_link_training_with_retries(
- const struct dc_link_settings *link_setting,
- bool skip_video_pattern,
- int attempts,
- struct pipe_ctx *pipe_ctx,
- enum signal_type signal,
- bool do_fallback);
-
-bool hpd_rx_irq_check_link_loss_status(
- struct dc_link *link,
- union hpd_irq_data *hpd_irq_dpcd_data);
-
-bool is_mst_supported(struct dc_link *link);
-
-bool detect_dp_sink_caps(struct dc_link *link);
-
-void detect_edp_sink_caps(struct dc_link *link);
-
-bool is_dp_active_dongle(const struct dc_link *link);
-
-bool is_dp_branch_device(const struct dc_link *link);
-
-bool is_edp_ilr_optimization_required(struct dc_link *link, struct dc_crtc_timing *crtc_timing);
-
-void dp_enable_mst_on_sink(struct dc_link *link, bool enable);
-
-enum dp_panel_mode dp_get_panel_mode(struct dc_link *link);
-void dp_set_panel_mode(struct dc_link *link, enum dp_panel_mode panel_mode);
-
-bool dp_overwrite_extended_receiver_cap(struct dc_link *link);
-
-void dpcd_set_source_specific_data(struct dc_link *link);
-
-void dpcd_write_cable_id_to_dprx(struct dc_link *link);
-
-/* Write DPCD link configuration data. */
-enum dc_status dpcd_set_link_settings(
- struct dc_link *link,
- const struct link_training_settings *lt_settings);
-/* Write DPCD drive settings. */
-enum dc_status dpcd_set_lane_settings(
- struct dc_link *link,
- const struct link_training_settings *link_training_setting,
- uint32_t offset);
-/* Read training status and adjustment requests from DPCD. */
-enum dc_status dp_get_lane_status_and_lane_adjust(
- struct dc_link *link,
- const struct link_training_settings *link_training_setting,
- union lane_status ln_status[LANE_COUNT_DP_MAX],
- union lane_align_status_updated *ln_align,
- union lane_adjust ln_adjust[LANE_COUNT_DP_MAX],
- uint32_t offset);
-
-void dp_wait_for_training_aux_rd_interval(
- struct dc_link *link,
- uint32_t wait_in_micro_secs);
-
-bool dp_is_cr_done(enum dc_lane_count ln_count,
- union lane_status *dpcd_lane_status);
-
-enum link_training_result dp_get_cr_failure(enum dc_lane_count ln_count,
- union lane_status *dpcd_lane_status);
-
-bool dp_is_ch_eq_done(enum dc_lane_count ln_count,
- union lane_status *dpcd_lane_status);
-bool dp_is_symbol_locked(enum dc_lane_count ln_count,
- union lane_status *dpcd_lane_status);
-bool dp_is_interlane_aligned(union lane_align_status_updated align_status);
-
-bool dp_is_max_vs_reached(
- const struct link_training_settings *lt_settings);
-void dp_hw_to_dpcd_lane_settings(
- const struct link_training_settings *lt_settings,
- const struct dc_lane_settings hw_lane_settings[LANE_COUNT_DP_MAX],
- union dpcd_training_lane dpcd_lane_settings[]);
-void dp_decide_lane_settings(
- const struct link_training_settings *lt_settings,
- const union lane_adjust ln_adjust[LANE_COUNT_DP_MAX],
- struct dc_lane_settings hw_lane_settings[LANE_COUNT_DP_MAX],
- union dpcd_training_lane dpcd_lane_settings[]);
-
-uint32_t dp_translate_training_aux_read_interval(uint32_t dpcd_aux_read_interval);
-
-enum dpcd_training_patterns
- dc_dp_training_pattern_to_dpcd_training_pattern(
- struct dc_link *link,
- enum dc_dp_training_pattern pattern);
-
-uint8_t dc_dp_initialize_scrambling_data_symbols(
- struct dc_link *link,
- enum dc_dp_training_pattern pattern);
-
-enum dc_status dp_set_fec_ready(struct dc_link *link, const struct link_resource *link_res, bool ready);
-void dp_set_fec_enable(struct dc_link *link, bool enable);
-bool dp_set_dsc_enable(struct pipe_ctx *pipe_ctx, bool enable);
-bool dp_set_dsc_pps_sdp(struct pipe_ctx *pipe_ctx, bool enable, bool immediate_update);
-void dp_set_dsc_on_stream(struct pipe_ctx *pipe_ctx, bool enable);
-bool dp_update_dsc_config(struct pipe_ctx *pipe_ctx);
-bool dp_set_dsc_on_rx(struct pipe_ctx *pipe_ctx, bool enable);
-
-/* Initialize output parameter lt_settings. */
-void dp_decide_training_settings(
- struct dc_link *link,
- const struct dc_link_settings *link_setting,
- struct link_training_settings *lt_settings);
-
-/* Convert PHY repeater count read from DPCD uint8_t. */
-uint8_t dp_convert_to_count(uint8_t lttpr_repeater_count);
-
-/* Check DPCD training status registers to detect link loss. */
-enum link_training_result dp_check_link_loss_status(
- struct dc_link *link,
- const struct link_training_settings *link_training_setting);
-
-enum dc_status dpcd_configure_lttpr_mode(
- struct dc_link *link,
- struct link_training_settings *lt_settings);
-
-enum dp_link_encoding dp_get_link_encoding_format(const struct dc_link_settings *link_settings);
-bool dp_retrieve_lttpr_cap(struct dc_link *link);
-bool dp_is_lttpr_present(struct dc_link *link);
-enum lttpr_mode dp_decide_lttpr_mode(struct dc_link *link, struct dc_link_settings *link_setting);
-void dp_get_lttpr_mode_override(struct dc_link *link, enum lttpr_mode *override);
-enum lttpr_mode dp_decide_8b_10b_lttpr_mode(struct dc_link *link);
-enum lttpr_mode dp_decide_128b_132b_lttpr_mode(struct dc_link *link);
-bool dpcd_write_128b_132b_sst_payload_allocation_table(
- const struct dc_stream_state *stream,
- struct dc_link *link,
- struct link_mst_stream_allocation_table *proposed_table,
- bool allocate);
-
-enum dc_status dpcd_configure_channel_coding(
- struct dc_link *link,
- struct link_training_settings *lt_settings);
-
-bool dpcd_poll_for_allocation_change_trigger(struct dc_link *link);
-
-struct fixed31_32 calculate_sst_avg_time_slots_per_mtp(
- const struct dc_stream_state *stream,
- const struct dc_link *link);
-void enable_dp_hpo_output(struct dc_link *link,
- const struct link_resource *link_res,
- const struct dc_link_settings *link_settings);
-void disable_dp_hpo_output(struct dc_link *link,
- const struct link_resource *link_res,
- enum signal_type signal);
-
-void setup_dp_hpo_stream(struct pipe_ctx *pipe_ctx, bool enable);
-bool is_dp_128b_132b_signal(struct pipe_ctx *pipe_ctx);
-void edp_panel_backlight_power_on(struct dc_link *link, bool wait_for_hpd);
-void dp_receiver_power_ctrl(struct dc_link *link, bool on);
-void dp_source_sequence_trace(struct dc_link *link, uint8_t dp_test_mode);
-void dp_enable_link_phy(
- struct dc_link *link,
- const struct link_resource *link_res,
- enum signal_type signal,
- enum clock_source_id clock_source,
- const struct dc_link_settings *link_settings);
-void edp_add_delay_for_T9(struct dc_link *link);
-bool edp_receiver_ready_T9(struct dc_link *link);
-bool edp_receiver_ready_T7(struct dc_link *link);
-
-void dp_disable_link_phy(struct dc_link *link, const struct link_resource *link_res,
- enum signal_type signal);
-
-void dp_disable_link_phy_mst(struct dc_link *link, const struct link_resource *link_res,
- enum signal_type signal);
-
-bool dp_set_hw_training_pattern(
- struct dc_link *link,
- const struct link_resource *link_res,
- enum dc_dp_training_pattern pattern,
- uint32_t offset);
-
-void dp_set_hw_lane_settings(
- struct dc_link *link,
- const struct link_resource *link_res,
- const struct link_training_settings *link_settings,
- uint32_t offset);
-
-void dp_set_hw_test_pattern(
- struct dc_link *link,
- const struct link_resource *link_res,
- enum dp_test_pattern test_pattern,
- uint8_t *custom_pattern,
- uint32_t custom_pattern_size);
-
-void dp_retrain_link_dp_test(struct dc_link *link,
- struct dc_link_settings *link_setting,
- bool skip_video_pattern);
-#endif /* __DC_LINK_DP_H__ */
diff --git a/drivers/gpu/drm/amd/display/dc/inc/dc_link_dpia.h b/drivers/gpu/drm/amd/display/dc/inc/dc_link_dpia.h
deleted file mode 100644
index 39c1d1d07357..000000000000
--- a/drivers/gpu/drm/amd/display/dc/inc/dc_link_dpia.h
+++ /dev/null
@@ -1,105 +0,0 @@
-/* SPDX-License-Identifier: MIT */
-/*
- * Copyright 2021 Advanced Micro Devices, Inc.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice shall be included in
- * all copies or substantial portions of the Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
- * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
- * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
- * OTHER DEALINGS IN THE SOFTWARE.
- *
- * Authors: AMD
- *
- */
-
-#ifndef __DC_LINK_DPIA_H__
-#define __DC_LINK_DPIA_H__
-
-/* This module implements functionality for training DPIA links. */
-
-struct dc_link;
-struct dc_link_settings;
-
-/* The approximate time (us) it takes to transmit 9 USB4 DP clock sync packets. */
-#define DPIA_CLK_SYNC_DELAY 16000
-
-/* Extend interval between training status checks for manual testing. */
-#define DPIA_DEBUG_EXTENDED_AUX_RD_INTERVAL_US 60000000
-
-/** @note Can remove once DP tunneling registers in upstream include/drm/drm_dp_helper.h */
-/* DPCD DP Tunneling over USB4 */
-#define DP_TUNNELING_CAPABILITIES_SUPPORT 0xe000d
-#define DP_IN_ADAPTER_INFO 0xe000e
-#define DP_USB4_DRIVER_ID 0xe000f
-#define DP_USB4_ROUTER_TOPOLOGY_ID 0xe001b
-
-/* SET_CONFIG message types sent by driver. */
-enum dpia_set_config_type {
- DPIA_SET_CFG_SET_LINK = 0x01,
- DPIA_SET_CFG_SET_PHY_TEST_MODE = 0x05,
- DPIA_SET_CFG_SET_TRAINING = 0x18,
- DPIA_SET_CFG_SET_VSPE = 0x19
-};
-
-/* Training stages (TS) in SET_CONFIG(SET_TRAINING) message. */
-enum dpia_set_config_ts {
- DPIA_TS_DPRX_DONE = 0x00, /* Done training DPRX. */
- DPIA_TS_TPS1 = 0x01,
- DPIA_TS_TPS2 = 0x02,
- DPIA_TS_TPS3 = 0x03,
- DPIA_TS_TPS4 = 0x07,
- DPIA_TS_UFP_DONE = 0xff /* Done training DPTX-to-DPIA hop. */
-};
-
-/* SET_CONFIG message data associated with messages sent by driver. */
-union dpia_set_config_data {
- struct {
- uint8_t mode : 1;
- uint8_t reserved : 7;
- } set_link;
- struct {
- uint8_t stage;
- } set_training;
- struct {
- uint8_t swing : 2;
- uint8_t max_swing_reached : 1;
- uint8_t pre_emph : 2;
- uint8_t max_pre_emph_reached : 1;
- uint8_t reserved : 2;
- } set_vspe;
- uint8_t raw;
-};
-
-/* Read tunneling device capability from DPCD and update link capability
- * accordingly.
- */
-enum dc_status dpcd_get_tunneling_device_data(struct dc_link *link);
-
-/* Query hot plug status of USB4 DP tunnel.
- * Returns true if HPD high.
- */
-bool dc_link_dpia_query_hpd_status(struct dc_link *link);
-
-/* Train DP tunneling link for USB4 DPIA display endpoint.
- * DPIA equivalent of dc_link_dp_perfrorm_link_training.
- * Aborts link training upon detection of sink unplug.
- */
-enum link_training_result dc_link_dpia_perform_link_training(
- struct dc_link *link,
- const struct link_resource *link_res,
- const struct dc_link_settings *link_setting,
- bool skip_video_pattern);
-
-#endif /* __DC_LINK_DPIA_H__ */
diff --git a/drivers/gpu/drm/amd/display/dc/inc/hw/aux_engine.h b/drivers/gpu/drm/amd/display/dc/inc/hw/aux_engine.h
index 2ae630bf2aee..7254182b7c72 100644
--- a/drivers/gpu/drm/amd/display/dc/inc/hw/aux_engine.h
+++ b/drivers/gpu/drm/amd/display/dc/inc/hw/aux_engine.h
@@ -27,7 +27,6 @@
#define __DAL_AUX_ENGINE_H__
#include "dc_ddc_types.h"
-#include "include/i2caux_interface.h"
enum aux_return_code_type;
@@ -81,7 +80,12 @@ enum i2c_default_speed {
I2CAUX_DEFAULT_I2C_SW_SPEED = 50
};
-union aux_config;
+union aux_config {
+ struct {
+ uint32_t ALLOW_AUX_WHEN_HPD_LOW:1;
+ } bits;
+ uint32_t raw;
+};
struct aux_engine {
uint32_t inst;
diff --git a/drivers/gpu/drm/amd/display/dc/inc/hw/clk_mgr.h b/drivers/gpu/drm/amd/display/dc/inc/hw/clk_mgr.h
index 591ab1389e3b..bef843cc32a1 100644
--- a/drivers/gpu/drm/amd/display/dc/inc/hw/clk_mgr.h
+++ b/drivers/gpu/drm/amd/display/dc/inc/hw/clk_mgr.h
@@ -293,6 +293,9 @@ struct clk_mgr_funcs {
/* Get SMU present */
bool (*is_smu_present)(struct clk_mgr *clk_mgr);
+
+ int (*get_dispclk_from_dentist)(struct clk_mgr *clk_mgr_base);
+
};
struct clk_mgr {
diff --git a/drivers/gpu/drm/amd/display/dc/inc/hw/dccg.h b/drivers/gpu/drm/amd/display/dc/inc/hw/dccg.h
index ce006762f257..ad6acd1b34e1 100644
--- a/drivers/gpu/drm/amd/display/dc/inc/hw/dccg.h
+++ b/drivers/gpu/drm/amd/display/dc/inc/hw/dccg.h
@@ -148,18 +148,21 @@ struct dccg_funcs {
struct dccg *dccg,
int inst);
-void (*set_pixel_rate_div)(
- struct dccg *dccg,
- uint32_t otg_inst,
- enum pixel_rate_div k1,
- enum pixel_rate_div k2);
-
-void (*set_valid_pixel_rate)(
- struct dccg *dccg,
- int ref_dtbclk_khz,
- int otg_inst,
- int pixclk_khz);
+ void (*set_pixel_rate_div)(struct dccg *dccg,
+ uint32_t otg_inst,
+ enum pixel_rate_div k1,
+ enum pixel_rate_div k2);
+ void (*set_valid_pixel_rate)(
+ struct dccg *dccg,
+ int ref_dtbclk_khz,
+ int otg_inst,
+ int pixclk_khz);
+
+ void (*dpp_root_clock_control)(
+ struct dccg *dccg,
+ unsigned int dpp_inst,
+ bool clock_on);
};
#endif //__DAL_DCCG_H__
diff --git a/drivers/gpu/drm/amd/display/dc/inc/hw/dchubbub.h b/drivers/gpu/drm/amd/display/dc/inc/hw/dchubbub.h
index e7571c6f5ead..beb26dc8a07f 100644
--- a/drivers/gpu/drm/amd/display/dc/inc/hw/dchubbub.h
+++ b/drivers/gpu/drm/amd/display/dc/inc/hw/dchubbub.h
@@ -46,7 +46,7 @@ struct dcn_hubbub_wm_set {
uint32_t pte_meta_urgent;
uint32_t sr_enter;
uint32_t sr_exit;
- uint32_t dram_clk_chanage;
+ uint32_t dram_clk_change;
uint32_t usr_retrain;
uint32_t fclk_pstate_change;
};
@@ -167,10 +167,27 @@ struct hubbub_funcs {
void (*force_pstate_change_control)(struct hubbub *hubbub, bool force, bool allow);
void (*init_watermarks)(struct hubbub *hubbub);
+
+ /**
+ * @program_det_size:
+ *
+ * DE-Tile buffers (DET) is a memory that is used to convert the tiled
+ * data into linear, which the rest of the display can use to generate
+ * the graphics output. One of the main features of this component is
+ * that each pipe has a configurable DET buffer which means that when a
+ * pipe is not enabled, the device can assign the memory to other
+ * enabled pipes to try to be more efficient.
+ *
+ * DET logic is handled by dchubbub. Some ASICs provide a feature named
+ * Configurable Return Buffer (CRB) segments which can be allocated to
+ * compressed or detiled buffers.
+ */
void (*program_det_size)(struct hubbub *hubbub, int hubp_inst, unsigned det_buffer_size_in_kbyte);
void (*program_compbuf_size)(struct hubbub *hubbub, unsigned compbuf_size_kb, bool safe_to_increase);
void (*init_crb)(struct hubbub *hubbub);
void (*force_usr_retraining_allow)(struct hubbub *hubbub, bool allow);
+ void (*set_request_limit)(struct hubbub *hubbub, int memory_channel_count, int words_per_channel);
+ void (*dchubbub_init)(struct hubbub *hubbub);
};
struct hubbub {
diff --git a/drivers/gpu/drm/amd/display/dc/inc/hw/dmcu.h b/drivers/gpu/drm/amd/display/dc/inc/hw/dmcu.h
index 8df2765cce78..de3113ecbc77 100644
--- a/drivers/gpu/drm/amd/display/dc/inc/hw/dmcu.h
+++ b/drivers/gpu/drm/amd/display/dc/inc/hw/dmcu.h
@@ -56,20 +56,6 @@ struct dmcu {
bool auto_load_dmcu;
};
-#if defined(CONFIG_DRM_AMD_SECURE_DISPLAY)
-struct crc_region {
- uint16_t x_start;
- uint16_t y_start;
- uint16_t x_end;
- uint16_t y_end;
-};
-
-struct otg_phy_mux {
- uint8_t phy_output_num;
- uint8_t otg_output_num;
-};
-#endif
-
struct dmcu_funcs {
bool (*dmcu_init)(struct dmcu *dmcu);
bool (*load_iram)(struct dmcu *dmcu,
@@ -100,7 +86,7 @@ struct dmcu_funcs {
bool (*recv_edid_cea_ack)(struct dmcu *dmcu, int *offset);
#if defined(CONFIG_DRM_AMD_SECURE_DISPLAY)
void (*forward_crc_window)(struct dmcu *dmcu,
- struct crc_region *crc_win,
+ struct rect *rect,
struct otg_phy_mux *mux_mapping);
void (*stop_crc_win_update)(struct dmcu *dmcu,
struct otg_phy_mux *mux_mapping);
diff --git a/drivers/gpu/drm/amd/display/dc/inc/hw/dpp.h b/drivers/gpu/drm/amd/display/dc/inc/hw/dpp.h
index dcb80c4747b0..f4aa76e02518 100644
--- a/drivers/gpu/drm/amd/display/dc/inc/hw/dpp.h
+++ b/drivers/gpu/drm/amd/display/dc/inc/hw/dpp.h
@@ -70,23 +70,38 @@ struct dpp_input_csc_matrix {
};
static const struct dpp_input_csc_matrix __maybe_unused dpp_input_csc_matrix[] = {
- {COLOR_SPACE_SRGB,
- {0x2000, 0, 0, 0, 0, 0x2000, 0, 0, 0, 0, 0x2000, 0} },
- {COLOR_SPACE_SRGB_LIMITED,
- {0x2000, 0, 0, 0, 0, 0x2000, 0, 0, 0, 0, 0x2000, 0} },
- {COLOR_SPACE_YCBCR601,
- {0x2cdd, 0x2000, 0, 0xe991, 0xe926, 0x2000, 0xf4fd, 0x10ef,
- 0, 0x2000, 0x38b4, 0xe3a6} },
- {COLOR_SPACE_YCBCR601_LIMITED,
- {0x3353, 0x2568, 0, 0xe400, 0xe5dc, 0x2568, 0xf367, 0x1108,
- 0, 0x2568, 0x40de, 0xdd3a} },
- {COLOR_SPACE_YCBCR709,
- {0x3265, 0x2000, 0, 0xe6ce, 0xf105, 0x2000, 0xfa01, 0xa7d, 0,
- 0x2000, 0x3b61, 0xe24f} },
-
- {COLOR_SPACE_YCBCR709_LIMITED,
- {0x39a6, 0x2568, 0, 0xe0d6, 0xeedd, 0x2568, 0xf925, 0x9a8, 0,
- 0x2568, 0x43ee, 0xdbb2} }
+ { COLOR_SPACE_SRGB,
+ { 0x2000, 0, 0, 0,
+ 0, 0x2000, 0, 0,
+ 0, 0, 0x2000, 0 } },
+ { COLOR_SPACE_SRGB_LIMITED,
+ { 0x2000, 0, 0, 0,
+ 0, 0x2000, 0, 0,
+ 0, 0, 0x2000, 0 } },
+ { COLOR_SPACE_YCBCR601,
+ { 0x2cdd, 0x2000, 0, 0xe991,
+ 0xe926, 0x2000, 0xf4fd, 0x10ef,
+ 0, 0x2000, 0x38b4, 0xe3a6 } },
+ { COLOR_SPACE_YCBCR601_LIMITED,
+ { 0x3353, 0x2568, 0, 0xe400,
+ 0xe5dc, 0x2568, 0xf367, 0x1108,
+ 0, 0x2568, 0x40de, 0xdd3a } },
+ { COLOR_SPACE_YCBCR709,
+ { 0x3265, 0x2000, 0, 0xe6ce,
+ 0xf105, 0x2000, 0xfa01, 0xa7d,
+ 0, 0x2000, 0x3b61, 0xe24f } },
+ { COLOR_SPACE_YCBCR709_LIMITED,
+ { 0x39a6, 0x2568, 0, 0xe0d6,
+ 0xeedd, 0x2568, 0xf925, 0x9a8,
+ 0, 0x2568, 0x43ee, 0xdbb2 } },
+ { COLOR_SPACE_2020_YCBCR,
+ { 0x2F30, 0x2000, 0, 0xE869,
+ 0xEDB7, 0x2000, 0xFABC, 0xBC6,
+ 0, 0x2000, 0x3C34, 0xE1E6 } },
+ { COLOR_SPACE_2020_RGB_LIMITEDRANGE,
+ { 0x35E0, 0x255F, 0, 0xE2B3,
+ 0xEB20, 0x255F, 0xF9FD, 0xB1E,
+ 0, 0x255F, 0x44BD, 0xDB43 } }
};
struct dpp_grph_csc_adjustment {
diff --git a/drivers/gpu/drm/amd/display/dc/inc/hw/dwb.h b/drivers/gpu/drm/amd/display/dc/inc/hw/dwb.h
index b982be64c792..86b711dcc785 100644
--- a/drivers/gpu/drm/amd/display/dc/inc/hw/dwb.h
+++ b/drivers/gpu/drm/amd/display/dc/inc/hw/dwb.h
@@ -53,9 +53,7 @@ enum dwb_source {
/* DCN1.x, DCN2.x support 2 pipes */
enum dwb_pipe {
dwb_pipe0 = 0,
-#if defined(CONFIG_DRM_AMD_DC_DCN)
dwb_pipe1,
-#endif
dwb_pipe_max_num,
};
@@ -72,14 +70,11 @@ enum wbscl_coef_filter_type_sel {
};
-#if defined(CONFIG_DRM_AMD_DC_DCN)
enum dwb_boundary_mode {
DWBSCL_BOUNDARY_MODE_EDGE = 0,
DWBSCL_BOUNDARY_MODE_BLACK = 1
};
-#endif
-#if defined(CONFIG_DRM_AMD_DC_DCN)
enum dwb_output_csc_mode {
DWB_OUTPUT_CSC_DISABLE = 0,
DWB_OUTPUT_CSC_COEF_A = 1,
@@ -132,7 +127,6 @@ struct dwb_efc_display_settings {
unsigned int dwbOutputBlack; // 0 - Normal, 1 - Output Black
};
-#endif
struct dwb_warmup_params {
bool warmup_en; /* false: normal mode, true: enable pattern generator */
bool warmup_mode; /* false: 420, true: 444 */
@@ -208,7 +202,7 @@ struct dwbc_funcs {
struct dwb_warmup_params *warmup_params);
-#if defined(CONFIG_DRM_AMD_DC_DCN)
+#if defined(CONFIG_DRM_AMD_DC_FP)
void (*dwb_program_output_csc)(
struct dwbc *dwbc,
diff --git a/drivers/gpu/drm/amd/display/dc/inc/hw/hubp.h b/drivers/gpu/drm/amd/display/dc/inc/hw/hubp.h
index d5ea7545583e..7f3f9b69e903 100644
--- a/drivers/gpu/drm/amd/display/dc/inc/hw/hubp.h
+++ b/drivers/gpu/drm/amd/display/dc/inc/hw/hubp.h
@@ -146,7 +146,7 @@ struct hubp_funcs {
void (*set_blank)(struct hubp *hubp, bool blank);
void (*set_blank_regs)(struct hubp *hubp, bool blank);
-#ifdef CONFIG_DRM_AMD_DC_DCN
+#ifdef CONFIG_DRM_AMD_DC_FP
void (*phantom_hubp_post_enable)(struct hubp *hubp);
#endif
void (*set_hubp_blank_en)(struct hubp *hubp, bool blank);
@@ -203,6 +203,7 @@ struct hubp_funcs {
void (*hubp_soft_reset)(struct hubp *hubp, bool reset);
void (*hubp_update_force_pstate_disallow)(struct hubp *hubp, bool allow);
+ void (*hubp_update_force_cursor_pstate_disallow)(struct hubp *hubp, bool allow);
void (*hubp_update_mall_sel)(struct hubp *hubp, uint32_t mall_sel, bool c_cursor);
void (*hubp_prepare_subvp_buffering)(struct hubp *hubp, bool enable);
diff --git a/drivers/gpu/drm/amd/display/dc/inc/hw/hw_shared.h b/drivers/gpu/drm/amd/display/dc/inc/hw/hw_shared.h
index cd2be729846b..b95ae9596c3b 100644
--- a/drivers/gpu/drm/amd/display/dc/inc/hw/hw_shared.h
+++ b/drivers/gpu/drm/amd/display/dc/inc/hw/hw_shared.h
@@ -35,6 +35,13 @@
******************************************************************************/
#define MAX_AUDIOS 7
+
+/**
+ * @MAX_PIPES:
+ *
+ * Every ASIC support a fixed number of pipes; MAX_PIPES defines a large number
+ * to be used inside loops and for determining array sizes.
+ */
#define MAX_PIPES 6
#define MAX_DIG_LINK_ENCODERS 7
#define MAX_DWB_PIPES 1
@@ -268,20 +275,6 @@ enum dc_lut_mode {
LUT_RAM_B
};
-enum symclk_state {
- SYMCLK_OFF_TX_OFF,
- SYMCLK_ON_TX_ON,
- SYMCLK_ON_TX_OFF,
-};
-
-struct phy_state {
- struct {
- uint8_t otg : 1;
- uint8_t reserved : 7;
- } symclk_ref_cnts;
- enum symclk_state symclk_state;
-};
-
/**
* speakersToChannels
*
diff --git a/drivers/gpu/drm/amd/display/dc/inc/hw/link_encoder.h b/drivers/gpu/drm/amd/display/dc/inc/hw/link_encoder.h
index ec572a9e4054..dbe7afa9d3a2 100644
--- a/drivers/gpu/drm/amd/display/dc/inc/hw/link_encoder.h
+++ b/drivers/gpu/drm/amd/display/dc/inc/hw/link_encoder.h
@@ -75,58 +75,6 @@ struct encoder_feature_support {
bool fec_supported;
};
-union dpcd_psr_configuration {
- struct {
- unsigned char ENABLE : 1;
- unsigned char TRANSMITTER_ACTIVE_IN_PSR : 1;
- unsigned char CRC_VERIFICATION : 1;
- unsigned char FRAME_CAPTURE_INDICATION : 1;
- /* For eDP 1.4, PSR v2*/
- unsigned char LINE_CAPTURE_INDICATION : 1;
- /* For eDP 1.4, PSR v2*/
- unsigned char IRQ_HPD_WITH_CRC_ERROR : 1;
- unsigned char ENABLE_PSR2 : 1;
- /* For eDP 1.5, PSR v2 w/ early transport */
- unsigned char EARLY_TRANSPORT_ENABLE : 1;
- } bits;
- unsigned char raw;
-};
-
-union dpcd_alpm_configuration {
- struct {
- unsigned char ENABLE : 1;
- unsigned char IRQ_HPD_ENABLE : 1;
- unsigned char RESERVED : 6;
- } bits;
- unsigned char raw;
-};
-
-union dpcd_sink_active_vtotal_control_mode {
- struct {
- unsigned char ENABLE : 1;
- unsigned char RESERVED : 7;
- } bits;
- unsigned char raw;
-};
-
-union psr_error_status {
- struct {
- unsigned char LINK_CRC_ERROR :1;
- unsigned char RFB_STORAGE_ERROR :1;
- unsigned char VSC_SDP_ERROR :1;
- unsigned char RESERVED :5;
- } bits;
- unsigned char raw;
-};
-
-union psr_sink_psr_status {
- struct {
- unsigned char SINK_SELF_REFRESH_STATUS :3;
- unsigned char RESERVED :5;
- } bits;
- unsigned char raw;
-};
-
struct link_encoder {
const struct link_encoder_funcs *funcs;
int32_t aux_channel_offset;
diff --git a/drivers/gpu/drm/amd/display/dc/inc/hw/stream_encoder.h b/drivers/gpu/drm/amd/display/dc/inc/hw/stream_encoder.h
index 42afa1952890..c4fbbf08ef86 100644
--- a/drivers/gpu/drm/amd/display/dc/inc/hw/stream_encoder.h
+++ b/drivers/gpu/drm/amd/display/dc/inc/hw/stream_encoder.h
@@ -30,7 +30,6 @@
#include "audio_types.h"
#include "hw_shared.h"
-#include "dc_link.h"
struct dc_bios;
struct dc_context;
@@ -72,6 +71,12 @@ enum dynamic_metadata_mode {
dmdata_dolby_vision
};
+struct enc_sdp_line_num {
+ /* Adaptive Sync SDP */
+ bool adaptive_sync_line_num_valid;
+ uint32_t adaptive_sync_line_num;
+};
+
struct encoder_info_frame {
/* auxiliary video information */
struct dc_info_packet avi;
@@ -85,6 +90,9 @@ struct encoder_info_frame {
struct dc_info_packet vsc;
/* HDR Static MetaData */
struct dc_info_packet hdrsmd;
+ /* Adaptive Sync SDP*/
+ struct dc_info_packet adaptive_sync;
+ struct enc_sdp_line_num sdp_line_num;
};
struct encoder_unblank_param {
@@ -154,6 +162,10 @@ struct stream_encoder_funcs {
void (*stop_hdmi_info_packets)(
struct stream_encoder *enc);
+ void (*update_dp_info_packets_sdp_line_num)(
+ struct stream_encoder *enc,
+ struct encoder_info_frame *info_frame);
+
void (*update_dp_info_packets)(
struct stream_encoder *enc,
const struct encoder_info_frame *info_frame);
@@ -243,6 +255,9 @@ struct stream_encoder_funcs {
uint32_t hubp_requestor_id,
enum dynamic_metadata_mode dmdata_mode);
+ /**
+ * @dp_set_odm_combine: Sets up DP stream encoder for ODM.
+ */
void (*dp_set_odm_combine)(
struct stream_encoder *enc,
bool odm_combine);
@@ -299,6 +314,10 @@ struct hpo_dp_stream_encoder_funcs {
bool compressed_format,
bool double_buffer_en);
+ void (*update_dp_info_packets_sdp_line_num)(
+ struct hpo_dp_stream_encoder *enc,
+ struct encoder_info_frame *info_frame);
+
void (*update_dp_info_packets)(
struct hpo_dp_stream_encoder *enc,
const struct encoder_info_frame *info_frame);
@@ -317,9 +336,6 @@ struct hpo_dp_stream_encoder_funcs {
uint32_t stream_enc_inst,
uint32_t link_enc_inst);
- void (*audio_mute_control)(
- struct hpo_dp_stream_encoder *enc, bool mute);
-
void (*dp_audio_setup)(
struct hpo_dp_stream_encoder *enc,
unsigned int az_inst,
diff --git a/drivers/gpu/drm/amd/display/dc/inc/hw/timing_generator.h b/drivers/gpu/drm/amd/display/dc/inc/hw/timing_generator.h
index 25a1df45b264..c21e7ffd5bd0 100644
--- a/drivers/gpu/drm/amd/display/dc/inc/hw/timing_generator.h
+++ b/drivers/gpu/drm/amd/display/dc/inc/hw/timing_generator.h
@@ -182,9 +182,10 @@ struct timing_generator_funcs {
bool (*enable_crtc)(struct timing_generator *tg);
bool (*disable_crtc)(struct timing_generator *tg);
-#ifdef CONFIG_DRM_AMD_DC_DCN
+#ifdef CONFIG_DRM_AMD_DC_FP
void (*phantom_crtc_post_enable)(struct timing_generator *tg);
#endif
+ void (*disable_phantom_crtc)(struct timing_generator *tg);
bool (*immediate_disable_crtc)(struct timing_generator *tg);
bool (*is_counter_moving)(struct timing_generator *tg);
void (*get_position)(struct timing_generator *tg,
@@ -301,6 +302,11 @@ struct timing_generator_funcs {
void (*get_dsc_status)(struct timing_generator *optc,
uint32_t *dsc_mode);
void (*set_odm_bypass)(struct timing_generator *optc, const struct dc_crtc_timing *dc_crtc_timing);
+
+ /**
+ * @set_odm_combine: Set up the ODM block to read from the correct
+ * OPP(s) and turn on/off ODM memory.
+ */
void (*set_odm_combine)(struct timing_generator *optc, int *opp_id, int opp_cnt,
struct dc_crtc_timing *timing);
void (*set_h_timing_div_manual_mode)(struct timing_generator *optc, bool manual_mode);
@@ -325,6 +331,7 @@ struct timing_generator_funcs {
uint32_t vtotal_change_limit);
void (*init_odm)(struct timing_generator *tg);
+ void (*wait_drr_doublebuffer_pending_clear)(struct timing_generator *tg);
};
#endif
diff --git a/drivers/gpu/drm/amd/display/dc/inc/hw_sequencer.h b/drivers/gpu/drm/amd/display/dc/inc/hw_sequencer.h
index d04b68dad413..88ac723d10aa 100644
--- a/drivers/gpu/drm/amd/display/dc/inc/hw_sequencer.h
+++ b/drivers/gpu/drm/amd/display/dc/inc/hw_sequencer.h
@@ -263,8 +263,10 @@ struct hw_sequencer_funcs {
void (*update_phantom_vp_position)(struct dc *dc,
struct dc_state *context,
struct pipe_ctx *phantom_pipe);
+ void (*apply_update_flags_for_phantom)(struct pipe_ctx *phantom_pipe);
void (*commit_subvp_config)(struct dc *dc, struct dc_state *context);
+ void (*enable_phantom_streams)(struct dc *dc, struct dc_state *context);
void (*subvp_pipe_control_lock)(struct dc *dc,
struct dc_state *context,
bool lock,
diff --git a/drivers/gpu/drm/amd/display/dc/inc/hw_sequencer_private.h b/drivers/gpu/drm/amd/display/dc/inc/hw_sequencer_private.h
index a4d61bb724b6..4513544559be 100644
--- a/drivers/gpu/drm/amd/display/dc/inc/hw_sequencer_private.h
+++ b/drivers/gpu/drm/amd/display/dc/inc/hw_sequencer_private.h
@@ -115,6 +115,10 @@ struct hwseq_private_funcs {
void (*plane_atomic_disable)(struct dc *dc, struct pipe_ctx *pipe_ctx);
void (*enable_power_gating_plane)(struct dce_hwseq *hws,
bool enable);
+ void (*dpp_root_clock_control)(
+ struct dce_hwseq *hws,
+ unsigned int dpp_inst,
+ bool clock_on);
void (*dpp_pg_control)(struct dce_hwseq *hws,
unsigned int dpp_inst,
bool power_on);
@@ -148,9 +152,9 @@ struct hwseq_private_funcs {
void (*PLAT_58856_wa)(struct dc_state *context,
struct pipe_ctx *pipe_ctx);
void (*setup_hpo_hw_control)(const struct dce_hwseq *hws, bool enable);
-#ifdef CONFIG_DRM_AMD_DC_DCN
+#ifdef CONFIG_DRM_AMD_DC_FP
void (*program_mall_pipe_config)(struct dc *dc, struct dc_state *context);
- void (*subvp_update_force_pstate)(struct dc *dc, struct dc_state *context);
+ void (*update_force_pstate)(struct dc *dc, struct dc_state *context);
void (*update_mall_sel)(struct dc *dc, struct dc_state *context);
unsigned int (*calculate_dccg_k1_k2_values)(struct pipe_ctx *pipe_ctx,
unsigned int *k1_div,
diff --git a/drivers/gpu/drm/amd/display/dc/inc/link.h b/drivers/gpu/drm/amd/display/dc/inc/link.h
new file mode 100644
index 000000000000..f839494d59d8
--- /dev/null
+++ b/drivers/gpu/drm/amd/display/dc/inc/link.h
@@ -0,0 +1,319 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ * Authors: AMD
+ *
+ */
+
+#ifndef __DC_LINK_H__
+#define __DC_LINK_H__
+
+/* FILE POLICY AND INTENDED USAGE:
+ *
+ * This header defines link component function interfaces aka link_service.
+ * link_service provides the only entry point to link functions with function
+ * pointer style. This header is strictly private in dc and should never be
+ * included by DM because it exposes too much dc detail including all dc
+ * private types defined in core_types.h. Otherwise it will break DM - DC
+ * encapsulation and turn DM into a maintenance nightmare.
+ *
+ * The following shows a link component relation map.
+ *
+ * DM to DC:
+ * DM includes dc.h
+ * dc_link_exports.c or other dc files implement dc.h
+ *
+ * DC to Link:
+ * dc_link_exports.c or other dc files include link.h
+ * link_factory.c implements link.h
+ *
+ * Link sub-component to Link sub-component:
+ * link_factory.c includes --> link_xxx.h
+ * link_xxx.c implements link_xxx.h
+
+ * As you can see if you ever need to add a new dc link function and call it on
+ * DM/dc side, it is very difficult because you will need layers of translation.
+ * The most appropriate approach to implement new requirements on DM/dc side is
+ * to extend or generalize the functionality of existing link function
+ * interfaces so minimal modification is needed outside link component to
+ * achieve your new requirements. This approach reduces or even eliminates the
+ * effort needed outside link component to support a new link feature. This also
+ * reduces code discrepancy among DMs to support the same link feature. If we
+ * test full code path on one version of DM, and there is no feature specific
+ * modification required on other DMs, then we can have higher confidence that
+ * the feature will run on other DMs and produce the same result. The following
+ * are some good examples to start with:
+ *
+ * - detect_link --> to add new link detection or capability retrieval routines
+ *
+ * - validate_mode_timing --> to add new timing validation conditions
+ *
+ * - set_dpms_on/set_dpms_off --> to include new link enablement sequences
+ *
+ * If you must add new link functions, you will need to:
+ * 1. declare the function pointer here under the suitable commented category.
+ * 2. Implement your function in the suitable link_xxx.c file.
+ * 3. Assign the function to link_service in link_factory.c
+ * 4. NEVER include link_xxx.h headers outside link component.
+ * 5. NEVER include link.h on DM side.
+ */
+#include "core_types.h"
+
+struct link_service *link_create_link_service(void);
+void link_destroy_link_service(struct link_service **link_srv);
+
+struct link_init_data {
+ const struct dc *dc;
+ struct dc_context *ctx; /* TODO: remove 'dal' when DC is complete. */
+ uint32_t connector_index; /* this will be mapped to the HPD pins */
+ uint32_t link_index; /* this is mapped to DAL display_index
+ TODO: remove it when DC is complete. */
+ bool is_dpia_link;
+};
+
+struct ddc_service_init_data {
+ struct graphics_object_id id;
+ struct dc_context *ctx;
+ struct dc_link *link;
+ bool is_dpia_link;
+};
+
+struct link_service {
+ /************************** Factory ***********************************/
+ struct dc_link *(*create_link)(
+ const struct link_init_data *init_params);
+ void (*destroy_link)(struct dc_link **link);
+
+
+ /************************** Detection *********************************/
+ bool (*detect_link)(struct dc_link *link, enum dc_detect_reason reason);
+ bool (*detect_connection_type)(struct dc_link *link,
+ enum dc_connection_type *type);
+ struct dc_sink *(*add_remote_sink)(
+ struct dc_link *link,
+ const uint8_t *edid,
+ int len,
+ struct dc_sink_init_data *init_data);
+ void (*remove_remote_sink)(struct dc_link *link, struct dc_sink *sink);
+ bool (*get_hpd_state)(struct dc_link *link);
+ struct gpio *(*get_hpd_gpio)(struct dc_bios *dcb,
+ struct graphics_object_id link_id,
+ struct gpio_service *gpio_service);
+ void (*enable_hpd)(const struct dc_link *link);
+ void (*disable_hpd)(const struct dc_link *link);
+ void (*enable_hpd_filter)(struct dc_link *link, bool enable);
+ bool (*reset_cur_dp_mst_topology)(struct dc_link *link);
+ const struct dc_link_status *(*get_status)(const struct dc_link *link);
+ bool (*is_hdcp1x_supported)(struct dc_link *link,
+ enum signal_type signal);
+ bool (*is_hdcp2x_supported)(struct dc_link *link,
+ enum signal_type signal);
+ void (*clear_dprx_states)(struct dc_link *link);
+
+
+ /*************************** Resource *********************************/
+ void (*get_cur_res_map)(const struct dc *dc, uint32_t *map);
+ void (*restore_res_map)(const struct dc *dc, uint32_t *map);
+ void (*get_cur_link_res)(const struct dc_link *link,
+ struct link_resource *link_res);
+
+
+ /*************************** Validation *******************************/
+ enum dc_status (*validate_mode_timing)(
+ const struct dc_stream_state *stream,
+ struct dc_link *link,
+ const struct dc_crtc_timing *timing);
+ uint32_t (*dp_link_bandwidth_kbps)(
+ const struct dc_link *link,
+ const struct dc_link_settings *link_settings);
+ bool (*validate_dpia_bandwidth)(
+ const struct dc_stream_state *stream,
+ const unsigned int num_streams);
+
+
+ /*************************** DPMS *************************************/
+ void (*set_dpms_on)(struct dc_state *state, struct pipe_ctx *pipe_ctx);
+ void (*set_dpms_off)(struct pipe_ctx *pipe_ctx);
+ void (*resume)(struct dc_link *link);
+ void (*blank_all_dp_displays)(struct dc *dc);
+ void (*blank_all_edp_displays)(struct dc *dc);
+ void (*blank_dp_stream)(struct dc_link *link, bool hw_init);
+ enum dc_status (*increase_mst_payload)(
+ struct pipe_ctx *pipe_ctx, uint32_t req_pbn);
+ enum dc_status (*reduce_mst_payload)(
+ struct pipe_ctx *pipe_ctx, uint32_t req_pbn);
+ void (*set_dsc_on_stream)(struct pipe_ctx *pipe_ctx, bool enable);
+ bool (*set_dsc_enable)(struct pipe_ctx *pipe_ctx, bool enable);
+ bool (*update_dsc_config)(struct pipe_ctx *pipe_ctx);
+
+
+ /*************************** DDC **************************************/
+ struct ddc_service *(*create_ddc_service)(
+ struct ddc_service_init_data *ddc_init_data);
+ void (*destroy_ddc_service)(struct ddc_service **ddc);
+ bool (*query_ddc_data)(
+ struct ddc_service *ddc,
+ uint32_t address,
+ uint8_t *write_buf,
+ uint32_t write_size,
+ uint8_t *read_buf,
+ uint32_t read_size);
+ int (*aux_transfer_raw)(struct ddc_service *ddc,
+ struct aux_payload *payload,
+ enum aux_return_code_type *operation_result);
+ bool (*aux_transfer_with_retries_no_mutex)(struct ddc_service *ddc,
+ struct aux_payload *payload);
+ bool (*is_in_aux_transaction_mode)(struct ddc_service *ddc);
+ uint32_t (*get_aux_defer_delay)(struct ddc_service *ddc);
+
+
+ /*************************** DP Capability ****************************/
+ bool (*dp_is_sink_present)(struct dc_link *link);
+ bool (*dp_is_fec_supported)(const struct dc_link *link);
+ bool (*dp_is_128b_132b_signal)(struct pipe_ctx *pipe_ctx);
+ bool (*dp_get_max_link_enc_cap)(const struct dc_link *link,
+ struct dc_link_settings *max_link_enc_cap);
+ const struct dc_link_settings *(*dp_get_verified_link_cap)(
+ const struct dc_link *link);
+ enum dp_link_encoding (*dp_get_encoding_format)(
+ const struct dc_link_settings *link_settings);
+ bool (*dp_should_enable_fec)(const struct dc_link *link);
+ bool (*dp_decide_link_settings)(
+ struct dc_stream_state *stream,
+ struct dc_link_settings *link_setting);
+ enum dp_link_encoding (*mst_decide_link_encoding_format)(
+ const struct dc_link *link);
+ bool (*edp_decide_link_settings)(struct dc_link *link,
+ struct dc_link_settings *link_setting, uint32_t req_bw);
+ uint32_t (*bw_kbps_from_raw_frl_link_rate_data)(uint8_t bw);
+ bool (*dp_overwrite_extended_receiver_cap)(struct dc_link *link);
+ enum lttpr_mode (*dp_decide_lttpr_mode)(struct dc_link *link,
+ struct dc_link_settings *link_setting);
+
+
+ /*************************** DP DPIA/PHY ******************************/
+ int (*dpia_handle_usb4_bandwidth_allocation_for_link)(
+ struct dc_link *link, int peak_bw);
+ void (*dpia_handle_bw_alloc_response)(
+ struct dc_link *link, uint8_t bw, uint8_t result);
+ void (*dp_set_drive_settings)(
+ struct dc_link *link,
+ const struct link_resource *link_res,
+ struct link_training_settings *lt_settings);
+ void (*dpcd_write_rx_power_ctrl)(struct dc_link *link, bool on);
+
+
+ /*************************** DP IRQ Handler ***************************/
+ bool (*dp_parse_link_loss_status)(
+ struct dc_link *link,
+ union hpd_irq_data *hpd_irq_dpcd_data);
+ bool (*dp_should_allow_hpd_rx_irq)(const struct dc_link *link);
+ void (*dp_handle_link_loss)(struct dc_link *link);
+ enum dc_status (*dp_read_hpd_rx_irq_data)(
+ struct dc_link *link,
+ union hpd_irq_data *irq_data);
+ bool (*dp_handle_hpd_rx_irq)(struct dc_link *link,
+ union hpd_irq_data *out_hpd_irq_dpcd_data,
+ bool *out_link_loss,
+ bool defer_handling, bool *has_left_work);
+
+
+ /*************************** eDP Panel Control ************************/
+ void (*edp_panel_backlight_power_on)(
+ struct dc_link *link, bool wait_for_hpd);
+ int (*edp_get_backlight_level)(const struct dc_link *link);
+ bool (*edp_get_backlight_level_nits)(struct dc_link *link,
+ uint32_t *backlight_millinits_avg,
+ uint32_t *backlight_millinits_peak);
+ bool (*edp_set_backlight_level)(const struct dc_link *link,
+ uint32_t backlight_pwm_u16_16,
+ uint32_t frame_ramp);
+ bool (*edp_set_backlight_level_nits)(struct dc_link *link,
+ bool isHDR,
+ uint32_t backlight_millinits,
+ uint32_t transition_time_in_ms);
+ int (*edp_get_target_backlight_pwm)(const struct dc_link *link);
+ bool (*edp_get_psr_state)(
+ const struct dc_link *link, enum dc_psr_state *state);
+ bool (*edp_set_psr_allow_active)(
+ struct dc_link *link,
+ const bool *allow_active,
+ bool wait,
+ bool force_static,
+ const unsigned int *power_opts);
+ bool (*edp_setup_psr)(struct dc_link *link,
+ const struct dc_stream_state *stream,
+ struct psr_config *psr_config,
+ struct psr_context *psr_context);
+ bool (*edp_set_sink_vtotal_in_psr_active)(
+ const struct dc_link *link,
+ uint16_t psr_vtotal_idle,
+ uint16_t psr_vtotal_su);
+ void (*edp_get_psr_residency)(
+ const struct dc_link *link, uint32_t *residency);
+ bool (*edp_wait_for_t12)(struct dc_link *link);
+ bool (*edp_is_ilr_optimization_required)(struct dc_link *link,
+ struct dc_crtc_timing *crtc_timing);
+ bool (*edp_backlight_enable_aux)(struct dc_link *link, bool enable);
+ void (*edp_add_delay_for_T9)(struct dc_link *link);
+ bool (*edp_receiver_ready_T9)(struct dc_link *link);
+ bool (*edp_receiver_ready_T7)(struct dc_link *link);
+ bool (*edp_power_alpm_dpcd_enable)(struct dc_link *link, bool enable);
+
+
+ /*************************** DP CTS ************************************/
+ void (*dp_handle_automated_test)(struct dc_link *link);
+ bool (*dp_set_test_pattern)(
+ struct dc_link *link,
+ enum dp_test_pattern test_pattern,
+ enum dp_test_pattern_color_space test_pattern_color_space,
+ const struct link_training_settings *p_link_settings,
+ const unsigned char *p_custom_pattern,
+ unsigned int cust_pattern_size);
+ void (*dp_set_preferred_link_settings)(struct dc *dc,
+ struct dc_link_settings *link_setting,
+ struct dc_link *link);
+ void (*dp_set_preferred_training_settings)(struct dc *dc,
+ struct dc_link_settings *link_setting,
+ struct dc_link_training_overrides *lt_overrides,
+ struct dc_link *link,
+ bool skip_immediate_retrain);
+
+
+ /*************************** DP Trace *********************************/
+ bool (*dp_trace_is_initialized)(struct dc_link *link);
+ void (*dp_trace_set_is_logged_flag)(struct dc_link *link,
+ bool in_detection,
+ bool is_logged);
+ bool (*dp_trace_is_logged)(struct dc_link *link, bool in_detection);
+ unsigned long long (*dp_trace_get_lt_end_timestamp)(
+ struct dc_link *link, bool in_detection);
+ const struct dp_trace_lt_counts *(*dp_trace_get_lt_counts)(
+ struct dc_link *link, bool in_detection);
+ unsigned int (*dp_trace_get_link_loss_count)(struct dc_link *link);
+ void (*dp_trace_set_edp_power_timestamp)(struct dc_link *link,
+ bool power_up);
+ uint64_t (*dp_trace_get_edp_poweron_timestamp)(struct dc_link *link);
+ uint64_t (*dp_trace_get_edp_poweroff_timestamp)(struct dc_link *link);
+ void (*dp_trace_source_sequence)(
+ struct dc_link *link, uint8_t dp_test_mode);
+};
+#endif /* __DC_LINK_HPD_H__ */
diff --git a/drivers/gpu/drm/amd/display/dc/inc/link_hwss.h b/drivers/gpu/drm/amd/display/dc/inc/link_hwss.h
index 89964c980b87..0f69946cce9f 100644
--- a/drivers/gpu/drm/amd/display/dc/inc/link_hwss.h
+++ b/drivers/gpu/drm/amd/display/dc/inc/link_hwss.h
@@ -38,6 +38,7 @@ struct link_resource;
struct pipe_ctx;
struct encoder_set_dp_phy_pattern_param;
struct link_mst_stream_allocation_table;
+struct audio_output;
struct link_hwss_ext {
/* function pointers below may require to check for NULL if caller
@@ -79,6 +80,10 @@ struct link_hwss {
void (*disable_link_output)(struct dc_link *link,
const struct link_resource *link_res,
enum signal_type signal);
+ void (*setup_audio_output)(struct pipe_ctx *pipe_ctx,
+ struct audio_output *audio_output, uint32_t audio_inst);
+ void (*enable_audio_packet)(struct pipe_ctx *pipe_ctx);
+ void (*disable_audio_packet)(struct pipe_ctx *pipe_ctx);
};
#endif /* __DC_LINK_HWSS_H__ */
diff --git a/drivers/gpu/drm/amd/display/dc/inc/resource.h b/drivers/gpu/drm/amd/display/dc/inc/resource.h
index 5040836f404d..eaeb684c8a48 100644
--- a/drivers/gpu/drm/amd/display/dc/inc/resource.h
+++ b/drivers/gpu/drm/amd/display/dc/inc/resource.h
@@ -165,10 +165,6 @@ bool resource_validate_attach_surfaces(
struct dc_state *context,
const struct resource_pool *pool);
-void resource_validate_ctx_update_pointer_after_copy(
- const struct dc_state *src_ctx,
- struct dc_state *dst_ctx);
-
enum dc_status resource_map_clock_resources(
const struct dc *dc,
struct dc_state *context,
@@ -205,7 +201,7 @@ bool get_temp_dp_link_res(struct dc_link *link,
struct link_resource *link_res,
struct dc_link_settings *link_settings);
-#if defined(CONFIG_DRM_AMD_DC_DCN)
+#if defined(CONFIG_DRM_AMD_DC_FP)
struct hpo_dp_link_encoder *resource_get_hpo_dp_link_enc_for_det_lt(
const struct resource_context *res_ctx,
const struct resource_pool *pool,
@@ -236,4 +232,13 @@ bool dc_resource_acquire_secondary_pipe_for_mpc_odm(
struct pipe_ctx *pri_pipe,
struct pipe_ctx *sec_pipe,
bool odm);
+
+/* A test harness interface that modifies dp encoder resources in the given dc
+ * state and bypasses the need to revalidate. The interface assumes that the
+ * test harness interface is called with pre-validated link config stored in the
+ * pipe_ctx and updates dp encoder resources according to the link config.
+ */
+enum dc_status update_dp_encoder_resources_for_test_harness(const struct dc *dc,
+ struct dc_state *context,
+ struct pipe_ctx *pipe_ctx);
#endif /* DRIVERS_GPU_DRM_AMD_DC_DEV_DC_INC_RESOURCE_H_ */
diff --git a/drivers/gpu/drm/amd/display/dc/irq/dcn201/irq_service_dcn201.c b/drivers/gpu/drm/amd/display/dc/irq/dcn201/irq_service_dcn201.c
index 45f99351a0ab..3c7cb3dc046b 100644
--- a/drivers/gpu/drm/amd/display/dc/irq/dcn201/irq_service_dcn201.c
+++ b/drivers/gpu/drm/amd/display/dc/irq/dcn201/irq_service_dcn201.c
@@ -28,20 +28,19 @@
#include "include/logger_interface.h"
#include "../dce110/irq_service_dce110.h"
+#include "irq_service_dcn201.h"
#include "dcn/dcn_2_0_3_offset.h"
#include "dcn/dcn_2_0_3_sh_mask.h"
#include "cyan_skillfish_ip_offset.h"
#include "soc15_hw_ip.h"
-
-#include "irq_service_dcn201.h"
-
#include "ivsrcid/dcn/irqsrcs_dcn_1_0.h"
-static enum dc_irq_source to_dal_irq_source_dcn201(struct irq_service *irq_service,
- uint32_t src_id,
- uint32_t ext_id)
+static enum dc_irq_source to_dal_irq_source_dcn201(
+ struct irq_service *irq_service,
+ uint32_t src_id,
+ uint32_t ext_id)
{
switch (src_id) {
case DCN_1_0__SRCID__DC_D1_OTG_VSTARTUP:
@@ -79,7 +78,6 @@ static enum dc_irq_source to_dal_irq_source_dcn201(struct irq_service *irq_servi
default:
return DC_IRQ_SOURCE_INVALID;
}
- return DC_IRQ_SOURCE_INVALID;
}
static bool hpd_ack(
diff --git a/drivers/gpu/drm/amd/display/dc/irq/dcn201/irq_service_dcn201.h b/drivers/gpu/drm/amd/display/dc/irq/dcn201/irq_service_dcn201.h
index 8e27c5e219a3..0cfd2f2d62e8 100644
--- a/drivers/gpu/drm/amd/display/dc/irq/dcn201/irq_service_dcn201.h
+++ b/drivers/gpu/drm/amd/display/dc/irq/dcn201/irq_service_dcn201.h
@@ -1,5 +1,5 @@
/*
- * Copyright 2018 Advanced Micro Devices, Inc.
+ * Copyright 2022 Advanced Micro Devices, Inc.
*
* Permission is hereby granted, free of charge, to any person obtaining a
* copy of this software and associated documentation files (the "Software"),
diff --git a/drivers/gpu/drm/amd/display/dc/irq/irq_service.c b/drivers/gpu/drm/amd/display/dc/irq/irq_service.c
index 7bad39bba86b..d100edaedbbb 100644
--- a/drivers/gpu/drm/amd/display/dc/irq/irq_service.c
+++ b/drivers/gpu/drm/amd/display/dc/irq/irq_service.c
@@ -112,8 +112,15 @@ bool dal_irq_service_set(
dal_irq_service_ack(irq_service, source);
- if (info->funcs && info->funcs->set)
+ if (info->funcs && info->funcs->set) {
+ if (info->funcs->set == dal_irq_service_dummy_set) {
+ DC_LOG_WARNING("%s: src: %d, st: %d\n", __func__,
+ source, enable);
+ ASSERT(0);
+ }
+
return info->funcs->set(irq_service, info, enable);
+ }
dal_irq_service_set_generic(irq_service, info, enable);
@@ -146,8 +153,14 @@ bool dal_irq_service_ack(
return false;
}
- if (info->funcs && info->funcs->ack)
+ if (info->funcs && info->funcs->ack) {
+ if (info->funcs->ack == dal_irq_service_dummy_ack) {
+ DC_LOG_WARNING("%s: src: %d\n", __func__, source);
+ ASSERT(0);
+ }
+
return info->funcs->ack(irq_service, info);
+ }
dal_irq_service_ack_generic(irq_service, info);
diff --git a/drivers/gpu/drm/amd/display/dc/link/Makefile b/drivers/gpu/drm/amd/display/dc/link/Makefile
index 054c2a727eb2..a52b56e2859e 100644
--- a/drivers/gpu/drm/amd/display/dc/link/Makefile
+++ b/drivers/gpu/drm/amd/display/dc/link/Makefile
@@ -23,8 +23,41 @@
# It abstracts the control and status of back end pipe such as DIO, HPO, DPIA,
# PHY, HPD, DDC and etc).
-LINK = link_hwss_dio.o link_hwss_dpia.o link_hwss_hpo_dp.o link_dp_trace.o
+LINK = link_detection.o link_dpms.o link_factory.o link_resource.o \
+link_validation.o
-AMD_DAL_LINK = $(addprefix $(AMDDALPATH)/dc/link/,$(LINK))
+AMD_DAL_LINK = $(addprefix $(AMDDALPATH)/dc/link/, \
+$(LINK))
AMD_DISPLAY_FILES += $(AMD_DAL_LINK)
+###############################################################################
+# accessories
+###############################################################################
+LINK_ACCESSORIES = link_dp_trace.o link_dp_cts.o link_fpga.o
+
+AMD_DAL_LINK_ACCESSORIES = $(addprefix $(AMDDALPATH)/dc/link/accessories/, \
+$(LINK_ACCESSORIES))
+
+AMD_DISPLAY_FILES += $(AMD_DAL_LINK_ACCESSORIES)
+###############################################################################
+# hwss
+###############################################################################
+LINK_HWSS = link_hwss_dio.o link_hwss_dpia.o link_hwss_hpo_dp.o
+
+AMD_DAL_LINK_HWSS = $(addprefix $(AMDDALPATH)/dc/link/hwss/, \
+$(LINK_HWSS))
+
+AMD_DISPLAY_FILES += $(AMD_DAL_LINK_HWSS)
+###############################################################################
+# protocols
+###############################################################################
+LINK_PROTOCOLS = link_hpd.o link_ddc.o link_dpcd.o link_dp_dpia.o \
+link_dp_training.o link_dp_training_8b_10b.o link_dp_training_128b_132b.o \
+link_dp_training_dpia.o link_dp_training_auxless.o \
+link_dp_training_fixed_vs_pe_retimer.o link_dp_phy.o link_dp_capability.o \
+link_edp_panel_control.o link_dp_irq_handler.o link_dp_dpia_bw.o
+
+AMD_DAL_LINK_PROTOCOLS = $(addprefix $(AMDDALPATH)/dc/link/protocols/, \
+$(LINK_PROTOCOLS))
+
+AMD_DISPLAY_FILES += $(AMD_DAL_LINK_PROTOCOLS) \ No newline at end of file
diff --git a/drivers/gpu/drm/amd/display/dc/link/accessories/link_dp_cts.c b/drivers/gpu/drm/amd/display/dc/link/accessories/link_dp_cts.c
new file mode 100644
index 000000000000..db9f1baa27e5
--- /dev/null
+++ b/drivers/gpu/drm/amd/display/dc/link/accessories/link_dp_cts.c
@@ -0,0 +1,1011 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ * Authors: AMD
+ *
+ */
+#include "link_dp_cts.h"
+#include "link/link_resource.h"
+#include "link/protocols/link_dpcd.h"
+#include "link/protocols/link_dp_training.h"
+#include "link/protocols/link_dp_phy.h"
+#include "link/protocols/link_dp_training_fixed_vs_pe_retimer.h"
+#include "link/protocols/link_dp_capability.h"
+#include "link/link_dpms.h"
+#include "resource.h"
+#include "dm_helpers.h"
+#include "dc_dmub_srv.h"
+#include "dce/dmub_hw_lock_mgr.h"
+
+#define DC_LOGGER \
+ link->ctx->logger
+
+static enum dc_link_rate get_link_rate_from_test_link_rate(uint8_t test_rate)
+{
+ switch (test_rate) {
+ case DP_TEST_LINK_RATE_RBR:
+ return LINK_RATE_LOW;
+ case DP_TEST_LINK_RATE_HBR:
+ return LINK_RATE_HIGH;
+ case DP_TEST_LINK_RATE_HBR2:
+ return LINK_RATE_HIGH2;
+ case DP_TEST_LINK_RATE_HBR3:
+ return LINK_RATE_HIGH3;
+ case DP_TEST_LINK_RATE_UHBR10:
+ return LINK_RATE_UHBR10;
+ case DP_TEST_LINK_RATE_UHBR20:
+ return LINK_RATE_UHBR20;
+ case DP_TEST_LINK_RATE_UHBR13_5:
+ return LINK_RATE_UHBR13_5;
+ default:
+ return LINK_RATE_UNKNOWN;
+ }
+}
+
+static bool is_dp_phy_sqaure_pattern(enum dp_test_pattern test_pattern)
+{
+ return (DP_TEST_PATTERN_SQUARE_BEGIN <= test_pattern &&
+ test_pattern <= DP_TEST_PATTERN_SQUARE_END);
+}
+
+static bool is_dp_phy_pattern(enum dp_test_pattern test_pattern)
+{
+ if ((DP_TEST_PATTERN_PHY_PATTERN_BEGIN <= test_pattern &&
+ test_pattern <= DP_TEST_PATTERN_PHY_PATTERN_END) ||
+ test_pattern == DP_TEST_PATTERN_VIDEO_MODE)
+ return true;
+ else
+ return false;
+}
+
+static void dp_retrain_link_dp_test(struct dc_link *link,
+ struct dc_link_settings *link_setting,
+ bool skip_video_pattern)
+{
+ struct pipe_ctx *pipes[MAX_PIPES];
+ struct dc_state *state = link->dc->current_state;
+ uint8_t count;
+ int i;
+
+ udelay(100);
+
+ link_get_master_pipes_with_dpms_on(link, state, &count, pipes);
+
+ for (i = 0; i < count; i++) {
+ link_set_dpms_off(pipes[i]);
+ pipes[i]->link_config.dp_link_settings = *link_setting;
+ update_dp_encoder_resources_for_test_harness(
+ link->dc,
+ state,
+ pipes[i]);
+ }
+
+ for (i = count-1; i >= 0; i--)
+ link_set_dpms_on(state, pipes[i]);
+}
+
+static void dp_test_send_link_training(struct dc_link *link)
+{
+ struct dc_link_settings link_settings = {0};
+ uint8_t test_rate = 0;
+
+ core_link_read_dpcd(
+ link,
+ DP_TEST_LANE_COUNT,
+ (unsigned char *)(&link_settings.lane_count),
+ 1);
+ core_link_read_dpcd(
+ link,
+ DP_TEST_LINK_RATE,
+ &test_rate,
+ 1);
+ link_settings.link_rate = get_link_rate_from_test_link_rate(test_rate);
+
+ /* Set preferred link settings */
+ link->verified_link_cap.lane_count = link_settings.lane_count;
+ link->verified_link_cap.link_rate = link_settings.link_rate;
+
+ dp_retrain_link_dp_test(link, &link_settings, false);
+}
+
+static void dp_test_get_audio_test_data(struct dc_link *link, bool disable_video)
+{
+ union audio_test_mode dpcd_test_mode = {0};
+ struct audio_test_pattern_type dpcd_pattern_type = {0};
+ union audio_test_pattern_period dpcd_pattern_period[AUDIO_CHANNELS_COUNT] = {0};
+ enum dp_test_pattern test_pattern = DP_TEST_PATTERN_AUDIO_OPERATOR_DEFINED;
+
+ struct pipe_ctx *pipes = link->dc->current_state->res_ctx.pipe_ctx;
+ struct pipe_ctx *pipe_ctx = &pipes[0];
+ unsigned int channel_count;
+ unsigned int channel = 0;
+ unsigned int modes = 0;
+ unsigned int sampling_rate_in_hz = 0;
+
+ // get audio test mode and test pattern parameters
+ core_link_read_dpcd(
+ link,
+ DP_TEST_AUDIO_MODE,
+ &dpcd_test_mode.raw,
+ sizeof(dpcd_test_mode));
+
+ core_link_read_dpcd(
+ link,
+ DP_TEST_AUDIO_PATTERN_TYPE,
+ &dpcd_pattern_type.value,
+ sizeof(dpcd_pattern_type));
+
+ channel_count = min(dpcd_test_mode.bits.channel_count + 1, AUDIO_CHANNELS_COUNT);
+
+ // read pattern periods for requested channels when sawTooth pattern is requested
+ if (dpcd_pattern_type.value == AUDIO_TEST_PATTERN_SAWTOOTH ||
+ dpcd_pattern_type.value == AUDIO_TEST_PATTERN_OPERATOR_DEFINED) {
+
+ test_pattern = (dpcd_pattern_type.value == AUDIO_TEST_PATTERN_SAWTOOTH) ?
+ DP_TEST_PATTERN_AUDIO_SAWTOOTH : DP_TEST_PATTERN_AUDIO_OPERATOR_DEFINED;
+ // read period for each channel
+ for (channel = 0; channel < channel_count; channel++) {
+ core_link_read_dpcd(
+ link,
+ DP_TEST_AUDIO_PERIOD_CH1 + channel,
+ &dpcd_pattern_period[channel].raw,
+ sizeof(dpcd_pattern_period[channel]));
+ }
+ }
+
+ // translate sampling rate
+ switch (dpcd_test_mode.bits.sampling_rate) {
+ case AUDIO_SAMPLING_RATE_32KHZ:
+ sampling_rate_in_hz = 32000;
+ break;
+ case AUDIO_SAMPLING_RATE_44_1KHZ:
+ sampling_rate_in_hz = 44100;
+ break;
+ case AUDIO_SAMPLING_RATE_48KHZ:
+ sampling_rate_in_hz = 48000;
+ break;
+ case AUDIO_SAMPLING_RATE_88_2KHZ:
+ sampling_rate_in_hz = 88200;
+ break;
+ case AUDIO_SAMPLING_RATE_96KHZ:
+ sampling_rate_in_hz = 96000;
+ break;
+ case AUDIO_SAMPLING_RATE_176_4KHZ:
+ sampling_rate_in_hz = 176400;
+ break;
+ case AUDIO_SAMPLING_RATE_192KHZ:
+ sampling_rate_in_hz = 192000;
+ break;
+ default:
+ sampling_rate_in_hz = 0;
+ break;
+ }
+
+ link->audio_test_data.flags.test_requested = 1;
+ link->audio_test_data.flags.disable_video = disable_video;
+ link->audio_test_data.sampling_rate = sampling_rate_in_hz;
+ link->audio_test_data.channel_count = channel_count;
+ link->audio_test_data.pattern_type = test_pattern;
+
+ if (test_pattern == DP_TEST_PATTERN_AUDIO_SAWTOOTH) {
+ for (modes = 0; modes < pipe_ctx->stream->audio_info.mode_count; modes++) {
+ link->audio_test_data.pattern_period[modes] = dpcd_pattern_period[modes].bits.pattern_period;
+ }
+ }
+}
+
+/* TODO Raven hbr2 compliance eye output is unstable
+ * (toggling on and off) with debugger break
+ * This caueses intermittent PHY automation failure
+ * Need to look into the root cause */
+static void dp_test_send_phy_test_pattern(struct dc_link *link)
+{
+ union phy_test_pattern dpcd_test_pattern;
+ union lane_adjust dpcd_lane_adjustment[2];
+ unsigned char dpcd_post_cursor_2_adjustment = 0;
+ unsigned char test_pattern_buffer[
+ (DP_TEST_264BIT_CUSTOM_PATTERN_263_256 -
+ DP_TEST_264BIT_CUSTOM_PATTERN_7_0)+1] = {0};
+ unsigned int test_pattern_size = 0;
+ enum dp_test_pattern test_pattern;
+ union lane_adjust dpcd_lane_adjust;
+ unsigned int lane;
+ struct link_training_settings link_training_settings;
+ unsigned char no_preshoot = 0;
+ unsigned char no_deemphasis = 0;
+
+ dpcd_test_pattern.raw = 0;
+ memset(dpcd_lane_adjustment, 0, sizeof(dpcd_lane_adjustment));
+ memset(&link_training_settings, 0, sizeof(link_training_settings));
+
+ /* get phy test pattern and pattern parameters from DP receiver */
+ core_link_read_dpcd(
+ link,
+ DP_PHY_TEST_PATTERN,
+ &dpcd_test_pattern.raw,
+ sizeof(dpcd_test_pattern));
+ core_link_read_dpcd(
+ link,
+ DP_ADJUST_REQUEST_LANE0_1,
+ &dpcd_lane_adjustment[0].raw,
+ sizeof(dpcd_lane_adjustment));
+
+ /* prepare link training settings */
+ link_training_settings.link_settings = link->cur_link_settings;
+
+ link_training_settings.lttpr_mode = dp_decide_lttpr_mode(link, &link->cur_link_settings);
+
+ if ((link->chip_caps & EXT_DISPLAY_PATH_CAPS__DP_FIXED_VS_EN) &&
+ link_training_settings.lttpr_mode == LTTPR_MODE_TRANSPARENT)
+ dp_fixed_vs_pe_read_lane_adjust(
+ link,
+ link_training_settings.dpcd_lane_settings);
+
+ /*get post cursor 2 parameters
+ * For DP 1.1a or eariler, this DPCD register's value is 0
+ * For DP 1.2 or later:
+ * Bits 1:0 = POST_CURSOR2_LANE0; Bits 3:2 = POST_CURSOR2_LANE1
+ * Bits 5:4 = POST_CURSOR2_LANE2; Bits 7:6 = POST_CURSOR2_LANE3
+ */
+ core_link_read_dpcd(
+ link,
+ DP_ADJUST_REQUEST_POST_CURSOR2,
+ &dpcd_post_cursor_2_adjustment,
+ sizeof(dpcd_post_cursor_2_adjustment));
+
+ /* translate request */
+ switch (dpcd_test_pattern.bits.PATTERN) {
+ case PHY_TEST_PATTERN_D10_2:
+ test_pattern = DP_TEST_PATTERN_D102;
+ break;
+ case PHY_TEST_PATTERN_SYMBOL_ERROR:
+ test_pattern = DP_TEST_PATTERN_SYMBOL_ERROR;
+ break;
+ case PHY_TEST_PATTERN_PRBS7:
+ test_pattern = DP_TEST_PATTERN_PRBS7;
+ break;
+ case PHY_TEST_PATTERN_80BIT_CUSTOM:
+ test_pattern = DP_TEST_PATTERN_80BIT_CUSTOM;
+ break;
+ case PHY_TEST_PATTERN_CP2520_1:
+ /* CP2520 pattern is unstable, temporarily use TPS4 instead */
+ test_pattern = (link->dc->caps.force_dp_tps4_for_cp2520 == 1) ?
+ DP_TEST_PATTERN_TRAINING_PATTERN4 :
+ DP_TEST_PATTERN_HBR2_COMPLIANCE_EYE;
+ break;
+ case PHY_TEST_PATTERN_CP2520_2:
+ /* CP2520 pattern is unstable, temporarily use TPS4 instead */
+ test_pattern = (link->dc->caps.force_dp_tps4_for_cp2520 == 1) ?
+ DP_TEST_PATTERN_TRAINING_PATTERN4 :
+ DP_TEST_PATTERN_HBR2_COMPLIANCE_EYE;
+ break;
+ case PHY_TEST_PATTERN_CP2520_3:
+ test_pattern = DP_TEST_PATTERN_TRAINING_PATTERN4;
+ break;
+ case PHY_TEST_PATTERN_128b_132b_TPS1:
+ test_pattern = DP_TEST_PATTERN_128b_132b_TPS1;
+ break;
+ case PHY_TEST_PATTERN_128b_132b_TPS2:
+ test_pattern = DP_TEST_PATTERN_128b_132b_TPS2;
+ break;
+ case PHY_TEST_PATTERN_PRBS9:
+ test_pattern = DP_TEST_PATTERN_PRBS9;
+ break;
+ case PHY_TEST_PATTERN_PRBS11:
+ test_pattern = DP_TEST_PATTERN_PRBS11;
+ break;
+ case PHY_TEST_PATTERN_PRBS15:
+ test_pattern = DP_TEST_PATTERN_PRBS15;
+ break;
+ case PHY_TEST_PATTERN_PRBS23:
+ test_pattern = DP_TEST_PATTERN_PRBS23;
+ break;
+ case PHY_TEST_PATTERN_PRBS31:
+ test_pattern = DP_TEST_PATTERN_PRBS31;
+ break;
+ case PHY_TEST_PATTERN_264BIT_CUSTOM:
+ test_pattern = DP_TEST_PATTERN_264BIT_CUSTOM;
+ break;
+ case PHY_TEST_PATTERN_SQUARE:
+ test_pattern = DP_TEST_PATTERN_SQUARE;
+ break;
+ case PHY_TEST_PATTERN_SQUARE_PRESHOOT_DISABLED:
+ test_pattern = DP_TEST_PATTERN_SQUARE_PRESHOOT_DISABLED;
+ no_preshoot = 1;
+ break;
+ case PHY_TEST_PATTERN_SQUARE_DEEMPHASIS_DISABLED:
+ test_pattern = DP_TEST_PATTERN_SQUARE_DEEMPHASIS_DISABLED;
+ no_deemphasis = 1;
+ break;
+ case PHY_TEST_PATTERN_SQUARE_PRESHOOT_DEEMPHASIS_DISABLED:
+ test_pattern = DP_TEST_PATTERN_SQUARE_PRESHOOT_DEEMPHASIS_DISABLED;
+ no_preshoot = 1;
+ no_deemphasis = 1;
+ break;
+ default:
+ test_pattern = DP_TEST_PATTERN_VIDEO_MODE;
+ break;
+ }
+
+ if (test_pattern == DP_TEST_PATTERN_80BIT_CUSTOM) {
+ test_pattern_size = (DP_TEST_80BIT_CUSTOM_PATTERN_79_72 -
+ DP_TEST_80BIT_CUSTOM_PATTERN_7_0) + 1;
+ core_link_read_dpcd(
+ link,
+ DP_TEST_80BIT_CUSTOM_PATTERN_7_0,
+ test_pattern_buffer,
+ test_pattern_size);
+ }
+
+ if (is_dp_phy_sqaure_pattern(test_pattern)) {
+ test_pattern_size = 1; // Square pattern data is 1 byte (DP spec)
+ core_link_read_dpcd(
+ link,
+ DP_PHY_SQUARE_PATTERN,
+ test_pattern_buffer,
+ test_pattern_size);
+ }
+
+ if (test_pattern == DP_TEST_PATTERN_264BIT_CUSTOM) {
+ test_pattern_size = (DP_TEST_264BIT_CUSTOM_PATTERN_263_256-
+ DP_TEST_264BIT_CUSTOM_PATTERN_7_0) + 1;
+ core_link_read_dpcd(
+ link,
+ DP_TEST_264BIT_CUSTOM_PATTERN_7_0,
+ test_pattern_buffer,
+ test_pattern_size);
+ }
+
+ for (lane = 0; lane <
+ (unsigned int)(link->cur_link_settings.lane_count);
+ lane++) {
+ dpcd_lane_adjust.raw =
+ dp_get_nibble_at_index(&dpcd_lane_adjustment[0].raw, lane);
+ if (link_dp_get_encoding_format(&link->cur_link_settings) ==
+ DP_8b_10b_ENCODING) {
+ link_training_settings.hw_lane_settings[lane].VOLTAGE_SWING =
+ (enum dc_voltage_swing)
+ (dpcd_lane_adjust.bits.VOLTAGE_SWING_LANE);
+ link_training_settings.hw_lane_settings[lane].PRE_EMPHASIS =
+ (enum dc_pre_emphasis)
+ (dpcd_lane_adjust.bits.PRE_EMPHASIS_LANE);
+ link_training_settings.hw_lane_settings[lane].POST_CURSOR2 =
+ (enum dc_post_cursor2)
+ ((dpcd_post_cursor_2_adjustment >> (lane * 2)) & 0x03);
+ } else if (link_dp_get_encoding_format(&link->cur_link_settings) ==
+ DP_128b_132b_ENCODING) {
+ link_training_settings.hw_lane_settings[lane].FFE_PRESET.settings.level =
+ dpcd_lane_adjust.tx_ffe.PRESET_VALUE;
+ link_training_settings.hw_lane_settings[lane].FFE_PRESET.settings.no_preshoot = no_preshoot;
+ link_training_settings.hw_lane_settings[lane].FFE_PRESET.settings.no_deemphasis = no_deemphasis;
+ }
+ }
+
+ dp_hw_to_dpcd_lane_settings(&link_training_settings,
+ link_training_settings.hw_lane_settings,
+ link_training_settings.dpcd_lane_settings);
+ /*Usage: Measure DP physical lane signal
+ * by DP SI test equipment automatically.
+ * PHY test pattern request is generated by equipment via HPD interrupt.
+ * HPD needs to be active all the time. HPD should be active
+ * all the time. Do not touch it.
+ * forward request to DS
+ */
+ dp_set_test_pattern(
+ link,
+ test_pattern,
+ DP_TEST_PATTERN_COLOR_SPACE_UNDEFINED,
+ &link_training_settings,
+ test_pattern_buffer,
+ test_pattern_size);
+}
+
+static void set_crtc_test_pattern(struct dc_link *link,
+ struct pipe_ctx *pipe_ctx,
+ enum dp_test_pattern test_pattern,
+ enum dp_test_pattern_color_space test_pattern_color_space)
+{
+ enum controller_dp_test_pattern controller_test_pattern;
+ enum dc_color_depth color_depth = pipe_ctx->
+ stream->timing.display_color_depth;
+ struct bit_depth_reduction_params params;
+ struct output_pixel_processor *opp = pipe_ctx->stream_res.opp;
+ int width = pipe_ctx->stream->timing.h_addressable +
+ pipe_ctx->stream->timing.h_border_left +
+ pipe_ctx->stream->timing.h_border_right;
+ int height = pipe_ctx->stream->timing.v_addressable +
+ pipe_ctx->stream->timing.v_border_bottom +
+ pipe_ctx->stream->timing.v_border_top;
+
+ memset(&params, 0, sizeof(params));
+
+ switch (test_pattern) {
+ case DP_TEST_PATTERN_COLOR_SQUARES:
+ controller_test_pattern =
+ CONTROLLER_DP_TEST_PATTERN_COLORSQUARES;
+ break;
+ case DP_TEST_PATTERN_COLOR_SQUARES_CEA:
+ controller_test_pattern =
+ CONTROLLER_DP_TEST_PATTERN_COLORSQUARES_CEA;
+ break;
+ case DP_TEST_PATTERN_VERTICAL_BARS:
+ controller_test_pattern =
+ CONTROLLER_DP_TEST_PATTERN_VERTICALBARS;
+ break;
+ case DP_TEST_PATTERN_HORIZONTAL_BARS:
+ controller_test_pattern =
+ CONTROLLER_DP_TEST_PATTERN_HORIZONTALBARS;
+ break;
+ case DP_TEST_PATTERN_COLOR_RAMP:
+ controller_test_pattern =
+ CONTROLLER_DP_TEST_PATTERN_COLORRAMP;
+ break;
+ default:
+ controller_test_pattern =
+ CONTROLLER_DP_TEST_PATTERN_VIDEOMODE;
+ break;
+ }
+
+ switch (test_pattern) {
+ case DP_TEST_PATTERN_COLOR_SQUARES:
+ case DP_TEST_PATTERN_COLOR_SQUARES_CEA:
+ case DP_TEST_PATTERN_VERTICAL_BARS:
+ case DP_TEST_PATTERN_HORIZONTAL_BARS:
+ case DP_TEST_PATTERN_COLOR_RAMP:
+ {
+ /* disable bit depth reduction */
+ pipe_ctx->stream->bit_depth_params = params;
+ opp->funcs->opp_program_bit_depth_reduction(opp, &params);
+ if (pipe_ctx->stream_res.tg->funcs->set_test_pattern)
+ pipe_ctx->stream_res.tg->funcs->set_test_pattern(pipe_ctx->stream_res.tg,
+ controller_test_pattern, color_depth);
+ else if (link->dc->hwss.set_disp_pattern_generator) {
+ struct pipe_ctx *odm_pipe;
+ enum controller_dp_color_space controller_color_space;
+ int opp_cnt = 1;
+ int offset = 0;
+ int dpg_width = width;
+
+ switch (test_pattern_color_space) {
+ case DP_TEST_PATTERN_COLOR_SPACE_RGB:
+ controller_color_space = CONTROLLER_DP_COLOR_SPACE_RGB;
+ break;
+ case DP_TEST_PATTERN_COLOR_SPACE_YCBCR601:
+ controller_color_space = CONTROLLER_DP_COLOR_SPACE_YCBCR601;
+ break;
+ case DP_TEST_PATTERN_COLOR_SPACE_YCBCR709:
+ controller_color_space = CONTROLLER_DP_COLOR_SPACE_YCBCR709;
+ break;
+ case DP_TEST_PATTERN_COLOR_SPACE_UNDEFINED:
+ default:
+ controller_color_space = CONTROLLER_DP_COLOR_SPACE_UDEFINED;
+ DC_LOG_ERROR("%s: Color space must be defined for test pattern", __func__);
+ ASSERT(0);
+ break;
+ }
+
+ for (odm_pipe = pipe_ctx->next_odm_pipe; odm_pipe; odm_pipe = odm_pipe->next_odm_pipe)
+ opp_cnt++;
+ dpg_width = width / opp_cnt;
+ offset = dpg_width;
+
+ link->dc->hwss.set_disp_pattern_generator(link->dc,
+ pipe_ctx,
+ controller_test_pattern,
+ controller_color_space,
+ color_depth,
+ NULL,
+ dpg_width,
+ height,
+ 0);
+
+ for (odm_pipe = pipe_ctx->next_odm_pipe; odm_pipe; odm_pipe = odm_pipe->next_odm_pipe) {
+ struct output_pixel_processor *odm_opp = odm_pipe->stream_res.opp;
+
+ odm_opp->funcs->opp_program_bit_depth_reduction(odm_opp, &params);
+ link->dc->hwss.set_disp_pattern_generator(link->dc,
+ odm_pipe,
+ controller_test_pattern,
+ controller_color_space,
+ color_depth,
+ NULL,
+ dpg_width,
+ height,
+ offset);
+ offset += offset;
+ }
+ }
+ }
+ break;
+ case DP_TEST_PATTERN_VIDEO_MODE:
+ {
+ /* restore bitdepth reduction */
+ resource_build_bit_depth_reduction_params(pipe_ctx->stream, &params);
+ pipe_ctx->stream->bit_depth_params = params;
+ opp->funcs->opp_program_bit_depth_reduction(opp, &params);
+ if (pipe_ctx->stream_res.tg->funcs->set_test_pattern)
+ pipe_ctx->stream_res.tg->funcs->set_test_pattern(pipe_ctx->stream_res.tg,
+ CONTROLLER_DP_TEST_PATTERN_VIDEOMODE,
+ color_depth);
+ else if (link->dc->hwss.set_disp_pattern_generator) {
+ struct pipe_ctx *odm_pipe;
+ int opp_cnt = 1;
+ int dpg_width;
+
+ for (odm_pipe = pipe_ctx->next_odm_pipe; odm_pipe; odm_pipe = odm_pipe->next_odm_pipe)
+ opp_cnt++;
+
+ dpg_width = width / opp_cnt;
+ for (odm_pipe = pipe_ctx->next_odm_pipe; odm_pipe; odm_pipe = odm_pipe->next_odm_pipe) {
+ struct output_pixel_processor *odm_opp = odm_pipe->stream_res.opp;
+
+ odm_opp->funcs->opp_program_bit_depth_reduction(odm_opp, &params);
+ link->dc->hwss.set_disp_pattern_generator(link->dc,
+ odm_pipe,
+ CONTROLLER_DP_TEST_PATTERN_VIDEOMODE,
+ CONTROLLER_DP_COLOR_SPACE_UDEFINED,
+ color_depth,
+ NULL,
+ dpg_width,
+ height,
+ 0);
+ }
+ link->dc->hwss.set_disp_pattern_generator(link->dc,
+ pipe_ctx,
+ CONTROLLER_DP_TEST_PATTERN_VIDEOMODE,
+ CONTROLLER_DP_COLOR_SPACE_UDEFINED,
+ color_depth,
+ NULL,
+ dpg_width,
+ height,
+ 0);
+ }
+ }
+ break;
+
+ default:
+ break;
+ }
+}
+
+void dp_handle_automated_test(struct dc_link *link)
+{
+ union test_request test_request;
+ union test_response test_response;
+
+ memset(&test_request, 0, sizeof(test_request));
+ memset(&test_response, 0, sizeof(test_response));
+
+ core_link_read_dpcd(
+ link,
+ DP_TEST_REQUEST,
+ &test_request.raw,
+ sizeof(union test_request));
+ if (test_request.bits.LINK_TRAINING) {
+ /* ACK first to let DP RX test box monitor LT sequence */
+ test_response.bits.ACK = 1;
+ core_link_write_dpcd(
+ link,
+ DP_TEST_RESPONSE,
+ &test_response.raw,
+ sizeof(test_response));
+ dp_test_send_link_training(link);
+ /* no acknowledge request is needed again */
+ test_response.bits.ACK = 0;
+ }
+ if (test_request.bits.LINK_TEST_PATTRN) {
+ union test_misc dpcd_test_params;
+ union link_test_pattern dpcd_test_pattern;
+
+ memset(&dpcd_test_pattern, 0, sizeof(dpcd_test_pattern));
+ memset(&dpcd_test_params, 0, sizeof(dpcd_test_params));
+
+ /* get link test pattern and pattern parameters */
+ core_link_read_dpcd(
+ link,
+ DP_TEST_PATTERN,
+ &dpcd_test_pattern.raw,
+ sizeof(dpcd_test_pattern));
+ core_link_read_dpcd(
+ link,
+ DP_TEST_MISC0,
+ &dpcd_test_params.raw,
+ sizeof(dpcd_test_params));
+ test_response.bits.ACK = dm_helpers_dp_handle_test_pattern_request(link->ctx, link,
+ dpcd_test_pattern, dpcd_test_params) ? 1 : 0;
+ }
+
+ if (test_request.bits.AUDIO_TEST_PATTERN) {
+ dp_test_get_audio_test_data(link, test_request.bits.TEST_AUDIO_DISABLED_VIDEO);
+ test_response.bits.ACK = 1;
+ }
+
+ if (test_request.bits.PHY_TEST_PATTERN) {
+ dp_test_send_phy_test_pattern(link);
+ test_response.bits.ACK = 1;
+ }
+
+ /* send request acknowledgment */
+ if (test_response.bits.ACK)
+ core_link_write_dpcd(
+ link,
+ DP_TEST_RESPONSE,
+ &test_response.raw,
+ sizeof(test_response));
+}
+
+bool dp_set_test_pattern(
+ struct dc_link *link,
+ enum dp_test_pattern test_pattern,
+ enum dp_test_pattern_color_space test_pattern_color_space,
+ const struct link_training_settings *p_link_settings,
+ const unsigned char *p_custom_pattern,
+ unsigned int cust_pattern_size)
+{
+ struct pipe_ctx *pipes = link->dc->current_state->res_ctx.pipe_ctx;
+ struct pipe_ctx *pipe_ctx = NULL;
+ unsigned int lane;
+ unsigned int i;
+ unsigned char link_qual_pattern[LANE_COUNT_DP_MAX] = {0};
+ union dpcd_training_pattern training_pattern;
+ enum dpcd_phy_test_patterns pattern;
+
+ memset(&training_pattern, 0, sizeof(training_pattern));
+
+ for (i = 0; i < MAX_PIPES; i++) {
+ if (pipes[i].stream == NULL)
+ continue;
+
+ if (pipes[i].stream->link == link && !pipes[i].top_pipe && !pipes[i].prev_odm_pipe) {
+ pipe_ctx = &pipes[i];
+ break;
+ }
+ }
+
+ if (pipe_ctx == NULL)
+ return false;
+
+ /* Reset CRTC Test Pattern if it is currently running and request is VideoMode */
+ if (link->test_pattern_enabled && test_pattern ==
+ DP_TEST_PATTERN_VIDEO_MODE) {
+ /* Set CRTC Test Pattern */
+ set_crtc_test_pattern(link, pipe_ctx, test_pattern, test_pattern_color_space);
+ dp_set_hw_test_pattern(link, &pipe_ctx->link_res, test_pattern,
+ (uint8_t *)p_custom_pattern,
+ (uint32_t)cust_pattern_size);
+
+ /* Unblank Stream */
+ link->dc->hwss.unblank_stream(
+ pipe_ctx,
+ &link->verified_link_cap);
+ /* TODO:m_pHwss->MuteAudioEndpoint
+ * (pPathMode->pDisplayPath, false);
+ */
+
+ /* Reset Test Pattern state */
+ link->test_pattern_enabled = false;
+
+ return true;
+ }
+
+ /* Check for PHY Test Patterns */
+ if (is_dp_phy_pattern(test_pattern)) {
+ /* Set DPCD Lane Settings before running test pattern */
+ if (p_link_settings != NULL) {
+ if ((link->chip_caps & EXT_DISPLAY_PATH_CAPS__DP_FIXED_VS_EN) &&
+ p_link_settings->lttpr_mode == LTTPR_MODE_TRANSPARENT) {
+ dp_fixed_vs_pe_set_retimer_lane_settings(
+ link,
+ p_link_settings->dpcd_lane_settings,
+ p_link_settings->link_settings.lane_count);
+ } else {
+ dp_set_hw_lane_settings(link, &pipe_ctx->link_res, p_link_settings, DPRX);
+ }
+ dpcd_set_lane_settings(link, p_link_settings, DPRX);
+ }
+
+ /* Blank stream if running test pattern */
+ if (test_pattern != DP_TEST_PATTERN_VIDEO_MODE) {
+ /*TODO:
+ * m_pHwss->
+ * MuteAudioEndpoint(pPathMode->pDisplayPath, true);
+ */
+ /* Blank stream */
+ link->dc->hwss.blank_stream(pipe_ctx);
+ }
+
+ dp_set_hw_test_pattern(link, &pipe_ctx->link_res, test_pattern,
+ (uint8_t *)p_custom_pattern,
+ (uint32_t)cust_pattern_size);
+
+ if (test_pattern != DP_TEST_PATTERN_VIDEO_MODE) {
+ /* Set Test Pattern state */
+ link->test_pattern_enabled = true;
+ if (p_link_settings != NULL)
+ dpcd_set_link_settings(link,
+ p_link_settings);
+ }
+
+ switch (test_pattern) {
+ case DP_TEST_PATTERN_VIDEO_MODE:
+ pattern = PHY_TEST_PATTERN_NONE;
+ break;
+ case DP_TEST_PATTERN_D102:
+ pattern = PHY_TEST_PATTERN_D10_2;
+ break;
+ case DP_TEST_PATTERN_SYMBOL_ERROR:
+ pattern = PHY_TEST_PATTERN_SYMBOL_ERROR;
+ break;
+ case DP_TEST_PATTERN_PRBS7:
+ pattern = PHY_TEST_PATTERN_PRBS7;
+ break;
+ case DP_TEST_PATTERN_80BIT_CUSTOM:
+ pattern = PHY_TEST_PATTERN_80BIT_CUSTOM;
+ break;
+ case DP_TEST_PATTERN_CP2520_1:
+ pattern = PHY_TEST_PATTERN_CP2520_1;
+ break;
+ case DP_TEST_PATTERN_CP2520_2:
+ pattern = PHY_TEST_PATTERN_CP2520_2;
+ break;
+ case DP_TEST_PATTERN_CP2520_3:
+ pattern = PHY_TEST_PATTERN_CP2520_3;
+ break;
+ case DP_TEST_PATTERN_128b_132b_TPS1:
+ pattern = PHY_TEST_PATTERN_128b_132b_TPS1;
+ break;
+ case DP_TEST_PATTERN_128b_132b_TPS2:
+ pattern = PHY_TEST_PATTERN_128b_132b_TPS2;
+ break;
+ case DP_TEST_PATTERN_PRBS9:
+ pattern = PHY_TEST_PATTERN_PRBS9;
+ break;
+ case DP_TEST_PATTERN_PRBS11:
+ pattern = PHY_TEST_PATTERN_PRBS11;
+ break;
+ case DP_TEST_PATTERN_PRBS15:
+ pattern = PHY_TEST_PATTERN_PRBS15;
+ break;
+ case DP_TEST_PATTERN_PRBS23:
+ pattern = PHY_TEST_PATTERN_PRBS23;
+ break;
+ case DP_TEST_PATTERN_PRBS31:
+ pattern = PHY_TEST_PATTERN_PRBS31;
+ break;
+ case DP_TEST_PATTERN_264BIT_CUSTOM:
+ pattern = PHY_TEST_PATTERN_264BIT_CUSTOM;
+ break;
+ case DP_TEST_PATTERN_SQUARE:
+ pattern = PHY_TEST_PATTERN_SQUARE;
+ break;
+ case DP_TEST_PATTERN_SQUARE_PRESHOOT_DISABLED:
+ pattern = PHY_TEST_PATTERN_SQUARE_PRESHOOT_DISABLED;
+ break;
+ case DP_TEST_PATTERN_SQUARE_DEEMPHASIS_DISABLED:
+ pattern = PHY_TEST_PATTERN_SQUARE_DEEMPHASIS_DISABLED;
+ break;
+ case DP_TEST_PATTERN_SQUARE_PRESHOOT_DEEMPHASIS_DISABLED:
+ pattern = PHY_TEST_PATTERN_SQUARE_PRESHOOT_DEEMPHASIS_DISABLED;
+ break;
+ default:
+ return false;
+ }
+
+ if (test_pattern == DP_TEST_PATTERN_VIDEO_MODE
+ /*TODO:&& !pPathMode->pDisplayPath->IsTargetPoweredOn()*/)
+ return false;
+
+ if (link->dpcd_caps.dpcd_rev.raw >= DPCD_REV_12) {
+ if (is_dp_phy_sqaure_pattern(test_pattern))
+ core_link_write_dpcd(link,
+ DP_LINK_SQUARE_PATTERN,
+ p_custom_pattern,
+ 1);
+
+ /* tell receiver that we are sending qualification
+ * pattern DP 1.2 or later - DP receiver's link quality
+ * pattern is set using DPCD LINK_QUAL_LANEx_SET
+ * register (0x10B~0x10E)\
+ */
+ for (lane = 0; lane < LANE_COUNT_DP_MAX; lane++)
+ link_qual_pattern[lane] =
+ (unsigned char)(pattern);
+
+ core_link_write_dpcd(link,
+ DP_LINK_QUAL_LANE0_SET,
+ link_qual_pattern,
+ sizeof(link_qual_pattern));
+ } else if (link->dpcd_caps.dpcd_rev.raw >= DPCD_REV_10 ||
+ link->dpcd_caps.dpcd_rev.raw == 0) {
+ /* tell receiver that we are sending qualification
+ * pattern DP 1.1a or earlier - DP receiver's link
+ * quality pattern is set using
+ * DPCD TRAINING_PATTERN_SET -> LINK_QUAL_PATTERN_SET
+ * register (0x102). We will use v_1.3 when we are
+ * setting test pattern for DP 1.1.
+ */
+ core_link_read_dpcd(link, DP_TRAINING_PATTERN_SET,
+ &training_pattern.raw,
+ sizeof(training_pattern));
+ training_pattern.v1_3.LINK_QUAL_PATTERN_SET = pattern;
+ core_link_write_dpcd(link, DP_TRAINING_PATTERN_SET,
+ &training_pattern.raw,
+ sizeof(training_pattern));
+ }
+ } else {
+ enum dc_color_space color_space = COLOR_SPACE_UNKNOWN;
+
+ switch (test_pattern_color_space) {
+ case DP_TEST_PATTERN_COLOR_SPACE_RGB:
+ color_space = COLOR_SPACE_SRGB;
+ if (test_pattern == DP_TEST_PATTERN_COLOR_SQUARES_CEA)
+ color_space = COLOR_SPACE_SRGB_LIMITED;
+ break;
+
+ case DP_TEST_PATTERN_COLOR_SPACE_YCBCR601:
+ color_space = COLOR_SPACE_YCBCR601;
+ if (test_pattern == DP_TEST_PATTERN_COLOR_SQUARES_CEA)
+ color_space = COLOR_SPACE_YCBCR601_LIMITED;
+ break;
+ case DP_TEST_PATTERN_COLOR_SPACE_YCBCR709:
+ color_space = COLOR_SPACE_YCBCR709;
+ if (test_pattern == DP_TEST_PATTERN_COLOR_SQUARES_CEA)
+ color_space = COLOR_SPACE_YCBCR709_LIMITED;
+ break;
+ default:
+ break;
+ }
+
+ if (pipe_ctx->stream_res.tg->funcs->lock_doublebuffer_enable) {
+ if (pipe_ctx->stream && should_use_dmub_lock(pipe_ctx->stream->link)) {
+ union dmub_hw_lock_flags hw_locks = { 0 };
+ struct dmub_hw_lock_inst_flags inst_flags = { 0 };
+
+ hw_locks.bits.lock_dig = 1;
+ inst_flags.dig_inst = pipe_ctx->stream_res.tg->inst;
+
+ dmub_hw_lock_mgr_cmd(link->ctx->dmub_srv,
+ true,
+ &hw_locks,
+ &inst_flags);
+ } else
+ pipe_ctx->stream_res.tg->funcs->lock_doublebuffer_enable(
+ pipe_ctx->stream_res.tg);
+ }
+
+ pipe_ctx->stream_res.tg->funcs->lock(pipe_ctx->stream_res.tg);
+ /* update MSA to requested color space */
+ pipe_ctx->stream_res.stream_enc->funcs->dp_set_stream_attribute(pipe_ctx->stream_res.stream_enc,
+ &pipe_ctx->stream->timing,
+ color_space,
+ pipe_ctx->stream->use_vsc_sdp_for_colorimetry,
+ link->dpcd_caps.dprx_feature.bits.SST_SPLIT_SDP_CAP);
+
+ if (pipe_ctx->stream->use_vsc_sdp_for_colorimetry) {
+ if (test_pattern == DP_TEST_PATTERN_COLOR_SQUARES_CEA)
+ pipe_ctx->stream->vsc_infopacket.sb[17] |= (1 << 7); // sb17 bit 7 Dynamic Range: 0 = VESA range, 1 = CTA range
+ else
+ pipe_ctx->stream->vsc_infopacket.sb[17] &= ~(1 << 7);
+ resource_build_info_frame(pipe_ctx);
+ link->dc->hwss.update_info_frame(pipe_ctx);
+ }
+
+ /* CRTC Patterns */
+ set_crtc_test_pattern(link, pipe_ctx, test_pattern, test_pattern_color_space);
+ pipe_ctx->stream_res.tg->funcs->unlock(pipe_ctx->stream_res.tg);
+ pipe_ctx->stream_res.tg->funcs->wait_for_state(pipe_ctx->stream_res.tg,
+ CRTC_STATE_VACTIVE);
+ pipe_ctx->stream_res.tg->funcs->wait_for_state(pipe_ctx->stream_res.tg,
+ CRTC_STATE_VBLANK);
+ pipe_ctx->stream_res.tg->funcs->wait_for_state(pipe_ctx->stream_res.tg,
+ CRTC_STATE_VACTIVE);
+
+ if (pipe_ctx->stream_res.tg->funcs->lock_doublebuffer_disable) {
+ if (pipe_ctx->stream && should_use_dmub_lock(pipe_ctx->stream->link)) {
+ union dmub_hw_lock_flags hw_locks = { 0 };
+ struct dmub_hw_lock_inst_flags inst_flags = { 0 };
+
+ hw_locks.bits.lock_dig = 1;
+ inst_flags.dig_inst = pipe_ctx->stream_res.tg->inst;
+
+ dmub_hw_lock_mgr_cmd(link->ctx->dmub_srv,
+ false,
+ &hw_locks,
+ &inst_flags);
+ } else
+ pipe_ctx->stream_res.tg->funcs->lock_doublebuffer_disable(
+ pipe_ctx->stream_res.tg);
+ }
+
+ /* Set Test Pattern state */
+ link->test_pattern_enabled = true;
+ }
+
+ return true;
+}
+
+void dp_set_preferred_link_settings(struct dc *dc,
+ struct dc_link_settings *link_setting,
+ struct dc_link *link)
+{
+ int i;
+ struct pipe_ctx *pipe;
+ struct dc_stream_state *link_stream;
+ struct dc_link_settings store_settings = *link_setting;
+
+ link->preferred_link_setting = store_settings;
+
+ /* Retrain with preferred link settings only relevant for
+ * DP signal type
+ * Check for non-DP signal or if passive dongle present
+ */
+ if (!dc_is_dp_signal(link->connector_signal) ||
+ link->dongle_max_pix_clk > 0)
+ return;
+
+ for (i = 0; i < MAX_PIPES; i++) {
+ pipe = &dc->current_state->res_ctx.pipe_ctx[i];
+ if (pipe->stream && pipe->stream->link) {
+ if (pipe->stream->link == link) {
+ link_stream = pipe->stream;
+ break;
+ }
+ }
+ }
+
+ /* Stream not found */
+ if (i == MAX_PIPES)
+ return;
+
+ /* Cannot retrain link if backend is off */
+ if (link_stream->dpms_off)
+ return;
+
+ if (link_decide_link_settings(link_stream, &store_settings))
+ dp_retrain_link_dp_test(link, &store_settings, false);
+}
+
+void dp_set_preferred_training_settings(struct dc *dc,
+ struct dc_link_settings *link_setting,
+ struct dc_link_training_overrides *lt_overrides,
+ struct dc_link *link,
+ bool skip_immediate_retrain)
+{
+ if (lt_overrides != NULL)
+ link->preferred_training_settings = *lt_overrides;
+ else
+ memset(&link->preferred_training_settings, 0, sizeof(link->preferred_training_settings));
+
+ if (link_setting != NULL) {
+ link->preferred_link_setting = *link_setting;
+ } else {
+ link->preferred_link_setting.lane_count = LANE_COUNT_UNKNOWN;
+ link->preferred_link_setting.link_rate = LINK_RATE_UNKNOWN;
+ }
+
+ if (link->connector_signal == SIGNAL_TYPE_DISPLAY_PORT &&
+ link->type == dc_connection_mst_branch)
+ dm_helpers_dp_mst_update_branch_bandwidth(dc->ctx, link);
+
+ /* Retrain now, or wait until next stream update to apply */
+ if (skip_immediate_retrain == false)
+ dp_set_preferred_link_settings(dc, &link->preferred_link_setting, link);
+}
diff --git a/drivers/gpu/drm/amd/display/dc/link/accessories/link_dp_cts.h b/drivers/gpu/drm/amd/display/dc/link/accessories/link_dp_cts.h
new file mode 100644
index 000000000000..eae23ea7f6ec
--- /dev/null
+++ b/drivers/gpu/drm/amd/display/dc/link/accessories/link_dp_cts.h
@@ -0,0 +1,44 @@
+/*
+ * Copyright 2023 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ * Authors: AMD
+ *
+ */
+#ifndef __LINK_DP_CTS_H__
+#define __LINK_DP_CTS_H__
+#include "link.h"
+void dp_handle_automated_test(struct dc_link *link);
+bool dp_set_test_pattern(
+ struct dc_link *link,
+ enum dp_test_pattern test_pattern,
+ enum dp_test_pattern_color_space test_pattern_color_space,
+ const struct link_training_settings *p_link_settings,
+ const unsigned char *p_custom_pattern,
+ unsigned int cust_pattern_size);
+void dp_set_preferred_link_settings(struct dc *dc,
+ struct dc_link_settings *link_setting,
+ struct dc_link *link);
+void dp_set_preferred_training_settings(struct dc *dc,
+ struct dc_link_settings *link_setting,
+ struct dc_link_training_overrides *lt_overrides,
+ struct dc_link *link,
+ bool skip_immediate_retrain);
+#endif /* __LINK_DP_CTS_H__ */
diff --git a/drivers/gpu/drm/amd/display/dc/link/link_dp_trace.c b/drivers/gpu/drm/amd/display/dc/link/accessories/link_dp_trace.c
index 2c1a3bfcdb50..fbcd8fb58ea8 100644
--- a/drivers/gpu/drm/amd/display/dc/link/link_dp_trace.c
+++ b/drivers/gpu/drm/amd/display/dc/link/accessories/link_dp_trace.c
@@ -22,8 +22,9 @@
* Authors: AMD
*
*/
-#include "dc_link.h"
#include "link_dp_trace.h"
+#include "link/protocols/link_dpcd.h"
+#include "link.h"
void dp_trace_init(struct dc_link *link)
{
@@ -36,7 +37,7 @@ void dp_trace_reset(struct dc_link *link)
memset(&link->dp_trace, 0, sizeof(link->dp_trace));
}
-bool dc_dp_trace_is_initialized(struct dc_link *link)
+bool dp_trace_is_initialized(struct dc_link *link)
{
return link->dp_trace.is_initialized;
}
@@ -75,7 +76,7 @@ void dp_trace_lt_total_count_increment(struct dc_link *link,
link->dp_trace.commit_lt_trace.counts.total++;
}
-void dc_dp_trace_set_is_logged_flag(struct dc_link *link,
+void dp_trace_set_is_logged_flag(struct dc_link *link,
bool in_detection,
bool is_logged)
{
@@ -85,8 +86,7 @@ void dc_dp_trace_set_is_logged_flag(struct dc_link *link,
link->dp_trace.commit_lt_trace.is_logged = is_logged;
}
-bool dc_dp_trace_is_logged(struct dc_link *link,
- bool in_detection)
+bool dp_trace_is_logged(struct dc_link *link, bool in_detection)
{
if (in_detection)
return link->dp_trace.detect_lt_trace.is_logged;
@@ -122,7 +122,7 @@ void dp_trace_set_lt_end_timestamp(struct dc_link *link,
link->dp_trace.commit_lt_trace.timestamps.end = dm_get_timestamp(link->dc->ctx);
}
-unsigned long long dc_dp_trace_get_lt_end_timestamp(struct dc_link *link,
+unsigned long long dp_trace_get_lt_end_timestamp(struct dc_link *link,
bool in_detection)
{
if (in_detection)
@@ -131,7 +131,7 @@ unsigned long long dc_dp_trace_get_lt_end_timestamp(struct dc_link *link,
return link->dp_trace.commit_lt_trace.timestamps.end;
}
-struct dp_trace_lt_counts *dc_dp_trace_get_lt_counts(struct dc_link *link,
+const struct dp_trace_lt_counts *dp_trace_get_lt_counts(struct dc_link *link,
bool in_detection)
{
if (in_detection)
@@ -140,7 +140,7 @@ struct dp_trace_lt_counts *dc_dp_trace_get_lt_counts(struct dc_link *link,
return &link->dp_trace.commit_lt_trace.counts;
}
-unsigned int dc_dp_trace_get_link_loss_count(struct dc_link *link)
+unsigned int dp_trace_get_link_loss_count(struct dc_link *link)
{
return link->dp_trace.link_loss_count;
}
@@ -163,4 +163,11 @@ uint64_t dp_trace_get_edp_poweron_timestamp(struct dc_link *link)
uint64_t dp_trace_get_edp_poweroff_timestamp(struct dc_link *link)
{
return link->dp_trace.edp_trace_power_timestamps.poweroff;
-} \ No newline at end of file
+}
+
+void dp_trace_source_sequence(struct dc_link *link, uint8_t dp_test_mode)
+{
+ if (link != NULL && link->dc->debug.enable_driver_sequence_debug)
+ core_link_write_dpcd(link, DP_SOURCE_SEQUENCE,
+ &dp_test_mode, sizeof(dp_test_mode));
+}
diff --git a/drivers/gpu/drm/amd/display/dc/link/link_dp_trace.h b/drivers/gpu/drm/amd/display/dc/link/accessories/link_dp_trace.h
index 26700e3cd65e..ab437a0c9101 100644
--- a/drivers/gpu/drm/amd/display/dc/link/link_dp_trace.h
+++ b/drivers/gpu/drm/amd/display/dc/link/accessories/link_dp_trace.h
@@ -24,10 +24,11 @@
*/
#ifndef __LINK_DP_TRACE_H__
#define __LINK_DP_TRACE_H__
+#include "link.h"
void dp_trace_init(struct dc_link *link);
void dp_trace_reset(struct dc_link *link);
-bool dc_dp_trace_is_initialized(struct dc_link *link);
+bool dp_trace_is_initialized(struct dc_link *link);
void dp_trace_detect_lt_init(struct dc_link *link);
void dp_trace_commit_lt_init(struct dc_link *link);
void dp_trace_link_loss_increment(struct dc_link *link);
@@ -36,10 +37,10 @@ void dp_trace_lt_fail_count_update(struct dc_link *link,
bool in_detection);
void dp_trace_lt_total_count_increment(struct dc_link *link,
bool in_detection);
-void dc_dp_trace_set_is_logged_flag(struct dc_link *link,
+void dp_trace_set_is_logged_flag(struct dc_link *link,
bool in_detection,
bool is_logged);
-bool dc_dp_trace_is_logged(struct dc_link *link,
+bool dp_trace_is_logged(struct dc_link *link,
bool in_detection);
void dp_trace_lt_result_update(struct dc_link *link,
enum link_training_result result,
@@ -48,15 +49,15 @@ void dp_trace_set_lt_start_timestamp(struct dc_link *link,
bool in_detection);
void dp_trace_set_lt_end_timestamp(struct dc_link *link,
bool in_detection);
-unsigned long long dc_dp_trace_get_lt_end_timestamp(struct dc_link *link,
+unsigned long long dp_trace_get_lt_end_timestamp(struct dc_link *link,
bool in_detection);
-struct dp_trace_lt_counts *dc_dp_trace_get_lt_counts(struct dc_link *link,
+const struct dp_trace_lt_counts *dp_trace_get_lt_counts(struct dc_link *link,
bool in_detection);
-unsigned int dc_dp_trace_get_link_loss_count(struct dc_link *link);
-
+unsigned int dp_trace_get_link_loss_count(struct dc_link *link);
void dp_trace_set_edp_power_timestamp(struct dc_link *link,
bool power_up);
uint64_t dp_trace_get_edp_poweron_timestamp(struct dc_link *link);
uint64_t dp_trace_get_edp_poweroff_timestamp(struct dc_link *link);
+void dp_trace_source_sequence(struct dc_link *link, uint8_t dp_test_mode);
#endif /* __LINK_DP_TRACE_H__ */
diff --git a/drivers/gpu/drm/amd/display/dc/link/accessories/link_fpga.c b/drivers/gpu/drm/amd/display/dc/link/accessories/link_fpga.c
new file mode 100644
index 000000000000..d3cc604eed67
--- /dev/null
+++ b/drivers/gpu/drm/amd/display/dc/link/accessories/link_fpga.c
@@ -0,0 +1,95 @@
+/*
+ * Copyright 2023 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ * Authors: AMD
+ *
+ */
+#include "link_fpga.h"
+#include "link/link_dpms.h"
+#include "dm_helpers.h"
+#include "link_hwss.h"
+#include "dccg.h"
+#include "resource.h"
+
+#define DC_LOGGER_INIT(logger)
+
+void dp_fpga_hpo_enable_link_and_stream(struct dc_state *state, struct pipe_ctx *pipe_ctx)
+{
+ struct dc *dc = pipe_ctx->stream->ctx->dc;
+ struct dc_stream_state *stream = pipe_ctx->stream;
+ struct link_mst_stream_allocation_table proposed_table = {0};
+ struct fixed31_32 avg_time_slots_per_mtp;
+ uint8_t req_slot_count = 0;
+ uint8_t vc_id = 1; /// VC ID always 1 for SST
+ struct dc_link_settings link_settings = pipe_ctx->link_config.dp_link_settings;
+ const struct link_hwss *link_hwss = get_link_hwss(stream->link, &pipe_ctx->link_res);
+ DC_LOGGER_INIT(pipe_ctx->stream->ctx->logger);
+
+ stream->link->cur_link_settings = link_settings;
+
+ if (link_hwss->ext.enable_dp_link_output)
+ link_hwss->ext.enable_dp_link_output(stream->link, &pipe_ctx->link_res,
+ stream->signal, pipe_ctx->clock_source->id,
+ &link_settings);
+
+ /* Enable DP_STREAM_ENC */
+ dc->hwss.enable_stream(pipe_ctx);
+
+ /* Set DPS PPS SDP (AKA "info frames") */
+ if (pipe_ctx->stream->timing.flags.DSC) {
+ link_set_dsc_pps_packet(pipe_ctx, true, true);
+ }
+
+ /* Allocate Payload */
+ if ((stream->signal == SIGNAL_TYPE_DISPLAY_PORT_MST) && (state->stream_count > 1)) {
+ // MST case
+ uint8_t i;
+
+ proposed_table.stream_count = state->stream_count;
+ for (i = 0; i < state->stream_count; i++) {
+ avg_time_slots_per_mtp = link_calculate_sst_avg_time_slots_per_mtp(state->streams[i], state->streams[i]->link);
+ req_slot_count = dc_fixpt_ceil(avg_time_slots_per_mtp);
+ proposed_table.stream_allocations[i].slot_count = req_slot_count;
+ proposed_table.stream_allocations[i].vcp_id = i+1;
+ /* NOTE: This makes assumption that pipe_ctx index is same as stream index */
+ proposed_table.stream_allocations[i].hpo_dp_stream_enc = state->res_ctx.pipe_ctx[i].stream_res.hpo_dp_stream_enc;
+ }
+ } else {
+ // SST case
+ avg_time_slots_per_mtp = link_calculate_sst_avg_time_slots_per_mtp(stream, stream->link);
+ req_slot_count = dc_fixpt_ceil(avg_time_slots_per_mtp);
+ proposed_table.stream_count = 1; /// Always 1 stream for SST
+ proposed_table.stream_allocations[0].slot_count = req_slot_count;
+ proposed_table.stream_allocations[0].vcp_id = vc_id;
+ proposed_table.stream_allocations[0].hpo_dp_stream_enc = pipe_ctx->stream_res.hpo_dp_stream_enc;
+ }
+
+ link_hwss->ext.update_stream_allocation_table(stream->link,
+ &pipe_ctx->link_res,
+ &proposed_table);
+
+ if (link_hwss->ext.set_throttled_vcp_size)
+ link_hwss->ext.set_throttled_vcp_size(pipe_ctx, avg_time_slots_per_mtp);
+
+ dc->hwss.unblank_stream(pipe_ctx, &stream->link->cur_link_settings);
+ dc->hwss.enable_audio_stream(pipe_ctx);
+}
+
diff --git a/drivers/gpu/drm/amd/display/dc/link/accessories/link_fpga.h b/drivers/gpu/drm/amd/display/dc/link/accessories/link_fpga.h
new file mode 100644
index 000000000000..3a80f5595943
--- /dev/null
+++ b/drivers/gpu/drm/amd/display/dc/link/accessories/link_fpga.h
@@ -0,0 +1,30 @@
+/*
+ * Copyright 2023 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ * Authors: AMD
+ *
+ */
+#ifndef __LINK_FPGA_H__
+#define __LINK_FPGA_H__
+#include "link.h"
+void dp_fpga_hpo_enable_link_and_stream(struct dc_state *state,
+ struct pipe_ctx *pipe_ctx);
+#endif /* __LINK_FPGA_H__ */
diff --git a/drivers/gpu/drm/amd/display/dc/link/link_hwss_dio.c b/drivers/gpu/drm/amd/display/dc/link/hwss/link_hwss_dio.c
index 4227adbc646a..bebf9c4c8702 100644
--- a/drivers/gpu/drm/amd/display/dc/link/link_hwss_dio.c
+++ b/drivers/gpu/drm/amd/display/dc/link/hwss/link_hwss_dio.c
@@ -24,7 +24,6 @@
*/
#include "link_hwss_dio.h"
#include "core_types.h"
-#include "dc_link_dp.h"
#include "link_enc_cfg.h"
void set_dio_throttled_vcp_size(struct pipe_ctx *pipe_ctx,
@@ -45,7 +44,7 @@ void setup_dio_stream_encoder(struct pipe_ctx *pipe_ctx)
link_enc->funcs->connect_dig_be_to_fe(link_enc,
pipe_ctx->stream_res.stream_enc->id, true);
if (dc_is_dp_signal(pipe_ctx->stream->signal))
- dp_source_sequence_trace(pipe_ctx->stream->link,
+ pipe_ctx->stream->ctx->dc->link_srv->dp_trace_source_sequence(pipe_ctx->stream->link,
DPCD_SOURCE_SEQ_AFTER_CONNECT_DIG_FE_BE);
if (stream_enc->funcs->enable_fifo)
stream_enc->funcs->enable_fifo(stream_enc);
@@ -64,7 +63,8 @@ void reset_dio_stream_encoder(struct pipe_ctx *pipe_ctx)
pipe_ctx->stream_res.stream_enc->id,
false);
if (dc_is_dp_signal(pipe_ctx->stream->signal))
- dp_source_sequence_trace(pipe_ctx->stream->link,
+ pipe_ctx->stream->ctx->dc->link_srv->dp_trace_source_sequence(
+ pipe_ctx->stream->link,
DPCD_SOURCE_SEQ_AFTER_DISCONNECT_DIG_FE_BE);
}
@@ -106,7 +106,8 @@ void setup_dio_stream_attribute(struct pipe_ctx *pipe_ctx)
&stream->timing);
if (dc_is_dp_signal(stream->signal))
- dp_source_sequence_trace(link, DPCD_SOURCE_SEQ_AFTER_DP_STREAM_ATTR);
+ link->dc->link_srv->dp_trace_source_sequence(link,
+ DPCD_SOURCE_SEQ_AFTER_DP_STREAM_ATTR);
}
void enable_dio_dp_link_output(struct dc_link *link,
@@ -127,7 +128,8 @@ void enable_dio_dp_link_output(struct dc_link *link,
link_enc,
link_settings,
clock_source);
- dp_source_sequence_trace(link, DPCD_SOURCE_SEQ_AFTER_ENABLE_LINK_PHY);
+ link->dc->link_srv->dp_trace_source_sequence(link,
+ DPCD_SOURCE_SEQ_AFTER_ENABLE_LINK_PHY);
}
void disable_dio_link_output(struct dc_link *link,
@@ -137,7 +139,8 @@ void disable_dio_link_output(struct dc_link *link,
struct link_encoder *link_enc = link_enc_cfg_get_link_enc(link);
link_enc->funcs->disable_output(link_enc, signal);
- dp_source_sequence_trace(link, DPCD_SOURCE_SEQ_AFTER_DISABLE_LINK_PHY);
+ link->dc->link_srv->dp_trace_source_sequence(link,
+ DPCD_SOURCE_SEQ_AFTER_DISABLE_LINK_PHY);
}
void set_dio_dp_link_test_pattern(struct dc_link *link,
@@ -147,7 +150,7 @@ void set_dio_dp_link_test_pattern(struct dc_link *link,
struct link_encoder *link_enc = link_enc_cfg_get_link_enc(link);
link_enc->funcs->dp_set_phy_pattern(link_enc, tp_params);
- dp_source_sequence_trace(link, DPCD_SOURCE_SEQ_AFTER_SET_SOURCE_PATTERN);
+ link->dc->link_srv->dp_trace_source_sequence(link, DPCD_SOURCE_SEQ_AFTER_SET_SOURCE_PATTERN);
}
void set_dio_dp_lane_settings(struct dc_link *link,
@@ -170,11 +173,65 @@ static void update_dio_stream_allocation_table(struct dc_link *link,
link_enc->funcs->update_mst_stream_allocation_table(link_enc, table);
}
+void setup_dio_audio_output(struct pipe_ctx *pipe_ctx,
+ struct audio_output *audio_output, uint32_t audio_inst)
+{
+ if (dc_is_dp_signal(pipe_ctx->stream->signal))
+ pipe_ctx->stream_res.stream_enc->funcs->dp_audio_setup(
+ pipe_ctx->stream_res.stream_enc,
+ audio_inst,
+ &pipe_ctx->stream->audio_info);
+ else
+ pipe_ctx->stream_res.stream_enc->funcs->hdmi_audio_setup(
+ pipe_ctx->stream_res.stream_enc,
+ audio_inst,
+ &pipe_ctx->stream->audio_info,
+ &audio_output->crtc_info);
+}
+
+void enable_dio_audio_packet(struct pipe_ctx *pipe_ctx)
+{
+ if (dc_is_dp_signal(pipe_ctx->stream->signal))
+ pipe_ctx->stream_res.stream_enc->funcs->dp_audio_enable(
+ pipe_ctx->stream_res.stream_enc);
+
+ pipe_ctx->stream_res.stream_enc->funcs->audio_mute_control(
+ pipe_ctx->stream_res.stream_enc, false);
+
+ if (dc_is_dp_signal(pipe_ctx->stream->signal))
+ pipe_ctx->stream->ctx->dc->link_srv->dp_trace_source_sequence(
+ pipe_ctx->stream->link,
+ DPCD_SOURCE_SEQ_AFTER_ENABLE_AUDIO_STREAM);
+}
+
+void disable_dio_audio_packet(struct pipe_ctx *pipe_ctx)
+{
+ pipe_ctx->stream_res.stream_enc->funcs->audio_mute_control(
+ pipe_ctx->stream_res.stream_enc, true);
+
+ if (pipe_ctx->stream_res.audio) {
+ if (dc_is_dp_signal(pipe_ctx->stream->signal))
+ pipe_ctx->stream_res.stream_enc->funcs->dp_audio_disable(
+ pipe_ctx->stream_res.stream_enc);
+ else
+ pipe_ctx->stream_res.stream_enc->funcs->hdmi_audio_disable(
+ pipe_ctx->stream_res.stream_enc);
+ }
+
+ if (dc_is_dp_signal(pipe_ctx->stream->signal))
+ pipe_ctx->stream->ctx->dc->link_srv->dp_trace_source_sequence(
+ pipe_ctx->stream->link,
+ DPCD_SOURCE_SEQ_AFTER_DISABLE_AUDIO_STREAM);
+}
+
static const struct link_hwss dio_link_hwss = {
.setup_stream_encoder = setup_dio_stream_encoder,
.reset_stream_encoder = reset_dio_stream_encoder,
.setup_stream_attribute = setup_dio_stream_attribute,
.disable_link_output = disable_dio_link_output,
+ .setup_audio_output = setup_dio_audio_output,
+ .enable_audio_packet = enable_dio_audio_packet,
+ .disable_audio_packet = disable_dio_audio_packet,
.ext = {
.set_throttled_vcp_size = set_dio_throttled_vcp_size,
.enable_dp_link_output = enable_dio_dp_link_output,
diff --git a/drivers/gpu/drm/amd/display/dc/link/link_hwss_dio.h b/drivers/gpu/drm/amd/display/dc/link/hwss/link_hwss_dio.h
index 126d37f847a1..8b8a099feeb0 100644
--- a/drivers/gpu/drm/amd/display/dc/link/link_hwss_dio.h
+++ b/drivers/gpu/drm/amd/display/dc/link/hwss/link_hwss_dio.h
@@ -26,6 +26,7 @@
#define __LINK_HWSS_DIO_H__
#include "link_hwss.h"
+#include "link.h"
const struct link_hwss *get_dio_link_hwss(void);
bool can_use_dio_link_hwss(const struct dc_link *link,
@@ -50,5 +51,9 @@ void set_dio_dp_lane_settings(struct dc_link *link,
const struct link_resource *link_res,
const struct dc_link_settings *link_settings,
const struct dc_lane_settings lane_settings[LANE_COUNT_DP_MAX]);
+void setup_dio_audio_output(struct pipe_ctx *pipe_ctx,
+ struct audio_output *audio_output, uint32_t audio_inst);
+void enable_dio_audio_packet(struct pipe_ctx *pipe_ctx);
+void disable_dio_audio_packet(struct pipe_ctx *pipe_ctx);
#endif /* __LINK_HWSS_DIO_H__ */
diff --git a/drivers/gpu/drm/amd/display/dc/link/link_hwss_dpia.c b/drivers/gpu/drm/amd/display/dc/link/hwss/link_hwss_dpia.c
index 64f7ea6a9aa3..861f3cd5b356 100644
--- a/drivers/gpu/drm/amd/display/dc/link/link_hwss_dpia.c
+++ b/drivers/gpu/drm/amd/display/dc/link/hwss/link_hwss_dpia.c
@@ -57,6 +57,9 @@ static const struct link_hwss dpia_link_hwss = {
.reset_stream_encoder = reset_dio_stream_encoder,
.setup_stream_attribute = setup_dio_stream_attribute,
.disable_link_output = disable_dio_link_output,
+ .setup_audio_output = setup_dio_audio_output,
+ .enable_audio_packet = enable_dio_audio_packet,
+ .disable_audio_packet = disable_dio_audio_packet,
.ext = {
.set_throttled_vcp_size = set_dio_throttled_vcp_size,
.enable_dp_link_output = enable_dio_dp_link_output,
diff --git a/drivers/gpu/drm/amd/display/dc/link/link_hwss_dpia.h b/drivers/gpu/drm/amd/display/dc/link/hwss/link_hwss_dpia.h
index ad16ec5d9bb7..ad16ec5d9bb7 100644
--- a/drivers/gpu/drm/amd/display/dc/link/link_hwss_dpia.h
+++ b/drivers/gpu/drm/amd/display/dc/link/hwss/link_hwss_dpia.h
diff --git a/drivers/gpu/drm/amd/display/dc/link/link_hwss_hpo_dp.c b/drivers/gpu/drm/amd/display/dc/link/hwss/link_hwss_hpo_dp.c
index 153a88381f2c..edd7d026a762 100644
--- a/drivers/gpu/drm/amd/display/dc/link/link_hwss_hpo_dp.c
+++ b/drivers/gpu/drm/amd/display/dc/link/hwss/link_hwss_hpo_dp.c
@@ -26,7 +26,6 @@
#include "dm_helpers.h"
#include "core_types.h"
#include "dccg.h"
-#include "dc_link_dp.h"
#include "clk_mgr.h"
static enum phyd32clk_clock_source get_phyd32clk_src(struct dc_link *link)
@@ -69,7 +68,8 @@ static void set_hpo_dp_hblank_min_symbol_width(struct pipe_ctx *pipe_ctx,
struct dc_crtc_timing *timing = &pipe_ctx->stream->timing;
struct fixed31_32 h_blank_in_ms, time_slot_in_ms, mtp_cnt_per_h_blank;
uint32_t link_bw_in_kbps =
- dc_link_bandwidth_kbps(pipe_ctx->stream->link, link_settings);
+ hpo_dp_stream_encoder->ctx->dc->link_srv->dp_link_bandwidth_kbps(
+ pipe_ctx->stream->link, link_settings);
uint16_t hblank_min_symbol_width = 0;
if (link_bw_in_kbps > 0) {
@@ -87,57 +87,20 @@ static void set_hpo_dp_hblank_min_symbol_width(struct pipe_ctx *pipe_ctx,
hblank_min_symbol_width);
}
-static int get_odm_segment_count(struct pipe_ctx *pipe_ctx)
-{
- struct pipe_ctx *odm_pipe = pipe_ctx->next_odm_pipe;
- int count = 1;
-
- while (odm_pipe != NULL) {
- count++;
- odm_pipe = odm_pipe->next_odm_pipe;
- }
-
- return count;
-}
-
static void setup_hpo_dp_stream_encoder(struct pipe_ctx *pipe_ctx)
{
- struct dc *dc = pipe_ctx->stream->ctx->dc;
struct hpo_dp_stream_encoder *stream_enc = pipe_ctx->stream_res.hpo_dp_stream_enc;
struct hpo_dp_link_encoder *link_enc = pipe_ctx->link_res.hpo_dp_link_enc;
- struct dccg *dccg = dc->res_pool->dccg;
- struct timing_generator *tg = pipe_ctx->stream_res.tg;
- struct dtbclk_dto_params dto_params = {0};
- enum phyd32clk_clock_source phyd32clk = get_phyd32clk_src(pipe_ctx->stream->link);
-
- dto_params.otg_inst = tg->inst;
- dto_params.pixclk_khz = pipe_ctx->stream->timing.pix_clk_100hz / 10;
- dto_params.num_odm_segments = get_odm_segment_count(pipe_ctx);
- dto_params.timing = &pipe_ctx->stream->timing;
- dto_params.ref_dtbclk_khz = dc->clk_mgr->funcs->get_dtb_ref_clk_frequency(dc->clk_mgr);
- dccg->funcs->set_dpstreamclk(dccg, DTBCLK0, tg->inst, stream_enc->inst);
- dccg->funcs->enable_symclk32_se(dccg, stream_enc->inst, phyd32clk);
- dccg->funcs->set_dtbclk_dto(dccg, &dto_params);
stream_enc->funcs->enable_stream(stream_enc);
stream_enc->funcs->map_stream_to_link(stream_enc, stream_enc->inst, link_enc->inst);
}
static void reset_hpo_dp_stream_encoder(struct pipe_ctx *pipe_ctx)
{
- struct dc *dc = pipe_ctx->stream->ctx->dc;
struct hpo_dp_stream_encoder *stream_enc = pipe_ctx->stream_res.hpo_dp_stream_enc;
- struct dccg *dccg = dc->res_pool->dccg;
- struct timing_generator *tg = pipe_ctx->stream_res.tg;
- struct dtbclk_dto_params dto_params = {0};
-
- dto_params.otg_inst = tg->inst;
- dto_params.timing = &pipe_ctx->stream->timing;
stream_enc->funcs->disable(stream_enc);
- dccg->funcs->set_dtbclk_dto(dccg, &dto_params);
- dccg->funcs->disable_symclk32_se(dccg, stream_enc->inst);
- dccg->funcs->set_dpstreamclk(dccg, REFCLK, tg->inst, stream_enc->inst);
}
static void setup_hpo_dp_stream_attribute(struct pipe_ctx *pipe_ctx)
@@ -153,7 +116,8 @@ static void setup_hpo_dp_stream_attribute(struct pipe_ctx *pipe_ctx)
stream->use_vsc_sdp_for_colorimetry,
stream->timing.flags.DSC,
false);
- dp_source_sequence_trace(link, DPCD_SOURCE_SEQ_AFTER_DP_STREAM_ATTR);
+ link->dc->link_srv->dp_trace_source_sequence(link,
+ DPCD_SOURCE_SEQ_AFTER_DP_STREAM_ATTR);
}
static void enable_hpo_dp_fpga_link_output(struct dc_link *link,
@@ -239,7 +203,7 @@ static void set_hpo_dp_link_test_pattern(struct dc_link *link,
{
link_res->hpo_dp_link_enc->funcs->set_link_test_pattern(
link_res->hpo_dp_link_enc, tp_params);
- dp_source_sequence_trace(link, DPCD_SOURCE_SEQ_AFTER_SET_SOURCE_PATTERN);
+ link->dc->link_srv->dp_trace_source_sequence(link, DPCD_SOURCE_SEQ_AFTER_SET_SOURCE_PATTERN);
}
static void set_hpo_dp_lane_settings(struct dc_link *link,
@@ -262,11 +226,36 @@ static void update_hpo_dp_stream_allocation_table(struct dc_link *link,
table);
}
+static void setup_hpo_dp_audio_output(struct pipe_ctx *pipe_ctx,
+ struct audio_output *audio_output, uint32_t audio_inst)
+{
+ pipe_ctx->stream_res.hpo_dp_stream_enc->funcs->dp_audio_setup(
+ pipe_ctx->stream_res.hpo_dp_stream_enc,
+ audio_inst,
+ &pipe_ctx->stream->audio_info);
+}
+
+static void enable_hpo_dp_audio_packet(struct pipe_ctx *pipe_ctx)
+{
+ pipe_ctx->stream_res.hpo_dp_stream_enc->funcs->dp_audio_enable(
+ pipe_ctx->stream_res.hpo_dp_stream_enc);
+}
+
+static void disable_hpo_dp_audio_packet(struct pipe_ctx *pipe_ctx)
+{
+ if (pipe_ctx->stream_res.audio)
+ pipe_ctx->stream_res.hpo_dp_stream_enc->funcs->dp_audio_disable(
+ pipe_ctx->stream_res.hpo_dp_stream_enc);
+}
+
static const struct link_hwss hpo_dp_link_hwss = {
.setup_stream_encoder = setup_hpo_dp_stream_encoder,
.reset_stream_encoder = reset_hpo_dp_stream_encoder,
.setup_stream_attribute = setup_hpo_dp_stream_attribute,
.disable_link_output = disable_hpo_dp_link_output,
+ .setup_audio_output = setup_hpo_dp_audio_output,
+ .enable_audio_packet = enable_hpo_dp_audio_packet,
+ .disable_audio_packet = disable_hpo_dp_audio_packet,
.ext = {
.set_throttled_vcp_size = set_hpo_dp_throttled_vcp_size,
.set_hblank_min_symbol_width = set_hpo_dp_hblank_min_symbol_width,
diff --git a/drivers/gpu/drm/amd/display/dc/link/link_hwss_hpo_dp.h b/drivers/gpu/drm/amd/display/dc/link/hwss/link_hwss_hpo_dp.h
index 57d447ec27b8..3cbb94b41a23 100644
--- a/drivers/gpu/drm/amd/display/dc/link/link_hwss_hpo_dp.h
+++ b/drivers/gpu/drm/amd/display/dc/link/hwss/link_hwss_hpo_dp.h
@@ -26,6 +26,7 @@
#define __LINK_HWSS_HPO_DP_H__
#include "link_hwss.h"
+#include "link.h"
bool can_use_hpo_dp_link_hwss(const struct dc_link *link,
const struct link_resource *link_res);
diff --git a/drivers/gpu/drm/amd/display/dc/link/link_detection.c b/drivers/gpu/drm/amd/display/dc/link/link_detection.c
new file mode 100644
index 000000000000..a131e30fd7d6
--- /dev/null
+++ b/drivers/gpu/drm/amd/display/dc/link/link_detection.c
@@ -0,0 +1,1427 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ * Authors: AMD
+ *
+ */
+
+/* FILE POLICY AND INTENDED USAGE:
+ * This file manages link detection states and receiver states by using various
+ * link protocols. It also provides helper functions to interpret certain
+ * capabilities or status based on the states it manages or retrieve them
+ * directly from connected receivers.
+ */
+
+#include "link_dpms.h"
+#include "link_detection.h"
+#include "link_hwss.h"
+#include "protocols/link_edp_panel_control.h"
+#include "protocols/link_ddc.h"
+#include "protocols/link_hpd.h"
+#include "protocols/link_dpcd.h"
+#include "protocols/link_dp_capability.h"
+#include "protocols/link_dp_dpia.h"
+#include "protocols/link_dp_phy.h"
+#include "protocols/link_dp_training.h"
+#include "accessories/link_dp_trace.h"
+
+#include "link_enc_cfg.h"
+#include "dm_helpers.h"
+#include "clk_mgr.h"
+
+#define DC_LOGGER_INIT(logger)
+
+#define LINK_INFO(...) \
+ DC_LOG_HW_HOTPLUG( \
+ __VA_ARGS__)
+/*
+ * Some receivers fail to train on first try and are good
+ * on subsequent tries. 2 retries should be plenty. If we
+ * don't have a successful training then we don't expect to
+ * ever get one.
+ */
+#define LINK_TRAINING_MAX_VERIFY_RETRY 2
+
+static const u8 DP_SINK_BRANCH_DEV_NAME_7580[] = "7580\x80u";
+
+static const uint8_t dp_hdmi_dongle_signature_str[] = "DP-HDMI ADAPTOR";
+
+static enum ddc_transaction_type get_ddc_transaction_type(enum signal_type sink_signal)
+{
+ enum ddc_transaction_type transaction_type = DDC_TRANSACTION_TYPE_NONE;
+
+ switch (sink_signal) {
+ case SIGNAL_TYPE_DVI_SINGLE_LINK:
+ case SIGNAL_TYPE_DVI_DUAL_LINK:
+ case SIGNAL_TYPE_HDMI_TYPE_A:
+ case SIGNAL_TYPE_LVDS:
+ case SIGNAL_TYPE_RGB:
+ transaction_type = DDC_TRANSACTION_TYPE_I2C;
+ break;
+
+ case SIGNAL_TYPE_DISPLAY_PORT:
+ case SIGNAL_TYPE_EDP:
+ transaction_type = DDC_TRANSACTION_TYPE_I2C_OVER_AUX;
+ break;
+
+ case SIGNAL_TYPE_DISPLAY_PORT_MST:
+ /* MST does not use I2COverAux, but there is the
+ * SPECIAL use case for "immediate dwnstrm device
+ * access" (EPR#370830).
+ */
+ transaction_type = DDC_TRANSACTION_TYPE_I2C_OVER_AUX;
+ break;
+
+ default:
+ break;
+ }
+
+ return transaction_type;
+}
+
+static enum signal_type get_basic_signal_type(struct graphics_object_id encoder,
+ struct graphics_object_id downstream)
+{
+ if (downstream.type == OBJECT_TYPE_CONNECTOR) {
+ switch (downstream.id) {
+ case CONNECTOR_ID_SINGLE_LINK_DVII:
+ switch (encoder.id) {
+ case ENCODER_ID_INTERNAL_DAC1:
+ case ENCODER_ID_INTERNAL_KLDSCP_DAC1:
+ case ENCODER_ID_INTERNAL_DAC2:
+ case ENCODER_ID_INTERNAL_KLDSCP_DAC2:
+ return SIGNAL_TYPE_RGB;
+ default:
+ return SIGNAL_TYPE_DVI_SINGLE_LINK;
+ }
+ break;
+ case CONNECTOR_ID_DUAL_LINK_DVII:
+ {
+ switch (encoder.id) {
+ case ENCODER_ID_INTERNAL_DAC1:
+ case ENCODER_ID_INTERNAL_KLDSCP_DAC1:
+ case ENCODER_ID_INTERNAL_DAC2:
+ case ENCODER_ID_INTERNAL_KLDSCP_DAC2:
+ return SIGNAL_TYPE_RGB;
+ default:
+ return SIGNAL_TYPE_DVI_DUAL_LINK;
+ }
+ }
+ break;
+ case CONNECTOR_ID_SINGLE_LINK_DVID:
+ return SIGNAL_TYPE_DVI_SINGLE_LINK;
+ case CONNECTOR_ID_DUAL_LINK_DVID:
+ return SIGNAL_TYPE_DVI_DUAL_LINK;
+ case CONNECTOR_ID_VGA:
+ return SIGNAL_TYPE_RGB;
+ case CONNECTOR_ID_HDMI_TYPE_A:
+ return SIGNAL_TYPE_HDMI_TYPE_A;
+ case CONNECTOR_ID_LVDS:
+ return SIGNAL_TYPE_LVDS;
+ case CONNECTOR_ID_DISPLAY_PORT:
+ case CONNECTOR_ID_USBC:
+ return SIGNAL_TYPE_DISPLAY_PORT;
+ case CONNECTOR_ID_EDP:
+ return SIGNAL_TYPE_EDP;
+ default:
+ return SIGNAL_TYPE_NONE;
+ }
+ } else if (downstream.type == OBJECT_TYPE_ENCODER) {
+ switch (downstream.id) {
+ case ENCODER_ID_EXTERNAL_NUTMEG:
+ case ENCODER_ID_EXTERNAL_TRAVIS:
+ return SIGNAL_TYPE_DISPLAY_PORT;
+ default:
+ return SIGNAL_TYPE_NONE;
+ }
+ }
+
+ return SIGNAL_TYPE_NONE;
+}
+
+/*
+ * @brief
+ * Detect output sink type
+ */
+static enum signal_type link_detect_sink_signal_type(struct dc_link *link,
+ enum dc_detect_reason reason)
+{
+ enum signal_type result;
+ struct graphics_object_id enc_id;
+
+ if (link->is_dig_mapping_flexible)
+ enc_id = (struct graphics_object_id){.id = ENCODER_ID_UNKNOWN};
+ else
+ enc_id = link->link_enc->id;
+ result = get_basic_signal_type(enc_id, link->link_id);
+
+ /* Use basic signal type for link without physical connector. */
+ if (link->ep_type != DISPLAY_ENDPOINT_PHY)
+ return result;
+
+ /* Internal digital encoder will detect only dongles
+ * that require digital signal
+ */
+
+ /* Detection mechanism is different
+ * for different native connectors.
+ * LVDS connector supports only LVDS signal;
+ * PCIE is a bus slot, the actual connector needs to be detected first;
+ * eDP connector supports only eDP signal;
+ * HDMI should check straps for audio
+ */
+
+ /* PCIE detects the actual connector on add-on board */
+ if (link->link_id.id == CONNECTOR_ID_PCIE) {
+ /* ZAZTODO implement PCIE add-on card detection */
+ }
+
+ switch (link->link_id.id) {
+ case CONNECTOR_ID_HDMI_TYPE_A: {
+ /* check audio support:
+ * if native HDMI is not supported, switch to DVI
+ */
+ struct audio_support *aud_support =
+ &link->dc->res_pool->audio_support;
+
+ if (!aud_support->hdmi_audio_native)
+ if (link->link_id.id == CONNECTOR_ID_HDMI_TYPE_A)
+ result = SIGNAL_TYPE_DVI_SINGLE_LINK;
+ }
+ break;
+ case CONNECTOR_ID_DISPLAY_PORT:
+ case CONNECTOR_ID_USBC: {
+ /* DP HPD short pulse. Passive DP dongle will not
+ * have short pulse
+ */
+ if (reason != DETECT_REASON_HPDRX) {
+ /* Check whether DP signal detected: if not -
+ * we assume signal is DVI; it could be corrected
+ * to HDMI after dongle detection
+ */
+ if (!dm_helpers_is_dp_sink_present(link))
+ result = SIGNAL_TYPE_DVI_SINGLE_LINK;
+ }
+ }
+ break;
+ default:
+ break;
+ }
+
+ return result;
+}
+
+static enum signal_type decide_signal_from_strap_and_dongle_type(enum display_dongle_type dongle_type,
+ struct audio_support *audio_support)
+{
+ enum signal_type signal = SIGNAL_TYPE_NONE;
+
+ switch (dongle_type) {
+ case DISPLAY_DONGLE_DP_HDMI_DONGLE:
+ if (audio_support->hdmi_audio_on_dongle)
+ signal = SIGNAL_TYPE_HDMI_TYPE_A;
+ else
+ signal = SIGNAL_TYPE_DVI_SINGLE_LINK;
+ break;
+ case DISPLAY_DONGLE_DP_DVI_DONGLE:
+ signal = SIGNAL_TYPE_DVI_SINGLE_LINK;
+ break;
+ case DISPLAY_DONGLE_DP_HDMI_MISMATCHED_DONGLE:
+ if (audio_support->hdmi_audio_native)
+ signal = SIGNAL_TYPE_HDMI_TYPE_A;
+ else
+ signal = SIGNAL_TYPE_DVI_SINGLE_LINK;
+ break;
+ default:
+ signal = SIGNAL_TYPE_NONE;
+ break;
+ }
+
+ return signal;
+}
+
+static void read_scdc_caps(struct ddc_service *ddc_service,
+ struct dc_sink *sink)
+{
+ uint8_t slave_address = HDMI_SCDC_ADDRESS;
+ uint8_t offset = HDMI_SCDC_MANUFACTURER_OUI;
+
+ link_query_ddc_data(ddc_service, slave_address, &offset,
+ sizeof(offset), sink->scdc_caps.manufacturer_OUI.byte,
+ sizeof(sink->scdc_caps.manufacturer_OUI.byte));
+
+ offset = HDMI_SCDC_DEVICE_ID;
+
+ link_query_ddc_data(ddc_service, slave_address, &offset,
+ sizeof(offset), &(sink->scdc_caps.device_id.byte),
+ sizeof(sink->scdc_caps.device_id.byte));
+}
+
+static bool i2c_read(
+ struct ddc_service *ddc,
+ uint32_t address,
+ uint8_t *buffer,
+ uint32_t len)
+{
+ uint8_t offs_data = 0;
+ struct i2c_payload payloads[2] = {
+ {
+ .write = true,
+ .address = address,
+ .length = 1,
+ .data = &offs_data },
+ {
+ .write = false,
+ .address = address,
+ .length = len,
+ .data = buffer } };
+
+ struct i2c_command command = {
+ .payloads = payloads,
+ .number_of_payloads = 2,
+ .engine = DDC_I2C_COMMAND_ENGINE,
+ .speed = ddc->ctx->dc->caps.i2c_speed_in_khz };
+
+ return dm_helpers_submit_i2c(
+ ddc->ctx,
+ ddc->link,
+ &command);
+}
+
+enum {
+ DP_SINK_CAP_SIZE =
+ DP_EDP_CONFIGURATION_CAP - DP_DPCD_REV + 1
+};
+
+static void query_dp_dual_mode_adaptor(
+ struct ddc_service *ddc,
+ struct display_sink_capability *sink_cap)
+{
+ uint8_t i;
+ bool is_valid_hdmi_signature;
+ enum display_dongle_type *dongle = &sink_cap->dongle_type;
+ uint8_t type2_dongle_buf[DP_ADAPTOR_TYPE2_SIZE];
+ bool is_type2_dongle = false;
+ int retry_count = 2;
+ struct dp_hdmi_dongle_signature_data *dongle_signature;
+
+ /* Assume we have no valid DP passive dongle connected */
+ *dongle = DISPLAY_DONGLE_NONE;
+ sink_cap->max_hdmi_pixel_clock = DP_ADAPTOR_HDMI_SAFE_MAX_TMDS_CLK;
+
+ /* Read DP-HDMI dongle I2c (no response interpreted as DP-DVI dongle)*/
+ if (!i2c_read(
+ ddc,
+ DP_HDMI_DONGLE_ADDRESS,
+ type2_dongle_buf,
+ sizeof(type2_dongle_buf))) {
+ /* Passive HDMI dongles can sometimes fail here without retrying*/
+ while (retry_count > 0) {
+ if (i2c_read(ddc,
+ DP_HDMI_DONGLE_ADDRESS,
+ type2_dongle_buf,
+ sizeof(type2_dongle_buf)))
+ break;
+ retry_count--;
+ }
+ if (retry_count == 0) {
+ *dongle = DISPLAY_DONGLE_DP_DVI_DONGLE;
+ sink_cap->max_hdmi_pixel_clock = DP_ADAPTOR_DVI_MAX_TMDS_CLK;
+
+ CONN_DATA_DETECT(ddc->link, type2_dongle_buf, sizeof(type2_dongle_buf),
+ "DP-DVI passive dongle %dMhz: ",
+ DP_ADAPTOR_DVI_MAX_TMDS_CLK / 1000);
+ return;
+ }
+ }
+
+ /* Check if Type 2 dongle.*/
+ if (type2_dongle_buf[DP_ADAPTOR_TYPE2_REG_ID] == DP_ADAPTOR_TYPE2_ID)
+ is_type2_dongle = true;
+
+ dongle_signature =
+ (struct dp_hdmi_dongle_signature_data *)type2_dongle_buf;
+
+ is_valid_hdmi_signature = true;
+
+ /* Check EOT */
+ if (dongle_signature->eot != DP_HDMI_DONGLE_SIGNATURE_EOT) {
+ is_valid_hdmi_signature = false;
+ }
+
+ /* Check signature */
+ for (i = 0; i < sizeof(dongle_signature->id); ++i) {
+ /* If its not the right signature,
+ * skip mismatch in subversion byte.*/
+ if (dongle_signature->id[i] !=
+ dp_hdmi_dongle_signature_str[i] && i != 3) {
+
+ if (is_type2_dongle) {
+ is_valid_hdmi_signature = false;
+ break;
+ }
+
+ }
+ }
+
+ if (is_type2_dongle) {
+ uint32_t max_tmds_clk =
+ type2_dongle_buf[DP_ADAPTOR_TYPE2_REG_MAX_TMDS_CLK];
+
+ max_tmds_clk = max_tmds_clk * 2 + max_tmds_clk / 2;
+
+ if (0 == max_tmds_clk ||
+ max_tmds_clk < DP_ADAPTOR_TYPE2_MIN_TMDS_CLK ||
+ max_tmds_clk > DP_ADAPTOR_TYPE2_MAX_TMDS_CLK) {
+ *dongle = DISPLAY_DONGLE_DP_DVI_DONGLE;
+
+ CONN_DATA_DETECT(ddc->link, type2_dongle_buf,
+ sizeof(type2_dongle_buf),
+ "DP-DVI passive dongle %dMhz: ",
+ DP_ADAPTOR_DVI_MAX_TMDS_CLK / 1000);
+ } else {
+ if (is_valid_hdmi_signature == true) {
+ *dongle = DISPLAY_DONGLE_DP_HDMI_DONGLE;
+
+ CONN_DATA_DETECT(ddc->link, type2_dongle_buf,
+ sizeof(type2_dongle_buf),
+ "Type 2 DP-HDMI passive dongle %dMhz: ",
+ max_tmds_clk);
+ } else {
+ *dongle = DISPLAY_DONGLE_DP_HDMI_MISMATCHED_DONGLE;
+
+ CONN_DATA_DETECT(ddc->link, type2_dongle_buf,
+ sizeof(type2_dongle_buf),
+ "Type 2 DP-HDMI passive dongle (no signature) %dMhz: ",
+ max_tmds_clk);
+
+ }
+
+ /* Multiply by 1000 to convert to kHz. */
+ sink_cap->max_hdmi_pixel_clock =
+ max_tmds_clk * 1000;
+ }
+ sink_cap->is_dongle_type_one = false;
+
+ } else {
+ if (is_valid_hdmi_signature == true) {
+ *dongle = DISPLAY_DONGLE_DP_HDMI_DONGLE;
+
+ CONN_DATA_DETECT(ddc->link, type2_dongle_buf,
+ sizeof(type2_dongle_buf),
+ "Type 1 DP-HDMI passive dongle %dMhz: ",
+ sink_cap->max_hdmi_pixel_clock / 1000);
+ } else {
+ *dongle = DISPLAY_DONGLE_DP_HDMI_MISMATCHED_DONGLE;
+
+ CONN_DATA_DETECT(ddc->link, type2_dongle_buf,
+ sizeof(type2_dongle_buf),
+ "Type 1 DP-HDMI passive dongle (no signature) %dMhz: ",
+ sink_cap->max_hdmi_pixel_clock / 1000);
+ }
+ sink_cap->is_dongle_type_one = true;
+ }
+
+ return;
+}
+
+static enum signal_type dp_passive_dongle_detection(struct ddc_service *ddc,
+ struct display_sink_capability *sink_cap,
+ struct audio_support *audio_support)
+{
+ query_dp_dual_mode_adaptor(ddc, sink_cap);
+
+ return decide_signal_from_strap_and_dongle_type(sink_cap->dongle_type,
+ audio_support);
+}
+
+static void link_disconnect_sink(struct dc_link *link)
+{
+ if (link->local_sink) {
+ dc_sink_release(link->local_sink);
+ link->local_sink = NULL;
+ }
+
+ link->dpcd_sink_count = 0;
+ //link->dpcd_caps.dpcd_rev.raw = 0;
+}
+
+static void link_disconnect_remap(struct dc_sink *prev_sink, struct dc_link *link)
+{
+ dc_sink_release(link->local_sink);
+ link->local_sink = prev_sink;
+}
+
+static void query_hdcp_capability(enum signal_type signal, struct dc_link *link)
+{
+ struct hdcp_protection_message msg22;
+ struct hdcp_protection_message msg14;
+
+ memset(&msg22, 0, sizeof(struct hdcp_protection_message));
+ memset(&msg14, 0, sizeof(struct hdcp_protection_message));
+ memset(link->hdcp_caps.rx_caps.raw, 0,
+ sizeof(link->hdcp_caps.rx_caps.raw));
+
+ if ((link->connector_signal == SIGNAL_TYPE_DISPLAY_PORT &&
+ link->ddc->transaction_type ==
+ DDC_TRANSACTION_TYPE_I2C_OVER_AUX) ||
+ link->connector_signal == SIGNAL_TYPE_EDP) {
+ msg22.data = link->hdcp_caps.rx_caps.raw;
+ msg22.length = sizeof(link->hdcp_caps.rx_caps.raw);
+ msg22.msg_id = HDCP_MESSAGE_ID_RX_CAPS;
+ } else {
+ msg22.data = &link->hdcp_caps.rx_caps.fields.version;
+ msg22.length = sizeof(link->hdcp_caps.rx_caps.fields.version);
+ msg22.msg_id = HDCP_MESSAGE_ID_HDCP2VERSION;
+ }
+ msg22.version = HDCP_VERSION_22;
+ msg22.link = HDCP_LINK_PRIMARY;
+ msg22.max_retries = 5;
+ dc_process_hdcp_msg(signal, link, &msg22);
+
+ if (signal == SIGNAL_TYPE_DISPLAY_PORT || signal == SIGNAL_TYPE_DISPLAY_PORT_MST) {
+ msg14.data = &link->hdcp_caps.bcaps.raw;
+ msg14.length = sizeof(link->hdcp_caps.bcaps.raw);
+ msg14.msg_id = HDCP_MESSAGE_ID_READ_BCAPS;
+ msg14.version = HDCP_VERSION_14;
+ msg14.link = HDCP_LINK_PRIMARY;
+ msg14.max_retries = 5;
+
+ dc_process_hdcp_msg(signal, link, &msg14);
+ }
+
+}
+static void read_current_link_settings_on_detect(struct dc_link *link)
+{
+ union lane_count_set lane_count_set = {0};
+ uint8_t link_bw_set;
+ uint8_t link_rate_set;
+ uint32_t read_dpcd_retry_cnt = 10;
+ enum dc_status status = DC_ERROR_UNEXPECTED;
+ int i;
+ union max_down_spread max_down_spread = {0};
+
+ // Read DPCD 00101h to find out the number of lanes currently set
+ for (i = 0; i < read_dpcd_retry_cnt; i++) {
+ status = core_link_read_dpcd(link,
+ DP_LANE_COUNT_SET,
+ &lane_count_set.raw,
+ sizeof(lane_count_set));
+ /* First DPCD read after VDD ON can fail if the particular board
+ * does not have HPD pin wired correctly. So if DPCD read fails,
+ * which it should never happen, retry a few times. Target worst
+ * case scenario of 80 ms.
+ */
+ if (status == DC_OK) {
+ link->cur_link_settings.lane_count =
+ lane_count_set.bits.LANE_COUNT_SET;
+ break;
+ }
+
+ msleep(8);
+ }
+
+ // Read DPCD 00100h to find if standard link rates are set
+ core_link_read_dpcd(link, DP_LINK_BW_SET,
+ &link_bw_set, sizeof(link_bw_set));
+
+ if (link_bw_set == 0) {
+ if (link->connector_signal == SIGNAL_TYPE_EDP) {
+ /* If standard link rates are not being used,
+ * Read DPCD 00115h to find the edp link rate set used
+ */
+ core_link_read_dpcd(link, DP_LINK_RATE_SET,
+ &link_rate_set, sizeof(link_rate_set));
+
+ // edp_supported_link_rates_count = 0 for DP
+ if (link_rate_set < link->dpcd_caps.edp_supported_link_rates_count) {
+ link->cur_link_settings.link_rate =
+ link->dpcd_caps.edp_supported_link_rates[link_rate_set];
+ link->cur_link_settings.link_rate_set = link_rate_set;
+ link->cur_link_settings.use_link_rate_set = true;
+ }
+ } else {
+ // Link Rate not found. Seamless boot may not work.
+ ASSERT(false);
+ }
+ } else {
+ link->cur_link_settings.link_rate = link_bw_set;
+ link->cur_link_settings.use_link_rate_set = false;
+ }
+ // Read DPCD 00003h to find the max down spread.
+ core_link_read_dpcd(link, DP_MAX_DOWNSPREAD,
+ &max_down_spread.raw, sizeof(max_down_spread));
+ link->cur_link_settings.link_spread =
+ max_down_spread.bits.MAX_DOWN_SPREAD ?
+ LINK_SPREAD_05_DOWNSPREAD_30KHZ : LINK_SPREAD_DISABLED;
+}
+
+static bool detect_dp(struct dc_link *link,
+ struct display_sink_capability *sink_caps,
+ enum dc_detect_reason reason)
+{
+ struct audio_support *audio_support = &link->dc->res_pool->audio_support;
+
+ sink_caps->signal = link_detect_sink_signal_type(link, reason);
+ sink_caps->transaction_type =
+ get_ddc_transaction_type(sink_caps->signal);
+
+ if (sink_caps->transaction_type == DDC_TRANSACTION_TYPE_I2C_OVER_AUX) {
+ sink_caps->signal = SIGNAL_TYPE_DISPLAY_PORT;
+ if (!detect_dp_sink_caps(link))
+ return false;
+
+ if (is_dp_branch_device(link))
+ /* DP SST branch */
+ link->type = dc_connection_sst_branch;
+ } else {
+ /* DP passive dongles */
+ sink_caps->signal = dp_passive_dongle_detection(link->ddc,
+ sink_caps,
+ audio_support);
+ link->dpcd_caps.dongle_type = sink_caps->dongle_type;
+ link->dpcd_caps.is_dongle_type_one = sink_caps->is_dongle_type_one;
+ link->dpcd_caps.dpcd_rev.raw = 0;
+ }
+
+ return true;
+}
+
+static bool is_same_edid(struct dc_edid *old_edid, struct dc_edid *new_edid)
+{
+ if (old_edid->length != new_edid->length)
+ return false;
+
+ if (new_edid->length == 0)
+ return false;
+
+ return (memcmp(old_edid->raw_edid,
+ new_edid->raw_edid, new_edid->length) == 0);
+}
+
+static bool wait_for_entering_dp_alt_mode(struct dc_link *link)
+{
+
+ /**
+ * something is terribly wrong if time out is > 200ms. (5Hz)
+ * 500 microseconds * 400 tries us 200 ms
+ **/
+ unsigned int sleep_time_in_microseconds = 500;
+ unsigned int tries_allowed = 400;
+ bool is_in_alt_mode;
+ unsigned long long enter_timestamp;
+ unsigned long long finish_timestamp;
+ unsigned long long time_taken_in_ns;
+ int tries_taken;
+
+ DC_LOGGER_INIT(link->ctx->logger);
+
+ /**
+ * this function will only exist if we are on dcn21 (is_in_alt_mode is a
+ * function pointer, so checking to see if it is equal to 0 is the same
+ * as checking to see if it is null
+ **/
+ if (!link->link_enc->funcs->is_in_alt_mode)
+ return true;
+
+ is_in_alt_mode = link->link_enc->funcs->is_in_alt_mode(link->link_enc);
+ DC_LOG_DC("DP Alt mode state on HPD: %d\n", is_in_alt_mode);
+
+ if (is_in_alt_mode)
+ return true;
+
+ enter_timestamp = dm_get_timestamp(link->ctx);
+
+ for (tries_taken = 0; tries_taken < tries_allowed; tries_taken++) {
+ udelay(sleep_time_in_microseconds);
+ /* ask the link if alt mode is enabled, if so return ok */
+ if (link->link_enc->funcs->is_in_alt_mode(link->link_enc)) {
+ finish_timestamp = dm_get_timestamp(link->ctx);
+ time_taken_in_ns =
+ dm_get_elapse_time_in_ns(link->ctx,
+ finish_timestamp,
+ enter_timestamp);
+ DC_LOG_WARNING("Alt mode entered finished after %llu ms\n",
+ div_u64(time_taken_in_ns, 1000000));
+ return true;
+ }
+ }
+ finish_timestamp = dm_get_timestamp(link->ctx);
+ time_taken_in_ns = dm_get_elapse_time_in_ns(link->ctx, finish_timestamp,
+ enter_timestamp);
+ DC_LOG_WARNING("Alt mode has timed out after %llu ms\n",
+ div_u64(time_taken_in_ns, 1000000));
+ return false;
+}
+
+static void apply_dpia_mst_dsc_always_on_wa(struct dc_link *link)
+{
+ /* Apply work around for tunneled MST on certain USB4 docks. Always use DSC if dock
+ * reports DSC support.
+ */
+ if (link->ep_type == DISPLAY_ENDPOINT_USB4_DPIA &&
+ link->type == dc_connection_mst_branch &&
+ link->dpcd_caps.branch_dev_id == DP_BRANCH_DEVICE_ID_90CC24 &&
+ link->dpcd_caps.branch_hw_revision == DP_BRANCH_HW_REV_20 &&
+ link->dpcd_caps.dsc_caps.dsc_basic_caps.fields.dsc_support.DSC_SUPPORT &&
+ !link->dc->debug.dpia_debug.bits.disable_mst_dsc_work_around)
+ link->wa_flags.dpia_mst_dsc_always_on = true;
+}
+
+static void revert_dpia_mst_dsc_always_on_wa(struct dc_link *link)
+{
+ /* Disable work around which keeps DSC on for tunneled MST on certain USB4 docks. */
+ if (link->ep_type == DISPLAY_ENDPOINT_USB4_DPIA)
+ link->wa_flags.dpia_mst_dsc_always_on = false;
+}
+
+static bool discover_dp_mst_topology(struct dc_link *link, enum dc_detect_reason reason)
+{
+ DC_LOGGER_INIT(link->ctx->logger);
+
+ LINK_INFO("link=%d, mst branch is now Connected\n",
+ link->link_index);
+
+ link->type = dc_connection_mst_branch;
+ apply_dpia_mst_dsc_always_on_wa(link);
+
+ dm_helpers_dp_update_branch_info(link->ctx, link);
+ if (dm_helpers_dp_mst_start_top_mgr(link->ctx,
+ link, (reason == DETECT_REASON_BOOT || reason == DETECT_REASON_RESUMEFROMS3S4))) {
+ link_disconnect_sink(link);
+ } else {
+ link->type = dc_connection_sst_branch;
+ }
+
+ return link->type == dc_connection_mst_branch;
+}
+
+bool link_reset_cur_dp_mst_topology(struct dc_link *link)
+{
+ DC_LOGGER_INIT(link->ctx->logger);
+
+ LINK_INFO("link=%d, mst branch is now Disconnected\n",
+ link->link_index);
+
+ revert_dpia_mst_dsc_always_on_wa(link);
+ return dm_helpers_dp_mst_stop_top_mgr(link->ctx, link);
+}
+
+static bool should_prepare_phy_clocks_for_link_verification(const struct dc *dc,
+ enum dc_detect_reason reason)
+{
+ int i;
+ bool can_apply_seamless_boot = false;
+
+ for (i = 0; i < dc->current_state->stream_count; i++) {
+ if (dc->current_state->streams[i]->apply_seamless_boot_optimization) {
+ can_apply_seamless_boot = true;
+ break;
+ }
+ }
+
+ return !can_apply_seamless_boot && reason != DETECT_REASON_BOOT;
+}
+
+static void prepare_phy_clocks_for_destructive_link_verification(const struct dc *dc)
+{
+ dc_z10_restore(dc);
+ clk_mgr_exit_optimized_pwr_state(dc, dc->clk_mgr);
+}
+
+static void restore_phy_clocks_for_destructive_link_verification(const struct dc *dc)
+{
+ clk_mgr_optimize_pwr_state(dc, dc->clk_mgr);
+}
+
+static void verify_link_capability_destructive(struct dc_link *link,
+ struct dc_sink *sink,
+ enum dc_detect_reason reason)
+{
+ bool should_prepare_phy_clocks =
+ should_prepare_phy_clocks_for_link_verification(link->dc, reason);
+
+ if (should_prepare_phy_clocks)
+ prepare_phy_clocks_for_destructive_link_verification(link->dc);
+
+ if (dc_is_dp_signal(link->local_sink->sink_signal)) {
+ struct dc_link_settings known_limit_link_setting =
+ dp_get_max_link_cap(link);
+ link_set_all_streams_dpms_off_for_link(link);
+ dp_verify_link_cap_with_retries(
+ link, &known_limit_link_setting,
+ LINK_TRAINING_MAX_VERIFY_RETRY);
+ } else {
+ ASSERT(0);
+ }
+
+ if (should_prepare_phy_clocks)
+ restore_phy_clocks_for_destructive_link_verification(link->dc);
+}
+
+static void verify_link_capability_non_destructive(struct dc_link *link)
+{
+ if (dc_is_dp_signal(link->local_sink->sink_signal)) {
+ if (dc_is_embedded_signal(link->local_sink->sink_signal) ||
+ link->ep_type == DISPLAY_ENDPOINT_USB4_DPIA)
+ /* TODO - should we check link encoder's max link caps here?
+ * How do we know which link encoder to check from?
+ */
+ link->verified_link_cap = link->reported_link_cap;
+ else
+ link->verified_link_cap = dp_get_max_link_cap(link);
+ }
+}
+
+static bool should_verify_link_capability_destructively(struct dc_link *link,
+ enum dc_detect_reason reason)
+{
+ bool destrictive = false;
+ struct dc_link_settings max_link_cap;
+ bool is_link_enc_unavailable = link->link_enc &&
+ link->dc->res_pool->funcs->link_encs_assign &&
+ !link_enc_cfg_is_link_enc_avail(
+ link->ctx->dc,
+ link->link_enc->preferred_engine,
+ link);
+
+ if (dc_is_dp_signal(link->local_sink->sink_signal)) {
+ max_link_cap = dp_get_max_link_cap(link);
+ destrictive = true;
+
+ if (link->dc->debug.skip_detection_link_training ||
+ dc_is_embedded_signal(link->local_sink->sink_signal) ||
+ link->ep_type == DISPLAY_ENDPOINT_USB4_DPIA) {
+ destrictive = false;
+ } else if (link_dp_get_encoding_format(&max_link_cap) ==
+ DP_8b_10b_ENCODING) {
+ if (link->dpcd_caps.is_mst_capable ||
+ is_link_enc_unavailable) {
+ destrictive = false;
+ }
+ }
+ }
+
+ return destrictive;
+}
+
+static void verify_link_capability(struct dc_link *link, struct dc_sink *sink,
+ enum dc_detect_reason reason)
+{
+ if (should_verify_link_capability_destructively(link, reason))
+ verify_link_capability_destructive(link, sink, reason);
+ else
+ verify_link_capability_non_destructive(link);
+}
+
+/*
+ * detect_link_and_local_sink() - Detect if a sink is attached to a given link
+ *
+ * link->local_sink is created or destroyed as needed.
+ *
+ * This does not create remote sinks.
+ */
+static bool detect_link_and_local_sink(struct dc_link *link,
+ enum dc_detect_reason reason)
+{
+ struct dc_sink_init_data sink_init_data = { 0 };
+ struct display_sink_capability sink_caps = { 0 };
+ uint32_t i;
+ bool converter_disable_audio = false;
+ struct audio_support *aud_support = &link->dc->res_pool->audio_support;
+ bool same_edid = false;
+ enum dc_edid_status edid_status;
+ struct dc_context *dc_ctx = link->ctx;
+ struct dc *dc = dc_ctx->dc;
+ struct dc_sink *sink = NULL;
+ struct dc_sink *prev_sink = NULL;
+ struct dpcd_caps prev_dpcd_caps;
+ enum dc_connection_type new_connection_type = dc_connection_none;
+ enum dc_connection_type pre_connection_type = link->type;
+ const uint32_t post_oui_delay = 30; // 30ms
+
+ DC_LOGGER_INIT(link->ctx->logger);
+
+ if (dc_is_virtual_signal(link->connector_signal))
+ return false;
+
+ if (((link->connector_signal == SIGNAL_TYPE_LVDS ||
+ link->connector_signal == SIGNAL_TYPE_EDP) &&
+ (!link->dc->config.allow_edp_hotplug_detection)) &&
+ link->local_sink) {
+ // need to re-write OUI and brightness in resume case
+ if (link->connector_signal == SIGNAL_TYPE_EDP &&
+ (link->dpcd_sink_ext_caps.bits.oled == 1)) {
+ dpcd_set_source_specific_data(link);
+ msleep(post_oui_delay);
+ set_default_brightness_aux(link);
+ //TODO: use cached
+ }
+
+ return true;
+ }
+
+ if (!link_detect_connection_type(link, &new_connection_type)) {
+ BREAK_TO_DEBUGGER();
+ return false;
+ }
+
+ prev_sink = link->local_sink;
+ if (prev_sink) {
+ dc_sink_retain(prev_sink);
+ memcpy(&prev_dpcd_caps, &link->dpcd_caps, sizeof(struct dpcd_caps));
+ }
+
+ link_disconnect_sink(link);
+ if (new_connection_type != dc_connection_none) {
+ link->type = new_connection_type;
+ link->link_state_valid = false;
+
+ /* From Disconnected-to-Connected. */
+ switch (link->connector_signal) {
+ case SIGNAL_TYPE_HDMI_TYPE_A: {
+ sink_caps.transaction_type = DDC_TRANSACTION_TYPE_I2C;
+ if (aud_support->hdmi_audio_native)
+ sink_caps.signal = SIGNAL_TYPE_HDMI_TYPE_A;
+ else
+ sink_caps.signal = SIGNAL_TYPE_DVI_SINGLE_LINK;
+ break;
+ }
+
+ case SIGNAL_TYPE_DVI_SINGLE_LINK: {
+ sink_caps.transaction_type = DDC_TRANSACTION_TYPE_I2C;
+ sink_caps.signal = SIGNAL_TYPE_DVI_SINGLE_LINK;
+ break;
+ }
+
+ case SIGNAL_TYPE_DVI_DUAL_LINK: {
+ sink_caps.transaction_type = DDC_TRANSACTION_TYPE_I2C;
+ sink_caps.signal = SIGNAL_TYPE_DVI_DUAL_LINK;
+ break;
+ }
+
+ case SIGNAL_TYPE_LVDS: {
+ sink_caps.transaction_type = DDC_TRANSACTION_TYPE_I2C;
+ sink_caps.signal = SIGNAL_TYPE_LVDS;
+ break;
+ }
+
+ case SIGNAL_TYPE_EDP: {
+ detect_edp_sink_caps(link);
+ read_current_link_settings_on_detect(link);
+
+ /* Disable power sequence on MIPI panel + converter
+ */
+ if (dc->config.enable_mipi_converter_optimization &&
+ dc_ctx->dce_version == DCN_VERSION_3_01 &&
+ link->dpcd_caps.sink_dev_id == DP_BRANCH_DEVICE_ID_0022B9 &&
+ memcmp(&link->dpcd_caps.branch_dev_name, DP_SINK_BRANCH_DEV_NAME_7580,
+ sizeof(link->dpcd_caps.branch_dev_name)) == 0) {
+ dc->config.edp_no_power_sequencing = true;
+
+ if (!link->dpcd_caps.set_power_state_capable_edp)
+ link->wa_flags.dp_keep_receiver_powered = true;
+ }
+
+ sink_caps.transaction_type = DDC_TRANSACTION_TYPE_I2C_OVER_AUX;
+ sink_caps.signal = SIGNAL_TYPE_EDP;
+ break;
+ }
+
+ case SIGNAL_TYPE_DISPLAY_PORT: {
+
+ /* wa HPD high coming too early*/
+ if (link->ep_type == DISPLAY_ENDPOINT_PHY &&
+ link->link_enc->features.flags.bits.DP_IS_USB_C == 1) {
+
+ /* if alt mode times out, return false */
+ if (!wait_for_entering_dp_alt_mode(link))
+ return false;
+ }
+
+ if (!detect_dp(link, &sink_caps, reason)) {
+ link->type = pre_connection_type;
+
+ if (prev_sink)
+ dc_sink_release(prev_sink);
+ return false;
+ }
+
+ /* Active SST downstream branch device unplug*/
+ if (link->type == dc_connection_sst_branch &&
+ link->dpcd_caps.sink_count.bits.SINK_COUNT == 0) {
+ if (prev_sink)
+ /* Downstream unplug */
+ dc_sink_release(prev_sink);
+ return true;
+ }
+
+ /* disable audio for non DP to HDMI active sst converter */
+ if (link->type == dc_connection_sst_branch &&
+ is_dp_active_dongle(link) &&
+ (link->dpcd_caps.dongle_type !=
+ DISPLAY_DONGLE_DP_HDMI_CONVERTER))
+ converter_disable_audio = true;
+ break;
+ }
+
+ default:
+ DC_ERROR("Invalid connector type! signal:%d\n",
+ link->connector_signal);
+ if (prev_sink)
+ dc_sink_release(prev_sink);
+ return false;
+ } /* switch() */
+
+ if (link->dpcd_caps.sink_count.bits.SINK_COUNT)
+ link->dpcd_sink_count =
+ link->dpcd_caps.sink_count.bits.SINK_COUNT;
+ else
+ link->dpcd_sink_count = 1;
+
+ set_ddc_transaction_type(link->ddc,
+ sink_caps.transaction_type);
+
+ link->aux_mode =
+ link_is_in_aux_transaction_mode(link->ddc);
+
+ sink_init_data.link = link;
+ sink_init_data.sink_signal = sink_caps.signal;
+
+ sink = dc_sink_create(&sink_init_data);
+ if (!sink) {
+ DC_ERROR("Failed to create sink!\n");
+ if (prev_sink)
+ dc_sink_release(prev_sink);
+ return false;
+ }
+
+ sink->link->dongle_max_pix_clk = sink_caps.max_hdmi_pixel_clock;
+ sink->converter_disable_audio = converter_disable_audio;
+
+ /* dc_sink_create returns a new reference */
+ link->local_sink = sink;
+
+ edid_status = dm_helpers_read_local_edid(link->ctx,
+ link, sink);
+
+ switch (edid_status) {
+ case EDID_BAD_CHECKSUM:
+ DC_LOG_ERROR("EDID checksum invalid.\n");
+ break;
+ case EDID_PARTIAL_VALID:
+ DC_LOG_ERROR("Partial EDID valid, abandon invalid blocks.\n");
+ break;
+ case EDID_NO_RESPONSE:
+ DC_LOG_ERROR("No EDID read.\n");
+ /*
+ * Abort detection for non-DP connectors if we have
+ * no EDID
+ *
+ * DP needs to report as connected if HDP is high
+ * even if we have no EDID in order to go to
+ * fail-safe mode
+ */
+ if (dc_is_hdmi_signal(link->connector_signal) ||
+ dc_is_dvi_signal(link->connector_signal)) {
+ if (prev_sink)
+ dc_sink_release(prev_sink);
+
+ return false;
+ }
+
+ if (link->type == dc_connection_sst_branch &&
+ link->dpcd_caps.dongle_type ==
+ DISPLAY_DONGLE_DP_VGA_CONVERTER &&
+ reason == DETECT_REASON_HPDRX) {
+ /* Abort detection for DP-VGA adapters when EDID
+ * can't be read and detection reason is VGA-side
+ * hotplug
+ */
+ if (prev_sink)
+ dc_sink_release(prev_sink);
+ link_disconnect_sink(link);
+
+ return true;
+ }
+
+ break;
+ default:
+ break;
+ }
+
+ // Check if edid is the same
+ if ((prev_sink) &&
+ (edid_status == EDID_THE_SAME || edid_status == EDID_OK))
+ same_edid = is_same_edid(&prev_sink->dc_edid,
+ &sink->dc_edid);
+
+ if (sink->edid_caps.panel_patch.skip_scdc_overwrite)
+ link->ctx->dc->debug.hdmi20_disable = true;
+
+ if (dc_is_hdmi_signal(link->connector_signal))
+ read_scdc_caps(link->ddc, link->local_sink);
+
+ if (link->connector_signal == SIGNAL_TYPE_DISPLAY_PORT &&
+ sink_caps.transaction_type ==
+ DDC_TRANSACTION_TYPE_I2C_OVER_AUX) {
+ /*
+ * TODO debug why certain monitors don't like
+ * two link trainings
+ */
+ query_hdcp_capability(sink->sink_signal, link);
+ } else {
+ // If edid is the same, then discard new sink and revert back to original sink
+ if (same_edid) {
+ link_disconnect_remap(prev_sink, link);
+ sink = prev_sink;
+ prev_sink = NULL;
+ }
+ query_hdcp_capability(sink->sink_signal, link);
+ }
+
+ /* HDMI-DVI Dongle */
+ if (sink->sink_signal == SIGNAL_TYPE_HDMI_TYPE_A &&
+ !sink->edid_caps.edid_hdmi)
+ sink->sink_signal = SIGNAL_TYPE_DVI_SINGLE_LINK;
+
+ if (link->local_sink && dc_is_dp_signal(sink_caps.signal))
+ dp_trace_init(link);
+
+ /* Connectivity log: detection */
+ for (i = 0; i < sink->dc_edid.length / DC_EDID_BLOCK_SIZE; i++) {
+ CONN_DATA_DETECT(link,
+ &sink->dc_edid.raw_edid[i * DC_EDID_BLOCK_SIZE],
+ DC_EDID_BLOCK_SIZE,
+ "%s: [Block %d] ", sink->edid_caps.display_name, i);
+ }
+
+ DC_LOG_DETECTION_EDID_PARSER("%s: "
+ "manufacturer_id = %X, "
+ "product_id = %X, "
+ "serial_number = %X, "
+ "manufacture_week = %d, "
+ "manufacture_year = %d, "
+ "display_name = %s, "
+ "speaker_flag = %d, "
+ "audio_mode_count = %d\n",
+ __func__,
+ sink->edid_caps.manufacturer_id,
+ sink->edid_caps.product_id,
+ sink->edid_caps.serial_number,
+ sink->edid_caps.manufacture_week,
+ sink->edid_caps.manufacture_year,
+ sink->edid_caps.display_name,
+ sink->edid_caps.speaker_flags,
+ sink->edid_caps.audio_mode_count);
+
+ for (i = 0; i < sink->edid_caps.audio_mode_count; i++) {
+ DC_LOG_DETECTION_EDID_PARSER("%s: mode number = %d, "
+ "format_code = %d, "
+ "channel_count = %d, "
+ "sample_rate = %d, "
+ "sample_size = %d\n",
+ __func__,
+ i,
+ sink->edid_caps.audio_modes[i].format_code,
+ sink->edid_caps.audio_modes[i].channel_count,
+ sink->edid_caps.audio_modes[i].sample_rate,
+ sink->edid_caps.audio_modes[i].sample_size);
+ }
+
+ if (link->connector_signal == SIGNAL_TYPE_EDP) {
+ // Init dc_panel_config by HW config
+ if (dc_ctx->dc->res_pool->funcs->get_panel_config_defaults)
+ dc_ctx->dc->res_pool->funcs->get_panel_config_defaults(&link->panel_config);
+ // Pickup base DM settings
+ dm_helpers_init_panel_settings(dc_ctx, &link->panel_config, sink);
+ // Override dc_panel_config if system has specific settings
+ dm_helpers_override_panel_settings(dc_ctx, &link->panel_config);
+ }
+
+ } else {
+ /* From Connected-to-Disconnected. */
+ link->type = dc_connection_none;
+ sink_caps.signal = SIGNAL_TYPE_NONE;
+ memset(&link->hdcp_caps, 0, sizeof(struct hdcp_caps));
+ /* When we unplug a passive DP-HDMI dongle connection, dongle_max_pix_clk
+ * is not cleared. If we emulate a DP signal on this connection, it thinks
+ * the dongle is still there and limits the number of modes we can emulate.
+ * Clear dongle_max_pix_clk on disconnect to fix this
+ */
+ link->dongle_max_pix_clk = 0;
+
+ dc_link_clear_dprx_states(link);
+ dp_trace_reset(link);
+ }
+
+ LINK_INFO("link=%d, dc_sink_in=%p is now %s prev_sink=%p edid same=%d\n",
+ link->link_index, sink,
+ (sink_caps.signal ==
+ SIGNAL_TYPE_NONE ? "Disconnected" : "Connected"),
+ prev_sink, same_edid);
+
+ if (prev_sink)
+ dc_sink_release(prev_sink);
+
+ return true;
+}
+
+/*
+ * link_detect_connection_type() - Determine if there is a sink connected
+ *
+ * @type: Returned connection type
+ * Does not detect downstream devices, such as MST sinks
+ * or display connected through active dongles
+ */
+bool link_detect_connection_type(struct dc_link *link, enum dc_connection_type *type)
+{
+ uint32_t is_hpd_high = 0;
+
+ if (link->connector_signal == SIGNAL_TYPE_LVDS) {
+ *type = dc_connection_single;
+ return true;
+ }
+
+ if (link->connector_signal == SIGNAL_TYPE_EDP) {
+ /*in case it is not on*/
+ if (!link->dc->config.edp_no_power_sequencing)
+ link->dc->hwss.edp_power_control(link, true);
+ link->dc->hwss.edp_wait_for_hpd_ready(link, true);
+ }
+
+ /* Link may not have physical HPD pin. */
+ if (link->ep_type != DISPLAY_ENDPOINT_PHY) {
+ if (link->is_hpd_pending || !dpia_query_hpd_status(link))
+ *type = dc_connection_none;
+ else
+ *type = dc_connection_single;
+
+ return true;
+ }
+
+
+ if (!query_hpd_status(link, &is_hpd_high))
+ goto hpd_gpio_failure;
+
+ if (is_hpd_high) {
+ *type = dc_connection_single;
+ /* TODO: need to do the actual detection */
+ } else {
+ *type = dc_connection_none;
+ if (link->connector_signal == SIGNAL_TYPE_EDP) {
+ /* eDP is not connected, power down it */
+ if (!link->dc->config.edp_no_power_sequencing)
+ link->dc->hwss.edp_power_control(link, false);
+ }
+ }
+
+ return true;
+
+hpd_gpio_failure:
+ return false;
+}
+
+bool link_detect(struct dc_link *link, enum dc_detect_reason reason)
+{
+ bool is_local_sink_detect_success;
+ bool is_delegated_to_mst_top_mgr = false;
+ enum dc_connection_type pre_link_type = link->type;
+
+ DC_LOGGER_INIT(link->ctx->logger);
+
+ is_local_sink_detect_success = detect_link_and_local_sink(link, reason);
+
+ if (is_local_sink_detect_success && link->local_sink)
+ verify_link_capability(link, link->local_sink, reason);
+
+ DC_LOG_DC("%s: link_index=%d is_local_sink_detect_success=%d pre_link_type=%d link_type=%d\n", __func__,
+ link->link_index, is_local_sink_detect_success, pre_link_type, link->type);
+
+ if (is_local_sink_detect_success && link->local_sink &&
+ dc_is_dp_signal(link->local_sink->sink_signal) &&
+ link->dpcd_caps.is_mst_capable)
+ is_delegated_to_mst_top_mgr = discover_dp_mst_topology(link, reason);
+
+ if (is_local_sink_detect_success &&
+ pre_link_type == dc_connection_mst_branch &&
+ link->type != dc_connection_mst_branch)
+ is_delegated_to_mst_top_mgr = link_reset_cur_dp_mst_topology(link);
+
+ return is_local_sink_detect_success && !is_delegated_to_mst_top_mgr;
+}
+
+void link_clear_dprx_states(struct dc_link *link)
+{
+ memset(&link->dprx_states, 0, sizeof(link->dprx_states));
+}
+
+bool link_is_hdcp14(struct dc_link *link, enum signal_type signal)
+{
+ bool ret = false;
+
+ switch (signal) {
+ case SIGNAL_TYPE_DISPLAY_PORT:
+ case SIGNAL_TYPE_DISPLAY_PORT_MST:
+ ret = link->hdcp_caps.bcaps.bits.HDCP_CAPABLE;
+ break;
+ case SIGNAL_TYPE_DVI_SINGLE_LINK:
+ case SIGNAL_TYPE_DVI_DUAL_LINK:
+ case SIGNAL_TYPE_HDMI_TYPE_A:
+ /* HDMI doesn't tell us its HDCP(1.4) capability, so assume to always be capable,
+ * we can poll for bksv but some displays have an issue with this. Since its so rare
+ * for a display to not be 1.4 capable, this assumtion is ok
+ */
+ ret = true;
+ break;
+ default:
+ break;
+ }
+ return ret;
+}
+
+bool link_is_hdcp22(struct dc_link *link, enum signal_type signal)
+{
+ bool ret = false;
+
+ switch (signal) {
+ case SIGNAL_TYPE_DISPLAY_PORT:
+ case SIGNAL_TYPE_DISPLAY_PORT_MST:
+ ret = (link->hdcp_caps.bcaps.bits.HDCP_CAPABLE &&
+ link->hdcp_caps.rx_caps.fields.byte0.hdcp_capable &&
+ (link->hdcp_caps.rx_caps.fields.version == 0x2)) ? 1 : 0;
+ break;
+ case SIGNAL_TYPE_DVI_SINGLE_LINK:
+ case SIGNAL_TYPE_DVI_DUAL_LINK:
+ case SIGNAL_TYPE_HDMI_TYPE_A:
+ ret = (link->hdcp_caps.rx_caps.fields.version == 0x4) ? 1:0;
+ break;
+ default:
+ break;
+ }
+
+ return ret;
+}
+
+const struct dc_link_status *link_get_status(const struct dc_link *link)
+{
+ return &link->link_status;
+}
+
+
+static bool link_add_remote_sink_helper(struct dc_link *dc_link, struct dc_sink *sink)
+{
+ if (dc_link->sink_count >= MAX_SINKS_PER_LINK) {
+ BREAK_TO_DEBUGGER();
+ return false;
+ }
+
+ dc_sink_retain(sink);
+
+ dc_link->remote_sinks[dc_link->sink_count] = sink;
+ dc_link->sink_count++;
+
+ return true;
+}
+
+struct dc_sink *link_add_remote_sink(
+ struct dc_link *link,
+ const uint8_t *edid,
+ int len,
+ struct dc_sink_init_data *init_data)
+{
+ struct dc_sink *dc_sink;
+ enum dc_edid_status edid_status;
+
+ if (len > DC_MAX_EDID_BUFFER_SIZE) {
+ dm_error("Max EDID buffer size breached!\n");
+ return NULL;
+ }
+
+ if (!init_data) {
+ BREAK_TO_DEBUGGER();
+ return NULL;
+ }
+
+ if (!init_data->link) {
+ BREAK_TO_DEBUGGER();
+ return NULL;
+ }
+
+ dc_sink = dc_sink_create(init_data);
+
+ if (!dc_sink)
+ return NULL;
+
+ memmove(dc_sink->dc_edid.raw_edid, edid, len);
+ dc_sink->dc_edid.length = len;
+
+ if (!link_add_remote_sink_helper(
+ link,
+ dc_sink))
+ goto fail_add_sink;
+
+ edid_status = dm_helpers_parse_edid_caps(
+ link,
+ &dc_sink->dc_edid,
+ &dc_sink->edid_caps);
+
+ /*
+ * Treat device as no EDID device if EDID
+ * parsing fails
+ */
+ if (edid_status != EDID_OK && edid_status != EDID_PARTIAL_VALID) {
+ dc_sink->dc_edid.length = 0;
+ dm_error("Bad EDID, status%d!\n", edid_status);
+ }
+
+ return dc_sink;
+
+fail_add_sink:
+ dc_sink_release(dc_sink);
+ return NULL;
+}
+
+void link_remove_remote_sink(struct dc_link *link, struct dc_sink *sink)
+{
+ int i;
+
+ if (!link->sink_count) {
+ BREAK_TO_DEBUGGER();
+ return;
+ }
+
+ for (i = 0; i < link->sink_count; i++) {
+ if (link->remote_sinks[i] == sink) {
+ dc_sink_release(sink);
+ link->remote_sinks[i] = NULL;
+
+ /* shrink array to remove empty place */
+ while (i < link->sink_count - 1) {
+ link->remote_sinks[i] = link->remote_sinks[i+1];
+ i++;
+ }
+ link->remote_sinks[i] = NULL;
+ link->sink_count--;
+ return;
+ }
+ }
+}
diff --git a/drivers/gpu/drm/amd/display/dc/link/link_detection.h b/drivers/gpu/drm/amd/display/dc/link/link_detection.h
new file mode 100644
index 000000000000..7da05078721e
--- /dev/null
+++ b/drivers/gpu/drm/amd/display/dc/link/link_detection.h
@@ -0,0 +1,43 @@
+/*
+ * Copyright 2023 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ * Authors: AMD
+ *
+ */
+
+#ifndef __DC_LINK_DETECTION_H__
+#define __DC_LINK_DETECTION_H__
+#include "link.h"
+bool link_detect(struct dc_link *link, enum dc_detect_reason reason);
+bool link_detect_connection_type(struct dc_link *link,
+ enum dc_connection_type *type);
+struct dc_sink *link_add_remote_sink(
+ struct dc_link *link,
+ const uint8_t *edid,
+ int len,
+ struct dc_sink_init_data *init_data);
+void link_remove_remote_sink(struct dc_link *link, struct dc_sink *sink);
+bool link_reset_cur_dp_mst_topology(struct dc_link *link);
+const struct dc_link_status *link_get_status(const struct dc_link *link);
+bool link_is_hdcp14(struct dc_link *link, enum signal_type signal);
+bool link_is_hdcp22(struct dc_link *link, enum signal_type signal);
+void link_clear_dprx_states(struct dc_link *link);
+#endif /* __DC_LINK_DETECTION_H__ */
diff --git a/drivers/gpu/drm/amd/display/dc/link/link_dpms.c b/drivers/gpu/drm/amd/display/dc/link/link_dpms.c
new file mode 100644
index 000000000000..2267fb097830
--- /dev/null
+++ b/drivers/gpu/drm/amd/display/dc/link/link_dpms.c
@@ -0,0 +1,2541 @@
+/*
+ * Copyright 2023 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ * Authors: AMD
+ *
+ */
+
+/* FILE POLICY AND INTENDED USAGE:
+ * This file owns the programming sequence of stream's dpms state associated
+ * with the link and link's enable/disable sequences as result of the stream's
+ * dpms state change.
+ *
+ * TODO - The reason link owns stream's dpms programming sequence is
+ * because dpms programming sequence is highly dependent on underlying signal
+ * specific link protocols. This unfortunately causes link to own a portion of
+ * stream state programming sequence. This creates a gray area where the
+ * boundary between link and stream is not clearly defined.
+ */
+
+#include "link_dpms.h"
+#include "link_hwss.h"
+#include "link_validation.h"
+#include "accessories/link_fpga.h"
+#include "accessories/link_dp_trace.h"
+#include "protocols/link_dpcd.h"
+#include "protocols/link_ddc.h"
+#include "protocols/link_hpd.h"
+#include "protocols/link_dp_phy.h"
+#include "protocols/link_dp_capability.h"
+#include "protocols/link_dp_training.h"
+#include "protocols/link_edp_panel_control.h"
+#include "protocols/link_dp_dpia_bw.h"
+
+#include "dm_helpers.h"
+#include "link_enc_cfg.h"
+#include "resource.h"
+#include "dsc.h"
+#include "dccg.h"
+#include "clk_mgr.h"
+#include "atomfirmware.h"
+#define DC_LOGGER_INIT(logger)
+
+#define LINK_INFO(...) \
+ DC_LOG_HW_HOTPLUG( \
+ __VA_ARGS__)
+
+#define RETIMER_REDRIVER_INFO(...) \
+ DC_LOG_RETIMER_REDRIVER( \
+ __VA_ARGS__)
+#include "dc/dcn30/dcn30_vpg.h"
+
+#define MAX_MTP_SLOT_COUNT 64
+#define LINK_TRAINING_ATTEMPTS 4
+#define PEAK_FACTOR_X1000 1006
+
+void link_blank_all_dp_displays(struct dc *dc)
+{
+ unsigned int i;
+ uint8_t dpcd_power_state = '\0';
+ enum dc_status status = DC_ERROR_UNEXPECTED;
+
+ for (i = 0; i < dc->link_count; i++) {
+ if ((dc->links[i]->connector_signal != SIGNAL_TYPE_DISPLAY_PORT) ||
+ (dc->links[i]->priv == NULL) || (dc->links[i]->local_sink == NULL))
+ continue;
+
+ /* DP 2.0 spec requires that we read LTTPR caps first */
+ dp_retrieve_lttpr_cap(dc->links[i]);
+ /* if any of the displays are lit up turn them off */
+ status = core_link_read_dpcd(dc->links[i], DP_SET_POWER,
+ &dpcd_power_state, sizeof(dpcd_power_state));
+
+ if (status == DC_OK && dpcd_power_state == DP_POWER_STATE_D0)
+ link_blank_dp_stream(dc->links[i], true);
+ }
+
+}
+
+void link_blank_all_edp_displays(struct dc *dc)
+{
+ unsigned int i;
+ uint8_t dpcd_power_state = '\0';
+ enum dc_status status = DC_ERROR_UNEXPECTED;
+
+ for (i = 0; i < dc->link_count; i++) {
+ if ((dc->links[i]->connector_signal != SIGNAL_TYPE_EDP) ||
+ (!dc->links[i]->edp_sink_present))
+ continue;
+
+ /* if any of the displays are lit up turn them off */
+ status = core_link_read_dpcd(dc->links[i], DP_SET_POWER,
+ &dpcd_power_state, sizeof(dpcd_power_state));
+
+ if (status == DC_OK && dpcd_power_state == DP_POWER_STATE_D0)
+ link_blank_dp_stream(dc->links[i], true);
+ }
+}
+
+void link_blank_dp_stream(struct dc_link *link, bool hw_init)
+{
+ unsigned int j;
+ struct dc *dc = link->ctx->dc;
+ enum signal_type signal = link->connector_signal;
+
+ if ((signal == SIGNAL_TYPE_EDP) ||
+ (signal == SIGNAL_TYPE_DISPLAY_PORT)) {
+ if (link->ep_type == DISPLAY_ENDPOINT_PHY &&
+ link->link_enc->funcs->get_dig_frontend &&
+ link->link_enc->funcs->is_dig_enabled(link->link_enc)) {
+ unsigned int fe = link->link_enc->funcs->get_dig_frontend(link->link_enc);
+
+ if (fe != ENGINE_ID_UNKNOWN)
+ for (j = 0; j < dc->res_pool->stream_enc_count; j++) {
+ if (fe == dc->res_pool->stream_enc[j]->id) {
+ dc->res_pool->stream_enc[j]->funcs->dp_blank(link,
+ dc->res_pool->stream_enc[j]);
+ break;
+ }
+ }
+ }
+
+ if ((!link->wa_flags.dp_keep_receiver_powered) || hw_init)
+ dpcd_write_rx_power_ctrl(link, false);
+ }
+}
+
+void link_set_all_streams_dpms_off_for_link(struct dc_link *link)
+{
+ struct pipe_ctx *pipes[MAX_PIPES];
+ struct dc_state *state = link->dc->current_state;
+ uint8_t count;
+ int i;
+ struct dc_stream_update stream_update;
+ bool dpms_off = true;
+ struct link_resource link_res = {0};
+
+ memset(&stream_update, 0, sizeof(stream_update));
+ stream_update.dpms_off = &dpms_off;
+
+ link_get_master_pipes_with_dpms_on(link, state, &count, pipes);
+
+ for (i = 0; i < count; i++) {
+ stream_update.stream = pipes[i]->stream;
+ dc_commit_updates_for_stream(link->ctx->dc, NULL, 0,
+ pipes[i]->stream, &stream_update,
+ state);
+ }
+
+ /* link can be also enabled by vbios. In this case it is not recorded
+ * in pipe_ctx. Disable link phy here to make sure it is completely off
+ */
+ dp_disable_link_phy(link, &link_res, link->connector_signal);
+}
+
+void link_resume(struct dc_link *link)
+{
+ if (link->connector_signal != SIGNAL_TYPE_VIRTUAL)
+ program_hpd_filter(link);
+}
+
+/* This function returns true if the pipe is used to feed video signal directly
+ * to the link.
+ */
+static bool is_master_pipe_for_link(const struct dc_link *link,
+ const struct pipe_ctx *pipe)
+{
+ return (pipe->stream &&
+ pipe->stream->link &&
+ pipe->stream->link == link &&
+ pipe->top_pipe == NULL &&
+ pipe->prev_odm_pipe == NULL);
+}
+
+/*
+ * This function finds all master pipes feeding to a given link with dpms set to
+ * on in given dc state.
+ */
+void link_get_master_pipes_with_dpms_on(const struct dc_link *link,
+ struct dc_state *state,
+ uint8_t *count,
+ struct pipe_ctx *pipes[MAX_PIPES])
+{
+ int i;
+ struct pipe_ctx *pipe = NULL;
+
+ *count = 0;
+ for (i = 0; i < MAX_PIPES; i++) {
+ pipe = &state->res_ctx.pipe_ctx[i];
+
+ if (is_master_pipe_for_link(link, pipe) &&
+ pipe->stream->dpms_off == false) {
+ pipes[(*count)++] = pipe;
+ }
+ }
+}
+
+static bool get_ext_hdmi_settings(struct pipe_ctx *pipe_ctx,
+ enum engine_id eng_id,
+ struct ext_hdmi_settings *settings)
+{
+ bool result = false;
+ int i = 0;
+ struct integrated_info *integrated_info =
+ pipe_ctx->stream->ctx->dc_bios->integrated_info;
+
+ if (integrated_info == NULL)
+ return false;
+
+ /*
+ * Get retimer settings from sbios for passing SI eye test for DCE11
+ * The setting values are varied based on board revision and port id
+ * Therefore the setting values of each ports is passed by sbios.
+ */
+
+ // Check if current bios contains ext Hdmi settings
+ if (integrated_info->gpu_cap_info & 0x20) {
+ switch (eng_id) {
+ case ENGINE_ID_DIGA:
+ settings->slv_addr = integrated_info->dp0_ext_hdmi_slv_addr;
+ settings->reg_num = integrated_info->dp0_ext_hdmi_6g_reg_num;
+ settings->reg_num_6g = integrated_info->dp0_ext_hdmi_6g_reg_num;
+ memmove(settings->reg_settings,
+ integrated_info->dp0_ext_hdmi_reg_settings,
+ sizeof(integrated_info->dp0_ext_hdmi_reg_settings));
+ memmove(settings->reg_settings_6g,
+ integrated_info->dp0_ext_hdmi_6g_reg_settings,
+ sizeof(integrated_info->dp0_ext_hdmi_6g_reg_settings));
+ result = true;
+ break;
+ case ENGINE_ID_DIGB:
+ settings->slv_addr = integrated_info->dp1_ext_hdmi_slv_addr;
+ settings->reg_num = integrated_info->dp1_ext_hdmi_6g_reg_num;
+ settings->reg_num_6g = integrated_info->dp1_ext_hdmi_6g_reg_num;
+ memmove(settings->reg_settings,
+ integrated_info->dp1_ext_hdmi_reg_settings,
+ sizeof(integrated_info->dp1_ext_hdmi_reg_settings));
+ memmove(settings->reg_settings_6g,
+ integrated_info->dp1_ext_hdmi_6g_reg_settings,
+ sizeof(integrated_info->dp1_ext_hdmi_6g_reg_settings));
+ result = true;
+ break;
+ case ENGINE_ID_DIGC:
+ settings->slv_addr = integrated_info->dp2_ext_hdmi_slv_addr;
+ settings->reg_num = integrated_info->dp2_ext_hdmi_6g_reg_num;
+ settings->reg_num_6g = integrated_info->dp2_ext_hdmi_6g_reg_num;
+ memmove(settings->reg_settings,
+ integrated_info->dp2_ext_hdmi_reg_settings,
+ sizeof(integrated_info->dp2_ext_hdmi_reg_settings));
+ memmove(settings->reg_settings_6g,
+ integrated_info->dp2_ext_hdmi_6g_reg_settings,
+ sizeof(integrated_info->dp2_ext_hdmi_6g_reg_settings));
+ result = true;
+ break;
+ case ENGINE_ID_DIGD:
+ settings->slv_addr = integrated_info->dp3_ext_hdmi_slv_addr;
+ settings->reg_num = integrated_info->dp3_ext_hdmi_6g_reg_num;
+ settings->reg_num_6g = integrated_info->dp3_ext_hdmi_6g_reg_num;
+ memmove(settings->reg_settings,
+ integrated_info->dp3_ext_hdmi_reg_settings,
+ sizeof(integrated_info->dp3_ext_hdmi_reg_settings));
+ memmove(settings->reg_settings_6g,
+ integrated_info->dp3_ext_hdmi_6g_reg_settings,
+ sizeof(integrated_info->dp3_ext_hdmi_6g_reg_settings));
+ result = true;
+ break;
+ default:
+ break;
+ }
+
+ if (result == true) {
+ // Validate settings from bios integrated info table
+ if (settings->slv_addr == 0)
+ return false;
+ if (settings->reg_num > 9)
+ return false;
+ if (settings->reg_num_6g > 3)
+ return false;
+
+ for (i = 0; i < settings->reg_num; i++) {
+ if (settings->reg_settings[i].i2c_reg_index > 0x20)
+ return false;
+ }
+
+ for (i = 0; i < settings->reg_num_6g; i++) {
+ if (settings->reg_settings_6g[i].i2c_reg_index > 0x20)
+ return false;
+ }
+ }
+ }
+
+ return result;
+}
+
+static bool write_i2c(struct pipe_ctx *pipe_ctx,
+ uint8_t address, uint8_t *buffer, uint32_t length)
+{
+ struct i2c_command cmd = {0};
+ struct i2c_payload payload = {0};
+
+ memset(&payload, 0, sizeof(payload));
+ memset(&cmd, 0, sizeof(cmd));
+
+ cmd.number_of_payloads = 1;
+ cmd.engine = I2C_COMMAND_ENGINE_DEFAULT;
+ cmd.speed = pipe_ctx->stream->ctx->dc->caps.i2c_speed_in_khz;
+
+ payload.address = address;
+ payload.data = buffer;
+ payload.length = length;
+ payload.write = true;
+ cmd.payloads = &payload;
+
+ if (dm_helpers_submit_i2c(pipe_ctx->stream->ctx,
+ pipe_ctx->stream->link, &cmd))
+ return true;
+
+ return false;
+}
+
+static void write_i2c_retimer_setting(
+ struct pipe_ctx *pipe_ctx,
+ bool is_vga_mode,
+ bool is_over_340mhz,
+ struct ext_hdmi_settings *settings)
+{
+ uint8_t slave_address = (settings->slv_addr >> 1);
+ uint8_t buffer[2];
+ const uint8_t apply_rx_tx_change = 0x4;
+ uint8_t offset = 0xA;
+ uint8_t value = 0;
+ int i = 0;
+ bool i2c_success = false;
+ DC_LOGGER_INIT(pipe_ctx->stream->ctx->logger);
+
+ memset(&buffer, 0, sizeof(buffer));
+
+ /* Start Ext-Hdmi programming*/
+
+ for (i = 0; i < settings->reg_num; i++) {
+ /* Apply 3G settings */
+ if (settings->reg_settings[i].i2c_reg_index <= 0x20) {
+
+ buffer[0] = settings->reg_settings[i].i2c_reg_index;
+ buffer[1] = settings->reg_settings[i].i2c_reg_val;
+ i2c_success = write_i2c(pipe_ctx, slave_address,
+ buffer, sizeof(buffer));
+ RETIMER_REDRIVER_INFO("retimer write to slave_address = 0x%x,\
+ offset = 0x%x, reg_val= 0x%x, i2c_success = %d\n",
+ slave_address, buffer[0], buffer[1], i2c_success?1:0);
+
+ if (!i2c_success)
+ goto i2c_write_fail;
+
+ /* Based on DP159 specs, APPLY_RX_TX_CHANGE bit in 0x0A
+ * needs to be set to 1 on every 0xA-0xC write.
+ */
+ if (settings->reg_settings[i].i2c_reg_index == 0xA ||
+ settings->reg_settings[i].i2c_reg_index == 0xB ||
+ settings->reg_settings[i].i2c_reg_index == 0xC) {
+
+ /* Query current value from offset 0xA */
+ if (settings->reg_settings[i].i2c_reg_index == 0xA)
+ value = settings->reg_settings[i].i2c_reg_val;
+ else {
+ i2c_success =
+ link_query_ddc_data(
+ pipe_ctx->stream->link->ddc,
+ slave_address, &offset, 1, &value, 1);
+ if (!i2c_success)
+ goto i2c_write_fail;
+ }
+
+ buffer[0] = offset;
+ /* Set APPLY_RX_TX_CHANGE bit to 1 */
+ buffer[1] = value | apply_rx_tx_change;
+ i2c_success = write_i2c(pipe_ctx, slave_address,
+ buffer, sizeof(buffer));
+ RETIMER_REDRIVER_INFO("retimer write to slave_address = 0x%x,\
+ offset = 0x%x, reg_val = 0x%x, i2c_success = %d\n",
+ slave_address, buffer[0], buffer[1], i2c_success?1:0);
+ if (!i2c_success)
+ goto i2c_write_fail;
+ }
+ }
+ }
+
+ /* Apply 3G settings */
+ if (is_over_340mhz) {
+ for (i = 0; i < settings->reg_num_6g; i++) {
+ /* Apply 3G settings */
+ if (settings->reg_settings[i].i2c_reg_index <= 0x20) {
+
+ buffer[0] = settings->reg_settings_6g[i].i2c_reg_index;
+ buffer[1] = settings->reg_settings_6g[i].i2c_reg_val;
+ i2c_success = write_i2c(pipe_ctx, slave_address,
+ buffer, sizeof(buffer));
+ RETIMER_REDRIVER_INFO("above 340Mhz: retimer write to slave_address = 0x%x,\
+ offset = 0x%x, reg_val = 0x%x, i2c_success = %d\n",
+ slave_address, buffer[0], buffer[1], i2c_success?1:0);
+
+ if (!i2c_success)
+ goto i2c_write_fail;
+
+ /* Based on DP159 specs, APPLY_RX_TX_CHANGE bit in 0x0A
+ * needs to be set to 1 on every 0xA-0xC write.
+ */
+ if (settings->reg_settings_6g[i].i2c_reg_index == 0xA ||
+ settings->reg_settings_6g[i].i2c_reg_index == 0xB ||
+ settings->reg_settings_6g[i].i2c_reg_index == 0xC) {
+
+ /* Query current value from offset 0xA */
+ if (settings->reg_settings_6g[i].i2c_reg_index == 0xA)
+ value = settings->reg_settings_6g[i].i2c_reg_val;
+ else {
+ i2c_success =
+ link_query_ddc_data(
+ pipe_ctx->stream->link->ddc,
+ slave_address, &offset, 1, &value, 1);
+ if (!i2c_success)
+ goto i2c_write_fail;
+ }
+
+ buffer[0] = offset;
+ /* Set APPLY_RX_TX_CHANGE bit to 1 */
+ buffer[1] = value | apply_rx_tx_change;
+ i2c_success = write_i2c(pipe_ctx, slave_address,
+ buffer, sizeof(buffer));
+ RETIMER_REDRIVER_INFO("retimer write to slave_address = 0x%x,\
+ offset = 0x%x, reg_val = 0x%x, i2c_success = %d\n",
+ slave_address, buffer[0], buffer[1], i2c_success?1:0);
+ if (!i2c_success)
+ goto i2c_write_fail;
+ }
+ }
+ }
+ }
+
+ if (is_vga_mode) {
+ /* Program additional settings if using 640x480 resolution */
+
+ /* Write offset 0xFF to 0x01 */
+ buffer[0] = 0xff;
+ buffer[1] = 0x01;
+ i2c_success = write_i2c(pipe_ctx, slave_address,
+ buffer, sizeof(buffer));
+ RETIMER_REDRIVER_INFO("retimer write to slave_address = 0x%x,\
+ offset = 0x%x, reg_val = 0x%x, i2c_success = %d\n",
+ slave_address, buffer[0], buffer[1], i2c_success?1:0);
+ if (!i2c_success)
+ goto i2c_write_fail;
+
+ /* Write offset 0x00 to 0x23 */
+ buffer[0] = 0x00;
+ buffer[1] = 0x23;
+ i2c_success = write_i2c(pipe_ctx, slave_address,
+ buffer, sizeof(buffer));
+ RETIMER_REDRIVER_INFO("retimer write to slave_address = 0x%x,\
+ offset = 0x%x, reg_val = 0x%x, i2c_success = %d\n",
+ slave_address, buffer[0], buffer[1], i2c_success?1:0);
+ if (!i2c_success)
+ goto i2c_write_fail;
+
+ /* Write offset 0xff to 0x00 */
+ buffer[0] = 0xff;
+ buffer[1] = 0x00;
+ i2c_success = write_i2c(pipe_ctx, slave_address,
+ buffer, sizeof(buffer));
+ RETIMER_REDRIVER_INFO("retimer write to slave_address = 0x%x,\
+ offset = 0x%x, reg_val = 0x%x, i2c_success = %d\n",
+ slave_address, buffer[0], buffer[1], i2c_success?1:0);
+ if (!i2c_success)
+ goto i2c_write_fail;
+
+ }
+
+ return;
+
+i2c_write_fail:
+ DC_LOG_DEBUG("Set retimer failed");
+}
+
+static void write_i2c_default_retimer_setting(
+ struct pipe_ctx *pipe_ctx,
+ bool is_vga_mode,
+ bool is_over_340mhz)
+{
+ uint8_t slave_address = (0xBA >> 1);
+ uint8_t buffer[2];
+ bool i2c_success = false;
+ DC_LOGGER_INIT(pipe_ctx->stream->ctx->logger);
+
+ memset(&buffer, 0, sizeof(buffer));
+
+ /* Program Slave Address for tuning single integrity */
+ /* Write offset 0x0A to 0x13 */
+ buffer[0] = 0x0A;
+ buffer[1] = 0x13;
+ i2c_success = write_i2c(pipe_ctx, slave_address,
+ buffer, sizeof(buffer));
+ RETIMER_REDRIVER_INFO("retimer writes default setting to slave_address = 0x%x,\
+ offset = 0x%x, reg_val = 0x%x, i2c_success = %d\n",
+ slave_address, buffer[0], buffer[1], i2c_success?1:0);
+ if (!i2c_success)
+ goto i2c_write_fail;
+
+ /* Write offset 0x0A to 0x17 */
+ buffer[0] = 0x0A;
+ buffer[1] = 0x17;
+ i2c_success = write_i2c(pipe_ctx, slave_address,
+ buffer, sizeof(buffer));
+ RETIMER_REDRIVER_INFO("retimer write to slave_addr = 0x%x,\
+ offset = 0x%x, reg_val = 0x%x, i2c_success = %d\n",
+ slave_address, buffer[0], buffer[1], i2c_success?1:0);
+ if (!i2c_success)
+ goto i2c_write_fail;
+
+ /* Write offset 0x0B to 0xDA or 0xD8 */
+ buffer[0] = 0x0B;
+ buffer[1] = is_over_340mhz ? 0xDA : 0xD8;
+ i2c_success = write_i2c(pipe_ctx, slave_address,
+ buffer, sizeof(buffer));
+ RETIMER_REDRIVER_INFO("retimer write to slave_addr = 0x%x,\
+ offset = 0x%x, reg_val = 0x%x, i2c_success = %d\n",
+ slave_address, buffer[0], buffer[1], i2c_success?1:0);
+ if (!i2c_success)
+ goto i2c_write_fail;
+
+ /* Write offset 0x0A to 0x17 */
+ buffer[0] = 0x0A;
+ buffer[1] = 0x17;
+ i2c_success = write_i2c(pipe_ctx, slave_address,
+ buffer, sizeof(buffer));
+ RETIMER_REDRIVER_INFO("retimer write to slave_addr = 0x%x,\
+ offset = 0x%x, reg_val= 0x%x, i2c_success = %d\n",
+ slave_address, buffer[0], buffer[1], i2c_success?1:0);
+ if (!i2c_success)
+ goto i2c_write_fail;
+
+ /* Write offset 0x0C to 0x1D or 0x91 */
+ buffer[0] = 0x0C;
+ buffer[1] = is_over_340mhz ? 0x1D : 0x91;
+ i2c_success = write_i2c(pipe_ctx, slave_address,
+ buffer, sizeof(buffer));
+ RETIMER_REDRIVER_INFO("retimer write to slave_addr = 0x%x,\
+ offset = 0x%x, reg_val = 0x%x, i2c_success = %d\n",
+ slave_address, buffer[0], buffer[1], i2c_success?1:0);
+ if (!i2c_success)
+ goto i2c_write_fail;
+
+ /* Write offset 0x0A to 0x17 */
+ buffer[0] = 0x0A;
+ buffer[1] = 0x17;
+ i2c_success = write_i2c(pipe_ctx, slave_address,
+ buffer, sizeof(buffer));
+ RETIMER_REDRIVER_INFO("retimer write to slave_addr = 0x%x,\
+ offset = 0x%x, reg_val = 0x%x, i2c_success = %d\n",
+ slave_address, buffer[0], buffer[1], i2c_success?1:0);
+ if (!i2c_success)
+ goto i2c_write_fail;
+
+
+ if (is_vga_mode) {
+ /* Program additional settings if using 640x480 resolution */
+
+ /* Write offset 0xFF to 0x01 */
+ buffer[0] = 0xff;
+ buffer[1] = 0x01;
+ i2c_success = write_i2c(pipe_ctx, slave_address,
+ buffer, sizeof(buffer));
+ RETIMER_REDRIVER_INFO("retimer write to slave_addr = 0x%x,\
+ offset = 0x%x, reg_val = 0x%x, i2c_success = %d\n",
+ slave_address, buffer[0], buffer[1], i2c_success?1:0);
+ if (!i2c_success)
+ goto i2c_write_fail;
+
+ /* Write offset 0x00 to 0x23 */
+ buffer[0] = 0x00;
+ buffer[1] = 0x23;
+ i2c_success = write_i2c(pipe_ctx, slave_address,
+ buffer, sizeof(buffer));
+ RETIMER_REDRIVER_INFO("retimer write to slave_addr = 0x%x,\
+ offset = 0x%x, reg_val= 0x%x, i2c_success = %d\n",
+ slave_address, buffer[0], buffer[1], i2c_success?1:0);
+ if (!i2c_success)
+ goto i2c_write_fail;
+
+ /* Write offset 0xff to 0x00 */
+ buffer[0] = 0xff;
+ buffer[1] = 0x00;
+ i2c_success = write_i2c(pipe_ctx, slave_address,
+ buffer, sizeof(buffer));
+ RETIMER_REDRIVER_INFO("retimer write default setting to slave_addr = 0x%x,\
+ offset = 0x%x, reg_val= 0x%x, i2c_success = %d end here\n",
+ slave_address, buffer[0], buffer[1], i2c_success?1:0);
+ if (!i2c_success)
+ goto i2c_write_fail;
+ }
+
+ return;
+
+i2c_write_fail:
+ DC_LOG_DEBUG("Set default retimer failed");
+}
+
+static void write_i2c_redriver_setting(
+ struct pipe_ctx *pipe_ctx,
+ bool is_over_340mhz)
+{
+ uint8_t slave_address = (0xF0 >> 1);
+ uint8_t buffer[16];
+ bool i2c_success = false;
+ DC_LOGGER_INIT(pipe_ctx->stream->ctx->logger);
+
+ memset(&buffer, 0, sizeof(buffer));
+
+ // Program Slave Address for tuning single integrity
+ buffer[3] = 0x4E;
+ buffer[4] = 0x4E;
+ buffer[5] = 0x4E;
+ buffer[6] = is_over_340mhz ? 0x4E : 0x4A;
+
+ i2c_success = write_i2c(pipe_ctx, slave_address,
+ buffer, sizeof(buffer));
+ RETIMER_REDRIVER_INFO("redriver write 0 to all 16 reg offset expect following:\n\
+ \t slave_addr = 0x%x, offset[3] = 0x%x, offset[4] = 0x%x,\
+ offset[5] = 0x%x,offset[6] is_over_340mhz = 0x%x,\
+ i2c_success = %d\n",
+ slave_address, buffer[3], buffer[4], buffer[5], buffer[6], i2c_success?1:0);
+
+ if (!i2c_success)
+ DC_LOG_DEBUG("Set redriver failed");
+}
+
+static void update_psp_stream_config(struct pipe_ctx *pipe_ctx, bool dpms_off)
+{
+ struct cp_psp *cp_psp = &pipe_ctx->stream->ctx->cp_psp;
+ struct link_encoder *link_enc = NULL;
+ struct cp_psp_stream_config config = {0};
+ enum dp_panel_mode panel_mode =
+ dp_get_panel_mode(pipe_ctx->stream->link);
+
+ if (cp_psp == NULL || cp_psp->funcs.update_stream_config == NULL)
+ return;
+
+ link_enc = link_enc_cfg_get_link_enc(pipe_ctx->stream->link);
+ ASSERT(link_enc);
+ if (link_enc == NULL)
+ return;
+
+ /* otg instance */
+ config.otg_inst = (uint8_t) pipe_ctx->stream_res.tg->inst;
+
+ /* dig front end */
+ config.dig_fe = (uint8_t) pipe_ctx->stream_res.stream_enc->stream_enc_inst;
+
+ /* stream encoder index */
+ config.stream_enc_idx = pipe_ctx->stream_res.stream_enc->id - ENGINE_ID_DIGA;
+ if (dp_is_128b_132b_signal(pipe_ctx))
+ config.stream_enc_idx =
+ pipe_ctx->stream_res.hpo_dp_stream_enc->id - ENGINE_ID_HPO_DP_0;
+
+ /* dig back end */
+ config.dig_be = pipe_ctx->stream->link->link_enc_hw_inst;
+
+ /* link encoder index */
+ config.link_enc_idx = link_enc->transmitter - TRANSMITTER_UNIPHY_A;
+ if (dp_is_128b_132b_signal(pipe_ctx))
+ config.link_enc_idx = pipe_ctx->link_res.hpo_dp_link_enc->inst;
+
+ /* dio output index is dpia index for DPIA endpoint & dcio index by default */
+ if (pipe_ctx->stream->link->ep_type == DISPLAY_ENDPOINT_USB4_DPIA)
+ config.dio_output_idx = pipe_ctx->stream->link->link_id.enum_id - ENUM_ID_1;
+ else
+ config.dio_output_idx = link_enc->transmitter - TRANSMITTER_UNIPHY_A;
+
+
+ /* phy index */
+ config.phy_idx = resource_transmitter_to_phy_idx(
+ pipe_ctx->stream->link->dc, link_enc->transmitter);
+ if (pipe_ctx->stream->link->ep_type == DISPLAY_ENDPOINT_USB4_DPIA)
+ /* USB4 DPIA doesn't use PHY in our soc, initialize it to 0 */
+ config.phy_idx = 0;
+
+ /* stream properties */
+ config.assr_enabled = (panel_mode == DP_PANEL_MODE_EDP) ? 1 : 0;
+ config.mst_enabled = (pipe_ctx->stream->signal ==
+ SIGNAL_TYPE_DISPLAY_PORT_MST) ? 1 : 0;
+ config.dp2_enabled = dp_is_128b_132b_signal(pipe_ctx) ? 1 : 0;
+ config.usb4_enabled = (pipe_ctx->stream->link->ep_type == DISPLAY_ENDPOINT_USB4_DPIA) ?
+ 1 : 0;
+ config.dpms_off = dpms_off;
+
+ /* dm stream context */
+ config.dm_stream_ctx = pipe_ctx->stream->dm_stream_context;
+
+ cp_psp->funcs.update_stream_config(cp_psp->handle, &config);
+}
+
+static void set_avmute(struct pipe_ctx *pipe_ctx, bool enable)
+{
+ struct dc *dc = pipe_ctx->stream->ctx->dc;
+
+ if (!dc_is_hdmi_signal(pipe_ctx->stream->signal))
+ return;
+
+ dc->hwss.set_avmute(pipe_ctx, enable);
+}
+
+static void enable_mst_on_sink(struct dc_link *link, bool enable)
+{
+ unsigned char mstmCntl;
+
+ core_link_read_dpcd(link, DP_MSTM_CTRL, &mstmCntl, 1);
+ if (enable)
+ mstmCntl |= DP_MST_EN;
+ else
+ mstmCntl &= (~DP_MST_EN);
+
+ core_link_write_dpcd(link, DP_MSTM_CTRL, &mstmCntl, 1);
+}
+
+static void dsc_optc_config_log(struct display_stream_compressor *dsc,
+ struct dsc_optc_config *config)
+{
+ uint32_t precision = 1 << 28;
+ uint32_t bytes_per_pixel_int = config->bytes_per_pixel / precision;
+ uint32_t bytes_per_pixel_mod = config->bytes_per_pixel % precision;
+ uint64_t ll_bytes_per_pix_fraq = bytes_per_pixel_mod;
+ DC_LOGGER_INIT(dsc->ctx->logger);
+
+ /* 7 fractional digits decimal precision for bytes per pixel is enough because DSC
+ * bits per pixel precision is 1/16th of a pixel, which means bytes per pixel precision is
+ * 1/16/8 = 1/128 of a byte, or 0.0078125 decimal
+ */
+ ll_bytes_per_pix_fraq *= 10000000;
+ ll_bytes_per_pix_fraq /= precision;
+
+ DC_LOG_DSC("\tbytes_per_pixel 0x%08x (%d.%07d)",
+ config->bytes_per_pixel, bytes_per_pixel_int, (uint32_t)ll_bytes_per_pix_fraq);
+ DC_LOG_DSC("\tis_pixel_format_444 %d", config->is_pixel_format_444);
+ DC_LOG_DSC("\tslice_width %d", config->slice_width);
+}
+
+static bool dp_set_dsc_on_rx(struct pipe_ctx *pipe_ctx, bool enable)
+{
+ struct dc *dc = pipe_ctx->stream->ctx->dc;
+ struct dc_stream_state *stream = pipe_ctx->stream;
+ bool result = false;
+
+ if (dc_is_virtual_signal(stream->signal) || IS_FPGA_MAXIMUS_DC(dc->ctx->dce_environment))
+ result = true;
+ else
+ result = dm_helpers_dp_write_dsc_enable(dc->ctx, stream, enable);
+ return result;
+}
+
+/* The stream with these settings can be sent (unblanked) only after DSC was enabled on RX first,
+ * i.e. after dp_enable_dsc_on_rx() had been called
+ */
+void link_set_dsc_on_stream(struct pipe_ctx *pipe_ctx, bool enable)
+{
+ struct display_stream_compressor *dsc = pipe_ctx->stream_res.dsc;
+ struct dc *dc = pipe_ctx->stream->ctx->dc;
+ struct dc_stream_state *stream = pipe_ctx->stream;
+ struct pipe_ctx *odm_pipe;
+ int opp_cnt = 1;
+ DC_LOGGER_INIT(dsc->ctx->logger);
+
+ for (odm_pipe = pipe_ctx->next_odm_pipe; odm_pipe; odm_pipe = odm_pipe->next_odm_pipe)
+ opp_cnt++;
+
+ if (enable) {
+ struct dsc_config dsc_cfg;
+ struct dsc_optc_config dsc_optc_cfg;
+ enum optc_dsc_mode optc_dsc_mode;
+
+ /* Enable DSC hw block */
+ dsc_cfg.pic_width = (stream->timing.h_addressable + stream->timing.h_border_left + stream->timing.h_border_right) / opp_cnt;
+ dsc_cfg.pic_height = stream->timing.v_addressable + stream->timing.v_border_top + stream->timing.v_border_bottom;
+ dsc_cfg.pixel_encoding = stream->timing.pixel_encoding;
+ dsc_cfg.color_depth = stream->timing.display_color_depth;
+ dsc_cfg.is_odm = pipe_ctx->next_odm_pipe ? true : false;
+ dsc_cfg.dc_dsc_cfg = stream->timing.dsc_cfg;
+ ASSERT(dsc_cfg.dc_dsc_cfg.num_slices_h % opp_cnt == 0);
+ dsc_cfg.dc_dsc_cfg.num_slices_h /= opp_cnt;
+
+ dsc->funcs->dsc_set_config(dsc, &dsc_cfg, &dsc_optc_cfg);
+ dsc->funcs->dsc_enable(dsc, pipe_ctx->stream_res.opp->inst);
+ for (odm_pipe = pipe_ctx->next_odm_pipe; odm_pipe; odm_pipe = odm_pipe->next_odm_pipe) {
+ struct display_stream_compressor *odm_dsc = odm_pipe->stream_res.dsc;
+
+ odm_dsc->funcs->dsc_set_config(odm_dsc, &dsc_cfg, &dsc_optc_cfg);
+ odm_dsc->funcs->dsc_enable(odm_dsc, odm_pipe->stream_res.opp->inst);
+ }
+ dsc_cfg.dc_dsc_cfg.num_slices_h *= opp_cnt;
+ dsc_cfg.pic_width *= opp_cnt;
+
+ optc_dsc_mode = dsc_optc_cfg.is_pixel_format_444 ? OPTC_DSC_ENABLED_444 : OPTC_DSC_ENABLED_NATIVE_SUBSAMPLED;
+
+ /* Enable DSC in encoder */
+ if (dc_is_dp_signal(stream->signal) && !IS_FPGA_MAXIMUS_DC(dc->ctx->dce_environment)
+ && !dp_is_128b_132b_signal(pipe_ctx)) {
+ DC_LOG_DSC("Setting stream encoder DSC config for engine %d:", (int)pipe_ctx->stream_res.stream_enc->id);
+ dsc_optc_config_log(dsc, &dsc_optc_cfg);
+ pipe_ctx->stream_res.stream_enc->funcs->dp_set_dsc_config(pipe_ctx->stream_res.stream_enc,
+ optc_dsc_mode,
+ dsc_optc_cfg.bytes_per_pixel,
+ dsc_optc_cfg.slice_width);
+
+ /* PPS SDP is set elsewhere because it has to be done after DIG FE is connected to DIG BE */
+ }
+
+ /* Enable DSC in OPTC */
+ DC_LOG_DSC("Setting optc DSC config for tg instance %d:", pipe_ctx->stream_res.tg->inst);
+ dsc_optc_config_log(dsc, &dsc_optc_cfg);
+ pipe_ctx->stream_res.tg->funcs->set_dsc_config(pipe_ctx->stream_res.tg,
+ optc_dsc_mode,
+ dsc_optc_cfg.bytes_per_pixel,
+ dsc_optc_cfg.slice_width);
+ } else {
+ /* disable DSC in OPTC */
+ pipe_ctx->stream_res.tg->funcs->set_dsc_config(
+ pipe_ctx->stream_res.tg,
+ OPTC_DSC_DISABLED, 0, 0);
+
+ /* disable DSC in stream encoder */
+ if (dc_is_dp_signal(stream->signal)) {
+ if (dp_is_128b_132b_signal(pipe_ctx))
+ pipe_ctx->stream_res.hpo_dp_stream_enc->funcs->dp_set_dsc_pps_info_packet(
+ pipe_ctx->stream_res.hpo_dp_stream_enc,
+ false,
+ NULL,
+ true);
+ else if (!IS_FPGA_MAXIMUS_DC(dc->ctx->dce_environment)) {
+ pipe_ctx->stream_res.stream_enc->funcs->dp_set_dsc_config(
+ pipe_ctx->stream_res.stream_enc,
+ OPTC_DSC_DISABLED, 0, 0);
+ pipe_ctx->stream_res.stream_enc->funcs->dp_set_dsc_pps_info_packet(
+ pipe_ctx->stream_res.stream_enc, false, NULL, true);
+ }
+ }
+
+ /* disable DSC block */
+ pipe_ctx->stream_res.dsc->funcs->dsc_disable(pipe_ctx->stream_res.dsc);
+ for (odm_pipe = pipe_ctx->next_odm_pipe; odm_pipe; odm_pipe = odm_pipe->next_odm_pipe)
+ odm_pipe->stream_res.dsc->funcs->dsc_disable(odm_pipe->stream_res.dsc);
+ }
+}
+
+/*
+ * For dynamic bpp change case, dsc is programmed with MASTER_UPDATE_LOCK enabled;
+ * hence PPS info packet update need to use frame update instead of immediate update.
+ * Added parameter immediate_update for this purpose.
+ * The decision to use frame update is hard-coded in function dp_update_dsc_config(),
+ * which is the only place where a "false" would be passed in for param immediate_update.
+ *
+ * immediate_update is only applicable when DSC is enabled.
+ */
+bool link_set_dsc_pps_packet(struct pipe_ctx *pipe_ctx, bool enable, bool immediate_update)
+{
+ struct display_stream_compressor *dsc = pipe_ctx->stream_res.dsc;
+ struct dc_stream_state *stream = pipe_ctx->stream;
+ DC_LOGGER_INIT(dsc->ctx->logger);
+
+ if (!pipe_ctx->stream->timing.flags.DSC || !dsc)
+ return false;
+
+ if (enable) {
+ struct dsc_config dsc_cfg;
+ uint8_t dsc_packed_pps[128];
+
+ memset(&dsc_cfg, 0, sizeof(dsc_cfg));
+ memset(dsc_packed_pps, 0, 128);
+
+ /* Enable DSC hw block */
+ dsc_cfg.pic_width = stream->timing.h_addressable + stream->timing.h_border_left + stream->timing.h_border_right;
+ dsc_cfg.pic_height = stream->timing.v_addressable + stream->timing.v_border_top + stream->timing.v_border_bottom;
+ dsc_cfg.pixel_encoding = stream->timing.pixel_encoding;
+ dsc_cfg.color_depth = stream->timing.display_color_depth;
+ dsc_cfg.is_odm = pipe_ctx->next_odm_pipe ? true : false;
+ dsc_cfg.dc_dsc_cfg = stream->timing.dsc_cfg;
+
+ dsc->funcs->dsc_get_packed_pps(dsc, &dsc_cfg, &dsc_packed_pps[0]);
+ memcpy(&stream->dsc_packed_pps[0], &dsc_packed_pps[0], sizeof(stream->dsc_packed_pps));
+ if (dc_is_dp_signal(stream->signal)) {
+ DC_LOG_DSC("Setting stream encoder DSC PPS SDP for engine %d\n", (int)pipe_ctx->stream_res.stream_enc->id);
+ if (dp_is_128b_132b_signal(pipe_ctx))
+ pipe_ctx->stream_res.hpo_dp_stream_enc->funcs->dp_set_dsc_pps_info_packet(
+ pipe_ctx->stream_res.hpo_dp_stream_enc,
+ true,
+ &dsc_packed_pps[0],
+ immediate_update);
+ else
+ pipe_ctx->stream_res.stream_enc->funcs->dp_set_dsc_pps_info_packet(
+ pipe_ctx->stream_res.stream_enc,
+ true,
+ &dsc_packed_pps[0],
+ immediate_update);
+ }
+ } else {
+ /* disable DSC PPS in stream encoder */
+ memset(&stream->dsc_packed_pps[0], 0, sizeof(stream->dsc_packed_pps));
+ if (dc_is_dp_signal(stream->signal)) {
+ if (dp_is_128b_132b_signal(pipe_ctx))
+ pipe_ctx->stream_res.hpo_dp_stream_enc->funcs->dp_set_dsc_pps_info_packet(
+ pipe_ctx->stream_res.hpo_dp_stream_enc,
+ false,
+ NULL,
+ true);
+ else
+ pipe_ctx->stream_res.stream_enc->funcs->dp_set_dsc_pps_info_packet(
+ pipe_ctx->stream_res.stream_enc, false, NULL, true);
+ }
+ }
+
+ return true;
+}
+
+bool link_set_dsc_enable(struct pipe_ctx *pipe_ctx, bool enable)
+{
+ struct display_stream_compressor *dsc = pipe_ctx->stream_res.dsc;
+ bool result = false;
+
+ if (!pipe_ctx->stream->timing.flags.DSC)
+ goto out;
+ if (!dsc)
+ goto out;
+
+ if (enable) {
+ {
+ link_set_dsc_on_stream(pipe_ctx, true);
+ result = true;
+ }
+ } else {
+ dp_set_dsc_on_rx(pipe_ctx, false);
+ link_set_dsc_on_stream(pipe_ctx, false);
+ result = true;
+ }
+out:
+ return result;
+}
+
+bool link_update_dsc_config(struct pipe_ctx *pipe_ctx)
+{
+ struct display_stream_compressor *dsc = pipe_ctx->stream_res.dsc;
+
+ if (!pipe_ctx->stream->timing.flags.DSC)
+ return false;
+ if (!dsc)
+ return false;
+
+ link_set_dsc_on_stream(pipe_ctx, true);
+ link_set_dsc_pps_packet(pipe_ctx, true, false);
+ return true;
+}
+
+static void enable_stream_features(struct pipe_ctx *pipe_ctx)
+{
+ struct dc_stream_state *stream = pipe_ctx->stream;
+
+ if (pipe_ctx->stream->signal != SIGNAL_TYPE_DISPLAY_PORT_MST) {
+ struct dc_link *link = stream->link;
+ union down_spread_ctrl old_downspread;
+ union down_spread_ctrl new_downspread;
+
+ memset(&old_downspread, 0, sizeof(old_downspread));
+
+ core_link_read_dpcd(link, DP_DOWNSPREAD_CTRL,
+ &old_downspread.raw, sizeof(old_downspread));
+
+ new_downspread.raw = old_downspread.raw;
+
+ new_downspread.bits.IGNORE_MSA_TIMING_PARAM =
+ (stream->ignore_msa_timing_param) ? 1 : 0;
+
+ if (new_downspread.raw != old_downspread.raw) {
+ core_link_write_dpcd(link, DP_DOWNSPREAD_CTRL,
+ &new_downspread.raw, sizeof(new_downspread));
+ }
+
+ } else {
+ dm_helpers_mst_enable_stream_features(stream);
+ }
+}
+
+static void log_vcp_x_y(const struct dc_link *link, struct fixed31_32 avg_time_slots_per_mtp)
+{
+ const uint32_t VCP_Y_PRECISION = 1000;
+ uint64_t vcp_x, vcp_y;
+ DC_LOGGER_INIT(link->ctx->logger);
+
+ // Add 0.5*(1/VCP_Y_PRECISION) to round up to decimal precision
+ avg_time_slots_per_mtp = dc_fixpt_add(
+ avg_time_slots_per_mtp,
+ dc_fixpt_from_fraction(
+ 1,
+ 2*VCP_Y_PRECISION));
+
+ vcp_x = dc_fixpt_floor(
+ avg_time_slots_per_mtp);
+ vcp_y = dc_fixpt_floor(
+ dc_fixpt_mul_int(
+ dc_fixpt_sub_int(
+ avg_time_slots_per_mtp,
+ dc_fixpt_floor(
+ avg_time_slots_per_mtp)),
+ VCP_Y_PRECISION));
+
+
+ if (link->type == dc_connection_mst_branch)
+ DC_LOG_DP2("MST Update Payload: set_throttled_vcp_size slot X.Y for MST stream "
+ "X: %llu "
+ "Y: %llu/%d",
+ vcp_x,
+ vcp_y,
+ VCP_Y_PRECISION);
+ else
+ DC_LOG_DP2("SST Update Payload: set_throttled_vcp_size slot X.Y for SST stream "
+ "X: %llu "
+ "Y: %llu/%d",
+ vcp_x,
+ vcp_y,
+ VCP_Y_PRECISION);
+}
+
+static struct fixed31_32 get_pbn_per_slot(struct dc_stream_state *stream)
+{
+ struct fixed31_32 mbytes_per_sec;
+ uint32_t link_rate_in_mbytes_per_sec = dp_link_bandwidth_kbps(stream->link,
+ &stream->link->cur_link_settings);
+ link_rate_in_mbytes_per_sec /= 8000; /* Kbits to MBytes */
+
+ mbytes_per_sec = dc_fixpt_from_int(link_rate_in_mbytes_per_sec);
+
+ return dc_fixpt_div_int(mbytes_per_sec, 54);
+}
+
+static struct fixed31_32 get_pbn_from_bw_in_kbps(uint64_t kbps)
+{
+ struct fixed31_32 peak_kbps;
+ uint32_t numerator = 0;
+ uint32_t denominator = 1;
+
+ /*
+ * margin 5300ppm + 300ppm ~ 0.6% as per spec, factor is 1.006
+ * The unit of 54/64Mbytes/sec is an arbitrary unit chosen based on
+ * common multiplier to render an integer PBN for all link rate/lane
+ * counts combinations
+ * calculate
+ * peak_kbps *= (1006/1000)
+ * peak_kbps *= (64/54)
+ * peak_kbps *= 8 convert to bytes
+ */
+
+ numerator = 64 * PEAK_FACTOR_X1000;
+ denominator = 54 * 8 * 1000 * 1000;
+ kbps *= numerator;
+ peak_kbps = dc_fixpt_from_fraction(kbps, denominator);
+
+ return peak_kbps;
+}
+
+static struct fixed31_32 get_pbn_from_timing(struct pipe_ctx *pipe_ctx)
+{
+ uint64_t kbps;
+
+ kbps = dc_bandwidth_in_kbps_from_timing(&pipe_ctx->stream->timing);
+ return get_pbn_from_bw_in_kbps(kbps);
+}
+
+
+// TODO - DP2.0 Link: Fix get_lane_status to handle LTTPR offset (SST and MST)
+static void get_lane_status(
+ struct dc_link *link,
+ uint32_t lane_count,
+ union lane_status *status,
+ union lane_align_status_updated *status_updated)
+{
+ unsigned int lane;
+ uint8_t dpcd_buf[3] = {0};
+
+ if (status == NULL || status_updated == NULL) {
+ return;
+ }
+
+ core_link_read_dpcd(
+ link,
+ DP_LANE0_1_STATUS,
+ dpcd_buf,
+ sizeof(dpcd_buf));
+
+ for (lane = 0; lane < lane_count; lane++) {
+ status[lane].raw = dp_get_nibble_at_index(&dpcd_buf[0], lane);
+ }
+
+ status_updated->raw = dpcd_buf[2];
+}
+
+static bool poll_for_allocation_change_trigger(struct dc_link *link)
+{
+ /*
+ * wait for ACT handled
+ */
+ int i;
+ const int act_retries = 30;
+ enum act_return_status result = ACT_FAILED;
+ union payload_table_update_status update_status = {0};
+ union lane_status dpcd_lane_status[LANE_COUNT_DP_MAX];
+ union lane_align_status_updated lane_status_updated;
+ DC_LOGGER_INIT(link->ctx->logger);
+
+ if (link->aux_access_disabled)
+ return true;
+ for (i = 0; i < act_retries; i++) {
+ get_lane_status(link, link->cur_link_settings.lane_count, dpcd_lane_status, &lane_status_updated);
+
+ if (!dp_is_cr_done(link->cur_link_settings.lane_count, dpcd_lane_status) ||
+ !dp_is_ch_eq_done(link->cur_link_settings.lane_count, dpcd_lane_status) ||
+ !dp_is_symbol_locked(link->cur_link_settings.lane_count, dpcd_lane_status) ||
+ !dp_is_interlane_aligned(lane_status_updated)) {
+ DC_LOG_ERROR("SST Update Payload: Link loss occurred while "
+ "polling for ACT handled.");
+ result = ACT_LINK_LOST;
+ break;
+ }
+ core_link_read_dpcd(
+ link,
+ DP_PAYLOAD_TABLE_UPDATE_STATUS,
+ &update_status.raw,
+ 1);
+
+ if (update_status.bits.ACT_HANDLED == 1) {
+ DC_LOG_DP2("SST Update Payload: ACT handled by downstream.");
+ result = ACT_SUCCESS;
+ break;
+ }
+
+ fsleep(5000);
+ }
+
+ if (result == ACT_FAILED) {
+ DC_LOG_ERROR("SST Update Payload: ACT still not handled after retries, "
+ "continue on. Something is wrong with the branch.");
+ }
+
+ return (result == ACT_SUCCESS);
+}
+
+static void update_mst_stream_alloc_table(
+ struct dc_link *link,
+ struct stream_encoder *stream_enc,
+ struct hpo_dp_stream_encoder *hpo_dp_stream_enc, // TODO: Rename stream_enc to dio_stream_enc?
+ const struct dc_dp_mst_stream_allocation_table *proposed_table)
+{
+ struct link_mst_stream_allocation work_table[MAX_CONTROLLER_NUM] = { 0 };
+ struct link_mst_stream_allocation *dc_alloc;
+
+ int i;
+ int j;
+
+ /* if DRM proposed_table has more than one new payload */
+ ASSERT(proposed_table->stream_count -
+ link->mst_stream_alloc_table.stream_count < 2);
+
+ /* copy proposed_table to link, add stream encoder */
+ for (i = 0; i < proposed_table->stream_count; i++) {
+
+ for (j = 0; j < link->mst_stream_alloc_table.stream_count; j++) {
+ dc_alloc =
+ &link->mst_stream_alloc_table.stream_allocations[j];
+
+ if (dc_alloc->vcp_id ==
+ proposed_table->stream_allocations[i].vcp_id) {
+
+ work_table[i] = *dc_alloc;
+ work_table[i].slot_count = proposed_table->stream_allocations[i].slot_count;
+ break; /* exit j loop */
+ }
+ }
+
+ /* new vcp_id */
+ if (j == link->mst_stream_alloc_table.stream_count) {
+ work_table[i].vcp_id =
+ proposed_table->stream_allocations[i].vcp_id;
+ work_table[i].slot_count =
+ proposed_table->stream_allocations[i].slot_count;
+ work_table[i].stream_enc = stream_enc;
+ work_table[i].hpo_dp_stream_enc = hpo_dp_stream_enc;
+ }
+ }
+
+ /* update link->mst_stream_alloc_table with work_table */
+ link->mst_stream_alloc_table.stream_count =
+ proposed_table->stream_count;
+ for (i = 0; i < MAX_CONTROLLER_NUM; i++)
+ link->mst_stream_alloc_table.stream_allocations[i] =
+ work_table[i];
+}
+
+static void remove_stream_from_alloc_table(
+ struct dc_link *link,
+ struct stream_encoder *dio_stream_enc,
+ struct hpo_dp_stream_encoder *hpo_dp_stream_enc)
+{
+ int i = 0;
+ struct link_mst_stream_allocation_table *table =
+ &link->mst_stream_alloc_table;
+
+ if (hpo_dp_stream_enc) {
+ for (; i < table->stream_count; i++)
+ if (hpo_dp_stream_enc == table->stream_allocations[i].hpo_dp_stream_enc)
+ break;
+ } else {
+ for (; i < table->stream_count; i++)
+ if (dio_stream_enc == table->stream_allocations[i].stream_enc)
+ break;
+ }
+
+ if (i < table->stream_count) {
+ i++;
+ for (; i < table->stream_count; i++)
+ table->stream_allocations[i-1] = table->stream_allocations[i];
+ memset(&table->stream_allocations[table->stream_count-1], 0,
+ sizeof(struct link_mst_stream_allocation));
+ table->stream_count--;
+ }
+}
+
+static enum dc_status deallocate_mst_payload_with_temp_drm_wa(
+ struct pipe_ctx *pipe_ctx)
+{
+ struct dc_stream_state *stream = pipe_ctx->stream;
+ struct dc_link *link = stream->link;
+ struct dc_dp_mst_stream_allocation_table proposed_table = {0};
+ struct fixed31_32 avg_time_slots_per_mtp = dc_fixpt_from_int(0);
+ int i;
+ bool mst_mode = (link->type == dc_connection_mst_branch);
+ /* adjust for drm changes*/
+ const struct link_hwss *link_hwss = get_link_hwss(link, &pipe_ctx->link_res);
+ const struct dc_link_settings empty_link_settings = {0};
+ DC_LOGGER_INIT(link->ctx->logger);
+
+ if (link_hwss->ext.set_throttled_vcp_size)
+ link_hwss->ext.set_throttled_vcp_size(pipe_ctx, avg_time_slots_per_mtp);
+ if (link_hwss->ext.set_hblank_min_symbol_width)
+ link_hwss->ext.set_hblank_min_symbol_width(pipe_ctx,
+ &empty_link_settings,
+ avg_time_slots_per_mtp);
+
+ if (dm_helpers_dp_mst_write_payload_allocation_table(
+ stream->ctx,
+ stream,
+ &proposed_table,
+ false))
+ update_mst_stream_alloc_table(
+ link,
+ pipe_ctx->stream_res.stream_enc,
+ pipe_ctx->stream_res.hpo_dp_stream_enc,
+ &proposed_table);
+ else
+ DC_LOG_WARNING("Failed to update"
+ "MST allocation table for"
+ "pipe idx:%d\n",
+ pipe_ctx->pipe_idx);
+
+ DC_LOG_MST("%s"
+ "stream_count: %d: ",
+ __func__,
+ link->mst_stream_alloc_table.stream_count);
+
+ for (i = 0; i < MAX_CONTROLLER_NUM; i++) {
+ DC_LOG_MST("stream_enc[%d]: %p "
+ "stream[%d].hpo_dp_stream_enc: %p "
+ "stream[%d].vcp_id: %d "
+ "stream[%d].slot_count: %d\n",
+ i,
+ (void *) link->mst_stream_alloc_table.stream_allocations[i].stream_enc,
+ i,
+ (void *) link->mst_stream_alloc_table.stream_allocations[i].hpo_dp_stream_enc,
+ i,
+ link->mst_stream_alloc_table.stream_allocations[i].vcp_id,
+ i,
+ link->mst_stream_alloc_table.stream_allocations[i].slot_count);
+ }
+
+ if (link_hwss->ext.update_stream_allocation_table == NULL ||
+ link_dp_get_encoding_format(&link->cur_link_settings) == DP_UNKNOWN_ENCODING) {
+ DC_LOG_DEBUG("Unknown encoding format\n");
+ return DC_ERROR_UNEXPECTED;
+ }
+
+ link_hwss->ext.update_stream_allocation_table(link, &pipe_ctx->link_res,
+ &link->mst_stream_alloc_table);
+
+ if (mst_mode) {
+ dm_helpers_dp_mst_poll_for_allocation_change_trigger(
+ stream->ctx,
+ stream);
+ }
+
+ dm_helpers_dp_mst_send_payload_allocation(
+ stream->ctx,
+ stream,
+ false);
+
+ return DC_OK;
+}
+
+static enum dc_status deallocate_mst_payload(struct pipe_ctx *pipe_ctx)
+{
+ struct dc_stream_state *stream = pipe_ctx->stream;
+ struct dc_link *link = stream->link;
+ struct dc_dp_mst_stream_allocation_table proposed_table = {0};
+ struct fixed31_32 avg_time_slots_per_mtp = dc_fixpt_from_int(0);
+ int i;
+ bool mst_mode = (link->type == dc_connection_mst_branch);
+ const struct link_hwss *link_hwss = get_link_hwss(link, &pipe_ctx->link_res);
+ const struct dc_link_settings empty_link_settings = {0};
+ DC_LOGGER_INIT(link->ctx->logger);
+
+ if (link->dc->debug.temp_mst_deallocation_sequence)
+ return deallocate_mst_payload_with_temp_drm_wa(pipe_ctx);
+
+ /* deallocate_mst_payload is called before disable link. When mode or
+ * disable/enable monitor, new stream is created which is not in link
+ * stream[] yet. For this, payload is not allocated yet, so de-alloc
+ * should not done. For new mode set, map_resources will get engine
+ * for new stream, so stream_enc->id should be validated until here.
+ */
+
+ /* slot X.Y */
+ if (link_hwss->ext.set_throttled_vcp_size)
+ link_hwss->ext.set_throttled_vcp_size(pipe_ctx, avg_time_slots_per_mtp);
+ if (link_hwss->ext.set_hblank_min_symbol_width)
+ link_hwss->ext.set_hblank_min_symbol_width(pipe_ctx,
+ &empty_link_settings,
+ avg_time_slots_per_mtp);
+
+ if (mst_mode) {
+ /* when link is in mst mode, reply on mst manager to remove
+ * payload
+ */
+ if (dm_helpers_dp_mst_write_payload_allocation_table(
+ stream->ctx,
+ stream,
+ &proposed_table,
+ false))
+ update_mst_stream_alloc_table(
+ link,
+ pipe_ctx->stream_res.stream_enc,
+ pipe_ctx->stream_res.hpo_dp_stream_enc,
+ &proposed_table);
+ else
+ DC_LOG_WARNING("Failed to update"
+ "MST allocation table for"
+ "pipe idx:%d\n",
+ pipe_ctx->pipe_idx);
+ } else {
+ /* when link is no longer in mst mode (mst hub unplugged),
+ * remove payload with default dc logic
+ */
+ remove_stream_from_alloc_table(link, pipe_ctx->stream_res.stream_enc,
+ pipe_ctx->stream_res.hpo_dp_stream_enc);
+ }
+
+ DC_LOG_MST("%s"
+ "stream_count: %d: ",
+ __func__,
+ link->mst_stream_alloc_table.stream_count);
+
+ for (i = 0; i < MAX_CONTROLLER_NUM; i++) {
+ DC_LOG_MST("stream_enc[%d]: %p "
+ "stream[%d].hpo_dp_stream_enc: %p "
+ "stream[%d].vcp_id: %d "
+ "stream[%d].slot_count: %d\n",
+ i,
+ (void *) link->mst_stream_alloc_table.stream_allocations[i].stream_enc,
+ i,
+ (void *) link->mst_stream_alloc_table.stream_allocations[i].hpo_dp_stream_enc,
+ i,
+ link->mst_stream_alloc_table.stream_allocations[i].vcp_id,
+ i,
+ link->mst_stream_alloc_table.stream_allocations[i].slot_count);
+ }
+
+ /* update mst stream allocation table hardware state */
+ if (link_hwss->ext.update_stream_allocation_table == NULL ||
+ link_dp_get_encoding_format(&link->cur_link_settings) == DP_UNKNOWN_ENCODING) {
+ DC_LOG_DEBUG("Unknown encoding format\n");
+ return DC_ERROR_UNEXPECTED;
+ }
+
+ link_hwss->ext.update_stream_allocation_table(link, &pipe_ctx->link_res,
+ &link->mst_stream_alloc_table);
+
+ if (mst_mode) {
+ dm_helpers_dp_mst_poll_for_allocation_change_trigger(
+ stream->ctx,
+ stream);
+
+ dm_helpers_dp_mst_send_payload_allocation(
+ stream->ctx,
+ stream,
+ false);
+ }
+
+ return DC_OK;
+}
+
+/* convert link_mst_stream_alloc_table to dm dp_mst_stream_alloc_table
+ * because stream_encoder is not exposed to dm
+ */
+static enum dc_status allocate_mst_payload(struct pipe_ctx *pipe_ctx)
+{
+ struct dc_stream_state *stream = pipe_ctx->stream;
+ struct dc_link *link = stream->link;
+ struct dc_dp_mst_stream_allocation_table proposed_table = {0};
+ struct fixed31_32 avg_time_slots_per_mtp;
+ struct fixed31_32 pbn;
+ struct fixed31_32 pbn_per_slot;
+ int i;
+ enum act_return_status ret;
+ const struct link_hwss *link_hwss = get_link_hwss(link, &pipe_ctx->link_res);
+ DC_LOGGER_INIT(link->ctx->logger);
+
+ /* enable_link_dp_mst already check link->enabled_stream_count
+ * and stream is in link->stream[]. This is called during set mode,
+ * stream_enc is available.
+ */
+
+ /* get calculate VC payload for stream: stream_alloc */
+ if (dm_helpers_dp_mst_write_payload_allocation_table(
+ stream->ctx,
+ stream,
+ &proposed_table,
+ true))
+ update_mst_stream_alloc_table(
+ link,
+ pipe_ctx->stream_res.stream_enc,
+ pipe_ctx->stream_res.hpo_dp_stream_enc,
+ &proposed_table);
+ else
+ DC_LOG_WARNING("Failed to update"
+ "MST allocation table for"
+ "pipe idx:%d\n",
+ pipe_ctx->pipe_idx);
+
+ DC_LOG_MST("%s "
+ "stream_count: %d: \n ",
+ __func__,
+ link->mst_stream_alloc_table.stream_count);
+
+ for (i = 0; i < MAX_CONTROLLER_NUM; i++) {
+ DC_LOG_MST("stream_enc[%d]: %p "
+ "stream[%d].hpo_dp_stream_enc: %p "
+ "stream[%d].vcp_id: %d "
+ "stream[%d].slot_count: %d\n",
+ i,
+ (void *) link->mst_stream_alloc_table.stream_allocations[i].stream_enc,
+ i,
+ (void *) link->mst_stream_alloc_table.stream_allocations[i].hpo_dp_stream_enc,
+ i,
+ link->mst_stream_alloc_table.stream_allocations[i].vcp_id,
+ i,
+ link->mst_stream_alloc_table.stream_allocations[i].slot_count);
+ }
+
+ ASSERT(proposed_table.stream_count > 0);
+
+ /* program DP source TX for payload */
+ if (link_hwss->ext.update_stream_allocation_table == NULL ||
+ link_dp_get_encoding_format(&link->cur_link_settings) == DP_UNKNOWN_ENCODING) {
+ DC_LOG_ERROR("Failure: unknown encoding format\n");
+ return DC_ERROR_UNEXPECTED;
+ }
+
+ link_hwss->ext.update_stream_allocation_table(link,
+ &pipe_ctx->link_res,
+ &link->mst_stream_alloc_table);
+
+ /* send down message */
+ ret = dm_helpers_dp_mst_poll_for_allocation_change_trigger(
+ stream->ctx,
+ stream);
+
+ if (ret != ACT_LINK_LOST) {
+ dm_helpers_dp_mst_send_payload_allocation(
+ stream->ctx,
+ stream,
+ true);
+ }
+
+ /* slot X.Y for only current stream */
+ pbn_per_slot = get_pbn_per_slot(stream);
+ if (pbn_per_slot.value == 0) {
+ DC_LOG_ERROR("Failure: pbn_per_slot==0 not allowed. Cannot continue, returning DC_UNSUPPORTED_VALUE.\n");
+ return DC_UNSUPPORTED_VALUE;
+ }
+ pbn = get_pbn_from_timing(pipe_ctx);
+ avg_time_slots_per_mtp = dc_fixpt_div(pbn, pbn_per_slot);
+
+ log_vcp_x_y(link, avg_time_slots_per_mtp);
+
+ if (link_hwss->ext.set_throttled_vcp_size)
+ link_hwss->ext.set_throttled_vcp_size(pipe_ctx, avg_time_slots_per_mtp);
+ if (link_hwss->ext.set_hblank_min_symbol_width)
+ link_hwss->ext.set_hblank_min_symbol_width(pipe_ctx,
+ &link->cur_link_settings,
+ avg_time_slots_per_mtp);
+
+ return DC_OK;
+}
+
+struct fixed31_32 link_calculate_sst_avg_time_slots_per_mtp(
+ const struct dc_stream_state *stream,
+ const struct dc_link *link)
+{
+ struct fixed31_32 link_bw_effective =
+ dc_fixpt_from_int(
+ dp_link_bandwidth_kbps(link, &link->cur_link_settings));
+ struct fixed31_32 timeslot_bw_effective =
+ dc_fixpt_div_int(link_bw_effective, MAX_MTP_SLOT_COUNT);
+ struct fixed31_32 timing_bw =
+ dc_fixpt_from_int(
+ dc_bandwidth_in_kbps_from_timing(&stream->timing));
+ struct fixed31_32 avg_time_slots_per_mtp =
+ dc_fixpt_div(timing_bw, timeslot_bw_effective);
+
+ return avg_time_slots_per_mtp;
+}
+
+
+static bool write_128b_132b_sst_payload_allocation_table(
+ const struct dc_stream_state *stream,
+ struct dc_link *link,
+ struct link_mst_stream_allocation_table *proposed_table,
+ bool allocate)
+{
+ const uint8_t vc_id = 1; /// VC ID always 1 for SST
+ const uint8_t start_time_slot = 0; /// Always start at time slot 0 for SST
+ bool result = false;
+ uint8_t req_slot_count = 0;
+ struct fixed31_32 avg_time_slots_per_mtp = { 0 };
+ union payload_table_update_status update_status = { 0 };
+ const uint32_t max_retries = 30;
+ uint32_t retries = 0;
+ DC_LOGGER_INIT(link->ctx->logger);
+
+ if (allocate) {
+ avg_time_slots_per_mtp = link_calculate_sst_avg_time_slots_per_mtp(stream, link);
+ req_slot_count = dc_fixpt_ceil(avg_time_slots_per_mtp);
+ /// Validation should filter out modes that exceed link BW
+ ASSERT(req_slot_count <= MAX_MTP_SLOT_COUNT);
+ if (req_slot_count > MAX_MTP_SLOT_COUNT)
+ return false;
+ } else {
+ /// Leave req_slot_count = 0 if allocate is false.
+ }
+
+ proposed_table->stream_count = 1; /// Always 1 stream for SST
+ proposed_table->stream_allocations[0].slot_count = req_slot_count;
+ proposed_table->stream_allocations[0].vcp_id = vc_id;
+
+ if (link->aux_access_disabled)
+ return true;
+
+ /// Write DPCD 2C0 = 1 to start updating
+ update_status.bits.VC_PAYLOAD_TABLE_UPDATED = 1;
+ core_link_write_dpcd(
+ link,
+ DP_PAYLOAD_TABLE_UPDATE_STATUS,
+ &update_status.raw,
+ 1);
+
+ /// Program the changes in DPCD 1C0 - 1C2
+ ASSERT(vc_id == 1);
+ core_link_write_dpcd(
+ link,
+ DP_PAYLOAD_ALLOCATE_SET,
+ &vc_id,
+ 1);
+
+ ASSERT(start_time_slot == 0);
+ core_link_write_dpcd(
+ link,
+ DP_PAYLOAD_ALLOCATE_START_TIME_SLOT,
+ &start_time_slot,
+ 1);
+
+ core_link_write_dpcd(
+ link,
+ DP_PAYLOAD_ALLOCATE_TIME_SLOT_COUNT,
+ &req_slot_count,
+ 1);
+
+ /// Poll till DPCD 2C0 read 1
+ /// Try for at least 150ms (30 retries, with 5ms delay after each attempt)
+
+ while (retries < max_retries) {
+ if (core_link_read_dpcd(
+ link,
+ DP_PAYLOAD_TABLE_UPDATE_STATUS,
+ &update_status.raw,
+ 1) == DC_OK) {
+ if (update_status.bits.VC_PAYLOAD_TABLE_UPDATED == 1) {
+ DC_LOG_DP2("SST Update Payload: downstream payload table updated.");
+ result = true;
+ break;
+ }
+ } else {
+ union dpcd_rev dpcdRev;
+
+ if (core_link_read_dpcd(
+ link,
+ DP_DPCD_REV,
+ &dpcdRev.raw,
+ 1) != DC_OK) {
+ DC_LOG_ERROR("SST Update Payload: Unable to read DPCD revision "
+ "of sink while polling payload table "
+ "updated status bit.");
+ break;
+ }
+ }
+ retries++;
+ fsleep(5000);
+ }
+
+ if (!result && retries == max_retries) {
+ DC_LOG_ERROR("SST Update Payload: Payload table not updated after retries, "
+ "continue on. Something is wrong with the branch.");
+ // TODO - DP2.0 Payload: Read and log the payload table from downstream branch
+ }
+
+ return result;
+}
+
+/*
+ * Payload allocation/deallocation for SST introduced in DP2.0
+ */
+static enum dc_status update_sst_payload(struct pipe_ctx *pipe_ctx,
+ bool allocate)
+{
+ struct dc_stream_state *stream = pipe_ctx->stream;
+ struct dc_link *link = stream->link;
+ struct link_mst_stream_allocation_table proposed_table = {0};
+ struct fixed31_32 avg_time_slots_per_mtp;
+ const struct dc_link_settings empty_link_settings = {0};
+ const struct link_hwss *link_hwss = get_link_hwss(link, &pipe_ctx->link_res);
+ DC_LOGGER_INIT(link->ctx->logger);
+
+ /* slot X.Y for SST payload deallocate */
+ if (!allocate) {
+ avg_time_slots_per_mtp = dc_fixpt_from_int(0);
+
+ log_vcp_x_y(link, avg_time_slots_per_mtp);
+
+ if (link_hwss->ext.set_throttled_vcp_size)
+ link_hwss->ext.set_throttled_vcp_size(pipe_ctx,
+ avg_time_slots_per_mtp);
+ if (link_hwss->ext.set_hblank_min_symbol_width)
+ link_hwss->ext.set_hblank_min_symbol_width(pipe_ctx,
+ &empty_link_settings,
+ avg_time_slots_per_mtp);
+ }
+
+ /* calculate VC payload and update branch with new payload allocation table*/
+ if (!write_128b_132b_sst_payload_allocation_table(
+ stream,
+ link,
+ &proposed_table,
+ allocate)) {
+ DC_LOG_ERROR("SST Update Payload: Failed to update "
+ "allocation table for "
+ "pipe idx: %d\n",
+ pipe_ctx->pipe_idx);
+ return DC_FAIL_DP_PAYLOAD_ALLOCATION;
+ }
+
+ proposed_table.stream_allocations[0].hpo_dp_stream_enc = pipe_ctx->stream_res.hpo_dp_stream_enc;
+
+ ASSERT(proposed_table.stream_count == 1);
+
+ //TODO - DP2.0 Logging: Instead of hpo_dp_stream_enc pointer, log instance id
+ DC_LOG_DP2("SST Update Payload: hpo_dp_stream_enc: %p "
+ "vcp_id: %d "
+ "slot_count: %d\n",
+ (void *) proposed_table.stream_allocations[0].hpo_dp_stream_enc,
+ proposed_table.stream_allocations[0].vcp_id,
+ proposed_table.stream_allocations[0].slot_count);
+
+ /* program DP source TX for payload */
+ link_hwss->ext.update_stream_allocation_table(link, &pipe_ctx->link_res,
+ &proposed_table);
+
+ /* poll for ACT handled */
+ if (!poll_for_allocation_change_trigger(link)) {
+ // Failures will result in blackscreen and errors logged
+ BREAK_TO_DEBUGGER();
+ }
+
+ /* slot X.Y for SST payload allocate */
+ if (allocate && link_dp_get_encoding_format(&link->cur_link_settings) ==
+ DP_128b_132b_ENCODING) {
+ avg_time_slots_per_mtp = link_calculate_sst_avg_time_slots_per_mtp(stream, link);
+
+ log_vcp_x_y(link, avg_time_slots_per_mtp);
+
+ if (link_hwss->ext.set_throttled_vcp_size)
+ link_hwss->ext.set_throttled_vcp_size(pipe_ctx,
+ avg_time_slots_per_mtp);
+ if (link_hwss->ext.set_hblank_min_symbol_width)
+ link_hwss->ext.set_hblank_min_symbol_width(pipe_ctx,
+ &link->cur_link_settings,
+ avg_time_slots_per_mtp);
+ }
+
+ /* Always return DC_OK.
+ * If part of sequence fails, log failure(s) and show blackscreen
+ */
+ return DC_OK;
+}
+
+enum dc_status link_reduce_mst_payload(struct pipe_ctx *pipe_ctx, uint32_t bw_in_kbps)
+{
+ struct dc_stream_state *stream = pipe_ctx->stream;
+ struct dc_link *link = stream->link;
+ struct fixed31_32 avg_time_slots_per_mtp;
+ struct fixed31_32 pbn;
+ struct fixed31_32 pbn_per_slot;
+ struct dc_dp_mst_stream_allocation_table proposed_table = {0};
+ uint8_t i;
+ const struct link_hwss *link_hwss = get_link_hwss(link, &pipe_ctx->link_res);
+ DC_LOGGER_INIT(link->ctx->logger);
+
+ /* decrease throttled vcp size */
+ pbn_per_slot = get_pbn_per_slot(stream);
+ pbn = get_pbn_from_bw_in_kbps(bw_in_kbps);
+ avg_time_slots_per_mtp = dc_fixpt_div(pbn, pbn_per_slot);
+
+ if (link_hwss->ext.set_throttled_vcp_size)
+ link_hwss->ext.set_throttled_vcp_size(pipe_ctx, avg_time_slots_per_mtp);
+ if (link_hwss->ext.set_hblank_min_symbol_width)
+ link_hwss->ext.set_hblank_min_symbol_width(pipe_ctx,
+ &link->cur_link_settings,
+ avg_time_slots_per_mtp);
+
+ /* send ALLOCATE_PAYLOAD sideband message with updated pbn */
+ dm_helpers_dp_mst_send_payload_allocation(
+ stream->ctx,
+ stream,
+ true);
+
+ /* notify immediate branch device table update */
+ if (dm_helpers_dp_mst_write_payload_allocation_table(
+ stream->ctx,
+ stream,
+ &proposed_table,
+ true)) {
+ /* update mst stream allocation table software state */
+ update_mst_stream_alloc_table(
+ link,
+ pipe_ctx->stream_res.stream_enc,
+ pipe_ctx->stream_res.hpo_dp_stream_enc,
+ &proposed_table);
+ } else {
+ DC_LOG_WARNING("Failed to update"
+ "MST allocation table for"
+ "pipe idx:%d\n",
+ pipe_ctx->pipe_idx);
+ }
+
+ DC_LOG_MST("%s "
+ "stream_count: %d: \n ",
+ __func__,
+ link->mst_stream_alloc_table.stream_count);
+
+ for (i = 0; i < MAX_CONTROLLER_NUM; i++) {
+ DC_LOG_MST("stream_enc[%d]: %p "
+ "stream[%d].hpo_dp_stream_enc: %p "
+ "stream[%d].vcp_id: %d "
+ "stream[%d].slot_count: %d\n",
+ i,
+ (void *) link->mst_stream_alloc_table.stream_allocations[i].stream_enc,
+ i,
+ (void *) link->mst_stream_alloc_table.stream_allocations[i].hpo_dp_stream_enc,
+ i,
+ link->mst_stream_alloc_table.stream_allocations[i].vcp_id,
+ i,
+ link->mst_stream_alloc_table.stream_allocations[i].slot_count);
+ }
+
+ ASSERT(proposed_table.stream_count > 0);
+
+ /* update mst stream allocation table hardware state */
+ if (link_hwss->ext.update_stream_allocation_table == NULL ||
+ link_dp_get_encoding_format(&link->cur_link_settings) == DP_UNKNOWN_ENCODING) {
+ DC_LOG_ERROR("Failure: unknown encoding format\n");
+ return DC_ERROR_UNEXPECTED;
+ }
+
+ link_hwss->ext.update_stream_allocation_table(link, &pipe_ctx->link_res,
+ &link->mst_stream_alloc_table);
+
+ /* poll for immediate branch device ACT handled */
+ dm_helpers_dp_mst_poll_for_allocation_change_trigger(
+ stream->ctx,
+ stream);
+
+ return DC_OK;
+}
+
+enum dc_status link_increase_mst_payload(struct pipe_ctx *pipe_ctx, uint32_t bw_in_kbps)
+{
+ struct dc_stream_state *stream = pipe_ctx->stream;
+ struct dc_link *link = stream->link;
+ struct fixed31_32 avg_time_slots_per_mtp;
+ struct fixed31_32 pbn;
+ struct fixed31_32 pbn_per_slot;
+ struct dc_dp_mst_stream_allocation_table proposed_table = {0};
+ uint8_t i;
+ enum act_return_status ret;
+ const struct link_hwss *link_hwss = get_link_hwss(link, &pipe_ctx->link_res);
+ DC_LOGGER_INIT(link->ctx->logger);
+
+ /* notify immediate branch device table update */
+ if (dm_helpers_dp_mst_write_payload_allocation_table(
+ stream->ctx,
+ stream,
+ &proposed_table,
+ true)) {
+ /* update mst stream allocation table software state */
+ update_mst_stream_alloc_table(
+ link,
+ pipe_ctx->stream_res.stream_enc,
+ pipe_ctx->stream_res.hpo_dp_stream_enc,
+ &proposed_table);
+ }
+
+ DC_LOG_MST("%s "
+ "stream_count: %d: \n ",
+ __func__,
+ link->mst_stream_alloc_table.stream_count);
+
+ for (i = 0; i < MAX_CONTROLLER_NUM; i++) {
+ DC_LOG_MST("stream_enc[%d]: %p "
+ "stream[%d].hpo_dp_stream_enc: %p "
+ "stream[%d].vcp_id: %d "
+ "stream[%d].slot_count: %d\n",
+ i,
+ (void *) link->mst_stream_alloc_table.stream_allocations[i].stream_enc,
+ i,
+ (void *) link->mst_stream_alloc_table.stream_allocations[i].hpo_dp_stream_enc,
+ i,
+ link->mst_stream_alloc_table.stream_allocations[i].vcp_id,
+ i,
+ link->mst_stream_alloc_table.stream_allocations[i].slot_count);
+ }
+
+ ASSERT(proposed_table.stream_count > 0);
+
+ /* update mst stream allocation table hardware state */
+ if (link_hwss->ext.update_stream_allocation_table == NULL ||
+ link_dp_get_encoding_format(&link->cur_link_settings) == DP_UNKNOWN_ENCODING) {
+ DC_LOG_ERROR("Failure: unknown encoding format\n");
+ return DC_ERROR_UNEXPECTED;
+ }
+
+ link_hwss->ext.update_stream_allocation_table(link, &pipe_ctx->link_res,
+ &link->mst_stream_alloc_table);
+
+ /* poll for immediate branch device ACT handled */
+ ret = dm_helpers_dp_mst_poll_for_allocation_change_trigger(
+ stream->ctx,
+ stream);
+
+ if (ret != ACT_LINK_LOST) {
+ /* send ALLOCATE_PAYLOAD sideband message with updated pbn */
+ dm_helpers_dp_mst_send_payload_allocation(
+ stream->ctx,
+ stream,
+ true);
+ }
+
+ /* increase throttled vcp size */
+ pbn = get_pbn_from_bw_in_kbps(bw_in_kbps);
+ pbn_per_slot = get_pbn_per_slot(stream);
+ avg_time_slots_per_mtp = dc_fixpt_div(pbn, pbn_per_slot);
+
+ if (link_hwss->ext.set_throttled_vcp_size)
+ link_hwss->ext.set_throttled_vcp_size(pipe_ctx, avg_time_slots_per_mtp);
+ if (link_hwss->ext.set_hblank_min_symbol_width)
+ link_hwss->ext.set_hblank_min_symbol_width(pipe_ctx,
+ &link->cur_link_settings,
+ avg_time_slots_per_mtp);
+
+ return DC_OK;
+}
+
+static void disable_link_dp(struct dc_link *link,
+ const struct link_resource *link_res,
+ enum signal_type signal)
+{
+ struct dc_link_settings link_settings = link->cur_link_settings;
+
+ if (signal == SIGNAL_TYPE_DISPLAY_PORT_MST &&
+ link->mst_stream_alloc_table.stream_count > 0)
+ /* disable MST link only when last vc payload is deallocated */
+ return;
+
+ dp_disable_link_phy(link, link_res, signal);
+
+ if (link->connector_signal == SIGNAL_TYPE_EDP) {
+ if (!link->dc->config.edp_no_power_sequencing)
+ link->dc->hwss.edp_power_control(link, false);
+ }
+
+ if (signal == SIGNAL_TYPE_DISPLAY_PORT_MST)
+ /* set the sink to SST mode after disabling the link */
+ enable_mst_on_sink(link, false);
+
+ if (link_dp_get_encoding_format(&link_settings) ==
+ DP_8b_10b_ENCODING) {
+ dp_set_fec_enable(link, false);
+ dp_set_fec_ready(link, link_res, false);
+ }
+}
+
+static void disable_link(struct dc_link *link,
+ const struct link_resource *link_res,
+ enum signal_type signal)
+{
+ if (dc_is_dp_signal(signal)) {
+ disable_link_dp(link, link_res, signal);
+ } else if (signal != SIGNAL_TYPE_VIRTUAL) {
+ link->dc->hwss.disable_link_output(link, link_res, signal);
+ }
+
+ if (signal == SIGNAL_TYPE_DISPLAY_PORT_MST) {
+ /* MST disable link only when no stream use the link */
+ if (link->mst_stream_alloc_table.stream_count <= 0)
+ link->link_status.link_active = false;
+ } else {
+ link->link_status.link_active = false;
+ }
+}
+
+static void enable_link_hdmi(struct pipe_ctx *pipe_ctx)
+{
+ struct dc_stream_state *stream = pipe_ctx->stream;
+ struct dc_link *link = stream->link;
+ enum dc_color_depth display_color_depth;
+ enum engine_id eng_id;
+ struct ext_hdmi_settings settings = {0};
+ bool is_over_340mhz = false;
+ bool is_vga_mode = (stream->timing.h_addressable == 640)
+ && (stream->timing.v_addressable == 480);
+ struct dc *dc = pipe_ctx->stream->ctx->dc;
+
+ if (stream->phy_pix_clk == 0)
+ stream->phy_pix_clk = stream->timing.pix_clk_100hz / 10;
+ if (stream->phy_pix_clk > 340000)
+ is_over_340mhz = true;
+
+ if (dc_is_hdmi_signal(pipe_ctx->stream->signal)) {
+ unsigned short masked_chip_caps = pipe_ctx->stream->link->chip_caps &
+ EXT_DISPLAY_PATH_CAPS__EXT_CHIP_MASK;
+ if (masked_chip_caps == EXT_DISPLAY_PATH_CAPS__HDMI20_TISN65DP159RSBT) {
+ /* DP159, Retimer settings */
+ eng_id = pipe_ctx->stream_res.stream_enc->id;
+
+ if (get_ext_hdmi_settings(pipe_ctx, eng_id, &settings)) {
+ write_i2c_retimer_setting(pipe_ctx,
+ is_vga_mode, is_over_340mhz, &settings);
+ } else {
+ write_i2c_default_retimer_setting(pipe_ctx,
+ is_vga_mode, is_over_340mhz);
+ }
+ } else if (masked_chip_caps == EXT_DISPLAY_PATH_CAPS__HDMI20_PI3EQX1204) {
+ /* PI3EQX1204, Redriver settings */
+ write_i2c_redriver_setting(pipe_ctx, is_over_340mhz);
+ }
+ }
+
+ if (dc_is_hdmi_signal(pipe_ctx->stream->signal))
+ write_scdc_data(
+ stream->link->ddc,
+ stream->phy_pix_clk,
+ stream->timing.flags.LTE_340MCSC_SCRAMBLE);
+
+ memset(&stream->link->cur_link_settings, 0,
+ sizeof(struct dc_link_settings));
+
+ display_color_depth = stream->timing.display_color_depth;
+ if (stream->timing.pixel_encoding == PIXEL_ENCODING_YCBCR422)
+ display_color_depth = COLOR_DEPTH_888;
+
+ dc->hwss.enable_tmds_link_output(
+ link,
+ &pipe_ctx->link_res,
+ pipe_ctx->stream->signal,
+ pipe_ctx->clock_source->id,
+ display_color_depth,
+ stream->phy_pix_clk);
+
+ if (dc_is_hdmi_signal(pipe_ctx->stream->signal))
+ read_scdc_data(link->ddc);
+}
+
+static enum dc_status enable_link_dp(struct dc_state *state,
+ struct pipe_ctx *pipe_ctx)
+{
+ struct dc_stream_state *stream = pipe_ctx->stream;
+ enum dc_status status;
+ bool skip_video_pattern;
+ struct dc_link *link = stream->link;
+ const struct dc_link_settings *link_settings =
+ &pipe_ctx->link_config.dp_link_settings;
+ bool fec_enable;
+ int i;
+ bool apply_seamless_boot_optimization = false;
+ uint32_t bl_oled_enable_delay = 50; // in ms
+ uint32_t post_oui_delay = 30; // 30ms
+ /* Reduce link bandwidth between failed link training attempts. */
+ bool do_fallback = false;
+ int lt_attempts = LINK_TRAINING_ATTEMPTS;
+
+ // Increase retry count if attempting DP1.x on FIXED_VS link
+ if ((link->chip_caps & EXT_DISPLAY_PATH_CAPS__DP_FIXED_VS_EN) &&
+ link_dp_get_encoding_format(link_settings) == DP_8b_10b_ENCODING)
+ lt_attempts = 10;
+
+ // check for seamless boot
+ for (i = 0; i < state->stream_count; i++) {
+ if (state->streams[i]->apply_seamless_boot_optimization) {
+ apply_seamless_boot_optimization = true;
+ break;
+ }
+ }
+
+ /*
+ * If the link is DP-over-USB4 do the following:
+ * - Train with fallback when enabling DPIA link. Conventional links are
+ * trained with fallback during sink detection.
+ * - Allocate only what the stream needs for bw in Gbps. Inform the CM
+ * in case stream needs more or less bw from what has been allocated
+ * earlier at plug time.
+ */
+ if (link->ep_type == DISPLAY_ENDPOINT_USB4_DPIA) {
+ do_fallback = true;
+ }
+
+ /*
+ * Temporary w/a to get DP2.0 link rates to work with SST.
+ * TODO DP2.0 - Workaround: Remove w/a if and when the issue is resolved.
+ */
+ if (link_dp_get_encoding_format(link_settings) == DP_128b_132b_ENCODING &&
+ pipe_ctx->stream->signal == SIGNAL_TYPE_DISPLAY_PORT &&
+ link->dc->debug.set_mst_en_for_sst) {
+ enable_mst_on_sink(link, true);
+ }
+ if (pipe_ctx->stream->signal == SIGNAL_TYPE_EDP) {
+ /*in case it is not on*/
+ if (!link->dc->config.edp_no_power_sequencing)
+ link->dc->hwss.edp_power_control(link, true);
+ link->dc->hwss.edp_wait_for_hpd_ready(link, true);
+ }
+
+ if (link_dp_get_encoding_format(link_settings) == DP_128b_132b_ENCODING) {
+ /* TODO - DP2.0 HW: calculate 32 symbol clock for HPO encoder */
+ } else {
+ pipe_ctx->stream_res.pix_clk_params.requested_sym_clk =
+ link_settings->link_rate * LINK_RATE_REF_FREQ_IN_KHZ;
+ if (state->clk_mgr && !apply_seamless_boot_optimization)
+ state->clk_mgr->funcs->update_clocks(state->clk_mgr,
+ state, false);
+ }
+
+ // during mode switch we do DP_SET_POWER off then on, and OUI is lost
+ dpcd_set_source_specific_data(link);
+ if (link->dpcd_sink_ext_caps.raw != 0) {
+ post_oui_delay += link->panel_config.pps.extra_post_OUI_ms;
+ msleep(post_oui_delay);
+ }
+
+ // similarly, mode switch can cause loss of cable ID
+ dpcd_write_cable_id_to_dprx(link);
+
+ skip_video_pattern = true;
+
+ if (link_settings->link_rate == LINK_RATE_LOW)
+ skip_video_pattern = false;
+
+ if (perform_link_training_with_retries(link_settings,
+ skip_video_pattern,
+ lt_attempts,
+ pipe_ctx,
+ pipe_ctx->stream->signal,
+ do_fallback)) {
+ status = DC_OK;
+ } else {
+ status = DC_FAIL_DP_LINK_TRAINING;
+ }
+
+ if (link->preferred_training_settings.fec_enable)
+ fec_enable = *link->preferred_training_settings.fec_enable;
+ else
+ fec_enable = true;
+
+ if (link_dp_get_encoding_format(link_settings) == DP_8b_10b_ENCODING)
+ dp_set_fec_enable(link, fec_enable);
+
+ // during mode set we do DP_SET_POWER off then on, aux writes are lost
+ if (link->dpcd_sink_ext_caps.bits.oled == 1 ||
+ link->dpcd_sink_ext_caps.bits.sdr_aux_backlight_control == 1 ||
+ link->dpcd_sink_ext_caps.bits.hdr_aux_backlight_control == 1) {
+ set_default_brightness_aux(link); // TODO: use cached if known
+ if (link->dpcd_sink_ext_caps.bits.oled == 1)
+ msleep(bl_oled_enable_delay);
+ edp_backlight_enable_aux(link, true);
+ }
+
+ return status;
+}
+
+static enum dc_status enable_link_edp(
+ struct dc_state *state,
+ struct pipe_ctx *pipe_ctx)
+{
+ return enable_link_dp(state, pipe_ctx);
+}
+
+static void enable_link_lvds(struct pipe_ctx *pipe_ctx)
+{
+ struct dc_stream_state *stream = pipe_ctx->stream;
+ struct dc_link *link = stream->link;
+ struct dc *dc = stream->ctx->dc;
+
+ if (stream->phy_pix_clk == 0)
+ stream->phy_pix_clk = stream->timing.pix_clk_100hz / 10;
+
+ memset(&stream->link->cur_link_settings, 0,
+ sizeof(struct dc_link_settings));
+ dc->hwss.enable_lvds_link_output(
+ link,
+ &pipe_ctx->link_res,
+ pipe_ctx->clock_source->id,
+ stream->phy_pix_clk);
+
+}
+
+static enum dc_status enable_link_dp_mst(
+ struct dc_state *state,
+ struct pipe_ctx *pipe_ctx)
+{
+ struct dc_link *link = pipe_ctx->stream->link;
+ unsigned char mstm_cntl;
+
+ /* sink signal type after MST branch is MST. Multiple MST sinks
+ * share one link. Link DP PHY is enable or training only once.
+ */
+ if (link->link_status.link_active)
+ return DC_OK;
+
+ /* clear payload table */
+ core_link_read_dpcd(link, DP_MSTM_CTRL, &mstm_cntl, 1);
+ if (mstm_cntl & DP_MST_EN)
+ dm_helpers_dp_mst_clear_payload_allocation_table(link->ctx, link);
+
+ /* to make sure the pending down rep can be processed
+ * before enabling the link
+ */
+ dm_helpers_dp_mst_poll_pending_down_reply(link->ctx, link);
+
+ /* set the sink to MST mode before enabling the link */
+ enable_mst_on_sink(link, true);
+
+ return enable_link_dp(state, pipe_ctx);
+}
+
+static enum dc_status enable_link(
+ struct dc_state *state,
+ struct pipe_ctx *pipe_ctx)
+{
+ enum dc_status status = DC_ERROR_UNEXPECTED;
+ struct dc_stream_state *stream = pipe_ctx->stream;
+ struct dc_link *link = stream->link;
+
+ /* There's some scenarios where driver is unloaded with display
+ * still enabled. When driver is reloaded, it may cause a display
+ * to not light up if there is a mismatch between old and new
+ * link settings. Need to call disable first before enabling at
+ * new link settings.
+ */
+ if (link->link_status.link_active) {
+ disable_link(link, &pipe_ctx->link_res, pipe_ctx->stream->signal);
+ }
+
+ switch (pipe_ctx->stream->signal) {
+ case SIGNAL_TYPE_DISPLAY_PORT:
+ status = enable_link_dp(state, pipe_ctx);
+ break;
+ case SIGNAL_TYPE_EDP:
+ status = enable_link_edp(state, pipe_ctx);
+ break;
+ case SIGNAL_TYPE_DISPLAY_PORT_MST:
+ status = enable_link_dp_mst(state, pipe_ctx);
+ msleep(200);
+ break;
+ case SIGNAL_TYPE_DVI_SINGLE_LINK:
+ case SIGNAL_TYPE_DVI_DUAL_LINK:
+ case SIGNAL_TYPE_HDMI_TYPE_A:
+ enable_link_hdmi(pipe_ctx);
+ status = DC_OK;
+ break;
+ case SIGNAL_TYPE_LVDS:
+ enable_link_lvds(pipe_ctx);
+ status = DC_OK;
+ break;
+ case SIGNAL_TYPE_VIRTUAL:
+ status = DC_OK;
+ break;
+ default:
+ break;
+ }
+
+ if (status == DC_OK) {
+ pipe_ctx->stream->link->link_status.link_active = true;
+ }
+
+ return status;
+}
+
+void link_set_dpms_off(struct pipe_ctx *pipe_ctx)
+{
+ struct dc *dc = pipe_ctx->stream->ctx->dc;
+ struct dc_stream_state *stream = pipe_ctx->stream;
+ struct dc_link *link = stream->sink->link;
+ struct vpg *vpg = pipe_ctx->stream_res.stream_enc->vpg;
+
+ ASSERT(is_master_pipe_for_link(link, pipe_ctx));
+
+ if (dp_is_128b_132b_signal(pipe_ctx))
+ vpg = pipe_ctx->stream_res.hpo_dp_stream_enc->vpg;
+
+ DC_LOGGER_INIT(pipe_ctx->stream->ctx->logger);
+
+ if (pipe_ctx->stream->sink) {
+ if (pipe_ctx->stream->sink->sink_signal != SIGNAL_TYPE_VIRTUAL &&
+ pipe_ctx->stream->sink->sink_signal != SIGNAL_TYPE_NONE) {
+ DC_LOG_DC("%s pipe_ctx dispname=%s signal=%x\n", __func__,
+ pipe_ctx->stream->sink->edid_caps.display_name,
+ pipe_ctx->stream->signal);
+ }
+ }
+
+ if (!IS_DIAG_DC(dc->ctx->dce_environment) &&
+ dc_is_virtual_signal(pipe_ctx->stream->signal))
+ return;
+
+ if (!pipe_ctx->stream->sink->edid_caps.panel_patch.skip_avmute) {
+ if (dc_is_hdmi_signal(pipe_ctx->stream->signal))
+ set_avmute(pipe_ctx, true);
+ }
+
+ dc->hwss.disable_audio_stream(pipe_ctx);
+
+ update_psp_stream_config(pipe_ctx, true);
+ dc->hwss.blank_stream(pipe_ctx);
+
+ if (pipe_ctx->stream->signal == SIGNAL_TYPE_DISPLAY_PORT_MST)
+ deallocate_mst_payload(pipe_ctx);
+ else if (pipe_ctx->stream->signal == SIGNAL_TYPE_DISPLAY_PORT &&
+ dp_is_128b_132b_signal(pipe_ctx))
+ update_sst_payload(pipe_ctx, false);
+
+ if (dc_is_hdmi_signal(pipe_ctx->stream->signal)) {
+ struct ext_hdmi_settings settings = {0};
+ enum engine_id eng_id = pipe_ctx->stream_res.stream_enc->id;
+
+ unsigned short masked_chip_caps = link->chip_caps &
+ EXT_DISPLAY_PATH_CAPS__EXT_CHIP_MASK;
+ //Need to inform that sink is going to use legacy HDMI mode.
+ write_scdc_data(
+ link->ddc,
+ 165000,//vbios only handles 165Mhz.
+ false);
+ if (masked_chip_caps == EXT_DISPLAY_PATH_CAPS__HDMI20_TISN65DP159RSBT) {
+ /* DP159, Retimer settings */
+ if (get_ext_hdmi_settings(pipe_ctx, eng_id, &settings))
+ write_i2c_retimer_setting(pipe_ctx,
+ false, false, &settings);
+ else
+ write_i2c_default_retimer_setting(pipe_ctx,
+ false, false);
+ } else if (masked_chip_caps == EXT_DISPLAY_PATH_CAPS__HDMI20_PI3EQX1204) {
+ /* PI3EQX1204, Redriver settings */
+ write_i2c_redriver_setting(pipe_ctx, false);
+ }
+ }
+
+ if (pipe_ctx->stream->signal == SIGNAL_TYPE_DISPLAY_PORT &&
+ !dp_is_128b_132b_signal(pipe_ctx)) {
+
+ /* In DP1.x SST mode, our encoder will go to TPS1
+ * when link is on but stream is off.
+ * Disabling link before stream will avoid exposing TPS1 pattern
+ * during the disable sequence as it will confuse some receivers
+ * state machine.
+ * In DP2 or MST mode, our encoder will stay video active
+ */
+ disable_link(pipe_ctx->stream->link, &pipe_ctx->link_res, pipe_ctx->stream->signal);
+ dc->hwss.disable_stream(pipe_ctx);
+ } else {
+ dc->hwss.disable_stream(pipe_ctx);
+ disable_link(pipe_ctx->stream->link, &pipe_ctx->link_res, pipe_ctx->stream->signal);
+ }
+
+ if (pipe_ctx->stream->timing.flags.DSC) {
+ if (dc_is_dp_signal(pipe_ctx->stream->signal))
+ link_set_dsc_enable(pipe_ctx, false);
+ }
+ if (dp_is_128b_132b_signal(pipe_ctx)) {
+ if (pipe_ctx->stream_res.tg->funcs->set_out_mux)
+ pipe_ctx->stream_res.tg->funcs->set_out_mux(pipe_ctx->stream_res.tg, OUT_MUX_DIO);
+ }
+
+ if (vpg && vpg->funcs->vpg_powerdown)
+ vpg->funcs->vpg_powerdown(vpg);
+}
+
+void link_set_dpms_on(
+ struct dc_state *state,
+ struct pipe_ctx *pipe_ctx)
+{
+ struct dc *dc = pipe_ctx->stream->ctx->dc;
+ struct dc_stream_state *stream = pipe_ctx->stream;
+ struct dc_link *link = stream->sink->link;
+ enum dc_status status;
+ struct link_encoder *link_enc;
+ enum otg_out_mux_dest otg_out_dest = OUT_MUX_DIO;
+ struct vpg *vpg = pipe_ctx->stream_res.stream_enc->vpg;
+ const struct link_hwss *link_hwss = get_link_hwss(link, &pipe_ctx->link_res);
+
+ ASSERT(is_master_pipe_for_link(link, pipe_ctx));
+
+ if (dp_is_128b_132b_signal(pipe_ctx))
+ vpg = pipe_ctx->stream_res.hpo_dp_stream_enc->vpg;
+
+ DC_LOGGER_INIT(pipe_ctx->stream->ctx->logger);
+
+ if (pipe_ctx->stream->sink) {
+ if (pipe_ctx->stream->sink->sink_signal != SIGNAL_TYPE_VIRTUAL &&
+ pipe_ctx->stream->sink->sink_signal != SIGNAL_TYPE_NONE) {
+ DC_LOG_DC("%s pipe_ctx dispname=%s signal=%x\n", __func__,
+ pipe_ctx->stream->sink->edid_caps.display_name,
+ pipe_ctx->stream->signal);
+ }
+ }
+
+ if (!IS_DIAG_DC(dc->ctx->dce_environment) &&
+ dc_is_virtual_signal(pipe_ctx->stream->signal))
+ return;
+
+ link_enc = link_enc_cfg_get_link_enc(link);
+ ASSERT(link_enc);
+
+ if (!dc_is_virtual_signal(pipe_ctx->stream->signal)
+ && !dp_is_128b_132b_signal(pipe_ctx)) {
+ if (link_enc)
+ link_enc->funcs->setup(
+ link_enc,
+ pipe_ctx->stream->signal);
+ }
+
+ pipe_ctx->stream->link->link_state_valid = true;
+
+ if (pipe_ctx->stream_res.tg->funcs->set_out_mux) {
+ if (dp_is_128b_132b_signal(pipe_ctx))
+ otg_out_dest = OUT_MUX_HPO_DP;
+ else
+ otg_out_dest = OUT_MUX_DIO;
+ pipe_ctx->stream_res.tg->funcs->set_out_mux(pipe_ctx->stream_res.tg, otg_out_dest);
+ }
+
+ link_hwss->setup_stream_attribute(pipe_ctx);
+
+ if (!IS_FPGA_MAXIMUS_DC(dc->ctx->dce_environment)) {
+ bool apply_edp_fast_boot_optimization =
+ pipe_ctx->stream->apply_edp_fast_boot_optimization;
+
+ pipe_ctx->stream->apply_edp_fast_boot_optimization = false;
+
+ // Enable VPG before building infoframe
+ if (vpg && vpg->funcs->vpg_poweron)
+ vpg->funcs->vpg_poweron(vpg);
+
+ resource_build_info_frame(pipe_ctx);
+ dc->hwss.update_info_frame(pipe_ctx);
+
+ if (dc_is_dp_signal(pipe_ctx->stream->signal))
+ dp_trace_source_sequence(link, DPCD_SOURCE_SEQ_AFTER_UPDATE_INFO_FRAME);
+
+ /* Do not touch link on seamless boot optimization. */
+ if (pipe_ctx->stream->apply_seamless_boot_optimization) {
+ pipe_ctx->stream->dpms_off = false;
+
+ /* Still enable stream features & audio on seamless boot for DP external displays */
+ if (pipe_ctx->stream->signal == SIGNAL_TYPE_DISPLAY_PORT) {
+ enable_stream_features(pipe_ctx);
+ dc->hwss.enable_audio_stream(pipe_ctx);
+ }
+
+ update_psp_stream_config(pipe_ctx, false);
+ return;
+ }
+
+ /* eDP lit up by bios already, no need to enable again. */
+ if (pipe_ctx->stream->signal == SIGNAL_TYPE_EDP &&
+ apply_edp_fast_boot_optimization &&
+ !pipe_ctx->stream->timing.flags.DSC &&
+ !pipe_ctx->next_odm_pipe) {
+ pipe_ctx->stream->dpms_off = false;
+ update_psp_stream_config(pipe_ctx, false);
+ return;
+ }
+
+ if (pipe_ctx->stream->dpms_off)
+ return;
+
+ /* Have to setup DSC before DIG FE and BE are connected (which happens before the
+ * link training). This is to make sure the bandwidth sent to DIG BE won't be
+ * bigger than what the link and/or DIG BE can handle. VBID[6]/CompressedStream_flag
+ * will be automatically set at a later time when the video is enabled
+ * (DP_VID_STREAM_EN = 1).
+ */
+ if (pipe_ctx->stream->timing.flags.DSC) {
+ if (dc_is_dp_signal(pipe_ctx->stream->signal) ||
+ dc_is_virtual_signal(pipe_ctx->stream->signal))
+ link_set_dsc_enable(pipe_ctx, true);
+
+ }
+
+ status = enable_link(state, pipe_ctx);
+
+ if (status != DC_OK) {
+ DC_LOG_WARNING("enabling link %u failed: %d\n",
+ pipe_ctx->stream->link->link_index,
+ status);
+
+ /* Abort stream enable *unless* the failure was due to
+ * DP link training - some DP monitors will recover and
+ * show the stream anyway. But MST displays can't proceed
+ * without link training.
+ */
+ if (status != DC_FAIL_DP_LINK_TRAINING ||
+ pipe_ctx->stream->signal == SIGNAL_TYPE_DISPLAY_PORT_MST) {
+ if (false == stream->link->link_status.link_active)
+ disable_link(stream->link, &pipe_ctx->link_res,
+ pipe_ctx->stream->signal);
+ BREAK_TO_DEBUGGER();
+ return;
+ }
+ }
+
+ /* turn off otg test pattern if enable */
+ if (pipe_ctx->stream_res.tg->funcs->set_test_pattern)
+ pipe_ctx->stream_res.tg->funcs->set_test_pattern(pipe_ctx->stream_res.tg,
+ CONTROLLER_DP_TEST_PATTERN_VIDEOMODE,
+ COLOR_DEPTH_UNDEFINED);
+
+ /* This second call is needed to reconfigure the DIG
+ * as a workaround for the incorrect value being applied
+ * from transmitter control.
+ */
+ if (!(dc_is_virtual_signal(pipe_ctx->stream->signal) ||
+ dp_is_128b_132b_signal(pipe_ctx))) {
+ if (link_enc)
+ link_enc->funcs->setup(
+ link_enc,
+ pipe_ctx->stream->signal);
+ }
+
+ dc->hwss.enable_stream(pipe_ctx);
+
+ /* Set DPS PPS SDP (AKA "info frames") */
+ if (pipe_ctx->stream->timing.flags.DSC) {
+ if (dc_is_dp_signal(pipe_ctx->stream->signal) ||
+ dc_is_virtual_signal(pipe_ctx->stream->signal)) {
+ dp_set_dsc_on_rx(pipe_ctx, true);
+ link_set_dsc_pps_packet(pipe_ctx, true, true);
+ }
+ }
+
+ if (pipe_ctx->stream->signal == SIGNAL_TYPE_DISPLAY_PORT_MST)
+ allocate_mst_payload(pipe_ctx);
+ else if (pipe_ctx->stream->signal == SIGNAL_TYPE_DISPLAY_PORT &&
+ dp_is_128b_132b_signal(pipe_ctx))
+ update_sst_payload(pipe_ctx, true);
+
+ dc->hwss.unblank_stream(pipe_ctx,
+ &pipe_ctx->stream->link->cur_link_settings);
+
+ if (stream->sink_patches.delay_ignore_msa > 0)
+ msleep(stream->sink_patches.delay_ignore_msa);
+
+ if (dc_is_dp_signal(pipe_ctx->stream->signal))
+ enable_stream_features(pipe_ctx);
+ update_psp_stream_config(pipe_ctx, false);
+
+ dc->hwss.enable_audio_stream(pipe_ctx);
+
+ } else { // if (IS_FPGA_MAXIMUS_DC(dc->ctx->dce_environment))
+ if (dp_is_128b_132b_signal(pipe_ctx))
+ dp_fpga_hpo_enable_link_and_stream(state, pipe_ctx);
+ if (dc_is_dp_signal(pipe_ctx->stream->signal) ||
+ dc_is_virtual_signal(pipe_ctx->stream->signal))
+ link_set_dsc_enable(pipe_ctx, true);
+ }
+
+ if (dc_is_hdmi_signal(pipe_ctx->stream->signal)) {
+ set_avmute(pipe_ctx, false);
+ }
+}
diff --git a/drivers/gpu/drm/amd/display/dc/link/link_dpms.h b/drivers/gpu/drm/amd/display/dc/link/link_dpms.h
new file mode 100644
index 000000000000..9398f9c1666a
--- /dev/null
+++ b/drivers/gpu/drm/amd/display/dc/link/link_dpms.h
@@ -0,0 +1,53 @@
+/*
+ * Copyright 2023 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ * Authors: AMD
+ *
+ */
+
+#ifndef __DC_LINK_DPMS_H__
+#define __DC_LINK_DPMS_H__
+
+#include "link.h"
+void link_set_dpms_on(
+ struct dc_state *state,
+ struct pipe_ctx *pipe_ctx);
+void link_set_dpms_off(struct pipe_ctx *pipe_ctx);
+void link_resume(struct dc_link *link);
+void link_blank_all_dp_displays(struct dc *dc);
+void link_blank_all_edp_displays(struct dc *dc);
+void link_blank_dp_stream(struct dc_link *link, bool hw_init);
+void link_set_all_streams_dpms_off_for_link(struct dc_link *link);
+void link_get_master_pipes_with_dpms_on(const struct dc_link *link,
+ struct dc_state *state,
+ uint8_t *count,
+ struct pipe_ctx *pipes[MAX_PIPES]);
+enum dc_status link_increase_mst_payload(struct pipe_ctx *pipe_ctx, uint32_t req_pbn);
+enum dc_status link_reduce_mst_payload(struct pipe_ctx *pipe_ctx, uint32_t req_pbn);
+bool link_set_dsc_pps_packet(struct pipe_ctx *pipe_ctx,
+ bool enable, bool immediate_update);
+struct fixed31_32 link_calculate_sst_avg_time_slots_per_mtp(
+ const struct dc_stream_state *stream,
+ const struct dc_link *link);
+void link_set_dsc_on_stream(struct pipe_ctx *pipe_ctx, bool enable);
+bool link_set_dsc_enable(struct pipe_ctx *pipe_ctx, bool enable);
+bool link_update_dsc_config(struct pipe_ctx *pipe_ctx);
+#endif /* __DC_LINK_DPMS_H__ */
diff --git a/drivers/gpu/drm/amd/display/dc/link/link_factory.c b/drivers/gpu/drm/amd/display/dc/link/link_factory.c
new file mode 100644
index 000000000000..1515c817f03b
--- /dev/null
+++ b/drivers/gpu/drm/amd/display/dc/link/link_factory.c
@@ -0,0 +1,836 @@
+/*
+ * Copyright 2023 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ * Authors: AMD
+ *
+ */
+
+/* FILE POLICY AND INTENDED USAGE:
+ * This file owns the creation/destruction of link structure.
+ */
+#include "link_factory.h"
+#include "link_detection.h"
+#include "link_resource.h"
+#include "link_validation.h"
+#include "link_dpms.h"
+#include "accessories/link_dp_cts.h"
+#include "accessories/link_dp_trace.h"
+#include "accessories/link_fpga.h"
+#include "protocols/link_ddc.h"
+#include "protocols/link_dp_capability.h"
+#include "protocols/link_dp_dpia_bw.h"
+#include "protocols/link_dp_dpia.h"
+#include "protocols/link_dp_irq_handler.h"
+#include "protocols/link_dp_phy.h"
+#include "protocols/link_dp_training.h"
+#include "protocols/link_edp_panel_control.h"
+#include "protocols/link_hpd.h"
+#include "gpio_service_interface.h"
+#include "atomfirmware.h"
+
+#define DC_LOGGER_INIT(logger)
+
+#define LINK_INFO(...) \
+ DC_LOG_HW_HOTPLUG( \
+ __VA_ARGS__)
+
+/* link factory owns the creation/destruction of link structures. */
+static void construct_link_service_factory(struct link_service *link_srv)
+{
+
+ link_srv->create_link = link_create;
+ link_srv->destroy_link = link_destroy;
+}
+
+/* link_detection manages link detection states and receiver states by using
+ * various link protocols. It also provides helper functions to interpret
+ * certain capabilities or status based on the states it manages or retrieve
+ * them directly from connected receivers.
+ */
+static void construct_link_service_detection(struct link_service *link_srv)
+{
+ link_srv->detect_link = link_detect;
+ link_srv->detect_connection_type = link_detect_connection_type;
+ link_srv->add_remote_sink = link_add_remote_sink;
+ link_srv->remove_remote_sink = link_remove_remote_sink;
+ link_srv->get_hpd_state = link_get_hpd_state;
+ link_srv->get_hpd_gpio = link_get_hpd_gpio;
+ link_srv->enable_hpd = link_enable_hpd;
+ link_srv->disable_hpd = link_disable_hpd;
+ link_srv->enable_hpd_filter = link_enable_hpd_filter;
+ link_srv->reset_cur_dp_mst_topology = link_reset_cur_dp_mst_topology;
+ link_srv->get_status = link_get_status;
+ link_srv->is_hdcp1x_supported = link_is_hdcp14;
+ link_srv->is_hdcp2x_supported = link_is_hdcp22;
+ link_srv->clear_dprx_states = link_clear_dprx_states;
+}
+
+/* link resource implements accessors to link resource. */
+static void construct_link_service_resource(struct link_service *link_srv)
+{
+ link_srv->get_cur_res_map = link_get_cur_res_map;
+ link_srv->restore_res_map = link_restore_res_map;
+ link_srv->get_cur_link_res = link_get_cur_link_res;
+}
+
+/* link validation owns timing validation against various link limitations. (ex.
+ * link bandwidth, receiver capability or our hardware capability) It also
+ * provides helper functions exposing bandwidth formulas used in validation.
+ */
+static void construct_link_service_validation(struct link_service *link_srv)
+{
+ link_srv->validate_mode_timing = link_validate_mode_timing;
+ link_srv->dp_link_bandwidth_kbps = dp_link_bandwidth_kbps;
+ link_srv->validate_dpia_bandwidth = link_validate_dpia_bandwidth;
+}
+
+/* link dpms owns the programming sequence of stream's dpms state associated
+ * with the link and link's enable/disable sequences as result of the stream's
+ * dpms state change.
+ */
+static void construct_link_service_dpms(struct link_service *link_srv)
+{
+ link_srv->set_dpms_on = link_set_dpms_on;
+ link_srv->set_dpms_off = link_set_dpms_off;
+ link_srv->resume = link_resume;
+ link_srv->blank_all_dp_displays = link_blank_all_dp_displays;
+ link_srv->blank_all_edp_displays = link_blank_all_edp_displays;
+ link_srv->blank_dp_stream = link_blank_dp_stream;
+ link_srv->increase_mst_payload = link_increase_mst_payload;
+ link_srv->reduce_mst_payload = link_reduce_mst_payload;
+ link_srv->set_dsc_on_stream = link_set_dsc_on_stream;
+ link_srv->set_dsc_enable = link_set_dsc_enable;
+ link_srv->update_dsc_config = link_update_dsc_config;
+}
+
+/* link ddc implements generic display communication protocols such as i2c, aux
+ * and scdc. It should not contain any specific applications of these
+ * protocols such as display capability query, detection, or handshaking such as
+ * link training.
+ */
+static void construct_link_service_ddc(struct link_service *link_srv)
+{
+ link_srv->create_ddc_service = link_create_ddc_service;
+ link_srv->destroy_ddc_service = link_destroy_ddc_service;
+ link_srv->query_ddc_data = link_query_ddc_data;
+ link_srv->aux_transfer_raw = link_aux_transfer_raw;
+ link_srv->aux_transfer_with_retries_no_mutex =
+ link_aux_transfer_with_retries_no_mutex;
+ link_srv->is_in_aux_transaction_mode = link_is_in_aux_transaction_mode;
+ link_srv->get_aux_defer_delay = link_get_aux_defer_delay;
+}
+
+/* link dp capability implements dp specific link capability retrieval sequence.
+ * It is responsible for retrieving, parsing, overriding, deciding capability
+ * obtained from dp link. Link capability consists of encoders, DPRXs, cables,
+ * retimers, usb and all other possible backend capabilities.
+ */
+static void construct_link_service_dp_capability(struct link_service *link_srv)
+{
+ link_srv->dp_is_sink_present = dp_is_sink_present;
+ link_srv->dp_is_fec_supported = dp_is_fec_supported;
+ link_srv->dp_is_128b_132b_signal = dp_is_128b_132b_signal;
+ link_srv->dp_get_max_link_enc_cap = dp_get_max_link_enc_cap;
+ link_srv->dp_get_verified_link_cap = dp_get_verified_link_cap;
+ link_srv->dp_get_encoding_format = link_dp_get_encoding_format;
+ link_srv->dp_should_enable_fec = dp_should_enable_fec;
+ link_srv->dp_decide_link_settings = link_decide_link_settings;
+ link_srv->mst_decide_link_encoding_format =
+ mst_decide_link_encoding_format;
+ link_srv->edp_decide_link_settings = edp_decide_link_settings;
+ link_srv->bw_kbps_from_raw_frl_link_rate_data =
+ link_bw_kbps_from_raw_frl_link_rate_data;
+ link_srv->dp_overwrite_extended_receiver_cap =
+ dp_overwrite_extended_receiver_cap;
+ link_srv->dp_decide_lttpr_mode = dp_decide_lttpr_mode;
+}
+
+/* link dp phy/dpia implements basic dp phy/dpia functionality such as
+ * enable/disable output and set lane/drive settings. It is responsible for
+ * maintaining and update software state representing current phy/dpia status
+ * such as current link settings.
+ */
+static void construct_link_service_dp_phy_or_dpia(struct link_service *link_srv)
+{
+ link_srv->dpia_handle_usb4_bandwidth_allocation_for_link =
+ dpia_handle_usb4_bandwidth_allocation_for_link;
+ link_srv->dpia_handle_bw_alloc_response = dpia_handle_bw_alloc_response;
+ link_srv->dp_set_drive_settings = dp_set_drive_settings;
+ link_srv->dpcd_write_rx_power_ctrl = dpcd_write_rx_power_ctrl;
+}
+
+/* link dp irq handler implements DP HPD short pulse handling sequence according
+ * to DP specifications
+ */
+static void construct_link_service_dp_irq_handler(struct link_service *link_srv)
+{
+ link_srv->dp_parse_link_loss_status = dp_parse_link_loss_status;
+ link_srv->dp_should_allow_hpd_rx_irq = dp_should_allow_hpd_rx_irq;
+ link_srv->dp_handle_link_loss = dp_handle_link_loss;
+ link_srv->dp_read_hpd_rx_irq_data = dp_read_hpd_rx_irq_data;
+ link_srv->dp_handle_hpd_rx_irq = dp_handle_hpd_rx_irq;
+}
+
+/* link edp panel control implements retrieval and configuration of eDP panel
+ * features such as PSR and ABM and it also manages specs defined eDP panel
+ * power sequences.
+ */
+static void construct_link_service_edp_panel_control(struct link_service *link_srv)
+{
+ link_srv->edp_panel_backlight_power_on = edp_panel_backlight_power_on;
+ link_srv->edp_get_backlight_level = edp_get_backlight_level;
+ link_srv->edp_get_backlight_level_nits = edp_get_backlight_level_nits;
+ link_srv->edp_set_backlight_level = edp_set_backlight_level;
+ link_srv->edp_set_backlight_level_nits = edp_set_backlight_level_nits;
+ link_srv->edp_get_target_backlight_pwm = edp_get_target_backlight_pwm;
+ link_srv->edp_get_psr_state = edp_get_psr_state;
+ link_srv->edp_set_psr_allow_active = edp_set_psr_allow_active;
+ link_srv->edp_setup_psr = edp_setup_psr;
+ link_srv->edp_set_sink_vtotal_in_psr_active =
+ edp_set_sink_vtotal_in_psr_active;
+ link_srv->edp_get_psr_residency = edp_get_psr_residency;
+ link_srv->edp_wait_for_t12 = edp_wait_for_t12;
+ link_srv->edp_is_ilr_optimization_required =
+ edp_is_ilr_optimization_required;
+ link_srv->edp_backlight_enable_aux = edp_backlight_enable_aux;
+ link_srv->edp_add_delay_for_T9 = edp_add_delay_for_T9;
+ link_srv->edp_receiver_ready_T9 = edp_receiver_ready_T9;
+ link_srv->edp_receiver_ready_T7 = edp_receiver_ready_T7;
+ link_srv->edp_power_alpm_dpcd_enable = edp_power_alpm_dpcd_enable;
+}
+
+/* link dp cts implements dp compliance test automation protocols and manual
+ * testing interfaces for debugging and certification purpose.
+ */
+static void construct_link_service_dp_cts(struct link_service *link_srv)
+{
+ link_srv->dp_handle_automated_test = dp_handle_automated_test;
+ link_srv->dp_set_test_pattern = dp_set_test_pattern;
+ link_srv->dp_set_preferred_link_settings =
+ dp_set_preferred_link_settings;
+ link_srv->dp_set_preferred_training_settings =
+ dp_set_preferred_training_settings;
+}
+
+/* link dp trace implements tracing interfaces for tracking major dp sequences
+ * including execution status and timestamps
+ */
+static void construct_link_service_dp_trace(struct link_service *link_srv)
+{
+ link_srv->dp_trace_is_initialized = dp_trace_is_initialized;
+ link_srv->dp_trace_set_is_logged_flag = dp_trace_set_is_logged_flag;
+ link_srv->dp_trace_is_logged = dp_trace_is_logged;
+ link_srv->dp_trace_get_lt_end_timestamp = dp_trace_get_lt_end_timestamp;
+ link_srv->dp_trace_get_lt_counts = dp_trace_get_lt_counts;
+ link_srv->dp_trace_get_link_loss_count = dp_trace_get_link_loss_count;
+ link_srv->dp_trace_set_edp_power_timestamp =
+ dp_trace_set_edp_power_timestamp;
+ link_srv->dp_trace_get_edp_poweron_timestamp =
+ dp_trace_get_edp_poweron_timestamp;
+ link_srv->dp_trace_get_edp_poweroff_timestamp =
+ dp_trace_get_edp_poweroff_timestamp;
+ link_srv->dp_trace_source_sequence = dp_trace_source_sequence;
+}
+
+static void construct_link_service(struct link_service *link_srv)
+{
+ /* All link service functions should fall under some sub categories.
+ * If a new function doesn't perfectly fall under an existing sub
+ * category, it must be that you are either adding a whole new aspect of
+ * responsibility to link service or something doesn't belong to link
+ * service. In that case please contact the arch owner to arrange a
+ * design review meeting.
+ */
+ construct_link_service_factory(link_srv);
+ construct_link_service_detection(link_srv);
+ construct_link_service_resource(link_srv);
+ construct_link_service_validation(link_srv);
+ construct_link_service_dpms(link_srv);
+ construct_link_service_ddc(link_srv);
+ construct_link_service_dp_capability(link_srv);
+ construct_link_service_dp_phy_or_dpia(link_srv);
+ construct_link_service_dp_irq_handler(link_srv);
+ construct_link_service_edp_panel_control(link_srv);
+ construct_link_service_dp_cts(link_srv);
+ construct_link_service_dp_trace(link_srv);
+}
+
+struct link_service *link_create_link_service(void)
+{
+ struct link_service *link_srv = kzalloc(sizeof(*link_srv), GFP_KERNEL);
+
+ if (link_srv == NULL)
+ goto fail;
+
+ construct_link_service(link_srv);
+
+ return link_srv;
+fail:
+ return NULL;
+}
+
+void link_destroy_link_service(struct link_service **link_srv)
+{
+ kfree(*link_srv);
+ *link_srv = NULL;
+}
+
+static enum transmitter translate_encoder_to_transmitter(
+ struct graphics_object_id encoder)
+{
+ switch (encoder.id) {
+ case ENCODER_ID_INTERNAL_UNIPHY:
+ switch (encoder.enum_id) {
+ case ENUM_ID_1:
+ return TRANSMITTER_UNIPHY_A;
+ case ENUM_ID_2:
+ return TRANSMITTER_UNIPHY_B;
+ default:
+ return TRANSMITTER_UNKNOWN;
+ }
+ break;
+ case ENCODER_ID_INTERNAL_UNIPHY1:
+ switch (encoder.enum_id) {
+ case ENUM_ID_1:
+ return TRANSMITTER_UNIPHY_C;
+ case ENUM_ID_2:
+ return TRANSMITTER_UNIPHY_D;
+ default:
+ return TRANSMITTER_UNKNOWN;
+ }
+ break;
+ case ENCODER_ID_INTERNAL_UNIPHY2:
+ switch (encoder.enum_id) {
+ case ENUM_ID_1:
+ return TRANSMITTER_UNIPHY_E;
+ case ENUM_ID_2:
+ return TRANSMITTER_UNIPHY_F;
+ default:
+ return TRANSMITTER_UNKNOWN;
+ }
+ break;
+ case ENCODER_ID_INTERNAL_UNIPHY3:
+ switch (encoder.enum_id) {
+ case ENUM_ID_1:
+ return TRANSMITTER_UNIPHY_G;
+ default:
+ return TRANSMITTER_UNKNOWN;
+ }
+ break;
+ case ENCODER_ID_EXTERNAL_NUTMEG:
+ switch (encoder.enum_id) {
+ case ENUM_ID_1:
+ return TRANSMITTER_NUTMEG_CRT;
+ default:
+ return TRANSMITTER_UNKNOWN;
+ }
+ break;
+ case ENCODER_ID_EXTERNAL_TRAVIS:
+ switch (encoder.enum_id) {
+ case ENUM_ID_1:
+ return TRANSMITTER_TRAVIS_CRT;
+ case ENUM_ID_2:
+ return TRANSMITTER_TRAVIS_LCD;
+ default:
+ return TRANSMITTER_UNKNOWN;
+ }
+ break;
+ default:
+ return TRANSMITTER_UNKNOWN;
+ }
+}
+
+static void link_destruct(struct dc_link *link)
+{
+ int i;
+
+ if (link->hpd_gpio) {
+ dal_gpio_destroy_irq(&link->hpd_gpio);
+ link->hpd_gpio = NULL;
+ }
+
+ if (link->ddc)
+ link_destroy_ddc_service(&link->ddc);
+
+ if (link->panel_cntl)
+ link->panel_cntl->funcs->destroy(&link->panel_cntl);
+
+ if (link->link_enc) {
+ /* Update link encoder resource tracking variables. These are used for
+ * the dynamic assignment of link encoders to streams. Virtual links
+ * are not assigned encoder resources on creation.
+ */
+ if (link->link_id.id != CONNECTOR_ID_VIRTUAL) {
+ link->dc->res_pool->link_encoders[link->eng_id - ENGINE_ID_DIGA] = NULL;
+ link->dc->res_pool->dig_link_enc_count--;
+ }
+ link->link_enc->funcs->destroy(&link->link_enc);
+ }
+
+ if (link->local_sink)
+ dc_sink_release(link->local_sink);
+
+ for (i = 0; i < link->sink_count; ++i)
+ dc_sink_release(link->remote_sinks[i]);
+}
+
+static enum channel_id get_ddc_line(struct dc_link *link)
+{
+ struct ddc *ddc;
+ enum channel_id channel;
+
+ channel = CHANNEL_ID_UNKNOWN;
+
+ ddc = get_ddc_pin(link->ddc);
+
+ if (ddc) {
+ switch (dal_ddc_get_line(ddc)) {
+ case GPIO_DDC_LINE_DDC1:
+ channel = CHANNEL_ID_DDC1;
+ break;
+ case GPIO_DDC_LINE_DDC2:
+ channel = CHANNEL_ID_DDC2;
+ break;
+ case GPIO_DDC_LINE_DDC3:
+ channel = CHANNEL_ID_DDC3;
+ break;
+ case GPIO_DDC_LINE_DDC4:
+ channel = CHANNEL_ID_DDC4;
+ break;
+ case GPIO_DDC_LINE_DDC5:
+ channel = CHANNEL_ID_DDC5;
+ break;
+ case GPIO_DDC_LINE_DDC6:
+ channel = CHANNEL_ID_DDC6;
+ break;
+ case GPIO_DDC_LINE_DDC_VGA:
+ channel = CHANNEL_ID_DDC_VGA;
+ break;
+ case GPIO_DDC_LINE_I2C_PAD:
+ channel = CHANNEL_ID_I2C_PAD;
+ break;
+ default:
+ BREAK_TO_DEBUGGER();
+ break;
+ }
+ }
+
+ return channel;
+}
+
+static bool construct_phy(struct dc_link *link,
+ const struct link_init_data *init_params)
+{
+ uint8_t i;
+ struct ddc_service_init_data ddc_service_init_data = { 0 };
+ struct dc_context *dc_ctx = init_params->ctx;
+ struct encoder_init_data enc_init_data = { 0 };
+ struct panel_cntl_init_data panel_cntl_init_data = { 0 };
+ struct integrated_info info = { 0 };
+ struct dc_bios *bios = init_params->dc->ctx->dc_bios;
+ const struct dc_vbios_funcs *bp_funcs = bios->funcs;
+ struct bp_disp_connector_caps_info disp_connect_caps_info = { 0 };
+
+ DC_LOGGER_INIT(dc_ctx->logger);
+
+ link->irq_source_hpd = DC_IRQ_SOURCE_INVALID;
+ link->irq_source_hpd_rx = DC_IRQ_SOURCE_INVALID;
+ link->link_status.dpcd_caps = &link->dpcd_caps;
+
+ link->dc = init_params->dc;
+ link->ctx = dc_ctx;
+ link->link_index = init_params->link_index;
+
+ memset(&link->preferred_training_settings, 0,
+ sizeof(struct dc_link_training_overrides));
+ memset(&link->preferred_link_setting, 0,
+ sizeof(struct dc_link_settings));
+
+ link->link_id =
+ bios->funcs->get_connector_id(bios, init_params->connector_index);
+
+ link->ep_type = DISPLAY_ENDPOINT_PHY;
+
+ DC_LOG_DC("BIOS object table - link_id: %d", link->link_id.id);
+
+ if (bios->funcs->get_disp_connector_caps_info) {
+ bios->funcs->get_disp_connector_caps_info(bios, link->link_id, &disp_connect_caps_info);
+ link->is_internal_display = disp_connect_caps_info.INTERNAL_DISPLAY;
+ DC_LOG_DC("BIOS object table - is_internal_display: %d", link->is_internal_display);
+ }
+
+ if (link->link_id.type != OBJECT_TYPE_CONNECTOR) {
+ dm_output_to_console("%s: Invalid Connector ObjectID from Adapter Service for connector index:%d! type %d expected %d\n",
+ __func__, init_params->connector_index,
+ link->link_id.type, OBJECT_TYPE_CONNECTOR);
+ goto create_fail;
+ }
+
+ if (link->dc->res_pool->funcs->link_init)
+ link->dc->res_pool->funcs->link_init(link);
+
+ link->hpd_gpio = link_get_hpd_gpio(link->ctx->dc_bios, link->link_id,
+ link->ctx->gpio_service);
+
+ if (link->hpd_gpio) {
+ dal_gpio_open(link->hpd_gpio, GPIO_MODE_INTERRUPT);
+ dal_gpio_unlock_pin(link->hpd_gpio);
+ link->irq_source_hpd = dal_irq_get_source(link->hpd_gpio);
+
+ DC_LOG_DC("BIOS object table - hpd_gpio id: %d", link->hpd_gpio->id);
+ DC_LOG_DC("BIOS object table - hpd_gpio en: %d", link->hpd_gpio->en);
+ }
+
+ switch (link->link_id.id) {
+ case CONNECTOR_ID_HDMI_TYPE_A:
+ link->connector_signal = SIGNAL_TYPE_HDMI_TYPE_A;
+
+ break;
+ case CONNECTOR_ID_SINGLE_LINK_DVID:
+ case CONNECTOR_ID_SINGLE_LINK_DVII:
+ link->connector_signal = SIGNAL_TYPE_DVI_SINGLE_LINK;
+ break;
+ case CONNECTOR_ID_DUAL_LINK_DVID:
+ case CONNECTOR_ID_DUAL_LINK_DVII:
+ link->connector_signal = SIGNAL_TYPE_DVI_DUAL_LINK;
+ break;
+ case CONNECTOR_ID_DISPLAY_PORT:
+ case CONNECTOR_ID_USBC:
+ link->connector_signal = SIGNAL_TYPE_DISPLAY_PORT;
+
+ if (link->hpd_gpio)
+ link->irq_source_hpd_rx =
+ dal_irq_get_rx_source(link->hpd_gpio);
+
+ break;
+ case CONNECTOR_ID_EDP:
+ link->connector_signal = SIGNAL_TYPE_EDP;
+
+ if (link->hpd_gpio) {
+ if (!link->dc->config.allow_edp_hotplug_detection)
+ link->irq_source_hpd = DC_IRQ_SOURCE_INVALID;
+
+ switch (link->dc->config.allow_edp_hotplug_detection) {
+ case HPD_EN_FOR_ALL_EDP:
+ link->irq_source_hpd_rx =
+ dal_irq_get_rx_source(link->hpd_gpio);
+ break;
+ case HPD_EN_FOR_PRIMARY_EDP_ONLY:
+ if (link->link_index == 0)
+ link->irq_source_hpd_rx =
+ dal_irq_get_rx_source(link->hpd_gpio);
+ else
+ link->irq_source_hpd = DC_IRQ_SOURCE_INVALID;
+ break;
+ case HPD_EN_FOR_SECONDARY_EDP_ONLY:
+ if (link->link_index == 1)
+ link->irq_source_hpd_rx =
+ dal_irq_get_rx_source(link->hpd_gpio);
+ else
+ link->irq_source_hpd = DC_IRQ_SOURCE_INVALID;
+ break;
+ default:
+ link->irq_source_hpd = DC_IRQ_SOURCE_INVALID;
+ break;
+ }
+ }
+
+ break;
+ case CONNECTOR_ID_LVDS:
+ link->connector_signal = SIGNAL_TYPE_LVDS;
+ break;
+ default:
+ DC_LOG_WARNING("Unsupported Connector type:%d!\n",
+ link->link_id.id);
+ goto create_fail;
+ }
+
+ /* TODO: #DAL3 Implement id to str function.*/
+ LINK_INFO("Connector[%d] description:"
+ "signal %d\n",
+ init_params->connector_index,
+ link->connector_signal);
+
+ ddc_service_init_data.ctx = link->ctx;
+ ddc_service_init_data.id = link->link_id;
+ ddc_service_init_data.link = link;
+ link->ddc = link_create_ddc_service(&ddc_service_init_data);
+
+ if (!link->ddc) {
+ DC_ERROR("Failed to create ddc_service!\n");
+ goto ddc_create_fail;
+ }
+
+ if (!link->ddc->ddc_pin) {
+ DC_ERROR("Failed to get I2C info for connector!\n");
+ goto ddc_create_fail;
+ }
+
+ link->ddc_hw_inst =
+ dal_ddc_get_line(get_ddc_pin(link->ddc));
+
+
+ if (link->dc->res_pool->funcs->panel_cntl_create &&
+ (link->link_id.id == CONNECTOR_ID_EDP ||
+ link->link_id.id == CONNECTOR_ID_LVDS)) {
+ panel_cntl_init_data.ctx = dc_ctx;
+ panel_cntl_init_data.inst =
+ panel_cntl_init_data.ctx->dc_edp_id_count;
+ link->panel_cntl =
+ link->dc->res_pool->funcs->panel_cntl_create(
+ &panel_cntl_init_data);
+ panel_cntl_init_data.ctx->dc_edp_id_count++;
+
+ if (link->panel_cntl == NULL) {
+ DC_ERROR("Failed to create link panel_cntl!\n");
+ goto panel_cntl_create_fail;
+ }
+ }
+
+ enc_init_data.ctx = dc_ctx;
+ bp_funcs->get_src_obj(dc_ctx->dc_bios, link->link_id, 0,
+ &enc_init_data.encoder);
+ enc_init_data.connector = link->link_id;
+ enc_init_data.channel = get_ddc_line(link);
+ enc_init_data.hpd_source = get_hpd_line(link);
+
+ link->hpd_src = enc_init_data.hpd_source;
+
+ enc_init_data.transmitter =
+ translate_encoder_to_transmitter(enc_init_data.encoder);
+ link->link_enc =
+ link->dc->res_pool->funcs->link_enc_create(dc_ctx, &enc_init_data);
+
+ DC_LOG_DC("BIOS object table - DP_IS_USB_C: %d", link->link_enc->features.flags.bits.DP_IS_USB_C);
+ DC_LOG_DC("BIOS object table - IS_DP2_CAPABLE: %d", link->link_enc->features.flags.bits.IS_DP2_CAPABLE);
+
+ if (!link->link_enc) {
+ DC_ERROR("Failed to create link encoder!\n");
+ goto link_enc_create_fail;
+ }
+
+ /* Update link encoder tracking variables. These are used for the dynamic
+ * assignment of link encoders to streams.
+ */
+ link->eng_id = link->link_enc->preferred_engine;
+ link->dc->res_pool->link_encoders[link->eng_id - ENGINE_ID_DIGA] = link->link_enc;
+ link->dc->res_pool->dig_link_enc_count++;
+
+ link->link_enc_hw_inst = link->link_enc->transmitter;
+ for (i = 0; i < 4; i++) {
+ if (bp_funcs->get_device_tag(dc_ctx->dc_bios,
+ link->link_id, i,
+ &link->device_tag) != BP_RESULT_OK) {
+ DC_ERROR("Failed to find device tag!\n");
+ goto device_tag_fail;
+ }
+
+ /* Look for device tag that matches connector signal,
+ * CRT for rgb, LCD for other supported signal tyes
+ */
+ if (!bp_funcs->is_device_id_supported(dc_ctx->dc_bios,
+ link->device_tag.dev_id))
+ continue;
+ if (link->device_tag.dev_id.device_type == DEVICE_TYPE_CRT &&
+ link->connector_signal != SIGNAL_TYPE_RGB)
+ continue;
+ if (link->device_tag.dev_id.device_type == DEVICE_TYPE_LCD &&
+ link->connector_signal == SIGNAL_TYPE_RGB)
+ continue;
+
+ DC_LOG_DC("BIOS object table - device_tag.acpi_device: %d", link->device_tag.acpi_device);
+ DC_LOG_DC("BIOS object table - device_tag.dev_id.device_type: %d", link->device_tag.dev_id.device_type);
+ DC_LOG_DC("BIOS object table - device_tag.dev_id.enum_id: %d", link->device_tag.dev_id.enum_id);
+ break;
+ }
+
+ if (bios->integrated_info)
+ info = *bios->integrated_info;
+
+ /* Look for channel mapping corresponding to connector and device tag */
+ for (i = 0; i < MAX_NUMBER_OF_EXT_DISPLAY_PATH; i++) {
+ struct external_display_path *path =
+ &info.ext_disp_conn_info.path[i];
+
+ if (path->device_connector_id.enum_id == link->link_id.enum_id &&
+ path->device_connector_id.id == link->link_id.id &&
+ path->device_connector_id.type == link->link_id.type) {
+ if (link->device_tag.acpi_device != 0 &&
+ path->device_acpi_enum == link->device_tag.acpi_device) {
+ link->ddi_channel_mapping = path->channel_mapping;
+ link->chip_caps = path->caps;
+ DC_LOG_DC("BIOS object table - ddi_channel_mapping: 0x%04X", link->ddi_channel_mapping.raw);
+ DC_LOG_DC("BIOS object table - chip_caps: %d", link->chip_caps);
+ } else if (path->device_tag ==
+ link->device_tag.dev_id.raw_device_tag) {
+ link->ddi_channel_mapping = path->channel_mapping;
+ link->chip_caps = path->caps;
+ DC_LOG_DC("BIOS object table - ddi_channel_mapping: 0x%04X", link->ddi_channel_mapping.raw);
+ DC_LOG_DC("BIOS object table - chip_caps: %d", link->chip_caps);
+ }
+
+ if (link->chip_caps & EXT_DISPLAY_PATH_CAPS__DP_FIXED_VS_EN) {
+ link->bios_forced_drive_settings.VOLTAGE_SWING =
+ (info.ext_disp_conn_info.fixdpvoltageswing & 0x3);
+ link->bios_forced_drive_settings.PRE_EMPHASIS =
+ ((info.ext_disp_conn_info.fixdpvoltageswing >> 2) & 0x3);
+ }
+
+ break;
+ }
+ }
+
+ if (bios->funcs->get_atom_dc_golden_table)
+ bios->funcs->get_atom_dc_golden_table(bios);
+
+ /*
+ * TODO check if GPIO programmed correctly
+ *
+ * If GPIO isn't programmed correctly HPD might not rise or drain
+ * fast enough, leading to bounces.
+ */
+ program_hpd_filter(link);
+
+ link->psr_settings.psr_vtotal_control_support = false;
+ link->psr_settings.psr_version = DC_PSR_VERSION_UNSUPPORTED;
+
+ DC_LOG_DC("BIOS object table - %s finished successfully.\n", __func__);
+ return true;
+device_tag_fail:
+ link->link_enc->funcs->destroy(&link->link_enc);
+link_enc_create_fail:
+ if (link->panel_cntl != NULL)
+ link->panel_cntl->funcs->destroy(&link->panel_cntl);
+panel_cntl_create_fail:
+ link_destroy_ddc_service(&link->ddc);
+ddc_create_fail:
+create_fail:
+
+ if (link->hpd_gpio) {
+ dal_gpio_destroy_irq(&link->hpd_gpio);
+ link->hpd_gpio = NULL;
+ }
+
+ DC_LOG_DC("BIOS object table - %s failed.\n", __func__);
+ return false;
+}
+
+static bool construct_dpia(struct dc_link *link,
+ const struct link_init_data *init_params)
+{
+ struct ddc_service_init_data ddc_service_init_data = { 0 };
+ struct dc_context *dc_ctx = init_params->ctx;
+
+ DC_LOGGER_INIT(dc_ctx->logger);
+
+ /* Initialized irq source for hpd and hpd rx */
+ link->irq_source_hpd = DC_IRQ_SOURCE_INVALID;
+ link->irq_source_hpd_rx = DC_IRQ_SOURCE_INVALID;
+ link->link_status.dpcd_caps = &link->dpcd_caps;
+
+ link->dc = init_params->dc;
+ link->ctx = dc_ctx;
+ link->link_index = init_params->link_index;
+
+ memset(&link->preferred_training_settings, 0,
+ sizeof(struct dc_link_training_overrides));
+ memset(&link->preferred_link_setting, 0,
+ sizeof(struct dc_link_settings));
+
+ /* Dummy Init for linkid */
+ link->link_id.type = OBJECT_TYPE_CONNECTOR;
+ link->link_id.id = CONNECTOR_ID_DISPLAY_PORT;
+ link->link_id.enum_id = ENUM_ID_1 + init_params->connector_index;
+ link->is_internal_display = false;
+ link->connector_signal = SIGNAL_TYPE_DISPLAY_PORT;
+ LINK_INFO("Connector[%d] description:signal %d\n",
+ init_params->connector_index,
+ link->connector_signal);
+
+ link->ep_type = DISPLAY_ENDPOINT_USB4_DPIA;
+ link->is_dig_mapping_flexible = true;
+
+ /* TODO: Initialize link : funcs->link_init */
+
+ ddc_service_init_data.ctx = link->ctx;
+ ddc_service_init_data.id = link->link_id;
+ ddc_service_init_data.link = link;
+ /* Set indicator for dpia link so that ddc wont be created */
+ ddc_service_init_data.is_dpia_link = true;
+
+ link->ddc = link_create_ddc_service(&ddc_service_init_data);
+ if (!link->ddc) {
+ DC_ERROR("Failed to create ddc_service!\n");
+ goto ddc_create_fail;
+ }
+
+ /* Set dpia port index : 0 to number of dpia ports */
+ link->ddc_hw_inst = init_params->connector_index;
+
+ /* TODO: Create link encoder */
+
+ link->psr_settings.psr_version = DC_PSR_VERSION_UNSUPPORTED;
+
+ /* Some docks seem to NAK I2C writes to segment pointer with mot=0. */
+ link->wa_flags.dp_mot_reset_segment = true;
+
+ return true;
+
+ddc_create_fail:
+ return false;
+}
+
+static bool link_construct(struct dc_link *link,
+ const struct link_init_data *init_params)
+{
+ /* Handle dpia case */
+ if (init_params->is_dpia_link == true)
+ return construct_dpia(link, init_params);
+ else
+ return construct_phy(link, init_params);
+}
+
+struct dc_link *link_create(const struct link_init_data *init_params)
+{
+ struct dc_link *link =
+ kzalloc(sizeof(*link), GFP_KERNEL);
+
+ if (NULL == link)
+ goto alloc_fail;
+
+ if (false == link_construct(link, init_params))
+ goto construct_fail;
+
+ return link;
+
+construct_fail:
+ kfree(link);
+
+alloc_fail:
+ return NULL;
+}
+
+void link_destroy(struct dc_link **link)
+{
+ link_destruct(*link);
+ kfree(*link);
+ *link = NULL;
+}
diff --git a/drivers/gpu/drm/amd/display/dc/link/link_factory.h b/drivers/gpu/drm/amd/display/dc/link/link_factory.h
new file mode 100644
index 000000000000..e96220d48d03
--- /dev/null
+++ b/drivers/gpu/drm/amd/display/dc/link/link_factory.h
@@ -0,0 +1,31 @@
+/*
+ * Copyright 2023 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ * Authors: AMD
+ *
+ */
+#ifndef __LINK_FACTORY_H__
+#define __LINK_FACTORY_H__
+#include "link.h"
+struct dc_link *link_create(const struct link_init_data *init_params);
+void link_destroy(struct dc_link **link);
+
+#endif /* __LINK_FACTORY_H__ */
diff --git a/drivers/gpu/drm/amd/display/dc/link/link_resource.c b/drivers/gpu/drm/amd/display/dc/link/link_resource.c
new file mode 100644
index 000000000000..bd42bb273c0c
--- /dev/null
+++ b/drivers/gpu/drm/amd/display/dc/link/link_resource.c
@@ -0,0 +1,114 @@
+/*
+ * Copyright 2023 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ * Authors: AMD
+ *
+ */
+/* FILE POLICY AND INTENDED USAGE:
+ * This file implements accessors to link resource.
+ */
+
+#include "link_resource.h"
+#include "protocols/link_dp_capability.h"
+
+void link_get_cur_link_res(const struct dc_link *link,
+ struct link_resource *link_res)
+{
+ int i;
+ struct pipe_ctx *pipe = NULL;
+
+ memset(link_res, 0, sizeof(*link_res));
+
+ for (i = 0; i < MAX_PIPES; i++) {
+ pipe = &link->dc->current_state->res_ctx.pipe_ctx[i];
+ if (pipe->stream && pipe->stream->link && pipe->top_pipe == NULL) {
+ if (pipe->stream->link == link) {
+ *link_res = pipe->link_res;
+ break;
+ }
+ }
+ }
+
+}
+
+void link_get_cur_res_map(const struct dc *dc, uint32_t *map)
+{
+ struct dc_link *link;
+ uint32_t i;
+ uint32_t hpo_dp_recycle_map = 0;
+
+ *map = 0;
+
+ if (dc->caps.dp_hpo) {
+ for (i = 0; i < dc->caps.max_links; i++) {
+ link = dc->links[i];
+ if (link->link_status.link_active &&
+ link_dp_get_encoding_format(&link->reported_link_cap) == DP_128b_132b_ENCODING &&
+ link_dp_get_encoding_format(&link->cur_link_settings) != DP_128b_132b_ENCODING)
+ /* hpo dp link encoder is considered as recycled, when RX reports 128b/132b encoding capability
+ * but current link doesn't use it.
+ */
+ hpo_dp_recycle_map |= (1 << i);
+ }
+ *map |= (hpo_dp_recycle_map << LINK_RES_HPO_DP_REC_MAP__SHIFT);
+ }
+}
+
+void link_restore_res_map(const struct dc *dc, uint32_t *map)
+{
+ struct dc_link *link;
+ uint32_t i;
+ unsigned int available_hpo_dp_count;
+ uint32_t hpo_dp_recycle_map = (*map & LINK_RES_HPO_DP_REC_MAP__MASK)
+ >> LINK_RES_HPO_DP_REC_MAP__SHIFT;
+
+ if (dc->caps.dp_hpo) {
+ available_hpo_dp_count = dc->res_pool->hpo_dp_link_enc_count;
+ /* remove excess 128b/132b encoding support for not recycled links */
+ for (i = 0; i < dc->caps.max_links; i++) {
+ if ((hpo_dp_recycle_map & (1 << i)) == 0) {
+ link = dc->links[i];
+ if (link->type != dc_connection_none &&
+ link_dp_get_encoding_format(&link->verified_link_cap) == DP_128b_132b_ENCODING) {
+ if (available_hpo_dp_count > 0)
+ available_hpo_dp_count--;
+ else
+ /* remove 128b/132b encoding capability by limiting verified link rate to HBR3 */
+ link->verified_link_cap.link_rate = LINK_RATE_HIGH3;
+ }
+ }
+ }
+ /* remove excess 128b/132b encoding support for recycled links */
+ for (i = 0; i < dc->caps.max_links; i++) {
+ if ((hpo_dp_recycle_map & (1 << i)) != 0) {
+ link = dc->links[i];
+ if (link->type != dc_connection_none &&
+ link_dp_get_encoding_format(&link->verified_link_cap) == DP_128b_132b_ENCODING) {
+ if (available_hpo_dp_count > 0)
+ available_hpo_dp_count--;
+ else
+ /* remove 128b/132b encoding capability by limiting verified link rate to HBR3 */
+ link->verified_link_cap.link_rate = LINK_RATE_HIGH3;
+ }
+ }
+ }
+ }
+}
diff --git a/drivers/gpu/drm/amd/display/dc/link/link_resource.h b/drivers/gpu/drm/amd/display/dc/link/link_resource.h
new file mode 100644
index 000000000000..1907bda3cb6e
--- /dev/null
+++ b/drivers/gpu/drm/amd/display/dc/link/link_resource.h
@@ -0,0 +1,32 @@
+/*
+ * Copyright 2023 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ * Authors: AMD
+ *
+ */
+#ifndef __LINK_RESOURCE_H__
+#define __LINK_RESOURCE_H__
+#include "link.h"
+void link_get_cur_res_map(const struct dc *dc, uint32_t *map);
+void link_restore_res_map(const struct dc *dc, uint32_t *map);
+void link_get_cur_link_res(const struct dc_link *link,
+ struct link_resource *link_res);
+#endif /* __LINK_RESOURCE_H__ */
diff --git a/drivers/gpu/drm/amd/display/dc/link/link_validation.c b/drivers/gpu/drm/amd/display/dc/link/link_validation.c
new file mode 100644
index 000000000000..d4b7da526f0a
--- /dev/null
+++ b/drivers/gpu/drm/amd/display/dc/link/link_validation.c
@@ -0,0 +1,363 @@
+/*
+ * Copyright 2023 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ * Authors: AMD
+ *
+ */
+
+/* FILE POLICY AND INTENDED USAGE:
+ * This file owns timing validation against various link limitations. (ex.
+ * link bandwidth, receiver capability or our hardware capability) It also
+ * provides helper functions exposing bandwidth formulas used in validation.
+ */
+#include "link_validation.h"
+#include "protocols/link_dp_capability.h"
+#include "protocols/link_dp_dpia_bw.h"
+#include "resource.h"
+
+#define DC_LOGGER_INIT(logger)
+
+static uint32_t get_tmds_output_pixel_clock_100hz(const struct dc_crtc_timing *timing)
+{
+
+ uint32_t pxl_clk = timing->pix_clk_100hz;
+
+ if (timing->pixel_encoding == PIXEL_ENCODING_YCBCR420)
+ pxl_clk /= 2;
+ else if (timing->pixel_encoding == PIXEL_ENCODING_YCBCR422)
+ pxl_clk = pxl_clk * 2 / 3;
+
+ if (timing->display_color_depth == COLOR_DEPTH_101010)
+ pxl_clk = pxl_clk * 10 / 8;
+ else if (timing->display_color_depth == COLOR_DEPTH_121212)
+ pxl_clk = pxl_clk * 12 / 8;
+
+ return pxl_clk;
+}
+
+static bool dp_active_dongle_validate_timing(
+ const struct dc_crtc_timing *timing,
+ const struct dpcd_caps *dpcd_caps)
+{
+ const struct dc_dongle_caps *dongle_caps = &dpcd_caps->dongle_caps;
+
+ switch (dpcd_caps->dongle_type) {
+ case DISPLAY_DONGLE_DP_VGA_CONVERTER:
+ case DISPLAY_DONGLE_DP_DVI_CONVERTER:
+ case DISPLAY_DONGLE_DP_DVI_DONGLE:
+ if (timing->pixel_encoding == PIXEL_ENCODING_RGB)
+ return true;
+ else
+ return false;
+ default:
+ break;
+ }
+
+ if (dpcd_caps->dongle_type == DISPLAY_DONGLE_DP_HDMI_CONVERTER &&
+ dongle_caps->extendedCapValid == true) {
+ /* Check Pixel Encoding */
+ switch (timing->pixel_encoding) {
+ case PIXEL_ENCODING_RGB:
+ case PIXEL_ENCODING_YCBCR444:
+ break;
+ case PIXEL_ENCODING_YCBCR422:
+ if (!dongle_caps->is_dp_hdmi_ycbcr422_pass_through)
+ return false;
+ break;
+ case PIXEL_ENCODING_YCBCR420:
+ if (!dongle_caps->is_dp_hdmi_ycbcr420_pass_through)
+ return false;
+ break;
+ default:
+ /* Invalid Pixel Encoding*/
+ return false;
+ }
+
+ switch (timing->display_color_depth) {
+ case COLOR_DEPTH_666:
+ case COLOR_DEPTH_888:
+ /*888 and 666 should always be supported*/
+ break;
+ case COLOR_DEPTH_101010:
+ if (dongle_caps->dp_hdmi_max_bpc < 10)
+ return false;
+ break;
+ case COLOR_DEPTH_121212:
+ if (dongle_caps->dp_hdmi_max_bpc < 12)
+ return false;
+ break;
+ case COLOR_DEPTH_141414:
+ case COLOR_DEPTH_161616:
+ default:
+ /* These color depths are currently not supported */
+ return false;
+ }
+
+ /* Check 3D format */
+ switch (timing->timing_3d_format) {
+ case TIMING_3D_FORMAT_NONE:
+ case TIMING_3D_FORMAT_FRAME_ALTERNATE:
+ /*Only frame alternate 3D is supported on active dongle*/
+ break;
+ default:
+ /*other 3D formats are not supported due to bad infoframe translation */
+ return false;
+ }
+
+ if (dongle_caps->dp_hdmi_frl_max_link_bw_in_kbps > 0) { // DP to HDMI FRL converter
+ struct dc_crtc_timing outputTiming = *timing;
+
+#if defined(CONFIG_DRM_AMD_DC_FP)
+ if (timing->flags.DSC && !timing->dsc_cfg.is_frl)
+ /* DP input has DSC, HDMI FRL output doesn't have DSC, remove DSC from output timing */
+ outputTiming.flags.DSC = 0;
+#endif
+ if (dc_bandwidth_in_kbps_from_timing(&outputTiming) > dongle_caps->dp_hdmi_frl_max_link_bw_in_kbps)
+ return false;
+ } else { // DP to HDMI TMDS converter
+ if (get_tmds_output_pixel_clock_100hz(timing) > (dongle_caps->dp_hdmi_max_pixel_clk_in_khz * 10))
+ return false;
+ }
+ }
+
+ if (dpcd_caps->channel_coding_cap.bits.DP_128b_132b_SUPPORTED == 0 &&
+ dpcd_caps->dsc_caps.dsc_basic_caps.fields.dsc_support.DSC_PASSTHROUGH_SUPPORT == 0 &&
+ dongle_caps->dfp_cap_ext.supported) {
+
+ if (dongle_caps->dfp_cap_ext.max_pixel_rate_in_mps < (timing->pix_clk_100hz / 10000))
+ return false;
+
+ if (dongle_caps->dfp_cap_ext.max_video_h_active_width < timing->h_addressable)
+ return false;
+
+ if (dongle_caps->dfp_cap_ext.max_video_v_active_height < timing->v_addressable)
+ return false;
+
+ if (timing->pixel_encoding == PIXEL_ENCODING_RGB) {
+ if (!dongle_caps->dfp_cap_ext.encoding_format_caps.support_rgb)
+ return false;
+ if (timing->display_color_depth == COLOR_DEPTH_666 &&
+ !dongle_caps->dfp_cap_ext.rgb_color_depth_caps.support_6bpc)
+ return false;
+ else if (timing->display_color_depth == COLOR_DEPTH_888 &&
+ !dongle_caps->dfp_cap_ext.rgb_color_depth_caps.support_8bpc)
+ return false;
+ else if (timing->display_color_depth == COLOR_DEPTH_101010 &&
+ !dongle_caps->dfp_cap_ext.rgb_color_depth_caps.support_10bpc)
+ return false;
+ else if (timing->display_color_depth == COLOR_DEPTH_121212 &&
+ !dongle_caps->dfp_cap_ext.rgb_color_depth_caps.support_12bpc)
+ return false;
+ else if (timing->display_color_depth == COLOR_DEPTH_161616 &&
+ !dongle_caps->dfp_cap_ext.rgb_color_depth_caps.support_16bpc)
+ return false;
+ } else if (timing->pixel_encoding == PIXEL_ENCODING_YCBCR444) {
+ if (!dongle_caps->dfp_cap_ext.encoding_format_caps.support_rgb)
+ return false;
+ if (timing->display_color_depth == COLOR_DEPTH_888 &&
+ !dongle_caps->dfp_cap_ext.ycbcr444_color_depth_caps.support_8bpc)
+ return false;
+ else if (timing->display_color_depth == COLOR_DEPTH_101010 &&
+ !dongle_caps->dfp_cap_ext.ycbcr444_color_depth_caps.support_10bpc)
+ return false;
+ else if (timing->display_color_depth == COLOR_DEPTH_121212 &&
+ !dongle_caps->dfp_cap_ext.ycbcr444_color_depth_caps.support_12bpc)
+ return false;
+ else if (timing->display_color_depth == COLOR_DEPTH_161616 &&
+ !dongle_caps->dfp_cap_ext.ycbcr444_color_depth_caps.support_16bpc)
+ return false;
+ } else if (timing->pixel_encoding == PIXEL_ENCODING_YCBCR422) {
+ if (!dongle_caps->dfp_cap_ext.encoding_format_caps.support_rgb)
+ return false;
+ if (timing->display_color_depth == COLOR_DEPTH_888 &&
+ !dongle_caps->dfp_cap_ext.ycbcr422_color_depth_caps.support_8bpc)
+ return false;
+ else if (timing->display_color_depth == COLOR_DEPTH_101010 &&
+ !dongle_caps->dfp_cap_ext.ycbcr422_color_depth_caps.support_10bpc)
+ return false;
+ else if (timing->display_color_depth == COLOR_DEPTH_121212 &&
+ !dongle_caps->dfp_cap_ext.ycbcr422_color_depth_caps.support_12bpc)
+ return false;
+ else if (timing->display_color_depth == COLOR_DEPTH_161616 &&
+ !dongle_caps->dfp_cap_ext.ycbcr422_color_depth_caps.support_16bpc)
+ return false;
+ } else if (timing->pixel_encoding == PIXEL_ENCODING_YCBCR420) {
+ if (!dongle_caps->dfp_cap_ext.encoding_format_caps.support_rgb)
+ return false;
+ if (timing->display_color_depth == COLOR_DEPTH_888 &&
+ !dongle_caps->dfp_cap_ext.ycbcr420_color_depth_caps.support_8bpc)
+ return false;
+ else if (timing->display_color_depth == COLOR_DEPTH_101010 &&
+ !dongle_caps->dfp_cap_ext.ycbcr420_color_depth_caps.support_10bpc)
+ return false;
+ else if (timing->display_color_depth == COLOR_DEPTH_121212 &&
+ !dongle_caps->dfp_cap_ext.ycbcr420_color_depth_caps.support_12bpc)
+ return false;
+ else if (timing->display_color_depth == COLOR_DEPTH_161616 &&
+ !dongle_caps->dfp_cap_ext.ycbcr420_color_depth_caps.support_16bpc)
+ return false;
+ }
+ }
+
+ return true;
+}
+
+uint32_t dp_link_bandwidth_kbps(
+ const struct dc_link *link,
+ const struct dc_link_settings *link_settings)
+{
+ uint32_t total_data_bw_efficiency_x10000 = 0;
+ uint32_t link_rate_per_lane_kbps = 0;
+
+ switch (link_dp_get_encoding_format(link_settings)) {
+ case DP_8b_10b_ENCODING:
+ /* For 8b/10b encoding:
+ * link rate is defined in the unit of LINK_RATE_REF_FREQ_IN_KHZ per DP byte per lane.
+ * data bandwidth efficiency is 80% with additional 3% overhead if FEC is supported.
+ */
+ link_rate_per_lane_kbps = link_settings->link_rate * LINK_RATE_REF_FREQ_IN_KHZ * BITS_PER_DP_BYTE;
+ total_data_bw_efficiency_x10000 = DATA_EFFICIENCY_8b_10b_x10000;
+ if (dp_should_enable_fec(link)) {
+ total_data_bw_efficiency_x10000 /= 100;
+ total_data_bw_efficiency_x10000 *= DATA_EFFICIENCY_8b_10b_FEC_EFFICIENCY_x100;
+ }
+ break;
+ case DP_128b_132b_ENCODING:
+ /* For 128b/132b encoding:
+ * link rate is defined in the unit of 10mbps per lane.
+ * total data bandwidth efficiency is always 96.71%.
+ */
+ link_rate_per_lane_kbps = link_settings->link_rate * 10000;
+ total_data_bw_efficiency_x10000 = DATA_EFFICIENCY_128b_132b_x10000;
+ break;
+ default:
+ break;
+ }
+
+ /* overall effective link bandwidth = link rate per lane * lane count * total data bandwidth efficiency */
+ return link_rate_per_lane_kbps * link_settings->lane_count / 10000 * total_data_bw_efficiency_x10000;
+}
+
+static bool dp_validate_mode_timing(
+ struct dc_link *link,
+ const struct dc_crtc_timing *timing)
+{
+ uint32_t req_bw;
+ uint32_t max_bw;
+
+ const struct dc_link_settings *link_setting;
+
+ /* According to spec, VSC SDP should be used if pixel format is YCbCr420 */
+ if (timing->pixel_encoding == PIXEL_ENCODING_YCBCR420 &&
+ !link->dpcd_caps.dprx_feature.bits.VSC_SDP_COLORIMETRY_SUPPORTED &&
+ dal_graphics_object_id_get_connector_id(link->link_id) != CONNECTOR_ID_VIRTUAL)
+ return false;
+
+ /*always DP fail safe mode*/
+ if ((timing->pix_clk_100hz / 10) == (uint32_t) 25175 &&
+ timing->h_addressable == (uint32_t) 640 &&
+ timing->v_addressable == (uint32_t) 480)
+ return true;
+
+ link_setting = dp_get_verified_link_cap(link);
+
+ /* TODO: DYNAMIC_VALIDATION needs to be implemented */
+ /*if (flags.DYNAMIC_VALIDATION == 1 &&
+ link->verified_link_cap.lane_count != LANE_COUNT_UNKNOWN)
+ link_setting = &link->verified_link_cap;
+ */
+
+ req_bw = dc_bandwidth_in_kbps_from_timing(timing);
+ max_bw = dp_link_bandwidth_kbps(link, link_setting);
+
+ if (req_bw <= max_bw) {
+ /* remember the biggest mode here, during
+ * initial link training (to get
+ * verified_link_cap), LS sends event about
+ * cannot train at reported cap to upper
+ * layer and upper layer will re-enumerate modes.
+ * this is not necessary if the lower
+ * verified_link_cap is enough to drive
+ * all the modes */
+
+ /* TODO: DYNAMIC_VALIDATION needs to be implemented */
+ /* if (flags.DYNAMIC_VALIDATION == 1)
+ dpsst->max_req_bw_for_verified_linkcap = dal_max(
+ dpsst->max_req_bw_for_verified_linkcap, req_bw); */
+ return true;
+ } else
+ return false;
+}
+
+enum dc_status link_validate_mode_timing(
+ const struct dc_stream_state *stream,
+ struct dc_link *link,
+ const struct dc_crtc_timing *timing)
+{
+ uint32_t max_pix_clk = stream->link->dongle_max_pix_clk * 10;
+ struct dpcd_caps *dpcd_caps = &link->dpcd_caps;
+
+ /* A hack to avoid failing any modes for EDID override feature on
+ * topology change such as lower quality cable for DP or different dongle
+ */
+ if (link->remote_sinks[0] && link->remote_sinks[0]->sink_signal == SIGNAL_TYPE_VIRTUAL)
+ return DC_OK;
+
+ /* Passive Dongle */
+ if (max_pix_clk != 0 && get_tmds_output_pixel_clock_100hz(timing) > max_pix_clk)
+ return DC_EXCEED_DONGLE_CAP;
+
+ /* Active Dongle*/
+ if (!dp_active_dongle_validate_timing(timing, dpcd_caps))
+ return DC_EXCEED_DONGLE_CAP;
+
+ switch (stream->signal) {
+ case SIGNAL_TYPE_EDP:
+ case SIGNAL_TYPE_DISPLAY_PORT:
+ if (!dp_validate_mode_timing(
+ link,
+ timing))
+ return DC_NO_DP_LINK_BANDWIDTH;
+ break;
+
+ default:
+ break;
+ }
+
+ return DC_OK;
+}
+
+bool link_validate_dpia_bandwidth(const struct dc_stream_state *stream, const unsigned int num_streams)
+{
+ bool ret = true;
+ int bw_needed[MAX_DPIA_NUM];
+ struct dc_link *link[MAX_DPIA_NUM];
+
+ if (!num_streams || num_streams > MAX_DPIA_NUM)
+ return ret;
+
+ for (uint8_t i = 0; i < num_streams; ++i) {
+
+ link[i] = stream[i].link;
+ bw_needed[i] = dc_bandwidth_in_kbps_from_timing(&stream[i].timing);
+ }
+ return ret;
+}
diff --git a/drivers/gpu/drm/amd/display/dc/link/link_validation.h b/drivers/gpu/drm/amd/display/dc/link/link_validation.h
new file mode 100644
index 000000000000..4a954317d0da
--- /dev/null
+++ b/drivers/gpu/drm/amd/display/dc/link/link_validation.h
@@ -0,0 +1,39 @@
+/*
+ * Copyright 2023 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ * Authors: AMD
+ *
+ */
+#ifndef __LINK_VALIDATION_H__
+#define __LINK_VALIDATION_H__
+#include "link.h"
+enum dc_status link_validate_mode_timing(
+ const struct dc_stream_state *stream,
+ struct dc_link *link,
+ const struct dc_crtc_timing *timing);
+bool link_validate_dpia_bandwidth(
+ const struct dc_stream_state *stream,
+ const unsigned int num_streams);
+uint32_t dp_link_bandwidth_kbps(
+ const struct dc_link *link,
+ const struct dc_link_settings *link_settings);
+
+#endif /* __LINK_VALIDATION_H__ */
diff --git a/drivers/gpu/drm/amd/display/dc/core/dc_link_ddc.c b/drivers/gpu/drm/amd/display/dc/link/protocols/link_ddc.c
index 651231387043..0fa1228bc178 100644
--- a/drivers/gpu/drm/amd/display/dc/core/dc_link_ddc.c
+++ b/drivers/gpu/drm/amd/display/dc/link/protocols/link_ddc.c
@@ -23,20 +23,20 @@
*
*/
-#include "dm_services.h"
-#include "dm_helpers.h"
-#include "gpio_service_interface.h"
-#include "include/ddc_service_types.h"
-#include "include/grph_object_id.h"
-#include "include/dpcd_defs.h"
-#include "include/logger_interface.h"
-#include "include/vector.h"
-#include "core_types.h"
-#include "dc_link_ddc.h"
+/* FILE POLICY AND INTENDED USAGE:
+ *
+ * This file implements generic display communication protocols such as i2c, aux
+ * and scdc. The file should not contain any specific applications of these
+ * protocols such as display capability query, detection, or handshaking such as
+ * link training.
+ */
+#include "link_ddc.h"
+#include "vector.h"
#include "dce/dce_aux.h"
-#include "dmub/inc/dmub_cmd.h"
+#include "dal_asic_id.h"
#include "link_dpcd.h"
-#include "include/dal_asic_id.h"
+#include "dm_helpers.h"
+#include "atomfirmware.h"
#define DC_LOGGER_INIT(logger)
@@ -45,86 +45,6 @@ static const uint8_t DP_VGA_DONGLE_BRANCH_DEV_NAME[] = "DpVga";
static const uint8_t DP_DVI_CONVERTER_ID_4[] = "m2DVIa";
static const uint8_t DP_DVI_CONVERTER_ID_5[] = "3393N2";
-#define AUX_POWER_UP_WA_DELAY 500
-#define I2C_OVER_AUX_DEFER_WA_DELAY 70
-#define DPVGA_DONGLE_AUX_DEFER_WA_DELAY 40
-#define I2C_OVER_AUX_DEFER_WA_DELAY_1MS 1
-
-/* CV smart dongle slave address for retrieving supported HDTV modes*/
-#define CV_SMART_DONGLE_ADDRESS 0x20
-/* DVI-HDMI dongle slave address for retrieving dongle signature*/
-#define DVI_HDMI_DONGLE_ADDRESS 0x68
-struct dvi_hdmi_dongle_signature_data {
- int8_t vendor[3];/* "AMD" */
- uint8_t version[2];
- uint8_t size;
- int8_t id[11];/* "6140063500G"*/
-};
-/* DP-HDMI dongle slave address for retrieving dongle signature*/
-#define DP_HDMI_DONGLE_ADDRESS 0x40
-static const uint8_t dp_hdmi_dongle_signature_str[] = "DP-HDMI ADAPTOR";
-#define DP_HDMI_DONGLE_SIGNATURE_EOT 0x04
-
-struct dp_hdmi_dongle_signature_data {
- int8_t id[15];/* "DP-HDMI ADAPTOR"*/
- uint8_t eot;/* end of transmition '\x4' */
-};
-
-/* SCDC Address defines (HDMI 2.0)*/
-#define HDMI_SCDC_WRITE_UPDATE_0_ARRAY 3
-#define HDMI_SCDC_ADDRESS 0x54
-#define HDMI_SCDC_SINK_VERSION 0x01
-#define HDMI_SCDC_SOURCE_VERSION 0x02
-#define HDMI_SCDC_UPDATE_0 0x10
-#define HDMI_SCDC_TMDS_CONFIG 0x20
-#define HDMI_SCDC_SCRAMBLER_STATUS 0x21
-#define HDMI_SCDC_CONFIG_0 0x30
-#define HDMI_SCDC_STATUS_FLAGS 0x40
-#define HDMI_SCDC_ERR_DETECT 0x50
-#define HDMI_SCDC_TEST_CONFIG 0xC0
-
-union hdmi_scdc_update_read_data {
- uint8_t byte[2];
- struct {
- uint8_t STATUS_UPDATE:1;
- uint8_t CED_UPDATE:1;
- uint8_t RR_TEST:1;
- uint8_t RESERVED:5;
- uint8_t RESERVED2:8;
- } fields;
-};
-
-union hdmi_scdc_status_flags_data {
- uint8_t byte;
- struct {
- uint8_t CLOCK_DETECTED:1;
- uint8_t CH0_LOCKED:1;
- uint8_t CH1_LOCKED:1;
- uint8_t CH2_LOCKED:1;
- uint8_t RESERVED:4;
- } fields;
-};
-
-union hdmi_scdc_ced_data {
- uint8_t byte[7];
- struct {
- uint8_t CH0_8LOW:8;
- uint8_t CH0_7HIGH:7;
- uint8_t CH0_VALID:1;
- uint8_t CH1_8LOW:8;
- uint8_t CH1_7HIGH:7;
- uint8_t CH1_VALID:1;
- uint8_t CH2_8LOW:8;
- uint8_t CH2_7HIGH:7;
- uint8_t CH2_VALID:1;
- uint8_t CHECKSUM:8;
- uint8_t RESERVED:8;
- uint8_t RESERVED2:8;
- uint8_t RESERVED3:8;
- uint8_t RESERVED4:4;
- } fields;
-};
-
struct i2c_payloads {
struct vector payloads;
};
@@ -133,7 +53,7 @@ struct aux_payloads {
struct vector payloads;
};
-static bool dal_ddc_i2c_payloads_create(
+static bool i2c_payloads_create(
struct dc_context *ctx,
struct i2c_payloads *payloads,
uint32_t count)
@@ -145,19 +65,27 @@ static bool dal_ddc_i2c_payloads_create(
return false;
}
-static struct i2c_payload *dal_ddc_i2c_payloads_get(struct i2c_payloads *p)
+static struct i2c_payload *i2c_payloads_get(struct i2c_payloads *p)
{
return (struct i2c_payload *)p->payloads.container;
}
-static uint32_t dal_ddc_i2c_payloads_get_count(struct i2c_payloads *p)
+static uint32_t i2c_payloads_get_count(struct i2c_payloads *p)
{
return p->payloads.count;
}
+static void i2c_payloads_destroy(struct i2c_payloads *p)
+{
+ if (!p)
+ return;
+
+ dal_vector_destruct(&p->payloads);
+}
+
#define DDC_MIN(a, b) (((a) < (b)) ? (a) : (b))
-void dal_ddc_i2c_payloads_add(
+static void i2c_payloads_add(
struct i2c_payloads *payloads,
uint32_t address,
uint32_t len,
@@ -225,7 +153,7 @@ static void ddc_service_construct(
ddc_service->wa.raw = 0;
}
-struct ddc_service *dal_ddc_service_create(
+struct ddc_service *link_create_ddc_service(
struct ddc_service_init_data *init_data)
{
struct ddc_service *ddc_service;
@@ -245,7 +173,7 @@ static void ddc_service_destruct(struct ddc_service *ddc)
dal_gpio_destroy_ddc(&ddc->ddc_pin);
}
-void dal_ddc_service_destroy(struct ddc_service **ddc)
+void link_destroy_ddc_service(struct ddc_service **ddc)
{
if (!ddc || !*ddc) {
BREAK_TO_DEBUGGER();
@@ -256,19 +184,14 @@ void dal_ddc_service_destroy(struct ddc_service **ddc)
*ddc = NULL;
}
-enum ddc_service_type dal_ddc_service_get_type(struct ddc_service *ddc)
-{
- return DDC_SERVICE_TYPE_CONNECTOR;
-}
-
-void dal_ddc_service_set_transaction_type(
+void set_ddc_transaction_type(
struct ddc_service *ddc,
enum ddc_transaction_type type)
{
ddc->transaction_type = type;
}
-bool dal_ddc_service_is_in_aux_transaction_mode(struct ddc_service *ddc)
+bool link_is_in_aux_transaction_mode(struct ddc_service *ddc)
{
switch (ddc->transaction_type) {
case DDC_TRANSACTION_TYPE_I2C_OVER_AUX:
@@ -281,7 +204,7 @@ bool dal_ddc_service_is_in_aux_transaction_mode(struct ddc_service *ddc)
return false;
}
-void ddc_service_set_dongle_type(struct ddc_service *ddc,
+void set_dongle_type(struct ddc_service *ddc,
enum display_dongle_type dongle_type)
{
ddc->dongle_type = dongle_type;
@@ -323,7 +246,7 @@ static uint32_t defer_delay_converter_wa(
#define DP_TRANSLATOR_DELAY 5
-uint32_t get_defer_delay(struct ddc_service *ddc)
+uint32_t link_get_aux_defer_delay(struct ddc_service *ddc)
{
uint32_t defer_delay = 0;
@@ -351,175 +274,45 @@ uint32_t get_defer_delay(struct ddc_service *ddc)
return defer_delay;
}
-static bool i2c_read(
- struct ddc_service *ddc,
- uint32_t address,
- uint8_t *buffer,
- uint32_t len)
-{
- uint8_t offs_data = 0;
- struct i2c_payload payloads[2] = {
- {
- .write = true,
- .address = address,
- .length = 1,
- .data = &offs_data },
- {
- .write = false,
- .address = address,
- .length = len,
- .data = buffer } };
-
- struct i2c_command command = {
- .payloads = payloads,
- .number_of_payloads = 2,
- .engine = DDC_I2C_COMMAND_ENGINE,
- .speed = ddc->ctx->dc->caps.i2c_speed_in_khz };
-
- return dm_helpers_submit_i2c(
- ddc->ctx,
- ddc->link,
- &command);
-}
-
-void dal_ddc_service_i2c_query_dp_dual_mode_adaptor(
- struct ddc_service *ddc,
- struct display_sink_capability *sink_cap)
+static bool submit_aux_command(struct ddc_service *ddc,
+ struct aux_payload *payload)
{
- uint8_t i;
- bool is_valid_hdmi_signature;
- enum display_dongle_type *dongle = &sink_cap->dongle_type;
- uint8_t type2_dongle_buf[DP_ADAPTOR_TYPE2_SIZE];
- bool is_type2_dongle = false;
- int retry_count = 2;
- struct dp_hdmi_dongle_signature_data *dongle_signature;
-
- /* Assume we have no valid DP passive dongle connected */
- *dongle = DISPLAY_DONGLE_NONE;
- sink_cap->max_hdmi_pixel_clock = DP_ADAPTOR_HDMI_SAFE_MAX_TMDS_CLK;
-
- /* Read DP-HDMI dongle I2c (no response interpreted as DP-DVI dongle)*/
- if (!i2c_read(
- ddc,
- DP_HDMI_DONGLE_ADDRESS,
- type2_dongle_buf,
- sizeof(type2_dongle_buf))) {
- /* Passive HDMI dongles can sometimes fail here without retrying*/
- while (retry_count > 0) {
- if (i2c_read(ddc,
- DP_HDMI_DONGLE_ADDRESS,
- type2_dongle_buf,
- sizeof(type2_dongle_buf)))
- break;
- retry_count--;
- }
- if (retry_count == 0) {
- *dongle = DISPLAY_DONGLE_DP_DVI_DONGLE;
- sink_cap->max_hdmi_pixel_clock = DP_ADAPTOR_DVI_MAX_TMDS_CLK;
-
- CONN_DATA_DETECT(ddc->link, type2_dongle_buf, sizeof(type2_dongle_buf),
- "DP-DVI passive dongle %dMhz: ",
- DP_ADAPTOR_DVI_MAX_TMDS_CLK / 1000);
- return;
- }
- }
-
- /* Check if Type 2 dongle.*/
- if (type2_dongle_buf[DP_ADAPTOR_TYPE2_REG_ID] == DP_ADAPTOR_TYPE2_ID)
- is_type2_dongle = true;
-
- dongle_signature =
- (struct dp_hdmi_dongle_signature_data *)type2_dongle_buf;
-
- is_valid_hdmi_signature = true;
+ uint32_t retrieved = 0;
+ bool ret = false;
- /* Check EOT */
- if (dongle_signature->eot != DP_HDMI_DONGLE_SIGNATURE_EOT) {
- is_valid_hdmi_signature = false;
- }
+ if (!ddc)
+ return false;
- /* Check signature */
- for (i = 0; i < sizeof(dongle_signature->id); ++i) {
- /* If its not the right signature,
- * skip mismatch in subversion byte.*/
- if (dongle_signature->id[i] !=
- dp_hdmi_dongle_signature_str[i] && i != 3) {
+ if (!payload)
+ return false;
- if (is_type2_dongle) {
- is_valid_hdmi_signature = false;
- break;
- }
+ do {
+ struct aux_payload current_payload;
+ bool is_end_of_payload = (retrieved + DEFAULT_AUX_MAX_DATA_SIZE) >=
+ payload->length;
+ uint32_t payload_length = is_end_of_payload ?
+ payload->length - retrieved : DEFAULT_AUX_MAX_DATA_SIZE;
- }
- }
+ current_payload.address = payload->address;
+ current_payload.data = &payload->data[retrieved];
+ current_payload.defer_delay = payload->defer_delay;
+ current_payload.i2c_over_aux = payload->i2c_over_aux;
+ current_payload.length = payload_length;
+ /* set mot (middle of transaction) to false if it is the last payload */
+ current_payload.mot = is_end_of_payload ? payload->mot:true;
+ current_payload.write_status_update = false;
+ current_payload.reply = payload->reply;
+ current_payload.write = payload->write;
- if (is_type2_dongle) {
- uint32_t max_tmds_clk =
- type2_dongle_buf[DP_ADAPTOR_TYPE2_REG_MAX_TMDS_CLK];
-
- max_tmds_clk = max_tmds_clk * 2 + max_tmds_clk / 2;
-
- if (0 == max_tmds_clk ||
- max_tmds_clk < DP_ADAPTOR_TYPE2_MIN_TMDS_CLK ||
- max_tmds_clk > DP_ADAPTOR_TYPE2_MAX_TMDS_CLK) {
- *dongle = DISPLAY_DONGLE_DP_DVI_DONGLE;
-
- CONN_DATA_DETECT(ddc->link, type2_dongle_buf,
- sizeof(type2_dongle_buf),
- "DP-DVI passive dongle %dMhz: ",
- DP_ADAPTOR_DVI_MAX_TMDS_CLK / 1000);
- } else {
- if (is_valid_hdmi_signature == true) {
- *dongle = DISPLAY_DONGLE_DP_HDMI_DONGLE;
-
- CONN_DATA_DETECT(ddc->link, type2_dongle_buf,
- sizeof(type2_dongle_buf),
- "Type 2 DP-HDMI passive dongle %dMhz: ",
- max_tmds_clk);
- } else {
- *dongle = DISPLAY_DONGLE_DP_HDMI_MISMATCHED_DONGLE;
-
- CONN_DATA_DETECT(ddc->link, type2_dongle_buf,
- sizeof(type2_dongle_buf),
- "Type 2 DP-HDMI passive dongle (no signature) %dMhz: ",
- max_tmds_clk);
-
- }
-
- /* Multiply by 1000 to convert to kHz. */
- sink_cap->max_hdmi_pixel_clock =
- max_tmds_clk * 1000;
- }
- sink_cap->is_dongle_type_one = false;
+ ret = link_aux_transfer_with_retries_no_mutex(ddc, &current_payload);
- } else {
- if (is_valid_hdmi_signature == true) {
- *dongle = DISPLAY_DONGLE_DP_HDMI_DONGLE;
-
- CONN_DATA_DETECT(ddc->link, type2_dongle_buf,
- sizeof(type2_dongle_buf),
- "Type 1 DP-HDMI passive dongle %dMhz: ",
- sink_cap->max_hdmi_pixel_clock / 1000);
- } else {
- *dongle = DISPLAY_DONGLE_DP_HDMI_MISMATCHED_DONGLE;
-
- CONN_DATA_DETECT(ddc->link, type2_dongle_buf,
- sizeof(type2_dongle_buf),
- "Type 1 DP-HDMI passive dongle (no signature) %dMhz: ",
- sink_cap->max_hdmi_pixel_clock / 1000);
- }
- sink_cap->is_dongle_type_one = true;
- }
+ retrieved += payload_length;
+ } while (retrieved < payload->length && ret == true);
- return;
+ return ret;
}
-enum {
- DP_SINK_CAP_SIZE =
- DP_EDP_CONFIGURATION_CAP - DP_DPCD_REV + 1
-};
-
-bool dal_ddc_service_query_ddc_data(
+bool link_query_ddc_data(
struct ddc_service *ddc,
uint32_t address,
uint8_t *write_buf,
@@ -529,7 +322,7 @@ bool dal_ddc_service_query_ddc_data(
{
bool success = true;
uint32_t payload_size =
- dal_ddc_service_is_in_aux_transaction_mode(ddc) ?
+ link_is_in_aux_transaction_mode(ddc) ?
DEFAULT_AUX_MAX_DATA_SIZE : EDID_SEGMENT_SIZE;
uint32_t write_payloads =
@@ -543,13 +336,13 @@ bool dal_ddc_service_query_ddc_data(
if (!payloads_num)
return false;
- if (dal_ddc_service_is_in_aux_transaction_mode(ddc)) {
+ if (link_is_in_aux_transaction_mode(ddc)) {
struct aux_payload payload;
payload.i2c_over_aux = true;
payload.address = address;
payload.reply = NULL;
- payload.defer_delay = get_defer_delay(ddc);
+ payload.defer_delay = link_get_aux_defer_delay(ddc);
payload.write_status_update = false;
if (write_size != 0) {
@@ -561,7 +354,7 @@ bool dal_ddc_service_query_ddc_data(
payload.length = write_size;
payload.data = write_buf;
- success = dal_ddc_submit_aux_command(ddc, &payload);
+ success = submit_aux_command(ddc, &payload);
}
if (read_size != 0 && success) {
@@ -573,86 +366,41 @@ bool dal_ddc_service_query_ddc_data(
payload.length = read_size;
payload.data = read_buf;
- success = dal_ddc_submit_aux_command(ddc, &payload);
+ success = submit_aux_command(ddc, &payload);
}
} else {
struct i2c_command command = {0};
struct i2c_payloads payloads;
- if (!dal_ddc_i2c_payloads_create(ddc->ctx, &payloads, payloads_num))
+ if (!i2c_payloads_create(ddc->ctx, &payloads, payloads_num))
return false;
- command.payloads = dal_ddc_i2c_payloads_get(&payloads);
+ command.payloads = i2c_payloads_get(&payloads);
command.number_of_payloads = 0;
command.engine = DDC_I2C_COMMAND_ENGINE;
command.speed = ddc->ctx->dc->caps.i2c_speed_in_khz;
- dal_ddc_i2c_payloads_add(
+ i2c_payloads_add(
&payloads, address, write_size, write_buf, true);
- dal_ddc_i2c_payloads_add(
+ i2c_payloads_add(
&payloads, address, read_size, read_buf, false);
command.number_of_payloads =
- dal_ddc_i2c_payloads_get_count(&payloads);
+ i2c_payloads_get_count(&payloads);
success = dm_helpers_submit_i2c(
ddc->ctx,
ddc->link,
&command);
- dal_vector_destruct(&payloads.payloads);
+ i2c_payloads_destroy(&payloads);
}
return success;
}
-bool dal_ddc_submit_aux_command(struct ddc_service *ddc,
- struct aux_payload *payload)
-{
- uint32_t retrieved = 0;
- bool ret = false;
-
- if (!ddc)
- return false;
-
- if (!payload)
- return false;
-
- do {
- struct aux_payload current_payload;
- bool is_end_of_payload = (retrieved + DEFAULT_AUX_MAX_DATA_SIZE) >=
- payload->length;
- uint32_t payload_length = is_end_of_payload ?
- payload->length - retrieved : DEFAULT_AUX_MAX_DATA_SIZE;
-
- current_payload.address = payload->address;
- current_payload.data = &payload->data[retrieved];
- current_payload.defer_delay = payload->defer_delay;
- current_payload.i2c_over_aux = payload->i2c_over_aux;
- current_payload.length = payload_length;
- /* set mot (middle of transaction) to false if it is the last payload */
- current_payload.mot = is_end_of_payload ? payload->mot:true;
- current_payload.write_status_update = false;
- current_payload.reply = payload->reply;
- current_payload.write = payload->write;
-
- ret = dc_link_aux_transfer_with_retries(ddc, &current_payload);
-
- retrieved += payload_length;
- } while (retrieved < payload->length && ret == true);
-
- return ret;
-}
-
-/* dc_link_aux_transfer_raw() - Attempt to transfer
- * the given aux payload. This function does not perform
- * retries or handle error states. The reply is returned
- * in the payload->reply and the result through
- * *operation_result. Returns the number of bytes transferred,
- * or -1 on a failure.
- */
-int dc_link_aux_transfer_raw(struct ddc_service *ddc,
+int link_aux_transfer_raw(struct ddc_service *ddc,
struct aux_payload *payload,
enum aux_return_code_type *operation_result)
{
@@ -664,22 +412,14 @@ int dc_link_aux_transfer_raw(struct ddc_service *ddc,
}
}
-/* dc_link_aux_transfer_with_retries() - Attempt to submit an
- * aux payload, retrying on timeouts, defers, and busy states
- * as outlined in the DP spec. Returns true if the request
- * was successful.
- *
- * Unless you want to implement your own retry semantics, this
- * is probably the one you want.
- */
-bool dc_link_aux_transfer_with_retries(struct ddc_service *ddc,
+bool link_aux_transfer_with_retries_no_mutex(struct ddc_service *ddc,
struct aux_payload *payload)
{
return dce_aux_transfer_with_retries(ddc, payload);
}
-bool dc_link_aux_try_to_configure_timeout(struct ddc_service *ddc,
+bool try_to_configure_aux_timeout(struct ddc_service *ddc,
uint32_t timeout)
{
bool result = false;
@@ -712,20 +452,12 @@ bool dc_link_aux_try_to_configure_timeout(struct ddc_service *ddc,
return result;
}
-/*test only function*/
-void dal_ddc_service_set_ddc_pin(
- struct ddc_service *ddc_service,
- struct ddc *ddc)
-{
- ddc_service->ddc_pin = ddc;
-}
-
-struct ddc *dal_ddc_service_get_ddc_pin(struct ddc_service *ddc_service)
+struct ddc *get_ddc_pin(struct ddc_service *ddc_service)
{
return ddc_service->ddc_pin;
}
-void dal_ddc_service_write_scdc_data(struct ddc_service *ddc_service,
+void write_scdc_data(struct ddc_service *ddc_service,
uint32_t pix_clk,
bool lte_340_scramble)
{
@@ -740,13 +472,13 @@ void dal_ddc_service_write_scdc_data(struct ddc_service *ddc_service,
ddc_service->link->local_sink->edid_caps.panel_patch.skip_scdc_overwrite)
return;
- dal_ddc_service_query_ddc_data(ddc_service, slave_address, &offset,
+ link_query_ddc_data(ddc_service, slave_address, &offset,
sizeof(offset), &sink_version, sizeof(sink_version));
if (sink_version == 1) {
/*Source Version = 1*/
write_buffer[0] = HDMI_SCDC_SOURCE_VERSION;
write_buffer[1] = 1;
- dal_ddc_service_query_ddc_data(ddc_service, slave_address,
+ link_query_ddc_data(ddc_service, slave_address,
write_buffer, sizeof(write_buffer), NULL, 0);
/*Read Request from SCDC caps*/
}
@@ -759,11 +491,11 @@ void dal_ddc_service_write_scdc_data(struct ddc_service *ddc_service,
} else {
write_buffer[1] = 0;
}
- dal_ddc_service_query_ddc_data(ddc_service, slave_address, write_buffer,
+ link_query_ddc_data(ddc_service, slave_address, write_buffer,
sizeof(write_buffer), NULL, 0);
}
-void dal_ddc_service_read_scdc_data(struct ddc_service *ddc_service)
+void read_scdc_data(struct ddc_service *ddc_service)
{
uint8_t slave_address = HDMI_SCDC_ADDRESS;
uint8_t offset = HDMI_SCDC_TMDS_CONFIG;
@@ -773,20 +505,19 @@ void dal_ddc_service_read_scdc_data(struct ddc_service *ddc_service)
ddc_service->link->local_sink->edid_caps.panel_patch.skip_scdc_overwrite)
return;
- dal_ddc_service_query_ddc_data(ddc_service, slave_address, &offset,
+ link_query_ddc_data(ddc_service, slave_address, &offset,
sizeof(offset), &tmds_config, sizeof(tmds_config));
if (tmds_config & 0x1) {
union hdmi_scdc_status_flags_data status_data = {0};
uint8_t scramble_status = 0;
offset = HDMI_SCDC_SCRAMBLER_STATUS;
- dal_ddc_service_query_ddc_data(ddc_service, slave_address,
+ link_query_ddc_data(ddc_service, slave_address,
&offset, sizeof(offset), &scramble_status,
sizeof(scramble_status));
offset = HDMI_SCDC_STATUS_FLAGS;
- dal_ddc_service_query_ddc_data(ddc_service, slave_address,
+ link_query_ddc_data(ddc_service, slave_address,
&offset, sizeof(offset), &status_data.byte,
sizeof(status_data.byte));
}
}
-
diff --git a/drivers/gpu/drm/amd/display/dc/link/protocols/link_ddc.h b/drivers/gpu/drm/amd/display/dc/link/protocols/link_ddc.h
new file mode 100644
index 000000000000..860ef15d7f1b
--- /dev/null
+++ b/drivers/gpu/drm/amd/display/dc/link/protocols/link_ddc.h
@@ -0,0 +1,92 @@
+/*
+ * Copyright 2012-15 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ * Authors: AMD
+ *
+ */
+
+#ifndef __DAL_DDC_SERVICE_H__
+#define __DAL_DDC_SERVICE_H__
+
+#include "link.h"
+
+#define AUX_POWER_UP_WA_DELAY 500
+#define I2C_OVER_AUX_DEFER_WA_DELAY 70
+#define DPVGA_DONGLE_AUX_DEFER_WA_DELAY 40
+#define I2C_OVER_AUX_DEFER_WA_DELAY_1MS 1
+#define LINK_AUX_DEFAULT_LTTPR_TIMEOUT_PERIOD 3200 /*us*/
+#define LINK_AUX_DEFAULT_TIMEOUT_PERIOD 552 /*us*/
+
+#define EDID_SEGMENT_SIZE 256
+
+struct ddc_service *link_create_ddc_service(
+ struct ddc_service_init_data *ddc_init_data);
+
+void link_destroy_ddc_service(struct ddc_service **ddc);
+
+void set_ddc_transaction_type(
+ struct ddc_service *ddc,
+ enum ddc_transaction_type type);
+
+uint32_t link_get_aux_defer_delay(struct ddc_service *ddc);
+
+bool link_is_in_aux_transaction_mode(struct ddc_service *ddc);
+
+bool try_to_configure_aux_timeout(struct ddc_service *ddc,
+ uint32_t timeout);
+
+bool link_query_ddc_data(
+ struct ddc_service *ddc,
+ uint32_t address,
+ uint8_t *write_buf,
+ uint32_t write_size,
+ uint8_t *read_buf,
+ uint32_t read_size);
+
+/* Attempt to submit an aux payload, retrying on timeouts, defers, and busy
+ * states as outlined in the DP spec. Returns true if the request was
+ * successful.
+ *
+ * NOTE: The function requires explicit mutex on DM side in order to prevent
+ * potential race condition. DC components should call the dpcd read/write
+ * function in dm_helpers in order to access dpcd safely
+ */
+bool link_aux_transfer_with_retries_no_mutex(struct ddc_service *ddc,
+ struct aux_payload *payload);
+
+void write_scdc_data(
+ struct ddc_service *ddc_service,
+ uint32_t pix_clk,
+ bool lte_340_scramble);
+
+void read_scdc_data(
+ struct ddc_service *ddc_service);
+
+void set_dongle_type(struct ddc_service *ddc,
+ enum display_dongle_type dongle_type);
+
+struct ddc *get_ddc_pin(struct ddc_service *ddc_service);
+
+int link_aux_transfer_raw(struct ddc_service *ddc,
+ struct aux_payload *payload,
+ enum aux_return_code_type *operation_result);
+#endif /* __DAL_DDC_SERVICE_H__ */
+
diff --git a/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_capability.c b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_capability.c
new file mode 100644
index 000000000000..ba98013fecd0
--- /dev/null
+++ b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_capability.c
@@ -0,0 +1,2259 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ * Authors: AMD
+ *
+ */
+
+/* FILE POLICY AND INTENDED USAGE:
+ * This file implements dp specific link capability retrieval sequence. It is
+ * responsible for retrieving, parsing, overriding, deciding capability obtained
+ * from dp link. Link capability consists of encoders, DPRXs, cables, retimers,
+ * usb and all other possible backend capabilities. Other components should
+ * include this header file in order to access link capability. Accessing link
+ * capability by dereferencing dc_link outside dp_link_capability is not a
+ * recommended method as it makes the component dependent on the underlying data
+ * structure used to represent link capability instead of function interfaces.
+ */
+
+#include "link_dp_capability.h"
+#include "link_ddc.h"
+#include "link_dpcd.h"
+#include "link_dp_dpia.h"
+#include "link_dp_phy.h"
+#include "link_edp_panel_control.h"
+#include "link_dp_irq_handler.h"
+#include "link/accessories/link_dp_trace.h"
+#include "link/link_detection.h"
+#include "link/link_validation.h"
+#include "link_dp_training.h"
+#include "atomfirmware.h"
+#include "resource.h"
+#include "link_enc_cfg.h"
+#include "dc_dmub_srv.h"
+#include "gpio_service_interface.h"
+
+#define DC_LOGGER \
+ link->ctx->logger
+#define DC_TRACE_LEVEL_MESSAGE(...) /* do nothing */
+
+#ifndef MAX
+#define MAX(X, Y) ((X) > (Y) ? (X) : (Y))
+#endif
+#ifndef MIN
+#define MIN(X, Y) ((X) < (Y) ? (X) : (Y))
+#endif
+
+struct dp_lt_fallback_entry {
+ enum dc_lane_count lane_count;
+ enum dc_link_rate link_rate;
+};
+
+static const struct dp_lt_fallback_entry dp_lt_fallbacks[] = {
+ /* This link training fallback array is ordered by
+ * link bandwidth from highest to lowest.
+ * DP specs makes it a normative policy to always
+ * choose the next highest link bandwidth during
+ * link training fallback.
+ */
+ {LANE_COUNT_FOUR, LINK_RATE_UHBR20},
+ {LANE_COUNT_FOUR, LINK_RATE_UHBR13_5},
+ {LANE_COUNT_TWO, LINK_RATE_UHBR20},
+ {LANE_COUNT_FOUR, LINK_RATE_UHBR10},
+ {LANE_COUNT_TWO, LINK_RATE_UHBR13_5},
+ {LANE_COUNT_FOUR, LINK_RATE_HIGH3},
+ {LANE_COUNT_ONE, LINK_RATE_UHBR20},
+ {LANE_COUNT_TWO, LINK_RATE_UHBR10},
+ {LANE_COUNT_FOUR, LINK_RATE_HIGH2},
+ {LANE_COUNT_ONE, LINK_RATE_UHBR13_5},
+ {LANE_COUNT_TWO, LINK_RATE_HIGH3},
+ {LANE_COUNT_ONE, LINK_RATE_UHBR10},
+ {LANE_COUNT_TWO, LINK_RATE_HIGH2},
+ {LANE_COUNT_FOUR, LINK_RATE_HIGH},
+ {LANE_COUNT_ONE, LINK_RATE_HIGH3},
+ {LANE_COUNT_FOUR, LINK_RATE_LOW},
+ {LANE_COUNT_ONE, LINK_RATE_HIGH2},
+ {LANE_COUNT_TWO, LINK_RATE_HIGH},
+ {LANE_COUNT_TWO, LINK_RATE_LOW},
+ {LANE_COUNT_ONE, LINK_RATE_HIGH},
+ {LANE_COUNT_ONE, LINK_RATE_LOW},
+};
+
+static const struct dc_link_settings fail_safe_link_settings = {
+ .lane_count = LANE_COUNT_ONE,
+ .link_rate = LINK_RATE_LOW,
+ .link_spread = LINK_SPREAD_DISABLED,
+};
+
+bool is_dp_active_dongle(const struct dc_link *link)
+{
+ return (link->dpcd_caps.dongle_type >= DISPLAY_DONGLE_DP_VGA_CONVERTER) &&
+ (link->dpcd_caps.dongle_type <= DISPLAY_DONGLE_DP_HDMI_CONVERTER);
+}
+
+bool is_dp_branch_device(const struct dc_link *link)
+{
+ return link->dpcd_caps.is_branch_dev;
+}
+
+static int translate_dpcd_max_bpc(enum dpcd_downstream_port_max_bpc bpc)
+{
+ switch (bpc) {
+ case DOWN_STREAM_MAX_8BPC:
+ return 8;
+ case DOWN_STREAM_MAX_10BPC:
+ return 10;
+ case DOWN_STREAM_MAX_12BPC:
+ return 12;
+ case DOWN_STREAM_MAX_16BPC:
+ return 16;
+ default:
+ break;
+ }
+
+ return -1;
+}
+
+uint8_t dp_parse_lttpr_repeater_count(uint8_t lttpr_repeater_count)
+{
+ switch (lttpr_repeater_count) {
+ case 0x80: // 1 lttpr repeater
+ return 1;
+ case 0x40: // 2 lttpr repeaters
+ return 2;
+ case 0x20: // 3 lttpr repeaters
+ return 3;
+ case 0x10: // 4 lttpr repeaters
+ return 4;
+ case 0x08: // 5 lttpr repeaters
+ return 5;
+ case 0x04: // 6 lttpr repeaters
+ return 6;
+ case 0x02: // 7 lttpr repeaters
+ return 7;
+ case 0x01: // 8 lttpr repeaters
+ return 8;
+ default:
+ break;
+ }
+ return 0; // invalid value
+}
+
+uint32_t link_bw_kbps_from_raw_frl_link_rate_data(uint8_t bw)
+{
+ switch (bw) {
+ case 0b001:
+ return 9000000;
+ case 0b010:
+ return 18000000;
+ case 0b011:
+ return 24000000;
+ case 0b100:
+ return 32000000;
+ case 0b101:
+ return 40000000;
+ case 0b110:
+ return 48000000;
+ }
+
+ return 0;
+}
+
+static enum dc_link_rate linkRateInKHzToLinkRateMultiplier(uint32_t link_rate_in_khz)
+{
+ enum dc_link_rate link_rate;
+ // LinkRate is normally stored as a multiplier of 0.27 Gbps per lane. Do the translation.
+ switch (link_rate_in_khz) {
+ case 1620000:
+ link_rate = LINK_RATE_LOW; // Rate_1 (RBR) - 1.62 Gbps/Lane
+ break;
+ case 2160000:
+ link_rate = LINK_RATE_RATE_2; // Rate_2 - 2.16 Gbps/Lane
+ break;
+ case 2430000:
+ link_rate = LINK_RATE_RATE_3; // Rate_3 - 2.43 Gbps/Lane
+ break;
+ case 2700000:
+ link_rate = LINK_RATE_HIGH; // Rate_4 (HBR) - 2.70 Gbps/Lane
+ break;
+ case 3240000:
+ link_rate = LINK_RATE_RBR2; // Rate_5 (RBR2)- 3.24 Gbps/Lane
+ break;
+ case 4320000:
+ link_rate = LINK_RATE_RATE_6; // Rate_6 - 4.32 Gbps/Lane
+ break;
+ case 5400000:
+ link_rate = LINK_RATE_HIGH2; // Rate_7 (HBR2)- 5.40 Gbps/Lane
+ break;
+ case 6750000:
+ link_rate = LINK_RATE_RATE_8; // Rate_8 - 6.75 Gbps/Lane
+ break;
+ case 8100000:
+ link_rate = LINK_RATE_HIGH3; // Rate_9 (HBR3)- 8.10 Gbps/Lane
+ break;
+ default:
+ link_rate = LINK_RATE_UNKNOWN;
+ break;
+ }
+ return link_rate;
+}
+
+static union dp_cable_id intersect_cable_id(
+ union dp_cable_id *a, union dp_cable_id *b)
+{
+ union dp_cable_id out;
+
+ out.bits.UHBR10_20_CAPABILITY = MIN(a->bits.UHBR10_20_CAPABILITY,
+ b->bits.UHBR10_20_CAPABILITY);
+ out.bits.UHBR13_5_CAPABILITY = MIN(a->bits.UHBR13_5_CAPABILITY,
+ b->bits.UHBR13_5_CAPABILITY);
+ out.bits.CABLE_TYPE = MAX(a->bits.CABLE_TYPE, b->bits.CABLE_TYPE);
+
+ return out;
+}
+
+/*
+ * Return PCON's post FRL link training supported BW if its non-zero, otherwise return max_supported_frl_bw.
+ */
+static uint32_t intersect_frl_link_bw_support(
+ const uint32_t max_supported_frl_bw_in_kbps,
+ const union hdmi_encoded_link_bw hdmi_encoded_link_bw)
+{
+ uint32_t supported_bw_in_kbps = max_supported_frl_bw_in_kbps;
+
+ // HDMI_ENCODED_LINK_BW bits are only valid if HDMI Link Configuration bit is 1 (FRL mode)
+ if (hdmi_encoded_link_bw.bits.FRL_MODE) {
+ if (hdmi_encoded_link_bw.bits.BW_48Gbps)
+ supported_bw_in_kbps = 48000000;
+ else if (hdmi_encoded_link_bw.bits.BW_40Gbps)
+ supported_bw_in_kbps = 40000000;
+ else if (hdmi_encoded_link_bw.bits.BW_32Gbps)
+ supported_bw_in_kbps = 32000000;
+ else if (hdmi_encoded_link_bw.bits.BW_24Gbps)
+ supported_bw_in_kbps = 24000000;
+ else if (hdmi_encoded_link_bw.bits.BW_18Gbps)
+ supported_bw_in_kbps = 18000000;
+ else if (hdmi_encoded_link_bw.bits.BW_9Gbps)
+ supported_bw_in_kbps = 9000000;
+ }
+
+ return supported_bw_in_kbps;
+}
+
+static enum clock_source_id get_clock_source_id(struct dc_link *link)
+{
+ enum clock_source_id dp_cs_id = CLOCK_SOURCE_ID_UNDEFINED;
+ struct clock_source *dp_cs = link->dc->res_pool->dp_clock_source;
+
+ if (dp_cs != NULL) {
+ dp_cs_id = dp_cs->id;
+ } else {
+ /*
+ * dp clock source is not initialized for some reason.
+ * Should not happen, CLOCK_SOURCE_ID_EXTERNAL will be used
+ */
+ ASSERT(dp_cs);
+ }
+
+ return dp_cs_id;
+}
+
+static void dp_wa_power_up_0010FA(struct dc_link *link, uint8_t *dpcd_data,
+ int length)
+{
+ int retry = 0;
+
+ if (!link->dpcd_caps.dpcd_rev.raw) {
+ do {
+ dpcd_write_rx_power_ctrl(link, true);
+ core_link_read_dpcd(link, DP_DPCD_REV,
+ dpcd_data, length);
+ link->dpcd_caps.dpcd_rev.raw = dpcd_data[
+ DP_DPCD_REV -
+ DP_DPCD_REV];
+ } while (retry++ < 4 && !link->dpcd_caps.dpcd_rev.raw);
+ }
+
+ if (link->dpcd_caps.dongle_type == DISPLAY_DONGLE_DP_VGA_CONVERTER) {
+ switch (link->dpcd_caps.branch_dev_id) {
+ /* 0010FA active dongles (DP-VGA, DP-DLDVI converters) power down
+ * all internal circuits including AUX communication preventing
+ * reading DPCD table and EDID (spec violation).
+ * Encoder will skip DP RX power down on disable_output to
+ * keep receiver powered all the time.*/
+ case DP_BRANCH_DEVICE_ID_0010FA:
+ case DP_BRANCH_DEVICE_ID_0080E1:
+ case DP_BRANCH_DEVICE_ID_00E04C:
+ link->wa_flags.dp_keep_receiver_powered = true;
+ break;
+
+ /* TODO: May need work around for other dongles. */
+ default:
+ link->wa_flags.dp_keep_receiver_powered = false;
+ break;
+ }
+ } else
+ link->wa_flags.dp_keep_receiver_powered = false;
+}
+
+bool dp_is_fec_supported(const struct dc_link *link)
+{
+ /* TODO - use asic cap instead of link_enc->features
+ * we no longer know which link enc to use for this link before commit
+ */
+ struct link_encoder *link_enc = NULL;
+
+ link_enc = link_enc_cfg_get_link_enc(link);
+ ASSERT(link_enc);
+
+ return (dc_is_dp_signal(link->connector_signal) && link_enc &&
+ link_enc->features.fec_supported &&
+ link->dpcd_caps.fec_cap.bits.FEC_CAPABLE &&
+ !IS_FPGA_MAXIMUS_DC(link->ctx->dce_environment));
+}
+
+bool dp_should_enable_fec(const struct dc_link *link)
+{
+ bool force_disable = false;
+
+ if (link->fec_state == dc_link_fec_enabled)
+ force_disable = false;
+ else if (link->connector_signal != SIGNAL_TYPE_DISPLAY_PORT_MST &&
+ link->local_sink &&
+ link->local_sink->edid_caps.panel_patch.disable_fec)
+ force_disable = true;
+ else if (link->connector_signal == SIGNAL_TYPE_EDP
+ && (link->dpcd_caps.dsc_caps.dsc_basic_caps.fields.
+ dsc_support.DSC_SUPPORT == false
+ || link->panel_config.dsc.disable_dsc_edp
+ || !link->dc->caps.edp_dsc_support))
+ force_disable = true;
+
+ return !force_disable && dp_is_fec_supported(link);
+}
+
+bool dp_is_128b_132b_signal(struct pipe_ctx *pipe_ctx)
+{
+ /* If this assert is hit then we have a link encoder dynamic management issue */
+ ASSERT(pipe_ctx->stream_res.hpo_dp_stream_enc ? pipe_ctx->link_res.hpo_dp_link_enc != NULL : true);
+ return (pipe_ctx->stream_res.hpo_dp_stream_enc &&
+ pipe_ctx->link_res.hpo_dp_link_enc &&
+ dc_is_dp_signal(pipe_ctx->stream->signal));
+}
+
+bool dp_is_lttpr_present(struct dc_link *link)
+{
+ return (dp_parse_lttpr_repeater_count(link->dpcd_caps.lttpr_caps.phy_repeater_cnt) != 0 &&
+ link->dpcd_caps.lttpr_caps.max_lane_count > 0 &&
+ link->dpcd_caps.lttpr_caps.max_lane_count <= 4 &&
+ link->dpcd_caps.lttpr_caps.revision.raw >= 0x14);
+}
+
+/* in DP compliance test, DPR-120 may have
+ * a random value in its MAX_LINK_BW dpcd field.
+ * We map it to the maximum supported link rate that
+ * is smaller than MAX_LINK_BW in this case.
+ */
+static enum dc_link_rate get_link_rate_from_max_link_bw(
+ uint8_t max_link_bw)
+{
+ enum dc_link_rate link_rate;
+
+ if (max_link_bw >= LINK_RATE_HIGH3) {
+ link_rate = LINK_RATE_HIGH3;
+ } else if (max_link_bw < LINK_RATE_HIGH3
+ && max_link_bw >= LINK_RATE_HIGH2) {
+ link_rate = LINK_RATE_HIGH2;
+ } else if (max_link_bw < LINK_RATE_HIGH2
+ && max_link_bw >= LINK_RATE_HIGH) {
+ link_rate = LINK_RATE_HIGH;
+ } else if (max_link_bw < LINK_RATE_HIGH
+ && max_link_bw >= LINK_RATE_LOW) {
+ link_rate = LINK_RATE_LOW;
+ } else {
+ link_rate = LINK_RATE_UNKNOWN;
+ }
+
+ return link_rate;
+}
+
+static enum dc_link_rate get_lttpr_max_link_rate(struct dc_link *link)
+{
+ enum dc_link_rate lttpr_max_link_rate = link->dpcd_caps.lttpr_caps.max_link_rate;
+
+ if (link->dpcd_caps.lttpr_caps.supported_128b_132b_rates.bits.UHBR20)
+ lttpr_max_link_rate = LINK_RATE_UHBR20;
+ else if (link->dpcd_caps.lttpr_caps.supported_128b_132b_rates.bits.UHBR13_5)
+ lttpr_max_link_rate = LINK_RATE_UHBR13_5;
+ else if (link->dpcd_caps.lttpr_caps.supported_128b_132b_rates.bits.UHBR10)
+ lttpr_max_link_rate = LINK_RATE_UHBR10;
+
+ return lttpr_max_link_rate;
+}
+
+static enum dc_link_rate get_cable_max_link_rate(struct dc_link *link)
+{
+ enum dc_link_rate cable_max_link_rate = LINK_RATE_UNKNOWN;
+
+ if (link->dpcd_caps.cable_id.bits.UHBR10_20_CAPABILITY & DP_UHBR20)
+ cable_max_link_rate = LINK_RATE_UHBR20;
+ else if (link->dpcd_caps.cable_id.bits.UHBR13_5_CAPABILITY)
+ cable_max_link_rate = LINK_RATE_UHBR13_5;
+ else if (link->dpcd_caps.cable_id.bits.UHBR10_20_CAPABILITY & DP_UHBR10)
+ cable_max_link_rate = LINK_RATE_UHBR10;
+
+ return cable_max_link_rate;
+}
+
+static inline bool reached_minimum_lane_count(enum dc_lane_count lane_count)
+{
+ return lane_count <= LANE_COUNT_ONE;
+}
+
+static inline bool reached_minimum_link_rate(enum dc_link_rate link_rate)
+{
+ return link_rate <= LINK_RATE_LOW;
+}
+
+static enum dc_lane_count reduce_lane_count(enum dc_lane_count lane_count)
+{
+ switch (lane_count) {
+ case LANE_COUNT_FOUR:
+ return LANE_COUNT_TWO;
+ case LANE_COUNT_TWO:
+ return LANE_COUNT_ONE;
+ case LANE_COUNT_ONE:
+ return LANE_COUNT_UNKNOWN;
+ default:
+ return LANE_COUNT_UNKNOWN;
+ }
+}
+
+static enum dc_link_rate reduce_link_rate(const struct dc_link *link, enum dc_link_rate link_rate)
+{
+ // NEEDSWORK: provide some details about why this function never returns some of the
+ // obscure link rates such as 4.32 Gbps or 3.24 Gbps and if such behavior is intended.
+ //
+
+ switch (link_rate) {
+ case LINK_RATE_UHBR20:
+ return LINK_RATE_UHBR13_5;
+ case LINK_RATE_UHBR13_5:
+ return LINK_RATE_UHBR10;
+ case LINK_RATE_UHBR10:
+ return LINK_RATE_HIGH3;
+ case LINK_RATE_HIGH3:
+ if (link->connector_signal == SIGNAL_TYPE_EDP && link->dc->debug.support_eDP1_5)
+ return LINK_RATE_RATE_8;
+ return LINK_RATE_HIGH2;
+ case LINK_RATE_RATE_8:
+ return LINK_RATE_HIGH2;
+ case LINK_RATE_HIGH2:
+ return LINK_RATE_HIGH;
+ case LINK_RATE_RATE_6:
+ case LINK_RATE_RBR2:
+ return LINK_RATE_HIGH;
+ case LINK_RATE_HIGH:
+ return LINK_RATE_LOW;
+ case LINK_RATE_RATE_3:
+ case LINK_RATE_RATE_2:
+ return LINK_RATE_LOW;
+ case LINK_RATE_LOW:
+ default:
+ return LINK_RATE_UNKNOWN;
+ }
+}
+
+static enum dc_lane_count increase_lane_count(enum dc_lane_count lane_count)
+{
+ switch (lane_count) {
+ case LANE_COUNT_ONE:
+ return LANE_COUNT_TWO;
+ case LANE_COUNT_TWO:
+ return LANE_COUNT_FOUR;
+ default:
+ return LANE_COUNT_UNKNOWN;
+ }
+}
+
+static enum dc_link_rate increase_link_rate(struct dc_link *link,
+ enum dc_link_rate link_rate)
+{
+ switch (link_rate) {
+ case LINK_RATE_LOW:
+ return LINK_RATE_HIGH;
+ case LINK_RATE_HIGH:
+ return LINK_RATE_HIGH2;
+ case LINK_RATE_HIGH2:
+ return LINK_RATE_HIGH3;
+ case LINK_RATE_HIGH3:
+ return LINK_RATE_UHBR10;
+ case LINK_RATE_UHBR10:
+ /* upto DP2.x specs UHBR13.5 is the only link rate that could be
+ * not supported by DPRX when higher link rate is supported.
+ * so we treat it as a special case for code simplicity. When we
+ * have new specs with more link rates like this, we should
+ * consider a more generic solution to handle discrete link
+ * rate capabilities.
+ */
+ return link->dpcd_caps.dp_128b_132b_supported_link_rates.bits.UHBR13_5 ?
+ LINK_RATE_UHBR13_5 : LINK_RATE_UHBR20;
+ case LINK_RATE_UHBR13_5:
+ return LINK_RATE_UHBR20;
+ default:
+ return LINK_RATE_UNKNOWN;
+ }
+}
+
+static bool decide_fallback_link_setting_max_bw_policy(
+ struct dc_link *link,
+ const struct dc_link_settings *max,
+ struct dc_link_settings *cur,
+ enum link_training_result training_result)
+{
+ uint8_t cur_idx = 0, next_idx;
+ bool found = false;
+
+ if (training_result == LINK_TRAINING_ABORT)
+ return false;
+
+ while (cur_idx < ARRAY_SIZE(dp_lt_fallbacks))
+ /* find current index */
+ if (dp_lt_fallbacks[cur_idx].lane_count == cur->lane_count &&
+ dp_lt_fallbacks[cur_idx].link_rate == cur->link_rate)
+ break;
+ else
+ cur_idx++;
+
+ next_idx = cur_idx + 1;
+
+ while (next_idx < ARRAY_SIZE(dp_lt_fallbacks))
+ /* find next index */
+ if (dp_lt_fallbacks[next_idx].lane_count > max->lane_count ||
+ dp_lt_fallbacks[next_idx].link_rate > max->link_rate)
+ next_idx++;
+ else if (dp_lt_fallbacks[next_idx].link_rate == LINK_RATE_UHBR13_5 &&
+ link->dpcd_caps.dp_128b_132b_supported_link_rates.bits.UHBR13_5 == 0)
+ /* upto DP2.x specs UHBR13.5 is the only link rate that
+ * could be not supported by DPRX when higher link rate
+ * is supported. so we treat it as a special case for
+ * code simplicity. When we have new specs with more
+ * link rates like this, we should consider a more
+ * generic solution to handle discrete link rate
+ * capabilities.
+ */
+ next_idx++;
+ else
+ break;
+
+ if (next_idx < ARRAY_SIZE(dp_lt_fallbacks)) {
+ cur->lane_count = dp_lt_fallbacks[next_idx].lane_count;
+ cur->link_rate = dp_lt_fallbacks[next_idx].link_rate;
+ found = true;
+ }
+
+ return found;
+}
+
+/*
+ * function: set link rate and lane count fallback based
+ * on current link setting and last link training result
+ * return value:
+ * true - link setting could be set
+ * false - has reached minimum setting
+ * and no further fallback could be done
+ */
+bool decide_fallback_link_setting(
+ struct dc_link *link,
+ struct dc_link_settings *max,
+ struct dc_link_settings *cur,
+ enum link_training_result training_result)
+{
+ if (link_dp_get_encoding_format(max) == DP_128b_132b_ENCODING ||
+ link->dc->debug.force_dp2_lt_fallback_method)
+ return decide_fallback_link_setting_max_bw_policy(link, max,
+ cur, training_result);
+
+ switch (training_result) {
+ case LINK_TRAINING_CR_FAIL_LANE0:
+ case LINK_TRAINING_CR_FAIL_LANE1:
+ case LINK_TRAINING_CR_FAIL_LANE23:
+ case LINK_TRAINING_LQA_FAIL:
+ {
+ if (!reached_minimum_link_rate(cur->link_rate)) {
+ cur->link_rate = reduce_link_rate(link, cur->link_rate);
+ } else if (!reached_minimum_lane_count(cur->lane_count)) {
+ cur->link_rate = max->link_rate;
+ if (training_result == LINK_TRAINING_CR_FAIL_LANE0)
+ return false;
+ else if (training_result == LINK_TRAINING_CR_FAIL_LANE1)
+ cur->lane_count = LANE_COUNT_ONE;
+ else if (training_result == LINK_TRAINING_CR_FAIL_LANE23)
+ cur->lane_count = LANE_COUNT_TWO;
+ else
+ cur->lane_count = reduce_lane_count(cur->lane_count);
+ } else {
+ return false;
+ }
+ break;
+ }
+ case LINK_TRAINING_EQ_FAIL_EQ:
+ case LINK_TRAINING_EQ_FAIL_CR_PARTIAL:
+ {
+ if (!reached_minimum_lane_count(cur->lane_count)) {
+ cur->lane_count = reduce_lane_count(cur->lane_count);
+ } else if (!reached_minimum_link_rate(cur->link_rate)) {
+ cur->link_rate = reduce_link_rate(link, cur->link_rate);
+ /* Reduce max link rate to avoid potential infinite loop.
+ * Needed so that any subsequent CR_FAIL fallback can't
+ * re-set the link rate higher than the link rate from
+ * the latest EQ_FAIL fallback.
+ */
+ max->link_rate = cur->link_rate;
+ cur->lane_count = max->lane_count;
+ } else {
+ return false;
+ }
+ break;
+ }
+ case LINK_TRAINING_EQ_FAIL_CR:
+ {
+ if (!reached_minimum_link_rate(cur->link_rate)) {
+ cur->link_rate = reduce_link_rate(link, cur->link_rate);
+ /* Reduce max link rate to avoid potential infinite loop.
+ * Needed so that any subsequent CR_FAIL fallback can't
+ * re-set the link rate higher than the link rate from
+ * the latest EQ_FAIL fallback.
+ */
+ max->link_rate = cur->link_rate;
+ cur->lane_count = max->lane_count;
+ } else {
+ return false;
+ }
+ break;
+ }
+ default:
+ return false;
+ }
+ return true;
+}
+static bool decide_dp_link_settings(struct dc_link *link, struct dc_link_settings *link_setting, uint32_t req_bw)
+{
+ struct dc_link_settings initial_link_setting = {
+ LANE_COUNT_ONE, LINK_RATE_LOW, LINK_SPREAD_DISABLED, false, 0};
+ struct dc_link_settings current_link_setting =
+ initial_link_setting;
+ uint32_t link_bw;
+
+ if (req_bw > dp_link_bandwidth_kbps(link, &link->verified_link_cap))
+ return false;
+
+ /* search for the minimum link setting that:
+ * 1. is supported according to the link training result
+ * 2. could support the b/w requested by the timing
+ */
+ while (current_link_setting.link_rate <=
+ link->verified_link_cap.link_rate) {
+ link_bw = dp_link_bandwidth_kbps(
+ link,
+ &current_link_setting);
+ if (req_bw <= link_bw) {
+ *link_setting = current_link_setting;
+ return true;
+ }
+
+ if (current_link_setting.lane_count <
+ link->verified_link_cap.lane_count) {
+ current_link_setting.lane_count =
+ increase_lane_count(
+ current_link_setting.lane_count);
+ } else {
+ current_link_setting.link_rate =
+ increase_link_rate(link,
+ current_link_setting.link_rate);
+ current_link_setting.lane_count =
+ initial_link_setting.lane_count;
+ }
+ }
+
+ return false;
+}
+
+bool edp_decide_link_settings(struct dc_link *link,
+ struct dc_link_settings *link_setting, uint32_t req_bw)
+{
+ struct dc_link_settings initial_link_setting;
+ struct dc_link_settings current_link_setting;
+ uint32_t link_bw;
+
+ /*
+ * edp_supported_link_rates_count is only valid for eDP v1.4 or higher.
+ * Per VESA eDP spec, "The DPCD revision for eDP v1.4 is 13h"
+ */
+ if (link->dpcd_caps.dpcd_rev.raw < DPCD_REV_13 ||
+ link->dpcd_caps.edp_supported_link_rates_count == 0) {
+ *link_setting = link->verified_link_cap;
+ return true;
+ }
+
+ memset(&initial_link_setting, 0, sizeof(initial_link_setting));
+ initial_link_setting.lane_count = LANE_COUNT_ONE;
+ initial_link_setting.link_rate = link->dpcd_caps.edp_supported_link_rates[0];
+ initial_link_setting.link_spread = LINK_SPREAD_DISABLED;
+ initial_link_setting.use_link_rate_set = true;
+ initial_link_setting.link_rate_set = 0;
+ current_link_setting = initial_link_setting;
+
+ /* search for the minimum link setting that:
+ * 1. is supported according to the link training result
+ * 2. could support the b/w requested by the timing
+ */
+ while (current_link_setting.link_rate <=
+ link->verified_link_cap.link_rate) {
+ link_bw = dp_link_bandwidth_kbps(
+ link,
+ &current_link_setting);
+ if (req_bw <= link_bw) {
+ *link_setting = current_link_setting;
+ return true;
+ }
+
+ if (current_link_setting.lane_count <
+ link->verified_link_cap.lane_count) {
+ current_link_setting.lane_count =
+ increase_lane_count(
+ current_link_setting.lane_count);
+ } else {
+ if (current_link_setting.link_rate_set < link->dpcd_caps.edp_supported_link_rates_count) {
+ current_link_setting.link_rate_set++;
+ current_link_setting.link_rate =
+ link->dpcd_caps.edp_supported_link_rates[current_link_setting.link_rate_set];
+ current_link_setting.lane_count =
+ initial_link_setting.lane_count;
+ } else
+ break;
+ }
+ }
+ return false;
+}
+
+bool decide_edp_link_settings_with_dsc(struct dc_link *link,
+ struct dc_link_settings *link_setting,
+ uint32_t req_bw,
+ enum dc_link_rate max_link_rate)
+{
+ struct dc_link_settings initial_link_setting;
+ struct dc_link_settings current_link_setting;
+ uint32_t link_bw;
+
+ unsigned int policy = 0;
+
+ policy = link->panel_config.dsc.force_dsc_edp_policy;
+ if (max_link_rate == LINK_RATE_UNKNOWN)
+ max_link_rate = link->verified_link_cap.link_rate;
+ /*
+ * edp_supported_link_rates_count is only valid for eDP v1.4 or higher.
+ * Per VESA eDP spec, "The DPCD revision for eDP v1.4 is 13h"
+ */
+ if ((link->dpcd_caps.dpcd_rev.raw < DPCD_REV_13 ||
+ link->dpcd_caps.edp_supported_link_rates_count == 0)) {
+ /* for DSC enabled case, we search for minimum lane count */
+ memset(&initial_link_setting, 0, sizeof(initial_link_setting));
+ initial_link_setting.lane_count = LANE_COUNT_ONE;
+ initial_link_setting.link_rate = LINK_RATE_LOW;
+ initial_link_setting.link_spread = LINK_SPREAD_DISABLED;
+ initial_link_setting.use_link_rate_set = false;
+ initial_link_setting.link_rate_set = 0;
+ current_link_setting = initial_link_setting;
+ if (req_bw > dp_link_bandwidth_kbps(link, &link->verified_link_cap))
+ return false;
+
+ /* search for the minimum link setting that:
+ * 1. is supported according to the link training result
+ * 2. could support the b/w requested by the timing
+ */
+ while (current_link_setting.link_rate <=
+ max_link_rate) {
+ link_bw = dp_link_bandwidth_kbps(
+ link,
+ &current_link_setting);
+ if (req_bw <= link_bw) {
+ *link_setting = current_link_setting;
+ return true;
+ }
+ if (policy) {
+ /* minimize lane */
+ if (current_link_setting.link_rate < max_link_rate) {
+ current_link_setting.link_rate =
+ increase_link_rate(link,
+ current_link_setting.link_rate);
+ } else {
+ if (current_link_setting.lane_count <
+ link->verified_link_cap.lane_count) {
+ current_link_setting.lane_count =
+ increase_lane_count(
+ current_link_setting.lane_count);
+ current_link_setting.link_rate = initial_link_setting.link_rate;
+ } else
+ break;
+ }
+ } else {
+ /* minimize link rate */
+ if (current_link_setting.lane_count <
+ link->verified_link_cap.lane_count) {
+ current_link_setting.lane_count =
+ increase_lane_count(
+ current_link_setting.lane_count);
+ } else {
+ current_link_setting.link_rate =
+ increase_link_rate(link,
+ current_link_setting.link_rate);
+ current_link_setting.lane_count =
+ initial_link_setting.lane_count;
+ }
+ }
+ }
+ return false;
+ }
+
+ /* if optimize edp link is supported */
+ memset(&initial_link_setting, 0, sizeof(initial_link_setting));
+ initial_link_setting.lane_count = LANE_COUNT_ONE;
+ initial_link_setting.link_rate = link->dpcd_caps.edp_supported_link_rates[0];
+ initial_link_setting.link_spread = LINK_SPREAD_DISABLED;
+ initial_link_setting.use_link_rate_set = true;
+ initial_link_setting.link_rate_set = 0;
+ current_link_setting = initial_link_setting;
+
+ /* search for the minimum link setting that:
+ * 1. is supported according to the link training result
+ * 2. could support the b/w requested by the timing
+ */
+ while (current_link_setting.link_rate <=
+ max_link_rate) {
+ link_bw = dp_link_bandwidth_kbps(
+ link,
+ &current_link_setting);
+ if (req_bw <= link_bw) {
+ *link_setting = current_link_setting;
+ return true;
+ }
+ if (policy) {
+ /* minimize lane */
+ if (current_link_setting.link_rate_set <
+ link->dpcd_caps.edp_supported_link_rates_count
+ && current_link_setting.link_rate < max_link_rate) {
+ current_link_setting.link_rate_set++;
+ current_link_setting.link_rate =
+ link->dpcd_caps.edp_supported_link_rates[current_link_setting.link_rate_set];
+ } else {
+ if (current_link_setting.lane_count < link->verified_link_cap.lane_count) {
+ current_link_setting.lane_count =
+ increase_lane_count(
+ current_link_setting.lane_count);
+ current_link_setting.link_rate_set = initial_link_setting.link_rate_set;
+ current_link_setting.link_rate =
+ link->dpcd_caps.edp_supported_link_rates[current_link_setting.link_rate_set];
+ } else
+ break;
+ }
+ } else {
+ /* minimize link rate */
+ if (current_link_setting.lane_count <
+ link->verified_link_cap.lane_count) {
+ current_link_setting.lane_count =
+ increase_lane_count(
+ current_link_setting.lane_count);
+ } else {
+ if (current_link_setting.link_rate_set < link->dpcd_caps.edp_supported_link_rates_count) {
+ current_link_setting.link_rate_set++;
+ current_link_setting.link_rate =
+ link->dpcd_caps.edp_supported_link_rates[current_link_setting.link_rate_set];
+ current_link_setting.lane_count =
+ initial_link_setting.lane_count;
+ } else
+ break;
+ }
+ }
+ }
+ return false;
+}
+
+static bool decide_mst_link_settings(const struct dc_link *link, struct dc_link_settings *link_setting)
+{
+ *link_setting = link->verified_link_cap;
+ return true;
+}
+
+bool link_decide_link_settings(struct dc_stream_state *stream,
+ struct dc_link_settings *link_setting)
+{
+ struct dc_link *link = stream->link;
+ uint32_t req_bw = dc_bandwidth_in_kbps_from_timing(&stream->timing);
+
+ memset(link_setting, 0, sizeof(*link_setting));
+
+ /* if preferred is specified through AMDDP, use it, if it's enough
+ * to drive the mode
+ */
+ if (link->preferred_link_setting.lane_count !=
+ LANE_COUNT_UNKNOWN &&
+ link->preferred_link_setting.link_rate !=
+ LINK_RATE_UNKNOWN) {
+ *link_setting = link->preferred_link_setting;
+ return true;
+ }
+
+ /* MST doesn't perform link training for now
+ * TODO: add MST specific link training routine
+ */
+ if (stream->signal == SIGNAL_TYPE_DISPLAY_PORT_MST) {
+ decide_mst_link_settings(link, link_setting);
+ } else if (link->connector_signal == SIGNAL_TYPE_EDP) {
+ /* enable edp link optimization for DSC eDP case */
+ if (stream->timing.flags.DSC) {
+ enum dc_link_rate max_link_rate = LINK_RATE_UNKNOWN;
+
+ if (link->panel_config.dsc.force_dsc_edp_policy) {
+ /* calculate link max link rate cap*/
+ struct dc_link_settings tmp_link_setting;
+ struct dc_crtc_timing tmp_timing = stream->timing;
+ uint32_t orig_req_bw;
+
+ tmp_link_setting.link_rate = LINK_RATE_UNKNOWN;
+ tmp_timing.flags.DSC = 0;
+ orig_req_bw = dc_bandwidth_in_kbps_from_timing(&tmp_timing);
+ edp_decide_link_settings(link, &tmp_link_setting, orig_req_bw);
+ max_link_rate = tmp_link_setting.link_rate;
+ }
+ decide_edp_link_settings_with_dsc(link, link_setting, req_bw, max_link_rate);
+ } else {
+ edp_decide_link_settings(link, link_setting, req_bw);
+ }
+ } else {
+ decide_dp_link_settings(link, link_setting, req_bw);
+ }
+
+ return link_setting->lane_count != LANE_COUNT_UNKNOWN &&
+ link_setting->link_rate != LINK_RATE_UNKNOWN;
+}
+
+enum dp_link_encoding link_dp_get_encoding_format(const struct dc_link_settings *link_settings)
+{
+ if ((link_settings->link_rate >= LINK_RATE_LOW) &&
+ (link_settings->link_rate <= LINK_RATE_HIGH3))
+ return DP_8b_10b_ENCODING;
+ else if ((link_settings->link_rate >= LINK_RATE_UHBR10) &&
+ (link_settings->link_rate <= LINK_RATE_UHBR20))
+ return DP_128b_132b_ENCODING;
+ return DP_UNKNOWN_ENCODING;
+}
+
+enum dp_link_encoding mst_decide_link_encoding_format(const struct dc_link *link)
+{
+ struct dc_link_settings link_settings = {0};
+
+ if (!dc_is_dp_signal(link->connector_signal))
+ return DP_UNKNOWN_ENCODING;
+
+ if (link->preferred_link_setting.lane_count !=
+ LANE_COUNT_UNKNOWN &&
+ link->preferred_link_setting.link_rate !=
+ LINK_RATE_UNKNOWN) {
+ link_settings = link->preferred_link_setting;
+ } else {
+ decide_mst_link_settings(link, &link_settings);
+ }
+
+ return link_dp_get_encoding_format(&link_settings);
+}
+
+static void read_dp_device_vendor_id(struct dc_link *link)
+{
+ struct dp_device_vendor_id dp_id;
+
+ /* read IEEE branch device id */
+ core_link_read_dpcd(
+ link,
+ DP_BRANCH_OUI,
+ (uint8_t *)&dp_id,
+ sizeof(dp_id));
+
+ link->dpcd_caps.branch_dev_id =
+ (dp_id.ieee_oui[0] << 16) +
+ (dp_id.ieee_oui[1] << 8) +
+ dp_id.ieee_oui[2];
+
+ memmove(
+ link->dpcd_caps.branch_dev_name,
+ dp_id.ieee_device_id,
+ sizeof(dp_id.ieee_device_id));
+}
+
+static enum dc_status wake_up_aux_channel(struct dc_link *link)
+{
+ enum dc_status status = DC_ERROR_UNEXPECTED;
+ uint32_t aux_channel_retry_cnt = 0;
+ uint8_t dpcd_power_state = '\0';
+
+ while (status != DC_OK && aux_channel_retry_cnt < 10) {
+ status = core_link_read_dpcd(link, DP_SET_POWER,
+ &dpcd_power_state, sizeof(dpcd_power_state));
+
+ /* Delay 1 ms if AUX CH is in power down state. Based on spec
+ * section 2.3.1.2, if AUX CH may be powered down due to
+ * write to DPCD 600h = 2. Sink AUX CH is monitoring differential
+ * signal and may need up to 1 ms before being able to reply.
+ */
+ if (status != DC_OK || dpcd_power_state == DP_SET_POWER_D3) {
+ fsleep(1000);
+ aux_channel_retry_cnt++;
+ }
+ }
+
+ if (status != DC_OK) {
+ dpcd_power_state = DP_SET_POWER_D0;
+ status = core_link_write_dpcd(
+ link,
+ DP_SET_POWER,
+ &dpcd_power_state,
+ sizeof(dpcd_power_state));
+
+ dpcd_power_state = DP_SET_POWER_D3;
+ status = core_link_write_dpcd(
+ link,
+ DP_SET_POWER,
+ &dpcd_power_state,
+ sizeof(dpcd_power_state));
+ if (status < 0)
+ DC_LOG_DC("%s: Failed to power up sink: %s\n", __func__,
+ dpcd_power_state == DP_SET_POWER_D0 ? "D0" : "D3");
+ return DC_ERROR_UNEXPECTED;
+ }
+
+ return DC_OK;
+}
+
+static void get_active_converter_info(
+ uint8_t data, struct dc_link *link)
+{
+ union dp_downstream_port_present ds_port = { .byte = data };
+ memset(&link->dpcd_caps.dongle_caps, 0, sizeof(link->dpcd_caps.dongle_caps));
+
+ /* decode converter info*/
+ if (!ds_port.fields.PORT_PRESENT) {
+ link->dpcd_caps.dongle_type = DISPLAY_DONGLE_NONE;
+ set_dongle_type(link->ddc,
+ link->dpcd_caps.dongle_type);
+ link->dpcd_caps.is_branch_dev = false;
+ return;
+ }
+
+ /* DPCD 0x5 bit 0 = 1, it indicate it's branch device */
+ link->dpcd_caps.is_branch_dev = ds_port.fields.PORT_PRESENT;
+
+ switch (ds_port.fields.PORT_TYPE) {
+ case DOWNSTREAM_VGA:
+ link->dpcd_caps.dongle_type = DISPLAY_DONGLE_DP_VGA_CONVERTER;
+ break;
+ case DOWNSTREAM_DVI_HDMI_DP_PLUS_PLUS:
+ /* At this point we don't know is it DVI or HDMI or DP++,
+ * assume DVI.*/
+ link->dpcd_caps.dongle_type = DISPLAY_DONGLE_DP_DVI_CONVERTER;
+ break;
+ default:
+ link->dpcd_caps.dongle_type = DISPLAY_DONGLE_NONE;
+ break;
+ }
+
+ if (link->dpcd_caps.dpcd_rev.raw >= DPCD_REV_11) {
+ uint8_t det_caps[16]; /* CTS 4.2.2.7 expects source to read Detailed Capabilities Info : 00080h-0008F.*/
+ union dwnstream_port_caps_byte0 *port_caps =
+ (union dwnstream_port_caps_byte0 *)det_caps;
+ if (core_link_read_dpcd(link, DP_DOWNSTREAM_PORT_0,
+ det_caps, sizeof(det_caps)) == DC_OK) {
+
+ switch (port_caps->bits.DWN_STRM_PORTX_TYPE) {
+ /*Handle DP case as DONGLE_NONE*/
+ case DOWN_STREAM_DETAILED_DP:
+ link->dpcd_caps.dongle_type = DISPLAY_DONGLE_NONE;
+ break;
+ case DOWN_STREAM_DETAILED_VGA:
+ link->dpcd_caps.dongle_type =
+ DISPLAY_DONGLE_DP_VGA_CONVERTER;
+ break;
+ case DOWN_STREAM_DETAILED_DVI:
+ link->dpcd_caps.dongle_type =
+ DISPLAY_DONGLE_DP_DVI_CONVERTER;
+ break;
+ case DOWN_STREAM_DETAILED_HDMI:
+ case DOWN_STREAM_DETAILED_DP_PLUS_PLUS:
+ /*Handle DP++ active converter case, process DP++ case as HDMI case according DP1.4 spec*/
+ link->dpcd_caps.dongle_type =
+ DISPLAY_DONGLE_DP_HDMI_CONVERTER;
+
+ link->dpcd_caps.dongle_caps.dongle_type = link->dpcd_caps.dongle_type;
+ if (ds_port.fields.DETAILED_CAPS) {
+
+ union dwnstream_port_caps_byte3_hdmi
+ hdmi_caps = {.raw = det_caps[3] };
+ union dwnstream_port_caps_byte2
+ hdmi_color_caps = {.raw = det_caps[2] };
+ link->dpcd_caps.dongle_caps.dp_hdmi_max_pixel_clk_in_khz =
+ det_caps[1] * 2500;
+
+ link->dpcd_caps.dongle_caps.is_dp_hdmi_s3d_converter =
+ hdmi_caps.bits.FRAME_SEQ_TO_FRAME_PACK;
+ /*YCBCR capability only for HDMI case*/
+ if (port_caps->bits.DWN_STRM_PORTX_TYPE
+ == DOWN_STREAM_DETAILED_HDMI) {
+ link->dpcd_caps.dongle_caps.is_dp_hdmi_ycbcr422_pass_through =
+ hdmi_caps.bits.YCrCr422_PASS_THROUGH;
+ link->dpcd_caps.dongle_caps.is_dp_hdmi_ycbcr420_pass_through =
+ hdmi_caps.bits.YCrCr420_PASS_THROUGH;
+ link->dpcd_caps.dongle_caps.is_dp_hdmi_ycbcr422_converter =
+ hdmi_caps.bits.YCrCr422_CONVERSION;
+ link->dpcd_caps.dongle_caps.is_dp_hdmi_ycbcr420_converter =
+ hdmi_caps.bits.YCrCr420_CONVERSION;
+ }
+
+ link->dpcd_caps.dongle_caps.dp_hdmi_max_bpc =
+ translate_dpcd_max_bpc(
+ hdmi_color_caps.bits.MAX_BITS_PER_COLOR_COMPONENT);
+
+ if (link->dc->caps.dp_hdmi21_pcon_support) {
+ union hdmi_encoded_link_bw hdmi_encoded_link_bw;
+
+ link->dpcd_caps.dongle_caps.dp_hdmi_frl_max_link_bw_in_kbps =
+ link_bw_kbps_from_raw_frl_link_rate_data(
+ hdmi_color_caps.bits.MAX_ENCODED_LINK_BW_SUPPORT);
+
+ // Intersect reported max link bw support with the supported link rate post FRL link training
+ if (core_link_read_dpcd(link, DP_PCON_HDMI_POST_FRL_STATUS,
+ &hdmi_encoded_link_bw.raw, sizeof(hdmi_encoded_link_bw)) == DC_OK) {
+ link->dpcd_caps.dongle_caps.dp_hdmi_frl_max_link_bw_in_kbps = intersect_frl_link_bw_support(
+ link->dpcd_caps.dongle_caps.dp_hdmi_frl_max_link_bw_in_kbps,
+ hdmi_encoded_link_bw);
+ }
+
+ if (link->dpcd_caps.dongle_caps.dp_hdmi_frl_max_link_bw_in_kbps > 0)
+ link->dpcd_caps.dongle_caps.extendedCapValid = true;
+ }
+
+ if (link->dpcd_caps.dongle_caps.dp_hdmi_max_pixel_clk_in_khz != 0)
+ link->dpcd_caps.dongle_caps.extendedCapValid = true;
+ }
+
+ break;
+ }
+ }
+ }
+
+ set_dongle_type(link->ddc, link->dpcd_caps.dongle_type);
+
+ {
+ struct dp_sink_hw_fw_revision dp_hw_fw_revision;
+
+ core_link_read_dpcd(
+ link,
+ DP_BRANCH_REVISION_START,
+ (uint8_t *)&dp_hw_fw_revision,
+ sizeof(dp_hw_fw_revision));
+
+ link->dpcd_caps.branch_hw_revision =
+ dp_hw_fw_revision.ieee_hw_rev;
+
+ memmove(
+ link->dpcd_caps.branch_fw_revision,
+ dp_hw_fw_revision.ieee_fw_rev,
+ sizeof(dp_hw_fw_revision.ieee_fw_rev));
+ }
+ if (link->dpcd_caps.dpcd_rev.raw >= DPCD_REV_14 &&
+ link->dpcd_caps.dongle_type != DISPLAY_DONGLE_NONE) {
+ union dp_dfp_cap_ext dfp_cap_ext;
+ memset(&dfp_cap_ext, '\0', sizeof (dfp_cap_ext));
+ core_link_read_dpcd(
+ link,
+ DP_DFP_CAPABILITY_EXTENSION_SUPPORT,
+ dfp_cap_ext.raw,
+ sizeof(dfp_cap_ext.raw));
+ link->dpcd_caps.dongle_caps.dfp_cap_ext.supported = dfp_cap_ext.fields.supported;
+ link->dpcd_caps.dongle_caps.dfp_cap_ext.max_pixel_rate_in_mps =
+ dfp_cap_ext.fields.max_pixel_rate_in_mps[0] +
+ (dfp_cap_ext.fields.max_pixel_rate_in_mps[1] << 8);
+ link->dpcd_caps.dongle_caps.dfp_cap_ext.max_video_h_active_width =
+ dfp_cap_ext.fields.max_video_h_active_width[0] +
+ (dfp_cap_ext.fields.max_video_h_active_width[1] << 8);
+ link->dpcd_caps.dongle_caps.dfp_cap_ext.max_video_v_active_height =
+ dfp_cap_ext.fields.max_video_v_active_height[0] +
+ (dfp_cap_ext.fields.max_video_v_active_height[1] << 8);
+ link->dpcd_caps.dongle_caps.dfp_cap_ext.encoding_format_caps =
+ dfp_cap_ext.fields.encoding_format_caps;
+ link->dpcd_caps.dongle_caps.dfp_cap_ext.rgb_color_depth_caps =
+ dfp_cap_ext.fields.rgb_color_depth_caps;
+ link->dpcd_caps.dongle_caps.dfp_cap_ext.ycbcr444_color_depth_caps =
+ dfp_cap_ext.fields.ycbcr444_color_depth_caps;
+ link->dpcd_caps.dongle_caps.dfp_cap_ext.ycbcr422_color_depth_caps =
+ dfp_cap_ext.fields.ycbcr422_color_depth_caps;
+ link->dpcd_caps.dongle_caps.dfp_cap_ext.ycbcr420_color_depth_caps =
+ dfp_cap_ext.fields.ycbcr420_color_depth_caps;
+ DC_LOG_DP2("DFP capability extension is read at link %d", link->link_index);
+ DC_LOG_DP2("\tdfp_cap_ext.supported = %s", link->dpcd_caps.dongle_caps.dfp_cap_ext.supported ? "true" : "false");
+ DC_LOG_DP2("\tdfp_cap_ext.max_pixel_rate_in_mps = %d", link->dpcd_caps.dongle_caps.dfp_cap_ext.max_pixel_rate_in_mps);
+ DC_LOG_DP2("\tdfp_cap_ext.max_video_h_active_width = %d", link->dpcd_caps.dongle_caps.dfp_cap_ext.max_video_h_active_width);
+ DC_LOG_DP2("\tdfp_cap_ext.max_video_v_active_height = %d", link->dpcd_caps.dongle_caps.dfp_cap_ext.max_video_v_active_height);
+ }
+}
+
+static void apply_usbc_combo_phy_reset_wa(struct dc_link *link,
+ struct dc_link_settings *link_settings)
+{
+ /* Temporary Renoir-specific workaround PHY will sometimes be in bad
+ * state on hotplugging display from certain USB-C dongle, so add extra
+ * cycle of enabling and disabling the PHY before first link training.
+ */
+ struct link_resource link_res = {0};
+ enum clock_source_id dp_cs_id = get_clock_source_id(link);
+
+ dp_enable_link_phy(link, &link_res, link->connector_signal,
+ dp_cs_id, link_settings);
+ dp_disable_link_phy(link, &link_res, link->connector_signal);
+}
+
+bool dp_overwrite_extended_receiver_cap(struct dc_link *link)
+{
+ uint8_t dpcd_data[16];
+ uint32_t read_dpcd_retry_cnt = 3;
+ enum dc_status status = DC_ERROR_UNEXPECTED;
+ union dp_downstream_port_present ds_port = { 0 };
+ union down_stream_port_count down_strm_port_count;
+ union edp_configuration_cap edp_config_cap;
+
+ int i;
+
+ for (i = 0; i < read_dpcd_retry_cnt; i++) {
+ status = core_link_read_dpcd(
+ link,
+ DP_DPCD_REV,
+ dpcd_data,
+ sizeof(dpcd_data));
+ if (status == DC_OK)
+ break;
+ }
+
+ link->dpcd_caps.dpcd_rev.raw =
+ dpcd_data[DP_DPCD_REV - DP_DPCD_REV];
+
+ if (dpcd_data[DP_MAX_LANE_COUNT - DP_DPCD_REV] == 0)
+ return false;
+
+ ds_port.byte = dpcd_data[DP_DOWNSTREAMPORT_PRESENT -
+ DP_DPCD_REV];
+
+ get_active_converter_info(ds_port.byte, link);
+
+ down_strm_port_count.raw = dpcd_data[DP_DOWN_STREAM_PORT_COUNT -
+ DP_DPCD_REV];
+
+ link->dpcd_caps.allow_invalid_MSA_timing_param =
+ down_strm_port_count.bits.IGNORE_MSA_TIMING_PARAM;
+
+ link->dpcd_caps.max_ln_count.raw = dpcd_data[
+ DP_MAX_LANE_COUNT - DP_DPCD_REV];
+
+ link->dpcd_caps.max_down_spread.raw = dpcd_data[
+ DP_MAX_DOWNSPREAD - DP_DPCD_REV];
+
+ link->reported_link_cap.lane_count =
+ link->dpcd_caps.max_ln_count.bits.MAX_LANE_COUNT;
+ link->reported_link_cap.link_rate = dpcd_data[
+ DP_MAX_LINK_RATE - DP_DPCD_REV];
+ link->reported_link_cap.link_spread =
+ link->dpcd_caps.max_down_spread.bits.MAX_DOWN_SPREAD ?
+ LINK_SPREAD_05_DOWNSPREAD_30KHZ : LINK_SPREAD_DISABLED;
+
+ edp_config_cap.raw = dpcd_data[
+ DP_EDP_CONFIGURATION_CAP - DP_DPCD_REV];
+ link->dpcd_caps.panel_mode_edp =
+ edp_config_cap.bits.ALT_SCRAMBLER_RESET;
+ link->dpcd_caps.dpcd_display_control_capable =
+ edp_config_cap.bits.DPCD_DISPLAY_CONTROL_CAPABLE;
+
+ return true;
+}
+
+void dpcd_set_source_specific_data(struct dc_link *link)
+{
+ if (!link->dc->vendor_signature.is_valid) {
+ enum dc_status __maybe_unused result_write_min_hblank = DC_NOT_SUPPORTED;
+ struct dpcd_amd_signature amd_signature = {0};
+ struct dpcd_amd_device_id amd_device_id = {0};
+
+ amd_device_id.device_id_byte1 =
+ (uint8_t)(link->ctx->asic_id.chip_id);
+ amd_device_id.device_id_byte2 =
+ (uint8_t)(link->ctx->asic_id.chip_id >> 8);
+ amd_device_id.dce_version =
+ (uint8_t)(link->ctx->dce_version);
+ amd_device_id.dal_version_byte1 = 0x0; // needed? where to get?
+ amd_device_id.dal_version_byte2 = 0x0; // needed? where to get?
+
+ core_link_read_dpcd(link, DP_SOURCE_OUI,
+ (uint8_t *)(&amd_signature),
+ sizeof(amd_signature));
+
+ if (!((amd_signature.AMD_IEEE_TxSignature_byte1 == 0x0) &&
+ (amd_signature.AMD_IEEE_TxSignature_byte2 == 0x0) &&
+ (amd_signature.AMD_IEEE_TxSignature_byte3 == 0x1A))) {
+
+ amd_signature.AMD_IEEE_TxSignature_byte1 = 0x0;
+ amd_signature.AMD_IEEE_TxSignature_byte2 = 0x0;
+ amd_signature.AMD_IEEE_TxSignature_byte3 = 0x1A;
+
+ core_link_write_dpcd(link, DP_SOURCE_OUI,
+ (uint8_t *)(&amd_signature),
+ sizeof(amd_signature));
+ }
+
+ core_link_write_dpcd(link, DP_SOURCE_OUI+0x03,
+ (uint8_t *)(&amd_device_id),
+ sizeof(amd_device_id));
+
+ if (link->ctx->dce_version >= DCN_VERSION_2_0 &&
+ link->dc->caps.min_horizontal_blanking_period != 0) {
+
+ uint8_t hblank_size = (uint8_t)link->dc->caps.min_horizontal_blanking_period;
+
+ result_write_min_hblank = core_link_write_dpcd(link,
+ DP_SOURCE_MINIMUM_HBLANK_SUPPORTED, (uint8_t *)(&hblank_size),
+ sizeof(hblank_size));
+ }
+ DC_TRACE_LEVEL_MESSAGE(DAL_TRACE_LEVEL_INFORMATION,
+ WPP_BIT_FLAG_DC_DETECTION_DP_CAPS,
+ "result=%u link_index=%u enum dce_version=%d DPCD=0x%04X min_hblank=%u branch_dev_id=0x%x branch_dev_name='%c%c%c%c%c%c'",
+ result_write_min_hblank,
+ link->link_index,
+ link->ctx->dce_version,
+ DP_SOURCE_MINIMUM_HBLANK_SUPPORTED,
+ link->dc->caps.min_horizontal_blanking_period,
+ link->dpcd_caps.branch_dev_id,
+ link->dpcd_caps.branch_dev_name[0],
+ link->dpcd_caps.branch_dev_name[1],
+ link->dpcd_caps.branch_dev_name[2],
+ link->dpcd_caps.branch_dev_name[3],
+ link->dpcd_caps.branch_dev_name[4],
+ link->dpcd_caps.branch_dev_name[5]);
+ } else {
+ core_link_write_dpcd(link, DP_SOURCE_OUI,
+ link->dc->vendor_signature.data.raw,
+ sizeof(link->dc->vendor_signature.data.raw));
+ }
+}
+
+void dpcd_write_cable_id_to_dprx(struct dc_link *link)
+{
+ if (!link->dpcd_caps.channel_coding_cap.bits.DP_128b_132b_SUPPORTED ||
+ link->dpcd_caps.cable_id.raw == 0 ||
+ link->dprx_states.cable_id_written)
+ return;
+
+ core_link_write_dpcd(link, DP_CABLE_ATTRIBUTES_UPDATED_BY_DPTX,
+ &link->dpcd_caps.cable_id.raw,
+ sizeof(link->dpcd_caps.cable_id.raw));
+
+ link->dprx_states.cable_id_written = 1;
+}
+
+static bool get_usbc_cable_id(struct dc_link *link, union dp_cable_id *cable_id)
+{
+ union dmub_rb_cmd cmd;
+
+ if (!link->ctx->dmub_srv ||
+ link->ep_type != DISPLAY_ENDPOINT_PHY ||
+ link->link_enc->features.flags.bits.DP_IS_USB_C == 0)
+ return false;
+
+ memset(&cmd, 0, sizeof(cmd));
+ cmd.cable_id.header.type = DMUB_CMD_GET_USBC_CABLE_ID;
+ cmd.cable_id.header.payload_bytes = sizeof(cmd.cable_id.data);
+ cmd.cable_id.data.input.phy_inst = resource_transmitter_to_phy_idx(
+ link->dc, link->link_enc->transmitter);
+ if (dc_dmub_srv_cmd_with_reply_data(link->ctx->dmub_srv, &cmd) &&
+ cmd.cable_id.header.ret_status == 1) {
+ cable_id->raw = cmd.cable_id.data.output_raw;
+ DC_LOG_DC("usbc_cable_id = %d.\n", cable_id->raw);
+ }
+ return cmd.cable_id.header.ret_status == 1;
+}
+
+static void retrieve_cable_id(struct dc_link *link)
+{
+ union dp_cable_id usbc_cable_id;
+
+ link->dpcd_caps.cable_id.raw = 0;
+ core_link_read_dpcd(link, DP_CABLE_ATTRIBUTES_UPDATED_BY_DPRX,
+ &link->dpcd_caps.cable_id.raw, sizeof(uint8_t));
+
+ if (get_usbc_cable_id(link, &usbc_cable_id))
+ link->dpcd_caps.cable_id = intersect_cable_id(
+ &link->dpcd_caps.cable_id, &usbc_cable_id);
+}
+
+bool read_is_mst_supported(struct dc_link *link)
+{
+ bool mst = false;
+ enum dc_status st = DC_OK;
+ union dpcd_rev rev;
+ union mstm_cap cap;
+
+ if (link->preferred_training_settings.mst_enable &&
+ *link->preferred_training_settings.mst_enable == false) {
+ return false;
+ }
+
+ rev.raw = 0;
+ cap.raw = 0;
+
+ st = core_link_read_dpcd(link, DP_DPCD_REV, &rev.raw,
+ sizeof(rev));
+
+ if (st == DC_OK && rev.raw >= DPCD_REV_12) {
+
+ st = core_link_read_dpcd(link, DP_MSTM_CAP,
+ &cap.raw, sizeof(cap));
+ if (st == DC_OK && cap.bits.MST_CAP == 1)
+ mst = true;
+ }
+ return mst;
+
+}
+
+/* Read additional sink caps defined in source specific DPCD area
+ * This function currently only reads from SinkCapability address (DP_SOURCE_SINK_CAP)
+ * TODO: Add FS caps and read from DP_SOURCE_SINK_FS_CAP as well
+ */
+static bool dpcd_read_sink_ext_caps(struct dc_link *link)
+{
+ uint8_t dpcd_data;
+
+ if (!link)
+ return false;
+
+ if (core_link_read_dpcd(link, DP_SOURCE_SINK_CAP, &dpcd_data, 1) != DC_OK)
+ return false;
+
+ link->dpcd_sink_ext_caps.raw = dpcd_data;
+ return true;
+}
+
+enum dc_status dp_retrieve_lttpr_cap(struct dc_link *link)
+{
+ uint8_t lttpr_dpcd_data[8];
+ enum dc_status status;
+ bool is_lttpr_present;
+
+ /* Logic to determine LTTPR support*/
+ bool vbios_lttpr_interop = link->dc->caps.vbios_lttpr_aware;
+
+ if (!vbios_lttpr_interop || !link->dc->caps.extended_aux_timeout_support)
+ return DC_NOT_SUPPORTED;
+
+ /* By reading LTTPR capability, RX assumes that we will enable
+ * LTTPR extended aux timeout if LTTPR is present.
+ */
+ status = core_link_read_dpcd(
+ link,
+ DP_LT_TUNABLE_PHY_REPEATER_FIELD_DATA_STRUCTURE_REV,
+ lttpr_dpcd_data,
+ sizeof(lttpr_dpcd_data));
+
+ link->dpcd_caps.lttpr_caps.revision.raw =
+ lttpr_dpcd_data[DP_LT_TUNABLE_PHY_REPEATER_FIELD_DATA_STRUCTURE_REV -
+ DP_LT_TUNABLE_PHY_REPEATER_FIELD_DATA_STRUCTURE_REV];
+
+ link->dpcd_caps.lttpr_caps.max_link_rate =
+ lttpr_dpcd_data[DP_MAX_LINK_RATE_PHY_REPEATER -
+ DP_LT_TUNABLE_PHY_REPEATER_FIELD_DATA_STRUCTURE_REV];
+
+ link->dpcd_caps.lttpr_caps.phy_repeater_cnt =
+ lttpr_dpcd_data[DP_PHY_REPEATER_CNT -
+ DP_LT_TUNABLE_PHY_REPEATER_FIELD_DATA_STRUCTURE_REV];
+
+ link->dpcd_caps.lttpr_caps.max_lane_count =
+ lttpr_dpcd_data[DP_MAX_LANE_COUNT_PHY_REPEATER -
+ DP_LT_TUNABLE_PHY_REPEATER_FIELD_DATA_STRUCTURE_REV];
+
+ link->dpcd_caps.lttpr_caps.mode =
+ lttpr_dpcd_data[DP_PHY_REPEATER_MODE -
+ DP_LT_TUNABLE_PHY_REPEATER_FIELD_DATA_STRUCTURE_REV];
+
+ link->dpcd_caps.lttpr_caps.max_ext_timeout =
+ lttpr_dpcd_data[DP_PHY_REPEATER_EXTENDED_WAIT_TIMEOUT -
+ DP_LT_TUNABLE_PHY_REPEATER_FIELD_DATA_STRUCTURE_REV];
+ link->dpcd_caps.lttpr_caps.main_link_channel_coding.raw =
+ lttpr_dpcd_data[DP_MAIN_LINK_CHANNEL_CODING_PHY_REPEATER -
+ DP_LT_TUNABLE_PHY_REPEATER_FIELD_DATA_STRUCTURE_REV];
+
+ link->dpcd_caps.lttpr_caps.supported_128b_132b_rates.raw =
+ lttpr_dpcd_data[DP_PHY_REPEATER_128B132B_RATES -
+ DP_LT_TUNABLE_PHY_REPEATER_FIELD_DATA_STRUCTURE_REV];
+
+ /* If this chip cap is set, at least one retimer must exist in the chain
+ * Override count to 1 if we receive a known bad count (0 or an invalid value) */
+ if ((link->chip_caps & EXT_DISPLAY_PATH_CAPS__DP_FIXED_VS_EN) &&
+ (dp_parse_lttpr_repeater_count(link->dpcd_caps.lttpr_caps.phy_repeater_cnt) == 0)) {
+ ASSERT(0);
+ link->dpcd_caps.lttpr_caps.phy_repeater_cnt = 0x80;
+ DC_LOG_DC("lttpr_caps forced phy_repeater_cnt = %d\n", link->dpcd_caps.lttpr_caps.phy_repeater_cnt);
+ }
+
+ /* Attempt to train in LTTPR transparent mode if repeater count exceeds 8. */
+ is_lttpr_present = dp_is_lttpr_present(link);
+
+ if (is_lttpr_present)
+ CONN_DATA_DETECT(link, lttpr_dpcd_data, sizeof(lttpr_dpcd_data), "LTTPR Caps: ");
+
+ DC_LOG_DC("is_lttpr_present = %d\n", is_lttpr_present);
+ return status;
+}
+
+static bool retrieve_link_cap(struct dc_link *link)
+{
+ /* DP_ADAPTER_CAP - DP_DPCD_REV + 1 == 16 and also DP_DSC_BITS_PER_PIXEL_INC - DP_DSC_SUPPORT + 1 == 16,
+ * which means size 16 will be good for both of those DPCD register block reads
+ */
+ uint8_t dpcd_data[16];
+ /*Only need to read 1 byte starting from DP_DPRX_FEATURE_ENUMERATION_LIST.
+ */
+ uint8_t dpcd_dprx_data = '\0';
+
+ struct dp_device_vendor_id sink_id;
+ union down_stream_port_count down_strm_port_count;
+ union edp_configuration_cap edp_config_cap;
+ union dp_downstream_port_present ds_port = { 0 };
+ enum dc_status status = DC_ERROR_UNEXPECTED;
+ uint32_t read_dpcd_retry_cnt = 3;
+ int i;
+ struct dp_sink_hw_fw_revision dp_hw_fw_revision;
+ const uint32_t post_oui_delay = 30; // 30ms
+
+ memset(dpcd_data, '\0', sizeof(dpcd_data));
+ memset(&down_strm_port_count,
+ '\0', sizeof(union down_stream_port_count));
+ memset(&edp_config_cap, '\0',
+ sizeof(union edp_configuration_cap));
+
+ /* if extended timeout is supported in hardware,
+ * default to LTTPR timeout (3.2ms) first as a W/A for DP link layer
+ * CTS 4.2.1.1 regression introduced by CTS specs requirement update.
+ */
+ try_to_configure_aux_timeout(link->ddc,
+ LINK_AUX_DEFAULT_LTTPR_TIMEOUT_PERIOD);
+
+ status = dp_retrieve_lttpr_cap(link);
+
+ if (status != DC_OK) {
+ status = wake_up_aux_channel(link);
+ if (status == DC_OK)
+ dp_retrieve_lttpr_cap(link);
+ else
+ return false;
+ }
+
+ if (dp_is_lttpr_present(link))
+ configure_lttpr_mode_transparent(link);
+
+ /* Read DP tunneling information. */
+ status = dpcd_get_tunneling_device_data(link);
+
+ dpcd_set_source_specific_data(link);
+ /* Sink may need to configure internals based on vendor, so allow some
+ * time before proceeding with possibly vendor specific transactions
+ */
+ msleep(post_oui_delay);
+
+ for (i = 0; i < read_dpcd_retry_cnt; i++) {
+ status = core_link_read_dpcd(
+ link,
+ DP_DPCD_REV,
+ dpcd_data,
+ sizeof(dpcd_data));
+ if (status == DC_OK)
+ break;
+ }
+
+
+ if (status != DC_OK) {
+ dm_error("%s: Read receiver caps dpcd data failed.\n", __func__);
+ return false;
+ }
+
+ if (!dp_is_lttpr_present(link))
+ try_to_configure_aux_timeout(link->ddc, LINK_AUX_DEFAULT_TIMEOUT_PERIOD);
+
+
+ {
+ union training_aux_rd_interval aux_rd_interval;
+
+ aux_rd_interval.raw =
+ dpcd_data[DP_TRAINING_AUX_RD_INTERVAL];
+
+ link->dpcd_caps.ext_receiver_cap_field_present =
+ aux_rd_interval.bits.EXT_RECEIVER_CAP_FIELD_PRESENT == 1;
+
+ if (aux_rd_interval.bits.EXT_RECEIVER_CAP_FIELD_PRESENT == 1) {
+ uint8_t ext_cap_data[16];
+
+ memset(ext_cap_data, '\0', sizeof(ext_cap_data));
+ for (i = 0; i < read_dpcd_retry_cnt; i++) {
+ status = core_link_read_dpcd(
+ link,
+ DP_DP13_DPCD_REV,
+ ext_cap_data,
+ sizeof(ext_cap_data));
+ if (status == DC_OK) {
+ memcpy(dpcd_data, ext_cap_data, sizeof(dpcd_data));
+ break;
+ }
+ }
+ if (status != DC_OK)
+ dm_error("%s: Read extend caps data failed, use cap from dpcd 0.\n", __func__);
+ }
+ }
+
+ link->dpcd_caps.dpcd_rev.raw =
+ dpcd_data[DP_DPCD_REV - DP_DPCD_REV];
+
+ if (link->dpcd_caps.ext_receiver_cap_field_present) {
+ for (i = 0; i < read_dpcd_retry_cnt; i++) {
+ status = core_link_read_dpcd(
+ link,
+ DP_DPRX_FEATURE_ENUMERATION_LIST,
+ &dpcd_dprx_data,
+ sizeof(dpcd_dprx_data));
+ if (status == DC_OK)
+ break;
+ }
+
+ link->dpcd_caps.dprx_feature.raw = dpcd_dprx_data;
+
+ if (status != DC_OK)
+ dm_error("%s: Read DPRX caps data failed.\n", __func__);
+
+ /* AdaptiveSyncCapability */
+ dpcd_dprx_data = 0;
+ for (i = 0; i < read_dpcd_retry_cnt; i++) {
+ status = core_link_read_dpcd(
+ link, DP_DPRX_FEATURE_ENUMERATION_LIST_CONT_1,
+ &dpcd_dprx_data, sizeof(dpcd_dprx_data));
+ if (status == DC_OK)
+ break;
+ }
+
+ link->dpcd_caps.adaptive_sync_caps.dp_adap_sync_caps.raw = dpcd_dprx_data;
+
+ if (status != DC_OK)
+ dm_error("%s: Read DPRX caps data failed. Addr:%#x\n",
+ __func__, DP_DPRX_FEATURE_ENUMERATION_LIST_CONT_1);
+ }
+
+ else {
+ link->dpcd_caps.dprx_feature.raw = 0;
+ }
+
+
+ /* Error condition checking...
+ * It is impossible for Sink to report Max Lane Count = 0.
+ * It is possible for Sink to report Max Link Rate = 0, if it is
+ * an eDP device that is reporting specialized link rates in the
+ * SUPPORTED_LINK_RATE table.
+ */
+ if (dpcd_data[DP_MAX_LANE_COUNT - DP_DPCD_REV] == 0)
+ return false;
+
+ ds_port.byte = dpcd_data[DP_DOWNSTREAMPORT_PRESENT -
+ DP_DPCD_REV];
+
+ read_dp_device_vendor_id(link);
+
+ /* TODO - decouple raw mst capability from policy decision */
+ link->dpcd_caps.is_mst_capable = read_is_mst_supported(link);
+
+ get_active_converter_info(ds_port.byte, link);
+
+ dp_wa_power_up_0010FA(link, dpcd_data, sizeof(dpcd_data));
+
+ down_strm_port_count.raw = dpcd_data[DP_DOWN_STREAM_PORT_COUNT -
+ DP_DPCD_REV];
+
+ link->dpcd_caps.allow_invalid_MSA_timing_param =
+ down_strm_port_count.bits.IGNORE_MSA_TIMING_PARAM;
+
+ link->dpcd_caps.max_ln_count.raw = dpcd_data[
+ DP_MAX_LANE_COUNT - DP_DPCD_REV];
+
+ link->dpcd_caps.max_down_spread.raw = dpcd_data[
+ DP_MAX_DOWNSPREAD - DP_DPCD_REV];
+
+ link->reported_link_cap.lane_count =
+ link->dpcd_caps.max_ln_count.bits.MAX_LANE_COUNT;
+ link->reported_link_cap.link_rate = get_link_rate_from_max_link_bw(
+ dpcd_data[DP_MAX_LINK_RATE - DP_DPCD_REV]);
+ link->reported_link_cap.link_spread =
+ link->dpcd_caps.max_down_spread.bits.MAX_DOWN_SPREAD ?
+ LINK_SPREAD_05_DOWNSPREAD_30KHZ : LINK_SPREAD_DISABLED;
+
+ edp_config_cap.raw = dpcd_data[
+ DP_EDP_CONFIGURATION_CAP - DP_DPCD_REV];
+ link->dpcd_caps.panel_mode_edp =
+ edp_config_cap.bits.ALT_SCRAMBLER_RESET;
+ link->dpcd_caps.dpcd_display_control_capable =
+ edp_config_cap.bits.DPCD_DISPLAY_CONTROL_CAPABLE;
+ link->dpcd_caps.channel_coding_cap.raw =
+ dpcd_data[DP_MAIN_LINK_CHANNEL_CODING - DP_DPCD_REV];
+ link->test_pattern_enabled = false;
+ link->compliance_test_state.raw = 0;
+
+ /* read sink count */
+ core_link_read_dpcd(link,
+ DP_SINK_COUNT,
+ &link->dpcd_caps.sink_count.raw,
+ sizeof(link->dpcd_caps.sink_count.raw));
+
+ /* read sink ieee oui */
+ core_link_read_dpcd(link,
+ DP_SINK_OUI,
+ (uint8_t *)(&sink_id),
+ sizeof(sink_id));
+
+ link->dpcd_caps.sink_dev_id =
+ (sink_id.ieee_oui[0] << 16) +
+ (sink_id.ieee_oui[1] << 8) +
+ (sink_id.ieee_oui[2]);
+
+ memmove(
+ link->dpcd_caps.sink_dev_id_str,
+ sink_id.ieee_device_id,
+ sizeof(sink_id.ieee_device_id));
+
+ core_link_read_dpcd(
+ link,
+ DP_SINK_HW_REVISION_START,
+ (uint8_t *)&dp_hw_fw_revision,
+ sizeof(dp_hw_fw_revision));
+
+ link->dpcd_caps.sink_hw_revision =
+ dp_hw_fw_revision.ieee_hw_rev;
+
+ memmove(
+ link->dpcd_caps.sink_fw_revision,
+ dp_hw_fw_revision.ieee_fw_rev,
+ sizeof(dp_hw_fw_revision.ieee_fw_rev));
+
+ /* Quirk for Retina panels: wrong DP_MAX_LINK_RATE */
+ {
+ uint8_t str_mbp_2018[] = { 101, 68, 21, 103, 98, 97 };
+ uint8_t fwrev_mbp_2018[] = { 7, 4 };
+ uint8_t fwrev_mbp_2018_vega[] = { 8, 4 };
+
+ /* We also check for the firmware revision as 16,1 models have an
+ * identical device id and are incorrectly quirked otherwise.
+ */
+ if ((link->dpcd_caps.sink_dev_id == 0x0010fa) &&
+ !memcmp(link->dpcd_caps.sink_dev_id_str, str_mbp_2018,
+ sizeof(str_mbp_2018)) &&
+ (!memcmp(link->dpcd_caps.sink_fw_revision, fwrev_mbp_2018,
+ sizeof(fwrev_mbp_2018)) ||
+ !memcmp(link->dpcd_caps.sink_fw_revision, fwrev_mbp_2018_vega,
+ sizeof(fwrev_mbp_2018_vega)))) {
+ link->reported_link_cap.link_rate = LINK_RATE_RBR2;
+ }
+ }
+
+ memset(&link->dpcd_caps.dsc_caps, '\0',
+ sizeof(link->dpcd_caps.dsc_caps));
+ memset(&link->dpcd_caps.fec_cap, '\0', sizeof(link->dpcd_caps.fec_cap));
+ /* Read DSC and FEC sink capabilities if DP revision is 1.4 and up */
+ if (link->dpcd_caps.dpcd_rev.raw >= DPCD_REV_14) {
+ status = core_link_read_dpcd(
+ link,
+ DP_FEC_CAPABILITY,
+ &link->dpcd_caps.fec_cap.raw,
+ sizeof(link->dpcd_caps.fec_cap.raw));
+ status = core_link_read_dpcd(
+ link,
+ DP_DSC_SUPPORT,
+ link->dpcd_caps.dsc_caps.dsc_basic_caps.raw,
+ sizeof(link->dpcd_caps.dsc_caps.dsc_basic_caps.raw));
+ if (link->dpcd_caps.dongle_type != DISPLAY_DONGLE_NONE) {
+ status = core_link_read_dpcd(
+ link,
+ DP_DSC_BRANCH_OVERALL_THROUGHPUT_0,
+ link->dpcd_caps.dsc_caps.dsc_branch_decoder_caps.raw,
+ sizeof(link->dpcd_caps.dsc_caps.dsc_branch_decoder_caps.raw));
+ DC_LOG_DSC("DSC branch decoder capability is read at link %d", link->link_index);
+ DC_LOG_DSC("\tBRANCH_OVERALL_THROUGHPUT_0 = 0x%02x",
+ link->dpcd_caps.dsc_caps.dsc_branch_decoder_caps.fields.BRANCH_OVERALL_THROUGHPUT_0);
+ DC_LOG_DSC("\tBRANCH_OVERALL_THROUGHPUT_1 = 0x%02x",
+ link->dpcd_caps.dsc_caps.dsc_branch_decoder_caps.fields.BRANCH_OVERALL_THROUGHPUT_1);
+ DC_LOG_DSC("\tBRANCH_MAX_LINE_WIDTH 0x%02x",
+ link->dpcd_caps.dsc_caps.dsc_branch_decoder_caps.fields.BRANCH_MAX_LINE_WIDTH);
+ }
+
+ /* Apply work around to disable FEC and DSC for USB4 tunneling in TBT3 compatibility mode
+ * only if required.
+ */
+ if (link->ep_type == DISPLAY_ENDPOINT_USB4_DPIA &&
+ link->dc->debug.dpia_debug.bits.enable_force_tbt3_work_around &&
+ link->dpcd_caps.is_branch_dev &&
+ link->dpcd_caps.branch_dev_id == DP_BRANCH_DEVICE_ID_90CC24 &&
+ link->dpcd_caps.branch_hw_revision == DP_BRANCH_HW_REV_10 &&
+ (link->dpcd_caps.fec_cap.bits.FEC_CAPABLE ||
+ link->dpcd_caps.dsc_caps.dsc_basic_caps.fields.dsc_support.DSC_SUPPORT)) {
+ /* A TBT3 device is expected to report no support for FEC or DSC to a USB4 DPIA.
+ * Clear FEC and DSC capabilities as a work around if that is not the case.
+ */
+ link->wa_flags.dpia_forced_tbt3_mode = true;
+ memset(&link->dpcd_caps.dsc_caps, '\0', sizeof(link->dpcd_caps.dsc_caps));
+ memset(&link->dpcd_caps.fec_cap, '\0', sizeof(link->dpcd_caps.fec_cap));
+ DC_LOG_DSC("Clear DSC SUPPORT for USB4 link(%d) in TBT3 compatibility mode", link->link_index);
+ } else
+ link->wa_flags.dpia_forced_tbt3_mode = false;
+ }
+
+ if (!dpcd_read_sink_ext_caps(link))
+ link->dpcd_sink_ext_caps.raw = 0;
+
+ if (link->dpcd_caps.channel_coding_cap.bits.DP_128b_132b_SUPPORTED) {
+ DC_LOG_DP2("128b/132b encoding is supported at link %d", link->link_index);
+
+ core_link_read_dpcd(link,
+ DP_128B132B_SUPPORTED_LINK_RATES,
+ &link->dpcd_caps.dp_128b_132b_supported_link_rates.raw,
+ sizeof(link->dpcd_caps.dp_128b_132b_supported_link_rates.raw));
+ if (link->dpcd_caps.dp_128b_132b_supported_link_rates.bits.UHBR20)
+ link->reported_link_cap.link_rate = LINK_RATE_UHBR20;
+ else if (link->dpcd_caps.dp_128b_132b_supported_link_rates.bits.UHBR13_5)
+ link->reported_link_cap.link_rate = LINK_RATE_UHBR13_5;
+ else if (link->dpcd_caps.dp_128b_132b_supported_link_rates.bits.UHBR10)
+ link->reported_link_cap.link_rate = LINK_RATE_UHBR10;
+ else
+ dm_error("%s: Invalid RX 128b_132b_supported_link_rates\n", __func__);
+ DC_LOG_DP2("128b/132b supported link rates is read at link %d", link->link_index);
+ DC_LOG_DP2("\tmax 128b/132b link rate support is %d.%d GHz",
+ link->reported_link_cap.link_rate / 100,
+ link->reported_link_cap.link_rate % 100);
+
+ core_link_read_dpcd(link,
+ DP_SINK_VIDEO_FALLBACK_FORMATS,
+ &link->dpcd_caps.fallback_formats.raw,
+ sizeof(link->dpcd_caps.fallback_formats.raw));
+ DC_LOG_DP2("sink video fallback format is read at link %d", link->link_index);
+ if (link->dpcd_caps.fallback_formats.bits.dp_1920x1080_60Hz_24bpp_support)
+ DC_LOG_DP2("\t1920x1080@60Hz 24bpp fallback format supported");
+ if (link->dpcd_caps.fallback_formats.bits.dp_1280x720_60Hz_24bpp_support)
+ DC_LOG_DP2("\t1280x720@60Hz 24bpp fallback format supported");
+ if (link->dpcd_caps.fallback_formats.bits.dp_1024x768_60Hz_24bpp_support)
+ DC_LOG_DP2("\t1024x768@60Hz 24bpp fallback format supported");
+ if (link->dpcd_caps.fallback_formats.raw == 0) {
+ DC_LOG_DP2("\tno supported fallback formats, assume 1920x1080@60Hz 24bpp is supported");
+ link->dpcd_caps.fallback_formats.bits.dp_1920x1080_60Hz_24bpp_support = 1;
+ }
+
+ core_link_read_dpcd(link,
+ DP_FEC_CAPABILITY_1,
+ &link->dpcd_caps.fec_cap1.raw,
+ sizeof(link->dpcd_caps.fec_cap1.raw));
+ DC_LOG_DP2("FEC CAPABILITY 1 is read at link %d", link->link_index);
+ if (link->dpcd_caps.fec_cap1.bits.AGGREGATED_ERROR_COUNTERS_CAPABLE)
+ DC_LOG_DP2("\tFEC aggregated error counters are supported");
+ }
+
+ retrieve_cable_id(link);
+ dpcd_write_cable_id_to_dprx(link);
+
+ /* Connectivity log: detection */
+ CONN_DATA_DETECT(link, dpcd_data, sizeof(dpcd_data), "Rx Caps: ");
+
+ return true;
+}
+
+bool detect_dp_sink_caps(struct dc_link *link)
+{
+ return retrieve_link_cap(link);
+}
+
+void detect_edp_sink_caps(struct dc_link *link)
+{
+ uint8_t supported_link_rates[16];
+ uint32_t entry;
+ uint32_t link_rate_in_khz;
+ enum dc_link_rate link_rate = LINK_RATE_UNKNOWN;
+ uint8_t backlight_adj_cap;
+ uint8_t general_edp_cap;
+
+ retrieve_link_cap(link);
+ link->dpcd_caps.edp_supported_link_rates_count = 0;
+ memset(supported_link_rates, 0, sizeof(supported_link_rates));
+
+ /*
+ * edp_supported_link_rates_count is only valid for eDP v1.4 or higher.
+ * Per VESA eDP spec, "The DPCD revision for eDP v1.4 is 13h"
+ */
+ if (link->dpcd_caps.dpcd_rev.raw >= DPCD_REV_13 &&
+ (link->panel_config.ilr.optimize_edp_link_rate ||
+ link->reported_link_cap.link_rate == LINK_RATE_UNKNOWN)) {
+ // Read DPCD 00010h - 0001Fh 16 bytes at one shot
+ core_link_read_dpcd(link, DP_SUPPORTED_LINK_RATES,
+ supported_link_rates, sizeof(supported_link_rates));
+
+ for (entry = 0; entry < 16; entry += 2) {
+ // DPCD register reports per-lane link rate = 16-bit link rate capability
+ // value X 200 kHz. Need multiplier to find link rate in kHz.
+ link_rate_in_khz = (supported_link_rates[entry+1] * 0x100 +
+ supported_link_rates[entry]) * 200;
+
+ if (link_rate_in_khz != 0) {
+ link_rate = linkRateInKHzToLinkRateMultiplier(link_rate_in_khz);
+ link->dpcd_caps.edp_supported_link_rates[link->dpcd_caps.edp_supported_link_rates_count] = link_rate;
+ link->dpcd_caps.edp_supported_link_rates_count++;
+
+ if (link->reported_link_cap.link_rate < link_rate)
+ link->reported_link_cap.link_rate = link_rate;
+ }
+ }
+ }
+ core_link_read_dpcd(link, DP_EDP_BACKLIGHT_ADJUSTMENT_CAP,
+ &backlight_adj_cap, sizeof(backlight_adj_cap));
+
+ link->dpcd_caps.dynamic_backlight_capable_edp =
+ (backlight_adj_cap & DP_EDP_DYNAMIC_BACKLIGHT_CAP) ? true:false;
+
+ core_link_read_dpcd(link, DP_EDP_GENERAL_CAP_1,
+ &general_edp_cap, sizeof(general_edp_cap));
+
+ link->dpcd_caps.set_power_state_capable_edp =
+ (general_edp_cap & DP_EDP_SET_POWER_CAP) ? true:false;
+
+ set_default_brightness_aux(link);
+
+ core_link_read_dpcd(link, DP_EDP_DPCD_REV,
+ &link->dpcd_caps.edp_rev,
+ sizeof(link->dpcd_caps.edp_rev));
+ /*
+ * PSR is only valid for eDP v1.3 or higher.
+ */
+ if (link->dpcd_caps.edp_rev >= DP_EDP_13) {
+ core_link_read_dpcd(link, DP_PSR_SUPPORT,
+ &link->dpcd_caps.psr_info.psr_version,
+ sizeof(link->dpcd_caps.psr_info.psr_version));
+ if (link->dpcd_caps.sink_dev_id == DP_BRANCH_DEVICE_ID_001CF8)
+ core_link_read_dpcd(link, DP_FORCE_PSRSU_CAPABILITY,
+ &link->dpcd_caps.psr_info.force_psrsu_cap,
+ sizeof(link->dpcd_caps.psr_info.force_psrsu_cap));
+ core_link_read_dpcd(link, DP_PSR_CAPS,
+ &link->dpcd_caps.psr_info.psr_dpcd_caps.raw,
+ sizeof(link->dpcd_caps.psr_info.psr_dpcd_caps.raw));
+ if (link->dpcd_caps.psr_info.psr_dpcd_caps.bits.Y_COORDINATE_REQUIRED) {
+ core_link_read_dpcd(link, DP_PSR2_SU_Y_GRANULARITY,
+ &link->dpcd_caps.psr_info.psr2_su_y_granularity_cap,
+ sizeof(link->dpcd_caps.psr_info.psr2_su_y_granularity_cap));
+ }
+ }
+
+ /*
+ * ALPM is only valid for eDP v1.4 or higher.
+ */
+ if (link->dpcd_caps.dpcd_rev.raw >= DP_EDP_14)
+ core_link_read_dpcd(link, DP_RECEIVER_ALPM_CAP,
+ &link->dpcd_caps.alpm_caps.raw,
+ sizeof(link->dpcd_caps.alpm_caps.raw));
+}
+
+bool dp_get_max_link_enc_cap(const struct dc_link *link, struct dc_link_settings *max_link_enc_cap)
+{
+ struct link_encoder *link_enc = NULL;
+
+ if (!max_link_enc_cap) {
+ DC_LOG_ERROR("%s: Could not return max link encoder caps", __func__);
+ return false;
+ }
+
+ link_enc = link_enc_cfg_get_link_enc(link);
+ ASSERT(link_enc);
+
+ if (link_enc && link_enc->funcs->get_max_link_cap) {
+ link_enc->funcs->get_max_link_cap(link_enc, max_link_enc_cap);
+ return true;
+ }
+
+ DC_LOG_ERROR("%s: Max link encoder caps unknown", __func__);
+ max_link_enc_cap->lane_count = 1;
+ max_link_enc_cap->link_rate = 6;
+ return false;
+}
+
+const struct dc_link_settings *dp_get_verified_link_cap(
+ const struct dc_link *link)
+{
+ if (link->preferred_link_setting.lane_count != LANE_COUNT_UNKNOWN &&
+ link->preferred_link_setting.link_rate != LINK_RATE_UNKNOWN)
+ return &link->preferred_link_setting;
+ return &link->verified_link_cap;
+}
+
+struct dc_link_settings dp_get_max_link_cap(struct dc_link *link)
+{
+ struct dc_link_settings max_link_cap = {0};
+ enum dc_link_rate lttpr_max_link_rate;
+ enum dc_link_rate cable_max_link_rate;
+ struct link_encoder *link_enc = NULL;
+
+
+ link_enc = link_enc_cfg_get_link_enc(link);
+ ASSERT(link_enc);
+
+ /* get max link encoder capability */
+ if (link_enc)
+ link_enc->funcs->get_max_link_cap(link_enc, &max_link_cap);
+
+ /* Lower link settings based on sink's link cap */
+ if (link->reported_link_cap.lane_count < max_link_cap.lane_count)
+ max_link_cap.lane_count =
+ link->reported_link_cap.lane_count;
+ if (link->reported_link_cap.link_rate < max_link_cap.link_rate)
+ max_link_cap.link_rate =
+ link->reported_link_cap.link_rate;
+ if (link->reported_link_cap.link_spread <
+ max_link_cap.link_spread)
+ max_link_cap.link_spread =
+ link->reported_link_cap.link_spread;
+
+ /* Lower link settings based on cable attributes
+ * Cable ID is a DP2 feature to identify max certified link rate that
+ * a cable can carry. The cable identification method requires both
+ * cable and display hardware support. Since the specs comes late, it is
+ * anticipated that the first round of DP2 cables and displays may not
+ * be fully compatible to reliably return cable ID data. Therefore the
+ * decision of our cable id policy is that if the cable can return non
+ * zero cable id data, we will take cable's link rate capability into
+ * account. However if we get zero data, the cable link rate capability
+ * is considered inconclusive. In this case, we will not take cable's
+ * capability into account to avoid of over limiting hardware capability
+ * from users. The max overall link rate capability is still determined
+ * after actual dp pre-training. Cable id is considered as an auxiliary
+ * method of determining max link bandwidth capability.
+ */
+ cable_max_link_rate = get_cable_max_link_rate(link);
+
+ if (!link->dc->debug.ignore_cable_id &&
+ cable_max_link_rate != LINK_RATE_UNKNOWN &&
+ cable_max_link_rate < max_link_cap.link_rate)
+ max_link_cap.link_rate = cable_max_link_rate;
+
+ /* account for lttpr repeaters cap
+ * notes: repeaters do not snoop in the DPRX Capabilities addresses (3.6.3).
+ */
+ if (dp_is_lttpr_present(link)) {
+ if (link->dpcd_caps.lttpr_caps.max_lane_count < max_link_cap.lane_count)
+ max_link_cap.lane_count = link->dpcd_caps.lttpr_caps.max_lane_count;
+ lttpr_max_link_rate = get_lttpr_max_link_rate(link);
+
+ if (lttpr_max_link_rate < max_link_cap.link_rate)
+ max_link_cap.link_rate = lttpr_max_link_rate;
+
+ DC_LOG_HW_LINK_TRAINING("%s\n Training with LTTPR, max_lane count %d max_link rate %d \n",
+ __func__,
+ max_link_cap.lane_count,
+ max_link_cap.link_rate);
+ }
+
+ if (link_dp_get_encoding_format(&max_link_cap) == DP_128b_132b_ENCODING &&
+ link->dc->debug.disable_uhbr)
+ max_link_cap.link_rate = LINK_RATE_HIGH3;
+
+ return max_link_cap;
+}
+
+static bool dp_verify_link_cap(
+ struct dc_link *link,
+ struct dc_link_settings *known_limit_link_setting,
+ int *fail_count)
+{
+ struct dc_link_settings cur_link_settings = {0};
+ struct dc_link_settings max_link_settings = *known_limit_link_setting;
+ bool success = false;
+ bool skip_video_pattern;
+ enum clock_source_id dp_cs_id = get_clock_source_id(link);
+ enum link_training_result status = LINK_TRAINING_SUCCESS;
+ union hpd_irq_data irq_data;
+ struct link_resource link_res;
+
+ memset(&irq_data, 0, sizeof(irq_data));
+ cur_link_settings = max_link_settings;
+
+ /* Grant extended timeout request */
+ if (dp_is_lttpr_present(link) && link->dpcd_caps.lttpr_caps.max_ext_timeout > 0) {
+ uint8_t grant = link->dpcd_caps.lttpr_caps.max_ext_timeout & 0x80;
+
+ core_link_write_dpcd(link, DP_PHY_REPEATER_EXTENDED_WAIT_TIMEOUT, &grant, sizeof(grant));
+ }
+
+ do {
+ if (!get_temp_dp_link_res(link, &link_res, &cur_link_settings))
+ continue;
+
+ skip_video_pattern = cur_link_settings.link_rate != LINK_RATE_LOW;
+ dp_enable_link_phy(
+ link,
+ &link_res,
+ link->connector_signal,
+ dp_cs_id,
+ &cur_link_settings);
+
+ status = dp_perform_link_training(
+ link,
+ &link_res,
+ &cur_link_settings,
+ skip_video_pattern);
+
+ if (status == LINK_TRAINING_SUCCESS) {
+ success = true;
+ fsleep(1000);
+ if (dp_read_hpd_rx_irq_data(link, &irq_data) == DC_OK &&
+ dp_parse_link_loss_status(
+ link,
+ &irq_data))
+ (*fail_count)++;
+
+ } else {
+ (*fail_count)++;
+ }
+ dp_trace_lt_total_count_increment(link, true);
+ dp_trace_lt_result_update(link, status, true);
+ dp_disable_link_phy(link, &link_res, link->connector_signal);
+ } while (!success && decide_fallback_link_setting(link,
+ &max_link_settings, &cur_link_settings, status));
+
+ link->verified_link_cap = success ?
+ cur_link_settings : fail_safe_link_settings;
+ return success;
+}
+
+bool dp_verify_link_cap_with_retries(
+ struct dc_link *link,
+ struct dc_link_settings *known_limit_link_setting,
+ int attempts)
+{
+ int i = 0;
+ bool success = false;
+ int fail_count = 0;
+
+ dp_trace_detect_lt_init(link);
+
+ if (link->link_enc && link->link_enc->features.flags.bits.DP_IS_USB_C &&
+ link->dc->debug.usbc_combo_phy_reset_wa)
+ apply_usbc_combo_phy_reset_wa(link, known_limit_link_setting);
+
+ dp_trace_set_lt_start_timestamp(link, false);
+ for (i = 0; i < attempts; i++) {
+ enum dc_connection_type type = dc_connection_none;
+
+ memset(&link->verified_link_cap, 0,
+ sizeof(struct dc_link_settings));
+ if (!link_detect_connection_type(link, &type) || type == dc_connection_none) {
+ link->verified_link_cap = fail_safe_link_settings;
+ break;
+ } else if (dp_verify_link_cap(link, known_limit_link_setting,
+ &fail_count) && fail_count == 0) {
+ success = true;
+ break;
+ }
+ fsleep(10 * 1000);
+ }
+
+ dp_trace_lt_fail_count_update(link, fail_count, true);
+ dp_trace_set_lt_end_timestamp(link, true);
+
+ return success;
+}
+
+/*
+ * Check if there is a native DP or passive DP-HDMI dongle connected
+ */
+bool dp_is_sink_present(struct dc_link *link)
+{
+ enum gpio_result gpio_result;
+ uint32_t clock_pin = 0;
+ uint8_t retry = 0;
+ struct ddc *ddc;
+
+ enum connector_id connector_id =
+ dal_graphics_object_id_get_connector_id(link->link_id);
+
+ bool present =
+ ((connector_id == CONNECTOR_ID_DISPLAY_PORT) ||
+ (connector_id == CONNECTOR_ID_EDP) ||
+ (connector_id == CONNECTOR_ID_USBC));
+
+ ddc = get_ddc_pin(link->ddc);
+
+ if (!ddc) {
+ BREAK_TO_DEBUGGER();
+ return present;
+ }
+
+ /* Open GPIO and set it to I2C mode */
+ /* Note: this GpioMode_Input will be converted
+ * to GpioConfigType_I2cAuxDualMode in GPIO component,
+ * which indicates we need additional delay
+ */
+
+ if (dal_ddc_open(ddc, GPIO_MODE_INPUT,
+ GPIO_DDC_CONFIG_TYPE_MODE_I2C) != GPIO_RESULT_OK) {
+ dal_ddc_close(ddc);
+
+ return present;
+ }
+
+ /*
+ * Read GPIO: DP sink is present if both clock and data pins are zero
+ *
+ * [W/A] plug-unplug DP cable, sometimes customer board has
+ * one short pulse on clk_pin(1V, < 1ms). DP will be config to HDMI/DVI
+ * then monitor can't br light up. Add retry 3 times
+ * But in real passive dongle, it need additional 3ms to detect
+ */
+ do {
+ gpio_result = dal_gpio_get_value(ddc->pin_clock, &clock_pin);
+ ASSERT(gpio_result == GPIO_RESULT_OK);
+ if (clock_pin)
+ fsleep(1000);
+ else
+ break;
+ } while (retry++ < 3);
+
+ present = (gpio_result == GPIO_RESULT_OK) && !clock_pin;
+
+ dal_ddc_close(ddc);
+
+ return present;
+}
diff --git a/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_capability.h b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_capability.h
new file mode 100644
index 000000000000..8f0ce97f2362
--- /dev/null
+++ b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_capability.h
@@ -0,0 +1,107 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ * Authors: AMD
+ *
+ */
+
+#ifndef __DC_LINK_DP_CAPABILITY_H__
+#define __DC_LINK_DP_CAPABILITY_H__
+
+#include "link.h"
+
+bool detect_dp_sink_caps(struct dc_link *link);
+
+void detect_edp_sink_caps(struct dc_link *link);
+
+struct dc_link_settings dp_get_max_link_cap(struct dc_link *link);
+
+bool dp_get_max_link_enc_cap(const struct dc_link *link,
+ struct dc_link_settings *max_link_enc_cap);
+
+const struct dc_link_settings *dp_get_verified_link_cap(
+ const struct dc_link *link);
+
+enum dp_link_encoding link_dp_get_encoding_format(
+ const struct dc_link_settings *link_settings);
+
+enum dc_status dp_retrieve_lttpr_cap(struct dc_link *link);
+
+/* Convert PHY repeater count read from DPCD uint8_t. */
+uint8_t dp_parse_lttpr_repeater_count(uint8_t lttpr_repeater_count);
+
+bool dp_is_sink_present(struct dc_link *link);
+
+bool dp_is_lttpr_present(struct dc_link *link);
+
+bool dp_is_fec_supported(const struct dc_link *link);
+
+bool is_dp_active_dongle(const struct dc_link *link);
+
+bool is_dp_branch_device(const struct dc_link *link);
+
+void dpcd_write_cable_id_to_dprx(struct dc_link *link);
+
+bool dp_should_enable_fec(const struct dc_link *link);
+
+bool dp_is_128b_132b_signal(struct pipe_ctx *pipe_ctx);
+
+/* Initialize output parameter lt_settings. */
+void dp_decide_training_settings(
+ struct dc_link *link,
+ const struct dc_link_settings *link_setting,
+ struct link_training_settings *lt_settings);
+
+bool link_decide_link_settings(
+ struct dc_stream_state *stream,
+ struct dc_link_settings *link_setting);
+
+bool edp_decide_link_settings(struct dc_link *link,
+ struct dc_link_settings *link_setting, uint32_t req_bw);
+
+bool decide_edp_link_settings_with_dsc(struct dc_link *link,
+ struct dc_link_settings *link_setting,
+ uint32_t req_bw,
+ enum dc_link_rate max_link_rate);
+
+enum dp_link_encoding mst_decide_link_encoding_format(const struct dc_link *link);
+
+void dpcd_set_source_specific_data(struct dc_link *link);
+
+/*query dpcd for version and mst cap addresses*/
+bool read_is_mst_supported(struct dc_link *link);
+
+bool decide_fallback_link_setting(
+ struct dc_link *link,
+ struct dc_link_settings *max,
+ struct dc_link_settings *cur,
+ enum link_training_result training_result);
+
+bool dp_verify_link_cap_with_retries(
+ struct dc_link *link,
+ struct dc_link_settings *known_limit_link_setting,
+ int attempts);
+
+uint32_t link_bw_kbps_from_raw_frl_link_rate_data(uint8_t bw);
+
+bool dp_overwrite_extended_receiver_cap(struct dc_link *link);
+
+#endif /* __DC_LINK_DP_CAPABILITY_H__ */
diff --git a/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_dpia.c b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_dpia.c
new file mode 100644
index 000000000000..4626fabc0a96
--- /dev/null
+++ b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_dpia.c
@@ -0,0 +1,105 @@
+// SPDX-License-Identifier: MIT
+/*
+ * Copyright 2021 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ * Authors: AMD
+ *
+ */
+
+#include "dc.h"
+#include "inc/core_status.h"
+#include "dpcd_defs.h"
+
+#include "link_dp_dpia.h"
+#include "link_hwss.h"
+#include "dm_helpers.h"
+#include "dmub/inc/dmub_cmd.h"
+#include "link_dpcd.h"
+#include "link_dp_training.h"
+#include "dc_dmub_srv.h"
+
+#define DC_LOGGER \
+ link->ctx->logger
+
+/** @note Can remove once DP tunneling registers in upstream include/drm/drm_dp_helper.h */
+/* DPCD DP Tunneling over USB4 */
+#define DP_TUNNELING_CAPABILITIES_SUPPORT 0xe000d
+#define DP_IN_ADAPTER_INFO 0xe000e
+#define DP_USB4_DRIVER_ID 0xe000f
+#define DP_USB4_ROUTER_TOPOLOGY_ID 0xe001b
+
+enum dc_status dpcd_get_tunneling_device_data(struct dc_link *link)
+{
+ enum dc_status status = DC_OK;
+ uint8_t dpcd_dp_tun_data[3] = {0};
+ uint8_t dpcd_topology_data[DPCD_USB4_TOPOLOGY_ID_LEN] = {0};
+ uint8_t i = 0;
+
+ status = core_link_read_dpcd(
+ link,
+ DP_TUNNELING_CAPABILITIES_SUPPORT,
+ dpcd_dp_tun_data,
+ sizeof(dpcd_dp_tun_data));
+
+ status = core_link_read_dpcd(
+ link,
+ DP_USB4_ROUTER_TOPOLOGY_ID,
+ dpcd_topology_data,
+ sizeof(dpcd_topology_data));
+
+ link->dpcd_caps.usb4_dp_tun_info.dp_tun_cap.raw =
+ dpcd_dp_tun_data[DP_TUNNELING_CAPABILITIES_SUPPORT - DP_TUNNELING_CAPABILITIES_SUPPORT];
+ link->dpcd_caps.usb4_dp_tun_info.dpia_info.raw =
+ dpcd_dp_tun_data[DP_IN_ADAPTER_INFO - DP_TUNNELING_CAPABILITIES_SUPPORT];
+ link->dpcd_caps.usb4_dp_tun_info.usb4_driver_id =
+ dpcd_dp_tun_data[DP_USB4_DRIVER_ID - DP_TUNNELING_CAPABILITIES_SUPPORT];
+
+ for (i = 0; i < DPCD_USB4_TOPOLOGY_ID_LEN; i++)
+ link->dpcd_caps.usb4_dp_tun_info.usb4_topology_id[i] = dpcd_topology_data[i];
+
+ return status;
+}
+
+bool dpia_query_hpd_status(struct dc_link *link)
+{
+ union dmub_rb_cmd cmd = {0};
+ struct dc_dmub_srv *dmub_srv = link->ctx->dmub_srv;
+ bool is_hpd_high = false;
+
+ /* prepare QUERY_HPD command */
+ cmd.query_hpd.header.type = DMUB_CMD__QUERY_HPD_STATE;
+ cmd.query_hpd.data.instance = link->link_id.enum_id - ENUM_ID_1;
+ cmd.query_hpd.data.ch_type = AUX_CHANNEL_DPIA;
+
+ /* Return HPD status reported by DMUB if query successfully executed. */
+ if (dc_dmub_srv_cmd_with_reply_data(dmub_srv, &cmd) && cmd.query_hpd.data.status == AUX_RET_SUCCESS)
+ is_hpd_high = cmd.query_hpd.data.result;
+
+ DC_LOG_DEBUG("%s: link(%d) dpia(%d) cmd_status(%d) result(%d)\n",
+ __func__,
+ link->link_index,
+ link->link_id.enum_id - ENUM_ID_1,
+ cmd.query_hpd.data.status,
+ cmd.query_hpd.data.result);
+
+ return is_hpd_high;
+}
+
diff --git a/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_dpia.h b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_dpia.h
new file mode 100644
index 000000000000..363f45a1a964
--- /dev/null
+++ b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_dpia.h
@@ -0,0 +1,41 @@
+/* SPDX-License-Identifier: MIT */
+/*
+ * Copyright 2021 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ * Authors: AMD
+ *
+ */
+
+#ifndef __DC_LINK_DPIA_H__
+#define __DC_LINK_DPIA_H__
+
+#include "link.h"
+
+/* Read tunneling device capability from DPCD and update link capability
+ * accordingly.
+ */
+enum dc_status dpcd_get_tunneling_device_data(struct dc_link *link);
+
+/* Query hot plug status of USB4 DP tunnel.
+ * Returns true if HPD high.
+ */
+bool dpia_query_hpd_status(struct dc_link *link);
+#endif /* __DC_LINK_DPIA_H__ */
diff --git a/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_dpia_bw.c b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_dpia_bw.c
new file mode 100644
index 000000000000..7581023daa47
--- /dev/null
+++ b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_dpia_bw.c
@@ -0,0 +1,492 @@
+
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ * Authors: AMD
+ *
+ */
+/*********************************************************************/
+// USB4 DPIA BANDWIDTH ALLOCATION LOGIC
+/*********************************************************************/
+#include "link_dp_dpia_bw.h"
+#include "link_dpcd.h"
+#include "dc_dmub_srv.h"
+
+#define DC_LOGGER \
+ link->ctx->logger
+
+#define Kbps_TO_Gbps (1000 * 1000)
+
+// ------------------------------------------------------------------
+// PRIVATE FUNCTIONS
+// ------------------------------------------------------------------
+/*
+ * Always Check the following:
+ * - Is it USB4 link?
+ * - Is HPD HIGH?
+ * - Is BW Allocation Support Mode enabled on DP-Tx?
+ */
+static bool get_bw_alloc_proceed_flag(struct dc_link *tmp)
+{
+ return (tmp && DISPLAY_ENDPOINT_USB4_DPIA == tmp->ep_type
+ && tmp->hpd_status
+ && tmp->dpia_bw_alloc_config.bw_alloc_enabled);
+}
+static void reset_bw_alloc_struct(struct dc_link *link)
+{
+ link->dpia_bw_alloc_config.bw_alloc_enabled = false;
+ link->dpia_bw_alloc_config.sink_verified_bw = 0;
+ link->dpia_bw_alloc_config.sink_max_bw = 0;
+ link->dpia_bw_alloc_config.estimated_bw = 0;
+ link->dpia_bw_alloc_config.bw_granularity = 0;
+ link->dpia_bw_alloc_config.response_ready = false;
+}
+static uint8_t get_bw_granularity(struct dc_link *link)
+{
+ uint8_t bw_granularity = 0;
+
+ core_link_read_dpcd(
+ link,
+ DP_BW_GRANULALITY,
+ &bw_granularity,
+ sizeof(uint8_t));
+
+ switch (bw_granularity & 0x3) {
+ case 0:
+ bw_granularity = 4;
+ break;
+ case 1:
+ default:
+ bw_granularity = 2;
+ break;
+ }
+
+ return bw_granularity;
+}
+static int get_estimated_bw(struct dc_link *link)
+{
+ uint8_t bw_estimated_bw = 0;
+
+ core_link_read_dpcd(
+ link,
+ ESTIMATED_BW,
+ &bw_estimated_bw,
+ sizeof(uint8_t));
+
+ return bw_estimated_bw * (Kbps_TO_Gbps / link->dpia_bw_alloc_config.bw_granularity);
+}
+static bool allocate_usb4_bw(int *stream_allocated_bw, int bw_needed, struct dc_link *link)
+{
+ if (bw_needed > 0)
+ *stream_allocated_bw += bw_needed;
+
+ return true;
+}
+static bool deallocate_usb4_bw(int *stream_allocated_bw, int bw_to_dealloc, struct dc_link *link)
+{
+ bool ret = false;
+
+ if (*stream_allocated_bw > 0) {
+ *stream_allocated_bw -= bw_to_dealloc;
+ ret = true;
+ } else {
+ //Do nothing for now
+ ret = true;
+ }
+
+ // Unplug so reset values
+ if (!link->hpd_status)
+ reset_bw_alloc_struct(link);
+
+ return ret;
+}
+/*
+ * Read all New BW alloc configuration ex: estimated_bw, allocated_bw,
+ * granuality, Driver_ID, CM_Group, & populate the BW allocation structs
+ * for host router and dpia
+ */
+static void init_usb4_bw_struct(struct dc_link *link)
+{
+ // Init the known values
+ link->dpia_bw_alloc_config.bw_granularity = get_bw_granularity(link);
+ link->dpia_bw_alloc_config.estimated_bw = get_estimated_bw(link);
+}
+static uint8_t get_lowest_dpia_index(struct dc_link *link)
+{
+ const struct dc *dc_struct = link->dc;
+ uint8_t idx = 0xFF;
+ int i;
+
+ for (i = 0; i < MAX_PIPES * 2; ++i) {
+
+ if (!dc_struct->links[i] ||
+ dc_struct->links[i]->ep_type != DISPLAY_ENDPOINT_USB4_DPIA)
+ continue;
+
+ if (idx > dc_struct->links[i]->link_index)
+ idx = dc_struct->links[i]->link_index;
+ }
+
+ return idx;
+}
+/*
+ * Get the Max Available BW or Max Estimated BW for each Host Router
+ *
+ * @link: pointer to the dc_link struct instance
+ * @type: ESTIMATD BW or MAX AVAILABLE BW
+ *
+ * return: response_ready flag from dc_link struct
+ */
+static int get_host_router_total_bw(struct dc_link *link, uint8_t type)
+{
+ const struct dc *dc_struct = link->dc;
+ uint8_t lowest_dpia_index = get_lowest_dpia_index(link);
+ uint8_t idx = (link->link_index - lowest_dpia_index) / 2, idx_temp = 0;
+ struct dc_link *link_temp;
+ int total_bw = 0;
+ int i;
+
+ for (i = 0; i < MAX_PIPES * 2; ++i) {
+
+ if (!dc_struct->links[i] || dc_struct->links[i]->ep_type != DISPLAY_ENDPOINT_USB4_DPIA)
+ continue;
+
+ link_temp = dc_struct->links[i];
+ if (!link_temp || !link_temp->hpd_status)
+ continue;
+
+ idx_temp = (link_temp->link_index - lowest_dpia_index) / 2;
+
+ if (idx_temp == idx) {
+
+ if (type == HOST_ROUTER_BW_ESTIMATED)
+ total_bw += link_temp->dpia_bw_alloc_config.estimated_bw;
+ else if (type == HOST_ROUTER_BW_ALLOCATED)
+ total_bw += link_temp->dpia_bw_alloc_config.sink_allocated_bw;
+ }
+ }
+
+ return total_bw;
+}
+/*
+ * Cleanup function for when the dpia is unplugged to reset struct
+ * and perform any required clean up
+ *
+ * @link: pointer to the dc_link struct instance
+ *
+ * return: none
+ */
+static bool dpia_bw_alloc_unplug(struct dc_link *link)
+{
+ if (!link)
+ return true;
+
+ return deallocate_usb4_bw(&link->dpia_bw_alloc_config.sink_allocated_bw,
+ link->dpia_bw_alloc_config.sink_allocated_bw, link);
+}
+static void set_usb4_req_bw_req(struct dc_link *link, int req_bw)
+{
+ uint8_t requested_bw;
+ uint32_t temp;
+
+ // 1. Add check for this corner case #1
+ if (req_bw > link->dpia_bw_alloc_config.estimated_bw)
+ req_bw = link->dpia_bw_alloc_config.estimated_bw;
+
+ temp = req_bw * link->dpia_bw_alloc_config.bw_granularity;
+ requested_bw = temp / Kbps_TO_Gbps;
+
+ // Always make sure to add more to account for floating points
+ if (temp % Kbps_TO_Gbps)
+ ++requested_bw;
+
+ // 2. Add check for this corner case #2
+ req_bw = requested_bw * (Kbps_TO_Gbps / link->dpia_bw_alloc_config.bw_granularity);
+ if (req_bw == link->dpia_bw_alloc_config.sink_allocated_bw)
+ return;
+
+ if (core_link_write_dpcd(
+ link,
+ REQUESTED_BW,
+ &requested_bw,
+ sizeof(uint8_t)) == DC_OK)
+ link->dpia_bw_alloc_config.response_ready = false; // Reset flag
+}
+/*
+ * Return the response_ready flag from dc_link struct
+ *
+ * @link: pointer to the dc_link struct instance
+ *
+ * return: response_ready flag from dc_link struct
+ */
+static bool get_cm_response_ready_flag(struct dc_link *link)
+{
+ return link->dpia_bw_alloc_config.response_ready;
+}
+// ------------------------------------------------------------------
+// PUBLIC FUNCTIONS
+// ------------------------------------------------------------------
+bool link_dp_dpia_set_dptx_usb4_bw_alloc_support(struct dc_link *link)
+{
+ bool ret = false;
+ uint8_t response = 0,
+ bw_support_dpia = 0,
+ bw_support_cm = 0;
+
+ if (!(link->ep_type == DISPLAY_ENDPOINT_USB4_DPIA && link->hpd_status))
+ goto out;
+
+ if (core_link_read_dpcd(
+ link,
+ DP_TUNNELING_CAPABILITIES,
+ &response,
+ sizeof(uint8_t)) == DC_OK)
+ bw_support_dpia = (response >> 7) & 1;
+
+ if (core_link_read_dpcd(
+ link,
+ USB4_DRIVER_BW_CAPABILITY,
+ &response,
+ sizeof(uint8_t)) == DC_OK)
+ bw_support_cm = (response >> 7) & 1;
+
+ /* Send request acknowledgment to Turn ON DPTX support */
+ if (bw_support_cm && bw_support_dpia) {
+
+ response = 0x80;
+ if (core_link_write_dpcd(
+ link,
+ DPTX_BW_ALLOCATION_MODE_CONTROL,
+ &response,
+ sizeof(uint8_t)) != DC_OK) {
+ DC_LOG_DEBUG("%s: **** FAILURE Enabling DPtx BW Allocation Mode Support ***\n",
+ __func__);
+ } else {
+ // SUCCESS Enabled DPtx BW Allocation Mode Support
+ link->dpia_bw_alloc_config.bw_alloc_enabled = true;
+ DC_LOG_DEBUG("%s: **** SUCCESS Enabling DPtx BW Allocation Mode Support ***\n",
+ __func__);
+
+ ret = true;
+ init_usb4_bw_struct(link);
+ }
+ }
+
+out:
+ return ret;
+}
+void dpia_handle_bw_alloc_response(struct dc_link *link, uint8_t bw, uint8_t result)
+{
+ int bw_needed = 0;
+ int estimated = 0;
+ int host_router_total_estimated_bw = 0;
+
+ if (!get_bw_alloc_proceed_flag((link)))
+ return;
+
+ switch (result) {
+
+ case DPIA_BW_REQ_FAILED:
+
+ DC_LOG_DEBUG("%s: *** *** BW REQ FAILURE for DP-TX Request *** ***\n", __func__);
+
+ // Update the new Estimated BW value updated by CM
+ link->dpia_bw_alloc_config.estimated_bw =
+ bw * (Kbps_TO_Gbps / link->dpia_bw_alloc_config.bw_granularity);
+
+ set_usb4_req_bw_req(link, link->dpia_bw_alloc_config.estimated_bw);
+ link->dpia_bw_alloc_config.response_ready = false;
+
+ /*
+ * If FAIL then it is either:
+ * 1. Due to DP-Tx trying to allocate more than available i.e. it failed locally
+ * => get estimated and allocate that
+ * 2. Due to the fact that DP-Tx tried to allocated ESTIMATED BW and failed then
+ * CM will have to update 0xE0023 with new ESTIMATED BW value.
+ */
+ break;
+
+ case DPIA_BW_REQ_SUCCESS:
+
+ DC_LOG_DEBUG("%s: *** BW REQ SUCCESS for DP-TX Request ***\n", __func__);
+
+ // 1. SUCCESS 1st time before any Pruning is done
+ // 2. SUCCESS after prev. FAIL before any Pruning is done
+ // 3. SUCCESS after Pruning is done but before enabling link
+
+ bw_needed = bw * (Kbps_TO_Gbps / link->dpia_bw_alloc_config.bw_granularity);
+
+ // 1.
+ if (!link->dpia_bw_alloc_config.sink_allocated_bw) {
+
+ allocate_usb4_bw(&link->dpia_bw_alloc_config.sink_allocated_bw, bw_needed, link);
+ link->dpia_bw_alloc_config.sink_verified_bw =
+ link->dpia_bw_alloc_config.sink_allocated_bw;
+
+ // SUCCESS from first attempt
+ if (link->dpia_bw_alloc_config.sink_allocated_bw >
+ link->dpia_bw_alloc_config.sink_max_bw)
+ link->dpia_bw_alloc_config.sink_verified_bw =
+ link->dpia_bw_alloc_config.sink_max_bw;
+ }
+ // 3.
+ else if (link->dpia_bw_alloc_config.sink_allocated_bw) {
+
+ // Find out how much do we need to de-alloc
+ if (link->dpia_bw_alloc_config.sink_allocated_bw > bw_needed)
+ deallocate_usb4_bw(&link->dpia_bw_alloc_config.sink_allocated_bw,
+ link->dpia_bw_alloc_config.sink_allocated_bw - bw_needed, link);
+ else
+ allocate_usb4_bw(&link->dpia_bw_alloc_config.sink_allocated_bw,
+ bw_needed - link->dpia_bw_alloc_config.sink_allocated_bw, link);
+ }
+
+ // 4. If this is the 2nd sink then any unused bw will be reallocated to master DPIA
+ // => check if estimated_bw changed
+
+ link->dpia_bw_alloc_config.response_ready = true;
+ break;
+
+ case DPIA_EST_BW_CHANGED:
+
+ DC_LOG_DEBUG("%s: *** ESTIMATED BW CHANGED for DP-TX Request ***\n", __func__);
+
+ estimated = bw * (Kbps_TO_Gbps / link->dpia_bw_alloc_config.bw_granularity);
+ host_router_total_estimated_bw = get_host_router_total_bw(link, HOST_ROUTER_BW_ESTIMATED);
+
+ // 1. If due to unplug of other sink
+ if (estimated == host_router_total_estimated_bw) {
+ // First update the estimated & max_bw fields
+ if (link->dpia_bw_alloc_config.estimated_bw < estimated)
+ link->dpia_bw_alloc_config.estimated_bw = estimated;
+ }
+ // 2. If due to realloc bw btw 2 dpia due to plug OR realloc unused Bw
+ else {
+ // We lost estimated bw usually due to plug event of other dpia
+ link->dpia_bw_alloc_config.estimated_bw = estimated;
+ }
+ break;
+
+ case DPIA_BW_ALLOC_CAPS_CHANGED:
+
+ DC_LOG_DEBUG("%s: *** BW ALLOC CAPABILITY CHANGED for DP-TX Request ***\n", __func__);
+ link->dpia_bw_alloc_config.bw_alloc_enabled = false;
+ break;
+ }
+}
+int dpia_handle_usb4_bandwidth_allocation_for_link(struct dc_link *link, int peak_bw)
+{
+ int ret = 0;
+ uint8_t timeout = 10;
+
+ if (!(link && DISPLAY_ENDPOINT_USB4_DPIA == link->ep_type
+ && link->dpia_bw_alloc_config.bw_alloc_enabled))
+ goto out;
+
+ //1. Hot Plug
+ if (link->hpd_status && peak_bw > 0) {
+
+ // If DP over USB4 then we need to check BW allocation
+ link->dpia_bw_alloc_config.sink_max_bw = peak_bw;
+ set_usb4_req_bw_req(link, link->dpia_bw_alloc_config.sink_max_bw);
+
+ do {
+ if (!(timeout > 0))
+ timeout--;
+ else
+ break;
+ fsleep(10 * 1000);
+ } while (!get_cm_response_ready_flag(link));
+
+ if (!timeout)
+ ret = 0;// ERROR TIMEOUT waiting for response for allocating bw
+ else if (link->dpia_bw_alloc_config.sink_allocated_bw > 0)
+ ret = get_host_router_total_bw(link, HOST_ROUTER_BW_ALLOCATED);
+ }
+ //2. Cold Unplug
+ else if (!link->hpd_status)
+ dpia_bw_alloc_unplug(link);
+
+out:
+ return ret;
+}
+int link_dp_dpia_allocate_usb4_bandwidth_for_stream(struct dc_link *link, int req_bw)
+{
+ int ret = 0;
+ uint8_t timeout = 10;
+
+ if (!get_bw_alloc_proceed_flag(link))
+ goto out;
+
+ /*
+ * Sometimes stream uses same timing parameters as the already
+ * allocated max sink bw so no need to re-alloc
+ */
+ if (req_bw != link->dpia_bw_alloc_config.sink_allocated_bw) {
+ set_usb4_req_bw_req(link, req_bw);
+ do {
+ if (!(timeout > 0))
+ timeout--;
+ else
+ break;
+ udelay(10 * 1000);
+ } while (!get_cm_response_ready_flag(link));
+
+ if (!timeout)
+ ret = 0;// ERROR TIMEOUT waiting for response for allocating bw
+ else if (link->dpia_bw_alloc_config.sink_allocated_bw > 0)
+ ret = get_host_router_total_bw(link, HOST_ROUTER_BW_ALLOCATED);
+ }
+
+out:
+ return ret;
+}
+bool dpia_validate_usb4_bw(struct dc_link **link, int *bw_needed_per_dpia, const unsigned int num_dpias)
+{
+ bool ret = true;
+ int bw_needed_per_hr[MAX_HR_NUM] = { 0, 0 };
+ uint8_t lowest_dpia_index = 0, dpia_index = 0;
+ uint8_t i;
+
+ if (!num_dpias || num_dpias > MAX_DPIA_NUM)
+ return ret;
+
+ //Get total Host Router BW & Validate against each Host Router max BW
+ for (i = 0; i < num_dpias; ++i) {
+
+ if (!link[i]->dpia_bw_alloc_config.bw_alloc_enabled)
+ continue;
+
+ lowest_dpia_index = get_lowest_dpia_index(link[i]);
+ if (link[i]->link_index < lowest_dpia_index)
+ continue;
+
+ dpia_index = (link[i]->link_index - lowest_dpia_index) / 2;
+ bw_needed_per_hr[dpia_index] += bw_needed_per_dpia[i];
+ if (bw_needed_per_hr[dpia_index] > get_host_router_total_bw(link[i], HOST_ROUTER_BW_ALLOCATED)) {
+
+ ret = false;
+ break;
+ }
+ }
+
+ return ret;
+}
diff --git a/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_dpia_bw.h b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_dpia_bw.h
new file mode 100644
index 000000000000..7292690383ae
--- /dev/null
+++ b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_dpia_bw.h
@@ -0,0 +1,102 @@
+/*
+ * Copyright 2021 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ * Authors: AMD
+ *
+ */
+
+#ifndef DC_INC_LINK_DP_DPIA_BW_H_
+#define DC_INC_LINK_DP_DPIA_BW_H_
+
+#include "link.h"
+
+/* Number of Host Routers per motherboard is 2 */
+#define MAX_HR_NUM 2
+/* Number of DPIA per host router is 2 */
+#define MAX_DPIA_NUM (MAX_HR_NUM * 2)
+
+/*
+ * Host Router BW type
+ */
+enum bw_type {
+ HOST_ROUTER_BW_ESTIMATED,
+ HOST_ROUTER_BW_ALLOCATED,
+ HOST_ROUTER_BW_INVALID,
+};
+
+/*
+ * Enable BW Allocation Mode Support from the DP-Tx side
+ *
+ * @link: pointer to the dc_link struct instance
+ *
+ * return: SUCCESS or FAILURE
+ */
+bool link_dp_dpia_set_dptx_usb4_bw_alloc_support(struct dc_link *link);
+
+/*
+ * Allocates only what the stream needs for bw, so if:
+ * If (stream_req_bw < or > already_allocated_bw_at_HPD)
+ * => Deallocate Max Bw & then allocate only what the stream needs
+ *
+ * @link: pointer to the dc_link struct instance
+ * @req_bw: Bw requested by the stream
+ *
+ * return: allocated bw else return 0
+ */
+int link_dp_dpia_allocate_usb4_bandwidth_for_stream(struct dc_link *link, int req_bw);
+
+/*
+ * Handle the USB4 BW Allocation related functionality here:
+ * Plug => Try to allocate max bw from timing parameters supported by the sink
+ * Unplug => de-allocate bw
+ *
+ * @link: pointer to the dc_link struct instance
+ * @peak_bw: Peak bw used by the link/sink
+ *
+ * return: allocated bw else return 0
+ */
+int dpia_handle_usb4_bandwidth_allocation_for_link(struct dc_link *link, int peak_bw);
+
+/*
+ * Handle function for when the status of the Request above is complete.
+ * We will find out the result of allocating on CM and update structs.
+ *
+ * @link: pointer to the dc_link struct instance
+ * @bw: Allocated or Estimated BW depending on the result
+ * @result: Response type
+ *
+ * return: none
+ */
+void dpia_handle_bw_alloc_response(struct dc_link *link, uint8_t bw, uint8_t result);
+
+/*
+ * Handle the validation of total BW here and confirm that the bw used by each
+ * DPIA doesn't exceed available BW for each host router (HR)
+ *
+ * @link[]: array of link pointer to all possible DPIA links
+ * @bw_needed[]: bw needed for each DPIA link based on timing
+ * @num_dpias: Number of DPIAs for the above 2 arrays. Should always be <= MAX_DPIA_NUM
+ *
+ * return: TRUE if bw used by DPIAs doesn't exceed available BW else return FALSE
+ */
+bool dpia_validate_usb4_bw(struct dc_link **link, int *bw_needed, const unsigned int num_dpias);
+
+#endif /* DC_INC_LINK_DP_DPIA_BW_H_ */
diff --git a/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_irq_handler.c b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_irq_handler.c
new file mode 100644
index 000000000000..ba95facc4ee8
--- /dev/null
+++ b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_irq_handler.c
@@ -0,0 +1,391 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ * Authors: AMD
+ *
+ */
+
+/* FILE POLICY AND INTENDED USAGE:
+ * This file implements DP HPD short pulse handling sequence according to DP
+ * specifications
+ *
+ */
+
+#include "link_dp_irq_handler.h"
+#include "link_dpcd.h"
+#include "link_dp_training.h"
+#include "link_dp_capability.h"
+#include "link_edp_panel_control.h"
+#include "link/accessories/link_dp_trace.h"
+#include "link/link_dpms.h"
+#include "dm_helpers.h"
+
+#define DC_LOGGER_INIT(logger)
+
+bool dp_parse_link_loss_status(
+ struct dc_link *link,
+ union hpd_irq_data *hpd_irq_dpcd_data)
+{
+ uint8_t irq_reg_rx_power_state = 0;
+ enum dc_status dpcd_result = DC_ERROR_UNEXPECTED;
+ union lane_status lane_status;
+ uint32_t lane;
+ bool sink_status_changed;
+ bool return_code;
+
+ sink_status_changed = false;
+ return_code = false;
+
+ if (link->cur_link_settings.lane_count == 0)
+ return return_code;
+
+ /*1. Check that Link Status changed, before re-training.*/
+
+ /*parse lane status*/
+ for (lane = 0; lane < link->cur_link_settings.lane_count; lane++) {
+ /* check status of lanes 0,1
+ * changed DpcdAddress_Lane01Status (0x202)
+ */
+ lane_status.raw = dp_get_nibble_at_index(
+ &hpd_irq_dpcd_data->bytes.lane01_status.raw,
+ lane);
+
+ if (!lane_status.bits.CHANNEL_EQ_DONE_0 ||
+ !lane_status.bits.CR_DONE_0 ||
+ !lane_status.bits.SYMBOL_LOCKED_0) {
+ /* if one of the channel equalization, clock
+ * recovery or symbol lock is dropped
+ * consider it as (link has been
+ * dropped) dp sink status has changed
+ */
+ sink_status_changed = true;
+ break;
+ }
+ }
+
+ /* Check interlane align.*/
+ if (sink_status_changed ||
+ !hpd_irq_dpcd_data->bytes.lane_status_updated.bits.INTERLANE_ALIGN_DONE) {
+
+ DC_LOG_HW_HPD_IRQ("%s: Link Status changed.\n", __func__);
+
+ return_code = true;
+
+ /*2. Check that we can handle interrupt: Not in FS DOS,
+ * Not in "Display Timeout" state, Link is trained.
+ */
+ dpcd_result = core_link_read_dpcd(link,
+ DP_SET_POWER,
+ &irq_reg_rx_power_state,
+ sizeof(irq_reg_rx_power_state));
+
+ if (dpcd_result != DC_OK) {
+ DC_LOG_HW_HPD_IRQ("%s: DPCD read failed to obtain power state.\n",
+ __func__);
+ } else {
+ if (irq_reg_rx_power_state != DP_SET_POWER_D0)
+ return_code = false;
+ }
+ }
+
+ return return_code;
+}
+
+static bool handle_hpd_irq_psr_sink(struct dc_link *link)
+{
+ union dpcd_psr_configuration psr_configuration;
+
+ if (!link->psr_settings.psr_feature_enabled)
+ return false;
+
+ dm_helpers_dp_read_dpcd(
+ link->ctx,
+ link,
+ 368,/*DpcdAddress_PSR_Enable_Cfg*/
+ &psr_configuration.raw,
+ sizeof(psr_configuration.raw));
+
+ if (psr_configuration.bits.ENABLE) {
+ unsigned char dpcdbuf[3] = {0};
+ union psr_error_status psr_error_status;
+ union psr_sink_psr_status psr_sink_psr_status;
+
+ dm_helpers_dp_read_dpcd(
+ link->ctx,
+ link,
+ 0x2006, /*DpcdAddress_PSR_Error_Status*/
+ (unsigned char *) dpcdbuf,
+ sizeof(dpcdbuf));
+
+ /*DPCD 2006h ERROR STATUS*/
+ psr_error_status.raw = dpcdbuf[0];
+ /*DPCD 2008h SINK PANEL SELF REFRESH STATUS*/
+ psr_sink_psr_status.raw = dpcdbuf[2];
+
+ if (psr_error_status.bits.LINK_CRC_ERROR ||
+ psr_error_status.bits.RFB_STORAGE_ERROR ||
+ psr_error_status.bits.VSC_SDP_ERROR) {
+ bool allow_active;
+
+ /* Acknowledge and clear error bits */
+ dm_helpers_dp_write_dpcd(
+ link->ctx,
+ link,
+ 8198,/*DpcdAddress_PSR_Error_Status*/
+ &psr_error_status.raw,
+ sizeof(psr_error_status.raw));
+
+ /* PSR error, disable and re-enable PSR */
+ if (link->psr_settings.psr_allow_active) {
+ allow_active = false;
+ edp_set_psr_allow_active(link, &allow_active, true, false, NULL);
+ allow_active = true;
+ edp_set_psr_allow_active(link, &allow_active, true, false, NULL);
+ }
+
+ return true;
+ } else if (psr_sink_psr_status.bits.SINK_SELF_REFRESH_STATUS ==
+ PSR_SINK_STATE_ACTIVE_DISPLAY_FROM_SINK_RFB){
+ /* No error is detect, PSR is active.
+ * We should return with IRQ_HPD handled without
+ * checking for loss of sync since PSR would have
+ * powered down main link.
+ */
+ return true;
+ }
+ }
+ return false;
+}
+
+void dp_handle_link_loss(struct dc_link *link)
+{
+ struct pipe_ctx *pipes[MAX_PIPES];
+ struct dc_state *state = link->dc->current_state;
+ uint8_t count;
+ int i;
+
+ link_get_master_pipes_with_dpms_on(link, state, &count, pipes);
+
+ for (i = 0; i < count; i++)
+ link_set_dpms_off(pipes[i]);
+
+ for (i = count - 1; i >= 0; i--) {
+ // Always use max settings here for DP 1.4a LL Compliance CTS
+ if (link->is_automated) {
+ pipes[i]->link_config.dp_link_settings.lane_count =
+ link->verified_link_cap.lane_count;
+ pipes[i]->link_config.dp_link_settings.link_rate =
+ link->verified_link_cap.link_rate;
+ pipes[i]->link_config.dp_link_settings.link_spread =
+ link->verified_link_cap.link_spread;
+ }
+ link_set_dpms_on(link->dc->current_state, pipes[i]);
+ }
+}
+
+enum dc_status dp_read_hpd_rx_irq_data(
+ struct dc_link *link,
+ union hpd_irq_data *irq_data)
+{
+ static enum dc_status retval;
+
+ /* The HW reads 16 bytes from 200h on HPD,
+ * but if we get an AUX_DEFER, the HW cannot retry
+ * and this causes the CTS tests 4.3.2.1 - 3.2.4 to
+ * fail, so we now explicitly read 6 bytes which is
+ * the req from the above mentioned test cases.
+ *
+ * For DP 1.4 we need to read those from 2002h range.
+ */
+ if (link->dpcd_caps.dpcd_rev.raw < DPCD_REV_14)
+ retval = core_link_read_dpcd(
+ link,
+ DP_SINK_COUNT,
+ irq_data->raw,
+ sizeof(union hpd_irq_data));
+ else {
+ /* Read 14 bytes in a single read and then copy only the required fields.
+ * This is more efficient than doing it in two separate AUX reads. */
+
+ uint8_t tmp[DP_SINK_STATUS_ESI - DP_SINK_COUNT_ESI + 1];
+
+ retval = core_link_read_dpcd(
+ link,
+ DP_SINK_COUNT_ESI,
+ tmp,
+ sizeof(tmp));
+
+ if (retval != DC_OK)
+ return retval;
+
+ irq_data->bytes.sink_cnt.raw = tmp[DP_SINK_COUNT_ESI - DP_SINK_COUNT_ESI];
+ irq_data->bytes.device_service_irq.raw = tmp[DP_DEVICE_SERVICE_IRQ_VECTOR_ESI0 - DP_SINK_COUNT_ESI];
+ irq_data->bytes.lane01_status.raw = tmp[DP_LANE0_1_STATUS_ESI - DP_SINK_COUNT_ESI];
+ irq_data->bytes.lane23_status.raw = tmp[DP_LANE2_3_STATUS_ESI - DP_SINK_COUNT_ESI];
+ irq_data->bytes.lane_status_updated.raw = tmp[DP_LANE_ALIGN_STATUS_UPDATED_ESI - DP_SINK_COUNT_ESI];
+ irq_data->bytes.sink_status.raw = tmp[DP_SINK_STATUS_ESI - DP_SINK_COUNT_ESI];
+ }
+
+ return retval;
+}
+
+/*************************Short Pulse IRQ***************************/
+bool dp_should_allow_hpd_rx_irq(const struct dc_link *link)
+{
+ /*
+ * Don't handle RX IRQ unless one of following is met:
+ * 1) The link is established (cur_link_settings != unknown)
+ * 2) We know we're dealing with a branch device, SST or MST
+ */
+
+ if ((link->cur_link_settings.lane_count != LANE_COUNT_UNKNOWN) ||
+ is_dp_branch_device(link))
+ return true;
+
+ return false;
+}
+
+bool dp_handle_hpd_rx_irq(struct dc_link *link,
+ union hpd_irq_data *out_hpd_irq_dpcd_data, bool *out_link_loss,
+ bool defer_handling, bool *has_left_work)
+{
+ union hpd_irq_data hpd_irq_dpcd_data = {0};
+ union device_service_irq device_service_clear = {0};
+ enum dc_status result;
+ bool status = false;
+
+ if (out_link_loss)
+ *out_link_loss = false;
+
+ if (has_left_work)
+ *has_left_work = false;
+ /* For use cases related to down stream connection status change,
+ * PSR and device auto test, refer to function handle_sst_hpd_irq
+ * in DAL2.1*/
+
+ DC_LOG_HW_HPD_IRQ("%s: Got short pulse HPD on link %d\n",
+ __func__, link->link_index);
+
+
+ /* All the "handle_hpd_irq_xxx()" methods
+ * should be called only after
+ * dal_dpsst_ls_read_hpd_irq_data
+ * Order of calls is important too
+ */
+ result = dp_read_hpd_rx_irq_data(link, &hpd_irq_dpcd_data);
+ if (out_hpd_irq_dpcd_data)
+ *out_hpd_irq_dpcd_data = hpd_irq_dpcd_data;
+
+ if (result != DC_OK) {
+ DC_LOG_HW_HPD_IRQ("%s: DPCD read failed to obtain irq data\n",
+ __func__);
+ return false;
+ }
+
+ if (hpd_irq_dpcd_data.bytes.device_service_irq.bits.AUTOMATED_TEST) {
+ // Workaround for DP 1.4a LL Compliance CTS as USB4 has to share encoders unlike DP and USBC
+ link->is_automated = true;
+ device_service_clear.bits.AUTOMATED_TEST = 1;
+ core_link_write_dpcd(
+ link,
+ DP_DEVICE_SERVICE_IRQ_VECTOR,
+ &device_service_clear.raw,
+ sizeof(device_service_clear.raw));
+ device_service_clear.raw = 0;
+ if (defer_handling && has_left_work)
+ *has_left_work = true;
+ else
+ dc_link_dp_handle_automated_test(link);
+ return false;
+ }
+
+ if (!dp_should_allow_hpd_rx_irq(link)) {
+ DC_LOG_HW_HPD_IRQ("%s: skipping HPD handling on %d\n",
+ __func__, link->link_index);
+ return false;
+ }
+
+ if (handle_hpd_irq_psr_sink(link))
+ /* PSR-related error was detected and handled */
+ return true;
+
+ /* If PSR-related error handled, Main link may be off,
+ * so do not handle as a normal sink status change interrupt.
+ */
+
+ if (hpd_irq_dpcd_data.bytes.device_service_irq.bits.UP_REQ_MSG_RDY) {
+ if (defer_handling && has_left_work)
+ *has_left_work = true;
+ return true;
+ }
+
+ /* check if we have MST msg and return since we poll for it */
+ if (hpd_irq_dpcd_data.bytes.device_service_irq.bits.DOWN_REP_MSG_RDY) {
+ if (defer_handling && has_left_work)
+ *has_left_work = true;
+ return false;
+ }
+
+ /* For now we only handle 'Downstream port status' case.
+ * If we got sink count changed it means
+ * Downstream port status changed,
+ * then DM should call DC to do the detection.
+ * NOTE: Do not handle link loss on eDP since it is internal link*/
+ if ((link->connector_signal != SIGNAL_TYPE_EDP) &&
+ dp_parse_link_loss_status(
+ link,
+ &hpd_irq_dpcd_data)) {
+ /* Connectivity log: link loss */
+ CONN_DATA_LINK_LOSS(link,
+ hpd_irq_dpcd_data.raw,
+ sizeof(hpd_irq_dpcd_data),
+ "Status: ");
+
+ if (defer_handling && has_left_work)
+ *has_left_work = true;
+ else
+ dp_handle_link_loss(link);
+
+ status = false;
+ if (out_link_loss)
+ *out_link_loss = true;
+
+ dp_trace_link_loss_increment(link);
+ }
+
+ if (link->type == dc_connection_sst_branch &&
+ hpd_irq_dpcd_data.bytes.sink_cnt.bits.SINK_COUNT
+ != link->dpcd_sink_count)
+ status = true;
+
+ /* reasons for HPD RX:
+ * 1. Link Loss - ie Re-train the Link
+ * 2. MST sideband message
+ * 3. Automated Test - ie. Internal Commit
+ * 4. CP (copy protection) - (not interesting for DM???)
+ * 5. DRR
+ * 6. Downstream Port status changed
+ * -ie. Detect - this the only one
+ * which is interesting for DM because
+ * it must call dc_link_detect.
+ */
+ return status;
+}
diff --git a/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_irq_handler.h b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_irq_handler.h
new file mode 100644
index 000000000000..ac33730fedd4
--- /dev/null
+++ b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_irq_handler.h
@@ -0,0 +1,41 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ * Authors: AMD
+ *
+ */
+
+#ifndef __DC_LINK_DP_IRQ_HANDLER_H__
+#define __DC_LINK_DP_IRQ_HANDLER_H__
+
+#include "link.h"
+bool dp_parse_link_loss_status(
+ struct dc_link *link,
+ union hpd_irq_data *hpd_irq_dpcd_data);
+bool dp_should_allow_hpd_rx_irq(const struct dc_link *link);
+void dp_handle_link_loss(struct dc_link *link);
+enum dc_status dp_read_hpd_rx_irq_data(
+ struct dc_link *link,
+ union hpd_irq_data *irq_data);
+bool dp_handle_hpd_rx_irq(struct dc_link *link,
+ union hpd_irq_data *out_hpd_irq_dpcd_data, bool *out_link_loss,
+ bool defer_handling, bool *has_left_work);
+#endif /* __DC_LINK_DP_IRQ_HANDLER_H__ */
diff --git a/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_phy.c b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_phy.c
new file mode 100644
index 000000000000..b7abba55bc2f
--- /dev/null
+++ b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_phy.c
@@ -0,0 +1,208 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ * Authors: AMD
+ *
+ */
+
+/* FILE POLICY AND INTENDED USAGE:
+ * This file implements basic dp phy functionality such as enable/disable phy
+ * output and set lane/drive settings. This file is responsible for maintaining
+ * and update software state representing current phy status such as current
+ * link settings.
+ */
+
+#include "link_dp_phy.h"
+#include "link_dpcd.h"
+#include "link_dp_training.h"
+#include "link_dp_capability.h"
+#include "clk_mgr.h"
+#include "resource.h"
+#include "link_enc_cfg.h"
+#define DC_LOGGER \
+ link->ctx->logger
+
+void dpcd_write_rx_power_ctrl(struct dc_link *link, bool on)
+{
+ uint8_t state;
+
+ state = on ? DP_POWER_STATE_D0 : DP_POWER_STATE_D3;
+
+ if (link->sync_lt_in_progress)
+ return;
+
+ core_link_write_dpcd(link, DP_SET_POWER, &state,
+ sizeof(state));
+
+}
+
+void dp_enable_link_phy(
+ struct dc_link *link,
+ const struct link_resource *link_res,
+ enum signal_type signal,
+ enum clock_source_id clock_source,
+ const struct dc_link_settings *link_settings)
+{
+ link->cur_link_settings = *link_settings;
+ link->dc->hwss.enable_dp_link_output(link, link_res, signal,
+ clock_source, link_settings);
+ dpcd_write_rx_power_ctrl(link, true);
+}
+
+void dp_disable_link_phy(struct dc_link *link,
+ const struct link_resource *link_res,
+ enum signal_type signal)
+{
+ struct dc *dc = link->ctx->dc;
+
+ if (!link->wa_flags.dp_keep_receiver_powered)
+ dpcd_write_rx_power_ctrl(link, false);
+
+ dc->hwss.disable_link_output(link, link_res, signal);
+ /* Clear current link setting.*/
+ memset(&link->cur_link_settings, 0,
+ sizeof(link->cur_link_settings));
+
+ if (dc->clk_mgr->funcs->notify_link_rate_change)
+ dc->clk_mgr->funcs->notify_link_rate_change(dc->clk_mgr, link);
+}
+
+static inline bool is_immediate_downstream(struct dc_link *link, uint32_t offset)
+{
+ return (dp_parse_lttpr_repeater_count(link->dpcd_caps.lttpr_caps.phy_repeater_cnt) ==
+ offset);
+}
+
+void dp_set_hw_lane_settings(
+ struct dc_link *link,
+ const struct link_resource *link_res,
+ const struct link_training_settings *link_settings,
+ uint32_t offset)
+{
+ const struct link_hwss *link_hwss = get_link_hwss(link, link_res);
+
+ if ((link_settings->lttpr_mode == LTTPR_MODE_NON_TRANSPARENT) &&
+ !is_immediate_downstream(link, offset))
+ return;
+
+ if (link_hwss->ext.set_dp_lane_settings)
+ link_hwss->ext.set_dp_lane_settings(link, link_res,
+ &link_settings->link_settings,
+ link_settings->hw_lane_settings);
+
+ memmove(link->cur_lane_setting,
+ link_settings->hw_lane_settings,
+ sizeof(link->cur_lane_setting));
+}
+
+void dp_set_drive_settings(
+ struct dc_link *link,
+ const struct link_resource *link_res,
+ struct link_training_settings *lt_settings)
+{
+ /* program ASIC PHY settings*/
+ dp_set_hw_lane_settings(link, link_res, lt_settings, DPRX);
+
+ dp_hw_to_dpcd_lane_settings(lt_settings,
+ lt_settings->hw_lane_settings,
+ lt_settings->dpcd_lane_settings);
+
+ /* Notify DP sink the PHY settings from source */
+ dpcd_set_lane_settings(link, lt_settings, DPRX);
+}
+
+enum dc_status dp_set_fec_ready(struct dc_link *link, const struct link_resource *link_res, bool ready)
+{
+ /* FEC has to be "set ready" before the link training.
+ * The policy is to always train with FEC
+ * if the sink supports it and leave it enabled on link.
+ * If FEC is not supported, disable it.
+ */
+ struct link_encoder *link_enc = NULL;
+ enum dc_status status = DC_OK;
+ uint8_t fec_config = 0;
+
+ link_enc = link_enc_cfg_get_link_enc(link);
+ ASSERT(link_enc);
+
+ if (!dp_should_enable_fec(link))
+ return status;
+
+ if (link_enc->funcs->fec_set_ready &&
+ link->dpcd_caps.fec_cap.bits.FEC_CAPABLE) {
+ if (ready) {
+ fec_config = 1;
+ status = core_link_write_dpcd(link,
+ DP_FEC_CONFIGURATION,
+ &fec_config,
+ sizeof(fec_config));
+ if (status == DC_OK) {
+ link_enc->funcs->fec_set_ready(link_enc, true);
+ link->fec_state = dc_link_fec_ready;
+ } else {
+ link_enc->funcs->fec_set_ready(link_enc, false);
+ link->fec_state = dc_link_fec_not_ready;
+ dm_error("dpcd write failed to set fec_ready");
+ }
+ } else if (link->fec_state == dc_link_fec_ready) {
+ fec_config = 0;
+ status = core_link_write_dpcd(link,
+ DP_FEC_CONFIGURATION,
+ &fec_config,
+ sizeof(fec_config));
+ link_enc->funcs->fec_set_ready(link_enc, false);
+ link->fec_state = dc_link_fec_not_ready;
+ }
+ }
+
+ return status;
+}
+
+void dp_set_fec_enable(struct dc_link *link, bool enable)
+{
+ struct link_encoder *link_enc = NULL;
+
+ link_enc = link_enc_cfg_get_link_enc(link);
+ ASSERT(link_enc);
+
+ if (!dp_should_enable_fec(link))
+ return;
+
+ if (link_enc->funcs->fec_set_enable &&
+ link->dpcd_caps.fec_cap.bits.FEC_CAPABLE) {
+ if (link->fec_state == dc_link_fec_ready && enable) {
+ /* Accord to DP spec, FEC enable sequence can first
+ * be transmitted anytime after 1000 LL codes have
+ * been transmitted on the link after link training
+ * completion. Using 1 lane RBR should have the maximum
+ * time for transmitting 1000 LL codes which is 6.173 us.
+ * So use 7 microseconds delay instead.
+ */
+ udelay(7);
+ link_enc->funcs->fec_set_enable(link_enc, true);
+ link->fec_state = dc_link_fec_enabled;
+ } else if (link->fec_state == dc_link_fec_enabled && !enable) {
+ link_enc->funcs->fec_set_enable(link_enc, false);
+ link->fec_state = dc_link_fec_ready;
+ }
+ }
+}
+
diff --git a/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_phy.h b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_phy.h
new file mode 100644
index 000000000000..1eb0619d6710
--- /dev/null
+++ b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_phy.h
@@ -0,0 +1,59 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ * Authors: AMD
+ *
+ */
+
+#ifndef __DC_LINK_DP_PHY_H__
+#define __DC_LINK_DP_PHY_H__
+
+#include "link.h"
+void dp_enable_link_phy(
+ struct dc_link *link,
+ const struct link_resource *link_res,
+ enum signal_type signal,
+ enum clock_source_id clock_source,
+ const struct dc_link_settings *link_settings);
+
+void dp_disable_link_phy(struct dc_link *link,
+ const struct link_resource *link_res,
+ enum signal_type signal);
+
+void dp_set_hw_lane_settings(
+ struct dc_link *link,
+ const struct link_resource *link_res,
+ const struct link_training_settings *link_settings,
+ uint32_t offset);
+
+void dp_set_drive_settings(
+ struct dc_link *link,
+ const struct link_resource *link_res,
+ struct link_training_settings *lt_settings);
+
+enum dc_status dp_set_fec_ready(struct dc_link *link,
+ const struct link_resource *link_res, bool ready);
+
+void dp_set_fec_enable(struct dc_link *link, bool enable);
+
+void dpcd_write_rx_power_ctrl(struct dc_link *link, bool on);
+
+#endif /* __DC_LINK_DP_PHY_H__ */
diff --git a/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training.c b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training.c
new file mode 100644
index 000000000000..579fa222810d
--- /dev/null
+++ b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training.c
@@ -0,0 +1,1716 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ * Authors: AMD
+ *
+ */
+
+/* FILE POLICY AND INTENDED USAGE:
+ * This file implements all generic dp link training helper functions and top
+ * level generic training sequence. All variations of dp link training sequence
+ * should be called inside the top level training functions in this file to
+ * ensure the integrity of our overall training procedure across different types
+ * of link encoding and back end hardware.
+ */
+#include "link_dp_training.h"
+#include "link_dp_training_8b_10b.h"
+#include "link_dp_training_128b_132b.h"
+#include "link_dp_training_auxless.h"
+#include "link_dp_training_dpia.h"
+#include "link_dp_training_fixed_vs_pe_retimer.h"
+#include "link_dpcd.h"
+#include "link/accessories/link_dp_trace.h"
+#include "link_dp_phy.h"
+#include "link_dp_capability.h"
+#include "link_edp_panel_control.h"
+#include "link/link_detection.h"
+#include "link/link_validation.h"
+#include "atomfirmware.h"
+#include "link_enc_cfg.h"
+#include "resource.h"
+#include "dm_helpers.h"
+
+#define DC_LOGGER \
+ link->ctx->logger
+
+#define POST_LT_ADJ_REQ_LIMIT 6
+#define POST_LT_ADJ_REQ_TIMEOUT 200
+#define LINK_TRAINING_RETRY_DELAY 50 /* ms */
+
+void dp_log_training_result(
+ struct dc_link *link,
+ const struct link_training_settings *lt_settings,
+ enum link_training_result status)
+{
+ char *link_rate = "Unknown";
+ char *lt_result = "Unknown";
+ char *lt_spread = "Disabled";
+
+ switch (lt_settings->link_settings.link_rate) {
+ case LINK_RATE_LOW:
+ link_rate = "RBR";
+ break;
+ case LINK_RATE_RATE_2:
+ link_rate = "R2";
+ break;
+ case LINK_RATE_RATE_3:
+ link_rate = "R3";
+ break;
+ case LINK_RATE_HIGH:
+ link_rate = "HBR";
+ break;
+ case LINK_RATE_RBR2:
+ link_rate = "RBR2";
+ break;
+ case LINK_RATE_RATE_6:
+ link_rate = "R6";
+ break;
+ case LINK_RATE_HIGH2:
+ link_rate = "HBR2";
+ break;
+ case LINK_RATE_RATE_8:
+ link_rate = "R8";
+ break;
+ case LINK_RATE_HIGH3:
+ link_rate = "HBR3";
+ break;
+ case LINK_RATE_UHBR10:
+ link_rate = "UHBR10";
+ break;
+ case LINK_RATE_UHBR13_5:
+ link_rate = "UHBR13.5";
+ break;
+ case LINK_RATE_UHBR20:
+ link_rate = "UHBR20";
+ break;
+ default:
+ break;
+ }
+
+ switch (status) {
+ case LINK_TRAINING_SUCCESS:
+ lt_result = "pass";
+ break;
+ case LINK_TRAINING_CR_FAIL_LANE0:
+ lt_result = "CR failed lane0";
+ break;
+ case LINK_TRAINING_CR_FAIL_LANE1:
+ lt_result = "CR failed lane1";
+ break;
+ case LINK_TRAINING_CR_FAIL_LANE23:
+ lt_result = "CR failed lane23";
+ break;
+ case LINK_TRAINING_EQ_FAIL_CR:
+ lt_result = "CR failed in EQ";
+ break;
+ case LINK_TRAINING_EQ_FAIL_CR_PARTIAL:
+ lt_result = "CR failed in EQ partially";
+ break;
+ case LINK_TRAINING_EQ_FAIL_EQ:
+ lt_result = "EQ failed";
+ break;
+ case LINK_TRAINING_LQA_FAIL:
+ lt_result = "LQA failed";
+ break;
+ case LINK_TRAINING_LINK_LOSS:
+ lt_result = "Link loss";
+ break;
+ case DP_128b_132b_LT_FAILED:
+ lt_result = "LT_FAILED received";
+ break;
+ case DP_128b_132b_MAX_LOOP_COUNT_REACHED:
+ lt_result = "max loop count reached";
+ break;
+ case DP_128b_132b_CHANNEL_EQ_DONE_TIMEOUT:
+ lt_result = "channel EQ timeout";
+ break;
+ case DP_128b_132b_CDS_DONE_TIMEOUT:
+ lt_result = "CDS timeout";
+ break;
+ default:
+ break;
+ }
+
+ switch (lt_settings->link_settings.link_spread) {
+ case LINK_SPREAD_DISABLED:
+ lt_spread = "Disabled";
+ break;
+ case LINK_SPREAD_05_DOWNSPREAD_30KHZ:
+ lt_spread = "0.5% 30KHz";
+ break;
+ case LINK_SPREAD_05_DOWNSPREAD_33KHZ:
+ lt_spread = "0.5% 33KHz";
+ break;
+ default:
+ break;
+ }
+
+ /* Connectivity log: link training */
+
+ /* TODO - DP2.0 Log: add connectivity log for FFE PRESET */
+
+ CONN_MSG_LT(link, "%sx%d %s VS=%d, PE=%d, DS=%s",
+ link_rate,
+ lt_settings->link_settings.lane_count,
+ lt_result,
+ lt_settings->hw_lane_settings[0].VOLTAGE_SWING,
+ lt_settings->hw_lane_settings[0].PRE_EMPHASIS,
+ lt_spread);
+}
+
+uint8_t dp_initialize_scrambling_data_symbols(
+ struct dc_link *link,
+ enum dc_dp_training_pattern pattern)
+{
+ uint8_t disable_scrabled_data_symbols = 0;
+
+ switch (pattern) {
+ case DP_TRAINING_PATTERN_SEQUENCE_1:
+ case DP_TRAINING_PATTERN_SEQUENCE_2:
+ case DP_TRAINING_PATTERN_SEQUENCE_3:
+ disable_scrabled_data_symbols = 1;
+ break;
+ case DP_TRAINING_PATTERN_SEQUENCE_4:
+ case DP_128b_132b_TPS1:
+ case DP_128b_132b_TPS2:
+ disable_scrabled_data_symbols = 0;
+ break;
+ default:
+ ASSERT(0);
+ DC_LOG_HW_LINK_TRAINING("%s: Invalid HW Training pattern: %d\n",
+ __func__, pattern);
+ break;
+ }
+ return disable_scrabled_data_symbols;
+}
+
+enum dpcd_training_patterns
+ dp_training_pattern_to_dpcd_training_pattern(
+ struct dc_link *link,
+ enum dc_dp_training_pattern pattern)
+{
+ enum dpcd_training_patterns dpcd_tr_pattern =
+ DPCD_TRAINING_PATTERN_VIDEOIDLE;
+
+ switch (pattern) {
+ case DP_TRAINING_PATTERN_SEQUENCE_1:
+ DC_LOG_HW_LINK_TRAINING("%s: Using DP training pattern TPS1\n", __func__);
+ dpcd_tr_pattern = DPCD_TRAINING_PATTERN_1;
+ break;
+ case DP_TRAINING_PATTERN_SEQUENCE_2:
+ DC_LOG_HW_LINK_TRAINING("%s: Using DP training pattern TPS2\n", __func__);
+ dpcd_tr_pattern = DPCD_TRAINING_PATTERN_2;
+ break;
+ case DP_TRAINING_PATTERN_SEQUENCE_3:
+ DC_LOG_HW_LINK_TRAINING("%s: Using DP training pattern TPS3\n", __func__);
+ dpcd_tr_pattern = DPCD_TRAINING_PATTERN_3;
+ break;
+ case DP_TRAINING_PATTERN_SEQUENCE_4:
+ DC_LOG_HW_LINK_TRAINING("%s: Using DP training pattern TPS4\n", __func__);
+ dpcd_tr_pattern = DPCD_TRAINING_PATTERN_4;
+ break;
+ case DP_128b_132b_TPS1:
+ DC_LOG_HW_LINK_TRAINING("%s: Using DP 128b/132b training pattern TPS1\n", __func__);
+ dpcd_tr_pattern = DPCD_128b_132b_TPS1;
+ break;
+ case DP_128b_132b_TPS2:
+ DC_LOG_HW_LINK_TRAINING("%s: Using DP 128b/132b training pattern TPS2\n", __func__);
+ dpcd_tr_pattern = DPCD_128b_132b_TPS2;
+ break;
+ case DP_128b_132b_TPS2_CDS:
+ DC_LOG_HW_LINK_TRAINING("%s: Using DP 128b/132b training pattern TPS2 CDS\n",
+ __func__);
+ dpcd_tr_pattern = DPCD_128b_132b_TPS2_CDS;
+ break;
+ case DP_TRAINING_PATTERN_VIDEOIDLE:
+ DC_LOG_HW_LINK_TRAINING("%s: Using DP training pattern videoidle\n", __func__);
+ dpcd_tr_pattern = DPCD_TRAINING_PATTERN_VIDEOIDLE;
+ break;
+ default:
+ ASSERT(0);
+ DC_LOG_HW_LINK_TRAINING("%s: Invalid HW Training pattern: %d\n",
+ __func__, pattern);
+ break;
+ }
+
+ return dpcd_tr_pattern;
+}
+
+uint8_t dp_get_nibble_at_index(const uint8_t *buf,
+ uint32_t index)
+{
+ uint8_t nibble;
+ nibble = buf[index / 2];
+
+ if (index % 2)
+ nibble >>= 4;
+ else
+ nibble &= 0x0F;
+
+ return nibble;
+}
+
+void dp_wait_for_training_aux_rd_interval(
+ struct dc_link *link,
+ uint32_t wait_in_micro_secs)
+{
+ fsleep(wait_in_micro_secs);
+
+ DC_LOG_HW_LINK_TRAINING("%s:\n wait = %d\n",
+ __func__,
+ wait_in_micro_secs);
+}
+
+/* maximum pre emphasis level allowed for each voltage swing level*/
+static const enum dc_pre_emphasis voltage_swing_to_pre_emphasis[] = {
+ PRE_EMPHASIS_LEVEL3,
+ PRE_EMPHASIS_LEVEL2,
+ PRE_EMPHASIS_LEVEL1,
+ PRE_EMPHASIS_DISABLED };
+
+static enum dc_pre_emphasis get_max_pre_emphasis_for_voltage_swing(
+ enum dc_voltage_swing voltage)
+{
+ enum dc_pre_emphasis pre_emphasis;
+ pre_emphasis = PRE_EMPHASIS_MAX_LEVEL;
+
+ if (voltage <= VOLTAGE_SWING_MAX_LEVEL)
+ pre_emphasis = voltage_swing_to_pre_emphasis[voltage];
+
+ return pre_emphasis;
+
+}
+
+static void maximize_lane_settings(const struct link_training_settings *lt_settings,
+ struct dc_lane_settings lane_settings[LANE_COUNT_DP_MAX])
+{
+ uint32_t lane;
+ struct dc_lane_settings max_requested;
+
+ max_requested.VOLTAGE_SWING = lane_settings[0].VOLTAGE_SWING;
+ max_requested.PRE_EMPHASIS = lane_settings[0].PRE_EMPHASIS;
+ max_requested.FFE_PRESET = lane_settings[0].FFE_PRESET;
+
+ /* Determine what the maximum of the requested settings are*/
+ for (lane = 1; lane < lt_settings->link_settings.lane_count; lane++) {
+ if (lane_settings[lane].VOLTAGE_SWING > max_requested.VOLTAGE_SWING)
+ max_requested.VOLTAGE_SWING = lane_settings[lane].VOLTAGE_SWING;
+
+ if (lane_settings[lane].PRE_EMPHASIS > max_requested.PRE_EMPHASIS)
+ max_requested.PRE_EMPHASIS = lane_settings[lane].PRE_EMPHASIS;
+ if (lane_settings[lane].FFE_PRESET.settings.level >
+ max_requested.FFE_PRESET.settings.level)
+ max_requested.FFE_PRESET.settings.level =
+ lane_settings[lane].FFE_PRESET.settings.level;
+ }
+
+ /* make sure the requested settings are
+ * not higher than maximum settings*/
+ if (max_requested.VOLTAGE_SWING > VOLTAGE_SWING_MAX_LEVEL)
+ max_requested.VOLTAGE_SWING = VOLTAGE_SWING_MAX_LEVEL;
+
+ if (max_requested.PRE_EMPHASIS > PRE_EMPHASIS_MAX_LEVEL)
+ max_requested.PRE_EMPHASIS = PRE_EMPHASIS_MAX_LEVEL;
+ if (max_requested.FFE_PRESET.settings.level > DP_FFE_PRESET_MAX_LEVEL)
+ max_requested.FFE_PRESET.settings.level = DP_FFE_PRESET_MAX_LEVEL;
+
+ /* make sure the pre-emphasis matches the voltage swing*/
+ if (max_requested.PRE_EMPHASIS >
+ get_max_pre_emphasis_for_voltage_swing(
+ max_requested.VOLTAGE_SWING))
+ max_requested.PRE_EMPHASIS =
+ get_max_pre_emphasis_for_voltage_swing(
+ max_requested.VOLTAGE_SWING);
+
+ for (lane = 0; lane < LANE_COUNT_DP_MAX; lane++) {
+ lane_settings[lane].VOLTAGE_SWING = max_requested.VOLTAGE_SWING;
+ lane_settings[lane].PRE_EMPHASIS = max_requested.PRE_EMPHASIS;
+ lane_settings[lane].FFE_PRESET = max_requested.FFE_PRESET;
+ }
+}
+
+void dp_hw_to_dpcd_lane_settings(
+ const struct link_training_settings *lt_settings,
+ const struct dc_lane_settings hw_lane_settings[LANE_COUNT_DP_MAX],
+ union dpcd_training_lane dpcd_lane_settings[LANE_COUNT_DP_MAX])
+{
+ uint8_t lane = 0;
+
+ for (lane = 0; lane < LANE_COUNT_DP_MAX; lane++) {
+ if (link_dp_get_encoding_format(&lt_settings->link_settings) ==
+ DP_8b_10b_ENCODING) {
+ dpcd_lane_settings[lane].bits.VOLTAGE_SWING_SET =
+ (uint8_t)(hw_lane_settings[lane].VOLTAGE_SWING);
+ dpcd_lane_settings[lane].bits.PRE_EMPHASIS_SET =
+ (uint8_t)(hw_lane_settings[lane].PRE_EMPHASIS);
+ dpcd_lane_settings[lane].bits.MAX_SWING_REACHED =
+ (hw_lane_settings[lane].VOLTAGE_SWING ==
+ VOLTAGE_SWING_MAX_LEVEL ? 1 : 0);
+ dpcd_lane_settings[lane].bits.MAX_PRE_EMPHASIS_REACHED =
+ (hw_lane_settings[lane].PRE_EMPHASIS ==
+ PRE_EMPHASIS_MAX_LEVEL ? 1 : 0);
+ } else if (link_dp_get_encoding_format(&lt_settings->link_settings) ==
+ DP_128b_132b_ENCODING) {
+ dpcd_lane_settings[lane].tx_ffe.PRESET_VALUE =
+ hw_lane_settings[lane].FFE_PRESET.settings.level;
+ }
+ }
+}
+
+uint8_t get_dpcd_link_rate(const struct dc_link_settings *link_settings)
+{
+ uint8_t link_rate = 0;
+ enum dp_link_encoding encoding = link_dp_get_encoding_format(link_settings);
+
+ if (encoding == DP_128b_132b_ENCODING)
+ switch (link_settings->link_rate) {
+ case LINK_RATE_UHBR10:
+ link_rate = 0x1;
+ break;
+ case LINK_RATE_UHBR20:
+ link_rate = 0x2;
+ break;
+ case LINK_RATE_UHBR13_5:
+ link_rate = 0x4;
+ break;
+ default:
+ link_rate = 0;
+ break;
+ }
+ else if (encoding == DP_8b_10b_ENCODING)
+ link_rate = (uint8_t) link_settings->link_rate;
+ else
+ link_rate = 0;
+
+ return link_rate;
+}
+
+/* Only used for channel equalization */
+uint32_t dp_translate_training_aux_read_interval(uint32_t dpcd_aux_read_interval)
+{
+ unsigned int aux_rd_interval_us = 400;
+
+ switch (dpcd_aux_read_interval) {
+ case 0x01:
+ aux_rd_interval_us = 4000;
+ break;
+ case 0x02:
+ aux_rd_interval_us = 8000;
+ break;
+ case 0x03:
+ aux_rd_interval_us = 12000;
+ break;
+ case 0x04:
+ aux_rd_interval_us = 16000;
+ break;
+ case 0x05:
+ aux_rd_interval_us = 32000;
+ break;
+ case 0x06:
+ aux_rd_interval_us = 64000;
+ break;
+ default:
+ break;
+ }
+
+ return aux_rd_interval_us;
+}
+
+enum link_training_result dp_get_cr_failure(enum dc_lane_count ln_count,
+ union lane_status *dpcd_lane_status)
+{
+ enum link_training_result result = LINK_TRAINING_SUCCESS;
+
+ if (ln_count >= LANE_COUNT_ONE && !dpcd_lane_status[0].bits.CR_DONE_0)
+ result = LINK_TRAINING_CR_FAIL_LANE0;
+ else if (ln_count >= LANE_COUNT_TWO && !dpcd_lane_status[1].bits.CR_DONE_0)
+ result = LINK_TRAINING_CR_FAIL_LANE1;
+ else if (ln_count >= LANE_COUNT_FOUR && !dpcd_lane_status[2].bits.CR_DONE_0)
+ result = LINK_TRAINING_CR_FAIL_LANE23;
+ else if (ln_count >= LANE_COUNT_FOUR && !dpcd_lane_status[3].bits.CR_DONE_0)
+ result = LINK_TRAINING_CR_FAIL_LANE23;
+ return result;
+}
+
+bool is_repeater(const struct link_training_settings *lt_settings, uint32_t offset)
+{
+ return (lt_settings->lttpr_mode == LTTPR_MODE_NON_TRANSPARENT) && (offset != 0);
+}
+
+bool dp_is_max_vs_reached(
+ const struct link_training_settings *lt_settings)
+{
+ uint32_t lane;
+ for (lane = 0; lane <
+ (uint32_t)(lt_settings->link_settings.lane_count);
+ lane++) {
+ if (lt_settings->dpcd_lane_settings[lane].bits.VOLTAGE_SWING_SET
+ == VOLTAGE_SWING_MAX_LEVEL)
+ return true;
+ }
+ return false;
+
+}
+
+bool dp_is_cr_done(enum dc_lane_count ln_count,
+ union lane_status *dpcd_lane_status)
+{
+ bool done = true;
+ uint32_t lane;
+ /*LANEx_CR_DONE bits All 1's?*/
+ for (lane = 0; lane < (uint32_t)(ln_count); lane++) {
+ if (!dpcd_lane_status[lane].bits.CR_DONE_0)
+ done = false;
+ }
+ return done;
+
+}
+
+bool dp_is_ch_eq_done(enum dc_lane_count ln_count,
+ union lane_status *dpcd_lane_status)
+{
+ bool done = true;
+ uint32_t lane;
+ for (lane = 0; lane < (uint32_t)(ln_count); lane++)
+ if (!dpcd_lane_status[lane].bits.CHANNEL_EQ_DONE_0)
+ done = false;
+ return done;
+}
+
+bool dp_is_symbol_locked(enum dc_lane_count ln_count,
+ union lane_status *dpcd_lane_status)
+{
+ bool locked = true;
+ uint32_t lane;
+ for (lane = 0; lane < (uint32_t)(ln_count); lane++)
+ if (!dpcd_lane_status[lane].bits.SYMBOL_LOCKED_0)
+ locked = false;
+ return locked;
+}
+
+bool dp_is_interlane_aligned(union lane_align_status_updated align_status)
+{
+ return align_status.bits.INTERLANE_ALIGN_DONE == 1;
+}
+
+enum link_training_result dp_check_link_loss_status(
+ struct dc_link *link,
+ const struct link_training_settings *link_training_setting)
+{
+ enum link_training_result status = LINK_TRAINING_SUCCESS;
+ union lane_status lane_status;
+ uint8_t dpcd_buf[6] = {0};
+ uint32_t lane;
+
+ core_link_read_dpcd(
+ link,
+ DP_SINK_COUNT,
+ (uint8_t *)(dpcd_buf),
+ sizeof(dpcd_buf));
+
+ /*parse lane status*/
+ for (lane = 0; lane < link->cur_link_settings.lane_count; lane++) {
+ /*
+ * check lanes status
+ */
+ lane_status.raw = dp_get_nibble_at_index(&dpcd_buf[2], lane);
+
+ if (!lane_status.bits.CHANNEL_EQ_DONE_0 ||
+ !lane_status.bits.CR_DONE_0 ||
+ !lane_status.bits.SYMBOL_LOCKED_0) {
+ /* if one of the channel equalization, clock
+ * recovery or symbol lock is dropped
+ * consider it as (link has been
+ * dropped) dp sink status has changed
+ */
+ status = LINK_TRAINING_LINK_LOSS;
+ break;
+ }
+ }
+
+ return status;
+}
+
+enum dc_status dp_get_lane_status_and_lane_adjust(
+ struct dc_link *link,
+ const struct link_training_settings *link_training_setting,
+ union lane_status ln_status[LANE_COUNT_DP_MAX],
+ union lane_align_status_updated *ln_align,
+ union lane_adjust ln_adjust[LANE_COUNT_DP_MAX],
+ uint32_t offset)
+{
+ unsigned int lane01_status_address = DP_LANE0_1_STATUS;
+ uint8_t lane_adjust_offset = 4;
+ unsigned int lane01_adjust_address;
+ uint8_t dpcd_buf[6] = {0};
+ uint32_t lane;
+ enum dc_status status;
+
+ if (is_repeater(link_training_setting, offset)) {
+ lane01_status_address =
+ DP_LANE0_1_STATUS_PHY_REPEATER1 +
+ ((DP_REPEATER_CONFIGURATION_AND_STATUS_SIZE) * (offset - 1));
+ lane_adjust_offset = 3;
+ }
+
+ status = core_link_read_dpcd(
+ link,
+ lane01_status_address,
+ (uint8_t *)(dpcd_buf),
+ sizeof(dpcd_buf));
+
+ if (status != DC_OK) {
+ DC_LOG_HW_LINK_TRAINING("%s:\n Failed to read from address 0x%X,"
+ " keep current lane status and lane adjust unchanged",
+ __func__,
+ lane01_status_address);
+ return status;
+ }
+
+ for (lane = 0; lane <
+ (uint32_t)(link_training_setting->link_settings.lane_count);
+ lane++) {
+
+ ln_status[lane].raw =
+ dp_get_nibble_at_index(&dpcd_buf[0], lane);
+ ln_adjust[lane].raw =
+ dp_get_nibble_at_index(&dpcd_buf[lane_adjust_offset], lane);
+ }
+
+ ln_align->raw = dpcd_buf[2];
+
+ if (is_repeater(link_training_setting, offset)) {
+ DC_LOG_HW_LINK_TRAINING("%s:\n LTTPR Repeater ID: %d\n"
+ " 0x%X Lane01Status = %x\n 0x%X Lane23Status = %x\n ",
+ __func__,
+ offset,
+ lane01_status_address, dpcd_buf[0],
+ lane01_status_address + 1, dpcd_buf[1]);
+
+ lane01_adjust_address = DP_ADJUST_REQUEST_LANE0_1_PHY_REPEATER1 +
+ ((DP_REPEATER_CONFIGURATION_AND_STATUS_SIZE) * (offset - 1));
+
+ DC_LOG_HW_LINK_TRAINING("%s:\n LTTPR Repeater ID: %d\n"
+ " 0x%X Lane01AdjustRequest = %x\n 0x%X Lane23AdjustRequest = %x\n",
+ __func__,
+ offset,
+ lane01_adjust_address,
+ dpcd_buf[lane_adjust_offset],
+ lane01_adjust_address + 1,
+ dpcd_buf[lane_adjust_offset + 1]);
+ } else {
+ DC_LOG_HW_LINK_TRAINING("%s:\n 0x%X Lane01Status = %x\n 0x%X Lane23Status = %x\n ",
+ __func__,
+ lane01_status_address, dpcd_buf[0],
+ lane01_status_address + 1, dpcd_buf[1]);
+
+ lane01_adjust_address = DP_ADJUST_REQUEST_LANE0_1;
+
+ DC_LOG_HW_LINK_TRAINING("%s:\n 0x%X Lane01AdjustRequest = %x\n 0x%X Lane23AdjustRequest = %x\n",
+ __func__,
+ lane01_adjust_address,
+ dpcd_buf[lane_adjust_offset],
+ lane01_adjust_address + 1,
+ dpcd_buf[lane_adjust_offset + 1]);
+ }
+
+ return status;
+}
+
+static void override_lane_settings(const struct link_training_settings *lt_settings,
+ struct dc_lane_settings lane_settings[LANE_COUNT_DP_MAX])
+{
+ uint32_t lane;
+
+ if (lt_settings->voltage_swing == NULL &&
+ lt_settings->pre_emphasis == NULL &&
+ lt_settings->ffe_preset == NULL &&
+ lt_settings->post_cursor2 == NULL)
+
+ return;
+
+ for (lane = 0; lane < LANE_COUNT_DP_MAX; lane++) {
+ if (lt_settings->voltage_swing)
+ lane_settings[lane].VOLTAGE_SWING = *lt_settings->voltage_swing;
+ if (lt_settings->pre_emphasis)
+ lane_settings[lane].PRE_EMPHASIS = *lt_settings->pre_emphasis;
+ if (lt_settings->post_cursor2)
+ lane_settings[lane].POST_CURSOR2 = *lt_settings->post_cursor2;
+ if (lt_settings->ffe_preset)
+ lane_settings[lane].FFE_PRESET = *lt_settings->ffe_preset;
+ }
+}
+
+void dp_get_lttpr_mode_override(struct dc_link *link, enum lttpr_mode *override)
+{
+ if (!dp_is_lttpr_present(link))
+ return;
+
+ if (link->dc->debug.lttpr_mode_override == LTTPR_MODE_TRANSPARENT) {
+ *override = LTTPR_MODE_TRANSPARENT;
+ } else if (link->dc->debug.lttpr_mode_override == LTTPR_MODE_NON_TRANSPARENT) {
+ *override = LTTPR_MODE_NON_TRANSPARENT;
+ } else if (link->dc->debug.lttpr_mode_override == LTTPR_MODE_NON_LTTPR) {
+ *override = LTTPR_MODE_NON_LTTPR;
+ }
+ DC_LOG_DC("lttpr_mode_override chose LTTPR_MODE = %d\n", (uint8_t)(*override));
+}
+
+void override_training_settings(
+ struct dc_link *link,
+ const struct dc_link_training_overrides *overrides,
+ struct link_training_settings *lt_settings)
+{
+ uint32_t lane;
+
+ /* Override link spread */
+ if (!link->dp_ss_off && overrides->downspread != NULL)
+ lt_settings->link_settings.link_spread = *overrides->downspread ?
+ LINK_SPREAD_05_DOWNSPREAD_30KHZ
+ : LINK_SPREAD_DISABLED;
+
+ /* Override lane settings */
+ if (overrides->voltage_swing != NULL)
+ lt_settings->voltage_swing = overrides->voltage_swing;
+ if (overrides->pre_emphasis != NULL)
+ lt_settings->pre_emphasis = overrides->pre_emphasis;
+ if (overrides->post_cursor2 != NULL)
+ lt_settings->post_cursor2 = overrides->post_cursor2;
+ if (overrides->ffe_preset != NULL)
+ lt_settings->ffe_preset = overrides->ffe_preset;
+ /* Override HW lane settings with BIOS forced values if present */
+ if ((link->chip_caps & EXT_DISPLAY_PATH_CAPS__DP_FIXED_VS_EN) &&
+ lt_settings->lttpr_mode == LTTPR_MODE_TRANSPARENT) {
+ lt_settings->voltage_swing = &link->bios_forced_drive_settings.VOLTAGE_SWING;
+ lt_settings->pre_emphasis = &link->bios_forced_drive_settings.PRE_EMPHASIS;
+ lt_settings->always_match_dpcd_with_hw_lane_settings = false;
+ }
+ for (lane = 0; lane < LANE_COUNT_DP_MAX; lane++) {
+ lt_settings->hw_lane_settings[lane].VOLTAGE_SWING =
+ lt_settings->voltage_swing != NULL ?
+ *lt_settings->voltage_swing :
+ VOLTAGE_SWING_LEVEL0;
+ lt_settings->hw_lane_settings[lane].PRE_EMPHASIS =
+ lt_settings->pre_emphasis != NULL ?
+ *lt_settings->pre_emphasis
+ : PRE_EMPHASIS_DISABLED;
+ lt_settings->hw_lane_settings[lane].POST_CURSOR2 =
+ lt_settings->post_cursor2 != NULL ?
+ *lt_settings->post_cursor2
+ : POST_CURSOR2_DISABLED;
+ }
+
+ if (lt_settings->always_match_dpcd_with_hw_lane_settings)
+ dp_hw_to_dpcd_lane_settings(lt_settings,
+ lt_settings->hw_lane_settings, lt_settings->dpcd_lane_settings);
+
+ /* Override training timings */
+ if (overrides->cr_pattern_time != NULL)
+ lt_settings->cr_pattern_time = *overrides->cr_pattern_time;
+ if (overrides->eq_pattern_time != NULL)
+ lt_settings->eq_pattern_time = *overrides->eq_pattern_time;
+ if (overrides->pattern_for_cr != NULL)
+ lt_settings->pattern_for_cr = *overrides->pattern_for_cr;
+ if (overrides->pattern_for_eq != NULL)
+ lt_settings->pattern_for_eq = *overrides->pattern_for_eq;
+ if (overrides->enhanced_framing != NULL)
+ lt_settings->enhanced_framing = *overrides->enhanced_framing;
+ if (link->preferred_training_settings.fec_enable != NULL)
+ lt_settings->should_set_fec_ready = *link->preferred_training_settings.fec_enable;
+
+ /* Check DP tunnel LTTPR mode debug option. */
+ if (link->ep_type == DISPLAY_ENDPOINT_USB4_DPIA && link->dc->debug.dpia_debug.bits.force_non_lttpr)
+ lt_settings->lttpr_mode = LTTPR_MODE_NON_LTTPR;
+
+ dp_get_lttpr_mode_override(link, &lt_settings->lttpr_mode);
+
+}
+
+enum dc_dp_training_pattern decide_cr_training_pattern(
+ const struct dc_link_settings *link_settings)
+{
+ switch (link_dp_get_encoding_format(link_settings)) {
+ case DP_8b_10b_ENCODING:
+ default:
+ return DP_TRAINING_PATTERN_SEQUENCE_1;
+ case DP_128b_132b_ENCODING:
+ return DP_128b_132b_TPS1;
+ }
+}
+
+enum dc_dp_training_pattern decide_eq_training_pattern(struct dc_link *link,
+ const struct dc_link_settings *link_settings)
+{
+ struct link_encoder *link_enc;
+ struct encoder_feature_support *enc_caps;
+ struct dpcd_caps *rx_caps = &link->dpcd_caps;
+ enum dc_dp_training_pattern pattern = DP_TRAINING_PATTERN_SEQUENCE_2;
+
+ link_enc = link_enc_cfg_get_link_enc(link);
+ ASSERT(link_enc);
+ enc_caps = &link_enc->features;
+
+ switch (link_dp_get_encoding_format(link_settings)) {
+ case DP_8b_10b_ENCODING:
+ if (enc_caps->flags.bits.IS_TPS4_CAPABLE &&
+ rx_caps->max_down_spread.bits.TPS4_SUPPORTED)
+ pattern = DP_TRAINING_PATTERN_SEQUENCE_4;
+ else if (enc_caps->flags.bits.IS_TPS3_CAPABLE &&
+ rx_caps->max_ln_count.bits.TPS3_SUPPORTED)
+ pattern = DP_TRAINING_PATTERN_SEQUENCE_3;
+ else
+ pattern = DP_TRAINING_PATTERN_SEQUENCE_2;
+ break;
+ case DP_128b_132b_ENCODING:
+ pattern = DP_128b_132b_TPS2;
+ break;
+ default:
+ pattern = DP_TRAINING_PATTERN_SEQUENCE_2;
+ break;
+ }
+ return pattern;
+}
+
+enum lttpr_mode dp_decide_lttpr_mode(struct dc_link *link,
+ struct dc_link_settings *link_setting)
+{
+ enum dp_link_encoding encoding = link_dp_get_encoding_format(link_setting);
+
+ if (encoding == DP_8b_10b_ENCODING)
+ return dp_decide_8b_10b_lttpr_mode(link);
+ else if (encoding == DP_128b_132b_ENCODING)
+ return dp_decide_128b_132b_lttpr_mode(link);
+
+ ASSERT(0);
+ return LTTPR_MODE_NON_LTTPR;
+}
+
+void dp_decide_lane_settings(
+ const struct link_training_settings *lt_settings,
+ const union lane_adjust ln_adjust[LANE_COUNT_DP_MAX],
+ struct dc_lane_settings hw_lane_settings[LANE_COUNT_DP_MAX],
+ union dpcd_training_lane dpcd_lane_settings[LANE_COUNT_DP_MAX])
+{
+ uint32_t lane;
+
+ for (lane = 0; lane < LANE_COUNT_DP_MAX; lane++) {
+ if (link_dp_get_encoding_format(&lt_settings->link_settings) ==
+ DP_8b_10b_ENCODING) {
+ hw_lane_settings[lane].VOLTAGE_SWING =
+ (enum dc_voltage_swing)(ln_adjust[lane].bits.
+ VOLTAGE_SWING_LANE);
+ hw_lane_settings[lane].PRE_EMPHASIS =
+ (enum dc_pre_emphasis)(ln_adjust[lane].bits.
+ PRE_EMPHASIS_LANE);
+ } else if (link_dp_get_encoding_format(&lt_settings->link_settings) ==
+ DP_128b_132b_ENCODING) {
+ hw_lane_settings[lane].FFE_PRESET.raw =
+ ln_adjust[lane].tx_ffe.PRESET_VALUE;
+ }
+ }
+ dp_hw_to_dpcd_lane_settings(lt_settings, hw_lane_settings, dpcd_lane_settings);
+
+ if (lt_settings->disallow_per_lane_settings) {
+ /* we find the maximum of the requested settings across all lanes*/
+ /* and set this maximum for all lanes*/
+ maximize_lane_settings(lt_settings, hw_lane_settings);
+ override_lane_settings(lt_settings, hw_lane_settings);
+
+ if (lt_settings->always_match_dpcd_with_hw_lane_settings)
+ dp_hw_to_dpcd_lane_settings(lt_settings, hw_lane_settings, dpcd_lane_settings);
+ }
+
+}
+
+void dp_decide_training_settings(
+ struct dc_link *link,
+ const struct dc_link_settings *link_settings,
+ struct link_training_settings *lt_settings)
+{
+ if (link_dp_get_encoding_format(link_settings) == DP_8b_10b_ENCODING)
+ decide_8b_10b_training_settings(link, link_settings, lt_settings);
+ else if (link_dp_get_encoding_format(link_settings) == DP_128b_132b_ENCODING)
+ decide_128b_132b_training_settings(link, link_settings, lt_settings);
+}
+
+
+enum dc_status configure_lttpr_mode_transparent(struct dc_link *link)
+{
+ uint8_t repeater_mode = DP_PHY_REPEATER_MODE_TRANSPARENT;
+
+ DC_LOG_HW_LINK_TRAINING("%s\n Set LTTPR to Transparent Mode\n", __func__);
+ return core_link_write_dpcd(link,
+ DP_PHY_REPEATER_MODE,
+ (uint8_t *)&repeater_mode,
+ sizeof(repeater_mode));
+}
+
+static enum dc_status configure_lttpr_mode_non_transparent(
+ struct dc_link *link,
+ const struct link_training_settings *lt_settings)
+{
+ /* aux timeout is already set to extended */
+ /* RESET/SET lttpr mode to enable non transparent mode */
+ uint8_t repeater_cnt;
+ uint32_t aux_interval_address;
+ uint8_t repeater_id;
+ enum dc_status result = DC_ERROR_UNEXPECTED;
+ uint8_t repeater_mode = DP_PHY_REPEATER_MODE_TRANSPARENT;
+ const struct dc *dc = link->dc;
+
+ enum dp_link_encoding encoding = dc->link_srv->dp_get_encoding_format(&lt_settings->link_settings);
+
+ if (encoding == DP_8b_10b_ENCODING) {
+ DC_LOG_HW_LINK_TRAINING("%s\n Set LTTPR to Transparent Mode\n", __func__);
+ result = core_link_write_dpcd(link,
+ DP_PHY_REPEATER_MODE,
+ (uint8_t *)&repeater_mode,
+ sizeof(repeater_mode));
+
+ }
+
+ if (result == DC_OK) {
+ link->dpcd_caps.lttpr_caps.mode = repeater_mode;
+ }
+
+ if (lt_settings->lttpr_mode == LTTPR_MODE_NON_TRANSPARENT) {
+
+ DC_LOG_HW_LINK_TRAINING("%s\n Set LTTPR to Non Transparent Mode\n", __func__);
+
+ repeater_mode = DP_PHY_REPEATER_MODE_NON_TRANSPARENT;
+ result = core_link_write_dpcd(link,
+ DP_PHY_REPEATER_MODE,
+ (uint8_t *)&repeater_mode,
+ sizeof(repeater_mode));
+
+ if (result == DC_OK) {
+ link->dpcd_caps.lttpr_caps.mode = repeater_mode;
+ }
+
+ if (encoding == DP_8b_10b_ENCODING) {
+ repeater_cnt = dp_parse_lttpr_repeater_count(link->dpcd_caps.lttpr_caps.phy_repeater_cnt);
+
+ /* Driver does not need to train the first hop. Skip DPCD read and clear
+ * AUX_RD_INTERVAL for DPTX-to-DPIA hop.
+ */
+ if (link->ep_type == DISPLAY_ENDPOINT_USB4_DPIA)
+ link->dpcd_caps.lttpr_caps.aux_rd_interval[--repeater_cnt] = 0;
+
+ for (repeater_id = repeater_cnt; repeater_id > 0; repeater_id--) {
+ aux_interval_address = DP_TRAINING_AUX_RD_INTERVAL_PHY_REPEATER1 +
+ ((DP_REPEATER_CONFIGURATION_AND_STATUS_SIZE) * (repeater_id - 1));
+ core_link_read_dpcd(
+ link,
+ aux_interval_address,
+ (uint8_t *)&link->dpcd_caps.lttpr_caps.aux_rd_interval[repeater_id - 1],
+ sizeof(link->dpcd_caps.lttpr_caps.aux_rd_interval[repeater_id - 1]));
+ link->dpcd_caps.lttpr_caps.aux_rd_interval[repeater_id - 1] &= 0x7F;
+ }
+ }
+ }
+
+ return result;
+}
+
+enum dc_status dpcd_configure_lttpr_mode(struct dc_link *link, struct link_training_settings *lt_settings)
+{
+ enum dc_status status = DC_OK;
+
+ if (lt_settings->lttpr_mode == LTTPR_MODE_TRANSPARENT)
+ status = configure_lttpr_mode_transparent(link);
+
+ else if (lt_settings->lttpr_mode == LTTPR_MODE_NON_TRANSPARENT)
+ status = configure_lttpr_mode_non_transparent(link, lt_settings);
+
+ return status;
+}
+
+void repeater_training_done(struct dc_link *link, uint32_t offset)
+{
+ union dpcd_training_pattern dpcd_pattern = {0};
+
+ const uint32_t dpcd_base_lt_offset =
+ DP_TRAINING_PATTERN_SET_PHY_REPEATER1 +
+ ((DP_REPEATER_CONFIGURATION_AND_STATUS_SIZE) * (offset - 1));
+ /* Set training not in progress*/
+ dpcd_pattern.v1_4.TRAINING_PATTERN_SET = DPCD_TRAINING_PATTERN_VIDEOIDLE;
+
+ core_link_write_dpcd(
+ link,
+ dpcd_base_lt_offset,
+ &dpcd_pattern.raw,
+ 1);
+
+ DC_LOG_HW_LINK_TRAINING("%s\n LTTPR Id: %d 0x%X pattern = %x\n",
+ __func__,
+ offset,
+ dpcd_base_lt_offset,
+ dpcd_pattern.v1_4.TRAINING_PATTERN_SET);
+}
+
+static void dpcd_exit_training_mode(struct dc_link *link, enum dp_link_encoding encoding)
+{
+ uint8_t sink_status = 0;
+ uint8_t i;
+
+ /* clear training pattern set */
+ dpcd_set_training_pattern(link, DP_TRAINING_PATTERN_VIDEOIDLE);
+
+ if (encoding == DP_128b_132b_ENCODING) {
+ /* poll for intra-hop disable */
+ for (i = 0; i < 10; i++) {
+ if ((core_link_read_dpcd(link, DP_SINK_STATUS, &sink_status, 1) == DC_OK) &&
+ (sink_status & DP_INTRA_HOP_AUX_REPLY_INDICATION) == 0)
+ break;
+ fsleep(1000);
+ }
+ }
+}
+
+enum dc_status dpcd_configure_channel_coding(struct dc_link *link,
+ struct link_training_settings *lt_settings)
+{
+ enum dp_link_encoding encoding =
+ link_dp_get_encoding_format(
+ &lt_settings->link_settings);
+ enum dc_status status;
+
+ status = core_link_write_dpcd(
+ link,
+ DP_MAIN_LINK_CHANNEL_CODING_SET,
+ (uint8_t *) &encoding,
+ 1);
+ DC_LOG_HW_LINK_TRAINING("%s:\n 0x%X MAIN_LINK_CHANNEL_CODING_SET = %x\n",
+ __func__,
+ DP_MAIN_LINK_CHANNEL_CODING_SET,
+ encoding);
+
+ return status;
+}
+
+void dpcd_set_training_pattern(
+ struct dc_link *link,
+ enum dc_dp_training_pattern training_pattern)
+{
+ union dpcd_training_pattern dpcd_pattern = {0};
+
+ dpcd_pattern.v1_4.TRAINING_PATTERN_SET =
+ dp_training_pattern_to_dpcd_training_pattern(
+ link, training_pattern);
+
+ core_link_write_dpcd(
+ link,
+ DP_TRAINING_PATTERN_SET,
+ &dpcd_pattern.raw,
+ 1);
+
+ DC_LOG_HW_LINK_TRAINING("%s\n %x pattern = %x\n",
+ __func__,
+ DP_TRAINING_PATTERN_SET,
+ dpcd_pattern.v1_4.TRAINING_PATTERN_SET);
+}
+
+enum dc_status dpcd_set_link_settings(
+ struct dc_link *link,
+ const struct link_training_settings *lt_settings)
+{
+ uint8_t rate;
+ enum dc_status status;
+
+ union down_spread_ctrl downspread = {0};
+ union lane_count_set lane_count_set = {0};
+
+ downspread.raw = (uint8_t)
+ (lt_settings->link_settings.link_spread);
+
+ lane_count_set.bits.LANE_COUNT_SET =
+ lt_settings->link_settings.lane_count;
+
+ lane_count_set.bits.ENHANCED_FRAMING = lt_settings->enhanced_framing;
+ lane_count_set.bits.POST_LT_ADJ_REQ_GRANTED = 0;
+
+
+ if (link->ep_type == DISPLAY_ENDPOINT_PHY &&
+ lt_settings->pattern_for_eq < DP_TRAINING_PATTERN_SEQUENCE_4) {
+ lane_count_set.bits.POST_LT_ADJ_REQ_GRANTED =
+ link->dpcd_caps.max_ln_count.bits.POST_LT_ADJ_REQ_SUPPORTED;
+ }
+
+ status = core_link_write_dpcd(link, DP_DOWNSPREAD_CTRL,
+ &downspread.raw, sizeof(downspread));
+
+ status = core_link_write_dpcd(link, DP_LANE_COUNT_SET,
+ &lane_count_set.raw, 1);
+
+ if (link->dpcd_caps.dpcd_rev.raw >= DPCD_REV_13 &&
+ lt_settings->link_settings.use_link_rate_set == true) {
+ rate = 0;
+ /* WA for some MUX chips that will power down with eDP and lose supported
+ * link rate set for eDP 1.4. Source reads DPCD 0x010 again to ensure
+ * MUX chip gets link rate set back before link training.
+ */
+ if (link->connector_signal == SIGNAL_TYPE_EDP) {
+ uint8_t supported_link_rates[16];
+
+ core_link_read_dpcd(link, DP_SUPPORTED_LINK_RATES,
+ supported_link_rates, sizeof(supported_link_rates));
+ }
+ status = core_link_write_dpcd(link, DP_LINK_BW_SET, &rate, 1);
+ status = core_link_write_dpcd(link, DP_LINK_RATE_SET,
+ &lt_settings->link_settings.link_rate_set, 1);
+ } else {
+ rate = get_dpcd_link_rate(&lt_settings->link_settings);
+
+ status = core_link_write_dpcd(link, DP_LINK_BW_SET, &rate, 1);
+ }
+
+ if (rate) {
+ DC_LOG_HW_LINK_TRAINING("%s\n %x rate = %x\n %x lane = %x framing = %x\n %x spread = %x\n",
+ __func__,
+ DP_LINK_BW_SET,
+ lt_settings->link_settings.link_rate,
+ DP_LANE_COUNT_SET,
+ lt_settings->link_settings.lane_count,
+ lt_settings->enhanced_framing,
+ DP_DOWNSPREAD_CTRL,
+ lt_settings->link_settings.link_spread);
+ } else {
+ DC_LOG_HW_LINK_TRAINING("%s\n %x rate set = %x\n %x lane = %x framing = %x\n %x spread = %x\n",
+ __func__,
+ DP_LINK_RATE_SET,
+ lt_settings->link_settings.link_rate_set,
+ DP_LANE_COUNT_SET,
+ lt_settings->link_settings.lane_count,
+ lt_settings->enhanced_framing,
+ DP_DOWNSPREAD_CTRL,
+ lt_settings->link_settings.link_spread);
+ }
+
+ return status;
+}
+
+enum dc_status dpcd_set_lane_settings(
+ struct dc_link *link,
+ const struct link_training_settings *link_training_setting,
+ uint32_t offset)
+{
+ unsigned int lane0_set_address;
+ enum dc_status status;
+ lane0_set_address = DP_TRAINING_LANE0_SET;
+
+ if (is_repeater(link_training_setting, offset))
+ lane0_set_address = DP_TRAINING_LANE0_SET_PHY_REPEATER1 +
+ ((DP_REPEATER_CONFIGURATION_AND_STATUS_SIZE) * (offset - 1));
+
+ status = core_link_write_dpcd(link,
+ lane0_set_address,
+ (uint8_t *)(link_training_setting->dpcd_lane_settings),
+ link_training_setting->link_settings.lane_count);
+
+ if (is_repeater(link_training_setting, offset)) {
+ DC_LOG_HW_LINK_TRAINING("%s\n LTTPR Repeater ID: %d\n"
+ " 0x%X VS set = %x PE set = %x max VS Reached = %x max PE Reached = %x\n",
+ __func__,
+ offset,
+ lane0_set_address,
+ link_training_setting->dpcd_lane_settings[0].bits.VOLTAGE_SWING_SET,
+ link_training_setting->dpcd_lane_settings[0].bits.PRE_EMPHASIS_SET,
+ link_training_setting->dpcd_lane_settings[0].bits.MAX_SWING_REACHED,
+ link_training_setting->dpcd_lane_settings[0].bits.MAX_PRE_EMPHASIS_REACHED);
+
+ } else {
+ DC_LOG_HW_LINK_TRAINING("%s\n 0x%X VS set = %x PE set = %x max VS Reached = %x max PE Reached = %x\n",
+ __func__,
+ lane0_set_address,
+ link_training_setting->dpcd_lane_settings[0].bits.VOLTAGE_SWING_SET,
+ link_training_setting->dpcd_lane_settings[0].bits.PRE_EMPHASIS_SET,
+ link_training_setting->dpcd_lane_settings[0].bits.MAX_SWING_REACHED,
+ link_training_setting->dpcd_lane_settings[0].bits.MAX_PRE_EMPHASIS_REACHED);
+ }
+
+ return status;
+}
+
+void dpcd_set_lt_pattern_and_lane_settings(
+ struct dc_link *link,
+ const struct link_training_settings *lt_settings,
+ enum dc_dp_training_pattern pattern,
+ uint32_t offset)
+{
+ uint32_t dpcd_base_lt_offset;
+ uint8_t dpcd_lt_buffer[5] = {0};
+ union dpcd_training_pattern dpcd_pattern = {0};
+ uint32_t size_in_bytes;
+ bool edp_workaround = false; /* TODO link_prop.INTERNAL */
+ dpcd_base_lt_offset = DP_TRAINING_PATTERN_SET;
+
+ if (is_repeater(lt_settings, offset))
+ dpcd_base_lt_offset = DP_TRAINING_PATTERN_SET_PHY_REPEATER1 +
+ ((DP_REPEATER_CONFIGURATION_AND_STATUS_SIZE) * (offset - 1));
+
+ /*****************************************************************
+ * DpcdAddress_TrainingPatternSet
+ *****************************************************************/
+ dpcd_pattern.v1_4.TRAINING_PATTERN_SET =
+ dp_training_pattern_to_dpcd_training_pattern(link, pattern);
+
+ dpcd_pattern.v1_4.SCRAMBLING_DISABLE =
+ dp_initialize_scrambling_data_symbols(link, pattern);
+
+ dpcd_lt_buffer[DP_TRAINING_PATTERN_SET - DP_TRAINING_PATTERN_SET]
+ = dpcd_pattern.raw;
+
+ if (is_repeater(lt_settings, offset)) {
+ DC_LOG_HW_LINK_TRAINING("%s\n LTTPR Repeater ID: %d\n 0x%X pattern = %x\n",
+ __func__,
+ offset,
+ dpcd_base_lt_offset,
+ dpcd_pattern.v1_4.TRAINING_PATTERN_SET);
+ } else {
+ DC_LOG_HW_LINK_TRAINING("%s\n 0x%X pattern = %x\n",
+ __func__,
+ dpcd_base_lt_offset,
+ dpcd_pattern.v1_4.TRAINING_PATTERN_SET);
+ }
+
+ /* concatenate everything into one buffer*/
+ size_in_bytes = lt_settings->link_settings.lane_count *
+ sizeof(lt_settings->dpcd_lane_settings[0]);
+
+ // 0x00103 - 0x00102
+ memmove(
+ &dpcd_lt_buffer[DP_TRAINING_LANE0_SET - DP_TRAINING_PATTERN_SET],
+ lt_settings->dpcd_lane_settings,
+ size_in_bytes);
+
+ if (is_repeater(lt_settings, offset)) {
+ if (link_dp_get_encoding_format(&lt_settings->link_settings) ==
+ DP_128b_132b_ENCODING)
+ DC_LOG_HW_LINK_TRAINING("%s:\n LTTPR Repeater ID: %d\n"
+ " 0x%X TX_FFE_PRESET_VALUE = %x\n",
+ __func__,
+ offset,
+ dpcd_base_lt_offset,
+ lt_settings->dpcd_lane_settings[0].tx_ffe.PRESET_VALUE);
+ else if (link_dp_get_encoding_format(&lt_settings->link_settings) ==
+ DP_8b_10b_ENCODING)
+ DC_LOG_HW_LINK_TRAINING("%s:\n LTTPR Repeater ID: %d\n"
+ " 0x%X VS set = %x PE set = %x max VS Reached = %x max PE Reached = %x\n",
+ __func__,
+ offset,
+ dpcd_base_lt_offset,
+ lt_settings->dpcd_lane_settings[0].bits.VOLTAGE_SWING_SET,
+ lt_settings->dpcd_lane_settings[0].bits.PRE_EMPHASIS_SET,
+ lt_settings->dpcd_lane_settings[0].bits.MAX_SWING_REACHED,
+ lt_settings->dpcd_lane_settings[0].bits.MAX_PRE_EMPHASIS_REACHED);
+ } else {
+ if (link_dp_get_encoding_format(&lt_settings->link_settings) ==
+ DP_128b_132b_ENCODING)
+ DC_LOG_HW_LINK_TRAINING("%s:\n 0x%X TX_FFE_PRESET_VALUE = %x\n",
+ __func__,
+ dpcd_base_lt_offset,
+ lt_settings->dpcd_lane_settings[0].tx_ffe.PRESET_VALUE);
+ else if (link_dp_get_encoding_format(&lt_settings->link_settings) ==
+ DP_8b_10b_ENCODING)
+ DC_LOG_HW_LINK_TRAINING("%s:\n 0x%X VS set = %x PE set = %x max VS Reached = %x max PE Reached = %x\n",
+ __func__,
+ dpcd_base_lt_offset,
+ lt_settings->dpcd_lane_settings[0].bits.VOLTAGE_SWING_SET,
+ lt_settings->dpcd_lane_settings[0].bits.PRE_EMPHASIS_SET,
+ lt_settings->dpcd_lane_settings[0].bits.MAX_SWING_REACHED,
+ lt_settings->dpcd_lane_settings[0].bits.MAX_PRE_EMPHASIS_REACHED);
+ }
+ if (edp_workaround) {
+ /* for eDP write in 2 parts because the 5-byte burst is
+ * causing issues on some eDP panels (EPR#366724)
+ */
+ core_link_write_dpcd(
+ link,
+ DP_TRAINING_PATTERN_SET,
+ &dpcd_pattern.raw,
+ sizeof(dpcd_pattern.raw));
+
+ core_link_write_dpcd(
+ link,
+ DP_TRAINING_LANE0_SET,
+ (uint8_t *)(lt_settings->dpcd_lane_settings),
+ size_in_bytes);
+
+ } else if (link_dp_get_encoding_format(&lt_settings->link_settings) ==
+ DP_128b_132b_ENCODING) {
+ core_link_write_dpcd(
+ link,
+ dpcd_base_lt_offset,
+ dpcd_lt_buffer,
+ sizeof(dpcd_lt_buffer));
+ } else
+ /* write it all in (1 + number-of-lanes)-byte burst*/
+ core_link_write_dpcd(
+ link,
+ dpcd_base_lt_offset,
+ dpcd_lt_buffer,
+ size_in_bytes + sizeof(dpcd_pattern.raw));
+}
+
+void start_clock_recovery_pattern_early(struct dc_link *link,
+ const struct link_resource *link_res,
+ struct link_training_settings *lt_settings,
+ uint32_t offset)
+{
+ DC_LOG_HW_LINK_TRAINING("%s\n GPU sends TPS1. Wait 400us.\n",
+ __func__);
+ dp_set_hw_training_pattern(link, link_res, lt_settings->pattern_for_cr, offset);
+ dp_set_hw_lane_settings(link, link_res, lt_settings, offset);
+ udelay(400);
+}
+
+void dp_set_hw_test_pattern(
+ struct dc_link *link,
+ const struct link_resource *link_res,
+ enum dp_test_pattern test_pattern,
+ uint8_t *custom_pattern,
+ uint32_t custom_pattern_size)
+{
+ const struct link_hwss *link_hwss = get_link_hwss(link, link_res);
+ struct encoder_set_dp_phy_pattern_param pattern_param = {0};
+
+ pattern_param.dp_phy_pattern = test_pattern;
+ pattern_param.custom_pattern = custom_pattern;
+ pattern_param.custom_pattern_size = custom_pattern_size;
+ pattern_param.dp_panel_mode = dp_get_panel_mode(link);
+
+ if (link_hwss->ext.set_dp_link_test_pattern)
+ link_hwss->ext.set_dp_link_test_pattern(link, link_res, &pattern_param);
+}
+
+bool dp_set_hw_training_pattern(
+ struct dc_link *link,
+ const struct link_resource *link_res,
+ enum dc_dp_training_pattern pattern,
+ uint32_t offset)
+{
+ enum dp_test_pattern test_pattern = DP_TEST_PATTERN_UNSUPPORTED;
+
+ switch (pattern) {
+ case DP_TRAINING_PATTERN_SEQUENCE_1:
+ test_pattern = DP_TEST_PATTERN_TRAINING_PATTERN1;
+ break;
+ case DP_TRAINING_PATTERN_SEQUENCE_2:
+ test_pattern = DP_TEST_PATTERN_TRAINING_PATTERN2;
+ break;
+ case DP_TRAINING_PATTERN_SEQUENCE_3:
+ test_pattern = DP_TEST_PATTERN_TRAINING_PATTERN3;
+ break;
+ case DP_TRAINING_PATTERN_SEQUENCE_4:
+ test_pattern = DP_TEST_PATTERN_TRAINING_PATTERN4;
+ break;
+ case DP_128b_132b_TPS1:
+ test_pattern = DP_TEST_PATTERN_128b_132b_TPS1_TRAINING_MODE;
+ break;
+ case DP_128b_132b_TPS2:
+ test_pattern = DP_TEST_PATTERN_128b_132b_TPS2_TRAINING_MODE;
+ break;
+ default:
+ break;
+ }
+
+ dp_set_hw_test_pattern(link, link_res, test_pattern, NULL, 0);
+
+ return true;
+}
+
+static bool perform_post_lt_adj_req_sequence(
+ struct dc_link *link,
+ const struct link_resource *link_res,
+ struct link_training_settings *lt_settings)
+{
+ enum dc_lane_count lane_count =
+ lt_settings->link_settings.lane_count;
+
+ uint32_t adj_req_count;
+ uint32_t adj_req_timer;
+ bool req_drv_setting_changed;
+ uint32_t lane;
+ union lane_status dpcd_lane_status[LANE_COUNT_DP_MAX] = {0};
+ union lane_align_status_updated dpcd_lane_status_updated = {0};
+ union lane_adjust dpcd_lane_adjust[LANE_COUNT_DP_MAX] = {0};
+
+ req_drv_setting_changed = false;
+ for (adj_req_count = 0; adj_req_count < POST_LT_ADJ_REQ_LIMIT;
+ adj_req_count++) {
+
+ req_drv_setting_changed = false;
+
+ for (adj_req_timer = 0;
+ adj_req_timer < POST_LT_ADJ_REQ_TIMEOUT;
+ adj_req_timer++) {
+
+ dp_get_lane_status_and_lane_adjust(
+ link,
+ lt_settings,
+ dpcd_lane_status,
+ &dpcd_lane_status_updated,
+ dpcd_lane_adjust,
+ DPRX);
+
+ if (dpcd_lane_status_updated.bits.
+ POST_LT_ADJ_REQ_IN_PROGRESS == 0)
+ return true;
+
+ if (!dp_is_cr_done(lane_count, dpcd_lane_status))
+ return false;
+
+ if (!dp_is_ch_eq_done(lane_count, dpcd_lane_status) ||
+ !dp_is_symbol_locked(lane_count, dpcd_lane_status) ||
+ !dp_is_interlane_aligned(dpcd_lane_status_updated))
+ return false;
+
+ for (lane = 0; lane < (uint32_t)(lane_count); lane++) {
+
+ if (lt_settings->
+ dpcd_lane_settings[lane].bits.VOLTAGE_SWING_SET !=
+ dpcd_lane_adjust[lane].bits.VOLTAGE_SWING_LANE ||
+ lt_settings->dpcd_lane_settings[lane].bits.PRE_EMPHASIS_SET !=
+ dpcd_lane_adjust[lane].bits.PRE_EMPHASIS_LANE) {
+
+ req_drv_setting_changed = true;
+ break;
+ }
+ }
+
+ if (req_drv_setting_changed) {
+ dp_decide_lane_settings(lt_settings, dpcd_lane_adjust,
+ lt_settings->hw_lane_settings, lt_settings->dpcd_lane_settings);
+
+ dp_set_drive_settings(link,
+ link_res,
+ lt_settings);
+ break;
+ }
+
+ msleep(1);
+ }
+
+ if (!req_drv_setting_changed) {
+ DC_LOG_WARNING("%s: Post Link Training Adjust Request Timed out\n",
+ __func__);
+
+ ASSERT(0);
+ return true;
+ }
+ }
+ DC_LOG_WARNING("%s: Post Link Training Adjust Request limit reached\n",
+ __func__);
+
+ ASSERT(0);
+ return true;
+
+}
+
+static enum link_training_result dp_transition_to_video_idle(
+ struct dc_link *link,
+ const struct link_resource *link_res,
+ struct link_training_settings *lt_settings,
+ enum link_training_result status)
+{
+ union lane_count_set lane_count_set = {0};
+
+ /* 4. mainlink output idle pattern*/
+ dp_set_hw_test_pattern(link, link_res, DP_TEST_PATTERN_VIDEO_MODE, NULL, 0);
+
+ /*
+ * 5. post training adjust if required
+ * If the upstream DPTX and downstream DPRX both support TPS4,
+ * TPS4 must be used instead of POST_LT_ADJ_REQ.
+ */
+ if (link->dpcd_caps.max_ln_count.bits.POST_LT_ADJ_REQ_SUPPORTED != 1 ||
+ lt_settings->pattern_for_eq >= DP_TRAINING_PATTERN_SEQUENCE_4) {
+ /* delay 5ms after Main Link output idle pattern and then check
+ * DPCD 0202h.
+ */
+ if (link->connector_signal != SIGNAL_TYPE_EDP && status == LINK_TRAINING_SUCCESS) {
+ msleep(5);
+ status = dp_check_link_loss_status(link, lt_settings);
+ }
+ return status;
+ }
+
+ if (status == LINK_TRAINING_SUCCESS &&
+ perform_post_lt_adj_req_sequence(link, link_res, lt_settings) == false)
+ status = LINK_TRAINING_LQA_FAIL;
+
+ lane_count_set.bits.LANE_COUNT_SET = lt_settings->link_settings.lane_count;
+ lane_count_set.bits.ENHANCED_FRAMING = lt_settings->enhanced_framing;
+ lane_count_set.bits.POST_LT_ADJ_REQ_GRANTED = 0;
+
+ core_link_write_dpcd(
+ link,
+ DP_LANE_COUNT_SET,
+ &lane_count_set.raw,
+ sizeof(lane_count_set));
+
+ return status;
+}
+
+enum link_training_result dp_perform_link_training(
+ struct dc_link *link,
+ const struct link_resource *link_res,
+ const struct dc_link_settings *link_settings,
+ bool skip_video_pattern)
+{
+ enum link_training_result status = LINK_TRAINING_SUCCESS;
+ struct link_training_settings lt_settings = {0};
+ enum dp_link_encoding encoding =
+ link_dp_get_encoding_format(link_settings);
+
+ /* decide training settings */
+ dp_decide_training_settings(
+ link,
+ link_settings,
+ &lt_settings);
+
+ override_training_settings(
+ link,
+ &link->preferred_training_settings,
+ &lt_settings);
+
+ /* reset previous training states */
+ dpcd_exit_training_mode(link, encoding);
+
+ /* configure link prior to entering training mode */
+ dpcd_configure_lttpr_mode(link, &lt_settings);
+ dp_set_fec_ready(link, link_res, lt_settings.should_set_fec_ready);
+ dpcd_configure_channel_coding(link, &lt_settings);
+
+ /* enter training mode:
+ * Per DP specs starting from here, DPTX device shall not issue
+ * Non-LT AUX transactions inside training mode.
+ */
+ if ((link->chip_caps & EXT_DISPLAY_PATH_CAPS__DP_FIXED_VS_EN) && encoding == DP_8b_10b_ENCODING)
+ if (link->dc->config.use_old_fixed_vs_sequence)
+ status = dp_perform_fixed_vs_pe_training_sequence_legacy(link, link_res, &lt_settings);
+ else
+ status = dp_perform_fixed_vs_pe_training_sequence(link, link_res, &lt_settings);
+ else if (encoding == DP_8b_10b_ENCODING)
+ status = dp_perform_8b_10b_link_training(link, link_res, &lt_settings);
+ else if (encoding == DP_128b_132b_ENCODING)
+ status = dp_perform_128b_132b_link_training(link, link_res, &lt_settings);
+ else
+ ASSERT(0);
+
+ /* exit training mode */
+ dpcd_exit_training_mode(link, encoding);
+
+ /* switch to video idle */
+ if ((status == LINK_TRAINING_SUCCESS) || !skip_video_pattern)
+ status = dp_transition_to_video_idle(link,
+ link_res,
+ &lt_settings,
+ status);
+
+ /* dump debug data */
+ dp_log_training_result(link, &lt_settings, status);
+ if (status != LINK_TRAINING_SUCCESS)
+ link->ctx->dc->debug_data.ltFailCount++;
+ return status;
+}
+
+bool perform_link_training_with_retries(
+ const struct dc_link_settings *link_setting,
+ bool skip_video_pattern,
+ int attempts,
+ struct pipe_ctx *pipe_ctx,
+ enum signal_type signal,
+ bool do_fallback)
+{
+ int j;
+ uint8_t delay_between_attempts = LINK_TRAINING_RETRY_DELAY;
+ struct dc_stream_state *stream = pipe_ctx->stream;
+ struct dc_link *link = stream->link;
+ enum dp_panel_mode panel_mode = dp_get_panel_mode(link);
+ enum link_training_result status = LINK_TRAINING_CR_FAIL_LANE0;
+ struct dc_link_settings cur_link_settings = *link_setting;
+ struct dc_link_settings max_link_settings = *link_setting;
+ const struct link_hwss *link_hwss = get_link_hwss(link, &pipe_ctx->link_res);
+ int fail_count = 0;
+ bool is_link_bw_low = false; /* link bandwidth < stream bandwidth */
+ bool is_link_bw_min = /* RBR x 1 */
+ (cur_link_settings.link_rate <= LINK_RATE_LOW) &&
+ (cur_link_settings.lane_count <= LANE_COUNT_ONE);
+
+ dp_trace_commit_lt_init(link);
+
+
+ if (link_dp_get_encoding_format(&cur_link_settings) == DP_8b_10b_ENCODING)
+ /* We need to do this before the link training to ensure the idle
+ * pattern in SST mode will be sent right after the link training
+ */
+ link_hwss->setup_stream_encoder(pipe_ctx);
+
+ dp_trace_set_lt_start_timestamp(link, false);
+ j = 0;
+ while (j < attempts && fail_count < (attempts * 10)) {
+
+ DC_LOG_HW_LINK_TRAINING("%s: Beginning link(%d) training attempt %u of %d @ rate(%d) x lane(%d) @ spread = %x\n",
+ __func__, link->link_index, (unsigned int)j + 1, attempts,
+ cur_link_settings.link_rate, cur_link_settings.lane_count,
+ cur_link_settings.link_spread);
+
+ dp_enable_link_phy(
+ link,
+ &pipe_ctx->link_res,
+ signal,
+ pipe_ctx->clock_source->id,
+ &cur_link_settings);
+
+ if (stream->sink_patches.dppowerup_delay > 0) {
+ int delay_dp_power_up_in_ms = stream->sink_patches.dppowerup_delay;
+
+ msleep(delay_dp_power_up_in_ms);
+ }
+
+ if (panel_mode == DP_PANEL_MODE_EDP) {
+ struct cp_psp *cp_psp = &stream->ctx->cp_psp;
+
+ if (cp_psp && cp_psp->funcs.enable_assr) {
+ /* ASSR is bound to fail with unsigned PSP
+ * verstage used during devlopment phase.
+ * Report and continue with eDP panel mode to
+ * perform eDP link training with right settings
+ */
+ bool result;
+ result = cp_psp->funcs.enable_assr(cp_psp->handle, link);
+ if (!result && link->panel_mode != DP_PANEL_MODE_EDP)
+ panel_mode = DP_PANEL_MODE_DEFAULT;
+ }
+ }
+
+ dp_set_panel_mode(link, panel_mode);
+
+ if (link->aux_access_disabled) {
+ dp_perform_link_training_skip_aux(link, &pipe_ctx->link_res, &cur_link_settings);
+ return true;
+ } else {
+ /** @todo Consolidate USB4 DP and DPx.x training. */
+ if (link->ep_type == DISPLAY_ENDPOINT_USB4_DPIA) {
+ status = dpia_perform_link_training(
+ link,
+ &pipe_ctx->link_res,
+ &cur_link_settings,
+ skip_video_pattern);
+
+ /* Transmit idle pattern once training successful. */
+ if (status == LINK_TRAINING_SUCCESS && !is_link_bw_low) {
+ dp_set_hw_test_pattern(link, &pipe_ctx->link_res, DP_TEST_PATTERN_VIDEO_MODE, NULL, 0);
+ // Update verified link settings to current one
+ // Because DPIA LT might fallback to lower link setting.
+ if (stream->signal == SIGNAL_TYPE_DISPLAY_PORT_MST) {
+ link->verified_link_cap.link_rate = link->cur_link_settings.link_rate;
+ link->verified_link_cap.lane_count = link->cur_link_settings.lane_count;
+ dm_helpers_dp_mst_update_branch_bandwidth(link->ctx, link);
+ }
+ }
+ } else {
+ status = dp_perform_link_training(
+ link,
+ &pipe_ctx->link_res,
+ &cur_link_settings,
+ skip_video_pattern);
+ }
+
+ dp_trace_lt_total_count_increment(link, false);
+ dp_trace_lt_result_update(link, status, false);
+ dp_trace_set_lt_end_timestamp(link, false);
+ if (status == LINK_TRAINING_SUCCESS && !is_link_bw_low)
+ return true;
+ }
+
+ fail_count++;
+ dp_trace_lt_fail_count_update(link, fail_count, false);
+ if (link->ep_type == DISPLAY_ENDPOINT_PHY) {
+ /* latest link training still fail or link training is aborted
+ * skip delay and keep PHY on
+ */
+ if (j == (attempts - 1) || (status == LINK_TRAINING_ABORT))
+ break;
+ }
+
+ DC_LOG_WARNING("%s: Link(%d) training attempt %u of %d failed @ rate(%d) x lane(%d) @ spread = %x : fail reason:(%d)\n",
+ __func__, link->link_index, (unsigned int)j + 1, attempts,
+ cur_link_settings.link_rate, cur_link_settings.lane_count,
+ cur_link_settings.link_spread, status);
+
+ dp_disable_link_phy(link, &pipe_ctx->link_res, signal);
+
+ /* Abort link training if failure due to sink being unplugged. */
+ if (status == LINK_TRAINING_ABORT) {
+ enum dc_connection_type type = dc_connection_none;
+
+ link_detect_connection_type(link, &type);
+ if (type == dc_connection_none) {
+ DC_LOG_HW_LINK_TRAINING("%s: Aborting training because sink unplugged\n", __func__);
+ break;
+ }
+ }
+
+ /* Try to train again at original settings if:
+ * - not falling back between training attempts;
+ * - aborted previous attempt due to reasons other than sink unplug;
+ * - successfully trained but at a link rate lower than that required by stream;
+ * - reached minimum link bandwidth.
+ */
+ if (!do_fallback || (status == LINK_TRAINING_ABORT) ||
+ (status == LINK_TRAINING_SUCCESS && is_link_bw_low) ||
+ is_link_bw_min) {
+ j++;
+ cur_link_settings = *link_setting;
+ delay_between_attempts += LINK_TRAINING_RETRY_DELAY;
+ is_link_bw_low = false;
+ is_link_bw_min = (cur_link_settings.link_rate <= LINK_RATE_LOW) &&
+ (cur_link_settings.lane_count <= LANE_COUNT_ONE);
+
+ } else if (do_fallback) { /* Try training at lower link bandwidth if doing fallback. */
+ uint32_t req_bw;
+ uint32_t link_bw;
+
+ decide_fallback_link_setting(link, &max_link_settings,
+ &cur_link_settings, status);
+ /* Flag if reduced link bandwidth no longer meets stream requirements or fallen back to
+ * minimum link bandwidth.
+ */
+ req_bw = dc_bandwidth_in_kbps_from_timing(&stream->timing);
+ link_bw = dp_link_bandwidth_kbps(link, &cur_link_settings);
+ is_link_bw_low = (req_bw > link_bw);
+ is_link_bw_min = ((cur_link_settings.link_rate <= LINK_RATE_LOW) &&
+ (cur_link_settings.lane_count <= LANE_COUNT_ONE));
+
+ if (is_link_bw_low)
+ DC_LOG_WARNING(
+ "%s: Link(%d) bandwidth too low after fallback req_bw(%d) > link_bw(%d)\n",
+ __func__, link->link_index, req_bw, link_bw);
+ }
+
+ msleep(delay_between_attempts);
+ }
+
+ return false;
+}
+
diff --git a/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training.h b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training.h
new file mode 100644
index 000000000000..7d027bac8255
--- /dev/null
+++ b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training.h
@@ -0,0 +1,185 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ * Authors: AMD
+ *
+ */
+
+
+#ifndef __DC_LINK_DP_TRAINING_H__
+#define __DC_LINK_DP_TRAINING_H__
+#include "link.h"
+
+bool perform_link_training_with_retries(
+ const struct dc_link_settings *link_setting,
+ bool skip_video_pattern,
+ int attempts,
+ struct pipe_ctx *pipe_ctx,
+ enum signal_type signal,
+ bool do_fallback);
+
+enum link_training_result dp_perform_link_training(
+ struct dc_link *link,
+ const struct link_resource *link_res,
+ const struct dc_link_settings *link_settings,
+ bool skip_video_pattern);
+
+bool dp_set_hw_training_pattern(
+ struct dc_link *link,
+ const struct link_resource *link_res,
+ enum dc_dp_training_pattern pattern,
+ uint32_t offset);
+
+void dp_set_hw_test_pattern(
+ struct dc_link *link,
+ const struct link_resource *link_res,
+ enum dp_test_pattern test_pattern,
+ uint8_t *custom_pattern,
+ uint32_t custom_pattern_size);
+
+void dpcd_set_training_pattern(
+ struct dc_link *link,
+ enum dc_dp_training_pattern training_pattern);
+
+/* Write DPCD drive settings. */
+enum dc_status dpcd_set_lane_settings(
+ struct dc_link *link,
+ const struct link_training_settings *link_training_setting,
+ uint32_t offset);
+
+/* Write DPCD link configuration data. */
+enum dc_status dpcd_set_link_settings(
+ struct dc_link *link,
+ const struct link_training_settings *lt_settings);
+
+void dpcd_set_lt_pattern_and_lane_settings(
+ struct dc_link *link,
+ const struct link_training_settings *lt_settings,
+ enum dc_dp_training_pattern pattern,
+ uint32_t offset);
+
+/* Read training status and adjustment requests from DPCD. */
+enum dc_status dp_get_lane_status_and_lane_adjust(
+ struct dc_link *link,
+ const struct link_training_settings *link_training_setting,
+ union lane_status ln_status[LANE_COUNT_DP_MAX],
+ union lane_align_status_updated *ln_align,
+ union lane_adjust ln_adjust[LANE_COUNT_DP_MAX],
+ uint32_t offset);
+
+enum dc_status dpcd_configure_lttpr_mode(
+ struct dc_link *link,
+ struct link_training_settings *lt_settings);
+
+enum dc_status configure_lttpr_mode_transparent(struct dc_link *link);
+
+enum dc_status dpcd_configure_channel_coding(
+ struct dc_link *link,
+ struct link_training_settings *lt_settings);
+
+void repeater_training_done(struct dc_link *link, uint32_t offset);
+
+void start_clock_recovery_pattern_early(struct dc_link *link,
+ const struct link_resource *link_res,
+ struct link_training_settings *lt_settings,
+ uint32_t offset);
+
+void dp_decide_training_settings(
+ struct dc_link *link,
+ const struct dc_link_settings *link_settings,
+ struct link_training_settings *lt_settings);
+
+void dp_decide_lane_settings(
+ const struct link_training_settings *lt_settings,
+ const union lane_adjust ln_adjust[LANE_COUNT_DP_MAX],
+ struct dc_lane_settings hw_lane_settings[LANE_COUNT_DP_MAX],
+ union dpcd_training_lane dpcd_lane_settings[LANE_COUNT_DP_MAX]);
+
+enum dc_dp_training_pattern decide_cr_training_pattern(
+ const struct dc_link_settings *link_settings);
+
+enum dc_dp_training_pattern decide_eq_training_pattern(struct dc_link *link,
+ const struct dc_link_settings *link_settings);
+
+enum lttpr_mode dp_decide_lttpr_mode(struct dc_link *link,
+ struct dc_link_settings *link_setting);
+
+void dp_get_lttpr_mode_override(struct dc_link *link,
+ enum lttpr_mode *override);
+
+void override_training_settings(
+ struct dc_link *link,
+ const struct dc_link_training_overrides *overrides,
+ struct link_training_settings *lt_settings);
+
+/* Check DPCD training status registers to detect link loss. */
+enum link_training_result dp_check_link_loss_status(
+ struct dc_link *link,
+ const struct link_training_settings *link_training_setting);
+
+bool dp_is_cr_done(enum dc_lane_count ln_count,
+ union lane_status *dpcd_lane_status);
+
+bool dp_is_ch_eq_done(enum dc_lane_count ln_count,
+ union lane_status *dpcd_lane_status);
+bool dp_is_symbol_locked(enum dc_lane_count ln_count,
+ union lane_status *dpcd_lane_status);
+bool dp_is_interlane_aligned(union lane_align_status_updated align_status);
+
+bool is_repeater(const struct link_training_settings *lt_settings, uint32_t offset);
+
+bool dp_is_max_vs_reached(
+ const struct link_training_settings *lt_settings);
+
+uint8_t get_dpcd_link_rate(const struct dc_link_settings *link_settings);
+
+enum link_training_result dp_get_cr_failure(enum dc_lane_count ln_count,
+ union lane_status *dpcd_lane_status);
+
+void dp_hw_to_dpcd_lane_settings(
+ const struct link_training_settings *lt_settings,
+ const struct dc_lane_settings hw_lane_settings[LANE_COUNT_DP_MAX],
+ union dpcd_training_lane dpcd_lane_settings[LANE_COUNT_DP_MAX]);
+
+void dp_wait_for_training_aux_rd_interval(
+ struct dc_link *link,
+ uint32_t wait_in_micro_secs);
+
+enum dpcd_training_patterns
+ dp_training_pattern_to_dpcd_training_pattern(
+ struct dc_link *link,
+ enum dc_dp_training_pattern pattern);
+
+uint8_t dp_initialize_scrambling_data_symbols(
+ struct dc_link *link,
+ enum dc_dp_training_pattern pattern);
+
+void dp_log_training_result(
+ struct dc_link *link,
+ const struct link_training_settings *lt_settings,
+ enum link_training_result status);
+
+uint32_t dp_translate_training_aux_read_interval(
+ uint32_t dpcd_aux_read_interval);
+
+uint8_t dp_get_nibble_at_index(const uint8_t *buf,
+ uint32_t index);
+#endif /* __DC_LINK_DP_TRAINING_H__ */
diff --git a/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training_128b_132b.c b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training_128b_132b.c
new file mode 100644
index 000000000000..23d380f09a21
--- /dev/null
+++ b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training_128b_132b.c
@@ -0,0 +1,259 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ * Authors: AMD
+ *
+ */
+
+/* FILE POLICY AND INTENDED USAGE:
+ * This file implements dp 128b/132b link training software policies and
+ * sequences.
+ */
+#include "link_dp_training_128b_132b.h"
+#include "link_dp_training_8b_10b.h"
+#include "link_dpcd.h"
+#include "link_dp_phy.h"
+#include "link_dp_capability.h"
+
+#define DC_LOGGER \
+ link->ctx->logger
+
+static enum dc_status dpcd_128b_132b_set_lane_settings(
+ struct dc_link *link,
+ const struct link_training_settings *link_training_setting)
+{
+ enum dc_status status = core_link_write_dpcd(link,
+ DP_TRAINING_LANE0_SET,
+ (uint8_t *)(link_training_setting->dpcd_lane_settings),
+ sizeof(link_training_setting->dpcd_lane_settings));
+
+ DC_LOG_HW_LINK_TRAINING("%s:\n 0x%X TX_FFE_PRESET_VALUE = %x\n",
+ __func__,
+ DP_TRAINING_LANE0_SET,
+ link_training_setting->dpcd_lane_settings[0].tx_ffe.PRESET_VALUE);
+ return status;
+}
+
+static void dpcd_128b_132b_get_aux_rd_interval(struct dc_link *link,
+ uint32_t *interval_in_us)
+{
+ union dp_128b_132b_training_aux_rd_interval dpcd_interval;
+ uint32_t interval_unit = 0;
+
+ dpcd_interval.raw = 0;
+ core_link_read_dpcd(link, DP_128B132B_TRAINING_AUX_RD_INTERVAL,
+ &dpcd_interval.raw, sizeof(dpcd_interval.raw));
+ interval_unit = dpcd_interval.bits.UNIT ? 1 : 2; /* 0b = 2 ms, 1b = 1 ms */
+ /* (128b/132b_TRAINING_AUX_RD_INTERVAL value + 1) *
+ * INTERVAL_UNIT. The maximum is 256 ms
+ */
+ *interval_in_us = (dpcd_interval.bits.VALUE + 1) * interval_unit * 1000;
+}
+
+static enum link_training_result dp_perform_128b_132b_channel_eq_done_sequence(
+ struct dc_link *link,
+ const struct link_resource *link_res,
+ struct link_training_settings *lt_settings)
+{
+ uint8_t loop_count;
+ uint32_t aux_rd_interval = 0;
+ uint32_t wait_time = 0;
+ union lane_align_status_updated dpcd_lane_status_updated = {0};
+ union lane_status dpcd_lane_status[LANE_COUNT_DP_MAX] = {0};
+ union lane_adjust dpcd_lane_adjust[LANE_COUNT_DP_MAX] = {0};
+ enum dc_status status = DC_OK;
+ enum link_training_result result = LINK_TRAINING_SUCCESS;
+
+ /* Transmit 128b/132b_TPS1 over Main-Link */
+ dp_set_hw_training_pattern(link, link_res, lt_settings->pattern_for_cr, DPRX);
+
+ /* Set TRAINING_PATTERN_SET to 01h */
+ dpcd_set_training_pattern(link, lt_settings->pattern_for_cr);
+
+ /* Adjust TX_FFE_PRESET_VALUE and Transmit 128b/132b_TPS2 over Main-Link */
+ dpcd_128b_132b_get_aux_rd_interval(link, &aux_rd_interval);
+ dp_get_lane_status_and_lane_adjust(link, lt_settings, dpcd_lane_status,
+ &dpcd_lane_status_updated, dpcd_lane_adjust, DPRX);
+ dp_decide_lane_settings(lt_settings, dpcd_lane_adjust,
+ lt_settings->hw_lane_settings, lt_settings->dpcd_lane_settings);
+ dp_set_hw_lane_settings(link, link_res, lt_settings, DPRX);
+ dp_set_hw_training_pattern(link, link_res, lt_settings->pattern_for_eq, DPRX);
+
+ /* Set loop counter to start from 1 */
+ loop_count = 1;
+
+ /* Set TRAINING_PATTERN_SET to 02h and TX_FFE_PRESET_VALUE in one AUX transaction */
+ dpcd_set_lt_pattern_and_lane_settings(link, lt_settings,
+ lt_settings->pattern_for_eq, DPRX);
+
+ /* poll for channel EQ done */
+ while (result == LINK_TRAINING_SUCCESS) {
+ dp_wait_for_training_aux_rd_interval(link, aux_rd_interval);
+ wait_time += aux_rd_interval;
+ status = dp_get_lane_status_and_lane_adjust(link, lt_settings, dpcd_lane_status,
+ &dpcd_lane_status_updated, dpcd_lane_adjust, DPRX);
+ dp_decide_lane_settings(lt_settings, dpcd_lane_adjust,
+ lt_settings->hw_lane_settings, lt_settings->dpcd_lane_settings);
+ dpcd_128b_132b_get_aux_rd_interval(link, &aux_rd_interval);
+ if (status != DC_OK) {
+ result = LINK_TRAINING_ABORT;
+ } else if (dp_is_ch_eq_done(lt_settings->link_settings.lane_count,
+ dpcd_lane_status)) {
+ /* pass */
+ break;
+ } else if (loop_count >= lt_settings->eq_loop_count_limit) {
+ result = DP_128b_132b_MAX_LOOP_COUNT_REACHED;
+ } else if (dpcd_lane_status_updated.bits.LT_FAILED_128b_132b) {
+ result = DP_128b_132b_LT_FAILED;
+ } else {
+ dp_set_hw_lane_settings(link, link_res, lt_settings, DPRX);
+ dpcd_128b_132b_set_lane_settings(link, lt_settings);
+ }
+ loop_count++;
+ }
+
+ /* poll for EQ interlane align done */
+ while (result == LINK_TRAINING_SUCCESS) {
+ if (status != DC_OK) {
+ result = LINK_TRAINING_ABORT;
+ } else if (dpcd_lane_status_updated.bits.EQ_INTERLANE_ALIGN_DONE_128b_132b) {
+ /* pass */
+ break;
+ } else if (wait_time >= lt_settings->eq_wait_time_limit) {
+ result = DP_128b_132b_CHANNEL_EQ_DONE_TIMEOUT;
+ } else if (dpcd_lane_status_updated.bits.LT_FAILED_128b_132b) {
+ result = DP_128b_132b_LT_FAILED;
+ } else {
+ dp_wait_for_training_aux_rd_interval(link,
+ lt_settings->eq_pattern_time);
+ wait_time += lt_settings->eq_pattern_time;
+ status = dp_get_lane_status_and_lane_adjust(link, lt_settings, dpcd_lane_status,
+ &dpcd_lane_status_updated, dpcd_lane_adjust, DPRX);
+ }
+ }
+
+ return result;
+}
+
+static enum link_training_result dp_perform_128b_132b_cds_done_sequence(
+ struct dc_link *link,
+ const struct link_resource *link_res,
+ struct link_training_settings *lt_settings)
+{
+ /* Assumption: assume hardware has transmitted eq pattern */
+ enum dc_status status = DC_OK;
+ enum link_training_result result = LINK_TRAINING_SUCCESS;
+ union lane_align_status_updated dpcd_lane_status_updated = {0};
+ union lane_status dpcd_lane_status[LANE_COUNT_DP_MAX] = {0};
+ union lane_adjust dpcd_lane_adjust[LANE_COUNT_DP_MAX] = {0};
+ uint32_t wait_time = 0;
+
+ /* initiate CDS done sequence */
+ dpcd_set_training_pattern(link, lt_settings->pattern_for_cds);
+
+ /* poll for CDS interlane align done and symbol lock */
+ while (result == LINK_TRAINING_SUCCESS) {
+ dp_wait_for_training_aux_rd_interval(link,
+ lt_settings->cds_pattern_time);
+ wait_time += lt_settings->cds_pattern_time;
+ status = dp_get_lane_status_and_lane_adjust(link, lt_settings, dpcd_lane_status,
+ &dpcd_lane_status_updated, dpcd_lane_adjust, DPRX);
+ if (status != DC_OK) {
+ result = LINK_TRAINING_ABORT;
+ } else if (dp_is_symbol_locked(lt_settings->link_settings.lane_count, dpcd_lane_status) &&
+ dpcd_lane_status_updated.bits.CDS_INTERLANE_ALIGN_DONE_128b_132b) {
+ /* pass */
+ break;
+ } else if (dpcd_lane_status_updated.bits.LT_FAILED_128b_132b) {
+ result = DP_128b_132b_LT_FAILED;
+ } else if (wait_time >= lt_settings->cds_wait_time_limit) {
+ result = DP_128b_132b_CDS_DONE_TIMEOUT;
+ }
+ }
+
+ return result;
+}
+
+enum link_training_result dp_perform_128b_132b_link_training(
+ struct dc_link *link,
+ const struct link_resource *link_res,
+ struct link_training_settings *lt_settings)
+{
+ enum link_training_result result = LINK_TRAINING_SUCCESS;
+
+ /* TODO - DP2.0 Link: remove legacy_dp2_lt logic */
+ if (link->dc->debug.legacy_dp2_lt) {
+ struct link_training_settings legacy_settings;
+
+ decide_8b_10b_training_settings(link,
+ &lt_settings->link_settings,
+ &legacy_settings);
+ return dp_perform_8b_10b_link_training(link, link_res, &legacy_settings);
+ }
+
+ dpcd_set_link_settings(link, lt_settings);
+
+ if (result == LINK_TRAINING_SUCCESS)
+ result = dp_perform_128b_132b_channel_eq_done_sequence(link, link_res, lt_settings);
+
+ if (result == LINK_TRAINING_SUCCESS)
+ result = dp_perform_128b_132b_cds_done_sequence(link, link_res, lt_settings);
+
+ return result;
+}
+
+void decide_128b_132b_training_settings(struct dc_link *link,
+ const struct dc_link_settings *link_settings,
+ struct link_training_settings *lt_settings)
+{
+ memset(lt_settings, 0, sizeof(*lt_settings));
+
+ lt_settings->link_settings = *link_settings;
+ /* TODO: should decide link spread when populating link_settings */
+ lt_settings->link_settings.link_spread = link->dp_ss_off ? LINK_SPREAD_DISABLED :
+ LINK_SPREAD_05_DOWNSPREAD_30KHZ;
+
+ lt_settings->pattern_for_cr = decide_cr_training_pattern(link_settings);
+ lt_settings->pattern_for_eq = decide_eq_training_pattern(link, link_settings);
+ lt_settings->eq_pattern_time = 2500;
+ lt_settings->eq_wait_time_limit = 400000;
+ lt_settings->eq_loop_count_limit = 20;
+ lt_settings->pattern_for_cds = DP_128b_132b_TPS2_CDS;
+ lt_settings->cds_pattern_time = 2500;
+ lt_settings->cds_wait_time_limit = (dp_parse_lttpr_repeater_count(
+ link->dpcd_caps.lttpr_caps.phy_repeater_cnt) + 1) * 20000;
+ lt_settings->disallow_per_lane_settings = true;
+ lt_settings->lttpr_mode = dp_decide_128b_132b_lttpr_mode(link);
+ dp_hw_to_dpcd_lane_settings(lt_settings,
+ lt_settings->hw_lane_settings, lt_settings->dpcd_lane_settings);
+}
+
+enum lttpr_mode dp_decide_128b_132b_lttpr_mode(struct dc_link *link)
+{
+ enum lttpr_mode mode = LTTPR_MODE_NON_LTTPR;
+
+ if (dp_is_lttpr_present(link))
+ mode = LTTPR_MODE_NON_TRANSPARENT;
+
+ DC_LOG_DC("128b_132b chose LTTPR_MODE %d.\n", mode);
+ return mode;
+}
+
diff --git a/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training_128b_132b.h b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training_128b_132b.h
new file mode 100644
index 000000000000..2147f24efc8b
--- /dev/null
+++ b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training_128b_132b.h
@@ -0,0 +1,42 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ * Authors: AMD
+ *
+ */
+
+
+#ifndef __DC_LINK_DP_TRAINING_128B_132B_H__
+#define __DC_LINK_DP_TRAINING_128B_132B_H__
+#include "link_dp_training.h"
+
+enum link_training_result dp_perform_128b_132b_link_training(
+ struct dc_link *link,
+ const struct link_resource *link_res,
+ struct link_training_settings *lt_settings);
+
+void decide_128b_132b_training_settings(struct dc_link *link,
+ const struct dc_link_settings *link_settings,
+ struct link_training_settings *lt_settings);
+
+enum lttpr_mode dp_decide_128b_132b_lttpr_mode(struct dc_link *link);
+
+#endif /* __DC_LINK_DP_TRAINING_128B_132B_H__ */
diff --git a/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training_8b_10b.c b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training_8b_10b.c
new file mode 100644
index 000000000000..3889ebb2256b
--- /dev/null
+++ b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training_8b_10b.c
@@ -0,0 +1,416 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ * Authors: AMD
+ *
+ */
+
+/* FILE POLICY AND INTENDED USAGE:
+ * This file implements dp 8b/10b link training software policies and
+ * sequences.
+ */
+#include "link_dp_training_8b_10b.h"
+#include "link_dpcd.h"
+#include "link_dp_phy.h"
+#include "link_dp_capability.h"
+
+#define DC_LOGGER \
+ link->ctx->logger
+
+static int32_t get_cr_training_aux_rd_interval(struct dc_link *link,
+ const struct dc_link_settings *link_settings)
+{
+ union training_aux_rd_interval training_rd_interval;
+ uint32_t wait_in_micro_secs = 100;
+
+ memset(&training_rd_interval, 0, sizeof(training_rd_interval));
+ if (link_dp_get_encoding_format(link_settings) == DP_8b_10b_ENCODING &&
+ link->dpcd_caps.dpcd_rev.raw >= DPCD_REV_12) {
+ core_link_read_dpcd(
+ link,
+ DP_TRAINING_AUX_RD_INTERVAL,
+ (uint8_t *)&training_rd_interval,
+ sizeof(training_rd_interval));
+ if (training_rd_interval.bits.TRAINIG_AUX_RD_INTERVAL)
+ wait_in_micro_secs = training_rd_interval.bits.TRAINIG_AUX_RD_INTERVAL * 4000;
+ }
+ return wait_in_micro_secs;
+}
+
+static uint32_t get_eq_training_aux_rd_interval(
+ struct dc_link *link,
+ const struct dc_link_settings *link_settings)
+{
+ union training_aux_rd_interval training_rd_interval;
+
+ memset(&training_rd_interval, 0, sizeof(training_rd_interval));
+ if (link_dp_get_encoding_format(link_settings) == DP_128b_132b_ENCODING) {
+ core_link_read_dpcd(
+ link,
+ DP_128B132B_TRAINING_AUX_RD_INTERVAL,
+ (uint8_t *)&training_rd_interval,
+ sizeof(training_rd_interval));
+ } else if (link_dp_get_encoding_format(link_settings) == DP_8b_10b_ENCODING &&
+ link->dpcd_caps.dpcd_rev.raw >= DPCD_REV_12) {
+ core_link_read_dpcd(
+ link,
+ DP_TRAINING_AUX_RD_INTERVAL,
+ (uint8_t *)&training_rd_interval,
+ sizeof(training_rd_interval));
+ }
+
+ switch (training_rd_interval.bits.TRAINIG_AUX_RD_INTERVAL) {
+ case 0: return 400;
+ case 1: return 4000;
+ case 2: return 8000;
+ case 3: return 12000;
+ case 4: return 16000;
+ case 5: return 32000;
+ case 6: return 64000;
+ default: return 400;
+ }
+}
+
+void decide_8b_10b_training_settings(
+ struct dc_link *link,
+ const struct dc_link_settings *link_setting,
+ struct link_training_settings *lt_settings)
+{
+ memset(lt_settings, '\0', sizeof(struct link_training_settings));
+
+ /* Initialize link settings */
+ lt_settings->link_settings.use_link_rate_set = link_setting->use_link_rate_set;
+ lt_settings->link_settings.link_rate_set = link_setting->link_rate_set;
+ lt_settings->link_settings.link_rate = link_setting->link_rate;
+ lt_settings->link_settings.lane_count = link_setting->lane_count;
+ /* TODO hard coded to SS for now
+ * lt_settings.link_settings.link_spread =
+ * dal_display_path_is_ss_supported(
+ * path_mode->display_path) ?
+ * LINK_SPREAD_05_DOWNSPREAD_30KHZ :
+ * LINK_SPREAD_DISABLED;
+ */
+ lt_settings->link_settings.link_spread = link->dp_ss_off ?
+ LINK_SPREAD_DISABLED : LINK_SPREAD_05_DOWNSPREAD_30KHZ;
+ lt_settings->cr_pattern_time = get_cr_training_aux_rd_interval(link, link_setting);
+ lt_settings->eq_pattern_time = get_eq_training_aux_rd_interval(link, link_setting);
+ lt_settings->pattern_for_cr = decide_cr_training_pattern(link_setting);
+ lt_settings->pattern_for_eq = decide_eq_training_pattern(link, link_setting);
+ lt_settings->enhanced_framing = 1;
+ lt_settings->should_set_fec_ready = true;
+ lt_settings->disallow_per_lane_settings = true;
+ lt_settings->always_match_dpcd_with_hw_lane_settings = true;
+ lt_settings->lttpr_mode = dp_decide_8b_10b_lttpr_mode(link);
+ dp_hw_to_dpcd_lane_settings(lt_settings, lt_settings->hw_lane_settings, lt_settings->dpcd_lane_settings);
+}
+
+enum lttpr_mode dp_decide_8b_10b_lttpr_mode(struct dc_link *link)
+{
+ bool is_lttpr_present = dp_is_lttpr_present(link);
+ bool vbios_lttpr_force_non_transparent = link->dc->caps.vbios_lttpr_enable;
+ bool vbios_lttpr_aware = link->dc->caps.vbios_lttpr_aware;
+
+ if (!is_lttpr_present)
+ return LTTPR_MODE_NON_LTTPR;
+
+ if (vbios_lttpr_aware) {
+ if (vbios_lttpr_force_non_transparent) {
+ DC_LOG_DC("chose LTTPR_MODE_NON_TRANSPARENT due to VBIOS DCE_INFO_CAPS_LTTPR_SUPPORT_ENABLE set to 1.\n");
+ return LTTPR_MODE_NON_TRANSPARENT;
+ } else {
+ DC_LOG_DC("chose LTTPR_MODE_NON_TRANSPARENT by default due to VBIOS not set DCE_INFO_CAPS_LTTPR_SUPPORT_ENABLE set to 1.\n");
+ return LTTPR_MODE_TRANSPARENT;
+ }
+ }
+
+ if (link->dc->config.allow_lttpr_non_transparent_mode.bits.DP1_4A &&
+ link->dc->caps.extended_aux_timeout_support) {
+ DC_LOG_DC("chose LTTPR_MODE_NON_TRANSPARENT by default and dc->config.allow_lttpr_non_transparent_mode.bits.DP1_4A set to 1.\n");
+ return LTTPR_MODE_NON_TRANSPARENT;
+ }
+
+ DC_LOG_DC("chose LTTPR_MODE_NON_LTTPR.\n");
+ return LTTPR_MODE_NON_LTTPR;
+}
+
+enum link_training_result perform_8b_10b_clock_recovery_sequence(
+ struct dc_link *link,
+ const struct link_resource *link_res,
+ struct link_training_settings *lt_settings,
+ uint32_t offset)
+{
+ uint32_t retries_cr;
+ uint32_t retry_count;
+ uint32_t wait_time_microsec;
+ enum dc_lane_count lane_count = lt_settings->link_settings.lane_count;
+ union lane_status dpcd_lane_status[LANE_COUNT_DP_MAX];
+ union lane_align_status_updated dpcd_lane_status_updated;
+ union lane_adjust dpcd_lane_adjust[LANE_COUNT_DP_MAX] = {0};
+
+ retries_cr = 0;
+ retry_count = 0;
+
+ memset(&dpcd_lane_status, '\0', sizeof(dpcd_lane_status));
+ memset(&dpcd_lane_status_updated, '\0',
+ sizeof(dpcd_lane_status_updated));
+
+ if (!link->ctx->dc->work_arounds.lt_early_cr_pattern)
+ dp_set_hw_training_pattern(link, link_res, lt_settings->pattern_for_cr, offset);
+
+ /* najeeb - The synaptics MST hub can put the LT in
+ * infinite loop by switching the VS
+ */
+ /* between level 0 and level 1 continuously, here
+ * we try for CR lock for LinkTrainingMaxCRRetry count*/
+ while ((retries_cr < LINK_TRAINING_MAX_RETRY_COUNT) &&
+ (retry_count < LINK_TRAINING_MAX_CR_RETRY)) {
+
+
+ /* 1. call HWSS to set lane settings*/
+ dp_set_hw_lane_settings(
+ link,
+ link_res,
+ lt_settings,
+ offset);
+
+ /* 2. update DPCD of the receiver*/
+ if (!retry_count)
+ /* EPR #361076 - write as a 5-byte burst,
+ * but only for the 1-st iteration.*/
+ dpcd_set_lt_pattern_and_lane_settings(
+ link,
+ lt_settings,
+ lt_settings->pattern_for_cr,
+ offset);
+ else
+ dpcd_set_lane_settings(
+ link,
+ lt_settings,
+ offset);
+
+ /* 3. wait receiver to lock-on*/
+ wait_time_microsec = lt_settings->cr_pattern_time;
+
+ dp_wait_for_training_aux_rd_interval(
+ link,
+ wait_time_microsec);
+
+ /* 4. Read lane status and requested drive
+ * settings as set by the sink
+ */
+ dp_get_lane_status_and_lane_adjust(
+ link,
+ lt_settings,
+ dpcd_lane_status,
+ &dpcd_lane_status_updated,
+ dpcd_lane_adjust,
+ offset);
+
+ /* 5. check CR done*/
+ if (dp_is_cr_done(lane_count, dpcd_lane_status)) {
+ DC_LOG_HW_LINK_TRAINING("%s: Clock recovery OK\n", __func__);
+ return LINK_TRAINING_SUCCESS;
+ }
+
+ /* 6. max VS reached*/
+ if ((link_dp_get_encoding_format(&lt_settings->link_settings) ==
+ DP_8b_10b_ENCODING) &&
+ dp_is_max_vs_reached(lt_settings))
+ break;
+
+ /* 7. same lane settings*/
+ /* Note: settings are the same for all lanes,
+ * so comparing first lane is sufficient*/
+ if ((link_dp_get_encoding_format(&lt_settings->link_settings) == DP_8b_10b_ENCODING) &&
+ lt_settings->dpcd_lane_settings[0].bits.VOLTAGE_SWING_SET ==
+ dpcd_lane_adjust[0].bits.VOLTAGE_SWING_LANE)
+ retries_cr++;
+ else if ((link_dp_get_encoding_format(&lt_settings->link_settings) == DP_128b_132b_ENCODING) &&
+ lt_settings->dpcd_lane_settings[0].tx_ffe.PRESET_VALUE ==
+ dpcd_lane_adjust[0].tx_ffe.PRESET_VALUE)
+ retries_cr++;
+ else
+ retries_cr = 0;
+
+ /* 8. update VS/PE/PC2 in lt_settings*/
+ dp_decide_lane_settings(lt_settings, dpcd_lane_adjust,
+ lt_settings->hw_lane_settings, lt_settings->dpcd_lane_settings);
+ retry_count++;
+ }
+
+ if (retry_count >= LINK_TRAINING_MAX_CR_RETRY) {
+ ASSERT(0);
+ DC_LOG_ERROR("%s: Link Training Error, could not get CR after %d tries. Possibly voltage swing issue",
+ __func__,
+ LINK_TRAINING_MAX_CR_RETRY);
+
+ }
+
+ return dp_get_cr_failure(lane_count, dpcd_lane_status);
+}
+
+enum link_training_result perform_8b_10b_channel_equalization_sequence(
+ struct dc_link *link,
+ const struct link_resource *link_res,
+ struct link_training_settings *lt_settings,
+ uint32_t offset)
+{
+ enum dc_dp_training_pattern tr_pattern;
+ uint32_t retries_ch_eq;
+ uint32_t wait_time_microsec;
+ enum dc_lane_count lane_count = lt_settings->link_settings.lane_count;
+ union lane_align_status_updated dpcd_lane_status_updated = {0};
+ union lane_status dpcd_lane_status[LANE_COUNT_DP_MAX] = {0};
+ union lane_adjust dpcd_lane_adjust[LANE_COUNT_DP_MAX] = {0};
+
+ /* Note: also check that TPS4 is a supported feature*/
+ tr_pattern = lt_settings->pattern_for_eq;
+
+ if (is_repeater(lt_settings, offset) && link_dp_get_encoding_format(&lt_settings->link_settings) == DP_8b_10b_ENCODING)
+ tr_pattern = DP_TRAINING_PATTERN_SEQUENCE_4;
+
+ dp_set_hw_training_pattern(link, link_res, tr_pattern, offset);
+
+ for (retries_ch_eq = 0; retries_ch_eq <= LINK_TRAINING_MAX_RETRY_COUNT;
+ retries_ch_eq++) {
+
+ dp_set_hw_lane_settings(link, link_res, lt_settings, offset);
+
+ /* 2. update DPCD*/
+ if (!retries_ch_eq)
+ /* EPR #361076 - write as a 5-byte burst,
+ * but only for the 1-st iteration
+ */
+
+ dpcd_set_lt_pattern_and_lane_settings(
+ link,
+ lt_settings,
+ tr_pattern, offset);
+ else
+ dpcd_set_lane_settings(link, lt_settings, offset);
+
+ /* 3. wait for receiver to lock-on*/
+ wait_time_microsec = lt_settings->eq_pattern_time;
+
+ if (is_repeater(lt_settings, offset))
+ wait_time_microsec =
+ dp_translate_training_aux_read_interval(
+ link->dpcd_caps.lttpr_caps.aux_rd_interval[offset - 1]);
+
+ dp_wait_for_training_aux_rd_interval(
+ link,
+ wait_time_microsec);
+
+ /* 4. Read lane status and requested
+ * drive settings as set by the sink*/
+
+ dp_get_lane_status_and_lane_adjust(
+ link,
+ lt_settings,
+ dpcd_lane_status,
+ &dpcd_lane_status_updated,
+ dpcd_lane_adjust,
+ offset);
+
+ /* 5. check CR done*/
+ if (!dp_is_cr_done(lane_count, dpcd_lane_status))
+ return dpcd_lane_status[0].bits.CR_DONE_0 ?
+ LINK_TRAINING_EQ_FAIL_CR_PARTIAL :
+ LINK_TRAINING_EQ_FAIL_CR;
+
+ /* 6. check CHEQ done*/
+ if (dp_is_ch_eq_done(lane_count, dpcd_lane_status) &&
+ dp_is_symbol_locked(lane_count, dpcd_lane_status) &&
+ dp_is_interlane_aligned(dpcd_lane_status_updated))
+ return LINK_TRAINING_SUCCESS;
+
+ /* 7. update VS/PE/PC2 in lt_settings*/
+ dp_decide_lane_settings(lt_settings, dpcd_lane_adjust,
+ lt_settings->hw_lane_settings, lt_settings->dpcd_lane_settings);
+ }
+
+ return LINK_TRAINING_EQ_FAIL_EQ;
+
+}
+
+enum link_training_result dp_perform_8b_10b_link_training(
+ struct dc_link *link,
+ const struct link_resource *link_res,
+ struct link_training_settings *lt_settings)
+{
+ enum link_training_result status = LINK_TRAINING_SUCCESS;
+
+ uint8_t repeater_cnt;
+ uint8_t repeater_id;
+ uint8_t lane = 0;
+
+ if (link->ctx->dc->work_arounds.lt_early_cr_pattern)
+ start_clock_recovery_pattern_early(link, link_res, lt_settings, DPRX);
+
+ /* 1. set link rate, lane count and spread. */
+ dpcd_set_link_settings(link, lt_settings);
+
+ if (lt_settings->lttpr_mode == LTTPR_MODE_NON_TRANSPARENT) {
+
+ /* 2. perform link training (set link training done
+ * to false is done as well)
+ */
+ repeater_cnt = dp_parse_lttpr_repeater_count(link->dpcd_caps.lttpr_caps.phy_repeater_cnt);
+
+ for (repeater_id = repeater_cnt; (repeater_id > 0 && status == LINK_TRAINING_SUCCESS);
+ repeater_id--) {
+ status = perform_8b_10b_clock_recovery_sequence(link, link_res, lt_settings, repeater_id);
+
+ if (status != LINK_TRAINING_SUCCESS) {
+ repeater_training_done(link, repeater_id);
+ break;
+ }
+
+ status = perform_8b_10b_channel_equalization_sequence(link,
+ link_res,
+ lt_settings,
+ repeater_id);
+
+ repeater_training_done(link, repeater_id);
+
+ if (status != LINK_TRAINING_SUCCESS)
+ break;
+
+ for (lane = 0; lane < LANE_COUNT_DP_MAX; lane++) {
+ lt_settings->dpcd_lane_settings[lane].raw = 0;
+ lt_settings->hw_lane_settings[lane].VOLTAGE_SWING = 0;
+ lt_settings->hw_lane_settings[lane].PRE_EMPHASIS = 0;
+ }
+ }
+ }
+
+ if (status == LINK_TRAINING_SUCCESS) {
+ status = perform_8b_10b_clock_recovery_sequence(link, link_res, lt_settings, DPRX);
+ if (status == LINK_TRAINING_SUCCESS) {
+ status = perform_8b_10b_channel_equalization_sequence(link,
+ link_res,
+ lt_settings,
+ DPRX);
+ }
+ }
+
+ return status;
+}
diff --git a/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training_8b_10b.h b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training_8b_10b.h
new file mode 100644
index 000000000000..d26de15ce954
--- /dev/null
+++ b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training_8b_10b.h
@@ -0,0 +1,61 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ * Authors: AMD
+ *
+ */
+
+
+#ifndef __DC_LINK_DP_TRAINING_8B_10B_H__
+#define __DC_LINK_DP_TRAINING_8B_10B_H__
+#include "link_dp_training.h"
+
+/* to avoid infinite loop where-in the receiver
+ * switches between different VS
+ */
+#define LINK_TRAINING_MAX_CR_RETRY 100
+#define LINK_TRAINING_MAX_RETRY_COUNT 5
+
+enum link_training_result dp_perform_8b_10b_link_training(
+ struct dc_link *link,
+ const struct link_resource *link_res,
+ struct link_training_settings *lt_settings);
+
+enum link_training_result perform_8b_10b_clock_recovery_sequence(
+ struct dc_link *link,
+ const struct link_resource *link_res,
+ struct link_training_settings *lt_settings,
+ uint32_t offset);
+
+enum link_training_result perform_8b_10b_channel_equalization_sequence(
+ struct dc_link *link,
+ const struct link_resource *link_res,
+ struct link_training_settings *lt_settings,
+ uint32_t offset);
+
+enum lttpr_mode dp_decide_8b_10b_lttpr_mode(struct dc_link *link);
+
+void decide_8b_10b_training_settings(
+ struct dc_link *link,
+ const struct dc_link_settings *link_setting,
+ struct link_training_settings *lt_settings);
+
+#endif /* __DC_LINK_DP_TRAINING_8B_10B_H__ */
diff --git a/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training_auxless.c b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training_auxless.c
new file mode 100644
index 000000000000..4c6b886a9da8
--- /dev/null
+++ b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training_auxless.c
@@ -0,0 +1,79 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ * Authors: AMD
+ *
+ */
+
+/* FILE POLICY AND INTENDED USAGE:
+ *
+ */
+#include "link_dp_training_auxless.h"
+#include "link_dp_phy.h"
+#define DC_LOGGER \
+ link->ctx->logger
+bool dp_perform_link_training_skip_aux(
+ struct dc_link *link,
+ const struct link_resource *link_res,
+ const struct dc_link_settings *link_setting)
+{
+ struct link_training_settings lt_settings = {0};
+
+ dp_decide_training_settings(
+ link,
+ link_setting,
+ &lt_settings);
+ override_training_settings(
+ link,
+ &link->preferred_training_settings,
+ &lt_settings);
+
+ /* 1. Perform_clock_recovery_sequence. */
+
+ /* transmit training pattern for clock recovery */
+ dp_set_hw_training_pattern(link, link_res, lt_settings.pattern_for_cr, DPRX);
+
+ /* call HWSS to set lane settings*/
+ dp_set_hw_lane_settings(link, link_res, &lt_settings, DPRX);
+
+ /* wait receiver to lock-on*/
+ dp_wait_for_training_aux_rd_interval(link, lt_settings.cr_pattern_time);
+
+ /* 2. Perform_channel_equalization_sequence. */
+
+ /* transmit training pattern for channel equalization. */
+ dp_set_hw_training_pattern(link, link_res, lt_settings.pattern_for_eq, DPRX);
+
+ /* call HWSS to set lane settings*/
+ dp_set_hw_lane_settings(link, link_res, &lt_settings, DPRX);
+
+ /* wait receiver to lock-on. */
+ dp_wait_for_training_aux_rd_interval(link, lt_settings.eq_pattern_time);
+
+ /* 3. Perform_link_training_int. */
+
+ /* Mainlink output idle pattern. */
+ dp_set_hw_test_pattern(link, link_res, DP_TEST_PATTERN_VIDEO_MODE, NULL, 0);
+
+ dp_log_training_result(link, &lt_settings, LINK_TRAINING_SUCCESS);
+
+ return true;
+}
diff --git a/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training_auxless.h b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training_auxless.h
new file mode 100644
index 000000000000..546387a5f32d
--- /dev/null
+++ b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training_auxless.h
@@ -0,0 +1,35 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ * Authors: AMD
+ *
+ */
+
+
+#ifndef __DC_LINK_DP_TRAINING_AUXLESS_H__
+#define __DC_LINK_DP_TRAINING_AUXLESS_H__
+#include "link_dp_training.h"
+
+bool dp_perform_link_training_skip_aux(
+ struct dc_link *link,
+ const struct link_resource *link_res,
+ const struct dc_link_settings *link_setting);
+#endif /* __DC_LINK_DP_TRAINING_AUXLESS_H__ */
diff --git a/drivers/gpu/drm/amd/display/dc/core/dc_link_dpia.c b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training_dpia.c
index 74e36b34d3f7..4f4e899e5c46 100644
--- a/drivers/gpu/drm/amd/display/dc/core/dc_link_dpia.c
+++ b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training_dpia.c
@@ -1,6 +1,5 @@
-// SPDX-License-Identifier: MIT
/*
- * Copyright 2021 Advanced Micro Devices, Inc.
+ * Copyright 2022 Advanced Micro Devices, Inc.
*
* Permission is hereby granted, free of charge, to any person obtaining a
* copy of this software and associated documentation files (the "Software"),
@@ -24,76 +23,71 @@
*
*/
+/* FILE POLICY AND INTENDED USAGE:
+ * This module implements functionality for training DPIA links.
+ */
+#include "link_dp_training_dpia.h"
#include "dc.h"
-#include "dc_link_dpia.h"
#include "inc/core_status.h"
-#include "dc_link.h"
-#include "dc_link_dp.h"
#include "dpcd_defs.h"
+
+#include "link_dp_dpia.h"
#include "link_hwss.h"
#include "dm_helpers.h"
#include "dmub/inc/dmub_cmd.h"
-#include "inc/link_dpcd.h"
+#include "link_dpcd.h"
+#include "link_dp_phy.h"
+#include "link_dp_training_8b_10b.h"
+#include "link_dp_capability.h"
#include "dc_dmub_srv.h"
-
#define DC_LOGGER \
link->ctx->logger
-enum dc_status dpcd_get_tunneling_device_data(struct dc_link *link)
-{
- enum dc_status status = DC_OK;
- uint8_t dpcd_dp_tun_data[3] = {0};
- uint8_t dpcd_topology_data[DPCD_USB4_TOPOLOGY_ID_LEN] = {0};
- uint8_t i = 0;
-
- status = core_link_read_dpcd(link,
- DP_TUNNELING_CAPABILITIES_SUPPORT,
- dpcd_dp_tun_data,
- sizeof(dpcd_dp_tun_data));
-
- status = core_link_read_dpcd(link,
- DP_USB4_ROUTER_TOPOLOGY_ID,
- dpcd_topology_data,
- sizeof(dpcd_topology_data));
-
- link->dpcd_caps.usb4_dp_tun_info.dp_tun_cap.raw =
- dpcd_dp_tun_data[DP_TUNNELING_CAPABILITIES_SUPPORT -
- DP_TUNNELING_CAPABILITIES_SUPPORT];
- link->dpcd_caps.usb4_dp_tun_info.dpia_info.raw =
- dpcd_dp_tun_data[DP_IN_ADAPTER_INFO - DP_TUNNELING_CAPABILITIES_SUPPORT];
- link->dpcd_caps.usb4_dp_tun_info.usb4_driver_id =
- dpcd_dp_tun_data[DP_USB4_DRIVER_ID - DP_TUNNELING_CAPABILITIES_SUPPORT];
-
- for (i = 0; i < DPCD_USB4_TOPOLOGY_ID_LEN; i++)
- link->dpcd_caps.usb4_dp_tun_info.usb4_topology_id[i] = dpcd_topology_data[i];
-
- return status;
-}
-
-bool dc_link_dpia_query_hpd_status(struct dc_link *link)
-{
- union dmub_rb_cmd cmd = {0};
- struct dc_dmub_srv *dmub_srv = link->ctx->dmub_srv;
- bool is_hpd_high = false;
+/* The approximate time (us) it takes to transmit 9 USB4 DP clock sync packets. */
+#define DPIA_CLK_SYNC_DELAY 16000
+
+/* Extend interval between training status checks for manual testing. */
+#define DPIA_DEBUG_EXTENDED_AUX_RD_INTERVAL_US 60000000
+
+#define TRAINING_AUX_RD_INTERVAL 100 //us
+
+/* SET_CONFIG message types sent by driver. */
+enum dpia_set_config_type {
+ DPIA_SET_CFG_SET_LINK = 0x01,
+ DPIA_SET_CFG_SET_PHY_TEST_MODE = 0x05,
+ DPIA_SET_CFG_SET_TRAINING = 0x18,
+ DPIA_SET_CFG_SET_VSPE = 0x19
+};
+
+/* Training stages (TS) in SET_CONFIG(SET_TRAINING) message. */
+enum dpia_set_config_ts {
+ DPIA_TS_DPRX_DONE = 0x00, /* Done training DPRX. */
+ DPIA_TS_TPS1 = 0x01,
+ DPIA_TS_TPS2 = 0x02,
+ DPIA_TS_TPS3 = 0x03,
+ DPIA_TS_TPS4 = 0x07,
+ DPIA_TS_UFP_DONE = 0xff /* Done training DPTX-to-DPIA hop. */
+};
+
+/* SET_CONFIG message data associated with messages sent by driver. */
+union dpia_set_config_data {
+ struct {
+ uint8_t mode : 1;
+ uint8_t reserved : 7;
+ } set_link;
+ struct {
+ uint8_t stage;
+ } set_training;
+ struct {
+ uint8_t swing : 2;
+ uint8_t max_swing_reached : 1;
+ uint8_t pre_emph : 2;
+ uint8_t max_pre_emph_reached : 1;
+ uint8_t reserved : 2;
+ } set_vspe;
+ uint8_t raw;
+};
- /* prepare QUERY_HPD command */
- cmd.query_hpd.header.type = DMUB_CMD__QUERY_HPD_STATE;
- cmd.query_hpd.data.instance = link->link_id.enum_id - ENUM_ID_1;
- cmd.query_hpd.data.ch_type = AUX_CHANNEL_DPIA;
-
- /* Return HPD status reported by DMUB if query successfully executed. */
- if (dc_dmub_srv_cmd_with_reply_data(dmub_srv, &cmd) && cmd.query_hpd.data.status == AUX_RET_SUCCESS)
- is_hpd_high = cmd.query_hpd.data.result;
-
- DC_LOG_DEBUG("%s: link(%d) dpia(%d) cmd_status(%d) result(%d)\n",
- __func__,
- link->link_index,
- link->link_id.enum_id - ENUM_ID_1,
- cmd.query_hpd.data.status,
- cmd.query_hpd.data.result);
-
- return is_hpd_high;
-}
/* Configure link as prescribed in link_setting; set LTTPR mode; and
* Initialize link training settings.
@@ -113,11 +107,12 @@ static enum link_training_result dpia_configure_link(
bool fec_enable;
DC_LOG_HW_LINK_TRAINING("%s\n DPIA(%d) configuring\n - LTTPR mode(%d)\n",
- __func__,
- link->link_id.enum_id - ENUM_ID_1,
- lt_settings->lttpr_mode);
+ __func__,
+ link->link_id.enum_id - ENUM_ID_1,
+ lt_settings->lttpr_mode);
- dp_decide_training_settings(link,
+ dp_decide_training_settings(
+ link,
link_setting,
lt_settings);
@@ -137,7 +132,7 @@ static enum link_training_result dpia_configure_link(
if (status != DC_OK && link->is_hpd_pending)
return LINK_TRAINING_ABORT;
- if (link->preferred_training_settings.fec_enable)
+ if (link->preferred_training_settings.fec_enable != NULL)
fec_enable = *link->preferred_training_settings.fec_enable;
else
fec_enable = true;
@@ -148,7 +143,8 @@ static enum link_training_result dpia_configure_link(
return LINK_TRAINING_SUCCESS;
}
-static enum dc_status core_link_send_set_config(struct dc_link *link,
+static enum dc_status core_link_send_set_config(
+ struct dc_link *link,
uint8_t msg_type,
uint8_t msg_data)
{
@@ -160,8 +156,8 @@ static enum dc_status core_link_send_set_config(struct dc_link *link,
payload.msg_data = msg_data;
if (!link->ddc->ddc_pin && !link->aux_access_disabled &&
- (dm_helpers_dmub_set_config_sync(link->ctx, link,
- &payload, &set_config_result) == -1)) {
+ (dm_helpers_dmub_set_config_sync(link->ctx,
+ link, &payload, &set_config_result) == -1)) {
return DC_ERROR_UNEXPECTED;
}
@@ -170,7 +166,8 @@ static enum dc_status core_link_send_set_config(struct dc_link *link,
}
/* Build SET_CONFIG message data payload for specified message type. */
-static uint8_t dpia_build_set_config_data(enum dpia_set_config_type type,
+static uint8_t dpia_build_set_config_data(
+ enum dpia_set_config_type type,
struct dc_link *link,
struct link_training_settings *lt_settings)
{
@@ -189,11 +186,9 @@ static uint8_t dpia_build_set_config_data(enum dpia_set_config_type type,
data.set_vspe.swing = lt_settings->hw_lane_settings[0].VOLTAGE_SWING;
data.set_vspe.pre_emph = lt_settings->hw_lane_settings[0].PRE_EMPHASIS;
data.set_vspe.max_swing_reached =
- lt_settings->hw_lane_settings[0].VOLTAGE_SWING ==
- VOLTAGE_SWING_MAX_LEVEL ? 1 : 0;
+ lt_settings->hw_lane_settings[0].VOLTAGE_SWING == VOLTAGE_SWING_MAX_LEVEL ? 1 : 0;
data.set_vspe.max_pre_emph_reached =
- lt_settings->hw_lane_settings[0].PRE_EMPHASIS ==
- PRE_EMPHASIS_MAX_LEVEL ? 1 : 0;
+ lt_settings->hw_lane_settings[0].PRE_EMPHASIS == PRE_EMPHASIS_MAX_LEVEL ? 1 : 0;
break;
default:
ASSERT(false); /* Message type not supported by helper function. */
@@ -235,7 +230,8 @@ static enum dc_status convert_trng_ptn_to_trng_stg(enum dc_dp_training_pattern t
}
/* Write training pattern to DPCD. */
-static enum dc_status dpcd_set_lt_pattern(struct dc_link *link,
+static enum dc_status dpcd_set_lt_pattern(
+ struct dc_link *link,
enum dc_dp_training_pattern pattern,
uint32_t hop)
{
@@ -249,28 +245,29 @@ static enum dc_status dpcd_set_lt_pattern(struct dc_link *link,
/* DpcdAddress_TrainingPatternSet */
dpcd_pattern.v1_4.TRAINING_PATTERN_SET =
- dc_dp_training_pattern_to_dpcd_training_pattern(link, pattern);
+ dp_training_pattern_to_dpcd_training_pattern(link, pattern);
dpcd_pattern.v1_4.SCRAMBLING_DISABLE =
- dc_dp_initialize_scrambling_data_symbols(link, pattern);
+ dp_initialize_scrambling_data_symbols(link, pattern);
if (hop != DPRX) {
DC_LOG_HW_LINK_TRAINING("%s\n LTTPR Repeater ID: %d\n 0x%X pattern = %x\n",
- __func__,
- hop,
- dpcd_tps_offset,
- dpcd_pattern.v1_4.TRAINING_PATTERN_SET);
+ __func__,
+ hop,
+ dpcd_tps_offset,
+ dpcd_pattern.v1_4.TRAINING_PATTERN_SET);
} else {
DC_LOG_HW_LINK_TRAINING("%s\n 0x%X pattern = %x\n",
- __func__,
- dpcd_tps_offset,
- dpcd_pattern.v1_4.TRAINING_PATTERN_SET);
+ __func__,
+ dpcd_tps_offset,
+ dpcd_pattern.v1_4.TRAINING_PATTERN_SET);
}
- status = core_link_write_dpcd(link,
- dpcd_tps_offset,
- &dpcd_pattern.raw,
- sizeof(dpcd_pattern.raw));
+ status = core_link_write_dpcd(
+ link,
+ dpcd_tps_offset,
+ &dpcd_pattern.raw,
+ sizeof(dpcd_pattern.raw));
return status;
}
@@ -284,7 +281,7 @@ static enum dc_status dpcd_set_lt_pattern(struct dc_link *link,
*
* @param link DPIA link being trained.
* @param lt_settings link_setting and drive settings (voltage swing and pre-emphasis).
- * @param hop The Hop in display path. DPRX = 0.
+ * @param hop Hop in display path. DPRX = 0.
*/
static enum link_training_result dpia_training_cr_non_transparent(
struct dc_link *link,
@@ -297,8 +294,7 @@ static enum link_training_result dpia_training_cr_non_transparent(
enum dc_status status;
uint32_t retries_cr = 0; /* Number of consecutive attempts with same VS or PE. */
uint32_t retry_count = 0;
- /* From DP spec, CR read interval is always 100us. */
- uint32_t wait_time_microsec = TRAINING_AUX_RD_INTERVAL;
+ uint32_t wait_time_microsec = TRAINING_AUX_RD_INTERVAL; /* From DP spec, CR read interval is always 100us. */
enum dc_lane_count lane_count = lt_settings->link_settings.lane_count;
union lane_status dpcd_lane_status[LANE_COUNT_DP_MAX] = {0};
union lane_align_status_updated dpcd_lane_status_updated = {0};
@@ -306,7 +302,7 @@ static enum link_training_result dpia_training_cr_non_transparent(
uint8_t set_cfg_data;
enum dpia_set_config_ts ts;
- repeater_cnt = dp_convert_to_count(link->dpcd_caps.lttpr_caps.phy_repeater_cnt);
+ repeater_cnt = dp_parse_lttpr_repeater_count(link->dpcd_caps.lttpr_caps.phy_repeater_cnt);
/* Cap of LINK_TRAINING_MAX_CR_RETRY attempts at clock recovery.
* Fix inherited from perform_clock_recovery_sequence() -
@@ -316,17 +312,20 @@ static enum link_training_result dpia_training_cr_non_transparent(
* continuously.
*/
while ((retries_cr < LINK_TRAINING_MAX_RETRY_COUNT) &&
- (retry_count < LINK_TRAINING_MAX_CR_RETRY)) {
+ (retry_count < LINK_TRAINING_MAX_CR_RETRY)) {
+
/* DPTX-to-DPIA */
if (hop == repeater_cnt) {
/* Send SET_CONFIG(SET_LINK:LC,LR,LTTPR) to notify DPOA that
* non-transparent link training has started.
* This also enables the transmission of clk_sync packets.
*/
- set_cfg_data = dpia_build_set_config_data(DPIA_SET_CFG_SET_LINK,
+ set_cfg_data = dpia_build_set_config_data(
+ DPIA_SET_CFG_SET_LINK,
link,
lt_settings);
- status = core_link_send_set_config(link,
+ status = core_link_send_set_config(
+ link,
DPIA_SET_CFG_SET_LINK,
set_cfg_data);
/* CR for this hop is considered successful as long as
@@ -347,6 +346,14 @@ static enum link_training_result dpia_training_cr_non_transparent(
result = LINK_TRAINING_ABORT;
break;
}
+ status = core_link_send_set_config(
+ link,
+ DPIA_SET_CFG_SET_TRAINING,
+ ts);
+ if (status != DC_OK) {
+ result = LINK_TRAINING_ABORT;
+ break;
+ }
status = dpcd_set_lt_pattern(link, lt_settings->pattern_for_cr, hop);
if (status != DC_OK) {
result = LINK_TRAINING_ABORT;
@@ -358,10 +365,12 @@ static enum link_training_result dpia_training_cr_non_transparent(
* drive settings for hops immediately downstream.
*/
if (hop == repeater_cnt - 1) {
- set_cfg_data = dpia_build_set_config_data(DPIA_SET_CFG_SET_VSPE,
+ set_cfg_data = dpia_build_set_config_data(
+ DPIA_SET_CFG_SET_VSPE,
link,
lt_settings);
- status = core_link_send_set_config(link,
+ status = core_link_send_set_config(
+ link,
DPIA_SET_CFG_SET_VSPE,
set_cfg_data);
if (status != DC_OK) {
@@ -392,6 +401,7 @@ static enum link_training_result dpia_training_cr_non_transparent(
/* Check if clock recovery successful. */
if (dp_is_cr_done(lane_count, dpcd_lane_status)) {
+ DC_LOG_HW_LINK_TRAINING("%s: Clock recovery OK\n", __func__);
result = LINK_TRAINING_SUCCESS;
break;
}
@@ -468,7 +478,8 @@ static enum link_training_result dpia_training_cr_transparent(
* continuously.
*/
while ((retries_cr < LINK_TRAINING_MAX_RETRY_COUNT) &&
- (retry_count < LINK_TRAINING_MAX_CR_RETRY)) {
+ (retry_count < LINK_TRAINING_MAX_CR_RETRY)) {
+
/* Write TPS1 (not VS or PE) to DPCD to start CR phase.
* DPIA sends SET_CONFIG(SET_LINK) to notify DPOA to
* start link training.
@@ -498,6 +509,7 @@ static enum link_training_result dpia_training_cr_transparent(
/* Check if clock recovery successful. */
if (dp_is_cr_done(lane_count, dpcd_lane_status)) {
+ DC_LOG_HW_LINK_TRAINING("%s: Clock recovery OK\n", __func__);
result = LINK_TRAINING_SUCCESS;
break;
}
@@ -529,8 +541,7 @@ static enum link_training_result dpia_training_cr_transparent(
if (link->is_hpd_pending)
result = LINK_TRAINING_ABORT;
- DC_LOG_HW_LINK_TRAINING("%s\n DPIA(%d) clock recovery\n"
- " -hop(%d)\n - result(%d)\n - retries(%d)\n",
+ DC_LOG_HW_LINK_TRAINING("%s\n DPIA(%d) clock recovery\n -hop(%d)\n - result(%d)\n - retries(%d)\n",
__func__,
link->link_id.enum_id - ENUM_ID_1,
DPRX,
@@ -545,7 +556,7 @@ static enum link_training_result dpia_training_cr_transparent(
*
* @param link DPIA link being trained.
* @param lt_settings link_setting and drive settings (voltage swing and pre-emphasis).
- * @param hop The Hop in display path. DPRX = 0.
+ * @param hop Hop in display path. DPRX = 0.
*/
static enum link_training_result dpia_training_cr_phase(
struct dc_link *link,
@@ -564,7 +575,8 @@ static enum link_training_result dpia_training_cr_phase(
}
/* Return status read interval during equalization phase. */
-static uint32_t dpia_get_eq_aux_rd_interval(const struct dc_link *link,
+static uint32_t dpia_get_eq_aux_rd_interval(
+ const struct dc_link *link,
const struct link_training_settings *lt_settings,
uint32_t hop)
{
@@ -590,12 +602,11 @@ static uint32_t dpia_get_eq_aux_rd_interval(const struct dc_link *link,
* - TPSx is transmitted for any hops downstream of DPOA.
* - Drive (VS/PE) only transmitted for the hop immediately downstream of DPOA.
* - EQ for the first hop (DPTX-to-DPIA) is assumed to be successful.
- * - DPRX EQ only reported successful when both DPRX and DPIA requirements
- * (clk sync packets sent) fulfilled.
+ * - DPRX EQ only reported successful when both DPRX and DPIA requirements (clk sync packets sent) fulfilled.
*
* @param link DPIA link being trained.
* @param lt_settings link_setting and drive settings (voltage swing and pre-emphasis).
- * @param hop The Hop in display path. DPRX = 0.
+ * @param hop Hop in display path. DPRX = 0.
*/
static enum link_training_result dpia_training_eq_non_transparent(
struct dc_link *link,
@@ -624,9 +635,10 @@ static enum link_training_result dpia_training_eq_non_transparent(
else
tr_pattern = DP_TRAINING_PATTERN_SEQUENCE_4;
- repeater_cnt = dp_convert_to_count(link->dpcd_caps.lttpr_caps.phy_repeater_cnt);
+ repeater_cnt = dp_parse_lttpr_repeater_count(link->dpcd_caps.lttpr_caps.phy_repeater_cnt);
for (retries_eq = 0; retries_eq < LINK_TRAINING_MAX_RETRY_COUNT; retries_eq++) {
+
/* DPTX-to-DPIA equalization always successful. */
if (hop == repeater_cnt) {
result = LINK_TRAINING_SUCCESS;
@@ -640,7 +652,8 @@ static enum link_training_result dpia_training_eq_non_transparent(
result = LINK_TRAINING_ABORT;
break;
}
- status = core_link_send_set_config(link,
+ status = core_link_send_set_config(
+ link,
DPIA_SET_CFG_SET_TRAINING,
ts);
if (status != DC_OK) {
@@ -658,12 +671,14 @@ static enum link_training_result dpia_training_eq_non_transparent(
* drive settings for hop immediately downstream.
*/
if (hop == repeater_cnt - 1) {
- set_cfg_data = dpia_build_set_config_data(DPIA_SET_CFG_SET_VSPE,
- link,
- lt_settings);
- status = core_link_send_set_config(link,
- DPIA_SET_CFG_SET_VSPE,
- set_cfg_data);
+ set_cfg_data = dpia_build_set_config_data(
+ DPIA_SET_CFG_SET_VSPE,
+ link,
+ lt_settings);
+ status = core_link_send_set_config(
+ link,
+ DPIA_SET_CFG_SET_VSPE,
+ set_cfg_data);
if (status != DC_OK) {
result = LINK_TRAINING_ABORT;
break;
@@ -679,7 +694,7 @@ static enum link_training_result dpia_training_eq_non_transparent(
* ensure clock sync packets have been sent.
*/
if (hop == DPRX && retries_eq == 1)
- wait_time_microsec = max(wait_time_microsec, (uint32_t)DPIA_CLK_SYNC_DELAY);
+ wait_time_microsec = max(wait_time_microsec, (uint32_t) DPIA_CLK_SYNC_DELAY);
else
wait_time_microsec = dpia_get_eq_aux_rd_interval(link, lt_settings, hop);
@@ -705,8 +720,8 @@ static enum link_training_result dpia_training_eq_non_transparent(
}
if (dp_is_ch_eq_done(lane_count, dpcd_lane_status) &&
- dp_is_symbol_locked(link->cur_link_settings.lane_count, dpcd_lane_status) &&
- dp_is_interlane_aligned(dpcd_lane_status_updated)) {
+ dp_is_symbol_locked(link->cur_link_settings.lane_count, dpcd_lane_status) &&
+ dp_is_interlane_aligned(dpcd_lane_status_updated)) {
result = LINK_TRAINING_SUCCESS;
break;
}
@@ -741,7 +756,7 @@ static enum link_training_result dpia_training_eq_non_transparent(
*
* @param link DPIA link being trained.
* @param lt_settings link_setting and drive settings (voltage swing and pre-emphasis).
- * @param hop The Hop in display path. DPRX = 0.
+ * @param hop Hop in display path. DPRX = 0.
*/
static enum link_training_result dpia_training_eq_transparent(
struct dc_link *link,
@@ -761,6 +776,7 @@ static enum link_training_result dpia_training_eq_transparent(
wait_time_microsec = dpia_get_eq_aux_rd_interval(link, lt_settings, DPRX);
for (retries_eq = 0; retries_eq < LINK_TRAINING_MAX_RETRY_COUNT; retries_eq++) {
+
if (retries_eq == 0) {
status = dpcd_set_lt_pattern(link, tr_pattern, DPRX);
if (status != DC_OK) {
@@ -791,10 +807,14 @@ static enum link_training_result dpia_training_eq_transparent(
}
if (dp_is_ch_eq_done(lane_count, dpcd_lane_status) &&
- dp_is_symbol_locked(link->cur_link_settings.lane_count, dpcd_lane_status) &&
- dp_is_interlane_aligned(dpcd_lane_status_updated)) {
- result = LINK_TRAINING_SUCCESS;
- break;
+ dp_is_symbol_locked(link->cur_link_settings.lane_count, dpcd_lane_status)) {
+ /* Take into consideration corner case for DP 1.4a LL Compliance CTS as USB4
+ * has to share encoders unlike DP and USBC
+ */
+ if (dp_is_interlane_aligned(dpcd_lane_status_updated) || (link->is_automated && retries_eq)) {
+ result = LINK_TRAINING_SUCCESS;
+ break;
+ }
}
/* Update VS/PE. */
@@ -806,8 +826,7 @@ static enum link_training_result dpia_training_eq_transparent(
if (link->is_hpd_pending)
result = LINK_TRAINING_ABORT;
- DC_LOG_HW_LINK_TRAINING("%s\n DPIA(%d) equalization\n"
- " - hop(%d)\n - result(%d)\n - retries(%d)\n",
+ DC_LOG_HW_LINK_TRAINING("%s\n DPIA(%d) equalization\n - hop(%d)\n - result(%d)\n - retries(%d)\n",
__func__,
link->link_id.enum_id - ENUM_ID_1,
DPRX,
@@ -822,7 +841,7 @@ static enum link_training_result dpia_training_eq_transparent(
*
* @param link DPIA link being trained.
* @param lt_settings link_setting and drive settings (voltage swing and pre-emphasis).
- * @param hop The Hop in display path. DPRX = 0.
+ * @param hop Hop in display path. DPRX = 0.
*/
static enum link_training_result dpia_training_eq_phase(
struct dc_link *link,
@@ -841,7 +860,9 @@ static enum link_training_result dpia_training_eq_phase(
}
/* End training of specified hop in display path. */
-static enum dc_status dpcd_clear_lt_pattern(struct dc_link *link, uint32_t hop)
+static enum dc_status dpcd_clear_lt_pattern(
+ struct dc_link *link,
+ uint32_t hop)
{
union dpcd_training_pattern dpcd_pattern = {0};
uint32_t dpcd_tps_offset = DP_TRAINING_PATTERN_SET;
@@ -851,7 +872,8 @@ static enum dc_status dpcd_clear_lt_pattern(struct dc_link *link, uint32_t hop)
dpcd_tps_offset = DP_TRAINING_PATTERN_SET_PHY_REPEATER1 +
((DP_REPEATER_CONFIGURATION_AND_STATUS_SIZE) * (hop - 1));
- status = core_link_write_dpcd(link,
+ status = core_link_write_dpcd(
+ link,
dpcd_tps_offset,
&dpcd_pattern.raw,
sizeof(dpcd_pattern.raw));
@@ -869,9 +891,10 @@ static enum dc_status dpcd_clear_lt_pattern(struct dc_link *link, uint32_t hop)
* (DPTX-to-DPIA) and last hop (DPRX).
*
* @param link DPIA link being trained.
- * @param hop The Hop in display path. DPRX = 0.
+ * @param hop Hop in display path. DPRX = 0.
*/
-static enum link_training_result dpia_training_end(struct dc_link *link,
+static enum link_training_result dpia_training_end(
+ struct dc_link *link,
struct link_training_settings *lt_settings,
uint32_t hop)
{
@@ -880,13 +903,15 @@ static enum link_training_result dpia_training_end(struct dc_link *link,
enum dc_status status;
if (lt_settings->lttpr_mode == LTTPR_MODE_NON_TRANSPARENT) {
- repeater_cnt = dp_convert_to_count(link->dpcd_caps.lttpr_caps.phy_repeater_cnt);
+
+ repeater_cnt = dp_parse_lttpr_repeater_count(link->dpcd_caps.lttpr_caps.phy_repeater_cnt);
if (hop == repeater_cnt) { /* DPTX-to-DPIA */
/* Send SET_CONFIG(SET_TRAINING:0xff) to notify DPOA that
* DPTX-to-DPIA hop trained. No DPCD write needed for first hop.
*/
- status = core_link_send_set_config(link,
+ status = core_link_send_set_config(
+ link,
DPIA_SET_CFG_SET_TRAINING,
DPIA_TS_UFP_DONE);
if (status != DC_OK)
@@ -900,7 +925,8 @@ static enum link_training_result dpia_training_end(struct dc_link *link,
/* Notify DPOA that non-transparent link training of DPRX done. */
if (hop == DPRX && result != LINK_TRAINING_ABORT) {
- status = core_link_send_set_config(link,
+ status = core_link_send_set_config(
+ link,
DPIA_SET_CFG_SET_TRAINING,
DPIA_TS_DPRX_DONE);
if (status != DC_OK)
@@ -908,18 +934,20 @@ static enum link_training_result dpia_training_end(struct dc_link *link,
}
} else { /* non-LTTPR or transparent LTTPR. */
+
/* Write 0x0 to TRAINING_PATTERN_SET */
status = dpcd_clear_lt_pattern(link, hop);
if (status != DC_OK)
result = LINK_TRAINING_ABORT;
+
}
DC_LOG_HW_LINK_TRAINING("%s\n DPIA(%d) end\n - hop(%d)\n - result(%d)\n - LTTPR mode(%d)\n",
- __func__,
- link->link_id.enum_id - ENUM_ID_1,
- hop,
- result,
- lt_settings->lttpr_mode);
+ __func__,
+ link->link_id.enum_id - ENUM_ID_1,
+ hop,
+ result,
+ lt_settings->lttpr_mode);
return result;
}
@@ -929,20 +957,21 @@ static enum link_training_result dpia_training_end(struct dc_link *link,
* - Sending SET_CONFIG(SET_LINK) with lane count and link rate set to 0.
*
* @param link DPIA link being trained.
- * @param hop The Hop in display path. DPRX = 0.
+ * @param hop Hop in display path. DPRX = 0.
*/
-static void dpia_training_abort(struct dc_link *link,
- struct link_training_settings *lt_settings,
- uint32_t hop)
+static void dpia_training_abort(
+ struct dc_link *link,
+ struct link_training_settings *lt_settings,
+ uint32_t hop)
{
uint8_t data = 0;
uint32_t dpcd_tps_offset = DP_TRAINING_PATTERN_SET;
DC_LOG_HW_LINK_TRAINING("%s\n DPIA(%d) aborting\n - LTTPR mode(%d)\n - HPD(%d)\n",
- __func__,
- link->link_id.enum_id - ENUM_ID_1,
- lt_settings->lttpr_mode,
- link->is_hpd_pending);
+ __func__,
+ link->link_id.enum_id - ENUM_ID_1,
+ lt_settings->lttpr_mode,
+ link->is_hpd_pending);
/* Abandon clean-up if sink unplugged. */
if (link->is_hpd_pending)
@@ -958,7 +987,7 @@ static void dpia_training_abort(struct dc_link *link,
core_link_send_set_config(link, DPIA_SET_CFG_SET_LINK, data);
}
-enum link_training_result dc_link_dpia_perform_link_training(
+enum link_training_result dpia_perform_link_training(
struct dc_link *link,
const struct link_resource *link_res,
const struct dc_link_settings *link_setting,
@@ -979,7 +1008,7 @@ enum link_training_result dc_link_dpia_perform_link_training(
return result;
if (lt_settings.lttpr_mode == LTTPR_MODE_NON_TRANSPARENT)
- repeater_cnt = dp_convert_to_count(link->dpcd_caps.lttpr_caps.phy_repeater_cnt);
+ repeater_cnt = dp_parse_lttpr_repeater_count(link->dpcd_caps.lttpr_caps.phy_repeater_cnt);
/* Train each hop in turn starting with the one closest to DPTX.
* In transparent or non-LTTPR mode, train only the final hop (DPRX).
@@ -1007,12 +1036,13 @@ enum link_training_result dc_link_dpia_perform_link_training(
* falling back to lower bandwidth settings possible.
*/
if (result == LINK_TRAINING_SUCCESS) {
- msleep(5);
- result = dp_check_link_loss_status(link, &lt_settings);
- } else if (result == LINK_TRAINING_ABORT) {
+ fsleep(5000);
+ if (!link->is_automated)
+ result = dp_check_link_loss_status(link, &lt_settings);
+ } else if (result == LINK_TRAINING_ABORT)
dpia_training_abort(link, &lt_settings, repeater_id);
- } else {
+ else
dpia_training_end(link, &lt_settings, repeater_id);
- }
+
return result;
}
diff --git a/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training_dpia.h b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training_dpia.h
new file mode 100644
index 000000000000..b39fb9faf1c2
--- /dev/null
+++ b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training_dpia.h
@@ -0,0 +1,41 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ * Authors: AMD
+ *
+ */
+
+
+#ifndef __DC_LINK_DP_TRAINING_DPIA_H__
+#define __DC_LINK_DP_TRAINING_DPIA_H__
+#include "link_dp_training.h"
+
+/* Train DP tunneling link for USB4 DPIA display endpoint.
+ * DPIA equivalent of dc_link_dp_perfrorm_link_training.
+ * Aborts link training upon detection of sink unplug.
+ */
+enum link_training_result dpia_perform_link_training(
+ struct dc_link *link,
+ const struct link_resource *link_res,
+ const struct dc_link_settings *link_setting,
+ bool skip_video_pattern);
+
+#endif /* __DC_LINK_DP_TRAINING_DPIA_H__ */
diff --git a/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training_fixed_vs_pe_retimer.c b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training_fixed_vs_pe_retimer.c
new file mode 100644
index 000000000000..5731c4b61f9f
--- /dev/null
+++ b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training_fixed_vs_pe_retimer.c
@@ -0,0 +1,955 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ * Authors: AMD
+ *
+ */
+
+/* FILE POLICY AND INTENDED USAGE:
+ * This file implements 8b/10b link training specially modified to support an
+ * embedded retimer chip. This retimer chip is referred as fixed vs pe retimer.
+ * Unlike native dp connection this chip requires a modified link training
+ * protocol based on 8b/10b link training. Since this is a non standard sequence
+ * and we must support this hardware, we decided to isolate it in its own
+ * training sequence inside its own file.
+ */
+#include "link_dp_training_fixed_vs_pe_retimer.h"
+#include "link_dp_training_8b_10b.h"
+#include "link_dpcd.h"
+#include "link_dp_phy.h"
+#include "link_dp_capability.h"
+
+#define DC_LOGGER \
+ link->ctx->logger
+
+void dp_fixed_vs_pe_read_lane_adjust(
+ struct dc_link *link,
+ union dpcd_training_lane dpcd_lane_adjust[LANE_COUNT_DP_MAX])
+{
+ const uint8_t vendor_lttpr_write_data_vs[3] = {0x0, 0x53, 0x63};
+ const uint8_t vendor_lttpr_write_data_pe[3] = {0x0, 0x54, 0x63};
+ const uint8_t offset = dp_parse_lttpr_repeater_count(
+ link->dpcd_caps.lttpr_caps.phy_repeater_cnt);
+ uint32_t vendor_lttpr_write_address = 0xF004F;
+ uint32_t vendor_lttpr_read_address = 0xF0053;
+ uint8_t dprx_vs = 0;
+ uint8_t dprx_pe = 0;
+ uint8_t lane;
+
+ if (offset != 0xFF) {
+ vendor_lttpr_write_address +=
+ ((DP_REPEATER_CONFIGURATION_AND_STATUS_SIZE) * (offset - 1));
+ vendor_lttpr_read_address +=
+ ((DP_REPEATER_CONFIGURATION_AND_STATUS_SIZE) * (offset - 1));
+ }
+
+ /* W/A to read lane settings requested by DPRX */
+ core_link_write_dpcd(
+ link,
+ vendor_lttpr_write_address,
+ &vendor_lttpr_write_data_vs[0],
+ sizeof(vendor_lttpr_write_data_vs));
+ core_link_read_dpcd(
+ link,
+ vendor_lttpr_read_address,
+ &dprx_vs,
+ 1);
+ core_link_write_dpcd(
+ link,
+ vendor_lttpr_write_address,
+ &vendor_lttpr_write_data_pe[0],
+ sizeof(vendor_lttpr_write_data_pe));
+ core_link_read_dpcd(
+ link,
+ vendor_lttpr_read_address,
+ &dprx_pe,
+ 1);
+
+ for (lane = 0; lane < LANE_COUNT_DP_MAX; lane++) {
+ dpcd_lane_adjust[lane].bits.VOLTAGE_SWING_SET = (dprx_vs >> (2 * lane)) & 0x3;
+ dpcd_lane_adjust[lane].bits.PRE_EMPHASIS_SET = (dprx_pe >> (2 * lane)) & 0x3;
+ }
+}
+
+
+void dp_fixed_vs_pe_set_retimer_lane_settings(
+ struct dc_link *link,
+ const union dpcd_training_lane dpcd_lane_adjust[LANE_COUNT_DP_MAX],
+ uint8_t lane_count)
+{
+ const uint8_t offset = dp_parse_lttpr_repeater_count(
+ link->dpcd_caps.lttpr_caps.phy_repeater_cnt);
+ const uint8_t vendor_lttpr_write_data_reset[4] = {0x1, 0x50, 0x63, 0xFF};
+ uint32_t vendor_lttpr_write_address = 0xF004F;
+ uint8_t vendor_lttpr_write_data_vs[4] = {0x1, 0x51, 0x63, 0x0};
+ uint8_t vendor_lttpr_write_data_pe[4] = {0x1, 0x52, 0x63, 0x0};
+ uint8_t lane = 0;
+
+ if (offset != 0xFF) {
+ vendor_lttpr_write_address +=
+ ((DP_REPEATER_CONFIGURATION_AND_STATUS_SIZE) * (offset - 1));
+ }
+
+ for (lane = 0; lane < lane_count; lane++) {
+ vendor_lttpr_write_data_vs[3] |=
+ dpcd_lane_adjust[lane].bits.VOLTAGE_SWING_SET << (2 * lane);
+ vendor_lttpr_write_data_pe[3] |=
+ dpcd_lane_adjust[lane].bits.PRE_EMPHASIS_SET << (2 * lane);
+ }
+
+ /* Force LTTPR to output desired VS and PE */
+ core_link_write_dpcd(
+ link,
+ vendor_lttpr_write_address,
+ &vendor_lttpr_write_data_reset[0],
+ sizeof(vendor_lttpr_write_data_reset));
+ core_link_write_dpcd(
+ link,
+ vendor_lttpr_write_address,
+ &vendor_lttpr_write_data_vs[0],
+ sizeof(vendor_lttpr_write_data_vs));
+ core_link_write_dpcd(
+ link,
+ vendor_lttpr_write_address,
+ &vendor_lttpr_write_data_pe[0],
+ sizeof(vendor_lttpr_write_data_pe));
+}
+
+static enum link_training_result perform_fixed_vs_pe_nontransparent_training_sequence(
+ struct dc_link *link,
+ const struct link_resource *link_res,
+ struct link_training_settings *lt_settings)
+{
+ enum link_training_result status = LINK_TRAINING_SUCCESS;
+ uint8_t lane = 0;
+ uint8_t toggle_rate = 0x6;
+ uint8_t target_rate = 0x6;
+ bool apply_toggle_rate_wa = false;
+ uint8_t repeater_cnt;
+ uint8_t repeater_id;
+
+ /* Fixed VS/PE specific: Force CR AUX RD Interval to at least 16ms */
+ if (lt_settings->cr_pattern_time < 16000)
+ lt_settings->cr_pattern_time = 16000;
+
+ /* Fixed VS/PE specific: Toggle link rate */
+ apply_toggle_rate_wa = (link->vendor_specific_lttpr_link_rate_wa == target_rate);
+ target_rate = get_dpcd_link_rate(&lt_settings->link_settings);
+ toggle_rate = (target_rate == 0x6) ? 0xA : 0x6;
+
+ if (apply_toggle_rate_wa)
+ lt_settings->link_settings.link_rate = toggle_rate;
+
+ if (link->ctx->dc->work_arounds.lt_early_cr_pattern)
+ start_clock_recovery_pattern_early(link, link_res, lt_settings, DPRX);
+
+ /* 1. set link rate, lane count and spread. */
+ dpcd_set_link_settings(link, lt_settings);
+
+ /* Fixed VS/PE specific: Toggle link rate back*/
+ if (apply_toggle_rate_wa) {
+ core_link_write_dpcd(
+ link,
+ DP_LINK_BW_SET,
+ &target_rate,
+ 1);
+ }
+
+ link->vendor_specific_lttpr_link_rate_wa = target_rate;
+
+ if (lt_settings->lttpr_mode == LTTPR_MODE_NON_TRANSPARENT) {
+
+ /* 2. perform link training (set link training done
+ * to false is done as well)
+ */
+ repeater_cnt = dp_parse_lttpr_repeater_count(link->dpcd_caps.lttpr_caps.phy_repeater_cnt);
+
+ for (repeater_id = repeater_cnt; (repeater_id > 0 && status == LINK_TRAINING_SUCCESS);
+ repeater_id--) {
+ status = perform_8b_10b_clock_recovery_sequence(link, link_res, lt_settings, repeater_id);
+
+ if (status != LINK_TRAINING_SUCCESS) {
+ repeater_training_done(link, repeater_id);
+ break;
+ }
+
+ status = perform_8b_10b_channel_equalization_sequence(link,
+ link_res,
+ lt_settings,
+ repeater_id);
+
+ repeater_training_done(link, repeater_id);
+
+ if (status != LINK_TRAINING_SUCCESS)
+ break;
+
+ for (lane = 0; lane < LANE_COUNT_DP_MAX; lane++) {
+ lt_settings->dpcd_lane_settings[lane].raw = 0;
+ lt_settings->hw_lane_settings[lane].VOLTAGE_SWING = 0;
+ lt_settings->hw_lane_settings[lane].PRE_EMPHASIS = 0;
+ }
+ }
+ }
+
+ if (status == LINK_TRAINING_SUCCESS) {
+ status = perform_8b_10b_clock_recovery_sequence(link, link_res, lt_settings, DPRX);
+ if (status == LINK_TRAINING_SUCCESS) {
+ status = perform_8b_10b_channel_equalization_sequence(link,
+ link_res,
+ lt_settings,
+ DPRX);
+ }
+ }
+
+ return status;
+}
+
+
+enum link_training_result dp_perform_fixed_vs_pe_training_sequence_legacy(
+ struct dc_link *link,
+ const struct link_resource *link_res,
+ struct link_training_settings *lt_settings)
+{
+ const uint8_t vendor_lttpr_write_data_reset[4] = {0x1, 0x50, 0x63, 0xFF};
+ const uint8_t offset = dp_parse_lttpr_repeater_count(
+ link->dpcd_caps.lttpr_caps.phy_repeater_cnt);
+ const uint8_t vendor_lttpr_write_data_intercept_en[4] = {0x1, 0x55, 0x63, 0x0};
+ const uint8_t vendor_lttpr_write_data_intercept_dis[4] = {0x1, 0x55, 0x63, 0x68};
+ uint32_t pre_disable_intercept_delay_ms = link->dc->debug.fixed_vs_aux_delay_config_wa;
+ uint8_t vendor_lttpr_write_data_vs[4] = {0x1, 0x51, 0x63, 0x0};
+ uint8_t vendor_lttpr_write_data_pe[4] = {0x1, 0x52, 0x63, 0x0};
+ uint32_t vendor_lttpr_write_address = 0xF004F;
+ enum link_training_result status = LINK_TRAINING_SUCCESS;
+ uint8_t lane = 0;
+ union down_spread_ctrl downspread = {0};
+ union lane_count_set lane_count_set = {0};
+ uint8_t toggle_rate;
+ uint8_t rate;
+
+ /* Only 8b/10b is supported */
+ ASSERT(link_dp_get_encoding_format(&lt_settings->link_settings) ==
+ DP_8b_10b_ENCODING);
+
+ if (lt_settings->lttpr_mode == LTTPR_MODE_NON_TRANSPARENT) {
+ status = perform_fixed_vs_pe_nontransparent_training_sequence(link, link_res, lt_settings);
+ return status;
+ }
+
+ if (offset != 0xFF) {
+ vendor_lttpr_write_address +=
+ ((DP_REPEATER_CONFIGURATION_AND_STATUS_SIZE) * (offset - 1));
+
+ /* Certain display and cable configuration require extra delay */
+ if (offset > 2)
+ pre_disable_intercept_delay_ms = link->dc->debug.fixed_vs_aux_delay_config_wa * 2;
+ }
+
+ /* Vendor specific: Reset lane settings */
+ core_link_write_dpcd(
+ link,
+ vendor_lttpr_write_address,
+ &vendor_lttpr_write_data_reset[0],
+ sizeof(vendor_lttpr_write_data_reset));
+ core_link_write_dpcd(
+ link,
+ vendor_lttpr_write_address,
+ &vendor_lttpr_write_data_vs[0],
+ sizeof(vendor_lttpr_write_data_vs));
+ core_link_write_dpcd(
+ link,
+ vendor_lttpr_write_address,
+ &vendor_lttpr_write_data_pe[0],
+ sizeof(vendor_lttpr_write_data_pe));
+
+ /* Vendor specific: Enable intercept */
+ core_link_write_dpcd(
+ link,
+ vendor_lttpr_write_address,
+ &vendor_lttpr_write_data_intercept_en[0],
+ sizeof(vendor_lttpr_write_data_intercept_en));
+
+ /* 1. set link rate, lane count and spread. */
+
+ downspread.raw = (uint8_t)(lt_settings->link_settings.link_spread);
+
+ lane_count_set.bits.LANE_COUNT_SET =
+ lt_settings->link_settings.lane_count;
+
+ lane_count_set.bits.ENHANCED_FRAMING = lt_settings->enhanced_framing;
+ lane_count_set.bits.POST_LT_ADJ_REQ_GRANTED = 0;
+
+
+ if (lt_settings->pattern_for_eq < DP_TRAINING_PATTERN_SEQUENCE_4) {
+ lane_count_set.bits.POST_LT_ADJ_REQ_GRANTED =
+ link->dpcd_caps.max_ln_count.bits.POST_LT_ADJ_REQ_SUPPORTED;
+ }
+
+ core_link_write_dpcd(link, DP_DOWNSPREAD_CTRL,
+ &downspread.raw, sizeof(downspread));
+
+ core_link_write_dpcd(link, DP_LANE_COUNT_SET,
+ &lane_count_set.raw, 1);
+
+ rate = get_dpcd_link_rate(&lt_settings->link_settings);
+
+ /* Vendor specific: Toggle link rate */
+ toggle_rate = (rate == 0x6) ? 0xA : 0x6;
+
+ if (link->vendor_specific_lttpr_link_rate_wa == rate) {
+ core_link_write_dpcd(
+ link,
+ DP_LINK_BW_SET,
+ &toggle_rate,
+ 1);
+ }
+
+ link->vendor_specific_lttpr_link_rate_wa = rate;
+
+ core_link_write_dpcd(link, DP_LINK_BW_SET, &rate, 1);
+
+ DC_LOG_HW_LINK_TRAINING("%s\n %x rate = %x\n %x lane = %x framing = %x\n %x spread = %x\n",
+ __func__,
+ DP_LINK_BW_SET,
+ lt_settings->link_settings.link_rate,
+ DP_LANE_COUNT_SET,
+ lt_settings->link_settings.lane_count,
+ lt_settings->enhanced_framing,
+ DP_DOWNSPREAD_CTRL,
+ lt_settings->link_settings.link_spread);
+
+ /* 2. Perform link training */
+
+ /* Perform Clock Recovery Sequence */
+ if (status == LINK_TRAINING_SUCCESS) {
+ const uint8_t max_vendor_dpcd_retries = 10;
+ uint32_t retries_cr;
+ uint32_t retry_count;
+ uint32_t wait_time_microsec;
+ enum dc_lane_count lane_count = lt_settings->link_settings.lane_count;
+ union lane_status dpcd_lane_status[LANE_COUNT_DP_MAX];
+ union lane_align_status_updated dpcd_lane_status_updated;
+ union lane_adjust dpcd_lane_adjust[LANE_COUNT_DP_MAX] = {0};
+ enum dc_status dpcd_status = DC_OK;
+ uint8_t i = 0;
+
+ retries_cr = 0;
+ retry_count = 0;
+
+ memset(&dpcd_lane_status, '\0', sizeof(dpcd_lane_status));
+ memset(&dpcd_lane_status_updated, '\0',
+ sizeof(dpcd_lane_status_updated));
+
+ while ((retries_cr < LINK_TRAINING_MAX_RETRY_COUNT) &&
+ (retry_count < LINK_TRAINING_MAX_CR_RETRY)) {
+
+
+ /* 1. call HWSS to set lane settings */
+ dp_set_hw_lane_settings(
+ link,
+ link_res,
+ lt_settings,
+ 0);
+
+ /* 2. update DPCD of the receiver */
+ if (!retry_count) {
+ /* EPR #361076 - write as a 5-byte burst,
+ * but only for the 1-st iteration.
+ */
+ dpcd_set_lt_pattern_and_lane_settings(
+ link,
+ lt_settings,
+ lt_settings->pattern_for_cr,
+ 0);
+ /* Vendor specific: Disable intercept */
+ for (i = 0; i < max_vendor_dpcd_retries; i++) {
+ msleep(pre_disable_intercept_delay_ms);
+ dpcd_status = core_link_write_dpcd(
+ link,
+ vendor_lttpr_write_address,
+ &vendor_lttpr_write_data_intercept_dis[0],
+ sizeof(vendor_lttpr_write_data_intercept_dis));
+
+ if (dpcd_status == DC_OK)
+ break;
+
+ core_link_write_dpcd(
+ link,
+ vendor_lttpr_write_address,
+ &vendor_lttpr_write_data_intercept_en[0],
+ sizeof(vendor_lttpr_write_data_intercept_en));
+ }
+ } else {
+ vendor_lttpr_write_data_vs[3] = 0;
+ vendor_lttpr_write_data_pe[3] = 0;
+
+ for (lane = 0; lane < lane_count; lane++) {
+ vendor_lttpr_write_data_vs[3] |=
+ lt_settings->dpcd_lane_settings[lane].bits.VOLTAGE_SWING_SET << (2 * lane);
+ vendor_lttpr_write_data_pe[3] |=
+ lt_settings->dpcd_lane_settings[lane].bits.PRE_EMPHASIS_SET << (2 * lane);
+ }
+
+ /* Vendor specific: Update VS and PE to DPRX requested value */
+ core_link_write_dpcd(
+ link,
+ vendor_lttpr_write_address,
+ &vendor_lttpr_write_data_vs[0],
+ sizeof(vendor_lttpr_write_data_vs));
+ core_link_write_dpcd(
+ link,
+ vendor_lttpr_write_address,
+ &vendor_lttpr_write_data_pe[0],
+ sizeof(vendor_lttpr_write_data_pe));
+
+ dpcd_set_lane_settings(
+ link,
+ lt_settings,
+ 0);
+ }
+
+ /* 3. wait receiver to lock-on*/
+ wait_time_microsec = lt_settings->cr_pattern_time;
+
+ dp_wait_for_training_aux_rd_interval(
+ link,
+ wait_time_microsec);
+
+ /* 4. Read lane status and requested drive
+ * settings as set by the sink
+ */
+ dp_get_lane_status_and_lane_adjust(
+ link,
+ lt_settings,
+ dpcd_lane_status,
+ &dpcd_lane_status_updated,
+ dpcd_lane_adjust,
+ 0);
+
+ /* 5. check CR done*/
+ if (dp_is_cr_done(lane_count, dpcd_lane_status)) {
+ status = LINK_TRAINING_SUCCESS;
+ break;
+ }
+
+ /* 6. max VS reached*/
+ if (dp_is_max_vs_reached(lt_settings))
+ break;
+
+ /* 7. same lane settings */
+ /* Note: settings are the same for all lanes,
+ * so comparing first lane is sufficient
+ */
+ if (lt_settings->dpcd_lane_settings[0].bits.VOLTAGE_SWING_SET ==
+ dpcd_lane_adjust[0].bits.VOLTAGE_SWING_LANE)
+ retries_cr++;
+ else
+ retries_cr = 0;
+
+ /* 8. update VS/PE/PC2 in lt_settings*/
+ dp_decide_lane_settings(lt_settings, dpcd_lane_adjust,
+ lt_settings->hw_lane_settings, lt_settings->dpcd_lane_settings);
+ retry_count++;
+ }
+
+ if (retry_count >= LINK_TRAINING_MAX_CR_RETRY) {
+ ASSERT(0);
+ DC_LOG_ERROR("%s: Link Training Error, could not get CR after %d tries. Possibly voltage swing issue",
+ __func__,
+ LINK_TRAINING_MAX_CR_RETRY);
+
+ }
+
+ status = dp_get_cr_failure(lane_count, dpcd_lane_status);
+ }
+
+ /* Perform Channel EQ Sequence */
+ if (status == LINK_TRAINING_SUCCESS) {
+ enum dc_dp_training_pattern tr_pattern;
+ uint32_t retries_ch_eq;
+ uint32_t wait_time_microsec;
+ enum dc_lane_count lane_count = lt_settings->link_settings.lane_count;
+ union lane_align_status_updated dpcd_lane_status_updated = {0};
+ union lane_status dpcd_lane_status[LANE_COUNT_DP_MAX] = {0};
+ union lane_adjust dpcd_lane_adjust[LANE_COUNT_DP_MAX] = {0};
+
+ /* Note: also check that TPS4 is a supported feature*/
+ tr_pattern = lt_settings->pattern_for_eq;
+
+ dp_set_hw_training_pattern(link, link_res, tr_pattern, 0);
+
+ status = LINK_TRAINING_EQ_FAIL_EQ;
+
+ for (retries_ch_eq = 0; retries_ch_eq <= LINK_TRAINING_MAX_RETRY_COUNT;
+ retries_ch_eq++) {
+
+ dp_set_hw_lane_settings(link, link_res, lt_settings, 0);
+
+ vendor_lttpr_write_data_vs[3] = 0;
+ vendor_lttpr_write_data_pe[3] = 0;
+
+ for (lane = 0; lane < lane_count; lane++) {
+ vendor_lttpr_write_data_vs[3] |=
+ lt_settings->dpcd_lane_settings[lane].bits.VOLTAGE_SWING_SET << (2 * lane);
+ vendor_lttpr_write_data_pe[3] |=
+ lt_settings->dpcd_lane_settings[lane].bits.PRE_EMPHASIS_SET << (2 * lane);
+ }
+
+ /* Vendor specific: Update VS and PE to DPRX requested value */
+ core_link_write_dpcd(
+ link,
+ vendor_lttpr_write_address,
+ &vendor_lttpr_write_data_vs[0],
+ sizeof(vendor_lttpr_write_data_vs));
+ core_link_write_dpcd(
+ link,
+ vendor_lttpr_write_address,
+ &vendor_lttpr_write_data_pe[0],
+ sizeof(vendor_lttpr_write_data_pe));
+
+ /* 2. update DPCD*/
+ if (!retries_ch_eq)
+ /* EPR #361076 - write as a 5-byte burst,
+ * but only for the 1-st iteration
+ */
+
+ dpcd_set_lt_pattern_and_lane_settings(
+ link,
+ lt_settings,
+ tr_pattern, 0);
+ else
+ dpcd_set_lane_settings(link, lt_settings, 0);
+
+ /* 3. wait for receiver to lock-on*/
+ wait_time_microsec = lt_settings->eq_pattern_time;
+
+ dp_wait_for_training_aux_rd_interval(
+ link,
+ wait_time_microsec);
+
+ /* 4. Read lane status and requested
+ * drive settings as set by the sink
+ */
+ dp_get_lane_status_and_lane_adjust(
+ link,
+ lt_settings,
+ dpcd_lane_status,
+ &dpcd_lane_status_updated,
+ dpcd_lane_adjust,
+ 0);
+
+ /* 5. check CR done*/
+ if (!dp_is_cr_done(lane_count, dpcd_lane_status)) {
+ status = LINK_TRAINING_EQ_FAIL_CR;
+ break;
+ }
+
+ /* 6. check CHEQ done*/
+ if (dp_is_ch_eq_done(lane_count, dpcd_lane_status) &&
+ dp_is_symbol_locked(lane_count, dpcd_lane_status) &&
+ dp_is_interlane_aligned(dpcd_lane_status_updated)) {
+ status = LINK_TRAINING_SUCCESS;
+ break;
+ }
+
+ /* 7. update VS/PE/PC2 in lt_settings*/
+ dp_decide_lane_settings(lt_settings, dpcd_lane_adjust,
+ lt_settings->hw_lane_settings, lt_settings->dpcd_lane_settings);
+ }
+ }
+
+ return status;
+}
+
+enum link_training_result dp_perform_fixed_vs_pe_training_sequence(
+ struct dc_link *link,
+ const struct link_resource *link_res,
+ struct link_training_settings *lt_settings)
+{
+ const uint8_t vendor_lttpr_write_data_reset[4] = {0x1, 0x50, 0x63, 0xFF};
+ const uint8_t offset = dp_parse_lttpr_repeater_count(
+ link->dpcd_caps.lttpr_caps.phy_repeater_cnt);
+ const uint8_t vendor_lttpr_write_data_intercept_en[4] = {0x1, 0x55, 0x63, 0x0};
+ const uint8_t vendor_lttpr_write_data_intercept_dis[4] = {0x1, 0x55, 0x63, 0x6E};
+ const uint8_t vendor_lttpr_write_data_adicora_eq1[4] = {0x1, 0x55, 0x63, 0x2E};
+ const uint8_t vendor_lttpr_write_data_adicora_eq2[4] = {0x1, 0x55, 0x63, 0x01};
+ const uint8_t vendor_lttpr_write_data_adicora_eq3[4] = {0x1, 0x55, 0x63, 0x68};
+ uint32_t pre_disable_intercept_delay_ms = link->dc->debug.fixed_vs_aux_delay_config_wa;
+ uint8_t vendor_lttpr_write_data_vs[4] = {0x1, 0x51, 0x63, 0x0};
+ uint8_t vendor_lttpr_write_data_pe[4] = {0x1, 0x52, 0x63, 0x0};
+
+ uint32_t vendor_lttpr_write_address = 0xF004F;
+ enum link_training_result status = LINK_TRAINING_SUCCESS;
+ uint8_t lane = 0;
+ union down_spread_ctrl downspread = {0};
+ union lane_count_set lane_count_set = {0};
+ uint8_t toggle_rate;
+ uint8_t rate;
+
+ /* Only 8b/10b is supported */
+ ASSERT(link_dp_get_encoding_format(&lt_settings->link_settings) ==
+ DP_8b_10b_ENCODING);
+
+ if (lt_settings->lttpr_mode == LTTPR_MODE_NON_TRANSPARENT) {
+ status = perform_fixed_vs_pe_nontransparent_training_sequence(link, link_res, lt_settings);
+ return status;
+ }
+
+ if (offset != 0xFF) {
+ vendor_lttpr_write_address +=
+ ((DP_REPEATER_CONFIGURATION_AND_STATUS_SIZE) * (offset - 1));
+
+ /* Certain display and cable configuration require extra delay */
+ if (offset > 2)
+ pre_disable_intercept_delay_ms = link->dc->debug.fixed_vs_aux_delay_config_wa * 2;
+ }
+
+ /* Vendor specific: Reset lane settings */
+ core_link_write_dpcd(
+ link,
+ vendor_lttpr_write_address,
+ &vendor_lttpr_write_data_reset[0],
+ sizeof(vendor_lttpr_write_data_reset));
+ core_link_write_dpcd(
+ link,
+ vendor_lttpr_write_address,
+ &vendor_lttpr_write_data_vs[0],
+ sizeof(vendor_lttpr_write_data_vs));
+ core_link_write_dpcd(
+ link,
+ vendor_lttpr_write_address,
+ &vendor_lttpr_write_data_pe[0],
+ sizeof(vendor_lttpr_write_data_pe));
+
+ /* Vendor specific: Enable intercept */
+ core_link_write_dpcd(
+ link,
+ vendor_lttpr_write_address,
+ &vendor_lttpr_write_data_intercept_en[0],
+ sizeof(vendor_lttpr_write_data_intercept_en));
+
+ /* 1. set link rate, lane count and spread. */
+
+ downspread.raw = (uint8_t)(lt_settings->link_settings.link_spread);
+
+ lane_count_set.bits.LANE_COUNT_SET =
+ lt_settings->link_settings.lane_count;
+
+ lane_count_set.bits.ENHANCED_FRAMING = lt_settings->enhanced_framing;
+ lane_count_set.bits.POST_LT_ADJ_REQ_GRANTED = 0;
+
+
+ if (lt_settings->pattern_for_eq < DP_TRAINING_PATTERN_SEQUENCE_4) {
+ lane_count_set.bits.POST_LT_ADJ_REQ_GRANTED =
+ link->dpcd_caps.max_ln_count.bits.POST_LT_ADJ_REQ_SUPPORTED;
+ }
+
+ core_link_write_dpcd(link, DP_DOWNSPREAD_CTRL,
+ &downspread.raw, sizeof(downspread));
+
+ core_link_write_dpcd(link, DP_LANE_COUNT_SET,
+ &lane_count_set.raw, 1);
+
+ rate = get_dpcd_link_rate(&lt_settings->link_settings);
+
+ /* Vendor specific: Toggle link rate */
+ toggle_rate = (rate == 0x6) ? 0xA : 0x6;
+
+ if (link->vendor_specific_lttpr_link_rate_wa == rate) {
+ core_link_write_dpcd(
+ link,
+ DP_LINK_BW_SET,
+ &toggle_rate,
+ 1);
+ }
+
+ link->vendor_specific_lttpr_link_rate_wa = rate;
+
+ core_link_write_dpcd(link, DP_LINK_BW_SET, &rate, 1);
+
+ DC_LOG_HW_LINK_TRAINING("%s\n %x rate = %x\n %x lane = %x framing = %x\n %x spread = %x\n",
+ __func__,
+ DP_LINK_BW_SET,
+ lt_settings->link_settings.link_rate,
+ DP_LANE_COUNT_SET,
+ lt_settings->link_settings.lane_count,
+ lt_settings->enhanced_framing,
+ DP_DOWNSPREAD_CTRL,
+ lt_settings->link_settings.link_spread);
+
+ /* 2. Perform link training */
+
+ /* Perform Clock Recovery Sequence */
+ if (status == LINK_TRAINING_SUCCESS) {
+ const uint8_t max_vendor_dpcd_retries = 10;
+ uint32_t retries_cr;
+ uint32_t retry_count;
+ uint32_t wait_time_microsec;
+ enum dc_lane_count lane_count = lt_settings->link_settings.lane_count;
+ union lane_status dpcd_lane_status[LANE_COUNT_DP_MAX];
+ union lane_align_status_updated dpcd_lane_status_updated;
+ union lane_adjust dpcd_lane_adjust[LANE_COUNT_DP_MAX] = {0};
+ enum dc_status dpcd_status = DC_OK;
+ uint8_t i = 0;
+
+ retries_cr = 0;
+ retry_count = 0;
+
+ memset(&dpcd_lane_status, '\0', sizeof(dpcd_lane_status));
+ memset(&dpcd_lane_status_updated, '\0',
+ sizeof(dpcd_lane_status_updated));
+
+ while ((retries_cr < LINK_TRAINING_MAX_RETRY_COUNT) &&
+ (retry_count < LINK_TRAINING_MAX_CR_RETRY)) {
+
+
+ /* 1. call HWSS to set lane settings */
+ dp_set_hw_lane_settings(
+ link,
+ link_res,
+ lt_settings,
+ 0);
+
+ /* 2. update DPCD of the receiver */
+ if (!retry_count) {
+ /* EPR #361076 - write as a 5-byte burst,
+ * but only for the 1-st iteration.
+ */
+ dpcd_set_lt_pattern_and_lane_settings(
+ link,
+ lt_settings,
+ lt_settings->pattern_for_cr,
+ 0);
+ /* Vendor specific: Disable intercept */
+ for (i = 0; i < max_vendor_dpcd_retries; i++) {
+ msleep(pre_disable_intercept_delay_ms);
+ dpcd_status = core_link_write_dpcd(
+ link,
+ vendor_lttpr_write_address,
+ &vendor_lttpr_write_data_intercept_dis[0],
+ sizeof(vendor_lttpr_write_data_intercept_dis));
+
+ if (dpcd_status == DC_OK)
+ break;
+
+ core_link_write_dpcd(
+ link,
+ vendor_lttpr_write_address,
+ &vendor_lttpr_write_data_intercept_en[0],
+ sizeof(vendor_lttpr_write_data_intercept_en));
+ }
+ } else {
+ vendor_lttpr_write_data_vs[3] = 0;
+ vendor_lttpr_write_data_pe[3] = 0;
+
+ for (lane = 0; lane < lane_count; lane++) {
+ vendor_lttpr_write_data_vs[3] |=
+ lt_settings->dpcd_lane_settings[lane].bits.VOLTAGE_SWING_SET << (2 * lane);
+ vendor_lttpr_write_data_pe[3] |=
+ lt_settings->dpcd_lane_settings[lane].bits.PRE_EMPHASIS_SET << (2 * lane);
+ }
+
+ /* Vendor specific: Update VS and PE to DPRX requested value */
+ core_link_write_dpcd(
+ link,
+ vendor_lttpr_write_address,
+ &vendor_lttpr_write_data_vs[0],
+ sizeof(vendor_lttpr_write_data_vs));
+ core_link_write_dpcd(
+ link,
+ vendor_lttpr_write_address,
+ &vendor_lttpr_write_data_pe[0],
+ sizeof(vendor_lttpr_write_data_pe));
+
+ dpcd_set_lane_settings(
+ link,
+ lt_settings,
+ 0);
+ }
+
+ /* 3. wait receiver to lock-on*/
+ wait_time_microsec = lt_settings->cr_pattern_time;
+
+ dp_wait_for_training_aux_rd_interval(
+ link,
+ wait_time_microsec);
+
+ /* 4. Read lane status and requested drive
+ * settings as set by the sink
+ */
+ dp_get_lane_status_and_lane_adjust(
+ link,
+ lt_settings,
+ dpcd_lane_status,
+ &dpcd_lane_status_updated,
+ dpcd_lane_adjust,
+ 0);
+
+ /* 5. check CR done*/
+ if (dp_is_cr_done(lane_count, dpcd_lane_status)) {
+ status = LINK_TRAINING_SUCCESS;
+ break;
+ }
+
+ /* 6. max VS reached*/
+ if (dp_is_max_vs_reached(lt_settings))
+ break;
+
+ /* 7. same lane settings */
+ /* Note: settings are the same for all lanes,
+ * so comparing first lane is sufficient
+ */
+ if (lt_settings->dpcd_lane_settings[0].bits.VOLTAGE_SWING_SET ==
+ dpcd_lane_adjust[0].bits.VOLTAGE_SWING_LANE)
+ retries_cr++;
+ else
+ retries_cr = 0;
+
+ /* 8. update VS/PE/PC2 in lt_settings*/
+ dp_decide_lane_settings(lt_settings, dpcd_lane_adjust,
+ lt_settings->hw_lane_settings, lt_settings->dpcd_lane_settings);
+ retry_count++;
+ }
+
+ if (retry_count >= LINK_TRAINING_MAX_CR_RETRY) {
+ ASSERT(0);
+ DC_LOG_ERROR("%s: Link Training Error, could not get CR after %d tries. Possibly voltage swing issue",
+ __func__,
+ LINK_TRAINING_MAX_CR_RETRY);
+
+ }
+
+ status = dp_get_cr_failure(lane_count, dpcd_lane_status);
+ }
+
+ /* Perform Channel EQ Sequence */
+ if (status == LINK_TRAINING_SUCCESS) {
+ enum dc_dp_training_pattern tr_pattern;
+ uint32_t retries_ch_eq;
+ uint32_t wait_time_microsec;
+ enum dc_lane_count lane_count = lt_settings->link_settings.lane_count;
+ union lane_align_status_updated dpcd_lane_status_updated = {0};
+ union lane_status dpcd_lane_status[LANE_COUNT_DP_MAX] = {0};
+ union lane_adjust dpcd_lane_adjust[LANE_COUNT_DP_MAX] = {0};
+
+ core_link_write_dpcd(
+ link,
+ vendor_lttpr_write_address,
+ &vendor_lttpr_write_data_adicora_eq1[0],
+ sizeof(vendor_lttpr_write_data_adicora_eq1));
+ core_link_write_dpcd(
+ link,
+ vendor_lttpr_write_address,
+ &vendor_lttpr_write_data_adicora_eq2[0],
+ sizeof(vendor_lttpr_write_data_adicora_eq2));
+
+ /* Note: also check that TPS4 is a supported feature*/
+ tr_pattern = lt_settings->pattern_for_eq;
+
+ dp_set_hw_training_pattern(link, link_res, tr_pattern, 0);
+
+ status = LINK_TRAINING_EQ_FAIL_EQ;
+
+ for (retries_ch_eq = 0; retries_ch_eq <= LINK_TRAINING_MAX_RETRY_COUNT;
+ retries_ch_eq++) {
+
+ dp_set_hw_lane_settings(link, link_res, lt_settings, 0);
+
+ vendor_lttpr_write_data_vs[3] = 0;
+ vendor_lttpr_write_data_pe[3] = 0;
+
+ for (lane = 0; lane < lane_count; lane++) {
+ vendor_lttpr_write_data_vs[3] |=
+ lt_settings->dpcd_lane_settings[lane].bits.VOLTAGE_SWING_SET << (2 * lane);
+ vendor_lttpr_write_data_pe[3] |=
+ lt_settings->dpcd_lane_settings[lane].bits.PRE_EMPHASIS_SET << (2 * lane);
+ }
+
+ /* Vendor specific: Update VS and PE to DPRX requested value */
+ core_link_write_dpcd(
+ link,
+ vendor_lttpr_write_address,
+ &vendor_lttpr_write_data_vs[0],
+ sizeof(vendor_lttpr_write_data_vs));
+ core_link_write_dpcd(
+ link,
+ vendor_lttpr_write_address,
+ &vendor_lttpr_write_data_pe[0],
+ sizeof(vendor_lttpr_write_data_pe));
+
+ /* 2. update DPCD*/
+ if (!retries_ch_eq) {
+ /* EPR #361076 - write as a 5-byte burst,
+ * but only for the 1-st iteration
+ */
+
+ dpcd_set_lt_pattern_and_lane_settings(
+ link,
+ lt_settings,
+ tr_pattern, 0);
+
+ core_link_write_dpcd(
+ link,
+ vendor_lttpr_write_address,
+ &vendor_lttpr_write_data_adicora_eq3[0],
+ sizeof(vendor_lttpr_write_data_adicora_eq3));
+ } else
+ dpcd_set_lane_settings(link, lt_settings, 0);
+
+ /* 3. wait for receiver to lock-on*/
+ wait_time_microsec = lt_settings->eq_pattern_time;
+
+ dp_wait_for_training_aux_rd_interval(
+ link,
+ wait_time_microsec);
+
+ /* 4. Read lane status and requested
+ * drive settings as set by the sink
+ */
+ dp_get_lane_status_and_lane_adjust(
+ link,
+ lt_settings,
+ dpcd_lane_status,
+ &dpcd_lane_status_updated,
+ dpcd_lane_adjust,
+ 0);
+
+ /* 5. check CR done*/
+ if (!dp_is_cr_done(lane_count, dpcd_lane_status)) {
+ status = LINK_TRAINING_EQ_FAIL_CR;
+ break;
+ }
+
+ /* 6. check CHEQ done*/
+ if (dp_is_ch_eq_done(lane_count, dpcd_lane_status) &&
+ dp_is_symbol_locked(lane_count, dpcd_lane_status) &&
+ dp_is_interlane_aligned(dpcd_lane_status_updated)) {
+ status = LINK_TRAINING_SUCCESS;
+ break;
+ }
+
+ /* 7. update VS/PE/PC2 in lt_settings*/
+ dp_decide_lane_settings(lt_settings, dpcd_lane_adjust,
+ lt_settings->hw_lane_settings, lt_settings->dpcd_lane_settings);
+ }
+ }
+
+ return status;
+}
diff --git a/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training_fixed_vs_pe_retimer.h b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training_fixed_vs_pe_retimer.h
new file mode 100644
index 000000000000..c0d6ea329504
--- /dev/null
+++ b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dp_training_fixed_vs_pe_retimer.h
@@ -0,0 +1,50 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ * Authors: AMD
+ *
+ */
+
+
+#ifndef __DC_LINK_DP_FIXED_VS_PE_RETIMER_H__
+#define __DC_LINK_DP_FIXED_VS_PE_RETIMER_H__
+#include "link_dp_training.h"
+
+enum link_training_result dp_perform_fixed_vs_pe_training_sequence_legacy(
+ struct dc_link *link,
+ const struct link_resource *link_res,
+ struct link_training_settings *lt_settings);
+
+enum link_training_result dp_perform_fixed_vs_pe_training_sequence(
+ struct dc_link *link,
+ const struct link_resource *link_res,
+ struct link_training_settings *lt_settings);
+
+void dp_fixed_vs_pe_set_retimer_lane_settings(
+ struct dc_link *link,
+ const union dpcd_training_lane dpcd_lane_adjust[LANE_COUNT_DP_MAX],
+ uint8_t lane_count);
+
+void dp_fixed_vs_pe_read_lane_adjust(
+ struct dc_link *link,
+ union dpcd_training_lane dpcd_lane_adjust[LANE_COUNT_DP_MAX]);
+
+#endif /* __DC_LINK_DP_FIXED_VS_PE_RETIMER_H__ */
diff --git a/drivers/gpu/drm/amd/display/dc/core/dc_link_dpcd.c b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dpcd.c
index af110bf9470f..5c9a30211c10 100644
--- a/drivers/gpu/drm/amd/display/dc/core/dc_link_dpcd.c
+++ b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dpcd.c
@@ -23,11 +23,14 @@
*
*/
-#include <inc/core_status.h>
-#include <dc_link.h>
-#include <inc/link_hwss.h>
-#include <inc/link_dpcd.h>
-#include <dc_dp_types.h>
+/* FILE POLICY AND INTENDED USAGE:
+ *
+ * This file implements basic dpcd read/write functionality. It also does basic
+ * dpcd range check to ensure that every dpcd request is compliant with specs
+ * range requirements.
+ */
+
+#include "link_dpcd.h"
#include <drm/display/drm_dp_helper.h>
#include "dm_helpers.h"
diff --git a/drivers/gpu/drm/amd/display/dc/inc/link_dpcd.h b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dpcd.h
index d561f86d503c..08d787a1e451 100644
--- a/drivers/gpu/drm/amd/display/dc/inc/link_dpcd.h
+++ b/drivers/gpu/drm/amd/display/dc/link/protocols/link_dpcd.h
@@ -25,9 +25,8 @@
#ifndef __LINK_DPCD_H__
#define __LINK_DPCD_H__
-#include <inc/core_status.h>
-#include <dc_link.h>
-#include <dc_link_dp.h>
+#include "link.h"
+#include "dpcd_defs.h"
enum dc_status core_link_read_dpcd(
struct dc_link *link,
diff --git a/drivers/gpu/drm/amd/display/dc/link/protocols/link_edp_panel_control.c b/drivers/gpu/drm/amd/display/dc/link/protocols/link_edp_panel_control.c
new file mode 100644
index 000000000000..8d1df863659c
--- /dev/null
+++ b/drivers/gpu/drm/amd/display/dc/link/protocols/link_edp_panel_control.c
@@ -0,0 +1,834 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ * Authors: AMD
+ *
+ */
+
+/* FILE POLICY AND INTENDED USAGE:
+ * This file implements retrieval and configuration of eDP panel features such
+ * as PSR and ABM and it also manages specs defined eDP panel power sequences.
+ */
+
+#include "link_edp_panel_control.h"
+#include "link_dpcd.h"
+#include "link_dp_capability.h"
+#include "dm_helpers.h"
+#include "dal_asic_id.h"
+#include "dce/dmub_psr.h"
+#include "abm.h"
+#define DC_LOGGER_INIT(logger)
+
+/* Travis */
+static const uint8_t DP_VGA_LVDS_CONVERTER_ID_2[] = "sivarT";
+/* Nutmeg */
+static const uint8_t DP_VGA_LVDS_CONVERTER_ID_3[] = "dnomlA";
+
+void dp_set_panel_mode(struct dc_link *link, enum dp_panel_mode panel_mode)
+{
+ union dpcd_edp_config edp_config_set;
+ bool panel_mode_edp = false;
+
+ memset(&edp_config_set, '\0', sizeof(union dpcd_edp_config));
+
+ if (panel_mode != DP_PANEL_MODE_DEFAULT) {
+
+ switch (panel_mode) {
+ case DP_PANEL_MODE_EDP:
+ case DP_PANEL_MODE_SPECIAL:
+ panel_mode_edp = true;
+ break;
+
+ default:
+ break;
+ }
+
+ /*set edp panel mode in receiver*/
+ core_link_read_dpcd(
+ link,
+ DP_EDP_CONFIGURATION_SET,
+ &edp_config_set.raw,
+ sizeof(edp_config_set.raw));
+
+ if (edp_config_set.bits.PANEL_MODE_EDP
+ != panel_mode_edp) {
+ enum dc_status result;
+
+ edp_config_set.bits.PANEL_MODE_EDP =
+ panel_mode_edp;
+ result = core_link_write_dpcd(
+ link,
+ DP_EDP_CONFIGURATION_SET,
+ &edp_config_set.raw,
+ sizeof(edp_config_set.raw));
+
+ ASSERT(result == DC_OK);
+ }
+ }
+ link->panel_mode = panel_mode;
+ DC_LOG_DETECTION_DP_CAPS("Link: %d eDP panel mode supported: %d "
+ "eDP panel mode enabled: %d \n",
+ link->link_index,
+ link->dpcd_caps.panel_mode_edp,
+ panel_mode_edp);
+}
+
+enum dp_panel_mode dp_get_panel_mode(struct dc_link *link)
+{
+ /* We need to explicitly check that connector
+ * is not DP. Some Travis_VGA get reported
+ * by video bios as DP.
+ */
+ if (link->connector_signal != SIGNAL_TYPE_DISPLAY_PORT) {
+
+ switch (link->dpcd_caps.branch_dev_id) {
+ case DP_BRANCH_DEVICE_ID_0022B9:
+ /* alternate scrambler reset is required for Travis
+ * for the case when external chip does not
+ * provide sink device id, alternate scrambler
+ * scheme will be overriden later by querying
+ * Encoder features
+ */
+ if (strncmp(
+ link->dpcd_caps.branch_dev_name,
+ DP_VGA_LVDS_CONVERTER_ID_2,
+ sizeof(
+ link->dpcd_caps.
+ branch_dev_name)) == 0) {
+ return DP_PANEL_MODE_SPECIAL;
+ }
+ break;
+ case DP_BRANCH_DEVICE_ID_00001A:
+ /* alternate scrambler reset is required for Travis
+ * for the case when external chip does not provide
+ * sink device id, alternate scrambler scheme will
+ * be overriden later by querying Encoder feature
+ */
+ if (strncmp(link->dpcd_caps.branch_dev_name,
+ DP_VGA_LVDS_CONVERTER_ID_3,
+ sizeof(
+ link->dpcd_caps.
+ branch_dev_name)) == 0) {
+ return DP_PANEL_MODE_SPECIAL;
+ }
+ break;
+ default:
+ break;
+ }
+ }
+
+ if (link->dpcd_caps.panel_mode_edp &&
+ (link->connector_signal == SIGNAL_TYPE_EDP ||
+ (link->connector_signal == SIGNAL_TYPE_DISPLAY_PORT &&
+ link->is_internal_display))) {
+ return DP_PANEL_MODE_EDP;
+ }
+
+ return DP_PANEL_MODE_DEFAULT;
+}
+
+bool edp_set_backlight_level_nits(struct dc_link *link,
+ bool isHDR,
+ uint32_t backlight_millinits,
+ uint32_t transition_time_in_ms)
+{
+ struct dpcd_source_backlight_set dpcd_backlight_set;
+ uint8_t backlight_control = isHDR ? 1 : 0;
+
+ if (!link || (link->connector_signal != SIGNAL_TYPE_EDP &&
+ link->connector_signal != SIGNAL_TYPE_DISPLAY_PORT))
+ return false;
+
+ // OLEDs have no PWM, they can only use AUX
+ if (link->dpcd_sink_ext_caps.bits.oled == 1)
+ backlight_control = 1;
+
+ *(uint32_t *)&dpcd_backlight_set.backlight_level_millinits = backlight_millinits;
+ *(uint16_t *)&dpcd_backlight_set.backlight_transition_time_ms = (uint16_t)transition_time_in_ms;
+
+
+ if (core_link_write_dpcd(link, DP_SOURCE_BACKLIGHT_LEVEL,
+ (uint8_t *)(&dpcd_backlight_set),
+ sizeof(dpcd_backlight_set)) != DC_OK)
+ return false;
+
+ if (core_link_write_dpcd(link, DP_SOURCE_BACKLIGHT_CONTROL,
+ &backlight_control, 1) != DC_OK)
+ return false;
+
+ return true;
+}
+
+bool edp_get_backlight_level_nits(struct dc_link *link,
+ uint32_t *backlight_millinits_avg,
+ uint32_t *backlight_millinits_peak)
+{
+ union dpcd_source_backlight_get dpcd_backlight_get;
+
+ memset(&dpcd_backlight_get, 0, sizeof(union dpcd_source_backlight_get));
+
+ if (!link || (link->connector_signal != SIGNAL_TYPE_EDP &&
+ link->connector_signal != SIGNAL_TYPE_DISPLAY_PORT))
+ return false;
+
+ if (!core_link_read_dpcd(link, DP_SOURCE_BACKLIGHT_CURRENT_PEAK,
+ dpcd_backlight_get.raw,
+ sizeof(union dpcd_source_backlight_get)))
+ return false;
+
+ *backlight_millinits_avg =
+ dpcd_backlight_get.bytes.backlight_millinits_avg;
+ *backlight_millinits_peak =
+ dpcd_backlight_get.bytes.backlight_millinits_peak;
+
+ /* On non-supported panels dpcd_read usually succeeds with 0 returned */
+ if (*backlight_millinits_avg == 0 ||
+ *backlight_millinits_avg > *backlight_millinits_peak)
+ return false;
+
+ return true;
+}
+
+bool edp_backlight_enable_aux(struct dc_link *link, bool enable)
+{
+ uint8_t backlight_enable = enable ? 1 : 0;
+
+ if (!link || (link->connector_signal != SIGNAL_TYPE_EDP &&
+ link->connector_signal != SIGNAL_TYPE_DISPLAY_PORT))
+ return false;
+
+ if (core_link_write_dpcd(link, DP_SOURCE_BACKLIGHT_ENABLE,
+ &backlight_enable, 1) != DC_OK)
+ return false;
+
+ return true;
+}
+
+// we read default from 0x320 because we expect BIOS wrote it there
+// regular get_backlight_nit reads from panel set at 0x326
+static bool read_default_bl_aux(struct dc_link *link, uint32_t *backlight_millinits)
+{
+ if (!link || (link->connector_signal != SIGNAL_TYPE_EDP &&
+ link->connector_signal != SIGNAL_TYPE_DISPLAY_PORT))
+ return false;
+
+ if (!core_link_read_dpcd(link, DP_SOURCE_BACKLIGHT_LEVEL,
+ (uint8_t *) backlight_millinits,
+ sizeof(uint32_t)))
+ return false;
+
+ return true;
+}
+
+bool set_default_brightness_aux(struct dc_link *link)
+{
+ uint32_t default_backlight;
+
+ if (link && link->dpcd_sink_ext_caps.bits.oled == 1) {
+ if (!read_default_bl_aux(link, &default_backlight))
+ default_backlight = 150000;
+ // if < 5 nits or > 5000, it might be wrong readback
+ if (default_backlight < 5000 || default_backlight > 5000000)
+ default_backlight = 150000; //
+
+ return edp_set_backlight_level_nits(link, true,
+ default_backlight, 0);
+ }
+ return false;
+}
+
+bool edp_is_ilr_optimization_required(struct dc_link *link,
+ struct dc_crtc_timing *crtc_timing)
+{
+ struct dc_link_settings link_setting;
+ uint8_t link_bw_set;
+ uint8_t link_rate_set;
+ uint32_t req_bw;
+ union lane_count_set lane_count_set = {0};
+
+ ASSERT(link || crtc_timing); // invalid input
+
+ if (link->dpcd_caps.edp_supported_link_rates_count == 0 ||
+ !link->panel_config.ilr.optimize_edp_link_rate)
+ return false;
+
+
+ // Read DPCD 00100h to find if standard link rates are set
+ core_link_read_dpcd(link, DP_LINK_BW_SET,
+ &link_bw_set, sizeof(link_bw_set));
+
+ if (link_bw_set) {
+ DC_LOG_EVENT_LINK_TRAINING("eDP ILR: Optimization required, VBIOS used link_bw_set\n");
+ return true;
+ }
+
+ // Read DPCD 00115h to find the edp link rate set used
+ core_link_read_dpcd(link, DP_LINK_RATE_SET,
+ &link_rate_set, sizeof(link_rate_set));
+
+ // Read DPCD 00101h to find out the number of lanes currently set
+ core_link_read_dpcd(link, DP_LANE_COUNT_SET,
+ &lane_count_set.raw, sizeof(lane_count_set));
+
+ req_bw = dc_bandwidth_in_kbps_from_timing(crtc_timing);
+
+ if (!crtc_timing->flags.DSC)
+ edp_decide_link_settings(link, &link_setting, req_bw);
+ else
+ decide_edp_link_settings_with_dsc(link, &link_setting, req_bw, LINK_RATE_UNKNOWN);
+
+ if (link->dpcd_caps.edp_supported_link_rates[link_rate_set] != link_setting.link_rate ||
+ lane_count_set.bits.LANE_COUNT_SET != link_setting.lane_count) {
+ DC_LOG_EVENT_LINK_TRAINING("eDP ILR: Optimization required, VBIOS link_rate_set not optimal\n");
+ return true;
+ }
+
+ DC_LOG_EVENT_LINK_TRAINING("eDP ILR: No optimization required, VBIOS set optimal link_rate_set\n");
+ return false;
+}
+
+void edp_panel_backlight_power_on(struct dc_link *link, bool wait_for_hpd)
+{
+ if (link->connector_signal != SIGNAL_TYPE_EDP)
+ return;
+
+ link->dc->hwss.edp_power_control(link, true);
+ if (wait_for_hpd)
+ link->dc->hwss.edp_wait_for_hpd_ready(link, true);
+ if (link->dc->hwss.edp_backlight_control)
+ link->dc->hwss.edp_backlight_control(link, true);
+}
+
+bool edp_wait_for_t12(struct dc_link *link)
+{
+ if (link->connector_signal == SIGNAL_TYPE_EDP && link->dc->hwss.edp_wait_for_T12) {
+ link->dc->hwss.edp_wait_for_T12(link);
+
+ return true;
+ }
+
+ return false;
+}
+
+void edp_add_delay_for_T9(struct dc_link *link)
+{
+ if (link && link->panel_config.pps.extra_delay_backlight_off > 0)
+ fsleep(link->panel_config.pps.extra_delay_backlight_off * 1000);
+}
+
+bool edp_receiver_ready_T9(struct dc_link *link)
+{
+ unsigned int tries = 0;
+ unsigned char sinkstatus = 0;
+ unsigned char edpRev = 0;
+ enum dc_status result = DC_OK;
+
+ result = core_link_read_dpcd(link, DP_EDP_DPCD_REV, &edpRev, sizeof(edpRev));
+
+ /* start from eDP version 1.2, SINK_STAUS indicate the sink is ready.*/
+ if (result == DC_OK && edpRev >= DP_EDP_12) {
+ do {
+ sinkstatus = 1;
+ result = core_link_read_dpcd(link, DP_SINK_STATUS, &sinkstatus, sizeof(sinkstatus));
+ if (sinkstatus == 0)
+ break;
+ if (result != DC_OK)
+ break;
+ udelay(100); //MAx T9
+ } while (++tries < 50);
+ }
+
+ return result;
+}
+
+bool edp_receiver_ready_T7(struct dc_link *link)
+{
+ unsigned char sinkstatus = 0;
+ unsigned char edpRev = 0;
+ enum dc_status result = DC_OK;
+
+ /* use absolute time stamp to constrain max T7*/
+ unsigned long long enter_timestamp = 0;
+ unsigned long long finish_timestamp = 0;
+ unsigned long long time_taken_in_ns = 0;
+
+ result = core_link_read_dpcd(link, DP_EDP_DPCD_REV, &edpRev, sizeof(edpRev));
+
+ if (result == DC_OK && edpRev >= DP_EDP_12) {
+ /* start from eDP version 1.2, SINK_STAUS indicate the sink is ready.*/
+ enter_timestamp = dm_get_timestamp(link->ctx);
+ do {
+ sinkstatus = 0;
+ result = core_link_read_dpcd(link, DP_SINK_STATUS, &sinkstatus, sizeof(sinkstatus));
+ if (sinkstatus == 1)
+ break;
+ if (result != DC_OK)
+ break;
+ udelay(25);
+ finish_timestamp = dm_get_timestamp(link->ctx);
+ time_taken_in_ns = dm_get_elapse_time_in_ns(link->ctx, finish_timestamp, enter_timestamp);
+ } while (time_taken_in_ns < 50 * 1000000); //MAx T7 is 50ms
+ }
+
+ if (link && link->panel_config.pps.extra_t7_ms > 0)
+ fsleep(link->panel_config.pps.extra_t7_ms * 1000);
+
+ return result;
+}
+
+bool edp_power_alpm_dpcd_enable(struct dc_link *link, bool enable)
+{
+ bool ret = false;
+ union dpcd_alpm_configuration alpm_config;
+
+ if (link->psr_settings.psr_version == DC_PSR_VERSION_SU_1) {
+ memset(&alpm_config, 0, sizeof(alpm_config));
+
+ alpm_config.bits.ENABLE = (enable ? true : false);
+ ret = dm_helpers_dp_write_dpcd(link->ctx, link,
+ DP_RECEIVER_ALPM_CONFIG, &alpm_config.raw,
+ sizeof(alpm_config.raw));
+ }
+ return ret;
+}
+
+static struct pipe_ctx *get_pipe_from_link(const struct dc_link *link)
+{
+ int i;
+ struct dc *dc = link->ctx->dc;
+ struct pipe_ctx *pipe_ctx = NULL;
+
+ for (i = 0; i < MAX_PIPES; i++) {
+ if (dc->current_state->res_ctx.pipe_ctx[i].stream) {
+ if (dc->current_state->res_ctx.pipe_ctx[i].stream->link == link) {
+ pipe_ctx = &dc->current_state->res_ctx.pipe_ctx[i];
+ break;
+ }
+ }
+ }
+
+ return pipe_ctx;
+}
+
+bool edp_set_backlight_level(const struct dc_link *link,
+ uint32_t backlight_pwm_u16_16,
+ uint32_t frame_ramp)
+{
+ struct dc *dc = link->ctx->dc;
+
+ DC_LOGGER_INIT(link->ctx->logger);
+ DC_LOG_BACKLIGHT("New Backlight level: %d (0x%X)\n",
+ backlight_pwm_u16_16, backlight_pwm_u16_16);
+
+ if (dc_is_embedded_signal(link->connector_signal)) {
+ struct pipe_ctx *pipe_ctx = get_pipe_from_link(link);
+
+ if (pipe_ctx) {
+ /* Disable brightness ramping when the display is blanked
+ * as it can hang the DMCU
+ */
+ if (pipe_ctx->plane_state == NULL)
+ frame_ramp = 0;
+ } else {
+ return false;
+ }
+
+ dc->hwss.set_backlight_level(
+ pipe_ctx,
+ backlight_pwm_u16_16,
+ frame_ramp);
+ }
+ return true;
+}
+
+bool edp_set_psr_allow_active(struct dc_link *link, const bool *allow_active,
+ bool wait, bool force_static, const unsigned int *power_opts)
+{
+ struct dc *dc = link->ctx->dc;
+ struct dmcu *dmcu = dc->res_pool->dmcu;
+ struct dmub_psr *psr = dc->res_pool->psr;
+ unsigned int panel_inst;
+
+ if (psr == NULL && force_static)
+ return false;
+
+ if (!dc_get_edp_link_panel_inst(dc, link, &panel_inst))
+ return false;
+
+ if ((allow_active != NULL) && (*allow_active == true) && (link->type == dc_connection_none)) {
+ // Don't enter PSR if panel is not connected
+ return false;
+ }
+
+ /* Set power optimization flag */
+ if (power_opts && link->psr_settings.psr_power_opt != *power_opts) {
+ link->psr_settings.psr_power_opt = *power_opts;
+
+ if (psr != NULL && link->psr_settings.psr_feature_enabled && psr->funcs->psr_set_power_opt)
+ psr->funcs->psr_set_power_opt(psr, link->psr_settings.psr_power_opt, panel_inst);
+ }
+
+ if (psr != NULL && link->psr_settings.psr_feature_enabled &&
+ force_static && psr->funcs->psr_force_static)
+ psr->funcs->psr_force_static(psr, panel_inst);
+
+ /* Enable or Disable PSR */
+ if (allow_active && link->psr_settings.psr_allow_active != *allow_active) {
+ link->psr_settings.psr_allow_active = *allow_active;
+
+ if (!link->psr_settings.psr_allow_active)
+ dc_z10_restore(dc);
+
+ if (psr != NULL && link->psr_settings.psr_feature_enabled) {
+ psr->funcs->psr_enable(psr, link->psr_settings.psr_allow_active, wait, panel_inst);
+ } else if ((dmcu != NULL && dmcu->funcs->is_dmcu_initialized(dmcu)) &&
+ link->psr_settings.psr_feature_enabled)
+ dmcu->funcs->set_psr_enable(dmcu, link->psr_settings.psr_allow_active, wait);
+ else
+ return false;
+ }
+ return true;
+}
+
+bool edp_get_psr_state(const struct dc_link *link, enum dc_psr_state *state)
+{
+ struct dc *dc = link->ctx->dc;
+ struct dmcu *dmcu = dc->res_pool->dmcu;
+ struct dmub_psr *psr = dc->res_pool->psr;
+ unsigned int panel_inst;
+
+ if (!dc_get_edp_link_panel_inst(dc, link, &panel_inst))
+ return false;
+
+ if (psr != NULL && link->psr_settings.psr_feature_enabled)
+ psr->funcs->psr_get_state(psr, state, panel_inst);
+ else if (dmcu != NULL && link->psr_settings.psr_feature_enabled)
+ dmcu->funcs->get_psr_state(dmcu, state);
+
+ return true;
+}
+
+static inline enum physical_phy_id
+transmitter_to_phy_id(struct dc_link *link)
+{
+ struct dc_context *dc_ctx = link->ctx;
+ enum transmitter transmitter_value = link->link_enc->transmitter;
+
+ switch (transmitter_value) {
+ case TRANSMITTER_UNIPHY_A:
+ return PHYLD_0;
+ case TRANSMITTER_UNIPHY_B:
+ return PHYLD_1;
+ case TRANSMITTER_UNIPHY_C:
+ return PHYLD_2;
+ case TRANSMITTER_UNIPHY_D:
+ return PHYLD_3;
+ case TRANSMITTER_UNIPHY_E:
+ return PHYLD_4;
+ case TRANSMITTER_UNIPHY_F:
+ return PHYLD_5;
+ case TRANSMITTER_NUTMEG_CRT:
+ return PHYLD_6;
+ case TRANSMITTER_TRAVIS_CRT:
+ return PHYLD_7;
+ case TRANSMITTER_TRAVIS_LCD:
+ return PHYLD_8;
+ case TRANSMITTER_UNIPHY_G:
+ return PHYLD_9;
+ case TRANSMITTER_COUNT:
+ return PHYLD_COUNT;
+ case TRANSMITTER_UNKNOWN:
+ return PHYLD_UNKNOWN;
+ default:
+ DC_ERROR("Unknown transmitter value %d\n", transmitter_value);
+ return PHYLD_UNKNOWN;
+ }
+}
+
+bool edp_setup_psr(struct dc_link *link,
+ const struct dc_stream_state *stream, struct psr_config *psr_config,
+ struct psr_context *psr_context)
+{
+ struct dc *dc;
+ struct dmcu *dmcu;
+ struct dmub_psr *psr;
+ int i;
+ unsigned int panel_inst;
+ /* updateSinkPsrDpcdConfig*/
+ union dpcd_psr_configuration psr_configuration;
+ union dpcd_sink_active_vtotal_control_mode vtotal_control = {0};
+
+ psr_context->controllerId = CONTROLLER_ID_UNDEFINED;
+
+ if (!link)
+ return false;
+
+ dc = link->ctx->dc;
+ dmcu = dc->res_pool->dmcu;
+ psr = dc->res_pool->psr;
+
+ if (!dmcu && !psr)
+ return false;
+
+ if (!dc_get_edp_link_panel_inst(dc, link, &panel_inst))
+ return false;
+
+
+ memset(&psr_configuration, 0, sizeof(psr_configuration));
+
+ psr_configuration.bits.ENABLE = 1;
+ psr_configuration.bits.CRC_VERIFICATION = 1;
+ psr_configuration.bits.FRAME_CAPTURE_INDICATION =
+ psr_config->psr_frame_capture_indication_req;
+
+ /* Check for PSR v2*/
+ if (link->psr_settings.psr_version == DC_PSR_VERSION_SU_1) {
+ /* For PSR v2 selective update.
+ * Indicates whether sink should start capturing
+ * immediately following active scan line,
+ * or starting with the 2nd active scan line.
+ */
+ psr_configuration.bits.LINE_CAPTURE_INDICATION = 0;
+ /*For PSR v2, determines whether Sink should generate
+ * IRQ_HPD when CRC mismatch is detected.
+ */
+ psr_configuration.bits.IRQ_HPD_WITH_CRC_ERROR = 1;
+ /* For PSR v2, set the bit when the Source device will
+ * be enabling PSR2 operation.
+ */
+ psr_configuration.bits.ENABLE_PSR2 = 1;
+ /* For PSR v2, the Sink device must be able to receive
+ * SU region updates early in the frame time.
+ */
+ psr_configuration.bits.EARLY_TRANSPORT_ENABLE = 1;
+ }
+
+ dm_helpers_dp_write_dpcd(
+ link->ctx,
+ link,
+ 368,
+ &psr_configuration.raw,
+ sizeof(psr_configuration.raw));
+
+ if (link->psr_settings.psr_version == DC_PSR_VERSION_SU_1) {
+ edp_power_alpm_dpcd_enable(link, true);
+ psr_context->su_granularity_required =
+ psr_config->su_granularity_required;
+ psr_context->su_y_granularity =
+ psr_config->su_y_granularity;
+ psr_context->line_time_in_us = psr_config->line_time_in_us;
+
+ /* linux must be able to expose AMD Source DPCD definition
+ * in order to support FreeSync PSR
+ */
+ if (link->psr_settings.psr_vtotal_control_support) {
+ psr_context->rate_control_caps = psr_config->rate_control_caps;
+ vtotal_control.bits.ENABLE = true;
+ core_link_write_dpcd(link, DP_SINK_PSR_ACTIVE_VTOTAL_CONTROL_MODE,
+ &vtotal_control.raw, sizeof(vtotal_control.raw));
+ }
+ }
+
+ psr_context->channel = link->ddc->ddc_pin->hw_info.ddc_channel;
+ psr_context->transmitterId = link->link_enc->transmitter;
+ psr_context->engineId = link->link_enc->preferred_engine;
+
+ for (i = 0; i < MAX_PIPES; i++) {
+ if (dc->current_state->res_ctx.pipe_ctx[i].stream
+ == stream) {
+ /* dmcu -1 for all controller id values,
+ * therefore +1 here
+ */
+ psr_context->controllerId =
+ dc->current_state->res_ctx.
+ pipe_ctx[i].stream_res.tg->inst + 1;
+ break;
+ }
+ }
+
+ /* Hardcoded for now. Can be Pcie or Uniphy (or Unknown)*/
+ psr_context->phyType = PHY_TYPE_UNIPHY;
+ /*PhyId is associated with the transmitter id*/
+ psr_context->smuPhyId = transmitter_to_phy_id(link);
+
+ psr_context->crtcTimingVerticalTotal = stream->timing.v_total;
+ psr_context->vsync_rate_hz = div64_u64(div64_u64((stream->
+ timing.pix_clk_100hz * 100),
+ stream->timing.v_total),
+ stream->timing.h_total);
+
+ psr_context->psrSupportedDisplayConfig = true;
+ psr_context->psrExitLinkTrainingRequired =
+ psr_config->psr_exit_link_training_required;
+ psr_context->sdpTransmitLineNumDeadline =
+ psr_config->psr_sdp_transmit_line_num_deadline;
+ psr_context->psrFrameCaptureIndicationReq =
+ psr_config->psr_frame_capture_indication_req;
+
+ psr_context->skipPsrWaitForPllLock = 0; /* only = 1 in KV */
+
+ psr_context->numberOfControllers =
+ link->dc->res_pool->timing_generator_count;
+
+ psr_context->rfb_update_auto_en = true;
+
+ /* 2 frames before enter PSR. */
+ psr_context->timehyst_frames = 2;
+ /* half a frame
+ * (units in 100 lines, i.e. a value of 1 represents 100 lines)
+ */
+ psr_context->hyst_lines = stream->timing.v_total / 2 / 100;
+ psr_context->aux_repeats = 10;
+
+ psr_context->psr_level.u32all = 0;
+
+ /*skip power down the single pipe since it blocks the cstate*/
+ if (link->ctx->asic_id.chip_family >= FAMILY_RV) {
+ switch (link->ctx->asic_id.chip_family) {
+ case FAMILY_YELLOW_CARP:
+ case AMDGPU_FAMILY_GC_10_3_6:
+ case AMDGPU_FAMILY_GC_11_0_1:
+ if (dc->debug.disable_z10 || dc->debug.psr_skip_crtc_disable)
+ psr_context->psr_level.bits.SKIP_CRTC_DISABLE = true;
+ break;
+ default:
+ psr_context->psr_level.bits.SKIP_CRTC_DISABLE = true;
+ break;
+ }
+ }
+
+ /* SMU will perform additional powerdown sequence.
+ * For unsupported ASICs, set psr_level flag to skip PSR
+ * static screen notification to SMU.
+ * (Always set for DAL2, did not check ASIC)
+ */
+ psr_context->allow_smu_optimizations = psr_config->allow_smu_optimizations;
+ psr_context->allow_multi_disp_optimizations = psr_config->allow_multi_disp_optimizations;
+
+ /* Complete PSR entry before aborting to prevent intermittent
+ * freezes on certain eDPs
+ */
+ psr_context->psr_level.bits.DISABLE_PSR_ENTRY_ABORT = 1;
+
+ /* Disable ALPM first for compatible non-ALPM panel now */
+ psr_context->psr_level.bits.DISABLE_ALPM = 0;
+ psr_context->psr_level.bits.ALPM_DEFAULT_PD_MODE = 1;
+
+ /* Controls additional delay after remote frame capture before
+ * continuing power down, default = 0
+ */
+ psr_context->frame_delay = 0;
+
+ psr_context->dsc_slice_height = psr_config->dsc_slice_height;
+
+ if (psr) {
+ link->psr_settings.psr_feature_enabled = psr->funcs->psr_copy_settings(psr,
+ link, psr_context, panel_inst);
+ link->psr_settings.psr_power_opt = 0;
+ link->psr_settings.psr_allow_active = 0;
+ } else {
+ link->psr_settings.psr_feature_enabled = dmcu->funcs->setup_psr(dmcu, link, psr_context);
+ }
+
+ /* psr_enabled == 0 indicates setup_psr did not succeed, but this
+ * should not happen since firmware should be running at this point
+ */
+ if (link->psr_settings.psr_feature_enabled == 0)
+ ASSERT(0);
+
+ return true;
+
+}
+
+void edp_get_psr_residency(const struct dc_link *link, uint32_t *residency)
+{
+ struct dc *dc = link->ctx->dc;
+ struct dmub_psr *psr = dc->res_pool->psr;
+ unsigned int panel_inst;
+
+ if (!dc_get_edp_link_panel_inst(dc, link, &panel_inst))
+ return;
+
+ // PSR residency measurements only supported on DMCUB
+ if (psr != NULL && link->psr_settings.psr_feature_enabled)
+ psr->funcs->psr_get_residency(psr, residency, panel_inst);
+ else
+ *residency = 0;
+}
+bool edp_set_sink_vtotal_in_psr_active(const struct dc_link *link, uint16_t psr_vtotal_idle, uint16_t psr_vtotal_su)
+{
+ struct dc *dc = link->ctx->dc;
+ struct dmub_psr *psr = dc->res_pool->psr;
+
+ if (psr == NULL || !link->psr_settings.psr_feature_enabled || !link->psr_settings.psr_vtotal_control_support)
+ return false;
+
+ psr->funcs->psr_set_sink_vtotal_in_psr_active(psr, psr_vtotal_idle, psr_vtotal_su);
+
+ return true;
+}
+
+static struct abm *get_abm_from_stream_res(const struct dc_link *link)
+{
+ int i;
+ struct dc *dc = link->ctx->dc;
+ struct abm *abm = NULL;
+
+ for (i = 0; i < MAX_PIPES; i++) {
+ struct pipe_ctx pipe_ctx = dc->current_state->res_ctx.pipe_ctx[i];
+ struct dc_stream_state *stream = pipe_ctx.stream;
+
+ if (stream && stream->link == link) {
+ abm = pipe_ctx.stream_res.abm;
+ break;
+ }
+ }
+ return abm;
+}
+
+int edp_get_backlight_level(const struct dc_link *link)
+{
+ struct abm *abm = get_abm_from_stream_res(link);
+ struct panel_cntl *panel_cntl = link->panel_cntl;
+ struct dc *dc = link->ctx->dc;
+ struct dmcu *dmcu = dc->res_pool->dmcu;
+ bool fw_set_brightness = true;
+
+ if (dmcu)
+ fw_set_brightness = dmcu->funcs->is_dmcu_initialized(dmcu);
+
+ if (!fw_set_brightness && panel_cntl->funcs->get_current_backlight)
+ return panel_cntl->funcs->get_current_backlight(panel_cntl);
+ else if (abm != NULL && abm->funcs->get_current_backlight != NULL)
+ return (int) abm->funcs->get_current_backlight(abm);
+ else
+ return DC_ERROR_UNEXPECTED;
+}
+
+int edp_get_target_backlight_pwm(const struct dc_link *link)
+{
+ struct abm *abm = get_abm_from_stream_res(link);
+
+ if (abm == NULL || abm->funcs->get_target_backlight == NULL)
+ return DC_ERROR_UNEXPECTED;
+
+ return (int) abm->funcs->get_target_backlight(abm);
+}
diff --git a/drivers/gpu/drm/amd/display/dc/link/protocols/link_edp_panel_control.h b/drivers/gpu/drm/amd/display/dc/link/protocols/link_edp_panel_control.h
new file mode 100644
index 000000000000..28f552080558
--- /dev/null
+++ b/drivers/gpu/drm/amd/display/dc/link/protocols/link_edp_panel_control.h
@@ -0,0 +1,63 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ * Authors: AMD
+ *
+ */
+
+#ifndef __DC_LINK_EDP_PANEL_CONTROL_H__
+#define __DC_LINK_EDP_PANEL_CONTROL_H__
+#include "link.h"
+
+enum dp_panel_mode dp_get_panel_mode(struct dc_link *link);
+void dp_set_panel_mode(struct dc_link *link, enum dp_panel_mode panel_mode);
+bool set_default_brightness_aux(struct dc_link *link);
+void edp_panel_backlight_power_on(struct dc_link *link, bool wait_for_hpd);
+int edp_get_backlight_level(const struct dc_link *link);
+bool edp_get_backlight_level_nits(struct dc_link *link,
+ uint32_t *backlight_millinits_avg,
+ uint32_t *backlight_millinits_peak);
+bool edp_set_backlight_level(const struct dc_link *link,
+ uint32_t backlight_pwm_u16_16,
+ uint32_t frame_ramp);
+bool edp_set_backlight_level_nits(struct dc_link *link,
+ bool isHDR,
+ uint32_t backlight_millinits,
+ uint32_t transition_time_in_ms);
+int edp_get_target_backlight_pwm(const struct dc_link *link);
+bool edp_get_psr_state(const struct dc_link *link, enum dc_psr_state *state);
+bool edp_set_psr_allow_active(struct dc_link *link, const bool *allow_active,
+ bool wait, bool force_static, const unsigned int *power_opts);
+bool edp_setup_psr(struct dc_link *link,
+ const struct dc_stream_state *stream, struct psr_config *psr_config,
+ struct psr_context *psr_context);
+bool edp_set_sink_vtotal_in_psr_active(const struct dc_link *link,
+ uint16_t psr_vtotal_idle, uint16_t psr_vtotal_su);
+void edp_get_psr_residency(const struct dc_link *link, uint32_t *residency);
+bool edp_wait_for_t12(struct dc_link *link);
+bool edp_is_ilr_optimization_required(struct dc_link *link,
+ struct dc_crtc_timing *crtc_timing);
+bool edp_backlight_enable_aux(struct dc_link *link, bool enable);
+void edp_add_delay_for_T9(struct dc_link *link);
+bool edp_receiver_ready_T9(struct dc_link *link);
+bool edp_receiver_ready_T7(struct dc_link *link);
+bool edp_power_alpm_dpcd_enable(struct dc_link *link, bool enable);
+#endif /* __DC_LINK_EDP_POWER_CONTROL_H__ */
diff --git a/drivers/gpu/drm/amd/display/dc/link/protocols/link_hpd.c b/drivers/gpu/drm/amd/display/dc/link/protocols/link_hpd.c
new file mode 100644
index 000000000000..e3d729ab5b9f
--- /dev/null
+++ b/drivers/gpu/drm/amd/display/dc/link/protocols/link_hpd.c
@@ -0,0 +1,240 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ * Authors: AMD
+ *
+ */
+
+/* FILE POLICY AND INTENDED USAGE:
+ *
+ * This file implements functions that manage basic HPD components such as gpio.
+ * It also provides wrapper functions to execute HPD related programming. This
+ * file only manages basic HPD functionality. It doesn't manage detection or
+ * feature or signal specific HPD behaviors.
+ */
+#include "link_hpd.h"
+#include "gpio_service_interface.h"
+
+bool link_get_hpd_state(struct dc_link *link)
+{
+ uint32_t state;
+
+ dal_gpio_lock_pin(link->hpd_gpio);
+ dal_gpio_get_value(link->hpd_gpio, &state);
+ dal_gpio_unlock_pin(link->hpd_gpio);
+
+ return state;
+}
+
+void link_enable_hpd(const struct dc_link *link)
+{
+ struct link_encoder *encoder = link->link_enc;
+
+ if (encoder != NULL && encoder->funcs->enable_hpd != NULL)
+ encoder->funcs->enable_hpd(encoder);
+}
+
+void link_disable_hpd(const struct dc_link *link)
+{
+ struct link_encoder *encoder = link->link_enc;
+
+ if (encoder != NULL && encoder->funcs->enable_hpd != NULL)
+ encoder->funcs->disable_hpd(encoder);
+}
+
+void link_enable_hpd_filter(struct dc_link *link, bool enable)
+{
+ struct gpio *hpd;
+
+ if (enable) {
+ link->is_hpd_filter_disabled = false;
+ program_hpd_filter(link);
+ } else {
+ link->is_hpd_filter_disabled = true;
+ /* Obtain HPD handle */
+ hpd = link_get_hpd_gpio(link->ctx->dc_bios, link->link_id, link->ctx->gpio_service);
+
+ if (!hpd)
+ return;
+
+ /* Setup HPD filtering */
+ if (dal_gpio_open(hpd, GPIO_MODE_INTERRUPT) == GPIO_RESULT_OK) {
+ struct gpio_hpd_config config;
+
+ config.delay_on_connect = 0;
+ config.delay_on_disconnect = 0;
+
+ dal_irq_setup_hpd_filter(hpd, &config);
+
+ dal_gpio_close(hpd);
+ } else {
+ ASSERT_CRITICAL(false);
+ }
+ /* Release HPD handle */
+ dal_gpio_destroy_irq(&hpd);
+ }
+}
+
+struct gpio *link_get_hpd_gpio(struct dc_bios *dcb,
+ struct graphics_object_id link_id,
+ struct gpio_service *gpio_service)
+{
+ enum bp_result bp_result;
+ struct graphics_object_hpd_info hpd_info;
+ struct gpio_pin_info pin_info;
+
+ if (dcb->funcs->get_hpd_info(dcb, link_id, &hpd_info) != BP_RESULT_OK)
+ return NULL;
+
+ bp_result = dcb->funcs->get_gpio_pin_info(dcb,
+ hpd_info.hpd_int_gpio_uid, &pin_info);
+
+ if (bp_result != BP_RESULT_OK) {
+ ASSERT(bp_result == BP_RESULT_NORECORD);
+ return NULL;
+ }
+
+ return dal_gpio_service_create_irq(gpio_service,
+ pin_info.offset,
+ pin_info.mask);
+}
+
+bool query_hpd_status(struct dc_link *link, uint32_t *is_hpd_high)
+{
+ struct gpio *hpd_pin = link_get_hpd_gpio(
+ link->ctx->dc_bios, link->link_id,
+ link->ctx->gpio_service);
+ if (!hpd_pin)
+ return false;
+
+ dal_gpio_open(hpd_pin, GPIO_MODE_INTERRUPT);
+ dal_gpio_get_value(hpd_pin, is_hpd_high);
+ dal_gpio_close(hpd_pin);
+ dal_gpio_destroy_irq(&hpd_pin);
+ return true;
+}
+
+enum hpd_source_id get_hpd_line(struct dc_link *link)
+{
+ struct gpio *hpd;
+ enum hpd_source_id hpd_id;
+
+ hpd_id = HPD_SOURCEID_UNKNOWN;
+
+ hpd = link_get_hpd_gpio(link->ctx->dc_bios, link->link_id,
+ link->ctx->gpio_service);
+
+ if (hpd) {
+ switch (dal_irq_get_source(hpd)) {
+ case DC_IRQ_SOURCE_HPD1:
+ hpd_id = HPD_SOURCEID1;
+ break;
+ case DC_IRQ_SOURCE_HPD2:
+ hpd_id = HPD_SOURCEID2;
+ break;
+ case DC_IRQ_SOURCE_HPD3:
+ hpd_id = HPD_SOURCEID3;
+ break;
+ case DC_IRQ_SOURCE_HPD4:
+ hpd_id = HPD_SOURCEID4;
+ break;
+ case DC_IRQ_SOURCE_HPD5:
+ hpd_id = HPD_SOURCEID5;
+ break;
+ case DC_IRQ_SOURCE_HPD6:
+ hpd_id = HPD_SOURCEID6;
+ break;
+ default:
+ BREAK_TO_DEBUGGER();
+ break;
+ }
+
+ dal_gpio_destroy_irq(&hpd);
+ }
+
+ return hpd_id;
+}
+
+bool program_hpd_filter(const struct dc_link *link)
+{
+ bool result = false;
+ struct gpio *hpd;
+ int delay_on_connect_in_ms = 0;
+ int delay_on_disconnect_in_ms = 0;
+
+ if (link->is_hpd_filter_disabled)
+ return false;
+ /* Verify feature is supported */
+ switch (link->connector_signal) {
+ case SIGNAL_TYPE_DVI_SINGLE_LINK:
+ case SIGNAL_TYPE_DVI_DUAL_LINK:
+ case SIGNAL_TYPE_HDMI_TYPE_A:
+ /* Program hpd filter */
+ delay_on_connect_in_ms = 500;
+ delay_on_disconnect_in_ms = 100;
+ break;
+ case SIGNAL_TYPE_DISPLAY_PORT:
+ case SIGNAL_TYPE_DISPLAY_PORT_MST:
+ /* Program hpd filter to allow DP signal to settle */
+ /* 500: not able to detect MST <-> SST switch as HPD is low for
+ * only 100ms on DELL U2413
+ * 0: some passive dongle still show aux mode instead of i2c
+ * 20-50: not enough to hide bouncing HPD with passive dongle.
+ * also see intermittent i2c read issues.
+ */
+ delay_on_connect_in_ms = 80;
+ delay_on_disconnect_in_ms = 0;
+ break;
+ case SIGNAL_TYPE_LVDS:
+ case SIGNAL_TYPE_EDP:
+ default:
+ /* Don't program hpd filter */
+ return false;
+ }
+
+ /* Obtain HPD handle */
+ hpd = link_get_hpd_gpio(link->ctx->dc_bios, link->link_id,
+ link->ctx->gpio_service);
+
+ if (!hpd)
+ return result;
+
+ /* Setup HPD filtering */
+ if (dal_gpio_open(hpd, GPIO_MODE_INTERRUPT) == GPIO_RESULT_OK) {
+ struct gpio_hpd_config config;
+
+ config.delay_on_connect = delay_on_connect_in_ms;
+ config.delay_on_disconnect = delay_on_disconnect_in_ms;
+
+ dal_irq_setup_hpd_filter(hpd, &config);
+
+ dal_gpio_close(hpd);
+
+ result = true;
+ } else {
+ ASSERT_CRITICAL(false);
+ }
+
+ /* Release HPD handle */
+ dal_gpio_destroy_irq(&hpd);
+
+ return result;
+}
diff --git a/drivers/gpu/drm/amd/display/dc/link/protocols/link_hpd.h b/drivers/gpu/drm/amd/display/dc/link/protocols/link_hpd.h
new file mode 100644
index 000000000000..4fb526b264f9
--- /dev/null
+++ b/drivers/gpu/drm/amd/display/dc/link/protocols/link_hpd.h
@@ -0,0 +1,54 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ * Authors: AMD
+ *
+ */
+
+
+#ifndef __DC_LINK_HPD_H__
+#define __DC_LINK_HPD_H__
+#include "link.h"
+
+enum hpd_source_id get_hpd_line(struct dc_link *link);
+/*
+ * Function: program_hpd_filter
+ *
+ * @brief
+ * Programs HPD filter on associated HPD line to default values.
+ *
+ * @return
+ * true on success, false otherwise
+ */
+bool program_hpd_filter(const struct dc_link *link);
+/* Query hot plug status of USB4 DP tunnel.
+ * Returns true if HPD high.
+ */
+bool dpia_query_hpd_status(struct dc_link *link);
+bool query_hpd_status(struct dc_link *link, uint32_t *is_hpd_high);
+bool link_get_hpd_state(struct dc_link *link);
+struct gpio *link_get_hpd_gpio(struct dc_bios *dcb,
+ struct graphics_object_id link_id,
+ struct gpio_service *gpio_service);
+void link_enable_hpd(const struct dc_link *link);
+void link_disable_hpd(const struct dc_link *link);
+void link_enable_hpd_filter(struct dc_link *link, bool enable);
+#endif /* __DC_LINK_HPD_H__ */
diff --git a/drivers/gpu/drm/amd/display/dc/os_types.h b/drivers/gpu/drm/amd/display/dc/os_types.h
index 6b88ae14f1f9..aad8095660c9 100644
--- a/drivers/gpu/drm/amd/display/dc/os_types.h
+++ b/drivers/gpu/drm/amd/display/dc/os_types.h
@@ -53,11 +53,11 @@
#define dm_error(fmt, ...) DRM_ERROR(fmt, ##__VA_ARGS__)
-#if defined(CONFIG_DRM_AMD_DC_DCN)
+#if defined(CONFIG_DRM_AMD_DC_FP)
#include "amdgpu_dm/dc_fpu.h"
#define DC_FP_START() dc_fpu_begin(__func__, __LINE__)
#define DC_FP_END() dc_fpu_end(__func__, __LINE__)
-#endif
+#endif /* CONFIG_DRM_AMD_DC_FP */
/*
*
diff --git a/drivers/gpu/drm/amd/display/dmub/dmub_srv.h b/drivers/gpu/drm/amd/display/dmub/dmub_srv.h
index eb5b7eb292ef..ba1715e2d25a 100644
--- a/drivers/gpu/drm/amd/display/dmub/dmub_srv.h
+++ b/drivers/gpu/drm/amd/display/dmub/dmub_srv.h
@@ -126,10 +126,22 @@ enum dmub_notification_type {
DMUB_NOTIFICATION_HPD,
DMUB_NOTIFICATION_HPD_IRQ,
DMUB_NOTIFICATION_SET_CONFIG_REPLY,
+ DMUB_NOTIFICATION_DPIA_NOTIFICATION,
DMUB_NOTIFICATION_MAX
};
/**
+ * DPIA NOTIFICATION Response Type
+ */
+enum dpia_notify_bw_alloc_status {
+
+ DPIA_BW_REQ_FAILED = 0,
+ DPIA_BW_REQ_SUCCESS,
+ DPIA_EST_BW_CHANGED,
+ DPIA_BW_ALLOC_CAPS_CHANGED
+};
+
+/**
* struct dmub_region - dmub hw memory region
* @base: base address for region, must be 256 byte aligned
* @top: top address for region
@@ -249,6 +261,8 @@ struct dmub_srv_hw_params {
bool usb4_cm_version;
bool fw_in_system_memory;
bool dpia_hpd_int_enable_supported;
+ bool disable_clock_gate;
+ bool disallow_dispclk_dppclk_ds;
};
/**
@@ -453,6 +467,7 @@ struct dmub_srv {
* @pending_notification: Indicates there are other pending notifications
* @aux_reply: aux reply
* @hpd_status: hpd status
+ * @bw_alloc_reply: BW Allocation reply from CM/DPIA
*/
struct dmub_notification {
enum dmub_notification_type type;
@@ -463,6 +478,10 @@ struct dmub_notification {
struct aux_reply_data aux_reply;
enum dp_hpd_status hpd_status;
enum set_config_status sc_status;
+ /**
+ * DPIA notification command.
+ */
+ struct dmub_rb_cmd_dpia_notification dpia_notification;
};
};
diff --git a/drivers/gpu/drm/amd/display/dmub/inc/dmub_cmd.h b/drivers/gpu/drm/amd/display/dmub/inc/dmub_cmd.h
index 7a8f61517424..598fa1de54ce 100644
--- a/drivers/gpu/drm/amd/display/dmub/inc/dmub_cmd.h
+++ b/drivers/gpu/drm/amd/display/dmub/inc/dmub_cmd.h
@@ -95,6 +95,13 @@
/* Maximum number of SubVP streams */
#define DMUB_MAX_SUBVP_STREAMS 2
+/* Define max FPO streams as 4 for now. Current implementation today
+ * only supports 1, but could be more in the future. Reduce array
+ * size to ensure the command size remains less than 64 bytes if
+ * adding new fields.
+ */
+#define DMUB_MAX_FPO_STREAMS 4
+
/* Maximum number of streams on any ASIC. */
#define DMUB_MAX_STREAMS 6
@@ -162,6 +169,7 @@ extern "C" {
#define dmub_udelay(microseconds) udelay(microseconds)
#endif
+#pragma pack(push, 1)
/**
* union dmub_addr - DMUB physical/virtual 64-bit address.
*/
@@ -172,6 +180,7 @@ union dmub_addr {
} u; /*<< Low/high bit access */
uint64_t quad_part; /*<< 64 bit address */
};
+#pragma pack(pop)
/**
* Dirty rect definition.
@@ -225,6 +234,12 @@ union dmub_psr_debug_flags {
* Use TPS3 signal when restore main link.
*/
uint32_t force_wakeup_by_tps3 : 1;
+
+ /**
+ * Back to back flip, therefore cannot power down PHY
+ */
+ uint32_t back_to_back_flip : 1;
+
} bitfields;
/**
@@ -347,7 +362,7 @@ union dmub_fw_boot_status {
uint32_t defer_load : 1; /**< 1 if VBIOS data is deferred programmed */
uint32_t reserved : 1;
uint32_t detection_required: 1; /**< if detection need to be triggered by driver */
-
+ uint32_t hw_power_init_done: 1; /**< 1 if hw power init is completed */
} bits; /**< status bits */
uint32_t all; /**< 32-bit access to status bits */
};
@@ -362,6 +377,7 @@ enum dmub_fw_boot_status_bit {
DMUB_FW_BOOT_STATUS_BIT_RESTORE_REQUIRED = (1 << 3), /**< 1 if driver should call restore */
DMUB_FW_BOOT_STATUS_BIT_DEFERRED_LOADED = (1 << 4), /**< 1 if VBIOS data is deferred programmed */
DMUB_FW_BOOT_STATUS_BIT_DETECTION_REQUIRED = (1 << 6), /**< 1 if detection need to be triggered by driver*/
+ DMUB_FW_BOOT_STATUS_BIT_HW_POWER_INIT_DONE = (1 << 7), /**< 1 if hw power init is completed */
};
/* Register bit definition for SCRATCH5 */
@@ -401,8 +417,9 @@ union dmub_fw_boot_options {
uint32_t gpint_scratch8: 1; /* 1 if GPINT is in scratch8*/
uint32_t usb4_cm_version: 1; /**< 1 CM support */
uint32_t dpia_hpd_int_enable_supported: 1; /* 1 if dpia hpd int enable supported */
-
- uint32_t reserved : 16; /**< reserved */
+ uint32_t usb4_dpia_bw_alloc_supported: 1; /* 1 if USB4 dpia BW allocation supported */
+ uint32_t disable_clk_ds: 1; /* 1 if disallow dispclk_ds and dppclk_ds*/
+ uint32_t reserved : 14; /**< reserved */
} bits; /**< boot bits */
uint32_t all; /**< 32-bit access to bits */
};
@@ -450,6 +467,10 @@ enum dmub_cmd_vbios_type {
* Query DP alt status on a transmitter.
*/
DMUB_CMD__VBIOS_TRANSMITTER_QUERY_DP_ALT = 26,
+ /**
+ * Controls domain power gating
+ */
+ DMUB_CMD__VBIOS_DOMAIN_CONTROL = 28,
};
//==============================================================================
@@ -731,6 +752,11 @@ enum dmub_cmd_type {
*/
/**
+ * Command type used for all SECURE_DISPLAY commands.
+ */
+ DMUB_CMD__SECURE_DISPLAY = 85,
+
+ /**
* Command type used to set DPIA HPD interrupt state
*/
DMUB_CMD__DPIA_HPD_INT_ENABLE = 86,
@@ -758,6 +784,10 @@ enum dmub_out_cmd_type {
* Command type used for SET_CONFIG Reply notification
*/
DMUB_OUT_CMD__SET_CONFIG_REPLY = 3,
+ /**
+ * Command type used for USB4 DPIA notification
+ */
+ DMUB_OUT_CMD__DPIA_NOTIFICATION = 5,
};
/* DMUB_CMD__DPIA command sub-types. */
@@ -767,6 +797,11 @@ enum dmub_cmd_dpia_type {
DMUB_CMD__DPIA_MST_ALLOC_SLOTS = 2,
};
+/* DMUB_OUT_CMD__DPIA_NOTIFICATION command types. */
+enum dmub_cmd_dpia_notification_type {
+ DPIA_NOTIFY__BW_ALLOCATION = 0,
+};
+
#pragma pack(push, 1)
/**
@@ -1017,13 +1052,14 @@ struct dmub_cmd_fw_assisted_mclk_switch_pipe_data_v2 {
uint16_t vtotal;
uint16_t htotal;
uint8_t vblank_pipe_index;
- uint8_t padding[2];
+ uint8_t padding[1];
struct {
uint8_t drr_in_use;
uint8_t drr_window_size_ms; // Indicates largest VMIN/VMAX adjustment per frame
uint16_t min_vtotal_supported; // Min VTOTAL that supports switching in VBLANK
uint16_t max_vtotal_supported; // Max VTOTAL that can support SubVP static scheduling
uint8_t use_ramping; // Use ramping or not
+ uint8_t drr_vblank_start_margin;
} drr_info; // DRR considered as part of SubVP + VBLANK case
} vblank_data;
} pipe_config;
@@ -1069,7 +1105,12 @@ enum dmub_cmd_idle_opt_type {
/**
* DCN hardware save.
*/
- DMUB_CMD__IDLE_OPT_DCN_SAVE_INIT = 1
+ DMUB_CMD__IDLE_OPT_DCN_SAVE_INIT = 1,
+
+ /**
+ * DCN hardware notify idle.
+ */
+ DMUB_CMD__IDLE_OPT_DCN_NOTIFY_IDLE = 2
};
/**
@@ -1080,6 +1121,24 @@ struct dmub_rb_cmd_idle_opt_dcn_restore {
};
/**
+ * struct dmub_dcn_notify_idle_cntl_data - Data passed to FW in a DMUB_CMD__IDLE_OPT_DCN_NOTIFY_IDLE command.
+ */
+struct dmub_dcn_notify_idle_cntl_data {
+ uint8_t driver_idle;
+ uint8_t d3_entry;
+ uint8_t trigger;
+ uint8_t pad[1];
+};
+
+/**
+ * struct dmub_rb_cmd_idle_opt_dcn_notify_idle - Data passed to FW in a DMUB_CMD__IDLE_OPT_DCN_NOTIFY_IDLE command.
+ */
+struct dmub_rb_cmd_idle_opt_dcn_notify_idle {
+ struct dmub_cmd_header header; /**< header */
+ struct dmub_dcn_notify_idle_cntl_data cntl_data;
+};
+
+/**
* struct dmub_clocks - Clock update notification.
*/
struct dmub_clocks {
@@ -1192,6 +1251,23 @@ struct dmub_rb_cmd_dig1_transmitter_control {
};
/**
+ * struct dmub_rb_cmd_domain_control_data - Data for DOMAIN power control
+ */
+struct dmub_rb_cmd_domain_control_data {
+ uint8_t inst : 6; /**< DOMAIN instance to control */
+ uint8_t power_gate : 1; /**< 1=power gate, 0=power up */
+ uint8_t reserved[3]; /**< Reserved for future use */
+};
+
+/**
+ * struct dmub_rb_cmd_domain_control - Controls DOMAIN power gating
+ */
+struct dmub_rb_cmd_domain_control {
+ struct dmub_cmd_header header; /**< header */
+ struct dmub_rb_cmd_domain_control_data data; /**< payload */
+};
+
+/**
* DPIA tunnel command parameters.
*/
struct dmub_cmd_dig_dpia_control_data {
@@ -1545,6 +1621,79 @@ struct dmub_rb_cmd_dp_set_config_reply {
};
/**
+ * Definition of a DPIA notification header
+ */
+struct dpia_notification_header {
+ uint8_t instance; /**< DPIA Instance */
+ uint8_t reserved[3];
+ enum dmub_cmd_dpia_notification_type type; /**< DPIA notification type */
+};
+
+/**
+ * Definition of the common data struct of DPIA notification
+ */
+struct dpia_notification_common {
+ uint8_t cmd_buffer[DMUB_RB_CMD_SIZE - sizeof(struct dmub_cmd_header)
+ - sizeof(struct dpia_notification_header)];
+};
+
+/**
+ * Definition of a DPIA notification data
+ */
+struct dpia_bw_allocation_notify_data {
+ union {
+ struct {
+ uint16_t cm_bw_alloc_support: 1; /**< USB4 CM BW Allocation mode support */
+ uint16_t bw_request_failed: 1; /**< BW_Request_Failed */
+ uint16_t bw_request_succeeded: 1; /**< BW_Request_Succeeded */
+ uint16_t est_bw_changed: 1; /**< Estimated_BW changed */
+ uint16_t bw_alloc_cap_changed: 1; /**< BW_Allocation_Capabiity_Changed */
+ uint16_t reserved: 11; /**< Reserved */
+ } bits;
+
+ uint16_t flags;
+ };
+
+ uint8_t cm_id; /**< CM ID */
+ uint8_t group_id; /**< Group ID */
+ uint8_t granularity; /**< BW Allocation Granularity */
+ uint8_t estimated_bw; /**< Estimated_BW */
+ uint8_t allocated_bw; /**< Allocated_BW */
+ uint8_t reserved;
+};
+
+/**
+ * union dpia_notify_data_type - DPIA Notification in Outbox command
+ */
+union dpia_notification_data {
+ /**
+ * DPIA Notification for common data struct
+ */
+ struct dpia_notification_common common_data;
+
+ /**
+ * DPIA Notification for DP BW Allocation support
+ */
+ struct dpia_bw_allocation_notify_data dpia_bw_alloc;
+};
+
+/**
+ * Definition of a DPIA notification payload
+ */
+struct dpia_notification_payload {
+ struct dpia_notification_header header;
+ union dpia_notification_data data; /**< DPIA notification payload data */
+};
+
+/**
+ * Definition of a DMUB_OUT_CMD__DPIA_NOTIFICATION command.
+ */
+struct dmub_rb_cmd_dpia_notification {
+ struct dmub_cmd_header header; /**< DPIA notification header */
+ struct dpia_notification_payload payload; /**< DPIA notification payload */
+};
+
+/**
* Data passed from driver to FW in a DMUB_CMD__QUERY_HPD_STATE command.
*/
struct dmub_cmd_hpd_state_query_data {
@@ -1853,7 +2002,7 @@ struct dmub_cmd_psr_copy_settings_data {
uint8_t cmd_version;
/**
* Panel Instance.
- * Panel isntance to identify which psr_state to use
+ * Panel instance to identify which psr_state to use
* Currently the support is only for 0 or 1
*/
uint8_t panel_inst;
@@ -1866,9 +2015,21 @@ struct dmub_cmd_psr_copy_settings_data {
*/
uint8_t use_phy_fsm;
/**
+ * frame delay for frame re-lock
+ */
+ uint8_t relock_delay_frame_cnt;
+ /**
* Explicit padding to 2 byte boundary.
*/
- uint8_t pad3[2];
+ uint8_t pad3;
+ /**
+ * DSC Slice height.
+ */
+ uint16_t dsc_slice_height;
+ /**
+ * Explicit padding to 4 byte boundary.
+ */
+ uint16_t pad;
};
/**
@@ -1899,7 +2060,7 @@ struct dmub_cmd_psr_set_level_data {
uint8_t cmd_version;
/**
* Panel Instance.
- * Panel isntance to identify which psr_state to use
+ * Panel instance to identify which psr_state to use
* Currently the support is only for 0 or 1
*/
uint8_t panel_inst;
@@ -1926,7 +2087,7 @@ struct dmub_rb_cmd_psr_enable_data {
uint8_t cmd_version;
/**
* Panel Instance.
- * Panel isntance to identify which psr_state to use
+ * Panel instance to identify which psr_state to use
* Currently the support is only for 0 or 1
*/
uint8_t panel_inst;
@@ -1970,7 +2131,7 @@ struct dmub_cmd_psr_set_version_data {
uint8_t cmd_version;
/**
* Panel Instance.
- * Panel isntance to identify which psr_state to use
+ * Panel instance to identify which psr_state to use
* Currently the support is only for 0 or 1
*/
uint8_t panel_inst;
@@ -2001,7 +2162,7 @@ struct dmub_cmd_psr_force_static_data {
uint8_t cmd_version;
/**
* Panel Instance.
- * Panel isntance to identify which psr_state to use
+ * Panel instance to identify which psr_state to use
* Currently the support is only for 0 or 1
*/
uint8_t panel_inst;
@@ -2076,7 +2237,7 @@ struct dmub_cmd_update_dirty_rect_data {
uint8_t cmd_version;
/**
* Panel Instance.
- * Panel isntance to identify which psr_state to use
+ * Panel instance to identify which psr_state to use
* Currently the support is only for 0 or 1
*/
uint8_t panel_inst;
@@ -2214,7 +2375,7 @@ struct dmub_cmd_update_cursor_payload0 {
uint8_t cmd_version;
/**
* Panel Instance.
- * Panel isntance to identify which psr_state to use
+ * Panel instance to identify which psr_state to use
* Currently the support is only for 0 or 1
*/
uint8_t panel_inst;
@@ -2261,7 +2422,7 @@ struct dmub_cmd_psr_set_vtotal_data {
uint8_t cmd_version;
/**
* Panel Instance.
- * Panel isntance to identify which psr_state to use
+ * Panel instance to identify which psr_state to use
* Currently the support is only for 0 or 1
*/
uint8_t panel_inst;
@@ -2299,7 +2460,7 @@ struct dmub_cmd_psr_set_power_opt_data {
uint8_t cmd_version;
/**
* Panel Instance.
- * Panel isntance to identify which psr_state to use
+ * Panel instance to identify which psr_state to use
* Currently the support is only for 0 or 1
*/
uint8_t panel_inst;
@@ -2954,14 +3115,15 @@ struct dmub_cmd_fw_assisted_mclk_switch_pipe_data {
uint8_t max_ramp_step;
uint8_t pipes;
uint8_t min_refresh_in_hz;
- uint8_t padding[1];
+ uint8_t pipe_count;
+ uint8_t pipe_index[4];
};
struct dmub_cmd_fw_assisted_mclk_switch_config {
uint8_t fams_enabled;
uint8_t visual_confirm_enabled;
- uint8_t padding[2];
- struct dmub_cmd_fw_assisted_mclk_switch_pipe_data pipe_data[DMUB_MAX_STREAMS];
+ uint16_t vactive_stretch_margin_us; // Extra vblank stretch required when doing FPO + Vactive
+ struct dmub_cmd_fw_assisted_mclk_switch_pipe_data pipe_data[DMUB_MAX_FPO_STREAMS];
};
struct dmub_rb_cmd_fw_assisted_mclk_switch {
@@ -3012,7 +3174,8 @@ struct dmub_rb_cmd_panel_cntl {
*/
struct dmub_cmd_lvtma_control_data {
uint8_t uc_pwr_action; /**< LVTMA_ACTION */
- uint8_t reserved_0[3]; /**< For future use */
+ uint8_t bypass_panel_control_wait;
+ uint8_t reserved_0[2]; /**< For future use */
uint8_t panel_inst; /**< LVTMA control instance */
uint8_t reserved_1[3]; /**< For future use */
};
@@ -3144,6 +3307,33 @@ struct dmub_rb_cmd_get_usbc_cable_id {
};
/**
+ * Command type of a DMUB_CMD__SECURE_DISPLAY command
+ */
+enum dmub_cmd_secure_display_type {
+ DMUB_CMD__SECURE_DISPLAY_TEST_CMD = 0, /* test command to only check if inbox message works */
+ DMUB_CMD__SECURE_DISPLAY_CRC_STOP_UPDATE,
+ DMUB_CMD__SECURE_DISPLAY_CRC_WIN_NOTIFY
+};
+
+/**
+ * Definition of a DMUB_CMD__SECURE_DISPLAY command
+ */
+struct dmub_rb_cmd_secure_display {
+ struct dmub_cmd_header header;
+ /**
+ * Data passed from driver to dmub firmware.
+ */
+ struct dmub_cmd_roi_info {
+ uint16_t x_start;
+ uint16_t x_end;
+ uint16_t y_start;
+ uint16_t y_end;
+ uint8_t otg_id;
+ uint8_t phy_id;
+ } roi_info;
+};
+
+/**
* union dmub_rb_cmd - DMUB inbox command.
*/
union dmub_rb_cmd {
@@ -3188,6 +3378,10 @@ union dmub_rb_cmd {
*/
struct dmub_rb_cmd_dig1_transmitter_control dig1_transmitter_control;
/**
+ * Definition of a DMUB_CMD__VBIOS_DOMAIN_CONTROL command.
+ */
+ struct dmub_rb_cmd_domain_control domain_control;
+ /**
* Definition of a DMUB_CMD__PSR_SET_VERSION command.
*/
struct dmub_rb_cmd_psr_set_version psr_set_version;
@@ -3348,6 +3542,11 @@ union dmub_rb_cmd {
*/
struct dmub_rb_cmd_query_hpd_state query_hpd;
/**
+ * Definition of a DMUB_CMD__SECURE_DISPLAY command.
+ */
+ struct dmub_rb_cmd_secure_display secure_display;
+
+ /**
* Definition of a DMUB_CMD__DPIA_HPD_INT_ENABLE command.
*/
struct dmub_rb_cmd_dpia_hpd_int_enable dpia_hpd_int_enable;
@@ -3373,6 +3572,10 @@ union dmub_rb_out_cmd {
* SET_CONFIG reply command.
*/
struct dmub_rb_cmd_dp_set_config_reply set_config_reply;
+ /**
+ * DPIA notification command.
+ */
+ struct dmub_rb_cmd_dpia_notification dpia_notification;
};
#pragma pack(pop)
diff --git a/drivers/gpu/drm/amd/display/dmub/src/dmub_dcn32.c b/drivers/gpu/drm/amd/display/dmub/src/dmub_dcn32.c
index a76da0131add..9c20516be066 100644
--- a/drivers/gpu/drm/amd/display/dmub/src/dmub_dcn32.c
+++ b/drivers/gpu/drm/amd/display/dmub/src/dmub_dcn32.c
@@ -130,12 +130,13 @@ void dmub_dcn32_reset(struct dmub_srv *dmub)
REG_WRITE(DMCUB_INBOX1_WPTR, 0);
REG_WRITE(DMCUB_OUTBOX1_RPTR, 0);
REG_WRITE(DMCUB_OUTBOX1_WPTR, 0);
+ REG_WRITE(DMCUB_OUTBOX0_RPTR, 0);
+ REG_WRITE(DMCUB_OUTBOX0_WPTR, 0);
REG_WRITE(DMCUB_SCRATCH0, 0);
}
void dmub_dcn32_reset_release(struct dmub_srv *dmub)
{
- REG_WRITE(DMCUB_GPINT_DATAIN1, 0);
REG_UPDATE(MMHUBBUB_SOFT_RESET, DMUIF_SOFT_RESET, 0);
REG_WRITE(DMCUB_SCRATCH15, dmub->psp_version & 0x001100FF);
REG_UPDATE_2(DMCUB_CNTL, DMCUB_ENABLE, 1, DMCUB_TRACEPORT_EN, 1);
diff --git a/drivers/gpu/drm/amd/display/dmub/src/dmub_srv.c b/drivers/gpu/drm/amd/display/dmub/src/dmub_srv.c
index 4a122925c3ae..92c18bfb98b3 100644
--- a/drivers/gpu/drm/amd/display/dmub/src/dmub_srv.c
+++ b/drivers/gpu/drm/amd/display/dmub/src/dmub_srv.c
@@ -532,6 +532,9 @@ enum dmub_status dmub_srv_hw_init(struct dmub_srv *dmub,
if (dmub->hw_funcs.reset)
dmub->hw_funcs.reset(dmub);
+ /* reset the cache of the last wptr as well now that hw is reset */
+ dmub->inbox1_last_wptr = 0;
+
cw0.offset.quad_part = inst_fb->gpu_addr;
cw0.region.base = DMUB_CW0_BASE;
cw0.region.top = cw0.region.base + inst_fb->size - 1;
@@ -649,6 +652,15 @@ enum dmub_status dmub_srv_hw_reset(struct dmub_srv *dmub)
if (dmub->hw_funcs.reset)
dmub->hw_funcs.reset(dmub);
+ /* mailboxes have been reset in hw, so reset the sw state as well */
+ dmub->inbox1_last_wptr = 0;
+ dmub->inbox1_rb.wrpt = 0;
+ dmub->inbox1_rb.rptr = 0;
+ dmub->outbox0_rb.wrpt = 0;
+ dmub->outbox0_rb.rptr = 0;
+ dmub->outbox1_rb.wrpt = 0;
+ dmub->outbox1_rb.rptr = 0;
+
dmub->hw_init = false;
return DMUB_STATUS_OK;
diff --git a/drivers/gpu/drm/amd/display/dmub/src/dmub_srv_stat.c b/drivers/gpu/drm/amd/display/dmub/src/dmub_srv_stat.c
index 44502ec919a2..74189102eaec 100644
--- a/drivers/gpu/drm/amd/display/dmub/src/dmub_srv_stat.c
+++ b/drivers/gpu/drm/amd/display/dmub/src/dmub_srv_stat.c
@@ -92,6 +92,27 @@ enum dmub_status dmub_srv_stat_get_notification(struct dmub_srv *dmub,
notify->link_index = cmd.set_config_reply.set_config_reply_control.instance;
notify->sc_status = cmd.set_config_reply.set_config_reply_control.status;
break;
+ case DMUB_OUT_CMD__DPIA_NOTIFICATION:
+ notify->type = DMUB_NOTIFICATION_DPIA_NOTIFICATION;
+ notify->link_index = cmd.dpia_notification.payload.header.instance;
+
+ if (cmd.dpia_notification.payload.header.type == DPIA_NOTIFY__BW_ALLOCATION) {
+
+ notify->dpia_notification.payload.data.dpia_bw_alloc.estimated_bw =
+ cmd.dpia_notification.payload.data.dpia_bw_alloc.estimated_bw;
+ notify->dpia_notification.payload.data.dpia_bw_alloc.allocated_bw =
+ cmd.dpia_notification.payload.data.dpia_bw_alloc.allocated_bw;
+
+ if (cmd.dpia_notification.payload.data.dpia_bw_alloc.bits.bw_request_failed)
+ notify->result = DPIA_BW_REQ_FAILED;
+ else if (cmd.dpia_notification.payload.data.dpia_bw_alloc.bits.bw_request_succeeded)
+ notify->result = DPIA_BW_REQ_SUCCESS;
+ else if (cmd.dpia_notification.payload.data.dpia_bw_alloc.bits.est_bw_changed)
+ notify->result = DPIA_EST_BW_CHANGED;
+ else if (cmd.dpia_notification.payload.data.dpia_bw_alloc.bits.bw_alloc_cap_changed)
+ notify->result = DPIA_BW_ALLOC_CAPS_CHANGED;
+ }
+ break;
default:
notify->type = DMUB_NOTIFICATION_NO_DATA;
break;
diff --git a/drivers/gpu/drm/amd/display/include/dal_asic_id.h b/drivers/gpu/drm/amd/display/include/dal_asic_id.h
index c3089c673975..e317089cf6ee 100644
--- a/drivers/gpu/drm/amd/display/include/dal_asic_id.h
+++ b/drivers/gpu/drm/amd/display/include/dal_asic_id.h
@@ -246,6 +246,7 @@ enum {
#define AMDGPU_FAMILY_GC_11_0_0 145
#define AMDGPU_FAMILY_GC_11_0_1 148
+#define AMDGPU_FAMILY_GC_11_5_0 150
#define GC_11_0_0_A0 0x1
#define GC_11_0_2_A0 0x10
#define GC_11_0_3_A0 0x20
diff --git a/drivers/gpu/drm/amd/display/include/ddc_service_types.h b/drivers/gpu/drm/amd/display/include/ddc_service_types.h
index a7ba5bd8dc16..f843fc497855 100644
--- a/drivers/gpu/drm/amd/display/include/ddc_service_types.h
+++ b/drivers/gpu/drm/amd/display/include/ddc_service_types.h
@@ -35,6 +35,7 @@
#define DP_BRANCH_DEVICE_ID_00E04C 0x00E04C
#define DP_BRANCH_DEVICE_ID_006037 0x006037
#define DP_BRANCH_DEVICE_ID_001CF8 0x001CF8
+#define DP_BRANCH_DEVICE_ID_0060AD 0x0060AD
#define DP_BRANCH_HW_REV_10 0x10
#define DP_BRANCH_HW_REV_20 0x20
@@ -128,12 +129,4 @@ struct av_sync_data {
uint8_t aud_del_ins3;/* DPCD 0002Dh */
};
-static const uint8_t DP_SINK_DEVICE_STR_ID_1[] = {7, 1, 8, 7, 3};
-static const uint8_t DP_SINK_DEVICE_STR_ID_2[] = {7, 1, 8, 7, 5};
-
-static const u8 DP_SINK_BRANCH_DEV_NAME_7580[] = "7580\x80u";
-
-/*MST Dock*/
-static const uint8_t SYNAPTICS_DEVICE_ID[] = "SYNA";
-
#endif /* __DAL_DDC_SERVICE_TYPES_H__ */
diff --git a/drivers/gpu/drm/amd/display/include/dpcd_defs.h b/drivers/gpu/drm/amd/display/include/dpcd_defs.h
index b2df07f9e91c..c062a44db078 100644
--- a/drivers/gpu/drm/amd/display/include/dpcd_defs.h
+++ b/drivers/gpu/drm/amd/display/include/dpcd_defs.h
@@ -88,7 +88,10 @@ enum dpcd_phy_test_patterns {
PHY_TEST_PATTERN_PRBS23 = 0x30,
PHY_TEST_PATTERN_PRBS31 = 0x38,
PHY_TEST_PATTERN_264BIT_CUSTOM = 0x40,
- PHY_TEST_PATTERN_SQUARE_PULSE = 0x48,
+ PHY_TEST_PATTERN_SQUARE = 0x48,
+ PHY_TEST_PATTERN_SQUARE_PRESHOOT_DISABLED = 0x49,
+ PHY_TEST_PATTERN_SQUARE_DEEMPHASIS_DISABLED = 0x4A,
+ PHY_TEST_PATTERN_SQUARE_PRESHOOT_DEEMPHASIS_DISABLED = 0x4B,
};
enum dpcd_test_dyn_range {
diff --git a/drivers/gpu/drm/amd/display/include/hdcp_types.h b/drivers/gpu/drm/amd/display/include/hdcp_msg_types.h
index 42229b4effdc..42229b4effdc 100644
--- a/drivers/gpu/drm/amd/display/include/hdcp_types.h
+++ b/drivers/gpu/drm/amd/display/include/hdcp_msg_types.h
diff --git a/drivers/gpu/drm/amd/display/include/i2caux_interface.h b/drivers/gpu/drm/amd/display/include/i2caux_interface.h
deleted file mode 100644
index 418fbf8c5c3a..000000000000
--- a/drivers/gpu/drm/amd/display/include/i2caux_interface.h
+++ /dev/null
@@ -1,82 +0,0 @@
-/*
- * Copyright 2012-15 Advanced Micro Devices, Inc.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice shall be included in
- * all copies or substantial portions of the Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
- * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
- * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
- * OTHER DEALINGS IN THE SOFTWARE.
- *
- * Authors: AMD
- *
- */
-
-#ifndef __DAL_I2CAUX_INTERFACE_H__
-#define __DAL_I2CAUX_INTERFACE_H__
-
-#include "dc_types.h"
-#include "gpio_service_interface.h"
-
-
-#define DEFAULT_AUX_MAX_DATA_SIZE 16
-#define AUX_MAX_DEFER_WRITE_RETRY 20
-
-struct aux_payload {
- /* set following flag to read/write I2C data,
- * reset it to read/write DPCD data */
- bool i2c_over_aux;
- /* set following flag to write data,
- * reset it to read data */
- bool write;
- bool mot;
- bool write_status_update;
-
- uint32_t address;
- uint32_t length;
- uint8_t *data;
- /*
- * used to return the reply type of the transaction
- * ignored if NULL
- */
- uint8_t *reply;
- /* expressed in milliseconds
- * zero means "use default value"
- */
- uint32_t defer_delay;
-
-};
-
-struct aux_command {
- struct aux_payload *payloads;
- uint8_t number_of_payloads;
-
- /* expressed in milliseconds
- * zero means "use default value" */
- uint32_t defer_delay;
-
- /* zero means "use default value" */
- uint32_t max_defer_write_retry;
-
- enum i2c_mot_mode mot;
-};
-
-union aux_config {
- struct {
- uint32_t ALLOW_AUX_WHEN_HPD_LOW:1;
- } bits;
- uint32_t raw;
-};
-
-#endif
diff --git a/drivers/gpu/drm/amd/display/include/link_service_types.h b/drivers/gpu/drm/amd/display/include/link_service_types.h
index d1e91d31d151..cd870af5fd25 100644
--- a/drivers/gpu/drm/amd/display/include/link_service_types.h
+++ b/drivers/gpu/drm/amd/display/include/link_service_types.h
@@ -34,10 +34,6 @@
struct ddc;
struct irq_manager;
-enum {
- MAX_CONTROLLER_NUM = 6
-};
-
enum dp_power_state {
DP_POWER_STATE_D0 = 1,
DP_POWER_STATE_D3
@@ -60,28 +56,6 @@ enum {
DATA_EFFICIENCY_128b_132b_x10000 = 9646, /* 96.71% data efficiency x 99.75% downspread factor */
};
-enum link_training_result {
- LINK_TRAINING_SUCCESS,
- LINK_TRAINING_CR_FAIL_LANE0,
- LINK_TRAINING_CR_FAIL_LANE1,
- LINK_TRAINING_CR_FAIL_LANE23,
- /* CR DONE bit is cleared during EQ step */
- LINK_TRAINING_EQ_FAIL_CR,
- /* CR DONE bit is cleared but LANE0_CR_DONE is set during EQ step */
- LINK_TRAINING_EQ_FAIL_CR_PARTIAL,
- /* other failure during EQ step */
- LINK_TRAINING_EQ_FAIL_EQ,
- LINK_TRAINING_LQA_FAIL,
- /* one of the CR,EQ or symbol lock is dropped */
- LINK_TRAINING_LINK_LOSS,
- /* Abort link training (because sink unplugged) */
- LINK_TRAINING_ABORT,
- DP_128b_132b_LT_FAILED,
- DP_128b_132b_MAX_LOOP_COUNT_REACHED,
- DP_128b_132b_CHANNEL_EQ_DONE_TIMEOUT,
- DP_128b_132b_CDS_DONE_TIMEOUT,
-};
-
enum lttpr_mode {
LTTPR_MODE_UNKNOWN,
LTTPR_MODE_NON_LTTPR,
@@ -165,7 +139,12 @@ enum dp_test_pattern {
DP_TEST_PATTERN_PRBS23,
DP_TEST_PATTERN_PRBS31,
DP_TEST_PATTERN_264BIT_CUSTOM,
- DP_TEST_PATTERN_SQUARE_PULSE,
+ DP_TEST_PATTERN_SQUARE_BEGIN,
+ DP_TEST_PATTERN_SQUARE = DP_TEST_PATTERN_SQUARE_BEGIN,
+ DP_TEST_PATTERN_SQUARE_PRESHOOT_DISABLED,
+ DP_TEST_PATTERN_SQUARE_DEEMPHASIS_DISABLED,
+ DP_TEST_PATTERN_SQUARE_PRESHOOT_DEEMPHASIS_DISABLED,
+ DP_TEST_PATTERN_SQUARE_END = DP_TEST_PATTERN_SQUARE_PRESHOOT_DEEMPHASIS_DISABLED,
/* Link Training Patterns */
DP_TEST_PATTERN_TRAINING_PATTERN1,
diff --git a/drivers/gpu/drm/amd/display/include/signal_types.h b/drivers/gpu/drm/amd/display/include/signal_types.h
index beed70179bb5..23a308c3eccb 100644
--- a/drivers/gpu/drm/amd/display/include/signal_types.h
+++ b/drivers/gpu/drm/amd/display/include/signal_types.h
@@ -104,6 +104,7 @@ static inline bool dc_is_audio_capable_signal(enum signal_type signal)
{
return (signal == SIGNAL_TYPE_DISPLAY_PORT ||
signal == SIGNAL_TYPE_DISPLAY_PORT_MST ||
+ signal == SIGNAL_TYPE_VIRTUAL ||
dc_is_hdmi_signal(signal));
}
diff --git a/drivers/gpu/drm/amd/display/modules/color/color_gamma.c b/drivers/gpu/drm/amd/display/modules/color/color_gamma.c
index 447a0ec9cbe2..67a062af3ab0 100644
--- a/drivers/gpu/drm/amd/display/modules/color/color_gamma.c
+++ b/drivers/gpu/drm/amd/display/modules/color/color_gamma.c
@@ -61,7 +61,7 @@ static const int32_t numerator01[] = { 31308, 180000, 0, 0, 0};
static const int32_t numerator02[] = { 12920, 4500, 0, 0, 0};
static const int32_t numerator03[] = { 55, 99, 0, 0, 0};
static const int32_t numerator04[] = { 55, 99, 0, 0, 0};
-static const int32_t numerator05[] = { 2400, 2200, 2200, 2400, 2600};
+static const int32_t numerator05[] = { 2400, 2222, 2200, 2400, 2600};
/* one-time setup of X points */
void setup_x_points_distribution(void)
@@ -1715,8 +1715,8 @@ static bool map_regamma_hw_to_x_user(
const struct pwl_float_data_ex *rgb_regamma,
uint32_t hw_points_num,
struct dc_transfer_func_distributed_points *tf_pts,
- bool mapUserRamp,
- bool doClamping)
+ bool map_user_ramp,
+ bool do_clamping)
{
/* setup to spare calculated ideal regamma values */
@@ -1724,7 +1724,7 @@ static bool map_regamma_hw_to_x_user(
struct hw_x_point *coords = coords_x;
const struct pwl_float_data_ex *regamma = rgb_regamma;
- if (ramp && mapUserRamp) {
+ if (ramp && map_user_ramp) {
copy_rgb_regamma_to_coordinates_x(coords,
hw_points_num,
rgb_regamma);
@@ -1744,7 +1744,7 @@ static bool map_regamma_hw_to_x_user(
}
}
- if (doClamping) {
+ if (do_clamping) {
/* this should be named differently, all it does is clamp to 0-1 */
build_new_custom_resulted_curve(hw_points_num, tf_pts);
}
@@ -1875,7 +1875,7 @@ rgb_user_alloc_fail:
bool mod_color_calculate_degamma_params(struct dc_color_caps *dc_caps,
struct dc_transfer_func *input_tf,
- const struct dc_gamma *ramp, bool mapUserRamp)
+ const struct dc_gamma *ramp, bool map_user_ramp)
{
struct dc_transfer_func_distributed_points *tf_pts = &input_tf->tf_pts;
struct dividers dividers;
@@ -1883,7 +1883,7 @@ bool mod_color_calculate_degamma_params(struct dc_color_caps *dc_caps,
struct pwl_float_data_ex *curve = NULL;
struct gamma_pixel *axis_x = NULL;
struct pixel_gamma_point *coeff = NULL;
- enum dc_transfer_func_predefined tf = TRANSFER_FUNCTION_SRGB;
+ enum dc_transfer_func_predefined tf;
uint32_t i;
bool ret = false;
@@ -1891,12 +1891,12 @@ bool mod_color_calculate_degamma_params(struct dc_color_caps *dc_caps,
return false;
/* we can use hardcoded curve for plain SRGB TF
- * If linear, it's bypass if on user ramp
+ * If linear, it's bypass if no user ramp
*/
if (input_tf->type == TF_TYPE_PREDEFINED) {
if ((input_tf->tf == TRANSFER_FUNCTION_SRGB ||
input_tf->tf == TRANSFER_FUNCTION_LINEAR) &&
- !mapUserRamp)
+ !map_user_ramp)
return true;
if (dc_caps != NULL &&
@@ -1919,7 +1919,7 @@ bool mod_color_calculate_degamma_params(struct dc_color_caps *dc_caps,
input_tf->type = TF_TYPE_DISTRIBUTED_POINTS;
- if (mapUserRamp && ramp && ramp->type == GAMMA_RGB_256) {
+ if (map_user_ramp && ramp && ramp->type == GAMMA_RGB_256) {
rgb_user = kvcalloc(ramp->num_entries + _EXTRA_POINTS,
sizeof(*rgb_user),
GFP_KERNEL);
@@ -2007,7 +2007,7 @@ bool mod_color_calculate_degamma_params(struct dc_color_caps *dc_caps,
map_regamma_hw_to_x_user(ramp, coeff, rgb_user,
coordinates_x, axis_x, curve,
MAX_HW_POINTS, tf_pts,
- mapUserRamp && ramp && ramp->type == GAMMA_RGB_256,
+ map_user_ramp && ramp && ramp->type == GAMMA_RGB_256,
true);
}
@@ -2112,9 +2112,11 @@ static bool calculate_curve(enum dc_transfer_func_predefined trans,
}
bool mod_color_calculate_regamma_params(struct dc_transfer_func *output_tf,
- const struct dc_gamma *ramp, bool mapUserRamp, bool canRomBeUsed,
- const struct hdr_tm_params *fs_params,
- struct calculate_buffer *cal_buffer)
+ const struct dc_gamma *ramp,
+ bool map_user_ramp,
+ bool can_rom_be_used,
+ const struct hdr_tm_params *fs_params,
+ struct calculate_buffer *cal_buffer)
{
struct dc_transfer_func_distributed_points *tf_pts = &output_tf->tf_pts;
struct dividers dividers;
@@ -2123,27 +2125,27 @@ bool mod_color_calculate_regamma_params(struct dc_transfer_func *output_tf,
struct pwl_float_data_ex *rgb_regamma = NULL;
struct gamma_pixel *axis_x = NULL;
struct pixel_gamma_point *coeff = NULL;
- enum dc_transfer_func_predefined tf = TRANSFER_FUNCTION_SRGB;
- bool doClamping = true;
+ enum dc_transfer_func_predefined tf;
+ bool do_clamping = true;
bool ret = false;
if (output_tf->type == TF_TYPE_BYPASS)
return false;
/* we can use hardcoded curve for plain SRGB TF */
- if (output_tf->type == TF_TYPE_PREDEFINED && canRomBeUsed == true &&
+ if (output_tf->type == TF_TYPE_PREDEFINED && can_rom_be_used == true &&
output_tf->tf == TRANSFER_FUNCTION_SRGB) {
if (ramp == NULL)
return true;
if ((ramp->is_identity && ramp->type != GAMMA_CS_TFM_1D) ||
- (!mapUserRamp && ramp->type == GAMMA_RGB_256))
+ (!map_user_ramp && ramp->type == GAMMA_RGB_256))
return true;
}
output_tf->type = TF_TYPE_DISTRIBUTED_POINTS;
if (ramp && ramp->type != GAMMA_CS_TFM_1D &&
- (mapUserRamp || ramp->type != GAMMA_RGB_256)) {
+ (map_user_ramp || ramp->type != GAMMA_RGB_256)) {
rgb_user = kvcalloc(ramp->num_entries + _EXTRA_POINTS,
sizeof(*rgb_user),
GFP_KERNEL);
@@ -2164,7 +2166,7 @@ bool mod_color_calculate_regamma_params(struct dc_transfer_func *output_tf,
ramp->num_entries,
dividers);
- if (ramp->type == GAMMA_RGB_256 && mapUserRamp)
+ if (ramp->type == GAMMA_RGB_256 && map_user_ramp)
scale_gamma(rgb_user, ramp, dividers);
else if (ramp->type == GAMMA_RGB_FLOAT_1024)
scale_gamma_dx(rgb_user, ramp, dividers);
@@ -2191,15 +2193,15 @@ bool mod_color_calculate_regamma_params(struct dc_transfer_func *output_tf,
cal_buffer);
if (ret) {
- doClamping = !(output_tf->tf == TRANSFER_FUNCTION_GAMMA22 &&
- fs_params != NULL && fs_params->skip_tm == 0);
+ do_clamping = !(output_tf->tf == TRANSFER_FUNCTION_GAMMA22 &&
+ fs_params != NULL && fs_params->skip_tm == 0);
map_regamma_hw_to_x_user(ramp, coeff, rgb_user,
- coordinates_x, axis_x, rgb_regamma,
- MAX_HW_POINTS, tf_pts,
- (mapUserRamp || (ramp && ramp->type != GAMMA_RGB_256)) &&
- (ramp && ramp->type != GAMMA_CS_TFM_1D),
- doClamping);
+ coordinates_x, axis_x, rgb_regamma,
+ MAX_HW_POINTS, tf_pts,
+ (map_user_ramp || (ramp && ramp->type != GAMMA_RGB_256)) &&
+ (ramp && ramp->type != GAMMA_CS_TFM_1D),
+ do_clamping);
if (ramp && ramp->type == GAMMA_CS_TFM_1D)
apply_lut_1d(ramp, MAX_HW_POINTS, tf_pts);
@@ -2215,89 +2217,3 @@ axis_x_alloc_fail:
rgb_user_alloc_fail:
return ret;
}
-
-bool mod_color_calculate_degamma_curve(enum dc_transfer_func_predefined trans,
- struct dc_transfer_func_distributed_points *points)
-{
- uint32_t i;
- bool ret = false;
- struct pwl_float_data_ex *rgb_degamma = NULL;
-
- if (trans == TRANSFER_FUNCTION_UNITY ||
- trans == TRANSFER_FUNCTION_LINEAR) {
-
- for (i = 0; i <= MAX_HW_POINTS ; i++) {
- points->red[i] = coordinates_x[i].x;
- points->green[i] = coordinates_x[i].x;
- points->blue[i] = coordinates_x[i].x;
- }
- ret = true;
- } else if (trans == TRANSFER_FUNCTION_PQ) {
- rgb_degamma = kvcalloc(MAX_HW_POINTS + _EXTRA_POINTS,
- sizeof(*rgb_degamma),
- GFP_KERNEL);
- if (!rgb_degamma)
- goto rgb_degamma_alloc_fail;
-
-
- build_de_pq(rgb_degamma,
- MAX_HW_POINTS,
- coordinates_x);
- for (i = 0; i <= MAX_HW_POINTS ; i++) {
- points->red[i] = rgb_degamma[i].r;
- points->green[i] = rgb_degamma[i].g;
- points->blue[i] = rgb_degamma[i].b;
- }
- ret = true;
-
- kvfree(rgb_degamma);
- } else if (trans == TRANSFER_FUNCTION_SRGB ||
- trans == TRANSFER_FUNCTION_BT709 ||
- trans == TRANSFER_FUNCTION_GAMMA22 ||
- trans == TRANSFER_FUNCTION_GAMMA24 ||
- trans == TRANSFER_FUNCTION_GAMMA26) {
- rgb_degamma = kvcalloc(MAX_HW_POINTS + _EXTRA_POINTS,
- sizeof(*rgb_degamma),
- GFP_KERNEL);
- if (!rgb_degamma)
- goto rgb_degamma_alloc_fail;
-
- build_degamma(rgb_degamma,
- MAX_HW_POINTS,
- coordinates_x,
- trans);
- for (i = 0; i <= MAX_HW_POINTS ; i++) {
- points->red[i] = rgb_degamma[i].r;
- points->green[i] = rgb_degamma[i].g;
- points->blue[i] = rgb_degamma[i].b;
- }
- ret = true;
-
- kvfree(rgb_degamma);
- } else if (trans == TRANSFER_FUNCTION_HLG) {
- rgb_degamma = kvcalloc(MAX_HW_POINTS + _EXTRA_POINTS,
- sizeof(*rgb_degamma),
- GFP_KERNEL);
- if (!rgb_degamma)
- goto rgb_degamma_alloc_fail;
-
- build_hlg_degamma(rgb_degamma,
- MAX_HW_POINTS,
- coordinates_x,
- 80, 1000);
- for (i = 0; i <= MAX_HW_POINTS ; i++) {
- points->red[i] = rgb_degamma[i].r;
- points->green[i] = rgb_degamma[i].g;
- points->blue[i] = rgb_degamma[i].b;
- }
- ret = true;
- kvfree(rgb_degamma);
- }
- points->end_exponent = 0;
- points->x_point_at_y1_red = 1;
- points->x_point_at_y1_green = 1;
- points->x_point_at_y1_blue = 1;
-
-rgb_degamma_alloc_fail:
- return ret;
-}
diff --git a/drivers/gpu/drm/amd/display/modules/color/color_gamma.h b/drivers/gpu/drm/amd/display/modules/color/color_gamma.h
index 2893abf48208..ee5c466613de 100644
--- a/drivers/gpu/drm/amd/display/modules/color/color_gamma.h
+++ b/drivers/gpu/drm/amd/display/modules/color/color_gamma.h
@@ -115,9 +115,6 @@ bool mod_color_calculate_degamma_params(struct dc_color_caps *dc_caps,
struct dc_transfer_func *output_tf,
const struct dc_gamma *ramp, bool mapUserRamp);
-bool mod_color_calculate_degamma_curve(enum dc_transfer_func_predefined trans,
- struct dc_transfer_func_distributed_points *points);
-
bool calculate_user_regamma_coeff(struct dc_transfer_func *output_tf,
const struct regamma_lut *regamma,
struct calculate_buffer *cal_buffer,
diff --git a/drivers/gpu/drm/amd/display/modules/freesync/freesync.c b/drivers/gpu/drm/amd/display/modules/freesync/freesync.c
index 0f39ab9dc5b4..5c41a4751db4 100644
--- a/drivers/gpu/drm/amd/display/modules/freesync/freesync.c
+++ b/drivers/gpu/drm/amd/display/modules/freesync/freesync.c
@@ -616,7 +616,8 @@ static void build_vrr_infopacket_data_v1(const struct mod_vrr_params *vrr,
}
static void build_vrr_infopacket_data_v3(const struct mod_vrr_params *vrr,
- struct dc_info_packet *infopacket)
+ struct dc_info_packet *infopacket,
+ bool freesync_on_desktop)
{
unsigned int min_refresh;
unsigned int max_refresh;
@@ -649,9 +650,15 @@ static void build_vrr_infopacket_data_v3(const struct mod_vrr_params *vrr,
infopacket->sb[6] |= 0x02;
/* PB6 = [Bit 2 = FreeSync Active] */
- if (vrr->state == VRR_STATE_ACTIVE_VARIABLE ||
+ if (freesync_on_desktop) {
+ if (vrr->state != VRR_STATE_DISABLED &&
+ vrr->state != VRR_STATE_UNSUPPORTED)
+ infopacket->sb[6] |= 0x04;
+ } else {
+ if (vrr->state == VRR_STATE_ACTIVE_VARIABLE ||
vrr->state == VRR_STATE_ACTIVE_FIXED)
- infopacket->sb[6] |= 0x04;
+ infopacket->sb[6] |= 0x04;
+ }
min_refresh = (vrr->min_refresh_in_uhz + 500000) / 1000000;
max_refresh = (vrr->max_refresh_in_uhz + 500000) / 1000000;
@@ -688,10 +695,10 @@ static void build_vrr_infopacket_fs2_data(enum color_transfer_func app_tf,
if (app_tf != TRANSFER_FUNC_UNKNOWN) {
infopacket->valid = true;
- infopacket->sb[6] |= 0x08; // PB6 = [Bit 3 = Native Color Active]
-
- if (app_tf == TRANSFER_FUNC_GAMMA_22) {
- infopacket->sb[9] |= 0x04; // PB6 = [Bit 2 = Gamma 2.2 EOTF Active]
+ if (app_tf != TRANSFER_FUNC_PQ2084) {
+ infopacket->sb[6] |= 0x08; // PB6 = [Bit 3 = Native Color Active]
+ if (app_tf == TRANSFER_FUNC_GAMMA_22)
+ infopacket->sb[9] |= 0x04; // PB6 = [Bit 2 = Gamma 2.2 EOTF Active]
}
}
}
@@ -898,52 +905,20 @@ static void build_vrr_infopacket_v2(enum signal_type signal,
infopacket->valid = true;
}
-#ifndef TRIM_FSFT
-static void build_vrr_infopacket_fast_transport_data(
- bool ftActive,
- unsigned int ftOutputRate,
- struct dc_info_packet *infopacket)
-{
- /* PB9 : bit7 - fast transport Active*/
- unsigned char activeBit = (ftActive) ? 1 << 7 : 0;
-
- infopacket->sb[1] &= ~activeBit; //clear bit
- infopacket->sb[1] |= activeBit; //set bit
-
- /* PB13 : Target Output Pixel Rate [kHz] - bits 7:0 */
- infopacket->sb[13] = ftOutputRate & 0xFF;
-
- /* PB14 : Target Output Pixel Rate [kHz] - bits 15:8 */
- infopacket->sb[14] = (ftOutputRate >> 8) & 0xFF;
-
- /* PB15 : Target Output Pixel Rate [kHz] - bits 23:16 */
- infopacket->sb[15] = (ftOutputRate >> 16) & 0xFF;
-
-}
-#endif
static void build_vrr_infopacket_v3(enum signal_type signal,
const struct mod_vrr_params *vrr,
-#ifndef TRIM_FSFT
- bool ftActive, unsigned int ftOutputRate,
-#endif
enum color_transfer_func app_tf,
- struct dc_info_packet *infopacket)
+ struct dc_info_packet *infopacket,
+ bool freesync_on_desktop)
{
unsigned int payload_size = 0;
build_vrr_infopacket_header_v3(signal, infopacket, &payload_size);
- build_vrr_infopacket_data_v3(vrr, infopacket);
+ build_vrr_infopacket_data_v3(vrr, infopacket, freesync_on_desktop);
build_vrr_infopacket_fs2_data(app_tf, infopacket);
-#ifndef TRIM_FSFT
- build_vrr_infopacket_fast_transport_data(
- ftActive,
- ftOutputRate,
- infopacket);
-#endif
-
build_vrr_infopacket_checksum(&payload_size, infopacket);
infopacket->valid = true;
@@ -985,18 +960,7 @@ void mod_freesync_build_vrr_infopacket(struct mod_freesync *mod_freesync,
switch (packet_type) {
case PACKET_TYPE_FS_V3:
-#ifndef TRIM_FSFT
- // always populate with pixel rate.
- build_vrr_infopacket_v3(
- stream->signal, vrr,
- stream->timing.flags.FAST_TRANSPORT,
- (stream->timing.flags.FAST_TRANSPORT) ?
- stream->timing.fast_transport_output_rate_100hz :
- stream->timing.pix_clk_100hz,
- app_tf, infopacket);
-#else
- build_vrr_infopacket_v3(stream->signal, vrr, app_tf, infopacket);
-#endif
+ build_vrr_infopacket_v3(stream->signal, vrr, app_tf, infopacket, stream->freesync_on_desktop);
break;
case PACKET_TYPE_FS_V2:
build_vrr_infopacket_v2(stream->signal, vrr, app_tf, infopacket, stream->freesync_on_desktop);
@@ -1165,7 +1129,6 @@ void mod_freesync_handle_preflip(struct mod_freesync *mod_freesync,
{
struct core_freesync *core_freesync = NULL;
unsigned int last_render_time_in_us = 0;
- unsigned int average_render_time_in_us = 0;
if (mod_freesync == NULL)
return;
@@ -1174,7 +1137,6 @@ void mod_freesync_handle_preflip(struct mod_freesync *mod_freesync,
if (in_out_vrr->supported &&
in_out_vrr->state == VRR_STATE_ACTIVE_VARIABLE) {
- unsigned int i = 0;
unsigned int oldest_index = plane->time.index + 1;
if (oldest_index >= DC_PLANE_UPDATE_TIMES_MAX)
@@ -1183,18 +1145,6 @@ void mod_freesync_handle_preflip(struct mod_freesync *mod_freesync,
last_render_time_in_us = curr_time_stamp_in_us -
plane->time.prev_update_time_in_us;
- /* Sum off all entries except oldest one */
- for (i = 0; i < DC_PLANE_UPDATE_TIMES_MAX; i++) {
- average_render_time_in_us +=
- plane->time.time_elapsed_in_us[i];
- }
- average_render_time_in_us -=
- plane->time.time_elapsed_in_us[oldest_index];
-
- /* Add render time for current flip */
- average_render_time_in_us += last_render_time_in_us;
- average_render_time_in_us /= DC_PLANE_UPDATE_TIMES_MAX;
-
if (in_out_vrr->btr.btr_enabled) {
apply_below_the_range(core_freesync,
stream,
diff --git a/drivers/gpu/drm/amd/display/modules/hdcp/hdcp_log.h b/drivers/gpu/drm/amd/display/modules/hdcp/hdcp_log.h
index eb6f9b9c504a..c62df3bcc7cb 100644
--- a/drivers/gpu/drm/amd/display/modules/hdcp/hdcp_log.h
+++ b/drivers/gpu/drm/amd/display/modules/hdcp/hdcp_log.h
@@ -26,13 +26,11 @@
#ifndef MOD_HDCP_LOG_H_
#define MOD_HDCP_LOG_H_
-#ifdef CONFIG_DRM_AMD_DC_HDCP
#define HDCP_LOG_ERR(hdcp, ...) DRM_DEBUG_KMS(__VA_ARGS__)
#define HDCP_LOG_VER(hdcp, ...) DRM_DEBUG_KMS(__VA_ARGS__)
#define HDCP_LOG_FSM(hdcp, ...) DRM_DEBUG_KMS(__VA_ARGS__)
#define HDCP_LOG_TOP(hdcp, ...) pr_debug("[HDCP_TOP]:"__VA_ARGS__)
#define HDCP_LOG_DDC(hdcp, ...) pr_debug("[HDCP_DDC]:"__VA_ARGS__)
-#endif
/* default logs */
#define HDCP_ERROR_TRACE(hdcp, status) \
diff --git a/drivers/gpu/drm/amd/display/modules/inc/mod_hdcp.h b/drivers/gpu/drm/amd/display/modules/inc/mod_hdcp.h
index 3348bb97ef81..a4d344a4db9e 100644
--- a/drivers/gpu/drm/amd/display/modules/inc/mod_hdcp.h
+++ b/drivers/gpu/drm/amd/display/modules/inc/mod_hdcp.h
@@ -104,6 +104,7 @@ struct mod_hdcp_displayport {
uint8_t rev;
uint8_t assr_enabled;
uint8_t mst_enabled;
+ uint8_t dp2_enabled;
uint8_t usb4_enabled;
};
diff --git a/drivers/gpu/drm/amd/display/modules/inc/mod_info_packet.h b/drivers/gpu/drm/amd/display/modules/inc/mod_info_packet.h
index 1d8b746b02f2..66dc9a19aebe 100644
--- a/drivers/gpu/drm/amd/display/modules/inc/mod_info_packet.h
+++ b/drivers/gpu/drm/amd/display/modules/inc/mod_info_packet.h
@@ -35,9 +35,46 @@ struct mod_vrr_params;
void mod_build_vsc_infopacket(const struct dc_stream_state *stream,
struct dc_info_packet *info_packet,
- enum dc_color_space cs);
+ enum dc_color_space cs,
+ enum color_transfer_func tf);
void mod_build_hf_vsif_infopacket(const struct dc_stream_state *stream,
struct dc_info_packet *info_packet);
+enum adaptive_sync_type {
+ ADAPTIVE_SYNC_TYPE_NONE = 0,
+ ADAPTIVE_SYNC_TYPE_DP = 1,
+ FREESYNC_TYPE_PCON_IN_WHITELIST = 2,
+ FREESYNC_TYPE_PCON_NOT_IN_WHITELIST = 3,
+ ADAPTIVE_SYNC_TYPE_EDP = 4,
+};
+
+enum adaptive_sync_sdp_version {
+ AS_SDP_VER_0 = 0x0,
+ AS_SDP_VER_1 = 0x1,
+ AS_SDP_VER_2 = 0x2,
+};
+
+#define AS_DP_SDP_LENGTH (9)
+
+struct frame_duration_op {
+ bool support;
+ unsigned char frame_duration_hex;
+};
+
+struct AS_Df_params {
+ bool supportMode;
+ struct frame_duration_op increase;
+ struct frame_duration_op decrease;
+};
+
+void mod_build_adaptive_sync_infopacket(const struct dc_stream_state *stream,
+ enum adaptive_sync_type asType, const struct AS_Df_params *param,
+ struct dc_info_packet *info_packet);
+
+void mod_build_adaptive_sync_infopacket_v2(const struct dc_stream_state *stream,
+ const struct AS_Df_params *param, struct dc_info_packet *info_packet);
+
+void mod_build_adaptive_sync_infopacket_v1(struct dc_info_packet *info_packet);
+
#endif
diff --git a/drivers/gpu/drm/amd/display/modules/info_packet/info_packet.c b/drivers/gpu/drm/amd/display/modules/info_packet/info_packet.c
index 27ceba9d6d65..ec64f19e1786 100644
--- a/drivers/gpu/drm/amd/display/modules/info_packet/info_packet.c
+++ b/drivers/gpu/drm/amd/display/modules/info_packet/info_packet.c
@@ -132,7 +132,8 @@ enum ColorimetryYCCDP {
void mod_build_vsc_infopacket(const struct dc_stream_state *stream,
struct dc_info_packet *info_packet,
- enum dc_color_space cs)
+ enum dc_color_space cs,
+ enum color_transfer_func tf)
{
unsigned int vsc_packet_revision = vsc_packet_undefined;
unsigned int i;
@@ -382,6 +383,9 @@ void mod_build_vsc_infopacket(const struct dc_stream_state *stream,
colorimetryFormat = ColorimetryYCC_DP_AdobeYCC;
else if (cs == COLOR_SPACE_2020_YCBCR)
colorimetryFormat = ColorimetryYCC_DP_ITU2020YCbCr;
+
+ if (cs == COLOR_SPACE_2020_YCBCR && tf == TRANSFER_FUNC_GAMMA_22)
+ colorimetryFormat = ColorimetryYCC_DP_ITU709;
break;
default:
@@ -515,3 +519,58 @@ void mod_build_hf_vsif_infopacket(const struct dc_stream_state *stream,
info_packet->valid = true;
}
+void mod_build_adaptive_sync_infopacket(const struct dc_stream_state *stream,
+ enum adaptive_sync_type asType,
+ const struct AS_Df_params *param,
+ struct dc_info_packet *info_packet)
+{
+ info_packet->valid = false;
+
+ memset(info_packet, 0, sizeof(struct dc_info_packet));
+
+ switch (asType) {
+ case ADAPTIVE_SYNC_TYPE_DP:
+ if (stream != NULL)
+ mod_build_adaptive_sync_infopacket_v2(stream, param, info_packet);
+ break;
+ case FREESYNC_TYPE_PCON_IN_WHITELIST:
+ mod_build_adaptive_sync_infopacket_v1(info_packet);
+ break;
+ case ADAPTIVE_SYNC_TYPE_NONE:
+ case FREESYNC_TYPE_PCON_NOT_IN_WHITELIST:
+ default:
+ break;
+ }
+}
+
+void mod_build_adaptive_sync_infopacket_v1(struct dc_info_packet *info_packet)
+{
+ info_packet->valid = true;
+ // HEADER {HB0, HB1, HB2, HB3} = {00, Type, Version, Length}
+ info_packet->hb0 = 0x00;
+ info_packet->hb1 = 0x22;
+ info_packet->hb2 = AS_SDP_VER_1;
+ info_packet->hb3 = 0x00;
+}
+
+void mod_build_adaptive_sync_infopacket_v2(const struct dc_stream_state *stream,
+ const struct AS_Df_params *param,
+ struct dc_info_packet *info_packet)
+{
+ info_packet->valid = true;
+ // HEADER {HB0, HB1, HB2, HB3} = {00, Type, Version, Length}
+ info_packet->hb0 = 0x00;
+ info_packet->hb1 = 0x22;
+ info_packet->hb2 = AS_SDP_VER_2;
+ info_packet->hb3 = AS_DP_SDP_LENGTH;
+
+ //Payload
+ info_packet->sb[0] = param->supportMode; //1: AVT; 0: FAVT
+ info_packet->sb[1] = (stream->timing.v_total & 0x00FF);
+ info_packet->sb[2] = (stream->timing.v_total & 0xFF00) >> 8;
+ //info_packet->sb[3] = 0x00; Target RR, not use fot AVT
+ info_packet->sb[4] = (param->increase.support << 6 | param->decrease.support << 7);
+ info_packet->sb[5] = param->increase.frame_duration_hex;
+ info_packet->sb[6] = param->decrease.frame_duration_hex;
+}
+
diff --git a/drivers/gpu/drm/amd/display/modules/power/power_helpers.c b/drivers/gpu/drm/amd/display/modules/power/power_helpers.c
index 235259d6c5a1..51e76bce92ea 100644
--- a/drivers/gpu/drm/amd/display/modules/power/power_helpers.c
+++ b/drivers/gpu/drm/amd/display/modules/power/power_helpers.c
@@ -102,9 +102,18 @@ static const struct abm_parameters abm_settings_config1[abm_defines_max_level] =
{0x82, 0x4d, 0x20, 0x00, 0x00, 0xff, 0xb3, 0x70, 0x70, 0xcccc, 0xcccc},
};
+static const struct abm_parameters abm_settings_config2[abm_defines_max_level] = {
+// min_red max_red bright_pos dark_pos bright_gain contrast dev min_knee max_knee blRed blStart
+ {0xf0, 0xbf, 0x20, 0x00, 0x88, 0x99, 0xb3, 0x40, 0xe0, 0x0000, 0xcccc},
+ {0xd8, 0x85, 0x20, 0x00, 0x70, 0x90, 0xa8, 0x40, 0xc8, 0x0700, 0xb333},
+ {0xb8, 0x58, 0x20, 0x00, 0x64, 0x88, 0x78, 0x70, 0xa0, 0x7000, 0x9999},
+ {0x82, 0x40, 0x20, 0x00, 0x00, 0xb8, 0xb3, 0x70, 0x70, 0xc333, 0xb333},
+};
+
static const struct abm_parameters * const abm_settings[] = {
abm_settings_config0,
abm_settings_config1,
+ abm_settings_config2,
};
#define NUM_AMBI_LEVEL 5
@@ -669,13 +678,8 @@ bool dmub_init_abm_config(struct resource_pool *res_pool,
bool result = false;
uint32_t i, j = 0;
-#if defined(CONFIG_DRM_AMD_DC_DCN)
if (res_pool->abm == NULL && res_pool->multiple_abms[inst] == NULL)
return false;
-#else
- if (res_pool->abm == NULL)
- return false;
-#endif
memset(&ram_table, 0, sizeof(ram_table));
memset(&config, 0, sizeof(config));
@@ -728,12 +732,10 @@ bool dmub_init_abm_config(struct resource_pool *res_pool,
config.min_abm_backlight = ram_table.min_abm_backlight;
-#if defined(CONFIG_DRM_AMD_DC_DCN)
if (res_pool->multiple_abms[inst]) {
result = res_pool->multiple_abms[inst]->funcs->init_abm_config(
res_pool->multiple_abms[inst], (char *)(&config), sizeof(struct abm_config_table), inst);
} else
-#endif
result = res_pool->abm->funcs->init_abm_config(
res_pool->abm, (char *)(&config), sizeof(struct abm_config_table), 0);
@@ -756,8 +758,8 @@ bool dmcu_load_iram(struct dmcu *dmcu,
if (dmcu->dmcu_version.abm_version == 0x24) {
fill_iram_v_2_3((struct iram_table_v_2_2 *)ram_table, params, true);
- result = dmcu->funcs->load_iram(
- dmcu, 0, (char *)(&ram_table), IRAM_RESERVE_AREA_START_V2_2);
+ result = dmcu->funcs->load_iram(dmcu, 0, (char *)(&ram_table),
+ IRAM_RESERVE_AREA_START_V2_2);
} else if (dmcu->dmcu_version.abm_version == 0x23) {
fill_iram_v_2_3((struct iram_table_v_2_2 *)ram_table, params, true);
@@ -907,3 +909,38 @@ bool mod_power_only_edp(const struct dc_state *context, const struct dc_stream_s
{
return context && context->stream_count == 1 && dc_is_embedded_signal(stream->signal);
}
+
+bool psr_su_set_dsc_slice_height(struct dc *dc, struct dc_link *link,
+ struct dc_stream_state *stream,
+ struct psr_config *config)
+{
+ uint16_t pic_height;
+ uint16_t slice_height;
+
+ config->dsc_slice_height = 0;
+ if ((link->connector_signal & SIGNAL_TYPE_EDP) &&
+ (!dc->caps.edp_dsc_support ||
+ link->panel_config.dsc.disable_dsc_edp ||
+ !link->dpcd_caps.dsc_caps.dsc_basic_caps.fields.dsc_support.DSC_SUPPORT ||
+ !stream->timing.dsc_cfg.num_slices_v))
+ return true;
+
+ pic_height = stream->timing.v_addressable +
+ stream->timing.v_border_top + stream->timing.v_border_bottom;
+
+ if (stream->timing.dsc_cfg.num_slices_v == 0)
+ return false;
+
+ slice_height = pic_height / stream->timing.dsc_cfg.num_slices_v;
+ config->dsc_slice_height = slice_height;
+
+ if (slice_height) {
+ if (config->su_y_granularity &&
+ (slice_height % config->su_y_granularity)) {
+ ASSERT(0);
+ return false;
+ }
+ }
+
+ return true;
+}
diff --git a/drivers/gpu/drm/amd/display/modules/power/power_helpers.h b/drivers/gpu/drm/amd/display/modules/power/power_helpers.h
index 316452e9dbc9..1d3079e56799 100644
--- a/drivers/gpu/drm/amd/display/modules/power/power_helpers.h
+++ b/drivers/gpu/drm/amd/display/modules/power/power_helpers.h
@@ -59,4 +59,7 @@ void mod_power_calc_psr_configs(struct psr_config *psr_config,
const struct dc_stream_state *stream);
bool mod_power_only_edp(const struct dc_state *context,
const struct dc_stream_state *stream);
+bool psr_su_set_dsc_slice_height(struct dc *dc, struct dc_link *link,
+ struct dc_stream_state *stream,
+ struct psr_config *config);
#endif /* MODULES_POWER_POWER_HELPERS_H_ */
diff --git a/drivers/gpu/drm/amd/include/amd_shared.h b/drivers/gpu/drm/amd/include/amd_shared.h
index f175e65b853a..e4a22c68517d 100644
--- a/drivers/gpu/drm/amd/include/amd_shared.h
+++ b/drivers/gpu/drm/amd/include/amd_shared.h
@@ -240,6 +240,7 @@ enum DC_FEATURE_MASK {
DC_DISABLE_LTTPR_DP2_0 = (1 << 6), //0x40, disabled by default
DC_PSR_ALLOW_SMU_OPT = (1 << 7), //0x80, disabled by default
DC_PSR_ALLOW_MULTI_DISP_OPT = (1 << 8), //0x100, disabled by default
+ DC_ENABLE_SUBVP_DRR = (1 << 9), // 0x200, disabled by default
};
enum DC_DEBUG_MASK {
diff --git a/drivers/gpu/drm/amd/include/asic_reg/athub/athub_1_8_0_offset.h b/drivers/gpu/drm/amd/include/asic_reg/athub/athub_1_8_0_offset.h
new file mode 100644
index 000000000000..ff74a661f477
--- /dev/null
+++ b/drivers/gpu/drm/amd/include/asic_reg/athub/athub_1_8_0_offset.h
@@ -0,0 +1,411 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ */
+#ifndef _athub_1_8_0_OFFSET_HEADER
+#define _athub_1_8_0_OFFSET_HEADER
+
+
+
+// addressBlock: aid_athub_atsdec
+// base address: 0x3080
+#define regATC_ATS_CNTL 0x0000
+#define regATC_ATS_CNTL_BASE_IDX 0
+#define regATC_ATS_CNTL2 0x0001
+#define regATC_ATS_CNTL2_BASE_IDX 0
+#define regATC_ATS_CNTL3 0x0002
+#define regATC_ATS_CNTL3_BASE_IDX 0
+#define regATC_ATS_CNTL4 0x0003
+#define regATC_ATS_CNTL4_BASE_IDX 0
+#define regATC_ATS_MISC_CNTL 0x0005
+#define regATC_ATS_MISC_CNTL_BASE_IDX 0
+#define regATC_ATS_STATUS 0x0009
+#define regATC_ATS_STATUS_BASE_IDX 0
+#define regATC_PERFCOUNTER0_CFG 0x000a
+#define regATC_PERFCOUNTER0_CFG_BASE_IDX 0
+#define regATC_PERFCOUNTER1_CFG 0x000b
+#define regATC_PERFCOUNTER1_CFG_BASE_IDX 0
+#define regATC_PERFCOUNTER2_CFG 0x000c
+#define regATC_PERFCOUNTER2_CFG_BASE_IDX 0
+#define regATC_PERFCOUNTER3_CFG 0x000d
+#define regATC_PERFCOUNTER3_CFG_BASE_IDX 0
+#define regATC_PERFCOUNTER_RSLT_CNTL 0x000e
+#define regATC_PERFCOUNTER_RSLT_CNTL_BASE_IDX 0
+#define regATC_PERFCOUNTER_LO 0x000f
+#define regATC_PERFCOUNTER_LO_BASE_IDX 0
+#define regATC_PERFCOUNTER_HI 0x0010
+#define regATC_PERFCOUNTER_HI_BASE_IDX 0
+#define regATC_ATS_FAULT_CNTL 0x0012
+#define regATC_ATS_FAULT_CNTL_BASE_IDX 0
+#define regATC_ATS_FAULT_STATUS_INFO 0x0013
+#define regATC_ATS_FAULT_STATUS_INFO_BASE_IDX 0
+#define regATC_ATS_FAULT_STATUS_INFO2 0x0014
+#define regATC_ATS_FAULT_STATUS_INFO2_BASE_IDX 0
+#define regATC_ATS_FAULT_STATUS_INFO3 0x0015
+#define regATC_ATS_FAULT_STATUS_INFO3_BASE_IDX 0
+#define regATC_ATS_FAULT_STATUS_INFO4 0x0016
+#define regATC_ATS_FAULT_STATUS_INFO4_BASE_IDX 0
+#define regATC_ATS_FAULT_STATUS_ADDR 0x0017
+#define regATC_ATS_FAULT_STATUS_ADDR_BASE_IDX 0
+#define regATC_ATS_DEFAULT_PAGE_LOW 0x0018
+#define regATC_ATS_DEFAULT_PAGE_LOW_BASE_IDX 0
+#define regATHUB_PCIE_ATS_CNTL 0x001f
+#define regATHUB_PCIE_ATS_CNTL_BASE_IDX 0
+#define regATHUB_PCIE_PASID_CNTL 0x0020
+#define regATHUB_PCIE_PASID_CNTL_BASE_IDX 0
+#define regATHUB_PCIE_PAGE_REQ_CNTL 0x0021
+#define regATHUB_PCIE_PAGE_REQ_CNTL_BASE_IDX 0
+#define regATHUB_PCIE_OUTSTAND_PAGE_REQ_ALLOC 0x0022
+#define regATHUB_PCIE_OUTSTAND_PAGE_REQ_ALLOC_BASE_IDX 0
+#define regATHUB_COMMAND 0x0023
+#define regATHUB_COMMAND_BASE_IDX 0
+#define regATHUB_PCIE_ATS_CNTL_VF_0 0x0024
+#define regATHUB_PCIE_ATS_CNTL_VF_0_BASE_IDX 0
+#define regATHUB_PCIE_ATS_CNTL_VF_1 0x0025
+#define regATHUB_PCIE_ATS_CNTL_VF_1_BASE_IDX 0
+#define regATHUB_PCIE_ATS_CNTL_VF_2 0x0026
+#define regATHUB_PCIE_ATS_CNTL_VF_2_BASE_IDX 0
+#define regATHUB_PCIE_ATS_CNTL_VF_3 0x0027
+#define regATHUB_PCIE_ATS_CNTL_VF_3_BASE_IDX 0
+#define regATHUB_PCIE_ATS_CNTL_VF_4 0x0028
+#define regATHUB_PCIE_ATS_CNTL_VF_4_BASE_IDX 0
+#define regATHUB_PCIE_ATS_CNTL_VF_5 0x0029
+#define regATHUB_PCIE_ATS_CNTL_VF_5_BASE_IDX 0
+#define regATHUB_PCIE_ATS_CNTL_VF_6 0x002a
+#define regATHUB_PCIE_ATS_CNTL_VF_6_BASE_IDX 0
+#define regATHUB_PCIE_ATS_CNTL_VF_7 0x002b
+#define regATHUB_PCIE_ATS_CNTL_VF_7_BASE_IDX 0
+#define regATHUB_PCIE_ATS_CNTL_VF_8 0x002c
+#define regATHUB_PCIE_ATS_CNTL_VF_8_BASE_IDX 0
+#define regATHUB_PCIE_ATS_CNTL_VF_9 0x002d
+#define regATHUB_PCIE_ATS_CNTL_VF_9_BASE_IDX 0
+#define regATHUB_PCIE_ATS_CNTL_VF_10 0x002e
+#define regATHUB_PCIE_ATS_CNTL_VF_10_BASE_IDX 0
+#define regATHUB_PCIE_ATS_CNTL_VF_11 0x002f
+#define regATHUB_PCIE_ATS_CNTL_VF_11_BASE_IDX 0
+#define regATHUB_PCIE_ATS_CNTL_VF_12 0x0030
+#define regATHUB_PCIE_ATS_CNTL_VF_12_BASE_IDX 0
+#define regATHUB_PCIE_ATS_CNTL_VF_13 0x0031
+#define regATHUB_PCIE_ATS_CNTL_VF_13_BASE_IDX 0
+#define regATHUB_PCIE_ATS_CNTL_VF_14 0x0032
+#define regATHUB_PCIE_ATS_CNTL_VF_14_BASE_IDX 0
+#define regATHUB_PCIE_ATS_CNTL_VF_15 0x0033
+#define regATHUB_PCIE_ATS_CNTL_VF_15_BASE_IDX 0
+#define regATHUB_SHARED_VIRT_RESET_REQ 0x0034
+#define regATHUB_SHARED_VIRT_RESET_REQ_BASE_IDX 0
+#define regATHUB_SHARED_ACTIVE_FCN_ID 0x0036
+#define regATHUB_SHARED_ACTIVE_FCN_ID_BASE_IDX 0
+#define regATC_ATS_SDPPORT_CNTL 0x0038
+#define regATC_ATS_SDPPORT_CNTL_BASE_IDX 0
+#define regATC_VMID_PASID_MAPPING_UPDATE_STATUS 0x003e
+#define regATC_VMID_PASID_MAPPING_UPDATE_STATUS_BASE_IDX 0
+#define regATC_VMID0_PASID_MAPPING 0x003f
+#define regATC_VMID0_PASID_MAPPING_BASE_IDX 0
+#define regATC_VMID1_PASID_MAPPING 0x0040
+#define regATC_VMID1_PASID_MAPPING_BASE_IDX 0
+#define regATC_VMID2_PASID_MAPPING 0x0041
+#define regATC_VMID2_PASID_MAPPING_BASE_IDX 0
+#define regATC_VMID3_PASID_MAPPING 0x0042
+#define regATC_VMID3_PASID_MAPPING_BASE_IDX 0
+#define regATC_VMID4_PASID_MAPPING 0x0043
+#define regATC_VMID4_PASID_MAPPING_BASE_IDX 0
+#define regATC_VMID5_PASID_MAPPING 0x0044
+#define regATC_VMID5_PASID_MAPPING_BASE_IDX 0
+#define regATC_VMID6_PASID_MAPPING 0x0045
+#define regATC_VMID6_PASID_MAPPING_BASE_IDX 0
+#define regATC_VMID7_PASID_MAPPING 0x0046
+#define regATC_VMID7_PASID_MAPPING_BASE_IDX 0
+#define regATC_VMID8_PASID_MAPPING 0x0047
+#define regATC_VMID8_PASID_MAPPING_BASE_IDX 0
+#define regATC_VMID9_PASID_MAPPING 0x0048
+#define regATC_VMID9_PASID_MAPPING_BASE_IDX 0
+#define regATC_VMID10_PASID_MAPPING 0x0049
+#define regATC_VMID10_PASID_MAPPING_BASE_IDX 0
+#define regATC_VMID11_PASID_MAPPING 0x004a
+#define regATC_VMID11_PASID_MAPPING_BASE_IDX 0
+#define regATC_VMID12_PASID_MAPPING 0x004b
+#define regATC_VMID12_PASID_MAPPING_BASE_IDX 0
+#define regATC_VMID13_PASID_MAPPING 0x004c
+#define regATC_VMID13_PASID_MAPPING_BASE_IDX 0
+#define regATC_VMID14_PASID_MAPPING 0x004d
+#define regATC_VMID14_PASID_MAPPING_BASE_IDX 0
+#define regATC_VMID15_PASID_MAPPING 0x004e
+#define regATC_VMID15_PASID_MAPPING_BASE_IDX 0
+#define regATC_TRANS_FAULT_RSPCNTRL 0x0050
+#define regATC_TRANS_FAULT_RSPCNTRL_BASE_IDX 0
+#define regATC_ATS_VMID_STATUS 0x0051
+#define regATC_ATS_VMID_STATUS_BASE_IDX 0
+#define regATHUB_MISC_CNTL 0x0055
+#define regATHUB_MISC_CNTL_BASE_IDX 0
+#define regATHUB_MEM_POWER_LS 0x0056
+#define regATHUB_MEM_POWER_LS_BASE_IDX 0
+#define regATHUB_IH_CREDIT 0x0057
+#define regATHUB_IH_CREDIT_BASE_IDX 0
+
+
+// addressBlock: aid_athub_xpbdec
+// base address: 0x46000
+#define regXPB_RTR_SRC_APRTR0 0x0000
+#define regXPB_RTR_SRC_APRTR0_BASE_IDX 1
+#define regXPB_RTR_SRC_APRTR1 0x0001
+#define regXPB_RTR_SRC_APRTR1_BASE_IDX 1
+#define regXPB_RTR_SRC_APRTR2 0x0002
+#define regXPB_RTR_SRC_APRTR2_BASE_IDX 1
+#define regXPB_RTR_SRC_APRTR3 0x0003
+#define regXPB_RTR_SRC_APRTR3_BASE_IDX 1
+#define regXPB_RTR_SRC_APRTR4 0x0004
+#define regXPB_RTR_SRC_APRTR4_BASE_IDX 1
+#define regXPB_RTR_SRC_APRTR5 0x0005
+#define regXPB_RTR_SRC_APRTR5_BASE_IDX 1
+#define regXPB_RTR_SRC_APRTR6 0x0006
+#define regXPB_RTR_SRC_APRTR6_BASE_IDX 1
+#define regXPB_RTR_SRC_APRTR7 0x0007
+#define regXPB_RTR_SRC_APRTR7_BASE_IDX 1
+#define regXPB_RTR_SRC_APRTR8 0x0008
+#define regXPB_RTR_SRC_APRTR8_BASE_IDX 1
+#define regXPB_RTR_SRC_APRTR9 0x0009
+#define regXPB_RTR_SRC_APRTR9_BASE_IDX 1
+#define regXPB_XDMA_RTR_SRC_APRTR0 0x000a
+#define regXPB_XDMA_RTR_SRC_APRTR0_BASE_IDX 1
+#define regXPB_XDMA_RTR_SRC_APRTR1 0x000b
+#define regXPB_XDMA_RTR_SRC_APRTR1_BASE_IDX 1
+#define regXPB_XDMA_RTR_SRC_APRTR2 0x000c
+#define regXPB_XDMA_RTR_SRC_APRTR2_BASE_IDX 1
+#define regXPB_XDMA_RTR_SRC_APRTR3 0x000d
+#define regXPB_XDMA_RTR_SRC_APRTR3_BASE_IDX 1
+#define regXPB_RTR_DEST_MAP0 0x000e
+#define regXPB_RTR_DEST_MAP0_BASE_IDX 1
+#define regXPB_RTR_DEST_MAP1 0x000f
+#define regXPB_RTR_DEST_MAP1_BASE_IDX 1
+#define regXPB_RTR_DEST_MAP2 0x0010
+#define regXPB_RTR_DEST_MAP2_BASE_IDX 1
+#define regXPB_RTR_DEST_MAP3 0x0011
+#define regXPB_RTR_DEST_MAP3_BASE_IDX 1
+#define regXPB_RTR_DEST_MAP4 0x0012
+#define regXPB_RTR_DEST_MAP4_BASE_IDX 1
+#define regXPB_RTR_DEST_MAP5 0x0013
+#define regXPB_RTR_DEST_MAP5_BASE_IDX 1
+#define regXPB_RTR_DEST_MAP6 0x0014
+#define regXPB_RTR_DEST_MAP6_BASE_IDX 1
+#define regXPB_RTR_DEST_MAP7 0x0015
+#define regXPB_RTR_DEST_MAP7_BASE_IDX 1
+#define regXPB_RTR_DEST_MAP8 0x0016
+#define regXPB_RTR_DEST_MAP8_BASE_IDX 1
+#define regXPB_RTR_DEST_MAP9 0x0017
+#define regXPB_RTR_DEST_MAP9_BASE_IDX 1
+#define regXPB_XDMA_RTR_DEST_MAP0 0x0018
+#define regXPB_XDMA_RTR_DEST_MAP0_BASE_IDX 1
+#define regXPB_XDMA_RTR_DEST_MAP1 0x0019
+#define regXPB_XDMA_RTR_DEST_MAP1_BASE_IDX 1
+#define regXPB_XDMA_RTR_DEST_MAP2 0x001a
+#define regXPB_XDMA_RTR_DEST_MAP2_BASE_IDX 1
+#define regXPB_XDMA_RTR_DEST_MAP3 0x001b
+#define regXPB_XDMA_RTR_DEST_MAP3_BASE_IDX 1
+#define regXPB_CLG_CFG0 0x001c
+#define regXPB_CLG_CFG0_BASE_IDX 1
+#define regXPB_CLG_CFG1 0x001d
+#define regXPB_CLG_CFG1_BASE_IDX 1
+#define regXPB_CLG_CFG2 0x001e
+#define regXPB_CLG_CFG2_BASE_IDX 1
+#define regXPB_CLG_CFG3 0x001f
+#define regXPB_CLG_CFG3_BASE_IDX 1
+#define regXPB_CLG_CFG4 0x0020
+#define regXPB_CLG_CFG4_BASE_IDX 1
+#define regXPB_CLG_CFG5 0x0021
+#define regXPB_CLG_CFG5_BASE_IDX 1
+#define regXPB_CLG_CFG6 0x0022
+#define regXPB_CLG_CFG6_BASE_IDX 1
+#define regXPB_CLG_CFG7 0x0023
+#define regXPB_CLG_CFG7_BASE_IDX 1
+#define regXPB_CLG_EXTRA0 0x0024
+#define regXPB_CLG_EXTRA0_BASE_IDX 1
+#define regXPB_CLG_EXTRA1 0x0025
+#define regXPB_CLG_EXTRA1_BASE_IDX 1
+#define regXPB_CLG_EXTRA_MSK 0x0026
+#define regXPB_CLG_EXTRA_MSK_BASE_IDX 1
+#define regXPB_LB_ADDR 0x0027
+#define regXPB_LB_ADDR_BASE_IDX 1
+#define regXPB_WCB_STS 0x0028
+#define regXPB_WCB_STS_BASE_IDX 1
+#define regXPB_HST_CFG 0x0029
+#define regXPB_HST_CFG_BASE_IDX 1
+#define regXPB_P2P_BAR_CFG 0x002a
+#define regXPB_P2P_BAR_CFG_BASE_IDX 1
+#define regXPB_P2P_BAR0 0x002b
+#define regXPB_P2P_BAR0_BASE_IDX 1
+#define regXPB_P2P_BAR1 0x002c
+#define regXPB_P2P_BAR1_BASE_IDX 1
+#define regXPB_P2P_BAR2 0x002d
+#define regXPB_P2P_BAR2_BASE_IDX 1
+#define regXPB_P2P_BAR3 0x002e
+#define regXPB_P2P_BAR3_BASE_IDX 1
+#define regXPB_P2P_BAR4 0x002f
+#define regXPB_P2P_BAR4_BASE_IDX 1
+#define regXPB_P2P_BAR5 0x0030
+#define regXPB_P2P_BAR5_BASE_IDX 1
+#define regXPB_P2P_BAR6 0x0031
+#define regXPB_P2P_BAR6_BASE_IDX 1
+#define regXPB_P2P_BAR7 0x0032
+#define regXPB_P2P_BAR7_BASE_IDX 1
+#define regXPB_P2P_BAR_SETUP 0x0033
+#define regXPB_P2P_BAR_SETUP_BASE_IDX 1
+#define regXPB_P2P_BAR_DELTA_ABOVE 0x0035
+#define regXPB_P2P_BAR_DELTA_ABOVE_BASE_IDX 1
+#define regXPB_P2P_BAR_DELTA_BELOW 0x0036
+#define regXPB_P2P_BAR_DELTA_BELOW_BASE_IDX 1
+#define regXPB_PEER_SYS_BAR0 0x0037
+#define regXPB_PEER_SYS_BAR0_BASE_IDX 1
+#define regXPB_PEER_SYS_BAR1 0x0038
+#define regXPB_PEER_SYS_BAR1_BASE_IDX 1
+#define regXPB_PEER_SYS_BAR2 0x0039
+#define regXPB_PEER_SYS_BAR2_BASE_IDX 1
+#define regXPB_PEER_SYS_BAR3 0x003a
+#define regXPB_PEER_SYS_BAR3_BASE_IDX 1
+#define regXPB_PEER_SYS_BAR4 0x003b
+#define regXPB_PEER_SYS_BAR4_BASE_IDX 1
+#define regXPB_PEER_SYS_BAR5 0x003c
+#define regXPB_PEER_SYS_BAR5_BASE_IDX 1
+#define regXPB_PEER_SYS_BAR6 0x003d
+#define regXPB_PEER_SYS_BAR6_BASE_IDX 1
+#define regXPB_PEER_SYS_BAR7 0x003e
+#define regXPB_PEER_SYS_BAR7_BASE_IDX 1
+#define regXPB_PEER_SYS_BAR8 0x003f
+#define regXPB_PEER_SYS_BAR8_BASE_IDX 1
+#define regXPB_PEER_SYS_BAR9 0x0040
+#define regXPB_PEER_SYS_BAR9_BASE_IDX 1
+#define regXPB_XDMA_PEER_SYS_BAR0 0x0041
+#define regXPB_XDMA_PEER_SYS_BAR0_BASE_IDX 1
+#define regXPB_XDMA_PEER_SYS_BAR1 0x0042
+#define regXPB_XDMA_PEER_SYS_BAR1_BASE_IDX 1
+#define regXPB_XDMA_PEER_SYS_BAR2 0x0043
+#define regXPB_XDMA_PEER_SYS_BAR2_BASE_IDX 1
+#define regXPB_XDMA_PEER_SYS_BAR3 0x0044
+#define regXPB_XDMA_PEER_SYS_BAR3_BASE_IDX 1
+#define regXPB_CLK_GAT 0x0045
+#define regXPB_CLK_GAT_BASE_IDX 1
+#define regXPB_INTF_CFG 0x0046
+#define regXPB_INTF_CFG_BASE_IDX 1
+#define regXPB_INTF_STS 0x0047
+#define regXPB_INTF_STS_BASE_IDX 1
+#define regXPB_PIPE_STS 0x0048
+#define regXPB_PIPE_STS_BASE_IDX 1
+#define regXPB_SUB_CTRL 0x0049
+#define regXPB_SUB_CTRL_BASE_IDX 1
+#define regXPB_MAP_INVERT_FLUSH_NUM_LSB 0x004a
+#define regXPB_MAP_INVERT_FLUSH_NUM_LSB_BASE_IDX 1
+#define regXPB_PERF_KNOBS 0x004b
+#define regXPB_PERF_KNOBS_BASE_IDX 1
+#define regXPB_STICKY 0x004c
+#define regXPB_STICKY_BASE_IDX 1
+#define regXPB_STICKY_W1C 0x004d
+#define regXPB_STICKY_W1C_BASE_IDX 1
+#define regXPB_MISC_CFG 0x004e
+#define regXPB_MISC_CFG_BASE_IDX 1
+#define regXPB_INTF_CFG2 0x004f
+#define regXPB_INTF_CFG2_BASE_IDX 1
+#define regXPB_CLG_EXTRA_RD 0x0050
+#define regXPB_CLG_EXTRA_RD_BASE_IDX 1
+#define regXPB_CLG_EXTRA_MSK_RD 0x0051
+#define regXPB_CLG_EXTRA_MSK_RD_BASE_IDX 1
+#define regXPB_CLG_GFX_MATCH 0x0052
+#define regXPB_CLG_GFX_MATCH_BASE_IDX 1
+#define regXPB_CLG_GFX_MATCH_VLD 0x0053
+#define regXPB_CLG_GFX_MATCH_VLD_BASE_IDX 1
+#define regXPB_CLG_GFX_MATCH_MSK 0x0054
+#define regXPB_CLG_GFX_MATCH_MSK_BASE_IDX 1
+#define regXPB_CLG_MM_MATCH 0x0055
+#define regXPB_CLG_MM_MATCH_BASE_IDX 1
+#define regXPB_CLG_MM_MATCH_VLD 0x0056
+#define regXPB_CLG_MM_MATCH_VLD_BASE_IDX 1
+#define regXPB_CLG_MM_MATCH_MSK 0x0057
+#define regXPB_CLG_MM_MATCH_MSK_BASE_IDX 1
+#define regXPB_CLG_GFX_UNITID_MAPPING0 0x0058
+#define regXPB_CLG_GFX_UNITID_MAPPING0_BASE_IDX 1
+#define regXPB_CLG_GFX_UNITID_MAPPING1 0x0059
+#define regXPB_CLG_GFX_UNITID_MAPPING1_BASE_IDX 1
+#define regXPB_CLG_GFX_UNITID_MAPPING2 0x005a
+#define regXPB_CLG_GFX_UNITID_MAPPING2_BASE_IDX 1
+#define regXPB_CLG_GFX_UNITID_MAPPING3 0x005b
+#define regXPB_CLG_GFX_UNITID_MAPPING3_BASE_IDX 1
+#define regXPB_CLG_GFX_UNITID_MAPPING4 0x005c
+#define regXPB_CLG_GFX_UNITID_MAPPING4_BASE_IDX 1
+#define regXPB_CLG_GFX_UNITID_MAPPING5 0x005d
+#define regXPB_CLG_GFX_UNITID_MAPPING5_BASE_IDX 1
+#define regXPB_CLG_GFX_UNITID_MAPPING6 0x005e
+#define regXPB_CLG_GFX_UNITID_MAPPING6_BASE_IDX 1
+#define regXPB_CLG_GFX_UNITID_MAPPING7 0x005f
+#define regXPB_CLG_GFX_UNITID_MAPPING7_BASE_IDX 1
+#define regXPB_CLG_MM_UNITID_MAPPING0 0x0060
+#define regXPB_CLG_MM_UNITID_MAPPING0_BASE_IDX 1
+#define regXPB_CLG_MM_UNITID_MAPPING1 0x0061
+#define regXPB_CLG_MM_UNITID_MAPPING1_BASE_IDX 1
+#define regXPB_CLG_MM_UNITID_MAPPING2 0x0062
+#define regXPB_CLG_MM_UNITID_MAPPING2_BASE_IDX 1
+#define regXPB_CLG_MM_UNITID_MAPPING3 0x0063
+#define regXPB_CLG_MM_UNITID_MAPPING3_BASE_IDX 1
+
+
+// addressBlock: aid_athub_rpbdec
+// base address: 0x46200
+#define regRPB_PASSPW_CONF 0x0080
+#define regRPB_PASSPW_CONF_BASE_IDX 1
+#define regRPB_BLOCKLEVEL_CONF 0x0081
+#define regRPB_BLOCKLEVEL_CONF_BASE_IDX 1
+#define regRPB_TAG_CONF 0x0082
+#define regRPB_TAG_CONF_BASE_IDX 1
+#define regRPB_TAG_CONF2 0x0083
+#define regRPB_TAG_CONF2_BASE_IDX 1
+#define regRPB_ARB_CNTL 0x0085
+#define regRPB_ARB_CNTL_BASE_IDX 1
+#define regRPB_ARB_CNTL2 0x0086
+#define regRPB_ARB_CNTL2_BASE_IDX 1
+#define regRPB_BIF_CNTL 0x0087
+#define regRPB_BIF_CNTL_BASE_IDX 1
+#define regRPB_BIF_CNTL2 0x0088
+#define regRPB_BIF_CNTL2_BASE_IDX 1
+#define regRPB_PERF_COUNTER_CNTL 0x008a
+#define regRPB_PERF_COUNTER_CNTL_BASE_IDX 1
+#define regRPB_DEINTRLV_COMBINE_CNTL 0x008c
+#define regRPB_DEINTRLV_COMBINE_CNTL_BASE_IDX 1
+#define regRPB_VC_SWITCH_RDWR 0x008d
+#define regRPB_VC_SWITCH_RDWR_BASE_IDX 1
+#define regRPB_PERFCOUNTER_LO 0x008e
+#define regRPB_PERFCOUNTER_LO_BASE_IDX 1
+#define regRPB_PERFCOUNTER_HI 0x008f
+#define regRPB_PERFCOUNTER_HI_BASE_IDX 1
+#define regRPB_PERFCOUNTER0_CFG 0x0090
+#define regRPB_PERFCOUNTER0_CFG_BASE_IDX 1
+#define regRPB_PERFCOUNTER1_CFG 0x0091
+#define regRPB_PERFCOUNTER1_CFG_BASE_IDX 1
+#define regRPB_PERFCOUNTER2_CFG 0x0092
+#define regRPB_PERFCOUNTER2_CFG_BASE_IDX 1
+#define regRPB_PERFCOUNTER3_CFG 0x0093
+#define regRPB_PERFCOUNTER3_CFG_BASE_IDX 1
+#define regRPB_PERFCOUNTER_RSLT_CNTL 0x0094
+#define regRPB_PERFCOUNTER_RSLT_CNTL_BASE_IDX 1
+#define regRPB_ATS_CNTL 0x0096
+#define regRPB_ATS_CNTL_BASE_IDX 1
+#define regRPB_ATS_CNTL2 0x0097
+#define regRPB_ATS_CNTL2_BASE_IDX 1
+#define regRPB_SDPPORT_CNTL 0x0098
+#define regRPB_SDPPORT_CNTL_BASE_IDX 1
+
+#endif
diff --git a/drivers/gpu/drm/amd/include/asic_reg/athub/athub_1_8_0_sh_mask.h b/drivers/gpu/drm/amd/include/asic_reg/athub/athub_1_8_0_sh_mask.h
new file mode 100644
index 000000000000..91454c528ad7
--- /dev/null
+++ b/drivers/gpu/drm/amd/include/asic_reg/athub/athub_1_8_0_sh_mask.h
@@ -0,0 +1,1807 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ */
+#ifndef _athub_1_8_0_SH_MASK_HEADER
+#define _athub_1_8_0_SH_MASK_HEADER
+
+
+// addressBlock: aid_athub_atsdec
+//ATC_ATS_CNTL
+#define ATC_ATS_CNTL__DISABLE_ATC__SHIFT 0x0
+#define ATC_ATS_CNTL__DISABLE_PRI__SHIFT 0x1
+#define ATC_ATS_CNTL__DISABLE_PASID__SHIFT 0x2
+#define ATC_ATS_CNTL__CREDITS_ATS_RPB__SHIFT 0x8
+#define ATC_ATS_CNTL__DEBUG_ECO__SHIFT 0x10
+#define ATC_ATS_CNTL__TRANS_EXE_RETURN__SHIFT 0x16
+#define ATC_ATS_CNTL__DISABLE_ATC_MASK 0x00000001L
+#define ATC_ATS_CNTL__DISABLE_PRI_MASK 0x00000002L
+#define ATC_ATS_CNTL__DISABLE_PASID_MASK 0x00000004L
+#define ATC_ATS_CNTL__CREDITS_ATS_RPB_MASK 0x00003F00L
+#define ATC_ATS_CNTL__DEBUG_ECO_MASK 0x000F0000L
+#define ATC_ATS_CNTL__TRANS_EXE_RETURN_MASK 0x00C00000L
+//ATC_ATS_CNTL2
+#define ATC_ATS_CNTL2__CREDITS_ATS_RPB_VC5TR__SHIFT 0x0
+#define ATC_ATS_CNTL2__CREDITS_ATS_RPB_VC0TR__SHIFT 0x8
+#define ATC_ATS_CNTL2__CREDITS_ATS_RPB_PRINV__SHIFT 0x10
+#define ATC_ATS_CNTL2__TRANSLATION_STALL__SHIFT 0x18
+#define ATC_ATS_CNTL2__GC_TRANS_VC5_ENABLE__SHIFT 0x19
+#define ATC_ATS_CNTL2__MM_TRANS_VC5_ENABLE__SHIFT 0x1a
+#define ATC_ATS_CNTL2__RESERVED__SHIFT 0x1b
+#define ATC_ATS_CNTL2__CREDITS_ATS_RPB_VC5TR_MASK 0x000000FFL
+#define ATC_ATS_CNTL2__CREDITS_ATS_RPB_VC0TR_MASK 0x0000FF00L
+#define ATC_ATS_CNTL2__CREDITS_ATS_RPB_PRINV_MASK 0x00FF0000L
+#define ATC_ATS_CNTL2__TRANSLATION_STALL_MASK 0x01000000L
+#define ATC_ATS_CNTL2__GC_TRANS_VC5_ENABLE_MASK 0x02000000L
+#define ATC_ATS_CNTL2__MM_TRANS_VC5_ENABLE_MASK 0x04000000L
+#define ATC_ATS_CNTL2__RESERVED_MASK 0xF8000000L
+//ATC_ATS_CNTL3
+#define ATC_ATS_CNTL3__RESERVED__SHIFT 0x0
+#define ATC_ATS_CNTL3__RESERVED_MASK 0xFFFFFFFFL
+//ATC_ATS_CNTL4
+#define ATC_ATS_CNTL4__RESERVED__SHIFT 0x0
+#define ATC_ATS_CNTL4__RESERVED_MASK 0xFFFFFFFFL
+//ATC_ATS_MISC_CNTL
+#define ATC_ATS_MISC_CNTL__TRANS_RESP_IN_INV_COLLISION_HOST__SHIFT 0x10
+#define ATC_ATS_MISC_CNTL__TRANS_RESP_IN_INV_COLLISION_GUEST__SHIFT 0x11
+#define ATC_ATS_MISC_CNTL__DEBUG_COLLISION__SHIFT 0x12
+#define ATC_ATS_MISC_CNTL__EFFECTIVE_TRANS_WORK_QUEUE__SHIFT 0x13
+#define ATC_ATS_MISC_CNTL__TRANS_RESP_NULL_PASID_SEL__SHIFT 0x1d
+#define ATC_ATS_MISC_CNTL__RESERVED__SHIFT 0x1e
+#define ATC_ATS_MISC_CNTL__TRANS_RESP_IN_INV_COLLISION_HOST_MASK 0x00010000L
+#define ATC_ATS_MISC_CNTL__TRANS_RESP_IN_INV_COLLISION_GUEST_MASK 0x00020000L
+#define ATC_ATS_MISC_CNTL__DEBUG_COLLISION_MASK 0x00040000L
+#define ATC_ATS_MISC_CNTL__EFFECTIVE_TRANS_WORK_QUEUE_MASK 0x1FF80000L
+#define ATC_ATS_MISC_CNTL__TRANS_RESP_NULL_PASID_SEL_MASK 0x20000000L
+#define ATC_ATS_MISC_CNTL__RESERVED_MASK 0xC0000000L
+//ATC_ATS_STATUS
+#define ATC_ATS_STATUS__BUSY__SHIFT 0x0
+#define ATC_ATS_STATUS__CRASHED__SHIFT 0x1
+#define ATC_ATS_STATUS__DEADLOCK_DETECTION__SHIFT 0x2
+#define ATC_ATS_STATUS__FED_IND__SHIFT 0x3
+#define ATC_ATS_STATUS__BUSY_MASK 0x00000001L
+#define ATC_ATS_STATUS__CRASHED_MASK 0x00000002L
+#define ATC_ATS_STATUS__DEADLOCK_DETECTION_MASK 0x00000004L
+#define ATC_ATS_STATUS__FED_IND_MASK 0x00000008L
+//ATC_PERFCOUNTER0_CFG
+#define ATC_PERFCOUNTER0_CFG__PERF_SEL__SHIFT 0x0
+#define ATC_PERFCOUNTER0_CFG__PERF_SEL_END__SHIFT 0x8
+#define ATC_PERFCOUNTER0_CFG__PERF_MODE__SHIFT 0x18
+#define ATC_PERFCOUNTER0_CFG__ENABLE__SHIFT 0x1c
+#define ATC_PERFCOUNTER0_CFG__CLEAR__SHIFT 0x1d
+#define ATC_PERFCOUNTER0_CFG__PERF_SEL_MASK 0x000000FFL
+#define ATC_PERFCOUNTER0_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define ATC_PERFCOUNTER0_CFG__PERF_MODE_MASK 0x0F000000L
+#define ATC_PERFCOUNTER0_CFG__ENABLE_MASK 0x10000000L
+#define ATC_PERFCOUNTER0_CFG__CLEAR_MASK 0x20000000L
+//ATC_PERFCOUNTER1_CFG
+#define ATC_PERFCOUNTER1_CFG__PERF_SEL__SHIFT 0x0
+#define ATC_PERFCOUNTER1_CFG__PERF_SEL_END__SHIFT 0x8
+#define ATC_PERFCOUNTER1_CFG__PERF_MODE__SHIFT 0x18
+#define ATC_PERFCOUNTER1_CFG__ENABLE__SHIFT 0x1c
+#define ATC_PERFCOUNTER1_CFG__CLEAR__SHIFT 0x1d
+#define ATC_PERFCOUNTER1_CFG__PERF_SEL_MASK 0x000000FFL
+#define ATC_PERFCOUNTER1_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define ATC_PERFCOUNTER1_CFG__PERF_MODE_MASK 0x0F000000L
+#define ATC_PERFCOUNTER1_CFG__ENABLE_MASK 0x10000000L
+#define ATC_PERFCOUNTER1_CFG__CLEAR_MASK 0x20000000L
+//ATC_PERFCOUNTER2_CFG
+#define ATC_PERFCOUNTER2_CFG__PERF_SEL__SHIFT 0x0
+#define ATC_PERFCOUNTER2_CFG__PERF_SEL_END__SHIFT 0x8
+#define ATC_PERFCOUNTER2_CFG__PERF_MODE__SHIFT 0x18
+#define ATC_PERFCOUNTER2_CFG__ENABLE__SHIFT 0x1c
+#define ATC_PERFCOUNTER2_CFG__CLEAR__SHIFT 0x1d
+#define ATC_PERFCOUNTER2_CFG__PERF_SEL_MASK 0x000000FFL
+#define ATC_PERFCOUNTER2_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define ATC_PERFCOUNTER2_CFG__PERF_MODE_MASK 0x0F000000L
+#define ATC_PERFCOUNTER2_CFG__ENABLE_MASK 0x10000000L
+#define ATC_PERFCOUNTER2_CFG__CLEAR_MASK 0x20000000L
+//ATC_PERFCOUNTER3_CFG
+#define ATC_PERFCOUNTER3_CFG__PERF_SEL__SHIFT 0x0
+#define ATC_PERFCOUNTER3_CFG__PERF_SEL_END__SHIFT 0x8
+#define ATC_PERFCOUNTER3_CFG__PERF_MODE__SHIFT 0x18
+#define ATC_PERFCOUNTER3_CFG__ENABLE__SHIFT 0x1c
+#define ATC_PERFCOUNTER3_CFG__CLEAR__SHIFT 0x1d
+#define ATC_PERFCOUNTER3_CFG__PERF_SEL_MASK 0x000000FFL
+#define ATC_PERFCOUNTER3_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define ATC_PERFCOUNTER3_CFG__PERF_MODE_MASK 0x0F000000L
+#define ATC_PERFCOUNTER3_CFG__ENABLE_MASK 0x10000000L
+#define ATC_PERFCOUNTER3_CFG__CLEAR_MASK 0x20000000L
+//ATC_PERFCOUNTER_RSLT_CNTL
+#define ATC_PERFCOUNTER_RSLT_CNTL__PERF_COUNTER_SELECT__SHIFT 0x0
+#define ATC_PERFCOUNTER_RSLT_CNTL__START_TRIGGER__SHIFT 0x8
+#define ATC_PERFCOUNTER_RSLT_CNTL__STOP_TRIGGER__SHIFT 0x10
+#define ATC_PERFCOUNTER_RSLT_CNTL__ENABLE_ANY__SHIFT 0x18
+#define ATC_PERFCOUNTER_RSLT_CNTL__CLEAR_ALL__SHIFT 0x19
+#define ATC_PERFCOUNTER_RSLT_CNTL__STOP_ALL_ON_SATURATE__SHIFT 0x1a
+#define ATC_PERFCOUNTER_RSLT_CNTL__PERF_COUNTER_SELECT_MASK 0x0000000FL
+#define ATC_PERFCOUNTER_RSLT_CNTL__START_TRIGGER_MASK 0x0000FF00L
+#define ATC_PERFCOUNTER_RSLT_CNTL__STOP_TRIGGER_MASK 0x00FF0000L
+#define ATC_PERFCOUNTER_RSLT_CNTL__ENABLE_ANY_MASK 0x01000000L
+#define ATC_PERFCOUNTER_RSLT_CNTL__CLEAR_ALL_MASK 0x02000000L
+#define ATC_PERFCOUNTER_RSLT_CNTL__STOP_ALL_ON_SATURATE_MASK 0x04000000L
+//ATC_PERFCOUNTER_LO
+#define ATC_PERFCOUNTER_LO__COUNTER_LO__SHIFT 0x0
+#define ATC_PERFCOUNTER_LO__COUNTER_LO_MASK 0xFFFFFFFFL
+//ATC_PERFCOUNTER_HI
+#define ATC_PERFCOUNTER_HI__COUNTER_HI__SHIFT 0x0
+#define ATC_PERFCOUNTER_HI__COMPARE_VALUE__SHIFT 0x10
+#define ATC_PERFCOUNTER_HI__COUNTER_HI_MASK 0x0000FFFFL
+#define ATC_PERFCOUNTER_HI__COMPARE_VALUE_MASK 0xFFFF0000L
+//ATC_ATS_FAULT_CNTL
+#define ATC_ATS_FAULT_CNTL__FAULT_REGISTER_LOG__SHIFT 0x0
+#define ATC_ATS_FAULT_CNTL__FAULT_INTERRUPT_TABLE__SHIFT 0xa
+#define ATC_ATS_FAULT_CNTL__FAULT_CRASH_TABLE__SHIFT 0x14
+#define ATC_ATS_FAULT_CNTL__FAULT_REGISTER_LOG_MASK 0x000001FFL
+#define ATC_ATS_FAULT_CNTL__FAULT_INTERRUPT_TABLE_MASK 0x0007FC00L
+#define ATC_ATS_FAULT_CNTL__FAULT_CRASH_TABLE_MASK 0x1FF00000L
+//ATC_ATS_FAULT_STATUS_INFO
+#define ATC_ATS_FAULT_STATUS_INFO__FAULT_TYPE__SHIFT 0x0
+#define ATC_ATS_FAULT_STATUS_INFO__VMID_ALL__SHIFT 0x9
+#define ATC_ATS_FAULT_STATUS_INFO__VMID__SHIFT 0xa
+#define ATC_ATS_FAULT_STATUS_INFO__EXTRA_INFO__SHIFT 0xf
+#define ATC_ATS_FAULT_STATUS_INFO__EXTRA_INFO2__SHIFT 0x10
+#define ATC_ATS_FAULT_STATUS_INFO__INVALIDATION__SHIFT 0x11
+#define ATC_ATS_FAULT_STATUS_INFO__PAGE_REQUEST__SHIFT 0x12
+#define ATC_ATS_FAULT_STATUS_INFO__STATUS__SHIFT 0x13
+#define ATC_ATS_FAULT_STATUS_INFO__PAGE_ADDR_HIGH__SHIFT 0x18
+#define ATC_ATS_FAULT_STATUS_INFO__PHYSICAL_ADDR_HIGH__SHIFT 0x1c
+#define ATC_ATS_FAULT_STATUS_INFO__FAULT_TYPE_MASK 0x000001FFL
+#define ATC_ATS_FAULT_STATUS_INFO__VMID_ALL_MASK 0x00000200L
+#define ATC_ATS_FAULT_STATUS_INFO__VMID_MASK 0x00007C00L
+#define ATC_ATS_FAULT_STATUS_INFO__EXTRA_INFO_MASK 0x00008000L
+#define ATC_ATS_FAULT_STATUS_INFO__EXTRA_INFO2_MASK 0x00010000L
+#define ATC_ATS_FAULT_STATUS_INFO__INVALIDATION_MASK 0x00020000L
+#define ATC_ATS_FAULT_STATUS_INFO__PAGE_REQUEST_MASK 0x00040000L
+#define ATC_ATS_FAULT_STATUS_INFO__STATUS_MASK 0x00F80000L
+#define ATC_ATS_FAULT_STATUS_INFO__PAGE_ADDR_HIGH_MASK 0x0F000000L
+#define ATC_ATS_FAULT_STATUS_INFO__PHYSICAL_ADDR_HIGH_MASK 0xF0000000L
+//ATC_ATS_FAULT_STATUS_INFO2
+#define ATC_ATS_FAULT_STATUS_INFO2__VF__SHIFT 0x0
+#define ATC_ATS_FAULT_STATUS_INFO2__VFID__SHIFT 0x1
+#define ATC_ATS_FAULT_STATUS_INFO2__L2NUM__SHIFT 0x9
+#define ATC_ATS_FAULT_STATUS_INFO2__INV_VMID_GFX1__SHIFT 0xd
+#define ATC_ATS_FAULT_STATUS_INFO2__INV_VMID_GFX2__SHIFT 0x13
+#define ATC_ATS_FAULT_STATUS_INFO2__INV_VMID_GFX3__SHIFT 0x19
+#define ATC_ATS_FAULT_STATUS_INFO2__VF_MASK 0x00000001L
+#define ATC_ATS_FAULT_STATUS_INFO2__VFID_MASK 0x0000001EL
+#define ATC_ATS_FAULT_STATUS_INFO2__L2NUM_MASK 0x00001E00L
+#define ATC_ATS_FAULT_STATUS_INFO2__INV_VMID_GFX1_MASK 0x0007E000L
+#define ATC_ATS_FAULT_STATUS_INFO2__INV_VMID_GFX2_MASK 0x01F80000L
+#define ATC_ATS_FAULT_STATUS_INFO2__INV_VMID_GFX3_MASK 0x7E000000L
+//ATC_ATS_FAULT_STATUS_INFO3
+#define ATC_ATS_FAULT_STATUS_INFO3__INV_VMID_GFX4__SHIFT 0x0
+#define ATC_ATS_FAULT_STATUS_INFO3__INV_VMID_GFX5__SHIFT 0x6
+#define ATC_ATS_FAULT_STATUS_INFO3__INV_VMID_GFX6__SHIFT 0xc
+#define ATC_ATS_FAULT_STATUS_INFO3__INV_VMID_GFX7__SHIFT 0x12
+#define ATC_ATS_FAULT_STATUS_INFO3__INV_VMID_MM0__SHIFT 0x18
+#define ATC_ATS_FAULT_STATUS_INFO3__INV_VMID_GFX4_MASK 0x0000003FL
+#define ATC_ATS_FAULT_STATUS_INFO3__INV_VMID_GFX5_MASK 0x00000FC0L
+#define ATC_ATS_FAULT_STATUS_INFO3__INV_VMID_GFX6_MASK 0x0003F000L
+#define ATC_ATS_FAULT_STATUS_INFO3__INV_VMID_GFX7_MASK 0x00FC0000L
+#define ATC_ATS_FAULT_STATUS_INFO3__INV_VMID_MM0_MASK 0x3F000000L
+//ATC_ATS_FAULT_STATUS_INFO4
+#define ATC_ATS_FAULT_STATUS_INFO4__INV_VMID_MM1__SHIFT 0x0
+#define ATC_ATS_FAULT_STATUS_INFO4__INV_VMID_MM2__SHIFT 0x6
+#define ATC_ATS_FAULT_STATUS_INFO4__INV_VMID_MM3__SHIFT 0xc
+#define ATC_ATS_FAULT_STATUS_INFO4__INV_VMID_MM1_MASK 0x0000003FL
+#define ATC_ATS_FAULT_STATUS_INFO4__INV_VMID_MM2_MASK 0x00000FC0L
+#define ATC_ATS_FAULT_STATUS_INFO4__INV_VMID_MM3_MASK 0x0003F000L
+//ATC_ATS_FAULT_STATUS_ADDR
+#define ATC_ATS_FAULT_STATUS_ADDR__PAGE_ADDR__SHIFT 0x0
+#define ATC_ATS_FAULT_STATUS_ADDR__PAGE_ADDR_MASK 0xFFFFFFFFL
+//ATC_ATS_DEFAULT_PAGE_LOW
+#define ATC_ATS_DEFAULT_PAGE_LOW__DEFAULT_PAGE__SHIFT 0x0
+#define ATC_ATS_DEFAULT_PAGE_LOW__DEFAULT_PAGE_MASK 0xFFFFFFFFL
+//ATHUB_PCIE_ATS_CNTL
+#define ATHUB_PCIE_ATS_CNTL__STU__SHIFT 0x10
+#define ATHUB_PCIE_ATS_CNTL__ATC_ENABLE__SHIFT 0x1f
+#define ATHUB_PCIE_ATS_CNTL__STU_MASK 0x001F0000L
+#define ATHUB_PCIE_ATS_CNTL__ATC_ENABLE_MASK 0x80000000L
+//ATHUB_PCIE_PASID_CNTL
+#define ATHUB_PCIE_PASID_CNTL__PASID_EN__SHIFT 0x10
+#define ATHUB_PCIE_PASID_CNTL__PASID_EXE_PERMISSION_ENABLE__SHIFT 0x11
+#define ATHUB_PCIE_PASID_CNTL__PASID_PRIV_MODE_SUPPORTED_ENABLE__SHIFT 0x12
+#define ATHUB_PCIE_PASID_CNTL__PASID_EN_MASK 0x00010000L
+#define ATHUB_PCIE_PASID_CNTL__PASID_EXE_PERMISSION_ENABLE_MASK 0x00020000L
+#define ATHUB_PCIE_PASID_CNTL__PASID_PRIV_MODE_SUPPORTED_ENABLE_MASK 0x00040000L
+//ATHUB_PCIE_PAGE_REQ_CNTL
+#define ATHUB_PCIE_PAGE_REQ_CNTL__PRI_ENABLE__SHIFT 0x0
+#define ATHUB_PCIE_PAGE_REQ_CNTL__PRI_RESET__SHIFT 0x1
+#define ATHUB_PCIE_PAGE_REQ_CNTL__PRI_ENABLE_MASK 0x00000001L
+#define ATHUB_PCIE_PAGE_REQ_CNTL__PRI_RESET_MASK 0x00000002L
+//ATHUB_PCIE_OUTSTAND_PAGE_REQ_ALLOC
+#define ATHUB_PCIE_OUTSTAND_PAGE_REQ_ALLOC__OUTSTAND_PAGE_REQ_ALLOC__SHIFT 0x0
+#define ATHUB_PCIE_OUTSTAND_PAGE_REQ_ALLOC__OUTSTAND_PAGE_REQ_ALLOC_MASK 0xFFFFFFFFL
+//ATHUB_COMMAND
+#define ATHUB_COMMAND__BUS_MASTER_EN__SHIFT 0x2
+#define ATHUB_COMMAND__BUS_MASTER_EN_MASK 0x00000004L
+//ATHUB_PCIE_ATS_CNTL_VF_0
+#define ATHUB_PCIE_ATS_CNTL_VF_0__ATC_ENABLE__SHIFT 0x1f
+#define ATHUB_PCIE_ATS_CNTL_VF_0__ATC_ENABLE_MASK 0x80000000L
+//ATHUB_PCIE_ATS_CNTL_VF_1
+#define ATHUB_PCIE_ATS_CNTL_VF_1__ATC_ENABLE__SHIFT 0x1f
+#define ATHUB_PCIE_ATS_CNTL_VF_1__ATC_ENABLE_MASK 0x80000000L
+//ATHUB_PCIE_ATS_CNTL_VF_2
+#define ATHUB_PCIE_ATS_CNTL_VF_2__ATC_ENABLE__SHIFT 0x1f
+#define ATHUB_PCIE_ATS_CNTL_VF_2__ATC_ENABLE_MASK 0x80000000L
+//ATHUB_PCIE_ATS_CNTL_VF_3
+#define ATHUB_PCIE_ATS_CNTL_VF_3__ATC_ENABLE__SHIFT 0x1f
+#define ATHUB_PCIE_ATS_CNTL_VF_3__ATC_ENABLE_MASK 0x80000000L
+//ATHUB_PCIE_ATS_CNTL_VF_4
+#define ATHUB_PCIE_ATS_CNTL_VF_4__ATC_ENABLE__SHIFT 0x1f
+#define ATHUB_PCIE_ATS_CNTL_VF_4__ATC_ENABLE_MASK 0x80000000L
+//ATHUB_PCIE_ATS_CNTL_VF_5
+#define ATHUB_PCIE_ATS_CNTL_VF_5__ATC_ENABLE__SHIFT 0x1f
+#define ATHUB_PCIE_ATS_CNTL_VF_5__ATC_ENABLE_MASK 0x80000000L
+//ATHUB_PCIE_ATS_CNTL_VF_6
+#define ATHUB_PCIE_ATS_CNTL_VF_6__ATC_ENABLE__SHIFT 0x1f
+#define ATHUB_PCIE_ATS_CNTL_VF_6__ATC_ENABLE_MASK 0x80000000L
+//ATHUB_PCIE_ATS_CNTL_VF_7
+#define ATHUB_PCIE_ATS_CNTL_VF_7__ATC_ENABLE__SHIFT 0x1f
+#define ATHUB_PCIE_ATS_CNTL_VF_7__ATC_ENABLE_MASK 0x80000000L
+//ATHUB_PCIE_ATS_CNTL_VF_8
+#define ATHUB_PCIE_ATS_CNTL_VF_8__ATC_ENABLE__SHIFT 0x1f
+#define ATHUB_PCIE_ATS_CNTL_VF_8__ATC_ENABLE_MASK 0x80000000L
+//ATHUB_PCIE_ATS_CNTL_VF_9
+#define ATHUB_PCIE_ATS_CNTL_VF_9__ATC_ENABLE__SHIFT 0x1f
+#define ATHUB_PCIE_ATS_CNTL_VF_9__ATC_ENABLE_MASK 0x80000000L
+//ATHUB_PCIE_ATS_CNTL_VF_10
+#define ATHUB_PCIE_ATS_CNTL_VF_10__ATC_ENABLE__SHIFT 0x1f
+#define ATHUB_PCIE_ATS_CNTL_VF_10__ATC_ENABLE_MASK 0x80000000L
+//ATHUB_PCIE_ATS_CNTL_VF_11
+#define ATHUB_PCIE_ATS_CNTL_VF_11__ATC_ENABLE__SHIFT 0x1f
+#define ATHUB_PCIE_ATS_CNTL_VF_11__ATC_ENABLE_MASK 0x80000000L
+//ATHUB_PCIE_ATS_CNTL_VF_12
+#define ATHUB_PCIE_ATS_CNTL_VF_12__ATC_ENABLE__SHIFT 0x1f
+#define ATHUB_PCIE_ATS_CNTL_VF_12__ATC_ENABLE_MASK 0x80000000L
+//ATHUB_PCIE_ATS_CNTL_VF_13
+#define ATHUB_PCIE_ATS_CNTL_VF_13__ATC_ENABLE__SHIFT 0x1f
+#define ATHUB_PCIE_ATS_CNTL_VF_13__ATC_ENABLE_MASK 0x80000000L
+//ATHUB_PCIE_ATS_CNTL_VF_14
+#define ATHUB_PCIE_ATS_CNTL_VF_14__ATC_ENABLE__SHIFT 0x1f
+#define ATHUB_PCIE_ATS_CNTL_VF_14__ATC_ENABLE_MASK 0x80000000L
+//ATHUB_PCIE_ATS_CNTL_VF_15
+#define ATHUB_PCIE_ATS_CNTL_VF_15__ATC_ENABLE__SHIFT 0x1f
+#define ATHUB_PCIE_ATS_CNTL_VF_15__ATC_ENABLE_MASK 0x80000000L
+//ATHUB_SHARED_VIRT_RESET_REQ
+#define ATHUB_SHARED_VIRT_RESET_REQ__VF__SHIFT 0x0
+#define ATHUB_SHARED_VIRT_RESET_REQ__PF__SHIFT 0x1f
+#define ATHUB_SHARED_VIRT_RESET_REQ__VF_MASK 0x0000FFFFL
+#define ATHUB_SHARED_VIRT_RESET_REQ__PF_MASK 0x80000000L
+//ATHUB_SHARED_ACTIVE_FCN_ID
+#define ATHUB_SHARED_ACTIVE_FCN_ID__VFID__SHIFT 0x0
+#define ATHUB_SHARED_ACTIVE_FCN_ID__VF__SHIFT 0x1f
+#define ATHUB_SHARED_ACTIVE_FCN_ID__VFID_MASK 0x0000000FL
+#define ATHUB_SHARED_ACTIVE_FCN_ID__VF_MASK 0x80000000L
+//ATC_ATS_SDPPORT_CNTL
+#define ATC_ATS_SDPPORT_CNTL__ATS_INV_SELF_ACTIVATE__SHIFT 0x0
+#define ATC_ATS_SDPPORT_CNTL__ATS_INV_CFG_MODE__SHIFT 0x1
+#define ATC_ATS_SDPPORT_CNTL__ATS_INV_HALT_THRESHOLD__SHIFT 0x3
+#define ATC_ATS_SDPPORT_CNTL__ATS_INV_REISSUE_CREDIT__SHIFT 0x7
+#define ATC_ATS_SDPPORT_CNTL__ATS_INV_ENABLE_DISRUPT_FULLDIS__SHIFT 0x8
+#define ATC_ATS_SDPPORT_CNTL__UTCL2_TRANS_SELF_ACTIVATE__SHIFT 0x9
+#define ATC_ATS_SDPPORT_CNTL__UTCL2_TRANS_QUICK_COMACK__SHIFT 0xa
+#define ATC_ATS_SDPPORT_CNTL__UTCL2_TRANS_HALT_THRESHOLD__SHIFT 0xb
+#define ATC_ATS_SDPPORT_CNTL__UTCL2_TRANS_PASSIVE_MODE__SHIFT 0xf
+#define ATC_ATS_SDPPORT_CNTL__UTCL2_RDY_MODE__SHIFT 0x10
+#define ATC_ATS_SDPPORT_CNTL__UTCL2_TRANS_REISSUE_CREDIT__SHIFT 0x11
+#define ATC_ATS_SDPPORT_CNTL__UTCL2_TRANS_ENABLE_DISRUPT_FULLDIS__SHIFT 0x12
+#define ATC_ATS_SDPPORT_CNTL__UTCL2_TRANS_INVALREQ_RDRSPSTATUS_CNTL__SHIFT 0x13
+#define ATC_ATS_SDPPORT_CNTL__UTCL2_GFX_SDPVDCI_RDRSPCKEN__SHIFT 0x16
+#define ATC_ATS_SDPPORT_CNTL__UTCL2_GFX_SDPVDCI_RDRSPCKENRCV__SHIFT 0x17
+#define ATC_ATS_SDPPORT_CNTL__UTCL2_GFX_SDPVDCI_RDRSPDATACKEN__SHIFT 0x18
+#define ATC_ATS_SDPPORT_CNTL__UTCL2_GFX_SDPVDCI_RDRSPDATACKENRCV__SHIFT 0x19
+#define ATC_ATS_SDPPORT_CNTL__UTCL2_GFX_SDPVDCI_WRRSPCKEN__SHIFT 0x1a
+#define ATC_ATS_SDPPORT_CNTL__UTCL2_GFX_SDPVDCI_WRRSPCKENRCV__SHIFT 0x1b
+#define ATC_ATS_SDPPORT_CNTL__UTCL2_GFX_SDPVDCI_REQCKEN__SHIFT 0x1c
+#define ATC_ATS_SDPPORT_CNTL__UTCL2_GFX_SDPVDCI_REQCKENRCV__SHIFT 0x1d
+#define ATC_ATS_SDPPORT_CNTL__UTCL2_GFX_SDPVDCI_ORIGDATACKEN__SHIFT 0x1e
+#define ATC_ATS_SDPPORT_CNTL__UTCL2_GFX_SDPVDCI_ORIGDATACKENRCV__SHIFT 0x1f
+#define ATC_ATS_SDPPORT_CNTL__ATS_INV_SELF_ACTIVATE_MASK 0x00000001L
+#define ATC_ATS_SDPPORT_CNTL__ATS_INV_CFG_MODE_MASK 0x00000006L
+#define ATC_ATS_SDPPORT_CNTL__ATS_INV_HALT_THRESHOLD_MASK 0x00000078L
+#define ATC_ATS_SDPPORT_CNTL__ATS_INV_REISSUE_CREDIT_MASK 0x00000080L
+#define ATC_ATS_SDPPORT_CNTL__ATS_INV_ENABLE_DISRUPT_FULLDIS_MASK 0x00000100L
+#define ATC_ATS_SDPPORT_CNTL__UTCL2_TRANS_SELF_ACTIVATE_MASK 0x00000200L
+#define ATC_ATS_SDPPORT_CNTL__UTCL2_TRANS_QUICK_COMACK_MASK 0x00000400L
+#define ATC_ATS_SDPPORT_CNTL__UTCL2_TRANS_HALT_THRESHOLD_MASK 0x00007800L
+#define ATC_ATS_SDPPORT_CNTL__UTCL2_TRANS_PASSIVE_MODE_MASK 0x00008000L
+#define ATC_ATS_SDPPORT_CNTL__UTCL2_RDY_MODE_MASK 0x00010000L
+#define ATC_ATS_SDPPORT_CNTL__UTCL2_TRANS_REISSUE_CREDIT_MASK 0x00020000L
+#define ATC_ATS_SDPPORT_CNTL__UTCL2_TRANS_ENABLE_DISRUPT_FULLDIS_MASK 0x00040000L
+#define ATC_ATS_SDPPORT_CNTL__UTCL2_TRANS_INVALREQ_RDRSPSTATUS_CNTL_MASK 0x00380000L
+#define ATC_ATS_SDPPORT_CNTL__UTCL2_GFX_SDPVDCI_RDRSPCKEN_MASK 0x00400000L
+#define ATC_ATS_SDPPORT_CNTL__UTCL2_GFX_SDPVDCI_RDRSPCKENRCV_MASK 0x00800000L
+#define ATC_ATS_SDPPORT_CNTL__UTCL2_GFX_SDPVDCI_RDRSPDATACKEN_MASK 0x01000000L
+#define ATC_ATS_SDPPORT_CNTL__UTCL2_GFX_SDPVDCI_RDRSPDATACKENRCV_MASK 0x02000000L
+#define ATC_ATS_SDPPORT_CNTL__UTCL2_GFX_SDPVDCI_WRRSPCKEN_MASK 0x04000000L
+#define ATC_ATS_SDPPORT_CNTL__UTCL2_GFX_SDPVDCI_WRRSPCKENRCV_MASK 0x08000000L
+#define ATC_ATS_SDPPORT_CNTL__UTCL2_GFX_SDPVDCI_REQCKEN_MASK 0x10000000L
+#define ATC_ATS_SDPPORT_CNTL__UTCL2_GFX_SDPVDCI_REQCKENRCV_MASK 0x20000000L
+#define ATC_ATS_SDPPORT_CNTL__UTCL2_GFX_SDPVDCI_ORIGDATACKEN_MASK 0x40000000L
+#define ATC_ATS_SDPPORT_CNTL__UTCL2_GFX_SDPVDCI_ORIGDATACKENRCV_MASK 0x80000000L
+//ATC_VMID_PASID_MAPPING_UPDATE_STATUS
+#define ATC_VMID_PASID_MAPPING_UPDATE_STATUS__VMID0_REMAPPING_FINISHED__SHIFT 0x0
+#define ATC_VMID_PASID_MAPPING_UPDATE_STATUS__VMID1_REMAPPING_FINISHED__SHIFT 0x1
+#define ATC_VMID_PASID_MAPPING_UPDATE_STATUS__VMID2_REMAPPING_FINISHED__SHIFT 0x2
+#define ATC_VMID_PASID_MAPPING_UPDATE_STATUS__VMID3_REMAPPING_FINISHED__SHIFT 0x3
+#define ATC_VMID_PASID_MAPPING_UPDATE_STATUS__VMID4_REMAPPING_FINISHED__SHIFT 0x4
+#define ATC_VMID_PASID_MAPPING_UPDATE_STATUS__VMID5_REMAPPING_FINISHED__SHIFT 0x5
+#define ATC_VMID_PASID_MAPPING_UPDATE_STATUS__VMID6_REMAPPING_FINISHED__SHIFT 0x6
+#define ATC_VMID_PASID_MAPPING_UPDATE_STATUS__VMID7_REMAPPING_FINISHED__SHIFT 0x7
+#define ATC_VMID_PASID_MAPPING_UPDATE_STATUS__VMID8_REMAPPING_FINISHED__SHIFT 0x8
+#define ATC_VMID_PASID_MAPPING_UPDATE_STATUS__VMID9_REMAPPING_FINISHED__SHIFT 0x9
+#define ATC_VMID_PASID_MAPPING_UPDATE_STATUS__VMID10_REMAPPING_FINISHED__SHIFT 0xa
+#define ATC_VMID_PASID_MAPPING_UPDATE_STATUS__VMID11_REMAPPING_FINISHED__SHIFT 0xb
+#define ATC_VMID_PASID_MAPPING_UPDATE_STATUS__VMID12_REMAPPING_FINISHED__SHIFT 0xc
+#define ATC_VMID_PASID_MAPPING_UPDATE_STATUS__VMID13_REMAPPING_FINISHED__SHIFT 0xd
+#define ATC_VMID_PASID_MAPPING_UPDATE_STATUS__VMID14_REMAPPING_FINISHED__SHIFT 0xe
+#define ATC_VMID_PASID_MAPPING_UPDATE_STATUS__VMID15_REMAPPING_FINISHED__SHIFT 0xf
+#define ATC_VMID_PASID_MAPPING_UPDATE_STATUS__VMID0_REMAPPING_FINISHED_MASK 0x00000001L
+#define ATC_VMID_PASID_MAPPING_UPDATE_STATUS__VMID1_REMAPPING_FINISHED_MASK 0x00000002L
+#define ATC_VMID_PASID_MAPPING_UPDATE_STATUS__VMID2_REMAPPING_FINISHED_MASK 0x00000004L
+#define ATC_VMID_PASID_MAPPING_UPDATE_STATUS__VMID3_REMAPPING_FINISHED_MASK 0x00000008L
+#define ATC_VMID_PASID_MAPPING_UPDATE_STATUS__VMID4_REMAPPING_FINISHED_MASK 0x00000010L
+#define ATC_VMID_PASID_MAPPING_UPDATE_STATUS__VMID5_REMAPPING_FINISHED_MASK 0x00000020L
+#define ATC_VMID_PASID_MAPPING_UPDATE_STATUS__VMID6_REMAPPING_FINISHED_MASK 0x00000040L
+#define ATC_VMID_PASID_MAPPING_UPDATE_STATUS__VMID7_REMAPPING_FINISHED_MASK 0x00000080L
+#define ATC_VMID_PASID_MAPPING_UPDATE_STATUS__VMID8_REMAPPING_FINISHED_MASK 0x00000100L
+#define ATC_VMID_PASID_MAPPING_UPDATE_STATUS__VMID9_REMAPPING_FINISHED_MASK 0x00000200L
+#define ATC_VMID_PASID_MAPPING_UPDATE_STATUS__VMID10_REMAPPING_FINISHED_MASK 0x00000400L
+#define ATC_VMID_PASID_MAPPING_UPDATE_STATUS__VMID11_REMAPPING_FINISHED_MASK 0x00000800L
+#define ATC_VMID_PASID_MAPPING_UPDATE_STATUS__VMID12_REMAPPING_FINISHED_MASK 0x00001000L
+#define ATC_VMID_PASID_MAPPING_UPDATE_STATUS__VMID13_REMAPPING_FINISHED_MASK 0x00002000L
+#define ATC_VMID_PASID_MAPPING_UPDATE_STATUS__VMID14_REMAPPING_FINISHED_MASK 0x00004000L
+#define ATC_VMID_PASID_MAPPING_UPDATE_STATUS__VMID15_REMAPPING_FINISHED_MASK 0x00008000L
+//ATC_VMID0_PASID_MAPPING
+#define ATC_VMID0_PASID_MAPPING__PASID__SHIFT 0x0
+#define ATC_VMID0_PASID_MAPPING__NO_INVALIDATION__SHIFT 0x1e
+#define ATC_VMID0_PASID_MAPPING__VALID__SHIFT 0x1f
+#define ATC_VMID0_PASID_MAPPING__PASID_MASK 0x0000FFFFL
+#define ATC_VMID0_PASID_MAPPING__NO_INVALIDATION_MASK 0x40000000L
+#define ATC_VMID0_PASID_MAPPING__VALID_MASK 0x80000000L
+//ATC_VMID1_PASID_MAPPING
+#define ATC_VMID1_PASID_MAPPING__PASID__SHIFT 0x0
+#define ATC_VMID1_PASID_MAPPING__NO_INVALIDATION__SHIFT 0x1e
+#define ATC_VMID1_PASID_MAPPING__VALID__SHIFT 0x1f
+#define ATC_VMID1_PASID_MAPPING__PASID_MASK 0x0000FFFFL
+#define ATC_VMID1_PASID_MAPPING__NO_INVALIDATION_MASK 0x40000000L
+#define ATC_VMID1_PASID_MAPPING__VALID_MASK 0x80000000L
+//ATC_VMID2_PASID_MAPPING
+#define ATC_VMID2_PASID_MAPPING__PASID__SHIFT 0x0
+#define ATC_VMID2_PASID_MAPPING__NO_INVALIDATION__SHIFT 0x1e
+#define ATC_VMID2_PASID_MAPPING__VALID__SHIFT 0x1f
+#define ATC_VMID2_PASID_MAPPING__PASID_MASK 0x0000FFFFL
+#define ATC_VMID2_PASID_MAPPING__NO_INVALIDATION_MASK 0x40000000L
+#define ATC_VMID2_PASID_MAPPING__VALID_MASK 0x80000000L
+//ATC_VMID3_PASID_MAPPING
+#define ATC_VMID3_PASID_MAPPING__PASID__SHIFT 0x0
+#define ATC_VMID3_PASID_MAPPING__NO_INVALIDATION__SHIFT 0x1e
+#define ATC_VMID3_PASID_MAPPING__VALID__SHIFT 0x1f
+#define ATC_VMID3_PASID_MAPPING__PASID_MASK 0x0000FFFFL
+#define ATC_VMID3_PASID_MAPPING__NO_INVALIDATION_MASK 0x40000000L
+#define ATC_VMID3_PASID_MAPPING__VALID_MASK 0x80000000L
+//ATC_VMID4_PASID_MAPPING
+#define ATC_VMID4_PASID_MAPPING__PASID__SHIFT 0x0
+#define ATC_VMID4_PASID_MAPPING__NO_INVALIDATION__SHIFT 0x1e
+#define ATC_VMID4_PASID_MAPPING__VALID__SHIFT 0x1f
+#define ATC_VMID4_PASID_MAPPING__PASID_MASK 0x0000FFFFL
+#define ATC_VMID4_PASID_MAPPING__NO_INVALIDATION_MASK 0x40000000L
+#define ATC_VMID4_PASID_MAPPING__VALID_MASK 0x80000000L
+//ATC_VMID5_PASID_MAPPING
+#define ATC_VMID5_PASID_MAPPING__PASID__SHIFT 0x0
+#define ATC_VMID5_PASID_MAPPING__NO_INVALIDATION__SHIFT 0x1e
+#define ATC_VMID5_PASID_MAPPING__VALID__SHIFT 0x1f
+#define ATC_VMID5_PASID_MAPPING__PASID_MASK 0x0000FFFFL
+#define ATC_VMID5_PASID_MAPPING__NO_INVALIDATION_MASK 0x40000000L
+#define ATC_VMID5_PASID_MAPPING__VALID_MASK 0x80000000L
+//ATC_VMID6_PASID_MAPPING
+#define ATC_VMID6_PASID_MAPPING__PASID__SHIFT 0x0
+#define ATC_VMID6_PASID_MAPPING__NO_INVALIDATION__SHIFT 0x1e
+#define ATC_VMID6_PASID_MAPPING__VALID__SHIFT 0x1f
+#define ATC_VMID6_PASID_MAPPING__PASID_MASK 0x0000FFFFL
+#define ATC_VMID6_PASID_MAPPING__NO_INVALIDATION_MASK 0x40000000L
+#define ATC_VMID6_PASID_MAPPING__VALID_MASK 0x80000000L
+//ATC_VMID7_PASID_MAPPING
+#define ATC_VMID7_PASID_MAPPING__PASID__SHIFT 0x0
+#define ATC_VMID7_PASID_MAPPING__NO_INVALIDATION__SHIFT 0x1e
+#define ATC_VMID7_PASID_MAPPING__VALID__SHIFT 0x1f
+#define ATC_VMID7_PASID_MAPPING__PASID_MASK 0x0000FFFFL
+#define ATC_VMID7_PASID_MAPPING__NO_INVALIDATION_MASK 0x40000000L
+#define ATC_VMID7_PASID_MAPPING__VALID_MASK 0x80000000L
+//ATC_VMID8_PASID_MAPPING
+#define ATC_VMID8_PASID_MAPPING__PASID__SHIFT 0x0
+#define ATC_VMID8_PASID_MAPPING__NO_INVALIDATION__SHIFT 0x1e
+#define ATC_VMID8_PASID_MAPPING__VALID__SHIFT 0x1f
+#define ATC_VMID8_PASID_MAPPING__PASID_MASK 0x0000FFFFL
+#define ATC_VMID8_PASID_MAPPING__NO_INVALIDATION_MASK 0x40000000L
+#define ATC_VMID8_PASID_MAPPING__VALID_MASK 0x80000000L
+//ATC_VMID9_PASID_MAPPING
+#define ATC_VMID9_PASID_MAPPING__PASID__SHIFT 0x0
+#define ATC_VMID9_PASID_MAPPING__NO_INVALIDATION__SHIFT 0x1e
+#define ATC_VMID9_PASID_MAPPING__VALID__SHIFT 0x1f
+#define ATC_VMID9_PASID_MAPPING__PASID_MASK 0x0000FFFFL
+#define ATC_VMID9_PASID_MAPPING__NO_INVALIDATION_MASK 0x40000000L
+#define ATC_VMID9_PASID_MAPPING__VALID_MASK 0x80000000L
+//ATC_VMID10_PASID_MAPPING
+#define ATC_VMID10_PASID_MAPPING__PASID__SHIFT 0x0
+#define ATC_VMID10_PASID_MAPPING__NO_INVALIDATION__SHIFT 0x1e
+#define ATC_VMID10_PASID_MAPPING__VALID__SHIFT 0x1f
+#define ATC_VMID10_PASID_MAPPING__PASID_MASK 0x0000FFFFL
+#define ATC_VMID10_PASID_MAPPING__NO_INVALIDATION_MASK 0x40000000L
+#define ATC_VMID10_PASID_MAPPING__VALID_MASK 0x80000000L
+//ATC_VMID11_PASID_MAPPING
+#define ATC_VMID11_PASID_MAPPING__PASID__SHIFT 0x0
+#define ATC_VMID11_PASID_MAPPING__NO_INVALIDATION__SHIFT 0x1e
+#define ATC_VMID11_PASID_MAPPING__VALID__SHIFT 0x1f
+#define ATC_VMID11_PASID_MAPPING__PASID_MASK 0x0000FFFFL
+#define ATC_VMID11_PASID_MAPPING__NO_INVALIDATION_MASK 0x40000000L
+#define ATC_VMID11_PASID_MAPPING__VALID_MASK 0x80000000L
+//ATC_VMID12_PASID_MAPPING
+#define ATC_VMID12_PASID_MAPPING__PASID__SHIFT 0x0
+#define ATC_VMID12_PASID_MAPPING__NO_INVALIDATION__SHIFT 0x1e
+#define ATC_VMID12_PASID_MAPPING__VALID__SHIFT 0x1f
+#define ATC_VMID12_PASID_MAPPING__PASID_MASK 0x0000FFFFL
+#define ATC_VMID12_PASID_MAPPING__NO_INVALIDATION_MASK 0x40000000L
+#define ATC_VMID12_PASID_MAPPING__VALID_MASK 0x80000000L
+//ATC_VMID13_PASID_MAPPING
+#define ATC_VMID13_PASID_MAPPING__PASID__SHIFT 0x0
+#define ATC_VMID13_PASID_MAPPING__NO_INVALIDATION__SHIFT 0x1e
+#define ATC_VMID13_PASID_MAPPING__VALID__SHIFT 0x1f
+#define ATC_VMID13_PASID_MAPPING__PASID_MASK 0x0000FFFFL
+#define ATC_VMID13_PASID_MAPPING__NO_INVALIDATION_MASK 0x40000000L
+#define ATC_VMID13_PASID_MAPPING__VALID_MASK 0x80000000L
+//ATC_VMID14_PASID_MAPPING
+#define ATC_VMID14_PASID_MAPPING__PASID__SHIFT 0x0
+#define ATC_VMID14_PASID_MAPPING__NO_INVALIDATION__SHIFT 0x1e
+#define ATC_VMID14_PASID_MAPPING__VALID__SHIFT 0x1f
+#define ATC_VMID14_PASID_MAPPING__PASID_MASK 0x0000FFFFL
+#define ATC_VMID14_PASID_MAPPING__NO_INVALIDATION_MASK 0x40000000L
+#define ATC_VMID14_PASID_MAPPING__VALID_MASK 0x80000000L
+//ATC_VMID15_PASID_MAPPING
+#define ATC_VMID15_PASID_MAPPING__PASID__SHIFT 0x0
+#define ATC_VMID15_PASID_MAPPING__NO_INVALIDATION__SHIFT 0x1e
+#define ATC_VMID15_PASID_MAPPING__VALID__SHIFT 0x1f
+#define ATC_VMID15_PASID_MAPPING__PASID_MASK 0x0000FFFFL
+#define ATC_VMID15_PASID_MAPPING__NO_INVALIDATION_MASK 0x40000000L
+#define ATC_VMID15_PASID_MAPPING__VALID_MASK 0x80000000L
+//ATC_TRANS_FAULT_RSPCNTRL
+#define ATC_TRANS_FAULT_RSPCNTRL__VMID0__SHIFT 0x0
+#define ATC_TRANS_FAULT_RSPCNTRL__VMID1__SHIFT 0x1
+#define ATC_TRANS_FAULT_RSPCNTRL__VMID2__SHIFT 0x2
+#define ATC_TRANS_FAULT_RSPCNTRL__VMID3__SHIFT 0x3
+#define ATC_TRANS_FAULT_RSPCNTRL__VMID4__SHIFT 0x4
+#define ATC_TRANS_FAULT_RSPCNTRL__VMID5__SHIFT 0x5
+#define ATC_TRANS_FAULT_RSPCNTRL__VMID6__SHIFT 0x6
+#define ATC_TRANS_FAULT_RSPCNTRL__VMID7__SHIFT 0x7
+#define ATC_TRANS_FAULT_RSPCNTRL__VMID8__SHIFT 0x8
+#define ATC_TRANS_FAULT_RSPCNTRL__VMID9__SHIFT 0x9
+#define ATC_TRANS_FAULT_RSPCNTRL__VMID10__SHIFT 0xa
+#define ATC_TRANS_FAULT_RSPCNTRL__VMID11__SHIFT 0xb
+#define ATC_TRANS_FAULT_RSPCNTRL__VMID12__SHIFT 0xc
+#define ATC_TRANS_FAULT_RSPCNTRL__VMID13__SHIFT 0xd
+#define ATC_TRANS_FAULT_RSPCNTRL__VMID14__SHIFT 0xe
+#define ATC_TRANS_FAULT_RSPCNTRL__VMID15__SHIFT 0xf
+#define ATC_TRANS_FAULT_RSPCNTRL__VMID0_MASK 0x00000001L
+#define ATC_TRANS_FAULT_RSPCNTRL__VMID1_MASK 0x00000002L
+#define ATC_TRANS_FAULT_RSPCNTRL__VMID2_MASK 0x00000004L
+#define ATC_TRANS_FAULT_RSPCNTRL__VMID3_MASK 0x00000008L
+#define ATC_TRANS_FAULT_RSPCNTRL__VMID4_MASK 0x00000010L
+#define ATC_TRANS_FAULT_RSPCNTRL__VMID5_MASK 0x00000020L
+#define ATC_TRANS_FAULT_RSPCNTRL__VMID6_MASK 0x00000040L
+#define ATC_TRANS_FAULT_RSPCNTRL__VMID7_MASK 0x00000080L
+#define ATC_TRANS_FAULT_RSPCNTRL__VMID8_MASK 0x00000100L
+#define ATC_TRANS_FAULT_RSPCNTRL__VMID9_MASK 0x00000200L
+#define ATC_TRANS_FAULT_RSPCNTRL__VMID10_MASK 0x00000400L
+#define ATC_TRANS_FAULT_RSPCNTRL__VMID11_MASK 0x00000800L
+#define ATC_TRANS_FAULT_RSPCNTRL__VMID12_MASK 0x00001000L
+#define ATC_TRANS_FAULT_RSPCNTRL__VMID13_MASK 0x00002000L
+#define ATC_TRANS_FAULT_RSPCNTRL__VMID14_MASK 0x00004000L
+#define ATC_TRANS_FAULT_RSPCNTRL__VMID15_MASK 0x00008000L
+//ATC_ATS_VMID_STATUS
+#define ATC_ATS_VMID_STATUS__VMID0_OUTSTANDING__SHIFT 0x0
+#define ATC_ATS_VMID_STATUS__VMID1_OUTSTANDING__SHIFT 0x1
+#define ATC_ATS_VMID_STATUS__VMID2_OUTSTANDING__SHIFT 0x2
+#define ATC_ATS_VMID_STATUS__VMID3_OUTSTANDING__SHIFT 0x3
+#define ATC_ATS_VMID_STATUS__VMID4_OUTSTANDING__SHIFT 0x4
+#define ATC_ATS_VMID_STATUS__VMID5_OUTSTANDING__SHIFT 0x5
+#define ATC_ATS_VMID_STATUS__VMID6_OUTSTANDING__SHIFT 0x6
+#define ATC_ATS_VMID_STATUS__VMID7_OUTSTANDING__SHIFT 0x7
+#define ATC_ATS_VMID_STATUS__VMID8_OUTSTANDING__SHIFT 0x8
+#define ATC_ATS_VMID_STATUS__VMID9_OUTSTANDING__SHIFT 0x9
+#define ATC_ATS_VMID_STATUS__VMID10_OUTSTANDING__SHIFT 0xa
+#define ATC_ATS_VMID_STATUS__VMID11_OUTSTANDING__SHIFT 0xb
+#define ATC_ATS_VMID_STATUS__VMID12_OUTSTANDING__SHIFT 0xc
+#define ATC_ATS_VMID_STATUS__VMID13_OUTSTANDING__SHIFT 0xd
+#define ATC_ATS_VMID_STATUS__VMID14_OUTSTANDING__SHIFT 0xe
+#define ATC_ATS_VMID_STATUS__VMID15_OUTSTANDING__SHIFT 0xf
+#define ATC_ATS_VMID_STATUS__VMID0_OUTSTANDING_MASK 0x00000001L
+#define ATC_ATS_VMID_STATUS__VMID1_OUTSTANDING_MASK 0x00000002L
+#define ATC_ATS_VMID_STATUS__VMID2_OUTSTANDING_MASK 0x00000004L
+#define ATC_ATS_VMID_STATUS__VMID3_OUTSTANDING_MASK 0x00000008L
+#define ATC_ATS_VMID_STATUS__VMID4_OUTSTANDING_MASK 0x00000010L
+#define ATC_ATS_VMID_STATUS__VMID5_OUTSTANDING_MASK 0x00000020L
+#define ATC_ATS_VMID_STATUS__VMID6_OUTSTANDING_MASK 0x00000040L
+#define ATC_ATS_VMID_STATUS__VMID7_OUTSTANDING_MASK 0x00000080L
+#define ATC_ATS_VMID_STATUS__VMID8_OUTSTANDING_MASK 0x00000100L
+#define ATC_ATS_VMID_STATUS__VMID9_OUTSTANDING_MASK 0x00000200L
+#define ATC_ATS_VMID_STATUS__VMID10_OUTSTANDING_MASK 0x00000400L
+#define ATC_ATS_VMID_STATUS__VMID11_OUTSTANDING_MASK 0x00000800L
+#define ATC_ATS_VMID_STATUS__VMID12_OUTSTANDING_MASK 0x00001000L
+#define ATC_ATS_VMID_STATUS__VMID13_OUTSTANDING_MASK 0x00002000L
+#define ATC_ATS_VMID_STATUS__VMID14_OUTSTANDING_MASK 0x00004000L
+#define ATC_ATS_VMID_STATUS__VMID15_OUTSTANDING_MASK 0x00008000L
+//ATHUB_MISC_CNTL
+#define ATHUB_MISC_CNTL__CG_OFFDLY__SHIFT 0x6
+#define ATHUB_MISC_CNTL__CG_ENABLE__SHIFT 0x12
+#define ATHUB_MISC_CNTL__CG_MEM_LS_ENABLE__SHIFT 0x13
+#define ATHUB_MISC_CNTL__PG_ENABLE__SHIFT 0x14
+#define ATHUB_MISC_CNTL__PG_OFFDLY__SHIFT 0x15
+#define ATHUB_MISC_CNTL__CG_STATUS__SHIFT 0x1b
+#define ATHUB_MISC_CNTL__PG_STATUS__SHIFT 0x1c
+#define ATHUB_MISC_CNTL__SRAM_FGCG_ENABLE__SHIFT 0x1d
+#define ATHUB_MISC_CNTL__CG_OFFDLY_MASK 0x00000FC0L
+#define ATHUB_MISC_CNTL__CG_ENABLE_MASK 0x00040000L
+#define ATHUB_MISC_CNTL__CG_MEM_LS_ENABLE_MASK 0x00080000L
+#define ATHUB_MISC_CNTL__PG_ENABLE_MASK 0x00100000L
+#define ATHUB_MISC_CNTL__PG_OFFDLY_MASK 0x07E00000L
+#define ATHUB_MISC_CNTL__CG_STATUS_MASK 0x08000000L
+#define ATHUB_MISC_CNTL__PG_STATUS_MASK 0x10000000L
+#define ATHUB_MISC_CNTL__SRAM_FGCG_ENABLE_MASK 0x20000000L
+//ATHUB_MEM_POWER_LS
+#define ATHUB_MEM_POWER_LS__LS_SETUP__SHIFT 0x0
+#define ATHUB_MEM_POWER_LS__LS_HOLD__SHIFT 0x6
+#define ATHUB_MEM_POWER_LS__LS_DELAY_ENABLE__SHIFT 0x13
+#define ATHUB_MEM_POWER_LS__LS_DELAY_TIME__SHIFT 0x14
+#define ATHUB_MEM_POWER_LS__LS_SETUP_MASK 0x0000003FL
+#define ATHUB_MEM_POWER_LS__LS_HOLD_MASK 0x0007FFC0L
+#define ATHUB_MEM_POWER_LS__LS_DELAY_ENABLE_MASK 0x00080000L
+#define ATHUB_MEM_POWER_LS__LS_DELAY_TIME_MASK 0x03F00000L
+//ATHUB_IH_CREDIT
+#define ATHUB_IH_CREDIT__CREDIT_VALUE__SHIFT 0x0
+#define ATHUB_IH_CREDIT__IH_CLIENT_ID__SHIFT 0x10
+#define ATHUB_IH_CREDIT__CREDIT_VALUE_MASK 0x00000003L
+#define ATHUB_IH_CREDIT__IH_CLIENT_ID_MASK 0x00FF0000L
+
+
+// addressBlock: aid_athub_xpbdec
+//XPB_RTR_SRC_APRTR0
+#define XPB_RTR_SRC_APRTR0__BASE_ADDR__SHIFT 0x0
+#define XPB_RTR_SRC_APRTR0__BASE_ADDR_MASK 0x7FFFFFFFL
+//XPB_RTR_SRC_APRTR1
+#define XPB_RTR_SRC_APRTR1__BASE_ADDR__SHIFT 0x0
+#define XPB_RTR_SRC_APRTR1__BASE_ADDR_MASK 0x7FFFFFFFL
+//XPB_RTR_SRC_APRTR2
+#define XPB_RTR_SRC_APRTR2__BASE_ADDR__SHIFT 0x0
+#define XPB_RTR_SRC_APRTR2__BASE_ADDR_MASK 0x7FFFFFFFL
+//XPB_RTR_SRC_APRTR3
+#define XPB_RTR_SRC_APRTR3__BASE_ADDR__SHIFT 0x0
+#define XPB_RTR_SRC_APRTR3__BASE_ADDR_MASK 0x7FFFFFFFL
+//XPB_RTR_SRC_APRTR4
+#define XPB_RTR_SRC_APRTR4__BASE_ADDR__SHIFT 0x0
+#define XPB_RTR_SRC_APRTR4__BASE_ADDR_MASK 0x7FFFFFFFL
+//XPB_RTR_SRC_APRTR5
+#define XPB_RTR_SRC_APRTR5__BASE_ADDR__SHIFT 0x0
+#define XPB_RTR_SRC_APRTR5__BASE_ADDR_MASK 0x7FFFFFFFL
+//XPB_RTR_SRC_APRTR6
+#define XPB_RTR_SRC_APRTR6__BASE_ADDR__SHIFT 0x0
+#define XPB_RTR_SRC_APRTR6__BASE_ADDR_MASK 0x7FFFFFFFL
+//XPB_RTR_SRC_APRTR7
+#define XPB_RTR_SRC_APRTR7__BASE_ADDR__SHIFT 0x0
+#define XPB_RTR_SRC_APRTR7__BASE_ADDR_MASK 0x7FFFFFFFL
+//XPB_RTR_SRC_APRTR8
+#define XPB_RTR_SRC_APRTR8__BASE_ADDR__SHIFT 0x0
+#define XPB_RTR_SRC_APRTR8__BASE_ADDR_MASK 0x7FFFFFFFL
+//XPB_RTR_SRC_APRTR9
+#define XPB_RTR_SRC_APRTR9__BASE_ADDR__SHIFT 0x0
+#define XPB_RTR_SRC_APRTR9__BASE_ADDR_MASK 0x7FFFFFFFL
+//XPB_XDMA_RTR_SRC_APRTR0
+#define XPB_XDMA_RTR_SRC_APRTR0__BASE_ADDR__SHIFT 0x0
+#define XPB_XDMA_RTR_SRC_APRTR0__BASE_ADDR_MASK 0x7FFFFFFFL
+//XPB_XDMA_RTR_SRC_APRTR1
+#define XPB_XDMA_RTR_SRC_APRTR1__BASE_ADDR__SHIFT 0x0
+#define XPB_XDMA_RTR_SRC_APRTR1__BASE_ADDR_MASK 0x7FFFFFFFL
+//XPB_XDMA_RTR_SRC_APRTR2
+#define XPB_XDMA_RTR_SRC_APRTR2__BASE_ADDR__SHIFT 0x0
+#define XPB_XDMA_RTR_SRC_APRTR2__BASE_ADDR_MASK 0x7FFFFFFFL
+//XPB_XDMA_RTR_SRC_APRTR3
+#define XPB_XDMA_RTR_SRC_APRTR3__BASE_ADDR__SHIFT 0x0
+#define XPB_XDMA_RTR_SRC_APRTR3__BASE_ADDR_MASK 0x7FFFFFFFL
+//XPB_RTR_DEST_MAP0
+#define XPB_RTR_DEST_MAP0__NMR__SHIFT 0x0
+#define XPB_RTR_DEST_MAP0__DEST_OFFSET__SHIFT 0x1
+#define XPB_RTR_DEST_MAP0__DEST_SEL__SHIFT 0x14
+#define XPB_RTR_DEST_MAP0__DEST_SEL_RPB__SHIFT 0x18
+#define XPB_RTR_DEST_MAP0__SIDE_OK__SHIFT 0x19
+#define XPB_RTR_DEST_MAP0__APRTR_SIZE__SHIFT 0x1a
+#define XPB_RTR_DEST_MAP0__NMR_MASK 0x00000001L
+#define XPB_RTR_DEST_MAP0__DEST_OFFSET_MASK 0x000FFFFEL
+#define XPB_RTR_DEST_MAP0__DEST_SEL_MASK 0x00F00000L
+#define XPB_RTR_DEST_MAP0__DEST_SEL_RPB_MASK 0x01000000L
+#define XPB_RTR_DEST_MAP0__SIDE_OK_MASK 0x02000000L
+#define XPB_RTR_DEST_MAP0__APRTR_SIZE_MASK 0x7C000000L
+//XPB_RTR_DEST_MAP1
+#define XPB_RTR_DEST_MAP1__NMR__SHIFT 0x0
+#define XPB_RTR_DEST_MAP1__DEST_OFFSET__SHIFT 0x1
+#define XPB_RTR_DEST_MAP1__DEST_SEL__SHIFT 0x14
+#define XPB_RTR_DEST_MAP1__DEST_SEL_RPB__SHIFT 0x18
+#define XPB_RTR_DEST_MAP1__SIDE_OK__SHIFT 0x19
+#define XPB_RTR_DEST_MAP1__APRTR_SIZE__SHIFT 0x1a
+#define XPB_RTR_DEST_MAP1__NMR_MASK 0x00000001L
+#define XPB_RTR_DEST_MAP1__DEST_OFFSET_MASK 0x000FFFFEL
+#define XPB_RTR_DEST_MAP1__DEST_SEL_MASK 0x00F00000L
+#define XPB_RTR_DEST_MAP1__DEST_SEL_RPB_MASK 0x01000000L
+#define XPB_RTR_DEST_MAP1__SIDE_OK_MASK 0x02000000L
+#define XPB_RTR_DEST_MAP1__APRTR_SIZE_MASK 0x7C000000L
+//XPB_RTR_DEST_MAP2
+#define XPB_RTR_DEST_MAP2__NMR__SHIFT 0x0
+#define XPB_RTR_DEST_MAP2__DEST_OFFSET__SHIFT 0x1
+#define XPB_RTR_DEST_MAP2__DEST_SEL__SHIFT 0x14
+#define XPB_RTR_DEST_MAP2__DEST_SEL_RPB__SHIFT 0x18
+#define XPB_RTR_DEST_MAP2__SIDE_OK__SHIFT 0x19
+#define XPB_RTR_DEST_MAP2__APRTR_SIZE__SHIFT 0x1a
+#define XPB_RTR_DEST_MAP2__NMR_MASK 0x00000001L
+#define XPB_RTR_DEST_MAP2__DEST_OFFSET_MASK 0x000FFFFEL
+#define XPB_RTR_DEST_MAP2__DEST_SEL_MASK 0x00F00000L
+#define XPB_RTR_DEST_MAP2__DEST_SEL_RPB_MASK 0x01000000L
+#define XPB_RTR_DEST_MAP2__SIDE_OK_MASK 0x02000000L
+#define XPB_RTR_DEST_MAP2__APRTR_SIZE_MASK 0x7C000000L
+//XPB_RTR_DEST_MAP3
+#define XPB_RTR_DEST_MAP3__NMR__SHIFT 0x0
+#define XPB_RTR_DEST_MAP3__DEST_OFFSET__SHIFT 0x1
+#define XPB_RTR_DEST_MAP3__DEST_SEL__SHIFT 0x14
+#define XPB_RTR_DEST_MAP3__DEST_SEL_RPB__SHIFT 0x18
+#define XPB_RTR_DEST_MAP3__SIDE_OK__SHIFT 0x19
+#define XPB_RTR_DEST_MAP3__APRTR_SIZE__SHIFT 0x1a
+#define XPB_RTR_DEST_MAP3__NMR_MASK 0x00000001L
+#define XPB_RTR_DEST_MAP3__DEST_OFFSET_MASK 0x000FFFFEL
+#define XPB_RTR_DEST_MAP3__DEST_SEL_MASK 0x00F00000L
+#define XPB_RTR_DEST_MAP3__DEST_SEL_RPB_MASK 0x01000000L
+#define XPB_RTR_DEST_MAP3__SIDE_OK_MASK 0x02000000L
+#define XPB_RTR_DEST_MAP3__APRTR_SIZE_MASK 0x7C000000L
+//XPB_RTR_DEST_MAP4
+#define XPB_RTR_DEST_MAP4__NMR__SHIFT 0x0
+#define XPB_RTR_DEST_MAP4__DEST_OFFSET__SHIFT 0x1
+#define XPB_RTR_DEST_MAP4__DEST_SEL__SHIFT 0x14
+#define XPB_RTR_DEST_MAP4__DEST_SEL_RPB__SHIFT 0x18
+#define XPB_RTR_DEST_MAP4__SIDE_OK__SHIFT 0x19
+#define XPB_RTR_DEST_MAP4__APRTR_SIZE__SHIFT 0x1a
+#define XPB_RTR_DEST_MAP4__NMR_MASK 0x00000001L
+#define XPB_RTR_DEST_MAP4__DEST_OFFSET_MASK 0x000FFFFEL
+#define XPB_RTR_DEST_MAP4__DEST_SEL_MASK 0x00F00000L
+#define XPB_RTR_DEST_MAP4__DEST_SEL_RPB_MASK 0x01000000L
+#define XPB_RTR_DEST_MAP4__SIDE_OK_MASK 0x02000000L
+#define XPB_RTR_DEST_MAP4__APRTR_SIZE_MASK 0x7C000000L
+//XPB_RTR_DEST_MAP5
+#define XPB_RTR_DEST_MAP5__NMR__SHIFT 0x0
+#define XPB_RTR_DEST_MAP5__DEST_OFFSET__SHIFT 0x1
+#define XPB_RTR_DEST_MAP5__DEST_SEL__SHIFT 0x14
+#define XPB_RTR_DEST_MAP5__DEST_SEL_RPB__SHIFT 0x18
+#define XPB_RTR_DEST_MAP5__SIDE_OK__SHIFT 0x19
+#define XPB_RTR_DEST_MAP5__APRTR_SIZE__SHIFT 0x1a
+#define XPB_RTR_DEST_MAP5__NMR_MASK 0x00000001L
+#define XPB_RTR_DEST_MAP5__DEST_OFFSET_MASK 0x000FFFFEL
+#define XPB_RTR_DEST_MAP5__DEST_SEL_MASK 0x00F00000L
+#define XPB_RTR_DEST_MAP5__DEST_SEL_RPB_MASK 0x01000000L
+#define XPB_RTR_DEST_MAP5__SIDE_OK_MASK 0x02000000L
+#define XPB_RTR_DEST_MAP5__APRTR_SIZE_MASK 0x7C000000L
+//XPB_RTR_DEST_MAP6
+#define XPB_RTR_DEST_MAP6__NMR__SHIFT 0x0
+#define XPB_RTR_DEST_MAP6__DEST_OFFSET__SHIFT 0x1
+#define XPB_RTR_DEST_MAP6__DEST_SEL__SHIFT 0x14
+#define XPB_RTR_DEST_MAP6__DEST_SEL_RPB__SHIFT 0x18
+#define XPB_RTR_DEST_MAP6__SIDE_OK__SHIFT 0x19
+#define XPB_RTR_DEST_MAP6__APRTR_SIZE__SHIFT 0x1a
+#define XPB_RTR_DEST_MAP6__NMR_MASK 0x00000001L
+#define XPB_RTR_DEST_MAP6__DEST_OFFSET_MASK 0x000FFFFEL
+#define XPB_RTR_DEST_MAP6__DEST_SEL_MASK 0x00F00000L
+#define XPB_RTR_DEST_MAP6__DEST_SEL_RPB_MASK 0x01000000L
+#define XPB_RTR_DEST_MAP6__SIDE_OK_MASK 0x02000000L
+#define XPB_RTR_DEST_MAP6__APRTR_SIZE_MASK 0x7C000000L
+//XPB_RTR_DEST_MAP7
+#define XPB_RTR_DEST_MAP7__NMR__SHIFT 0x0
+#define XPB_RTR_DEST_MAP7__DEST_OFFSET__SHIFT 0x1
+#define XPB_RTR_DEST_MAP7__DEST_SEL__SHIFT 0x14
+#define XPB_RTR_DEST_MAP7__DEST_SEL_RPB__SHIFT 0x18
+#define XPB_RTR_DEST_MAP7__SIDE_OK__SHIFT 0x19
+#define XPB_RTR_DEST_MAP7__APRTR_SIZE__SHIFT 0x1a
+#define XPB_RTR_DEST_MAP7__NMR_MASK 0x00000001L
+#define XPB_RTR_DEST_MAP7__DEST_OFFSET_MASK 0x000FFFFEL
+#define XPB_RTR_DEST_MAP7__DEST_SEL_MASK 0x00F00000L
+#define XPB_RTR_DEST_MAP7__DEST_SEL_RPB_MASK 0x01000000L
+#define XPB_RTR_DEST_MAP7__SIDE_OK_MASK 0x02000000L
+#define XPB_RTR_DEST_MAP7__APRTR_SIZE_MASK 0x7C000000L
+//XPB_RTR_DEST_MAP8
+#define XPB_RTR_DEST_MAP8__NMR__SHIFT 0x0
+#define XPB_RTR_DEST_MAP8__DEST_OFFSET__SHIFT 0x1
+#define XPB_RTR_DEST_MAP8__DEST_SEL__SHIFT 0x14
+#define XPB_RTR_DEST_MAP8__DEST_SEL_RPB__SHIFT 0x18
+#define XPB_RTR_DEST_MAP8__SIDE_OK__SHIFT 0x19
+#define XPB_RTR_DEST_MAP8__APRTR_SIZE__SHIFT 0x1a
+#define XPB_RTR_DEST_MAP8__NMR_MASK 0x00000001L
+#define XPB_RTR_DEST_MAP8__DEST_OFFSET_MASK 0x000FFFFEL
+#define XPB_RTR_DEST_MAP8__DEST_SEL_MASK 0x00F00000L
+#define XPB_RTR_DEST_MAP8__DEST_SEL_RPB_MASK 0x01000000L
+#define XPB_RTR_DEST_MAP8__SIDE_OK_MASK 0x02000000L
+#define XPB_RTR_DEST_MAP8__APRTR_SIZE_MASK 0x7C000000L
+//XPB_RTR_DEST_MAP9
+#define XPB_RTR_DEST_MAP9__NMR__SHIFT 0x0
+#define XPB_RTR_DEST_MAP9__DEST_OFFSET__SHIFT 0x1
+#define XPB_RTR_DEST_MAP9__DEST_SEL__SHIFT 0x14
+#define XPB_RTR_DEST_MAP9__DEST_SEL_RPB__SHIFT 0x18
+#define XPB_RTR_DEST_MAP9__SIDE_OK__SHIFT 0x19
+#define XPB_RTR_DEST_MAP9__APRTR_SIZE__SHIFT 0x1a
+#define XPB_RTR_DEST_MAP9__NMR_MASK 0x00000001L
+#define XPB_RTR_DEST_MAP9__DEST_OFFSET_MASK 0x000FFFFEL
+#define XPB_RTR_DEST_MAP9__DEST_SEL_MASK 0x00F00000L
+#define XPB_RTR_DEST_MAP9__DEST_SEL_RPB_MASK 0x01000000L
+#define XPB_RTR_DEST_MAP9__SIDE_OK_MASK 0x02000000L
+#define XPB_RTR_DEST_MAP9__APRTR_SIZE_MASK 0x7C000000L
+//XPB_XDMA_RTR_DEST_MAP0
+#define XPB_XDMA_RTR_DEST_MAP0__NMR__SHIFT 0x0
+#define XPB_XDMA_RTR_DEST_MAP0__DEST_OFFSET__SHIFT 0x1
+#define XPB_XDMA_RTR_DEST_MAP0__DEST_SEL__SHIFT 0x14
+#define XPB_XDMA_RTR_DEST_MAP0__DEST_SEL_RPB__SHIFT 0x18
+#define XPB_XDMA_RTR_DEST_MAP0__SIDE_OK__SHIFT 0x19
+#define XPB_XDMA_RTR_DEST_MAP0__APRTR_SIZE__SHIFT 0x1a
+#define XPB_XDMA_RTR_DEST_MAP0__NMR_MASK 0x00000001L
+#define XPB_XDMA_RTR_DEST_MAP0__DEST_OFFSET_MASK 0x000FFFFEL
+#define XPB_XDMA_RTR_DEST_MAP0__DEST_SEL_MASK 0x00F00000L
+#define XPB_XDMA_RTR_DEST_MAP0__DEST_SEL_RPB_MASK 0x01000000L
+#define XPB_XDMA_RTR_DEST_MAP0__SIDE_OK_MASK 0x02000000L
+#define XPB_XDMA_RTR_DEST_MAP0__APRTR_SIZE_MASK 0x7C000000L
+//XPB_XDMA_RTR_DEST_MAP1
+#define XPB_XDMA_RTR_DEST_MAP1__NMR__SHIFT 0x0
+#define XPB_XDMA_RTR_DEST_MAP1__DEST_OFFSET__SHIFT 0x1
+#define XPB_XDMA_RTR_DEST_MAP1__DEST_SEL__SHIFT 0x14
+#define XPB_XDMA_RTR_DEST_MAP1__DEST_SEL_RPB__SHIFT 0x18
+#define XPB_XDMA_RTR_DEST_MAP1__SIDE_OK__SHIFT 0x19
+#define XPB_XDMA_RTR_DEST_MAP1__APRTR_SIZE__SHIFT 0x1a
+#define XPB_XDMA_RTR_DEST_MAP1__NMR_MASK 0x00000001L
+#define XPB_XDMA_RTR_DEST_MAP1__DEST_OFFSET_MASK 0x000FFFFEL
+#define XPB_XDMA_RTR_DEST_MAP1__DEST_SEL_MASK 0x00F00000L
+#define XPB_XDMA_RTR_DEST_MAP1__DEST_SEL_RPB_MASK 0x01000000L
+#define XPB_XDMA_RTR_DEST_MAP1__SIDE_OK_MASK 0x02000000L
+#define XPB_XDMA_RTR_DEST_MAP1__APRTR_SIZE_MASK 0x7C000000L
+//XPB_XDMA_RTR_DEST_MAP2
+#define XPB_XDMA_RTR_DEST_MAP2__NMR__SHIFT 0x0
+#define XPB_XDMA_RTR_DEST_MAP2__DEST_OFFSET__SHIFT 0x1
+#define XPB_XDMA_RTR_DEST_MAP2__DEST_SEL__SHIFT 0x14
+#define XPB_XDMA_RTR_DEST_MAP2__DEST_SEL_RPB__SHIFT 0x18
+#define XPB_XDMA_RTR_DEST_MAP2__SIDE_OK__SHIFT 0x19
+#define XPB_XDMA_RTR_DEST_MAP2__APRTR_SIZE__SHIFT 0x1a
+#define XPB_XDMA_RTR_DEST_MAP2__NMR_MASK 0x00000001L
+#define XPB_XDMA_RTR_DEST_MAP2__DEST_OFFSET_MASK 0x000FFFFEL
+#define XPB_XDMA_RTR_DEST_MAP2__DEST_SEL_MASK 0x00F00000L
+#define XPB_XDMA_RTR_DEST_MAP2__DEST_SEL_RPB_MASK 0x01000000L
+#define XPB_XDMA_RTR_DEST_MAP2__SIDE_OK_MASK 0x02000000L
+#define XPB_XDMA_RTR_DEST_MAP2__APRTR_SIZE_MASK 0x7C000000L
+//XPB_XDMA_RTR_DEST_MAP3
+#define XPB_XDMA_RTR_DEST_MAP3__NMR__SHIFT 0x0
+#define XPB_XDMA_RTR_DEST_MAP3__DEST_OFFSET__SHIFT 0x1
+#define XPB_XDMA_RTR_DEST_MAP3__DEST_SEL__SHIFT 0x14
+#define XPB_XDMA_RTR_DEST_MAP3__DEST_SEL_RPB__SHIFT 0x18
+#define XPB_XDMA_RTR_DEST_MAP3__SIDE_OK__SHIFT 0x19
+#define XPB_XDMA_RTR_DEST_MAP3__APRTR_SIZE__SHIFT 0x1a
+#define XPB_XDMA_RTR_DEST_MAP3__NMR_MASK 0x00000001L
+#define XPB_XDMA_RTR_DEST_MAP3__DEST_OFFSET_MASK 0x000FFFFEL
+#define XPB_XDMA_RTR_DEST_MAP3__DEST_SEL_MASK 0x00F00000L
+#define XPB_XDMA_RTR_DEST_MAP3__DEST_SEL_RPB_MASK 0x01000000L
+#define XPB_XDMA_RTR_DEST_MAP3__SIDE_OK_MASK 0x02000000L
+#define XPB_XDMA_RTR_DEST_MAP3__APRTR_SIZE_MASK 0x7C000000L
+//XPB_CLG_CFG0
+#define XPB_CLG_CFG0__WCB_NUM__SHIFT 0x0
+#define XPB_CLG_CFG0__LB_TYPE__SHIFT 0x4
+#define XPB_CLG_CFG0__P2P_BAR__SHIFT 0x7
+#define XPB_CLG_CFG0__HOST_FLUSH__SHIFT 0xa
+#define XPB_CLG_CFG0__SIDE_FLUSH__SHIFT 0xe
+#define XPB_CLG_CFG0__WCB_NUM_MASK 0x0000000FL
+#define XPB_CLG_CFG0__LB_TYPE_MASK 0x00000070L
+#define XPB_CLG_CFG0__P2P_BAR_MASK 0x00000380L
+#define XPB_CLG_CFG0__HOST_FLUSH_MASK 0x00003C00L
+#define XPB_CLG_CFG0__SIDE_FLUSH_MASK 0x0003C000L
+//XPB_CLG_CFG1
+#define XPB_CLG_CFG1__WCB_NUM__SHIFT 0x0
+#define XPB_CLG_CFG1__LB_TYPE__SHIFT 0x4
+#define XPB_CLG_CFG1__P2P_BAR__SHIFT 0x7
+#define XPB_CLG_CFG1__HOST_FLUSH__SHIFT 0xa
+#define XPB_CLG_CFG1__SIDE_FLUSH__SHIFT 0xe
+#define XPB_CLG_CFG1__WCB_NUM_MASK 0x0000000FL
+#define XPB_CLG_CFG1__LB_TYPE_MASK 0x00000070L
+#define XPB_CLG_CFG1__P2P_BAR_MASK 0x00000380L
+#define XPB_CLG_CFG1__HOST_FLUSH_MASK 0x00003C00L
+#define XPB_CLG_CFG1__SIDE_FLUSH_MASK 0x0003C000L
+//XPB_CLG_CFG2
+#define XPB_CLG_CFG2__WCB_NUM__SHIFT 0x0
+#define XPB_CLG_CFG2__LB_TYPE__SHIFT 0x4
+#define XPB_CLG_CFG2__P2P_BAR__SHIFT 0x7
+#define XPB_CLG_CFG2__HOST_FLUSH__SHIFT 0xa
+#define XPB_CLG_CFG2__SIDE_FLUSH__SHIFT 0xe
+#define XPB_CLG_CFG2__WCB_NUM_MASK 0x0000000FL
+#define XPB_CLG_CFG2__LB_TYPE_MASK 0x00000070L
+#define XPB_CLG_CFG2__P2P_BAR_MASK 0x00000380L
+#define XPB_CLG_CFG2__HOST_FLUSH_MASK 0x00003C00L
+#define XPB_CLG_CFG2__SIDE_FLUSH_MASK 0x0003C000L
+//XPB_CLG_CFG3
+#define XPB_CLG_CFG3__WCB_NUM__SHIFT 0x0
+#define XPB_CLG_CFG3__LB_TYPE__SHIFT 0x4
+#define XPB_CLG_CFG3__P2P_BAR__SHIFT 0x7
+#define XPB_CLG_CFG3__HOST_FLUSH__SHIFT 0xa
+#define XPB_CLG_CFG3__SIDE_FLUSH__SHIFT 0xe
+#define XPB_CLG_CFG3__WCB_NUM_MASK 0x0000000FL
+#define XPB_CLG_CFG3__LB_TYPE_MASK 0x00000070L
+#define XPB_CLG_CFG3__P2P_BAR_MASK 0x00000380L
+#define XPB_CLG_CFG3__HOST_FLUSH_MASK 0x00003C00L
+#define XPB_CLG_CFG3__SIDE_FLUSH_MASK 0x0003C000L
+//XPB_CLG_CFG4
+#define XPB_CLG_CFG4__WCB_NUM__SHIFT 0x0
+#define XPB_CLG_CFG4__LB_TYPE__SHIFT 0x4
+#define XPB_CLG_CFG4__P2P_BAR__SHIFT 0x7
+#define XPB_CLG_CFG4__HOST_FLUSH__SHIFT 0xa
+#define XPB_CLG_CFG4__SIDE_FLUSH__SHIFT 0xe
+#define XPB_CLG_CFG4__WCB_NUM_MASK 0x0000000FL
+#define XPB_CLG_CFG4__LB_TYPE_MASK 0x00000070L
+#define XPB_CLG_CFG4__P2P_BAR_MASK 0x00000380L
+#define XPB_CLG_CFG4__HOST_FLUSH_MASK 0x00003C00L
+#define XPB_CLG_CFG4__SIDE_FLUSH_MASK 0x0003C000L
+//XPB_CLG_CFG5
+#define XPB_CLG_CFG5__WCB_NUM__SHIFT 0x0
+#define XPB_CLG_CFG5__LB_TYPE__SHIFT 0x4
+#define XPB_CLG_CFG5__P2P_BAR__SHIFT 0x7
+#define XPB_CLG_CFG5__HOST_FLUSH__SHIFT 0xa
+#define XPB_CLG_CFG5__SIDE_FLUSH__SHIFT 0xe
+#define XPB_CLG_CFG5__WCB_NUM_MASK 0x0000000FL
+#define XPB_CLG_CFG5__LB_TYPE_MASK 0x00000070L
+#define XPB_CLG_CFG5__P2P_BAR_MASK 0x00000380L
+#define XPB_CLG_CFG5__HOST_FLUSH_MASK 0x00003C00L
+#define XPB_CLG_CFG5__SIDE_FLUSH_MASK 0x0003C000L
+//XPB_CLG_CFG6
+#define XPB_CLG_CFG6__WCB_NUM__SHIFT 0x0
+#define XPB_CLG_CFG6__LB_TYPE__SHIFT 0x4
+#define XPB_CLG_CFG6__P2P_BAR__SHIFT 0x7
+#define XPB_CLG_CFG6__HOST_FLUSH__SHIFT 0xa
+#define XPB_CLG_CFG6__SIDE_FLUSH__SHIFT 0xe
+#define XPB_CLG_CFG6__WCB_NUM_MASK 0x0000000FL
+#define XPB_CLG_CFG6__LB_TYPE_MASK 0x00000070L
+#define XPB_CLG_CFG6__P2P_BAR_MASK 0x00000380L
+#define XPB_CLG_CFG6__HOST_FLUSH_MASK 0x00003C00L
+#define XPB_CLG_CFG6__SIDE_FLUSH_MASK 0x0003C000L
+//XPB_CLG_CFG7
+#define XPB_CLG_CFG7__WCB_NUM__SHIFT 0x0
+#define XPB_CLG_CFG7__LB_TYPE__SHIFT 0x4
+#define XPB_CLG_CFG7__P2P_BAR__SHIFT 0x7
+#define XPB_CLG_CFG7__HOST_FLUSH__SHIFT 0xa
+#define XPB_CLG_CFG7__SIDE_FLUSH__SHIFT 0xe
+#define XPB_CLG_CFG7__WCB_NUM_MASK 0x0000000FL
+#define XPB_CLG_CFG7__LB_TYPE_MASK 0x00000070L
+#define XPB_CLG_CFG7__P2P_BAR_MASK 0x00000380L
+#define XPB_CLG_CFG7__HOST_FLUSH_MASK 0x00003C00L
+#define XPB_CLG_CFG7__SIDE_FLUSH_MASK 0x0003C000L
+//XPB_CLG_EXTRA0
+#define XPB_CLG_EXTRA0__CMP0_HIGH__SHIFT 0x0
+#define XPB_CLG_EXTRA0__CMP0_LOW__SHIFT 0x8
+#define XPB_CLG_EXTRA0__VLD0__SHIFT 0xd
+#define XPB_CLG_EXTRA0__CLG0_NUM__SHIFT 0xe
+#define XPB_CLG_EXTRA0__CMP0_HIGH_MASK 0x000000FFL
+#define XPB_CLG_EXTRA0__CMP0_LOW_MASK 0x00001F00L
+#define XPB_CLG_EXTRA0__VLD0_MASK 0x00002000L
+#define XPB_CLG_EXTRA0__CLG0_NUM_MASK 0x0001C000L
+//XPB_CLG_EXTRA1
+#define XPB_CLG_EXTRA1__CMP1_HIGH__SHIFT 0x0
+#define XPB_CLG_EXTRA1__CMP1_LOW__SHIFT 0x8
+#define XPB_CLG_EXTRA1__VLD1__SHIFT 0xd
+#define XPB_CLG_EXTRA1__CLG1_NUM__SHIFT 0xe
+#define XPB_CLG_EXTRA1__CMP1_HIGH_MASK 0x000000FFL
+#define XPB_CLG_EXTRA1__CMP1_LOW_MASK 0x00001F00L
+#define XPB_CLG_EXTRA1__VLD1_MASK 0x00002000L
+#define XPB_CLG_EXTRA1__CLG1_NUM_MASK 0x0001C000L
+//XPB_CLG_EXTRA_MSK
+#define XPB_CLG_EXTRA_MSK__MSK0_HIGH__SHIFT 0x0
+#define XPB_CLG_EXTRA_MSK__MSK0_LOW__SHIFT 0x8
+#define XPB_CLG_EXTRA_MSK__MSK1_HIGH__SHIFT 0xd
+#define XPB_CLG_EXTRA_MSK__MSK1_LOW__SHIFT 0x15
+#define XPB_CLG_EXTRA_MSK__MSK0_HIGH_MASK 0x000000FFL
+#define XPB_CLG_EXTRA_MSK__MSK0_LOW_MASK 0x00001F00L
+#define XPB_CLG_EXTRA_MSK__MSK1_HIGH_MASK 0x001FE000L
+#define XPB_CLG_EXTRA_MSK__MSK1_LOW_MASK 0x03E00000L
+//XPB_LB_ADDR
+#define XPB_LB_ADDR__CMP0__SHIFT 0x0
+#define XPB_LB_ADDR__MASK0__SHIFT 0xa
+#define XPB_LB_ADDR__CMP1__SHIFT 0x14
+#define XPB_LB_ADDR__MASK1__SHIFT 0x1a
+#define XPB_LB_ADDR__CMP0_MASK 0x000003FFL
+#define XPB_LB_ADDR__MASK0_MASK 0x000FFC00L
+#define XPB_LB_ADDR__CMP1_MASK 0x03F00000L
+#define XPB_LB_ADDR__MASK1_MASK 0xFC000000L
+//XPB_WCB_STS
+#define XPB_WCB_STS__PBUF_VLD__SHIFT 0x0
+#define XPB_WCB_STS__WCB_HST_DATA_BUF_CNT__SHIFT 0x10
+#define XPB_WCB_STS__WCB_SID_DATA_BUF_CNT__SHIFT 0x17
+#define XPB_WCB_STS__PBUF_VLD_MASK 0x0000FFFFL
+#define XPB_WCB_STS__WCB_HST_DATA_BUF_CNT_MASK 0x007F0000L
+#define XPB_WCB_STS__WCB_SID_DATA_BUF_CNT_MASK 0x3F800000L
+//XPB_HST_CFG
+#define XPB_HST_CFG__BAR_UP_WR_CMD__SHIFT 0x0
+#define XPB_HST_CFG__BAR_UP_WR_CMD_MASK 0x00000001L
+//XPB_P2P_BAR_CFG
+#define XPB_P2P_BAR_CFG__ADDR_SIZE__SHIFT 0x0
+#define XPB_P2P_BAR_CFG__SEND_BAR__SHIFT 0x4
+#define XPB_P2P_BAR_CFG__SNOOP__SHIFT 0x6
+#define XPB_P2P_BAR_CFG__SEND_DIS__SHIFT 0x7
+#define XPB_P2P_BAR_CFG__COMPRESS_DIS__SHIFT 0x8
+#define XPB_P2P_BAR_CFG__UPDATE_DIS__SHIFT 0x9
+#define XPB_P2P_BAR_CFG__REGBAR_FROM_SYSBAR__SHIFT 0xa
+#define XPB_P2P_BAR_CFG__RD_EN__SHIFT 0xb
+#define XPB_P2P_BAR_CFG__ATC_TRANSLATED__SHIFT 0xc
+#define XPB_P2P_BAR_CFG__ADDR_SIZE_MASK 0x0000000FL
+#define XPB_P2P_BAR_CFG__SEND_BAR_MASK 0x00000030L
+#define XPB_P2P_BAR_CFG__SNOOP_MASK 0x00000040L
+#define XPB_P2P_BAR_CFG__SEND_DIS_MASK 0x00000080L
+#define XPB_P2P_BAR_CFG__COMPRESS_DIS_MASK 0x00000100L
+#define XPB_P2P_BAR_CFG__UPDATE_DIS_MASK 0x00000200L
+#define XPB_P2P_BAR_CFG__REGBAR_FROM_SYSBAR_MASK 0x00000400L
+#define XPB_P2P_BAR_CFG__RD_EN_MASK 0x00000800L
+#define XPB_P2P_BAR_CFG__ATC_TRANSLATED_MASK 0x00001000L
+//XPB_P2P_BAR0
+#define XPB_P2P_BAR0__HOST_FLUSH__SHIFT 0x0
+#define XPB_P2P_BAR0__REG_SYS_BAR__SHIFT 0x4
+#define XPB_P2P_BAR0__MEM_SYS_BAR__SHIFT 0x8
+#define XPB_P2P_BAR0__VALID__SHIFT 0xc
+#define XPB_P2P_BAR0__SEND_DIS__SHIFT 0xd
+#define XPB_P2P_BAR0__COMPRESS_DIS__SHIFT 0xe
+#define XPB_P2P_BAR0__RESERVED__SHIFT 0xf
+#define XPB_P2P_BAR0__ADDRESS__SHIFT 0x10
+#define XPB_P2P_BAR0__HOST_FLUSH_MASK 0x0000000FL
+#define XPB_P2P_BAR0__REG_SYS_BAR_MASK 0x000000F0L
+#define XPB_P2P_BAR0__MEM_SYS_BAR_MASK 0x00000F00L
+#define XPB_P2P_BAR0__VALID_MASK 0x00001000L
+#define XPB_P2P_BAR0__SEND_DIS_MASK 0x00002000L
+#define XPB_P2P_BAR0__COMPRESS_DIS_MASK 0x00004000L
+#define XPB_P2P_BAR0__RESERVED_MASK 0x00008000L
+#define XPB_P2P_BAR0__ADDRESS_MASK 0xFFFF0000L
+//XPB_P2P_BAR1
+#define XPB_P2P_BAR1__HOST_FLUSH__SHIFT 0x0
+#define XPB_P2P_BAR1__REG_SYS_BAR__SHIFT 0x4
+#define XPB_P2P_BAR1__MEM_SYS_BAR__SHIFT 0x8
+#define XPB_P2P_BAR1__VALID__SHIFT 0xc
+#define XPB_P2P_BAR1__SEND_DIS__SHIFT 0xd
+#define XPB_P2P_BAR1__COMPRESS_DIS__SHIFT 0xe
+#define XPB_P2P_BAR1__RESERVED__SHIFT 0xf
+#define XPB_P2P_BAR1__ADDRESS__SHIFT 0x10
+#define XPB_P2P_BAR1__HOST_FLUSH_MASK 0x0000000FL
+#define XPB_P2P_BAR1__REG_SYS_BAR_MASK 0x000000F0L
+#define XPB_P2P_BAR1__MEM_SYS_BAR_MASK 0x00000F00L
+#define XPB_P2P_BAR1__VALID_MASK 0x00001000L
+#define XPB_P2P_BAR1__SEND_DIS_MASK 0x00002000L
+#define XPB_P2P_BAR1__COMPRESS_DIS_MASK 0x00004000L
+#define XPB_P2P_BAR1__RESERVED_MASK 0x00008000L
+#define XPB_P2P_BAR1__ADDRESS_MASK 0xFFFF0000L
+//XPB_P2P_BAR2
+#define XPB_P2P_BAR2__HOST_FLUSH__SHIFT 0x0
+#define XPB_P2P_BAR2__REG_SYS_BAR__SHIFT 0x4
+#define XPB_P2P_BAR2__MEM_SYS_BAR__SHIFT 0x8
+#define XPB_P2P_BAR2__VALID__SHIFT 0xc
+#define XPB_P2P_BAR2__SEND_DIS__SHIFT 0xd
+#define XPB_P2P_BAR2__COMPRESS_DIS__SHIFT 0xe
+#define XPB_P2P_BAR2__RESERVED__SHIFT 0xf
+#define XPB_P2P_BAR2__ADDRESS__SHIFT 0x10
+#define XPB_P2P_BAR2__HOST_FLUSH_MASK 0x0000000FL
+#define XPB_P2P_BAR2__REG_SYS_BAR_MASK 0x000000F0L
+#define XPB_P2P_BAR2__MEM_SYS_BAR_MASK 0x00000F00L
+#define XPB_P2P_BAR2__VALID_MASK 0x00001000L
+#define XPB_P2P_BAR2__SEND_DIS_MASK 0x00002000L
+#define XPB_P2P_BAR2__COMPRESS_DIS_MASK 0x00004000L
+#define XPB_P2P_BAR2__RESERVED_MASK 0x00008000L
+#define XPB_P2P_BAR2__ADDRESS_MASK 0xFFFF0000L
+//XPB_P2P_BAR3
+#define XPB_P2P_BAR3__HOST_FLUSH__SHIFT 0x0
+#define XPB_P2P_BAR3__REG_SYS_BAR__SHIFT 0x4
+#define XPB_P2P_BAR3__MEM_SYS_BAR__SHIFT 0x8
+#define XPB_P2P_BAR3__VALID__SHIFT 0xc
+#define XPB_P2P_BAR3__SEND_DIS__SHIFT 0xd
+#define XPB_P2P_BAR3__COMPRESS_DIS__SHIFT 0xe
+#define XPB_P2P_BAR3__RESERVED__SHIFT 0xf
+#define XPB_P2P_BAR3__ADDRESS__SHIFT 0x10
+#define XPB_P2P_BAR3__HOST_FLUSH_MASK 0x0000000FL
+#define XPB_P2P_BAR3__REG_SYS_BAR_MASK 0x000000F0L
+#define XPB_P2P_BAR3__MEM_SYS_BAR_MASK 0x00000F00L
+#define XPB_P2P_BAR3__VALID_MASK 0x00001000L
+#define XPB_P2P_BAR3__SEND_DIS_MASK 0x00002000L
+#define XPB_P2P_BAR3__COMPRESS_DIS_MASK 0x00004000L
+#define XPB_P2P_BAR3__RESERVED_MASK 0x00008000L
+#define XPB_P2P_BAR3__ADDRESS_MASK 0xFFFF0000L
+//XPB_P2P_BAR4
+#define XPB_P2P_BAR4__HOST_FLUSH__SHIFT 0x0
+#define XPB_P2P_BAR4__REG_SYS_BAR__SHIFT 0x4
+#define XPB_P2P_BAR4__MEM_SYS_BAR__SHIFT 0x8
+#define XPB_P2P_BAR4__VALID__SHIFT 0xc
+#define XPB_P2P_BAR4__SEND_DIS__SHIFT 0xd
+#define XPB_P2P_BAR4__COMPRESS_DIS__SHIFT 0xe
+#define XPB_P2P_BAR4__RESERVED__SHIFT 0xf
+#define XPB_P2P_BAR4__ADDRESS__SHIFT 0x10
+#define XPB_P2P_BAR4__HOST_FLUSH_MASK 0x0000000FL
+#define XPB_P2P_BAR4__REG_SYS_BAR_MASK 0x000000F0L
+#define XPB_P2P_BAR4__MEM_SYS_BAR_MASK 0x00000F00L
+#define XPB_P2P_BAR4__VALID_MASK 0x00001000L
+#define XPB_P2P_BAR4__SEND_DIS_MASK 0x00002000L
+#define XPB_P2P_BAR4__COMPRESS_DIS_MASK 0x00004000L
+#define XPB_P2P_BAR4__RESERVED_MASK 0x00008000L
+#define XPB_P2P_BAR4__ADDRESS_MASK 0xFFFF0000L
+//XPB_P2P_BAR5
+#define XPB_P2P_BAR5__HOST_FLUSH__SHIFT 0x0
+#define XPB_P2P_BAR5__REG_SYS_BAR__SHIFT 0x4
+#define XPB_P2P_BAR5__MEM_SYS_BAR__SHIFT 0x8
+#define XPB_P2P_BAR5__VALID__SHIFT 0xc
+#define XPB_P2P_BAR5__SEND_DIS__SHIFT 0xd
+#define XPB_P2P_BAR5__COMPRESS_DIS__SHIFT 0xe
+#define XPB_P2P_BAR5__RESERVED__SHIFT 0xf
+#define XPB_P2P_BAR5__ADDRESS__SHIFT 0x10
+#define XPB_P2P_BAR5__HOST_FLUSH_MASK 0x0000000FL
+#define XPB_P2P_BAR5__REG_SYS_BAR_MASK 0x000000F0L
+#define XPB_P2P_BAR5__MEM_SYS_BAR_MASK 0x00000F00L
+#define XPB_P2P_BAR5__VALID_MASK 0x00001000L
+#define XPB_P2P_BAR5__SEND_DIS_MASK 0x00002000L
+#define XPB_P2P_BAR5__COMPRESS_DIS_MASK 0x00004000L
+#define XPB_P2P_BAR5__RESERVED_MASK 0x00008000L
+#define XPB_P2P_BAR5__ADDRESS_MASK 0xFFFF0000L
+//XPB_P2P_BAR6
+#define XPB_P2P_BAR6__HOST_FLUSH__SHIFT 0x0
+#define XPB_P2P_BAR6__REG_SYS_BAR__SHIFT 0x4
+#define XPB_P2P_BAR6__MEM_SYS_BAR__SHIFT 0x8
+#define XPB_P2P_BAR6__VALID__SHIFT 0xc
+#define XPB_P2P_BAR6__SEND_DIS__SHIFT 0xd
+#define XPB_P2P_BAR6__COMPRESS_DIS__SHIFT 0xe
+#define XPB_P2P_BAR6__RESERVED__SHIFT 0xf
+#define XPB_P2P_BAR6__ADDRESS__SHIFT 0x10
+#define XPB_P2P_BAR6__HOST_FLUSH_MASK 0x0000000FL
+#define XPB_P2P_BAR6__REG_SYS_BAR_MASK 0x000000F0L
+#define XPB_P2P_BAR6__MEM_SYS_BAR_MASK 0x00000F00L
+#define XPB_P2P_BAR6__VALID_MASK 0x00001000L
+#define XPB_P2P_BAR6__SEND_DIS_MASK 0x00002000L
+#define XPB_P2P_BAR6__COMPRESS_DIS_MASK 0x00004000L
+#define XPB_P2P_BAR6__RESERVED_MASK 0x00008000L
+#define XPB_P2P_BAR6__ADDRESS_MASK 0xFFFF0000L
+//XPB_P2P_BAR7
+#define XPB_P2P_BAR7__HOST_FLUSH__SHIFT 0x0
+#define XPB_P2P_BAR7__REG_SYS_BAR__SHIFT 0x4
+#define XPB_P2P_BAR7__MEM_SYS_BAR__SHIFT 0x8
+#define XPB_P2P_BAR7__VALID__SHIFT 0xc
+#define XPB_P2P_BAR7__SEND_DIS__SHIFT 0xd
+#define XPB_P2P_BAR7__COMPRESS_DIS__SHIFT 0xe
+#define XPB_P2P_BAR7__RESERVED__SHIFT 0xf
+#define XPB_P2P_BAR7__ADDRESS__SHIFT 0x10
+#define XPB_P2P_BAR7__HOST_FLUSH_MASK 0x0000000FL
+#define XPB_P2P_BAR7__REG_SYS_BAR_MASK 0x000000F0L
+#define XPB_P2P_BAR7__MEM_SYS_BAR_MASK 0x00000F00L
+#define XPB_P2P_BAR7__VALID_MASK 0x00001000L
+#define XPB_P2P_BAR7__SEND_DIS_MASK 0x00002000L
+#define XPB_P2P_BAR7__COMPRESS_DIS_MASK 0x00004000L
+#define XPB_P2P_BAR7__RESERVED_MASK 0x00008000L
+#define XPB_P2P_BAR7__ADDRESS_MASK 0xFFFF0000L
+//XPB_P2P_BAR_SETUP
+#define XPB_P2P_BAR_SETUP__SEL__SHIFT 0x0
+#define XPB_P2P_BAR_SETUP__REG_SYS_BAR__SHIFT 0x8
+#define XPB_P2P_BAR_SETUP__VALID__SHIFT 0xc
+#define XPB_P2P_BAR_SETUP__SEND_DIS__SHIFT 0xd
+#define XPB_P2P_BAR_SETUP__COMPRESS_DIS__SHIFT 0xe
+#define XPB_P2P_BAR_SETUP__RESERVED__SHIFT 0xf
+#define XPB_P2P_BAR_SETUP__ADDRESS__SHIFT 0x10
+#define XPB_P2P_BAR_SETUP__SEL_MASK 0x000000FFL
+#define XPB_P2P_BAR_SETUP__REG_SYS_BAR_MASK 0x00000F00L
+#define XPB_P2P_BAR_SETUP__VALID_MASK 0x00001000L
+#define XPB_P2P_BAR_SETUP__SEND_DIS_MASK 0x00002000L
+#define XPB_P2P_BAR_SETUP__COMPRESS_DIS_MASK 0x00004000L
+#define XPB_P2P_BAR_SETUP__RESERVED_MASK 0x00008000L
+#define XPB_P2P_BAR_SETUP__ADDRESS_MASK 0xFFFF0000L
+//XPB_P2P_BAR_DELTA_ABOVE
+#define XPB_P2P_BAR_DELTA_ABOVE__EN__SHIFT 0x0
+#define XPB_P2P_BAR_DELTA_ABOVE__DELTA__SHIFT 0x8
+#define XPB_P2P_BAR_DELTA_ABOVE__EN_MASK 0x000000FFL
+#define XPB_P2P_BAR_DELTA_ABOVE__DELTA_MASK 0x0FFFFF00L
+//XPB_P2P_BAR_DELTA_BELOW
+#define XPB_P2P_BAR_DELTA_BELOW__EN__SHIFT 0x0
+#define XPB_P2P_BAR_DELTA_BELOW__DELTA__SHIFT 0x8
+#define XPB_P2P_BAR_DELTA_BELOW__EN_MASK 0x000000FFL
+#define XPB_P2P_BAR_DELTA_BELOW__DELTA_MASK 0x0FFFFF00L
+//XPB_PEER_SYS_BAR0
+#define XPB_PEER_SYS_BAR0__VALID__SHIFT 0x0
+#define XPB_PEER_SYS_BAR0__ADDR__SHIFT 0x1
+#define XPB_PEER_SYS_BAR0__VALID_MASK 0x00000001L
+#define XPB_PEER_SYS_BAR0__ADDR_MASK 0xFFFFFFFEL
+//XPB_PEER_SYS_BAR1
+#define XPB_PEER_SYS_BAR1__VALID__SHIFT 0x0
+#define XPB_PEER_SYS_BAR1__ADDR__SHIFT 0x1
+#define XPB_PEER_SYS_BAR1__VALID_MASK 0x00000001L
+#define XPB_PEER_SYS_BAR1__ADDR_MASK 0xFFFFFFFEL
+//XPB_PEER_SYS_BAR2
+#define XPB_PEER_SYS_BAR2__VALID__SHIFT 0x0
+#define XPB_PEER_SYS_BAR2__ADDR__SHIFT 0x1
+#define XPB_PEER_SYS_BAR2__VALID_MASK 0x00000001L
+#define XPB_PEER_SYS_BAR2__ADDR_MASK 0xFFFFFFFEL
+//XPB_PEER_SYS_BAR3
+#define XPB_PEER_SYS_BAR3__VALID__SHIFT 0x0
+#define XPB_PEER_SYS_BAR3__ADDR__SHIFT 0x1
+#define XPB_PEER_SYS_BAR3__VALID_MASK 0x00000001L
+#define XPB_PEER_SYS_BAR3__ADDR_MASK 0xFFFFFFFEL
+//XPB_PEER_SYS_BAR4
+#define XPB_PEER_SYS_BAR4__VALID__SHIFT 0x0
+#define XPB_PEER_SYS_BAR4__ADDR__SHIFT 0x1
+#define XPB_PEER_SYS_BAR4__VALID_MASK 0x00000001L
+#define XPB_PEER_SYS_BAR4__ADDR_MASK 0xFFFFFFFEL
+//XPB_PEER_SYS_BAR5
+#define XPB_PEER_SYS_BAR5__VALID__SHIFT 0x0
+#define XPB_PEER_SYS_BAR5__ADDR__SHIFT 0x1
+#define XPB_PEER_SYS_BAR5__VALID_MASK 0x00000001L
+#define XPB_PEER_SYS_BAR5__ADDR_MASK 0xFFFFFFFEL
+//XPB_PEER_SYS_BAR6
+#define XPB_PEER_SYS_BAR6__VALID__SHIFT 0x0
+#define XPB_PEER_SYS_BAR6__ADDR__SHIFT 0x1
+#define XPB_PEER_SYS_BAR6__VALID_MASK 0x00000001L
+#define XPB_PEER_SYS_BAR6__ADDR_MASK 0xFFFFFFFEL
+//XPB_PEER_SYS_BAR7
+#define XPB_PEER_SYS_BAR7__VALID__SHIFT 0x0
+#define XPB_PEER_SYS_BAR7__ADDR__SHIFT 0x1
+#define XPB_PEER_SYS_BAR7__VALID_MASK 0x00000001L
+#define XPB_PEER_SYS_BAR7__ADDR_MASK 0xFFFFFFFEL
+//XPB_PEER_SYS_BAR8
+#define XPB_PEER_SYS_BAR8__VALID__SHIFT 0x0
+#define XPB_PEER_SYS_BAR8__ADDR__SHIFT 0x1
+#define XPB_PEER_SYS_BAR8__VALID_MASK 0x00000001L
+#define XPB_PEER_SYS_BAR8__ADDR_MASK 0xFFFFFFFEL
+//XPB_PEER_SYS_BAR9
+#define XPB_PEER_SYS_BAR9__VALID__SHIFT 0x0
+#define XPB_PEER_SYS_BAR9__ADDR__SHIFT 0x1
+#define XPB_PEER_SYS_BAR9__VALID_MASK 0x00000001L
+#define XPB_PEER_SYS_BAR9__ADDR_MASK 0xFFFFFFFEL
+//XPB_XDMA_PEER_SYS_BAR0
+#define XPB_XDMA_PEER_SYS_BAR0__VALID__SHIFT 0x0
+#define XPB_XDMA_PEER_SYS_BAR0__ADDR__SHIFT 0x1
+#define XPB_XDMA_PEER_SYS_BAR0__VALID_MASK 0x00000001L
+#define XPB_XDMA_PEER_SYS_BAR0__ADDR_MASK 0xFFFFFFFEL
+//XPB_XDMA_PEER_SYS_BAR1
+#define XPB_XDMA_PEER_SYS_BAR1__VALID__SHIFT 0x0
+#define XPB_XDMA_PEER_SYS_BAR1__ADDR__SHIFT 0x1
+#define XPB_XDMA_PEER_SYS_BAR1__VALID_MASK 0x00000001L
+#define XPB_XDMA_PEER_SYS_BAR1__ADDR_MASK 0xFFFFFFFEL
+//XPB_XDMA_PEER_SYS_BAR2
+#define XPB_XDMA_PEER_SYS_BAR2__VALID__SHIFT 0x0
+#define XPB_XDMA_PEER_SYS_BAR2__ADDR__SHIFT 0x1
+#define XPB_XDMA_PEER_SYS_BAR2__VALID_MASK 0x00000001L
+#define XPB_XDMA_PEER_SYS_BAR2__ADDR_MASK 0xFFFFFFFEL
+//XPB_XDMA_PEER_SYS_BAR3
+#define XPB_XDMA_PEER_SYS_BAR3__VALID__SHIFT 0x0
+#define XPB_XDMA_PEER_SYS_BAR3__ADDR__SHIFT 0x1
+#define XPB_XDMA_PEER_SYS_BAR3__VALID_MASK 0x00000001L
+#define XPB_XDMA_PEER_SYS_BAR3__ADDR_MASK 0xFFFFFFFEL
+//XPB_CLK_GAT
+#define XPB_CLK_GAT__ONDLY__SHIFT 0x0
+#define XPB_CLK_GAT__OFFDLY__SHIFT 0x6
+#define XPB_CLK_GAT__RDYDLY__SHIFT 0xc
+#define XPB_CLK_GAT__ENABLE__SHIFT 0x12
+#define XPB_CLK_GAT__MEM_LS_ENABLE__SHIFT 0x13
+#define XPB_CLK_GAT__ONDLY_MASK 0x0000003FL
+#define XPB_CLK_GAT__OFFDLY_MASK 0x00000FC0L
+#define XPB_CLK_GAT__RDYDLY_MASK 0x0003F000L
+#define XPB_CLK_GAT__ENABLE_MASK 0x00040000L
+#define XPB_CLK_GAT__MEM_LS_ENABLE_MASK 0x00080000L
+//XPB_INTF_CFG
+#define XPB_INTF_CFG__RPB_WRREQ_CRD__SHIFT 0x0
+#define XPB_INTF_CFG__MC_WRRET_ASK__SHIFT 0x8
+#define XPB_INTF_CFG__XSP_REQ_CRD__SHIFT 0x10
+#define XPB_INTF_CFG__BIF_REG_SNOOP_SEL__SHIFT 0x17
+#define XPB_INTF_CFG__BIF_REG_SNOOP_VAL__SHIFT 0x18
+#define XPB_INTF_CFG__BIF_MEM_SNOOP_SEL__SHIFT 0x19
+#define XPB_INTF_CFG__BIF_MEM_SNOOP_VAL__SHIFT 0x1a
+#define XPB_INTF_CFG__XSP_SNOOP_SEL__SHIFT 0x1b
+#define XPB_INTF_CFG__XSP_SNOOP_VAL__SHIFT 0x1d
+#define XPB_INTF_CFG__XSP_ORDERING_SEL__SHIFT 0x1e
+#define XPB_INTF_CFG__QUALIFY_P2P_FOR_GPA__SHIFT 0x1f
+#define XPB_INTF_CFG__RPB_WRREQ_CRD_MASK 0x000000FFL
+#define XPB_INTF_CFG__MC_WRRET_ASK_MASK 0x0000FF00L
+#define XPB_INTF_CFG__XSP_REQ_CRD_MASK 0x007F0000L
+#define XPB_INTF_CFG__BIF_REG_SNOOP_SEL_MASK 0x00800000L
+#define XPB_INTF_CFG__BIF_REG_SNOOP_VAL_MASK 0x01000000L
+#define XPB_INTF_CFG__BIF_MEM_SNOOP_SEL_MASK 0x02000000L
+#define XPB_INTF_CFG__BIF_MEM_SNOOP_VAL_MASK 0x04000000L
+#define XPB_INTF_CFG__XSP_SNOOP_SEL_MASK 0x18000000L
+#define XPB_INTF_CFG__XSP_SNOOP_VAL_MASK 0x20000000L
+#define XPB_INTF_CFG__XSP_ORDERING_SEL_MASK 0x40000000L
+#define XPB_INTF_CFG__QUALIFY_P2P_FOR_GPA_MASK 0x80000000L
+//XPB_INTF_STS
+#define XPB_INTF_STS__RPB_WRREQ_CRD__SHIFT 0x0
+#define XPB_INTF_STS__XSP_REQ_CRD__SHIFT 0x8
+#define XPB_INTF_STS__HOP_DATA_BUF_FULL__SHIFT 0xf
+#define XPB_INTF_STS__HOP_ATTR_BUF_FULL__SHIFT 0x10
+#define XPB_INTF_STS__CNS_BUF_FULL__SHIFT 0x11
+#define XPB_INTF_STS__CNS_BUF_BUSY__SHIFT 0x12
+#define XPB_INTF_STS__RPB_RDREQ_CRD__SHIFT 0x13
+#define XPB_INTF_STS__RPB_WRREQ_CRD_MASK 0x000000FFL
+#define XPB_INTF_STS__XSP_REQ_CRD_MASK 0x00007F00L
+#define XPB_INTF_STS__HOP_DATA_BUF_FULL_MASK 0x00008000L
+#define XPB_INTF_STS__HOP_ATTR_BUF_FULL_MASK 0x00010000L
+#define XPB_INTF_STS__CNS_BUF_FULL_MASK 0x00020000L
+#define XPB_INTF_STS__CNS_BUF_BUSY_MASK 0x00040000L
+#define XPB_INTF_STS__RPB_RDREQ_CRD_MASK 0x07F80000L
+//XPB_PIPE_STS
+#define XPB_PIPE_STS__WCB_ANY_PBUF__SHIFT 0x0
+#define XPB_PIPE_STS__WCB_HST_DATA_BUF_CNT__SHIFT 0x1
+#define XPB_PIPE_STS__WCB_SID_DATA_BUF_CNT__SHIFT 0x8
+#define XPB_PIPE_STS__WCB_HST_RD_PTR_BUF_FULL__SHIFT 0xf
+#define XPB_PIPE_STS__WCB_SID_RD_PTR_BUF_FULL__SHIFT 0x10
+#define XPB_PIPE_STS__WCB_HST_REQ_FIFO_FULL__SHIFT 0x11
+#define XPB_PIPE_STS__WCB_SID_REQ_FIFO_FULL__SHIFT 0x12
+#define XPB_PIPE_STS__WCB_HST_REQ_OBUF_FULL__SHIFT 0x13
+#define XPB_PIPE_STS__WCB_SID_REQ_OBUF_FULL__SHIFT 0x14
+#define XPB_PIPE_STS__WCB_HST_DATA_OBUF_FULL__SHIFT 0x15
+#define XPB_PIPE_STS__WCB_SID_DATA_OBUF_FULL__SHIFT 0x16
+#define XPB_PIPE_STS__RET_BUF_FULL__SHIFT 0x17
+#define XPB_PIPE_STS__XPB_CLK_BUSY_BITS__SHIFT 0x18
+#define XPB_PIPE_STS__WCB_ANY_PBUF_MASK 0x00000001L
+#define XPB_PIPE_STS__WCB_HST_DATA_BUF_CNT_MASK 0x000000FEL
+#define XPB_PIPE_STS__WCB_SID_DATA_BUF_CNT_MASK 0x00007F00L
+#define XPB_PIPE_STS__WCB_HST_RD_PTR_BUF_FULL_MASK 0x00008000L
+#define XPB_PIPE_STS__WCB_SID_RD_PTR_BUF_FULL_MASK 0x00010000L
+#define XPB_PIPE_STS__WCB_HST_REQ_FIFO_FULL_MASK 0x00020000L
+#define XPB_PIPE_STS__WCB_SID_REQ_FIFO_FULL_MASK 0x00040000L
+#define XPB_PIPE_STS__WCB_HST_REQ_OBUF_FULL_MASK 0x00080000L
+#define XPB_PIPE_STS__WCB_SID_REQ_OBUF_FULL_MASK 0x00100000L
+#define XPB_PIPE_STS__WCB_HST_DATA_OBUF_FULL_MASK 0x00200000L
+#define XPB_PIPE_STS__WCB_SID_DATA_OBUF_FULL_MASK 0x00400000L
+#define XPB_PIPE_STS__RET_BUF_FULL_MASK 0x00800000L
+#define XPB_PIPE_STS__XPB_CLK_BUSY_BITS_MASK 0xFF000000L
+//XPB_SUB_CTRL
+#define XPB_SUB_CTRL__WRREQ_BYPASS_XPB__SHIFT 0x0
+#define XPB_SUB_CTRL__STALL_CNS_RTR_REQ__SHIFT 0x1
+#define XPB_SUB_CTRL__STALL_RTR_RPB_WRREQ__SHIFT 0x2
+#define XPB_SUB_CTRL__STALL_RTR_MAP_REQ__SHIFT 0x3
+#define XPB_SUB_CTRL__STALL_MAP_WCB_REQ__SHIFT 0x4
+#define XPB_SUB_CTRL__STALL_WCB_SID_REQ__SHIFT 0x5
+#define XPB_SUB_CTRL__STALL_MC_XSP_REQ_SEND__SHIFT 0x6
+#define XPB_SUB_CTRL__STALL_WCB_HST_REQ__SHIFT 0x7
+#define XPB_SUB_CTRL__STALL_HST_HOP_REQ__SHIFT 0x8
+#define XPB_SUB_CTRL__STALL_XPB_RPB_REQ_ATTR__SHIFT 0x9
+#define XPB_SUB_CTRL__RESET_CNS__SHIFT 0xa
+#define XPB_SUB_CTRL__RESET_RTR__SHIFT 0xb
+#define XPB_SUB_CTRL__RESET_RET__SHIFT 0xc
+#define XPB_SUB_CTRL__RESET_MAP__SHIFT 0xd
+#define XPB_SUB_CTRL__RESET_WCB__SHIFT 0xe
+#define XPB_SUB_CTRL__RESET_HST__SHIFT 0xf
+#define XPB_SUB_CTRL__RESET_HOP__SHIFT 0x10
+#define XPB_SUB_CTRL__RESET_SID__SHIFT 0x11
+#define XPB_SUB_CTRL__RESET_SRB__SHIFT 0x12
+#define XPB_SUB_CTRL__RESET_CGR__SHIFT 0x13
+#define XPB_SUB_CTRL__WRREQ_BYPASS_XPB_MASK 0x00000001L
+#define XPB_SUB_CTRL__STALL_CNS_RTR_REQ_MASK 0x00000002L
+#define XPB_SUB_CTRL__STALL_RTR_RPB_WRREQ_MASK 0x00000004L
+#define XPB_SUB_CTRL__STALL_RTR_MAP_REQ_MASK 0x00000008L
+#define XPB_SUB_CTRL__STALL_MAP_WCB_REQ_MASK 0x00000010L
+#define XPB_SUB_CTRL__STALL_WCB_SID_REQ_MASK 0x00000020L
+#define XPB_SUB_CTRL__STALL_MC_XSP_REQ_SEND_MASK 0x00000040L
+#define XPB_SUB_CTRL__STALL_WCB_HST_REQ_MASK 0x00000080L
+#define XPB_SUB_CTRL__STALL_HST_HOP_REQ_MASK 0x00000100L
+#define XPB_SUB_CTRL__STALL_XPB_RPB_REQ_ATTR_MASK 0x00000200L
+#define XPB_SUB_CTRL__RESET_CNS_MASK 0x00000400L
+#define XPB_SUB_CTRL__RESET_RTR_MASK 0x00000800L
+#define XPB_SUB_CTRL__RESET_RET_MASK 0x00001000L
+#define XPB_SUB_CTRL__RESET_MAP_MASK 0x00002000L
+#define XPB_SUB_CTRL__RESET_WCB_MASK 0x00004000L
+#define XPB_SUB_CTRL__RESET_HST_MASK 0x00008000L
+#define XPB_SUB_CTRL__RESET_HOP_MASK 0x00010000L
+#define XPB_SUB_CTRL__RESET_SID_MASK 0x00020000L
+#define XPB_SUB_CTRL__RESET_SRB_MASK 0x00040000L
+#define XPB_SUB_CTRL__RESET_CGR_MASK 0x00080000L
+//XPB_MAP_INVERT_FLUSH_NUM_LSB
+#define XPB_MAP_INVERT_FLUSH_NUM_LSB__ALTER_FLUSH_NUM__SHIFT 0x0
+#define XPB_MAP_INVERT_FLUSH_NUM_LSB__ALTER_FLUSH_NUM_MASK 0x0000FFFFL
+//XPB_PERF_KNOBS
+#define XPB_PERF_KNOBS__CNS_FIFO_DEPTH__SHIFT 0x0
+#define XPB_PERF_KNOBS__WCB_HST_FIFO_DEPTH__SHIFT 0x6
+#define XPB_PERF_KNOBS__WCB_SID_FIFO_DEPTH__SHIFT 0xc
+#define XPB_PERF_KNOBS__CNS_FIFO_DEPTH_MASK 0x0000003FL
+#define XPB_PERF_KNOBS__WCB_HST_FIFO_DEPTH_MASK 0x00000FC0L
+#define XPB_PERF_KNOBS__WCB_SID_FIFO_DEPTH_MASK 0x0003F000L
+//XPB_STICKY
+#define XPB_STICKY__BITS__SHIFT 0x0
+#define XPB_STICKY__BITS_MASK 0xFFFFFFFFL
+//XPB_STICKY_W1C
+#define XPB_STICKY_W1C__BITS__SHIFT 0x0
+#define XPB_STICKY_W1C__BITS_MASK 0xFFFFFFFFL
+//XPB_MISC_CFG
+#define XPB_MISC_CFG__FIELDNAME0__SHIFT 0x0
+#define XPB_MISC_CFG__FIELDNAME1__SHIFT 0x8
+#define XPB_MISC_CFG__FIELDNAME2__SHIFT 0x10
+#define XPB_MISC_CFG__FIELDNAME3__SHIFT 0x18
+#define XPB_MISC_CFG__TRIGGERNAME__SHIFT 0x1f
+#define XPB_MISC_CFG__FIELDNAME0_MASK 0x000000FFL
+#define XPB_MISC_CFG__FIELDNAME1_MASK 0x0000FF00L
+#define XPB_MISC_CFG__FIELDNAME2_MASK 0x00FF0000L
+#define XPB_MISC_CFG__FIELDNAME3_MASK 0x7F000000L
+#define XPB_MISC_CFG__TRIGGERNAME_MASK 0x80000000L
+//XPB_INTF_CFG2
+#define XPB_INTF_CFG2__RPB_RDREQ_CRD__SHIFT 0x0
+#define XPB_INTF_CFG2__RPB_RDREQ_CRD_MASK 0x000000FFL
+//XPB_CLG_EXTRA_RD
+#define XPB_CLG_EXTRA_RD__CMP0_HIGH__SHIFT 0x0
+#define XPB_CLG_EXTRA_RD__CMP0_LOW__SHIFT 0x6
+#define XPB_CLG_EXTRA_RD__VLD0__SHIFT 0xb
+#define XPB_CLG_EXTRA_RD__CLG0_NUM__SHIFT 0xc
+#define XPB_CLG_EXTRA_RD__CMP1_HIGH__SHIFT 0xf
+#define XPB_CLG_EXTRA_RD__CMP1_LOW__SHIFT 0x15
+#define XPB_CLG_EXTRA_RD__VLD1__SHIFT 0x1a
+#define XPB_CLG_EXTRA_RD__CLG1_NUM__SHIFT 0x1b
+#define XPB_CLG_EXTRA_RD__CMP0_HIGH_MASK 0x0000003FL
+#define XPB_CLG_EXTRA_RD__CMP0_LOW_MASK 0x000007C0L
+#define XPB_CLG_EXTRA_RD__VLD0_MASK 0x00000800L
+#define XPB_CLG_EXTRA_RD__CLG0_NUM_MASK 0x00007000L
+#define XPB_CLG_EXTRA_RD__CMP1_HIGH_MASK 0x001F8000L
+#define XPB_CLG_EXTRA_RD__CMP1_LOW_MASK 0x03E00000L
+#define XPB_CLG_EXTRA_RD__VLD1_MASK 0x04000000L
+#define XPB_CLG_EXTRA_RD__CLG1_NUM_MASK 0x38000000L
+//XPB_CLG_EXTRA_MSK_RD
+#define XPB_CLG_EXTRA_MSK_RD__MSK0_HIGH__SHIFT 0x0
+#define XPB_CLG_EXTRA_MSK_RD__MSK0_LOW__SHIFT 0x6
+#define XPB_CLG_EXTRA_MSK_RD__MSK1_HIGH__SHIFT 0xb
+#define XPB_CLG_EXTRA_MSK_RD__MSK1_LOW__SHIFT 0x11
+#define XPB_CLG_EXTRA_MSK_RD__MSK0_HIGH_MASK 0x0000003FL
+#define XPB_CLG_EXTRA_MSK_RD__MSK0_LOW_MASK 0x000007C0L
+#define XPB_CLG_EXTRA_MSK_RD__MSK1_HIGH_MASK 0x0001F800L
+#define XPB_CLG_EXTRA_MSK_RD__MSK1_LOW_MASK 0x003E0000L
+//XPB_CLG_GFX_MATCH
+#define XPB_CLG_GFX_MATCH__FARBIRC0_ID__SHIFT 0x0
+#define XPB_CLG_GFX_MATCH__FARBIRC1_ID__SHIFT 0x8
+#define XPB_CLG_GFX_MATCH__FARBIRC2_ID__SHIFT 0x10
+#define XPB_CLG_GFX_MATCH__FARBIRC3_ID__SHIFT 0x18
+#define XPB_CLG_GFX_MATCH__FARBIRC0_ID_MASK 0x000000FFL
+#define XPB_CLG_GFX_MATCH__FARBIRC1_ID_MASK 0x0000FF00L
+#define XPB_CLG_GFX_MATCH__FARBIRC2_ID_MASK 0x00FF0000L
+#define XPB_CLG_GFX_MATCH__FARBIRC3_ID_MASK 0xFF000000L
+//XPB_CLG_GFX_MATCH_VLD
+#define XPB_CLG_GFX_MATCH_VLD__FARBIRC0_VLD__SHIFT 0x0
+#define XPB_CLG_GFX_MATCH_VLD__FARBIRC1_VLD__SHIFT 0x1
+#define XPB_CLG_GFX_MATCH_VLD__FARBIRC2_VLD__SHIFT 0x2
+#define XPB_CLG_GFX_MATCH_VLD__FARBIRC3_VLD__SHIFT 0x3
+#define XPB_CLG_GFX_MATCH_VLD__FARBIRC0_VLD_MASK 0x00000001L
+#define XPB_CLG_GFX_MATCH_VLD__FARBIRC1_VLD_MASK 0x00000002L
+#define XPB_CLG_GFX_MATCH_VLD__FARBIRC2_VLD_MASK 0x00000004L
+#define XPB_CLG_GFX_MATCH_VLD__FARBIRC3_VLD_MASK 0x00000008L
+//XPB_CLG_GFX_MATCH_MSK
+#define XPB_CLG_GFX_MATCH_MSK__FARBIRC0_ID_MSK__SHIFT 0x0
+#define XPB_CLG_GFX_MATCH_MSK__FARBIRC1_ID_MSK__SHIFT 0x8
+#define XPB_CLG_GFX_MATCH_MSK__FARBIRC2_ID_MSK__SHIFT 0x10
+#define XPB_CLG_GFX_MATCH_MSK__FARBIRC3_ID_MSK__SHIFT 0x18
+#define XPB_CLG_GFX_MATCH_MSK__FARBIRC0_ID_MSK_MASK 0x000000FFL
+#define XPB_CLG_GFX_MATCH_MSK__FARBIRC1_ID_MSK_MASK 0x0000FF00L
+#define XPB_CLG_GFX_MATCH_MSK__FARBIRC2_ID_MSK_MASK 0x00FF0000L
+#define XPB_CLG_GFX_MATCH_MSK__FARBIRC3_ID_MSK_MASK 0xFF000000L
+//XPB_CLG_MM_MATCH
+#define XPB_CLG_MM_MATCH__FARBIRC0_ID__SHIFT 0x0
+#define XPB_CLG_MM_MATCH__FARBIRC1_ID__SHIFT 0x8
+#define XPB_CLG_MM_MATCH__FARBIRC2_ID__SHIFT 0x10
+#define XPB_CLG_MM_MATCH__FARBIRC3_ID__SHIFT 0x18
+#define XPB_CLG_MM_MATCH__FARBIRC0_ID_MASK 0x000000FFL
+#define XPB_CLG_MM_MATCH__FARBIRC1_ID_MASK 0x0000FF00L
+#define XPB_CLG_MM_MATCH__FARBIRC2_ID_MASK 0x00FF0000L
+#define XPB_CLG_MM_MATCH__FARBIRC3_ID_MASK 0xFF000000L
+//XPB_CLG_MM_MATCH_VLD
+#define XPB_CLG_MM_MATCH_VLD__FARBIRC0_VLD__SHIFT 0x0
+#define XPB_CLG_MM_MATCH_VLD__FARBIRC1_VLD__SHIFT 0x1
+#define XPB_CLG_MM_MATCH_VLD__FARBIRC2_VLD__SHIFT 0x2
+#define XPB_CLG_MM_MATCH_VLD__FARBIRC3_VLD__SHIFT 0x3
+#define XPB_CLG_MM_MATCH_VLD__FARBIRC0_VLD_MASK 0x00000001L
+#define XPB_CLG_MM_MATCH_VLD__FARBIRC1_VLD_MASK 0x00000002L
+#define XPB_CLG_MM_MATCH_VLD__FARBIRC2_VLD_MASK 0x00000004L
+#define XPB_CLG_MM_MATCH_VLD__FARBIRC3_VLD_MASK 0x00000008L
+//XPB_CLG_MM_MATCH_MSK
+#define XPB_CLG_MM_MATCH_MSK__FARBIRC0_ID_MSK__SHIFT 0x0
+#define XPB_CLG_MM_MATCH_MSK__FARBIRC1_ID_MSK__SHIFT 0x8
+#define XPB_CLG_MM_MATCH_MSK__FARBIRC2_ID_MSK__SHIFT 0x10
+#define XPB_CLG_MM_MATCH_MSK__FARBIRC3_ID_MSK__SHIFT 0x18
+#define XPB_CLG_MM_MATCH_MSK__FARBIRC0_ID_MSK_MASK 0x000000FFL
+#define XPB_CLG_MM_MATCH_MSK__FARBIRC1_ID_MSK_MASK 0x0000FF00L
+#define XPB_CLG_MM_MATCH_MSK__FARBIRC2_ID_MSK_MASK 0x00FF0000L
+#define XPB_CLG_MM_MATCH_MSK__FARBIRC3_ID_MSK_MASK 0xFF000000L
+//XPB_CLG_GFX_UNITID_MAPPING0
+#define XPB_CLG_GFX_UNITID_MAPPING0__UNITID_LOW__SHIFT 0x0
+#define XPB_CLG_GFX_UNITID_MAPPING0__UNITID_VLD__SHIFT 0x5
+#define XPB_CLG_GFX_UNITID_MAPPING0__DEST_CLG_NUM__SHIFT 0x6
+#define XPB_CLG_GFX_UNITID_MAPPING0__UNITID_LOW_MASK 0x0000001FL
+#define XPB_CLG_GFX_UNITID_MAPPING0__UNITID_VLD_MASK 0x00000020L
+#define XPB_CLG_GFX_UNITID_MAPPING0__DEST_CLG_NUM_MASK 0x000001C0L
+//XPB_CLG_GFX_UNITID_MAPPING1
+#define XPB_CLG_GFX_UNITID_MAPPING1__UNITID_LOW__SHIFT 0x0
+#define XPB_CLG_GFX_UNITID_MAPPING1__UNITID_VLD__SHIFT 0x5
+#define XPB_CLG_GFX_UNITID_MAPPING1__DEST_CLG_NUM__SHIFT 0x6
+#define XPB_CLG_GFX_UNITID_MAPPING1__UNITID_LOW_MASK 0x0000001FL
+#define XPB_CLG_GFX_UNITID_MAPPING1__UNITID_VLD_MASK 0x00000020L
+#define XPB_CLG_GFX_UNITID_MAPPING1__DEST_CLG_NUM_MASK 0x000001C0L
+//XPB_CLG_GFX_UNITID_MAPPING2
+#define XPB_CLG_GFX_UNITID_MAPPING2__UNITID_LOW__SHIFT 0x0
+#define XPB_CLG_GFX_UNITID_MAPPING2__UNITID_VLD__SHIFT 0x5
+#define XPB_CLG_GFX_UNITID_MAPPING2__DEST_CLG_NUM__SHIFT 0x6
+#define XPB_CLG_GFX_UNITID_MAPPING2__UNITID_LOW_MASK 0x0000001FL
+#define XPB_CLG_GFX_UNITID_MAPPING2__UNITID_VLD_MASK 0x00000020L
+#define XPB_CLG_GFX_UNITID_MAPPING2__DEST_CLG_NUM_MASK 0x000001C0L
+//XPB_CLG_GFX_UNITID_MAPPING3
+#define XPB_CLG_GFX_UNITID_MAPPING3__UNITID_LOW__SHIFT 0x0
+#define XPB_CLG_GFX_UNITID_MAPPING3__UNITID_VLD__SHIFT 0x5
+#define XPB_CLG_GFX_UNITID_MAPPING3__DEST_CLG_NUM__SHIFT 0x6
+#define XPB_CLG_GFX_UNITID_MAPPING3__UNITID_LOW_MASK 0x0000001FL
+#define XPB_CLG_GFX_UNITID_MAPPING3__UNITID_VLD_MASK 0x00000020L
+#define XPB_CLG_GFX_UNITID_MAPPING3__DEST_CLG_NUM_MASK 0x000001C0L
+//XPB_CLG_GFX_UNITID_MAPPING4
+#define XPB_CLG_GFX_UNITID_MAPPING4__UNITID_LOW__SHIFT 0x0
+#define XPB_CLG_GFX_UNITID_MAPPING4__UNITID_VLD__SHIFT 0x5
+#define XPB_CLG_GFX_UNITID_MAPPING4__DEST_CLG_NUM__SHIFT 0x6
+#define XPB_CLG_GFX_UNITID_MAPPING4__UNITID_LOW_MASK 0x0000001FL
+#define XPB_CLG_GFX_UNITID_MAPPING4__UNITID_VLD_MASK 0x00000020L
+#define XPB_CLG_GFX_UNITID_MAPPING4__DEST_CLG_NUM_MASK 0x000001C0L
+//XPB_CLG_GFX_UNITID_MAPPING5
+#define XPB_CLG_GFX_UNITID_MAPPING5__UNITID_LOW__SHIFT 0x0
+#define XPB_CLG_GFX_UNITID_MAPPING5__UNITID_VLD__SHIFT 0x5
+#define XPB_CLG_GFX_UNITID_MAPPING5__DEST_CLG_NUM__SHIFT 0x6
+#define XPB_CLG_GFX_UNITID_MAPPING5__UNITID_LOW_MASK 0x0000001FL
+#define XPB_CLG_GFX_UNITID_MAPPING5__UNITID_VLD_MASK 0x00000020L
+#define XPB_CLG_GFX_UNITID_MAPPING5__DEST_CLG_NUM_MASK 0x000001C0L
+//XPB_CLG_GFX_UNITID_MAPPING6
+#define XPB_CLG_GFX_UNITID_MAPPING6__UNITID_LOW__SHIFT 0x0
+#define XPB_CLG_GFX_UNITID_MAPPING6__UNITID_VLD__SHIFT 0x5
+#define XPB_CLG_GFX_UNITID_MAPPING6__DEST_CLG_NUM__SHIFT 0x6
+#define XPB_CLG_GFX_UNITID_MAPPING6__UNITID_LOW_MASK 0x0000001FL
+#define XPB_CLG_GFX_UNITID_MAPPING6__UNITID_VLD_MASK 0x00000020L
+#define XPB_CLG_GFX_UNITID_MAPPING6__DEST_CLG_NUM_MASK 0x000001C0L
+//XPB_CLG_GFX_UNITID_MAPPING7
+#define XPB_CLG_GFX_UNITID_MAPPING7__UNITID_LOW__SHIFT 0x0
+#define XPB_CLG_GFX_UNITID_MAPPING7__UNITID_VLD__SHIFT 0x5
+#define XPB_CLG_GFX_UNITID_MAPPING7__DEST_CLG_NUM__SHIFT 0x6
+#define XPB_CLG_GFX_UNITID_MAPPING7__UNITID_LOW_MASK 0x0000001FL
+#define XPB_CLG_GFX_UNITID_MAPPING7__UNITID_VLD_MASK 0x00000020L
+#define XPB_CLG_GFX_UNITID_MAPPING7__DEST_CLG_NUM_MASK 0x000001C0L
+//XPB_CLG_MM_UNITID_MAPPING0
+#define XPB_CLG_MM_UNITID_MAPPING0__UNITID_LOW__SHIFT 0x0
+#define XPB_CLG_MM_UNITID_MAPPING0__UNITID_VLD__SHIFT 0x5
+#define XPB_CLG_MM_UNITID_MAPPING0__DEST_CLG_NUM__SHIFT 0x6
+#define XPB_CLG_MM_UNITID_MAPPING0__UNITID_LOW_MASK 0x0000001FL
+#define XPB_CLG_MM_UNITID_MAPPING0__UNITID_VLD_MASK 0x00000020L
+#define XPB_CLG_MM_UNITID_MAPPING0__DEST_CLG_NUM_MASK 0x000001C0L
+//XPB_CLG_MM_UNITID_MAPPING1
+#define XPB_CLG_MM_UNITID_MAPPING1__UNITID_LOW__SHIFT 0x0
+#define XPB_CLG_MM_UNITID_MAPPING1__UNITID_VLD__SHIFT 0x5
+#define XPB_CLG_MM_UNITID_MAPPING1__DEST_CLG_NUM__SHIFT 0x6
+#define XPB_CLG_MM_UNITID_MAPPING1__UNITID_LOW_MASK 0x0000001FL
+#define XPB_CLG_MM_UNITID_MAPPING1__UNITID_VLD_MASK 0x00000020L
+#define XPB_CLG_MM_UNITID_MAPPING1__DEST_CLG_NUM_MASK 0x000001C0L
+//XPB_CLG_MM_UNITID_MAPPING2
+#define XPB_CLG_MM_UNITID_MAPPING2__UNITID_LOW__SHIFT 0x0
+#define XPB_CLG_MM_UNITID_MAPPING2__UNITID_VLD__SHIFT 0x5
+#define XPB_CLG_MM_UNITID_MAPPING2__DEST_CLG_NUM__SHIFT 0x6
+#define XPB_CLG_MM_UNITID_MAPPING2__UNITID_LOW_MASK 0x0000001FL
+#define XPB_CLG_MM_UNITID_MAPPING2__UNITID_VLD_MASK 0x00000020L
+#define XPB_CLG_MM_UNITID_MAPPING2__DEST_CLG_NUM_MASK 0x000001C0L
+//XPB_CLG_MM_UNITID_MAPPING3
+#define XPB_CLG_MM_UNITID_MAPPING3__UNITID_LOW__SHIFT 0x0
+#define XPB_CLG_MM_UNITID_MAPPING3__UNITID_VLD__SHIFT 0x5
+#define XPB_CLG_MM_UNITID_MAPPING3__DEST_CLG_NUM__SHIFT 0x6
+#define XPB_CLG_MM_UNITID_MAPPING3__UNITID_LOW_MASK 0x0000001FL
+#define XPB_CLG_MM_UNITID_MAPPING3__UNITID_VLD_MASK 0x00000020L
+#define XPB_CLG_MM_UNITID_MAPPING3__DEST_CLG_NUM_MASK 0x000001C0L
+
+
+// addressBlock: aid_athub_rpbdec
+//RPB_PASSPW_CONF
+#define RPB_PASSPW_CONF__XPB_PASSPW_OVERRIDE__SHIFT 0x0
+#define RPB_PASSPW_CONF__XPB_RSPPASSPW_OVERRIDE__SHIFT 0x1
+#define RPB_PASSPW_CONF__ATC_TR_PASSPW_OVERRIDE__SHIFT 0x2
+#define RPB_PASSPW_CONF__ATC_PAGE_PASSPW_OVERRIDE__SHIFT 0x3
+#define RPB_PASSPW_CONF__WR_PASSPW_OVERRIDE__SHIFT 0x4
+#define RPB_PASSPW_CONF__RD_PASSPW_OVERRIDE__SHIFT 0x5
+#define RPB_PASSPW_CONF__WR_RSPPASSPW_OVERRIDE__SHIFT 0x6
+#define RPB_PASSPW_CONF__RD_RSPPASSPW_OVERRIDE__SHIFT 0x7
+#define RPB_PASSPW_CONF__ATC_RSPPASSPW_OVERRIDE__SHIFT 0x8
+#define RPB_PASSPW_CONF__ATOMIC_PASSPW_OVERRIDE__SHIFT 0x9
+#define RPB_PASSPW_CONF__ATOMIC_RSPPASSPW_OVERRIDE__SHIFT 0xa
+#define RPB_PASSPW_CONF__ATC_TR_PASSPW_OVERRIDE_EN__SHIFT 0xb
+#define RPB_PASSPW_CONF__ATC_PAGE_PASSPW_OVERRIDE_EN__SHIFT 0xc
+#define RPB_PASSPW_CONF__ATC_RSPPASSPW_OVERRIDE_EN__SHIFT 0xd
+#define RPB_PASSPW_CONF__WRRSP_PASSPW_OVERRIDE__SHIFT 0xe
+#define RPB_PASSPW_CONF__WRRSP_PASSPW_OVERRIDE_EN__SHIFT 0xf
+#define RPB_PASSPW_CONF__RDRSP_PASSPW_OVERRIDE__SHIFT 0x10
+#define RPB_PASSPW_CONF__RDRSP_PASSPW_OVERRIDE_EN__SHIFT 0x11
+#define RPB_PASSPW_CONF__XPB_PASSPW_OVERRIDE_MASK 0x00000001L
+#define RPB_PASSPW_CONF__XPB_RSPPASSPW_OVERRIDE_MASK 0x00000002L
+#define RPB_PASSPW_CONF__ATC_TR_PASSPW_OVERRIDE_MASK 0x00000004L
+#define RPB_PASSPW_CONF__ATC_PAGE_PASSPW_OVERRIDE_MASK 0x00000008L
+#define RPB_PASSPW_CONF__WR_PASSPW_OVERRIDE_MASK 0x00000010L
+#define RPB_PASSPW_CONF__RD_PASSPW_OVERRIDE_MASK 0x00000020L
+#define RPB_PASSPW_CONF__WR_RSPPASSPW_OVERRIDE_MASK 0x00000040L
+#define RPB_PASSPW_CONF__RD_RSPPASSPW_OVERRIDE_MASK 0x00000080L
+#define RPB_PASSPW_CONF__ATC_RSPPASSPW_OVERRIDE_MASK 0x00000100L
+#define RPB_PASSPW_CONF__ATOMIC_PASSPW_OVERRIDE_MASK 0x00000200L
+#define RPB_PASSPW_CONF__ATOMIC_RSPPASSPW_OVERRIDE_MASK 0x00000400L
+#define RPB_PASSPW_CONF__ATC_TR_PASSPW_OVERRIDE_EN_MASK 0x00000800L
+#define RPB_PASSPW_CONF__ATC_PAGE_PASSPW_OVERRIDE_EN_MASK 0x00001000L
+#define RPB_PASSPW_CONF__ATC_RSPPASSPW_OVERRIDE_EN_MASK 0x00002000L
+#define RPB_PASSPW_CONF__WRRSP_PASSPW_OVERRIDE_MASK 0x00004000L
+#define RPB_PASSPW_CONF__WRRSP_PASSPW_OVERRIDE_EN_MASK 0x00008000L
+#define RPB_PASSPW_CONF__RDRSP_PASSPW_OVERRIDE_MASK 0x00010000L
+#define RPB_PASSPW_CONF__RDRSP_PASSPW_OVERRIDE_EN_MASK 0x00020000L
+//RPB_BLOCKLEVEL_CONF
+#define RPB_BLOCKLEVEL_CONF__XPB_BLOCKLEVEL_OVERRIDE__SHIFT 0x0
+#define RPB_BLOCKLEVEL_CONF__ATC_VC0_TR_BLOCKLEVEL__SHIFT 0x2
+#define RPB_BLOCKLEVEL_CONF__ATC_VC5_TR_BLOCKLEVEL__SHIFT 0x4
+#define RPB_BLOCKLEVEL_CONF__ATC_PAGE_BLOCKLEVEL__SHIFT 0x6
+#define RPB_BLOCKLEVEL_CONF__ATC_INV_BLOCKLEVEL__SHIFT 0x8
+#define RPB_BLOCKLEVEL_CONF__IO_WR_BLOCKLEVEL_OVERRIDE__SHIFT 0xa
+#define RPB_BLOCKLEVEL_CONF__IO_RD_BLOCKLEVEL_OVERRIDE__SHIFT 0xc
+#define RPB_BLOCKLEVEL_CONF__ATOMIC_BLOCKLEVEL_OVERRIDE__SHIFT 0xe
+#define RPB_BLOCKLEVEL_CONF__XPB_BLOCKLEVEL_OVERRIDE_EN__SHIFT 0x10
+#define RPB_BLOCKLEVEL_CONF__IO_WR_BLOCKLEVEL_OVERRIDE_EN__SHIFT 0x11
+#define RPB_BLOCKLEVEL_CONF__IO_RD_BLOCKLEVEL_OVERRIDE_EN__SHIFT 0x12
+#define RPB_BLOCKLEVEL_CONF__ATOMIC_BLOCKLEVEL_OVERRIDE_EN__SHIFT 0x13
+#define RPB_BLOCKLEVEL_CONF__XPB_BLOCKLEVEL_OVERRIDE_MASK 0x00000003L
+#define RPB_BLOCKLEVEL_CONF__ATC_VC0_TR_BLOCKLEVEL_MASK 0x0000000CL
+#define RPB_BLOCKLEVEL_CONF__ATC_VC5_TR_BLOCKLEVEL_MASK 0x00000030L
+#define RPB_BLOCKLEVEL_CONF__ATC_PAGE_BLOCKLEVEL_MASK 0x000000C0L
+#define RPB_BLOCKLEVEL_CONF__ATC_INV_BLOCKLEVEL_MASK 0x00000300L
+#define RPB_BLOCKLEVEL_CONF__IO_WR_BLOCKLEVEL_OVERRIDE_MASK 0x00000C00L
+#define RPB_BLOCKLEVEL_CONF__IO_RD_BLOCKLEVEL_OVERRIDE_MASK 0x00003000L
+#define RPB_BLOCKLEVEL_CONF__ATOMIC_BLOCKLEVEL_OVERRIDE_MASK 0x0000C000L
+#define RPB_BLOCKLEVEL_CONF__XPB_BLOCKLEVEL_OVERRIDE_EN_MASK 0x00010000L
+#define RPB_BLOCKLEVEL_CONF__IO_WR_BLOCKLEVEL_OVERRIDE_EN_MASK 0x00020000L
+#define RPB_BLOCKLEVEL_CONF__IO_RD_BLOCKLEVEL_OVERRIDE_EN_MASK 0x00040000L
+#define RPB_BLOCKLEVEL_CONF__ATOMIC_BLOCKLEVEL_OVERRIDE_EN_MASK 0x00080000L
+//RPB_TAG_CONF
+#define RPB_TAG_CONF__RPB_ATS_VC0_TR__SHIFT 0x0
+#define RPB_TAG_CONF__RPB_ATS_VC5_TR__SHIFT 0xa
+#define RPB_TAG_CONF__RPB_ATS_PR__SHIFT 0x14
+#define RPB_TAG_CONF__RPB_ATS_VC0_TR_MASK 0x000003FFL
+#define RPB_TAG_CONF__RPB_ATS_VC5_TR_MASK 0x000FFC00L
+#define RPB_TAG_CONF__RPB_ATS_PR_MASK 0x3FF00000L
+//RPB_TAG_CONF2
+#define RPB_TAG_CONF2__RPB_IO_WR__SHIFT 0x0
+#define RPB_TAG_CONF2__RPB_IO_MAX_LIMIT__SHIFT 0xa
+#define RPB_TAG_CONF2__RPB_IO_RD_MARGIN__SHIFT 0x15
+#define RPB_TAG_CONF2__RPB_IO_WR_MASK 0x000003FFL
+#define RPB_TAG_CONF2__RPB_IO_MAX_LIMIT_MASK 0x001FFC00L
+#define RPB_TAG_CONF2__RPB_IO_RD_MARGIN_MASK 0xFFE00000L
+//RPB_ARB_CNTL
+#define RPB_ARB_CNTL__RD_SWITCH_NUM__SHIFT 0x0
+#define RPB_ARB_CNTL__WR_SWITCH_NUM__SHIFT 0x8
+#define RPB_ARB_CNTL__ATC_TR_SWITCH_NUM__SHIFT 0x10
+#define RPB_ARB_CNTL__ARB_MODE__SHIFT 0x18
+#define RPB_ARB_CNTL__SWITCH_NUM_MODE__SHIFT 0x19
+#define RPB_ARB_CNTL__RD_SWITCH_NUM_MASK 0x000000FFL
+#define RPB_ARB_CNTL__WR_SWITCH_NUM_MASK 0x0000FF00L
+#define RPB_ARB_CNTL__ATC_TR_SWITCH_NUM_MASK 0x00FF0000L
+#define RPB_ARB_CNTL__ARB_MODE_MASK 0x01000000L
+#define RPB_ARB_CNTL__SWITCH_NUM_MODE_MASK 0x02000000L
+//RPB_ARB_CNTL2
+#define RPB_ARB_CNTL2__P2P_SWITCH_NUM__SHIFT 0x0
+#define RPB_ARB_CNTL2__ATOMIC_SWITCH_NUM__SHIFT 0x8
+#define RPB_ARB_CNTL2__ATC_PAGE_SWITCH_NUM__SHIFT 0x10
+#define RPB_ARB_CNTL2__P2P_SWITCH_NUM_MASK 0x000000FFL
+#define RPB_ARB_CNTL2__ATOMIC_SWITCH_NUM_MASK 0x0000FF00L
+#define RPB_ARB_CNTL2__ATC_PAGE_SWITCH_NUM_MASK 0x00FF0000L
+//RPB_BIF_CNTL
+#define RPB_BIF_CNTL__ARB_MODE__SHIFT 0x0
+#define RPB_BIF_CNTL__DRAIN_VC_NUM__SHIFT 0x1
+#define RPB_BIF_CNTL__SWITCH_ENABLE__SHIFT 0x3
+#define RPB_BIF_CNTL__SWITCH_THRESHOLD__SHIFT 0x4
+#define RPB_BIF_CNTL__PAGE_PRI_EN__SHIFT 0xc
+#define RPB_BIF_CNTL__VC0TR_PRI_EN__SHIFT 0xd
+#define RPB_BIF_CNTL__VC5TR_PRI_EN__SHIFT 0xe
+#define RPB_BIF_CNTL__VC0_CHAINED_OVERRIDE__SHIFT 0xf
+#define RPB_BIF_CNTL__ARB_MODE_MASK 0x00000001L
+#define RPB_BIF_CNTL__DRAIN_VC_NUM_MASK 0x00000006L
+#define RPB_BIF_CNTL__SWITCH_ENABLE_MASK 0x00000008L
+#define RPB_BIF_CNTL__SWITCH_THRESHOLD_MASK 0x00000FF0L
+#define RPB_BIF_CNTL__PAGE_PRI_EN_MASK 0x00001000L
+#define RPB_BIF_CNTL__VC0TR_PRI_EN_MASK 0x00002000L
+#define RPB_BIF_CNTL__VC5TR_PRI_EN_MASK 0x00004000L
+#define RPB_BIF_CNTL__VC0_CHAINED_OVERRIDE_MASK 0x00008000L
+//RPB_BIF_CNTL2
+#define RPB_BIF_CNTL2__VC0_SWITCH_NUM__SHIFT 0x0
+#define RPB_BIF_CNTL2__VC1_SWITCH_NUM__SHIFT 0x8
+#define RPB_BIF_CNTL2__VC5_SWITCH_NUM__SHIFT 0x10
+#define RPB_BIF_CNTL2__VC0_SWITCH_NUM_MASK 0x000000FFL
+#define RPB_BIF_CNTL2__VC1_SWITCH_NUM_MASK 0x0000FF00L
+#define RPB_BIF_CNTL2__VC5_SWITCH_NUM_MASK 0x00FF0000L
+//RPB_PERF_COUNTER_CNTL
+#define RPB_PERF_COUNTER_CNTL__PERF_COUNTER_SELECT__SHIFT 0x0
+#define RPB_PERF_COUNTER_CNTL__CLEAR_SELECTED_PERF_COUNTER__SHIFT 0x2
+#define RPB_PERF_COUNTER_CNTL__CLEAR_ALL_PERF_COUNTERS__SHIFT 0x3
+#define RPB_PERF_COUNTER_CNTL__STOP_ON_COUNTER_SATURATION__SHIFT 0x4
+#define RPB_PERF_COUNTER_CNTL__ENABLE_PERF_COUNTERS__SHIFT 0x5
+#define RPB_PERF_COUNTER_CNTL__PERF_COUNTER_ASSIGN_0__SHIFT 0x9
+#define RPB_PERF_COUNTER_CNTL__PERF_COUNTER_ASSIGN_1__SHIFT 0xe
+#define RPB_PERF_COUNTER_CNTL__PERF_COUNTER_ASSIGN_2__SHIFT 0x13
+#define RPB_PERF_COUNTER_CNTL__PERF_COUNTER_ASSIGN_3__SHIFT 0x18
+#define RPB_PERF_COUNTER_CNTL__PERF_COUNTER_SELECT_MASK 0x00000003L
+#define RPB_PERF_COUNTER_CNTL__CLEAR_SELECTED_PERF_COUNTER_MASK 0x00000004L
+#define RPB_PERF_COUNTER_CNTL__CLEAR_ALL_PERF_COUNTERS_MASK 0x00000008L
+#define RPB_PERF_COUNTER_CNTL__STOP_ON_COUNTER_SATURATION_MASK 0x00000010L
+#define RPB_PERF_COUNTER_CNTL__ENABLE_PERF_COUNTERS_MASK 0x000001E0L
+#define RPB_PERF_COUNTER_CNTL__PERF_COUNTER_ASSIGN_0_MASK 0x00003E00L
+#define RPB_PERF_COUNTER_CNTL__PERF_COUNTER_ASSIGN_1_MASK 0x0007C000L
+#define RPB_PERF_COUNTER_CNTL__PERF_COUNTER_ASSIGN_2_MASK 0x00F80000L
+#define RPB_PERF_COUNTER_CNTL__PERF_COUNTER_ASSIGN_3_MASK 0x1F000000L
+//RPB_DEINTRLV_COMBINE_CNTL
+#define RPB_DEINTRLV_COMBINE_CNTL__WC_CHAINED_FLUSH_TIMER__SHIFT 0x0
+#define RPB_DEINTRLV_COMBINE_CNTL__WC_CHAINED_BREAK_EN__SHIFT 0x4
+#define RPB_DEINTRLV_COMBINE_CNTL__WC_HANDLE_CHECK_DISABLE__SHIFT 0x5
+#define RPB_DEINTRLV_COMBINE_CNTL__WC_CLI_INTLV_EN__SHIFT 0x6
+#define RPB_DEINTRLV_COMBINE_CNTL__WC_CHAINED_FLUSH_TIMER_MASK 0x0000000FL
+#define RPB_DEINTRLV_COMBINE_CNTL__WC_CHAINED_BREAK_EN_MASK 0x00000010L
+#define RPB_DEINTRLV_COMBINE_CNTL__WC_HANDLE_CHECK_DISABLE_MASK 0x00000020L
+#define RPB_DEINTRLV_COMBINE_CNTL__WC_CLI_INTLV_EN_MASK 0x00000040L
+//RPB_VC_SWITCH_RDWR
+#define RPB_VC_SWITCH_RDWR__MODE__SHIFT 0x0
+#define RPB_VC_SWITCH_RDWR__NUM_RD__SHIFT 0x2
+#define RPB_VC_SWITCH_RDWR__NUM_WR__SHIFT 0xa
+#define RPB_VC_SWITCH_RDWR__XPB_RDREQ_CRD__SHIFT 0x12
+#define RPB_VC_SWITCH_RDWR__MODE_MASK 0x00000003L
+#define RPB_VC_SWITCH_RDWR__NUM_RD_MASK 0x000003FCL
+#define RPB_VC_SWITCH_RDWR__NUM_WR_MASK 0x0003FC00L
+#define RPB_VC_SWITCH_RDWR__XPB_RDREQ_CRD_MASK 0x03FC0000L
+//RPB_PERFCOUNTER_LO
+#define RPB_PERFCOUNTER_LO__COUNTER_LO__SHIFT 0x0
+#define RPB_PERFCOUNTER_LO__COUNTER_LO_MASK 0xFFFFFFFFL
+//RPB_PERFCOUNTER_HI
+#define RPB_PERFCOUNTER_HI__COUNTER_HI__SHIFT 0x0
+#define RPB_PERFCOUNTER_HI__COMPARE_VALUE__SHIFT 0x10
+#define RPB_PERFCOUNTER_HI__COUNTER_HI_MASK 0x0000FFFFL
+#define RPB_PERFCOUNTER_HI__COMPARE_VALUE_MASK 0xFFFF0000L
+//RPB_PERFCOUNTER0_CFG
+#define RPB_PERFCOUNTER0_CFG__PERF_SEL__SHIFT 0x0
+#define RPB_PERFCOUNTER0_CFG__PERF_SEL_END__SHIFT 0x8
+#define RPB_PERFCOUNTER0_CFG__PERF_MODE__SHIFT 0x18
+#define RPB_PERFCOUNTER0_CFG__ENABLE__SHIFT 0x1c
+#define RPB_PERFCOUNTER0_CFG__CLEAR__SHIFT 0x1d
+#define RPB_PERFCOUNTER0_CFG__PERF_SEL_MASK 0x000000FFL
+#define RPB_PERFCOUNTER0_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define RPB_PERFCOUNTER0_CFG__PERF_MODE_MASK 0x0F000000L
+#define RPB_PERFCOUNTER0_CFG__ENABLE_MASK 0x10000000L
+#define RPB_PERFCOUNTER0_CFG__CLEAR_MASK 0x20000000L
+//RPB_PERFCOUNTER1_CFG
+#define RPB_PERFCOUNTER1_CFG__PERF_SEL__SHIFT 0x0
+#define RPB_PERFCOUNTER1_CFG__PERF_SEL_END__SHIFT 0x8
+#define RPB_PERFCOUNTER1_CFG__PERF_MODE__SHIFT 0x18
+#define RPB_PERFCOUNTER1_CFG__ENABLE__SHIFT 0x1c
+#define RPB_PERFCOUNTER1_CFG__CLEAR__SHIFT 0x1d
+#define RPB_PERFCOUNTER1_CFG__PERF_SEL_MASK 0x000000FFL
+#define RPB_PERFCOUNTER1_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define RPB_PERFCOUNTER1_CFG__PERF_MODE_MASK 0x0F000000L
+#define RPB_PERFCOUNTER1_CFG__ENABLE_MASK 0x10000000L
+#define RPB_PERFCOUNTER1_CFG__CLEAR_MASK 0x20000000L
+//RPB_PERFCOUNTER2_CFG
+#define RPB_PERFCOUNTER2_CFG__PERF_SEL__SHIFT 0x0
+#define RPB_PERFCOUNTER2_CFG__PERF_SEL_END__SHIFT 0x8
+#define RPB_PERFCOUNTER2_CFG__PERF_MODE__SHIFT 0x18
+#define RPB_PERFCOUNTER2_CFG__ENABLE__SHIFT 0x1c
+#define RPB_PERFCOUNTER2_CFG__CLEAR__SHIFT 0x1d
+#define RPB_PERFCOUNTER2_CFG__PERF_SEL_MASK 0x000000FFL
+#define RPB_PERFCOUNTER2_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define RPB_PERFCOUNTER2_CFG__PERF_MODE_MASK 0x0F000000L
+#define RPB_PERFCOUNTER2_CFG__ENABLE_MASK 0x10000000L
+#define RPB_PERFCOUNTER2_CFG__CLEAR_MASK 0x20000000L
+//RPB_PERFCOUNTER3_CFG
+#define RPB_PERFCOUNTER3_CFG__PERF_SEL__SHIFT 0x0
+#define RPB_PERFCOUNTER3_CFG__PERF_SEL_END__SHIFT 0x8
+#define RPB_PERFCOUNTER3_CFG__PERF_MODE__SHIFT 0x18
+#define RPB_PERFCOUNTER3_CFG__ENABLE__SHIFT 0x1c
+#define RPB_PERFCOUNTER3_CFG__CLEAR__SHIFT 0x1d
+#define RPB_PERFCOUNTER3_CFG__PERF_SEL_MASK 0x000000FFL
+#define RPB_PERFCOUNTER3_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define RPB_PERFCOUNTER3_CFG__PERF_MODE_MASK 0x0F000000L
+#define RPB_PERFCOUNTER3_CFG__ENABLE_MASK 0x10000000L
+#define RPB_PERFCOUNTER3_CFG__CLEAR_MASK 0x20000000L
+//RPB_PERFCOUNTER_RSLT_CNTL
+#define RPB_PERFCOUNTER_RSLT_CNTL__PERF_COUNTER_SELECT__SHIFT 0x0
+#define RPB_PERFCOUNTER_RSLT_CNTL__START_TRIGGER__SHIFT 0x8
+#define RPB_PERFCOUNTER_RSLT_CNTL__STOP_TRIGGER__SHIFT 0x10
+#define RPB_PERFCOUNTER_RSLT_CNTL__ENABLE_ANY__SHIFT 0x18
+#define RPB_PERFCOUNTER_RSLT_CNTL__CLEAR_ALL__SHIFT 0x19
+#define RPB_PERFCOUNTER_RSLT_CNTL__STOP_ALL_ON_SATURATE__SHIFT 0x1a
+#define RPB_PERFCOUNTER_RSLT_CNTL__PERF_COUNTER_SELECT_MASK 0x0000000FL
+#define RPB_PERFCOUNTER_RSLT_CNTL__START_TRIGGER_MASK 0x0000FF00L
+#define RPB_PERFCOUNTER_RSLT_CNTL__STOP_TRIGGER_MASK 0x00FF0000L
+#define RPB_PERFCOUNTER_RSLT_CNTL__ENABLE_ANY_MASK 0x01000000L
+#define RPB_PERFCOUNTER_RSLT_CNTL__CLEAR_ALL_MASK 0x02000000L
+#define RPB_PERFCOUNTER_RSLT_CNTL__STOP_ALL_ON_SATURATE_MASK 0x04000000L
+//RPB_ATS_CNTL
+#define RPB_ATS_CNTL__PAGE_MIN_LATENCY_ENABLE__SHIFT 0x0
+#define RPB_ATS_CNTL__TR_MIN_LATENCY_ENABLE__SHIFT 0x1
+#define RPB_ATS_CNTL__SWITCH_THRESHOLD__SHIFT 0x2
+#define RPB_ATS_CNTL__TIME_SLICE__SHIFT 0x7
+#define RPB_ATS_CNTL__ATCTR_SWITCH_NUM__SHIFT 0xf
+#define RPB_ATS_CNTL__ATCPAGE_SWITCH_NUM__SHIFT 0x13
+#define RPB_ATS_CNTL__WR_AT__SHIFT 0x17
+#define RPB_ATS_CNTL__INVAL_COM_CMD__SHIFT 0x19
+#define RPB_ATS_CNTL__PAGE_MIN_LATENCY_ENABLE_MASK 0x00000001L
+#define RPB_ATS_CNTL__TR_MIN_LATENCY_ENABLE_MASK 0x00000002L
+#define RPB_ATS_CNTL__SWITCH_THRESHOLD_MASK 0x0000007CL
+#define RPB_ATS_CNTL__TIME_SLICE_MASK 0x00007F80L
+#define RPB_ATS_CNTL__ATCTR_SWITCH_NUM_MASK 0x00078000L
+#define RPB_ATS_CNTL__ATCPAGE_SWITCH_NUM_MASK 0x00780000L
+#define RPB_ATS_CNTL__WR_AT_MASK 0x01800000L
+#define RPB_ATS_CNTL__INVAL_COM_CMD_MASK 0x7E000000L
+//RPB_ATS_CNTL2
+#define RPB_ATS_CNTL2__TRANS_CMD__SHIFT 0x0
+#define RPB_ATS_CNTL2__PAGE_REQ_CMD__SHIFT 0x6
+#define RPB_ATS_CNTL2__PAGE_ROUTING_CODE__SHIFT 0xc
+#define RPB_ATS_CNTL2__INVAL_COM_ROUTING_CODE__SHIFT 0xf
+#define RPB_ATS_CNTL2__VENDOR_ID__SHIFT 0x12
+#define RPB_ATS_CNTL2__MM_TRANS_VC5_ENABLE__SHIFT 0x14
+#define RPB_ATS_CNTL2__GC_TRANS_VC5_ENABLE__SHIFT 0x15
+#define RPB_ATS_CNTL2__RPB_VC5_CRD__SHIFT 0x16
+#define RPB_ATS_CNTL2__TRANS_CMD_MASK 0x0000003FL
+#define RPB_ATS_CNTL2__PAGE_REQ_CMD_MASK 0x00000FC0L
+#define RPB_ATS_CNTL2__PAGE_ROUTING_CODE_MASK 0x00007000L
+#define RPB_ATS_CNTL2__INVAL_COM_ROUTING_CODE_MASK 0x00038000L
+#define RPB_ATS_CNTL2__VENDOR_ID_MASK 0x000C0000L
+#define RPB_ATS_CNTL2__MM_TRANS_VC5_ENABLE_MASK 0x00100000L
+#define RPB_ATS_CNTL2__GC_TRANS_VC5_ENABLE_MASK 0x00200000L
+#define RPB_ATS_CNTL2__RPB_VC5_CRD_MASK 0x07C00000L
+//RPB_SDPPORT_CNTL
+#define RPB_SDPPORT_CNTL__NBIF_DMA_SELF_ACTIVATE__SHIFT 0x0
+#define RPB_SDPPORT_CNTL__NBIF_DMA_CFG_MODE__SHIFT 0x1
+#define RPB_SDPPORT_CNTL__NBIF_DMA_ENABLE_REISSUE_CREDIT__SHIFT 0x3
+#define RPB_SDPPORT_CNTL__NBIF_DMA_ENABLE_SATURATE_COUNTER__SHIFT 0x4
+#define RPB_SDPPORT_CNTL__NBIF_DMA_ENABLE_DISRUPT_FULLDIS__SHIFT 0x5
+#define RPB_SDPPORT_CNTL__NBIF_DMA_HALT_THRESHOLD__SHIFT 0x6
+#define RPB_SDPPORT_CNTL__NBIF_HST_SELF_ACTIVATE__SHIFT 0xa
+#define RPB_SDPPORT_CNTL__NBIF_HST_CFG_MODE__SHIFT 0xb
+#define RPB_SDPPORT_CNTL__NBIF_HST_ENABLE_REISSUE_CREDIT__SHIFT 0xd
+#define RPB_SDPPORT_CNTL__NBIF_HST_ENABLE_SATURATE_COUNTER__SHIFT 0xe
+#define RPB_SDPPORT_CNTL__NBIF_HST_ENABLE_DISRUPT_FULLDIS__SHIFT 0xf
+#define RPB_SDPPORT_CNTL__NBIF_HST_HALT_THRESHOLD__SHIFT 0x10
+#define RPB_SDPPORT_CNTL__NBIF_HST_PASSIVE_MODE__SHIFT 0x14
+#define RPB_SDPPORT_CNTL__NBIF_HST_QUICK_COMACK__SHIFT 0x15
+#define RPB_SDPPORT_CNTL__DF_SDPVDCI_RDRSPCKEN__SHIFT 0x16
+#define RPB_SDPPORT_CNTL__DF_SDPVDCI_RDRSPCKENRCV__SHIFT 0x17
+#define RPB_SDPPORT_CNTL__DF_SDPVDCI_RDRSPDATACKEN__SHIFT 0x18
+#define RPB_SDPPORT_CNTL__DF_SDPVDCI_RDRSPDATACKENRCV__SHIFT 0x19
+#define RPB_SDPPORT_CNTL__DF_SDPVDCI_WRRSPCKEN__SHIFT 0x1a
+#define RPB_SDPPORT_CNTL__DF_SDPVDCI_WRRSPCKENRCV__SHIFT 0x1b
+#define RPB_SDPPORT_CNTL__DF_HALT_THRESHOLD__SHIFT 0x1c
+#define RPB_SDPPORT_CNTL__NBIF_DMA_SELF_ACTIVATE_MASK 0x00000001L
+#define RPB_SDPPORT_CNTL__NBIF_DMA_CFG_MODE_MASK 0x00000006L
+#define RPB_SDPPORT_CNTL__NBIF_DMA_ENABLE_REISSUE_CREDIT_MASK 0x00000008L
+#define RPB_SDPPORT_CNTL__NBIF_DMA_ENABLE_SATURATE_COUNTER_MASK 0x00000010L
+#define RPB_SDPPORT_CNTL__NBIF_DMA_ENABLE_DISRUPT_FULLDIS_MASK 0x00000020L
+#define RPB_SDPPORT_CNTL__NBIF_DMA_HALT_THRESHOLD_MASK 0x000003C0L
+#define RPB_SDPPORT_CNTL__NBIF_HST_SELF_ACTIVATE_MASK 0x00000400L
+#define RPB_SDPPORT_CNTL__NBIF_HST_CFG_MODE_MASK 0x00001800L
+#define RPB_SDPPORT_CNTL__NBIF_HST_ENABLE_REISSUE_CREDIT_MASK 0x00002000L
+#define RPB_SDPPORT_CNTL__NBIF_HST_ENABLE_SATURATE_COUNTER_MASK 0x00004000L
+#define RPB_SDPPORT_CNTL__NBIF_HST_ENABLE_DISRUPT_FULLDIS_MASK 0x00008000L
+#define RPB_SDPPORT_CNTL__NBIF_HST_HALT_THRESHOLD_MASK 0x000F0000L
+#define RPB_SDPPORT_CNTL__NBIF_HST_PASSIVE_MODE_MASK 0x00100000L
+#define RPB_SDPPORT_CNTL__NBIF_HST_QUICK_COMACK_MASK 0x00200000L
+#define RPB_SDPPORT_CNTL__DF_SDPVDCI_RDRSPCKEN_MASK 0x00400000L
+#define RPB_SDPPORT_CNTL__DF_SDPVDCI_RDRSPCKENRCV_MASK 0x00800000L
+#define RPB_SDPPORT_CNTL__DF_SDPVDCI_RDRSPDATACKEN_MASK 0x01000000L
+#define RPB_SDPPORT_CNTL__DF_SDPVDCI_RDRSPDATACKENRCV_MASK 0x02000000L
+#define RPB_SDPPORT_CNTL__DF_SDPVDCI_WRRSPCKEN_MASK 0x04000000L
+#define RPB_SDPPORT_CNTL__DF_SDPVDCI_WRRSPCKENRCV_MASK 0x08000000L
+#define RPB_SDPPORT_CNTL__DF_HALT_THRESHOLD_MASK 0xF0000000L
+
+#endif
diff --git a/drivers/gpu/drm/amd/include/asic_reg/dcn/dcn_3_0_0_offset.h b/drivers/gpu/drm/amd/include/asic_reg/dcn/dcn_3_0_0_offset.h
index 483769fb1736..537aee0536d3 100644
--- a/drivers/gpu/drm/amd/include/asic_reg/dcn/dcn_3_0_0_offset.h
+++ b/drivers/gpu/drm/amd/include/asic_reg/dcn/dcn_3_0_0_offset.h
@@ -1,3 +1,4 @@
+// SPDX-License-Identifier: MIT
#ifndef _dcn_3_0_0_OFFSET_HEADER
#define _dcn_3_0_0_OFFSET_HEADER
diff --git a/drivers/gpu/drm/amd/include/asic_reg/dcn/dcn_3_0_0_sh_mask.h b/drivers/gpu/drm/amd/include/asic_reg/dcn/dcn_3_0_0_sh_mask.h
index b79be3a25a80..f9d90b098519 100644
--- a/drivers/gpu/drm/amd/include/asic_reg/dcn/dcn_3_0_0_sh_mask.h
+++ b/drivers/gpu/drm/amd/include/asic_reg/dcn/dcn_3_0_0_sh_mask.h
@@ -1,3 +1,4 @@
+// SPDX-License-Identifier: MIT
#ifndef _dcn_3_0_0_SH_MASK_HEADER
#define _dcn_3_0_0_SH_MASK_HEADER
diff --git a/drivers/gpu/drm/amd/include/asic_reg/df/df_4_3_offset.h b/drivers/gpu/drm/amd/include/asic_reg/df/df_4_3_offset.h
new file mode 100644
index 000000000000..fbb18e44ec52
--- /dev/null
+++ b/drivers/gpu/drm/amd/include/asic_reg/df/df_4_3_offset.h
@@ -0,0 +1,30 @@
+/*
+ * Copyright (C) 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included
+ * in all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
+ * OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN
+ * AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
+ * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
+ */
+
+#ifndef _df_4_3_OFFSET_HEADER
+#define _df_4_3_OFFSET_HEADER
+
+#define regDF_CS_UMC_AON0_HardwareAssertMaskLow 0x0e3e
+#define regDF_CS_UMC_AON0_HardwareAssertMaskLow_BASE_IDX 4
+#define regDF_NCS_PG0_HardwareAssertMaskHigh 0x0e3f
+#define regDF_NCS_PG0_HardwareAssertMaskHigh_BASE_IDX 4
+
+#endif
diff --git a/drivers/gpu/drm/amd/include/asic_reg/df/df_4_3_sh_mask.h b/drivers/gpu/drm/amd/include/asic_reg/df/df_4_3_sh_mask.h
new file mode 100644
index 000000000000..9c8f19ded4eb
--- /dev/null
+++ b/drivers/gpu/drm/amd/include/asic_reg/df/df_4_3_sh_mask.h
@@ -0,0 +1,157 @@
+/*
+ * Copyright (C) 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included
+ * in all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
+ * OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN
+ * AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
+ * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
+ */
+
+#ifndef _df_4_3_SH_MASK_HEADER
+#define _df_4_3_SH_MASK_HEADER
+
+//DF_CS_UMC_AON0_HardwareAssertMaskLow
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk0__SHIFT 0x0
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk1__SHIFT 0x1
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk2__SHIFT 0x2
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk3__SHIFT 0x3
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk4__SHIFT 0x4
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk5__SHIFT 0x5
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk6__SHIFT 0x6
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk7__SHIFT 0x7
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk8__SHIFT 0x8
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk9__SHIFT 0x9
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk10__SHIFT 0xa
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk11__SHIFT 0xb
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk12__SHIFT 0xc
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk13__SHIFT 0xd
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk14__SHIFT 0xe
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk15__SHIFT 0xf
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk16__SHIFT 0x10
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk17__SHIFT 0x11
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk18__SHIFT 0x12
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk19__SHIFT 0x13
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk20__SHIFT 0x14
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk21__SHIFT 0x15
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk22__SHIFT 0x16
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk23__SHIFT 0x17
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk24__SHIFT 0x18
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk25__SHIFT 0x19
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk26__SHIFT 0x1a
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk27__SHIFT 0x1b
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk28__SHIFT 0x1c
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk29__SHIFT 0x1d
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk30__SHIFT 0x1e
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk31__SHIFT 0x1f
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk0_MASK 0x00000001L
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk1_MASK 0x00000002L
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk2_MASK 0x00000004L
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk3_MASK 0x00000008L
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk4_MASK 0x00000010L
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk5_MASK 0x00000020L
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk6_MASK 0x00000040L
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk7_MASK 0x00000080L
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk8_MASK 0x00000100L
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk9_MASK 0x00000200L
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk10_MASK 0x00000400L
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk11_MASK 0x00000800L
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk12_MASK 0x00001000L
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk13_MASK 0x00002000L
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk14_MASK 0x00004000L
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk15_MASK 0x00008000L
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk16_MASK 0x00010000L
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk17_MASK 0x00020000L
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk18_MASK 0x00040000L
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk19_MASK 0x00080000L
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk20_MASK 0x00100000L
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk21_MASK 0x00200000L
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk22_MASK 0x00400000L
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk23_MASK 0x00800000L
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk24_MASK 0x01000000L
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk25_MASK 0x02000000L
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk26_MASK 0x04000000L
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk27_MASK 0x08000000L
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk28_MASK 0x10000000L
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk29_MASK 0x20000000L
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk30_MASK 0x40000000L
+#define DF_CS_UMC_AON0_HardwareAssertMaskLow__HWAssertMsk31_MASK 0x80000000L
+
+//DF_NCS_PG0_HardwareAssertMaskHigh
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk0__SHIFT 0x0
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk1__SHIFT 0x1
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk2__SHIFT 0x2
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk3__SHIFT 0x3
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk4__SHIFT 0x4
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk5__SHIFT 0x5
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk6__SHIFT 0x6
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk7__SHIFT 0x7
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk8__SHIFT 0x8
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk9__SHIFT 0x9
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk10__SHIFT 0xa
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk11__SHIFT 0xb
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk12__SHIFT 0xc
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk13__SHIFT 0xd
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk14__SHIFT 0xe
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk15__SHIFT 0xf
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk16__SHIFT 0x10
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk17__SHIFT 0x11
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk18__SHIFT 0x12
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk19__SHIFT 0x13
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk20__SHIFT 0x14
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk21__SHIFT 0x15
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk22__SHIFT 0x16
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk23__SHIFT 0x17
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk24__SHIFT 0x18
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk25__SHIFT 0x19
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk26__SHIFT 0x1a
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk27__SHIFT 0x1b
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk28__SHIFT 0x1c
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk29__SHIFT 0x1d
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk30__SHIFT 0x1e
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk31__SHIFT 0x1f
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk0_MASK 0x00000001L
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk1_MASK 0x00000002L
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk2_MASK 0x00000004L
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk3_MASK 0x00000008L
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk4_MASK 0x00000010L
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk5_MASK 0x00000020L
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk6_MASK 0x00000040L
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk7_MASK 0x00000080L
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk8_MASK 0x00000100L
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk9_MASK 0x00000200L
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk10_MASK 0x00000400L
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk11_MASK 0x00000800L
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk12_MASK 0x00001000L
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk13_MASK 0x00002000L
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk14_MASK 0x00004000L
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk15_MASK 0x00008000L
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk16_MASK 0x00010000L
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk17_MASK 0x00020000L
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk18_MASK 0x00040000L
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk19_MASK 0x00080000L
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk20_MASK 0x00100000L
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk21_MASK 0x00200000L
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk22_MASK 0x00400000L
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk23_MASK 0x00800000L
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk24_MASK 0x01000000L
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk25_MASK 0x02000000L
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk26_MASK 0x04000000L
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk27_MASK 0x08000000L
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk28_MASK 0x10000000L
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk29_MASK 0x20000000L
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk30_MASK 0x40000000L
+#define DF_NCS_PG0_HardwareAssertMaskHigh__HWAssertMsk31_MASK 0x80000000L
+
+#endif
diff --git a/drivers/gpu/drm/amd/include/asic_reg/gc/gc_10_1_0_offset.h b/drivers/gpu/drm/amd/include/asic_reg/gc/gc_10_1_0_offset.h
index 18d34bbceebe..79c41004c0b6 100644
--- a/drivers/gpu/drm/amd/include/asic_reg/gc/gc_10_1_0_offset.h
+++ b/drivers/gpu/drm/amd/include/asic_reg/gc/gc_10_1_0_offset.h
@@ -4868,6 +4868,10 @@
#define mmCP_ME2_PIPE2_INT_STATUS_BASE_IDX 0
#define mmCP_ME2_PIPE3_INT_STATUS 0x1e34
#define mmCP_ME2_PIPE3_INT_STATUS_BASE_IDX 0
+#define mmCP_ME1_INT_STAT_DEBUG 0x1e35
+#define mmCP_ME1_INT_STAT_DEBUG_BASE_IDX 0
+#define mmCP_ME2_INT_STAT_DEBUG 0x1e36
+#define mmCP_ME2_INT_STAT_DEBUG_BASE_IDX 0
#define mmCP_GFX_QUEUE_INDEX 0x1e37
#define mmCP_GFX_QUEUE_INDEX_BASE_IDX 0
#define mmCC_GC_EDC_CONFIG 0x1e38
diff --git a/drivers/gpu/drm/amd/include/asic_reg/gc/gc_10_1_0_sh_mask.h b/drivers/gpu/drm/amd/include/asic_reg/gc/gc_10_1_0_sh_mask.h
index 4127896ffcdf..52043e143067 100644
--- a/drivers/gpu/drm/amd/include/asic_reg/gc/gc_10_1_0_sh_mask.h
+++ b/drivers/gpu/drm/amd/include/asic_reg/gc/gc_10_1_0_sh_mask.h
@@ -18680,6 +18680,60 @@
//CC_GC_EDC_CONFIG
#define CC_GC_EDC_CONFIG__DIS_EDC__SHIFT 0x1
#define CC_GC_EDC_CONFIG__DIS_EDC_MASK 0x00000002L
+//CP_ME1_INT_STAT_DEBUG
+#define CP_ME1_INT_STAT_DEBUG__CMP_QUERY_STATUS_INT_ASSERTED__SHIFT 0xc
+#define CP_ME1_INT_STAT_DEBUG__DEQUEUE_REQUEST_INT_ASSERTED__SHIFT 0xd
+#define CP_ME1_INT_STAT_DEBUG__CP_ECC_ERROR_INT_ASSERTED__SHIFT 0xe
+#define CP_ME1_INT_STAT_DEBUG__SUA_VIOLATION_INT_STATUS__SHIFT 0xf
+#define CP_ME1_INT_STAT_DEBUG__GPF_INT_ASSERTED__SHIFT 0x10
+#define CP_ME1_INT_STAT_DEBUG__WRM_POLL_TIMEOUT_INT_ASSERTED__SHIFT 0x11
+#define CP_ME1_INT_STAT_DEBUG__PRIV_REG_INT_ASSERTED__SHIFT 0x17
+#define CP_ME1_INT_STAT_DEBUG__OPCODE_ERROR_INT_ASSERTED__SHIFT 0x18
+#define CP_ME1_INT_STAT_DEBUG__TIME_STAMP_INT_ASSERTED__SHIFT 0x1a
+#define CP_ME1_INT_STAT_DEBUG__RESERVED_BIT_ERROR_INT_ASSERTED__SHIFT 0x1b
+#define CP_ME1_INT_STAT_DEBUG__GENERIC2_INT_ASSERTED__SHIFT 0x1d
+#define CP_ME1_INT_STAT_DEBUG__GENERIC1_INT_ASSERTED__SHIFT 0x1e
+#define CP_ME1_INT_STAT_DEBUG__GENERIC0_INT_ASSERTED__SHIFT 0x1f
+#define CP_ME1_INT_STAT_DEBUG__CMP_QUERY_STATUS_INT_ASSERTED_MASK 0x00001000L
+#define CP_ME1_INT_STAT_DEBUG__DEQUEUE_REQUEST_INT_ASSERTED_MASK 0x00002000L
+#define CP_ME1_INT_STAT_DEBUG__CP_ECC_ERROR_INT_ASSERTED_MASK 0x00004000L
+#define CP_ME1_INT_STAT_DEBUG__SUA_VIOLATION_INT_STATUS_MASK 0x00008000L
+#define CP_ME1_INT_STAT_DEBUG__GPF_INT_ASSERTED_MASK 0x00010000L
+#define CP_ME1_INT_STAT_DEBUG__WRM_POLL_TIMEOUT_INT_ASSERTED_MASK 0x00020000L
+#define CP_ME1_INT_STAT_DEBUG__PRIV_REG_INT_ASSERTED_MASK 0x00800000L
+#define CP_ME1_INT_STAT_DEBUG__OPCODE_ERROR_INT_ASSERTED_MASK 0x01000000L
+#define CP_ME1_INT_STAT_DEBUG__TIME_STAMP_INT_ASSERTED_MASK 0x04000000L
+#define CP_ME1_INT_STAT_DEBUG__RESERVED_BIT_ERROR_INT_ASSERTED_MASK 0x08000000L
+#define CP_ME1_INT_STAT_DEBUG__GENERIC2_INT_ASSERTED_MASK 0x20000000L
+#define CP_ME1_INT_STAT_DEBUG__GENERIC1_INT_ASSERTED_MASK 0x40000000L
+#define CP_ME1_INT_STAT_DEBUG__GENERIC0_INT_ASSERTED_MASK 0x80000000L
+//CP_ME2_INT_STAT_DEBUG
+#define CP_ME2_INT_STAT_DEBUG__CMP_QUERY_STATUS_INT_ASSERTED__SHIFT 0xc
+#define CP_ME2_INT_STAT_DEBUG__DEQUEUE_REQUEST_INT_ASSERTED__SHIFT 0xd
+#define CP_ME2_INT_STAT_DEBUG__CP_ECC_ERROR_INT_ASSERTED__SHIFT 0xe
+#define CP_ME2_INT_STAT_DEBUG__SUA_VIOLATION_INT_STATUS__SHIFT 0xf
+#define CP_ME2_INT_STAT_DEBUG__GPF_INT_ASSERTED__SHIFT 0x10
+#define CP_ME2_INT_STAT_DEBUG__WRM_POLL_TIMEOUT_INT_ASSERTED__SHIFT 0x11
+#define CP_ME2_INT_STAT_DEBUG__PRIV_REG_INT_ASSERTED__SHIFT 0x17
+#define CP_ME2_INT_STAT_DEBUG__OPCODE_ERROR_INT_ASSERTED__SHIFT 0x18
+#define CP_ME2_INT_STAT_DEBUG__TIME_STAMP_INT_ASSERTED__SHIFT 0x1a
+#define CP_ME2_INT_STAT_DEBUG__RESERVED_BIT_ERROR_INT_ASSERTED__SHIFT 0x1b
+#define CP_ME2_INT_STAT_DEBUG__GENERIC2_INT_ASSERTED__SHIFT 0x1d
+#define CP_ME2_INT_STAT_DEBUG__GENERIC1_INT_ASSERTED__SHIFT 0x1e
+#define CP_ME2_INT_STAT_DEBUG__GENERIC0_INT_ASSERTED__SHIFT 0x1f
+#define CP_ME2_INT_STAT_DEBUG__CMP_QUERY_STATUS_INT_ASSERTED_MASK 0x00001000L
+#define CP_ME2_INT_STAT_DEBUG__DEQUEUE_REQUEST_INT_ASSERTED_MASK 0x00002000L
+#define CP_ME2_INT_STAT_DEBUG__CP_ECC_ERROR_INT_ASSERTED_MASK 0x00004000L
+#define CP_ME2_INT_STAT_DEBUG__SUA_VIOLATION_INT_STATUS_MASK 0x00008000L
+#define CP_ME2_INT_STAT_DEBUG__GPF_INT_ASSERTED_MASK 0x00010000L
+#define CP_ME2_INT_STAT_DEBUG__WRM_POLL_TIMEOUT_INT_ASSERTED_MASK 0x00020000L
+#define CP_ME2_INT_STAT_DEBUG__PRIV_REG_INT_ASSERTED_MASK 0x00800000L
+#define CP_ME2_INT_STAT_DEBUG__OPCODE_ERROR_INT_ASSERTED_MASK 0x01000000L
+#define CP_ME2_INT_STAT_DEBUG__TIME_STAMP_INT_ASSERTED_MASK 0x04000000L
+#define CP_ME2_INT_STAT_DEBUG__RESERVED_BIT_ERROR_INT_ASSERTED_MASK 0x08000000L
+#define CP_ME2_INT_STAT_DEBUG__GENERIC2_INT_ASSERTED_MASK 0x20000000L
+#define CP_ME2_INT_STAT_DEBUG__GENERIC1_INT_ASSERTED_MASK 0x40000000L
+#define CP_ME2_INT_STAT_DEBUG__GENERIC0_INT_ASSERTED_MASK 0x80000000L
//CP_ME1_PIPE_PRIORITY_CNTS
#define CP_ME1_PIPE_PRIORITY_CNTS__PRIORITY1_CNT__SHIFT 0x0
#define CP_ME1_PIPE_PRIORITY_CNTS__PRIORITY2A_CNT__SHIFT 0x8
diff --git a/drivers/gpu/drm/amd/include/asic_reg/gc/gc_10_3_0_offset.h b/drivers/gpu/drm/amd/include/asic_reg/gc/gc_10_3_0_offset.h
index 3973110f149c..a734abaa91a5 100644
--- a/drivers/gpu/drm/amd/include/asic_reg/gc/gc_10_3_0_offset.h
+++ b/drivers/gpu/drm/amd/include/asic_reg/gc/gc_10_3_0_offset.h
@@ -4531,6 +4531,10 @@
#define mmCP_GFX_QUEUE_INDEX_BASE_IDX 0
#define mmCC_GC_EDC_CONFIG 0x1e38
#define mmCC_GC_EDC_CONFIG_BASE_IDX 0
+#define mmCP_ME1_INT_STAT_DEBUG 0x1e35
+#define mmCP_ME1_INT_STAT_DEBUG_BASE_IDX 0
+#define mmCP_ME2_INT_STAT_DEBUG 0x1e36
+#define mmCP_ME2_INT_STAT_DEBUG_BASE_IDX 0
#define mmCP_ME1_PIPE_PRIORITY_CNTS 0x1e39
#define mmCP_ME1_PIPE_PRIORITY_CNTS_BASE_IDX 0
#define mmCP_ME1_PIPE0_PRIORITY 0x1e3a
diff --git a/drivers/gpu/drm/amd/include/asic_reg/gc/gc_10_3_0_sh_mask.h b/drivers/gpu/drm/amd/include/asic_reg/gc/gc_10_3_0_sh_mask.h
index d4e8ff22ecb8..d7a17bae2584 100644
--- a/drivers/gpu/drm/amd/include/asic_reg/gc/gc_10_3_0_sh_mask.h
+++ b/drivers/gpu/drm/amd/include/asic_reg/gc/gc_10_3_0_sh_mask.h
@@ -17028,6 +17028,60 @@
//CC_GC_EDC_CONFIG
#define CC_GC_EDC_CONFIG__DIS_EDC__SHIFT 0x1
#define CC_GC_EDC_CONFIG__DIS_EDC_MASK 0x00000002L
+//CP_ME1_INT_STAT_DEBUG
+#define CP_ME1_INT_STAT_DEBUG__CMP_QUERY_STATUS_INT_ASSERTED__SHIFT 0xc
+#define CP_ME1_INT_STAT_DEBUG__DEQUEUE_REQUEST_INT_ASSERTED__SHIFT 0xd
+#define CP_ME1_INT_STAT_DEBUG__CP_ECC_ERROR_INT_ASSERTED__SHIFT 0xe
+#define CP_ME1_INT_STAT_DEBUG__SUA_VIOLATION_INT_STATUS__SHIFT 0xf
+#define CP_ME1_INT_STAT_DEBUG__GPF_INT_ASSERTED__SHIFT 0x10
+#define CP_ME1_INT_STAT_DEBUG__WRM_POLL_TIMEOUT_INT_ASSERTED__SHIFT 0x11
+#define CP_ME1_INT_STAT_DEBUG__PRIV_REG_INT_ASSERTED__SHIFT 0x17
+#define CP_ME1_INT_STAT_DEBUG__OPCODE_ERROR_INT_ASSERTED__SHIFT 0x18
+#define CP_ME1_INT_STAT_DEBUG__TIME_STAMP_INT_ASSERTED__SHIFT 0x1a
+#define CP_ME1_INT_STAT_DEBUG__RESERVED_BIT_ERROR_INT_ASSERTED__SHIFT 0x1b
+#define CP_ME1_INT_STAT_DEBUG__GENERIC2_INT_ASSERTED__SHIFT 0x1d
+#define CP_ME1_INT_STAT_DEBUG__GENERIC1_INT_ASSERTED__SHIFT 0x1e
+#define CP_ME1_INT_STAT_DEBUG__GENERIC0_INT_ASSERTED__SHIFT 0x1f
+#define CP_ME1_INT_STAT_DEBUG__CMP_QUERY_STATUS_INT_ASSERTED_MASK 0x00001000L
+#define CP_ME1_INT_STAT_DEBUG__DEQUEUE_REQUEST_INT_ASSERTED_MASK 0x00002000L
+#define CP_ME1_INT_STAT_DEBUG__CP_ECC_ERROR_INT_ASSERTED_MASK 0x00004000L
+#define CP_ME1_INT_STAT_DEBUG__SUA_VIOLATION_INT_STATUS_MASK 0x00008000L
+#define CP_ME1_INT_STAT_DEBUG__GPF_INT_ASSERTED_MASK 0x00010000L
+#define CP_ME1_INT_STAT_DEBUG__WRM_POLL_TIMEOUT_INT_ASSERTED_MASK 0x00020000L
+#define CP_ME1_INT_STAT_DEBUG__PRIV_REG_INT_ASSERTED_MASK 0x00800000L
+#define CP_ME1_INT_STAT_DEBUG__OPCODE_ERROR_INT_ASSERTED_MASK 0x01000000L
+#define CP_ME1_INT_STAT_DEBUG__TIME_STAMP_INT_ASSERTED_MASK 0x04000000L
+#define CP_ME1_INT_STAT_DEBUG__RESERVED_BIT_ERROR_INT_ASSERTED_MASK 0x08000000L
+#define CP_ME1_INT_STAT_DEBUG__GENERIC2_INT_ASSERTED_MASK 0x20000000L
+#define CP_ME1_INT_STAT_DEBUG__GENERIC1_INT_ASSERTED_MASK 0x40000000L
+#define CP_ME1_INT_STAT_DEBUG__GENERIC0_INT_ASSERTED_MASK 0x80000000L
+//CP_ME2_INT_STAT_DEBUG
+#define CP_ME2_INT_STAT_DEBUG__CMP_QUERY_STATUS_INT_ASSERTED__SHIFT 0xc
+#define CP_ME2_INT_STAT_DEBUG__DEQUEUE_REQUEST_INT_ASSERTED__SHIFT 0xd
+#define CP_ME2_INT_STAT_DEBUG__CP_ECC_ERROR_INT_ASSERTED__SHIFT 0xe
+#define CP_ME2_INT_STAT_DEBUG__SUA_VIOLATION_INT_STATUS__SHIFT 0xf
+#define CP_ME2_INT_STAT_DEBUG__GPF_INT_ASSERTED__SHIFT 0x10
+#define CP_ME2_INT_STAT_DEBUG__WRM_POLL_TIMEOUT_INT_ASSERTED__SHIFT 0x11
+#define CP_ME2_INT_STAT_DEBUG__PRIV_REG_INT_ASSERTED__SHIFT 0x17
+#define CP_ME2_INT_STAT_DEBUG__OPCODE_ERROR_INT_ASSERTED__SHIFT 0x18
+#define CP_ME2_INT_STAT_DEBUG__TIME_STAMP_INT_ASSERTED__SHIFT 0x1a
+#define CP_ME2_INT_STAT_DEBUG__RESERVED_BIT_ERROR_INT_ASSERTED__SHIFT 0x1b
+#define CP_ME2_INT_STAT_DEBUG__GENERIC2_INT_ASSERTED__SHIFT 0x1d
+#define CP_ME2_INT_STAT_DEBUG__GENERIC1_INT_ASSERTED__SHIFT 0x1e
+#define CP_ME2_INT_STAT_DEBUG__GENERIC0_INT_ASSERTED__SHIFT 0x1f
+#define CP_ME2_INT_STAT_DEBUG__CMP_QUERY_STATUS_INT_ASSERTED_MASK 0x00001000L
+#define CP_ME2_INT_STAT_DEBUG__DEQUEUE_REQUEST_INT_ASSERTED_MASK 0x00002000L
+#define CP_ME2_INT_STAT_DEBUG__CP_ECC_ERROR_INT_ASSERTED_MASK 0x00004000L
+#define CP_ME2_INT_STAT_DEBUG__SUA_VIOLATION_INT_STATUS_MASK 0x00008000L
+#define CP_ME2_INT_STAT_DEBUG__GPF_INT_ASSERTED_MASK 0x00010000L
+#define CP_ME2_INT_STAT_DEBUG__WRM_POLL_TIMEOUT_INT_ASSERTED_MASK 0x00020000L
+#define CP_ME2_INT_STAT_DEBUG__PRIV_REG_INT_ASSERTED_MASK 0x00800000L
+#define CP_ME2_INT_STAT_DEBUG__OPCODE_ERROR_INT_ASSERTED_MASK 0x01000000L
+#define CP_ME2_INT_STAT_DEBUG__TIME_STAMP_INT_ASSERTED_MASK 0x04000000L
+#define CP_ME2_INT_STAT_DEBUG__RESERVED_BIT_ERROR_INT_ASSERTED_MASK 0x08000000L
+#define CP_ME2_INT_STAT_DEBUG__GENERIC2_INT_ASSERTED_MASK 0x20000000L
+#define CP_ME2_INT_STAT_DEBUG__GENERIC1_INT_ASSERTED_MASK 0x40000000L
+#define CP_ME2_INT_STAT_DEBUG__GENERIC0_INT_ASSERTED_MASK 0x80000000L
//CP_ME1_PIPE_PRIORITY_CNTS
#define CP_ME1_PIPE_PRIORITY_CNTS__PRIORITY1_CNT__SHIFT 0x0
#define CP_ME1_PIPE_PRIORITY_CNTS__PRIORITY2A_CNT__SHIFT 0x8
diff --git a/drivers/gpu/drm/amd/include/asic_reg/gc/gc_11_0_3_offset.h b/drivers/gpu/drm/amd/include/asic_reg/gc/gc_11_0_3_offset.h
index 3b95a59b196c..56e00252bff8 100644
--- a/drivers/gpu/drm/amd/include/asic_reg/gc/gc_11_0_3_offset.h
+++ b/drivers/gpu/drm/amd/include/asic_reg/gc/gc_11_0_3_offset.h
@@ -3593,6 +3593,14 @@
#define regGCL2TLB_PERFCOUNTER_RSLT_CNTL_BASE_IDX 1
+// addressBlock: gc_rlcsdec
+// base address: 0x3b980
+#define regRLC_RLCS_FED_STATUS_0 0x4eff
+#define regRLC_RLCS_FED_STATUS_0_BASE_IDX 1
+#define regRLC_RLCS_FED_STATUS_1 0x4f00
+#define regRLC_RLCS_FED_STATUS_1_BASE_IDX 1
+
+
// addressBlock: gc_gcvml2pspdec
// base address: 0x3f900
#define regGCUTCL2_TRANSLATION_BYPASS_BY_VMID 0x5e41
diff --git a/drivers/gpu/drm/amd/include/asic_reg/gc/gc_11_0_3_sh_mask.h b/drivers/gpu/drm/amd/include/asic_reg/gc/gc_11_0_3_sh_mask.h
index ae3ef8a9e702..658e88a8e2ac 100644
--- a/drivers/gpu/drm/amd/include/asic_reg/gc/gc_11_0_3_sh_mask.h
+++ b/drivers/gpu/drm/amd/include/asic_reg/gc/gc_11_0_3_sh_mask.h
@@ -37642,6 +37642,56 @@
#define RLC_RLCG_DOORBELL_RANGE__LOWER_ADDR_MASK 0x00000FFCL
#define RLC_RLCG_DOORBELL_RANGE__UPPER_ADDR_RESERVED_MASK 0x00030000L
#define RLC_RLCG_DOORBELL_RANGE__UPPER_ADDR_MASK 0x0FFC0000L
+//RLC_RLCS_FED_STATUS_0
+#define RLC_RLCS_FED_STATUS_0__RLC_FED_ERR__SHIFT 0x0
+#define RLC_RLCS_FED_STATUS_0__UTCL2_FED_ERR__SHIFT 0x1
+#define RLC_RLCS_FED_STATUS_0__GE_FED_ERR__SHIFT 0x2
+#define RLC_RLCS_FED_STATUS_0__CPC_FED_ERR__SHIFT 0x3
+#define RLC_RLCS_FED_STATUS_0__CPF_FED_ERR__SHIFT 0x4
+#define RLC_RLCS_FED_STATUS_0__CPG_FED_ERR__SHIFT 0x5
+#define RLC_RLCS_FED_STATUS_0__SDMA0_FED_ERR__SHIFT 0x6
+#define RLC_RLCS_FED_STATUS_0__SDMA1_FED_ERR__SHIFT 0x7
+#define RLC_RLCS_FED_STATUS_0__RLC_FED_ERR_MASK 0x00000001L
+#define RLC_RLCS_FED_STATUS_0__UTCL2_FED_ERR_MASK 0x00000002L
+#define RLC_RLCS_FED_STATUS_0__GE_FED_ERR_MASK 0x00000004L
+#define RLC_RLCS_FED_STATUS_0__CPC_FED_ERR_MASK 0x00000008L
+#define RLC_RLCS_FED_STATUS_0__CPF_FED_ERR_MASK 0x00000010L
+#define RLC_RLCS_FED_STATUS_0__CPG_FED_ERR_MASK 0x00000020L
+#define RLC_RLCS_FED_STATUS_0__SDMA0_FED_ERR_MASK 0x00000040L
+#define RLC_RLCS_FED_STATUS_0__SDMA1_FED_ERR_MASK 0x00000080L
+//RLC_RLCS_FED_STATUS_1
+#define RLC_RLCS_FED_STATUS_1__GL2C0_FED_ERR__SHIFT 0x0
+#define RLC_RLCS_FED_STATUS_1__GL2C1_FED_ERR__SHIFT 0x1
+#define RLC_RLCS_FED_STATUS_1__GL2C2_FED_ERR__SHIFT 0x2
+#define RLC_RLCS_FED_STATUS_1__GL2C3_FED_ERR__SHIFT 0x3
+#define RLC_RLCS_FED_STATUS_1__GL2C4_FED_ERR__SHIFT 0x4
+#define RLC_RLCS_FED_STATUS_1__GL2C5_FED_ERR__SHIFT 0x5
+#define RLC_RLCS_FED_STATUS_1__GL2C6_FED_ERR__SHIFT 0x6
+#define RLC_RLCS_FED_STATUS_1__GL2C7_FED_ERR__SHIFT 0x7
+#define RLC_RLCS_FED_STATUS_1__GL2C8_FED_ERR__SHIFT 0x8
+#define RLC_RLCS_FED_STATUS_1__GL2C9_FED_ERR__SHIFT 0x9
+#define RLC_RLCS_FED_STATUS_1__GL2C10_FED_ERR__SHIFT 0xa
+#define RLC_RLCS_FED_STATUS_1__GL2C11_FED_ERR__SHIFT 0xb
+#define RLC_RLCS_FED_STATUS_1__GL2C12_FED_ERR__SHIFT 0xc
+#define RLC_RLCS_FED_STATUS_1__GL2C13_FED_ERR__SHIFT 0xd
+#define RLC_RLCS_FED_STATUS_1__GL2C14_FED_ERR__SHIFT 0xe
+#define RLC_RLCS_FED_STATUS_1__GL2C15_FED_ERR__SHIFT 0xf
+#define RLC_RLCS_FED_STATUS_1__GL2C0_FED_ERR_MASK 0x00000001L
+#define RLC_RLCS_FED_STATUS_1__GL2C1_FED_ERR_MASK 0x00000002L
+#define RLC_RLCS_FED_STATUS_1__GL2C2_FED_ERR_MASK 0x00000004L
+#define RLC_RLCS_FED_STATUS_1__GL2C3_FED_ERR_MASK 0x00000008L
+#define RLC_RLCS_FED_STATUS_1__GL2C4_FED_ERR_MASK 0x00000010L
+#define RLC_RLCS_FED_STATUS_1__GL2C5_FED_ERR_MASK 0x00000020L
+#define RLC_RLCS_FED_STATUS_1__GL2C6_FED_ERR_MASK 0x00000040L
+#define RLC_RLCS_FED_STATUS_1__GL2C7_FED_ERR_MASK 0x00000080L
+#define RLC_RLCS_FED_STATUS_1__GL2C8_FED_ERR_MASK 0x00000100L
+#define RLC_RLCS_FED_STATUS_1__GL2C9_FED_ERR_MASK 0x00000200L
+#define RLC_RLCS_FED_STATUS_1__GL2C10_FED_ERR_MASK 0x00000400L
+#define RLC_RLCS_FED_STATUS_1__GL2C11_FED_ERR_MASK 0x00000800L
+#define RLC_RLCS_FED_STATUS_1__GL2C12_FED_ERR_MASK 0x00001000L
+#define RLC_RLCS_FED_STATUS_1__GL2C13_FED_ERR_MASK 0x00002000L
+#define RLC_RLCS_FED_STATUS_1__GL2C14_FED_ERR_MASK 0x00004000L
+#define RLC_RLCS_FED_STATUS_1__GL2C15_FED_ERR_MASK 0x00008000L
//RLC_CGTT_MGCG_OVERRIDE
#define RLC_CGTT_MGCG_OVERRIDE__RLC_REPEATER_FGCG_OVERRIDE__SHIFT 0x0
#define RLC_CGTT_MGCG_OVERRIDE__RLC_CGTT_SCLK_OVERRIDE__SHIFT 0x1
diff --git a/drivers/gpu/drm/amd/include/asic_reg/gc/gc_9_4_3_offset.h b/drivers/gpu/drm/amd/include/asic_reg/gc/gc_9_4_3_offset.h
new file mode 100644
index 000000000000..3100de8b3881
--- /dev/null
+++ b/drivers/gpu/drm/amd/include/asic_reg/gc/gc_9_4_3_offset.h
@@ -0,0 +1,7258 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ */
+#ifndef _gc_9_4_3_OFFSET_HEADER
+#define _gc_9_4_3_OFFSET_HEADER
+
+
+
+// addressBlock: xcd0_gc_grbmdec
+// base address: 0x8000
+#define regGRBM_CNTL 0x0000
+#define regGRBM_CNTL_BASE_IDX 0
+#define regGRBM_SKEW_CNTL 0x0001
+#define regGRBM_SKEW_CNTL_BASE_IDX 0
+#define regGRBM_STATUS2 0x0002
+#define regGRBM_STATUS2_BASE_IDX 0
+#define regGRBM_PWR_CNTL 0x0003
+#define regGRBM_PWR_CNTL_BASE_IDX 0
+#define regGRBM_STATUS 0x0004
+#define regGRBM_STATUS_BASE_IDX 0
+#define regGRBM_STATUS_SE0 0x0005
+#define regGRBM_STATUS_SE0_BASE_IDX 0
+#define regGRBM_STATUS_SE1 0x0006
+#define regGRBM_STATUS_SE1_BASE_IDX 0
+#define regGRBM_SOFT_RESET 0x0008
+#define regGRBM_SOFT_RESET_BASE_IDX 0
+#define regGRBM_GFX_CLKEN_CNTL 0x000c
+#define regGRBM_GFX_CLKEN_CNTL_BASE_IDX 0
+#define regGRBM_WAIT_IDLE_CLOCKS 0x000d
+#define regGRBM_WAIT_IDLE_CLOCKS_BASE_IDX 0
+#define regGRBM_STATUS_SE2 0x000e
+#define regGRBM_STATUS_SE2_BASE_IDX 0
+#define regGRBM_STATUS_SE3 0x000f
+#define regGRBM_STATUS_SE3_BASE_IDX 0
+#define regGRBM_READ_ERROR 0x0016
+#define regGRBM_READ_ERROR_BASE_IDX 0
+#define regGRBM_READ_ERROR2 0x0017
+#define regGRBM_READ_ERROR2_BASE_IDX 0
+#define regGRBM_INT_CNTL 0x0018
+#define regGRBM_INT_CNTL_BASE_IDX 0
+#define regGRBM_TRAP_OP 0x0019
+#define regGRBM_TRAP_OP_BASE_IDX 0
+#define regGRBM_TRAP_ADDR 0x001a
+#define regGRBM_TRAP_ADDR_BASE_IDX 0
+#define regGRBM_TRAP_ADDR_MSK 0x001b
+#define regGRBM_TRAP_ADDR_MSK_BASE_IDX 0
+#define regGRBM_TRAP_WD 0x001c
+#define regGRBM_TRAP_WD_BASE_IDX 0
+#define regGRBM_TRAP_WD_MSK 0x001d
+#define regGRBM_TRAP_WD_MSK_BASE_IDX 0
+#define regGRBM_WRITE_ERROR 0x001f
+#define regGRBM_WRITE_ERROR_BASE_IDX 0
+#define regGRBM_IOV_ERROR 0x0020
+#define regGRBM_IOV_ERROR_BASE_IDX 0
+#define regGRBM_CHIP_REVISION 0x0021
+#define regGRBM_CHIP_REVISION_BASE_IDX 0
+#define regGRBM_GFX_CNTL 0x0022
+#define regGRBM_GFX_CNTL_BASE_IDX 0
+#define regGRBM_RSMU_CFG 0x0023
+#define regGRBM_RSMU_CFG_BASE_IDX 0
+#define regGRBM_IH_CREDIT 0x0024
+#define regGRBM_IH_CREDIT_BASE_IDX 0
+#define regGRBM_PWR_CNTL2 0x0025
+#define regGRBM_PWR_CNTL2_BASE_IDX 0
+#define regGRBM_UTCL2_INVAL_RANGE_START 0x0026
+#define regGRBM_UTCL2_INVAL_RANGE_START_BASE_IDX 0
+#define regGRBM_UTCL2_INVAL_RANGE_END 0x0027
+#define regGRBM_UTCL2_INVAL_RANGE_END_BASE_IDX 0
+#define regGRBM_RSMU_READ_ERROR 0x0028
+#define regGRBM_RSMU_READ_ERROR_BASE_IDX 0
+#define regGRBM_CHICKEN_BITS 0x0029
+#define regGRBM_CHICKEN_BITS_BASE_IDX 0
+#define regGRBM_FENCE_RANGE0 0x002a
+#define regGRBM_FENCE_RANGE0_BASE_IDX 0
+#define regGRBM_FENCE_RANGE1 0x002b
+#define regGRBM_FENCE_RANGE1_BASE_IDX 0
+#define regGRBM_IOV_READ_ERROR 0x002c
+#define regGRBM_IOV_READ_ERROR_BASE_IDX 0
+#define regGRBM_NOWHERE 0x003f
+#define regGRBM_NOWHERE_BASE_IDX 0
+#define regGRBM_SCRATCH_REG0 0x0040
+#define regGRBM_SCRATCH_REG0_BASE_IDX 0
+#define regGRBM_SCRATCH_REG1 0x0041
+#define regGRBM_SCRATCH_REG1_BASE_IDX 0
+#define regGRBM_SCRATCH_REG2 0x0042
+#define regGRBM_SCRATCH_REG2_BASE_IDX 0
+#define regGRBM_SCRATCH_REG3 0x0043
+#define regGRBM_SCRATCH_REG3_BASE_IDX 0
+#define regGRBM_SCRATCH_REG4 0x0044
+#define regGRBM_SCRATCH_REG4_BASE_IDX 0
+#define regGRBM_SCRATCH_REG5 0x0045
+#define regGRBM_SCRATCH_REG5_BASE_IDX 0
+#define regGRBM_SCRATCH_REG6 0x0046
+#define regGRBM_SCRATCH_REG6_BASE_IDX 0
+#define regGRBM_SCRATCH_REG7 0x0047
+#define regGRBM_SCRATCH_REG7_BASE_IDX 0
+#define regVIOLATION_DATA_ASYNC_VF_PROG 0x0048
+#define regVIOLATION_DATA_ASYNC_VF_PROG_BASE_IDX 0
+
+
+// addressBlock: xcd0_gc_cpdec
+// base address: 0x8200
+#define regCP_CPC_DEBUG_CNTL 0x0080
+#define regCP_CPC_DEBUG_CNTL_BASE_IDX 0
+#define regCP_CPF_DEBUG_CNTL 0x0082
+#define regCP_CPF_DEBUG_CNTL_BASE_IDX 0
+#define regCP_CPC_STATUS 0x0084
+#define regCP_CPC_STATUS_BASE_IDX 0
+#define regCP_CPC_BUSY_STAT 0x0085
+#define regCP_CPC_BUSY_STAT_BASE_IDX 0
+#define regCP_CPC_STALLED_STAT1 0x0086
+#define regCP_CPC_STALLED_STAT1_BASE_IDX 0
+#define regCP_CPF_STATUS 0x0087
+#define regCP_CPF_STATUS_BASE_IDX 0
+#define regCP_CPF_BUSY_STAT 0x0088
+#define regCP_CPF_BUSY_STAT_BASE_IDX 0
+#define regCP_CPF_STALLED_STAT1 0x0089
+#define regCP_CPF_STALLED_STAT1_BASE_IDX 0
+#define regCP_CPC_GRBM_FREE_COUNT 0x008b
+#define regCP_CPC_GRBM_FREE_COUNT_BASE_IDX 0
+#define regCP_CPC_PRIV_VIOLATION_ADDR 0x008c
+#define regCP_CPC_PRIV_VIOLATION_ADDR_BASE_IDX 0
+#define regCP_MEC_CNTL 0x008d
+#define regCP_MEC_CNTL_BASE_IDX 0
+#define regCP_MEC_ME1_HEADER_DUMP 0x008e
+#define regCP_MEC_ME1_HEADER_DUMP_BASE_IDX 0
+#define regCP_MEC_ME2_HEADER_DUMP 0x008f
+#define regCP_MEC_ME2_HEADER_DUMP_BASE_IDX 0
+#define regCP_CPC_SCRATCH_INDEX 0x0090
+#define regCP_CPC_SCRATCH_INDEX_BASE_IDX 0
+#define regCP_CPC_SCRATCH_DATA 0x0091
+#define regCP_CPC_SCRATCH_DATA_BASE_IDX 0
+#define regCP_CPF_GRBM_FREE_COUNT 0x0092
+#define regCP_CPF_GRBM_FREE_COUNT_BASE_IDX 0
+#define regCP_CPC_HALT_HYST_COUNT 0x00a7
+#define regCP_CPC_HALT_HYST_COUNT_BASE_IDX 0
+#define regCP_CE_COMPARE_COUNT 0x00c0
+#define regCP_CE_COMPARE_COUNT_BASE_IDX 0
+#define regCP_CE_DE_COUNT 0x00c1
+#define regCP_CE_DE_COUNT_BASE_IDX 0
+#define regCP_DE_CE_COUNT 0x00c2
+#define regCP_DE_CE_COUNT_BASE_IDX 0
+#define regCP_DE_LAST_INVAL_COUNT 0x00c3
+#define regCP_DE_LAST_INVAL_COUNT_BASE_IDX 0
+#define regCP_DE_DE_COUNT 0x00c4
+#define regCP_DE_DE_COUNT_BASE_IDX 0
+#define regCP_STALLED_STAT3 0x019c
+#define regCP_STALLED_STAT3_BASE_IDX 0
+#define regCP_STALLED_STAT1 0x019d
+#define regCP_STALLED_STAT1_BASE_IDX 0
+#define regCP_STALLED_STAT2 0x019e
+#define regCP_STALLED_STAT2_BASE_IDX 0
+#define regCP_BUSY_STAT 0x019f
+#define regCP_BUSY_STAT_BASE_IDX 0
+#define regCP_STAT 0x01a0
+#define regCP_STAT_BASE_IDX 0
+#define regCP_ME_HEADER_DUMP 0x01a1
+#define regCP_ME_HEADER_DUMP_BASE_IDX 0
+#define regCP_PFP_HEADER_DUMP 0x01a2
+#define regCP_PFP_HEADER_DUMP_BASE_IDX 0
+#define regCP_GRBM_FREE_COUNT 0x01a3
+#define regCP_GRBM_FREE_COUNT_BASE_IDX 0
+#define regCP_CE_HEADER_DUMP 0x01a4
+#define regCP_CE_HEADER_DUMP_BASE_IDX 0
+#define regCP_PFP_INSTR_PNTR 0x01a5
+#define regCP_PFP_INSTR_PNTR_BASE_IDX 0
+#define regCP_ME_INSTR_PNTR 0x01a6
+#define regCP_ME_INSTR_PNTR_BASE_IDX 0
+#define regCP_CE_INSTR_PNTR 0x01a7
+#define regCP_CE_INSTR_PNTR_BASE_IDX 0
+#define regCP_MEC1_INSTR_PNTR 0x01a8
+#define regCP_MEC1_INSTR_PNTR_BASE_IDX 0
+#define regCP_MEC2_INSTR_PNTR 0x01a9
+#define regCP_MEC2_INSTR_PNTR_BASE_IDX 0
+#define regCP_CSF_STAT 0x01b4
+#define regCP_CSF_STAT_BASE_IDX 0
+#define regCP_ME_CNTL 0x01b6
+#define regCP_ME_CNTL_BASE_IDX 0
+#define regCP_CNTX_STAT 0x01b8
+#define regCP_CNTX_STAT_BASE_IDX 0
+#define regCP_ME_PREEMPTION 0x01b9
+#define regCP_ME_PREEMPTION_BASE_IDX 0
+#define regCP_ROQ_THRESHOLDS 0x01bc
+#define regCP_ROQ_THRESHOLDS_BASE_IDX 0
+#define regCP_MEQ_STQ_THRESHOLD 0x01bd
+#define regCP_MEQ_STQ_THRESHOLD_BASE_IDX 0
+#define regCP_RB2_RPTR 0x01be
+#define regCP_RB2_RPTR_BASE_IDX 0
+#define regCP_RB1_RPTR 0x01bf
+#define regCP_RB1_RPTR_BASE_IDX 0
+#define regCP_RB0_RPTR 0x01c0
+#define regCP_RB0_RPTR_BASE_IDX 0
+#define regCP_RB_RPTR 0x01c0
+#define regCP_RB_RPTR_BASE_IDX 0
+#define regCP_RB_WPTR_DELAY 0x01c1
+#define regCP_RB_WPTR_DELAY_BASE_IDX 0
+#define regCP_RB_WPTR_POLL_CNTL 0x01c2
+#define regCP_RB_WPTR_POLL_CNTL_BASE_IDX 0
+#define regCP_ROQ1_THRESHOLDS 0x01d5
+#define regCP_ROQ1_THRESHOLDS_BASE_IDX 0
+#define regCP_ROQ2_THRESHOLDS 0x01d6
+#define regCP_ROQ2_THRESHOLDS_BASE_IDX 0
+#define regCP_STQ_THRESHOLDS 0x01d7
+#define regCP_STQ_THRESHOLDS_BASE_IDX 0
+#define regCP_QUEUE_THRESHOLDS 0x01d8
+#define regCP_QUEUE_THRESHOLDS_BASE_IDX 0
+#define regCP_MEQ_THRESHOLDS 0x01d9
+#define regCP_MEQ_THRESHOLDS_BASE_IDX 0
+#define regCP_ROQ_AVAIL 0x01da
+#define regCP_ROQ_AVAIL_BASE_IDX 0
+#define regCP_STQ_AVAIL 0x01db
+#define regCP_STQ_AVAIL_BASE_IDX 0
+#define regCP_ROQ2_AVAIL 0x01dc
+#define regCP_ROQ2_AVAIL_BASE_IDX 0
+#define regCP_MEQ_AVAIL 0x01dd
+#define regCP_MEQ_AVAIL_BASE_IDX 0
+#define regCP_CMD_INDEX 0x01de
+#define regCP_CMD_INDEX_BASE_IDX 0
+#define regCP_CMD_DATA 0x01df
+#define regCP_CMD_DATA_BASE_IDX 0
+#define regCP_ROQ_RB_STAT 0x01e0
+#define regCP_ROQ_RB_STAT_BASE_IDX 0
+#define regCP_ROQ_IB1_STAT 0x01e1
+#define regCP_ROQ_IB1_STAT_BASE_IDX 0
+#define regCP_ROQ_IB2_STAT 0x01e2
+#define regCP_ROQ_IB2_STAT_BASE_IDX 0
+#define regCP_STQ_STAT 0x01e3
+#define regCP_STQ_STAT_BASE_IDX 0
+#define regCP_STQ_WR_STAT 0x01e4
+#define regCP_STQ_WR_STAT_BASE_IDX 0
+#define regCP_MEQ_STAT 0x01e5
+#define regCP_MEQ_STAT_BASE_IDX 0
+#define regCP_CEQ1_AVAIL 0x01e6
+#define regCP_CEQ1_AVAIL_BASE_IDX 0
+#define regCP_CEQ2_AVAIL 0x01e7
+#define regCP_CEQ2_AVAIL_BASE_IDX 0
+#define regCP_CE_ROQ_RB_STAT 0x01e8
+#define regCP_CE_ROQ_RB_STAT_BASE_IDX 0
+#define regCP_CE_ROQ_IB1_STAT 0x01e9
+#define regCP_CE_ROQ_IB1_STAT_BASE_IDX 0
+#define regCP_CE_ROQ_IB2_STAT 0x01ea
+#define regCP_CE_ROQ_IB2_STAT_BASE_IDX 0
+#define regCP_INT_STAT_DEBUG 0x01f7
+#define regCP_INT_STAT_DEBUG_BASE_IDX 0
+#define regCP_DEBUG_CNTL 0x01f8
+#define regCP_DEBUG_CNTL_BASE_IDX 0
+#define regCP_PRIV_VIOLATION_ADDR 0x01fa
+#define regCP_PRIV_VIOLATION_ADDR_BASE_IDX 0
+
+
+// addressBlock: xcd0_gc_padec
+// base address: 0x8800
+#define regVGT_VTX_VECT_EJECT_REG 0x022c
+#define regVGT_VTX_VECT_EJECT_REG_BASE_IDX 0
+#define regVGT_DMA_DATA_FIFO_DEPTH 0x022d
+#define regVGT_DMA_DATA_FIFO_DEPTH_BASE_IDX 0
+#define regVGT_DMA_REQ_FIFO_DEPTH 0x022e
+#define regVGT_DMA_REQ_FIFO_DEPTH_BASE_IDX 0
+#define regVGT_DRAW_INIT_FIFO_DEPTH 0x022f
+#define regVGT_DRAW_INIT_FIFO_DEPTH_BASE_IDX 0
+#define regVGT_LAST_COPY_STATE 0x0230
+#define regVGT_LAST_COPY_STATE_BASE_IDX 0
+#define regVGT_CACHE_INVALIDATION 0x0231
+#define regVGT_CACHE_INVALIDATION_BASE_IDX 0
+#define regVGT_RESET_DEBUG 0x0232
+#define regVGT_RESET_DEBUG_BASE_IDX 0
+#define regVGT_STRMOUT_DELAY 0x0233
+#define regVGT_STRMOUT_DELAY_BASE_IDX 0
+#define regVGT_FIFO_DEPTHS 0x0234
+#define regVGT_FIFO_DEPTHS_BASE_IDX 0
+#define regVGT_GS_VERTEX_REUSE 0x0235
+#define regVGT_GS_VERTEX_REUSE_BASE_IDX 0
+#define regVGT_MC_LAT_CNTL 0x0236
+#define regVGT_MC_LAT_CNTL_BASE_IDX 0
+#define regIA_CNTL_STATUS 0x0237
+#define regIA_CNTL_STATUS_BASE_IDX 0
+#define regVGT_CNTL_STATUS 0x023c
+#define regVGT_CNTL_STATUS_BASE_IDX 0
+#define regWD_CNTL_STATUS 0x023f
+#define regWD_CNTL_STATUS_BASE_IDX 0
+#define regCC_GC_PRIM_CONFIG 0x0240
+#define regCC_GC_PRIM_CONFIG_BASE_IDX 0
+#define regGC_USER_PRIM_CONFIG 0x0241
+#define regGC_USER_PRIM_CONFIG_BASE_IDX 0
+#define regWD_QOS 0x0242
+#define regWD_QOS_BASE_IDX 0
+#define regWD_UTCL1_CNTL 0x0243
+#define regWD_UTCL1_CNTL_BASE_IDX 0
+#define regWD_UTCL1_STATUS 0x0244
+#define regWD_UTCL1_STATUS_BASE_IDX 0
+#define regIA_UTCL1_CNTL 0x0246
+#define regIA_UTCL1_CNTL_BASE_IDX 0
+#define regIA_UTCL1_STATUS 0x0247
+#define regIA_UTCL1_STATUS_BASE_IDX 0
+#define regVGT_SYS_CONFIG 0x0263
+#define regVGT_SYS_CONFIG_BASE_IDX 0
+#define regVGT_VS_MAX_WAVE_ID 0x0268
+#define regVGT_VS_MAX_WAVE_ID_BASE_IDX 0
+#define regVGT_GS_MAX_WAVE_ID 0x0269
+#define regVGT_GS_MAX_WAVE_ID_BASE_IDX 0
+#define regGFX_PIPE_CONTROL 0x026d
+#define regGFX_PIPE_CONTROL_BASE_IDX 0
+#define regCC_GC_SHADER_ARRAY_CONFIG 0x026f
+#define regCC_GC_SHADER_ARRAY_CONFIG_BASE_IDX 0
+#define regGC_USER_SHADER_ARRAY_CONFIG 0x0270
+#define regGC_USER_SHADER_ARRAY_CONFIG_BASE_IDX 0
+#define regVGT_DMA_PRIMITIVE_TYPE 0x0271
+#define regVGT_DMA_PRIMITIVE_TYPE_BASE_IDX 0
+#define regVGT_DMA_CONTROL 0x0272
+#define regVGT_DMA_CONTROL_BASE_IDX 0
+#define regVGT_DMA_LS_HS_CONFIG 0x0273
+#define regVGT_DMA_LS_HS_CONFIG_BASE_IDX 0
+#define regWD_BUF_RESOURCE_1 0x0276
+#define regWD_BUF_RESOURCE_1_BASE_IDX 0
+#define regWD_BUF_RESOURCE_2 0x0277
+#define regWD_BUF_RESOURCE_2_BASE_IDX 0
+#define regPA_CL_CNTL_STATUS 0x0284
+#define regPA_CL_CNTL_STATUS_BASE_IDX 0
+#define regPA_CL_ENHANCE 0x0285
+#define regPA_CL_ENHANCE_BASE_IDX 0
+#define regPA_CL_RESET_DEBUG 0x0286
+#define regPA_CL_RESET_DEBUG_BASE_IDX 0
+#define regPA_SU_CNTL_STATUS 0x0294
+#define regPA_SU_CNTL_STATUS_BASE_IDX 0
+#define regPA_SC_FIFO_DEPTH_CNTL 0x0295
+#define regPA_SC_FIFO_DEPTH_CNTL_BASE_IDX 0
+#define regPA_SC_P3D_TRAP_SCREEN_HV_LOCK 0x02c0
+#define regPA_SC_P3D_TRAP_SCREEN_HV_LOCK_BASE_IDX 0
+#define regPA_SC_HP3D_TRAP_SCREEN_HV_LOCK 0x02c1
+#define regPA_SC_HP3D_TRAP_SCREEN_HV_LOCK_BASE_IDX 0
+#define regPA_SC_TRAP_SCREEN_HV_LOCK 0x02c2
+#define regPA_SC_TRAP_SCREEN_HV_LOCK_BASE_IDX 0
+#define regPA_SC_FORCE_EOV_MAX_CNTS 0x02c9
+#define regPA_SC_FORCE_EOV_MAX_CNTS_BASE_IDX 0
+#define regPA_SC_BINNER_EVENT_CNTL_0 0x02cc
+#define regPA_SC_BINNER_EVENT_CNTL_0_BASE_IDX 0
+#define regPA_SC_BINNER_EVENT_CNTL_1 0x02cd
+#define regPA_SC_BINNER_EVENT_CNTL_1_BASE_IDX 0
+#define regPA_SC_BINNER_EVENT_CNTL_2 0x02ce
+#define regPA_SC_BINNER_EVENT_CNTL_2_BASE_IDX 0
+#define regPA_SC_BINNER_EVENT_CNTL_3 0x02cf
+#define regPA_SC_BINNER_EVENT_CNTL_3_BASE_IDX 0
+#define regPA_SC_BINNER_TIMEOUT_COUNTER 0x02d0
+#define regPA_SC_BINNER_TIMEOUT_COUNTER_BASE_IDX 0
+#define regPA_SC_BINNER_PERF_CNTL_0 0x02d1
+#define regPA_SC_BINNER_PERF_CNTL_0_BASE_IDX 0
+#define regPA_SC_BINNER_PERF_CNTL_1 0x02d2
+#define regPA_SC_BINNER_PERF_CNTL_1_BASE_IDX 0
+#define regPA_SC_BINNER_PERF_CNTL_2 0x02d3
+#define regPA_SC_BINNER_PERF_CNTL_2_BASE_IDX 0
+#define regPA_SC_BINNER_PERF_CNTL_3 0x02d4
+#define regPA_SC_BINNER_PERF_CNTL_3_BASE_IDX 0
+#define regPA_SC_ENHANCE_2 0x02dc
+#define regPA_SC_ENHANCE_2_BASE_IDX 0
+#define regPA_SC_FIFO_SIZE 0x02f3
+#define regPA_SC_FIFO_SIZE_BASE_IDX 0
+#define regPA_SC_IF_FIFO_SIZE 0x02f5
+#define regPA_SC_IF_FIFO_SIZE_BASE_IDX 0
+#define regPA_SC_PKR_WAVE_TABLE_CNTL 0x02f8
+#define regPA_SC_PKR_WAVE_TABLE_CNTL_BASE_IDX 0
+#define regPA_UTCL1_CNTL1 0x02f9
+#define regPA_UTCL1_CNTL1_BASE_IDX 0
+#define regPA_UTCL1_CNTL2 0x02fa
+#define regPA_UTCL1_CNTL2_BASE_IDX 0
+#define regPA_SIDEBAND_REQUEST_DELAYS 0x02fb
+#define regPA_SIDEBAND_REQUEST_DELAYS_BASE_IDX 0
+#define regPA_SC_ENHANCE 0x02fc
+#define regPA_SC_ENHANCE_BASE_IDX 0
+#define regPA_SC_ENHANCE_1 0x02fd
+#define regPA_SC_ENHANCE_1_BASE_IDX 0
+#define regPA_SC_DSM_CNTL 0x02fe
+#define regPA_SC_DSM_CNTL_BASE_IDX 0
+#define regPA_SC_TILE_STEERING_CREST_OVERRIDE 0x02ff
+#define regPA_SC_TILE_STEERING_CREST_OVERRIDE_BASE_IDX 0
+
+
+// addressBlock: xcd0_gc_sqdec
+// base address: 0x8c00
+#define regSQ_CONFIG 0x0300
+#define regSQ_CONFIG_BASE_IDX 0
+#define regSQC_CONFIG 0x0301
+#define regSQC_CONFIG_BASE_IDX 0
+#define regLDS_CONFIG 0x0302
+#define regLDS_CONFIG_BASE_IDX 0
+#define regSQ_RANDOM_WAVE_PRI 0x0303
+#define regSQ_RANDOM_WAVE_PRI_BASE_IDX 0
+#define regSQ_REG_CREDITS 0x0304
+#define regSQ_REG_CREDITS_BASE_IDX 0
+#define regSQ_FIFO_SIZES 0x0305
+#define regSQ_FIFO_SIZES_BASE_IDX 0
+#define regSQ_DSM_CNTL 0x0306
+#define regSQ_DSM_CNTL_BASE_IDX 0
+#define regSQ_DSM_CNTL2 0x0307
+#define regSQ_DSM_CNTL2_BASE_IDX 0
+#define regSQ_RUNTIME_CONFIG 0x0308
+#define regSQ_RUNTIME_CONFIG_BASE_IDX 0
+#define regSQ_DEBUG_STS_GLOBAL 0x0309
+#define regSQ_DEBUG_STS_GLOBAL_BASE_IDX 0
+#define regSH_MEM_BASES 0x030a
+#define regSH_MEM_BASES_BASE_IDX 0
+#define regSQ_TIMEOUT_CONFIG 0x030b
+#define regSQ_TIMEOUT_CONFIG_BASE_IDX 0
+#define regSQ_TIMEOUT_STATUS 0x030c
+#define regSQ_TIMEOUT_STATUS_BASE_IDX 0
+#define regSH_MEM_CONFIG 0x030d
+#define regSH_MEM_CONFIG_BASE_IDX 0
+#define regSP_MFMA_PORTD_RD_CONFIG 0x030e
+#define regSP_MFMA_PORTD_RD_CONFIG_BASE_IDX 0
+#define regSH_CAC_CONFIG 0x030f
+#define regSH_CAC_CONFIG_BASE_IDX 0
+#define regSQ_DEBUG_STS_GLOBAL2 0x0310
+#define regSQ_DEBUG_STS_GLOBAL2_BASE_IDX 0
+#define regSQ_DEBUG_STS_GLOBAL3 0x0311
+#define regSQ_DEBUG_STS_GLOBAL3_BASE_IDX 0
+#define regCC_GC_SHADER_RATE_CONFIG 0x0312
+#define regCC_GC_SHADER_RATE_CONFIG_BASE_IDX 0
+#define regGC_USER_SHADER_RATE_CONFIG 0x0313
+#define regGC_USER_SHADER_RATE_CONFIG_BASE_IDX 0
+#define regSQ_INTERRUPT_AUTO_MASK 0x0314
+#define regSQ_INTERRUPT_AUTO_MASK_BASE_IDX 0
+#define regSQ_INTERRUPT_MSG_CTRL 0x0315
+#define regSQ_INTERRUPT_MSG_CTRL_BASE_IDX 0
+#define regSQ_DEBUG_PERFCOUNT_TRAP 0x0316
+#define regSQ_DEBUG_PERFCOUNT_TRAP_BASE_IDX 0
+#define regSQ_UTCL1_CNTL1 0x0317
+#define regSQ_UTCL1_CNTL1_BASE_IDX 0
+#define regSQ_UTCL1_CNTL2 0x0318
+#define regSQ_UTCL1_CNTL2_BASE_IDX 0
+#define regSQ_UTCL1_STATUS 0x0319
+#define regSQ_UTCL1_STATUS_BASE_IDX 0
+#define regSQ_FED_INTERRUPT_STATUS 0x031a
+#define regSQ_FED_INTERRUPT_STATUS_BASE_IDX 0
+#define regSQ_CGTS_CONFIG 0x031b
+#define regSQ_CGTS_CONFIG_BASE_IDX 0
+#define regSQ_SHADER_TBA_LO 0x031c
+#define regSQ_SHADER_TBA_LO_BASE_IDX 0
+#define regSQ_SHADER_TBA_HI 0x031d
+#define regSQ_SHADER_TBA_HI_BASE_IDX 0
+#define regSQ_SHADER_TMA_LO 0x031e
+#define regSQ_SHADER_TMA_LO_BASE_IDX 0
+#define regSQ_SHADER_TMA_HI 0x031f
+#define regSQ_SHADER_TMA_HI_BASE_IDX 0
+#define regSQC_DSM_CNTL 0x0320
+#define regSQC_DSM_CNTL_BASE_IDX 0
+#define regSQC_DSM_CNTLA 0x0321
+#define regSQC_DSM_CNTLA_BASE_IDX 0
+#define regSQC_DSM_CNTLB 0x0322
+#define regSQC_DSM_CNTLB_BASE_IDX 0
+#define regSQC_DSM_CNTL2 0x0325
+#define regSQC_DSM_CNTL2_BASE_IDX 0
+#define regSQC_DSM_CNTL2A 0x0326
+#define regSQC_DSM_CNTL2A_BASE_IDX 0
+#define regSQC_DSM_CNTL2B 0x0327
+#define regSQC_DSM_CNTL2B_BASE_IDX 0
+#define regSQC_DSM_CNTL2E 0x032a
+#define regSQC_DSM_CNTL2E_BASE_IDX 0
+#define regSQC_EDC_FUE_CNTL 0x032b
+#define regSQC_EDC_FUE_CNTL_BASE_IDX 0
+#define regSQC_EDC_CNT2 0x032c
+#define regSQC_EDC_CNT2_BASE_IDX 0
+#define regSQC_EDC_CNT3 0x032d
+#define regSQC_EDC_CNT3_BASE_IDX 0
+#define regSQC_EDC_PARITY_CNT3 0x032e
+#define regSQC_EDC_PARITY_CNT3_BASE_IDX 0
+#define regSQ_DEBUG 0x0332
+#define regSQ_DEBUG_BASE_IDX 0
+#define regSQ_PERF_SNAPSHOT_CTRL 0x0334
+#define regSQ_PERF_SNAPSHOT_CTRL_BASE_IDX 0
+#define regSQ_DEBUG_FOR_INTERNAL_CTRL 0x0335
+#define regSQ_DEBUG_FOR_INTERNAL_CTRL_BASE_IDX 0
+#define regSQ_REG_TIMESTAMP 0x0374
+#define regSQ_REG_TIMESTAMP_BASE_IDX 0
+#define regSQ_CMD_TIMESTAMP 0x0375
+#define regSQ_CMD_TIMESTAMP_BASE_IDX 0
+#define regSQ_HOSTTRAP_STATUS 0x0376
+#define regSQ_HOSTTRAP_STATUS_BASE_IDX 0
+#define regSQ_IND_INDEX 0x0378
+#define regSQ_IND_INDEX_BASE_IDX 0
+#define regSQ_IND_DATA 0x0379
+#define regSQ_IND_DATA_BASE_IDX 0
+#define regSQ_CONFIG1 0x037a
+#define regSQ_CONFIG1_BASE_IDX 0
+#define regSQ_CMD 0x037b
+#define regSQ_CMD_BASE_IDX 0
+#define regSQ_TIME_HI 0x037c
+#define regSQ_TIME_HI_BASE_IDX 0
+#define regSQ_TIME_LO 0x037d
+#define regSQ_TIME_LO_BASE_IDX 0
+#define regSQ_DS_0 0x037f
+#define regSQ_DS_0_BASE_IDX 0
+#define regSQ_DS_1 0x037f
+#define regSQ_DS_1_BASE_IDX 0
+#define regSQ_EXP_0 0x037f
+#define regSQ_EXP_0_BASE_IDX 0
+#define regSQ_EXP_1 0x037f
+#define regSQ_EXP_1_BASE_IDX 0
+#define regSQ_FLAT_0 0x037f
+#define regSQ_FLAT_0_BASE_IDX 0
+#define regSQ_FLAT_1 0x037f
+#define regSQ_FLAT_1_BASE_IDX 0
+#define regSQ_GLBL_0 0x037f
+#define regSQ_GLBL_0_BASE_IDX 0
+#define regSQ_GLBL_1 0x037f
+#define regSQ_GLBL_1_BASE_IDX 0
+#define regSQ_INST 0x037f
+#define regSQ_INST_BASE_IDX 0
+#define regSQ_MIMG_0 0x037f
+#define regSQ_MIMG_0_BASE_IDX 0
+#define regSQ_MIMG_1 0x037f
+#define regSQ_MIMG_1_BASE_IDX 0
+#define regSQ_MTBUF_0 0x037f
+#define regSQ_MTBUF_0_BASE_IDX 0
+#define regSQ_MTBUF_1 0x037f
+#define regSQ_MTBUF_1_BASE_IDX 0
+#define regSQ_MUBUF_0 0x037f
+#define regSQ_MUBUF_0_BASE_IDX 0
+#define regSQ_MUBUF_1 0x037f
+#define regSQ_MUBUF_1_BASE_IDX 0
+#define regSQ_SCRATCH_0 0x037f
+#define regSQ_SCRATCH_0_BASE_IDX 0
+#define regSQ_SCRATCH_1 0x037f
+#define regSQ_SCRATCH_1_BASE_IDX 0
+#define regSQ_SMEM_0 0x037f
+#define regSQ_SMEM_0_BASE_IDX 0
+#define regSQ_SMEM_1 0x037f
+#define regSQ_SMEM_1_BASE_IDX 0
+#define regSQ_SOP1 0x037f
+#define regSQ_SOP1_BASE_IDX 0
+#define regSQ_SOP2 0x037f
+#define regSQ_SOP2_BASE_IDX 0
+#define regSQ_SOPC 0x037f
+#define regSQ_SOPC_BASE_IDX 0
+#define regSQ_SOPK 0x037f
+#define regSQ_SOPK_BASE_IDX 0
+#define regSQ_SOPP 0x037f
+#define regSQ_SOPP_BASE_IDX 0
+#define regSQ_VINTRP 0x037f
+#define regSQ_VINTRP_BASE_IDX 0
+#define regSQ_VOP1 0x037f
+#define regSQ_VOP1_BASE_IDX 0
+#define regSQ_VOP2 0x037f
+#define regSQ_VOP2_BASE_IDX 0
+#define regSQ_VOP3P_0 0x037f
+#define regSQ_VOP3P_0_BASE_IDX 0
+#define regSQ_VOP3P_1 0x037f
+#define regSQ_VOP3P_1_BASE_IDX 0
+#define regSQ_VOP3P_MFMA_0 0x037f
+#define regSQ_VOP3P_MFMA_0_BASE_IDX 0
+#define regSQ_VOP3P_MFMA_1 0x037f
+#define regSQ_VOP3P_MFMA_1_BASE_IDX 0
+#define regSQ_VOP3_0 0x037f
+#define regSQ_VOP3_0_BASE_IDX 0
+#define regSQ_VOP3_0_SDST_ENC 0x037f
+#define regSQ_VOP3_0_SDST_ENC_BASE_IDX 0
+#define regSQ_VOP3_1 0x037f
+#define regSQ_VOP3_1_BASE_IDX 0
+#define regSQ_VOPC 0x037f
+#define regSQ_VOPC_BASE_IDX 0
+#define regSQ_VOP_DPP 0x037f
+#define regSQ_VOP_DPP_BASE_IDX 0
+#define regSQ_VOP_SDWA 0x037f
+#define regSQ_VOP_SDWA_BASE_IDX 0
+#define regSQ_VOP_SDWA_SDST_ENC 0x037f
+#define regSQ_VOP_SDWA_SDST_ENC_BASE_IDX 0
+#define regSQ_LB_CTR_CTRL 0x0398
+#define regSQ_LB_CTR_CTRL_BASE_IDX 0
+#define regSQ_LB_DATA0 0x0399
+#define regSQ_LB_DATA0_BASE_IDX 0
+#define regSQ_LB_DATA1 0x039a
+#define regSQ_LB_DATA1_BASE_IDX 0
+#define regSQ_LB_DATA2 0x039b
+#define regSQ_LB_DATA2_BASE_IDX 0
+#define regSQ_LB_DATA3 0x039c
+#define regSQ_LB_DATA3_BASE_IDX 0
+#define regSQ_LB_CTR_SEL 0x039d
+#define regSQ_LB_CTR_SEL_BASE_IDX 0
+#define regSQ_LB_CTR0_CU 0x039e
+#define regSQ_LB_CTR0_CU_BASE_IDX 0
+#define regSQ_LB_CTR1_CU 0x039f
+#define regSQ_LB_CTR1_CU_BASE_IDX 0
+#define regSQ_LB_CTR2_CU 0x03a0
+#define regSQ_LB_CTR2_CU_BASE_IDX 0
+#define regSQ_LB_CTR3_CU 0x03a1
+#define regSQ_LB_CTR3_CU_BASE_IDX 0
+#define regSQC_EDC_CNT 0x03a2
+#define regSQC_EDC_CNT_BASE_IDX 0
+#define regSQ_EDC_SEC_CNT 0x03a3
+#define regSQ_EDC_SEC_CNT_BASE_IDX 0
+#define regSQ_EDC_DED_CNT 0x03a4
+#define regSQ_EDC_DED_CNT_BASE_IDX 0
+#define regSQ_EDC_INFO 0x03a5
+#define regSQ_EDC_INFO_BASE_IDX 0
+#define regSQ_EDC_CNT 0x03a6
+#define regSQ_EDC_CNT_BASE_IDX 0
+#define regSQ_EDC_FUE_CNTL 0x03a7
+#define regSQ_EDC_FUE_CNTL_BASE_IDX 0
+#define regSQ_THREAD_TRACE_WORD_CMN 0x03b0
+#define regSQ_THREAD_TRACE_WORD_CMN_BASE_IDX 0
+#define regSQ_THREAD_TRACE_WORD_EVENT 0x03b0
+#define regSQ_THREAD_TRACE_WORD_EVENT_BASE_IDX 0
+#define regSQ_THREAD_TRACE_WORD_INST 0x03b0
+#define regSQ_THREAD_TRACE_WORD_INST_BASE_IDX 0
+#define regSQ_THREAD_TRACE_WORD_INST_PC_1_OF_2 0x03b0
+#define regSQ_THREAD_TRACE_WORD_INST_PC_1_OF_2_BASE_IDX 0
+#define regSQ_THREAD_TRACE_WORD_INST_USERDATA_1_OF_2 0x03b0
+#define regSQ_THREAD_TRACE_WORD_INST_USERDATA_1_OF_2_BASE_IDX 0
+#define regSQ_THREAD_TRACE_WORD_ISSUE 0x03b0
+#define regSQ_THREAD_TRACE_WORD_ISSUE_BASE_IDX 0
+#define regSQ_THREAD_TRACE_WORD_MISC 0x03b0
+#define regSQ_THREAD_TRACE_WORD_MISC_BASE_IDX 0
+#define regSQ_THREAD_TRACE_WORD_PERF_1_OF_2 0x03b0
+#define regSQ_THREAD_TRACE_WORD_PERF_1_OF_2_BASE_IDX 0
+#define regSQ_THREAD_TRACE_WORD_REG_1_OF_2 0x03b0
+#define regSQ_THREAD_TRACE_WORD_REG_1_OF_2_BASE_IDX 0
+#define regSQ_THREAD_TRACE_WORD_REG_2_OF_2 0x03b0
+#define regSQ_THREAD_TRACE_WORD_REG_2_OF_2_BASE_IDX 0
+#define regSQ_THREAD_TRACE_WORD_REG_CS_1_OF_2 0x03b0
+#define regSQ_THREAD_TRACE_WORD_REG_CS_1_OF_2_BASE_IDX 0
+#define regSQ_THREAD_TRACE_WORD_REG_CS_2_OF_2 0x03b0
+#define regSQ_THREAD_TRACE_WORD_REG_CS_2_OF_2_BASE_IDX 0
+#define regSQ_THREAD_TRACE_WORD_TIMESTAMP_1_OF_2 0x03b0
+#define regSQ_THREAD_TRACE_WORD_TIMESTAMP_1_OF_2_BASE_IDX 0
+#define regSQ_THREAD_TRACE_WORD_WAVE 0x03b0
+#define regSQ_THREAD_TRACE_WORD_WAVE_BASE_IDX 0
+#define regSQ_THREAD_TRACE_WORD_WAVE_START 0x03b0
+#define regSQ_THREAD_TRACE_WORD_WAVE_START_BASE_IDX 0
+#define regSQ_THREAD_TRACE_WORD_INST_PC_2_OF_2 0x03b1
+#define regSQ_THREAD_TRACE_WORD_INST_PC_2_OF_2_BASE_IDX 0
+#define regSQ_THREAD_TRACE_WORD_INST_USERDATA_2_OF_2 0x03b1
+#define regSQ_THREAD_TRACE_WORD_INST_USERDATA_2_OF_2_BASE_IDX 0
+#define regSQ_THREAD_TRACE_WORD_PERF_2_OF_2 0x03b1
+#define regSQ_THREAD_TRACE_WORD_PERF_2_OF_2_BASE_IDX 0
+#define regSQ_THREAD_TRACE_WORD_TIMESTAMP_2_OF_2 0x03b1
+#define regSQ_THREAD_TRACE_WORD_TIMESTAMP_2_OF_2_BASE_IDX 0
+#define regSQ_WREXEC_EXEC_HI 0x03b1
+#define regSQ_WREXEC_EXEC_HI_BASE_IDX 0
+#define regSQ_WREXEC_EXEC_LO 0x03b1
+#define regSQ_WREXEC_EXEC_LO_BASE_IDX 0
+#define regSQ_BUF_RSRC_WORD0 0x03c0
+#define regSQ_BUF_RSRC_WORD0_BASE_IDX 0
+#define regSQ_BUF_RSRC_WORD1 0x03c1
+#define regSQ_BUF_RSRC_WORD1_BASE_IDX 0
+#define regSQ_BUF_RSRC_WORD2 0x03c2
+#define regSQ_BUF_RSRC_WORD2_BASE_IDX 0
+#define regSQ_BUF_RSRC_WORD3 0x03c3
+#define regSQ_BUF_RSRC_WORD3_BASE_IDX 0
+#define regSQ_IMG_RSRC_WORD0 0x03c4
+#define regSQ_IMG_RSRC_WORD0_BASE_IDX 0
+#define regSQ_IMG_RSRC_WORD1 0x03c5
+#define regSQ_IMG_RSRC_WORD1_BASE_IDX 0
+#define regSQ_IMG_RSRC_WORD2 0x03c6
+#define regSQ_IMG_RSRC_WORD2_BASE_IDX 0
+#define regSQ_IMG_RSRC_WORD3 0x03c7
+#define regSQ_IMG_RSRC_WORD3_BASE_IDX 0
+#define regSQ_IMG_RSRC_WORD4 0x03c8
+#define regSQ_IMG_RSRC_WORD4_BASE_IDX 0
+#define regSQ_IMG_RSRC_WORD5 0x03c9
+#define regSQ_IMG_RSRC_WORD5_BASE_IDX 0
+#define regSQ_IMG_RSRC_WORD6 0x03ca
+#define regSQ_IMG_RSRC_WORD6_BASE_IDX 0
+#define regSQ_IMG_RSRC_WORD7 0x03cb
+#define regSQ_IMG_RSRC_WORD7_BASE_IDX 0
+#define regSQ_IMG_SAMP_WORD0 0x03cc
+#define regSQ_IMG_SAMP_WORD0_BASE_IDX 0
+#define regSQ_IMG_SAMP_WORD1 0x03cd
+#define regSQ_IMG_SAMP_WORD1_BASE_IDX 0
+#define regSQ_IMG_SAMP_WORD2 0x03ce
+#define regSQ_IMG_SAMP_WORD2_BASE_IDX 0
+#define regSQ_IMG_SAMP_WORD3 0x03cf
+#define regSQ_IMG_SAMP_WORD3_BASE_IDX 0
+#define regSQ_FLAT_SCRATCH_WORD0 0x03d0
+#define regSQ_FLAT_SCRATCH_WORD0_BASE_IDX 0
+#define regSQ_FLAT_SCRATCH_WORD1 0x03d1
+#define regSQ_FLAT_SCRATCH_WORD1_BASE_IDX 0
+#define regSQ_M0_GPR_IDX_WORD 0x03d2
+#define regSQ_M0_GPR_IDX_WORD_BASE_IDX 0
+#define regSQC_ICACHE_UTCL1_CNTL1 0x03d3
+#define regSQC_ICACHE_UTCL1_CNTL1_BASE_IDX 0
+#define regSQC_ICACHE_UTCL1_CNTL2 0x03d4
+#define regSQC_ICACHE_UTCL1_CNTL2_BASE_IDX 0
+#define regSQC_DCACHE_UTCL1_CNTL1 0x03d5
+#define regSQC_DCACHE_UTCL1_CNTL1_BASE_IDX 0
+#define regSQC_DCACHE_UTCL1_CNTL2 0x03d6
+#define regSQC_DCACHE_UTCL1_CNTL2_BASE_IDX 0
+#define regSQC_ICACHE_UTCL1_STATUS 0x03d7
+#define regSQC_ICACHE_UTCL1_STATUS_BASE_IDX 0
+#define regSQC_DCACHE_UTCL1_STATUS 0x03d8
+#define regSQC_DCACHE_UTCL1_STATUS_BASE_IDX 0
+
+
+// addressBlock: xcd0_gc_shsdec
+// base address: 0x9000
+#define regSX_DEBUG_BUSY 0x0414
+#define regSX_DEBUG_BUSY_BASE_IDX 0
+#define regSX_DEBUG_1 0x0419
+#define regSX_DEBUG_1_BASE_IDX 0
+#define regSPI_PS_MAX_WAVE_ID 0x043a
+#define regSPI_PS_MAX_WAVE_ID_BASE_IDX 0
+#define regSPI_START_PHASE 0x043b
+#define regSPI_START_PHASE_BASE_IDX 0
+#define regSPI_GFX_CNTL 0x043c
+#define regSPI_GFX_CNTL_BASE_IDX 0
+#define regSPI_DEBUG_READ 0x0442
+#define regSPI_DEBUG_READ_BASE_IDX 0
+#define regSPI_DSM_CNTL 0x0443
+#define regSPI_DSM_CNTL_BASE_IDX 0
+#define regSPI_DSM_CNTL2 0x0444
+#define regSPI_DSM_CNTL2_BASE_IDX 0
+#define regSPI_EDC_CNT 0x0445
+#define regSPI_EDC_CNT_BASE_IDX 0
+#define regSPI_DEBUG_BUSY 0x0450
+#define regSPI_DEBUG_BUSY_BASE_IDX 0
+#define regSPI_CONFIG_PS_CU_EN 0x0452
+#define regSPI_CONFIG_PS_CU_EN_BASE_IDX 0
+#define regSPI_WF_LIFETIME_CNTL 0x04aa
+#define regSPI_WF_LIFETIME_CNTL_BASE_IDX 0
+#define regSPI_WF_LIFETIME_LIMIT_0 0x04ab
+#define regSPI_WF_LIFETIME_LIMIT_0_BASE_IDX 0
+#define regSPI_WF_LIFETIME_LIMIT_1 0x04ac
+#define regSPI_WF_LIFETIME_LIMIT_1_BASE_IDX 0
+#define regSPI_WF_LIFETIME_LIMIT_2 0x04ad
+#define regSPI_WF_LIFETIME_LIMIT_2_BASE_IDX 0
+#define regSPI_WF_LIFETIME_LIMIT_3 0x04ae
+#define regSPI_WF_LIFETIME_LIMIT_3_BASE_IDX 0
+#define regSPI_WF_LIFETIME_LIMIT_4 0x04af
+#define regSPI_WF_LIFETIME_LIMIT_4_BASE_IDX 0
+#define regSPI_WF_LIFETIME_LIMIT_5 0x04b0
+#define regSPI_WF_LIFETIME_LIMIT_5_BASE_IDX 0
+#define regSPI_WF_LIFETIME_LIMIT_6 0x04b1
+#define regSPI_WF_LIFETIME_LIMIT_6_BASE_IDX 0
+#define regSPI_WF_LIFETIME_LIMIT_7 0x04b2
+#define regSPI_WF_LIFETIME_LIMIT_7_BASE_IDX 0
+#define regSPI_WF_LIFETIME_LIMIT_8 0x04b3
+#define regSPI_WF_LIFETIME_LIMIT_8_BASE_IDX 0
+#define regSPI_WF_LIFETIME_LIMIT_9 0x04b4
+#define regSPI_WF_LIFETIME_LIMIT_9_BASE_IDX 0
+#define regSPI_WF_LIFETIME_STATUS_0 0x04b5
+#define regSPI_WF_LIFETIME_STATUS_0_BASE_IDX 0
+#define regSPI_WF_LIFETIME_STATUS_1 0x04b6
+#define regSPI_WF_LIFETIME_STATUS_1_BASE_IDX 0
+#define regSPI_WF_LIFETIME_STATUS_2 0x04b7
+#define regSPI_WF_LIFETIME_STATUS_2_BASE_IDX 0
+#define regSPI_WF_LIFETIME_STATUS_3 0x04b8
+#define regSPI_WF_LIFETIME_STATUS_3_BASE_IDX 0
+#define regSPI_WF_LIFETIME_STATUS_4 0x04b9
+#define regSPI_WF_LIFETIME_STATUS_4_BASE_IDX 0
+#define regSPI_WF_LIFETIME_STATUS_5 0x04ba
+#define regSPI_WF_LIFETIME_STATUS_5_BASE_IDX 0
+#define regSPI_WF_LIFETIME_STATUS_6 0x04bb
+#define regSPI_WF_LIFETIME_STATUS_6_BASE_IDX 0
+#define regSPI_WF_LIFETIME_STATUS_7 0x04bc
+#define regSPI_WF_LIFETIME_STATUS_7_BASE_IDX 0
+#define regSPI_WF_LIFETIME_STATUS_8 0x04bd
+#define regSPI_WF_LIFETIME_STATUS_8_BASE_IDX 0
+#define regSPI_WF_LIFETIME_STATUS_9 0x04be
+#define regSPI_WF_LIFETIME_STATUS_9_BASE_IDX 0
+#define regSPI_WF_LIFETIME_STATUS_10 0x04bf
+#define regSPI_WF_LIFETIME_STATUS_10_BASE_IDX 0
+#define regSPI_WF_LIFETIME_STATUS_11 0x04c0
+#define regSPI_WF_LIFETIME_STATUS_11_BASE_IDX 0
+#define regSPI_WF_LIFETIME_STATUS_12 0x04c1
+#define regSPI_WF_LIFETIME_STATUS_12_BASE_IDX 0
+#define regSPI_WF_LIFETIME_STATUS_13 0x04c2
+#define regSPI_WF_LIFETIME_STATUS_13_BASE_IDX 0
+#define regSPI_WF_LIFETIME_STATUS_14 0x04c3
+#define regSPI_WF_LIFETIME_STATUS_14_BASE_IDX 0
+#define regSPI_WF_LIFETIME_STATUS_15 0x04c4
+#define regSPI_WF_LIFETIME_STATUS_15_BASE_IDX 0
+#define regSPI_WF_LIFETIME_STATUS_16 0x04c5
+#define regSPI_WF_LIFETIME_STATUS_16_BASE_IDX 0
+#define regSPI_WF_LIFETIME_STATUS_17 0x04c6
+#define regSPI_WF_LIFETIME_STATUS_17_BASE_IDX 0
+#define regSPI_WF_LIFETIME_STATUS_18 0x04c7
+#define regSPI_WF_LIFETIME_STATUS_18_BASE_IDX 0
+#define regSPI_WF_LIFETIME_STATUS_19 0x04c8
+#define regSPI_WF_LIFETIME_STATUS_19_BASE_IDX 0
+#define regSPI_WF_LIFETIME_STATUS_20 0x04c9
+#define regSPI_WF_LIFETIME_STATUS_20_BASE_IDX 0
+#define regSPI_WF_LIFETIME_DEBUG 0x04ca
+#define regSPI_WF_LIFETIME_DEBUG_BASE_IDX 0
+#define regSPI_LB_CTR_CTRL 0x04d4
+#define regSPI_LB_CTR_CTRL_BASE_IDX 0
+#define regSPI_LB_CU_MASK 0x04d5
+#define regSPI_LB_CU_MASK_BASE_IDX 0
+#define regSPI_LB_DATA_REG 0x04d6
+#define regSPI_LB_DATA_REG_BASE_IDX 0
+#define regSPI_PG_ENABLE_STATIC_CU_MASK 0x04d7
+#define regSPI_PG_ENABLE_STATIC_CU_MASK_BASE_IDX 0
+#define regSPI_GDS_CREDITS 0x04d8
+#define regSPI_GDS_CREDITS_BASE_IDX 0
+#define regSPI_SX_EXPORT_BUFFER_SIZES 0x04d9
+#define regSPI_SX_EXPORT_BUFFER_SIZES_BASE_IDX 0
+#define regSPI_SX_SCOREBOARD_BUFFER_SIZES 0x04da
+#define regSPI_SX_SCOREBOARD_BUFFER_SIZES_BASE_IDX 0
+#define regSPI_CSQ_WF_ACTIVE_STATUS 0x04db
+#define regSPI_CSQ_WF_ACTIVE_STATUS_BASE_IDX 0
+#define regSPI_CSQ_WF_ACTIVE_COUNT_0 0x04dc
+#define regSPI_CSQ_WF_ACTIVE_COUNT_0_BASE_IDX 0
+#define regSPI_CSQ_WF_ACTIVE_COUNT_1 0x04dd
+#define regSPI_CSQ_WF_ACTIVE_COUNT_1_BASE_IDX 0
+#define regSPI_CSQ_WF_ACTIVE_COUNT_2 0x04de
+#define regSPI_CSQ_WF_ACTIVE_COUNT_2_BASE_IDX 0
+#define regSPI_CSQ_WF_ACTIVE_COUNT_3 0x04df
+#define regSPI_CSQ_WF_ACTIVE_COUNT_3_BASE_IDX 0
+#define regSPI_CSQ_WF_ACTIVE_COUNT_4 0x04e0
+#define regSPI_CSQ_WF_ACTIVE_COUNT_4_BASE_IDX 0
+#define regSPI_CSQ_WF_ACTIVE_COUNT_5 0x04e1
+#define regSPI_CSQ_WF_ACTIVE_COUNT_5_BASE_IDX 0
+#define regSPI_CSQ_WF_ACTIVE_COUNT_6 0x04e2
+#define regSPI_CSQ_WF_ACTIVE_COUNT_6_BASE_IDX 0
+#define regSPI_CSQ_WF_ACTIVE_COUNT_7 0x04e3
+#define regSPI_CSQ_WF_ACTIVE_COUNT_7_BASE_IDX 0
+#define regSPI_LB_DATA_WAVES 0x04e4
+#define regSPI_LB_DATA_WAVES_BASE_IDX 0
+#define regSPI_LB_DATA_PERCU_WAVE_HSGS 0x04e5
+#define regSPI_LB_DATA_PERCU_WAVE_HSGS_BASE_IDX 0
+#define regSPI_LB_DATA_PERCU_WAVE_VSPS 0x04e6
+#define regSPI_LB_DATA_PERCU_WAVE_VSPS_BASE_IDX 0
+#define regSPI_LB_DATA_PERCU_WAVE_CS 0x04e7
+#define regSPI_LB_DATA_PERCU_WAVE_CS_BASE_IDX 0
+#define regSPIS_DEBUG_READ 0x04ea
+#define regSPIS_DEBUG_READ_BASE_IDX 0
+#define regBCI_DEBUG_READ 0x04eb
+#define regBCI_DEBUG_READ_BASE_IDX 0
+#define regSPI_P0_TRAP_SCREEN_PSBA_LO 0x04ec
+#define regSPI_P0_TRAP_SCREEN_PSBA_LO_BASE_IDX 0
+#define regSPI_P0_TRAP_SCREEN_PSBA_HI 0x04ed
+#define regSPI_P0_TRAP_SCREEN_PSBA_HI_BASE_IDX 0
+#define regSPI_P0_TRAP_SCREEN_PSMA_LO 0x04ee
+#define regSPI_P0_TRAP_SCREEN_PSMA_LO_BASE_IDX 0
+#define regSPI_P0_TRAP_SCREEN_PSMA_HI 0x04ef
+#define regSPI_P0_TRAP_SCREEN_PSMA_HI_BASE_IDX 0
+#define regSPI_P0_TRAP_SCREEN_GPR_MIN 0x04f0
+#define regSPI_P0_TRAP_SCREEN_GPR_MIN_BASE_IDX 0
+#define regSPI_P1_TRAP_SCREEN_PSBA_LO 0x04f1
+#define regSPI_P1_TRAP_SCREEN_PSBA_LO_BASE_IDX 0
+#define regSPI_P1_TRAP_SCREEN_PSBA_HI 0x04f2
+#define regSPI_P1_TRAP_SCREEN_PSBA_HI_BASE_IDX 0
+#define regSPI_P1_TRAP_SCREEN_PSMA_LO 0x04f3
+#define regSPI_P1_TRAP_SCREEN_PSMA_LO_BASE_IDX 0
+#define regSPI_P1_TRAP_SCREEN_PSMA_HI 0x04f4
+#define regSPI_P1_TRAP_SCREEN_PSMA_HI_BASE_IDX 0
+#define regSPI_P1_TRAP_SCREEN_GPR_MIN 0x04f5
+#define regSPI_P1_TRAP_SCREEN_GPR_MIN_BASE_IDX 0
+
+
+// addressBlock: xcd0_gc_tpdec
+// base address: 0x9400
+#define regTD_CNTL 0x0525
+#define regTD_CNTL_BASE_IDX 0
+#define regTD_STATUS 0x0526
+#define regTD_STATUS_BASE_IDX 0
+#define regTD_POWER_CNTL 0x052a
+#define regTD_POWER_CNTL_BASE_IDX 0
+#define regTD_DSM_CNTL 0x052f
+#define regTD_DSM_CNTL_BASE_IDX 0
+#define regTD_DSM_CNTL2 0x0530
+#define regTD_DSM_CNTL2_BASE_IDX 0
+#define regTD_SCRATCH 0x0533
+#define regTD_SCRATCH_BASE_IDX 0
+#define regTA_POWER_CNTL 0x0540
+#define regTA_POWER_CNTL_BASE_IDX 0
+#define regTA_CNTL 0x0541
+#define regTA_CNTL_BASE_IDX 0
+#define regTA_CNTL_AUX 0x0542
+#define regTA_CNTL_AUX_BASE_IDX 0
+#define regTA_FEATURE_CNTL 0x0543
+#define regTA_FEATURE_CNTL_BASE_IDX 0
+#define regTA_STATUS 0x0548
+#define regTA_STATUS_BASE_IDX 0
+#define regTA_SCRATCH 0x0564
+#define regTA_SCRATCH_BASE_IDX 0
+#define regTA_DSM_CNTL 0x0584
+#define regTA_DSM_CNTL_BASE_IDX 0
+#define regTA_DSM_CNTL2 0x0585
+#define regTA_DSM_CNTL2_BASE_IDX 0
+
+
+// addressBlock: xcd0_gc_gdsdec
+// base address: 0x9700
+#define regGDS_CONFIG 0x05c0
+#define regGDS_CONFIG_BASE_IDX 0
+#define regGDS_CNTL_STATUS 0x05c1
+#define regGDS_CNTL_STATUS_BASE_IDX 0
+#define regGDS_ENHANCE2 0x05c2
+#define regGDS_ENHANCE2_BASE_IDX 0
+#define regGDS_PROTECTION_FAULT 0x05c3
+#define regGDS_PROTECTION_FAULT_BASE_IDX 0
+#define regGDS_VM_PROTECTION_FAULT 0x05c4
+#define regGDS_VM_PROTECTION_FAULT_BASE_IDX 0
+#define regGDS_EDC_CNT 0x05c5
+#define regGDS_EDC_CNT_BASE_IDX 0
+#define regGDS_EDC_GRBM_CNT 0x05c6
+#define regGDS_EDC_GRBM_CNT_BASE_IDX 0
+#define regGDS_EDC_OA_DED 0x05c7
+#define regGDS_EDC_OA_DED_BASE_IDX 0
+#define regGDS_DSM_CNTL 0x05ca
+#define regGDS_DSM_CNTL_BASE_IDX 0
+#define regGDS_EDC_OA_PHY_CNT 0x05cb
+#define regGDS_EDC_OA_PHY_CNT_BASE_IDX 0
+#define regGDS_EDC_OA_PIPE_CNT 0x05cc
+#define regGDS_EDC_OA_PIPE_CNT_BASE_IDX 0
+#define regGDS_DSM_CNTL2 0x05cd
+#define regGDS_DSM_CNTL2_BASE_IDX 0
+#define regGDS_WD_GDS_CSB 0x05ce
+#define regGDS_WD_GDS_CSB_BASE_IDX 0
+
+
+// addressBlock: xcd0_gc_rbdec
+// base address: 0x9800
+#define regDB_DEBUG 0x060c
+#define regDB_DEBUG_BASE_IDX 0
+#define regDB_DEBUG2 0x060d
+#define regDB_DEBUG2_BASE_IDX 0
+#define regDB_DEBUG3 0x060e
+#define regDB_DEBUG3_BASE_IDX 0
+#define regDB_DEBUG4 0x060f
+#define regDB_DEBUG4_BASE_IDX 0
+#define regDB_CREDIT_LIMIT 0x0614
+#define regDB_CREDIT_LIMIT_BASE_IDX 0
+#define regDB_WATERMARKS 0x0615
+#define regDB_WATERMARKS_BASE_IDX 0
+#define regDB_SUBTILE_CONTROL 0x0616
+#define regDB_SUBTILE_CONTROL_BASE_IDX 0
+#define regDB_FREE_CACHELINES 0x0617
+#define regDB_FREE_CACHELINES_BASE_IDX 0
+#define regDB_FIFO_DEPTH1 0x0618
+#define regDB_FIFO_DEPTH1_BASE_IDX 0
+#define regDB_FIFO_DEPTH2 0x0619
+#define regDB_FIFO_DEPTH2_BASE_IDX 0
+#define regDB_EXCEPTION_CONTROL 0x061a
+#define regDB_EXCEPTION_CONTROL_BASE_IDX 0
+#define regDB_RING_CONTROL 0x061b
+#define regDB_RING_CONTROL_BASE_IDX 0
+#define regDB_MEM_ARB_WATERMARKS 0x061c
+#define regDB_MEM_ARB_WATERMARKS_BASE_IDX 0
+#define regDB_RMI_CACHE_POLICY 0x061e
+#define regDB_RMI_CACHE_POLICY_BASE_IDX 0
+#define regDB_DFSM_CONFIG 0x0630
+#define regDB_DFSM_CONFIG_BASE_IDX 0
+#define regDB_DFSM_WATERMARK 0x0631
+#define regDB_DFSM_WATERMARK_BASE_IDX 0
+#define regDB_DFSM_TILES_IN_FLIGHT 0x0632
+#define regDB_DFSM_TILES_IN_FLIGHT_BASE_IDX 0
+#define regDB_DFSM_PRIMS_IN_FLIGHT 0x0633
+#define regDB_DFSM_PRIMS_IN_FLIGHT_BASE_IDX 0
+#define regDB_DFSM_WATCHDOG 0x0634
+#define regDB_DFSM_WATCHDOG_BASE_IDX 0
+#define regDB_DFSM_FLUSH_ENABLE 0x0635
+#define regDB_DFSM_FLUSH_ENABLE_BASE_IDX 0
+#define regDB_DFSM_FLUSH_AUX_EVENT 0x0636
+#define regDB_DFSM_FLUSH_AUX_EVENT_BASE_IDX 0
+#define regCC_RB_REDUNDANCY 0x063c
+#define regCC_RB_REDUNDANCY_BASE_IDX 0
+#define regCC_RB_BACKEND_DISABLE 0x063d
+#define regCC_RB_BACKEND_DISABLE_BASE_IDX 0
+#define regGB_ADDR_CONFIG 0x063e
+#define regGB_ADDR_CONFIG_BASE_IDX 0
+#define regGB_BACKEND_MAP 0x063f
+#define regGB_BACKEND_MAP_BASE_IDX 0
+#define regGB_GPU_ID 0x0640
+#define regGB_GPU_ID_BASE_IDX 0
+#define regCC_RB_DAISY_CHAIN 0x0641
+#define regCC_RB_DAISY_CHAIN_BASE_IDX 0
+#define regGB_ADDR_CONFIG_READ 0x0642
+#define regGB_ADDR_CONFIG_READ_BASE_IDX 0
+#define regGB_TILE_MODE0 0x0644
+#define regGB_TILE_MODE0_BASE_IDX 0
+#define regGB_TILE_MODE1 0x0645
+#define regGB_TILE_MODE1_BASE_IDX 0
+#define regGB_TILE_MODE2 0x0646
+#define regGB_TILE_MODE2_BASE_IDX 0
+#define regGB_TILE_MODE3 0x0647
+#define regGB_TILE_MODE3_BASE_IDX 0
+#define regGB_TILE_MODE4 0x0648
+#define regGB_TILE_MODE4_BASE_IDX 0
+#define regGB_TILE_MODE5 0x0649
+#define regGB_TILE_MODE5_BASE_IDX 0
+#define regGB_TILE_MODE6 0x064a
+#define regGB_TILE_MODE6_BASE_IDX 0
+#define regGB_TILE_MODE7 0x064b
+#define regGB_TILE_MODE7_BASE_IDX 0
+#define regGB_TILE_MODE8 0x064c
+#define regGB_TILE_MODE8_BASE_IDX 0
+#define regGB_TILE_MODE9 0x064d
+#define regGB_TILE_MODE9_BASE_IDX 0
+#define regGB_TILE_MODE10 0x064e
+#define regGB_TILE_MODE10_BASE_IDX 0
+#define regGB_TILE_MODE11 0x064f
+#define regGB_TILE_MODE11_BASE_IDX 0
+#define regGB_TILE_MODE12 0x0650
+#define regGB_TILE_MODE12_BASE_IDX 0
+#define regGB_TILE_MODE13 0x0651
+#define regGB_TILE_MODE13_BASE_IDX 0
+#define regGB_TILE_MODE14 0x0652
+#define regGB_TILE_MODE14_BASE_IDX 0
+#define regGB_TILE_MODE15 0x0653
+#define regGB_TILE_MODE15_BASE_IDX 0
+#define regGB_TILE_MODE16 0x0654
+#define regGB_TILE_MODE16_BASE_IDX 0
+#define regGB_TILE_MODE17 0x0655
+#define regGB_TILE_MODE17_BASE_IDX 0
+#define regGB_TILE_MODE18 0x0656
+#define regGB_TILE_MODE18_BASE_IDX 0
+#define regGB_TILE_MODE19 0x0657
+#define regGB_TILE_MODE19_BASE_IDX 0
+#define regGB_TILE_MODE20 0x0658
+#define regGB_TILE_MODE20_BASE_IDX 0
+#define regGB_TILE_MODE21 0x0659
+#define regGB_TILE_MODE21_BASE_IDX 0
+#define regGB_TILE_MODE22 0x065a
+#define regGB_TILE_MODE22_BASE_IDX 0
+#define regGB_TILE_MODE23 0x065b
+#define regGB_TILE_MODE23_BASE_IDX 0
+#define regGB_TILE_MODE24 0x065c
+#define regGB_TILE_MODE24_BASE_IDX 0
+#define regGB_TILE_MODE25 0x065d
+#define regGB_TILE_MODE25_BASE_IDX 0
+#define regGB_TILE_MODE26 0x065e
+#define regGB_TILE_MODE26_BASE_IDX 0
+#define regGB_TILE_MODE27 0x065f
+#define regGB_TILE_MODE27_BASE_IDX 0
+#define regGB_TILE_MODE28 0x0660
+#define regGB_TILE_MODE28_BASE_IDX 0
+#define regGB_TILE_MODE29 0x0661
+#define regGB_TILE_MODE29_BASE_IDX 0
+#define regGB_TILE_MODE30 0x0662
+#define regGB_TILE_MODE30_BASE_IDX 0
+#define regGB_TILE_MODE31 0x0663
+#define regGB_TILE_MODE31_BASE_IDX 0
+#define regGB_MACROTILE_MODE0 0x0664
+#define regGB_MACROTILE_MODE0_BASE_IDX 0
+#define regGB_MACROTILE_MODE1 0x0665
+#define regGB_MACROTILE_MODE1_BASE_IDX 0
+#define regGB_MACROTILE_MODE2 0x0666
+#define regGB_MACROTILE_MODE2_BASE_IDX 0
+#define regGB_MACROTILE_MODE3 0x0667
+#define regGB_MACROTILE_MODE3_BASE_IDX 0
+#define regGB_MACROTILE_MODE4 0x0668
+#define regGB_MACROTILE_MODE4_BASE_IDX 0
+#define regGB_MACROTILE_MODE5 0x0669
+#define regGB_MACROTILE_MODE5_BASE_IDX 0
+#define regGB_MACROTILE_MODE6 0x066a
+#define regGB_MACROTILE_MODE6_BASE_IDX 0
+#define regGB_MACROTILE_MODE7 0x066b
+#define regGB_MACROTILE_MODE7_BASE_IDX 0
+#define regGB_MACROTILE_MODE8 0x066c
+#define regGB_MACROTILE_MODE8_BASE_IDX 0
+#define regGB_MACROTILE_MODE9 0x066d
+#define regGB_MACROTILE_MODE9_BASE_IDX 0
+#define regGB_MACROTILE_MODE10 0x066e
+#define regGB_MACROTILE_MODE10_BASE_IDX 0
+#define regGB_MACROTILE_MODE11 0x066f
+#define regGB_MACROTILE_MODE11_BASE_IDX 0
+#define regGB_MACROTILE_MODE12 0x0670
+#define regGB_MACROTILE_MODE12_BASE_IDX 0
+#define regGB_MACROTILE_MODE13 0x0671
+#define regGB_MACROTILE_MODE13_BASE_IDX 0
+#define regGB_MACROTILE_MODE14 0x0672
+#define regGB_MACROTILE_MODE14_BASE_IDX 0
+#define regGB_MACROTILE_MODE15 0x0673
+#define regGB_MACROTILE_MODE15_BASE_IDX 0
+#define regCB_HW_CONTROL 0x0680
+#define regCB_HW_CONTROL_BASE_IDX 0
+#define regCB_HW_CONTROL_1 0x0681
+#define regCB_HW_CONTROL_1_BASE_IDX 0
+#define regCB_HW_CONTROL_2 0x0682
+#define regCB_HW_CONTROL_2_BASE_IDX 0
+#define regCB_HW_CONTROL_3 0x0683
+#define regCB_HW_CONTROL_3_BASE_IDX 0
+#define regCB_HW_MEM_ARBITER_RD 0x0686
+#define regCB_HW_MEM_ARBITER_RD_BASE_IDX 0
+#define regCB_HW_MEM_ARBITER_WR 0x0687
+#define regCB_HW_MEM_ARBITER_WR_BASE_IDX 0
+#define regCB_DCC_CONFIG 0x0688
+#define regCB_DCC_CONFIG_BASE_IDX 0
+#define regGC_USER_RB_REDUNDANCY 0x06de
+#define regGC_USER_RB_REDUNDANCY_BASE_IDX 0
+#define regGC_USER_RB_BACKEND_DISABLE 0x06df
+#define regGC_USER_RB_BACKEND_DISABLE_BASE_IDX 0
+
+
+// addressBlock: xcd0_gc_ea_gceadec
+// base address: 0xa800
+#define regGCEA_DRAM_RD_CLI2GRP_MAP0 0x0a00
+#define regGCEA_DRAM_RD_CLI2GRP_MAP0_BASE_IDX 0
+#define regGCEA_DRAM_RD_CLI2GRP_MAP1 0x0a01
+#define regGCEA_DRAM_RD_CLI2GRP_MAP1_BASE_IDX 0
+#define regGCEA_DRAM_WR_CLI2GRP_MAP0 0x0a02
+#define regGCEA_DRAM_WR_CLI2GRP_MAP0_BASE_IDX 0
+#define regGCEA_DRAM_WR_CLI2GRP_MAP1 0x0a03
+#define regGCEA_DRAM_WR_CLI2GRP_MAP1_BASE_IDX 0
+#define regGCEA_DRAM_RD_GRP2VC_MAP 0x0a04
+#define regGCEA_DRAM_RD_GRP2VC_MAP_BASE_IDX 0
+#define regGCEA_DRAM_WR_GRP2VC_MAP 0x0a05
+#define regGCEA_DRAM_WR_GRP2VC_MAP_BASE_IDX 0
+#define regGCEA_DRAM_RD_LAZY 0x0a06
+#define regGCEA_DRAM_RD_LAZY_BASE_IDX 0
+#define regGCEA_DRAM_WR_LAZY 0x0a07
+#define regGCEA_DRAM_WR_LAZY_BASE_IDX 0
+#define regGCEA_DRAM_RD_CAM_CNTL 0x0a08
+#define regGCEA_DRAM_RD_CAM_CNTL_BASE_IDX 0
+#define regGCEA_DRAM_WR_CAM_CNTL 0x0a09
+#define regGCEA_DRAM_WR_CAM_CNTL_BASE_IDX 0
+#define regGCEA_DRAM_PAGE_BURST 0x0a0a
+#define regGCEA_DRAM_PAGE_BURST_BASE_IDX 0
+#define regGCEA_DRAM_RD_PRI_AGE 0x0a0b
+#define regGCEA_DRAM_RD_PRI_AGE_BASE_IDX 0
+#define regGCEA_DRAM_WR_PRI_AGE 0x0a0c
+#define regGCEA_DRAM_WR_PRI_AGE_BASE_IDX 0
+#define regGCEA_DRAM_RD_PRI_QUEUING 0x0a0d
+#define regGCEA_DRAM_RD_PRI_QUEUING_BASE_IDX 0
+#define regGCEA_DRAM_WR_PRI_QUEUING 0x0a0e
+#define regGCEA_DRAM_WR_PRI_QUEUING_BASE_IDX 0
+#define regGCEA_DRAM_RD_PRI_FIXED 0x0a0f
+#define regGCEA_DRAM_RD_PRI_FIXED_BASE_IDX 0
+#define regGCEA_DRAM_WR_PRI_FIXED 0x0a10
+#define regGCEA_DRAM_WR_PRI_FIXED_BASE_IDX 0
+#define regGCEA_DRAM_RD_PRI_URGENCY 0x0a11
+#define regGCEA_DRAM_RD_PRI_URGENCY_BASE_IDX 0
+#define regGCEA_DRAM_WR_PRI_URGENCY 0x0a12
+#define regGCEA_DRAM_WR_PRI_URGENCY_BASE_IDX 0
+#define regGCEA_DRAM_RD_PRI_QUANT_PRI1 0x0a13
+#define regGCEA_DRAM_RD_PRI_QUANT_PRI1_BASE_IDX 0
+#define regGCEA_DRAM_RD_PRI_QUANT_PRI2 0x0a14
+#define regGCEA_DRAM_RD_PRI_QUANT_PRI2_BASE_IDX 0
+#define regGCEA_DRAM_RD_PRI_QUANT_PRI3 0x0a15
+#define regGCEA_DRAM_RD_PRI_QUANT_PRI3_BASE_IDX 0
+#define regGCEA_DRAM_WR_PRI_QUANT_PRI1 0x0a16
+#define regGCEA_DRAM_WR_PRI_QUANT_PRI1_BASE_IDX 0
+#define regGCEA_DRAM_WR_PRI_QUANT_PRI2 0x0a17
+#define regGCEA_DRAM_WR_PRI_QUANT_PRI2_BASE_IDX 0
+#define regGCEA_DRAM_WR_PRI_QUANT_PRI3 0x0a18
+#define regGCEA_DRAM_WR_PRI_QUANT_PRI3_BASE_IDX 0
+#define regGCEA_IO_RD_CLI2GRP_MAP0 0x0ad5
+#define regGCEA_IO_RD_CLI2GRP_MAP0_BASE_IDX 0
+#define regGCEA_IO_RD_CLI2GRP_MAP1 0x0ad6
+#define regGCEA_IO_RD_CLI2GRP_MAP1_BASE_IDX 0
+#define regGCEA_IO_WR_CLI2GRP_MAP0 0x0ad7
+#define regGCEA_IO_WR_CLI2GRP_MAP0_BASE_IDX 0
+#define regGCEA_IO_WR_CLI2GRP_MAP1 0x0ad8
+#define regGCEA_IO_WR_CLI2GRP_MAP1_BASE_IDX 0
+#define regGCEA_IO_RD_COMBINE_FLUSH 0x0ad9
+#define regGCEA_IO_RD_COMBINE_FLUSH_BASE_IDX 0
+#define regGCEA_IO_WR_COMBINE_FLUSH 0x0ada
+#define regGCEA_IO_WR_COMBINE_FLUSH_BASE_IDX 0
+#define regGCEA_IO_GROUP_BURST 0x0adb
+#define regGCEA_IO_GROUP_BURST_BASE_IDX 0
+#define regGCEA_IO_RD_PRI_AGE 0x0adc
+#define regGCEA_IO_RD_PRI_AGE_BASE_IDX 0
+#define regGCEA_IO_WR_PRI_AGE 0x0add
+#define regGCEA_IO_WR_PRI_AGE_BASE_IDX 0
+#define regGCEA_IO_RD_PRI_QUEUING 0x0ade
+#define regGCEA_IO_RD_PRI_QUEUING_BASE_IDX 0
+#define regGCEA_IO_WR_PRI_QUEUING 0x0adf
+#define regGCEA_IO_WR_PRI_QUEUING_BASE_IDX 0
+#define regGCEA_IO_RD_PRI_FIXED 0x0ae0
+#define regGCEA_IO_RD_PRI_FIXED_BASE_IDX 0
+#define regGCEA_IO_WR_PRI_FIXED 0x0ae1
+#define regGCEA_IO_WR_PRI_FIXED_BASE_IDX 0
+#define regGCEA_IO_RD_PRI_URGENCY 0x0ae2
+#define regGCEA_IO_RD_PRI_URGENCY_BASE_IDX 0
+#define regGCEA_IO_WR_PRI_URGENCY 0x0ae3
+#define regGCEA_IO_WR_PRI_URGENCY_BASE_IDX 0
+#define regGCEA_IO_RD_PRI_URGENCY_MASKING 0x0ae4
+#define regGCEA_IO_RD_PRI_URGENCY_MASKING_BASE_IDX 0
+#define regGCEA_IO_WR_PRI_URGENCY_MASKING 0x0ae5
+#define regGCEA_IO_WR_PRI_URGENCY_MASKING_BASE_IDX 0
+#define regGCEA_IO_RD_PRI_QUANT_PRI1 0x0ae6
+#define regGCEA_IO_RD_PRI_QUANT_PRI1_BASE_IDX 0
+#define regGCEA_IO_RD_PRI_QUANT_PRI2 0x0ae7
+#define regGCEA_IO_RD_PRI_QUANT_PRI2_BASE_IDX 0
+#define regGCEA_IO_RD_PRI_QUANT_PRI3 0x0ae8
+#define regGCEA_IO_RD_PRI_QUANT_PRI3_BASE_IDX 0
+#define regGCEA_IO_WR_PRI_QUANT_PRI1 0x0ae9
+#define regGCEA_IO_WR_PRI_QUANT_PRI1_BASE_IDX 0
+#define regGCEA_IO_WR_PRI_QUANT_PRI2 0x0aea
+#define regGCEA_IO_WR_PRI_QUANT_PRI2_BASE_IDX 0
+#define regGCEA_IO_WR_PRI_QUANT_PRI3 0x0aeb
+#define regGCEA_IO_WR_PRI_QUANT_PRI3_BASE_IDX 0
+#define regGCEA_SDP_ARB_DRAM 0x0aec
+#define regGCEA_SDP_ARB_DRAM_BASE_IDX 0
+#define regGCEA_SDP_ARB_FINAL 0x0aee
+#define regGCEA_SDP_ARB_FINAL_BASE_IDX 0
+#define regGCEA_SDP_DRAM_PRIORITY 0x0aef
+#define regGCEA_SDP_DRAM_PRIORITY_BASE_IDX 0
+#define regGCEA_SDP_IO_PRIORITY 0x0af1
+#define regGCEA_SDP_IO_PRIORITY_BASE_IDX 0
+#define regGCEA_SDP_CREDITS 0x0af2
+#define regGCEA_SDP_CREDITS_BASE_IDX 0
+#define regGCEA_SDP_TAG_RESERVE0 0x0af3
+#define regGCEA_SDP_TAG_RESERVE0_BASE_IDX 0
+#define regGCEA_SDP_TAG_RESERVE1 0x0af4
+#define regGCEA_SDP_TAG_RESERVE1_BASE_IDX 0
+#define regGCEA_SDP_VCC_RESERVE0 0x0af5
+#define regGCEA_SDP_VCC_RESERVE0_BASE_IDX 0
+#define regGCEA_SDP_VCC_RESERVE1 0x0af6
+#define regGCEA_SDP_VCC_RESERVE1_BASE_IDX 0
+#define regGCEA_SDP_VCD_RESERVE0 0x0af7
+#define regGCEA_SDP_VCD_RESERVE0_BASE_IDX 0
+#define regGCEA_SDP_VCD_RESERVE1 0x0af8
+#define regGCEA_SDP_VCD_RESERVE1_BASE_IDX 0
+#define regGCEA_SDP_REQ_CNTL 0x0af9
+#define regGCEA_SDP_REQ_CNTL_BASE_IDX 0
+#define regGCEA_MISC 0x0afa
+#define regGCEA_MISC_BASE_IDX 0
+#define regGCEA_LATENCY_SAMPLING 0x0afb
+#define regGCEA_LATENCY_SAMPLING_BASE_IDX 0
+#define regGCEA_PERFCOUNTER_LO 0x0afc
+#define regGCEA_PERFCOUNTER_LO_BASE_IDX 0
+#define regGCEA_PERFCOUNTER_HI 0x0afd
+#define regGCEA_PERFCOUNTER_HI_BASE_IDX 0
+#define regGCEA_PERFCOUNTER0_CFG 0x0afe
+#define regGCEA_PERFCOUNTER0_CFG_BASE_IDX 0
+#define regGCEA_PERFCOUNTER1_CFG 0x0aff
+#define regGCEA_PERFCOUNTER1_CFG_BASE_IDX 0
+
+
+// addressBlock: xcd0_gc_ea_gceadec2
+// base address: 0x9c00
+#define regGCEA_PERFCOUNTER_RSLT_CNTL 0x0700
+#define regGCEA_PERFCOUNTER_RSLT_CNTL_BASE_IDX 0
+#define regGCEA_MAM_CTRL 0x0701
+#define regGCEA_MAM_CTRL_BASE_IDX 0
+#define regGCEA_MAM_CTRL2 0x0702
+#define regGCEA_MAM_CTRL2_BASE_IDX 0
+#define regGCEA_DSM_CNTL 0x0708
+#define regGCEA_DSM_CNTL_BASE_IDX 0
+#define regGCEA_DSM_CNTLA 0x0709
+#define regGCEA_DSM_CNTLA_BASE_IDX 0
+#define regGCEA_DSM_CNTLB 0x070a
+#define regGCEA_DSM_CNTLB_BASE_IDX 0
+#define regGCEA_DSM_CNTL2 0x070b
+#define regGCEA_DSM_CNTL2_BASE_IDX 0
+#define regGCEA_DSM_CNTL2A 0x070c
+#define regGCEA_DSM_CNTL2A_BASE_IDX 0
+#define regGCEA_DSM_CNTL2B 0x070d
+#define regGCEA_DSM_CNTL2B_BASE_IDX 0
+#define regGCEA_TCC_XBR_CREDITS 0x070e
+#define regGCEA_TCC_XBR_CREDITS_BASE_IDX 0
+#define regGCEA_TCC_XBR_MAXBURST 0x070f
+#define regGCEA_TCC_XBR_MAXBURST_BASE_IDX 0
+#define regGCEA_PROBE_CNTL 0x0710
+#define regGCEA_PROBE_CNTL_BASE_IDX 0
+#define regGCEA_PROBE_MAP 0x0711
+#define regGCEA_PROBE_MAP_BASE_IDX 0
+#define regGCEA_ERR_STATUS 0x0712
+#define regGCEA_ERR_STATUS_BASE_IDX 0
+#define regGCEA_MISC2 0x0713
+#define regGCEA_MISC2_BASE_IDX 0
+#define regGCEA_SDP_BACKDOOR_CMDCREDITS0 0x0715
+#define regGCEA_SDP_BACKDOOR_CMDCREDITS0_BASE_IDX 0
+#define regGCEA_SDP_BACKDOOR_CMDCREDITS1 0x0716
+#define regGCEA_SDP_BACKDOOR_CMDCREDITS1_BASE_IDX 0
+#define regGCEA_SDP_BACKDOOR_DATACREDITS0 0x0717
+#define regGCEA_SDP_BACKDOOR_DATACREDITS0_BASE_IDX 0
+#define regGCEA_SDP_BACKDOOR_DATACREDITS1 0x0718
+#define regGCEA_SDP_BACKDOOR_DATACREDITS1_BASE_IDX 0
+#define regGCEA_SDP_BACKDOOR_MISCCREDITS 0x0719
+#define regGCEA_SDP_BACKDOOR_MISCCREDITS_BASE_IDX 0
+#define regGCEA_SDP_ENABLE 0x071f
+#define regGCEA_SDP_ENABLE_BASE_IDX 0
+
+
+// addressBlock: xcd0_gc_ea_pwrdec
+// base address: 0x3c000
+#define regGCEA_ICG_CTRL 0x50c4
+#define regGCEA_ICG_CTRL_BASE_IDX 1
+
+
+// addressBlock: xcd0_gc_rmi_rmidec
+// base address: 0x9e00
+#define regRMI_GENERAL_CNTL 0x0780
+#define regRMI_GENERAL_CNTL_BASE_IDX 0
+#define regRMI_GENERAL_CNTL1 0x0781
+#define regRMI_GENERAL_CNTL1_BASE_IDX 0
+#define regRMI_GENERAL_STATUS 0x0782
+#define regRMI_GENERAL_STATUS_BASE_IDX 0
+#define regRMI_SUBBLOCK_STATUS0 0x0783
+#define regRMI_SUBBLOCK_STATUS0_BASE_IDX 0
+#define regRMI_SUBBLOCK_STATUS1 0x0784
+#define regRMI_SUBBLOCK_STATUS1_BASE_IDX 0
+#define regRMI_SUBBLOCK_STATUS2 0x0785
+#define regRMI_SUBBLOCK_STATUS2_BASE_IDX 0
+#define regRMI_SUBBLOCK_STATUS3 0x0786
+#define regRMI_SUBBLOCK_STATUS3_BASE_IDX 0
+#define regRMI_XBAR_CONFIG 0x0787
+#define regRMI_XBAR_CONFIG_BASE_IDX 0
+#define regRMI_PROBE_POP_LOGIC_CNTL 0x0788
+#define regRMI_PROBE_POP_LOGIC_CNTL_BASE_IDX 0
+#define regRMI_UTC_XNACK_N_MISC_CNTL 0x0789
+#define regRMI_UTC_XNACK_N_MISC_CNTL_BASE_IDX 0
+#define regRMI_DEMUX_CNTL 0x078a
+#define regRMI_DEMUX_CNTL_BASE_IDX 0
+#define regRMI_UTCL1_CNTL1 0x078b
+#define regRMI_UTCL1_CNTL1_BASE_IDX 0
+#define regRMI_UTCL1_CNTL2 0x078c
+#define regRMI_UTCL1_CNTL2_BASE_IDX 0
+#define regRMI_UTC_UNIT_CONFIG 0x078d
+#define regRMI_UTC_UNIT_CONFIG_BASE_IDX 0
+#define regRMI_TCIW_FORMATTER0_CNTL 0x078e
+#define regRMI_TCIW_FORMATTER0_CNTL_BASE_IDX 0
+#define regRMI_TCIW_FORMATTER1_CNTL 0x078f
+#define regRMI_TCIW_FORMATTER1_CNTL_BASE_IDX 0
+#define regRMI_SCOREBOARD_CNTL 0x0790
+#define regRMI_SCOREBOARD_CNTL_BASE_IDX 0
+#define regRMI_SCOREBOARD_STATUS0 0x0791
+#define regRMI_SCOREBOARD_STATUS0_BASE_IDX 0
+#define regRMI_SCOREBOARD_STATUS1 0x0792
+#define regRMI_SCOREBOARD_STATUS1_BASE_IDX 0
+#define regRMI_SCOREBOARD_STATUS2 0x0793
+#define regRMI_SCOREBOARD_STATUS2_BASE_IDX 0
+#define regRMI_XBAR_ARBITER_CONFIG 0x0794
+#define regRMI_XBAR_ARBITER_CONFIG_BASE_IDX 0
+#define regRMI_XBAR_ARBITER_CONFIG_1 0x0795
+#define regRMI_XBAR_ARBITER_CONFIG_1_BASE_IDX 0
+#define regRMI_CLOCK_CNTRL 0x0796
+#define regRMI_CLOCK_CNTRL_BASE_IDX 0
+#define regRMI_UTCL1_STATUS 0x0797
+#define regRMI_UTCL1_STATUS_BASE_IDX 0
+#define regRMI_XNACK_DEBUG 0x079d
+#define regRMI_XNACK_DEBUG_BASE_IDX 0
+#define regRMI_SPARE 0x079e
+#define regRMI_SPARE_BASE_IDX 0
+#define regRMI_SPARE_1 0x079f
+#define regRMI_SPARE_1_BASE_IDX 0
+#define regRMI_SPARE_2 0x07a0
+#define regRMI_SPARE_2_BASE_IDX 0
+
+
+// addressBlock: xcd0_gc_utcl2_atcl2dec
+// base address: 0xa000
+#define regATC_L2_CNTL 0x0800
+#define regATC_L2_CNTL_BASE_IDX 0
+#define regATC_L2_CNTL2 0x0801
+#define regATC_L2_CNTL2_BASE_IDX 0
+#define regATC_L2_CACHE_DATA0 0x0804
+#define regATC_L2_CACHE_DATA0_BASE_IDX 0
+#define regATC_L2_CACHE_DATA1 0x0805
+#define regATC_L2_CACHE_DATA1_BASE_IDX 0
+#define regATC_L2_CACHE_DATA2 0x0806
+#define regATC_L2_CACHE_DATA2_BASE_IDX 0
+#define regATC_L2_CACHE_DATA3 0x0807
+#define regATC_L2_CACHE_DATA3_BASE_IDX 0
+#define regATC_L2_CNTL3 0x0808
+#define regATC_L2_CNTL3_BASE_IDX 0
+#define regATC_L2_STATUS 0x0809
+#define regATC_L2_STATUS_BASE_IDX 0
+#define regATC_L2_STATUS2 0x080a
+#define regATC_L2_STATUS2_BASE_IDX 0
+#define regATC_L2_MISC_CG 0x080b
+#define regATC_L2_MISC_CG_BASE_IDX 0
+#define regATC_L2_MEM_POWER_LS 0x080c
+#define regATC_L2_MEM_POWER_LS_BASE_IDX 0
+#define regATC_L2_CGTT_CLK_CTRL 0x080d
+#define regATC_L2_CGTT_CLK_CTRL_BASE_IDX 0
+#define regATC_L2_CACHE_4K_DSM_INDEX 0x080f
+#define regATC_L2_CACHE_4K_DSM_INDEX_BASE_IDX 0
+#define regATC_L2_CACHE_32K_DSM_INDEX 0x0810
+#define regATC_L2_CACHE_32K_DSM_INDEX_BASE_IDX 0
+#define regATC_L2_CACHE_2M_DSM_INDEX 0x0811
+#define regATC_L2_CACHE_2M_DSM_INDEX_BASE_IDX 0
+#define regATC_L2_CACHE_4K_DSM_CNTL 0x0812
+#define regATC_L2_CACHE_4K_DSM_CNTL_BASE_IDX 0
+#define regATC_L2_CACHE_32K_DSM_CNTL 0x0813
+#define regATC_L2_CACHE_32K_DSM_CNTL_BASE_IDX 0
+#define regATC_L2_CACHE_2M_DSM_CNTL 0x0814
+#define regATC_L2_CACHE_2M_DSM_CNTL_BASE_IDX 0
+#define regATC_L2_CNTL4 0x0815
+#define regATC_L2_CNTL4_BASE_IDX 0
+#define regATC_L2_MM_GROUP_RT_CLASSES 0x0816
+#define regATC_L2_MM_GROUP_RT_CLASSES_BASE_IDX 0
+
+
+// addressBlock: xcd0_gc_utcl2_vml2pfdec
+// base address: 0xa080
+#define regVM_L2_CNTL 0x0820
+#define regVM_L2_CNTL_BASE_IDX 0
+#define regVM_L2_CNTL2 0x0821
+#define regVM_L2_CNTL2_BASE_IDX 0
+#define regVM_L2_CNTL3 0x0822
+#define regVM_L2_CNTL3_BASE_IDX 0
+#define regVM_L2_STATUS 0x0823
+#define regVM_L2_STATUS_BASE_IDX 0
+#define regVM_DUMMY_PAGE_FAULT_CNTL 0x0824
+#define regVM_DUMMY_PAGE_FAULT_CNTL_BASE_IDX 0
+#define regVM_DUMMY_PAGE_FAULT_ADDR_LO32 0x0825
+#define regVM_DUMMY_PAGE_FAULT_ADDR_LO32_BASE_IDX 0
+#define regVM_DUMMY_PAGE_FAULT_ADDR_HI32 0x0826
+#define regVM_DUMMY_PAGE_FAULT_ADDR_HI32_BASE_IDX 0
+#define regVM_L2_PROTECTION_FAULT_CNTL 0x0827
+#define regVM_L2_PROTECTION_FAULT_CNTL_BASE_IDX 0
+#define regVM_L2_PROTECTION_FAULT_CNTL2 0x0828
+#define regVM_L2_PROTECTION_FAULT_CNTL2_BASE_IDX 0
+#define regVM_L2_PROTECTION_FAULT_MM_CNTL3 0x0829
+#define regVM_L2_PROTECTION_FAULT_MM_CNTL3_BASE_IDX 0
+#define regVM_L2_PROTECTION_FAULT_MM_CNTL4 0x082a
+#define regVM_L2_PROTECTION_FAULT_MM_CNTL4_BASE_IDX 0
+#define regVM_L2_PROTECTION_FAULT_STATUS 0x082b
+#define regVM_L2_PROTECTION_FAULT_STATUS_BASE_IDX 0
+#define regVM_L2_PROTECTION_FAULT_ADDR_LO32 0x082c
+#define regVM_L2_PROTECTION_FAULT_ADDR_LO32_BASE_IDX 0
+#define regVM_L2_PROTECTION_FAULT_ADDR_HI32 0x082d
+#define regVM_L2_PROTECTION_FAULT_ADDR_HI32_BASE_IDX 0
+#define regVM_L2_PROTECTION_FAULT_DEFAULT_ADDR_LO32 0x082e
+#define regVM_L2_PROTECTION_FAULT_DEFAULT_ADDR_LO32_BASE_IDX 0
+#define regVM_L2_PROTECTION_FAULT_DEFAULT_ADDR_HI32 0x082f
+#define regVM_L2_PROTECTION_FAULT_DEFAULT_ADDR_HI32_BASE_IDX 0
+#define regVM_L2_CONTEXT1_IDENTITY_APERTURE_LOW_ADDR_LO32 0x0831
+#define regVM_L2_CONTEXT1_IDENTITY_APERTURE_LOW_ADDR_LO32_BASE_IDX 0
+#define regVM_L2_CONTEXT1_IDENTITY_APERTURE_LOW_ADDR_HI32 0x0832
+#define regVM_L2_CONTEXT1_IDENTITY_APERTURE_LOW_ADDR_HI32_BASE_IDX 0
+#define regVM_L2_CONTEXT1_IDENTITY_APERTURE_HIGH_ADDR_LO32 0x0833
+#define regVM_L2_CONTEXT1_IDENTITY_APERTURE_HIGH_ADDR_LO32_BASE_IDX 0
+#define regVM_L2_CONTEXT1_IDENTITY_APERTURE_HIGH_ADDR_HI32 0x0834
+#define regVM_L2_CONTEXT1_IDENTITY_APERTURE_HIGH_ADDR_HI32_BASE_IDX 0
+#define regVM_L2_CONTEXT_IDENTITY_PHYSICAL_OFFSET_LO32 0x0835
+#define regVM_L2_CONTEXT_IDENTITY_PHYSICAL_OFFSET_LO32_BASE_IDX 0
+#define regVM_L2_CONTEXT_IDENTITY_PHYSICAL_OFFSET_HI32 0x0836
+#define regVM_L2_CONTEXT_IDENTITY_PHYSICAL_OFFSET_HI32_BASE_IDX 0
+#define regVM_L2_CNTL4 0x0837
+#define regVM_L2_CNTL4_BASE_IDX 0
+#define regVM_L2_CNTL5 0x0838
+#define regVM_L2_CNTL5_BASE_IDX 0
+#define regVM_L2_MM_GROUP_RT_CLASSES 0x0839
+#define regVM_L2_MM_GROUP_RT_CLASSES_BASE_IDX 0
+#define regVM_L2_BANK_SELECT_RESERVED_CID 0x083a
+#define regVM_L2_BANK_SELECT_RESERVED_CID_BASE_IDX 0
+#define regVM_L2_BANK_SELECT_RESERVED_CID2 0x083b
+#define regVM_L2_BANK_SELECT_RESERVED_CID2_BASE_IDX 0
+#define regVM_L2_CACHE_PARITY_CNTL 0x083c
+#define regVM_L2_CACHE_PARITY_CNTL_BASE_IDX 0
+#define regVM_L2_CGTT_CLK_CTRL 0x083d
+#define regVM_L2_CGTT_CLK_CTRL_BASE_IDX 0
+#define regVM_L2_CGTT_BUSY_CTRL 0x083e
+#define regVM_L2_CGTT_BUSY_CTRL_BASE_IDX 0
+#define regVML2_MEM_ECC_INDEX 0x0842
+#define regVML2_MEM_ECC_INDEX_BASE_IDX 0
+#define regVML2_WALKER_MEM_ECC_INDEX 0x0843
+#define regVML2_WALKER_MEM_ECC_INDEX_BASE_IDX 0
+#define regUTCL2_MEM_ECC_INDEX 0x0844
+#define regUTCL2_MEM_ECC_INDEX_BASE_IDX 0
+#define regVML2_MEM_ECC_CNTL 0x0845
+#define regVML2_MEM_ECC_CNTL_BASE_IDX 0
+#define regVML2_WALKER_MEM_ECC_CNTL 0x0846
+#define regVML2_WALKER_MEM_ECC_CNTL_BASE_IDX 0
+#define regUTCL2_MEM_ECC_CNTL 0x0847
+#define regUTCL2_MEM_ECC_CNTL_BASE_IDX 0
+#define regVML2_MEM_ECC_STATUS 0x0848
+#define regVML2_MEM_ECC_STATUS_BASE_IDX 0
+#define regVML2_WALKER_MEM_ECC_STATUS 0x0849
+#define regVML2_WALKER_MEM_ECC_STATUS_BASE_IDX 0
+#define regUTCL2_MEM_ECC_STATUS 0x084a
+#define regUTCL2_MEM_ECC_STATUS_BASE_IDX 0
+#define regUTCL2_EDC_MODE 0x084b
+#define regUTCL2_EDC_MODE_BASE_IDX 0
+#define regUTCL2_EDC_CONFIG 0x084c
+#define regUTCL2_EDC_CONFIG_BASE_IDX 0
+
+
+// addressBlock: xcd0_gc_utcl2_vml2vcdec
+// base address: 0xa180
+#define regVM_CONTEXT0_CNTL 0x0860
+#define regVM_CONTEXT0_CNTL_BASE_IDX 0
+#define regVM_CONTEXT1_CNTL 0x0861
+#define regVM_CONTEXT1_CNTL_BASE_IDX 0
+#define regVM_CONTEXT2_CNTL 0x0862
+#define regVM_CONTEXT2_CNTL_BASE_IDX 0
+#define regVM_CONTEXT3_CNTL 0x0863
+#define regVM_CONTEXT3_CNTL_BASE_IDX 0
+#define regVM_CONTEXT4_CNTL 0x0864
+#define regVM_CONTEXT4_CNTL_BASE_IDX 0
+#define regVM_CONTEXT5_CNTL 0x0865
+#define regVM_CONTEXT5_CNTL_BASE_IDX 0
+#define regVM_CONTEXT6_CNTL 0x0866
+#define regVM_CONTEXT6_CNTL_BASE_IDX 0
+#define regVM_CONTEXT7_CNTL 0x0867
+#define regVM_CONTEXT7_CNTL_BASE_IDX 0
+#define regVM_CONTEXT8_CNTL 0x0868
+#define regVM_CONTEXT8_CNTL_BASE_IDX 0
+#define regVM_CONTEXT9_CNTL 0x0869
+#define regVM_CONTEXT9_CNTL_BASE_IDX 0
+#define regVM_CONTEXT10_CNTL 0x086a
+#define regVM_CONTEXT10_CNTL_BASE_IDX 0
+#define regVM_CONTEXT11_CNTL 0x086b
+#define regVM_CONTEXT11_CNTL_BASE_IDX 0
+#define regVM_CONTEXT12_CNTL 0x086c
+#define regVM_CONTEXT12_CNTL_BASE_IDX 0
+#define regVM_CONTEXT13_CNTL 0x086d
+#define regVM_CONTEXT13_CNTL_BASE_IDX 0
+#define regVM_CONTEXT14_CNTL 0x086e
+#define regVM_CONTEXT14_CNTL_BASE_IDX 0
+#define regVM_CONTEXT15_CNTL 0x086f
+#define regVM_CONTEXT15_CNTL_BASE_IDX 0
+#define regVM_CONTEXTS_DISABLE 0x0870
+#define regVM_CONTEXTS_DISABLE_BASE_IDX 0
+#define regVM_INVALIDATE_ENG0_SEM 0x0871
+#define regVM_INVALIDATE_ENG0_SEM_BASE_IDX 0
+#define regVM_INVALIDATE_ENG1_SEM 0x0872
+#define regVM_INVALIDATE_ENG1_SEM_BASE_IDX 0
+#define regVM_INVALIDATE_ENG2_SEM 0x0873
+#define regVM_INVALIDATE_ENG2_SEM_BASE_IDX 0
+#define regVM_INVALIDATE_ENG3_SEM 0x0874
+#define regVM_INVALIDATE_ENG3_SEM_BASE_IDX 0
+#define regVM_INVALIDATE_ENG4_SEM 0x0875
+#define regVM_INVALIDATE_ENG4_SEM_BASE_IDX 0
+#define regVM_INVALIDATE_ENG5_SEM 0x0876
+#define regVM_INVALIDATE_ENG5_SEM_BASE_IDX 0
+#define regVM_INVALIDATE_ENG6_SEM 0x0877
+#define regVM_INVALIDATE_ENG6_SEM_BASE_IDX 0
+#define regVM_INVALIDATE_ENG7_SEM 0x0878
+#define regVM_INVALIDATE_ENG7_SEM_BASE_IDX 0
+#define regVM_INVALIDATE_ENG8_SEM 0x0879
+#define regVM_INVALIDATE_ENG8_SEM_BASE_IDX 0
+#define regVM_INVALIDATE_ENG9_SEM 0x087a
+#define regVM_INVALIDATE_ENG9_SEM_BASE_IDX 0
+#define regVM_INVALIDATE_ENG10_SEM 0x087b
+#define regVM_INVALIDATE_ENG10_SEM_BASE_IDX 0
+#define regVM_INVALIDATE_ENG11_SEM 0x087c
+#define regVM_INVALIDATE_ENG11_SEM_BASE_IDX 0
+#define regVM_INVALIDATE_ENG12_SEM 0x087d
+#define regVM_INVALIDATE_ENG12_SEM_BASE_IDX 0
+#define regVM_INVALIDATE_ENG13_SEM 0x087e
+#define regVM_INVALIDATE_ENG13_SEM_BASE_IDX 0
+#define regVM_INVALIDATE_ENG14_SEM 0x087f
+#define regVM_INVALIDATE_ENG14_SEM_BASE_IDX 0
+#define regVM_INVALIDATE_ENG15_SEM 0x0880
+#define regVM_INVALIDATE_ENG15_SEM_BASE_IDX 0
+#define regVM_INVALIDATE_ENG16_SEM 0x0881
+#define regVM_INVALIDATE_ENG16_SEM_BASE_IDX 0
+#define regVM_INVALIDATE_ENG17_SEM 0x0882
+#define regVM_INVALIDATE_ENG17_SEM_BASE_IDX 0
+#define regVM_INVALIDATE_ENG0_REQ 0x0883
+#define regVM_INVALIDATE_ENG0_REQ_BASE_IDX 0
+#define regVM_INVALIDATE_ENG1_REQ 0x0884
+#define regVM_INVALIDATE_ENG1_REQ_BASE_IDX 0
+#define regVM_INVALIDATE_ENG2_REQ 0x0885
+#define regVM_INVALIDATE_ENG2_REQ_BASE_IDX 0
+#define regVM_INVALIDATE_ENG3_REQ 0x0886
+#define regVM_INVALIDATE_ENG3_REQ_BASE_IDX 0
+#define regVM_INVALIDATE_ENG4_REQ 0x0887
+#define regVM_INVALIDATE_ENG4_REQ_BASE_IDX 0
+#define regVM_INVALIDATE_ENG5_REQ 0x0888
+#define regVM_INVALIDATE_ENG5_REQ_BASE_IDX 0
+#define regVM_INVALIDATE_ENG6_REQ 0x0889
+#define regVM_INVALIDATE_ENG6_REQ_BASE_IDX 0
+#define regVM_INVALIDATE_ENG7_REQ 0x088a
+#define regVM_INVALIDATE_ENG7_REQ_BASE_IDX 0
+#define regVM_INVALIDATE_ENG8_REQ 0x088b
+#define regVM_INVALIDATE_ENG8_REQ_BASE_IDX 0
+#define regVM_INVALIDATE_ENG9_REQ 0x088c
+#define regVM_INVALIDATE_ENG9_REQ_BASE_IDX 0
+#define regVM_INVALIDATE_ENG10_REQ 0x088d
+#define regVM_INVALIDATE_ENG10_REQ_BASE_IDX 0
+#define regVM_INVALIDATE_ENG11_REQ 0x088e
+#define regVM_INVALIDATE_ENG11_REQ_BASE_IDX 0
+#define regVM_INVALIDATE_ENG12_REQ 0x088f
+#define regVM_INVALIDATE_ENG12_REQ_BASE_IDX 0
+#define regVM_INVALIDATE_ENG13_REQ 0x0890
+#define regVM_INVALIDATE_ENG13_REQ_BASE_IDX 0
+#define regVM_INVALIDATE_ENG14_REQ 0x0891
+#define regVM_INVALIDATE_ENG14_REQ_BASE_IDX 0
+#define regVM_INVALIDATE_ENG15_REQ 0x0892
+#define regVM_INVALIDATE_ENG15_REQ_BASE_IDX 0
+#define regVM_INVALIDATE_ENG16_REQ 0x0893
+#define regVM_INVALIDATE_ENG16_REQ_BASE_IDX 0
+#define regVM_INVALIDATE_ENG17_REQ 0x0894
+#define regVM_INVALIDATE_ENG17_REQ_BASE_IDX 0
+#define regVM_INVALIDATE_ENG0_ACK 0x0895
+#define regVM_INVALIDATE_ENG0_ACK_BASE_IDX 0
+#define regVM_INVALIDATE_ENG1_ACK 0x0896
+#define regVM_INVALIDATE_ENG1_ACK_BASE_IDX 0
+#define regVM_INVALIDATE_ENG2_ACK 0x0897
+#define regVM_INVALIDATE_ENG2_ACK_BASE_IDX 0
+#define regVM_INVALIDATE_ENG3_ACK 0x0898
+#define regVM_INVALIDATE_ENG3_ACK_BASE_IDX 0
+#define regVM_INVALIDATE_ENG4_ACK 0x0899
+#define regVM_INVALIDATE_ENG4_ACK_BASE_IDX 0
+#define regVM_INVALIDATE_ENG5_ACK 0x089a
+#define regVM_INVALIDATE_ENG5_ACK_BASE_IDX 0
+#define regVM_INVALIDATE_ENG6_ACK 0x089b
+#define regVM_INVALIDATE_ENG6_ACK_BASE_IDX 0
+#define regVM_INVALIDATE_ENG7_ACK 0x089c
+#define regVM_INVALIDATE_ENG7_ACK_BASE_IDX 0
+#define regVM_INVALIDATE_ENG8_ACK 0x089d
+#define regVM_INVALIDATE_ENG8_ACK_BASE_IDX 0
+#define regVM_INVALIDATE_ENG9_ACK 0x089e
+#define regVM_INVALIDATE_ENG9_ACK_BASE_IDX 0
+#define regVM_INVALIDATE_ENG10_ACK 0x089f
+#define regVM_INVALIDATE_ENG10_ACK_BASE_IDX 0
+#define regVM_INVALIDATE_ENG11_ACK 0x08a0
+#define regVM_INVALIDATE_ENG11_ACK_BASE_IDX 0
+#define regVM_INVALIDATE_ENG12_ACK 0x08a1
+#define regVM_INVALIDATE_ENG12_ACK_BASE_IDX 0
+#define regVM_INVALIDATE_ENG13_ACK 0x08a2
+#define regVM_INVALIDATE_ENG13_ACK_BASE_IDX 0
+#define regVM_INVALIDATE_ENG14_ACK 0x08a3
+#define regVM_INVALIDATE_ENG14_ACK_BASE_IDX 0
+#define regVM_INVALIDATE_ENG15_ACK 0x08a4
+#define regVM_INVALIDATE_ENG15_ACK_BASE_IDX 0
+#define regVM_INVALIDATE_ENG16_ACK 0x08a5
+#define regVM_INVALIDATE_ENG16_ACK_BASE_IDX 0
+#define regVM_INVALIDATE_ENG17_ACK 0x08a6
+#define regVM_INVALIDATE_ENG17_ACK_BASE_IDX 0
+#define regVM_INVALIDATE_ENG0_ADDR_RANGE_LO32 0x08a7
+#define regVM_INVALIDATE_ENG0_ADDR_RANGE_LO32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG0_ADDR_RANGE_HI32 0x08a8
+#define regVM_INVALIDATE_ENG0_ADDR_RANGE_HI32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG1_ADDR_RANGE_LO32 0x08a9
+#define regVM_INVALIDATE_ENG1_ADDR_RANGE_LO32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG1_ADDR_RANGE_HI32 0x08aa
+#define regVM_INVALIDATE_ENG1_ADDR_RANGE_HI32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG2_ADDR_RANGE_LO32 0x08ab
+#define regVM_INVALIDATE_ENG2_ADDR_RANGE_LO32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG2_ADDR_RANGE_HI32 0x08ac
+#define regVM_INVALIDATE_ENG2_ADDR_RANGE_HI32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG3_ADDR_RANGE_LO32 0x08ad
+#define regVM_INVALIDATE_ENG3_ADDR_RANGE_LO32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG3_ADDR_RANGE_HI32 0x08ae
+#define regVM_INVALIDATE_ENG3_ADDR_RANGE_HI32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG4_ADDR_RANGE_LO32 0x08af
+#define regVM_INVALIDATE_ENG4_ADDR_RANGE_LO32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG4_ADDR_RANGE_HI32 0x08b0
+#define regVM_INVALIDATE_ENG4_ADDR_RANGE_HI32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG5_ADDR_RANGE_LO32 0x08b1
+#define regVM_INVALIDATE_ENG5_ADDR_RANGE_LO32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG5_ADDR_RANGE_HI32 0x08b2
+#define regVM_INVALIDATE_ENG5_ADDR_RANGE_HI32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG6_ADDR_RANGE_LO32 0x08b3
+#define regVM_INVALIDATE_ENG6_ADDR_RANGE_LO32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG6_ADDR_RANGE_HI32 0x08b4
+#define regVM_INVALIDATE_ENG6_ADDR_RANGE_HI32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG7_ADDR_RANGE_LO32 0x08b5
+#define regVM_INVALIDATE_ENG7_ADDR_RANGE_LO32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG7_ADDR_RANGE_HI32 0x08b6
+#define regVM_INVALIDATE_ENG7_ADDR_RANGE_HI32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG8_ADDR_RANGE_LO32 0x08b7
+#define regVM_INVALIDATE_ENG8_ADDR_RANGE_LO32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG8_ADDR_RANGE_HI32 0x08b8
+#define regVM_INVALIDATE_ENG8_ADDR_RANGE_HI32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG9_ADDR_RANGE_LO32 0x08b9
+#define regVM_INVALIDATE_ENG9_ADDR_RANGE_LO32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG9_ADDR_RANGE_HI32 0x08ba
+#define regVM_INVALIDATE_ENG9_ADDR_RANGE_HI32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG10_ADDR_RANGE_LO32 0x08bb
+#define regVM_INVALIDATE_ENG10_ADDR_RANGE_LO32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG10_ADDR_RANGE_HI32 0x08bc
+#define regVM_INVALIDATE_ENG10_ADDR_RANGE_HI32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG11_ADDR_RANGE_LO32 0x08bd
+#define regVM_INVALIDATE_ENG11_ADDR_RANGE_LO32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG11_ADDR_RANGE_HI32 0x08be
+#define regVM_INVALIDATE_ENG11_ADDR_RANGE_HI32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG12_ADDR_RANGE_LO32 0x08bf
+#define regVM_INVALIDATE_ENG12_ADDR_RANGE_LO32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG12_ADDR_RANGE_HI32 0x08c0
+#define regVM_INVALIDATE_ENG12_ADDR_RANGE_HI32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG13_ADDR_RANGE_LO32 0x08c1
+#define regVM_INVALIDATE_ENG13_ADDR_RANGE_LO32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG13_ADDR_RANGE_HI32 0x08c2
+#define regVM_INVALIDATE_ENG13_ADDR_RANGE_HI32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG14_ADDR_RANGE_LO32 0x08c3
+#define regVM_INVALIDATE_ENG14_ADDR_RANGE_LO32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG14_ADDR_RANGE_HI32 0x08c4
+#define regVM_INVALIDATE_ENG14_ADDR_RANGE_HI32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG15_ADDR_RANGE_LO32 0x08c5
+#define regVM_INVALIDATE_ENG15_ADDR_RANGE_LO32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG15_ADDR_RANGE_HI32 0x08c6
+#define regVM_INVALIDATE_ENG15_ADDR_RANGE_HI32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG16_ADDR_RANGE_LO32 0x08c7
+#define regVM_INVALIDATE_ENG16_ADDR_RANGE_LO32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG16_ADDR_RANGE_HI32 0x08c8
+#define regVM_INVALIDATE_ENG16_ADDR_RANGE_HI32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG17_ADDR_RANGE_LO32 0x08c9
+#define regVM_INVALIDATE_ENG17_ADDR_RANGE_LO32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG17_ADDR_RANGE_HI32 0x08ca
+#define regVM_INVALIDATE_ENG17_ADDR_RANGE_HI32_BASE_IDX 0
+#define regVM_CONTEXT0_PAGE_TABLE_BASE_ADDR_LO32 0x08cb
+#define regVM_CONTEXT0_PAGE_TABLE_BASE_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT0_PAGE_TABLE_BASE_ADDR_HI32 0x08cc
+#define regVM_CONTEXT0_PAGE_TABLE_BASE_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT1_PAGE_TABLE_BASE_ADDR_LO32 0x08cd
+#define regVM_CONTEXT1_PAGE_TABLE_BASE_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT1_PAGE_TABLE_BASE_ADDR_HI32 0x08ce
+#define regVM_CONTEXT1_PAGE_TABLE_BASE_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT2_PAGE_TABLE_BASE_ADDR_LO32 0x08cf
+#define regVM_CONTEXT2_PAGE_TABLE_BASE_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT2_PAGE_TABLE_BASE_ADDR_HI32 0x08d0
+#define regVM_CONTEXT2_PAGE_TABLE_BASE_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT3_PAGE_TABLE_BASE_ADDR_LO32 0x08d1
+#define regVM_CONTEXT3_PAGE_TABLE_BASE_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT3_PAGE_TABLE_BASE_ADDR_HI32 0x08d2
+#define regVM_CONTEXT3_PAGE_TABLE_BASE_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT4_PAGE_TABLE_BASE_ADDR_LO32 0x08d3
+#define regVM_CONTEXT4_PAGE_TABLE_BASE_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT4_PAGE_TABLE_BASE_ADDR_HI32 0x08d4
+#define regVM_CONTEXT4_PAGE_TABLE_BASE_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT5_PAGE_TABLE_BASE_ADDR_LO32 0x08d5
+#define regVM_CONTEXT5_PAGE_TABLE_BASE_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT5_PAGE_TABLE_BASE_ADDR_HI32 0x08d6
+#define regVM_CONTEXT5_PAGE_TABLE_BASE_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT6_PAGE_TABLE_BASE_ADDR_LO32 0x08d7
+#define regVM_CONTEXT6_PAGE_TABLE_BASE_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT6_PAGE_TABLE_BASE_ADDR_HI32 0x08d8
+#define regVM_CONTEXT6_PAGE_TABLE_BASE_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT7_PAGE_TABLE_BASE_ADDR_LO32 0x08d9
+#define regVM_CONTEXT7_PAGE_TABLE_BASE_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT7_PAGE_TABLE_BASE_ADDR_HI32 0x08da
+#define regVM_CONTEXT7_PAGE_TABLE_BASE_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT8_PAGE_TABLE_BASE_ADDR_LO32 0x08db
+#define regVM_CONTEXT8_PAGE_TABLE_BASE_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT8_PAGE_TABLE_BASE_ADDR_HI32 0x08dc
+#define regVM_CONTEXT8_PAGE_TABLE_BASE_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT9_PAGE_TABLE_BASE_ADDR_LO32 0x08dd
+#define regVM_CONTEXT9_PAGE_TABLE_BASE_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT9_PAGE_TABLE_BASE_ADDR_HI32 0x08de
+#define regVM_CONTEXT9_PAGE_TABLE_BASE_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT10_PAGE_TABLE_BASE_ADDR_LO32 0x08df
+#define regVM_CONTEXT10_PAGE_TABLE_BASE_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT10_PAGE_TABLE_BASE_ADDR_HI32 0x08e0
+#define regVM_CONTEXT10_PAGE_TABLE_BASE_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT11_PAGE_TABLE_BASE_ADDR_LO32 0x08e1
+#define regVM_CONTEXT11_PAGE_TABLE_BASE_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT11_PAGE_TABLE_BASE_ADDR_HI32 0x08e2
+#define regVM_CONTEXT11_PAGE_TABLE_BASE_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT12_PAGE_TABLE_BASE_ADDR_LO32 0x08e3
+#define regVM_CONTEXT12_PAGE_TABLE_BASE_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT12_PAGE_TABLE_BASE_ADDR_HI32 0x08e4
+#define regVM_CONTEXT12_PAGE_TABLE_BASE_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT13_PAGE_TABLE_BASE_ADDR_LO32 0x08e5
+#define regVM_CONTEXT13_PAGE_TABLE_BASE_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT13_PAGE_TABLE_BASE_ADDR_HI32 0x08e6
+#define regVM_CONTEXT13_PAGE_TABLE_BASE_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT14_PAGE_TABLE_BASE_ADDR_LO32 0x08e7
+#define regVM_CONTEXT14_PAGE_TABLE_BASE_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT14_PAGE_TABLE_BASE_ADDR_HI32 0x08e8
+#define regVM_CONTEXT14_PAGE_TABLE_BASE_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT15_PAGE_TABLE_BASE_ADDR_LO32 0x08e9
+#define regVM_CONTEXT15_PAGE_TABLE_BASE_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT15_PAGE_TABLE_BASE_ADDR_HI32 0x08ea
+#define regVM_CONTEXT15_PAGE_TABLE_BASE_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT0_PAGE_TABLE_START_ADDR_LO32 0x08eb
+#define regVM_CONTEXT0_PAGE_TABLE_START_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT0_PAGE_TABLE_START_ADDR_HI32 0x08ec
+#define regVM_CONTEXT0_PAGE_TABLE_START_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT1_PAGE_TABLE_START_ADDR_LO32 0x08ed
+#define regVM_CONTEXT1_PAGE_TABLE_START_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT1_PAGE_TABLE_START_ADDR_HI32 0x08ee
+#define regVM_CONTEXT1_PAGE_TABLE_START_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT2_PAGE_TABLE_START_ADDR_LO32 0x08ef
+#define regVM_CONTEXT2_PAGE_TABLE_START_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT2_PAGE_TABLE_START_ADDR_HI32 0x08f0
+#define regVM_CONTEXT2_PAGE_TABLE_START_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT3_PAGE_TABLE_START_ADDR_LO32 0x08f1
+#define regVM_CONTEXT3_PAGE_TABLE_START_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT3_PAGE_TABLE_START_ADDR_HI32 0x08f2
+#define regVM_CONTEXT3_PAGE_TABLE_START_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT4_PAGE_TABLE_START_ADDR_LO32 0x08f3
+#define regVM_CONTEXT4_PAGE_TABLE_START_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT4_PAGE_TABLE_START_ADDR_HI32 0x08f4
+#define regVM_CONTEXT4_PAGE_TABLE_START_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT5_PAGE_TABLE_START_ADDR_LO32 0x08f5
+#define regVM_CONTEXT5_PAGE_TABLE_START_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT5_PAGE_TABLE_START_ADDR_HI32 0x08f6
+#define regVM_CONTEXT5_PAGE_TABLE_START_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT6_PAGE_TABLE_START_ADDR_LO32 0x08f7
+#define regVM_CONTEXT6_PAGE_TABLE_START_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT6_PAGE_TABLE_START_ADDR_HI32 0x08f8
+#define regVM_CONTEXT6_PAGE_TABLE_START_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT7_PAGE_TABLE_START_ADDR_LO32 0x08f9
+#define regVM_CONTEXT7_PAGE_TABLE_START_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT7_PAGE_TABLE_START_ADDR_HI32 0x08fa
+#define regVM_CONTEXT7_PAGE_TABLE_START_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT8_PAGE_TABLE_START_ADDR_LO32 0x08fb
+#define regVM_CONTEXT8_PAGE_TABLE_START_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT8_PAGE_TABLE_START_ADDR_HI32 0x08fc
+#define regVM_CONTEXT8_PAGE_TABLE_START_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT9_PAGE_TABLE_START_ADDR_LO32 0x08fd
+#define regVM_CONTEXT9_PAGE_TABLE_START_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT9_PAGE_TABLE_START_ADDR_HI32 0x08fe
+#define regVM_CONTEXT9_PAGE_TABLE_START_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT10_PAGE_TABLE_START_ADDR_LO32 0x08ff
+#define regVM_CONTEXT10_PAGE_TABLE_START_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT10_PAGE_TABLE_START_ADDR_HI32 0x0900
+#define regVM_CONTEXT10_PAGE_TABLE_START_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT11_PAGE_TABLE_START_ADDR_LO32 0x0901
+#define regVM_CONTEXT11_PAGE_TABLE_START_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT11_PAGE_TABLE_START_ADDR_HI32 0x0902
+#define regVM_CONTEXT11_PAGE_TABLE_START_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT12_PAGE_TABLE_START_ADDR_LO32 0x0903
+#define regVM_CONTEXT12_PAGE_TABLE_START_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT12_PAGE_TABLE_START_ADDR_HI32 0x0904
+#define regVM_CONTEXT12_PAGE_TABLE_START_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT13_PAGE_TABLE_START_ADDR_LO32 0x0905
+#define regVM_CONTEXT13_PAGE_TABLE_START_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT13_PAGE_TABLE_START_ADDR_HI32 0x0906
+#define regVM_CONTEXT13_PAGE_TABLE_START_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT14_PAGE_TABLE_START_ADDR_LO32 0x0907
+#define regVM_CONTEXT14_PAGE_TABLE_START_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT14_PAGE_TABLE_START_ADDR_HI32 0x0908
+#define regVM_CONTEXT14_PAGE_TABLE_START_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT15_PAGE_TABLE_START_ADDR_LO32 0x0909
+#define regVM_CONTEXT15_PAGE_TABLE_START_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT15_PAGE_TABLE_START_ADDR_HI32 0x090a
+#define regVM_CONTEXT15_PAGE_TABLE_START_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT0_PAGE_TABLE_END_ADDR_LO32 0x090b
+#define regVM_CONTEXT0_PAGE_TABLE_END_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT0_PAGE_TABLE_END_ADDR_HI32 0x090c
+#define regVM_CONTEXT0_PAGE_TABLE_END_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT1_PAGE_TABLE_END_ADDR_LO32 0x090d
+#define regVM_CONTEXT1_PAGE_TABLE_END_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT1_PAGE_TABLE_END_ADDR_HI32 0x090e
+#define regVM_CONTEXT1_PAGE_TABLE_END_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT2_PAGE_TABLE_END_ADDR_LO32 0x090f
+#define regVM_CONTEXT2_PAGE_TABLE_END_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT2_PAGE_TABLE_END_ADDR_HI32 0x0910
+#define regVM_CONTEXT2_PAGE_TABLE_END_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT3_PAGE_TABLE_END_ADDR_LO32 0x0911
+#define regVM_CONTEXT3_PAGE_TABLE_END_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT3_PAGE_TABLE_END_ADDR_HI32 0x0912
+#define regVM_CONTEXT3_PAGE_TABLE_END_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT4_PAGE_TABLE_END_ADDR_LO32 0x0913
+#define regVM_CONTEXT4_PAGE_TABLE_END_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT4_PAGE_TABLE_END_ADDR_HI32 0x0914
+#define regVM_CONTEXT4_PAGE_TABLE_END_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT5_PAGE_TABLE_END_ADDR_LO32 0x0915
+#define regVM_CONTEXT5_PAGE_TABLE_END_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT5_PAGE_TABLE_END_ADDR_HI32 0x0916
+#define regVM_CONTEXT5_PAGE_TABLE_END_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT6_PAGE_TABLE_END_ADDR_LO32 0x0917
+#define regVM_CONTEXT6_PAGE_TABLE_END_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT6_PAGE_TABLE_END_ADDR_HI32 0x0918
+#define regVM_CONTEXT6_PAGE_TABLE_END_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT7_PAGE_TABLE_END_ADDR_LO32 0x0919
+#define regVM_CONTEXT7_PAGE_TABLE_END_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT7_PAGE_TABLE_END_ADDR_HI32 0x091a
+#define regVM_CONTEXT7_PAGE_TABLE_END_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT8_PAGE_TABLE_END_ADDR_LO32 0x091b
+#define regVM_CONTEXT8_PAGE_TABLE_END_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT8_PAGE_TABLE_END_ADDR_HI32 0x091c
+#define regVM_CONTEXT8_PAGE_TABLE_END_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT9_PAGE_TABLE_END_ADDR_LO32 0x091d
+#define regVM_CONTEXT9_PAGE_TABLE_END_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT9_PAGE_TABLE_END_ADDR_HI32 0x091e
+#define regVM_CONTEXT9_PAGE_TABLE_END_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT10_PAGE_TABLE_END_ADDR_LO32 0x091f
+#define regVM_CONTEXT10_PAGE_TABLE_END_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT10_PAGE_TABLE_END_ADDR_HI32 0x0920
+#define regVM_CONTEXT10_PAGE_TABLE_END_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT11_PAGE_TABLE_END_ADDR_LO32 0x0921
+#define regVM_CONTEXT11_PAGE_TABLE_END_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT11_PAGE_TABLE_END_ADDR_HI32 0x0922
+#define regVM_CONTEXT11_PAGE_TABLE_END_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT12_PAGE_TABLE_END_ADDR_LO32 0x0923
+#define regVM_CONTEXT12_PAGE_TABLE_END_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT12_PAGE_TABLE_END_ADDR_HI32 0x0924
+#define regVM_CONTEXT12_PAGE_TABLE_END_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT13_PAGE_TABLE_END_ADDR_LO32 0x0925
+#define regVM_CONTEXT13_PAGE_TABLE_END_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT13_PAGE_TABLE_END_ADDR_HI32 0x0926
+#define regVM_CONTEXT13_PAGE_TABLE_END_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT14_PAGE_TABLE_END_ADDR_LO32 0x0927
+#define regVM_CONTEXT14_PAGE_TABLE_END_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT14_PAGE_TABLE_END_ADDR_HI32 0x0928
+#define regVM_CONTEXT14_PAGE_TABLE_END_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT15_PAGE_TABLE_END_ADDR_LO32 0x0929
+#define regVM_CONTEXT15_PAGE_TABLE_END_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT15_PAGE_TABLE_END_ADDR_HI32 0x092a
+#define regVM_CONTEXT15_PAGE_TABLE_END_ADDR_HI32_BASE_IDX 0
+
+
+// addressBlock: xcd0_gc_utcl2_vmsharedpfdec
+// base address: 0xa500
+#define regMC_VM_NB_MMIOBASE 0x0940
+#define regMC_VM_NB_MMIOBASE_BASE_IDX 0
+#define regMC_VM_NB_MMIOLIMIT 0x0941
+#define regMC_VM_NB_MMIOLIMIT_BASE_IDX 0
+#define regMC_VM_NB_PCI_CTRL 0x0942
+#define regMC_VM_NB_PCI_CTRL_BASE_IDX 0
+#define regMC_VM_NB_PCI_ARB 0x0943
+#define regMC_VM_NB_PCI_ARB_BASE_IDX 0
+#define regMC_VM_NB_TOP_OF_DRAM_SLOT1 0x0944
+#define regMC_VM_NB_TOP_OF_DRAM_SLOT1_BASE_IDX 0
+#define regMC_VM_NB_LOWER_TOP_OF_DRAM2 0x0945
+#define regMC_VM_NB_LOWER_TOP_OF_DRAM2_BASE_IDX 0
+#define regMC_VM_NB_UPPER_TOP_OF_DRAM2 0x0946
+#define regMC_VM_NB_UPPER_TOP_OF_DRAM2_BASE_IDX 0
+#define regMC_VM_FB_OFFSET 0x0947
+#define regMC_VM_FB_OFFSET_BASE_IDX 0
+#define regMC_VM_SYSTEM_APERTURE_DEFAULT_ADDR_LSB 0x0948
+#define regMC_VM_SYSTEM_APERTURE_DEFAULT_ADDR_LSB_BASE_IDX 0
+#define regMC_VM_SYSTEM_APERTURE_DEFAULT_ADDR_MSB 0x0949
+#define regMC_VM_SYSTEM_APERTURE_DEFAULT_ADDR_MSB_BASE_IDX 0
+#define regMC_VM_STEERING 0x094a
+#define regMC_VM_STEERING_BASE_IDX 0
+#define regMC_SHARED_VIRT_RESET_REQ 0x094b
+#define regMC_SHARED_VIRT_RESET_REQ_BASE_IDX 0
+#define regMC_MEM_POWER_LS 0x094c
+#define regMC_MEM_POWER_LS_BASE_IDX 0
+#define regMC_VM_CACHEABLE_DRAM_ADDRESS_START 0x094d
+#define regMC_VM_CACHEABLE_DRAM_ADDRESS_START_BASE_IDX 0
+#define regMC_VM_CACHEABLE_DRAM_ADDRESS_END 0x094e
+#define regMC_VM_CACHEABLE_DRAM_ADDRESS_END_BASE_IDX 0
+#define regMC_VM_APT_CNTL 0x0951
+#define regMC_VM_APT_CNTL_BASE_IDX 0
+#define regMC_VM_LOCAL_HBM_ADDRESS_START 0x0952
+#define regMC_VM_LOCAL_HBM_ADDRESS_START_BASE_IDX 0
+#define regMC_VM_LOCAL_HBM_ADDRESS_END 0x0953
+#define regMC_VM_LOCAL_HBM_ADDRESS_END_BASE_IDX 0
+#define regMC_VM_LOCAL_HBM_ADDRESS_LOCK_CNTL 0x0954
+#define regMC_VM_LOCAL_HBM_ADDRESS_LOCK_CNTL_BASE_IDX 0
+#define regUTCL2_CGTT_CLK_CTRL 0x0955
+#define regUTCL2_CGTT_CLK_CTRL_BASE_IDX 0
+#define regMC_VM_XGMI_LFB_CNTL 0x0957
+#define regMC_VM_XGMI_LFB_CNTL_BASE_IDX 0
+#define regMC_VM_XGMI_LFB_SIZE 0x0958
+#define regMC_VM_XGMI_LFB_SIZE_BASE_IDX 0
+#define regMC_VM_CACHEABLE_DRAM_CNTL 0x0959
+#define regMC_VM_CACHEABLE_DRAM_CNTL_BASE_IDX 0
+#define regMC_VM_HOST_MAPPING 0x095a
+#define regMC_VM_HOST_MAPPING_BASE_IDX 0
+
+
+// addressBlock: xcd0_gc_utcl2_vmsharedvcdec
+// base address: 0xa570
+#define regMC_VM_FB_LOCATION_BASE 0x095c
+#define regMC_VM_FB_LOCATION_BASE_BASE_IDX 0
+#define regMC_VM_FB_LOCATION_TOP 0x095d
+#define regMC_VM_FB_LOCATION_TOP_BASE_IDX 0
+#define regMC_VM_AGP_TOP 0x095e
+#define regMC_VM_AGP_TOP_BASE_IDX 0
+#define regMC_VM_AGP_BOT 0x095f
+#define regMC_VM_AGP_BOT_BASE_IDX 0
+#define regMC_VM_AGP_BASE 0x0960
+#define regMC_VM_AGP_BASE_BASE_IDX 0
+#define regMC_VM_SYSTEM_APERTURE_LOW_ADDR 0x0961
+#define regMC_VM_SYSTEM_APERTURE_LOW_ADDR_BASE_IDX 0
+#define regMC_VM_SYSTEM_APERTURE_HIGH_ADDR 0x0962
+#define regMC_VM_SYSTEM_APERTURE_HIGH_ADDR_BASE_IDX 0
+#define regMC_VM_MX_L1_TLB_CNTL 0x0963
+#define regMC_VM_MX_L1_TLB_CNTL_BASE_IDX 0
+
+
+// addressBlock: xcd0_gc_utcl2_l2tlbdec
+// base address: 0xa5b0
+#define regL2TLB_TLB0_STATUS 0x096d
+#define regL2TLB_TLB0_STATUS_BASE_IDX 0
+#define regUTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_LO 0x096f
+#define regUTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_LO_BASE_IDX 0
+#define regUTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_HI 0x0970
+#define regUTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_HI_BASE_IDX 0
+#define regUTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_LO 0x0971
+#define regUTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_LO_BASE_IDX 0
+#define regUTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI 0x0972
+#define regUTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI_BASE_IDX 0
+
+
+// addressBlock: xcd0_gc_tcdec
+// base address: 0xac00
+#define regTCP_INVALIDATE 0x0b00
+#define regTCP_INVALIDATE_BASE_IDX 0
+#define regTCP_STATUS 0x0b01
+#define regTCP_STATUS_BASE_IDX 0
+#define regTCP_CNTL 0x0b02
+#define regTCP_CNTL_BASE_IDX 0
+#define regTCP_CHAN_STEER_0 0x0b03
+#define regTCP_CHAN_STEER_0_BASE_IDX 0
+#define regTCP_CHAN_STEER_1 0x0b04
+#define regTCP_CHAN_STEER_1_BASE_IDX 0
+#define regTCP_ADDR_CONFIG 0x0b05
+#define regTCP_ADDR_CONFIG_BASE_IDX 0
+#define regTCP_CREDIT 0x0b06
+#define regTCP_CREDIT_BASE_IDX 0
+#define regTCP_BUFFER_ADDR_HASH_CNTL 0x0b16
+#define regTCP_BUFFER_ADDR_HASH_CNTL_BASE_IDX 0
+#define regTC_CFG_L1_LOAD_POLICY0 0x0b1a
+#define regTC_CFG_L1_LOAD_POLICY0_BASE_IDX 0
+#define regTC_CFG_L1_LOAD_POLICY1 0x0b1b
+#define regTC_CFG_L1_LOAD_POLICY1_BASE_IDX 0
+#define regTC_CFG_L1_STORE_POLICY 0x0b1c
+#define regTC_CFG_L1_STORE_POLICY_BASE_IDX 0
+#define regTC_CFG_L2_LOAD_POLICY0 0x0b1d
+#define regTC_CFG_L2_LOAD_POLICY0_BASE_IDX 0
+#define regTC_CFG_L2_LOAD_POLICY1 0x0b1e
+#define regTC_CFG_L2_LOAD_POLICY1_BASE_IDX 0
+#define regTC_CFG_L2_STORE_POLICY0 0x0b1f
+#define regTC_CFG_L2_STORE_POLICY0_BASE_IDX 0
+#define regTC_CFG_L2_STORE_POLICY1 0x0b20
+#define regTC_CFG_L2_STORE_POLICY1_BASE_IDX 0
+#define regTC_CFG_L2_ATOMIC_POLICY 0x0b21
+#define regTC_CFG_L2_ATOMIC_POLICY_BASE_IDX 0
+#define regTC_CFG_L1_VOLATILE 0x0b22
+#define regTC_CFG_L1_VOLATILE_BASE_IDX 0
+#define regTC_CFG_L2_VOLATILE 0x0b23
+#define regTC_CFG_L2_VOLATILE_BASE_IDX 0
+#define regTCI_MISC 0x0b5c
+#define regTCI_MISC_BASE_IDX 0
+#define regTCI_CNTL_3 0x0b5d
+#define regTCI_CNTL_3_BASE_IDX 0
+#define regTCI_DSM_CNTL 0x0b5e
+#define regTCI_DSM_CNTL_BASE_IDX 0
+#define regTCI_DSM_CNTL2 0x0b5f
+#define regTCI_DSM_CNTL2_BASE_IDX 0
+#define regTCI_STATUS 0x0b61
+#define regTCI_STATUS_BASE_IDX 0
+#define regTCI_CNTL_1 0x0b62
+#define regTCI_CNTL_1_BASE_IDX 0
+#define regTCI_CNTL_2 0x0b63
+#define regTCI_CNTL_2_BASE_IDX 0
+#define regTCC_CTRL 0x0b80
+#define regTCC_CTRL_BASE_IDX 0
+#define regTCC_CTRL2 0x0b81
+#define regTCC_CTRL2_BASE_IDX 0
+#define regTCC_DSM_CNTL 0x0b86
+#define regTCC_DSM_CNTL_BASE_IDX 0
+#define regTCC_DSM_CNTLA 0x0b87
+#define regTCC_DSM_CNTLA_BASE_IDX 0
+#define regTCC_DSM_CNTL2 0x0b88
+#define regTCC_DSM_CNTL2_BASE_IDX 0
+#define regTCC_DSM_CNTL2A 0x0b89
+#define regTCC_DSM_CNTL2A_BASE_IDX 0
+#define regTCC_DSM_CNTL2B 0x0b8a
+#define regTCC_DSM_CNTL2B_BASE_IDX 0
+#define regTCC_WBINVL2 0x0b8b
+#define regTCC_WBINVL2_BASE_IDX 0
+#define regTCC_SOFT_RESET 0x0b8c
+#define regTCC_SOFT_RESET_BASE_IDX 0
+#define regTCC_DSM_CNTL3 0x0b8e
+#define regTCC_DSM_CNTL3_BASE_IDX 0
+#define regTCA_CTRL 0x0bc0
+#define regTCA_CTRL_BASE_IDX 0
+#define regTCA_BURST_MASK 0x0bc1
+#define regTCA_BURST_MASK_BASE_IDX 0
+#define regTCA_BURST_CTRL 0x0bc2
+#define regTCA_BURST_CTRL_BASE_IDX 0
+#define regTCA_DSM_CNTL 0x0bc3
+#define regTCA_DSM_CNTL_BASE_IDX 0
+#define regTCA_DSM_CNTL2 0x0bc4
+#define regTCA_DSM_CNTL2_BASE_IDX 0
+#define regTCX_CTRL 0x0bc6
+#define regTCX_CTRL_BASE_IDX 0
+#define regTCX_DSM_CNTL 0x0bc7
+#define regTCX_DSM_CNTL_BASE_IDX 0
+#define regTCX_DSM_CNTL2 0x0bc8
+#define regTCX_DSM_CNTL2_BASE_IDX 0
+
+
+// addressBlock: xcd0_gc_shdec
+// base address: 0xb000
+#define regSPI_SHADER_PGM_RSRC3_PS 0x0c07
+#define regSPI_SHADER_PGM_RSRC3_PS_BASE_IDX 0
+#define regSPI_SHADER_PGM_LO_PS 0x0c08
+#define regSPI_SHADER_PGM_LO_PS_BASE_IDX 0
+#define regSPI_SHADER_PGM_HI_PS 0x0c09
+#define regSPI_SHADER_PGM_HI_PS_BASE_IDX 0
+#define regSPI_SHADER_PGM_RSRC1_PS 0x0c0a
+#define regSPI_SHADER_PGM_RSRC1_PS_BASE_IDX 0
+#define regSPI_SHADER_PGM_RSRC2_PS 0x0c0b
+#define regSPI_SHADER_PGM_RSRC2_PS_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_PS_0 0x0c0c
+#define regSPI_SHADER_USER_DATA_PS_0_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_PS_1 0x0c0d
+#define regSPI_SHADER_USER_DATA_PS_1_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_PS_2 0x0c0e
+#define regSPI_SHADER_USER_DATA_PS_2_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_PS_3 0x0c0f
+#define regSPI_SHADER_USER_DATA_PS_3_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_PS_4 0x0c10
+#define regSPI_SHADER_USER_DATA_PS_4_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_PS_5 0x0c11
+#define regSPI_SHADER_USER_DATA_PS_5_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_PS_6 0x0c12
+#define regSPI_SHADER_USER_DATA_PS_6_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_PS_7 0x0c13
+#define regSPI_SHADER_USER_DATA_PS_7_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_PS_8 0x0c14
+#define regSPI_SHADER_USER_DATA_PS_8_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_PS_9 0x0c15
+#define regSPI_SHADER_USER_DATA_PS_9_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_PS_10 0x0c16
+#define regSPI_SHADER_USER_DATA_PS_10_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_PS_11 0x0c17
+#define regSPI_SHADER_USER_DATA_PS_11_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_PS_12 0x0c18
+#define regSPI_SHADER_USER_DATA_PS_12_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_PS_13 0x0c19
+#define regSPI_SHADER_USER_DATA_PS_13_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_PS_14 0x0c1a
+#define regSPI_SHADER_USER_DATA_PS_14_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_PS_15 0x0c1b
+#define regSPI_SHADER_USER_DATA_PS_15_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_PS_16 0x0c1c
+#define regSPI_SHADER_USER_DATA_PS_16_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_PS_17 0x0c1d
+#define regSPI_SHADER_USER_DATA_PS_17_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_PS_18 0x0c1e
+#define regSPI_SHADER_USER_DATA_PS_18_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_PS_19 0x0c1f
+#define regSPI_SHADER_USER_DATA_PS_19_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_PS_20 0x0c20
+#define regSPI_SHADER_USER_DATA_PS_20_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_PS_21 0x0c21
+#define regSPI_SHADER_USER_DATA_PS_21_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_PS_22 0x0c22
+#define regSPI_SHADER_USER_DATA_PS_22_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_PS_23 0x0c23
+#define regSPI_SHADER_USER_DATA_PS_23_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_PS_24 0x0c24
+#define regSPI_SHADER_USER_DATA_PS_24_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_PS_25 0x0c25
+#define regSPI_SHADER_USER_DATA_PS_25_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_PS_26 0x0c26
+#define regSPI_SHADER_USER_DATA_PS_26_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_PS_27 0x0c27
+#define regSPI_SHADER_USER_DATA_PS_27_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_PS_28 0x0c28
+#define regSPI_SHADER_USER_DATA_PS_28_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_PS_29 0x0c29
+#define regSPI_SHADER_USER_DATA_PS_29_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_PS_30 0x0c2a
+#define regSPI_SHADER_USER_DATA_PS_30_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_PS_31 0x0c2b
+#define regSPI_SHADER_USER_DATA_PS_31_BASE_IDX 0
+#define regSPI_SHADER_PGM_RSRC3_VS 0x0c46
+#define regSPI_SHADER_PGM_RSRC3_VS_BASE_IDX 0
+#define regSPI_SHADER_LATE_ALLOC_VS 0x0c47
+#define regSPI_SHADER_LATE_ALLOC_VS_BASE_IDX 0
+#define regSPI_SHADER_PGM_LO_VS 0x0c48
+#define regSPI_SHADER_PGM_LO_VS_BASE_IDX 0
+#define regSPI_SHADER_PGM_HI_VS 0x0c49
+#define regSPI_SHADER_PGM_HI_VS_BASE_IDX 0
+#define regSPI_SHADER_PGM_RSRC1_VS 0x0c4a
+#define regSPI_SHADER_PGM_RSRC1_VS_BASE_IDX 0
+#define regSPI_SHADER_PGM_RSRC2_VS 0x0c4b
+#define regSPI_SHADER_PGM_RSRC2_VS_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_VS_0 0x0c4c
+#define regSPI_SHADER_USER_DATA_VS_0_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_VS_1 0x0c4d
+#define regSPI_SHADER_USER_DATA_VS_1_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_VS_2 0x0c4e
+#define regSPI_SHADER_USER_DATA_VS_2_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_VS_3 0x0c4f
+#define regSPI_SHADER_USER_DATA_VS_3_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_VS_4 0x0c50
+#define regSPI_SHADER_USER_DATA_VS_4_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_VS_5 0x0c51
+#define regSPI_SHADER_USER_DATA_VS_5_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_VS_6 0x0c52
+#define regSPI_SHADER_USER_DATA_VS_6_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_VS_7 0x0c53
+#define regSPI_SHADER_USER_DATA_VS_7_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_VS_8 0x0c54
+#define regSPI_SHADER_USER_DATA_VS_8_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_VS_9 0x0c55
+#define regSPI_SHADER_USER_DATA_VS_9_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_VS_10 0x0c56
+#define regSPI_SHADER_USER_DATA_VS_10_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_VS_11 0x0c57
+#define regSPI_SHADER_USER_DATA_VS_11_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_VS_12 0x0c58
+#define regSPI_SHADER_USER_DATA_VS_12_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_VS_13 0x0c59
+#define regSPI_SHADER_USER_DATA_VS_13_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_VS_14 0x0c5a
+#define regSPI_SHADER_USER_DATA_VS_14_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_VS_15 0x0c5b
+#define regSPI_SHADER_USER_DATA_VS_15_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_VS_16 0x0c5c
+#define regSPI_SHADER_USER_DATA_VS_16_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_VS_17 0x0c5d
+#define regSPI_SHADER_USER_DATA_VS_17_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_VS_18 0x0c5e
+#define regSPI_SHADER_USER_DATA_VS_18_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_VS_19 0x0c5f
+#define regSPI_SHADER_USER_DATA_VS_19_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_VS_20 0x0c60
+#define regSPI_SHADER_USER_DATA_VS_20_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_VS_21 0x0c61
+#define regSPI_SHADER_USER_DATA_VS_21_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_VS_22 0x0c62
+#define regSPI_SHADER_USER_DATA_VS_22_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_VS_23 0x0c63
+#define regSPI_SHADER_USER_DATA_VS_23_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_VS_24 0x0c64
+#define regSPI_SHADER_USER_DATA_VS_24_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_VS_25 0x0c65
+#define regSPI_SHADER_USER_DATA_VS_25_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_VS_26 0x0c66
+#define regSPI_SHADER_USER_DATA_VS_26_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_VS_27 0x0c67
+#define regSPI_SHADER_USER_DATA_VS_27_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_VS_28 0x0c68
+#define regSPI_SHADER_USER_DATA_VS_28_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_VS_29 0x0c69
+#define regSPI_SHADER_USER_DATA_VS_29_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_VS_30 0x0c6a
+#define regSPI_SHADER_USER_DATA_VS_30_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_VS_31 0x0c6b
+#define regSPI_SHADER_USER_DATA_VS_31_BASE_IDX 0
+#define regSPI_SHADER_PGM_RSRC2_GS_VS 0x0c7c
+#define regSPI_SHADER_PGM_RSRC2_GS_VS_BASE_IDX 0
+#define regSPI_SHADER_PGM_RSRC4_GS 0x0c81
+#define regSPI_SHADER_PGM_RSRC4_GS_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_ADDR_LO_GS 0x0c82
+#define regSPI_SHADER_USER_DATA_ADDR_LO_GS_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_ADDR_HI_GS 0x0c83
+#define regSPI_SHADER_USER_DATA_ADDR_HI_GS_BASE_IDX 0
+#define regSPI_SHADER_PGM_LO_ES 0x0c84
+#define regSPI_SHADER_PGM_LO_ES_BASE_IDX 0
+#define regSPI_SHADER_PGM_HI_ES 0x0c85
+#define regSPI_SHADER_PGM_HI_ES_BASE_IDX 0
+#define regSPI_SHADER_PGM_RSRC3_GS 0x0c87
+#define regSPI_SHADER_PGM_RSRC3_GS_BASE_IDX 0
+#define regSPI_SHADER_PGM_LO_GS 0x0c88
+#define regSPI_SHADER_PGM_LO_GS_BASE_IDX 0
+#define regSPI_SHADER_PGM_HI_GS 0x0c89
+#define regSPI_SHADER_PGM_HI_GS_BASE_IDX 0
+#define regSPI_SHADER_PGM_RSRC1_GS 0x0c8a
+#define regSPI_SHADER_PGM_RSRC1_GS_BASE_IDX 0
+#define regSPI_SHADER_PGM_RSRC2_GS 0x0c8b
+#define regSPI_SHADER_PGM_RSRC2_GS_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_ES_0 0x0ccc
+#define regSPI_SHADER_USER_DATA_ES_0_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_ES_1 0x0ccd
+#define regSPI_SHADER_USER_DATA_ES_1_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_ES_2 0x0cce
+#define regSPI_SHADER_USER_DATA_ES_2_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_ES_3 0x0ccf
+#define regSPI_SHADER_USER_DATA_ES_3_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_ES_4 0x0cd0
+#define regSPI_SHADER_USER_DATA_ES_4_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_ES_5 0x0cd1
+#define regSPI_SHADER_USER_DATA_ES_5_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_ES_6 0x0cd2
+#define regSPI_SHADER_USER_DATA_ES_6_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_ES_7 0x0cd3
+#define regSPI_SHADER_USER_DATA_ES_7_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_ES_8 0x0cd4
+#define regSPI_SHADER_USER_DATA_ES_8_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_ES_9 0x0cd5
+#define regSPI_SHADER_USER_DATA_ES_9_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_ES_10 0x0cd6
+#define regSPI_SHADER_USER_DATA_ES_10_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_ES_11 0x0cd7
+#define regSPI_SHADER_USER_DATA_ES_11_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_ES_12 0x0cd8
+#define regSPI_SHADER_USER_DATA_ES_12_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_ES_13 0x0cd9
+#define regSPI_SHADER_USER_DATA_ES_13_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_ES_14 0x0cda
+#define regSPI_SHADER_USER_DATA_ES_14_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_ES_15 0x0cdb
+#define regSPI_SHADER_USER_DATA_ES_15_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_ES_16 0x0cdc
+#define regSPI_SHADER_USER_DATA_ES_16_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_ES_17 0x0cdd
+#define regSPI_SHADER_USER_DATA_ES_17_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_ES_18 0x0cde
+#define regSPI_SHADER_USER_DATA_ES_18_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_ES_19 0x0cdf
+#define regSPI_SHADER_USER_DATA_ES_19_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_ES_20 0x0ce0
+#define regSPI_SHADER_USER_DATA_ES_20_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_ES_21 0x0ce1
+#define regSPI_SHADER_USER_DATA_ES_21_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_ES_22 0x0ce2
+#define regSPI_SHADER_USER_DATA_ES_22_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_ES_23 0x0ce3
+#define regSPI_SHADER_USER_DATA_ES_23_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_ES_24 0x0ce4
+#define regSPI_SHADER_USER_DATA_ES_24_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_ES_25 0x0ce5
+#define regSPI_SHADER_USER_DATA_ES_25_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_ES_26 0x0ce6
+#define regSPI_SHADER_USER_DATA_ES_26_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_ES_27 0x0ce7
+#define regSPI_SHADER_USER_DATA_ES_27_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_ES_28 0x0ce8
+#define regSPI_SHADER_USER_DATA_ES_28_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_ES_29 0x0ce9
+#define regSPI_SHADER_USER_DATA_ES_29_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_ES_30 0x0cea
+#define regSPI_SHADER_USER_DATA_ES_30_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_ES_31 0x0ceb
+#define regSPI_SHADER_USER_DATA_ES_31_BASE_IDX 0
+#define regSPI_SHADER_PGM_RSRC4_HS 0x0d01
+#define regSPI_SHADER_PGM_RSRC4_HS_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_ADDR_LO_HS 0x0d02
+#define regSPI_SHADER_USER_DATA_ADDR_LO_HS_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_ADDR_HI_HS 0x0d03
+#define regSPI_SHADER_USER_DATA_ADDR_HI_HS_BASE_IDX 0
+#define regSPI_SHADER_PGM_LO_LS 0x0d04
+#define regSPI_SHADER_PGM_LO_LS_BASE_IDX 0
+#define regSPI_SHADER_PGM_HI_LS 0x0d05
+#define regSPI_SHADER_PGM_HI_LS_BASE_IDX 0
+#define regSPI_SHADER_PGM_RSRC3_HS 0x0d07
+#define regSPI_SHADER_PGM_RSRC3_HS_BASE_IDX 0
+#define regSPI_SHADER_PGM_LO_HS 0x0d08
+#define regSPI_SHADER_PGM_LO_HS_BASE_IDX 0
+#define regSPI_SHADER_PGM_HI_HS 0x0d09
+#define regSPI_SHADER_PGM_HI_HS_BASE_IDX 0
+#define regSPI_SHADER_PGM_RSRC1_HS 0x0d0a
+#define regSPI_SHADER_PGM_RSRC1_HS_BASE_IDX 0
+#define regSPI_SHADER_PGM_RSRC2_HS 0x0d0b
+#define regSPI_SHADER_PGM_RSRC2_HS_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_LS_0 0x0d0c
+#define regSPI_SHADER_USER_DATA_LS_0_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_LS_1 0x0d0d
+#define regSPI_SHADER_USER_DATA_LS_1_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_LS_2 0x0d0e
+#define regSPI_SHADER_USER_DATA_LS_2_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_LS_3 0x0d0f
+#define regSPI_SHADER_USER_DATA_LS_3_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_LS_4 0x0d10
+#define regSPI_SHADER_USER_DATA_LS_4_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_LS_5 0x0d11
+#define regSPI_SHADER_USER_DATA_LS_5_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_LS_6 0x0d12
+#define regSPI_SHADER_USER_DATA_LS_6_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_LS_7 0x0d13
+#define regSPI_SHADER_USER_DATA_LS_7_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_LS_8 0x0d14
+#define regSPI_SHADER_USER_DATA_LS_8_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_LS_9 0x0d15
+#define regSPI_SHADER_USER_DATA_LS_9_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_LS_10 0x0d16
+#define regSPI_SHADER_USER_DATA_LS_10_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_LS_11 0x0d17
+#define regSPI_SHADER_USER_DATA_LS_11_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_LS_12 0x0d18
+#define regSPI_SHADER_USER_DATA_LS_12_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_LS_13 0x0d19
+#define regSPI_SHADER_USER_DATA_LS_13_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_LS_14 0x0d1a
+#define regSPI_SHADER_USER_DATA_LS_14_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_LS_15 0x0d1b
+#define regSPI_SHADER_USER_DATA_LS_15_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_LS_16 0x0d1c
+#define regSPI_SHADER_USER_DATA_LS_16_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_LS_17 0x0d1d
+#define regSPI_SHADER_USER_DATA_LS_17_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_LS_18 0x0d1e
+#define regSPI_SHADER_USER_DATA_LS_18_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_LS_19 0x0d1f
+#define regSPI_SHADER_USER_DATA_LS_19_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_LS_20 0x0d20
+#define regSPI_SHADER_USER_DATA_LS_20_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_LS_21 0x0d21
+#define regSPI_SHADER_USER_DATA_LS_21_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_LS_22 0x0d22
+#define regSPI_SHADER_USER_DATA_LS_22_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_LS_23 0x0d23
+#define regSPI_SHADER_USER_DATA_LS_23_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_LS_24 0x0d24
+#define regSPI_SHADER_USER_DATA_LS_24_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_LS_25 0x0d25
+#define regSPI_SHADER_USER_DATA_LS_25_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_LS_26 0x0d26
+#define regSPI_SHADER_USER_DATA_LS_26_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_LS_27 0x0d27
+#define regSPI_SHADER_USER_DATA_LS_27_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_LS_28 0x0d28
+#define regSPI_SHADER_USER_DATA_LS_28_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_LS_29 0x0d29
+#define regSPI_SHADER_USER_DATA_LS_29_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_LS_30 0x0d2a
+#define regSPI_SHADER_USER_DATA_LS_30_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_LS_31 0x0d2b
+#define regSPI_SHADER_USER_DATA_LS_31_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_COMMON_0 0x0d4c
+#define regSPI_SHADER_USER_DATA_COMMON_0_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_COMMON_1 0x0d4d
+#define regSPI_SHADER_USER_DATA_COMMON_1_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_COMMON_2 0x0d4e
+#define regSPI_SHADER_USER_DATA_COMMON_2_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_COMMON_3 0x0d4f
+#define regSPI_SHADER_USER_DATA_COMMON_3_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_COMMON_4 0x0d50
+#define regSPI_SHADER_USER_DATA_COMMON_4_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_COMMON_5 0x0d51
+#define regSPI_SHADER_USER_DATA_COMMON_5_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_COMMON_6 0x0d52
+#define regSPI_SHADER_USER_DATA_COMMON_6_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_COMMON_7 0x0d53
+#define regSPI_SHADER_USER_DATA_COMMON_7_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_COMMON_8 0x0d54
+#define regSPI_SHADER_USER_DATA_COMMON_8_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_COMMON_9 0x0d55
+#define regSPI_SHADER_USER_DATA_COMMON_9_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_COMMON_10 0x0d56
+#define regSPI_SHADER_USER_DATA_COMMON_10_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_COMMON_11 0x0d57
+#define regSPI_SHADER_USER_DATA_COMMON_11_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_COMMON_12 0x0d58
+#define regSPI_SHADER_USER_DATA_COMMON_12_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_COMMON_13 0x0d59
+#define regSPI_SHADER_USER_DATA_COMMON_13_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_COMMON_14 0x0d5a
+#define regSPI_SHADER_USER_DATA_COMMON_14_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_COMMON_15 0x0d5b
+#define regSPI_SHADER_USER_DATA_COMMON_15_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_COMMON_16 0x0d5c
+#define regSPI_SHADER_USER_DATA_COMMON_16_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_COMMON_17 0x0d5d
+#define regSPI_SHADER_USER_DATA_COMMON_17_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_COMMON_18 0x0d5e
+#define regSPI_SHADER_USER_DATA_COMMON_18_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_COMMON_19 0x0d5f
+#define regSPI_SHADER_USER_DATA_COMMON_19_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_COMMON_20 0x0d60
+#define regSPI_SHADER_USER_DATA_COMMON_20_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_COMMON_21 0x0d61
+#define regSPI_SHADER_USER_DATA_COMMON_21_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_COMMON_22 0x0d62
+#define regSPI_SHADER_USER_DATA_COMMON_22_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_COMMON_23 0x0d63
+#define regSPI_SHADER_USER_DATA_COMMON_23_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_COMMON_24 0x0d64
+#define regSPI_SHADER_USER_DATA_COMMON_24_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_COMMON_25 0x0d65
+#define regSPI_SHADER_USER_DATA_COMMON_25_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_COMMON_26 0x0d66
+#define regSPI_SHADER_USER_DATA_COMMON_26_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_COMMON_27 0x0d67
+#define regSPI_SHADER_USER_DATA_COMMON_27_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_COMMON_28 0x0d68
+#define regSPI_SHADER_USER_DATA_COMMON_28_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_COMMON_29 0x0d69
+#define regSPI_SHADER_USER_DATA_COMMON_29_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_COMMON_30 0x0d6a
+#define regSPI_SHADER_USER_DATA_COMMON_30_BASE_IDX 0
+#define regSPI_SHADER_USER_DATA_COMMON_31 0x0d6b
+#define regSPI_SHADER_USER_DATA_COMMON_31_BASE_IDX 0
+#define regCOMPUTE_DISPATCH_INITIATOR 0x0e00
+#define regCOMPUTE_DISPATCH_INITIATOR_BASE_IDX 0
+#define regCOMPUTE_DIM_X 0x0e01
+#define regCOMPUTE_DIM_X_BASE_IDX 0
+#define regCOMPUTE_DIM_Y 0x0e02
+#define regCOMPUTE_DIM_Y_BASE_IDX 0
+#define regCOMPUTE_DIM_Z 0x0e03
+#define regCOMPUTE_DIM_Z_BASE_IDX 0
+#define regCOMPUTE_START_X 0x0e04
+#define regCOMPUTE_START_X_BASE_IDX 0
+#define regCOMPUTE_START_Y 0x0e05
+#define regCOMPUTE_START_Y_BASE_IDX 0
+#define regCOMPUTE_START_Z 0x0e06
+#define regCOMPUTE_START_Z_BASE_IDX 0
+#define regCOMPUTE_NUM_THREAD_X 0x0e07
+#define regCOMPUTE_NUM_THREAD_X_BASE_IDX 0
+#define regCOMPUTE_NUM_THREAD_Y 0x0e08
+#define regCOMPUTE_NUM_THREAD_Y_BASE_IDX 0
+#define regCOMPUTE_NUM_THREAD_Z 0x0e09
+#define regCOMPUTE_NUM_THREAD_Z_BASE_IDX 0
+#define regCOMPUTE_PIPELINESTAT_ENABLE 0x0e0a
+#define regCOMPUTE_PIPELINESTAT_ENABLE_BASE_IDX 0
+#define regCOMPUTE_PERFCOUNT_ENABLE 0x0e0b
+#define regCOMPUTE_PERFCOUNT_ENABLE_BASE_IDX 0
+#define regCOMPUTE_PGM_LO 0x0e0c
+#define regCOMPUTE_PGM_LO_BASE_IDX 0
+#define regCOMPUTE_PGM_HI 0x0e0d
+#define regCOMPUTE_PGM_HI_BASE_IDX 0
+#define regCOMPUTE_DISPATCH_PKT_ADDR_LO 0x0e0e
+#define regCOMPUTE_DISPATCH_PKT_ADDR_LO_BASE_IDX 0
+#define regCOMPUTE_DISPATCH_PKT_ADDR_HI 0x0e0f
+#define regCOMPUTE_DISPATCH_PKT_ADDR_HI_BASE_IDX 0
+#define regCOMPUTE_DISPATCH_SCRATCH_BASE_LO 0x0e10
+#define regCOMPUTE_DISPATCH_SCRATCH_BASE_LO_BASE_IDX 0
+#define regCOMPUTE_DISPATCH_SCRATCH_BASE_HI 0x0e11
+#define regCOMPUTE_DISPATCH_SCRATCH_BASE_HI_BASE_IDX 0
+#define regCOMPUTE_PGM_RSRC1 0x0e12
+#define regCOMPUTE_PGM_RSRC1_BASE_IDX 0
+#define regCOMPUTE_PGM_RSRC2 0x0e13
+#define regCOMPUTE_PGM_RSRC2_BASE_IDX 0
+#define regCOMPUTE_VMID 0x0e14
+#define regCOMPUTE_VMID_BASE_IDX 0
+#define regCOMPUTE_RESOURCE_LIMITS 0x0e15
+#define regCOMPUTE_RESOURCE_LIMITS_BASE_IDX 0
+#define regCOMPUTE_STATIC_THREAD_MGMT_SE0 0x0e16
+#define regCOMPUTE_STATIC_THREAD_MGMT_SE0_BASE_IDX 0
+#define regCOMPUTE_STATIC_THREAD_MGMT_SE1 0x0e17
+#define regCOMPUTE_STATIC_THREAD_MGMT_SE1_BASE_IDX 0
+#define regCOMPUTE_TMPRING_SIZE 0x0e18
+#define regCOMPUTE_TMPRING_SIZE_BASE_IDX 0
+#define regCOMPUTE_STATIC_THREAD_MGMT_SE2 0x0e19
+#define regCOMPUTE_STATIC_THREAD_MGMT_SE2_BASE_IDX 0
+#define regCOMPUTE_STATIC_THREAD_MGMT_SE3 0x0e1a
+#define regCOMPUTE_STATIC_THREAD_MGMT_SE3_BASE_IDX 0
+#define regCOMPUTE_RESTART_X 0x0e1b
+#define regCOMPUTE_RESTART_X_BASE_IDX 0
+#define regCOMPUTE_RESTART_Y 0x0e1c
+#define regCOMPUTE_RESTART_Y_BASE_IDX 0
+#define regCOMPUTE_RESTART_Z 0x0e1d
+#define regCOMPUTE_RESTART_Z_BASE_IDX 0
+#define regCOMPUTE_THREAD_TRACE_ENABLE 0x0e1e
+#define regCOMPUTE_THREAD_TRACE_ENABLE_BASE_IDX 0
+#define regCOMPUTE_MISC_RESERVED 0x0e1f
+#define regCOMPUTE_MISC_RESERVED_BASE_IDX 0
+#define regCOMPUTE_DISPATCH_ID 0x0e20
+#define regCOMPUTE_DISPATCH_ID_BASE_IDX 0
+#define regCOMPUTE_THREADGROUP_ID 0x0e21
+#define regCOMPUTE_THREADGROUP_ID_BASE_IDX 0
+#define regCOMPUTE_RELAUNCH 0x0e22
+#define regCOMPUTE_RELAUNCH_BASE_IDX 0
+#define regCOMPUTE_WAVE_RESTORE_ADDR_LO 0x0e23
+#define regCOMPUTE_WAVE_RESTORE_ADDR_LO_BASE_IDX 0
+#define regCOMPUTE_WAVE_RESTORE_ADDR_HI 0x0e24
+#define regCOMPUTE_WAVE_RESTORE_ADDR_HI_BASE_IDX 0
+#define regCOMPUTE_TG_CHUNK_SIZE 0x0e27
+#define regCOMPUTE_TG_CHUNK_SIZE_BASE_IDX 0
+#define regCOMPUTE_SHADER_CHKSUM 0x0e2c
+#define regCOMPUTE_SHADER_CHKSUM_BASE_IDX 0
+#define regCOMPUTE_PGM_RSRC3 0x0e2d
+#define regCOMPUTE_PGM_RSRC3_BASE_IDX 0
+#define regCOMPUTE_USER_DATA_0 0x0e40
+#define regCOMPUTE_USER_DATA_0_BASE_IDX 0
+#define regCOMPUTE_USER_DATA_1 0x0e41
+#define regCOMPUTE_USER_DATA_1_BASE_IDX 0
+#define regCOMPUTE_USER_DATA_2 0x0e42
+#define regCOMPUTE_USER_DATA_2_BASE_IDX 0
+#define regCOMPUTE_USER_DATA_3 0x0e43
+#define regCOMPUTE_USER_DATA_3_BASE_IDX 0
+#define regCOMPUTE_USER_DATA_4 0x0e44
+#define regCOMPUTE_USER_DATA_4_BASE_IDX 0
+#define regCOMPUTE_USER_DATA_5 0x0e45
+#define regCOMPUTE_USER_DATA_5_BASE_IDX 0
+#define regCOMPUTE_USER_DATA_6 0x0e46
+#define regCOMPUTE_USER_DATA_6_BASE_IDX 0
+#define regCOMPUTE_USER_DATA_7 0x0e47
+#define regCOMPUTE_USER_DATA_7_BASE_IDX 0
+#define regCOMPUTE_USER_DATA_8 0x0e48
+#define regCOMPUTE_USER_DATA_8_BASE_IDX 0
+#define regCOMPUTE_USER_DATA_9 0x0e49
+#define regCOMPUTE_USER_DATA_9_BASE_IDX 0
+#define regCOMPUTE_USER_DATA_10 0x0e4a
+#define regCOMPUTE_USER_DATA_10_BASE_IDX 0
+#define regCOMPUTE_USER_DATA_11 0x0e4b
+#define regCOMPUTE_USER_DATA_11_BASE_IDX 0
+#define regCOMPUTE_USER_DATA_12 0x0e4c
+#define regCOMPUTE_USER_DATA_12_BASE_IDX 0
+#define regCOMPUTE_USER_DATA_13 0x0e4d
+#define regCOMPUTE_USER_DATA_13_BASE_IDX 0
+#define regCOMPUTE_USER_DATA_14 0x0e4e
+#define regCOMPUTE_USER_DATA_14_BASE_IDX 0
+#define regCOMPUTE_USER_DATA_15 0x0e4f
+#define regCOMPUTE_USER_DATA_15_BASE_IDX 0
+#define regCOMPUTE_DISPATCH_END 0x0e7e
+#define regCOMPUTE_DISPATCH_END_BASE_IDX 0
+#define regCOMPUTE_NOWHERE 0x0e7f
+#define regCOMPUTE_NOWHERE_BASE_IDX 0
+
+
+// addressBlock: xcd0_gc_cppdec
+// base address: 0xc080
+#define regCP_DFY_CNTL 0x1020
+#define regCP_DFY_CNTL_BASE_IDX 0
+#define regCP_DFY_STAT 0x1021
+#define regCP_DFY_STAT_BASE_IDX 0
+#define regCP_DFY_ADDR_HI 0x1022
+#define regCP_DFY_ADDR_HI_BASE_IDX 0
+#define regCP_DFY_ADDR_LO 0x1023
+#define regCP_DFY_ADDR_LO_BASE_IDX 0
+#define regCP_DFY_DATA_0 0x1024
+#define regCP_DFY_DATA_0_BASE_IDX 0
+#define regCP_DFY_DATA_1 0x1025
+#define regCP_DFY_DATA_1_BASE_IDX 0
+#define regCP_DFY_DATA_2 0x1026
+#define regCP_DFY_DATA_2_BASE_IDX 0
+#define regCP_DFY_DATA_3 0x1027
+#define regCP_DFY_DATA_3_BASE_IDX 0
+#define regCP_DFY_DATA_4 0x1028
+#define regCP_DFY_DATA_4_BASE_IDX 0
+#define regCP_DFY_DATA_5 0x1029
+#define regCP_DFY_DATA_5_BASE_IDX 0
+#define regCP_DFY_DATA_6 0x102a
+#define regCP_DFY_DATA_6_BASE_IDX 0
+#define regCP_DFY_DATA_7 0x102b
+#define regCP_DFY_DATA_7_BASE_IDX 0
+#define regCP_DFY_DATA_8 0x102c
+#define regCP_DFY_DATA_8_BASE_IDX 0
+#define regCP_DFY_DATA_9 0x102d
+#define regCP_DFY_DATA_9_BASE_IDX 0
+#define regCP_DFY_DATA_10 0x102e
+#define regCP_DFY_DATA_10_BASE_IDX 0
+#define regCP_DFY_DATA_11 0x102f
+#define regCP_DFY_DATA_11_BASE_IDX 0
+#define regCP_DFY_DATA_12 0x1030
+#define regCP_DFY_DATA_12_BASE_IDX 0
+#define regCP_DFY_DATA_13 0x1031
+#define regCP_DFY_DATA_13_BASE_IDX 0
+#define regCP_DFY_DATA_14 0x1032
+#define regCP_DFY_DATA_14_BASE_IDX 0
+#define regCP_DFY_DATA_15 0x1033
+#define regCP_DFY_DATA_15_BASE_IDX 0
+#define regCP_DFY_CMD 0x1034
+#define regCP_DFY_CMD_BASE_IDX 0
+#define regCP_EOPQ_WAIT_TIME 0x1035
+#define regCP_EOPQ_WAIT_TIME_BASE_IDX 0
+#define regCP_CPC_MGCG_SYNC_CNTL 0x1036
+#define regCP_CPC_MGCG_SYNC_CNTL_BASE_IDX 0
+#define regCPC_INT_INFO 0x1037
+#define regCPC_INT_INFO_BASE_IDX 0
+#define regCP_VIRT_STATUS 0x1038
+#define regCP_VIRT_STATUS_BASE_IDX 0
+#define regCPC_INT_ADDR 0x1039
+#define regCPC_INT_ADDR_BASE_IDX 0
+#define regCPC_INT_PASID 0x103a
+#define regCPC_INT_PASID_BASE_IDX 0
+#define regCP_GFX_ERROR 0x103b
+#define regCP_GFX_ERROR_BASE_IDX 0
+#define regCPG_UTCL1_CNTL 0x103c
+#define regCPG_UTCL1_CNTL_BASE_IDX 0
+#define regCPC_UTCL1_CNTL 0x103d
+#define regCPC_UTCL1_CNTL_BASE_IDX 0
+#define regCPF_UTCL1_CNTL 0x103e
+#define regCPF_UTCL1_CNTL_BASE_IDX 0
+#define regCP_AQL_SMM_STATUS 0x103f
+#define regCP_AQL_SMM_STATUS_BASE_IDX 0
+#define regCP_RB0_BASE 0x1040
+#define regCP_RB0_BASE_BASE_IDX 0
+#define regCP_RB_BASE 0x1040
+#define regCP_RB_BASE_BASE_IDX 0
+#define regCP_RB0_CNTL 0x1041
+#define regCP_RB0_CNTL_BASE_IDX 0
+#define regCP_RB_CNTL 0x1041
+#define regCP_RB_CNTL_BASE_IDX 0
+#define regCP_RB_RPTR_WR 0x1042
+#define regCP_RB_RPTR_WR_BASE_IDX 0
+#define regCP_RB0_RPTR_ADDR 0x1043
+#define regCP_RB0_RPTR_ADDR_BASE_IDX 0
+#define regCP_RB_RPTR_ADDR 0x1043
+#define regCP_RB_RPTR_ADDR_BASE_IDX 0
+#define regCP_RB0_RPTR_ADDR_HI 0x1044
+#define regCP_RB0_RPTR_ADDR_HI_BASE_IDX 0
+#define regCP_RB_RPTR_ADDR_HI 0x1044
+#define regCP_RB_RPTR_ADDR_HI_BASE_IDX 0
+#define regCP_RB0_BUFSZ_MASK 0x1045
+#define regCP_RB0_BUFSZ_MASK_BASE_IDX 0
+#define regCP_RB_BUFSZ_MASK 0x1045
+#define regCP_RB_BUFSZ_MASK_BASE_IDX 0
+#define regCP_RB_WPTR_POLL_ADDR_LO 0x1046
+#define regCP_RB_WPTR_POLL_ADDR_LO_BASE_IDX 0
+#define regCP_RB_WPTR_POLL_ADDR_HI 0x1047
+#define regCP_RB_WPTR_POLL_ADDR_HI_BASE_IDX 0
+#define regGC_PRIV_MODE 0x1048
+#define regGC_PRIV_MODE_BASE_IDX 0
+#define regCP_INT_CNTL 0x1049
+#define regCP_INT_CNTL_BASE_IDX 0
+#define regCP_INT_STATUS 0x104a
+#define regCP_INT_STATUS_BASE_IDX 0
+#define regCP_DEVICE_ID 0x104b
+#define regCP_DEVICE_ID_BASE_IDX 0
+#define regCP_ME0_PIPE_PRIORITY_CNTS 0x104c
+#define regCP_ME0_PIPE_PRIORITY_CNTS_BASE_IDX 0
+#define regCP_RING_PRIORITY_CNTS 0x104c
+#define regCP_RING_PRIORITY_CNTS_BASE_IDX 0
+#define regCP_ME0_PIPE0_PRIORITY 0x104d
+#define regCP_ME0_PIPE0_PRIORITY_BASE_IDX 0
+#define regCP_RING0_PRIORITY 0x104d
+#define regCP_RING0_PRIORITY_BASE_IDX 0
+#define regCP_ME0_PIPE1_PRIORITY 0x104e
+#define regCP_ME0_PIPE1_PRIORITY_BASE_IDX 0
+#define regCP_RING1_PRIORITY 0x104e
+#define regCP_RING1_PRIORITY_BASE_IDX 0
+#define regCP_ME0_PIPE2_PRIORITY 0x104f
+#define regCP_ME0_PIPE2_PRIORITY_BASE_IDX 0
+#define regCP_RING2_PRIORITY 0x104f
+#define regCP_RING2_PRIORITY_BASE_IDX 0
+#define regCP_FATAL_ERROR 0x1050
+#define regCP_FATAL_ERROR_BASE_IDX 0
+#define regCP_RB_VMID 0x1051
+#define regCP_RB_VMID_BASE_IDX 0
+#define regCP_ME0_PIPE0_VMID 0x1052
+#define regCP_ME0_PIPE0_VMID_BASE_IDX 0
+#define regCP_ME0_PIPE1_VMID 0x1053
+#define regCP_ME0_PIPE1_VMID_BASE_IDX 0
+#define regCP_RB0_WPTR 0x1054
+#define regCP_RB0_WPTR_BASE_IDX 0
+#define regCP_RB_WPTR 0x1054
+#define regCP_RB_WPTR_BASE_IDX 0
+#define regCP_RB0_WPTR_HI 0x1055
+#define regCP_RB0_WPTR_HI_BASE_IDX 0
+#define regCP_RB_WPTR_HI 0x1055
+#define regCP_RB_WPTR_HI_BASE_IDX 0
+#define regCP_RB1_WPTR 0x1056
+#define regCP_RB1_WPTR_BASE_IDX 0
+#define regCP_RB1_WPTR_HI 0x1057
+#define regCP_RB1_WPTR_HI_BASE_IDX 0
+#define regCP_RB2_WPTR 0x1058
+#define regCP_RB2_WPTR_BASE_IDX 0
+#define regCP_RB_DOORBELL_CONTROL 0x1059
+#define regCP_RB_DOORBELL_CONTROL_BASE_IDX 0
+#define regCP_RB_DOORBELL_RANGE_LOWER 0x105a
+#define regCP_RB_DOORBELL_RANGE_LOWER_BASE_IDX 0
+#define regCP_RB_DOORBELL_RANGE_UPPER 0x105b
+#define regCP_RB_DOORBELL_RANGE_UPPER_BASE_IDX 0
+#define regCP_MEC_DOORBELL_RANGE_LOWER 0x105c
+#define regCP_MEC_DOORBELL_RANGE_LOWER_BASE_IDX 0
+#define regCP_MEC_DOORBELL_RANGE_UPPER 0x105d
+#define regCP_MEC_DOORBELL_RANGE_UPPER_BASE_IDX 0
+#define regCPG_UTCL1_ERROR 0x105e
+#define regCPG_UTCL1_ERROR_BASE_IDX 0
+#define regCPC_UTCL1_ERROR 0x105f
+#define regCPC_UTCL1_ERROR_BASE_IDX 0
+#define regCP_RB1_BASE 0x1060
+#define regCP_RB1_BASE_BASE_IDX 0
+#define regCP_RB1_CNTL 0x1061
+#define regCP_RB1_CNTL_BASE_IDX 0
+#define regCP_RB1_RPTR_ADDR 0x1062
+#define regCP_RB1_RPTR_ADDR_BASE_IDX 0
+#define regCP_RB1_RPTR_ADDR_HI 0x1063
+#define regCP_RB1_RPTR_ADDR_HI_BASE_IDX 0
+#define regCP_RB2_BASE 0x1065
+#define regCP_RB2_BASE_BASE_IDX 0
+#define regCP_RB2_CNTL 0x1066
+#define regCP_RB2_CNTL_BASE_IDX 0
+#define regCP_RB2_RPTR_ADDR 0x1067
+#define regCP_RB2_RPTR_ADDR_BASE_IDX 0
+#define regCP_RB2_RPTR_ADDR_HI 0x1068
+#define regCP_RB2_RPTR_ADDR_HI_BASE_IDX 0
+#define regCP_RB0_ACTIVE 0x1069
+#define regCP_RB0_ACTIVE_BASE_IDX 0
+#define regCP_RB_ACTIVE 0x1069
+#define regCP_RB_ACTIVE_BASE_IDX 0
+#define regCP_INT_CNTL_RING0 0x106a
+#define regCP_INT_CNTL_RING0_BASE_IDX 0
+#define regCP_INT_CNTL_RING1 0x106b
+#define regCP_INT_CNTL_RING1_BASE_IDX 0
+#define regCP_INT_CNTL_RING2 0x106c
+#define regCP_INT_CNTL_RING2_BASE_IDX 0
+#define regCP_INT_STATUS_RING0 0x106d
+#define regCP_INT_STATUS_RING0_BASE_IDX 0
+#define regCP_INT_STATUS_RING1 0x106e
+#define regCP_INT_STATUS_RING1_BASE_IDX 0
+#define regCP_INT_STATUS_RING2 0x106f
+#define regCP_INT_STATUS_RING2_BASE_IDX 0
+#define regCP_ME_F32_INTERRUPT 0x1073
+#define regCP_ME_F32_INTERRUPT_BASE_IDX 0
+#define regCP_PFP_F32_INTERRUPT 0x1074
+#define regCP_PFP_F32_INTERRUPT_BASE_IDX 0
+#define regCP_CE_F32_INTERRUPT 0x1075
+#define regCP_CE_F32_INTERRUPT_BASE_IDX 0
+#define regCP_MEC1_F32_INTERRUPT 0x1076
+#define regCP_MEC1_F32_INTERRUPT_BASE_IDX 0
+#define regCP_MEC2_F32_INTERRUPT 0x1077
+#define regCP_MEC2_F32_INTERRUPT_BASE_IDX 0
+#define regCP_PWR_CNTL 0x1078
+#define regCP_PWR_CNTL_BASE_IDX 0
+#define regCP_MEM_SLP_CNTL 0x1079
+#define regCP_MEM_SLP_CNTL_BASE_IDX 0
+#define regCP_ECC_DMA_FIRST_OCCURRENCE 0x107a
+#define regCP_ECC_DMA_FIRST_OCCURRENCE_BASE_IDX 0
+#define regCP_ECC_FIRSTOCCURRENCE 0x107a
+#define regCP_ECC_FIRSTOCCURRENCE_BASE_IDX 0
+#define regCP_ECC_FIRSTOCCURRENCE_RING0 0x107b
+#define regCP_ECC_FIRSTOCCURRENCE_RING0_BASE_IDX 0
+#define regCP_ECC_FIRSTOCCURRENCE_RING1 0x107c
+#define regCP_ECC_FIRSTOCCURRENCE_RING1_BASE_IDX 0
+#define regCP_ECC_FIRSTOCCURRENCE_RING2 0x107d
+#define regCP_ECC_FIRSTOCCURRENCE_RING2_BASE_IDX 0
+#define regGB_EDC_MODE 0x107e
+#define regGB_EDC_MODE_BASE_IDX 0
+#define regCP_DEBUG 0x107f
+#define regCP_DEBUG_BASE_IDX 0
+#define regCP_CPF_DEBUG 0x1080
+#define regCP_CPF_DEBUG_BASE_IDX 0
+#define regCP_CPC_DEBUG 0x1081
+#define regCP_CPC_DEBUG_BASE_IDX 0
+#define regCP_CPC_DEBUG_2 0x1082
+#define regCP_CPC_DEBUG_2_BASE_IDX 0
+#define regCP_PQ_WPTR_POLL_CNTL 0x1083
+#define regCP_PQ_WPTR_POLL_CNTL_BASE_IDX 0
+#define regCP_PQ_WPTR_POLL_CNTL1 0x1084
+#define regCP_PQ_WPTR_POLL_CNTL1_BASE_IDX 0
+#define regCP_ME1_PIPE0_INT_CNTL 0x1085
+#define regCP_ME1_PIPE0_INT_CNTL_BASE_IDX 0
+#define regCP_ME1_PIPE1_INT_CNTL 0x1086
+#define regCP_ME1_PIPE1_INT_CNTL_BASE_IDX 0
+#define regCP_ME1_PIPE2_INT_CNTL 0x1087
+#define regCP_ME1_PIPE2_INT_CNTL_BASE_IDX 0
+#define regCP_ME1_PIPE3_INT_CNTL 0x1088
+#define regCP_ME1_PIPE3_INT_CNTL_BASE_IDX 0
+#define regCP_ME2_PIPE0_INT_CNTL 0x1089
+#define regCP_ME2_PIPE0_INT_CNTL_BASE_IDX 0
+#define regCP_ME2_PIPE1_INT_CNTL 0x108a
+#define regCP_ME2_PIPE1_INT_CNTL_BASE_IDX 0
+#define regCP_ME2_PIPE2_INT_CNTL 0x108b
+#define regCP_ME2_PIPE2_INT_CNTL_BASE_IDX 0
+#define regCP_ME2_PIPE3_INT_CNTL 0x108c
+#define regCP_ME2_PIPE3_INT_CNTL_BASE_IDX 0
+#define regCP_ME1_PIPE0_INT_STATUS 0x108d
+#define regCP_ME1_PIPE0_INT_STATUS_BASE_IDX 0
+#define regCP_ME1_PIPE1_INT_STATUS 0x108e
+#define regCP_ME1_PIPE1_INT_STATUS_BASE_IDX 0
+#define regCP_ME1_PIPE2_INT_STATUS 0x108f
+#define regCP_ME1_PIPE2_INT_STATUS_BASE_IDX 0
+#define regCP_ME1_PIPE3_INT_STATUS 0x1090
+#define regCP_ME1_PIPE3_INT_STATUS_BASE_IDX 0
+#define regCP_ME2_PIPE0_INT_STATUS 0x1091
+#define regCP_ME2_PIPE0_INT_STATUS_BASE_IDX 0
+#define regCP_ME2_PIPE1_INT_STATUS 0x1092
+#define regCP_ME2_PIPE1_INT_STATUS_BASE_IDX 0
+#define regCP_ME2_PIPE2_INT_STATUS 0x1093
+#define regCP_ME2_PIPE2_INT_STATUS_BASE_IDX 0
+#define regCP_ME2_PIPE3_INT_STATUS 0x1094
+#define regCP_ME2_PIPE3_INT_STATUS_BASE_IDX 0
+#define regCP_ME1_INT_STAT_DEBUG 0x1095
+#define regCP_ME1_INT_STAT_DEBUG_BASE_IDX 0
+#define regCP_ME2_INT_STAT_DEBUG 0x1096
+#define regCP_ME2_INT_STAT_DEBUG_BASE_IDX 0
+#define regCC_GC_EDC_CONFIG 0x1098
+#define regCC_GC_EDC_CONFIG_BASE_IDX 0
+#define regCP_ME1_PIPE_PRIORITY_CNTS 0x1099
+#define regCP_ME1_PIPE_PRIORITY_CNTS_BASE_IDX 0
+#define regCP_ME1_PIPE0_PRIORITY 0x109a
+#define regCP_ME1_PIPE0_PRIORITY_BASE_IDX 0
+#define regCP_ME1_PIPE1_PRIORITY 0x109b
+#define regCP_ME1_PIPE1_PRIORITY_BASE_IDX 0
+#define regCP_ME1_PIPE2_PRIORITY 0x109c
+#define regCP_ME1_PIPE2_PRIORITY_BASE_IDX 0
+#define regCP_ME1_PIPE3_PRIORITY 0x109d
+#define regCP_ME1_PIPE3_PRIORITY_BASE_IDX 0
+#define regCP_ME2_PIPE_PRIORITY_CNTS 0x109e
+#define regCP_ME2_PIPE_PRIORITY_CNTS_BASE_IDX 0
+#define regCP_ME2_PIPE0_PRIORITY 0x109f
+#define regCP_ME2_PIPE0_PRIORITY_BASE_IDX 0
+#define regCP_ME2_PIPE1_PRIORITY 0x10a0
+#define regCP_ME2_PIPE1_PRIORITY_BASE_IDX 0
+#define regCP_ME2_PIPE2_PRIORITY 0x10a1
+#define regCP_ME2_PIPE2_PRIORITY_BASE_IDX 0
+#define regCP_ME2_PIPE3_PRIORITY 0x10a2
+#define regCP_ME2_PIPE3_PRIORITY_BASE_IDX 0
+#define regCP_CE_PRGRM_CNTR_START 0x10a3
+#define regCP_CE_PRGRM_CNTR_START_BASE_IDX 0
+#define regCP_PFP_PRGRM_CNTR_START 0x10a4
+#define regCP_PFP_PRGRM_CNTR_START_BASE_IDX 0
+#define regCP_ME_PRGRM_CNTR_START 0x10a5
+#define regCP_ME_PRGRM_CNTR_START_BASE_IDX 0
+#define regCP_MEC1_PRGRM_CNTR_START 0x10a6
+#define regCP_MEC1_PRGRM_CNTR_START_BASE_IDX 0
+#define regCP_MEC2_PRGRM_CNTR_START 0x10a7
+#define regCP_MEC2_PRGRM_CNTR_START_BASE_IDX 0
+#define regCP_CE_INTR_ROUTINE_START 0x10a8
+#define regCP_CE_INTR_ROUTINE_START_BASE_IDX 0
+#define regCP_PFP_INTR_ROUTINE_START 0x10a9
+#define regCP_PFP_INTR_ROUTINE_START_BASE_IDX 0
+#define regCP_ME_INTR_ROUTINE_START 0x10aa
+#define regCP_ME_INTR_ROUTINE_START_BASE_IDX 0
+#define regCP_MEC1_INTR_ROUTINE_START 0x10ab
+#define regCP_MEC1_INTR_ROUTINE_START_BASE_IDX 0
+#define regCP_MEC2_INTR_ROUTINE_START 0x10ac
+#define regCP_MEC2_INTR_ROUTINE_START_BASE_IDX 0
+#define regCP_CONTEXT_CNTL 0x10ad
+#define regCP_CONTEXT_CNTL_BASE_IDX 0
+#define regCP_MAX_CONTEXT 0x10ae
+#define regCP_MAX_CONTEXT_BASE_IDX 0
+#define regCP_IQ_WAIT_TIME1 0x10af
+#define regCP_IQ_WAIT_TIME1_BASE_IDX 0
+#define regCP_IQ_WAIT_TIME2 0x10b0
+#define regCP_IQ_WAIT_TIME2_BASE_IDX 0
+#define regCP_RB0_BASE_HI 0x10b1
+#define regCP_RB0_BASE_HI_BASE_IDX 0
+#define regCP_RB1_BASE_HI 0x10b2
+#define regCP_RB1_BASE_HI_BASE_IDX 0
+#define regCP_VMID_RESET 0x10b3
+#define regCP_VMID_RESET_BASE_IDX 0
+#define regCPC_INT_CNTL 0x10b4
+#define regCPC_INT_CNTL_BASE_IDX 0
+#define regCPC_INT_STATUS 0x10b5
+#define regCPC_INT_STATUS_BASE_IDX 0
+#define regCP_VMID_PREEMPT 0x10b6
+#define regCP_VMID_PREEMPT_BASE_IDX 0
+#define regCPC_INT_CNTX_ID 0x10b7
+#define regCPC_INT_CNTX_ID_BASE_IDX 0
+#define regCP_PQ_STATUS 0x10b8
+#define regCP_PQ_STATUS_BASE_IDX 0
+#define regCP_CPC_IC_BASE_LO 0x10b9
+#define regCP_CPC_IC_BASE_LO_BASE_IDX 0
+#define regCP_CPC_IC_BASE_HI 0x10ba
+#define regCP_CPC_IC_BASE_HI_BASE_IDX 0
+#define regCP_CPC_IC_BASE_CNTL 0x10bb
+#define regCP_CPC_IC_BASE_CNTL_BASE_IDX 0
+#define regCP_CPC_IC_OP_CNTL 0x10bc
+#define regCP_CPC_IC_OP_CNTL_BASE_IDX 0
+#define regCP_MEC1_F32_INT_DIS 0x10bd
+#define regCP_MEC1_F32_INT_DIS_BASE_IDX 0
+#define regCP_MEC2_F32_INT_DIS 0x10be
+#define regCP_MEC2_F32_INT_DIS_BASE_IDX 0
+#define regCP_VMID_STATUS 0x10bf
+#define regCP_VMID_STATUS_BASE_IDX 0
+
+
+// addressBlock: xcd0_gc_cppdec2
+// base address: 0xc600
+#define regCP_RB_DOORBELL_CONTROL_SCH_0 0x1180
+#define regCP_RB_DOORBELL_CONTROL_SCH_0_BASE_IDX 0
+#define regCP_RB_DOORBELL_CONTROL_SCH_1 0x1181
+#define regCP_RB_DOORBELL_CONTROL_SCH_1_BASE_IDX 0
+#define regCP_RB_DOORBELL_CONTROL_SCH_2 0x1182
+#define regCP_RB_DOORBELL_CONTROL_SCH_2_BASE_IDX 0
+#define regCP_RB_DOORBELL_CONTROL_SCH_3 0x1183
+#define regCP_RB_DOORBELL_CONTROL_SCH_3_BASE_IDX 0
+#define regCP_RB_DOORBELL_CONTROL_SCH_4 0x1184
+#define regCP_RB_DOORBELL_CONTROL_SCH_4_BASE_IDX 0
+#define regCP_RB_DOORBELL_CONTROL_SCH_5 0x1185
+#define regCP_RB_DOORBELL_CONTROL_SCH_5_BASE_IDX 0
+#define regCP_RB_DOORBELL_CONTROL_SCH_6 0x1186
+#define regCP_RB_DOORBELL_CONTROL_SCH_6_BASE_IDX 0
+#define regCP_RB_DOORBELL_CONTROL_SCH_7 0x1187
+#define regCP_RB_DOORBELL_CONTROL_SCH_7_BASE_IDX 0
+#define regCP_RB_DOORBELL_CLEAR 0x1188
+#define regCP_RB_DOORBELL_CLEAR_BASE_IDX 0
+#define regCP_CPF_DSM_CNTL 0x1194
+#define regCP_CPF_DSM_CNTL_BASE_IDX 0
+#define regCP_CPG_DSM_CNTL 0x1195
+#define regCP_CPG_DSM_CNTL_BASE_IDX 0
+#define regCP_CPC_DSM_CNTL 0x1196
+#define regCP_CPC_DSM_CNTL_BASE_IDX 0
+#define regCP_CPF_DSM_CNTL2 0x1197
+#define regCP_CPF_DSM_CNTL2_BASE_IDX 0
+#define regCP_CPG_DSM_CNTL2 0x1198
+#define regCP_CPG_DSM_CNTL2_BASE_IDX 0
+#define regCP_CPC_DSM_CNTL2 0x1199
+#define regCP_CPC_DSM_CNTL2_BASE_IDX 0
+#define regCP_CPF_DSM_CNTL2A 0x119a
+#define regCP_CPF_DSM_CNTL2A_BASE_IDX 0
+#define regCP_CPG_DSM_CNTL2A 0x119b
+#define regCP_CPG_DSM_CNTL2A_BASE_IDX 0
+#define regCP_CPC_DSM_CNTL2A 0x119c
+#define regCP_CPC_DSM_CNTL2A_BASE_IDX 0
+#define regCP_EDC_FUE_CNTL 0x119d
+#define regCP_EDC_FUE_CNTL_BASE_IDX 0
+#define regCP_GFX_MQD_CONTROL 0x11a0
+#define regCP_GFX_MQD_CONTROL_BASE_IDX 0
+#define regCP_GFX_MQD_BASE_ADDR 0x11a1
+#define regCP_GFX_MQD_BASE_ADDR_BASE_IDX 0
+#define regCP_GFX_MQD_BASE_ADDR_HI 0x11a2
+#define regCP_GFX_MQD_BASE_ADDR_HI_BASE_IDX 0
+#define regCP_RB_STATUS 0x11a3
+#define regCP_RB_STATUS_BASE_IDX 0
+#define regCPG_UTCL1_STATUS 0x11b4
+#define regCPG_UTCL1_STATUS_BASE_IDX 0
+#define regCPC_UTCL1_STATUS 0x11b5
+#define regCPC_UTCL1_STATUS_BASE_IDX 0
+#define regCPF_UTCL1_STATUS 0x11b6
+#define regCPF_UTCL1_STATUS_BASE_IDX 0
+#define regCP_SD_CNTL 0x11b7
+#define regCP_SD_CNTL_BASE_IDX 0
+#define regCP_SOFT_RESET_CNTL 0x11b9
+#define regCP_SOFT_RESET_CNTL_BASE_IDX 0
+#define regCP_CPC_GFX_CNTL 0x11ba
+#define regCP_CPC_GFX_CNTL_BASE_IDX 0
+
+
+// addressBlock: xcd0_gc_spipdec
+// base address: 0xc700
+#define regSPI_ARB_PRIORITY 0x11c0
+#define regSPI_ARB_PRIORITY_BASE_IDX 0
+#define regSPI_ARB_CYCLES_0 0x11c1
+#define regSPI_ARB_CYCLES_0_BASE_IDX 0
+#define regSPI_ARB_CYCLES_1 0x11c2
+#define regSPI_ARB_CYCLES_1_BASE_IDX 0
+#define regSPI_CDBG_SYS_GFX 0x11c3
+#define regSPI_CDBG_SYS_GFX_BASE_IDX 0
+#define regSPI_CDBG_SYS_HP3D 0x11c4
+#define regSPI_CDBG_SYS_HP3D_BASE_IDX 0
+#define regSPI_CDBG_SYS_CS0 0x11c5
+#define regSPI_CDBG_SYS_CS0_BASE_IDX 0
+#define regSPI_CDBG_SYS_CS1 0x11c6
+#define regSPI_CDBG_SYS_CS1_BASE_IDX 0
+#define regSPI_WCL_PIPE_PERCENT_GFX 0x11c7
+#define regSPI_WCL_PIPE_PERCENT_GFX_BASE_IDX 0
+#define regSPI_WCL_PIPE_PERCENT_HP3D 0x11c8
+#define regSPI_WCL_PIPE_PERCENT_HP3D_BASE_IDX 0
+#define regSPI_WCL_PIPE_PERCENT_CS0 0x11c9
+#define regSPI_WCL_PIPE_PERCENT_CS0_BASE_IDX 0
+#define regSPI_WCL_PIPE_PERCENT_CS1 0x11ca
+#define regSPI_WCL_PIPE_PERCENT_CS1_BASE_IDX 0
+#define regSPI_WCL_PIPE_PERCENT_CS2 0x11cb
+#define regSPI_WCL_PIPE_PERCENT_CS2_BASE_IDX 0
+#define regSPI_WCL_PIPE_PERCENT_CS3 0x11cc
+#define regSPI_WCL_PIPE_PERCENT_CS3_BASE_IDX 0
+#define regSPI_WCL_PIPE_PERCENT_CS4 0x11cd
+#define regSPI_WCL_PIPE_PERCENT_CS4_BASE_IDX 0
+#define regSPI_WCL_PIPE_PERCENT_CS5 0x11ce
+#define regSPI_WCL_PIPE_PERCENT_CS5_BASE_IDX 0
+#define regSPI_WCL_PIPE_PERCENT_CS6 0x11cf
+#define regSPI_WCL_PIPE_PERCENT_CS6_BASE_IDX 0
+#define regSPI_WCL_PIPE_PERCENT_CS7 0x11d0
+#define regSPI_WCL_PIPE_PERCENT_CS7_BASE_IDX 0
+#define regSPI_GDBG_WAVE_CNTL 0x11d1
+#define regSPI_GDBG_WAVE_CNTL_BASE_IDX 0
+#define regSPI_GDBG_TRAP_CONFIG 0x11d2
+#define regSPI_GDBG_TRAP_CONFIG_BASE_IDX 0
+#define regSPI_GDBG_PER_VMID_CNTL 0x11d3
+#define regSPI_GDBG_PER_VMID_CNTL_BASE_IDX 0
+#define regSPI_GDBG_WAVE_CNTL3 0x11d5
+#define regSPI_GDBG_WAVE_CNTL3_BASE_IDX 0
+#define regSPI_SCRATCH_ADDR_CHECK 0x11d8
+#define regSPI_SCRATCH_ADDR_CHECK_BASE_IDX 0
+#define regSPI_SCRATCH_ADDR_STATUS 0x11d9
+#define regSPI_SCRATCH_ADDR_STATUS_BASE_IDX 0
+#define regSPI_RESET_DEBUG 0x11da
+#define regSPI_RESET_DEBUG_BASE_IDX 0
+#define regSPI_COMPUTE_QUEUE_RESET 0x11db
+#define regSPI_COMPUTE_QUEUE_RESET_BASE_IDX 0
+#define regSPI_RESOURCE_RESERVE_CU_0 0x11dc
+#define regSPI_RESOURCE_RESERVE_CU_0_BASE_IDX 0
+#define regSPI_RESOURCE_RESERVE_CU_1 0x11dd
+#define regSPI_RESOURCE_RESERVE_CU_1_BASE_IDX 0
+#define regSPI_RESOURCE_RESERVE_CU_2 0x11de
+#define regSPI_RESOURCE_RESERVE_CU_2_BASE_IDX 0
+#define regSPI_RESOURCE_RESERVE_CU_3 0x11df
+#define regSPI_RESOURCE_RESERVE_CU_3_BASE_IDX 0
+#define regSPI_RESOURCE_RESERVE_CU_4 0x11e0
+#define regSPI_RESOURCE_RESERVE_CU_4_BASE_IDX 0
+#define regSPI_RESOURCE_RESERVE_CU_5 0x11e1
+#define regSPI_RESOURCE_RESERVE_CU_5_BASE_IDX 0
+#define regSPI_RESOURCE_RESERVE_CU_6 0x11e2
+#define regSPI_RESOURCE_RESERVE_CU_6_BASE_IDX 0
+#define regSPI_RESOURCE_RESERVE_CU_7 0x11e3
+#define regSPI_RESOURCE_RESERVE_CU_7_BASE_IDX 0
+#define regSPI_RESOURCE_RESERVE_CU_8 0x11e4
+#define regSPI_RESOURCE_RESERVE_CU_8_BASE_IDX 0
+#define regSPI_RESOURCE_RESERVE_CU_9 0x11e5
+#define regSPI_RESOURCE_RESERVE_CU_9_BASE_IDX 0
+#define regSPI_RESOURCE_RESERVE_EN_CU_0 0x11e6
+#define regSPI_RESOURCE_RESERVE_EN_CU_0_BASE_IDX 0
+#define regSPI_RESOURCE_RESERVE_EN_CU_1 0x11e7
+#define regSPI_RESOURCE_RESERVE_EN_CU_1_BASE_IDX 0
+#define regSPI_RESOURCE_RESERVE_EN_CU_2 0x11e8
+#define regSPI_RESOURCE_RESERVE_EN_CU_2_BASE_IDX 0
+#define regSPI_RESOURCE_RESERVE_EN_CU_3 0x11e9
+#define regSPI_RESOURCE_RESERVE_EN_CU_3_BASE_IDX 0
+#define regSPI_RESOURCE_RESERVE_EN_CU_4 0x11ea
+#define regSPI_RESOURCE_RESERVE_EN_CU_4_BASE_IDX 0
+#define regSPI_RESOURCE_RESERVE_EN_CU_5 0x11eb
+#define regSPI_RESOURCE_RESERVE_EN_CU_5_BASE_IDX 0
+#define regSPI_RESOURCE_RESERVE_EN_CU_6 0x11ec
+#define regSPI_RESOURCE_RESERVE_EN_CU_6_BASE_IDX 0
+#define regSPI_RESOURCE_RESERVE_EN_CU_7 0x11ed
+#define regSPI_RESOURCE_RESERVE_EN_CU_7_BASE_IDX 0
+#define regSPI_RESOURCE_RESERVE_EN_CU_8 0x11ee
+#define regSPI_RESOURCE_RESERVE_EN_CU_8_BASE_IDX 0
+#define regSPI_RESOURCE_RESERVE_EN_CU_9 0x11ef
+#define regSPI_RESOURCE_RESERVE_EN_CU_9_BASE_IDX 0
+#define regSPI_RESOURCE_RESERVE_CU_10 0x11f0
+#define regSPI_RESOURCE_RESERVE_CU_10_BASE_IDX 0
+#define regSPI_RESOURCE_RESERVE_CU_11 0x11f1
+#define regSPI_RESOURCE_RESERVE_CU_11_BASE_IDX 0
+#define regSPI_RESOURCE_RESERVE_EN_CU_10 0x11f2
+#define regSPI_RESOURCE_RESERVE_EN_CU_10_BASE_IDX 0
+#define regSPI_RESOURCE_RESERVE_EN_CU_11 0x11f3
+#define regSPI_RESOURCE_RESERVE_EN_CU_11_BASE_IDX 0
+#define regSPI_RESOURCE_RESERVE_CU_12 0x11f4
+#define regSPI_RESOURCE_RESERVE_CU_12_BASE_IDX 0
+#define regSPI_RESOURCE_RESERVE_CU_13 0x11f5
+#define regSPI_RESOURCE_RESERVE_CU_13_BASE_IDX 0
+#define regSPI_RESOURCE_RESERVE_CU_14 0x11f6
+#define regSPI_RESOURCE_RESERVE_CU_14_BASE_IDX 0
+#define regSPI_RESOURCE_RESERVE_CU_15 0x11f7
+#define regSPI_RESOURCE_RESERVE_CU_15_BASE_IDX 0
+#define regSPI_RESOURCE_RESERVE_EN_CU_12 0x11f8
+#define regSPI_RESOURCE_RESERVE_EN_CU_12_BASE_IDX 0
+#define regSPI_RESOURCE_RESERVE_EN_CU_13 0x11f9
+#define regSPI_RESOURCE_RESERVE_EN_CU_13_BASE_IDX 0
+#define regSPI_RESOURCE_RESERVE_EN_CU_14 0x11fa
+#define regSPI_RESOURCE_RESERVE_EN_CU_14_BASE_IDX 0
+#define regSPI_RESOURCE_RESERVE_EN_CU_15 0x11fb
+#define regSPI_RESOURCE_RESERVE_EN_CU_15_BASE_IDX 0
+#define regSPI_COMPUTE_WF_CTX_SAVE 0x11fc
+#define regSPI_COMPUTE_WF_CTX_SAVE_BASE_IDX 0
+#define regSPI_ARB_CNTL_0 0x11fd
+#define regSPI_ARB_CNTL_0_BASE_IDX 0
+
+
+// addressBlock: xcd0_gc_cpphqddec
+// base address: 0xc800
+#define regCP_HQD_GFX_CONTROL 0x123e
+#define regCP_HQD_GFX_CONTROL_BASE_IDX 0
+#define regCP_HQD_GFX_STATUS 0x123f
+#define regCP_HQD_GFX_STATUS_BASE_IDX 0
+#define regCP_HPD_ROQ_OFFSETS 0x1240
+#define regCP_HPD_ROQ_OFFSETS_BASE_IDX 0
+#define regCP_HPD_STATUS0 0x1241
+#define regCP_HPD_STATUS0_BASE_IDX 0
+#define regCP_HPD_UTCL1_CNTL 0x1242
+#define regCP_HPD_UTCL1_CNTL_BASE_IDX 0
+#define regCP_HPD_UTCL1_ERROR 0x1243
+#define regCP_HPD_UTCL1_ERROR_BASE_IDX 0
+#define regCP_HPD_UTCL1_ERROR_ADDR 0x1244
+#define regCP_HPD_UTCL1_ERROR_ADDR_BASE_IDX 0
+#define regCP_MQD_BASE_ADDR 0x1245
+#define regCP_MQD_BASE_ADDR_BASE_IDX 0
+#define regCP_MQD_BASE_ADDR_HI 0x1246
+#define regCP_MQD_BASE_ADDR_HI_BASE_IDX 0
+#define regCP_HQD_ACTIVE 0x1247
+#define regCP_HQD_ACTIVE_BASE_IDX 0
+#define regCP_HQD_VMID 0x1248
+#define regCP_HQD_VMID_BASE_IDX 0
+#define regCP_HQD_PERSISTENT_STATE 0x1249
+#define regCP_HQD_PERSISTENT_STATE_BASE_IDX 0
+#define regCP_HQD_PIPE_PRIORITY 0x124a
+#define regCP_HQD_PIPE_PRIORITY_BASE_IDX 0
+#define regCP_HQD_QUEUE_PRIORITY 0x124b
+#define regCP_HQD_QUEUE_PRIORITY_BASE_IDX 0
+#define regCP_HQD_QUANTUM 0x124c
+#define regCP_HQD_QUANTUM_BASE_IDX 0
+#define regCP_HQD_PQ_BASE 0x124d
+#define regCP_HQD_PQ_BASE_BASE_IDX 0
+#define regCP_HQD_PQ_BASE_HI 0x124e
+#define regCP_HQD_PQ_BASE_HI_BASE_IDX 0
+#define regCP_HQD_PQ_RPTR 0x124f
+#define regCP_HQD_PQ_RPTR_BASE_IDX 0
+#define regCP_HQD_PQ_RPTR_REPORT_ADDR 0x1250
+#define regCP_HQD_PQ_RPTR_REPORT_ADDR_BASE_IDX 0
+#define regCP_HQD_PQ_RPTR_REPORT_ADDR_HI 0x1251
+#define regCP_HQD_PQ_RPTR_REPORT_ADDR_HI_BASE_IDX 0
+#define regCP_HQD_PQ_WPTR_POLL_ADDR 0x1252
+#define regCP_HQD_PQ_WPTR_POLL_ADDR_BASE_IDX 0
+#define regCP_HQD_PQ_WPTR_POLL_ADDR_HI 0x1253
+#define regCP_HQD_PQ_WPTR_POLL_ADDR_HI_BASE_IDX 0
+#define regCP_HQD_PQ_DOORBELL_CONTROL 0x1254
+#define regCP_HQD_PQ_DOORBELL_CONTROL_BASE_IDX 0
+#define regCP_HQD_PQ_CONTROL 0x1256
+#define regCP_HQD_PQ_CONTROL_BASE_IDX 0
+#define regCP_HQD_IB_BASE_ADDR 0x1257
+#define regCP_HQD_IB_BASE_ADDR_BASE_IDX 0
+#define regCP_HQD_IB_BASE_ADDR_HI 0x1258
+#define regCP_HQD_IB_BASE_ADDR_HI_BASE_IDX 0
+#define regCP_HQD_IB_RPTR 0x1259
+#define regCP_HQD_IB_RPTR_BASE_IDX 0
+#define regCP_HQD_IB_CONTROL 0x125a
+#define regCP_HQD_IB_CONTROL_BASE_IDX 0
+#define regCP_HQD_IQ_TIMER 0x125b
+#define regCP_HQD_IQ_TIMER_BASE_IDX 0
+#define regCP_HQD_IQ_RPTR 0x125c
+#define regCP_HQD_IQ_RPTR_BASE_IDX 0
+#define regCP_HQD_DEQUEUE_REQUEST 0x125d
+#define regCP_HQD_DEQUEUE_REQUEST_BASE_IDX 0
+#define regCP_HQD_DMA_OFFLOAD 0x125e
+#define regCP_HQD_DMA_OFFLOAD_BASE_IDX 0
+#define regCP_HQD_OFFLOAD 0x125e
+#define regCP_HQD_OFFLOAD_BASE_IDX 0
+#define regCP_HQD_SEMA_CMD 0x125f
+#define regCP_HQD_SEMA_CMD_BASE_IDX 0
+#define regCP_HQD_MSG_TYPE 0x1260
+#define regCP_HQD_MSG_TYPE_BASE_IDX 0
+#define regCP_HQD_ATOMIC0_PREOP_LO 0x1261
+#define regCP_HQD_ATOMIC0_PREOP_LO_BASE_IDX 0
+#define regCP_HQD_ATOMIC0_PREOP_HI 0x1262
+#define regCP_HQD_ATOMIC0_PREOP_HI_BASE_IDX 0
+#define regCP_HQD_ATOMIC1_PREOP_LO 0x1263
+#define regCP_HQD_ATOMIC1_PREOP_LO_BASE_IDX 0
+#define regCP_HQD_ATOMIC1_PREOP_HI 0x1264
+#define regCP_HQD_ATOMIC1_PREOP_HI_BASE_IDX 0
+#define regCP_HQD_HQ_SCHEDULER0 0x1265
+#define regCP_HQD_HQ_SCHEDULER0_BASE_IDX 0
+#define regCP_HQD_HQ_STATUS0 0x1265
+#define regCP_HQD_HQ_STATUS0_BASE_IDX 0
+#define regCP_HQD_HQ_CONTROL0 0x1266
+#define regCP_HQD_HQ_CONTROL0_BASE_IDX 0
+#define regCP_HQD_HQ_SCHEDULER1 0x1266
+#define regCP_HQD_HQ_SCHEDULER1_BASE_IDX 0
+#define regCP_MQD_CONTROL 0x1267
+#define regCP_MQD_CONTROL_BASE_IDX 0
+#define regCP_HQD_HQ_STATUS1 0x1268
+#define regCP_HQD_HQ_STATUS1_BASE_IDX 0
+#define regCP_HQD_HQ_CONTROL1 0x1269
+#define regCP_HQD_HQ_CONTROL1_BASE_IDX 0
+#define regCP_HQD_EOP_BASE_ADDR 0x126a
+#define regCP_HQD_EOP_BASE_ADDR_BASE_IDX 0
+#define regCP_HQD_EOP_BASE_ADDR_HI 0x126b
+#define regCP_HQD_EOP_BASE_ADDR_HI_BASE_IDX 0
+#define regCP_HQD_EOP_CONTROL 0x126c
+#define regCP_HQD_EOP_CONTROL_BASE_IDX 0
+#define regCP_HQD_EOP_RPTR 0x126d
+#define regCP_HQD_EOP_RPTR_BASE_IDX 0
+#define regCP_HQD_EOP_WPTR 0x126e
+#define regCP_HQD_EOP_WPTR_BASE_IDX 0
+#define regCP_HQD_EOP_EVENTS 0x126f
+#define regCP_HQD_EOP_EVENTS_BASE_IDX 0
+#define regCP_HQD_CTX_SAVE_BASE_ADDR_LO 0x1270
+#define regCP_HQD_CTX_SAVE_BASE_ADDR_LO_BASE_IDX 0
+#define regCP_HQD_CTX_SAVE_BASE_ADDR_HI 0x1271
+#define regCP_HQD_CTX_SAVE_BASE_ADDR_HI_BASE_IDX 0
+#define regCP_HQD_CTX_SAVE_CONTROL 0x1272
+#define regCP_HQD_CTX_SAVE_CONTROL_BASE_IDX 0
+#define regCP_HQD_CNTL_STACK_OFFSET 0x1273
+#define regCP_HQD_CNTL_STACK_OFFSET_BASE_IDX 0
+#define regCP_HQD_CNTL_STACK_SIZE 0x1274
+#define regCP_HQD_CNTL_STACK_SIZE_BASE_IDX 0
+#define regCP_HQD_WG_STATE_OFFSET 0x1275
+#define regCP_HQD_WG_STATE_OFFSET_BASE_IDX 0
+#define regCP_HQD_CTX_SAVE_SIZE 0x1276
+#define regCP_HQD_CTX_SAVE_SIZE_BASE_IDX 0
+#define regCP_HQD_GDS_RESOURCE_STATE 0x1277
+#define regCP_HQD_GDS_RESOURCE_STATE_BASE_IDX 0
+#define regCP_HQD_ERROR 0x1278
+#define regCP_HQD_ERROR_BASE_IDX 0
+#define regCP_HQD_EOP_WPTR_MEM 0x1279
+#define regCP_HQD_EOP_WPTR_MEM_BASE_IDX 0
+#define regCP_HQD_AQL_CONTROL 0x127a
+#define regCP_HQD_AQL_CONTROL_BASE_IDX 0
+#define regCP_HQD_PQ_WPTR_LO 0x127b
+#define regCP_HQD_PQ_WPTR_LO_BASE_IDX 0
+#define regCP_HQD_PQ_WPTR_HI 0x127c
+#define regCP_HQD_PQ_WPTR_HI_BASE_IDX 0
+#define regCP_HQD_AQL_CONTROL_1 0x127d
+#define regCP_HQD_AQL_CONTROL_1_BASE_IDX 0
+#define regCP_HQD_AQL_DISPATCH_ID 0x127e
+#define regCP_HQD_AQL_DISPATCH_ID_BASE_IDX 0
+#define regCP_HQD_AQL_DISPATCH_ID_HI 0x127f
+#define regCP_HQD_AQL_DISPATCH_ID_HI_BASE_IDX 0
+
+
+// addressBlock: xcd0_gc_tcpdec
+// base address: 0xca80
+#define regTCP_WATCH0_ADDR_H 0x12a0
+#define regTCP_WATCH0_ADDR_H_BASE_IDX 0
+#define regTCP_WATCH0_ADDR_L 0x12a1
+#define regTCP_WATCH0_ADDR_L_BASE_IDX 0
+#define regTCP_WATCH0_CNTL 0x12a2
+#define regTCP_WATCH0_CNTL_BASE_IDX 0
+#define regTCP_WATCH1_ADDR_H 0x12a3
+#define regTCP_WATCH1_ADDR_H_BASE_IDX 0
+#define regTCP_WATCH1_ADDR_L 0x12a4
+#define regTCP_WATCH1_ADDR_L_BASE_IDX 0
+#define regTCP_WATCH1_CNTL 0x12a5
+#define regTCP_WATCH1_CNTL_BASE_IDX 0
+#define regTCP_WATCH2_ADDR_H 0x12a6
+#define regTCP_WATCH2_ADDR_H_BASE_IDX 0
+#define regTCP_WATCH2_ADDR_L 0x12a7
+#define regTCP_WATCH2_ADDR_L_BASE_IDX 0
+#define regTCP_WATCH2_CNTL 0x12a8
+#define regTCP_WATCH2_CNTL_BASE_IDX 0
+#define regTCP_WATCH3_ADDR_H 0x12a9
+#define regTCP_WATCH3_ADDR_H_BASE_IDX 0
+#define regTCP_WATCH3_ADDR_L 0x12aa
+#define regTCP_WATCH3_ADDR_L_BASE_IDX 0
+#define regTCP_WATCH3_CNTL 0x12ab
+#define regTCP_WATCH3_CNTL_BASE_IDX 0
+#define regTCP_GATCL1_CNTL 0x12b0
+#define regTCP_GATCL1_CNTL_BASE_IDX 0
+#define regTCP_ATC_EDC_GATCL1_CNT 0x12b1
+#define regTCP_ATC_EDC_GATCL1_CNT_BASE_IDX 0
+#define regTCP_GATCL1_DSM_CNTL 0x12b2
+#define regTCP_GATCL1_DSM_CNTL_BASE_IDX 0
+#define regTCP_DSM_CNTL 0x12b3
+#define regTCP_DSM_CNTL_BASE_IDX 0
+#define regTCP_CNTL2 0x12b4
+#define regTCP_CNTL2_BASE_IDX 0
+#define regTCP_UTCL1_CNTL1 0x12b5
+#define regTCP_UTCL1_CNTL1_BASE_IDX 0
+#define regTCP_UTCL1_CNTL2 0x12b6
+#define regTCP_UTCL1_CNTL2_BASE_IDX 0
+#define regTCP_UTCL1_STATUS 0x12b7
+#define regTCP_UTCL1_STATUS_BASE_IDX 0
+#define regTCP_DSM_CNTL2 0x12b8
+#define regTCP_DSM_CNTL2_BASE_IDX 0
+#define regTCP_PERFCOUNTER_FILTER 0x12b9
+#define regTCP_PERFCOUNTER_FILTER_BASE_IDX 0
+#define regTCP_PERFCOUNTER_FILTER_EN 0x12ba
+#define regTCP_PERFCOUNTER_FILTER_EN_BASE_IDX 0
+
+
+// addressBlock: xcd0_gc_gdspdec
+// base address: 0xcc00
+#define regGDS_VMID0_BASE 0x1300
+#define regGDS_VMID0_BASE_BASE_IDX 0
+#define regGDS_VMID0_SIZE 0x1301
+#define regGDS_VMID0_SIZE_BASE_IDX 0
+#define regGDS_VMID1_BASE 0x1302
+#define regGDS_VMID1_BASE_BASE_IDX 0
+#define regGDS_VMID1_SIZE 0x1303
+#define regGDS_VMID1_SIZE_BASE_IDX 0
+#define regGDS_VMID2_BASE 0x1304
+#define regGDS_VMID2_BASE_BASE_IDX 0
+#define regGDS_VMID2_SIZE 0x1305
+#define regGDS_VMID2_SIZE_BASE_IDX 0
+#define regGDS_VMID3_BASE 0x1306
+#define regGDS_VMID3_BASE_BASE_IDX 0
+#define regGDS_VMID3_SIZE 0x1307
+#define regGDS_VMID3_SIZE_BASE_IDX 0
+#define regGDS_VMID4_BASE 0x1308
+#define regGDS_VMID4_BASE_BASE_IDX 0
+#define regGDS_VMID4_SIZE 0x1309
+#define regGDS_VMID4_SIZE_BASE_IDX 0
+#define regGDS_VMID5_BASE 0x130a
+#define regGDS_VMID5_BASE_BASE_IDX 0
+#define regGDS_VMID5_SIZE 0x130b
+#define regGDS_VMID5_SIZE_BASE_IDX 0
+#define regGDS_VMID6_BASE 0x130c
+#define regGDS_VMID6_BASE_BASE_IDX 0
+#define regGDS_VMID6_SIZE 0x130d
+#define regGDS_VMID6_SIZE_BASE_IDX 0
+#define regGDS_VMID7_BASE 0x130e
+#define regGDS_VMID7_BASE_BASE_IDX 0
+#define regGDS_VMID7_SIZE 0x130f
+#define regGDS_VMID7_SIZE_BASE_IDX 0
+#define regGDS_VMID8_BASE 0x1310
+#define regGDS_VMID8_BASE_BASE_IDX 0
+#define regGDS_VMID8_SIZE 0x1311
+#define regGDS_VMID8_SIZE_BASE_IDX 0
+#define regGDS_VMID9_BASE 0x1312
+#define regGDS_VMID9_BASE_BASE_IDX 0
+#define regGDS_VMID9_SIZE 0x1313
+#define regGDS_VMID9_SIZE_BASE_IDX 0
+#define regGDS_VMID10_BASE 0x1314
+#define regGDS_VMID10_BASE_BASE_IDX 0
+#define regGDS_VMID10_SIZE 0x1315
+#define regGDS_VMID10_SIZE_BASE_IDX 0
+#define regGDS_VMID11_BASE 0x1316
+#define regGDS_VMID11_BASE_BASE_IDX 0
+#define regGDS_VMID11_SIZE 0x1317
+#define regGDS_VMID11_SIZE_BASE_IDX 0
+#define regGDS_VMID12_BASE 0x1318
+#define regGDS_VMID12_BASE_BASE_IDX 0
+#define regGDS_VMID12_SIZE 0x1319
+#define regGDS_VMID12_SIZE_BASE_IDX 0
+#define regGDS_VMID13_BASE 0x131a
+#define regGDS_VMID13_BASE_BASE_IDX 0
+#define regGDS_VMID13_SIZE 0x131b
+#define regGDS_VMID13_SIZE_BASE_IDX 0
+#define regGDS_VMID14_BASE 0x131c
+#define regGDS_VMID14_BASE_BASE_IDX 0
+#define regGDS_VMID14_SIZE 0x131d
+#define regGDS_VMID14_SIZE_BASE_IDX 0
+#define regGDS_VMID15_BASE 0x131e
+#define regGDS_VMID15_BASE_BASE_IDX 0
+#define regGDS_VMID15_SIZE 0x131f
+#define regGDS_VMID15_SIZE_BASE_IDX 0
+#define regGDS_GWS_VMID0 0x1320
+#define regGDS_GWS_VMID0_BASE_IDX 0
+#define regGDS_GWS_VMID1 0x1321
+#define regGDS_GWS_VMID1_BASE_IDX 0
+#define regGDS_GWS_VMID2 0x1322
+#define regGDS_GWS_VMID2_BASE_IDX 0
+#define regGDS_GWS_VMID3 0x1323
+#define regGDS_GWS_VMID3_BASE_IDX 0
+#define regGDS_GWS_VMID4 0x1324
+#define regGDS_GWS_VMID4_BASE_IDX 0
+#define regGDS_GWS_VMID5 0x1325
+#define regGDS_GWS_VMID5_BASE_IDX 0
+#define regGDS_GWS_VMID6 0x1326
+#define regGDS_GWS_VMID6_BASE_IDX 0
+#define regGDS_GWS_VMID7 0x1327
+#define regGDS_GWS_VMID7_BASE_IDX 0
+#define regGDS_GWS_VMID8 0x1328
+#define regGDS_GWS_VMID8_BASE_IDX 0
+#define regGDS_GWS_VMID9 0x1329
+#define regGDS_GWS_VMID9_BASE_IDX 0
+#define regGDS_GWS_VMID10 0x132a
+#define regGDS_GWS_VMID10_BASE_IDX 0
+#define regGDS_GWS_VMID11 0x132b
+#define regGDS_GWS_VMID11_BASE_IDX 0
+#define regGDS_GWS_VMID12 0x132c
+#define regGDS_GWS_VMID12_BASE_IDX 0
+#define regGDS_GWS_VMID13 0x132d
+#define regGDS_GWS_VMID13_BASE_IDX 0
+#define regGDS_GWS_VMID14 0x132e
+#define regGDS_GWS_VMID14_BASE_IDX 0
+#define regGDS_GWS_VMID15 0x132f
+#define regGDS_GWS_VMID15_BASE_IDX 0
+#define regGDS_OA_VMID0 0x1330
+#define regGDS_OA_VMID0_BASE_IDX 0
+#define regGDS_OA_VMID1 0x1331
+#define regGDS_OA_VMID1_BASE_IDX 0
+#define regGDS_OA_VMID2 0x1332
+#define regGDS_OA_VMID2_BASE_IDX 0
+#define regGDS_OA_VMID3 0x1333
+#define regGDS_OA_VMID3_BASE_IDX 0
+#define regGDS_OA_VMID4 0x1334
+#define regGDS_OA_VMID4_BASE_IDX 0
+#define regGDS_OA_VMID5 0x1335
+#define regGDS_OA_VMID5_BASE_IDX 0
+#define regGDS_OA_VMID6 0x1336
+#define regGDS_OA_VMID6_BASE_IDX 0
+#define regGDS_OA_VMID7 0x1337
+#define regGDS_OA_VMID7_BASE_IDX 0
+#define regGDS_OA_VMID8 0x1338
+#define regGDS_OA_VMID8_BASE_IDX 0
+#define regGDS_OA_VMID9 0x1339
+#define regGDS_OA_VMID9_BASE_IDX 0
+#define regGDS_OA_VMID10 0x133a
+#define regGDS_OA_VMID10_BASE_IDX 0
+#define regGDS_OA_VMID11 0x133b
+#define regGDS_OA_VMID11_BASE_IDX 0
+#define regGDS_OA_VMID12 0x133c
+#define regGDS_OA_VMID12_BASE_IDX 0
+#define regGDS_OA_VMID13 0x133d
+#define regGDS_OA_VMID13_BASE_IDX 0
+#define regGDS_OA_VMID14 0x133e
+#define regGDS_OA_VMID14_BASE_IDX 0
+#define regGDS_OA_VMID15 0x133f
+#define regGDS_OA_VMID15_BASE_IDX 0
+#define regGDS_GWS_RESET0 0x1344
+#define regGDS_GWS_RESET0_BASE_IDX 0
+#define regGDS_GWS_RESET1 0x1345
+#define regGDS_GWS_RESET1_BASE_IDX 0
+#define regGDS_GWS_RESOURCE_RESET 0x1346
+#define regGDS_GWS_RESOURCE_RESET_BASE_IDX 0
+#define regGDS_COMPUTE_MAX_WAVE_ID 0x1348
+#define regGDS_COMPUTE_MAX_WAVE_ID_BASE_IDX 0
+#define regGDS_OA_RESET_MASK 0x1349
+#define regGDS_OA_RESET_MASK_BASE_IDX 0
+#define regGDS_OA_RESET 0x134a
+#define regGDS_OA_RESET_BASE_IDX 0
+#define regGDS_ENHANCE 0x134b
+#define regGDS_ENHANCE_BASE_IDX 0
+#define regGDS_OA_CGPG_RESTORE 0x134c
+#define regGDS_OA_CGPG_RESTORE_BASE_IDX 0
+#define regGDS_CS_CTXSW_STATUS 0x134d
+#define regGDS_CS_CTXSW_STATUS_BASE_IDX 0
+#define regGDS_CS_CTXSW_CNT0 0x134e
+#define regGDS_CS_CTXSW_CNT0_BASE_IDX 0
+#define regGDS_CS_CTXSW_CNT1 0x134f
+#define regGDS_CS_CTXSW_CNT1_BASE_IDX 0
+#define regGDS_CS_CTXSW_CNT2 0x1350
+#define regGDS_CS_CTXSW_CNT2_BASE_IDX 0
+#define regGDS_CS_CTXSW_CNT3 0x1351
+#define regGDS_CS_CTXSW_CNT3_BASE_IDX 0
+#define regGDS_GFX_CTXSW_STATUS 0x1352
+#define regGDS_GFX_CTXSW_STATUS_BASE_IDX 0
+#define regGDS_VS_CTXSW_CNT0 0x1353
+#define regGDS_VS_CTXSW_CNT0_BASE_IDX 0
+#define regGDS_VS_CTXSW_CNT1 0x1354
+#define regGDS_VS_CTXSW_CNT1_BASE_IDX 0
+#define regGDS_VS_CTXSW_CNT2 0x1355
+#define regGDS_VS_CTXSW_CNT2_BASE_IDX 0
+#define regGDS_VS_CTXSW_CNT3 0x1356
+#define regGDS_VS_CTXSW_CNT3_BASE_IDX 0
+#define regGDS_PS0_CTXSW_CNT0 0x1357
+#define regGDS_PS0_CTXSW_CNT0_BASE_IDX 0
+#define regGDS_PS0_CTXSW_CNT1 0x1358
+#define regGDS_PS0_CTXSW_CNT1_BASE_IDX 0
+#define regGDS_PS0_CTXSW_CNT2 0x1359
+#define regGDS_PS0_CTXSW_CNT2_BASE_IDX 0
+#define regGDS_PS0_CTXSW_CNT3 0x135a
+#define regGDS_PS0_CTXSW_CNT3_BASE_IDX 0
+#define regGDS_PS1_CTXSW_CNT0 0x135b
+#define regGDS_PS1_CTXSW_CNT0_BASE_IDX 0
+#define regGDS_PS1_CTXSW_CNT1 0x135c
+#define regGDS_PS1_CTXSW_CNT1_BASE_IDX 0
+#define regGDS_PS1_CTXSW_CNT2 0x135d
+#define regGDS_PS1_CTXSW_CNT2_BASE_IDX 0
+#define regGDS_PS1_CTXSW_CNT3 0x135e
+#define regGDS_PS1_CTXSW_CNT3_BASE_IDX 0
+#define regGDS_PS2_CTXSW_CNT0 0x135f
+#define regGDS_PS2_CTXSW_CNT0_BASE_IDX 0
+#define regGDS_PS2_CTXSW_CNT1 0x1360
+#define regGDS_PS2_CTXSW_CNT1_BASE_IDX 0
+#define regGDS_PS2_CTXSW_CNT2 0x1361
+#define regGDS_PS2_CTXSW_CNT2_BASE_IDX 0
+#define regGDS_PS2_CTXSW_CNT3 0x1362
+#define regGDS_PS2_CTXSW_CNT3_BASE_IDX 0
+#define regGDS_PS3_CTXSW_CNT0 0x1363
+#define regGDS_PS3_CTXSW_CNT0_BASE_IDX 0
+#define regGDS_PS3_CTXSW_CNT1 0x1364
+#define regGDS_PS3_CTXSW_CNT1_BASE_IDX 0
+#define regGDS_PS3_CTXSW_CNT2 0x1365
+#define regGDS_PS3_CTXSW_CNT2_BASE_IDX 0
+#define regGDS_PS3_CTXSW_CNT3 0x1366
+#define regGDS_PS3_CTXSW_CNT3_BASE_IDX 0
+#define regGDS_PS4_CTXSW_CNT0 0x1367
+#define regGDS_PS4_CTXSW_CNT0_BASE_IDX 0
+#define regGDS_PS4_CTXSW_CNT1 0x1368
+#define regGDS_PS4_CTXSW_CNT1_BASE_IDX 0
+#define regGDS_PS4_CTXSW_CNT2 0x1369
+#define regGDS_PS4_CTXSW_CNT2_BASE_IDX 0
+#define regGDS_PS4_CTXSW_CNT3 0x136a
+#define regGDS_PS4_CTXSW_CNT3_BASE_IDX 0
+#define regGDS_PS5_CTXSW_CNT0 0x136b
+#define regGDS_PS5_CTXSW_CNT0_BASE_IDX 0
+#define regGDS_PS5_CTXSW_CNT1 0x136c
+#define regGDS_PS5_CTXSW_CNT1_BASE_IDX 0
+#define regGDS_PS5_CTXSW_CNT2 0x136d
+#define regGDS_PS5_CTXSW_CNT2_BASE_IDX 0
+#define regGDS_PS5_CTXSW_CNT3 0x136e
+#define regGDS_PS5_CTXSW_CNT3_BASE_IDX 0
+#define regGDS_PS6_CTXSW_CNT0 0x136f
+#define regGDS_PS6_CTXSW_CNT0_BASE_IDX 0
+#define regGDS_PS6_CTXSW_CNT1 0x1370
+#define regGDS_PS6_CTXSW_CNT1_BASE_IDX 0
+#define regGDS_PS6_CTXSW_CNT2 0x1371
+#define regGDS_PS6_CTXSW_CNT2_BASE_IDX 0
+#define regGDS_PS6_CTXSW_CNT3 0x1372
+#define regGDS_PS6_CTXSW_CNT3_BASE_IDX 0
+#define regGDS_PS7_CTXSW_CNT0 0x1373
+#define regGDS_PS7_CTXSW_CNT0_BASE_IDX 0
+#define regGDS_PS7_CTXSW_CNT1 0x1374
+#define regGDS_PS7_CTXSW_CNT1_BASE_IDX 0
+#define regGDS_PS7_CTXSW_CNT2 0x1375
+#define regGDS_PS7_CTXSW_CNT2_BASE_IDX 0
+#define regGDS_PS7_CTXSW_CNT3 0x1376
+#define regGDS_PS7_CTXSW_CNT3_BASE_IDX 0
+#define regGDS_GS_CTXSW_CNT0 0x1377
+#define regGDS_GS_CTXSW_CNT0_BASE_IDX 0
+#define regGDS_GS_CTXSW_CNT1 0x1378
+#define regGDS_GS_CTXSW_CNT1_BASE_IDX 0
+#define regGDS_GS_CTXSW_CNT2 0x1379
+#define regGDS_GS_CTXSW_CNT2_BASE_IDX 0
+#define regGDS_GS_CTXSW_CNT3 0x137a
+#define regGDS_GS_CTXSW_CNT3_BASE_IDX 0
+
+
+// addressBlock: xcd0_gc_rasdec
+// base address: 0xce00
+#define regRAS_SIGNATURE_CONTROL 0x1380
+#define regRAS_SIGNATURE_CONTROL_BASE_IDX 0
+#define regRAS_SIGNATURE_MASK 0x1381
+#define regRAS_SIGNATURE_MASK_BASE_IDX 0
+#define regRAS_SX_SIGNATURE0 0x1382
+#define regRAS_SX_SIGNATURE0_BASE_IDX 0
+#define regRAS_SX_SIGNATURE1 0x1383
+#define regRAS_SX_SIGNATURE1_BASE_IDX 0
+#define regRAS_SX_SIGNATURE2 0x1384
+#define regRAS_SX_SIGNATURE2_BASE_IDX 0
+#define regRAS_SX_SIGNATURE3 0x1385
+#define regRAS_SX_SIGNATURE3_BASE_IDX 0
+#define regRAS_DB_SIGNATURE0 0x138b
+#define regRAS_DB_SIGNATURE0_BASE_IDX 0
+#define regRAS_PA_SIGNATURE0 0x138c
+#define regRAS_PA_SIGNATURE0_BASE_IDX 0
+#define regRAS_VGT_SIGNATURE0 0x138d
+#define regRAS_VGT_SIGNATURE0_BASE_IDX 0
+#define regRAS_SQ_SIGNATURE0 0x138e
+#define regRAS_SQ_SIGNATURE0_BASE_IDX 0
+#define regRAS_SC_SIGNATURE0 0x138f
+#define regRAS_SC_SIGNATURE0_BASE_IDX 0
+#define regRAS_SC_SIGNATURE1 0x1390
+#define regRAS_SC_SIGNATURE1_BASE_IDX 0
+#define regRAS_SC_SIGNATURE2 0x1391
+#define regRAS_SC_SIGNATURE2_BASE_IDX 0
+#define regRAS_SC_SIGNATURE3 0x1392
+#define regRAS_SC_SIGNATURE3_BASE_IDX 0
+#define regRAS_SC_SIGNATURE4 0x1393
+#define regRAS_SC_SIGNATURE4_BASE_IDX 0
+#define regRAS_SC_SIGNATURE5 0x1394
+#define regRAS_SC_SIGNATURE5_BASE_IDX 0
+#define regRAS_SC_SIGNATURE6 0x1395
+#define regRAS_SC_SIGNATURE6_BASE_IDX 0
+#define regRAS_SC_SIGNATURE7 0x1396
+#define regRAS_SC_SIGNATURE7_BASE_IDX 0
+#define regRAS_IA_SIGNATURE0 0x1397
+#define regRAS_IA_SIGNATURE0_BASE_IDX 0
+#define regRAS_IA_SIGNATURE1 0x1398
+#define regRAS_IA_SIGNATURE1_BASE_IDX 0
+#define regRAS_SPI_SIGNATURE0 0x1399
+#define regRAS_SPI_SIGNATURE0_BASE_IDX 0
+#define regRAS_SPI_SIGNATURE1 0x139a
+#define regRAS_SPI_SIGNATURE1_BASE_IDX 0
+#define regRAS_TA_SIGNATURE0 0x139b
+#define regRAS_TA_SIGNATURE0_BASE_IDX 0
+#define regRAS_TD_SIGNATURE0 0x139c
+#define regRAS_TD_SIGNATURE0_BASE_IDX 0
+#define regRAS_CB_SIGNATURE0 0x139d
+#define regRAS_CB_SIGNATURE0_BASE_IDX 0
+#define regRAS_BCI_SIGNATURE0 0x139e
+#define regRAS_BCI_SIGNATURE0_BASE_IDX 0
+#define regRAS_BCI_SIGNATURE1 0x139f
+#define regRAS_BCI_SIGNATURE1_BASE_IDX 0
+#define regRAS_TA_SIGNATURE1 0x13a0
+#define regRAS_TA_SIGNATURE1_BASE_IDX 0
+
+
+// addressBlock: xcd0_gc_gfxdec0
+// base address: 0x28000
+#define regDB_RENDER_CONTROL 0x0000
+#define regDB_RENDER_CONTROL_BASE_IDX 1
+#define regDB_COUNT_CONTROL 0x0001
+#define regDB_COUNT_CONTROL_BASE_IDX 1
+#define regDB_DEPTH_VIEW 0x0002
+#define regDB_DEPTH_VIEW_BASE_IDX 1
+#define regDB_RENDER_OVERRIDE 0x0003
+#define regDB_RENDER_OVERRIDE_BASE_IDX 1
+#define regDB_RENDER_OVERRIDE2 0x0004
+#define regDB_RENDER_OVERRIDE2_BASE_IDX 1
+#define regDB_HTILE_DATA_BASE 0x0005
+#define regDB_HTILE_DATA_BASE_BASE_IDX 1
+#define regDB_HTILE_DATA_BASE_HI 0x0006
+#define regDB_HTILE_DATA_BASE_HI_BASE_IDX 1
+#define regDB_DEPTH_SIZE 0x0007
+#define regDB_DEPTH_SIZE_BASE_IDX 1
+#define regDB_DEPTH_BOUNDS_MIN 0x0008
+#define regDB_DEPTH_BOUNDS_MIN_BASE_IDX 1
+#define regDB_DEPTH_BOUNDS_MAX 0x0009
+#define regDB_DEPTH_BOUNDS_MAX_BASE_IDX 1
+#define regDB_STENCIL_CLEAR 0x000a
+#define regDB_STENCIL_CLEAR_BASE_IDX 1
+#define regDB_DEPTH_CLEAR 0x000b
+#define regDB_DEPTH_CLEAR_BASE_IDX 1
+#define regPA_SC_SCREEN_SCISSOR_TL 0x000c
+#define regPA_SC_SCREEN_SCISSOR_TL_BASE_IDX 1
+#define regPA_SC_SCREEN_SCISSOR_BR 0x000d
+#define regPA_SC_SCREEN_SCISSOR_BR_BASE_IDX 1
+#define regDB_Z_INFO 0x000e
+#define regDB_Z_INFO_BASE_IDX 1
+#define regDB_STENCIL_INFO 0x000f
+#define regDB_STENCIL_INFO_BASE_IDX 1
+#define regDB_Z_READ_BASE 0x0010
+#define regDB_Z_READ_BASE_BASE_IDX 1
+#define regDB_Z_READ_BASE_HI 0x0011
+#define regDB_Z_READ_BASE_HI_BASE_IDX 1
+#define regDB_STENCIL_READ_BASE 0x0012
+#define regDB_STENCIL_READ_BASE_BASE_IDX 1
+#define regDB_STENCIL_READ_BASE_HI 0x0013
+#define regDB_STENCIL_READ_BASE_HI_BASE_IDX 1
+#define regDB_Z_WRITE_BASE 0x0014
+#define regDB_Z_WRITE_BASE_BASE_IDX 1
+#define regDB_Z_WRITE_BASE_HI 0x0015
+#define regDB_Z_WRITE_BASE_HI_BASE_IDX 1
+#define regDB_STENCIL_WRITE_BASE 0x0016
+#define regDB_STENCIL_WRITE_BASE_BASE_IDX 1
+#define regDB_STENCIL_WRITE_BASE_HI 0x0017
+#define regDB_STENCIL_WRITE_BASE_HI_BASE_IDX 1
+#define regDB_DFSM_CONTROL 0x0018
+#define regDB_DFSM_CONTROL_BASE_IDX 1
+#define regDB_Z_INFO2 0x001a
+#define regDB_Z_INFO2_BASE_IDX 1
+#define regDB_STENCIL_INFO2 0x001b
+#define regDB_STENCIL_INFO2_BASE_IDX 1
+#define regCOHER_DEST_BASE_HI_0 0x007a
+#define regCOHER_DEST_BASE_HI_0_BASE_IDX 1
+#define regCOHER_DEST_BASE_HI_1 0x007b
+#define regCOHER_DEST_BASE_HI_1_BASE_IDX 1
+#define regCOHER_DEST_BASE_HI_2 0x007c
+#define regCOHER_DEST_BASE_HI_2_BASE_IDX 1
+#define regCOHER_DEST_BASE_HI_3 0x007d
+#define regCOHER_DEST_BASE_HI_3_BASE_IDX 1
+#define regCOHER_DEST_BASE_2 0x007e
+#define regCOHER_DEST_BASE_2_BASE_IDX 1
+#define regCOHER_DEST_BASE_3 0x007f
+#define regCOHER_DEST_BASE_3_BASE_IDX 1
+#define regPA_SC_WINDOW_OFFSET 0x0080
+#define regPA_SC_WINDOW_OFFSET_BASE_IDX 1
+#define regPA_SC_WINDOW_SCISSOR_TL 0x0081
+#define regPA_SC_WINDOW_SCISSOR_TL_BASE_IDX 1
+#define regPA_SC_WINDOW_SCISSOR_BR 0x0082
+#define regPA_SC_WINDOW_SCISSOR_BR_BASE_IDX 1
+#define regPA_SC_CLIPRECT_RULE 0x0083
+#define regPA_SC_CLIPRECT_RULE_BASE_IDX 1
+#define regPA_SC_CLIPRECT_0_TL 0x0084
+#define regPA_SC_CLIPRECT_0_TL_BASE_IDX 1
+#define regPA_SC_CLIPRECT_0_BR 0x0085
+#define regPA_SC_CLIPRECT_0_BR_BASE_IDX 1
+#define regPA_SC_CLIPRECT_1_TL 0x0086
+#define regPA_SC_CLIPRECT_1_TL_BASE_IDX 1
+#define regPA_SC_CLIPRECT_1_BR 0x0087
+#define regPA_SC_CLIPRECT_1_BR_BASE_IDX 1
+#define regPA_SC_CLIPRECT_2_TL 0x0088
+#define regPA_SC_CLIPRECT_2_TL_BASE_IDX 1
+#define regPA_SC_CLIPRECT_2_BR 0x0089
+#define regPA_SC_CLIPRECT_2_BR_BASE_IDX 1
+#define regPA_SC_CLIPRECT_3_TL 0x008a
+#define regPA_SC_CLIPRECT_3_TL_BASE_IDX 1
+#define regPA_SC_CLIPRECT_3_BR 0x008b
+#define regPA_SC_CLIPRECT_3_BR_BASE_IDX 1
+#define regPA_SC_EDGERULE 0x008c
+#define regPA_SC_EDGERULE_BASE_IDX 1
+#define regPA_SU_HARDWARE_SCREEN_OFFSET 0x008d
+#define regPA_SU_HARDWARE_SCREEN_OFFSET_BASE_IDX 1
+#define regCB_TARGET_MASK 0x008e
+#define regCB_TARGET_MASK_BASE_IDX 1
+#define regCB_SHADER_MASK 0x008f
+#define regCB_SHADER_MASK_BASE_IDX 1
+#define regPA_SC_GENERIC_SCISSOR_TL 0x0090
+#define regPA_SC_GENERIC_SCISSOR_TL_BASE_IDX 1
+#define regPA_SC_GENERIC_SCISSOR_BR 0x0091
+#define regPA_SC_GENERIC_SCISSOR_BR_BASE_IDX 1
+#define regCOHER_DEST_BASE_0 0x0092
+#define regCOHER_DEST_BASE_0_BASE_IDX 1
+#define regCOHER_DEST_BASE_1 0x0093
+#define regCOHER_DEST_BASE_1_BASE_IDX 1
+#define regPA_SC_VPORT_SCISSOR_0_TL 0x0094
+#define regPA_SC_VPORT_SCISSOR_0_TL_BASE_IDX 1
+#define regPA_SC_VPORT_SCISSOR_0_BR 0x0095
+#define regPA_SC_VPORT_SCISSOR_0_BR_BASE_IDX 1
+#define regPA_SC_VPORT_SCISSOR_1_TL 0x0096
+#define regPA_SC_VPORT_SCISSOR_1_TL_BASE_IDX 1
+#define regPA_SC_VPORT_SCISSOR_1_BR 0x0097
+#define regPA_SC_VPORT_SCISSOR_1_BR_BASE_IDX 1
+#define regPA_SC_VPORT_SCISSOR_2_TL 0x0098
+#define regPA_SC_VPORT_SCISSOR_2_TL_BASE_IDX 1
+#define regPA_SC_VPORT_SCISSOR_2_BR 0x0099
+#define regPA_SC_VPORT_SCISSOR_2_BR_BASE_IDX 1
+#define regPA_SC_VPORT_SCISSOR_3_TL 0x009a
+#define regPA_SC_VPORT_SCISSOR_3_TL_BASE_IDX 1
+#define regPA_SC_VPORT_SCISSOR_3_BR 0x009b
+#define regPA_SC_VPORT_SCISSOR_3_BR_BASE_IDX 1
+#define regPA_SC_VPORT_SCISSOR_4_TL 0x009c
+#define regPA_SC_VPORT_SCISSOR_4_TL_BASE_IDX 1
+#define regPA_SC_VPORT_SCISSOR_4_BR 0x009d
+#define regPA_SC_VPORT_SCISSOR_4_BR_BASE_IDX 1
+#define regPA_SC_VPORT_SCISSOR_5_TL 0x009e
+#define regPA_SC_VPORT_SCISSOR_5_TL_BASE_IDX 1
+#define regPA_SC_VPORT_SCISSOR_5_BR 0x009f
+#define regPA_SC_VPORT_SCISSOR_5_BR_BASE_IDX 1
+#define regPA_SC_VPORT_SCISSOR_6_TL 0x00a0
+#define regPA_SC_VPORT_SCISSOR_6_TL_BASE_IDX 1
+#define regPA_SC_VPORT_SCISSOR_6_BR 0x00a1
+#define regPA_SC_VPORT_SCISSOR_6_BR_BASE_IDX 1
+#define regPA_SC_VPORT_SCISSOR_7_TL 0x00a2
+#define regPA_SC_VPORT_SCISSOR_7_TL_BASE_IDX 1
+#define regPA_SC_VPORT_SCISSOR_7_BR 0x00a3
+#define regPA_SC_VPORT_SCISSOR_7_BR_BASE_IDX 1
+#define regPA_SC_VPORT_SCISSOR_8_TL 0x00a4
+#define regPA_SC_VPORT_SCISSOR_8_TL_BASE_IDX 1
+#define regPA_SC_VPORT_SCISSOR_8_BR 0x00a5
+#define regPA_SC_VPORT_SCISSOR_8_BR_BASE_IDX 1
+#define regPA_SC_VPORT_SCISSOR_9_TL 0x00a6
+#define regPA_SC_VPORT_SCISSOR_9_TL_BASE_IDX 1
+#define regPA_SC_VPORT_SCISSOR_9_BR 0x00a7
+#define regPA_SC_VPORT_SCISSOR_9_BR_BASE_IDX 1
+#define regPA_SC_VPORT_SCISSOR_10_TL 0x00a8
+#define regPA_SC_VPORT_SCISSOR_10_TL_BASE_IDX 1
+#define regPA_SC_VPORT_SCISSOR_10_BR 0x00a9
+#define regPA_SC_VPORT_SCISSOR_10_BR_BASE_IDX 1
+#define regPA_SC_VPORT_SCISSOR_11_TL 0x00aa
+#define regPA_SC_VPORT_SCISSOR_11_TL_BASE_IDX 1
+#define regPA_SC_VPORT_SCISSOR_11_BR 0x00ab
+#define regPA_SC_VPORT_SCISSOR_11_BR_BASE_IDX 1
+#define regPA_SC_VPORT_SCISSOR_12_TL 0x00ac
+#define regPA_SC_VPORT_SCISSOR_12_TL_BASE_IDX 1
+#define regPA_SC_VPORT_SCISSOR_12_BR 0x00ad
+#define regPA_SC_VPORT_SCISSOR_12_BR_BASE_IDX 1
+#define regPA_SC_VPORT_SCISSOR_13_TL 0x00ae
+#define regPA_SC_VPORT_SCISSOR_13_TL_BASE_IDX 1
+#define regPA_SC_VPORT_SCISSOR_13_BR 0x00af
+#define regPA_SC_VPORT_SCISSOR_13_BR_BASE_IDX 1
+#define regPA_SC_VPORT_SCISSOR_14_TL 0x00b0
+#define regPA_SC_VPORT_SCISSOR_14_TL_BASE_IDX 1
+#define regPA_SC_VPORT_SCISSOR_14_BR 0x00b1
+#define regPA_SC_VPORT_SCISSOR_14_BR_BASE_IDX 1
+#define regPA_SC_VPORT_SCISSOR_15_TL 0x00b2
+#define regPA_SC_VPORT_SCISSOR_15_TL_BASE_IDX 1
+#define regPA_SC_VPORT_SCISSOR_15_BR 0x00b3
+#define regPA_SC_VPORT_SCISSOR_15_BR_BASE_IDX 1
+#define regPA_SC_VPORT_ZMIN_0 0x00b4
+#define regPA_SC_VPORT_ZMIN_0_BASE_IDX 1
+#define regPA_SC_VPORT_ZMAX_0 0x00b5
+#define regPA_SC_VPORT_ZMAX_0_BASE_IDX 1
+#define regPA_SC_VPORT_ZMIN_1 0x00b6
+#define regPA_SC_VPORT_ZMIN_1_BASE_IDX 1
+#define regPA_SC_VPORT_ZMAX_1 0x00b7
+#define regPA_SC_VPORT_ZMAX_1_BASE_IDX 1
+#define regPA_SC_VPORT_ZMIN_2 0x00b8
+#define regPA_SC_VPORT_ZMIN_2_BASE_IDX 1
+#define regPA_SC_VPORT_ZMAX_2 0x00b9
+#define regPA_SC_VPORT_ZMAX_2_BASE_IDX 1
+#define regPA_SC_VPORT_ZMIN_3 0x00ba
+#define regPA_SC_VPORT_ZMIN_3_BASE_IDX 1
+#define regPA_SC_VPORT_ZMAX_3 0x00bb
+#define regPA_SC_VPORT_ZMAX_3_BASE_IDX 1
+#define regPA_SC_VPORT_ZMIN_4 0x00bc
+#define regPA_SC_VPORT_ZMIN_4_BASE_IDX 1
+#define regPA_SC_VPORT_ZMAX_4 0x00bd
+#define regPA_SC_VPORT_ZMAX_4_BASE_IDX 1
+#define regPA_SC_VPORT_ZMIN_5 0x00be
+#define regPA_SC_VPORT_ZMIN_5_BASE_IDX 1
+#define regPA_SC_VPORT_ZMAX_5 0x00bf
+#define regPA_SC_VPORT_ZMAX_5_BASE_IDX 1
+#define regPA_SC_VPORT_ZMIN_6 0x00c0
+#define regPA_SC_VPORT_ZMIN_6_BASE_IDX 1
+#define regPA_SC_VPORT_ZMAX_6 0x00c1
+#define regPA_SC_VPORT_ZMAX_6_BASE_IDX 1
+#define regPA_SC_VPORT_ZMIN_7 0x00c2
+#define regPA_SC_VPORT_ZMIN_7_BASE_IDX 1
+#define regPA_SC_VPORT_ZMAX_7 0x00c3
+#define regPA_SC_VPORT_ZMAX_7_BASE_IDX 1
+#define regPA_SC_VPORT_ZMIN_8 0x00c4
+#define regPA_SC_VPORT_ZMIN_8_BASE_IDX 1
+#define regPA_SC_VPORT_ZMAX_8 0x00c5
+#define regPA_SC_VPORT_ZMAX_8_BASE_IDX 1
+#define regPA_SC_VPORT_ZMIN_9 0x00c6
+#define regPA_SC_VPORT_ZMIN_9_BASE_IDX 1
+#define regPA_SC_VPORT_ZMAX_9 0x00c7
+#define regPA_SC_VPORT_ZMAX_9_BASE_IDX 1
+#define regPA_SC_VPORT_ZMIN_10 0x00c8
+#define regPA_SC_VPORT_ZMIN_10_BASE_IDX 1
+#define regPA_SC_VPORT_ZMAX_10 0x00c9
+#define regPA_SC_VPORT_ZMAX_10_BASE_IDX 1
+#define regPA_SC_VPORT_ZMIN_11 0x00ca
+#define regPA_SC_VPORT_ZMIN_11_BASE_IDX 1
+#define regPA_SC_VPORT_ZMAX_11 0x00cb
+#define regPA_SC_VPORT_ZMAX_11_BASE_IDX 1
+#define regPA_SC_VPORT_ZMIN_12 0x00cc
+#define regPA_SC_VPORT_ZMIN_12_BASE_IDX 1
+#define regPA_SC_VPORT_ZMAX_12 0x00cd
+#define regPA_SC_VPORT_ZMAX_12_BASE_IDX 1
+#define regPA_SC_VPORT_ZMIN_13 0x00ce
+#define regPA_SC_VPORT_ZMIN_13_BASE_IDX 1
+#define regPA_SC_VPORT_ZMAX_13 0x00cf
+#define regPA_SC_VPORT_ZMAX_13_BASE_IDX 1
+#define regPA_SC_VPORT_ZMIN_14 0x00d0
+#define regPA_SC_VPORT_ZMIN_14_BASE_IDX 1
+#define regPA_SC_VPORT_ZMAX_14 0x00d1
+#define regPA_SC_VPORT_ZMAX_14_BASE_IDX 1
+#define regPA_SC_VPORT_ZMIN_15 0x00d2
+#define regPA_SC_VPORT_ZMIN_15_BASE_IDX 1
+#define regPA_SC_VPORT_ZMAX_15 0x00d3
+#define regPA_SC_VPORT_ZMAX_15_BASE_IDX 1
+#define regPA_SC_RASTER_CONFIG 0x00d4
+#define regPA_SC_RASTER_CONFIG_BASE_IDX 1
+#define regPA_SC_RASTER_CONFIG_1 0x00d5
+#define regPA_SC_RASTER_CONFIG_1_BASE_IDX 1
+#define regPA_SC_SCREEN_EXTENT_CONTROL 0x00d6
+#define regPA_SC_SCREEN_EXTENT_CONTROL_BASE_IDX 1
+#define regPA_SC_TILE_STEERING_OVERRIDE 0x00d7
+#define regPA_SC_TILE_STEERING_OVERRIDE_BASE_IDX 1
+#define regCP_PERFMON_CNTX_CNTL 0x00d8
+#define regCP_PERFMON_CNTX_CNTL_BASE_IDX 1
+#define regCP_PIPEID 0x00d9
+#define regCP_PIPEID_BASE_IDX 1
+#define regCP_RINGID 0x00d9
+#define regCP_RINGID_BASE_IDX 1
+#define regCP_VMID 0x00da
+#define regCP_VMID_BASE_IDX 1
+#define regPA_SC_RIGHT_VERT_GRID 0x00e8
+#define regPA_SC_RIGHT_VERT_GRID_BASE_IDX 1
+#define regPA_SC_LEFT_VERT_GRID 0x00e9
+#define regPA_SC_LEFT_VERT_GRID_BASE_IDX 1
+#define regPA_SC_HORIZ_GRID 0x00ea
+#define regPA_SC_HORIZ_GRID_BASE_IDX 1
+#define regVGT_MULTI_PRIM_IB_RESET_INDX 0x0103
+#define regVGT_MULTI_PRIM_IB_RESET_INDX_BASE_IDX 1
+#define regCB_BLEND_RED 0x0105
+#define regCB_BLEND_RED_BASE_IDX 1
+#define regCB_BLEND_GREEN 0x0106
+#define regCB_BLEND_GREEN_BASE_IDX 1
+#define regCB_BLEND_BLUE 0x0107
+#define regCB_BLEND_BLUE_BASE_IDX 1
+#define regCB_BLEND_ALPHA 0x0108
+#define regCB_BLEND_ALPHA_BASE_IDX 1
+#define regCB_DCC_CONTROL 0x0109
+#define regCB_DCC_CONTROL_BASE_IDX 1
+#define regDB_STENCIL_CONTROL 0x010b
+#define regDB_STENCIL_CONTROL_BASE_IDX 1
+#define regDB_STENCILREFMASK 0x010c
+#define regDB_STENCILREFMASK_BASE_IDX 1
+#define regDB_STENCILREFMASK_BF 0x010d
+#define regDB_STENCILREFMASK_BF_BASE_IDX 1
+#define regPA_CL_VPORT_XSCALE 0x010f
+#define regPA_CL_VPORT_XSCALE_BASE_IDX 1
+#define regPA_CL_VPORT_XOFFSET 0x0110
+#define regPA_CL_VPORT_XOFFSET_BASE_IDX 1
+#define regPA_CL_VPORT_YSCALE 0x0111
+#define regPA_CL_VPORT_YSCALE_BASE_IDX 1
+#define regPA_CL_VPORT_YOFFSET 0x0112
+#define regPA_CL_VPORT_YOFFSET_BASE_IDX 1
+#define regPA_CL_VPORT_ZSCALE 0x0113
+#define regPA_CL_VPORT_ZSCALE_BASE_IDX 1
+#define regPA_CL_VPORT_ZOFFSET 0x0114
+#define regPA_CL_VPORT_ZOFFSET_BASE_IDX 1
+#define regPA_CL_VPORT_XSCALE_1 0x0115
+#define regPA_CL_VPORT_XSCALE_1_BASE_IDX 1
+#define regPA_CL_VPORT_XOFFSET_1 0x0116
+#define regPA_CL_VPORT_XOFFSET_1_BASE_IDX 1
+#define regPA_CL_VPORT_YSCALE_1 0x0117
+#define regPA_CL_VPORT_YSCALE_1_BASE_IDX 1
+#define regPA_CL_VPORT_YOFFSET_1 0x0118
+#define regPA_CL_VPORT_YOFFSET_1_BASE_IDX 1
+#define regPA_CL_VPORT_ZSCALE_1 0x0119
+#define regPA_CL_VPORT_ZSCALE_1_BASE_IDX 1
+#define regPA_CL_VPORT_ZOFFSET_1 0x011a
+#define regPA_CL_VPORT_ZOFFSET_1_BASE_IDX 1
+#define regPA_CL_VPORT_XSCALE_2 0x011b
+#define regPA_CL_VPORT_XSCALE_2_BASE_IDX 1
+#define regPA_CL_VPORT_XOFFSET_2 0x011c
+#define regPA_CL_VPORT_XOFFSET_2_BASE_IDX 1
+#define regPA_CL_VPORT_YSCALE_2 0x011d
+#define regPA_CL_VPORT_YSCALE_2_BASE_IDX 1
+#define regPA_CL_VPORT_YOFFSET_2 0x011e
+#define regPA_CL_VPORT_YOFFSET_2_BASE_IDX 1
+#define regPA_CL_VPORT_ZSCALE_2 0x011f
+#define regPA_CL_VPORT_ZSCALE_2_BASE_IDX 1
+#define regPA_CL_VPORT_ZOFFSET_2 0x0120
+#define regPA_CL_VPORT_ZOFFSET_2_BASE_IDX 1
+#define regPA_CL_VPORT_XSCALE_3 0x0121
+#define regPA_CL_VPORT_XSCALE_3_BASE_IDX 1
+#define regPA_CL_VPORT_XOFFSET_3 0x0122
+#define regPA_CL_VPORT_XOFFSET_3_BASE_IDX 1
+#define regPA_CL_VPORT_YSCALE_3 0x0123
+#define regPA_CL_VPORT_YSCALE_3_BASE_IDX 1
+#define regPA_CL_VPORT_YOFFSET_3 0x0124
+#define regPA_CL_VPORT_YOFFSET_3_BASE_IDX 1
+#define regPA_CL_VPORT_ZSCALE_3 0x0125
+#define regPA_CL_VPORT_ZSCALE_3_BASE_IDX 1
+#define regPA_CL_VPORT_ZOFFSET_3 0x0126
+#define regPA_CL_VPORT_ZOFFSET_3_BASE_IDX 1
+#define regPA_CL_VPORT_XSCALE_4 0x0127
+#define regPA_CL_VPORT_XSCALE_4_BASE_IDX 1
+#define regPA_CL_VPORT_XOFFSET_4 0x0128
+#define regPA_CL_VPORT_XOFFSET_4_BASE_IDX 1
+#define regPA_CL_VPORT_YSCALE_4 0x0129
+#define regPA_CL_VPORT_YSCALE_4_BASE_IDX 1
+#define regPA_CL_VPORT_YOFFSET_4 0x012a
+#define regPA_CL_VPORT_YOFFSET_4_BASE_IDX 1
+#define regPA_CL_VPORT_ZSCALE_4 0x012b
+#define regPA_CL_VPORT_ZSCALE_4_BASE_IDX 1
+#define regPA_CL_VPORT_ZOFFSET_4 0x012c
+#define regPA_CL_VPORT_ZOFFSET_4_BASE_IDX 1
+#define regPA_CL_VPORT_XSCALE_5 0x012d
+#define regPA_CL_VPORT_XSCALE_5_BASE_IDX 1
+#define regPA_CL_VPORT_XOFFSET_5 0x012e
+#define regPA_CL_VPORT_XOFFSET_5_BASE_IDX 1
+#define regPA_CL_VPORT_YSCALE_5 0x012f
+#define regPA_CL_VPORT_YSCALE_5_BASE_IDX 1
+#define regPA_CL_VPORT_YOFFSET_5 0x0130
+#define regPA_CL_VPORT_YOFFSET_5_BASE_IDX 1
+#define regPA_CL_VPORT_ZSCALE_5 0x0131
+#define regPA_CL_VPORT_ZSCALE_5_BASE_IDX 1
+#define regPA_CL_VPORT_ZOFFSET_5 0x0132
+#define regPA_CL_VPORT_ZOFFSET_5_BASE_IDX 1
+#define regPA_CL_VPORT_XSCALE_6 0x0133
+#define regPA_CL_VPORT_XSCALE_6_BASE_IDX 1
+#define regPA_CL_VPORT_XOFFSET_6 0x0134
+#define regPA_CL_VPORT_XOFFSET_6_BASE_IDX 1
+#define regPA_CL_VPORT_YSCALE_6 0x0135
+#define regPA_CL_VPORT_YSCALE_6_BASE_IDX 1
+#define regPA_CL_VPORT_YOFFSET_6 0x0136
+#define regPA_CL_VPORT_YOFFSET_6_BASE_IDX 1
+#define regPA_CL_VPORT_ZSCALE_6 0x0137
+#define regPA_CL_VPORT_ZSCALE_6_BASE_IDX 1
+#define regPA_CL_VPORT_ZOFFSET_6 0x0138
+#define regPA_CL_VPORT_ZOFFSET_6_BASE_IDX 1
+#define regPA_CL_VPORT_XSCALE_7 0x0139
+#define regPA_CL_VPORT_XSCALE_7_BASE_IDX 1
+#define regPA_CL_VPORT_XOFFSET_7 0x013a
+#define regPA_CL_VPORT_XOFFSET_7_BASE_IDX 1
+#define regPA_CL_VPORT_YSCALE_7 0x013b
+#define regPA_CL_VPORT_YSCALE_7_BASE_IDX 1
+#define regPA_CL_VPORT_YOFFSET_7 0x013c
+#define regPA_CL_VPORT_YOFFSET_7_BASE_IDX 1
+#define regPA_CL_VPORT_ZSCALE_7 0x013d
+#define regPA_CL_VPORT_ZSCALE_7_BASE_IDX 1
+#define regPA_CL_VPORT_ZOFFSET_7 0x013e
+#define regPA_CL_VPORT_ZOFFSET_7_BASE_IDX 1
+#define regPA_CL_VPORT_XSCALE_8 0x013f
+#define regPA_CL_VPORT_XSCALE_8_BASE_IDX 1
+#define regPA_CL_VPORT_XOFFSET_8 0x0140
+#define regPA_CL_VPORT_XOFFSET_8_BASE_IDX 1
+#define regPA_CL_VPORT_YSCALE_8 0x0141
+#define regPA_CL_VPORT_YSCALE_8_BASE_IDX 1
+#define regPA_CL_VPORT_YOFFSET_8 0x0142
+#define regPA_CL_VPORT_YOFFSET_8_BASE_IDX 1
+#define regPA_CL_VPORT_ZSCALE_8 0x0143
+#define regPA_CL_VPORT_ZSCALE_8_BASE_IDX 1
+#define regPA_CL_VPORT_ZOFFSET_8 0x0144
+#define regPA_CL_VPORT_ZOFFSET_8_BASE_IDX 1
+#define regPA_CL_VPORT_XSCALE_9 0x0145
+#define regPA_CL_VPORT_XSCALE_9_BASE_IDX 1
+#define regPA_CL_VPORT_XOFFSET_9 0x0146
+#define regPA_CL_VPORT_XOFFSET_9_BASE_IDX 1
+#define regPA_CL_VPORT_YSCALE_9 0x0147
+#define regPA_CL_VPORT_YSCALE_9_BASE_IDX 1
+#define regPA_CL_VPORT_YOFFSET_9 0x0148
+#define regPA_CL_VPORT_YOFFSET_9_BASE_IDX 1
+#define regPA_CL_VPORT_ZSCALE_9 0x0149
+#define regPA_CL_VPORT_ZSCALE_9_BASE_IDX 1
+#define regPA_CL_VPORT_ZOFFSET_9 0x014a
+#define regPA_CL_VPORT_ZOFFSET_9_BASE_IDX 1
+#define regPA_CL_VPORT_XSCALE_10 0x014b
+#define regPA_CL_VPORT_XSCALE_10_BASE_IDX 1
+#define regPA_CL_VPORT_XOFFSET_10 0x014c
+#define regPA_CL_VPORT_XOFFSET_10_BASE_IDX 1
+#define regPA_CL_VPORT_YSCALE_10 0x014d
+#define regPA_CL_VPORT_YSCALE_10_BASE_IDX 1
+#define regPA_CL_VPORT_YOFFSET_10 0x014e
+#define regPA_CL_VPORT_YOFFSET_10_BASE_IDX 1
+#define regPA_CL_VPORT_ZSCALE_10 0x014f
+#define regPA_CL_VPORT_ZSCALE_10_BASE_IDX 1
+#define regPA_CL_VPORT_ZOFFSET_10 0x0150
+#define regPA_CL_VPORT_ZOFFSET_10_BASE_IDX 1
+#define regPA_CL_VPORT_XSCALE_11 0x0151
+#define regPA_CL_VPORT_XSCALE_11_BASE_IDX 1
+#define regPA_CL_VPORT_XOFFSET_11 0x0152
+#define regPA_CL_VPORT_XOFFSET_11_BASE_IDX 1
+#define regPA_CL_VPORT_YSCALE_11 0x0153
+#define regPA_CL_VPORT_YSCALE_11_BASE_IDX 1
+#define regPA_CL_VPORT_YOFFSET_11 0x0154
+#define regPA_CL_VPORT_YOFFSET_11_BASE_IDX 1
+#define regPA_CL_VPORT_ZSCALE_11 0x0155
+#define regPA_CL_VPORT_ZSCALE_11_BASE_IDX 1
+#define regPA_CL_VPORT_ZOFFSET_11 0x0156
+#define regPA_CL_VPORT_ZOFFSET_11_BASE_IDX 1
+#define regPA_CL_VPORT_XSCALE_12 0x0157
+#define regPA_CL_VPORT_XSCALE_12_BASE_IDX 1
+#define regPA_CL_VPORT_XOFFSET_12 0x0158
+#define regPA_CL_VPORT_XOFFSET_12_BASE_IDX 1
+#define regPA_CL_VPORT_YSCALE_12 0x0159
+#define regPA_CL_VPORT_YSCALE_12_BASE_IDX 1
+#define regPA_CL_VPORT_YOFFSET_12 0x015a
+#define regPA_CL_VPORT_YOFFSET_12_BASE_IDX 1
+#define regPA_CL_VPORT_ZSCALE_12 0x015b
+#define regPA_CL_VPORT_ZSCALE_12_BASE_IDX 1
+#define regPA_CL_VPORT_ZOFFSET_12 0x015c
+#define regPA_CL_VPORT_ZOFFSET_12_BASE_IDX 1
+#define regPA_CL_VPORT_XSCALE_13 0x015d
+#define regPA_CL_VPORT_XSCALE_13_BASE_IDX 1
+#define regPA_CL_VPORT_XOFFSET_13 0x015e
+#define regPA_CL_VPORT_XOFFSET_13_BASE_IDX 1
+#define regPA_CL_VPORT_YSCALE_13 0x015f
+#define regPA_CL_VPORT_YSCALE_13_BASE_IDX 1
+#define regPA_CL_VPORT_YOFFSET_13 0x0160
+#define regPA_CL_VPORT_YOFFSET_13_BASE_IDX 1
+#define regPA_CL_VPORT_ZSCALE_13 0x0161
+#define regPA_CL_VPORT_ZSCALE_13_BASE_IDX 1
+#define regPA_CL_VPORT_ZOFFSET_13 0x0162
+#define regPA_CL_VPORT_ZOFFSET_13_BASE_IDX 1
+#define regPA_CL_VPORT_XSCALE_14 0x0163
+#define regPA_CL_VPORT_XSCALE_14_BASE_IDX 1
+#define regPA_CL_VPORT_XOFFSET_14 0x0164
+#define regPA_CL_VPORT_XOFFSET_14_BASE_IDX 1
+#define regPA_CL_VPORT_YSCALE_14 0x0165
+#define regPA_CL_VPORT_YSCALE_14_BASE_IDX 1
+#define regPA_CL_VPORT_YOFFSET_14 0x0166
+#define regPA_CL_VPORT_YOFFSET_14_BASE_IDX 1
+#define regPA_CL_VPORT_ZSCALE_14 0x0167
+#define regPA_CL_VPORT_ZSCALE_14_BASE_IDX 1
+#define regPA_CL_VPORT_ZOFFSET_14 0x0168
+#define regPA_CL_VPORT_ZOFFSET_14_BASE_IDX 1
+#define regPA_CL_VPORT_XSCALE_15 0x0169
+#define regPA_CL_VPORT_XSCALE_15_BASE_IDX 1
+#define regPA_CL_VPORT_XOFFSET_15 0x016a
+#define regPA_CL_VPORT_XOFFSET_15_BASE_IDX 1
+#define regPA_CL_VPORT_YSCALE_15 0x016b
+#define regPA_CL_VPORT_YSCALE_15_BASE_IDX 1
+#define regPA_CL_VPORT_YOFFSET_15 0x016c
+#define regPA_CL_VPORT_YOFFSET_15_BASE_IDX 1
+#define regPA_CL_VPORT_ZSCALE_15 0x016d
+#define regPA_CL_VPORT_ZSCALE_15_BASE_IDX 1
+#define regPA_CL_VPORT_ZOFFSET_15 0x016e
+#define regPA_CL_VPORT_ZOFFSET_15_BASE_IDX 1
+#define regPA_CL_UCP_0_X 0x016f
+#define regPA_CL_UCP_0_X_BASE_IDX 1
+#define regPA_CL_UCP_0_Y 0x0170
+#define regPA_CL_UCP_0_Y_BASE_IDX 1
+#define regPA_CL_UCP_0_Z 0x0171
+#define regPA_CL_UCP_0_Z_BASE_IDX 1
+#define regPA_CL_UCP_0_W 0x0172
+#define regPA_CL_UCP_0_W_BASE_IDX 1
+#define regPA_CL_UCP_1_X 0x0173
+#define regPA_CL_UCP_1_X_BASE_IDX 1
+#define regPA_CL_UCP_1_Y 0x0174
+#define regPA_CL_UCP_1_Y_BASE_IDX 1
+#define regPA_CL_UCP_1_Z 0x0175
+#define regPA_CL_UCP_1_Z_BASE_IDX 1
+#define regPA_CL_UCP_1_W 0x0176
+#define regPA_CL_UCP_1_W_BASE_IDX 1
+#define regPA_CL_UCP_2_X 0x0177
+#define regPA_CL_UCP_2_X_BASE_IDX 1
+#define regPA_CL_UCP_2_Y 0x0178
+#define regPA_CL_UCP_2_Y_BASE_IDX 1
+#define regPA_CL_UCP_2_Z 0x0179
+#define regPA_CL_UCP_2_Z_BASE_IDX 1
+#define regPA_CL_UCP_2_W 0x017a
+#define regPA_CL_UCP_2_W_BASE_IDX 1
+#define regPA_CL_UCP_3_X 0x017b
+#define regPA_CL_UCP_3_X_BASE_IDX 1
+#define regPA_CL_UCP_3_Y 0x017c
+#define regPA_CL_UCP_3_Y_BASE_IDX 1
+#define regPA_CL_UCP_3_Z 0x017d
+#define regPA_CL_UCP_3_Z_BASE_IDX 1
+#define regPA_CL_UCP_3_W 0x017e
+#define regPA_CL_UCP_3_W_BASE_IDX 1
+#define regPA_CL_UCP_4_X 0x017f
+#define regPA_CL_UCP_4_X_BASE_IDX 1
+#define regPA_CL_UCP_4_Y 0x0180
+#define regPA_CL_UCP_4_Y_BASE_IDX 1
+#define regPA_CL_UCP_4_Z 0x0181
+#define regPA_CL_UCP_4_Z_BASE_IDX 1
+#define regPA_CL_UCP_4_W 0x0182
+#define regPA_CL_UCP_4_W_BASE_IDX 1
+#define regPA_CL_UCP_5_X 0x0183
+#define regPA_CL_UCP_5_X_BASE_IDX 1
+#define regPA_CL_UCP_5_Y 0x0184
+#define regPA_CL_UCP_5_Y_BASE_IDX 1
+#define regPA_CL_UCP_5_Z 0x0185
+#define regPA_CL_UCP_5_Z_BASE_IDX 1
+#define regPA_CL_UCP_5_W 0x0186
+#define regPA_CL_UCP_5_W_BASE_IDX 1
+#define regPA_CL_PROG_NEAR_CLIP_Z 0x0187
+#define regPA_CL_PROG_NEAR_CLIP_Z_BASE_IDX 1
+#define regSPI_PS_INPUT_CNTL_0 0x0191
+#define regSPI_PS_INPUT_CNTL_0_BASE_IDX 1
+#define regSPI_PS_INPUT_CNTL_1 0x0192
+#define regSPI_PS_INPUT_CNTL_1_BASE_IDX 1
+#define regSPI_PS_INPUT_CNTL_2 0x0193
+#define regSPI_PS_INPUT_CNTL_2_BASE_IDX 1
+#define regSPI_PS_INPUT_CNTL_3 0x0194
+#define regSPI_PS_INPUT_CNTL_3_BASE_IDX 1
+#define regSPI_PS_INPUT_CNTL_4 0x0195
+#define regSPI_PS_INPUT_CNTL_4_BASE_IDX 1
+#define regSPI_PS_INPUT_CNTL_5 0x0196
+#define regSPI_PS_INPUT_CNTL_5_BASE_IDX 1
+#define regSPI_PS_INPUT_CNTL_6 0x0197
+#define regSPI_PS_INPUT_CNTL_6_BASE_IDX 1
+#define regSPI_PS_INPUT_CNTL_7 0x0198
+#define regSPI_PS_INPUT_CNTL_7_BASE_IDX 1
+#define regSPI_PS_INPUT_CNTL_8 0x0199
+#define regSPI_PS_INPUT_CNTL_8_BASE_IDX 1
+#define regSPI_PS_INPUT_CNTL_9 0x019a
+#define regSPI_PS_INPUT_CNTL_9_BASE_IDX 1
+#define regSPI_PS_INPUT_CNTL_10 0x019b
+#define regSPI_PS_INPUT_CNTL_10_BASE_IDX 1
+#define regSPI_PS_INPUT_CNTL_11 0x019c
+#define regSPI_PS_INPUT_CNTL_11_BASE_IDX 1
+#define regSPI_PS_INPUT_CNTL_12 0x019d
+#define regSPI_PS_INPUT_CNTL_12_BASE_IDX 1
+#define regSPI_PS_INPUT_CNTL_13 0x019e
+#define regSPI_PS_INPUT_CNTL_13_BASE_IDX 1
+#define regSPI_PS_INPUT_CNTL_14 0x019f
+#define regSPI_PS_INPUT_CNTL_14_BASE_IDX 1
+#define regSPI_PS_INPUT_CNTL_15 0x01a0
+#define regSPI_PS_INPUT_CNTL_15_BASE_IDX 1
+#define regSPI_PS_INPUT_CNTL_16 0x01a1
+#define regSPI_PS_INPUT_CNTL_16_BASE_IDX 1
+#define regSPI_PS_INPUT_CNTL_17 0x01a2
+#define regSPI_PS_INPUT_CNTL_17_BASE_IDX 1
+#define regSPI_PS_INPUT_CNTL_18 0x01a3
+#define regSPI_PS_INPUT_CNTL_18_BASE_IDX 1
+#define regSPI_PS_INPUT_CNTL_19 0x01a4
+#define regSPI_PS_INPUT_CNTL_19_BASE_IDX 1
+#define regSPI_PS_INPUT_CNTL_20 0x01a5
+#define regSPI_PS_INPUT_CNTL_20_BASE_IDX 1
+#define regSPI_PS_INPUT_CNTL_21 0x01a6
+#define regSPI_PS_INPUT_CNTL_21_BASE_IDX 1
+#define regSPI_PS_INPUT_CNTL_22 0x01a7
+#define regSPI_PS_INPUT_CNTL_22_BASE_IDX 1
+#define regSPI_PS_INPUT_CNTL_23 0x01a8
+#define regSPI_PS_INPUT_CNTL_23_BASE_IDX 1
+#define regSPI_PS_INPUT_CNTL_24 0x01a9
+#define regSPI_PS_INPUT_CNTL_24_BASE_IDX 1
+#define regSPI_PS_INPUT_CNTL_25 0x01aa
+#define regSPI_PS_INPUT_CNTL_25_BASE_IDX 1
+#define regSPI_PS_INPUT_CNTL_26 0x01ab
+#define regSPI_PS_INPUT_CNTL_26_BASE_IDX 1
+#define regSPI_PS_INPUT_CNTL_27 0x01ac
+#define regSPI_PS_INPUT_CNTL_27_BASE_IDX 1
+#define regSPI_PS_INPUT_CNTL_28 0x01ad
+#define regSPI_PS_INPUT_CNTL_28_BASE_IDX 1
+#define regSPI_PS_INPUT_CNTL_29 0x01ae
+#define regSPI_PS_INPUT_CNTL_29_BASE_IDX 1
+#define regSPI_PS_INPUT_CNTL_30 0x01af
+#define regSPI_PS_INPUT_CNTL_30_BASE_IDX 1
+#define regSPI_PS_INPUT_CNTL_31 0x01b0
+#define regSPI_PS_INPUT_CNTL_31_BASE_IDX 1
+#define regSPI_VS_OUT_CONFIG 0x01b1
+#define regSPI_VS_OUT_CONFIG_BASE_IDX 1
+#define regSPI_PS_INPUT_ENA 0x01b3
+#define regSPI_PS_INPUT_ENA_BASE_IDX 1
+#define regSPI_PS_INPUT_ADDR 0x01b4
+#define regSPI_PS_INPUT_ADDR_BASE_IDX 1
+#define regSPI_INTERP_CONTROL_0 0x01b5
+#define regSPI_INTERP_CONTROL_0_BASE_IDX 1
+#define regSPI_PS_IN_CONTROL 0x01b6
+#define regSPI_PS_IN_CONTROL_BASE_IDX 1
+#define regSPI_BARYC_CNTL 0x01b8
+#define regSPI_BARYC_CNTL_BASE_IDX 1
+#define regSPI_TMPRING_SIZE 0x01ba
+#define regSPI_TMPRING_SIZE_BASE_IDX 1
+#define regSPI_SHADER_POS_FORMAT 0x01c3
+#define regSPI_SHADER_POS_FORMAT_BASE_IDX 1
+#define regSPI_SHADER_Z_FORMAT 0x01c4
+#define regSPI_SHADER_Z_FORMAT_BASE_IDX 1
+#define regSPI_SHADER_COL_FORMAT 0x01c5
+#define regSPI_SHADER_COL_FORMAT_BASE_IDX 1
+#define regCB_BLEND0_CONTROL 0x01e0
+#define regCB_BLEND0_CONTROL_BASE_IDX 1
+#define regCB_BLEND1_CONTROL 0x01e1
+#define regCB_BLEND1_CONTROL_BASE_IDX 1
+#define regCB_BLEND2_CONTROL 0x01e2
+#define regCB_BLEND2_CONTROL_BASE_IDX 1
+#define regCB_BLEND3_CONTROL 0x01e3
+#define regCB_BLEND3_CONTROL_BASE_IDX 1
+#define regCB_BLEND4_CONTROL 0x01e4
+#define regCB_BLEND4_CONTROL_BASE_IDX 1
+#define regCB_BLEND5_CONTROL 0x01e5
+#define regCB_BLEND5_CONTROL_BASE_IDX 1
+#define regCB_BLEND6_CONTROL 0x01e6
+#define regCB_BLEND6_CONTROL_BASE_IDX 1
+#define regCB_BLEND7_CONTROL 0x01e7
+#define regCB_BLEND7_CONTROL_BASE_IDX 1
+#define regCB_MRT0_EPITCH 0x01e8
+#define regCB_MRT0_EPITCH_BASE_IDX 1
+#define regCB_MRT1_EPITCH 0x01e9
+#define regCB_MRT1_EPITCH_BASE_IDX 1
+#define regCB_MRT2_EPITCH 0x01ea
+#define regCB_MRT2_EPITCH_BASE_IDX 1
+#define regCB_MRT3_EPITCH 0x01eb
+#define regCB_MRT3_EPITCH_BASE_IDX 1
+#define regCB_MRT4_EPITCH 0x01ec
+#define regCB_MRT4_EPITCH_BASE_IDX 1
+#define regCB_MRT5_EPITCH 0x01ed
+#define regCB_MRT5_EPITCH_BASE_IDX 1
+#define regCB_MRT6_EPITCH 0x01ee
+#define regCB_MRT6_EPITCH_BASE_IDX 1
+#define regCB_MRT7_EPITCH 0x01ef
+#define regCB_MRT7_EPITCH_BASE_IDX 1
+#define regCS_COPY_STATE 0x01f3
+#define regCS_COPY_STATE_BASE_IDX 1
+#define regGFX_COPY_STATE 0x01f4
+#define regGFX_COPY_STATE_BASE_IDX 1
+#define regPA_CL_POINT_X_RAD 0x01f5
+#define regPA_CL_POINT_X_RAD_BASE_IDX 1
+#define regPA_CL_POINT_Y_RAD 0x01f6
+#define regPA_CL_POINT_Y_RAD_BASE_IDX 1
+#define regPA_CL_POINT_SIZE 0x01f7
+#define regPA_CL_POINT_SIZE_BASE_IDX 1
+#define regPA_CL_POINT_CULL_RAD 0x01f8
+#define regPA_CL_POINT_CULL_RAD_BASE_IDX 1
+#define regVGT_DMA_BASE_HI 0x01f9
+#define regVGT_DMA_BASE_HI_BASE_IDX 1
+#define regVGT_DMA_BASE 0x01fa
+#define regVGT_DMA_BASE_BASE_IDX 1
+#define regVGT_DRAW_INITIATOR 0x01fc
+#define regVGT_DRAW_INITIATOR_BASE_IDX 1
+#define regVGT_IMMED_DATA 0x01fd
+#define regVGT_IMMED_DATA_BASE_IDX 1
+#define regVGT_EVENT_ADDRESS_REG 0x01fe
+#define regVGT_EVENT_ADDRESS_REG_BASE_IDX 1
+#define regDB_DEPTH_CONTROL 0x0200
+#define regDB_DEPTH_CONTROL_BASE_IDX 1
+#define regDB_EQAA 0x0201
+#define regDB_EQAA_BASE_IDX 1
+#define regCB_COLOR_CONTROL 0x0202
+#define regCB_COLOR_CONTROL_BASE_IDX 1
+#define regDB_SHADER_CONTROL 0x0203
+#define regDB_SHADER_CONTROL_BASE_IDX 1
+#define regPA_CL_CLIP_CNTL 0x0204
+#define regPA_CL_CLIP_CNTL_BASE_IDX 1
+#define regPA_SU_SC_MODE_CNTL 0x0205
+#define regPA_SU_SC_MODE_CNTL_BASE_IDX 1
+#define regPA_CL_VTE_CNTL 0x0206
+#define regPA_CL_VTE_CNTL_BASE_IDX 1
+#define regPA_CL_VS_OUT_CNTL 0x0207
+#define regPA_CL_VS_OUT_CNTL_BASE_IDX 1
+#define regPA_CL_NANINF_CNTL 0x0208
+#define regPA_CL_NANINF_CNTL_BASE_IDX 1
+#define regPA_SU_LINE_STIPPLE_CNTL 0x0209
+#define regPA_SU_LINE_STIPPLE_CNTL_BASE_IDX 1
+#define regPA_SU_LINE_STIPPLE_SCALE 0x020a
+#define regPA_SU_LINE_STIPPLE_SCALE_BASE_IDX 1
+#define regPA_SU_PRIM_FILTER_CNTL 0x020b
+#define regPA_SU_PRIM_FILTER_CNTL_BASE_IDX 1
+#define regPA_SU_SMALL_PRIM_FILTER_CNTL 0x020c
+#define regPA_SU_SMALL_PRIM_FILTER_CNTL_BASE_IDX 1
+#define regPA_CL_OBJPRIM_ID_CNTL 0x020d
+#define regPA_CL_OBJPRIM_ID_CNTL_BASE_IDX 1
+#define regPA_CL_NGG_CNTL 0x020e
+#define regPA_CL_NGG_CNTL_BASE_IDX 1
+#define regPA_SU_OVER_RASTERIZATION_CNTL 0x020f
+#define regPA_SU_OVER_RASTERIZATION_CNTL_BASE_IDX 1
+#define regPA_STEREO_CNTL 0x0210
+#define regPA_STEREO_CNTL_BASE_IDX 1
+#define regPA_SU_POINT_SIZE 0x0280
+#define regPA_SU_POINT_SIZE_BASE_IDX 1
+#define regPA_SU_POINT_MINMAX 0x0281
+#define regPA_SU_POINT_MINMAX_BASE_IDX 1
+#define regPA_SU_LINE_CNTL 0x0282
+#define regPA_SU_LINE_CNTL_BASE_IDX 1
+#define regPA_SC_LINE_STIPPLE 0x0283
+#define regPA_SC_LINE_STIPPLE_BASE_IDX 1
+#define regVGT_OUTPUT_PATH_CNTL 0x0284
+#define regVGT_OUTPUT_PATH_CNTL_BASE_IDX 1
+#define regVGT_HOS_CNTL 0x0285
+#define regVGT_HOS_CNTL_BASE_IDX 1
+#define regVGT_HOS_MAX_TESS_LEVEL 0x0286
+#define regVGT_HOS_MAX_TESS_LEVEL_BASE_IDX 1
+#define regVGT_HOS_MIN_TESS_LEVEL 0x0287
+#define regVGT_HOS_MIN_TESS_LEVEL_BASE_IDX 1
+#define regVGT_HOS_REUSE_DEPTH 0x0288
+#define regVGT_HOS_REUSE_DEPTH_BASE_IDX 1
+#define regVGT_GROUP_PRIM_TYPE 0x0289
+#define regVGT_GROUP_PRIM_TYPE_BASE_IDX 1
+#define regVGT_GROUP_FIRST_DECR 0x028a
+#define regVGT_GROUP_FIRST_DECR_BASE_IDX 1
+#define regVGT_GROUP_DECR 0x028b
+#define regVGT_GROUP_DECR_BASE_IDX 1
+#define regVGT_GROUP_VECT_0_CNTL 0x028c
+#define regVGT_GROUP_VECT_0_CNTL_BASE_IDX 1
+#define regVGT_GROUP_VECT_1_CNTL 0x028d
+#define regVGT_GROUP_VECT_1_CNTL_BASE_IDX 1
+#define regVGT_GROUP_VECT_0_FMT_CNTL 0x028e
+#define regVGT_GROUP_VECT_0_FMT_CNTL_BASE_IDX 1
+#define regVGT_GROUP_VECT_1_FMT_CNTL 0x028f
+#define regVGT_GROUP_VECT_1_FMT_CNTL_BASE_IDX 1
+#define regVGT_GS_MODE 0x0290
+#define regVGT_GS_MODE_BASE_IDX 1
+#define regVGT_GS_ONCHIP_CNTL 0x0291
+#define regVGT_GS_ONCHIP_CNTL_BASE_IDX 1
+#define regPA_SC_MODE_CNTL_0 0x0292
+#define regPA_SC_MODE_CNTL_0_BASE_IDX 1
+#define regPA_SC_MODE_CNTL_1 0x0293
+#define regPA_SC_MODE_CNTL_1_BASE_IDX 1
+#define regVGT_ENHANCE 0x0294
+#define regVGT_ENHANCE_BASE_IDX 1
+#define regVGT_GS_PER_ES 0x0295
+#define regVGT_GS_PER_ES_BASE_IDX 1
+#define regVGT_ES_PER_GS 0x0296
+#define regVGT_ES_PER_GS_BASE_IDX 1
+#define regVGT_GS_PER_VS 0x0297
+#define regVGT_GS_PER_VS_BASE_IDX 1
+#define regVGT_GSVS_RING_OFFSET_1 0x0298
+#define regVGT_GSVS_RING_OFFSET_1_BASE_IDX 1
+#define regVGT_GSVS_RING_OFFSET_2 0x0299
+#define regVGT_GSVS_RING_OFFSET_2_BASE_IDX 1
+#define regVGT_GSVS_RING_OFFSET_3 0x029a
+#define regVGT_GSVS_RING_OFFSET_3_BASE_IDX 1
+#define regVGT_GS_OUT_PRIM_TYPE 0x029b
+#define regVGT_GS_OUT_PRIM_TYPE_BASE_IDX 1
+#define regIA_ENHANCE 0x029c
+#define regIA_ENHANCE_BASE_IDX 1
+#define regVGT_DMA_SIZE 0x029d
+#define regVGT_DMA_SIZE_BASE_IDX 1
+#define regVGT_DMA_MAX_SIZE 0x029e
+#define regVGT_DMA_MAX_SIZE_BASE_IDX 1
+#define regVGT_DMA_INDEX_TYPE 0x029f
+#define regVGT_DMA_INDEX_TYPE_BASE_IDX 1
+#define regWD_ENHANCE 0x02a0
+#define regWD_ENHANCE_BASE_IDX 1
+#define regVGT_PRIMITIVEID_EN 0x02a1
+#define regVGT_PRIMITIVEID_EN_BASE_IDX 1
+#define regVGT_DMA_NUM_INSTANCES 0x02a2
+#define regVGT_DMA_NUM_INSTANCES_BASE_IDX 1
+#define regVGT_PRIMITIVEID_RESET 0x02a3
+#define regVGT_PRIMITIVEID_RESET_BASE_IDX 1
+#define regVGT_EVENT_INITIATOR 0x02a4
+#define regVGT_EVENT_INITIATOR_BASE_IDX 1
+#define regVGT_GS_MAX_PRIMS_PER_SUBGROUP 0x02a5
+#define regVGT_GS_MAX_PRIMS_PER_SUBGROUP_BASE_IDX 1
+#define regVGT_DRAW_PAYLOAD_CNTL 0x02a6
+#define regVGT_DRAW_PAYLOAD_CNTL_BASE_IDX 1
+#define regVGT_INSTANCE_STEP_RATE_0 0x02a8
+#define regVGT_INSTANCE_STEP_RATE_0_BASE_IDX 1
+#define regVGT_INSTANCE_STEP_RATE_1 0x02a9
+#define regVGT_INSTANCE_STEP_RATE_1_BASE_IDX 1
+#define regIA_MULTI_VGT_PARAM_BC 0x02aa
+#define regIA_MULTI_VGT_PARAM_BC_BASE_IDX 1
+#define regVGT_ESGS_RING_ITEMSIZE 0x02ab
+#define regVGT_ESGS_RING_ITEMSIZE_BASE_IDX 1
+#define regVGT_GSVS_RING_ITEMSIZE 0x02ac
+#define regVGT_GSVS_RING_ITEMSIZE_BASE_IDX 1
+#define regVGT_REUSE_OFF 0x02ad
+#define regVGT_REUSE_OFF_BASE_IDX 1
+#define regVGT_VTX_CNT_EN 0x02ae
+#define regVGT_VTX_CNT_EN_BASE_IDX 1
+#define regDB_HTILE_SURFACE 0x02af
+#define regDB_HTILE_SURFACE_BASE_IDX 1
+#define regDB_SRESULTS_COMPARE_STATE0 0x02b0
+#define regDB_SRESULTS_COMPARE_STATE0_BASE_IDX 1
+#define regDB_SRESULTS_COMPARE_STATE1 0x02b1
+#define regDB_SRESULTS_COMPARE_STATE1_BASE_IDX 1
+#define regDB_PRELOAD_CONTROL 0x02b2
+#define regDB_PRELOAD_CONTROL_BASE_IDX 1
+#define regVGT_STRMOUT_BUFFER_SIZE_0 0x02b4
+#define regVGT_STRMOUT_BUFFER_SIZE_0_BASE_IDX 1
+#define regVGT_STRMOUT_VTX_STRIDE_0 0x02b5
+#define regVGT_STRMOUT_VTX_STRIDE_0_BASE_IDX 1
+#define regVGT_STRMOUT_BUFFER_OFFSET_0 0x02b7
+#define regVGT_STRMOUT_BUFFER_OFFSET_0_BASE_IDX 1
+#define regVGT_STRMOUT_BUFFER_SIZE_1 0x02b8
+#define regVGT_STRMOUT_BUFFER_SIZE_1_BASE_IDX 1
+#define regVGT_STRMOUT_VTX_STRIDE_1 0x02b9
+#define regVGT_STRMOUT_VTX_STRIDE_1_BASE_IDX 1
+#define regVGT_STRMOUT_BUFFER_OFFSET_1 0x02bb
+#define regVGT_STRMOUT_BUFFER_OFFSET_1_BASE_IDX 1
+#define regVGT_STRMOUT_BUFFER_SIZE_2 0x02bc
+#define regVGT_STRMOUT_BUFFER_SIZE_2_BASE_IDX 1
+#define regVGT_STRMOUT_VTX_STRIDE_2 0x02bd
+#define regVGT_STRMOUT_VTX_STRIDE_2_BASE_IDX 1
+#define regVGT_STRMOUT_BUFFER_OFFSET_2 0x02bf
+#define regVGT_STRMOUT_BUFFER_OFFSET_2_BASE_IDX 1
+#define regVGT_STRMOUT_BUFFER_SIZE_3 0x02c0
+#define regVGT_STRMOUT_BUFFER_SIZE_3_BASE_IDX 1
+#define regVGT_STRMOUT_VTX_STRIDE_3 0x02c1
+#define regVGT_STRMOUT_VTX_STRIDE_3_BASE_IDX 1
+#define regVGT_STRMOUT_BUFFER_OFFSET_3 0x02c3
+#define regVGT_STRMOUT_BUFFER_OFFSET_3_BASE_IDX 1
+#define regVGT_STRMOUT_DRAW_OPAQUE_OFFSET 0x02ca
+#define regVGT_STRMOUT_DRAW_OPAQUE_OFFSET_BASE_IDX 1
+#define regVGT_STRMOUT_DRAW_OPAQUE_BUFFER_FILLED_SIZE 0x02cb
+#define regVGT_STRMOUT_DRAW_OPAQUE_BUFFER_FILLED_SIZE_BASE_IDX 1
+#define regVGT_STRMOUT_DRAW_OPAQUE_VERTEX_STRIDE 0x02cc
+#define regVGT_STRMOUT_DRAW_OPAQUE_VERTEX_STRIDE_BASE_IDX 1
+#define regVGT_GS_MAX_VERT_OUT 0x02ce
+#define regVGT_GS_MAX_VERT_OUT_BASE_IDX 1
+#define regVGT_TESS_DISTRIBUTION 0x02d4
+#define regVGT_TESS_DISTRIBUTION_BASE_IDX 1
+#define regVGT_SHADER_STAGES_EN 0x02d5
+#define regVGT_SHADER_STAGES_EN_BASE_IDX 1
+#define regVGT_LS_HS_CONFIG 0x02d6
+#define regVGT_LS_HS_CONFIG_BASE_IDX 1
+#define regVGT_GS_VERT_ITEMSIZE 0x02d7
+#define regVGT_GS_VERT_ITEMSIZE_BASE_IDX 1
+#define regVGT_GS_VERT_ITEMSIZE_1 0x02d8
+#define regVGT_GS_VERT_ITEMSIZE_1_BASE_IDX 1
+#define regVGT_GS_VERT_ITEMSIZE_2 0x02d9
+#define regVGT_GS_VERT_ITEMSIZE_2_BASE_IDX 1
+#define regVGT_GS_VERT_ITEMSIZE_3 0x02da
+#define regVGT_GS_VERT_ITEMSIZE_3_BASE_IDX 1
+#define regVGT_TF_PARAM 0x02db
+#define regVGT_TF_PARAM_BASE_IDX 1
+#define regDB_ALPHA_TO_MASK 0x02dc
+#define regDB_ALPHA_TO_MASK_BASE_IDX 1
+#define regVGT_DISPATCH_DRAW_INDEX 0x02dd
+#define regVGT_DISPATCH_DRAW_INDEX_BASE_IDX 1
+#define regPA_SU_POLY_OFFSET_DB_FMT_CNTL 0x02de
+#define regPA_SU_POLY_OFFSET_DB_FMT_CNTL_BASE_IDX 1
+#define regPA_SU_POLY_OFFSET_CLAMP 0x02df
+#define regPA_SU_POLY_OFFSET_CLAMP_BASE_IDX 1
+#define regPA_SU_POLY_OFFSET_FRONT_SCALE 0x02e0
+#define regPA_SU_POLY_OFFSET_FRONT_SCALE_BASE_IDX 1
+#define regPA_SU_POLY_OFFSET_FRONT_OFFSET 0x02e1
+#define regPA_SU_POLY_OFFSET_FRONT_OFFSET_BASE_IDX 1
+#define regPA_SU_POLY_OFFSET_BACK_SCALE 0x02e2
+#define regPA_SU_POLY_OFFSET_BACK_SCALE_BASE_IDX 1
+#define regPA_SU_POLY_OFFSET_BACK_OFFSET 0x02e3
+#define regPA_SU_POLY_OFFSET_BACK_OFFSET_BASE_IDX 1
+#define regVGT_GS_INSTANCE_CNT 0x02e4
+#define regVGT_GS_INSTANCE_CNT_BASE_IDX 1
+#define regVGT_STRMOUT_CONFIG 0x02e5
+#define regVGT_STRMOUT_CONFIG_BASE_IDX 1
+#define regVGT_STRMOUT_BUFFER_CONFIG 0x02e6
+#define regVGT_STRMOUT_BUFFER_CONFIG_BASE_IDX 1
+#define regVGT_DMA_EVENT_INITIATOR 0x02e7
+#define regVGT_DMA_EVENT_INITIATOR_BASE_IDX 1
+#define regPA_SC_CENTROID_PRIORITY_0 0x02f5
+#define regPA_SC_CENTROID_PRIORITY_0_BASE_IDX 1
+#define regPA_SC_CENTROID_PRIORITY_1 0x02f6
+#define regPA_SC_CENTROID_PRIORITY_1_BASE_IDX 1
+#define regPA_SC_LINE_CNTL 0x02f7
+#define regPA_SC_LINE_CNTL_BASE_IDX 1
+#define regPA_SC_AA_CONFIG 0x02f8
+#define regPA_SC_AA_CONFIG_BASE_IDX 1
+#define regPA_SU_VTX_CNTL 0x02f9
+#define regPA_SU_VTX_CNTL_BASE_IDX 1
+#define regPA_CL_GB_VERT_CLIP_ADJ 0x02fa
+#define regPA_CL_GB_VERT_CLIP_ADJ_BASE_IDX 1
+#define regPA_CL_GB_VERT_DISC_ADJ 0x02fb
+#define regPA_CL_GB_VERT_DISC_ADJ_BASE_IDX 1
+#define regPA_CL_GB_HORZ_CLIP_ADJ 0x02fc
+#define regPA_CL_GB_HORZ_CLIP_ADJ_BASE_IDX 1
+#define regPA_CL_GB_HORZ_DISC_ADJ 0x02fd
+#define regPA_CL_GB_HORZ_DISC_ADJ_BASE_IDX 1
+#define regPA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_0 0x02fe
+#define regPA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_0_BASE_IDX 1
+#define regPA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_1 0x02ff
+#define regPA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_1_BASE_IDX 1
+#define regPA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_2 0x0300
+#define regPA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_2_BASE_IDX 1
+#define regPA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_3 0x0301
+#define regPA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_3_BASE_IDX 1
+#define regPA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_0 0x0302
+#define regPA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_0_BASE_IDX 1
+#define regPA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_1 0x0303
+#define regPA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_1_BASE_IDX 1
+#define regPA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_2 0x0304
+#define regPA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_2_BASE_IDX 1
+#define regPA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_3 0x0305
+#define regPA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_3_BASE_IDX 1
+#define regPA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_0 0x0306
+#define regPA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_0_BASE_IDX 1
+#define regPA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_1 0x0307
+#define regPA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_1_BASE_IDX 1
+#define regPA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_2 0x0308
+#define regPA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_2_BASE_IDX 1
+#define regPA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_3 0x0309
+#define regPA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_3_BASE_IDX 1
+#define regPA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_0 0x030a
+#define regPA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_0_BASE_IDX 1
+#define regPA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_1 0x030b
+#define regPA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_1_BASE_IDX 1
+#define regPA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_2 0x030c
+#define regPA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_2_BASE_IDX 1
+#define regPA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_3 0x030d
+#define regPA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_3_BASE_IDX 1
+#define regPA_SC_AA_MASK_X0Y0_X1Y0 0x030e
+#define regPA_SC_AA_MASK_X0Y0_X1Y0_BASE_IDX 1
+#define regPA_SC_AA_MASK_X0Y1_X1Y1 0x030f
+#define regPA_SC_AA_MASK_X0Y1_X1Y1_BASE_IDX 1
+#define regPA_SC_SHADER_CONTROL 0x0310
+#define regPA_SC_SHADER_CONTROL_BASE_IDX 1
+#define regPA_SC_BINNER_CNTL_0 0x0311
+#define regPA_SC_BINNER_CNTL_0_BASE_IDX 1
+#define regPA_SC_BINNER_CNTL_1 0x0312
+#define regPA_SC_BINNER_CNTL_1_BASE_IDX 1
+#define regPA_SC_CONSERVATIVE_RASTERIZATION_CNTL 0x0313
+#define regPA_SC_CONSERVATIVE_RASTERIZATION_CNTL_BASE_IDX 1
+#define regPA_SC_NGG_MODE_CNTL 0x0314
+#define regPA_SC_NGG_MODE_CNTL_BASE_IDX 1
+#define regVGT_VERTEX_REUSE_BLOCK_CNTL 0x0316
+#define regVGT_VERTEX_REUSE_BLOCK_CNTL_BASE_IDX 1
+#define regVGT_OUT_DEALLOC_CNTL 0x0317
+#define regVGT_OUT_DEALLOC_CNTL_BASE_IDX 1
+#define regCB_COLOR0_BASE 0x0318
+#define regCB_COLOR0_BASE_BASE_IDX 1
+#define regCB_COLOR0_BASE_EXT 0x0319
+#define regCB_COLOR0_BASE_EXT_BASE_IDX 1
+#define regCB_COLOR0_ATTRIB2 0x031a
+#define regCB_COLOR0_ATTRIB2_BASE_IDX 1
+#define regCB_COLOR0_VIEW 0x031b
+#define regCB_COLOR0_VIEW_BASE_IDX 1
+#define regCB_COLOR0_INFO 0x031c
+#define regCB_COLOR0_INFO_BASE_IDX 1
+#define regCB_COLOR0_ATTRIB 0x031d
+#define regCB_COLOR0_ATTRIB_BASE_IDX 1
+#define regCB_COLOR0_DCC_CONTROL 0x031e
+#define regCB_COLOR0_DCC_CONTROL_BASE_IDX 1
+#define regCB_COLOR0_CMASK 0x031f
+#define regCB_COLOR0_CMASK_BASE_IDX 1
+#define regCB_COLOR0_CMASK_BASE_EXT 0x0320
+#define regCB_COLOR0_CMASK_BASE_EXT_BASE_IDX 1
+#define regCB_COLOR0_FMASK 0x0321
+#define regCB_COLOR0_FMASK_BASE_IDX 1
+#define regCB_COLOR0_FMASK_BASE_EXT 0x0322
+#define regCB_COLOR0_FMASK_BASE_EXT_BASE_IDX 1
+#define regCB_COLOR0_CLEAR_WORD0 0x0323
+#define regCB_COLOR0_CLEAR_WORD0_BASE_IDX 1
+#define regCB_COLOR0_CLEAR_WORD1 0x0324
+#define regCB_COLOR0_CLEAR_WORD1_BASE_IDX 1
+#define regCB_COLOR0_DCC_BASE 0x0325
+#define regCB_COLOR0_DCC_BASE_BASE_IDX 1
+#define regCB_COLOR0_DCC_BASE_EXT 0x0326
+#define regCB_COLOR0_DCC_BASE_EXT_BASE_IDX 1
+#define regCB_COLOR1_BASE 0x0327
+#define regCB_COLOR1_BASE_BASE_IDX 1
+#define regCB_COLOR1_BASE_EXT 0x0328
+#define regCB_COLOR1_BASE_EXT_BASE_IDX 1
+#define regCB_COLOR1_ATTRIB2 0x0329
+#define regCB_COLOR1_ATTRIB2_BASE_IDX 1
+#define regCB_COLOR1_VIEW 0x032a
+#define regCB_COLOR1_VIEW_BASE_IDX 1
+#define regCB_COLOR1_INFO 0x032b
+#define regCB_COLOR1_INFO_BASE_IDX 1
+#define regCB_COLOR1_ATTRIB 0x032c
+#define regCB_COLOR1_ATTRIB_BASE_IDX 1
+#define regCB_COLOR1_DCC_CONTROL 0x032d
+#define regCB_COLOR1_DCC_CONTROL_BASE_IDX 1
+#define regCB_COLOR1_CMASK 0x032e
+#define regCB_COLOR1_CMASK_BASE_IDX 1
+#define regCB_COLOR1_CMASK_BASE_EXT 0x032f
+#define regCB_COLOR1_CMASK_BASE_EXT_BASE_IDX 1
+#define regCB_COLOR1_FMASK 0x0330
+#define regCB_COLOR1_FMASK_BASE_IDX 1
+#define regCB_COLOR1_FMASK_BASE_EXT 0x0331
+#define regCB_COLOR1_FMASK_BASE_EXT_BASE_IDX 1
+#define regCB_COLOR1_CLEAR_WORD0 0x0332
+#define regCB_COLOR1_CLEAR_WORD0_BASE_IDX 1
+#define regCB_COLOR1_CLEAR_WORD1 0x0333
+#define regCB_COLOR1_CLEAR_WORD1_BASE_IDX 1
+#define regCB_COLOR1_DCC_BASE 0x0334
+#define regCB_COLOR1_DCC_BASE_BASE_IDX 1
+#define regCB_COLOR1_DCC_BASE_EXT 0x0335
+#define regCB_COLOR1_DCC_BASE_EXT_BASE_IDX 1
+#define regCB_COLOR2_BASE 0x0336
+#define regCB_COLOR2_BASE_BASE_IDX 1
+#define regCB_COLOR2_BASE_EXT 0x0337
+#define regCB_COLOR2_BASE_EXT_BASE_IDX 1
+#define regCB_COLOR2_ATTRIB2 0x0338
+#define regCB_COLOR2_ATTRIB2_BASE_IDX 1
+#define regCB_COLOR2_VIEW 0x0339
+#define regCB_COLOR2_VIEW_BASE_IDX 1
+#define regCB_COLOR2_INFO 0x033a
+#define regCB_COLOR2_INFO_BASE_IDX 1
+#define regCB_COLOR2_ATTRIB 0x033b
+#define regCB_COLOR2_ATTRIB_BASE_IDX 1
+#define regCB_COLOR2_DCC_CONTROL 0x033c
+#define regCB_COLOR2_DCC_CONTROL_BASE_IDX 1
+#define regCB_COLOR2_CMASK 0x033d
+#define regCB_COLOR2_CMASK_BASE_IDX 1
+#define regCB_COLOR2_CMASK_BASE_EXT 0x033e
+#define regCB_COLOR2_CMASK_BASE_EXT_BASE_IDX 1
+#define regCB_COLOR2_FMASK 0x033f
+#define regCB_COLOR2_FMASK_BASE_IDX 1
+#define regCB_COLOR2_FMASK_BASE_EXT 0x0340
+#define regCB_COLOR2_FMASK_BASE_EXT_BASE_IDX 1
+#define regCB_COLOR2_CLEAR_WORD0 0x0341
+#define regCB_COLOR2_CLEAR_WORD0_BASE_IDX 1
+#define regCB_COLOR2_CLEAR_WORD1 0x0342
+#define regCB_COLOR2_CLEAR_WORD1_BASE_IDX 1
+#define regCB_COLOR2_DCC_BASE 0x0343
+#define regCB_COLOR2_DCC_BASE_BASE_IDX 1
+#define regCB_COLOR2_DCC_BASE_EXT 0x0344
+#define regCB_COLOR2_DCC_BASE_EXT_BASE_IDX 1
+#define regCB_COLOR3_BASE 0x0345
+#define regCB_COLOR3_BASE_BASE_IDX 1
+#define regCB_COLOR3_BASE_EXT 0x0346
+#define regCB_COLOR3_BASE_EXT_BASE_IDX 1
+#define regCB_COLOR3_ATTRIB2 0x0347
+#define regCB_COLOR3_ATTRIB2_BASE_IDX 1
+#define regCB_COLOR3_VIEW 0x0348
+#define regCB_COLOR3_VIEW_BASE_IDX 1
+#define regCB_COLOR3_INFO 0x0349
+#define regCB_COLOR3_INFO_BASE_IDX 1
+#define regCB_COLOR3_ATTRIB 0x034a
+#define regCB_COLOR3_ATTRIB_BASE_IDX 1
+#define regCB_COLOR3_DCC_CONTROL 0x034b
+#define regCB_COLOR3_DCC_CONTROL_BASE_IDX 1
+#define regCB_COLOR3_CMASK 0x034c
+#define regCB_COLOR3_CMASK_BASE_IDX 1
+#define regCB_COLOR3_CMASK_BASE_EXT 0x034d
+#define regCB_COLOR3_CMASK_BASE_EXT_BASE_IDX 1
+#define regCB_COLOR3_FMASK 0x034e
+#define regCB_COLOR3_FMASK_BASE_IDX 1
+#define regCB_COLOR3_FMASK_BASE_EXT 0x034f
+#define regCB_COLOR3_FMASK_BASE_EXT_BASE_IDX 1
+#define regCB_COLOR3_CLEAR_WORD0 0x0350
+#define regCB_COLOR3_CLEAR_WORD0_BASE_IDX 1
+#define regCB_COLOR3_CLEAR_WORD1 0x0351
+#define regCB_COLOR3_CLEAR_WORD1_BASE_IDX 1
+#define regCB_COLOR3_DCC_BASE 0x0352
+#define regCB_COLOR3_DCC_BASE_BASE_IDX 1
+#define regCB_COLOR3_DCC_BASE_EXT 0x0353
+#define regCB_COLOR3_DCC_BASE_EXT_BASE_IDX 1
+#define regCB_COLOR4_BASE 0x0354
+#define regCB_COLOR4_BASE_BASE_IDX 1
+#define regCB_COLOR4_BASE_EXT 0x0355
+#define regCB_COLOR4_BASE_EXT_BASE_IDX 1
+#define regCB_COLOR4_ATTRIB2 0x0356
+#define regCB_COLOR4_ATTRIB2_BASE_IDX 1
+#define regCB_COLOR4_VIEW 0x0357
+#define regCB_COLOR4_VIEW_BASE_IDX 1
+#define regCB_COLOR4_INFO 0x0358
+#define regCB_COLOR4_INFO_BASE_IDX 1
+#define regCB_COLOR4_ATTRIB 0x0359
+#define regCB_COLOR4_ATTRIB_BASE_IDX 1
+#define regCB_COLOR4_DCC_CONTROL 0x035a
+#define regCB_COLOR4_DCC_CONTROL_BASE_IDX 1
+#define regCB_COLOR4_CMASK 0x035b
+#define regCB_COLOR4_CMASK_BASE_IDX 1
+#define regCB_COLOR4_CMASK_BASE_EXT 0x035c
+#define regCB_COLOR4_CMASK_BASE_EXT_BASE_IDX 1
+#define regCB_COLOR4_FMASK 0x035d
+#define regCB_COLOR4_FMASK_BASE_IDX 1
+#define regCB_COLOR4_FMASK_BASE_EXT 0x035e
+#define regCB_COLOR4_FMASK_BASE_EXT_BASE_IDX 1
+#define regCB_COLOR4_CLEAR_WORD0 0x035f
+#define regCB_COLOR4_CLEAR_WORD0_BASE_IDX 1
+#define regCB_COLOR4_CLEAR_WORD1 0x0360
+#define regCB_COLOR4_CLEAR_WORD1_BASE_IDX 1
+#define regCB_COLOR4_DCC_BASE 0x0361
+#define regCB_COLOR4_DCC_BASE_BASE_IDX 1
+#define regCB_COLOR4_DCC_BASE_EXT 0x0362
+#define regCB_COLOR4_DCC_BASE_EXT_BASE_IDX 1
+#define regCB_COLOR5_BASE 0x0363
+#define regCB_COLOR5_BASE_BASE_IDX 1
+#define regCB_COLOR5_BASE_EXT 0x0364
+#define regCB_COLOR5_BASE_EXT_BASE_IDX 1
+#define regCB_COLOR5_ATTRIB2 0x0365
+#define regCB_COLOR5_ATTRIB2_BASE_IDX 1
+#define regCB_COLOR5_VIEW 0x0366
+#define regCB_COLOR5_VIEW_BASE_IDX 1
+#define regCB_COLOR5_INFO 0x0367
+#define regCB_COLOR5_INFO_BASE_IDX 1
+#define regCB_COLOR5_ATTRIB 0x0368
+#define regCB_COLOR5_ATTRIB_BASE_IDX 1
+#define regCB_COLOR5_DCC_CONTROL 0x0369
+#define regCB_COLOR5_DCC_CONTROL_BASE_IDX 1
+#define regCB_COLOR5_CMASK 0x036a
+#define regCB_COLOR5_CMASK_BASE_IDX 1
+#define regCB_COLOR5_CMASK_BASE_EXT 0x036b
+#define regCB_COLOR5_CMASK_BASE_EXT_BASE_IDX 1
+#define regCB_COLOR5_FMASK 0x036c
+#define regCB_COLOR5_FMASK_BASE_IDX 1
+#define regCB_COLOR5_FMASK_BASE_EXT 0x036d
+#define regCB_COLOR5_FMASK_BASE_EXT_BASE_IDX 1
+#define regCB_COLOR5_CLEAR_WORD0 0x036e
+#define regCB_COLOR5_CLEAR_WORD0_BASE_IDX 1
+#define regCB_COLOR5_CLEAR_WORD1 0x036f
+#define regCB_COLOR5_CLEAR_WORD1_BASE_IDX 1
+#define regCB_COLOR5_DCC_BASE 0x0370
+#define regCB_COLOR5_DCC_BASE_BASE_IDX 1
+#define regCB_COLOR5_DCC_BASE_EXT 0x0371
+#define regCB_COLOR5_DCC_BASE_EXT_BASE_IDX 1
+#define regCB_COLOR6_BASE 0x0372
+#define regCB_COLOR6_BASE_BASE_IDX 1
+#define regCB_COLOR6_BASE_EXT 0x0373
+#define regCB_COLOR6_BASE_EXT_BASE_IDX 1
+#define regCB_COLOR6_ATTRIB2 0x0374
+#define regCB_COLOR6_ATTRIB2_BASE_IDX 1
+#define regCB_COLOR6_VIEW 0x0375
+#define regCB_COLOR6_VIEW_BASE_IDX 1
+#define regCB_COLOR6_INFO 0x0376
+#define regCB_COLOR6_INFO_BASE_IDX 1
+#define regCB_COLOR6_ATTRIB 0x0377
+#define regCB_COLOR6_ATTRIB_BASE_IDX 1
+#define regCB_COLOR6_DCC_CONTROL 0x0378
+#define regCB_COLOR6_DCC_CONTROL_BASE_IDX 1
+#define regCB_COLOR6_CMASK 0x0379
+#define regCB_COLOR6_CMASK_BASE_IDX 1
+#define regCB_COLOR6_CMASK_BASE_EXT 0x037a
+#define regCB_COLOR6_CMASK_BASE_EXT_BASE_IDX 1
+#define regCB_COLOR6_FMASK 0x037b
+#define regCB_COLOR6_FMASK_BASE_IDX 1
+#define regCB_COLOR6_FMASK_BASE_EXT 0x037c
+#define regCB_COLOR6_FMASK_BASE_EXT_BASE_IDX 1
+#define regCB_COLOR6_CLEAR_WORD0 0x037d
+#define regCB_COLOR6_CLEAR_WORD0_BASE_IDX 1
+#define regCB_COLOR6_CLEAR_WORD1 0x037e
+#define regCB_COLOR6_CLEAR_WORD1_BASE_IDX 1
+#define regCB_COLOR6_DCC_BASE 0x037f
+#define regCB_COLOR6_DCC_BASE_BASE_IDX 1
+#define regCB_COLOR6_DCC_BASE_EXT 0x0380
+#define regCB_COLOR6_DCC_BASE_EXT_BASE_IDX 1
+#define regCB_COLOR7_BASE 0x0381
+#define regCB_COLOR7_BASE_BASE_IDX 1
+#define regCB_COLOR7_BASE_EXT 0x0382
+#define regCB_COLOR7_BASE_EXT_BASE_IDX 1
+#define regCB_COLOR7_ATTRIB2 0x0383
+#define regCB_COLOR7_ATTRIB2_BASE_IDX 1
+#define regCB_COLOR7_VIEW 0x0384
+#define regCB_COLOR7_VIEW_BASE_IDX 1
+#define regCB_COLOR7_INFO 0x0385
+#define regCB_COLOR7_INFO_BASE_IDX 1
+#define regCB_COLOR7_ATTRIB 0x0386
+#define regCB_COLOR7_ATTRIB_BASE_IDX 1
+#define regCB_COLOR7_DCC_CONTROL 0x0387
+#define regCB_COLOR7_DCC_CONTROL_BASE_IDX 1
+#define regCB_COLOR7_CMASK 0x0388
+#define regCB_COLOR7_CMASK_BASE_IDX 1
+#define regCB_COLOR7_CMASK_BASE_EXT 0x0389
+#define regCB_COLOR7_CMASK_BASE_EXT_BASE_IDX 1
+#define regCB_COLOR7_FMASK 0x038a
+#define regCB_COLOR7_FMASK_BASE_IDX 1
+#define regCB_COLOR7_FMASK_BASE_EXT 0x038b
+#define regCB_COLOR7_FMASK_BASE_EXT_BASE_IDX 1
+#define regCB_COLOR7_CLEAR_WORD0 0x038c
+#define regCB_COLOR7_CLEAR_WORD0_BASE_IDX 1
+#define regCB_COLOR7_CLEAR_WORD1 0x038d
+#define regCB_COLOR7_CLEAR_WORD1_BASE_IDX 1
+#define regCB_COLOR7_DCC_BASE 0x038e
+#define regCB_COLOR7_DCC_BASE_BASE_IDX 1
+#define regCB_COLOR7_DCC_BASE_EXT 0x038f
+#define regCB_COLOR7_DCC_BASE_EXT_BASE_IDX 1
+
+
+// addressBlock: xcd0_gc_gfxudec
+// base address: 0x30000
+#define regCP_EOP_DONE_ADDR_LO 0x2000
+#define regCP_EOP_DONE_ADDR_LO_BASE_IDX 1
+#define regCP_EOP_DONE_ADDR_HI 0x2001
+#define regCP_EOP_DONE_ADDR_HI_BASE_IDX 1
+#define regCP_EOP_DONE_DATA_LO 0x2002
+#define regCP_EOP_DONE_DATA_LO_BASE_IDX 1
+#define regCP_EOP_DONE_DATA_HI 0x2003
+#define regCP_EOP_DONE_DATA_HI_BASE_IDX 1
+#define regCP_EOP_LAST_FENCE_LO 0x2004
+#define regCP_EOP_LAST_FENCE_LO_BASE_IDX 1
+#define regCP_EOP_LAST_FENCE_HI 0x2005
+#define regCP_EOP_LAST_FENCE_HI_BASE_IDX 1
+#define regCP_STREAM_OUT_ADDR_LO 0x2006
+#define regCP_STREAM_OUT_ADDR_LO_BASE_IDX 1
+#define regCP_STREAM_OUT_ADDR_HI 0x2007
+#define regCP_STREAM_OUT_ADDR_HI_BASE_IDX 1
+#define regCP_NUM_PRIM_WRITTEN_COUNT0_LO 0x2008
+#define regCP_NUM_PRIM_WRITTEN_COUNT0_LO_BASE_IDX 1
+#define regCP_NUM_PRIM_WRITTEN_COUNT0_HI 0x2009
+#define regCP_NUM_PRIM_WRITTEN_COUNT0_HI_BASE_IDX 1
+#define regCP_NUM_PRIM_NEEDED_COUNT0_LO 0x200a
+#define regCP_NUM_PRIM_NEEDED_COUNT0_LO_BASE_IDX 1
+#define regCP_NUM_PRIM_NEEDED_COUNT0_HI 0x200b
+#define regCP_NUM_PRIM_NEEDED_COUNT0_HI_BASE_IDX 1
+#define regCP_NUM_PRIM_WRITTEN_COUNT1_LO 0x200c
+#define regCP_NUM_PRIM_WRITTEN_COUNT1_LO_BASE_IDX 1
+#define regCP_NUM_PRIM_WRITTEN_COUNT1_HI 0x200d
+#define regCP_NUM_PRIM_WRITTEN_COUNT1_HI_BASE_IDX 1
+#define regCP_NUM_PRIM_NEEDED_COUNT1_LO 0x200e
+#define regCP_NUM_PRIM_NEEDED_COUNT1_LO_BASE_IDX 1
+#define regCP_NUM_PRIM_NEEDED_COUNT1_HI 0x200f
+#define regCP_NUM_PRIM_NEEDED_COUNT1_HI_BASE_IDX 1
+#define regCP_NUM_PRIM_WRITTEN_COUNT2_LO 0x2010
+#define regCP_NUM_PRIM_WRITTEN_COUNT2_LO_BASE_IDX 1
+#define regCP_NUM_PRIM_WRITTEN_COUNT2_HI 0x2011
+#define regCP_NUM_PRIM_WRITTEN_COUNT2_HI_BASE_IDX 1
+#define regCP_NUM_PRIM_NEEDED_COUNT2_LO 0x2012
+#define regCP_NUM_PRIM_NEEDED_COUNT2_LO_BASE_IDX 1
+#define regCP_NUM_PRIM_NEEDED_COUNT2_HI 0x2013
+#define regCP_NUM_PRIM_NEEDED_COUNT2_HI_BASE_IDX 1
+#define regCP_NUM_PRIM_WRITTEN_COUNT3_LO 0x2014
+#define regCP_NUM_PRIM_WRITTEN_COUNT3_LO_BASE_IDX 1
+#define regCP_NUM_PRIM_WRITTEN_COUNT3_HI 0x2015
+#define regCP_NUM_PRIM_WRITTEN_COUNT3_HI_BASE_IDX 1
+#define regCP_NUM_PRIM_NEEDED_COUNT3_LO 0x2016
+#define regCP_NUM_PRIM_NEEDED_COUNT3_LO_BASE_IDX 1
+#define regCP_NUM_PRIM_NEEDED_COUNT3_HI 0x2017
+#define regCP_NUM_PRIM_NEEDED_COUNT3_HI_BASE_IDX 1
+#define regCP_PIPE_STATS_ADDR_LO 0x2018
+#define regCP_PIPE_STATS_ADDR_LO_BASE_IDX 1
+#define regCP_PIPE_STATS_ADDR_HI 0x2019
+#define regCP_PIPE_STATS_ADDR_HI_BASE_IDX 1
+#define regCP_VGT_IAVERT_COUNT_LO 0x201a
+#define regCP_VGT_IAVERT_COUNT_LO_BASE_IDX 1
+#define regCP_VGT_IAVERT_COUNT_HI 0x201b
+#define regCP_VGT_IAVERT_COUNT_HI_BASE_IDX 1
+#define regCP_VGT_IAPRIM_COUNT_LO 0x201c
+#define regCP_VGT_IAPRIM_COUNT_LO_BASE_IDX 1
+#define regCP_VGT_IAPRIM_COUNT_HI 0x201d
+#define regCP_VGT_IAPRIM_COUNT_HI_BASE_IDX 1
+#define regCP_VGT_GSPRIM_COUNT_LO 0x201e
+#define regCP_VGT_GSPRIM_COUNT_LO_BASE_IDX 1
+#define regCP_VGT_GSPRIM_COUNT_HI 0x201f
+#define regCP_VGT_GSPRIM_COUNT_HI_BASE_IDX 1
+#define regCP_VGT_VSINVOC_COUNT_LO 0x2020
+#define regCP_VGT_VSINVOC_COUNT_LO_BASE_IDX 1
+#define regCP_VGT_VSINVOC_COUNT_HI 0x2021
+#define regCP_VGT_VSINVOC_COUNT_HI_BASE_IDX 1
+#define regCP_VGT_GSINVOC_COUNT_LO 0x2022
+#define regCP_VGT_GSINVOC_COUNT_LO_BASE_IDX 1
+#define regCP_VGT_GSINVOC_COUNT_HI 0x2023
+#define regCP_VGT_GSINVOC_COUNT_HI_BASE_IDX 1
+#define regCP_VGT_HSINVOC_COUNT_LO 0x2024
+#define regCP_VGT_HSINVOC_COUNT_LO_BASE_IDX 1
+#define regCP_VGT_HSINVOC_COUNT_HI 0x2025
+#define regCP_VGT_HSINVOC_COUNT_HI_BASE_IDX 1
+#define regCP_VGT_DSINVOC_COUNT_LO 0x2026
+#define regCP_VGT_DSINVOC_COUNT_LO_BASE_IDX 1
+#define regCP_VGT_DSINVOC_COUNT_HI 0x2027
+#define regCP_VGT_DSINVOC_COUNT_HI_BASE_IDX 1
+#define regCP_PA_CINVOC_COUNT_LO 0x2028
+#define regCP_PA_CINVOC_COUNT_LO_BASE_IDX 1
+#define regCP_PA_CINVOC_COUNT_HI 0x2029
+#define regCP_PA_CINVOC_COUNT_HI_BASE_IDX 1
+#define regCP_PA_CPRIM_COUNT_LO 0x202a
+#define regCP_PA_CPRIM_COUNT_LO_BASE_IDX 1
+#define regCP_PA_CPRIM_COUNT_HI 0x202b
+#define regCP_PA_CPRIM_COUNT_HI_BASE_IDX 1
+#define regCP_SC_PSINVOC_COUNT0_LO 0x202c
+#define regCP_SC_PSINVOC_COUNT0_LO_BASE_IDX 1
+#define regCP_SC_PSINVOC_COUNT0_HI 0x202d
+#define regCP_SC_PSINVOC_COUNT0_HI_BASE_IDX 1
+#define regCP_SC_PSINVOC_COUNT1_LO 0x202e
+#define regCP_SC_PSINVOC_COUNT1_LO_BASE_IDX 1
+#define regCP_SC_PSINVOC_COUNT1_HI 0x202f
+#define regCP_SC_PSINVOC_COUNT1_HI_BASE_IDX 1
+#define regCP_VGT_CSINVOC_COUNT_LO 0x2030
+#define regCP_VGT_CSINVOC_COUNT_LO_BASE_IDX 1
+#define regCP_VGT_CSINVOC_COUNT_HI 0x2031
+#define regCP_VGT_CSINVOC_COUNT_HI_BASE_IDX 1
+#define regCP_PIPE_STATS_CONTROL 0x203d
+#define regCP_PIPE_STATS_CONTROL_BASE_IDX 1
+#define regCP_STREAM_OUT_CONTROL 0x203e
+#define regCP_STREAM_OUT_CONTROL_BASE_IDX 1
+#define regCP_STRMOUT_CNTL 0x203f
+#define regCP_STRMOUT_CNTL_BASE_IDX 1
+#define regSCRATCH_REG0 0x2040
+#define regSCRATCH_REG0_BASE_IDX 1
+#define regSCRATCH_REG1 0x2041
+#define regSCRATCH_REG1_BASE_IDX 1
+#define regSCRATCH_REG2 0x2042
+#define regSCRATCH_REG2_BASE_IDX 1
+#define regSCRATCH_REG3 0x2043
+#define regSCRATCH_REG3_BASE_IDX 1
+#define regSCRATCH_REG4 0x2044
+#define regSCRATCH_REG4_BASE_IDX 1
+#define regSCRATCH_REG5 0x2045
+#define regSCRATCH_REG5_BASE_IDX 1
+#define regSCRATCH_REG6 0x2046
+#define regSCRATCH_REG6_BASE_IDX 1
+#define regSCRATCH_REG7 0x2047
+#define regSCRATCH_REG7_BASE_IDX 1
+#define regCP_APPEND_DATA_HI 0x204c
+#define regCP_APPEND_DATA_HI_BASE_IDX 1
+#define regCP_APPEND_LAST_CS_FENCE_HI 0x204d
+#define regCP_APPEND_LAST_CS_FENCE_HI_BASE_IDX 1
+#define regCP_APPEND_LAST_PS_FENCE_HI 0x204e
+#define regCP_APPEND_LAST_PS_FENCE_HI_BASE_IDX 1
+#define regSCRATCH_UMSK 0x2050
+#define regSCRATCH_UMSK_BASE_IDX 1
+#define regSCRATCH_ADDR 0x2051
+#define regSCRATCH_ADDR_BASE_IDX 1
+#define regCP_PFP_ATOMIC_PREOP_LO 0x2052
+#define regCP_PFP_ATOMIC_PREOP_LO_BASE_IDX 1
+#define regCP_PFP_ATOMIC_PREOP_HI 0x2053
+#define regCP_PFP_ATOMIC_PREOP_HI_BASE_IDX 1
+#define regCP_PFP_GDS_ATOMIC0_PREOP_LO 0x2054
+#define regCP_PFP_GDS_ATOMIC0_PREOP_LO_BASE_IDX 1
+#define regCP_PFP_GDS_ATOMIC0_PREOP_HI 0x2055
+#define regCP_PFP_GDS_ATOMIC0_PREOP_HI_BASE_IDX 1
+#define regCP_PFP_GDS_ATOMIC1_PREOP_LO 0x2056
+#define regCP_PFP_GDS_ATOMIC1_PREOP_LO_BASE_IDX 1
+#define regCP_PFP_GDS_ATOMIC1_PREOP_HI 0x2057
+#define regCP_PFP_GDS_ATOMIC1_PREOP_HI_BASE_IDX 1
+#define regCP_APPEND_ADDR_LO 0x2058
+#define regCP_APPEND_ADDR_LO_BASE_IDX 1
+#define regCP_APPEND_ADDR_HI 0x2059
+#define regCP_APPEND_ADDR_HI_BASE_IDX 1
+#define regCP_APPEND_DATA_LO 0x205a
+#define regCP_APPEND_DATA_LO_BASE_IDX 1
+#define regCP_APPEND_LAST_CS_FENCE_LO 0x205b
+#define regCP_APPEND_LAST_CS_FENCE_LO_BASE_IDX 1
+#define regCP_APPEND_LAST_PS_FENCE_LO 0x205c
+#define regCP_APPEND_LAST_PS_FENCE_LO_BASE_IDX 1
+#define regCP_ATOMIC_PREOP_LO 0x205d
+#define regCP_ATOMIC_PREOP_LO_BASE_IDX 1
+#define regCP_ME_ATOMIC_PREOP_LO 0x205d
+#define regCP_ME_ATOMIC_PREOP_LO_BASE_IDX 1
+#define regCP_ATOMIC_PREOP_HI 0x205e
+#define regCP_ATOMIC_PREOP_HI_BASE_IDX 1
+#define regCP_ME_ATOMIC_PREOP_HI 0x205e
+#define regCP_ME_ATOMIC_PREOP_HI_BASE_IDX 1
+#define regCP_GDS_ATOMIC0_PREOP_LO 0x205f
+#define regCP_GDS_ATOMIC0_PREOP_LO_BASE_IDX 1
+#define regCP_ME_GDS_ATOMIC0_PREOP_LO 0x205f
+#define regCP_ME_GDS_ATOMIC0_PREOP_LO_BASE_IDX 1
+#define regCP_GDS_ATOMIC0_PREOP_HI 0x2060
+#define regCP_GDS_ATOMIC0_PREOP_HI_BASE_IDX 1
+#define regCP_ME_GDS_ATOMIC0_PREOP_HI 0x2060
+#define regCP_ME_GDS_ATOMIC0_PREOP_HI_BASE_IDX 1
+#define regCP_GDS_ATOMIC1_PREOP_LO 0x2061
+#define regCP_GDS_ATOMIC1_PREOP_LO_BASE_IDX 1
+#define regCP_ME_GDS_ATOMIC1_PREOP_LO 0x2061
+#define regCP_ME_GDS_ATOMIC1_PREOP_LO_BASE_IDX 1
+#define regCP_GDS_ATOMIC1_PREOP_HI 0x2062
+#define regCP_GDS_ATOMIC1_PREOP_HI_BASE_IDX 1
+#define regCP_ME_GDS_ATOMIC1_PREOP_HI 0x2062
+#define regCP_ME_GDS_ATOMIC1_PREOP_HI_BASE_IDX 1
+#define regCP_ME_MC_WADDR_LO 0x2069
+#define regCP_ME_MC_WADDR_LO_BASE_IDX 1
+#define regCP_ME_MC_WADDR_HI 0x206a
+#define regCP_ME_MC_WADDR_HI_BASE_IDX 1
+#define regCP_ME_MC_WDATA_LO 0x206b
+#define regCP_ME_MC_WDATA_LO_BASE_IDX 1
+#define regCP_ME_MC_WDATA_HI 0x206c
+#define regCP_ME_MC_WDATA_HI_BASE_IDX 1
+#define regCP_ME_MC_RADDR_LO 0x206d
+#define regCP_ME_MC_RADDR_LO_BASE_IDX 1
+#define regCP_ME_MC_RADDR_HI 0x206e
+#define regCP_ME_MC_RADDR_HI_BASE_IDX 1
+#define regCP_SEM_WAIT_TIMER 0x206f
+#define regCP_SEM_WAIT_TIMER_BASE_IDX 1
+#define regCP_SIG_SEM_ADDR_LO 0x2070
+#define regCP_SIG_SEM_ADDR_LO_BASE_IDX 1
+#define regCP_SIG_SEM_ADDR_HI 0x2071
+#define regCP_SIG_SEM_ADDR_HI_BASE_IDX 1
+#define regCP_WAIT_REG_MEM_TIMEOUT 0x2074
+#define regCP_WAIT_REG_MEM_TIMEOUT_BASE_IDX 1
+#define regCP_WAIT_SEM_ADDR_LO 0x2075
+#define regCP_WAIT_SEM_ADDR_LO_BASE_IDX 1
+#define regCP_WAIT_SEM_ADDR_HI 0x2076
+#define regCP_WAIT_SEM_ADDR_HI_BASE_IDX 1
+#define regCP_DMA_PFP_CONTROL 0x2077
+#define regCP_DMA_PFP_CONTROL_BASE_IDX 1
+#define regCP_DMA_ME_CONTROL 0x2078
+#define regCP_DMA_ME_CONTROL_BASE_IDX 1
+#define regCP_COHER_BASE_HI 0x2079
+#define regCP_COHER_BASE_HI_BASE_IDX 1
+#define regCP_COHER_START_DELAY 0x207b
+#define regCP_COHER_START_DELAY_BASE_IDX 1
+#define regCP_COHER_CNTL 0x207c
+#define regCP_COHER_CNTL_BASE_IDX 1
+#define regCP_COHER_SIZE 0x207d
+#define regCP_COHER_SIZE_BASE_IDX 1
+#define regCP_COHER_BASE 0x207e
+#define regCP_COHER_BASE_BASE_IDX 1
+#define regCP_COHER_STATUS 0x207f
+#define regCP_COHER_STATUS_BASE_IDX 1
+#define regCP_DMA_ME_SRC_ADDR 0x2080
+#define regCP_DMA_ME_SRC_ADDR_BASE_IDX 1
+#define regCP_DMA_ME_SRC_ADDR_HI 0x2081
+#define regCP_DMA_ME_SRC_ADDR_HI_BASE_IDX 1
+#define regCP_DMA_ME_DST_ADDR 0x2082
+#define regCP_DMA_ME_DST_ADDR_BASE_IDX 1
+#define regCP_DMA_ME_DST_ADDR_HI 0x2083
+#define regCP_DMA_ME_DST_ADDR_HI_BASE_IDX 1
+#define regCP_DMA_ME_COMMAND 0x2084
+#define regCP_DMA_ME_COMMAND_BASE_IDX 1
+#define regCP_DMA_PFP_SRC_ADDR 0x2085
+#define regCP_DMA_PFP_SRC_ADDR_BASE_IDX 1
+#define regCP_DMA_PFP_SRC_ADDR_HI 0x2086
+#define regCP_DMA_PFP_SRC_ADDR_HI_BASE_IDX 1
+#define regCP_DMA_PFP_DST_ADDR 0x2087
+#define regCP_DMA_PFP_DST_ADDR_BASE_IDX 1
+#define regCP_DMA_PFP_DST_ADDR_HI 0x2088
+#define regCP_DMA_PFP_DST_ADDR_HI_BASE_IDX 1
+#define regCP_DMA_PFP_COMMAND 0x2089
+#define regCP_DMA_PFP_COMMAND_BASE_IDX 1
+#define regCP_DMA_CNTL 0x208a
+#define regCP_DMA_CNTL_BASE_IDX 1
+#define regCP_DMA_READ_TAGS 0x208b
+#define regCP_DMA_READ_TAGS_BASE_IDX 1
+#define regCP_COHER_SIZE_HI 0x208c
+#define regCP_COHER_SIZE_HI_BASE_IDX 1
+#define regCP_PFP_IB_CONTROL 0x208d
+#define regCP_PFP_IB_CONTROL_BASE_IDX 1
+#define regCP_PFP_LOAD_CONTROL 0x208e
+#define regCP_PFP_LOAD_CONTROL_BASE_IDX 1
+#define regCP_SCRATCH_INDEX 0x208f
+#define regCP_SCRATCH_INDEX_BASE_IDX 1
+#define regCP_SCRATCH_DATA 0x2090
+#define regCP_SCRATCH_DATA_BASE_IDX 1
+#define regCP_RB_OFFSET 0x2091
+#define regCP_RB_OFFSET_BASE_IDX 1
+#define regCP_IB1_OFFSET 0x2092
+#define regCP_IB1_OFFSET_BASE_IDX 1
+#define regCP_IB2_OFFSET 0x2093
+#define regCP_IB2_OFFSET_BASE_IDX 1
+#define regCP_IB1_PREAMBLE_BEGIN 0x2094
+#define regCP_IB1_PREAMBLE_BEGIN_BASE_IDX 1
+#define regCP_IB1_PREAMBLE_END 0x2095
+#define regCP_IB1_PREAMBLE_END_BASE_IDX 1
+#define regCP_IB2_PREAMBLE_BEGIN 0x2096
+#define regCP_IB2_PREAMBLE_BEGIN_BASE_IDX 1
+#define regCP_IB2_PREAMBLE_END 0x2097
+#define regCP_IB2_PREAMBLE_END_BASE_IDX 1
+#define regCP_CE_IB1_OFFSET 0x2098
+#define regCP_CE_IB1_OFFSET_BASE_IDX 1
+#define regCP_CE_IB2_OFFSET 0x2099
+#define regCP_CE_IB2_OFFSET_BASE_IDX 1
+#define regCP_CE_COUNTER 0x209a
+#define regCP_CE_COUNTER_BASE_IDX 1
+#define regCP_CE_RB_OFFSET 0x209b
+#define regCP_CE_RB_OFFSET_BASE_IDX 1
+#define regCP_CE_INIT_CMD_BUFSZ 0x20bd
+#define regCP_CE_INIT_CMD_BUFSZ_BASE_IDX 1
+#define regCP_CE_IB1_CMD_BUFSZ 0x20be
+#define regCP_CE_IB1_CMD_BUFSZ_BASE_IDX 1
+#define regCP_CE_IB2_CMD_BUFSZ 0x20bf
+#define regCP_CE_IB2_CMD_BUFSZ_BASE_IDX 1
+#define regCP_IB1_CMD_BUFSZ 0x20c0
+#define regCP_IB1_CMD_BUFSZ_BASE_IDX 1
+#define regCP_IB2_CMD_BUFSZ 0x20c1
+#define regCP_IB2_CMD_BUFSZ_BASE_IDX 1
+#define regCP_ST_CMD_BUFSZ 0x20c2
+#define regCP_ST_CMD_BUFSZ_BASE_IDX 1
+#define regCP_CE_INIT_BASE_LO 0x20c3
+#define regCP_CE_INIT_BASE_LO_BASE_IDX 1
+#define regCP_CE_INIT_BASE_HI 0x20c4
+#define regCP_CE_INIT_BASE_HI_BASE_IDX 1
+#define regCP_CE_INIT_BUFSZ 0x20c5
+#define regCP_CE_INIT_BUFSZ_BASE_IDX 1
+#define regCP_CE_IB1_BASE_LO 0x20c6
+#define regCP_CE_IB1_BASE_LO_BASE_IDX 1
+#define regCP_CE_IB1_BASE_HI 0x20c7
+#define regCP_CE_IB1_BASE_HI_BASE_IDX 1
+#define regCP_CE_IB1_BUFSZ 0x20c8
+#define regCP_CE_IB1_BUFSZ_BASE_IDX 1
+#define regCP_CE_IB2_BASE_LO 0x20c9
+#define regCP_CE_IB2_BASE_LO_BASE_IDX 1
+#define regCP_CE_IB2_BASE_HI 0x20ca
+#define regCP_CE_IB2_BASE_HI_BASE_IDX 1
+#define regCP_CE_IB2_BUFSZ 0x20cb
+#define regCP_CE_IB2_BUFSZ_BASE_IDX 1
+#define regCP_IB1_BASE_LO 0x20cc
+#define regCP_IB1_BASE_LO_BASE_IDX 1
+#define regCP_IB1_BASE_HI 0x20cd
+#define regCP_IB1_BASE_HI_BASE_IDX 1
+#define regCP_IB1_BUFSZ 0x20ce
+#define regCP_IB1_BUFSZ_BASE_IDX 1
+#define regCP_IB2_BASE_LO 0x20cf
+#define regCP_IB2_BASE_LO_BASE_IDX 1
+#define regCP_IB2_BASE_HI 0x20d0
+#define regCP_IB2_BASE_HI_BASE_IDX 1
+#define regCP_IB2_BUFSZ 0x20d1
+#define regCP_IB2_BUFSZ_BASE_IDX 1
+#define regCP_ST_BASE_LO 0x20d2
+#define regCP_ST_BASE_LO_BASE_IDX 1
+#define regCP_ST_BASE_HI 0x20d3
+#define regCP_ST_BASE_HI_BASE_IDX 1
+#define regCP_ST_BUFSZ 0x20d4
+#define regCP_ST_BUFSZ_BASE_IDX 1
+#define regCP_EOP_DONE_EVENT_CNTL 0x20d5
+#define regCP_EOP_DONE_EVENT_CNTL_BASE_IDX 1
+#define regCP_EOP_DONE_DATA_CNTL 0x20d6
+#define regCP_EOP_DONE_DATA_CNTL_BASE_IDX 1
+#define regCP_EOP_DONE_CNTX_ID 0x20d7
+#define regCP_EOP_DONE_CNTX_ID_BASE_IDX 1
+#define regCP_PFP_COMPLETION_STATUS 0x20ec
+#define regCP_PFP_COMPLETION_STATUS_BASE_IDX 1
+#define regCP_CE_COMPLETION_STATUS 0x20ed
+#define regCP_CE_COMPLETION_STATUS_BASE_IDX 1
+#define regCP_PRED_NOT_VISIBLE 0x20ee
+#define regCP_PRED_NOT_VISIBLE_BASE_IDX 1
+#define regCP_PFP_METADATA_BASE_ADDR 0x20f0
+#define regCP_PFP_METADATA_BASE_ADDR_BASE_IDX 1
+#define regCP_PFP_METADATA_BASE_ADDR_HI 0x20f1
+#define regCP_PFP_METADATA_BASE_ADDR_HI_BASE_IDX 1
+#define regCP_CE_METADATA_BASE_ADDR 0x20f2
+#define regCP_CE_METADATA_BASE_ADDR_BASE_IDX 1
+#define regCP_CE_METADATA_BASE_ADDR_HI 0x20f3
+#define regCP_CE_METADATA_BASE_ADDR_HI_BASE_IDX 1
+#define regCP_DRAW_INDX_INDR_ADDR 0x20f4
+#define regCP_DRAW_INDX_INDR_ADDR_BASE_IDX 1
+#define regCP_DRAW_INDX_INDR_ADDR_HI 0x20f5
+#define regCP_DRAW_INDX_INDR_ADDR_HI_BASE_IDX 1
+#define regCP_DISPATCH_INDR_ADDR 0x20f6
+#define regCP_DISPATCH_INDR_ADDR_BASE_IDX 1
+#define regCP_DISPATCH_INDR_ADDR_HI 0x20f7
+#define regCP_DISPATCH_INDR_ADDR_HI_BASE_IDX 1
+#define regCP_INDEX_BASE_ADDR 0x20f8
+#define regCP_INDEX_BASE_ADDR_BASE_IDX 1
+#define regCP_INDEX_BASE_ADDR_HI 0x20f9
+#define regCP_INDEX_BASE_ADDR_HI_BASE_IDX 1
+#define regCP_INDEX_TYPE 0x20fa
+#define regCP_INDEX_TYPE_BASE_IDX 1
+#define regCP_GDS_BKUP_ADDR 0x20fb
+#define regCP_GDS_BKUP_ADDR_BASE_IDX 1
+#define regCP_GDS_BKUP_ADDR_HI 0x20fc
+#define regCP_GDS_BKUP_ADDR_HI_BASE_IDX 1
+#define regCP_SAMPLE_STATUS 0x20fd
+#define regCP_SAMPLE_STATUS_BASE_IDX 1
+#define regCP_ME_COHER_CNTL 0x20fe
+#define regCP_ME_COHER_CNTL_BASE_IDX 1
+#define regCP_ME_COHER_SIZE 0x20ff
+#define regCP_ME_COHER_SIZE_BASE_IDX 1
+#define regCP_ME_COHER_SIZE_HI 0x2100
+#define regCP_ME_COHER_SIZE_HI_BASE_IDX 1
+#define regCP_ME_COHER_BASE 0x2101
+#define regCP_ME_COHER_BASE_BASE_IDX 1
+#define regCP_ME_COHER_BASE_HI 0x2102
+#define regCP_ME_COHER_BASE_HI_BASE_IDX 1
+#define regCP_ME_COHER_STATUS 0x2103
+#define regCP_ME_COHER_STATUS_BASE_IDX 1
+#define regRLC_GPM_PERF_COUNT_0 0x2140
+#define regRLC_GPM_PERF_COUNT_0_BASE_IDX 1
+#define regRLC_GPM_PERF_COUNT_1 0x2141
+#define regRLC_GPM_PERF_COUNT_1_BASE_IDX 1
+#define regGRBM_GFX_INDEX 0x2200
+#define regGRBM_GFX_INDEX_BASE_IDX 1
+#define regVGT_GSVS_RING_SIZE 0x2241
+#define regVGT_GSVS_RING_SIZE_BASE_IDX 1
+#define regVGT_PRIMITIVE_TYPE 0x2242
+#define regVGT_PRIMITIVE_TYPE_BASE_IDX 1
+#define regVGT_INDEX_TYPE 0x2243
+#define regVGT_INDEX_TYPE_BASE_IDX 1
+#define regVGT_STRMOUT_BUFFER_FILLED_SIZE_0 0x2244
+#define regVGT_STRMOUT_BUFFER_FILLED_SIZE_0_BASE_IDX 1
+#define regVGT_STRMOUT_BUFFER_FILLED_SIZE_1 0x2245
+#define regVGT_STRMOUT_BUFFER_FILLED_SIZE_1_BASE_IDX 1
+#define regVGT_STRMOUT_BUFFER_FILLED_SIZE_2 0x2246
+#define regVGT_STRMOUT_BUFFER_FILLED_SIZE_2_BASE_IDX 1
+#define regVGT_STRMOUT_BUFFER_FILLED_SIZE_3 0x2247
+#define regVGT_STRMOUT_BUFFER_FILLED_SIZE_3_BASE_IDX 1
+#define regVGT_MAX_VTX_INDX 0x2248
+#define regVGT_MAX_VTX_INDX_BASE_IDX 1
+#define regVGT_MIN_VTX_INDX 0x2249
+#define regVGT_MIN_VTX_INDX_BASE_IDX 1
+#define regVGT_INDX_OFFSET 0x224a
+#define regVGT_INDX_OFFSET_BASE_IDX 1
+#define regVGT_MULTI_PRIM_IB_RESET_EN 0x224b
+#define regVGT_MULTI_PRIM_IB_RESET_EN_BASE_IDX 1
+#define regVGT_NUM_INDICES 0x224c
+#define regVGT_NUM_INDICES_BASE_IDX 1
+#define regVGT_NUM_INSTANCES 0x224d
+#define regVGT_NUM_INSTANCES_BASE_IDX 1
+#define regVGT_TF_RING_SIZE 0x224e
+#define regVGT_TF_RING_SIZE_BASE_IDX 1
+#define regVGT_HS_OFFCHIP_PARAM 0x224f
+#define regVGT_HS_OFFCHIP_PARAM_BASE_IDX 1
+#define regVGT_TF_MEMORY_BASE 0x2250
+#define regVGT_TF_MEMORY_BASE_BASE_IDX 1
+#define regVGT_TF_MEMORY_BASE_HI 0x2251
+#define regVGT_TF_MEMORY_BASE_HI_BASE_IDX 1
+#define regWD_POS_BUF_BASE 0x2252
+#define regWD_POS_BUF_BASE_BASE_IDX 1
+#define regWD_POS_BUF_BASE_HI 0x2253
+#define regWD_POS_BUF_BASE_HI_BASE_IDX 1
+#define regWD_CNTL_SB_BUF_BASE 0x2254
+#define regWD_CNTL_SB_BUF_BASE_BASE_IDX 1
+#define regWD_CNTL_SB_BUF_BASE_HI 0x2255
+#define regWD_CNTL_SB_BUF_BASE_HI_BASE_IDX 1
+#define regWD_INDEX_BUF_BASE 0x2256
+#define regWD_INDEX_BUF_BASE_BASE_IDX 1
+#define regWD_INDEX_BUF_BASE_HI 0x2257
+#define regWD_INDEX_BUF_BASE_HI_BASE_IDX 1
+#define regIA_MULTI_VGT_PARAM 0x2258
+#define regIA_MULTI_VGT_PARAM_BASE_IDX 1
+#define regVGT_INSTANCE_BASE_ID 0x225a
+#define regVGT_INSTANCE_BASE_ID_BASE_IDX 1
+#define regPA_SU_LINE_STIPPLE_VALUE 0x2280
+#define regPA_SU_LINE_STIPPLE_VALUE_BASE_IDX 1
+#define regPA_SC_LINE_STIPPLE_STATE 0x2281
+#define regPA_SC_LINE_STIPPLE_STATE_BASE_IDX 1
+#define regPA_SC_SCREEN_EXTENT_MIN_0 0x2284
+#define regPA_SC_SCREEN_EXTENT_MIN_0_BASE_IDX 1
+#define regPA_SC_SCREEN_EXTENT_MAX_0 0x2285
+#define regPA_SC_SCREEN_EXTENT_MAX_0_BASE_IDX 1
+#define regPA_SC_SCREEN_EXTENT_MIN_1 0x2286
+#define regPA_SC_SCREEN_EXTENT_MIN_1_BASE_IDX 1
+#define regPA_SC_SCREEN_EXTENT_MAX_1 0x228b
+#define regPA_SC_SCREEN_EXTENT_MAX_1_BASE_IDX 1
+#define regPA_SC_P3D_TRAP_SCREEN_HV_EN 0x22a0
+#define regPA_SC_P3D_TRAP_SCREEN_HV_EN_BASE_IDX 1
+#define regPA_SC_P3D_TRAP_SCREEN_H 0x22a1
+#define regPA_SC_P3D_TRAP_SCREEN_H_BASE_IDX 1
+#define regPA_SC_P3D_TRAP_SCREEN_V 0x22a2
+#define regPA_SC_P3D_TRAP_SCREEN_V_BASE_IDX 1
+#define regPA_SC_P3D_TRAP_SCREEN_OCCURRENCE 0x22a3
+#define regPA_SC_P3D_TRAP_SCREEN_OCCURRENCE_BASE_IDX 1
+#define regPA_SC_P3D_TRAP_SCREEN_COUNT 0x22a4
+#define regPA_SC_P3D_TRAP_SCREEN_COUNT_BASE_IDX 1
+#define regPA_SC_HP3D_TRAP_SCREEN_HV_EN 0x22a8
+#define regPA_SC_HP3D_TRAP_SCREEN_HV_EN_BASE_IDX 1
+#define regPA_SC_HP3D_TRAP_SCREEN_H 0x22a9
+#define regPA_SC_HP3D_TRAP_SCREEN_H_BASE_IDX 1
+#define regPA_SC_HP3D_TRAP_SCREEN_V 0x22aa
+#define regPA_SC_HP3D_TRAP_SCREEN_V_BASE_IDX 1
+#define regPA_SC_HP3D_TRAP_SCREEN_OCCURRENCE 0x22ab
+#define regPA_SC_HP3D_TRAP_SCREEN_OCCURRENCE_BASE_IDX 1
+#define regPA_SC_HP3D_TRAP_SCREEN_COUNT 0x22ac
+#define regPA_SC_HP3D_TRAP_SCREEN_COUNT_BASE_IDX 1
+#define regPA_SC_TRAP_SCREEN_HV_EN 0x22b0
+#define regPA_SC_TRAP_SCREEN_HV_EN_BASE_IDX 1
+#define regPA_SC_TRAP_SCREEN_H 0x22b1
+#define regPA_SC_TRAP_SCREEN_H_BASE_IDX 1
+#define regPA_SC_TRAP_SCREEN_V 0x22b2
+#define regPA_SC_TRAP_SCREEN_V_BASE_IDX 1
+#define regPA_SC_TRAP_SCREEN_OCCURRENCE 0x22b3
+#define regPA_SC_TRAP_SCREEN_OCCURRENCE_BASE_IDX 1
+#define regPA_SC_TRAP_SCREEN_COUNT 0x22b4
+#define regPA_SC_TRAP_SCREEN_COUNT_BASE_IDX 1
+#define regPA_STATE_STEREO_X 0x22b5
+#define regPA_STATE_STEREO_X_BASE_IDX 1
+#define regSQ_THREAD_TRACE_BASE 0x2330
+#define regSQ_THREAD_TRACE_BASE_BASE_IDX 1
+#define regSQ_THREAD_TRACE_SIZE 0x2331
+#define regSQ_THREAD_TRACE_SIZE_BASE_IDX 1
+#define regSQ_THREAD_TRACE_MASK 0x2332
+#define regSQ_THREAD_TRACE_MASK_BASE_IDX 1
+#define regSQ_THREAD_TRACE_TOKEN_MASK 0x2333
+#define regSQ_THREAD_TRACE_TOKEN_MASK_BASE_IDX 1
+#define regSQ_THREAD_TRACE_PERF_MASK 0x2334
+#define regSQ_THREAD_TRACE_PERF_MASK_BASE_IDX 1
+#define regSQ_THREAD_TRACE_CTRL 0x2335
+#define regSQ_THREAD_TRACE_CTRL_BASE_IDX 1
+#define regSQ_THREAD_TRACE_MODE 0x2336
+#define regSQ_THREAD_TRACE_MODE_BASE_IDX 1
+#define regSQ_THREAD_TRACE_BASE2 0x2337
+#define regSQ_THREAD_TRACE_BASE2_BASE_IDX 1
+#define regSQ_THREAD_TRACE_TOKEN_MASK2 0x2338
+#define regSQ_THREAD_TRACE_TOKEN_MASK2_BASE_IDX 1
+#define regSQ_THREAD_TRACE_WPTR 0x2339
+#define regSQ_THREAD_TRACE_WPTR_BASE_IDX 1
+#define regSQ_THREAD_TRACE_STATUS 0x233a
+#define regSQ_THREAD_TRACE_STATUS_BASE_IDX 1
+#define regSQ_THREAD_TRACE_HIWATER 0x233b
+#define regSQ_THREAD_TRACE_HIWATER_BASE_IDX 1
+#define regSQ_THREAD_TRACE_CNTR 0x233c
+#define regSQ_THREAD_TRACE_CNTR_BASE_IDX 1
+#define regSQ_THREAD_TRACE_USERDATA_0 0x2340
+#define regSQ_THREAD_TRACE_USERDATA_0_BASE_IDX 1
+#define regSQ_THREAD_TRACE_USERDATA_1 0x2341
+#define regSQ_THREAD_TRACE_USERDATA_1_BASE_IDX 1
+#define regSQ_THREAD_TRACE_USERDATA_2 0x2342
+#define regSQ_THREAD_TRACE_USERDATA_2_BASE_IDX 1
+#define regSQ_THREAD_TRACE_USERDATA_3 0x2343
+#define regSQ_THREAD_TRACE_USERDATA_3_BASE_IDX 1
+#define regSQC_CACHES 0x2348
+#define regSQC_CACHES_BASE_IDX 1
+#define regSQC_WRITEBACK 0x2349
+#define regSQC_WRITEBACK_BASE_IDX 1
+#define regDB_OCCLUSION_COUNT0_LOW 0x23c0
+#define regDB_OCCLUSION_COUNT0_LOW_BASE_IDX 1
+#define regDB_OCCLUSION_COUNT0_HI 0x23c1
+#define regDB_OCCLUSION_COUNT0_HI_BASE_IDX 1
+#define regDB_OCCLUSION_COUNT1_LOW 0x23c2
+#define regDB_OCCLUSION_COUNT1_LOW_BASE_IDX 1
+#define regDB_OCCLUSION_COUNT1_HI 0x23c3
+#define regDB_OCCLUSION_COUNT1_HI_BASE_IDX 1
+#define regDB_OCCLUSION_COUNT2_LOW 0x23c4
+#define regDB_OCCLUSION_COUNT2_LOW_BASE_IDX 1
+#define regDB_OCCLUSION_COUNT2_HI 0x23c5
+#define regDB_OCCLUSION_COUNT2_HI_BASE_IDX 1
+#define regDB_OCCLUSION_COUNT3_LOW 0x23c6
+#define regDB_OCCLUSION_COUNT3_LOW_BASE_IDX 1
+#define regDB_OCCLUSION_COUNT3_HI 0x23c7
+#define regDB_OCCLUSION_COUNT3_HI_BASE_IDX 1
+#define regDB_ZPASS_COUNT_LOW 0x23fe
+#define regDB_ZPASS_COUNT_LOW_BASE_IDX 1
+#define regDB_ZPASS_COUNT_HI 0x23ff
+#define regDB_ZPASS_COUNT_HI_BASE_IDX 1
+#define regGDS_RD_ADDR 0x2400
+#define regGDS_RD_ADDR_BASE_IDX 1
+#define regGDS_RD_DATA 0x2401
+#define regGDS_RD_DATA_BASE_IDX 1
+#define regGDS_RD_BURST_ADDR 0x2402
+#define regGDS_RD_BURST_ADDR_BASE_IDX 1
+#define regGDS_RD_BURST_COUNT 0x2403
+#define regGDS_RD_BURST_COUNT_BASE_IDX 1
+#define regGDS_RD_BURST_DATA 0x2404
+#define regGDS_RD_BURST_DATA_BASE_IDX 1
+#define regGDS_WR_ADDR 0x2405
+#define regGDS_WR_ADDR_BASE_IDX 1
+#define regGDS_WR_DATA 0x2406
+#define regGDS_WR_DATA_BASE_IDX 1
+#define regGDS_WR_BURST_ADDR 0x2407
+#define regGDS_WR_BURST_ADDR_BASE_IDX 1
+#define regGDS_WR_BURST_DATA 0x2408
+#define regGDS_WR_BURST_DATA_BASE_IDX 1
+#define regGDS_WRITE_COMPLETE 0x2409
+#define regGDS_WRITE_COMPLETE_BASE_IDX 1
+#define regGDS_ATOM_CNTL 0x240a
+#define regGDS_ATOM_CNTL_BASE_IDX 1
+#define regGDS_ATOM_COMPLETE 0x240b
+#define regGDS_ATOM_COMPLETE_BASE_IDX 1
+#define regGDS_ATOM_BASE 0x240c
+#define regGDS_ATOM_BASE_BASE_IDX 1
+#define regGDS_ATOM_SIZE 0x240d
+#define regGDS_ATOM_SIZE_BASE_IDX 1
+#define regGDS_ATOM_OFFSET0 0x240e
+#define regGDS_ATOM_OFFSET0_BASE_IDX 1
+#define regGDS_ATOM_OFFSET1 0x240f
+#define regGDS_ATOM_OFFSET1_BASE_IDX 1
+#define regGDS_ATOM_DST 0x2410
+#define regGDS_ATOM_DST_BASE_IDX 1
+#define regGDS_ATOM_OP 0x2411
+#define regGDS_ATOM_OP_BASE_IDX 1
+#define regGDS_ATOM_SRC0 0x2412
+#define regGDS_ATOM_SRC0_BASE_IDX 1
+#define regGDS_ATOM_SRC0_U 0x2413
+#define regGDS_ATOM_SRC0_U_BASE_IDX 1
+#define regGDS_ATOM_SRC1 0x2414
+#define regGDS_ATOM_SRC1_BASE_IDX 1
+#define regGDS_ATOM_SRC1_U 0x2415
+#define regGDS_ATOM_SRC1_U_BASE_IDX 1
+#define regGDS_ATOM_READ0 0x2416
+#define regGDS_ATOM_READ0_BASE_IDX 1
+#define regGDS_ATOM_READ0_U 0x2417
+#define regGDS_ATOM_READ0_U_BASE_IDX 1
+#define regGDS_ATOM_READ1 0x2418
+#define regGDS_ATOM_READ1_BASE_IDX 1
+#define regGDS_ATOM_READ1_U 0x2419
+#define regGDS_ATOM_READ1_U_BASE_IDX 1
+#define regGDS_GWS_RESOURCE_CNTL 0x241a
+#define regGDS_GWS_RESOURCE_CNTL_BASE_IDX 1
+#define regGDS_GWS_RESOURCE 0x241b
+#define regGDS_GWS_RESOURCE_BASE_IDX 1
+#define regGDS_GWS_RESOURCE_CNT 0x241c
+#define regGDS_GWS_RESOURCE_CNT_BASE_IDX 1
+#define regGDS_OA_CNTL 0x241d
+#define regGDS_OA_CNTL_BASE_IDX 1
+#define regGDS_OA_COUNTER 0x241e
+#define regGDS_OA_COUNTER_BASE_IDX 1
+#define regGDS_OA_ADDRESS 0x241f
+#define regGDS_OA_ADDRESS_BASE_IDX 1
+#define regGDS_OA_INCDEC 0x2420
+#define regGDS_OA_INCDEC_BASE_IDX 1
+#define regGDS_OA_RING_SIZE 0x2421
+#define regGDS_OA_RING_SIZE_BASE_IDX 1
+#define regSPI_CONFIG_CNTL 0x2440
+#define regSPI_CONFIG_CNTL_BASE_IDX 1
+#define regSPI_CONFIG_CNTL_1 0x2441
+#define regSPI_CONFIG_CNTL_1_BASE_IDX 1
+#define regSPI_CONFIG_CNTL_2 0x2442
+#define regSPI_CONFIG_CNTL_2_BASE_IDX 1
+#define regSPI_WAVE_LIMIT_CNTL 0x2443
+#define regSPI_WAVE_LIMIT_CNTL_BASE_IDX 1
+
+
+// addressBlock: xcd0_gc_perfddec
+// base address: 0x34000
+#define regCPG_PERFCOUNTER1_LO 0x3000
+#define regCPG_PERFCOUNTER1_LO_BASE_IDX 1
+#define regCPG_PERFCOUNTER1_HI 0x3001
+#define regCPG_PERFCOUNTER1_HI_BASE_IDX 1
+#define regCPG_PERFCOUNTER0_LO 0x3002
+#define regCPG_PERFCOUNTER0_LO_BASE_IDX 1
+#define regCPG_PERFCOUNTER0_HI 0x3003
+#define regCPG_PERFCOUNTER0_HI_BASE_IDX 1
+#define regCPC_PERFCOUNTER1_LO 0x3004
+#define regCPC_PERFCOUNTER1_LO_BASE_IDX 1
+#define regCPC_PERFCOUNTER1_HI 0x3005
+#define regCPC_PERFCOUNTER1_HI_BASE_IDX 1
+#define regCPC_PERFCOUNTER0_LO 0x3006
+#define regCPC_PERFCOUNTER0_LO_BASE_IDX 1
+#define regCPC_PERFCOUNTER0_HI 0x3007
+#define regCPC_PERFCOUNTER0_HI_BASE_IDX 1
+#define regCPF_PERFCOUNTER1_LO 0x3008
+#define regCPF_PERFCOUNTER1_LO_BASE_IDX 1
+#define regCPF_PERFCOUNTER1_HI 0x3009
+#define regCPF_PERFCOUNTER1_HI_BASE_IDX 1
+#define regCPF_PERFCOUNTER0_LO 0x300a
+#define regCPF_PERFCOUNTER0_LO_BASE_IDX 1
+#define regCPF_PERFCOUNTER0_HI 0x300b
+#define regCPF_PERFCOUNTER0_HI_BASE_IDX 1
+#define regCPF_LATENCY_STATS_DATA 0x300c
+#define regCPF_LATENCY_STATS_DATA_BASE_IDX 1
+#define regCPG_LATENCY_STATS_DATA 0x300d
+#define regCPG_LATENCY_STATS_DATA_BASE_IDX 1
+#define regCPC_LATENCY_STATS_DATA 0x300e
+#define regCPC_LATENCY_STATS_DATA_BASE_IDX 1
+#define regGRBM_PERFCOUNTER0_LO 0x3040
+#define regGRBM_PERFCOUNTER0_LO_BASE_IDX 1
+#define regGRBM_PERFCOUNTER0_HI 0x3041
+#define regGRBM_PERFCOUNTER0_HI_BASE_IDX 1
+#define regGRBM_PERFCOUNTER1_LO 0x3043
+#define regGRBM_PERFCOUNTER1_LO_BASE_IDX 1
+#define regGRBM_PERFCOUNTER1_HI 0x3044
+#define regGRBM_PERFCOUNTER1_HI_BASE_IDX 1
+#define regGRBM_SE0_PERFCOUNTER_LO 0x3045
+#define regGRBM_SE0_PERFCOUNTER_LO_BASE_IDX 1
+#define regGRBM_SE0_PERFCOUNTER_HI 0x3046
+#define regGRBM_SE0_PERFCOUNTER_HI_BASE_IDX 1
+#define regGRBM_SE1_PERFCOUNTER_LO 0x3047
+#define regGRBM_SE1_PERFCOUNTER_LO_BASE_IDX 1
+#define regGRBM_SE1_PERFCOUNTER_HI 0x3048
+#define regGRBM_SE1_PERFCOUNTER_HI_BASE_IDX 1
+#define regGRBM_SE2_PERFCOUNTER_LO 0x3049
+#define regGRBM_SE2_PERFCOUNTER_LO_BASE_IDX 1
+#define regGRBM_SE2_PERFCOUNTER_HI 0x304a
+#define regGRBM_SE2_PERFCOUNTER_HI_BASE_IDX 1
+#define regGRBM_SE3_PERFCOUNTER_LO 0x304b
+#define regGRBM_SE3_PERFCOUNTER_LO_BASE_IDX 1
+#define regGRBM_SE3_PERFCOUNTER_HI 0x304c
+#define regGRBM_SE3_PERFCOUNTER_HI_BASE_IDX 1
+#define regWD_PERFCOUNTER0_LO 0x3080
+#define regWD_PERFCOUNTER0_LO_BASE_IDX 1
+#define regWD_PERFCOUNTER0_HI 0x3081
+#define regWD_PERFCOUNTER0_HI_BASE_IDX 1
+#define regWD_PERFCOUNTER1_LO 0x3082
+#define regWD_PERFCOUNTER1_LO_BASE_IDX 1
+#define regWD_PERFCOUNTER1_HI 0x3083
+#define regWD_PERFCOUNTER1_HI_BASE_IDX 1
+#define regWD_PERFCOUNTER2_LO 0x3084
+#define regWD_PERFCOUNTER2_LO_BASE_IDX 1
+#define regWD_PERFCOUNTER2_HI 0x3085
+#define regWD_PERFCOUNTER2_HI_BASE_IDX 1
+#define regWD_PERFCOUNTER3_LO 0x3086
+#define regWD_PERFCOUNTER3_LO_BASE_IDX 1
+#define regWD_PERFCOUNTER3_HI 0x3087
+#define regWD_PERFCOUNTER3_HI_BASE_IDX 1
+#define regIA_PERFCOUNTER0_LO 0x3088
+#define regIA_PERFCOUNTER0_LO_BASE_IDX 1
+#define regIA_PERFCOUNTER0_HI 0x3089
+#define regIA_PERFCOUNTER0_HI_BASE_IDX 1
+#define regIA_PERFCOUNTER1_LO 0x308a
+#define regIA_PERFCOUNTER1_LO_BASE_IDX 1
+#define regIA_PERFCOUNTER1_HI 0x308b
+#define regIA_PERFCOUNTER1_HI_BASE_IDX 1
+#define regIA_PERFCOUNTER2_LO 0x308c
+#define regIA_PERFCOUNTER2_LO_BASE_IDX 1
+#define regIA_PERFCOUNTER2_HI 0x308d
+#define regIA_PERFCOUNTER2_HI_BASE_IDX 1
+#define regIA_PERFCOUNTER3_LO 0x308e
+#define regIA_PERFCOUNTER3_LO_BASE_IDX 1
+#define regIA_PERFCOUNTER3_HI 0x308f
+#define regIA_PERFCOUNTER3_HI_BASE_IDX 1
+#define regVGT_PERFCOUNTER0_LO 0x3090
+#define regVGT_PERFCOUNTER0_LO_BASE_IDX 1
+#define regVGT_PERFCOUNTER0_HI 0x3091
+#define regVGT_PERFCOUNTER0_HI_BASE_IDX 1
+#define regVGT_PERFCOUNTER1_LO 0x3092
+#define regVGT_PERFCOUNTER1_LO_BASE_IDX 1
+#define regVGT_PERFCOUNTER1_HI 0x3093
+#define regVGT_PERFCOUNTER1_HI_BASE_IDX 1
+#define regVGT_PERFCOUNTER2_LO 0x3094
+#define regVGT_PERFCOUNTER2_LO_BASE_IDX 1
+#define regVGT_PERFCOUNTER2_HI 0x3095
+#define regVGT_PERFCOUNTER2_HI_BASE_IDX 1
+#define regVGT_PERFCOUNTER3_LO 0x3096
+#define regVGT_PERFCOUNTER3_LO_BASE_IDX 1
+#define regVGT_PERFCOUNTER3_HI 0x3097
+#define regVGT_PERFCOUNTER3_HI_BASE_IDX 1
+#define regPA_SU_PERFCOUNTER0_LO 0x3100
+#define regPA_SU_PERFCOUNTER0_LO_BASE_IDX 1
+#define regPA_SU_PERFCOUNTER0_HI 0x3101
+#define regPA_SU_PERFCOUNTER0_HI_BASE_IDX 1
+#define regPA_SU_PERFCOUNTER1_LO 0x3102
+#define regPA_SU_PERFCOUNTER1_LO_BASE_IDX 1
+#define regPA_SU_PERFCOUNTER1_HI 0x3103
+#define regPA_SU_PERFCOUNTER1_HI_BASE_IDX 1
+#define regPA_SU_PERFCOUNTER2_LO 0x3104
+#define regPA_SU_PERFCOUNTER2_LO_BASE_IDX 1
+#define regPA_SU_PERFCOUNTER2_HI 0x3105
+#define regPA_SU_PERFCOUNTER2_HI_BASE_IDX 1
+#define regPA_SU_PERFCOUNTER3_LO 0x3106
+#define regPA_SU_PERFCOUNTER3_LO_BASE_IDX 1
+#define regPA_SU_PERFCOUNTER3_HI 0x3107
+#define regPA_SU_PERFCOUNTER3_HI_BASE_IDX 1
+#define regPA_SC_PERFCOUNTER0_LO 0x3140
+#define regPA_SC_PERFCOUNTER0_LO_BASE_IDX 1
+#define regPA_SC_PERFCOUNTER0_HI 0x3141
+#define regPA_SC_PERFCOUNTER0_HI_BASE_IDX 1
+#define regPA_SC_PERFCOUNTER1_LO 0x3142
+#define regPA_SC_PERFCOUNTER1_LO_BASE_IDX 1
+#define regPA_SC_PERFCOUNTER1_HI 0x3143
+#define regPA_SC_PERFCOUNTER1_HI_BASE_IDX 1
+#define regPA_SC_PERFCOUNTER2_LO 0x3144
+#define regPA_SC_PERFCOUNTER2_LO_BASE_IDX 1
+#define regPA_SC_PERFCOUNTER2_HI 0x3145
+#define regPA_SC_PERFCOUNTER2_HI_BASE_IDX 1
+#define regPA_SC_PERFCOUNTER3_LO 0x3146
+#define regPA_SC_PERFCOUNTER3_LO_BASE_IDX 1
+#define regPA_SC_PERFCOUNTER3_HI 0x3147
+#define regPA_SC_PERFCOUNTER3_HI_BASE_IDX 1
+#define regPA_SC_PERFCOUNTER4_LO 0x3148
+#define regPA_SC_PERFCOUNTER4_LO_BASE_IDX 1
+#define regPA_SC_PERFCOUNTER4_HI 0x3149
+#define regPA_SC_PERFCOUNTER4_HI_BASE_IDX 1
+#define regPA_SC_PERFCOUNTER5_LO 0x314a
+#define regPA_SC_PERFCOUNTER5_LO_BASE_IDX 1
+#define regPA_SC_PERFCOUNTER5_HI 0x314b
+#define regPA_SC_PERFCOUNTER5_HI_BASE_IDX 1
+#define regPA_SC_PERFCOUNTER6_LO 0x314c
+#define regPA_SC_PERFCOUNTER6_LO_BASE_IDX 1
+#define regPA_SC_PERFCOUNTER6_HI 0x314d
+#define regPA_SC_PERFCOUNTER6_HI_BASE_IDX 1
+#define regPA_SC_PERFCOUNTER7_LO 0x314e
+#define regPA_SC_PERFCOUNTER7_LO_BASE_IDX 1
+#define regPA_SC_PERFCOUNTER7_HI 0x314f
+#define regPA_SC_PERFCOUNTER7_HI_BASE_IDX 1
+#define regSPI_PERFCOUNTER0_HI 0x3180
+#define regSPI_PERFCOUNTER0_HI_BASE_IDX 1
+#define regSPI_PERFCOUNTER0_LO 0x3181
+#define regSPI_PERFCOUNTER0_LO_BASE_IDX 1
+#define regSPI_PERFCOUNTER1_HI 0x3182
+#define regSPI_PERFCOUNTER1_HI_BASE_IDX 1
+#define regSPI_PERFCOUNTER1_LO 0x3183
+#define regSPI_PERFCOUNTER1_LO_BASE_IDX 1
+#define regSPI_PERFCOUNTER2_HI 0x3184
+#define regSPI_PERFCOUNTER2_HI_BASE_IDX 1
+#define regSPI_PERFCOUNTER2_LO 0x3185
+#define regSPI_PERFCOUNTER2_LO_BASE_IDX 1
+#define regSPI_PERFCOUNTER3_HI 0x3186
+#define regSPI_PERFCOUNTER3_HI_BASE_IDX 1
+#define regSPI_PERFCOUNTER3_LO 0x3187
+#define regSPI_PERFCOUNTER3_LO_BASE_IDX 1
+#define regSPI_PERFCOUNTER4_HI 0x3188
+#define regSPI_PERFCOUNTER4_HI_BASE_IDX 1
+#define regSPI_PERFCOUNTER4_LO 0x3189
+#define regSPI_PERFCOUNTER4_LO_BASE_IDX 1
+#define regSPI_PERFCOUNTER5_HI 0x318a
+#define regSPI_PERFCOUNTER5_HI_BASE_IDX 1
+#define regSPI_PERFCOUNTER5_LO 0x318b
+#define regSPI_PERFCOUNTER5_LO_BASE_IDX 1
+#define regSQ_PERFCOUNTER0_LO 0x31c0
+#define regSQ_PERFCOUNTER0_LO_BASE_IDX 1
+#define regSQ_PERFCOUNTER0_HI 0x31c1
+#define regSQ_PERFCOUNTER0_HI_BASE_IDX 1
+#define regSQ_PERFCOUNTER1_LO 0x31c2
+#define regSQ_PERFCOUNTER1_LO_BASE_IDX 1
+#define regSQ_PERFCOUNTER1_HI 0x31c3
+#define regSQ_PERFCOUNTER1_HI_BASE_IDX 1
+#define regSQ_PERFCOUNTER2_LO 0x31c4
+#define regSQ_PERFCOUNTER2_LO_BASE_IDX 1
+#define regSQ_PERFCOUNTER2_HI 0x31c5
+#define regSQ_PERFCOUNTER2_HI_BASE_IDX 1
+#define regSQ_PERFCOUNTER3_LO 0x31c6
+#define regSQ_PERFCOUNTER3_LO_BASE_IDX 1
+#define regSQ_PERFCOUNTER3_HI 0x31c7
+#define regSQ_PERFCOUNTER3_HI_BASE_IDX 1
+#define regSQ_PERFCOUNTER4_LO 0x31c8
+#define regSQ_PERFCOUNTER4_LO_BASE_IDX 1
+#define regSQ_PERFCOUNTER4_HI 0x31c9
+#define regSQ_PERFCOUNTER4_HI_BASE_IDX 1
+#define regSQ_PERFCOUNTER5_LO 0x31ca
+#define regSQ_PERFCOUNTER5_LO_BASE_IDX 1
+#define regSQ_PERFCOUNTER5_HI 0x31cb
+#define regSQ_PERFCOUNTER5_HI_BASE_IDX 1
+#define regSQ_PERFCOUNTER6_LO 0x31cc
+#define regSQ_PERFCOUNTER6_LO_BASE_IDX 1
+#define regSQ_PERFCOUNTER6_HI 0x31cd
+#define regSQ_PERFCOUNTER6_HI_BASE_IDX 1
+#define regSQ_PERFCOUNTER7_LO 0x31ce
+#define regSQ_PERFCOUNTER7_LO_BASE_IDX 1
+#define regSQ_PERFCOUNTER7_HI 0x31cf
+#define regSQ_PERFCOUNTER7_HI_BASE_IDX 1
+#define regSQ_PERFCOUNTER8_LO 0x31d0
+#define regSQ_PERFCOUNTER8_LO_BASE_IDX 1
+#define regSQ_PERFCOUNTER8_HI 0x31d1
+#define regSQ_PERFCOUNTER8_HI_BASE_IDX 1
+#define regSQ_PERFCOUNTER9_LO 0x31d2
+#define regSQ_PERFCOUNTER9_LO_BASE_IDX 1
+#define regSQ_PERFCOUNTER9_HI 0x31d3
+#define regSQ_PERFCOUNTER9_HI_BASE_IDX 1
+#define regSQ_PERFCOUNTER10_LO 0x31d4
+#define regSQ_PERFCOUNTER10_LO_BASE_IDX 1
+#define regSQ_PERFCOUNTER10_HI 0x31d5
+#define regSQ_PERFCOUNTER10_HI_BASE_IDX 1
+#define regSQ_PERFCOUNTER11_LO 0x31d6
+#define regSQ_PERFCOUNTER11_LO_BASE_IDX 1
+#define regSQ_PERFCOUNTER11_HI 0x31d7
+#define regSQ_PERFCOUNTER11_HI_BASE_IDX 1
+#define regSQ_PERFCOUNTER12_LO 0x31d8
+#define regSQ_PERFCOUNTER12_LO_BASE_IDX 1
+#define regSQ_PERFCOUNTER12_HI 0x31d9
+#define regSQ_PERFCOUNTER12_HI_BASE_IDX 1
+#define regSQ_PERFCOUNTER13_LO 0x31da
+#define regSQ_PERFCOUNTER13_LO_BASE_IDX 1
+#define regSQ_PERFCOUNTER13_HI 0x31db
+#define regSQ_PERFCOUNTER13_HI_BASE_IDX 1
+#define regSQ_PERFCOUNTER14_LO 0x31dc
+#define regSQ_PERFCOUNTER14_LO_BASE_IDX 1
+#define regSQ_PERFCOUNTER14_HI 0x31dd
+#define regSQ_PERFCOUNTER14_HI_BASE_IDX 1
+#define regSQ_PERFCOUNTER15_LO 0x31de
+#define regSQ_PERFCOUNTER15_LO_BASE_IDX 1
+#define regSQ_PERFCOUNTER15_HI 0x31df
+#define regSQ_PERFCOUNTER15_HI_BASE_IDX 1
+#define regSX_PERFCOUNTER0_LO 0x3240
+#define regSX_PERFCOUNTER0_LO_BASE_IDX 1
+#define regSX_PERFCOUNTER0_HI 0x3241
+#define regSX_PERFCOUNTER0_HI_BASE_IDX 1
+#define regSX_PERFCOUNTER1_LO 0x3242
+#define regSX_PERFCOUNTER1_LO_BASE_IDX 1
+#define regSX_PERFCOUNTER1_HI 0x3243
+#define regSX_PERFCOUNTER1_HI_BASE_IDX 1
+#define regSX_PERFCOUNTER2_LO 0x3244
+#define regSX_PERFCOUNTER2_LO_BASE_IDX 1
+#define regSX_PERFCOUNTER2_HI 0x3245
+#define regSX_PERFCOUNTER2_HI_BASE_IDX 1
+#define regSX_PERFCOUNTER3_LO 0x3246
+#define regSX_PERFCOUNTER3_LO_BASE_IDX 1
+#define regSX_PERFCOUNTER3_HI 0x3247
+#define regSX_PERFCOUNTER3_HI_BASE_IDX 1
+#define regGDS_PERFCOUNTER0_LO 0x3280
+#define regGDS_PERFCOUNTER0_LO_BASE_IDX 1
+#define regGDS_PERFCOUNTER0_HI 0x3281
+#define regGDS_PERFCOUNTER0_HI_BASE_IDX 1
+#define regGDS_PERFCOUNTER1_LO 0x3282
+#define regGDS_PERFCOUNTER1_LO_BASE_IDX 1
+#define regGDS_PERFCOUNTER1_HI 0x3283
+#define regGDS_PERFCOUNTER1_HI_BASE_IDX 1
+#define regGDS_PERFCOUNTER2_LO 0x3284
+#define regGDS_PERFCOUNTER2_LO_BASE_IDX 1
+#define regGDS_PERFCOUNTER2_HI 0x3285
+#define regGDS_PERFCOUNTER2_HI_BASE_IDX 1
+#define regGDS_PERFCOUNTER3_LO 0x3286
+#define regGDS_PERFCOUNTER3_LO_BASE_IDX 1
+#define regGDS_PERFCOUNTER3_HI 0x3287
+#define regGDS_PERFCOUNTER3_HI_BASE_IDX 1
+#define regTA_PERFCOUNTER0_LO 0x32c0
+#define regTA_PERFCOUNTER0_LO_BASE_IDX 1
+#define regTA_PERFCOUNTER0_HI 0x32c1
+#define regTA_PERFCOUNTER0_HI_BASE_IDX 1
+#define regTA_PERFCOUNTER1_LO 0x32c2
+#define regTA_PERFCOUNTER1_LO_BASE_IDX 1
+#define regTA_PERFCOUNTER1_HI 0x32c3
+#define regTA_PERFCOUNTER1_HI_BASE_IDX 1
+#define regTD_PERFCOUNTER0_LO 0x3300
+#define regTD_PERFCOUNTER0_LO_BASE_IDX 1
+#define regTD_PERFCOUNTER0_HI 0x3301
+#define regTD_PERFCOUNTER0_HI_BASE_IDX 1
+#define regTD_PERFCOUNTER1_LO 0x3302
+#define regTD_PERFCOUNTER1_LO_BASE_IDX 1
+#define regTD_PERFCOUNTER1_HI 0x3303
+#define regTD_PERFCOUNTER1_HI_BASE_IDX 1
+#define regTCP_PERFCOUNTER0_LO 0x3340
+#define regTCP_PERFCOUNTER0_LO_BASE_IDX 1
+#define regTCP_PERFCOUNTER0_HI 0x3341
+#define regTCP_PERFCOUNTER0_HI_BASE_IDX 1
+#define regTCP_PERFCOUNTER1_LO 0x3342
+#define regTCP_PERFCOUNTER1_LO_BASE_IDX 1
+#define regTCP_PERFCOUNTER1_HI 0x3343
+#define regTCP_PERFCOUNTER1_HI_BASE_IDX 1
+#define regTCP_PERFCOUNTER2_LO 0x3344
+#define regTCP_PERFCOUNTER2_LO_BASE_IDX 1
+#define regTCP_PERFCOUNTER2_HI 0x3345
+#define regTCP_PERFCOUNTER2_HI_BASE_IDX 1
+#define regTCP_PERFCOUNTER3_LO 0x3346
+#define regTCP_PERFCOUNTER3_LO_BASE_IDX 1
+#define regTCP_PERFCOUNTER3_HI 0x3347
+#define regTCP_PERFCOUNTER3_HI_BASE_IDX 1
+#define regTCC_PERFCOUNTER0_LO 0x3380
+#define regTCC_PERFCOUNTER0_LO_BASE_IDX 1
+#define regTCC_PERFCOUNTER0_HI 0x3381
+#define regTCC_PERFCOUNTER0_HI_BASE_IDX 1
+#define regTCC_PERFCOUNTER1_LO 0x3382
+#define regTCC_PERFCOUNTER1_LO_BASE_IDX 1
+#define regTCC_PERFCOUNTER1_HI 0x3383
+#define regTCC_PERFCOUNTER1_HI_BASE_IDX 1
+#define regTCC_PERFCOUNTER2_LO 0x3384
+#define regTCC_PERFCOUNTER2_LO_BASE_IDX 1
+#define regTCC_PERFCOUNTER2_HI 0x3385
+#define regTCC_PERFCOUNTER2_HI_BASE_IDX 1
+#define regTCC_PERFCOUNTER3_LO 0x3386
+#define regTCC_PERFCOUNTER3_LO_BASE_IDX 1
+#define regTCC_PERFCOUNTER3_HI 0x3387
+#define regTCC_PERFCOUNTER3_HI_BASE_IDX 1
+#define regTCA_PERFCOUNTER0_LO 0x3390
+#define regTCA_PERFCOUNTER0_LO_BASE_IDX 1
+#define regTCA_PERFCOUNTER0_HI 0x3391
+#define regTCA_PERFCOUNTER0_HI_BASE_IDX 1
+#define regTCA_PERFCOUNTER1_LO 0x3392
+#define regTCA_PERFCOUNTER1_LO_BASE_IDX 1
+#define regTCA_PERFCOUNTER1_HI 0x3393
+#define regTCA_PERFCOUNTER1_HI_BASE_IDX 1
+#define regTCA_PERFCOUNTER2_LO 0x3394
+#define regTCA_PERFCOUNTER2_LO_BASE_IDX 1
+#define regTCA_PERFCOUNTER2_HI 0x3395
+#define regTCA_PERFCOUNTER2_HI_BASE_IDX 1
+#define regTCA_PERFCOUNTER3_LO 0x3396
+#define regTCA_PERFCOUNTER3_LO_BASE_IDX 1
+#define regTCA_PERFCOUNTER3_HI 0x3397
+#define regTCA_PERFCOUNTER3_HI_BASE_IDX 1
+#define regCB_PERFCOUNTER0_LO 0x3406
+#define regCB_PERFCOUNTER0_LO_BASE_IDX 1
+#define regCB_PERFCOUNTER0_HI 0x3407
+#define regCB_PERFCOUNTER0_HI_BASE_IDX 1
+#define regCB_PERFCOUNTER1_LO 0x3408
+#define regCB_PERFCOUNTER1_LO_BASE_IDX 1
+#define regCB_PERFCOUNTER1_HI 0x3409
+#define regCB_PERFCOUNTER1_HI_BASE_IDX 1
+#define regCB_PERFCOUNTER2_LO 0x340a
+#define regCB_PERFCOUNTER2_LO_BASE_IDX 1
+#define regCB_PERFCOUNTER2_HI 0x340b
+#define regCB_PERFCOUNTER2_HI_BASE_IDX 1
+#define regCB_PERFCOUNTER3_LO 0x340c
+#define regCB_PERFCOUNTER3_LO_BASE_IDX 1
+#define regCB_PERFCOUNTER3_HI 0x340d
+#define regCB_PERFCOUNTER3_HI_BASE_IDX 1
+#define regDB_PERFCOUNTER0_LO 0x3440
+#define regDB_PERFCOUNTER0_LO_BASE_IDX 1
+#define regDB_PERFCOUNTER0_HI 0x3441
+#define regDB_PERFCOUNTER0_HI_BASE_IDX 1
+#define regDB_PERFCOUNTER1_LO 0x3442
+#define regDB_PERFCOUNTER1_LO_BASE_IDX 1
+#define regDB_PERFCOUNTER1_HI 0x3443
+#define regDB_PERFCOUNTER1_HI_BASE_IDX 1
+#define regDB_PERFCOUNTER2_LO 0x3444
+#define regDB_PERFCOUNTER2_LO_BASE_IDX 1
+#define regDB_PERFCOUNTER2_HI 0x3445
+#define regDB_PERFCOUNTER2_HI_BASE_IDX 1
+#define regDB_PERFCOUNTER3_LO 0x3446
+#define regDB_PERFCOUNTER3_LO_BASE_IDX 1
+#define regDB_PERFCOUNTER3_HI 0x3447
+#define regDB_PERFCOUNTER3_HI_BASE_IDX 1
+#define regRLC_PERFCOUNTER0_LO 0x3480
+#define regRLC_PERFCOUNTER0_LO_BASE_IDX 1
+#define regRLC_PERFCOUNTER0_HI 0x3481
+#define regRLC_PERFCOUNTER0_HI_BASE_IDX 1
+#define regRLC_PERFCOUNTER1_LO 0x3482
+#define regRLC_PERFCOUNTER1_LO_BASE_IDX 1
+#define regRLC_PERFCOUNTER1_HI 0x3483
+#define regRLC_PERFCOUNTER1_HI_BASE_IDX 1
+#define regRMI_PERFCOUNTER0_LO 0x34c0
+#define regRMI_PERFCOUNTER0_LO_BASE_IDX 1
+#define regRMI_PERFCOUNTER0_HI 0x34c1
+#define regRMI_PERFCOUNTER0_HI_BASE_IDX 1
+#define regRMI_PERFCOUNTER1_LO 0x34c2
+#define regRMI_PERFCOUNTER1_LO_BASE_IDX 1
+#define regRMI_PERFCOUNTER1_HI 0x34c3
+#define regRMI_PERFCOUNTER1_HI_BASE_IDX 1
+#define regRMI_PERFCOUNTER2_LO 0x34c4
+#define regRMI_PERFCOUNTER2_LO_BASE_IDX 1
+#define regRMI_PERFCOUNTER2_HI 0x34c5
+#define regRMI_PERFCOUNTER2_HI_BASE_IDX 1
+#define regRMI_PERFCOUNTER3_LO 0x34c6
+#define regRMI_PERFCOUNTER3_LO_BASE_IDX 1
+#define regRMI_PERFCOUNTER3_HI 0x34c7
+#define regRMI_PERFCOUNTER3_HI_BASE_IDX 1
+
+
+// addressBlock: xcd0_gc_utcl2_atcl2pfcntrdec
+// base address: 0x35400
+#define regATC_L2_PERFCOUNTER_LO 0x3500
+#define regATC_L2_PERFCOUNTER_LO_BASE_IDX 1
+#define regATC_L2_PERFCOUNTER_HI 0x3501
+#define regATC_L2_PERFCOUNTER_HI_BASE_IDX 1
+
+
+// addressBlock: xcd0_gc_utcl2_vml2prdec
+// base address: 0x35408
+#define regMC_VM_L2_PERFCOUNTER_LO 0x3502
+#define regMC_VM_L2_PERFCOUNTER_LO_BASE_IDX 1
+#define regMC_VM_L2_PERFCOUNTER_HI 0x3503
+#define regMC_VM_L2_PERFCOUNTER_HI_BASE_IDX 1
+
+
+// addressBlock: xcd0_gc_utcl2_l2tlbprdec
+// base address: 0x35448
+#define regL2TLB_PERFCOUNTER_LO 0x3512
+#define regL2TLB_PERFCOUNTER_LO_BASE_IDX 1
+#define regL2TLB_PERFCOUNTER_HI 0x3513
+#define regL2TLB_PERFCOUNTER_HI_BASE_IDX 1
+
+
+// addressBlock: xcd0_gc_perfsdec
+// base address: 0x36000
+#define regCPG_PERFCOUNTER1_SELECT 0x3800
+#define regCPG_PERFCOUNTER1_SELECT_BASE_IDX 1
+#define regCPG_PERFCOUNTER0_SELECT1 0x3801
+#define regCPG_PERFCOUNTER0_SELECT1_BASE_IDX 1
+#define regCPG_PERFCOUNTER0_SELECT 0x3802
+#define regCPG_PERFCOUNTER0_SELECT_BASE_IDX 1
+#define regCPC_PERFCOUNTER1_SELECT 0x3803
+#define regCPC_PERFCOUNTER1_SELECT_BASE_IDX 1
+#define regCPC_PERFCOUNTER0_SELECT1 0x3804
+#define regCPC_PERFCOUNTER0_SELECT1_BASE_IDX 1
+#define regCPF_PERFCOUNTER1_SELECT 0x3805
+#define regCPF_PERFCOUNTER1_SELECT_BASE_IDX 1
+#define regCPF_PERFCOUNTER0_SELECT1 0x3806
+#define regCPF_PERFCOUNTER0_SELECT1_BASE_IDX 1
+#define regCPF_PERFCOUNTER0_SELECT 0x3807
+#define regCPF_PERFCOUNTER0_SELECT_BASE_IDX 1
+#define regCP_PERFMON_CNTL 0x3808
+#define regCP_PERFMON_CNTL_BASE_IDX 1
+#define regCPC_PERFCOUNTER0_SELECT 0x3809
+#define regCPC_PERFCOUNTER0_SELECT_BASE_IDX 1
+#define regCPF_TC_PERF_COUNTER_WINDOW_SELECT 0x380a
+#define regCPF_TC_PERF_COUNTER_WINDOW_SELECT_BASE_IDX 1
+#define regCPG_TC_PERF_COUNTER_WINDOW_SELECT 0x380b
+#define regCPG_TC_PERF_COUNTER_WINDOW_SELECT_BASE_IDX 1
+#define regCPF_LATENCY_STATS_SELECT 0x380c
+#define regCPF_LATENCY_STATS_SELECT_BASE_IDX 1
+#define regCPG_LATENCY_STATS_SELECT 0x380d
+#define regCPG_LATENCY_STATS_SELECT_BASE_IDX 1
+#define regCPC_LATENCY_STATS_SELECT 0x380e
+#define regCPC_LATENCY_STATS_SELECT_BASE_IDX 1
+#define regCP_DRAW_OBJECT 0x3810
+#define regCP_DRAW_OBJECT_BASE_IDX 1
+#define regCP_DRAW_OBJECT_COUNTER 0x3811
+#define regCP_DRAW_OBJECT_COUNTER_BASE_IDX 1
+#define regCP_DRAW_WINDOW_MASK_HI 0x3812
+#define regCP_DRAW_WINDOW_MASK_HI_BASE_IDX 1
+#define regCP_DRAW_WINDOW_HI 0x3813
+#define regCP_DRAW_WINDOW_HI_BASE_IDX 1
+#define regCP_DRAW_WINDOW_LO 0x3814
+#define regCP_DRAW_WINDOW_LO_BASE_IDX 1
+#define regCP_DRAW_WINDOW_CNTL 0x3815
+#define regCP_DRAW_WINDOW_CNTL_BASE_IDX 1
+#define regGRBM_PERFCOUNTER0_SELECT 0x3840
+#define regGRBM_PERFCOUNTER0_SELECT_BASE_IDX 1
+#define regGRBM_PERFCOUNTER1_SELECT 0x3841
+#define regGRBM_PERFCOUNTER1_SELECT_BASE_IDX 1
+#define regGRBM_SE0_PERFCOUNTER_SELECT 0x3842
+#define regGRBM_SE0_PERFCOUNTER_SELECT_BASE_IDX 1
+#define regGRBM_SE1_PERFCOUNTER_SELECT 0x3843
+#define regGRBM_SE1_PERFCOUNTER_SELECT_BASE_IDX 1
+#define regGRBM_SE2_PERFCOUNTER_SELECT 0x3844
+#define regGRBM_SE2_PERFCOUNTER_SELECT_BASE_IDX 1
+#define regGRBM_SE3_PERFCOUNTER_SELECT 0x3845
+#define regGRBM_SE3_PERFCOUNTER_SELECT_BASE_IDX 1
+#define regWD_PERFCOUNTER0_SELECT 0x3880
+#define regWD_PERFCOUNTER0_SELECT_BASE_IDX 1
+#define regWD_PERFCOUNTER1_SELECT 0x3881
+#define regWD_PERFCOUNTER1_SELECT_BASE_IDX 1
+#define regWD_PERFCOUNTER2_SELECT 0x3882
+#define regWD_PERFCOUNTER2_SELECT_BASE_IDX 1
+#define regWD_PERFCOUNTER3_SELECT 0x3883
+#define regWD_PERFCOUNTER3_SELECT_BASE_IDX 1
+#define regIA_PERFCOUNTER0_SELECT 0x3884
+#define regIA_PERFCOUNTER0_SELECT_BASE_IDX 1
+#define regIA_PERFCOUNTER1_SELECT 0x3885
+#define regIA_PERFCOUNTER1_SELECT_BASE_IDX 1
+#define regIA_PERFCOUNTER2_SELECT 0x3886
+#define regIA_PERFCOUNTER2_SELECT_BASE_IDX 1
+#define regIA_PERFCOUNTER3_SELECT 0x3887
+#define regIA_PERFCOUNTER3_SELECT_BASE_IDX 1
+#define regIA_PERFCOUNTER0_SELECT1 0x3888
+#define regIA_PERFCOUNTER0_SELECT1_BASE_IDX 1
+#define regVGT_PERFCOUNTER0_SELECT 0x388c
+#define regVGT_PERFCOUNTER0_SELECT_BASE_IDX 1
+#define regVGT_PERFCOUNTER1_SELECT 0x388d
+#define regVGT_PERFCOUNTER1_SELECT_BASE_IDX 1
+#define regVGT_PERFCOUNTER2_SELECT 0x388e
+#define regVGT_PERFCOUNTER2_SELECT_BASE_IDX 1
+#define regVGT_PERFCOUNTER3_SELECT 0x388f
+#define regVGT_PERFCOUNTER3_SELECT_BASE_IDX 1
+#define regVGT_PERFCOUNTER0_SELECT1 0x3890
+#define regVGT_PERFCOUNTER0_SELECT1_BASE_IDX 1
+#define regVGT_PERFCOUNTER1_SELECT1 0x3891
+#define regVGT_PERFCOUNTER1_SELECT1_BASE_IDX 1
+#define regVGT_PERFCOUNTER_SEID_MASK 0x3894
+#define regVGT_PERFCOUNTER_SEID_MASK_BASE_IDX 1
+#define regPA_SU_PERFCOUNTER0_SELECT 0x3900
+#define regPA_SU_PERFCOUNTER0_SELECT_BASE_IDX 1
+#define regPA_SU_PERFCOUNTER0_SELECT1 0x3901
+#define regPA_SU_PERFCOUNTER0_SELECT1_BASE_IDX 1
+#define regPA_SU_PERFCOUNTER1_SELECT 0x3902
+#define regPA_SU_PERFCOUNTER1_SELECT_BASE_IDX 1
+#define regPA_SU_PERFCOUNTER1_SELECT1 0x3903
+#define regPA_SU_PERFCOUNTER1_SELECT1_BASE_IDX 1
+#define regPA_SU_PERFCOUNTER2_SELECT 0x3904
+#define regPA_SU_PERFCOUNTER2_SELECT_BASE_IDX 1
+#define regPA_SU_PERFCOUNTER3_SELECT 0x3905
+#define regPA_SU_PERFCOUNTER3_SELECT_BASE_IDX 1
+#define regPA_SC_PERFCOUNTER0_SELECT 0x3940
+#define regPA_SC_PERFCOUNTER0_SELECT_BASE_IDX 1
+#define regPA_SC_PERFCOUNTER0_SELECT1 0x3941
+#define regPA_SC_PERFCOUNTER0_SELECT1_BASE_IDX 1
+#define regPA_SC_PERFCOUNTER1_SELECT 0x3942
+#define regPA_SC_PERFCOUNTER1_SELECT_BASE_IDX 1
+#define regPA_SC_PERFCOUNTER2_SELECT 0x3943
+#define regPA_SC_PERFCOUNTER2_SELECT_BASE_IDX 1
+#define regPA_SC_PERFCOUNTER3_SELECT 0x3944
+#define regPA_SC_PERFCOUNTER3_SELECT_BASE_IDX 1
+#define regPA_SC_PERFCOUNTER4_SELECT 0x3945
+#define regPA_SC_PERFCOUNTER4_SELECT_BASE_IDX 1
+#define regPA_SC_PERFCOUNTER5_SELECT 0x3946
+#define regPA_SC_PERFCOUNTER5_SELECT_BASE_IDX 1
+#define regPA_SC_PERFCOUNTER6_SELECT 0x3947
+#define regPA_SC_PERFCOUNTER6_SELECT_BASE_IDX 1
+#define regPA_SC_PERFCOUNTER7_SELECT 0x3948
+#define regPA_SC_PERFCOUNTER7_SELECT_BASE_IDX 1
+#define regSPI_PERFCOUNTER0_SELECT 0x3980
+#define regSPI_PERFCOUNTER0_SELECT_BASE_IDX 1
+#define regSPI_PERFCOUNTER1_SELECT 0x3981
+#define regSPI_PERFCOUNTER1_SELECT_BASE_IDX 1
+#define regSPI_PERFCOUNTER2_SELECT 0x3982
+#define regSPI_PERFCOUNTER2_SELECT_BASE_IDX 1
+#define regSPI_PERFCOUNTER3_SELECT 0x3983
+#define regSPI_PERFCOUNTER3_SELECT_BASE_IDX 1
+#define regSPI_PERFCOUNTER0_SELECT1 0x3984
+#define regSPI_PERFCOUNTER0_SELECT1_BASE_IDX 1
+#define regSPI_PERFCOUNTER1_SELECT1 0x3985
+#define regSPI_PERFCOUNTER1_SELECT1_BASE_IDX 1
+#define regSPI_PERFCOUNTER2_SELECT1 0x3986
+#define regSPI_PERFCOUNTER2_SELECT1_BASE_IDX 1
+#define regSPI_PERFCOUNTER3_SELECT1 0x3987
+#define regSPI_PERFCOUNTER3_SELECT1_BASE_IDX 1
+#define regSPI_PERFCOUNTER4_SELECT 0x3988
+#define regSPI_PERFCOUNTER4_SELECT_BASE_IDX 1
+#define regSPI_PERFCOUNTER5_SELECT 0x3989
+#define regSPI_PERFCOUNTER5_SELECT_BASE_IDX 1
+#define regSPI_PERFCOUNTER_BINS 0x398a
+#define regSPI_PERFCOUNTER_BINS_BASE_IDX 1
+#define regSQ_PERFCOUNTER0_SELECT 0x39c0
+#define regSQ_PERFCOUNTER0_SELECT_BASE_IDX 1
+#define regSQ_PERFCOUNTER1_SELECT 0x39c1
+#define regSQ_PERFCOUNTER1_SELECT_BASE_IDX 1
+#define regSQ_PERFCOUNTER2_SELECT 0x39c2
+#define regSQ_PERFCOUNTER2_SELECT_BASE_IDX 1
+#define regSQ_PERFCOUNTER3_SELECT 0x39c3
+#define regSQ_PERFCOUNTER3_SELECT_BASE_IDX 1
+#define regSQ_PERFCOUNTER4_SELECT 0x39c4
+#define regSQ_PERFCOUNTER4_SELECT_BASE_IDX 1
+#define regSQ_PERFCOUNTER5_SELECT 0x39c5
+#define regSQ_PERFCOUNTER5_SELECT_BASE_IDX 1
+#define regSQ_PERFCOUNTER6_SELECT 0x39c6
+#define regSQ_PERFCOUNTER6_SELECT_BASE_IDX 1
+#define regSQ_PERFCOUNTER7_SELECT 0x39c7
+#define regSQ_PERFCOUNTER7_SELECT_BASE_IDX 1
+#define regSQ_PERFCOUNTER8_SELECT 0x39c8
+#define regSQ_PERFCOUNTER8_SELECT_BASE_IDX 1
+#define regSQ_PERFCOUNTER9_SELECT 0x39c9
+#define regSQ_PERFCOUNTER9_SELECT_BASE_IDX 1
+#define regSQ_PERFCOUNTER10_SELECT 0x39ca
+#define regSQ_PERFCOUNTER10_SELECT_BASE_IDX 1
+#define regSQ_PERFCOUNTER11_SELECT 0x39cb
+#define regSQ_PERFCOUNTER11_SELECT_BASE_IDX 1
+#define regSQ_PERFCOUNTER12_SELECT 0x39cc
+#define regSQ_PERFCOUNTER12_SELECT_BASE_IDX 1
+#define regSQ_PERFCOUNTER13_SELECT 0x39cd
+#define regSQ_PERFCOUNTER13_SELECT_BASE_IDX 1
+#define regSQ_PERFCOUNTER14_SELECT 0x39ce
+#define regSQ_PERFCOUNTER14_SELECT_BASE_IDX 1
+#define regSQ_PERFCOUNTER15_SELECT 0x39cf
+#define regSQ_PERFCOUNTER15_SELECT_BASE_IDX 1
+#define regSQ_PERFCOUNTER_CTRL 0x39e0
+#define regSQ_PERFCOUNTER_CTRL_BASE_IDX 1
+#define regSQ_PERFCOUNTER_MASK 0x39e1
+#define regSQ_PERFCOUNTER_MASK_BASE_IDX 1
+#define regSQ_PERFCOUNTER_CTRL2 0x39e2
+#define regSQ_PERFCOUNTER_CTRL2_BASE_IDX 1
+#define regSX_PERFCOUNTER0_SELECT 0x3a40
+#define regSX_PERFCOUNTER0_SELECT_BASE_IDX 1
+#define regSX_PERFCOUNTER1_SELECT 0x3a41
+#define regSX_PERFCOUNTER1_SELECT_BASE_IDX 1
+#define regSX_PERFCOUNTER2_SELECT 0x3a42
+#define regSX_PERFCOUNTER2_SELECT_BASE_IDX 1
+#define regSX_PERFCOUNTER3_SELECT 0x3a43
+#define regSX_PERFCOUNTER3_SELECT_BASE_IDX 1
+#define regSX_PERFCOUNTER0_SELECT1 0x3a44
+#define regSX_PERFCOUNTER0_SELECT1_BASE_IDX 1
+#define regSX_PERFCOUNTER1_SELECT1 0x3a45
+#define regSX_PERFCOUNTER1_SELECT1_BASE_IDX 1
+#define regGDS_PERFCOUNTER0_SELECT 0x3a80
+#define regGDS_PERFCOUNTER0_SELECT_BASE_IDX 1
+#define regGDS_PERFCOUNTER1_SELECT 0x3a81
+#define regGDS_PERFCOUNTER1_SELECT_BASE_IDX 1
+#define regGDS_PERFCOUNTER2_SELECT 0x3a82
+#define regGDS_PERFCOUNTER2_SELECT_BASE_IDX 1
+#define regGDS_PERFCOUNTER3_SELECT 0x3a83
+#define regGDS_PERFCOUNTER3_SELECT_BASE_IDX 1
+#define regGDS_PERFCOUNTER0_SELECT1 0x3a84
+#define regGDS_PERFCOUNTER0_SELECT1_BASE_IDX 1
+#define regTA_PERFCOUNTER0_SELECT 0x3ac0
+#define regTA_PERFCOUNTER0_SELECT_BASE_IDX 1
+#define regTA_PERFCOUNTER0_SELECT1 0x3ac1
+#define regTA_PERFCOUNTER0_SELECT1_BASE_IDX 1
+#define regTA_PERFCOUNTER1_SELECT 0x3ac2
+#define regTA_PERFCOUNTER1_SELECT_BASE_IDX 1
+#define regTD_PERFCOUNTER0_SELECT 0x3b00
+#define regTD_PERFCOUNTER0_SELECT_BASE_IDX 1
+#define regTD_PERFCOUNTER0_SELECT1 0x3b01
+#define regTD_PERFCOUNTER0_SELECT1_BASE_IDX 1
+#define regTD_PERFCOUNTER1_SELECT 0x3b02
+#define regTD_PERFCOUNTER1_SELECT_BASE_IDX 1
+#define regTCP_PERFCOUNTER0_SELECT 0x3b40
+#define regTCP_PERFCOUNTER0_SELECT_BASE_IDX 1
+#define regTCP_PERFCOUNTER0_SELECT1 0x3b41
+#define regTCP_PERFCOUNTER0_SELECT1_BASE_IDX 1
+#define regTCP_PERFCOUNTER1_SELECT 0x3b42
+#define regTCP_PERFCOUNTER1_SELECT_BASE_IDX 1
+#define regTCP_PERFCOUNTER1_SELECT1 0x3b43
+#define regTCP_PERFCOUNTER1_SELECT1_BASE_IDX 1
+#define regTCP_PERFCOUNTER2_SELECT 0x3b44
+#define regTCP_PERFCOUNTER2_SELECT_BASE_IDX 1
+#define regTCP_PERFCOUNTER3_SELECT 0x3b45
+#define regTCP_PERFCOUNTER3_SELECT_BASE_IDX 1
+#define regTCC_PERFCOUNTER0_SELECT 0x3b80
+#define regTCC_PERFCOUNTER0_SELECT_BASE_IDX 1
+#define regTCC_PERFCOUNTER0_SELECT1 0x3b81
+#define regTCC_PERFCOUNTER0_SELECT1_BASE_IDX 1
+#define regTCC_PERFCOUNTER1_SELECT 0x3b82
+#define regTCC_PERFCOUNTER1_SELECT_BASE_IDX 1
+#define regTCC_PERFCOUNTER1_SELECT1 0x3b83
+#define regTCC_PERFCOUNTER1_SELECT1_BASE_IDX 1
+#define regTCC_PERFCOUNTER2_SELECT 0x3b84
+#define regTCC_PERFCOUNTER2_SELECT_BASE_IDX 1
+#define regTCC_PERFCOUNTER3_SELECT 0x3b85
+#define regTCC_PERFCOUNTER3_SELECT_BASE_IDX 1
+#define regTCA_PERFCOUNTER0_SELECT 0x3b90
+#define regTCA_PERFCOUNTER0_SELECT_BASE_IDX 1
+#define regTCA_PERFCOUNTER0_SELECT1 0x3b91
+#define regTCA_PERFCOUNTER0_SELECT1_BASE_IDX 1
+#define regTCA_PERFCOUNTER1_SELECT 0x3b92
+#define regTCA_PERFCOUNTER1_SELECT_BASE_IDX 1
+#define regTCA_PERFCOUNTER1_SELECT1 0x3b93
+#define regTCA_PERFCOUNTER1_SELECT1_BASE_IDX 1
+#define regTCA_PERFCOUNTER2_SELECT 0x3b94
+#define regTCA_PERFCOUNTER2_SELECT_BASE_IDX 1
+#define regTCA_PERFCOUNTER3_SELECT 0x3b95
+#define regTCA_PERFCOUNTER3_SELECT_BASE_IDX 1
+#define regCB_PERFCOUNTER_FILTER 0x3c00
+#define regCB_PERFCOUNTER_FILTER_BASE_IDX 1
+#define regCB_PERFCOUNTER0_SELECT 0x3c01
+#define regCB_PERFCOUNTER0_SELECT_BASE_IDX 1
+#define regCB_PERFCOUNTER0_SELECT1 0x3c02
+#define regCB_PERFCOUNTER0_SELECT1_BASE_IDX 1
+#define regCB_PERFCOUNTER1_SELECT 0x3c03
+#define regCB_PERFCOUNTER1_SELECT_BASE_IDX 1
+#define regCB_PERFCOUNTER2_SELECT 0x3c04
+#define regCB_PERFCOUNTER2_SELECT_BASE_IDX 1
+#define regCB_PERFCOUNTER3_SELECT 0x3c05
+#define regCB_PERFCOUNTER3_SELECT_BASE_IDX 1
+#define regDB_PERFCOUNTER0_SELECT 0x3c40
+#define regDB_PERFCOUNTER0_SELECT_BASE_IDX 1
+#define regDB_PERFCOUNTER0_SELECT1 0x3c41
+#define regDB_PERFCOUNTER0_SELECT1_BASE_IDX 1
+#define regDB_PERFCOUNTER1_SELECT 0x3c42
+#define regDB_PERFCOUNTER1_SELECT_BASE_IDX 1
+#define regDB_PERFCOUNTER1_SELECT1 0x3c43
+#define regDB_PERFCOUNTER1_SELECT1_BASE_IDX 1
+#define regDB_PERFCOUNTER2_SELECT 0x3c44
+#define regDB_PERFCOUNTER2_SELECT_BASE_IDX 1
+#define regDB_PERFCOUNTER3_SELECT 0x3c46
+#define regDB_PERFCOUNTER3_SELECT_BASE_IDX 1
+#define regRLC_SPM_PERFMON_CNTL 0x3c80
+#define regRLC_SPM_PERFMON_CNTL_BASE_IDX 1
+#define regRLC_SPM_PERFMON_RING_BASE_LO 0x3c81
+#define regRLC_SPM_PERFMON_RING_BASE_LO_BASE_IDX 1
+#define regRLC_SPM_PERFMON_RING_BASE_HI 0x3c82
+#define regRLC_SPM_PERFMON_RING_BASE_HI_BASE_IDX 1
+#define regRLC_SPM_PERFMON_RING_SIZE 0x3c83
+#define regRLC_SPM_PERFMON_RING_SIZE_BASE_IDX 1
+#define regRLC_SPM_PERFMON_SEGMENT_SIZE 0x3c84
+#define regRLC_SPM_PERFMON_SEGMENT_SIZE_BASE_IDX 1
+#define regRLC_SPM_SE_MUXSEL_ADDR 0x3c85
+#define regRLC_SPM_SE_MUXSEL_ADDR_BASE_IDX 1
+#define regRLC_SPM_SE_MUXSEL_DATA 0x3c86
+#define regRLC_SPM_SE_MUXSEL_DATA_BASE_IDX 1
+#define regRLC_SPM_CPG_PERFMON_SAMPLE_DELAY 0x3c87
+#define regRLC_SPM_CPG_PERFMON_SAMPLE_DELAY_BASE_IDX 1
+#define regRLC_SPM_CPC_PERFMON_SAMPLE_DELAY 0x3c88
+#define regRLC_SPM_CPC_PERFMON_SAMPLE_DELAY_BASE_IDX 1
+#define regRLC_SPM_CPF_PERFMON_SAMPLE_DELAY 0x3c89
+#define regRLC_SPM_CPF_PERFMON_SAMPLE_DELAY_BASE_IDX 1
+#define regRLC_SPM_CB_PERFMON_SAMPLE_DELAY 0x3c8a
+#define regRLC_SPM_CB_PERFMON_SAMPLE_DELAY_BASE_IDX 1
+#define regRLC_SPM_DB_PERFMON_SAMPLE_DELAY 0x3c8b
+#define regRLC_SPM_DB_PERFMON_SAMPLE_DELAY_BASE_IDX 1
+#define regRLC_SPM_PA_PERFMON_SAMPLE_DELAY 0x3c8c
+#define regRLC_SPM_PA_PERFMON_SAMPLE_DELAY_BASE_IDX 1
+#define regRLC_SPM_GDS_PERFMON_SAMPLE_DELAY 0x3c8d
+#define regRLC_SPM_GDS_PERFMON_SAMPLE_DELAY_BASE_IDX 1
+#define regRLC_SPM_IA_PERFMON_SAMPLE_DELAY 0x3c8e
+#define regRLC_SPM_IA_PERFMON_SAMPLE_DELAY_BASE_IDX 1
+#define regRLC_SPM_SC_PERFMON_SAMPLE_DELAY 0x3c90
+#define regRLC_SPM_SC_PERFMON_SAMPLE_DELAY_BASE_IDX 1
+#define regRLC_SPM_TCC_PERFMON_SAMPLE_DELAY 0x3c91
+#define regRLC_SPM_TCC_PERFMON_SAMPLE_DELAY_BASE_IDX 1
+#define regRLC_SPM_TCA_PERFMON_SAMPLE_DELAY 0x3c92
+#define regRLC_SPM_TCA_PERFMON_SAMPLE_DELAY_BASE_IDX 1
+#define regRLC_SPM_TCP_PERFMON_SAMPLE_DELAY 0x3c93
+#define regRLC_SPM_TCP_PERFMON_SAMPLE_DELAY_BASE_IDX 1
+#define regRLC_SPM_TA_PERFMON_SAMPLE_DELAY 0x3c94
+#define regRLC_SPM_TA_PERFMON_SAMPLE_DELAY_BASE_IDX 1
+#define regRLC_SPM_TD_PERFMON_SAMPLE_DELAY 0x3c95
+#define regRLC_SPM_TD_PERFMON_SAMPLE_DELAY_BASE_IDX 1
+#define regRLC_SPM_VGT_PERFMON_SAMPLE_DELAY 0x3c96
+#define regRLC_SPM_VGT_PERFMON_SAMPLE_DELAY_BASE_IDX 1
+#define regRLC_SPM_SPI_PERFMON_SAMPLE_DELAY 0x3c97
+#define regRLC_SPM_SPI_PERFMON_SAMPLE_DELAY_BASE_IDX 1
+#define regRLC_SPM_SQG_PERFMON_SAMPLE_DELAY 0x3c98
+#define regRLC_SPM_SQG_PERFMON_SAMPLE_DELAY_BASE_IDX 1
+#define regRLC_SPM_SX_PERFMON_SAMPLE_DELAY 0x3c9a
+#define regRLC_SPM_SX_PERFMON_SAMPLE_DELAY_BASE_IDX 1
+#define regRLC_SPM_GLOBAL_MUXSEL_ADDR 0x3c9b
+#define regRLC_SPM_GLOBAL_MUXSEL_ADDR_BASE_IDX 1
+#define regRLC_SPM_GLOBAL_MUXSEL_DATA 0x3c9c
+#define regRLC_SPM_GLOBAL_MUXSEL_DATA_BASE_IDX 1
+#define regRLC_SPM_RING_RDPTR 0x3c9d
+#define regRLC_SPM_RING_RDPTR_BASE_IDX 1
+#define regRLC_SPM_SEGMENT_THRESHOLD 0x3c9e
+#define regRLC_SPM_SEGMENT_THRESHOLD_BASE_IDX 1
+#define regRLC_SPM_RMI_PERFMON_SAMPLE_DELAY 0x3ca3
+#define regRLC_SPM_RMI_PERFMON_SAMPLE_DELAY_BASE_IDX 1
+#define regRLC_SPM_PERFMON_SAMPLE_DELAY_MAX 0x3ca4
+#define regRLC_SPM_PERFMON_SAMPLE_DELAY_MAX_BASE_IDX 1
+#define regRLC_PERFMON_CNTL 0x3cc0
+#define regRLC_PERFMON_CNTL_BASE_IDX 1
+#define regRLC_PERFCOUNTER0_SELECT 0x3cc1
+#define regRLC_PERFCOUNTER0_SELECT_BASE_IDX 1
+#define regRLC_PERFCOUNTER1_SELECT 0x3cc2
+#define regRLC_PERFCOUNTER1_SELECT_BASE_IDX 1
+#define regRLC_GPU_IOV_PERF_CNT_CNTL 0x3cc3
+#define regRLC_GPU_IOV_PERF_CNT_CNTL_BASE_IDX 1
+#define regRLC_GPU_IOV_PERF_CNT_WR_ADDR 0x3cc4
+#define regRLC_GPU_IOV_PERF_CNT_WR_ADDR_BASE_IDX 1
+#define regRLC_GPU_IOV_PERF_CNT_WR_DATA 0x3cc5
+#define regRLC_GPU_IOV_PERF_CNT_WR_DATA_BASE_IDX 1
+#define regRLC_GPU_IOV_PERF_CNT_RD_ADDR 0x3cc6
+#define regRLC_GPU_IOV_PERF_CNT_RD_ADDR_BASE_IDX 1
+#define regRLC_GPU_IOV_PERF_CNT_RD_DATA 0x3cc7
+#define regRLC_GPU_IOV_PERF_CNT_RD_DATA_BASE_IDX 1
+#define regRMI_PERFCOUNTER0_SELECT 0x3d00
+#define regRMI_PERFCOUNTER0_SELECT_BASE_IDX 1
+#define regRMI_PERFCOUNTER0_SELECT1 0x3d01
+#define regRMI_PERFCOUNTER0_SELECT1_BASE_IDX 1
+#define regRMI_PERFCOUNTER1_SELECT 0x3d02
+#define regRMI_PERFCOUNTER1_SELECT_BASE_IDX 1
+#define regRMI_PERFCOUNTER2_SELECT 0x3d03
+#define regRMI_PERFCOUNTER2_SELECT_BASE_IDX 1
+#define regRMI_PERFCOUNTER2_SELECT1 0x3d04
+#define regRMI_PERFCOUNTER2_SELECT1_BASE_IDX 1
+#define regRMI_PERFCOUNTER3_SELECT 0x3d05
+#define regRMI_PERFCOUNTER3_SELECT_BASE_IDX 1
+#define regRMI_PERF_COUNTER_CNTL 0x3d06
+#define regRMI_PERF_COUNTER_CNTL_BASE_IDX 1
+
+
+// addressBlock: xcd0_gc_utcl2_atcl2pfcntldec
+// base address: 0x37500
+#define regATC_L2_PERFCOUNTER0_CFG 0x3d40
+#define regATC_L2_PERFCOUNTER0_CFG_BASE_IDX 1
+#define regATC_L2_PERFCOUNTER1_CFG 0x3d41
+#define regATC_L2_PERFCOUNTER1_CFG_BASE_IDX 1
+#define regATC_L2_PERFCOUNTER_RSLT_CNTL 0x3d42
+#define regATC_L2_PERFCOUNTER_RSLT_CNTL_BASE_IDX 1
+
+
+// addressBlock: xcd0_gc_utcl2_vml2pldec
+// base address: 0x37518
+#define regMC_VM_L2_PERFCOUNTER0_CFG 0x3d46
+#define regMC_VM_L2_PERFCOUNTER0_CFG_BASE_IDX 1
+#define regMC_VM_L2_PERFCOUNTER1_CFG 0x3d47
+#define regMC_VM_L2_PERFCOUNTER1_CFG_BASE_IDX 1
+#define regMC_VM_L2_PERFCOUNTER2_CFG 0x3d48
+#define regMC_VM_L2_PERFCOUNTER2_CFG_BASE_IDX 1
+#define regMC_VM_L2_PERFCOUNTER3_CFG 0x3d49
+#define regMC_VM_L2_PERFCOUNTER3_CFG_BASE_IDX 1
+#define regMC_VM_L2_PERFCOUNTER4_CFG 0x3d4a
+#define regMC_VM_L2_PERFCOUNTER4_CFG_BASE_IDX 1
+#define regMC_VM_L2_PERFCOUNTER5_CFG 0x3d4b
+#define regMC_VM_L2_PERFCOUNTER5_CFG_BASE_IDX 1
+#define regMC_VM_L2_PERFCOUNTER6_CFG 0x3d4c
+#define regMC_VM_L2_PERFCOUNTER6_CFG_BASE_IDX 1
+#define regMC_VM_L2_PERFCOUNTER7_CFG 0x3d4d
+#define regMC_VM_L2_PERFCOUNTER7_CFG_BASE_IDX 1
+#define regMC_VM_L2_PERFCOUNTER_RSLT_CNTL 0x3d56
+#define regMC_VM_L2_PERFCOUNTER_RSLT_CNTL_BASE_IDX 1
+
+
+// addressBlock: xcd0_gc_utcl2_l2tlbpldec
+// base address: 0x37578
+#define regL2TLB_PERFCOUNTER0_CFG 0x3d5e
+#define regL2TLB_PERFCOUNTER0_CFG_BASE_IDX 1
+#define regL2TLB_PERFCOUNTER1_CFG 0x3d5f
+#define regL2TLB_PERFCOUNTER1_CFG_BASE_IDX 1
+#define regL2TLB_PERFCOUNTER2_CFG 0x3d60
+#define regL2TLB_PERFCOUNTER2_CFG_BASE_IDX 1
+#define regL2TLB_PERFCOUNTER3_CFG 0x3d61
+#define regL2TLB_PERFCOUNTER3_CFG_BASE_IDX 1
+#define regL2TLB_PERFCOUNTER_RSLT_CNTL 0x3d62
+#define regL2TLB_PERFCOUNTER_RSLT_CNTL_BASE_IDX 1
+
+
+// addressBlock: xcd0_gc_gdflldec
+// base address: 0x3a000
+#define regGDFLL_EDC_HYSTERESIS_CNTL 0x481b
+#define regGDFLL_EDC_HYSTERESIS_CNTL_BASE_IDX 1
+#define regGDFLL_EDC_HYSTERESIS_STAT 0x481c
+#define regGDFLL_EDC_HYSTERESIS_STAT_BASE_IDX 1
+
+
+// addressBlock: xcd0_gc_rlcpdec
+// base address: 0x3b000
+#define regRLC_CNTL 0x4c00
+#define regRLC_CNTL_BASE_IDX 1
+#define regRLC_CGCG_CGLS_CTRL_2 0x4c03
+#define regRLC_CGCG_CGLS_CTRL_2_BASE_IDX 1
+#define regRLC_STAT 0x4c04
+#define regRLC_STAT_BASE_IDX 1
+#define regRLC_SAFE_MODE 0x4c05
+#define regRLC_SAFE_MODE_BASE_IDX 1
+#define regRLC_MEM_SLP_CNTL 0x4c06
+#define regRLC_MEM_SLP_CNTL_BASE_IDX 1
+#define regSMU_RLC_RESPONSE 0x4c07
+#define regSMU_RLC_RESPONSE_BASE_IDX 1
+#define regRLC_RLCV_SAFE_MODE 0x4c08
+#define regRLC_RLCV_SAFE_MODE_BASE_IDX 1
+#define regRLC_SMU_SAFE_MODE 0x4c09
+#define regRLC_SMU_SAFE_MODE_BASE_IDX 1
+#define regRLC_RLCV_COMMAND 0x4c0a
+#define regRLC_RLCV_COMMAND_BASE_IDX 1
+#define regRLC_REFCLOCK_TIMESTAMP_LSB 0x4c0c
+#define regRLC_REFCLOCK_TIMESTAMP_LSB_BASE_IDX 1
+#define regRLC_REFCLOCK_TIMESTAMP_MSB 0x4c0d
+#define regRLC_REFCLOCK_TIMESTAMP_MSB_BASE_IDX 1
+#define regRLC_GPM_TIMER_INT_0 0x4c0e
+#define regRLC_GPM_TIMER_INT_0_BASE_IDX 1
+#define regRLC_GPM_TIMER_INT_1 0x4c0f
+#define regRLC_GPM_TIMER_INT_1_BASE_IDX 1
+#define regRLC_GPM_TIMER_INT_2 0x4c10
+#define regRLC_GPM_TIMER_INT_2_BASE_IDX 1
+#define regRLC_GPM_TIMER_CTRL 0x4c11
+#define regRLC_GPM_TIMER_CTRL_BASE_IDX 1
+#define regRLC_LB_CNTR_MAX 0x4c12
+#define regRLC_LB_CNTR_MAX_BASE_IDX 1
+#define regRLC_GPM_TIMER_STAT 0x4c13
+#define regRLC_GPM_TIMER_STAT_BASE_IDX 1
+#define regRLC_GPM_TIMER_INT_3 0x4c15
+#define regRLC_GPM_TIMER_INT_3_BASE_IDX 1
+#define regRLC_SERDES_WR_NONCU_MASTER_MASK_1 0x4c16
+#define regRLC_SERDES_WR_NONCU_MASTER_MASK_1_BASE_IDX 1
+#define regRLC_SERDES_NONCU_MASTER_BUSY_1 0x4c17
+#define regRLC_SERDES_NONCU_MASTER_BUSY_1_BASE_IDX 1
+#define regRLC_INT_STAT 0x4c18
+#define regRLC_INT_STAT_BASE_IDX 1
+#define regRLC_LB_CNTL 0x4c19
+#define regRLC_LB_CNTL_BASE_IDX 1
+#define regRLC_MGCG_CTRL 0x4c1a
+#define regRLC_MGCG_CTRL_BASE_IDX 1
+#define regRLC_LB_CNTR_INIT 0x4c1b
+#define regRLC_LB_CNTR_INIT_BASE_IDX 1
+#define regRLC_LOAD_BALANCE_CNTR 0x4c1c
+#define regRLC_LOAD_BALANCE_CNTR_BASE_IDX 1
+#define regRLC_JUMP_TABLE_RESTORE 0x4c1e
+#define regRLC_JUMP_TABLE_RESTORE_BASE_IDX 1
+#define regRLC_PG_DELAY_2 0x4c1f
+#define regRLC_PG_DELAY_2_BASE_IDX 1
+#define regRLC_GPU_CLOCK_COUNT_LSB 0x4c24
+#define regRLC_GPU_CLOCK_COUNT_LSB_BASE_IDX 1
+#define regRLC_GPU_CLOCK_COUNT_MSB 0x4c25
+#define regRLC_GPU_CLOCK_COUNT_MSB_BASE_IDX 1
+#define regRLC_CAPTURE_GPU_CLOCK_COUNT 0x4c26
+#define regRLC_CAPTURE_GPU_CLOCK_COUNT_BASE_IDX 1
+#define regRLC_UCODE_CNTL 0x4c27
+#define regRLC_UCODE_CNTL_BASE_IDX 1
+#define regRLC_GPM_THREAD_RESET 0x4c28
+#define regRLC_GPM_THREAD_RESET_BASE_IDX 1
+#define regRLC_GPM_CP_DMA_COMPLETE_T0 0x4c29
+#define regRLC_GPM_CP_DMA_COMPLETE_T0_BASE_IDX 1
+#define regRLC_GPM_CP_DMA_COMPLETE_T1 0x4c2a
+#define regRLC_GPM_CP_DMA_COMPLETE_T1_BASE_IDX 1
+#define regRLC_FIREWALL_VIOLATION 0x4c2b
+#define regRLC_FIREWALL_VIOLATION_BASE_IDX 1
+#define regRLC_CLK_COUNT_GFXCLK_LSB 0x4c30
+#define regRLC_CLK_COUNT_GFXCLK_LSB_BASE_IDX 1
+#define regRLC_CLK_COUNT_GFXCLK_MSB 0x4c31
+#define regRLC_CLK_COUNT_GFXCLK_MSB_BASE_IDX 1
+#define regRLC_CLK_COUNT_REFCLK_LSB 0x4c32
+#define regRLC_CLK_COUNT_REFCLK_LSB_BASE_IDX 1
+#define regRLC_CLK_COUNT_REFCLK_MSB 0x4c33
+#define regRLC_CLK_COUNT_REFCLK_MSB_BASE_IDX 1
+#define regRLC_CLK_COUNT_CTRL 0x4c34
+#define regRLC_CLK_COUNT_CTRL_BASE_IDX 1
+#define regRLC_CLK_COUNT_STAT 0x4c35
+#define regRLC_CLK_COUNT_STAT_BASE_IDX 1
+#define regRLC_GPM_STAT 0x4c40
+#define regRLC_GPM_STAT_BASE_IDX 1
+#define regRLC_GPU_CLOCK_32_RES_SEL 0x4c41
+#define regRLC_GPU_CLOCK_32_RES_SEL_BASE_IDX 1
+#define regRLC_GPU_CLOCK_32 0x4c42
+#define regRLC_GPU_CLOCK_32_BASE_IDX 1
+#define regRLC_PG_CNTL 0x4c43
+#define regRLC_PG_CNTL_BASE_IDX 1
+#define regRLC_GPM_THREAD_PRIORITY 0x4c44
+#define regRLC_GPM_THREAD_PRIORITY_BASE_IDX 1
+#define regRLC_GPM_THREAD_ENABLE 0x4c45
+#define regRLC_GPM_THREAD_ENABLE_BASE_IDX 1
+#define regRLC_CGTT_MGCG_OVERRIDE 0x4c48
+#define regRLC_CGTT_MGCG_OVERRIDE_BASE_IDX 1
+#define regRLC_CGCG_CGLS_CTRL 0x4c49
+#define regRLC_CGCG_CGLS_CTRL_BASE_IDX 1
+#define regRLC_CGCG_RAMP_CTRL 0x4c4a
+#define regRLC_CGCG_RAMP_CTRL_BASE_IDX 1
+#define regRLC_DYN_PG_STATUS 0x4c4b
+#define regRLC_DYN_PG_STATUS_BASE_IDX 1
+#define regRLC_DYN_PG_REQUEST 0x4c4c
+#define regRLC_DYN_PG_REQUEST_BASE_IDX 1
+#define regRLC_PG_DELAY 0x4c4d
+#define regRLC_PG_DELAY_BASE_IDX 1
+#define regRLC_CU_STATUS 0x4c4e
+#define regRLC_CU_STATUS_BASE_IDX 1
+#define regRLC_LB_INIT_CU_MASK 0x4c4f
+#define regRLC_LB_INIT_CU_MASK_BASE_IDX 1
+#define regRLC_LB_ALWAYS_ACTIVE_CU_MASK 0x4c50
+#define regRLC_LB_ALWAYS_ACTIVE_CU_MASK_BASE_IDX 1
+#define regRLC_LB_PARAMS 0x4c51
+#define regRLC_LB_PARAMS_BASE_IDX 1
+#define regRLC_THREAD1_DELAY 0x4c52
+#define regRLC_THREAD1_DELAY_BASE_IDX 1
+#define regRLC_PG_ALWAYS_ON_CU_MASK 0x4c53
+#define regRLC_PG_ALWAYS_ON_CU_MASK_BASE_IDX 1
+#define regRLC_MAX_PG_CU 0x4c54
+#define regRLC_MAX_PG_CU_BASE_IDX 1
+#define regRLC_AUTO_PG_CTRL 0x4c55
+#define regRLC_AUTO_PG_CTRL_BASE_IDX 1
+#define regRLC_SMU_GRBM_REG_SAVE_CTRL 0x4c56
+#define regRLC_SMU_GRBM_REG_SAVE_CTRL_BASE_IDX 1
+#define regRLC_SERDES_RD_PENDING 0x4c58
+#define regRLC_SERDES_RD_PENDING_BASE_IDX 1
+#define regRLC_SERDES_RD_MASTER_INDEX 0x4c59
+#define regRLC_SERDES_RD_MASTER_INDEX_BASE_IDX 1
+#define regRLC_SERDES_RD_DATA_0 0x4c5a
+#define regRLC_SERDES_RD_DATA_0_BASE_IDX 1
+#define regRLC_SERDES_RD_DATA_1 0x4c5b
+#define regRLC_SERDES_RD_DATA_1_BASE_IDX 1
+#define regRLC_SERDES_RD_DATA_2 0x4c5c
+#define regRLC_SERDES_RD_DATA_2_BASE_IDX 1
+#define regRLC_SERDES_WR_CU_MASTER_MASK 0x4c5d
+#define regRLC_SERDES_WR_CU_MASTER_MASK_BASE_IDX 1
+#define regRLC_SERDES_WR_NONCU_MASTER_MASK 0x4c5e
+#define regRLC_SERDES_WR_NONCU_MASTER_MASK_BASE_IDX 1
+#define regRLC_SERDES_WR_CTRL 0x4c5f
+#define regRLC_SERDES_WR_CTRL_BASE_IDX 1
+#define regRLC_SERDES_WR_DATA 0x4c60
+#define regRLC_SERDES_WR_DATA_BASE_IDX 1
+#define regRLC_SERDES_CU_MASTER_BUSY 0x4c61
+#define regRLC_SERDES_CU_MASTER_BUSY_BASE_IDX 1
+#define regRLC_SERDES_NONCU_MASTER_BUSY 0x4c62
+#define regRLC_SERDES_NONCU_MASTER_BUSY_BASE_IDX 1
+#define regRLC_GPM_GENERAL_0 0x4c63
+#define regRLC_GPM_GENERAL_0_BASE_IDX 1
+#define regRLC_GPM_GENERAL_1 0x4c64
+#define regRLC_GPM_GENERAL_1_BASE_IDX 1
+#define regRLC_GPM_GENERAL_2 0x4c65
+#define regRLC_GPM_GENERAL_2_BASE_IDX 1
+#define regRLC_GPM_GENERAL_3 0x4c66
+#define regRLC_GPM_GENERAL_3_BASE_IDX 1
+#define regRLC_GPM_GENERAL_4 0x4c67
+#define regRLC_GPM_GENERAL_4_BASE_IDX 1
+#define regRLC_GPM_GENERAL_5 0x4c68
+#define regRLC_GPM_GENERAL_5_BASE_IDX 1
+#define regRLC_GPM_GENERAL_6 0x4c69
+#define regRLC_GPM_GENERAL_6_BASE_IDX 1
+#define regRLC_GPM_GENERAL_7 0x4c6a
+#define regRLC_GPM_GENERAL_7_BASE_IDX 1
+#define regRLC_GPM_SCRATCH_ADDR 0x4c6c
+#define regRLC_GPM_SCRATCH_ADDR_BASE_IDX 1
+#define regRLC_GPM_SCRATCH_DATA 0x4c6d
+#define regRLC_GPM_SCRATCH_DATA_BASE_IDX 1
+#define regRLC_STATIC_PG_STATUS 0x4c6e
+#define regRLC_STATIC_PG_STATUS_BASE_IDX 1
+#define regRLC_SPM_MC_CNTL 0x4c71
+#define regRLC_SPM_MC_CNTL_BASE_IDX 1
+#define regRLC_SPM_INT_CNTL 0x4c72
+#define regRLC_SPM_INT_CNTL_BASE_IDX 1
+#define regRLC_SPM_INT_STATUS 0x4c73
+#define regRLC_SPM_INT_STATUS_BASE_IDX 1
+#define regRLC_SMU_MESSAGE 0x4c76
+#define regRLC_SMU_MESSAGE_BASE_IDX 1
+#define regRLC_GPM_LOG_SIZE 0x4c77
+#define regRLC_GPM_LOG_SIZE_BASE_IDX 1
+#define regRLC_PG_DELAY_3 0x4c78
+#define regRLC_PG_DELAY_3_BASE_IDX 1
+#define regRLC_GPR_REG1 0x4c79
+#define regRLC_GPR_REG1_BASE_IDX 1
+#define regRLC_GPR_REG2 0x4c7a
+#define regRLC_GPR_REG2_BASE_IDX 1
+#define regRLC_GPM_LOG_CONT 0x4c7b
+#define regRLC_GPM_LOG_CONT_BASE_IDX 1
+#define regRLC_GPM_INT_DISABLE_TH0 0x4c7c
+#define regRLC_GPM_INT_DISABLE_TH0_BASE_IDX 1
+#define regRLC_GPM_INT_FORCE_TH0 0x4c7e
+#define regRLC_GPM_INT_FORCE_TH0_BASE_IDX 1
+#define regRLC_GPM_INT_FORCE_TH1 0x4c7f
+#define regRLC_GPM_INT_FORCE_TH1_BASE_IDX 1
+#define regRLC_SRM_CNTL 0x4c80
+#define regRLC_SRM_CNTL_BASE_IDX 1
+#define regRLC_SRM_ARAM_ADDR 0x4c83
+#define regRLC_SRM_ARAM_ADDR_BASE_IDX 1
+#define regRLC_SRM_ARAM_DATA 0x4c84
+#define regRLC_SRM_ARAM_DATA_BASE_IDX 1
+#define regRLC_SRM_DRAM_ADDR 0x4c85
+#define regRLC_SRM_DRAM_ADDR_BASE_IDX 1
+#define regRLC_SRM_DRAM_DATA 0x4c86
+#define regRLC_SRM_DRAM_DATA_BASE_IDX 1
+#define regRLC_SRM_GPM_COMMAND 0x4c87
+#define regRLC_SRM_GPM_COMMAND_BASE_IDX 1
+#define regRLC_SRM_GPM_COMMAND_STATUS 0x4c88
+#define regRLC_SRM_GPM_COMMAND_STATUS_BASE_IDX 1
+#define regRLC_SRM_RLCV_COMMAND 0x4c89
+#define regRLC_SRM_RLCV_COMMAND_BASE_IDX 1
+#define regRLC_SRM_RLCV_COMMAND_STATUS 0x4c8a
+#define regRLC_SRM_RLCV_COMMAND_STATUS_BASE_IDX 1
+#define regRLC_SRM_INDEX_CNTL_ADDR_0 0x4c8b
+#define regRLC_SRM_INDEX_CNTL_ADDR_0_BASE_IDX 1
+#define regRLC_SRM_INDEX_CNTL_ADDR_1 0x4c8c
+#define regRLC_SRM_INDEX_CNTL_ADDR_1_BASE_IDX 1
+#define regRLC_SRM_INDEX_CNTL_ADDR_2 0x4c8d
+#define regRLC_SRM_INDEX_CNTL_ADDR_2_BASE_IDX 1
+#define regRLC_SRM_INDEX_CNTL_ADDR_3 0x4c8e
+#define regRLC_SRM_INDEX_CNTL_ADDR_3_BASE_IDX 1
+#define regRLC_SRM_INDEX_CNTL_ADDR_4 0x4c8f
+#define regRLC_SRM_INDEX_CNTL_ADDR_4_BASE_IDX 1
+#define regRLC_SRM_INDEX_CNTL_ADDR_5 0x4c90
+#define regRLC_SRM_INDEX_CNTL_ADDR_5_BASE_IDX 1
+#define regRLC_SRM_INDEX_CNTL_ADDR_6 0x4c91
+#define regRLC_SRM_INDEX_CNTL_ADDR_6_BASE_IDX 1
+#define regRLC_SRM_INDEX_CNTL_ADDR_7 0x4c92
+#define regRLC_SRM_INDEX_CNTL_ADDR_7_BASE_IDX 1
+#define regRLC_SRM_INDEX_CNTL_DATA_0 0x4c93
+#define regRLC_SRM_INDEX_CNTL_DATA_0_BASE_IDX 1
+#define regRLC_SRM_INDEX_CNTL_DATA_1 0x4c94
+#define regRLC_SRM_INDEX_CNTL_DATA_1_BASE_IDX 1
+#define regRLC_SRM_INDEX_CNTL_DATA_2 0x4c95
+#define regRLC_SRM_INDEX_CNTL_DATA_2_BASE_IDX 1
+#define regRLC_SRM_INDEX_CNTL_DATA_3 0x4c96
+#define regRLC_SRM_INDEX_CNTL_DATA_3_BASE_IDX 1
+#define regRLC_SRM_INDEX_CNTL_DATA_4 0x4c97
+#define regRLC_SRM_INDEX_CNTL_DATA_4_BASE_IDX 1
+#define regRLC_SRM_INDEX_CNTL_DATA_5 0x4c98
+#define regRLC_SRM_INDEX_CNTL_DATA_5_BASE_IDX 1
+#define regRLC_SRM_INDEX_CNTL_DATA_6 0x4c99
+#define regRLC_SRM_INDEX_CNTL_DATA_6_BASE_IDX 1
+#define regRLC_SRM_INDEX_CNTL_DATA_7 0x4c9a
+#define regRLC_SRM_INDEX_CNTL_DATA_7_BASE_IDX 1
+#define regRLC_SRM_STAT 0x4c9b
+#define regRLC_SRM_STAT_BASE_IDX 1
+#define regRLC_SRM_GPM_ABORT 0x4c9c
+#define regRLC_SRM_GPM_ABORT_BASE_IDX 1
+#define regRLC_CSIB_ADDR_LO 0x4ca2
+#define regRLC_CSIB_ADDR_LO_BASE_IDX 1
+#define regRLC_CSIB_ADDR_HI 0x4ca3
+#define regRLC_CSIB_ADDR_HI_BASE_IDX 1
+#define regRLC_CSIB_LENGTH 0x4ca4
+#define regRLC_CSIB_LENGTH_BASE_IDX 1
+#define regRLC_SMU_COMMAND 0x4ca9
+#define regRLC_SMU_COMMAND_BASE_IDX 1
+#define regRLC_CP_SCHEDULERS 0x4caa
+#define regRLC_CP_SCHEDULERS_BASE_IDX 1
+#define regRLC_SMU_ARGUMENT_1 0x4cab
+#define regRLC_SMU_ARGUMENT_1_BASE_IDX 1
+#define regRLC_SMU_ARGUMENT_2 0x4cac
+#define regRLC_SMU_ARGUMENT_2_BASE_IDX 1
+#define regRLC_GPM_GENERAL_8 0x4cad
+#define regRLC_GPM_GENERAL_8_BASE_IDX 1
+#define regRLC_GPM_GENERAL_9 0x4cae
+#define regRLC_GPM_GENERAL_9_BASE_IDX 1
+#define regRLC_GPM_GENERAL_10 0x4caf
+#define regRLC_GPM_GENERAL_10_BASE_IDX 1
+#define regRLC_GPM_GENERAL_11 0x4cb0
+#define regRLC_GPM_GENERAL_11_BASE_IDX 1
+#define regRLC_GPM_GENERAL_12 0x4cb1
+#define regRLC_GPM_GENERAL_12_BASE_IDX 1
+#define regRLC_GPM_UTCL1_CNTL_0 0x4cb2
+#define regRLC_GPM_UTCL1_CNTL_0_BASE_IDX 1
+#define regRLC_GPM_UTCL1_CNTL_1 0x4cb3
+#define regRLC_GPM_UTCL1_CNTL_1_BASE_IDX 1
+#define regRLC_GPM_UTCL1_CNTL_2 0x4cb4
+#define regRLC_GPM_UTCL1_CNTL_2_BASE_IDX 1
+#define regRLC_SPM_UTCL1_CNTL 0x4cb5
+#define regRLC_SPM_UTCL1_CNTL_BASE_IDX 1
+#define regRLC_UTCL1_STATUS_2 0x4cb6
+#define regRLC_UTCL1_STATUS_2_BASE_IDX 1
+#define regRLC_LB_THR_CONFIG_2 0x4cb8
+#define regRLC_LB_THR_CONFIG_2_BASE_IDX 1
+#define regRLC_LB_THR_CONFIG_3 0x4cb9
+#define regRLC_LB_THR_CONFIG_3_BASE_IDX 1
+#define regRLC_LB_THR_CONFIG_4 0x4cba
+#define regRLC_LB_THR_CONFIG_4_BASE_IDX 1
+#define regRLC_SPM_UTCL1_ERROR_1 0x4cbc
+#define regRLC_SPM_UTCL1_ERROR_1_BASE_IDX 1
+#define regRLC_SPM_UTCL1_ERROR_2 0x4cbd
+#define regRLC_SPM_UTCL1_ERROR_2_BASE_IDX 1
+#define regRLC_GPM_UTCL1_TH0_ERROR_1 0x4cbe
+#define regRLC_GPM_UTCL1_TH0_ERROR_1_BASE_IDX 1
+#define regRLC_LB_THR_CONFIG_1 0x4cbf
+#define regRLC_LB_THR_CONFIG_1_BASE_IDX 1
+#define regRLC_GPM_UTCL1_TH0_ERROR_2 0x4cc0
+#define regRLC_GPM_UTCL1_TH0_ERROR_2_BASE_IDX 1
+#define regRLC_GPM_UTCL1_TH1_ERROR_1 0x4cc1
+#define regRLC_GPM_UTCL1_TH1_ERROR_1_BASE_IDX 1
+#define regRLC_GPM_UTCL1_TH1_ERROR_2 0x4cc2
+#define regRLC_GPM_UTCL1_TH1_ERROR_2_BASE_IDX 1
+#define regRLC_GPM_UTCL1_TH2_ERROR_1 0x4cc3
+#define regRLC_GPM_UTCL1_TH2_ERROR_1_BASE_IDX 1
+#define regRLC_GPM_UTCL1_TH2_ERROR_2 0x4cc4
+#define regRLC_GPM_UTCL1_TH2_ERROR_2_BASE_IDX 1
+#define regRLC_SEMAPHORE_0 0x4cc7
+#define regRLC_SEMAPHORE_0_BASE_IDX 1
+#define regRLC_SEMAPHORE_1 0x4cc8
+#define regRLC_SEMAPHORE_1_BASE_IDX 1
+#define regRLC_CP_EOF_INT 0x4cca
+#define regRLC_CP_EOF_INT_BASE_IDX 1
+#define regRLC_CP_EOF_INT_CNT 0x4ccb
+#define regRLC_CP_EOF_INT_CNT_BASE_IDX 1
+#define regRLC_SPARE_INT 0x4ccc
+#define regRLC_SPARE_INT_BASE_IDX 1
+#define regRLC_PREWALKER_UTCL1_CNTL 0x4ccd
+#define regRLC_PREWALKER_UTCL1_CNTL_BASE_IDX 1
+#define regRLC_PREWALKER_UTCL1_TRIG 0x4cce
+#define regRLC_PREWALKER_UTCL1_TRIG_BASE_IDX 1
+#define regRLC_PREWALKER_UTCL1_ADDR_LSB 0x4ccf
+#define regRLC_PREWALKER_UTCL1_ADDR_LSB_BASE_IDX 1
+#define regRLC_PREWALKER_UTCL1_ADDR_MSB 0x4cd0
+#define regRLC_PREWALKER_UTCL1_ADDR_MSB_BASE_IDX 1
+#define regRLC_PREWALKER_UTCL1_SIZE_LSB 0x4cd1
+#define regRLC_PREWALKER_UTCL1_SIZE_LSB_BASE_IDX 1
+#define regRLC_PREWALKER_UTCL1_SIZE_MSB 0x4cd2
+#define regRLC_PREWALKER_UTCL1_SIZE_MSB_BASE_IDX 1
+#define regRLC_DSM_TRIG 0x4cd3
+#define regRLC_DSM_TRIG_BASE_IDX 1
+#define regRLC_UTCL1_STATUS 0x4cd4
+#define regRLC_UTCL1_STATUS_BASE_IDX 1
+#define regRLC_R2I_CNTL_0 0x4cd5
+#define regRLC_R2I_CNTL_0_BASE_IDX 1
+#define regRLC_R2I_CNTL_1 0x4cd6
+#define regRLC_R2I_CNTL_1_BASE_IDX 1
+#define regRLC_R2I_CNTL_2 0x4cd7
+#define regRLC_R2I_CNTL_2_BASE_IDX 1
+#define regRLC_R2I_CNTL_3 0x4cd8
+#define regRLC_R2I_CNTL_3_BASE_IDX 1
+#define regRLC_UTCL2_CNTL 0x4cd9
+#define regRLC_UTCL2_CNTL_BASE_IDX 1
+#define regRLC_LBPW_CU_STAT 0x4cda
+#define regRLC_LBPW_CU_STAT_BASE_IDX 1
+#define regRLC_DS_CNTL 0x4cdb
+#define regRLC_DS_CNTL_BASE_IDX 1
+#define regRLC_GPM_INT_STAT_TH0 0x4cdc
+#define regRLC_GPM_INT_STAT_TH0_BASE_IDX 1
+#define regRLC_GPM_GENERAL_13 0x4cdd
+#define regRLC_GPM_GENERAL_13_BASE_IDX 1
+#define regRLC_GPM_GENERAL_14 0x4cde
+#define regRLC_GPM_GENERAL_14_BASE_IDX 1
+#define regRLC_GPM_GENERAL_15 0x4cdf
+#define regRLC_GPM_GENERAL_15_BASE_IDX 1
+#define regRLC_SPARE_INT_1 0x4ce0
+#define regRLC_SPARE_INT_1_BASE_IDX 1
+#define regRLC_RLCV_SPARE_INT_1 0x4ce1
+#define regRLC_RLCV_SPARE_INT_1_BASE_IDX 1
+#define regRLC_SEMAPHORE_2 0x4ce3
+#define regRLC_SEMAPHORE_2_BASE_IDX 1
+#define regRLC_SEMAPHORE_3 0x4ce4
+#define regRLC_SEMAPHORE_3_BASE_IDX 1
+#define regRLC_SMU_ARGUMENT_3 0x4ce5
+#define regRLC_SMU_ARGUMENT_3_BASE_IDX 1
+#define regRLC_SMU_ARGUMENT_4 0x4ce6
+#define regRLC_SMU_ARGUMENT_4_BASE_IDX 1
+#define regRLC_GPU_CLOCK_COUNT_LSB_1 0x4ce8
+#define regRLC_GPU_CLOCK_COUNT_LSB_1_BASE_IDX 1
+#define regRLC_GPU_CLOCK_COUNT_MSB_1 0x4ce9
+#define regRLC_GPU_CLOCK_COUNT_MSB_1_BASE_IDX 1
+#define regRLC_CAPTURE_GPU_CLOCK_COUNT_1 0x4cea
+#define regRLC_CAPTURE_GPU_CLOCK_COUNT_1_BASE_IDX 1
+#define regRLC_GPU_CLOCK_COUNT_LSB_2 0x4ceb
+#define regRLC_GPU_CLOCK_COUNT_LSB_2_BASE_IDX 1
+#define regRLC_GPU_CLOCK_COUNT_MSB_2 0x4cec
+#define regRLC_GPU_CLOCK_COUNT_MSB_2_BASE_IDX 1
+#define regRLC_CAPTURE_GPU_CLOCK_COUNT_2 0x4cef
+#define regRLC_CAPTURE_GPU_CLOCK_COUNT_2_BASE_IDX 1
+#define regRLC_CPG_STAT_INVAL 0x4d09
+#define regRLC_CPG_STAT_INVAL_BASE_IDX 1
+#define regRLC_DSM_CNTL 0x4d42
+#define regRLC_DSM_CNTL_BASE_IDX 1
+#define regRLC_DSM_CNTLA 0x4d43
+#define regRLC_DSM_CNTLA_BASE_IDX 1
+#define regRLC_DSM_CNTL2 0x4d44
+#define regRLC_DSM_CNTL2_BASE_IDX 1
+#define regRLC_DSM_CNTL2A 0x4d45
+#define regRLC_DSM_CNTL2A_BASE_IDX 1
+#define regRLC_RLCV_SPARE_INT 0x4f30
+#define regRLC_RLCV_SPARE_INT_BASE_IDX 1
+#define regRLC_SMU_CLK_REQ 0x4f97
+#define regRLC_SMU_CLK_REQ_BASE_IDX 1
+
+
+// addressBlock: xcd0_gc_pwrdec
+// base address: 0x3c000
+#define regCGTS_SM_CTRL_REG 0x5000
+#define regCGTS_SM_CTRL_REG_BASE_IDX 1
+#define regCGTS_RD_CTRL_REG 0x5001
+#define regCGTS_RD_CTRL_REG_BASE_IDX 1
+#define regCGTS_RD_REG 0x5002
+#define regCGTS_RD_REG_BASE_IDX 1
+#define regCGTS_TCC_DISABLE 0x5003
+#define regCGTS_TCC_DISABLE_BASE_IDX 1
+#define regCGTS_USER_TCC_DISABLE 0x5004
+#define regCGTS_USER_TCC_DISABLE_BASE_IDX 1
+#define regCGTS_CU0_SP0_CTRL_REG 0x5008
+#define regCGTS_CU0_SP0_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU0_LDS_SQ_CTRL_REG 0x5009
+#define regCGTS_CU0_LDS_SQ_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU0_TA_SQC_CTRL_REG 0x500a
+#define regCGTS_CU0_TA_SQC_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU0_SP1_CTRL_REG 0x500b
+#define regCGTS_CU0_SP1_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU0_TD_TCP_CTRL_REG 0x500c
+#define regCGTS_CU0_TD_TCP_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU1_SP0_CTRL_REG 0x500d
+#define regCGTS_CU1_SP0_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU1_LDS_SQ_CTRL_REG 0x500e
+#define regCGTS_CU1_LDS_SQ_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU1_TA_SQC_CTRL_REG 0x500f
+#define regCGTS_CU1_TA_SQC_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU1_SP1_CTRL_REG 0x5010
+#define regCGTS_CU1_SP1_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU1_TD_TCP_CTRL_REG 0x5011
+#define regCGTS_CU1_TD_TCP_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU2_SP0_CTRL_REG 0x5012
+#define regCGTS_CU2_SP0_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU2_LDS_SQ_CTRL_REG 0x5013
+#define regCGTS_CU2_LDS_SQ_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU2_TA_SQC_CTRL_REG 0x5014
+#define regCGTS_CU2_TA_SQC_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU2_SP1_CTRL_REG 0x5015
+#define regCGTS_CU2_SP1_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU2_TD_TCP_CTRL_REG 0x5016
+#define regCGTS_CU2_TD_TCP_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU3_SP0_CTRL_REG 0x5017
+#define regCGTS_CU3_SP0_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU3_LDS_SQ_CTRL_REG 0x5018
+#define regCGTS_CU3_LDS_SQ_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU3_TA_SQC_CTRL_REG 0x5019
+#define regCGTS_CU3_TA_SQC_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU3_SP1_CTRL_REG 0x501a
+#define regCGTS_CU3_SP1_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU3_TD_TCP_CTRL_REG 0x501b
+#define regCGTS_CU3_TD_TCP_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU4_SP0_CTRL_REG 0x501c
+#define regCGTS_CU4_SP0_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU4_LDS_SQ_CTRL_REG 0x501d
+#define regCGTS_CU4_LDS_SQ_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU4_TA_SQC_CTRL_REG 0x501e
+#define regCGTS_CU4_TA_SQC_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU4_SP1_CTRL_REG 0x501f
+#define regCGTS_CU4_SP1_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU4_TD_TCP_CTRL_REG 0x5020
+#define regCGTS_CU4_TD_TCP_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU5_SP0_CTRL_REG 0x5021
+#define regCGTS_CU5_SP0_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU5_LDS_SQ_CTRL_REG 0x5022
+#define regCGTS_CU5_LDS_SQ_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU5_TA_SQC_CTRL_REG 0x5023
+#define regCGTS_CU5_TA_SQC_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU5_SP1_CTRL_REG 0x5024
+#define regCGTS_CU5_SP1_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU5_TD_TCP_CTRL_REG 0x5025
+#define regCGTS_CU5_TD_TCP_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU6_SP0_CTRL_REG 0x5026
+#define regCGTS_CU6_SP0_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU6_LDS_SQ_CTRL_REG 0x5027
+#define regCGTS_CU6_LDS_SQ_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU6_TA_SQC_CTRL_REG 0x5028
+#define regCGTS_CU6_TA_SQC_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU6_SP1_CTRL_REG 0x5029
+#define regCGTS_CU6_SP1_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU6_TD_TCP_CTRL_REG 0x502a
+#define regCGTS_CU6_TD_TCP_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU7_SP0_CTRL_REG 0x502b
+#define regCGTS_CU7_SP0_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU7_LDS_SQ_CTRL_REG 0x502c
+#define regCGTS_CU7_LDS_SQ_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU7_TA_SQC_CTRL_REG 0x502d
+#define regCGTS_CU7_TA_SQC_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU7_SP1_CTRL_REG 0x502e
+#define regCGTS_CU7_SP1_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU7_TD_TCP_CTRL_REG 0x502f
+#define regCGTS_CU7_TD_TCP_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU8_SP0_CTRL_REG 0x5030
+#define regCGTS_CU8_SP0_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU8_LDS_SQ_CTRL_REG 0x5031
+#define regCGTS_CU8_LDS_SQ_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU8_TA_SQC_CTRL_REG 0x5032
+#define regCGTS_CU8_TA_SQC_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU8_SP1_CTRL_REG 0x5033
+#define regCGTS_CU8_SP1_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU8_TD_TCP_CTRL_REG 0x5034
+#define regCGTS_CU8_TD_TCP_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU9_SP0_CTRL_REG 0x5035
+#define regCGTS_CU9_SP0_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU9_LDS_SQ_CTRL_REG 0x5036
+#define regCGTS_CU9_LDS_SQ_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU9_TA_SQC_CTRL_REG 0x5037
+#define regCGTS_CU9_TA_SQC_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU9_SP1_CTRL_REG 0x5038
+#define regCGTS_CU9_SP1_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU9_TD_TCP_CTRL_REG 0x5039
+#define regCGTS_CU9_TD_TCP_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU10_SP0_CTRL_REG 0x503a
+#define regCGTS_CU10_SP0_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU10_LDS_SQ_CTRL_REG 0x503b
+#define regCGTS_CU10_LDS_SQ_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU10_TA_SQC_CTRL_REG 0x503c
+#define regCGTS_CU10_TA_SQC_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU10_SP1_CTRL_REG 0x503d
+#define regCGTS_CU10_SP1_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU10_TD_TCP_CTRL_REG 0x503e
+#define regCGTS_CU10_TD_TCP_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU11_SP0_CTRL_REG 0x503f
+#define regCGTS_CU11_SP0_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU11_LDS_SQ_CTRL_REG 0x5040
+#define regCGTS_CU11_LDS_SQ_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU11_TA_SQC_CTRL_REG 0x5041
+#define regCGTS_CU11_TA_SQC_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU11_SP1_CTRL_REG 0x5042
+#define regCGTS_CU11_SP1_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU11_TD_TCP_CTRL_REG 0x5043
+#define regCGTS_CU11_TD_TCP_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU12_SP0_CTRL_REG 0x5044
+#define regCGTS_CU12_SP0_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU12_LDS_SQ_CTRL_REG 0x5045
+#define regCGTS_CU12_LDS_SQ_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU12_TA_SQC_CTRL_REG 0x5046
+#define regCGTS_CU12_TA_SQC_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU12_SP1_CTRL_REG 0x5047
+#define regCGTS_CU12_SP1_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU12_TD_TCP_CTRL_REG 0x5048
+#define regCGTS_CU12_TD_TCP_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU13_SP0_CTRL_REG 0x5049
+#define regCGTS_CU13_SP0_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU13_LDS_SQ_CTRL_REG 0x504a
+#define regCGTS_CU13_LDS_SQ_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU13_TA_SQC_CTRL_REG 0x504b
+#define regCGTS_CU13_TA_SQC_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU13_SP1_CTRL_REG 0x504c
+#define regCGTS_CU13_SP1_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU13_TD_TCP_CTRL_REG 0x504d
+#define regCGTS_CU13_TD_TCP_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU14_SP0_CTRL_REG 0x504e
+#define regCGTS_CU14_SP0_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU14_LDS_SQ_CTRL_REG 0x504f
+#define regCGTS_CU14_LDS_SQ_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU14_TA_SQC_CTRL_REG 0x5050
+#define regCGTS_CU14_TA_SQC_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU14_SP1_CTRL_REG 0x5051
+#define regCGTS_CU14_SP1_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU14_TD_TCP_CTRL_REG 0x5052
+#define regCGTS_CU14_TD_TCP_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU15_SP0_CTRL_REG 0x5053
+#define regCGTS_CU15_SP0_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU15_LDS_SQ_CTRL_REG 0x5054
+#define regCGTS_CU15_LDS_SQ_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU15_TA_SQC_CTRL_REG 0x5055
+#define regCGTS_CU15_TA_SQC_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU15_SP1_CTRL_REG 0x5056
+#define regCGTS_CU15_SP1_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU15_TD_TCP_CTRL_REG 0x5057
+#define regCGTS_CU15_TD_TCP_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU0_TCPI_CTRL_REG 0x5058
+#define regCGTS_CU0_TCPI_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU1_TCPI_CTRL_REG 0x5059
+#define regCGTS_CU1_TCPI_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU2_TCPI_CTRL_REG 0x505a
+#define regCGTS_CU2_TCPI_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU3_TCPI_CTRL_REG 0x505b
+#define regCGTS_CU3_TCPI_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU4_TCPI_CTRL_REG 0x505c
+#define regCGTS_CU4_TCPI_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU5_TCPI_CTRL_REG 0x505d
+#define regCGTS_CU5_TCPI_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU6_TCPI_CTRL_REG 0x505e
+#define regCGTS_CU6_TCPI_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU7_TCPI_CTRL_REG 0x505f
+#define regCGTS_CU7_TCPI_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU8_TCPI_CTRL_REG 0x5060
+#define regCGTS_CU8_TCPI_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU9_TCPI_CTRL_REG 0x5061
+#define regCGTS_CU9_TCPI_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU10_TCPI_CTRL_REG 0x5062
+#define regCGTS_CU10_TCPI_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU11_TCPI_CTRL_REG 0x5063
+#define regCGTS_CU11_TCPI_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU12_TCPI_CTRL_REG 0x5064
+#define regCGTS_CU12_TCPI_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU13_TCPI_CTRL_REG 0x5065
+#define regCGTS_CU13_TCPI_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU14_TCPI_CTRL_REG 0x5066
+#define regCGTS_CU14_TCPI_CTRL_REG_BASE_IDX 1
+#define regCGTS_CU15_TCPI_CTRL_REG 0x5067
+#define regCGTS_CU15_TCPI_CTRL_REG_BASE_IDX 1
+#define regCGTT_SPI_PS_CLK_CTRL 0x507d
+#define regCGTT_SPI_PS_CLK_CTRL_BASE_IDX 1
+#define regCGTT_SPIS_CLK_CTRL 0x507e
+#define regCGTT_SPIS_CLK_CTRL_BASE_IDX 1
+#define regCGTX_SPI_DEBUG_CLK_CTRL 0x507f
+#define regCGTX_SPI_DEBUG_CLK_CTRL_BASE_IDX 1
+#define regCGTT_SPI_CLK_CTRL 0x5080
+#define regCGTT_SPI_CLK_CTRL_BASE_IDX 1
+#define regCGTT_PC_CLK_CTRL 0x5081
+#define regCGTT_PC_CLK_CTRL_BASE_IDX 1
+#define regCGTT_BCI_CLK_CTRL 0x5082
+#define regCGTT_BCI_CLK_CTRL_BASE_IDX 1
+#define regCGTT_VGT_CLK_CTRL 0x5084
+#define regCGTT_VGT_CLK_CTRL_BASE_IDX 1
+#define regCGTT_IA_CLK_CTRL 0x5085
+#define regCGTT_IA_CLK_CTRL_BASE_IDX 1
+#define regCGTT_WD_CLK_CTRL 0x5086
+#define regCGTT_WD_CLK_CTRL_BASE_IDX 1
+#define regCGTT_PA_CLK_CTRL 0x5088
+#define regCGTT_PA_CLK_CTRL_BASE_IDX 1
+#define regCGTT_SC_CLK_CTRL0 0x5089
+#define regCGTT_SC_CLK_CTRL0_BASE_IDX 1
+#define regCGTT_SC_CLK_CTRL1 0x508a
+#define regCGTT_SC_CLK_CTRL1_BASE_IDX 1
+#define regCGTT_SC_CLK_CTRL2 0x508b
+#define regCGTT_SC_CLK_CTRL2_BASE_IDX 1
+#define regCGTT_SQ_CLK_CTRL 0x508c
+#define regCGTT_SQ_CLK_CTRL_BASE_IDX 1
+#define regCGTT_SQG_CLK_CTRL 0x508d
+#define regCGTT_SQG_CLK_CTRL_BASE_IDX 1
+#define regSQ_ALU_CLK_CTRL 0x508e
+#define regSQ_ALU_CLK_CTRL_BASE_IDX 1
+#define regSQ_TEX_CLK_CTRL 0x508f
+#define regSQ_TEX_CLK_CTRL_BASE_IDX 1
+#define regSQ_LDS_CLK_CTRL 0x5090
+#define regSQ_LDS_CLK_CTRL_BASE_IDX 1
+#define regSQ_POWER_THROTTLE 0x5091
+#define regSQ_POWER_THROTTLE_BASE_IDX 1
+#define regSQ_POWER_THROTTLE2 0x5092
+#define regSQ_POWER_THROTTLE2_BASE_IDX 1
+#define regTD_CGTT_CTRL 0x509c
+#define regTD_CGTT_CTRL_BASE_IDX 1
+#define regTA_CGTT_CTRL 0x509d
+#define regTA_CGTT_CTRL_BASE_IDX 1
+#define regCGTT_TCPI_CLK_CTRL 0x509e
+#define regCGTT_TCPI_CLK_CTRL_BASE_IDX 1
+#define regTCX_CGTT_SCLK_CTRL 0x50a3
+#define regTCX_CGTT_SCLK_CTRL_BASE_IDX 1
+#define regDB_CGTT_CLK_CTRL_0 0x50a4
+#define regDB_CGTT_CLK_CTRL_0_BASE_IDX 1
+#define regCB_CGTT_SCLK_CTRL 0x50a8
+#define regCB_CGTT_SCLK_CTRL_BASE_IDX 1
+#define regTCC_CGTT_SCLK_CTRL 0x50ac
+#define regTCC_CGTT_SCLK_CTRL_BASE_IDX 1
+#define regTCC_CGTT_SCLK_CTRL2 0x50ad
+#define regTCC_CGTT_SCLK_CTRL2_BASE_IDX 1
+#define regTCC_CGTT_SCLK_CTRL3 0x50ae
+#define regTCC_CGTT_SCLK_CTRL3_BASE_IDX 1
+#define regTCA_CGTT_SCLK_CTRL 0x50af
+#define regTCA_CGTT_SCLK_CTRL_BASE_IDX 1
+#define regCGTT_CP_CLK_CTRL 0x50b0
+#define regCGTT_CP_CLK_CTRL_BASE_IDX 1
+#define regCGTT_CPC_CLK_CTRL 0x50b2
+#define regCGTT_CPC_CLK_CTRL_BASE_IDX 1
+#define regCGTT_RLC_CLK_CTRL 0x50b5
+#define regCGTT_RLC_CLK_CTRL_BASE_IDX 1
+#define regRLC_GFX_RM_CNTL 0x50b6
+#define regRLC_GFX_RM_CNTL_BASE_IDX 1
+#define regRMI_CGTT_SCLK_CTRL 0x50c0
+#define regRMI_CGTT_SCLK_CTRL_BASE_IDX 1
+#define regCGTT_TCPF_CLK_CTRL 0x50c1
+#define regCGTT_TCPF_CLK_CTRL_BASE_IDX 1
+
+
+// addressBlock: xcd0_gc_hypdec
+// base address: 0x3e000
+#define regCP_HYP_PFP_UCODE_ADDR 0x5814
+#define regCP_HYP_PFP_UCODE_ADDR_BASE_IDX 1
+#define regCP_PFP_UCODE_ADDR 0x5814
+#define regCP_PFP_UCODE_ADDR_BASE_IDX 1
+#define regCP_HYP_PFP_UCODE_DATA 0x5815
+#define regCP_HYP_PFP_UCODE_DATA_BASE_IDX 1
+#define regCP_PFP_UCODE_DATA 0x5815
+#define regCP_PFP_UCODE_DATA_BASE_IDX 1
+#define regCP_HYP_ME_UCODE_ADDR 0x5816
+#define regCP_HYP_ME_UCODE_ADDR_BASE_IDX 1
+#define regCP_ME_RAM_RADDR 0x5816
+#define regCP_ME_RAM_RADDR_BASE_IDX 1
+#define regCP_ME_RAM_WADDR 0x5816
+#define regCP_ME_RAM_WADDR_BASE_IDX 1
+#define regCP_HYP_ME_UCODE_DATA 0x5817
+#define regCP_HYP_ME_UCODE_DATA_BASE_IDX 1
+#define regCP_ME_RAM_DATA 0x5817
+#define regCP_ME_RAM_DATA_BASE_IDX 1
+#define regCP_CE_UCODE_ADDR 0x5818
+#define regCP_CE_UCODE_ADDR_BASE_IDX 1
+#define regCP_HYP_CE_UCODE_ADDR 0x5818
+#define regCP_HYP_CE_UCODE_ADDR_BASE_IDX 1
+#define regCP_CE_UCODE_DATA 0x5819
+#define regCP_CE_UCODE_DATA_BASE_IDX 1
+#define regCP_HYP_CE_UCODE_DATA 0x5819
+#define regCP_HYP_CE_UCODE_DATA_BASE_IDX 1
+#define regCP_HYP_MEC1_UCODE_ADDR 0x581a
+#define regCP_HYP_MEC1_UCODE_ADDR_BASE_IDX 1
+#define regCP_MEC_ME1_UCODE_ADDR 0x581a
+#define regCP_MEC_ME1_UCODE_ADDR_BASE_IDX 1
+#define regCP_HYP_MEC1_UCODE_DATA 0x581b
+#define regCP_HYP_MEC1_UCODE_DATA_BASE_IDX 1
+#define regCP_MEC_ME1_UCODE_DATA 0x581b
+#define regCP_MEC_ME1_UCODE_DATA_BASE_IDX 1
+#define regCP_HYP_MEC2_UCODE_ADDR 0x581c
+#define regCP_HYP_MEC2_UCODE_ADDR_BASE_IDX 1
+#define regCP_MEC_ME2_UCODE_ADDR 0x581c
+#define regCP_MEC_ME2_UCODE_ADDR_BASE_IDX 1
+#define regCP_HYP_MEC2_UCODE_DATA 0x581d
+#define regCP_HYP_MEC2_UCODE_DATA_BASE_IDX 1
+#define regCP_MEC_ME2_UCODE_DATA 0x581d
+#define regCP_MEC_ME2_UCODE_DATA_BASE_IDX 1
+#define regCP_HYP_PFP_UCODE_CHKSUM 0x581e
+#define regCP_HYP_PFP_UCODE_CHKSUM_BASE_IDX 1
+#define regCP_HYP_CE_UCODE_CHKSUM 0x581f
+#define regCP_HYP_CE_UCODE_CHKSUM_BASE_IDX 1
+#define regCP_HYP_ME_UCODE_CHKSUM 0x5820
+#define regCP_HYP_ME_UCODE_CHKSUM_BASE_IDX 1
+#define regCP_HYP_MEC_ME1_UCODE_CHKSUM 0x5821
+#define regCP_HYP_MEC_ME1_UCODE_CHKSUM_BASE_IDX 1
+#define regCP_HYP_MEC_ME2_UCODE_CHKSUM 0x5822
+#define regCP_HYP_MEC_ME2_UCODE_CHKSUM_BASE_IDX 1
+#define regCP_HYP_XCP_CTL 0x5828
+#define regCP_HYP_XCP_CTL_BASE_IDX 1
+#define regRLC_GPM_UCODE_ADDR 0x583c
+#define regRLC_GPM_UCODE_ADDR_BASE_IDX 1
+#define regRLC_GPM_UCODE_DATA 0x583d
+#define regRLC_GPM_UCODE_DATA_BASE_IDX 1
+#define regGRBM_GFX_INDEX_SR_SELECT 0x5a00
+#define regGRBM_GFX_INDEX_SR_SELECT_BASE_IDX 1
+#define regGRBM_GFX_INDEX_SR_DATA 0x5a01
+#define regGRBM_GFX_INDEX_SR_DATA_BASE_IDX 1
+#define regGRBM_GFX_CNTL_SR_SELECT 0x5a02
+#define regGRBM_GFX_CNTL_SR_SELECT_BASE_IDX 1
+#define regGRBM_GFX_CNTL_SR_DATA 0x5a03
+#define regGRBM_GFX_CNTL_SR_DATA_BASE_IDX 1
+#define regGRBM_MCM_ADDR 0x5a07
+#define regGRBM_MCM_ADDR_BASE_IDX 1
+#define regRLC_GPU_IOV_VF_ENABLE 0x5b00
+#define regRLC_GPU_IOV_VF_ENABLE_BASE_IDX 1
+#define regRLC_GPU_IOV_CFG_REG6 0x5b06
+#define regRLC_GPU_IOV_CFG_REG6_BASE_IDX 1
+#define regRLC_GPU_IOV_CFG_REG8 0x5b20
+#define regRLC_GPU_IOV_CFG_REG8_BASE_IDX 1
+#define regRLC_RLCV_TIMER_INT_0 0x5b25
+#define regRLC_RLCV_TIMER_INT_0_BASE_IDX 1
+#define regRLC_RLCV_TIMER_CTRL 0x5b26
+#define regRLC_RLCV_TIMER_CTRL_BASE_IDX 1
+#define regRLC_RLCV_TIMER_STAT 0x5b27
+#define regRLC_RLCV_TIMER_STAT_BASE_IDX 1
+#define regRLC_GPU_IOV_VF_DOORBELL_STATUS 0x5b2a
+#define regRLC_GPU_IOV_VF_DOORBELL_STATUS_BASE_IDX 1
+#define regRLC_GPU_IOV_VF_DOORBELL_STATUS_SET 0x5b2b
+#define regRLC_GPU_IOV_VF_DOORBELL_STATUS_SET_BASE_IDX 1
+#define regRLC_GPU_IOV_VF_DOORBELL_STATUS_CLR 0x5b2c
+#define regRLC_GPU_IOV_VF_DOORBELL_STATUS_CLR_BASE_IDX 1
+#define regRLC_GPU_IOV_VF_MASK 0x5b2d
+#define regRLC_GPU_IOV_VF_MASK_BASE_IDX 1
+#define regRLC_HYP_SEMAPHORE_0 0x5b2e
+#define regRLC_HYP_SEMAPHORE_0_BASE_IDX 1
+#define regRLC_HYP_SEMAPHORE_1 0x5b2f
+#define regRLC_HYP_SEMAPHORE_1_BASE_IDX 1
+#define regRLC_CLK_CNTL 0x5b31
+#define regRLC_CLK_CNTL_BASE_IDX 1
+#define regRLC_GPU_IOV_SCH_BLOCK 0x5b34
+#define regRLC_GPU_IOV_SCH_BLOCK_BASE_IDX 1
+#define regRLC_GPU_IOV_CFG_REG1 0x5b35
+#define regRLC_GPU_IOV_CFG_REG1_BASE_IDX 1
+#define regRLC_GPU_IOV_CFG_REG2 0x5b36
+#define regRLC_GPU_IOV_CFG_REG2_BASE_IDX 1
+#define regRLC_GPU_IOV_VM_BUSY_STATUS 0x5b37
+#define regRLC_GPU_IOV_VM_BUSY_STATUS_BASE_IDX 1
+#define regRLC_GPU_IOV_SCH_0 0x5b38
+#define regRLC_GPU_IOV_SCH_0_BASE_IDX 1
+#define regRLC_GPU_IOV_ACTIVE_FCN_ID 0x5b39
+#define regRLC_GPU_IOV_ACTIVE_FCN_ID_BASE_IDX 1
+#define regRLC_GPU_IOV_SCH_3 0x5b3a
+#define regRLC_GPU_IOV_SCH_3_BASE_IDX 1
+#define regRLC_GPU_IOV_SCH_1 0x5b3b
+#define regRLC_GPU_IOV_SCH_1_BASE_IDX 1
+#define regRLC_GPU_IOV_SCH_2 0x5b3c
+#define regRLC_GPU_IOV_SCH_2_BASE_IDX 1
+#define regRLC_GPU_IOV_INT_STAT 0x5b3f
+#define regRLC_GPU_IOV_INT_STAT_BASE_IDX 1
+#define regRLC_RLCV_TIMER_INT_1 0x5b40
+#define regRLC_RLCV_TIMER_INT_1_BASE_IDX 1
+#define regRLC_GPU_IOV_UCODE_ADDR 0x5b42
+#define regRLC_GPU_IOV_UCODE_ADDR_BASE_IDX 1
+#define regRLC_GPU_IOV_UCODE_DATA 0x5b43
+#define regRLC_GPU_IOV_UCODE_DATA_BASE_IDX 1
+#define regRLC_GPU_IOV_SCRATCH_ADDR 0x5b44
+#define regRLC_GPU_IOV_SCRATCH_ADDR_BASE_IDX 1
+#define regRLC_GPU_IOV_SCRATCH_DATA 0x5b45
+#define regRLC_GPU_IOV_SCRATCH_DATA_BASE_IDX 1
+#define regRLC_GPU_IOV_F32_CNTL 0x5b46
+#define regRLC_GPU_IOV_F32_CNTL_BASE_IDX 1
+#define regRLC_GPU_IOV_F32_RESET 0x5b47
+#define regRLC_GPU_IOV_F32_RESET_BASE_IDX 1
+#define regRLC_GPU_IOV_SDMA0_STATUS 0x5b48
+#define regRLC_GPU_IOV_SDMA0_STATUS_BASE_IDX 1
+#define regRLC_GPU_IOV_SDMA1_STATUS 0x5b49
+#define regRLC_GPU_IOV_SDMA1_STATUS_BASE_IDX 1
+#define regRLC_GPU_IOV_SMU_RESPONSE 0x5b4a
+#define regRLC_GPU_IOV_SMU_RESPONSE_BASE_IDX 1
+#define regRLC_GPU_IOV_VIRT_RESET_REQ 0x5b4c
+#define regRLC_GPU_IOV_VIRT_RESET_REQ_BASE_IDX 1
+#define regRLC_GPU_IOV_RLC_RESPONSE 0x5b4d
+#define regRLC_GPU_IOV_RLC_RESPONSE_BASE_IDX 1
+#define regRLC_GPU_IOV_INT_DISABLE 0x5b4e
+#define regRLC_GPU_IOV_INT_DISABLE_BASE_IDX 1
+#define regRLC_GPU_IOV_INT_FORCE 0x5b4f
+#define regRLC_GPU_IOV_INT_FORCE_BASE_IDX 1
+#define regRLC_GPU_IOV_SDMA0_BUSY_STATUS 0x5b50
+#define regRLC_GPU_IOV_SDMA0_BUSY_STATUS_BASE_IDX 1
+#define regRLC_GPU_IOV_SDMA1_BUSY_STATUS 0x5b51
+#define regRLC_GPU_IOV_SDMA1_BUSY_STATUS_BASE_IDX 1
+#define regRLC_HYP_SEMAPHORE_2 0x5b52
+#define regRLC_HYP_SEMAPHORE_2_BASE_IDX 1
+#define regRLC_HYP_SEMAPHORE_3 0x5b53
+#define regRLC_HYP_SEMAPHORE_3_BASE_IDX 1
+#define regRLC_GPU_IOV_SDMA2_STATUS 0x5b54
+#define regRLC_GPU_IOV_SDMA2_STATUS_BASE_IDX 1
+#define regRLC_GPU_IOV_SDMA3_STATUS 0x5b55
+#define regRLC_GPU_IOV_SDMA3_STATUS_BASE_IDX 1
+#define regRLC_GPU_IOV_SDMA4_STATUS 0x5b56
+#define regRLC_GPU_IOV_SDMA4_STATUS_BASE_IDX 1
+#define regRLC_GPU_IOV_SDMA5_STATUS 0x5b57
+#define regRLC_GPU_IOV_SDMA5_STATUS_BASE_IDX 1
+#define regRLC_GPU_IOV_SDMA6_STATUS 0x5b58
+#define regRLC_GPU_IOV_SDMA6_STATUS_BASE_IDX 1
+#define regRLC_GPU_IOV_SDMA7_STATUS 0x5b59
+#define regRLC_GPU_IOV_SDMA7_STATUS_BASE_IDX 1
+#define regRLC_GPU_IOV_SDMA2_BUSY_STATUS 0x5b5a
+#define regRLC_GPU_IOV_SDMA2_BUSY_STATUS_BASE_IDX 1
+#define regRLC_GPU_IOV_SDMA3_BUSY_STATUS 0x5b5b
+#define regRLC_GPU_IOV_SDMA3_BUSY_STATUS_BASE_IDX 1
+#define regRLC_GPU_IOV_SDMA4_BUSY_STATUS 0x5b5c
+#define regRLC_GPU_IOV_SDMA4_BUSY_STATUS_BASE_IDX 1
+#define regRLC_GPU_IOV_SDMA5_BUSY_STATUS 0x5b5d
+#define regRLC_GPU_IOV_SDMA5_BUSY_STATUS_BASE_IDX 1
+#define regRLC_GPU_IOV_SDMA6_BUSY_STATUS 0x5b5e
+#define regRLC_GPU_IOV_SDMA6_BUSY_STATUS_BASE_IDX 1
+#define regRLC_GPU_IOV_SDMA7_BUSY_STATUS 0x5b5f
+#define regRLC_GPU_IOV_SDMA7_BUSY_STATUS_BASE_IDX 1
+
+
+// addressBlock: xcd0_gc_utcl2_vmsharedhvdec
+// base address: 0x3ea00
+#define regMC_VM_FB_SIZE_OFFSET_VF0 0x5a80
+#define regMC_VM_FB_SIZE_OFFSET_VF0_BASE_IDX 1
+#define regMC_VM_FB_SIZE_OFFSET_VF1 0x5a81
+#define regMC_VM_FB_SIZE_OFFSET_VF1_BASE_IDX 1
+#define regMC_VM_FB_SIZE_OFFSET_VF2 0x5a82
+#define regMC_VM_FB_SIZE_OFFSET_VF2_BASE_IDX 1
+#define regMC_VM_FB_SIZE_OFFSET_VF3 0x5a83
+#define regMC_VM_FB_SIZE_OFFSET_VF3_BASE_IDX 1
+#define regMC_VM_FB_SIZE_OFFSET_VF4 0x5a84
+#define regMC_VM_FB_SIZE_OFFSET_VF4_BASE_IDX 1
+#define regMC_VM_FB_SIZE_OFFSET_VF5 0x5a85
+#define regMC_VM_FB_SIZE_OFFSET_VF5_BASE_IDX 1
+#define regMC_VM_FB_SIZE_OFFSET_VF6 0x5a86
+#define regMC_VM_FB_SIZE_OFFSET_VF6_BASE_IDX 1
+#define regMC_VM_FB_SIZE_OFFSET_VF7 0x5a87
+#define regMC_VM_FB_SIZE_OFFSET_VF7_BASE_IDX 1
+#define regMC_VM_FB_SIZE_OFFSET_VF8 0x5a88
+#define regMC_VM_FB_SIZE_OFFSET_VF8_BASE_IDX 1
+#define regMC_VM_FB_SIZE_OFFSET_VF9 0x5a89
+#define regMC_VM_FB_SIZE_OFFSET_VF9_BASE_IDX 1
+#define regMC_VM_FB_SIZE_OFFSET_VF10 0x5a8a
+#define regMC_VM_FB_SIZE_OFFSET_VF10_BASE_IDX 1
+#define regMC_VM_FB_SIZE_OFFSET_VF11 0x5a8b
+#define regMC_VM_FB_SIZE_OFFSET_VF11_BASE_IDX 1
+#define regMC_VM_FB_SIZE_OFFSET_VF12 0x5a8c
+#define regMC_VM_FB_SIZE_OFFSET_VF12_BASE_IDX 1
+#define regMC_VM_FB_SIZE_OFFSET_VF13 0x5a8d
+#define regMC_VM_FB_SIZE_OFFSET_VF13_BASE_IDX 1
+#define regMC_VM_FB_SIZE_OFFSET_VF14 0x5a8e
+#define regMC_VM_FB_SIZE_OFFSET_VF14_BASE_IDX 1
+#define regMC_VM_FB_SIZE_OFFSET_VF15 0x5a8f
+#define regMC_VM_FB_SIZE_OFFSET_VF15_BASE_IDX 1
+#define regVM_IOMMU_MMIO_CNTRL_1 0x5a90
+#define regVM_IOMMU_MMIO_CNTRL_1_BASE_IDX 1
+#define regMC_VM_MARC_BASE_LO_0 0x5a91
+#define regMC_VM_MARC_BASE_LO_0_BASE_IDX 1
+#define regMC_VM_MARC_BASE_LO_1 0x5a92
+#define regMC_VM_MARC_BASE_LO_1_BASE_IDX 1
+#define regMC_VM_MARC_BASE_LO_2 0x5a93
+#define regMC_VM_MARC_BASE_LO_2_BASE_IDX 1
+#define regMC_VM_MARC_BASE_LO_3 0x5a94
+#define regMC_VM_MARC_BASE_LO_3_BASE_IDX 1
+#define regMC_VM_MARC_BASE_HI_0 0x5a95
+#define regMC_VM_MARC_BASE_HI_0_BASE_IDX 1
+#define regMC_VM_MARC_BASE_HI_1 0x5a96
+#define regMC_VM_MARC_BASE_HI_1_BASE_IDX 1
+#define regMC_VM_MARC_BASE_HI_2 0x5a97
+#define regMC_VM_MARC_BASE_HI_2_BASE_IDX 1
+#define regMC_VM_MARC_BASE_HI_3 0x5a98
+#define regMC_VM_MARC_BASE_HI_3_BASE_IDX 1
+#define regMC_VM_MARC_RELOC_LO_0 0x5a99
+#define regMC_VM_MARC_RELOC_LO_0_BASE_IDX 1
+#define regMC_VM_MARC_RELOC_LO_1 0x5a9a
+#define regMC_VM_MARC_RELOC_LO_1_BASE_IDX 1
+#define regMC_VM_MARC_RELOC_LO_2 0x5a9b
+#define regMC_VM_MARC_RELOC_LO_2_BASE_IDX 1
+#define regMC_VM_MARC_RELOC_LO_3 0x5a9c
+#define regMC_VM_MARC_RELOC_LO_3_BASE_IDX 1
+#define regMC_VM_MARC_RELOC_HI_0 0x5a9d
+#define regMC_VM_MARC_RELOC_HI_0_BASE_IDX 1
+#define regMC_VM_MARC_RELOC_HI_1 0x5a9e
+#define regMC_VM_MARC_RELOC_HI_1_BASE_IDX 1
+#define regMC_VM_MARC_RELOC_HI_2 0x5a9f
+#define regMC_VM_MARC_RELOC_HI_2_BASE_IDX 1
+#define regMC_VM_MARC_RELOC_HI_3 0x5aa0
+#define regMC_VM_MARC_RELOC_HI_3_BASE_IDX 1
+#define regMC_VM_MARC_LEN_LO_0 0x5aa1
+#define regMC_VM_MARC_LEN_LO_0_BASE_IDX 1
+#define regMC_VM_MARC_LEN_LO_1 0x5aa2
+#define regMC_VM_MARC_LEN_LO_1_BASE_IDX 1
+#define regMC_VM_MARC_LEN_LO_2 0x5aa3
+#define regMC_VM_MARC_LEN_LO_2_BASE_IDX 1
+#define regMC_VM_MARC_LEN_LO_3 0x5aa4
+#define regMC_VM_MARC_LEN_LO_3_BASE_IDX 1
+#define regMC_VM_MARC_LEN_HI_0 0x5aa5
+#define regMC_VM_MARC_LEN_HI_0_BASE_IDX 1
+#define regMC_VM_MARC_LEN_HI_1 0x5aa6
+#define regMC_VM_MARC_LEN_HI_1_BASE_IDX 1
+#define regMC_VM_MARC_LEN_HI_2 0x5aa7
+#define regMC_VM_MARC_LEN_HI_2_BASE_IDX 1
+#define regMC_VM_MARC_LEN_HI_3 0x5aa8
+#define regMC_VM_MARC_LEN_HI_3_BASE_IDX 1
+#define regVM_IOMMU_CONTROL_REGISTER 0x5aa9
+#define regVM_IOMMU_CONTROL_REGISTER_BASE_IDX 1
+#define regVM_IOMMU_PERFORMANCE_OPTIMIZATION_CONTROL_REGISTER 0x5aaa
+#define regVM_IOMMU_PERFORMANCE_OPTIMIZATION_CONTROL_REGISTER_BASE_IDX 1
+#define regVM_PCIE_ATS_CNTL 0x5aab
+#define regVM_PCIE_ATS_CNTL_BASE_IDX 1
+#define regVM_PCIE_ATS_CNTL_VF_0 0x5aac
+#define regVM_PCIE_ATS_CNTL_VF_0_BASE_IDX 1
+#define regVM_PCIE_ATS_CNTL_VF_1 0x5aad
+#define regVM_PCIE_ATS_CNTL_VF_1_BASE_IDX 1
+#define regVM_PCIE_ATS_CNTL_VF_2 0x5aae
+#define regVM_PCIE_ATS_CNTL_VF_2_BASE_IDX 1
+#define regVM_PCIE_ATS_CNTL_VF_3 0x5aaf
+#define regVM_PCIE_ATS_CNTL_VF_3_BASE_IDX 1
+#define regVM_PCIE_ATS_CNTL_VF_4 0x5ab0
+#define regVM_PCIE_ATS_CNTL_VF_4_BASE_IDX 1
+#define regVM_PCIE_ATS_CNTL_VF_5 0x5ab1
+#define regVM_PCIE_ATS_CNTL_VF_5_BASE_IDX 1
+#define regVM_PCIE_ATS_CNTL_VF_6 0x5ab2
+#define regVM_PCIE_ATS_CNTL_VF_6_BASE_IDX 1
+#define regVM_PCIE_ATS_CNTL_VF_7 0x5ab3
+#define regVM_PCIE_ATS_CNTL_VF_7_BASE_IDX 1
+#define regVM_PCIE_ATS_CNTL_VF_8 0x5ab4
+#define regVM_PCIE_ATS_CNTL_VF_8_BASE_IDX 1
+#define regVM_PCIE_ATS_CNTL_VF_9 0x5ab5
+#define regVM_PCIE_ATS_CNTL_VF_9_BASE_IDX 1
+#define regVM_PCIE_ATS_CNTL_VF_10 0x5ab6
+#define regVM_PCIE_ATS_CNTL_VF_10_BASE_IDX 1
+#define regVM_PCIE_ATS_CNTL_VF_11 0x5ab7
+#define regVM_PCIE_ATS_CNTL_VF_11_BASE_IDX 1
+#define regVM_PCIE_ATS_CNTL_VF_12 0x5ab8
+#define regVM_PCIE_ATS_CNTL_VF_12_BASE_IDX 1
+#define regVM_PCIE_ATS_CNTL_VF_13 0x5ab9
+#define regVM_PCIE_ATS_CNTL_VF_13_BASE_IDX 1
+#define regVM_PCIE_ATS_CNTL_VF_14 0x5aba
+#define regVM_PCIE_ATS_CNTL_VF_14_BASE_IDX 1
+#define regVM_PCIE_ATS_CNTL_VF_15 0x5abb
+#define regVM_PCIE_ATS_CNTL_VF_15_BASE_IDX 1
+#define regMC_SHARED_ACTIVE_FCN_ID 0x5abc
+#define regMC_SHARED_ACTIVE_FCN_ID_BASE_IDX 1
+#define regMC_VM_XGMI_GPUIOV_ENABLE 0x5abd
+#define regMC_VM_XGMI_GPUIOV_ENABLE_BASE_IDX 1
+
+
+// addressBlock: xcd0_gc_pspdec
+// base address: 0x3f000
+#define regCPG_PSP_DEBUG 0x5c30
+#define regCPG_PSP_DEBUG_BASE_IDX 1
+#define regCPC_PSP_DEBUG 0x5c31
+#define regCPC_PSP_DEBUG_BASE_IDX 1
+#define regCP_PSP_XCP_CTL 0x5c34
+#define regCP_PSP_XCP_CTL_BASE_IDX 1
+#define regGRBM_SEC_CNTL 0x5e0b
+#define regGRBM_SEC_CNTL_BASE_IDX 1
+#define regGRBM_IOV_ERROR_FIFO_DATA 0x5e12
+#define regGRBM_IOV_ERROR_FIFO_DATA_BASE_IDX 1
+#define regGRBM_DSM_BYPASS 0x5e13
+#define regGRBM_DSM_BYPASS_BASE_IDX 1
+#define regGRBM_CAM_INDEX 0x5e16
+#define regGRBM_CAM_INDEX_BASE_IDX 1
+#define regGRBM_HYP_CAM_INDEX 0x5e16
+#define regGRBM_HYP_CAM_INDEX_BASE_IDX 1
+#define regGRBM_CAM_DATA 0x5e17
+#define regGRBM_CAM_DATA_BASE_IDX 1
+#define regGRBM_HYP_CAM_DATA 0x5e17
+#define regGRBM_HYP_CAM_DATA_BASE_IDX 1
+#define regRLC_FWL_FIRST_VIOL_ADDR 0x5f37
+#define regRLC_FWL_FIRST_VIOL_ADDR_BASE_IDX 1
+
+
+// addressBlock: sqind
+// base address: 0x0
+#define ixSQ_DEBUG_STS_LOCAL 0x0008
+#define ixSQ_DEBUG_CTRL_LOCAL 0x0009
+#define ixSQ_WAVE_VALID_AND_IDLE 0x000a
+#define ixSQ_WAVE_MODE 0x0011
+#define ixSQ_WAVE_STATUS 0x0012
+#define ixSQ_WAVE_TRAPSTS 0x0013
+#define ixSQ_WAVE_HW_ID 0x0014
+#define ixSQ_WAVE_GPR_ALLOC 0x0015
+#define ixSQ_WAVE_LDS_ALLOC 0x0016
+#define ixSQ_WAVE_IB_STS 0x0017
+#define ixSQ_WAVE_PC_LO 0x0018
+#define ixSQ_WAVE_PC_HI 0x0019
+#define ixSQ_WAVE_INST_DW0 0x001a
+#define ixSQ_WAVE_INST_DW1 0x001b
+#define ixSQ_WAVE_IB_DBG0 0x001c
+#define ixSQ_WAVE_IB_DBG1 0x001d
+#define ixSQ_WAVE_FLUSH_IB 0x001e
+#define ixSQ_WAVE_TTMP0 0x026c
+#define ixSQ_WAVE_TTMP1 0x026d
+#define ixSQ_WAVE_TTMP2 0x026e
+#define ixSQ_WAVE_TTMP3 0x026f
+#define ixSQ_WAVE_TTMP4 0x0270
+#define ixSQ_WAVE_TTMP5 0x0271
+#define ixSQ_WAVE_TTMP6 0x0272
+#define ixSQ_WAVE_TTMP7 0x0273
+#define ixSQ_WAVE_TTMP8 0x0274
+#define ixSQ_WAVE_TTMP9 0x0275
+#define ixSQ_WAVE_TTMP10 0x0276
+#define ixSQ_WAVE_TTMP11 0x0277
+#define ixSQ_WAVE_TTMP12 0x0278
+#define ixSQ_WAVE_TTMP13 0x0279
+#define ixSQ_WAVE_TTMP14 0x027a
+#define ixSQ_WAVE_TTMP15 0x027b
+#define ixSQ_WAVE_M0 0x027c
+#define ixSQ_WAVE_EXEC_LO 0x027e
+#define ixSQ_WAVE_EXEC_HI 0x027f
+#define ixSQ_INTERRUPT_WORD_AUTO_CTXID 0x20c0
+#define ixSQ_INTERRUPT_WORD_AUTO_HI 0x20c0
+#define ixSQ_INTERRUPT_WORD_AUTO_LO 0x20c0
+#define ixSQ_INTERRUPT_WORD_CMN_CTXID 0x20c0
+#define ixSQ_INTERRUPT_WORD_CMN_HI 0x20c0
+#define ixSQ_INTERRUPT_WORD_WAVE_CTXID 0x20c0
+#define ixSQ_INTERRUPT_WORD_WAVE_HI 0x20c0
+#define ixSQ_INTERRUPT_WORD_WAVE_LO 0x20c0
+
+
+#endif
diff --git a/drivers/gpu/drm/amd/include/asic_reg/gc/gc_9_4_3_sh_mask.h b/drivers/gpu/drm/amd/include/asic_reg/gc/gc_9_4_3_sh_mask.h
new file mode 100644
index 000000000000..84a75b58347f
--- /dev/null
+++ b/drivers/gpu/drm/amd/include/asic_reg/gc/gc_9_4_3_sh_mask.h
@@ -0,0 +1,30535 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ */
+#ifndef _gc_9_4_3_SH_MASK_HEADER
+#define _gc_9_4_3_SH_MASK_HEADER
+
+
+// addressBlock: xcd0_gc_grbmdec
+//GRBM_CNTL
+#define GRBM_CNTL__READ_TIMEOUT__SHIFT 0x0
+#define GRBM_CNTL__REPORT_LAST_RDERR__SHIFT 0x1f
+#define GRBM_CNTL__READ_TIMEOUT_MASK 0x000000FFL
+#define GRBM_CNTL__REPORT_LAST_RDERR_MASK 0x80000000L
+//GRBM_SKEW_CNTL
+#define GRBM_SKEW_CNTL__SKEW_TOP_THRESHOLD__SHIFT 0x0
+#define GRBM_SKEW_CNTL__SKEW_COUNT__SHIFT 0x6
+#define GRBM_SKEW_CNTL__SKEW_TOP_THRESHOLD_MASK 0x0000003FL
+#define GRBM_SKEW_CNTL__SKEW_COUNT_MASK 0x00000FC0L
+//GRBM_STATUS2
+#define GRBM_STATUS2__ME0PIPE1_CMDFIFO_AVAIL__SHIFT 0x0
+#define GRBM_STATUS2__ME0PIPE1_CF_RQ_PENDING__SHIFT 0x4
+#define GRBM_STATUS2__ME0PIPE1_PF_RQ_PENDING__SHIFT 0x5
+#define GRBM_STATUS2__ME1PIPE0_RQ_PENDING__SHIFT 0x6
+#define GRBM_STATUS2__ME1PIPE1_RQ_PENDING__SHIFT 0x7
+#define GRBM_STATUS2__ME1PIPE2_RQ_PENDING__SHIFT 0x8
+#define GRBM_STATUS2__ME1PIPE3_RQ_PENDING__SHIFT 0x9
+#define GRBM_STATUS2__ME2PIPE0_RQ_PENDING__SHIFT 0xa
+#define GRBM_STATUS2__ME2PIPE1_RQ_PENDING__SHIFT 0xb
+#define GRBM_STATUS2__ME2PIPE2_RQ_PENDING__SHIFT 0xc
+#define GRBM_STATUS2__ME2PIPE3_RQ_PENDING__SHIFT 0xd
+#define GRBM_STATUS2__RLC_RQ_PENDING__SHIFT 0xe
+#define GRBM_STATUS2__UTCL2_BUSY__SHIFT 0xf
+#define GRBM_STATUS2__EA_BUSY__SHIFT 0x10
+#define GRBM_STATUS2__RMI_BUSY__SHIFT 0x11
+#define GRBM_STATUS2__UTCL2_RQ_PENDING__SHIFT 0x12
+#define GRBM_STATUS2__CPF_RQ_PENDING__SHIFT 0x13
+#define GRBM_STATUS2__EA_LINK_BUSY__SHIFT 0x14
+#define GRBM_STATUS2__CANE_BUSY__SHIFT 0x15
+#define GRBM_STATUS2__CANE_LINK_BUSY__SHIFT 0x16
+#define GRBM_STATUS2__RLC_BUSY__SHIFT 0x18
+#define GRBM_STATUS2__TC_BUSY__SHIFT 0x19
+#define GRBM_STATUS2__TCC_CC_RESIDENT__SHIFT 0x1a
+#define GRBM_STATUS2__CPF_BUSY__SHIFT 0x1c
+#define GRBM_STATUS2__CPC_BUSY__SHIFT 0x1d
+#define GRBM_STATUS2__CPG_BUSY__SHIFT 0x1e
+#define GRBM_STATUS2__CPAXI_BUSY__SHIFT 0x1f
+#define GRBM_STATUS2__ME0PIPE1_CMDFIFO_AVAIL_MASK 0x0000000FL
+#define GRBM_STATUS2__ME0PIPE1_CF_RQ_PENDING_MASK 0x00000010L
+#define GRBM_STATUS2__ME0PIPE1_PF_RQ_PENDING_MASK 0x00000020L
+#define GRBM_STATUS2__ME1PIPE0_RQ_PENDING_MASK 0x00000040L
+#define GRBM_STATUS2__ME1PIPE1_RQ_PENDING_MASK 0x00000080L
+#define GRBM_STATUS2__ME1PIPE2_RQ_PENDING_MASK 0x00000100L
+#define GRBM_STATUS2__ME1PIPE3_RQ_PENDING_MASK 0x00000200L
+#define GRBM_STATUS2__ME2PIPE0_RQ_PENDING_MASK 0x00000400L
+#define GRBM_STATUS2__ME2PIPE1_RQ_PENDING_MASK 0x00000800L
+#define GRBM_STATUS2__ME2PIPE2_RQ_PENDING_MASK 0x00001000L
+#define GRBM_STATUS2__ME2PIPE3_RQ_PENDING_MASK 0x00002000L
+#define GRBM_STATUS2__RLC_RQ_PENDING_MASK 0x00004000L
+#define GRBM_STATUS2__UTCL2_BUSY_MASK 0x00008000L
+#define GRBM_STATUS2__EA_BUSY_MASK 0x00010000L
+#define GRBM_STATUS2__RMI_BUSY_MASK 0x00020000L
+#define GRBM_STATUS2__UTCL2_RQ_PENDING_MASK 0x00040000L
+#define GRBM_STATUS2__CPF_RQ_PENDING_MASK 0x00080000L
+#define GRBM_STATUS2__EA_LINK_BUSY_MASK 0x00100000L
+#define GRBM_STATUS2__CANE_BUSY_MASK 0x00200000L
+#define GRBM_STATUS2__CANE_LINK_BUSY_MASK 0x00400000L
+#define GRBM_STATUS2__RLC_BUSY_MASK 0x01000000L
+#define GRBM_STATUS2__TC_BUSY_MASK 0x02000000L
+#define GRBM_STATUS2__TCC_CC_RESIDENT_MASK 0x04000000L
+#define GRBM_STATUS2__CPF_BUSY_MASK 0x10000000L
+#define GRBM_STATUS2__CPC_BUSY_MASK 0x20000000L
+#define GRBM_STATUS2__CPG_BUSY_MASK 0x40000000L
+#define GRBM_STATUS2__CPAXI_BUSY_MASK 0x80000000L
+//GRBM_PWR_CNTL
+#define GRBM_PWR_CNTL__ALL_REQ_TYPE__SHIFT 0x0
+#define GRBM_PWR_CNTL__GFX_REQ_TYPE__SHIFT 0x2
+#define GRBM_PWR_CNTL__ALL_RSP_TYPE__SHIFT 0x4
+#define GRBM_PWR_CNTL__GFX_RSP_TYPE__SHIFT 0x6
+#define GRBM_PWR_CNTL__GFX_REQ_EN__SHIFT 0xe
+#define GRBM_PWR_CNTL__ALL_REQ_EN__SHIFT 0xf
+#define GRBM_PWR_CNTL__ALL_REQ_TYPE_MASK 0x00000003L
+#define GRBM_PWR_CNTL__GFX_REQ_TYPE_MASK 0x0000000CL
+#define GRBM_PWR_CNTL__ALL_RSP_TYPE_MASK 0x00000030L
+#define GRBM_PWR_CNTL__GFX_RSP_TYPE_MASK 0x000000C0L
+#define GRBM_PWR_CNTL__GFX_REQ_EN_MASK 0x00004000L
+#define GRBM_PWR_CNTL__ALL_REQ_EN_MASK 0x00008000L
+//GRBM_STATUS
+#define GRBM_STATUS__ME0PIPE0_CMDFIFO_AVAIL__SHIFT 0x0
+#define GRBM_STATUS__RSMU_RQ_PENDING__SHIFT 0x5
+#define GRBM_STATUS__ME0PIPE0_CF_RQ_PENDING__SHIFT 0x7
+#define GRBM_STATUS__ME0PIPE0_PF_RQ_PENDING__SHIFT 0x8
+#define GRBM_STATUS__GDS_DMA_RQ_PENDING__SHIFT 0x9
+#define GRBM_STATUS__DB_CLEAN__SHIFT 0xc
+#define GRBM_STATUS__CB_CLEAN__SHIFT 0xd
+#define GRBM_STATUS__TA_BUSY__SHIFT 0xe
+#define GRBM_STATUS__GDS_BUSY__SHIFT 0xf
+#define GRBM_STATUS__WD_BUSY_NO_DMA__SHIFT 0x10
+#define GRBM_STATUS__VGT_BUSY__SHIFT 0x11
+#define GRBM_STATUS__IA_BUSY_NO_DMA__SHIFT 0x12
+#define GRBM_STATUS__IA_BUSY__SHIFT 0x13
+#define GRBM_STATUS__SX_BUSY__SHIFT 0x14
+#define GRBM_STATUS__WD_BUSY__SHIFT 0x15
+#define GRBM_STATUS__SPI_BUSY__SHIFT 0x16
+#define GRBM_STATUS__BCI_BUSY__SHIFT 0x17
+#define GRBM_STATUS__SC_BUSY__SHIFT 0x18
+#define GRBM_STATUS__PA_BUSY__SHIFT 0x19
+#define GRBM_STATUS__DB_BUSY__SHIFT 0x1a
+#define GRBM_STATUS__CP_COHERENCY_BUSY__SHIFT 0x1c
+#define GRBM_STATUS__CP_BUSY__SHIFT 0x1d
+#define GRBM_STATUS__CB_BUSY__SHIFT 0x1e
+#define GRBM_STATUS__GUI_ACTIVE__SHIFT 0x1f
+#define GRBM_STATUS__ME0PIPE0_CMDFIFO_AVAIL_MASK 0x0000000FL
+#define GRBM_STATUS__RSMU_RQ_PENDING_MASK 0x00000020L
+#define GRBM_STATUS__ME0PIPE0_CF_RQ_PENDING_MASK 0x00000080L
+#define GRBM_STATUS__ME0PIPE0_PF_RQ_PENDING_MASK 0x00000100L
+#define GRBM_STATUS__GDS_DMA_RQ_PENDING_MASK 0x00000200L
+#define GRBM_STATUS__DB_CLEAN_MASK 0x00001000L
+#define GRBM_STATUS__CB_CLEAN_MASK 0x00002000L
+#define GRBM_STATUS__TA_BUSY_MASK 0x00004000L
+#define GRBM_STATUS__GDS_BUSY_MASK 0x00008000L
+#define GRBM_STATUS__WD_BUSY_NO_DMA_MASK 0x00010000L
+#define GRBM_STATUS__VGT_BUSY_MASK 0x00020000L
+#define GRBM_STATUS__IA_BUSY_NO_DMA_MASK 0x00040000L
+#define GRBM_STATUS__IA_BUSY_MASK 0x00080000L
+#define GRBM_STATUS__SX_BUSY_MASK 0x00100000L
+#define GRBM_STATUS__WD_BUSY_MASK 0x00200000L
+#define GRBM_STATUS__SPI_BUSY_MASK 0x00400000L
+#define GRBM_STATUS__BCI_BUSY_MASK 0x00800000L
+#define GRBM_STATUS__SC_BUSY_MASK 0x01000000L
+#define GRBM_STATUS__PA_BUSY_MASK 0x02000000L
+#define GRBM_STATUS__DB_BUSY_MASK 0x04000000L
+#define GRBM_STATUS__CP_COHERENCY_BUSY_MASK 0x10000000L
+#define GRBM_STATUS__CP_BUSY_MASK 0x20000000L
+#define GRBM_STATUS__CB_BUSY_MASK 0x40000000L
+#define GRBM_STATUS__GUI_ACTIVE_MASK 0x80000000L
+//GRBM_STATUS_SE0
+#define GRBM_STATUS_SE0__DB_CLEAN__SHIFT 0x1
+#define GRBM_STATUS_SE0__CB_CLEAN__SHIFT 0x2
+#define GRBM_STATUS_SE0__RMI_BUSY__SHIFT 0x15
+#define GRBM_STATUS_SE0__BCI_BUSY__SHIFT 0x16
+#define GRBM_STATUS_SE0__VGT_BUSY__SHIFT 0x17
+#define GRBM_STATUS_SE0__PA_BUSY__SHIFT 0x18
+#define GRBM_STATUS_SE0__TA_BUSY__SHIFT 0x19
+#define GRBM_STATUS_SE0__SX_BUSY__SHIFT 0x1a
+#define GRBM_STATUS_SE0__SPI_BUSY__SHIFT 0x1b
+#define GRBM_STATUS_SE0__SC_BUSY__SHIFT 0x1d
+#define GRBM_STATUS_SE0__DB_BUSY__SHIFT 0x1e
+#define GRBM_STATUS_SE0__CB_BUSY__SHIFT 0x1f
+#define GRBM_STATUS_SE0__DB_CLEAN_MASK 0x00000002L
+#define GRBM_STATUS_SE0__CB_CLEAN_MASK 0x00000004L
+#define GRBM_STATUS_SE0__RMI_BUSY_MASK 0x00200000L
+#define GRBM_STATUS_SE0__BCI_BUSY_MASK 0x00400000L
+#define GRBM_STATUS_SE0__VGT_BUSY_MASK 0x00800000L
+#define GRBM_STATUS_SE0__PA_BUSY_MASK 0x01000000L
+#define GRBM_STATUS_SE0__TA_BUSY_MASK 0x02000000L
+#define GRBM_STATUS_SE0__SX_BUSY_MASK 0x04000000L
+#define GRBM_STATUS_SE0__SPI_BUSY_MASK 0x08000000L
+#define GRBM_STATUS_SE0__SC_BUSY_MASK 0x20000000L
+#define GRBM_STATUS_SE0__DB_BUSY_MASK 0x40000000L
+#define GRBM_STATUS_SE0__CB_BUSY_MASK 0x80000000L
+//GRBM_STATUS_SE1
+#define GRBM_STATUS_SE1__DB_CLEAN__SHIFT 0x1
+#define GRBM_STATUS_SE1__CB_CLEAN__SHIFT 0x2
+#define GRBM_STATUS_SE1__RMI_BUSY__SHIFT 0x15
+#define GRBM_STATUS_SE1__BCI_BUSY__SHIFT 0x16
+#define GRBM_STATUS_SE1__VGT_BUSY__SHIFT 0x17
+#define GRBM_STATUS_SE1__PA_BUSY__SHIFT 0x18
+#define GRBM_STATUS_SE1__TA_BUSY__SHIFT 0x19
+#define GRBM_STATUS_SE1__SX_BUSY__SHIFT 0x1a
+#define GRBM_STATUS_SE1__SPI_BUSY__SHIFT 0x1b
+#define GRBM_STATUS_SE1__SC_BUSY__SHIFT 0x1d
+#define GRBM_STATUS_SE1__DB_BUSY__SHIFT 0x1e
+#define GRBM_STATUS_SE1__CB_BUSY__SHIFT 0x1f
+#define GRBM_STATUS_SE1__DB_CLEAN_MASK 0x00000002L
+#define GRBM_STATUS_SE1__CB_CLEAN_MASK 0x00000004L
+#define GRBM_STATUS_SE1__RMI_BUSY_MASK 0x00200000L
+#define GRBM_STATUS_SE1__BCI_BUSY_MASK 0x00400000L
+#define GRBM_STATUS_SE1__VGT_BUSY_MASK 0x00800000L
+#define GRBM_STATUS_SE1__PA_BUSY_MASK 0x01000000L
+#define GRBM_STATUS_SE1__TA_BUSY_MASK 0x02000000L
+#define GRBM_STATUS_SE1__SX_BUSY_MASK 0x04000000L
+#define GRBM_STATUS_SE1__SPI_BUSY_MASK 0x08000000L
+#define GRBM_STATUS_SE1__SC_BUSY_MASK 0x20000000L
+#define GRBM_STATUS_SE1__DB_BUSY_MASK 0x40000000L
+#define GRBM_STATUS_SE1__CB_BUSY_MASK 0x80000000L
+//GRBM_SOFT_RESET
+#define GRBM_SOFT_RESET__SOFT_RESET_CP__SHIFT 0x0
+#define GRBM_SOFT_RESET__SOFT_RESET_RLC__SHIFT 0x2
+#define GRBM_SOFT_RESET__SOFT_RESET_GFX__SHIFT 0x10
+#define GRBM_SOFT_RESET__SOFT_RESET_CPF__SHIFT 0x11
+#define GRBM_SOFT_RESET__SOFT_RESET_CPC__SHIFT 0x12
+#define GRBM_SOFT_RESET__SOFT_RESET_CPG__SHIFT 0x13
+#define GRBM_SOFT_RESET__SOFT_RESET_CAC__SHIFT 0x14
+#define GRBM_SOFT_RESET__SOFT_RESET_CANE__SHIFT 0x15
+#define GRBM_SOFT_RESET__SOFT_RESET_EA__SHIFT 0x16
+#define GRBM_SOFT_RESET__SOFT_RESET_UTCL2__SHIFT 0x17
+#define GRBM_SOFT_RESET__SOFT_RESET_CP_MASK 0x00000001L
+#define GRBM_SOFT_RESET__SOFT_RESET_RLC_MASK 0x00000004L
+#define GRBM_SOFT_RESET__SOFT_RESET_GFX_MASK 0x00010000L
+#define GRBM_SOFT_RESET__SOFT_RESET_CPF_MASK 0x00020000L
+#define GRBM_SOFT_RESET__SOFT_RESET_CPC_MASK 0x00040000L
+#define GRBM_SOFT_RESET__SOFT_RESET_CPG_MASK 0x00080000L
+#define GRBM_SOFT_RESET__SOFT_RESET_CAC_MASK 0x00100000L
+#define GRBM_SOFT_RESET__SOFT_RESET_CANE_MASK 0x00200000L
+#define GRBM_SOFT_RESET__SOFT_RESET_EA_MASK 0x00400000L
+#define GRBM_SOFT_RESET__SOFT_RESET_UTCL2_MASK 0x00800000L
+//GRBM_GFX_CLKEN_CNTL
+#define GRBM_GFX_CLKEN_CNTL__PREFIX_DELAY_CNT__SHIFT 0x0
+#define GRBM_GFX_CLKEN_CNTL__POST_DELAY_CNT__SHIFT 0x8
+#define GRBM_GFX_CLKEN_CNTL__PREFIX_DELAY_CNT_MASK 0x0000000FL
+#define GRBM_GFX_CLKEN_CNTL__POST_DELAY_CNT_MASK 0x00001F00L
+//GRBM_WAIT_IDLE_CLOCKS
+#define GRBM_WAIT_IDLE_CLOCKS__WAIT_IDLE_CLOCKS__SHIFT 0x0
+#define GRBM_WAIT_IDLE_CLOCKS__WAIT_IDLE_CLOCKS_MASK 0x000000FFL
+//GRBM_STATUS_SE2
+#define GRBM_STATUS_SE2__DB_CLEAN__SHIFT 0x1
+#define GRBM_STATUS_SE2__CB_CLEAN__SHIFT 0x2
+#define GRBM_STATUS_SE2__RMI_BUSY__SHIFT 0x15
+#define GRBM_STATUS_SE2__BCI_BUSY__SHIFT 0x16
+#define GRBM_STATUS_SE2__VGT_BUSY__SHIFT 0x17
+#define GRBM_STATUS_SE2__PA_BUSY__SHIFT 0x18
+#define GRBM_STATUS_SE2__TA_BUSY__SHIFT 0x19
+#define GRBM_STATUS_SE2__SX_BUSY__SHIFT 0x1a
+#define GRBM_STATUS_SE2__SPI_BUSY__SHIFT 0x1b
+#define GRBM_STATUS_SE2__SC_BUSY__SHIFT 0x1d
+#define GRBM_STATUS_SE2__DB_BUSY__SHIFT 0x1e
+#define GRBM_STATUS_SE2__CB_BUSY__SHIFT 0x1f
+#define GRBM_STATUS_SE2__DB_CLEAN_MASK 0x00000002L
+#define GRBM_STATUS_SE2__CB_CLEAN_MASK 0x00000004L
+#define GRBM_STATUS_SE2__RMI_BUSY_MASK 0x00200000L
+#define GRBM_STATUS_SE2__BCI_BUSY_MASK 0x00400000L
+#define GRBM_STATUS_SE2__VGT_BUSY_MASK 0x00800000L
+#define GRBM_STATUS_SE2__PA_BUSY_MASK 0x01000000L
+#define GRBM_STATUS_SE2__TA_BUSY_MASK 0x02000000L
+#define GRBM_STATUS_SE2__SX_BUSY_MASK 0x04000000L
+#define GRBM_STATUS_SE2__SPI_BUSY_MASK 0x08000000L
+#define GRBM_STATUS_SE2__SC_BUSY_MASK 0x20000000L
+#define GRBM_STATUS_SE2__DB_BUSY_MASK 0x40000000L
+#define GRBM_STATUS_SE2__CB_BUSY_MASK 0x80000000L
+//GRBM_STATUS_SE3
+#define GRBM_STATUS_SE3__DB_CLEAN__SHIFT 0x1
+#define GRBM_STATUS_SE3__CB_CLEAN__SHIFT 0x2
+#define GRBM_STATUS_SE3__RMI_BUSY__SHIFT 0x15
+#define GRBM_STATUS_SE3__BCI_BUSY__SHIFT 0x16
+#define GRBM_STATUS_SE3__VGT_BUSY__SHIFT 0x17
+#define GRBM_STATUS_SE3__PA_BUSY__SHIFT 0x18
+#define GRBM_STATUS_SE3__TA_BUSY__SHIFT 0x19
+#define GRBM_STATUS_SE3__SX_BUSY__SHIFT 0x1a
+#define GRBM_STATUS_SE3__SPI_BUSY__SHIFT 0x1b
+#define GRBM_STATUS_SE3__SC_BUSY__SHIFT 0x1d
+#define GRBM_STATUS_SE3__DB_BUSY__SHIFT 0x1e
+#define GRBM_STATUS_SE3__CB_BUSY__SHIFT 0x1f
+#define GRBM_STATUS_SE3__DB_CLEAN_MASK 0x00000002L
+#define GRBM_STATUS_SE3__CB_CLEAN_MASK 0x00000004L
+#define GRBM_STATUS_SE3__RMI_BUSY_MASK 0x00200000L
+#define GRBM_STATUS_SE3__BCI_BUSY_MASK 0x00400000L
+#define GRBM_STATUS_SE3__VGT_BUSY_MASK 0x00800000L
+#define GRBM_STATUS_SE3__PA_BUSY_MASK 0x01000000L
+#define GRBM_STATUS_SE3__TA_BUSY_MASK 0x02000000L
+#define GRBM_STATUS_SE3__SX_BUSY_MASK 0x04000000L
+#define GRBM_STATUS_SE3__SPI_BUSY_MASK 0x08000000L
+#define GRBM_STATUS_SE3__SC_BUSY_MASK 0x20000000L
+#define GRBM_STATUS_SE3__DB_BUSY_MASK 0x40000000L
+#define GRBM_STATUS_SE3__CB_BUSY_MASK 0x80000000L
+//GRBM_READ_ERROR
+#define GRBM_READ_ERROR__READ_ADDRESS__SHIFT 0x2
+#define GRBM_READ_ERROR__READ_PIPEID__SHIFT 0x14
+#define GRBM_READ_ERROR__READ_MEID__SHIFT 0x16
+#define GRBM_READ_ERROR__READ_ERROR__SHIFT 0x1f
+#define GRBM_READ_ERROR__READ_ADDRESS_MASK 0x0003FFFCL
+#define GRBM_READ_ERROR__READ_PIPEID_MASK 0x00300000L
+#define GRBM_READ_ERROR__READ_MEID_MASK 0x00C00000L
+#define GRBM_READ_ERROR__READ_ERROR_MASK 0x80000000L
+//GRBM_READ_ERROR2
+#define GRBM_READ_ERROR2__READ_REQUESTER_CPF__SHIFT 0x10
+#define GRBM_READ_ERROR2__READ_REQUESTER_RSMU__SHIFT 0x11
+#define GRBM_READ_ERROR2__READ_REQUESTER_RLC__SHIFT 0x12
+#define GRBM_READ_ERROR2__READ_REQUESTER_GDS_DMA__SHIFT 0x13
+#define GRBM_READ_ERROR2__READ_REQUESTER_ME0PIPE0_CF__SHIFT 0x14
+#define GRBM_READ_ERROR2__READ_REQUESTER_ME0PIPE0_PF__SHIFT 0x15
+#define GRBM_READ_ERROR2__READ_REQUESTER_ME0PIPE1_CF__SHIFT 0x16
+#define GRBM_READ_ERROR2__READ_REQUESTER_ME0PIPE1_PF__SHIFT 0x17
+#define GRBM_READ_ERROR2__READ_REQUESTER_ME1PIPE0__SHIFT 0x18
+#define GRBM_READ_ERROR2__READ_REQUESTER_ME1PIPE1__SHIFT 0x19
+#define GRBM_READ_ERROR2__READ_REQUESTER_ME1PIPE2__SHIFT 0x1a
+#define GRBM_READ_ERROR2__READ_REQUESTER_ME1PIPE3__SHIFT 0x1b
+#define GRBM_READ_ERROR2__READ_REQUESTER_ME2PIPE0__SHIFT 0x1c
+#define GRBM_READ_ERROR2__READ_REQUESTER_ME2PIPE1__SHIFT 0x1d
+#define GRBM_READ_ERROR2__READ_REQUESTER_ME2PIPE2__SHIFT 0x1e
+#define GRBM_READ_ERROR2__READ_REQUESTER_ME2PIPE3__SHIFT 0x1f
+#define GRBM_READ_ERROR2__READ_REQUESTER_CPF_MASK 0x00010000L
+#define GRBM_READ_ERROR2__READ_REQUESTER_RSMU_MASK 0x00020000L
+#define GRBM_READ_ERROR2__READ_REQUESTER_RLC_MASK 0x00040000L
+#define GRBM_READ_ERROR2__READ_REQUESTER_GDS_DMA_MASK 0x00080000L
+#define GRBM_READ_ERROR2__READ_REQUESTER_ME0PIPE0_CF_MASK 0x00100000L
+#define GRBM_READ_ERROR2__READ_REQUESTER_ME0PIPE0_PF_MASK 0x00200000L
+#define GRBM_READ_ERROR2__READ_REQUESTER_ME0PIPE1_CF_MASK 0x00400000L
+#define GRBM_READ_ERROR2__READ_REQUESTER_ME0PIPE1_PF_MASK 0x00800000L
+#define GRBM_READ_ERROR2__READ_REQUESTER_ME1PIPE0_MASK 0x01000000L
+#define GRBM_READ_ERROR2__READ_REQUESTER_ME1PIPE1_MASK 0x02000000L
+#define GRBM_READ_ERROR2__READ_REQUESTER_ME1PIPE2_MASK 0x04000000L
+#define GRBM_READ_ERROR2__READ_REQUESTER_ME1PIPE3_MASK 0x08000000L
+#define GRBM_READ_ERROR2__READ_REQUESTER_ME2PIPE0_MASK 0x10000000L
+#define GRBM_READ_ERROR2__READ_REQUESTER_ME2PIPE1_MASK 0x20000000L
+#define GRBM_READ_ERROR2__READ_REQUESTER_ME2PIPE2_MASK 0x40000000L
+#define GRBM_READ_ERROR2__READ_REQUESTER_ME2PIPE3_MASK 0x80000000L
+//GRBM_INT_CNTL
+#define GRBM_INT_CNTL__RDERR_INT_ENABLE__SHIFT 0x0
+#define GRBM_INT_CNTL__GUI_IDLE_INT_ENABLE__SHIFT 0x13
+#define GRBM_INT_CNTL__RDERR_INT_ENABLE_MASK 0x00000001L
+#define GRBM_INT_CNTL__GUI_IDLE_INT_ENABLE_MASK 0x00080000L
+//GRBM_TRAP_OP
+#define GRBM_TRAP_OP__RW__SHIFT 0x0
+#define GRBM_TRAP_OP__RW_MASK 0x00000001L
+//GRBM_TRAP_ADDR
+#define GRBM_TRAP_ADDR__DATA__SHIFT 0x0
+#define GRBM_TRAP_ADDR__DATA_MASK 0x0003FFFFL
+//GRBM_TRAP_ADDR_MSK
+#define GRBM_TRAP_ADDR_MSK__DATA__SHIFT 0x0
+#define GRBM_TRAP_ADDR_MSK__DATA_MASK 0x0003FFFFL
+//GRBM_TRAP_WD
+#define GRBM_TRAP_WD__DATA__SHIFT 0x0
+#define GRBM_TRAP_WD__DATA_MASK 0xFFFFFFFFL
+//GRBM_TRAP_WD_MSK
+#define GRBM_TRAP_WD_MSK__DATA__SHIFT 0x0
+#define GRBM_TRAP_WD_MSK__DATA_MASK 0xFFFFFFFFL
+//GRBM_WRITE_ERROR
+#define GRBM_WRITE_ERROR__WRITE_REQUESTER_RLC__SHIFT 0x0
+#define GRBM_WRITE_ERROR__WRITE_REQUESTER_RSMU__SHIFT 0x1
+#define GRBM_WRITE_ERROR__WRITE_SSRCID__SHIFT 0x2
+#define GRBM_WRITE_ERROR__WRITE_VFID__SHIFT 0x5
+#define GRBM_WRITE_ERROR__WRITE_VF__SHIFT 0xc
+#define GRBM_WRITE_ERROR__WRITE_VMID__SHIFT 0xd
+#define GRBM_WRITE_ERROR__TMZ__SHIFT 0x11
+#define GRBM_WRITE_ERROR__CP_SECURE_WR_ILLEGAL__SHIFT 0x12
+#define GRBM_WRITE_ERROR__WRITE_PIPEID__SHIFT 0x14
+#define GRBM_WRITE_ERROR__WRITE_MEID__SHIFT 0x16
+#define GRBM_WRITE_ERROR__WRITE_ERROR__SHIFT 0x1f
+#define GRBM_WRITE_ERROR__WRITE_REQUESTER_RLC_MASK 0x00000001L
+#define GRBM_WRITE_ERROR__WRITE_REQUESTER_RSMU_MASK 0x00000002L
+#define GRBM_WRITE_ERROR__WRITE_SSRCID_MASK 0x0000001CL
+#define GRBM_WRITE_ERROR__WRITE_VFID_MASK 0x000001E0L
+#define GRBM_WRITE_ERROR__WRITE_VF_MASK 0x00001000L
+#define GRBM_WRITE_ERROR__WRITE_VMID_MASK 0x0001E000L
+#define GRBM_WRITE_ERROR__TMZ_MASK 0x00020000L
+#define GRBM_WRITE_ERROR__CP_SECURE_WR_ILLEGAL_MASK 0x00040000L
+#define GRBM_WRITE_ERROR__WRITE_PIPEID_MASK 0x00300000L
+#define GRBM_WRITE_ERROR__WRITE_MEID_MASK 0x00C00000L
+#define GRBM_WRITE_ERROR__WRITE_ERROR_MASK 0x80000000L
+//GRBM_IOV_ERROR
+#define GRBM_IOV_ERROR__IOV_ADDR__SHIFT 0x2
+#define GRBM_IOV_ERROR__IOV_VFID__SHIFT 0x14
+#define GRBM_IOV_ERROR__IOV_VF__SHIFT 0x1a
+#define GRBM_IOV_ERROR__IOV_OP__SHIFT 0x1b
+#define GRBM_IOV_ERROR__IOV_ERROR__SHIFT 0x1f
+#define GRBM_IOV_ERROR__IOV_ADDR_MASK 0x000FFFFCL
+#define GRBM_IOV_ERROR__IOV_VFID_MASK 0x03F00000L
+#define GRBM_IOV_ERROR__IOV_VF_MASK 0x04000000L
+#define GRBM_IOV_ERROR__IOV_OP_MASK 0x08000000L
+#define GRBM_IOV_ERROR__IOV_ERROR_MASK 0x80000000L
+//GRBM_CHIP_REVISION
+#define GRBM_CHIP_REVISION__CHIP_REVISION__SHIFT 0x0
+#define GRBM_CHIP_REVISION__CHIP_REVISION_MASK 0x000000FFL
+//GRBM_GFX_CNTL
+#define GRBM_GFX_CNTL__PIPEID__SHIFT 0x0
+#define GRBM_GFX_CNTL__MEID__SHIFT 0x2
+#define GRBM_GFX_CNTL__VMID__SHIFT 0x4
+#define GRBM_GFX_CNTL__QUEUEID__SHIFT 0x8
+#define GRBM_GFX_CNTL__PIPEID_MASK 0x00000003L
+#define GRBM_GFX_CNTL__MEID_MASK 0x0000000CL
+#define GRBM_GFX_CNTL__VMID_MASK 0x000000F0L
+#define GRBM_GFX_CNTL__QUEUEID_MASK 0x00000700L
+//GRBM_RSMU_CFG
+#define GRBM_RSMU_CFG__APERTURE_ID__SHIFT 0x0
+#define GRBM_RSMU_CFG__QOS__SHIFT 0xc
+#define GRBM_RSMU_CFG__POSTED_WR__SHIFT 0x10
+#define GRBM_RSMU_CFG__DEBUG_MASK__SHIFT 0x11
+#define GRBM_RSMU_CFG__APERTURE_ID_MASK 0x00000FFFL
+#define GRBM_RSMU_CFG__QOS_MASK 0x0000F000L
+#define GRBM_RSMU_CFG__POSTED_WR_MASK 0x00010000L
+#define GRBM_RSMU_CFG__DEBUG_MASK_MASK 0x00020000L
+//GRBM_IH_CREDIT
+#define GRBM_IH_CREDIT__CREDIT_VALUE__SHIFT 0x0
+#define GRBM_IH_CREDIT__IH_CLIENT_ID__SHIFT 0x10
+#define GRBM_IH_CREDIT__CREDIT_VALUE_MASK 0x00000003L
+#define GRBM_IH_CREDIT__IH_CLIENT_ID_MASK 0x00FF0000L
+//GRBM_PWR_CNTL2
+#define GRBM_PWR_CNTL2__PWR_REQUEST_HALT__SHIFT 0x10
+#define GRBM_PWR_CNTL2__PWR_GFX3D_REQUEST_HALT__SHIFT 0x14
+#define GRBM_PWR_CNTL2__PWR_REQUEST_HALT_MASK 0x00010000L
+#define GRBM_PWR_CNTL2__PWR_GFX3D_REQUEST_HALT_MASK 0x00100000L
+//GRBM_UTCL2_INVAL_RANGE_START
+#define GRBM_UTCL2_INVAL_RANGE_START__DATA__SHIFT 0x0
+#define GRBM_UTCL2_INVAL_RANGE_START__DATA_MASK 0x0003FFFFL
+//GRBM_UTCL2_INVAL_RANGE_END
+#define GRBM_UTCL2_INVAL_RANGE_END__DATA__SHIFT 0x0
+#define GRBM_UTCL2_INVAL_RANGE_END__DATA_MASK 0x0003FFFFL
+//GRBM_RSMU_READ_ERROR
+#define GRBM_RSMU_READ_ERROR__RSMU_READ_ADDRESS__SHIFT 0x2
+#define GRBM_RSMU_READ_ERROR__RSMU_READ_VF__SHIFT 0x14
+#define GRBM_RSMU_READ_ERROR__RSMU_READ_VFID__SHIFT 0x15
+#define GRBM_RSMU_READ_ERROR__RSMU_READ_ERROR_TYPE__SHIFT 0x1b
+#define GRBM_RSMU_READ_ERROR__RSMU_READ_ERROR__SHIFT 0x1f
+#define GRBM_RSMU_READ_ERROR__RSMU_READ_ADDRESS_MASK 0x000FFFFCL
+#define GRBM_RSMU_READ_ERROR__RSMU_READ_VF_MASK 0x00100000L
+#define GRBM_RSMU_READ_ERROR__RSMU_READ_VFID_MASK 0x07E00000L
+#define GRBM_RSMU_READ_ERROR__RSMU_READ_ERROR_TYPE_MASK 0x08000000L
+#define GRBM_RSMU_READ_ERROR__RSMU_READ_ERROR_MASK 0x80000000L
+//GRBM_CHICKEN_BITS
+#define GRBM_CHICKEN_BITS__DISABLE_CP_VMID_RESET_REQ__SHIFT 0x0
+#define GRBM_CHICKEN_BITS__DISABLE_CP_VMID_RESET_REQ_MASK 0x00000001L
+//GRBM_FENCE_RANGE0
+#define GRBM_FENCE_RANGE0__START__SHIFT 0x0
+#define GRBM_FENCE_RANGE0__END__SHIFT 0x10
+#define GRBM_FENCE_RANGE0__START_MASK 0x0000FFFFL
+#define GRBM_FENCE_RANGE0__END_MASK 0xFFFF0000L
+//GRBM_FENCE_RANGE1
+#define GRBM_FENCE_RANGE1__START__SHIFT 0x0
+#define GRBM_FENCE_RANGE1__END__SHIFT 0x10
+#define GRBM_FENCE_RANGE1__START_MASK 0x0000FFFFL
+#define GRBM_FENCE_RANGE1__END_MASK 0xFFFF0000L
+//GRBM_IOV_READ_ERROR
+#define GRBM_IOV_READ_ERROR__IOV_ADDR__SHIFT 0x2
+#define GRBM_IOV_READ_ERROR__IOV_VFID__SHIFT 0x14
+#define GRBM_IOV_READ_ERROR__IOV_VF__SHIFT 0x1a
+#define GRBM_IOV_READ_ERROR__IOV_OP__SHIFT 0x1b
+#define GRBM_IOV_READ_ERROR__IOV_ERROR__SHIFT 0x1f
+#define GRBM_IOV_READ_ERROR__IOV_ADDR_MASK 0x000FFFFCL
+#define GRBM_IOV_READ_ERROR__IOV_VFID_MASK 0x03F00000L
+#define GRBM_IOV_READ_ERROR__IOV_VF_MASK 0x04000000L
+#define GRBM_IOV_READ_ERROR__IOV_OP_MASK 0x08000000L
+#define GRBM_IOV_READ_ERROR__IOV_ERROR_MASK 0x80000000L
+//GRBM_NOWHERE
+#define GRBM_NOWHERE__DATA__SHIFT 0x0
+#define GRBM_NOWHERE__DATA_MASK 0xFFFFFFFFL
+//GRBM_SCRATCH_REG0
+#define GRBM_SCRATCH_REG0__SCRATCH_REG0__SHIFT 0x0
+#define GRBM_SCRATCH_REG0__SCRATCH_REG0_MASK 0xFFFFFFFFL
+//GRBM_SCRATCH_REG1
+#define GRBM_SCRATCH_REG1__SCRATCH_REG1__SHIFT 0x0
+#define GRBM_SCRATCH_REG1__SCRATCH_REG1_MASK 0xFFFFFFFFL
+//GRBM_SCRATCH_REG2
+#define GRBM_SCRATCH_REG2__SCRATCH_REG2__SHIFT 0x0
+#define GRBM_SCRATCH_REG2__SCRATCH_REG2_MASK 0xFFFFFFFFL
+//GRBM_SCRATCH_REG3
+#define GRBM_SCRATCH_REG3__SCRATCH_REG3__SHIFT 0x0
+#define GRBM_SCRATCH_REG3__SCRATCH_REG3_MASK 0xFFFFFFFFL
+//GRBM_SCRATCH_REG4
+#define GRBM_SCRATCH_REG4__SCRATCH_REG4__SHIFT 0x0
+#define GRBM_SCRATCH_REG4__SCRATCH_REG4_MASK 0xFFFFFFFFL
+//GRBM_SCRATCH_REG5
+#define GRBM_SCRATCH_REG5__SCRATCH_REG5__SHIFT 0x0
+#define GRBM_SCRATCH_REG5__SCRATCH_REG5_MASK 0xFFFFFFFFL
+//GRBM_SCRATCH_REG6
+#define GRBM_SCRATCH_REG6__SCRATCH_REG6__SHIFT 0x0
+#define GRBM_SCRATCH_REG6__SCRATCH_REG6_MASK 0xFFFFFFFFL
+//GRBM_SCRATCH_REG7
+#define GRBM_SCRATCH_REG7__SCRATCH_REG7__SHIFT 0x0
+#define GRBM_SCRATCH_REG7__SCRATCH_REG7_MASK 0xFFFFFFFFL
+//VIOLATION_DATA_ASYNC_VF_PROG
+#define VIOLATION_DATA_ASYNC_VF_PROG__SSRCID__SHIFT 0x0
+#define VIOLATION_DATA_ASYNC_VF_PROG__VFID__SHIFT 0x4
+#define VIOLATION_DATA_ASYNC_VF_PROG__VIOLATION_ERROR__SHIFT 0x1f
+#define VIOLATION_DATA_ASYNC_VF_PROG__SSRCID_MASK 0x0000000FL
+#define VIOLATION_DATA_ASYNC_VF_PROG__VFID_MASK 0x000003F0L
+#define VIOLATION_DATA_ASYNC_VF_PROG__VIOLATION_ERROR_MASK 0x80000000L
+
+
+// addressBlock: xcd0_gc_cpdec
+//CP_CPC_DEBUG_CNTL
+#define CP_CPC_DEBUG_CNTL__DEBUG_INDX__SHIFT 0x0
+#define CP_CPC_DEBUG_CNTL__DEBUG_BUS_DC_GD_SEL__SHIFT 0x8
+#define CP_CPC_DEBUG_CNTL__DEBUG_BUS_SELECT_BITS__SHIFT 0x10
+#define CP_CPC_DEBUG_CNTL__DEBUG_BUS_FLOP_EN__SHIFT 0x1f
+#define CP_CPC_DEBUG_CNTL__DEBUG_INDX_MASK 0x0000007FL
+#define CP_CPC_DEBUG_CNTL__DEBUG_BUS_DC_GD_SEL_MASK 0x00000700L
+#define CP_CPC_DEBUG_CNTL__DEBUG_BUS_SELECT_BITS_MASK 0x003F0000L
+#define CP_CPC_DEBUG_CNTL__DEBUG_BUS_FLOP_EN_MASK 0x80000000L
+//CP_CPF_DEBUG_CNTL
+#define CP_CPF_DEBUG_CNTL__DEBUG_INDX__SHIFT 0x0
+#define CP_CPF_DEBUG_CNTL__DEBUG_BUS_SELECT_BITS__SHIFT 0x10
+#define CP_CPF_DEBUG_CNTL__DEBUG_BUS_FLOP_EN__SHIFT 0x1f
+#define CP_CPF_DEBUG_CNTL__DEBUG_INDX_MASK 0x0000007FL
+#define CP_CPF_DEBUG_CNTL__DEBUG_BUS_SELECT_BITS_MASK 0x003F0000L
+#define CP_CPF_DEBUG_CNTL__DEBUG_BUS_FLOP_EN_MASK 0x80000000L
+//CP_CPC_STATUS
+#define CP_CPC_STATUS__MEC1_BUSY__SHIFT 0x0
+#define CP_CPC_STATUS__MEC2_BUSY__SHIFT 0x1
+#define CP_CPC_STATUS__DC0_BUSY__SHIFT 0x2
+#define CP_CPC_STATUS__DC1_BUSY__SHIFT 0x3
+#define CP_CPC_STATUS__RCIU1_BUSY__SHIFT 0x4
+#define CP_CPC_STATUS__RCIU2_BUSY__SHIFT 0x5
+#define CP_CPC_STATUS__ROQ1_BUSY__SHIFT 0x6
+#define CP_CPC_STATUS__ROQ2_BUSY__SHIFT 0x7
+#define CP_CPC_STATUS__TCIU_BUSY__SHIFT 0xa
+#define CP_CPC_STATUS__SCRATCH_RAM_BUSY__SHIFT 0xb
+#define CP_CPC_STATUS__QU_BUSY__SHIFT 0xc
+#define CP_CPC_STATUS__UTCL2IU_BUSY__SHIFT 0xd
+#define CP_CPC_STATUS__SAVE_RESTORE_BUSY__SHIFT 0xe
+#define CP_CPC_STATUS__CPG_CPC_BUSY__SHIFT 0x1d
+#define CP_CPC_STATUS__CPF_CPC_BUSY__SHIFT 0x1e
+#define CP_CPC_STATUS__CPC_BUSY__SHIFT 0x1f
+#define CP_CPC_STATUS__MEC1_BUSY_MASK 0x00000001L
+#define CP_CPC_STATUS__MEC2_BUSY_MASK 0x00000002L
+#define CP_CPC_STATUS__DC0_BUSY_MASK 0x00000004L
+#define CP_CPC_STATUS__DC1_BUSY_MASK 0x00000008L
+#define CP_CPC_STATUS__RCIU1_BUSY_MASK 0x00000010L
+#define CP_CPC_STATUS__RCIU2_BUSY_MASK 0x00000020L
+#define CP_CPC_STATUS__ROQ1_BUSY_MASK 0x00000040L
+#define CP_CPC_STATUS__ROQ2_BUSY_MASK 0x00000080L
+#define CP_CPC_STATUS__TCIU_BUSY_MASK 0x00000400L
+#define CP_CPC_STATUS__SCRATCH_RAM_BUSY_MASK 0x00000800L
+#define CP_CPC_STATUS__QU_BUSY_MASK 0x00001000L
+#define CP_CPC_STATUS__UTCL2IU_BUSY_MASK 0x00002000L
+#define CP_CPC_STATUS__SAVE_RESTORE_BUSY_MASK 0x00004000L
+#define CP_CPC_STATUS__CPG_CPC_BUSY_MASK 0x20000000L
+#define CP_CPC_STATUS__CPF_CPC_BUSY_MASK 0x40000000L
+#define CP_CPC_STATUS__CPC_BUSY_MASK 0x80000000L
+//CP_CPC_BUSY_STAT
+#define CP_CPC_BUSY_STAT__MEC1_LOAD_BUSY__SHIFT 0x0
+#define CP_CPC_BUSY_STAT__MEC1_SEMAPOHRE_BUSY__SHIFT 0x1
+#define CP_CPC_BUSY_STAT__MEC1_MUTEX_BUSY__SHIFT 0x2
+#define CP_CPC_BUSY_STAT__MEC1_MESSAGE_BUSY__SHIFT 0x3
+#define CP_CPC_BUSY_STAT__MEC1_EOP_QUEUE_BUSY__SHIFT 0x4
+#define CP_CPC_BUSY_STAT__MEC1_IQ_QUEUE_BUSY__SHIFT 0x5
+#define CP_CPC_BUSY_STAT__MEC1_IB_QUEUE_BUSY__SHIFT 0x6
+#define CP_CPC_BUSY_STAT__MEC1_TC_BUSY__SHIFT 0x7
+#define CP_CPC_BUSY_STAT__MEC1_DMA_BUSY__SHIFT 0x8
+#define CP_CPC_BUSY_STAT__MEC1_PARTIAL_FLUSH_BUSY__SHIFT 0x9
+#define CP_CPC_BUSY_STAT__MEC1_PIPE0_BUSY__SHIFT 0xa
+#define CP_CPC_BUSY_STAT__MEC1_PIPE1_BUSY__SHIFT 0xb
+#define CP_CPC_BUSY_STAT__MEC1_PIPE2_BUSY__SHIFT 0xc
+#define CP_CPC_BUSY_STAT__MEC1_PIPE3_BUSY__SHIFT 0xd
+#define CP_CPC_BUSY_STAT__MEC2_LOAD_BUSY__SHIFT 0x10
+#define CP_CPC_BUSY_STAT__MEC2_SEMAPOHRE_BUSY__SHIFT 0x11
+#define CP_CPC_BUSY_STAT__MEC2_MUTEX_BUSY__SHIFT 0x12
+#define CP_CPC_BUSY_STAT__MEC2_MESSAGE_BUSY__SHIFT 0x13
+#define CP_CPC_BUSY_STAT__MEC2_EOP_QUEUE_BUSY__SHIFT 0x14
+#define CP_CPC_BUSY_STAT__MEC2_IQ_QUEUE_BUSY__SHIFT 0x15
+#define CP_CPC_BUSY_STAT__MEC2_IB_QUEUE_BUSY__SHIFT 0x16
+#define CP_CPC_BUSY_STAT__MEC2_TC_BUSY__SHIFT 0x17
+#define CP_CPC_BUSY_STAT__MEC2_DMA_BUSY__SHIFT 0x18
+#define CP_CPC_BUSY_STAT__MEC2_PARTIAL_FLUSH_BUSY__SHIFT 0x19
+#define CP_CPC_BUSY_STAT__MEC2_PIPE0_BUSY__SHIFT 0x1a
+#define CP_CPC_BUSY_STAT__MEC2_PIPE1_BUSY__SHIFT 0x1b
+#define CP_CPC_BUSY_STAT__MEC2_PIPE2_BUSY__SHIFT 0x1c
+#define CP_CPC_BUSY_STAT__MEC2_PIPE3_BUSY__SHIFT 0x1d
+#define CP_CPC_BUSY_STAT__MEC1_LOAD_BUSY_MASK 0x00000001L
+#define CP_CPC_BUSY_STAT__MEC1_SEMAPOHRE_BUSY_MASK 0x00000002L
+#define CP_CPC_BUSY_STAT__MEC1_MUTEX_BUSY_MASK 0x00000004L
+#define CP_CPC_BUSY_STAT__MEC1_MESSAGE_BUSY_MASK 0x00000008L
+#define CP_CPC_BUSY_STAT__MEC1_EOP_QUEUE_BUSY_MASK 0x00000010L
+#define CP_CPC_BUSY_STAT__MEC1_IQ_QUEUE_BUSY_MASK 0x00000020L
+#define CP_CPC_BUSY_STAT__MEC1_IB_QUEUE_BUSY_MASK 0x00000040L
+#define CP_CPC_BUSY_STAT__MEC1_TC_BUSY_MASK 0x00000080L
+#define CP_CPC_BUSY_STAT__MEC1_DMA_BUSY_MASK 0x00000100L
+#define CP_CPC_BUSY_STAT__MEC1_PARTIAL_FLUSH_BUSY_MASK 0x00000200L
+#define CP_CPC_BUSY_STAT__MEC1_PIPE0_BUSY_MASK 0x00000400L
+#define CP_CPC_BUSY_STAT__MEC1_PIPE1_BUSY_MASK 0x00000800L
+#define CP_CPC_BUSY_STAT__MEC1_PIPE2_BUSY_MASK 0x00001000L
+#define CP_CPC_BUSY_STAT__MEC1_PIPE3_BUSY_MASK 0x00002000L
+#define CP_CPC_BUSY_STAT__MEC2_LOAD_BUSY_MASK 0x00010000L
+#define CP_CPC_BUSY_STAT__MEC2_SEMAPOHRE_BUSY_MASK 0x00020000L
+#define CP_CPC_BUSY_STAT__MEC2_MUTEX_BUSY_MASK 0x00040000L
+#define CP_CPC_BUSY_STAT__MEC2_MESSAGE_BUSY_MASK 0x00080000L
+#define CP_CPC_BUSY_STAT__MEC2_EOP_QUEUE_BUSY_MASK 0x00100000L
+#define CP_CPC_BUSY_STAT__MEC2_IQ_QUEUE_BUSY_MASK 0x00200000L
+#define CP_CPC_BUSY_STAT__MEC2_IB_QUEUE_BUSY_MASK 0x00400000L
+#define CP_CPC_BUSY_STAT__MEC2_TC_BUSY_MASK 0x00800000L
+#define CP_CPC_BUSY_STAT__MEC2_DMA_BUSY_MASK 0x01000000L
+#define CP_CPC_BUSY_STAT__MEC2_PARTIAL_FLUSH_BUSY_MASK 0x02000000L
+#define CP_CPC_BUSY_STAT__MEC2_PIPE0_BUSY_MASK 0x04000000L
+#define CP_CPC_BUSY_STAT__MEC2_PIPE1_BUSY_MASK 0x08000000L
+#define CP_CPC_BUSY_STAT__MEC2_PIPE2_BUSY_MASK 0x10000000L
+#define CP_CPC_BUSY_STAT__MEC2_PIPE3_BUSY_MASK 0x20000000L
+//CP_CPC_STALLED_STAT1
+#define CP_CPC_STALLED_STAT1__RCIU_TX_FREE_STALL__SHIFT 0x3
+#define CP_CPC_STALLED_STAT1__RCIU_PRIV_VIOLATION__SHIFT 0x4
+#define CP_CPC_STALLED_STAT1__TCIU_TX_FREE_STALL__SHIFT 0x6
+#define CP_CPC_STALLED_STAT1__MEC1_DECODING_PACKET__SHIFT 0x8
+#define CP_CPC_STALLED_STAT1__MEC1_WAIT_ON_RCIU__SHIFT 0x9
+#define CP_CPC_STALLED_STAT1__MEC1_WAIT_ON_RCIU_READ__SHIFT 0xa
+#define CP_CPC_STALLED_STAT1__MEC1_WAIT_ON_ROQ_DATA__SHIFT 0xd
+#define CP_CPC_STALLED_STAT1__MEC2_DECODING_PACKET__SHIFT 0x10
+#define CP_CPC_STALLED_STAT1__MEC2_WAIT_ON_RCIU__SHIFT 0x11
+#define CP_CPC_STALLED_STAT1__MEC2_WAIT_ON_RCIU_READ__SHIFT 0x12
+#define CP_CPC_STALLED_STAT1__MEC2_WAIT_ON_ROQ_DATA__SHIFT 0x15
+#define CP_CPC_STALLED_STAT1__UTCL2IU_WAITING_ON_FREE__SHIFT 0x16
+#define CP_CPC_STALLED_STAT1__UTCL2IU_WAITING_ON_TAGS__SHIFT 0x17
+#define CP_CPC_STALLED_STAT1__UTCL1_WAITING_ON_TRANS__SHIFT 0x18
+#define CP_CPC_STALLED_STAT1__RCIU_TX_FREE_STALL_MASK 0x00000008L
+#define CP_CPC_STALLED_STAT1__RCIU_PRIV_VIOLATION_MASK 0x00000010L
+#define CP_CPC_STALLED_STAT1__TCIU_TX_FREE_STALL_MASK 0x00000040L
+#define CP_CPC_STALLED_STAT1__MEC1_DECODING_PACKET_MASK 0x00000100L
+#define CP_CPC_STALLED_STAT1__MEC1_WAIT_ON_RCIU_MASK 0x00000200L
+#define CP_CPC_STALLED_STAT1__MEC1_WAIT_ON_RCIU_READ_MASK 0x00000400L
+#define CP_CPC_STALLED_STAT1__MEC1_WAIT_ON_ROQ_DATA_MASK 0x00002000L
+#define CP_CPC_STALLED_STAT1__MEC2_DECODING_PACKET_MASK 0x00010000L
+#define CP_CPC_STALLED_STAT1__MEC2_WAIT_ON_RCIU_MASK 0x00020000L
+#define CP_CPC_STALLED_STAT1__MEC2_WAIT_ON_RCIU_READ_MASK 0x00040000L
+#define CP_CPC_STALLED_STAT1__MEC2_WAIT_ON_ROQ_DATA_MASK 0x00200000L
+#define CP_CPC_STALLED_STAT1__UTCL2IU_WAITING_ON_FREE_MASK 0x00400000L
+#define CP_CPC_STALLED_STAT1__UTCL2IU_WAITING_ON_TAGS_MASK 0x00800000L
+#define CP_CPC_STALLED_STAT1__UTCL1_WAITING_ON_TRANS_MASK 0x01000000L
+//CP_CPF_STATUS
+#define CP_CPF_STATUS__POST_WPTR_GFX_BUSY__SHIFT 0x0
+#define CP_CPF_STATUS__CSF_BUSY__SHIFT 0x1
+#define CP_CPF_STATUS__ROQ_ALIGN_BUSY__SHIFT 0x4
+#define CP_CPF_STATUS__ROQ_RING_BUSY__SHIFT 0x5
+#define CP_CPF_STATUS__ROQ_INDIRECT1_BUSY__SHIFT 0x6
+#define CP_CPF_STATUS__ROQ_INDIRECT2_BUSY__SHIFT 0x7
+#define CP_CPF_STATUS__ROQ_STATE_BUSY__SHIFT 0x8
+#define CP_CPF_STATUS__ROQ_CE_RING_BUSY__SHIFT 0x9
+#define CP_CPF_STATUS__ROQ_CE_INDIRECT1_BUSY__SHIFT 0xa
+#define CP_CPF_STATUS__ROQ_CE_INDIRECT2_BUSY__SHIFT 0xb
+#define CP_CPF_STATUS__SEMAPHORE_BUSY__SHIFT 0xc
+#define CP_CPF_STATUS__INTERRUPT_BUSY__SHIFT 0xd
+#define CP_CPF_STATUS__TCIU_BUSY__SHIFT 0xe
+#define CP_CPF_STATUS__HQD_BUSY__SHIFT 0xf
+#define CP_CPF_STATUS__PRT_BUSY__SHIFT 0x10
+#define CP_CPF_STATUS__UTCL2IU_BUSY__SHIFT 0x11
+#define CP_CPF_STATUS__CPF_GFX_BUSY__SHIFT 0x1a
+#define CP_CPF_STATUS__CPF_CMP_BUSY__SHIFT 0x1b
+#define CP_CPF_STATUS__GRBM_CPF_STAT_BUSY__SHIFT 0x1c
+#define CP_CPF_STATUS__CPC_CPF_BUSY__SHIFT 0x1e
+#define CP_CPF_STATUS__CPF_BUSY__SHIFT 0x1f
+#define CP_CPF_STATUS__POST_WPTR_GFX_BUSY_MASK 0x00000001L
+#define CP_CPF_STATUS__CSF_BUSY_MASK 0x00000002L
+#define CP_CPF_STATUS__ROQ_ALIGN_BUSY_MASK 0x00000010L
+#define CP_CPF_STATUS__ROQ_RING_BUSY_MASK 0x00000020L
+#define CP_CPF_STATUS__ROQ_INDIRECT1_BUSY_MASK 0x00000040L
+#define CP_CPF_STATUS__ROQ_INDIRECT2_BUSY_MASK 0x00000080L
+#define CP_CPF_STATUS__ROQ_STATE_BUSY_MASK 0x00000100L
+#define CP_CPF_STATUS__ROQ_CE_RING_BUSY_MASK 0x00000200L
+#define CP_CPF_STATUS__ROQ_CE_INDIRECT1_BUSY_MASK 0x00000400L
+#define CP_CPF_STATUS__ROQ_CE_INDIRECT2_BUSY_MASK 0x00000800L
+#define CP_CPF_STATUS__SEMAPHORE_BUSY_MASK 0x00001000L
+#define CP_CPF_STATUS__INTERRUPT_BUSY_MASK 0x00002000L
+#define CP_CPF_STATUS__TCIU_BUSY_MASK 0x00004000L
+#define CP_CPF_STATUS__HQD_BUSY_MASK 0x00008000L
+#define CP_CPF_STATUS__PRT_BUSY_MASK 0x00010000L
+#define CP_CPF_STATUS__UTCL2IU_BUSY_MASK 0x00020000L
+#define CP_CPF_STATUS__CPF_GFX_BUSY_MASK 0x04000000L
+#define CP_CPF_STATUS__CPF_CMP_BUSY_MASK 0x08000000L
+#define CP_CPF_STATUS__GRBM_CPF_STAT_BUSY_MASK 0x30000000L
+#define CP_CPF_STATUS__CPC_CPF_BUSY_MASK 0x40000000L
+#define CP_CPF_STATUS__CPF_BUSY_MASK 0x80000000L
+//CP_CPF_BUSY_STAT
+#define CP_CPF_BUSY_STAT__REG_BUS_FIFO_BUSY__SHIFT 0x0
+#define CP_CPF_BUSY_STAT__CSF_RING_BUSY__SHIFT 0x1
+#define CP_CPF_BUSY_STAT__CSF_INDIRECT1_BUSY__SHIFT 0x2
+#define CP_CPF_BUSY_STAT__CSF_INDIRECT2_BUSY__SHIFT 0x3
+#define CP_CPF_BUSY_STAT__CSF_STATE_BUSY__SHIFT 0x4
+#define CP_CPF_BUSY_STAT__CSF_CE_INDR1_BUSY__SHIFT 0x5
+#define CP_CPF_BUSY_STAT__CSF_CE_INDR2_BUSY__SHIFT 0x6
+#define CP_CPF_BUSY_STAT__CSF_ARBITER_BUSY__SHIFT 0x7
+#define CP_CPF_BUSY_STAT__CSF_INPUT_BUSY__SHIFT 0x8
+#define CP_CPF_BUSY_STAT__OUTSTANDING_READ_TAGS__SHIFT 0x9
+#define CP_CPF_BUSY_STAT__HPD_PROCESSING_EOP_BUSY__SHIFT 0xb
+#define CP_CPF_BUSY_STAT__HQD_DISPATCH_BUSY__SHIFT 0xc
+#define CP_CPF_BUSY_STAT__HQD_IQ_TIMER_BUSY__SHIFT 0xd
+#define CP_CPF_BUSY_STAT__HQD_DMA_OFFLOAD_BUSY__SHIFT 0xe
+#define CP_CPF_BUSY_STAT__HQD_WAIT_SEMAPHORE_BUSY__SHIFT 0xf
+#define CP_CPF_BUSY_STAT__HQD_SIGNAL_SEMAPHORE_BUSY__SHIFT 0x10
+#define CP_CPF_BUSY_STAT__HQD_MESSAGE_BUSY__SHIFT 0x11
+#define CP_CPF_BUSY_STAT__HQD_PQ_FETCHER_BUSY__SHIFT 0x12
+#define CP_CPF_BUSY_STAT__HQD_IB_FETCHER_BUSY__SHIFT 0x13
+#define CP_CPF_BUSY_STAT__HQD_IQ_FETCHER_BUSY__SHIFT 0x14
+#define CP_CPF_BUSY_STAT__HQD_EOP_FETCHER_BUSY__SHIFT 0x15
+#define CP_CPF_BUSY_STAT__HQD_CONSUMED_RPTR_BUSY__SHIFT 0x16
+#define CP_CPF_BUSY_STAT__HQD_FETCHER_ARB_BUSY__SHIFT 0x17
+#define CP_CPF_BUSY_STAT__HQD_ROQ_ALIGN_BUSY__SHIFT 0x18
+#define CP_CPF_BUSY_STAT__HQD_ROQ_EOP_BUSY__SHIFT 0x19
+#define CP_CPF_BUSY_STAT__HQD_ROQ_IQ_BUSY__SHIFT 0x1a
+#define CP_CPF_BUSY_STAT__HQD_ROQ_PQ_BUSY__SHIFT 0x1b
+#define CP_CPF_BUSY_STAT__HQD_ROQ_IB_BUSY__SHIFT 0x1c
+#define CP_CPF_BUSY_STAT__HQD_WPTR_POLL_BUSY__SHIFT 0x1d
+#define CP_CPF_BUSY_STAT__HQD_PQ_BUSY__SHIFT 0x1e
+#define CP_CPF_BUSY_STAT__HQD_IB_BUSY__SHIFT 0x1f
+#define CP_CPF_BUSY_STAT__REG_BUS_FIFO_BUSY_MASK 0x00000001L
+#define CP_CPF_BUSY_STAT__CSF_RING_BUSY_MASK 0x00000002L
+#define CP_CPF_BUSY_STAT__CSF_INDIRECT1_BUSY_MASK 0x00000004L
+#define CP_CPF_BUSY_STAT__CSF_INDIRECT2_BUSY_MASK 0x00000008L
+#define CP_CPF_BUSY_STAT__CSF_STATE_BUSY_MASK 0x00000010L
+#define CP_CPF_BUSY_STAT__CSF_CE_INDR1_BUSY_MASK 0x00000020L
+#define CP_CPF_BUSY_STAT__CSF_CE_INDR2_BUSY_MASK 0x00000040L
+#define CP_CPF_BUSY_STAT__CSF_ARBITER_BUSY_MASK 0x00000080L
+#define CP_CPF_BUSY_STAT__CSF_INPUT_BUSY_MASK 0x00000100L
+#define CP_CPF_BUSY_STAT__OUTSTANDING_READ_TAGS_MASK 0x00000200L
+#define CP_CPF_BUSY_STAT__HPD_PROCESSING_EOP_BUSY_MASK 0x00000800L
+#define CP_CPF_BUSY_STAT__HQD_DISPATCH_BUSY_MASK 0x00001000L
+#define CP_CPF_BUSY_STAT__HQD_IQ_TIMER_BUSY_MASK 0x00002000L
+#define CP_CPF_BUSY_STAT__HQD_DMA_OFFLOAD_BUSY_MASK 0x00004000L
+#define CP_CPF_BUSY_STAT__HQD_WAIT_SEMAPHORE_BUSY_MASK 0x00008000L
+#define CP_CPF_BUSY_STAT__HQD_SIGNAL_SEMAPHORE_BUSY_MASK 0x00010000L
+#define CP_CPF_BUSY_STAT__HQD_MESSAGE_BUSY_MASK 0x00020000L
+#define CP_CPF_BUSY_STAT__HQD_PQ_FETCHER_BUSY_MASK 0x00040000L
+#define CP_CPF_BUSY_STAT__HQD_IB_FETCHER_BUSY_MASK 0x00080000L
+#define CP_CPF_BUSY_STAT__HQD_IQ_FETCHER_BUSY_MASK 0x00100000L
+#define CP_CPF_BUSY_STAT__HQD_EOP_FETCHER_BUSY_MASK 0x00200000L
+#define CP_CPF_BUSY_STAT__HQD_CONSUMED_RPTR_BUSY_MASK 0x00400000L
+#define CP_CPF_BUSY_STAT__HQD_FETCHER_ARB_BUSY_MASK 0x00800000L
+#define CP_CPF_BUSY_STAT__HQD_ROQ_ALIGN_BUSY_MASK 0x01000000L
+#define CP_CPF_BUSY_STAT__HQD_ROQ_EOP_BUSY_MASK 0x02000000L
+#define CP_CPF_BUSY_STAT__HQD_ROQ_IQ_BUSY_MASK 0x04000000L
+#define CP_CPF_BUSY_STAT__HQD_ROQ_PQ_BUSY_MASK 0x08000000L
+#define CP_CPF_BUSY_STAT__HQD_ROQ_IB_BUSY_MASK 0x10000000L
+#define CP_CPF_BUSY_STAT__HQD_WPTR_POLL_BUSY_MASK 0x20000000L
+#define CP_CPF_BUSY_STAT__HQD_PQ_BUSY_MASK 0x40000000L
+#define CP_CPF_BUSY_STAT__HQD_IB_BUSY_MASK 0x80000000L
+//CP_CPF_STALLED_STAT1
+#define CP_CPF_STALLED_STAT1__RING_FETCHING_DATA__SHIFT 0x0
+#define CP_CPF_STALLED_STAT1__INDR1_FETCHING_DATA__SHIFT 0x1
+#define CP_CPF_STALLED_STAT1__INDR2_FETCHING_DATA__SHIFT 0x2
+#define CP_CPF_STALLED_STAT1__STATE_FETCHING_DATA__SHIFT 0x3
+#define CP_CPF_STALLED_STAT1__TCIU_WAITING_ON_FREE__SHIFT 0x5
+#define CP_CPF_STALLED_STAT1__TCIU_WAITING_ON_TAGS__SHIFT 0x6
+#define CP_CPF_STALLED_STAT1__UTCL2IU_WAITING_ON_FREE__SHIFT 0x7
+#define CP_CPF_STALLED_STAT1__UTCL2IU_WAITING_ON_TAGS__SHIFT 0x8
+#define CP_CPF_STALLED_STAT1__GFX_UTCL1_WAITING_ON_TRANS__SHIFT 0x9
+#define CP_CPF_STALLED_STAT1__CMP_UTCL1_WAITING_ON_TRANS__SHIFT 0xa
+#define CP_CPF_STALLED_STAT1__RCIU_WAITING_ON_FREE__SHIFT 0xb
+#define CP_CPF_STALLED_STAT1__RING_FETCHING_DATA_MASK 0x00000001L
+#define CP_CPF_STALLED_STAT1__INDR1_FETCHING_DATA_MASK 0x00000002L
+#define CP_CPF_STALLED_STAT1__INDR2_FETCHING_DATA_MASK 0x00000004L
+#define CP_CPF_STALLED_STAT1__STATE_FETCHING_DATA_MASK 0x00000008L
+#define CP_CPF_STALLED_STAT1__TCIU_WAITING_ON_FREE_MASK 0x00000020L
+#define CP_CPF_STALLED_STAT1__TCIU_WAITING_ON_TAGS_MASK 0x00000040L
+#define CP_CPF_STALLED_STAT1__UTCL2IU_WAITING_ON_FREE_MASK 0x00000080L
+#define CP_CPF_STALLED_STAT1__UTCL2IU_WAITING_ON_TAGS_MASK 0x00000100L
+#define CP_CPF_STALLED_STAT1__GFX_UTCL1_WAITING_ON_TRANS_MASK 0x00000200L
+#define CP_CPF_STALLED_STAT1__CMP_UTCL1_WAITING_ON_TRANS_MASK 0x00000400L
+#define CP_CPF_STALLED_STAT1__RCIU_WAITING_ON_FREE_MASK 0x00000800L
+//CP_CPC_GRBM_FREE_COUNT
+#define CP_CPC_GRBM_FREE_COUNT__FREE_COUNT__SHIFT 0x0
+#define CP_CPC_GRBM_FREE_COUNT__FREE_COUNT_MASK 0x0000003FL
+//CP_CPC_PRIV_VIOLATION_ADDR
+#define CP_CPC_PRIV_VIOLATION_ADDR__PRIV_VIOLATION_STATUS__SHIFT 0x0
+#define CP_CPC_PRIV_VIOLATION_ADDR__PRIV_VIOLATION_OP__SHIFT 0x1
+#define CP_CPC_PRIV_VIOLATION_ADDR__PRIV_VIOLATION_ADDR__SHIFT 0x2
+#define CP_CPC_PRIV_VIOLATION_ADDR__PRIV_VIOLATION_APERTURE_ID__SHIFT 0x14
+#define CP_CPC_PRIV_VIOLATION_ADDR__PRIV_VIOLATION_STATUS_MASK 0x00000001L
+#define CP_CPC_PRIV_VIOLATION_ADDR__PRIV_VIOLATION_OP_MASK 0x00000002L
+#define CP_CPC_PRIV_VIOLATION_ADDR__PRIV_VIOLATION_ADDR_MASK 0x000FFFFCL
+#define CP_CPC_PRIV_VIOLATION_ADDR__PRIV_VIOLATION_APERTURE_ID_MASK 0xFFF00000L
+//CP_MEC_CNTL
+#define CP_MEC_CNTL__MEC_INVALIDATE_ICACHE__SHIFT 0x4
+#define CP_MEC_CNTL__MEC_ME1_PIPE0_RESET__SHIFT 0x10
+#define CP_MEC_CNTL__MEC_ME1_PIPE1_RESET__SHIFT 0x11
+#define CP_MEC_CNTL__MEC_ME1_PIPE2_RESET__SHIFT 0x12
+#define CP_MEC_CNTL__MEC_ME1_PIPE3_RESET__SHIFT 0x13
+#define CP_MEC_CNTL__MEC_ME2_PIPE0_RESET__SHIFT 0x14
+#define CP_MEC_CNTL__MEC_ME2_PIPE1_RESET__SHIFT 0x15
+#define CP_MEC_CNTL__MEC_ME2_HALT__SHIFT 0x1c
+#define CP_MEC_CNTL__MEC_ME2_STEP__SHIFT 0x1d
+#define CP_MEC_CNTL__MEC_ME1_HALT__SHIFT 0x1e
+#define CP_MEC_CNTL__MEC_ME1_STEP__SHIFT 0x1f
+#define CP_MEC_CNTL__MEC_INVALIDATE_ICACHE_MASK 0x00000010L
+#define CP_MEC_CNTL__MEC_ME1_PIPE0_RESET_MASK 0x00010000L
+#define CP_MEC_CNTL__MEC_ME1_PIPE1_RESET_MASK 0x00020000L
+#define CP_MEC_CNTL__MEC_ME1_PIPE2_RESET_MASK 0x00040000L
+#define CP_MEC_CNTL__MEC_ME1_PIPE3_RESET_MASK 0x00080000L
+#define CP_MEC_CNTL__MEC_ME2_PIPE0_RESET_MASK 0x00100000L
+#define CP_MEC_CNTL__MEC_ME2_PIPE1_RESET_MASK 0x00200000L
+#define CP_MEC_CNTL__MEC_ME2_HALT_MASK 0x10000000L
+#define CP_MEC_CNTL__MEC_ME2_STEP_MASK 0x20000000L
+#define CP_MEC_CNTL__MEC_ME1_HALT_MASK 0x40000000L
+#define CP_MEC_CNTL__MEC_ME1_STEP_MASK 0x80000000L
+//CP_MEC_ME1_HEADER_DUMP
+#define CP_MEC_ME1_HEADER_DUMP__HEADER_DUMP__SHIFT 0x0
+#define CP_MEC_ME1_HEADER_DUMP__HEADER_DUMP_MASK 0xFFFFFFFFL
+//CP_MEC_ME2_HEADER_DUMP
+#define CP_MEC_ME2_HEADER_DUMP__HEADER_DUMP__SHIFT 0x0
+#define CP_MEC_ME2_HEADER_DUMP__HEADER_DUMP_MASK 0xFFFFFFFFL
+//CP_CPC_SCRATCH_INDEX
+#define CP_CPC_SCRATCH_INDEX__SCRATCH_INDEX__SHIFT 0x0
+#define CP_CPC_SCRATCH_INDEX__SCRATCH_INDEX_MASK 0x000003FFL
+//CP_CPC_SCRATCH_DATA
+#define CP_CPC_SCRATCH_DATA__SCRATCH_DATA__SHIFT 0x0
+#define CP_CPC_SCRATCH_DATA__SCRATCH_DATA_MASK 0xFFFFFFFFL
+//CP_CPF_GRBM_FREE_COUNT
+#define CP_CPF_GRBM_FREE_COUNT__FREE_COUNT__SHIFT 0x0
+#define CP_CPF_GRBM_FREE_COUNT__FREE_COUNT_MASK 0x00000007L
+//CP_CPC_HALT_HYST_COUNT
+#define CP_CPC_HALT_HYST_COUNT__COUNT__SHIFT 0x0
+#define CP_CPC_HALT_HYST_COUNT__COUNT_MASK 0x0000000FL
+//CP_CE_COMPARE_COUNT
+#define CP_CE_COMPARE_COUNT__COMPARE_COUNT__SHIFT 0x0
+#define CP_CE_COMPARE_COUNT__COMPARE_COUNT_MASK 0xFFFFFFFFL
+//CP_CE_DE_COUNT
+#define CP_CE_DE_COUNT__DRAW_ENGINE_COUNT__SHIFT 0x0
+#define CP_CE_DE_COUNT__DRAW_ENGINE_COUNT_MASK 0xFFFFFFFFL
+//CP_DE_CE_COUNT
+#define CP_DE_CE_COUNT__CONST_ENGINE_COUNT__SHIFT 0x0
+#define CP_DE_CE_COUNT__CONST_ENGINE_COUNT_MASK 0xFFFFFFFFL
+//CP_DE_LAST_INVAL_COUNT
+#define CP_DE_LAST_INVAL_COUNT__LAST_INVAL_COUNT__SHIFT 0x0
+#define CP_DE_LAST_INVAL_COUNT__LAST_INVAL_COUNT_MASK 0xFFFFFFFFL
+//CP_DE_DE_COUNT
+#define CP_DE_DE_COUNT__DRAW_ENGINE_COUNT__SHIFT 0x0
+#define CP_DE_DE_COUNT__DRAW_ENGINE_COUNT_MASK 0xFFFFFFFFL
+//CP_STALLED_STAT3
+#define CP_STALLED_STAT3__CE_TO_CSF_NOT_RDY_TO_RCV__SHIFT 0x0
+#define CP_STALLED_STAT3__CE_TO_RAM_INIT_FETCHER_NOT_RDY_TO_RCV__SHIFT 0x1
+#define CP_STALLED_STAT3__CE_WAITING_ON_DATA_FROM_RAM_INIT_FETCHER__SHIFT 0x2
+#define CP_STALLED_STAT3__CE_TO_RAM_INIT_NOT_RDY__SHIFT 0x3
+#define CP_STALLED_STAT3__CE_TO_RAM_DUMP_NOT_RDY__SHIFT 0x4
+#define CP_STALLED_STAT3__CE_TO_RAM_WRITE_NOT_RDY__SHIFT 0x5
+#define CP_STALLED_STAT3__CE_TO_INC_FIFO_NOT_RDY_TO_RCV__SHIFT 0x6
+#define CP_STALLED_STAT3__CE_TO_WR_FIFO_NOT_RDY_TO_RCV__SHIFT 0x7
+#define CP_STALLED_STAT3__CE_WAITING_ON_BUFFER_DATA__SHIFT 0xa
+#define CP_STALLED_STAT3__CE_WAITING_ON_CE_BUFFER_FLAG__SHIFT 0xb
+#define CP_STALLED_STAT3__CE_WAITING_ON_DE_COUNTER__SHIFT 0xc
+#define CP_STALLED_STAT3__CE_WAITING_ON_DE_COUNTER_UNDERFLOW__SHIFT 0xd
+#define CP_STALLED_STAT3__TCIU_WAITING_ON_FREE__SHIFT 0xe
+#define CP_STALLED_STAT3__TCIU_WAITING_ON_TAGS__SHIFT 0xf
+#define CP_STALLED_STAT3__CE_STALLED_ON_TC_WR_CONFIRM__SHIFT 0x10
+#define CP_STALLED_STAT3__CE_STALLED_ON_ATOMIC_RTN_DATA__SHIFT 0x11
+#define CP_STALLED_STAT3__UTCL2IU_WAITING_ON_FREE__SHIFT 0x12
+#define CP_STALLED_STAT3__UTCL2IU_WAITING_ON_TAGS__SHIFT 0x13
+#define CP_STALLED_STAT3__UTCL1_WAITING_ON_TRANS__SHIFT 0x14
+#define CP_STALLED_STAT3__CE_TO_CSF_NOT_RDY_TO_RCV_MASK 0x00000001L
+#define CP_STALLED_STAT3__CE_TO_RAM_INIT_FETCHER_NOT_RDY_TO_RCV_MASK 0x00000002L
+#define CP_STALLED_STAT3__CE_WAITING_ON_DATA_FROM_RAM_INIT_FETCHER_MASK 0x00000004L
+#define CP_STALLED_STAT3__CE_TO_RAM_INIT_NOT_RDY_MASK 0x00000008L
+#define CP_STALLED_STAT3__CE_TO_RAM_DUMP_NOT_RDY_MASK 0x00000010L
+#define CP_STALLED_STAT3__CE_TO_RAM_WRITE_NOT_RDY_MASK 0x00000020L
+#define CP_STALLED_STAT3__CE_TO_INC_FIFO_NOT_RDY_TO_RCV_MASK 0x00000040L
+#define CP_STALLED_STAT3__CE_TO_WR_FIFO_NOT_RDY_TO_RCV_MASK 0x00000080L
+#define CP_STALLED_STAT3__CE_WAITING_ON_BUFFER_DATA_MASK 0x00000400L
+#define CP_STALLED_STAT3__CE_WAITING_ON_CE_BUFFER_FLAG_MASK 0x00000800L
+#define CP_STALLED_STAT3__CE_WAITING_ON_DE_COUNTER_MASK 0x00001000L
+#define CP_STALLED_STAT3__CE_WAITING_ON_DE_COUNTER_UNDERFLOW_MASK 0x00002000L
+#define CP_STALLED_STAT3__TCIU_WAITING_ON_FREE_MASK 0x00004000L
+#define CP_STALLED_STAT3__TCIU_WAITING_ON_TAGS_MASK 0x00008000L
+#define CP_STALLED_STAT3__CE_STALLED_ON_TC_WR_CONFIRM_MASK 0x00010000L
+#define CP_STALLED_STAT3__CE_STALLED_ON_ATOMIC_RTN_DATA_MASK 0x00020000L
+#define CP_STALLED_STAT3__UTCL2IU_WAITING_ON_FREE_MASK 0x00040000L
+#define CP_STALLED_STAT3__UTCL2IU_WAITING_ON_TAGS_MASK 0x00080000L
+#define CP_STALLED_STAT3__UTCL1_WAITING_ON_TRANS_MASK 0x00100000L
+//CP_STALLED_STAT1
+#define CP_STALLED_STAT1__RBIU_TO_DMA_NOT_RDY_TO_RCV__SHIFT 0x0
+#define CP_STALLED_STAT1__RBIU_TO_SEM_NOT_RDY_TO_RCV__SHIFT 0x2
+#define CP_STALLED_STAT1__RBIU_TO_MEMWR_NOT_RDY_TO_RCV__SHIFT 0x4
+#define CP_STALLED_STAT1__ME_HAS_ACTIVE_CE_BUFFER_FLAG__SHIFT 0xa
+#define CP_STALLED_STAT1__ME_HAS_ACTIVE_DE_BUFFER_FLAG__SHIFT 0xb
+#define CP_STALLED_STAT1__ME_STALLED_ON_TC_WR_CONFIRM__SHIFT 0xc
+#define CP_STALLED_STAT1__ME_STALLED_ON_ATOMIC_RTN_DATA__SHIFT 0xd
+#define CP_STALLED_STAT1__ME_WAITING_ON_TC_READ_DATA__SHIFT 0xe
+#define CP_STALLED_STAT1__ME_WAITING_ON_REG_READ_DATA__SHIFT 0xf
+#define CP_STALLED_STAT1__RCIU_WAITING_ON_GDS_FREE__SHIFT 0x17
+#define CP_STALLED_STAT1__RCIU_WAITING_ON_GRBM_FREE__SHIFT 0x18
+#define CP_STALLED_STAT1__RCIU_WAITING_ON_VGT_FREE__SHIFT 0x19
+#define CP_STALLED_STAT1__RCIU_STALLED_ON_ME_READ__SHIFT 0x1a
+#define CP_STALLED_STAT1__RCIU_STALLED_ON_DMA_READ__SHIFT 0x1b
+#define CP_STALLED_STAT1__RCIU_STALLED_ON_APPEND_READ__SHIFT 0x1c
+#define CP_STALLED_STAT1__RCIU_HALTED_BY_REG_VIOLATION__SHIFT 0x1d
+#define CP_STALLED_STAT1__RBIU_TO_DMA_NOT_RDY_TO_RCV_MASK 0x00000001L
+#define CP_STALLED_STAT1__RBIU_TO_SEM_NOT_RDY_TO_RCV_MASK 0x00000004L
+#define CP_STALLED_STAT1__RBIU_TO_MEMWR_NOT_RDY_TO_RCV_MASK 0x00000010L
+#define CP_STALLED_STAT1__ME_HAS_ACTIVE_CE_BUFFER_FLAG_MASK 0x00000400L
+#define CP_STALLED_STAT1__ME_HAS_ACTIVE_DE_BUFFER_FLAG_MASK 0x00000800L
+#define CP_STALLED_STAT1__ME_STALLED_ON_TC_WR_CONFIRM_MASK 0x00001000L
+#define CP_STALLED_STAT1__ME_STALLED_ON_ATOMIC_RTN_DATA_MASK 0x00002000L
+#define CP_STALLED_STAT1__ME_WAITING_ON_TC_READ_DATA_MASK 0x00004000L
+#define CP_STALLED_STAT1__ME_WAITING_ON_REG_READ_DATA_MASK 0x00008000L
+#define CP_STALLED_STAT1__RCIU_WAITING_ON_GDS_FREE_MASK 0x00800000L
+#define CP_STALLED_STAT1__RCIU_WAITING_ON_GRBM_FREE_MASK 0x01000000L
+#define CP_STALLED_STAT1__RCIU_WAITING_ON_VGT_FREE_MASK 0x02000000L
+#define CP_STALLED_STAT1__RCIU_STALLED_ON_ME_READ_MASK 0x04000000L
+#define CP_STALLED_STAT1__RCIU_STALLED_ON_DMA_READ_MASK 0x08000000L
+#define CP_STALLED_STAT1__RCIU_STALLED_ON_APPEND_READ_MASK 0x10000000L
+#define CP_STALLED_STAT1__RCIU_HALTED_BY_REG_VIOLATION_MASK 0x20000000L
+//CP_STALLED_STAT2
+#define CP_STALLED_STAT2__PFP_TO_CSF_NOT_RDY_TO_RCV__SHIFT 0x0
+#define CP_STALLED_STAT2__PFP_TO_MEQ_NOT_RDY_TO_RCV__SHIFT 0x1
+#define CP_STALLED_STAT2__PFP_TO_RCIU_NOT_RDY_TO_RCV__SHIFT 0x2
+#define CP_STALLED_STAT2__PFP_TO_VGT_WRITES_PENDING__SHIFT 0x4
+#define CP_STALLED_STAT2__PFP_RCIU_READ_PENDING__SHIFT 0x5
+#define CP_STALLED_STAT2__PFP_WAITING_ON_BUFFER_DATA__SHIFT 0x8
+#define CP_STALLED_STAT2__ME_WAIT_ON_CE_COUNTER__SHIFT 0x9
+#define CP_STALLED_STAT2__ME_WAIT_ON_AVAIL_BUFFER__SHIFT 0xa
+#define CP_STALLED_STAT2__GFX_CNTX_NOT_AVAIL_TO_ME__SHIFT 0xb
+#define CP_STALLED_STAT2__ME_RCIU_NOT_RDY_TO_RCV__SHIFT 0xc
+#define CP_STALLED_STAT2__ME_TO_CONST_NOT_RDY_TO_RCV__SHIFT 0xd
+#define CP_STALLED_STAT2__ME_WAITING_DATA_FROM_PFP__SHIFT 0xe
+#define CP_STALLED_STAT2__ME_WAITING_ON_PARTIAL_FLUSH__SHIFT 0xf
+#define CP_STALLED_STAT2__MEQ_TO_ME_NOT_RDY_TO_RCV__SHIFT 0x10
+#define CP_STALLED_STAT2__STQ_TO_ME_NOT_RDY_TO_RCV__SHIFT 0x11
+#define CP_STALLED_STAT2__ME_WAITING_DATA_FROM_STQ__SHIFT 0x12
+#define CP_STALLED_STAT2__PFP_STALLED_ON_TC_WR_CONFIRM__SHIFT 0x13
+#define CP_STALLED_STAT2__PFP_STALLED_ON_ATOMIC_RTN_DATA__SHIFT 0x14
+#define CP_STALLED_STAT2__EOPD_FIFO_NEEDS_SC_EOP_DONE__SHIFT 0x15
+#define CP_STALLED_STAT2__EOPD_FIFO_NEEDS_WR_CONFIRM__SHIFT 0x16
+#define CP_STALLED_STAT2__STRMO_WR_OF_PRIM_DATA_PENDING__SHIFT 0x17
+#define CP_STALLED_STAT2__PIPE_STATS_WR_DATA_PENDING__SHIFT 0x18
+#define CP_STALLED_STAT2__APPEND_RDY_WAIT_ON_CS_DONE__SHIFT 0x19
+#define CP_STALLED_STAT2__APPEND_RDY_WAIT_ON_PS_DONE__SHIFT 0x1a
+#define CP_STALLED_STAT2__APPEND_WAIT_ON_WR_CONFIRM__SHIFT 0x1b
+#define CP_STALLED_STAT2__APPEND_ACTIVE_PARTITION__SHIFT 0x1c
+#define CP_STALLED_STAT2__APPEND_WAITING_TO_SEND_MEMWRITE__SHIFT 0x1d
+#define CP_STALLED_STAT2__SURF_SYNC_NEEDS_IDLE_CNTXS__SHIFT 0x1e
+#define CP_STALLED_STAT2__SURF_SYNC_NEEDS_ALL_CLEAN__SHIFT 0x1f
+#define CP_STALLED_STAT2__PFP_TO_CSF_NOT_RDY_TO_RCV_MASK 0x00000001L
+#define CP_STALLED_STAT2__PFP_TO_MEQ_NOT_RDY_TO_RCV_MASK 0x00000002L
+#define CP_STALLED_STAT2__PFP_TO_RCIU_NOT_RDY_TO_RCV_MASK 0x00000004L
+#define CP_STALLED_STAT2__PFP_TO_VGT_WRITES_PENDING_MASK 0x00000010L
+#define CP_STALLED_STAT2__PFP_RCIU_READ_PENDING_MASK 0x00000020L
+#define CP_STALLED_STAT2__PFP_WAITING_ON_BUFFER_DATA_MASK 0x00000100L
+#define CP_STALLED_STAT2__ME_WAIT_ON_CE_COUNTER_MASK 0x00000200L
+#define CP_STALLED_STAT2__ME_WAIT_ON_AVAIL_BUFFER_MASK 0x00000400L
+#define CP_STALLED_STAT2__GFX_CNTX_NOT_AVAIL_TO_ME_MASK 0x00000800L
+#define CP_STALLED_STAT2__ME_RCIU_NOT_RDY_TO_RCV_MASK 0x00001000L
+#define CP_STALLED_STAT2__ME_TO_CONST_NOT_RDY_TO_RCV_MASK 0x00002000L
+#define CP_STALLED_STAT2__ME_WAITING_DATA_FROM_PFP_MASK 0x00004000L
+#define CP_STALLED_STAT2__ME_WAITING_ON_PARTIAL_FLUSH_MASK 0x00008000L
+#define CP_STALLED_STAT2__MEQ_TO_ME_NOT_RDY_TO_RCV_MASK 0x00010000L
+#define CP_STALLED_STAT2__STQ_TO_ME_NOT_RDY_TO_RCV_MASK 0x00020000L
+#define CP_STALLED_STAT2__ME_WAITING_DATA_FROM_STQ_MASK 0x00040000L
+#define CP_STALLED_STAT2__PFP_STALLED_ON_TC_WR_CONFIRM_MASK 0x00080000L
+#define CP_STALLED_STAT2__PFP_STALLED_ON_ATOMIC_RTN_DATA_MASK 0x00100000L
+#define CP_STALLED_STAT2__EOPD_FIFO_NEEDS_SC_EOP_DONE_MASK 0x00200000L
+#define CP_STALLED_STAT2__EOPD_FIFO_NEEDS_WR_CONFIRM_MASK 0x00400000L
+#define CP_STALLED_STAT2__STRMO_WR_OF_PRIM_DATA_PENDING_MASK 0x00800000L
+#define CP_STALLED_STAT2__PIPE_STATS_WR_DATA_PENDING_MASK 0x01000000L
+#define CP_STALLED_STAT2__APPEND_RDY_WAIT_ON_CS_DONE_MASK 0x02000000L
+#define CP_STALLED_STAT2__APPEND_RDY_WAIT_ON_PS_DONE_MASK 0x04000000L
+#define CP_STALLED_STAT2__APPEND_WAIT_ON_WR_CONFIRM_MASK 0x08000000L
+#define CP_STALLED_STAT2__APPEND_ACTIVE_PARTITION_MASK 0x10000000L
+#define CP_STALLED_STAT2__APPEND_WAITING_TO_SEND_MEMWRITE_MASK 0x20000000L
+#define CP_STALLED_STAT2__SURF_SYNC_NEEDS_IDLE_CNTXS_MASK 0x40000000L
+#define CP_STALLED_STAT2__SURF_SYNC_NEEDS_ALL_CLEAN_MASK 0x80000000L
+//CP_BUSY_STAT
+#define CP_BUSY_STAT__REG_BUS_FIFO_BUSY__SHIFT 0x0
+#define CP_BUSY_STAT__COHER_CNT_NEQ_ZERO__SHIFT 0x6
+#define CP_BUSY_STAT__PFP_PARSING_PACKETS__SHIFT 0x7
+#define CP_BUSY_STAT__ME_PARSING_PACKETS__SHIFT 0x8
+#define CP_BUSY_STAT__RCIU_PFP_BUSY__SHIFT 0x9
+#define CP_BUSY_STAT__RCIU_ME_BUSY__SHIFT 0xa
+#define CP_BUSY_STAT__SEM_CMDFIFO_NOT_EMPTY__SHIFT 0xc
+#define CP_BUSY_STAT__SEM_FAILED_AND_HOLDING__SHIFT 0xd
+#define CP_BUSY_STAT__SEM_POLLING_FOR_PASS__SHIFT 0xe
+#define CP_BUSY_STAT__GFX_CONTEXT_BUSY__SHIFT 0xf
+#define CP_BUSY_STAT__ME_PARSER_BUSY__SHIFT 0x11
+#define CP_BUSY_STAT__EOP_DONE_BUSY__SHIFT 0x12
+#define CP_BUSY_STAT__STRM_OUT_BUSY__SHIFT 0x13
+#define CP_BUSY_STAT__PIPE_STATS_BUSY__SHIFT 0x14
+#define CP_BUSY_STAT__RCIU_CE_BUSY__SHIFT 0x15
+#define CP_BUSY_STAT__CE_PARSING_PACKETS__SHIFT 0x16
+#define CP_BUSY_STAT__REG_BUS_FIFO_BUSY_MASK 0x00000001L
+#define CP_BUSY_STAT__COHER_CNT_NEQ_ZERO_MASK 0x00000040L
+#define CP_BUSY_STAT__PFP_PARSING_PACKETS_MASK 0x00000080L
+#define CP_BUSY_STAT__ME_PARSING_PACKETS_MASK 0x00000100L
+#define CP_BUSY_STAT__RCIU_PFP_BUSY_MASK 0x00000200L
+#define CP_BUSY_STAT__RCIU_ME_BUSY_MASK 0x00000400L
+#define CP_BUSY_STAT__SEM_CMDFIFO_NOT_EMPTY_MASK 0x00001000L
+#define CP_BUSY_STAT__SEM_FAILED_AND_HOLDING_MASK 0x00002000L
+#define CP_BUSY_STAT__SEM_POLLING_FOR_PASS_MASK 0x00004000L
+#define CP_BUSY_STAT__GFX_CONTEXT_BUSY_MASK 0x00008000L
+#define CP_BUSY_STAT__ME_PARSER_BUSY_MASK 0x00020000L
+#define CP_BUSY_STAT__EOP_DONE_BUSY_MASK 0x00040000L
+#define CP_BUSY_STAT__STRM_OUT_BUSY_MASK 0x00080000L
+#define CP_BUSY_STAT__PIPE_STATS_BUSY_MASK 0x00100000L
+#define CP_BUSY_STAT__RCIU_CE_BUSY_MASK 0x00200000L
+#define CP_BUSY_STAT__CE_PARSING_PACKETS_MASK 0x00400000L
+//CP_STAT
+#define CP_STAT__ROQ_RING_BUSY__SHIFT 0x9
+#define CP_STAT__ROQ_INDIRECT1_BUSY__SHIFT 0xa
+#define CP_STAT__ROQ_INDIRECT2_BUSY__SHIFT 0xb
+#define CP_STAT__ROQ_STATE_BUSY__SHIFT 0xc
+#define CP_STAT__DC_BUSY__SHIFT 0xd
+#define CP_STAT__UTCL2IU_BUSY__SHIFT 0xe
+#define CP_STAT__PFP_BUSY__SHIFT 0xf
+#define CP_STAT__MEQ_BUSY__SHIFT 0x10
+#define CP_STAT__ME_BUSY__SHIFT 0x11
+#define CP_STAT__QUERY_BUSY__SHIFT 0x12
+#define CP_STAT__SEMAPHORE_BUSY__SHIFT 0x13
+#define CP_STAT__INTERRUPT_BUSY__SHIFT 0x14
+#define CP_STAT__SURFACE_SYNC_BUSY__SHIFT 0x15
+#define CP_STAT__DMA_BUSY__SHIFT 0x16
+#define CP_STAT__RCIU_BUSY__SHIFT 0x17
+#define CP_STAT__SCRATCH_RAM_BUSY__SHIFT 0x18
+#define CP_STAT__CE_BUSY__SHIFT 0x1a
+#define CP_STAT__TCIU_BUSY__SHIFT 0x1b
+#define CP_STAT__ROQ_CE_RING_BUSY__SHIFT 0x1c
+#define CP_STAT__ROQ_CE_INDIRECT1_BUSY__SHIFT 0x1d
+#define CP_STAT__ROQ_CE_INDIRECT2_BUSY__SHIFT 0x1e
+#define CP_STAT__CP_BUSY__SHIFT 0x1f
+#define CP_STAT__ROQ_RING_BUSY_MASK 0x00000200L
+#define CP_STAT__ROQ_INDIRECT1_BUSY_MASK 0x00000400L
+#define CP_STAT__ROQ_INDIRECT2_BUSY_MASK 0x00000800L
+#define CP_STAT__ROQ_STATE_BUSY_MASK 0x00001000L
+#define CP_STAT__DC_BUSY_MASK 0x00002000L
+#define CP_STAT__UTCL2IU_BUSY_MASK 0x00004000L
+#define CP_STAT__PFP_BUSY_MASK 0x00008000L
+#define CP_STAT__MEQ_BUSY_MASK 0x00010000L
+#define CP_STAT__ME_BUSY_MASK 0x00020000L
+#define CP_STAT__QUERY_BUSY_MASK 0x00040000L
+#define CP_STAT__SEMAPHORE_BUSY_MASK 0x00080000L
+#define CP_STAT__INTERRUPT_BUSY_MASK 0x00100000L
+#define CP_STAT__SURFACE_SYNC_BUSY_MASK 0x00200000L
+#define CP_STAT__DMA_BUSY_MASK 0x00400000L
+#define CP_STAT__RCIU_BUSY_MASK 0x00800000L
+#define CP_STAT__SCRATCH_RAM_BUSY_MASK 0x01000000L
+#define CP_STAT__CE_BUSY_MASK 0x04000000L
+#define CP_STAT__TCIU_BUSY_MASK 0x08000000L
+#define CP_STAT__ROQ_CE_RING_BUSY_MASK 0x10000000L
+#define CP_STAT__ROQ_CE_INDIRECT1_BUSY_MASK 0x20000000L
+#define CP_STAT__ROQ_CE_INDIRECT2_BUSY_MASK 0x40000000L
+#define CP_STAT__CP_BUSY_MASK 0x80000000L
+//CP_ME_HEADER_DUMP
+#define CP_ME_HEADER_DUMP__ME_HEADER_DUMP__SHIFT 0x0
+#define CP_ME_HEADER_DUMP__ME_HEADER_DUMP_MASK 0xFFFFFFFFL
+//CP_PFP_HEADER_DUMP
+#define CP_PFP_HEADER_DUMP__PFP_HEADER_DUMP__SHIFT 0x0
+#define CP_PFP_HEADER_DUMP__PFP_HEADER_DUMP_MASK 0xFFFFFFFFL
+//CP_GRBM_FREE_COUNT
+#define CP_GRBM_FREE_COUNT__FREE_COUNT__SHIFT 0x0
+#define CP_GRBM_FREE_COUNT__FREE_COUNT_GDS__SHIFT 0x8
+#define CP_GRBM_FREE_COUNT__FREE_COUNT_PFP__SHIFT 0x10
+#define CP_GRBM_FREE_COUNT__FREE_COUNT_MASK 0x0000003FL
+#define CP_GRBM_FREE_COUNT__FREE_COUNT_GDS_MASK 0x00003F00L
+#define CP_GRBM_FREE_COUNT__FREE_COUNT_PFP_MASK 0x003F0000L
+//CP_CE_HEADER_DUMP
+#define CP_CE_HEADER_DUMP__CE_HEADER_DUMP__SHIFT 0x0
+#define CP_CE_HEADER_DUMP__CE_HEADER_DUMP_MASK 0xFFFFFFFFL
+//CP_PFP_INSTR_PNTR
+#define CP_PFP_INSTR_PNTR__INSTR_PNTR__SHIFT 0x0
+#define CP_PFP_INSTR_PNTR__INSTR_PNTR_MASK 0x0000FFFFL
+//CP_ME_INSTR_PNTR
+#define CP_ME_INSTR_PNTR__INSTR_PNTR__SHIFT 0x0
+#define CP_ME_INSTR_PNTR__INSTR_PNTR_MASK 0x0000FFFFL
+//CP_CE_INSTR_PNTR
+#define CP_CE_INSTR_PNTR__INSTR_PNTR__SHIFT 0x0
+#define CP_CE_INSTR_PNTR__INSTR_PNTR_MASK 0x0000FFFFL
+//CP_MEC1_INSTR_PNTR
+#define CP_MEC1_INSTR_PNTR__INSTR_PNTR__SHIFT 0x0
+#define CP_MEC1_INSTR_PNTR__INSTR_PNTR_MASK 0x0000FFFFL
+//CP_MEC2_INSTR_PNTR
+#define CP_MEC2_INSTR_PNTR__INSTR_PNTR__SHIFT 0x0
+#define CP_MEC2_INSTR_PNTR__INSTR_PNTR_MASK 0x0000FFFFL
+//CP_CSF_STAT
+#define CP_CSF_STAT__BUFFER_REQUEST_COUNT__SHIFT 0x8
+#define CP_CSF_STAT__BUFFER_REQUEST_COUNT_MASK 0x0001FF00L
+//CP_ME_CNTL
+#define CP_ME_CNTL__CE_INVALIDATE_ICACHE__SHIFT 0x4
+#define CP_ME_CNTL__PFP_INVALIDATE_ICACHE__SHIFT 0x6
+#define CP_ME_CNTL__ME_INVALIDATE_ICACHE__SHIFT 0x8
+#define CP_ME_CNTL__CE_PIPE0_RESET__SHIFT 0x10
+#define CP_ME_CNTL__CE_PIPE1_RESET__SHIFT 0x11
+#define CP_ME_CNTL__PFP_PIPE0_RESET__SHIFT 0x12
+#define CP_ME_CNTL__PFP_PIPE1_RESET__SHIFT 0x13
+#define CP_ME_CNTL__ME_PIPE0_RESET__SHIFT 0x14
+#define CP_ME_CNTL__ME_PIPE1_RESET__SHIFT 0x15
+#define CP_ME_CNTL__CE_HALT__SHIFT 0x18
+#define CP_ME_CNTL__CE_STEP__SHIFT 0x19
+#define CP_ME_CNTL__PFP_HALT__SHIFT 0x1a
+#define CP_ME_CNTL__PFP_STEP__SHIFT 0x1b
+#define CP_ME_CNTL__ME_HALT__SHIFT 0x1c
+#define CP_ME_CNTL__ME_STEP__SHIFT 0x1d
+#define CP_ME_CNTL__CE_INVALIDATE_ICACHE_MASK 0x00000010L
+#define CP_ME_CNTL__PFP_INVALIDATE_ICACHE_MASK 0x00000040L
+#define CP_ME_CNTL__ME_INVALIDATE_ICACHE_MASK 0x00000100L
+#define CP_ME_CNTL__CE_PIPE0_RESET_MASK 0x00010000L
+#define CP_ME_CNTL__CE_PIPE1_RESET_MASK 0x00020000L
+#define CP_ME_CNTL__PFP_PIPE0_RESET_MASK 0x00040000L
+#define CP_ME_CNTL__PFP_PIPE1_RESET_MASK 0x00080000L
+#define CP_ME_CNTL__ME_PIPE0_RESET_MASK 0x00100000L
+#define CP_ME_CNTL__ME_PIPE1_RESET_MASK 0x00200000L
+#define CP_ME_CNTL__CE_HALT_MASK 0x01000000L
+#define CP_ME_CNTL__CE_STEP_MASK 0x02000000L
+#define CP_ME_CNTL__PFP_HALT_MASK 0x04000000L
+#define CP_ME_CNTL__PFP_STEP_MASK 0x08000000L
+#define CP_ME_CNTL__ME_HALT_MASK 0x10000000L
+#define CP_ME_CNTL__ME_STEP_MASK 0x20000000L
+//CP_CNTX_STAT
+#define CP_CNTX_STAT__ACTIVE_HP3D_CONTEXTS__SHIFT 0x0
+#define CP_CNTX_STAT__CURRENT_HP3D_CONTEXT__SHIFT 0x8
+#define CP_CNTX_STAT__ACTIVE_GFX_CONTEXTS__SHIFT 0x14
+#define CP_CNTX_STAT__CURRENT_GFX_CONTEXT__SHIFT 0x1c
+#define CP_CNTX_STAT__ACTIVE_HP3D_CONTEXTS_MASK 0x000000FFL
+#define CP_CNTX_STAT__CURRENT_HP3D_CONTEXT_MASK 0x00000700L
+#define CP_CNTX_STAT__ACTIVE_GFX_CONTEXTS_MASK 0x0FF00000L
+#define CP_CNTX_STAT__CURRENT_GFX_CONTEXT_MASK 0x70000000L
+//CP_ME_PREEMPTION
+#define CP_ME_PREEMPTION__OBSOLETE__SHIFT 0x0
+#define CP_ME_PREEMPTION__OBSOLETE_MASK 0x00000001L
+//CP_ROQ_THRESHOLDS
+#define CP_ROQ_THRESHOLDS__IB1_START__SHIFT 0x0
+#define CP_ROQ_THRESHOLDS__IB2_START__SHIFT 0x8
+#define CP_ROQ_THRESHOLDS__IB1_START_MASK 0x000000FFL
+#define CP_ROQ_THRESHOLDS__IB2_START_MASK 0x0000FF00L
+//CP_MEQ_STQ_THRESHOLD
+#define CP_MEQ_STQ_THRESHOLD__STQ_START__SHIFT 0x0
+#define CP_MEQ_STQ_THRESHOLD__STQ_START_MASK 0x000000FFL
+//CP_RB2_RPTR
+#define CP_RB2_RPTR__RB_RPTR__SHIFT 0x0
+#define CP_RB2_RPTR__RB_RPTR_MASK 0x000FFFFFL
+//CP_RB1_RPTR
+#define CP_RB1_RPTR__RB_RPTR__SHIFT 0x0
+#define CP_RB1_RPTR__RB_RPTR_MASK 0x000FFFFFL
+//CP_RB0_RPTR
+#define CP_RB0_RPTR__RB_RPTR__SHIFT 0x0
+#define CP_RB0_RPTR__RB_RPTR_MASK 0x000FFFFFL
+//CP_RB_RPTR
+#define CP_RB_RPTR__RB_RPTR__SHIFT 0x0
+#define CP_RB_RPTR__RB_RPTR_MASK 0x000FFFFFL
+//CP_RB_WPTR_DELAY
+#define CP_RB_WPTR_DELAY__PRE_WRITE_TIMER__SHIFT 0x0
+#define CP_RB_WPTR_DELAY__PRE_WRITE_LIMIT__SHIFT 0x1c
+#define CP_RB_WPTR_DELAY__PRE_WRITE_TIMER_MASK 0x0FFFFFFFL
+#define CP_RB_WPTR_DELAY__PRE_WRITE_LIMIT_MASK 0xF0000000L
+//CP_RB_WPTR_POLL_CNTL
+#define CP_RB_WPTR_POLL_CNTL__POLL_FREQUENCY__SHIFT 0x0
+#define CP_RB_WPTR_POLL_CNTL__IDLE_POLL_COUNT__SHIFT 0x10
+#define CP_RB_WPTR_POLL_CNTL__POLL_FREQUENCY_MASK 0x0000FFFFL
+#define CP_RB_WPTR_POLL_CNTL__IDLE_POLL_COUNT_MASK 0xFFFF0000L
+//CP_ROQ1_THRESHOLDS
+#define CP_ROQ1_THRESHOLDS__RB1_START__SHIFT 0x0
+#define CP_ROQ1_THRESHOLDS__RB2_START__SHIFT 0x8
+#define CP_ROQ1_THRESHOLDS__R0_IB1_START__SHIFT 0x10
+#define CP_ROQ1_THRESHOLDS__R1_IB1_START__SHIFT 0x18
+#define CP_ROQ1_THRESHOLDS__RB1_START_MASK 0x000000FFL
+#define CP_ROQ1_THRESHOLDS__RB2_START_MASK 0x0000FF00L
+#define CP_ROQ1_THRESHOLDS__R0_IB1_START_MASK 0x00FF0000L
+#define CP_ROQ1_THRESHOLDS__R1_IB1_START_MASK 0xFF000000L
+//CP_ROQ2_THRESHOLDS
+#define CP_ROQ2_THRESHOLDS__R2_IB1_START__SHIFT 0x0
+#define CP_ROQ2_THRESHOLDS__R0_IB2_START__SHIFT 0x8
+#define CP_ROQ2_THRESHOLDS__R1_IB2_START__SHIFT 0x10
+#define CP_ROQ2_THRESHOLDS__R2_IB2_START__SHIFT 0x18
+#define CP_ROQ2_THRESHOLDS__R2_IB1_START_MASK 0x000000FFL
+#define CP_ROQ2_THRESHOLDS__R0_IB2_START_MASK 0x0000FF00L
+#define CP_ROQ2_THRESHOLDS__R1_IB2_START_MASK 0x00FF0000L
+#define CP_ROQ2_THRESHOLDS__R2_IB2_START_MASK 0xFF000000L
+//CP_STQ_THRESHOLDS
+#define CP_STQ_THRESHOLDS__STQ0_START__SHIFT 0x0
+#define CP_STQ_THRESHOLDS__STQ1_START__SHIFT 0x8
+#define CP_STQ_THRESHOLDS__STQ2_START__SHIFT 0x10
+#define CP_STQ_THRESHOLDS__STQ0_START_MASK 0x000000FFL
+#define CP_STQ_THRESHOLDS__STQ1_START_MASK 0x0000FF00L
+#define CP_STQ_THRESHOLDS__STQ2_START_MASK 0x00FF0000L
+//CP_QUEUE_THRESHOLDS
+#define CP_QUEUE_THRESHOLDS__ROQ_IB1_START__SHIFT 0x0
+#define CP_QUEUE_THRESHOLDS__ROQ_IB2_START__SHIFT 0x8
+#define CP_QUEUE_THRESHOLDS__ROQ_IB1_START_MASK 0x0000003FL
+#define CP_QUEUE_THRESHOLDS__ROQ_IB2_START_MASK 0x00003F00L
+//CP_MEQ_THRESHOLDS
+#define CP_MEQ_THRESHOLDS__MEQ1_START__SHIFT 0x0
+#define CP_MEQ_THRESHOLDS__MEQ2_START__SHIFT 0x8
+#define CP_MEQ_THRESHOLDS__MEQ1_START_MASK 0x000000FFL
+#define CP_MEQ_THRESHOLDS__MEQ2_START_MASK 0x0000FF00L
+//CP_ROQ_AVAIL
+#define CP_ROQ_AVAIL__ROQ_CNT_RING__SHIFT 0x0
+#define CP_ROQ_AVAIL__ROQ_CNT_IB1__SHIFT 0x10
+#define CP_ROQ_AVAIL__ROQ_CNT_RING_MASK 0x000007FFL
+#define CP_ROQ_AVAIL__ROQ_CNT_IB1_MASK 0x07FF0000L
+//CP_STQ_AVAIL
+#define CP_STQ_AVAIL__STQ_CNT__SHIFT 0x0
+#define CP_STQ_AVAIL__STQ_CNT_MASK 0x000001FFL
+//CP_ROQ2_AVAIL
+#define CP_ROQ2_AVAIL__ROQ_CNT_IB2__SHIFT 0x0
+#define CP_ROQ2_AVAIL__ROQ_CNT_IB2_MASK 0x000007FFL
+//CP_MEQ_AVAIL
+#define CP_MEQ_AVAIL__MEQ_CNT__SHIFT 0x0
+#define CP_MEQ_AVAIL__MEQ_CNT_MASK 0x000003FFL
+//CP_CMD_INDEX
+#define CP_CMD_INDEX__CMD_INDEX__SHIFT 0x0
+#define CP_CMD_INDEX__CMD_ME_SEL__SHIFT 0xc
+#define CP_CMD_INDEX__CMD_QUEUE_SEL__SHIFT 0x10
+#define CP_CMD_INDEX__CMD_INDEX_MASK 0x000007FFL
+#define CP_CMD_INDEX__CMD_ME_SEL_MASK 0x00003000L
+#define CP_CMD_INDEX__CMD_QUEUE_SEL_MASK 0x00070000L
+//CP_CMD_DATA
+#define CP_CMD_DATA__CMD_DATA__SHIFT 0x0
+#define CP_CMD_DATA__CMD_DATA_MASK 0xFFFFFFFFL
+//CP_ROQ_RB_STAT
+#define CP_ROQ_RB_STAT__ROQ_RPTR_PRIMARY__SHIFT 0x0
+#define CP_ROQ_RB_STAT__ROQ_WPTR_PRIMARY__SHIFT 0x10
+#define CP_ROQ_RB_STAT__ROQ_RPTR_PRIMARY_MASK 0x000003FFL
+#define CP_ROQ_RB_STAT__ROQ_WPTR_PRIMARY_MASK 0x03FF0000L
+//CP_ROQ_IB1_STAT
+#define CP_ROQ_IB1_STAT__ROQ_RPTR_INDIRECT1__SHIFT 0x0
+#define CP_ROQ_IB1_STAT__ROQ_WPTR_INDIRECT1__SHIFT 0x10
+#define CP_ROQ_IB1_STAT__ROQ_RPTR_INDIRECT1_MASK 0x000003FFL
+#define CP_ROQ_IB1_STAT__ROQ_WPTR_INDIRECT1_MASK 0x03FF0000L
+//CP_ROQ_IB2_STAT
+#define CP_ROQ_IB2_STAT__ROQ_RPTR_INDIRECT2__SHIFT 0x0
+#define CP_ROQ_IB2_STAT__ROQ_WPTR_INDIRECT2__SHIFT 0x10
+#define CP_ROQ_IB2_STAT__ROQ_RPTR_INDIRECT2_MASK 0x000003FFL
+#define CP_ROQ_IB2_STAT__ROQ_WPTR_INDIRECT2_MASK 0x03FF0000L
+//CP_STQ_STAT
+#define CP_STQ_STAT__STQ_RPTR__SHIFT 0x0
+#define CP_STQ_STAT__STQ_RPTR_MASK 0x000003FFL
+//CP_STQ_WR_STAT
+#define CP_STQ_WR_STAT__STQ_WPTR__SHIFT 0x0
+#define CP_STQ_WR_STAT__STQ_WPTR_MASK 0x000003FFL
+//CP_MEQ_STAT
+#define CP_MEQ_STAT__MEQ_RPTR__SHIFT 0x0
+#define CP_MEQ_STAT__MEQ_WPTR__SHIFT 0x10
+#define CP_MEQ_STAT__MEQ_RPTR_MASK 0x000003FFL
+#define CP_MEQ_STAT__MEQ_WPTR_MASK 0x03FF0000L
+//CP_CEQ1_AVAIL
+#define CP_CEQ1_AVAIL__CEQ_CNT_RING__SHIFT 0x0
+#define CP_CEQ1_AVAIL__CEQ_CNT_IB1__SHIFT 0x10
+#define CP_CEQ1_AVAIL__CEQ_CNT_RING_MASK 0x000007FFL
+#define CP_CEQ1_AVAIL__CEQ_CNT_IB1_MASK 0x07FF0000L
+//CP_CEQ2_AVAIL
+#define CP_CEQ2_AVAIL__CEQ_CNT_IB2__SHIFT 0x0
+#define CP_CEQ2_AVAIL__CEQ_CNT_IB2_MASK 0x000007FFL
+//CP_CE_ROQ_RB_STAT
+#define CP_CE_ROQ_RB_STAT__CEQ_RPTR_PRIMARY__SHIFT 0x0
+#define CP_CE_ROQ_RB_STAT__CEQ_WPTR_PRIMARY__SHIFT 0x10
+#define CP_CE_ROQ_RB_STAT__CEQ_RPTR_PRIMARY_MASK 0x000003FFL
+#define CP_CE_ROQ_RB_STAT__CEQ_WPTR_PRIMARY_MASK 0x03FF0000L
+//CP_CE_ROQ_IB1_STAT
+#define CP_CE_ROQ_IB1_STAT__CEQ_RPTR_INDIRECT1__SHIFT 0x0
+#define CP_CE_ROQ_IB1_STAT__CEQ_WPTR_INDIRECT1__SHIFT 0x10
+#define CP_CE_ROQ_IB1_STAT__CEQ_RPTR_INDIRECT1_MASK 0x000003FFL
+#define CP_CE_ROQ_IB1_STAT__CEQ_WPTR_INDIRECT1_MASK 0x03FF0000L
+//CP_CE_ROQ_IB2_STAT
+#define CP_CE_ROQ_IB2_STAT__CEQ_RPTR_INDIRECT2__SHIFT 0x0
+#define CP_CE_ROQ_IB2_STAT__CEQ_WPTR_INDIRECT2__SHIFT 0x10
+#define CP_CE_ROQ_IB2_STAT__CEQ_RPTR_INDIRECT2_MASK 0x000003FFL
+#define CP_CE_ROQ_IB2_STAT__CEQ_WPTR_INDIRECT2_MASK 0x03FF0000L
+//CP_INT_STAT_DEBUG
+#define CP_INT_STAT_DEBUG__CP_VM_DOORBELL_WR_INT_ASSERTED__SHIFT 0xb
+#define CP_INT_STAT_DEBUG__CP_ECC_ERROR_INT_ASSERTED__SHIFT 0xe
+#define CP_INT_STAT_DEBUG__GPF_INT_ASSERTED__SHIFT 0x10
+#define CP_INT_STAT_DEBUG__WRM_POLL_TIMEOUT_INT_ASSERTED__SHIFT 0x11
+#define CP_INT_STAT_DEBUG__CMP_BUSY_INT_ASSERTED__SHIFT 0x12
+#define CP_INT_STAT_DEBUG__CNTX_BUSY_INT_ASSERTED__SHIFT 0x13
+#define CP_INT_STAT_DEBUG__CNTX_EMPTY_INT_ASSERTED__SHIFT 0x14
+#define CP_INT_STAT_DEBUG__GFX_IDLE_INT_ASSERTED__SHIFT 0x15
+#define CP_INT_STAT_DEBUG__PRIV_INSTR_INT_ASSERTED__SHIFT 0x16
+#define CP_INT_STAT_DEBUG__PRIV_REG_INT_ASSERTED__SHIFT 0x17
+#define CP_INT_STAT_DEBUG__OPCODE_ERROR_INT_ASSERTED__SHIFT 0x18
+#define CP_INT_STAT_DEBUG__TIME_STAMP_INT_ASSERTED__SHIFT 0x1a
+#define CP_INT_STAT_DEBUG__RESERVED_BIT_ERROR_INT_ASSERTED__SHIFT 0x1b
+#define CP_INT_STAT_DEBUG__GENERIC2_INT_ASSERTED__SHIFT 0x1d
+#define CP_INT_STAT_DEBUG__GENERIC1_INT_ASSERTED__SHIFT 0x1e
+#define CP_INT_STAT_DEBUG__GENERIC0_INT_ASSERTED__SHIFT 0x1f
+#define CP_INT_STAT_DEBUG__CP_VM_DOORBELL_WR_INT_ASSERTED_MASK 0x00000800L
+#define CP_INT_STAT_DEBUG__CP_ECC_ERROR_INT_ASSERTED_MASK 0x00004000L
+#define CP_INT_STAT_DEBUG__GPF_INT_ASSERTED_MASK 0x00010000L
+#define CP_INT_STAT_DEBUG__WRM_POLL_TIMEOUT_INT_ASSERTED_MASK 0x00020000L
+#define CP_INT_STAT_DEBUG__CMP_BUSY_INT_ASSERTED_MASK 0x00040000L
+#define CP_INT_STAT_DEBUG__CNTX_BUSY_INT_ASSERTED_MASK 0x00080000L
+#define CP_INT_STAT_DEBUG__CNTX_EMPTY_INT_ASSERTED_MASK 0x00100000L
+#define CP_INT_STAT_DEBUG__GFX_IDLE_INT_ASSERTED_MASK 0x00200000L
+#define CP_INT_STAT_DEBUG__PRIV_INSTR_INT_ASSERTED_MASK 0x00400000L
+#define CP_INT_STAT_DEBUG__PRIV_REG_INT_ASSERTED_MASK 0x00800000L
+#define CP_INT_STAT_DEBUG__OPCODE_ERROR_INT_ASSERTED_MASK 0x01000000L
+#define CP_INT_STAT_DEBUG__TIME_STAMP_INT_ASSERTED_MASK 0x04000000L
+#define CP_INT_STAT_DEBUG__RESERVED_BIT_ERROR_INT_ASSERTED_MASK 0x08000000L
+#define CP_INT_STAT_DEBUG__GENERIC2_INT_ASSERTED_MASK 0x20000000L
+#define CP_INT_STAT_DEBUG__GENERIC1_INT_ASSERTED_MASK 0x40000000L
+#define CP_INT_STAT_DEBUG__GENERIC0_INT_ASSERTED_MASK 0x80000000L
+//CP_DEBUG_CNTL
+#define CP_DEBUG_CNTL__DEBUG_INDX__SHIFT 0x0
+#define CP_DEBUG_CNTL__DEBUG_BUS_SELECT_BITS__SHIFT 0x10
+#define CP_DEBUG_CNTL__DEBUG_BUS_FLOP_EN__SHIFT 0x1f
+#define CP_DEBUG_CNTL__DEBUG_INDX_MASK 0x0000007FL
+#define CP_DEBUG_CNTL__DEBUG_BUS_SELECT_BITS_MASK 0x003F0000L
+#define CP_DEBUG_CNTL__DEBUG_BUS_FLOP_EN_MASK 0x80000000L
+//CP_PRIV_VIOLATION_ADDR
+#define CP_PRIV_VIOLATION_ADDR__PRIV_VIOLATION_ADDR__SHIFT 0x0
+#define CP_PRIV_VIOLATION_ADDR__PRIV_VIOLATION_ADDR_MASK 0x0000FFFFL
+
+
+// addressBlock: xcd0_gc_padec
+//VGT_VTX_VECT_EJECT_REG
+#define VGT_VTX_VECT_EJECT_REG__PRIM_COUNT__SHIFT 0x0
+#define VGT_VTX_VECT_EJECT_REG__PRIM_COUNT_MASK 0x0000007FL
+//VGT_DMA_DATA_FIFO_DEPTH
+#define VGT_DMA_DATA_FIFO_DEPTH__DMA_DATA_FIFO_DEPTH__SHIFT 0x0
+#define VGT_DMA_DATA_FIFO_DEPTH__DMA2DRAW_FIFO_DEPTH__SHIFT 0x9
+#define VGT_DMA_DATA_FIFO_DEPTH__DMA_DATA_FIFO_DEPTH_MASK 0x000001FFL
+#define VGT_DMA_DATA_FIFO_DEPTH__DMA2DRAW_FIFO_DEPTH_MASK 0x0007FE00L
+//VGT_DMA_REQ_FIFO_DEPTH
+#define VGT_DMA_REQ_FIFO_DEPTH__DMA_REQ_FIFO_DEPTH__SHIFT 0x0
+#define VGT_DMA_REQ_FIFO_DEPTH__DMA_REQ_FIFO_DEPTH_MASK 0x0000003FL
+//VGT_DRAW_INIT_FIFO_DEPTH
+#define VGT_DRAW_INIT_FIFO_DEPTH__DRAW_INIT_FIFO_DEPTH__SHIFT 0x0
+#define VGT_DRAW_INIT_FIFO_DEPTH__DRAW_INIT_FIFO_DEPTH_MASK 0x0000003FL
+//VGT_LAST_COPY_STATE
+#define VGT_LAST_COPY_STATE__SRC_STATE_ID__SHIFT 0x0
+#define VGT_LAST_COPY_STATE__DST_STATE_ID__SHIFT 0x10
+#define VGT_LAST_COPY_STATE__SRC_STATE_ID_MASK 0x00000007L
+#define VGT_LAST_COPY_STATE__DST_STATE_ID_MASK 0x00070000L
+//VGT_CACHE_INVALIDATION
+#define VGT_CACHE_INVALIDATION__CACHE_INVALIDATION__SHIFT 0x0
+#define VGT_CACHE_INVALIDATION__DIS_INSTANCING_OPT__SHIFT 0x4
+#define VGT_CACHE_INVALIDATION__VS_NO_EXTRA_BUFFER__SHIFT 0x5
+#define VGT_CACHE_INVALIDATION__AUTO_INVLD_EN__SHIFT 0x6
+#define VGT_CACHE_INVALIDATION__USE_GS_DONE__SHIFT 0x9
+#define VGT_CACHE_INVALIDATION__DIS_RANGE_FULL_INVLD__SHIFT 0xb
+#define VGT_CACHE_INVALIDATION__GS_LATE_ALLOC_EN__SHIFT 0xc
+#define VGT_CACHE_INVALIDATION__STREAMOUT_FULL_FLUSH__SHIFT 0xd
+#define VGT_CACHE_INVALIDATION__ES_LIMIT__SHIFT 0x10
+#define VGT_CACHE_INVALIDATION__ENABLE_PING_PONG__SHIFT 0x15
+#define VGT_CACHE_INVALIDATION__OPT_FLOW_CNTL_1__SHIFT 0x16
+#define VGT_CACHE_INVALIDATION__OPT_FLOW_CNTL_2__SHIFT 0x19
+#define VGT_CACHE_INVALIDATION__EN_WAVE_MERGE__SHIFT 0x1c
+#define VGT_CACHE_INVALIDATION__ENABLE_PING_PONG_EOI__SHIFT 0x1d
+#define VGT_CACHE_INVALIDATION__CACHE_INVALIDATION_MASK 0x00000003L
+#define VGT_CACHE_INVALIDATION__DIS_INSTANCING_OPT_MASK 0x00000010L
+#define VGT_CACHE_INVALIDATION__VS_NO_EXTRA_BUFFER_MASK 0x00000020L
+#define VGT_CACHE_INVALIDATION__AUTO_INVLD_EN_MASK 0x000000C0L
+#define VGT_CACHE_INVALIDATION__USE_GS_DONE_MASK 0x00000200L
+#define VGT_CACHE_INVALIDATION__DIS_RANGE_FULL_INVLD_MASK 0x00000800L
+#define VGT_CACHE_INVALIDATION__GS_LATE_ALLOC_EN_MASK 0x00001000L
+#define VGT_CACHE_INVALIDATION__STREAMOUT_FULL_FLUSH_MASK 0x00002000L
+#define VGT_CACHE_INVALIDATION__ES_LIMIT_MASK 0x001F0000L
+#define VGT_CACHE_INVALIDATION__ENABLE_PING_PONG_MASK 0x00200000L
+#define VGT_CACHE_INVALIDATION__OPT_FLOW_CNTL_1_MASK 0x01C00000L
+#define VGT_CACHE_INVALIDATION__OPT_FLOW_CNTL_2_MASK 0x0E000000L
+#define VGT_CACHE_INVALIDATION__EN_WAVE_MERGE_MASK 0x10000000L
+#define VGT_CACHE_INVALIDATION__ENABLE_PING_PONG_EOI_MASK 0x20000000L
+//VGT_RESET_DEBUG
+#define VGT_RESET_DEBUG__GS_DISABLE__SHIFT 0x0
+#define VGT_RESET_DEBUG__TESS_DISABLE__SHIFT 0x1
+#define VGT_RESET_DEBUG__WD_DISABLE__SHIFT 0x2
+#define VGT_RESET_DEBUG__GS_DISABLE_MASK 0x00000001L
+#define VGT_RESET_DEBUG__TESS_DISABLE_MASK 0x00000002L
+#define VGT_RESET_DEBUG__WD_DISABLE_MASK 0x00000004L
+//VGT_STRMOUT_DELAY
+#define VGT_STRMOUT_DELAY__SKIP_DELAY__SHIFT 0x0
+#define VGT_STRMOUT_DELAY__SE0_WD_DELAY__SHIFT 0x8
+#define VGT_STRMOUT_DELAY__SE1_WD_DELAY__SHIFT 0xb
+#define VGT_STRMOUT_DELAY__SE2_WD_DELAY__SHIFT 0xe
+#define VGT_STRMOUT_DELAY__SE3_WD_DELAY__SHIFT 0x11
+#define VGT_STRMOUT_DELAY__SKIP_DELAY_MASK 0x000000FFL
+#define VGT_STRMOUT_DELAY__SE0_WD_DELAY_MASK 0x00000700L
+#define VGT_STRMOUT_DELAY__SE1_WD_DELAY_MASK 0x00003800L
+#define VGT_STRMOUT_DELAY__SE2_WD_DELAY_MASK 0x0001C000L
+#define VGT_STRMOUT_DELAY__SE3_WD_DELAY_MASK 0x000E0000L
+//VGT_FIFO_DEPTHS
+#define VGT_FIFO_DEPTHS__VS_DEALLOC_TBL_DEPTH__SHIFT 0x0
+#define VGT_FIFO_DEPTHS__RESERVED_0__SHIFT 0x7
+#define VGT_FIFO_DEPTHS__CLIPP_FIFO_DEPTH__SHIFT 0x8
+#define VGT_FIFO_DEPTHS__HSINPUT_FIFO_DEPTH__SHIFT 0x16
+#define VGT_FIFO_DEPTHS__VS_DEALLOC_TBL_DEPTH_MASK 0x0000007FL
+#define VGT_FIFO_DEPTHS__RESERVED_0_MASK 0x00000080L
+#define VGT_FIFO_DEPTHS__CLIPP_FIFO_DEPTH_MASK 0x003FFF00L
+#define VGT_FIFO_DEPTHS__HSINPUT_FIFO_DEPTH_MASK 0x0FC00000L
+//VGT_GS_VERTEX_REUSE
+#define VGT_GS_VERTEX_REUSE__VERT_REUSE__SHIFT 0x0
+#define VGT_GS_VERTEX_REUSE__VERT_REUSE_MASK 0x0000001FL
+//VGT_MC_LAT_CNTL
+#define VGT_MC_LAT_CNTL__MC_TIME_STAMP_RES__SHIFT 0x0
+#define VGT_MC_LAT_CNTL__MC_TIME_STAMP_RES_MASK 0x0000000FL
+//IA_CNTL_STATUS
+#define IA_CNTL_STATUS__IA_BUSY__SHIFT 0x0
+#define IA_CNTL_STATUS__IA_DMA_BUSY__SHIFT 0x1
+#define IA_CNTL_STATUS__IA_DMA_REQ_BUSY__SHIFT 0x2
+#define IA_CNTL_STATUS__IA_GRP_BUSY__SHIFT 0x3
+#define IA_CNTL_STATUS__IA_ADC_BUSY__SHIFT 0x4
+#define IA_CNTL_STATUS__IA_BUSY_MASK 0x00000001L
+#define IA_CNTL_STATUS__IA_DMA_BUSY_MASK 0x00000002L
+#define IA_CNTL_STATUS__IA_DMA_REQ_BUSY_MASK 0x00000004L
+#define IA_CNTL_STATUS__IA_GRP_BUSY_MASK 0x00000008L
+#define IA_CNTL_STATUS__IA_ADC_BUSY_MASK 0x00000010L
+//VGT_CNTL_STATUS
+#define VGT_CNTL_STATUS__VGT_BUSY__SHIFT 0x0
+#define VGT_CNTL_STATUS__VGT_OUT_INDX_BUSY__SHIFT 0x1
+#define VGT_CNTL_STATUS__VGT_OUT_BUSY__SHIFT 0x2
+#define VGT_CNTL_STATUS__VGT_PT_BUSY__SHIFT 0x3
+#define VGT_CNTL_STATUS__VGT_TE_BUSY__SHIFT 0x4
+#define VGT_CNTL_STATUS__VGT_VR_BUSY__SHIFT 0x5
+#define VGT_CNTL_STATUS__VGT_PI_BUSY__SHIFT 0x6
+#define VGT_CNTL_STATUS__VGT_GS_BUSY__SHIFT 0x7
+#define VGT_CNTL_STATUS__VGT_HS_BUSY__SHIFT 0x8
+#define VGT_CNTL_STATUS__VGT_TE11_BUSY__SHIFT 0x9
+#define VGT_CNTL_STATUS__VGT_PRIMGEN_BUSY__SHIFT 0xa
+#define VGT_CNTL_STATUS__VGT_BUSY_MASK 0x00000001L
+#define VGT_CNTL_STATUS__VGT_OUT_INDX_BUSY_MASK 0x00000002L
+#define VGT_CNTL_STATUS__VGT_OUT_BUSY_MASK 0x00000004L
+#define VGT_CNTL_STATUS__VGT_PT_BUSY_MASK 0x00000008L
+#define VGT_CNTL_STATUS__VGT_TE_BUSY_MASK 0x00000010L
+#define VGT_CNTL_STATUS__VGT_VR_BUSY_MASK 0x00000020L
+#define VGT_CNTL_STATUS__VGT_PI_BUSY_MASK 0x00000040L
+#define VGT_CNTL_STATUS__VGT_GS_BUSY_MASK 0x00000080L
+#define VGT_CNTL_STATUS__VGT_HS_BUSY_MASK 0x00000100L
+#define VGT_CNTL_STATUS__VGT_TE11_BUSY_MASK 0x00000200L
+#define VGT_CNTL_STATUS__VGT_PRIMGEN_BUSY_MASK 0x00000400L
+//WD_CNTL_STATUS
+#define WD_CNTL_STATUS__WD_BUSY__SHIFT 0x0
+#define WD_CNTL_STATUS__WD_SPL_DMA_BUSY__SHIFT 0x1
+#define WD_CNTL_STATUS__WD_SPL_DI_BUSY__SHIFT 0x2
+#define WD_CNTL_STATUS__WD_ADC_BUSY__SHIFT 0x3
+#define WD_CNTL_STATUS__WD_BUSY_MASK 0x00000001L
+#define WD_CNTL_STATUS__WD_SPL_DMA_BUSY_MASK 0x00000002L
+#define WD_CNTL_STATUS__WD_SPL_DI_BUSY_MASK 0x00000004L
+#define WD_CNTL_STATUS__WD_ADC_BUSY_MASK 0x00000008L
+//CC_GC_PRIM_CONFIG
+#define CC_GC_PRIM_CONFIG__WRITE_DIS__SHIFT 0x0
+#define CC_GC_PRIM_CONFIG__INACTIVE_IA__SHIFT 0x10
+#define CC_GC_PRIM_CONFIG__INACTIVE_VGT_PA__SHIFT 0x18
+#define CC_GC_PRIM_CONFIG__WRITE_DIS_MASK 0x00000001L
+#define CC_GC_PRIM_CONFIG__INACTIVE_IA_MASK 0x00030000L
+#define CC_GC_PRIM_CONFIG__INACTIVE_VGT_PA_MASK 0x0F000000L
+//GC_USER_PRIM_CONFIG
+#define GC_USER_PRIM_CONFIG__INACTIVE_IA__SHIFT 0x10
+#define GC_USER_PRIM_CONFIG__INACTIVE_VGT_PA__SHIFT 0x18
+#define GC_USER_PRIM_CONFIG__INACTIVE_IA_MASK 0x00030000L
+#define GC_USER_PRIM_CONFIG__INACTIVE_VGT_PA_MASK 0x0F000000L
+//WD_QOS
+#define WD_QOS__DRAW_STALL__SHIFT 0x0
+#define WD_QOS__DRAW_STALL_MASK 0x00000001L
+//WD_UTCL1_CNTL
+#define WD_UTCL1_CNTL__XNACK_REDO_TIMER_CNT__SHIFT 0x0
+#define WD_UTCL1_CNTL__VMID_RESET_MODE__SHIFT 0x17
+#define WD_UTCL1_CNTL__DROP_MODE__SHIFT 0x18
+#define WD_UTCL1_CNTL__BYPASS__SHIFT 0x19
+#define WD_UTCL1_CNTL__INVALIDATE__SHIFT 0x1a
+#define WD_UTCL1_CNTL__FRAG_LIMIT_MODE__SHIFT 0x1b
+#define WD_UTCL1_CNTL__FORCE_SNOOP__SHIFT 0x1c
+#define WD_UTCL1_CNTL__FORCE_SD_VMID_DIRTY__SHIFT 0x1d
+#define WD_UTCL1_CNTL__XNACK_REDO_TIMER_CNT_MASK 0x000FFFFFL
+#define WD_UTCL1_CNTL__VMID_RESET_MODE_MASK 0x00800000L
+#define WD_UTCL1_CNTL__DROP_MODE_MASK 0x01000000L
+#define WD_UTCL1_CNTL__BYPASS_MASK 0x02000000L
+#define WD_UTCL1_CNTL__INVALIDATE_MASK 0x04000000L
+#define WD_UTCL1_CNTL__FRAG_LIMIT_MODE_MASK 0x08000000L
+#define WD_UTCL1_CNTL__FORCE_SNOOP_MASK 0x10000000L
+#define WD_UTCL1_CNTL__FORCE_SD_VMID_DIRTY_MASK 0x20000000L
+//WD_UTCL1_STATUS
+#define WD_UTCL1_STATUS__FAULT_DETECTED__SHIFT 0x0
+#define WD_UTCL1_STATUS__RETRY_DETECTED__SHIFT 0x1
+#define WD_UTCL1_STATUS__PRT_DETECTED__SHIFT 0x2
+#define WD_UTCL1_STATUS__FAULT_UTCL1ID__SHIFT 0x8
+#define WD_UTCL1_STATUS__RETRY_UTCL1ID__SHIFT 0x10
+#define WD_UTCL1_STATUS__PRT_UTCL1ID__SHIFT 0x18
+#define WD_UTCL1_STATUS__FAULT_DETECTED_MASK 0x00000001L
+#define WD_UTCL1_STATUS__RETRY_DETECTED_MASK 0x00000002L
+#define WD_UTCL1_STATUS__PRT_DETECTED_MASK 0x00000004L
+#define WD_UTCL1_STATUS__FAULT_UTCL1ID_MASK 0x00003F00L
+#define WD_UTCL1_STATUS__RETRY_UTCL1ID_MASK 0x003F0000L
+#define WD_UTCL1_STATUS__PRT_UTCL1ID_MASK 0x3F000000L
+//IA_UTCL1_CNTL
+#define IA_UTCL1_CNTL__XNACK_REDO_TIMER_CNT__SHIFT 0x0
+#define IA_UTCL1_CNTL__VMID_RESET_MODE__SHIFT 0x17
+#define IA_UTCL1_CNTL__DROP_MODE__SHIFT 0x18
+#define IA_UTCL1_CNTL__BYPASS__SHIFT 0x19
+#define IA_UTCL1_CNTL__INVALIDATE__SHIFT 0x1a
+#define IA_UTCL1_CNTL__FRAG_LIMIT_MODE__SHIFT 0x1b
+#define IA_UTCL1_CNTL__FORCE_SNOOP__SHIFT 0x1c
+#define IA_UTCL1_CNTL__FORCE_SD_VMID_DIRTY__SHIFT 0x1d
+#define IA_UTCL1_CNTL__XNACK_REDO_TIMER_CNT_MASK 0x000FFFFFL
+#define IA_UTCL1_CNTL__VMID_RESET_MODE_MASK 0x00800000L
+#define IA_UTCL1_CNTL__DROP_MODE_MASK 0x01000000L
+#define IA_UTCL1_CNTL__BYPASS_MASK 0x02000000L
+#define IA_UTCL1_CNTL__INVALIDATE_MASK 0x04000000L
+#define IA_UTCL1_CNTL__FRAG_LIMIT_MODE_MASK 0x08000000L
+#define IA_UTCL1_CNTL__FORCE_SNOOP_MASK 0x10000000L
+#define IA_UTCL1_CNTL__FORCE_SD_VMID_DIRTY_MASK 0x20000000L
+//IA_UTCL1_STATUS
+#define IA_UTCL1_STATUS__FAULT_DETECTED__SHIFT 0x0
+#define IA_UTCL1_STATUS__RETRY_DETECTED__SHIFT 0x1
+#define IA_UTCL1_STATUS__PRT_DETECTED__SHIFT 0x2
+#define IA_UTCL1_STATUS__FAULT_UTCL1ID__SHIFT 0x8
+#define IA_UTCL1_STATUS__RETRY_UTCL1ID__SHIFT 0x10
+#define IA_UTCL1_STATUS__PRT_UTCL1ID__SHIFT 0x18
+#define IA_UTCL1_STATUS__FAULT_DETECTED_MASK 0x00000001L
+#define IA_UTCL1_STATUS__RETRY_DETECTED_MASK 0x00000002L
+#define IA_UTCL1_STATUS__PRT_DETECTED_MASK 0x00000004L
+#define IA_UTCL1_STATUS__FAULT_UTCL1ID_MASK 0x00003F00L
+#define IA_UTCL1_STATUS__RETRY_UTCL1ID_MASK 0x003F0000L
+#define IA_UTCL1_STATUS__PRT_UTCL1ID_MASK 0x3F000000L
+//VGT_SYS_CONFIG
+#define VGT_SYS_CONFIG__DUAL_CORE_EN__SHIFT 0x0
+#define VGT_SYS_CONFIG__MAX_LS_HS_THDGRP__SHIFT 0x1
+#define VGT_SYS_CONFIG__ADC_EVENT_FILTER_DISABLE__SHIFT 0x7
+#define VGT_SYS_CONFIG__DUAL_CORE_EN_MASK 0x00000001L
+#define VGT_SYS_CONFIG__MAX_LS_HS_THDGRP_MASK 0x0000007EL
+#define VGT_SYS_CONFIG__ADC_EVENT_FILTER_DISABLE_MASK 0x00000080L
+//VGT_VS_MAX_WAVE_ID
+#define VGT_VS_MAX_WAVE_ID__MAX_WAVE_ID__SHIFT 0x0
+#define VGT_VS_MAX_WAVE_ID__MAX_WAVE_ID_MASK 0x00000FFFL
+//VGT_GS_MAX_WAVE_ID
+#define VGT_GS_MAX_WAVE_ID__MAX_WAVE_ID__SHIFT 0x0
+#define VGT_GS_MAX_WAVE_ID__MAX_WAVE_ID_MASK 0x00000FFFL
+//GFX_PIPE_CONTROL
+#define GFX_PIPE_CONTROL__HYSTERESIS_CNT__SHIFT 0x0
+#define GFX_PIPE_CONTROL__RESERVED__SHIFT 0xd
+#define GFX_PIPE_CONTROL__CONTEXT_SUSPEND_EN__SHIFT 0x10
+#define GFX_PIPE_CONTROL__HYSTERESIS_CNT_MASK 0x00001FFFL
+#define GFX_PIPE_CONTROL__RESERVED_MASK 0x0000E000L
+#define GFX_PIPE_CONTROL__CONTEXT_SUSPEND_EN_MASK 0x00010000L
+//CC_GC_SHADER_ARRAY_CONFIG
+#define CC_GC_SHADER_ARRAY_CONFIG__WRITE_DIS__SHIFT 0x0
+#define CC_GC_SHADER_ARRAY_CONFIG__INACTIVE_CUS__SHIFT 0x10
+#define CC_GC_SHADER_ARRAY_CONFIG__WRITE_DIS_MASK 0x00000001L
+#define CC_GC_SHADER_ARRAY_CONFIG__INACTIVE_CUS_MASK 0xFFFF0000L
+//GC_USER_SHADER_ARRAY_CONFIG
+#define GC_USER_SHADER_ARRAY_CONFIG__INACTIVE_CUS__SHIFT 0x10
+#define GC_USER_SHADER_ARRAY_CONFIG__INACTIVE_CUS_MASK 0xFFFF0000L
+//VGT_DMA_PRIMITIVE_TYPE
+#define VGT_DMA_PRIMITIVE_TYPE__PRIM_TYPE__SHIFT 0x0
+#define VGT_DMA_PRIMITIVE_TYPE__PRIM_TYPE_MASK 0x0000003FL
+//VGT_DMA_CONTROL
+#define VGT_DMA_CONTROL__PRIMGROUP_SIZE__SHIFT 0x0
+#define VGT_DMA_CONTROL__IA_SWITCH_ON_EOP__SHIFT 0x11
+#define VGT_DMA_CONTROL__SWITCH_ON_EOI__SHIFT 0x13
+#define VGT_DMA_CONTROL__WD_SWITCH_ON_EOP__SHIFT 0x14
+#define VGT_DMA_CONTROL__EN_INST_OPT_BASIC__SHIFT 0x15
+#define VGT_DMA_CONTROL__EN_INST_OPT_ADV__SHIFT 0x16
+#define VGT_DMA_CONTROL__HW_USE_ONLY__SHIFT 0x17
+#define VGT_DMA_CONTROL__PRIMGROUP_SIZE_MASK 0x0000FFFFL
+#define VGT_DMA_CONTROL__IA_SWITCH_ON_EOP_MASK 0x00020000L
+#define VGT_DMA_CONTROL__SWITCH_ON_EOI_MASK 0x00080000L
+#define VGT_DMA_CONTROL__WD_SWITCH_ON_EOP_MASK 0x00100000L
+#define VGT_DMA_CONTROL__EN_INST_OPT_BASIC_MASK 0x00200000L
+#define VGT_DMA_CONTROL__EN_INST_OPT_ADV_MASK 0x00400000L
+#define VGT_DMA_CONTROL__HW_USE_ONLY_MASK 0x00800000L
+//VGT_DMA_LS_HS_CONFIG
+#define VGT_DMA_LS_HS_CONFIG__HS_NUM_INPUT_CP__SHIFT 0x8
+#define VGT_DMA_LS_HS_CONFIG__HS_NUM_INPUT_CP_MASK 0x00003F00L
+//WD_BUF_RESOURCE_1
+#define WD_BUF_RESOURCE_1__POS_BUF_SIZE__SHIFT 0x0
+#define WD_BUF_RESOURCE_1__INDEX_BUF_SIZE__SHIFT 0x10
+#define WD_BUF_RESOURCE_1__POS_BUF_SIZE_MASK 0x0000FFFFL
+#define WD_BUF_RESOURCE_1__INDEX_BUF_SIZE_MASK 0xFFFF0000L
+//WD_BUF_RESOURCE_2
+#define WD_BUF_RESOURCE_2__PARAM_BUF_SIZE__SHIFT 0x0
+#define WD_BUF_RESOURCE_2__ADDR_MODE__SHIFT 0xf
+#define WD_BUF_RESOURCE_2__CNTL_SB_BUF_SIZE__SHIFT 0x10
+#define WD_BUF_RESOURCE_2__PARAM_BUF_SIZE_MASK 0x00001FFFL
+#define WD_BUF_RESOURCE_2__ADDR_MODE_MASK 0x00008000L
+#define WD_BUF_RESOURCE_2__CNTL_SB_BUF_SIZE_MASK 0xFFFF0000L
+//PA_CL_CNTL_STATUS
+#define PA_CL_CNTL_STATUS__UTC_FAULT_DETECTED__SHIFT 0x0
+#define PA_CL_CNTL_STATUS__UTC_RETRY_DETECTED__SHIFT 0x1
+#define PA_CL_CNTL_STATUS__UTC_PRT_DETECTED__SHIFT 0x2
+#define PA_CL_CNTL_STATUS__UTC_FAULT_DETECTED_MASK 0x00000001L
+#define PA_CL_CNTL_STATUS__UTC_RETRY_DETECTED_MASK 0x00000002L
+#define PA_CL_CNTL_STATUS__UTC_PRT_DETECTED_MASK 0x00000004L
+//PA_CL_ENHANCE
+#define PA_CL_ENHANCE__CLIP_VTX_REORDER_ENA__SHIFT 0x0
+#define PA_CL_ENHANCE__NUM_CLIP_SEQ__SHIFT 0x1
+#define PA_CL_ENHANCE__CLIPPED_PRIM_SEQ_STALL__SHIFT 0x3
+#define PA_CL_ENHANCE__VE_NAN_PROC_DISABLE__SHIFT 0x4
+#define PA_CL_ENHANCE__XTRA_DEBUG_REG_SEL__SHIFT 0x5
+#define PA_CL_ENHANCE__IGNORE_PIPELINE_RESET__SHIFT 0x6
+#define PA_CL_ENHANCE__KILL_INNER_EDGE_FLAGS__SHIFT 0x7
+#define PA_CL_ENHANCE__NGG_PA_TO_ALL_SC__SHIFT 0x8
+#define PA_CL_ENHANCE__TC_LATENCY_TIME_STAMP_RESOLUTION__SHIFT 0x9
+#define PA_CL_ENHANCE__NGG_BYPASS_PRIM_FILTER__SHIFT 0xb
+#define PA_CL_ENHANCE__NGG_SIDEBAND_MEMORY_DEPTH__SHIFT 0xc
+#define PA_CL_ENHANCE__NGG_PRIM_INDICES_FIFO_DEPTH__SHIFT 0xe
+#define PA_CL_ENHANCE__PROG_NEAR_CLIP_PLANE_ENABLE__SHIFT 0x11
+#define PA_CL_ENHANCE__OUTPUT_SWITCH_TO_LEGACY_EVENT__SHIFT 0x12
+#define PA_CL_ENHANCE__NO_SWITCH_TO_LEGACY_AFTER_VMID_RESET__SHIFT 0x13
+#define PA_CL_ENHANCE__POLY_INNER_EDGE_FLAG_DISABLE__SHIFT 0x14
+#define PA_CL_ENHANCE__TC_REQUEST_PERF_CNTR_ENABLE__SHIFT 0x15
+#define PA_CL_ENHANCE__ECO_SPARE3__SHIFT 0x1c
+#define PA_CL_ENHANCE__ECO_SPARE2__SHIFT 0x1d
+#define PA_CL_ENHANCE__ECO_SPARE1__SHIFT 0x1e
+#define PA_CL_ENHANCE__ECO_SPARE0__SHIFT 0x1f
+#define PA_CL_ENHANCE__CLIP_VTX_REORDER_ENA_MASK 0x00000001L
+#define PA_CL_ENHANCE__NUM_CLIP_SEQ_MASK 0x00000006L
+#define PA_CL_ENHANCE__CLIPPED_PRIM_SEQ_STALL_MASK 0x00000008L
+#define PA_CL_ENHANCE__VE_NAN_PROC_DISABLE_MASK 0x00000010L
+#define PA_CL_ENHANCE__XTRA_DEBUG_REG_SEL_MASK 0x00000020L
+#define PA_CL_ENHANCE__IGNORE_PIPELINE_RESET_MASK 0x00000040L
+#define PA_CL_ENHANCE__KILL_INNER_EDGE_FLAGS_MASK 0x00000080L
+#define PA_CL_ENHANCE__NGG_PA_TO_ALL_SC_MASK 0x00000100L
+#define PA_CL_ENHANCE__TC_LATENCY_TIME_STAMP_RESOLUTION_MASK 0x00000600L
+#define PA_CL_ENHANCE__NGG_BYPASS_PRIM_FILTER_MASK 0x00000800L
+#define PA_CL_ENHANCE__NGG_SIDEBAND_MEMORY_DEPTH_MASK 0x00003000L
+#define PA_CL_ENHANCE__NGG_PRIM_INDICES_FIFO_DEPTH_MASK 0x0001C000L
+#define PA_CL_ENHANCE__PROG_NEAR_CLIP_PLANE_ENABLE_MASK 0x00020000L
+#define PA_CL_ENHANCE__OUTPUT_SWITCH_TO_LEGACY_EVENT_MASK 0x00040000L
+#define PA_CL_ENHANCE__NO_SWITCH_TO_LEGACY_AFTER_VMID_RESET_MASK 0x00080000L
+#define PA_CL_ENHANCE__POLY_INNER_EDGE_FLAG_DISABLE_MASK 0x00100000L
+#define PA_CL_ENHANCE__TC_REQUEST_PERF_CNTR_ENABLE_MASK 0x00200000L
+#define PA_CL_ENHANCE__ECO_SPARE3_MASK 0x10000000L
+#define PA_CL_ENHANCE__ECO_SPARE2_MASK 0x20000000L
+#define PA_CL_ENHANCE__ECO_SPARE1_MASK 0x40000000L
+#define PA_CL_ENHANCE__ECO_SPARE0_MASK 0x80000000L
+//PA_CL_RESET_DEBUG
+#define PA_CL_RESET_DEBUG__CL_TRIV_DISC_DISABLE__SHIFT 0x0
+#define PA_CL_RESET_DEBUG__CL_TRIV_DISC_DISABLE_MASK 0x00000001L
+//PA_SU_CNTL_STATUS
+#define PA_SU_CNTL_STATUS__SU_BUSY__SHIFT 0x1f
+#define PA_SU_CNTL_STATUS__SU_BUSY_MASK 0x80000000L
+//PA_SC_FIFO_DEPTH_CNTL
+#define PA_SC_FIFO_DEPTH_CNTL__DEPTH__SHIFT 0x0
+#define PA_SC_FIFO_DEPTH_CNTL__DEPTH_MASK 0x000003FFL
+//PA_SC_P3D_TRAP_SCREEN_HV_LOCK
+#define PA_SC_P3D_TRAP_SCREEN_HV_LOCK__DISABLE_NON_PRIV_WRITES__SHIFT 0x0
+#define PA_SC_P3D_TRAP_SCREEN_HV_LOCK__DISABLE_NON_PRIV_WRITES_MASK 0x00000001L
+//PA_SC_HP3D_TRAP_SCREEN_HV_LOCK
+#define PA_SC_HP3D_TRAP_SCREEN_HV_LOCK__DISABLE_NON_PRIV_WRITES__SHIFT 0x0
+#define PA_SC_HP3D_TRAP_SCREEN_HV_LOCK__DISABLE_NON_PRIV_WRITES_MASK 0x00000001L
+//PA_SC_TRAP_SCREEN_HV_LOCK
+#define PA_SC_TRAP_SCREEN_HV_LOCK__DISABLE_NON_PRIV_WRITES__SHIFT 0x0
+#define PA_SC_TRAP_SCREEN_HV_LOCK__DISABLE_NON_PRIV_WRITES_MASK 0x00000001L
+//PA_SC_FORCE_EOV_MAX_CNTS
+#define PA_SC_FORCE_EOV_MAX_CNTS__FORCE_EOV_MAX_CLK_CNT__SHIFT 0x0
+#define PA_SC_FORCE_EOV_MAX_CNTS__FORCE_EOV_MAX_REZ_CNT__SHIFT 0x10
+#define PA_SC_FORCE_EOV_MAX_CNTS__FORCE_EOV_MAX_CLK_CNT_MASK 0x0000FFFFL
+#define PA_SC_FORCE_EOV_MAX_CNTS__FORCE_EOV_MAX_REZ_CNT_MASK 0xFFFF0000L
+//PA_SC_BINNER_EVENT_CNTL_0
+#define PA_SC_BINNER_EVENT_CNTL_0__RESERVED_0__SHIFT 0x0
+#define PA_SC_BINNER_EVENT_CNTL_0__SAMPLE_STREAMOUTSTATS1__SHIFT 0x2
+#define PA_SC_BINNER_EVENT_CNTL_0__SAMPLE_STREAMOUTSTATS2__SHIFT 0x4
+#define PA_SC_BINNER_EVENT_CNTL_0__SAMPLE_STREAMOUTSTATS3__SHIFT 0x6
+#define PA_SC_BINNER_EVENT_CNTL_0__CACHE_FLUSH_TS__SHIFT 0x8
+#define PA_SC_BINNER_EVENT_CNTL_0__CONTEXT_DONE__SHIFT 0xa
+#define PA_SC_BINNER_EVENT_CNTL_0__CACHE_FLUSH__SHIFT 0xc
+#define PA_SC_BINNER_EVENT_CNTL_0__CS_PARTIAL_FLUSH__SHIFT 0xe
+#define PA_SC_BINNER_EVENT_CNTL_0__VGT_STREAMOUT_SYNC__SHIFT 0x10
+#define PA_SC_BINNER_EVENT_CNTL_0__RESERVED_9__SHIFT 0x12
+#define PA_SC_BINNER_EVENT_CNTL_0__VGT_STREAMOUT_RESET__SHIFT 0x14
+#define PA_SC_BINNER_EVENT_CNTL_0__END_OF_PIPE_INCR_DE__SHIFT 0x16
+#define PA_SC_BINNER_EVENT_CNTL_0__END_OF_PIPE_IB_END__SHIFT 0x18
+#define PA_SC_BINNER_EVENT_CNTL_0__RST_PIX_CNT__SHIFT 0x1a
+#define PA_SC_BINNER_EVENT_CNTL_0__BREAK_BATCH__SHIFT 0x1c
+#define PA_SC_BINNER_EVENT_CNTL_0__VS_PARTIAL_FLUSH__SHIFT 0x1e
+#define PA_SC_BINNER_EVENT_CNTL_0__RESERVED_0_MASK 0x00000003L
+#define PA_SC_BINNER_EVENT_CNTL_0__SAMPLE_STREAMOUTSTATS1_MASK 0x0000000CL
+#define PA_SC_BINNER_EVENT_CNTL_0__SAMPLE_STREAMOUTSTATS2_MASK 0x00000030L
+#define PA_SC_BINNER_EVENT_CNTL_0__SAMPLE_STREAMOUTSTATS3_MASK 0x000000C0L
+#define PA_SC_BINNER_EVENT_CNTL_0__CACHE_FLUSH_TS_MASK 0x00000300L
+#define PA_SC_BINNER_EVENT_CNTL_0__CONTEXT_DONE_MASK 0x00000C00L
+#define PA_SC_BINNER_EVENT_CNTL_0__CACHE_FLUSH_MASK 0x00003000L
+#define PA_SC_BINNER_EVENT_CNTL_0__CS_PARTIAL_FLUSH_MASK 0x0000C000L
+#define PA_SC_BINNER_EVENT_CNTL_0__VGT_STREAMOUT_SYNC_MASK 0x00030000L
+#define PA_SC_BINNER_EVENT_CNTL_0__RESERVED_9_MASK 0x000C0000L
+#define PA_SC_BINNER_EVENT_CNTL_0__VGT_STREAMOUT_RESET_MASK 0x00300000L
+#define PA_SC_BINNER_EVENT_CNTL_0__END_OF_PIPE_INCR_DE_MASK 0x00C00000L
+#define PA_SC_BINNER_EVENT_CNTL_0__END_OF_PIPE_IB_END_MASK 0x03000000L
+#define PA_SC_BINNER_EVENT_CNTL_0__RST_PIX_CNT_MASK 0x0C000000L
+#define PA_SC_BINNER_EVENT_CNTL_0__BREAK_BATCH_MASK 0x30000000L
+#define PA_SC_BINNER_EVENT_CNTL_0__VS_PARTIAL_FLUSH_MASK 0xC0000000L
+//PA_SC_BINNER_EVENT_CNTL_1
+#define PA_SC_BINNER_EVENT_CNTL_1__PS_PARTIAL_FLUSH__SHIFT 0x0
+#define PA_SC_BINNER_EVENT_CNTL_1__FLUSH_HS_OUTPUT__SHIFT 0x2
+#define PA_SC_BINNER_EVENT_CNTL_1__FLUSH_DFSM__SHIFT 0x4
+#define PA_SC_BINNER_EVENT_CNTL_1__RESET_TO_LOWEST_VGT__SHIFT 0x6
+#define PA_SC_BINNER_EVENT_CNTL_1__CACHE_FLUSH_AND_INV_TS_EVENT__SHIFT 0x8
+#define PA_SC_BINNER_EVENT_CNTL_1__ZPASS_DONE__SHIFT 0xa
+#define PA_SC_BINNER_EVENT_CNTL_1__CACHE_FLUSH_AND_INV_EVENT__SHIFT 0xc
+#define PA_SC_BINNER_EVENT_CNTL_1__PERFCOUNTER_START__SHIFT 0xe
+#define PA_SC_BINNER_EVENT_CNTL_1__PERFCOUNTER_STOP__SHIFT 0x10
+#define PA_SC_BINNER_EVENT_CNTL_1__PIPELINESTAT_START__SHIFT 0x12
+#define PA_SC_BINNER_EVENT_CNTL_1__PIPELINESTAT_STOP__SHIFT 0x14
+#define PA_SC_BINNER_EVENT_CNTL_1__PERFCOUNTER_SAMPLE__SHIFT 0x16
+#define PA_SC_BINNER_EVENT_CNTL_1__FLUSH_ES_OUTPUT__SHIFT 0x18
+#define PA_SC_BINNER_EVENT_CNTL_1__FLUSH_GS_OUTPUT__SHIFT 0x1a
+#define PA_SC_BINNER_EVENT_CNTL_1__SAMPLE_PIPELINESTAT__SHIFT 0x1c
+#define PA_SC_BINNER_EVENT_CNTL_1__SO_VGTSTREAMOUT_FLUSH__SHIFT 0x1e
+#define PA_SC_BINNER_EVENT_CNTL_1__PS_PARTIAL_FLUSH_MASK 0x00000003L
+#define PA_SC_BINNER_EVENT_CNTL_1__FLUSH_HS_OUTPUT_MASK 0x0000000CL
+#define PA_SC_BINNER_EVENT_CNTL_1__FLUSH_DFSM_MASK 0x00000030L
+#define PA_SC_BINNER_EVENT_CNTL_1__RESET_TO_LOWEST_VGT_MASK 0x000000C0L
+#define PA_SC_BINNER_EVENT_CNTL_1__CACHE_FLUSH_AND_INV_TS_EVENT_MASK 0x00000300L
+#define PA_SC_BINNER_EVENT_CNTL_1__ZPASS_DONE_MASK 0x00000C00L
+#define PA_SC_BINNER_EVENT_CNTL_1__CACHE_FLUSH_AND_INV_EVENT_MASK 0x00003000L
+#define PA_SC_BINNER_EVENT_CNTL_1__PERFCOUNTER_START_MASK 0x0000C000L
+#define PA_SC_BINNER_EVENT_CNTL_1__PERFCOUNTER_STOP_MASK 0x00030000L
+#define PA_SC_BINNER_EVENT_CNTL_1__PIPELINESTAT_START_MASK 0x000C0000L
+#define PA_SC_BINNER_EVENT_CNTL_1__PIPELINESTAT_STOP_MASK 0x00300000L
+#define PA_SC_BINNER_EVENT_CNTL_1__PERFCOUNTER_SAMPLE_MASK 0x00C00000L
+#define PA_SC_BINNER_EVENT_CNTL_1__FLUSH_ES_OUTPUT_MASK 0x03000000L
+#define PA_SC_BINNER_EVENT_CNTL_1__FLUSH_GS_OUTPUT_MASK 0x0C000000L
+#define PA_SC_BINNER_EVENT_CNTL_1__SAMPLE_PIPELINESTAT_MASK 0x30000000L
+#define PA_SC_BINNER_EVENT_CNTL_1__SO_VGTSTREAMOUT_FLUSH_MASK 0xC0000000L
+//PA_SC_BINNER_EVENT_CNTL_2
+#define PA_SC_BINNER_EVENT_CNTL_2__SAMPLE_STREAMOUTSTATS__SHIFT 0x0
+#define PA_SC_BINNER_EVENT_CNTL_2__RESET_VTX_CNT__SHIFT 0x2
+#define PA_SC_BINNER_EVENT_CNTL_2__BLOCK_CONTEXT_DONE__SHIFT 0x4
+#define PA_SC_BINNER_EVENT_CNTL_2__CS_CONTEXT_DONE__SHIFT 0x6
+#define PA_SC_BINNER_EVENT_CNTL_2__VGT_FLUSH__SHIFT 0x8
+#define PA_SC_BINNER_EVENT_CNTL_2__TGID_ROLLOVER__SHIFT 0xa
+#define PA_SC_BINNER_EVENT_CNTL_2__SQ_NON_EVENT__SHIFT 0xc
+#define PA_SC_BINNER_EVENT_CNTL_2__SC_SEND_DB_VPZ__SHIFT 0xe
+#define PA_SC_BINNER_EVENT_CNTL_2__BOTTOM_OF_PIPE_TS__SHIFT 0x10
+#define PA_SC_BINNER_EVENT_CNTL_2__FLUSH_SX_TS__SHIFT 0x12
+#define PA_SC_BINNER_EVENT_CNTL_2__DB_CACHE_FLUSH_AND_INV__SHIFT 0x14
+#define PA_SC_BINNER_EVENT_CNTL_2__FLUSH_AND_INV_DB_DATA_TS__SHIFT 0x16
+#define PA_SC_BINNER_EVENT_CNTL_2__FLUSH_AND_INV_DB_META__SHIFT 0x18
+#define PA_SC_BINNER_EVENT_CNTL_2__FLUSH_AND_INV_CB_DATA_TS__SHIFT 0x1a
+#define PA_SC_BINNER_EVENT_CNTL_2__FLUSH_AND_INV_CB_META__SHIFT 0x1c
+#define PA_SC_BINNER_EVENT_CNTL_2__CS_DONE__SHIFT 0x1e
+#define PA_SC_BINNER_EVENT_CNTL_2__SAMPLE_STREAMOUTSTATS_MASK 0x00000003L
+#define PA_SC_BINNER_EVENT_CNTL_2__RESET_VTX_CNT_MASK 0x0000000CL
+#define PA_SC_BINNER_EVENT_CNTL_2__BLOCK_CONTEXT_DONE_MASK 0x00000030L
+#define PA_SC_BINNER_EVENT_CNTL_2__CS_CONTEXT_DONE_MASK 0x000000C0L
+#define PA_SC_BINNER_EVENT_CNTL_2__VGT_FLUSH_MASK 0x00000300L
+#define PA_SC_BINNER_EVENT_CNTL_2__TGID_ROLLOVER_MASK 0x00000C00L
+#define PA_SC_BINNER_EVENT_CNTL_2__SQ_NON_EVENT_MASK 0x00003000L
+#define PA_SC_BINNER_EVENT_CNTL_2__SC_SEND_DB_VPZ_MASK 0x0000C000L
+#define PA_SC_BINNER_EVENT_CNTL_2__BOTTOM_OF_PIPE_TS_MASK 0x00030000L
+#define PA_SC_BINNER_EVENT_CNTL_2__FLUSH_SX_TS_MASK 0x000C0000L
+#define PA_SC_BINNER_EVENT_CNTL_2__DB_CACHE_FLUSH_AND_INV_MASK 0x00300000L
+#define PA_SC_BINNER_EVENT_CNTL_2__FLUSH_AND_INV_DB_DATA_TS_MASK 0x00C00000L
+#define PA_SC_BINNER_EVENT_CNTL_2__FLUSH_AND_INV_DB_META_MASK 0x03000000L
+#define PA_SC_BINNER_EVENT_CNTL_2__FLUSH_AND_INV_CB_DATA_TS_MASK 0x0C000000L
+#define PA_SC_BINNER_EVENT_CNTL_2__FLUSH_AND_INV_CB_META_MASK 0x30000000L
+#define PA_SC_BINNER_EVENT_CNTL_2__CS_DONE_MASK 0xC0000000L
+//PA_SC_BINNER_EVENT_CNTL_3
+#define PA_SC_BINNER_EVENT_CNTL_3__PS_DONE__SHIFT 0x0
+#define PA_SC_BINNER_EVENT_CNTL_3__FLUSH_AND_INV_CB_PIXEL_DATA__SHIFT 0x2
+#define PA_SC_BINNER_EVENT_CNTL_3__SX_CB_RAT_ACK_REQUEST__SHIFT 0x4
+#define PA_SC_BINNER_EVENT_CNTL_3__THREAD_TRACE_START__SHIFT 0x6
+#define PA_SC_BINNER_EVENT_CNTL_3__THREAD_TRACE_STOP__SHIFT 0x8
+#define PA_SC_BINNER_EVENT_CNTL_3__THREAD_TRACE_MARKER__SHIFT 0xa
+#define PA_SC_BINNER_EVENT_CNTL_3__THREAD_TRACE_FLUSH__SHIFT 0xc
+#define PA_SC_BINNER_EVENT_CNTL_3__THREAD_TRACE_FINISH__SHIFT 0xe
+#define PA_SC_BINNER_EVENT_CNTL_3__PIXEL_PIPE_STAT_CONTROL__SHIFT 0x10
+#define PA_SC_BINNER_EVENT_CNTL_3__PIXEL_PIPE_STAT_DUMP__SHIFT 0x12
+#define PA_SC_BINNER_EVENT_CNTL_3__PIXEL_PIPE_STAT_RESET__SHIFT 0x14
+#define PA_SC_BINNER_EVENT_CNTL_3__CONTEXT_SUSPEND__SHIFT 0x16
+#define PA_SC_BINNER_EVENT_CNTL_3__OFFCHIP_HS_DEALLOC__SHIFT 0x18
+#define PA_SC_BINNER_EVENT_CNTL_3__ENABLE_NGG_PIPELINE__SHIFT 0x1a
+#define PA_SC_BINNER_EVENT_CNTL_3__ENABLE_LEGACY_PIPELINE__SHIFT 0x1c
+#define PA_SC_BINNER_EVENT_CNTL_3__RESERVED_63__SHIFT 0x1e
+#define PA_SC_BINNER_EVENT_CNTL_3__PS_DONE_MASK 0x00000003L
+#define PA_SC_BINNER_EVENT_CNTL_3__FLUSH_AND_INV_CB_PIXEL_DATA_MASK 0x0000000CL
+#define PA_SC_BINNER_EVENT_CNTL_3__SX_CB_RAT_ACK_REQUEST_MASK 0x00000030L
+#define PA_SC_BINNER_EVENT_CNTL_3__THREAD_TRACE_START_MASK 0x000000C0L
+#define PA_SC_BINNER_EVENT_CNTL_3__THREAD_TRACE_STOP_MASK 0x00000300L
+#define PA_SC_BINNER_EVENT_CNTL_3__THREAD_TRACE_MARKER_MASK 0x00000C00L
+#define PA_SC_BINNER_EVENT_CNTL_3__THREAD_TRACE_FLUSH_MASK 0x00003000L
+#define PA_SC_BINNER_EVENT_CNTL_3__THREAD_TRACE_FINISH_MASK 0x0000C000L
+#define PA_SC_BINNER_EVENT_CNTL_3__PIXEL_PIPE_STAT_CONTROL_MASK 0x00030000L
+#define PA_SC_BINNER_EVENT_CNTL_3__PIXEL_PIPE_STAT_DUMP_MASK 0x000C0000L
+#define PA_SC_BINNER_EVENT_CNTL_3__PIXEL_PIPE_STAT_RESET_MASK 0x00300000L
+#define PA_SC_BINNER_EVENT_CNTL_3__CONTEXT_SUSPEND_MASK 0x00C00000L
+#define PA_SC_BINNER_EVENT_CNTL_3__OFFCHIP_HS_DEALLOC_MASK 0x03000000L
+#define PA_SC_BINNER_EVENT_CNTL_3__ENABLE_NGG_PIPELINE_MASK 0x0C000000L
+#define PA_SC_BINNER_EVENT_CNTL_3__ENABLE_LEGACY_PIPELINE_MASK 0x30000000L
+#define PA_SC_BINNER_EVENT_CNTL_3__RESERVED_63_MASK 0xC0000000L
+//PA_SC_BINNER_TIMEOUT_COUNTER
+#define PA_SC_BINNER_TIMEOUT_COUNTER__THRESHOLD__SHIFT 0x0
+#define PA_SC_BINNER_TIMEOUT_COUNTER__THRESHOLD_MASK 0xFFFFFFFFL
+//PA_SC_BINNER_PERF_CNTL_0
+#define PA_SC_BINNER_PERF_CNTL_0__BIN_HIST_NUM_PRIMS_THRESHOLD__SHIFT 0x0
+#define PA_SC_BINNER_PERF_CNTL_0__BATCH_HIST_NUM_PRIMS_THRESHOLD__SHIFT 0xa
+#define PA_SC_BINNER_PERF_CNTL_0__BIN_HIST_NUM_CONTEXT_THRESHOLD__SHIFT 0x14
+#define PA_SC_BINNER_PERF_CNTL_0__BATCH_HIST_NUM_CONTEXT_THRESHOLD__SHIFT 0x17
+#define PA_SC_BINNER_PERF_CNTL_0__BIN_HIST_NUM_PRIMS_THRESHOLD_MASK 0x000003FFL
+#define PA_SC_BINNER_PERF_CNTL_0__BATCH_HIST_NUM_PRIMS_THRESHOLD_MASK 0x000FFC00L
+#define PA_SC_BINNER_PERF_CNTL_0__BIN_HIST_NUM_CONTEXT_THRESHOLD_MASK 0x00700000L
+#define PA_SC_BINNER_PERF_CNTL_0__BATCH_HIST_NUM_CONTEXT_THRESHOLD_MASK 0x03800000L
+//PA_SC_BINNER_PERF_CNTL_1
+#define PA_SC_BINNER_PERF_CNTL_1__BIN_HIST_NUM_PERSISTENT_STATE_THRESHOLD__SHIFT 0x0
+#define PA_SC_BINNER_PERF_CNTL_1__BATCH_HIST_NUM_PERSISTENT_STATE_THRESHOLD__SHIFT 0x5
+#define PA_SC_BINNER_PERF_CNTL_1__BATCH_HIST_NUM_TRIV_REJECTED_PRIMS_THRESHOLD__SHIFT 0xa
+#define PA_SC_BINNER_PERF_CNTL_1__BIN_HIST_NUM_PERSISTENT_STATE_THRESHOLD_MASK 0x0000001FL
+#define PA_SC_BINNER_PERF_CNTL_1__BATCH_HIST_NUM_PERSISTENT_STATE_THRESHOLD_MASK 0x000003E0L
+#define PA_SC_BINNER_PERF_CNTL_1__BATCH_HIST_NUM_TRIV_REJECTED_PRIMS_THRESHOLD_MASK 0x03FFFC00L
+//PA_SC_BINNER_PERF_CNTL_2
+#define PA_SC_BINNER_PERF_CNTL_2__BATCH_HIST_NUM_ROWS_PER_PRIM_THRESHOLD__SHIFT 0x0
+#define PA_SC_BINNER_PERF_CNTL_2__BATCH_HIST_NUM_COLUMNS_PER_ROW_THRESHOLD__SHIFT 0xb
+#define PA_SC_BINNER_PERF_CNTL_2__BATCH_HIST_NUM_ROWS_PER_PRIM_THRESHOLD_MASK 0x000007FFL
+#define PA_SC_BINNER_PERF_CNTL_2__BATCH_HIST_NUM_COLUMNS_PER_ROW_THRESHOLD_MASK 0x003FF800L
+//PA_SC_BINNER_PERF_CNTL_3
+#define PA_SC_BINNER_PERF_CNTL_3__BATCH_HIST_NUM_PS_WAVE_BREAKS_THRESHOLD__SHIFT 0x0
+#define PA_SC_BINNER_PERF_CNTL_3__BATCH_HIST_NUM_PS_WAVE_BREAKS_THRESHOLD_MASK 0xFFFFFFFFL
+//PA_SC_ENHANCE_2
+#define PA_SC_ENHANCE_2__RESERVED_0__SHIFT 0x0
+#define PA_SC_ENHANCE_2__RESERVED_1__SHIFT 0x1
+#define PA_SC_ENHANCE_2__RESERVED_2__SHIFT 0x2
+#define PA_SC_ENHANCE_2__RESERVED_3__SHIFT 0x3
+#define PA_SC_ENHANCE_2__RESERVED_4__SHIFT 0x4
+#define PA_SC_ENHANCE_2__RESERVED_5__SHIFT 0x5
+#define PA_SC_ENHANCE_2__ENABLE_SC_SEND_DB_VPZ_FOR_COMPOUND_INDEX_EN__SHIFT 0x6
+#define PA_SC_ENHANCE_2__ENABLE_SC_SEND_DB_VPZ_FOR_EN_PIPELINE_PRIMID__SHIFT 0x7
+#define PA_SC_ENHANCE_2__RSVD__SHIFT 0x8
+#define PA_SC_ENHANCE_2__RESERVED_0_MASK 0x00000001L
+#define PA_SC_ENHANCE_2__RESERVED_1_MASK 0x00000002L
+#define PA_SC_ENHANCE_2__RESERVED_2_MASK 0x00000004L
+#define PA_SC_ENHANCE_2__RESERVED_3_MASK 0x00000008L
+#define PA_SC_ENHANCE_2__RESERVED_4_MASK 0x00000010L
+#define PA_SC_ENHANCE_2__RESERVED_5_MASK 0x00000020L
+#define PA_SC_ENHANCE_2__ENABLE_SC_SEND_DB_VPZ_FOR_COMPOUND_INDEX_EN_MASK 0x00000040L
+#define PA_SC_ENHANCE_2__ENABLE_SC_SEND_DB_VPZ_FOR_EN_PIPELINE_PRIMID_MASK 0x00000080L
+#define PA_SC_ENHANCE_2__RSVD_MASK 0xFFFFFF00L
+//PA_SC_FIFO_SIZE
+#define PA_SC_FIFO_SIZE__SC_FRONTEND_PRIM_FIFO_SIZE__SHIFT 0x0
+#define PA_SC_FIFO_SIZE__SC_BACKEND_PRIM_FIFO_SIZE__SHIFT 0x6
+#define PA_SC_FIFO_SIZE__SC_HIZ_TILE_FIFO_SIZE__SHIFT 0xf
+#define PA_SC_FIFO_SIZE__SC_EARLYZ_TILE_FIFO_SIZE__SHIFT 0x15
+#define PA_SC_FIFO_SIZE__SC_FRONTEND_PRIM_FIFO_SIZE_MASK 0x0000003FL
+#define PA_SC_FIFO_SIZE__SC_BACKEND_PRIM_FIFO_SIZE_MASK 0x00007FC0L
+#define PA_SC_FIFO_SIZE__SC_HIZ_TILE_FIFO_SIZE_MASK 0x001F8000L
+#define PA_SC_FIFO_SIZE__SC_EARLYZ_TILE_FIFO_SIZE_MASK 0xFFE00000L
+//PA_SC_IF_FIFO_SIZE
+#define PA_SC_IF_FIFO_SIZE__SC_DB_TILE_IF_FIFO_SIZE__SHIFT 0x0
+#define PA_SC_IF_FIFO_SIZE__SC_DB_QUAD_IF_FIFO_SIZE__SHIFT 0x6
+#define PA_SC_IF_FIFO_SIZE__SC_SPI_IF_FIFO_SIZE__SHIFT 0xc
+#define PA_SC_IF_FIFO_SIZE__SC_BCI_IF_FIFO_SIZE__SHIFT 0x12
+#define PA_SC_IF_FIFO_SIZE__SC_DB_TILE_IF_FIFO_SIZE_MASK 0x0000003FL
+#define PA_SC_IF_FIFO_SIZE__SC_DB_QUAD_IF_FIFO_SIZE_MASK 0x00000FC0L
+#define PA_SC_IF_FIFO_SIZE__SC_SPI_IF_FIFO_SIZE_MASK 0x0003F000L
+#define PA_SC_IF_FIFO_SIZE__SC_BCI_IF_FIFO_SIZE_MASK 0x00FC0000L
+//PA_SC_PKR_WAVE_TABLE_CNTL
+#define PA_SC_PKR_WAVE_TABLE_CNTL__SIZE__SHIFT 0x0
+#define PA_SC_PKR_WAVE_TABLE_CNTL__SIZE_MASK 0x0000003FL
+//PA_UTCL1_CNTL1
+#define PA_UTCL1_CNTL1__FORCE_4K_L2_RESP__SHIFT 0x0
+#define PA_UTCL1_CNTL1__GPUVM_64K_DEFAULT__SHIFT 0x1
+#define PA_UTCL1_CNTL1__GPUVM_PERM_MODE__SHIFT 0x2
+#define PA_UTCL1_CNTL1__RESP_MODE__SHIFT 0x3
+#define PA_UTCL1_CNTL1__RESP_FAULT_MODE__SHIFT 0x5
+#define PA_UTCL1_CNTL1__CLIENTID__SHIFT 0x7
+#define PA_UTCL1_CNTL1__SPARE__SHIFT 0x10
+#define PA_UTCL1_CNTL1__ENABLE_PUSH_LFIFO__SHIFT 0x11
+#define PA_UTCL1_CNTL1__ENABLE_LFIFO_PRI_ARB__SHIFT 0x12
+#define PA_UTCL1_CNTL1__REG_INV_VMID__SHIFT 0x13
+#define PA_UTCL1_CNTL1__REG_INV_ALL_VMID__SHIFT 0x17
+#define PA_UTCL1_CNTL1__REG_INV_TOGGLE__SHIFT 0x18
+#define PA_UTCL1_CNTL1__INVALIDATE_ALL_VMID__SHIFT 0x19
+#define PA_UTCL1_CNTL1__FORCE_MISS__SHIFT 0x1a
+#define PA_UTCL1_CNTL1__FORCE_IN_ORDER__SHIFT 0x1b
+#define PA_UTCL1_CNTL1__REDUCE_FIFO_DEPTH_BY_2__SHIFT 0x1c
+#define PA_UTCL1_CNTL1__REDUCE_CACHE_SIZE_BY_2__SHIFT 0x1e
+#define PA_UTCL1_CNTL1__FORCE_4K_L2_RESP_MASK 0x00000001L
+#define PA_UTCL1_CNTL1__GPUVM_64K_DEFAULT_MASK 0x00000002L
+#define PA_UTCL1_CNTL1__GPUVM_PERM_MODE_MASK 0x00000004L
+#define PA_UTCL1_CNTL1__RESP_MODE_MASK 0x00000018L
+#define PA_UTCL1_CNTL1__RESP_FAULT_MODE_MASK 0x00000060L
+#define PA_UTCL1_CNTL1__CLIENTID_MASK 0x0000FF80L
+#define PA_UTCL1_CNTL1__SPARE_MASK 0x00010000L
+#define PA_UTCL1_CNTL1__ENABLE_PUSH_LFIFO_MASK 0x00020000L
+#define PA_UTCL1_CNTL1__ENABLE_LFIFO_PRI_ARB_MASK 0x00040000L
+#define PA_UTCL1_CNTL1__REG_INV_VMID_MASK 0x00780000L
+#define PA_UTCL1_CNTL1__REG_INV_ALL_VMID_MASK 0x00800000L
+#define PA_UTCL1_CNTL1__REG_INV_TOGGLE_MASK 0x01000000L
+#define PA_UTCL1_CNTL1__INVALIDATE_ALL_VMID_MASK 0x02000000L
+#define PA_UTCL1_CNTL1__FORCE_MISS_MASK 0x04000000L
+#define PA_UTCL1_CNTL1__FORCE_IN_ORDER_MASK 0x08000000L
+#define PA_UTCL1_CNTL1__REDUCE_FIFO_DEPTH_BY_2_MASK 0x30000000L
+#define PA_UTCL1_CNTL1__REDUCE_CACHE_SIZE_BY_2_MASK 0xC0000000L
+//PA_UTCL1_CNTL2
+#define PA_UTCL1_CNTL2__SPARE1__SHIFT 0x0
+#define PA_UTCL1_CNTL2__SPARE2__SHIFT 0x8
+#define PA_UTCL1_CNTL2__MTYPE_OVRD_DIS__SHIFT 0x9
+#define PA_UTCL1_CNTL2__LINE_VALID__SHIFT 0xa
+#define PA_UTCL1_CNTL2__SPARE3__SHIFT 0xb
+#define PA_UTCL1_CNTL2__GPUVM_INV_MODE__SHIFT 0xc
+#define PA_UTCL1_CNTL2__ENABLE_SHOOTDOWN_OPT__SHIFT 0xd
+#define PA_UTCL1_CNTL2__FORCE_SNOOP__SHIFT 0xe
+#define PA_UTCL1_CNTL2__FORCE_GPUVM_INV_ACK__SHIFT 0xf
+#define PA_UTCL1_CNTL2__SPARE4__SHIFT 0x10
+#define PA_UTCL1_CNTL2__ENABLE_PERF_EVENT_RD_WR__SHIFT 0x12
+#define PA_UTCL1_CNTL2__PERF_EVENT_RD_WR__SHIFT 0x13
+#define PA_UTCL1_CNTL2__ENABLE_PERF_EVENT_VMID__SHIFT 0x14
+#define PA_UTCL1_CNTL2__PERF_EVENT_VMID__SHIFT 0x15
+#define PA_UTCL1_CNTL2__SPARE5__SHIFT 0x19
+#define PA_UTCL1_CNTL2__FORCE_FRAG_2M_TO_64K__SHIFT 0x1a
+#define PA_UTCL1_CNTL2__RESERVED__SHIFT 0x1b
+#define PA_UTCL1_CNTL2__SPARE1_MASK 0x000000FFL
+#define PA_UTCL1_CNTL2__SPARE2_MASK 0x00000100L
+#define PA_UTCL1_CNTL2__MTYPE_OVRD_DIS_MASK 0x00000200L
+#define PA_UTCL1_CNTL2__LINE_VALID_MASK 0x00000400L
+#define PA_UTCL1_CNTL2__SPARE3_MASK 0x00000800L
+#define PA_UTCL1_CNTL2__GPUVM_INV_MODE_MASK 0x00001000L
+#define PA_UTCL1_CNTL2__ENABLE_SHOOTDOWN_OPT_MASK 0x00002000L
+#define PA_UTCL1_CNTL2__FORCE_SNOOP_MASK 0x00004000L
+#define PA_UTCL1_CNTL2__FORCE_GPUVM_INV_ACK_MASK 0x00008000L
+#define PA_UTCL1_CNTL2__SPARE4_MASK 0x00030000L
+#define PA_UTCL1_CNTL2__ENABLE_PERF_EVENT_RD_WR_MASK 0x00040000L
+#define PA_UTCL1_CNTL2__PERF_EVENT_RD_WR_MASK 0x00080000L
+#define PA_UTCL1_CNTL2__ENABLE_PERF_EVENT_VMID_MASK 0x00100000L
+#define PA_UTCL1_CNTL2__PERF_EVENT_VMID_MASK 0x01E00000L
+#define PA_UTCL1_CNTL2__SPARE5_MASK 0x02000000L
+#define PA_UTCL1_CNTL2__FORCE_FRAG_2M_TO_64K_MASK 0x04000000L
+#define PA_UTCL1_CNTL2__RESERVED_MASK 0xF8000000L
+//PA_SIDEBAND_REQUEST_DELAYS
+#define PA_SIDEBAND_REQUEST_DELAYS__RETRY_DELAY__SHIFT 0x0
+#define PA_SIDEBAND_REQUEST_DELAYS__INITIAL_DELAY__SHIFT 0x10
+#define PA_SIDEBAND_REQUEST_DELAYS__RETRY_DELAY_MASK 0x0000FFFFL
+#define PA_SIDEBAND_REQUEST_DELAYS__INITIAL_DELAY_MASK 0xFFFF0000L
+//PA_SC_ENHANCE
+#define PA_SC_ENHANCE__ENABLE_PA_SC_OUT_OF_ORDER__SHIFT 0x0
+#define PA_SC_ENHANCE__DISABLE_SC_DB_TILE_FIX__SHIFT 0x1
+#define PA_SC_ENHANCE__DISABLE_AA_MASK_FULL_FIX__SHIFT 0x2
+#define PA_SC_ENHANCE__ENABLE_1XMSAA_SAMPLE_LOCATIONS__SHIFT 0x3
+#define PA_SC_ENHANCE__ENABLE_1XMSAA_SAMPLE_LOC_CENTROID__SHIFT 0x4
+#define PA_SC_ENHANCE__DISABLE_SCISSOR_FIX__SHIFT 0x5
+#define PA_SC_ENHANCE__SEND_UNLIT_STILES_TO_PACKER__SHIFT 0x6
+#define PA_SC_ENHANCE__DISABLE_DUALGRAD_PERF_OPTIMIZATION__SHIFT 0x7
+#define PA_SC_ENHANCE__DISABLE_SC_PROCESS_RESET_PRIM__SHIFT 0x8
+#define PA_SC_ENHANCE__DISABLE_SC_PROCESS_RESET_SUPERTILE__SHIFT 0x9
+#define PA_SC_ENHANCE__DISABLE_SC_PROCESS_RESET_TILE__SHIFT 0xa
+#define PA_SC_ENHANCE__DISABLE_PA_SC_GUIDANCE__SHIFT 0xb
+#define PA_SC_ENHANCE__DISABLE_EOV_ALL_CTRL_ONLY_COMBINATIONS__SHIFT 0xc
+#define PA_SC_ENHANCE__ENABLE_MULTICYCLE_BUBBLE_FREEZE__SHIFT 0xd
+#define PA_SC_ENHANCE__DISABLE_OUT_OF_ORDER_PA_SC_GUIDANCE__SHIFT 0xe
+#define PA_SC_ENHANCE__ENABLE_OUT_OF_ORDER_POLY_MODE__SHIFT 0xf
+#define PA_SC_ENHANCE__DISABLE_OUT_OF_ORDER_EOP_SYNC_NULL_PRIMS_LAST__SHIFT 0x10
+#define PA_SC_ENHANCE__DISABLE_OUT_OF_ORDER_THRESHOLD_SWITCHING__SHIFT 0x11
+#define PA_SC_ENHANCE__ENABLE_OUT_OF_ORDER_THRESHOLD_SWITCH_AT_EOPG_ONLY__SHIFT 0x12
+#define PA_SC_ENHANCE__DISABLE_OUT_OF_ORDER_DESIRED_FIFO_EMPTY_SWITCHING__SHIFT 0x13
+#define PA_SC_ENHANCE__DISABLE_OUT_OF_ORDER_SELECTED_FIFO_EMPTY_SWITCHING__SHIFT 0x14
+#define PA_SC_ENHANCE__DISABLE_OUT_OF_ORDER_EMPTY_SWITCHING_HYSTERYSIS__SHIFT 0x15
+#define PA_SC_ENHANCE__ENABLE_OUT_OF_ORDER_DESIRED_FIFO_IS_NEXT_FEID__SHIFT 0x16
+#define PA_SC_ENHANCE__DISABLE_OOO_NO_EOPG_SKEW_DESIRED_FIFO_IS_CURRENT_FIFO__SHIFT 0x17
+#define PA_SC_ENHANCE__OOO_DISABLE_EOP_ON_FIRST_LIVE_PRIM_HIT__SHIFT 0x18
+#define PA_SC_ENHANCE__OOO_DISABLE_EOPG_SKEW_THRESHOLD_SWITCHING__SHIFT 0x19
+#define PA_SC_ENHANCE__DISABLE_EOP_LINE_STIPPLE_RESET__SHIFT 0x1a
+#define PA_SC_ENHANCE__DISABLE_VPZ_EOP_LINE_STIPPLE_RESET__SHIFT 0x1b
+#define PA_SC_ENHANCE__IOO_DISABLE_SCAN_UNSELECTED_FIFOS_FOR_DUAL_GFX_RING_CHANGE__SHIFT 0x1c
+#define PA_SC_ENHANCE__OOO_USE_ABSOLUTE_FIFO_COUNT_IN_THRESHOLD_SWITCHING__SHIFT 0x1d
+#define PA_SC_ENHANCE__ENABLE_PA_SC_OUT_OF_ORDER_MASK 0x00000001L
+#define PA_SC_ENHANCE__DISABLE_SC_DB_TILE_FIX_MASK 0x00000002L
+#define PA_SC_ENHANCE__DISABLE_AA_MASK_FULL_FIX_MASK 0x00000004L
+#define PA_SC_ENHANCE__ENABLE_1XMSAA_SAMPLE_LOCATIONS_MASK 0x00000008L
+#define PA_SC_ENHANCE__ENABLE_1XMSAA_SAMPLE_LOC_CENTROID_MASK 0x00000010L
+#define PA_SC_ENHANCE__DISABLE_SCISSOR_FIX_MASK 0x00000020L
+#define PA_SC_ENHANCE__SEND_UNLIT_STILES_TO_PACKER_MASK 0x00000040L
+#define PA_SC_ENHANCE__DISABLE_DUALGRAD_PERF_OPTIMIZATION_MASK 0x00000080L
+#define PA_SC_ENHANCE__DISABLE_SC_PROCESS_RESET_PRIM_MASK 0x00000100L
+#define PA_SC_ENHANCE__DISABLE_SC_PROCESS_RESET_SUPERTILE_MASK 0x00000200L
+#define PA_SC_ENHANCE__DISABLE_SC_PROCESS_RESET_TILE_MASK 0x00000400L
+#define PA_SC_ENHANCE__DISABLE_PA_SC_GUIDANCE_MASK 0x00000800L
+#define PA_SC_ENHANCE__DISABLE_EOV_ALL_CTRL_ONLY_COMBINATIONS_MASK 0x00001000L
+#define PA_SC_ENHANCE__ENABLE_MULTICYCLE_BUBBLE_FREEZE_MASK 0x00002000L
+#define PA_SC_ENHANCE__DISABLE_OUT_OF_ORDER_PA_SC_GUIDANCE_MASK 0x00004000L
+#define PA_SC_ENHANCE__ENABLE_OUT_OF_ORDER_POLY_MODE_MASK 0x00008000L
+#define PA_SC_ENHANCE__DISABLE_OUT_OF_ORDER_EOP_SYNC_NULL_PRIMS_LAST_MASK 0x00010000L
+#define PA_SC_ENHANCE__DISABLE_OUT_OF_ORDER_THRESHOLD_SWITCHING_MASK 0x00020000L
+#define PA_SC_ENHANCE__ENABLE_OUT_OF_ORDER_THRESHOLD_SWITCH_AT_EOPG_ONLY_MASK 0x00040000L
+#define PA_SC_ENHANCE__DISABLE_OUT_OF_ORDER_DESIRED_FIFO_EMPTY_SWITCHING_MASK 0x00080000L
+#define PA_SC_ENHANCE__DISABLE_OUT_OF_ORDER_SELECTED_FIFO_EMPTY_SWITCHING_MASK 0x00100000L
+#define PA_SC_ENHANCE__DISABLE_OUT_OF_ORDER_EMPTY_SWITCHING_HYSTERYSIS_MASK 0x00200000L
+#define PA_SC_ENHANCE__ENABLE_OUT_OF_ORDER_DESIRED_FIFO_IS_NEXT_FEID_MASK 0x00400000L
+#define PA_SC_ENHANCE__DISABLE_OOO_NO_EOPG_SKEW_DESIRED_FIFO_IS_CURRENT_FIFO_MASK 0x00800000L
+#define PA_SC_ENHANCE__OOO_DISABLE_EOP_ON_FIRST_LIVE_PRIM_HIT_MASK 0x01000000L
+#define PA_SC_ENHANCE__OOO_DISABLE_EOPG_SKEW_THRESHOLD_SWITCHING_MASK 0x02000000L
+#define PA_SC_ENHANCE__DISABLE_EOP_LINE_STIPPLE_RESET_MASK 0x04000000L
+#define PA_SC_ENHANCE__DISABLE_VPZ_EOP_LINE_STIPPLE_RESET_MASK 0x08000000L
+#define PA_SC_ENHANCE__IOO_DISABLE_SCAN_UNSELECTED_FIFOS_FOR_DUAL_GFX_RING_CHANGE_MASK 0x10000000L
+#define PA_SC_ENHANCE__OOO_USE_ABSOLUTE_FIFO_COUNT_IN_THRESHOLD_SWITCHING_MASK 0x20000000L
+//PA_SC_ENHANCE_1
+#define PA_SC_ENHANCE_1__REALIGN_DQUADS_OVERRIDE_ENABLE__SHIFT 0x0
+#define PA_SC_ENHANCE_1__REALIGN_DQUADS_OVERRIDE__SHIFT 0x1
+#define PA_SC_ENHANCE_1__DISABLE_SC_BINNING__SHIFT 0x3
+#define PA_SC_ENHANCE_1__BYPASS_PBB__SHIFT 0x4
+#define PA_SC_ENHANCE_1__ECO_SPARE0__SHIFT 0x5
+#define PA_SC_ENHANCE_1__ECO_SPARE1__SHIFT 0x6
+#define PA_SC_ENHANCE_1__ECO_SPARE2__SHIFT 0x7
+#define PA_SC_ENHANCE_1__ECO_SPARE3__SHIFT 0x8
+#define PA_SC_ENHANCE_1__DISABLE_SC_PROCESS_RESET_PBB__SHIFT 0x9
+#define PA_SC_ENHANCE_1__DISABLE_PBB_SCISSOR_OPT__SHIFT 0xa
+#define PA_SC_ENHANCE_1__ENABLE_DFSM_FLUSH_EVENT_TO_FLUSH_POPS_CAM__SHIFT 0xb
+#define PA_SC_ENHANCE_1__DEBUG_PIXEL_PICKER_XY_UNPACK__SHIFT 0xc
+#define PA_SC_ENHANCE_1__DISABLE_PACKER_GRAD_FDCE_ENHANCE__SHIFT 0xd
+#define PA_SC_ENHANCE_1__DISABLE_SC_DB_TILE_INTF_FINE_CLOCK_GATE__SHIFT 0xe
+#define PA_SC_ENHANCE_1__DISABLE_SC_PIPELINE_RESET_LEGACY_MODE_TRANSITION__SHIFT 0xf
+#define PA_SC_ENHANCE_1__DISABLE_PACKER_ODC_ENHANCE__SHIFT 0x10
+#define PA_SC_ENHANCE_1__ALLOW_SCALE_LINE_WIDTH_PAD_WITH_BINNING__SHIFT 0x11
+#define PA_SC_ENHANCE_1__OPTIMAL_BIN_SELECTION__SHIFT 0x12
+#define PA_SC_ENHANCE_1__DISABLE_FORCE_SOP_ALL_EVENTS__SHIFT 0x13
+#define PA_SC_ENHANCE_1__DISABLE_PBB_CLK_OPTIMIZATION__SHIFT 0x14
+#define PA_SC_ENHANCE_1__DISABLE_PBB_SCISSOR_CLK_OPTIMIZATION__SHIFT 0x15
+#define PA_SC_ENHANCE_1__DISABLE_PBB_BINNING_CLK_OPTIMIZATION__SHIFT 0x16
+#define PA_SC_ENHANCE_1__DISABLE_INTF_CG__SHIFT 0x17
+#define PA_SC_ENHANCE_1__IOO_DISABLE_EOP_ON_FIRST_LIVE_PRIM_HIT__SHIFT 0x18
+#define PA_SC_ENHANCE_1__DISABLE_SHADER_PROFILING_FOR_POWER__SHIFT 0x19
+#define PA_SC_ENHANCE_1__FLUSH_ON_BINNING_TRANSITION__SHIFT 0x1a
+#define PA_SC_ENHANCE_1__DISABLE_QUAD_PROC_FDCE_ENHANCE__SHIFT 0x1b
+#define PA_SC_ENHANCE_1__DISABLE_SC_PS_PA_ARBITER_FIX__SHIFT 0x1c
+#define PA_SC_ENHANCE_1__DISABLE_SC_PS_PA_ARBITER_FIX_1__SHIFT 0x1d
+#define PA_SC_ENHANCE_1__PASS_VPZ_EVENT_TO_SPI__SHIFT 0x1e
+#define PA_SC_ENHANCE_1__RSVD__SHIFT 0x1f
+#define PA_SC_ENHANCE_1__REALIGN_DQUADS_OVERRIDE_ENABLE_MASK 0x00000001L
+#define PA_SC_ENHANCE_1__REALIGN_DQUADS_OVERRIDE_MASK 0x00000006L
+#define PA_SC_ENHANCE_1__DISABLE_SC_BINNING_MASK 0x00000008L
+#define PA_SC_ENHANCE_1__BYPASS_PBB_MASK 0x00000010L
+#define PA_SC_ENHANCE_1__ECO_SPARE0_MASK 0x00000020L
+#define PA_SC_ENHANCE_1__ECO_SPARE1_MASK 0x00000040L
+#define PA_SC_ENHANCE_1__ECO_SPARE2_MASK 0x00000080L
+#define PA_SC_ENHANCE_1__ECO_SPARE3_MASK 0x00000100L
+#define PA_SC_ENHANCE_1__DISABLE_SC_PROCESS_RESET_PBB_MASK 0x00000200L
+#define PA_SC_ENHANCE_1__DISABLE_PBB_SCISSOR_OPT_MASK 0x00000400L
+#define PA_SC_ENHANCE_1__ENABLE_DFSM_FLUSH_EVENT_TO_FLUSH_POPS_CAM_MASK 0x00000800L
+#define PA_SC_ENHANCE_1__DEBUG_PIXEL_PICKER_XY_UNPACK_MASK 0x00001000L
+#define PA_SC_ENHANCE_1__DISABLE_PACKER_GRAD_FDCE_ENHANCE_MASK 0x00002000L
+#define PA_SC_ENHANCE_1__DISABLE_SC_DB_TILE_INTF_FINE_CLOCK_GATE_MASK 0x00004000L
+#define PA_SC_ENHANCE_1__DISABLE_SC_PIPELINE_RESET_LEGACY_MODE_TRANSITION_MASK 0x00008000L
+#define PA_SC_ENHANCE_1__DISABLE_PACKER_ODC_ENHANCE_MASK 0x00010000L
+#define PA_SC_ENHANCE_1__ALLOW_SCALE_LINE_WIDTH_PAD_WITH_BINNING_MASK 0x00020000L
+#define PA_SC_ENHANCE_1__OPTIMAL_BIN_SELECTION_MASK 0x00040000L
+#define PA_SC_ENHANCE_1__DISABLE_FORCE_SOP_ALL_EVENTS_MASK 0x00080000L
+#define PA_SC_ENHANCE_1__DISABLE_PBB_CLK_OPTIMIZATION_MASK 0x00100000L
+#define PA_SC_ENHANCE_1__DISABLE_PBB_SCISSOR_CLK_OPTIMIZATION_MASK 0x00200000L
+#define PA_SC_ENHANCE_1__DISABLE_PBB_BINNING_CLK_OPTIMIZATION_MASK 0x00400000L
+#define PA_SC_ENHANCE_1__DISABLE_INTF_CG_MASK 0x00800000L
+#define PA_SC_ENHANCE_1__IOO_DISABLE_EOP_ON_FIRST_LIVE_PRIM_HIT_MASK 0x01000000L
+#define PA_SC_ENHANCE_1__DISABLE_SHADER_PROFILING_FOR_POWER_MASK 0x02000000L
+#define PA_SC_ENHANCE_1__FLUSH_ON_BINNING_TRANSITION_MASK 0x04000000L
+#define PA_SC_ENHANCE_1__DISABLE_QUAD_PROC_FDCE_ENHANCE_MASK 0x08000000L
+#define PA_SC_ENHANCE_1__DISABLE_SC_PS_PA_ARBITER_FIX_MASK 0x10000000L
+#define PA_SC_ENHANCE_1__DISABLE_SC_PS_PA_ARBITER_FIX_1_MASK 0x20000000L
+#define PA_SC_ENHANCE_1__PASS_VPZ_EVENT_TO_SPI_MASK 0x40000000L
+#define PA_SC_ENHANCE_1__RSVD_MASK 0x80000000L
+//PA_SC_DSM_CNTL
+#define PA_SC_DSM_CNTL__FORCE_EOV_REZ_0__SHIFT 0x0
+#define PA_SC_DSM_CNTL__FORCE_EOV_REZ_1__SHIFT 0x1
+#define PA_SC_DSM_CNTL__FORCE_EOV_REZ_0_MASK 0x00000001L
+#define PA_SC_DSM_CNTL__FORCE_EOV_REZ_1_MASK 0x00000002L
+//PA_SC_TILE_STEERING_CREST_OVERRIDE
+#define PA_SC_TILE_STEERING_CREST_OVERRIDE__ONE_RB_MODE_ENABLE__SHIFT 0x0
+#define PA_SC_TILE_STEERING_CREST_OVERRIDE__SE_SELECT__SHIFT 0x1
+#define PA_SC_TILE_STEERING_CREST_OVERRIDE__RB_SELECT__SHIFT 0x5
+#define PA_SC_TILE_STEERING_CREST_OVERRIDE__ONE_RB_MODE_ENABLE_MASK 0x00000001L
+#define PA_SC_TILE_STEERING_CREST_OVERRIDE__SE_SELECT_MASK 0x00000006L
+#define PA_SC_TILE_STEERING_CREST_OVERRIDE__RB_SELECT_MASK 0x00000060L
+
+
+// addressBlock: xcd0_gc_sqdec
+//SQ_CONFIG
+#define SQ_CONFIG__DISABLE_BARRIER_WAITCNT__SHIFT 0x0
+#define SQ_CONFIG__DISABLE_REPEATER_FGCG_CLOCK_GATING__SHIFT 0x1
+#define SQ_CONFIG__DISABLE_SPIPRIO_OVER_USERPRIO__SHIFT 0x2
+#define SQ_CONFIG__OVERRIDE_SP_MAI_ALU_BUSY__SHIFT 0x3
+#define SQ_CONFIG__DISABLE_RAM_CLOCK_GATING__SHIFT 0x4
+#define SQ_CONFIG__DISABLE_MAI_CO_EXEC__SHIFT 0x5
+#define SQ_CONFIG__OVERRIDE_MAI_ALU_BUSY__SHIFT 0x6
+#define SQ_CONFIG__OVERRIDE_ALU_BUSY__SHIFT 0x7
+#define SQ_CONFIG__DEBUG_EN__SHIFT 0x8
+#define SQ_CONFIG__DEBUG_SINGLE_MEMOP__SHIFT 0x9
+#define SQ_CONFIG__DEBUG_ONE_INST_CLAUSE__SHIFT 0xa
+#define SQ_CONFIG__OVERRIDE_LDS_IDX_BUSY__SHIFT 0xb
+#define SQ_CONFIG__EARLY_TA_DONE_DISABLE__SHIFT 0xc
+#define SQ_CONFIG__DUA_FLAT_LOCK_ENABLE__SHIFT 0xd
+#define SQ_CONFIG__DUA_LDS_BYPASS_DISABLE__SHIFT 0xe
+#define SQ_CONFIG__DUA_FLAT_LDS_PINGPONG_DISABLE__SHIFT 0xf
+#define SQ_CONFIG__DISABLE_VMEM_SOFT_CLAUSE__SHIFT 0x10
+#define SQ_CONFIG__DISABLE_SMEM_SOFT_CLAUSE__SHIFT 0x11
+#define SQ_CONFIG__ENABLE_HIPRIO_ON_EXP_RDY_VS__SHIFT 0x12
+#define SQ_CONFIG__PRIO_VAL_ON_EXP_RDY_VS__SHIFT 0x13
+#define SQ_CONFIG__REPLAY_SLEEP_CNT__SHIFT 0x15
+#define SQ_CONFIG__DISABLE_SP_VGPR_WRITE_SKIP__SHIFT 0x1c
+#define SQ_CONFIG__DISABLE_SP_REDUNDANT_THREAD_GATING__SHIFT 0x1d
+#define SQ_CONFIG__DISABLE_FLAT_SOFT_CLAUSE__SHIFT 0x1e
+#define SQ_CONFIG__DISABLE_MIMG_SOFT_CLAUSE__SHIFT 0x1f
+#define SQ_CONFIG__DISABLE_BARRIER_WAITCNT_MASK 0x00000001L
+#define SQ_CONFIG__DISABLE_REPEATER_FGCG_CLOCK_GATING_MASK 0x00000002L
+#define SQ_CONFIG__DISABLE_SPIPRIO_OVER_USERPRIO_MASK 0x00000004L
+#define SQ_CONFIG__OVERRIDE_SP_MAI_ALU_BUSY_MASK 0x00000008L
+#define SQ_CONFIG__DISABLE_RAM_CLOCK_GATING_MASK 0x00000010L
+#define SQ_CONFIG__DISABLE_MAI_CO_EXEC_MASK 0x00000020L
+#define SQ_CONFIG__OVERRIDE_MAI_ALU_BUSY_MASK 0x00000040L
+#define SQ_CONFIG__OVERRIDE_ALU_BUSY_MASK 0x00000080L
+#define SQ_CONFIG__DEBUG_EN_MASK 0x00000100L
+#define SQ_CONFIG__DEBUG_SINGLE_MEMOP_MASK 0x00000200L
+#define SQ_CONFIG__DEBUG_ONE_INST_CLAUSE_MASK 0x00000400L
+#define SQ_CONFIG__OVERRIDE_LDS_IDX_BUSY_MASK 0x00000800L
+#define SQ_CONFIG__EARLY_TA_DONE_DISABLE_MASK 0x00001000L
+#define SQ_CONFIG__DUA_FLAT_LOCK_ENABLE_MASK 0x00002000L
+#define SQ_CONFIG__DUA_LDS_BYPASS_DISABLE_MASK 0x00004000L
+#define SQ_CONFIG__DUA_FLAT_LDS_PINGPONG_DISABLE_MASK 0x00008000L
+#define SQ_CONFIG__DISABLE_VMEM_SOFT_CLAUSE_MASK 0x00010000L
+#define SQ_CONFIG__DISABLE_SMEM_SOFT_CLAUSE_MASK 0x00020000L
+#define SQ_CONFIG__ENABLE_HIPRIO_ON_EXP_RDY_VS_MASK 0x00040000L
+#define SQ_CONFIG__PRIO_VAL_ON_EXP_RDY_VS_MASK 0x00180000L
+#define SQ_CONFIG__REPLAY_SLEEP_CNT_MASK 0x0FE00000L
+#define SQ_CONFIG__DISABLE_SP_VGPR_WRITE_SKIP_MASK 0x10000000L
+#define SQ_CONFIG__DISABLE_SP_REDUNDANT_THREAD_GATING_MASK 0x20000000L
+#define SQ_CONFIG__DISABLE_FLAT_SOFT_CLAUSE_MASK 0x40000000L
+#define SQ_CONFIG__DISABLE_MIMG_SOFT_CLAUSE_MASK 0x80000000L
+//SQC_CONFIG
+#define SQC_CONFIG__INST_CACHE_SIZE__SHIFT 0x0
+#define SQC_CONFIG__DATA_CACHE_SIZE__SHIFT 0x2
+#define SQC_CONFIG__MISS_FIFO_DEPTH__SHIFT 0x4
+#define SQC_CONFIG__HIT_FIFO_DEPTH__SHIFT 0x6
+#define SQC_CONFIG__FORCE_ALWAYS_MISS__SHIFT 0x7
+#define SQC_CONFIG__FORCE_IN_ORDER__SHIFT 0x8
+#define SQC_CONFIG__IDENTITY_HASH_BANK__SHIFT 0x9
+#define SQC_CONFIG__IDENTITY_HASH_SET__SHIFT 0xa
+#define SQC_CONFIG__PER_VMID_INV_DISABLE__SHIFT 0xb
+#define SQC_CONFIG__EVICT_LRU__SHIFT 0xc
+#define SQC_CONFIG__FORCE_2_BANK__SHIFT 0xe
+#define SQC_CONFIG__FORCE_1_BANK__SHIFT 0xf
+#define SQC_CONFIG__LS_DISABLE_CLOCKS__SHIFT 0x10
+#define SQC_CONFIG__INST_PRF_COUNT__SHIFT 0x18
+#define SQC_CONFIG__INST_PRF_FILTER_DIS__SHIFT 0x1d
+#define SQC_CONFIG__DISABLE_PREFETCH_CROSS_4K_BOUNDARY_CHECK__SHIFT 0x1e
+#define SQC_CONFIG__MEM_LS_DISABLE__SHIFT 0x1f
+#define SQC_CONFIG__INST_CACHE_SIZE_MASK 0x00000003L
+#define SQC_CONFIG__DATA_CACHE_SIZE_MASK 0x0000000CL
+#define SQC_CONFIG__MISS_FIFO_DEPTH_MASK 0x00000030L
+#define SQC_CONFIG__HIT_FIFO_DEPTH_MASK 0x00000040L
+#define SQC_CONFIG__FORCE_ALWAYS_MISS_MASK 0x00000080L
+#define SQC_CONFIG__FORCE_IN_ORDER_MASK 0x00000100L
+#define SQC_CONFIG__IDENTITY_HASH_BANK_MASK 0x00000200L
+#define SQC_CONFIG__IDENTITY_HASH_SET_MASK 0x00000400L
+#define SQC_CONFIG__PER_VMID_INV_DISABLE_MASK 0x00000800L
+#define SQC_CONFIG__EVICT_LRU_MASK 0x00003000L
+#define SQC_CONFIG__FORCE_2_BANK_MASK 0x00004000L
+#define SQC_CONFIG__FORCE_1_BANK_MASK 0x00008000L
+#define SQC_CONFIG__LS_DISABLE_CLOCKS_MASK 0x00FF0000L
+#define SQC_CONFIG__INST_PRF_COUNT_MASK 0x1F000000L
+#define SQC_CONFIG__INST_PRF_FILTER_DIS_MASK 0x20000000L
+#define SQC_CONFIG__DISABLE_PREFETCH_CROSS_4K_BOUNDARY_CHECK_MASK 0x40000000L
+#define SQC_CONFIG__MEM_LS_DISABLE_MASK 0x80000000L
+//LDS_CONFIG
+#define LDS_CONFIG__ADDR_OUT_OF_RANGE_REPORTING__SHIFT 0x0
+#define LDS_CONFIG__TMZ_VIOLATION_REPORTING__SHIFT 0x1
+#define LDS_CONFIG__DISABLE_RAM_CLOCK_GATING__SHIFT 0x2
+#define LDS_CONFIG__DISABLE_IDXCLK_MGCG__SHIFT 0x3
+#define LDS_CONFIG__DISABLE_MEMCLK_MGCG__SHIFT 0x4
+#define LDS_CONFIG__DISABLE_ATTRCLK_MGCG__SHIFT 0x5
+#define LDS_CONFIG__DISABLE_ATODFPCLK_MGCG__SHIFT 0x6
+#define LDS_CONFIG__DISABLE_PHASE_FGCG__SHIFT 0x7
+#define LDS_CONFIG__DISABLE_LDS_SP_READ_FGCG__SHIFT 0x8
+#define LDS_CONFIG__DISABLE_SP_DATA_CLOCK_GATING__SHIFT 0x9
+#define LDS_CONFIG__DISABLE_TD_DATA_CLOCK_GATING__SHIFT 0xa
+#define LDS_CONFIG__ADDR_OUT_OF_RANGE_REPORTING_MASK 0x00000001L
+#define LDS_CONFIG__TMZ_VIOLATION_REPORTING_MASK 0x00000002L
+#define LDS_CONFIG__DISABLE_RAM_CLOCK_GATING_MASK 0x00000004L
+#define LDS_CONFIG__DISABLE_IDXCLK_MGCG_MASK 0x00000008L
+#define LDS_CONFIG__DISABLE_MEMCLK_MGCG_MASK 0x00000010L
+#define LDS_CONFIG__DISABLE_ATTRCLK_MGCG_MASK 0x00000020L
+#define LDS_CONFIG__DISABLE_ATODFPCLK_MGCG_MASK 0x00000040L
+#define LDS_CONFIG__DISABLE_PHASE_FGCG_MASK 0x00000080L
+#define LDS_CONFIG__DISABLE_LDS_SP_READ_FGCG_MASK 0x00000100L
+#define LDS_CONFIG__DISABLE_SP_DATA_CLOCK_GATING_MASK 0x00000200L
+#define LDS_CONFIG__DISABLE_TD_DATA_CLOCK_GATING_MASK 0x00000400L
+//SQ_RANDOM_WAVE_PRI
+#define SQ_RANDOM_WAVE_PRI__RET__SHIFT 0x0
+#define SQ_RANDOM_WAVE_PRI__RUI__SHIFT 0x7
+#define SQ_RANDOM_WAVE_PRI__RNG__SHIFT 0xa
+#define SQ_RANDOM_WAVE_PRI__RET_MASK 0x0000007FL
+#define SQ_RANDOM_WAVE_PRI__RUI_MASK 0x00000380L
+#define SQ_RANDOM_WAVE_PRI__RNG_MASK 0x007FFC00L
+//SQ_REG_CREDITS
+#define SQ_REG_CREDITS__SRBM_CREDITS__SHIFT 0x0
+#define SQ_REG_CREDITS__CMD_CREDITS__SHIFT 0x8
+#define SQ_REG_CREDITS__REG_BUSY__SHIFT 0x1c
+#define SQ_REG_CREDITS__SRBM_OVERFLOW__SHIFT 0x1d
+#define SQ_REG_CREDITS__IMMED_OVERFLOW__SHIFT 0x1e
+#define SQ_REG_CREDITS__CMD_OVERFLOW__SHIFT 0x1f
+#define SQ_REG_CREDITS__SRBM_CREDITS_MASK 0x0000003FL
+#define SQ_REG_CREDITS__CMD_CREDITS_MASK 0x00000F00L
+#define SQ_REG_CREDITS__REG_BUSY_MASK 0x10000000L
+#define SQ_REG_CREDITS__SRBM_OVERFLOW_MASK 0x20000000L
+#define SQ_REG_CREDITS__IMMED_OVERFLOW_MASK 0x40000000L
+#define SQ_REG_CREDITS__CMD_OVERFLOW_MASK 0x80000000L
+//SQ_FIFO_SIZES
+#define SQ_FIFO_SIZES__INTERRUPT_FIFO_SIZE__SHIFT 0x0
+#define SQ_FIFO_SIZES__TTRACE_FIFO_SIZE__SHIFT 0x8
+#define SQ_FIFO_SIZES__EXPORT_BUF_SIZE__SHIFT 0x10
+#define SQ_FIFO_SIZES__VMEM_DATA_FIFO_SIZE__SHIFT 0x12
+#define SQ_FIFO_SIZES__INTERRUPT_FIFO_SIZE_MASK 0x0000000FL
+#define SQ_FIFO_SIZES__TTRACE_FIFO_SIZE_MASK 0x00000F00L
+#define SQ_FIFO_SIZES__EXPORT_BUF_SIZE_MASK 0x00030000L
+#define SQ_FIFO_SIZES__VMEM_DATA_FIFO_SIZE_MASK 0x000C0000L
+//SQ_DSM_CNTL
+#define SQ_DSM_CNTL__WAVEFRONT_STALL_0__SHIFT 0x0
+#define SQ_DSM_CNTL__WAVEFRONT_STALL_1__SHIFT 0x1
+#define SQ_DSM_CNTL__SPI_BACKPRESSURE_0__SHIFT 0x2
+#define SQ_DSM_CNTL__SPI_BACKPRESSURE_1__SHIFT 0x3
+#define SQ_DSM_CNTL__SEL_DSM_SGPR_IRRITATOR_DATA0__SHIFT 0x8
+#define SQ_DSM_CNTL__SEL_DSM_SGPR_IRRITATOR_DATA1__SHIFT 0x9
+#define SQ_DSM_CNTL__SGPR_ENABLE_SINGLE_WRITE__SHIFT 0xa
+#define SQ_DSM_CNTL__SEL_DSM_LDS_IRRITATOR_DATA0__SHIFT 0x10
+#define SQ_DSM_CNTL__SEL_DSM_LDS_IRRITATOR_DATA1__SHIFT 0x11
+#define SQ_DSM_CNTL__LDS_ENABLE_SINGLE_WRITE01__SHIFT 0x12
+#define SQ_DSM_CNTL__SEL_DSM_LDS_IRRITATOR_DATA2__SHIFT 0x13
+#define SQ_DSM_CNTL__SEL_DSM_LDS_IRRITATOR_DATA3__SHIFT 0x14
+#define SQ_DSM_CNTL__LDS_ENABLE_SINGLE_WRITE23__SHIFT 0x15
+#define SQ_DSM_CNTL__SEL_DSM_SP_IRRITATOR_DATA0__SHIFT 0x18
+#define SQ_DSM_CNTL__SEL_DSM_SP_IRRITATOR_DATA1__SHIFT 0x19
+#define SQ_DSM_CNTL__SP_ENABLE_SINGLE_WRITE__SHIFT 0x1a
+#define SQ_DSM_CNTL__WAVEFRONT_STALL_0_MASK 0x00000001L
+#define SQ_DSM_CNTL__WAVEFRONT_STALL_1_MASK 0x00000002L
+#define SQ_DSM_CNTL__SPI_BACKPRESSURE_0_MASK 0x00000004L
+#define SQ_DSM_CNTL__SPI_BACKPRESSURE_1_MASK 0x00000008L
+#define SQ_DSM_CNTL__SEL_DSM_SGPR_IRRITATOR_DATA0_MASK 0x00000100L
+#define SQ_DSM_CNTL__SEL_DSM_SGPR_IRRITATOR_DATA1_MASK 0x00000200L
+#define SQ_DSM_CNTL__SGPR_ENABLE_SINGLE_WRITE_MASK 0x00000400L
+#define SQ_DSM_CNTL__SEL_DSM_LDS_IRRITATOR_DATA0_MASK 0x00010000L
+#define SQ_DSM_CNTL__SEL_DSM_LDS_IRRITATOR_DATA1_MASK 0x00020000L
+#define SQ_DSM_CNTL__LDS_ENABLE_SINGLE_WRITE01_MASK 0x00040000L
+#define SQ_DSM_CNTL__SEL_DSM_LDS_IRRITATOR_DATA2_MASK 0x00080000L
+#define SQ_DSM_CNTL__SEL_DSM_LDS_IRRITATOR_DATA3_MASK 0x00100000L
+#define SQ_DSM_CNTL__LDS_ENABLE_SINGLE_WRITE23_MASK 0x00200000L
+#define SQ_DSM_CNTL__SEL_DSM_SP_IRRITATOR_DATA0_MASK 0x01000000L
+#define SQ_DSM_CNTL__SEL_DSM_SP_IRRITATOR_DATA1_MASK 0x02000000L
+#define SQ_DSM_CNTL__SP_ENABLE_SINGLE_WRITE_MASK 0x04000000L
+//SQ_DSM_CNTL2
+#define SQ_DSM_CNTL2__SGPR_ENABLE_ERROR_INJECT__SHIFT 0x0
+#define SQ_DSM_CNTL2__SGPR_SELECT_INJECT_DELAY__SHIFT 0x2
+#define SQ_DSM_CNTL2__LDS_D_ENABLE_ERROR_INJECT__SHIFT 0x3
+#define SQ_DSM_CNTL2__LDS_D_SELECT_INJECT_DELAY__SHIFT 0x5
+#define SQ_DSM_CNTL2__LDS_I_ENABLE_ERROR_INJECT__SHIFT 0x6
+#define SQ_DSM_CNTL2__LDS_I_SELECT_INJECT_DELAY__SHIFT 0x8
+#define SQ_DSM_CNTL2__SP_ENABLE_ERROR_INJECT__SHIFT 0x9
+#define SQ_DSM_CNTL2__SP_SELECT_INJECT_DELAY__SHIFT 0xb
+#define SQ_DSM_CNTL2__LDS_INJECT_DELAY__SHIFT 0xe
+#define SQ_DSM_CNTL2__SP_INJECT_DELAY__SHIFT 0x14
+#define SQ_DSM_CNTL2__SQ_INJECT_DELAY__SHIFT 0x1a
+#define SQ_DSM_CNTL2__SGPR_ENABLE_ERROR_INJECT_MASK 0x00000003L
+#define SQ_DSM_CNTL2__SGPR_SELECT_INJECT_DELAY_MASK 0x00000004L
+#define SQ_DSM_CNTL2__LDS_D_ENABLE_ERROR_INJECT_MASK 0x00000018L
+#define SQ_DSM_CNTL2__LDS_D_SELECT_INJECT_DELAY_MASK 0x00000020L
+#define SQ_DSM_CNTL2__LDS_I_ENABLE_ERROR_INJECT_MASK 0x000000C0L
+#define SQ_DSM_CNTL2__LDS_I_SELECT_INJECT_DELAY_MASK 0x00000100L
+#define SQ_DSM_CNTL2__SP_ENABLE_ERROR_INJECT_MASK 0x00000600L
+#define SQ_DSM_CNTL2__SP_SELECT_INJECT_DELAY_MASK 0x00000800L
+#define SQ_DSM_CNTL2__LDS_INJECT_DELAY_MASK 0x000FC000L
+#define SQ_DSM_CNTL2__SP_INJECT_DELAY_MASK 0x03F00000L
+#define SQ_DSM_CNTL2__SQ_INJECT_DELAY_MASK 0xFC000000L
+//SQ_RUNTIME_CONFIG
+#define SQ_RUNTIME_CONFIG__ENABLE_TEX_ARB_OLDEST__SHIFT 0x0
+#define SQ_RUNTIME_CONFIG__ENABLE_TEX_ARB_OLDEST_MASK 0x00000001L
+//SQ_DEBUG_STS_GLOBAL
+#define SQ_DEBUG_STS_GLOBAL__BUSY__SHIFT 0x0
+#define SQ_DEBUG_STS_GLOBAL__INTERRUPT_MSG_BUSY__SHIFT 0x1
+#define SQ_DEBUG_STS_GLOBAL__WAVE_LEVEL_SH0__SHIFT 0x4
+#define SQ_DEBUG_STS_GLOBAL__WAVE_LEVEL_SH1__SHIFT 0x10
+#define SQ_DEBUG_STS_GLOBAL__BUSY_MASK 0x00000001L
+#define SQ_DEBUG_STS_GLOBAL__INTERRUPT_MSG_BUSY_MASK 0x00000002L
+#define SQ_DEBUG_STS_GLOBAL__WAVE_LEVEL_SH0_MASK 0x0000FFF0L
+#define SQ_DEBUG_STS_GLOBAL__WAVE_LEVEL_SH1_MASK 0x0FFF0000L
+//SH_MEM_BASES
+#define SH_MEM_BASES__PRIVATE_BASE__SHIFT 0x0
+#define SH_MEM_BASES__SHARED_BASE__SHIFT 0x10
+#define SH_MEM_BASES__PRIVATE_BASE_MASK 0x0000FFFFL
+#define SH_MEM_BASES__SHARED_BASE_MASK 0xFFFF0000L
+//SQ_TIMEOUT_CONFIG
+#define SQ_TIMEOUT_CONFIG__PERIOD_SEL__SHIFT 0x0
+#define SQ_TIMEOUT_CONFIG__TIMEOUT_FATAL_DISABLE__SHIFT 0x6
+#define SQ_TIMEOUT_CONFIG__TIMER_LONGER_SEL__SHIFT 0x7
+#define SQ_TIMEOUT_CONFIG__TIMEOUT_CONDITIONS_MASK__SHIFT 0x8
+#define SQ_TIMEOUT_CONFIG__PERIOD_SEL_MASK 0x0000003FL
+#define SQ_TIMEOUT_CONFIG__TIMEOUT_FATAL_DISABLE_MASK 0x00000040L
+#define SQ_TIMEOUT_CONFIG__TIMER_LONGER_SEL_MASK 0x00000080L
+#define SQ_TIMEOUT_CONFIG__TIMEOUT_CONDITIONS_MASK_MASK 0x07FFFF00L
+//SQ_TIMEOUT_STATUS
+#define SQ_TIMEOUT_STATUS__WAVE_TIMEOUT__SHIFT 0x0
+#define SQ_TIMEOUT_STATUS__WAVE_TIMEOUT_MASK 0xFFFFFFFFL
+//SH_MEM_CONFIG
+#define SH_MEM_CONFIG__ADDRESS_MODE__SHIFT 0x0
+#define SH_MEM_CONFIG__ALIGNMENT_MODE__SHIFT 0x3
+#define SH_MEM_CONFIG__F8_MODE__SHIFT 0x8
+#define SH_MEM_CONFIG__RETRY_DISABLE__SHIFT 0xc
+#define SH_MEM_CONFIG__PRIVATE_NV__SHIFT 0xd
+#define SH_MEM_CONFIG__ADDRESS_MODE_MASK 0x00000001L
+#define SH_MEM_CONFIG__ALIGNMENT_MODE_MASK 0x00000018L
+#define SH_MEM_CONFIG__F8_MODE_MASK 0x00000100L
+#define SH_MEM_CONFIG__RETRY_DISABLE_MASK 0x00001000L
+#define SH_MEM_CONFIG__PRIVATE_NV_MASK 0x00002000L
+//SP_MFMA_PORTD_RD_CONFIG
+#define SP_MFMA_PORTD_RD_CONFIG__SET__SHIFT 0x0
+#define SP_MFMA_PORTD_RD_CONFIG__TYPE__SHIFT 0x1
+#define SP_MFMA_PORTD_RD_CONFIG__LAST_PASS__SHIFT 0x4
+#define SP_MFMA_PORTD_RD_CONFIG__PORTD_PATTERN__SHIFT 0x9
+#define SP_MFMA_PORTD_RD_CONFIG__SET_MASK 0x00000001L
+#define SP_MFMA_PORTD_RD_CONFIG__TYPE_MASK 0x0000000EL
+#define SP_MFMA_PORTD_RD_CONFIG__LAST_PASS_MASK 0x000001F0L
+#define SP_MFMA_PORTD_RD_CONFIG__PORTD_PATTERN_MASK 0x1FFFFE00L
+//SH_CAC_CONFIG
+#define SH_CAC_CONFIG__SQG_UTCL1_REPEATER_FGCG_DISABLE__SHIFT 0x0
+#define SH_CAC_CONFIG__SQC_UTCL1_REPEATER_FGCG_DISABLE__SHIFT 0x1
+#define SH_CAC_CONFIG__SPI_SQ_CMD_REPEATER_FGCG_DISABLE__SHIFT 0x2
+#define SH_CAC_CONFIG__SQ_MSG_REPEATER_FGCG_DISABLE__SHIFT 0x3
+#define SH_CAC_CONFIG__SQC_TC_REPEATER_FGCG_DISABLE__SHIFT 0x4
+#define SH_CAC_CONFIG__SQC_SQ_REPEATER_FGCG_DISABLE__SHIFT 0x5
+#define SH_CAC_CONFIG__SQG_TC_REPEATER_FGCG_DISABLE__SHIFT 0x6
+#define SH_CAC_CONFIG__SQC_DISABLE_RAM_CLOCK_GATING__SHIFT 0x8
+#define SH_CAC_CONFIG__SQG_DISABLE_RAM_CLOCK_GATING__SHIFT 0x9
+#define SH_CAC_CONFIG__SQC_MGCG_CLOCK_OFF_DELAY_CNT__SHIFT 0x10
+#define SH_CAC_CONFIG__SQC_MGCG_DISABLE__SHIFT 0x14
+#define SH_CAC_CONFIG__SQC_TC_REQ_CLKEN_CHICKENBIT__SHIFT 0x1c
+#define SH_CAC_CONFIG__SQC_ICACHE_CTRL_MGCG_DISABLE__SHIFT 0x1d
+#define SH_CAC_CONFIG__SQC_DCACHE_CTRL_MGCG_DISABLE__SHIFT 0x1e
+#define SH_CAC_CONFIG__SQC_DISABLE_UTCL1_FGCG_PADDR__SHIFT 0x1f
+#define SH_CAC_CONFIG__SQG_UTCL1_REPEATER_FGCG_DISABLE_MASK 0x00000001L
+#define SH_CAC_CONFIG__SQC_UTCL1_REPEATER_FGCG_DISABLE_MASK 0x00000002L
+#define SH_CAC_CONFIG__SPI_SQ_CMD_REPEATER_FGCG_DISABLE_MASK 0x00000004L
+#define SH_CAC_CONFIG__SQ_MSG_REPEATER_FGCG_DISABLE_MASK 0x00000008L
+#define SH_CAC_CONFIG__SQC_TC_REPEATER_FGCG_DISABLE_MASK 0x00000010L
+#define SH_CAC_CONFIG__SQC_SQ_REPEATER_FGCG_DISABLE_MASK 0x00000020L
+#define SH_CAC_CONFIG__SQG_TC_REPEATER_FGCG_DISABLE_MASK 0x00000040L
+#define SH_CAC_CONFIG__SQC_DISABLE_RAM_CLOCK_GATING_MASK 0x00000100L
+#define SH_CAC_CONFIG__SQG_DISABLE_RAM_CLOCK_GATING_MASK 0x00000200L
+#define SH_CAC_CONFIG__SQC_MGCG_CLOCK_OFF_DELAY_CNT_MASK 0x000F0000L
+#define SH_CAC_CONFIG__SQC_MGCG_DISABLE_MASK 0x0FF00000L
+#define SH_CAC_CONFIG__SQC_TC_REQ_CLKEN_CHICKENBIT_MASK 0x10000000L
+#define SH_CAC_CONFIG__SQC_ICACHE_CTRL_MGCG_DISABLE_MASK 0x20000000L
+#define SH_CAC_CONFIG__SQC_DCACHE_CTRL_MGCG_DISABLE_MASK 0x40000000L
+#define SH_CAC_CONFIG__SQC_DISABLE_UTCL1_FGCG_PADDR_MASK 0x80000000L
+//SQ_DEBUG_STS_GLOBAL2
+#define SQ_DEBUG_STS_GLOBAL2__FIFO_LEVEL_GFX0__SHIFT 0x0
+#define SQ_DEBUG_STS_GLOBAL2__FIFO_LEVEL_GFX1__SHIFT 0x8
+#define SQ_DEBUG_STS_GLOBAL2__FIFO_LEVEL_IMMED__SHIFT 0x10
+#define SQ_DEBUG_STS_GLOBAL2__FIFO_LEVEL_HOST__SHIFT 0x18
+#define SQ_DEBUG_STS_GLOBAL2__FIFO_LEVEL_GFX0_MASK 0x000000FFL
+#define SQ_DEBUG_STS_GLOBAL2__FIFO_LEVEL_GFX1_MASK 0x0000FF00L
+#define SQ_DEBUG_STS_GLOBAL2__FIFO_LEVEL_IMMED_MASK 0x00FF0000L
+#define SQ_DEBUG_STS_GLOBAL2__FIFO_LEVEL_HOST_MASK 0xFF000000L
+//SQ_DEBUG_STS_GLOBAL3
+#define SQ_DEBUG_STS_GLOBAL3__FIFO_LEVEL_HOST_CMD__SHIFT 0x0
+#define SQ_DEBUG_STS_GLOBAL3__FIFO_LEVEL_HOST_REG__SHIFT 0x4
+#define SQ_DEBUG_STS_GLOBAL3__FIFO_LEVEL_HOST_CMD_MASK 0x0000000FL
+#define SQ_DEBUG_STS_GLOBAL3__FIFO_LEVEL_HOST_REG_MASK 0x000003F0L
+//CC_GC_SHADER_RATE_CONFIG
+#define CC_GC_SHADER_RATE_CONFIG__WRITE_DIS__SHIFT 0x0
+#define CC_GC_SHADER_RATE_CONFIG__DPFP_RATE__SHIFT 0x1
+#define CC_GC_SHADER_RATE_CONFIG__SQC_BALANCE_DISABLE__SHIFT 0x3
+#define CC_GC_SHADER_RATE_CONFIG__HALF_LDS__SHIFT 0x4
+#define CC_GC_SHADER_RATE_CONFIG__WRITE_DIS_MASK 0x00000001L
+#define CC_GC_SHADER_RATE_CONFIG__DPFP_RATE_MASK 0x00000006L
+#define CC_GC_SHADER_RATE_CONFIG__SQC_BALANCE_DISABLE_MASK 0x00000008L
+#define CC_GC_SHADER_RATE_CONFIG__HALF_LDS_MASK 0x00000010L
+//GC_USER_SHADER_RATE_CONFIG
+#define GC_USER_SHADER_RATE_CONFIG__DPFP_RATE__SHIFT 0x1
+#define GC_USER_SHADER_RATE_CONFIG__SQC_BALANCE_DISABLE__SHIFT 0x3
+#define GC_USER_SHADER_RATE_CONFIG__HALF_LDS__SHIFT 0x4
+#define GC_USER_SHADER_RATE_CONFIG__DPFP_RATE_MASK 0x00000006L
+#define GC_USER_SHADER_RATE_CONFIG__SQC_BALANCE_DISABLE_MASK 0x00000008L
+#define GC_USER_SHADER_RATE_CONFIG__HALF_LDS_MASK 0x00000010L
+//SQ_INTERRUPT_AUTO_MASK
+#define SQ_INTERRUPT_AUTO_MASK__MASK__SHIFT 0x0
+#define SQ_INTERRUPT_AUTO_MASK__MASK_MASK 0x00FFFFFFL
+//SQ_INTERRUPT_MSG_CTRL
+#define SQ_INTERRUPT_MSG_CTRL__STALL__SHIFT 0x0
+#define SQ_INTERRUPT_MSG_CTRL__STALL_MASK 0x00000001L
+//SQ_DEBUG_PERFCOUNT_TRAP
+#define SQ_DEBUG_PERFCOUNT_TRAP__ENABLE__SHIFT 0x0
+#define SQ_DEBUG_PERFCOUNT_TRAP__COUNTER__SHIFT 0x1
+#define SQ_DEBUG_PERFCOUNT_TRAP__LIMIT__SHIFT 0x4
+#define SQ_DEBUG_PERFCOUNT_TRAP__ENABLE_MASK 0x00000001L
+#define SQ_DEBUG_PERFCOUNT_TRAP__COUNTER_MASK 0x0000000EL
+#define SQ_DEBUG_PERFCOUNT_TRAP__LIMIT_MASK 0x0FFFFFF0L
+//SQ_UTCL1_CNTL1
+#define SQ_UTCL1_CNTL1__FORCE_4K_L2_RESP__SHIFT 0x0
+#define SQ_UTCL1_CNTL1__GPUVM_64K_DEF__SHIFT 0x1
+#define SQ_UTCL1_CNTL1__GPUVM_PERM_MODE__SHIFT 0x2
+#define SQ_UTCL1_CNTL1__RESP_MODE__SHIFT 0x3
+#define SQ_UTCL1_CNTL1__RESP_FAULT_MODE__SHIFT 0x5
+#define SQ_UTCL1_CNTL1__CLIENTID__SHIFT 0x7
+#define SQ_UTCL1_CNTL1__USERVM_DIS__SHIFT 0x10
+#define SQ_UTCL1_CNTL1__ENABLE_PUSH_LFIFO__SHIFT 0x11
+#define SQ_UTCL1_CNTL1__ENABLE_LFIFO_PRI_ARB__SHIFT 0x12
+#define SQ_UTCL1_CNTL1__REG_INVALIDATE_VMID__SHIFT 0x13
+#define SQ_UTCL1_CNTL1__REG_INVALIDATE_ALL_VMID__SHIFT 0x17
+#define SQ_UTCL1_CNTL1__REG_INVALIDATE_TOGGLE__SHIFT 0x18
+#define SQ_UTCL1_CNTL1__REG_INVALIDATE_ALL__SHIFT 0x19
+#define SQ_UTCL1_CNTL1__FORCE_MISS__SHIFT 0x1a
+#define SQ_UTCL1_CNTL1__FORCE_IN_ORDER__SHIFT 0x1b
+#define SQ_UTCL1_CNTL1__REDUCE_FIFO_DEPTH_BY_2__SHIFT 0x1c
+#define SQ_UTCL1_CNTL1__REDUCE_CACHE_SIZE_BY_2__SHIFT 0x1e
+#define SQ_UTCL1_CNTL1__FORCE_4K_L2_RESP_MASK 0x00000001L
+#define SQ_UTCL1_CNTL1__GPUVM_64K_DEF_MASK 0x00000002L
+#define SQ_UTCL1_CNTL1__GPUVM_PERM_MODE_MASK 0x00000004L
+#define SQ_UTCL1_CNTL1__RESP_MODE_MASK 0x00000018L
+#define SQ_UTCL1_CNTL1__RESP_FAULT_MODE_MASK 0x00000060L
+#define SQ_UTCL1_CNTL1__CLIENTID_MASK 0x0000FF80L
+#define SQ_UTCL1_CNTL1__USERVM_DIS_MASK 0x00010000L
+#define SQ_UTCL1_CNTL1__ENABLE_PUSH_LFIFO_MASK 0x00020000L
+#define SQ_UTCL1_CNTL1__ENABLE_LFIFO_PRI_ARB_MASK 0x00040000L
+#define SQ_UTCL1_CNTL1__REG_INVALIDATE_VMID_MASK 0x00780000L
+#define SQ_UTCL1_CNTL1__REG_INVALIDATE_ALL_VMID_MASK 0x00800000L
+#define SQ_UTCL1_CNTL1__REG_INVALIDATE_TOGGLE_MASK 0x01000000L
+#define SQ_UTCL1_CNTL1__REG_INVALIDATE_ALL_MASK 0x02000000L
+#define SQ_UTCL1_CNTL1__FORCE_MISS_MASK 0x04000000L
+#define SQ_UTCL1_CNTL1__FORCE_IN_ORDER_MASK 0x08000000L
+#define SQ_UTCL1_CNTL1__REDUCE_FIFO_DEPTH_BY_2_MASK 0x30000000L
+#define SQ_UTCL1_CNTL1__REDUCE_CACHE_SIZE_BY_2_MASK 0xC0000000L
+//SQ_UTCL1_CNTL2
+#define SQ_UTCL1_CNTL2__SPARE__SHIFT 0x0
+#define SQ_UTCL1_CNTL2__LFIFO_SCAN_DISABLE__SHIFT 0x8
+#define SQ_UTCL1_CNTL2__MTYPE_OVRD_DIS__SHIFT 0x9
+#define SQ_UTCL1_CNTL2__LINE_VALID__SHIFT 0xa
+#define SQ_UTCL1_CNTL2__DIS_EDC__SHIFT 0xb
+#define SQ_UTCL1_CNTL2__GPUVM_INV_MODE__SHIFT 0xc
+#define SQ_UTCL1_CNTL2__SHOOTDOWN_OPT__SHIFT 0xd
+#define SQ_UTCL1_CNTL2__FORCE_SNOOP__SHIFT 0xe
+#define SQ_UTCL1_CNTL2__FORCE_GPUVM_INV_ACK__SHIFT 0xf
+#define SQ_UTCL1_CNTL2__RETRY_TIMER__SHIFT 0x10
+#define SQ_UTCL1_CNTL2__FORCE_FRAG_2M_TO_64K__SHIFT 0x1a
+#define SQ_UTCL1_CNTL2__PREFETCH_PAGE__SHIFT 0x1c
+#define SQ_UTCL1_CNTL2__SPARE_MASK 0x000000FFL
+#define SQ_UTCL1_CNTL2__LFIFO_SCAN_DISABLE_MASK 0x00000100L
+#define SQ_UTCL1_CNTL2__MTYPE_OVRD_DIS_MASK 0x00000200L
+#define SQ_UTCL1_CNTL2__LINE_VALID_MASK 0x00000400L
+#define SQ_UTCL1_CNTL2__DIS_EDC_MASK 0x00000800L
+#define SQ_UTCL1_CNTL2__GPUVM_INV_MODE_MASK 0x00001000L
+#define SQ_UTCL1_CNTL2__SHOOTDOWN_OPT_MASK 0x00002000L
+#define SQ_UTCL1_CNTL2__FORCE_SNOOP_MASK 0x00004000L
+#define SQ_UTCL1_CNTL2__FORCE_GPUVM_INV_ACK_MASK 0x00008000L
+#define SQ_UTCL1_CNTL2__RETRY_TIMER_MASK 0x007F0000L
+#define SQ_UTCL1_CNTL2__FORCE_FRAG_2M_TO_64K_MASK 0x04000000L
+#define SQ_UTCL1_CNTL2__PREFETCH_PAGE_MASK 0xF0000000L
+//SQ_UTCL1_STATUS
+#define SQ_UTCL1_STATUS__FAULT_DETECTED__SHIFT 0x0
+#define SQ_UTCL1_STATUS__RETRY_DETECTED__SHIFT 0x1
+#define SQ_UTCL1_STATUS__PRT_DETECTED__SHIFT 0x2
+#define SQ_UTCL1_STATUS__RESERVED__SHIFT 0x3
+#define SQ_UTCL1_STATUS__UNUSED__SHIFT 0x10
+#define SQ_UTCL1_STATUS__FAULT_DETECTED_MASK 0x00000001L
+#define SQ_UTCL1_STATUS__RETRY_DETECTED_MASK 0x00000002L
+#define SQ_UTCL1_STATUS__PRT_DETECTED_MASK 0x00000004L
+#define SQ_UTCL1_STATUS__RESERVED_MASK 0x0000FFF8L
+#define SQ_UTCL1_STATUS__UNUSED_MASK 0xFFFF0000L
+//SQ_FED_INTERRUPT_STATUS
+#define SQ_FED_INTERRUPT_STATUS__INTERRUPT_STATUS__SHIFT 0x0
+#define SQ_FED_INTERRUPT_STATUS__INTERRUPT_SIMD_ID__SHIFT 0x2
+#define SQ_FED_INTERRUPT_STATUS__INTERRUPT_WAVE_ID__SHIFT 0x4
+#define SQ_FED_INTERRUPT_STATUS__INTERRUPT_CU_ID__SHIFT 0x8
+#define SQ_FED_INTERRUPT_STATUS__INTERRUPT_VM_ID__SHIFT 0xc
+#define SQ_FED_INTERRUPT_STATUS__TO_RSMU_DISABLE__SHIFT 0x10
+#define SQ_FED_INTERRUPT_STATUS__TO_IH_DISABLE__SHIFT 0x11
+#define SQ_FED_INTERRUPT_STATUS__FED_HALT_DISABLE__SHIFT 0x12
+#define SQ_FED_INTERRUPT_STATUS__INTERRUPT_STATUS_MASK 0x00000001L
+#define SQ_FED_INTERRUPT_STATUS__INTERRUPT_SIMD_ID_MASK 0x0000000CL
+#define SQ_FED_INTERRUPT_STATUS__INTERRUPT_WAVE_ID_MASK 0x000000F0L
+#define SQ_FED_INTERRUPT_STATUS__INTERRUPT_CU_ID_MASK 0x00000F00L
+#define SQ_FED_INTERRUPT_STATUS__INTERRUPT_VM_ID_MASK 0x0000F000L
+#define SQ_FED_INTERRUPT_STATUS__TO_RSMU_DISABLE_MASK 0x00010000L
+#define SQ_FED_INTERRUPT_STATUS__TO_IH_DISABLE_MASK 0x00020000L
+#define SQ_FED_INTERRUPT_STATUS__FED_HALT_DISABLE_MASK 0x00040000L
+//SQ_CGTS_CONFIG
+#define SQ_CGTS_CONFIG__DGEMM_EXTRA_BUSY_PASS__SHIFT 0x0
+#define SQ_CGTS_CONFIG__XDL_EXTRA_BUSY_PASS__SHIFT 0x4
+#define SQ_CGTS_CONFIG__VALU_EXTRA_BUSY_PASS__SHIFT 0x8
+#define SQ_CGTS_CONFIG__DLOP_EXTRA_BUSY_PASS__SHIFT 0xc
+#define SQ_CGTS_CONFIG__XDL_EXTRA_GAP_PASS__SHIFT 0x10
+#define SQ_CGTS_CONFIG__DGEMM_EXTRA_GAP_PASS__SHIFT 0x12
+#define SQ_CGTS_CONFIG__DLOP_EXTRA_GAP_PASS__SHIFT 0x14
+#define SQ_CGTS_CONFIG__DGEMM_EXTRA_BUSY_PASS_MASK 0x0000000FL
+#define SQ_CGTS_CONFIG__XDL_EXTRA_BUSY_PASS_MASK 0x000000F0L
+#define SQ_CGTS_CONFIG__VALU_EXTRA_BUSY_PASS_MASK 0x00000F00L
+#define SQ_CGTS_CONFIG__DLOP_EXTRA_BUSY_PASS_MASK 0x0000F000L
+#define SQ_CGTS_CONFIG__XDL_EXTRA_GAP_PASS_MASK 0x00030000L
+#define SQ_CGTS_CONFIG__DGEMM_EXTRA_GAP_PASS_MASK 0x000C0000L
+#define SQ_CGTS_CONFIG__DLOP_EXTRA_GAP_PASS_MASK 0x00300000L
+//SQ_SHADER_TBA_LO
+#define SQ_SHADER_TBA_LO__ADDR_LO__SHIFT 0x0
+#define SQ_SHADER_TBA_LO__ADDR_LO_MASK 0xFFFFFFFFL
+//SQ_SHADER_TBA_HI
+#define SQ_SHADER_TBA_HI__ADDR_HI__SHIFT 0x0
+#define SQ_SHADER_TBA_HI__ADDR_HI_MASK 0x000000FFL
+//SQ_SHADER_TMA_LO
+#define SQ_SHADER_TMA_LO__ADDR_LO__SHIFT 0x0
+#define SQ_SHADER_TMA_LO__ADDR_LO_MASK 0xFFFFFFFFL
+//SQ_SHADER_TMA_HI
+#define SQ_SHADER_TMA_HI__ADDR_HI__SHIFT 0x0
+#define SQ_SHADER_TMA_HI__ADDR_HI_MASK 0x000000FFL
+//SQC_DSM_CNTL
+#define SQC_DSM_CNTL__INST_UTCL1_LFIFO_DSM_IRRITATOR_DATA__SHIFT 0x0
+#define SQC_DSM_CNTL__INST_UTCL1_LFIFO_ENABLE_SINGLE_WRITE__SHIFT 0x2
+#define SQC_DSM_CNTL__DATA_CU0_WRITE_DATA_BUF_DSM_IRRITATOR_DATA__SHIFT 0x3
+#define SQC_DSM_CNTL__DATA_CU0_WRITE_DATA_BUF_ENABLE_SINGLE_WRITE__SHIFT 0x5
+#define SQC_DSM_CNTL__DATA_CU0_UTCL1_LFIFO_DSM_IRRITATOR_DATA__SHIFT 0x6
+#define SQC_DSM_CNTL__DATA_CU0_UTCL1_LFIFO_ENABLE_SINGLE_WRITE__SHIFT 0x8
+#define SQC_DSM_CNTL__DATA_CU1_WRITE_DATA_BUF_DSM_IRRITATOR_DATA__SHIFT 0x9
+#define SQC_DSM_CNTL__DATA_CU1_WRITE_DATA_BUF_ENABLE_SINGLE_WRITE__SHIFT 0xb
+#define SQC_DSM_CNTL__DATA_CU1_UTCL1_LFIFO_DSM_IRRITATOR_DATA__SHIFT 0xc
+#define SQC_DSM_CNTL__DATA_CU1_UTCL1_LFIFO_ENABLE_SINGLE_WRITE__SHIFT 0xe
+#define SQC_DSM_CNTL__DATA_CU2_WRITE_DATA_BUF_DSM_IRRITATOR_DATA__SHIFT 0xf
+#define SQC_DSM_CNTL__DATA_CU2_WRITE_DATA_BUF_ENABLE_SINGLE_WRITE__SHIFT 0x11
+#define SQC_DSM_CNTL__DATA_CU2_UTCL1_LFIFO_DSM_IRRITATOR_DATA__SHIFT 0x12
+#define SQC_DSM_CNTL__DATA_CU2_UTCL1_LFIFO_ENABLE_SINGLE_WRITE__SHIFT 0x14
+#define SQC_DSM_CNTL__DATA_CU3_WRITE_DATA_BUF_DSM_IRRITATOR_DATA__SHIFT 0x15
+#define SQC_DSM_CNTL__DATA_CU3_WRITE_DATA_BUF_ENABLE_SINGLE_WRITE__SHIFT 0x17
+#define SQC_DSM_CNTL__DATA_CU3_UTCL1_LFIFO_DSM_IRRITATOR_DATA__SHIFT 0x18
+#define SQC_DSM_CNTL__DATA_CU3_UTCL1_LFIFO_ENABLE_SINGLE_WRITE__SHIFT 0x1a
+#define SQC_DSM_CNTL__INST_UTCL1_LFIFO_DSM_IRRITATOR_DATA_MASK 0x00000003L
+#define SQC_DSM_CNTL__INST_UTCL1_LFIFO_ENABLE_SINGLE_WRITE_MASK 0x00000004L
+#define SQC_DSM_CNTL__DATA_CU0_WRITE_DATA_BUF_DSM_IRRITATOR_DATA_MASK 0x00000018L
+#define SQC_DSM_CNTL__DATA_CU0_WRITE_DATA_BUF_ENABLE_SINGLE_WRITE_MASK 0x00000020L
+#define SQC_DSM_CNTL__DATA_CU0_UTCL1_LFIFO_DSM_IRRITATOR_DATA_MASK 0x000000C0L
+#define SQC_DSM_CNTL__DATA_CU0_UTCL1_LFIFO_ENABLE_SINGLE_WRITE_MASK 0x00000100L
+#define SQC_DSM_CNTL__DATA_CU1_WRITE_DATA_BUF_DSM_IRRITATOR_DATA_MASK 0x00000600L
+#define SQC_DSM_CNTL__DATA_CU1_WRITE_DATA_BUF_ENABLE_SINGLE_WRITE_MASK 0x00000800L
+#define SQC_DSM_CNTL__DATA_CU1_UTCL1_LFIFO_DSM_IRRITATOR_DATA_MASK 0x00003000L
+#define SQC_DSM_CNTL__DATA_CU1_UTCL1_LFIFO_ENABLE_SINGLE_WRITE_MASK 0x00004000L
+#define SQC_DSM_CNTL__DATA_CU2_WRITE_DATA_BUF_DSM_IRRITATOR_DATA_MASK 0x00018000L
+#define SQC_DSM_CNTL__DATA_CU2_WRITE_DATA_BUF_ENABLE_SINGLE_WRITE_MASK 0x00020000L
+#define SQC_DSM_CNTL__DATA_CU2_UTCL1_LFIFO_DSM_IRRITATOR_DATA_MASK 0x000C0000L
+#define SQC_DSM_CNTL__DATA_CU2_UTCL1_LFIFO_ENABLE_SINGLE_WRITE_MASK 0x00100000L
+#define SQC_DSM_CNTL__DATA_CU3_WRITE_DATA_BUF_DSM_IRRITATOR_DATA_MASK 0x00600000L
+#define SQC_DSM_CNTL__DATA_CU3_WRITE_DATA_BUF_ENABLE_SINGLE_WRITE_MASK 0x00800000L
+#define SQC_DSM_CNTL__DATA_CU3_UTCL1_LFIFO_DSM_IRRITATOR_DATA_MASK 0x03000000L
+#define SQC_DSM_CNTL__DATA_CU3_UTCL1_LFIFO_ENABLE_SINGLE_WRITE_MASK 0x04000000L
+//SQC_DSM_CNTLA
+#define SQC_DSM_CNTLA__INST_TAG_RAM_DSM_IRRITATOR_DATA__SHIFT 0x0
+#define SQC_DSM_CNTLA__INST_TAG_RAM_ENABLE_SINGLE_WRITE__SHIFT 0x2
+#define SQC_DSM_CNTLA__INST_UTCL1_MISS_FIFO_DSM_IRRITATOR_DATA__SHIFT 0x3
+#define SQC_DSM_CNTLA__INST_UTCL1_MISS_FIFO_ENABLE_SINGLE_WRITE__SHIFT 0x5
+#define SQC_DSM_CNTLA__INST_MISS_FIFO_DSM_IRRITATOR_DATA__SHIFT 0x6
+#define SQC_DSM_CNTLA__INST_MISS_FIFO_ENABLE_SINGLE_WRITE__SHIFT 0x8
+#define SQC_DSM_CNTLA__INST_BANK_RAM_DSM_IRRITATOR_DATA__SHIFT 0x9
+#define SQC_DSM_CNTLA__INST_BANK_RAM_ENABLE_SINGLE_WRITE__SHIFT 0xb
+#define SQC_DSM_CNTLA__DATA_TAG_RAM_DSM_IRRITATOR_DATA__SHIFT 0xc
+#define SQC_DSM_CNTLA__DATA_TAG_RAM_ENABLE_SINGLE_WRITE__SHIFT 0xe
+#define SQC_DSM_CNTLA__DATA_HIT_FIFO_DSM_IRRITATOR_DATA__SHIFT 0xf
+#define SQC_DSM_CNTLA__DATA_HIT_FIFO_ENABLE_SINGLE_WRITE__SHIFT 0x11
+#define SQC_DSM_CNTLA__DATA_MISS_FIFO_DSM_IRRITATOR_DATA__SHIFT 0x12
+#define SQC_DSM_CNTLA__DATA_MISS_FIFO_ENABLE_SINGLE_WRITE__SHIFT 0x14
+#define SQC_DSM_CNTLA__DATA_DIRTY_BIT_RAM_DSM_IRRITATOR_DATA__SHIFT 0x15
+#define SQC_DSM_CNTLA__DATA_DIRTY_BIT_RAM_ENABLE_SINGLE_WRITE__SHIFT 0x17
+#define SQC_DSM_CNTLA__DATA_BANK_RAM_DSM_IRRITATOR_DATA__SHIFT 0x18
+#define SQC_DSM_CNTLA__DATA_BANK_RAM_ENABLE_SINGLE_WRITE__SHIFT 0x1a
+#define SQC_DSM_CNTLA__INST_TAG_RAM_DSM_IRRITATOR_DATA_MASK 0x00000003L
+#define SQC_DSM_CNTLA__INST_TAG_RAM_ENABLE_SINGLE_WRITE_MASK 0x00000004L
+#define SQC_DSM_CNTLA__INST_UTCL1_MISS_FIFO_DSM_IRRITATOR_DATA_MASK 0x00000018L
+#define SQC_DSM_CNTLA__INST_UTCL1_MISS_FIFO_ENABLE_SINGLE_WRITE_MASK 0x00000020L
+#define SQC_DSM_CNTLA__INST_MISS_FIFO_DSM_IRRITATOR_DATA_MASK 0x000000C0L
+#define SQC_DSM_CNTLA__INST_MISS_FIFO_ENABLE_SINGLE_WRITE_MASK 0x00000100L
+#define SQC_DSM_CNTLA__INST_BANK_RAM_DSM_IRRITATOR_DATA_MASK 0x00000600L
+#define SQC_DSM_CNTLA__INST_BANK_RAM_ENABLE_SINGLE_WRITE_MASK 0x00000800L
+#define SQC_DSM_CNTLA__DATA_TAG_RAM_DSM_IRRITATOR_DATA_MASK 0x00003000L
+#define SQC_DSM_CNTLA__DATA_TAG_RAM_ENABLE_SINGLE_WRITE_MASK 0x00004000L
+#define SQC_DSM_CNTLA__DATA_HIT_FIFO_DSM_IRRITATOR_DATA_MASK 0x00018000L
+#define SQC_DSM_CNTLA__DATA_HIT_FIFO_ENABLE_SINGLE_WRITE_MASK 0x00020000L
+#define SQC_DSM_CNTLA__DATA_MISS_FIFO_DSM_IRRITATOR_DATA_MASK 0x000C0000L
+#define SQC_DSM_CNTLA__DATA_MISS_FIFO_ENABLE_SINGLE_WRITE_MASK 0x00100000L
+#define SQC_DSM_CNTLA__DATA_DIRTY_BIT_RAM_DSM_IRRITATOR_DATA_MASK 0x00600000L
+#define SQC_DSM_CNTLA__DATA_DIRTY_BIT_RAM_ENABLE_SINGLE_WRITE_MASK 0x00800000L
+#define SQC_DSM_CNTLA__DATA_BANK_RAM_DSM_IRRITATOR_DATA_MASK 0x03000000L
+#define SQC_DSM_CNTLA__DATA_BANK_RAM_ENABLE_SINGLE_WRITE_MASK 0x04000000L
+//SQC_DSM_CNTLB
+#define SQC_DSM_CNTLB__INST_TAG_RAM_DSM_IRRITATOR_DATA__SHIFT 0x0
+#define SQC_DSM_CNTLB__INST_TAG_RAM_ENABLE_SINGLE_WRITE__SHIFT 0x2
+#define SQC_DSM_CNTLB__INST_UTCL1_MISS_FIFO_DSM_IRRITATOR_DATA__SHIFT 0x3
+#define SQC_DSM_CNTLB__INST_UTCL1_MISS_FIFO_ENABLE_SINGLE_WRITE__SHIFT 0x5
+#define SQC_DSM_CNTLB__INST_MISS_FIFO_DSM_IRRITATOR_DATA__SHIFT 0x6
+#define SQC_DSM_CNTLB__INST_MISS_FIFO_ENABLE_SINGLE_WRITE__SHIFT 0x8
+#define SQC_DSM_CNTLB__INST_BANK_RAM_DSM_IRRITATOR_DATA__SHIFT 0x9
+#define SQC_DSM_CNTLB__INST_BANK_RAM_ENABLE_SINGLE_WRITE__SHIFT 0xb
+#define SQC_DSM_CNTLB__DATA_TAG_RAM_DSM_IRRITATOR_DATA__SHIFT 0xc
+#define SQC_DSM_CNTLB__DATA_TAG_RAM_ENABLE_SINGLE_WRITE__SHIFT 0xe
+#define SQC_DSM_CNTLB__DATA_HIT_FIFO_DSM_IRRITATOR_DATA__SHIFT 0xf
+#define SQC_DSM_CNTLB__DATA_HIT_FIFO_ENABLE_SINGLE_WRITE__SHIFT 0x11
+#define SQC_DSM_CNTLB__DATA_MISS_FIFO_DSM_IRRITATOR_DATA__SHIFT 0x12
+#define SQC_DSM_CNTLB__DATA_MISS_FIFO_ENABLE_SINGLE_WRITE__SHIFT 0x14
+#define SQC_DSM_CNTLB__DATA_DIRTY_BIT_RAM_DSM_IRRITATOR_DATA__SHIFT 0x15
+#define SQC_DSM_CNTLB__DATA_DIRTY_BIT_RAM_ENABLE_SINGLE_WRITE__SHIFT 0x17
+#define SQC_DSM_CNTLB__DATA_BANK_RAM_DSM_IRRITATOR_DATA__SHIFT 0x18
+#define SQC_DSM_CNTLB__DATA_BANK_RAM_ENABLE_SINGLE_WRITE__SHIFT 0x1a
+#define SQC_DSM_CNTLB__INST_TAG_RAM_DSM_IRRITATOR_DATA_MASK 0x00000003L
+#define SQC_DSM_CNTLB__INST_TAG_RAM_ENABLE_SINGLE_WRITE_MASK 0x00000004L
+#define SQC_DSM_CNTLB__INST_UTCL1_MISS_FIFO_DSM_IRRITATOR_DATA_MASK 0x00000018L
+#define SQC_DSM_CNTLB__INST_UTCL1_MISS_FIFO_ENABLE_SINGLE_WRITE_MASK 0x00000020L
+#define SQC_DSM_CNTLB__INST_MISS_FIFO_DSM_IRRITATOR_DATA_MASK 0x000000C0L
+#define SQC_DSM_CNTLB__INST_MISS_FIFO_ENABLE_SINGLE_WRITE_MASK 0x00000100L
+#define SQC_DSM_CNTLB__INST_BANK_RAM_DSM_IRRITATOR_DATA_MASK 0x00000600L
+#define SQC_DSM_CNTLB__INST_BANK_RAM_ENABLE_SINGLE_WRITE_MASK 0x00000800L
+#define SQC_DSM_CNTLB__DATA_TAG_RAM_DSM_IRRITATOR_DATA_MASK 0x00003000L
+#define SQC_DSM_CNTLB__DATA_TAG_RAM_ENABLE_SINGLE_WRITE_MASK 0x00004000L
+#define SQC_DSM_CNTLB__DATA_HIT_FIFO_DSM_IRRITATOR_DATA_MASK 0x00018000L
+#define SQC_DSM_CNTLB__DATA_HIT_FIFO_ENABLE_SINGLE_WRITE_MASK 0x00020000L
+#define SQC_DSM_CNTLB__DATA_MISS_FIFO_DSM_IRRITATOR_DATA_MASK 0x000C0000L
+#define SQC_DSM_CNTLB__DATA_MISS_FIFO_ENABLE_SINGLE_WRITE_MASK 0x00100000L
+#define SQC_DSM_CNTLB__DATA_DIRTY_BIT_RAM_DSM_IRRITATOR_DATA_MASK 0x00600000L
+#define SQC_DSM_CNTLB__DATA_DIRTY_BIT_RAM_ENABLE_SINGLE_WRITE_MASK 0x00800000L
+#define SQC_DSM_CNTLB__DATA_BANK_RAM_DSM_IRRITATOR_DATA_MASK 0x03000000L
+#define SQC_DSM_CNTLB__DATA_BANK_RAM_ENABLE_SINGLE_WRITE_MASK 0x04000000L
+//SQC_DSM_CNTL2
+#define SQC_DSM_CNTL2__INST_UTCL1_LFIFO_ENABLE_ERROR_INJECT__SHIFT 0x0
+#define SQC_DSM_CNTL2__INST_UTCL1_LFIFO_SELECT_INJECT_DELAY__SHIFT 0x2
+#define SQC_DSM_CNTL2__DATA_CU0_WRITE_DATA_BUF_ENABLE_ERROR_INJECT__SHIFT 0x3
+#define SQC_DSM_CNTL2__DATA_CU0_WRITE_DATA_BUF_SELECT_INJECT_DELAY__SHIFT 0x5
+#define SQC_DSM_CNTL2__DATA_CU0_UTCL1_LFIFO_ENABLE_ERROR_INJECT__SHIFT 0x6
+#define SQC_DSM_CNTL2__DATA_CU0_UTCL1_LFIFO_SELECT_INJECT_DELAY__SHIFT 0x8
+#define SQC_DSM_CNTL2__DATA_CU1_WRITE_DATA_BUF_ENABLE_ERROR_INJECT__SHIFT 0x9
+#define SQC_DSM_CNTL2__DATA_CU1_WRITE_DATA_BUF_SELECT_INJECT_DELAY__SHIFT 0xb
+#define SQC_DSM_CNTL2__DATA_CU1_UTCL1_LFIFO_ENABLE_ERROR_INJECT__SHIFT 0xc
+#define SQC_DSM_CNTL2__DATA_CU1_UTCL1_LFIFO_SELECT_INJECT_DELAY__SHIFT 0xe
+#define SQC_DSM_CNTL2__DATA_CU2_WRITE_DATA_BUF_ENABLE_ERROR_INJECT__SHIFT 0xf
+#define SQC_DSM_CNTL2__DATA_CU2_WRITE_DATA_BUF_SELECT_INJECT_DELAY__SHIFT 0x11
+#define SQC_DSM_CNTL2__DATA_CU2_UTCL1_LFIFO_ENABLE_ERROR_INJECT__SHIFT 0x12
+#define SQC_DSM_CNTL2__DATA_CU2_UTCL1_LFIFO_SELECT_INJECT_DELAY__SHIFT 0x14
+#define SQC_DSM_CNTL2__INJECT_DELAY__SHIFT 0x1a
+#define SQC_DSM_CNTL2__INST_UTCL1_LFIFO_ENABLE_ERROR_INJECT_MASK 0x00000003L
+#define SQC_DSM_CNTL2__INST_UTCL1_LFIFO_SELECT_INJECT_DELAY_MASK 0x00000004L
+#define SQC_DSM_CNTL2__DATA_CU0_WRITE_DATA_BUF_ENABLE_ERROR_INJECT_MASK 0x00000018L
+#define SQC_DSM_CNTL2__DATA_CU0_WRITE_DATA_BUF_SELECT_INJECT_DELAY_MASK 0x00000020L
+#define SQC_DSM_CNTL2__DATA_CU0_UTCL1_LFIFO_ENABLE_ERROR_INJECT_MASK 0x000000C0L
+#define SQC_DSM_CNTL2__DATA_CU0_UTCL1_LFIFO_SELECT_INJECT_DELAY_MASK 0x00000100L
+#define SQC_DSM_CNTL2__DATA_CU1_WRITE_DATA_BUF_ENABLE_ERROR_INJECT_MASK 0x00000600L
+#define SQC_DSM_CNTL2__DATA_CU1_WRITE_DATA_BUF_SELECT_INJECT_DELAY_MASK 0x00000800L
+#define SQC_DSM_CNTL2__DATA_CU1_UTCL1_LFIFO_ENABLE_ERROR_INJECT_MASK 0x00003000L
+#define SQC_DSM_CNTL2__DATA_CU1_UTCL1_LFIFO_SELECT_INJECT_DELAY_MASK 0x00004000L
+#define SQC_DSM_CNTL2__DATA_CU2_WRITE_DATA_BUF_ENABLE_ERROR_INJECT_MASK 0x00018000L
+#define SQC_DSM_CNTL2__DATA_CU2_WRITE_DATA_BUF_SELECT_INJECT_DELAY_MASK 0x00020000L
+#define SQC_DSM_CNTL2__DATA_CU2_UTCL1_LFIFO_ENABLE_ERROR_INJECT_MASK 0x000C0000L
+#define SQC_DSM_CNTL2__DATA_CU2_UTCL1_LFIFO_SELECT_INJECT_DELAY_MASK 0x00100000L
+#define SQC_DSM_CNTL2__INJECT_DELAY_MASK 0xFC000000L
+//SQC_DSM_CNTL2A
+#define SQC_DSM_CNTL2A__INST_TAG_RAM_ENABLE_ERROR_INJECT__SHIFT 0x0
+#define SQC_DSM_CNTL2A__INST_TAG_RAM_SELECT_INJECT_DELAY__SHIFT 0x2
+#define SQC_DSM_CNTL2A__INST_UTCL1_MISS_FIFO_ENABLE_ERROR_INJECT__SHIFT 0x3
+#define SQC_DSM_CNTL2A__INST_UTCL1_MISS_FIFO_SELECT_INJECT_DELAY__SHIFT 0x5
+#define SQC_DSM_CNTL2A__INST_MISS_FIFO_ENABLE_ERROR_INJECT__SHIFT 0x6
+#define SQC_DSM_CNTL2A__INST_MISS_FIFO_SELECT_INJECT_DELAY__SHIFT 0x8
+#define SQC_DSM_CNTL2A__INST_BANK_RAM_ENABLE_ERROR_INJECT__SHIFT 0x9
+#define SQC_DSM_CNTL2A__INST_BANK_RAM_SELECT_INJECT_DELAY__SHIFT 0xb
+#define SQC_DSM_CNTL2A__DATA_TAG_RAM_ENABLE_ERROR_INJECT__SHIFT 0xc
+#define SQC_DSM_CNTL2A__DATA_TAG_RAM_SELECT_INJECT_DELAY__SHIFT 0xe
+#define SQC_DSM_CNTL2A__DATA_HIT_FIFO_ENABLE_ERROR_INJECT__SHIFT 0xf
+#define SQC_DSM_CNTL2A__DATA_HIT_FIFO_SELECT_INJECT_DELAY__SHIFT 0x11
+#define SQC_DSM_CNTL2A__DATA_MISS_FIFO_ENABLE_ERROR_INJECT__SHIFT 0x12
+#define SQC_DSM_CNTL2A__DATA_MISS_FIFO_SELECT_INJECT_DELAY__SHIFT 0x14
+#define SQC_DSM_CNTL2A__DATA_DIRTY_BIT_RAM_ENABLE_ERROR_INJECT__SHIFT 0x15
+#define SQC_DSM_CNTL2A__DATA_DIRTY_BIT_RAM_SELECT_INJECT_DELAY__SHIFT 0x17
+#define SQC_DSM_CNTL2A__DATA_BANK_RAM_ENABLE_ERROR_INJECT__SHIFT 0x18
+#define SQC_DSM_CNTL2A__DATA_BANK_RAM_SELECT_INJECT_DELAY__SHIFT 0x1a
+#define SQC_DSM_CNTL2A__INST_TAG_RAM_ENABLE_ERROR_INJECT_MASK 0x00000003L
+#define SQC_DSM_CNTL2A__INST_TAG_RAM_SELECT_INJECT_DELAY_MASK 0x00000004L
+#define SQC_DSM_CNTL2A__INST_UTCL1_MISS_FIFO_ENABLE_ERROR_INJECT_MASK 0x00000018L
+#define SQC_DSM_CNTL2A__INST_UTCL1_MISS_FIFO_SELECT_INJECT_DELAY_MASK 0x00000020L
+#define SQC_DSM_CNTL2A__INST_MISS_FIFO_ENABLE_ERROR_INJECT_MASK 0x000000C0L
+#define SQC_DSM_CNTL2A__INST_MISS_FIFO_SELECT_INJECT_DELAY_MASK 0x00000100L
+#define SQC_DSM_CNTL2A__INST_BANK_RAM_ENABLE_ERROR_INJECT_MASK 0x00000600L
+#define SQC_DSM_CNTL2A__INST_BANK_RAM_SELECT_INJECT_DELAY_MASK 0x00000800L
+#define SQC_DSM_CNTL2A__DATA_TAG_RAM_ENABLE_ERROR_INJECT_MASK 0x00003000L
+#define SQC_DSM_CNTL2A__DATA_TAG_RAM_SELECT_INJECT_DELAY_MASK 0x00004000L
+#define SQC_DSM_CNTL2A__DATA_HIT_FIFO_ENABLE_ERROR_INJECT_MASK 0x00018000L
+#define SQC_DSM_CNTL2A__DATA_HIT_FIFO_SELECT_INJECT_DELAY_MASK 0x00020000L
+#define SQC_DSM_CNTL2A__DATA_MISS_FIFO_ENABLE_ERROR_INJECT_MASK 0x000C0000L
+#define SQC_DSM_CNTL2A__DATA_MISS_FIFO_SELECT_INJECT_DELAY_MASK 0x00100000L
+#define SQC_DSM_CNTL2A__DATA_DIRTY_BIT_RAM_ENABLE_ERROR_INJECT_MASK 0x00600000L
+#define SQC_DSM_CNTL2A__DATA_DIRTY_BIT_RAM_SELECT_INJECT_DELAY_MASK 0x00800000L
+#define SQC_DSM_CNTL2A__DATA_BANK_RAM_ENABLE_ERROR_INJECT_MASK 0x03000000L
+#define SQC_DSM_CNTL2A__DATA_BANK_RAM_SELECT_INJECT_DELAY_MASK 0x04000000L
+//SQC_DSM_CNTL2B
+#define SQC_DSM_CNTL2B__INST_TAG_RAM_ENABLE_ERROR_INJECT__SHIFT 0x0
+#define SQC_DSM_CNTL2B__INST_TAG_RAM_SELECT_INJECT_DELAY__SHIFT 0x2
+#define SQC_DSM_CNTL2B__INST_UTCL1_MISS_FIFO_ENABLE_ERROR_INJECT__SHIFT 0x3
+#define SQC_DSM_CNTL2B__INST_UTCL1_MISS_FIFO_SELECT_INJECT_DELAY__SHIFT 0x5
+#define SQC_DSM_CNTL2B__INST_MISS_FIFO_ENABLE_ERROR_INJECT__SHIFT 0x6
+#define SQC_DSM_CNTL2B__INST_MISS_FIFO_SELECT_INJECT_DELAY__SHIFT 0x8
+#define SQC_DSM_CNTL2B__INST_BANK_RAM_ENABLE_ERROR_INJECT__SHIFT 0x9
+#define SQC_DSM_CNTL2B__INST_BANK_RAM_SELECT_INJECT_DELAY__SHIFT 0xb
+#define SQC_DSM_CNTL2B__DATA_TAG_RAM_ENABLE_ERROR_INJECT__SHIFT 0xc
+#define SQC_DSM_CNTL2B__DATA_TAG_RAM_SELECT_INJECT_DELAY__SHIFT 0xe
+#define SQC_DSM_CNTL2B__DATA_HIT_FIFO_ENABLE_ERROR_INJECT__SHIFT 0xf
+#define SQC_DSM_CNTL2B__DATA_HIT_FIFO_SELECT_INJECT_DELAY__SHIFT 0x11
+#define SQC_DSM_CNTL2B__DATA_MISS_FIFO_ENABLE_ERROR_INJECT__SHIFT 0x12
+#define SQC_DSM_CNTL2B__DATA_MISS_FIFO_SELECT_INJECT_DELAY__SHIFT 0x14
+#define SQC_DSM_CNTL2B__DATA_DIRTY_BIT_RAM_ENABLE_ERROR_INJECT__SHIFT 0x15
+#define SQC_DSM_CNTL2B__DATA_DIRTY_BIT_RAM_SELECT_INJECT_DELAY__SHIFT 0x17
+#define SQC_DSM_CNTL2B__DATA_BANK_RAM_ENABLE_ERROR_INJECT__SHIFT 0x18
+#define SQC_DSM_CNTL2B__DATA_BANK_RAM_SELECT_INJECT_DELAY__SHIFT 0x1a
+#define SQC_DSM_CNTL2B__INST_TAG_RAM_ENABLE_ERROR_INJECT_MASK 0x00000003L
+#define SQC_DSM_CNTL2B__INST_TAG_RAM_SELECT_INJECT_DELAY_MASK 0x00000004L
+#define SQC_DSM_CNTL2B__INST_UTCL1_MISS_FIFO_ENABLE_ERROR_INJECT_MASK 0x00000018L
+#define SQC_DSM_CNTL2B__INST_UTCL1_MISS_FIFO_SELECT_INJECT_DELAY_MASK 0x00000020L
+#define SQC_DSM_CNTL2B__INST_MISS_FIFO_ENABLE_ERROR_INJECT_MASK 0x000000C0L
+#define SQC_DSM_CNTL2B__INST_MISS_FIFO_SELECT_INJECT_DELAY_MASK 0x00000100L
+#define SQC_DSM_CNTL2B__INST_BANK_RAM_ENABLE_ERROR_INJECT_MASK 0x00000600L
+#define SQC_DSM_CNTL2B__INST_BANK_RAM_SELECT_INJECT_DELAY_MASK 0x00000800L
+#define SQC_DSM_CNTL2B__DATA_TAG_RAM_ENABLE_ERROR_INJECT_MASK 0x00003000L
+#define SQC_DSM_CNTL2B__DATA_TAG_RAM_SELECT_INJECT_DELAY_MASK 0x00004000L
+#define SQC_DSM_CNTL2B__DATA_HIT_FIFO_ENABLE_ERROR_INJECT_MASK 0x00018000L
+#define SQC_DSM_CNTL2B__DATA_HIT_FIFO_SELECT_INJECT_DELAY_MASK 0x00020000L
+#define SQC_DSM_CNTL2B__DATA_MISS_FIFO_ENABLE_ERROR_INJECT_MASK 0x000C0000L
+#define SQC_DSM_CNTL2B__DATA_MISS_FIFO_SELECT_INJECT_DELAY_MASK 0x00100000L
+#define SQC_DSM_CNTL2B__DATA_DIRTY_BIT_RAM_ENABLE_ERROR_INJECT_MASK 0x00600000L
+#define SQC_DSM_CNTL2B__DATA_DIRTY_BIT_RAM_SELECT_INJECT_DELAY_MASK 0x00800000L
+#define SQC_DSM_CNTL2B__DATA_BANK_RAM_ENABLE_ERROR_INJECT_MASK 0x03000000L
+#define SQC_DSM_CNTL2B__DATA_BANK_RAM_SELECT_INJECT_DELAY_MASK 0x04000000L
+//SQC_DSM_CNTL2E
+#define SQC_DSM_CNTL2E__DATA_CU3_WRITE_DATA_BUF_ENABLE_ERROR_INJECT__SHIFT 0x0
+#define SQC_DSM_CNTL2E__DATA_CU3_WRITE_DATA_BUF_SELECT_INJECT_DELAY__SHIFT 0x2
+#define SQC_DSM_CNTL2E__DATA_CU3_UTCL1_LFIFO_ENABLE_ERROR_INJECT__SHIFT 0x3
+#define SQC_DSM_CNTL2E__DATA_CU3_UTCL1_LFIFO_SELECT_INJECT_DELAY__SHIFT 0x5
+#define SQC_DSM_CNTL2E__DATA_CU3_WRITE_DATA_BUF_ENABLE_ERROR_INJECT_MASK 0x00000003L
+#define SQC_DSM_CNTL2E__DATA_CU3_WRITE_DATA_BUF_SELECT_INJECT_DELAY_MASK 0x00000004L
+#define SQC_DSM_CNTL2E__DATA_CU3_UTCL1_LFIFO_ENABLE_ERROR_INJECT_MASK 0x00000018L
+#define SQC_DSM_CNTL2E__DATA_CU3_UTCL1_LFIFO_SELECT_INJECT_DELAY_MASK 0x00000020L
+//SQC_EDC_FUE_CNTL
+#define SQC_EDC_FUE_CNTL__BLOCK_FUE_FLAGS__SHIFT 0x0
+#define SQC_EDC_FUE_CNTL__FUE_INTERRUPT_ENABLES__SHIFT 0x10
+#define SQC_EDC_FUE_CNTL__BLOCK_FUE_FLAGS_MASK 0x0000FFFFL
+#define SQC_EDC_FUE_CNTL__FUE_INTERRUPT_ENABLES_MASK 0xFFFF0000L
+//SQC_EDC_CNT2
+#define SQC_EDC_CNT2__INST_BANKA_TAG_RAM_SEC_COUNT__SHIFT 0x0
+#define SQC_EDC_CNT2__INST_BANKA_TAG_RAM_DED_COUNT__SHIFT 0x2
+#define SQC_EDC_CNT2__INST_BANKA_BANK_RAM_SEC_COUNT__SHIFT 0x4
+#define SQC_EDC_CNT2__INST_BANKA_BANK_RAM_DED_COUNT__SHIFT 0x6
+#define SQC_EDC_CNT2__DATA_BANKA_TAG_RAM_SEC_COUNT__SHIFT 0x8
+#define SQC_EDC_CNT2__DATA_BANKA_TAG_RAM_DED_COUNT__SHIFT 0xa
+#define SQC_EDC_CNT2__DATA_BANKA_BANK_RAM_SEC_COUNT__SHIFT 0xc
+#define SQC_EDC_CNT2__DATA_BANKA_BANK_RAM_DED_COUNT__SHIFT 0xe
+#define SQC_EDC_CNT2__INST_UTCL1_LFIFO_SEC_COUNT__SHIFT 0x10
+#define SQC_EDC_CNT2__INST_UTCL1_LFIFO_DED_COUNT__SHIFT 0x12
+#define SQC_EDC_CNT2__DATA_BANKA_DIRTY_BIT_RAM_SEC_COUNT__SHIFT 0x14
+#define SQC_EDC_CNT2__DATA_BANKA_DIRTY_BIT_RAM_DED_COUNT__SHIFT 0x16
+#define SQC_EDC_CNT2__INST_BANKA_TAG_RAM_SEC_COUNT_MASK 0x00000003L
+#define SQC_EDC_CNT2__INST_BANKA_TAG_RAM_DED_COUNT_MASK 0x0000000CL
+#define SQC_EDC_CNT2__INST_BANKA_BANK_RAM_SEC_COUNT_MASK 0x00000030L
+#define SQC_EDC_CNT2__INST_BANKA_BANK_RAM_DED_COUNT_MASK 0x000000C0L
+#define SQC_EDC_CNT2__DATA_BANKA_TAG_RAM_SEC_COUNT_MASK 0x00000300L
+#define SQC_EDC_CNT2__DATA_BANKA_TAG_RAM_DED_COUNT_MASK 0x00000C00L
+#define SQC_EDC_CNT2__DATA_BANKA_BANK_RAM_SEC_COUNT_MASK 0x00003000L
+#define SQC_EDC_CNT2__DATA_BANKA_BANK_RAM_DED_COUNT_MASK 0x0000C000L
+#define SQC_EDC_CNT2__INST_UTCL1_LFIFO_SEC_COUNT_MASK 0x00030000L
+#define SQC_EDC_CNT2__INST_UTCL1_LFIFO_DED_COUNT_MASK 0x000C0000L
+#define SQC_EDC_CNT2__DATA_BANKA_DIRTY_BIT_RAM_SEC_COUNT_MASK 0x00300000L
+#define SQC_EDC_CNT2__DATA_BANKA_DIRTY_BIT_RAM_DED_COUNT_MASK 0x00C00000L
+//SQC_EDC_CNT3
+#define SQC_EDC_CNT3__INST_BANKB_TAG_RAM_SEC_COUNT__SHIFT 0x0
+#define SQC_EDC_CNT3__INST_BANKB_TAG_RAM_DED_COUNT__SHIFT 0x2
+#define SQC_EDC_CNT3__INST_BANKB_BANK_RAM_SEC_COUNT__SHIFT 0x4
+#define SQC_EDC_CNT3__INST_BANKB_BANK_RAM_DED_COUNT__SHIFT 0x6
+#define SQC_EDC_CNT3__DATA_BANKB_TAG_RAM_SEC_COUNT__SHIFT 0x8
+#define SQC_EDC_CNT3__DATA_BANKB_TAG_RAM_DED_COUNT__SHIFT 0xa
+#define SQC_EDC_CNT3__DATA_BANKB_BANK_RAM_SEC_COUNT__SHIFT 0xc
+#define SQC_EDC_CNT3__DATA_BANKB_BANK_RAM_DED_COUNT__SHIFT 0xe
+#define SQC_EDC_CNT3__DATA_BANKB_DIRTY_BIT_RAM_SEC_COUNT__SHIFT 0x10
+#define SQC_EDC_CNT3__DATA_BANKB_DIRTY_BIT_RAM_DED_COUNT__SHIFT 0x12
+#define SQC_EDC_CNT3__INST_BANKB_TAG_RAM_SEC_COUNT_MASK 0x00000003L
+#define SQC_EDC_CNT3__INST_BANKB_TAG_RAM_DED_COUNT_MASK 0x0000000CL
+#define SQC_EDC_CNT3__INST_BANKB_BANK_RAM_SEC_COUNT_MASK 0x00000030L
+#define SQC_EDC_CNT3__INST_BANKB_BANK_RAM_DED_COUNT_MASK 0x000000C0L
+#define SQC_EDC_CNT3__DATA_BANKB_TAG_RAM_SEC_COUNT_MASK 0x00000300L
+#define SQC_EDC_CNT3__DATA_BANKB_TAG_RAM_DED_COUNT_MASK 0x00000C00L
+#define SQC_EDC_CNT3__DATA_BANKB_BANK_RAM_SEC_COUNT_MASK 0x00003000L
+#define SQC_EDC_CNT3__DATA_BANKB_BANK_RAM_DED_COUNT_MASK 0x0000C000L
+#define SQC_EDC_CNT3__DATA_BANKB_DIRTY_BIT_RAM_SEC_COUNT_MASK 0x00030000L
+#define SQC_EDC_CNT3__DATA_BANKB_DIRTY_BIT_RAM_DED_COUNT_MASK 0x000C0000L
+//SQC_EDC_PARITY_CNT3
+#define SQC_EDC_PARITY_CNT3__INST_BANKA_UTCL1_MISS_FIFO_SEC_COUNT__SHIFT 0x0
+#define SQC_EDC_PARITY_CNT3__INST_BANKA_UTCL1_MISS_FIFO_DED_COUNT__SHIFT 0x2
+#define SQC_EDC_PARITY_CNT3__INST_BANKA_MISS_FIFO_SEC_COUNT__SHIFT 0x4
+#define SQC_EDC_PARITY_CNT3__INST_BANKA_MISS_FIFO_DED_COUNT__SHIFT 0x6
+#define SQC_EDC_PARITY_CNT3__DATA_BANKA_HIT_FIFO_SEC_COUNT__SHIFT 0x8
+#define SQC_EDC_PARITY_CNT3__DATA_BANKA_HIT_FIFO_DED_COUNT__SHIFT 0xa
+#define SQC_EDC_PARITY_CNT3__DATA_BANKA_MISS_FIFO_SEC_COUNT__SHIFT 0xc
+#define SQC_EDC_PARITY_CNT3__DATA_BANKA_MISS_FIFO_DED_COUNT__SHIFT 0xe
+#define SQC_EDC_PARITY_CNT3__INST_BANKB_UTCL1_MISS_FIFO_SEC_COUNT__SHIFT 0x10
+#define SQC_EDC_PARITY_CNT3__INST_BANKB_UTCL1_MISS_FIFO_DED_COUNT__SHIFT 0x12
+#define SQC_EDC_PARITY_CNT3__INST_BANKB_MISS_FIFO_SEC_COUNT__SHIFT 0x14
+#define SQC_EDC_PARITY_CNT3__INST_BANKB_MISS_FIFO_DED_COUNT__SHIFT 0x16
+#define SQC_EDC_PARITY_CNT3__DATA_BANKB_HIT_FIFO_SEC_COUNT__SHIFT 0x18
+#define SQC_EDC_PARITY_CNT3__DATA_BANKB_HIT_FIFO_DED_COUNT__SHIFT 0x1a
+#define SQC_EDC_PARITY_CNT3__DATA_BANKB_MISS_FIFO_SEC_COUNT__SHIFT 0x1c
+#define SQC_EDC_PARITY_CNT3__DATA_BANKB_MISS_FIFO_DED_COUNT__SHIFT 0x1e
+#define SQC_EDC_PARITY_CNT3__INST_BANKA_UTCL1_MISS_FIFO_SEC_COUNT_MASK 0x00000003L
+#define SQC_EDC_PARITY_CNT3__INST_BANKA_UTCL1_MISS_FIFO_DED_COUNT_MASK 0x0000000CL
+#define SQC_EDC_PARITY_CNT3__INST_BANKA_MISS_FIFO_SEC_COUNT_MASK 0x00000030L
+#define SQC_EDC_PARITY_CNT3__INST_BANKA_MISS_FIFO_DED_COUNT_MASK 0x000000C0L
+#define SQC_EDC_PARITY_CNT3__DATA_BANKA_HIT_FIFO_SEC_COUNT_MASK 0x00000300L
+#define SQC_EDC_PARITY_CNT3__DATA_BANKA_HIT_FIFO_DED_COUNT_MASK 0x00000C00L
+#define SQC_EDC_PARITY_CNT3__DATA_BANKA_MISS_FIFO_SEC_COUNT_MASK 0x00003000L
+#define SQC_EDC_PARITY_CNT3__DATA_BANKA_MISS_FIFO_DED_COUNT_MASK 0x0000C000L
+#define SQC_EDC_PARITY_CNT3__INST_BANKB_UTCL1_MISS_FIFO_SEC_COUNT_MASK 0x00030000L
+#define SQC_EDC_PARITY_CNT3__INST_BANKB_UTCL1_MISS_FIFO_DED_COUNT_MASK 0x000C0000L
+#define SQC_EDC_PARITY_CNT3__INST_BANKB_MISS_FIFO_SEC_COUNT_MASK 0x00300000L
+#define SQC_EDC_PARITY_CNT3__INST_BANKB_MISS_FIFO_DED_COUNT_MASK 0x00C00000L
+#define SQC_EDC_PARITY_CNT3__DATA_BANKB_HIT_FIFO_SEC_COUNT_MASK 0x03000000L
+#define SQC_EDC_PARITY_CNT3__DATA_BANKB_HIT_FIFO_DED_COUNT_MASK 0x0C000000L
+#define SQC_EDC_PARITY_CNT3__DATA_BANKB_MISS_FIFO_SEC_COUNT_MASK 0x30000000L
+#define SQC_EDC_PARITY_CNT3__DATA_BANKB_MISS_FIFO_DED_COUNT_MASK 0xC0000000L
+//SQ_DEBUG
+#define SQ_DEBUG__SINGLE_MEMOP__SHIFT 0x0
+#define SQ_DEBUG__SINGLE_ALU_OP__SHIFT 0x1
+#define SQ_DEBUG__SINGLE_MEMOP_MASK 0x00000001L
+#define SQ_DEBUG__SINGLE_ALU_OP_MASK 0x00000002L
+//SQ_PERF_SNAPSHOT_CTRL
+#define SQ_PERF_SNAPSHOT_CTRL__COUNT_INTVAL__SHIFT 0x0
+#define SQ_PERF_SNAPSHOT_CTRL__COUNT_SEL__SHIFT 0x5
+#define SQ_PERF_SNAPSHOT_CTRL__VMID_MASK__SHIFT 0x6
+#define SQ_PERF_SNAPSHOT_CTRL__ENABLE__SHIFT 0x16
+#define SQ_PERF_SNAPSHOT_CTRL__TEST_MODE__SHIFT 0x17
+#define SQ_PERF_SNAPSHOT_CTRL__COUNT_INTVAL_MASK 0x0000001FL
+#define SQ_PERF_SNAPSHOT_CTRL__COUNT_SEL_MASK 0x00000020L
+#define SQ_PERF_SNAPSHOT_CTRL__VMID_MASK_MASK 0x003FFFC0L
+#define SQ_PERF_SNAPSHOT_CTRL__ENABLE_MASK 0x00400000L
+#define SQ_PERF_SNAPSHOT_CTRL__TEST_MODE_MASK 0x00800000L
+//SQ_DEBUG_FOR_INTERNAL_CTRL
+#define SQ_DEBUG_FOR_INTERNAL_CTRL__FLAG_WR_ADDR_MATCH_FLAT_SCRATCH__SHIFT 0x0
+#define SQ_DEBUG_FOR_INTERNAL_CTRL__FLAG_RD_FLAT_SCRATCH_RETURN_ZERO__SHIFT 0x1
+#define SQ_DEBUG_FOR_INTERNAL_CTRL__DISABLE_FLAT_SCRATCH_WRITE_PROTECT__SHIFT 0x2
+#define SQ_DEBUG_FOR_INTERNAL_CTRL__DISABLE_FLAT_SCRATCH_READ_PROTECT__SHIFT 0x3
+#define SQ_DEBUG_FOR_INTERNAL_CTRL__DISABLE_SNAPSHOT_TRAP_ON_BARRIER__SHIFT 0x4
+#define SQ_DEBUG_FOR_INTERNAL_CTRL__ENABLE_DED_TRIGGER_HALT__SHIFT 0x5
+#define SQ_DEBUG_FOR_INTERNAL_CTRL__FLAG_WR_ADDR_MATCH_FLAT_SCRATCH_MASK 0x00000001L
+#define SQ_DEBUG_FOR_INTERNAL_CTRL__FLAG_RD_FLAT_SCRATCH_RETURN_ZERO_MASK 0x00000002L
+#define SQ_DEBUG_FOR_INTERNAL_CTRL__DISABLE_FLAT_SCRATCH_WRITE_PROTECT_MASK 0x00000004L
+#define SQ_DEBUG_FOR_INTERNAL_CTRL__DISABLE_FLAT_SCRATCH_READ_PROTECT_MASK 0x00000008L
+#define SQ_DEBUG_FOR_INTERNAL_CTRL__DISABLE_SNAPSHOT_TRAP_ON_BARRIER_MASK 0x00000010L
+#define SQ_DEBUG_FOR_INTERNAL_CTRL__ENABLE_DED_TRIGGER_HALT_MASK 0x00000020L
+//SQ_REG_TIMESTAMP
+#define SQ_REG_TIMESTAMP__TIMESTAMP__SHIFT 0x0
+#define SQ_REG_TIMESTAMP__TIMESTAMP_MASK 0x000000FFL
+//SQ_CMD_TIMESTAMP
+#define SQ_CMD_TIMESTAMP__TIMESTAMP__SHIFT 0x0
+#define SQ_CMD_TIMESTAMP__TIMESTAMP_MASK 0x000000FFL
+//SQ_HOSTTRAP_STATUS
+#define SQ_HOSTTRAP_STATUS__HTPENDINGCOUNT__SHIFT 0x0
+#define SQ_HOSTTRAP_STATUS__HTPENDING_OVERRIDE__SHIFT 0x8
+#define SQ_HOSTTRAP_STATUS__HTPENDINGCOUNT_MASK 0x000000FFL
+#define SQ_HOSTTRAP_STATUS__HTPENDING_OVERRIDE_MASK 0x00000100L
+//SQ_IND_INDEX
+#define SQ_IND_INDEX__WAVE_ID__SHIFT 0x0
+#define SQ_IND_INDEX__SIMD_ID__SHIFT 0x4
+#define SQ_IND_INDEX__THREAD_ID__SHIFT 0x6
+#define SQ_IND_INDEX__AUTO_INCR__SHIFT 0xc
+#define SQ_IND_INDEX__FORCE_READ__SHIFT 0xd
+#define SQ_IND_INDEX__READ_TIMEOUT__SHIFT 0xe
+#define SQ_IND_INDEX__UNINDEXED__SHIFT 0xf
+#define SQ_IND_INDEX__INDEX__SHIFT 0x10
+#define SQ_IND_INDEX__WAVE_ID_MASK 0x0000000FL
+#define SQ_IND_INDEX__SIMD_ID_MASK 0x00000030L
+#define SQ_IND_INDEX__THREAD_ID_MASK 0x00000FC0L
+#define SQ_IND_INDEX__AUTO_INCR_MASK 0x00001000L
+#define SQ_IND_INDEX__FORCE_READ_MASK 0x00002000L
+#define SQ_IND_INDEX__READ_TIMEOUT_MASK 0x00004000L
+#define SQ_IND_INDEX__UNINDEXED_MASK 0x00008000L
+#define SQ_IND_INDEX__INDEX_MASK 0xFFFF0000L
+//SQ_IND_DATA
+#define SQ_IND_DATA__DATA__SHIFT 0x0
+#define SQ_IND_DATA__DATA_MASK 0xFFFFFFFFL
+//SQ_CONFIG1
+#define SQ_CONFIG1__DISABLE_XDL_PORTD_CO_EXEC__SHIFT 0x0
+#define SQ_CONFIG1__DISABLE_MGCG_ON_IBUF__SHIFT 0x1
+#define SQ_CONFIG1__DISABLE_MGCG_ON_PERF__SHIFT 0x2
+#define SQ_CONFIG1__DISABLE_MGCG_ON_EXP__SHIFT 0x3
+#define SQ_CONFIG1__DISABLE_MGCG_ON_SCA__SHIFT 0x4
+#define SQ_CONFIG1__DISABLE_MGCG_ON_SREG__SHIFT 0x5
+#define SQ_CONFIG1__DISABLE_MGCG_ON_VDEC__SHIFT 0x6
+#define SQ_CONFIG1__EXTRA_DGEMM_PROTECT_EN__SHIFT 0x7
+#define SQ_CONFIG1__DISABLE_VALU_COEXEC__SHIFT 0x8
+#define SQ_CONFIG1__DISABLE_WAVE_VALU_COEXEC__SHIFT 0x9
+#define SQ_CONFIG1__VGPR_ARB_PLUS1__SHIFT 0xa
+#define SQ_CONFIG1__DISABLE_VGPR_COLLAPSE__SHIFT 0xb
+#define SQ_CONFIG1__DISABLE_XNACK_CHECK_IN_RETRY_DISABLE__SHIFT 0xc
+#define SQ_CONFIG1__DISABLE_BARRIER_ADDR_WATCH__SHIFT 0xd
+#define SQ_CONFIG1__DISABLE_BARRIER_MEMVIOL_WAIT__SHIFT 0xe
+#define SQ_CONFIG1__DISABLE_BARRIER_MEMVIOL_BACKOFF__SHIFT 0xf
+#define SQ_CONFIG1__EXPAND_SP_CMD_FGCG__SHIFT 0x10
+#define SQ_CONFIG1__EXPAND_SP_EXPORT_FGCG__SHIFT 0x11
+#define SQ_CONFIG1__DISABLE_MGCG_ON_PERF_SNAP__SHIFT 0x12
+#define SQ_CONFIG1__DISABLE_VALU_COEXEC_MODE_AUTO_CLEAN__SHIFT 0x13
+#define SQ_CONFIG1__SP_CORE1_MGCG_OVERRIDE__SHIFT 0x14
+#define SQ_CONFIG1__SP_CORE4_MGCG_OVERRIDE__SHIFT 0x15
+#define SQ_CONFIG1__SP_CORE5_MGCG_OVERRIDE__SHIFT 0x16
+#define SQ_CONFIG1__DISABLE_SP_VGPR_COLLAPSE__SHIFT 0x17
+#define SQ_CONFIG1__SP_FGCG_REP_OVERRIDE__SHIFT 0x18
+#define SQ_CONFIG1__DPMACC_MGCG_OVERRIDE__SHIFT 0x19
+#define SQ_CONFIG1__XDLMACC_MGCG_OVERRIDE__SHIFT 0x1a
+#define SQ_CONFIG1__TRANSMACC_MGCG_OVERRIDE__SHIFT 0x1b
+#define SQ_CONFIG1__SPMACC_MGCG_OVERRIDE__SHIFT 0x1c
+#define SQ_CONFIG1__DPMACC_DGEMM2X_MGCG_OVERRIDE__SHIFT 0x1d
+#define SQ_CONFIG1__DISABLE_SP_VGPR_READ_SKIP__SHIFT 0x1e
+#define SQ_CONFIG1__SP_SRC_1ST_BUFFER_MGCG_OVERRIDE__SHIFT 0x1f
+#define SQ_CONFIG1__DISABLE_XDL_PORTD_CO_EXEC_MASK 0x00000001L
+#define SQ_CONFIG1__DISABLE_MGCG_ON_IBUF_MASK 0x00000002L
+#define SQ_CONFIG1__DISABLE_MGCG_ON_PERF_MASK 0x00000004L
+#define SQ_CONFIG1__DISABLE_MGCG_ON_EXP_MASK 0x00000008L
+#define SQ_CONFIG1__DISABLE_MGCG_ON_SCA_MASK 0x00000010L
+#define SQ_CONFIG1__DISABLE_MGCG_ON_SREG_MASK 0x00000020L
+#define SQ_CONFIG1__DISABLE_MGCG_ON_VDEC_MASK 0x00000040L
+#define SQ_CONFIG1__EXTRA_DGEMM_PROTECT_EN_MASK 0x00000080L
+#define SQ_CONFIG1__DISABLE_VALU_COEXEC_MASK 0x00000100L
+#define SQ_CONFIG1__DISABLE_WAVE_VALU_COEXEC_MASK 0x00000200L
+#define SQ_CONFIG1__VGPR_ARB_PLUS1_MASK 0x00000400L
+#define SQ_CONFIG1__DISABLE_VGPR_COLLAPSE_MASK 0x00000800L
+#define SQ_CONFIG1__DISABLE_XNACK_CHECK_IN_RETRY_DISABLE_MASK 0x00001000L
+#define SQ_CONFIG1__DISABLE_BARRIER_ADDR_WATCH_MASK 0x00002000L
+#define SQ_CONFIG1__DISABLE_BARRIER_MEMVIOL_WAIT_MASK 0x00004000L
+#define SQ_CONFIG1__DISABLE_BARRIER_MEMVIOL_BACKOFF_MASK 0x00008000L
+#define SQ_CONFIG1__EXPAND_SP_CMD_FGCG_MASK 0x00010000L
+#define SQ_CONFIG1__EXPAND_SP_EXPORT_FGCG_MASK 0x00020000L
+#define SQ_CONFIG1__DISABLE_MGCG_ON_PERF_SNAP_MASK 0x00040000L
+#define SQ_CONFIG1__DISABLE_VALU_COEXEC_MODE_AUTO_CLEAN_MASK 0x00080000L
+#define SQ_CONFIG1__SP_CORE1_MGCG_OVERRIDE_MASK 0x00100000L
+#define SQ_CONFIG1__SP_CORE4_MGCG_OVERRIDE_MASK 0x00200000L
+#define SQ_CONFIG1__SP_CORE5_MGCG_OVERRIDE_MASK 0x00400000L
+#define SQ_CONFIG1__DISABLE_SP_VGPR_COLLAPSE_MASK 0x00800000L
+#define SQ_CONFIG1__SP_FGCG_REP_OVERRIDE_MASK 0x01000000L
+#define SQ_CONFIG1__DPMACC_MGCG_OVERRIDE_MASK 0x02000000L
+#define SQ_CONFIG1__XDLMACC_MGCG_OVERRIDE_MASK 0x04000000L
+#define SQ_CONFIG1__TRANSMACC_MGCG_OVERRIDE_MASK 0x08000000L
+#define SQ_CONFIG1__SPMACC_MGCG_OVERRIDE_MASK 0x10000000L
+#define SQ_CONFIG1__DPMACC_DGEMM2X_MGCG_OVERRIDE_MASK 0x20000000L
+#define SQ_CONFIG1__DISABLE_SP_VGPR_READ_SKIP_MASK 0x40000000L
+#define SQ_CONFIG1__SP_SRC_1ST_BUFFER_MGCG_OVERRIDE_MASK 0x80000000L
+//SQ_CMD
+#define SQ_CMD__CMD__SHIFT 0x0
+#define SQ_CMD__MODE__SHIFT 0x4
+#define SQ_CMD__CHECK_VMID__SHIFT 0x7
+#define SQ_CMD__DATA__SHIFT 0x8
+#define SQ_CMD__WAVE_ID__SHIFT 0x10
+#define SQ_CMD__SIMD_ID__SHIFT 0x14
+#define SQ_CMD__QUEUE_ID__SHIFT 0x18
+#define SQ_CMD__VM_ID__SHIFT 0x1c
+#define SQ_CMD__CMD_MASK 0x00000007L
+#define SQ_CMD__MODE_MASK 0x00000070L
+#define SQ_CMD__CHECK_VMID_MASK 0x00000080L
+#define SQ_CMD__DATA_MASK 0x00000F00L
+#define SQ_CMD__WAVE_ID_MASK 0x000F0000L
+#define SQ_CMD__SIMD_ID_MASK 0x00300000L
+#define SQ_CMD__QUEUE_ID_MASK 0x07000000L
+#define SQ_CMD__VM_ID_MASK 0xF0000000L
+//SQ_TIME_HI
+#define SQ_TIME_HI__TIME__SHIFT 0x0
+#define SQ_TIME_HI__TIME_MASK 0xFFFFFFFFL
+//SQ_TIME_LO
+#define SQ_TIME_LO__TIME__SHIFT 0x0
+#define SQ_TIME_LO__TIME_MASK 0xFFFFFFFFL
+//SQ_DS_0
+#define SQ_DS_0__OFFSET0__SHIFT 0x0
+#define SQ_DS_0__OFFSET1__SHIFT 0x8
+#define SQ_DS_0__GDS__SHIFT 0x10
+#define SQ_DS_0__OP__SHIFT 0x11
+#define SQ_DS_0__ACC__SHIFT 0x19
+#define SQ_DS_0__ENCODING__SHIFT 0x1a
+#define SQ_DS_0__OFFSET0_MASK 0x000000FFL
+#define SQ_DS_0__OFFSET1_MASK 0x0000FF00L
+#define SQ_DS_0__GDS_MASK 0x00010000L
+#define SQ_DS_0__OP_MASK 0x01FE0000L
+#define SQ_DS_0__ACC_MASK 0x02000000L
+#define SQ_DS_0__ENCODING_MASK 0xFC000000L
+//SQ_DS_1
+#define SQ_DS_1__ADDR__SHIFT 0x0
+#define SQ_DS_1__DATA0__SHIFT 0x8
+#define SQ_DS_1__DATA1__SHIFT 0x10
+#define SQ_DS_1__VDST__SHIFT 0x18
+#define SQ_DS_1__ADDR_MASK 0x000000FFL
+#define SQ_DS_1__DATA0_MASK 0x0000FF00L
+#define SQ_DS_1__DATA1_MASK 0x00FF0000L
+#define SQ_DS_1__VDST_MASK 0xFF000000L
+//SQ_EXP_0
+#define SQ_EXP_0__EN__SHIFT 0x0
+#define SQ_EXP_0__TGT__SHIFT 0x4
+#define SQ_EXP_0__COMPR__SHIFT 0xa
+#define SQ_EXP_0__DONE__SHIFT 0xb
+#define SQ_EXP_0__VM__SHIFT 0xc
+#define SQ_EXP_0__ENCODING__SHIFT 0x1a
+#define SQ_EXP_0__EN_MASK 0x0000000FL
+#define SQ_EXP_0__TGT_MASK 0x000003F0L
+#define SQ_EXP_0__COMPR_MASK 0x00000400L
+#define SQ_EXP_0__DONE_MASK 0x00000800L
+#define SQ_EXP_0__VM_MASK 0x00001000L
+#define SQ_EXP_0__ENCODING_MASK 0xFC000000L
+//SQ_EXP_1
+#define SQ_EXP_1__VSRC0__SHIFT 0x0
+#define SQ_EXP_1__VSRC1__SHIFT 0x8
+#define SQ_EXP_1__VSRC2__SHIFT 0x10
+#define SQ_EXP_1__VSRC3__SHIFT 0x18
+#define SQ_EXP_1__VSRC0_MASK 0x000000FFL
+#define SQ_EXP_1__VSRC1_MASK 0x0000FF00L
+#define SQ_EXP_1__VSRC2_MASK 0x00FF0000L
+#define SQ_EXP_1__VSRC3_MASK 0xFF000000L
+//SQ_FLAT_0
+#define SQ_FLAT_0__OFFSET__SHIFT 0x0
+#define SQ_FLAT_0__SVE__SHIFT 0xd
+#define SQ_FLAT_0__SEG__SHIFT 0xe
+#define SQ_FLAT_0__SC0__SHIFT 0x10
+#define SQ_FLAT_0__NT__SHIFT 0x11
+#define SQ_FLAT_0__OP__SHIFT 0x12
+#define SQ_FLAT_0__SC1__SHIFT 0x19
+#define SQ_FLAT_0__ENCODING__SHIFT 0x1a
+#define SQ_FLAT_0__OFFSET_MASK 0x00000FFFL
+#define SQ_FLAT_0__SVE_MASK 0x00002000L
+#define SQ_FLAT_0__SEG_MASK 0x0000C000L
+#define SQ_FLAT_0__SC0_MASK 0x00010000L
+#define SQ_FLAT_0__NT_MASK 0x00020000L
+#define SQ_FLAT_0__OP_MASK 0x01FC0000L
+#define SQ_FLAT_0__SC1_MASK 0x02000000L
+#define SQ_FLAT_0__ENCODING_MASK 0xFC000000L
+//SQ_FLAT_1
+#define SQ_FLAT_1__ADDR__SHIFT 0x0
+#define SQ_FLAT_1__DATA__SHIFT 0x8
+#define SQ_FLAT_1__SADDR__SHIFT 0x10
+#define SQ_FLAT_1__ACC__SHIFT 0x17
+#define SQ_FLAT_1__VDST__SHIFT 0x18
+#define SQ_FLAT_1__ADDR_MASK 0x000000FFL
+#define SQ_FLAT_1__DATA_MASK 0x0000FF00L
+#define SQ_FLAT_1__SADDR_MASK 0x007F0000L
+#define SQ_FLAT_1__ACC_MASK 0x00800000L
+#define SQ_FLAT_1__VDST_MASK 0xFF000000L
+//SQ_GLBL_0
+#define SQ_GLBL_0__OFFSET__SHIFT 0x0
+#define SQ_GLBL_0__SVE__SHIFT 0xd
+#define SQ_GLBL_0__SEG__SHIFT 0xe
+#define SQ_GLBL_0__SC0__SHIFT 0x10
+#define SQ_GLBL_0__NT__SHIFT 0x11
+#define SQ_GLBL_0__OP__SHIFT 0x12
+#define SQ_GLBL_0__SC1__SHIFT 0x19
+#define SQ_GLBL_0__ENCODING__SHIFT 0x1a
+#define SQ_GLBL_0__OFFSET_MASK 0x00001FFFL
+#define SQ_GLBL_0__SVE_MASK 0x00002000L
+#define SQ_GLBL_0__SEG_MASK 0x0000C000L
+#define SQ_GLBL_0__SC0_MASK 0x00010000L
+#define SQ_GLBL_0__NT_MASK 0x00020000L
+#define SQ_GLBL_0__OP_MASK 0x01FC0000L
+#define SQ_GLBL_0__SC1_MASK 0x02000000L
+#define SQ_GLBL_0__ENCODING_MASK 0xFC000000L
+//SQ_GLBL_1
+#define SQ_GLBL_1__ADDR__SHIFT 0x0
+#define SQ_GLBL_1__DATA__SHIFT 0x8
+#define SQ_GLBL_1__SADDR__SHIFT 0x10
+#define SQ_GLBL_1__ACC__SHIFT 0x17
+#define SQ_GLBL_1__VDST__SHIFT 0x18
+#define SQ_GLBL_1__ADDR_MASK 0x000000FFL
+#define SQ_GLBL_1__DATA_MASK 0x0000FF00L
+#define SQ_GLBL_1__SADDR_MASK 0x007F0000L
+#define SQ_GLBL_1__ACC_MASK 0x00800000L
+#define SQ_GLBL_1__VDST_MASK 0xFF000000L
+//SQ_INST
+#define SQ_INST__ENCODING__SHIFT 0x0
+#define SQ_INST__ENCODING_MASK 0xFFFFFFFFL
+//SQ_MIMG_0
+#define SQ_MIMG_0__OPM__SHIFT 0x0
+#define SQ_MIMG_0__SC1__SHIFT 0x7
+#define SQ_MIMG_0__DMASK__SHIFT 0x8
+#define SQ_MIMG_0__UNORM__SHIFT 0xc
+#define SQ_MIMG_0__SC0__SHIFT 0xd
+#define SQ_MIMG_0__DA__SHIFT 0xe
+#define SQ_MIMG_0__A16__SHIFT 0xf
+#define SQ_MIMG_0__ACC__SHIFT 0x10
+#define SQ_MIMG_0__LWE__SHIFT 0x11
+#define SQ_MIMG_0__OP__SHIFT 0x12
+#define SQ_MIMG_0__NT__SHIFT 0x19
+#define SQ_MIMG_0__ENCODING__SHIFT 0x1a
+#define SQ_MIMG_0__OPM_MASK 0x00000001L
+#define SQ_MIMG_0__SC1_MASK 0x00000080L
+#define SQ_MIMG_0__DMASK_MASK 0x00000F00L
+#define SQ_MIMG_0__UNORM_MASK 0x00001000L
+#define SQ_MIMG_0__SC0_MASK 0x00002000L
+#define SQ_MIMG_0__DA_MASK 0x00004000L
+#define SQ_MIMG_0__A16_MASK 0x00008000L
+#define SQ_MIMG_0__ACC_MASK 0x00010000L
+#define SQ_MIMG_0__LWE_MASK 0x00020000L
+#define SQ_MIMG_0__OP_MASK 0x01FC0000L
+#define SQ_MIMG_0__NT_MASK 0x02000000L
+#define SQ_MIMG_0__ENCODING_MASK 0xFC000000L
+//SQ_MIMG_1
+#define SQ_MIMG_1__VADDR__SHIFT 0x0
+#define SQ_MIMG_1__VDATA__SHIFT 0x8
+#define SQ_MIMG_1__SRSRC__SHIFT 0x10
+#define SQ_MIMG_1__SSAMP__SHIFT 0x15
+#define SQ_MIMG_1__D16__SHIFT 0x1f
+#define SQ_MIMG_1__VADDR_MASK 0x000000FFL
+#define SQ_MIMG_1__VDATA_MASK 0x0000FF00L
+#define SQ_MIMG_1__SRSRC_MASK 0x001F0000L
+#define SQ_MIMG_1__SSAMP_MASK 0x03E00000L
+#define SQ_MIMG_1__D16_MASK 0x80000000L
+//SQ_MTBUF_0
+#define SQ_MTBUF_0__OFFSET__SHIFT 0x0
+#define SQ_MTBUF_0__OFFEN__SHIFT 0xc
+#define SQ_MTBUF_0__IDXEN__SHIFT 0xd
+#define SQ_MTBUF_0__SC0__SHIFT 0xe
+#define SQ_MTBUF_0__OP__SHIFT 0xf
+#define SQ_MTBUF_0__DFMT__SHIFT 0x13
+#define SQ_MTBUF_0__NFMT__SHIFT 0x17
+#define SQ_MTBUF_0__ENCODING__SHIFT 0x1a
+#define SQ_MTBUF_0__OFFSET_MASK 0x00000FFFL
+#define SQ_MTBUF_0__OFFEN_MASK 0x00001000L
+#define SQ_MTBUF_0__IDXEN_MASK 0x00002000L
+#define SQ_MTBUF_0__SC0_MASK 0x00004000L
+#define SQ_MTBUF_0__OP_MASK 0x00078000L
+#define SQ_MTBUF_0__DFMT_MASK 0x00780000L
+#define SQ_MTBUF_0__NFMT_MASK 0x03800000L
+#define SQ_MTBUF_0__ENCODING_MASK 0xFC000000L
+//SQ_MTBUF_1
+#define SQ_MTBUF_1__VADDR__SHIFT 0x0
+#define SQ_MTBUF_1__VDATA__SHIFT 0x8
+#define SQ_MTBUF_1__SRSRC__SHIFT 0x10
+#define SQ_MTBUF_1__SC1__SHIFT 0x15
+#define SQ_MTBUF_1__NT__SHIFT 0x16
+#define SQ_MTBUF_1__ACC__SHIFT 0x17
+#define SQ_MTBUF_1__SOFFSET__SHIFT 0x18
+#define SQ_MTBUF_1__VADDR_MASK 0x000000FFL
+#define SQ_MTBUF_1__VDATA_MASK 0x0000FF00L
+#define SQ_MTBUF_1__SRSRC_MASK 0x001F0000L
+#define SQ_MTBUF_1__SC1_MASK 0x00200000L
+#define SQ_MTBUF_1__NT_MASK 0x00400000L
+#define SQ_MTBUF_1__ACC_MASK 0x00800000L
+#define SQ_MTBUF_1__SOFFSET_MASK 0xFF000000L
+//SQ_MUBUF_0
+#define SQ_MUBUF_0__OFFSET__SHIFT 0x0
+#define SQ_MUBUF_0__OFFEN__SHIFT 0xc
+#define SQ_MUBUF_0__IDXEN__SHIFT 0xd
+#define SQ_MUBUF_0__SC0__SHIFT 0xe
+#define SQ_MUBUF_0__SC1__SHIFT 0xf
+#define SQ_MUBUF_0__LDS__SHIFT 0x10
+#define SQ_MUBUF_0__NT__SHIFT 0x11
+#define SQ_MUBUF_0__OP__SHIFT 0x12
+#define SQ_MUBUF_0__ENCODING__SHIFT 0x1a
+#define SQ_MUBUF_0__OFFSET_MASK 0x00000FFFL
+#define SQ_MUBUF_0__OFFEN_MASK 0x00001000L
+#define SQ_MUBUF_0__IDXEN_MASK 0x00002000L
+#define SQ_MUBUF_0__SC0_MASK 0x00004000L
+#define SQ_MUBUF_0__SC1_MASK 0x00008000L
+#define SQ_MUBUF_0__LDS_MASK 0x00010000L
+#define SQ_MUBUF_0__NT_MASK 0x00020000L
+#define SQ_MUBUF_0__OP_MASK 0x01FC0000L
+#define SQ_MUBUF_0__ENCODING_MASK 0xFC000000L
+//SQ_MUBUF_1
+#define SQ_MUBUF_1__VADDR__SHIFT 0x0
+#define SQ_MUBUF_1__VDATA__SHIFT 0x8
+#define SQ_MUBUF_1__SRSRC__SHIFT 0x10
+#define SQ_MUBUF_1__ACC__SHIFT 0x17
+#define SQ_MUBUF_1__SOFFSET__SHIFT 0x18
+#define SQ_MUBUF_1__VADDR_MASK 0x000000FFL
+#define SQ_MUBUF_1__VDATA_MASK 0x0000FF00L
+#define SQ_MUBUF_1__SRSRC_MASK 0x001F0000L
+#define SQ_MUBUF_1__ACC_MASK 0x00800000L
+#define SQ_MUBUF_1__SOFFSET_MASK 0xFF000000L
+//SQ_SCRATCH_0
+#define SQ_SCRATCH_0__OFFSET__SHIFT 0x0
+#define SQ_SCRATCH_0__SVE__SHIFT 0xd
+#define SQ_SCRATCH_0__SEG__SHIFT 0xe
+#define SQ_SCRATCH_0__SC0__SHIFT 0x10
+#define SQ_SCRATCH_0__NT__SHIFT 0x11
+#define SQ_SCRATCH_0__OP__SHIFT 0x12
+#define SQ_SCRATCH_0__SC1__SHIFT 0x19
+#define SQ_SCRATCH_0__ENCODING__SHIFT 0x1a
+#define SQ_SCRATCH_0__OFFSET_MASK 0x00001FFFL
+#define SQ_SCRATCH_0__SVE_MASK 0x00002000L
+#define SQ_SCRATCH_0__SEG_MASK 0x0000C000L
+#define SQ_SCRATCH_0__SC0_MASK 0x00010000L
+#define SQ_SCRATCH_0__NT_MASK 0x00020000L
+#define SQ_SCRATCH_0__OP_MASK 0x01FC0000L
+#define SQ_SCRATCH_0__SC1_MASK 0x02000000L
+#define SQ_SCRATCH_0__ENCODING_MASK 0xFC000000L
+//SQ_SCRATCH_1
+#define SQ_SCRATCH_1__ADDR__SHIFT 0x0
+#define SQ_SCRATCH_1__DATA__SHIFT 0x8
+#define SQ_SCRATCH_1__SADDR__SHIFT 0x10
+#define SQ_SCRATCH_1__ACC__SHIFT 0x17
+#define SQ_SCRATCH_1__VDST__SHIFT 0x18
+#define SQ_SCRATCH_1__ADDR_MASK 0x000000FFL
+#define SQ_SCRATCH_1__DATA_MASK 0x0000FF00L
+#define SQ_SCRATCH_1__SADDR_MASK 0x007F0000L
+#define SQ_SCRATCH_1__ACC_MASK 0x00800000L
+#define SQ_SCRATCH_1__VDST_MASK 0xFF000000L
+//SQ_SMEM_0
+#define SQ_SMEM_0__SBASE__SHIFT 0x0
+#define SQ_SMEM_0__SDATA__SHIFT 0x6
+#define SQ_SMEM_0__SOFFSET_EN__SHIFT 0xe
+#define SQ_SMEM_0__NV__SHIFT 0xf
+#define SQ_SMEM_0__GLC__SHIFT 0x10
+#define SQ_SMEM_0__IMM__SHIFT 0x11
+#define SQ_SMEM_0__OP__SHIFT 0x12
+#define SQ_SMEM_0__ENCODING__SHIFT 0x1a
+#define SQ_SMEM_0__SBASE_MASK 0x0000003FL
+#define SQ_SMEM_0__SDATA_MASK 0x00001FC0L
+#define SQ_SMEM_0__SOFFSET_EN_MASK 0x00004000L
+#define SQ_SMEM_0__NV_MASK 0x00008000L
+#define SQ_SMEM_0__GLC_MASK 0x00010000L
+#define SQ_SMEM_0__IMM_MASK 0x00020000L
+#define SQ_SMEM_0__OP_MASK 0x03FC0000L
+#define SQ_SMEM_0__ENCODING_MASK 0xFC000000L
+//SQ_SMEM_1
+#define SQ_SMEM_1__OFFSET__SHIFT 0x0
+#define SQ_SMEM_1__SOFFSET__SHIFT 0x19
+#define SQ_SMEM_1__OFFSET_MASK 0x001FFFFFL
+#define SQ_SMEM_1__SOFFSET_MASK 0xFE000000L
+//SQ_SOP1
+#define SQ_SOP1__SSRC0__SHIFT 0x0
+#define SQ_SOP1__OP__SHIFT 0x8
+#define SQ_SOP1__SDST__SHIFT 0x10
+#define SQ_SOP1__ENCODING__SHIFT 0x17
+#define SQ_SOP1__SSRC0_MASK 0x000000FFL
+#define SQ_SOP1__OP_MASK 0x0000FF00L
+#define SQ_SOP1__SDST_MASK 0x007F0000L
+#define SQ_SOP1__ENCODING_MASK 0xFF800000L
+//SQ_SOP2
+#define SQ_SOP2__SSRC0__SHIFT 0x0
+#define SQ_SOP2__SSRC1__SHIFT 0x8
+#define SQ_SOP2__SDST__SHIFT 0x10
+#define SQ_SOP2__OP__SHIFT 0x17
+#define SQ_SOP2__ENCODING__SHIFT 0x1e
+#define SQ_SOP2__SSRC0_MASK 0x000000FFL
+#define SQ_SOP2__SSRC1_MASK 0x0000FF00L
+#define SQ_SOP2__SDST_MASK 0x007F0000L
+#define SQ_SOP2__OP_MASK 0x3F800000L
+#define SQ_SOP2__ENCODING_MASK 0xC0000000L
+//SQ_SOPC
+#define SQ_SOPC__SSRC0__SHIFT 0x0
+#define SQ_SOPC__SSRC1__SHIFT 0x8
+#define SQ_SOPC__OP__SHIFT 0x10
+#define SQ_SOPC__ENCODING__SHIFT 0x17
+#define SQ_SOPC__SSRC0_MASK 0x000000FFL
+#define SQ_SOPC__SSRC1_MASK 0x0000FF00L
+#define SQ_SOPC__OP_MASK 0x007F0000L
+#define SQ_SOPC__ENCODING_MASK 0xFF800000L
+//SQ_SOPK
+#define SQ_SOPK__SIMM16__SHIFT 0x0
+#define SQ_SOPK__SDST__SHIFT 0x10
+#define SQ_SOPK__OP__SHIFT 0x17
+#define SQ_SOPK__ENCODING__SHIFT 0x1c
+#define SQ_SOPK__SIMM16_MASK 0x0000FFFFL
+#define SQ_SOPK__SDST_MASK 0x007F0000L
+#define SQ_SOPK__OP_MASK 0x0F800000L
+#define SQ_SOPK__ENCODING_MASK 0xF0000000L
+//SQ_SOPP
+#define SQ_SOPP__SIMM16__SHIFT 0x0
+#define SQ_SOPP__OP__SHIFT 0x10
+#define SQ_SOPP__ENCODING__SHIFT 0x17
+#define SQ_SOPP__SIMM16_MASK 0x0000FFFFL
+#define SQ_SOPP__OP_MASK 0x007F0000L
+#define SQ_SOPP__ENCODING_MASK 0xFF800000L
+//SQ_VINTRP
+#define SQ_VINTRP__VSRC__SHIFT 0x0
+#define SQ_VINTRP__ATTRCHAN__SHIFT 0x8
+#define SQ_VINTRP__ATTR__SHIFT 0xa
+#define SQ_VINTRP__OP__SHIFT 0x10
+#define SQ_VINTRP__VDST__SHIFT 0x12
+#define SQ_VINTRP__ENCODING__SHIFT 0x1a
+#define SQ_VINTRP__VSRC_MASK 0x000000FFL
+#define SQ_VINTRP__ATTRCHAN_MASK 0x00000300L
+#define SQ_VINTRP__ATTR_MASK 0x0000FC00L
+#define SQ_VINTRP__OP_MASK 0x00030000L
+#define SQ_VINTRP__VDST_MASK 0x03FC0000L
+#define SQ_VINTRP__ENCODING_MASK 0xFC000000L
+//SQ_VOP1
+#define SQ_VOP1__SRC0__SHIFT 0x0
+#define SQ_VOP1__OP__SHIFT 0x9
+#define SQ_VOP1__VDST__SHIFT 0x11
+#define SQ_VOP1__ENCODING__SHIFT 0x19
+#define SQ_VOP1__SRC0_MASK 0x000001FFL
+#define SQ_VOP1__OP_MASK 0x0001FE00L
+#define SQ_VOP1__VDST_MASK 0x01FE0000L
+#define SQ_VOP1__ENCODING_MASK 0xFE000000L
+//SQ_VOP2
+#define SQ_VOP2__SRC0__SHIFT 0x0
+#define SQ_VOP2__VSRC1__SHIFT 0x9
+#define SQ_VOP2__VDST__SHIFT 0x11
+#define SQ_VOP2__OP__SHIFT 0x19
+#define SQ_VOP2__ENCODING__SHIFT 0x1f
+#define SQ_VOP2__SRC0_MASK 0x000001FFL
+#define SQ_VOP2__VSRC1_MASK 0x0001FE00L
+#define SQ_VOP2__VDST_MASK 0x01FE0000L
+#define SQ_VOP2__OP_MASK 0x7E000000L
+#define SQ_VOP2__ENCODING_MASK 0x80000000L
+//SQ_VOP3P_0
+#define SQ_VOP3P_0__VDST__SHIFT 0x0
+#define SQ_VOP3P_0__NEG_HI__SHIFT 0x8
+#define SQ_VOP3P_0__OP_SEL__SHIFT 0xb
+#define SQ_VOP3P_0__OP_SEL_HI_2__SHIFT 0xe
+#define SQ_VOP3P_0__CLAMP__SHIFT 0xf
+#define SQ_VOP3P_0__OP__SHIFT 0x10
+#define SQ_VOP3P_0__ENCODING__SHIFT 0x17
+#define SQ_VOP3P_0__VDST_MASK 0x000000FFL
+#define SQ_VOP3P_0__NEG_HI_MASK 0x00000700L
+#define SQ_VOP3P_0__OP_SEL_MASK 0x00003800L
+#define SQ_VOP3P_0__OP_SEL_HI_2_MASK 0x00004000L
+#define SQ_VOP3P_0__CLAMP_MASK 0x00008000L
+#define SQ_VOP3P_0__OP_MASK 0x007F0000L
+#define SQ_VOP3P_0__ENCODING_MASK 0xFF800000L
+//SQ_VOP3P_1
+#define SQ_VOP3P_1__SRC0__SHIFT 0x0
+#define SQ_VOP3P_1__SRC1__SHIFT 0x9
+#define SQ_VOP3P_1__SRC2__SHIFT 0x12
+#define SQ_VOP3P_1__OP_SEL_HI__SHIFT 0x1b
+#define SQ_VOP3P_1__NEG__SHIFT 0x1d
+#define SQ_VOP3P_1__SRC0_MASK 0x000001FFL
+#define SQ_VOP3P_1__SRC1_MASK 0x0003FE00L
+#define SQ_VOP3P_1__SRC2_MASK 0x07FC0000L
+#define SQ_VOP3P_1__OP_SEL_HI_MASK 0x18000000L
+#define SQ_VOP3P_1__NEG_MASK 0xE0000000L
+//SQ_VOP3P_MFMA_0
+#define SQ_VOP3P_MFMA_0__VDST__SHIFT 0x0
+#define SQ_VOP3P_MFMA_0__CBSZ__SHIFT 0x8
+#define SQ_VOP3P_MFMA_0__ABID__SHIFT 0xb
+#define SQ_VOP3P_MFMA_0__ACC_CD__SHIFT 0xf
+#define SQ_VOP3P_MFMA_0__OP__SHIFT 0x10
+#define SQ_VOP3P_MFMA_0__ENCODING__SHIFT 0x17
+#define SQ_VOP3P_MFMA_0__VDST_MASK 0x000000FFL
+#define SQ_VOP3P_MFMA_0__CBSZ_MASK 0x00000700L
+#define SQ_VOP3P_MFMA_0__ABID_MASK 0x00007800L
+#define SQ_VOP3P_MFMA_0__ACC_CD_MASK 0x00008000L
+#define SQ_VOP3P_MFMA_0__OP_MASK 0x007F0000L
+#define SQ_VOP3P_MFMA_0__ENCODING_MASK 0xFF800000L
+//SQ_VOP3P_MFMA_1
+#define SQ_VOP3P_MFMA_1__SRC0__SHIFT 0x0
+#define SQ_VOP3P_MFMA_1__SRC1__SHIFT 0x9
+#define SQ_VOP3P_MFMA_1__SRC2__SHIFT 0x12
+#define SQ_VOP3P_MFMA_1__ACC__SHIFT 0x1b
+#define SQ_VOP3P_MFMA_1__BLGP__SHIFT 0x1d
+#define SQ_VOP3P_MFMA_1__SRC0_MASK 0x000001FFL
+#define SQ_VOP3P_MFMA_1__SRC1_MASK 0x0003FE00L
+#define SQ_VOP3P_MFMA_1__SRC2_MASK 0x07FC0000L
+#define SQ_VOP3P_MFMA_1__ACC_MASK 0x18000000L
+#define SQ_VOP3P_MFMA_1__BLGP_MASK 0xE0000000L
+//SQ_VOP3_0
+#define SQ_VOP3_0__VDST__SHIFT 0x0
+#define SQ_VOP3_0__ABS__SHIFT 0x8
+#define SQ_VOP3_0__OP_SEL__SHIFT 0xb
+#define SQ_VOP3_0__CLAMP__SHIFT 0xf
+#define SQ_VOP3_0__OP__SHIFT 0x10
+#define SQ_VOP3_0__ENCODING__SHIFT 0x1a
+#define SQ_VOP3_0__VDST_MASK 0x000000FFL
+#define SQ_VOP3_0__ABS_MASK 0x00000700L
+#define SQ_VOP3_0__OP_SEL_MASK 0x00007800L
+#define SQ_VOP3_0__CLAMP_MASK 0x00008000L
+#define SQ_VOP3_0__OP_MASK 0x03FF0000L
+#define SQ_VOP3_0__ENCODING_MASK 0xFC000000L
+//SQ_VOP3_0_SDST_ENC
+#define SQ_VOP3_0_SDST_ENC__VDST__SHIFT 0x0
+#define SQ_VOP3_0_SDST_ENC__SDST__SHIFT 0x8
+#define SQ_VOP3_0_SDST_ENC__CLAMP__SHIFT 0xf
+#define SQ_VOP3_0_SDST_ENC__OP__SHIFT 0x10
+#define SQ_VOP3_0_SDST_ENC__ENCODING__SHIFT 0x1a
+#define SQ_VOP3_0_SDST_ENC__VDST_MASK 0x000000FFL
+#define SQ_VOP3_0_SDST_ENC__SDST_MASK 0x00007F00L
+#define SQ_VOP3_0_SDST_ENC__CLAMP_MASK 0x00008000L
+#define SQ_VOP3_0_SDST_ENC__OP_MASK 0x03FF0000L
+#define SQ_VOP3_0_SDST_ENC__ENCODING_MASK 0xFC000000L
+//SQ_VOP3_1
+#define SQ_VOP3_1__SRC0__SHIFT 0x0
+#define SQ_VOP3_1__SRC1__SHIFT 0x9
+#define SQ_VOP3_1__SRC2__SHIFT 0x12
+#define SQ_VOP3_1__OMOD__SHIFT 0x1b
+#define SQ_VOP3_1__NEG__SHIFT 0x1d
+#define SQ_VOP3_1__SRC0_MASK 0x000001FFL
+#define SQ_VOP3_1__SRC1_MASK 0x0003FE00L
+#define SQ_VOP3_1__SRC2_MASK 0x07FC0000L
+#define SQ_VOP3_1__OMOD_MASK 0x18000000L
+#define SQ_VOP3_1__NEG_MASK 0xE0000000L
+//SQ_VOPC
+#define SQ_VOPC__SRC0__SHIFT 0x0
+#define SQ_VOPC__VSRC1__SHIFT 0x9
+#define SQ_VOPC__OP__SHIFT 0x11
+#define SQ_VOPC__ENCODING__SHIFT 0x19
+#define SQ_VOPC__SRC0_MASK 0x000001FFL
+#define SQ_VOPC__VSRC1_MASK 0x0001FE00L
+#define SQ_VOPC__OP_MASK 0x01FE0000L
+#define SQ_VOPC__ENCODING_MASK 0xFE000000L
+//SQ_VOP_DPP
+#define SQ_VOP_DPP__SRC0__SHIFT 0x0
+#define SQ_VOP_DPP__DPP_CTRL__SHIFT 0x8
+#define SQ_VOP_DPP__BOUND_CTRL__SHIFT 0x13
+#define SQ_VOP_DPP__SRC0_NEG__SHIFT 0x14
+#define SQ_VOP_DPP__SRC0_ABS__SHIFT 0x15
+#define SQ_VOP_DPP__SRC1_NEG__SHIFT 0x16
+#define SQ_VOP_DPP__SRC1_ABS__SHIFT 0x17
+#define SQ_VOP_DPP__BANK_MASK__SHIFT 0x18
+#define SQ_VOP_DPP__ROW_MASK__SHIFT 0x1c
+#define SQ_VOP_DPP__SRC0_MASK 0x000000FFL
+#define SQ_VOP_DPP__DPP_CTRL_MASK 0x0001FF00L
+#define SQ_VOP_DPP__BOUND_CTRL_MASK 0x00080000L
+#define SQ_VOP_DPP__SRC0_NEG_MASK 0x00100000L
+#define SQ_VOP_DPP__SRC0_ABS_MASK 0x00200000L
+#define SQ_VOP_DPP__SRC1_NEG_MASK 0x00400000L
+#define SQ_VOP_DPP__SRC1_ABS_MASK 0x00800000L
+#define SQ_VOP_DPP__BANK_MASK_MASK 0x0F000000L
+#define SQ_VOP_DPP__ROW_MASK_MASK 0xF0000000L
+//SQ_VOP_SDWA
+#define SQ_VOP_SDWA__SRC0__SHIFT 0x0
+#define SQ_VOP_SDWA__DST_SEL__SHIFT 0x8
+#define SQ_VOP_SDWA__DST_UNUSED__SHIFT 0xb
+#define SQ_VOP_SDWA__CLAMP__SHIFT 0xd
+#define SQ_VOP_SDWA__OMOD__SHIFT 0xe
+#define SQ_VOP_SDWA__SRC0_SEL__SHIFT 0x10
+#define SQ_VOP_SDWA__SRC0_SEXT__SHIFT 0x13
+#define SQ_VOP_SDWA__SRC0_NEG__SHIFT 0x14
+#define SQ_VOP_SDWA__SRC0_ABS__SHIFT 0x15
+#define SQ_VOP_SDWA__S0__SHIFT 0x17
+#define SQ_VOP_SDWA__SRC1_SEL__SHIFT 0x18
+#define SQ_VOP_SDWA__SRC1_SEXT__SHIFT 0x1b
+#define SQ_VOP_SDWA__SRC1_NEG__SHIFT 0x1c
+#define SQ_VOP_SDWA__SRC1_ABS__SHIFT 0x1d
+#define SQ_VOP_SDWA__S1__SHIFT 0x1f
+#define SQ_VOP_SDWA__SRC0_MASK 0x000000FFL
+#define SQ_VOP_SDWA__DST_SEL_MASK 0x00000700L
+#define SQ_VOP_SDWA__DST_UNUSED_MASK 0x00001800L
+#define SQ_VOP_SDWA__CLAMP_MASK 0x00002000L
+#define SQ_VOP_SDWA__OMOD_MASK 0x0000C000L
+#define SQ_VOP_SDWA__SRC0_SEL_MASK 0x00070000L
+#define SQ_VOP_SDWA__SRC0_SEXT_MASK 0x00080000L
+#define SQ_VOP_SDWA__SRC0_NEG_MASK 0x00100000L
+#define SQ_VOP_SDWA__SRC0_ABS_MASK 0x00200000L
+#define SQ_VOP_SDWA__S0_MASK 0x00800000L
+#define SQ_VOP_SDWA__SRC1_SEL_MASK 0x07000000L
+#define SQ_VOP_SDWA__SRC1_SEXT_MASK 0x08000000L
+#define SQ_VOP_SDWA__SRC1_NEG_MASK 0x10000000L
+#define SQ_VOP_SDWA__SRC1_ABS_MASK 0x20000000L
+#define SQ_VOP_SDWA__S1_MASK 0x80000000L
+//SQ_VOP_SDWA_SDST_ENC
+#define SQ_VOP_SDWA_SDST_ENC__SRC0__SHIFT 0x0
+#define SQ_VOP_SDWA_SDST_ENC__SDST__SHIFT 0x8
+#define SQ_VOP_SDWA_SDST_ENC__SD__SHIFT 0xf
+#define SQ_VOP_SDWA_SDST_ENC__SRC0_SEL__SHIFT 0x10
+#define SQ_VOP_SDWA_SDST_ENC__SRC0_SEXT__SHIFT 0x13
+#define SQ_VOP_SDWA_SDST_ENC__SRC0_NEG__SHIFT 0x14
+#define SQ_VOP_SDWA_SDST_ENC__SRC0_ABS__SHIFT 0x15
+#define SQ_VOP_SDWA_SDST_ENC__S0__SHIFT 0x17
+#define SQ_VOP_SDWA_SDST_ENC__SRC1_SEL__SHIFT 0x18
+#define SQ_VOP_SDWA_SDST_ENC__SRC1_SEXT__SHIFT 0x1b
+#define SQ_VOP_SDWA_SDST_ENC__SRC1_NEG__SHIFT 0x1c
+#define SQ_VOP_SDWA_SDST_ENC__SRC1_ABS__SHIFT 0x1d
+#define SQ_VOP_SDWA_SDST_ENC__S1__SHIFT 0x1f
+#define SQ_VOP_SDWA_SDST_ENC__SRC0_MASK 0x000000FFL
+#define SQ_VOP_SDWA_SDST_ENC__SDST_MASK 0x00007F00L
+#define SQ_VOP_SDWA_SDST_ENC__SD_MASK 0x00008000L
+#define SQ_VOP_SDWA_SDST_ENC__SRC0_SEL_MASK 0x00070000L
+#define SQ_VOP_SDWA_SDST_ENC__SRC0_SEXT_MASK 0x00080000L
+#define SQ_VOP_SDWA_SDST_ENC__SRC0_NEG_MASK 0x00100000L
+#define SQ_VOP_SDWA_SDST_ENC__SRC0_ABS_MASK 0x00200000L
+#define SQ_VOP_SDWA_SDST_ENC__S0_MASK 0x00800000L
+#define SQ_VOP_SDWA_SDST_ENC__SRC1_SEL_MASK 0x07000000L
+#define SQ_VOP_SDWA_SDST_ENC__SRC1_SEXT_MASK 0x08000000L
+#define SQ_VOP_SDWA_SDST_ENC__SRC1_NEG_MASK 0x10000000L
+#define SQ_VOP_SDWA_SDST_ENC__SRC1_ABS_MASK 0x20000000L
+#define SQ_VOP_SDWA_SDST_ENC__S1_MASK 0x80000000L
+//SQ_LB_CTR_CTRL
+#define SQ_LB_CTR_CTRL__START__SHIFT 0x0
+#define SQ_LB_CTR_CTRL__LOAD__SHIFT 0x1
+#define SQ_LB_CTR_CTRL__CLEAR__SHIFT 0x2
+#define SQ_LB_CTR_CTRL__START_MASK 0x00000001L
+#define SQ_LB_CTR_CTRL__LOAD_MASK 0x00000002L
+#define SQ_LB_CTR_CTRL__CLEAR_MASK 0x00000004L
+//SQ_LB_DATA0
+#define SQ_LB_DATA0__DATA__SHIFT 0x0
+#define SQ_LB_DATA0__DATA_MASK 0xFFFFFFFFL
+//SQ_LB_DATA1
+#define SQ_LB_DATA1__DATA__SHIFT 0x0
+#define SQ_LB_DATA1__DATA_MASK 0xFFFFFFFFL
+//SQ_LB_DATA2
+#define SQ_LB_DATA2__DATA__SHIFT 0x0
+#define SQ_LB_DATA2__DATA_MASK 0xFFFFFFFFL
+//SQ_LB_DATA3
+#define SQ_LB_DATA3__DATA__SHIFT 0x0
+#define SQ_LB_DATA3__DATA_MASK 0xFFFFFFFFL
+//SQ_LB_CTR_SEL
+#define SQ_LB_CTR_SEL__SEL0__SHIFT 0x0
+#define SQ_LB_CTR_SEL__SEL1__SHIFT 0x4
+#define SQ_LB_CTR_SEL__SEL2__SHIFT 0x8
+#define SQ_LB_CTR_SEL__SEL3__SHIFT 0xc
+#define SQ_LB_CTR_SEL__SEL0_MASK 0x0000000FL
+#define SQ_LB_CTR_SEL__SEL1_MASK 0x000000F0L
+#define SQ_LB_CTR_SEL__SEL2_MASK 0x00000F00L
+#define SQ_LB_CTR_SEL__SEL3_MASK 0x0000F000L
+//SQ_LB_CTR0_CU
+#define SQ_LB_CTR0_CU__SH0_MASK__SHIFT 0x0
+#define SQ_LB_CTR0_CU__SH1_MASK__SHIFT 0x10
+#define SQ_LB_CTR0_CU__SH0_MASK_MASK 0x0000FFFFL
+#define SQ_LB_CTR0_CU__SH1_MASK_MASK 0xFFFF0000L
+//SQ_LB_CTR1_CU
+#define SQ_LB_CTR1_CU__SH0_MASK__SHIFT 0x0
+#define SQ_LB_CTR1_CU__SH1_MASK__SHIFT 0x10
+#define SQ_LB_CTR1_CU__SH0_MASK_MASK 0x0000FFFFL
+#define SQ_LB_CTR1_CU__SH1_MASK_MASK 0xFFFF0000L
+//SQ_LB_CTR2_CU
+#define SQ_LB_CTR2_CU__SH0_MASK__SHIFT 0x0
+#define SQ_LB_CTR2_CU__SH1_MASK__SHIFT 0x10
+#define SQ_LB_CTR2_CU__SH0_MASK_MASK 0x0000FFFFL
+#define SQ_LB_CTR2_CU__SH1_MASK_MASK 0xFFFF0000L
+//SQ_LB_CTR3_CU
+#define SQ_LB_CTR3_CU__SH0_MASK__SHIFT 0x0
+#define SQ_LB_CTR3_CU__SH1_MASK__SHIFT 0x10
+#define SQ_LB_CTR3_CU__SH0_MASK_MASK 0x0000FFFFL
+#define SQ_LB_CTR3_CU__SH1_MASK_MASK 0xFFFF0000L
+//SQC_EDC_CNT
+#define SQC_EDC_CNT__DATA_CU0_WRITE_DATA_BUF_SEC_COUNT__SHIFT 0x0
+#define SQC_EDC_CNT__DATA_CU0_WRITE_DATA_BUF_DED_COUNT__SHIFT 0x2
+#define SQC_EDC_CNT__DATA_CU0_UTCL1_LFIFO_SEC_COUNT__SHIFT 0x4
+#define SQC_EDC_CNT__DATA_CU0_UTCL1_LFIFO_DED_COUNT__SHIFT 0x6
+#define SQC_EDC_CNT__DATA_CU1_WRITE_DATA_BUF_SEC_COUNT__SHIFT 0x8
+#define SQC_EDC_CNT__DATA_CU1_WRITE_DATA_BUF_DED_COUNT__SHIFT 0xa
+#define SQC_EDC_CNT__DATA_CU1_UTCL1_LFIFO_SEC_COUNT__SHIFT 0xc
+#define SQC_EDC_CNT__DATA_CU1_UTCL1_LFIFO_DED_COUNT__SHIFT 0xe
+#define SQC_EDC_CNT__DATA_CU2_WRITE_DATA_BUF_SEC_COUNT__SHIFT 0x10
+#define SQC_EDC_CNT__DATA_CU2_WRITE_DATA_BUF_DED_COUNT__SHIFT 0x12
+#define SQC_EDC_CNT__DATA_CU2_UTCL1_LFIFO_SEC_COUNT__SHIFT 0x14
+#define SQC_EDC_CNT__DATA_CU2_UTCL1_LFIFO_DED_COUNT__SHIFT 0x16
+#define SQC_EDC_CNT__DATA_CU3_WRITE_DATA_BUF_SEC_COUNT__SHIFT 0x18
+#define SQC_EDC_CNT__DATA_CU3_WRITE_DATA_BUF_DED_COUNT__SHIFT 0x1a
+#define SQC_EDC_CNT__DATA_CU3_UTCL1_LFIFO_SEC_COUNT__SHIFT 0x1c
+#define SQC_EDC_CNT__DATA_CU3_UTCL1_LFIFO_DED_COUNT__SHIFT 0x1e
+#define SQC_EDC_CNT__DATA_CU0_WRITE_DATA_BUF_SEC_COUNT_MASK 0x00000003L
+#define SQC_EDC_CNT__DATA_CU0_WRITE_DATA_BUF_DED_COUNT_MASK 0x0000000CL
+#define SQC_EDC_CNT__DATA_CU0_UTCL1_LFIFO_SEC_COUNT_MASK 0x00000030L
+#define SQC_EDC_CNT__DATA_CU0_UTCL1_LFIFO_DED_COUNT_MASK 0x000000C0L
+#define SQC_EDC_CNT__DATA_CU1_WRITE_DATA_BUF_SEC_COUNT_MASK 0x00000300L
+#define SQC_EDC_CNT__DATA_CU1_WRITE_DATA_BUF_DED_COUNT_MASK 0x00000C00L
+#define SQC_EDC_CNT__DATA_CU1_UTCL1_LFIFO_SEC_COUNT_MASK 0x00003000L
+#define SQC_EDC_CNT__DATA_CU1_UTCL1_LFIFO_DED_COUNT_MASK 0x0000C000L
+#define SQC_EDC_CNT__DATA_CU2_WRITE_DATA_BUF_SEC_COUNT_MASK 0x00030000L
+#define SQC_EDC_CNT__DATA_CU2_WRITE_DATA_BUF_DED_COUNT_MASK 0x000C0000L
+#define SQC_EDC_CNT__DATA_CU2_UTCL1_LFIFO_SEC_COUNT_MASK 0x00300000L
+#define SQC_EDC_CNT__DATA_CU2_UTCL1_LFIFO_DED_COUNT_MASK 0x00C00000L
+#define SQC_EDC_CNT__DATA_CU3_WRITE_DATA_BUF_SEC_COUNT_MASK 0x03000000L
+#define SQC_EDC_CNT__DATA_CU3_WRITE_DATA_BUF_DED_COUNT_MASK 0x0C000000L
+#define SQC_EDC_CNT__DATA_CU3_UTCL1_LFIFO_SEC_COUNT_MASK 0x30000000L
+#define SQC_EDC_CNT__DATA_CU3_UTCL1_LFIFO_DED_COUNT_MASK 0xC0000000L
+//SQ_EDC_SEC_CNT
+#define SQ_EDC_SEC_CNT__LDS_SEC__SHIFT 0x0
+#define SQ_EDC_SEC_CNT__SGPR_SEC__SHIFT 0x8
+#define SQ_EDC_SEC_CNT__VGPR_SEC__SHIFT 0x10
+#define SQ_EDC_SEC_CNT__LDS_SEC_MASK 0x000000FFL
+#define SQ_EDC_SEC_CNT__SGPR_SEC_MASK 0x0000FF00L
+#define SQ_EDC_SEC_CNT__VGPR_SEC_MASK 0x00FF0000L
+//SQ_EDC_DED_CNT
+#define SQ_EDC_DED_CNT__LDS_DED__SHIFT 0x0
+#define SQ_EDC_DED_CNT__SGPR_DED__SHIFT 0x8
+#define SQ_EDC_DED_CNT__VGPR_DED__SHIFT 0x10
+#define SQ_EDC_DED_CNT__LDS_DED_MASK 0x000000FFL
+#define SQ_EDC_DED_CNT__SGPR_DED_MASK 0x0000FF00L
+#define SQ_EDC_DED_CNT__VGPR_DED_MASK 0x00FF0000L
+//SQ_EDC_INFO
+#define SQ_EDC_INFO__WAVE_ID__SHIFT 0x0
+#define SQ_EDC_INFO__SIMD_ID__SHIFT 0x4
+#define SQ_EDC_INFO__SOURCE__SHIFT 0x6
+#define SQ_EDC_INFO__VM_ID__SHIFT 0x9
+#define SQ_EDC_INFO__WAVE_ID_MASK 0x0000000FL
+#define SQ_EDC_INFO__SIMD_ID_MASK 0x00000030L
+#define SQ_EDC_INFO__SOURCE_MASK 0x000001C0L
+#define SQ_EDC_INFO__VM_ID_MASK 0x00001E00L
+//SQ_EDC_CNT
+#define SQ_EDC_CNT__LDS_D_SEC_COUNT__SHIFT 0x0
+#define SQ_EDC_CNT__LDS_D_DED_COUNT__SHIFT 0x2
+#define SQ_EDC_CNT__LDS_I_SEC_COUNT__SHIFT 0x4
+#define SQ_EDC_CNT__LDS_I_DED_COUNT__SHIFT 0x6
+#define SQ_EDC_CNT__SGPR_SEC_COUNT__SHIFT 0x8
+#define SQ_EDC_CNT__SGPR_DED_COUNT__SHIFT 0xa
+#define SQ_EDC_CNT__VGPR0_SEC_COUNT__SHIFT 0xc
+#define SQ_EDC_CNT__VGPR0_DED_COUNT__SHIFT 0xe
+#define SQ_EDC_CNT__VGPR1_SEC_COUNT__SHIFT 0x10
+#define SQ_EDC_CNT__VGPR1_DED_COUNT__SHIFT 0x12
+#define SQ_EDC_CNT__VGPR2_SEC_COUNT__SHIFT 0x14
+#define SQ_EDC_CNT__VGPR2_DED_COUNT__SHIFT 0x16
+#define SQ_EDC_CNT__VGPR3_SEC_COUNT__SHIFT 0x18
+#define SQ_EDC_CNT__VGPR3_DED_COUNT__SHIFT 0x1a
+#define SQ_EDC_CNT__LDS_D_SEC_COUNT_MASK 0x00000003L
+#define SQ_EDC_CNT__LDS_D_DED_COUNT_MASK 0x0000000CL
+#define SQ_EDC_CNT__LDS_I_SEC_COUNT_MASK 0x00000030L
+#define SQ_EDC_CNT__LDS_I_DED_COUNT_MASK 0x000000C0L
+#define SQ_EDC_CNT__SGPR_SEC_COUNT_MASK 0x00000300L
+#define SQ_EDC_CNT__SGPR_DED_COUNT_MASK 0x00000C00L
+#define SQ_EDC_CNT__VGPR0_SEC_COUNT_MASK 0x00003000L
+#define SQ_EDC_CNT__VGPR0_DED_COUNT_MASK 0x0000C000L
+#define SQ_EDC_CNT__VGPR1_SEC_COUNT_MASK 0x00030000L
+#define SQ_EDC_CNT__VGPR1_DED_COUNT_MASK 0x000C0000L
+#define SQ_EDC_CNT__VGPR2_SEC_COUNT_MASK 0x00300000L
+#define SQ_EDC_CNT__VGPR2_DED_COUNT_MASK 0x00C00000L
+#define SQ_EDC_CNT__VGPR3_SEC_COUNT_MASK 0x03000000L
+#define SQ_EDC_CNT__VGPR3_DED_COUNT_MASK 0x0C000000L
+//SQ_EDC_FUE_CNTL
+#define SQ_EDC_FUE_CNTL__BLOCK_FUE_FLAGS__SHIFT 0x0
+#define SQ_EDC_FUE_CNTL__FUE_INTERRUPT_ENABLES__SHIFT 0x10
+#define SQ_EDC_FUE_CNTL__BLOCK_FUE_FLAGS_MASK 0x0000FFFFL
+#define SQ_EDC_FUE_CNTL__FUE_INTERRUPT_ENABLES_MASK 0xFFFF0000L
+//SQ_THREAD_TRACE_WORD_CMN
+#define SQ_THREAD_TRACE_WORD_CMN__TOKEN_TYPE__SHIFT 0x0
+#define SQ_THREAD_TRACE_WORD_CMN__TIME_DELTA__SHIFT 0x4
+#define SQ_THREAD_TRACE_WORD_CMN__TOKEN_TYPE_MASK 0x000FL
+#define SQ_THREAD_TRACE_WORD_CMN__TIME_DELTA_MASK 0x0010L
+//SQ_THREAD_TRACE_WORD_EVENT
+#define SQ_THREAD_TRACE_WORD_EVENT__TOKEN_TYPE__SHIFT 0x0
+#define SQ_THREAD_TRACE_WORD_EVENT__TIME_DELTA__SHIFT 0x4
+#define SQ_THREAD_TRACE_WORD_EVENT__SH_ID__SHIFT 0x5
+#define SQ_THREAD_TRACE_WORD_EVENT__STAGE__SHIFT 0x6
+#define SQ_THREAD_TRACE_WORD_EVENT__EVENT_TYPE__SHIFT 0xa
+#define SQ_THREAD_TRACE_WORD_EVENT__TOKEN_TYPE_MASK 0x000FL
+#define SQ_THREAD_TRACE_WORD_EVENT__TIME_DELTA_MASK 0x0010L
+#define SQ_THREAD_TRACE_WORD_EVENT__SH_ID_MASK 0x0020L
+#define SQ_THREAD_TRACE_WORD_EVENT__STAGE_MASK 0x01C0L
+#define SQ_THREAD_TRACE_WORD_EVENT__EVENT_TYPE_MASK 0xFC00L
+//SQ_THREAD_TRACE_WORD_INST
+#define SQ_THREAD_TRACE_WORD_INST__TOKEN_TYPE__SHIFT 0x0
+#define SQ_THREAD_TRACE_WORD_INST__TIME_DELTA__SHIFT 0x4
+#define SQ_THREAD_TRACE_WORD_INST__WAVE_ID__SHIFT 0x5
+#define SQ_THREAD_TRACE_WORD_INST__SIMD_ID__SHIFT 0x9
+#define SQ_THREAD_TRACE_WORD_INST__INST_TYPE__SHIFT 0xb
+#define SQ_THREAD_TRACE_WORD_INST__TOKEN_TYPE_MASK 0x000FL
+#define SQ_THREAD_TRACE_WORD_INST__TIME_DELTA_MASK 0x0010L
+#define SQ_THREAD_TRACE_WORD_INST__WAVE_ID_MASK 0x01E0L
+#define SQ_THREAD_TRACE_WORD_INST__SIMD_ID_MASK 0x0600L
+#define SQ_THREAD_TRACE_WORD_INST__INST_TYPE_MASK 0xF800L
+//SQ_THREAD_TRACE_WORD_INST_PC_1_OF_2
+#define SQ_THREAD_TRACE_WORD_INST_PC_1_OF_2__TOKEN_TYPE__SHIFT 0x0
+#define SQ_THREAD_TRACE_WORD_INST_PC_1_OF_2__TIME_DELTA__SHIFT 0x4
+#define SQ_THREAD_TRACE_WORD_INST_PC_1_OF_2__WAVE_ID__SHIFT 0x5
+#define SQ_THREAD_TRACE_WORD_INST_PC_1_OF_2__SIMD_ID__SHIFT 0x9
+#define SQ_THREAD_TRACE_WORD_INST_PC_1_OF_2__TRAP_ERROR__SHIFT 0xf
+#define SQ_THREAD_TRACE_WORD_INST_PC_1_OF_2__PC_LO__SHIFT 0x10
+#define SQ_THREAD_TRACE_WORD_INST_PC_1_OF_2__TOKEN_TYPE_MASK 0x0000000FL
+#define SQ_THREAD_TRACE_WORD_INST_PC_1_OF_2__TIME_DELTA_MASK 0x00000010L
+#define SQ_THREAD_TRACE_WORD_INST_PC_1_OF_2__WAVE_ID_MASK 0x000001E0L
+#define SQ_THREAD_TRACE_WORD_INST_PC_1_OF_2__SIMD_ID_MASK 0x00000600L
+#define SQ_THREAD_TRACE_WORD_INST_PC_1_OF_2__TRAP_ERROR_MASK 0x00008000L
+#define SQ_THREAD_TRACE_WORD_INST_PC_1_OF_2__PC_LO_MASK 0xFFFF0000L
+//SQ_THREAD_TRACE_WORD_INST_USERDATA_1_OF_2
+#define SQ_THREAD_TRACE_WORD_INST_USERDATA_1_OF_2__TOKEN_TYPE__SHIFT 0x0
+#define SQ_THREAD_TRACE_WORD_INST_USERDATA_1_OF_2__TIME_DELTA__SHIFT 0x4
+#define SQ_THREAD_TRACE_WORD_INST_USERDATA_1_OF_2__PRIV__SHIFT 0x5
+#define SQ_THREAD_TRACE_WORD_INST_USERDATA_1_OF_2__CU_ID__SHIFT 0x6
+#define SQ_THREAD_TRACE_WORD_INST_USERDATA_1_OF_2__WAVE_ID__SHIFT 0xa
+#define SQ_THREAD_TRACE_WORD_INST_USERDATA_1_OF_2__SIMD_ID__SHIFT 0xe
+#define SQ_THREAD_TRACE_WORD_INST_USERDATA_1_OF_2__DATA_LO__SHIFT 0x10
+#define SQ_THREAD_TRACE_WORD_INST_USERDATA_1_OF_2__TOKEN_TYPE_MASK 0x0000000FL
+#define SQ_THREAD_TRACE_WORD_INST_USERDATA_1_OF_2__TIME_DELTA_MASK 0x00000010L
+#define SQ_THREAD_TRACE_WORD_INST_USERDATA_1_OF_2__PRIV_MASK 0x00000020L
+#define SQ_THREAD_TRACE_WORD_INST_USERDATA_1_OF_2__CU_ID_MASK 0x000003C0L
+#define SQ_THREAD_TRACE_WORD_INST_USERDATA_1_OF_2__WAVE_ID_MASK 0x00003C00L
+#define SQ_THREAD_TRACE_WORD_INST_USERDATA_1_OF_2__SIMD_ID_MASK 0x0000C000L
+#define SQ_THREAD_TRACE_WORD_INST_USERDATA_1_OF_2__DATA_LO_MASK 0xFFFF0000L
+//SQ_THREAD_TRACE_WORD_ISSUE
+#define SQ_THREAD_TRACE_WORD_ISSUE__TOKEN_TYPE__SHIFT 0x0
+#define SQ_THREAD_TRACE_WORD_ISSUE__TIME_DELTA__SHIFT 0x4
+#define SQ_THREAD_TRACE_WORD_ISSUE__SIMD_ID__SHIFT 0x5
+#define SQ_THREAD_TRACE_WORD_ISSUE__INST0__SHIFT 0x8
+#define SQ_THREAD_TRACE_WORD_ISSUE__INST1__SHIFT 0xa
+#define SQ_THREAD_TRACE_WORD_ISSUE__INST2__SHIFT 0xc
+#define SQ_THREAD_TRACE_WORD_ISSUE__INST3__SHIFT 0xe
+#define SQ_THREAD_TRACE_WORD_ISSUE__INST4__SHIFT 0x10
+#define SQ_THREAD_TRACE_WORD_ISSUE__INST5__SHIFT 0x12
+#define SQ_THREAD_TRACE_WORD_ISSUE__INST6__SHIFT 0x14
+#define SQ_THREAD_TRACE_WORD_ISSUE__INST7__SHIFT 0x16
+#define SQ_THREAD_TRACE_WORD_ISSUE__INST8__SHIFT 0x18
+#define SQ_THREAD_TRACE_WORD_ISSUE__INST9__SHIFT 0x1a
+#define SQ_THREAD_TRACE_WORD_ISSUE__TOKEN_TYPE_MASK 0x0000000FL
+#define SQ_THREAD_TRACE_WORD_ISSUE__TIME_DELTA_MASK 0x00000010L
+#define SQ_THREAD_TRACE_WORD_ISSUE__SIMD_ID_MASK 0x00000060L
+#define SQ_THREAD_TRACE_WORD_ISSUE__INST0_MASK 0x00000300L
+#define SQ_THREAD_TRACE_WORD_ISSUE__INST1_MASK 0x00000C00L
+#define SQ_THREAD_TRACE_WORD_ISSUE__INST2_MASK 0x00003000L
+#define SQ_THREAD_TRACE_WORD_ISSUE__INST3_MASK 0x0000C000L
+#define SQ_THREAD_TRACE_WORD_ISSUE__INST4_MASK 0x00030000L
+#define SQ_THREAD_TRACE_WORD_ISSUE__INST5_MASK 0x000C0000L
+#define SQ_THREAD_TRACE_WORD_ISSUE__INST6_MASK 0x00300000L
+#define SQ_THREAD_TRACE_WORD_ISSUE__INST7_MASK 0x00C00000L
+#define SQ_THREAD_TRACE_WORD_ISSUE__INST8_MASK 0x03000000L
+#define SQ_THREAD_TRACE_WORD_ISSUE__INST9_MASK 0x0C000000L
+//SQ_THREAD_TRACE_WORD_MISC
+#define SQ_THREAD_TRACE_WORD_MISC__TOKEN_TYPE__SHIFT 0x0
+#define SQ_THREAD_TRACE_WORD_MISC__TIME_DELTA__SHIFT 0x4
+#define SQ_THREAD_TRACE_WORD_MISC__SH_ID__SHIFT 0xc
+#define SQ_THREAD_TRACE_WORD_MISC__MISC_TOKEN_TYPE__SHIFT 0xd
+#define SQ_THREAD_TRACE_WORD_MISC__TOKEN_TYPE_MASK 0x000FL
+#define SQ_THREAD_TRACE_WORD_MISC__TIME_DELTA_MASK 0x0FF0L
+#define SQ_THREAD_TRACE_WORD_MISC__SH_ID_MASK 0x1000L
+#define SQ_THREAD_TRACE_WORD_MISC__MISC_TOKEN_TYPE_MASK 0xE000L
+//SQ_THREAD_TRACE_WORD_PERF_1_OF_2
+#define SQ_THREAD_TRACE_WORD_PERF_1_OF_2__TOKEN_TYPE__SHIFT 0x0
+#define SQ_THREAD_TRACE_WORD_PERF_1_OF_2__TIME_DELTA__SHIFT 0x4
+#define SQ_THREAD_TRACE_WORD_PERF_1_OF_2__SH_ID__SHIFT 0x5
+#define SQ_THREAD_TRACE_WORD_PERF_1_OF_2__CU_ID__SHIFT 0x6
+#define SQ_THREAD_TRACE_WORD_PERF_1_OF_2__CNTR_BANK__SHIFT 0xa
+#define SQ_THREAD_TRACE_WORD_PERF_1_OF_2__CNTR0__SHIFT 0xc
+#define SQ_THREAD_TRACE_WORD_PERF_1_OF_2__CNTR1_LO__SHIFT 0x19
+#define SQ_THREAD_TRACE_WORD_PERF_1_OF_2__TOKEN_TYPE_MASK 0x0000000FL
+#define SQ_THREAD_TRACE_WORD_PERF_1_OF_2__TIME_DELTA_MASK 0x00000010L
+#define SQ_THREAD_TRACE_WORD_PERF_1_OF_2__SH_ID_MASK 0x00000020L
+#define SQ_THREAD_TRACE_WORD_PERF_1_OF_2__CU_ID_MASK 0x000003C0L
+#define SQ_THREAD_TRACE_WORD_PERF_1_OF_2__CNTR_BANK_MASK 0x00000C00L
+#define SQ_THREAD_TRACE_WORD_PERF_1_OF_2__CNTR0_MASK 0x01FFF000L
+#define SQ_THREAD_TRACE_WORD_PERF_1_OF_2__CNTR1_LO_MASK 0xFE000000L
+//SQ_THREAD_TRACE_WORD_REG_1_OF_2
+#define SQ_THREAD_TRACE_WORD_REG_1_OF_2__TOKEN_TYPE__SHIFT 0x0
+#define SQ_THREAD_TRACE_WORD_REG_1_OF_2__TIME_DELTA__SHIFT 0x4
+#define SQ_THREAD_TRACE_WORD_REG_1_OF_2__PIPE_ID__SHIFT 0x5
+#define SQ_THREAD_TRACE_WORD_REG_1_OF_2__ME_ID__SHIFT 0x7
+#define SQ_THREAD_TRACE_WORD_REG_1_OF_2__REG_DROPPED_PREV__SHIFT 0x9
+#define SQ_THREAD_TRACE_WORD_REG_1_OF_2__REG_TYPE__SHIFT 0xa
+#define SQ_THREAD_TRACE_WORD_REG_1_OF_2__REG_PRIV__SHIFT 0xe
+#define SQ_THREAD_TRACE_WORD_REG_1_OF_2__REG_OP__SHIFT 0xf
+#define SQ_THREAD_TRACE_WORD_REG_1_OF_2__REG_ADDR__SHIFT 0x10
+#define SQ_THREAD_TRACE_WORD_REG_1_OF_2__TOKEN_TYPE_MASK 0x0000000FL
+#define SQ_THREAD_TRACE_WORD_REG_1_OF_2__TIME_DELTA_MASK 0x00000010L
+#define SQ_THREAD_TRACE_WORD_REG_1_OF_2__PIPE_ID_MASK 0x00000060L
+#define SQ_THREAD_TRACE_WORD_REG_1_OF_2__ME_ID_MASK 0x00000180L
+#define SQ_THREAD_TRACE_WORD_REG_1_OF_2__REG_DROPPED_PREV_MASK 0x00000200L
+#define SQ_THREAD_TRACE_WORD_REG_1_OF_2__REG_TYPE_MASK 0x00001C00L
+#define SQ_THREAD_TRACE_WORD_REG_1_OF_2__REG_PRIV_MASK 0x00004000L
+#define SQ_THREAD_TRACE_WORD_REG_1_OF_2__REG_OP_MASK 0x00008000L
+#define SQ_THREAD_TRACE_WORD_REG_1_OF_2__REG_ADDR_MASK 0xFFFF0000L
+//SQ_THREAD_TRACE_WORD_REG_2_OF_2
+#define SQ_THREAD_TRACE_WORD_REG_2_OF_2__DATA__SHIFT 0x0
+#define SQ_THREAD_TRACE_WORD_REG_2_OF_2__DATA_MASK 0xFFFFFFFFL
+//SQ_THREAD_TRACE_WORD_REG_CS_1_OF_2
+#define SQ_THREAD_TRACE_WORD_REG_CS_1_OF_2__TOKEN_TYPE__SHIFT 0x0
+#define SQ_THREAD_TRACE_WORD_REG_CS_1_OF_2__TIME_DELTA__SHIFT 0x4
+#define SQ_THREAD_TRACE_WORD_REG_CS_1_OF_2__PIPE_ID__SHIFT 0x5
+#define SQ_THREAD_TRACE_WORD_REG_CS_1_OF_2__ME_ID__SHIFT 0x7
+#define SQ_THREAD_TRACE_WORD_REG_CS_1_OF_2__REG_ADDR__SHIFT 0x9
+#define SQ_THREAD_TRACE_WORD_REG_CS_1_OF_2__DATA_LO__SHIFT 0x10
+#define SQ_THREAD_TRACE_WORD_REG_CS_1_OF_2__TOKEN_TYPE_MASK 0x0000000FL
+#define SQ_THREAD_TRACE_WORD_REG_CS_1_OF_2__TIME_DELTA_MASK 0x00000010L
+#define SQ_THREAD_TRACE_WORD_REG_CS_1_OF_2__PIPE_ID_MASK 0x00000060L
+#define SQ_THREAD_TRACE_WORD_REG_CS_1_OF_2__ME_ID_MASK 0x00000180L
+#define SQ_THREAD_TRACE_WORD_REG_CS_1_OF_2__REG_ADDR_MASK 0x0000FE00L
+#define SQ_THREAD_TRACE_WORD_REG_CS_1_OF_2__DATA_LO_MASK 0xFFFF0000L
+//SQ_THREAD_TRACE_WORD_REG_CS_2_OF_2
+#define SQ_THREAD_TRACE_WORD_REG_CS_2_OF_2__DATA_HI__SHIFT 0x0
+#define SQ_THREAD_TRACE_WORD_REG_CS_2_OF_2__DATA_HI_MASK 0x0000FFFFL
+//SQ_THREAD_TRACE_WORD_TIMESTAMP_1_OF_2
+#define SQ_THREAD_TRACE_WORD_TIMESTAMP_1_OF_2__TOKEN_TYPE__SHIFT 0x0
+#define SQ_THREAD_TRACE_WORD_TIMESTAMP_1_OF_2__TIME_LO__SHIFT 0x10
+#define SQ_THREAD_TRACE_WORD_TIMESTAMP_1_OF_2__TOKEN_TYPE_MASK 0x0000000FL
+#define SQ_THREAD_TRACE_WORD_TIMESTAMP_1_OF_2__TIME_LO_MASK 0xFFFF0000L
+//SQ_THREAD_TRACE_WORD_WAVE
+#define SQ_THREAD_TRACE_WORD_WAVE__TOKEN_TYPE__SHIFT 0x0
+#define SQ_THREAD_TRACE_WORD_WAVE__TIME_DELTA__SHIFT 0x4
+#define SQ_THREAD_TRACE_WORD_WAVE__SH_ID__SHIFT 0x5
+#define SQ_THREAD_TRACE_WORD_WAVE__CU_ID__SHIFT 0x6
+#define SQ_THREAD_TRACE_WORD_WAVE__WAVE_ID__SHIFT 0xa
+#define SQ_THREAD_TRACE_WORD_WAVE__SIMD_ID__SHIFT 0xe
+#define SQ_THREAD_TRACE_WORD_WAVE__TOKEN_TYPE_MASK 0x000FL
+#define SQ_THREAD_TRACE_WORD_WAVE__TIME_DELTA_MASK 0x0010L
+#define SQ_THREAD_TRACE_WORD_WAVE__SH_ID_MASK 0x0020L
+#define SQ_THREAD_TRACE_WORD_WAVE__CU_ID_MASK 0x03C0L
+#define SQ_THREAD_TRACE_WORD_WAVE__WAVE_ID_MASK 0x3C00L
+#define SQ_THREAD_TRACE_WORD_WAVE__SIMD_ID_MASK 0xC000L
+//SQ_THREAD_TRACE_WORD_WAVE_START
+#define SQ_THREAD_TRACE_WORD_WAVE_START__TOKEN_TYPE__SHIFT 0x0
+#define SQ_THREAD_TRACE_WORD_WAVE_START__TIME_DELTA__SHIFT 0x4
+#define SQ_THREAD_TRACE_WORD_WAVE_START__SH_ID__SHIFT 0x5
+#define SQ_THREAD_TRACE_WORD_WAVE_START__CU_ID__SHIFT 0x6
+#define SQ_THREAD_TRACE_WORD_WAVE_START__WAVE_ID__SHIFT 0xa
+#define SQ_THREAD_TRACE_WORD_WAVE_START__SIMD_ID__SHIFT 0xe
+#define SQ_THREAD_TRACE_WORD_WAVE_START__DISPATCHER__SHIFT 0x10
+#define SQ_THREAD_TRACE_WORD_WAVE_START__VS_NO_ALLOC_OR_GROUPED__SHIFT 0x15
+#define SQ_THREAD_TRACE_WORD_WAVE_START__COUNT__SHIFT 0x16
+#define SQ_THREAD_TRACE_WORD_WAVE_START__TG_ID__SHIFT 0x1d
+#define SQ_THREAD_TRACE_WORD_WAVE_START__TOKEN_TYPE_MASK 0x0000000FL
+#define SQ_THREAD_TRACE_WORD_WAVE_START__TIME_DELTA_MASK 0x00000010L
+#define SQ_THREAD_TRACE_WORD_WAVE_START__SH_ID_MASK 0x00000020L
+#define SQ_THREAD_TRACE_WORD_WAVE_START__CU_ID_MASK 0x000003C0L
+#define SQ_THREAD_TRACE_WORD_WAVE_START__WAVE_ID_MASK 0x00003C00L
+#define SQ_THREAD_TRACE_WORD_WAVE_START__SIMD_ID_MASK 0x0000C000L
+#define SQ_THREAD_TRACE_WORD_WAVE_START__DISPATCHER_MASK 0x001F0000L
+#define SQ_THREAD_TRACE_WORD_WAVE_START__VS_NO_ALLOC_OR_GROUPED_MASK 0x00200000L
+#define SQ_THREAD_TRACE_WORD_WAVE_START__COUNT_MASK 0x1FC00000L
+#define SQ_THREAD_TRACE_WORD_WAVE_START__TG_ID_MASK 0xE0000000L
+//SQ_THREAD_TRACE_WORD_INST_PC_2_OF_2
+#define SQ_THREAD_TRACE_WORD_INST_PC_2_OF_2__PC_HI__SHIFT 0x0
+#define SQ_THREAD_TRACE_WORD_INST_PC_2_OF_2__PC_HI_MASK 0x00FFFFFFL
+//SQ_THREAD_TRACE_WORD_INST_USERDATA_2_OF_2
+#define SQ_THREAD_TRACE_WORD_INST_USERDATA_2_OF_2__DATA_HI__SHIFT 0x0
+#define SQ_THREAD_TRACE_WORD_INST_USERDATA_2_OF_2__DATA_HI_MASK 0xFFFFL
+//SQ_THREAD_TRACE_WORD_PERF_2_OF_2
+#define SQ_THREAD_TRACE_WORD_PERF_2_OF_2__CNTR1_HI__SHIFT 0x0
+#define SQ_THREAD_TRACE_WORD_PERF_2_OF_2__CNTR2__SHIFT 0x6
+#define SQ_THREAD_TRACE_WORD_PERF_2_OF_2__CNTR3__SHIFT 0x13
+#define SQ_THREAD_TRACE_WORD_PERF_2_OF_2__CNTR1_HI_MASK 0x0000003FL
+#define SQ_THREAD_TRACE_WORD_PERF_2_OF_2__CNTR2_MASK 0x0007FFC0L
+#define SQ_THREAD_TRACE_WORD_PERF_2_OF_2__CNTR3_MASK 0xFFF80000L
+//SQ_THREAD_TRACE_WORD_TIMESTAMP_2_OF_2
+#define SQ_THREAD_TRACE_WORD_TIMESTAMP_2_OF_2__TIME_HI__SHIFT 0x0
+#define SQ_THREAD_TRACE_WORD_TIMESTAMP_2_OF_2__TIME_HI_MASK 0xFFFFFFFFL
+//SQ_WREXEC_EXEC_HI
+#define SQ_WREXEC_EXEC_HI__ADDR_HI__SHIFT 0x0
+#define SQ_WREXEC_EXEC_HI__FIRST_WAVE__SHIFT 0x1a
+#define SQ_WREXEC_EXEC_HI__ATC__SHIFT 0x1b
+#define SQ_WREXEC_EXEC_HI__MTYPE__SHIFT 0x1c
+#define SQ_WREXEC_EXEC_HI__MSB__SHIFT 0x1f
+#define SQ_WREXEC_EXEC_HI__ADDR_HI_MASK 0x0000FFFFL
+#define SQ_WREXEC_EXEC_HI__FIRST_WAVE_MASK 0x04000000L
+#define SQ_WREXEC_EXEC_HI__ATC_MASK 0x08000000L
+#define SQ_WREXEC_EXEC_HI__MTYPE_MASK 0x70000000L
+#define SQ_WREXEC_EXEC_HI__MSB_MASK 0x80000000L
+//SQ_WREXEC_EXEC_LO
+#define SQ_WREXEC_EXEC_LO__ADDR_LO__SHIFT 0x0
+#define SQ_WREXEC_EXEC_LO__ADDR_LO_MASK 0xFFFFFFFFL
+//SQ_BUF_RSRC_WORD0
+#define SQ_BUF_RSRC_WORD0__BASE_ADDRESS__SHIFT 0x0
+#define SQ_BUF_RSRC_WORD0__BASE_ADDRESS_MASK 0xFFFFFFFFL
+//SQ_BUF_RSRC_WORD1
+#define SQ_BUF_RSRC_WORD1__BASE_ADDRESS_HI__SHIFT 0x0
+#define SQ_BUF_RSRC_WORD1__STRIDE__SHIFT 0x10
+#define SQ_BUF_RSRC_WORD1__CACHE_SWIZZLE__SHIFT 0x1e
+#define SQ_BUF_RSRC_WORD1__SWIZZLE_ENABLE__SHIFT 0x1f
+#define SQ_BUF_RSRC_WORD1__BASE_ADDRESS_HI_MASK 0x0000FFFFL
+#define SQ_BUF_RSRC_WORD1__STRIDE_MASK 0x3FFF0000L
+#define SQ_BUF_RSRC_WORD1__CACHE_SWIZZLE_MASK 0x40000000L
+#define SQ_BUF_RSRC_WORD1__SWIZZLE_ENABLE_MASK 0x80000000L
+//SQ_BUF_RSRC_WORD2
+#define SQ_BUF_RSRC_WORD2__NUM_RECORDS__SHIFT 0x0
+#define SQ_BUF_RSRC_WORD2__NUM_RECORDS_MASK 0xFFFFFFFFL
+//SQ_BUF_RSRC_WORD3
+#define SQ_BUF_RSRC_WORD3__DST_SEL_X__SHIFT 0x0
+#define SQ_BUF_RSRC_WORD3__DST_SEL_Y__SHIFT 0x3
+#define SQ_BUF_RSRC_WORD3__DST_SEL_Z__SHIFT 0x6
+#define SQ_BUF_RSRC_WORD3__DST_SEL_W__SHIFT 0x9
+#define SQ_BUF_RSRC_WORD3__NUM_FORMAT__SHIFT 0xc
+#define SQ_BUF_RSRC_WORD3__DATA_FORMAT__SHIFT 0xf
+#define SQ_BUF_RSRC_WORD3__USER_VM_ENABLE__SHIFT 0x13
+#define SQ_BUF_RSRC_WORD3__USER_VM_MODE__SHIFT 0x14
+#define SQ_BUF_RSRC_WORD3__INDEX_STRIDE__SHIFT 0x15
+#define SQ_BUF_RSRC_WORD3__ADD_TID_ENABLE__SHIFT 0x17
+#define SQ_BUF_RSRC_WORD3__NV__SHIFT 0x1b
+#define SQ_BUF_RSRC_WORD3__TYPE__SHIFT 0x1e
+#define SQ_BUF_RSRC_WORD3__DST_SEL_X_MASK 0x00000007L
+#define SQ_BUF_RSRC_WORD3__DST_SEL_Y_MASK 0x00000038L
+#define SQ_BUF_RSRC_WORD3__DST_SEL_Z_MASK 0x000001C0L
+#define SQ_BUF_RSRC_WORD3__DST_SEL_W_MASK 0x00000E00L
+#define SQ_BUF_RSRC_WORD3__NUM_FORMAT_MASK 0x00007000L
+#define SQ_BUF_RSRC_WORD3__DATA_FORMAT_MASK 0x00078000L
+#define SQ_BUF_RSRC_WORD3__USER_VM_ENABLE_MASK 0x00080000L
+#define SQ_BUF_RSRC_WORD3__USER_VM_MODE_MASK 0x00100000L
+#define SQ_BUF_RSRC_WORD3__INDEX_STRIDE_MASK 0x00600000L
+#define SQ_BUF_RSRC_WORD3__ADD_TID_ENABLE_MASK 0x00800000L
+#define SQ_BUF_RSRC_WORD3__NV_MASK 0x08000000L
+#define SQ_BUF_RSRC_WORD3__TYPE_MASK 0xC0000000L
+//SQ_IMG_RSRC_WORD0
+#define SQ_IMG_RSRC_WORD0__BASE_ADDRESS__SHIFT 0x0
+#define SQ_IMG_RSRC_WORD0__BASE_ADDRESS_MASK 0xFFFFFFFFL
+//SQ_IMG_RSRC_WORD1
+#define SQ_IMG_RSRC_WORD1__BASE_ADDRESS_HI__SHIFT 0x0
+#define SQ_IMG_RSRC_WORD1__MIN_LOD__SHIFT 0x8
+#define SQ_IMG_RSRC_WORD1__DATA_FORMAT__SHIFT 0x14
+#define SQ_IMG_RSRC_WORD1__NUM_FORMAT__SHIFT 0x1a
+#define SQ_IMG_RSRC_WORD1__NV__SHIFT 0x1e
+#define SQ_IMG_RSRC_WORD1__META_DIRECT__SHIFT 0x1f
+#define SQ_IMG_RSRC_WORD1__BASE_ADDRESS_HI_MASK 0x000000FFL
+#define SQ_IMG_RSRC_WORD1__MIN_LOD_MASK 0x000FFF00L
+#define SQ_IMG_RSRC_WORD1__DATA_FORMAT_MASK 0x03F00000L
+#define SQ_IMG_RSRC_WORD1__NUM_FORMAT_MASK 0x3C000000L
+#define SQ_IMG_RSRC_WORD1__NV_MASK 0x40000000L
+#define SQ_IMG_RSRC_WORD1__META_DIRECT_MASK 0x80000000L
+//SQ_IMG_RSRC_WORD2
+#define SQ_IMG_RSRC_WORD2__WIDTH__SHIFT 0x0
+#define SQ_IMG_RSRC_WORD2__HEIGHT__SHIFT 0xe
+#define SQ_IMG_RSRC_WORD2__PERF_MOD__SHIFT 0x1c
+#define SQ_IMG_RSRC_WORD2__WIDTH_MASK 0x00003FFFL
+#define SQ_IMG_RSRC_WORD2__HEIGHT_MASK 0x0FFFC000L
+#define SQ_IMG_RSRC_WORD2__PERF_MOD_MASK 0x70000000L
+//SQ_IMG_RSRC_WORD3
+#define SQ_IMG_RSRC_WORD3__DST_SEL_X__SHIFT 0x0
+#define SQ_IMG_RSRC_WORD3__DST_SEL_Y__SHIFT 0x3
+#define SQ_IMG_RSRC_WORD3__DST_SEL_Z__SHIFT 0x6
+#define SQ_IMG_RSRC_WORD3__DST_SEL_W__SHIFT 0x9
+#define SQ_IMG_RSRC_WORD3__BASE_LEVEL__SHIFT 0xc
+#define SQ_IMG_RSRC_WORD3__LAST_LEVEL__SHIFT 0x10
+#define SQ_IMG_RSRC_WORD3__SW_MODE__SHIFT 0x14
+#define SQ_IMG_RSRC_WORD3__TYPE__SHIFT 0x1c
+#define SQ_IMG_RSRC_WORD3__DST_SEL_X_MASK 0x00000007L
+#define SQ_IMG_RSRC_WORD3__DST_SEL_Y_MASK 0x00000038L
+#define SQ_IMG_RSRC_WORD3__DST_SEL_Z_MASK 0x000001C0L
+#define SQ_IMG_RSRC_WORD3__DST_SEL_W_MASK 0x00000E00L
+#define SQ_IMG_RSRC_WORD3__BASE_LEVEL_MASK 0x0000F000L
+#define SQ_IMG_RSRC_WORD3__LAST_LEVEL_MASK 0x000F0000L
+#define SQ_IMG_RSRC_WORD3__SW_MODE_MASK 0x01F00000L
+#define SQ_IMG_RSRC_WORD3__TYPE_MASK 0xF0000000L
+//SQ_IMG_RSRC_WORD4
+#define SQ_IMG_RSRC_WORD4__DEPTH__SHIFT 0x0
+#define SQ_IMG_RSRC_WORD4__PITCH__SHIFT 0xd
+#define SQ_IMG_RSRC_WORD4__BC_SWIZZLE__SHIFT 0x1d
+#define SQ_IMG_RSRC_WORD4__DEPTH_MASK 0x00001FFFL
+#define SQ_IMG_RSRC_WORD4__PITCH_MASK 0x1FFFE000L
+#define SQ_IMG_RSRC_WORD4__BC_SWIZZLE_MASK 0xE0000000L
+//SQ_IMG_RSRC_WORD5
+#define SQ_IMG_RSRC_WORD5__BASE_ARRAY__SHIFT 0x0
+#define SQ_IMG_RSRC_WORD5__ARRAY_PITCH__SHIFT 0xd
+#define SQ_IMG_RSRC_WORD5__META_DATA_ADDRESS__SHIFT 0x11
+#define SQ_IMG_RSRC_WORD5__META_LINEAR__SHIFT 0x19
+#define SQ_IMG_RSRC_WORD5__META_PIPE_ALIGNED__SHIFT 0x1a
+#define SQ_IMG_RSRC_WORD5__META_RB_ALIGNED__SHIFT 0x1b
+#define SQ_IMG_RSRC_WORD5__MAX_MIP__SHIFT 0x1c
+#define SQ_IMG_RSRC_WORD5__BASE_ARRAY_MASK 0x00001FFFL
+#define SQ_IMG_RSRC_WORD5__ARRAY_PITCH_MASK 0x0001E000L
+#define SQ_IMG_RSRC_WORD5__META_DATA_ADDRESS_MASK 0x01FE0000L
+#define SQ_IMG_RSRC_WORD5__META_LINEAR_MASK 0x02000000L
+#define SQ_IMG_RSRC_WORD5__META_PIPE_ALIGNED_MASK 0x04000000L
+#define SQ_IMG_RSRC_WORD5__META_RB_ALIGNED_MASK 0x08000000L
+#define SQ_IMG_RSRC_WORD5__MAX_MIP_MASK 0xF0000000L
+//SQ_IMG_RSRC_WORD6
+#define SQ_IMG_RSRC_WORD6__MIN_LOD_WARN__SHIFT 0x0
+#define SQ_IMG_RSRC_WORD6__COUNTER_BANK_ID__SHIFT 0xc
+#define SQ_IMG_RSRC_WORD6__LOD_HDW_CNT_EN__SHIFT 0x14
+#define SQ_IMG_RSRC_WORD6__COMPRESSION_EN__SHIFT 0x15
+#define SQ_IMG_RSRC_WORD6__ALPHA_IS_ON_MSB__SHIFT 0x16
+#define SQ_IMG_RSRC_WORD6__COLOR_TRANSFORM__SHIFT 0x17
+#define SQ_IMG_RSRC_WORD6__LOST_ALPHA_BITS__SHIFT 0x18
+#define SQ_IMG_RSRC_WORD6__LOST_COLOR_BITS__SHIFT 0x1c
+#define SQ_IMG_RSRC_WORD6__MIN_LOD_WARN_MASK 0x00000FFFL
+#define SQ_IMG_RSRC_WORD6__COUNTER_BANK_ID_MASK 0x000FF000L
+#define SQ_IMG_RSRC_WORD6__LOD_HDW_CNT_EN_MASK 0x00100000L
+#define SQ_IMG_RSRC_WORD6__COMPRESSION_EN_MASK 0x00200000L
+#define SQ_IMG_RSRC_WORD6__ALPHA_IS_ON_MSB_MASK 0x00400000L
+#define SQ_IMG_RSRC_WORD6__COLOR_TRANSFORM_MASK 0x00800000L
+#define SQ_IMG_RSRC_WORD6__LOST_ALPHA_BITS_MASK 0x0F000000L
+#define SQ_IMG_RSRC_WORD6__LOST_COLOR_BITS_MASK 0xF0000000L
+//SQ_IMG_RSRC_WORD7
+#define SQ_IMG_RSRC_WORD7__META_DATA_ADDRESS__SHIFT 0x0
+#define SQ_IMG_RSRC_WORD7__META_DATA_ADDRESS_MASK 0xFFFFFFFFL
+//SQ_IMG_SAMP_WORD0
+#define SQ_IMG_SAMP_WORD0__CLAMP_X__SHIFT 0x0
+#define SQ_IMG_SAMP_WORD0__CLAMP_Y__SHIFT 0x3
+#define SQ_IMG_SAMP_WORD0__CLAMP_Z__SHIFT 0x6
+#define SQ_IMG_SAMP_WORD0__MAX_ANISO_RATIO__SHIFT 0x9
+#define SQ_IMG_SAMP_WORD0__DEPTH_COMPARE_FUNC__SHIFT 0xc
+#define SQ_IMG_SAMP_WORD0__FORCE_UNNORMALIZED__SHIFT 0xf
+#define SQ_IMG_SAMP_WORD0__ANISO_THRESHOLD__SHIFT 0x10
+#define SQ_IMG_SAMP_WORD0__MC_COORD_TRUNC__SHIFT 0x13
+#define SQ_IMG_SAMP_WORD0__FORCE_DEGAMMA__SHIFT 0x14
+#define SQ_IMG_SAMP_WORD0__ANISO_BIAS__SHIFT 0x15
+#define SQ_IMG_SAMP_WORD0__TRUNC_COORD__SHIFT 0x1b
+#define SQ_IMG_SAMP_WORD0__DISABLE_CUBE_WRAP__SHIFT 0x1c
+#define SQ_IMG_SAMP_WORD0__FILTER_MODE__SHIFT 0x1d
+#define SQ_IMG_SAMP_WORD0__COMPAT_MODE__SHIFT 0x1f
+#define SQ_IMG_SAMP_WORD0__CLAMP_X_MASK 0x00000007L
+#define SQ_IMG_SAMP_WORD0__CLAMP_Y_MASK 0x00000038L
+#define SQ_IMG_SAMP_WORD0__CLAMP_Z_MASK 0x000001C0L
+#define SQ_IMG_SAMP_WORD0__MAX_ANISO_RATIO_MASK 0x00000E00L
+#define SQ_IMG_SAMP_WORD0__DEPTH_COMPARE_FUNC_MASK 0x00007000L
+#define SQ_IMG_SAMP_WORD0__FORCE_UNNORMALIZED_MASK 0x00008000L
+#define SQ_IMG_SAMP_WORD0__ANISO_THRESHOLD_MASK 0x00070000L
+#define SQ_IMG_SAMP_WORD0__MC_COORD_TRUNC_MASK 0x00080000L
+#define SQ_IMG_SAMP_WORD0__FORCE_DEGAMMA_MASK 0x00100000L
+#define SQ_IMG_SAMP_WORD0__ANISO_BIAS_MASK 0x07E00000L
+#define SQ_IMG_SAMP_WORD0__TRUNC_COORD_MASK 0x08000000L
+#define SQ_IMG_SAMP_WORD0__DISABLE_CUBE_WRAP_MASK 0x10000000L
+#define SQ_IMG_SAMP_WORD0__FILTER_MODE_MASK 0x60000000L
+#define SQ_IMG_SAMP_WORD0__COMPAT_MODE_MASK 0x80000000L
+//SQ_IMG_SAMP_WORD1
+#define SQ_IMG_SAMP_WORD1__MIN_LOD__SHIFT 0x0
+#define SQ_IMG_SAMP_WORD1__MAX_LOD__SHIFT 0xc
+#define SQ_IMG_SAMP_WORD1__PERF_MIP__SHIFT 0x18
+#define SQ_IMG_SAMP_WORD1__PERF_Z__SHIFT 0x1c
+#define SQ_IMG_SAMP_WORD1__MIN_LOD_MASK 0x00000FFFL
+#define SQ_IMG_SAMP_WORD1__MAX_LOD_MASK 0x00FFF000L
+#define SQ_IMG_SAMP_WORD1__PERF_MIP_MASK 0x0F000000L
+#define SQ_IMG_SAMP_WORD1__PERF_Z_MASK 0xF0000000L
+//SQ_IMG_SAMP_WORD2
+#define SQ_IMG_SAMP_WORD2__LOD_BIAS__SHIFT 0x0
+#define SQ_IMG_SAMP_WORD2__LOD_BIAS_SEC__SHIFT 0xe
+#define SQ_IMG_SAMP_WORD2__XY_MAG_FILTER__SHIFT 0x14
+#define SQ_IMG_SAMP_WORD2__XY_MIN_FILTER__SHIFT 0x16
+#define SQ_IMG_SAMP_WORD2__Z_FILTER__SHIFT 0x18
+#define SQ_IMG_SAMP_WORD2__MIP_FILTER__SHIFT 0x1a
+#define SQ_IMG_SAMP_WORD2__MIP_POINT_PRECLAMP__SHIFT 0x1c
+#define SQ_IMG_SAMP_WORD2__BLEND_ZERO_PRT__SHIFT 0x1d
+#define SQ_IMG_SAMP_WORD2__FILTER_PREC_FIX__SHIFT 0x1e
+#define SQ_IMG_SAMP_WORD2__ANISO_OVERRIDE__SHIFT 0x1f
+#define SQ_IMG_SAMP_WORD2__LOD_BIAS_MASK 0x00003FFFL
+#define SQ_IMG_SAMP_WORD2__LOD_BIAS_SEC_MASK 0x000FC000L
+#define SQ_IMG_SAMP_WORD2__XY_MAG_FILTER_MASK 0x00300000L
+#define SQ_IMG_SAMP_WORD2__XY_MIN_FILTER_MASK 0x00C00000L
+#define SQ_IMG_SAMP_WORD2__Z_FILTER_MASK 0x03000000L
+#define SQ_IMG_SAMP_WORD2__MIP_FILTER_MASK 0x0C000000L
+#define SQ_IMG_SAMP_WORD2__MIP_POINT_PRECLAMP_MASK 0x10000000L
+#define SQ_IMG_SAMP_WORD2__BLEND_ZERO_PRT_MASK 0x20000000L
+#define SQ_IMG_SAMP_WORD2__FILTER_PREC_FIX_MASK 0x40000000L
+#define SQ_IMG_SAMP_WORD2__ANISO_OVERRIDE_MASK 0x80000000L
+//SQ_IMG_SAMP_WORD3
+#define SQ_IMG_SAMP_WORD3__BORDER_COLOR_PTR__SHIFT 0x0
+#define SQ_IMG_SAMP_WORD3__SKIP_DEGAMMA__SHIFT 0xc
+#define SQ_IMG_SAMP_WORD3__BORDER_COLOR_TYPE__SHIFT 0x1e
+#define SQ_IMG_SAMP_WORD3__BORDER_COLOR_PTR_MASK 0x00000FFFL
+#define SQ_IMG_SAMP_WORD3__SKIP_DEGAMMA_MASK 0x00001000L
+#define SQ_IMG_SAMP_WORD3__BORDER_COLOR_TYPE_MASK 0xC0000000L
+//SQ_FLAT_SCRATCH_WORD0
+#define SQ_FLAT_SCRATCH_WORD0__SIZE__SHIFT 0x0
+#define SQ_FLAT_SCRATCH_WORD0__SIZE_MASK 0x0007FFFFL
+//SQ_FLAT_SCRATCH_WORD1
+#define SQ_FLAT_SCRATCH_WORD1__OFFSET__SHIFT 0x0
+#define SQ_FLAT_SCRATCH_WORD1__OFFSET_MASK 0x00FFFFFFL
+//SQ_M0_GPR_IDX_WORD
+#define SQ_M0_GPR_IDX_WORD__INDEX__SHIFT 0x0
+#define SQ_M0_GPR_IDX_WORD__VSRC0_REL__SHIFT 0xc
+#define SQ_M0_GPR_IDX_WORD__VSRC1_REL__SHIFT 0xd
+#define SQ_M0_GPR_IDX_WORD__VSRC2_REL__SHIFT 0xe
+#define SQ_M0_GPR_IDX_WORD__VDST_REL__SHIFT 0xf
+#define SQ_M0_GPR_IDX_WORD__INDEX_MASK 0x000000FFL
+#define SQ_M0_GPR_IDX_WORD__VSRC0_REL_MASK 0x00001000L
+#define SQ_M0_GPR_IDX_WORD__VSRC1_REL_MASK 0x00002000L
+#define SQ_M0_GPR_IDX_WORD__VSRC2_REL_MASK 0x00004000L
+#define SQ_M0_GPR_IDX_WORD__VDST_REL_MASK 0x00008000L
+//SQC_ICACHE_UTCL1_CNTL1
+#define SQC_ICACHE_UTCL1_CNTL1__FORCE_4K_L2_RESP__SHIFT 0x0
+#define SQC_ICACHE_UTCL1_CNTL1__GPUVM_64K_DEF__SHIFT 0x1
+#define SQC_ICACHE_UTCL1_CNTL1__GPUVM_PERM_MODE__SHIFT 0x2
+#define SQC_ICACHE_UTCL1_CNTL1__RESP_MODE__SHIFT 0x3
+#define SQC_ICACHE_UTCL1_CNTL1__RESP_FAULT_MODE__SHIFT 0x5
+#define SQC_ICACHE_UTCL1_CNTL1__CLIENTID__SHIFT 0x7
+#define SQC_ICACHE_UTCL1_CNTL1__RESERVED__SHIFT 0x10
+#define SQC_ICACHE_UTCL1_CNTL1__ENABLE_PUSH_LFIFO__SHIFT 0x11
+#define SQC_ICACHE_UTCL1_CNTL1__ENABLE_LFIFO_PRI_ARB__SHIFT 0x12
+#define SQC_ICACHE_UTCL1_CNTL1__REG_INVALIDATE_VMID__SHIFT 0x13
+#define SQC_ICACHE_UTCL1_CNTL1__REG_INVALIDATE_ALL_VMID__SHIFT 0x17
+#define SQC_ICACHE_UTCL1_CNTL1__REG_INVALIDATE_TOGGLE__SHIFT 0x18
+#define SQC_ICACHE_UTCL1_CNTL1__CLIENT_INVALIDATE_ALL_VMID__SHIFT 0x19
+#define SQC_ICACHE_UTCL1_CNTL1__FORCE_MISS__SHIFT 0x1a
+#define SQC_ICACHE_UTCL1_CNTL1__FORCE_IN_ORDER__SHIFT 0x1b
+#define SQC_ICACHE_UTCL1_CNTL1__REDUCE_FIFO_DEPTH_BY_2__SHIFT 0x1c
+#define SQC_ICACHE_UTCL1_CNTL1__REDUCE_CACHE_SIZE_BY_2__SHIFT 0x1e
+#define SQC_ICACHE_UTCL1_CNTL1__FORCE_4K_L2_RESP_MASK 0x00000001L
+#define SQC_ICACHE_UTCL1_CNTL1__GPUVM_64K_DEF_MASK 0x00000002L
+#define SQC_ICACHE_UTCL1_CNTL1__GPUVM_PERM_MODE_MASK 0x00000004L
+#define SQC_ICACHE_UTCL1_CNTL1__RESP_MODE_MASK 0x00000018L
+#define SQC_ICACHE_UTCL1_CNTL1__RESP_FAULT_MODE_MASK 0x00000060L
+#define SQC_ICACHE_UTCL1_CNTL1__CLIENTID_MASK 0x0000FF80L
+#define SQC_ICACHE_UTCL1_CNTL1__RESERVED_MASK 0x00010000L
+#define SQC_ICACHE_UTCL1_CNTL1__ENABLE_PUSH_LFIFO_MASK 0x00020000L
+#define SQC_ICACHE_UTCL1_CNTL1__ENABLE_LFIFO_PRI_ARB_MASK 0x00040000L
+#define SQC_ICACHE_UTCL1_CNTL1__REG_INVALIDATE_VMID_MASK 0x00780000L
+#define SQC_ICACHE_UTCL1_CNTL1__REG_INVALIDATE_ALL_VMID_MASK 0x00800000L
+#define SQC_ICACHE_UTCL1_CNTL1__REG_INVALIDATE_TOGGLE_MASK 0x01000000L
+#define SQC_ICACHE_UTCL1_CNTL1__CLIENT_INVALIDATE_ALL_VMID_MASK 0x02000000L
+#define SQC_ICACHE_UTCL1_CNTL1__FORCE_MISS_MASK 0x04000000L
+#define SQC_ICACHE_UTCL1_CNTL1__FORCE_IN_ORDER_MASK 0x08000000L
+#define SQC_ICACHE_UTCL1_CNTL1__REDUCE_FIFO_DEPTH_BY_2_MASK 0x30000000L
+#define SQC_ICACHE_UTCL1_CNTL1__REDUCE_CACHE_SIZE_BY_2_MASK 0xC0000000L
+//SQC_ICACHE_UTCL1_CNTL2
+#define SQC_ICACHE_UTCL1_CNTL2__SPARE__SHIFT 0x0
+#define SQC_ICACHE_UTCL1_CNTL2__LFIFO_SCAN_DISABLE__SHIFT 0x8
+#define SQC_ICACHE_UTCL1_CNTL2__MTYPE_OVRD_DIS__SHIFT 0x9
+#define SQC_ICACHE_UTCL1_CNTL2__LINE_VALID__SHIFT 0xa
+#define SQC_ICACHE_UTCL1_CNTL2__DIS_EDC__SHIFT 0xb
+#define SQC_ICACHE_UTCL1_CNTL2__GPUVM_INV_MODE__SHIFT 0xc
+#define SQC_ICACHE_UTCL1_CNTL2__SHOOTDOWN_OPT__SHIFT 0xd
+#define SQC_ICACHE_UTCL1_CNTL2__FORCE_SNOOP__SHIFT 0xe
+#define SQC_ICACHE_UTCL1_CNTL2__FORCE_GPUVM_INV_ACK__SHIFT 0xf
+#define SQC_ICACHE_UTCL1_CNTL2__ARB_BURST_MODE__SHIFT 0x10
+#define SQC_ICACHE_UTCL1_CNTL2__ENABLE_PERF_EVENT_RD_WR__SHIFT 0x12
+#define SQC_ICACHE_UTCL1_CNTL2__PERF_EVENT_RD_WR__SHIFT 0x13
+#define SQC_ICACHE_UTCL1_CNTL2__ENABLE_PERF_EVENT_VMID__SHIFT 0x14
+#define SQC_ICACHE_UTCL1_CNTL2__PERF_EVENT_VMID__SHIFT 0x15
+#define SQC_ICACHE_UTCL1_CNTL2__RESERVED__SHIFT 0x19
+#define SQC_ICACHE_UTCL1_CNTL2__FORCE_FRAG_2M_TO_64K__SHIFT 0x1a
+#define SQC_ICACHE_UTCL1_CNTL2__SPARE_MASK 0x000000FFL
+#define SQC_ICACHE_UTCL1_CNTL2__LFIFO_SCAN_DISABLE_MASK 0x00000100L
+#define SQC_ICACHE_UTCL1_CNTL2__MTYPE_OVRD_DIS_MASK 0x00000200L
+#define SQC_ICACHE_UTCL1_CNTL2__LINE_VALID_MASK 0x00000400L
+#define SQC_ICACHE_UTCL1_CNTL2__DIS_EDC_MASK 0x00000800L
+#define SQC_ICACHE_UTCL1_CNTL2__GPUVM_INV_MODE_MASK 0x00001000L
+#define SQC_ICACHE_UTCL1_CNTL2__SHOOTDOWN_OPT_MASK 0x00002000L
+#define SQC_ICACHE_UTCL1_CNTL2__FORCE_SNOOP_MASK 0x00004000L
+#define SQC_ICACHE_UTCL1_CNTL2__FORCE_GPUVM_INV_ACK_MASK 0x00008000L
+#define SQC_ICACHE_UTCL1_CNTL2__ARB_BURST_MODE_MASK 0x00030000L
+#define SQC_ICACHE_UTCL1_CNTL2__ENABLE_PERF_EVENT_RD_WR_MASK 0x00040000L
+#define SQC_ICACHE_UTCL1_CNTL2__PERF_EVENT_RD_WR_MASK 0x00080000L
+#define SQC_ICACHE_UTCL1_CNTL2__ENABLE_PERF_EVENT_VMID_MASK 0x00100000L
+#define SQC_ICACHE_UTCL1_CNTL2__PERF_EVENT_VMID_MASK 0x01E00000L
+#define SQC_ICACHE_UTCL1_CNTL2__RESERVED_MASK 0x02000000L
+#define SQC_ICACHE_UTCL1_CNTL2__FORCE_FRAG_2M_TO_64K_MASK 0x04000000L
+//SQC_DCACHE_UTCL1_CNTL1
+#define SQC_DCACHE_UTCL1_CNTL1__FORCE_4K_L2_RESP__SHIFT 0x0
+#define SQC_DCACHE_UTCL1_CNTL1__GPUVM_64K_DEF__SHIFT 0x1
+#define SQC_DCACHE_UTCL1_CNTL1__GPUVM_PERM_MODE__SHIFT 0x2
+#define SQC_DCACHE_UTCL1_CNTL1__RESP_MODE__SHIFT 0x3
+#define SQC_DCACHE_UTCL1_CNTL1__RESP_FAULT_MODE__SHIFT 0x5
+#define SQC_DCACHE_UTCL1_CNTL1__CLIENTID__SHIFT 0x7
+#define SQC_DCACHE_UTCL1_CNTL1__RESERVED__SHIFT 0x10
+#define SQC_DCACHE_UTCL1_CNTL1__ENABLE_PUSH_LFIFO__SHIFT 0x11
+#define SQC_DCACHE_UTCL1_CNTL1__ENABLE_LFIFO_PRI_ARB__SHIFT 0x12
+#define SQC_DCACHE_UTCL1_CNTL1__REG_INVALIDATE_VMID__SHIFT 0x13
+#define SQC_DCACHE_UTCL1_CNTL1__REG_INVALIDATE_ALL_VMID__SHIFT 0x17
+#define SQC_DCACHE_UTCL1_CNTL1__REG_INVALIDATE_TOGGLE__SHIFT 0x18
+#define SQC_DCACHE_UTCL1_CNTL1__CLIENT_INVALIDATE_ALL_VMID__SHIFT 0x19
+#define SQC_DCACHE_UTCL1_CNTL1__FORCE_MISS__SHIFT 0x1a
+#define SQC_DCACHE_UTCL1_CNTL1__FORCE_IN_ORDER__SHIFT 0x1b
+#define SQC_DCACHE_UTCL1_CNTL1__REDUCE_FIFO_DEPTH_BY_2__SHIFT 0x1c
+#define SQC_DCACHE_UTCL1_CNTL1__REDUCE_CACHE_SIZE_BY_2__SHIFT 0x1e
+#define SQC_DCACHE_UTCL1_CNTL1__FORCE_4K_L2_RESP_MASK 0x00000001L
+#define SQC_DCACHE_UTCL1_CNTL1__GPUVM_64K_DEF_MASK 0x00000002L
+#define SQC_DCACHE_UTCL1_CNTL1__GPUVM_PERM_MODE_MASK 0x00000004L
+#define SQC_DCACHE_UTCL1_CNTL1__RESP_MODE_MASK 0x00000018L
+#define SQC_DCACHE_UTCL1_CNTL1__RESP_FAULT_MODE_MASK 0x00000060L
+#define SQC_DCACHE_UTCL1_CNTL1__CLIENTID_MASK 0x0000FF80L
+#define SQC_DCACHE_UTCL1_CNTL1__RESERVED_MASK 0x00010000L
+#define SQC_DCACHE_UTCL1_CNTL1__ENABLE_PUSH_LFIFO_MASK 0x00020000L
+#define SQC_DCACHE_UTCL1_CNTL1__ENABLE_LFIFO_PRI_ARB_MASK 0x00040000L
+#define SQC_DCACHE_UTCL1_CNTL1__REG_INVALIDATE_VMID_MASK 0x00780000L
+#define SQC_DCACHE_UTCL1_CNTL1__REG_INVALIDATE_ALL_VMID_MASK 0x00800000L
+#define SQC_DCACHE_UTCL1_CNTL1__REG_INVALIDATE_TOGGLE_MASK 0x01000000L
+#define SQC_DCACHE_UTCL1_CNTL1__CLIENT_INVALIDATE_ALL_VMID_MASK 0x02000000L
+#define SQC_DCACHE_UTCL1_CNTL1__FORCE_MISS_MASK 0x04000000L
+#define SQC_DCACHE_UTCL1_CNTL1__FORCE_IN_ORDER_MASK 0x08000000L
+#define SQC_DCACHE_UTCL1_CNTL1__REDUCE_FIFO_DEPTH_BY_2_MASK 0x30000000L
+#define SQC_DCACHE_UTCL1_CNTL1__REDUCE_CACHE_SIZE_BY_2_MASK 0xC0000000L
+//SQC_DCACHE_UTCL1_CNTL2
+#define SQC_DCACHE_UTCL1_CNTL2__SPARE__SHIFT 0x0
+#define SQC_DCACHE_UTCL1_CNTL2__LFIFO_SCAN_DISABLE__SHIFT 0x8
+#define SQC_DCACHE_UTCL1_CNTL2__MTYPE_OVRD_DIS__SHIFT 0x9
+#define SQC_DCACHE_UTCL1_CNTL2__LINE_VALID__SHIFT 0xa
+#define SQC_DCACHE_UTCL1_CNTL2__DIS_EDC__SHIFT 0xb
+#define SQC_DCACHE_UTCL1_CNTL2__GPUVM_INV_MODE__SHIFT 0xc
+#define SQC_DCACHE_UTCL1_CNTL2__SHOOTDOWN_OPT__SHIFT 0xd
+#define SQC_DCACHE_UTCL1_CNTL2__FORCE_SNOOP__SHIFT 0xe
+#define SQC_DCACHE_UTCL1_CNTL2__FORCE_GPUVM_INV_ACK__SHIFT 0xf
+#define SQC_DCACHE_UTCL1_CNTL2__ARB_BURST_MODE__SHIFT 0x10
+#define SQC_DCACHE_UTCL1_CNTL2__ENABLE_PERF_EVENT_RD_WR__SHIFT 0x12
+#define SQC_DCACHE_UTCL1_CNTL2__PERF_EVENT_RD_WR__SHIFT 0x13
+#define SQC_DCACHE_UTCL1_CNTL2__ENABLE_PERF_EVENT_VMID__SHIFT 0x14
+#define SQC_DCACHE_UTCL1_CNTL2__PERF_EVENT_VMID__SHIFT 0x15
+#define SQC_DCACHE_UTCL1_CNTL2__RESERVED__SHIFT 0x19
+#define SQC_DCACHE_UTCL1_CNTL2__FORCE_FRAG_2M_TO_64K__SHIFT 0x1a
+#define SQC_DCACHE_UTCL1_CNTL2__SPARE_MASK 0x000000FFL
+#define SQC_DCACHE_UTCL1_CNTL2__LFIFO_SCAN_DISABLE_MASK 0x00000100L
+#define SQC_DCACHE_UTCL1_CNTL2__MTYPE_OVRD_DIS_MASK 0x00000200L
+#define SQC_DCACHE_UTCL1_CNTL2__LINE_VALID_MASK 0x00000400L
+#define SQC_DCACHE_UTCL1_CNTL2__DIS_EDC_MASK 0x00000800L
+#define SQC_DCACHE_UTCL1_CNTL2__GPUVM_INV_MODE_MASK 0x00001000L
+#define SQC_DCACHE_UTCL1_CNTL2__SHOOTDOWN_OPT_MASK 0x00002000L
+#define SQC_DCACHE_UTCL1_CNTL2__FORCE_SNOOP_MASK 0x00004000L
+#define SQC_DCACHE_UTCL1_CNTL2__FORCE_GPUVM_INV_ACK_MASK 0x00008000L
+#define SQC_DCACHE_UTCL1_CNTL2__ARB_BURST_MODE_MASK 0x00030000L
+#define SQC_DCACHE_UTCL1_CNTL2__ENABLE_PERF_EVENT_RD_WR_MASK 0x00040000L
+#define SQC_DCACHE_UTCL1_CNTL2__PERF_EVENT_RD_WR_MASK 0x00080000L
+#define SQC_DCACHE_UTCL1_CNTL2__ENABLE_PERF_EVENT_VMID_MASK 0x00100000L
+#define SQC_DCACHE_UTCL1_CNTL2__PERF_EVENT_VMID_MASK 0x01E00000L
+#define SQC_DCACHE_UTCL1_CNTL2__RESERVED_MASK 0x02000000L
+#define SQC_DCACHE_UTCL1_CNTL2__FORCE_FRAG_2M_TO_64K_MASK 0x04000000L
+//SQC_ICACHE_UTCL1_STATUS
+#define SQC_ICACHE_UTCL1_STATUS__FAULT_DETECTED__SHIFT 0x0
+#define SQC_ICACHE_UTCL1_STATUS__RETRY_DETECTED__SHIFT 0x1
+#define SQC_ICACHE_UTCL1_STATUS__PRT_DETECTED__SHIFT 0x2
+#define SQC_ICACHE_UTCL1_STATUS__FAULT_DETECTED_MASK 0x00000001L
+#define SQC_ICACHE_UTCL1_STATUS__RETRY_DETECTED_MASK 0x00000002L
+#define SQC_ICACHE_UTCL1_STATUS__PRT_DETECTED_MASK 0x00000004L
+//SQC_DCACHE_UTCL1_STATUS
+#define SQC_DCACHE_UTCL1_STATUS__FAULT_DETECTED__SHIFT 0x0
+#define SQC_DCACHE_UTCL1_STATUS__RETRY_DETECTED__SHIFT 0x1
+#define SQC_DCACHE_UTCL1_STATUS__PRT_DETECTED__SHIFT 0x2
+#define SQC_DCACHE_UTCL1_STATUS__FAULT_DETECTED_MASK 0x00000001L
+#define SQC_DCACHE_UTCL1_STATUS__RETRY_DETECTED_MASK 0x00000002L
+#define SQC_DCACHE_UTCL1_STATUS__PRT_DETECTED_MASK 0x00000004L
+
+
+// addressBlock: xcd0_gc_shsdec
+//SX_DEBUG_BUSY
+#define SX_DEBUG_BUSY__RESERVED__SHIFT 0x0
+#define SX_DEBUG_BUSY__PCCMD_VALID__SHIFT 0x1b
+#define SX_DEBUG_BUSY__VDATA1_VALID__SHIFT 0x1c
+#define SX_DEBUG_BUSY__VDATA0_VALID__SHIFT 0x1d
+#define SX_DEBUG_BUSY__CMD_BUSYORVAL__SHIFT 0x1e
+#define SX_DEBUG_BUSY__PCDATA_VALID__SHIFT 0x1f
+#define SX_DEBUG_BUSY__RESERVED_MASK 0x07FFFFFFL
+#define SX_DEBUG_BUSY__PCCMD_VALID_MASK 0x08000000L
+#define SX_DEBUG_BUSY__VDATA1_VALID_MASK 0x10000000L
+#define SX_DEBUG_BUSY__VDATA0_VALID_MASK 0x20000000L
+#define SX_DEBUG_BUSY__CMD_BUSYORVAL_MASK 0x40000000L
+#define SX_DEBUG_BUSY__PCDATA_VALID_MASK 0x80000000L
+//SX_DEBUG_1
+#define SX_DEBUG_1__RESERVED__SHIFT 0x0
+#define SX_DEBUG_1__DISABLE_REP_FGCG__SHIFT 0xd
+#define SX_DEBUG_1__RESERVED_MASK 0x00001FFFL
+#define SX_DEBUG_1__DISABLE_REP_FGCG_MASK 0x00002000L
+//SPI_PS_MAX_WAVE_ID
+#define SPI_PS_MAX_WAVE_ID__MAX_WAVE_ID__SHIFT 0x0
+#define SPI_PS_MAX_WAVE_ID__MAX_COLLISION_WAVE_ID__SHIFT 0x10
+#define SPI_PS_MAX_WAVE_ID__MAX_WAVE_ID_MASK 0x00000FFFL
+#define SPI_PS_MAX_WAVE_ID__MAX_COLLISION_WAVE_ID_MASK 0x03FF0000L
+//SPI_START_PHASE
+#define SPI_START_PHASE__VGPR_START_PHASE__SHIFT 0x0
+#define SPI_START_PHASE__SGPR_START_PHASE__SHIFT 0x2
+#define SPI_START_PHASE__WAVE_START_PHASE__SHIFT 0x4
+#define SPI_START_PHASE__SPI_TD_GAP__SHIFT 0x6
+#define SPI_START_PHASE__VGPR_START_PHASE_MASK 0x00000003L
+#define SPI_START_PHASE__SGPR_START_PHASE_MASK 0x0000000CL
+#define SPI_START_PHASE__WAVE_START_PHASE_MASK 0x00000030L
+#define SPI_START_PHASE__SPI_TD_GAP_MASK 0x000003C0L
+//SPI_GFX_CNTL
+#define SPI_GFX_CNTL__RESET_COUNTS__SHIFT 0x0
+#define SPI_GFX_CNTL__RESET_COUNTS_MASK 0x00000001L
+//SPI_DEBUG_READ
+#define SPI_DEBUG_READ__DATA__SHIFT 0x0
+#define SPI_DEBUG_READ__DATA_MASK 0xFFFFFFFFL
+//SPI_DSM_CNTL
+#define SPI_DSM_CNTL__SPI_SR_MEM_DSM_IRRITATOR_DATA__SHIFT 0x0
+#define SPI_DSM_CNTL__SPI_SR_MEM_ENABLE_SINGLE_WRITE__SHIFT 0x2
+#define SPI_DSM_CNTL__SPI_GDS_EXPREQ_MEM_DSM_IRRITATOR_DATA__SHIFT 0x3
+#define SPI_DSM_CNTL__SPI_GDS_EXPREQ_MEM_ENABLE_SINGLE_WRITE__SHIFT 0x5
+#define SPI_DSM_CNTL__SPI_WB_GRANT_30_MEM_DSM_IRRITATOR_DATA__SHIFT 0x6
+#define SPI_DSM_CNTL__SPI_WB_GRANT_30_MEM_ENABLE_SINGLE_WRITE__SHIFT 0x8
+#define SPI_DSM_CNTL__RESERVED__SHIFT 0x9
+#define SPI_DSM_CNTL__SPI_LIFE_CNT_MEM_DSM_IRRITATOR_DATA__SHIFT 0xc
+#define SPI_DSM_CNTL__SPI_LIFE_CNT_MEM_ENABLE_SINGLE_WRITE__SHIFT 0xe
+#define SPI_DSM_CNTL__UNUSED__SHIFT 0xf
+#define SPI_DSM_CNTL__SPI_SR_MEM_DSM_IRRITATOR_DATA_MASK 0x00000003L
+#define SPI_DSM_CNTL__SPI_SR_MEM_ENABLE_SINGLE_WRITE_MASK 0x00000004L
+#define SPI_DSM_CNTL__SPI_GDS_EXPREQ_MEM_DSM_IRRITATOR_DATA_MASK 0x00000018L
+#define SPI_DSM_CNTL__SPI_GDS_EXPREQ_MEM_ENABLE_SINGLE_WRITE_MASK 0x00000020L
+#define SPI_DSM_CNTL__SPI_WB_GRANT_30_MEM_DSM_IRRITATOR_DATA_MASK 0x000000C0L
+#define SPI_DSM_CNTL__SPI_WB_GRANT_30_MEM_ENABLE_SINGLE_WRITE_MASK 0x00000100L
+#define SPI_DSM_CNTL__RESERVED_MASK 0x00000E00L
+#define SPI_DSM_CNTL__SPI_LIFE_CNT_MEM_DSM_IRRITATOR_DATA_MASK 0x00003000L
+#define SPI_DSM_CNTL__SPI_LIFE_CNT_MEM_ENABLE_SINGLE_WRITE_MASK 0x00004000L
+#define SPI_DSM_CNTL__UNUSED_MASK 0xFFFF8000L
+//SPI_DSM_CNTL2
+#define SPI_DSM_CNTL2__SPI_SR_MEM_ENABLE_ERROR_INJECT__SHIFT 0x0
+#define SPI_DSM_CNTL2__SPI_SR_MEM_SELECT_INJECT_DELAY__SHIFT 0x2
+#define SPI_DSM_CNTL2__SPI_SR_MEM_INJECT_DELAY__SHIFT 0x4
+#define SPI_DSM_CNTL2__SPI_GDS_EXPREQ_MEM_ENABLE_ERROR_INJECT__SHIFT 0xa
+#define SPI_DSM_CNTL2__SPI_GDS_EXPREQ_MEM_SELECT_INJECT_DELAY__SHIFT 0xc
+#define SPI_DSM_CNTL2__SPI_WB_GRANT_30_MEM_ENABLE_ERROR_INJECT__SHIFT 0xd
+#define SPI_DSM_CNTL2__SPI_WB_GRANT_30_MEM_SELECT_INJECT_DELAY__SHIFT 0xf
+#define SPI_DSM_CNTL2__RESERVED__SHIFT 0x10
+#define SPI_DSM_CNTL2__SPI_LIFE_CNT_MEM_ENABLE_ERROR_INJECT__SHIFT 0x13
+#define SPI_DSM_CNTL2__SPI_LIFE_CNT_MEM_SELECT_INJECT_DELAY__SHIFT 0x15
+#define SPI_DSM_CNTL2__UNUSED__SHIFT 0x16
+#define SPI_DSM_CNTL2__SPI_SR_MEM_ENABLE_ERROR_INJECT_MASK 0x00000003L
+#define SPI_DSM_CNTL2__SPI_SR_MEM_SELECT_INJECT_DELAY_MASK 0x00000004L
+#define SPI_DSM_CNTL2__SPI_SR_MEM_INJECT_DELAY_MASK 0x000003F0L
+#define SPI_DSM_CNTL2__SPI_GDS_EXPREQ_MEM_ENABLE_ERROR_INJECT_MASK 0x00000C00L
+#define SPI_DSM_CNTL2__SPI_GDS_EXPREQ_MEM_SELECT_INJECT_DELAY_MASK 0x00001000L
+#define SPI_DSM_CNTL2__SPI_WB_GRANT_30_MEM_ENABLE_ERROR_INJECT_MASK 0x00006000L
+#define SPI_DSM_CNTL2__SPI_WB_GRANT_30_MEM_SELECT_INJECT_DELAY_MASK 0x00008000L
+#define SPI_DSM_CNTL2__RESERVED_MASK 0x00070000L
+#define SPI_DSM_CNTL2__SPI_LIFE_CNT_MEM_ENABLE_ERROR_INJECT_MASK 0x00180000L
+#define SPI_DSM_CNTL2__SPI_LIFE_CNT_MEM_SELECT_INJECT_DELAY_MASK 0x00200000L
+#define SPI_DSM_CNTL2__UNUSED_MASK 0xFFC00000L
+//SPI_EDC_CNT
+#define SPI_EDC_CNT__SPI_SR_MEM_SEC_COUNT__SHIFT 0x0
+#define SPI_EDC_CNT__SPI_SR_MEM_DED_COUNT__SHIFT 0x2
+#define SPI_EDC_CNT__SPI_GDS_EXPREQ_SEC_COUNT__SHIFT 0x4
+#define SPI_EDC_CNT__SPI_GDS_EXPREQ_DED_COUNT__SHIFT 0x6
+#define SPI_EDC_CNT__SPI_WB_GRANT_30_SEC_COUNT__SHIFT 0x8
+#define SPI_EDC_CNT__SPI_WB_GRANT_30_DED_COUNT__SHIFT 0xa
+#define SPI_EDC_CNT__RESERVED__SHIFT 0xc
+#define SPI_EDC_CNT__SPI_LIFE_CNT_SEC_COUNT__SHIFT 0x10
+#define SPI_EDC_CNT__SPI_LIFE_CNT_DED_COUNT__SHIFT 0x12
+#define SPI_EDC_CNT__UNUSED__SHIFT 0x14
+#define SPI_EDC_CNT__SPI_SR_MEM_SEC_COUNT_MASK 0x00000003L
+#define SPI_EDC_CNT__SPI_SR_MEM_DED_COUNT_MASK 0x0000000CL
+#define SPI_EDC_CNT__SPI_GDS_EXPREQ_SEC_COUNT_MASK 0x00000030L
+#define SPI_EDC_CNT__SPI_GDS_EXPREQ_DED_COUNT_MASK 0x000000C0L
+#define SPI_EDC_CNT__SPI_WB_GRANT_30_SEC_COUNT_MASK 0x00000300L
+#define SPI_EDC_CNT__SPI_WB_GRANT_30_DED_COUNT_MASK 0x00000C00L
+#define SPI_EDC_CNT__RESERVED_MASK 0x0000F000L
+#define SPI_EDC_CNT__SPI_LIFE_CNT_SEC_COUNT_MASK 0x00030000L
+#define SPI_EDC_CNT__SPI_LIFE_CNT_DED_COUNT_MASK 0x000C0000L
+#define SPI_EDC_CNT__UNUSED_MASK 0xFFF00000L
+//SPI_DEBUG_BUSY
+#define SPI_DEBUG_BUSY__HS_BUSY__SHIFT 0x0
+#define SPI_DEBUG_BUSY__GS_BUSY__SHIFT 0x1
+#define SPI_DEBUG_BUSY__VS_BUSY__SHIFT 0x2
+#define SPI_DEBUG_BUSY__PS0_BUSY__SHIFT 0x3
+#define SPI_DEBUG_BUSY__PS1_BUSY__SHIFT 0x4
+#define SPI_DEBUG_BUSY__CSG_BUSY__SHIFT 0x5
+#define SPI_DEBUG_BUSY__CS0_BUSY__SHIFT 0x6
+#define SPI_DEBUG_BUSY__CS1_BUSY__SHIFT 0x7
+#define SPI_DEBUG_BUSY__CS2_BUSY__SHIFT 0x8
+#define SPI_DEBUG_BUSY__CS3_BUSY__SHIFT 0x9
+#define SPI_DEBUG_BUSY__CS4_BUSY__SHIFT 0xa
+#define SPI_DEBUG_BUSY__CS5_BUSY__SHIFT 0xb
+#define SPI_DEBUG_BUSY__CS6_BUSY__SHIFT 0xc
+#define SPI_DEBUG_BUSY__CS7_BUSY__SHIFT 0xd
+#define SPI_DEBUG_BUSY__LDS_WR_CTL0_BUSY__SHIFT 0xe
+#define SPI_DEBUG_BUSY__LDS_WR_CTL1_BUSY__SHIFT 0xf
+#define SPI_DEBUG_BUSY__RSRC_ALLOC0_BUSY__SHIFT 0x10
+#define SPI_DEBUG_BUSY__RSRC_ALLOC1_BUSY__SHIFT 0x11
+#define SPI_DEBUG_BUSY__PC_DEALLOC_BUSY__SHIFT 0x12
+#define SPI_DEBUG_BUSY__EVENT_CLCTR_BUSY__SHIFT 0x13
+#define SPI_DEBUG_BUSY__GRBM_BUSY__SHIFT 0x14
+#define SPI_DEBUG_BUSY__SPIS_BUSY__SHIFT 0x15
+#define SPI_DEBUG_BUSY__HS_BUSY_MASK 0x00000001L
+#define SPI_DEBUG_BUSY__GS_BUSY_MASK 0x00000002L
+#define SPI_DEBUG_BUSY__VS_BUSY_MASK 0x00000004L
+#define SPI_DEBUG_BUSY__PS0_BUSY_MASK 0x00000008L
+#define SPI_DEBUG_BUSY__PS1_BUSY_MASK 0x00000010L
+#define SPI_DEBUG_BUSY__CSG_BUSY_MASK 0x00000020L
+#define SPI_DEBUG_BUSY__CS0_BUSY_MASK 0x00000040L
+#define SPI_DEBUG_BUSY__CS1_BUSY_MASK 0x00000080L
+#define SPI_DEBUG_BUSY__CS2_BUSY_MASK 0x00000100L
+#define SPI_DEBUG_BUSY__CS3_BUSY_MASK 0x00000200L
+#define SPI_DEBUG_BUSY__CS4_BUSY_MASK 0x00000400L
+#define SPI_DEBUG_BUSY__CS5_BUSY_MASK 0x00000800L
+#define SPI_DEBUG_BUSY__CS6_BUSY_MASK 0x00001000L
+#define SPI_DEBUG_BUSY__CS7_BUSY_MASK 0x00002000L
+#define SPI_DEBUG_BUSY__LDS_WR_CTL0_BUSY_MASK 0x00004000L
+#define SPI_DEBUG_BUSY__LDS_WR_CTL1_BUSY_MASK 0x00008000L
+#define SPI_DEBUG_BUSY__RSRC_ALLOC0_BUSY_MASK 0x00010000L
+#define SPI_DEBUG_BUSY__RSRC_ALLOC1_BUSY_MASK 0x00020000L
+#define SPI_DEBUG_BUSY__PC_DEALLOC_BUSY_MASK 0x00040000L
+#define SPI_DEBUG_BUSY__EVENT_CLCTR_BUSY_MASK 0x00080000L
+#define SPI_DEBUG_BUSY__GRBM_BUSY_MASK 0x00100000L
+#define SPI_DEBUG_BUSY__SPIS_BUSY_MASK 0x00200000L
+//SPI_CONFIG_PS_CU_EN
+#define SPI_CONFIG_PS_CU_EN__ENABLE__SHIFT 0x0
+#define SPI_CONFIG_PS_CU_EN__PKR0_CU_EN__SHIFT 0x1
+#define SPI_CONFIG_PS_CU_EN__PKR1_CU_EN__SHIFT 0x10
+#define SPI_CONFIG_PS_CU_EN__ENABLE_MASK 0x00000001L
+#define SPI_CONFIG_PS_CU_EN__PKR0_CU_EN_MASK 0x0000FFFEL
+#define SPI_CONFIG_PS_CU_EN__PKR1_CU_EN_MASK 0xFFFF0000L
+//SPI_WF_LIFETIME_CNTL
+#define SPI_WF_LIFETIME_CNTL__SAMPLE_PERIOD__SHIFT 0x0
+#define SPI_WF_LIFETIME_CNTL__EN__SHIFT 0x4
+#define SPI_WF_LIFETIME_CNTL__SAMPLE_PERIOD_MASK 0x0000000FL
+#define SPI_WF_LIFETIME_CNTL__EN_MASK 0x00000010L
+//SPI_WF_LIFETIME_LIMIT_0
+#define SPI_WF_LIFETIME_LIMIT_0__MAX_CNT__SHIFT 0x0
+#define SPI_WF_LIFETIME_LIMIT_0__EN_WARN__SHIFT 0x1f
+#define SPI_WF_LIFETIME_LIMIT_0__MAX_CNT_MASK 0x7FFFFFFFL
+#define SPI_WF_LIFETIME_LIMIT_0__EN_WARN_MASK 0x80000000L
+//SPI_WF_LIFETIME_LIMIT_1
+#define SPI_WF_LIFETIME_LIMIT_1__MAX_CNT__SHIFT 0x0
+#define SPI_WF_LIFETIME_LIMIT_1__EN_WARN__SHIFT 0x1f
+#define SPI_WF_LIFETIME_LIMIT_1__MAX_CNT_MASK 0x7FFFFFFFL
+#define SPI_WF_LIFETIME_LIMIT_1__EN_WARN_MASK 0x80000000L
+//SPI_WF_LIFETIME_LIMIT_2
+#define SPI_WF_LIFETIME_LIMIT_2__MAX_CNT__SHIFT 0x0
+#define SPI_WF_LIFETIME_LIMIT_2__EN_WARN__SHIFT 0x1f
+#define SPI_WF_LIFETIME_LIMIT_2__MAX_CNT_MASK 0x7FFFFFFFL
+#define SPI_WF_LIFETIME_LIMIT_2__EN_WARN_MASK 0x80000000L
+//SPI_WF_LIFETIME_LIMIT_3
+#define SPI_WF_LIFETIME_LIMIT_3__MAX_CNT__SHIFT 0x0
+#define SPI_WF_LIFETIME_LIMIT_3__EN_WARN__SHIFT 0x1f
+#define SPI_WF_LIFETIME_LIMIT_3__MAX_CNT_MASK 0x7FFFFFFFL
+#define SPI_WF_LIFETIME_LIMIT_3__EN_WARN_MASK 0x80000000L
+//SPI_WF_LIFETIME_LIMIT_4
+#define SPI_WF_LIFETIME_LIMIT_4__MAX_CNT__SHIFT 0x0
+#define SPI_WF_LIFETIME_LIMIT_4__EN_WARN__SHIFT 0x1f
+#define SPI_WF_LIFETIME_LIMIT_4__MAX_CNT_MASK 0x7FFFFFFFL
+#define SPI_WF_LIFETIME_LIMIT_4__EN_WARN_MASK 0x80000000L
+//SPI_WF_LIFETIME_LIMIT_5
+#define SPI_WF_LIFETIME_LIMIT_5__MAX_CNT__SHIFT 0x0
+#define SPI_WF_LIFETIME_LIMIT_5__EN_WARN__SHIFT 0x1f
+#define SPI_WF_LIFETIME_LIMIT_5__MAX_CNT_MASK 0x7FFFFFFFL
+#define SPI_WF_LIFETIME_LIMIT_5__EN_WARN_MASK 0x80000000L
+//SPI_WF_LIFETIME_LIMIT_6
+#define SPI_WF_LIFETIME_LIMIT_6__MAX_CNT__SHIFT 0x0
+#define SPI_WF_LIFETIME_LIMIT_6__EN_WARN__SHIFT 0x1f
+#define SPI_WF_LIFETIME_LIMIT_6__MAX_CNT_MASK 0x7FFFFFFFL
+#define SPI_WF_LIFETIME_LIMIT_6__EN_WARN_MASK 0x80000000L
+//SPI_WF_LIFETIME_LIMIT_7
+#define SPI_WF_LIFETIME_LIMIT_7__MAX_CNT__SHIFT 0x0
+#define SPI_WF_LIFETIME_LIMIT_7__EN_WARN__SHIFT 0x1f
+#define SPI_WF_LIFETIME_LIMIT_7__MAX_CNT_MASK 0x7FFFFFFFL
+#define SPI_WF_LIFETIME_LIMIT_7__EN_WARN_MASK 0x80000000L
+//SPI_WF_LIFETIME_LIMIT_8
+#define SPI_WF_LIFETIME_LIMIT_8__MAX_CNT__SHIFT 0x0
+#define SPI_WF_LIFETIME_LIMIT_8__EN_WARN__SHIFT 0x1f
+#define SPI_WF_LIFETIME_LIMIT_8__MAX_CNT_MASK 0x7FFFFFFFL
+#define SPI_WF_LIFETIME_LIMIT_8__EN_WARN_MASK 0x80000000L
+//SPI_WF_LIFETIME_LIMIT_9
+#define SPI_WF_LIFETIME_LIMIT_9__MAX_CNT__SHIFT 0x0
+#define SPI_WF_LIFETIME_LIMIT_9__EN_WARN__SHIFT 0x1f
+#define SPI_WF_LIFETIME_LIMIT_9__MAX_CNT_MASK 0x7FFFFFFFL
+#define SPI_WF_LIFETIME_LIMIT_9__EN_WARN_MASK 0x80000000L
+//SPI_WF_LIFETIME_STATUS_0
+#define SPI_WF_LIFETIME_STATUS_0__MAX_CNT__SHIFT 0x0
+#define SPI_WF_LIFETIME_STATUS_0__INT_SENT__SHIFT 0x1f
+#define SPI_WF_LIFETIME_STATUS_0__MAX_CNT_MASK 0x7FFFFFFFL
+#define SPI_WF_LIFETIME_STATUS_0__INT_SENT_MASK 0x80000000L
+//SPI_WF_LIFETIME_STATUS_1
+#define SPI_WF_LIFETIME_STATUS_1__MAX_CNT__SHIFT 0x0
+#define SPI_WF_LIFETIME_STATUS_1__INT_SENT__SHIFT 0x1f
+#define SPI_WF_LIFETIME_STATUS_1__MAX_CNT_MASK 0x7FFFFFFFL
+#define SPI_WF_LIFETIME_STATUS_1__INT_SENT_MASK 0x80000000L
+//SPI_WF_LIFETIME_STATUS_2
+#define SPI_WF_LIFETIME_STATUS_2__MAX_CNT__SHIFT 0x0
+#define SPI_WF_LIFETIME_STATUS_2__INT_SENT__SHIFT 0x1f
+#define SPI_WF_LIFETIME_STATUS_2__MAX_CNT_MASK 0x7FFFFFFFL
+#define SPI_WF_LIFETIME_STATUS_2__INT_SENT_MASK 0x80000000L
+//SPI_WF_LIFETIME_STATUS_3
+#define SPI_WF_LIFETIME_STATUS_3__MAX_CNT__SHIFT 0x0
+#define SPI_WF_LIFETIME_STATUS_3__INT_SENT__SHIFT 0x1f
+#define SPI_WF_LIFETIME_STATUS_3__MAX_CNT_MASK 0x7FFFFFFFL
+#define SPI_WF_LIFETIME_STATUS_3__INT_SENT_MASK 0x80000000L
+//SPI_WF_LIFETIME_STATUS_4
+#define SPI_WF_LIFETIME_STATUS_4__MAX_CNT__SHIFT 0x0
+#define SPI_WF_LIFETIME_STATUS_4__INT_SENT__SHIFT 0x1f
+#define SPI_WF_LIFETIME_STATUS_4__MAX_CNT_MASK 0x7FFFFFFFL
+#define SPI_WF_LIFETIME_STATUS_4__INT_SENT_MASK 0x80000000L
+//SPI_WF_LIFETIME_STATUS_5
+#define SPI_WF_LIFETIME_STATUS_5__MAX_CNT__SHIFT 0x0
+#define SPI_WF_LIFETIME_STATUS_5__INT_SENT__SHIFT 0x1f
+#define SPI_WF_LIFETIME_STATUS_5__MAX_CNT_MASK 0x7FFFFFFFL
+#define SPI_WF_LIFETIME_STATUS_5__INT_SENT_MASK 0x80000000L
+//SPI_WF_LIFETIME_STATUS_6
+#define SPI_WF_LIFETIME_STATUS_6__MAX_CNT__SHIFT 0x0
+#define SPI_WF_LIFETIME_STATUS_6__INT_SENT__SHIFT 0x1f
+#define SPI_WF_LIFETIME_STATUS_6__MAX_CNT_MASK 0x7FFFFFFFL
+#define SPI_WF_LIFETIME_STATUS_6__INT_SENT_MASK 0x80000000L
+//SPI_WF_LIFETIME_STATUS_7
+#define SPI_WF_LIFETIME_STATUS_7__MAX_CNT__SHIFT 0x0
+#define SPI_WF_LIFETIME_STATUS_7__INT_SENT__SHIFT 0x1f
+#define SPI_WF_LIFETIME_STATUS_7__MAX_CNT_MASK 0x7FFFFFFFL
+#define SPI_WF_LIFETIME_STATUS_7__INT_SENT_MASK 0x80000000L
+//SPI_WF_LIFETIME_STATUS_8
+#define SPI_WF_LIFETIME_STATUS_8__MAX_CNT__SHIFT 0x0
+#define SPI_WF_LIFETIME_STATUS_8__INT_SENT__SHIFT 0x1f
+#define SPI_WF_LIFETIME_STATUS_8__MAX_CNT_MASK 0x7FFFFFFFL
+#define SPI_WF_LIFETIME_STATUS_8__INT_SENT_MASK 0x80000000L
+//SPI_WF_LIFETIME_STATUS_9
+#define SPI_WF_LIFETIME_STATUS_9__MAX_CNT__SHIFT 0x0
+#define SPI_WF_LIFETIME_STATUS_9__INT_SENT__SHIFT 0x1f
+#define SPI_WF_LIFETIME_STATUS_9__MAX_CNT_MASK 0x7FFFFFFFL
+#define SPI_WF_LIFETIME_STATUS_9__INT_SENT_MASK 0x80000000L
+//SPI_WF_LIFETIME_STATUS_10
+#define SPI_WF_LIFETIME_STATUS_10__MAX_CNT__SHIFT 0x0
+#define SPI_WF_LIFETIME_STATUS_10__INT_SENT__SHIFT 0x1f
+#define SPI_WF_LIFETIME_STATUS_10__MAX_CNT_MASK 0x7FFFFFFFL
+#define SPI_WF_LIFETIME_STATUS_10__INT_SENT_MASK 0x80000000L
+//SPI_WF_LIFETIME_STATUS_11
+#define SPI_WF_LIFETIME_STATUS_11__MAX_CNT__SHIFT 0x0
+#define SPI_WF_LIFETIME_STATUS_11__INT_SENT__SHIFT 0x1f
+#define SPI_WF_LIFETIME_STATUS_11__MAX_CNT_MASK 0x7FFFFFFFL
+#define SPI_WF_LIFETIME_STATUS_11__INT_SENT_MASK 0x80000000L
+//SPI_WF_LIFETIME_STATUS_12
+#define SPI_WF_LIFETIME_STATUS_12__MAX_CNT__SHIFT 0x0
+#define SPI_WF_LIFETIME_STATUS_12__INT_SENT__SHIFT 0x1f
+#define SPI_WF_LIFETIME_STATUS_12__MAX_CNT_MASK 0x7FFFFFFFL
+#define SPI_WF_LIFETIME_STATUS_12__INT_SENT_MASK 0x80000000L
+//SPI_WF_LIFETIME_STATUS_13
+#define SPI_WF_LIFETIME_STATUS_13__MAX_CNT__SHIFT 0x0
+#define SPI_WF_LIFETIME_STATUS_13__INT_SENT__SHIFT 0x1f
+#define SPI_WF_LIFETIME_STATUS_13__MAX_CNT_MASK 0x7FFFFFFFL
+#define SPI_WF_LIFETIME_STATUS_13__INT_SENT_MASK 0x80000000L
+//SPI_WF_LIFETIME_STATUS_14
+#define SPI_WF_LIFETIME_STATUS_14__MAX_CNT__SHIFT 0x0
+#define SPI_WF_LIFETIME_STATUS_14__INT_SENT__SHIFT 0x1f
+#define SPI_WF_LIFETIME_STATUS_14__MAX_CNT_MASK 0x7FFFFFFFL
+#define SPI_WF_LIFETIME_STATUS_14__INT_SENT_MASK 0x80000000L
+//SPI_WF_LIFETIME_STATUS_15
+#define SPI_WF_LIFETIME_STATUS_15__MAX_CNT__SHIFT 0x0
+#define SPI_WF_LIFETIME_STATUS_15__INT_SENT__SHIFT 0x1f
+#define SPI_WF_LIFETIME_STATUS_15__MAX_CNT_MASK 0x7FFFFFFFL
+#define SPI_WF_LIFETIME_STATUS_15__INT_SENT_MASK 0x80000000L
+//SPI_WF_LIFETIME_STATUS_16
+#define SPI_WF_LIFETIME_STATUS_16__MAX_CNT__SHIFT 0x0
+#define SPI_WF_LIFETIME_STATUS_16__INT_SENT__SHIFT 0x1f
+#define SPI_WF_LIFETIME_STATUS_16__MAX_CNT_MASK 0x7FFFFFFFL
+#define SPI_WF_LIFETIME_STATUS_16__INT_SENT_MASK 0x80000000L
+//SPI_WF_LIFETIME_STATUS_17
+#define SPI_WF_LIFETIME_STATUS_17__MAX_CNT__SHIFT 0x0
+#define SPI_WF_LIFETIME_STATUS_17__INT_SENT__SHIFT 0x1f
+#define SPI_WF_LIFETIME_STATUS_17__MAX_CNT_MASK 0x7FFFFFFFL
+#define SPI_WF_LIFETIME_STATUS_17__INT_SENT_MASK 0x80000000L
+//SPI_WF_LIFETIME_STATUS_18
+#define SPI_WF_LIFETIME_STATUS_18__MAX_CNT__SHIFT 0x0
+#define SPI_WF_LIFETIME_STATUS_18__INT_SENT__SHIFT 0x1f
+#define SPI_WF_LIFETIME_STATUS_18__MAX_CNT_MASK 0x7FFFFFFFL
+#define SPI_WF_LIFETIME_STATUS_18__INT_SENT_MASK 0x80000000L
+//SPI_WF_LIFETIME_STATUS_19
+#define SPI_WF_LIFETIME_STATUS_19__MAX_CNT__SHIFT 0x0
+#define SPI_WF_LIFETIME_STATUS_19__INT_SENT__SHIFT 0x1f
+#define SPI_WF_LIFETIME_STATUS_19__MAX_CNT_MASK 0x7FFFFFFFL
+#define SPI_WF_LIFETIME_STATUS_19__INT_SENT_MASK 0x80000000L
+//SPI_WF_LIFETIME_STATUS_20
+#define SPI_WF_LIFETIME_STATUS_20__MAX_CNT__SHIFT 0x0
+#define SPI_WF_LIFETIME_STATUS_20__INT_SENT__SHIFT 0x1f
+#define SPI_WF_LIFETIME_STATUS_20__MAX_CNT_MASK 0x7FFFFFFFL
+#define SPI_WF_LIFETIME_STATUS_20__INT_SENT_MASK 0x80000000L
+//SPI_WF_LIFETIME_DEBUG
+#define SPI_WF_LIFETIME_DEBUG__START_VALUE__SHIFT 0x0
+#define SPI_WF_LIFETIME_DEBUG__OVERRIDE_EN__SHIFT 0x1f
+#define SPI_WF_LIFETIME_DEBUG__START_VALUE_MASK 0x7FFFFFFFL
+#define SPI_WF_LIFETIME_DEBUG__OVERRIDE_EN_MASK 0x80000000L
+//SPI_LB_CTR_CTRL
+#define SPI_LB_CTR_CTRL__LOAD__SHIFT 0x0
+#define SPI_LB_CTR_CTRL__WAVES_SELECT__SHIFT 0x1
+#define SPI_LB_CTR_CTRL__CLEAR_ON_READ__SHIFT 0x3
+#define SPI_LB_CTR_CTRL__RESET_COUNTS__SHIFT 0x4
+#define SPI_LB_CTR_CTRL__LOAD_MASK 0x00000001L
+#define SPI_LB_CTR_CTRL__WAVES_SELECT_MASK 0x00000006L
+#define SPI_LB_CTR_CTRL__CLEAR_ON_READ_MASK 0x00000008L
+#define SPI_LB_CTR_CTRL__RESET_COUNTS_MASK 0x00000010L
+//SPI_LB_CU_MASK
+#define SPI_LB_CU_MASK__CU_MASK__SHIFT 0x0
+#define SPI_LB_CU_MASK__CU_MASK_MASK 0xFFFFL
+//SPI_LB_DATA_REG
+#define SPI_LB_DATA_REG__CNT_DATA__SHIFT 0x0
+#define SPI_LB_DATA_REG__CNT_DATA_MASK 0xFFFFFFFFL
+//SPI_PG_ENABLE_STATIC_CU_MASK
+#define SPI_PG_ENABLE_STATIC_CU_MASK__CU_MASK__SHIFT 0x0
+#define SPI_PG_ENABLE_STATIC_CU_MASK__CU_MASK_MASK 0xFFFFL
+//SPI_GDS_CREDITS
+#define SPI_GDS_CREDITS__DS_DATA_CREDITS__SHIFT 0x0
+#define SPI_GDS_CREDITS__DS_CMD_CREDITS__SHIFT 0x8
+#define SPI_GDS_CREDITS__UNUSED__SHIFT 0x10
+#define SPI_GDS_CREDITS__DS_DATA_CREDITS_MASK 0x000000FFL
+#define SPI_GDS_CREDITS__DS_CMD_CREDITS_MASK 0x0000FF00L
+#define SPI_GDS_CREDITS__UNUSED_MASK 0xFFFF0000L
+//SPI_SX_EXPORT_BUFFER_SIZES
+#define SPI_SX_EXPORT_BUFFER_SIZES__COLOR_BUFFER_SIZE__SHIFT 0x0
+#define SPI_SX_EXPORT_BUFFER_SIZES__POSITION_BUFFER_SIZE__SHIFT 0x10
+#define SPI_SX_EXPORT_BUFFER_SIZES__COLOR_BUFFER_SIZE_MASK 0x0000FFFFL
+#define SPI_SX_EXPORT_BUFFER_SIZES__POSITION_BUFFER_SIZE_MASK 0xFFFF0000L
+//SPI_SX_SCOREBOARD_BUFFER_SIZES
+#define SPI_SX_SCOREBOARD_BUFFER_SIZES__COLOR_SCOREBOARD_SIZE__SHIFT 0x0
+#define SPI_SX_SCOREBOARD_BUFFER_SIZES__POSITION_SCOREBOARD_SIZE__SHIFT 0x10
+#define SPI_SX_SCOREBOARD_BUFFER_SIZES__COLOR_SCOREBOARD_SIZE_MASK 0x0000FFFFL
+#define SPI_SX_SCOREBOARD_BUFFER_SIZES__POSITION_SCOREBOARD_SIZE_MASK 0xFFFF0000L
+//SPI_CSQ_WF_ACTIVE_STATUS
+#define SPI_CSQ_WF_ACTIVE_STATUS__ACTIVE__SHIFT 0x0
+#define SPI_CSQ_WF_ACTIVE_STATUS__ACTIVE_MASK 0xFFFFFFFFL
+//SPI_CSQ_WF_ACTIVE_COUNT_0
+#define SPI_CSQ_WF_ACTIVE_COUNT_0__COUNT__SHIFT 0x0
+#define SPI_CSQ_WF_ACTIVE_COUNT_0__EVENTS__SHIFT 0x10
+#define SPI_CSQ_WF_ACTIVE_COUNT_0__COUNT_MASK 0x000001FFL
+#define SPI_CSQ_WF_ACTIVE_COUNT_0__EVENTS_MASK 0x01FF0000L
+//SPI_CSQ_WF_ACTIVE_COUNT_1
+#define SPI_CSQ_WF_ACTIVE_COUNT_1__COUNT__SHIFT 0x0
+#define SPI_CSQ_WF_ACTIVE_COUNT_1__EVENTS__SHIFT 0x10
+#define SPI_CSQ_WF_ACTIVE_COUNT_1__COUNT_MASK 0x000001FFL
+#define SPI_CSQ_WF_ACTIVE_COUNT_1__EVENTS_MASK 0x01FF0000L
+//SPI_CSQ_WF_ACTIVE_COUNT_2
+#define SPI_CSQ_WF_ACTIVE_COUNT_2__COUNT__SHIFT 0x0
+#define SPI_CSQ_WF_ACTIVE_COUNT_2__EVENTS__SHIFT 0x10
+#define SPI_CSQ_WF_ACTIVE_COUNT_2__COUNT_MASK 0x000001FFL
+#define SPI_CSQ_WF_ACTIVE_COUNT_2__EVENTS_MASK 0x01FF0000L
+//SPI_CSQ_WF_ACTIVE_COUNT_3
+#define SPI_CSQ_WF_ACTIVE_COUNT_3__COUNT__SHIFT 0x0
+#define SPI_CSQ_WF_ACTIVE_COUNT_3__EVENTS__SHIFT 0x10
+#define SPI_CSQ_WF_ACTIVE_COUNT_3__COUNT_MASK 0x000001FFL
+#define SPI_CSQ_WF_ACTIVE_COUNT_3__EVENTS_MASK 0x01FF0000L
+//SPI_CSQ_WF_ACTIVE_COUNT_4
+#define SPI_CSQ_WF_ACTIVE_COUNT_4__COUNT__SHIFT 0x0
+#define SPI_CSQ_WF_ACTIVE_COUNT_4__EVENTS__SHIFT 0x10
+#define SPI_CSQ_WF_ACTIVE_COUNT_4__COUNT_MASK 0x000001FFL
+#define SPI_CSQ_WF_ACTIVE_COUNT_4__EVENTS_MASK 0x01FF0000L
+//SPI_CSQ_WF_ACTIVE_COUNT_5
+#define SPI_CSQ_WF_ACTIVE_COUNT_5__COUNT__SHIFT 0x0
+#define SPI_CSQ_WF_ACTIVE_COUNT_5__EVENTS__SHIFT 0x10
+#define SPI_CSQ_WF_ACTIVE_COUNT_5__COUNT_MASK 0x000001FFL
+#define SPI_CSQ_WF_ACTIVE_COUNT_5__EVENTS_MASK 0x01FF0000L
+//SPI_CSQ_WF_ACTIVE_COUNT_6
+#define SPI_CSQ_WF_ACTIVE_COUNT_6__COUNT__SHIFT 0x0
+#define SPI_CSQ_WF_ACTIVE_COUNT_6__EVENTS__SHIFT 0x10
+#define SPI_CSQ_WF_ACTIVE_COUNT_6__COUNT_MASK 0x000001FFL
+#define SPI_CSQ_WF_ACTIVE_COUNT_6__EVENTS_MASK 0x01FF0000L
+//SPI_CSQ_WF_ACTIVE_COUNT_7
+#define SPI_CSQ_WF_ACTIVE_COUNT_7__COUNT__SHIFT 0x0
+#define SPI_CSQ_WF_ACTIVE_COUNT_7__EVENTS__SHIFT 0x10
+#define SPI_CSQ_WF_ACTIVE_COUNT_7__COUNT_MASK 0x000001FFL
+#define SPI_CSQ_WF_ACTIVE_COUNT_7__EVENTS_MASK 0x01FF0000L
+//SPI_LB_DATA_WAVES
+#define SPI_LB_DATA_WAVES__COUNT0__SHIFT 0x0
+#define SPI_LB_DATA_WAVES__COUNT1__SHIFT 0x10
+#define SPI_LB_DATA_WAVES__COUNT0_MASK 0x0000FFFFL
+#define SPI_LB_DATA_WAVES__COUNT1_MASK 0xFFFF0000L
+//SPI_LB_DATA_PERCU_WAVE_HSGS
+#define SPI_LB_DATA_PERCU_WAVE_HSGS__CU_USED_HS__SHIFT 0x0
+#define SPI_LB_DATA_PERCU_WAVE_HSGS__CU_USED_GS__SHIFT 0x10
+#define SPI_LB_DATA_PERCU_WAVE_HSGS__CU_USED_HS_MASK 0x0000FFFFL
+#define SPI_LB_DATA_PERCU_WAVE_HSGS__CU_USED_GS_MASK 0xFFFF0000L
+//SPI_LB_DATA_PERCU_WAVE_VSPS
+#define SPI_LB_DATA_PERCU_WAVE_VSPS__CU_USED_VS__SHIFT 0x0
+#define SPI_LB_DATA_PERCU_WAVE_VSPS__CU_USED_PS__SHIFT 0x10
+#define SPI_LB_DATA_PERCU_WAVE_VSPS__CU_USED_VS_MASK 0x0000FFFFL
+#define SPI_LB_DATA_PERCU_WAVE_VSPS__CU_USED_PS_MASK 0xFFFF0000L
+//SPI_LB_DATA_PERCU_WAVE_CS
+#define SPI_LB_DATA_PERCU_WAVE_CS__ACTIVE__SHIFT 0x0
+#define SPI_LB_DATA_PERCU_WAVE_CS__ACTIVE_MASK 0xFFFFL
+//SPIS_DEBUG_READ
+#define SPIS_DEBUG_READ__DATA__SHIFT 0x0
+#define SPIS_DEBUG_READ__DATA_MASK 0xFFFFFFFFL
+//BCI_DEBUG_READ
+#define BCI_DEBUG_READ__DATA__SHIFT 0x0
+#define BCI_DEBUG_READ__DATA_MASK 0xFFFFFFL
+//SPI_P0_TRAP_SCREEN_PSBA_LO
+#define SPI_P0_TRAP_SCREEN_PSBA_LO__MEM_BASE__SHIFT 0x0
+#define SPI_P0_TRAP_SCREEN_PSBA_LO__MEM_BASE_MASK 0xFFFFFFFFL
+//SPI_P0_TRAP_SCREEN_PSBA_HI
+#define SPI_P0_TRAP_SCREEN_PSBA_HI__MEM_BASE__SHIFT 0x0
+#define SPI_P0_TRAP_SCREEN_PSBA_HI__MEM_BASE_MASK 0xFFL
+//SPI_P0_TRAP_SCREEN_PSMA_LO
+#define SPI_P0_TRAP_SCREEN_PSMA_LO__MEM_BASE__SHIFT 0x0
+#define SPI_P0_TRAP_SCREEN_PSMA_LO__MEM_BASE_MASK 0xFFFFFFFFL
+//SPI_P0_TRAP_SCREEN_PSMA_HI
+#define SPI_P0_TRAP_SCREEN_PSMA_HI__MEM_BASE__SHIFT 0x0
+#define SPI_P0_TRAP_SCREEN_PSMA_HI__MEM_BASE_MASK 0xFFL
+//SPI_P0_TRAP_SCREEN_GPR_MIN
+#define SPI_P0_TRAP_SCREEN_GPR_MIN__VGPR_MIN__SHIFT 0x0
+#define SPI_P0_TRAP_SCREEN_GPR_MIN__SGPR_MIN__SHIFT 0x6
+#define SPI_P0_TRAP_SCREEN_GPR_MIN__VGPR_MIN_MASK 0x003FL
+#define SPI_P0_TRAP_SCREEN_GPR_MIN__SGPR_MIN_MASK 0x03C0L
+//SPI_P1_TRAP_SCREEN_PSBA_LO
+#define SPI_P1_TRAP_SCREEN_PSBA_LO__MEM_BASE__SHIFT 0x0
+#define SPI_P1_TRAP_SCREEN_PSBA_LO__MEM_BASE_MASK 0xFFFFFFFFL
+//SPI_P1_TRAP_SCREEN_PSBA_HI
+#define SPI_P1_TRAP_SCREEN_PSBA_HI__MEM_BASE__SHIFT 0x0
+#define SPI_P1_TRAP_SCREEN_PSBA_HI__MEM_BASE_MASK 0xFFL
+//SPI_P1_TRAP_SCREEN_PSMA_LO
+#define SPI_P1_TRAP_SCREEN_PSMA_LO__MEM_BASE__SHIFT 0x0
+#define SPI_P1_TRAP_SCREEN_PSMA_LO__MEM_BASE_MASK 0xFFFFFFFFL
+//SPI_P1_TRAP_SCREEN_PSMA_HI
+#define SPI_P1_TRAP_SCREEN_PSMA_HI__MEM_BASE__SHIFT 0x0
+#define SPI_P1_TRAP_SCREEN_PSMA_HI__MEM_BASE_MASK 0xFFL
+//SPI_P1_TRAP_SCREEN_GPR_MIN
+#define SPI_P1_TRAP_SCREEN_GPR_MIN__VGPR_MIN__SHIFT 0x0
+#define SPI_P1_TRAP_SCREEN_GPR_MIN__SGPR_MIN__SHIFT 0x6
+#define SPI_P1_TRAP_SCREEN_GPR_MIN__VGPR_MIN_MASK 0x003FL
+#define SPI_P1_TRAP_SCREEN_GPR_MIN__SGPR_MIN_MASK 0x03C0L
+
+
+// addressBlock: xcd0_gc_tpdec
+//TD_CNTL
+#define TD_CNTL__SYNC_PHASE_SH__SHIFT 0x0
+#define TD_CNTL__TD_IN_CAC_CHICKENBITS__SHIFT 0x2
+#define TD_CNTL__TD_OUT_CAC_CHICKENBITS__SHIFT 0x6
+#define TD_CNTL__EXTEND_LDS_STALL__SHIFT 0x9
+#define TD_CNTL__LDS_STALL_PHASE_ADJUST__SHIFT 0xb
+#define TD_CNTL__DISABLE_POWER_THROTTLE__SHIFT 0x14
+#define TD_CNTL__ENABLE_ROUND_TO_ZERO__SHIFT 0x15
+#define TD_CNTL__DISABLE_2BIT_SIGNED_FORMAT__SHIFT 0x17
+#define TD_CNTL__SRAM_FGCG_TD_KCLARR_LG__SHIFT 0x1b
+#define TD_CNTL__RFGCG_CHICKEN__SHIFT 0x1c
+#define TD_CNTL__SYNC_PHASE_SH_MASK 0x00000003L
+#define TD_CNTL__TD_IN_CAC_CHICKENBITS_MASK 0x0000000CL
+#define TD_CNTL__TD_OUT_CAC_CHICKENBITS_MASK 0x000000C0L
+#define TD_CNTL__EXTEND_LDS_STALL_MASK 0x00000600L
+#define TD_CNTL__LDS_STALL_PHASE_ADJUST_MASK 0x00001800L
+#define TD_CNTL__DISABLE_POWER_THROTTLE_MASK 0x00100000L
+#define TD_CNTL__ENABLE_ROUND_TO_ZERO_MASK 0x00200000L
+#define TD_CNTL__DISABLE_2BIT_SIGNED_FORMAT_MASK 0x00800000L
+#define TD_CNTL__SRAM_FGCG_TD_KCLARR_LG_MASK 0x08000000L
+#define TD_CNTL__RFGCG_CHICKEN_MASK 0x70000000L
+//TD_STATUS
+#define TD_STATUS__BUSY__SHIFT 0x1f
+#define TD_STATUS__BUSY_MASK 0x80000000L
+//TD_POWER_CNTL
+#define TD_POWER_CNTL__MGCG_OUTPUTSTAGE__SHIFT 0x1
+#define TD_POWER_CNTL__MID0_THREAD_DATA__SHIFT 0x2
+#define TD_POWER_CNTL__MID2_ACCUM_DATA__SHIFT 0x3
+#define TD_POWER_CNTL__MGCG_OUTPUTSTAGE_MASK 0x00000002L
+#define TD_POWER_CNTL__MID0_THREAD_DATA_MASK 0x00000004L
+#define TD_POWER_CNTL__MID2_ACCUM_DATA_MASK 0x00000008L
+//TD_DSM_CNTL
+#define TD_DSM_CNTL__TD_SS_FIFO_LO_DSM_IRRITATOR_DATA__SHIFT 0x0
+#define TD_DSM_CNTL__TD_SS_FIFO_LO_ENABLE_SINGLE_WRITE__SHIFT 0x2
+#define TD_DSM_CNTL__TD_SS_FIFO_HI_DSM_IRRITATOR_DATA__SHIFT 0x3
+#define TD_DSM_CNTL__TD_SS_FIFO_HI_ENABLE_SINGLE_WRITE__SHIFT 0x5
+#define TD_DSM_CNTL__TD_CS_FIFO_DSM_IRRITATOR_DATA__SHIFT 0x6
+#define TD_DSM_CNTL__TD_CS_FIFO_ENABLE_SINGLE_WRITE__SHIFT 0x8
+#define TD_DSM_CNTL__TD_SS_FIFO_LO_DSM_IRRITATOR_DATA_MASK 0x00000003L
+#define TD_DSM_CNTL__TD_SS_FIFO_LO_ENABLE_SINGLE_WRITE_MASK 0x00000004L
+#define TD_DSM_CNTL__TD_SS_FIFO_HI_DSM_IRRITATOR_DATA_MASK 0x00000018L
+#define TD_DSM_CNTL__TD_SS_FIFO_HI_ENABLE_SINGLE_WRITE_MASK 0x00000020L
+#define TD_DSM_CNTL__TD_CS_FIFO_DSM_IRRITATOR_DATA_MASK 0x000000C0L
+#define TD_DSM_CNTL__TD_CS_FIFO_ENABLE_SINGLE_WRITE_MASK 0x00000100L
+//TD_DSM_CNTL2
+#define TD_DSM_CNTL2__TD_SS_FIFO_LO_ENABLE_ERROR_INJECT__SHIFT 0x0
+#define TD_DSM_CNTL2__TD_SS_FIFO_LO_SELECT_INJECT_DELAY__SHIFT 0x2
+#define TD_DSM_CNTL2__TD_SS_FIFO_HI_ENABLE_ERROR_INJECT__SHIFT 0x3
+#define TD_DSM_CNTL2__TD_SS_FIFO_HI_SELECT_INJECT_DELAY__SHIFT 0x5
+#define TD_DSM_CNTL2__TD_CS_FIFO_ENABLE_ERROR_INJECT__SHIFT 0x6
+#define TD_DSM_CNTL2__TD_CS_FIFO_SELECT_INJECT_DELAY__SHIFT 0x8
+#define TD_DSM_CNTL2__TD_INJECT_DELAY__SHIFT 0x1a
+#define TD_DSM_CNTL2__TD_SS_FIFO_LO_ENABLE_ERROR_INJECT_MASK 0x00000003L
+#define TD_DSM_CNTL2__TD_SS_FIFO_LO_SELECT_INJECT_DELAY_MASK 0x00000004L
+#define TD_DSM_CNTL2__TD_SS_FIFO_HI_ENABLE_ERROR_INJECT_MASK 0x00000018L
+#define TD_DSM_CNTL2__TD_SS_FIFO_HI_SELECT_INJECT_DELAY_MASK 0x00000020L
+#define TD_DSM_CNTL2__TD_CS_FIFO_ENABLE_ERROR_INJECT_MASK 0x000000C0L
+#define TD_DSM_CNTL2__TD_CS_FIFO_SELECT_INJECT_DELAY_MASK 0x00000100L
+#define TD_DSM_CNTL2__TD_INJECT_DELAY_MASK 0xFC000000L
+//TD_SCRATCH
+#define TD_SCRATCH__SCRATCH__SHIFT 0x0
+#define TD_SCRATCH__SCRATCH_MASK 0xFFFFFFFFL
+//TA_POWER_CNTL
+#define TA_POWER_CNTL__INPUT_CLK_EN_MODE__SHIFT 0x0
+#define TA_POWER_CNTL__LOD_CLK_EN_MODE__SHIFT 0x1
+#define TA_POWER_CNTL__WDP_CLK_EN_MODE__SHIFT 0x2
+#define TA_POWER_CNTL__INPUT_CLK_EN_MODE_MASK 0x00000001L
+#define TA_POWER_CNTL__LOD_CLK_EN_MODE_MASK 0x00000002L
+#define TA_POWER_CNTL__WDP_CLK_EN_MODE_MASK 0x00000004L
+//TA_CNTL
+#define TA_CNTL__FX_XNACK_CREDIT__SHIFT 0x0
+#define TA_CNTL__SQ_XNACK_CREDIT__SHIFT 0x9
+#define TA_CNTL__TC_DATA_CREDIT__SHIFT 0xd
+#define TA_CNTL__ALIGNER_CREDIT__SHIFT 0x10
+#define TA_CNTL__TD_FIFO_CREDIT__SHIFT 0x16
+#define TA_CNTL__FX_XNACK_CREDIT_MASK 0x0000007FL
+#define TA_CNTL__SQ_XNACK_CREDIT_MASK 0x00001E00L
+#define TA_CNTL__TC_DATA_CREDIT_MASK 0x0000E000L
+#define TA_CNTL__ALIGNER_CREDIT_MASK 0x001F0000L
+#define TA_CNTL__TD_FIFO_CREDIT_MASK 0xFFC00000L
+//TA_CNTL_AUX
+#define TA_CNTL_AUX__SCOAL_DSWIZZLE_N__SHIFT 0x0
+#define TA_CNTL_AUX__RESERVED__SHIFT 0x1
+#define TA_CNTL_AUX__TFAULT_EN_OVERRIDE__SHIFT 0x5
+#define TA_CNTL_AUX__DISABLE_GATHER4_BC_SWIZZLE__SHIFT 0x7
+#define TA_CNTL_AUX__DETERMINISM_RESERVED_DISABLE__SHIFT 0x14
+#define TA_CNTL_AUX__DETERMINISM_OPCODE_STRICT_DISABLE__SHIFT 0x15
+#define TA_CNTL_AUX__DETERMINISM_MISC_DISABLE__SHIFT 0x16
+#define TA_CNTL_AUX__DETERMINISM_SAMPLE_C_DFMT_DISABLE__SHIFT 0x17
+#define TA_CNTL_AUX__DETERMINISM_SAMPLER_MSAA_DISABLE__SHIFT 0x18
+#define TA_CNTL_AUX__DETERMINISM_WRITEOP_READFMT_DISABLE__SHIFT 0x19
+#define TA_CNTL_AUX__DETERMINISM_DFMT_NFMT_DISABLE__SHIFT 0x1a
+#define TA_CNTL_AUX__SCOAL_DSWIZZLE_N_MASK 0x00000001L
+#define TA_CNTL_AUX__RESERVED_MASK 0x0000000EL
+#define TA_CNTL_AUX__TFAULT_EN_OVERRIDE_MASK 0x00000020L
+#define TA_CNTL_AUX__DISABLE_GATHER4_BC_SWIZZLE_MASK 0x00000080L
+#define TA_CNTL_AUX__DETERMINISM_RESERVED_DISABLE_MASK 0x00100000L
+#define TA_CNTL_AUX__DETERMINISM_OPCODE_STRICT_DISABLE_MASK 0x00200000L
+#define TA_CNTL_AUX__DETERMINISM_MISC_DISABLE_MASK 0x00400000L
+#define TA_CNTL_AUX__DETERMINISM_SAMPLE_C_DFMT_DISABLE_MASK 0x00800000L
+#define TA_CNTL_AUX__DETERMINISM_SAMPLER_MSAA_DISABLE_MASK 0x01000000L
+#define TA_CNTL_AUX__DETERMINISM_WRITEOP_READFMT_DISABLE_MASK 0x02000000L
+#define TA_CNTL_AUX__DETERMINISM_DFMT_NFMT_DISABLE_MASK 0x04000000L
+//TA_FEATURE_CNTL
+#define TA_FEATURE_CNTL__ATOMIC_COALESCING_EN__SHIFT 0x4
+#define TA_FEATURE_CNTL__TA_ACFIFO_CHICKEN__SHIFT 0xb
+#define TA_FEATURE_CNTL__TA_CAC_CHICKEN__SHIFT 0xc
+#define TA_FEATURE_CNTL__AFIFO_SPLIT_CHICKEN__SHIFT 0xd
+#define TA_FEATURE_CNTL__TA_DXFIFO_CHICKEN__SHIFT 0xe
+#define TA_FEATURE_CNTL__ATOMIC_COALESCING_EN_MASK 0x00000030L
+#define TA_FEATURE_CNTL__TA_ACFIFO_CHICKEN_MASK 0x00000800L
+#define TA_FEATURE_CNTL__TA_CAC_CHICKEN_MASK 0x00001000L
+#define TA_FEATURE_CNTL__AFIFO_SPLIT_CHICKEN_MASK 0x00002000L
+#define TA_FEATURE_CNTL__TA_DXFIFO_CHICKEN_MASK 0x00004000L
+//TA_STATUS
+#define TA_STATUS__FG_PFIFO_EMPTYB__SHIFT 0xc
+#define TA_STATUS__FL_PFIFO_EMPTYB__SHIFT 0x10
+#define TA_STATUS__FA_PFIFO_EMPTYB__SHIFT 0x14
+#define TA_STATUS__IN_BUSY__SHIFT 0x18
+#define TA_STATUS__FG_BUSY__SHIFT 0x19
+#define TA_STATUS__TA_BUSY__SHIFT 0x1c
+#define TA_STATUS__FA_BUSY__SHIFT 0x1d
+#define TA_STATUS__AL_BUSY__SHIFT 0x1e
+#define TA_STATUS__BUSY__SHIFT 0x1f
+#define TA_STATUS__FG_PFIFO_EMPTYB_MASK 0x00001000L
+#define TA_STATUS__FL_PFIFO_EMPTYB_MASK 0x00010000L
+#define TA_STATUS__FA_PFIFO_EMPTYB_MASK 0x00100000L
+#define TA_STATUS__IN_BUSY_MASK 0x01000000L
+#define TA_STATUS__FG_BUSY_MASK 0x02000000L
+#define TA_STATUS__TA_BUSY_MASK 0x10000000L
+#define TA_STATUS__FA_BUSY_MASK 0x20000000L
+#define TA_STATUS__AL_BUSY_MASK 0x40000000L
+#define TA_STATUS__BUSY_MASK 0x80000000L
+//TA_SCRATCH
+#define TA_SCRATCH__SCRATCH__SHIFT 0x0
+#define TA_SCRATCH__SCRATCH_MASK 0xFFFFFFFFL
+//TA_DSM_CNTL
+#define TA_DSM_CNTL__TA_FS_DFIFO_DSM_IRRITATOR_DATA__SHIFT 0x0
+#define TA_DSM_CNTL__TA_FS_DFIFO_ENABLE_SINGLE_WRITE__SHIFT 0x2
+#define TA_DSM_CNTL__TA_FX_LFIFO_DSM_IRRITATOR_DATA__SHIFT 0x9
+#define TA_DSM_CNTL__TA_FX_LFIFO_ENABLE_SINGLE_WRITE__SHIFT 0xb
+#define TA_DSM_CNTL__TA_FS_CFIFO_DSM_IRRITATOR_DATA__SHIFT 0xc
+#define TA_DSM_CNTL__TA_FS_CFIFO_ENABLE_SINGLE_WRITE__SHIFT 0xe
+#define TA_DSM_CNTL__TA_FS_AFIFO_LO_DSM_IRRITATOR_DATA__SHIFT 0xf
+#define TA_DSM_CNTL__TA_FS_AFIFO_LO_ENABLE_SINGLE_WRITE__SHIFT 0x11
+#define TA_DSM_CNTL__TA_FS_AFIFO_HI_DSM_IRRITATOR_DATA__SHIFT 0x12
+#define TA_DSM_CNTL__TA_FS_AFIFO_HI_ENABLE_SINGLE_WRITE__SHIFT 0x14
+#define TA_DSM_CNTL__TA_FS_DFIFO_DSM_IRRITATOR_DATA_MASK 0x00000003L
+#define TA_DSM_CNTL__TA_FS_DFIFO_ENABLE_SINGLE_WRITE_MASK 0x00000004L
+#define TA_DSM_CNTL__TA_FX_LFIFO_DSM_IRRITATOR_DATA_MASK 0x00000600L
+#define TA_DSM_CNTL__TA_FX_LFIFO_ENABLE_SINGLE_WRITE_MASK 0x00000800L
+#define TA_DSM_CNTL__TA_FS_CFIFO_DSM_IRRITATOR_DATA_MASK 0x00003000L
+#define TA_DSM_CNTL__TA_FS_CFIFO_ENABLE_SINGLE_WRITE_MASK 0x00004000L
+#define TA_DSM_CNTL__TA_FS_AFIFO_LO_DSM_IRRITATOR_DATA_MASK 0x00018000L
+#define TA_DSM_CNTL__TA_FS_AFIFO_LO_ENABLE_SINGLE_WRITE_MASK 0x00020000L
+#define TA_DSM_CNTL__TA_FS_AFIFO_HI_DSM_IRRITATOR_DATA_MASK 0x000C0000L
+#define TA_DSM_CNTL__TA_FS_AFIFO_HI_ENABLE_SINGLE_WRITE_MASK 0x00100000L
+//TA_DSM_CNTL2
+#define TA_DSM_CNTL2__TA_FS_DFIFO_ENABLE_ERROR_INJECT__SHIFT 0x0
+#define TA_DSM_CNTL2__TA_FS_DFIFO_SELECT_INJECT_DELAY__SHIFT 0x2
+#define TA_DSM_CNTL2__TA_FX_LFIFO_ENABLE_ERROR_INJECT__SHIFT 0x9
+#define TA_DSM_CNTL2__TA_FX_LFIFO_SELECT_INJECT_DELAY__SHIFT 0xb
+#define TA_DSM_CNTL2__TA_FS_CFIFO_ENABLE_ERROR_INJECT__SHIFT 0xc
+#define TA_DSM_CNTL2__TA_FS_CFIFO_SELECT_INJECT_DELAY__SHIFT 0xe
+#define TA_DSM_CNTL2__TA_FS_AFIFO_LO_ENABLE_ERROR_INJECT__SHIFT 0xf
+#define TA_DSM_CNTL2__TA_FS_AFIFO_LO_SELECT_INJECT_DELAY__SHIFT 0x11
+#define TA_DSM_CNTL2__TA_FS_AFIFO_HI_ENABLE_ERROR_INJECT__SHIFT 0x12
+#define TA_DSM_CNTL2__TA_FS_AFIFO_HI_SELECT_INJECT_DELAY__SHIFT 0x14
+#define TA_DSM_CNTL2__TA_INJECT_DELAY__SHIFT 0x1a
+#define TA_DSM_CNTL2__TA_FS_DFIFO_ENABLE_ERROR_INJECT_MASK 0x00000003L
+#define TA_DSM_CNTL2__TA_FS_DFIFO_SELECT_INJECT_DELAY_MASK 0x00000004L
+#define TA_DSM_CNTL2__TA_FX_LFIFO_ENABLE_ERROR_INJECT_MASK 0x00000600L
+#define TA_DSM_CNTL2__TA_FX_LFIFO_SELECT_INJECT_DELAY_MASK 0x00000800L
+#define TA_DSM_CNTL2__TA_FS_CFIFO_ENABLE_ERROR_INJECT_MASK 0x00003000L
+#define TA_DSM_CNTL2__TA_FS_CFIFO_SELECT_INJECT_DELAY_MASK 0x00004000L
+#define TA_DSM_CNTL2__TA_FS_AFIFO_LO_ENABLE_ERROR_INJECT_MASK 0x00018000L
+#define TA_DSM_CNTL2__TA_FS_AFIFO_LO_SELECT_INJECT_DELAY_MASK 0x00020000L
+#define TA_DSM_CNTL2__TA_FS_AFIFO_HI_ENABLE_ERROR_INJECT_MASK 0x000C0000L
+#define TA_DSM_CNTL2__TA_FS_AFIFO_HI_SELECT_INJECT_DELAY_MASK 0x00100000L
+#define TA_DSM_CNTL2__TA_INJECT_DELAY_MASK 0xFC000000L
+
+
+// addressBlock: xcd0_gc_gdsdec
+//GDS_CONFIG
+#define GDS_CONFIG__WRITE_DIS__SHIFT 0x0
+#define GDS_CONFIG__SH0_GPR_PHASE_SEL__SHIFT 0x1
+#define GDS_CONFIG__SH1_GPR_PHASE_SEL__SHIFT 0x3
+#define GDS_CONFIG__SH2_GPR_PHASE_SEL__SHIFT 0x5
+#define GDS_CONFIG__SH3_GPR_PHASE_SEL__SHIFT 0x7
+#define GDS_CONFIG__SH4_GPR_PHASE_SEL__SHIFT 0x9
+#define GDS_CONFIG__SH5_GPR_PHASE_SEL__SHIFT 0xb
+#define GDS_CONFIG__SH6_GPR_PHASE_SEL__SHIFT 0xd
+#define GDS_CONFIG__SH7_GPR_PHASE_SEL__SHIFT 0xf
+#define GDS_CONFIG__WRITE_DIS_MASK 0x00000001L
+#define GDS_CONFIG__SH0_GPR_PHASE_SEL_MASK 0x00000006L
+#define GDS_CONFIG__SH1_GPR_PHASE_SEL_MASK 0x00000018L
+#define GDS_CONFIG__SH2_GPR_PHASE_SEL_MASK 0x00000060L
+#define GDS_CONFIG__SH3_GPR_PHASE_SEL_MASK 0x00000180L
+#define GDS_CONFIG__SH4_GPR_PHASE_SEL_MASK 0x00000600L
+#define GDS_CONFIG__SH5_GPR_PHASE_SEL_MASK 0x00001800L
+#define GDS_CONFIG__SH6_GPR_PHASE_SEL_MASK 0x00006000L
+#define GDS_CONFIG__SH7_GPR_PHASE_SEL_MASK 0x00018000L
+//GDS_CNTL_STATUS
+#define GDS_CNTL_STATUS__GDS_BUSY__SHIFT 0x0
+#define GDS_CNTL_STATUS__GRBM_WBUF_BUSY__SHIFT 0x1
+#define GDS_CNTL_STATUS__ORD_APP_BUSY__SHIFT 0x2
+#define GDS_CNTL_STATUS__DS_BANK_CONFLICT__SHIFT 0x3
+#define GDS_CNTL_STATUS__DS_ADDR_CONFLICT__SHIFT 0x4
+#define GDS_CNTL_STATUS__DS_WR_CLAMP__SHIFT 0x5
+#define GDS_CNTL_STATUS__DS_RD_CLAMP__SHIFT 0x6
+#define GDS_CNTL_STATUS__GRBM_RBUF_BUSY__SHIFT 0x7
+#define GDS_CNTL_STATUS__DS_BUSY__SHIFT 0x8
+#define GDS_CNTL_STATUS__GWS_BUSY__SHIFT 0x9
+#define GDS_CNTL_STATUS__ORD_FIFO_BUSY__SHIFT 0xa
+#define GDS_CNTL_STATUS__CREDIT_BUSY0__SHIFT 0xb
+#define GDS_CNTL_STATUS__CREDIT_BUSY1__SHIFT 0xc
+#define GDS_CNTL_STATUS__CREDIT_BUSY2__SHIFT 0xd
+#define GDS_CNTL_STATUS__CREDIT_BUSY3__SHIFT 0xe
+#define GDS_CNTL_STATUS__CREDIT_BUSY4__SHIFT 0xf
+#define GDS_CNTL_STATUS__CREDIT_BUSY5__SHIFT 0x10
+#define GDS_CNTL_STATUS__CREDIT_BUSY6__SHIFT 0x11
+#define GDS_CNTL_STATUS__CREDIT_BUSY7__SHIFT 0x12
+#define GDS_CNTL_STATUS__GDS_BUSY_MASK 0x00000001L
+#define GDS_CNTL_STATUS__GRBM_WBUF_BUSY_MASK 0x00000002L
+#define GDS_CNTL_STATUS__ORD_APP_BUSY_MASK 0x00000004L
+#define GDS_CNTL_STATUS__DS_BANK_CONFLICT_MASK 0x00000008L
+#define GDS_CNTL_STATUS__DS_ADDR_CONFLICT_MASK 0x00000010L
+#define GDS_CNTL_STATUS__DS_WR_CLAMP_MASK 0x00000020L
+#define GDS_CNTL_STATUS__DS_RD_CLAMP_MASK 0x00000040L
+#define GDS_CNTL_STATUS__GRBM_RBUF_BUSY_MASK 0x00000080L
+#define GDS_CNTL_STATUS__DS_BUSY_MASK 0x00000100L
+#define GDS_CNTL_STATUS__GWS_BUSY_MASK 0x00000200L
+#define GDS_CNTL_STATUS__ORD_FIFO_BUSY_MASK 0x00000400L
+#define GDS_CNTL_STATUS__CREDIT_BUSY0_MASK 0x00000800L
+#define GDS_CNTL_STATUS__CREDIT_BUSY1_MASK 0x00001000L
+#define GDS_CNTL_STATUS__CREDIT_BUSY2_MASK 0x00002000L
+#define GDS_CNTL_STATUS__CREDIT_BUSY3_MASK 0x00004000L
+#define GDS_CNTL_STATUS__CREDIT_BUSY4_MASK 0x00008000L
+#define GDS_CNTL_STATUS__CREDIT_BUSY5_MASK 0x00010000L
+#define GDS_CNTL_STATUS__CREDIT_BUSY6_MASK 0x00020000L
+#define GDS_CNTL_STATUS__CREDIT_BUSY7_MASK 0x00040000L
+//GDS_ENHANCE2
+#define GDS_ENHANCE2__MISC__SHIFT 0x0
+#define GDS_ENHANCE2__GDS_TD_INTERFACES_FGCG_OVERRIDE__SHIFT 0x10
+#define GDS_ENHANCE2__GDS_PHY_CMD_RAM_FGCG_OVERRIDE__SHIFT 0x11
+#define GDS_ENHANCE2__GDS_FED_IN_PROPAGATE__SHIFT 0x12
+#define GDS_ENHANCE2__UNUSED__SHIFT 0x13
+#define GDS_ENHANCE2__MISC_MASK 0x0000FFFFL
+#define GDS_ENHANCE2__GDS_TD_INTERFACES_FGCG_OVERRIDE_MASK 0x00010000L
+#define GDS_ENHANCE2__GDS_PHY_CMD_RAM_FGCG_OVERRIDE_MASK 0x00020000L
+#define GDS_ENHANCE2__GDS_FED_IN_PROPAGATE_MASK 0x00040000L
+#define GDS_ENHANCE2__UNUSED_MASK 0xFFF80000L
+//GDS_PROTECTION_FAULT
+#define GDS_PROTECTION_FAULT__WRITE_DIS__SHIFT 0x0
+#define GDS_PROTECTION_FAULT__FAULT_DETECTED__SHIFT 0x1
+#define GDS_PROTECTION_FAULT__GRBM__SHIFT 0x2
+#define GDS_PROTECTION_FAULT__SH_ID__SHIFT 0x3
+#define GDS_PROTECTION_FAULT__CU_ID__SHIFT 0x6
+#define GDS_PROTECTION_FAULT__SIMD_ID__SHIFT 0xa
+#define GDS_PROTECTION_FAULT__WAVE_ID__SHIFT 0xc
+#define GDS_PROTECTION_FAULT__ADDRESS__SHIFT 0x10
+#define GDS_PROTECTION_FAULT__WRITE_DIS_MASK 0x00000001L
+#define GDS_PROTECTION_FAULT__FAULT_DETECTED_MASK 0x00000002L
+#define GDS_PROTECTION_FAULT__GRBM_MASK 0x00000004L
+#define GDS_PROTECTION_FAULT__SH_ID_MASK 0x00000038L
+#define GDS_PROTECTION_FAULT__CU_ID_MASK 0x000003C0L
+#define GDS_PROTECTION_FAULT__SIMD_ID_MASK 0x00000C00L
+#define GDS_PROTECTION_FAULT__WAVE_ID_MASK 0x0000F000L
+#define GDS_PROTECTION_FAULT__ADDRESS_MASK 0xFFFF0000L
+//GDS_VM_PROTECTION_FAULT
+#define GDS_VM_PROTECTION_FAULT__WRITE_DIS__SHIFT 0x0
+#define GDS_VM_PROTECTION_FAULT__FAULT_DETECTED__SHIFT 0x1
+#define GDS_VM_PROTECTION_FAULT__GWS__SHIFT 0x2
+#define GDS_VM_PROTECTION_FAULT__OA__SHIFT 0x3
+#define GDS_VM_PROTECTION_FAULT__GRBM__SHIFT 0x4
+#define GDS_VM_PROTECTION_FAULT__TMZ__SHIFT 0x5
+#define GDS_VM_PROTECTION_FAULT__VMID__SHIFT 0x8
+#define GDS_VM_PROTECTION_FAULT__ADDRESS__SHIFT 0x10
+#define GDS_VM_PROTECTION_FAULT__WRITE_DIS_MASK 0x00000001L
+#define GDS_VM_PROTECTION_FAULT__FAULT_DETECTED_MASK 0x00000002L
+#define GDS_VM_PROTECTION_FAULT__GWS_MASK 0x00000004L
+#define GDS_VM_PROTECTION_FAULT__OA_MASK 0x00000008L
+#define GDS_VM_PROTECTION_FAULT__GRBM_MASK 0x00000010L
+#define GDS_VM_PROTECTION_FAULT__TMZ_MASK 0x00000020L
+#define GDS_VM_PROTECTION_FAULT__VMID_MASK 0x00000F00L
+#define GDS_VM_PROTECTION_FAULT__ADDRESS_MASK 0xFFFF0000L
+//GDS_EDC_CNT
+#define GDS_EDC_CNT__GDS_MEM_DED__SHIFT 0x0
+#define GDS_EDC_CNT__GDS_MEM_SEC__SHIFT 0x4
+#define GDS_EDC_CNT__UNUSED__SHIFT 0x6
+#define GDS_EDC_CNT__GDS_MEM_DED_MASK 0x00000003L
+#define GDS_EDC_CNT__GDS_MEM_SEC_MASK 0x00000030L
+#define GDS_EDC_CNT__UNUSED_MASK 0xFFFFFFC0L
+//GDS_EDC_GRBM_CNT
+#define GDS_EDC_GRBM_CNT__DED__SHIFT 0x0
+#define GDS_EDC_GRBM_CNT__SEC__SHIFT 0x2
+#define GDS_EDC_GRBM_CNT__UNUSED__SHIFT 0x4
+#define GDS_EDC_GRBM_CNT__DED_MASK 0x00000003L
+#define GDS_EDC_GRBM_CNT__SEC_MASK 0x0000000CL
+#define GDS_EDC_GRBM_CNT__UNUSED_MASK 0xFFFFFFF0L
+//GDS_EDC_OA_DED
+#define GDS_EDC_OA_DED__ME0_GFXHP3D_PIX_DED__SHIFT 0x0
+#define GDS_EDC_OA_DED__ME0_GFXHP3D_VTX_DED__SHIFT 0x1
+#define GDS_EDC_OA_DED__ME0_CS_DED__SHIFT 0x2
+#define GDS_EDC_OA_DED__ME0_GFXHP3D_GS_DED__SHIFT 0x3
+#define GDS_EDC_OA_DED__ME1_PIPE0_DED__SHIFT 0x4
+#define GDS_EDC_OA_DED__ME1_PIPE1_DED__SHIFT 0x5
+#define GDS_EDC_OA_DED__ME1_PIPE2_DED__SHIFT 0x6
+#define GDS_EDC_OA_DED__ME1_PIPE3_DED__SHIFT 0x7
+#define GDS_EDC_OA_DED__ME2_PIPE0_DED__SHIFT 0x8
+#define GDS_EDC_OA_DED__ME2_PIPE1_DED__SHIFT 0x9
+#define GDS_EDC_OA_DED__ME2_PIPE2_DED__SHIFT 0xa
+#define GDS_EDC_OA_DED__ME2_PIPE3_DED__SHIFT 0xb
+#define GDS_EDC_OA_DED__UNUSED1__SHIFT 0xc
+#define GDS_EDC_OA_DED__ME0_GFXHP3D_PIX_DED_MASK 0x00000001L
+#define GDS_EDC_OA_DED__ME0_GFXHP3D_VTX_DED_MASK 0x00000002L
+#define GDS_EDC_OA_DED__ME0_CS_DED_MASK 0x00000004L
+#define GDS_EDC_OA_DED__ME0_GFXHP3D_GS_DED_MASK 0x00000008L
+#define GDS_EDC_OA_DED__ME1_PIPE0_DED_MASK 0x00000010L
+#define GDS_EDC_OA_DED__ME1_PIPE1_DED_MASK 0x00000020L
+#define GDS_EDC_OA_DED__ME1_PIPE2_DED_MASK 0x00000040L
+#define GDS_EDC_OA_DED__ME1_PIPE3_DED_MASK 0x00000080L
+#define GDS_EDC_OA_DED__ME2_PIPE0_DED_MASK 0x00000100L
+#define GDS_EDC_OA_DED__ME2_PIPE1_DED_MASK 0x00000200L
+#define GDS_EDC_OA_DED__ME2_PIPE2_DED_MASK 0x00000400L
+#define GDS_EDC_OA_DED__ME2_PIPE3_DED_MASK 0x00000800L
+#define GDS_EDC_OA_DED__UNUSED1_MASK 0xFFFFF000L
+//GDS_DSM_CNTL
+#define GDS_DSM_CNTL__SEL_DSM_GDS_MEM_IRRITATOR_DATA_0__SHIFT 0x0
+#define GDS_DSM_CNTL__SEL_DSM_GDS_MEM_IRRITATOR_DATA_1__SHIFT 0x1
+#define GDS_DSM_CNTL__GDS_MEM_ENABLE_SINGLE_WRITE__SHIFT 0x2
+#define GDS_DSM_CNTL__SEL_DSM_GDS_INPUT_QUEUE_IRRITATOR_DATA_0__SHIFT 0x3
+#define GDS_DSM_CNTL__SEL_DSM_GDS_INPUT_QUEUE_IRRITATOR_DATA_1__SHIFT 0x4
+#define GDS_DSM_CNTL__GDS_INPUT_QUEUE_ENABLE_SINGLE_WRITE__SHIFT 0x5
+#define GDS_DSM_CNTL__SEL_DSM_GDS_PHY_CMD_RAM_IRRITATOR_DATA_0__SHIFT 0x6
+#define GDS_DSM_CNTL__SEL_DSM_GDS_PHY_CMD_RAM_IRRITATOR_DATA_1__SHIFT 0x7
+#define GDS_DSM_CNTL__GDS_PHY_CMD_RAM_ENABLE_SINGLE_WRITE__SHIFT 0x8
+#define GDS_DSM_CNTL__SEL_DSM_GDS_PHY_DATA_RAM_IRRITATOR_DATA_0__SHIFT 0x9
+#define GDS_DSM_CNTL__SEL_DSM_GDS_PHY_DATA_RAM_IRRITATOR_DATA_1__SHIFT 0xa
+#define GDS_DSM_CNTL__GDS_PHY_DATA_RAM_ENABLE_SINGLE_WRITE__SHIFT 0xb
+#define GDS_DSM_CNTL__SEL_DSM_GDS_PIPE_MEM_IRRITATOR_DATA_0__SHIFT 0xc
+#define GDS_DSM_CNTL__SEL_DSM_GDS_PIPE_MEM_IRRITATOR_DATA_1__SHIFT 0xd
+#define GDS_DSM_CNTL__GDS_PIPE_MEM_ENABLE_SINGLE_WRITE__SHIFT 0xe
+#define GDS_DSM_CNTL__UNUSED__SHIFT 0xf
+#define GDS_DSM_CNTL__SEL_DSM_GDS_MEM_IRRITATOR_DATA_0_MASK 0x00000001L
+#define GDS_DSM_CNTL__SEL_DSM_GDS_MEM_IRRITATOR_DATA_1_MASK 0x00000002L
+#define GDS_DSM_CNTL__GDS_MEM_ENABLE_SINGLE_WRITE_MASK 0x00000004L
+#define GDS_DSM_CNTL__SEL_DSM_GDS_INPUT_QUEUE_IRRITATOR_DATA_0_MASK 0x00000008L
+#define GDS_DSM_CNTL__SEL_DSM_GDS_INPUT_QUEUE_IRRITATOR_DATA_1_MASK 0x00000010L
+#define GDS_DSM_CNTL__GDS_INPUT_QUEUE_ENABLE_SINGLE_WRITE_MASK 0x00000020L
+#define GDS_DSM_CNTL__SEL_DSM_GDS_PHY_CMD_RAM_IRRITATOR_DATA_0_MASK 0x00000040L
+#define GDS_DSM_CNTL__SEL_DSM_GDS_PHY_CMD_RAM_IRRITATOR_DATA_1_MASK 0x00000080L
+#define GDS_DSM_CNTL__GDS_PHY_CMD_RAM_ENABLE_SINGLE_WRITE_MASK 0x00000100L
+#define GDS_DSM_CNTL__SEL_DSM_GDS_PHY_DATA_RAM_IRRITATOR_DATA_0_MASK 0x00000200L
+#define GDS_DSM_CNTL__SEL_DSM_GDS_PHY_DATA_RAM_IRRITATOR_DATA_1_MASK 0x00000400L
+#define GDS_DSM_CNTL__GDS_PHY_DATA_RAM_ENABLE_SINGLE_WRITE_MASK 0x00000800L
+#define GDS_DSM_CNTL__SEL_DSM_GDS_PIPE_MEM_IRRITATOR_DATA_0_MASK 0x00001000L
+#define GDS_DSM_CNTL__SEL_DSM_GDS_PIPE_MEM_IRRITATOR_DATA_1_MASK 0x00002000L
+#define GDS_DSM_CNTL__GDS_PIPE_MEM_ENABLE_SINGLE_WRITE_MASK 0x00004000L
+#define GDS_DSM_CNTL__UNUSED_MASK 0xFFFF8000L
+//GDS_EDC_OA_PHY_CNT
+#define GDS_EDC_OA_PHY_CNT__ME0_CS_PIPE_MEM_SEC__SHIFT 0x0
+#define GDS_EDC_OA_PHY_CNT__ME0_CS_PIPE_MEM_DED__SHIFT 0x2
+#define GDS_EDC_OA_PHY_CNT__PHY_CMD_RAM_MEM_SEC__SHIFT 0x4
+#define GDS_EDC_OA_PHY_CNT__PHY_CMD_RAM_MEM_DED__SHIFT 0x6
+#define GDS_EDC_OA_PHY_CNT__PHY_DATA_RAM_MEM_SEC__SHIFT 0x8
+#define GDS_EDC_OA_PHY_CNT__PHY_DATA_RAM_MEM_DED__SHIFT 0xa
+#define GDS_EDC_OA_PHY_CNT__UNUSED1__SHIFT 0xc
+#define GDS_EDC_OA_PHY_CNT__ME0_CS_PIPE_MEM_SEC_MASK 0x00000003L
+#define GDS_EDC_OA_PHY_CNT__ME0_CS_PIPE_MEM_DED_MASK 0x0000000CL
+#define GDS_EDC_OA_PHY_CNT__PHY_CMD_RAM_MEM_SEC_MASK 0x00000030L
+#define GDS_EDC_OA_PHY_CNT__PHY_CMD_RAM_MEM_DED_MASK 0x000000C0L
+#define GDS_EDC_OA_PHY_CNT__PHY_DATA_RAM_MEM_SEC_MASK 0x00000300L
+#define GDS_EDC_OA_PHY_CNT__PHY_DATA_RAM_MEM_DED_MASK 0x00000C00L
+#define GDS_EDC_OA_PHY_CNT__UNUSED1_MASK 0xFFFFF000L
+//GDS_EDC_OA_PIPE_CNT
+#define GDS_EDC_OA_PIPE_CNT__ME1_PIPE0_PIPE_MEM_SEC__SHIFT 0x0
+#define GDS_EDC_OA_PIPE_CNT__ME1_PIPE0_PIPE_MEM_DED__SHIFT 0x2
+#define GDS_EDC_OA_PIPE_CNT__ME1_PIPE1_PIPE_MEM_SEC__SHIFT 0x4
+#define GDS_EDC_OA_PIPE_CNT__ME1_PIPE1_PIPE_MEM_DED__SHIFT 0x6
+#define GDS_EDC_OA_PIPE_CNT__ME1_PIPE2_PIPE_MEM_SEC__SHIFT 0x8
+#define GDS_EDC_OA_PIPE_CNT__ME1_PIPE2_PIPE_MEM_DED__SHIFT 0xa
+#define GDS_EDC_OA_PIPE_CNT__ME1_PIPE3_PIPE_MEM_SEC__SHIFT 0xc
+#define GDS_EDC_OA_PIPE_CNT__ME1_PIPE3_PIPE_MEM_DED__SHIFT 0xe
+#define GDS_EDC_OA_PIPE_CNT__UNUSED__SHIFT 0x10
+#define GDS_EDC_OA_PIPE_CNT__ME1_PIPE0_PIPE_MEM_SEC_MASK 0x00000003L
+#define GDS_EDC_OA_PIPE_CNT__ME1_PIPE0_PIPE_MEM_DED_MASK 0x0000000CL
+#define GDS_EDC_OA_PIPE_CNT__ME1_PIPE1_PIPE_MEM_SEC_MASK 0x00000030L
+#define GDS_EDC_OA_PIPE_CNT__ME1_PIPE1_PIPE_MEM_DED_MASK 0x000000C0L
+#define GDS_EDC_OA_PIPE_CNT__ME1_PIPE2_PIPE_MEM_SEC_MASK 0x00000300L
+#define GDS_EDC_OA_PIPE_CNT__ME1_PIPE2_PIPE_MEM_DED_MASK 0x00000C00L
+#define GDS_EDC_OA_PIPE_CNT__ME1_PIPE3_PIPE_MEM_SEC_MASK 0x00003000L
+#define GDS_EDC_OA_PIPE_CNT__ME1_PIPE3_PIPE_MEM_DED_MASK 0x0000C000L
+#define GDS_EDC_OA_PIPE_CNT__UNUSED_MASK 0xFFFF0000L
+//GDS_DSM_CNTL2
+#define GDS_DSM_CNTL2__GDS_MEM_ENABLE_ERROR_INJECT__SHIFT 0x0
+#define GDS_DSM_CNTL2__GDS_MEM_SELECT_INJECT_DELAY__SHIFT 0x2
+#define GDS_DSM_CNTL2__GDS_INPUT_QUEUE_ENABLE_ERROR_INJECT__SHIFT 0x3
+#define GDS_DSM_CNTL2__GDS_INPUT_QUEUE_SELECT_INJECT_DELAY__SHIFT 0x5
+#define GDS_DSM_CNTL2__GDS_PHY_CMD_RAM_ENABLE_ERROR_INJECT__SHIFT 0x6
+#define GDS_DSM_CNTL2__GDS_PHY_CMD_RAM_SELECT_INJECT_DELAY__SHIFT 0x8
+#define GDS_DSM_CNTL2__GDS_PHY_DATA_RAM_ENABLE_ERROR_INJECT__SHIFT 0x9
+#define GDS_DSM_CNTL2__GDS_PHY_DATA_RAM_SELECT_INJECT_DELAY__SHIFT 0xb
+#define GDS_DSM_CNTL2__GDS_PIPE_MEM_ENABLE_ERROR_INJECT__SHIFT 0xc
+#define GDS_DSM_CNTL2__GDS_PIPE_MEM_SELECT_INJECT_DELAY__SHIFT 0xe
+#define GDS_DSM_CNTL2__UNUSED__SHIFT 0xf
+#define GDS_DSM_CNTL2__GDS_INJECT_DELAY__SHIFT 0x1a
+#define GDS_DSM_CNTL2__GDS_MEM_ENABLE_ERROR_INJECT_MASK 0x00000003L
+#define GDS_DSM_CNTL2__GDS_MEM_SELECT_INJECT_DELAY_MASK 0x00000004L
+#define GDS_DSM_CNTL2__GDS_INPUT_QUEUE_ENABLE_ERROR_INJECT_MASK 0x00000018L
+#define GDS_DSM_CNTL2__GDS_INPUT_QUEUE_SELECT_INJECT_DELAY_MASK 0x00000020L
+#define GDS_DSM_CNTL2__GDS_PHY_CMD_RAM_ENABLE_ERROR_INJECT_MASK 0x000000C0L
+#define GDS_DSM_CNTL2__GDS_PHY_CMD_RAM_SELECT_INJECT_DELAY_MASK 0x00000100L
+#define GDS_DSM_CNTL2__GDS_PHY_DATA_RAM_ENABLE_ERROR_INJECT_MASK 0x00000600L
+#define GDS_DSM_CNTL2__GDS_PHY_DATA_RAM_SELECT_INJECT_DELAY_MASK 0x00000800L
+#define GDS_DSM_CNTL2__GDS_PIPE_MEM_ENABLE_ERROR_INJECT_MASK 0x00003000L
+#define GDS_DSM_CNTL2__GDS_PIPE_MEM_SELECT_INJECT_DELAY_MASK 0x00004000L
+#define GDS_DSM_CNTL2__UNUSED_MASK 0x03FF8000L
+#define GDS_DSM_CNTL2__GDS_INJECT_DELAY_MASK 0xFC000000L
+//GDS_WD_GDS_CSB
+#define GDS_WD_GDS_CSB__COUNTER__SHIFT 0x0
+#define GDS_WD_GDS_CSB__UNUSED__SHIFT 0xd
+#define GDS_WD_GDS_CSB__COUNTER_MASK 0x00001FFFL
+#define GDS_WD_GDS_CSB__UNUSED_MASK 0xFFFFE000L
+
+
+// addressBlock: xcd0_gc_rbdec
+//DB_DEBUG
+#define DB_DEBUG__DEBUG_STENCIL_COMPRESS_DISABLE__SHIFT 0x0
+#define DB_DEBUG__DEBUG_DEPTH_COMPRESS_DISABLE__SHIFT 0x1
+#define DB_DEBUG__FETCH_FULL_Z_TILE__SHIFT 0x2
+#define DB_DEBUG__FETCH_FULL_STENCIL_TILE__SHIFT 0x3
+#define DB_DEBUG__FORCE_Z_MODE__SHIFT 0x4
+#define DB_DEBUG__DEBUG_FORCE_DEPTH_READ__SHIFT 0x6
+#define DB_DEBUG__DEBUG_FORCE_STENCIL_READ__SHIFT 0x7
+#define DB_DEBUG__DEBUG_FORCE_HIZ_ENABLE__SHIFT 0x8
+#define DB_DEBUG__DEBUG_FORCE_HIS_ENABLE0__SHIFT 0xa
+#define DB_DEBUG__DEBUG_FORCE_HIS_ENABLE1__SHIFT 0xc
+#define DB_DEBUG__DEBUG_FAST_Z_DISABLE__SHIFT 0xe
+#define DB_DEBUG__DEBUG_FAST_STENCIL_DISABLE__SHIFT 0xf
+#define DB_DEBUG__DEBUG_NOOP_CULL_DISABLE__SHIFT 0x10
+#define DB_DEBUG__DISABLE_SUMM_SQUADS__SHIFT 0x11
+#define DB_DEBUG__DEPTH_CACHE_FORCE_MISS__SHIFT 0x12
+#define DB_DEBUG__DEBUG_FORCE_FULL_Z_RANGE__SHIFT 0x13
+#define DB_DEBUG__NEVER_FREE_Z_ONLY__SHIFT 0x15
+#define DB_DEBUG__ZPASS_COUNTS_LOOK_AT_PIPE_STAT_EVENTS__SHIFT 0x16
+#define DB_DEBUG__DISABLE_VPORT_ZPLANE_OPTIMIZATION__SHIFT 0x17
+#define DB_DEBUG__DECOMPRESS_AFTER_N_ZPLANES__SHIFT 0x18
+#define DB_DEBUG__ONE_FREE_IN_FLIGHT__SHIFT 0x1c
+#define DB_DEBUG__FORCE_MISS_IF_NOT_INFLIGHT__SHIFT 0x1d
+#define DB_DEBUG__DISABLE_DEPTH_SURFACE_SYNC__SHIFT 0x1e
+#define DB_DEBUG__DISABLE_HTILE_SURFACE_SYNC__SHIFT 0x1f
+#define DB_DEBUG__DEBUG_STENCIL_COMPRESS_DISABLE_MASK 0x00000001L
+#define DB_DEBUG__DEBUG_DEPTH_COMPRESS_DISABLE_MASK 0x00000002L
+#define DB_DEBUG__FETCH_FULL_Z_TILE_MASK 0x00000004L
+#define DB_DEBUG__FETCH_FULL_STENCIL_TILE_MASK 0x00000008L
+#define DB_DEBUG__FORCE_Z_MODE_MASK 0x00000030L
+#define DB_DEBUG__DEBUG_FORCE_DEPTH_READ_MASK 0x00000040L
+#define DB_DEBUG__DEBUG_FORCE_STENCIL_READ_MASK 0x00000080L
+#define DB_DEBUG__DEBUG_FORCE_HIZ_ENABLE_MASK 0x00000300L
+#define DB_DEBUG__DEBUG_FORCE_HIS_ENABLE0_MASK 0x00000C00L
+#define DB_DEBUG__DEBUG_FORCE_HIS_ENABLE1_MASK 0x00003000L
+#define DB_DEBUG__DEBUG_FAST_Z_DISABLE_MASK 0x00004000L
+#define DB_DEBUG__DEBUG_FAST_STENCIL_DISABLE_MASK 0x00008000L
+#define DB_DEBUG__DEBUG_NOOP_CULL_DISABLE_MASK 0x00010000L
+#define DB_DEBUG__DISABLE_SUMM_SQUADS_MASK 0x00020000L
+#define DB_DEBUG__DEPTH_CACHE_FORCE_MISS_MASK 0x00040000L
+#define DB_DEBUG__DEBUG_FORCE_FULL_Z_RANGE_MASK 0x00180000L
+#define DB_DEBUG__NEVER_FREE_Z_ONLY_MASK 0x00200000L
+#define DB_DEBUG__ZPASS_COUNTS_LOOK_AT_PIPE_STAT_EVENTS_MASK 0x00400000L
+#define DB_DEBUG__DISABLE_VPORT_ZPLANE_OPTIMIZATION_MASK 0x00800000L
+#define DB_DEBUG__DECOMPRESS_AFTER_N_ZPLANES_MASK 0x0F000000L
+#define DB_DEBUG__ONE_FREE_IN_FLIGHT_MASK 0x10000000L
+#define DB_DEBUG__FORCE_MISS_IF_NOT_INFLIGHT_MASK 0x20000000L
+#define DB_DEBUG__DISABLE_DEPTH_SURFACE_SYNC_MASK 0x40000000L
+#define DB_DEBUG__DISABLE_HTILE_SURFACE_SYNC_MASK 0x80000000L
+//DB_DEBUG2
+#define DB_DEBUG2__ALLOW_COMPZ_BYTE_MASKING__SHIFT 0x0
+#define DB_DEBUG2__DISABLE_TC_ZRANGE_L0_CACHE__SHIFT 0x1
+#define DB_DEBUG2__DISABLE_TC_MASK_L0_CACHE__SHIFT 0x2
+#define DB_DEBUG2__DTR_ROUND_ROBIN_ARB__SHIFT 0x3
+#define DB_DEBUG2__DTR_PREZ_STALLS_FOR_ETF_ROOM__SHIFT 0x4
+#define DB_DEBUG2__DISABLE_PREZL_FIFO_STALL__SHIFT 0x5
+#define DB_DEBUG2__DISABLE_PREZL_FIFO_STALL_REZ__SHIFT 0x6
+#define DB_DEBUG2__ENABLE_VIEWPORT_STALL_ON_ALL__SHIFT 0x7
+#define DB_DEBUG2__OPTIMIZE_HIZ_MATCHES_FB_DISABLE__SHIFT 0x8
+#define DB_DEBUG2__CLK_OFF_DELAY__SHIFT 0x9
+#define DB_DEBUG2__DISABLE_TILE_COVERED_FOR_PS_ITER__SHIFT 0xe
+#define DB_DEBUG2__ENABLE_SUBTILE_GROUPING__SHIFT 0xf
+#define DB_DEBUG2__RESERVED__SHIFT 0x10
+#define DB_DEBUG2__DISABLE_NULL_EOT_FORWARDING__SHIFT 0x11
+#define DB_DEBUG2__DISABLE_DTT_DATA_FORWARDING__SHIFT 0x12
+#define DB_DEBUG2__DISABLE_QUAD_COHERENCY_STALL__SHIFT 0x13
+#define DB_DEBUG2__DISABLE_VR_OBJ_PRIM_ID__SHIFT 0x1a
+#define DB_DEBUG2__DISABLE_VR_PS_INVOKE__SHIFT 0x1b
+#define DB_DEBUG2__ENABLE_PREZ_OF_REZ_SUMM__SHIFT 0x1c
+#define DB_DEBUG2__DISABLE_PREZL_VIEWPORT_STALL__SHIFT 0x1d
+#define DB_DEBUG2__DISABLE_SINGLE_STENCIL_QUAD_SUMM__SHIFT 0x1e
+#define DB_DEBUG2__DISABLE_WRITE_STALL_ON_RDWR_CONFLICT__SHIFT 0x1f
+#define DB_DEBUG2__ALLOW_COMPZ_BYTE_MASKING_MASK 0x00000001L
+#define DB_DEBUG2__DISABLE_TC_ZRANGE_L0_CACHE_MASK 0x00000002L
+#define DB_DEBUG2__DISABLE_TC_MASK_L0_CACHE_MASK 0x00000004L
+#define DB_DEBUG2__DTR_ROUND_ROBIN_ARB_MASK 0x00000008L
+#define DB_DEBUG2__DTR_PREZ_STALLS_FOR_ETF_ROOM_MASK 0x00000010L
+#define DB_DEBUG2__DISABLE_PREZL_FIFO_STALL_MASK 0x00000020L
+#define DB_DEBUG2__DISABLE_PREZL_FIFO_STALL_REZ_MASK 0x00000040L
+#define DB_DEBUG2__ENABLE_VIEWPORT_STALL_ON_ALL_MASK 0x00000080L
+#define DB_DEBUG2__OPTIMIZE_HIZ_MATCHES_FB_DISABLE_MASK 0x00000100L
+#define DB_DEBUG2__CLK_OFF_DELAY_MASK 0x00003E00L
+#define DB_DEBUG2__DISABLE_TILE_COVERED_FOR_PS_ITER_MASK 0x00004000L
+#define DB_DEBUG2__ENABLE_SUBTILE_GROUPING_MASK 0x00008000L
+#define DB_DEBUG2__RESERVED_MASK 0x00010000L
+#define DB_DEBUG2__DISABLE_NULL_EOT_FORWARDING_MASK 0x00020000L
+#define DB_DEBUG2__DISABLE_DTT_DATA_FORWARDING_MASK 0x00040000L
+#define DB_DEBUG2__DISABLE_QUAD_COHERENCY_STALL_MASK 0x00080000L
+#define DB_DEBUG2__DISABLE_VR_OBJ_PRIM_ID_MASK 0x04000000L
+#define DB_DEBUG2__DISABLE_VR_PS_INVOKE_MASK 0x08000000L
+#define DB_DEBUG2__ENABLE_PREZ_OF_REZ_SUMM_MASK 0x10000000L
+#define DB_DEBUG2__DISABLE_PREZL_VIEWPORT_STALL_MASK 0x20000000L
+#define DB_DEBUG2__DISABLE_SINGLE_STENCIL_QUAD_SUMM_MASK 0x40000000L
+#define DB_DEBUG2__DISABLE_WRITE_STALL_ON_RDWR_CONFLICT_MASK 0x80000000L
+//DB_DEBUG3
+#define DB_DEBUG3__DISABLE_CLEAR_ZRANGE_CORRECTION__SHIFT 0x0
+#define DB_DEBUG3__ROUND_ZRANGE_CORRECTION__SHIFT 0x1
+#define DB_DEBUG3__FORCE_DB_IS_GOOD__SHIFT 0x2
+#define DB_DEBUG3__DISABLE_TL_SSO_NULL_SUPPRESSION__SHIFT 0x3
+#define DB_DEBUG3__DISABLE_HIZ_ON_VPORT_CLAMP__SHIFT 0x4
+#define DB_DEBUG3__EQAA_INTERPOLATE_COMP_Z__SHIFT 0x5
+#define DB_DEBUG3__EQAA_INTERPOLATE_SRC_Z__SHIFT 0x6
+#define DB_DEBUG3__DISABLE_TCP_CAM_BYPASS__SHIFT 0x7
+#define DB_DEBUG3__DISABLE_ZCMP_DIRTY_SUPPRESSION__SHIFT 0x8
+#define DB_DEBUG3__DISABLE_REDUNDANT_PLANE_FLUSHES_OPT__SHIFT 0x9
+#define DB_DEBUG3__DISABLE_RECOMP_TO_1ZPLANE_WITHOUT_FASTOP__SHIFT 0xa
+#define DB_DEBUG3__ENABLE_INCOHERENT_EQAA_READS__SHIFT 0xb
+#define DB_DEBUG3__DISABLE_OP_Z_DATA_FORWARDING__SHIFT 0xc
+#define DB_DEBUG3__DISABLE_OP_DF_BYPASS__SHIFT 0xd
+#define DB_DEBUG3__DISABLE_OP_DF_WRITE_COMBINE__SHIFT 0xe
+#define DB_DEBUG3__DISABLE_OP_DF_DIRECT_FEEDBACK__SHIFT 0xf
+#define DB_DEBUG3__ALLOW_RF2P_RW_COLLISION__SHIFT 0x10
+#define DB_DEBUG3__SLOW_PREZ_TO_A2M_OMASK_RATE__SHIFT 0x11
+#define DB_DEBUG3__DISABLE_OP_S_DATA_FORWARDING__SHIFT 0x12
+#define DB_DEBUG3__DISABLE_TC_UPDATE_WRITE_COMBINE__SHIFT 0x13
+#define DB_DEBUG3__DISABLE_HZ_TC_WRITE_COMBINE__SHIFT 0x14
+#define DB_DEBUG3__ENABLE_RECOMP_ZDIRTY_SUPPRESSION_OPT__SHIFT 0x15
+#define DB_DEBUG3__ENABLE_TC_MA_ROUND_ROBIN_ARB__SHIFT 0x16
+#define DB_DEBUG3__DISABLE_RAM_READ_SUPPRESION_ON_FWD__SHIFT 0x17
+#define DB_DEBUG3__DISABLE_EQAA_A2M_PERF_OPT__SHIFT 0x18
+#define DB_DEBUG3__DISABLE_DI_DT_STALL__SHIFT 0x19
+#define DB_DEBUG3__ENABLE_DB_PROCESS_RESET__SHIFT 0x1a
+#define DB_DEBUG3__DISABLE_OVERRASTERIZATION_FIX__SHIFT 0x1b
+#define DB_DEBUG3__DONT_INSERT_CONTEXT_SUSPEND__SHIFT 0x1c
+#define DB_DEBUG3__DONT_DELETE_CONTEXT_SUSPEND__SHIFT 0x1d
+#define DB_DEBUG3__DISABLE_4XAA_2P_DELAYED_WRITE__SHIFT 0x1e
+#define DB_DEBUG3__DISABLE_4XAA_2P_INTERLEAVED_PMASK__SHIFT 0x1f
+#define DB_DEBUG3__DISABLE_CLEAR_ZRANGE_CORRECTION_MASK 0x00000001L
+#define DB_DEBUG3__ROUND_ZRANGE_CORRECTION_MASK 0x00000002L
+#define DB_DEBUG3__FORCE_DB_IS_GOOD_MASK 0x00000004L
+#define DB_DEBUG3__DISABLE_TL_SSO_NULL_SUPPRESSION_MASK 0x00000008L
+#define DB_DEBUG3__DISABLE_HIZ_ON_VPORT_CLAMP_MASK 0x00000010L
+#define DB_DEBUG3__EQAA_INTERPOLATE_COMP_Z_MASK 0x00000020L
+#define DB_DEBUG3__EQAA_INTERPOLATE_SRC_Z_MASK 0x00000040L
+#define DB_DEBUG3__DISABLE_TCP_CAM_BYPASS_MASK 0x00000080L
+#define DB_DEBUG3__DISABLE_ZCMP_DIRTY_SUPPRESSION_MASK 0x00000100L
+#define DB_DEBUG3__DISABLE_REDUNDANT_PLANE_FLUSHES_OPT_MASK 0x00000200L
+#define DB_DEBUG3__DISABLE_RECOMP_TO_1ZPLANE_WITHOUT_FASTOP_MASK 0x00000400L
+#define DB_DEBUG3__ENABLE_INCOHERENT_EQAA_READS_MASK 0x00000800L
+#define DB_DEBUG3__DISABLE_OP_Z_DATA_FORWARDING_MASK 0x00001000L
+#define DB_DEBUG3__DISABLE_OP_DF_BYPASS_MASK 0x00002000L
+#define DB_DEBUG3__DISABLE_OP_DF_WRITE_COMBINE_MASK 0x00004000L
+#define DB_DEBUG3__DISABLE_OP_DF_DIRECT_FEEDBACK_MASK 0x00008000L
+#define DB_DEBUG3__ALLOW_RF2P_RW_COLLISION_MASK 0x00010000L
+#define DB_DEBUG3__SLOW_PREZ_TO_A2M_OMASK_RATE_MASK 0x00020000L
+#define DB_DEBUG3__DISABLE_OP_S_DATA_FORWARDING_MASK 0x00040000L
+#define DB_DEBUG3__DISABLE_TC_UPDATE_WRITE_COMBINE_MASK 0x00080000L
+#define DB_DEBUG3__DISABLE_HZ_TC_WRITE_COMBINE_MASK 0x00100000L
+#define DB_DEBUG3__ENABLE_RECOMP_ZDIRTY_SUPPRESSION_OPT_MASK 0x00200000L
+#define DB_DEBUG3__ENABLE_TC_MA_ROUND_ROBIN_ARB_MASK 0x00400000L
+#define DB_DEBUG3__DISABLE_RAM_READ_SUPPRESION_ON_FWD_MASK 0x00800000L
+#define DB_DEBUG3__DISABLE_EQAA_A2M_PERF_OPT_MASK 0x01000000L
+#define DB_DEBUG3__DISABLE_DI_DT_STALL_MASK 0x02000000L
+#define DB_DEBUG3__ENABLE_DB_PROCESS_RESET_MASK 0x04000000L
+#define DB_DEBUG3__DISABLE_OVERRASTERIZATION_FIX_MASK 0x08000000L
+#define DB_DEBUG3__DONT_INSERT_CONTEXT_SUSPEND_MASK 0x10000000L
+#define DB_DEBUG3__DONT_DELETE_CONTEXT_SUSPEND_MASK 0x20000000L
+#define DB_DEBUG3__DISABLE_4XAA_2P_DELAYED_WRITE_MASK 0x40000000L
+#define DB_DEBUG3__DISABLE_4XAA_2P_INTERLEAVED_PMASK_MASK 0x80000000L
+//DB_DEBUG4
+#define DB_DEBUG4__DISABLE_QC_Z_MASK_SUMMATION__SHIFT 0x0
+#define DB_DEBUG4__DISABLE_QC_STENCIL_MASK_SUMMATION__SHIFT 0x1
+#define DB_DEBUG4__DISABLE_RESUMM_TO_SINGLE_STENCIL__SHIFT 0x2
+#define DB_DEBUG4__DISABLE_PREZ_POSTZ_DTILE_CONFLICT_STALL__SHIFT 0x3
+#define DB_DEBUG4__DISABLE_4XAA_2P_ZD_HOLDOFF__SHIFT 0x4
+#define DB_DEBUG4__ENABLE_A2M_DQUAD_OPTIMIZATION__SHIFT 0x5
+#define DB_DEBUG4__ENABLE_DBCB_SLOW_FORMAT_COLLAPSE__SHIFT 0x6
+#define DB_DEBUG4__ALWAYS_ON_RMI_CLK_EN__SHIFT 0x7
+#define DB_DEBUG4__DFSM_CONVERT_PASSTHROUGH_TO_BYPASS__SHIFT 0x8
+#define DB_DEBUG4__DISABLE_UNMAPPED_Z_INDICATOR__SHIFT 0x9
+#define DB_DEBUG4__DISABLE_UNMAPPED_S_INDICATOR__SHIFT 0xa
+#define DB_DEBUG4__DISABLE_UNMAPPED_H_INDICATOR__SHIFT 0xb
+#define DB_DEBUG4__DISABLE_SEPARATE_DFSM_CLK__SHIFT 0xc
+#define DB_DEBUG4__DISABLE_DTT_FAST_HTILENACK_LOOKUP__SHIFT 0xd
+#define DB_DEBUG4__DISABLE_RESCHECK_MEMCOHER_OPTIMIZATION__SHIFT 0xe
+#define DB_DEBUG4__DISABLE_TS_WRITE_L0__SHIFT 0xf
+#define DB_DEBUG4__DISABLE_DYNAMIC_RAM_LIGHT_SLEEP_MODE__SHIFT 0x10
+#define DB_DEBUG4__DISABLE_HIZ_Q1_TS_COLLISION_DETECT__SHIFT 0x11
+#define DB_DEBUG4__DISABLE_HIZ_Q2_TS_COLLISION_DETECT__SHIFT 0x12
+#define DB_DEBUG4__DB_EXTRA_DEBUG4__SHIFT 0x13
+#define DB_DEBUG4__DISABLE_8PPC_OBJPRIMID_WHEN_NO_SHADER_EXPORTS__SHIFT 0x1e
+#define DB_DEBUG4__FULL_TILE_CACHE_EVICT_ON_HALF_FULL__SHIFT 0x1f
+#define DB_DEBUG4__DISABLE_QC_Z_MASK_SUMMATION_MASK 0x00000001L
+#define DB_DEBUG4__DISABLE_QC_STENCIL_MASK_SUMMATION_MASK 0x00000002L
+#define DB_DEBUG4__DISABLE_RESUMM_TO_SINGLE_STENCIL_MASK 0x00000004L
+#define DB_DEBUG4__DISABLE_PREZ_POSTZ_DTILE_CONFLICT_STALL_MASK 0x00000008L
+#define DB_DEBUG4__DISABLE_4XAA_2P_ZD_HOLDOFF_MASK 0x00000010L
+#define DB_DEBUG4__ENABLE_A2M_DQUAD_OPTIMIZATION_MASK 0x00000020L
+#define DB_DEBUG4__ENABLE_DBCB_SLOW_FORMAT_COLLAPSE_MASK 0x00000040L
+#define DB_DEBUG4__ALWAYS_ON_RMI_CLK_EN_MASK 0x00000080L
+#define DB_DEBUG4__DFSM_CONVERT_PASSTHROUGH_TO_BYPASS_MASK 0x00000100L
+#define DB_DEBUG4__DISABLE_UNMAPPED_Z_INDICATOR_MASK 0x00000200L
+#define DB_DEBUG4__DISABLE_UNMAPPED_S_INDICATOR_MASK 0x00000400L
+#define DB_DEBUG4__DISABLE_UNMAPPED_H_INDICATOR_MASK 0x00000800L
+#define DB_DEBUG4__DISABLE_SEPARATE_DFSM_CLK_MASK 0x00001000L
+#define DB_DEBUG4__DISABLE_DTT_FAST_HTILENACK_LOOKUP_MASK 0x00002000L
+#define DB_DEBUG4__DISABLE_RESCHECK_MEMCOHER_OPTIMIZATION_MASK 0x00004000L
+#define DB_DEBUG4__DISABLE_TS_WRITE_L0_MASK 0x00008000L
+#define DB_DEBUG4__DISABLE_DYNAMIC_RAM_LIGHT_SLEEP_MODE_MASK 0x00010000L
+#define DB_DEBUG4__DISABLE_HIZ_Q1_TS_COLLISION_DETECT_MASK 0x00020000L
+#define DB_DEBUG4__DISABLE_HIZ_Q2_TS_COLLISION_DETECT_MASK 0x00040000L
+#define DB_DEBUG4__DB_EXTRA_DEBUG4_MASK 0x3FF80000L
+#define DB_DEBUG4__DISABLE_8PPC_OBJPRIMID_WHEN_NO_SHADER_EXPORTS_MASK 0x40000000L
+#define DB_DEBUG4__FULL_TILE_CACHE_EVICT_ON_HALF_FULL_MASK 0x80000000L
+//DB_CREDIT_LIMIT
+#define DB_CREDIT_LIMIT__DB_SC_TILE_CREDITS__SHIFT 0x0
+#define DB_CREDIT_LIMIT__DB_SC_QUAD_CREDITS__SHIFT 0x5
+#define DB_CREDIT_LIMIT__DB_CB_LQUAD_CREDITS__SHIFT 0xa
+#define DB_CREDIT_LIMIT__DB_CB_TILE_CREDITS__SHIFT 0x18
+#define DB_CREDIT_LIMIT__DB_SC_TILE_CREDITS_MASK 0x0000001FL
+#define DB_CREDIT_LIMIT__DB_SC_QUAD_CREDITS_MASK 0x000003E0L
+#define DB_CREDIT_LIMIT__DB_CB_LQUAD_CREDITS_MASK 0x00001C00L
+#define DB_CREDIT_LIMIT__DB_CB_TILE_CREDITS_MASK 0x7F000000L
+//DB_WATERMARKS
+#define DB_WATERMARKS__DEPTH_FREE__SHIFT 0x0
+#define DB_WATERMARKS__DEPTH_FLUSH__SHIFT 0x5
+#define DB_WATERMARKS__FORCE_SUMMARIZE__SHIFT 0xb
+#define DB_WATERMARKS__DEPTH_PENDING_FREE__SHIFT 0xf
+#define DB_WATERMARKS__DEPTH_CACHELINE_FREE__SHIFT 0x14
+#define DB_WATERMARKS__AUTO_FLUSH_HTILE__SHIFT 0x1e
+#define DB_WATERMARKS__AUTO_FLUSH_QUAD__SHIFT 0x1f
+#define DB_WATERMARKS__DEPTH_FREE_MASK 0x0000001FL
+#define DB_WATERMARKS__DEPTH_FLUSH_MASK 0x000007E0L
+#define DB_WATERMARKS__FORCE_SUMMARIZE_MASK 0x00007800L
+#define DB_WATERMARKS__DEPTH_PENDING_FREE_MASK 0x000F8000L
+#define DB_WATERMARKS__DEPTH_CACHELINE_FREE_MASK 0x0FF00000L
+#define DB_WATERMARKS__AUTO_FLUSH_HTILE_MASK 0x40000000L
+#define DB_WATERMARKS__AUTO_FLUSH_QUAD_MASK 0x80000000L
+//DB_SUBTILE_CONTROL
+#define DB_SUBTILE_CONTROL__MSAA1_X__SHIFT 0x0
+#define DB_SUBTILE_CONTROL__MSAA1_Y__SHIFT 0x2
+#define DB_SUBTILE_CONTROL__MSAA2_X__SHIFT 0x4
+#define DB_SUBTILE_CONTROL__MSAA2_Y__SHIFT 0x6
+#define DB_SUBTILE_CONTROL__MSAA4_X__SHIFT 0x8
+#define DB_SUBTILE_CONTROL__MSAA4_Y__SHIFT 0xa
+#define DB_SUBTILE_CONTROL__MSAA8_X__SHIFT 0xc
+#define DB_SUBTILE_CONTROL__MSAA8_Y__SHIFT 0xe
+#define DB_SUBTILE_CONTROL__MSAA16_X__SHIFT 0x10
+#define DB_SUBTILE_CONTROL__MSAA16_Y__SHIFT 0x12
+#define DB_SUBTILE_CONTROL__MSAA1_X_MASK 0x00000003L
+#define DB_SUBTILE_CONTROL__MSAA1_Y_MASK 0x0000000CL
+#define DB_SUBTILE_CONTROL__MSAA2_X_MASK 0x00000030L
+#define DB_SUBTILE_CONTROL__MSAA2_Y_MASK 0x000000C0L
+#define DB_SUBTILE_CONTROL__MSAA4_X_MASK 0x00000300L
+#define DB_SUBTILE_CONTROL__MSAA4_Y_MASK 0x00000C00L
+#define DB_SUBTILE_CONTROL__MSAA8_X_MASK 0x00003000L
+#define DB_SUBTILE_CONTROL__MSAA8_Y_MASK 0x0000C000L
+#define DB_SUBTILE_CONTROL__MSAA16_X_MASK 0x00030000L
+#define DB_SUBTILE_CONTROL__MSAA16_Y_MASK 0x000C0000L
+//DB_FREE_CACHELINES
+#define DB_FREE_CACHELINES__FREE_DTILE_DEPTH__SHIFT 0x0
+#define DB_FREE_CACHELINES__FREE_PLANE_DEPTH__SHIFT 0x7
+#define DB_FREE_CACHELINES__FREE_Z_DEPTH__SHIFT 0xe
+#define DB_FREE_CACHELINES__FREE_HTILE_DEPTH__SHIFT 0x14
+#define DB_FREE_CACHELINES__QUAD_READ_REQS__SHIFT 0x18
+#define DB_FREE_CACHELINES__FREE_DTILE_DEPTH_MASK 0x0000007FL
+#define DB_FREE_CACHELINES__FREE_PLANE_DEPTH_MASK 0x00003F80L
+#define DB_FREE_CACHELINES__FREE_Z_DEPTH_MASK 0x000FC000L
+#define DB_FREE_CACHELINES__FREE_HTILE_DEPTH_MASK 0x00F00000L
+#define DB_FREE_CACHELINES__QUAD_READ_REQS_MASK 0xFF000000L
+//DB_FIFO_DEPTH1
+#define DB_FIFO_DEPTH1__DB_RMI_RDREQ_CREDITS__SHIFT 0x0
+#define DB_FIFO_DEPTH1__DB_RMI_WRREQ_CREDITS__SHIFT 0x5
+#define DB_FIFO_DEPTH1__MCC_DEPTH__SHIFT 0xa
+#define DB_FIFO_DEPTH1__QC_DEPTH__SHIFT 0x10
+#define DB_FIFO_DEPTH1__LTILE_PROBE_FIFO_DEPTH__SHIFT 0x15
+#define DB_FIFO_DEPTH1__DB_RMI_RDREQ_CREDITS_MASK 0x0000001FL
+#define DB_FIFO_DEPTH1__DB_RMI_WRREQ_CREDITS_MASK 0x000003E0L
+#define DB_FIFO_DEPTH1__MCC_DEPTH_MASK 0x0000FC00L
+#define DB_FIFO_DEPTH1__QC_DEPTH_MASK 0x001F0000L
+#define DB_FIFO_DEPTH1__LTILE_PROBE_FIFO_DEPTH_MASK 0x1FE00000L
+//DB_FIFO_DEPTH2
+#define DB_FIFO_DEPTH2__EQUAD_FIFO_DEPTH__SHIFT 0x0
+#define DB_FIFO_DEPTH2__ETILE_OP_FIFO_DEPTH__SHIFT 0x8
+#define DB_FIFO_DEPTH2__LQUAD_FIFO_DEPTH__SHIFT 0xf
+#define DB_FIFO_DEPTH2__LTILE_OP_FIFO_DEPTH__SHIFT 0x19
+#define DB_FIFO_DEPTH2__EQUAD_FIFO_DEPTH_MASK 0x000000FFL
+#define DB_FIFO_DEPTH2__ETILE_OP_FIFO_DEPTH_MASK 0x00007F00L
+#define DB_FIFO_DEPTH2__LQUAD_FIFO_DEPTH_MASK 0x01FF8000L
+#define DB_FIFO_DEPTH2__LTILE_OP_FIFO_DEPTH_MASK 0xFE000000L
+//DB_EXCEPTION_CONTROL
+#define DB_EXCEPTION_CONTROL__EARLY_Z_PANIC_DISABLE__SHIFT 0x0
+#define DB_EXCEPTION_CONTROL__LATE_Z_PANIC_DISABLE__SHIFT 0x1
+#define DB_EXCEPTION_CONTROL__RE_Z_PANIC_DISABLE__SHIFT 0x2
+#define DB_EXCEPTION_CONTROL__EARLY_Z_PANIC_DISABLE_MASK 0x00000001L
+#define DB_EXCEPTION_CONTROL__LATE_Z_PANIC_DISABLE_MASK 0x00000002L
+#define DB_EXCEPTION_CONTROL__RE_Z_PANIC_DISABLE_MASK 0x00000004L
+//DB_RING_CONTROL
+#define DB_RING_CONTROL__COUNTER_CONTROL__SHIFT 0x0
+#define DB_RING_CONTROL__COUNTER_CONTROL_MASK 0x00000003L
+//DB_MEM_ARB_WATERMARKS
+#define DB_MEM_ARB_WATERMARKS__CLIENT0_WATERMARK__SHIFT 0x0
+#define DB_MEM_ARB_WATERMARKS__CLIENT1_WATERMARK__SHIFT 0x8
+#define DB_MEM_ARB_WATERMARKS__CLIENT2_WATERMARK__SHIFT 0x10
+#define DB_MEM_ARB_WATERMARKS__CLIENT3_WATERMARK__SHIFT 0x18
+#define DB_MEM_ARB_WATERMARKS__CLIENT0_WATERMARK_MASK 0x00000007L
+#define DB_MEM_ARB_WATERMARKS__CLIENT1_WATERMARK_MASK 0x00000700L
+#define DB_MEM_ARB_WATERMARKS__CLIENT2_WATERMARK_MASK 0x00070000L
+#define DB_MEM_ARB_WATERMARKS__CLIENT3_WATERMARK_MASK 0x07000000L
+//DB_RMI_CACHE_POLICY
+#define DB_RMI_CACHE_POLICY__Z_RD__SHIFT 0x0
+#define DB_RMI_CACHE_POLICY__S_RD__SHIFT 0x1
+#define DB_RMI_CACHE_POLICY__HTILE_RD__SHIFT 0x2
+#define DB_RMI_CACHE_POLICY__Z_WR__SHIFT 0x8
+#define DB_RMI_CACHE_POLICY__S_WR__SHIFT 0x9
+#define DB_RMI_CACHE_POLICY__HTILE_WR__SHIFT 0xa
+#define DB_RMI_CACHE_POLICY__ZPCPSD_WR__SHIFT 0xb
+#define DB_RMI_CACHE_POLICY__CC_RD__SHIFT 0x10
+#define DB_RMI_CACHE_POLICY__FMASK_RD__SHIFT 0x11
+#define DB_RMI_CACHE_POLICY__CMASK_RD__SHIFT 0x12
+#define DB_RMI_CACHE_POLICY__DCC_RD__SHIFT 0x13
+#define DB_RMI_CACHE_POLICY__CC_WR__SHIFT 0x18
+#define DB_RMI_CACHE_POLICY__FMASK_WR__SHIFT 0x19
+#define DB_RMI_CACHE_POLICY__CMASK_WR__SHIFT 0x1a
+#define DB_RMI_CACHE_POLICY__DCC_WR__SHIFT 0x1b
+#define DB_RMI_CACHE_POLICY__Z_RD_MASK 0x00000001L
+#define DB_RMI_CACHE_POLICY__S_RD_MASK 0x00000002L
+#define DB_RMI_CACHE_POLICY__HTILE_RD_MASK 0x00000004L
+#define DB_RMI_CACHE_POLICY__Z_WR_MASK 0x00000100L
+#define DB_RMI_CACHE_POLICY__S_WR_MASK 0x00000200L
+#define DB_RMI_CACHE_POLICY__HTILE_WR_MASK 0x00000400L
+#define DB_RMI_CACHE_POLICY__ZPCPSD_WR_MASK 0x00000800L
+#define DB_RMI_CACHE_POLICY__CC_RD_MASK 0x00010000L
+#define DB_RMI_CACHE_POLICY__FMASK_RD_MASK 0x00020000L
+#define DB_RMI_CACHE_POLICY__CMASK_RD_MASK 0x00040000L
+#define DB_RMI_CACHE_POLICY__DCC_RD_MASK 0x00080000L
+#define DB_RMI_CACHE_POLICY__CC_WR_MASK 0x01000000L
+#define DB_RMI_CACHE_POLICY__FMASK_WR_MASK 0x02000000L
+#define DB_RMI_CACHE_POLICY__CMASK_WR_MASK 0x04000000L
+#define DB_RMI_CACHE_POLICY__DCC_WR_MASK 0x08000000L
+//DB_DFSM_CONFIG
+#define DB_DFSM_CONFIG__BYPASS_DFSM__SHIFT 0x0
+#define DB_DFSM_CONFIG__DISABLE_PUNCHOUT__SHIFT 0x1
+#define DB_DFSM_CONFIG__DISABLE_POPS__SHIFT 0x2
+#define DB_DFSM_CONFIG__FORCE_FLUSH__SHIFT 0x3
+#define DB_DFSM_CONFIG__MIDDLE_PIPE_MAX_DEPTH__SHIFT 0x8
+#define DB_DFSM_CONFIG__BYPASS_DFSM_MASK 0x00000001L
+#define DB_DFSM_CONFIG__DISABLE_PUNCHOUT_MASK 0x00000002L
+#define DB_DFSM_CONFIG__DISABLE_POPS_MASK 0x00000004L
+#define DB_DFSM_CONFIG__FORCE_FLUSH_MASK 0x00000008L
+#define DB_DFSM_CONFIG__MIDDLE_PIPE_MAX_DEPTH_MASK 0x00007F00L
+//DB_DFSM_WATERMARK
+#define DB_DFSM_WATERMARK__DFSM_HIGH_WATERMARK__SHIFT 0x0
+#define DB_DFSM_WATERMARK__POPS_HIGH_WATERMARK__SHIFT 0x10
+#define DB_DFSM_WATERMARK__DFSM_HIGH_WATERMARK_MASK 0x0000FFFFL
+#define DB_DFSM_WATERMARK__POPS_HIGH_WATERMARK_MASK 0xFFFF0000L
+//DB_DFSM_TILES_IN_FLIGHT
+#define DB_DFSM_TILES_IN_FLIGHT__HIGH_WATERMARK__SHIFT 0x0
+#define DB_DFSM_TILES_IN_FLIGHT__HARD_LIMIT__SHIFT 0x10
+#define DB_DFSM_TILES_IN_FLIGHT__HIGH_WATERMARK_MASK 0x0000FFFFL
+#define DB_DFSM_TILES_IN_FLIGHT__HARD_LIMIT_MASK 0xFFFF0000L
+//DB_DFSM_PRIMS_IN_FLIGHT
+#define DB_DFSM_PRIMS_IN_FLIGHT__HIGH_WATERMARK__SHIFT 0x0
+#define DB_DFSM_PRIMS_IN_FLIGHT__HARD_LIMIT__SHIFT 0x10
+#define DB_DFSM_PRIMS_IN_FLIGHT__HIGH_WATERMARK_MASK 0x0000FFFFL
+#define DB_DFSM_PRIMS_IN_FLIGHT__HARD_LIMIT_MASK 0xFFFF0000L
+//DB_DFSM_WATCHDOG
+#define DB_DFSM_WATCHDOG__TIMER_TARGET__SHIFT 0x0
+#define DB_DFSM_WATCHDOG__TIMER_TARGET_MASK 0xFFFFFFFFL
+//DB_DFSM_FLUSH_ENABLE
+#define DB_DFSM_FLUSH_ENABLE__PRIMARY_EVENTS__SHIFT 0x0
+#define DB_DFSM_FLUSH_ENABLE__AUX_FORCE_PASSTHRU__SHIFT 0x18
+#define DB_DFSM_FLUSH_ENABLE__AUX_EVENTS__SHIFT 0x1c
+#define DB_DFSM_FLUSH_ENABLE__PRIMARY_EVENTS_MASK 0x000003FFL
+#define DB_DFSM_FLUSH_ENABLE__AUX_FORCE_PASSTHRU_MASK 0x0F000000L
+#define DB_DFSM_FLUSH_ENABLE__AUX_EVENTS_MASK 0xF0000000L
+//DB_DFSM_FLUSH_AUX_EVENT
+#define DB_DFSM_FLUSH_AUX_EVENT__EVENT_A__SHIFT 0x0
+#define DB_DFSM_FLUSH_AUX_EVENT__EVENT_B__SHIFT 0x8
+#define DB_DFSM_FLUSH_AUX_EVENT__EVENT_C__SHIFT 0x10
+#define DB_DFSM_FLUSH_AUX_EVENT__EVENT_D__SHIFT 0x18
+#define DB_DFSM_FLUSH_AUX_EVENT__EVENT_A_MASK 0x000000FFL
+#define DB_DFSM_FLUSH_AUX_EVENT__EVENT_B_MASK 0x0000FF00L
+#define DB_DFSM_FLUSH_AUX_EVENT__EVENT_C_MASK 0x00FF0000L
+#define DB_DFSM_FLUSH_AUX_EVENT__EVENT_D_MASK 0xFF000000L
+//CC_RB_REDUNDANCY
+#define CC_RB_REDUNDANCY__WRITE_DIS__SHIFT 0x0
+#define CC_RB_REDUNDANCY__FAILED_RB0__SHIFT 0x8
+#define CC_RB_REDUNDANCY__EN_REDUNDANCY0__SHIFT 0xc
+#define CC_RB_REDUNDANCY__FAILED_RB1__SHIFT 0x10
+#define CC_RB_REDUNDANCY__EN_REDUNDANCY1__SHIFT 0x14
+#define CC_RB_REDUNDANCY__WRITE_DIS_MASK 0x00000001L
+#define CC_RB_REDUNDANCY__FAILED_RB0_MASK 0x00000F00L
+#define CC_RB_REDUNDANCY__EN_REDUNDANCY0_MASK 0x00001000L
+#define CC_RB_REDUNDANCY__FAILED_RB1_MASK 0x000F0000L
+#define CC_RB_REDUNDANCY__EN_REDUNDANCY1_MASK 0x00100000L
+//CC_RB_BACKEND_DISABLE
+#define CC_RB_BACKEND_DISABLE__WRITE_DIS__SHIFT 0x0
+#define CC_RB_BACKEND_DISABLE__BACKEND_DISABLE__SHIFT 0x10
+#define CC_RB_BACKEND_DISABLE__WRITE_DIS_MASK 0x00000001L
+#define CC_RB_BACKEND_DISABLE__BACKEND_DISABLE_MASK 0x00FF0000L
+//GB_ADDR_CONFIG
+#define GB_ADDR_CONFIG__NUM_PIPES__SHIFT 0x0
+#define GB_ADDR_CONFIG__PIPE_INTERLEAVE_SIZE__SHIFT 0x3
+#define GB_ADDR_CONFIG__MAX_COMPRESSED_FRAGS__SHIFT 0x6
+#define GB_ADDR_CONFIG__BANK_INTERLEAVE_SIZE__SHIFT 0x8
+#define GB_ADDR_CONFIG__NUM_BANKS__SHIFT 0xc
+#define GB_ADDR_CONFIG__SHADER_ENGINE_TILE_SIZE__SHIFT 0x10
+#define GB_ADDR_CONFIG__NUM_SHADER_ENGINES__SHIFT 0x13
+#define GB_ADDR_CONFIG__NUM_GPUS__SHIFT 0x15
+#define GB_ADDR_CONFIG__MULTI_GPU_TILE_SIZE__SHIFT 0x18
+#define GB_ADDR_CONFIG__NUM_RB_PER_SE__SHIFT 0x1a
+#define GB_ADDR_CONFIG__ROW_SIZE__SHIFT 0x1c
+#define GB_ADDR_CONFIG__NUM_LOWER_PIPES__SHIFT 0x1e
+#define GB_ADDR_CONFIG__SE_ENABLE__SHIFT 0x1f
+#define GB_ADDR_CONFIG__NUM_PIPES_MASK 0x00000007L
+#define GB_ADDR_CONFIG__PIPE_INTERLEAVE_SIZE_MASK 0x00000038L
+#define GB_ADDR_CONFIG__MAX_COMPRESSED_FRAGS_MASK 0x000000C0L
+#define GB_ADDR_CONFIG__BANK_INTERLEAVE_SIZE_MASK 0x00000700L
+#define GB_ADDR_CONFIG__NUM_BANKS_MASK 0x00007000L
+#define GB_ADDR_CONFIG__SHADER_ENGINE_TILE_SIZE_MASK 0x00070000L
+#define GB_ADDR_CONFIG__NUM_SHADER_ENGINES_MASK 0x00180000L
+#define GB_ADDR_CONFIG__NUM_GPUS_MASK 0x00E00000L
+#define GB_ADDR_CONFIG__MULTI_GPU_TILE_SIZE_MASK 0x03000000L
+#define GB_ADDR_CONFIG__NUM_RB_PER_SE_MASK 0x0C000000L
+#define GB_ADDR_CONFIG__ROW_SIZE_MASK 0x30000000L
+#define GB_ADDR_CONFIG__NUM_LOWER_PIPES_MASK 0x40000000L
+#define GB_ADDR_CONFIG__SE_ENABLE_MASK 0x80000000L
+//GB_BACKEND_MAP
+#define GB_BACKEND_MAP__BACKEND_MAP__SHIFT 0x0
+#define GB_BACKEND_MAP__BACKEND_MAP_MASK 0xFFFFFFFFL
+//GB_GPU_ID
+#define GB_GPU_ID__GPU_ID__SHIFT 0x0
+#define GB_GPU_ID__GPU_ID_MASK 0x0000000FL
+//CC_RB_DAISY_CHAIN
+#define CC_RB_DAISY_CHAIN__RB_0__SHIFT 0x0
+#define CC_RB_DAISY_CHAIN__RB_1__SHIFT 0x4
+#define CC_RB_DAISY_CHAIN__RB_2__SHIFT 0x8
+#define CC_RB_DAISY_CHAIN__RB_3__SHIFT 0xc
+#define CC_RB_DAISY_CHAIN__RB_4__SHIFT 0x10
+#define CC_RB_DAISY_CHAIN__RB_5__SHIFT 0x14
+#define CC_RB_DAISY_CHAIN__RB_6__SHIFT 0x18
+#define CC_RB_DAISY_CHAIN__RB_7__SHIFT 0x1c
+#define CC_RB_DAISY_CHAIN__RB_0_MASK 0x0000000FL
+#define CC_RB_DAISY_CHAIN__RB_1_MASK 0x000000F0L
+#define CC_RB_DAISY_CHAIN__RB_2_MASK 0x00000F00L
+#define CC_RB_DAISY_CHAIN__RB_3_MASK 0x0000F000L
+#define CC_RB_DAISY_CHAIN__RB_4_MASK 0x000F0000L
+#define CC_RB_DAISY_CHAIN__RB_5_MASK 0x00F00000L
+#define CC_RB_DAISY_CHAIN__RB_6_MASK 0x0F000000L
+#define CC_RB_DAISY_CHAIN__RB_7_MASK 0xF0000000L
+//GB_ADDR_CONFIG_READ
+#define GB_ADDR_CONFIG_READ__NUM_PIPES__SHIFT 0x0
+#define GB_ADDR_CONFIG_READ__PIPE_INTERLEAVE_SIZE__SHIFT 0x3
+#define GB_ADDR_CONFIG_READ__MAX_COMPRESSED_FRAGS__SHIFT 0x6
+#define GB_ADDR_CONFIG_READ__BANK_INTERLEAVE_SIZE__SHIFT 0x8
+#define GB_ADDR_CONFIG_READ__NUM_BANKS__SHIFT 0xc
+#define GB_ADDR_CONFIG_READ__SHADER_ENGINE_TILE_SIZE__SHIFT 0x10
+#define GB_ADDR_CONFIG_READ__NUM_SHADER_ENGINES__SHIFT 0x13
+#define GB_ADDR_CONFIG_READ__NUM_GPUS__SHIFT 0x15
+#define GB_ADDR_CONFIG_READ__MULTI_GPU_TILE_SIZE__SHIFT 0x18
+#define GB_ADDR_CONFIG_READ__NUM_RB_PER_SE__SHIFT 0x1a
+#define GB_ADDR_CONFIG_READ__ROW_SIZE__SHIFT 0x1c
+#define GB_ADDR_CONFIG_READ__NUM_LOWER_PIPES__SHIFT 0x1e
+#define GB_ADDR_CONFIG_READ__SE_ENABLE__SHIFT 0x1f
+#define GB_ADDR_CONFIG_READ__NUM_PIPES_MASK 0x00000007L
+#define GB_ADDR_CONFIG_READ__PIPE_INTERLEAVE_SIZE_MASK 0x00000038L
+#define GB_ADDR_CONFIG_READ__MAX_COMPRESSED_FRAGS_MASK 0x000000C0L
+#define GB_ADDR_CONFIG_READ__BANK_INTERLEAVE_SIZE_MASK 0x00000700L
+#define GB_ADDR_CONFIG_READ__NUM_BANKS_MASK 0x00007000L
+#define GB_ADDR_CONFIG_READ__SHADER_ENGINE_TILE_SIZE_MASK 0x00070000L
+#define GB_ADDR_CONFIG_READ__NUM_SHADER_ENGINES_MASK 0x00180000L
+#define GB_ADDR_CONFIG_READ__NUM_GPUS_MASK 0x00E00000L
+#define GB_ADDR_CONFIG_READ__MULTI_GPU_TILE_SIZE_MASK 0x03000000L
+#define GB_ADDR_CONFIG_READ__NUM_RB_PER_SE_MASK 0x0C000000L
+#define GB_ADDR_CONFIG_READ__ROW_SIZE_MASK 0x30000000L
+#define GB_ADDR_CONFIG_READ__NUM_LOWER_PIPES_MASK 0x40000000L
+#define GB_ADDR_CONFIG_READ__SE_ENABLE_MASK 0x80000000L
+//GB_TILE_MODE0
+#define GB_TILE_MODE0__ARRAY_MODE__SHIFT 0x2
+#define GB_TILE_MODE0__PIPE_CONFIG__SHIFT 0x6
+#define GB_TILE_MODE0__TILE_SPLIT__SHIFT 0xb
+#define GB_TILE_MODE0__MICRO_TILE_MODE_NEW__SHIFT 0x16
+#define GB_TILE_MODE0__SAMPLE_SPLIT__SHIFT 0x19
+#define GB_TILE_MODE0__ARRAY_MODE_MASK 0x0000003CL
+#define GB_TILE_MODE0__PIPE_CONFIG_MASK 0x000007C0L
+#define GB_TILE_MODE0__TILE_SPLIT_MASK 0x00003800L
+#define GB_TILE_MODE0__MICRO_TILE_MODE_NEW_MASK 0x01C00000L
+#define GB_TILE_MODE0__SAMPLE_SPLIT_MASK 0x06000000L
+//GB_TILE_MODE1
+#define GB_TILE_MODE1__ARRAY_MODE__SHIFT 0x2
+#define GB_TILE_MODE1__PIPE_CONFIG__SHIFT 0x6
+#define GB_TILE_MODE1__TILE_SPLIT__SHIFT 0xb
+#define GB_TILE_MODE1__MICRO_TILE_MODE_NEW__SHIFT 0x16
+#define GB_TILE_MODE1__SAMPLE_SPLIT__SHIFT 0x19
+#define GB_TILE_MODE1__ARRAY_MODE_MASK 0x0000003CL
+#define GB_TILE_MODE1__PIPE_CONFIG_MASK 0x000007C0L
+#define GB_TILE_MODE1__TILE_SPLIT_MASK 0x00003800L
+#define GB_TILE_MODE1__MICRO_TILE_MODE_NEW_MASK 0x01C00000L
+#define GB_TILE_MODE1__SAMPLE_SPLIT_MASK 0x06000000L
+//GB_TILE_MODE2
+#define GB_TILE_MODE2__ARRAY_MODE__SHIFT 0x2
+#define GB_TILE_MODE2__PIPE_CONFIG__SHIFT 0x6
+#define GB_TILE_MODE2__TILE_SPLIT__SHIFT 0xb
+#define GB_TILE_MODE2__MICRO_TILE_MODE_NEW__SHIFT 0x16
+#define GB_TILE_MODE2__SAMPLE_SPLIT__SHIFT 0x19
+#define GB_TILE_MODE2__ARRAY_MODE_MASK 0x0000003CL
+#define GB_TILE_MODE2__PIPE_CONFIG_MASK 0x000007C0L
+#define GB_TILE_MODE2__TILE_SPLIT_MASK 0x00003800L
+#define GB_TILE_MODE2__MICRO_TILE_MODE_NEW_MASK 0x01C00000L
+#define GB_TILE_MODE2__SAMPLE_SPLIT_MASK 0x06000000L
+//GB_TILE_MODE3
+#define GB_TILE_MODE3__ARRAY_MODE__SHIFT 0x2
+#define GB_TILE_MODE3__PIPE_CONFIG__SHIFT 0x6
+#define GB_TILE_MODE3__TILE_SPLIT__SHIFT 0xb
+#define GB_TILE_MODE3__MICRO_TILE_MODE_NEW__SHIFT 0x16
+#define GB_TILE_MODE3__SAMPLE_SPLIT__SHIFT 0x19
+#define GB_TILE_MODE3__ARRAY_MODE_MASK 0x0000003CL
+#define GB_TILE_MODE3__PIPE_CONFIG_MASK 0x000007C0L
+#define GB_TILE_MODE3__TILE_SPLIT_MASK 0x00003800L
+#define GB_TILE_MODE3__MICRO_TILE_MODE_NEW_MASK 0x01C00000L
+#define GB_TILE_MODE3__SAMPLE_SPLIT_MASK 0x06000000L
+//GB_TILE_MODE4
+#define GB_TILE_MODE4__ARRAY_MODE__SHIFT 0x2
+#define GB_TILE_MODE4__PIPE_CONFIG__SHIFT 0x6
+#define GB_TILE_MODE4__TILE_SPLIT__SHIFT 0xb
+#define GB_TILE_MODE4__MICRO_TILE_MODE_NEW__SHIFT 0x16
+#define GB_TILE_MODE4__SAMPLE_SPLIT__SHIFT 0x19
+#define GB_TILE_MODE4__ARRAY_MODE_MASK 0x0000003CL
+#define GB_TILE_MODE4__PIPE_CONFIG_MASK 0x000007C0L
+#define GB_TILE_MODE4__TILE_SPLIT_MASK 0x00003800L
+#define GB_TILE_MODE4__MICRO_TILE_MODE_NEW_MASK 0x01C00000L
+#define GB_TILE_MODE4__SAMPLE_SPLIT_MASK 0x06000000L
+//GB_TILE_MODE5
+#define GB_TILE_MODE5__ARRAY_MODE__SHIFT 0x2
+#define GB_TILE_MODE5__PIPE_CONFIG__SHIFT 0x6
+#define GB_TILE_MODE5__TILE_SPLIT__SHIFT 0xb
+#define GB_TILE_MODE5__MICRO_TILE_MODE_NEW__SHIFT 0x16
+#define GB_TILE_MODE5__SAMPLE_SPLIT__SHIFT 0x19
+#define GB_TILE_MODE5__ARRAY_MODE_MASK 0x0000003CL
+#define GB_TILE_MODE5__PIPE_CONFIG_MASK 0x000007C0L
+#define GB_TILE_MODE5__TILE_SPLIT_MASK 0x00003800L
+#define GB_TILE_MODE5__MICRO_TILE_MODE_NEW_MASK 0x01C00000L
+#define GB_TILE_MODE5__SAMPLE_SPLIT_MASK 0x06000000L
+//GB_TILE_MODE6
+#define GB_TILE_MODE6__ARRAY_MODE__SHIFT 0x2
+#define GB_TILE_MODE6__PIPE_CONFIG__SHIFT 0x6
+#define GB_TILE_MODE6__TILE_SPLIT__SHIFT 0xb
+#define GB_TILE_MODE6__MICRO_TILE_MODE_NEW__SHIFT 0x16
+#define GB_TILE_MODE6__SAMPLE_SPLIT__SHIFT 0x19
+#define GB_TILE_MODE6__ARRAY_MODE_MASK 0x0000003CL
+#define GB_TILE_MODE6__PIPE_CONFIG_MASK 0x000007C0L
+#define GB_TILE_MODE6__TILE_SPLIT_MASK 0x00003800L
+#define GB_TILE_MODE6__MICRO_TILE_MODE_NEW_MASK 0x01C00000L
+#define GB_TILE_MODE6__SAMPLE_SPLIT_MASK 0x06000000L
+//GB_TILE_MODE7
+#define GB_TILE_MODE7__ARRAY_MODE__SHIFT 0x2
+#define GB_TILE_MODE7__PIPE_CONFIG__SHIFT 0x6
+#define GB_TILE_MODE7__TILE_SPLIT__SHIFT 0xb
+#define GB_TILE_MODE7__MICRO_TILE_MODE_NEW__SHIFT 0x16
+#define GB_TILE_MODE7__SAMPLE_SPLIT__SHIFT 0x19
+#define GB_TILE_MODE7__ARRAY_MODE_MASK 0x0000003CL
+#define GB_TILE_MODE7__PIPE_CONFIG_MASK 0x000007C0L
+#define GB_TILE_MODE7__TILE_SPLIT_MASK 0x00003800L
+#define GB_TILE_MODE7__MICRO_TILE_MODE_NEW_MASK 0x01C00000L
+#define GB_TILE_MODE7__SAMPLE_SPLIT_MASK 0x06000000L
+//GB_TILE_MODE8
+#define GB_TILE_MODE8__ARRAY_MODE__SHIFT 0x2
+#define GB_TILE_MODE8__PIPE_CONFIG__SHIFT 0x6
+#define GB_TILE_MODE8__TILE_SPLIT__SHIFT 0xb
+#define GB_TILE_MODE8__MICRO_TILE_MODE_NEW__SHIFT 0x16
+#define GB_TILE_MODE8__SAMPLE_SPLIT__SHIFT 0x19
+#define GB_TILE_MODE8__ARRAY_MODE_MASK 0x0000003CL
+#define GB_TILE_MODE8__PIPE_CONFIG_MASK 0x000007C0L
+#define GB_TILE_MODE8__TILE_SPLIT_MASK 0x00003800L
+#define GB_TILE_MODE8__MICRO_TILE_MODE_NEW_MASK 0x01C00000L
+#define GB_TILE_MODE8__SAMPLE_SPLIT_MASK 0x06000000L
+//GB_TILE_MODE9
+#define GB_TILE_MODE9__ARRAY_MODE__SHIFT 0x2
+#define GB_TILE_MODE9__PIPE_CONFIG__SHIFT 0x6
+#define GB_TILE_MODE9__TILE_SPLIT__SHIFT 0xb
+#define GB_TILE_MODE9__MICRO_TILE_MODE_NEW__SHIFT 0x16
+#define GB_TILE_MODE9__SAMPLE_SPLIT__SHIFT 0x19
+#define GB_TILE_MODE9__ARRAY_MODE_MASK 0x0000003CL
+#define GB_TILE_MODE9__PIPE_CONFIG_MASK 0x000007C0L
+#define GB_TILE_MODE9__TILE_SPLIT_MASK 0x00003800L
+#define GB_TILE_MODE9__MICRO_TILE_MODE_NEW_MASK 0x01C00000L
+#define GB_TILE_MODE9__SAMPLE_SPLIT_MASK 0x06000000L
+//GB_TILE_MODE10
+#define GB_TILE_MODE10__ARRAY_MODE__SHIFT 0x2
+#define GB_TILE_MODE10__PIPE_CONFIG__SHIFT 0x6
+#define GB_TILE_MODE10__TILE_SPLIT__SHIFT 0xb
+#define GB_TILE_MODE10__MICRO_TILE_MODE_NEW__SHIFT 0x16
+#define GB_TILE_MODE10__SAMPLE_SPLIT__SHIFT 0x19
+#define GB_TILE_MODE10__ARRAY_MODE_MASK 0x0000003CL
+#define GB_TILE_MODE10__PIPE_CONFIG_MASK 0x000007C0L
+#define GB_TILE_MODE10__TILE_SPLIT_MASK 0x00003800L
+#define GB_TILE_MODE10__MICRO_TILE_MODE_NEW_MASK 0x01C00000L
+#define GB_TILE_MODE10__SAMPLE_SPLIT_MASK 0x06000000L
+//GB_TILE_MODE11
+#define GB_TILE_MODE11__ARRAY_MODE__SHIFT 0x2
+#define GB_TILE_MODE11__PIPE_CONFIG__SHIFT 0x6
+#define GB_TILE_MODE11__TILE_SPLIT__SHIFT 0xb
+#define GB_TILE_MODE11__MICRO_TILE_MODE_NEW__SHIFT 0x16
+#define GB_TILE_MODE11__SAMPLE_SPLIT__SHIFT 0x19
+#define GB_TILE_MODE11__ARRAY_MODE_MASK 0x0000003CL
+#define GB_TILE_MODE11__PIPE_CONFIG_MASK 0x000007C0L
+#define GB_TILE_MODE11__TILE_SPLIT_MASK 0x00003800L
+#define GB_TILE_MODE11__MICRO_TILE_MODE_NEW_MASK 0x01C00000L
+#define GB_TILE_MODE11__SAMPLE_SPLIT_MASK 0x06000000L
+//GB_TILE_MODE12
+#define GB_TILE_MODE12__ARRAY_MODE__SHIFT 0x2
+#define GB_TILE_MODE12__PIPE_CONFIG__SHIFT 0x6
+#define GB_TILE_MODE12__TILE_SPLIT__SHIFT 0xb
+#define GB_TILE_MODE12__MICRO_TILE_MODE_NEW__SHIFT 0x16
+#define GB_TILE_MODE12__SAMPLE_SPLIT__SHIFT 0x19
+#define GB_TILE_MODE12__ARRAY_MODE_MASK 0x0000003CL
+#define GB_TILE_MODE12__PIPE_CONFIG_MASK 0x000007C0L
+#define GB_TILE_MODE12__TILE_SPLIT_MASK 0x00003800L
+#define GB_TILE_MODE12__MICRO_TILE_MODE_NEW_MASK 0x01C00000L
+#define GB_TILE_MODE12__SAMPLE_SPLIT_MASK 0x06000000L
+//GB_TILE_MODE13
+#define GB_TILE_MODE13__ARRAY_MODE__SHIFT 0x2
+#define GB_TILE_MODE13__PIPE_CONFIG__SHIFT 0x6
+#define GB_TILE_MODE13__TILE_SPLIT__SHIFT 0xb
+#define GB_TILE_MODE13__MICRO_TILE_MODE_NEW__SHIFT 0x16
+#define GB_TILE_MODE13__SAMPLE_SPLIT__SHIFT 0x19
+#define GB_TILE_MODE13__ARRAY_MODE_MASK 0x0000003CL
+#define GB_TILE_MODE13__PIPE_CONFIG_MASK 0x000007C0L
+#define GB_TILE_MODE13__TILE_SPLIT_MASK 0x00003800L
+#define GB_TILE_MODE13__MICRO_TILE_MODE_NEW_MASK 0x01C00000L
+#define GB_TILE_MODE13__SAMPLE_SPLIT_MASK 0x06000000L
+//GB_TILE_MODE14
+#define GB_TILE_MODE14__ARRAY_MODE__SHIFT 0x2
+#define GB_TILE_MODE14__PIPE_CONFIG__SHIFT 0x6
+#define GB_TILE_MODE14__TILE_SPLIT__SHIFT 0xb
+#define GB_TILE_MODE14__MICRO_TILE_MODE_NEW__SHIFT 0x16
+#define GB_TILE_MODE14__SAMPLE_SPLIT__SHIFT 0x19
+#define GB_TILE_MODE14__ARRAY_MODE_MASK 0x0000003CL
+#define GB_TILE_MODE14__PIPE_CONFIG_MASK 0x000007C0L
+#define GB_TILE_MODE14__TILE_SPLIT_MASK 0x00003800L
+#define GB_TILE_MODE14__MICRO_TILE_MODE_NEW_MASK 0x01C00000L
+#define GB_TILE_MODE14__SAMPLE_SPLIT_MASK 0x06000000L
+//GB_TILE_MODE15
+#define GB_TILE_MODE15__ARRAY_MODE__SHIFT 0x2
+#define GB_TILE_MODE15__PIPE_CONFIG__SHIFT 0x6
+#define GB_TILE_MODE15__TILE_SPLIT__SHIFT 0xb
+#define GB_TILE_MODE15__MICRO_TILE_MODE_NEW__SHIFT 0x16
+#define GB_TILE_MODE15__SAMPLE_SPLIT__SHIFT 0x19
+#define GB_TILE_MODE15__ARRAY_MODE_MASK 0x0000003CL
+#define GB_TILE_MODE15__PIPE_CONFIG_MASK 0x000007C0L
+#define GB_TILE_MODE15__TILE_SPLIT_MASK 0x00003800L
+#define GB_TILE_MODE15__MICRO_TILE_MODE_NEW_MASK 0x01C00000L
+#define GB_TILE_MODE15__SAMPLE_SPLIT_MASK 0x06000000L
+//GB_TILE_MODE16
+#define GB_TILE_MODE16__ARRAY_MODE__SHIFT 0x2
+#define GB_TILE_MODE16__PIPE_CONFIG__SHIFT 0x6
+#define GB_TILE_MODE16__TILE_SPLIT__SHIFT 0xb
+#define GB_TILE_MODE16__MICRO_TILE_MODE_NEW__SHIFT 0x16
+#define GB_TILE_MODE16__SAMPLE_SPLIT__SHIFT 0x19
+#define GB_TILE_MODE16__ARRAY_MODE_MASK 0x0000003CL
+#define GB_TILE_MODE16__PIPE_CONFIG_MASK 0x000007C0L
+#define GB_TILE_MODE16__TILE_SPLIT_MASK 0x00003800L
+#define GB_TILE_MODE16__MICRO_TILE_MODE_NEW_MASK 0x01C00000L
+#define GB_TILE_MODE16__SAMPLE_SPLIT_MASK 0x06000000L
+//GB_TILE_MODE17
+#define GB_TILE_MODE17__ARRAY_MODE__SHIFT 0x2
+#define GB_TILE_MODE17__PIPE_CONFIG__SHIFT 0x6
+#define GB_TILE_MODE17__TILE_SPLIT__SHIFT 0xb
+#define GB_TILE_MODE17__MICRO_TILE_MODE_NEW__SHIFT 0x16
+#define GB_TILE_MODE17__SAMPLE_SPLIT__SHIFT 0x19
+#define GB_TILE_MODE17__ARRAY_MODE_MASK 0x0000003CL
+#define GB_TILE_MODE17__PIPE_CONFIG_MASK 0x000007C0L
+#define GB_TILE_MODE17__TILE_SPLIT_MASK 0x00003800L
+#define GB_TILE_MODE17__MICRO_TILE_MODE_NEW_MASK 0x01C00000L
+#define GB_TILE_MODE17__SAMPLE_SPLIT_MASK 0x06000000L
+//GB_TILE_MODE18
+#define GB_TILE_MODE18__ARRAY_MODE__SHIFT 0x2
+#define GB_TILE_MODE18__PIPE_CONFIG__SHIFT 0x6
+#define GB_TILE_MODE18__TILE_SPLIT__SHIFT 0xb
+#define GB_TILE_MODE18__MICRO_TILE_MODE_NEW__SHIFT 0x16
+#define GB_TILE_MODE18__SAMPLE_SPLIT__SHIFT 0x19
+#define GB_TILE_MODE18__ARRAY_MODE_MASK 0x0000003CL
+#define GB_TILE_MODE18__PIPE_CONFIG_MASK 0x000007C0L
+#define GB_TILE_MODE18__TILE_SPLIT_MASK 0x00003800L
+#define GB_TILE_MODE18__MICRO_TILE_MODE_NEW_MASK 0x01C00000L
+#define GB_TILE_MODE18__SAMPLE_SPLIT_MASK 0x06000000L
+//GB_TILE_MODE19
+#define GB_TILE_MODE19__ARRAY_MODE__SHIFT 0x2
+#define GB_TILE_MODE19__PIPE_CONFIG__SHIFT 0x6
+#define GB_TILE_MODE19__TILE_SPLIT__SHIFT 0xb
+#define GB_TILE_MODE19__MICRO_TILE_MODE_NEW__SHIFT 0x16
+#define GB_TILE_MODE19__SAMPLE_SPLIT__SHIFT 0x19
+#define GB_TILE_MODE19__ARRAY_MODE_MASK 0x0000003CL
+#define GB_TILE_MODE19__PIPE_CONFIG_MASK 0x000007C0L
+#define GB_TILE_MODE19__TILE_SPLIT_MASK 0x00003800L
+#define GB_TILE_MODE19__MICRO_TILE_MODE_NEW_MASK 0x01C00000L
+#define GB_TILE_MODE19__SAMPLE_SPLIT_MASK 0x06000000L
+//GB_TILE_MODE20
+#define GB_TILE_MODE20__ARRAY_MODE__SHIFT 0x2
+#define GB_TILE_MODE20__PIPE_CONFIG__SHIFT 0x6
+#define GB_TILE_MODE20__TILE_SPLIT__SHIFT 0xb
+#define GB_TILE_MODE20__MICRO_TILE_MODE_NEW__SHIFT 0x16
+#define GB_TILE_MODE20__SAMPLE_SPLIT__SHIFT 0x19
+#define GB_TILE_MODE20__ARRAY_MODE_MASK 0x0000003CL
+#define GB_TILE_MODE20__PIPE_CONFIG_MASK 0x000007C0L
+#define GB_TILE_MODE20__TILE_SPLIT_MASK 0x00003800L
+#define GB_TILE_MODE20__MICRO_TILE_MODE_NEW_MASK 0x01C00000L
+#define GB_TILE_MODE20__SAMPLE_SPLIT_MASK 0x06000000L
+//GB_TILE_MODE21
+#define GB_TILE_MODE21__ARRAY_MODE__SHIFT 0x2
+#define GB_TILE_MODE21__PIPE_CONFIG__SHIFT 0x6
+#define GB_TILE_MODE21__TILE_SPLIT__SHIFT 0xb
+#define GB_TILE_MODE21__MICRO_TILE_MODE_NEW__SHIFT 0x16
+#define GB_TILE_MODE21__SAMPLE_SPLIT__SHIFT 0x19
+#define GB_TILE_MODE21__ARRAY_MODE_MASK 0x0000003CL
+#define GB_TILE_MODE21__PIPE_CONFIG_MASK 0x000007C0L
+#define GB_TILE_MODE21__TILE_SPLIT_MASK 0x00003800L
+#define GB_TILE_MODE21__MICRO_TILE_MODE_NEW_MASK 0x01C00000L
+#define GB_TILE_MODE21__SAMPLE_SPLIT_MASK 0x06000000L
+//GB_TILE_MODE22
+#define GB_TILE_MODE22__ARRAY_MODE__SHIFT 0x2
+#define GB_TILE_MODE22__PIPE_CONFIG__SHIFT 0x6
+#define GB_TILE_MODE22__TILE_SPLIT__SHIFT 0xb
+#define GB_TILE_MODE22__MICRO_TILE_MODE_NEW__SHIFT 0x16
+#define GB_TILE_MODE22__SAMPLE_SPLIT__SHIFT 0x19
+#define GB_TILE_MODE22__ARRAY_MODE_MASK 0x0000003CL
+#define GB_TILE_MODE22__PIPE_CONFIG_MASK 0x000007C0L
+#define GB_TILE_MODE22__TILE_SPLIT_MASK 0x00003800L
+#define GB_TILE_MODE22__MICRO_TILE_MODE_NEW_MASK 0x01C00000L
+#define GB_TILE_MODE22__SAMPLE_SPLIT_MASK 0x06000000L
+//GB_TILE_MODE23
+#define GB_TILE_MODE23__ARRAY_MODE__SHIFT 0x2
+#define GB_TILE_MODE23__PIPE_CONFIG__SHIFT 0x6
+#define GB_TILE_MODE23__TILE_SPLIT__SHIFT 0xb
+#define GB_TILE_MODE23__MICRO_TILE_MODE_NEW__SHIFT 0x16
+#define GB_TILE_MODE23__SAMPLE_SPLIT__SHIFT 0x19
+#define GB_TILE_MODE23__ARRAY_MODE_MASK 0x0000003CL
+#define GB_TILE_MODE23__PIPE_CONFIG_MASK 0x000007C0L
+#define GB_TILE_MODE23__TILE_SPLIT_MASK 0x00003800L
+#define GB_TILE_MODE23__MICRO_TILE_MODE_NEW_MASK 0x01C00000L
+#define GB_TILE_MODE23__SAMPLE_SPLIT_MASK 0x06000000L
+//GB_TILE_MODE24
+#define GB_TILE_MODE24__ARRAY_MODE__SHIFT 0x2
+#define GB_TILE_MODE24__PIPE_CONFIG__SHIFT 0x6
+#define GB_TILE_MODE24__TILE_SPLIT__SHIFT 0xb
+#define GB_TILE_MODE24__MICRO_TILE_MODE_NEW__SHIFT 0x16
+#define GB_TILE_MODE24__SAMPLE_SPLIT__SHIFT 0x19
+#define GB_TILE_MODE24__ARRAY_MODE_MASK 0x0000003CL
+#define GB_TILE_MODE24__PIPE_CONFIG_MASK 0x000007C0L
+#define GB_TILE_MODE24__TILE_SPLIT_MASK 0x00003800L
+#define GB_TILE_MODE24__MICRO_TILE_MODE_NEW_MASK 0x01C00000L
+#define GB_TILE_MODE24__SAMPLE_SPLIT_MASK 0x06000000L
+//GB_TILE_MODE25
+#define GB_TILE_MODE25__ARRAY_MODE__SHIFT 0x2
+#define GB_TILE_MODE25__PIPE_CONFIG__SHIFT 0x6
+#define GB_TILE_MODE25__TILE_SPLIT__SHIFT 0xb
+#define GB_TILE_MODE25__MICRO_TILE_MODE_NEW__SHIFT 0x16
+#define GB_TILE_MODE25__SAMPLE_SPLIT__SHIFT 0x19
+#define GB_TILE_MODE25__ARRAY_MODE_MASK 0x0000003CL
+#define GB_TILE_MODE25__PIPE_CONFIG_MASK 0x000007C0L
+#define GB_TILE_MODE25__TILE_SPLIT_MASK 0x00003800L
+#define GB_TILE_MODE25__MICRO_TILE_MODE_NEW_MASK 0x01C00000L
+#define GB_TILE_MODE25__SAMPLE_SPLIT_MASK 0x06000000L
+//GB_TILE_MODE26
+#define GB_TILE_MODE26__ARRAY_MODE__SHIFT 0x2
+#define GB_TILE_MODE26__PIPE_CONFIG__SHIFT 0x6
+#define GB_TILE_MODE26__TILE_SPLIT__SHIFT 0xb
+#define GB_TILE_MODE26__MICRO_TILE_MODE_NEW__SHIFT 0x16
+#define GB_TILE_MODE26__SAMPLE_SPLIT__SHIFT 0x19
+#define GB_TILE_MODE26__ARRAY_MODE_MASK 0x0000003CL
+#define GB_TILE_MODE26__PIPE_CONFIG_MASK 0x000007C0L
+#define GB_TILE_MODE26__TILE_SPLIT_MASK 0x00003800L
+#define GB_TILE_MODE26__MICRO_TILE_MODE_NEW_MASK 0x01C00000L
+#define GB_TILE_MODE26__SAMPLE_SPLIT_MASK 0x06000000L
+//GB_TILE_MODE27
+#define GB_TILE_MODE27__ARRAY_MODE__SHIFT 0x2
+#define GB_TILE_MODE27__PIPE_CONFIG__SHIFT 0x6
+#define GB_TILE_MODE27__TILE_SPLIT__SHIFT 0xb
+#define GB_TILE_MODE27__MICRO_TILE_MODE_NEW__SHIFT 0x16
+#define GB_TILE_MODE27__SAMPLE_SPLIT__SHIFT 0x19
+#define GB_TILE_MODE27__ARRAY_MODE_MASK 0x0000003CL
+#define GB_TILE_MODE27__PIPE_CONFIG_MASK 0x000007C0L
+#define GB_TILE_MODE27__TILE_SPLIT_MASK 0x00003800L
+#define GB_TILE_MODE27__MICRO_TILE_MODE_NEW_MASK 0x01C00000L
+#define GB_TILE_MODE27__SAMPLE_SPLIT_MASK 0x06000000L
+//GB_TILE_MODE28
+#define GB_TILE_MODE28__ARRAY_MODE__SHIFT 0x2
+#define GB_TILE_MODE28__PIPE_CONFIG__SHIFT 0x6
+#define GB_TILE_MODE28__TILE_SPLIT__SHIFT 0xb
+#define GB_TILE_MODE28__MICRO_TILE_MODE_NEW__SHIFT 0x16
+#define GB_TILE_MODE28__SAMPLE_SPLIT__SHIFT 0x19
+#define GB_TILE_MODE28__ARRAY_MODE_MASK 0x0000003CL
+#define GB_TILE_MODE28__PIPE_CONFIG_MASK 0x000007C0L
+#define GB_TILE_MODE28__TILE_SPLIT_MASK 0x00003800L
+#define GB_TILE_MODE28__MICRO_TILE_MODE_NEW_MASK 0x01C00000L
+#define GB_TILE_MODE28__SAMPLE_SPLIT_MASK 0x06000000L
+//GB_TILE_MODE29
+#define GB_TILE_MODE29__ARRAY_MODE__SHIFT 0x2
+#define GB_TILE_MODE29__PIPE_CONFIG__SHIFT 0x6
+#define GB_TILE_MODE29__TILE_SPLIT__SHIFT 0xb
+#define GB_TILE_MODE29__MICRO_TILE_MODE_NEW__SHIFT 0x16
+#define GB_TILE_MODE29__SAMPLE_SPLIT__SHIFT 0x19
+#define GB_TILE_MODE29__ARRAY_MODE_MASK 0x0000003CL
+#define GB_TILE_MODE29__PIPE_CONFIG_MASK 0x000007C0L
+#define GB_TILE_MODE29__TILE_SPLIT_MASK 0x00003800L
+#define GB_TILE_MODE29__MICRO_TILE_MODE_NEW_MASK 0x01C00000L
+#define GB_TILE_MODE29__SAMPLE_SPLIT_MASK 0x06000000L
+//GB_TILE_MODE30
+#define GB_TILE_MODE30__ARRAY_MODE__SHIFT 0x2
+#define GB_TILE_MODE30__PIPE_CONFIG__SHIFT 0x6
+#define GB_TILE_MODE30__TILE_SPLIT__SHIFT 0xb
+#define GB_TILE_MODE30__MICRO_TILE_MODE_NEW__SHIFT 0x16
+#define GB_TILE_MODE30__SAMPLE_SPLIT__SHIFT 0x19
+#define GB_TILE_MODE30__ARRAY_MODE_MASK 0x0000003CL
+#define GB_TILE_MODE30__PIPE_CONFIG_MASK 0x000007C0L
+#define GB_TILE_MODE30__TILE_SPLIT_MASK 0x00003800L
+#define GB_TILE_MODE30__MICRO_TILE_MODE_NEW_MASK 0x01C00000L
+#define GB_TILE_MODE30__SAMPLE_SPLIT_MASK 0x06000000L
+//GB_TILE_MODE31
+#define GB_TILE_MODE31__ARRAY_MODE__SHIFT 0x2
+#define GB_TILE_MODE31__PIPE_CONFIG__SHIFT 0x6
+#define GB_TILE_MODE31__TILE_SPLIT__SHIFT 0xb
+#define GB_TILE_MODE31__MICRO_TILE_MODE_NEW__SHIFT 0x16
+#define GB_TILE_MODE31__SAMPLE_SPLIT__SHIFT 0x19
+#define GB_TILE_MODE31__ARRAY_MODE_MASK 0x0000003CL
+#define GB_TILE_MODE31__PIPE_CONFIG_MASK 0x000007C0L
+#define GB_TILE_MODE31__TILE_SPLIT_MASK 0x00003800L
+#define GB_TILE_MODE31__MICRO_TILE_MODE_NEW_MASK 0x01C00000L
+#define GB_TILE_MODE31__SAMPLE_SPLIT_MASK 0x06000000L
+//GB_MACROTILE_MODE0
+#define GB_MACROTILE_MODE0__BANK_WIDTH__SHIFT 0x0
+#define GB_MACROTILE_MODE0__BANK_HEIGHT__SHIFT 0x2
+#define GB_MACROTILE_MODE0__MACRO_TILE_ASPECT__SHIFT 0x4
+#define GB_MACROTILE_MODE0__NUM_BANKS__SHIFT 0x6
+#define GB_MACROTILE_MODE0__BANK_WIDTH_MASK 0x00000003L
+#define GB_MACROTILE_MODE0__BANK_HEIGHT_MASK 0x0000000CL
+#define GB_MACROTILE_MODE0__MACRO_TILE_ASPECT_MASK 0x00000030L
+#define GB_MACROTILE_MODE0__NUM_BANKS_MASK 0x000000C0L
+//GB_MACROTILE_MODE1
+#define GB_MACROTILE_MODE1__BANK_WIDTH__SHIFT 0x0
+#define GB_MACROTILE_MODE1__BANK_HEIGHT__SHIFT 0x2
+#define GB_MACROTILE_MODE1__MACRO_TILE_ASPECT__SHIFT 0x4
+#define GB_MACROTILE_MODE1__NUM_BANKS__SHIFT 0x6
+#define GB_MACROTILE_MODE1__BANK_WIDTH_MASK 0x00000003L
+#define GB_MACROTILE_MODE1__BANK_HEIGHT_MASK 0x0000000CL
+#define GB_MACROTILE_MODE1__MACRO_TILE_ASPECT_MASK 0x00000030L
+#define GB_MACROTILE_MODE1__NUM_BANKS_MASK 0x000000C0L
+//GB_MACROTILE_MODE2
+#define GB_MACROTILE_MODE2__BANK_WIDTH__SHIFT 0x0
+#define GB_MACROTILE_MODE2__BANK_HEIGHT__SHIFT 0x2
+#define GB_MACROTILE_MODE2__MACRO_TILE_ASPECT__SHIFT 0x4
+#define GB_MACROTILE_MODE2__NUM_BANKS__SHIFT 0x6
+#define GB_MACROTILE_MODE2__BANK_WIDTH_MASK 0x00000003L
+#define GB_MACROTILE_MODE2__BANK_HEIGHT_MASK 0x0000000CL
+#define GB_MACROTILE_MODE2__MACRO_TILE_ASPECT_MASK 0x00000030L
+#define GB_MACROTILE_MODE2__NUM_BANKS_MASK 0x000000C0L
+//GB_MACROTILE_MODE3
+#define GB_MACROTILE_MODE3__BANK_WIDTH__SHIFT 0x0
+#define GB_MACROTILE_MODE3__BANK_HEIGHT__SHIFT 0x2
+#define GB_MACROTILE_MODE3__MACRO_TILE_ASPECT__SHIFT 0x4
+#define GB_MACROTILE_MODE3__NUM_BANKS__SHIFT 0x6
+#define GB_MACROTILE_MODE3__BANK_WIDTH_MASK 0x00000003L
+#define GB_MACROTILE_MODE3__BANK_HEIGHT_MASK 0x0000000CL
+#define GB_MACROTILE_MODE3__MACRO_TILE_ASPECT_MASK 0x00000030L
+#define GB_MACROTILE_MODE3__NUM_BANKS_MASK 0x000000C0L
+//GB_MACROTILE_MODE4
+#define GB_MACROTILE_MODE4__BANK_WIDTH__SHIFT 0x0
+#define GB_MACROTILE_MODE4__BANK_HEIGHT__SHIFT 0x2
+#define GB_MACROTILE_MODE4__MACRO_TILE_ASPECT__SHIFT 0x4
+#define GB_MACROTILE_MODE4__NUM_BANKS__SHIFT 0x6
+#define GB_MACROTILE_MODE4__BANK_WIDTH_MASK 0x00000003L
+#define GB_MACROTILE_MODE4__BANK_HEIGHT_MASK 0x0000000CL
+#define GB_MACROTILE_MODE4__MACRO_TILE_ASPECT_MASK 0x00000030L
+#define GB_MACROTILE_MODE4__NUM_BANKS_MASK 0x000000C0L
+//GB_MACROTILE_MODE5
+#define GB_MACROTILE_MODE5__BANK_WIDTH__SHIFT 0x0
+#define GB_MACROTILE_MODE5__BANK_HEIGHT__SHIFT 0x2
+#define GB_MACROTILE_MODE5__MACRO_TILE_ASPECT__SHIFT 0x4
+#define GB_MACROTILE_MODE5__NUM_BANKS__SHIFT 0x6
+#define GB_MACROTILE_MODE5__BANK_WIDTH_MASK 0x00000003L
+#define GB_MACROTILE_MODE5__BANK_HEIGHT_MASK 0x0000000CL
+#define GB_MACROTILE_MODE5__MACRO_TILE_ASPECT_MASK 0x00000030L
+#define GB_MACROTILE_MODE5__NUM_BANKS_MASK 0x000000C0L
+//GB_MACROTILE_MODE6
+#define GB_MACROTILE_MODE6__BANK_WIDTH__SHIFT 0x0
+#define GB_MACROTILE_MODE6__BANK_HEIGHT__SHIFT 0x2
+#define GB_MACROTILE_MODE6__MACRO_TILE_ASPECT__SHIFT 0x4
+#define GB_MACROTILE_MODE6__NUM_BANKS__SHIFT 0x6
+#define GB_MACROTILE_MODE6__BANK_WIDTH_MASK 0x00000003L
+#define GB_MACROTILE_MODE6__BANK_HEIGHT_MASK 0x0000000CL
+#define GB_MACROTILE_MODE6__MACRO_TILE_ASPECT_MASK 0x00000030L
+#define GB_MACROTILE_MODE6__NUM_BANKS_MASK 0x000000C0L
+//GB_MACROTILE_MODE7
+#define GB_MACROTILE_MODE7__BANK_WIDTH__SHIFT 0x0
+#define GB_MACROTILE_MODE7__BANK_HEIGHT__SHIFT 0x2
+#define GB_MACROTILE_MODE7__MACRO_TILE_ASPECT__SHIFT 0x4
+#define GB_MACROTILE_MODE7__NUM_BANKS__SHIFT 0x6
+#define GB_MACROTILE_MODE7__BANK_WIDTH_MASK 0x00000003L
+#define GB_MACROTILE_MODE7__BANK_HEIGHT_MASK 0x0000000CL
+#define GB_MACROTILE_MODE7__MACRO_TILE_ASPECT_MASK 0x00000030L
+#define GB_MACROTILE_MODE7__NUM_BANKS_MASK 0x000000C0L
+//GB_MACROTILE_MODE8
+#define GB_MACROTILE_MODE8__BANK_WIDTH__SHIFT 0x0
+#define GB_MACROTILE_MODE8__BANK_HEIGHT__SHIFT 0x2
+#define GB_MACROTILE_MODE8__MACRO_TILE_ASPECT__SHIFT 0x4
+#define GB_MACROTILE_MODE8__NUM_BANKS__SHIFT 0x6
+#define GB_MACROTILE_MODE8__BANK_WIDTH_MASK 0x00000003L
+#define GB_MACROTILE_MODE8__BANK_HEIGHT_MASK 0x0000000CL
+#define GB_MACROTILE_MODE8__MACRO_TILE_ASPECT_MASK 0x00000030L
+#define GB_MACROTILE_MODE8__NUM_BANKS_MASK 0x000000C0L
+//GB_MACROTILE_MODE9
+#define GB_MACROTILE_MODE9__BANK_WIDTH__SHIFT 0x0
+#define GB_MACROTILE_MODE9__BANK_HEIGHT__SHIFT 0x2
+#define GB_MACROTILE_MODE9__MACRO_TILE_ASPECT__SHIFT 0x4
+#define GB_MACROTILE_MODE9__NUM_BANKS__SHIFT 0x6
+#define GB_MACROTILE_MODE9__BANK_WIDTH_MASK 0x00000003L
+#define GB_MACROTILE_MODE9__BANK_HEIGHT_MASK 0x0000000CL
+#define GB_MACROTILE_MODE9__MACRO_TILE_ASPECT_MASK 0x00000030L
+#define GB_MACROTILE_MODE9__NUM_BANKS_MASK 0x000000C0L
+//GB_MACROTILE_MODE10
+#define GB_MACROTILE_MODE10__BANK_WIDTH__SHIFT 0x0
+#define GB_MACROTILE_MODE10__BANK_HEIGHT__SHIFT 0x2
+#define GB_MACROTILE_MODE10__MACRO_TILE_ASPECT__SHIFT 0x4
+#define GB_MACROTILE_MODE10__NUM_BANKS__SHIFT 0x6
+#define GB_MACROTILE_MODE10__BANK_WIDTH_MASK 0x00000003L
+#define GB_MACROTILE_MODE10__BANK_HEIGHT_MASK 0x0000000CL
+#define GB_MACROTILE_MODE10__MACRO_TILE_ASPECT_MASK 0x00000030L
+#define GB_MACROTILE_MODE10__NUM_BANKS_MASK 0x000000C0L
+//GB_MACROTILE_MODE11
+#define GB_MACROTILE_MODE11__BANK_WIDTH__SHIFT 0x0
+#define GB_MACROTILE_MODE11__BANK_HEIGHT__SHIFT 0x2
+#define GB_MACROTILE_MODE11__MACRO_TILE_ASPECT__SHIFT 0x4
+#define GB_MACROTILE_MODE11__NUM_BANKS__SHIFT 0x6
+#define GB_MACROTILE_MODE11__BANK_WIDTH_MASK 0x00000003L
+#define GB_MACROTILE_MODE11__BANK_HEIGHT_MASK 0x0000000CL
+#define GB_MACROTILE_MODE11__MACRO_TILE_ASPECT_MASK 0x00000030L
+#define GB_MACROTILE_MODE11__NUM_BANKS_MASK 0x000000C0L
+//GB_MACROTILE_MODE12
+#define GB_MACROTILE_MODE12__BANK_WIDTH__SHIFT 0x0
+#define GB_MACROTILE_MODE12__BANK_HEIGHT__SHIFT 0x2
+#define GB_MACROTILE_MODE12__MACRO_TILE_ASPECT__SHIFT 0x4
+#define GB_MACROTILE_MODE12__NUM_BANKS__SHIFT 0x6
+#define GB_MACROTILE_MODE12__BANK_WIDTH_MASK 0x00000003L
+#define GB_MACROTILE_MODE12__BANK_HEIGHT_MASK 0x0000000CL
+#define GB_MACROTILE_MODE12__MACRO_TILE_ASPECT_MASK 0x00000030L
+#define GB_MACROTILE_MODE12__NUM_BANKS_MASK 0x000000C0L
+//GB_MACROTILE_MODE13
+#define GB_MACROTILE_MODE13__BANK_WIDTH__SHIFT 0x0
+#define GB_MACROTILE_MODE13__BANK_HEIGHT__SHIFT 0x2
+#define GB_MACROTILE_MODE13__MACRO_TILE_ASPECT__SHIFT 0x4
+#define GB_MACROTILE_MODE13__NUM_BANKS__SHIFT 0x6
+#define GB_MACROTILE_MODE13__BANK_WIDTH_MASK 0x00000003L
+#define GB_MACROTILE_MODE13__BANK_HEIGHT_MASK 0x0000000CL
+#define GB_MACROTILE_MODE13__MACRO_TILE_ASPECT_MASK 0x00000030L
+#define GB_MACROTILE_MODE13__NUM_BANKS_MASK 0x000000C0L
+//GB_MACROTILE_MODE14
+#define GB_MACROTILE_MODE14__BANK_WIDTH__SHIFT 0x0
+#define GB_MACROTILE_MODE14__BANK_HEIGHT__SHIFT 0x2
+#define GB_MACROTILE_MODE14__MACRO_TILE_ASPECT__SHIFT 0x4
+#define GB_MACROTILE_MODE14__NUM_BANKS__SHIFT 0x6
+#define GB_MACROTILE_MODE14__BANK_WIDTH_MASK 0x00000003L
+#define GB_MACROTILE_MODE14__BANK_HEIGHT_MASK 0x0000000CL
+#define GB_MACROTILE_MODE14__MACRO_TILE_ASPECT_MASK 0x00000030L
+#define GB_MACROTILE_MODE14__NUM_BANKS_MASK 0x000000C0L
+//GB_MACROTILE_MODE15
+#define GB_MACROTILE_MODE15__BANK_WIDTH__SHIFT 0x0
+#define GB_MACROTILE_MODE15__BANK_HEIGHT__SHIFT 0x2
+#define GB_MACROTILE_MODE15__MACRO_TILE_ASPECT__SHIFT 0x4
+#define GB_MACROTILE_MODE15__NUM_BANKS__SHIFT 0x6
+#define GB_MACROTILE_MODE15__BANK_WIDTH_MASK 0x00000003L
+#define GB_MACROTILE_MODE15__BANK_HEIGHT_MASK 0x0000000CL
+#define GB_MACROTILE_MODE15__MACRO_TILE_ASPECT_MASK 0x00000030L
+#define GB_MACROTILE_MODE15__NUM_BANKS_MASK 0x000000C0L
+//CB_HW_CONTROL
+#define CB_HW_CONTROL__CM_CACHE_EVICT_POINT__SHIFT 0x0
+#define CB_HW_CONTROL__FC_CACHE_EVICT_POINT__SHIFT 0x6
+#define CB_HW_CONTROL__CC_CACHE_EVICT_POINT__SHIFT 0xc
+#define CB_HW_CONTROL__ALLOW_MRT_WITH_DUAL_SOURCE__SHIFT 0x10
+#define CB_HW_CONTROL__DISABLE_INTNORM_LE11BPC_CLAMPING__SHIFT 0x12
+#define CB_HW_CONTROL__FORCE_NEEDS_DST__SHIFT 0x13
+#define CB_HW_CONTROL__FORCE_ALWAYS_TOGGLE__SHIFT 0x14
+#define CB_HW_CONTROL__DISABLE_BLEND_OPT_RESULT_EQ_DEST__SHIFT 0x15
+#define CB_HW_CONTROL__DISABLE_FULL_WRITE_MASK__SHIFT 0x16
+#define CB_HW_CONTROL__DISABLE_RESOLVE_OPT_FOR_SINGLE_FRAG__SHIFT 0x17
+#define CB_HW_CONTROL__DISABLE_BLEND_OPT_DONT_RD_DST__SHIFT 0x18
+#define CB_HW_CONTROL__DISABLE_BLEND_OPT_BYPASS__SHIFT 0x19
+#define CB_HW_CONTROL__DISABLE_BLEND_OPT_DISCARD_PIXEL__SHIFT 0x1a
+#define CB_HW_CONTROL__DISABLE_BLEND_OPT_WHEN_DISABLED_SRCALPHA_IS_USED__SHIFT 0x1b
+#define CB_HW_CONTROL__PRIORITIZE_FC_WR_OVER_FC_RD_ON_CMASK_CONFLICT__SHIFT 0x1c
+#define CB_HW_CONTROL__PRIORITIZE_FC_EVICT_OVER_FOP_RD_ON_BANK_CONFLICT__SHIFT 0x1d
+#define CB_HW_CONTROL__DISABLE_CC_IB_SERIALIZER_STATE_OPT__SHIFT 0x1e
+#define CB_HW_CONTROL__DISABLE_PIXEL_IN_QUAD_FIX_FOR_LINEAR_SURFACE__SHIFT 0x1f
+#define CB_HW_CONTROL__CM_CACHE_EVICT_POINT_MASK 0x0000000FL
+#define CB_HW_CONTROL__FC_CACHE_EVICT_POINT_MASK 0x000003C0L
+#define CB_HW_CONTROL__CC_CACHE_EVICT_POINT_MASK 0x0000F000L
+#define CB_HW_CONTROL__ALLOW_MRT_WITH_DUAL_SOURCE_MASK 0x00010000L
+#define CB_HW_CONTROL__DISABLE_INTNORM_LE11BPC_CLAMPING_MASK 0x00040000L
+#define CB_HW_CONTROL__FORCE_NEEDS_DST_MASK 0x00080000L
+#define CB_HW_CONTROL__FORCE_ALWAYS_TOGGLE_MASK 0x00100000L
+#define CB_HW_CONTROL__DISABLE_BLEND_OPT_RESULT_EQ_DEST_MASK 0x00200000L
+#define CB_HW_CONTROL__DISABLE_FULL_WRITE_MASK_MASK 0x00400000L
+#define CB_HW_CONTROL__DISABLE_RESOLVE_OPT_FOR_SINGLE_FRAG_MASK 0x00800000L
+#define CB_HW_CONTROL__DISABLE_BLEND_OPT_DONT_RD_DST_MASK 0x01000000L
+#define CB_HW_CONTROL__DISABLE_BLEND_OPT_BYPASS_MASK 0x02000000L
+#define CB_HW_CONTROL__DISABLE_BLEND_OPT_DISCARD_PIXEL_MASK 0x04000000L
+#define CB_HW_CONTROL__DISABLE_BLEND_OPT_WHEN_DISABLED_SRCALPHA_IS_USED_MASK 0x08000000L
+#define CB_HW_CONTROL__PRIORITIZE_FC_WR_OVER_FC_RD_ON_CMASK_CONFLICT_MASK 0x10000000L
+#define CB_HW_CONTROL__PRIORITIZE_FC_EVICT_OVER_FOP_RD_ON_BANK_CONFLICT_MASK 0x20000000L
+#define CB_HW_CONTROL__DISABLE_CC_IB_SERIALIZER_STATE_OPT_MASK 0x40000000L
+#define CB_HW_CONTROL__DISABLE_PIXEL_IN_QUAD_FIX_FOR_LINEAR_SURFACE_MASK 0x80000000L
+//CB_HW_CONTROL_1
+#define CB_HW_CONTROL_1__CM_CACHE_NUM_TAGS__SHIFT 0x0
+#define CB_HW_CONTROL_1__FC_CACHE_NUM_TAGS__SHIFT 0x5
+#define CB_HW_CONTROL_1__CC_CACHE_NUM_TAGS__SHIFT 0xb
+#define CB_HW_CONTROL_1__CM_TILE_FIFO_DEPTH__SHIFT 0x11
+#define CB_HW_CONTROL_1__RMI_CREDITS__SHIFT 0x1a
+#define CB_HW_CONTROL_1__CM_CACHE_NUM_TAGS_MASK 0x0000001FL
+#define CB_HW_CONTROL_1__FC_CACHE_NUM_TAGS_MASK 0x000007E0L
+#define CB_HW_CONTROL_1__CC_CACHE_NUM_TAGS_MASK 0x0001F800L
+#define CB_HW_CONTROL_1__CM_TILE_FIFO_DEPTH_MASK 0x03FE0000L
+#define CB_HW_CONTROL_1__RMI_CREDITS_MASK 0xFC000000L
+//CB_HW_CONTROL_2
+#define CB_HW_CONTROL_2__CC_EVEN_ODD_FIFO_DEPTH__SHIFT 0x0
+#define CB_HW_CONTROL_2__FC_RDLAT_TILE_FIFO_DEPTH__SHIFT 0x8
+#define CB_HW_CONTROL_2__FC_RDLAT_QUAD_FIFO_DEPTH__SHIFT 0xf
+#define CB_HW_CONTROL_2__DRR_ASSUMED_FIFO_DEPTH_DIV8__SHIFT 0x18
+#define CB_HW_CONTROL_2__CHICKEN_BITS__SHIFT 0x1c
+#define CB_HW_CONTROL_2__CC_EVEN_ODD_FIFO_DEPTH_MASK 0x000000FFL
+#define CB_HW_CONTROL_2__FC_RDLAT_TILE_FIFO_DEPTH_MASK 0x00007F00L
+#define CB_HW_CONTROL_2__FC_RDLAT_QUAD_FIFO_DEPTH_MASK 0x007F8000L
+#define CB_HW_CONTROL_2__DRR_ASSUMED_FIFO_DEPTH_DIV8_MASK 0x0F000000L
+#define CB_HW_CONTROL_2__CHICKEN_BITS_MASK 0xF0000000L
+//CB_HW_CONTROL_3
+#define CB_HW_CONTROL_3__DISABLE_SLOW_MODE_EMPTY_HALF_QUAD_KILL__SHIFT 0x0
+#define CB_HW_CONTROL_3__RAM_ADDRESS_CONFLICTS_DISALLOWED__SHIFT 0x1
+#define CB_HW_CONTROL_3__DISABLE_FAST_CLEAR_FETCH_OPT__SHIFT 0x2
+#define CB_HW_CONTROL_3__DISABLE_QUAD_MARKER_DROP_STOP__SHIFT 0x3
+#define CB_HW_CONTROL_3__DISABLE_OVERWRITE_COMBINER_CAM_CLR__SHIFT 0x4
+#define CB_HW_CONTROL_3__DISABLE_CC_CACHE_OVWR_STATUS_ACCUM__SHIFT 0x5
+#define CB_HW_CONTROL_3__DISABLE_CC_CACHE_OVWR_KEY_MOD__SHIFT 0x6
+#define CB_HW_CONTROL_3__DISABLE_CC_CACHE_PANIC_GATING__SHIFT 0x7
+#define CB_HW_CONTROL_3__DISABLE_OVERWRITE_COMBINER_TARGET_MASK_VALIDATION__SHIFT 0x8
+#define CB_HW_CONTROL_3__SPLIT_ALL_FAST_MODE_TRANSFERS__SHIFT 0x9
+#define CB_HW_CONTROL_3__DISABLE_SHADER_BLEND_OPTS__SHIFT 0xa
+#define CB_HW_CONTROL_3__DISABLE_CMASK_LAST_QUAD_INSERTION__SHIFT 0xb
+#define CB_HW_CONTROL_3__DISABLE_ROP3_FIXES_OF_BUG_511967__SHIFT 0xc
+#define CB_HW_CONTROL_3__DISABLE_ROP3_FIXES_OF_BUG_520657__SHIFT 0xd
+#define CB_HW_CONTROL_3__DISABLE_OC_FIXES_OF_BUG_522542__SHIFT 0xe
+#define CB_HW_CONTROL_3__FORCE_RMI_LAST_HIGH__SHIFT 0xf
+#define CB_HW_CONTROL_3__FORCE_RMI_CLKEN_HIGH__SHIFT 0x10
+#define CB_HW_CONTROL_3__DISABLE_EARLY_WRACKS_CC__SHIFT 0x11
+#define CB_HW_CONTROL_3__DISABLE_EARLY_WRACKS_FC__SHIFT 0x12
+#define CB_HW_CONTROL_3__DISABLE_EARLY_WRACKS_DC__SHIFT 0x13
+#define CB_HW_CONTROL_3__DISABLE_EARLY_WRACKS_CM__SHIFT 0x14
+#define CB_HW_CONTROL_3__DISABLE_NACK_PROCESSING_CC__SHIFT 0x15
+#define CB_HW_CONTROL_3__DISABLE_NACK_PROCESSING_FC__SHIFT 0x16
+#define CB_HW_CONTROL_3__DISABLE_NACK_PROCESSING_DC__SHIFT 0x17
+#define CB_HW_CONTROL_3__DISABLE_NACK_PROCESSING_CM__SHIFT 0x18
+#define CB_HW_CONTROL_3__DISABLE_NACK_COLOR_RD_WR_OPT__SHIFT 0x19
+#define CB_HW_CONTROL_3__DISABLE_BLENDER_CLOCK_GATING__SHIFT 0x1a
+#define CB_HW_CONTROL_3__DISABLE_DUALSRC_WITH_OBJPRIMID_FIX__SHIFT 0x1b
+#define CB_HW_CONTROL_3__COLOR_CACHE_PREFETCH_NUM_CLS__SHIFT 0x1c
+#define CB_HW_CONTROL_3__DISABLE_SLOW_MODE_EMPTY_HALF_QUAD_KILL_MASK 0x00000001L
+#define CB_HW_CONTROL_3__RAM_ADDRESS_CONFLICTS_DISALLOWED_MASK 0x00000002L
+#define CB_HW_CONTROL_3__DISABLE_FAST_CLEAR_FETCH_OPT_MASK 0x00000004L
+#define CB_HW_CONTROL_3__DISABLE_QUAD_MARKER_DROP_STOP_MASK 0x00000008L
+#define CB_HW_CONTROL_3__DISABLE_OVERWRITE_COMBINER_CAM_CLR_MASK 0x00000010L
+#define CB_HW_CONTROL_3__DISABLE_CC_CACHE_OVWR_STATUS_ACCUM_MASK 0x00000020L
+#define CB_HW_CONTROL_3__DISABLE_CC_CACHE_OVWR_KEY_MOD_MASK 0x00000040L
+#define CB_HW_CONTROL_3__DISABLE_CC_CACHE_PANIC_GATING_MASK 0x00000080L
+#define CB_HW_CONTROL_3__DISABLE_OVERWRITE_COMBINER_TARGET_MASK_VALIDATION_MASK 0x00000100L
+#define CB_HW_CONTROL_3__SPLIT_ALL_FAST_MODE_TRANSFERS_MASK 0x00000200L
+#define CB_HW_CONTROL_3__DISABLE_SHADER_BLEND_OPTS_MASK 0x00000400L
+#define CB_HW_CONTROL_3__DISABLE_CMASK_LAST_QUAD_INSERTION_MASK 0x00000800L
+#define CB_HW_CONTROL_3__DISABLE_ROP3_FIXES_OF_BUG_511967_MASK 0x00001000L
+#define CB_HW_CONTROL_3__DISABLE_ROP3_FIXES_OF_BUG_520657_MASK 0x00002000L
+#define CB_HW_CONTROL_3__DISABLE_OC_FIXES_OF_BUG_522542_MASK 0x00004000L
+#define CB_HW_CONTROL_3__FORCE_RMI_LAST_HIGH_MASK 0x00008000L
+#define CB_HW_CONTROL_3__FORCE_RMI_CLKEN_HIGH_MASK 0x00010000L
+#define CB_HW_CONTROL_3__DISABLE_EARLY_WRACKS_CC_MASK 0x00020000L
+#define CB_HW_CONTROL_3__DISABLE_EARLY_WRACKS_FC_MASK 0x00040000L
+#define CB_HW_CONTROL_3__DISABLE_EARLY_WRACKS_DC_MASK 0x00080000L
+#define CB_HW_CONTROL_3__DISABLE_EARLY_WRACKS_CM_MASK 0x00100000L
+#define CB_HW_CONTROL_3__DISABLE_NACK_PROCESSING_CC_MASK 0x00200000L
+#define CB_HW_CONTROL_3__DISABLE_NACK_PROCESSING_FC_MASK 0x00400000L
+#define CB_HW_CONTROL_3__DISABLE_NACK_PROCESSING_DC_MASK 0x00800000L
+#define CB_HW_CONTROL_3__DISABLE_NACK_PROCESSING_CM_MASK 0x01000000L
+#define CB_HW_CONTROL_3__DISABLE_NACK_COLOR_RD_WR_OPT_MASK 0x02000000L
+#define CB_HW_CONTROL_3__DISABLE_BLENDER_CLOCK_GATING_MASK 0x04000000L
+#define CB_HW_CONTROL_3__DISABLE_DUALSRC_WITH_OBJPRIMID_FIX_MASK 0x08000000L
+#define CB_HW_CONTROL_3__COLOR_CACHE_PREFETCH_NUM_CLS_MASK 0x30000000L
+//CB_HW_MEM_ARBITER_RD
+#define CB_HW_MEM_ARBITER_RD__MODE__SHIFT 0x0
+#define CB_HW_MEM_ARBITER_RD__IGNORE_URGENT_AGE__SHIFT 0x2
+#define CB_HW_MEM_ARBITER_RD__BREAK_GROUP_AGE__SHIFT 0x6
+#define CB_HW_MEM_ARBITER_RD__WEIGHT_CC__SHIFT 0xa
+#define CB_HW_MEM_ARBITER_RD__WEIGHT_FC__SHIFT 0xc
+#define CB_HW_MEM_ARBITER_RD__WEIGHT_CM__SHIFT 0xe
+#define CB_HW_MEM_ARBITER_RD__WEIGHT_DC__SHIFT 0x10
+#define CB_HW_MEM_ARBITER_RD__WEIGHT_DECAY_REQS__SHIFT 0x12
+#define CB_HW_MEM_ARBITER_RD__WEIGHT_DECAY_NOREQS__SHIFT 0x14
+#define CB_HW_MEM_ARBITER_RD__WEIGHT_IGNORE_NUM_TIDS__SHIFT 0x16
+#define CB_HW_MEM_ARBITER_RD__SCALE_AGE__SHIFT 0x17
+#define CB_HW_MEM_ARBITER_RD__SCALE_WEIGHT__SHIFT 0x1a
+#define CB_HW_MEM_ARBITER_RD__SEND_LASTS_WITHIN_GROUPS__SHIFT 0x1d
+#define CB_HW_MEM_ARBITER_RD__MODE_MASK 0x00000003L
+#define CB_HW_MEM_ARBITER_RD__IGNORE_URGENT_AGE_MASK 0x0000003CL
+#define CB_HW_MEM_ARBITER_RD__BREAK_GROUP_AGE_MASK 0x000003C0L
+#define CB_HW_MEM_ARBITER_RD__WEIGHT_CC_MASK 0x00000C00L
+#define CB_HW_MEM_ARBITER_RD__WEIGHT_FC_MASK 0x00003000L
+#define CB_HW_MEM_ARBITER_RD__WEIGHT_CM_MASK 0x0000C000L
+#define CB_HW_MEM_ARBITER_RD__WEIGHT_DC_MASK 0x00030000L
+#define CB_HW_MEM_ARBITER_RD__WEIGHT_DECAY_REQS_MASK 0x000C0000L
+#define CB_HW_MEM_ARBITER_RD__WEIGHT_DECAY_NOREQS_MASK 0x00300000L
+#define CB_HW_MEM_ARBITER_RD__WEIGHT_IGNORE_NUM_TIDS_MASK 0x00400000L
+#define CB_HW_MEM_ARBITER_RD__SCALE_AGE_MASK 0x03800000L
+#define CB_HW_MEM_ARBITER_RD__SCALE_WEIGHT_MASK 0x1C000000L
+#define CB_HW_MEM_ARBITER_RD__SEND_LASTS_WITHIN_GROUPS_MASK 0x20000000L
+//CB_HW_MEM_ARBITER_WR
+#define CB_HW_MEM_ARBITER_WR__MODE__SHIFT 0x0
+#define CB_HW_MEM_ARBITER_WR__IGNORE_URGENT_AGE__SHIFT 0x2
+#define CB_HW_MEM_ARBITER_WR__BREAK_GROUP_AGE__SHIFT 0x6
+#define CB_HW_MEM_ARBITER_WR__WEIGHT_CC__SHIFT 0xa
+#define CB_HW_MEM_ARBITER_WR__WEIGHT_FC__SHIFT 0xc
+#define CB_HW_MEM_ARBITER_WR__WEIGHT_CM__SHIFT 0xe
+#define CB_HW_MEM_ARBITER_WR__WEIGHT_DC__SHIFT 0x10
+#define CB_HW_MEM_ARBITER_WR__WEIGHT_DECAY_REQS__SHIFT 0x12
+#define CB_HW_MEM_ARBITER_WR__WEIGHT_DECAY_NOREQS__SHIFT 0x14
+#define CB_HW_MEM_ARBITER_WR__WEIGHT_IGNORE_BYTE_MASK__SHIFT 0x16
+#define CB_HW_MEM_ARBITER_WR__SCALE_AGE__SHIFT 0x17
+#define CB_HW_MEM_ARBITER_WR__SCALE_WEIGHT__SHIFT 0x1a
+#define CB_HW_MEM_ARBITER_WR__SEND_LASTS_WITHIN_GROUPS__SHIFT 0x1d
+#define CB_HW_MEM_ARBITER_WR__MODE_MASK 0x00000003L
+#define CB_HW_MEM_ARBITER_WR__IGNORE_URGENT_AGE_MASK 0x0000003CL
+#define CB_HW_MEM_ARBITER_WR__BREAK_GROUP_AGE_MASK 0x000003C0L
+#define CB_HW_MEM_ARBITER_WR__WEIGHT_CC_MASK 0x00000C00L
+#define CB_HW_MEM_ARBITER_WR__WEIGHT_FC_MASK 0x00003000L
+#define CB_HW_MEM_ARBITER_WR__WEIGHT_CM_MASK 0x0000C000L
+#define CB_HW_MEM_ARBITER_WR__WEIGHT_DC_MASK 0x00030000L
+#define CB_HW_MEM_ARBITER_WR__WEIGHT_DECAY_REQS_MASK 0x000C0000L
+#define CB_HW_MEM_ARBITER_WR__WEIGHT_DECAY_NOREQS_MASK 0x00300000L
+#define CB_HW_MEM_ARBITER_WR__WEIGHT_IGNORE_BYTE_MASK_MASK 0x00400000L
+#define CB_HW_MEM_ARBITER_WR__SCALE_AGE_MASK 0x03800000L
+#define CB_HW_MEM_ARBITER_WR__SCALE_WEIGHT_MASK 0x1C000000L
+#define CB_HW_MEM_ARBITER_WR__SEND_LASTS_WITHIN_GROUPS_MASK 0x20000000L
+//CB_DCC_CONFIG
+#define CB_DCC_CONFIG__OVERWRITE_COMBINER_DEPTH__SHIFT 0x0
+#define CB_DCC_CONFIG__OVERWRITE_COMBINER_DISABLE__SHIFT 0x5
+#define CB_DCC_CONFIG__OVERWRITE_COMBINER_CC_POP_DISABLE__SHIFT 0x6
+#define CB_DCC_CONFIG__DISABLE_CONSTANT_ENCODE__SHIFT 0x7
+#define CB_DCC_CONFIG__FC_RDLAT_KEYID_FIFO_DEPTH__SHIFT 0x8
+#define CB_DCC_CONFIG__READ_RETURN_SKID_FIFO_DEPTH__SHIFT 0x10
+#define CB_DCC_CONFIG__DCC_CACHE_EVICT_POINT__SHIFT 0x18
+#define CB_DCC_CONFIG__DCC_CACHE_NUM_TAGS__SHIFT 0x1c
+#define CB_DCC_CONFIG__OVERWRITE_COMBINER_DEPTH_MASK 0x0000001FL
+#define CB_DCC_CONFIG__OVERWRITE_COMBINER_DISABLE_MASK 0x00000020L
+#define CB_DCC_CONFIG__OVERWRITE_COMBINER_CC_POP_DISABLE_MASK 0x00000040L
+#define CB_DCC_CONFIG__DISABLE_CONSTANT_ENCODE_MASK 0x00000080L
+#define CB_DCC_CONFIG__FC_RDLAT_KEYID_FIFO_DEPTH_MASK 0x0000FF00L
+#define CB_DCC_CONFIG__READ_RETURN_SKID_FIFO_DEPTH_MASK 0x007F0000L
+#define CB_DCC_CONFIG__DCC_CACHE_EVICT_POINT_MASK 0x0F000000L
+#define CB_DCC_CONFIG__DCC_CACHE_NUM_TAGS_MASK 0xF0000000L
+//GC_USER_RB_REDUNDANCY
+#define GC_USER_RB_REDUNDANCY__FAILED_RB0__SHIFT 0x8
+#define GC_USER_RB_REDUNDANCY__EN_REDUNDANCY0__SHIFT 0xc
+#define GC_USER_RB_REDUNDANCY__FAILED_RB1__SHIFT 0x10
+#define GC_USER_RB_REDUNDANCY__EN_REDUNDANCY1__SHIFT 0x14
+#define GC_USER_RB_REDUNDANCY__FAILED_RB0_MASK 0x00000F00L
+#define GC_USER_RB_REDUNDANCY__EN_REDUNDANCY0_MASK 0x00001000L
+#define GC_USER_RB_REDUNDANCY__FAILED_RB1_MASK 0x000F0000L
+#define GC_USER_RB_REDUNDANCY__EN_REDUNDANCY1_MASK 0x00100000L
+//GC_USER_RB_BACKEND_DISABLE
+#define GC_USER_RB_BACKEND_DISABLE__BACKEND_DISABLE__SHIFT 0x10
+#define GC_USER_RB_BACKEND_DISABLE__BACKEND_DISABLE_MASK 0x00FF0000L
+
+
+// addressBlock: xcd0_gc_ea_gceadec
+//GCEA_DRAM_RD_CLI2GRP_MAP0
+#define GCEA_DRAM_RD_CLI2GRP_MAP0__CID0_GROUP__SHIFT 0x0
+#define GCEA_DRAM_RD_CLI2GRP_MAP0__CID1_GROUP__SHIFT 0x2
+#define GCEA_DRAM_RD_CLI2GRP_MAP0__CID2_GROUP__SHIFT 0x4
+#define GCEA_DRAM_RD_CLI2GRP_MAP0__CID3_GROUP__SHIFT 0x6
+#define GCEA_DRAM_RD_CLI2GRP_MAP0__CID4_GROUP__SHIFT 0x8
+#define GCEA_DRAM_RD_CLI2GRP_MAP0__CID5_GROUP__SHIFT 0xa
+#define GCEA_DRAM_RD_CLI2GRP_MAP0__CID6_GROUP__SHIFT 0xc
+#define GCEA_DRAM_RD_CLI2GRP_MAP0__CID7_GROUP__SHIFT 0xe
+#define GCEA_DRAM_RD_CLI2GRP_MAP0__CID8_GROUP__SHIFT 0x10
+#define GCEA_DRAM_RD_CLI2GRP_MAP0__CID9_GROUP__SHIFT 0x12
+#define GCEA_DRAM_RD_CLI2GRP_MAP0__CID10_GROUP__SHIFT 0x14
+#define GCEA_DRAM_RD_CLI2GRP_MAP0__CID11_GROUP__SHIFT 0x16
+#define GCEA_DRAM_RD_CLI2GRP_MAP0__CID12_GROUP__SHIFT 0x18
+#define GCEA_DRAM_RD_CLI2GRP_MAP0__CID13_GROUP__SHIFT 0x1a
+#define GCEA_DRAM_RD_CLI2GRP_MAP0__CID14_GROUP__SHIFT 0x1c
+#define GCEA_DRAM_RD_CLI2GRP_MAP0__CID15_GROUP__SHIFT 0x1e
+#define GCEA_DRAM_RD_CLI2GRP_MAP0__CID0_GROUP_MASK 0x00000003L
+#define GCEA_DRAM_RD_CLI2GRP_MAP0__CID1_GROUP_MASK 0x0000000CL
+#define GCEA_DRAM_RD_CLI2GRP_MAP0__CID2_GROUP_MASK 0x00000030L
+#define GCEA_DRAM_RD_CLI2GRP_MAP0__CID3_GROUP_MASK 0x000000C0L
+#define GCEA_DRAM_RD_CLI2GRP_MAP0__CID4_GROUP_MASK 0x00000300L
+#define GCEA_DRAM_RD_CLI2GRP_MAP0__CID5_GROUP_MASK 0x00000C00L
+#define GCEA_DRAM_RD_CLI2GRP_MAP0__CID6_GROUP_MASK 0x00003000L
+#define GCEA_DRAM_RD_CLI2GRP_MAP0__CID7_GROUP_MASK 0x0000C000L
+#define GCEA_DRAM_RD_CLI2GRP_MAP0__CID8_GROUP_MASK 0x00030000L
+#define GCEA_DRAM_RD_CLI2GRP_MAP0__CID9_GROUP_MASK 0x000C0000L
+#define GCEA_DRAM_RD_CLI2GRP_MAP0__CID10_GROUP_MASK 0x00300000L
+#define GCEA_DRAM_RD_CLI2GRP_MAP0__CID11_GROUP_MASK 0x00C00000L
+#define GCEA_DRAM_RD_CLI2GRP_MAP0__CID12_GROUP_MASK 0x03000000L
+#define GCEA_DRAM_RD_CLI2GRP_MAP0__CID13_GROUP_MASK 0x0C000000L
+#define GCEA_DRAM_RD_CLI2GRP_MAP0__CID14_GROUP_MASK 0x30000000L
+#define GCEA_DRAM_RD_CLI2GRP_MAP0__CID15_GROUP_MASK 0xC0000000L
+//GCEA_DRAM_RD_CLI2GRP_MAP1
+#define GCEA_DRAM_RD_CLI2GRP_MAP1__CID16_GROUP__SHIFT 0x0
+#define GCEA_DRAM_RD_CLI2GRP_MAP1__CID17_GROUP__SHIFT 0x2
+#define GCEA_DRAM_RD_CLI2GRP_MAP1__CID18_GROUP__SHIFT 0x4
+#define GCEA_DRAM_RD_CLI2GRP_MAP1__CID19_GROUP__SHIFT 0x6
+#define GCEA_DRAM_RD_CLI2GRP_MAP1__CID20_GROUP__SHIFT 0x8
+#define GCEA_DRAM_RD_CLI2GRP_MAP1__CID21_GROUP__SHIFT 0xa
+#define GCEA_DRAM_RD_CLI2GRP_MAP1__CID22_GROUP__SHIFT 0xc
+#define GCEA_DRAM_RD_CLI2GRP_MAP1__CID23_GROUP__SHIFT 0xe
+#define GCEA_DRAM_RD_CLI2GRP_MAP1__CID24_GROUP__SHIFT 0x10
+#define GCEA_DRAM_RD_CLI2GRP_MAP1__CID25_GROUP__SHIFT 0x12
+#define GCEA_DRAM_RD_CLI2GRP_MAP1__CID26_GROUP__SHIFT 0x14
+#define GCEA_DRAM_RD_CLI2GRP_MAP1__CID27_GROUP__SHIFT 0x16
+#define GCEA_DRAM_RD_CLI2GRP_MAP1__CID28_GROUP__SHIFT 0x18
+#define GCEA_DRAM_RD_CLI2GRP_MAP1__CID29_GROUP__SHIFT 0x1a
+#define GCEA_DRAM_RD_CLI2GRP_MAP1__CID30_GROUP__SHIFT 0x1c
+#define GCEA_DRAM_RD_CLI2GRP_MAP1__CID31_GROUP__SHIFT 0x1e
+#define GCEA_DRAM_RD_CLI2GRP_MAP1__CID16_GROUP_MASK 0x00000003L
+#define GCEA_DRAM_RD_CLI2GRP_MAP1__CID17_GROUP_MASK 0x0000000CL
+#define GCEA_DRAM_RD_CLI2GRP_MAP1__CID18_GROUP_MASK 0x00000030L
+#define GCEA_DRAM_RD_CLI2GRP_MAP1__CID19_GROUP_MASK 0x000000C0L
+#define GCEA_DRAM_RD_CLI2GRP_MAP1__CID20_GROUP_MASK 0x00000300L
+#define GCEA_DRAM_RD_CLI2GRP_MAP1__CID21_GROUP_MASK 0x00000C00L
+#define GCEA_DRAM_RD_CLI2GRP_MAP1__CID22_GROUP_MASK 0x00003000L
+#define GCEA_DRAM_RD_CLI2GRP_MAP1__CID23_GROUP_MASK 0x0000C000L
+#define GCEA_DRAM_RD_CLI2GRP_MAP1__CID24_GROUP_MASK 0x00030000L
+#define GCEA_DRAM_RD_CLI2GRP_MAP1__CID25_GROUP_MASK 0x000C0000L
+#define GCEA_DRAM_RD_CLI2GRP_MAP1__CID26_GROUP_MASK 0x00300000L
+#define GCEA_DRAM_RD_CLI2GRP_MAP1__CID27_GROUP_MASK 0x00C00000L
+#define GCEA_DRAM_RD_CLI2GRP_MAP1__CID28_GROUP_MASK 0x03000000L
+#define GCEA_DRAM_RD_CLI2GRP_MAP1__CID29_GROUP_MASK 0x0C000000L
+#define GCEA_DRAM_RD_CLI2GRP_MAP1__CID30_GROUP_MASK 0x30000000L
+#define GCEA_DRAM_RD_CLI2GRP_MAP1__CID31_GROUP_MASK 0xC0000000L
+//GCEA_DRAM_WR_CLI2GRP_MAP0
+#define GCEA_DRAM_WR_CLI2GRP_MAP0__CID0_GROUP__SHIFT 0x0
+#define GCEA_DRAM_WR_CLI2GRP_MAP0__CID1_GROUP__SHIFT 0x2
+#define GCEA_DRAM_WR_CLI2GRP_MAP0__CID2_GROUP__SHIFT 0x4
+#define GCEA_DRAM_WR_CLI2GRP_MAP0__CID3_GROUP__SHIFT 0x6
+#define GCEA_DRAM_WR_CLI2GRP_MAP0__CID4_GROUP__SHIFT 0x8
+#define GCEA_DRAM_WR_CLI2GRP_MAP0__CID5_GROUP__SHIFT 0xa
+#define GCEA_DRAM_WR_CLI2GRP_MAP0__CID6_GROUP__SHIFT 0xc
+#define GCEA_DRAM_WR_CLI2GRP_MAP0__CID7_GROUP__SHIFT 0xe
+#define GCEA_DRAM_WR_CLI2GRP_MAP0__CID8_GROUP__SHIFT 0x10
+#define GCEA_DRAM_WR_CLI2GRP_MAP0__CID9_GROUP__SHIFT 0x12
+#define GCEA_DRAM_WR_CLI2GRP_MAP0__CID10_GROUP__SHIFT 0x14
+#define GCEA_DRAM_WR_CLI2GRP_MAP0__CID11_GROUP__SHIFT 0x16
+#define GCEA_DRAM_WR_CLI2GRP_MAP0__CID12_GROUP__SHIFT 0x18
+#define GCEA_DRAM_WR_CLI2GRP_MAP0__CID13_GROUP__SHIFT 0x1a
+#define GCEA_DRAM_WR_CLI2GRP_MAP0__CID14_GROUP__SHIFT 0x1c
+#define GCEA_DRAM_WR_CLI2GRP_MAP0__CID15_GROUP__SHIFT 0x1e
+#define GCEA_DRAM_WR_CLI2GRP_MAP0__CID0_GROUP_MASK 0x00000003L
+#define GCEA_DRAM_WR_CLI2GRP_MAP0__CID1_GROUP_MASK 0x0000000CL
+#define GCEA_DRAM_WR_CLI2GRP_MAP0__CID2_GROUP_MASK 0x00000030L
+#define GCEA_DRAM_WR_CLI2GRP_MAP0__CID3_GROUP_MASK 0x000000C0L
+#define GCEA_DRAM_WR_CLI2GRP_MAP0__CID4_GROUP_MASK 0x00000300L
+#define GCEA_DRAM_WR_CLI2GRP_MAP0__CID5_GROUP_MASK 0x00000C00L
+#define GCEA_DRAM_WR_CLI2GRP_MAP0__CID6_GROUP_MASK 0x00003000L
+#define GCEA_DRAM_WR_CLI2GRP_MAP0__CID7_GROUP_MASK 0x0000C000L
+#define GCEA_DRAM_WR_CLI2GRP_MAP0__CID8_GROUP_MASK 0x00030000L
+#define GCEA_DRAM_WR_CLI2GRP_MAP0__CID9_GROUP_MASK 0x000C0000L
+#define GCEA_DRAM_WR_CLI2GRP_MAP0__CID10_GROUP_MASK 0x00300000L
+#define GCEA_DRAM_WR_CLI2GRP_MAP0__CID11_GROUP_MASK 0x00C00000L
+#define GCEA_DRAM_WR_CLI2GRP_MAP0__CID12_GROUP_MASK 0x03000000L
+#define GCEA_DRAM_WR_CLI2GRP_MAP0__CID13_GROUP_MASK 0x0C000000L
+#define GCEA_DRAM_WR_CLI2GRP_MAP0__CID14_GROUP_MASK 0x30000000L
+#define GCEA_DRAM_WR_CLI2GRP_MAP0__CID15_GROUP_MASK 0xC0000000L
+//GCEA_DRAM_WR_CLI2GRP_MAP1
+#define GCEA_DRAM_WR_CLI2GRP_MAP1__CID16_GROUP__SHIFT 0x0
+#define GCEA_DRAM_WR_CLI2GRP_MAP1__CID17_GROUP__SHIFT 0x2
+#define GCEA_DRAM_WR_CLI2GRP_MAP1__CID18_GROUP__SHIFT 0x4
+#define GCEA_DRAM_WR_CLI2GRP_MAP1__CID19_GROUP__SHIFT 0x6
+#define GCEA_DRAM_WR_CLI2GRP_MAP1__CID20_GROUP__SHIFT 0x8
+#define GCEA_DRAM_WR_CLI2GRP_MAP1__CID21_GROUP__SHIFT 0xa
+#define GCEA_DRAM_WR_CLI2GRP_MAP1__CID22_GROUP__SHIFT 0xc
+#define GCEA_DRAM_WR_CLI2GRP_MAP1__CID23_GROUP__SHIFT 0xe
+#define GCEA_DRAM_WR_CLI2GRP_MAP1__CID24_GROUP__SHIFT 0x10
+#define GCEA_DRAM_WR_CLI2GRP_MAP1__CID25_GROUP__SHIFT 0x12
+#define GCEA_DRAM_WR_CLI2GRP_MAP1__CID26_GROUP__SHIFT 0x14
+#define GCEA_DRAM_WR_CLI2GRP_MAP1__CID27_GROUP__SHIFT 0x16
+#define GCEA_DRAM_WR_CLI2GRP_MAP1__CID28_GROUP__SHIFT 0x18
+#define GCEA_DRAM_WR_CLI2GRP_MAP1__CID29_GROUP__SHIFT 0x1a
+#define GCEA_DRAM_WR_CLI2GRP_MAP1__CID30_GROUP__SHIFT 0x1c
+#define GCEA_DRAM_WR_CLI2GRP_MAP1__CID31_GROUP__SHIFT 0x1e
+#define GCEA_DRAM_WR_CLI2GRP_MAP1__CID16_GROUP_MASK 0x00000003L
+#define GCEA_DRAM_WR_CLI2GRP_MAP1__CID17_GROUP_MASK 0x0000000CL
+#define GCEA_DRAM_WR_CLI2GRP_MAP1__CID18_GROUP_MASK 0x00000030L
+#define GCEA_DRAM_WR_CLI2GRP_MAP1__CID19_GROUP_MASK 0x000000C0L
+#define GCEA_DRAM_WR_CLI2GRP_MAP1__CID20_GROUP_MASK 0x00000300L
+#define GCEA_DRAM_WR_CLI2GRP_MAP1__CID21_GROUP_MASK 0x00000C00L
+#define GCEA_DRAM_WR_CLI2GRP_MAP1__CID22_GROUP_MASK 0x00003000L
+#define GCEA_DRAM_WR_CLI2GRP_MAP1__CID23_GROUP_MASK 0x0000C000L
+#define GCEA_DRAM_WR_CLI2GRP_MAP1__CID24_GROUP_MASK 0x00030000L
+#define GCEA_DRAM_WR_CLI2GRP_MAP1__CID25_GROUP_MASK 0x000C0000L
+#define GCEA_DRAM_WR_CLI2GRP_MAP1__CID26_GROUP_MASK 0x00300000L
+#define GCEA_DRAM_WR_CLI2GRP_MAP1__CID27_GROUP_MASK 0x00C00000L
+#define GCEA_DRAM_WR_CLI2GRP_MAP1__CID28_GROUP_MASK 0x03000000L
+#define GCEA_DRAM_WR_CLI2GRP_MAP1__CID29_GROUP_MASK 0x0C000000L
+#define GCEA_DRAM_WR_CLI2GRP_MAP1__CID30_GROUP_MASK 0x30000000L
+#define GCEA_DRAM_WR_CLI2GRP_MAP1__CID31_GROUP_MASK 0xC0000000L
+//GCEA_DRAM_RD_GRP2VC_MAP
+#define GCEA_DRAM_RD_GRP2VC_MAP__GROUP0_VC__SHIFT 0x0
+#define GCEA_DRAM_RD_GRP2VC_MAP__GROUP1_VC__SHIFT 0x3
+#define GCEA_DRAM_RD_GRP2VC_MAP__GROUP2_VC__SHIFT 0x6
+#define GCEA_DRAM_RD_GRP2VC_MAP__GROUP3_VC__SHIFT 0x9
+#define GCEA_DRAM_RD_GRP2VC_MAP__GROUP0_VC_MASK 0x00000007L
+#define GCEA_DRAM_RD_GRP2VC_MAP__GROUP1_VC_MASK 0x00000038L
+#define GCEA_DRAM_RD_GRP2VC_MAP__GROUP2_VC_MASK 0x000001C0L
+#define GCEA_DRAM_RD_GRP2VC_MAP__GROUP3_VC_MASK 0x00000E00L
+//GCEA_DRAM_WR_GRP2VC_MAP
+#define GCEA_DRAM_WR_GRP2VC_MAP__GROUP0_VC__SHIFT 0x0
+#define GCEA_DRAM_WR_GRP2VC_MAP__GROUP1_VC__SHIFT 0x3
+#define GCEA_DRAM_WR_GRP2VC_MAP__GROUP2_VC__SHIFT 0x6
+#define GCEA_DRAM_WR_GRP2VC_MAP__GROUP3_VC__SHIFT 0x9
+#define GCEA_DRAM_WR_GRP2VC_MAP__GROUP0_VC_MASK 0x00000007L
+#define GCEA_DRAM_WR_GRP2VC_MAP__GROUP1_VC_MASK 0x00000038L
+#define GCEA_DRAM_WR_GRP2VC_MAP__GROUP2_VC_MASK 0x000001C0L
+#define GCEA_DRAM_WR_GRP2VC_MAP__GROUP3_VC_MASK 0x00000E00L
+//GCEA_DRAM_RD_LAZY
+#define GCEA_DRAM_RD_LAZY__GROUP0_DELAY__SHIFT 0x0
+#define GCEA_DRAM_RD_LAZY__GROUP1_DELAY__SHIFT 0x3
+#define GCEA_DRAM_RD_LAZY__GROUP2_DELAY__SHIFT 0x6
+#define GCEA_DRAM_RD_LAZY__GROUP3_DELAY__SHIFT 0x9
+#define GCEA_DRAM_RD_LAZY__REQ_ACCUM_THRESH__SHIFT 0xc
+#define GCEA_DRAM_RD_LAZY__REQ_ACCUM_TIMEOUT__SHIFT 0x14
+#define GCEA_DRAM_RD_LAZY__REQ_ACCUM_IDLEMAX__SHIFT 0x1b
+#define GCEA_DRAM_RD_LAZY__GROUP0_DELAY_MASK 0x00000007L
+#define GCEA_DRAM_RD_LAZY__GROUP1_DELAY_MASK 0x00000038L
+#define GCEA_DRAM_RD_LAZY__GROUP2_DELAY_MASK 0x000001C0L
+#define GCEA_DRAM_RD_LAZY__GROUP3_DELAY_MASK 0x00000E00L
+#define GCEA_DRAM_RD_LAZY__REQ_ACCUM_THRESH_MASK 0x0003F000L
+#define GCEA_DRAM_RD_LAZY__REQ_ACCUM_TIMEOUT_MASK 0x07F00000L
+#define GCEA_DRAM_RD_LAZY__REQ_ACCUM_IDLEMAX_MASK 0x78000000L
+//GCEA_DRAM_WR_LAZY
+#define GCEA_DRAM_WR_LAZY__GROUP0_DELAY__SHIFT 0x0
+#define GCEA_DRAM_WR_LAZY__GROUP1_DELAY__SHIFT 0x3
+#define GCEA_DRAM_WR_LAZY__GROUP2_DELAY__SHIFT 0x6
+#define GCEA_DRAM_WR_LAZY__GROUP3_DELAY__SHIFT 0x9
+#define GCEA_DRAM_WR_LAZY__REQ_ACCUM_THRESH__SHIFT 0xc
+#define GCEA_DRAM_WR_LAZY__REQ_ACCUM_TIMEOUT__SHIFT 0x14
+#define GCEA_DRAM_WR_LAZY__REQ_ACCUM_IDLEMAX__SHIFT 0x1b
+#define GCEA_DRAM_WR_LAZY__GROUP0_DELAY_MASK 0x00000007L
+#define GCEA_DRAM_WR_LAZY__GROUP1_DELAY_MASK 0x00000038L
+#define GCEA_DRAM_WR_LAZY__GROUP2_DELAY_MASK 0x000001C0L
+#define GCEA_DRAM_WR_LAZY__GROUP3_DELAY_MASK 0x00000E00L
+#define GCEA_DRAM_WR_LAZY__REQ_ACCUM_THRESH_MASK 0x0003F000L
+#define GCEA_DRAM_WR_LAZY__REQ_ACCUM_TIMEOUT_MASK 0x07F00000L
+#define GCEA_DRAM_WR_LAZY__REQ_ACCUM_IDLEMAX_MASK 0x78000000L
+//GCEA_DRAM_RD_CAM_CNTL
+#define GCEA_DRAM_RD_CAM_CNTL__DEPTH_GROUP0__SHIFT 0x0
+#define GCEA_DRAM_RD_CAM_CNTL__DEPTH_GROUP1__SHIFT 0x4
+#define GCEA_DRAM_RD_CAM_CNTL__DEPTH_GROUP2__SHIFT 0x8
+#define GCEA_DRAM_RD_CAM_CNTL__DEPTH_GROUP3__SHIFT 0xc
+#define GCEA_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP0__SHIFT 0x10
+#define GCEA_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP1__SHIFT 0x13
+#define GCEA_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP2__SHIFT 0x16
+#define GCEA_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP3__SHIFT 0x19
+#define GCEA_DRAM_RD_CAM_CNTL__REFILL_CHAIN__SHIFT 0x1c
+#define GCEA_DRAM_RD_CAM_CNTL__DEPTH_GROUP0_MASK 0x0000000FL
+#define GCEA_DRAM_RD_CAM_CNTL__DEPTH_GROUP1_MASK 0x000000F0L
+#define GCEA_DRAM_RD_CAM_CNTL__DEPTH_GROUP2_MASK 0x00000F00L
+#define GCEA_DRAM_RD_CAM_CNTL__DEPTH_GROUP3_MASK 0x0000F000L
+#define GCEA_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP0_MASK 0x00070000L
+#define GCEA_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP1_MASK 0x00380000L
+#define GCEA_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP2_MASK 0x01C00000L
+#define GCEA_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP3_MASK 0x0E000000L
+#define GCEA_DRAM_RD_CAM_CNTL__REFILL_CHAIN_MASK 0x10000000L
+//GCEA_DRAM_WR_CAM_CNTL
+#define GCEA_DRAM_WR_CAM_CNTL__DEPTH_GROUP0__SHIFT 0x0
+#define GCEA_DRAM_WR_CAM_CNTL__DEPTH_GROUP1__SHIFT 0x4
+#define GCEA_DRAM_WR_CAM_CNTL__DEPTH_GROUP2__SHIFT 0x8
+#define GCEA_DRAM_WR_CAM_CNTL__DEPTH_GROUP3__SHIFT 0xc
+#define GCEA_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP0__SHIFT 0x10
+#define GCEA_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP1__SHIFT 0x13
+#define GCEA_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP2__SHIFT 0x16
+#define GCEA_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP3__SHIFT 0x19
+#define GCEA_DRAM_WR_CAM_CNTL__REFILL_CHAIN__SHIFT 0x1c
+#define GCEA_DRAM_WR_CAM_CNTL__DEPTH_GROUP0_MASK 0x0000000FL
+#define GCEA_DRAM_WR_CAM_CNTL__DEPTH_GROUP1_MASK 0x000000F0L
+#define GCEA_DRAM_WR_CAM_CNTL__DEPTH_GROUP2_MASK 0x00000F00L
+#define GCEA_DRAM_WR_CAM_CNTL__DEPTH_GROUP3_MASK 0x0000F000L
+#define GCEA_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP0_MASK 0x00070000L
+#define GCEA_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP1_MASK 0x00380000L
+#define GCEA_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP2_MASK 0x01C00000L
+#define GCEA_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP3_MASK 0x0E000000L
+#define GCEA_DRAM_WR_CAM_CNTL__REFILL_CHAIN_MASK 0x10000000L
+//GCEA_DRAM_PAGE_BURST
+#define GCEA_DRAM_PAGE_BURST__RD_LIMIT_LO__SHIFT 0x0
+#define GCEA_DRAM_PAGE_BURST__RD_LIMIT_HI__SHIFT 0x8
+#define GCEA_DRAM_PAGE_BURST__WR_LIMIT_LO__SHIFT 0x10
+#define GCEA_DRAM_PAGE_BURST__WR_LIMIT_HI__SHIFT 0x18
+#define GCEA_DRAM_PAGE_BURST__RD_LIMIT_LO_MASK 0x000000FFL
+#define GCEA_DRAM_PAGE_BURST__RD_LIMIT_HI_MASK 0x0000FF00L
+#define GCEA_DRAM_PAGE_BURST__WR_LIMIT_LO_MASK 0x00FF0000L
+#define GCEA_DRAM_PAGE_BURST__WR_LIMIT_HI_MASK 0xFF000000L
+//GCEA_DRAM_RD_PRI_AGE
+#define GCEA_DRAM_RD_PRI_AGE__GROUP0_AGING_RATE__SHIFT 0x0
+#define GCEA_DRAM_RD_PRI_AGE__GROUP1_AGING_RATE__SHIFT 0x3
+#define GCEA_DRAM_RD_PRI_AGE__GROUP2_AGING_RATE__SHIFT 0x6
+#define GCEA_DRAM_RD_PRI_AGE__GROUP3_AGING_RATE__SHIFT 0x9
+#define GCEA_DRAM_RD_PRI_AGE__GROUP0_AGE_COEFFICIENT__SHIFT 0xc
+#define GCEA_DRAM_RD_PRI_AGE__GROUP1_AGE_COEFFICIENT__SHIFT 0xf
+#define GCEA_DRAM_RD_PRI_AGE__GROUP2_AGE_COEFFICIENT__SHIFT 0x12
+#define GCEA_DRAM_RD_PRI_AGE__GROUP3_AGE_COEFFICIENT__SHIFT 0x15
+#define GCEA_DRAM_RD_PRI_AGE__GROUP0_AGING_RATE_MASK 0x00000007L
+#define GCEA_DRAM_RD_PRI_AGE__GROUP1_AGING_RATE_MASK 0x00000038L
+#define GCEA_DRAM_RD_PRI_AGE__GROUP2_AGING_RATE_MASK 0x000001C0L
+#define GCEA_DRAM_RD_PRI_AGE__GROUP3_AGING_RATE_MASK 0x00000E00L
+#define GCEA_DRAM_RD_PRI_AGE__GROUP0_AGE_COEFFICIENT_MASK 0x00007000L
+#define GCEA_DRAM_RD_PRI_AGE__GROUP1_AGE_COEFFICIENT_MASK 0x00038000L
+#define GCEA_DRAM_RD_PRI_AGE__GROUP2_AGE_COEFFICIENT_MASK 0x001C0000L
+#define GCEA_DRAM_RD_PRI_AGE__GROUP3_AGE_COEFFICIENT_MASK 0x00E00000L
+//GCEA_DRAM_WR_PRI_AGE
+#define GCEA_DRAM_WR_PRI_AGE__GROUP0_AGING_RATE__SHIFT 0x0
+#define GCEA_DRAM_WR_PRI_AGE__GROUP1_AGING_RATE__SHIFT 0x3
+#define GCEA_DRAM_WR_PRI_AGE__GROUP2_AGING_RATE__SHIFT 0x6
+#define GCEA_DRAM_WR_PRI_AGE__GROUP3_AGING_RATE__SHIFT 0x9
+#define GCEA_DRAM_WR_PRI_AGE__GROUP0_AGE_COEFFICIENT__SHIFT 0xc
+#define GCEA_DRAM_WR_PRI_AGE__GROUP1_AGE_COEFFICIENT__SHIFT 0xf
+#define GCEA_DRAM_WR_PRI_AGE__GROUP2_AGE_COEFFICIENT__SHIFT 0x12
+#define GCEA_DRAM_WR_PRI_AGE__GROUP3_AGE_COEFFICIENT__SHIFT 0x15
+#define GCEA_DRAM_WR_PRI_AGE__GROUP0_AGING_RATE_MASK 0x00000007L
+#define GCEA_DRAM_WR_PRI_AGE__GROUP1_AGING_RATE_MASK 0x00000038L
+#define GCEA_DRAM_WR_PRI_AGE__GROUP2_AGING_RATE_MASK 0x000001C0L
+#define GCEA_DRAM_WR_PRI_AGE__GROUP3_AGING_RATE_MASK 0x00000E00L
+#define GCEA_DRAM_WR_PRI_AGE__GROUP0_AGE_COEFFICIENT_MASK 0x00007000L
+#define GCEA_DRAM_WR_PRI_AGE__GROUP1_AGE_COEFFICIENT_MASK 0x00038000L
+#define GCEA_DRAM_WR_PRI_AGE__GROUP2_AGE_COEFFICIENT_MASK 0x001C0000L
+#define GCEA_DRAM_WR_PRI_AGE__GROUP3_AGE_COEFFICIENT_MASK 0x00E00000L
+//GCEA_DRAM_RD_PRI_QUEUING
+#define GCEA_DRAM_RD_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT__SHIFT 0x0
+#define GCEA_DRAM_RD_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT__SHIFT 0x3
+#define GCEA_DRAM_RD_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT__SHIFT 0x6
+#define GCEA_DRAM_RD_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT__SHIFT 0x9
+#define GCEA_DRAM_RD_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT_MASK 0x00000007L
+#define GCEA_DRAM_RD_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT_MASK 0x00000038L
+#define GCEA_DRAM_RD_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT_MASK 0x000001C0L
+#define GCEA_DRAM_RD_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT_MASK 0x00000E00L
+//GCEA_DRAM_WR_PRI_QUEUING
+#define GCEA_DRAM_WR_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT__SHIFT 0x0
+#define GCEA_DRAM_WR_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT__SHIFT 0x3
+#define GCEA_DRAM_WR_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT__SHIFT 0x6
+#define GCEA_DRAM_WR_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT__SHIFT 0x9
+#define GCEA_DRAM_WR_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT_MASK 0x00000007L
+#define GCEA_DRAM_WR_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT_MASK 0x00000038L
+#define GCEA_DRAM_WR_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT_MASK 0x000001C0L
+#define GCEA_DRAM_WR_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT_MASK 0x00000E00L
+//GCEA_DRAM_RD_PRI_FIXED
+#define GCEA_DRAM_RD_PRI_FIXED__GROUP0_FIXED_COEFFICIENT__SHIFT 0x0
+#define GCEA_DRAM_RD_PRI_FIXED__GROUP1_FIXED_COEFFICIENT__SHIFT 0x3
+#define GCEA_DRAM_RD_PRI_FIXED__GROUP2_FIXED_COEFFICIENT__SHIFT 0x6
+#define GCEA_DRAM_RD_PRI_FIXED__GROUP3_FIXED_COEFFICIENT__SHIFT 0x9
+#define GCEA_DRAM_RD_PRI_FIXED__GROUP0_FIXED_COEFFICIENT_MASK 0x00000007L
+#define GCEA_DRAM_RD_PRI_FIXED__GROUP1_FIXED_COEFFICIENT_MASK 0x00000038L
+#define GCEA_DRAM_RD_PRI_FIXED__GROUP2_FIXED_COEFFICIENT_MASK 0x000001C0L
+#define GCEA_DRAM_RD_PRI_FIXED__GROUP3_FIXED_COEFFICIENT_MASK 0x00000E00L
+//GCEA_DRAM_WR_PRI_FIXED
+#define GCEA_DRAM_WR_PRI_FIXED__GROUP0_FIXED_COEFFICIENT__SHIFT 0x0
+#define GCEA_DRAM_WR_PRI_FIXED__GROUP1_FIXED_COEFFICIENT__SHIFT 0x3
+#define GCEA_DRAM_WR_PRI_FIXED__GROUP2_FIXED_COEFFICIENT__SHIFT 0x6
+#define GCEA_DRAM_WR_PRI_FIXED__GROUP3_FIXED_COEFFICIENT__SHIFT 0x9
+#define GCEA_DRAM_WR_PRI_FIXED__GROUP0_FIXED_COEFFICIENT_MASK 0x00000007L
+#define GCEA_DRAM_WR_PRI_FIXED__GROUP1_FIXED_COEFFICIENT_MASK 0x00000038L
+#define GCEA_DRAM_WR_PRI_FIXED__GROUP2_FIXED_COEFFICIENT_MASK 0x000001C0L
+#define GCEA_DRAM_WR_PRI_FIXED__GROUP3_FIXED_COEFFICIENT_MASK 0x00000E00L
+//GCEA_DRAM_RD_PRI_URGENCY
+#define GCEA_DRAM_RD_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT__SHIFT 0x0
+#define GCEA_DRAM_RD_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT__SHIFT 0x3
+#define GCEA_DRAM_RD_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT__SHIFT 0x6
+#define GCEA_DRAM_RD_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT__SHIFT 0x9
+#define GCEA_DRAM_RD_PRI_URGENCY__GROUP0_URGENCY_MODE__SHIFT 0xc
+#define GCEA_DRAM_RD_PRI_URGENCY__GROUP1_URGENCY_MODE__SHIFT 0xd
+#define GCEA_DRAM_RD_PRI_URGENCY__GROUP2_URGENCY_MODE__SHIFT 0xe
+#define GCEA_DRAM_RD_PRI_URGENCY__GROUP3_URGENCY_MODE__SHIFT 0xf
+#define GCEA_DRAM_RD_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT_MASK 0x00000007L
+#define GCEA_DRAM_RD_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT_MASK 0x00000038L
+#define GCEA_DRAM_RD_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT_MASK 0x000001C0L
+#define GCEA_DRAM_RD_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT_MASK 0x00000E00L
+#define GCEA_DRAM_RD_PRI_URGENCY__GROUP0_URGENCY_MODE_MASK 0x00001000L
+#define GCEA_DRAM_RD_PRI_URGENCY__GROUP1_URGENCY_MODE_MASK 0x00002000L
+#define GCEA_DRAM_RD_PRI_URGENCY__GROUP2_URGENCY_MODE_MASK 0x00004000L
+#define GCEA_DRAM_RD_PRI_URGENCY__GROUP3_URGENCY_MODE_MASK 0x00008000L
+//GCEA_DRAM_WR_PRI_URGENCY
+#define GCEA_DRAM_WR_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT__SHIFT 0x0
+#define GCEA_DRAM_WR_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT__SHIFT 0x3
+#define GCEA_DRAM_WR_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT__SHIFT 0x6
+#define GCEA_DRAM_WR_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT__SHIFT 0x9
+#define GCEA_DRAM_WR_PRI_URGENCY__GROUP0_URGENCY_MODE__SHIFT 0xc
+#define GCEA_DRAM_WR_PRI_URGENCY__GROUP1_URGENCY_MODE__SHIFT 0xd
+#define GCEA_DRAM_WR_PRI_URGENCY__GROUP2_URGENCY_MODE__SHIFT 0xe
+#define GCEA_DRAM_WR_PRI_URGENCY__GROUP3_URGENCY_MODE__SHIFT 0xf
+#define GCEA_DRAM_WR_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT_MASK 0x00000007L
+#define GCEA_DRAM_WR_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT_MASK 0x00000038L
+#define GCEA_DRAM_WR_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT_MASK 0x000001C0L
+#define GCEA_DRAM_WR_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT_MASK 0x00000E00L
+#define GCEA_DRAM_WR_PRI_URGENCY__GROUP0_URGENCY_MODE_MASK 0x00001000L
+#define GCEA_DRAM_WR_PRI_URGENCY__GROUP1_URGENCY_MODE_MASK 0x00002000L
+#define GCEA_DRAM_WR_PRI_URGENCY__GROUP2_URGENCY_MODE_MASK 0x00004000L
+#define GCEA_DRAM_WR_PRI_URGENCY__GROUP3_URGENCY_MODE_MASK 0x00008000L
+//GCEA_DRAM_RD_PRI_QUANT_PRI1
+#define GCEA_DRAM_RD_PRI_QUANT_PRI1__GROUP0_THRESHOLD__SHIFT 0x0
+#define GCEA_DRAM_RD_PRI_QUANT_PRI1__GROUP1_THRESHOLD__SHIFT 0x8
+#define GCEA_DRAM_RD_PRI_QUANT_PRI1__GROUP2_THRESHOLD__SHIFT 0x10
+#define GCEA_DRAM_RD_PRI_QUANT_PRI1__GROUP3_THRESHOLD__SHIFT 0x18
+#define GCEA_DRAM_RD_PRI_QUANT_PRI1__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define GCEA_DRAM_RD_PRI_QUANT_PRI1__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define GCEA_DRAM_RD_PRI_QUANT_PRI1__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define GCEA_DRAM_RD_PRI_QUANT_PRI1__GROUP3_THRESHOLD_MASK 0xFF000000L
+//GCEA_DRAM_RD_PRI_QUANT_PRI2
+#define GCEA_DRAM_RD_PRI_QUANT_PRI2__GROUP0_THRESHOLD__SHIFT 0x0
+#define GCEA_DRAM_RD_PRI_QUANT_PRI2__GROUP1_THRESHOLD__SHIFT 0x8
+#define GCEA_DRAM_RD_PRI_QUANT_PRI2__GROUP2_THRESHOLD__SHIFT 0x10
+#define GCEA_DRAM_RD_PRI_QUANT_PRI2__GROUP3_THRESHOLD__SHIFT 0x18
+#define GCEA_DRAM_RD_PRI_QUANT_PRI2__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define GCEA_DRAM_RD_PRI_QUANT_PRI2__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define GCEA_DRAM_RD_PRI_QUANT_PRI2__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define GCEA_DRAM_RD_PRI_QUANT_PRI2__GROUP3_THRESHOLD_MASK 0xFF000000L
+//GCEA_DRAM_RD_PRI_QUANT_PRI3
+#define GCEA_DRAM_RD_PRI_QUANT_PRI3__GROUP0_THRESHOLD__SHIFT 0x0
+#define GCEA_DRAM_RD_PRI_QUANT_PRI3__GROUP1_THRESHOLD__SHIFT 0x8
+#define GCEA_DRAM_RD_PRI_QUANT_PRI3__GROUP2_THRESHOLD__SHIFT 0x10
+#define GCEA_DRAM_RD_PRI_QUANT_PRI3__GROUP3_THRESHOLD__SHIFT 0x18
+#define GCEA_DRAM_RD_PRI_QUANT_PRI3__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define GCEA_DRAM_RD_PRI_QUANT_PRI3__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define GCEA_DRAM_RD_PRI_QUANT_PRI3__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define GCEA_DRAM_RD_PRI_QUANT_PRI3__GROUP3_THRESHOLD_MASK 0xFF000000L
+//GCEA_DRAM_WR_PRI_QUANT_PRI1
+#define GCEA_DRAM_WR_PRI_QUANT_PRI1__GROUP0_THRESHOLD__SHIFT 0x0
+#define GCEA_DRAM_WR_PRI_QUANT_PRI1__GROUP1_THRESHOLD__SHIFT 0x8
+#define GCEA_DRAM_WR_PRI_QUANT_PRI1__GROUP2_THRESHOLD__SHIFT 0x10
+#define GCEA_DRAM_WR_PRI_QUANT_PRI1__GROUP3_THRESHOLD__SHIFT 0x18
+#define GCEA_DRAM_WR_PRI_QUANT_PRI1__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define GCEA_DRAM_WR_PRI_QUANT_PRI1__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define GCEA_DRAM_WR_PRI_QUANT_PRI1__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define GCEA_DRAM_WR_PRI_QUANT_PRI1__GROUP3_THRESHOLD_MASK 0xFF000000L
+//GCEA_DRAM_WR_PRI_QUANT_PRI2
+#define GCEA_DRAM_WR_PRI_QUANT_PRI2__GROUP0_THRESHOLD__SHIFT 0x0
+#define GCEA_DRAM_WR_PRI_QUANT_PRI2__GROUP1_THRESHOLD__SHIFT 0x8
+#define GCEA_DRAM_WR_PRI_QUANT_PRI2__GROUP2_THRESHOLD__SHIFT 0x10
+#define GCEA_DRAM_WR_PRI_QUANT_PRI2__GROUP3_THRESHOLD__SHIFT 0x18
+#define GCEA_DRAM_WR_PRI_QUANT_PRI2__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define GCEA_DRAM_WR_PRI_QUANT_PRI2__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define GCEA_DRAM_WR_PRI_QUANT_PRI2__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define GCEA_DRAM_WR_PRI_QUANT_PRI2__GROUP3_THRESHOLD_MASK 0xFF000000L
+//GCEA_DRAM_WR_PRI_QUANT_PRI3
+#define GCEA_DRAM_WR_PRI_QUANT_PRI3__GROUP0_THRESHOLD__SHIFT 0x0
+#define GCEA_DRAM_WR_PRI_QUANT_PRI3__GROUP1_THRESHOLD__SHIFT 0x8
+#define GCEA_DRAM_WR_PRI_QUANT_PRI3__GROUP2_THRESHOLD__SHIFT 0x10
+#define GCEA_DRAM_WR_PRI_QUANT_PRI3__GROUP3_THRESHOLD__SHIFT 0x18
+#define GCEA_DRAM_WR_PRI_QUANT_PRI3__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define GCEA_DRAM_WR_PRI_QUANT_PRI3__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define GCEA_DRAM_WR_PRI_QUANT_PRI3__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define GCEA_DRAM_WR_PRI_QUANT_PRI3__GROUP3_THRESHOLD_MASK 0xFF000000L
+//GCEA_IO_RD_CLI2GRP_MAP0
+#define GCEA_IO_RD_CLI2GRP_MAP0__CID0_GROUP__SHIFT 0x0
+#define GCEA_IO_RD_CLI2GRP_MAP0__CID1_GROUP__SHIFT 0x2
+#define GCEA_IO_RD_CLI2GRP_MAP0__CID2_GROUP__SHIFT 0x4
+#define GCEA_IO_RD_CLI2GRP_MAP0__CID3_GROUP__SHIFT 0x6
+#define GCEA_IO_RD_CLI2GRP_MAP0__CID4_GROUP__SHIFT 0x8
+#define GCEA_IO_RD_CLI2GRP_MAP0__CID5_GROUP__SHIFT 0xa
+#define GCEA_IO_RD_CLI2GRP_MAP0__CID6_GROUP__SHIFT 0xc
+#define GCEA_IO_RD_CLI2GRP_MAP0__CID7_GROUP__SHIFT 0xe
+#define GCEA_IO_RD_CLI2GRP_MAP0__CID8_GROUP__SHIFT 0x10
+#define GCEA_IO_RD_CLI2GRP_MAP0__CID9_GROUP__SHIFT 0x12
+#define GCEA_IO_RD_CLI2GRP_MAP0__CID10_GROUP__SHIFT 0x14
+#define GCEA_IO_RD_CLI2GRP_MAP0__CID11_GROUP__SHIFT 0x16
+#define GCEA_IO_RD_CLI2GRP_MAP0__CID12_GROUP__SHIFT 0x18
+#define GCEA_IO_RD_CLI2GRP_MAP0__CID13_GROUP__SHIFT 0x1a
+#define GCEA_IO_RD_CLI2GRP_MAP0__CID14_GROUP__SHIFT 0x1c
+#define GCEA_IO_RD_CLI2GRP_MAP0__CID15_GROUP__SHIFT 0x1e
+#define GCEA_IO_RD_CLI2GRP_MAP0__CID0_GROUP_MASK 0x00000003L
+#define GCEA_IO_RD_CLI2GRP_MAP0__CID1_GROUP_MASK 0x0000000CL
+#define GCEA_IO_RD_CLI2GRP_MAP0__CID2_GROUP_MASK 0x00000030L
+#define GCEA_IO_RD_CLI2GRP_MAP0__CID3_GROUP_MASK 0x000000C0L
+#define GCEA_IO_RD_CLI2GRP_MAP0__CID4_GROUP_MASK 0x00000300L
+#define GCEA_IO_RD_CLI2GRP_MAP0__CID5_GROUP_MASK 0x00000C00L
+#define GCEA_IO_RD_CLI2GRP_MAP0__CID6_GROUP_MASK 0x00003000L
+#define GCEA_IO_RD_CLI2GRP_MAP0__CID7_GROUP_MASK 0x0000C000L
+#define GCEA_IO_RD_CLI2GRP_MAP0__CID8_GROUP_MASK 0x00030000L
+#define GCEA_IO_RD_CLI2GRP_MAP0__CID9_GROUP_MASK 0x000C0000L
+#define GCEA_IO_RD_CLI2GRP_MAP0__CID10_GROUP_MASK 0x00300000L
+#define GCEA_IO_RD_CLI2GRP_MAP0__CID11_GROUP_MASK 0x00C00000L
+#define GCEA_IO_RD_CLI2GRP_MAP0__CID12_GROUP_MASK 0x03000000L
+#define GCEA_IO_RD_CLI2GRP_MAP0__CID13_GROUP_MASK 0x0C000000L
+#define GCEA_IO_RD_CLI2GRP_MAP0__CID14_GROUP_MASK 0x30000000L
+#define GCEA_IO_RD_CLI2GRP_MAP0__CID15_GROUP_MASK 0xC0000000L
+//GCEA_IO_RD_CLI2GRP_MAP1
+#define GCEA_IO_RD_CLI2GRP_MAP1__CID16_GROUP__SHIFT 0x0
+#define GCEA_IO_RD_CLI2GRP_MAP1__CID17_GROUP__SHIFT 0x2
+#define GCEA_IO_RD_CLI2GRP_MAP1__CID18_GROUP__SHIFT 0x4
+#define GCEA_IO_RD_CLI2GRP_MAP1__CID19_GROUP__SHIFT 0x6
+#define GCEA_IO_RD_CLI2GRP_MAP1__CID20_GROUP__SHIFT 0x8
+#define GCEA_IO_RD_CLI2GRP_MAP1__CID21_GROUP__SHIFT 0xa
+#define GCEA_IO_RD_CLI2GRP_MAP1__CID22_GROUP__SHIFT 0xc
+#define GCEA_IO_RD_CLI2GRP_MAP1__CID23_GROUP__SHIFT 0xe
+#define GCEA_IO_RD_CLI2GRP_MAP1__CID24_GROUP__SHIFT 0x10
+#define GCEA_IO_RD_CLI2GRP_MAP1__CID25_GROUP__SHIFT 0x12
+#define GCEA_IO_RD_CLI2GRP_MAP1__CID26_GROUP__SHIFT 0x14
+#define GCEA_IO_RD_CLI2GRP_MAP1__CID27_GROUP__SHIFT 0x16
+#define GCEA_IO_RD_CLI2GRP_MAP1__CID28_GROUP__SHIFT 0x18
+#define GCEA_IO_RD_CLI2GRP_MAP1__CID29_GROUP__SHIFT 0x1a
+#define GCEA_IO_RD_CLI2GRP_MAP1__CID30_GROUP__SHIFT 0x1c
+#define GCEA_IO_RD_CLI2GRP_MAP1__CID31_GROUP__SHIFT 0x1e
+#define GCEA_IO_RD_CLI2GRP_MAP1__CID16_GROUP_MASK 0x00000003L
+#define GCEA_IO_RD_CLI2GRP_MAP1__CID17_GROUP_MASK 0x0000000CL
+#define GCEA_IO_RD_CLI2GRP_MAP1__CID18_GROUP_MASK 0x00000030L
+#define GCEA_IO_RD_CLI2GRP_MAP1__CID19_GROUP_MASK 0x000000C0L
+#define GCEA_IO_RD_CLI2GRP_MAP1__CID20_GROUP_MASK 0x00000300L
+#define GCEA_IO_RD_CLI2GRP_MAP1__CID21_GROUP_MASK 0x00000C00L
+#define GCEA_IO_RD_CLI2GRP_MAP1__CID22_GROUP_MASK 0x00003000L
+#define GCEA_IO_RD_CLI2GRP_MAP1__CID23_GROUP_MASK 0x0000C000L
+#define GCEA_IO_RD_CLI2GRP_MAP1__CID24_GROUP_MASK 0x00030000L
+#define GCEA_IO_RD_CLI2GRP_MAP1__CID25_GROUP_MASK 0x000C0000L
+#define GCEA_IO_RD_CLI2GRP_MAP1__CID26_GROUP_MASK 0x00300000L
+#define GCEA_IO_RD_CLI2GRP_MAP1__CID27_GROUP_MASK 0x00C00000L
+#define GCEA_IO_RD_CLI2GRP_MAP1__CID28_GROUP_MASK 0x03000000L
+#define GCEA_IO_RD_CLI2GRP_MAP1__CID29_GROUP_MASK 0x0C000000L
+#define GCEA_IO_RD_CLI2GRP_MAP1__CID30_GROUP_MASK 0x30000000L
+#define GCEA_IO_RD_CLI2GRP_MAP1__CID31_GROUP_MASK 0xC0000000L
+//GCEA_IO_WR_CLI2GRP_MAP0
+#define GCEA_IO_WR_CLI2GRP_MAP0__CID0_GROUP__SHIFT 0x0
+#define GCEA_IO_WR_CLI2GRP_MAP0__CID1_GROUP__SHIFT 0x2
+#define GCEA_IO_WR_CLI2GRP_MAP0__CID2_GROUP__SHIFT 0x4
+#define GCEA_IO_WR_CLI2GRP_MAP0__CID3_GROUP__SHIFT 0x6
+#define GCEA_IO_WR_CLI2GRP_MAP0__CID4_GROUP__SHIFT 0x8
+#define GCEA_IO_WR_CLI2GRP_MAP0__CID5_GROUP__SHIFT 0xa
+#define GCEA_IO_WR_CLI2GRP_MAP0__CID6_GROUP__SHIFT 0xc
+#define GCEA_IO_WR_CLI2GRP_MAP0__CID7_GROUP__SHIFT 0xe
+#define GCEA_IO_WR_CLI2GRP_MAP0__CID8_GROUP__SHIFT 0x10
+#define GCEA_IO_WR_CLI2GRP_MAP0__CID9_GROUP__SHIFT 0x12
+#define GCEA_IO_WR_CLI2GRP_MAP0__CID10_GROUP__SHIFT 0x14
+#define GCEA_IO_WR_CLI2GRP_MAP0__CID11_GROUP__SHIFT 0x16
+#define GCEA_IO_WR_CLI2GRP_MAP0__CID12_GROUP__SHIFT 0x18
+#define GCEA_IO_WR_CLI2GRP_MAP0__CID13_GROUP__SHIFT 0x1a
+#define GCEA_IO_WR_CLI2GRP_MAP0__CID14_GROUP__SHIFT 0x1c
+#define GCEA_IO_WR_CLI2GRP_MAP0__CID15_GROUP__SHIFT 0x1e
+#define GCEA_IO_WR_CLI2GRP_MAP0__CID0_GROUP_MASK 0x00000003L
+#define GCEA_IO_WR_CLI2GRP_MAP0__CID1_GROUP_MASK 0x0000000CL
+#define GCEA_IO_WR_CLI2GRP_MAP0__CID2_GROUP_MASK 0x00000030L
+#define GCEA_IO_WR_CLI2GRP_MAP0__CID3_GROUP_MASK 0x000000C0L
+#define GCEA_IO_WR_CLI2GRP_MAP0__CID4_GROUP_MASK 0x00000300L
+#define GCEA_IO_WR_CLI2GRP_MAP0__CID5_GROUP_MASK 0x00000C00L
+#define GCEA_IO_WR_CLI2GRP_MAP0__CID6_GROUP_MASK 0x00003000L
+#define GCEA_IO_WR_CLI2GRP_MAP0__CID7_GROUP_MASK 0x0000C000L
+#define GCEA_IO_WR_CLI2GRP_MAP0__CID8_GROUP_MASK 0x00030000L
+#define GCEA_IO_WR_CLI2GRP_MAP0__CID9_GROUP_MASK 0x000C0000L
+#define GCEA_IO_WR_CLI2GRP_MAP0__CID10_GROUP_MASK 0x00300000L
+#define GCEA_IO_WR_CLI2GRP_MAP0__CID11_GROUP_MASK 0x00C00000L
+#define GCEA_IO_WR_CLI2GRP_MAP0__CID12_GROUP_MASK 0x03000000L
+#define GCEA_IO_WR_CLI2GRP_MAP0__CID13_GROUP_MASK 0x0C000000L
+#define GCEA_IO_WR_CLI2GRP_MAP0__CID14_GROUP_MASK 0x30000000L
+#define GCEA_IO_WR_CLI2GRP_MAP0__CID15_GROUP_MASK 0xC0000000L
+//GCEA_IO_WR_CLI2GRP_MAP1
+#define GCEA_IO_WR_CLI2GRP_MAP1__CID16_GROUP__SHIFT 0x0
+#define GCEA_IO_WR_CLI2GRP_MAP1__CID17_GROUP__SHIFT 0x2
+#define GCEA_IO_WR_CLI2GRP_MAP1__CID18_GROUP__SHIFT 0x4
+#define GCEA_IO_WR_CLI2GRP_MAP1__CID19_GROUP__SHIFT 0x6
+#define GCEA_IO_WR_CLI2GRP_MAP1__CID20_GROUP__SHIFT 0x8
+#define GCEA_IO_WR_CLI2GRP_MAP1__CID21_GROUP__SHIFT 0xa
+#define GCEA_IO_WR_CLI2GRP_MAP1__CID22_GROUP__SHIFT 0xc
+#define GCEA_IO_WR_CLI2GRP_MAP1__CID23_GROUP__SHIFT 0xe
+#define GCEA_IO_WR_CLI2GRP_MAP1__CID24_GROUP__SHIFT 0x10
+#define GCEA_IO_WR_CLI2GRP_MAP1__CID25_GROUP__SHIFT 0x12
+#define GCEA_IO_WR_CLI2GRP_MAP1__CID26_GROUP__SHIFT 0x14
+#define GCEA_IO_WR_CLI2GRP_MAP1__CID27_GROUP__SHIFT 0x16
+#define GCEA_IO_WR_CLI2GRP_MAP1__CID28_GROUP__SHIFT 0x18
+#define GCEA_IO_WR_CLI2GRP_MAP1__CID29_GROUP__SHIFT 0x1a
+#define GCEA_IO_WR_CLI2GRP_MAP1__CID30_GROUP__SHIFT 0x1c
+#define GCEA_IO_WR_CLI2GRP_MAP1__CID31_GROUP__SHIFT 0x1e
+#define GCEA_IO_WR_CLI2GRP_MAP1__CID16_GROUP_MASK 0x00000003L
+#define GCEA_IO_WR_CLI2GRP_MAP1__CID17_GROUP_MASK 0x0000000CL
+#define GCEA_IO_WR_CLI2GRP_MAP1__CID18_GROUP_MASK 0x00000030L
+#define GCEA_IO_WR_CLI2GRP_MAP1__CID19_GROUP_MASK 0x000000C0L
+#define GCEA_IO_WR_CLI2GRP_MAP1__CID20_GROUP_MASK 0x00000300L
+#define GCEA_IO_WR_CLI2GRP_MAP1__CID21_GROUP_MASK 0x00000C00L
+#define GCEA_IO_WR_CLI2GRP_MAP1__CID22_GROUP_MASK 0x00003000L
+#define GCEA_IO_WR_CLI2GRP_MAP1__CID23_GROUP_MASK 0x0000C000L
+#define GCEA_IO_WR_CLI2GRP_MAP1__CID24_GROUP_MASK 0x00030000L
+#define GCEA_IO_WR_CLI2GRP_MAP1__CID25_GROUP_MASK 0x000C0000L
+#define GCEA_IO_WR_CLI2GRP_MAP1__CID26_GROUP_MASK 0x00300000L
+#define GCEA_IO_WR_CLI2GRP_MAP1__CID27_GROUP_MASK 0x00C00000L
+#define GCEA_IO_WR_CLI2GRP_MAP1__CID28_GROUP_MASK 0x03000000L
+#define GCEA_IO_WR_CLI2GRP_MAP1__CID29_GROUP_MASK 0x0C000000L
+#define GCEA_IO_WR_CLI2GRP_MAP1__CID30_GROUP_MASK 0x30000000L
+#define GCEA_IO_WR_CLI2GRP_MAP1__CID31_GROUP_MASK 0xC0000000L
+//GCEA_IO_RD_COMBINE_FLUSH
+#define GCEA_IO_RD_COMBINE_FLUSH__GROUP0_TIMER__SHIFT 0x0
+#define GCEA_IO_RD_COMBINE_FLUSH__GROUP1_TIMER__SHIFT 0x4
+#define GCEA_IO_RD_COMBINE_FLUSH__GROUP2_TIMER__SHIFT 0x8
+#define GCEA_IO_RD_COMBINE_FLUSH__GROUP3_TIMER__SHIFT 0xc
+#define GCEA_IO_RD_COMBINE_FLUSH__COMB_MODE__SHIFT 0x10
+#define GCEA_IO_RD_COMBINE_FLUSH__GROUP0_TIMER_MASK 0x0000000FL
+#define GCEA_IO_RD_COMBINE_FLUSH__GROUP1_TIMER_MASK 0x000000F0L
+#define GCEA_IO_RD_COMBINE_FLUSH__GROUP2_TIMER_MASK 0x00000F00L
+#define GCEA_IO_RD_COMBINE_FLUSH__GROUP3_TIMER_MASK 0x0000F000L
+#define GCEA_IO_RD_COMBINE_FLUSH__COMB_MODE_MASK 0x00030000L
+//GCEA_IO_WR_COMBINE_FLUSH
+#define GCEA_IO_WR_COMBINE_FLUSH__GROUP0_TIMER__SHIFT 0x0
+#define GCEA_IO_WR_COMBINE_FLUSH__GROUP1_TIMER__SHIFT 0x4
+#define GCEA_IO_WR_COMBINE_FLUSH__GROUP2_TIMER__SHIFT 0x8
+#define GCEA_IO_WR_COMBINE_FLUSH__GROUP3_TIMER__SHIFT 0xc
+#define GCEA_IO_WR_COMBINE_FLUSH__COMB_MODE__SHIFT 0x10
+#define GCEA_IO_WR_COMBINE_FLUSH__DISABLE_MAM_CHAINING__SHIFT 0x12
+#define GCEA_IO_WR_COMBINE_FLUSH__GROUP0_TIMER_MASK 0x0000000FL
+#define GCEA_IO_WR_COMBINE_FLUSH__GROUP1_TIMER_MASK 0x000000F0L
+#define GCEA_IO_WR_COMBINE_FLUSH__GROUP2_TIMER_MASK 0x00000F00L
+#define GCEA_IO_WR_COMBINE_FLUSH__GROUP3_TIMER_MASK 0x0000F000L
+#define GCEA_IO_WR_COMBINE_FLUSH__COMB_MODE_MASK 0x00030000L
+#define GCEA_IO_WR_COMBINE_FLUSH__DISABLE_MAM_CHAINING_MASK 0x00040000L
+//GCEA_IO_GROUP_BURST
+#define GCEA_IO_GROUP_BURST__RD_LIMIT_LO__SHIFT 0x0
+#define GCEA_IO_GROUP_BURST__RD_LIMIT_HI__SHIFT 0x8
+#define GCEA_IO_GROUP_BURST__WR_LIMIT_LO__SHIFT 0x10
+#define GCEA_IO_GROUP_BURST__WR_LIMIT_HI__SHIFT 0x18
+#define GCEA_IO_GROUP_BURST__RD_LIMIT_LO_MASK 0x000000FFL
+#define GCEA_IO_GROUP_BURST__RD_LIMIT_HI_MASK 0x0000FF00L
+#define GCEA_IO_GROUP_BURST__WR_LIMIT_LO_MASK 0x00FF0000L
+#define GCEA_IO_GROUP_BURST__WR_LIMIT_HI_MASK 0xFF000000L
+//GCEA_IO_RD_PRI_AGE
+#define GCEA_IO_RD_PRI_AGE__GROUP0_AGING_RATE__SHIFT 0x0
+#define GCEA_IO_RD_PRI_AGE__GROUP1_AGING_RATE__SHIFT 0x3
+#define GCEA_IO_RD_PRI_AGE__GROUP2_AGING_RATE__SHIFT 0x6
+#define GCEA_IO_RD_PRI_AGE__GROUP3_AGING_RATE__SHIFT 0x9
+#define GCEA_IO_RD_PRI_AGE__GROUP0_AGE_COEFFICIENT__SHIFT 0xc
+#define GCEA_IO_RD_PRI_AGE__GROUP1_AGE_COEFFICIENT__SHIFT 0xf
+#define GCEA_IO_RD_PRI_AGE__GROUP2_AGE_COEFFICIENT__SHIFT 0x12
+#define GCEA_IO_RD_PRI_AGE__GROUP3_AGE_COEFFICIENT__SHIFT 0x15
+#define GCEA_IO_RD_PRI_AGE__GROUP0_AGING_RATE_MASK 0x00000007L
+#define GCEA_IO_RD_PRI_AGE__GROUP1_AGING_RATE_MASK 0x00000038L
+#define GCEA_IO_RD_PRI_AGE__GROUP2_AGING_RATE_MASK 0x000001C0L
+#define GCEA_IO_RD_PRI_AGE__GROUP3_AGING_RATE_MASK 0x00000E00L
+#define GCEA_IO_RD_PRI_AGE__GROUP0_AGE_COEFFICIENT_MASK 0x00007000L
+#define GCEA_IO_RD_PRI_AGE__GROUP1_AGE_COEFFICIENT_MASK 0x00038000L
+#define GCEA_IO_RD_PRI_AGE__GROUP2_AGE_COEFFICIENT_MASK 0x001C0000L
+#define GCEA_IO_RD_PRI_AGE__GROUP3_AGE_COEFFICIENT_MASK 0x00E00000L
+//GCEA_IO_WR_PRI_AGE
+#define GCEA_IO_WR_PRI_AGE__GROUP0_AGING_RATE__SHIFT 0x0
+#define GCEA_IO_WR_PRI_AGE__GROUP1_AGING_RATE__SHIFT 0x3
+#define GCEA_IO_WR_PRI_AGE__GROUP2_AGING_RATE__SHIFT 0x6
+#define GCEA_IO_WR_PRI_AGE__GROUP3_AGING_RATE__SHIFT 0x9
+#define GCEA_IO_WR_PRI_AGE__GROUP0_AGE_COEFFICIENT__SHIFT 0xc
+#define GCEA_IO_WR_PRI_AGE__GROUP1_AGE_COEFFICIENT__SHIFT 0xf
+#define GCEA_IO_WR_PRI_AGE__GROUP2_AGE_COEFFICIENT__SHIFT 0x12
+#define GCEA_IO_WR_PRI_AGE__GROUP3_AGE_COEFFICIENT__SHIFT 0x15
+#define GCEA_IO_WR_PRI_AGE__GROUP0_AGING_RATE_MASK 0x00000007L
+#define GCEA_IO_WR_PRI_AGE__GROUP1_AGING_RATE_MASK 0x00000038L
+#define GCEA_IO_WR_PRI_AGE__GROUP2_AGING_RATE_MASK 0x000001C0L
+#define GCEA_IO_WR_PRI_AGE__GROUP3_AGING_RATE_MASK 0x00000E00L
+#define GCEA_IO_WR_PRI_AGE__GROUP0_AGE_COEFFICIENT_MASK 0x00007000L
+#define GCEA_IO_WR_PRI_AGE__GROUP1_AGE_COEFFICIENT_MASK 0x00038000L
+#define GCEA_IO_WR_PRI_AGE__GROUP2_AGE_COEFFICIENT_MASK 0x001C0000L
+#define GCEA_IO_WR_PRI_AGE__GROUP3_AGE_COEFFICIENT_MASK 0x00E00000L
+//GCEA_IO_RD_PRI_QUEUING
+#define GCEA_IO_RD_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT__SHIFT 0x0
+#define GCEA_IO_RD_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT__SHIFT 0x3
+#define GCEA_IO_RD_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT__SHIFT 0x6
+#define GCEA_IO_RD_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT__SHIFT 0x9
+#define GCEA_IO_RD_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT_MASK 0x00000007L
+#define GCEA_IO_RD_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT_MASK 0x00000038L
+#define GCEA_IO_RD_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT_MASK 0x000001C0L
+#define GCEA_IO_RD_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT_MASK 0x00000E00L
+//GCEA_IO_WR_PRI_QUEUING
+#define GCEA_IO_WR_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT__SHIFT 0x0
+#define GCEA_IO_WR_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT__SHIFT 0x3
+#define GCEA_IO_WR_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT__SHIFT 0x6
+#define GCEA_IO_WR_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT__SHIFT 0x9
+#define GCEA_IO_WR_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT_MASK 0x00000007L
+#define GCEA_IO_WR_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT_MASK 0x00000038L
+#define GCEA_IO_WR_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT_MASK 0x000001C0L
+#define GCEA_IO_WR_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT_MASK 0x00000E00L
+//GCEA_IO_RD_PRI_FIXED
+#define GCEA_IO_RD_PRI_FIXED__GROUP0_FIXED_COEFFICIENT__SHIFT 0x0
+#define GCEA_IO_RD_PRI_FIXED__GROUP1_FIXED_COEFFICIENT__SHIFT 0x3
+#define GCEA_IO_RD_PRI_FIXED__GROUP2_FIXED_COEFFICIENT__SHIFT 0x6
+#define GCEA_IO_RD_PRI_FIXED__GROUP3_FIXED_COEFFICIENT__SHIFT 0x9
+#define GCEA_IO_RD_PRI_FIXED__GROUP0_FIXED_COEFFICIENT_MASK 0x00000007L
+#define GCEA_IO_RD_PRI_FIXED__GROUP1_FIXED_COEFFICIENT_MASK 0x00000038L
+#define GCEA_IO_RD_PRI_FIXED__GROUP2_FIXED_COEFFICIENT_MASK 0x000001C0L
+#define GCEA_IO_RD_PRI_FIXED__GROUP3_FIXED_COEFFICIENT_MASK 0x00000E00L
+//GCEA_IO_WR_PRI_FIXED
+#define GCEA_IO_WR_PRI_FIXED__GROUP0_FIXED_COEFFICIENT__SHIFT 0x0
+#define GCEA_IO_WR_PRI_FIXED__GROUP1_FIXED_COEFFICIENT__SHIFT 0x3
+#define GCEA_IO_WR_PRI_FIXED__GROUP2_FIXED_COEFFICIENT__SHIFT 0x6
+#define GCEA_IO_WR_PRI_FIXED__GROUP3_FIXED_COEFFICIENT__SHIFT 0x9
+#define GCEA_IO_WR_PRI_FIXED__GROUP0_FIXED_COEFFICIENT_MASK 0x00000007L
+#define GCEA_IO_WR_PRI_FIXED__GROUP1_FIXED_COEFFICIENT_MASK 0x00000038L
+#define GCEA_IO_WR_PRI_FIXED__GROUP2_FIXED_COEFFICIENT_MASK 0x000001C0L
+#define GCEA_IO_WR_PRI_FIXED__GROUP3_FIXED_COEFFICIENT_MASK 0x00000E00L
+//GCEA_IO_RD_PRI_URGENCY
+#define GCEA_IO_RD_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT__SHIFT 0x0
+#define GCEA_IO_RD_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT__SHIFT 0x3
+#define GCEA_IO_RD_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT__SHIFT 0x6
+#define GCEA_IO_RD_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT__SHIFT 0x9
+#define GCEA_IO_RD_PRI_URGENCY__GROUP0_URGENCY_MODE__SHIFT 0xc
+#define GCEA_IO_RD_PRI_URGENCY__GROUP1_URGENCY_MODE__SHIFT 0xd
+#define GCEA_IO_RD_PRI_URGENCY__GROUP2_URGENCY_MODE__SHIFT 0xe
+#define GCEA_IO_RD_PRI_URGENCY__GROUP3_URGENCY_MODE__SHIFT 0xf
+#define GCEA_IO_RD_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT_MASK 0x00000007L
+#define GCEA_IO_RD_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT_MASK 0x00000038L
+#define GCEA_IO_RD_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT_MASK 0x000001C0L
+#define GCEA_IO_RD_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT_MASK 0x00000E00L
+#define GCEA_IO_RD_PRI_URGENCY__GROUP0_URGENCY_MODE_MASK 0x00001000L
+#define GCEA_IO_RD_PRI_URGENCY__GROUP1_URGENCY_MODE_MASK 0x00002000L
+#define GCEA_IO_RD_PRI_URGENCY__GROUP2_URGENCY_MODE_MASK 0x00004000L
+#define GCEA_IO_RD_PRI_URGENCY__GROUP3_URGENCY_MODE_MASK 0x00008000L
+//GCEA_IO_WR_PRI_URGENCY
+#define GCEA_IO_WR_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT__SHIFT 0x0
+#define GCEA_IO_WR_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT__SHIFT 0x3
+#define GCEA_IO_WR_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT__SHIFT 0x6
+#define GCEA_IO_WR_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT__SHIFT 0x9
+#define GCEA_IO_WR_PRI_URGENCY__GROUP0_URGENCY_MODE__SHIFT 0xc
+#define GCEA_IO_WR_PRI_URGENCY__GROUP1_URGENCY_MODE__SHIFT 0xd
+#define GCEA_IO_WR_PRI_URGENCY__GROUP2_URGENCY_MODE__SHIFT 0xe
+#define GCEA_IO_WR_PRI_URGENCY__GROUP3_URGENCY_MODE__SHIFT 0xf
+#define GCEA_IO_WR_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT_MASK 0x00000007L
+#define GCEA_IO_WR_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT_MASK 0x00000038L
+#define GCEA_IO_WR_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT_MASK 0x000001C0L
+#define GCEA_IO_WR_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT_MASK 0x00000E00L
+#define GCEA_IO_WR_PRI_URGENCY__GROUP0_URGENCY_MODE_MASK 0x00001000L
+#define GCEA_IO_WR_PRI_URGENCY__GROUP1_URGENCY_MODE_MASK 0x00002000L
+#define GCEA_IO_WR_PRI_URGENCY__GROUP2_URGENCY_MODE_MASK 0x00004000L
+#define GCEA_IO_WR_PRI_URGENCY__GROUP3_URGENCY_MODE_MASK 0x00008000L
+//GCEA_IO_RD_PRI_URGENCY_MASKING
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID0_MASK__SHIFT 0x0
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID1_MASK__SHIFT 0x1
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID2_MASK__SHIFT 0x2
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID3_MASK__SHIFT 0x3
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID4_MASK__SHIFT 0x4
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID5_MASK__SHIFT 0x5
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID6_MASK__SHIFT 0x6
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID7_MASK__SHIFT 0x7
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID8_MASK__SHIFT 0x8
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID9_MASK__SHIFT 0x9
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID10_MASK__SHIFT 0xa
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID11_MASK__SHIFT 0xb
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID12_MASK__SHIFT 0xc
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID13_MASK__SHIFT 0xd
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID14_MASK__SHIFT 0xe
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID15_MASK__SHIFT 0xf
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID16_MASK__SHIFT 0x10
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID17_MASK__SHIFT 0x11
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID18_MASK__SHIFT 0x12
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID19_MASK__SHIFT 0x13
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID20_MASK__SHIFT 0x14
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID21_MASK__SHIFT 0x15
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID22_MASK__SHIFT 0x16
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID23_MASK__SHIFT 0x17
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID24_MASK__SHIFT 0x18
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID25_MASK__SHIFT 0x19
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID26_MASK__SHIFT 0x1a
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID27_MASK__SHIFT 0x1b
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID28_MASK__SHIFT 0x1c
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID29_MASK__SHIFT 0x1d
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID30_MASK__SHIFT 0x1e
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID31_MASK__SHIFT 0x1f
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID0_MASK_MASK 0x00000001L
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID1_MASK_MASK 0x00000002L
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID2_MASK_MASK 0x00000004L
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID3_MASK_MASK 0x00000008L
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID4_MASK_MASK 0x00000010L
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID5_MASK_MASK 0x00000020L
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID6_MASK_MASK 0x00000040L
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID7_MASK_MASK 0x00000080L
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID8_MASK_MASK 0x00000100L
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID9_MASK_MASK 0x00000200L
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID10_MASK_MASK 0x00000400L
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID11_MASK_MASK 0x00000800L
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID12_MASK_MASK 0x00001000L
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID13_MASK_MASK 0x00002000L
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID14_MASK_MASK 0x00004000L
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID15_MASK_MASK 0x00008000L
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID16_MASK_MASK 0x00010000L
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID17_MASK_MASK 0x00020000L
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID18_MASK_MASK 0x00040000L
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID19_MASK_MASK 0x00080000L
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID20_MASK_MASK 0x00100000L
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID21_MASK_MASK 0x00200000L
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID22_MASK_MASK 0x00400000L
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID23_MASK_MASK 0x00800000L
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID24_MASK_MASK 0x01000000L
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID25_MASK_MASK 0x02000000L
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID26_MASK_MASK 0x04000000L
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID27_MASK_MASK 0x08000000L
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID28_MASK_MASK 0x10000000L
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID29_MASK_MASK 0x20000000L
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID30_MASK_MASK 0x40000000L
+#define GCEA_IO_RD_PRI_URGENCY_MASKING__CID31_MASK_MASK 0x80000000L
+//GCEA_IO_WR_PRI_URGENCY_MASKING
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID0_MASK__SHIFT 0x0
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID1_MASK__SHIFT 0x1
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID2_MASK__SHIFT 0x2
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID3_MASK__SHIFT 0x3
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID4_MASK__SHIFT 0x4
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID5_MASK__SHIFT 0x5
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID6_MASK__SHIFT 0x6
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID7_MASK__SHIFT 0x7
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID8_MASK__SHIFT 0x8
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID9_MASK__SHIFT 0x9
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID10_MASK__SHIFT 0xa
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID11_MASK__SHIFT 0xb
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID12_MASK__SHIFT 0xc
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID13_MASK__SHIFT 0xd
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID14_MASK__SHIFT 0xe
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID15_MASK__SHIFT 0xf
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID16_MASK__SHIFT 0x10
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID17_MASK__SHIFT 0x11
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID18_MASK__SHIFT 0x12
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID19_MASK__SHIFT 0x13
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID20_MASK__SHIFT 0x14
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID21_MASK__SHIFT 0x15
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID22_MASK__SHIFT 0x16
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID23_MASK__SHIFT 0x17
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID24_MASK__SHIFT 0x18
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID25_MASK__SHIFT 0x19
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID26_MASK__SHIFT 0x1a
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID27_MASK__SHIFT 0x1b
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID28_MASK__SHIFT 0x1c
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID29_MASK__SHIFT 0x1d
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID30_MASK__SHIFT 0x1e
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID31_MASK__SHIFT 0x1f
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID0_MASK_MASK 0x00000001L
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID1_MASK_MASK 0x00000002L
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID2_MASK_MASK 0x00000004L
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID3_MASK_MASK 0x00000008L
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID4_MASK_MASK 0x00000010L
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID5_MASK_MASK 0x00000020L
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID6_MASK_MASK 0x00000040L
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID7_MASK_MASK 0x00000080L
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID8_MASK_MASK 0x00000100L
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID9_MASK_MASK 0x00000200L
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID10_MASK_MASK 0x00000400L
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID11_MASK_MASK 0x00000800L
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID12_MASK_MASK 0x00001000L
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID13_MASK_MASK 0x00002000L
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID14_MASK_MASK 0x00004000L
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID15_MASK_MASK 0x00008000L
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID16_MASK_MASK 0x00010000L
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID17_MASK_MASK 0x00020000L
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID18_MASK_MASK 0x00040000L
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID19_MASK_MASK 0x00080000L
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID20_MASK_MASK 0x00100000L
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID21_MASK_MASK 0x00200000L
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID22_MASK_MASK 0x00400000L
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID23_MASK_MASK 0x00800000L
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID24_MASK_MASK 0x01000000L
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID25_MASK_MASK 0x02000000L
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID26_MASK_MASK 0x04000000L
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID27_MASK_MASK 0x08000000L
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID28_MASK_MASK 0x10000000L
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID29_MASK_MASK 0x20000000L
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID30_MASK_MASK 0x40000000L
+#define GCEA_IO_WR_PRI_URGENCY_MASKING__CID31_MASK_MASK 0x80000000L
+//GCEA_IO_RD_PRI_QUANT_PRI1
+#define GCEA_IO_RD_PRI_QUANT_PRI1__GROUP0_THRESHOLD__SHIFT 0x0
+#define GCEA_IO_RD_PRI_QUANT_PRI1__GROUP1_THRESHOLD__SHIFT 0x8
+#define GCEA_IO_RD_PRI_QUANT_PRI1__GROUP2_THRESHOLD__SHIFT 0x10
+#define GCEA_IO_RD_PRI_QUANT_PRI1__GROUP3_THRESHOLD__SHIFT 0x18
+#define GCEA_IO_RD_PRI_QUANT_PRI1__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define GCEA_IO_RD_PRI_QUANT_PRI1__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define GCEA_IO_RD_PRI_QUANT_PRI1__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define GCEA_IO_RD_PRI_QUANT_PRI1__GROUP3_THRESHOLD_MASK 0xFF000000L
+//GCEA_IO_RD_PRI_QUANT_PRI2
+#define GCEA_IO_RD_PRI_QUANT_PRI2__GROUP0_THRESHOLD__SHIFT 0x0
+#define GCEA_IO_RD_PRI_QUANT_PRI2__GROUP1_THRESHOLD__SHIFT 0x8
+#define GCEA_IO_RD_PRI_QUANT_PRI2__GROUP2_THRESHOLD__SHIFT 0x10
+#define GCEA_IO_RD_PRI_QUANT_PRI2__GROUP3_THRESHOLD__SHIFT 0x18
+#define GCEA_IO_RD_PRI_QUANT_PRI2__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define GCEA_IO_RD_PRI_QUANT_PRI2__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define GCEA_IO_RD_PRI_QUANT_PRI2__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define GCEA_IO_RD_PRI_QUANT_PRI2__GROUP3_THRESHOLD_MASK 0xFF000000L
+//GCEA_IO_RD_PRI_QUANT_PRI3
+#define GCEA_IO_RD_PRI_QUANT_PRI3__GROUP0_THRESHOLD__SHIFT 0x0
+#define GCEA_IO_RD_PRI_QUANT_PRI3__GROUP1_THRESHOLD__SHIFT 0x8
+#define GCEA_IO_RD_PRI_QUANT_PRI3__GROUP2_THRESHOLD__SHIFT 0x10
+#define GCEA_IO_RD_PRI_QUANT_PRI3__GROUP3_THRESHOLD__SHIFT 0x18
+#define GCEA_IO_RD_PRI_QUANT_PRI3__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define GCEA_IO_RD_PRI_QUANT_PRI3__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define GCEA_IO_RD_PRI_QUANT_PRI3__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define GCEA_IO_RD_PRI_QUANT_PRI3__GROUP3_THRESHOLD_MASK 0xFF000000L
+//GCEA_IO_WR_PRI_QUANT_PRI1
+#define GCEA_IO_WR_PRI_QUANT_PRI1__GROUP0_THRESHOLD__SHIFT 0x0
+#define GCEA_IO_WR_PRI_QUANT_PRI1__GROUP1_THRESHOLD__SHIFT 0x8
+#define GCEA_IO_WR_PRI_QUANT_PRI1__GROUP2_THRESHOLD__SHIFT 0x10
+#define GCEA_IO_WR_PRI_QUANT_PRI1__GROUP3_THRESHOLD__SHIFT 0x18
+#define GCEA_IO_WR_PRI_QUANT_PRI1__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define GCEA_IO_WR_PRI_QUANT_PRI1__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define GCEA_IO_WR_PRI_QUANT_PRI1__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define GCEA_IO_WR_PRI_QUANT_PRI1__GROUP3_THRESHOLD_MASK 0xFF000000L
+//GCEA_IO_WR_PRI_QUANT_PRI2
+#define GCEA_IO_WR_PRI_QUANT_PRI2__GROUP0_THRESHOLD__SHIFT 0x0
+#define GCEA_IO_WR_PRI_QUANT_PRI2__GROUP1_THRESHOLD__SHIFT 0x8
+#define GCEA_IO_WR_PRI_QUANT_PRI2__GROUP2_THRESHOLD__SHIFT 0x10
+#define GCEA_IO_WR_PRI_QUANT_PRI2__GROUP3_THRESHOLD__SHIFT 0x18
+#define GCEA_IO_WR_PRI_QUANT_PRI2__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define GCEA_IO_WR_PRI_QUANT_PRI2__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define GCEA_IO_WR_PRI_QUANT_PRI2__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define GCEA_IO_WR_PRI_QUANT_PRI2__GROUP3_THRESHOLD_MASK 0xFF000000L
+//GCEA_IO_WR_PRI_QUANT_PRI3
+#define GCEA_IO_WR_PRI_QUANT_PRI3__GROUP0_THRESHOLD__SHIFT 0x0
+#define GCEA_IO_WR_PRI_QUANT_PRI3__GROUP1_THRESHOLD__SHIFT 0x8
+#define GCEA_IO_WR_PRI_QUANT_PRI3__GROUP2_THRESHOLD__SHIFT 0x10
+#define GCEA_IO_WR_PRI_QUANT_PRI3__GROUP3_THRESHOLD__SHIFT 0x18
+#define GCEA_IO_WR_PRI_QUANT_PRI3__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define GCEA_IO_WR_PRI_QUANT_PRI3__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define GCEA_IO_WR_PRI_QUANT_PRI3__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define GCEA_IO_WR_PRI_QUANT_PRI3__GROUP3_THRESHOLD_MASK 0xFF000000L
+//GCEA_SDP_ARB_DRAM
+#define GCEA_SDP_ARB_DRAM__RDWR_BURST_LIMIT_CYCL__SHIFT 0x0
+#define GCEA_SDP_ARB_DRAM__RDWR_BURST_LIMIT_DATA__SHIFT 0x8
+#define GCEA_SDP_ARB_DRAM__EARLY_SW2RD_ON_PRI__SHIFT 0x10
+#define GCEA_SDP_ARB_DRAM__EARLY_SW2WR_ON_PRI__SHIFT 0x11
+#define GCEA_SDP_ARB_DRAM__EARLY_SW2RD_ON_RES__SHIFT 0x12
+#define GCEA_SDP_ARB_DRAM__EARLY_SW2WR_ON_RES__SHIFT 0x13
+#define GCEA_SDP_ARB_DRAM__EOB_ON_EXPIRE__SHIFT 0x14
+#define GCEA_SDP_ARB_DRAM__DECOUPLE_RDWR_BNKSTATE__SHIFT 0x15
+#define GCEA_SDP_ARB_DRAM__ALLOW_CHAIN_BREAKING__SHIFT 0x16
+#define GCEA_SDP_ARB_DRAM__RDWR_BURST_LIMIT_CYCL_MASK 0x0000007FL
+#define GCEA_SDP_ARB_DRAM__RDWR_BURST_LIMIT_DATA_MASK 0x00007F00L
+#define GCEA_SDP_ARB_DRAM__EARLY_SW2RD_ON_PRI_MASK 0x00010000L
+#define GCEA_SDP_ARB_DRAM__EARLY_SW2WR_ON_PRI_MASK 0x00020000L
+#define GCEA_SDP_ARB_DRAM__EARLY_SW2RD_ON_RES_MASK 0x00040000L
+#define GCEA_SDP_ARB_DRAM__EARLY_SW2WR_ON_RES_MASK 0x00080000L
+#define GCEA_SDP_ARB_DRAM__EOB_ON_EXPIRE_MASK 0x00100000L
+#define GCEA_SDP_ARB_DRAM__DECOUPLE_RDWR_BNKSTATE_MASK 0x00200000L
+#define GCEA_SDP_ARB_DRAM__ALLOW_CHAIN_BREAKING_MASK 0x00400000L
+//GCEA_SDP_ARB_FINAL
+#define GCEA_SDP_ARB_FINAL__DRAM_BURST_LIMIT__SHIFT 0x0
+#define GCEA_SDP_ARB_FINAL__GMI_BURST_LIMIT__SHIFT 0x5
+#define GCEA_SDP_ARB_FINAL__IO_BURST_LIMIT__SHIFT 0xa
+#define GCEA_SDP_ARB_FINAL__BURST_LIMIT_MULTIPLIER__SHIFT 0xf
+#define GCEA_SDP_ARB_FINAL__RDONLY_VC0__SHIFT 0x11
+#define GCEA_SDP_ARB_FINAL__RDONLY_VC1__SHIFT 0x12
+#define GCEA_SDP_ARB_FINAL__RDONLY_VC2__SHIFT 0x13
+#define GCEA_SDP_ARB_FINAL__RDONLY_VC3__SHIFT 0x14
+#define GCEA_SDP_ARB_FINAL__RDONLY_VC4__SHIFT 0x15
+#define GCEA_SDP_ARB_FINAL__RDONLY_VC5__SHIFT 0x16
+#define GCEA_SDP_ARB_FINAL__RDONLY_VC6__SHIFT 0x17
+#define GCEA_SDP_ARB_FINAL__RDONLY_VC7__SHIFT 0x18
+#define GCEA_SDP_ARB_FINAL__ERREVENT_ON_ERROR__SHIFT 0x19
+#define GCEA_SDP_ARB_FINAL__HALTREQ_ON_ERROR__SHIFT 0x1a
+#define GCEA_SDP_ARB_FINAL__DRAM_BURST_STRETCH__SHIFT 0x1b
+#define GCEA_SDP_ARB_FINAL__GMI_BURST_STRETCH__SHIFT 0x1c
+#define GCEA_SDP_ARB_FINAL__DRAM_BURST_LIMIT_MASK 0x0000001FL
+#define GCEA_SDP_ARB_FINAL__GMI_BURST_LIMIT_MASK 0x000003E0L
+#define GCEA_SDP_ARB_FINAL__IO_BURST_LIMIT_MASK 0x00007C00L
+#define GCEA_SDP_ARB_FINAL__BURST_LIMIT_MULTIPLIER_MASK 0x00018000L
+#define GCEA_SDP_ARB_FINAL__RDONLY_VC0_MASK 0x00020000L
+#define GCEA_SDP_ARB_FINAL__RDONLY_VC1_MASK 0x00040000L
+#define GCEA_SDP_ARB_FINAL__RDONLY_VC2_MASK 0x00080000L
+#define GCEA_SDP_ARB_FINAL__RDONLY_VC3_MASK 0x00100000L
+#define GCEA_SDP_ARB_FINAL__RDONLY_VC4_MASK 0x00200000L
+#define GCEA_SDP_ARB_FINAL__RDONLY_VC5_MASK 0x00400000L
+#define GCEA_SDP_ARB_FINAL__RDONLY_VC6_MASK 0x00800000L
+#define GCEA_SDP_ARB_FINAL__RDONLY_VC7_MASK 0x01000000L
+#define GCEA_SDP_ARB_FINAL__ERREVENT_ON_ERROR_MASK 0x02000000L
+#define GCEA_SDP_ARB_FINAL__HALTREQ_ON_ERROR_MASK 0x04000000L
+#define GCEA_SDP_ARB_FINAL__DRAM_BURST_STRETCH_MASK 0x08000000L
+#define GCEA_SDP_ARB_FINAL__GMI_BURST_STRETCH_MASK 0x10000000L
+//GCEA_SDP_DRAM_PRIORITY
+#define GCEA_SDP_DRAM_PRIORITY__RD_GROUP0_PRIORITY__SHIFT 0x0
+#define GCEA_SDP_DRAM_PRIORITY__RD_GROUP1_PRIORITY__SHIFT 0x4
+#define GCEA_SDP_DRAM_PRIORITY__RD_GROUP2_PRIORITY__SHIFT 0x8
+#define GCEA_SDP_DRAM_PRIORITY__RD_GROUP3_PRIORITY__SHIFT 0xc
+#define GCEA_SDP_DRAM_PRIORITY__WR_GROUP0_PRIORITY__SHIFT 0x10
+#define GCEA_SDP_DRAM_PRIORITY__WR_GROUP1_PRIORITY__SHIFT 0x14
+#define GCEA_SDP_DRAM_PRIORITY__WR_GROUP2_PRIORITY__SHIFT 0x18
+#define GCEA_SDP_DRAM_PRIORITY__WR_GROUP3_PRIORITY__SHIFT 0x1c
+#define GCEA_SDP_DRAM_PRIORITY__RD_GROUP0_PRIORITY_MASK 0x0000000FL
+#define GCEA_SDP_DRAM_PRIORITY__RD_GROUP1_PRIORITY_MASK 0x000000F0L
+#define GCEA_SDP_DRAM_PRIORITY__RD_GROUP2_PRIORITY_MASK 0x00000F00L
+#define GCEA_SDP_DRAM_PRIORITY__RD_GROUP3_PRIORITY_MASK 0x0000F000L
+#define GCEA_SDP_DRAM_PRIORITY__WR_GROUP0_PRIORITY_MASK 0x000F0000L
+#define GCEA_SDP_DRAM_PRIORITY__WR_GROUP1_PRIORITY_MASK 0x00F00000L
+#define GCEA_SDP_DRAM_PRIORITY__WR_GROUP2_PRIORITY_MASK 0x0F000000L
+#define GCEA_SDP_DRAM_PRIORITY__WR_GROUP3_PRIORITY_MASK 0xF0000000L
+//GCEA_SDP_IO_PRIORITY
+#define GCEA_SDP_IO_PRIORITY__RD_GROUP0_PRIORITY__SHIFT 0x0
+#define GCEA_SDP_IO_PRIORITY__RD_GROUP1_PRIORITY__SHIFT 0x4
+#define GCEA_SDP_IO_PRIORITY__RD_GROUP2_PRIORITY__SHIFT 0x8
+#define GCEA_SDP_IO_PRIORITY__RD_GROUP3_PRIORITY__SHIFT 0xc
+#define GCEA_SDP_IO_PRIORITY__WR_GROUP0_PRIORITY__SHIFT 0x10
+#define GCEA_SDP_IO_PRIORITY__WR_GROUP1_PRIORITY__SHIFT 0x14
+#define GCEA_SDP_IO_PRIORITY__WR_GROUP2_PRIORITY__SHIFT 0x18
+#define GCEA_SDP_IO_PRIORITY__WR_GROUP3_PRIORITY__SHIFT 0x1c
+#define GCEA_SDP_IO_PRIORITY__RD_GROUP0_PRIORITY_MASK 0x0000000FL
+#define GCEA_SDP_IO_PRIORITY__RD_GROUP1_PRIORITY_MASK 0x000000F0L
+#define GCEA_SDP_IO_PRIORITY__RD_GROUP2_PRIORITY_MASK 0x00000F00L
+#define GCEA_SDP_IO_PRIORITY__RD_GROUP3_PRIORITY_MASK 0x0000F000L
+#define GCEA_SDP_IO_PRIORITY__WR_GROUP0_PRIORITY_MASK 0x000F0000L
+#define GCEA_SDP_IO_PRIORITY__WR_GROUP1_PRIORITY_MASK 0x00F00000L
+#define GCEA_SDP_IO_PRIORITY__WR_GROUP2_PRIORITY_MASK 0x0F000000L
+#define GCEA_SDP_IO_PRIORITY__WR_GROUP3_PRIORITY_MASK 0xF0000000L
+//GCEA_SDP_CREDITS
+#define GCEA_SDP_CREDITS__TAG_LIMIT__SHIFT 0x0
+#define GCEA_SDP_CREDITS__WR_RESP_CREDITS__SHIFT 0x8
+#define GCEA_SDP_CREDITS__RD_RESP_CREDITS__SHIFT 0x10
+#define GCEA_SDP_CREDITS__PRB_REQ_CREDITS__SHIFT 0x18
+#define GCEA_SDP_CREDITS__TAG_LIMIT_MASK 0x000000FFL
+#define GCEA_SDP_CREDITS__WR_RESP_CREDITS_MASK 0x00007F00L
+#define GCEA_SDP_CREDITS__RD_RESP_CREDITS_MASK 0x007F0000L
+#define GCEA_SDP_CREDITS__PRB_REQ_CREDITS_MASK 0x3F000000L
+//GCEA_SDP_TAG_RESERVE0
+#define GCEA_SDP_TAG_RESERVE0__VC0__SHIFT 0x0
+#define GCEA_SDP_TAG_RESERVE0__VC1__SHIFT 0x8
+#define GCEA_SDP_TAG_RESERVE0__VC2__SHIFT 0x10
+#define GCEA_SDP_TAG_RESERVE0__VC3__SHIFT 0x18
+#define GCEA_SDP_TAG_RESERVE0__VC0_MASK 0x000000FFL
+#define GCEA_SDP_TAG_RESERVE0__VC1_MASK 0x0000FF00L
+#define GCEA_SDP_TAG_RESERVE0__VC2_MASK 0x00FF0000L
+#define GCEA_SDP_TAG_RESERVE0__VC3_MASK 0xFF000000L
+//GCEA_SDP_TAG_RESERVE1
+#define GCEA_SDP_TAG_RESERVE1__VC4__SHIFT 0x0
+#define GCEA_SDP_TAG_RESERVE1__VC5__SHIFT 0x8
+#define GCEA_SDP_TAG_RESERVE1__VC6__SHIFT 0x10
+#define GCEA_SDP_TAG_RESERVE1__VC7__SHIFT 0x18
+#define GCEA_SDP_TAG_RESERVE1__VC4_MASK 0x000000FFL
+#define GCEA_SDP_TAG_RESERVE1__VC5_MASK 0x0000FF00L
+#define GCEA_SDP_TAG_RESERVE1__VC6_MASK 0x00FF0000L
+#define GCEA_SDP_TAG_RESERVE1__VC7_MASK 0xFF000000L
+//GCEA_SDP_VCC_RESERVE0
+#define GCEA_SDP_VCC_RESERVE0__VC0_CREDITS__SHIFT 0x0
+#define GCEA_SDP_VCC_RESERVE0__VC1_CREDITS__SHIFT 0x6
+#define GCEA_SDP_VCC_RESERVE0__VC2_CREDITS__SHIFT 0xc
+#define GCEA_SDP_VCC_RESERVE0__VC3_CREDITS__SHIFT 0x12
+#define GCEA_SDP_VCC_RESERVE0__VC4_CREDITS__SHIFT 0x18
+#define GCEA_SDP_VCC_RESERVE0__VC0_CREDITS_MASK 0x0000003FL
+#define GCEA_SDP_VCC_RESERVE0__VC1_CREDITS_MASK 0x00000FC0L
+#define GCEA_SDP_VCC_RESERVE0__VC2_CREDITS_MASK 0x0003F000L
+#define GCEA_SDP_VCC_RESERVE0__VC3_CREDITS_MASK 0x00FC0000L
+#define GCEA_SDP_VCC_RESERVE0__VC4_CREDITS_MASK 0x3F000000L
+//GCEA_SDP_VCC_RESERVE1
+#define GCEA_SDP_VCC_RESERVE1__VC5_CREDITS__SHIFT 0x0
+#define GCEA_SDP_VCC_RESERVE1__VC6_CREDITS__SHIFT 0x6
+#define GCEA_SDP_VCC_RESERVE1__VC7_CREDITS__SHIFT 0xc
+#define GCEA_SDP_VCC_RESERVE1__DISTRIBUTE_POOL__SHIFT 0x1f
+#define GCEA_SDP_VCC_RESERVE1__VC5_CREDITS_MASK 0x0000003FL
+#define GCEA_SDP_VCC_RESERVE1__VC6_CREDITS_MASK 0x00000FC0L
+#define GCEA_SDP_VCC_RESERVE1__VC7_CREDITS_MASK 0x0003F000L
+#define GCEA_SDP_VCC_RESERVE1__DISTRIBUTE_POOL_MASK 0x80000000L
+//GCEA_SDP_VCD_RESERVE0
+#define GCEA_SDP_VCD_RESERVE0__VC0_CREDITS__SHIFT 0x0
+#define GCEA_SDP_VCD_RESERVE0__VC1_CREDITS__SHIFT 0x6
+#define GCEA_SDP_VCD_RESERVE0__VC2_CREDITS__SHIFT 0xc
+#define GCEA_SDP_VCD_RESERVE0__VC3_CREDITS__SHIFT 0x12
+#define GCEA_SDP_VCD_RESERVE0__VC4_CREDITS__SHIFT 0x18
+#define GCEA_SDP_VCD_RESERVE0__VC0_CREDITS_MASK 0x0000003FL
+#define GCEA_SDP_VCD_RESERVE0__VC1_CREDITS_MASK 0x00000FC0L
+#define GCEA_SDP_VCD_RESERVE0__VC2_CREDITS_MASK 0x0003F000L
+#define GCEA_SDP_VCD_RESERVE0__VC3_CREDITS_MASK 0x00FC0000L
+#define GCEA_SDP_VCD_RESERVE0__VC4_CREDITS_MASK 0x3F000000L
+//GCEA_SDP_VCD_RESERVE1
+#define GCEA_SDP_VCD_RESERVE1__VC5_CREDITS__SHIFT 0x0
+#define GCEA_SDP_VCD_RESERVE1__VC6_CREDITS__SHIFT 0x6
+#define GCEA_SDP_VCD_RESERVE1__VC7_CREDITS__SHIFT 0xc
+#define GCEA_SDP_VCD_RESERVE1__DISTRIBUTE_POOL__SHIFT 0x1f
+#define GCEA_SDP_VCD_RESERVE1__VC5_CREDITS_MASK 0x0000003FL
+#define GCEA_SDP_VCD_RESERVE1__VC6_CREDITS_MASK 0x00000FC0L
+#define GCEA_SDP_VCD_RESERVE1__VC7_CREDITS_MASK 0x0003F000L
+#define GCEA_SDP_VCD_RESERVE1__DISTRIBUTE_POOL_MASK 0x80000000L
+//GCEA_SDP_REQ_CNTL
+#define GCEA_SDP_REQ_CNTL__REQ_PASS_PW_OVERRIDE_READ__SHIFT 0x0
+#define GCEA_SDP_REQ_CNTL__REQ_PASS_PW_OVERRIDE_WRITE__SHIFT 0x1
+#define GCEA_SDP_REQ_CNTL__REQ_PASS_PW_OVERRIDE_ATOMIC__SHIFT 0x2
+#define GCEA_SDP_REQ_CNTL__REQ_CHAIN_OVERRIDE_DRAM__SHIFT 0x3
+#define GCEA_SDP_REQ_CNTL__REQ_CHAIN_OVERRIDE_GMI__SHIFT 0x4
+#define GCEA_SDP_REQ_CNTL__INNER_DOMAIN_MODE__SHIFT 0x5
+#define GCEA_SDP_REQ_CNTL__REQ_BLOCK_LEVEL_READ__SHIFT 0x6
+#define GCEA_SDP_REQ_CNTL__REQ_BLOCK_LEVEL_WRITE__SHIFT 0x8
+#define GCEA_SDP_REQ_CNTL__REQ_BLOCK_LEVEL_ATOMIC__SHIFT 0xa
+#define GCEA_SDP_REQ_CNTL__REQ_PASS_PW_OVERRIDE_READ_MASK 0x00000001L
+#define GCEA_SDP_REQ_CNTL__REQ_PASS_PW_OVERRIDE_WRITE_MASK 0x00000002L
+#define GCEA_SDP_REQ_CNTL__REQ_PASS_PW_OVERRIDE_ATOMIC_MASK 0x00000004L
+#define GCEA_SDP_REQ_CNTL__REQ_CHAIN_OVERRIDE_DRAM_MASK 0x00000008L
+#define GCEA_SDP_REQ_CNTL__REQ_CHAIN_OVERRIDE_GMI_MASK 0x00000010L
+#define GCEA_SDP_REQ_CNTL__INNER_DOMAIN_MODE_MASK 0x00000020L
+#define GCEA_SDP_REQ_CNTL__REQ_BLOCK_LEVEL_READ_MASK 0x000000C0L
+#define GCEA_SDP_REQ_CNTL__REQ_BLOCK_LEVEL_WRITE_MASK 0x00000300L
+#define GCEA_SDP_REQ_CNTL__REQ_BLOCK_LEVEL_ATOMIC_MASK 0x00000C00L
+//GCEA_MISC
+#define GCEA_MISC__RELATIVE_PRI_IN_DRAM_RD_ARB__SHIFT 0x0
+#define GCEA_MISC__RELATIVE_PRI_IN_DRAM_WR_ARB__SHIFT 0x1
+#define GCEA_MISC__RELATIVE_PRI_IN_GMI_RD_ARB__SHIFT 0x2
+#define GCEA_MISC__RELATIVE_PRI_IN_GMI_WR_ARB__SHIFT 0x3
+#define GCEA_MISC__RELATIVE_PRI_IN_IO_RD_ARB__SHIFT 0x4
+#define GCEA_MISC__RELATIVE_PRI_IN_IO_WR_ARB__SHIFT 0x5
+#define GCEA_MISC__EARLYWRRET_ENABLE_VC0__SHIFT 0x6
+#define GCEA_MISC__EARLYWRRET_ENABLE_VC1__SHIFT 0x7
+#define GCEA_MISC__EARLYWRRET_ENABLE_VC2__SHIFT 0x8
+#define GCEA_MISC__EARLYWRRET_ENABLE_VC3__SHIFT 0x9
+#define GCEA_MISC__EARLYWRRET_ENABLE_VC4__SHIFT 0xa
+#define GCEA_MISC__EARLYWRRET_ENABLE_VC5__SHIFT 0xb
+#define GCEA_MISC__EARLYWRRET_ENABLE_VC6__SHIFT 0xc
+#define GCEA_MISC__EARLYWRRET_ENABLE_VC7__SHIFT 0xd
+#define GCEA_MISC__EARLY_SDP_ORIGDATA__SHIFT 0xe
+#define GCEA_MISC__LINKMGR_DYNAMIC_MODE__SHIFT 0xf
+#define GCEA_MISC__LINKMGR_HALT_THRESHOLD__SHIFT 0x11
+#define GCEA_MISC__LINKMGR_RECONNECT_DELAY__SHIFT 0x13
+#define GCEA_MISC__LINKMGR_IDLE_THRESHOLD__SHIFT 0x15
+#define GCEA_MISC__FAVOUR_MIDCHAIN_CS_IN_DRAM_ARB__SHIFT 0x1a
+#define GCEA_MISC__FAVOUR_MIDCHAIN_CS_IN_GMI_ARB__SHIFT 0x1b
+#define GCEA_MISC__FAVOUR_LAST_CS_IN_DRAM_ARB__SHIFT 0x1c
+#define GCEA_MISC__FAVOUR_LAST_CS_IN_GMI_ARB__SHIFT 0x1d
+#define GCEA_MISC__SWITCH_CS_ON_W2R_IN_DRAM_ARB__SHIFT 0x1e
+#define GCEA_MISC__SWITCH_CS_ON_W2R_IN_GMI_ARB__SHIFT 0x1f
+#define GCEA_MISC__RELATIVE_PRI_IN_DRAM_RD_ARB_MASK 0x00000001L
+#define GCEA_MISC__RELATIVE_PRI_IN_DRAM_WR_ARB_MASK 0x00000002L
+#define GCEA_MISC__RELATIVE_PRI_IN_GMI_RD_ARB_MASK 0x00000004L
+#define GCEA_MISC__RELATIVE_PRI_IN_GMI_WR_ARB_MASK 0x00000008L
+#define GCEA_MISC__RELATIVE_PRI_IN_IO_RD_ARB_MASK 0x00000010L
+#define GCEA_MISC__RELATIVE_PRI_IN_IO_WR_ARB_MASK 0x00000020L
+#define GCEA_MISC__EARLYWRRET_ENABLE_VC0_MASK 0x00000040L
+#define GCEA_MISC__EARLYWRRET_ENABLE_VC1_MASK 0x00000080L
+#define GCEA_MISC__EARLYWRRET_ENABLE_VC2_MASK 0x00000100L
+#define GCEA_MISC__EARLYWRRET_ENABLE_VC3_MASK 0x00000200L
+#define GCEA_MISC__EARLYWRRET_ENABLE_VC4_MASK 0x00000400L
+#define GCEA_MISC__EARLYWRRET_ENABLE_VC5_MASK 0x00000800L
+#define GCEA_MISC__EARLYWRRET_ENABLE_VC6_MASK 0x00001000L
+#define GCEA_MISC__EARLYWRRET_ENABLE_VC7_MASK 0x00002000L
+#define GCEA_MISC__EARLY_SDP_ORIGDATA_MASK 0x00004000L
+#define GCEA_MISC__LINKMGR_DYNAMIC_MODE_MASK 0x00018000L
+#define GCEA_MISC__LINKMGR_HALT_THRESHOLD_MASK 0x00060000L
+#define GCEA_MISC__LINKMGR_RECONNECT_DELAY_MASK 0x00180000L
+#define GCEA_MISC__LINKMGR_IDLE_THRESHOLD_MASK 0x03E00000L
+#define GCEA_MISC__FAVOUR_MIDCHAIN_CS_IN_DRAM_ARB_MASK 0x04000000L
+#define GCEA_MISC__FAVOUR_MIDCHAIN_CS_IN_GMI_ARB_MASK 0x08000000L
+#define GCEA_MISC__FAVOUR_LAST_CS_IN_DRAM_ARB_MASK 0x10000000L
+#define GCEA_MISC__FAVOUR_LAST_CS_IN_GMI_ARB_MASK 0x20000000L
+#define GCEA_MISC__SWITCH_CS_ON_W2R_IN_DRAM_ARB_MASK 0x40000000L
+#define GCEA_MISC__SWITCH_CS_ON_W2R_IN_GMI_ARB_MASK 0x80000000L
+//GCEA_LATENCY_SAMPLING
+#define GCEA_LATENCY_SAMPLING__SAMPLER0_DRAM__SHIFT 0x0
+#define GCEA_LATENCY_SAMPLING__SAMPLER1_DRAM__SHIFT 0x1
+#define GCEA_LATENCY_SAMPLING__SAMPLER0_GMI__SHIFT 0x2
+#define GCEA_LATENCY_SAMPLING__SAMPLER1_GMI__SHIFT 0x3
+#define GCEA_LATENCY_SAMPLING__SAMPLER0_IO__SHIFT 0x4
+#define GCEA_LATENCY_SAMPLING__SAMPLER1_IO__SHIFT 0x5
+#define GCEA_LATENCY_SAMPLING__SAMPLER0_READ__SHIFT 0x6
+#define GCEA_LATENCY_SAMPLING__SAMPLER1_READ__SHIFT 0x7
+#define GCEA_LATENCY_SAMPLING__SAMPLER0_WRITE__SHIFT 0x8
+#define GCEA_LATENCY_SAMPLING__SAMPLER1_WRITE__SHIFT 0x9
+#define GCEA_LATENCY_SAMPLING__SAMPLER0_ATOMIC_RET__SHIFT 0xa
+#define GCEA_LATENCY_SAMPLING__SAMPLER1_ATOMIC_RET__SHIFT 0xb
+#define GCEA_LATENCY_SAMPLING__SAMPLER0_ATOMIC_NORET__SHIFT 0xc
+#define GCEA_LATENCY_SAMPLING__SAMPLER1_ATOMIC_NORET__SHIFT 0xd
+#define GCEA_LATENCY_SAMPLING__SAMPLER0_VC__SHIFT 0xe
+#define GCEA_LATENCY_SAMPLING__SAMPLER1_VC__SHIFT 0x16
+#define GCEA_LATENCY_SAMPLING__SAMPLER0_DRAM_MASK 0x00000001L
+#define GCEA_LATENCY_SAMPLING__SAMPLER1_DRAM_MASK 0x00000002L
+#define GCEA_LATENCY_SAMPLING__SAMPLER0_GMI_MASK 0x00000004L
+#define GCEA_LATENCY_SAMPLING__SAMPLER1_GMI_MASK 0x00000008L
+#define GCEA_LATENCY_SAMPLING__SAMPLER0_IO_MASK 0x00000010L
+#define GCEA_LATENCY_SAMPLING__SAMPLER1_IO_MASK 0x00000020L
+#define GCEA_LATENCY_SAMPLING__SAMPLER0_READ_MASK 0x00000040L
+#define GCEA_LATENCY_SAMPLING__SAMPLER1_READ_MASK 0x00000080L
+#define GCEA_LATENCY_SAMPLING__SAMPLER0_WRITE_MASK 0x00000100L
+#define GCEA_LATENCY_SAMPLING__SAMPLER1_WRITE_MASK 0x00000200L
+#define GCEA_LATENCY_SAMPLING__SAMPLER0_ATOMIC_RET_MASK 0x00000400L
+#define GCEA_LATENCY_SAMPLING__SAMPLER1_ATOMIC_RET_MASK 0x00000800L
+#define GCEA_LATENCY_SAMPLING__SAMPLER0_ATOMIC_NORET_MASK 0x00001000L
+#define GCEA_LATENCY_SAMPLING__SAMPLER1_ATOMIC_NORET_MASK 0x00002000L
+#define GCEA_LATENCY_SAMPLING__SAMPLER0_VC_MASK 0x003FC000L
+#define GCEA_LATENCY_SAMPLING__SAMPLER1_VC_MASK 0x3FC00000L
+//GCEA_PERFCOUNTER_LO
+#define GCEA_PERFCOUNTER_LO__COUNTER_LO__SHIFT 0x0
+#define GCEA_PERFCOUNTER_LO__COUNTER_LO_MASK 0xFFFFFFFFL
+//GCEA_PERFCOUNTER_HI
+#define GCEA_PERFCOUNTER_HI__COUNTER_HI__SHIFT 0x0
+#define GCEA_PERFCOUNTER_HI__COMPARE_VALUE__SHIFT 0x10
+#define GCEA_PERFCOUNTER_HI__COUNTER_HI_MASK 0x0000FFFFL
+#define GCEA_PERFCOUNTER_HI__COMPARE_VALUE_MASK 0xFFFF0000L
+//GCEA_PERFCOUNTER0_CFG
+#define GCEA_PERFCOUNTER0_CFG__PERF_SEL__SHIFT 0x0
+#define GCEA_PERFCOUNTER0_CFG__PERF_SEL_END__SHIFT 0x8
+#define GCEA_PERFCOUNTER0_CFG__PERF_MODE__SHIFT 0x18
+#define GCEA_PERFCOUNTER0_CFG__ENABLE__SHIFT 0x1c
+#define GCEA_PERFCOUNTER0_CFG__CLEAR__SHIFT 0x1d
+#define GCEA_PERFCOUNTER0_CFG__PERF_SEL_MASK 0x000000FFL
+#define GCEA_PERFCOUNTER0_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define GCEA_PERFCOUNTER0_CFG__PERF_MODE_MASK 0x0F000000L
+#define GCEA_PERFCOUNTER0_CFG__ENABLE_MASK 0x10000000L
+#define GCEA_PERFCOUNTER0_CFG__CLEAR_MASK 0x20000000L
+//GCEA_PERFCOUNTER1_CFG
+#define GCEA_PERFCOUNTER1_CFG__PERF_SEL__SHIFT 0x0
+#define GCEA_PERFCOUNTER1_CFG__PERF_SEL_END__SHIFT 0x8
+#define GCEA_PERFCOUNTER1_CFG__PERF_MODE__SHIFT 0x18
+#define GCEA_PERFCOUNTER1_CFG__ENABLE__SHIFT 0x1c
+#define GCEA_PERFCOUNTER1_CFG__CLEAR__SHIFT 0x1d
+#define GCEA_PERFCOUNTER1_CFG__PERF_SEL_MASK 0x000000FFL
+#define GCEA_PERFCOUNTER1_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define GCEA_PERFCOUNTER1_CFG__PERF_MODE_MASK 0x0F000000L
+#define GCEA_PERFCOUNTER1_CFG__ENABLE_MASK 0x10000000L
+#define GCEA_PERFCOUNTER1_CFG__CLEAR_MASK 0x20000000L
+
+
+// addressBlock: xcd0_gc_ea_gceadec2
+//GCEA_PERFCOUNTER_RSLT_CNTL
+#define GCEA_PERFCOUNTER_RSLT_CNTL__PERF_COUNTER_SELECT__SHIFT 0x0
+#define GCEA_PERFCOUNTER_RSLT_CNTL__START_TRIGGER__SHIFT 0x8
+#define GCEA_PERFCOUNTER_RSLT_CNTL__STOP_TRIGGER__SHIFT 0x10
+#define GCEA_PERFCOUNTER_RSLT_CNTL__ENABLE_ANY__SHIFT 0x18
+#define GCEA_PERFCOUNTER_RSLT_CNTL__CLEAR_ALL__SHIFT 0x19
+#define GCEA_PERFCOUNTER_RSLT_CNTL__STOP_ALL_ON_SATURATE__SHIFT 0x1a
+#define GCEA_PERFCOUNTER_RSLT_CNTL__PERF_COUNTER_SELECT_MASK 0x0000000FL
+#define GCEA_PERFCOUNTER_RSLT_CNTL__START_TRIGGER_MASK 0x0000FF00L
+#define GCEA_PERFCOUNTER_RSLT_CNTL__STOP_TRIGGER_MASK 0x00FF0000L
+#define GCEA_PERFCOUNTER_RSLT_CNTL__ENABLE_ANY_MASK 0x01000000L
+#define GCEA_PERFCOUNTER_RSLT_CNTL__CLEAR_ALL_MASK 0x02000000L
+#define GCEA_PERFCOUNTER_RSLT_CNTL__STOP_ALL_ON_SATURATE_MASK 0x04000000L
+//GCEA_MAM_CTRL
+#define GCEA_MAM_CTRL__ADRAM_MODE__SHIFT 0x0
+#define GCEA_MAM_CTRL__ADRAM_COALESCE_DISABLE__SHIFT 0x2
+#define GCEA_MAM_CTRL__ARAM_FLUSH_CNTR_THRESHOLD__SHIFT 0x3
+#define GCEA_MAM_CTRL__ARAM_FLUSH_CNTR_DISABLE__SHIFT 0x6
+#define GCEA_MAM_CTRL__ARAM_FORCE_FLUSH__SHIFT 0x7
+#define GCEA_MAM_CTRL__ALOG_MODE1_FILTER1_THRESHOLD__SHIFT 0x8
+#define GCEA_MAM_CTRL__ALOG_MODE1_FILTER2_BYPASS__SHIFT 0xb
+#define GCEA_MAM_CTRL__ALOG_ACTIVE__SHIFT 0xc
+#define GCEA_MAM_CTRL__SDP_PRIORITY__SHIFT 0xd
+#define GCEA_MAM_CTRL__CLIENT_ID__SHIFT 0x11
+#define GCEA_MAM_CTRL__MAM_DISABLE__SHIFT 0x16
+#define GCEA_MAM_CTRL__ARAM_FLUSH_RB_SIZE__SHIFT 0x17
+#define GCEA_MAM_CTRL__ALOG_MODE__SHIFT 0x1b
+#define GCEA_MAM_CTRL__ALOG_MODE2_LOCK_WINDOW__SHIFT 0x1c
+#define GCEA_MAM_CTRL__ALOG_TRACK_2M_SEGMENT__SHIFT 0x1f
+#define GCEA_MAM_CTRL__ADRAM_MODE_MASK 0x00000003L
+#define GCEA_MAM_CTRL__ADRAM_COALESCE_DISABLE_MASK 0x00000004L
+#define GCEA_MAM_CTRL__ARAM_FLUSH_CNTR_THRESHOLD_MASK 0x00000038L
+#define GCEA_MAM_CTRL__ARAM_FLUSH_CNTR_DISABLE_MASK 0x00000040L
+#define GCEA_MAM_CTRL__ARAM_FORCE_FLUSH_MASK 0x00000080L
+#define GCEA_MAM_CTRL__ALOG_MODE1_FILTER1_THRESHOLD_MASK 0x00000700L
+#define GCEA_MAM_CTRL__ALOG_MODE1_FILTER2_BYPASS_MASK 0x00000800L
+#define GCEA_MAM_CTRL__ALOG_ACTIVE_MASK 0x00001000L
+#define GCEA_MAM_CTRL__SDP_PRIORITY_MASK 0x0001E000L
+#define GCEA_MAM_CTRL__CLIENT_ID_MASK 0x003E0000L
+#define GCEA_MAM_CTRL__MAM_DISABLE_MASK 0x00400000L
+#define GCEA_MAM_CTRL__ARAM_FLUSH_RB_SIZE_MASK 0x07800000L
+#define GCEA_MAM_CTRL__ALOG_MODE_MASK 0x08000000L
+#define GCEA_MAM_CTRL__ALOG_MODE2_LOCK_WINDOW_MASK 0x70000000L
+#define GCEA_MAM_CTRL__ALOG_TRACK_2M_SEGMENT_MASK 0x80000000L
+//GCEA_MAM_CTRL2
+#define GCEA_MAM_CTRL2__ALOG_MODE2_INTR_THRESHOLD__SHIFT 0x0
+#define GCEA_MAM_CTRL2__ALOG_SPACE_EN__SHIFT 0x2
+#define GCEA_MAM_CTRL2__ARAM_FLUSH_SNOOP_EN__SHIFT 0x5
+#define GCEA_MAM_CTRL2__ARAM_FLUSH_NOALLOC__SHIFT 0x6
+#define GCEA_MAM_CTRL2__RESERVED_FIELD__SHIFT 0x7
+#define GCEA_MAM_CTRL2__ADDR_HI__SHIFT 0x18
+#define GCEA_MAM_CTRL2__ALOG_MODE2_INTR_THRESHOLD_MASK 0x00000003L
+#define GCEA_MAM_CTRL2__ALOG_SPACE_EN_MASK 0x0000001CL
+#define GCEA_MAM_CTRL2__ARAM_FLUSH_SNOOP_EN_MASK 0x00000020L
+#define GCEA_MAM_CTRL2__ARAM_FLUSH_NOALLOC_MASK 0x00000040L
+#define GCEA_MAM_CTRL2__RESERVED_FIELD_MASK 0x00FFFF80L
+#define GCEA_MAM_CTRL2__ADDR_HI_MASK 0xFF000000L
+//GCEA_DSM_CNTL
+#define GCEA_DSM_CNTL__DRAMRD_CMDMEM_DSM_IRRITATOR_DATA__SHIFT 0x0
+#define GCEA_DSM_CNTL__DRAMRD_CMDMEM_ENABLE_SINGLE_WRITE__SHIFT 0x2
+#define GCEA_DSM_CNTL__DRAMWR_CMDMEM_DSM_IRRITATOR_DATA__SHIFT 0x3
+#define GCEA_DSM_CNTL__DRAMWR_CMDMEM_ENABLE_SINGLE_WRITE__SHIFT 0x5
+#define GCEA_DSM_CNTL__DRAMWR_DATAMEM_DSM_IRRITATOR_DATA__SHIFT 0x6
+#define GCEA_DSM_CNTL__DRAMWR_DATAMEM_ENABLE_SINGLE_WRITE__SHIFT 0x8
+#define GCEA_DSM_CNTL__RRET_TAGMEM_DSM_IRRITATOR_DATA__SHIFT 0x9
+#define GCEA_DSM_CNTL__RRET_TAGMEM_ENABLE_SINGLE_WRITE__SHIFT 0xb
+#define GCEA_DSM_CNTL__WRET_TAGMEM_DSM_IRRITATOR_DATA__SHIFT 0xc
+#define GCEA_DSM_CNTL__WRET_TAGMEM_ENABLE_SINGLE_WRITE__SHIFT 0xe
+#define GCEA_DSM_CNTL__GMIRD_CMDMEM_DSM_IRRITATOR_DATA__SHIFT 0xf
+#define GCEA_DSM_CNTL__GMIRD_CMDMEM_ENABLE_SINGLE_WRITE__SHIFT 0x11
+#define GCEA_DSM_CNTL__GMIWR_CMDMEM_DSM_IRRITATOR_DATA__SHIFT 0x12
+#define GCEA_DSM_CNTL__GMIWR_CMDMEM_ENABLE_SINGLE_WRITE__SHIFT 0x14
+#define GCEA_DSM_CNTL__GMIWR_DATAMEM_DSM_IRRITATOR_DATA__SHIFT 0x15
+#define GCEA_DSM_CNTL__GMIWR_DATAMEM_ENABLE_SINGLE_WRITE__SHIFT 0x17
+#define GCEA_DSM_CNTL__DRAMRD_CMDMEM_DSM_IRRITATOR_DATA_MASK 0x00000003L
+#define GCEA_DSM_CNTL__DRAMRD_CMDMEM_ENABLE_SINGLE_WRITE_MASK 0x00000004L
+#define GCEA_DSM_CNTL__DRAMWR_CMDMEM_DSM_IRRITATOR_DATA_MASK 0x00000018L
+#define GCEA_DSM_CNTL__DRAMWR_CMDMEM_ENABLE_SINGLE_WRITE_MASK 0x00000020L
+#define GCEA_DSM_CNTL__DRAMWR_DATAMEM_DSM_IRRITATOR_DATA_MASK 0x000000C0L
+#define GCEA_DSM_CNTL__DRAMWR_DATAMEM_ENABLE_SINGLE_WRITE_MASK 0x00000100L
+#define GCEA_DSM_CNTL__RRET_TAGMEM_DSM_IRRITATOR_DATA_MASK 0x00000600L
+#define GCEA_DSM_CNTL__RRET_TAGMEM_ENABLE_SINGLE_WRITE_MASK 0x00000800L
+#define GCEA_DSM_CNTL__WRET_TAGMEM_DSM_IRRITATOR_DATA_MASK 0x00003000L
+#define GCEA_DSM_CNTL__WRET_TAGMEM_ENABLE_SINGLE_WRITE_MASK 0x00004000L
+#define GCEA_DSM_CNTL__GMIRD_CMDMEM_DSM_IRRITATOR_DATA_MASK 0x00018000L
+#define GCEA_DSM_CNTL__GMIRD_CMDMEM_ENABLE_SINGLE_WRITE_MASK 0x00020000L
+#define GCEA_DSM_CNTL__GMIWR_CMDMEM_DSM_IRRITATOR_DATA_MASK 0x000C0000L
+#define GCEA_DSM_CNTL__GMIWR_CMDMEM_ENABLE_SINGLE_WRITE_MASK 0x00100000L
+#define GCEA_DSM_CNTL__GMIWR_DATAMEM_DSM_IRRITATOR_DATA_MASK 0x00600000L
+#define GCEA_DSM_CNTL__GMIWR_DATAMEM_ENABLE_SINGLE_WRITE_MASK 0x00800000L
+//GCEA_DSM_CNTLA
+#define GCEA_DSM_CNTLA__DRAMRD_PAGEMEM_DSM_IRRITATOR_DATA__SHIFT 0x0
+#define GCEA_DSM_CNTLA__DRAMRD_PAGEMEM_ENABLE_SINGLE_WRITE__SHIFT 0x2
+#define GCEA_DSM_CNTLA__DRAMWR_PAGEMEM_DSM_IRRITATOR_DATA__SHIFT 0x3
+#define GCEA_DSM_CNTLA__DRAMWR_PAGEMEM_ENABLE_SINGLE_WRITE__SHIFT 0x5
+#define GCEA_DSM_CNTLA__IORD_CMDMEM_DSM_IRRITATOR_DATA__SHIFT 0x6
+#define GCEA_DSM_CNTLA__IORD_CMDMEM_ENABLE_SINGLE_WRITE__SHIFT 0x8
+#define GCEA_DSM_CNTLA__IOWR_CMDMEM_DSM_IRRITATOR_DATA__SHIFT 0x9
+#define GCEA_DSM_CNTLA__IOWR_CMDMEM_ENABLE_SINGLE_WRITE__SHIFT 0xb
+#define GCEA_DSM_CNTLA__IOWR_DATAMEM_DSM_IRRITATOR_DATA__SHIFT 0xc
+#define GCEA_DSM_CNTLA__IOWR_DATAMEM_ENABLE_SINGLE_WRITE__SHIFT 0xe
+#define GCEA_DSM_CNTLA__GMIRD_PAGEMEM_DSM_IRRITATOR_DATA__SHIFT 0xf
+#define GCEA_DSM_CNTLA__GMIRD_PAGEMEM_ENABLE_SINGLE_WRITE__SHIFT 0x11
+#define GCEA_DSM_CNTLA__GMIWR_PAGEMEM_DSM_IRRITATOR_DATA__SHIFT 0x12
+#define GCEA_DSM_CNTLA__GMIWR_PAGEMEM_ENABLE_SINGLE_WRITE__SHIFT 0x14
+#define GCEA_DSM_CNTLA__DRAMRD_PAGEMEM_DSM_IRRITATOR_DATA_MASK 0x00000003L
+#define GCEA_DSM_CNTLA__DRAMRD_PAGEMEM_ENABLE_SINGLE_WRITE_MASK 0x00000004L
+#define GCEA_DSM_CNTLA__DRAMWR_PAGEMEM_DSM_IRRITATOR_DATA_MASK 0x00000018L
+#define GCEA_DSM_CNTLA__DRAMWR_PAGEMEM_ENABLE_SINGLE_WRITE_MASK 0x00000020L
+#define GCEA_DSM_CNTLA__IORD_CMDMEM_DSM_IRRITATOR_DATA_MASK 0x000000C0L
+#define GCEA_DSM_CNTLA__IORD_CMDMEM_ENABLE_SINGLE_WRITE_MASK 0x00000100L
+#define GCEA_DSM_CNTLA__IOWR_CMDMEM_DSM_IRRITATOR_DATA_MASK 0x00000600L
+#define GCEA_DSM_CNTLA__IOWR_CMDMEM_ENABLE_SINGLE_WRITE_MASK 0x00000800L
+#define GCEA_DSM_CNTLA__IOWR_DATAMEM_DSM_IRRITATOR_DATA_MASK 0x00003000L
+#define GCEA_DSM_CNTLA__IOWR_DATAMEM_ENABLE_SINGLE_WRITE_MASK 0x00004000L
+#define GCEA_DSM_CNTLA__GMIRD_PAGEMEM_DSM_IRRITATOR_DATA_MASK 0x00018000L
+#define GCEA_DSM_CNTLA__GMIRD_PAGEMEM_ENABLE_SINGLE_WRITE_MASK 0x00020000L
+#define GCEA_DSM_CNTLA__GMIWR_PAGEMEM_DSM_IRRITATOR_DATA_MASK 0x000C0000L
+#define GCEA_DSM_CNTLA__GMIWR_PAGEMEM_ENABLE_SINGLE_WRITE_MASK 0x00100000L
+//GCEA_DSM_CNTLB
+#define GCEA_DSM_CNTLB__MAM_D0MEM_DSM_IRRITATOR_DATA__SHIFT 0x0
+#define GCEA_DSM_CNTLB__MAM_D0MEM_ENABLE_SINGLE_WRITE__SHIFT 0x2
+#define GCEA_DSM_CNTLB__MAM_D1MEM_DSM_IRRITATOR_DATA__SHIFT 0x3
+#define GCEA_DSM_CNTLB__MAM_D1MEM_ENABLE_SINGLE_WRITE__SHIFT 0x5
+#define GCEA_DSM_CNTLB__MAM_D2MEM_DSM_IRRITATOR_DATA__SHIFT 0x6
+#define GCEA_DSM_CNTLB__MAM_D2MEM_ENABLE_SINGLE_WRITE__SHIFT 0x8
+#define GCEA_DSM_CNTLB__MAM_D3MEM_DSM_IRRITATOR_DATA__SHIFT 0x9
+#define GCEA_DSM_CNTLB__MAM_D3MEM_ENABLE_SINGLE_WRITE__SHIFT 0xb
+#define GCEA_DSM_CNTLB__MAM_A0MEM_DSM_IRRITATOR_DATA__SHIFT 0xc
+#define GCEA_DSM_CNTLB__MAM_A0MEM_ENABLE_SINGLE_WRITE__SHIFT 0xe
+#define GCEA_DSM_CNTLB__MAM_A1MEM_DSM_IRRITATOR_DATA__SHIFT 0xf
+#define GCEA_DSM_CNTLB__MAM_A1MEM_ENABLE_SINGLE_WRITE__SHIFT 0x11
+#define GCEA_DSM_CNTLB__MAM_A2MEM_DSM_IRRITATOR_DATA__SHIFT 0x12
+#define GCEA_DSM_CNTLB__MAM_A2MEM_ENABLE_SINGLE_WRITE__SHIFT 0x14
+#define GCEA_DSM_CNTLB__MAM_A3MEM_DSM_IRRITATOR_DATA__SHIFT 0x15
+#define GCEA_DSM_CNTLB__MAM_A3MEM_ENABLE_SINGLE_WRITE__SHIFT 0x17
+#define GCEA_DSM_CNTLB__MAM_AFMEM_DSM_IRRITATOR_DATA__SHIFT 0x18
+#define GCEA_DSM_CNTLB__MAM_AFMEM_ENABLE_SINGLE_WRITE__SHIFT 0x1a
+#define GCEA_DSM_CNTLB__MAM_D0MEM_DSM_IRRITATOR_DATA_MASK 0x00000003L
+#define GCEA_DSM_CNTLB__MAM_D0MEM_ENABLE_SINGLE_WRITE_MASK 0x00000004L
+#define GCEA_DSM_CNTLB__MAM_D1MEM_DSM_IRRITATOR_DATA_MASK 0x00000018L
+#define GCEA_DSM_CNTLB__MAM_D1MEM_ENABLE_SINGLE_WRITE_MASK 0x00000020L
+#define GCEA_DSM_CNTLB__MAM_D2MEM_DSM_IRRITATOR_DATA_MASK 0x000000C0L
+#define GCEA_DSM_CNTLB__MAM_D2MEM_ENABLE_SINGLE_WRITE_MASK 0x00000100L
+#define GCEA_DSM_CNTLB__MAM_D3MEM_DSM_IRRITATOR_DATA_MASK 0x00000600L
+#define GCEA_DSM_CNTLB__MAM_D3MEM_ENABLE_SINGLE_WRITE_MASK 0x00000800L
+#define GCEA_DSM_CNTLB__MAM_A0MEM_DSM_IRRITATOR_DATA_MASK 0x00003000L
+#define GCEA_DSM_CNTLB__MAM_A0MEM_ENABLE_SINGLE_WRITE_MASK 0x00004000L
+#define GCEA_DSM_CNTLB__MAM_A1MEM_DSM_IRRITATOR_DATA_MASK 0x00018000L
+#define GCEA_DSM_CNTLB__MAM_A1MEM_ENABLE_SINGLE_WRITE_MASK 0x00020000L
+#define GCEA_DSM_CNTLB__MAM_A2MEM_DSM_IRRITATOR_DATA_MASK 0x000C0000L
+#define GCEA_DSM_CNTLB__MAM_A2MEM_ENABLE_SINGLE_WRITE_MASK 0x00100000L
+#define GCEA_DSM_CNTLB__MAM_A3MEM_DSM_IRRITATOR_DATA_MASK 0x00600000L
+#define GCEA_DSM_CNTLB__MAM_A3MEM_ENABLE_SINGLE_WRITE_MASK 0x00800000L
+#define GCEA_DSM_CNTLB__MAM_AFMEM_DSM_IRRITATOR_DATA_MASK 0x03000000L
+#define GCEA_DSM_CNTLB__MAM_AFMEM_ENABLE_SINGLE_WRITE_MASK 0x04000000L
+//GCEA_DSM_CNTL2
+#define GCEA_DSM_CNTL2__DRAMRD_CMDMEM_ENABLE_ERROR_INJECT__SHIFT 0x0
+#define GCEA_DSM_CNTL2__DRAMRD_CMDMEM_SELECT_INJECT_DELAY__SHIFT 0x2
+#define GCEA_DSM_CNTL2__DRAMWR_CMDMEM_ENABLE_ERROR_INJECT__SHIFT 0x3
+#define GCEA_DSM_CNTL2__DRAMWR_CMDMEM_SELECT_INJECT_DELAY__SHIFT 0x5
+#define GCEA_DSM_CNTL2__DRAMWR_DATAMEM_ENABLE_ERROR_INJECT__SHIFT 0x6
+#define GCEA_DSM_CNTL2__DRAMWR_DATAMEM_SELECT_INJECT_DELAY__SHIFT 0x8
+#define GCEA_DSM_CNTL2__RRET_TAGMEM_ENABLE_ERROR_INJECT__SHIFT 0x9
+#define GCEA_DSM_CNTL2__RRET_TAGMEM_SELECT_INJECT_DELAY__SHIFT 0xb
+#define GCEA_DSM_CNTL2__WRET_TAGMEM_ENABLE_ERROR_INJECT__SHIFT 0xc
+#define GCEA_DSM_CNTL2__WRET_TAGMEM_SELECT_INJECT_DELAY__SHIFT 0xe
+#define GCEA_DSM_CNTL2__GMIRD_CMDMEM_ENABLE_ERROR_INJECT__SHIFT 0xf
+#define GCEA_DSM_CNTL2__GMIRD_CMDMEM_SELECT_INJECT_DELAY__SHIFT 0x11
+#define GCEA_DSM_CNTL2__GMIWR_CMDMEM_ENABLE_ERROR_INJECT__SHIFT 0x12
+#define GCEA_DSM_CNTL2__GMIWR_CMDMEM_SELECT_INJECT_DELAY__SHIFT 0x14
+#define GCEA_DSM_CNTL2__GMIWR_DATAMEM_ENABLE_ERROR_INJECT__SHIFT 0x15
+#define GCEA_DSM_CNTL2__GMIWR_DATAMEM_SELECT_INJECT_DELAY__SHIFT 0x17
+#define GCEA_DSM_CNTL2__INJECT_DELAY__SHIFT 0x1a
+#define GCEA_DSM_CNTL2__DRAMRD_CMDMEM_ENABLE_ERROR_INJECT_MASK 0x00000003L
+#define GCEA_DSM_CNTL2__DRAMRD_CMDMEM_SELECT_INJECT_DELAY_MASK 0x00000004L
+#define GCEA_DSM_CNTL2__DRAMWR_CMDMEM_ENABLE_ERROR_INJECT_MASK 0x00000018L
+#define GCEA_DSM_CNTL2__DRAMWR_CMDMEM_SELECT_INJECT_DELAY_MASK 0x00000020L
+#define GCEA_DSM_CNTL2__DRAMWR_DATAMEM_ENABLE_ERROR_INJECT_MASK 0x000000C0L
+#define GCEA_DSM_CNTL2__DRAMWR_DATAMEM_SELECT_INJECT_DELAY_MASK 0x00000100L
+#define GCEA_DSM_CNTL2__RRET_TAGMEM_ENABLE_ERROR_INJECT_MASK 0x00000600L
+#define GCEA_DSM_CNTL2__RRET_TAGMEM_SELECT_INJECT_DELAY_MASK 0x00000800L
+#define GCEA_DSM_CNTL2__WRET_TAGMEM_ENABLE_ERROR_INJECT_MASK 0x00003000L
+#define GCEA_DSM_CNTL2__WRET_TAGMEM_SELECT_INJECT_DELAY_MASK 0x00004000L
+#define GCEA_DSM_CNTL2__GMIRD_CMDMEM_ENABLE_ERROR_INJECT_MASK 0x00018000L
+#define GCEA_DSM_CNTL2__GMIRD_CMDMEM_SELECT_INJECT_DELAY_MASK 0x00020000L
+#define GCEA_DSM_CNTL2__GMIWR_CMDMEM_ENABLE_ERROR_INJECT_MASK 0x000C0000L
+#define GCEA_DSM_CNTL2__GMIWR_CMDMEM_SELECT_INJECT_DELAY_MASK 0x00100000L
+#define GCEA_DSM_CNTL2__GMIWR_DATAMEM_ENABLE_ERROR_INJECT_MASK 0x00600000L
+#define GCEA_DSM_CNTL2__GMIWR_DATAMEM_SELECT_INJECT_DELAY_MASK 0x00800000L
+#define GCEA_DSM_CNTL2__INJECT_DELAY_MASK 0xFC000000L
+//GCEA_DSM_CNTL2A
+#define GCEA_DSM_CNTL2A__DRAMRD_PAGEMEM_ENABLE_ERROR_INJECT__SHIFT 0x0
+#define GCEA_DSM_CNTL2A__DRAMRD_PAGEMEM_SELECT_INJECT_DELAY__SHIFT 0x2
+#define GCEA_DSM_CNTL2A__DRAMWR_PAGEMEM_ENABLE_ERROR_INJECT__SHIFT 0x3
+#define GCEA_DSM_CNTL2A__DRAMWR_PAGEMEM_SELECT_INJECT_DELAY__SHIFT 0x5
+#define GCEA_DSM_CNTL2A__IORD_CMDMEM_ENABLE_ERROR_INJECT__SHIFT 0x6
+#define GCEA_DSM_CNTL2A__IORD_CMDMEM_SELECT_INJECT_DELAY__SHIFT 0x8
+#define GCEA_DSM_CNTL2A__IOWR_CMDMEM_ENABLE_ERROR_INJECT__SHIFT 0x9
+#define GCEA_DSM_CNTL2A__IOWR_CMDMEM_SELECT_INJECT_DELAY__SHIFT 0xb
+#define GCEA_DSM_CNTL2A__IOWR_DATAMEM_ENABLE_ERROR_INJECT__SHIFT 0xc
+#define GCEA_DSM_CNTL2A__IOWR_DATAMEM_SELECT_INJECT_DELAY__SHIFT 0xe
+#define GCEA_DSM_CNTL2A__GMIRD_PAGEMEM_ENABLE_ERROR_INJECT__SHIFT 0xf
+#define GCEA_DSM_CNTL2A__GMIRD_PAGEMEM_SELECT_INJECT_DELAY__SHIFT 0x11
+#define GCEA_DSM_CNTL2A__GMIWR_PAGEMEM_ENABLE_ERROR_INJECT__SHIFT 0x12
+#define GCEA_DSM_CNTL2A__GMIWR_PAGEMEM_SELECT_INJECT_DELAY__SHIFT 0x14
+#define GCEA_DSM_CNTL2A__DRAMRD_PAGEMEM_ENABLE_ERROR_INJECT_MASK 0x00000003L
+#define GCEA_DSM_CNTL2A__DRAMRD_PAGEMEM_SELECT_INJECT_DELAY_MASK 0x00000004L
+#define GCEA_DSM_CNTL2A__DRAMWR_PAGEMEM_ENABLE_ERROR_INJECT_MASK 0x00000018L
+#define GCEA_DSM_CNTL2A__DRAMWR_PAGEMEM_SELECT_INJECT_DELAY_MASK 0x00000020L
+#define GCEA_DSM_CNTL2A__IORD_CMDMEM_ENABLE_ERROR_INJECT_MASK 0x000000C0L
+#define GCEA_DSM_CNTL2A__IORD_CMDMEM_SELECT_INJECT_DELAY_MASK 0x00000100L
+#define GCEA_DSM_CNTL2A__IOWR_CMDMEM_ENABLE_ERROR_INJECT_MASK 0x00000600L
+#define GCEA_DSM_CNTL2A__IOWR_CMDMEM_SELECT_INJECT_DELAY_MASK 0x00000800L
+#define GCEA_DSM_CNTL2A__IOWR_DATAMEM_ENABLE_ERROR_INJECT_MASK 0x00003000L
+#define GCEA_DSM_CNTL2A__IOWR_DATAMEM_SELECT_INJECT_DELAY_MASK 0x00004000L
+#define GCEA_DSM_CNTL2A__GMIRD_PAGEMEM_ENABLE_ERROR_INJECT_MASK 0x00018000L
+#define GCEA_DSM_CNTL2A__GMIRD_PAGEMEM_SELECT_INJECT_DELAY_MASK 0x00020000L
+#define GCEA_DSM_CNTL2A__GMIWR_PAGEMEM_ENABLE_ERROR_INJECT_MASK 0x000C0000L
+#define GCEA_DSM_CNTL2A__GMIWR_PAGEMEM_SELECT_INJECT_DELAY_MASK 0x00100000L
+//GCEA_DSM_CNTL2B
+#define GCEA_DSM_CNTL2B__MAM_D0MEM_ENABLE_ERROR_INJECT__SHIFT 0x0
+#define GCEA_DSM_CNTL2B__MAM_D0MEM_SELECT_INJECT_DELAY__SHIFT 0x2
+#define GCEA_DSM_CNTL2B__MAM_D1MEM_ENABLE_ERROR_INJECT__SHIFT 0x3
+#define GCEA_DSM_CNTL2B__MAM_D1MEM_SELECT_INJECT_DELAY__SHIFT 0x5
+#define GCEA_DSM_CNTL2B__MAM_D2MEM_ENABLE_ERROR_INJECT__SHIFT 0x6
+#define GCEA_DSM_CNTL2B__MAM_D2MEM_SELECT_INJECT_DELAY__SHIFT 0x8
+#define GCEA_DSM_CNTL2B__MAM_D3MEM_ENABLE_ERROR_INJECT__SHIFT 0x9
+#define GCEA_DSM_CNTL2B__MAM_D3MEM_SELECT_INJECT_DELAY__SHIFT 0xb
+#define GCEA_DSM_CNTL2B__MAM_A0MEM_ENABLE_ERROR_INJECT__SHIFT 0xc
+#define GCEA_DSM_CNTL2B__MAM_A0MEM_SELECT_INJECT_DELAY__SHIFT 0xe
+#define GCEA_DSM_CNTL2B__MAM_A1MEM_ENABLE_ERROR_INJECT__SHIFT 0xf
+#define GCEA_DSM_CNTL2B__MAM_A1MEM_SELECT_INJECT_DELAY__SHIFT 0x11
+#define GCEA_DSM_CNTL2B__MAM_A2MEM_ENABLE_ERROR_INJECT__SHIFT 0x12
+#define GCEA_DSM_CNTL2B__MAM_A2MEM_SELECT_INJECT_DELAY__SHIFT 0x14
+#define GCEA_DSM_CNTL2B__MAM_A3MEM_ENABLE_ERROR_INJECT__SHIFT 0x15
+#define GCEA_DSM_CNTL2B__MAM_A3MEM_SELECT_INJECT_DELAY__SHIFT 0x17
+#define GCEA_DSM_CNTL2B__MAM_AFMEM_ENABLE_ERROR_INJECT__SHIFT 0x18
+#define GCEA_DSM_CNTL2B__MAM_AFMEM_SELECT_INJECT_DELAY__SHIFT 0x1a
+#define GCEA_DSM_CNTL2B__MAM_D0MEM_ENABLE_ERROR_INJECT_MASK 0x00000003L
+#define GCEA_DSM_CNTL2B__MAM_D0MEM_SELECT_INJECT_DELAY_MASK 0x00000004L
+#define GCEA_DSM_CNTL2B__MAM_D1MEM_ENABLE_ERROR_INJECT_MASK 0x00000018L
+#define GCEA_DSM_CNTL2B__MAM_D1MEM_SELECT_INJECT_DELAY_MASK 0x00000020L
+#define GCEA_DSM_CNTL2B__MAM_D2MEM_ENABLE_ERROR_INJECT_MASK 0x000000C0L
+#define GCEA_DSM_CNTL2B__MAM_D2MEM_SELECT_INJECT_DELAY_MASK 0x00000100L
+#define GCEA_DSM_CNTL2B__MAM_D3MEM_ENABLE_ERROR_INJECT_MASK 0x00000600L
+#define GCEA_DSM_CNTL2B__MAM_D3MEM_SELECT_INJECT_DELAY_MASK 0x00000800L
+#define GCEA_DSM_CNTL2B__MAM_A0MEM_ENABLE_ERROR_INJECT_MASK 0x00003000L
+#define GCEA_DSM_CNTL2B__MAM_A0MEM_SELECT_INJECT_DELAY_MASK 0x00004000L
+#define GCEA_DSM_CNTL2B__MAM_A1MEM_ENABLE_ERROR_INJECT_MASK 0x00018000L
+#define GCEA_DSM_CNTL2B__MAM_A1MEM_SELECT_INJECT_DELAY_MASK 0x00020000L
+#define GCEA_DSM_CNTL2B__MAM_A2MEM_ENABLE_ERROR_INJECT_MASK 0x000C0000L
+#define GCEA_DSM_CNTL2B__MAM_A2MEM_SELECT_INJECT_DELAY_MASK 0x00100000L
+#define GCEA_DSM_CNTL2B__MAM_A3MEM_ENABLE_ERROR_INJECT_MASK 0x00600000L
+#define GCEA_DSM_CNTL2B__MAM_A3MEM_SELECT_INJECT_DELAY_MASK 0x00800000L
+#define GCEA_DSM_CNTL2B__MAM_AFMEM_ENABLE_ERROR_INJECT_MASK 0x03000000L
+#define GCEA_DSM_CNTL2B__MAM_AFMEM_SELECT_INJECT_DELAY_MASK 0x04000000L
+//GCEA_TCC_XBR_CREDITS
+#define GCEA_TCC_XBR_CREDITS__DRAM_RD_LIMIT__SHIFT 0x0
+#define GCEA_TCC_XBR_CREDITS__DRAM_RD_RESERVE__SHIFT 0x6
+#define GCEA_TCC_XBR_CREDITS__IO_RD_LIMIT__SHIFT 0x8
+#define GCEA_TCC_XBR_CREDITS__IO_RD_RESERVE__SHIFT 0xe
+#define GCEA_TCC_XBR_CREDITS__DRAM_WR_LIMIT__SHIFT 0x10
+#define GCEA_TCC_XBR_CREDITS__DRAM_WR_RESERVE__SHIFT 0x16
+#define GCEA_TCC_XBR_CREDITS__IO_WR_LIMIT__SHIFT 0x18
+#define GCEA_TCC_XBR_CREDITS__IO_WR_RESERVE__SHIFT 0x1e
+#define GCEA_TCC_XBR_CREDITS__DRAM_RD_LIMIT_MASK 0x0000003FL
+#define GCEA_TCC_XBR_CREDITS__DRAM_RD_RESERVE_MASK 0x000000C0L
+#define GCEA_TCC_XBR_CREDITS__IO_RD_LIMIT_MASK 0x00003F00L
+#define GCEA_TCC_XBR_CREDITS__IO_RD_RESERVE_MASK 0x0000C000L
+#define GCEA_TCC_XBR_CREDITS__DRAM_WR_LIMIT_MASK 0x003F0000L
+#define GCEA_TCC_XBR_CREDITS__DRAM_WR_RESERVE_MASK 0x00C00000L
+#define GCEA_TCC_XBR_CREDITS__IO_WR_LIMIT_MASK 0x3F000000L
+#define GCEA_TCC_XBR_CREDITS__IO_WR_RESERVE_MASK 0xC0000000L
+//GCEA_TCC_XBR_MAXBURST
+#define GCEA_TCC_XBR_MAXBURST__DRAM_RD__SHIFT 0x0
+#define GCEA_TCC_XBR_MAXBURST__IO_RD__SHIFT 0x4
+#define GCEA_TCC_XBR_MAXBURST__DRAM_WR__SHIFT 0x8
+#define GCEA_TCC_XBR_MAXBURST__IO_WR__SHIFT 0xc
+#define GCEA_TCC_XBR_MAXBURST__DRAM_RD_MASK 0x0000000FL
+#define GCEA_TCC_XBR_MAXBURST__IO_RD_MASK 0x000000F0L
+#define GCEA_TCC_XBR_MAXBURST__DRAM_WR_MASK 0x00000F00L
+#define GCEA_TCC_XBR_MAXBURST__IO_WR_MASK 0x0000F000L
+//GCEA_PROBE_CNTL
+#define GCEA_PROBE_CNTL__REQ2RSP_DELAY__SHIFT 0x0
+#define GCEA_PROBE_CNTL__PRB_FILTER_DISABLE__SHIFT 0x5
+#define GCEA_PROBE_CNTL__REQ2RSP_DELAY_MASK 0x0000001FL
+#define GCEA_PROBE_CNTL__PRB_FILTER_DISABLE_MASK 0x00000020L
+//GCEA_PROBE_MAP
+#define GCEA_PROBE_MAP__CHADDR0_TO_RIGHTTCC__SHIFT 0x0
+#define GCEA_PROBE_MAP__CHADDR1_TO_RIGHTTCC__SHIFT 0x1
+#define GCEA_PROBE_MAP__CHADDR2_TO_RIGHTTCC__SHIFT 0x2
+#define GCEA_PROBE_MAP__CHADDR3_TO_RIGHTTCC__SHIFT 0x3
+#define GCEA_PROBE_MAP__CHADDR4_TO_RIGHTTCC__SHIFT 0x4
+#define GCEA_PROBE_MAP__CHADDR5_TO_RIGHTTCC__SHIFT 0x5
+#define GCEA_PROBE_MAP__CHADDR6_TO_RIGHTTCC__SHIFT 0x6
+#define GCEA_PROBE_MAP__CHADDR7_TO_RIGHTTCC__SHIFT 0x7
+#define GCEA_PROBE_MAP__CHADDR8_TO_RIGHTTCC__SHIFT 0x8
+#define GCEA_PROBE_MAP__CHADDR9_TO_RIGHTTCC__SHIFT 0x9
+#define GCEA_PROBE_MAP__CHADDR10_TO_RIGHTTCC__SHIFT 0xa
+#define GCEA_PROBE_MAP__CHADDR11_TO_RIGHTTCC__SHIFT 0xb
+#define GCEA_PROBE_MAP__CHADDR12_TO_RIGHTTCC__SHIFT 0xc
+#define GCEA_PROBE_MAP__CHADDR13_TO_RIGHTTCC__SHIFT 0xd
+#define GCEA_PROBE_MAP__CHADDR14_TO_RIGHTTCC__SHIFT 0xe
+#define GCEA_PROBE_MAP__CHADDR15_TO_RIGHTTCC__SHIFT 0xf
+#define GCEA_PROBE_MAP__INTLV_SIZE__SHIFT 0x10
+#define GCEA_PROBE_MAP__CHADDR0_TO_RIGHTTCC_MASK 0x00000001L
+#define GCEA_PROBE_MAP__CHADDR1_TO_RIGHTTCC_MASK 0x00000002L
+#define GCEA_PROBE_MAP__CHADDR2_TO_RIGHTTCC_MASK 0x00000004L
+#define GCEA_PROBE_MAP__CHADDR3_TO_RIGHTTCC_MASK 0x00000008L
+#define GCEA_PROBE_MAP__CHADDR4_TO_RIGHTTCC_MASK 0x00000010L
+#define GCEA_PROBE_MAP__CHADDR5_TO_RIGHTTCC_MASK 0x00000020L
+#define GCEA_PROBE_MAP__CHADDR6_TO_RIGHTTCC_MASK 0x00000040L
+#define GCEA_PROBE_MAP__CHADDR7_TO_RIGHTTCC_MASK 0x00000080L
+#define GCEA_PROBE_MAP__CHADDR8_TO_RIGHTTCC_MASK 0x00000100L
+#define GCEA_PROBE_MAP__CHADDR9_TO_RIGHTTCC_MASK 0x00000200L
+#define GCEA_PROBE_MAP__CHADDR10_TO_RIGHTTCC_MASK 0x00000400L
+#define GCEA_PROBE_MAP__CHADDR11_TO_RIGHTTCC_MASK 0x00000800L
+#define GCEA_PROBE_MAP__CHADDR12_TO_RIGHTTCC_MASK 0x00001000L
+#define GCEA_PROBE_MAP__CHADDR13_TO_RIGHTTCC_MASK 0x00002000L
+#define GCEA_PROBE_MAP__CHADDR14_TO_RIGHTTCC_MASK 0x00004000L
+#define GCEA_PROBE_MAP__CHADDR15_TO_RIGHTTCC_MASK 0x00008000L
+#define GCEA_PROBE_MAP__INTLV_SIZE_MASK 0x00030000L
+//GCEA_ERR_STATUS
+#define GCEA_ERR_STATUS__SDP_RDRSP_STATUS__SHIFT 0x0
+#define GCEA_ERR_STATUS__SDP_WRRSP_STATUS__SHIFT 0x4
+#define GCEA_ERR_STATUS__SDP_RDRSP_DATASTATUS__SHIFT 0x8
+#define GCEA_ERR_STATUS__SDP_RDRSP_DATAPARITY_ERROR__SHIFT 0xa
+#define GCEA_ERR_STATUS__CLEAR_ERROR_STATUS__SHIFT 0xb
+#define GCEA_ERR_STATUS__BUSY_ON_ERROR__SHIFT 0xc
+#define GCEA_ERR_STATUS__FUE_FLAG__SHIFT 0xd
+#define GCEA_ERR_STATUS__IGNORE_RDRSP_FED__SHIFT 0xe
+#define GCEA_ERR_STATUS__INTERRUPT_ON_FATAL__SHIFT 0xf
+#define GCEA_ERR_STATUS__INTERRUPT_IGNORE_CLI_FATAL__SHIFT 0x10
+#define GCEA_ERR_STATUS__LEVEL_INTERRUPT__SHIFT 0x11
+#define GCEA_ERR_STATUS__BUSY_ON_CMPL_FATAL_ERROR__SHIFT 0x12
+#define GCEA_ERR_STATUS__FUE_FLAG_CLIENT__SHIFT 0x13
+#define GCEA_ERR_STATUS__SDP_RDRSP_STATUS_MASK 0x0000000FL
+#define GCEA_ERR_STATUS__SDP_WRRSP_STATUS_MASK 0x000000F0L
+#define GCEA_ERR_STATUS__SDP_RDRSP_DATASTATUS_MASK 0x00000300L
+#define GCEA_ERR_STATUS__SDP_RDRSP_DATAPARITY_ERROR_MASK 0x00000400L
+#define GCEA_ERR_STATUS__CLEAR_ERROR_STATUS_MASK 0x00000800L
+#define GCEA_ERR_STATUS__BUSY_ON_ERROR_MASK 0x00001000L
+#define GCEA_ERR_STATUS__FUE_FLAG_MASK 0x00002000L
+#define GCEA_ERR_STATUS__IGNORE_RDRSP_FED_MASK 0x00004000L
+#define GCEA_ERR_STATUS__INTERRUPT_ON_FATAL_MASK 0x00008000L
+#define GCEA_ERR_STATUS__INTERRUPT_IGNORE_CLI_FATAL_MASK 0x00010000L
+#define GCEA_ERR_STATUS__LEVEL_INTERRUPT_MASK 0x00020000L
+#define GCEA_ERR_STATUS__BUSY_ON_CMPL_FATAL_ERROR_MASK 0x00040000L
+#define GCEA_ERR_STATUS__FUE_FLAG_CLIENT_MASK 0x00080000L
+//GCEA_MISC2
+#define GCEA_MISC2__CSGROUP_SWAP_IN_DRAM_ARB__SHIFT 0x0
+#define GCEA_MISC2__CSGROUP_SWAP_IN_GMI_ARB__SHIFT 0x1
+#define GCEA_MISC2__CSGRP_BURST_LIMIT_DATA_DRAM__SHIFT 0x2
+#define GCEA_MISC2__CSGRP_BURST_LIMIT_DATA_GMI__SHIFT 0x7
+#define GCEA_MISC2__IO_RDWR_PRIORITY_ENABLE__SHIFT 0xc
+#define GCEA_MISC2__BLOCK_REQUESTS__SHIFT 0xd
+#define GCEA_MISC2__REQUESTS_BLOCKED__SHIFT 0xe
+#define GCEA_MISC2__FGCLKEN_OVERRIDE__SHIFT 0xf
+#define GCEA_MISC2__DRAM_RD_THROTTLE__SHIFT 0x10
+#define GCEA_MISC2__DRAM_WR_THROTTLE__SHIFT 0x11
+#define GCEA_MISC2__GMI_RD_THROTTLE__SHIFT 0x12
+#define GCEA_MISC2__GMI_WR_THROTTLE__SHIFT 0x13
+#define GCEA_MISC2__CONTAIN_ILLEGAL_OP__SHIFT 0x14
+#define GCEA_MISC2__REPORT_ILLEGAL_OP__SHIFT 0x15
+#define GCEA_MISC2__CSGROUP_SWAP_IN_DRAM_ARB_MASK 0x00000001L
+#define GCEA_MISC2__CSGROUP_SWAP_IN_GMI_ARB_MASK 0x00000002L
+#define GCEA_MISC2__CSGRP_BURST_LIMIT_DATA_DRAM_MASK 0x0000007CL
+#define GCEA_MISC2__CSGRP_BURST_LIMIT_DATA_GMI_MASK 0x00000F80L
+#define GCEA_MISC2__IO_RDWR_PRIORITY_ENABLE_MASK 0x00001000L
+#define GCEA_MISC2__BLOCK_REQUESTS_MASK 0x00002000L
+#define GCEA_MISC2__REQUESTS_BLOCKED_MASK 0x00004000L
+#define GCEA_MISC2__FGCLKEN_OVERRIDE_MASK 0x00008000L
+#define GCEA_MISC2__DRAM_RD_THROTTLE_MASK 0x00010000L
+#define GCEA_MISC2__DRAM_WR_THROTTLE_MASK 0x00020000L
+#define GCEA_MISC2__GMI_RD_THROTTLE_MASK 0x00040000L
+#define GCEA_MISC2__GMI_WR_THROTTLE_MASK 0x00080000L
+#define GCEA_MISC2__CONTAIN_ILLEGAL_OP_MASK 0x00100000L
+#define GCEA_MISC2__REPORT_ILLEGAL_OP_MASK 0x00200000L
+//GCEA_SDP_BACKDOOR_CMDCREDITS0
+#define GCEA_SDP_BACKDOOR_CMDCREDITS0__VC0_CREDITS_RECEIVED__SHIFT 0x0
+#define GCEA_SDP_BACKDOOR_CMDCREDITS0__VC1_CREDITS_RECEIVED__SHIFT 0x7
+#define GCEA_SDP_BACKDOOR_CMDCREDITS0__VC2_CREDITS_RECEIVED__SHIFT 0xe
+#define GCEA_SDP_BACKDOOR_CMDCREDITS0__VC3_CREDITS_RECEIVED__SHIFT 0x15
+#define GCEA_SDP_BACKDOOR_CMDCREDITS0__VC4_CREDITS_RECEIVED__SHIFT 0x1c
+#define GCEA_SDP_BACKDOOR_CMDCREDITS0__VC0_CREDITS_RECEIVED_MASK 0x0000007FL
+#define GCEA_SDP_BACKDOOR_CMDCREDITS0__VC1_CREDITS_RECEIVED_MASK 0x00003F80L
+#define GCEA_SDP_BACKDOOR_CMDCREDITS0__VC2_CREDITS_RECEIVED_MASK 0x001FC000L
+#define GCEA_SDP_BACKDOOR_CMDCREDITS0__VC3_CREDITS_RECEIVED_MASK 0x0FE00000L
+#define GCEA_SDP_BACKDOOR_CMDCREDITS0__VC4_CREDITS_RECEIVED_MASK 0xF0000000L
+//GCEA_SDP_BACKDOOR_CMDCREDITS1
+#define GCEA_SDP_BACKDOOR_CMDCREDITS1__VC4_CREDITS_RECEIVED__SHIFT 0x0
+#define GCEA_SDP_BACKDOOR_CMDCREDITS1__VC5_CREDITS_RECEIVED__SHIFT 0x3
+#define GCEA_SDP_BACKDOOR_CMDCREDITS1__VC6_CREDITS_RECEIVED__SHIFT 0xa
+#define GCEA_SDP_BACKDOOR_CMDCREDITS1__VC7_CREDITS_RECEIVED__SHIFT 0x11
+#define GCEA_SDP_BACKDOOR_CMDCREDITS1__POOL_CREDITS_RECEIVED__SHIFT 0x18
+#define GCEA_SDP_BACKDOOR_CMDCREDITS1__VC4_CREDITS_RECEIVED_MASK 0x00000007L
+#define GCEA_SDP_BACKDOOR_CMDCREDITS1__VC5_CREDITS_RECEIVED_MASK 0x000003F8L
+#define GCEA_SDP_BACKDOOR_CMDCREDITS1__VC6_CREDITS_RECEIVED_MASK 0x0001FC00L
+#define GCEA_SDP_BACKDOOR_CMDCREDITS1__VC7_CREDITS_RECEIVED_MASK 0x00FE0000L
+#define GCEA_SDP_BACKDOOR_CMDCREDITS1__POOL_CREDITS_RECEIVED_MASK 0x7F000000L
+//GCEA_SDP_BACKDOOR_DATACREDITS0
+#define GCEA_SDP_BACKDOOR_DATACREDITS0__VC0_CREDITS_RECEIVED__SHIFT 0x0
+#define GCEA_SDP_BACKDOOR_DATACREDITS0__VC1_CREDITS_RECEIVED__SHIFT 0x7
+#define GCEA_SDP_BACKDOOR_DATACREDITS0__VC2_CREDITS_RECEIVED__SHIFT 0xe
+#define GCEA_SDP_BACKDOOR_DATACREDITS0__VC3_CREDITS_RECEIVED__SHIFT 0x15
+#define GCEA_SDP_BACKDOOR_DATACREDITS0__VC4_CREDITS_RECEIVED__SHIFT 0x1c
+#define GCEA_SDP_BACKDOOR_DATACREDITS0__VC0_CREDITS_RECEIVED_MASK 0x0000007FL
+#define GCEA_SDP_BACKDOOR_DATACREDITS0__VC1_CREDITS_RECEIVED_MASK 0x00003F80L
+#define GCEA_SDP_BACKDOOR_DATACREDITS0__VC2_CREDITS_RECEIVED_MASK 0x001FC000L
+#define GCEA_SDP_BACKDOOR_DATACREDITS0__VC3_CREDITS_RECEIVED_MASK 0x0FE00000L
+#define GCEA_SDP_BACKDOOR_DATACREDITS0__VC4_CREDITS_RECEIVED_MASK 0xF0000000L
+//GCEA_SDP_BACKDOOR_DATACREDITS1
+#define GCEA_SDP_BACKDOOR_DATACREDITS1__VC4_CREDITS_RECEIVED__SHIFT 0x0
+#define GCEA_SDP_BACKDOOR_DATACREDITS1__VC5_CREDITS_RECEIVED__SHIFT 0x3
+#define GCEA_SDP_BACKDOOR_DATACREDITS1__VC6_CREDITS_RECEIVED__SHIFT 0xa
+#define GCEA_SDP_BACKDOOR_DATACREDITS1__VC7_CREDITS_RECEIVED__SHIFT 0x11
+#define GCEA_SDP_BACKDOOR_DATACREDITS1__POOL_CREDITS_RECEIVED__SHIFT 0x18
+#define GCEA_SDP_BACKDOOR_DATACREDITS1__VC4_CREDITS_RECEIVED_MASK 0x00000007L
+#define GCEA_SDP_BACKDOOR_DATACREDITS1__VC5_CREDITS_RECEIVED_MASK 0x000003F8L
+#define GCEA_SDP_BACKDOOR_DATACREDITS1__VC6_CREDITS_RECEIVED_MASK 0x0001FC00L
+#define GCEA_SDP_BACKDOOR_DATACREDITS1__VC7_CREDITS_RECEIVED_MASK 0x00FE0000L
+#define GCEA_SDP_BACKDOOR_DATACREDITS1__POOL_CREDITS_RECEIVED_MASK 0x7F000000L
+//GCEA_SDP_BACKDOOR_MISCCREDITS
+#define GCEA_SDP_BACKDOOR_MISCCREDITS__RDRSP_CREDITS_RELEASED__SHIFT 0x0
+#define GCEA_SDP_BACKDOOR_MISCCREDITS__WRRSP_CREDITS_RELEASED__SHIFT 0x8
+#define GCEA_SDP_BACKDOOR_MISCCREDITS__PRB_REQ_CREDITS_RELEASED__SHIFT 0x10
+#define GCEA_SDP_BACKDOOR_MISCCREDITS__PRB_RSP_CREDITS_RECEIVED__SHIFT 0x17
+#define GCEA_SDP_BACKDOOR_MISCCREDITS__RDRSP_CREDITS_RELEASED_MASK 0x000000FFL
+#define GCEA_SDP_BACKDOOR_MISCCREDITS__WRRSP_CREDITS_RELEASED_MASK 0x0000FF00L
+#define GCEA_SDP_BACKDOOR_MISCCREDITS__PRB_REQ_CREDITS_RELEASED_MASK 0x007F0000L
+#define GCEA_SDP_BACKDOOR_MISCCREDITS__PRB_RSP_CREDITS_RECEIVED_MASK 0x3F800000L
+//GCEA_SDP_ENABLE
+#define GCEA_SDP_ENABLE__ENABLE__SHIFT 0x0
+#define GCEA_SDP_ENABLE__ENABLE_MASK 0x00000001L
+
+
+// addressBlock: xcd0_gc_ea_pwrdec
+//GCEA_ICG_CTRL
+#define GCEA_ICG_CTRL__SOFT_OVERRIDE_RETURN__SHIFT 0x0
+#define GCEA_ICG_CTRL__SOFT_OVERRIDE_READ__SHIFT 0x1
+#define GCEA_ICG_CTRL__SOFT_OVERRIDE_WRITE__SHIFT 0x2
+#define GCEA_ICG_CTRL__SOFT_OVERRIDE_REGISTER__SHIFT 0x3
+#define GCEA_ICG_CTRL__SOFT_OVERRIDE_RETURN_MASK 0x00000001L
+#define GCEA_ICG_CTRL__SOFT_OVERRIDE_READ_MASK 0x00000002L
+#define GCEA_ICG_CTRL__SOFT_OVERRIDE_WRITE_MASK 0x00000004L
+#define GCEA_ICG_CTRL__SOFT_OVERRIDE_REGISTER_MASK 0x00000008L
+
+
+// addressBlock: xcd0_gc_rmi_rmidec
+//RMI_GENERAL_CNTL
+#define RMI_GENERAL_CNTL__BURST_DISABLE__SHIFT 0x0
+#define RMI_GENERAL_CNTL__VMID_BYPASS_ENABLE__SHIFT 0x1
+#define RMI_GENERAL_CNTL__XBAR_MUX_CONFIG__SHIFT 0x11
+#define RMI_GENERAL_CNTL__RB0_HARVEST_EN__SHIFT 0x13
+#define RMI_GENERAL_CNTL__RB1_HARVEST_EN__SHIFT 0x14
+#define RMI_GENERAL_CNTL__LOOPBACK_DIS_BY_REQ_TYPE__SHIFT 0x15
+#define RMI_GENERAL_CNTL__XBAR_MUX_CONFIG_UPDATE__SHIFT 0x19
+#define RMI_GENERAL_CNTL__SKID_FIFO_0_OVERFLOW_ERROR_MASK__SHIFT 0x1a
+#define RMI_GENERAL_CNTL__SKID_FIFO_0_UNDERFLOW_ERROR_MASK__SHIFT 0x1b
+#define RMI_GENERAL_CNTL__SKID_FIFO_1_OVERFLOW_ERROR_MASK__SHIFT 0x1c
+#define RMI_GENERAL_CNTL__SKID_FIFO_1_UNDERFLOW_ERROR_MASK__SHIFT 0x1d
+#define RMI_GENERAL_CNTL__SKID_FIFO_FREESPACE_IS_ZERO_ERROR_MASK__SHIFT 0x1e
+#define RMI_GENERAL_CNTL__BURST_DISABLE_MASK 0x00000001L
+#define RMI_GENERAL_CNTL__VMID_BYPASS_ENABLE_MASK 0x0001FFFEL
+#define RMI_GENERAL_CNTL__XBAR_MUX_CONFIG_MASK 0x00060000L
+#define RMI_GENERAL_CNTL__RB0_HARVEST_EN_MASK 0x00080000L
+#define RMI_GENERAL_CNTL__RB1_HARVEST_EN_MASK 0x00100000L
+#define RMI_GENERAL_CNTL__LOOPBACK_DIS_BY_REQ_TYPE_MASK 0x01E00000L
+#define RMI_GENERAL_CNTL__XBAR_MUX_CONFIG_UPDATE_MASK 0x02000000L
+#define RMI_GENERAL_CNTL__SKID_FIFO_0_OVERFLOW_ERROR_MASK_MASK 0x04000000L
+#define RMI_GENERAL_CNTL__SKID_FIFO_0_UNDERFLOW_ERROR_MASK_MASK 0x08000000L
+#define RMI_GENERAL_CNTL__SKID_FIFO_1_OVERFLOW_ERROR_MASK_MASK 0x10000000L
+#define RMI_GENERAL_CNTL__SKID_FIFO_1_UNDERFLOW_ERROR_MASK_MASK 0x20000000L
+#define RMI_GENERAL_CNTL__SKID_FIFO_FREESPACE_IS_ZERO_ERROR_MASK_MASK 0x40000000L
+//RMI_GENERAL_CNTL1
+#define RMI_GENERAL_CNTL1__EARLY_WRACK_ENABLE_PER_MTYPE__SHIFT 0x0
+#define RMI_GENERAL_CNTL1__TCIW0_64B_RD_STALL_MODE__SHIFT 0x4
+#define RMI_GENERAL_CNTL1__TCIW1_64B_RD_STALL_MODE__SHIFT 0x6
+#define RMI_GENERAL_CNTL1__EARLY_WRACK_DISABLE_FOR_LOOPBACK__SHIFT 0x8
+#define RMI_GENERAL_CNTL1__POLICY_OVERRIDE_VALUE__SHIFT 0x9
+#define RMI_GENERAL_CNTL1__POLICY_OVERRIDE__SHIFT 0xa
+#define RMI_GENERAL_CNTL1__UTCL1_PROBE0_RR_ARB_BURST_HINT_EN__SHIFT 0xb
+#define RMI_GENERAL_CNTL1__UTCL1_PROBE1_RR_ARB_BURST_HINT_EN__SHIFT 0xc
+#define RMI_GENERAL_CNTL1__EARLY_WRACK_ENABLE_PER_MTYPE_MASK 0x0000000FL
+#define RMI_GENERAL_CNTL1__TCIW0_64B_RD_STALL_MODE_MASK 0x00000030L
+#define RMI_GENERAL_CNTL1__TCIW1_64B_RD_STALL_MODE_MASK 0x000000C0L
+#define RMI_GENERAL_CNTL1__EARLY_WRACK_DISABLE_FOR_LOOPBACK_MASK 0x00000100L
+#define RMI_GENERAL_CNTL1__POLICY_OVERRIDE_VALUE_MASK 0x00000200L
+#define RMI_GENERAL_CNTL1__POLICY_OVERRIDE_MASK 0x00000400L
+#define RMI_GENERAL_CNTL1__UTCL1_PROBE0_RR_ARB_BURST_HINT_EN_MASK 0x00000800L
+#define RMI_GENERAL_CNTL1__UTCL1_PROBE1_RR_ARB_BURST_HINT_EN_MASK 0x00001000L
+//RMI_GENERAL_STATUS
+#define RMI_GENERAL_STATUS__GENERAL_RMI_ERRORS_COMBINED__SHIFT 0x0
+#define RMI_GENERAL_STATUS__SKID_FIFO_0_OVERFLOW_ERROR__SHIFT 0x1
+#define RMI_GENERAL_STATUS__SKID_FIFO_0_UNDERFLOW_ERROR__SHIFT 0x2
+#define RMI_GENERAL_STATUS__SKID_FIFO_1_OVERFLOW_ERROR__SHIFT 0x3
+#define RMI_GENERAL_STATUS__SKID_FIFO_1_UNDERFLOW_ERROR__SHIFT 0x4
+#define RMI_GENERAL_STATUS__RMI_XBAR_BUSY__SHIFT 0x5
+#define RMI_GENERAL_STATUS__RMI_UTCL1_BUSY__SHIFT 0x6
+#define RMI_GENERAL_STATUS__RMI_SCOREBOARD_BUSY__SHIFT 0x7
+#define RMI_GENERAL_STATUS__TCIW0_PRT_FIFO_BUSY__SHIFT 0x8
+#define RMI_GENERAL_STATUS__TCIW_FRMTR0_BUSY__SHIFT 0x9
+#define RMI_GENERAL_STATUS__TCIW_RTN_FRMTR0_BUSY__SHIFT 0xa
+#define RMI_GENERAL_STATUS__WRREQ_CONSUMER_FIFO_0_BUSY__SHIFT 0xb
+#define RMI_GENERAL_STATUS__RDREQ_CONSUMER_FIFO_0_BUSY__SHIFT 0xc
+#define RMI_GENERAL_STATUS__TCIW1_PRT_FIFO_BUSY__SHIFT 0xd
+#define RMI_GENERAL_STATUS__TCIW_FRMTR1_BUSY__SHIFT 0xe
+#define RMI_GENERAL_STATUS__TCIW_RTN_FRMTR1_BUSY__SHIFT 0xf
+#define RMI_GENERAL_STATUS__WRREQ_CONSUMER_FIFO_1_BUSY__SHIFT 0x10
+#define RMI_GENERAL_STATUS__RDREQ_CONSUMER_FIFO_1_BUSY__SHIFT 0x11
+#define RMI_GENERAL_STATUS__UTC_PROBE1_BUSY__SHIFT 0x12
+#define RMI_GENERAL_STATUS__UTC_PROBE0_BUSY__SHIFT 0x13
+#define RMI_GENERAL_STATUS__RMI_XNACK_BUSY__SHIFT 0x14
+#define RMI_GENERAL_STATUS__XNACK_FIFO_NUM_USED__SHIFT 0x15
+#define RMI_GENERAL_STATUS__XNACK_FIFO_EMPTY__SHIFT 0x1d
+#define RMI_GENERAL_STATUS__XNACK_FIFO_FULL__SHIFT 0x1e
+#define RMI_GENERAL_STATUS__SKID_FIFO_FREESPACE_IS_ZERO_ERROR__SHIFT 0x1f
+#define RMI_GENERAL_STATUS__GENERAL_RMI_ERRORS_COMBINED_MASK 0x00000001L
+#define RMI_GENERAL_STATUS__SKID_FIFO_0_OVERFLOW_ERROR_MASK 0x00000002L
+#define RMI_GENERAL_STATUS__SKID_FIFO_0_UNDERFLOW_ERROR_MASK 0x00000004L
+#define RMI_GENERAL_STATUS__SKID_FIFO_1_OVERFLOW_ERROR_MASK 0x00000008L
+#define RMI_GENERAL_STATUS__SKID_FIFO_1_UNDERFLOW_ERROR_MASK 0x00000010L
+#define RMI_GENERAL_STATUS__RMI_XBAR_BUSY_MASK 0x00000020L
+#define RMI_GENERAL_STATUS__RMI_UTCL1_BUSY_MASK 0x00000040L
+#define RMI_GENERAL_STATUS__RMI_SCOREBOARD_BUSY_MASK 0x00000080L
+#define RMI_GENERAL_STATUS__TCIW0_PRT_FIFO_BUSY_MASK 0x00000100L
+#define RMI_GENERAL_STATUS__TCIW_FRMTR0_BUSY_MASK 0x00000200L
+#define RMI_GENERAL_STATUS__TCIW_RTN_FRMTR0_BUSY_MASK 0x00000400L
+#define RMI_GENERAL_STATUS__WRREQ_CONSUMER_FIFO_0_BUSY_MASK 0x00000800L
+#define RMI_GENERAL_STATUS__RDREQ_CONSUMER_FIFO_0_BUSY_MASK 0x00001000L
+#define RMI_GENERAL_STATUS__TCIW1_PRT_FIFO_BUSY_MASK 0x00002000L
+#define RMI_GENERAL_STATUS__TCIW_FRMTR1_BUSY_MASK 0x00004000L
+#define RMI_GENERAL_STATUS__TCIW_RTN_FRMTR1_BUSY_MASK 0x00008000L
+#define RMI_GENERAL_STATUS__WRREQ_CONSUMER_FIFO_1_BUSY_MASK 0x00010000L
+#define RMI_GENERAL_STATUS__RDREQ_CONSUMER_FIFO_1_BUSY_MASK 0x00020000L
+#define RMI_GENERAL_STATUS__UTC_PROBE1_BUSY_MASK 0x00040000L
+#define RMI_GENERAL_STATUS__UTC_PROBE0_BUSY_MASK 0x00080000L
+#define RMI_GENERAL_STATUS__RMI_XNACK_BUSY_MASK 0x00100000L
+#define RMI_GENERAL_STATUS__XNACK_FIFO_NUM_USED_MASK 0x1FE00000L
+#define RMI_GENERAL_STATUS__XNACK_FIFO_EMPTY_MASK 0x20000000L
+#define RMI_GENERAL_STATUS__XNACK_FIFO_FULL_MASK 0x40000000L
+#define RMI_GENERAL_STATUS__SKID_FIFO_FREESPACE_IS_ZERO_ERROR_MASK 0x80000000L
+//RMI_SUBBLOCK_STATUS0
+#define RMI_SUBBLOCK_STATUS0__UTC_EXT_LAT_HID_FIFO_NUM_USED_PROBE0__SHIFT 0x0
+#define RMI_SUBBLOCK_STATUS0__UTC_EXT_LAT_HID_FIFO_FULL_PROBE0__SHIFT 0x7
+#define RMI_SUBBLOCK_STATUS0__UTC_EXT_LAT_HID_FIFO_EMPTY_PROBE0__SHIFT 0x8
+#define RMI_SUBBLOCK_STATUS0__UTC_EXT_LAT_HID_FIFO_NUM_USED_PROBE1__SHIFT 0x9
+#define RMI_SUBBLOCK_STATUS0__UTC_EXT_LAT_HID_FIFO_FULL_PROBE1__SHIFT 0x10
+#define RMI_SUBBLOCK_STATUS0__UTC_EXT_LAT_HID_FIFO_EMPTY_PROBE1__SHIFT 0x11
+#define RMI_SUBBLOCK_STATUS0__TCIW0_INFLIGHT_CNT__SHIFT 0x12
+#define RMI_SUBBLOCK_STATUS0__UTC_EXT_LAT_HID_FIFO_NUM_USED_PROBE0_MASK 0x0000007FL
+#define RMI_SUBBLOCK_STATUS0__UTC_EXT_LAT_HID_FIFO_FULL_PROBE0_MASK 0x00000080L
+#define RMI_SUBBLOCK_STATUS0__UTC_EXT_LAT_HID_FIFO_EMPTY_PROBE0_MASK 0x00000100L
+#define RMI_SUBBLOCK_STATUS0__UTC_EXT_LAT_HID_FIFO_NUM_USED_PROBE1_MASK 0x0000FE00L
+#define RMI_SUBBLOCK_STATUS0__UTC_EXT_LAT_HID_FIFO_FULL_PROBE1_MASK 0x00010000L
+#define RMI_SUBBLOCK_STATUS0__UTC_EXT_LAT_HID_FIFO_EMPTY_PROBE1_MASK 0x00020000L
+#define RMI_SUBBLOCK_STATUS0__TCIW0_INFLIGHT_CNT_MASK 0x0FFC0000L
+//RMI_SUBBLOCK_STATUS1
+#define RMI_SUBBLOCK_STATUS1__SKID_FIFO_0_FREE_SPACE__SHIFT 0x0
+#define RMI_SUBBLOCK_STATUS1__SKID_FIFO_1_FREE_SPACE__SHIFT 0xa
+#define RMI_SUBBLOCK_STATUS1__TCIW1_INFLIGHT_CNT__SHIFT 0x14
+#define RMI_SUBBLOCK_STATUS1__SKID_FIFO_0_FREE_SPACE_MASK 0x000003FFL
+#define RMI_SUBBLOCK_STATUS1__SKID_FIFO_1_FREE_SPACE_MASK 0x000FFC00L
+#define RMI_SUBBLOCK_STATUS1__TCIW1_INFLIGHT_CNT_MASK 0x3FF00000L
+//RMI_SUBBLOCK_STATUS2
+#define RMI_SUBBLOCK_STATUS2__PRT_FIFO_0_NUM_USED__SHIFT 0x0
+#define RMI_SUBBLOCK_STATUS2__PRT_FIFO_1_NUM_USED__SHIFT 0x9
+#define RMI_SUBBLOCK_STATUS2__PRT_FIFO_0_NUM_USED_MASK 0x000001FFL
+#define RMI_SUBBLOCK_STATUS2__PRT_FIFO_1_NUM_USED_MASK 0x0003FE00L
+//RMI_SUBBLOCK_STATUS3
+#define RMI_SUBBLOCK_STATUS3__SKID_FIFO_0_FREE_SPACE_TOTAL__SHIFT 0x0
+#define RMI_SUBBLOCK_STATUS3__SKID_FIFO_1_FREE_SPACE_TOTAL__SHIFT 0xa
+#define RMI_SUBBLOCK_STATUS3__SKID_FIFO_0_FREE_SPACE_TOTAL_MASK 0x000003FFL
+#define RMI_SUBBLOCK_STATUS3__SKID_FIFO_1_FREE_SPACE_TOTAL_MASK 0x000FFC00L
+//RMI_XBAR_CONFIG
+#define RMI_XBAR_CONFIG__XBAR_MUX_CONFIG_OVERRIDE__SHIFT 0x0
+#define RMI_XBAR_CONFIG__XBAR_MUX_CONFIG_REQ_TYPE_OVERRIDE__SHIFT 0x2
+#define RMI_XBAR_CONFIG__XBAR_MUX_CONFIG_CB_DB_OVERRIDE__SHIFT 0x6
+#define RMI_XBAR_CONFIG__ARBITER_DIS__SHIFT 0x7
+#define RMI_XBAR_CONFIG__XBAR_EN_IN_REQ__SHIFT 0x8
+#define RMI_XBAR_CONFIG__XBAR_EN_IN_REQ_OVERRIDE__SHIFT 0xc
+#define RMI_XBAR_CONFIG__XBAR_EN_IN_RB0__SHIFT 0xd
+#define RMI_XBAR_CONFIG__XBAR_EN_IN_RB1__SHIFT 0xe
+#define RMI_XBAR_CONFIG__XBAR_MUX_CONFIG_OVERRIDE_MASK 0x00000003L
+#define RMI_XBAR_CONFIG__XBAR_MUX_CONFIG_REQ_TYPE_OVERRIDE_MASK 0x0000003CL
+#define RMI_XBAR_CONFIG__XBAR_MUX_CONFIG_CB_DB_OVERRIDE_MASK 0x00000040L
+#define RMI_XBAR_CONFIG__ARBITER_DIS_MASK 0x00000080L
+#define RMI_XBAR_CONFIG__XBAR_EN_IN_REQ_MASK 0x00000F00L
+#define RMI_XBAR_CONFIG__XBAR_EN_IN_REQ_OVERRIDE_MASK 0x00001000L
+#define RMI_XBAR_CONFIG__XBAR_EN_IN_RB0_MASK 0x00002000L
+#define RMI_XBAR_CONFIG__XBAR_EN_IN_RB1_MASK 0x00004000L
+//RMI_PROBE_POP_LOGIC_CNTL
+#define RMI_PROBE_POP_LOGIC_CNTL__EXT_LAT_FIFO_0_MAX_DEPTH__SHIFT 0x0
+#define RMI_PROBE_POP_LOGIC_CNTL__XLAT_COMBINE0_DIS__SHIFT 0x7
+#define RMI_PROBE_POP_LOGIC_CNTL__REDUCE_MAX_XLAT_CHAIN_SIZE_BY_2__SHIFT 0x8
+#define RMI_PROBE_POP_LOGIC_CNTL__EXT_LAT_FIFO_1_MAX_DEPTH__SHIFT 0xa
+#define RMI_PROBE_POP_LOGIC_CNTL__XLAT_COMBINE1_DIS__SHIFT 0x11
+#define RMI_PROBE_POP_LOGIC_CNTL__EXT_LAT_FIFO_0_MAX_DEPTH_MASK 0x0000007FL
+#define RMI_PROBE_POP_LOGIC_CNTL__XLAT_COMBINE0_DIS_MASK 0x00000080L
+#define RMI_PROBE_POP_LOGIC_CNTL__REDUCE_MAX_XLAT_CHAIN_SIZE_BY_2_MASK 0x00000300L
+#define RMI_PROBE_POP_LOGIC_CNTL__EXT_LAT_FIFO_1_MAX_DEPTH_MASK 0x0001FC00L
+#define RMI_PROBE_POP_LOGIC_CNTL__XLAT_COMBINE1_DIS_MASK 0x00020000L
+//RMI_UTC_XNACK_N_MISC_CNTL
+#define RMI_UTC_XNACK_N_MISC_CNTL__MASTER_XNACK_TIMER_INC__SHIFT 0x0
+#define RMI_UTC_XNACK_N_MISC_CNTL__IND_XNACK_TIMER_START_VALUE__SHIFT 0x8
+#define RMI_UTC_XNACK_N_MISC_CNTL__UTCL1_PERM_MODE__SHIFT 0xc
+#define RMI_UTC_XNACK_N_MISC_CNTL__CP_VMID_RESET_REQUEST_DISABLE__SHIFT 0xd
+#define RMI_UTC_XNACK_N_MISC_CNTL__MASTER_XNACK_TIMER_INC_MASK 0x000000FFL
+#define RMI_UTC_XNACK_N_MISC_CNTL__IND_XNACK_TIMER_START_VALUE_MASK 0x00000F00L
+#define RMI_UTC_XNACK_N_MISC_CNTL__UTCL1_PERM_MODE_MASK 0x00001000L
+#define RMI_UTC_XNACK_N_MISC_CNTL__CP_VMID_RESET_REQUEST_DISABLE_MASK 0x00002000L
+//RMI_DEMUX_CNTL
+#define RMI_DEMUX_CNTL__DEMUX_ARB0_STALL__SHIFT 0x0
+#define RMI_DEMUX_CNTL__DEMUX_ARB0_BREAK_LOB_ON_IDLEIN__SHIFT 0x1
+#define RMI_DEMUX_CNTL__DEMUX_ARB0_STALL_TIMER_OVERRIDE__SHIFT 0x4
+#define RMI_DEMUX_CNTL__DEMUX_ARB0_STALL_TIMER_START_VALUE__SHIFT 0x6
+#define RMI_DEMUX_CNTL__DEMUX_ARB0_MODE__SHIFT 0xe
+#define RMI_DEMUX_CNTL__DEMUX_ARB1_STALL__SHIFT 0x10
+#define RMI_DEMUX_CNTL__DEMUX_ARB1_BREAK_LOB_ON_IDLEIN__SHIFT 0x11
+#define RMI_DEMUX_CNTL__DEMUX_ARB1_STALL_TIMER_OVERRIDE__SHIFT 0x14
+#define RMI_DEMUX_CNTL__DEMUX_ARB1_STALL_TIMER_START_VALUE__SHIFT 0x16
+#define RMI_DEMUX_CNTL__DEMUX_ARB1_MODE__SHIFT 0x1e
+#define RMI_DEMUX_CNTL__DEMUX_ARB0_STALL_MASK 0x00000001L
+#define RMI_DEMUX_CNTL__DEMUX_ARB0_BREAK_LOB_ON_IDLEIN_MASK 0x00000002L
+#define RMI_DEMUX_CNTL__DEMUX_ARB0_STALL_TIMER_OVERRIDE_MASK 0x00000030L
+#define RMI_DEMUX_CNTL__DEMUX_ARB0_STALL_TIMER_START_VALUE_MASK 0x00003FC0L
+#define RMI_DEMUX_CNTL__DEMUX_ARB0_MODE_MASK 0x0000C000L
+#define RMI_DEMUX_CNTL__DEMUX_ARB1_STALL_MASK 0x00010000L
+#define RMI_DEMUX_CNTL__DEMUX_ARB1_BREAK_LOB_ON_IDLEIN_MASK 0x00020000L
+#define RMI_DEMUX_CNTL__DEMUX_ARB1_STALL_TIMER_OVERRIDE_MASK 0x00300000L
+#define RMI_DEMUX_CNTL__DEMUX_ARB1_STALL_TIMER_START_VALUE_MASK 0x3FC00000L
+#define RMI_DEMUX_CNTL__DEMUX_ARB1_MODE_MASK 0xC0000000L
+//RMI_UTCL1_CNTL1
+#define RMI_UTCL1_CNTL1__FORCE_4K_L2_RESP__SHIFT 0x0
+#define RMI_UTCL1_CNTL1__GPUVM_64K_DEF__SHIFT 0x1
+#define RMI_UTCL1_CNTL1__GPUVM_PERM_MODE__SHIFT 0x2
+#define RMI_UTCL1_CNTL1__RESP_MODE__SHIFT 0x3
+#define RMI_UTCL1_CNTL1__RESP_FAULT_MODE__SHIFT 0x5
+#define RMI_UTCL1_CNTL1__CLIENTID__SHIFT 0x7
+#define RMI_UTCL1_CNTL1__USERVM_DIS__SHIFT 0x10
+#define RMI_UTCL1_CNTL1__ENABLE_PUSH_LFIFO__SHIFT 0x11
+#define RMI_UTCL1_CNTL1__ENABLE_LFIFO_PRI_ARB__SHIFT 0x12
+#define RMI_UTCL1_CNTL1__REG_INV_VMID__SHIFT 0x13
+#define RMI_UTCL1_CNTL1__REG_INV_ALL_VMID__SHIFT 0x17
+#define RMI_UTCL1_CNTL1__REG_INV_TOGGLE__SHIFT 0x18
+#define RMI_UTCL1_CNTL1__CLIENT_INVALIDATE_ALL_VMID__SHIFT 0x19
+#define RMI_UTCL1_CNTL1__FORCE_MISS__SHIFT 0x1a
+#define RMI_UTCL1_CNTL1__FORCE_IN_ORDER__SHIFT 0x1b
+#define RMI_UTCL1_CNTL1__REDUCE_FIFO_DEPTH_BY_2__SHIFT 0x1c
+#define RMI_UTCL1_CNTL1__REDUCE_CACHE_SIZE_BY_2__SHIFT 0x1e
+#define RMI_UTCL1_CNTL1__FORCE_4K_L2_RESP_MASK 0x00000001L
+#define RMI_UTCL1_CNTL1__GPUVM_64K_DEF_MASK 0x00000002L
+#define RMI_UTCL1_CNTL1__GPUVM_PERM_MODE_MASK 0x00000004L
+#define RMI_UTCL1_CNTL1__RESP_MODE_MASK 0x00000018L
+#define RMI_UTCL1_CNTL1__RESP_FAULT_MODE_MASK 0x00000060L
+#define RMI_UTCL1_CNTL1__CLIENTID_MASK 0x0000FF80L
+#define RMI_UTCL1_CNTL1__USERVM_DIS_MASK 0x00010000L
+#define RMI_UTCL1_CNTL1__ENABLE_PUSH_LFIFO_MASK 0x00020000L
+#define RMI_UTCL1_CNTL1__ENABLE_LFIFO_PRI_ARB_MASK 0x00040000L
+#define RMI_UTCL1_CNTL1__REG_INV_VMID_MASK 0x00780000L
+#define RMI_UTCL1_CNTL1__REG_INV_ALL_VMID_MASK 0x00800000L
+#define RMI_UTCL1_CNTL1__REG_INV_TOGGLE_MASK 0x01000000L
+#define RMI_UTCL1_CNTL1__CLIENT_INVALIDATE_ALL_VMID_MASK 0x02000000L
+#define RMI_UTCL1_CNTL1__FORCE_MISS_MASK 0x04000000L
+#define RMI_UTCL1_CNTL1__FORCE_IN_ORDER_MASK 0x08000000L
+#define RMI_UTCL1_CNTL1__REDUCE_FIFO_DEPTH_BY_2_MASK 0x30000000L
+#define RMI_UTCL1_CNTL1__REDUCE_CACHE_SIZE_BY_2_MASK 0xC0000000L
+//RMI_UTCL1_CNTL2
+#define RMI_UTCL1_CNTL2__UTC_SPARE__SHIFT 0x0
+#define RMI_UTCL1_CNTL2__MTYPE_OVRD_DIS__SHIFT 0x9
+#define RMI_UTCL1_CNTL2__LINE_VALID__SHIFT 0xa
+#define RMI_UTCL1_CNTL2__DIS_EDC__SHIFT 0xb
+#define RMI_UTCL1_CNTL2__GPUVM_INV_MODE__SHIFT 0xc
+#define RMI_UTCL1_CNTL2__SHOOTDOWN_OPT__SHIFT 0xd
+#define RMI_UTCL1_CNTL2__FORCE_SNOOP__SHIFT 0xe
+#define RMI_UTCL1_CNTL2__FORCE_GPUVM_INV_ACK__SHIFT 0xf
+#define RMI_UTCL1_CNTL2__UTCL1_ARB_BURST_MODE__SHIFT 0x10
+#define RMI_UTCL1_CNTL2__UTCL1_ENABLE_PERF_EVENT_RD_WR__SHIFT 0x12
+#define RMI_UTCL1_CNTL2__UTCL1_PERF_EVENT_RD_WR__SHIFT 0x13
+#define RMI_UTCL1_CNTL2__UTCL1_ENABLE_PERF_EVENT_VMID__SHIFT 0x14
+#define RMI_UTCL1_CNTL2__UTCL1_PERF_EVENT_VMID__SHIFT 0x15
+#define RMI_UTCL1_CNTL2__UTCL1_DIS_DUAL_L2_REQ__SHIFT 0x19
+#define RMI_UTCL1_CNTL2__UTCL1_FORCE_FRAG_2M_TO_64K__SHIFT 0x1a
+#define RMI_UTCL1_CNTL2__UTC_SPARE_MASK 0x000000FFL
+#define RMI_UTCL1_CNTL2__MTYPE_OVRD_DIS_MASK 0x00000200L
+#define RMI_UTCL1_CNTL2__LINE_VALID_MASK 0x00000400L
+#define RMI_UTCL1_CNTL2__DIS_EDC_MASK 0x00000800L
+#define RMI_UTCL1_CNTL2__GPUVM_INV_MODE_MASK 0x00001000L
+#define RMI_UTCL1_CNTL2__SHOOTDOWN_OPT_MASK 0x00002000L
+#define RMI_UTCL1_CNTL2__FORCE_SNOOP_MASK 0x00004000L
+#define RMI_UTCL1_CNTL2__FORCE_GPUVM_INV_ACK_MASK 0x00008000L
+#define RMI_UTCL1_CNTL2__UTCL1_ARB_BURST_MODE_MASK 0x00030000L
+#define RMI_UTCL1_CNTL2__UTCL1_ENABLE_PERF_EVENT_RD_WR_MASK 0x00040000L
+#define RMI_UTCL1_CNTL2__UTCL1_PERF_EVENT_RD_WR_MASK 0x00080000L
+#define RMI_UTCL1_CNTL2__UTCL1_ENABLE_PERF_EVENT_VMID_MASK 0x00100000L
+#define RMI_UTCL1_CNTL2__UTCL1_PERF_EVENT_VMID_MASK 0x01E00000L
+#define RMI_UTCL1_CNTL2__UTCL1_DIS_DUAL_L2_REQ_MASK 0x02000000L
+#define RMI_UTCL1_CNTL2__UTCL1_FORCE_FRAG_2M_TO_64K_MASK 0x04000000L
+//RMI_UTC_UNIT_CONFIG
+#define RMI_UTC_UNIT_CONFIG__TMZ_REQ_EN__SHIFT 0x0
+#define RMI_UTC_UNIT_CONFIG__TMZ_REQ_EN_MASK 0x0000FFFFL
+//RMI_TCIW_FORMATTER0_CNTL
+#define RMI_TCIW_FORMATTER0_CNTL__WR_COMBINE0_DIS_OVERRIDE__SHIFT 0x0
+#define RMI_TCIW_FORMATTER0_CNTL__WR_COMBINE0_TIME_OUT_WINDOW__SHIFT 0x1
+#define RMI_TCIW_FORMATTER0_CNTL__TCIW0_MAX_ALLOWED_INFLIGHT_REQ__SHIFT 0x9
+#define RMI_TCIW_FORMATTER0_CNTL__SKID_FIFO_0_FREE_SPACE_DELTA__SHIFT 0x13
+#define RMI_TCIW_FORMATTER0_CNTL__SKID_FIFO_0_FREE_SPACE_DELTA_UPDATE__SHIFT 0x1b
+#define RMI_TCIW_FORMATTER0_CNTL__TCIW0_REQ_SAFE_MODE__SHIFT 0x1c
+#define RMI_TCIW_FORMATTER0_CNTL__RMI_IN0_REORDER_DIS__SHIFT 0x1d
+#define RMI_TCIW_FORMATTER0_CNTL__WR_COMBINE0_DIS_AT_LAST_OF_BURST__SHIFT 0x1e
+#define RMI_TCIW_FORMATTER0_CNTL__ALL_FAULT_RET0_DATA__SHIFT 0x1f
+#define RMI_TCIW_FORMATTER0_CNTL__WR_COMBINE0_DIS_OVERRIDE_MASK 0x00000001L
+#define RMI_TCIW_FORMATTER0_CNTL__WR_COMBINE0_TIME_OUT_WINDOW_MASK 0x000001FEL
+#define RMI_TCIW_FORMATTER0_CNTL__TCIW0_MAX_ALLOWED_INFLIGHT_REQ_MASK 0x0007FE00L
+#define RMI_TCIW_FORMATTER0_CNTL__SKID_FIFO_0_FREE_SPACE_DELTA_MASK 0x07F80000L
+#define RMI_TCIW_FORMATTER0_CNTL__SKID_FIFO_0_FREE_SPACE_DELTA_UPDATE_MASK 0x08000000L
+#define RMI_TCIW_FORMATTER0_CNTL__TCIW0_REQ_SAFE_MODE_MASK 0x10000000L
+#define RMI_TCIW_FORMATTER0_CNTL__RMI_IN0_REORDER_DIS_MASK 0x20000000L
+#define RMI_TCIW_FORMATTER0_CNTL__WR_COMBINE0_DIS_AT_LAST_OF_BURST_MASK 0x40000000L
+#define RMI_TCIW_FORMATTER0_CNTL__ALL_FAULT_RET0_DATA_MASK 0x80000000L
+//RMI_TCIW_FORMATTER1_CNTL
+#define RMI_TCIW_FORMATTER1_CNTL__WR_COMBINE1_DIS_OVERRIDE__SHIFT 0x0
+#define RMI_TCIW_FORMATTER1_CNTL__WR_COMBINE1_TIME_OUT_WINDOW__SHIFT 0x1
+#define RMI_TCIW_FORMATTER1_CNTL__TCIW1_MAX_ALLOWED_INFLIGHT_REQ__SHIFT 0x9
+#define RMI_TCIW_FORMATTER1_CNTL__SKID_FIFO_1_FREE_SPACE_DELTA__SHIFT 0x13
+#define RMI_TCIW_FORMATTER1_CNTL__SKID_FIFO_1_FREE_SPACE_DELTA_UPDATE__SHIFT 0x1b
+#define RMI_TCIW_FORMATTER1_CNTL__TCIW1_REQ_SAFE_MODE__SHIFT 0x1c
+#define RMI_TCIW_FORMATTER1_CNTL__RMI_IN1_REORDER_DIS__SHIFT 0x1d
+#define RMI_TCIW_FORMATTER1_CNTL__WR_COMBINE1_DIS_AT_LAST_OF_BURST__SHIFT 0x1e
+#define RMI_TCIW_FORMATTER1_CNTL__ALL_FAULT_RET1_DATA__SHIFT 0x1f
+#define RMI_TCIW_FORMATTER1_CNTL__WR_COMBINE1_DIS_OVERRIDE_MASK 0x00000001L
+#define RMI_TCIW_FORMATTER1_CNTL__WR_COMBINE1_TIME_OUT_WINDOW_MASK 0x000001FEL
+#define RMI_TCIW_FORMATTER1_CNTL__TCIW1_MAX_ALLOWED_INFLIGHT_REQ_MASK 0x0007FE00L
+#define RMI_TCIW_FORMATTER1_CNTL__SKID_FIFO_1_FREE_SPACE_DELTA_MASK 0x07F80000L
+#define RMI_TCIW_FORMATTER1_CNTL__SKID_FIFO_1_FREE_SPACE_DELTA_UPDATE_MASK 0x08000000L
+#define RMI_TCIW_FORMATTER1_CNTL__TCIW1_REQ_SAFE_MODE_MASK 0x10000000L
+#define RMI_TCIW_FORMATTER1_CNTL__RMI_IN1_REORDER_DIS_MASK 0x20000000L
+#define RMI_TCIW_FORMATTER1_CNTL__WR_COMBINE1_DIS_AT_LAST_OF_BURST_MASK 0x40000000L
+#define RMI_TCIW_FORMATTER1_CNTL__ALL_FAULT_RET1_DATA_MASK 0x80000000L
+//RMI_SCOREBOARD_CNTL
+#define RMI_SCOREBOARD_CNTL__COMPLETE_RB0_FLUSH__SHIFT 0x0
+#define RMI_SCOREBOARD_CNTL__REQ_IN_RE_EN_AFTER_FLUSH_RB0__SHIFT 0x1
+#define RMI_SCOREBOARD_CNTL__COMPLETE_RB1_FLUSH__SHIFT 0x2
+#define RMI_SCOREBOARD_CNTL__REQ_IN_RE_EN_AFTER_FLUSH_RB1__SHIFT 0x3
+#define RMI_SCOREBOARD_CNTL__TIME_STAMP_FLUSH_RB1__SHIFT 0x4
+#define RMI_SCOREBOARD_CNTL__VMID_INVAL_FLUSH_TYPE_OVERRIDE_EN__SHIFT 0x5
+#define RMI_SCOREBOARD_CNTL__VMID_INVAL_FLUSH_TYPE_OVERRIDE_VALUE__SHIFT 0x6
+#define RMI_SCOREBOARD_CNTL__TIME_STAMP_FLUSH_RB0__SHIFT 0x7
+#define RMI_SCOREBOARD_CNTL__FORCE_VMID_INVAL_DONE_EN__SHIFT 0x8
+#define RMI_SCOREBOARD_CNTL__FORCE_VMID_INVAL_DONE_TIMER_START_VALUE__SHIFT 0x9
+#define RMI_SCOREBOARD_CNTL__COMPLETE_RB0_FLUSH_MASK 0x00000001L
+#define RMI_SCOREBOARD_CNTL__REQ_IN_RE_EN_AFTER_FLUSH_RB0_MASK 0x00000002L
+#define RMI_SCOREBOARD_CNTL__COMPLETE_RB1_FLUSH_MASK 0x00000004L
+#define RMI_SCOREBOARD_CNTL__REQ_IN_RE_EN_AFTER_FLUSH_RB1_MASK 0x00000008L
+#define RMI_SCOREBOARD_CNTL__TIME_STAMP_FLUSH_RB1_MASK 0x00000010L
+#define RMI_SCOREBOARD_CNTL__VMID_INVAL_FLUSH_TYPE_OVERRIDE_EN_MASK 0x00000020L
+#define RMI_SCOREBOARD_CNTL__VMID_INVAL_FLUSH_TYPE_OVERRIDE_VALUE_MASK 0x00000040L
+#define RMI_SCOREBOARD_CNTL__TIME_STAMP_FLUSH_RB0_MASK 0x00000080L
+#define RMI_SCOREBOARD_CNTL__FORCE_VMID_INVAL_DONE_EN_MASK 0x00000100L
+#define RMI_SCOREBOARD_CNTL__FORCE_VMID_INVAL_DONE_TIMER_START_VALUE_MASK 0x001FFE00L
+//RMI_SCOREBOARD_STATUS0
+#define RMI_SCOREBOARD_STATUS0__CURRENT_SESSION_ID__SHIFT 0x0
+#define RMI_SCOREBOARD_STATUS0__CP_VMID_INV_IN_PROG__SHIFT 0x1
+#define RMI_SCOREBOARD_STATUS0__CP_VMID_INV_REQ_VMID__SHIFT 0x2
+#define RMI_SCOREBOARD_STATUS0__CP_VMID_INV_UTC_DONE__SHIFT 0x12
+#define RMI_SCOREBOARD_STATUS0__CP_VMID_INV_DONE__SHIFT 0x13
+#define RMI_SCOREBOARD_STATUS0__CP_VMID_INV_FLUSH_TYPE__SHIFT 0x14
+#define RMI_SCOREBOARD_STATUS0__FORCE_VMID_INV_DONE__SHIFT 0x15
+#define RMI_SCOREBOARD_STATUS0__CURRENT_SESSION_ID_MASK 0x00000001L
+#define RMI_SCOREBOARD_STATUS0__CP_VMID_INV_IN_PROG_MASK 0x00000002L
+#define RMI_SCOREBOARD_STATUS0__CP_VMID_INV_REQ_VMID_MASK 0x0003FFFCL
+#define RMI_SCOREBOARD_STATUS0__CP_VMID_INV_UTC_DONE_MASK 0x00040000L
+#define RMI_SCOREBOARD_STATUS0__CP_VMID_INV_DONE_MASK 0x00080000L
+#define RMI_SCOREBOARD_STATUS0__CP_VMID_INV_FLUSH_TYPE_MASK 0x00100000L
+#define RMI_SCOREBOARD_STATUS0__FORCE_VMID_INV_DONE_MASK 0x00200000L
+//RMI_SCOREBOARD_STATUS1
+#define RMI_SCOREBOARD_STATUS1__RUNNING_CNT_RB0__SHIFT 0x0
+#define RMI_SCOREBOARD_STATUS1__RUNNING_CNT_UNDERFLOW_RB0__SHIFT 0xc
+#define RMI_SCOREBOARD_STATUS1__RUNNING_CNT_OVERFLOW_RB0__SHIFT 0xd
+#define RMI_SCOREBOARD_STATUS1__MULTI_VMID_INVAL_FROM_CP_DETECTED__SHIFT 0xe
+#define RMI_SCOREBOARD_STATUS1__RUNNING_CNT_RB1__SHIFT 0xf
+#define RMI_SCOREBOARD_STATUS1__RUNNING_CNT_UNDERFLOW_RB1__SHIFT 0x1b
+#define RMI_SCOREBOARD_STATUS1__RUNNING_CNT_OVERFLOW_RB1__SHIFT 0x1c
+#define RMI_SCOREBOARD_STATUS1__COM_FLUSH_IN_PROG_RB1__SHIFT 0x1d
+#define RMI_SCOREBOARD_STATUS1__COM_FLUSH_IN_PROG_RB0__SHIFT 0x1e
+#define RMI_SCOREBOARD_STATUS1__RUNNING_CNT_RB0_MASK 0x00000FFFL
+#define RMI_SCOREBOARD_STATUS1__RUNNING_CNT_UNDERFLOW_RB0_MASK 0x00001000L
+#define RMI_SCOREBOARD_STATUS1__RUNNING_CNT_OVERFLOW_RB0_MASK 0x00002000L
+#define RMI_SCOREBOARD_STATUS1__MULTI_VMID_INVAL_FROM_CP_DETECTED_MASK 0x00004000L
+#define RMI_SCOREBOARD_STATUS1__RUNNING_CNT_RB1_MASK 0x07FF8000L
+#define RMI_SCOREBOARD_STATUS1__RUNNING_CNT_UNDERFLOW_RB1_MASK 0x08000000L
+#define RMI_SCOREBOARD_STATUS1__RUNNING_CNT_OVERFLOW_RB1_MASK 0x10000000L
+#define RMI_SCOREBOARD_STATUS1__COM_FLUSH_IN_PROG_RB1_MASK 0x20000000L
+#define RMI_SCOREBOARD_STATUS1__COM_FLUSH_IN_PROG_RB0_MASK 0x40000000L
+//RMI_SCOREBOARD_STATUS2
+#define RMI_SCOREBOARD_STATUS2__SNAPSHOT_CNT_RB0__SHIFT 0x0
+#define RMI_SCOREBOARD_STATUS2__SNAPSHOT_CNT_UNDERFLOW_RB0__SHIFT 0xc
+#define RMI_SCOREBOARD_STATUS2__SNAPSHOT_CNT_RB1__SHIFT 0xd
+#define RMI_SCOREBOARD_STATUS2__SNAPSHOT_CNT_UNDERFLOW_RB1__SHIFT 0x19
+#define RMI_SCOREBOARD_STATUS2__COM_FLUSH_DONE_RB1__SHIFT 0x1a
+#define RMI_SCOREBOARD_STATUS2__COM_FLUSH_DONE_RB0__SHIFT 0x1b
+#define RMI_SCOREBOARD_STATUS2__TIME_STAMP_FLUSH_IN_PROG_RB0__SHIFT 0x1c
+#define RMI_SCOREBOARD_STATUS2__TIME_STAMP_FLUSH_IN_PROG_RB1__SHIFT 0x1d
+#define RMI_SCOREBOARD_STATUS2__TIME_STAMP_FLUSH_DONE_RB0__SHIFT 0x1e
+#define RMI_SCOREBOARD_STATUS2__TIME_STAMP_FLUSH_DONE_RB1__SHIFT 0x1f
+#define RMI_SCOREBOARD_STATUS2__SNAPSHOT_CNT_RB0_MASK 0x00000FFFL
+#define RMI_SCOREBOARD_STATUS2__SNAPSHOT_CNT_UNDERFLOW_RB0_MASK 0x00001000L
+#define RMI_SCOREBOARD_STATUS2__SNAPSHOT_CNT_RB1_MASK 0x01FFE000L
+#define RMI_SCOREBOARD_STATUS2__SNAPSHOT_CNT_UNDERFLOW_RB1_MASK 0x02000000L
+#define RMI_SCOREBOARD_STATUS2__COM_FLUSH_DONE_RB1_MASK 0x04000000L
+#define RMI_SCOREBOARD_STATUS2__COM_FLUSH_DONE_RB0_MASK 0x08000000L
+#define RMI_SCOREBOARD_STATUS2__TIME_STAMP_FLUSH_IN_PROG_RB0_MASK 0x10000000L
+#define RMI_SCOREBOARD_STATUS2__TIME_STAMP_FLUSH_IN_PROG_RB1_MASK 0x20000000L
+#define RMI_SCOREBOARD_STATUS2__TIME_STAMP_FLUSH_DONE_RB0_MASK 0x40000000L
+#define RMI_SCOREBOARD_STATUS2__TIME_STAMP_FLUSH_DONE_RB1_MASK 0x80000000L
+//RMI_XBAR_ARBITER_CONFIG
+#define RMI_XBAR_ARBITER_CONFIG__XBAR_ARB0_MODE__SHIFT 0x0
+#define RMI_XBAR_ARBITER_CONFIG__XBAR_ARB0_BREAK_LOB_ON_WEIGHTEDRR__SHIFT 0x2
+#define RMI_XBAR_ARBITER_CONFIG__XBAR_ARB0_STALL__SHIFT 0x3
+#define RMI_XBAR_ARBITER_CONFIG__XBAR_ARB0_BREAK_LOB_ON_IDLEIN__SHIFT 0x4
+#define RMI_XBAR_ARBITER_CONFIG__XBAR_ARB0_STALL_TIMER_OVERRIDE__SHIFT 0x6
+#define RMI_XBAR_ARBITER_CONFIG__XBAR_ARB0_STALL_TIMER_START_VALUE__SHIFT 0x8
+#define RMI_XBAR_ARBITER_CONFIG__XBAR_ARB1_MODE__SHIFT 0x10
+#define RMI_XBAR_ARBITER_CONFIG__XBAR_ARB1_BREAK_LOB_ON_WEIGHTEDRR__SHIFT 0x12
+#define RMI_XBAR_ARBITER_CONFIG__XBAR_ARB1_STALL__SHIFT 0x13
+#define RMI_XBAR_ARBITER_CONFIG__XBAR_ARB1_BREAK_LOB_ON_IDLEIN__SHIFT 0x14
+#define RMI_XBAR_ARBITER_CONFIG__XBAR_ARB1_STALL_TIMER_OVERRIDE__SHIFT 0x16
+#define RMI_XBAR_ARBITER_CONFIG__XBAR_ARB1_STALL_TIMER_START_VALUE__SHIFT 0x18
+#define RMI_XBAR_ARBITER_CONFIG__XBAR_ARB0_MODE_MASK 0x00000003L
+#define RMI_XBAR_ARBITER_CONFIG__XBAR_ARB0_BREAK_LOB_ON_WEIGHTEDRR_MASK 0x00000004L
+#define RMI_XBAR_ARBITER_CONFIG__XBAR_ARB0_STALL_MASK 0x00000008L
+#define RMI_XBAR_ARBITER_CONFIG__XBAR_ARB0_BREAK_LOB_ON_IDLEIN_MASK 0x00000010L
+#define RMI_XBAR_ARBITER_CONFIG__XBAR_ARB0_STALL_TIMER_OVERRIDE_MASK 0x000000C0L
+#define RMI_XBAR_ARBITER_CONFIG__XBAR_ARB0_STALL_TIMER_START_VALUE_MASK 0x0000FF00L
+#define RMI_XBAR_ARBITER_CONFIG__XBAR_ARB1_MODE_MASK 0x00030000L
+#define RMI_XBAR_ARBITER_CONFIG__XBAR_ARB1_BREAK_LOB_ON_WEIGHTEDRR_MASK 0x00040000L
+#define RMI_XBAR_ARBITER_CONFIG__XBAR_ARB1_STALL_MASK 0x00080000L
+#define RMI_XBAR_ARBITER_CONFIG__XBAR_ARB1_BREAK_LOB_ON_IDLEIN_MASK 0x00100000L
+#define RMI_XBAR_ARBITER_CONFIG__XBAR_ARB1_STALL_TIMER_OVERRIDE_MASK 0x00C00000L
+#define RMI_XBAR_ARBITER_CONFIG__XBAR_ARB1_STALL_TIMER_START_VALUE_MASK 0xFF000000L
+//RMI_XBAR_ARBITER_CONFIG_1
+#define RMI_XBAR_ARBITER_CONFIG_1__XBAR_ARB_ROUND_ROBIN_WEIGHT_RB0_RD__SHIFT 0x0
+#define RMI_XBAR_ARBITER_CONFIG_1__XBAR_ARB_ROUND_ROBIN_WEIGHT_RB0_WR__SHIFT 0x8
+#define RMI_XBAR_ARBITER_CONFIG_1__XBAR_ARB_ROUND_ROBIN_WEIGHT_RB1_RD__SHIFT 0x10
+#define RMI_XBAR_ARBITER_CONFIG_1__XBAR_ARB_ROUND_ROBIN_WEIGHT_RB1_WR__SHIFT 0x18
+#define RMI_XBAR_ARBITER_CONFIG_1__XBAR_ARB_ROUND_ROBIN_WEIGHT_RB0_RD_MASK 0x000000FFL
+#define RMI_XBAR_ARBITER_CONFIG_1__XBAR_ARB_ROUND_ROBIN_WEIGHT_RB0_WR_MASK 0x0000FF00L
+#define RMI_XBAR_ARBITER_CONFIG_1__XBAR_ARB_ROUND_ROBIN_WEIGHT_RB1_RD_MASK 0x00FF0000L
+#define RMI_XBAR_ARBITER_CONFIG_1__XBAR_ARB_ROUND_ROBIN_WEIGHT_RB1_WR_MASK 0xFF000000L
+//RMI_CLOCK_CNTRL
+#define RMI_CLOCK_CNTRL__DYN_CLK_RB0_BUSY_MASK__SHIFT 0x0
+#define RMI_CLOCK_CNTRL__DYN_CLK_CMN_BUSY_MASK__SHIFT 0x5
+#define RMI_CLOCK_CNTRL__DYN_CLK_RB0_WAKEUP_MASK__SHIFT 0xa
+#define RMI_CLOCK_CNTRL__DYN_CLK_CMN_WAKEUP_MASK__SHIFT 0xf
+#define RMI_CLOCK_CNTRL__DYN_CLK_RB1_BUSY_MASK__SHIFT 0x14
+#define RMI_CLOCK_CNTRL__DYN_CLK_RB1_WAKEUP_MASK__SHIFT 0x19
+#define RMI_CLOCK_CNTRL__DYN_CLK_RB0_BUSY_MASK_MASK 0x0000001FL
+#define RMI_CLOCK_CNTRL__DYN_CLK_CMN_BUSY_MASK_MASK 0x000003E0L
+#define RMI_CLOCK_CNTRL__DYN_CLK_RB0_WAKEUP_MASK_MASK 0x00007C00L
+#define RMI_CLOCK_CNTRL__DYN_CLK_CMN_WAKEUP_MASK_MASK 0x000F8000L
+#define RMI_CLOCK_CNTRL__DYN_CLK_RB1_BUSY_MASK_MASK 0x01F00000L
+#define RMI_CLOCK_CNTRL__DYN_CLK_RB1_WAKEUP_MASK_MASK 0x3E000000L
+//RMI_UTCL1_STATUS
+#define RMI_UTCL1_STATUS__FAULT_DETECTED__SHIFT 0x0
+#define RMI_UTCL1_STATUS__RETRY_DETECTED__SHIFT 0x1
+#define RMI_UTCL1_STATUS__PRT_DETECTED__SHIFT 0x2
+#define RMI_UTCL1_STATUS__FAULT_DETECTED_MASK 0x00000001L
+#define RMI_UTCL1_STATUS__RETRY_DETECTED_MASK 0x00000002L
+#define RMI_UTCL1_STATUS__PRT_DETECTED_MASK 0x00000004L
+//RMI_XNACK_DEBUG
+#define RMI_XNACK_DEBUG__XNACK_PER_VMID__SHIFT 0x0
+#define RMI_XNACK_DEBUG__XNACK_PER_VMID_MASK 0x0000FFFFL
+//RMI_SPARE
+#define RMI_SPARE__RMI_ARBITER_STALL_TIMER_ENABLED_ALLOW_STREAMING__SHIFT 0x0
+#define RMI_SPARE__SPARE_BIT_1__SHIFT 0x1
+#define RMI_SPARE__SPARE_BIT_2__SHIFT 0x2
+#define RMI_SPARE__SPARE_BIT_3__SHIFT 0x3
+#define RMI_SPARE__SPARE_BIT_4__SHIFT 0x4
+#define RMI_SPARE__SPARE_BIT_5__SHIFT 0x5
+#define RMI_SPARE__SPARE_BIT_6__SHIFT 0x6
+#define RMI_SPARE__SPARE_BIT_7__SHIFT 0x7
+#define RMI_SPARE__SPARE_BIT_8_0__SHIFT 0x8
+#define RMI_SPARE__SPARE_BIT_16_0__SHIFT 0x10
+#define RMI_SPARE__RMI_ARBITER_STALL_TIMER_ENABLED_ALLOW_STREAMING_MASK 0x00000001L
+#define RMI_SPARE__SPARE_BIT_1_MASK 0x00000002L
+#define RMI_SPARE__SPARE_BIT_2_MASK 0x00000004L
+#define RMI_SPARE__SPARE_BIT_3_MASK 0x00000008L
+#define RMI_SPARE__SPARE_BIT_4_MASK 0x00000010L
+#define RMI_SPARE__SPARE_BIT_5_MASK 0x00000020L
+#define RMI_SPARE__SPARE_BIT_6_MASK 0x00000040L
+#define RMI_SPARE__SPARE_BIT_7_MASK 0x00000080L
+#define RMI_SPARE__SPARE_BIT_8_0_MASK 0x0000FF00L
+#define RMI_SPARE__SPARE_BIT_16_0_MASK 0xFFFF0000L
+//RMI_SPARE_1
+#define RMI_SPARE_1__SPARE_BIT_8__SHIFT 0x0
+#define RMI_SPARE_1__SPARE_BIT_9__SHIFT 0x1
+#define RMI_SPARE_1__SPARE_BIT_10__SHIFT 0x2
+#define RMI_SPARE_1__SPARE_BIT_11__SHIFT 0x3
+#define RMI_SPARE_1__SPARE_BIT_12__SHIFT 0x4
+#define RMI_SPARE_1__SPARE_BIT_13__SHIFT 0x5
+#define RMI_SPARE_1__SPARE_BIT_14__SHIFT 0x6
+#define RMI_SPARE_1__SPARE_BIT_15__SHIFT 0x7
+#define RMI_SPARE_1__SPARE_BIT_8_1__SHIFT 0x8
+#define RMI_SPARE_1__SPARE_BIT_16_1__SHIFT 0x10
+#define RMI_SPARE_1__SPARE_BIT_8_MASK 0x00000001L
+#define RMI_SPARE_1__SPARE_BIT_9_MASK 0x00000002L
+#define RMI_SPARE_1__SPARE_BIT_10_MASK 0x00000004L
+#define RMI_SPARE_1__SPARE_BIT_11_MASK 0x00000008L
+#define RMI_SPARE_1__SPARE_BIT_12_MASK 0x00000010L
+#define RMI_SPARE_1__SPARE_BIT_13_MASK 0x00000020L
+#define RMI_SPARE_1__SPARE_BIT_14_MASK 0x00000040L
+#define RMI_SPARE_1__SPARE_BIT_15_MASK 0x00000080L
+#define RMI_SPARE_1__SPARE_BIT_8_1_MASK 0x0000FF00L
+#define RMI_SPARE_1__SPARE_BIT_16_1_MASK 0xFFFF0000L
+//RMI_SPARE_2
+#define RMI_SPARE_2__SPARE_BIT_16__SHIFT 0x0
+#define RMI_SPARE_2__SPARE_BIT_17__SHIFT 0x1
+#define RMI_SPARE_2__SPARE_BIT_18__SHIFT 0x2
+#define RMI_SPARE_2__SPARE_BIT_19__SHIFT 0x3
+#define RMI_SPARE_2__SPARE_BIT_20__SHIFT 0x4
+#define RMI_SPARE_2__SPARE_BIT_21__SHIFT 0x5
+#define RMI_SPARE_2__SPARE_BIT_22__SHIFT 0x6
+#define RMI_SPARE_2__SPARE_BIT_23__SHIFT 0x7
+#define RMI_SPARE_2__SPARE_BIT_4_0__SHIFT 0x8
+#define RMI_SPARE_2__SPARE_BIT_4_1__SHIFT 0xc
+#define RMI_SPARE_2__SPARE_BIT_8_2__SHIFT 0x10
+#define RMI_SPARE_2__SPARE_BIT_8_3__SHIFT 0x18
+#define RMI_SPARE_2__SPARE_BIT_16_MASK 0x00000001L
+#define RMI_SPARE_2__SPARE_BIT_17_MASK 0x00000002L
+#define RMI_SPARE_2__SPARE_BIT_18_MASK 0x00000004L
+#define RMI_SPARE_2__SPARE_BIT_19_MASK 0x00000008L
+#define RMI_SPARE_2__SPARE_BIT_20_MASK 0x00000010L
+#define RMI_SPARE_2__SPARE_BIT_21_MASK 0x00000020L
+#define RMI_SPARE_2__SPARE_BIT_22_MASK 0x00000040L
+#define RMI_SPARE_2__SPARE_BIT_23_MASK 0x00000080L
+#define RMI_SPARE_2__SPARE_BIT_4_0_MASK 0x00000F00L
+#define RMI_SPARE_2__SPARE_BIT_4_1_MASK 0x0000F000L
+#define RMI_SPARE_2__SPARE_BIT_8_2_MASK 0x00FF0000L
+#define RMI_SPARE_2__SPARE_BIT_8_3_MASK 0xFF000000L
+
+
+// addressBlock: xcd0_gc_utcl2_atcl2dec
+//ATC_L2_CNTL
+#define ATC_L2_CNTL__NUMBER_OF_TRANSLATION_READ_REQUESTS__SHIFT 0x0
+#define ATC_L2_CNTL__NUMBER_OF_TRANSLATION_WRITE_REQUESTS__SHIFT 0x3
+#define ATC_L2_CNTL__NUMBER_OF_TRANSLATION_READS_DEPENDS_ON_ADDR_MOD__SHIFT 0x6
+#define ATC_L2_CNTL__NUMBER_OF_TRANSLATION_WRITES_DEPENDS_ON_ADDR_MOD__SHIFT 0x7
+#define ATC_L2_CNTL__NUMBER_OF_HOST_TRANSLATION_READ_REQUESTS__SHIFT 0x8
+#define ATC_L2_CNTL__NUMBER_OF_HOST_TRANSLATION_WRITE_REQUESTS__SHIFT 0xb
+#define ATC_L2_CNTL__NUMBER_OF_HOST_TRANSLATION_READS_DEPENDS_ON_ADDR_MOD__SHIFT 0xe
+#define ATC_L2_CNTL__NUMBER_OF_HOST_TRANSLATION_WRITES_DEPENDS_ON_ADDR_MOD__SHIFT 0xf
+#define ATC_L2_CNTL__CACHE_INVALIDATE_MODE__SHIFT 0x10
+#define ATC_L2_CNTL__ENABLE_DEFAULT_PAGE_OUT_TO_SYSTEM_MEMORY__SHIFT 0x13
+#define ATC_L2_CNTL__FRAG_APT_INTXN_MODE__SHIFT 0x14
+#define ATC_L2_CNTL__CLI_GPA_REQ_FRAG_SIZE__SHIFT 0x16
+#define ATC_L2_CNTL__NUMBER_OF_TRANSLATION_READ_REQUESTS_MASK 0x00000003L
+#define ATC_L2_CNTL__NUMBER_OF_TRANSLATION_WRITE_REQUESTS_MASK 0x00000018L
+#define ATC_L2_CNTL__NUMBER_OF_TRANSLATION_READS_DEPENDS_ON_ADDR_MOD_MASK 0x00000040L
+#define ATC_L2_CNTL__NUMBER_OF_TRANSLATION_WRITES_DEPENDS_ON_ADDR_MOD_MASK 0x00000080L
+#define ATC_L2_CNTL__NUMBER_OF_HOST_TRANSLATION_READ_REQUESTS_MASK 0x00000300L
+#define ATC_L2_CNTL__NUMBER_OF_HOST_TRANSLATION_WRITE_REQUESTS_MASK 0x00001800L
+#define ATC_L2_CNTL__NUMBER_OF_HOST_TRANSLATION_READS_DEPENDS_ON_ADDR_MOD_MASK 0x00004000L
+#define ATC_L2_CNTL__NUMBER_OF_HOST_TRANSLATION_WRITES_DEPENDS_ON_ADDR_MOD_MASK 0x00008000L
+#define ATC_L2_CNTL__CACHE_INVALIDATE_MODE_MASK 0x00070000L
+#define ATC_L2_CNTL__ENABLE_DEFAULT_PAGE_OUT_TO_SYSTEM_MEMORY_MASK 0x00080000L
+#define ATC_L2_CNTL__FRAG_APT_INTXN_MODE_MASK 0x00300000L
+#define ATC_L2_CNTL__CLI_GPA_REQ_FRAG_SIZE_MASK 0x0FC00000L
+//ATC_L2_CNTL2
+#define ATC_L2_CNTL2__BANK_SELECT__SHIFT 0x0
+#define ATC_L2_CNTL2__NUM_BANKS_LOG2__SHIFT 0x6
+#define ATC_L2_CNTL2__L2_CACHE_UPDATE_MODE__SHIFT 0x9
+#define ATC_L2_CNTL2__ENABLE_L2_CACHE_LRU_UPDATE_BY_WRITE__SHIFT 0xb
+#define ATC_L2_CNTL2__L2_CACHE_SWAP_TAG_INDEX_LSBS__SHIFT 0xc
+#define ATC_L2_CNTL2__L2_CACHE_VMID_MODE__SHIFT 0xf
+#define ATC_L2_CNTL2__L2_CACHE_UPDATE_WILDCARD_REFERENCE_VALUE__SHIFT 0x12
+#define ATC_L2_CNTL2__BANK_SELECT_MASK 0x0000003FL
+#define ATC_L2_CNTL2__NUM_BANKS_LOG2_MASK 0x000001C0L
+#define ATC_L2_CNTL2__L2_CACHE_UPDATE_MODE_MASK 0x00000600L
+#define ATC_L2_CNTL2__ENABLE_L2_CACHE_LRU_UPDATE_BY_WRITE_MASK 0x00000800L
+#define ATC_L2_CNTL2__L2_CACHE_SWAP_TAG_INDEX_LSBS_MASK 0x00007000L
+#define ATC_L2_CNTL2__L2_CACHE_VMID_MODE_MASK 0x00038000L
+#define ATC_L2_CNTL2__L2_CACHE_UPDATE_WILDCARD_REFERENCE_VALUE_MASK 0x00FC0000L
+//ATC_L2_CACHE_DATA0
+#define ATC_L2_CACHE_DATA0__DATA_REGISTER_VALID__SHIFT 0x0
+#define ATC_L2_CACHE_DATA0__CACHE_ENTRY_VALID__SHIFT 0x1
+#define ATC_L2_CACHE_DATA0__CACHED_ATTRIBUTES__SHIFT 0x2
+#define ATC_L2_CACHE_DATA0__VIRTUAL_PAGE_ADDRESS_HIGH__SHIFT 0x17
+#define ATC_L2_CACHE_DATA0__DATA_REGISTER_VALID_MASK 0x00000001L
+#define ATC_L2_CACHE_DATA0__CACHE_ENTRY_VALID_MASK 0x00000002L
+#define ATC_L2_CACHE_DATA0__CACHED_ATTRIBUTES_MASK 0x007FFFFCL
+#define ATC_L2_CACHE_DATA0__VIRTUAL_PAGE_ADDRESS_HIGH_MASK 0x07800000L
+//ATC_L2_CACHE_DATA1
+#define ATC_L2_CACHE_DATA1__VIRTUAL_PAGE_ADDRESS_LOW__SHIFT 0x0
+#define ATC_L2_CACHE_DATA1__VIRTUAL_PAGE_ADDRESS_LOW_MASK 0xFFFFFFFFL
+//ATC_L2_CACHE_DATA2
+#define ATC_L2_CACHE_DATA2__PHYSICAL_PAGE_ADDRESS__SHIFT 0x0
+#define ATC_L2_CACHE_DATA2__PHYSICAL_PAGE_ADDRESS_MASK 0xFFFFFFFFL
+//ATC_L2_CACHE_DATA3
+#define ATC_L2_CACHE_DATA3__PHYSICAL_PAGE_ADDRESS__SHIFT 0x0
+#define ATC_L2_CACHE_DATA3__PHYSICAL_PAGE_ADDRESS_MASK 0xFFFFFFFFL
+//ATC_L2_CNTL3
+#define ATC_L2_CNTL3__L2_SMALLK_FRAGMENT_SIZE__SHIFT 0x0
+#define ATC_L2_CNTL3__L2_MIDK_FRAGMENT_SIZE__SHIFT 0x6
+#define ATC_L2_CNTL3__L2_BIGK_FRAGMENT_SIZE__SHIFT 0xc
+#define ATC_L2_CNTL3__DELAY_SEND_INVALIDATION_REQUEST__SHIFT 0x12
+#define ATC_L2_CNTL3__ATS_REQUEST_CREDIT_MINUS1__SHIFT 0x15
+#define ATC_L2_CNTL3__COMPCLKREQ_OFF_HYSTERESIS__SHIFT 0x1b
+#define ATC_L2_CNTL3__REPEATER_FGCG_OFF__SHIFT 0x1e
+#define ATC_L2_CNTL3__L2_SMALLK_FRAGMENT_SIZE_MASK 0x0000003FL
+#define ATC_L2_CNTL3__L2_MIDK_FRAGMENT_SIZE_MASK 0x00000FC0L
+#define ATC_L2_CNTL3__L2_BIGK_FRAGMENT_SIZE_MASK 0x0003F000L
+#define ATC_L2_CNTL3__DELAY_SEND_INVALIDATION_REQUEST_MASK 0x001C0000L
+#define ATC_L2_CNTL3__ATS_REQUEST_CREDIT_MINUS1_MASK 0x07E00000L
+#define ATC_L2_CNTL3__COMPCLKREQ_OFF_HYSTERESIS_MASK 0x38000000L
+#define ATC_L2_CNTL3__REPEATER_FGCG_OFF_MASK 0x40000000L
+//ATC_L2_STATUS
+#define ATC_L2_STATUS__BUSY__SHIFT 0x0
+#define ATC_L2_STATUS__NO_OUTSTANDING_AT_REQUESTS__SHIFT 0x1
+#define ATC_L2_STATUS__BUSY_MASK 0x00000001L
+#define ATC_L2_STATUS__NO_OUTSTANDING_AT_REQUESTS_MASK 0x00000002L
+//ATC_L2_STATUS2
+#define ATC_L2_STATUS2__UCE_MEM_ADDR__SHIFT 0x0
+#define ATC_L2_STATUS2__UCE_MEM_INST__SHIFT 0xc
+#define ATC_L2_STATUS2__UCE_SRT_CACHE__SHIFT 0x14
+#define ATC_L2_STATUS2__UCE__SHIFT 0x15
+#define ATC_L2_STATUS2__UCE_MEM_ADDR_MASK 0x00000FFFL
+#define ATC_L2_STATUS2__UCE_MEM_INST_MASK 0x000FF000L
+#define ATC_L2_STATUS2__UCE_SRT_CACHE_MASK 0x00100000L
+#define ATC_L2_STATUS2__UCE_MASK 0x00200000L
+//ATC_L2_MISC_CG
+#define ATC_L2_MISC_CG__OFFDLY__SHIFT 0x6
+#define ATC_L2_MISC_CG__ENABLE__SHIFT 0x12
+#define ATC_L2_MISC_CG__MEM_LS_ENABLE__SHIFT 0x13
+#define ATC_L2_MISC_CG__OFFDLY_MASK 0x00000FC0L
+#define ATC_L2_MISC_CG__ENABLE_MASK 0x00040000L
+#define ATC_L2_MISC_CG__MEM_LS_ENABLE_MASK 0x00080000L
+//ATC_L2_MEM_POWER_LS
+#define ATC_L2_MEM_POWER_LS__LS_SETUP__SHIFT 0x0
+#define ATC_L2_MEM_POWER_LS__LS_HOLD__SHIFT 0x6
+#define ATC_L2_MEM_POWER_LS__LS_SETUP_MASK 0x0000003FL
+#define ATC_L2_MEM_POWER_LS__LS_HOLD_MASK 0x00000FC0L
+//ATC_L2_CGTT_CLK_CTRL
+#define ATC_L2_CGTT_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define ATC_L2_CGTT_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define ATC_L2_CGTT_CLK_CTRL__MGLS_OVERRIDE__SHIFT 0xf
+#define ATC_L2_CGTT_CLK_CTRL__SOFT_STALL_OVERRIDE__SHIFT 0x10
+#define ATC_L2_CGTT_CLK_CTRL__SOFT_OVERRIDE__SHIFT 0x18
+#define ATC_L2_CGTT_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define ATC_L2_CGTT_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define ATC_L2_CGTT_CLK_CTRL__MGLS_OVERRIDE_MASK 0x00008000L
+#define ATC_L2_CGTT_CLK_CTRL__SOFT_STALL_OVERRIDE_MASK 0x00FF0000L
+#define ATC_L2_CGTT_CLK_CTRL__SOFT_OVERRIDE_MASK 0xFF000000L
+//ATC_L2_CACHE_4K_DSM_INDEX
+#define ATC_L2_CACHE_4K_DSM_INDEX__INDEX__SHIFT 0x0
+#define ATC_L2_CACHE_4K_DSM_INDEX__INDEX_MASK 0x000000FFL
+//ATC_L2_CACHE_32K_DSM_INDEX
+#define ATC_L2_CACHE_32K_DSM_INDEX__INDEX__SHIFT 0x0
+#define ATC_L2_CACHE_32K_DSM_INDEX__INDEX_MASK 0x000000FFL
+//ATC_L2_CACHE_2M_DSM_INDEX
+#define ATC_L2_CACHE_2M_DSM_INDEX__INDEX__SHIFT 0x0
+#define ATC_L2_CACHE_2M_DSM_INDEX__INDEX_MASK 0x000000FFL
+//ATC_L2_CACHE_4K_DSM_CNTL
+#define ATC_L2_CACHE_4K_DSM_CNTL__INJECT_DELAY__SHIFT 0x0
+#define ATC_L2_CACHE_4K_DSM_CNTL__DSM_IRRITATOR_DATA__SHIFT 0x6
+#define ATC_L2_CACHE_4K_DSM_CNTL__ENABLE_SINGLE_WRITE__SHIFT 0x8
+#define ATC_L2_CACHE_4K_DSM_CNTL__ENABLE_ERROR_INJECT__SHIFT 0x9
+#define ATC_L2_CACHE_4K_DSM_CNTL__SELECT_INJECT_DELAY__SHIFT 0xb
+#define ATC_L2_CACHE_4K_DSM_CNTL__WRITE_COUNTERS__SHIFT 0xc
+#define ATC_L2_CACHE_4K_DSM_CNTL__SEC_COUNT__SHIFT 0xd
+#define ATC_L2_CACHE_4K_DSM_CNTL__DED_COUNT__SHIFT 0xf
+#define ATC_L2_CACHE_4K_DSM_CNTL__TEST_FUE__SHIFT 0x11
+#define ATC_L2_CACHE_4K_DSM_CNTL__INJECT_DELAY_MASK 0x0000003FL
+#define ATC_L2_CACHE_4K_DSM_CNTL__DSM_IRRITATOR_DATA_MASK 0x000000C0L
+#define ATC_L2_CACHE_4K_DSM_CNTL__ENABLE_SINGLE_WRITE_MASK 0x00000100L
+#define ATC_L2_CACHE_4K_DSM_CNTL__ENABLE_ERROR_INJECT_MASK 0x00000600L
+#define ATC_L2_CACHE_4K_DSM_CNTL__SELECT_INJECT_DELAY_MASK 0x00000800L
+#define ATC_L2_CACHE_4K_DSM_CNTL__WRITE_COUNTERS_MASK 0x00001000L
+#define ATC_L2_CACHE_4K_DSM_CNTL__SEC_COUNT_MASK 0x00006000L
+#define ATC_L2_CACHE_4K_DSM_CNTL__DED_COUNT_MASK 0x00018000L
+#define ATC_L2_CACHE_4K_DSM_CNTL__TEST_FUE_MASK 0x00020000L
+//ATC_L2_CACHE_32K_DSM_CNTL
+#define ATC_L2_CACHE_32K_DSM_CNTL__INJECT_DELAY__SHIFT 0x0
+#define ATC_L2_CACHE_32K_DSM_CNTL__DSM_IRRITATOR_DATA__SHIFT 0x6
+#define ATC_L2_CACHE_32K_DSM_CNTL__ENABLE_SINGLE_WRITE__SHIFT 0x8
+#define ATC_L2_CACHE_32K_DSM_CNTL__ENABLE_ERROR_INJECT__SHIFT 0x9
+#define ATC_L2_CACHE_32K_DSM_CNTL__SELECT_INJECT_DELAY__SHIFT 0xb
+#define ATC_L2_CACHE_32K_DSM_CNTL__WRITE_COUNTERS__SHIFT 0xc
+#define ATC_L2_CACHE_32K_DSM_CNTL__SEC_COUNT__SHIFT 0xd
+#define ATC_L2_CACHE_32K_DSM_CNTL__DED_COUNT__SHIFT 0xf
+#define ATC_L2_CACHE_32K_DSM_CNTL__TEST_FUE__SHIFT 0x11
+#define ATC_L2_CACHE_32K_DSM_CNTL__INJECT_DELAY_MASK 0x0000003FL
+#define ATC_L2_CACHE_32K_DSM_CNTL__DSM_IRRITATOR_DATA_MASK 0x000000C0L
+#define ATC_L2_CACHE_32K_DSM_CNTL__ENABLE_SINGLE_WRITE_MASK 0x00000100L
+#define ATC_L2_CACHE_32K_DSM_CNTL__ENABLE_ERROR_INJECT_MASK 0x00000600L
+#define ATC_L2_CACHE_32K_DSM_CNTL__SELECT_INJECT_DELAY_MASK 0x00000800L
+#define ATC_L2_CACHE_32K_DSM_CNTL__WRITE_COUNTERS_MASK 0x00001000L
+#define ATC_L2_CACHE_32K_DSM_CNTL__SEC_COUNT_MASK 0x00006000L
+#define ATC_L2_CACHE_32K_DSM_CNTL__DED_COUNT_MASK 0x00018000L
+#define ATC_L2_CACHE_32K_DSM_CNTL__TEST_FUE_MASK 0x00020000L
+//ATC_L2_CACHE_2M_DSM_CNTL
+#define ATC_L2_CACHE_2M_DSM_CNTL__INJECT_DELAY__SHIFT 0x0
+#define ATC_L2_CACHE_2M_DSM_CNTL__DSM_IRRITATOR_DATA__SHIFT 0x6
+#define ATC_L2_CACHE_2M_DSM_CNTL__ENABLE_SINGLE_WRITE__SHIFT 0x8
+#define ATC_L2_CACHE_2M_DSM_CNTL__ENABLE_ERROR_INJECT__SHIFT 0x9
+#define ATC_L2_CACHE_2M_DSM_CNTL__SELECT_INJECT_DELAY__SHIFT 0xb
+#define ATC_L2_CACHE_2M_DSM_CNTL__WRITE_COUNTERS__SHIFT 0xc
+#define ATC_L2_CACHE_2M_DSM_CNTL__SEC_COUNT__SHIFT 0xd
+#define ATC_L2_CACHE_2M_DSM_CNTL__DED_COUNT__SHIFT 0xf
+#define ATC_L2_CACHE_2M_DSM_CNTL__TEST_FUE__SHIFT 0x11
+#define ATC_L2_CACHE_2M_DSM_CNTL__INJECT_DELAY_MASK 0x0000003FL
+#define ATC_L2_CACHE_2M_DSM_CNTL__DSM_IRRITATOR_DATA_MASK 0x000000C0L
+#define ATC_L2_CACHE_2M_DSM_CNTL__ENABLE_SINGLE_WRITE_MASK 0x00000100L
+#define ATC_L2_CACHE_2M_DSM_CNTL__ENABLE_ERROR_INJECT_MASK 0x00000600L
+#define ATC_L2_CACHE_2M_DSM_CNTL__SELECT_INJECT_DELAY_MASK 0x00000800L
+#define ATC_L2_CACHE_2M_DSM_CNTL__WRITE_COUNTERS_MASK 0x00001000L
+#define ATC_L2_CACHE_2M_DSM_CNTL__SEC_COUNT_MASK 0x00006000L
+#define ATC_L2_CACHE_2M_DSM_CNTL__DED_COUNT_MASK 0x00018000L
+#define ATC_L2_CACHE_2M_DSM_CNTL__TEST_FUE_MASK 0x00020000L
+//ATC_L2_CNTL4
+#define ATC_L2_CNTL4__MM_NONRT_IFIFO_ACTIVE_TRANSACTION_LIMIT__SHIFT 0x0
+#define ATC_L2_CNTL4__MM_SOFTRT_IFIFO_ACTIVE_TRANSACTION_LIMIT__SHIFT 0xa
+#define ATC_L2_CNTL4__MM_NONRT_IFIFO_ACTIVE_TRANSACTION_LIMIT_MASK 0x000003FFL
+#define ATC_L2_CNTL4__MM_SOFTRT_IFIFO_ACTIVE_TRANSACTION_LIMIT_MASK 0x000FFC00L
+//ATC_L2_MM_GROUP_RT_CLASSES
+#define ATC_L2_MM_GROUP_RT_CLASSES__GROUP_RT_CLASS__SHIFT 0x0
+#define ATC_L2_MM_GROUP_RT_CLASSES__GROUP_RT_CLASS_MASK 0xFFFFFFFFL
+
+
+// addressBlock: xcd0_gc_utcl2_vml2pfdec
+//VM_L2_CNTL
+#define VM_L2_CNTL__ENABLE_L2_CACHE__SHIFT 0x0
+#define VM_L2_CNTL__ENABLE_L2_FRAGMENT_PROCESSING__SHIFT 0x1
+#define VM_L2_CNTL__L2_CACHE_PTE_ENDIAN_SWAP_MODE__SHIFT 0x2
+#define VM_L2_CNTL__L2_CACHE_PDE_ENDIAN_SWAP_MODE__SHIFT 0x4
+#define VM_L2_CNTL__L2_PDE0_CACHE_TAG_GENERATION_MODE__SHIFT 0x8
+#define VM_L2_CNTL__ENABLE_L2_PTE_CACHE_LRU_UPDATE_BY_WRITE__SHIFT 0x9
+#define VM_L2_CNTL__ENABLE_L2_PDE0_CACHE_LRU_UPDATE_BY_WRITE__SHIFT 0xa
+#define VM_L2_CNTL__ENABLE_DEFAULT_PAGE_OUT_TO_SYSTEM_MEMORY__SHIFT 0xb
+#define VM_L2_CNTL__L2_PDE0_CACHE_SPLIT_MODE__SHIFT 0xc
+#define VM_L2_CNTL__EFFECTIVE_L2_QUEUE_SIZE__SHIFT 0xf
+#define VM_L2_CNTL__PDE_FAULT_CLASSIFICATION__SHIFT 0x12
+#define VM_L2_CNTL__CONTEXT1_IDENTITY_ACCESS_MODE__SHIFT 0x13
+#define VM_L2_CNTL__IDENTITY_MODE_FRAGMENT_SIZE__SHIFT 0x15
+#define VM_L2_CNTL__L2_PTE_CACHE_ADDR_MODE__SHIFT 0x1a
+#define VM_L2_CNTL__ENABLE_L2_CACHE_MASK 0x00000001L
+#define VM_L2_CNTL__ENABLE_L2_FRAGMENT_PROCESSING_MASK 0x00000002L
+#define VM_L2_CNTL__L2_CACHE_PTE_ENDIAN_SWAP_MODE_MASK 0x0000000CL
+#define VM_L2_CNTL__L2_CACHE_PDE_ENDIAN_SWAP_MODE_MASK 0x00000030L
+#define VM_L2_CNTL__L2_PDE0_CACHE_TAG_GENERATION_MODE_MASK 0x00000100L
+#define VM_L2_CNTL__ENABLE_L2_PTE_CACHE_LRU_UPDATE_BY_WRITE_MASK 0x00000200L
+#define VM_L2_CNTL__ENABLE_L2_PDE0_CACHE_LRU_UPDATE_BY_WRITE_MASK 0x00000400L
+#define VM_L2_CNTL__ENABLE_DEFAULT_PAGE_OUT_TO_SYSTEM_MEMORY_MASK 0x00000800L
+#define VM_L2_CNTL__L2_PDE0_CACHE_SPLIT_MODE_MASK 0x00007000L
+#define VM_L2_CNTL__EFFECTIVE_L2_QUEUE_SIZE_MASK 0x00038000L
+#define VM_L2_CNTL__PDE_FAULT_CLASSIFICATION_MASK 0x00040000L
+#define VM_L2_CNTL__CONTEXT1_IDENTITY_ACCESS_MODE_MASK 0x00180000L
+#define VM_L2_CNTL__IDENTITY_MODE_FRAGMENT_SIZE_MASK 0x03E00000L
+#define VM_L2_CNTL__L2_PTE_CACHE_ADDR_MODE_MASK 0x0C000000L
+//VM_L2_CNTL2
+#define VM_L2_CNTL2__INVALIDATE_ALL_L1_TLBS__SHIFT 0x0
+#define VM_L2_CNTL2__INVALIDATE_L2_CACHE__SHIFT 0x1
+#define VM_L2_CNTL2__DISABLE_INVALIDATE_PER_DOMAIN__SHIFT 0x15
+#define VM_L2_CNTL2__DISABLE_BIGK_CACHE_OPTIMIZATION__SHIFT 0x16
+#define VM_L2_CNTL2__L2_PTE_CACHE_VMID_MODE__SHIFT 0x17
+#define VM_L2_CNTL2__INVALIDATE_CACHE_MODE__SHIFT 0x1a
+#define VM_L2_CNTL2__PDE_CACHE_EFFECTIVE_SIZE__SHIFT 0x1c
+#define VM_L2_CNTL2__INVALIDATE_ALL_L1_TLBS_MASK 0x00000001L
+#define VM_L2_CNTL2__INVALIDATE_L2_CACHE_MASK 0x00000002L
+#define VM_L2_CNTL2__DISABLE_INVALIDATE_PER_DOMAIN_MASK 0x00200000L
+#define VM_L2_CNTL2__DISABLE_BIGK_CACHE_OPTIMIZATION_MASK 0x00400000L
+#define VM_L2_CNTL2__L2_PTE_CACHE_VMID_MODE_MASK 0x03800000L
+#define VM_L2_CNTL2__INVALIDATE_CACHE_MODE_MASK 0x0C000000L
+#define VM_L2_CNTL2__PDE_CACHE_EFFECTIVE_SIZE_MASK 0x70000000L
+//VM_L2_CNTL3
+#define VM_L2_CNTL3__BANK_SELECT__SHIFT 0x0
+#define VM_L2_CNTL3__L2_CACHE_UPDATE_MODE__SHIFT 0x6
+#define VM_L2_CNTL3__L2_CACHE_UPDATE_WILDCARD_REFERENCE_VALUE__SHIFT 0x8
+#define VM_L2_CNTL3__L2_CACHE_BIGK_FRAGMENT_SIZE__SHIFT 0xf
+#define VM_L2_CNTL3__L2_CACHE_BIGK_ASSOCIATIVITY__SHIFT 0x14
+#define VM_L2_CNTL3__L2_CACHE_4K_EFFECTIVE_SIZE__SHIFT 0x15
+#define VM_L2_CNTL3__L2_CACHE_BIGK_EFFECTIVE_SIZE__SHIFT 0x18
+#define VM_L2_CNTL3__L2_CACHE_4K_FORCE_MISS__SHIFT 0x1c
+#define VM_L2_CNTL3__L2_CACHE_BIGK_FORCE_MISS__SHIFT 0x1d
+#define VM_L2_CNTL3__PDE_CACHE_FORCE_MISS__SHIFT 0x1e
+#define VM_L2_CNTL3__L2_CACHE_4K_ASSOCIATIVITY__SHIFT 0x1f
+#define VM_L2_CNTL3__BANK_SELECT_MASK 0x0000003FL
+#define VM_L2_CNTL3__L2_CACHE_UPDATE_MODE_MASK 0x000000C0L
+#define VM_L2_CNTL3__L2_CACHE_UPDATE_WILDCARD_REFERENCE_VALUE_MASK 0x00001F00L
+#define VM_L2_CNTL3__L2_CACHE_BIGK_FRAGMENT_SIZE_MASK 0x000F8000L
+#define VM_L2_CNTL3__L2_CACHE_BIGK_ASSOCIATIVITY_MASK 0x00100000L
+#define VM_L2_CNTL3__L2_CACHE_4K_EFFECTIVE_SIZE_MASK 0x00E00000L
+#define VM_L2_CNTL3__L2_CACHE_BIGK_EFFECTIVE_SIZE_MASK 0x0F000000L
+#define VM_L2_CNTL3__L2_CACHE_4K_FORCE_MISS_MASK 0x10000000L
+#define VM_L2_CNTL3__L2_CACHE_BIGK_FORCE_MISS_MASK 0x20000000L
+#define VM_L2_CNTL3__PDE_CACHE_FORCE_MISS_MASK 0x40000000L
+#define VM_L2_CNTL3__L2_CACHE_4K_ASSOCIATIVITY_MASK 0x80000000L
+//VM_L2_STATUS
+#define VM_L2_STATUS__L2_BUSY__SHIFT 0x0
+#define VM_L2_STATUS__CONTEXT_DOMAIN_BUSY__SHIFT 0x1
+#define VM_L2_STATUS__FOUND_4K_PTE_CACHE_PARITY_ERRORS__SHIFT 0x11
+#define VM_L2_STATUS__FOUND_BIGK_PTE_CACHE_PARITY_ERRORS__SHIFT 0x12
+#define VM_L2_STATUS__FOUND_PDE0_CACHE_PARITY_ERRORS__SHIFT 0x13
+#define VM_L2_STATUS__FOUND_PDE1_CACHE_PARITY_ERRORS__SHIFT 0x14
+#define VM_L2_STATUS__FOUND_PDE2_CACHE_PARITY_ERRORS__SHIFT 0x15
+#define VM_L2_STATUS__L2_BUSY_MASK 0x00000001L
+#define VM_L2_STATUS__CONTEXT_DOMAIN_BUSY_MASK 0x0001FFFEL
+#define VM_L2_STATUS__FOUND_4K_PTE_CACHE_PARITY_ERRORS_MASK 0x00020000L
+#define VM_L2_STATUS__FOUND_BIGK_PTE_CACHE_PARITY_ERRORS_MASK 0x00040000L
+#define VM_L2_STATUS__FOUND_PDE0_CACHE_PARITY_ERRORS_MASK 0x00080000L
+#define VM_L2_STATUS__FOUND_PDE1_CACHE_PARITY_ERRORS_MASK 0x00100000L
+#define VM_L2_STATUS__FOUND_PDE2_CACHE_PARITY_ERRORS_MASK 0x00200000L
+//VM_DUMMY_PAGE_FAULT_CNTL
+#define VM_DUMMY_PAGE_FAULT_CNTL__DUMMY_PAGE_FAULT_ENABLE__SHIFT 0x0
+#define VM_DUMMY_PAGE_FAULT_CNTL__DUMMY_PAGE_ADDRESS_LOGICAL__SHIFT 0x1
+#define VM_DUMMY_PAGE_FAULT_CNTL__DUMMY_PAGE_COMPARE_MSBS__SHIFT 0x2
+#define VM_DUMMY_PAGE_FAULT_CNTL__DUMMY_PAGE_FAULT_ENABLE_MASK 0x00000001L
+#define VM_DUMMY_PAGE_FAULT_CNTL__DUMMY_PAGE_ADDRESS_LOGICAL_MASK 0x00000002L
+#define VM_DUMMY_PAGE_FAULT_CNTL__DUMMY_PAGE_COMPARE_MSBS_MASK 0x000000FCL
+//VM_DUMMY_PAGE_FAULT_ADDR_LO32
+#define VM_DUMMY_PAGE_FAULT_ADDR_LO32__DUMMY_PAGE_ADDR_LO32__SHIFT 0x0
+#define VM_DUMMY_PAGE_FAULT_ADDR_LO32__DUMMY_PAGE_ADDR_LO32_MASK 0xFFFFFFFFL
+//VM_DUMMY_PAGE_FAULT_ADDR_HI32
+#define VM_DUMMY_PAGE_FAULT_ADDR_HI32__DUMMY_PAGE_ADDR_HI4__SHIFT 0x0
+#define VM_DUMMY_PAGE_FAULT_ADDR_HI32__DUMMY_PAGE_ADDR_HI4_MASK 0x0000000FL
+//VM_L2_PROTECTION_FAULT_CNTL
+#define VM_L2_PROTECTION_FAULT_CNTL__CLEAR_PROTECTION_FAULT_STATUS_ADDR__SHIFT 0x0
+#define VM_L2_PROTECTION_FAULT_CNTL__ALLOW_SUBSEQUENT_PROTECTION_FAULT_STATUS_ADDR_UPDATES__SHIFT 0x1
+#define VM_L2_PROTECTION_FAULT_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x2
+#define VM_L2_PROTECTION_FAULT_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x3
+#define VM_L2_PROTECTION_FAULT_CNTL__PDE1_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x4
+#define VM_L2_PROTECTION_FAULT_CNTL__PDE2_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x5
+#define VM_L2_PROTECTION_FAULT_CNTL__TRANSLATE_FURTHER_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x6
+#define VM_L2_PROTECTION_FAULT_CNTL__NACK_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x7
+#define VM_L2_PROTECTION_FAULT_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x8
+#define VM_L2_PROTECTION_FAULT_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x9
+#define VM_L2_PROTECTION_FAULT_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xa
+#define VM_L2_PROTECTION_FAULT_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xb
+#define VM_L2_PROTECTION_FAULT_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xc
+#define VM_L2_PROTECTION_FAULT_CNTL__CLIENT_ID_NO_RETRY_FAULT_INTERRUPT__SHIFT 0xd
+#define VM_L2_PROTECTION_FAULT_CNTL__OTHER_CLIENT_ID_NO_RETRY_FAULT_INTERRUPT__SHIFT 0x1d
+#define VM_L2_PROTECTION_FAULT_CNTL__CRASH_ON_NO_RETRY_FAULT__SHIFT 0x1e
+#define VM_L2_PROTECTION_FAULT_CNTL__CRASH_ON_RETRY_FAULT__SHIFT 0x1f
+#define VM_L2_PROTECTION_FAULT_CNTL__CLEAR_PROTECTION_FAULT_STATUS_ADDR_MASK 0x00000001L
+#define VM_L2_PROTECTION_FAULT_CNTL__ALLOW_SUBSEQUENT_PROTECTION_FAULT_STATUS_ADDR_UPDATES_MASK 0x00000002L
+#define VM_L2_PROTECTION_FAULT_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000004L
+#define VM_L2_PROTECTION_FAULT_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000008L
+#define VM_L2_PROTECTION_FAULT_CNTL__PDE1_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000010L
+#define VM_L2_PROTECTION_FAULT_CNTL__PDE2_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000020L
+#define VM_L2_PROTECTION_FAULT_CNTL__TRANSLATE_FURTHER_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000040L
+#define VM_L2_PROTECTION_FAULT_CNTL__NACK_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000080L
+#define VM_L2_PROTECTION_FAULT_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000100L
+#define VM_L2_PROTECTION_FAULT_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000200L
+#define VM_L2_PROTECTION_FAULT_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000400L
+#define VM_L2_PROTECTION_FAULT_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000800L
+#define VM_L2_PROTECTION_FAULT_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00001000L
+#define VM_L2_PROTECTION_FAULT_CNTL__CLIENT_ID_NO_RETRY_FAULT_INTERRUPT_MASK 0x1FFFE000L
+#define VM_L2_PROTECTION_FAULT_CNTL__OTHER_CLIENT_ID_NO_RETRY_FAULT_INTERRUPT_MASK 0x20000000L
+#define VM_L2_PROTECTION_FAULT_CNTL__CRASH_ON_NO_RETRY_FAULT_MASK 0x40000000L
+#define VM_L2_PROTECTION_FAULT_CNTL__CRASH_ON_RETRY_FAULT_MASK 0x80000000L
+//VM_L2_PROTECTION_FAULT_CNTL2
+#define VM_L2_PROTECTION_FAULT_CNTL2__CLIENT_ID_PRT_FAULT_INTERRUPT__SHIFT 0x0
+#define VM_L2_PROTECTION_FAULT_CNTL2__OTHER_CLIENT_ID_PRT_FAULT_INTERRUPT__SHIFT 0x10
+#define VM_L2_PROTECTION_FAULT_CNTL2__ACTIVE_PAGE_MIGRATION_PTE__SHIFT 0x11
+#define VM_L2_PROTECTION_FAULT_CNTL2__ACTIVE_PAGE_MIGRATION_PTE_READ_RETRY__SHIFT 0x12
+#define VM_L2_PROTECTION_FAULT_CNTL2__ENABLE_RETRY_FAULT_INTERRUPT__SHIFT 0x13
+#define VM_L2_PROTECTION_FAULT_CNTL2__CLIENT_ID_PRT_FAULT_INTERRUPT_MASK 0x0000FFFFL
+#define VM_L2_PROTECTION_FAULT_CNTL2__OTHER_CLIENT_ID_PRT_FAULT_INTERRUPT_MASK 0x00010000L
+#define VM_L2_PROTECTION_FAULT_CNTL2__ACTIVE_PAGE_MIGRATION_PTE_MASK 0x00020000L
+#define VM_L2_PROTECTION_FAULT_CNTL2__ACTIVE_PAGE_MIGRATION_PTE_READ_RETRY_MASK 0x00040000L
+#define VM_L2_PROTECTION_FAULT_CNTL2__ENABLE_RETRY_FAULT_INTERRUPT_MASK 0x00080000L
+//VM_L2_PROTECTION_FAULT_MM_CNTL3
+#define VM_L2_PROTECTION_FAULT_MM_CNTL3__VML1_READ_CLIENT_ID_NO_RETRY_FAULT_INTERRUPT__SHIFT 0x0
+#define VM_L2_PROTECTION_FAULT_MM_CNTL3__VML1_READ_CLIENT_ID_NO_RETRY_FAULT_INTERRUPT_MASK 0xFFFFFFFFL
+//VM_L2_PROTECTION_FAULT_MM_CNTL4
+#define VM_L2_PROTECTION_FAULT_MM_CNTL4__VML1_WRITE_CLIENT_ID_NO_RETRY_FAULT_INTERRUPT__SHIFT 0x0
+#define VM_L2_PROTECTION_FAULT_MM_CNTL4__VML1_WRITE_CLIENT_ID_NO_RETRY_FAULT_INTERRUPT_MASK 0xFFFFFFFFL
+//VM_L2_PROTECTION_FAULT_STATUS
+#define VM_L2_PROTECTION_FAULT_STATUS__MORE_FAULTS__SHIFT 0x0
+#define VM_L2_PROTECTION_FAULT_STATUS__WALKER_ERROR__SHIFT 0x1
+#define VM_L2_PROTECTION_FAULT_STATUS__PERMISSION_FAULTS__SHIFT 0x4
+#define VM_L2_PROTECTION_FAULT_STATUS__MAPPING_ERROR__SHIFT 0x8
+#define VM_L2_PROTECTION_FAULT_STATUS__CID__SHIFT 0x9
+#define VM_L2_PROTECTION_FAULT_STATUS__RW__SHIFT 0x12
+#define VM_L2_PROTECTION_FAULT_STATUS__ATOMIC__SHIFT 0x13
+#define VM_L2_PROTECTION_FAULT_STATUS__VMID__SHIFT 0x14
+#define VM_L2_PROTECTION_FAULT_STATUS__VF__SHIFT 0x18
+#define VM_L2_PROTECTION_FAULT_STATUS__VFID__SHIFT 0x19
+#define VM_L2_PROTECTION_FAULT_STATUS__UCE__SHIFT 0x1d
+#define VM_L2_PROTECTION_FAULT_STATUS__FED__SHIFT 0x1e
+#define VM_L2_PROTECTION_FAULT_STATUS__MORE_FAULTS_MASK 0x00000001L
+#define VM_L2_PROTECTION_FAULT_STATUS__WALKER_ERROR_MASK 0x0000000EL
+#define VM_L2_PROTECTION_FAULT_STATUS__PERMISSION_FAULTS_MASK 0x000000F0L
+#define VM_L2_PROTECTION_FAULT_STATUS__MAPPING_ERROR_MASK 0x00000100L
+#define VM_L2_PROTECTION_FAULT_STATUS__CID_MASK 0x0003FE00L
+#define VM_L2_PROTECTION_FAULT_STATUS__RW_MASK 0x00040000L
+#define VM_L2_PROTECTION_FAULT_STATUS__ATOMIC_MASK 0x00080000L
+#define VM_L2_PROTECTION_FAULT_STATUS__VMID_MASK 0x00F00000L
+#define VM_L2_PROTECTION_FAULT_STATUS__VF_MASK 0x01000000L
+#define VM_L2_PROTECTION_FAULT_STATUS__VFID_MASK 0x1E000000L
+#define VM_L2_PROTECTION_FAULT_STATUS__UCE_MASK 0x20000000L
+#define VM_L2_PROTECTION_FAULT_STATUS__FED_MASK 0x40000000L
+//VM_L2_PROTECTION_FAULT_ADDR_LO32
+#define VM_L2_PROTECTION_FAULT_ADDR_LO32__LOGICAL_PAGE_ADDR_LO32__SHIFT 0x0
+#define VM_L2_PROTECTION_FAULT_ADDR_LO32__LOGICAL_PAGE_ADDR_LO32_MASK 0xFFFFFFFFL
+//VM_L2_PROTECTION_FAULT_ADDR_HI32
+#define VM_L2_PROTECTION_FAULT_ADDR_HI32__LOGICAL_PAGE_ADDR_HI4__SHIFT 0x0
+#define VM_L2_PROTECTION_FAULT_ADDR_HI32__LOGICAL_PAGE_ADDR_HI4_MASK 0x0000000FL
+//VM_L2_PROTECTION_FAULT_DEFAULT_ADDR_LO32
+#define VM_L2_PROTECTION_FAULT_DEFAULT_ADDR_LO32__PHYSICAL_PAGE_ADDR_LO32__SHIFT 0x0
+#define VM_L2_PROTECTION_FAULT_DEFAULT_ADDR_LO32__PHYSICAL_PAGE_ADDR_LO32_MASK 0xFFFFFFFFL
+//VM_L2_PROTECTION_FAULT_DEFAULT_ADDR_HI32
+#define VM_L2_PROTECTION_FAULT_DEFAULT_ADDR_HI32__PHYSICAL_PAGE_ADDR_HI4__SHIFT 0x0
+#define VM_L2_PROTECTION_FAULT_DEFAULT_ADDR_HI32__PHYSICAL_PAGE_ADDR_HI4_MASK 0x0000000FL
+//VM_L2_CONTEXT1_IDENTITY_APERTURE_LOW_ADDR_LO32
+#define VM_L2_CONTEXT1_IDENTITY_APERTURE_LOW_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_L2_CONTEXT1_IDENTITY_APERTURE_LOW_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_L2_CONTEXT1_IDENTITY_APERTURE_LOW_ADDR_HI32
+#define VM_L2_CONTEXT1_IDENTITY_APERTURE_LOW_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_L2_CONTEXT1_IDENTITY_APERTURE_LOW_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_L2_CONTEXT1_IDENTITY_APERTURE_HIGH_ADDR_LO32
+#define VM_L2_CONTEXT1_IDENTITY_APERTURE_HIGH_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_L2_CONTEXT1_IDENTITY_APERTURE_HIGH_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_L2_CONTEXT1_IDENTITY_APERTURE_HIGH_ADDR_HI32
+#define VM_L2_CONTEXT1_IDENTITY_APERTURE_HIGH_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_L2_CONTEXT1_IDENTITY_APERTURE_HIGH_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_L2_CONTEXT_IDENTITY_PHYSICAL_OFFSET_LO32
+#define VM_L2_CONTEXT_IDENTITY_PHYSICAL_OFFSET_LO32__PHYSICAL_PAGE_OFFSET_LO32__SHIFT 0x0
+#define VM_L2_CONTEXT_IDENTITY_PHYSICAL_OFFSET_LO32__PHYSICAL_PAGE_OFFSET_LO32_MASK 0xFFFFFFFFL
+//VM_L2_CONTEXT_IDENTITY_PHYSICAL_OFFSET_HI32
+#define VM_L2_CONTEXT_IDENTITY_PHYSICAL_OFFSET_HI32__PHYSICAL_PAGE_OFFSET_HI4__SHIFT 0x0
+#define VM_L2_CONTEXT_IDENTITY_PHYSICAL_OFFSET_HI32__PHYSICAL_PAGE_OFFSET_HI4_MASK 0x0000000FL
+//VM_L2_CNTL4
+#define VM_L2_CNTL4__L2_CACHE_4K_PARTITION_COUNT__SHIFT 0x0
+#define VM_L2_CNTL4__VMC_TAP_PDE_REQUEST_PHYSICAL__SHIFT 0x6
+#define VM_L2_CNTL4__VMC_TAP_PTE_REQUEST_PHYSICAL__SHIFT 0x7
+#define VM_L2_CNTL4__MM_NONRT_IFIFO_ACTIVE_TRANSACTION_LIMIT__SHIFT 0x8
+#define VM_L2_CNTL4__MM_SOFTRT_IFIFO_ACTIVE_TRANSACTION_LIMIT__SHIFT 0x12
+#define VM_L2_CNTL4__BPM_CGCGLS_OVERRIDE__SHIFT 0x1c
+#define VM_L2_CNTL4__GC_CH_FGCG_OFF__SHIFT 0x1d
+#define VM_L2_CNTL4__VFIFO_HEAD_OF_QUEUE__SHIFT 0x1e
+#define VM_L2_CNTL4__L2_CACHE_4K_PARTITION_COUNT_MASK 0x0000003FL
+#define VM_L2_CNTL4__VMC_TAP_PDE_REQUEST_PHYSICAL_MASK 0x00000040L
+#define VM_L2_CNTL4__VMC_TAP_PTE_REQUEST_PHYSICAL_MASK 0x00000080L
+#define VM_L2_CNTL4__MM_NONRT_IFIFO_ACTIVE_TRANSACTION_LIMIT_MASK 0x0003FF00L
+#define VM_L2_CNTL4__MM_SOFTRT_IFIFO_ACTIVE_TRANSACTION_LIMIT_MASK 0x0FFC0000L
+#define VM_L2_CNTL4__BPM_CGCGLS_OVERRIDE_MASK 0x10000000L
+#define VM_L2_CNTL4__GC_CH_FGCG_OFF_MASK 0x20000000L
+#define VM_L2_CNTL4__VFIFO_HEAD_OF_QUEUE_MASK 0x40000000L
+//VM_L2_CNTL5
+#define VM_L2_CNTL5__WALKER_FETCH_PDE_MTYPE_ENABLE__SHIFT 0x0
+#define VM_L2_CNTL5__WALKER_FETCH_PDE_NOALLOC_ENABLE__SHIFT 0x1
+#define VM_L2_CNTL5__WALKER_FETCH_PDE_MTYPE_ENABLE_MASK 0x00000001L
+#define VM_L2_CNTL5__WALKER_FETCH_PDE_NOALLOC_ENABLE_MASK 0x00000002L
+//VM_L2_MM_GROUP_RT_CLASSES
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_0_RT_CLASS__SHIFT 0x0
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_1_RT_CLASS__SHIFT 0x1
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_2_RT_CLASS__SHIFT 0x2
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_3_RT_CLASS__SHIFT 0x3
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_4_RT_CLASS__SHIFT 0x4
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_5_RT_CLASS__SHIFT 0x5
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_6_RT_CLASS__SHIFT 0x6
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_7_RT_CLASS__SHIFT 0x7
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_8_RT_CLASS__SHIFT 0x8
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_9_RT_CLASS__SHIFT 0x9
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_10_RT_CLASS__SHIFT 0xa
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_11_RT_CLASS__SHIFT 0xb
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_12_RT_CLASS__SHIFT 0xc
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_13_RT_CLASS__SHIFT 0xd
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_14_RT_CLASS__SHIFT 0xe
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_15_RT_CLASS__SHIFT 0xf
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_16_RT_CLASS__SHIFT 0x10
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_17_RT_CLASS__SHIFT 0x11
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_18_RT_CLASS__SHIFT 0x12
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_19_RT_CLASS__SHIFT 0x13
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_20_RT_CLASS__SHIFT 0x14
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_21_RT_CLASS__SHIFT 0x15
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_22_RT_CLASS__SHIFT 0x16
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_23_RT_CLASS__SHIFT 0x17
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_24_RT_CLASS__SHIFT 0x18
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_25_RT_CLASS__SHIFT 0x19
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_26_RT_CLASS__SHIFT 0x1a
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_27_RT_CLASS__SHIFT 0x1b
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_28_RT_CLASS__SHIFT 0x1c
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_29_RT_CLASS__SHIFT 0x1d
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_30_RT_CLASS__SHIFT 0x1e
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_31_RT_CLASS__SHIFT 0x1f
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_0_RT_CLASS_MASK 0x00000001L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_1_RT_CLASS_MASK 0x00000002L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_2_RT_CLASS_MASK 0x00000004L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_3_RT_CLASS_MASK 0x00000008L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_4_RT_CLASS_MASK 0x00000010L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_5_RT_CLASS_MASK 0x00000020L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_6_RT_CLASS_MASK 0x00000040L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_7_RT_CLASS_MASK 0x00000080L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_8_RT_CLASS_MASK 0x00000100L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_9_RT_CLASS_MASK 0x00000200L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_10_RT_CLASS_MASK 0x00000400L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_11_RT_CLASS_MASK 0x00000800L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_12_RT_CLASS_MASK 0x00001000L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_13_RT_CLASS_MASK 0x00002000L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_14_RT_CLASS_MASK 0x00004000L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_15_RT_CLASS_MASK 0x00008000L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_16_RT_CLASS_MASK 0x00010000L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_17_RT_CLASS_MASK 0x00020000L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_18_RT_CLASS_MASK 0x00040000L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_19_RT_CLASS_MASK 0x00080000L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_20_RT_CLASS_MASK 0x00100000L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_21_RT_CLASS_MASK 0x00200000L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_22_RT_CLASS_MASK 0x00400000L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_23_RT_CLASS_MASK 0x00800000L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_24_RT_CLASS_MASK 0x01000000L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_25_RT_CLASS_MASK 0x02000000L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_26_RT_CLASS_MASK 0x04000000L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_27_RT_CLASS_MASK 0x08000000L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_28_RT_CLASS_MASK 0x10000000L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_29_RT_CLASS_MASK 0x20000000L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_30_RT_CLASS_MASK 0x40000000L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_31_RT_CLASS_MASK 0x80000000L
+//VM_L2_BANK_SELECT_RESERVED_CID
+#define VM_L2_BANK_SELECT_RESERVED_CID__RESERVED_READ_CLIENT_ID__SHIFT 0x0
+#define VM_L2_BANK_SELECT_RESERVED_CID__RESERVED_WRITE_CLIENT_ID__SHIFT 0xa
+#define VM_L2_BANK_SELECT_RESERVED_CID__ENABLE__SHIFT 0x14
+#define VM_L2_BANK_SELECT_RESERVED_CID__RESERVED_CACHE_INVALIDATION_MODE__SHIFT 0x18
+#define VM_L2_BANK_SELECT_RESERVED_CID__RESERVED_CACHE_PRIVATE_INVALIDATION__SHIFT 0x19
+#define VM_L2_BANK_SELECT_RESERVED_CID__RESERVED_READ_CLIENT_ID_MASK 0x000001FFL
+#define VM_L2_BANK_SELECT_RESERVED_CID__RESERVED_WRITE_CLIENT_ID_MASK 0x0007FC00L
+#define VM_L2_BANK_SELECT_RESERVED_CID__ENABLE_MASK 0x00100000L
+#define VM_L2_BANK_SELECT_RESERVED_CID__RESERVED_CACHE_INVALIDATION_MODE_MASK 0x01000000L
+#define VM_L2_BANK_SELECT_RESERVED_CID__RESERVED_CACHE_PRIVATE_INVALIDATION_MASK 0x02000000L
+//VM_L2_BANK_SELECT_RESERVED_CID2
+#define VM_L2_BANK_SELECT_RESERVED_CID2__RESERVED_READ_CLIENT_ID__SHIFT 0x0
+#define VM_L2_BANK_SELECT_RESERVED_CID2__RESERVED_WRITE_CLIENT_ID__SHIFT 0xa
+#define VM_L2_BANK_SELECT_RESERVED_CID2__ENABLE__SHIFT 0x14
+#define VM_L2_BANK_SELECT_RESERVED_CID2__RESERVED_CACHE_INVALIDATION_MODE__SHIFT 0x18
+#define VM_L2_BANK_SELECT_RESERVED_CID2__RESERVED_CACHE_PRIVATE_INVALIDATION__SHIFT 0x19
+#define VM_L2_BANK_SELECT_RESERVED_CID2__RESERVED_READ_CLIENT_ID_MASK 0x000001FFL
+#define VM_L2_BANK_SELECT_RESERVED_CID2__RESERVED_WRITE_CLIENT_ID_MASK 0x0007FC00L
+#define VM_L2_BANK_SELECT_RESERVED_CID2__ENABLE_MASK 0x00100000L
+#define VM_L2_BANK_SELECT_RESERVED_CID2__RESERVED_CACHE_INVALIDATION_MODE_MASK 0x01000000L
+#define VM_L2_BANK_SELECT_RESERVED_CID2__RESERVED_CACHE_PRIVATE_INVALIDATION_MASK 0x02000000L
+//VM_L2_CACHE_PARITY_CNTL
+#define VM_L2_CACHE_PARITY_CNTL__ENABLE_PARITY_CHECKS_IN_4K_PTE_CACHES__SHIFT 0x0
+#define VM_L2_CACHE_PARITY_CNTL__ENABLE_PARITY_CHECKS_IN_BIGK_PTE_CACHES__SHIFT 0x1
+#define VM_L2_CACHE_PARITY_CNTL__ENABLE_PARITY_CHECKS_IN_PDE_CACHES__SHIFT 0x2
+#define VM_L2_CACHE_PARITY_CNTL__FORCE_PARITY_MISMATCH_IN_4K_PTE_CACHE__SHIFT 0x3
+#define VM_L2_CACHE_PARITY_CNTL__FORCE_PARITY_MISMATCH_IN_BIGK_PTE_CACHE__SHIFT 0x4
+#define VM_L2_CACHE_PARITY_CNTL__FORCE_PARITY_MISMATCH_IN_PDE_CACHE__SHIFT 0x5
+#define VM_L2_CACHE_PARITY_CNTL__FORCE_CACHE_BANK__SHIFT 0x6
+#define VM_L2_CACHE_PARITY_CNTL__FORCE_CACHE_NUMBER__SHIFT 0x9
+#define VM_L2_CACHE_PARITY_CNTL__FORCE_CACHE_ASSOC__SHIFT 0xc
+#define VM_L2_CACHE_PARITY_CNTL__ENABLE_PARITY_CHECKS_IN_4K_PTE_CACHES_MASK 0x00000001L
+#define VM_L2_CACHE_PARITY_CNTL__ENABLE_PARITY_CHECKS_IN_BIGK_PTE_CACHES_MASK 0x00000002L
+#define VM_L2_CACHE_PARITY_CNTL__ENABLE_PARITY_CHECKS_IN_PDE_CACHES_MASK 0x00000004L
+#define VM_L2_CACHE_PARITY_CNTL__FORCE_PARITY_MISMATCH_IN_4K_PTE_CACHE_MASK 0x00000008L
+#define VM_L2_CACHE_PARITY_CNTL__FORCE_PARITY_MISMATCH_IN_BIGK_PTE_CACHE_MASK 0x00000010L
+#define VM_L2_CACHE_PARITY_CNTL__FORCE_PARITY_MISMATCH_IN_PDE_CACHE_MASK 0x00000020L
+#define VM_L2_CACHE_PARITY_CNTL__FORCE_CACHE_BANK_MASK 0x000001C0L
+#define VM_L2_CACHE_PARITY_CNTL__FORCE_CACHE_NUMBER_MASK 0x00000E00L
+#define VM_L2_CACHE_PARITY_CNTL__FORCE_CACHE_ASSOC_MASK 0x0000F000L
+//VM_L2_CGTT_CLK_CTRL
+#define VM_L2_CGTT_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define VM_L2_CGTT_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define VM_L2_CGTT_CLK_CTRL__MGLS_OVERRIDE__SHIFT 0xf
+#define VM_L2_CGTT_CLK_CTRL__SOFT_STALL_OVERRIDE__SHIFT 0x10
+#define VM_L2_CGTT_CLK_CTRL__SOFT_OVERRIDE__SHIFT 0x18
+#define VM_L2_CGTT_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define VM_L2_CGTT_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define VM_L2_CGTT_CLK_CTRL__MGLS_OVERRIDE_MASK 0x00008000L
+#define VM_L2_CGTT_CLK_CTRL__SOFT_STALL_OVERRIDE_MASK 0x00FF0000L
+#define VM_L2_CGTT_CLK_CTRL__SOFT_OVERRIDE_MASK 0xFF000000L
+//VM_L2_CGTT_BUSY_CTRL
+#define VM_L2_CGTT_BUSY_CTRL__READ_DELAY__SHIFT 0x0
+#define VM_L2_CGTT_BUSY_CTRL__ALWAYS_BUSY__SHIFT 0x4
+#define VM_L2_CGTT_BUSY_CTRL__READ_DELAY_MASK 0x0000000FL
+#define VM_L2_CGTT_BUSY_CTRL__ALWAYS_BUSY_MASK 0x00000010L
+//VML2_MEM_ECC_INDEX
+#define VML2_MEM_ECC_INDEX__INDEX__SHIFT 0x0
+#define VML2_MEM_ECC_INDEX__INDEX_MASK 0x000000FFL
+//VML2_WALKER_MEM_ECC_INDEX
+#define VML2_WALKER_MEM_ECC_INDEX__INDEX__SHIFT 0x0
+#define VML2_WALKER_MEM_ECC_INDEX__INDEX_MASK 0x000000FFL
+//UTCL2_MEM_ECC_INDEX
+#define UTCL2_MEM_ECC_INDEX__INDEX__SHIFT 0x0
+#define UTCL2_MEM_ECC_INDEX__INDEX_MASK 0x000000FFL
+//VML2_MEM_ECC_CNTL
+#define VML2_MEM_ECC_CNTL__INJECT_DELAY__SHIFT 0x0
+#define VML2_MEM_ECC_CNTL__DSM_IRRITATOR_DATA__SHIFT 0x6
+#define VML2_MEM_ECC_CNTL__ENABLE_SINGLE_WRITE__SHIFT 0x8
+#define VML2_MEM_ECC_CNTL__ENABLE_ERROR_INJECT__SHIFT 0x9
+#define VML2_MEM_ECC_CNTL__SELECT_INJECT_DELAY__SHIFT 0xb
+#define VML2_MEM_ECC_CNTL__SEC_COUNT__SHIFT 0xc
+#define VML2_MEM_ECC_CNTL__DED_COUNT__SHIFT 0xe
+#define VML2_MEM_ECC_CNTL__WRITE_COUNTERS__SHIFT 0x10
+#define VML2_MEM_ECC_CNTL__TEST_FUE__SHIFT 0x11
+#define VML2_MEM_ECC_CNTL__INJECT_DELAY_MASK 0x0000003FL
+#define VML2_MEM_ECC_CNTL__DSM_IRRITATOR_DATA_MASK 0x000000C0L
+#define VML2_MEM_ECC_CNTL__ENABLE_SINGLE_WRITE_MASK 0x00000100L
+#define VML2_MEM_ECC_CNTL__ENABLE_ERROR_INJECT_MASK 0x00000600L
+#define VML2_MEM_ECC_CNTL__SELECT_INJECT_DELAY_MASK 0x00000800L
+#define VML2_MEM_ECC_CNTL__SEC_COUNT_MASK 0x00003000L
+#define VML2_MEM_ECC_CNTL__DED_COUNT_MASK 0x0000C000L
+#define VML2_MEM_ECC_CNTL__WRITE_COUNTERS_MASK 0x00010000L
+#define VML2_MEM_ECC_CNTL__TEST_FUE_MASK 0x00020000L
+//VML2_WALKER_MEM_ECC_CNTL
+#define VML2_WALKER_MEM_ECC_CNTL__INJECT_DELAY__SHIFT 0x0
+#define VML2_WALKER_MEM_ECC_CNTL__DSM_IRRITATOR_DATA__SHIFT 0x6
+#define VML2_WALKER_MEM_ECC_CNTL__ENABLE_SINGLE_WRITE__SHIFT 0x8
+#define VML2_WALKER_MEM_ECC_CNTL__ENABLE_ERROR_INJECT__SHIFT 0x9
+#define VML2_WALKER_MEM_ECC_CNTL__SELECT_INJECT_DELAY__SHIFT 0xb
+#define VML2_WALKER_MEM_ECC_CNTL__SEC_COUNT__SHIFT 0xc
+#define VML2_WALKER_MEM_ECC_CNTL__DED_COUNT__SHIFT 0xe
+#define VML2_WALKER_MEM_ECC_CNTL__WRITE_COUNTERS__SHIFT 0x10
+#define VML2_WALKER_MEM_ECC_CNTL__TEST_FUE__SHIFT 0x11
+#define VML2_WALKER_MEM_ECC_CNTL__INJECT_DELAY_MASK 0x0000003FL
+#define VML2_WALKER_MEM_ECC_CNTL__DSM_IRRITATOR_DATA_MASK 0x000000C0L
+#define VML2_WALKER_MEM_ECC_CNTL__ENABLE_SINGLE_WRITE_MASK 0x00000100L
+#define VML2_WALKER_MEM_ECC_CNTL__ENABLE_ERROR_INJECT_MASK 0x00000600L
+#define VML2_WALKER_MEM_ECC_CNTL__SELECT_INJECT_DELAY_MASK 0x00000800L
+#define VML2_WALKER_MEM_ECC_CNTL__SEC_COUNT_MASK 0x00003000L
+#define VML2_WALKER_MEM_ECC_CNTL__DED_COUNT_MASK 0x0000C000L
+#define VML2_WALKER_MEM_ECC_CNTL__WRITE_COUNTERS_MASK 0x00010000L
+#define VML2_WALKER_MEM_ECC_CNTL__TEST_FUE_MASK 0x00020000L
+//UTCL2_MEM_ECC_CNTL
+#define UTCL2_MEM_ECC_CNTL__INJECT_DELAY__SHIFT 0x0
+#define UTCL2_MEM_ECC_CNTL__DSM_IRRITATOR_DATA__SHIFT 0x6
+#define UTCL2_MEM_ECC_CNTL__ENABLE_SINGLE_WRITE__SHIFT 0x8
+#define UTCL2_MEM_ECC_CNTL__ENABLE_ERROR_INJECT__SHIFT 0x9
+#define UTCL2_MEM_ECC_CNTL__SELECT_INJECT_DELAY__SHIFT 0xb
+#define UTCL2_MEM_ECC_CNTL__SEC_COUNT__SHIFT 0xc
+#define UTCL2_MEM_ECC_CNTL__DED_COUNT__SHIFT 0xe
+#define UTCL2_MEM_ECC_CNTL__WRITE_COUNTERS__SHIFT 0x10
+#define UTCL2_MEM_ECC_CNTL__TEST_FUE__SHIFT 0x11
+#define UTCL2_MEM_ECC_CNTL__INJECT_DELAY_MASK 0x0000003FL
+#define UTCL2_MEM_ECC_CNTL__DSM_IRRITATOR_DATA_MASK 0x000000C0L
+#define UTCL2_MEM_ECC_CNTL__ENABLE_SINGLE_WRITE_MASK 0x00000100L
+#define UTCL2_MEM_ECC_CNTL__ENABLE_ERROR_INJECT_MASK 0x00000600L
+#define UTCL2_MEM_ECC_CNTL__SELECT_INJECT_DELAY_MASK 0x00000800L
+#define UTCL2_MEM_ECC_CNTL__SEC_COUNT_MASK 0x00003000L
+#define UTCL2_MEM_ECC_CNTL__DED_COUNT_MASK 0x0000C000L
+#define UTCL2_MEM_ECC_CNTL__WRITE_COUNTERS_MASK 0x00010000L
+#define UTCL2_MEM_ECC_CNTL__TEST_FUE_MASK 0x00020000L
+//VML2_MEM_ECC_STATUS
+#define VML2_MEM_ECC_STATUS__UCE__SHIFT 0x0
+#define VML2_MEM_ECC_STATUS__FED__SHIFT 0x1
+#define VML2_MEM_ECC_STATUS__UCE_MASK 0x00000001L
+#define VML2_MEM_ECC_STATUS__FED_MASK 0x00000002L
+//VML2_WALKER_MEM_ECC_STATUS
+#define VML2_WALKER_MEM_ECC_STATUS__UCE__SHIFT 0x0
+#define VML2_WALKER_MEM_ECC_STATUS__FED__SHIFT 0x1
+#define VML2_WALKER_MEM_ECC_STATUS__UCE_MASK 0x00000001L
+#define VML2_WALKER_MEM_ECC_STATUS__FED_MASK 0x00000002L
+//UTCL2_MEM_ECC_STATUS
+#define UTCL2_MEM_ECC_STATUS__UCE__SHIFT 0x0
+#define UTCL2_MEM_ECC_STATUS__FED__SHIFT 0x1
+#define UTCL2_MEM_ECC_STATUS__UCE_MASK 0x00000001L
+#define UTCL2_MEM_ECC_STATUS__FED_MASK 0x00000002L
+//UTCL2_EDC_MODE
+#define UTCL2_EDC_MODE__FORCE_SEC_ON_DED__SHIFT 0xf
+#define UTCL2_EDC_MODE__COUNT_FED_OUT__SHIFT 0x10
+#define UTCL2_EDC_MODE__GATE_FUE__SHIFT 0x11
+#define UTCL2_EDC_MODE__DED_MODE__SHIFT 0x14
+#define UTCL2_EDC_MODE__PROP_FED__SHIFT 0x1d
+#define UTCL2_EDC_MODE__BYPASS__SHIFT 0x1f
+#define UTCL2_EDC_MODE__FORCE_SEC_ON_DED_MASK 0x00008000L
+#define UTCL2_EDC_MODE__COUNT_FED_OUT_MASK 0x00010000L
+#define UTCL2_EDC_MODE__GATE_FUE_MASK 0x00020000L
+#define UTCL2_EDC_MODE__DED_MODE_MASK 0x00300000L
+#define UTCL2_EDC_MODE__PROP_FED_MASK 0x20000000L
+#define UTCL2_EDC_MODE__BYPASS_MASK 0x80000000L
+//UTCL2_EDC_CONFIG
+#define UTCL2_EDC_CONFIG__WRITE_DIS__SHIFT 0x0
+#define UTCL2_EDC_CONFIG__DIS_EDC__SHIFT 0x1
+#define UTCL2_EDC_CONFIG__WRITE_DIS_MASK 0x00000001L
+#define UTCL2_EDC_CONFIG__DIS_EDC_MASK 0x00000002L
+
+
+// addressBlock: xcd0_gc_utcl2_vml2vcdec
+//VM_CONTEXT0_CNTL
+#define VM_CONTEXT0_CNTL__ENABLE_CONTEXT__SHIFT 0x0
+#define VM_CONTEXT0_CNTL__PAGE_TABLE_DEPTH__SHIFT 0x1
+#define VM_CONTEXT0_CNTL__PAGE_TABLE_BLOCK_SIZE__SHIFT 0x3
+#define VM_CONTEXT0_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT__SHIFT 0x7
+#define VM_CONTEXT0_CNTL__RETRY_OTHER_FAULT__SHIFT 0x8
+#define VM_CONTEXT0_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x9
+#define VM_CONTEXT0_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xa
+#define VM_CONTEXT0_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xb
+#define VM_CONTEXT0_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xc
+#define VM_CONTEXT0_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xd
+#define VM_CONTEXT0_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xe
+#define VM_CONTEXT0_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xf
+#define VM_CONTEXT0_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x10
+#define VM_CONTEXT0_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x11
+#define VM_CONTEXT0_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x12
+#define VM_CONTEXT0_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x13
+#define VM_CONTEXT0_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x14
+#define VM_CONTEXT0_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x15
+#define VM_CONTEXT0_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x16
+#define VM_CONTEXT0_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x17
+#define VM_CONTEXT0_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x18
+#define VM_CONTEXT0_CNTL__ENABLE_CONTEXT_MASK 0x00000001L
+#define VM_CONTEXT0_CNTL__PAGE_TABLE_DEPTH_MASK 0x00000006L
+#define VM_CONTEXT0_CNTL__PAGE_TABLE_BLOCK_SIZE_MASK 0x00000078L
+#define VM_CONTEXT0_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT_MASK 0x00000080L
+#define VM_CONTEXT0_CNTL__RETRY_OTHER_FAULT_MASK 0x00000100L
+#define VM_CONTEXT0_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000200L
+#define VM_CONTEXT0_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000400L
+#define VM_CONTEXT0_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000800L
+#define VM_CONTEXT0_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00001000L
+#define VM_CONTEXT0_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00002000L
+#define VM_CONTEXT0_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00004000L
+#define VM_CONTEXT0_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00008000L
+#define VM_CONTEXT0_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00010000L
+#define VM_CONTEXT0_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00020000L
+#define VM_CONTEXT0_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00040000L
+#define VM_CONTEXT0_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00080000L
+#define VM_CONTEXT0_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00100000L
+#define VM_CONTEXT0_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00200000L
+#define VM_CONTEXT0_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00400000L
+#define VM_CONTEXT0_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00800000L
+#define VM_CONTEXT0_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x01000000L
+//VM_CONTEXT1_CNTL
+#define VM_CONTEXT1_CNTL__ENABLE_CONTEXT__SHIFT 0x0
+#define VM_CONTEXT1_CNTL__PAGE_TABLE_DEPTH__SHIFT 0x1
+#define VM_CONTEXT1_CNTL__PAGE_TABLE_BLOCK_SIZE__SHIFT 0x3
+#define VM_CONTEXT1_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT__SHIFT 0x7
+#define VM_CONTEXT1_CNTL__RETRY_OTHER_FAULT__SHIFT 0x8
+#define VM_CONTEXT1_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x9
+#define VM_CONTEXT1_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xa
+#define VM_CONTEXT1_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xb
+#define VM_CONTEXT1_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xc
+#define VM_CONTEXT1_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xd
+#define VM_CONTEXT1_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xe
+#define VM_CONTEXT1_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xf
+#define VM_CONTEXT1_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x10
+#define VM_CONTEXT1_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x11
+#define VM_CONTEXT1_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x12
+#define VM_CONTEXT1_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x13
+#define VM_CONTEXT1_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x14
+#define VM_CONTEXT1_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x15
+#define VM_CONTEXT1_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x16
+#define VM_CONTEXT1_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x17
+#define VM_CONTEXT1_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x18
+#define VM_CONTEXT1_CNTL__ENABLE_CONTEXT_MASK 0x00000001L
+#define VM_CONTEXT1_CNTL__PAGE_TABLE_DEPTH_MASK 0x00000006L
+#define VM_CONTEXT1_CNTL__PAGE_TABLE_BLOCK_SIZE_MASK 0x00000078L
+#define VM_CONTEXT1_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT_MASK 0x00000080L
+#define VM_CONTEXT1_CNTL__RETRY_OTHER_FAULT_MASK 0x00000100L
+#define VM_CONTEXT1_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000200L
+#define VM_CONTEXT1_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000400L
+#define VM_CONTEXT1_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000800L
+#define VM_CONTEXT1_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00001000L
+#define VM_CONTEXT1_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00002000L
+#define VM_CONTEXT1_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00004000L
+#define VM_CONTEXT1_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00008000L
+#define VM_CONTEXT1_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00010000L
+#define VM_CONTEXT1_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00020000L
+#define VM_CONTEXT1_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00040000L
+#define VM_CONTEXT1_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00080000L
+#define VM_CONTEXT1_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00100000L
+#define VM_CONTEXT1_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00200000L
+#define VM_CONTEXT1_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00400000L
+#define VM_CONTEXT1_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00800000L
+#define VM_CONTEXT1_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x01000000L
+//VM_CONTEXT2_CNTL
+#define VM_CONTEXT2_CNTL__ENABLE_CONTEXT__SHIFT 0x0
+#define VM_CONTEXT2_CNTL__PAGE_TABLE_DEPTH__SHIFT 0x1
+#define VM_CONTEXT2_CNTL__PAGE_TABLE_BLOCK_SIZE__SHIFT 0x3
+#define VM_CONTEXT2_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT__SHIFT 0x7
+#define VM_CONTEXT2_CNTL__RETRY_OTHER_FAULT__SHIFT 0x8
+#define VM_CONTEXT2_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x9
+#define VM_CONTEXT2_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xa
+#define VM_CONTEXT2_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xb
+#define VM_CONTEXT2_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xc
+#define VM_CONTEXT2_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xd
+#define VM_CONTEXT2_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xe
+#define VM_CONTEXT2_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xf
+#define VM_CONTEXT2_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x10
+#define VM_CONTEXT2_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x11
+#define VM_CONTEXT2_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x12
+#define VM_CONTEXT2_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x13
+#define VM_CONTEXT2_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x14
+#define VM_CONTEXT2_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x15
+#define VM_CONTEXT2_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x16
+#define VM_CONTEXT2_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x17
+#define VM_CONTEXT2_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x18
+#define VM_CONTEXT2_CNTL__ENABLE_CONTEXT_MASK 0x00000001L
+#define VM_CONTEXT2_CNTL__PAGE_TABLE_DEPTH_MASK 0x00000006L
+#define VM_CONTEXT2_CNTL__PAGE_TABLE_BLOCK_SIZE_MASK 0x00000078L
+#define VM_CONTEXT2_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT_MASK 0x00000080L
+#define VM_CONTEXT2_CNTL__RETRY_OTHER_FAULT_MASK 0x00000100L
+#define VM_CONTEXT2_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000200L
+#define VM_CONTEXT2_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000400L
+#define VM_CONTEXT2_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000800L
+#define VM_CONTEXT2_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00001000L
+#define VM_CONTEXT2_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00002000L
+#define VM_CONTEXT2_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00004000L
+#define VM_CONTEXT2_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00008000L
+#define VM_CONTEXT2_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00010000L
+#define VM_CONTEXT2_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00020000L
+#define VM_CONTEXT2_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00040000L
+#define VM_CONTEXT2_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00080000L
+#define VM_CONTEXT2_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00100000L
+#define VM_CONTEXT2_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00200000L
+#define VM_CONTEXT2_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00400000L
+#define VM_CONTEXT2_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00800000L
+#define VM_CONTEXT2_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x01000000L
+//VM_CONTEXT3_CNTL
+#define VM_CONTEXT3_CNTL__ENABLE_CONTEXT__SHIFT 0x0
+#define VM_CONTEXT3_CNTL__PAGE_TABLE_DEPTH__SHIFT 0x1
+#define VM_CONTEXT3_CNTL__PAGE_TABLE_BLOCK_SIZE__SHIFT 0x3
+#define VM_CONTEXT3_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT__SHIFT 0x7
+#define VM_CONTEXT3_CNTL__RETRY_OTHER_FAULT__SHIFT 0x8
+#define VM_CONTEXT3_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x9
+#define VM_CONTEXT3_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xa
+#define VM_CONTEXT3_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xb
+#define VM_CONTEXT3_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xc
+#define VM_CONTEXT3_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xd
+#define VM_CONTEXT3_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xe
+#define VM_CONTEXT3_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xf
+#define VM_CONTEXT3_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x10
+#define VM_CONTEXT3_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x11
+#define VM_CONTEXT3_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x12
+#define VM_CONTEXT3_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x13
+#define VM_CONTEXT3_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x14
+#define VM_CONTEXT3_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x15
+#define VM_CONTEXT3_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x16
+#define VM_CONTEXT3_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x17
+#define VM_CONTEXT3_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x18
+#define VM_CONTEXT3_CNTL__ENABLE_CONTEXT_MASK 0x00000001L
+#define VM_CONTEXT3_CNTL__PAGE_TABLE_DEPTH_MASK 0x00000006L
+#define VM_CONTEXT3_CNTL__PAGE_TABLE_BLOCK_SIZE_MASK 0x00000078L
+#define VM_CONTEXT3_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT_MASK 0x00000080L
+#define VM_CONTEXT3_CNTL__RETRY_OTHER_FAULT_MASK 0x00000100L
+#define VM_CONTEXT3_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000200L
+#define VM_CONTEXT3_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000400L
+#define VM_CONTEXT3_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000800L
+#define VM_CONTEXT3_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00001000L
+#define VM_CONTEXT3_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00002000L
+#define VM_CONTEXT3_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00004000L
+#define VM_CONTEXT3_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00008000L
+#define VM_CONTEXT3_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00010000L
+#define VM_CONTEXT3_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00020000L
+#define VM_CONTEXT3_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00040000L
+#define VM_CONTEXT3_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00080000L
+#define VM_CONTEXT3_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00100000L
+#define VM_CONTEXT3_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00200000L
+#define VM_CONTEXT3_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00400000L
+#define VM_CONTEXT3_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00800000L
+#define VM_CONTEXT3_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x01000000L
+//VM_CONTEXT4_CNTL
+#define VM_CONTEXT4_CNTL__ENABLE_CONTEXT__SHIFT 0x0
+#define VM_CONTEXT4_CNTL__PAGE_TABLE_DEPTH__SHIFT 0x1
+#define VM_CONTEXT4_CNTL__PAGE_TABLE_BLOCK_SIZE__SHIFT 0x3
+#define VM_CONTEXT4_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT__SHIFT 0x7
+#define VM_CONTEXT4_CNTL__RETRY_OTHER_FAULT__SHIFT 0x8
+#define VM_CONTEXT4_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x9
+#define VM_CONTEXT4_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xa
+#define VM_CONTEXT4_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xb
+#define VM_CONTEXT4_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xc
+#define VM_CONTEXT4_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xd
+#define VM_CONTEXT4_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xe
+#define VM_CONTEXT4_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xf
+#define VM_CONTEXT4_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x10
+#define VM_CONTEXT4_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x11
+#define VM_CONTEXT4_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x12
+#define VM_CONTEXT4_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x13
+#define VM_CONTEXT4_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x14
+#define VM_CONTEXT4_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x15
+#define VM_CONTEXT4_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x16
+#define VM_CONTEXT4_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x17
+#define VM_CONTEXT4_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x18
+#define VM_CONTEXT4_CNTL__ENABLE_CONTEXT_MASK 0x00000001L
+#define VM_CONTEXT4_CNTL__PAGE_TABLE_DEPTH_MASK 0x00000006L
+#define VM_CONTEXT4_CNTL__PAGE_TABLE_BLOCK_SIZE_MASK 0x00000078L
+#define VM_CONTEXT4_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT_MASK 0x00000080L
+#define VM_CONTEXT4_CNTL__RETRY_OTHER_FAULT_MASK 0x00000100L
+#define VM_CONTEXT4_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000200L
+#define VM_CONTEXT4_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000400L
+#define VM_CONTEXT4_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000800L
+#define VM_CONTEXT4_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00001000L
+#define VM_CONTEXT4_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00002000L
+#define VM_CONTEXT4_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00004000L
+#define VM_CONTEXT4_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00008000L
+#define VM_CONTEXT4_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00010000L
+#define VM_CONTEXT4_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00020000L
+#define VM_CONTEXT4_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00040000L
+#define VM_CONTEXT4_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00080000L
+#define VM_CONTEXT4_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00100000L
+#define VM_CONTEXT4_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00200000L
+#define VM_CONTEXT4_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00400000L
+#define VM_CONTEXT4_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00800000L
+#define VM_CONTEXT4_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x01000000L
+//VM_CONTEXT5_CNTL
+#define VM_CONTEXT5_CNTL__ENABLE_CONTEXT__SHIFT 0x0
+#define VM_CONTEXT5_CNTL__PAGE_TABLE_DEPTH__SHIFT 0x1
+#define VM_CONTEXT5_CNTL__PAGE_TABLE_BLOCK_SIZE__SHIFT 0x3
+#define VM_CONTEXT5_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT__SHIFT 0x7
+#define VM_CONTEXT5_CNTL__RETRY_OTHER_FAULT__SHIFT 0x8
+#define VM_CONTEXT5_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x9
+#define VM_CONTEXT5_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xa
+#define VM_CONTEXT5_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xb
+#define VM_CONTEXT5_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xc
+#define VM_CONTEXT5_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xd
+#define VM_CONTEXT5_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xe
+#define VM_CONTEXT5_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xf
+#define VM_CONTEXT5_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x10
+#define VM_CONTEXT5_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x11
+#define VM_CONTEXT5_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x12
+#define VM_CONTEXT5_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x13
+#define VM_CONTEXT5_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x14
+#define VM_CONTEXT5_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x15
+#define VM_CONTEXT5_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x16
+#define VM_CONTEXT5_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x17
+#define VM_CONTEXT5_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x18
+#define VM_CONTEXT5_CNTL__ENABLE_CONTEXT_MASK 0x00000001L
+#define VM_CONTEXT5_CNTL__PAGE_TABLE_DEPTH_MASK 0x00000006L
+#define VM_CONTEXT5_CNTL__PAGE_TABLE_BLOCK_SIZE_MASK 0x00000078L
+#define VM_CONTEXT5_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT_MASK 0x00000080L
+#define VM_CONTEXT5_CNTL__RETRY_OTHER_FAULT_MASK 0x00000100L
+#define VM_CONTEXT5_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000200L
+#define VM_CONTEXT5_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000400L
+#define VM_CONTEXT5_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000800L
+#define VM_CONTEXT5_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00001000L
+#define VM_CONTEXT5_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00002000L
+#define VM_CONTEXT5_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00004000L
+#define VM_CONTEXT5_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00008000L
+#define VM_CONTEXT5_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00010000L
+#define VM_CONTEXT5_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00020000L
+#define VM_CONTEXT5_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00040000L
+#define VM_CONTEXT5_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00080000L
+#define VM_CONTEXT5_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00100000L
+#define VM_CONTEXT5_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00200000L
+#define VM_CONTEXT5_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00400000L
+#define VM_CONTEXT5_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00800000L
+#define VM_CONTEXT5_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x01000000L
+//VM_CONTEXT6_CNTL
+#define VM_CONTEXT6_CNTL__ENABLE_CONTEXT__SHIFT 0x0
+#define VM_CONTEXT6_CNTL__PAGE_TABLE_DEPTH__SHIFT 0x1
+#define VM_CONTEXT6_CNTL__PAGE_TABLE_BLOCK_SIZE__SHIFT 0x3
+#define VM_CONTEXT6_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT__SHIFT 0x7
+#define VM_CONTEXT6_CNTL__RETRY_OTHER_FAULT__SHIFT 0x8
+#define VM_CONTEXT6_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x9
+#define VM_CONTEXT6_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xa
+#define VM_CONTEXT6_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xb
+#define VM_CONTEXT6_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xc
+#define VM_CONTEXT6_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xd
+#define VM_CONTEXT6_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xe
+#define VM_CONTEXT6_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xf
+#define VM_CONTEXT6_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x10
+#define VM_CONTEXT6_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x11
+#define VM_CONTEXT6_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x12
+#define VM_CONTEXT6_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x13
+#define VM_CONTEXT6_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x14
+#define VM_CONTEXT6_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x15
+#define VM_CONTEXT6_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x16
+#define VM_CONTEXT6_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x17
+#define VM_CONTEXT6_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x18
+#define VM_CONTEXT6_CNTL__ENABLE_CONTEXT_MASK 0x00000001L
+#define VM_CONTEXT6_CNTL__PAGE_TABLE_DEPTH_MASK 0x00000006L
+#define VM_CONTEXT6_CNTL__PAGE_TABLE_BLOCK_SIZE_MASK 0x00000078L
+#define VM_CONTEXT6_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT_MASK 0x00000080L
+#define VM_CONTEXT6_CNTL__RETRY_OTHER_FAULT_MASK 0x00000100L
+#define VM_CONTEXT6_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000200L
+#define VM_CONTEXT6_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000400L
+#define VM_CONTEXT6_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000800L
+#define VM_CONTEXT6_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00001000L
+#define VM_CONTEXT6_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00002000L
+#define VM_CONTEXT6_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00004000L
+#define VM_CONTEXT6_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00008000L
+#define VM_CONTEXT6_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00010000L
+#define VM_CONTEXT6_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00020000L
+#define VM_CONTEXT6_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00040000L
+#define VM_CONTEXT6_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00080000L
+#define VM_CONTEXT6_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00100000L
+#define VM_CONTEXT6_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00200000L
+#define VM_CONTEXT6_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00400000L
+#define VM_CONTEXT6_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00800000L
+#define VM_CONTEXT6_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x01000000L
+//VM_CONTEXT7_CNTL
+#define VM_CONTEXT7_CNTL__ENABLE_CONTEXT__SHIFT 0x0
+#define VM_CONTEXT7_CNTL__PAGE_TABLE_DEPTH__SHIFT 0x1
+#define VM_CONTEXT7_CNTL__PAGE_TABLE_BLOCK_SIZE__SHIFT 0x3
+#define VM_CONTEXT7_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT__SHIFT 0x7
+#define VM_CONTEXT7_CNTL__RETRY_OTHER_FAULT__SHIFT 0x8
+#define VM_CONTEXT7_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x9
+#define VM_CONTEXT7_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xa
+#define VM_CONTEXT7_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xb
+#define VM_CONTEXT7_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xc
+#define VM_CONTEXT7_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xd
+#define VM_CONTEXT7_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xe
+#define VM_CONTEXT7_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xf
+#define VM_CONTEXT7_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x10
+#define VM_CONTEXT7_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x11
+#define VM_CONTEXT7_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x12
+#define VM_CONTEXT7_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x13
+#define VM_CONTEXT7_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x14
+#define VM_CONTEXT7_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x15
+#define VM_CONTEXT7_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x16
+#define VM_CONTEXT7_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x17
+#define VM_CONTEXT7_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x18
+#define VM_CONTEXT7_CNTL__ENABLE_CONTEXT_MASK 0x00000001L
+#define VM_CONTEXT7_CNTL__PAGE_TABLE_DEPTH_MASK 0x00000006L
+#define VM_CONTEXT7_CNTL__PAGE_TABLE_BLOCK_SIZE_MASK 0x00000078L
+#define VM_CONTEXT7_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT_MASK 0x00000080L
+#define VM_CONTEXT7_CNTL__RETRY_OTHER_FAULT_MASK 0x00000100L
+#define VM_CONTEXT7_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000200L
+#define VM_CONTEXT7_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000400L
+#define VM_CONTEXT7_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000800L
+#define VM_CONTEXT7_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00001000L
+#define VM_CONTEXT7_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00002000L
+#define VM_CONTEXT7_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00004000L
+#define VM_CONTEXT7_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00008000L
+#define VM_CONTEXT7_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00010000L
+#define VM_CONTEXT7_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00020000L
+#define VM_CONTEXT7_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00040000L
+#define VM_CONTEXT7_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00080000L
+#define VM_CONTEXT7_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00100000L
+#define VM_CONTEXT7_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00200000L
+#define VM_CONTEXT7_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00400000L
+#define VM_CONTEXT7_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00800000L
+#define VM_CONTEXT7_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x01000000L
+//VM_CONTEXT8_CNTL
+#define VM_CONTEXT8_CNTL__ENABLE_CONTEXT__SHIFT 0x0
+#define VM_CONTEXT8_CNTL__PAGE_TABLE_DEPTH__SHIFT 0x1
+#define VM_CONTEXT8_CNTL__PAGE_TABLE_BLOCK_SIZE__SHIFT 0x3
+#define VM_CONTEXT8_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT__SHIFT 0x7
+#define VM_CONTEXT8_CNTL__RETRY_OTHER_FAULT__SHIFT 0x8
+#define VM_CONTEXT8_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x9
+#define VM_CONTEXT8_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xa
+#define VM_CONTEXT8_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xb
+#define VM_CONTEXT8_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xc
+#define VM_CONTEXT8_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xd
+#define VM_CONTEXT8_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xe
+#define VM_CONTEXT8_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xf
+#define VM_CONTEXT8_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x10
+#define VM_CONTEXT8_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x11
+#define VM_CONTEXT8_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x12
+#define VM_CONTEXT8_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x13
+#define VM_CONTEXT8_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x14
+#define VM_CONTEXT8_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x15
+#define VM_CONTEXT8_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x16
+#define VM_CONTEXT8_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x17
+#define VM_CONTEXT8_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x18
+#define VM_CONTEXT8_CNTL__ENABLE_CONTEXT_MASK 0x00000001L
+#define VM_CONTEXT8_CNTL__PAGE_TABLE_DEPTH_MASK 0x00000006L
+#define VM_CONTEXT8_CNTL__PAGE_TABLE_BLOCK_SIZE_MASK 0x00000078L
+#define VM_CONTEXT8_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT_MASK 0x00000080L
+#define VM_CONTEXT8_CNTL__RETRY_OTHER_FAULT_MASK 0x00000100L
+#define VM_CONTEXT8_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000200L
+#define VM_CONTEXT8_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000400L
+#define VM_CONTEXT8_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000800L
+#define VM_CONTEXT8_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00001000L
+#define VM_CONTEXT8_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00002000L
+#define VM_CONTEXT8_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00004000L
+#define VM_CONTEXT8_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00008000L
+#define VM_CONTEXT8_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00010000L
+#define VM_CONTEXT8_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00020000L
+#define VM_CONTEXT8_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00040000L
+#define VM_CONTEXT8_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00080000L
+#define VM_CONTEXT8_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00100000L
+#define VM_CONTEXT8_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00200000L
+#define VM_CONTEXT8_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00400000L
+#define VM_CONTEXT8_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00800000L
+#define VM_CONTEXT8_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x01000000L
+//VM_CONTEXT9_CNTL
+#define VM_CONTEXT9_CNTL__ENABLE_CONTEXT__SHIFT 0x0
+#define VM_CONTEXT9_CNTL__PAGE_TABLE_DEPTH__SHIFT 0x1
+#define VM_CONTEXT9_CNTL__PAGE_TABLE_BLOCK_SIZE__SHIFT 0x3
+#define VM_CONTEXT9_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT__SHIFT 0x7
+#define VM_CONTEXT9_CNTL__RETRY_OTHER_FAULT__SHIFT 0x8
+#define VM_CONTEXT9_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x9
+#define VM_CONTEXT9_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xa
+#define VM_CONTEXT9_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xb
+#define VM_CONTEXT9_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xc
+#define VM_CONTEXT9_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xd
+#define VM_CONTEXT9_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xe
+#define VM_CONTEXT9_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xf
+#define VM_CONTEXT9_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x10
+#define VM_CONTEXT9_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x11
+#define VM_CONTEXT9_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x12
+#define VM_CONTEXT9_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x13
+#define VM_CONTEXT9_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x14
+#define VM_CONTEXT9_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x15
+#define VM_CONTEXT9_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x16
+#define VM_CONTEXT9_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x17
+#define VM_CONTEXT9_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x18
+#define VM_CONTEXT9_CNTL__ENABLE_CONTEXT_MASK 0x00000001L
+#define VM_CONTEXT9_CNTL__PAGE_TABLE_DEPTH_MASK 0x00000006L
+#define VM_CONTEXT9_CNTL__PAGE_TABLE_BLOCK_SIZE_MASK 0x00000078L
+#define VM_CONTEXT9_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT_MASK 0x00000080L
+#define VM_CONTEXT9_CNTL__RETRY_OTHER_FAULT_MASK 0x00000100L
+#define VM_CONTEXT9_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000200L
+#define VM_CONTEXT9_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000400L
+#define VM_CONTEXT9_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000800L
+#define VM_CONTEXT9_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00001000L
+#define VM_CONTEXT9_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00002000L
+#define VM_CONTEXT9_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00004000L
+#define VM_CONTEXT9_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00008000L
+#define VM_CONTEXT9_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00010000L
+#define VM_CONTEXT9_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00020000L
+#define VM_CONTEXT9_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00040000L
+#define VM_CONTEXT9_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00080000L
+#define VM_CONTEXT9_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00100000L
+#define VM_CONTEXT9_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00200000L
+#define VM_CONTEXT9_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00400000L
+#define VM_CONTEXT9_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00800000L
+#define VM_CONTEXT9_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x01000000L
+//VM_CONTEXT10_CNTL
+#define VM_CONTEXT10_CNTL__ENABLE_CONTEXT__SHIFT 0x0
+#define VM_CONTEXT10_CNTL__PAGE_TABLE_DEPTH__SHIFT 0x1
+#define VM_CONTEXT10_CNTL__PAGE_TABLE_BLOCK_SIZE__SHIFT 0x3
+#define VM_CONTEXT10_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT__SHIFT 0x7
+#define VM_CONTEXT10_CNTL__RETRY_OTHER_FAULT__SHIFT 0x8
+#define VM_CONTEXT10_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x9
+#define VM_CONTEXT10_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xa
+#define VM_CONTEXT10_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xb
+#define VM_CONTEXT10_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xc
+#define VM_CONTEXT10_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xd
+#define VM_CONTEXT10_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xe
+#define VM_CONTEXT10_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xf
+#define VM_CONTEXT10_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x10
+#define VM_CONTEXT10_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x11
+#define VM_CONTEXT10_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x12
+#define VM_CONTEXT10_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x13
+#define VM_CONTEXT10_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x14
+#define VM_CONTEXT10_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x15
+#define VM_CONTEXT10_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x16
+#define VM_CONTEXT10_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x17
+#define VM_CONTEXT10_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x18
+#define VM_CONTEXT10_CNTL__ENABLE_CONTEXT_MASK 0x00000001L
+#define VM_CONTEXT10_CNTL__PAGE_TABLE_DEPTH_MASK 0x00000006L
+#define VM_CONTEXT10_CNTL__PAGE_TABLE_BLOCK_SIZE_MASK 0x00000078L
+#define VM_CONTEXT10_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT_MASK 0x00000080L
+#define VM_CONTEXT10_CNTL__RETRY_OTHER_FAULT_MASK 0x00000100L
+#define VM_CONTEXT10_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000200L
+#define VM_CONTEXT10_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000400L
+#define VM_CONTEXT10_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000800L
+#define VM_CONTEXT10_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00001000L
+#define VM_CONTEXT10_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00002000L
+#define VM_CONTEXT10_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00004000L
+#define VM_CONTEXT10_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00008000L
+#define VM_CONTEXT10_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00010000L
+#define VM_CONTEXT10_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00020000L
+#define VM_CONTEXT10_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00040000L
+#define VM_CONTEXT10_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00080000L
+#define VM_CONTEXT10_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00100000L
+#define VM_CONTEXT10_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00200000L
+#define VM_CONTEXT10_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00400000L
+#define VM_CONTEXT10_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00800000L
+#define VM_CONTEXT10_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x01000000L
+//VM_CONTEXT11_CNTL
+#define VM_CONTEXT11_CNTL__ENABLE_CONTEXT__SHIFT 0x0
+#define VM_CONTEXT11_CNTL__PAGE_TABLE_DEPTH__SHIFT 0x1
+#define VM_CONTEXT11_CNTL__PAGE_TABLE_BLOCK_SIZE__SHIFT 0x3
+#define VM_CONTEXT11_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT__SHIFT 0x7
+#define VM_CONTEXT11_CNTL__RETRY_OTHER_FAULT__SHIFT 0x8
+#define VM_CONTEXT11_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x9
+#define VM_CONTEXT11_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xa
+#define VM_CONTEXT11_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xb
+#define VM_CONTEXT11_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xc
+#define VM_CONTEXT11_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xd
+#define VM_CONTEXT11_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xe
+#define VM_CONTEXT11_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xf
+#define VM_CONTEXT11_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x10
+#define VM_CONTEXT11_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x11
+#define VM_CONTEXT11_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x12
+#define VM_CONTEXT11_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x13
+#define VM_CONTEXT11_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x14
+#define VM_CONTEXT11_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x15
+#define VM_CONTEXT11_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x16
+#define VM_CONTEXT11_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x17
+#define VM_CONTEXT11_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x18
+#define VM_CONTEXT11_CNTL__ENABLE_CONTEXT_MASK 0x00000001L
+#define VM_CONTEXT11_CNTL__PAGE_TABLE_DEPTH_MASK 0x00000006L
+#define VM_CONTEXT11_CNTL__PAGE_TABLE_BLOCK_SIZE_MASK 0x00000078L
+#define VM_CONTEXT11_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT_MASK 0x00000080L
+#define VM_CONTEXT11_CNTL__RETRY_OTHER_FAULT_MASK 0x00000100L
+#define VM_CONTEXT11_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000200L
+#define VM_CONTEXT11_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000400L
+#define VM_CONTEXT11_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000800L
+#define VM_CONTEXT11_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00001000L
+#define VM_CONTEXT11_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00002000L
+#define VM_CONTEXT11_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00004000L
+#define VM_CONTEXT11_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00008000L
+#define VM_CONTEXT11_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00010000L
+#define VM_CONTEXT11_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00020000L
+#define VM_CONTEXT11_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00040000L
+#define VM_CONTEXT11_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00080000L
+#define VM_CONTEXT11_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00100000L
+#define VM_CONTEXT11_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00200000L
+#define VM_CONTEXT11_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00400000L
+#define VM_CONTEXT11_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00800000L
+#define VM_CONTEXT11_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x01000000L
+//VM_CONTEXT12_CNTL
+#define VM_CONTEXT12_CNTL__ENABLE_CONTEXT__SHIFT 0x0
+#define VM_CONTEXT12_CNTL__PAGE_TABLE_DEPTH__SHIFT 0x1
+#define VM_CONTEXT12_CNTL__PAGE_TABLE_BLOCK_SIZE__SHIFT 0x3
+#define VM_CONTEXT12_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT__SHIFT 0x7
+#define VM_CONTEXT12_CNTL__RETRY_OTHER_FAULT__SHIFT 0x8
+#define VM_CONTEXT12_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x9
+#define VM_CONTEXT12_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xa
+#define VM_CONTEXT12_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xb
+#define VM_CONTEXT12_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xc
+#define VM_CONTEXT12_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xd
+#define VM_CONTEXT12_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xe
+#define VM_CONTEXT12_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xf
+#define VM_CONTEXT12_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x10
+#define VM_CONTEXT12_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x11
+#define VM_CONTEXT12_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x12
+#define VM_CONTEXT12_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x13
+#define VM_CONTEXT12_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x14
+#define VM_CONTEXT12_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x15
+#define VM_CONTEXT12_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x16
+#define VM_CONTEXT12_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x17
+#define VM_CONTEXT12_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x18
+#define VM_CONTEXT12_CNTL__ENABLE_CONTEXT_MASK 0x00000001L
+#define VM_CONTEXT12_CNTL__PAGE_TABLE_DEPTH_MASK 0x00000006L
+#define VM_CONTEXT12_CNTL__PAGE_TABLE_BLOCK_SIZE_MASK 0x00000078L
+#define VM_CONTEXT12_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT_MASK 0x00000080L
+#define VM_CONTEXT12_CNTL__RETRY_OTHER_FAULT_MASK 0x00000100L
+#define VM_CONTEXT12_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000200L
+#define VM_CONTEXT12_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000400L
+#define VM_CONTEXT12_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000800L
+#define VM_CONTEXT12_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00001000L
+#define VM_CONTEXT12_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00002000L
+#define VM_CONTEXT12_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00004000L
+#define VM_CONTEXT12_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00008000L
+#define VM_CONTEXT12_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00010000L
+#define VM_CONTEXT12_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00020000L
+#define VM_CONTEXT12_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00040000L
+#define VM_CONTEXT12_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00080000L
+#define VM_CONTEXT12_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00100000L
+#define VM_CONTEXT12_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00200000L
+#define VM_CONTEXT12_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00400000L
+#define VM_CONTEXT12_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00800000L
+#define VM_CONTEXT12_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x01000000L
+//VM_CONTEXT13_CNTL
+#define VM_CONTEXT13_CNTL__ENABLE_CONTEXT__SHIFT 0x0
+#define VM_CONTEXT13_CNTL__PAGE_TABLE_DEPTH__SHIFT 0x1
+#define VM_CONTEXT13_CNTL__PAGE_TABLE_BLOCK_SIZE__SHIFT 0x3
+#define VM_CONTEXT13_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT__SHIFT 0x7
+#define VM_CONTEXT13_CNTL__RETRY_OTHER_FAULT__SHIFT 0x8
+#define VM_CONTEXT13_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x9
+#define VM_CONTEXT13_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xa
+#define VM_CONTEXT13_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xb
+#define VM_CONTEXT13_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xc
+#define VM_CONTEXT13_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xd
+#define VM_CONTEXT13_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xe
+#define VM_CONTEXT13_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xf
+#define VM_CONTEXT13_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x10
+#define VM_CONTEXT13_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x11
+#define VM_CONTEXT13_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x12
+#define VM_CONTEXT13_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x13
+#define VM_CONTEXT13_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x14
+#define VM_CONTEXT13_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x15
+#define VM_CONTEXT13_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x16
+#define VM_CONTEXT13_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x17
+#define VM_CONTEXT13_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x18
+#define VM_CONTEXT13_CNTL__ENABLE_CONTEXT_MASK 0x00000001L
+#define VM_CONTEXT13_CNTL__PAGE_TABLE_DEPTH_MASK 0x00000006L
+#define VM_CONTEXT13_CNTL__PAGE_TABLE_BLOCK_SIZE_MASK 0x00000078L
+#define VM_CONTEXT13_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT_MASK 0x00000080L
+#define VM_CONTEXT13_CNTL__RETRY_OTHER_FAULT_MASK 0x00000100L
+#define VM_CONTEXT13_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000200L
+#define VM_CONTEXT13_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000400L
+#define VM_CONTEXT13_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000800L
+#define VM_CONTEXT13_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00001000L
+#define VM_CONTEXT13_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00002000L
+#define VM_CONTEXT13_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00004000L
+#define VM_CONTEXT13_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00008000L
+#define VM_CONTEXT13_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00010000L
+#define VM_CONTEXT13_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00020000L
+#define VM_CONTEXT13_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00040000L
+#define VM_CONTEXT13_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00080000L
+#define VM_CONTEXT13_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00100000L
+#define VM_CONTEXT13_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00200000L
+#define VM_CONTEXT13_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00400000L
+#define VM_CONTEXT13_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00800000L
+#define VM_CONTEXT13_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x01000000L
+//VM_CONTEXT14_CNTL
+#define VM_CONTEXT14_CNTL__ENABLE_CONTEXT__SHIFT 0x0
+#define VM_CONTEXT14_CNTL__PAGE_TABLE_DEPTH__SHIFT 0x1
+#define VM_CONTEXT14_CNTL__PAGE_TABLE_BLOCK_SIZE__SHIFT 0x3
+#define VM_CONTEXT14_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT__SHIFT 0x7
+#define VM_CONTEXT14_CNTL__RETRY_OTHER_FAULT__SHIFT 0x8
+#define VM_CONTEXT14_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x9
+#define VM_CONTEXT14_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xa
+#define VM_CONTEXT14_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xb
+#define VM_CONTEXT14_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xc
+#define VM_CONTEXT14_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xd
+#define VM_CONTEXT14_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xe
+#define VM_CONTEXT14_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xf
+#define VM_CONTEXT14_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x10
+#define VM_CONTEXT14_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x11
+#define VM_CONTEXT14_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x12
+#define VM_CONTEXT14_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x13
+#define VM_CONTEXT14_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x14
+#define VM_CONTEXT14_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x15
+#define VM_CONTEXT14_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x16
+#define VM_CONTEXT14_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x17
+#define VM_CONTEXT14_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x18
+#define VM_CONTEXT14_CNTL__ENABLE_CONTEXT_MASK 0x00000001L
+#define VM_CONTEXT14_CNTL__PAGE_TABLE_DEPTH_MASK 0x00000006L
+#define VM_CONTEXT14_CNTL__PAGE_TABLE_BLOCK_SIZE_MASK 0x00000078L
+#define VM_CONTEXT14_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT_MASK 0x00000080L
+#define VM_CONTEXT14_CNTL__RETRY_OTHER_FAULT_MASK 0x00000100L
+#define VM_CONTEXT14_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000200L
+#define VM_CONTEXT14_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000400L
+#define VM_CONTEXT14_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000800L
+#define VM_CONTEXT14_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00001000L
+#define VM_CONTEXT14_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00002000L
+#define VM_CONTEXT14_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00004000L
+#define VM_CONTEXT14_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00008000L
+#define VM_CONTEXT14_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00010000L
+#define VM_CONTEXT14_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00020000L
+#define VM_CONTEXT14_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00040000L
+#define VM_CONTEXT14_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00080000L
+#define VM_CONTEXT14_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00100000L
+#define VM_CONTEXT14_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00200000L
+#define VM_CONTEXT14_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00400000L
+#define VM_CONTEXT14_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00800000L
+#define VM_CONTEXT14_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x01000000L
+//VM_CONTEXT15_CNTL
+#define VM_CONTEXT15_CNTL__ENABLE_CONTEXT__SHIFT 0x0
+#define VM_CONTEXT15_CNTL__PAGE_TABLE_DEPTH__SHIFT 0x1
+#define VM_CONTEXT15_CNTL__PAGE_TABLE_BLOCK_SIZE__SHIFT 0x3
+#define VM_CONTEXT15_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT__SHIFT 0x7
+#define VM_CONTEXT15_CNTL__RETRY_OTHER_FAULT__SHIFT 0x8
+#define VM_CONTEXT15_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x9
+#define VM_CONTEXT15_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xa
+#define VM_CONTEXT15_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xb
+#define VM_CONTEXT15_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xc
+#define VM_CONTEXT15_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xd
+#define VM_CONTEXT15_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xe
+#define VM_CONTEXT15_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xf
+#define VM_CONTEXT15_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x10
+#define VM_CONTEXT15_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x11
+#define VM_CONTEXT15_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x12
+#define VM_CONTEXT15_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x13
+#define VM_CONTEXT15_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x14
+#define VM_CONTEXT15_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x15
+#define VM_CONTEXT15_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x16
+#define VM_CONTEXT15_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x17
+#define VM_CONTEXT15_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x18
+#define VM_CONTEXT15_CNTL__ENABLE_CONTEXT_MASK 0x00000001L
+#define VM_CONTEXT15_CNTL__PAGE_TABLE_DEPTH_MASK 0x00000006L
+#define VM_CONTEXT15_CNTL__PAGE_TABLE_BLOCK_SIZE_MASK 0x00000078L
+#define VM_CONTEXT15_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT_MASK 0x00000080L
+#define VM_CONTEXT15_CNTL__RETRY_OTHER_FAULT_MASK 0x00000100L
+#define VM_CONTEXT15_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000200L
+#define VM_CONTEXT15_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000400L
+#define VM_CONTEXT15_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000800L
+#define VM_CONTEXT15_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00001000L
+#define VM_CONTEXT15_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00002000L
+#define VM_CONTEXT15_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00004000L
+#define VM_CONTEXT15_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00008000L
+#define VM_CONTEXT15_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00010000L
+#define VM_CONTEXT15_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00020000L
+#define VM_CONTEXT15_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00040000L
+#define VM_CONTEXT15_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00080000L
+#define VM_CONTEXT15_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00100000L
+#define VM_CONTEXT15_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00200000L
+#define VM_CONTEXT15_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00400000L
+#define VM_CONTEXT15_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00800000L
+#define VM_CONTEXT15_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x01000000L
+//VM_CONTEXTS_DISABLE
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_0__SHIFT 0x0
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_1__SHIFT 0x1
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_2__SHIFT 0x2
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_3__SHIFT 0x3
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_4__SHIFT 0x4
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_5__SHIFT 0x5
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_6__SHIFT 0x6
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_7__SHIFT 0x7
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_8__SHIFT 0x8
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_9__SHIFT 0x9
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_10__SHIFT 0xa
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_11__SHIFT 0xb
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_12__SHIFT 0xc
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_13__SHIFT 0xd
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_14__SHIFT 0xe
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_15__SHIFT 0xf
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_0_MASK 0x00000001L
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_1_MASK 0x00000002L
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_2_MASK 0x00000004L
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_3_MASK 0x00000008L
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_4_MASK 0x00000010L
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_5_MASK 0x00000020L
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_6_MASK 0x00000040L
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_7_MASK 0x00000080L
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_8_MASK 0x00000100L
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_9_MASK 0x00000200L
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_10_MASK 0x00000400L
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_11_MASK 0x00000800L
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_12_MASK 0x00001000L
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_13_MASK 0x00002000L
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_14_MASK 0x00004000L
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_15_MASK 0x00008000L
+//VM_INVALIDATE_ENG0_SEM
+#define VM_INVALIDATE_ENG0_SEM__SEMAPHORE__SHIFT 0x0
+#define VM_INVALIDATE_ENG0_SEM__SEMAPHORE_MASK 0x00000001L
+//VM_INVALIDATE_ENG1_SEM
+#define VM_INVALIDATE_ENG1_SEM__SEMAPHORE__SHIFT 0x0
+#define VM_INVALIDATE_ENG1_SEM__SEMAPHORE_MASK 0x00000001L
+//VM_INVALIDATE_ENG2_SEM
+#define VM_INVALIDATE_ENG2_SEM__SEMAPHORE__SHIFT 0x0
+#define VM_INVALIDATE_ENG2_SEM__SEMAPHORE_MASK 0x00000001L
+//VM_INVALIDATE_ENG3_SEM
+#define VM_INVALIDATE_ENG3_SEM__SEMAPHORE__SHIFT 0x0
+#define VM_INVALIDATE_ENG3_SEM__SEMAPHORE_MASK 0x00000001L
+//VM_INVALIDATE_ENG4_SEM
+#define VM_INVALIDATE_ENG4_SEM__SEMAPHORE__SHIFT 0x0
+#define VM_INVALIDATE_ENG4_SEM__SEMAPHORE_MASK 0x00000001L
+//VM_INVALIDATE_ENG5_SEM
+#define VM_INVALIDATE_ENG5_SEM__SEMAPHORE__SHIFT 0x0
+#define VM_INVALIDATE_ENG5_SEM__SEMAPHORE_MASK 0x00000001L
+//VM_INVALIDATE_ENG6_SEM
+#define VM_INVALIDATE_ENG6_SEM__SEMAPHORE__SHIFT 0x0
+#define VM_INVALIDATE_ENG6_SEM__SEMAPHORE_MASK 0x00000001L
+//VM_INVALIDATE_ENG7_SEM
+#define VM_INVALIDATE_ENG7_SEM__SEMAPHORE__SHIFT 0x0
+#define VM_INVALIDATE_ENG7_SEM__SEMAPHORE_MASK 0x00000001L
+//VM_INVALIDATE_ENG8_SEM
+#define VM_INVALIDATE_ENG8_SEM__SEMAPHORE__SHIFT 0x0
+#define VM_INVALIDATE_ENG8_SEM__SEMAPHORE_MASK 0x00000001L
+//VM_INVALIDATE_ENG9_SEM
+#define VM_INVALIDATE_ENG9_SEM__SEMAPHORE__SHIFT 0x0
+#define VM_INVALIDATE_ENG9_SEM__SEMAPHORE_MASK 0x00000001L
+//VM_INVALIDATE_ENG10_SEM
+#define VM_INVALIDATE_ENG10_SEM__SEMAPHORE__SHIFT 0x0
+#define VM_INVALIDATE_ENG10_SEM__SEMAPHORE_MASK 0x00000001L
+//VM_INVALIDATE_ENG11_SEM
+#define VM_INVALIDATE_ENG11_SEM__SEMAPHORE__SHIFT 0x0
+#define VM_INVALIDATE_ENG11_SEM__SEMAPHORE_MASK 0x00000001L
+//VM_INVALIDATE_ENG12_SEM
+#define VM_INVALIDATE_ENG12_SEM__SEMAPHORE__SHIFT 0x0
+#define VM_INVALIDATE_ENG12_SEM__SEMAPHORE_MASK 0x00000001L
+//VM_INVALIDATE_ENG13_SEM
+#define VM_INVALIDATE_ENG13_SEM__SEMAPHORE__SHIFT 0x0
+#define VM_INVALIDATE_ENG13_SEM__SEMAPHORE_MASK 0x00000001L
+//VM_INVALIDATE_ENG14_SEM
+#define VM_INVALIDATE_ENG14_SEM__SEMAPHORE__SHIFT 0x0
+#define VM_INVALIDATE_ENG14_SEM__SEMAPHORE_MASK 0x00000001L
+//VM_INVALIDATE_ENG15_SEM
+#define VM_INVALIDATE_ENG15_SEM__SEMAPHORE__SHIFT 0x0
+#define VM_INVALIDATE_ENG15_SEM__SEMAPHORE_MASK 0x00000001L
+//VM_INVALIDATE_ENG16_SEM
+#define VM_INVALIDATE_ENG16_SEM__SEMAPHORE__SHIFT 0x0
+#define VM_INVALIDATE_ENG16_SEM__SEMAPHORE_MASK 0x00000001L
+//VM_INVALIDATE_ENG17_SEM
+#define VM_INVALIDATE_ENG17_SEM__SEMAPHORE__SHIFT 0x0
+#define VM_INVALIDATE_ENG17_SEM__SEMAPHORE_MASK 0x00000001L
+//VM_INVALIDATE_ENG0_REQ
+#define VM_INVALIDATE_ENG0_REQ__PER_VMID_INVALIDATE_REQ__SHIFT 0x0
+#define VM_INVALIDATE_ENG0_REQ__FLUSH_TYPE__SHIFT 0x10
+#define VM_INVALIDATE_ENG0_REQ__INVALIDATE_L2_PTES__SHIFT 0x12
+#define VM_INVALIDATE_ENG0_REQ__INVALIDATE_L2_PDE0__SHIFT 0x13
+#define VM_INVALIDATE_ENG0_REQ__INVALIDATE_L2_PDE1__SHIFT 0x14
+#define VM_INVALIDATE_ENG0_REQ__INVALIDATE_L2_PDE2__SHIFT 0x15
+#define VM_INVALIDATE_ENG0_REQ__INVALIDATE_L1_PTES__SHIFT 0x16
+#define VM_INVALIDATE_ENG0_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR__SHIFT 0x17
+#define VM_INVALIDATE_ENG0_REQ__LOG_REQUEST__SHIFT 0x18
+#define VM_INVALIDATE_ENG0_REQ__PER_VMID_INVALIDATE_REQ_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG0_REQ__FLUSH_TYPE_MASK 0x00030000L
+#define VM_INVALIDATE_ENG0_REQ__INVALIDATE_L2_PTES_MASK 0x00040000L
+#define VM_INVALIDATE_ENG0_REQ__INVALIDATE_L2_PDE0_MASK 0x00080000L
+#define VM_INVALIDATE_ENG0_REQ__INVALIDATE_L2_PDE1_MASK 0x00100000L
+#define VM_INVALIDATE_ENG0_REQ__INVALIDATE_L2_PDE2_MASK 0x00200000L
+#define VM_INVALIDATE_ENG0_REQ__INVALIDATE_L1_PTES_MASK 0x00400000L
+#define VM_INVALIDATE_ENG0_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR_MASK 0x00800000L
+#define VM_INVALIDATE_ENG0_REQ__LOG_REQUEST_MASK 0x01000000L
+//VM_INVALIDATE_ENG1_REQ
+#define VM_INVALIDATE_ENG1_REQ__PER_VMID_INVALIDATE_REQ__SHIFT 0x0
+#define VM_INVALIDATE_ENG1_REQ__FLUSH_TYPE__SHIFT 0x10
+#define VM_INVALIDATE_ENG1_REQ__INVALIDATE_L2_PTES__SHIFT 0x12
+#define VM_INVALIDATE_ENG1_REQ__INVALIDATE_L2_PDE0__SHIFT 0x13
+#define VM_INVALIDATE_ENG1_REQ__INVALIDATE_L2_PDE1__SHIFT 0x14
+#define VM_INVALIDATE_ENG1_REQ__INVALIDATE_L2_PDE2__SHIFT 0x15
+#define VM_INVALIDATE_ENG1_REQ__INVALIDATE_L1_PTES__SHIFT 0x16
+#define VM_INVALIDATE_ENG1_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR__SHIFT 0x17
+#define VM_INVALIDATE_ENG1_REQ__LOG_REQUEST__SHIFT 0x18
+#define VM_INVALIDATE_ENG1_REQ__PER_VMID_INVALIDATE_REQ_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG1_REQ__FLUSH_TYPE_MASK 0x00030000L
+#define VM_INVALIDATE_ENG1_REQ__INVALIDATE_L2_PTES_MASK 0x00040000L
+#define VM_INVALIDATE_ENG1_REQ__INVALIDATE_L2_PDE0_MASK 0x00080000L
+#define VM_INVALIDATE_ENG1_REQ__INVALIDATE_L2_PDE1_MASK 0x00100000L
+#define VM_INVALIDATE_ENG1_REQ__INVALIDATE_L2_PDE2_MASK 0x00200000L
+#define VM_INVALIDATE_ENG1_REQ__INVALIDATE_L1_PTES_MASK 0x00400000L
+#define VM_INVALIDATE_ENG1_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR_MASK 0x00800000L
+#define VM_INVALIDATE_ENG1_REQ__LOG_REQUEST_MASK 0x01000000L
+//VM_INVALIDATE_ENG2_REQ
+#define VM_INVALIDATE_ENG2_REQ__PER_VMID_INVALIDATE_REQ__SHIFT 0x0
+#define VM_INVALIDATE_ENG2_REQ__FLUSH_TYPE__SHIFT 0x10
+#define VM_INVALIDATE_ENG2_REQ__INVALIDATE_L2_PTES__SHIFT 0x12
+#define VM_INVALIDATE_ENG2_REQ__INVALIDATE_L2_PDE0__SHIFT 0x13
+#define VM_INVALIDATE_ENG2_REQ__INVALIDATE_L2_PDE1__SHIFT 0x14
+#define VM_INVALIDATE_ENG2_REQ__INVALIDATE_L2_PDE2__SHIFT 0x15
+#define VM_INVALIDATE_ENG2_REQ__INVALIDATE_L1_PTES__SHIFT 0x16
+#define VM_INVALIDATE_ENG2_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR__SHIFT 0x17
+#define VM_INVALIDATE_ENG2_REQ__LOG_REQUEST__SHIFT 0x18
+#define VM_INVALIDATE_ENG2_REQ__PER_VMID_INVALIDATE_REQ_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG2_REQ__FLUSH_TYPE_MASK 0x00030000L
+#define VM_INVALIDATE_ENG2_REQ__INVALIDATE_L2_PTES_MASK 0x00040000L
+#define VM_INVALIDATE_ENG2_REQ__INVALIDATE_L2_PDE0_MASK 0x00080000L
+#define VM_INVALIDATE_ENG2_REQ__INVALIDATE_L2_PDE1_MASK 0x00100000L
+#define VM_INVALIDATE_ENG2_REQ__INVALIDATE_L2_PDE2_MASK 0x00200000L
+#define VM_INVALIDATE_ENG2_REQ__INVALIDATE_L1_PTES_MASK 0x00400000L
+#define VM_INVALIDATE_ENG2_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR_MASK 0x00800000L
+#define VM_INVALIDATE_ENG2_REQ__LOG_REQUEST_MASK 0x01000000L
+//VM_INVALIDATE_ENG3_REQ
+#define VM_INVALIDATE_ENG3_REQ__PER_VMID_INVALIDATE_REQ__SHIFT 0x0
+#define VM_INVALIDATE_ENG3_REQ__FLUSH_TYPE__SHIFT 0x10
+#define VM_INVALIDATE_ENG3_REQ__INVALIDATE_L2_PTES__SHIFT 0x12
+#define VM_INVALIDATE_ENG3_REQ__INVALIDATE_L2_PDE0__SHIFT 0x13
+#define VM_INVALIDATE_ENG3_REQ__INVALIDATE_L2_PDE1__SHIFT 0x14
+#define VM_INVALIDATE_ENG3_REQ__INVALIDATE_L2_PDE2__SHIFT 0x15
+#define VM_INVALIDATE_ENG3_REQ__INVALIDATE_L1_PTES__SHIFT 0x16
+#define VM_INVALIDATE_ENG3_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR__SHIFT 0x17
+#define VM_INVALIDATE_ENG3_REQ__LOG_REQUEST__SHIFT 0x18
+#define VM_INVALIDATE_ENG3_REQ__PER_VMID_INVALIDATE_REQ_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG3_REQ__FLUSH_TYPE_MASK 0x00030000L
+#define VM_INVALIDATE_ENG3_REQ__INVALIDATE_L2_PTES_MASK 0x00040000L
+#define VM_INVALIDATE_ENG3_REQ__INVALIDATE_L2_PDE0_MASK 0x00080000L
+#define VM_INVALIDATE_ENG3_REQ__INVALIDATE_L2_PDE1_MASK 0x00100000L
+#define VM_INVALIDATE_ENG3_REQ__INVALIDATE_L2_PDE2_MASK 0x00200000L
+#define VM_INVALIDATE_ENG3_REQ__INVALIDATE_L1_PTES_MASK 0x00400000L
+#define VM_INVALIDATE_ENG3_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR_MASK 0x00800000L
+#define VM_INVALIDATE_ENG3_REQ__LOG_REQUEST_MASK 0x01000000L
+//VM_INVALIDATE_ENG4_REQ
+#define VM_INVALIDATE_ENG4_REQ__PER_VMID_INVALIDATE_REQ__SHIFT 0x0
+#define VM_INVALIDATE_ENG4_REQ__FLUSH_TYPE__SHIFT 0x10
+#define VM_INVALIDATE_ENG4_REQ__INVALIDATE_L2_PTES__SHIFT 0x12
+#define VM_INVALIDATE_ENG4_REQ__INVALIDATE_L2_PDE0__SHIFT 0x13
+#define VM_INVALIDATE_ENG4_REQ__INVALIDATE_L2_PDE1__SHIFT 0x14
+#define VM_INVALIDATE_ENG4_REQ__INVALIDATE_L2_PDE2__SHIFT 0x15
+#define VM_INVALIDATE_ENG4_REQ__INVALIDATE_L1_PTES__SHIFT 0x16
+#define VM_INVALIDATE_ENG4_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR__SHIFT 0x17
+#define VM_INVALIDATE_ENG4_REQ__LOG_REQUEST__SHIFT 0x18
+#define VM_INVALIDATE_ENG4_REQ__PER_VMID_INVALIDATE_REQ_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG4_REQ__FLUSH_TYPE_MASK 0x00030000L
+#define VM_INVALIDATE_ENG4_REQ__INVALIDATE_L2_PTES_MASK 0x00040000L
+#define VM_INVALIDATE_ENG4_REQ__INVALIDATE_L2_PDE0_MASK 0x00080000L
+#define VM_INVALIDATE_ENG4_REQ__INVALIDATE_L2_PDE1_MASK 0x00100000L
+#define VM_INVALIDATE_ENG4_REQ__INVALIDATE_L2_PDE2_MASK 0x00200000L
+#define VM_INVALIDATE_ENG4_REQ__INVALIDATE_L1_PTES_MASK 0x00400000L
+#define VM_INVALIDATE_ENG4_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR_MASK 0x00800000L
+#define VM_INVALIDATE_ENG4_REQ__LOG_REQUEST_MASK 0x01000000L
+//VM_INVALIDATE_ENG5_REQ
+#define VM_INVALIDATE_ENG5_REQ__PER_VMID_INVALIDATE_REQ__SHIFT 0x0
+#define VM_INVALIDATE_ENG5_REQ__FLUSH_TYPE__SHIFT 0x10
+#define VM_INVALIDATE_ENG5_REQ__INVALIDATE_L2_PTES__SHIFT 0x12
+#define VM_INVALIDATE_ENG5_REQ__INVALIDATE_L2_PDE0__SHIFT 0x13
+#define VM_INVALIDATE_ENG5_REQ__INVALIDATE_L2_PDE1__SHIFT 0x14
+#define VM_INVALIDATE_ENG5_REQ__INVALIDATE_L2_PDE2__SHIFT 0x15
+#define VM_INVALIDATE_ENG5_REQ__INVALIDATE_L1_PTES__SHIFT 0x16
+#define VM_INVALIDATE_ENG5_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR__SHIFT 0x17
+#define VM_INVALIDATE_ENG5_REQ__LOG_REQUEST__SHIFT 0x18
+#define VM_INVALIDATE_ENG5_REQ__PER_VMID_INVALIDATE_REQ_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG5_REQ__FLUSH_TYPE_MASK 0x00030000L
+#define VM_INVALIDATE_ENG5_REQ__INVALIDATE_L2_PTES_MASK 0x00040000L
+#define VM_INVALIDATE_ENG5_REQ__INVALIDATE_L2_PDE0_MASK 0x00080000L
+#define VM_INVALIDATE_ENG5_REQ__INVALIDATE_L2_PDE1_MASK 0x00100000L
+#define VM_INVALIDATE_ENG5_REQ__INVALIDATE_L2_PDE2_MASK 0x00200000L
+#define VM_INVALIDATE_ENG5_REQ__INVALIDATE_L1_PTES_MASK 0x00400000L
+#define VM_INVALIDATE_ENG5_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR_MASK 0x00800000L
+#define VM_INVALIDATE_ENG5_REQ__LOG_REQUEST_MASK 0x01000000L
+//VM_INVALIDATE_ENG6_REQ
+#define VM_INVALIDATE_ENG6_REQ__PER_VMID_INVALIDATE_REQ__SHIFT 0x0
+#define VM_INVALIDATE_ENG6_REQ__FLUSH_TYPE__SHIFT 0x10
+#define VM_INVALIDATE_ENG6_REQ__INVALIDATE_L2_PTES__SHIFT 0x12
+#define VM_INVALIDATE_ENG6_REQ__INVALIDATE_L2_PDE0__SHIFT 0x13
+#define VM_INVALIDATE_ENG6_REQ__INVALIDATE_L2_PDE1__SHIFT 0x14
+#define VM_INVALIDATE_ENG6_REQ__INVALIDATE_L2_PDE2__SHIFT 0x15
+#define VM_INVALIDATE_ENG6_REQ__INVALIDATE_L1_PTES__SHIFT 0x16
+#define VM_INVALIDATE_ENG6_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR__SHIFT 0x17
+#define VM_INVALIDATE_ENG6_REQ__LOG_REQUEST__SHIFT 0x18
+#define VM_INVALIDATE_ENG6_REQ__PER_VMID_INVALIDATE_REQ_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG6_REQ__FLUSH_TYPE_MASK 0x00030000L
+#define VM_INVALIDATE_ENG6_REQ__INVALIDATE_L2_PTES_MASK 0x00040000L
+#define VM_INVALIDATE_ENG6_REQ__INVALIDATE_L2_PDE0_MASK 0x00080000L
+#define VM_INVALIDATE_ENG6_REQ__INVALIDATE_L2_PDE1_MASK 0x00100000L
+#define VM_INVALIDATE_ENG6_REQ__INVALIDATE_L2_PDE2_MASK 0x00200000L
+#define VM_INVALIDATE_ENG6_REQ__INVALIDATE_L1_PTES_MASK 0x00400000L
+#define VM_INVALIDATE_ENG6_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR_MASK 0x00800000L
+#define VM_INVALIDATE_ENG6_REQ__LOG_REQUEST_MASK 0x01000000L
+//VM_INVALIDATE_ENG7_REQ
+#define VM_INVALIDATE_ENG7_REQ__PER_VMID_INVALIDATE_REQ__SHIFT 0x0
+#define VM_INVALIDATE_ENG7_REQ__FLUSH_TYPE__SHIFT 0x10
+#define VM_INVALIDATE_ENG7_REQ__INVALIDATE_L2_PTES__SHIFT 0x12
+#define VM_INVALIDATE_ENG7_REQ__INVALIDATE_L2_PDE0__SHIFT 0x13
+#define VM_INVALIDATE_ENG7_REQ__INVALIDATE_L2_PDE1__SHIFT 0x14
+#define VM_INVALIDATE_ENG7_REQ__INVALIDATE_L2_PDE2__SHIFT 0x15
+#define VM_INVALIDATE_ENG7_REQ__INVALIDATE_L1_PTES__SHIFT 0x16
+#define VM_INVALIDATE_ENG7_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR__SHIFT 0x17
+#define VM_INVALIDATE_ENG7_REQ__LOG_REQUEST__SHIFT 0x18
+#define VM_INVALIDATE_ENG7_REQ__PER_VMID_INVALIDATE_REQ_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG7_REQ__FLUSH_TYPE_MASK 0x00030000L
+#define VM_INVALIDATE_ENG7_REQ__INVALIDATE_L2_PTES_MASK 0x00040000L
+#define VM_INVALIDATE_ENG7_REQ__INVALIDATE_L2_PDE0_MASK 0x00080000L
+#define VM_INVALIDATE_ENG7_REQ__INVALIDATE_L2_PDE1_MASK 0x00100000L
+#define VM_INVALIDATE_ENG7_REQ__INVALIDATE_L2_PDE2_MASK 0x00200000L
+#define VM_INVALIDATE_ENG7_REQ__INVALIDATE_L1_PTES_MASK 0x00400000L
+#define VM_INVALIDATE_ENG7_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR_MASK 0x00800000L
+#define VM_INVALIDATE_ENG7_REQ__LOG_REQUEST_MASK 0x01000000L
+//VM_INVALIDATE_ENG8_REQ
+#define VM_INVALIDATE_ENG8_REQ__PER_VMID_INVALIDATE_REQ__SHIFT 0x0
+#define VM_INVALIDATE_ENG8_REQ__FLUSH_TYPE__SHIFT 0x10
+#define VM_INVALIDATE_ENG8_REQ__INVALIDATE_L2_PTES__SHIFT 0x12
+#define VM_INVALIDATE_ENG8_REQ__INVALIDATE_L2_PDE0__SHIFT 0x13
+#define VM_INVALIDATE_ENG8_REQ__INVALIDATE_L2_PDE1__SHIFT 0x14
+#define VM_INVALIDATE_ENG8_REQ__INVALIDATE_L2_PDE2__SHIFT 0x15
+#define VM_INVALIDATE_ENG8_REQ__INVALIDATE_L1_PTES__SHIFT 0x16
+#define VM_INVALIDATE_ENG8_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR__SHIFT 0x17
+#define VM_INVALIDATE_ENG8_REQ__LOG_REQUEST__SHIFT 0x18
+#define VM_INVALIDATE_ENG8_REQ__PER_VMID_INVALIDATE_REQ_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG8_REQ__FLUSH_TYPE_MASK 0x00030000L
+#define VM_INVALIDATE_ENG8_REQ__INVALIDATE_L2_PTES_MASK 0x00040000L
+#define VM_INVALIDATE_ENG8_REQ__INVALIDATE_L2_PDE0_MASK 0x00080000L
+#define VM_INVALIDATE_ENG8_REQ__INVALIDATE_L2_PDE1_MASK 0x00100000L
+#define VM_INVALIDATE_ENG8_REQ__INVALIDATE_L2_PDE2_MASK 0x00200000L
+#define VM_INVALIDATE_ENG8_REQ__INVALIDATE_L1_PTES_MASK 0x00400000L
+#define VM_INVALIDATE_ENG8_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR_MASK 0x00800000L
+#define VM_INVALIDATE_ENG8_REQ__LOG_REQUEST_MASK 0x01000000L
+//VM_INVALIDATE_ENG9_REQ
+#define VM_INVALIDATE_ENG9_REQ__PER_VMID_INVALIDATE_REQ__SHIFT 0x0
+#define VM_INVALIDATE_ENG9_REQ__FLUSH_TYPE__SHIFT 0x10
+#define VM_INVALIDATE_ENG9_REQ__INVALIDATE_L2_PTES__SHIFT 0x12
+#define VM_INVALIDATE_ENG9_REQ__INVALIDATE_L2_PDE0__SHIFT 0x13
+#define VM_INVALIDATE_ENG9_REQ__INVALIDATE_L2_PDE1__SHIFT 0x14
+#define VM_INVALIDATE_ENG9_REQ__INVALIDATE_L2_PDE2__SHIFT 0x15
+#define VM_INVALIDATE_ENG9_REQ__INVALIDATE_L1_PTES__SHIFT 0x16
+#define VM_INVALIDATE_ENG9_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR__SHIFT 0x17
+#define VM_INVALIDATE_ENG9_REQ__LOG_REQUEST__SHIFT 0x18
+#define VM_INVALIDATE_ENG9_REQ__PER_VMID_INVALIDATE_REQ_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG9_REQ__FLUSH_TYPE_MASK 0x00030000L
+#define VM_INVALIDATE_ENG9_REQ__INVALIDATE_L2_PTES_MASK 0x00040000L
+#define VM_INVALIDATE_ENG9_REQ__INVALIDATE_L2_PDE0_MASK 0x00080000L
+#define VM_INVALIDATE_ENG9_REQ__INVALIDATE_L2_PDE1_MASK 0x00100000L
+#define VM_INVALIDATE_ENG9_REQ__INVALIDATE_L2_PDE2_MASK 0x00200000L
+#define VM_INVALIDATE_ENG9_REQ__INVALIDATE_L1_PTES_MASK 0x00400000L
+#define VM_INVALIDATE_ENG9_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR_MASK 0x00800000L
+#define VM_INVALIDATE_ENG9_REQ__LOG_REQUEST_MASK 0x01000000L
+//VM_INVALIDATE_ENG10_REQ
+#define VM_INVALIDATE_ENG10_REQ__PER_VMID_INVALIDATE_REQ__SHIFT 0x0
+#define VM_INVALIDATE_ENG10_REQ__FLUSH_TYPE__SHIFT 0x10
+#define VM_INVALIDATE_ENG10_REQ__INVALIDATE_L2_PTES__SHIFT 0x12
+#define VM_INVALIDATE_ENG10_REQ__INVALIDATE_L2_PDE0__SHIFT 0x13
+#define VM_INVALIDATE_ENG10_REQ__INVALIDATE_L2_PDE1__SHIFT 0x14
+#define VM_INVALIDATE_ENG10_REQ__INVALIDATE_L2_PDE2__SHIFT 0x15
+#define VM_INVALIDATE_ENG10_REQ__INVALIDATE_L1_PTES__SHIFT 0x16
+#define VM_INVALIDATE_ENG10_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR__SHIFT 0x17
+#define VM_INVALIDATE_ENG10_REQ__LOG_REQUEST__SHIFT 0x18
+#define VM_INVALIDATE_ENG10_REQ__PER_VMID_INVALIDATE_REQ_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG10_REQ__FLUSH_TYPE_MASK 0x00030000L
+#define VM_INVALIDATE_ENG10_REQ__INVALIDATE_L2_PTES_MASK 0x00040000L
+#define VM_INVALIDATE_ENG10_REQ__INVALIDATE_L2_PDE0_MASK 0x00080000L
+#define VM_INVALIDATE_ENG10_REQ__INVALIDATE_L2_PDE1_MASK 0x00100000L
+#define VM_INVALIDATE_ENG10_REQ__INVALIDATE_L2_PDE2_MASK 0x00200000L
+#define VM_INVALIDATE_ENG10_REQ__INVALIDATE_L1_PTES_MASK 0x00400000L
+#define VM_INVALIDATE_ENG10_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR_MASK 0x00800000L
+#define VM_INVALIDATE_ENG10_REQ__LOG_REQUEST_MASK 0x01000000L
+//VM_INVALIDATE_ENG11_REQ
+#define VM_INVALIDATE_ENG11_REQ__PER_VMID_INVALIDATE_REQ__SHIFT 0x0
+#define VM_INVALIDATE_ENG11_REQ__FLUSH_TYPE__SHIFT 0x10
+#define VM_INVALIDATE_ENG11_REQ__INVALIDATE_L2_PTES__SHIFT 0x12
+#define VM_INVALIDATE_ENG11_REQ__INVALIDATE_L2_PDE0__SHIFT 0x13
+#define VM_INVALIDATE_ENG11_REQ__INVALIDATE_L2_PDE1__SHIFT 0x14
+#define VM_INVALIDATE_ENG11_REQ__INVALIDATE_L2_PDE2__SHIFT 0x15
+#define VM_INVALIDATE_ENG11_REQ__INVALIDATE_L1_PTES__SHIFT 0x16
+#define VM_INVALIDATE_ENG11_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR__SHIFT 0x17
+#define VM_INVALIDATE_ENG11_REQ__LOG_REQUEST__SHIFT 0x18
+#define VM_INVALIDATE_ENG11_REQ__PER_VMID_INVALIDATE_REQ_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG11_REQ__FLUSH_TYPE_MASK 0x00030000L
+#define VM_INVALIDATE_ENG11_REQ__INVALIDATE_L2_PTES_MASK 0x00040000L
+#define VM_INVALIDATE_ENG11_REQ__INVALIDATE_L2_PDE0_MASK 0x00080000L
+#define VM_INVALIDATE_ENG11_REQ__INVALIDATE_L2_PDE1_MASK 0x00100000L
+#define VM_INVALIDATE_ENG11_REQ__INVALIDATE_L2_PDE2_MASK 0x00200000L
+#define VM_INVALIDATE_ENG11_REQ__INVALIDATE_L1_PTES_MASK 0x00400000L
+#define VM_INVALIDATE_ENG11_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR_MASK 0x00800000L
+#define VM_INVALIDATE_ENG11_REQ__LOG_REQUEST_MASK 0x01000000L
+//VM_INVALIDATE_ENG12_REQ
+#define VM_INVALIDATE_ENG12_REQ__PER_VMID_INVALIDATE_REQ__SHIFT 0x0
+#define VM_INVALIDATE_ENG12_REQ__FLUSH_TYPE__SHIFT 0x10
+#define VM_INVALIDATE_ENG12_REQ__INVALIDATE_L2_PTES__SHIFT 0x12
+#define VM_INVALIDATE_ENG12_REQ__INVALIDATE_L2_PDE0__SHIFT 0x13
+#define VM_INVALIDATE_ENG12_REQ__INVALIDATE_L2_PDE1__SHIFT 0x14
+#define VM_INVALIDATE_ENG12_REQ__INVALIDATE_L2_PDE2__SHIFT 0x15
+#define VM_INVALIDATE_ENG12_REQ__INVALIDATE_L1_PTES__SHIFT 0x16
+#define VM_INVALIDATE_ENG12_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR__SHIFT 0x17
+#define VM_INVALIDATE_ENG12_REQ__LOG_REQUEST__SHIFT 0x18
+#define VM_INVALIDATE_ENG12_REQ__PER_VMID_INVALIDATE_REQ_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG12_REQ__FLUSH_TYPE_MASK 0x00030000L
+#define VM_INVALIDATE_ENG12_REQ__INVALIDATE_L2_PTES_MASK 0x00040000L
+#define VM_INVALIDATE_ENG12_REQ__INVALIDATE_L2_PDE0_MASK 0x00080000L
+#define VM_INVALIDATE_ENG12_REQ__INVALIDATE_L2_PDE1_MASK 0x00100000L
+#define VM_INVALIDATE_ENG12_REQ__INVALIDATE_L2_PDE2_MASK 0x00200000L
+#define VM_INVALIDATE_ENG12_REQ__INVALIDATE_L1_PTES_MASK 0x00400000L
+#define VM_INVALIDATE_ENG12_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR_MASK 0x00800000L
+#define VM_INVALIDATE_ENG12_REQ__LOG_REQUEST_MASK 0x01000000L
+//VM_INVALIDATE_ENG13_REQ
+#define VM_INVALIDATE_ENG13_REQ__PER_VMID_INVALIDATE_REQ__SHIFT 0x0
+#define VM_INVALIDATE_ENG13_REQ__FLUSH_TYPE__SHIFT 0x10
+#define VM_INVALIDATE_ENG13_REQ__INVALIDATE_L2_PTES__SHIFT 0x12
+#define VM_INVALIDATE_ENG13_REQ__INVALIDATE_L2_PDE0__SHIFT 0x13
+#define VM_INVALIDATE_ENG13_REQ__INVALIDATE_L2_PDE1__SHIFT 0x14
+#define VM_INVALIDATE_ENG13_REQ__INVALIDATE_L2_PDE2__SHIFT 0x15
+#define VM_INVALIDATE_ENG13_REQ__INVALIDATE_L1_PTES__SHIFT 0x16
+#define VM_INVALIDATE_ENG13_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR__SHIFT 0x17
+#define VM_INVALIDATE_ENG13_REQ__LOG_REQUEST__SHIFT 0x18
+#define VM_INVALIDATE_ENG13_REQ__PER_VMID_INVALIDATE_REQ_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG13_REQ__FLUSH_TYPE_MASK 0x00030000L
+#define VM_INVALIDATE_ENG13_REQ__INVALIDATE_L2_PTES_MASK 0x00040000L
+#define VM_INVALIDATE_ENG13_REQ__INVALIDATE_L2_PDE0_MASK 0x00080000L
+#define VM_INVALIDATE_ENG13_REQ__INVALIDATE_L2_PDE1_MASK 0x00100000L
+#define VM_INVALIDATE_ENG13_REQ__INVALIDATE_L2_PDE2_MASK 0x00200000L
+#define VM_INVALIDATE_ENG13_REQ__INVALIDATE_L1_PTES_MASK 0x00400000L
+#define VM_INVALIDATE_ENG13_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR_MASK 0x00800000L
+#define VM_INVALIDATE_ENG13_REQ__LOG_REQUEST_MASK 0x01000000L
+//VM_INVALIDATE_ENG14_REQ
+#define VM_INVALIDATE_ENG14_REQ__PER_VMID_INVALIDATE_REQ__SHIFT 0x0
+#define VM_INVALIDATE_ENG14_REQ__FLUSH_TYPE__SHIFT 0x10
+#define VM_INVALIDATE_ENG14_REQ__INVALIDATE_L2_PTES__SHIFT 0x12
+#define VM_INVALIDATE_ENG14_REQ__INVALIDATE_L2_PDE0__SHIFT 0x13
+#define VM_INVALIDATE_ENG14_REQ__INVALIDATE_L2_PDE1__SHIFT 0x14
+#define VM_INVALIDATE_ENG14_REQ__INVALIDATE_L2_PDE2__SHIFT 0x15
+#define VM_INVALIDATE_ENG14_REQ__INVALIDATE_L1_PTES__SHIFT 0x16
+#define VM_INVALIDATE_ENG14_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR__SHIFT 0x17
+#define VM_INVALIDATE_ENG14_REQ__LOG_REQUEST__SHIFT 0x18
+#define VM_INVALIDATE_ENG14_REQ__PER_VMID_INVALIDATE_REQ_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG14_REQ__FLUSH_TYPE_MASK 0x00030000L
+#define VM_INVALIDATE_ENG14_REQ__INVALIDATE_L2_PTES_MASK 0x00040000L
+#define VM_INVALIDATE_ENG14_REQ__INVALIDATE_L2_PDE0_MASK 0x00080000L
+#define VM_INVALIDATE_ENG14_REQ__INVALIDATE_L2_PDE1_MASK 0x00100000L
+#define VM_INVALIDATE_ENG14_REQ__INVALIDATE_L2_PDE2_MASK 0x00200000L
+#define VM_INVALIDATE_ENG14_REQ__INVALIDATE_L1_PTES_MASK 0x00400000L
+#define VM_INVALIDATE_ENG14_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR_MASK 0x00800000L
+#define VM_INVALIDATE_ENG14_REQ__LOG_REQUEST_MASK 0x01000000L
+//VM_INVALIDATE_ENG15_REQ
+#define VM_INVALIDATE_ENG15_REQ__PER_VMID_INVALIDATE_REQ__SHIFT 0x0
+#define VM_INVALIDATE_ENG15_REQ__FLUSH_TYPE__SHIFT 0x10
+#define VM_INVALIDATE_ENG15_REQ__INVALIDATE_L2_PTES__SHIFT 0x12
+#define VM_INVALIDATE_ENG15_REQ__INVALIDATE_L2_PDE0__SHIFT 0x13
+#define VM_INVALIDATE_ENG15_REQ__INVALIDATE_L2_PDE1__SHIFT 0x14
+#define VM_INVALIDATE_ENG15_REQ__INVALIDATE_L2_PDE2__SHIFT 0x15
+#define VM_INVALIDATE_ENG15_REQ__INVALIDATE_L1_PTES__SHIFT 0x16
+#define VM_INVALIDATE_ENG15_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR__SHIFT 0x17
+#define VM_INVALIDATE_ENG15_REQ__LOG_REQUEST__SHIFT 0x18
+#define VM_INVALIDATE_ENG15_REQ__PER_VMID_INVALIDATE_REQ_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG15_REQ__FLUSH_TYPE_MASK 0x00030000L
+#define VM_INVALIDATE_ENG15_REQ__INVALIDATE_L2_PTES_MASK 0x00040000L
+#define VM_INVALIDATE_ENG15_REQ__INVALIDATE_L2_PDE0_MASK 0x00080000L
+#define VM_INVALIDATE_ENG15_REQ__INVALIDATE_L2_PDE1_MASK 0x00100000L
+#define VM_INVALIDATE_ENG15_REQ__INVALIDATE_L2_PDE2_MASK 0x00200000L
+#define VM_INVALIDATE_ENG15_REQ__INVALIDATE_L1_PTES_MASK 0x00400000L
+#define VM_INVALIDATE_ENG15_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR_MASK 0x00800000L
+#define VM_INVALIDATE_ENG15_REQ__LOG_REQUEST_MASK 0x01000000L
+//VM_INVALIDATE_ENG16_REQ
+#define VM_INVALIDATE_ENG16_REQ__PER_VMID_INVALIDATE_REQ__SHIFT 0x0
+#define VM_INVALIDATE_ENG16_REQ__FLUSH_TYPE__SHIFT 0x10
+#define VM_INVALIDATE_ENG16_REQ__INVALIDATE_L2_PTES__SHIFT 0x12
+#define VM_INVALIDATE_ENG16_REQ__INVALIDATE_L2_PDE0__SHIFT 0x13
+#define VM_INVALIDATE_ENG16_REQ__INVALIDATE_L2_PDE1__SHIFT 0x14
+#define VM_INVALIDATE_ENG16_REQ__INVALIDATE_L2_PDE2__SHIFT 0x15
+#define VM_INVALIDATE_ENG16_REQ__INVALIDATE_L1_PTES__SHIFT 0x16
+#define VM_INVALIDATE_ENG16_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR__SHIFT 0x17
+#define VM_INVALIDATE_ENG16_REQ__LOG_REQUEST__SHIFT 0x18
+#define VM_INVALIDATE_ENG16_REQ__PER_VMID_INVALIDATE_REQ_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG16_REQ__FLUSH_TYPE_MASK 0x00030000L
+#define VM_INVALIDATE_ENG16_REQ__INVALIDATE_L2_PTES_MASK 0x00040000L
+#define VM_INVALIDATE_ENG16_REQ__INVALIDATE_L2_PDE0_MASK 0x00080000L
+#define VM_INVALIDATE_ENG16_REQ__INVALIDATE_L2_PDE1_MASK 0x00100000L
+#define VM_INVALIDATE_ENG16_REQ__INVALIDATE_L2_PDE2_MASK 0x00200000L
+#define VM_INVALIDATE_ENG16_REQ__INVALIDATE_L1_PTES_MASK 0x00400000L
+#define VM_INVALIDATE_ENG16_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR_MASK 0x00800000L
+#define VM_INVALIDATE_ENG16_REQ__LOG_REQUEST_MASK 0x01000000L
+//VM_INVALIDATE_ENG17_REQ
+#define VM_INVALIDATE_ENG17_REQ__PER_VMID_INVALIDATE_REQ__SHIFT 0x0
+#define VM_INVALIDATE_ENG17_REQ__FLUSH_TYPE__SHIFT 0x10
+#define VM_INVALIDATE_ENG17_REQ__INVALIDATE_L2_PTES__SHIFT 0x12
+#define VM_INVALIDATE_ENG17_REQ__INVALIDATE_L2_PDE0__SHIFT 0x13
+#define VM_INVALIDATE_ENG17_REQ__INVALIDATE_L2_PDE1__SHIFT 0x14
+#define VM_INVALIDATE_ENG17_REQ__INVALIDATE_L2_PDE2__SHIFT 0x15
+#define VM_INVALIDATE_ENG17_REQ__INVALIDATE_L1_PTES__SHIFT 0x16
+#define VM_INVALIDATE_ENG17_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR__SHIFT 0x17
+#define VM_INVALIDATE_ENG17_REQ__LOG_REQUEST__SHIFT 0x18
+#define VM_INVALIDATE_ENG17_REQ__PER_VMID_INVALIDATE_REQ_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG17_REQ__FLUSH_TYPE_MASK 0x00030000L
+#define VM_INVALIDATE_ENG17_REQ__INVALIDATE_L2_PTES_MASK 0x00040000L
+#define VM_INVALIDATE_ENG17_REQ__INVALIDATE_L2_PDE0_MASK 0x00080000L
+#define VM_INVALIDATE_ENG17_REQ__INVALIDATE_L2_PDE1_MASK 0x00100000L
+#define VM_INVALIDATE_ENG17_REQ__INVALIDATE_L2_PDE2_MASK 0x00200000L
+#define VM_INVALIDATE_ENG17_REQ__INVALIDATE_L1_PTES_MASK 0x00400000L
+#define VM_INVALIDATE_ENG17_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR_MASK 0x00800000L
+#define VM_INVALIDATE_ENG17_REQ__LOG_REQUEST_MASK 0x01000000L
+//VM_INVALIDATE_ENG0_ACK
+#define VM_INVALIDATE_ENG0_ACK__PER_VMID_INVALIDATE_ACK__SHIFT 0x0
+#define VM_INVALIDATE_ENG0_ACK__SEMAPHORE__SHIFT 0x10
+#define VM_INVALIDATE_ENG0_ACK__PER_VMID_INVALIDATE_ACK_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG0_ACK__SEMAPHORE_MASK 0x00010000L
+//VM_INVALIDATE_ENG1_ACK
+#define VM_INVALIDATE_ENG1_ACK__PER_VMID_INVALIDATE_ACK__SHIFT 0x0
+#define VM_INVALIDATE_ENG1_ACK__SEMAPHORE__SHIFT 0x10
+#define VM_INVALIDATE_ENG1_ACK__PER_VMID_INVALIDATE_ACK_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG1_ACK__SEMAPHORE_MASK 0x00010000L
+//VM_INVALIDATE_ENG2_ACK
+#define VM_INVALIDATE_ENG2_ACK__PER_VMID_INVALIDATE_ACK__SHIFT 0x0
+#define VM_INVALIDATE_ENG2_ACK__SEMAPHORE__SHIFT 0x10
+#define VM_INVALIDATE_ENG2_ACK__PER_VMID_INVALIDATE_ACK_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG2_ACK__SEMAPHORE_MASK 0x00010000L
+//VM_INVALIDATE_ENG3_ACK
+#define VM_INVALIDATE_ENG3_ACK__PER_VMID_INVALIDATE_ACK__SHIFT 0x0
+#define VM_INVALIDATE_ENG3_ACK__SEMAPHORE__SHIFT 0x10
+#define VM_INVALIDATE_ENG3_ACK__PER_VMID_INVALIDATE_ACK_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG3_ACK__SEMAPHORE_MASK 0x00010000L
+//VM_INVALIDATE_ENG4_ACK
+#define VM_INVALIDATE_ENG4_ACK__PER_VMID_INVALIDATE_ACK__SHIFT 0x0
+#define VM_INVALIDATE_ENG4_ACK__SEMAPHORE__SHIFT 0x10
+#define VM_INVALIDATE_ENG4_ACK__PER_VMID_INVALIDATE_ACK_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG4_ACK__SEMAPHORE_MASK 0x00010000L
+//VM_INVALIDATE_ENG5_ACK
+#define VM_INVALIDATE_ENG5_ACK__PER_VMID_INVALIDATE_ACK__SHIFT 0x0
+#define VM_INVALIDATE_ENG5_ACK__SEMAPHORE__SHIFT 0x10
+#define VM_INVALIDATE_ENG5_ACK__PER_VMID_INVALIDATE_ACK_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG5_ACK__SEMAPHORE_MASK 0x00010000L
+//VM_INVALIDATE_ENG6_ACK
+#define VM_INVALIDATE_ENG6_ACK__PER_VMID_INVALIDATE_ACK__SHIFT 0x0
+#define VM_INVALIDATE_ENG6_ACK__SEMAPHORE__SHIFT 0x10
+#define VM_INVALIDATE_ENG6_ACK__PER_VMID_INVALIDATE_ACK_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG6_ACK__SEMAPHORE_MASK 0x00010000L
+//VM_INVALIDATE_ENG7_ACK
+#define VM_INVALIDATE_ENG7_ACK__PER_VMID_INVALIDATE_ACK__SHIFT 0x0
+#define VM_INVALIDATE_ENG7_ACK__SEMAPHORE__SHIFT 0x10
+#define VM_INVALIDATE_ENG7_ACK__PER_VMID_INVALIDATE_ACK_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG7_ACK__SEMAPHORE_MASK 0x00010000L
+//VM_INVALIDATE_ENG8_ACK
+#define VM_INVALIDATE_ENG8_ACK__PER_VMID_INVALIDATE_ACK__SHIFT 0x0
+#define VM_INVALIDATE_ENG8_ACK__SEMAPHORE__SHIFT 0x10
+#define VM_INVALIDATE_ENG8_ACK__PER_VMID_INVALIDATE_ACK_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG8_ACK__SEMAPHORE_MASK 0x00010000L
+//VM_INVALIDATE_ENG9_ACK
+#define VM_INVALIDATE_ENG9_ACK__PER_VMID_INVALIDATE_ACK__SHIFT 0x0
+#define VM_INVALIDATE_ENG9_ACK__SEMAPHORE__SHIFT 0x10
+#define VM_INVALIDATE_ENG9_ACK__PER_VMID_INVALIDATE_ACK_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG9_ACK__SEMAPHORE_MASK 0x00010000L
+//VM_INVALIDATE_ENG10_ACK
+#define VM_INVALIDATE_ENG10_ACK__PER_VMID_INVALIDATE_ACK__SHIFT 0x0
+#define VM_INVALIDATE_ENG10_ACK__SEMAPHORE__SHIFT 0x10
+#define VM_INVALIDATE_ENG10_ACK__PER_VMID_INVALIDATE_ACK_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG10_ACK__SEMAPHORE_MASK 0x00010000L
+//VM_INVALIDATE_ENG11_ACK
+#define VM_INVALIDATE_ENG11_ACK__PER_VMID_INVALIDATE_ACK__SHIFT 0x0
+#define VM_INVALIDATE_ENG11_ACK__SEMAPHORE__SHIFT 0x10
+#define VM_INVALIDATE_ENG11_ACK__PER_VMID_INVALIDATE_ACK_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG11_ACK__SEMAPHORE_MASK 0x00010000L
+//VM_INVALIDATE_ENG12_ACK
+#define VM_INVALIDATE_ENG12_ACK__PER_VMID_INVALIDATE_ACK__SHIFT 0x0
+#define VM_INVALIDATE_ENG12_ACK__SEMAPHORE__SHIFT 0x10
+#define VM_INVALIDATE_ENG12_ACK__PER_VMID_INVALIDATE_ACK_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG12_ACK__SEMAPHORE_MASK 0x00010000L
+//VM_INVALIDATE_ENG13_ACK
+#define VM_INVALIDATE_ENG13_ACK__PER_VMID_INVALIDATE_ACK__SHIFT 0x0
+#define VM_INVALIDATE_ENG13_ACK__SEMAPHORE__SHIFT 0x10
+#define VM_INVALIDATE_ENG13_ACK__PER_VMID_INVALIDATE_ACK_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG13_ACK__SEMAPHORE_MASK 0x00010000L
+//VM_INVALIDATE_ENG14_ACK
+#define VM_INVALIDATE_ENG14_ACK__PER_VMID_INVALIDATE_ACK__SHIFT 0x0
+#define VM_INVALIDATE_ENG14_ACK__SEMAPHORE__SHIFT 0x10
+#define VM_INVALIDATE_ENG14_ACK__PER_VMID_INVALIDATE_ACK_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG14_ACK__SEMAPHORE_MASK 0x00010000L
+//VM_INVALIDATE_ENG15_ACK
+#define VM_INVALIDATE_ENG15_ACK__PER_VMID_INVALIDATE_ACK__SHIFT 0x0
+#define VM_INVALIDATE_ENG15_ACK__SEMAPHORE__SHIFT 0x10
+#define VM_INVALIDATE_ENG15_ACK__PER_VMID_INVALIDATE_ACK_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG15_ACK__SEMAPHORE_MASK 0x00010000L
+//VM_INVALIDATE_ENG16_ACK
+#define VM_INVALIDATE_ENG16_ACK__PER_VMID_INVALIDATE_ACK__SHIFT 0x0
+#define VM_INVALIDATE_ENG16_ACK__SEMAPHORE__SHIFT 0x10
+#define VM_INVALIDATE_ENG16_ACK__PER_VMID_INVALIDATE_ACK_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG16_ACK__SEMAPHORE_MASK 0x00010000L
+//VM_INVALIDATE_ENG17_ACK
+#define VM_INVALIDATE_ENG17_ACK__PER_VMID_INVALIDATE_ACK__SHIFT 0x0
+#define VM_INVALIDATE_ENG17_ACK__SEMAPHORE__SHIFT 0x10
+#define VM_INVALIDATE_ENG17_ACK__PER_VMID_INVALIDATE_ACK_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG17_ACK__SEMAPHORE_MASK 0x00010000L
+//VM_INVALIDATE_ENG0_ADDR_RANGE_LO32
+#define VM_INVALIDATE_ENG0_ADDR_RANGE_LO32__S_BIT__SHIFT 0x0
+#define VM_INVALIDATE_ENG0_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31__SHIFT 0x1
+#define VM_INVALIDATE_ENG0_ADDR_RANGE_LO32__S_BIT_MASK 0x00000001L
+#define VM_INVALIDATE_ENG0_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31_MASK 0xFFFFFFFEL
+//VM_INVALIDATE_ENG0_ADDR_RANGE_HI32
+#define VM_INVALIDATE_ENG0_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5__SHIFT 0x0
+#define VM_INVALIDATE_ENG0_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5_MASK 0x0000001FL
+//VM_INVALIDATE_ENG1_ADDR_RANGE_LO32
+#define VM_INVALIDATE_ENG1_ADDR_RANGE_LO32__S_BIT__SHIFT 0x0
+#define VM_INVALIDATE_ENG1_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31__SHIFT 0x1
+#define VM_INVALIDATE_ENG1_ADDR_RANGE_LO32__S_BIT_MASK 0x00000001L
+#define VM_INVALIDATE_ENG1_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31_MASK 0xFFFFFFFEL
+//VM_INVALIDATE_ENG1_ADDR_RANGE_HI32
+#define VM_INVALIDATE_ENG1_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5__SHIFT 0x0
+#define VM_INVALIDATE_ENG1_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5_MASK 0x0000001FL
+//VM_INVALIDATE_ENG2_ADDR_RANGE_LO32
+#define VM_INVALIDATE_ENG2_ADDR_RANGE_LO32__S_BIT__SHIFT 0x0
+#define VM_INVALIDATE_ENG2_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31__SHIFT 0x1
+#define VM_INVALIDATE_ENG2_ADDR_RANGE_LO32__S_BIT_MASK 0x00000001L
+#define VM_INVALIDATE_ENG2_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31_MASK 0xFFFFFFFEL
+//VM_INVALIDATE_ENG2_ADDR_RANGE_HI32
+#define VM_INVALIDATE_ENG2_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5__SHIFT 0x0
+#define VM_INVALIDATE_ENG2_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5_MASK 0x0000001FL
+//VM_INVALIDATE_ENG3_ADDR_RANGE_LO32
+#define VM_INVALIDATE_ENG3_ADDR_RANGE_LO32__S_BIT__SHIFT 0x0
+#define VM_INVALIDATE_ENG3_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31__SHIFT 0x1
+#define VM_INVALIDATE_ENG3_ADDR_RANGE_LO32__S_BIT_MASK 0x00000001L
+#define VM_INVALIDATE_ENG3_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31_MASK 0xFFFFFFFEL
+//VM_INVALIDATE_ENG3_ADDR_RANGE_HI32
+#define VM_INVALIDATE_ENG3_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5__SHIFT 0x0
+#define VM_INVALIDATE_ENG3_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5_MASK 0x0000001FL
+//VM_INVALIDATE_ENG4_ADDR_RANGE_LO32
+#define VM_INVALIDATE_ENG4_ADDR_RANGE_LO32__S_BIT__SHIFT 0x0
+#define VM_INVALIDATE_ENG4_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31__SHIFT 0x1
+#define VM_INVALIDATE_ENG4_ADDR_RANGE_LO32__S_BIT_MASK 0x00000001L
+#define VM_INVALIDATE_ENG4_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31_MASK 0xFFFFFFFEL
+//VM_INVALIDATE_ENG4_ADDR_RANGE_HI32
+#define VM_INVALIDATE_ENG4_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5__SHIFT 0x0
+#define VM_INVALIDATE_ENG4_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5_MASK 0x0000001FL
+//VM_INVALIDATE_ENG5_ADDR_RANGE_LO32
+#define VM_INVALIDATE_ENG5_ADDR_RANGE_LO32__S_BIT__SHIFT 0x0
+#define VM_INVALIDATE_ENG5_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31__SHIFT 0x1
+#define VM_INVALIDATE_ENG5_ADDR_RANGE_LO32__S_BIT_MASK 0x00000001L
+#define VM_INVALIDATE_ENG5_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31_MASK 0xFFFFFFFEL
+//VM_INVALIDATE_ENG5_ADDR_RANGE_HI32
+#define VM_INVALIDATE_ENG5_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5__SHIFT 0x0
+#define VM_INVALIDATE_ENG5_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5_MASK 0x0000001FL
+//VM_INVALIDATE_ENG6_ADDR_RANGE_LO32
+#define VM_INVALIDATE_ENG6_ADDR_RANGE_LO32__S_BIT__SHIFT 0x0
+#define VM_INVALIDATE_ENG6_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31__SHIFT 0x1
+#define VM_INVALIDATE_ENG6_ADDR_RANGE_LO32__S_BIT_MASK 0x00000001L
+#define VM_INVALIDATE_ENG6_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31_MASK 0xFFFFFFFEL
+//VM_INVALIDATE_ENG6_ADDR_RANGE_HI32
+#define VM_INVALIDATE_ENG6_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5__SHIFT 0x0
+#define VM_INVALIDATE_ENG6_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5_MASK 0x0000001FL
+//VM_INVALIDATE_ENG7_ADDR_RANGE_LO32
+#define VM_INVALIDATE_ENG7_ADDR_RANGE_LO32__S_BIT__SHIFT 0x0
+#define VM_INVALIDATE_ENG7_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31__SHIFT 0x1
+#define VM_INVALIDATE_ENG7_ADDR_RANGE_LO32__S_BIT_MASK 0x00000001L
+#define VM_INVALIDATE_ENG7_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31_MASK 0xFFFFFFFEL
+//VM_INVALIDATE_ENG7_ADDR_RANGE_HI32
+#define VM_INVALIDATE_ENG7_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5__SHIFT 0x0
+#define VM_INVALIDATE_ENG7_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5_MASK 0x0000001FL
+//VM_INVALIDATE_ENG8_ADDR_RANGE_LO32
+#define VM_INVALIDATE_ENG8_ADDR_RANGE_LO32__S_BIT__SHIFT 0x0
+#define VM_INVALIDATE_ENG8_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31__SHIFT 0x1
+#define VM_INVALIDATE_ENG8_ADDR_RANGE_LO32__S_BIT_MASK 0x00000001L
+#define VM_INVALIDATE_ENG8_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31_MASK 0xFFFFFFFEL
+//VM_INVALIDATE_ENG8_ADDR_RANGE_HI32
+#define VM_INVALIDATE_ENG8_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5__SHIFT 0x0
+#define VM_INVALIDATE_ENG8_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5_MASK 0x0000001FL
+//VM_INVALIDATE_ENG9_ADDR_RANGE_LO32
+#define VM_INVALIDATE_ENG9_ADDR_RANGE_LO32__S_BIT__SHIFT 0x0
+#define VM_INVALIDATE_ENG9_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31__SHIFT 0x1
+#define VM_INVALIDATE_ENG9_ADDR_RANGE_LO32__S_BIT_MASK 0x00000001L
+#define VM_INVALIDATE_ENG9_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31_MASK 0xFFFFFFFEL
+//VM_INVALIDATE_ENG9_ADDR_RANGE_HI32
+#define VM_INVALIDATE_ENG9_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5__SHIFT 0x0
+#define VM_INVALIDATE_ENG9_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5_MASK 0x0000001FL
+//VM_INVALIDATE_ENG10_ADDR_RANGE_LO32
+#define VM_INVALIDATE_ENG10_ADDR_RANGE_LO32__S_BIT__SHIFT 0x0
+#define VM_INVALIDATE_ENG10_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31__SHIFT 0x1
+#define VM_INVALIDATE_ENG10_ADDR_RANGE_LO32__S_BIT_MASK 0x00000001L
+#define VM_INVALIDATE_ENG10_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31_MASK 0xFFFFFFFEL
+//VM_INVALIDATE_ENG10_ADDR_RANGE_HI32
+#define VM_INVALIDATE_ENG10_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5__SHIFT 0x0
+#define VM_INVALIDATE_ENG10_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5_MASK 0x0000001FL
+//VM_INVALIDATE_ENG11_ADDR_RANGE_LO32
+#define VM_INVALIDATE_ENG11_ADDR_RANGE_LO32__S_BIT__SHIFT 0x0
+#define VM_INVALIDATE_ENG11_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31__SHIFT 0x1
+#define VM_INVALIDATE_ENG11_ADDR_RANGE_LO32__S_BIT_MASK 0x00000001L
+#define VM_INVALIDATE_ENG11_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31_MASK 0xFFFFFFFEL
+//VM_INVALIDATE_ENG11_ADDR_RANGE_HI32
+#define VM_INVALIDATE_ENG11_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5__SHIFT 0x0
+#define VM_INVALIDATE_ENG11_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5_MASK 0x0000001FL
+//VM_INVALIDATE_ENG12_ADDR_RANGE_LO32
+#define VM_INVALIDATE_ENG12_ADDR_RANGE_LO32__S_BIT__SHIFT 0x0
+#define VM_INVALIDATE_ENG12_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31__SHIFT 0x1
+#define VM_INVALIDATE_ENG12_ADDR_RANGE_LO32__S_BIT_MASK 0x00000001L
+#define VM_INVALIDATE_ENG12_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31_MASK 0xFFFFFFFEL
+//VM_INVALIDATE_ENG12_ADDR_RANGE_HI32
+#define VM_INVALIDATE_ENG12_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5__SHIFT 0x0
+#define VM_INVALIDATE_ENG12_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5_MASK 0x0000001FL
+//VM_INVALIDATE_ENG13_ADDR_RANGE_LO32
+#define VM_INVALIDATE_ENG13_ADDR_RANGE_LO32__S_BIT__SHIFT 0x0
+#define VM_INVALIDATE_ENG13_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31__SHIFT 0x1
+#define VM_INVALIDATE_ENG13_ADDR_RANGE_LO32__S_BIT_MASK 0x00000001L
+#define VM_INVALIDATE_ENG13_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31_MASK 0xFFFFFFFEL
+//VM_INVALIDATE_ENG13_ADDR_RANGE_HI32
+#define VM_INVALIDATE_ENG13_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5__SHIFT 0x0
+#define VM_INVALIDATE_ENG13_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5_MASK 0x0000001FL
+//VM_INVALIDATE_ENG14_ADDR_RANGE_LO32
+#define VM_INVALIDATE_ENG14_ADDR_RANGE_LO32__S_BIT__SHIFT 0x0
+#define VM_INVALIDATE_ENG14_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31__SHIFT 0x1
+#define VM_INVALIDATE_ENG14_ADDR_RANGE_LO32__S_BIT_MASK 0x00000001L
+#define VM_INVALIDATE_ENG14_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31_MASK 0xFFFFFFFEL
+//VM_INVALIDATE_ENG14_ADDR_RANGE_HI32
+#define VM_INVALIDATE_ENG14_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5__SHIFT 0x0
+#define VM_INVALIDATE_ENG14_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5_MASK 0x0000001FL
+//VM_INVALIDATE_ENG15_ADDR_RANGE_LO32
+#define VM_INVALIDATE_ENG15_ADDR_RANGE_LO32__S_BIT__SHIFT 0x0
+#define VM_INVALIDATE_ENG15_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31__SHIFT 0x1
+#define VM_INVALIDATE_ENG15_ADDR_RANGE_LO32__S_BIT_MASK 0x00000001L
+#define VM_INVALIDATE_ENG15_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31_MASK 0xFFFFFFFEL
+//VM_INVALIDATE_ENG15_ADDR_RANGE_HI32
+#define VM_INVALIDATE_ENG15_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5__SHIFT 0x0
+#define VM_INVALIDATE_ENG15_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5_MASK 0x0000001FL
+//VM_INVALIDATE_ENG16_ADDR_RANGE_LO32
+#define VM_INVALIDATE_ENG16_ADDR_RANGE_LO32__S_BIT__SHIFT 0x0
+#define VM_INVALIDATE_ENG16_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31__SHIFT 0x1
+#define VM_INVALIDATE_ENG16_ADDR_RANGE_LO32__S_BIT_MASK 0x00000001L
+#define VM_INVALIDATE_ENG16_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31_MASK 0xFFFFFFFEL
+//VM_INVALIDATE_ENG16_ADDR_RANGE_HI32
+#define VM_INVALIDATE_ENG16_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5__SHIFT 0x0
+#define VM_INVALIDATE_ENG16_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5_MASK 0x0000001FL
+//VM_INVALIDATE_ENG17_ADDR_RANGE_LO32
+#define VM_INVALIDATE_ENG17_ADDR_RANGE_LO32__S_BIT__SHIFT 0x0
+#define VM_INVALIDATE_ENG17_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31__SHIFT 0x1
+#define VM_INVALIDATE_ENG17_ADDR_RANGE_LO32__S_BIT_MASK 0x00000001L
+#define VM_INVALIDATE_ENG17_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31_MASK 0xFFFFFFFEL
+//VM_INVALIDATE_ENG17_ADDR_RANGE_HI32
+#define VM_INVALIDATE_ENG17_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5__SHIFT 0x0
+#define VM_INVALIDATE_ENG17_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5_MASK 0x0000001FL
+//VM_CONTEXT0_PAGE_TABLE_BASE_ADDR_LO32
+#define VM_CONTEXT0_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32__SHIFT 0x0
+#define VM_CONTEXT0_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT0_PAGE_TABLE_BASE_ADDR_HI32
+#define VM_CONTEXT0_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32__SHIFT 0x0
+#define VM_CONTEXT0_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32_MASK 0xFFFFFFFFL
+//VM_CONTEXT1_PAGE_TABLE_BASE_ADDR_LO32
+#define VM_CONTEXT1_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32__SHIFT 0x0
+#define VM_CONTEXT1_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT1_PAGE_TABLE_BASE_ADDR_HI32
+#define VM_CONTEXT1_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32__SHIFT 0x0
+#define VM_CONTEXT1_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32_MASK 0xFFFFFFFFL
+//VM_CONTEXT2_PAGE_TABLE_BASE_ADDR_LO32
+#define VM_CONTEXT2_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32__SHIFT 0x0
+#define VM_CONTEXT2_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT2_PAGE_TABLE_BASE_ADDR_HI32
+#define VM_CONTEXT2_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32__SHIFT 0x0
+#define VM_CONTEXT2_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32_MASK 0xFFFFFFFFL
+//VM_CONTEXT3_PAGE_TABLE_BASE_ADDR_LO32
+#define VM_CONTEXT3_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32__SHIFT 0x0
+#define VM_CONTEXT3_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT3_PAGE_TABLE_BASE_ADDR_HI32
+#define VM_CONTEXT3_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32__SHIFT 0x0
+#define VM_CONTEXT3_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32_MASK 0xFFFFFFFFL
+//VM_CONTEXT4_PAGE_TABLE_BASE_ADDR_LO32
+#define VM_CONTEXT4_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32__SHIFT 0x0
+#define VM_CONTEXT4_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT4_PAGE_TABLE_BASE_ADDR_HI32
+#define VM_CONTEXT4_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32__SHIFT 0x0
+#define VM_CONTEXT4_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32_MASK 0xFFFFFFFFL
+//VM_CONTEXT5_PAGE_TABLE_BASE_ADDR_LO32
+#define VM_CONTEXT5_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32__SHIFT 0x0
+#define VM_CONTEXT5_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT5_PAGE_TABLE_BASE_ADDR_HI32
+#define VM_CONTEXT5_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32__SHIFT 0x0
+#define VM_CONTEXT5_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32_MASK 0xFFFFFFFFL
+//VM_CONTEXT6_PAGE_TABLE_BASE_ADDR_LO32
+#define VM_CONTEXT6_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32__SHIFT 0x0
+#define VM_CONTEXT6_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT6_PAGE_TABLE_BASE_ADDR_HI32
+#define VM_CONTEXT6_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32__SHIFT 0x0
+#define VM_CONTEXT6_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32_MASK 0xFFFFFFFFL
+//VM_CONTEXT7_PAGE_TABLE_BASE_ADDR_LO32
+#define VM_CONTEXT7_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32__SHIFT 0x0
+#define VM_CONTEXT7_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT7_PAGE_TABLE_BASE_ADDR_HI32
+#define VM_CONTEXT7_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32__SHIFT 0x0
+#define VM_CONTEXT7_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32_MASK 0xFFFFFFFFL
+//VM_CONTEXT8_PAGE_TABLE_BASE_ADDR_LO32
+#define VM_CONTEXT8_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32__SHIFT 0x0
+#define VM_CONTEXT8_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT8_PAGE_TABLE_BASE_ADDR_HI32
+#define VM_CONTEXT8_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32__SHIFT 0x0
+#define VM_CONTEXT8_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32_MASK 0xFFFFFFFFL
+//VM_CONTEXT9_PAGE_TABLE_BASE_ADDR_LO32
+#define VM_CONTEXT9_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32__SHIFT 0x0
+#define VM_CONTEXT9_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT9_PAGE_TABLE_BASE_ADDR_HI32
+#define VM_CONTEXT9_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32__SHIFT 0x0
+#define VM_CONTEXT9_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32_MASK 0xFFFFFFFFL
+//VM_CONTEXT10_PAGE_TABLE_BASE_ADDR_LO32
+#define VM_CONTEXT10_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32__SHIFT 0x0
+#define VM_CONTEXT10_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT10_PAGE_TABLE_BASE_ADDR_HI32
+#define VM_CONTEXT10_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32__SHIFT 0x0
+#define VM_CONTEXT10_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32_MASK 0xFFFFFFFFL
+//VM_CONTEXT11_PAGE_TABLE_BASE_ADDR_LO32
+#define VM_CONTEXT11_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32__SHIFT 0x0
+#define VM_CONTEXT11_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT11_PAGE_TABLE_BASE_ADDR_HI32
+#define VM_CONTEXT11_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32__SHIFT 0x0
+#define VM_CONTEXT11_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32_MASK 0xFFFFFFFFL
+//VM_CONTEXT12_PAGE_TABLE_BASE_ADDR_LO32
+#define VM_CONTEXT12_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32__SHIFT 0x0
+#define VM_CONTEXT12_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT12_PAGE_TABLE_BASE_ADDR_HI32
+#define VM_CONTEXT12_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32__SHIFT 0x0
+#define VM_CONTEXT12_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32_MASK 0xFFFFFFFFL
+//VM_CONTEXT13_PAGE_TABLE_BASE_ADDR_LO32
+#define VM_CONTEXT13_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32__SHIFT 0x0
+#define VM_CONTEXT13_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT13_PAGE_TABLE_BASE_ADDR_HI32
+#define VM_CONTEXT13_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32__SHIFT 0x0
+#define VM_CONTEXT13_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32_MASK 0xFFFFFFFFL
+//VM_CONTEXT14_PAGE_TABLE_BASE_ADDR_LO32
+#define VM_CONTEXT14_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32__SHIFT 0x0
+#define VM_CONTEXT14_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT14_PAGE_TABLE_BASE_ADDR_HI32
+#define VM_CONTEXT14_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32__SHIFT 0x0
+#define VM_CONTEXT14_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32_MASK 0xFFFFFFFFL
+//VM_CONTEXT15_PAGE_TABLE_BASE_ADDR_LO32
+#define VM_CONTEXT15_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32__SHIFT 0x0
+#define VM_CONTEXT15_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT15_PAGE_TABLE_BASE_ADDR_HI32
+#define VM_CONTEXT15_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32__SHIFT 0x0
+#define VM_CONTEXT15_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32_MASK 0xFFFFFFFFL
+//VM_CONTEXT0_PAGE_TABLE_START_ADDR_LO32
+#define VM_CONTEXT0_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT0_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT0_PAGE_TABLE_START_ADDR_HI32
+#define VM_CONTEXT0_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT0_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT1_PAGE_TABLE_START_ADDR_LO32
+#define VM_CONTEXT1_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT1_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT1_PAGE_TABLE_START_ADDR_HI32
+#define VM_CONTEXT1_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT1_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT2_PAGE_TABLE_START_ADDR_LO32
+#define VM_CONTEXT2_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT2_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT2_PAGE_TABLE_START_ADDR_HI32
+#define VM_CONTEXT2_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT2_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT3_PAGE_TABLE_START_ADDR_LO32
+#define VM_CONTEXT3_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT3_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT3_PAGE_TABLE_START_ADDR_HI32
+#define VM_CONTEXT3_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT3_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT4_PAGE_TABLE_START_ADDR_LO32
+#define VM_CONTEXT4_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT4_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT4_PAGE_TABLE_START_ADDR_HI32
+#define VM_CONTEXT4_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT4_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT5_PAGE_TABLE_START_ADDR_LO32
+#define VM_CONTEXT5_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT5_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT5_PAGE_TABLE_START_ADDR_HI32
+#define VM_CONTEXT5_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT5_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT6_PAGE_TABLE_START_ADDR_LO32
+#define VM_CONTEXT6_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT6_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT6_PAGE_TABLE_START_ADDR_HI32
+#define VM_CONTEXT6_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT6_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT7_PAGE_TABLE_START_ADDR_LO32
+#define VM_CONTEXT7_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT7_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT7_PAGE_TABLE_START_ADDR_HI32
+#define VM_CONTEXT7_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT7_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT8_PAGE_TABLE_START_ADDR_LO32
+#define VM_CONTEXT8_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT8_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT8_PAGE_TABLE_START_ADDR_HI32
+#define VM_CONTEXT8_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT8_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT9_PAGE_TABLE_START_ADDR_LO32
+#define VM_CONTEXT9_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT9_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT9_PAGE_TABLE_START_ADDR_HI32
+#define VM_CONTEXT9_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT9_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT10_PAGE_TABLE_START_ADDR_LO32
+#define VM_CONTEXT10_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT10_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT10_PAGE_TABLE_START_ADDR_HI32
+#define VM_CONTEXT10_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT10_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT11_PAGE_TABLE_START_ADDR_LO32
+#define VM_CONTEXT11_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT11_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT11_PAGE_TABLE_START_ADDR_HI32
+#define VM_CONTEXT11_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT11_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT12_PAGE_TABLE_START_ADDR_LO32
+#define VM_CONTEXT12_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT12_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT12_PAGE_TABLE_START_ADDR_HI32
+#define VM_CONTEXT12_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT12_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT13_PAGE_TABLE_START_ADDR_LO32
+#define VM_CONTEXT13_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT13_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT13_PAGE_TABLE_START_ADDR_HI32
+#define VM_CONTEXT13_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT13_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT14_PAGE_TABLE_START_ADDR_LO32
+#define VM_CONTEXT14_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT14_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT14_PAGE_TABLE_START_ADDR_HI32
+#define VM_CONTEXT14_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT14_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT15_PAGE_TABLE_START_ADDR_LO32
+#define VM_CONTEXT15_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT15_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT15_PAGE_TABLE_START_ADDR_HI32
+#define VM_CONTEXT15_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT15_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT0_PAGE_TABLE_END_ADDR_LO32
+#define VM_CONTEXT0_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT0_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT0_PAGE_TABLE_END_ADDR_HI32
+#define VM_CONTEXT0_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT0_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT1_PAGE_TABLE_END_ADDR_LO32
+#define VM_CONTEXT1_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT1_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT1_PAGE_TABLE_END_ADDR_HI32
+#define VM_CONTEXT1_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT1_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT2_PAGE_TABLE_END_ADDR_LO32
+#define VM_CONTEXT2_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT2_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT2_PAGE_TABLE_END_ADDR_HI32
+#define VM_CONTEXT2_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT2_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT3_PAGE_TABLE_END_ADDR_LO32
+#define VM_CONTEXT3_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT3_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT3_PAGE_TABLE_END_ADDR_HI32
+#define VM_CONTEXT3_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT3_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT4_PAGE_TABLE_END_ADDR_LO32
+#define VM_CONTEXT4_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT4_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT4_PAGE_TABLE_END_ADDR_HI32
+#define VM_CONTEXT4_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT4_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT5_PAGE_TABLE_END_ADDR_LO32
+#define VM_CONTEXT5_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT5_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT5_PAGE_TABLE_END_ADDR_HI32
+#define VM_CONTEXT5_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT5_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT6_PAGE_TABLE_END_ADDR_LO32
+#define VM_CONTEXT6_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT6_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT6_PAGE_TABLE_END_ADDR_HI32
+#define VM_CONTEXT6_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT6_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT7_PAGE_TABLE_END_ADDR_LO32
+#define VM_CONTEXT7_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT7_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT7_PAGE_TABLE_END_ADDR_HI32
+#define VM_CONTEXT7_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT7_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT8_PAGE_TABLE_END_ADDR_LO32
+#define VM_CONTEXT8_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT8_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT8_PAGE_TABLE_END_ADDR_HI32
+#define VM_CONTEXT8_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT8_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT9_PAGE_TABLE_END_ADDR_LO32
+#define VM_CONTEXT9_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT9_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT9_PAGE_TABLE_END_ADDR_HI32
+#define VM_CONTEXT9_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT9_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT10_PAGE_TABLE_END_ADDR_LO32
+#define VM_CONTEXT10_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT10_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT10_PAGE_TABLE_END_ADDR_HI32
+#define VM_CONTEXT10_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT10_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT11_PAGE_TABLE_END_ADDR_LO32
+#define VM_CONTEXT11_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT11_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT11_PAGE_TABLE_END_ADDR_HI32
+#define VM_CONTEXT11_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT11_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT12_PAGE_TABLE_END_ADDR_LO32
+#define VM_CONTEXT12_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT12_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT12_PAGE_TABLE_END_ADDR_HI32
+#define VM_CONTEXT12_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT12_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT13_PAGE_TABLE_END_ADDR_LO32
+#define VM_CONTEXT13_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT13_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT13_PAGE_TABLE_END_ADDR_HI32
+#define VM_CONTEXT13_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT13_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT14_PAGE_TABLE_END_ADDR_LO32
+#define VM_CONTEXT14_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT14_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT14_PAGE_TABLE_END_ADDR_HI32
+#define VM_CONTEXT14_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT14_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT15_PAGE_TABLE_END_ADDR_LO32
+#define VM_CONTEXT15_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT15_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT15_PAGE_TABLE_END_ADDR_HI32
+#define VM_CONTEXT15_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT15_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+
+
+// addressBlock: xcd0_gc_utcl2_vmsharedpfdec
+//MC_VM_NB_MMIOBASE
+#define MC_VM_NB_MMIOBASE__MMIOBASE__SHIFT 0x0
+#define MC_VM_NB_MMIOBASE__MMIOBASE_MASK 0xFFFFFFFFL
+//MC_VM_NB_MMIOLIMIT
+#define MC_VM_NB_MMIOLIMIT__MMIOLIMIT__SHIFT 0x0
+#define MC_VM_NB_MMIOLIMIT__MMIOLIMIT_MASK 0xFFFFFFFFL
+//MC_VM_NB_PCI_CTRL
+#define MC_VM_NB_PCI_CTRL__MMIOENABLE__SHIFT 0x17
+#define MC_VM_NB_PCI_CTRL__MMIOENABLE_MASK 0x00800000L
+//MC_VM_NB_PCI_ARB
+#define MC_VM_NB_PCI_ARB__VGA_HOLE__SHIFT 0x3
+#define MC_VM_NB_PCI_ARB__VGA_HOLE_MASK 0x00000008L
+//MC_VM_NB_TOP_OF_DRAM_SLOT1
+#define MC_VM_NB_TOP_OF_DRAM_SLOT1__TOP_OF_DRAM__SHIFT 0x17
+#define MC_VM_NB_TOP_OF_DRAM_SLOT1__TOP_OF_DRAM_MASK 0xFF800000L
+//MC_VM_NB_LOWER_TOP_OF_DRAM2
+#define MC_VM_NB_LOWER_TOP_OF_DRAM2__ENABLE__SHIFT 0x0
+#define MC_VM_NB_LOWER_TOP_OF_DRAM2__LOWER_TOM2__SHIFT 0x17
+#define MC_VM_NB_LOWER_TOP_OF_DRAM2__ENABLE_MASK 0x00000001L
+#define MC_VM_NB_LOWER_TOP_OF_DRAM2__LOWER_TOM2_MASK 0xFF800000L
+//MC_VM_NB_UPPER_TOP_OF_DRAM2
+#define MC_VM_NB_UPPER_TOP_OF_DRAM2__UPPER_TOM2__SHIFT 0x0
+#define MC_VM_NB_UPPER_TOP_OF_DRAM2__UPPER_TOM2_MASK 0x0000FFFFL
+//MC_VM_FB_OFFSET
+#define MC_VM_FB_OFFSET__FB_OFFSET__SHIFT 0x0
+#define MC_VM_FB_OFFSET__FB_OFFSET_MASK 0x00FFFFFFL
+//MC_VM_SYSTEM_APERTURE_DEFAULT_ADDR_LSB
+#define MC_VM_SYSTEM_APERTURE_DEFAULT_ADDR_LSB__PHYSICAL_PAGE_NUMBER_LSB__SHIFT 0x0
+#define MC_VM_SYSTEM_APERTURE_DEFAULT_ADDR_LSB__PHYSICAL_PAGE_NUMBER_LSB_MASK 0xFFFFFFFFL
+//MC_VM_SYSTEM_APERTURE_DEFAULT_ADDR_MSB
+#define MC_VM_SYSTEM_APERTURE_DEFAULT_ADDR_MSB__PHYSICAL_PAGE_NUMBER_MSB__SHIFT 0x0
+#define MC_VM_SYSTEM_APERTURE_DEFAULT_ADDR_MSB__PHYSICAL_PAGE_NUMBER_MSB_MASK 0x0000000FL
+//MC_VM_STEERING
+#define MC_VM_STEERING__DEFAULT_STEERING__SHIFT 0x0
+#define MC_VM_STEERING__DEFAULT_STEERING_MASK 0x00000003L
+//MC_SHARED_VIRT_RESET_REQ
+#define MC_SHARED_VIRT_RESET_REQ__VF__SHIFT 0x0
+#define MC_SHARED_VIRT_RESET_REQ__PF__SHIFT 0x1f
+#define MC_SHARED_VIRT_RESET_REQ__VF_MASK 0x0000FFFFL
+#define MC_SHARED_VIRT_RESET_REQ__PF_MASK 0x80000000L
+//MC_MEM_POWER_LS
+#define MC_MEM_POWER_LS__LS_SETUP__SHIFT 0x0
+#define MC_MEM_POWER_LS__LS_HOLD__SHIFT 0x6
+#define MC_MEM_POWER_LS__LS_SETUP_MASK 0x0000003FL
+#define MC_MEM_POWER_LS__LS_HOLD_MASK 0x00000FC0L
+//MC_VM_CACHEABLE_DRAM_ADDRESS_START
+#define MC_VM_CACHEABLE_DRAM_ADDRESS_START__ADDRESS__SHIFT 0x0
+#define MC_VM_CACHEABLE_DRAM_ADDRESS_START__ADDRESS_MASK 0x00FFFFFFL
+//MC_VM_CACHEABLE_DRAM_ADDRESS_END
+#define MC_VM_CACHEABLE_DRAM_ADDRESS_END__ADDRESS__SHIFT 0x0
+#define MC_VM_CACHEABLE_DRAM_ADDRESS_END__ADDRESS_MASK 0x00FFFFFFL
+//MC_VM_APT_CNTL
+#define MC_VM_APT_CNTL__FORCE_MTYPE_UC__SHIFT 0x0
+#define MC_VM_APT_CNTL__DIRECT_SYSTEM_EN__SHIFT 0x1
+#define MC_VM_APT_CNTL__CHECK_IS_LOCAL__SHIFT 0x2
+#define MC_VM_APT_CNTL__PERMS_GRANTED__SHIFT 0x3
+#define MC_VM_APT_CNTL__LOCAL_SYSMEM_APERTURE_CNTL__SHIFT 0x4
+#define MC_VM_APT_CNTL__FORCE_MTYPE_UC_MASK 0x00000001L
+#define MC_VM_APT_CNTL__DIRECT_SYSTEM_EN_MASK 0x00000002L
+#define MC_VM_APT_CNTL__CHECK_IS_LOCAL_MASK 0x00000004L
+#define MC_VM_APT_CNTL__PERMS_GRANTED_MASK 0x00000008L
+#define MC_VM_APT_CNTL__LOCAL_SYSMEM_APERTURE_CNTL_MASK 0x00000030L
+//MC_VM_LOCAL_HBM_ADDRESS_START
+#define MC_VM_LOCAL_HBM_ADDRESS_START__ADDRESS__SHIFT 0x0
+#define MC_VM_LOCAL_HBM_ADDRESS_START__ADDRESS_MASK 0x00FFFFFFL
+//MC_VM_LOCAL_HBM_ADDRESS_END
+#define MC_VM_LOCAL_HBM_ADDRESS_END__ADDRESS__SHIFT 0x0
+#define MC_VM_LOCAL_HBM_ADDRESS_END__ADDRESS_MASK 0x00FFFFFFL
+//MC_VM_LOCAL_HBM_ADDRESS_LOCK_CNTL
+#define MC_VM_LOCAL_HBM_ADDRESS_LOCK_CNTL__LOCK__SHIFT 0x0
+#define MC_VM_LOCAL_HBM_ADDRESS_LOCK_CNTL__LOCK_MASK 0x00000001L
+//UTCL2_CGTT_CLK_CTRL
+#define UTCL2_CGTT_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define UTCL2_CGTT_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define UTCL2_CGTT_CLK_CTRL__SOFT_OVERRIDE_EXTRA__SHIFT 0xc
+#define UTCL2_CGTT_CLK_CTRL__MGLS_OVERRIDE__SHIFT 0xf
+#define UTCL2_CGTT_CLK_CTRL__SOFT_STALL_OVERRIDE__SHIFT 0x10
+#define UTCL2_CGTT_CLK_CTRL__SOFT_OVERRIDE__SHIFT 0x18
+#define UTCL2_CGTT_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define UTCL2_CGTT_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define UTCL2_CGTT_CLK_CTRL__SOFT_OVERRIDE_EXTRA_MASK 0x00007000L
+#define UTCL2_CGTT_CLK_CTRL__MGLS_OVERRIDE_MASK 0x00008000L
+#define UTCL2_CGTT_CLK_CTRL__SOFT_STALL_OVERRIDE_MASK 0x00FF0000L
+#define UTCL2_CGTT_CLK_CTRL__SOFT_OVERRIDE_MASK 0xFF000000L
+//MC_VM_XGMI_LFB_CNTL
+#define MC_VM_XGMI_LFB_CNTL__PF_LFB_REGION__SHIFT 0x0
+#define MC_VM_XGMI_LFB_CNTL__PF_MAX_REGION__SHIFT 0x4
+#define MC_VM_XGMI_LFB_CNTL__PF_LFB_REGION_MASK 0x0000000FL
+#define MC_VM_XGMI_LFB_CNTL__PF_MAX_REGION_MASK 0x000000F0L
+//MC_VM_XGMI_LFB_SIZE
+#define MC_VM_XGMI_LFB_SIZE__PF_LFB_SIZE__SHIFT 0x0
+#define MC_VM_XGMI_LFB_SIZE__PF_LFB_SIZE_MASK 0x0001FFFFL
+//MC_VM_CACHEABLE_DRAM_CNTL
+#define MC_VM_CACHEABLE_DRAM_CNTL__ENABLE_CACHEABLE_DRAM_ADDRESS_APERTURE__SHIFT 0x0
+#define MC_VM_CACHEABLE_DRAM_CNTL__ENABLE_CACHEABLE_DRAM_ADDRESS_APERTURE_MASK 0x00000001L
+//MC_VM_HOST_MAPPING
+#define MC_VM_HOST_MAPPING__MODE__SHIFT 0x0
+#define MC_VM_HOST_MAPPING__MODE_MASK 0x00000001L
+
+
+// addressBlock: xcd0_gc_utcl2_vmsharedvcdec
+//MC_VM_FB_LOCATION_BASE
+#define MC_VM_FB_LOCATION_BASE__FB_BASE__SHIFT 0x0
+#define MC_VM_FB_LOCATION_BASE__FB_BASE_MASK 0x00FFFFFFL
+//MC_VM_FB_LOCATION_TOP
+#define MC_VM_FB_LOCATION_TOP__FB_TOP__SHIFT 0x0
+#define MC_VM_FB_LOCATION_TOP__FB_TOP_MASK 0x00FFFFFFL
+//MC_VM_AGP_TOP
+#define MC_VM_AGP_TOP__AGP_TOP__SHIFT 0x0
+#define MC_VM_AGP_TOP__AGP_TOP_MASK 0x00FFFFFFL
+//MC_VM_AGP_BOT
+#define MC_VM_AGP_BOT__AGP_BOT__SHIFT 0x0
+#define MC_VM_AGP_BOT__AGP_BOT_MASK 0x00FFFFFFL
+//MC_VM_AGP_BASE
+#define MC_VM_AGP_BASE__AGP_BASE__SHIFT 0x0
+#define MC_VM_AGP_BASE__AGP_BASE_MASK 0x00FFFFFFL
+//MC_VM_SYSTEM_APERTURE_LOW_ADDR
+#define MC_VM_SYSTEM_APERTURE_LOW_ADDR__LOGICAL_ADDR__SHIFT 0x0
+#define MC_VM_SYSTEM_APERTURE_LOW_ADDR__LOGICAL_ADDR_MASK 0x3FFFFFFFL
+//MC_VM_SYSTEM_APERTURE_HIGH_ADDR
+#define MC_VM_SYSTEM_APERTURE_HIGH_ADDR__LOGICAL_ADDR__SHIFT 0x0
+#define MC_VM_SYSTEM_APERTURE_HIGH_ADDR__LOGICAL_ADDR_MASK 0x3FFFFFFFL
+//MC_VM_MX_L1_TLB_CNTL
+#define MC_VM_MX_L1_TLB_CNTL__ENABLE_L1_TLB__SHIFT 0x0
+#define MC_VM_MX_L1_TLB_CNTL__SYSTEM_ACCESS_MODE__SHIFT 0x3
+#define MC_VM_MX_L1_TLB_CNTL__SYSTEM_APERTURE_UNMAPPED_ACCESS__SHIFT 0x5
+#define MC_VM_MX_L1_TLB_CNTL__ENABLE_ADVANCED_DRIVER_MODEL__SHIFT 0x6
+#define MC_VM_MX_L1_TLB_CNTL__ECO_BITS__SHIFT 0x7
+#define MC_VM_MX_L1_TLB_CNTL__MTYPE__SHIFT 0xb
+#define MC_VM_MX_L1_TLB_CNTL__ATC_EN__SHIFT 0xd
+#define MC_VM_MX_L1_TLB_CNTL__ENABLE_L1_TLB_MASK 0x00000001L
+#define MC_VM_MX_L1_TLB_CNTL__SYSTEM_ACCESS_MODE_MASK 0x00000018L
+#define MC_VM_MX_L1_TLB_CNTL__SYSTEM_APERTURE_UNMAPPED_ACCESS_MASK 0x00000020L
+#define MC_VM_MX_L1_TLB_CNTL__ENABLE_ADVANCED_DRIVER_MODEL_MASK 0x00000040L
+#define MC_VM_MX_L1_TLB_CNTL__ECO_BITS_MASK 0x00000780L
+#define MC_VM_MX_L1_TLB_CNTL__MTYPE_MASK 0x00001800L
+#define MC_VM_MX_L1_TLB_CNTL__ATC_EN_MASK 0x00002000L
+
+
+// addressBlock: xcd0_gc_utcl2_l2tlbdec
+//L2TLB_TLB0_STATUS
+#define L2TLB_TLB0_STATUS__BUSY__SHIFT 0x0
+#define L2TLB_TLB0_STATUS__FOUND_PARITY_ERRORS__SHIFT 0x1
+#define L2TLB_TLB0_STATUS__BUSY_MASK 0x00000001L
+#define L2TLB_TLB0_STATUS__FOUND_PARITY_ERRORS_MASK 0x00000002L
+//UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_LO
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_LO__ADDR__SHIFT 0x0
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_LO__ADDR_MASK 0xFFFFFFFFL
+//UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_HI
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_HI__ADDR__SHIFT 0x0
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_HI__VMID__SHIFT 0x4
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_HI__VFID__SHIFT 0x9
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_HI__VF__SHIFT 0xd
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_HI__GPA__SHIFT 0xe
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_HI__RD_PERM__SHIFT 0x10
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_HI__WR_PERM__SHIFT 0x11
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_HI__EX_PERM__SHIFT 0x12
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_HI__CLIENT_ID__SHIFT 0x13
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_HI__REQ__SHIFT 0x1f
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_HI__ADDR_MASK 0x0000000FL
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_HI__VMID_MASK 0x000000F0L
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_HI__VFID_MASK 0x00001E00L
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_HI__VF_MASK 0x00002000L
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_HI__GPA_MASK 0x0000C000L
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_HI__RD_PERM_MASK 0x00010000L
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_HI__WR_PERM_MASK 0x00020000L
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_HI__EX_PERM_MASK 0x00040000L
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_HI__CLIENT_ID_MASK 0x0FF80000L
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_HI__REQ_MASK 0x80000000L
+//UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_LO
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_LO__ADDR__SHIFT 0x0
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_LO__ADDR_MASK 0xFFFFFFFFL
+//UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__ADDR__SHIFT 0x0
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__PERMS__SHIFT 0x4
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__FRAGMENT_SIZE__SHIFT 0x7
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__SNOOP__SHIFT 0xd
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__SPA__SHIFT 0xe
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__IO__SHIFT 0xf
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__PTE_TMZ__SHIFT 0x10
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__NO_PTE__SHIFT 0x11
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__MTYPE__SHIFT 0x12
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__MEMLOG__SHIFT 0x14
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__LLC_NOALLOC__SHIFT 0x15
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__NACK__SHIFT 0x16
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__ACK__SHIFT 0x1f
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__ADDR_MASK 0x0000000FL
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__PERMS_MASK 0x00000070L
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__FRAGMENT_SIZE_MASK 0x00001F80L
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__SNOOP_MASK 0x00002000L
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__SPA_MASK 0x00004000L
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__IO_MASK 0x00008000L
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__PTE_TMZ_MASK 0x00010000L
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__NO_PTE_MASK 0x00020000L
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__MTYPE_MASK 0x000C0000L
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__MEMLOG_MASK 0x00100000L
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__LLC_NOALLOC_MASK 0x00200000L
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__NACK_MASK 0x00C00000L
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__ACK_MASK 0x80000000L
+
+
+// addressBlock: xcd0_gc_tcdec
+//TCP_INVALIDATE
+#define TCP_INVALIDATE__START__SHIFT 0x0
+#define TCP_INVALIDATE__START_MASK 0x00000001L
+//TCP_STATUS
+#define TCP_STATUS__TCP_BUSY__SHIFT 0x0
+#define TCP_STATUS__INPUT_BUSY__SHIFT 0x1
+#define TCP_STATUS__ADRS_BUSY__SHIFT 0x2
+#define TCP_STATUS__TAGRAMS_BUSY__SHIFT 0x3
+#define TCP_STATUS__CNTRL_BUSY__SHIFT 0x4
+#define TCP_STATUS__LFIFO_BUSY__SHIFT 0x5
+#define TCP_STATUS__READ_BUSY__SHIFT 0x6
+#define TCP_STATUS__FORMAT_BUSY__SHIFT 0x7
+#define TCP_STATUS__VM_BUSY__SHIFT 0x8
+#define TCP_STATUS__TCP_BUSY_MASK 0x00000001L
+#define TCP_STATUS__INPUT_BUSY_MASK 0x00000002L
+#define TCP_STATUS__ADRS_BUSY_MASK 0x00000004L
+#define TCP_STATUS__TAGRAMS_BUSY_MASK 0x00000008L
+#define TCP_STATUS__CNTRL_BUSY_MASK 0x00000010L
+#define TCP_STATUS__LFIFO_BUSY_MASK 0x00000020L
+#define TCP_STATUS__READ_BUSY_MASK 0x00000040L
+#define TCP_STATUS__FORMAT_BUSY_MASK 0x00000080L
+#define TCP_STATUS__VM_BUSY_MASK 0x00000100L
+//TCP_CNTL
+#define TCP_CNTL__FORCE_HIT__SHIFT 0x0
+#define TCP_CNTL__FORCE_MISS__SHIFT 0x1
+#define TCP_CNTL__L1_SIZE__SHIFT 0x2
+#define TCP_CNTL__FLAT_BUF_HASH_ENABLE__SHIFT 0x4
+#define TCP_CNTL__FLAT_BUF_CACHE_SWIZZLE__SHIFT 0x5
+#define TCP_CNTL__FORCE_EOW_TOTAL_CNT__SHIFT 0xf
+#define TCP_CNTL__FORCE_EOW_TAGRAM_CNT__SHIFT 0x16
+#define TCP_CNTL__DISABLE_Z_MAP__SHIFT 0x1c
+#define TCP_CNTL__FORCE_HIT_MASK 0x00000001L
+#define TCP_CNTL__FORCE_MISS_MASK 0x00000002L
+#define TCP_CNTL__L1_SIZE_MASK 0x0000000CL
+#define TCP_CNTL__FLAT_BUF_HASH_ENABLE_MASK 0x00000010L
+#define TCP_CNTL__FLAT_BUF_CACHE_SWIZZLE_MASK 0x00000020L
+#define TCP_CNTL__FORCE_EOW_TOTAL_CNT_MASK 0x001F8000L
+#define TCP_CNTL__FORCE_EOW_TAGRAM_CNT_MASK 0x0FC00000L
+#define TCP_CNTL__DISABLE_Z_MAP_MASK 0x10000000L
+//TCP_CHAN_STEER_0
+#define TCP_CHAN_STEER_0__CHAN0__SHIFT 0x0
+#define TCP_CHAN_STEER_0__CHAN1__SHIFT 0x4
+#define TCP_CHAN_STEER_0__CHAN2__SHIFT 0x8
+#define TCP_CHAN_STEER_0__CHAN3__SHIFT 0xc
+#define TCP_CHAN_STEER_0__CHAN4__SHIFT 0x10
+#define TCP_CHAN_STEER_0__CHAN5__SHIFT 0x14
+#define TCP_CHAN_STEER_0__CHAN6__SHIFT 0x18
+#define TCP_CHAN_STEER_0__CHAN7__SHIFT 0x1c
+#define TCP_CHAN_STEER_0__CHAN0_MASK 0x0000000FL
+#define TCP_CHAN_STEER_0__CHAN1_MASK 0x000000F0L
+#define TCP_CHAN_STEER_0__CHAN2_MASK 0x00000F00L
+#define TCP_CHAN_STEER_0__CHAN3_MASK 0x0000F000L
+#define TCP_CHAN_STEER_0__CHAN4_MASK 0x000F0000L
+#define TCP_CHAN_STEER_0__CHAN5_MASK 0x00F00000L
+#define TCP_CHAN_STEER_0__CHAN6_MASK 0x0F000000L
+#define TCP_CHAN_STEER_0__CHAN7_MASK 0xF0000000L
+//TCP_CHAN_STEER_1
+#define TCP_CHAN_STEER_1__CHAN8__SHIFT 0x0
+#define TCP_CHAN_STEER_1__CHAN9__SHIFT 0x4
+#define TCP_CHAN_STEER_1__CHANA__SHIFT 0x8
+#define TCP_CHAN_STEER_1__CHANB__SHIFT 0xc
+#define TCP_CHAN_STEER_1__CHANC__SHIFT 0x10
+#define TCP_CHAN_STEER_1__CHAND__SHIFT 0x14
+#define TCP_CHAN_STEER_1__CHANE__SHIFT 0x18
+#define TCP_CHAN_STEER_1__CHANF__SHIFT 0x1c
+#define TCP_CHAN_STEER_1__CHAN8_MASK 0x0000000FL
+#define TCP_CHAN_STEER_1__CHAN9_MASK 0x000000F0L
+#define TCP_CHAN_STEER_1__CHANA_MASK 0x00000F00L
+#define TCP_CHAN_STEER_1__CHANB_MASK 0x0000F000L
+#define TCP_CHAN_STEER_1__CHANC_MASK 0x000F0000L
+#define TCP_CHAN_STEER_1__CHAND_MASK 0x00F00000L
+#define TCP_CHAN_STEER_1__CHANE_MASK 0x0F000000L
+#define TCP_CHAN_STEER_1__CHANF_MASK 0xF0000000L
+//TCP_ADDR_CONFIG
+#define TCP_ADDR_CONFIG__NUM_TCC_BANKS__SHIFT 0x0
+#define TCP_ADDR_CONFIG__ENABLE64KHASH__SHIFT 0xb
+#define TCP_ADDR_CONFIG__ENABLE2MHASH__SHIFT 0xc
+#define TCP_ADDR_CONFIG__ENABLE1GHASH__SHIFT 0xd
+#define TCP_ADDR_CONFIG__ENABLE1THASH__SHIFT 0xe
+#define TCP_ADDR_CONFIG__ENABLE4KHASH__SHIFT 0xf
+#define TCP_ADDR_CONFIG__NUM_TCC_BANKS_MASK 0x0000001FL
+#define TCP_ADDR_CONFIG__ENABLE64KHASH_MASK 0x00000800L
+#define TCP_ADDR_CONFIG__ENABLE2MHASH_MASK 0x00001000L
+#define TCP_ADDR_CONFIG__ENABLE1GHASH_MASK 0x00002000L
+#define TCP_ADDR_CONFIG__ENABLE1THASH_MASK 0x00004000L
+#define TCP_ADDR_CONFIG__ENABLE4KHASH_MASK 0x00008000L
+//TCP_CREDIT
+#define TCP_CREDIT__LFIFO_CREDIT__SHIFT 0x0
+#define TCP_CREDIT__REQ_FIFO_CREDIT__SHIFT 0x10
+#define TCP_CREDIT__TD_CREDIT__SHIFT 0x1d
+#define TCP_CREDIT__LFIFO_CREDIT_MASK 0x000007FFL
+#define TCP_CREDIT__REQ_FIFO_CREDIT_MASK 0x007F0000L
+#define TCP_CREDIT__TD_CREDIT_MASK 0xE0000000L
+//TCP_BUFFER_ADDR_HASH_CNTL
+#define TCP_BUFFER_ADDR_HASH_CNTL__CHANNEL_BITS__SHIFT 0x0
+#define TCP_BUFFER_ADDR_HASH_CNTL__BANK_BITS__SHIFT 0x8
+#define TCP_BUFFER_ADDR_HASH_CNTL__CHANNEL_XOR_COUNT__SHIFT 0x10
+#define TCP_BUFFER_ADDR_HASH_CNTL__BANK_XOR_COUNT__SHIFT 0x18
+#define TCP_BUFFER_ADDR_HASH_CNTL__CHANNEL_BITS_MASK 0x00000007L
+#define TCP_BUFFER_ADDR_HASH_CNTL__BANK_BITS_MASK 0x00000700L
+#define TCP_BUFFER_ADDR_HASH_CNTL__CHANNEL_XOR_COUNT_MASK 0x00070000L
+#define TCP_BUFFER_ADDR_HASH_CNTL__BANK_XOR_COUNT_MASK 0x07000000L
+//TC_CFG_L1_LOAD_POLICY0
+#define TC_CFG_L1_LOAD_POLICY0__POLICY_0__SHIFT 0x0
+#define TC_CFG_L1_LOAD_POLICY0__POLICY_1__SHIFT 0x2
+#define TC_CFG_L1_LOAD_POLICY0__POLICY_2__SHIFT 0x4
+#define TC_CFG_L1_LOAD_POLICY0__POLICY_3__SHIFT 0x6
+#define TC_CFG_L1_LOAD_POLICY0__POLICY_4__SHIFT 0x8
+#define TC_CFG_L1_LOAD_POLICY0__POLICY_5__SHIFT 0xa
+#define TC_CFG_L1_LOAD_POLICY0__POLICY_6__SHIFT 0xc
+#define TC_CFG_L1_LOAD_POLICY0__POLICY_7__SHIFT 0xe
+#define TC_CFG_L1_LOAD_POLICY0__POLICY_8__SHIFT 0x10
+#define TC_CFG_L1_LOAD_POLICY0__POLICY_9__SHIFT 0x12
+#define TC_CFG_L1_LOAD_POLICY0__POLICY_10__SHIFT 0x14
+#define TC_CFG_L1_LOAD_POLICY0__POLICY_11__SHIFT 0x16
+#define TC_CFG_L1_LOAD_POLICY0__POLICY_12__SHIFT 0x18
+#define TC_CFG_L1_LOAD_POLICY0__POLICY_13__SHIFT 0x1a
+#define TC_CFG_L1_LOAD_POLICY0__POLICY_14__SHIFT 0x1c
+#define TC_CFG_L1_LOAD_POLICY0__POLICY_15__SHIFT 0x1e
+#define TC_CFG_L1_LOAD_POLICY0__POLICY_0_MASK 0x00000003L
+#define TC_CFG_L1_LOAD_POLICY0__POLICY_1_MASK 0x0000000CL
+#define TC_CFG_L1_LOAD_POLICY0__POLICY_2_MASK 0x00000030L
+#define TC_CFG_L1_LOAD_POLICY0__POLICY_3_MASK 0x000000C0L
+#define TC_CFG_L1_LOAD_POLICY0__POLICY_4_MASK 0x00000300L
+#define TC_CFG_L1_LOAD_POLICY0__POLICY_5_MASK 0x00000C00L
+#define TC_CFG_L1_LOAD_POLICY0__POLICY_6_MASK 0x00003000L
+#define TC_CFG_L1_LOAD_POLICY0__POLICY_7_MASK 0x0000C000L
+#define TC_CFG_L1_LOAD_POLICY0__POLICY_8_MASK 0x00030000L
+#define TC_CFG_L1_LOAD_POLICY0__POLICY_9_MASK 0x000C0000L
+#define TC_CFG_L1_LOAD_POLICY0__POLICY_10_MASK 0x00300000L
+#define TC_CFG_L1_LOAD_POLICY0__POLICY_11_MASK 0x00C00000L
+#define TC_CFG_L1_LOAD_POLICY0__POLICY_12_MASK 0x03000000L
+#define TC_CFG_L1_LOAD_POLICY0__POLICY_13_MASK 0x0C000000L
+#define TC_CFG_L1_LOAD_POLICY0__POLICY_14_MASK 0x30000000L
+#define TC_CFG_L1_LOAD_POLICY0__POLICY_15_MASK 0xC0000000L
+//TC_CFG_L1_LOAD_POLICY1
+#define TC_CFG_L1_LOAD_POLICY1__POLICY_16__SHIFT 0x0
+#define TC_CFG_L1_LOAD_POLICY1__POLICY_17__SHIFT 0x2
+#define TC_CFG_L1_LOAD_POLICY1__POLICY_18__SHIFT 0x4
+#define TC_CFG_L1_LOAD_POLICY1__POLICY_19__SHIFT 0x6
+#define TC_CFG_L1_LOAD_POLICY1__POLICY_20__SHIFT 0x8
+#define TC_CFG_L1_LOAD_POLICY1__POLICY_21__SHIFT 0xa
+#define TC_CFG_L1_LOAD_POLICY1__POLICY_22__SHIFT 0xc
+#define TC_CFG_L1_LOAD_POLICY1__POLICY_23__SHIFT 0xe
+#define TC_CFG_L1_LOAD_POLICY1__POLICY_24__SHIFT 0x10
+#define TC_CFG_L1_LOAD_POLICY1__POLICY_25__SHIFT 0x12
+#define TC_CFG_L1_LOAD_POLICY1__POLICY_26__SHIFT 0x14
+#define TC_CFG_L1_LOAD_POLICY1__POLICY_27__SHIFT 0x16
+#define TC_CFG_L1_LOAD_POLICY1__POLICY_28__SHIFT 0x18
+#define TC_CFG_L1_LOAD_POLICY1__POLICY_29__SHIFT 0x1a
+#define TC_CFG_L1_LOAD_POLICY1__POLICY_30__SHIFT 0x1c
+#define TC_CFG_L1_LOAD_POLICY1__POLICY_31__SHIFT 0x1e
+#define TC_CFG_L1_LOAD_POLICY1__POLICY_16_MASK 0x00000003L
+#define TC_CFG_L1_LOAD_POLICY1__POLICY_17_MASK 0x0000000CL
+#define TC_CFG_L1_LOAD_POLICY1__POLICY_18_MASK 0x00000030L
+#define TC_CFG_L1_LOAD_POLICY1__POLICY_19_MASK 0x000000C0L
+#define TC_CFG_L1_LOAD_POLICY1__POLICY_20_MASK 0x00000300L
+#define TC_CFG_L1_LOAD_POLICY1__POLICY_21_MASK 0x00000C00L
+#define TC_CFG_L1_LOAD_POLICY1__POLICY_22_MASK 0x00003000L
+#define TC_CFG_L1_LOAD_POLICY1__POLICY_23_MASK 0x0000C000L
+#define TC_CFG_L1_LOAD_POLICY1__POLICY_24_MASK 0x00030000L
+#define TC_CFG_L1_LOAD_POLICY1__POLICY_25_MASK 0x000C0000L
+#define TC_CFG_L1_LOAD_POLICY1__POLICY_26_MASK 0x00300000L
+#define TC_CFG_L1_LOAD_POLICY1__POLICY_27_MASK 0x00C00000L
+#define TC_CFG_L1_LOAD_POLICY1__POLICY_28_MASK 0x03000000L
+#define TC_CFG_L1_LOAD_POLICY1__POLICY_29_MASK 0x0C000000L
+#define TC_CFG_L1_LOAD_POLICY1__POLICY_30_MASK 0x30000000L
+#define TC_CFG_L1_LOAD_POLICY1__POLICY_31_MASK 0xC0000000L
+//TC_CFG_L1_STORE_POLICY
+#define TC_CFG_L1_STORE_POLICY__POLICY_0__SHIFT 0x0
+#define TC_CFG_L1_STORE_POLICY__POLICY_1__SHIFT 0x1
+#define TC_CFG_L1_STORE_POLICY__POLICY_2__SHIFT 0x2
+#define TC_CFG_L1_STORE_POLICY__POLICY_3__SHIFT 0x3
+#define TC_CFG_L1_STORE_POLICY__POLICY_4__SHIFT 0x4
+#define TC_CFG_L1_STORE_POLICY__POLICY_5__SHIFT 0x5
+#define TC_CFG_L1_STORE_POLICY__POLICY_6__SHIFT 0x6
+#define TC_CFG_L1_STORE_POLICY__POLICY_7__SHIFT 0x7
+#define TC_CFG_L1_STORE_POLICY__POLICY_8__SHIFT 0x8
+#define TC_CFG_L1_STORE_POLICY__POLICY_9__SHIFT 0x9
+#define TC_CFG_L1_STORE_POLICY__POLICY_10__SHIFT 0xa
+#define TC_CFG_L1_STORE_POLICY__POLICY_11__SHIFT 0xb
+#define TC_CFG_L1_STORE_POLICY__POLICY_12__SHIFT 0xc
+#define TC_CFG_L1_STORE_POLICY__POLICY_13__SHIFT 0xd
+#define TC_CFG_L1_STORE_POLICY__POLICY_14__SHIFT 0xe
+#define TC_CFG_L1_STORE_POLICY__POLICY_15__SHIFT 0xf
+#define TC_CFG_L1_STORE_POLICY__POLICY_16__SHIFT 0x10
+#define TC_CFG_L1_STORE_POLICY__POLICY_17__SHIFT 0x11
+#define TC_CFG_L1_STORE_POLICY__POLICY_18__SHIFT 0x12
+#define TC_CFG_L1_STORE_POLICY__POLICY_19__SHIFT 0x13
+#define TC_CFG_L1_STORE_POLICY__POLICY_20__SHIFT 0x14
+#define TC_CFG_L1_STORE_POLICY__POLICY_21__SHIFT 0x15
+#define TC_CFG_L1_STORE_POLICY__POLICY_22__SHIFT 0x16
+#define TC_CFG_L1_STORE_POLICY__POLICY_23__SHIFT 0x17
+#define TC_CFG_L1_STORE_POLICY__POLICY_24__SHIFT 0x18
+#define TC_CFG_L1_STORE_POLICY__POLICY_25__SHIFT 0x19
+#define TC_CFG_L1_STORE_POLICY__POLICY_26__SHIFT 0x1a
+#define TC_CFG_L1_STORE_POLICY__POLICY_27__SHIFT 0x1b
+#define TC_CFG_L1_STORE_POLICY__POLICY_28__SHIFT 0x1c
+#define TC_CFG_L1_STORE_POLICY__POLICY_29__SHIFT 0x1d
+#define TC_CFG_L1_STORE_POLICY__POLICY_30__SHIFT 0x1e
+#define TC_CFG_L1_STORE_POLICY__POLICY_31__SHIFT 0x1f
+#define TC_CFG_L1_STORE_POLICY__POLICY_0_MASK 0x00000001L
+#define TC_CFG_L1_STORE_POLICY__POLICY_1_MASK 0x00000002L
+#define TC_CFG_L1_STORE_POLICY__POLICY_2_MASK 0x00000004L
+#define TC_CFG_L1_STORE_POLICY__POLICY_3_MASK 0x00000008L
+#define TC_CFG_L1_STORE_POLICY__POLICY_4_MASK 0x00000010L
+#define TC_CFG_L1_STORE_POLICY__POLICY_5_MASK 0x00000020L
+#define TC_CFG_L1_STORE_POLICY__POLICY_6_MASK 0x00000040L
+#define TC_CFG_L1_STORE_POLICY__POLICY_7_MASK 0x00000080L
+#define TC_CFG_L1_STORE_POLICY__POLICY_8_MASK 0x00000100L
+#define TC_CFG_L1_STORE_POLICY__POLICY_9_MASK 0x00000200L
+#define TC_CFG_L1_STORE_POLICY__POLICY_10_MASK 0x00000400L
+#define TC_CFG_L1_STORE_POLICY__POLICY_11_MASK 0x00000800L
+#define TC_CFG_L1_STORE_POLICY__POLICY_12_MASK 0x00001000L
+#define TC_CFG_L1_STORE_POLICY__POLICY_13_MASK 0x00002000L
+#define TC_CFG_L1_STORE_POLICY__POLICY_14_MASK 0x00004000L
+#define TC_CFG_L1_STORE_POLICY__POLICY_15_MASK 0x00008000L
+#define TC_CFG_L1_STORE_POLICY__POLICY_16_MASK 0x00010000L
+#define TC_CFG_L1_STORE_POLICY__POLICY_17_MASK 0x00020000L
+#define TC_CFG_L1_STORE_POLICY__POLICY_18_MASK 0x00040000L
+#define TC_CFG_L1_STORE_POLICY__POLICY_19_MASK 0x00080000L
+#define TC_CFG_L1_STORE_POLICY__POLICY_20_MASK 0x00100000L
+#define TC_CFG_L1_STORE_POLICY__POLICY_21_MASK 0x00200000L
+#define TC_CFG_L1_STORE_POLICY__POLICY_22_MASK 0x00400000L
+#define TC_CFG_L1_STORE_POLICY__POLICY_23_MASK 0x00800000L
+#define TC_CFG_L1_STORE_POLICY__POLICY_24_MASK 0x01000000L
+#define TC_CFG_L1_STORE_POLICY__POLICY_25_MASK 0x02000000L
+#define TC_CFG_L1_STORE_POLICY__POLICY_26_MASK 0x04000000L
+#define TC_CFG_L1_STORE_POLICY__POLICY_27_MASK 0x08000000L
+#define TC_CFG_L1_STORE_POLICY__POLICY_28_MASK 0x10000000L
+#define TC_CFG_L1_STORE_POLICY__POLICY_29_MASK 0x20000000L
+#define TC_CFG_L1_STORE_POLICY__POLICY_30_MASK 0x40000000L
+#define TC_CFG_L1_STORE_POLICY__POLICY_31_MASK 0x80000000L
+//TC_CFG_L2_LOAD_POLICY0
+#define TC_CFG_L2_LOAD_POLICY0__POLICY_0__SHIFT 0x0
+#define TC_CFG_L2_LOAD_POLICY0__POLICY_1__SHIFT 0x2
+#define TC_CFG_L2_LOAD_POLICY0__POLICY_2__SHIFT 0x4
+#define TC_CFG_L2_LOAD_POLICY0__POLICY_3__SHIFT 0x6
+#define TC_CFG_L2_LOAD_POLICY0__POLICY_4__SHIFT 0x8
+#define TC_CFG_L2_LOAD_POLICY0__POLICY_5__SHIFT 0xa
+#define TC_CFG_L2_LOAD_POLICY0__POLICY_6__SHIFT 0xc
+#define TC_CFG_L2_LOAD_POLICY0__POLICY_7__SHIFT 0xe
+#define TC_CFG_L2_LOAD_POLICY0__POLICY_8__SHIFT 0x10
+#define TC_CFG_L2_LOAD_POLICY0__POLICY_9__SHIFT 0x12
+#define TC_CFG_L2_LOAD_POLICY0__POLICY_10__SHIFT 0x14
+#define TC_CFG_L2_LOAD_POLICY0__POLICY_11__SHIFT 0x16
+#define TC_CFG_L2_LOAD_POLICY0__POLICY_12__SHIFT 0x18
+#define TC_CFG_L2_LOAD_POLICY0__POLICY_13__SHIFT 0x1a
+#define TC_CFG_L2_LOAD_POLICY0__POLICY_14__SHIFT 0x1c
+#define TC_CFG_L2_LOAD_POLICY0__POLICY_15__SHIFT 0x1e
+#define TC_CFG_L2_LOAD_POLICY0__POLICY_0_MASK 0x00000003L
+#define TC_CFG_L2_LOAD_POLICY0__POLICY_1_MASK 0x0000000CL
+#define TC_CFG_L2_LOAD_POLICY0__POLICY_2_MASK 0x00000030L
+#define TC_CFG_L2_LOAD_POLICY0__POLICY_3_MASK 0x000000C0L
+#define TC_CFG_L2_LOAD_POLICY0__POLICY_4_MASK 0x00000300L
+#define TC_CFG_L2_LOAD_POLICY0__POLICY_5_MASK 0x00000C00L
+#define TC_CFG_L2_LOAD_POLICY0__POLICY_6_MASK 0x00003000L
+#define TC_CFG_L2_LOAD_POLICY0__POLICY_7_MASK 0x0000C000L
+#define TC_CFG_L2_LOAD_POLICY0__POLICY_8_MASK 0x00030000L
+#define TC_CFG_L2_LOAD_POLICY0__POLICY_9_MASK 0x000C0000L
+#define TC_CFG_L2_LOAD_POLICY0__POLICY_10_MASK 0x00300000L
+#define TC_CFG_L2_LOAD_POLICY0__POLICY_11_MASK 0x00C00000L
+#define TC_CFG_L2_LOAD_POLICY0__POLICY_12_MASK 0x03000000L
+#define TC_CFG_L2_LOAD_POLICY0__POLICY_13_MASK 0x0C000000L
+#define TC_CFG_L2_LOAD_POLICY0__POLICY_14_MASK 0x30000000L
+#define TC_CFG_L2_LOAD_POLICY0__POLICY_15_MASK 0xC0000000L
+//TC_CFG_L2_LOAD_POLICY1
+#define TC_CFG_L2_LOAD_POLICY1__POLICY_16__SHIFT 0x0
+#define TC_CFG_L2_LOAD_POLICY1__POLICY_17__SHIFT 0x2
+#define TC_CFG_L2_LOAD_POLICY1__POLICY_18__SHIFT 0x4
+#define TC_CFG_L2_LOAD_POLICY1__POLICY_19__SHIFT 0x6
+#define TC_CFG_L2_LOAD_POLICY1__POLICY_20__SHIFT 0x8
+#define TC_CFG_L2_LOAD_POLICY1__POLICY_21__SHIFT 0xa
+#define TC_CFG_L2_LOAD_POLICY1__POLICY_22__SHIFT 0xc
+#define TC_CFG_L2_LOAD_POLICY1__POLICY_23__SHIFT 0xe
+#define TC_CFG_L2_LOAD_POLICY1__POLICY_24__SHIFT 0x10
+#define TC_CFG_L2_LOAD_POLICY1__POLICY_25__SHIFT 0x12
+#define TC_CFG_L2_LOAD_POLICY1__POLICY_26__SHIFT 0x14
+#define TC_CFG_L2_LOAD_POLICY1__POLICY_27__SHIFT 0x16
+#define TC_CFG_L2_LOAD_POLICY1__POLICY_28__SHIFT 0x18
+#define TC_CFG_L2_LOAD_POLICY1__POLICY_29__SHIFT 0x1a
+#define TC_CFG_L2_LOAD_POLICY1__POLICY_30__SHIFT 0x1c
+#define TC_CFG_L2_LOAD_POLICY1__POLICY_31__SHIFT 0x1e
+#define TC_CFG_L2_LOAD_POLICY1__POLICY_16_MASK 0x00000003L
+#define TC_CFG_L2_LOAD_POLICY1__POLICY_17_MASK 0x0000000CL
+#define TC_CFG_L2_LOAD_POLICY1__POLICY_18_MASK 0x00000030L
+#define TC_CFG_L2_LOAD_POLICY1__POLICY_19_MASK 0x000000C0L
+#define TC_CFG_L2_LOAD_POLICY1__POLICY_20_MASK 0x00000300L
+#define TC_CFG_L2_LOAD_POLICY1__POLICY_21_MASK 0x00000C00L
+#define TC_CFG_L2_LOAD_POLICY1__POLICY_22_MASK 0x00003000L
+#define TC_CFG_L2_LOAD_POLICY1__POLICY_23_MASK 0x0000C000L
+#define TC_CFG_L2_LOAD_POLICY1__POLICY_24_MASK 0x00030000L
+#define TC_CFG_L2_LOAD_POLICY1__POLICY_25_MASK 0x000C0000L
+#define TC_CFG_L2_LOAD_POLICY1__POLICY_26_MASK 0x00300000L
+#define TC_CFG_L2_LOAD_POLICY1__POLICY_27_MASK 0x00C00000L
+#define TC_CFG_L2_LOAD_POLICY1__POLICY_28_MASK 0x03000000L
+#define TC_CFG_L2_LOAD_POLICY1__POLICY_29_MASK 0x0C000000L
+#define TC_CFG_L2_LOAD_POLICY1__POLICY_30_MASK 0x30000000L
+#define TC_CFG_L2_LOAD_POLICY1__POLICY_31_MASK 0xC0000000L
+//TC_CFG_L2_STORE_POLICY0
+#define TC_CFG_L2_STORE_POLICY0__POLICY_0__SHIFT 0x0
+#define TC_CFG_L2_STORE_POLICY0__POLICY_1__SHIFT 0x2
+#define TC_CFG_L2_STORE_POLICY0__POLICY_2__SHIFT 0x4
+#define TC_CFG_L2_STORE_POLICY0__POLICY_3__SHIFT 0x6
+#define TC_CFG_L2_STORE_POLICY0__POLICY_4__SHIFT 0x8
+#define TC_CFG_L2_STORE_POLICY0__POLICY_5__SHIFT 0xa
+#define TC_CFG_L2_STORE_POLICY0__POLICY_6__SHIFT 0xc
+#define TC_CFG_L2_STORE_POLICY0__POLICY_7__SHIFT 0xe
+#define TC_CFG_L2_STORE_POLICY0__POLICY_8__SHIFT 0x10
+#define TC_CFG_L2_STORE_POLICY0__POLICY_9__SHIFT 0x12
+#define TC_CFG_L2_STORE_POLICY0__POLICY_10__SHIFT 0x14
+#define TC_CFG_L2_STORE_POLICY0__POLICY_11__SHIFT 0x16
+#define TC_CFG_L2_STORE_POLICY0__POLICY_12__SHIFT 0x18
+#define TC_CFG_L2_STORE_POLICY0__POLICY_13__SHIFT 0x1a
+#define TC_CFG_L2_STORE_POLICY0__POLICY_14__SHIFT 0x1c
+#define TC_CFG_L2_STORE_POLICY0__POLICY_15__SHIFT 0x1e
+#define TC_CFG_L2_STORE_POLICY0__POLICY_0_MASK 0x00000003L
+#define TC_CFG_L2_STORE_POLICY0__POLICY_1_MASK 0x0000000CL
+#define TC_CFG_L2_STORE_POLICY0__POLICY_2_MASK 0x00000030L
+#define TC_CFG_L2_STORE_POLICY0__POLICY_3_MASK 0x000000C0L
+#define TC_CFG_L2_STORE_POLICY0__POLICY_4_MASK 0x00000300L
+#define TC_CFG_L2_STORE_POLICY0__POLICY_5_MASK 0x00000C00L
+#define TC_CFG_L2_STORE_POLICY0__POLICY_6_MASK 0x00003000L
+#define TC_CFG_L2_STORE_POLICY0__POLICY_7_MASK 0x0000C000L
+#define TC_CFG_L2_STORE_POLICY0__POLICY_8_MASK 0x00030000L
+#define TC_CFG_L2_STORE_POLICY0__POLICY_9_MASK 0x000C0000L
+#define TC_CFG_L2_STORE_POLICY0__POLICY_10_MASK 0x00300000L
+#define TC_CFG_L2_STORE_POLICY0__POLICY_11_MASK 0x00C00000L
+#define TC_CFG_L2_STORE_POLICY0__POLICY_12_MASK 0x03000000L
+#define TC_CFG_L2_STORE_POLICY0__POLICY_13_MASK 0x0C000000L
+#define TC_CFG_L2_STORE_POLICY0__POLICY_14_MASK 0x30000000L
+#define TC_CFG_L2_STORE_POLICY0__POLICY_15_MASK 0xC0000000L
+//TC_CFG_L2_STORE_POLICY1
+#define TC_CFG_L2_STORE_POLICY1__POLICY_16__SHIFT 0x0
+#define TC_CFG_L2_STORE_POLICY1__POLICY_17__SHIFT 0x2
+#define TC_CFG_L2_STORE_POLICY1__POLICY_18__SHIFT 0x4
+#define TC_CFG_L2_STORE_POLICY1__POLICY_19__SHIFT 0x6
+#define TC_CFG_L2_STORE_POLICY1__POLICY_20__SHIFT 0x8
+#define TC_CFG_L2_STORE_POLICY1__POLICY_21__SHIFT 0xa
+#define TC_CFG_L2_STORE_POLICY1__POLICY_22__SHIFT 0xc
+#define TC_CFG_L2_STORE_POLICY1__POLICY_23__SHIFT 0xe
+#define TC_CFG_L2_STORE_POLICY1__POLICY_24__SHIFT 0x10
+#define TC_CFG_L2_STORE_POLICY1__POLICY_25__SHIFT 0x12
+#define TC_CFG_L2_STORE_POLICY1__POLICY_26__SHIFT 0x14
+#define TC_CFG_L2_STORE_POLICY1__POLICY_27__SHIFT 0x16
+#define TC_CFG_L2_STORE_POLICY1__POLICY_28__SHIFT 0x18
+#define TC_CFG_L2_STORE_POLICY1__POLICY_29__SHIFT 0x1a
+#define TC_CFG_L2_STORE_POLICY1__POLICY_30__SHIFT 0x1c
+#define TC_CFG_L2_STORE_POLICY1__POLICY_31__SHIFT 0x1e
+#define TC_CFG_L2_STORE_POLICY1__POLICY_16_MASK 0x00000003L
+#define TC_CFG_L2_STORE_POLICY1__POLICY_17_MASK 0x0000000CL
+#define TC_CFG_L2_STORE_POLICY1__POLICY_18_MASK 0x00000030L
+#define TC_CFG_L2_STORE_POLICY1__POLICY_19_MASK 0x000000C0L
+#define TC_CFG_L2_STORE_POLICY1__POLICY_20_MASK 0x00000300L
+#define TC_CFG_L2_STORE_POLICY1__POLICY_21_MASK 0x00000C00L
+#define TC_CFG_L2_STORE_POLICY1__POLICY_22_MASK 0x00003000L
+#define TC_CFG_L2_STORE_POLICY1__POLICY_23_MASK 0x0000C000L
+#define TC_CFG_L2_STORE_POLICY1__POLICY_24_MASK 0x00030000L
+#define TC_CFG_L2_STORE_POLICY1__POLICY_25_MASK 0x000C0000L
+#define TC_CFG_L2_STORE_POLICY1__POLICY_26_MASK 0x00300000L
+#define TC_CFG_L2_STORE_POLICY1__POLICY_27_MASK 0x00C00000L
+#define TC_CFG_L2_STORE_POLICY1__POLICY_28_MASK 0x03000000L
+#define TC_CFG_L2_STORE_POLICY1__POLICY_29_MASK 0x0C000000L
+#define TC_CFG_L2_STORE_POLICY1__POLICY_30_MASK 0x30000000L
+#define TC_CFG_L2_STORE_POLICY1__POLICY_31_MASK 0xC0000000L
+//TC_CFG_L2_ATOMIC_POLICY
+#define TC_CFG_L2_ATOMIC_POLICY__POLICY_0__SHIFT 0x0
+#define TC_CFG_L2_ATOMIC_POLICY__POLICY_1__SHIFT 0x2
+#define TC_CFG_L2_ATOMIC_POLICY__POLICY_2__SHIFT 0x4
+#define TC_CFG_L2_ATOMIC_POLICY__POLICY_3__SHIFT 0x6
+#define TC_CFG_L2_ATOMIC_POLICY__POLICY_4__SHIFT 0x8
+#define TC_CFG_L2_ATOMIC_POLICY__POLICY_5__SHIFT 0xa
+#define TC_CFG_L2_ATOMIC_POLICY__POLICY_6__SHIFT 0xc
+#define TC_CFG_L2_ATOMIC_POLICY__POLICY_7__SHIFT 0xe
+#define TC_CFG_L2_ATOMIC_POLICY__POLICY_8__SHIFT 0x10
+#define TC_CFG_L2_ATOMIC_POLICY__POLICY_9__SHIFT 0x12
+#define TC_CFG_L2_ATOMIC_POLICY__POLICY_10__SHIFT 0x14
+#define TC_CFG_L2_ATOMIC_POLICY__POLICY_11__SHIFT 0x16
+#define TC_CFG_L2_ATOMIC_POLICY__POLICY_12__SHIFT 0x18
+#define TC_CFG_L2_ATOMIC_POLICY__POLICY_13__SHIFT 0x1a
+#define TC_CFG_L2_ATOMIC_POLICY__POLICY_14__SHIFT 0x1c
+#define TC_CFG_L2_ATOMIC_POLICY__POLICY_15__SHIFT 0x1e
+#define TC_CFG_L2_ATOMIC_POLICY__POLICY_0_MASK 0x00000003L
+#define TC_CFG_L2_ATOMIC_POLICY__POLICY_1_MASK 0x0000000CL
+#define TC_CFG_L2_ATOMIC_POLICY__POLICY_2_MASK 0x00000030L
+#define TC_CFG_L2_ATOMIC_POLICY__POLICY_3_MASK 0x000000C0L
+#define TC_CFG_L2_ATOMIC_POLICY__POLICY_4_MASK 0x00000300L
+#define TC_CFG_L2_ATOMIC_POLICY__POLICY_5_MASK 0x00000C00L
+#define TC_CFG_L2_ATOMIC_POLICY__POLICY_6_MASK 0x00003000L
+#define TC_CFG_L2_ATOMIC_POLICY__POLICY_7_MASK 0x0000C000L
+#define TC_CFG_L2_ATOMIC_POLICY__POLICY_8_MASK 0x00030000L
+#define TC_CFG_L2_ATOMIC_POLICY__POLICY_9_MASK 0x000C0000L
+#define TC_CFG_L2_ATOMIC_POLICY__POLICY_10_MASK 0x00300000L
+#define TC_CFG_L2_ATOMIC_POLICY__POLICY_11_MASK 0x00C00000L
+#define TC_CFG_L2_ATOMIC_POLICY__POLICY_12_MASK 0x03000000L
+#define TC_CFG_L2_ATOMIC_POLICY__POLICY_13_MASK 0x0C000000L
+#define TC_CFG_L2_ATOMIC_POLICY__POLICY_14_MASK 0x30000000L
+#define TC_CFG_L2_ATOMIC_POLICY__POLICY_15_MASK 0xC0000000L
+//TC_CFG_L1_VOLATILE
+#define TC_CFG_L1_VOLATILE__VOL__SHIFT 0x0
+#define TC_CFG_L1_VOLATILE__VOL_MASK 0x0000000FL
+//TC_CFG_L2_VOLATILE
+#define TC_CFG_L2_VOLATILE__VOL__SHIFT 0x0
+#define TC_CFG_L2_VOLATILE__VOL_MASK 0x0000000FL
+//TCI_MISC
+#define TCI_MISC__FGCG_REPEATER_DISABLE__SHIFT 0x0
+#define TCI_MISC__LEGACY_MGCG_DISABLE__SHIFT 0x1
+#define TCI_MISC__FGCG_REPEATER_DISABLE_MASK 0x00000001L
+#define TCI_MISC__LEGACY_MGCG_DISABLE_MASK 0x00000002L
+//TCI_CNTL_3
+#define TCI_CNTL_3__DISABLE_DOUBLING_L2_BANDWIDTH__SHIFT 0x0
+#define TCI_CNTL_3__COMBINING_DELAY_WINDOW__SHIFT 0x2
+#define TCI_CNTL_3__CHICKEN_BIT_TCR_MGCG__SHIFT 0x4
+#define TCI_CNTL_3__TCR_FGCG_REPEATER_DISABLE__SHIFT 0x7
+#define TCI_CNTL_3__DISABLE_DOUBLING_L2_BANDWIDTH_MASK 0x00000003L
+#define TCI_CNTL_3__COMBINING_DELAY_WINDOW_MASK 0x0000000CL
+#define TCI_CNTL_3__CHICKEN_BIT_TCR_MGCG_MASK 0x00000070L
+#define TCI_CNTL_3__TCR_FGCG_REPEATER_DISABLE_MASK 0x00000080L
+//TCI_DSM_CNTL
+#define TCI_DSM_CNTL__WRITE_RAM_IRRITATOR_DATA_SEL__SHIFT 0x0
+#define TCI_DSM_CNTL__WRITE_RAM_IRRITATOR_SINGLE_WRITE__SHIFT 0x2
+#define TCI_DSM_CNTL__WRITE_RAM_IRRITATOR_DATA_SEL_MASK 0x00000003L
+#define TCI_DSM_CNTL__WRITE_RAM_IRRITATOR_SINGLE_WRITE_MASK 0x00000004L
+//TCI_DSM_CNTL2
+#define TCI_DSM_CNTL2__WRITE_RAM_ENABLE_ERROR_INJECT__SHIFT 0x0
+#define TCI_DSM_CNTL2__WRITE_RAM_SELECT_INJECT_DELAY__SHIFT 0x2
+#define TCI_DSM_CNTL2__TCI_INJECT_DELAY__SHIFT 0x1a
+#define TCI_DSM_CNTL2__WRITE_RAM_ENABLE_ERROR_INJECT_MASK 0x00000003L
+#define TCI_DSM_CNTL2__WRITE_RAM_SELECT_INJECT_DELAY_MASK 0x00000004L
+#define TCI_DSM_CNTL2__TCI_INJECT_DELAY_MASK 0xFC000000L
+//TCI_STATUS
+#define TCI_STATUS__TCI_BUSY__SHIFT 0x0
+#define TCI_STATUS__TCI_BUSY_MASK 0x00000001L
+//TCI_CNTL_1
+#define TCI_CNTL_1__WBINVL1_NUM_CYCLES__SHIFT 0x0
+#define TCI_CNTL_1__REQ_FIFO_DEPTH__SHIFT 0x10
+#define TCI_CNTL_1__WDATA_RAM_DEPTH__SHIFT 0x18
+#define TCI_CNTL_1__WBINVL1_NUM_CYCLES_MASK 0x0000FFFFL
+#define TCI_CNTL_1__REQ_FIFO_DEPTH_MASK 0x00FF0000L
+#define TCI_CNTL_1__WDATA_RAM_DEPTH_MASK 0xFF000000L
+//TCI_CNTL_2
+#define TCI_CNTL_2__L1_INVAL_ON_WBINVL2__SHIFT 0x0
+#define TCI_CNTL_2__TCA_MAX_CREDIT__SHIFT 0x1
+#define TCI_CNTL_2__L1_INVAL_ON_WBINVL2_MASK 0x00000001L
+#define TCI_CNTL_2__TCA_MAX_CREDIT_MASK 0x000001FEL
+//TCC_CTRL
+#define TCC_CTRL__CACHE_SIZE__SHIFT 0x0
+#define TCC_CTRL__RATE__SHIFT 0x2
+#define TCC_CTRL__WRITEBACK_MARGIN__SHIFT 0x4
+#define TCC_CTRL__SRC_FIFO_SIZE__SHIFT 0xc
+#define TCC_CTRL__LATENCY_FIFO_SIZE__SHIFT 0x10
+#define TCC_CTRL__LINEAR_SET_HASH__SHIFT 0x15
+#define TCC_CTRL__OUTPUT_FIFO_CLK_MODE__SHIFT 0x16
+#define TCC_CTRL__EXECUTE_CLK_MODE__SHIFT 0x17
+#define TCC_CTRL__RETURN_BUFFER_CLK_MODE__SHIFT 0x19
+#define TCC_CTRL__SRC_FIFO_CLK_MODE__SHIFT 0x1a
+#define TCC_CTRL__MC_WRITE_CLK_MODE__SHIFT 0x1b
+#define TCC_CTRL__LATENCY_FIFO_CLK_MODE__SHIFT 0x1c
+#define TCC_CTRL__DISABLE_SHARED_128B_READ_REQUEST__SHIFT 0x1d
+#define TCC_CTRL__CACHE_SIZE_MASK 0x00000003L
+#define TCC_CTRL__RATE_MASK 0x0000000CL
+#define TCC_CTRL__WRITEBACK_MARGIN_MASK 0x000000F0L
+#define TCC_CTRL__SRC_FIFO_SIZE_MASK 0x0000F000L
+#define TCC_CTRL__LATENCY_FIFO_SIZE_MASK 0x000F0000L
+#define TCC_CTRL__LINEAR_SET_HASH_MASK 0x00200000L
+#define TCC_CTRL__OUTPUT_FIFO_CLK_MODE_MASK 0x00400000L
+#define TCC_CTRL__EXECUTE_CLK_MODE_MASK 0x01800000L
+#define TCC_CTRL__RETURN_BUFFER_CLK_MODE_MASK 0x02000000L
+#define TCC_CTRL__SRC_FIFO_CLK_MODE_MASK 0x04000000L
+#define TCC_CTRL__MC_WRITE_CLK_MODE_MASK 0x08000000L
+#define TCC_CTRL__LATENCY_FIFO_CLK_MODE_MASK 0x10000000L
+#define TCC_CTRL__DISABLE_SHARED_128B_READ_REQUEST_MASK 0x20000000L
+//TCC_CTRL2
+#define TCC_CTRL2__PROBE_FIFO_SIZE__SHIFT 0x0
+#define TCC_CTRL2__INF_NAN_CLAMP__SHIFT 0x10
+#define TCC_CTRL2__PROBE_FILTER_CTRL__SHIFT 0x11
+#define TCC_CTRL2__WAIT_CLK_STABLE_CNT__SHIFT 0x12
+#define TCC_CTRL2__TCC_TCX_REPEATER_FGCG_DISABLE__SHIFT 0x17
+#define TCC_CTRL2__TCC_EA0_RDREQ_FGCG_DISABLE__SHIFT 0x18
+#define TCC_CTRL2__TCC_EA0_WRREQ_FGCG_DISABLE__SHIFT 0x19
+#define TCC_CTRL2__TCC_TCX_ACK_REPEATER_FGCG_DISABLE__SHIFT 0x1a
+#define TCC_CTRL2__TCC_TCA_HOLE_REPEATER_FGCG_DISABLE__SHIFT 0x1b
+#define TCC_CTRL2__TCC_TCA_RTN_REPEATER_FGCG_DISABLE__SHIFT 0x1c
+#define TCC_CTRL2__USE_EA_EARLYWRRET_ON_WRITEBACK__SHIFT 0x1d
+#define TCC_CTRL2__Enable_TCC_64K_2M_1G_1T_hash__SHIFT 0x1e
+#define TCC_CTRL2__PROBE_FIFO_SIZE_MASK 0x0000000FL
+#define TCC_CTRL2__INF_NAN_CLAMP_MASK 0x00010000L
+#define TCC_CTRL2__PROBE_FILTER_CTRL_MASK 0x00020000L
+#define TCC_CTRL2__WAIT_CLK_STABLE_CNT_MASK 0x007C0000L
+#define TCC_CTRL2__TCC_TCX_REPEATER_FGCG_DISABLE_MASK 0x00800000L
+#define TCC_CTRL2__TCC_EA0_RDREQ_FGCG_DISABLE_MASK 0x01000000L
+#define TCC_CTRL2__TCC_EA0_WRREQ_FGCG_DISABLE_MASK 0x02000000L
+#define TCC_CTRL2__TCC_TCX_ACK_REPEATER_FGCG_DISABLE_MASK 0x04000000L
+#define TCC_CTRL2__TCC_TCA_HOLE_REPEATER_FGCG_DISABLE_MASK 0x08000000L
+#define TCC_CTRL2__TCC_TCA_RTN_REPEATER_FGCG_DISABLE_MASK 0x10000000L
+#define TCC_CTRL2__USE_EA_EARLYWRRET_ON_WRITEBACK_MASK 0x20000000L
+#define TCC_CTRL2__Enable_TCC_64K_2M_1G_1T_hash_MASK 0x40000000L
+//TCC_DSM_CNTL
+#define TCC_DSM_CNTL__CACHE_DATA_IRRITATOR_DATA_SEL__SHIFT 0x0
+#define TCC_DSM_CNTL__CACHE_DATA_IRRITATOR_SINGLE_WRITE__SHIFT 0x2
+#define TCC_DSM_CNTL__CACHE_DATA_BANK_0_1_IRRITATOR_DATA_SEL__SHIFT 0x3
+#define TCC_DSM_CNTL__CACHE_DATA_BANK_0_1_IRRITATOR_SINGLE_WRITE__SHIFT 0x5
+#define TCC_DSM_CNTL__CACHE_DATA_BANK_1_0_IRRITATOR_DATA_SEL__SHIFT 0x6
+#define TCC_DSM_CNTL__CACHE_DATA_BANK_1_0_IRRITATOR_SINGLE_WRITE__SHIFT 0x8
+#define TCC_DSM_CNTL__CACHE_DATA_BANK_1_1_IRRITATOR_DATA_SEL__SHIFT 0x9
+#define TCC_DSM_CNTL__CACHE_DATA_BANK_1_1_IRRITATOR_SINGLE_WRITE__SHIFT 0xb
+#define TCC_DSM_CNTL__CACHE_DIRTY_BANK_0_IRRITATOR_DATA_SEL__SHIFT 0xc
+#define TCC_DSM_CNTL__CACHE_DIRTY_BANK_0_IRRITATOR_SINGLE_WRITE__SHIFT 0xe
+#define TCC_DSM_CNTL__CACHE_DIRTY_BANK_1_IRRITATOR_DATA_SEL__SHIFT 0xf
+#define TCC_DSM_CNTL__CACHE_DIRTY_BANK_1_IRRITATOR_SINGLE_WRITE__SHIFT 0x11
+#define TCC_DSM_CNTL__HIGH_RATE_TAG_IRRITATOR_DATA_SEL__SHIFT 0x12
+#define TCC_DSM_CNTL__HIGH_RATE_TAG_IRRITATOR_SINGLE_WRITE__SHIFT 0x14
+#define TCC_DSM_CNTL__LOW_RATE_TAG_IRRITATOR_DATA_SEL__SHIFT 0x15
+#define TCC_DSM_CNTL__LOW_RATE_TAG_IRRITATOR_SINGLE_WRITE__SHIFT 0x17
+#define TCC_DSM_CNTL__IN_USE_DEC_IRRITATOR_DATA_SEL__SHIFT 0x18
+#define TCC_DSM_CNTL__IN_USE_DEC_IRRITATOR_SINGLE_WRITE__SHIFT 0x1a
+#define TCC_DSM_CNTL__IN_USE_TRANSFER_IRRITATOR_DATA_SEL__SHIFT 0x1b
+#define TCC_DSM_CNTL__IN_USE_TRANSFER_IRRITATOR_SINGLE_WRITE__SHIFT 0x1d
+#define TCC_DSM_CNTL__CACHE_DATA_IRRITATOR_DATA_SEL_MASK 0x00000003L
+#define TCC_DSM_CNTL__CACHE_DATA_IRRITATOR_SINGLE_WRITE_MASK 0x00000004L
+#define TCC_DSM_CNTL__CACHE_DATA_BANK_0_1_IRRITATOR_DATA_SEL_MASK 0x00000018L
+#define TCC_DSM_CNTL__CACHE_DATA_BANK_0_1_IRRITATOR_SINGLE_WRITE_MASK 0x00000020L
+#define TCC_DSM_CNTL__CACHE_DATA_BANK_1_0_IRRITATOR_DATA_SEL_MASK 0x000000C0L
+#define TCC_DSM_CNTL__CACHE_DATA_BANK_1_0_IRRITATOR_SINGLE_WRITE_MASK 0x00000100L
+#define TCC_DSM_CNTL__CACHE_DATA_BANK_1_1_IRRITATOR_DATA_SEL_MASK 0x00000600L
+#define TCC_DSM_CNTL__CACHE_DATA_BANK_1_1_IRRITATOR_SINGLE_WRITE_MASK 0x00000800L
+#define TCC_DSM_CNTL__CACHE_DIRTY_BANK_0_IRRITATOR_DATA_SEL_MASK 0x00003000L
+#define TCC_DSM_CNTL__CACHE_DIRTY_BANK_0_IRRITATOR_SINGLE_WRITE_MASK 0x00004000L
+#define TCC_DSM_CNTL__CACHE_DIRTY_BANK_1_IRRITATOR_DATA_SEL_MASK 0x00018000L
+#define TCC_DSM_CNTL__CACHE_DIRTY_BANK_1_IRRITATOR_SINGLE_WRITE_MASK 0x00020000L
+#define TCC_DSM_CNTL__HIGH_RATE_TAG_IRRITATOR_DATA_SEL_MASK 0x000C0000L
+#define TCC_DSM_CNTL__HIGH_RATE_TAG_IRRITATOR_SINGLE_WRITE_MASK 0x00100000L
+#define TCC_DSM_CNTL__LOW_RATE_TAG_IRRITATOR_DATA_SEL_MASK 0x00600000L
+#define TCC_DSM_CNTL__LOW_RATE_TAG_IRRITATOR_SINGLE_WRITE_MASK 0x00800000L
+#define TCC_DSM_CNTL__IN_USE_DEC_IRRITATOR_DATA_SEL_MASK 0x03000000L
+#define TCC_DSM_CNTL__IN_USE_DEC_IRRITATOR_SINGLE_WRITE_MASK 0x04000000L
+#define TCC_DSM_CNTL__IN_USE_TRANSFER_IRRITATOR_DATA_SEL_MASK 0x18000000L
+#define TCC_DSM_CNTL__IN_USE_TRANSFER_IRRITATOR_SINGLE_WRITE_MASK 0x20000000L
+//TCC_DSM_CNTLA
+#define TCC_DSM_CNTLA__SRC_FIFO_IRRITATOR_DATA_SEL__SHIFT 0x0
+#define TCC_DSM_CNTLA__SRC_FIFO_IRRITATOR_SINGLE_WRITE__SHIFT 0x2
+#define TCC_DSM_CNTLA__UC_ATOMIC_FIFO_IRRITATOR_DATA_SEL__SHIFT 0x3
+#define TCC_DSM_CNTLA__UC_ATOMIC_FIFO_IRRITATOR_SINGLE_WRITE__SHIFT 0x5
+#define TCC_DSM_CNTLA__WRITE_RETURN_IRRITATOR_DATA_SEL__SHIFT 0x6
+#define TCC_DSM_CNTLA__WRITE_RETURN_IRRITATOR_SINGLE_WRITE__SHIFT 0x8
+#define TCC_DSM_CNTLA__WRITE_CACHE_READ_IRRITATOR_DATA_SEL__SHIFT 0x9
+#define TCC_DSM_CNTLA__WRITE_CACHE_READ_IRRITATOR_SINGLE_WRITE__SHIFT 0xb
+#define TCC_DSM_CNTLA__LATENCY_FIFO_NEXT_RAM_IRRITATOR_DATA_SEL__SHIFT 0xc
+#define TCC_DSM_CNTLA__LATENCY_FIFO_NEXT_RAM_IRRITATOR_SINGLE_WRITE__SHIFT 0xe
+#define TCC_DSM_CNTLA__CACHE_TAG_PROBE_FIFO_IRRITATOR_DATA_SEL__SHIFT 0xf
+#define TCC_DSM_CNTLA__CACHE_TAG_PROBE_FIFO_IRRITATOR_SINGLE_WRITE__SHIFT 0x11
+#define TCC_DSM_CNTLA__LATENCY_FIFO_IRRITATOR_DATA_SEL__SHIFT 0x12
+#define TCC_DSM_CNTLA__LATENCY_FIFO_IRRITATOR_SINGLE_WRITE__SHIFT 0x14
+#define TCC_DSM_CNTLA__RETURN_DATA_IRRITATOR_DATA_SEL__SHIFT 0x15
+#define TCC_DSM_CNTLA__RETURN_DATA_IRRITATOR_SINGLE_WRITE__SHIFT 0x17
+#define TCC_DSM_CNTLA__RETURN_CONTROL_IRRITATOR_DATA_SEL__SHIFT 0x18
+#define TCC_DSM_CNTLA__RETURN_CONTROL_IRRITATOR_SINGLE_WRITE__SHIFT 0x1a
+#define TCC_DSM_CNTLA__OUTPUT_FIFOS_IRRITATOR_DATA_SEL__SHIFT 0x1b
+#define TCC_DSM_CNTLA__OUTPUT_FIFOS_IRRITATOR_SINGLE_WRITE__SHIFT 0x1d
+#define TCC_DSM_CNTLA__SRC_FIFO_IRRITATOR_DATA_SEL_MASK 0x00000003L
+#define TCC_DSM_CNTLA__SRC_FIFO_IRRITATOR_SINGLE_WRITE_MASK 0x00000004L
+#define TCC_DSM_CNTLA__UC_ATOMIC_FIFO_IRRITATOR_DATA_SEL_MASK 0x00000018L
+#define TCC_DSM_CNTLA__UC_ATOMIC_FIFO_IRRITATOR_SINGLE_WRITE_MASK 0x00000020L
+#define TCC_DSM_CNTLA__WRITE_RETURN_IRRITATOR_DATA_SEL_MASK 0x000000C0L
+#define TCC_DSM_CNTLA__WRITE_RETURN_IRRITATOR_SINGLE_WRITE_MASK 0x00000100L
+#define TCC_DSM_CNTLA__WRITE_CACHE_READ_IRRITATOR_DATA_SEL_MASK 0x00000600L
+#define TCC_DSM_CNTLA__WRITE_CACHE_READ_IRRITATOR_SINGLE_WRITE_MASK 0x00000800L
+#define TCC_DSM_CNTLA__LATENCY_FIFO_NEXT_RAM_IRRITATOR_DATA_SEL_MASK 0x00003000L
+#define TCC_DSM_CNTLA__LATENCY_FIFO_NEXT_RAM_IRRITATOR_SINGLE_WRITE_MASK 0x00004000L
+#define TCC_DSM_CNTLA__CACHE_TAG_PROBE_FIFO_IRRITATOR_DATA_SEL_MASK 0x00018000L
+#define TCC_DSM_CNTLA__CACHE_TAG_PROBE_FIFO_IRRITATOR_SINGLE_WRITE_MASK 0x00020000L
+#define TCC_DSM_CNTLA__LATENCY_FIFO_IRRITATOR_DATA_SEL_MASK 0x000C0000L
+#define TCC_DSM_CNTLA__LATENCY_FIFO_IRRITATOR_SINGLE_WRITE_MASK 0x00100000L
+#define TCC_DSM_CNTLA__RETURN_DATA_IRRITATOR_DATA_SEL_MASK 0x00600000L
+#define TCC_DSM_CNTLA__RETURN_DATA_IRRITATOR_SINGLE_WRITE_MASK 0x00800000L
+#define TCC_DSM_CNTLA__RETURN_CONTROL_IRRITATOR_DATA_SEL_MASK 0x03000000L
+#define TCC_DSM_CNTLA__RETURN_CONTROL_IRRITATOR_SINGLE_WRITE_MASK 0x04000000L
+#define TCC_DSM_CNTLA__OUTPUT_FIFOS_IRRITATOR_DATA_SEL_MASK 0x18000000L
+#define TCC_DSM_CNTLA__OUTPUT_FIFOS_IRRITATOR_SINGLE_WRITE_MASK 0x20000000L
+//TCC_DSM_CNTL2
+#define TCC_DSM_CNTL2__CACHE_DATA_ENABLE_ERROR_INJECT__SHIFT 0x0
+#define TCC_DSM_CNTL2__CACHE_DATA_SELECT_INJECT_DELAY__SHIFT 0x2
+#define TCC_DSM_CNTL2__CACHE_DATA_BANK_0_1_ENABLE_ERROR_INJECT__SHIFT 0x3
+#define TCC_DSM_CNTL2__CACHE_DATA_BANK_0_1_SELECT_INJECT_DELAY__SHIFT 0x5
+#define TCC_DSM_CNTL2__CACHE_DATA_BANK_1_0_ENABLE_ERROR_INJECT__SHIFT 0x6
+#define TCC_DSM_CNTL2__CACHE_DATA_BANK_1_0_SELECT_INJECT_DELAY__SHIFT 0x8
+#define TCC_DSM_CNTL2__CACHE_DATA_BANK_1_1_ENABLE_ERROR_INJECT__SHIFT 0x9
+#define TCC_DSM_CNTL2__CACHE_DATA_BANK_1_1_SELECT_INJECT_DELAY__SHIFT 0xb
+#define TCC_DSM_CNTL2__CACHE_DIRTY_BANK_0_ENABLE_ERROR_INJECT__SHIFT 0xc
+#define TCC_DSM_CNTL2__CACHE_DIRTY_BANK_0_SELECT_INJECT_DELAY__SHIFT 0xe
+#define TCC_DSM_CNTL2__CACHE_DIRTY_BANK_1_ENABLE_ERROR_INJECT__SHIFT 0xf
+#define TCC_DSM_CNTL2__CACHE_DIRTY_BANK_1_SELECT_INJECT_DELAY__SHIFT 0x11
+#define TCC_DSM_CNTL2__HIGH_RATE_TAG_ENABLE_ERROR_INJECT__SHIFT 0x12
+#define TCC_DSM_CNTL2__HIGH_RATE_TAG_SELECT_INJECT_DELAY__SHIFT 0x14
+#define TCC_DSM_CNTL2__LOW_RATE_TAG_ENABLE_ERROR_INJECT__SHIFT 0x15
+#define TCC_DSM_CNTL2__LOW_RATE_TAG_SELECT_INJECT_DELAY__SHIFT 0x17
+#define TCC_DSM_CNTL2__INJECT_DELAY__SHIFT 0x1a
+#define TCC_DSM_CNTL2__CACHE_DATA_ENABLE_ERROR_INJECT_MASK 0x00000003L
+#define TCC_DSM_CNTL2__CACHE_DATA_SELECT_INJECT_DELAY_MASK 0x00000004L
+#define TCC_DSM_CNTL2__CACHE_DATA_BANK_0_1_ENABLE_ERROR_INJECT_MASK 0x00000018L
+#define TCC_DSM_CNTL2__CACHE_DATA_BANK_0_1_SELECT_INJECT_DELAY_MASK 0x00000020L
+#define TCC_DSM_CNTL2__CACHE_DATA_BANK_1_0_ENABLE_ERROR_INJECT_MASK 0x000000C0L
+#define TCC_DSM_CNTL2__CACHE_DATA_BANK_1_0_SELECT_INJECT_DELAY_MASK 0x00000100L
+#define TCC_DSM_CNTL2__CACHE_DATA_BANK_1_1_ENABLE_ERROR_INJECT_MASK 0x00000600L
+#define TCC_DSM_CNTL2__CACHE_DATA_BANK_1_1_SELECT_INJECT_DELAY_MASK 0x00000800L
+#define TCC_DSM_CNTL2__CACHE_DIRTY_BANK_0_ENABLE_ERROR_INJECT_MASK 0x00003000L
+#define TCC_DSM_CNTL2__CACHE_DIRTY_BANK_0_SELECT_INJECT_DELAY_MASK 0x00004000L
+#define TCC_DSM_CNTL2__CACHE_DIRTY_BANK_1_ENABLE_ERROR_INJECT_MASK 0x00018000L
+#define TCC_DSM_CNTL2__CACHE_DIRTY_BANK_1_SELECT_INJECT_DELAY_MASK 0x00020000L
+#define TCC_DSM_CNTL2__HIGH_RATE_TAG_ENABLE_ERROR_INJECT_MASK 0x000C0000L
+#define TCC_DSM_CNTL2__HIGH_RATE_TAG_SELECT_INJECT_DELAY_MASK 0x00100000L
+#define TCC_DSM_CNTL2__LOW_RATE_TAG_ENABLE_ERROR_INJECT_MASK 0x00600000L
+#define TCC_DSM_CNTL2__LOW_RATE_TAG_SELECT_INJECT_DELAY_MASK 0x00800000L
+#define TCC_DSM_CNTL2__INJECT_DELAY_MASK 0xFC000000L
+//TCC_DSM_CNTL2A
+#define TCC_DSM_CNTL2A__IN_USE_DEC_ENABLE_ERROR_INJECT__SHIFT 0x0
+#define TCC_DSM_CNTL2A__IN_USE_DEC_SELECT_INJECT_DELAY__SHIFT 0x2
+#define TCC_DSM_CNTL2A__IN_USE_TRANSFER_ENABLE_ERROR_INJECT__SHIFT 0x3
+#define TCC_DSM_CNTL2A__IN_USE_TRANSFER_SELECT_INJECT_DELAY__SHIFT 0x5
+#define TCC_DSM_CNTL2A__RETURN_DATA_ENABLE_ERROR_INJECT__SHIFT 0x6
+#define TCC_DSM_CNTL2A__RETURN_DATA_SELECT_INJECT_DELAY__SHIFT 0x8
+#define TCC_DSM_CNTL2A__RETURN_CONTROL_ENABLE_ERROR_INJECT__SHIFT 0x9
+#define TCC_DSM_CNTL2A__RETURN_CONTROL_SELECT_INJECT_DELAY__SHIFT 0xb
+#define TCC_DSM_CNTL2A__UC_ATOMIC_FIFO_ENABLE_ERROR_INJECT__SHIFT 0xc
+#define TCC_DSM_CNTL2A__UC_ATOMIC_FIFO_SELECT_INJECT_DELAY__SHIFT 0xe
+#define TCC_DSM_CNTL2A__WRITE_RETURN_ENABLE_ERROR_INJECT__SHIFT 0xf
+#define TCC_DSM_CNTL2A__WRITE_RETURN_SELECT_INJECT_DELAY__SHIFT 0x11
+#define TCC_DSM_CNTL2A__WRITE_CACHE_READ_ENABLE_ERROR_INJECT__SHIFT 0x12
+#define TCC_DSM_CNTL2A__WRITE_CACHE_READ_SELECT_INJECT_DELAY__SHIFT 0x14
+#define TCC_DSM_CNTL2A__SRC_FIFO_ENABLE_ERROR_INJECT__SHIFT 0x15
+#define TCC_DSM_CNTL2A__SRC_FIFO_SELECT_INJECT_DELAY__SHIFT 0x17
+#define TCC_DSM_CNTL2A__CACHE_TAG_PROBE_FIFO_ENABLE_ERROR_INJECT__SHIFT 0x18
+#define TCC_DSM_CNTL2A__CACHE_TAG_PROBE_FIFO_SELECT_INJECT_DELAY__SHIFT 0x1a
+#define TCC_DSM_CNTL2A__OUTPUT_FIFOS_ENABLE_ERROR_INJECT__SHIFT 0x1b
+#define TCC_DSM_CNTL2A__OUTPUT_FIFOS_SELECT_INJECT_DELAY__SHIFT 0x1d
+#define TCC_DSM_CNTL2A__IN_USE_DEC_ENABLE_ERROR_INJECT_MASK 0x00000003L
+#define TCC_DSM_CNTL2A__IN_USE_DEC_SELECT_INJECT_DELAY_MASK 0x00000004L
+#define TCC_DSM_CNTL2A__IN_USE_TRANSFER_ENABLE_ERROR_INJECT_MASK 0x00000018L
+#define TCC_DSM_CNTL2A__IN_USE_TRANSFER_SELECT_INJECT_DELAY_MASK 0x00000020L
+#define TCC_DSM_CNTL2A__RETURN_DATA_ENABLE_ERROR_INJECT_MASK 0x000000C0L
+#define TCC_DSM_CNTL2A__RETURN_DATA_SELECT_INJECT_DELAY_MASK 0x00000100L
+#define TCC_DSM_CNTL2A__RETURN_CONTROL_ENABLE_ERROR_INJECT_MASK 0x00000600L
+#define TCC_DSM_CNTL2A__RETURN_CONTROL_SELECT_INJECT_DELAY_MASK 0x00000800L
+#define TCC_DSM_CNTL2A__UC_ATOMIC_FIFO_ENABLE_ERROR_INJECT_MASK 0x00003000L
+#define TCC_DSM_CNTL2A__UC_ATOMIC_FIFO_SELECT_INJECT_DELAY_MASK 0x00004000L
+#define TCC_DSM_CNTL2A__WRITE_RETURN_ENABLE_ERROR_INJECT_MASK 0x00018000L
+#define TCC_DSM_CNTL2A__WRITE_RETURN_SELECT_INJECT_DELAY_MASK 0x00020000L
+#define TCC_DSM_CNTL2A__WRITE_CACHE_READ_ENABLE_ERROR_INJECT_MASK 0x000C0000L
+#define TCC_DSM_CNTL2A__WRITE_CACHE_READ_SELECT_INJECT_DELAY_MASK 0x00100000L
+#define TCC_DSM_CNTL2A__SRC_FIFO_ENABLE_ERROR_INJECT_MASK 0x00600000L
+#define TCC_DSM_CNTL2A__SRC_FIFO_SELECT_INJECT_DELAY_MASK 0x00800000L
+#define TCC_DSM_CNTL2A__CACHE_TAG_PROBE_FIFO_ENABLE_ERROR_INJECT_MASK 0x03000000L
+#define TCC_DSM_CNTL2A__CACHE_TAG_PROBE_FIFO_SELECT_INJECT_DELAY_MASK 0x04000000L
+#define TCC_DSM_CNTL2A__OUTPUT_FIFOS_ENABLE_ERROR_INJECT_MASK 0x18000000L
+#define TCC_DSM_CNTL2A__OUTPUT_FIFOS_SELECT_INJECT_DELAY_MASK 0x20000000L
+//TCC_DSM_CNTL2B
+#define TCC_DSM_CNTL2B__LATENCY_FIFO_ENABLE_ERROR_INJECT__SHIFT 0x0
+#define TCC_DSM_CNTL2B__LATENCY_FIFO_SELECT_INJECT_DELAY__SHIFT 0x2
+#define TCC_DSM_CNTL2B__LATENCY_FIFO_NEXT_RAM_ENABLE_ERROR_INJECT__SHIFT 0x3
+#define TCC_DSM_CNTL2B__LATENCY_FIFO_NEXT_RAM_SELECT_INJECT_DELAY__SHIFT 0x5
+#define TCC_DSM_CNTL2B__WRITE_EARLY_RETURN_ENABLE_ERROR_INJECT__SHIFT 0xc
+#define TCC_DSM_CNTL2B__WRITE_EARLY_RETURN_SELECT_INJECT_DELAY__SHIFT 0xe
+#define TCC_DSM_CNTL2B__WRITE_EARLY_RETURN_IRRITATOR_DATA_SEL__SHIFT 0xf
+#define TCC_DSM_CNTL2B__WRITE_EARLY_RETURN_IRRITATOR_SINGLE_WRITE__SHIFT 0x11
+#define TCC_DSM_CNTL2B__RETURN_BUFFER_LEVEL_BUBBLE_THRESHOLD__SHIFT 0x12
+#define TCC_DSM_CNTL2B__LATENCY_FIFO_ENABLE_ERROR_INJECT_MASK 0x00000003L
+#define TCC_DSM_CNTL2B__LATENCY_FIFO_SELECT_INJECT_DELAY_MASK 0x00000004L
+#define TCC_DSM_CNTL2B__LATENCY_FIFO_NEXT_RAM_ENABLE_ERROR_INJECT_MASK 0x00000018L
+#define TCC_DSM_CNTL2B__LATENCY_FIFO_NEXT_RAM_SELECT_INJECT_DELAY_MASK 0x00000020L
+#define TCC_DSM_CNTL2B__WRITE_EARLY_RETURN_ENABLE_ERROR_INJECT_MASK 0x00003000L
+#define TCC_DSM_CNTL2B__WRITE_EARLY_RETURN_SELECT_INJECT_DELAY_MASK 0x00004000L
+#define TCC_DSM_CNTL2B__WRITE_EARLY_RETURN_IRRITATOR_DATA_SEL_MASK 0x00018000L
+#define TCC_DSM_CNTL2B__WRITE_EARLY_RETURN_IRRITATOR_SINGLE_WRITE_MASK 0x00020000L
+#define TCC_DSM_CNTL2B__RETURN_BUFFER_LEVEL_BUBBLE_THRESHOLD_MASK 0x00FC0000L
+//TCC_WBINVL2
+#define TCC_WBINVL2__DONE__SHIFT 0x4
+#define TCC_WBINVL2__DONE_MASK 0x00000010L
+//TCC_SOFT_RESET
+#define TCC_SOFT_RESET__HALT_FOR_RESET__SHIFT 0x0
+#define TCC_SOFT_RESET__HALT_FOR_RESET_MASK 0x00000001L
+//TCC_DSM_CNTL3
+#define TCC_DSM_CNTL3__CACHE_DATA_BANK_0_2_IRRITATOR_DATA_SEL__SHIFT 0x0
+#define TCC_DSM_CNTL3__CACHE_DATA_BANK_0_2_IRRITATOR_SINGLE_WRITE__SHIFT 0x2
+#define TCC_DSM_CNTL3__CACHE_DATA_BANK_0_3_IRRITATOR_DATA_SEL__SHIFT 0x3
+#define TCC_DSM_CNTL3__CACHE_DATA_BANK_0_3_IRRITATOR_SINGLE_WRITE__SHIFT 0x5
+#define TCC_DSM_CNTL3__CACHE_DATA_BANK_1_2_IRRITATOR_DATA_SEL__SHIFT 0x6
+#define TCC_DSM_CNTL3__CACHE_DATA_BANK_1_2_IRRITATOR_SINGLE_WRITE__SHIFT 0x8
+#define TCC_DSM_CNTL3__CACHE_DATA_BANK_1_3_IRRITATOR_DATA_SEL__SHIFT 0x9
+#define TCC_DSM_CNTL3__CACHE_DATA_BANK_1_3_IRRITATOR_SINGLE_WRITE__SHIFT 0xb
+#define TCC_DSM_CNTL3__CACHE_DATA_BANK_0_2_ENABLE_ERROR_INJECT__SHIFT 0xc
+#define TCC_DSM_CNTL3__CACHE_DATA_BANK_0_2_SELECT_INJECT_DELAY__SHIFT 0xe
+#define TCC_DSM_CNTL3__CACHE_DATA_BANK_0_3_ENABLE_ERROR_INJECT__SHIFT 0xf
+#define TCC_DSM_CNTL3__CACHE_DATA_BANK_0_3_SELECT_INJECT_DELAY__SHIFT 0x11
+#define TCC_DSM_CNTL3__CACHE_DATA_BANK_1_2_ENABLE_ERROR_INJECT__SHIFT 0x12
+#define TCC_DSM_CNTL3__CACHE_DATA_BANK_1_2_SELECT_INJECT_DELAY__SHIFT 0x14
+#define TCC_DSM_CNTL3__CACHE_DATA_BANK_1_3_ENABLE_ERROR_INJECT__SHIFT 0x15
+#define TCC_DSM_CNTL3__CACHE_DATA_BANK_1_3_SELECT_INJECT_DELAY__SHIFT 0x17
+#define TCC_DSM_CNTL3__CACHE_DATA_BANK_0_2_IRRITATOR_DATA_SEL_MASK 0x00000003L
+#define TCC_DSM_CNTL3__CACHE_DATA_BANK_0_2_IRRITATOR_SINGLE_WRITE_MASK 0x00000004L
+#define TCC_DSM_CNTL3__CACHE_DATA_BANK_0_3_IRRITATOR_DATA_SEL_MASK 0x00000018L
+#define TCC_DSM_CNTL3__CACHE_DATA_BANK_0_3_IRRITATOR_SINGLE_WRITE_MASK 0x00000020L
+#define TCC_DSM_CNTL3__CACHE_DATA_BANK_1_2_IRRITATOR_DATA_SEL_MASK 0x000000C0L
+#define TCC_DSM_CNTL3__CACHE_DATA_BANK_1_2_IRRITATOR_SINGLE_WRITE_MASK 0x00000100L
+#define TCC_DSM_CNTL3__CACHE_DATA_BANK_1_3_IRRITATOR_DATA_SEL_MASK 0x00000600L
+#define TCC_DSM_CNTL3__CACHE_DATA_BANK_1_3_IRRITATOR_SINGLE_WRITE_MASK 0x00000800L
+#define TCC_DSM_CNTL3__CACHE_DATA_BANK_0_2_ENABLE_ERROR_INJECT_MASK 0x00003000L
+#define TCC_DSM_CNTL3__CACHE_DATA_BANK_0_2_SELECT_INJECT_DELAY_MASK 0x00004000L
+#define TCC_DSM_CNTL3__CACHE_DATA_BANK_0_3_ENABLE_ERROR_INJECT_MASK 0x00018000L
+#define TCC_DSM_CNTL3__CACHE_DATA_BANK_0_3_SELECT_INJECT_DELAY_MASK 0x00020000L
+#define TCC_DSM_CNTL3__CACHE_DATA_BANK_1_2_ENABLE_ERROR_INJECT_MASK 0x000C0000L
+#define TCC_DSM_CNTL3__CACHE_DATA_BANK_1_2_SELECT_INJECT_DELAY_MASK 0x00100000L
+#define TCC_DSM_CNTL3__CACHE_DATA_BANK_1_3_ENABLE_ERROR_INJECT_MASK 0x00600000L
+#define TCC_DSM_CNTL3__CACHE_DATA_BANK_1_3_SELECT_INJECT_DELAY_MASK 0x00800000L
+//TCA_CTRL
+#define TCA_CTRL__HOLE_TIMEOUT__SHIFT 0x0
+#define TCA_CTRL__RB_STILL_4_PHASE__SHIFT 0x4
+#define TCA_CTRL__RB_AS_TCI__SHIFT 0x5
+#define TCA_CTRL__DISABLE_UTCL2_PRIORITY__SHIFT 0x6
+#define TCA_CTRL__DISABLE_RB_ONLY_TCA_ARBITER__SHIFT 0x7
+#define TCA_CTRL__TCA_TCC_FGCG_DISABLE__SHIFT 0x8
+#define TCA_CTRL__TCA_TCA_FGCG_DISABLE__SHIFT 0x9
+#define TCA_CTRL__TCA_TCH_FGCG_DISABLE__SHIFT 0xa
+#define TCA_CTRL__TCA_TCX_FGCG_DISABLE__SHIFT 0xb
+#define TCA_CTRL__TCA_RANDOM_REVERSE_PRIORITY_ENABLE__SHIFT 0xc
+#define TCA_CTRL__RTN_CREDIT_THRESHOLD__SHIFT 0xd
+#define TCA_CTRL__ACK_CREDIT_THRESHOLD__SHIFT 0x10
+#define TCA_CTRL__RTN_ARB_MODE__SHIFT 0x13
+#define TCA_CTRL__HOLE_ARB_SHARE_THRESHOLD__SHIFT 0x18
+#define TCA_CTRL__HOLE_ARB_LANE_THRESHOLD__SHIFT 0x1c
+#define TCA_CTRL__HOLE_TIMEOUT_MASK 0x0000000FL
+#define TCA_CTRL__RB_STILL_4_PHASE_MASK 0x00000010L
+#define TCA_CTRL__RB_AS_TCI_MASK 0x00000020L
+#define TCA_CTRL__DISABLE_UTCL2_PRIORITY_MASK 0x00000040L
+#define TCA_CTRL__DISABLE_RB_ONLY_TCA_ARBITER_MASK 0x00000080L
+#define TCA_CTRL__TCA_TCC_FGCG_DISABLE_MASK 0x00000100L
+#define TCA_CTRL__TCA_TCA_FGCG_DISABLE_MASK 0x00000200L
+#define TCA_CTRL__TCA_TCH_FGCG_DISABLE_MASK 0x00000400L
+#define TCA_CTRL__TCA_TCX_FGCG_DISABLE_MASK 0x00000800L
+#define TCA_CTRL__TCA_RANDOM_REVERSE_PRIORITY_ENABLE_MASK 0x00001000L
+#define TCA_CTRL__RTN_CREDIT_THRESHOLD_MASK 0x0000E000L
+#define TCA_CTRL__ACK_CREDIT_THRESHOLD_MASK 0x00070000L
+#define TCA_CTRL__RTN_ARB_MODE_MASK 0x00080000L
+#define TCA_CTRL__HOLE_ARB_SHARE_THRESHOLD_MASK 0x07000000L
+#define TCA_CTRL__HOLE_ARB_LANE_THRESHOLD_MASK 0x70000000L
+//TCA_BURST_MASK
+#define TCA_BURST_MASK__ADDR_MASK__SHIFT 0x0
+#define TCA_BURST_MASK__ADDR_MASK_MASK 0xFFFFFFFFL
+//TCA_BURST_CTRL
+#define TCA_BURST_CTRL__MAX_BURST__SHIFT 0x0
+#define TCA_BURST_CTRL__TCP_DISABLE__SHIFT 0x4
+#define TCA_BURST_CTRL__SQC_DISABLE__SHIFT 0x5
+#define TCA_BURST_CTRL__CPF_DISABLE__SHIFT 0x6
+#define TCA_BURST_CTRL__CPG_DISABLE__SHIFT 0x7
+#define TCA_BURST_CTRL__SQG_DISABLE__SHIFT 0xa
+#define TCA_BURST_CTRL__UTCL2_DISABLE__SHIFT 0xb
+#define TCA_BURST_CTRL__TPI_DISABLE__SHIFT 0xc
+#define TCA_BURST_CTRL__RLC_DISABLE__SHIFT 0xd
+#define TCA_BURST_CTRL__MAX_BURST_MASK 0x00000007L
+#define TCA_BURST_CTRL__TCP_DISABLE_MASK 0x00000010L
+#define TCA_BURST_CTRL__SQC_DISABLE_MASK 0x00000020L
+#define TCA_BURST_CTRL__CPF_DISABLE_MASK 0x00000040L
+#define TCA_BURST_CTRL__CPG_DISABLE_MASK 0x00000080L
+#define TCA_BURST_CTRL__SQG_DISABLE_MASK 0x00000400L
+#define TCA_BURST_CTRL__UTCL2_DISABLE_MASK 0x00000800L
+#define TCA_BURST_CTRL__TPI_DISABLE_MASK 0x00001000L
+#define TCA_BURST_CTRL__RLC_DISABLE_MASK 0x00002000L
+//TCA_DSM_CNTL
+#define TCA_DSM_CNTL__HOLE_FIFO_SED_IRRITATOR_DATA_SEL__SHIFT 0x0
+#define TCA_DSM_CNTL__HOLE_FIFO_SED_IRRITATOR_SINGLE_WRITE__SHIFT 0x2
+#define TCA_DSM_CNTL__REQ_FIFO_SED_IRRITATOR_DATA_SEL__SHIFT 0x3
+#define TCA_DSM_CNTL__REQ_FIFO_SED_IRRITATOR_SINGLE_WRITE__SHIFT 0x5
+#define TCA_DSM_CNTL__HOLE_FIFO_SED_IRRITATOR_DATA_SEL_MASK 0x00000003L
+#define TCA_DSM_CNTL__HOLE_FIFO_SED_IRRITATOR_SINGLE_WRITE_MASK 0x00000004L
+#define TCA_DSM_CNTL__REQ_FIFO_SED_IRRITATOR_DATA_SEL_MASK 0x00000018L
+#define TCA_DSM_CNTL__REQ_FIFO_SED_IRRITATOR_SINGLE_WRITE_MASK 0x00000020L
+//TCA_DSM_CNTL2
+#define TCA_DSM_CNTL2__HOLE_FIFO_SED_ENABLE_ERROR_INJECT__SHIFT 0x0
+#define TCA_DSM_CNTL2__HOLE_FIFO_SED_SELECT_INJECT_DELAY__SHIFT 0x2
+#define TCA_DSM_CNTL2__REQ_FIFO_SED_ENABLE_ERROR_INJECT__SHIFT 0x3
+#define TCA_DSM_CNTL2__REQ_FIFO_SED_SELECT_INJECT_DELAY__SHIFT 0x5
+#define TCA_DSM_CNTL2__INJECT_DELAY__SHIFT 0x1a
+#define TCA_DSM_CNTL2__HOLE_FIFO_SED_ENABLE_ERROR_INJECT_MASK 0x00000003L
+#define TCA_DSM_CNTL2__HOLE_FIFO_SED_SELECT_INJECT_DELAY_MASK 0x00000004L
+#define TCA_DSM_CNTL2__REQ_FIFO_SED_ENABLE_ERROR_INJECT_MASK 0x00000018L
+#define TCA_DSM_CNTL2__REQ_FIFO_SED_SELECT_INJECT_DELAY_MASK 0x00000020L
+#define TCA_DSM_CNTL2__INJECT_DELAY_MASK 0xFC000000L
+//TCX_CTRL
+#define TCX_CTRL__TCX_TCX_FGCG_DISABLE__SHIFT 0x0
+#define TCX_CTRL__TCX_TCR_FGCG_DISABLE__SHIFT 0x1
+#define TCX_CTRL__TCX_TCC_FGCG_DISABLE__SHIFT 0x2
+#define TCX_CTRL__TCX_TCX_FGCG_DISABLE_MASK 0x00000001L
+#define TCX_CTRL__TCX_TCR_FGCG_DISABLE_MASK 0x00000002L
+#define TCX_CTRL__TCX_TCC_FGCG_DISABLE_MASK 0x00000004L
+//TCX_DSM_CNTL
+#define TCX_DSM_CNTL__GROUP0_SED_IRRITATOR_DATA_SEL__SHIFT 0x0
+#define TCX_DSM_CNTL__GROUP1_SED_IRRITATOR_DATA_SEL__SHIFT 0x2
+#define TCX_DSM_CNTL__GROUP2_SED_IRRITATOR_DATA_SEL__SHIFT 0x4
+#define TCX_DSM_CNTL__GROUP4_SED_IRRITATOR_DATA_SEL__SHIFT 0x8
+#define TCX_DSM_CNTL__GROUP5_SED_IRRITATOR_DATA_SEL__SHIFT 0xa
+#define TCX_DSM_CNTL__GROUP6_SED_IRRITATOR_DATA_SEL__SHIFT 0xc
+#define TCX_DSM_CNTL__GROUP8_SED_IRRITATOR_DATA_SEL__SHIFT 0x10
+#define TCX_DSM_CNTL__GROUP9_SED_IRRITATOR_DATA_SEL__SHIFT 0x12
+#define TCX_DSM_CNTL__GROUP10_SED_IRRITATOR_DATA_SEL__SHIFT 0x14
+#define TCX_DSM_CNTL__GROUP13_SED_IRRITATOR_DATA_SEL__SHIFT 0x1a
+#define TCX_DSM_CNTL__GROUP14_SED_IRRITATOR_DATA_SEL__SHIFT 0x1c
+#define TCX_DSM_CNTL__SED_IRRITATOR_SINGLE_WRITE__SHIFT 0x1e
+#define TCX_DSM_CNTL__GROUP0_SED_IRRITATOR_DATA_SEL_MASK 0x00000003L
+#define TCX_DSM_CNTL__GROUP1_SED_IRRITATOR_DATA_SEL_MASK 0x0000000CL
+#define TCX_DSM_CNTL__GROUP2_SED_IRRITATOR_DATA_SEL_MASK 0x00000030L
+#define TCX_DSM_CNTL__GROUP4_SED_IRRITATOR_DATA_SEL_MASK 0x00000300L
+#define TCX_DSM_CNTL__GROUP5_SED_IRRITATOR_DATA_SEL_MASK 0x00000C00L
+#define TCX_DSM_CNTL__GROUP6_SED_IRRITATOR_DATA_SEL_MASK 0x00003000L
+#define TCX_DSM_CNTL__GROUP8_SED_IRRITATOR_DATA_SEL_MASK 0x00030000L
+#define TCX_DSM_CNTL__GROUP9_SED_IRRITATOR_DATA_SEL_MASK 0x000C0000L
+#define TCX_DSM_CNTL__GROUP10_SED_IRRITATOR_DATA_SEL_MASK 0x00300000L
+#define TCX_DSM_CNTL__GROUP13_SED_IRRITATOR_DATA_SEL_MASK 0x0C000000L
+#define TCX_DSM_CNTL__GROUP14_SED_IRRITATOR_DATA_SEL_MASK 0x30000000L
+#define TCX_DSM_CNTL__SED_IRRITATOR_SINGLE_WRITE_MASK 0x40000000L
+//TCX_DSM_CNTL2
+#define TCX_DSM_CNTL2__SED_ENABLE_ERROR_INJECT__SHIFT 0x0
+#define TCX_DSM_CNTL2__SED_SELECT_INJECT_DELAY__SHIFT 0x2
+#define TCX_DSM_CNTL2__INJECT_DELAY__SHIFT 0x1a
+#define TCX_DSM_CNTL2__SED_ENABLE_ERROR_INJECT_MASK 0x00000003L
+#define TCX_DSM_CNTL2__SED_SELECT_INJECT_DELAY_MASK 0x00000004L
+#define TCX_DSM_CNTL2__INJECT_DELAY_MASK 0xFC000000L
+
+
+// addressBlock: xcd0_gc_shdec
+//SPI_SHADER_PGM_RSRC3_PS
+#define SPI_SHADER_PGM_RSRC3_PS__CU_EN__SHIFT 0x0
+#define SPI_SHADER_PGM_RSRC3_PS__WAVE_LIMIT__SHIFT 0x10
+#define SPI_SHADER_PGM_RSRC3_PS__LOCK_LOW_THRESHOLD__SHIFT 0x16
+#define SPI_SHADER_PGM_RSRC3_PS__SIMD_DISABLE__SHIFT 0x1a
+#define SPI_SHADER_PGM_RSRC3_PS__CU_EN_MASK 0x0000FFFFL
+#define SPI_SHADER_PGM_RSRC3_PS__WAVE_LIMIT_MASK 0x003F0000L
+#define SPI_SHADER_PGM_RSRC3_PS__LOCK_LOW_THRESHOLD_MASK 0x03C00000L
+#define SPI_SHADER_PGM_RSRC3_PS__SIMD_DISABLE_MASK 0x3C000000L
+//SPI_SHADER_PGM_LO_PS
+#define SPI_SHADER_PGM_LO_PS__MEM_BASE__SHIFT 0x0
+#define SPI_SHADER_PGM_LO_PS__MEM_BASE_MASK 0xFFFFFFFFL
+//SPI_SHADER_PGM_HI_PS
+#define SPI_SHADER_PGM_HI_PS__MEM_BASE__SHIFT 0x0
+#define SPI_SHADER_PGM_HI_PS__MEM_BASE_MASK 0xFFL
+//SPI_SHADER_PGM_RSRC1_PS
+#define SPI_SHADER_PGM_RSRC1_PS__VGPRS__SHIFT 0x0
+#define SPI_SHADER_PGM_RSRC1_PS__SGPRS__SHIFT 0x6
+#define SPI_SHADER_PGM_RSRC1_PS__PRIORITY__SHIFT 0xa
+#define SPI_SHADER_PGM_RSRC1_PS__FLOAT_MODE__SHIFT 0xc
+#define SPI_SHADER_PGM_RSRC1_PS__PRIV__SHIFT 0x14
+#define SPI_SHADER_PGM_RSRC1_PS__DX10_CLAMP__SHIFT 0x15
+#define SPI_SHADER_PGM_RSRC1_PS__DEBUG_MODE__SHIFT 0x16
+#define SPI_SHADER_PGM_RSRC1_PS__IEEE_MODE__SHIFT 0x17
+#define SPI_SHADER_PGM_RSRC1_PS__CU_GROUP_DISABLE__SHIFT 0x18
+#define SPI_SHADER_PGM_RSRC1_PS__CDBG_USER__SHIFT 0x1c
+#define SPI_SHADER_PGM_RSRC1_PS__FP16_OVFL__SHIFT 0x1d
+#define SPI_SHADER_PGM_RSRC1_PS__VGPRS_MASK 0x0000003FL
+#define SPI_SHADER_PGM_RSRC1_PS__SGPRS_MASK 0x000003C0L
+#define SPI_SHADER_PGM_RSRC1_PS__PRIORITY_MASK 0x00000C00L
+#define SPI_SHADER_PGM_RSRC1_PS__FLOAT_MODE_MASK 0x000FF000L
+#define SPI_SHADER_PGM_RSRC1_PS__PRIV_MASK 0x00100000L
+#define SPI_SHADER_PGM_RSRC1_PS__DX10_CLAMP_MASK 0x00200000L
+#define SPI_SHADER_PGM_RSRC1_PS__DEBUG_MODE_MASK 0x00400000L
+#define SPI_SHADER_PGM_RSRC1_PS__IEEE_MODE_MASK 0x00800000L
+#define SPI_SHADER_PGM_RSRC1_PS__CU_GROUP_DISABLE_MASK 0x01000000L
+#define SPI_SHADER_PGM_RSRC1_PS__CDBG_USER_MASK 0x10000000L
+#define SPI_SHADER_PGM_RSRC1_PS__FP16_OVFL_MASK 0x20000000L
+//SPI_SHADER_PGM_RSRC2_PS
+#define SPI_SHADER_PGM_RSRC2_PS__SCRATCH_EN__SHIFT 0x0
+#define SPI_SHADER_PGM_RSRC2_PS__USER_SGPR__SHIFT 0x1
+#define SPI_SHADER_PGM_RSRC2_PS__TRAP_PRESENT__SHIFT 0x6
+#define SPI_SHADER_PGM_RSRC2_PS__WAVE_CNT_EN__SHIFT 0x7
+#define SPI_SHADER_PGM_RSRC2_PS__EXTRA_LDS_SIZE__SHIFT 0x8
+#define SPI_SHADER_PGM_RSRC2_PS__EXCP_EN__SHIFT 0x10
+#define SPI_SHADER_PGM_RSRC2_PS__LOAD_COLLISION_WAVEID__SHIFT 0x19
+#define SPI_SHADER_PGM_RSRC2_PS__LOAD_INTRAWAVE_COLLISION__SHIFT 0x1a
+#define SPI_SHADER_PGM_RSRC2_PS__SKIP_USGPR0__SHIFT 0x1b
+#define SPI_SHADER_PGM_RSRC2_PS__USER_SGPR_MSB__SHIFT 0x1c
+#define SPI_SHADER_PGM_RSRC2_PS__SCRATCH_EN_MASK 0x00000001L
+#define SPI_SHADER_PGM_RSRC2_PS__USER_SGPR_MASK 0x0000003EL
+#define SPI_SHADER_PGM_RSRC2_PS__TRAP_PRESENT_MASK 0x00000040L
+#define SPI_SHADER_PGM_RSRC2_PS__WAVE_CNT_EN_MASK 0x00000080L
+#define SPI_SHADER_PGM_RSRC2_PS__EXTRA_LDS_SIZE_MASK 0x0000FF00L
+#define SPI_SHADER_PGM_RSRC2_PS__EXCP_EN_MASK 0x01FF0000L
+#define SPI_SHADER_PGM_RSRC2_PS__LOAD_COLLISION_WAVEID_MASK 0x02000000L
+#define SPI_SHADER_PGM_RSRC2_PS__LOAD_INTRAWAVE_COLLISION_MASK 0x04000000L
+#define SPI_SHADER_PGM_RSRC2_PS__SKIP_USGPR0_MASK 0x08000000L
+#define SPI_SHADER_PGM_RSRC2_PS__USER_SGPR_MSB_MASK 0x10000000L
+//SPI_SHADER_USER_DATA_PS_0
+#define SPI_SHADER_USER_DATA_PS_0__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_PS_0__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_PS_1
+#define SPI_SHADER_USER_DATA_PS_1__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_PS_1__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_PS_2
+#define SPI_SHADER_USER_DATA_PS_2__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_PS_2__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_PS_3
+#define SPI_SHADER_USER_DATA_PS_3__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_PS_3__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_PS_4
+#define SPI_SHADER_USER_DATA_PS_4__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_PS_4__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_PS_5
+#define SPI_SHADER_USER_DATA_PS_5__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_PS_5__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_PS_6
+#define SPI_SHADER_USER_DATA_PS_6__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_PS_6__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_PS_7
+#define SPI_SHADER_USER_DATA_PS_7__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_PS_7__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_PS_8
+#define SPI_SHADER_USER_DATA_PS_8__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_PS_8__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_PS_9
+#define SPI_SHADER_USER_DATA_PS_9__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_PS_9__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_PS_10
+#define SPI_SHADER_USER_DATA_PS_10__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_PS_10__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_PS_11
+#define SPI_SHADER_USER_DATA_PS_11__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_PS_11__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_PS_12
+#define SPI_SHADER_USER_DATA_PS_12__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_PS_12__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_PS_13
+#define SPI_SHADER_USER_DATA_PS_13__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_PS_13__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_PS_14
+#define SPI_SHADER_USER_DATA_PS_14__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_PS_14__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_PS_15
+#define SPI_SHADER_USER_DATA_PS_15__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_PS_15__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_PS_16
+#define SPI_SHADER_USER_DATA_PS_16__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_PS_16__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_PS_17
+#define SPI_SHADER_USER_DATA_PS_17__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_PS_17__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_PS_18
+#define SPI_SHADER_USER_DATA_PS_18__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_PS_18__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_PS_19
+#define SPI_SHADER_USER_DATA_PS_19__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_PS_19__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_PS_20
+#define SPI_SHADER_USER_DATA_PS_20__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_PS_20__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_PS_21
+#define SPI_SHADER_USER_DATA_PS_21__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_PS_21__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_PS_22
+#define SPI_SHADER_USER_DATA_PS_22__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_PS_22__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_PS_23
+#define SPI_SHADER_USER_DATA_PS_23__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_PS_23__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_PS_24
+#define SPI_SHADER_USER_DATA_PS_24__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_PS_24__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_PS_25
+#define SPI_SHADER_USER_DATA_PS_25__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_PS_25__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_PS_26
+#define SPI_SHADER_USER_DATA_PS_26__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_PS_26__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_PS_27
+#define SPI_SHADER_USER_DATA_PS_27__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_PS_27__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_PS_28
+#define SPI_SHADER_USER_DATA_PS_28__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_PS_28__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_PS_29
+#define SPI_SHADER_USER_DATA_PS_29__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_PS_29__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_PS_30
+#define SPI_SHADER_USER_DATA_PS_30__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_PS_30__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_PS_31
+#define SPI_SHADER_USER_DATA_PS_31__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_PS_31__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_PGM_RSRC3_VS
+#define SPI_SHADER_PGM_RSRC3_VS__CU_EN__SHIFT 0x0
+#define SPI_SHADER_PGM_RSRC3_VS__WAVE_LIMIT__SHIFT 0x10
+#define SPI_SHADER_PGM_RSRC3_VS__LOCK_LOW_THRESHOLD__SHIFT 0x16
+#define SPI_SHADER_PGM_RSRC3_VS__SIMD_DISABLE__SHIFT 0x1a
+#define SPI_SHADER_PGM_RSRC3_VS__CU_EN_MASK 0x0000FFFFL
+#define SPI_SHADER_PGM_RSRC3_VS__WAVE_LIMIT_MASK 0x003F0000L
+#define SPI_SHADER_PGM_RSRC3_VS__LOCK_LOW_THRESHOLD_MASK 0x03C00000L
+#define SPI_SHADER_PGM_RSRC3_VS__SIMD_DISABLE_MASK 0x3C000000L
+//SPI_SHADER_LATE_ALLOC_VS
+#define SPI_SHADER_LATE_ALLOC_VS__LIMIT__SHIFT 0x0
+#define SPI_SHADER_LATE_ALLOC_VS__LIMIT_MASK 0x0000003FL
+//SPI_SHADER_PGM_LO_VS
+#define SPI_SHADER_PGM_LO_VS__MEM_BASE__SHIFT 0x0
+#define SPI_SHADER_PGM_LO_VS__MEM_BASE_MASK 0xFFFFFFFFL
+//SPI_SHADER_PGM_HI_VS
+#define SPI_SHADER_PGM_HI_VS__MEM_BASE__SHIFT 0x0
+#define SPI_SHADER_PGM_HI_VS__MEM_BASE_MASK 0xFFL
+//SPI_SHADER_PGM_RSRC1_VS
+#define SPI_SHADER_PGM_RSRC1_VS__VGPRS__SHIFT 0x0
+#define SPI_SHADER_PGM_RSRC1_VS__SGPRS__SHIFT 0x6
+#define SPI_SHADER_PGM_RSRC1_VS__PRIORITY__SHIFT 0xa
+#define SPI_SHADER_PGM_RSRC1_VS__FLOAT_MODE__SHIFT 0xc
+#define SPI_SHADER_PGM_RSRC1_VS__PRIV__SHIFT 0x14
+#define SPI_SHADER_PGM_RSRC1_VS__DX10_CLAMP__SHIFT 0x15
+#define SPI_SHADER_PGM_RSRC1_VS__DEBUG_MODE__SHIFT 0x16
+#define SPI_SHADER_PGM_RSRC1_VS__IEEE_MODE__SHIFT 0x17
+#define SPI_SHADER_PGM_RSRC1_VS__VGPR_COMP_CNT__SHIFT 0x18
+#define SPI_SHADER_PGM_RSRC1_VS__CU_GROUP_ENABLE__SHIFT 0x1a
+#define SPI_SHADER_PGM_RSRC1_VS__CDBG_USER__SHIFT 0x1e
+#define SPI_SHADER_PGM_RSRC1_VS__FP16_OVFL__SHIFT 0x1f
+#define SPI_SHADER_PGM_RSRC1_VS__VGPRS_MASK 0x0000003FL
+#define SPI_SHADER_PGM_RSRC1_VS__SGPRS_MASK 0x000003C0L
+#define SPI_SHADER_PGM_RSRC1_VS__PRIORITY_MASK 0x00000C00L
+#define SPI_SHADER_PGM_RSRC1_VS__FLOAT_MODE_MASK 0x000FF000L
+#define SPI_SHADER_PGM_RSRC1_VS__PRIV_MASK 0x00100000L
+#define SPI_SHADER_PGM_RSRC1_VS__DX10_CLAMP_MASK 0x00200000L
+#define SPI_SHADER_PGM_RSRC1_VS__DEBUG_MODE_MASK 0x00400000L
+#define SPI_SHADER_PGM_RSRC1_VS__IEEE_MODE_MASK 0x00800000L
+#define SPI_SHADER_PGM_RSRC1_VS__VGPR_COMP_CNT_MASK 0x03000000L
+#define SPI_SHADER_PGM_RSRC1_VS__CU_GROUP_ENABLE_MASK 0x04000000L
+#define SPI_SHADER_PGM_RSRC1_VS__CDBG_USER_MASK 0x40000000L
+#define SPI_SHADER_PGM_RSRC1_VS__FP16_OVFL_MASK 0x80000000L
+//SPI_SHADER_PGM_RSRC2_VS
+#define SPI_SHADER_PGM_RSRC2_VS__SCRATCH_EN__SHIFT 0x0
+#define SPI_SHADER_PGM_RSRC2_VS__USER_SGPR__SHIFT 0x1
+#define SPI_SHADER_PGM_RSRC2_VS__TRAP_PRESENT__SHIFT 0x6
+#define SPI_SHADER_PGM_RSRC2_VS__OC_LDS_EN__SHIFT 0x7
+#define SPI_SHADER_PGM_RSRC2_VS__SO_BASE0_EN__SHIFT 0x8
+#define SPI_SHADER_PGM_RSRC2_VS__SO_BASE1_EN__SHIFT 0x9
+#define SPI_SHADER_PGM_RSRC2_VS__SO_BASE2_EN__SHIFT 0xa
+#define SPI_SHADER_PGM_RSRC2_VS__SO_BASE3_EN__SHIFT 0xb
+#define SPI_SHADER_PGM_RSRC2_VS__SO_EN__SHIFT 0xc
+#define SPI_SHADER_PGM_RSRC2_VS__EXCP_EN__SHIFT 0xd
+#define SPI_SHADER_PGM_RSRC2_VS__PC_BASE_EN__SHIFT 0x16
+#define SPI_SHADER_PGM_RSRC2_VS__DISPATCH_DRAW_EN__SHIFT 0x18
+#define SPI_SHADER_PGM_RSRC2_VS__SKIP_USGPR0__SHIFT 0x1b
+#define SPI_SHADER_PGM_RSRC2_VS__USER_SGPR_MSB__SHIFT 0x1c
+#define SPI_SHADER_PGM_RSRC2_VS__SCRATCH_EN_MASK 0x00000001L
+#define SPI_SHADER_PGM_RSRC2_VS__USER_SGPR_MASK 0x0000003EL
+#define SPI_SHADER_PGM_RSRC2_VS__TRAP_PRESENT_MASK 0x00000040L
+#define SPI_SHADER_PGM_RSRC2_VS__OC_LDS_EN_MASK 0x00000080L
+#define SPI_SHADER_PGM_RSRC2_VS__SO_BASE0_EN_MASK 0x00000100L
+#define SPI_SHADER_PGM_RSRC2_VS__SO_BASE1_EN_MASK 0x00000200L
+#define SPI_SHADER_PGM_RSRC2_VS__SO_BASE2_EN_MASK 0x00000400L
+#define SPI_SHADER_PGM_RSRC2_VS__SO_BASE3_EN_MASK 0x00000800L
+#define SPI_SHADER_PGM_RSRC2_VS__SO_EN_MASK 0x00001000L
+#define SPI_SHADER_PGM_RSRC2_VS__EXCP_EN_MASK 0x003FE000L
+#define SPI_SHADER_PGM_RSRC2_VS__PC_BASE_EN_MASK 0x00400000L
+#define SPI_SHADER_PGM_RSRC2_VS__DISPATCH_DRAW_EN_MASK 0x01000000L
+#define SPI_SHADER_PGM_RSRC2_VS__SKIP_USGPR0_MASK 0x08000000L
+#define SPI_SHADER_PGM_RSRC2_VS__USER_SGPR_MSB_MASK 0x10000000L
+//SPI_SHADER_USER_DATA_VS_0
+#define SPI_SHADER_USER_DATA_VS_0__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_VS_0__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_VS_1
+#define SPI_SHADER_USER_DATA_VS_1__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_VS_1__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_VS_2
+#define SPI_SHADER_USER_DATA_VS_2__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_VS_2__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_VS_3
+#define SPI_SHADER_USER_DATA_VS_3__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_VS_3__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_VS_4
+#define SPI_SHADER_USER_DATA_VS_4__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_VS_4__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_VS_5
+#define SPI_SHADER_USER_DATA_VS_5__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_VS_5__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_VS_6
+#define SPI_SHADER_USER_DATA_VS_6__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_VS_6__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_VS_7
+#define SPI_SHADER_USER_DATA_VS_7__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_VS_7__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_VS_8
+#define SPI_SHADER_USER_DATA_VS_8__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_VS_8__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_VS_9
+#define SPI_SHADER_USER_DATA_VS_9__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_VS_9__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_VS_10
+#define SPI_SHADER_USER_DATA_VS_10__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_VS_10__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_VS_11
+#define SPI_SHADER_USER_DATA_VS_11__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_VS_11__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_VS_12
+#define SPI_SHADER_USER_DATA_VS_12__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_VS_12__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_VS_13
+#define SPI_SHADER_USER_DATA_VS_13__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_VS_13__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_VS_14
+#define SPI_SHADER_USER_DATA_VS_14__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_VS_14__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_VS_15
+#define SPI_SHADER_USER_DATA_VS_15__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_VS_15__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_VS_16
+#define SPI_SHADER_USER_DATA_VS_16__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_VS_16__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_VS_17
+#define SPI_SHADER_USER_DATA_VS_17__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_VS_17__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_VS_18
+#define SPI_SHADER_USER_DATA_VS_18__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_VS_18__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_VS_19
+#define SPI_SHADER_USER_DATA_VS_19__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_VS_19__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_VS_20
+#define SPI_SHADER_USER_DATA_VS_20__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_VS_20__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_VS_21
+#define SPI_SHADER_USER_DATA_VS_21__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_VS_21__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_VS_22
+#define SPI_SHADER_USER_DATA_VS_22__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_VS_22__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_VS_23
+#define SPI_SHADER_USER_DATA_VS_23__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_VS_23__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_VS_24
+#define SPI_SHADER_USER_DATA_VS_24__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_VS_24__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_VS_25
+#define SPI_SHADER_USER_DATA_VS_25__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_VS_25__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_VS_26
+#define SPI_SHADER_USER_DATA_VS_26__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_VS_26__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_VS_27
+#define SPI_SHADER_USER_DATA_VS_27__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_VS_27__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_VS_28
+#define SPI_SHADER_USER_DATA_VS_28__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_VS_28__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_VS_29
+#define SPI_SHADER_USER_DATA_VS_29__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_VS_29__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_VS_30
+#define SPI_SHADER_USER_DATA_VS_30__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_VS_30__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_VS_31
+#define SPI_SHADER_USER_DATA_VS_31__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_VS_31__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_PGM_RSRC2_GS_VS
+#define SPI_SHADER_PGM_RSRC2_GS_VS__SCRATCH_EN__SHIFT 0x0
+#define SPI_SHADER_PGM_RSRC2_GS_VS__USER_SGPR__SHIFT 0x1
+#define SPI_SHADER_PGM_RSRC2_GS_VS__TRAP_PRESENT__SHIFT 0x6
+#define SPI_SHADER_PGM_RSRC2_GS_VS__EXCP_EN__SHIFT 0x7
+#define SPI_SHADER_PGM_RSRC2_GS_VS__VGPR_COMP_CNT__SHIFT 0x10
+#define SPI_SHADER_PGM_RSRC2_GS_VS__OC_LDS_EN__SHIFT 0x12
+#define SPI_SHADER_PGM_RSRC2_GS_VS__LDS_SIZE__SHIFT 0x13
+#define SPI_SHADER_PGM_RSRC2_GS_VS__SKIP_USGPR0__SHIFT 0x1b
+#define SPI_SHADER_PGM_RSRC2_GS_VS__USER_SGPR_MSB__SHIFT 0x1c
+#define SPI_SHADER_PGM_RSRC2_GS_VS__SCRATCH_EN_MASK 0x00000001L
+#define SPI_SHADER_PGM_RSRC2_GS_VS__USER_SGPR_MASK 0x0000003EL
+#define SPI_SHADER_PGM_RSRC2_GS_VS__TRAP_PRESENT_MASK 0x00000040L
+#define SPI_SHADER_PGM_RSRC2_GS_VS__EXCP_EN_MASK 0x0000FF80L
+#define SPI_SHADER_PGM_RSRC2_GS_VS__VGPR_COMP_CNT_MASK 0x00030000L
+#define SPI_SHADER_PGM_RSRC2_GS_VS__OC_LDS_EN_MASK 0x00040000L
+#define SPI_SHADER_PGM_RSRC2_GS_VS__LDS_SIZE_MASK 0x07F80000L
+#define SPI_SHADER_PGM_RSRC2_GS_VS__SKIP_USGPR0_MASK 0x08000000L
+#define SPI_SHADER_PGM_RSRC2_GS_VS__USER_SGPR_MSB_MASK 0x10000000L
+//SPI_SHADER_PGM_RSRC4_GS
+#define SPI_SHADER_PGM_RSRC4_GS__GROUP_FIFO_DEPTH__SHIFT 0x0
+#define SPI_SHADER_PGM_RSRC4_GS__SPI_SHADER_LATE_ALLOC_GS__SHIFT 0x7
+#define SPI_SHADER_PGM_RSRC4_GS__GROUP_FIFO_DEPTH_MASK 0x0000007FL
+#define SPI_SHADER_PGM_RSRC4_GS__SPI_SHADER_LATE_ALLOC_GS_MASK 0x00003F80L
+//SPI_SHADER_USER_DATA_ADDR_LO_GS
+#define SPI_SHADER_USER_DATA_ADDR_LO_GS__MEM_BASE__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_ADDR_LO_GS__MEM_BASE_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_ADDR_HI_GS
+#define SPI_SHADER_USER_DATA_ADDR_HI_GS__MEM_BASE__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_ADDR_HI_GS__MEM_BASE_MASK 0xFFFFFFFFL
+//SPI_SHADER_PGM_LO_ES
+#define SPI_SHADER_PGM_LO_ES__MEM_BASE__SHIFT 0x0
+#define SPI_SHADER_PGM_LO_ES__MEM_BASE_MASK 0xFFFFFFFFL
+//SPI_SHADER_PGM_HI_ES
+#define SPI_SHADER_PGM_HI_ES__MEM_BASE__SHIFT 0x0
+#define SPI_SHADER_PGM_HI_ES__MEM_BASE_MASK 0xFFL
+//SPI_SHADER_PGM_RSRC3_GS
+#define SPI_SHADER_PGM_RSRC3_GS__CU_EN__SHIFT 0x0
+#define SPI_SHADER_PGM_RSRC3_GS__WAVE_LIMIT__SHIFT 0x10
+#define SPI_SHADER_PGM_RSRC3_GS__LOCK_LOW_THRESHOLD__SHIFT 0x16
+#define SPI_SHADER_PGM_RSRC3_GS__SIMD_DISABLE__SHIFT 0x1a
+#define SPI_SHADER_PGM_RSRC3_GS__CU_EN_MASK 0x0000FFFFL
+#define SPI_SHADER_PGM_RSRC3_GS__WAVE_LIMIT_MASK 0x003F0000L
+#define SPI_SHADER_PGM_RSRC3_GS__LOCK_LOW_THRESHOLD_MASK 0x03C00000L
+#define SPI_SHADER_PGM_RSRC3_GS__SIMD_DISABLE_MASK 0x3C000000L
+//SPI_SHADER_PGM_LO_GS
+#define SPI_SHADER_PGM_LO_GS__MEM_BASE__SHIFT 0x0
+#define SPI_SHADER_PGM_LO_GS__MEM_BASE_MASK 0xFFFFFFFFL
+//SPI_SHADER_PGM_HI_GS
+#define SPI_SHADER_PGM_HI_GS__MEM_BASE__SHIFT 0x0
+#define SPI_SHADER_PGM_HI_GS__MEM_BASE_MASK 0xFFL
+//SPI_SHADER_PGM_RSRC1_GS
+#define SPI_SHADER_PGM_RSRC1_GS__VGPRS__SHIFT 0x0
+#define SPI_SHADER_PGM_RSRC1_GS__SGPRS__SHIFT 0x6
+#define SPI_SHADER_PGM_RSRC1_GS__PRIORITY__SHIFT 0xa
+#define SPI_SHADER_PGM_RSRC1_GS__FLOAT_MODE__SHIFT 0xc
+#define SPI_SHADER_PGM_RSRC1_GS__PRIV__SHIFT 0x14
+#define SPI_SHADER_PGM_RSRC1_GS__DX10_CLAMP__SHIFT 0x15
+#define SPI_SHADER_PGM_RSRC1_GS__DEBUG_MODE__SHIFT 0x16
+#define SPI_SHADER_PGM_RSRC1_GS__IEEE_MODE__SHIFT 0x17
+#define SPI_SHADER_PGM_RSRC1_GS__CU_GROUP_ENABLE__SHIFT 0x18
+#define SPI_SHADER_PGM_RSRC1_GS__CDBG_USER__SHIFT 0x1c
+#define SPI_SHADER_PGM_RSRC1_GS__GS_VGPR_COMP_CNT__SHIFT 0x1d
+#define SPI_SHADER_PGM_RSRC1_GS__FP16_OVFL__SHIFT 0x1f
+#define SPI_SHADER_PGM_RSRC1_GS__VGPRS_MASK 0x0000003FL
+#define SPI_SHADER_PGM_RSRC1_GS__SGPRS_MASK 0x000003C0L
+#define SPI_SHADER_PGM_RSRC1_GS__PRIORITY_MASK 0x00000C00L
+#define SPI_SHADER_PGM_RSRC1_GS__FLOAT_MODE_MASK 0x000FF000L
+#define SPI_SHADER_PGM_RSRC1_GS__PRIV_MASK 0x00100000L
+#define SPI_SHADER_PGM_RSRC1_GS__DX10_CLAMP_MASK 0x00200000L
+#define SPI_SHADER_PGM_RSRC1_GS__DEBUG_MODE_MASK 0x00400000L
+#define SPI_SHADER_PGM_RSRC1_GS__IEEE_MODE_MASK 0x00800000L
+#define SPI_SHADER_PGM_RSRC1_GS__CU_GROUP_ENABLE_MASK 0x01000000L
+#define SPI_SHADER_PGM_RSRC1_GS__CDBG_USER_MASK 0x10000000L
+#define SPI_SHADER_PGM_RSRC1_GS__GS_VGPR_COMP_CNT_MASK 0x60000000L
+#define SPI_SHADER_PGM_RSRC1_GS__FP16_OVFL_MASK 0x80000000L
+//SPI_SHADER_PGM_RSRC2_GS
+#define SPI_SHADER_PGM_RSRC2_GS__SCRATCH_EN__SHIFT 0x0
+#define SPI_SHADER_PGM_RSRC2_GS__USER_SGPR__SHIFT 0x1
+#define SPI_SHADER_PGM_RSRC2_GS__TRAP_PRESENT__SHIFT 0x6
+#define SPI_SHADER_PGM_RSRC2_GS__EXCP_EN__SHIFT 0x7
+#define SPI_SHADER_PGM_RSRC2_GS__ES_VGPR_COMP_CNT__SHIFT 0x10
+#define SPI_SHADER_PGM_RSRC2_GS__OC_LDS_EN__SHIFT 0x12
+#define SPI_SHADER_PGM_RSRC2_GS__LDS_SIZE__SHIFT 0x13
+#define SPI_SHADER_PGM_RSRC2_GS__SKIP_USGPR0__SHIFT 0x1b
+#define SPI_SHADER_PGM_RSRC2_GS__USER_SGPR_MSB__SHIFT 0x1c
+#define SPI_SHADER_PGM_RSRC2_GS__SCRATCH_EN_MASK 0x00000001L
+#define SPI_SHADER_PGM_RSRC2_GS__USER_SGPR_MASK 0x0000003EL
+#define SPI_SHADER_PGM_RSRC2_GS__TRAP_PRESENT_MASK 0x00000040L
+#define SPI_SHADER_PGM_RSRC2_GS__EXCP_EN_MASK 0x0000FF80L
+#define SPI_SHADER_PGM_RSRC2_GS__ES_VGPR_COMP_CNT_MASK 0x00030000L
+#define SPI_SHADER_PGM_RSRC2_GS__OC_LDS_EN_MASK 0x00040000L
+#define SPI_SHADER_PGM_RSRC2_GS__LDS_SIZE_MASK 0x07F80000L
+#define SPI_SHADER_PGM_RSRC2_GS__SKIP_USGPR0_MASK 0x08000000L
+#define SPI_SHADER_PGM_RSRC2_GS__USER_SGPR_MSB_MASK 0x10000000L
+//SPI_SHADER_USER_DATA_ES_0
+#define SPI_SHADER_USER_DATA_ES_0__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_ES_0__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_ES_1
+#define SPI_SHADER_USER_DATA_ES_1__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_ES_1__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_ES_2
+#define SPI_SHADER_USER_DATA_ES_2__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_ES_2__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_ES_3
+#define SPI_SHADER_USER_DATA_ES_3__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_ES_3__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_ES_4
+#define SPI_SHADER_USER_DATA_ES_4__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_ES_4__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_ES_5
+#define SPI_SHADER_USER_DATA_ES_5__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_ES_5__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_ES_6
+#define SPI_SHADER_USER_DATA_ES_6__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_ES_6__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_ES_7
+#define SPI_SHADER_USER_DATA_ES_7__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_ES_7__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_ES_8
+#define SPI_SHADER_USER_DATA_ES_8__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_ES_8__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_ES_9
+#define SPI_SHADER_USER_DATA_ES_9__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_ES_9__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_ES_10
+#define SPI_SHADER_USER_DATA_ES_10__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_ES_10__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_ES_11
+#define SPI_SHADER_USER_DATA_ES_11__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_ES_11__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_ES_12
+#define SPI_SHADER_USER_DATA_ES_12__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_ES_12__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_ES_13
+#define SPI_SHADER_USER_DATA_ES_13__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_ES_13__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_ES_14
+#define SPI_SHADER_USER_DATA_ES_14__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_ES_14__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_ES_15
+#define SPI_SHADER_USER_DATA_ES_15__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_ES_15__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_ES_16
+#define SPI_SHADER_USER_DATA_ES_16__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_ES_16__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_ES_17
+#define SPI_SHADER_USER_DATA_ES_17__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_ES_17__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_ES_18
+#define SPI_SHADER_USER_DATA_ES_18__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_ES_18__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_ES_19
+#define SPI_SHADER_USER_DATA_ES_19__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_ES_19__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_ES_20
+#define SPI_SHADER_USER_DATA_ES_20__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_ES_20__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_ES_21
+#define SPI_SHADER_USER_DATA_ES_21__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_ES_21__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_ES_22
+#define SPI_SHADER_USER_DATA_ES_22__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_ES_22__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_ES_23
+#define SPI_SHADER_USER_DATA_ES_23__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_ES_23__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_ES_24
+#define SPI_SHADER_USER_DATA_ES_24__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_ES_24__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_ES_25
+#define SPI_SHADER_USER_DATA_ES_25__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_ES_25__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_ES_26
+#define SPI_SHADER_USER_DATA_ES_26__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_ES_26__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_ES_27
+#define SPI_SHADER_USER_DATA_ES_27__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_ES_27__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_ES_28
+#define SPI_SHADER_USER_DATA_ES_28__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_ES_28__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_ES_29
+#define SPI_SHADER_USER_DATA_ES_29__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_ES_29__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_ES_30
+#define SPI_SHADER_USER_DATA_ES_30__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_ES_30__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_ES_31
+#define SPI_SHADER_USER_DATA_ES_31__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_ES_31__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_PGM_RSRC4_HS
+#define SPI_SHADER_PGM_RSRC4_HS__GROUP_FIFO_DEPTH__SHIFT 0x0
+#define SPI_SHADER_PGM_RSRC4_HS__GROUP_FIFO_DEPTH_MASK 0x0000007FL
+//SPI_SHADER_USER_DATA_ADDR_LO_HS
+#define SPI_SHADER_USER_DATA_ADDR_LO_HS__MEM_BASE__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_ADDR_LO_HS__MEM_BASE_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_ADDR_HI_HS
+#define SPI_SHADER_USER_DATA_ADDR_HI_HS__MEM_BASE__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_ADDR_HI_HS__MEM_BASE_MASK 0xFFFFFFFFL
+//SPI_SHADER_PGM_LO_LS
+#define SPI_SHADER_PGM_LO_LS__MEM_BASE__SHIFT 0x0
+#define SPI_SHADER_PGM_LO_LS__MEM_BASE_MASK 0xFFFFFFFFL
+//SPI_SHADER_PGM_HI_LS
+#define SPI_SHADER_PGM_HI_LS__MEM_BASE__SHIFT 0x0
+#define SPI_SHADER_PGM_HI_LS__MEM_BASE_MASK 0xFFL
+//SPI_SHADER_PGM_RSRC3_HS
+#define SPI_SHADER_PGM_RSRC3_HS__WAVE_LIMIT__SHIFT 0x0
+#define SPI_SHADER_PGM_RSRC3_HS__LOCK_LOW_THRESHOLD__SHIFT 0x6
+#define SPI_SHADER_PGM_RSRC3_HS__SIMD_DISABLE__SHIFT 0xa
+#define SPI_SHADER_PGM_RSRC3_HS__CU_EN__SHIFT 0x10
+#define SPI_SHADER_PGM_RSRC3_HS__WAVE_LIMIT_MASK 0x0000003FL
+#define SPI_SHADER_PGM_RSRC3_HS__LOCK_LOW_THRESHOLD_MASK 0x000003C0L
+#define SPI_SHADER_PGM_RSRC3_HS__SIMD_DISABLE_MASK 0x00003C00L
+#define SPI_SHADER_PGM_RSRC3_HS__CU_EN_MASK 0xFFFF0000L
+//SPI_SHADER_PGM_LO_HS
+#define SPI_SHADER_PGM_LO_HS__MEM_BASE__SHIFT 0x0
+#define SPI_SHADER_PGM_LO_HS__MEM_BASE_MASK 0xFFFFFFFFL
+//SPI_SHADER_PGM_HI_HS
+#define SPI_SHADER_PGM_HI_HS__MEM_BASE__SHIFT 0x0
+#define SPI_SHADER_PGM_HI_HS__MEM_BASE_MASK 0xFFL
+//SPI_SHADER_PGM_RSRC1_HS
+#define SPI_SHADER_PGM_RSRC1_HS__VGPRS__SHIFT 0x0
+#define SPI_SHADER_PGM_RSRC1_HS__SGPRS__SHIFT 0x6
+#define SPI_SHADER_PGM_RSRC1_HS__PRIORITY__SHIFT 0xa
+#define SPI_SHADER_PGM_RSRC1_HS__FLOAT_MODE__SHIFT 0xc
+#define SPI_SHADER_PGM_RSRC1_HS__PRIV__SHIFT 0x14
+#define SPI_SHADER_PGM_RSRC1_HS__DX10_CLAMP__SHIFT 0x15
+#define SPI_SHADER_PGM_RSRC1_HS__DEBUG_MODE__SHIFT 0x16
+#define SPI_SHADER_PGM_RSRC1_HS__IEEE_MODE__SHIFT 0x17
+#define SPI_SHADER_PGM_RSRC1_HS__CDBG_USER__SHIFT 0x1b
+#define SPI_SHADER_PGM_RSRC1_HS__LS_VGPR_COMP_CNT__SHIFT 0x1c
+#define SPI_SHADER_PGM_RSRC1_HS__FP16_OVFL__SHIFT 0x1e
+#define SPI_SHADER_PGM_RSRC1_HS__VGPRS_MASK 0x0000003FL
+#define SPI_SHADER_PGM_RSRC1_HS__SGPRS_MASK 0x000003C0L
+#define SPI_SHADER_PGM_RSRC1_HS__PRIORITY_MASK 0x00000C00L
+#define SPI_SHADER_PGM_RSRC1_HS__FLOAT_MODE_MASK 0x000FF000L
+#define SPI_SHADER_PGM_RSRC1_HS__PRIV_MASK 0x00100000L
+#define SPI_SHADER_PGM_RSRC1_HS__DX10_CLAMP_MASK 0x00200000L
+#define SPI_SHADER_PGM_RSRC1_HS__DEBUG_MODE_MASK 0x00400000L
+#define SPI_SHADER_PGM_RSRC1_HS__IEEE_MODE_MASK 0x00800000L
+#define SPI_SHADER_PGM_RSRC1_HS__CDBG_USER_MASK 0x08000000L
+#define SPI_SHADER_PGM_RSRC1_HS__LS_VGPR_COMP_CNT_MASK 0x30000000L
+#define SPI_SHADER_PGM_RSRC1_HS__FP16_OVFL_MASK 0x40000000L
+//SPI_SHADER_PGM_RSRC2_HS
+#define SPI_SHADER_PGM_RSRC2_HS__SCRATCH_EN__SHIFT 0x0
+#define SPI_SHADER_PGM_RSRC2_HS__USER_SGPR__SHIFT 0x1
+#define SPI_SHADER_PGM_RSRC2_HS__TRAP_PRESENT__SHIFT 0x6
+#define SPI_SHADER_PGM_RSRC2_HS__EXCP_EN__SHIFT 0x7
+#define SPI_SHADER_PGM_RSRC2_HS__LDS_SIZE__SHIFT 0x10
+#define SPI_SHADER_PGM_RSRC2_HS__SKIP_USGPR0__SHIFT 0x1b
+#define SPI_SHADER_PGM_RSRC2_HS__USER_SGPR_MSB__SHIFT 0x1c
+#define SPI_SHADER_PGM_RSRC2_HS__SCRATCH_EN_MASK 0x00000001L
+#define SPI_SHADER_PGM_RSRC2_HS__USER_SGPR_MASK 0x0000003EL
+#define SPI_SHADER_PGM_RSRC2_HS__TRAP_PRESENT_MASK 0x00000040L
+#define SPI_SHADER_PGM_RSRC2_HS__EXCP_EN_MASK 0x0000FF80L
+#define SPI_SHADER_PGM_RSRC2_HS__LDS_SIZE_MASK 0x01FF0000L
+#define SPI_SHADER_PGM_RSRC2_HS__SKIP_USGPR0_MASK 0x08000000L
+#define SPI_SHADER_PGM_RSRC2_HS__USER_SGPR_MSB_MASK 0x10000000L
+//SPI_SHADER_USER_DATA_LS_0
+#define SPI_SHADER_USER_DATA_LS_0__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_LS_0__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_LS_1
+#define SPI_SHADER_USER_DATA_LS_1__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_LS_1__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_LS_2
+#define SPI_SHADER_USER_DATA_LS_2__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_LS_2__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_LS_3
+#define SPI_SHADER_USER_DATA_LS_3__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_LS_3__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_LS_4
+#define SPI_SHADER_USER_DATA_LS_4__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_LS_4__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_LS_5
+#define SPI_SHADER_USER_DATA_LS_5__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_LS_5__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_LS_6
+#define SPI_SHADER_USER_DATA_LS_6__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_LS_6__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_LS_7
+#define SPI_SHADER_USER_DATA_LS_7__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_LS_7__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_LS_8
+#define SPI_SHADER_USER_DATA_LS_8__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_LS_8__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_LS_9
+#define SPI_SHADER_USER_DATA_LS_9__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_LS_9__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_LS_10
+#define SPI_SHADER_USER_DATA_LS_10__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_LS_10__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_LS_11
+#define SPI_SHADER_USER_DATA_LS_11__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_LS_11__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_LS_12
+#define SPI_SHADER_USER_DATA_LS_12__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_LS_12__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_LS_13
+#define SPI_SHADER_USER_DATA_LS_13__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_LS_13__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_LS_14
+#define SPI_SHADER_USER_DATA_LS_14__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_LS_14__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_LS_15
+#define SPI_SHADER_USER_DATA_LS_15__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_LS_15__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_LS_16
+#define SPI_SHADER_USER_DATA_LS_16__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_LS_16__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_LS_17
+#define SPI_SHADER_USER_DATA_LS_17__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_LS_17__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_LS_18
+#define SPI_SHADER_USER_DATA_LS_18__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_LS_18__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_LS_19
+#define SPI_SHADER_USER_DATA_LS_19__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_LS_19__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_LS_20
+#define SPI_SHADER_USER_DATA_LS_20__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_LS_20__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_LS_21
+#define SPI_SHADER_USER_DATA_LS_21__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_LS_21__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_LS_22
+#define SPI_SHADER_USER_DATA_LS_22__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_LS_22__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_LS_23
+#define SPI_SHADER_USER_DATA_LS_23__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_LS_23__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_LS_24
+#define SPI_SHADER_USER_DATA_LS_24__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_LS_24__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_LS_25
+#define SPI_SHADER_USER_DATA_LS_25__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_LS_25__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_LS_26
+#define SPI_SHADER_USER_DATA_LS_26__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_LS_26__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_LS_27
+#define SPI_SHADER_USER_DATA_LS_27__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_LS_27__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_LS_28
+#define SPI_SHADER_USER_DATA_LS_28__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_LS_28__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_LS_29
+#define SPI_SHADER_USER_DATA_LS_29__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_LS_29__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_LS_30
+#define SPI_SHADER_USER_DATA_LS_30__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_LS_30__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_LS_31
+#define SPI_SHADER_USER_DATA_LS_31__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_LS_31__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_COMMON_0
+#define SPI_SHADER_USER_DATA_COMMON_0__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_COMMON_0__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_COMMON_1
+#define SPI_SHADER_USER_DATA_COMMON_1__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_COMMON_1__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_COMMON_2
+#define SPI_SHADER_USER_DATA_COMMON_2__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_COMMON_2__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_COMMON_3
+#define SPI_SHADER_USER_DATA_COMMON_3__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_COMMON_3__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_COMMON_4
+#define SPI_SHADER_USER_DATA_COMMON_4__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_COMMON_4__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_COMMON_5
+#define SPI_SHADER_USER_DATA_COMMON_5__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_COMMON_5__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_COMMON_6
+#define SPI_SHADER_USER_DATA_COMMON_6__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_COMMON_6__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_COMMON_7
+#define SPI_SHADER_USER_DATA_COMMON_7__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_COMMON_7__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_COMMON_8
+#define SPI_SHADER_USER_DATA_COMMON_8__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_COMMON_8__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_COMMON_9
+#define SPI_SHADER_USER_DATA_COMMON_9__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_COMMON_9__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_COMMON_10
+#define SPI_SHADER_USER_DATA_COMMON_10__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_COMMON_10__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_COMMON_11
+#define SPI_SHADER_USER_DATA_COMMON_11__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_COMMON_11__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_COMMON_12
+#define SPI_SHADER_USER_DATA_COMMON_12__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_COMMON_12__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_COMMON_13
+#define SPI_SHADER_USER_DATA_COMMON_13__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_COMMON_13__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_COMMON_14
+#define SPI_SHADER_USER_DATA_COMMON_14__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_COMMON_14__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_COMMON_15
+#define SPI_SHADER_USER_DATA_COMMON_15__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_COMMON_15__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_COMMON_16
+#define SPI_SHADER_USER_DATA_COMMON_16__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_COMMON_16__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_COMMON_17
+#define SPI_SHADER_USER_DATA_COMMON_17__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_COMMON_17__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_COMMON_18
+#define SPI_SHADER_USER_DATA_COMMON_18__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_COMMON_18__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_COMMON_19
+#define SPI_SHADER_USER_DATA_COMMON_19__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_COMMON_19__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_COMMON_20
+#define SPI_SHADER_USER_DATA_COMMON_20__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_COMMON_20__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_COMMON_21
+#define SPI_SHADER_USER_DATA_COMMON_21__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_COMMON_21__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_COMMON_22
+#define SPI_SHADER_USER_DATA_COMMON_22__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_COMMON_22__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_COMMON_23
+#define SPI_SHADER_USER_DATA_COMMON_23__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_COMMON_23__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_COMMON_24
+#define SPI_SHADER_USER_DATA_COMMON_24__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_COMMON_24__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_COMMON_25
+#define SPI_SHADER_USER_DATA_COMMON_25__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_COMMON_25__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_COMMON_26
+#define SPI_SHADER_USER_DATA_COMMON_26__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_COMMON_26__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_COMMON_27
+#define SPI_SHADER_USER_DATA_COMMON_27__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_COMMON_27__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_COMMON_28
+#define SPI_SHADER_USER_DATA_COMMON_28__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_COMMON_28__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_COMMON_29
+#define SPI_SHADER_USER_DATA_COMMON_29__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_COMMON_29__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_COMMON_30
+#define SPI_SHADER_USER_DATA_COMMON_30__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_COMMON_30__DATA_MASK 0xFFFFFFFFL
+//SPI_SHADER_USER_DATA_COMMON_31
+#define SPI_SHADER_USER_DATA_COMMON_31__DATA__SHIFT 0x0
+#define SPI_SHADER_USER_DATA_COMMON_31__DATA_MASK 0xFFFFFFFFL
+//COMPUTE_DISPATCH_INITIATOR
+#define COMPUTE_DISPATCH_INITIATOR__COMPUTE_SHADER_EN__SHIFT 0x0
+#define COMPUTE_DISPATCH_INITIATOR__PARTIAL_TG_EN__SHIFT 0x1
+#define COMPUTE_DISPATCH_INITIATOR__FORCE_START_AT_000__SHIFT 0x2
+#define COMPUTE_DISPATCH_INITIATOR__ORDERED_APPEND_ENBL__SHIFT 0x3
+#define COMPUTE_DISPATCH_INITIATOR__ORDERED_APPEND_MODE__SHIFT 0x4
+#define COMPUTE_DISPATCH_INITIATOR__USE_THREAD_DIMENSIONS__SHIFT 0x5
+#define COMPUTE_DISPATCH_INITIATOR__ORDER_MODE__SHIFT 0x6
+#define COMPUTE_DISPATCH_INITIATOR__SCALAR_L1_INV_VOL__SHIFT 0xa
+#define COMPUTE_DISPATCH_INITIATOR__VECTOR_L1_INV_VOL__SHIFT 0xb
+#define COMPUTE_DISPATCH_INITIATOR__RESERVED__SHIFT 0xc
+#define COMPUTE_DISPATCH_INITIATOR__RESTORE__SHIFT 0xe
+#define COMPUTE_DISPATCH_INITIATOR__COMPUTE_SHADER_EN_MASK 0x00000001L
+#define COMPUTE_DISPATCH_INITIATOR__PARTIAL_TG_EN_MASK 0x00000002L
+#define COMPUTE_DISPATCH_INITIATOR__FORCE_START_AT_000_MASK 0x00000004L
+#define COMPUTE_DISPATCH_INITIATOR__ORDERED_APPEND_ENBL_MASK 0x00000008L
+#define COMPUTE_DISPATCH_INITIATOR__ORDERED_APPEND_MODE_MASK 0x00000010L
+#define COMPUTE_DISPATCH_INITIATOR__USE_THREAD_DIMENSIONS_MASK 0x00000020L
+#define COMPUTE_DISPATCH_INITIATOR__ORDER_MODE_MASK 0x00000040L
+#define COMPUTE_DISPATCH_INITIATOR__SCALAR_L1_INV_VOL_MASK 0x00000400L
+#define COMPUTE_DISPATCH_INITIATOR__VECTOR_L1_INV_VOL_MASK 0x00000800L
+#define COMPUTE_DISPATCH_INITIATOR__RESERVED_MASK 0x00001000L
+#define COMPUTE_DISPATCH_INITIATOR__RESTORE_MASK 0x00004000L
+//COMPUTE_DIM_X
+#define COMPUTE_DIM_X__SIZE__SHIFT 0x0
+#define COMPUTE_DIM_X__SIZE_MASK 0xFFFFFFFFL
+//COMPUTE_DIM_Y
+#define COMPUTE_DIM_Y__SIZE__SHIFT 0x0
+#define COMPUTE_DIM_Y__SIZE_MASK 0xFFFFFFFFL
+//COMPUTE_DIM_Z
+#define COMPUTE_DIM_Z__SIZE__SHIFT 0x0
+#define COMPUTE_DIM_Z__SIZE_MASK 0xFFFFFFFFL
+//COMPUTE_START_X
+#define COMPUTE_START_X__START__SHIFT 0x0
+#define COMPUTE_START_X__START_MASK 0xFFFFFFFFL
+//COMPUTE_START_Y
+#define COMPUTE_START_Y__START__SHIFT 0x0
+#define COMPUTE_START_Y__START_MASK 0xFFFFFFFFL
+//COMPUTE_START_Z
+#define COMPUTE_START_Z__START__SHIFT 0x0
+#define COMPUTE_START_Z__START_MASK 0xFFFFFFFFL
+//COMPUTE_NUM_THREAD_X
+#define COMPUTE_NUM_THREAD_X__NUM_THREAD_FULL__SHIFT 0x0
+#define COMPUTE_NUM_THREAD_X__NUM_THREAD_PARTIAL__SHIFT 0x10
+#define COMPUTE_NUM_THREAD_X__NUM_THREAD_FULL_MASK 0x0000FFFFL
+#define COMPUTE_NUM_THREAD_X__NUM_THREAD_PARTIAL_MASK 0xFFFF0000L
+//COMPUTE_NUM_THREAD_Y
+#define COMPUTE_NUM_THREAD_Y__NUM_THREAD_FULL__SHIFT 0x0
+#define COMPUTE_NUM_THREAD_Y__NUM_THREAD_PARTIAL__SHIFT 0x10
+#define COMPUTE_NUM_THREAD_Y__NUM_THREAD_FULL_MASK 0x0000FFFFL
+#define COMPUTE_NUM_THREAD_Y__NUM_THREAD_PARTIAL_MASK 0xFFFF0000L
+//COMPUTE_NUM_THREAD_Z
+#define COMPUTE_NUM_THREAD_Z__NUM_THREAD_FULL__SHIFT 0x0
+#define COMPUTE_NUM_THREAD_Z__NUM_THREAD_PARTIAL__SHIFT 0x10
+#define COMPUTE_NUM_THREAD_Z__NUM_THREAD_FULL_MASK 0x0000FFFFL
+#define COMPUTE_NUM_THREAD_Z__NUM_THREAD_PARTIAL_MASK 0xFFFF0000L
+//COMPUTE_PIPELINESTAT_ENABLE
+#define COMPUTE_PIPELINESTAT_ENABLE__PIPELINESTAT_ENABLE__SHIFT 0x0
+#define COMPUTE_PIPELINESTAT_ENABLE__PIPELINESTAT_ENABLE_MASK 0x00000001L
+//COMPUTE_PERFCOUNT_ENABLE
+#define COMPUTE_PERFCOUNT_ENABLE__PERFCOUNT_ENABLE__SHIFT 0x0
+#define COMPUTE_PERFCOUNT_ENABLE__PERFCOUNT_ENABLE_MASK 0x00000001L
+//COMPUTE_PGM_LO
+#define COMPUTE_PGM_LO__DATA__SHIFT 0x0
+#define COMPUTE_PGM_LO__DATA_MASK 0xFFFFFFFFL
+//COMPUTE_PGM_HI
+#define COMPUTE_PGM_HI__DATA__SHIFT 0x0
+#define COMPUTE_PGM_HI__DATA_MASK 0x000000FFL
+//COMPUTE_DISPATCH_PKT_ADDR_LO
+#define COMPUTE_DISPATCH_PKT_ADDR_LO__DATA__SHIFT 0x0
+#define COMPUTE_DISPATCH_PKT_ADDR_LO__DATA_MASK 0xFFFFFFFFL
+//COMPUTE_DISPATCH_PKT_ADDR_HI
+#define COMPUTE_DISPATCH_PKT_ADDR_HI__DATA__SHIFT 0x0
+#define COMPUTE_DISPATCH_PKT_ADDR_HI__DATA_MASK 0x000000FFL
+//COMPUTE_DISPATCH_SCRATCH_BASE_LO
+#define COMPUTE_DISPATCH_SCRATCH_BASE_LO__DATA__SHIFT 0x0
+#define COMPUTE_DISPATCH_SCRATCH_BASE_LO__DATA_MASK 0xFFFFFFFFL
+//COMPUTE_DISPATCH_SCRATCH_BASE_HI
+#define COMPUTE_DISPATCH_SCRATCH_BASE_HI__DATA__SHIFT 0x0
+#define COMPUTE_DISPATCH_SCRATCH_BASE_HI__DATA_MASK 0x000000FFL
+//COMPUTE_PGM_RSRC1
+#define COMPUTE_PGM_RSRC1__VGPRS__SHIFT 0x0
+#define COMPUTE_PGM_RSRC1__SGPRS__SHIFT 0x6
+#define COMPUTE_PGM_RSRC1__PRIORITY__SHIFT 0xa
+#define COMPUTE_PGM_RSRC1__FLOAT_MODE__SHIFT 0xc
+#define COMPUTE_PGM_RSRC1__PRIV__SHIFT 0x14
+#define COMPUTE_PGM_RSRC1__DX10_CLAMP__SHIFT 0x15
+#define COMPUTE_PGM_RSRC1__DEBUG_MODE__SHIFT 0x16
+#define COMPUTE_PGM_RSRC1__IEEE_MODE__SHIFT 0x17
+#define COMPUTE_PGM_RSRC1__BULKY__SHIFT 0x18
+#define COMPUTE_PGM_RSRC1__CDBG_USER__SHIFT 0x19
+#define COMPUTE_PGM_RSRC1__FP16_OVFL__SHIFT 0x1a
+#define COMPUTE_PGM_RSRC1__VGPRS_MASK 0x0000003FL
+#define COMPUTE_PGM_RSRC1__SGPRS_MASK 0x000003C0L
+#define COMPUTE_PGM_RSRC1__PRIORITY_MASK 0x00000C00L
+#define COMPUTE_PGM_RSRC1__FLOAT_MODE_MASK 0x000FF000L
+#define COMPUTE_PGM_RSRC1__PRIV_MASK 0x00100000L
+#define COMPUTE_PGM_RSRC1__DX10_CLAMP_MASK 0x00200000L
+#define COMPUTE_PGM_RSRC1__DEBUG_MODE_MASK 0x00400000L
+#define COMPUTE_PGM_RSRC1__IEEE_MODE_MASK 0x00800000L
+#define COMPUTE_PGM_RSRC1__BULKY_MASK 0x01000000L
+#define COMPUTE_PGM_RSRC1__CDBG_USER_MASK 0x02000000L
+#define COMPUTE_PGM_RSRC1__FP16_OVFL_MASK 0x04000000L
+//COMPUTE_PGM_RSRC2
+#define COMPUTE_PGM_RSRC2__SCRATCH_EN__SHIFT 0x0
+#define COMPUTE_PGM_RSRC2__USER_SGPR__SHIFT 0x1
+#define COMPUTE_PGM_RSRC2__TRAP_PRESENT__SHIFT 0x6
+#define COMPUTE_PGM_RSRC2__TGID_X_EN__SHIFT 0x7
+#define COMPUTE_PGM_RSRC2__TGID_Y_EN__SHIFT 0x8
+#define COMPUTE_PGM_RSRC2__TGID_Z_EN__SHIFT 0x9
+#define COMPUTE_PGM_RSRC2__TG_SIZE_EN__SHIFT 0xa
+#define COMPUTE_PGM_RSRC2__TIDIG_COMP_CNT__SHIFT 0xb
+#define COMPUTE_PGM_RSRC2__EXCP_EN_MSB__SHIFT 0xd
+#define COMPUTE_PGM_RSRC2__LDS_SIZE__SHIFT 0xf
+#define COMPUTE_PGM_RSRC2__EXCP_EN__SHIFT 0x18
+#define COMPUTE_PGM_RSRC2__SKIP_USGPR0__SHIFT 0x1f
+#define COMPUTE_PGM_RSRC2__SCRATCH_EN_MASK 0x00000001L
+#define COMPUTE_PGM_RSRC2__USER_SGPR_MASK 0x0000003EL
+#define COMPUTE_PGM_RSRC2__TRAP_PRESENT_MASK 0x00000040L
+#define COMPUTE_PGM_RSRC2__TGID_X_EN_MASK 0x00000080L
+#define COMPUTE_PGM_RSRC2__TGID_Y_EN_MASK 0x00000100L
+#define COMPUTE_PGM_RSRC2__TGID_Z_EN_MASK 0x00000200L
+#define COMPUTE_PGM_RSRC2__TG_SIZE_EN_MASK 0x00000400L
+#define COMPUTE_PGM_RSRC2__TIDIG_COMP_CNT_MASK 0x00001800L
+#define COMPUTE_PGM_RSRC2__EXCP_EN_MSB_MASK 0x00006000L
+#define COMPUTE_PGM_RSRC2__LDS_SIZE_MASK 0x00FF8000L
+#define COMPUTE_PGM_RSRC2__EXCP_EN_MASK 0x7F000000L
+#define COMPUTE_PGM_RSRC2__SKIP_USGPR0_MASK 0x80000000L
+//COMPUTE_VMID
+#define COMPUTE_VMID__DATA__SHIFT 0x0
+#define COMPUTE_VMID__DATA_MASK 0x0000000FL
+//COMPUTE_RESOURCE_LIMITS
+#define COMPUTE_RESOURCE_LIMITS__WAVES_PER_SH__SHIFT 0x0
+#define COMPUTE_RESOURCE_LIMITS__TG_PER_CU__SHIFT 0xc
+#define COMPUTE_RESOURCE_LIMITS__LOCK_THRESHOLD__SHIFT 0x10
+#define COMPUTE_RESOURCE_LIMITS__SIMD_DEST_CNTL__SHIFT 0x16
+#define COMPUTE_RESOURCE_LIMITS__FORCE_SIMD_DIST__SHIFT 0x17
+#define COMPUTE_RESOURCE_LIMITS__CU_GROUP_COUNT__SHIFT 0x18
+#define COMPUTE_RESOURCE_LIMITS__SIMD_DISABLE__SHIFT 0x1b
+#define COMPUTE_RESOURCE_LIMITS__WAVES_PER_SH_MASK 0x000003FFL
+#define COMPUTE_RESOURCE_LIMITS__TG_PER_CU_MASK 0x0000F000L
+#define COMPUTE_RESOURCE_LIMITS__LOCK_THRESHOLD_MASK 0x003F0000L
+#define COMPUTE_RESOURCE_LIMITS__SIMD_DEST_CNTL_MASK 0x00400000L
+#define COMPUTE_RESOURCE_LIMITS__FORCE_SIMD_DIST_MASK 0x00800000L
+#define COMPUTE_RESOURCE_LIMITS__CU_GROUP_COUNT_MASK 0x07000000L
+#define COMPUTE_RESOURCE_LIMITS__SIMD_DISABLE_MASK 0x78000000L
+//COMPUTE_STATIC_THREAD_MGMT_SE0
+#define COMPUTE_STATIC_THREAD_MGMT_SE0__SH0_CU_EN__SHIFT 0x0
+#define COMPUTE_STATIC_THREAD_MGMT_SE0__SH1_CU_EN__SHIFT 0x10
+#define COMPUTE_STATIC_THREAD_MGMT_SE0__SH0_CU_EN_MASK 0x0000FFFFL
+#define COMPUTE_STATIC_THREAD_MGMT_SE0__SH1_CU_EN_MASK 0xFFFF0000L
+//COMPUTE_STATIC_THREAD_MGMT_SE1
+#define COMPUTE_STATIC_THREAD_MGMT_SE1__SH0_CU_EN__SHIFT 0x0
+#define COMPUTE_STATIC_THREAD_MGMT_SE1__SH1_CU_EN__SHIFT 0x10
+#define COMPUTE_STATIC_THREAD_MGMT_SE1__SH0_CU_EN_MASK 0x0000FFFFL
+#define COMPUTE_STATIC_THREAD_MGMT_SE1__SH1_CU_EN_MASK 0xFFFF0000L
+//COMPUTE_TMPRING_SIZE
+#define COMPUTE_TMPRING_SIZE__WAVES__SHIFT 0x0
+#define COMPUTE_TMPRING_SIZE__WAVESIZE__SHIFT 0xc
+#define COMPUTE_TMPRING_SIZE__WAVES_MASK 0x00000FFFL
+#define COMPUTE_TMPRING_SIZE__WAVESIZE_MASK 0x01FFF000L
+//COMPUTE_STATIC_THREAD_MGMT_SE2
+#define COMPUTE_STATIC_THREAD_MGMT_SE2__SH0_CU_EN__SHIFT 0x0
+#define COMPUTE_STATIC_THREAD_MGMT_SE2__SH1_CU_EN__SHIFT 0x10
+#define COMPUTE_STATIC_THREAD_MGMT_SE2__SH0_CU_EN_MASK 0x0000FFFFL
+#define COMPUTE_STATIC_THREAD_MGMT_SE2__SH1_CU_EN_MASK 0xFFFF0000L
+//COMPUTE_STATIC_THREAD_MGMT_SE3
+#define COMPUTE_STATIC_THREAD_MGMT_SE3__SH0_CU_EN__SHIFT 0x0
+#define COMPUTE_STATIC_THREAD_MGMT_SE3__SH1_CU_EN__SHIFT 0x10
+#define COMPUTE_STATIC_THREAD_MGMT_SE3__SH0_CU_EN_MASK 0x0000FFFFL
+#define COMPUTE_STATIC_THREAD_MGMT_SE3__SH1_CU_EN_MASK 0xFFFF0000L
+//COMPUTE_RESTART_X
+#define COMPUTE_RESTART_X__RESTART__SHIFT 0x0
+#define COMPUTE_RESTART_X__RESTART_MASK 0xFFFFFFFFL
+//COMPUTE_RESTART_Y
+#define COMPUTE_RESTART_Y__RESTART__SHIFT 0x0
+#define COMPUTE_RESTART_Y__RESTART_MASK 0xFFFFFFFFL
+//COMPUTE_RESTART_Z
+#define COMPUTE_RESTART_Z__RESTART__SHIFT 0x0
+#define COMPUTE_RESTART_Z__RESTART_MASK 0xFFFFFFFFL
+//COMPUTE_THREAD_TRACE_ENABLE
+#define COMPUTE_THREAD_TRACE_ENABLE__THREAD_TRACE_ENABLE__SHIFT 0x0
+#define COMPUTE_THREAD_TRACE_ENABLE__THREAD_TRACE_ENABLE_MASK 0x00000001L
+//COMPUTE_MISC_RESERVED
+#define COMPUTE_MISC_RESERVED__SEND_SEID__SHIFT 0x0
+#define COMPUTE_MISC_RESERVED__WAVE_ID_BASE__SHIFT 0x5
+#define COMPUTE_MISC_RESERVED__SEND_SEID_MASK 0x00000003L
+#define COMPUTE_MISC_RESERVED__WAVE_ID_BASE_MASK 0x0001FFE0L
+//COMPUTE_DISPATCH_ID
+#define COMPUTE_DISPATCH_ID__DISPATCH_ID__SHIFT 0x0
+#define COMPUTE_DISPATCH_ID__DISPATCH_ID_MASK 0xFFFFFFFFL
+//COMPUTE_THREADGROUP_ID
+#define COMPUTE_THREADGROUP_ID__THREADGROUP_ID__SHIFT 0x0
+#define COMPUTE_THREADGROUP_ID__THREADGROUP_ID_MASK 0xFFFFFFFFL
+//COMPUTE_RELAUNCH
+#define COMPUTE_RELAUNCH__PAYLOAD__SHIFT 0x0
+#define COMPUTE_RELAUNCH__IS_EVENT__SHIFT 0x1e
+#define COMPUTE_RELAUNCH__IS_STATE__SHIFT 0x1f
+#define COMPUTE_RELAUNCH__PAYLOAD_MASK 0x3FFFFFFFL
+#define COMPUTE_RELAUNCH__IS_EVENT_MASK 0x40000000L
+#define COMPUTE_RELAUNCH__IS_STATE_MASK 0x80000000L
+//COMPUTE_WAVE_RESTORE_ADDR_LO
+#define COMPUTE_WAVE_RESTORE_ADDR_LO__ADDR__SHIFT 0x0
+#define COMPUTE_WAVE_RESTORE_ADDR_LO__ADDR_MASK 0xFFFFFFFFL
+//COMPUTE_WAVE_RESTORE_ADDR_HI
+#define COMPUTE_WAVE_RESTORE_ADDR_HI__ADDR__SHIFT 0x0
+#define COMPUTE_WAVE_RESTORE_ADDR_HI__ADDR_MASK 0xFFFFL
+//COMPUTE_TG_CHUNK_SIZE
+#define COMPUTE_TG_CHUNK_SIZE__TG_CHUNK_SIZE__SHIFT 0x0
+#define COMPUTE_TG_CHUNK_SIZE__TG_CHUNK_SIZE_MASK 0x0000FFFFL
+//COMPUTE_SHADER_CHKSUM
+#define COMPUTE_SHADER_CHKSUM__CHECKSUM__SHIFT 0x0
+#define COMPUTE_SHADER_CHKSUM__CHECKSUM_MASK 0xFFFFFFFFL
+//COMPUTE_PGM_RSRC3
+#define COMPUTE_PGM_RSRC3__ACCUM_OFFSET__SHIFT 0x0
+#define COMPUTE_PGM_RSRC3__TRAP_ON_START__SHIFT 0xa
+#define COMPUTE_PGM_RSRC3__TRAP_ON_END__SHIFT 0xb
+#define COMPUTE_PGM_RSRC3__TG_SPLIT__SHIFT 0x10
+#define COMPUTE_PGM_RSRC3__ACCUM_OFFSET_MASK 0x0000003FL
+#define COMPUTE_PGM_RSRC3__TRAP_ON_START_MASK 0x00000400L
+#define COMPUTE_PGM_RSRC3__TRAP_ON_END_MASK 0x00000800L
+#define COMPUTE_PGM_RSRC3__TG_SPLIT_MASK 0x00010000L
+//COMPUTE_USER_DATA_0
+#define COMPUTE_USER_DATA_0__DATA__SHIFT 0x0
+#define COMPUTE_USER_DATA_0__DATA_MASK 0xFFFFFFFFL
+//COMPUTE_USER_DATA_1
+#define COMPUTE_USER_DATA_1__DATA__SHIFT 0x0
+#define COMPUTE_USER_DATA_1__DATA_MASK 0xFFFFFFFFL
+//COMPUTE_USER_DATA_2
+#define COMPUTE_USER_DATA_2__DATA__SHIFT 0x0
+#define COMPUTE_USER_DATA_2__DATA_MASK 0xFFFFFFFFL
+//COMPUTE_USER_DATA_3
+#define COMPUTE_USER_DATA_3__DATA__SHIFT 0x0
+#define COMPUTE_USER_DATA_3__DATA_MASK 0xFFFFFFFFL
+//COMPUTE_USER_DATA_4
+#define COMPUTE_USER_DATA_4__DATA__SHIFT 0x0
+#define COMPUTE_USER_DATA_4__DATA_MASK 0xFFFFFFFFL
+//COMPUTE_USER_DATA_5
+#define COMPUTE_USER_DATA_5__DATA__SHIFT 0x0
+#define COMPUTE_USER_DATA_5__DATA_MASK 0xFFFFFFFFL
+//COMPUTE_USER_DATA_6
+#define COMPUTE_USER_DATA_6__DATA__SHIFT 0x0
+#define COMPUTE_USER_DATA_6__DATA_MASK 0xFFFFFFFFL
+//COMPUTE_USER_DATA_7
+#define COMPUTE_USER_DATA_7__DATA__SHIFT 0x0
+#define COMPUTE_USER_DATA_7__DATA_MASK 0xFFFFFFFFL
+//COMPUTE_USER_DATA_8
+#define COMPUTE_USER_DATA_8__DATA__SHIFT 0x0
+#define COMPUTE_USER_DATA_8__DATA_MASK 0xFFFFFFFFL
+//COMPUTE_USER_DATA_9
+#define COMPUTE_USER_DATA_9__DATA__SHIFT 0x0
+#define COMPUTE_USER_DATA_9__DATA_MASK 0xFFFFFFFFL
+//COMPUTE_USER_DATA_10
+#define COMPUTE_USER_DATA_10__DATA__SHIFT 0x0
+#define COMPUTE_USER_DATA_10__DATA_MASK 0xFFFFFFFFL
+//COMPUTE_USER_DATA_11
+#define COMPUTE_USER_DATA_11__DATA__SHIFT 0x0
+#define COMPUTE_USER_DATA_11__DATA_MASK 0xFFFFFFFFL
+//COMPUTE_USER_DATA_12
+#define COMPUTE_USER_DATA_12__DATA__SHIFT 0x0
+#define COMPUTE_USER_DATA_12__DATA_MASK 0xFFFFFFFFL
+//COMPUTE_USER_DATA_13
+#define COMPUTE_USER_DATA_13__DATA__SHIFT 0x0
+#define COMPUTE_USER_DATA_13__DATA_MASK 0xFFFFFFFFL
+//COMPUTE_USER_DATA_14
+#define COMPUTE_USER_DATA_14__DATA__SHIFT 0x0
+#define COMPUTE_USER_DATA_14__DATA_MASK 0xFFFFFFFFL
+//COMPUTE_USER_DATA_15
+#define COMPUTE_USER_DATA_15__DATA__SHIFT 0x0
+#define COMPUTE_USER_DATA_15__DATA_MASK 0xFFFFFFFFL
+//COMPUTE_DISPATCH_END
+#define COMPUTE_DISPATCH_END__DATA__SHIFT 0x0
+#define COMPUTE_DISPATCH_END__DATA_MASK 0xFFFFFFFFL
+//COMPUTE_NOWHERE
+#define COMPUTE_NOWHERE__DATA__SHIFT 0x0
+#define COMPUTE_NOWHERE__DATA_MASK 0xFFFFFFFFL
+
+
+// addressBlock: xcd0_gc_cppdec
+//CP_DFY_CNTL
+#define CP_DFY_CNTL__POLICY__SHIFT 0x0
+#define CP_DFY_CNTL__MTYPE__SHIFT 0x2
+#define CP_DFY_CNTL__WRITE_DIS__SHIFT 0x1b
+#define CP_DFY_CNTL__LFSR_RESET__SHIFT 0x1c
+#define CP_DFY_CNTL__MODE__SHIFT 0x1d
+#define CP_DFY_CNTL__ENABLE__SHIFT 0x1f
+#define CP_DFY_CNTL__POLICY_MASK 0x00000001L
+#define CP_DFY_CNTL__MTYPE_MASK 0x0000000CL
+#define CP_DFY_CNTL__WRITE_DIS_MASK 0x08000000L
+#define CP_DFY_CNTL__LFSR_RESET_MASK 0x10000000L
+#define CP_DFY_CNTL__MODE_MASK 0x60000000L
+#define CP_DFY_CNTL__ENABLE_MASK 0x80000000L
+//CP_DFY_STAT
+#define CP_DFY_STAT__BURST_COUNT__SHIFT 0x0
+#define CP_DFY_STAT__TAGS_PENDING__SHIFT 0x10
+#define CP_DFY_STAT__BUSY__SHIFT 0x1f
+#define CP_DFY_STAT__BURST_COUNT_MASK 0x0000FFFFL
+#define CP_DFY_STAT__TAGS_PENDING_MASK 0x07FF0000L
+#define CP_DFY_STAT__BUSY_MASK 0x80000000L
+//CP_DFY_ADDR_HI
+#define CP_DFY_ADDR_HI__ADDR_HI__SHIFT 0x0
+#define CP_DFY_ADDR_HI__ADDR_HI_MASK 0xFFFFFFFFL
+//CP_DFY_ADDR_LO
+#define CP_DFY_ADDR_LO__ADDR_LO__SHIFT 0x5
+#define CP_DFY_ADDR_LO__ADDR_LO_MASK 0xFFFFFFE0L
+//CP_DFY_DATA_0
+#define CP_DFY_DATA_0__DATA__SHIFT 0x0
+#define CP_DFY_DATA_0__DATA_MASK 0xFFFFFFFFL
+//CP_DFY_DATA_1
+#define CP_DFY_DATA_1__DATA__SHIFT 0x0
+#define CP_DFY_DATA_1__DATA_MASK 0xFFFFFFFFL
+//CP_DFY_DATA_2
+#define CP_DFY_DATA_2__DATA__SHIFT 0x0
+#define CP_DFY_DATA_2__DATA_MASK 0xFFFFFFFFL
+//CP_DFY_DATA_3
+#define CP_DFY_DATA_3__DATA__SHIFT 0x0
+#define CP_DFY_DATA_3__DATA_MASK 0xFFFFFFFFL
+//CP_DFY_DATA_4
+#define CP_DFY_DATA_4__DATA__SHIFT 0x0
+#define CP_DFY_DATA_4__DATA_MASK 0xFFFFFFFFL
+//CP_DFY_DATA_5
+#define CP_DFY_DATA_5__DATA__SHIFT 0x0
+#define CP_DFY_DATA_5__DATA_MASK 0xFFFFFFFFL
+//CP_DFY_DATA_6
+#define CP_DFY_DATA_6__DATA__SHIFT 0x0
+#define CP_DFY_DATA_6__DATA_MASK 0xFFFFFFFFL
+//CP_DFY_DATA_7
+#define CP_DFY_DATA_7__DATA__SHIFT 0x0
+#define CP_DFY_DATA_7__DATA_MASK 0xFFFFFFFFL
+//CP_DFY_DATA_8
+#define CP_DFY_DATA_8__DATA__SHIFT 0x0
+#define CP_DFY_DATA_8__DATA_MASK 0xFFFFFFFFL
+//CP_DFY_DATA_9
+#define CP_DFY_DATA_9__DATA__SHIFT 0x0
+#define CP_DFY_DATA_9__DATA_MASK 0xFFFFFFFFL
+//CP_DFY_DATA_10
+#define CP_DFY_DATA_10__DATA__SHIFT 0x0
+#define CP_DFY_DATA_10__DATA_MASK 0xFFFFFFFFL
+//CP_DFY_DATA_11
+#define CP_DFY_DATA_11__DATA__SHIFT 0x0
+#define CP_DFY_DATA_11__DATA_MASK 0xFFFFFFFFL
+//CP_DFY_DATA_12
+#define CP_DFY_DATA_12__DATA__SHIFT 0x0
+#define CP_DFY_DATA_12__DATA_MASK 0xFFFFFFFFL
+//CP_DFY_DATA_13
+#define CP_DFY_DATA_13__DATA__SHIFT 0x0
+#define CP_DFY_DATA_13__DATA_MASK 0xFFFFFFFFL
+//CP_DFY_DATA_14
+#define CP_DFY_DATA_14__DATA__SHIFT 0x0
+#define CP_DFY_DATA_14__DATA_MASK 0xFFFFFFFFL
+//CP_DFY_DATA_15
+#define CP_DFY_DATA_15__DATA__SHIFT 0x0
+#define CP_DFY_DATA_15__DATA_MASK 0xFFFFFFFFL
+//CP_DFY_CMD
+#define CP_DFY_CMD__OFFSET__SHIFT 0x0
+#define CP_DFY_CMD__SIZE__SHIFT 0x10
+#define CP_DFY_CMD__OFFSET_MASK 0x000001FFL
+#define CP_DFY_CMD__SIZE_MASK 0xFFFF0000L
+//CP_EOPQ_WAIT_TIME
+#define CP_EOPQ_WAIT_TIME__WAIT_TIME__SHIFT 0x0
+#define CP_EOPQ_WAIT_TIME__SCALE_COUNT__SHIFT 0xa
+#define CP_EOPQ_WAIT_TIME__WAIT_TIME_MASK 0x000003FFL
+#define CP_EOPQ_WAIT_TIME__SCALE_COUNT_MASK 0x0003FC00L
+//CP_CPC_MGCG_SYNC_CNTL
+#define CP_CPC_MGCG_SYNC_CNTL__COOLDOWN_PERIOD__SHIFT 0x0
+#define CP_CPC_MGCG_SYNC_CNTL__WARMUP_PERIOD__SHIFT 0x8
+#define CP_CPC_MGCG_SYNC_CNTL__COOLDOWN_PERIOD_MASK 0x000000FFL
+#define CP_CPC_MGCG_SYNC_CNTL__WARMUP_PERIOD_MASK 0x0000FF00L
+//CPC_INT_INFO
+#define CPC_INT_INFO__ADDR_HI__SHIFT 0x0
+#define CPC_INT_INFO__TYPE__SHIFT 0x10
+#define CPC_INT_INFO__VMID__SHIFT 0x14
+#define CPC_INT_INFO__QUEUE_ID__SHIFT 0x1c
+#define CPC_INT_INFO__ADDR_HI_MASK 0x0000FFFFL
+#define CPC_INT_INFO__TYPE_MASK 0x00010000L
+#define CPC_INT_INFO__VMID_MASK 0x00F00000L
+#define CPC_INT_INFO__QUEUE_ID_MASK 0x70000000L
+//CP_VIRT_STATUS
+#define CP_VIRT_STATUS__VIRT_STATUS__SHIFT 0x0
+#define CP_VIRT_STATUS__VIRT_STATUS_MASK 0xFFFFFFFFL
+//CPC_INT_ADDR
+#define CPC_INT_ADDR__ADDR__SHIFT 0x0
+#define CPC_INT_ADDR__ADDR_MASK 0xFFFFFFFFL
+//CPC_INT_PASID
+#define CPC_INT_PASID__PASID__SHIFT 0x0
+#define CPC_INT_PASID__PASID_MASK 0x0000FFFFL
+//CP_GFX_ERROR
+#define CP_GFX_ERROR__EDC_ERROR_ID__SHIFT 0x0
+#define CP_GFX_ERROR__SUA_ERROR__SHIFT 0x4
+#define CP_GFX_ERROR__RSVD1_ERROR__SHIFT 0x5
+#define CP_GFX_ERROR__RSVD2_ERROR__SHIFT 0x6
+#define CP_GFX_ERROR__SEM_UTCL1_ERROR__SHIFT 0x7
+#define CP_GFX_ERROR__QU_STRM_UTCL1_ERROR__SHIFT 0x8
+#define CP_GFX_ERROR__QU_EOP_UTCL1_ERROR__SHIFT 0x9
+#define CP_GFX_ERROR__QU_PIPE_UTCL1_ERROR__SHIFT 0xa
+#define CP_GFX_ERROR__QU_READ_UTCL1_ERROR__SHIFT 0xb
+#define CP_GFX_ERROR__SYNC_MEMRD_UTCL1_ERROR__SHIFT 0xc
+#define CP_GFX_ERROR__SYNC_MEMWR_UTCL1_ERROR__SHIFT 0xd
+#define CP_GFX_ERROR__SHADOW_UTCL1_ERROR__SHIFT 0xe
+#define CP_GFX_ERROR__APPEND_UTCL1_ERROR__SHIFT 0xf
+#define CP_GFX_ERROR__CE_DMA_UTCL1_ERROR__SHIFT 0x10
+#define CP_GFX_ERROR__PFP_VGTDMA_UTCL1_ERROR__SHIFT 0x11
+#define CP_GFX_ERROR__DMA_SRC_UTCL1_ERROR__SHIFT 0x12
+#define CP_GFX_ERROR__DMA_DST_UTCL1_ERROR__SHIFT 0x13
+#define CP_GFX_ERROR__PFP_TC_UTCL1_ERROR__SHIFT 0x14
+#define CP_GFX_ERROR__ME_TC_UTCL1_ERROR__SHIFT 0x15
+#define CP_GFX_ERROR__CE_TC_UTCL1_ERROR__SHIFT 0x16
+#define CP_GFX_ERROR__PRT_LOD_UTCL1_ERROR__SHIFT 0x17
+#define CP_GFX_ERROR__RDPTR_RPT_UTCL1_ERROR__SHIFT 0x18
+#define CP_GFX_ERROR__RB_FETCHER_UTCL1_ERROR__SHIFT 0x19
+#define CP_GFX_ERROR__I1_FETCHER_UTCL1_ERROR__SHIFT 0x1a
+#define CP_GFX_ERROR__I2_FETCHER_UTCL1_ERROR__SHIFT 0x1b
+#define CP_GFX_ERROR__C1_FETCHER_UTCL1_ERROR__SHIFT 0x1c
+#define CP_GFX_ERROR__C2_FETCHER_UTCL1_ERROR__SHIFT 0x1d
+#define CP_GFX_ERROR__ST_FETCHER_UTCL1_ERROR__SHIFT 0x1e
+#define CP_GFX_ERROR__CE_INIT_UTCL1_ERROR__SHIFT 0x1f
+#define CP_GFX_ERROR__EDC_ERROR_ID_MASK 0x0000000FL
+#define CP_GFX_ERROR__SUA_ERROR_MASK 0x00000010L
+#define CP_GFX_ERROR__RSVD1_ERROR_MASK 0x00000020L
+#define CP_GFX_ERROR__RSVD2_ERROR_MASK 0x00000040L
+#define CP_GFX_ERROR__SEM_UTCL1_ERROR_MASK 0x00000080L
+#define CP_GFX_ERROR__QU_STRM_UTCL1_ERROR_MASK 0x00000100L
+#define CP_GFX_ERROR__QU_EOP_UTCL1_ERROR_MASK 0x00000200L
+#define CP_GFX_ERROR__QU_PIPE_UTCL1_ERROR_MASK 0x00000400L
+#define CP_GFX_ERROR__QU_READ_UTCL1_ERROR_MASK 0x00000800L
+#define CP_GFX_ERROR__SYNC_MEMRD_UTCL1_ERROR_MASK 0x00001000L
+#define CP_GFX_ERROR__SYNC_MEMWR_UTCL1_ERROR_MASK 0x00002000L
+#define CP_GFX_ERROR__SHADOW_UTCL1_ERROR_MASK 0x00004000L
+#define CP_GFX_ERROR__APPEND_UTCL1_ERROR_MASK 0x00008000L
+#define CP_GFX_ERROR__CE_DMA_UTCL1_ERROR_MASK 0x00010000L
+#define CP_GFX_ERROR__PFP_VGTDMA_UTCL1_ERROR_MASK 0x00020000L
+#define CP_GFX_ERROR__DMA_SRC_UTCL1_ERROR_MASK 0x00040000L
+#define CP_GFX_ERROR__DMA_DST_UTCL1_ERROR_MASK 0x00080000L
+#define CP_GFX_ERROR__PFP_TC_UTCL1_ERROR_MASK 0x00100000L
+#define CP_GFX_ERROR__ME_TC_UTCL1_ERROR_MASK 0x00200000L
+#define CP_GFX_ERROR__CE_TC_UTCL1_ERROR_MASK 0x00400000L
+#define CP_GFX_ERROR__PRT_LOD_UTCL1_ERROR_MASK 0x00800000L
+#define CP_GFX_ERROR__RDPTR_RPT_UTCL1_ERROR_MASK 0x01000000L
+#define CP_GFX_ERROR__RB_FETCHER_UTCL1_ERROR_MASK 0x02000000L
+#define CP_GFX_ERROR__I1_FETCHER_UTCL1_ERROR_MASK 0x04000000L
+#define CP_GFX_ERROR__I2_FETCHER_UTCL1_ERROR_MASK 0x08000000L
+#define CP_GFX_ERROR__C1_FETCHER_UTCL1_ERROR_MASK 0x10000000L
+#define CP_GFX_ERROR__C2_FETCHER_UTCL1_ERROR_MASK 0x20000000L
+#define CP_GFX_ERROR__ST_FETCHER_UTCL1_ERROR_MASK 0x40000000L
+#define CP_GFX_ERROR__CE_INIT_UTCL1_ERROR_MASK 0x80000000L
+//CPG_UTCL1_CNTL
+#define CPG_UTCL1_CNTL__XNACK_REDO_TIMER_CNT__SHIFT 0x0
+#define CPG_UTCL1_CNTL__VMID_RESET_MODE__SHIFT 0x17
+#define CPG_UTCL1_CNTL__DROP_MODE__SHIFT 0x18
+#define CPG_UTCL1_CNTL__INVALIDATE__SHIFT 0x1a
+#define CPG_UTCL1_CNTL__FRAG_LIMIT_MODE__SHIFT 0x1b
+#define CPG_UTCL1_CNTL__FORCE_SNOOP__SHIFT 0x1c
+#define CPG_UTCL1_CNTL__IGNORE_PTE_PERMISSION__SHIFT 0x1d
+#define CPG_UTCL1_CNTL__MTYPE_NO_PTE_MODE__SHIFT 0x1e
+#define CPG_UTCL1_CNTL__XNACK_REDO_TIMER_CNT_MASK 0x000FFFFFL
+#define CPG_UTCL1_CNTL__VMID_RESET_MODE_MASK 0x00800000L
+#define CPG_UTCL1_CNTL__DROP_MODE_MASK 0x01000000L
+#define CPG_UTCL1_CNTL__INVALIDATE_MASK 0x04000000L
+#define CPG_UTCL1_CNTL__FRAG_LIMIT_MODE_MASK 0x08000000L
+#define CPG_UTCL1_CNTL__FORCE_SNOOP_MASK 0x10000000L
+#define CPG_UTCL1_CNTL__IGNORE_PTE_PERMISSION_MASK 0x20000000L
+#define CPG_UTCL1_CNTL__MTYPE_NO_PTE_MODE_MASK 0x40000000L
+//CPC_UTCL1_CNTL
+#define CPC_UTCL1_CNTL__XNACK_REDO_TIMER_CNT__SHIFT 0x0
+#define CPC_UTCL1_CNTL__DROP_MODE__SHIFT 0x18
+#define CPC_UTCL1_CNTL__INVALIDATE__SHIFT 0x1a
+#define CPC_UTCL1_CNTL__FRAG_LIMIT_MODE__SHIFT 0x1b
+#define CPC_UTCL1_CNTL__FORCE_SNOOP__SHIFT 0x1c
+#define CPC_UTCL1_CNTL__IGNORE_PTE_PERMISSION__SHIFT 0x1d
+#define CPC_UTCL1_CNTL__MTYPE_NO_PTE_MODE__SHIFT 0x1e
+#define CPC_UTCL1_CNTL__XNACK_REDO_TIMER_CNT_MASK 0x000FFFFFL
+#define CPC_UTCL1_CNTL__DROP_MODE_MASK 0x01000000L
+#define CPC_UTCL1_CNTL__INVALIDATE_MASK 0x04000000L
+#define CPC_UTCL1_CNTL__FRAG_LIMIT_MODE_MASK 0x08000000L
+#define CPC_UTCL1_CNTL__FORCE_SNOOP_MASK 0x10000000L
+#define CPC_UTCL1_CNTL__IGNORE_PTE_PERMISSION_MASK 0x20000000L
+#define CPC_UTCL1_CNTL__MTYPE_NO_PTE_MODE_MASK 0x40000000L
+//CPF_UTCL1_CNTL
+#define CPF_UTCL1_CNTL__XNACK_REDO_TIMER_CNT__SHIFT 0x0
+#define CPF_UTCL1_CNTL__VMID_RESET_MODE__SHIFT 0x17
+#define CPF_UTCL1_CNTL__DROP_MODE__SHIFT 0x18
+#define CPF_UTCL1_CNTL__INVALIDATE__SHIFT 0x1a
+#define CPF_UTCL1_CNTL__FRAG_LIMIT_MODE__SHIFT 0x1b
+#define CPF_UTCL1_CNTL__FORCE_SNOOP__SHIFT 0x1c
+#define CPF_UTCL1_CNTL__IGNORE_PTE_PERMISSION__SHIFT 0x1d
+#define CPF_UTCL1_CNTL__MTYPE_NO_PTE_MODE__SHIFT 0x1e
+#define CPF_UTCL1_CNTL__FORCE_NO_EXE__SHIFT 0x1f
+#define CPF_UTCL1_CNTL__XNACK_REDO_TIMER_CNT_MASK 0x000FFFFFL
+#define CPF_UTCL1_CNTL__VMID_RESET_MODE_MASK 0x00800000L
+#define CPF_UTCL1_CNTL__DROP_MODE_MASK 0x01000000L
+#define CPF_UTCL1_CNTL__INVALIDATE_MASK 0x04000000L
+#define CPF_UTCL1_CNTL__FRAG_LIMIT_MODE_MASK 0x08000000L
+#define CPF_UTCL1_CNTL__FORCE_SNOOP_MASK 0x10000000L
+#define CPF_UTCL1_CNTL__IGNORE_PTE_PERMISSION_MASK 0x20000000L
+#define CPF_UTCL1_CNTL__MTYPE_NO_PTE_MODE_MASK 0x40000000L
+#define CPF_UTCL1_CNTL__FORCE_NO_EXE_MASK 0x80000000L
+//CP_AQL_SMM_STATUS
+#define CP_AQL_SMM_STATUS__AQL_QUEUE_SMM__SHIFT 0x0
+#define CP_AQL_SMM_STATUS__AQL_QUEUE_SMM_MASK 0xFFFFFFFFL
+//CP_RB0_BASE
+#define CP_RB0_BASE__RB_BASE__SHIFT 0x0
+#define CP_RB0_BASE__RB_BASE_MASK 0xFFFFFFFFL
+//CP_RB_BASE
+#define CP_RB_BASE__RB_BASE__SHIFT 0x0
+#define CP_RB_BASE__RB_BASE_MASK 0xFFFFFFFFL
+//CP_RB0_CNTL
+#define CP_RB0_CNTL__RB_BUFSZ__SHIFT 0x0
+#define CP_RB0_CNTL__RB_BLKSZ__SHIFT 0x8
+#define CP_RB0_CNTL__BUF_SWAP__SHIFT 0x11
+#define CP_RB0_CNTL__MIN_AVAILSZ__SHIFT 0x14
+#define CP_RB0_CNTL__MIN_IB_AVAILSZ__SHIFT 0x16
+#define CP_RB0_CNTL__CACHE_POLICY__SHIFT 0x18
+#define CP_RB0_CNTL__RB_NO_UPDATE__SHIFT 0x1b
+#define CP_RB0_CNTL__RB_RPTR_WR_ENA__SHIFT 0x1f
+#define CP_RB0_CNTL__RB_BUFSZ_MASK 0x0000003FL
+#define CP_RB0_CNTL__RB_BLKSZ_MASK 0x00003F00L
+#define CP_RB0_CNTL__BUF_SWAP_MASK 0x00060000L
+#define CP_RB0_CNTL__MIN_AVAILSZ_MASK 0x00300000L
+#define CP_RB0_CNTL__MIN_IB_AVAILSZ_MASK 0x00C00000L
+#define CP_RB0_CNTL__CACHE_POLICY_MASK 0x01000000L
+#define CP_RB0_CNTL__RB_NO_UPDATE_MASK 0x08000000L
+#define CP_RB0_CNTL__RB_RPTR_WR_ENA_MASK 0x80000000L
+//CP_RB_CNTL
+#define CP_RB_CNTL__RB_BUFSZ__SHIFT 0x0
+#define CP_RB_CNTL__RB_BLKSZ__SHIFT 0x8
+#define CP_RB_CNTL__MIN_AVAILSZ__SHIFT 0x14
+#define CP_RB_CNTL__MIN_IB_AVAILSZ__SHIFT 0x16
+#define CP_RB_CNTL__CACHE_POLICY__SHIFT 0x18
+#define CP_RB_CNTL__RB_NO_UPDATE__SHIFT 0x1b
+#define CP_RB_CNTL__RB_RPTR_WR_ENA__SHIFT 0x1f
+#define CP_RB_CNTL__RB_BUFSZ_MASK 0x0000003FL
+#define CP_RB_CNTL__RB_BLKSZ_MASK 0x00003F00L
+#define CP_RB_CNTL__MIN_AVAILSZ_MASK 0x00300000L
+#define CP_RB_CNTL__MIN_IB_AVAILSZ_MASK 0x00C00000L
+#define CP_RB_CNTL__CACHE_POLICY_MASK 0x01000000L
+#define CP_RB_CNTL__RB_NO_UPDATE_MASK 0x08000000L
+#define CP_RB_CNTL__RB_RPTR_WR_ENA_MASK 0x80000000L
+//CP_RB_RPTR_WR
+#define CP_RB_RPTR_WR__RB_RPTR_WR__SHIFT 0x0
+#define CP_RB_RPTR_WR__RB_RPTR_WR_MASK 0x000FFFFFL
+//CP_RB0_RPTR_ADDR
+#define CP_RB0_RPTR_ADDR__RB_RPTR_ADDR__SHIFT 0x2
+#define CP_RB0_RPTR_ADDR__RB_RPTR_ADDR_MASK 0xFFFFFFFCL
+//CP_RB_RPTR_ADDR
+#define CP_RB_RPTR_ADDR__RB_RPTR_ADDR__SHIFT 0x2
+#define CP_RB_RPTR_ADDR__RB_RPTR_ADDR_MASK 0xFFFFFFFCL
+//CP_RB0_RPTR_ADDR_HI
+#define CP_RB0_RPTR_ADDR_HI__RB_RPTR_ADDR_HI__SHIFT 0x0
+#define CP_RB0_RPTR_ADDR_HI__RB_RPTR_ADDR_HI_MASK 0x0000FFFFL
+//CP_RB_RPTR_ADDR_HI
+#define CP_RB_RPTR_ADDR_HI__RB_RPTR_ADDR_HI__SHIFT 0x0
+#define CP_RB_RPTR_ADDR_HI__RB_RPTR_ADDR_HI_MASK 0x0000FFFFL
+//CP_RB0_BUFSZ_MASK
+#define CP_RB0_BUFSZ_MASK__DATA__SHIFT 0x0
+#define CP_RB0_BUFSZ_MASK__DATA_MASK 0x000FFFFFL
+//CP_RB_BUFSZ_MASK
+#define CP_RB_BUFSZ_MASK__DATA__SHIFT 0x0
+#define CP_RB_BUFSZ_MASK__DATA_MASK 0x000FFFFFL
+//CP_RB_WPTR_POLL_ADDR_LO
+#define CP_RB_WPTR_POLL_ADDR_LO__RB_WPTR_POLL_ADDR_LO__SHIFT 0x2
+#define CP_RB_WPTR_POLL_ADDR_LO__RB_WPTR_POLL_ADDR_LO_MASK 0xFFFFFFFCL
+//CP_RB_WPTR_POLL_ADDR_HI
+#define CP_RB_WPTR_POLL_ADDR_HI__RB_WPTR_POLL_ADDR_HI__SHIFT 0x0
+#define CP_RB_WPTR_POLL_ADDR_HI__RB_WPTR_POLL_ADDR_HI_MASK 0x0000FFFFL
+//GC_PRIV_MODE
+#define GC_PRIV_MODE__MC_PRIV_MODE__SHIFT 0x0
+#define GC_PRIV_MODE__MC_PRIV_MODE_MASK 0x00000001L
+//CP_INT_CNTL
+#define CP_INT_CNTL__CP_VM_DOORBELL_WR_INT_ENABLE__SHIFT 0xb
+#define CP_INT_CNTL__CP_ECC_ERROR_INT_ENABLE__SHIFT 0xe
+#define CP_INT_CNTL__GPF_INT_ENABLE__SHIFT 0x10
+#define CP_INT_CNTL__WRM_POLL_TIMEOUT_INT_ENABLE__SHIFT 0x11
+#define CP_INT_CNTL__CMP_BUSY_INT_ENABLE__SHIFT 0x12
+#define CP_INT_CNTL__CNTX_BUSY_INT_ENABLE__SHIFT 0x13
+#define CP_INT_CNTL__CNTX_EMPTY_INT_ENABLE__SHIFT 0x14
+#define CP_INT_CNTL__GFX_IDLE_INT_ENABLE__SHIFT 0x15
+#define CP_INT_CNTL__PRIV_INSTR_INT_ENABLE__SHIFT 0x16
+#define CP_INT_CNTL__PRIV_REG_INT_ENABLE__SHIFT 0x17
+#define CP_INT_CNTL__OPCODE_ERROR_INT_ENABLE__SHIFT 0x18
+#define CP_INT_CNTL__TIME_STAMP_INT_ENABLE__SHIFT 0x1a
+#define CP_INT_CNTL__RESERVED_BIT_ERROR_INT_ENABLE__SHIFT 0x1b
+#define CP_INT_CNTL__GENERIC2_INT_ENABLE__SHIFT 0x1d
+#define CP_INT_CNTL__GENERIC1_INT_ENABLE__SHIFT 0x1e
+#define CP_INT_CNTL__GENERIC0_INT_ENABLE__SHIFT 0x1f
+#define CP_INT_CNTL__CP_VM_DOORBELL_WR_INT_ENABLE_MASK 0x00000800L
+#define CP_INT_CNTL__CP_ECC_ERROR_INT_ENABLE_MASK 0x00004000L
+#define CP_INT_CNTL__GPF_INT_ENABLE_MASK 0x00010000L
+#define CP_INT_CNTL__WRM_POLL_TIMEOUT_INT_ENABLE_MASK 0x00020000L
+#define CP_INT_CNTL__CMP_BUSY_INT_ENABLE_MASK 0x00040000L
+#define CP_INT_CNTL__CNTX_BUSY_INT_ENABLE_MASK 0x00080000L
+#define CP_INT_CNTL__CNTX_EMPTY_INT_ENABLE_MASK 0x00100000L
+#define CP_INT_CNTL__GFX_IDLE_INT_ENABLE_MASK 0x00200000L
+#define CP_INT_CNTL__PRIV_INSTR_INT_ENABLE_MASK 0x00400000L
+#define CP_INT_CNTL__PRIV_REG_INT_ENABLE_MASK 0x00800000L
+#define CP_INT_CNTL__OPCODE_ERROR_INT_ENABLE_MASK 0x01000000L
+#define CP_INT_CNTL__TIME_STAMP_INT_ENABLE_MASK 0x04000000L
+#define CP_INT_CNTL__RESERVED_BIT_ERROR_INT_ENABLE_MASK 0x08000000L
+#define CP_INT_CNTL__GENERIC2_INT_ENABLE_MASK 0x20000000L
+#define CP_INT_CNTL__GENERIC1_INT_ENABLE_MASK 0x40000000L
+#define CP_INT_CNTL__GENERIC0_INT_ENABLE_MASK 0x80000000L
+//CP_INT_STATUS
+#define CP_INT_STATUS__CP_VM_DOORBELL_WR_INT_STAT__SHIFT 0xb
+#define CP_INT_STATUS__CP_ECC_ERROR_INT_STAT__SHIFT 0xe
+#define CP_INT_STATUS__GPF_INT_STAT__SHIFT 0x10
+#define CP_INT_STATUS__WRM_POLL_TIMEOUT_INT_STAT__SHIFT 0x11
+#define CP_INT_STATUS__CMP_BUSY_INT_STAT__SHIFT 0x12
+#define CP_INT_STATUS__CNTX_BUSY_INT_STAT__SHIFT 0x13
+#define CP_INT_STATUS__CNTX_EMPTY_INT_STAT__SHIFT 0x14
+#define CP_INT_STATUS__GFX_IDLE_INT_STAT__SHIFT 0x15
+#define CP_INT_STATUS__PRIV_INSTR_INT_STAT__SHIFT 0x16
+#define CP_INT_STATUS__PRIV_REG_INT_STAT__SHIFT 0x17
+#define CP_INT_STATUS__OPCODE_ERROR_INT_STAT__SHIFT 0x18
+#define CP_INT_STATUS__TIME_STAMP_INT_STAT__SHIFT 0x1a
+#define CP_INT_STATUS__RESERVED_BIT_ERROR_INT_STAT__SHIFT 0x1b
+#define CP_INT_STATUS__GENERIC2_INT_STAT__SHIFT 0x1d
+#define CP_INT_STATUS__GENERIC1_INT_STAT__SHIFT 0x1e
+#define CP_INT_STATUS__GENERIC0_INT_STAT__SHIFT 0x1f
+#define CP_INT_STATUS__CP_VM_DOORBELL_WR_INT_STAT_MASK 0x00000800L
+#define CP_INT_STATUS__CP_ECC_ERROR_INT_STAT_MASK 0x00004000L
+#define CP_INT_STATUS__GPF_INT_STAT_MASK 0x00010000L
+#define CP_INT_STATUS__WRM_POLL_TIMEOUT_INT_STAT_MASK 0x00020000L
+#define CP_INT_STATUS__CMP_BUSY_INT_STAT_MASK 0x00040000L
+#define CP_INT_STATUS__CNTX_BUSY_INT_STAT_MASK 0x00080000L
+#define CP_INT_STATUS__CNTX_EMPTY_INT_STAT_MASK 0x00100000L
+#define CP_INT_STATUS__GFX_IDLE_INT_STAT_MASK 0x00200000L
+#define CP_INT_STATUS__PRIV_INSTR_INT_STAT_MASK 0x00400000L
+#define CP_INT_STATUS__PRIV_REG_INT_STAT_MASK 0x00800000L
+#define CP_INT_STATUS__OPCODE_ERROR_INT_STAT_MASK 0x01000000L
+#define CP_INT_STATUS__TIME_STAMP_INT_STAT_MASK 0x04000000L
+#define CP_INT_STATUS__RESERVED_BIT_ERROR_INT_STAT_MASK 0x08000000L
+#define CP_INT_STATUS__GENERIC2_INT_STAT_MASK 0x20000000L
+#define CP_INT_STATUS__GENERIC1_INT_STAT_MASK 0x40000000L
+#define CP_INT_STATUS__GENERIC0_INT_STAT_MASK 0x80000000L
+//CP_DEVICE_ID
+#define CP_DEVICE_ID__DEVICE_ID__SHIFT 0x0
+#define CP_DEVICE_ID__DEVICE_ID_MASK 0x000000FFL
+//CP_ME0_PIPE_PRIORITY_CNTS
+#define CP_ME0_PIPE_PRIORITY_CNTS__PRIORITY1_CNT__SHIFT 0x0
+#define CP_ME0_PIPE_PRIORITY_CNTS__PRIORITY2A_CNT__SHIFT 0x8
+#define CP_ME0_PIPE_PRIORITY_CNTS__PRIORITY2B_CNT__SHIFT 0x10
+#define CP_ME0_PIPE_PRIORITY_CNTS__PRIORITY3_CNT__SHIFT 0x18
+#define CP_ME0_PIPE_PRIORITY_CNTS__PRIORITY1_CNT_MASK 0x000000FFL
+#define CP_ME0_PIPE_PRIORITY_CNTS__PRIORITY2A_CNT_MASK 0x0000FF00L
+#define CP_ME0_PIPE_PRIORITY_CNTS__PRIORITY2B_CNT_MASK 0x00FF0000L
+#define CP_ME0_PIPE_PRIORITY_CNTS__PRIORITY3_CNT_MASK 0xFF000000L
+//CP_RING_PRIORITY_CNTS
+#define CP_RING_PRIORITY_CNTS__PRIORITY1_CNT__SHIFT 0x0
+#define CP_RING_PRIORITY_CNTS__PRIORITY2A_CNT__SHIFT 0x8
+#define CP_RING_PRIORITY_CNTS__PRIORITY2B_CNT__SHIFT 0x10
+#define CP_RING_PRIORITY_CNTS__PRIORITY3_CNT__SHIFT 0x18
+#define CP_RING_PRIORITY_CNTS__PRIORITY1_CNT_MASK 0x000000FFL
+#define CP_RING_PRIORITY_CNTS__PRIORITY2A_CNT_MASK 0x0000FF00L
+#define CP_RING_PRIORITY_CNTS__PRIORITY2B_CNT_MASK 0x00FF0000L
+#define CP_RING_PRIORITY_CNTS__PRIORITY3_CNT_MASK 0xFF000000L
+//CP_ME0_PIPE0_PRIORITY
+#define CP_ME0_PIPE0_PRIORITY__PRIORITY__SHIFT 0x0
+#define CP_ME0_PIPE0_PRIORITY__PRIORITY_MASK 0x00000003L
+//CP_RING0_PRIORITY
+#define CP_RING0_PRIORITY__PRIORITY__SHIFT 0x0
+#define CP_RING0_PRIORITY__PRIORITY_MASK 0x00000003L
+//CP_ME0_PIPE1_PRIORITY
+#define CP_ME0_PIPE1_PRIORITY__PRIORITY__SHIFT 0x0
+#define CP_ME0_PIPE1_PRIORITY__PRIORITY_MASK 0x00000003L
+//CP_RING1_PRIORITY
+#define CP_RING1_PRIORITY__PRIORITY__SHIFT 0x0
+#define CP_RING1_PRIORITY__PRIORITY_MASK 0x00000003L
+//CP_ME0_PIPE2_PRIORITY
+#define CP_ME0_PIPE2_PRIORITY__PRIORITY__SHIFT 0x0
+#define CP_ME0_PIPE2_PRIORITY__PRIORITY_MASK 0x00000003L
+//CP_RING2_PRIORITY
+#define CP_RING2_PRIORITY__PRIORITY__SHIFT 0x0
+#define CP_RING2_PRIORITY__PRIORITY_MASK 0x00000003L
+//CP_FATAL_ERROR
+#define CP_FATAL_ERROR__CPF_FATAL_ERROR__SHIFT 0x0
+#define CP_FATAL_ERROR__CPG_FATAL_ERROR__SHIFT 0x1
+#define CP_FATAL_ERROR__GFX_HALT_PROC__SHIFT 0x2
+#define CP_FATAL_ERROR__DIS_CPG_FATAL_ERROR__SHIFT 0x3
+#define CP_FATAL_ERROR__CPG_TAG_FATAL_ERROR_EN__SHIFT 0x4
+#define CP_FATAL_ERROR__CPF_FATAL_ERROR_MASK 0x00000001L
+#define CP_FATAL_ERROR__CPG_FATAL_ERROR_MASK 0x00000002L
+#define CP_FATAL_ERROR__GFX_HALT_PROC_MASK 0x00000004L
+#define CP_FATAL_ERROR__DIS_CPG_FATAL_ERROR_MASK 0x00000008L
+#define CP_FATAL_ERROR__CPG_TAG_FATAL_ERROR_EN_MASK 0x00000010L
+//CP_RB_VMID
+#define CP_RB_VMID__RB0_VMID__SHIFT 0x0
+#define CP_RB_VMID__RB1_VMID__SHIFT 0x8
+#define CP_RB_VMID__RB2_VMID__SHIFT 0x10
+#define CP_RB_VMID__RB0_VMID_MASK 0x0000000FL
+#define CP_RB_VMID__RB1_VMID_MASK 0x00000F00L
+#define CP_RB_VMID__RB2_VMID_MASK 0x000F0000L
+//CP_ME0_PIPE0_VMID
+#define CP_ME0_PIPE0_VMID__VMID__SHIFT 0x0
+#define CP_ME0_PIPE0_VMID__VMID_MASK 0x0000000FL
+//CP_ME0_PIPE1_VMID
+#define CP_ME0_PIPE1_VMID__VMID__SHIFT 0x0
+#define CP_ME0_PIPE1_VMID__VMID_MASK 0x0000000FL
+//CP_RB0_WPTR
+#define CP_RB0_WPTR__RB_WPTR__SHIFT 0x0
+#define CP_RB0_WPTR__RB_WPTR_MASK 0xFFFFFFFFL
+//CP_RB_WPTR
+#define CP_RB_WPTR__RB_WPTR__SHIFT 0x0
+#define CP_RB_WPTR__RB_WPTR_MASK 0xFFFFFFFFL
+//CP_RB0_WPTR_HI
+#define CP_RB0_WPTR_HI__RB_WPTR__SHIFT 0x0
+#define CP_RB0_WPTR_HI__RB_WPTR_MASK 0xFFFFFFFFL
+//CP_RB_WPTR_HI
+#define CP_RB_WPTR_HI__RB_WPTR__SHIFT 0x0
+#define CP_RB_WPTR_HI__RB_WPTR_MASK 0xFFFFFFFFL
+//CP_RB1_WPTR
+#define CP_RB1_WPTR__RB_WPTR__SHIFT 0x0
+#define CP_RB1_WPTR__RB_WPTR_MASK 0xFFFFFFFFL
+//CP_RB1_WPTR_HI
+#define CP_RB1_WPTR_HI__RB_WPTR__SHIFT 0x0
+#define CP_RB1_WPTR_HI__RB_WPTR_MASK 0xFFFFFFFFL
+//CP_RB2_WPTR
+#define CP_RB2_WPTR__RB_WPTR__SHIFT 0x0
+#define CP_RB2_WPTR__RB_WPTR_MASK 0x000FFFFFL
+//CP_RB_DOORBELL_CONTROL
+#define CP_RB_DOORBELL_CONTROL__DOORBELL_BIF_DROP__SHIFT 0x1
+#define CP_RB_DOORBELL_CONTROL__DOORBELL_OFFSET__SHIFT 0x2
+#define CP_RB_DOORBELL_CONTROL__DOORBELL_EN__SHIFT 0x1e
+#define CP_RB_DOORBELL_CONTROL__DOORBELL_HIT__SHIFT 0x1f
+#define CP_RB_DOORBELL_CONTROL__DOORBELL_BIF_DROP_MASK 0x00000002L
+#define CP_RB_DOORBELL_CONTROL__DOORBELL_OFFSET_MASK 0x0FFFFFFCL
+#define CP_RB_DOORBELL_CONTROL__DOORBELL_EN_MASK 0x40000000L
+#define CP_RB_DOORBELL_CONTROL__DOORBELL_HIT_MASK 0x80000000L
+//CP_RB_DOORBELL_RANGE_LOWER
+#define CP_RB_DOORBELL_RANGE_LOWER__DOORBELL_RANGE_LOWER__SHIFT 0x2
+#define CP_RB_DOORBELL_RANGE_LOWER__DOORBELL_RANGE_LOWER_MASK 0x0FFFFFFCL
+//CP_RB_DOORBELL_RANGE_UPPER
+#define CP_RB_DOORBELL_RANGE_UPPER__DOORBELL_RANGE_UPPER__SHIFT 0x2
+#define CP_RB_DOORBELL_RANGE_UPPER__DOORBELL_RANGE_UPPER_MASK 0x0FFFFFFCL
+//CP_MEC_DOORBELL_RANGE_LOWER
+#define CP_MEC_DOORBELL_RANGE_LOWER__DOORBELL_RANGE_LOWER__SHIFT 0x2
+#define CP_MEC_DOORBELL_RANGE_LOWER__DOORBELL_RANGE_LOWER_MASK 0x0FFFFFFCL
+//CP_MEC_DOORBELL_RANGE_UPPER
+#define CP_MEC_DOORBELL_RANGE_UPPER__DOORBELL_RANGE_UPPER__SHIFT 0x2
+#define CP_MEC_DOORBELL_RANGE_UPPER__DOORBELL_RANGE_UPPER_MASK 0x0FFFFFFCL
+//CPG_UTCL1_ERROR
+#define CPG_UTCL1_ERROR__ERROR_DETECTED_HALT__SHIFT 0x0
+#define CPG_UTCL1_ERROR__ERROR_DETECTED_HALT_MASK 0x00000001L
+//CPC_UTCL1_ERROR
+#define CPC_UTCL1_ERROR__ERROR_DETECTED_HALT__SHIFT 0x0
+#define CPC_UTCL1_ERROR__ERROR_DETECTED_HALT_MASK 0x00000001L
+//CP_RB1_BASE
+#define CP_RB1_BASE__RB_BASE__SHIFT 0x0
+#define CP_RB1_BASE__RB_BASE_MASK 0xFFFFFFFFL
+//CP_RB1_CNTL
+#define CP_RB1_CNTL__RB_BUFSZ__SHIFT 0x0
+#define CP_RB1_CNTL__RB_BLKSZ__SHIFT 0x8
+#define CP_RB1_CNTL__MIN_AVAILSZ__SHIFT 0x14
+#define CP_RB1_CNTL__MIN_IB_AVAILSZ__SHIFT 0x16
+#define CP_RB1_CNTL__CACHE_POLICY__SHIFT 0x18
+#define CP_RB1_CNTL__RB_NO_UPDATE__SHIFT 0x1b
+#define CP_RB1_CNTL__RB_RPTR_WR_ENA__SHIFT 0x1f
+#define CP_RB1_CNTL__RB_BUFSZ_MASK 0x0000003FL
+#define CP_RB1_CNTL__RB_BLKSZ_MASK 0x00003F00L
+#define CP_RB1_CNTL__MIN_AVAILSZ_MASK 0x00300000L
+#define CP_RB1_CNTL__MIN_IB_AVAILSZ_MASK 0x00C00000L
+#define CP_RB1_CNTL__CACHE_POLICY_MASK 0x01000000L
+#define CP_RB1_CNTL__RB_NO_UPDATE_MASK 0x08000000L
+#define CP_RB1_CNTL__RB_RPTR_WR_ENA_MASK 0x80000000L
+//CP_RB1_RPTR_ADDR
+#define CP_RB1_RPTR_ADDR__RB_RPTR_ADDR__SHIFT 0x2
+#define CP_RB1_RPTR_ADDR__RB_RPTR_ADDR_MASK 0xFFFFFFFCL
+//CP_RB1_RPTR_ADDR_HI
+#define CP_RB1_RPTR_ADDR_HI__RB_RPTR_ADDR_HI__SHIFT 0x0
+#define CP_RB1_RPTR_ADDR_HI__RB_RPTR_ADDR_HI_MASK 0x0000FFFFL
+//CP_RB2_BASE
+#define CP_RB2_BASE__RB_BASE__SHIFT 0x0
+#define CP_RB2_BASE__RB_BASE_MASK 0xFFFFFFFFL
+//CP_RB2_CNTL
+#define CP_RB2_CNTL__RB_BUFSZ__SHIFT 0x0
+#define CP_RB2_CNTL__RB_BLKSZ__SHIFT 0x8
+#define CP_RB2_CNTL__MIN_AVAILSZ__SHIFT 0x14
+#define CP_RB2_CNTL__MIN_IB_AVAILSZ__SHIFT 0x16
+#define CP_RB2_CNTL__CACHE_POLICY__SHIFT 0x18
+#define CP_RB2_CNTL__RB_NO_UPDATE__SHIFT 0x1b
+#define CP_RB2_CNTL__RB_RPTR_WR_ENA__SHIFT 0x1f
+#define CP_RB2_CNTL__RB_BUFSZ_MASK 0x0000003FL
+#define CP_RB2_CNTL__RB_BLKSZ_MASK 0x00003F00L
+#define CP_RB2_CNTL__MIN_AVAILSZ_MASK 0x00300000L
+#define CP_RB2_CNTL__MIN_IB_AVAILSZ_MASK 0x00C00000L
+#define CP_RB2_CNTL__CACHE_POLICY_MASK 0x01000000L
+#define CP_RB2_CNTL__RB_NO_UPDATE_MASK 0x08000000L
+#define CP_RB2_CNTL__RB_RPTR_WR_ENA_MASK 0x80000000L
+//CP_RB2_RPTR_ADDR
+#define CP_RB2_RPTR_ADDR__RB_RPTR_ADDR__SHIFT 0x2
+#define CP_RB2_RPTR_ADDR__RB_RPTR_ADDR_MASK 0xFFFFFFFCL
+//CP_RB2_RPTR_ADDR_HI
+#define CP_RB2_RPTR_ADDR_HI__RB_RPTR_ADDR_HI__SHIFT 0x0
+#define CP_RB2_RPTR_ADDR_HI__RB_RPTR_ADDR_HI_MASK 0x0000FFFFL
+//CP_RB0_ACTIVE
+#define CP_RB0_ACTIVE__ACTIVE__SHIFT 0x0
+#define CP_RB0_ACTIVE__ACTIVE_MASK 0x00000001L
+//CP_RB_ACTIVE
+#define CP_RB_ACTIVE__ACTIVE__SHIFT 0x0
+#define CP_RB_ACTIVE__ACTIVE_MASK 0x00000001L
+//CP_INT_CNTL_RING0
+#define CP_INT_CNTL_RING0__CP_VM_DOORBELL_WR_INT_ENABLE__SHIFT 0xb
+#define CP_INT_CNTL_RING0__CP_ECC_ERROR_INT_ENABLE__SHIFT 0xe
+#define CP_INT_CNTL_RING0__GPF_INT_ENABLE__SHIFT 0x10
+#define CP_INT_CNTL_RING0__WRM_POLL_TIMEOUT_INT_ENABLE__SHIFT 0x11
+#define CP_INT_CNTL_RING0__CMP_BUSY_INT_ENABLE__SHIFT 0x12
+#define CP_INT_CNTL_RING0__CNTX_BUSY_INT_ENABLE__SHIFT 0x13
+#define CP_INT_CNTL_RING0__CNTX_EMPTY_INT_ENABLE__SHIFT 0x14
+#define CP_INT_CNTL_RING0__GFX_IDLE_INT_ENABLE__SHIFT 0x15
+#define CP_INT_CNTL_RING0__PRIV_INSTR_INT_ENABLE__SHIFT 0x16
+#define CP_INT_CNTL_RING0__PRIV_REG_INT_ENABLE__SHIFT 0x17
+#define CP_INT_CNTL_RING0__OPCODE_ERROR_INT_ENABLE__SHIFT 0x18
+#define CP_INT_CNTL_RING0__TIME_STAMP_INT_ENABLE__SHIFT 0x1a
+#define CP_INT_CNTL_RING0__RESERVED_BIT_ERROR_INT_ENABLE__SHIFT 0x1b
+#define CP_INT_CNTL_RING0__GENERIC2_INT_ENABLE__SHIFT 0x1d
+#define CP_INT_CNTL_RING0__GENERIC1_INT_ENABLE__SHIFT 0x1e
+#define CP_INT_CNTL_RING0__GENERIC0_INT_ENABLE__SHIFT 0x1f
+#define CP_INT_CNTL_RING0__CP_VM_DOORBELL_WR_INT_ENABLE_MASK 0x00000800L
+#define CP_INT_CNTL_RING0__CP_ECC_ERROR_INT_ENABLE_MASK 0x00004000L
+#define CP_INT_CNTL_RING0__GPF_INT_ENABLE_MASK 0x00010000L
+#define CP_INT_CNTL_RING0__WRM_POLL_TIMEOUT_INT_ENABLE_MASK 0x00020000L
+#define CP_INT_CNTL_RING0__CMP_BUSY_INT_ENABLE_MASK 0x00040000L
+#define CP_INT_CNTL_RING0__CNTX_BUSY_INT_ENABLE_MASK 0x00080000L
+#define CP_INT_CNTL_RING0__CNTX_EMPTY_INT_ENABLE_MASK 0x00100000L
+#define CP_INT_CNTL_RING0__GFX_IDLE_INT_ENABLE_MASK 0x00200000L
+#define CP_INT_CNTL_RING0__PRIV_INSTR_INT_ENABLE_MASK 0x00400000L
+#define CP_INT_CNTL_RING0__PRIV_REG_INT_ENABLE_MASK 0x00800000L
+#define CP_INT_CNTL_RING0__OPCODE_ERROR_INT_ENABLE_MASK 0x01000000L
+#define CP_INT_CNTL_RING0__TIME_STAMP_INT_ENABLE_MASK 0x04000000L
+#define CP_INT_CNTL_RING0__RESERVED_BIT_ERROR_INT_ENABLE_MASK 0x08000000L
+#define CP_INT_CNTL_RING0__GENERIC2_INT_ENABLE_MASK 0x20000000L
+#define CP_INT_CNTL_RING0__GENERIC1_INT_ENABLE_MASK 0x40000000L
+#define CP_INT_CNTL_RING0__GENERIC0_INT_ENABLE_MASK 0x80000000L
+//CP_INT_CNTL_RING1
+#define CP_INT_CNTL_RING1__CP_VM_DOORBELL_WR_INT_ENABLE__SHIFT 0xb
+#define CP_INT_CNTL_RING1__CP_ECC_ERROR_INT_ENABLE__SHIFT 0xe
+#define CP_INT_CNTL_RING1__GPF_INT_ENABLE__SHIFT 0x10
+#define CP_INT_CNTL_RING1__WRM_POLL_TIMEOUT_INT_ENABLE__SHIFT 0x11
+#define CP_INT_CNTL_RING1__CMP_BUSY_INT_ENABLE__SHIFT 0x12
+#define CP_INT_CNTL_RING1__CNTX_BUSY_INT_ENABLE__SHIFT 0x13
+#define CP_INT_CNTL_RING1__CNTX_EMPTY_INT_ENABLE__SHIFT 0x14
+#define CP_INT_CNTL_RING1__GFX_IDLE_INT_ENABLE__SHIFT 0x15
+#define CP_INT_CNTL_RING1__PRIV_INSTR_INT_ENABLE__SHIFT 0x16
+#define CP_INT_CNTL_RING1__PRIV_REG_INT_ENABLE__SHIFT 0x17
+#define CP_INT_CNTL_RING1__OPCODE_ERROR_INT_ENABLE__SHIFT 0x18
+#define CP_INT_CNTL_RING1__TIME_STAMP_INT_ENABLE__SHIFT 0x1a
+#define CP_INT_CNTL_RING1__RESERVED_BIT_ERROR_INT_ENABLE__SHIFT 0x1b
+#define CP_INT_CNTL_RING1__GENERIC2_INT_ENABLE__SHIFT 0x1d
+#define CP_INT_CNTL_RING1__GENERIC1_INT_ENABLE__SHIFT 0x1e
+#define CP_INT_CNTL_RING1__GENERIC0_INT_ENABLE__SHIFT 0x1f
+#define CP_INT_CNTL_RING1__CP_VM_DOORBELL_WR_INT_ENABLE_MASK 0x00000800L
+#define CP_INT_CNTL_RING1__CP_ECC_ERROR_INT_ENABLE_MASK 0x00004000L
+#define CP_INT_CNTL_RING1__GPF_INT_ENABLE_MASK 0x00010000L
+#define CP_INT_CNTL_RING1__WRM_POLL_TIMEOUT_INT_ENABLE_MASK 0x00020000L
+#define CP_INT_CNTL_RING1__CMP_BUSY_INT_ENABLE_MASK 0x00040000L
+#define CP_INT_CNTL_RING1__CNTX_BUSY_INT_ENABLE_MASK 0x00080000L
+#define CP_INT_CNTL_RING1__CNTX_EMPTY_INT_ENABLE_MASK 0x00100000L
+#define CP_INT_CNTL_RING1__GFX_IDLE_INT_ENABLE_MASK 0x00200000L
+#define CP_INT_CNTL_RING1__PRIV_INSTR_INT_ENABLE_MASK 0x00400000L
+#define CP_INT_CNTL_RING1__PRIV_REG_INT_ENABLE_MASK 0x00800000L
+#define CP_INT_CNTL_RING1__OPCODE_ERROR_INT_ENABLE_MASK 0x01000000L
+#define CP_INT_CNTL_RING1__TIME_STAMP_INT_ENABLE_MASK 0x04000000L
+#define CP_INT_CNTL_RING1__RESERVED_BIT_ERROR_INT_ENABLE_MASK 0x08000000L
+#define CP_INT_CNTL_RING1__GENERIC2_INT_ENABLE_MASK 0x20000000L
+#define CP_INT_CNTL_RING1__GENERIC1_INT_ENABLE_MASK 0x40000000L
+#define CP_INT_CNTL_RING1__GENERIC0_INT_ENABLE_MASK 0x80000000L
+//CP_INT_CNTL_RING2
+#define CP_INT_CNTL_RING2__CP_VM_DOORBELL_WR_INT_ENABLE__SHIFT 0xb
+#define CP_INT_CNTL_RING2__CP_ECC_ERROR_INT_ENABLE__SHIFT 0xe
+#define CP_INT_CNTL_RING2__GPF_INT_ENABLE__SHIFT 0x10
+#define CP_INT_CNTL_RING2__WRM_POLL_TIMEOUT_INT_ENABLE__SHIFT 0x11
+#define CP_INT_CNTL_RING2__CMP_BUSY_INT_ENABLE__SHIFT 0x12
+#define CP_INT_CNTL_RING2__CNTX_BUSY_INT_ENABLE__SHIFT 0x13
+#define CP_INT_CNTL_RING2__CNTX_EMPTY_INT_ENABLE__SHIFT 0x14
+#define CP_INT_CNTL_RING2__GFX_IDLE_INT_ENABLE__SHIFT 0x15
+#define CP_INT_CNTL_RING2__PRIV_INSTR_INT_ENABLE__SHIFT 0x16
+#define CP_INT_CNTL_RING2__PRIV_REG_INT_ENABLE__SHIFT 0x17
+#define CP_INT_CNTL_RING2__OPCODE_ERROR_INT_ENABLE__SHIFT 0x18
+#define CP_INT_CNTL_RING2__TIME_STAMP_INT_ENABLE__SHIFT 0x1a
+#define CP_INT_CNTL_RING2__RESERVED_BIT_ERROR_INT_ENABLE__SHIFT 0x1b
+#define CP_INT_CNTL_RING2__GENERIC2_INT_ENABLE__SHIFT 0x1d
+#define CP_INT_CNTL_RING2__GENERIC1_INT_ENABLE__SHIFT 0x1e
+#define CP_INT_CNTL_RING2__GENERIC0_INT_ENABLE__SHIFT 0x1f
+#define CP_INT_CNTL_RING2__CP_VM_DOORBELL_WR_INT_ENABLE_MASK 0x00000800L
+#define CP_INT_CNTL_RING2__CP_ECC_ERROR_INT_ENABLE_MASK 0x00004000L
+#define CP_INT_CNTL_RING2__GPF_INT_ENABLE_MASK 0x00010000L
+#define CP_INT_CNTL_RING2__WRM_POLL_TIMEOUT_INT_ENABLE_MASK 0x00020000L
+#define CP_INT_CNTL_RING2__CMP_BUSY_INT_ENABLE_MASK 0x00040000L
+#define CP_INT_CNTL_RING2__CNTX_BUSY_INT_ENABLE_MASK 0x00080000L
+#define CP_INT_CNTL_RING2__CNTX_EMPTY_INT_ENABLE_MASK 0x00100000L
+#define CP_INT_CNTL_RING2__GFX_IDLE_INT_ENABLE_MASK 0x00200000L
+#define CP_INT_CNTL_RING2__PRIV_INSTR_INT_ENABLE_MASK 0x00400000L
+#define CP_INT_CNTL_RING2__PRIV_REG_INT_ENABLE_MASK 0x00800000L
+#define CP_INT_CNTL_RING2__OPCODE_ERROR_INT_ENABLE_MASK 0x01000000L
+#define CP_INT_CNTL_RING2__TIME_STAMP_INT_ENABLE_MASK 0x04000000L
+#define CP_INT_CNTL_RING2__RESERVED_BIT_ERROR_INT_ENABLE_MASK 0x08000000L
+#define CP_INT_CNTL_RING2__GENERIC2_INT_ENABLE_MASK 0x20000000L
+#define CP_INT_CNTL_RING2__GENERIC1_INT_ENABLE_MASK 0x40000000L
+#define CP_INT_CNTL_RING2__GENERIC0_INT_ENABLE_MASK 0x80000000L
+//CP_INT_STATUS_RING0
+#define CP_INT_STATUS_RING0__CP_VM_DOORBELL_WR_INT_STAT__SHIFT 0xb
+#define CP_INT_STATUS_RING0__CP_ECC_ERROR_INT_STAT__SHIFT 0xe
+#define CP_INT_STATUS_RING0__GPF_INT_STAT__SHIFT 0x10
+#define CP_INT_STATUS_RING0__WRM_POLL_TIMEOUT_INT_STAT__SHIFT 0x11
+#define CP_INT_STATUS_RING0__CMP_BUSY_INT_STAT__SHIFT 0x12
+#define CP_INT_STATUS_RING0__GCNTX_BUSY_INT_STAT__SHIFT 0x13
+#define CP_INT_STATUS_RING0__CNTX_EMPTY_INT_STAT__SHIFT 0x14
+#define CP_INT_STATUS_RING0__GFX_IDLE_INT_STAT__SHIFT 0x15
+#define CP_INT_STATUS_RING0__PRIV_INSTR_INT_STAT__SHIFT 0x16
+#define CP_INT_STATUS_RING0__PRIV_REG_INT_STAT__SHIFT 0x17
+#define CP_INT_STATUS_RING0__OPCODE_ERROR_INT_STAT__SHIFT 0x18
+#define CP_INT_STATUS_RING0__TIME_STAMP_INT_STAT__SHIFT 0x1a
+#define CP_INT_STATUS_RING0__RESERVED_BIT_ERROR_INT_STAT__SHIFT 0x1b
+#define CP_INT_STATUS_RING0__GENERIC2_INT_STAT__SHIFT 0x1d
+#define CP_INT_STATUS_RING0__GENERIC1_INT_STAT__SHIFT 0x1e
+#define CP_INT_STATUS_RING0__GENERIC0_INT_STAT__SHIFT 0x1f
+#define CP_INT_STATUS_RING0__CP_VM_DOORBELL_WR_INT_STAT_MASK 0x00000800L
+#define CP_INT_STATUS_RING0__CP_ECC_ERROR_INT_STAT_MASK 0x00004000L
+#define CP_INT_STATUS_RING0__GPF_INT_STAT_MASK 0x00010000L
+#define CP_INT_STATUS_RING0__WRM_POLL_TIMEOUT_INT_STAT_MASK 0x00020000L
+#define CP_INT_STATUS_RING0__CMP_BUSY_INT_STAT_MASK 0x00040000L
+#define CP_INT_STATUS_RING0__GCNTX_BUSY_INT_STAT_MASK 0x00080000L
+#define CP_INT_STATUS_RING0__CNTX_EMPTY_INT_STAT_MASK 0x00100000L
+#define CP_INT_STATUS_RING0__GFX_IDLE_INT_STAT_MASK 0x00200000L
+#define CP_INT_STATUS_RING0__PRIV_INSTR_INT_STAT_MASK 0x00400000L
+#define CP_INT_STATUS_RING0__PRIV_REG_INT_STAT_MASK 0x00800000L
+#define CP_INT_STATUS_RING0__OPCODE_ERROR_INT_STAT_MASK 0x01000000L
+#define CP_INT_STATUS_RING0__TIME_STAMP_INT_STAT_MASK 0x04000000L
+#define CP_INT_STATUS_RING0__RESERVED_BIT_ERROR_INT_STAT_MASK 0x08000000L
+#define CP_INT_STATUS_RING0__GENERIC2_INT_STAT_MASK 0x20000000L
+#define CP_INT_STATUS_RING0__GENERIC1_INT_STAT_MASK 0x40000000L
+#define CP_INT_STATUS_RING0__GENERIC0_INT_STAT_MASK 0x80000000L
+//CP_INT_STATUS_RING1
+#define CP_INT_STATUS_RING1__CP_VM_DOORBELL_WR_INT_STAT__SHIFT 0xb
+#define CP_INT_STATUS_RING1__CP_ECC_ERROR_INT_STAT__SHIFT 0xe
+#define CP_INT_STATUS_RING1__GPF_INT_STAT__SHIFT 0x10
+#define CP_INT_STATUS_RING1__WRM_POLL_TIMEOUT_INT_STAT__SHIFT 0x11
+#define CP_INT_STATUS_RING1__CMP_BUSY_INT_STAT__SHIFT 0x12
+#define CP_INT_STATUS_RING1__CNTX_BUSY_INT_STAT__SHIFT 0x13
+#define CP_INT_STATUS_RING1__CNTX_EMPTY_INT_STAT__SHIFT 0x14
+#define CP_INT_STATUS_RING1__GFX_IDLE_INT_STAT__SHIFT 0x15
+#define CP_INT_STATUS_RING1__PRIV_INSTR_INT_STAT__SHIFT 0x16
+#define CP_INT_STATUS_RING1__PRIV_REG_INT_STAT__SHIFT 0x17
+#define CP_INT_STATUS_RING1__OPCODE_ERROR_INT_STAT__SHIFT 0x18
+#define CP_INT_STATUS_RING1__TIME_STAMP_INT_STAT__SHIFT 0x1a
+#define CP_INT_STATUS_RING1__RESERVED_BIT_ERROR_INT_STAT__SHIFT 0x1b
+#define CP_INT_STATUS_RING1__GENERIC2_INT_STAT__SHIFT 0x1d
+#define CP_INT_STATUS_RING1__GENERIC1_INT_STAT__SHIFT 0x1e
+#define CP_INT_STATUS_RING1__GENERIC0_INT_STAT__SHIFT 0x1f
+#define CP_INT_STATUS_RING1__CP_VM_DOORBELL_WR_INT_STAT_MASK 0x00000800L
+#define CP_INT_STATUS_RING1__CP_ECC_ERROR_INT_STAT_MASK 0x00004000L
+#define CP_INT_STATUS_RING1__GPF_INT_STAT_MASK 0x00010000L
+#define CP_INT_STATUS_RING1__WRM_POLL_TIMEOUT_INT_STAT_MASK 0x00020000L
+#define CP_INT_STATUS_RING1__CMP_BUSY_INT_STAT_MASK 0x00040000L
+#define CP_INT_STATUS_RING1__CNTX_BUSY_INT_STAT_MASK 0x00080000L
+#define CP_INT_STATUS_RING1__CNTX_EMPTY_INT_STAT_MASK 0x00100000L
+#define CP_INT_STATUS_RING1__GFX_IDLE_INT_STAT_MASK 0x00200000L
+#define CP_INT_STATUS_RING1__PRIV_INSTR_INT_STAT_MASK 0x00400000L
+#define CP_INT_STATUS_RING1__PRIV_REG_INT_STAT_MASK 0x00800000L
+#define CP_INT_STATUS_RING1__OPCODE_ERROR_INT_STAT_MASK 0x01000000L
+#define CP_INT_STATUS_RING1__TIME_STAMP_INT_STAT_MASK 0x04000000L
+#define CP_INT_STATUS_RING1__RESERVED_BIT_ERROR_INT_STAT_MASK 0x08000000L
+#define CP_INT_STATUS_RING1__GENERIC2_INT_STAT_MASK 0x20000000L
+#define CP_INT_STATUS_RING1__GENERIC1_INT_STAT_MASK 0x40000000L
+#define CP_INT_STATUS_RING1__GENERIC0_INT_STAT_MASK 0x80000000L
+//CP_INT_STATUS_RING2
+#define CP_INT_STATUS_RING2__CP_VM_DOORBELL_WR_INT_STAT__SHIFT 0xb
+#define CP_INT_STATUS_RING2__CP_ECC_ERROR_INT_STAT__SHIFT 0xe
+#define CP_INT_STATUS_RING2__GPF_INT_STAT__SHIFT 0x10
+#define CP_INT_STATUS_RING2__WRM_POLL_TIMEOUT_INT_STAT__SHIFT 0x11
+#define CP_INT_STATUS_RING2__CMP_BUSY_INT_STAT__SHIFT 0x12
+#define CP_INT_STATUS_RING2__CNTX_BUSY_INT_STAT__SHIFT 0x13
+#define CP_INT_STATUS_RING2__CNTX_EMPTY_INT_STAT__SHIFT 0x14
+#define CP_INT_STATUS_RING2__GFX_IDLE_INT_STAT__SHIFT 0x15
+#define CP_INT_STATUS_RING2__PRIV_INSTR_INT_STAT__SHIFT 0x16
+#define CP_INT_STATUS_RING2__PRIV_REG_INT_STAT__SHIFT 0x17
+#define CP_INT_STATUS_RING2__OPCODE_ERROR_INT_STAT__SHIFT 0x18
+#define CP_INT_STATUS_RING2__TIME_STAMP_INT_STAT__SHIFT 0x1a
+#define CP_INT_STATUS_RING2__RESERVED_BIT_ERROR_INT_STAT__SHIFT 0x1b
+#define CP_INT_STATUS_RING2__GENERIC2_INT_STAT__SHIFT 0x1d
+#define CP_INT_STATUS_RING2__GENERIC1_INT_STAT__SHIFT 0x1e
+#define CP_INT_STATUS_RING2__GENERIC0_INT_STAT__SHIFT 0x1f
+#define CP_INT_STATUS_RING2__CP_VM_DOORBELL_WR_INT_STAT_MASK 0x00000800L
+#define CP_INT_STATUS_RING2__CP_ECC_ERROR_INT_STAT_MASK 0x00004000L
+#define CP_INT_STATUS_RING2__GPF_INT_STAT_MASK 0x00010000L
+#define CP_INT_STATUS_RING2__WRM_POLL_TIMEOUT_INT_STAT_MASK 0x00020000L
+#define CP_INT_STATUS_RING2__CMP_BUSY_INT_STAT_MASK 0x00040000L
+#define CP_INT_STATUS_RING2__CNTX_BUSY_INT_STAT_MASK 0x00080000L
+#define CP_INT_STATUS_RING2__CNTX_EMPTY_INT_STAT_MASK 0x00100000L
+#define CP_INT_STATUS_RING2__GFX_IDLE_INT_STAT_MASK 0x00200000L
+#define CP_INT_STATUS_RING2__PRIV_INSTR_INT_STAT_MASK 0x00400000L
+#define CP_INT_STATUS_RING2__PRIV_REG_INT_STAT_MASK 0x00800000L
+#define CP_INT_STATUS_RING2__OPCODE_ERROR_INT_STAT_MASK 0x01000000L
+#define CP_INT_STATUS_RING2__TIME_STAMP_INT_STAT_MASK 0x04000000L
+#define CP_INT_STATUS_RING2__RESERVED_BIT_ERROR_INT_STAT_MASK 0x08000000L
+#define CP_INT_STATUS_RING2__GENERIC2_INT_STAT_MASK 0x20000000L
+#define CP_INT_STATUS_RING2__GENERIC1_INT_STAT_MASK 0x40000000L
+#define CP_INT_STATUS_RING2__GENERIC0_INT_STAT_MASK 0x80000000L
+//CP_ME_F32_INTERRUPT
+#define CP_ME_F32_INTERRUPT__ECC_ERROR_INT__SHIFT 0x0
+#define CP_ME_F32_INTERRUPT__TIME_STAMP_INT__SHIFT 0x1
+#define CP_ME_F32_INTERRUPT__ME_F32_INT_2__SHIFT 0x2
+#define CP_ME_F32_INTERRUPT__ME_F32_INT_3__SHIFT 0x3
+#define CP_ME_F32_INTERRUPT__ECC_ERROR_INT_MASK 0x00000001L
+#define CP_ME_F32_INTERRUPT__TIME_STAMP_INT_MASK 0x00000002L
+#define CP_ME_F32_INTERRUPT__ME_F32_INT_2_MASK 0x00000004L
+#define CP_ME_F32_INTERRUPT__ME_F32_INT_3_MASK 0x00000008L
+//CP_PFP_F32_INTERRUPT
+#define CP_PFP_F32_INTERRUPT__ECC_ERROR_INT__SHIFT 0x0
+#define CP_PFP_F32_INTERRUPT__PRIV_REG_INT__SHIFT 0x1
+#define CP_PFP_F32_INTERRUPT__RESERVED_BIT_ERR_INT__SHIFT 0x2
+#define CP_PFP_F32_INTERRUPT__PFP_F32_INT_3__SHIFT 0x3
+#define CP_PFP_F32_INTERRUPT__ECC_ERROR_INT_MASK 0x00000001L
+#define CP_PFP_F32_INTERRUPT__PRIV_REG_INT_MASK 0x00000002L
+#define CP_PFP_F32_INTERRUPT__RESERVED_BIT_ERR_INT_MASK 0x00000004L
+#define CP_PFP_F32_INTERRUPT__PFP_F32_INT_3_MASK 0x00000008L
+//CP_CE_F32_INTERRUPT
+#define CP_CE_F32_INTERRUPT__ECC_ERROR_INT__SHIFT 0x0
+#define CP_CE_F32_INTERRUPT__RESERVED_BIT_ERR_INT__SHIFT 0x1
+#define CP_CE_F32_INTERRUPT__CE_F32_INT_2__SHIFT 0x2
+#define CP_CE_F32_INTERRUPT__CE_F32_INT_3__SHIFT 0x3
+#define CP_CE_F32_INTERRUPT__ECC_ERROR_INT_MASK 0x00000001L
+#define CP_CE_F32_INTERRUPT__RESERVED_BIT_ERR_INT_MASK 0x00000002L
+#define CP_CE_F32_INTERRUPT__CE_F32_INT_2_MASK 0x00000004L
+#define CP_CE_F32_INTERRUPT__CE_F32_INT_3_MASK 0x00000008L
+//CP_MEC1_F32_INTERRUPT
+#define CP_MEC1_F32_INTERRUPT__EDC_ROQ_FED_INT__SHIFT 0x0
+#define CP_MEC1_F32_INTERRUPT__PRIV_REG_INT__SHIFT 0x1
+#define CP_MEC1_F32_INTERRUPT__RESERVED_BIT_ERR_INT__SHIFT 0x2
+#define CP_MEC1_F32_INTERRUPT__EDC_TC_FED_INT__SHIFT 0x3
+#define CP_MEC1_F32_INTERRUPT__EDC_GDS_FED_INT__SHIFT 0x4
+#define CP_MEC1_F32_INTERRUPT__EDC_SCRATCH_FED_INT__SHIFT 0x5
+#define CP_MEC1_F32_INTERRUPT__WAVE_RESTORE_INT__SHIFT 0x6
+#define CP_MEC1_F32_INTERRUPT__SUA_VIOLATION_INT__SHIFT 0x7
+#define CP_MEC1_F32_INTERRUPT__EDC_DMA_FED_INT__SHIFT 0x8
+#define CP_MEC1_F32_INTERRUPT__IQ_TIMER_INT__SHIFT 0x9
+#define CP_MEC1_F32_INTERRUPT__GPF_INT_CPF__SHIFT 0xa
+#define CP_MEC1_F32_INTERRUPT__GPF_INT_DMA__SHIFT 0xb
+#define CP_MEC1_F32_INTERRUPT__GPF_INT_CPC__SHIFT 0xc
+#define CP_MEC1_F32_INTERRUPT__EDC_SR_MEM_FED_INT__SHIFT 0xd
+#define CP_MEC1_F32_INTERRUPT__QUEUE_MESSAGE_INT__SHIFT 0xe
+#define CP_MEC1_F32_INTERRUPT__FATAL_EDC_ERROR_INT__SHIFT 0xf
+#define CP_MEC1_F32_INTERRUPT__EDC_ROQ_FED_INT_MASK 0x00000001L
+#define CP_MEC1_F32_INTERRUPT__PRIV_REG_INT_MASK 0x00000002L
+#define CP_MEC1_F32_INTERRUPT__RESERVED_BIT_ERR_INT_MASK 0x00000004L
+#define CP_MEC1_F32_INTERRUPT__EDC_TC_FED_INT_MASK 0x00000008L
+#define CP_MEC1_F32_INTERRUPT__EDC_GDS_FED_INT_MASK 0x00000010L
+#define CP_MEC1_F32_INTERRUPT__EDC_SCRATCH_FED_INT_MASK 0x00000020L
+#define CP_MEC1_F32_INTERRUPT__WAVE_RESTORE_INT_MASK 0x00000040L
+#define CP_MEC1_F32_INTERRUPT__SUA_VIOLATION_INT_MASK 0x00000080L
+#define CP_MEC1_F32_INTERRUPT__EDC_DMA_FED_INT_MASK 0x00000100L
+#define CP_MEC1_F32_INTERRUPT__IQ_TIMER_INT_MASK 0x00000200L
+#define CP_MEC1_F32_INTERRUPT__GPF_INT_CPF_MASK 0x00000400L
+#define CP_MEC1_F32_INTERRUPT__GPF_INT_DMA_MASK 0x00000800L
+#define CP_MEC1_F32_INTERRUPT__GPF_INT_CPC_MASK 0x00001000L
+#define CP_MEC1_F32_INTERRUPT__EDC_SR_MEM_FED_INT_MASK 0x00002000L
+#define CP_MEC1_F32_INTERRUPT__QUEUE_MESSAGE_INT_MASK 0x00004000L
+#define CP_MEC1_F32_INTERRUPT__FATAL_EDC_ERROR_INT_MASK 0x00008000L
+//CP_MEC2_F32_INTERRUPT
+#define CP_MEC2_F32_INTERRUPT__EDC_ROQ_FED_INT__SHIFT 0x0
+#define CP_MEC2_F32_INTERRUPT__PRIV_REG_INT__SHIFT 0x1
+#define CP_MEC2_F32_INTERRUPT__RESERVED_BIT_ERR_INT__SHIFT 0x2
+#define CP_MEC2_F32_INTERRUPT__EDC_TC_FED_INT__SHIFT 0x3
+#define CP_MEC2_F32_INTERRUPT__EDC_GDS_FED_INT__SHIFT 0x4
+#define CP_MEC2_F32_INTERRUPT__EDC_SCRATCH_FED_INT__SHIFT 0x5
+#define CP_MEC2_F32_INTERRUPT__WAVE_RESTORE_INT__SHIFT 0x6
+#define CP_MEC2_F32_INTERRUPT__SUA_VIOLATION_INT__SHIFT 0x7
+#define CP_MEC2_F32_INTERRUPT__EDC_DMA_FED_INT__SHIFT 0x8
+#define CP_MEC2_F32_INTERRUPT__IQ_TIMER_INT__SHIFT 0x9
+#define CP_MEC2_F32_INTERRUPT__GPF_INT_CPF__SHIFT 0xa
+#define CP_MEC2_F32_INTERRUPT__GPF_INT_DMA__SHIFT 0xb
+#define CP_MEC2_F32_INTERRUPT__GPF_INT_CPC__SHIFT 0xc
+#define CP_MEC2_F32_INTERRUPT__EDC_SR_MEM_FED_INT__SHIFT 0xd
+#define CP_MEC2_F32_INTERRUPT__QUEUE_MESSAGE_INT__SHIFT 0xe
+#define CP_MEC2_F32_INTERRUPT__FATAL_EDC_ERROR_INT__SHIFT 0xf
+#define CP_MEC2_F32_INTERRUPT__EDC_ROQ_FED_INT_MASK 0x00000001L
+#define CP_MEC2_F32_INTERRUPT__PRIV_REG_INT_MASK 0x00000002L
+#define CP_MEC2_F32_INTERRUPT__RESERVED_BIT_ERR_INT_MASK 0x00000004L
+#define CP_MEC2_F32_INTERRUPT__EDC_TC_FED_INT_MASK 0x00000008L
+#define CP_MEC2_F32_INTERRUPT__EDC_GDS_FED_INT_MASK 0x00000010L
+#define CP_MEC2_F32_INTERRUPT__EDC_SCRATCH_FED_INT_MASK 0x00000020L
+#define CP_MEC2_F32_INTERRUPT__WAVE_RESTORE_INT_MASK 0x00000040L
+#define CP_MEC2_F32_INTERRUPT__SUA_VIOLATION_INT_MASK 0x00000080L
+#define CP_MEC2_F32_INTERRUPT__EDC_DMA_FED_INT_MASK 0x00000100L
+#define CP_MEC2_F32_INTERRUPT__IQ_TIMER_INT_MASK 0x00000200L
+#define CP_MEC2_F32_INTERRUPT__GPF_INT_CPF_MASK 0x00000400L
+#define CP_MEC2_F32_INTERRUPT__GPF_INT_DMA_MASK 0x00000800L
+#define CP_MEC2_F32_INTERRUPT__GPF_INT_CPC_MASK 0x00001000L
+#define CP_MEC2_F32_INTERRUPT__EDC_SR_MEM_FED_INT_MASK 0x00002000L
+#define CP_MEC2_F32_INTERRUPT__QUEUE_MESSAGE_INT_MASK 0x00004000L
+#define CP_MEC2_F32_INTERRUPT__FATAL_EDC_ERROR_INT_MASK 0x00008000L
+//CP_PWR_CNTL
+#define CP_PWR_CNTL__GFX_CLK_HALT_ME0_PIPE0__SHIFT 0x0
+#define CP_PWR_CNTL__GFX_CLK_HALT_ME0_PIPE1__SHIFT 0x1
+#define CP_PWR_CNTL__CMP_CLK_HALT_ME1_PIPE0__SHIFT 0x8
+#define CP_PWR_CNTL__CMP_CLK_HALT_ME1_PIPE1__SHIFT 0x9
+#define CP_PWR_CNTL__CMP_CLK_HALT_ME1_PIPE2__SHIFT 0xa
+#define CP_PWR_CNTL__CMP_CLK_HALT_ME1_PIPE3__SHIFT 0xb
+#define CP_PWR_CNTL__CMP_CLK_HALT_ME2_PIPE0__SHIFT 0x10
+#define CP_PWR_CNTL__CMP_CLK_HALT_ME2_PIPE1__SHIFT 0x11
+#define CP_PWR_CNTL__CMP_CLK_HALT_ME2_PIPE2__SHIFT 0x12
+#define CP_PWR_CNTL__CMP_CLK_HALT_ME2_PIPE3__SHIFT 0x13
+#define CP_PWR_CNTL__GFX_CLK_HALT_ME0_PIPE0_MASK 0x00000001L
+#define CP_PWR_CNTL__GFX_CLK_HALT_ME0_PIPE1_MASK 0x00000002L
+#define CP_PWR_CNTL__CMP_CLK_HALT_ME1_PIPE0_MASK 0x00000100L
+#define CP_PWR_CNTL__CMP_CLK_HALT_ME1_PIPE1_MASK 0x00000200L
+#define CP_PWR_CNTL__CMP_CLK_HALT_ME1_PIPE2_MASK 0x00000400L
+#define CP_PWR_CNTL__CMP_CLK_HALT_ME1_PIPE3_MASK 0x00000800L
+#define CP_PWR_CNTL__CMP_CLK_HALT_ME2_PIPE0_MASK 0x00010000L
+#define CP_PWR_CNTL__CMP_CLK_HALT_ME2_PIPE1_MASK 0x00020000L
+#define CP_PWR_CNTL__CMP_CLK_HALT_ME2_PIPE2_MASK 0x00040000L
+#define CP_PWR_CNTL__CMP_CLK_HALT_ME2_PIPE3_MASK 0x00080000L
+//CP_MEM_SLP_CNTL
+#define CP_MEM_SLP_CNTL__CP_MEM_LS_EN__SHIFT 0x0
+#define CP_MEM_SLP_CNTL__CP_MEM_DS_EN__SHIFT 0x1
+#define CP_MEM_SLP_CNTL__RESERVED__SHIFT 0x2
+#define CP_MEM_SLP_CNTL__CP_LS_DS_BUSY_OVERRIDE__SHIFT 0x7
+#define CP_MEM_SLP_CNTL__CP_MEM_LS_ON_DELAY__SHIFT 0x8
+#define CP_MEM_SLP_CNTL__CP_MEM_LS_OFF_DELAY__SHIFT 0x10
+#define CP_MEM_SLP_CNTL__RESERVED1__SHIFT 0x18
+#define CP_MEM_SLP_CNTL__CP_MEM_LS_EN_MASK 0x00000001L
+#define CP_MEM_SLP_CNTL__CP_MEM_DS_EN_MASK 0x00000002L
+#define CP_MEM_SLP_CNTL__RESERVED_MASK 0x0000007CL
+#define CP_MEM_SLP_CNTL__CP_LS_DS_BUSY_OVERRIDE_MASK 0x00000080L
+#define CP_MEM_SLP_CNTL__CP_MEM_LS_ON_DELAY_MASK 0x0000FF00L
+#define CP_MEM_SLP_CNTL__CP_MEM_LS_OFF_DELAY_MASK 0x00FF0000L
+#define CP_MEM_SLP_CNTL__RESERVED1_MASK 0xFF000000L
+//CP_ECC_DMA_FIRST_OCCURRENCE
+#define CP_ECC_DMA_FIRST_OCCURRENCE__INTERFACE__SHIFT 0x0
+#define CP_ECC_DMA_FIRST_OCCURRENCE__CLIENT__SHIFT 0x4
+#define CP_ECC_DMA_FIRST_OCCURRENCE__ME__SHIFT 0x8
+#define CP_ECC_DMA_FIRST_OCCURRENCE__PIPE__SHIFT 0xa
+#define CP_ECC_DMA_FIRST_OCCURRENCE__VMID__SHIFT 0x10
+#define CP_ECC_DMA_FIRST_OCCURRENCE__INTERFACE_MASK 0x00000003L
+#define CP_ECC_DMA_FIRST_OCCURRENCE__CLIENT_MASK 0x000000F0L
+#define CP_ECC_DMA_FIRST_OCCURRENCE__ME_MASK 0x00000300L
+#define CP_ECC_DMA_FIRST_OCCURRENCE__PIPE_MASK 0x00000C00L
+#define CP_ECC_DMA_FIRST_OCCURRENCE__VMID_MASK 0x000F0000L
+//CP_ECC_FIRSTOCCURRENCE
+#define CP_ECC_FIRSTOCCURRENCE__INTERFACE__SHIFT 0x0
+#define CP_ECC_FIRSTOCCURRENCE__CLIENT__SHIFT 0x4
+#define CP_ECC_FIRSTOCCURRENCE__ME__SHIFT 0x8
+#define CP_ECC_FIRSTOCCURRENCE__PIPE__SHIFT 0xa
+#define CP_ECC_FIRSTOCCURRENCE__QUEUE__SHIFT 0xc
+#define CP_ECC_FIRSTOCCURRENCE__VMID__SHIFT 0x10
+#define CP_ECC_FIRSTOCCURRENCE__INTERFACE_MASK 0x00000003L
+#define CP_ECC_FIRSTOCCURRENCE__CLIENT_MASK 0x000000F0L
+#define CP_ECC_FIRSTOCCURRENCE__ME_MASK 0x00000300L
+#define CP_ECC_FIRSTOCCURRENCE__PIPE_MASK 0x00000C00L
+#define CP_ECC_FIRSTOCCURRENCE__QUEUE_MASK 0x00007000L
+#define CP_ECC_FIRSTOCCURRENCE__VMID_MASK 0x000F0000L
+//CP_ECC_FIRSTOCCURRENCE_RING0
+#define CP_ECC_FIRSTOCCURRENCE_RING0__OBSOLETE__SHIFT 0x0
+#define CP_ECC_FIRSTOCCURRENCE_RING0__OBSOLETE_MASK 0xFFFFFFFFL
+//CP_ECC_FIRSTOCCURRENCE_RING1
+#define CP_ECC_FIRSTOCCURRENCE_RING1__OBSOLETE__SHIFT 0x0
+#define CP_ECC_FIRSTOCCURRENCE_RING1__OBSOLETE_MASK 0xFFFFFFFFL
+//CP_ECC_FIRSTOCCURRENCE_RING2
+#define CP_ECC_FIRSTOCCURRENCE_RING2__OBSOLETE__SHIFT 0x0
+#define CP_ECC_FIRSTOCCURRENCE_RING2__OBSOLETE_MASK 0xFFFFFFFFL
+//GB_EDC_MODE
+#define GB_EDC_MODE__FORCE_SEC_ON_DED__SHIFT 0xf
+#define GB_EDC_MODE__COUNT_FED_OUT__SHIFT 0x10
+#define GB_EDC_MODE__GATE_FUE__SHIFT 0x11
+#define GB_EDC_MODE__DED_MODE__SHIFT 0x14
+#define GB_EDC_MODE__PROP_FED__SHIFT 0x1d
+#define GB_EDC_MODE__BYPASS__SHIFT 0x1f
+#define GB_EDC_MODE__FORCE_SEC_ON_DED_MASK 0x00008000L
+#define GB_EDC_MODE__COUNT_FED_OUT_MASK 0x00010000L
+#define GB_EDC_MODE__GATE_FUE_MASK 0x00020000L
+#define GB_EDC_MODE__DED_MODE_MASK 0x00300000L
+#define GB_EDC_MODE__PROP_FED_MASK 0x20000000L
+#define GB_EDC_MODE__BYPASS_MASK 0x80000000L
+//CP_DEBUG
+#define CP_DEBUG__CPG_REPEATER_FGCG_OVERRIDE__SHIFT 0x9
+#define CP_DEBUG__CPG_RAM_CLK_GATING_DISABLE__SHIFT 0xe
+#define CP_DEBUG__DISABLE_GFX_HALT_ON_UTCL1_ERROR__SHIFT 0xf
+#define CP_DEBUG__SURFSYNC_CNTX_RDADDR__SHIFT 0x10
+#define CP_DEBUG__BUSY_EXTENDER__SHIFT 0x13
+#define CP_DEBUG__PRIV_REG_INTERRUPT_ENABLE__SHIFT 0x15
+#define CP_DEBUG__INTERRUPT_ENABLE__SHIFT 0x16
+#define CP_DEBUG__PREDICATE_DISABLE__SHIFT 0x17
+#define CP_DEBUG__UNDERFLOW_BUSY_DISABLE__SHIFT 0x18
+#define CP_DEBUG__OVERFLOW_BUSY_DISABLE__SHIFT 0x19
+#define CP_DEBUG__EVENT_FILT_DISABLE__SHIFT 0x1a
+#define CP_DEBUG__CPG_TC_MTYPE_OVERRIDE__SHIFT 0x1b
+#define CP_DEBUG__CPG_TC_ONE_CYCLE_WRITE_DISABLE__SHIFT 0x1c
+#define CP_DEBUG__CS_STATE_FILT_DISABLE__SHIFT 0x1d
+#define CP_DEBUG__CS_PIPELINE_RESET_DISABLE__SHIFT 0x1e
+#define CP_DEBUG__IB_PACKET_INJECTOR_DISABLE__SHIFT 0x1f
+#define CP_DEBUG__CPG_REPEATER_FGCG_OVERRIDE_MASK 0x00000200L
+#define CP_DEBUG__CPG_RAM_CLK_GATING_DISABLE_MASK 0x00004000L
+#define CP_DEBUG__DISABLE_GFX_HALT_ON_UTCL1_ERROR_MASK 0x00008000L
+#define CP_DEBUG__SURFSYNC_CNTX_RDADDR_MASK 0x00070000L
+#define CP_DEBUG__BUSY_EXTENDER_MASK 0x00180000L
+#define CP_DEBUG__PRIV_REG_INTERRUPT_ENABLE_MASK 0x00200000L
+#define CP_DEBUG__INTERRUPT_ENABLE_MASK 0x00400000L
+#define CP_DEBUG__PREDICATE_DISABLE_MASK 0x00800000L
+#define CP_DEBUG__UNDERFLOW_BUSY_DISABLE_MASK 0x01000000L
+#define CP_DEBUG__OVERFLOW_BUSY_DISABLE_MASK 0x02000000L
+#define CP_DEBUG__EVENT_FILT_DISABLE_MASK 0x04000000L
+#define CP_DEBUG__CPG_TC_MTYPE_OVERRIDE_MASK 0x08000000L
+#define CP_DEBUG__CPG_TC_ONE_CYCLE_WRITE_DISABLE_MASK 0x10000000L
+#define CP_DEBUG__CS_STATE_FILT_DISABLE_MASK 0x20000000L
+#define CP_DEBUG__CS_PIPELINE_RESET_DISABLE_MASK 0x40000000L
+#define CP_DEBUG__IB_PACKET_INJECTOR_DISABLE_MASK 0x80000000L
+//CP_CPF_DEBUG
+#define CP_CPF_DEBUG__QUE_MANAGER_CLR_DBELLUPD_DIS__SHIFT 0x6
+#define CP_CPF_DEBUG__CPF_REPEATER_FGCG_OVERRIDE__SHIFT 0x10
+#define CP_CPF_DEBUG__CPF_RAM_CLK_GATING_DISABLE__SHIFT 0x12
+#define CP_CPF_DEBUG__BUSY_EXTENDER__SHIFT 0x13
+#define CP_CPF_DEBUG__UNDERFLOW_BUSY_DISABLE__SHIFT 0x18
+#define CP_CPF_DEBUG__OVERFLOW_BUSY_DISABLE__SHIFT 0x19
+#define CP_CPF_DEBUG__CPF_PRIORITY_YIELD_ACTIVE_DIS__SHIFT 0x1d
+#define CP_CPF_DEBUG__CPF_TC_MTYPE_OVERRIDE__SHIFT 0x1e
+#define CP_CPF_DEBUG__DBGU_TRIGGER__SHIFT 0x1f
+#define CP_CPF_DEBUG__QUE_MANAGER_CLR_DBELLUPD_DIS_MASK 0x00000040L
+#define CP_CPF_DEBUG__CPF_REPEATER_FGCG_OVERRIDE_MASK 0x00010000L
+#define CP_CPF_DEBUG__CPF_RAM_CLK_GATING_DISABLE_MASK 0x00040000L
+#define CP_CPF_DEBUG__BUSY_EXTENDER_MASK 0x00180000L
+#define CP_CPF_DEBUG__UNDERFLOW_BUSY_DISABLE_MASK 0x01000000L
+#define CP_CPF_DEBUG__OVERFLOW_BUSY_DISABLE_MASK 0x02000000L
+#define CP_CPF_DEBUG__CPF_PRIORITY_YIELD_ACTIVE_DIS_MASK 0x20000000L
+#define CP_CPF_DEBUG__CPF_TC_MTYPE_OVERRIDE_MASK 0x40000000L
+#define CP_CPF_DEBUG__DBGU_TRIGGER_MASK 0x80000000L
+//CP_CPC_DEBUG
+#define CP_CPC_DEBUG__CPC_PIPE_SEL__SHIFT 0x0
+#define CP_CPC_DEBUG__CPC_ROLLOVER_EVENT_DEBUG_EN__SHIFT 0x3
+#define CP_CPC_DEBUG__CPC_HARVESTING_CONTINUE_DISABLE__SHIFT 0xb
+#define CP_CPC_DEBUG__CPC_HARVESTING_RELAUNCH_DISABLE__SHIFT 0xc
+#define CP_CPC_DEBUG__CPC_HARVEST_AUTO_DISABLE__SHIFT 0xd
+#define CP_CPC_DEBUG__CPC_HARVESTING_DISPATCH_DISABLE__SHIFT 0xe
+#define CP_CPC_DEBUG__CPC_REPEATER_FGCG_OVERRIDE__SHIFT 0xf
+#define CP_CPC_DEBUG__CPC_RAM_CLK_GATING_DISABLE__SHIFT 0x12
+#define CP_CPC_DEBUG__BUSY_EXTENDER__SHIFT 0x13
+#define CP_CPC_DEBUG__UCODE_ECC_ERROR_DISABLE__SHIFT 0x15
+#define CP_CPC_DEBUG__RESERVED_INTERRUPT_ENABLE__SHIFT 0x16
+#define CP_CPC_DEBUG__RESTORE_FIFO_EMPTY_SEL__SHIFT 0x17
+#define CP_CPC_DEBUG__UNDERFLOW_BUSY_DISABLE__SHIFT 0x18
+#define CP_CPC_DEBUG__OVERFLOW_BUSY_DISABLE__SHIFT 0x19
+#define CP_CPC_DEBUG__EVENT_FILT_DISABLE__SHIFT 0x1a
+#define CP_CPC_DEBUG__PRIV_REG_INTERRUPT_ENABLE__SHIFT 0x1b
+#define CP_CPC_DEBUG__CPC_TC_ONE_CYCLE_WRITE_DISABLE__SHIFT 0x1c
+#define CP_CPC_DEBUG__CS_STATE_FILT_DISABLE__SHIFT 0x1d
+#define CP_CPC_DEBUG__ME2_UCODE_RAM_ENABLE__SHIFT 0x1f
+#define CP_CPC_DEBUG__CPC_PIPE_SEL_MASK 0x00000003L
+#define CP_CPC_DEBUG__CPC_ROLLOVER_EVENT_DEBUG_EN_MASK 0x00000008L
+#define CP_CPC_DEBUG__CPC_HARVESTING_CONTINUE_DISABLE_MASK 0x00000800L
+#define CP_CPC_DEBUG__CPC_HARVESTING_RELAUNCH_DISABLE_MASK 0x00001000L
+#define CP_CPC_DEBUG__CPC_HARVEST_AUTO_DISABLE_MASK 0x00002000L
+#define CP_CPC_DEBUG__CPC_HARVESTING_DISPATCH_DISABLE_MASK 0x00004000L
+#define CP_CPC_DEBUG__CPC_REPEATER_FGCG_OVERRIDE_MASK 0x00008000L
+#define CP_CPC_DEBUG__CPC_RAM_CLK_GATING_DISABLE_MASK 0x00040000L
+#define CP_CPC_DEBUG__BUSY_EXTENDER_MASK 0x00180000L
+#define CP_CPC_DEBUG__UCODE_ECC_ERROR_DISABLE_MASK 0x00200000L
+#define CP_CPC_DEBUG__RESERVED_INTERRUPT_ENABLE_MASK 0x00400000L
+#define CP_CPC_DEBUG__RESTORE_FIFO_EMPTY_SEL_MASK 0x00800000L
+#define CP_CPC_DEBUG__UNDERFLOW_BUSY_DISABLE_MASK 0x01000000L
+#define CP_CPC_DEBUG__OVERFLOW_BUSY_DISABLE_MASK 0x02000000L
+#define CP_CPC_DEBUG__EVENT_FILT_DISABLE_MASK 0x04000000L
+#define CP_CPC_DEBUG__PRIV_REG_INTERRUPT_ENABLE_MASK 0x08000000L
+#define CP_CPC_DEBUG__CPC_TC_ONE_CYCLE_WRITE_DISABLE_MASK 0x10000000L
+#define CP_CPC_DEBUG__CS_STATE_FILT_DISABLE_MASK 0x20000000L
+#define CP_CPC_DEBUG__ME2_UCODE_RAM_ENABLE_MASK 0x80000000L
+//CP_CPC_DEBUG_2
+#define CP_CPC_DEBUG_2__DC_GD_PIPE3_QSWITCH_CNT__SHIFT 0x0
+#define CP_CPC_DEBUG_2__DC_GD_PIPE2_QSWITCH_CNT__SHIFT 0x8
+#define CP_CPC_DEBUG_2__DC_GD_PIPE1_QSWITCH_CNT__SHIFT 0x10
+#define CP_CPC_DEBUG_2__DC_GD_PIPE0_QSWITCH_CNT__SHIFT 0x18
+#define CP_CPC_DEBUG_2__DC_GD_PIPE3_QSWITCH_CNT_MASK 0x000000FFL
+#define CP_CPC_DEBUG_2__DC_GD_PIPE2_QSWITCH_CNT_MASK 0x0000FF00L
+#define CP_CPC_DEBUG_2__DC_GD_PIPE1_QSWITCH_CNT_MASK 0x00FF0000L
+#define CP_CPC_DEBUG_2__DC_GD_PIPE0_QSWITCH_CNT_MASK 0xFF000000L
+//CP_PQ_WPTR_POLL_CNTL
+#define CP_PQ_WPTR_POLL_CNTL__PERIOD__SHIFT 0x0
+#define CP_PQ_WPTR_POLL_CNTL__DISABLE_PEND_REQ_ONE_SHOT__SHIFT 0x1d
+#define CP_PQ_WPTR_POLL_CNTL__POLL_ACTIVE__SHIFT 0x1e
+#define CP_PQ_WPTR_POLL_CNTL__EN__SHIFT 0x1f
+#define CP_PQ_WPTR_POLL_CNTL__PERIOD_MASK 0x000000FFL
+#define CP_PQ_WPTR_POLL_CNTL__DISABLE_PEND_REQ_ONE_SHOT_MASK 0x20000000L
+#define CP_PQ_WPTR_POLL_CNTL__POLL_ACTIVE_MASK 0x40000000L
+#define CP_PQ_WPTR_POLL_CNTL__EN_MASK 0x80000000L
+//CP_PQ_WPTR_POLL_CNTL1
+#define CP_PQ_WPTR_POLL_CNTL1__QUEUE_MASK__SHIFT 0x0
+#define CP_PQ_WPTR_POLL_CNTL1__QUEUE_MASK_MASK 0xFFFFFFFFL
+//CP_ME1_PIPE0_INT_CNTL
+#define CP_ME1_PIPE0_INT_CNTL__CMP_QUERY_STATUS_INT_ENABLE__SHIFT 0xc
+#define CP_ME1_PIPE0_INT_CNTL__DEQUEUE_REQUEST_INT_ENABLE__SHIFT 0xd
+#define CP_ME1_PIPE0_INT_CNTL__CP_ECC_ERROR_INT_ENABLE__SHIFT 0xe
+#define CP_ME1_PIPE0_INT_CNTL__SUA_VIOLATION_INT_ENABLE__SHIFT 0xf
+#define CP_ME1_PIPE0_INT_CNTL__GPF_INT_ENABLE__SHIFT 0x10
+#define CP_ME1_PIPE0_INT_CNTL__WRM_POLL_TIMEOUT_INT_ENABLE__SHIFT 0x11
+#define CP_ME1_PIPE0_INT_CNTL__PRIV_REG_INT_ENABLE__SHIFT 0x17
+#define CP_ME1_PIPE0_INT_CNTL__OPCODE_ERROR_INT_ENABLE__SHIFT 0x18
+#define CP_ME1_PIPE0_INT_CNTL__TIME_STAMP_INT_ENABLE__SHIFT 0x1a
+#define CP_ME1_PIPE0_INT_CNTL__RESERVED_BIT_ERROR_INT_ENABLE__SHIFT 0x1b
+#define CP_ME1_PIPE0_INT_CNTL__GENERIC2_INT_ENABLE__SHIFT 0x1d
+#define CP_ME1_PIPE0_INT_CNTL__GENERIC1_INT_ENABLE__SHIFT 0x1e
+#define CP_ME1_PIPE0_INT_CNTL__GENERIC0_INT_ENABLE__SHIFT 0x1f
+#define CP_ME1_PIPE0_INT_CNTL__CMP_QUERY_STATUS_INT_ENABLE_MASK 0x00001000L
+#define CP_ME1_PIPE0_INT_CNTL__DEQUEUE_REQUEST_INT_ENABLE_MASK 0x00002000L
+#define CP_ME1_PIPE0_INT_CNTL__CP_ECC_ERROR_INT_ENABLE_MASK 0x00004000L
+#define CP_ME1_PIPE0_INT_CNTL__SUA_VIOLATION_INT_ENABLE_MASK 0x00008000L
+#define CP_ME1_PIPE0_INT_CNTL__GPF_INT_ENABLE_MASK 0x00010000L
+#define CP_ME1_PIPE0_INT_CNTL__WRM_POLL_TIMEOUT_INT_ENABLE_MASK 0x00020000L
+#define CP_ME1_PIPE0_INT_CNTL__PRIV_REG_INT_ENABLE_MASK 0x00800000L
+#define CP_ME1_PIPE0_INT_CNTL__OPCODE_ERROR_INT_ENABLE_MASK 0x01000000L
+#define CP_ME1_PIPE0_INT_CNTL__TIME_STAMP_INT_ENABLE_MASK 0x04000000L
+#define CP_ME1_PIPE0_INT_CNTL__RESERVED_BIT_ERROR_INT_ENABLE_MASK 0x08000000L
+#define CP_ME1_PIPE0_INT_CNTL__GENERIC2_INT_ENABLE_MASK 0x20000000L
+#define CP_ME1_PIPE0_INT_CNTL__GENERIC1_INT_ENABLE_MASK 0x40000000L
+#define CP_ME1_PIPE0_INT_CNTL__GENERIC0_INT_ENABLE_MASK 0x80000000L
+//CP_ME1_PIPE1_INT_CNTL
+#define CP_ME1_PIPE1_INT_CNTL__CMP_QUERY_STATUS_INT_ENABLE__SHIFT 0xc
+#define CP_ME1_PIPE1_INT_CNTL__DEQUEUE_REQUEST_INT_ENABLE__SHIFT 0xd
+#define CP_ME1_PIPE1_INT_CNTL__CP_ECC_ERROR_INT_ENABLE__SHIFT 0xe
+#define CP_ME1_PIPE1_INT_CNTL__SUA_VIOLATION_INT_ENABLE__SHIFT 0xf
+#define CP_ME1_PIPE1_INT_CNTL__GPF_INT_ENABLE__SHIFT 0x10
+#define CP_ME1_PIPE1_INT_CNTL__WRM_POLL_TIMEOUT_INT_ENABLE__SHIFT 0x11
+#define CP_ME1_PIPE1_INT_CNTL__PRIV_REG_INT_ENABLE__SHIFT 0x17
+#define CP_ME1_PIPE1_INT_CNTL__OPCODE_ERROR_INT_ENABLE__SHIFT 0x18
+#define CP_ME1_PIPE1_INT_CNTL__TIME_STAMP_INT_ENABLE__SHIFT 0x1a
+#define CP_ME1_PIPE1_INT_CNTL__RESERVED_BIT_ERROR_INT_ENABLE__SHIFT 0x1b
+#define CP_ME1_PIPE1_INT_CNTL__GENERIC2_INT_ENABLE__SHIFT 0x1d
+#define CP_ME1_PIPE1_INT_CNTL__GENERIC1_INT_ENABLE__SHIFT 0x1e
+#define CP_ME1_PIPE1_INT_CNTL__GENERIC0_INT_ENABLE__SHIFT 0x1f
+#define CP_ME1_PIPE1_INT_CNTL__CMP_QUERY_STATUS_INT_ENABLE_MASK 0x00001000L
+#define CP_ME1_PIPE1_INT_CNTL__DEQUEUE_REQUEST_INT_ENABLE_MASK 0x00002000L
+#define CP_ME1_PIPE1_INT_CNTL__CP_ECC_ERROR_INT_ENABLE_MASK 0x00004000L
+#define CP_ME1_PIPE1_INT_CNTL__SUA_VIOLATION_INT_ENABLE_MASK 0x00008000L
+#define CP_ME1_PIPE1_INT_CNTL__GPF_INT_ENABLE_MASK 0x00010000L
+#define CP_ME1_PIPE1_INT_CNTL__WRM_POLL_TIMEOUT_INT_ENABLE_MASK 0x00020000L
+#define CP_ME1_PIPE1_INT_CNTL__PRIV_REG_INT_ENABLE_MASK 0x00800000L
+#define CP_ME1_PIPE1_INT_CNTL__OPCODE_ERROR_INT_ENABLE_MASK 0x01000000L
+#define CP_ME1_PIPE1_INT_CNTL__TIME_STAMP_INT_ENABLE_MASK 0x04000000L
+#define CP_ME1_PIPE1_INT_CNTL__RESERVED_BIT_ERROR_INT_ENABLE_MASK 0x08000000L
+#define CP_ME1_PIPE1_INT_CNTL__GENERIC2_INT_ENABLE_MASK 0x20000000L
+#define CP_ME1_PIPE1_INT_CNTL__GENERIC1_INT_ENABLE_MASK 0x40000000L
+#define CP_ME1_PIPE1_INT_CNTL__GENERIC0_INT_ENABLE_MASK 0x80000000L
+//CP_ME1_PIPE2_INT_CNTL
+#define CP_ME1_PIPE2_INT_CNTL__CMP_QUERY_STATUS_INT_ENABLE__SHIFT 0xc
+#define CP_ME1_PIPE2_INT_CNTL__DEQUEUE_REQUEST_INT_ENABLE__SHIFT 0xd
+#define CP_ME1_PIPE2_INT_CNTL__CP_ECC_ERROR_INT_ENABLE__SHIFT 0xe
+#define CP_ME1_PIPE2_INT_CNTL__SUA_VIOLATION_INT_ENABLE__SHIFT 0xf
+#define CP_ME1_PIPE2_INT_CNTL__GPF_INT_ENABLE__SHIFT 0x10
+#define CP_ME1_PIPE2_INT_CNTL__WRM_POLL_TIMEOUT_INT_ENABLE__SHIFT 0x11
+#define CP_ME1_PIPE2_INT_CNTL__PRIV_REG_INT_ENABLE__SHIFT 0x17
+#define CP_ME1_PIPE2_INT_CNTL__OPCODE_ERROR_INT_ENABLE__SHIFT 0x18
+#define CP_ME1_PIPE2_INT_CNTL__TIME_STAMP_INT_ENABLE__SHIFT 0x1a
+#define CP_ME1_PIPE2_INT_CNTL__RESERVED_BIT_ERROR_INT_ENABLE__SHIFT 0x1b
+#define CP_ME1_PIPE2_INT_CNTL__GENERIC2_INT_ENABLE__SHIFT 0x1d
+#define CP_ME1_PIPE2_INT_CNTL__GENERIC1_INT_ENABLE__SHIFT 0x1e
+#define CP_ME1_PIPE2_INT_CNTL__GENERIC0_INT_ENABLE__SHIFT 0x1f
+#define CP_ME1_PIPE2_INT_CNTL__CMP_QUERY_STATUS_INT_ENABLE_MASK 0x00001000L
+#define CP_ME1_PIPE2_INT_CNTL__DEQUEUE_REQUEST_INT_ENABLE_MASK 0x00002000L
+#define CP_ME1_PIPE2_INT_CNTL__CP_ECC_ERROR_INT_ENABLE_MASK 0x00004000L
+#define CP_ME1_PIPE2_INT_CNTL__SUA_VIOLATION_INT_ENABLE_MASK 0x00008000L
+#define CP_ME1_PIPE2_INT_CNTL__GPF_INT_ENABLE_MASK 0x00010000L
+#define CP_ME1_PIPE2_INT_CNTL__WRM_POLL_TIMEOUT_INT_ENABLE_MASK 0x00020000L
+#define CP_ME1_PIPE2_INT_CNTL__PRIV_REG_INT_ENABLE_MASK 0x00800000L
+#define CP_ME1_PIPE2_INT_CNTL__OPCODE_ERROR_INT_ENABLE_MASK 0x01000000L
+#define CP_ME1_PIPE2_INT_CNTL__TIME_STAMP_INT_ENABLE_MASK 0x04000000L
+#define CP_ME1_PIPE2_INT_CNTL__RESERVED_BIT_ERROR_INT_ENABLE_MASK 0x08000000L
+#define CP_ME1_PIPE2_INT_CNTL__GENERIC2_INT_ENABLE_MASK 0x20000000L
+#define CP_ME1_PIPE2_INT_CNTL__GENERIC1_INT_ENABLE_MASK 0x40000000L
+#define CP_ME1_PIPE2_INT_CNTL__GENERIC0_INT_ENABLE_MASK 0x80000000L
+//CP_ME1_PIPE3_INT_CNTL
+#define CP_ME1_PIPE3_INT_CNTL__CMP_QUERY_STATUS_INT_ENABLE__SHIFT 0xc
+#define CP_ME1_PIPE3_INT_CNTL__DEQUEUE_REQUEST_INT_ENABLE__SHIFT 0xd
+#define CP_ME1_PIPE3_INT_CNTL__CP_ECC_ERROR_INT_ENABLE__SHIFT 0xe
+#define CP_ME1_PIPE3_INT_CNTL__SUA_VIOLATION_INT_ENABLE__SHIFT 0xf
+#define CP_ME1_PIPE3_INT_CNTL__GPF_INT_ENABLE__SHIFT 0x10
+#define CP_ME1_PIPE3_INT_CNTL__WRM_POLL_TIMEOUT_INT_ENABLE__SHIFT 0x11
+#define CP_ME1_PIPE3_INT_CNTL__PRIV_REG_INT_ENABLE__SHIFT 0x17
+#define CP_ME1_PIPE3_INT_CNTL__OPCODE_ERROR_INT_ENABLE__SHIFT 0x18
+#define CP_ME1_PIPE3_INT_CNTL__TIME_STAMP_INT_ENABLE__SHIFT 0x1a
+#define CP_ME1_PIPE3_INT_CNTL__RESERVED_BIT_ERROR_INT_ENABLE__SHIFT 0x1b
+#define CP_ME1_PIPE3_INT_CNTL__GENERIC2_INT_ENABLE__SHIFT 0x1d
+#define CP_ME1_PIPE3_INT_CNTL__GENERIC1_INT_ENABLE__SHIFT 0x1e
+#define CP_ME1_PIPE3_INT_CNTL__GENERIC0_INT_ENABLE__SHIFT 0x1f
+#define CP_ME1_PIPE3_INT_CNTL__CMP_QUERY_STATUS_INT_ENABLE_MASK 0x00001000L
+#define CP_ME1_PIPE3_INT_CNTL__DEQUEUE_REQUEST_INT_ENABLE_MASK 0x00002000L
+#define CP_ME1_PIPE3_INT_CNTL__CP_ECC_ERROR_INT_ENABLE_MASK 0x00004000L
+#define CP_ME1_PIPE3_INT_CNTL__SUA_VIOLATION_INT_ENABLE_MASK 0x00008000L
+#define CP_ME1_PIPE3_INT_CNTL__GPF_INT_ENABLE_MASK 0x00010000L
+#define CP_ME1_PIPE3_INT_CNTL__WRM_POLL_TIMEOUT_INT_ENABLE_MASK 0x00020000L
+#define CP_ME1_PIPE3_INT_CNTL__PRIV_REG_INT_ENABLE_MASK 0x00800000L
+#define CP_ME1_PIPE3_INT_CNTL__OPCODE_ERROR_INT_ENABLE_MASK 0x01000000L
+#define CP_ME1_PIPE3_INT_CNTL__TIME_STAMP_INT_ENABLE_MASK 0x04000000L
+#define CP_ME1_PIPE3_INT_CNTL__RESERVED_BIT_ERROR_INT_ENABLE_MASK 0x08000000L
+#define CP_ME1_PIPE3_INT_CNTL__GENERIC2_INT_ENABLE_MASK 0x20000000L
+#define CP_ME1_PIPE3_INT_CNTL__GENERIC1_INT_ENABLE_MASK 0x40000000L
+#define CP_ME1_PIPE3_INT_CNTL__GENERIC0_INT_ENABLE_MASK 0x80000000L
+//CP_ME2_PIPE0_INT_CNTL
+#define CP_ME2_PIPE0_INT_CNTL__CMP_QUERY_STATUS_INT_ENABLE__SHIFT 0xc
+#define CP_ME2_PIPE0_INT_CNTL__DEQUEUE_REQUEST_INT_ENABLE__SHIFT 0xd
+#define CP_ME2_PIPE0_INT_CNTL__CP_ECC_ERROR_INT_ENABLE__SHIFT 0xe
+#define CP_ME2_PIPE0_INT_CNTL__SUA_VIOLATION_INT_ENABLE__SHIFT 0xf
+#define CP_ME2_PIPE0_INT_CNTL__GPF_INT_ENABLE__SHIFT 0x10
+#define CP_ME2_PIPE0_INT_CNTL__WRM_POLL_TIMEOUT_INT_ENABLE__SHIFT 0x11
+#define CP_ME2_PIPE0_INT_CNTL__PRIV_REG_INT_ENABLE__SHIFT 0x17
+#define CP_ME2_PIPE0_INT_CNTL__OPCODE_ERROR_INT_ENABLE__SHIFT 0x18
+#define CP_ME2_PIPE0_INT_CNTL__TIME_STAMP_INT_ENABLE__SHIFT 0x1a
+#define CP_ME2_PIPE0_INT_CNTL__RESERVED_BIT_ERROR_INT_ENABLE__SHIFT 0x1b
+#define CP_ME2_PIPE0_INT_CNTL__GENERIC2_INT_ENABLE__SHIFT 0x1d
+#define CP_ME2_PIPE0_INT_CNTL__GENERIC1_INT_ENABLE__SHIFT 0x1e
+#define CP_ME2_PIPE0_INT_CNTL__GENERIC0_INT_ENABLE__SHIFT 0x1f
+#define CP_ME2_PIPE0_INT_CNTL__CMP_QUERY_STATUS_INT_ENABLE_MASK 0x00001000L
+#define CP_ME2_PIPE0_INT_CNTL__DEQUEUE_REQUEST_INT_ENABLE_MASK 0x00002000L
+#define CP_ME2_PIPE0_INT_CNTL__CP_ECC_ERROR_INT_ENABLE_MASK 0x00004000L
+#define CP_ME2_PIPE0_INT_CNTL__SUA_VIOLATION_INT_ENABLE_MASK 0x00008000L
+#define CP_ME2_PIPE0_INT_CNTL__GPF_INT_ENABLE_MASK 0x00010000L
+#define CP_ME2_PIPE0_INT_CNTL__WRM_POLL_TIMEOUT_INT_ENABLE_MASK 0x00020000L
+#define CP_ME2_PIPE0_INT_CNTL__PRIV_REG_INT_ENABLE_MASK 0x00800000L
+#define CP_ME2_PIPE0_INT_CNTL__OPCODE_ERROR_INT_ENABLE_MASK 0x01000000L
+#define CP_ME2_PIPE0_INT_CNTL__TIME_STAMP_INT_ENABLE_MASK 0x04000000L
+#define CP_ME2_PIPE0_INT_CNTL__RESERVED_BIT_ERROR_INT_ENABLE_MASK 0x08000000L
+#define CP_ME2_PIPE0_INT_CNTL__GENERIC2_INT_ENABLE_MASK 0x20000000L
+#define CP_ME2_PIPE0_INT_CNTL__GENERIC1_INT_ENABLE_MASK 0x40000000L
+#define CP_ME2_PIPE0_INT_CNTL__GENERIC0_INT_ENABLE_MASK 0x80000000L
+//CP_ME2_PIPE1_INT_CNTL
+#define CP_ME2_PIPE1_INT_CNTL__CMP_QUERY_STATUS_INT_ENABLE__SHIFT 0xc
+#define CP_ME2_PIPE1_INT_CNTL__DEQUEUE_REQUEST_INT_ENABLE__SHIFT 0xd
+#define CP_ME2_PIPE1_INT_CNTL__CP_ECC_ERROR_INT_ENABLE__SHIFT 0xe
+#define CP_ME2_PIPE1_INT_CNTL__SUA_VIOLATION_INT_ENABLE__SHIFT 0xf
+#define CP_ME2_PIPE1_INT_CNTL__GPF_INT_ENABLE__SHIFT 0x10
+#define CP_ME2_PIPE1_INT_CNTL__WRM_POLL_TIMEOUT_INT_ENABLE__SHIFT 0x11
+#define CP_ME2_PIPE1_INT_CNTL__PRIV_REG_INT_ENABLE__SHIFT 0x17
+#define CP_ME2_PIPE1_INT_CNTL__OPCODE_ERROR_INT_ENABLE__SHIFT 0x18
+#define CP_ME2_PIPE1_INT_CNTL__TIME_STAMP_INT_ENABLE__SHIFT 0x1a
+#define CP_ME2_PIPE1_INT_CNTL__RESERVED_BIT_ERROR_INT_ENABLE__SHIFT 0x1b
+#define CP_ME2_PIPE1_INT_CNTL__GENERIC2_INT_ENABLE__SHIFT 0x1d
+#define CP_ME2_PIPE1_INT_CNTL__GENERIC1_INT_ENABLE__SHIFT 0x1e
+#define CP_ME2_PIPE1_INT_CNTL__GENERIC0_INT_ENABLE__SHIFT 0x1f
+#define CP_ME2_PIPE1_INT_CNTL__CMP_QUERY_STATUS_INT_ENABLE_MASK 0x00001000L
+#define CP_ME2_PIPE1_INT_CNTL__DEQUEUE_REQUEST_INT_ENABLE_MASK 0x00002000L
+#define CP_ME2_PIPE1_INT_CNTL__CP_ECC_ERROR_INT_ENABLE_MASK 0x00004000L
+#define CP_ME2_PIPE1_INT_CNTL__SUA_VIOLATION_INT_ENABLE_MASK 0x00008000L
+#define CP_ME2_PIPE1_INT_CNTL__GPF_INT_ENABLE_MASK 0x00010000L
+#define CP_ME2_PIPE1_INT_CNTL__WRM_POLL_TIMEOUT_INT_ENABLE_MASK 0x00020000L
+#define CP_ME2_PIPE1_INT_CNTL__PRIV_REG_INT_ENABLE_MASK 0x00800000L
+#define CP_ME2_PIPE1_INT_CNTL__OPCODE_ERROR_INT_ENABLE_MASK 0x01000000L
+#define CP_ME2_PIPE1_INT_CNTL__TIME_STAMP_INT_ENABLE_MASK 0x04000000L
+#define CP_ME2_PIPE1_INT_CNTL__RESERVED_BIT_ERROR_INT_ENABLE_MASK 0x08000000L
+#define CP_ME2_PIPE1_INT_CNTL__GENERIC2_INT_ENABLE_MASK 0x20000000L
+#define CP_ME2_PIPE1_INT_CNTL__GENERIC1_INT_ENABLE_MASK 0x40000000L
+#define CP_ME2_PIPE1_INT_CNTL__GENERIC0_INT_ENABLE_MASK 0x80000000L
+//CP_ME2_PIPE2_INT_CNTL
+#define CP_ME2_PIPE2_INT_CNTL__CMP_QUERY_STATUS_INT_ENABLE__SHIFT 0xc
+#define CP_ME2_PIPE2_INT_CNTL__DEQUEUE_REQUEST_INT_ENABLE__SHIFT 0xd
+#define CP_ME2_PIPE2_INT_CNTL__CP_ECC_ERROR_INT_ENABLE__SHIFT 0xe
+#define CP_ME2_PIPE2_INT_CNTL__SUA_VIOLATION_INT_ENABLE__SHIFT 0xf
+#define CP_ME2_PIPE2_INT_CNTL__GPF_INT_ENABLE__SHIFT 0x10
+#define CP_ME2_PIPE2_INT_CNTL__WRM_POLL_TIMEOUT_INT_ENABLE__SHIFT 0x11
+#define CP_ME2_PIPE2_INT_CNTL__PRIV_REG_INT_ENABLE__SHIFT 0x17
+#define CP_ME2_PIPE2_INT_CNTL__OPCODE_ERROR_INT_ENABLE__SHIFT 0x18
+#define CP_ME2_PIPE2_INT_CNTL__TIME_STAMP_INT_ENABLE__SHIFT 0x1a
+#define CP_ME2_PIPE2_INT_CNTL__RESERVED_BIT_ERROR_INT_ENABLE__SHIFT 0x1b
+#define CP_ME2_PIPE2_INT_CNTL__GENERIC2_INT_ENABLE__SHIFT 0x1d
+#define CP_ME2_PIPE2_INT_CNTL__GENERIC1_INT_ENABLE__SHIFT 0x1e
+#define CP_ME2_PIPE2_INT_CNTL__GENERIC0_INT_ENABLE__SHIFT 0x1f
+#define CP_ME2_PIPE2_INT_CNTL__CMP_QUERY_STATUS_INT_ENABLE_MASK 0x00001000L
+#define CP_ME2_PIPE2_INT_CNTL__DEQUEUE_REQUEST_INT_ENABLE_MASK 0x00002000L
+#define CP_ME2_PIPE2_INT_CNTL__CP_ECC_ERROR_INT_ENABLE_MASK 0x00004000L
+#define CP_ME2_PIPE2_INT_CNTL__SUA_VIOLATION_INT_ENABLE_MASK 0x00008000L
+#define CP_ME2_PIPE2_INT_CNTL__GPF_INT_ENABLE_MASK 0x00010000L
+#define CP_ME2_PIPE2_INT_CNTL__WRM_POLL_TIMEOUT_INT_ENABLE_MASK 0x00020000L
+#define CP_ME2_PIPE2_INT_CNTL__PRIV_REG_INT_ENABLE_MASK 0x00800000L
+#define CP_ME2_PIPE2_INT_CNTL__OPCODE_ERROR_INT_ENABLE_MASK 0x01000000L
+#define CP_ME2_PIPE2_INT_CNTL__TIME_STAMP_INT_ENABLE_MASK 0x04000000L
+#define CP_ME2_PIPE2_INT_CNTL__RESERVED_BIT_ERROR_INT_ENABLE_MASK 0x08000000L
+#define CP_ME2_PIPE2_INT_CNTL__GENERIC2_INT_ENABLE_MASK 0x20000000L
+#define CP_ME2_PIPE2_INT_CNTL__GENERIC1_INT_ENABLE_MASK 0x40000000L
+#define CP_ME2_PIPE2_INT_CNTL__GENERIC0_INT_ENABLE_MASK 0x80000000L
+//CP_ME2_PIPE3_INT_CNTL
+#define CP_ME2_PIPE3_INT_CNTL__CMP_QUERY_STATUS_INT_ENABLE__SHIFT 0xc
+#define CP_ME2_PIPE3_INT_CNTL__DEQUEUE_REQUEST_INT_ENABLE__SHIFT 0xd
+#define CP_ME2_PIPE3_INT_CNTL__CP_ECC_ERROR_INT_ENABLE__SHIFT 0xe
+#define CP_ME2_PIPE3_INT_CNTL__SUA_VIOLATION_INT_ENABLE__SHIFT 0xf
+#define CP_ME2_PIPE3_INT_CNTL__GPF_INT_ENABLE__SHIFT 0x10
+#define CP_ME2_PIPE3_INT_CNTL__WRM_POLL_TIMEOUT_INT_ENABLE__SHIFT 0x11
+#define CP_ME2_PIPE3_INT_CNTL__PRIV_REG_INT_ENABLE__SHIFT 0x17
+#define CP_ME2_PIPE3_INT_CNTL__OPCODE_ERROR_INT_ENABLE__SHIFT 0x18
+#define CP_ME2_PIPE3_INT_CNTL__TIME_STAMP_INT_ENABLE__SHIFT 0x1a
+#define CP_ME2_PIPE3_INT_CNTL__RESERVED_BIT_ERROR_INT_ENABLE__SHIFT 0x1b
+#define CP_ME2_PIPE3_INT_CNTL__GENERIC2_INT_ENABLE__SHIFT 0x1d
+#define CP_ME2_PIPE3_INT_CNTL__GENERIC1_INT_ENABLE__SHIFT 0x1e
+#define CP_ME2_PIPE3_INT_CNTL__GENERIC0_INT_ENABLE__SHIFT 0x1f
+#define CP_ME2_PIPE3_INT_CNTL__CMP_QUERY_STATUS_INT_ENABLE_MASK 0x00001000L
+#define CP_ME2_PIPE3_INT_CNTL__DEQUEUE_REQUEST_INT_ENABLE_MASK 0x00002000L
+#define CP_ME2_PIPE3_INT_CNTL__CP_ECC_ERROR_INT_ENABLE_MASK 0x00004000L
+#define CP_ME2_PIPE3_INT_CNTL__SUA_VIOLATION_INT_ENABLE_MASK 0x00008000L
+#define CP_ME2_PIPE3_INT_CNTL__GPF_INT_ENABLE_MASK 0x00010000L
+#define CP_ME2_PIPE3_INT_CNTL__WRM_POLL_TIMEOUT_INT_ENABLE_MASK 0x00020000L
+#define CP_ME2_PIPE3_INT_CNTL__PRIV_REG_INT_ENABLE_MASK 0x00800000L
+#define CP_ME2_PIPE3_INT_CNTL__OPCODE_ERROR_INT_ENABLE_MASK 0x01000000L
+#define CP_ME2_PIPE3_INT_CNTL__TIME_STAMP_INT_ENABLE_MASK 0x04000000L
+#define CP_ME2_PIPE3_INT_CNTL__RESERVED_BIT_ERROR_INT_ENABLE_MASK 0x08000000L
+#define CP_ME2_PIPE3_INT_CNTL__GENERIC2_INT_ENABLE_MASK 0x20000000L
+#define CP_ME2_PIPE3_INT_CNTL__GENERIC1_INT_ENABLE_MASK 0x40000000L
+#define CP_ME2_PIPE3_INT_CNTL__GENERIC0_INT_ENABLE_MASK 0x80000000L
+//CP_ME1_PIPE0_INT_STATUS
+#define CP_ME1_PIPE0_INT_STATUS__CMP_QUERY_STATUS_INT_STATUS__SHIFT 0xc
+#define CP_ME1_PIPE0_INT_STATUS__DEQUEUE_REQUEST_INT_STATUS__SHIFT 0xd
+#define CP_ME1_PIPE0_INT_STATUS__CP_ECC_ERROR_INT_STATUS__SHIFT 0xe
+#define CP_ME1_PIPE0_INT_STATUS__SUA_VIOLATION_INT_STATUS__SHIFT 0xf
+#define CP_ME1_PIPE0_INT_STATUS__GPF_INT_STATUS__SHIFT 0x10
+#define CP_ME1_PIPE0_INT_STATUS__WRM_POLL_TIMEOUT_INT_STATUS__SHIFT 0x11
+#define CP_ME1_PIPE0_INT_STATUS__PRIV_REG_INT_STATUS__SHIFT 0x17
+#define CP_ME1_PIPE0_INT_STATUS__OPCODE_ERROR_INT_STATUS__SHIFT 0x18
+#define CP_ME1_PIPE0_INT_STATUS__TIME_STAMP_INT_STATUS__SHIFT 0x1a
+#define CP_ME1_PIPE0_INT_STATUS__RESERVED_BIT_ERROR_INT_STATUS__SHIFT 0x1b
+#define CP_ME1_PIPE0_INT_STATUS__GENERIC2_INT_STATUS__SHIFT 0x1d
+#define CP_ME1_PIPE0_INT_STATUS__GENERIC1_INT_STATUS__SHIFT 0x1e
+#define CP_ME1_PIPE0_INT_STATUS__GENERIC0_INT_STATUS__SHIFT 0x1f
+#define CP_ME1_PIPE0_INT_STATUS__CMP_QUERY_STATUS_INT_STATUS_MASK 0x00001000L
+#define CP_ME1_PIPE0_INT_STATUS__DEQUEUE_REQUEST_INT_STATUS_MASK 0x00002000L
+#define CP_ME1_PIPE0_INT_STATUS__CP_ECC_ERROR_INT_STATUS_MASK 0x00004000L
+#define CP_ME1_PIPE0_INT_STATUS__SUA_VIOLATION_INT_STATUS_MASK 0x00008000L
+#define CP_ME1_PIPE0_INT_STATUS__GPF_INT_STATUS_MASK 0x00010000L
+#define CP_ME1_PIPE0_INT_STATUS__WRM_POLL_TIMEOUT_INT_STATUS_MASK 0x00020000L
+#define CP_ME1_PIPE0_INT_STATUS__PRIV_REG_INT_STATUS_MASK 0x00800000L
+#define CP_ME1_PIPE0_INT_STATUS__OPCODE_ERROR_INT_STATUS_MASK 0x01000000L
+#define CP_ME1_PIPE0_INT_STATUS__TIME_STAMP_INT_STATUS_MASK 0x04000000L
+#define CP_ME1_PIPE0_INT_STATUS__RESERVED_BIT_ERROR_INT_STATUS_MASK 0x08000000L
+#define CP_ME1_PIPE0_INT_STATUS__GENERIC2_INT_STATUS_MASK 0x20000000L
+#define CP_ME1_PIPE0_INT_STATUS__GENERIC1_INT_STATUS_MASK 0x40000000L
+#define CP_ME1_PIPE0_INT_STATUS__GENERIC0_INT_STATUS_MASK 0x80000000L
+//CP_ME1_PIPE1_INT_STATUS
+#define CP_ME1_PIPE1_INT_STATUS__CMP_QUERY_STATUS_INT_STATUS__SHIFT 0xc
+#define CP_ME1_PIPE1_INT_STATUS__DEQUEUE_REQUEST_INT_STATUS__SHIFT 0xd
+#define CP_ME1_PIPE1_INT_STATUS__CP_ECC_ERROR_INT_STATUS__SHIFT 0xe
+#define CP_ME1_PIPE1_INT_STATUS__SUA_VIOLATION_INT_STATUS__SHIFT 0xf
+#define CP_ME1_PIPE1_INT_STATUS__GPF_INT_STATUS__SHIFT 0x10
+#define CP_ME1_PIPE1_INT_STATUS__WRM_POLL_TIMEOUT_INT_STATUS__SHIFT 0x11
+#define CP_ME1_PIPE1_INT_STATUS__PRIV_REG_INT_STATUS__SHIFT 0x17
+#define CP_ME1_PIPE1_INT_STATUS__OPCODE_ERROR_INT_STATUS__SHIFT 0x18
+#define CP_ME1_PIPE1_INT_STATUS__TIME_STAMP_INT_STATUS__SHIFT 0x1a
+#define CP_ME1_PIPE1_INT_STATUS__RESERVED_BIT_ERROR_INT_STATUS__SHIFT 0x1b
+#define CP_ME1_PIPE1_INT_STATUS__GENERIC2_INT_STATUS__SHIFT 0x1d
+#define CP_ME1_PIPE1_INT_STATUS__GENERIC1_INT_STATUS__SHIFT 0x1e
+#define CP_ME1_PIPE1_INT_STATUS__GENERIC0_INT_STATUS__SHIFT 0x1f
+#define CP_ME1_PIPE1_INT_STATUS__CMP_QUERY_STATUS_INT_STATUS_MASK 0x00001000L
+#define CP_ME1_PIPE1_INT_STATUS__DEQUEUE_REQUEST_INT_STATUS_MASK 0x00002000L
+#define CP_ME1_PIPE1_INT_STATUS__CP_ECC_ERROR_INT_STATUS_MASK 0x00004000L
+#define CP_ME1_PIPE1_INT_STATUS__SUA_VIOLATION_INT_STATUS_MASK 0x00008000L
+#define CP_ME1_PIPE1_INT_STATUS__GPF_INT_STATUS_MASK 0x00010000L
+#define CP_ME1_PIPE1_INT_STATUS__WRM_POLL_TIMEOUT_INT_STATUS_MASK 0x00020000L
+#define CP_ME1_PIPE1_INT_STATUS__PRIV_REG_INT_STATUS_MASK 0x00800000L
+#define CP_ME1_PIPE1_INT_STATUS__OPCODE_ERROR_INT_STATUS_MASK 0x01000000L
+#define CP_ME1_PIPE1_INT_STATUS__TIME_STAMP_INT_STATUS_MASK 0x04000000L
+#define CP_ME1_PIPE1_INT_STATUS__RESERVED_BIT_ERROR_INT_STATUS_MASK 0x08000000L
+#define CP_ME1_PIPE1_INT_STATUS__GENERIC2_INT_STATUS_MASK 0x20000000L
+#define CP_ME1_PIPE1_INT_STATUS__GENERIC1_INT_STATUS_MASK 0x40000000L
+#define CP_ME1_PIPE1_INT_STATUS__GENERIC0_INT_STATUS_MASK 0x80000000L
+//CP_ME1_PIPE2_INT_STATUS
+#define CP_ME1_PIPE2_INT_STATUS__CMP_QUERY_STATUS_INT_STATUS__SHIFT 0xc
+#define CP_ME1_PIPE2_INT_STATUS__DEQUEUE_REQUEST_INT_STATUS__SHIFT 0xd
+#define CP_ME1_PIPE2_INT_STATUS__CP_ECC_ERROR_INT_STATUS__SHIFT 0xe
+#define CP_ME1_PIPE2_INT_STATUS__SUA_VIOLATION_INT_STATUS__SHIFT 0xf
+#define CP_ME1_PIPE2_INT_STATUS__GPF_INT_STATUS__SHIFT 0x10
+#define CP_ME1_PIPE2_INT_STATUS__WRM_POLL_TIMEOUT_INT_STATUS__SHIFT 0x11
+#define CP_ME1_PIPE2_INT_STATUS__PRIV_REG_INT_STATUS__SHIFT 0x17
+#define CP_ME1_PIPE2_INT_STATUS__OPCODE_ERROR_INT_STATUS__SHIFT 0x18
+#define CP_ME1_PIPE2_INT_STATUS__TIME_STAMP_INT_STATUS__SHIFT 0x1a
+#define CP_ME1_PIPE2_INT_STATUS__RESERVED_BIT_ERROR_INT_STATUS__SHIFT 0x1b
+#define CP_ME1_PIPE2_INT_STATUS__GENERIC2_INT_STATUS__SHIFT 0x1d
+#define CP_ME1_PIPE2_INT_STATUS__GENERIC1_INT_STATUS__SHIFT 0x1e
+#define CP_ME1_PIPE2_INT_STATUS__GENERIC0_INT_STATUS__SHIFT 0x1f
+#define CP_ME1_PIPE2_INT_STATUS__CMP_QUERY_STATUS_INT_STATUS_MASK 0x00001000L
+#define CP_ME1_PIPE2_INT_STATUS__DEQUEUE_REQUEST_INT_STATUS_MASK 0x00002000L
+#define CP_ME1_PIPE2_INT_STATUS__CP_ECC_ERROR_INT_STATUS_MASK 0x00004000L
+#define CP_ME1_PIPE2_INT_STATUS__SUA_VIOLATION_INT_STATUS_MASK 0x00008000L
+#define CP_ME1_PIPE2_INT_STATUS__GPF_INT_STATUS_MASK 0x00010000L
+#define CP_ME1_PIPE2_INT_STATUS__WRM_POLL_TIMEOUT_INT_STATUS_MASK 0x00020000L
+#define CP_ME1_PIPE2_INT_STATUS__PRIV_REG_INT_STATUS_MASK 0x00800000L
+#define CP_ME1_PIPE2_INT_STATUS__OPCODE_ERROR_INT_STATUS_MASK 0x01000000L
+#define CP_ME1_PIPE2_INT_STATUS__TIME_STAMP_INT_STATUS_MASK 0x04000000L
+#define CP_ME1_PIPE2_INT_STATUS__RESERVED_BIT_ERROR_INT_STATUS_MASK 0x08000000L
+#define CP_ME1_PIPE2_INT_STATUS__GENERIC2_INT_STATUS_MASK 0x20000000L
+#define CP_ME1_PIPE2_INT_STATUS__GENERIC1_INT_STATUS_MASK 0x40000000L
+#define CP_ME1_PIPE2_INT_STATUS__GENERIC0_INT_STATUS_MASK 0x80000000L
+//CP_ME1_PIPE3_INT_STATUS
+#define CP_ME1_PIPE3_INT_STATUS__CMP_QUERY_STATUS_INT_STATUS__SHIFT 0xc
+#define CP_ME1_PIPE3_INT_STATUS__DEQUEUE_REQUEST_INT_STATUS__SHIFT 0xd
+#define CP_ME1_PIPE3_INT_STATUS__CP_ECC_ERROR_INT_STATUS__SHIFT 0xe
+#define CP_ME1_PIPE3_INT_STATUS__SUA_VIOLATION_INT_STATUS__SHIFT 0xf
+#define CP_ME1_PIPE3_INT_STATUS__GPF_INT_STATUS__SHIFT 0x10
+#define CP_ME1_PIPE3_INT_STATUS__WRM_POLL_TIMEOUT_INT_STATUS__SHIFT 0x11
+#define CP_ME1_PIPE3_INT_STATUS__PRIV_REG_INT_STATUS__SHIFT 0x17
+#define CP_ME1_PIPE3_INT_STATUS__OPCODE_ERROR_INT_STATUS__SHIFT 0x18
+#define CP_ME1_PIPE3_INT_STATUS__TIME_STAMP_INT_STATUS__SHIFT 0x1a
+#define CP_ME1_PIPE3_INT_STATUS__RESERVED_BIT_ERROR_INT_STATUS__SHIFT 0x1b
+#define CP_ME1_PIPE3_INT_STATUS__GENERIC2_INT_STATUS__SHIFT 0x1d
+#define CP_ME1_PIPE3_INT_STATUS__GENERIC1_INT_STATUS__SHIFT 0x1e
+#define CP_ME1_PIPE3_INT_STATUS__GENERIC0_INT_STATUS__SHIFT 0x1f
+#define CP_ME1_PIPE3_INT_STATUS__CMP_QUERY_STATUS_INT_STATUS_MASK 0x00001000L
+#define CP_ME1_PIPE3_INT_STATUS__DEQUEUE_REQUEST_INT_STATUS_MASK 0x00002000L
+#define CP_ME1_PIPE3_INT_STATUS__CP_ECC_ERROR_INT_STATUS_MASK 0x00004000L
+#define CP_ME1_PIPE3_INT_STATUS__SUA_VIOLATION_INT_STATUS_MASK 0x00008000L
+#define CP_ME1_PIPE3_INT_STATUS__GPF_INT_STATUS_MASK 0x00010000L
+#define CP_ME1_PIPE3_INT_STATUS__WRM_POLL_TIMEOUT_INT_STATUS_MASK 0x00020000L
+#define CP_ME1_PIPE3_INT_STATUS__PRIV_REG_INT_STATUS_MASK 0x00800000L
+#define CP_ME1_PIPE3_INT_STATUS__OPCODE_ERROR_INT_STATUS_MASK 0x01000000L
+#define CP_ME1_PIPE3_INT_STATUS__TIME_STAMP_INT_STATUS_MASK 0x04000000L
+#define CP_ME1_PIPE3_INT_STATUS__RESERVED_BIT_ERROR_INT_STATUS_MASK 0x08000000L
+#define CP_ME1_PIPE3_INT_STATUS__GENERIC2_INT_STATUS_MASK 0x20000000L
+#define CP_ME1_PIPE3_INT_STATUS__GENERIC1_INT_STATUS_MASK 0x40000000L
+#define CP_ME1_PIPE3_INT_STATUS__GENERIC0_INT_STATUS_MASK 0x80000000L
+//CP_ME2_PIPE0_INT_STATUS
+#define CP_ME2_PIPE0_INT_STATUS__CMP_QUERY_STATUS_INT_STATUS__SHIFT 0xc
+#define CP_ME2_PIPE0_INT_STATUS__DEQUEUE_REQUEST_INT_STATUS__SHIFT 0xd
+#define CP_ME2_PIPE0_INT_STATUS__CP_ECC_ERROR_INT_STATUS__SHIFT 0xe
+#define CP_ME2_PIPE0_INT_STATUS__SUA_VIOLATION_INT_STATUS__SHIFT 0xf
+#define CP_ME2_PIPE0_INT_STATUS__GPF_INT_STATUS__SHIFT 0x10
+#define CP_ME2_PIPE0_INT_STATUS__WRM_POLL_TIMEOUT_INT_STATUS__SHIFT 0x11
+#define CP_ME2_PIPE0_INT_STATUS__PRIV_REG_INT_STATUS__SHIFT 0x17
+#define CP_ME2_PIPE0_INT_STATUS__OPCODE_ERROR_INT_STATUS__SHIFT 0x18
+#define CP_ME2_PIPE0_INT_STATUS__TIME_STAMP_INT_STATUS__SHIFT 0x1a
+#define CP_ME2_PIPE0_INT_STATUS__RESERVED_BIT_ERROR_INT_STATUS__SHIFT 0x1b
+#define CP_ME2_PIPE0_INT_STATUS__GENERIC2_INT_STATUS__SHIFT 0x1d
+#define CP_ME2_PIPE0_INT_STATUS__GENERIC1_INT_STATUS__SHIFT 0x1e
+#define CP_ME2_PIPE0_INT_STATUS__GENERIC0_INT_STATUS__SHIFT 0x1f
+#define CP_ME2_PIPE0_INT_STATUS__CMP_QUERY_STATUS_INT_STATUS_MASK 0x00001000L
+#define CP_ME2_PIPE0_INT_STATUS__DEQUEUE_REQUEST_INT_STATUS_MASK 0x00002000L
+#define CP_ME2_PIPE0_INT_STATUS__CP_ECC_ERROR_INT_STATUS_MASK 0x00004000L
+#define CP_ME2_PIPE0_INT_STATUS__SUA_VIOLATION_INT_STATUS_MASK 0x00008000L
+#define CP_ME2_PIPE0_INT_STATUS__GPF_INT_STATUS_MASK 0x00010000L
+#define CP_ME2_PIPE0_INT_STATUS__WRM_POLL_TIMEOUT_INT_STATUS_MASK 0x00020000L
+#define CP_ME2_PIPE0_INT_STATUS__PRIV_REG_INT_STATUS_MASK 0x00800000L
+#define CP_ME2_PIPE0_INT_STATUS__OPCODE_ERROR_INT_STATUS_MASK 0x01000000L
+#define CP_ME2_PIPE0_INT_STATUS__TIME_STAMP_INT_STATUS_MASK 0x04000000L
+#define CP_ME2_PIPE0_INT_STATUS__RESERVED_BIT_ERROR_INT_STATUS_MASK 0x08000000L
+#define CP_ME2_PIPE0_INT_STATUS__GENERIC2_INT_STATUS_MASK 0x20000000L
+#define CP_ME2_PIPE0_INT_STATUS__GENERIC1_INT_STATUS_MASK 0x40000000L
+#define CP_ME2_PIPE0_INT_STATUS__GENERIC0_INT_STATUS_MASK 0x80000000L
+//CP_ME2_PIPE1_INT_STATUS
+#define CP_ME2_PIPE1_INT_STATUS__CMP_QUERY_STATUS_INT_STATUS__SHIFT 0xc
+#define CP_ME2_PIPE1_INT_STATUS__DEQUEUE_REQUEST_INT_STATUS__SHIFT 0xd
+#define CP_ME2_PIPE1_INT_STATUS__CP_ECC_ERROR_INT_STATUS__SHIFT 0xe
+#define CP_ME2_PIPE1_INT_STATUS__SUA_VIOLATION_INT_STATUS__SHIFT 0xf
+#define CP_ME2_PIPE1_INT_STATUS__GPF_INT_STATUS__SHIFT 0x10
+#define CP_ME2_PIPE1_INT_STATUS__WRM_POLL_TIMEOUT_INT_STATUS__SHIFT 0x11
+#define CP_ME2_PIPE1_INT_STATUS__PRIV_REG_INT_STATUS__SHIFT 0x17
+#define CP_ME2_PIPE1_INT_STATUS__OPCODE_ERROR_INT_STATUS__SHIFT 0x18
+#define CP_ME2_PIPE1_INT_STATUS__TIME_STAMP_INT_STATUS__SHIFT 0x1a
+#define CP_ME2_PIPE1_INT_STATUS__RESERVED_BIT_ERROR_INT_STATUS__SHIFT 0x1b
+#define CP_ME2_PIPE1_INT_STATUS__GENERIC2_INT_STATUS__SHIFT 0x1d
+#define CP_ME2_PIPE1_INT_STATUS__GENERIC1_INT_STATUS__SHIFT 0x1e
+#define CP_ME2_PIPE1_INT_STATUS__GENERIC0_INT_STATUS__SHIFT 0x1f
+#define CP_ME2_PIPE1_INT_STATUS__CMP_QUERY_STATUS_INT_STATUS_MASK 0x00001000L
+#define CP_ME2_PIPE1_INT_STATUS__DEQUEUE_REQUEST_INT_STATUS_MASK 0x00002000L
+#define CP_ME2_PIPE1_INT_STATUS__CP_ECC_ERROR_INT_STATUS_MASK 0x00004000L
+#define CP_ME2_PIPE1_INT_STATUS__SUA_VIOLATION_INT_STATUS_MASK 0x00008000L
+#define CP_ME2_PIPE1_INT_STATUS__GPF_INT_STATUS_MASK 0x00010000L
+#define CP_ME2_PIPE1_INT_STATUS__WRM_POLL_TIMEOUT_INT_STATUS_MASK 0x00020000L
+#define CP_ME2_PIPE1_INT_STATUS__PRIV_REG_INT_STATUS_MASK 0x00800000L
+#define CP_ME2_PIPE1_INT_STATUS__OPCODE_ERROR_INT_STATUS_MASK 0x01000000L
+#define CP_ME2_PIPE1_INT_STATUS__TIME_STAMP_INT_STATUS_MASK 0x04000000L
+#define CP_ME2_PIPE1_INT_STATUS__RESERVED_BIT_ERROR_INT_STATUS_MASK 0x08000000L
+#define CP_ME2_PIPE1_INT_STATUS__GENERIC2_INT_STATUS_MASK 0x20000000L
+#define CP_ME2_PIPE1_INT_STATUS__GENERIC1_INT_STATUS_MASK 0x40000000L
+#define CP_ME2_PIPE1_INT_STATUS__GENERIC0_INT_STATUS_MASK 0x80000000L
+//CP_ME2_PIPE2_INT_STATUS
+#define CP_ME2_PIPE2_INT_STATUS__CMP_QUERY_STATUS_INT_STATUS__SHIFT 0xc
+#define CP_ME2_PIPE2_INT_STATUS__DEQUEUE_REQUEST_INT_STATUS__SHIFT 0xd
+#define CP_ME2_PIPE2_INT_STATUS__CP_ECC_ERROR_INT_STATUS__SHIFT 0xe
+#define CP_ME2_PIPE2_INT_STATUS__SUA_VIOLATION_INT_STATUS__SHIFT 0xf
+#define CP_ME2_PIPE2_INT_STATUS__GPF_INT_STATUS__SHIFT 0x10
+#define CP_ME2_PIPE2_INT_STATUS__WRM_POLL_TIMEOUT_INT_STATUS__SHIFT 0x11
+#define CP_ME2_PIPE2_INT_STATUS__PRIV_REG_INT_STATUS__SHIFT 0x17
+#define CP_ME2_PIPE2_INT_STATUS__OPCODE_ERROR_INT_STATUS__SHIFT 0x18
+#define CP_ME2_PIPE2_INT_STATUS__TIME_STAMP_INT_STATUS__SHIFT 0x1a
+#define CP_ME2_PIPE2_INT_STATUS__RESERVED_BIT_ERROR_INT_STATUS__SHIFT 0x1b
+#define CP_ME2_PIPE2_INT_STATUS__GENERIC2_INT_STATUS__SHIFT 0x1d
+#define CP_ME2_PIPE2_INT_STATUS__GENERIC1_INT_STATUS__SHIFT 0x1e
+#define CP_ME2_PIPE2_INT_STATUS__GENERIC0_INT_STATUS__SHIFT 0x1f
+#define CP_ME2_PIPE2_INT_STATUS__CMP_QUERY_STATUS_INT_STATUS_MASK 0x00001000L
+#define CP_ME2_PIPE2_INT_STATUS__DEQUEUE_REQUEST_INT_STATUS_MASK 0x00002000L
+#define CP_ME2_PIPE2_INT_STATUS__CP_ECC_ERROR_INT_STATUS_MASK 0x00004000L
+#define CP_ME2_PIPE2_INT_STATUS__SUA_VIOLATION_INT_STATUS_MASK 0x00008000L
+#define CP_ME2_PIPE2_INT_STATUS__GPF_INT_STATUS_MASK 0x00010000L
+#define CP_ME2_PIPE2_INT_STATUS__WRM_POLL_TIMEOUT_INT_STATUS_MASK 0x00020000L
+#define CP_ME2_PIPE2_INT_STATUS__PRIV_REG_INT_STATUS_MASK 0x00800000L
+#define CP_ME2_PIPE2_INT_STATUS__OPCODE_ERROR_INT_STATUS_MASK 0x01000000L
+#define CP_ME2_PIPE2_INT_STATUS__TIME_STAMP_INT_STATUS_MASK 0x04000000L
+#define CP_ME2_PIPE2_INT_STATUS__RESERVED_BIT_ERROR_INT_STATUS_MASK 0x08000000L
+#define CP_ME2_PIPE2_INT_STATUS__GENERIC2_INT_STATUS_MASK 0x20000000L
+#define CP_ME2_PIPE2_INT_STATUS__GENERIC1_INT_STATUS_MASK 0x40000000L
+#define CP_ME2_PIPE2_INT_STATUS__GENERIC0_INT_STATUS_MASK 0x80000000L
+//CP_ME2_PIPE3_INT_STATUS
+#define CP_ME2_PIPE3_INT_STATUS__CMP_QUERY_STATUS_INT_STATUS__SHIFT 0xc
+#define CP_ME2_PIPE3_INT_STATUS__DEQUEUE_REQUEST_INT_STATUS__SHIFT 0xd
+#define CP_ME2_PIPE3_INT_STATUS__CP_ECC_ERROR_INT_STATUS__SHIFT 0xe
+#define CP_ME2_PIPE3_INT_STATUS__SUA_VIOLATION_INT_STATUS__SHIFT 0xf
+#define CP_ME2_PIPE3_INT_STATUS__GPF_INT_STATUS__SHIFT 0x10
+#define CP_ME2_PIPE3_INT_STATUS__WRM_POLL_TIMEOUT_INT_STATUS__SHIFT 0x11
+#define CP_ME2_PIPE3_INT_STATUS__PRIV_REG_INT_STATUS__SHIFT 0x17
+#define CP_ME2_PIPE3_INT_STATUS__OPCODE_ERROR_INT_STATUS__SHIFT 0x18
+#define CP_ME2_PIPE3_INT_STATUS__TIME_STAMP_INT_STATUS__SHIFT 0x1a
+#define CP_ME2_PIPE3_INT_STATUS__RESERVED_BIT_ERROR_INT_STATUS__SHIFT 0x1b
+#define CP_ME2_PIPE3_INT_STATUS__GENERIC2_INT_STATUS__SHIFT 0x1d
+#define CP_ME2_PIPE3_INT_STATUS__GENERIC1_INT_STATUS__SHIFT 0x1e
+#define CP_ME2_PIPE3_INT_STATUS__GENERIC0_INT_STATUS__SHIFT 0x1f
+#define CP_ME2_PIPE3_INT_STATUS__CMP_QUERY_STATUS_INT_STATUS_MASK 0x00001000L
+#define CP_ME2_PIPE3_INT_STATUS__DEQUEUE_REQUEST_INT_STATUS_MASK 0x00002000L
+#define CP_ME2_PIPE3_INT_STATUS__CP_ECC_ERROR_INT_STATUS_MASK 0x00004000L
+#define CP_ME2_PIPE3_INT_STATUS__SUA_VIOLATION_INT_STATUS_MASK 0x00008000L
+#define CP_ME2_PIPE3_INT_STATUS__GPF_INT_STATUS_MASK 0x00010000L
+#define CP_ME2_PIPE3_INT_STATUS__WRM_POLL_TIMEOUT_INT_STATUS_MASK 0x00020000L
+#define CP_ME2_PIPE3_INT_STATUS__PRIV_REG_INT_STATUS_MASK 0x00800000L
+#define CP_ME2_PIPE3_INT_STATUS__OPCODE_ERROR_INT_STATUS_MASK 0x01000000L
+#define CP_ME2_PIPE3_INT_STATUS__TIME_STAMP_INT_STATUS_MASK 0x04000000L
+#define CP_ME2_PIPE3_INT_STATUS__RESERVED_BIT_ERROR_INT_STATUS_MASK 0x08000000L
+#define CP_ME2_PIPE3_INT_STATUS__GENERIC2_INT_STATUS_MASK 0x20000000L
+#define CP_ME2_PIPE3_INT_STATUS__GENERIC1_INT_STATUS_MASK 0x40000000L
+#define CP_ME2_PIPE3_INT_STATUS__GENERIC0_INT_STATUS_MASK 0x80000000L
+//CP_ME1_INT_STAT_DEBUG
+#define CP_ME1_INT_STAT_DEBUG__CMP_QUERY_STATUS_INT_ASSERTED__SHIFT 0xc
+#define CP_ME1_INT_STAT_DEBUG__DEQUEUE_REQUEST_INT_ASSERTED__SHIFT 0xd
+#define CP_ME1_INT_STAT_DEBUG__CP_ECC_ERROR_INT_ASSERTED__SHIFT 0xe
+#define CP_ME1_INT_STAT_DEBUG__SUA_VIOLATION_INT_STATUS__SHIFT 0xf
+#define CP_ME1_INT_STAT_DEBUG__GPF_INT_ASSERTED__SHIFT 0x10
+#define CP_ME1_INT_STAT_DEBUG__WRM_POLL_TIMEOUT_INT_ASSERTED__SHIFT 0x11
+#define CP_ME1_INT_STAT_DEBUG__PRIV_REG_INT_ASSERTED__SHIFT 0x17
+#define CP_ME1_INT_STAT_DEBUG__OPCODE_ERROR_INT_ASSERTED__SHIFT 0x18
+#define CP_ME1_INT_STAT_DEBUG__TIME_STAMP_INT_ASSERTED__SHIFT 0x1a
+#define CP_ME1_INT_STAT_DEBUG__RESERVED_BIT_ERROR_INT_ASSERTED__SHIFT 0x1b
+#define CP_ME1_INT_STAT_DEBUG__GENERIC2_INT_ASSERTED__SHIFT 0x1d
+#define CP_ME1_INT_STAT_DEBUG__GENERIC1_INT_ASSERTED__SHIFT 0x1e
+#define CP_ME1_INT_STAT_DEBUG__GENERIC0_INT_ASSERTED__SHIFT 0x1f
+#define CP_ME1_INT_STAT_DEBUG__CMP_QUERY_STATUS_INT_ASSERTED_MASK 0x00001000L
+#define CP_ME1_INT_STAT_DEBUG__DEQUEUE_REQUEST_INT_ASSERTED_MASK 0x00002000L
+#define CP_ME1_INT_STAT_DEBUG__CP_ECC_ERROR_INT_ASSERTED_MASK 0x00004000L
+#define CP_ME1_INT_STAT_DEBUG__SUA_VIOLATION_INT_STATUS_MASK 0x00008000L
+#define CP_ME1_INT_STAT_DEBUG__GPF_INT_ASSERTED_MASK 0x00010000L
+#define CP_ME1_INT_STAT_DEBUG__WRM_POLL_TIMEOUT_INT_ASSERTED_MASK 0x00020000L
+#define CP_ME1_INT_STAT_DEBUG__PRIV_REG_INT_ASSERTED_MASK 0x00800000L
+#define CP_ME1_INT_STAT_DEBUG__OPCODE_ERROR_INT_ASSERTED_MASK 0x01000000L
+#define CP_ME1_INT_STAT_DEBUG__TIME_STAMP_INT_ASSERTED_MASK 0x04000000L
+#define CP_ME1_INT_STAT_DEBUG__RESERVED_BIT_ERROR_INT_ASSERTED_MASK 0x08000000L
+#define CP_ME1_INT_STAT_DEBUG__GENERIC2_INT_ASSERTED_MASK 0x20000000L
+#define CP_ME1_INT_STAT_DEBUG__GENERIC1_INT_ASSERTED_MASK 0x40000000L
+#define CP_ME1_INT_STAT_DEBUG__GENERIC0_INT_ASSERTED_MASK 0x80000000L
+//CP_ME2_INT_STAT_DEBUG
+#define CP_ME2_INT_STAT_DEBUG__CMP_QUERY_STATUS_INT_ASSERTED__SHIFT 0xc
+#define CP_ME2_INT_STAT_DEBUG__DEQUEUE_REQUEST_INT_ASSERTED__SHIFT 0xd
+#define CP_ME2_INT_STAT_DEBUG__CP_ECC_ERROR_INT_ASSERTED__SHIFT 0xe
+#define CP_ME2_INT_STAT_DEBUG__SUA_VIOLATION_INT_STATUS__SHIFT 0xf
+#define CP_ME2_INT_STAT_DEBUG__GPF_INT_ASSERTED__SHIFT 0x10
+#define CP_ME2_INT_STAT_DEBUG__WRM_POLL_TIMEOUT_INT_ASSERTED__SHIFT 0x11
+#define CP_ME2_INT_STAT_DEBUG__PRIV_REG_INT_ASSERTED__SHIFT 0x17
+#define CP_ME2_INT_STAT_DEBUG__OPCODE_ERROR_INT_ASSERTED__SHIFT 0x18
+#define CP_ME2_INT_STAT_DEBUG__TIME_STAMP_INT_ASSERTED__SHIFT 0x1a
+#define CP_ME2_INT_STAT_DEBUG__RESERVED_BIT_ERROR_INT_ASSERTED__SHIFT 0x1b
+#define CP_ME2_INT_STAT_DEBUG__GENERIC2_INT_ASSERTED__SHIFT 0x1d
+#define CP_ME2_INT_STAT_DEBUG__GENERIC1_INT_ASSERTED__SHIFT 0x1e
+#define CP_ME2_INT_STAT_DEBUG__GENERIC0_INT_ASSERTED__SHIFT 0x1f
+#define CP_ME2_INT_STAT_DEBUG__CMP_QUERY_STATUS_INT_ASSERTED_MASK 0x00001000L
+#define CP_ME2_INT_STAT_DEBUG__DEQUEUE_REQUEST_INT_ASSERTED_MASK 0x00002000L
+#define CP_ME2_INT_STAT_DEBUG__CP_ECC_ERROR_INT_ASSERTED_MASK 0x00004000L
+#define CP_ME2_INT_STAT_DEBUG__SUA_VIOLATION_INT_STATUS_MASK 0x00008000L
+#define CP_ME2_INT_STAT_DEBUG__GPF_INT_ASSERTED_MASK 0x00010000L
+#define CP_ME2_INT_STAT_DEBUG__WRM_POLL_TIMEOUT_INT_ASSERTED_MASK 0x00020000L
+#define CP_ME2_INT_STAT_DEBUG__PRIV_REG_INT_ASSERTED_MASK 0x00800000L
+#define CP_ME2_INT_STAT_DEBUG__OPCODE_ERROR_INT_ASSERTED_MASK 0x01000000L
+#define CP_ME2_INT_STAT_DEBUG__TIME_STAMP_INT_ASSERTED_MASK 0x04000000L
+#define CP_ME2_INT_STAT_DEBUG__RESERVED_BIT_ERROR_INT_ASSERTED_MASK 0x08000000L
+#define CP_ME2_INT_STAT_DEBUG__GENERIC2_INT_ASSERTED_MASK 0x20000000L
+#define CP_ME2_INT_STAT_DEBUG__GENERIC1_INT_ASSERTED_MASK 0x40000000L
+#define CP_ME2_INT_STAT_DEBUG__GENERIC0_INT_ASSERTED_MASK 0x80000000L
+//CC_GC_EDC_CONFIG
+#define CC_GC_EDC_CONFIG__WRITE_DIS__SHIFT 0x0
+#define CC_GC_EDC_CONFIG__DIS_EDC__SHIFT 0x1
+#define CC_GC_EDC_CONFIG__ENABLE_IRRITATOR_CLK__SHIFT 0x2
+#define CC_GC_EDC_CONFIG__WRITE_DIS_MASK 0x00000001L
+#define CC_GC_EDC_CONFIG__DIS_EDC_MASK 0x00000002L
+#define CC_GC_EDC_CONFIG__ENABLE_IRRITATOR_CLK_MASK 0x00000004L
+//CP_ME1_PIPE_PRIORITY_CNTS
+#define CP_ME1_PIPE_PRIORITY_CNTS__PRIORITY1_CNT__SHIFT 0x0
+#define CP_ME1_PIPE_PRIORITY_CNTS__PRIORITY2A_CNT__SHIFT 0x8
+#define CP_ME1_PIPE_PRIORITY_CNTS__PRIORITY2B_CNT__SHIFT 0x10
+#define CP_ME1_PIPE_PRIORITY_CNTS__PRIORITY3_CNT__SHIFT 0x18
+#define CP_ME1_PIPE_PRIORITY_CNTS__PRIORITY1_CNT_MASK 0x000000FFL
+#define CP_ME1_PIPE_PRIORITY_CNTS__PRIORITY2A_CNT_MASK 0x0000FF00L
+#define CP_ME1_PIPE_PRIORITY_CNTS__PRIORITY2B_CNT_MASK 0x00FF0000L
+#define CP_ME1_PIPE_PRIORITY_CNTS__PRIORITY3_CNT_MASK 0xFF000000L
+//CP_ME1_PIPE0_PRIORITY
+#define CP_ME1_PIPE0_PRIORITY__PRIORITY__SHIFT 0x0
+#define CP_ME1_PIPE0_PRIORITY__PRIORITY_MASK 0x00000003L
+//CP_ME1_PIPE1_PRIORITY
+#define CP_ME1_PIPE1_PRIORITY__PRIORITY__SHIFT 0x0
+#define CP_ME1_PIPE1_PRIORITY__PRIORITY_MASK 0x00000003L
+//CP_ME1_PIPE2_PRIORITY
+#define CP_ME1_PIPE2_PRIORITY__PRIORITY__SHIFT 0x0
+#define CP_ME1_PIPE2_PRIORITY__PRIORITY_MASK 0x00000003L
+//CP_ME1_PIPE3_PRIORITY
+#define CP_ME1_PIPE3_PRIORITY__PRIORITY__SHIFT 0x0
+#define CP_ME1_PIPE3_PRIORITY__PRIORITY_MASK 0x00000003L
+//CP_ME2_PIPE_PRIORITY_CNTS
+#define CP_ME2_PIPE_PRIORITY_CNTS__PRIORITY1_CNT__SHIFT 0x0
+#define CP_ME2_PIPE_PRIORITY_CNTS__PRIORITY2A_CNT__SHIFT 0x8
+#define CP_ME2_PIPE_PRIORITY_CNTS__PRIORITY2B_CNT__SHIFT 0x10
+#define CP_ME2_PIPE_PRIORITY_CNTS__PRIORITY3_CNT__SHIFT 0x18
+#define CP_ME2_PIPE_PRIORITY_CNTS__PRIORITY1_CNT_MASK 0x000000FFL
+#define CP_ME2_PIPE_PRIORITY_CNTS__PRIORITY2A_CNT_MASK 0x0000FF00L
+#define CP_ME2_PIPE_PRIORITY_CNTS__PRIORITY2B_CNT_MASK 0x00FF0000L
+#define CP_ME2_PIPE_PRIORITY_CNTS__PRIORITY3_CNT_MASK 0xFF000000L
+//CP_ME2_PIPE0_PRIORITY
+#define CP_ME2_PIPE0_PRIORITY__PRIORITY__SHIFT 0x0
+#define CP_ME2_PIPE0_PRIORITY__PRIORITY_MASK 0x00000003L
+//CP_ME2_PIPE1_PRIORITY
+#define CP_ME2_PIPE1_PRIORITY__PRIORITY__SHIFT 0x0
+#define CP_ME2_PIPE1_PRIORITY__PRIORITY_MASK 0x00000003L
+//CP_ME2_PIPE2_PRIORITY
+#define CP_ME2_PIPE2_PRIORITY__PRIORITY__SHIFT 0x0
+#define CP_ME2_PIPE2_PRIORITY__PRIORITY_MASK 0x00000003L
+//CP_ME2_PIPE3_PRIORITY
+#define CP_ME2_PIPE3_PRIORITY__PRIORITY__SHIFT 0x0
+#define CP_ME2_PIPE3_PRIORITY__PRIORITY_MASK 0x00000003L
+//CP_CE_PRGRM_CNTR_START
+#define CP_CE_PRGRM_CNTR_START__IP_START__SHIFT 0x0
+#define CP_CE_PRGRM_CNTR_START__IP_START_MASK 0x000007FFL
+//CP_PFP_PRGRM_CNTR_START
+#define CP_PFP_PRGRM_CNTR_START__IP_START__SHIFT 0x0
+#define CP_PFP_PRGRM_CNTR_START__IP_START_MASK 0x00001FFFL
+//CP_ME_PRGRM_CNTR_START
+#define CP_ME_PRGRM_CNTR_START__IP_START__SHIFT 0x0
+#define CP_ME_PRGRM_CNTR_START__IP_START_MASK 0x00000FFFL
+//CP_MEC1_PRGRM_CNTR_START
+#define CP_MEC1_PRGRM_CNTR_START__IP_START__SHIFT 0x0
+#define CP_MEC1_PRGRM_CNTR_START__IP_START_MASK 0x0000FFFFL
+//CP_MEC2_PRGRM_CNTR_START
+#define CP_MEC2_PRGRM_CNTR_START__IP_START__SHIFT 0x0
+#define CP_MEC2_PRGRM_CNTR_START__IP_START_MASK 0x0000FFFFL
+//CP_CE_INTR_ROUTINE_START
+#define CP_CE_INTR_ROUTINE_START__IR_START__SHIFT 0x0
+#define CP_CE_INTR_ROUTINE_START__IR_START_MASK 0x000007FFL
+//CP_PFP_INTR_ROUTINE_START
+#define CP_PFP_INTR_ROUTINE_START__IR_START__SHIFT 0x0
+#define CP_PFP_INTR_ROUTINE_START__IR_START_MASK 0x00001FFFL
+//CP_ME_INTR_ROUTINE_START
+#define CP_ME_INTR_ROUTINE_START__IR_START__SHIFT 0x0
+#define CP_ME_INTR_ROUTINE_START__IR_START_MASK 0x00000FFFL
+//CP_MEC1_INTR_ROUTINE_START
+#define CP_MEC1_INTR_ROUTINE_START__IR_START__SHIFT 0x0
+#define CP_MEC1_INTR_ROUTINE_START__IR_START_MASK 0x0000FFFFL
+//CP_MEC2_INTR_ROUTINE_START
+#define CP_MEC2_INTR_ROUTINE_START__IR_START__SHIFT 0x0
+#define CP_MEC2_INTR_ROUTINE_START__IR_START_MASK 0x0000FFFFL
+//CP_CONTEXT_CNTL
+#define CP_CONTEXT_CNTL__ME0PIPE0_MAX_WD_CNTX__SHIFT 0x0
+#define CP_CONTEXT_CNTL__ME0PIPE0_MAX_PIPE_CNTX__SHIFT 0x4
+#define CP_CONTEXT_CNTL__ME0PIPE1_MAX_WD_CNTX__SHIFT 0x10
+#define CP_CONTEXT_CNTL__ME0PIPE1_MAX_PIPE_CNTX__SHIFT 0x14
+#define CP_CONTEXT_CNTL__ME0PIPE0_MAX_WD_CNTX_MASK 0x00000007L
+#define CP_CONTEXT_CNTL__ME0PIPE0_MAX_PIPE_CNTX_MASK 0x00000070L
+#define CP_CONTEXT_CNTL__ME0PIPE1_MAX_WD_CNTX_MASK 0x00070000L
+#define CP_CONTEXT_CNTL__ME0PIPE1_MAX_PIPE_CNTX_MASK 0x00700000L
+//CP_MAX_CONTEXT
+#define CP_MAX_CONTEXT__MAX_CONTEXT__SHIFT 0x0
+#define CP_MAX_CONTEXT__MAX_CONTEXT_MASK 0x00000007L
+//CP_IQ_WAIT_TIME1
+#define CP_IQ_WAIT_TIME1__IB_OFFLOAD__SHIFT 0x0
+#define CP_IQ_WAIT_TIME1__ATOMIC_OFFLOAD__SHIFT 0x8
+#define CP_IQ_WAIT_TIME1__WRM_OFFLOAD__SHIFT 0x10
+#define CP_IQ_WAIT_TIME1__GWS__SHIFT 0x18
+#define CP_IQ_WAIT_TIME1__IB_OFFLOAD_MASK 0x000000FFL
+#define CP_IQ_WAIT_TIME1__ATOMIC_OFFLOAD_MASK 0x0000FF00L
+#define CP_IQ_WAIT_TIME1__WRM_OFFLOAD_MASK 0x00FF0000L
+#define CP_IQ_WAIT_TIME1__GWS_MASK 0xFF000000L
+//CP_IQ_WAIT_TIME2
+#define CP_IQ_WAIT_TIME2__QUE_SLEEP__SHIFT 0x0
+#define CP_IQ_WAIT_TIME2__SCH_WAVE__SHIFT 0x8
+#define CP_IQ_WAIT_TIME2__SEM_REARM__SHIFT 0x10
+#define CP_IQ_WAIT_TIME2__DEQ_RETRY__SHIFT 0x18
+#define CP_IQ_WAIT_TIME2__QUE_SLEEP_MASK 0x000000FFL
+#define CP_IQ_WAIT_TIME2__SCH_WAVE_MASK 0x0000FF00L
+#define CP_IQ_WAIT_TIME2__SEM_REARM_MASK 0x00FF0000L
+#define CP_IQ_WAIT_TIME2__DEQ_RETRY_MASK 0xFF000000L
+//CP_RB0_BASE_HI
+#define CP_RB0_BASE_HI__RB_BASE_HI__SHIFT 0x0
+#define CP_RB0_BASE_HI__RB_BASE_HI_MASK 0x000000FFL
+//CP_RB1_BASE_HI
+#define CP_RB1_BASE_HI__RB_BASE_HI__SHIFT 0x0
+#define CP_RB1_BASE_HI__RB_BASE_HI_MASK 0x000000FFL
+//CP_VMID_RESET
+#define CP_VMID_RESET__RESET_REQUEST__SHIFT 0x0
+#define CP_VMID_RESET__RESET_REQUEST_MASK 0x0000FFFFL
+//CPC_INT_CNTL
+#define CPC_INT_CNTL__CMP_QUERY_STATUS_INT_ENABLE__SHIFT 0xc
+#define CPC_INT_CNTL__DEQUEUE_REQUEST_INT_ENABLE__SHIFT 0xd
+#define CPC_INT_CNTL__CP_ECC_ERROR_INT_ENABLE__SHIFT 0xe
+#define CPC_INT_CNTL__SUA_VIOLATION_INT_ENABLE__SHIFT 0xf
+#define CPC_INT_CNTL__GPF_INT_ENABLE__SHIFT 0x10
+#define CPC_INT_CNTL__WRM_POLL_TIMEOUT_INT_ENABLE__SHIFT 0x11
+#define CPC_INT_CNTL__PRIV_REG_INT_ENABLE__SHIFT 0x17
+#define CPC_INT_CNTL__OPCODE_ERROR_INT_ENABLE__SHIFT 0x18
+#define CPC_INT_CNTL__TIME_STAMP_INT_ENABLE__SHIFT 0x1a
+#define CPC_INT_CNTL__RESERVED_BIT_ERROR_INT_ENABLE__SHIFT 0x1b
+#define CPC_INT_CNTL__GENERIC2_INT_ENABLE__SHIFT 0x1d
+#define CPC_INT_CNTL__GENERIC1_INT_ENABLE__SHIFT 0x1e
+#define CPC_INT_CNTL__GENERIC0_INT_ENABLE__SHIFT 0x1f
+#define CPC_INT_CNTL__CMP_QUERY_STATUS_INT_ENABLE_MASK 0x00001000L
+#define CPC_INT_CNTL__DEQUEUE_REQUEST_INT_ENABLE_MASK 0x00002000L
+#define CPC_INT_CNTL__CP_ECC_ERROR_INT_ENABLE_MASK 0x00004000L
+#define CPC_INT_CNTL__SUA_VIOLATION_INT_ENABLE_MASK 0x00008000L
+#define CPC_INT_CNTL__GPF_INT_ENABLE_MASK 0x00010000L
+#define CPC_INT_CNTL__WRM_POLL_TIMEOUT_INT_ENABLE_MASK 0x00020000L
+#define CPC_INT_CNTL__PRIV_REG_INT_ENABLE_MASK 0x00800000L
+#define CPC_INT_CNTL__OPCODE_ERROR_INT_ENABLE_MASK 0x01000000L
+#define CPC_INT_CNTL__TIME_STAMP_INT_ENABLE_MASK 0x04000000L
+#define CPC_INT_CNTL__RESERVED_BIT_ERROR_INT_ENABLE_MASK 0x08000000L
+#define CPC_INT_CNTL__GENERIC2_INT_ENABLE_MASK 0x20000000L
+#define CPC_INT_CNTL__GENERIC1_INT_ENABLE_MASK 0x40000000L
+#define CPC_INT_CNTL__GENERIC0_INT_ENABLE_MASK 0x80000000L
+//CPC_INT_STATUS
+#define CPC_INT_STATUS__CMP_QUERY_STATUS_INT_STATUS__SHIFT 0xc
+#define CPC_INT_STATUS__DEQUEUE_REQUEST_INT_STATUS__SHIFT 0xd
+#define CPC_INT_STATUS__CP_ECC_ERROR_INT_STATUS__SHIFT 0xe
+#define CPC_INT_STATUS__SUA_VIOLATION_INT_STATUS__SHIFT 0xf
+#define CPC_INT_STATUS__GPF_INT_STATUS__SHIFT 0x10
+#define CPC_INT_STATUS__WRM_POLL_TIMEOUT_INT_STATUS__SHIFT 0x11
+#define CPC_INT_STATUS__PRIV_REG_INT_STATUS__SHIFT 0x17
+#define CPC_INT_STATUS__OPCODE_ERROR_INT_STATUS__SHIFT 0x18
+#define CPC_INT_STATUS__TIME_STAMP_INT_STATUS__SHIFT 0x1a
+#define CPC_INT_STATUS__RESERVED_BIT_ERROR_INT_STATUS__SHIFT 0x1b
+#define CPC_INT_STATUS__GENERIC2_INT_STATUS__SHIFT 0x1d
+#define CPC_INT_STATUS__GENERIC1_INT_STATUS__SHIFT 0x1e
+#define CPC_INT_STATUS__GENERIC0_INT_STATUS__SHIFT 0x1f
+#define CPC_INT_STATUS__CMP_QUERY_STATUS_INT_STATUS_MASK 0x00001000L
+#define CPC_INT_STATUS__DEQUEUE_REQUEST_INT_STATUS_MASK 0x00002000L
+#define CPC_INT_STATUS__CP_ECC_ERROR_INT_STATUS_MASK 0x00004000L
+#define CPC_INT_STATUS__SUA_VIOLATION_INT_STATUS_MASK 0x00008000L
+#define CPC_INT_STATUS__GPF_INT_STATUS_MASK 0x00010000L
+#define CPC_INT_STATUS__WRM_POLL_TIMEOUT_INT_STATUS_MASK 0x00020000L
+#define CPC_INT_STATUS__PRIV_REG_INT_STATUS_MASK 0x00800000L
+#define CPC_INT_STATUS__OPCODE_ERROR_INT_STATUS_MASK 0x01000000L
+#define CPC_INT_STATUS__TIME_STAMP_INT_STATUS_MASK 0x04000000L
+#define CPC_INT_STATUS__RESERVED_BIT_ERROR_INT_STATUS_MASK 0x08000000L
+#define CPC_INT_STATUS__GENERIC2_INT_STATUS_MASK 0x20000000L
+#define CPC_INT_STATUS__GENERIC1_INT_STATUS_MASK 0x40000000L
+#define CPC_INT_STATUS__GENERIC0_INT_STATUS_MASK 0x80000000L
+//CP_VMID_PREEMPT
+#define CP_VMID_PREEMPT__PREEMPT_REQUEST__SHIFT 0x0
+#define CP_VMID_PREEMPT__VIRT_COMMAND__SHIFT 0x10
+#define CP_VMID_PREEMPT__PREEMPT_REQUEST_MASK 0x0000FFFFL
+#define CP_VMID_PREEMPT__VIRT_COMMAND_MASK 0x000F0000L
+//CPC_INT_CNTX_ID
+#define CPC_INT_CNTX_ID__CNTX_ID__SHIFT 0x0
+#define CPC_INT_CNTX_ID__CNTX_ID_MASK 0xFFFFFFFFL
+//CP_PQ_STATUS
+#define CP_PQ_STATUS__DOORBELL_UPDATED__SHIFT 0x0
+#define CP_PQ_STATUS__DOORBELL_ENABLE__SHIFT 0x1
+#define CP_PQ_STATUS__DOORBELL_UPDATED_EN__SHIFT 0x2
+#define CP_PQ_STATUS__DOORBELL_UPDATED_MASK 0x00000001L
+#define CP_PQ_STATUS__DOORBELL_ENABLE_MASK 0x00000002L
+#define CP_PQ_STATUS__DOORBELL_UPDATED_EN_MASK 0x00000004L
+//CP_CPC_IC_BASE_LO
+#define CP_CPC_IC_BASE_LO__IC_BASE_LO__SHIFT 0xc
+#define CP_CPC_IC_BASE_LO__IC_BASE_LO_MASK 0xFFFFF000L
+//CP_CPC_IC_BASE_HI
+#define CP_CPC_IC_BASE_HI__IC_BASE_HI__SHIFT 0x0
+#define CP_CPC_IC_BASE_HI__IC_BASE_HI_MASK 0x0000FFFFL
+//CP_CPC_IC_BASE_CNTL
+#define CP_CPC_IC_BASE_CNTL__VMID__SHIFT 0x0
+#define CP_CPC_IC_BASE_CNTL__CACHE_POLICY__SHIFT 0x18
+#define CP_CPC_IC_BASE_CNTL__VMID_MASK 0x0000000FL
+#define CP_CPC_IC_BASE_CNTL__CACHE_POLICY_MASK 0x01000000L
+//CP_CPC_IC_OP_CNTL
+#define CP_CPC_IC_OP_CNTL__INVALIDATE_CACHE__SHIFT 0x0
+#define CP_CPC_IC_OP_CNTL__PRIME_ICACHE__SHIFT 0x4
+#define CP_CPC_IC_OP_CNTL__ICACHE_PRIMED__SHIFT 0x5
+#define CP_CPC_IC_OP_CNTL__ICACHE_INVALIDATED__SHIFT 0x6
+#define CP_CPC_IC_OP_CNTL__INVALIDATE_CACHE_MASK 0x00000001L
+#define CP_CPC_IC_OP_CNTL__PRIME_ICACHE_MASK 0x00000010L
+#define CP_CPC_IC_OP_CNTL__ICACHE_PRIMED_MASK 0x00000020L
+#define CP_CPC_IC_OP_CNTL__ICACHE_INVALIDATED_MASK 0x00000040L
+//CP_MEC1_F32_INT_DIS
+#define CP_MEC1_F32_INT_DIS__EDC_ROQ_FED_INT__SHIFT 0x0
+#define CP_MEC1_F32_INT_DIS__PRIV_REG_INT__SHIFT 0x1
+#define CP_MEC1_F32_INT_DIS__RESERVED_BIT_ERR_INT__SHIFT 0x2
+#define CP_MEC1_F32_INT_DIS__EDC_TC_FED_INT__SHIFT 0x3
+#define CP_MEC1_F32_INT_DIS__EDC_GDS_FED_INT__SHIFT 0x4
+#define CP_MEC1_F32_INT_DIS__EDC_SCRATCH_FED_INT__SHIFT 0x5
+#define CP_MEC1_F32_INT_DIS__WAVE_RESTORE_INT__SHIFT 0x6
+#define CP_MEC1_F32_INT_DIS__SUA_VIOLATION_INT__SHIFT 0x7
+#define CP_MEC1_F32_INT_DIS__EDC_DMA_FED_INT__SHIFT 0x8
+#define CP_MEC1_F32_INT_DIS__IQ_TIMER_INT__SHIFT 0x9
+#define CP_MEC1_F32_INT_DIS__GPF_INT_CPF__SHIFT 0xa
+#define CP_MEC1_F32_INT_DIS__GPF_INT_DMA__SHIFT 0xb
+#define CP_MEC1_F32_INT_DIS__GPF_INT_CPC__SHIFT 0xc
+#define CP_MEC1_F32_INT_DIS__EDC_SR_MEM_FED_INT__SHIFT 0xd
+#define CP_MEC1_F32_INT_DIS__QUEUE_MESSAGE_INT__SHIFT 0xe
+#define CP_MEC1_F32_INT_DIS__FATAL_EDC_ERROR_INT__SHIFT 0xf
+#define CP_MEC1_F32_INT_DIS__EDC_ROQ_FED_INT_MASK 0x00000001L
+#define CP_MEC1_F32_INT_DIS__PRIV_REG_INT_MASK 0x00000002L
+#define CP_MEC1_F32_INT_DIS__RESERVED_BIT_ERR_INT_MASK 0x00000004L
+#define CP_MEC1_F32_INT_DIS__EDC_TC_FED_INT_MASK 0x00000008L
+#define CP_MEC1_F32_INT_DIS__EDC_GDS_FED_INT_MASK 0x00000010L
+#define CP_MEC1_F32_INT_DIS__EDC_SCRATCH_FED_INT_MASK 0x00000020L
+#define CP_MEC1_F32_INT_DIS__WAVE_RESTORE_INT_MASK 0x00000040L
+#define CP_MEC1_F32_INT_DIS__SUA_VIOLATION_INT_MASK 0x00000080L
+#define CP_MEC1_F32_INT_DIS__EDC_DMA_FED_INT_MASK 0x00000100L
+#define CP_MEC1_F32_INT_DIS__IQ_TIMER_INT_MASK 0x00000200L
+#define CP_MEC1_F32_INT_DIS__GPF_INT_CPF_MASK 0x00000400L
+#define CP_MEC1_F32_INT_DIS__GPF_INT_DMA_MASK 0x00000800L
+#define CP_MEC1_F32_INT_DIS__GPF_INT_CPC_MASK 0x00001000L
+#define CP_MEC1_F32_INT_DIS__EDC_SR_MEM_FED_INT_MASK 0x00002000L
+#define CP_MEC1_F32_INT_DIS__QUEUE_MESSAGE_INT_MASK 0x00004000L
+#define CP_MEC1_F32_INT_DIS__FATAL_EDC_ERROR_INT_MASK 0x00008000L
+//CP_MEC2_F32_INT_DIS
+#define CP_MEC2_F32_INT_DIS__EDC_ROQ_FED_INT__SHIFT 0x0
+#define CP_MEC2_F32_INT_DIS__PRIV_REG_INT__SHIFT 0x1
+#define CP_MEC2_F32_INT_DIS__RESERVED_BIT_ERR_INT__SHIFT 0x2
+#define CP_MEC2_F32_INT_DIS__EDC_TC_FED_INT__SHIFT 0x3
+#define CP_MEC2_F32_INT_DIS__EDC_GDS_FED_INT__SHIFT 0x4
+#define CP_MEC2_F32_INT_DIS__EDC_SCRATCH_FED_INT__SHIFT 0x5
+#define CP_MEC2_F32_INT_DIS__WAVE_RESTORE_INT__SHIFT 0x6
+#define CP_MEC2_F32_INT_DIS__SUA_VIOLATION_INT__SHIFT 0x7
+#define CP_MEC2_F32_INT_DIS__EDC_DMA_FED_INT__SHIFT 0x8
+#define CP_MEC2_F32_INT_DIS__IQ_TIMER_INT__SHIFT 0x9
+#define CP_MEC2_F32_INT_DIS__GPF_INT_CPF__SHIFT 0xa
+#define CP_MEC2_F32_INT_DIS__GPF_INT_DMA__SHIFT 0xb
+#define CP_MEC2_F32_INT_DIS__GPF_INT_CPC__SHIFT 0xc
+#define CP_MEC2_F32_INT_DIS__EDC_SR_MEM_FED_INT__SHIFT 0xd
+#define CP_MEC2_F32_INT_DIS__QUEUE_MESSAGE_INT__SHIFT 0xe
+#define CP_MEC2_F32_INT_DIS__FATAL_EDC_ERROR_INT__SHIFT 0xf
+#define CP_MEC2_F32_INT_DIS__EDC_ROQ_FED_INT_MASK 0x00000001L
+#define CP_MEC2_F32_INT_DIS__PRIV_REG_INT_MASK 0x00000002L
+#define CP_MEC2_F32_INT_DIS__RESERVED_BIT_ERR_INT_MASK 0x00000004L
+#define CP_MEC2_F32_INT_DIS__EDC_TC_FED_INT_MASK 0x00000008L
+#define CP_MEC2_F32_INT_DIS__EDC_GDS_FED_INT_MASK 0x00000010L
+#define CP_MEC2_F32_INT_DIS__EDC_SCRATCH_FED_INT_MASK 0x00000020L
+#define CP_MEC2_F32_INT_DIS__WAVE_RESTORE_INT_MASK 0x00000040L
+#define CP_MEC2_F32_INT_DIS__SUA_VIOLATION_INT_MASK 0x00000080L
+#define CP_MEC2_F32_INT_DIS__EDC_DMA_FED_INT_MASK 0x00000100L
+#define CP_MEC2_F32_INT_DIS__IQ_TIMER_INT_MASK 0x00000200L
+#define CP_MEC2_F32_INT_DIS__GPF_INT_CPF_MASK 0x00000400L
+#define CP_MEC2_F32_INT_DIS__GPF_INT_DMA_MASK 0x00000800L
+#define CP_MEC2_F32_INT_DIS__GPF_INT_CPC_MASK 0x00001000L
+#define CP_MEC2_F32_INT_DIS__EDC_SR_MEM_FED_INT_MASK 0x00002000L
+#define CP_MEC2_F32_INT_DIS__QUEUE_MESSAGE_INT_MASK 0x00004000L
+#define CP_MEC2_F32_INT_DIS__FATAL_EDC_ERROR_INT_MASK 0x00008000L
+//CP_VMID_STATUS
+#define CP_VMID_STATUS__PREEMPT_DE_STATUS__SHIFT 0x0
+#define CP_VMID_STATUS__PREEMPT_CE_STATUS__SHIFT 0x10
+#define CP_VMID_STATUS__PREEMPT_DE_STATUS_MASK 0x0000FFFFL
+#define CP_VMID_STATUS__PREEMPT_CE_STATUS_MASK 0xFFFF0000L
+
+
+// addressBlock: xcd0_gc_cppdec2
+//CP_RB_DOORBELL_CONTROL_SCH_0
+#define CP_RB_DOORBELL_CONTROL_SCH_0__DOORBELL_OFFSET__SHIFT 0x2
+#define CP_RB_DOORBELL_CONTROL_SCH_0__DOORBELL_EN__SHIFT 0x1e
+#define CP_RB_DOORBELL_CONTROL_SCH_0__DOORBELL_HIT__SHIFT 0x1f
+#define CP_RB_DOORBELL_CONTROL_SCH_0__DOORBELL_OFFSET_MASK 0x0FFFFFFCL
+#define CP_RB_DOORBELL_CONTROL_SCH_0__DOORBELL_EN_MASK 0x40000000L
+#define CP_RB_DOORBELL_CONTROL_SCH_0__DOORBELL_HIT_MASK 0x80000000L
+//CP_RB_DOORBELL_CONTROL_SCH_1
+#define CP_RB_DOORBELL_CONTROL_SCH_1__DOORBELL_OFFSET__SHIFT 0x2
+#define CP_RB_DOORBELL_CONTROL_SCH_1__DOORBELL_EN__SHIFT 0x1e
+#define CP_RB_DOORBELL_CONTROL_SCH_1__DOORBELL_HIT__SHIFT 0x1f
+#define CP_RB_DOORBELL_CONTROL_SCH_1__DOORBELL_OFFSET_MASK 0x0FFFFFFCL
+#define CP_RB_DOORBELL_CONTROL_SCH_1__DOORBELL_EN_MASK 0x40000000L
+#define CP_RB_DOORBELL_CONTROL_SCH_1__DOORBELL_HIT_MASK 0x80000000L
+//CP_RB_DOORBELL_CONTROL_SCH_2
+#define CP_RB_DOORBELL_CONTROL_SCH_2__DOORBELL_OFFSET__SHIFT 0x2
+#define CP_RB_DOORBELL_CONTROL_SCH_2__DOORBELL_EN__SHIFT 0x1e
+#define CP_RB_DOORBELL_CONTROL_SCH_2__DOORBELL_HIT__SHIFT 0x1f
+#define CP_RB_DOORBELL_CONTROL_SCH_2__DOORBELL_OFFSET_MASK 0x0FFFFFFCL
+#define CP_RB_DOORBELL_CONTROL_SCH_2__DOORBELL_EN_MASK 0x40000000L
+#define CP_RB_DOORBELL_CONTROL_SCH_2__DOORBELL_HIT_MASK 0x80000000L
+//CP_RB_DOORBELL_CONTROL_SCH_3
+#define CP_RB_DOORBELL_CONTROL_SCH_3__DOORBELL_OFFSET__SHIFT 0x2
+#define CP_RB_DOORBELL_CONTROL_SCH_3__DOORBELL_EN__SHIFT 0x1e
+#define CP_RB_DOORBELL_CONTROL_SCH_3__DOORBELL_HIT__SHIFT 0x1f
+#define CP_RB_DOORBELL_CONTROL_SCH_3__DOORBELL_OFFSET_MASK 0x0FFFFFFCL
+#define CP_RB_DOORBELL_CONTROL_SCH_3__DOORBELL_EN_MASK 0x40000000L
+#define CP_RB_DOORBELL_CONTROL_SCH_3__DOORBELL_HIT_MASK 0x80000000L
+//CP_RB_DOORBELL_CONTROL_SCH_4
+#define CP_RB_DOORBELL_CONTROL_SCH_4__DOORBELL_OFFSET__SHIFT 0x2
+#define CP_RB_DOORBELL_CONTROL_SCH_4__DOORBELL_EN__SHIFT 0x1e
+#define CP_RB_DOORBELL_CONTROL_SCH_4__DOORBELL_HIT__SHIFT 0x1f
+#define CP_RB_DOORBELL_CONTROL_SCH_4__DOORBELL_OFFSET_MASK 0x0FFFFFFCL
+#define CP_RB_DOORBELL_CONTROL_SCH_4__DOORBELL_EN_MASK 0x40000000L
+#define CP_RB_DOORBELL_CONTROL_SCH_4__DOORBELL_HIT_MASK 0x80000000L
+//CP_RB_DOORBELL_CONTROL_SCH_5
+#define CP_RB_DOORBELL_CONTROL_SCH_5__DOORBELL_OFFSET__SHIFT 0x2
+#define CP_RB_DOORBELL_CONTROL_SCH_5__DOORBELL_EN__SHIFT 0x1e
+#define CP_RB_DOORBELL_CONTROL_SCH_5__DOORBELL_HIT__SHIFT 0x1f
+#define CP_RB_DOORBELL_CONTROL_SCH_5__DOORBELL_OFFSET_MASK 0x0FFFFFFCL
+#define CP_RB_DOORBELL_CONTROL_SCH_5__DOORBELL_EN_MASK 0x40000000L
+#define CP_RB_DOORBELL_CONTROL_SCH_5__DOORBELL_HIT_MASK 0x80000000L
+//CP_RB_DOORBELL_CONTROL_SCH_6
+#define CP_RB_DOORBELL_CONTROL_SCH_6__DOORBELL_OFFSET__SHIFT 0x2
+#define CP_RB_DOORBELL_CONTROL_SCH_6__DOORBELL_EN__SHIFT 0x1e
+#define CP_RB_DOORBELL_CONTROL_SCH_6__DOORBELL_HIT__SHIFT 0x1f
+#define CP_RB_DOORBELL_CONTROL_SCH_6__DOORBELL_OFFSET_MASK 0x0FFFFFFCL
+#define CP_RB_DOORBELL_CONTROL_SCH_6__DOORBELL_EN_MASK 0x40000000L
+#define CP_RB_DOORBELL_CONTROL_SCH_6__DOORBELL_HIT_MASK 0x80000000L
+//CP_RB_DOORBELL_CONTROL_SCH_7
+#define CP_RB_DOORBELL_CONTROL_SCH_7__DOORBELL_OFFSET__SHIFT 0x2
+#define CP_RB_DOORBELL_CONTROL_SCH_7__DOORBELL_EN__SHIFT 0x1e
+#define CP_RB_DOORBELL_CONTROL_SCH_7__DOORBELL_HIT__SHIFT 0x1f
+#define CP_RB_DOORBELL_CONTROL_SCH_7__DOORBELL_OFFSET_MASK 0x0FFFFFFCL
+#define CP_RB_DOORBELL_CONTROL_SCH_7__DOORBELL_EN_MASK 0x40000000L
+#define CP_RB_DOORBELL_CONTROL_SCH_7__DOORBELL_HIT_MASK 0x80000000L
+//CP_RB_DOORBELL_CLEAR
+#define CP_RB_DOORBELL_CLEAR__MAPPED_QUEUE__SHIFT 0x0
+#define CP_RB_DOORBELL_CLEAR__MAPPED_QUE_DOORBELL_EN_CLEAR__SHIFT 0x8
+#define CP_RB_DOORBELL_CLEAR__MAPPED_QUE_DOORBELL_HIT_CLEAR__SHIFT 0x9
+#define CP_RB_DOORBELL_CLEAR__MASTER_DOORBELL_EN_CLEAR__SHIFT 0xa
+#define CP_RB_DOORBELL_CLEAR__MASTER_DOORBELL_HIT_CLEAR__SHIFT 0xb
+#define CP_RB_DOORBELL_CLEAR__QUEUES_DOORBELL_EN_CLEAR__SHIFT 0xc
+#define CP_RB_DOORBELL_CLEAR__QUEUES_DOORBELL_HIT_CLEAR__SHIFT 0xd
+#define CP_RB_DOORBELL_CLEAR__MAPPED_QUEUE_MASK 0x00000007L
+#define CP_RB_DOORBELL_CLEAR__MAPPED_QUE_DOORBELL_EN_CLEAR_MASK 0x00000100L
+#define CP_RB_DOORBELL_CLEAR__MAPPED_QUE_DOORBELL_HIT_CLEAR_MASK 0x00000200L
+#define CP_RB_DOORBELL_CLEAR__MASTER_DOORBELL_EN_CLEAR_MASK 0x00000400L
+#define CP_RB_DOORBELL_CLEAR__MASTER_DOORBELL_HIT_CLEAR_MASK 0x00000800L
+#define CP_RB_DOORBELL_CLEAR__QUEUES_DOORBELL_EN_CLEAR_MASK 0x00001000L
+#define CP_RB_DOORBELL_CLEAR__QUEUES_DOORBELL_HIT_CLEAR_MASK 0x00002000L
+//CP_CPF_DSM_CNTL
+#define CP_CPF_DSM_CNTL__CPF0_DSM_IRRITATOR_DATA__SHIFT 0x0
+#define CP_CPF_DSM_CNTL__CPF0_ENABLE_SINGLE_WRITE__SHIFT 0x2
+#define CP_CPF_DSM_CNTL__CPF1_DSM_IRRITATOR_DATA__SHIFT 0x3
+#define CP_CPF_DSM_CNTL__CPF1_ENABLE_SINGLE_WRITE__SHIFT 0x5
+#define CP_CPF_DSM_CNTL__CPF2_DSM_IRRITATOR_DATA__SHIFT 0x6
+#define CP_CPF_DSM_CNTL__CPF2_ENABLE_SINGLE_WRITE__SHIFT 0x8
+#define CP_CPF_DSM_CNTL__CPF0_DSM_IRRITATOR_DATA_MASK 0x00000003L
+#define CP_CPF_DSM_CNTL__CPF0_ENABLE_SINGLE_WRITE_MASK 0x00000004L
+#define CP_CPF_DSM_CNTL__CPF1_DSM_IRRITATOR_DATA_MASK 0x00000018L
+#define CP_CPF_DSM_CNTL__CPF1_ENABLE_SINGLE_WRITE_MASK 0x00000020L
+#define CP_CPF_DSM_CNTL__CPF2_DSM_IRRITATOR_DATA_MASK 0x000000C0L
+#define CP_CPF_DSM_CNTL__CPF2_ENABLE_SINGLE_WRITE_MASK 0x00000100L
+//CP_CPG_DSM_CNTL
+#define CP_CPG_DSM_CNTL__CPG0_DSM_IRRITATOR_DATA__SHIFT 0x0
+#define CP_CPG_DSM_CNTL__CPG0_ENABLE_SINGLE_WRITE__SHIFT 0x2
+#define CP_CPG_DSM_CNTL__CPG1_DSM_IRRITATOR_DATA__SHIFT 0x3
+#define CP_CPG_DSM_CNTL__CPG1_ENABLE_SINGLE_WRITE__SHIFT 0x5
+#define CP_CPG_DSM_CNTL__CPG2_DSM_IRRITATOR_DATA__SHIFT 0x6
+#define CP_CPG_DSM_CNTL__CPG2_ENABLE_SINGLE_WRITE__SHIFT 0x8
+#define CP_CPG_DSM_CNTL__CPG0_DSM_IRRITATOR_DATA_MASK 0x00000003L
+#define CP_CPG_DSM_CNTL__CPG0_ENABLE_SINGLE_WRITE_MASK 0x00000004L
+#define CP_CPG_DSM_CNTL__CPG1_DSM_IRRITATOR_DATA_MASK 0x00000018L
+#define CP_CPG_DSM_CNTL__CPG1_ENABLE_SINGLE_WRITE_MASK 0x00000020L
+#define CP_CPG_DSM_CNTL__CPG2_DSM_IRRITATOR_DATA_MASK 0x000000C0L
+#define CP_CPG_DSM_CNTL__CPG2_ENABLE_SINGLE_WRITE_MASK 0x00000100L
+//CP_CPC_DSM_CNTL
+#define CP_CPC_DSM_CNTL__CPC0_DSM_IRRITATOR_DATA__SHIFT 0x0
+#define CP_CPC_DSM_CNTL__CPC0_ENABLE_SINGLE_WRITE__SHIFT 0x2
+#define CP_CPC_DSM_CNTL__CPC1_DSM_IRRITATOR_DATA__SHIFT 0x3
+#define CP_CPC_DSM_CNTL__CPC1_ENABLE_SINGLE_WRITE__SHIFT 0x5
+#define CP_CPC_DSM_CNTL__CPC2_DSM_IRRITATOR_DATA__SHIFT 0x6
+#define CP_CPC_DSM_CNTL__CPC2_ENABLE_SINGLE_WRITE__SHIFT 0x8
+#define CP_CPC_DSM_CNTL__CPC3_DSM_IRRITATOR_DATA__SHIFT 0x9
+#define CP_CPC_DSM_CNTL__CPC3_ENABLE_SINGLE_WRITE__SHIFT 0xb
+#define CP_CPC_DSM_CNTL__CPC4_DSM_IRRITATOR_DATA__SHIFT 0xc
+#define CP_CPC_DSM_CNTL__CPC4_ENABLE_SINGLE_WRITE__SHIFT 0xe
+#define CP_CPC_DSM_CNTL__CPC5_DSM_IRRITATOR_DATA__SHIFT 0xf
+#define CP_CPC_DSM_CNTL__CPC5_ENABLE_SINGLE_WRITE__SHIFT 0x11
+#define CP_CPC_DSM_CNTL__CPC6_DSM_IRRITATOR_DATA__SHIFT 0x12
+#define CP_CPC_DSM_CNTL__CPC6_ENABLE_SINGLE_WRITE__SHIFT 0x14
+#define CP_CPC_DSM_CNTL__CPC7_DSM_IRRITATOR_DATA__SHIFT 0x15
+#define CP_CPC_DSM_CNTL__CPC7_ENABLE_SINGLE_WRITE__SHIFT 0x17
+#define CP_CPC_DSM_CNTL__CPC8_DSM_IRRITATOR_DATA__SHIFT 0x18
+#define CP_CPC_DSM_CNTL__CPC8_ENABLE_SINGLE_WRITE__SHIFT 0x1a
+#define CP_CPC_DSM_CNTL__CPC0_DSM_IRRITATOR_DATA_MASK 0x00000003L
+#define CP_CPC_DSM_CNTL__CPC0_ENABLE_SINGLE_WRITE_MASK 0x00000004L
+#define CP_CPC_DSM_CNTL__CPC1_DSM_IRRITATOR_DATA_MASK 0x00000018L
+#define CP_CPC_DSM_CNTL__CPC1_ENABLE_SINGLE_WRITE_MASK 0x00000020L
+#define CP_CPC_DSM_CNTL__CPC2_DSM_IRRITATOR_DATA_MASK 0x000000C0L
+#define CP_CPC_DSM_CNTL__CPC2_ENABLE_SINGLE_WRITE_MASK 0x00000100L
+#define CP_CPC_DSM_CNTL__CPC3_DSM_IRRITATOR_DATA_MASK 0x00000600L
+#define CP_CPC_DSM_CNTL__CPC3_ENABLE_SINGLE_WRITE_MASK 0x00000800L
+#define CP_CPC_DSM_CNTL__CPC4_DSM_IRRITATOR_DATA_MASK 0x00003000L
+#define CP_CPC_DSM_CNTL__CPC4_ENABLE_SINGLE_WRITE_MASK 0x00004000L
+#define CP_CPC_DSM_CNTL__CPC5_DSM_IRRITATOR_DATA_MASK 0x00018000L
+#define CP_CPC_DSM_CNTL__CPC5_ENABLE_SINGLE_WRITE_MASK 0x00020000L
+#define CP_CPC_DSM_CNTL__CPC6_DSM_IRRITATOR_DATA_MASK 0x000C0000L
+#define CP_CPC_DSM_CNTL__CPC6_ENABLE_SINGLE_WRITE_MASK 0x00100000L
+#define CP_CPC_DSM_CNTL__CPC7_DSM_IRRITATOR_DATA_MASK 0x00600000L
+#define CP_CPC_DSM_CNTL__CPC7_ENABLE_SINGLE_WRITE_MASK 0x00800000L
+#define CP_CPC_DSM_CNTL__CPC8_DSM_IRRITATOR_DATA_MASK 0x03000000L
+#define CP_CPC_DSM_CNTL__CPC8_ENABLE_SINGLE_WRITE_MASK 0x04000000L
+//CP_CPF_DSM_CNTL2
+#define CP_CPF_DSM_CNTL2__CPF0_ENABLE_ERROR_INJECT__SHIFT 0x0
+#define CP_CPF_DSM_CNTL2__CPF0_SELECT_INJECT_DELAY__SHIFT 0x2
+#define CP_CPF_DSM_CNTL2__CPF1_ENABLE_ERROR_INJECT__SHIFT 0x3
+#define CP_CPF_DSM_CNTL2__CPF1_SELECT_INJECT_DELAY__SHIFT 0x5
+#define CP_CPF_DSM_CNTL2__CPF2_ENABLE_ERROR_INJECT__SHIFT 0x6
+#define CP_CPF_DSM_CNTL2__CPF2_SELECT_INJECT_DELAY__SHIFT 0x8
+#define CP_CPF_DSM_CNTL2__CPF0_ENABLE_ERROR_INJECT_MASK 0x00000003L
+#define CP_CPF_DSM_CNTL2__CPF0_SELECT_INJECT_DELAY_MASK 0x00000004L
+#define CP_CPF_DSM_CNTL2__CPF1_ENABLE_ERROR_INJECT_MASK 0x00000018L
+#define CP_CPF_DSM_CNTL2__CPF1_SELECT_INJECT_DELAY_MASK 0x00000020L
+#define CP_CPF_DSM_CNTL2__CPF2_ENABLE_ERROR_INJECT_MASK 0x000000C0L
+#define CP_CPF_DSM_CNTL2__CPF2_SELECT_INJECT_DELAY_MASK 0x00000100L
+//CP_CPG_DSM_CNTL2
+#define CP_CPG_DSM_CNTL2__CPG0_ENABLE_ERROR_INJECT__SHIFT 0x0
+#define CP_CPG_DSM_CNTL2__CPG0_SELECT_INJECT_DELAY__SHIFT 0x2
+#define CP_CPG_DSM_CNTL2__CPG1_ENABLE_ERROR_INJECT__SHIFT 0x3
+#define CP_CPG_DSM_CNTL2__CPG1_SELECT_INJECT_DELAY__SHIFT 0x5
+#define CP_CPG_DSM_CNTL2__CPG2_ENABLE_ERROR_INJECT__SHIFT 0x6
+#define CP_CPG_DSM_CNTL2__CPG2_SELECT_INJECT_DELAY__SHIFT 0x8
+#define CP_CPG_DSM_CNTL2__CPG0_ENABLE_ERROR_INJECT_MASK 0x00000003L
+#define CP_CPG_DSM_CNTL2__CPG0_SELECT_INJECT_DELAY_MASK 0x00000004L
+#define CP_CPG_DSM_CNTL2__CPG1_ENABLE_ERROR_INJECT_MASK 0x00000018L
+#define CP_CPG_DSM_CNTL2__CPG1_SELECT_INJECT_DELAY_MASK 0x00000020L
+#define CP_CPG_DSM_CNTL2__CPG2_ENABLE_ERROR_INJECT_MASK 0x000000C0L
+#define CP_CPG_DSM_CNTL2__CPG2_SELECT_INJECT_DELAY_MASK 0x00000100L
+//CP_CPC_DSM_CNTL2
+#define CP_CPC_DSM_CNTL2__CPC0_ENABLE_ERROR_INJECT__SHIFT 0x0
+#define CP_CPC_DSM_CNTL2__CPC0_SELECT_INJECT_DELAY__SHIFT 0x2
+#define CP_CPC_DSM_CNTL2__CPC1_ENABLE_ERROR_INJECT__SHIFT 0x3
+#define CP_CPC_DSM_CNTL2__CPC1_SELECT_INJECT_DELAY__SHIFT 0x5
+#define CP_CPC_DSM_CNTL2__CPC2_ENABLE_ERROR_INJECT__SHIFT 0x6
+#define CP_CPC_DSM_CNTL2__CPC2_SELECT_INJECT_DELAY__SHIFT 0x8
+#define CP_CPC_DSM_CNTL2__CPC3_ENABLE_ERROR_INJECT__SHIFT 0x9
+#define CP_CPC_DSM_CNTL2__CPC3_SELECT_INJECT_DELAY__SHIFT 0xb
+#define CP_CPC_DSM_CNTL2__CPC4_ENABLE_ERROR_INJECT__SHIFT 0xc
+#define CP_CPC_DSM_CNTL2__CPC4_SELECT_INJECT_DELAY__SHIFT 0xe
+#define CP_CPC_DSM_CNTL2__CPC5_ENABLE_ERROR_INJECT__SHIFT 0xf
+#define CP_CPC_DSM_CNTL2__CPC5_SELECT_INJECT_DELAY__SHIFT 0x11
+#define CP_CPC_DSM_CNTL2__CPC6_ENABLE_ERROR_INJECT__SHIFT 0x12
+#define CP_CPC_DSM_CNTL2__CPC6_SELECT_INJECT_DELAY__SHIFT 0x14
+#define CP_CPC_DSM_CNTL2__CPC7_ENABLE_ERROR_INJECT__SHIFT 0x15
+#define CP_CPC_DSM_CNTL2__CPC7_SELECT_INJECT_DELAY__SHIFT 0x17
+#define CP_CPC_DSM_CNTL2__CPC8_ENABLE_ERROR_INJECT__SHIFT 0x18
+#define CP_CPC_DSM_CNTL2__CPC8_SELECT_INJECT_DELAY__SHIFT 0x1a
+#define CP_CPC_DSM_CNTL2__CPC0_ENABLE_ERROR_INJECT_MASK 0x00000003L
+#define CP_CPC_DSM_CNTL2__CPC0_SELECT_INJECT_DELAY_MASK 0x00000004L
+#define CP_CPC_DSM_CNTL2__CPC1_ENABLE_ERROR_INJECT_MASK 0x00000018L
+#define CP_CPC_DSM_CNTL2__CPC1_SELECT_INJECT_DELAY_MASK 0x00000020L
+#define CP_CPC_DSM_CNTL2__CPC2_ENABLE_ERROR_INJECT_MASK 0x000000C0L
+#define CP_CPC_DSM_CNTL2__CPC2_SELECT_INJECT_DELAY_MASK 0x00000100L
+#define CP_CPC_DSM_CNTL2__CPC3_ENABLE_ERROR_INJECT_MASK 0x00000600L
+#define CP_CPC_DSM_CNTL2__CPC3_SELECT_INJECT_DELAY_MASK 0x00000800L
+#define CP_CPC_DSM_CNTL2__CPC4_ENABLE_ERROR_INJECT_MASK 0x00003000L
+#define CP_CPC_DSM_CNTL2__CPC4_SELECT_INJECT_DELAY_MASK 0x00004000L
+#define CP_CPC_DSM_CNTL2__CPC5_ENABLE_ERROR_INJECT_MASK 0x00018000L
+#define CP_CPC_DSM_CNTL2__CPC5_SELECT_INJECT_DELAY_MASK 0x00020000L
+#define CP_CPC_DSM_CNTL2__CPC6_ENABLE_ERROR_INJECT_MASK 0x000C0000L
+#define CP_CPC_DSM_CNTL2__CPC6_SELECT_INJECT_DELAY_MASK 0x00100000L
+#define CP_CPC_DSM_CNTL2__CPC7_ENABLE_ERROR_INJECT_MASK 0x00600000L
+#define CP_CPC_DSM_CNTL2__CPC7_SELECT_INJECT_DELAY_MASK 0x00800000L
+#define CP_CPC_DSM_CNTL2__CPC8_ENABLE_ERROR_INJECT_MASK 0x03000000L
+#define CP_CPC_DSM_CNTL2__CPC8_SELECT_INJECT_DELAY_MASK 0x04000000L
+//CP_CPF_DSM_CNTL2A
+#define CP_CPF_DSM_CNTL2A__CPF_INJECT_DELAY__SHIFT 0x0
+#define CP_CPF_DSM_CNTL2A__CPF_INJECT_DELAY_MASK 0x0000003FL
+//CP_CPG_DSM_CNTL2A
+#define CP_CPG_DSM_CNTL2A__CPG_INJECT_DELAY__SHIFT 0x0
+#define CP_CPG_DSM_CNTL2A__CPG_INJECT_DELAY_MASK 0x0000003FL
+//CP_CPC_DSM_CNTL2A
+#define CP_CPC_DSM_CNTL2A__CPC_INJECT_DELAY__SHIFT 0x0
+#define CP_CPC_DSM_CNTL2A__CPC_INJECT_DELAY_MASK 0x0000003FL
+//CP_EDC_FUE_CNTL
+#define CP_EDC_FUE_CNTL__CP_FUE_MASK__SHIFT 0x0
+#define CP_EDC_FUE_CNTL__SPI_FUE_MASK__SHIFT 0x1
+#define CP_EDC_FUE_CNTL__GDS_FUE_MASK__SHIFT 0x2
+#define CP_EDC_FUE_CNTL__TC_RLC_FUE_MASK__SHIFT 0x3
+#define CP_EDC_FUE_CNTL__TC_CPG_FUE_MASK__SHIFT 0x4
+#define CP_EDC_FUE_CNTL__TCA_FUE_MASK__SHIFT 0x5
+#define CP_EDC_FUE_CNTL__TCC_FUE_MASK__SHIFT 0x6
+#define CP_EDC_FUE_CNTL__UTCL2_FUE_MASK__SHIFT 0x7
+#define CP_EDC_FUE_CNTL__CP_FUE_FLAG__SHIFT 0x10
+#define CP_EDC_FUE_CNTL__SPI_FUE_FLAG__SHIFT 0x11
+#define CP_EDC_FUE_CNTL__GDS_FUE_FLAG__SHIFT 0x12
+#define CP_EDC_FUE_CNTL__TC_RLC_FUE_FLAG__SHIFT 0x13
+#define CP_EDC_FUE_CNTL__TC_CPG_FUE_FLAG__SHIFT 0x14
+#define CP_EDC_FUE_CNTL__TCA_FUE_FLAG__SHIFT 0x15
+#define CP_EDC_FUE_CNTL__TCC_FUE_FLAG__SHIFT 0x16
+#define CP_EDC_FUE_CNTL__UTCL2_FUE_FLAG__SHIFT 0x17
+#define CP_EDC_FUE_CNTL__CP_FUE_MASK_MASK 0x00000001L
+#define CP_EDC_FUE_CNTL__SPI_FUE_MASK_MASK 0x00000002L
+#define CP_EDC_FUE_CNTL__GDS_FUE_MASK_MASK 0x00000004L
+#define CP_EDC_FUE_CNTL__TC_RLC_FUE_MASK_MASK 0x00000008L
+#define CP_EDC_FUE_CNTL__TC_CPG_FUE_MASK_MASK 0x00000010L
+#define CP_EDC_FUE_CNTL__TCA_FUE_MASK_MASK 0x00000020L
+#define CP_EDC_FUE_CNTL__TCC_FUE_MASK_MASK 0x00000040L
+#define CP_EDC_FUE_CNTL__UTCL2_FUE_MASK_MASK 0x00000080L
+#define CP_EDC_FUE_CNTL__CP_FUE_FLAG_MASK 0x00010000L
+#define CP_EDC_FUE_CNTL__SPI_FUE_FLAG_MASK 0x00020000L
+#define CP_EDC_FUE_CNTL__GDS_FUE_FLAG_MASK 0x00040000L
+#define CP_EDC_FUE_CNTL__TC_RLC_FUE_FLAG_MASK 0x00080000L
+#define CP_EDC_FUE_CNTL__TC_CPG_FUE_FLAG_MASK 0x00100000L
+#define CP_EDC_FUE_CNTL__TCA_FUE_FLAG_MASK 0x00200000L
+#define CP_EDC_FUE_CNTL__TCC_FUE_FLAG_MASK 0x00400000L
+#define CP_EDC_FUE_CNTL__UTCL2_FUE_FLAG_MASK 0x00800000L
+//CP_GFX_MQD_CONTROL
+#define CP_GFX_MQD_CONTROL__VMID__SHIFT 0x0
+#define CP_GFX_MQD_CONTROL__PRIV_STATE__SHIFT 0x8
+#define CP_GFX_MQD_CONTROL__EXE_DISABLE__SHIFT 0x17
+#define CP_GFX_MQD_CONTROL__CACHE_POLICY__SHIFT 0x18
+#define CP_GFX_MQD_CONTROL__VMID_MASK 0x0000000FL
+#define CP_GFX_MQD_CONTROL__PRIV_STATE_MASK 0x00000100L
+#define CP_GFX_MQD_CONTROL__EXE_DISABLE_MASK 0x00800000L
+#define CP_GFX_MQD_CONTROL__CACHE_POLICY_MASK 0x01000000L
+//CP_GFX_MQD_BASE_ADDR
+#define CP_GFX_MQD_BASE_ADDR__BASE_ADDR__SHIFT 0x2
+#define CP_GFX_MQD_BASE_ADDR__BASE_ADDR_MASK 0xFFFFFFFCL
+//CP_GFX_MQD_BASE_ADDR_HI
+#define CP_GFX_MQD_BASE_ADDR_HI__BASE_ADDR_HI__SHIFT 0x0
+#define CP_GFX_MQD_BASE_ADDR_HI__BASE_ADDR_HI_MASK 0x0000FFFFL
+//CP_RB_STATUS
+#define CP_RB_STATUS__DOORBELL_UPDATED__SHIFT 0x0
+#define CP_RB_STATUS__DOORBELL_ENABLE__SHIFT 0x1
+#define CP_RB_STATUS__DOORBELL_UPDATED_MASK 0x00000001L
+#define CP_RB_STATUS__DOORBELL_ENABLE_MASK 0x00000002L
+//CPG_UTCL1_STATUS
+#define CPG_UTCL1_STATUS__FAULT_DETECTED__SHIFT 0x0
+#define CPG_UTCL1_STATUS__RETRY_DETECTED__SHIFT 0x1
+#define CPG_UTCL1_STATUS__PRT_DETECTED__SHIFT 0x2
+#define CPG_UTCL1_STATUS__FAULT_UTCL1ID__SHIFT 0x8
+#define CPG_UTCL1_STATUS__RETRY_UTCL1ID__SHIFT 0x10
+#define CPG_UTCL1_STATUS__PRT_UTCL1ID__SHIFT 0x18
+#define CPG_UTCL1_STATUS__FAULT_DETECTED_MASK 0x00000001L
+#define CPG_UTCL1_STATUS__RETRY_DETECTED_MASK 0x00000002L
+#define CPG_UTCL1_STATUS__PRT_DETECTED_MASK 0x00000004L
+#define CPG_UTCL1_STATUS__FAULT_UTCL1ID_MASK 0x00003F00L
+#define CPG_UTCL1_STATUS__RETRY_UTCL1ID_MASK 0x003F0000L
+#define CPG_UTCL1_STATUS__PRT_UTCL1ID_MASK 0x3F000000L
+//CPC_UTCL1_STATUS
+#define CPC_UTCL1_STATUS__FAULT_DETECTED__SHIFT 0x0
+#define CPC_UTCL1_STATUS__RETRY_DETECTED__SHIFT 0x1
+#define CPC_UTCL1_STATUS__PRT_DETECTED__SHIFT 0x2
+#define CPC_UTCL1_STATUS__FAULT_UTCL1ID__SHIFT 0x8
+#define CPC_UTCL1_STATUS__RETRY_UTCL1ID__SHIFT 0x10
+#define CPC_UTCL1_STATUS__PRT_UTCL1ID__SHIFT 0x18
+#define CPC_UTCL1_STATUS__FAULT_DETECTED_MASK 0x00000001L
+#define CPC_UTCL1_STATUS__RETRY_DETECTED_MASK 0x00000002L
+#define CPC_UTCL1_STATUS__PRT_DETECTED_MASK 0x00000004L
+#define CPC_UTCL1_STATUS__FAULT_UTCL1ID_MASK 0x00003F00L
+#define CPC_UTCL1_STATUS__RETRY_UTCL1ID_MASK 0x003F0000L
+#define CPC_UTCL1_STATUS__PRT_UTCL1ID_MASK 0x3F000000L
+//CPF_UTCL1_STATUS
+#define CPF_UTCL1_STATUS__FAULT_DETECTED__SHIFT 0x0
+#define CPF_UTCL1_STATUS__RETRY_DETECTED__SHIFT 0x1
+#define CPF_UTCL1_STATUS__PRT_DETECTED__SHIFT 0x2
+#define CPF_UTCL1_STATUS__FAULT_UTCL1ID__SHIFT 0x8
+#define CPF_UTCL1_STATUS__RETRY_UTCL1ID__SHIFT 0x10
+#define CPF_UTCL1_STATUS__PRT_UTCL1ID__SHIFT 0x18
+#define CPF_UTCL1_STATUS__FAULT_DETECTED_MASK 0x00000001L
+#define CPF_UTCL1_STATUS__RETRY_DETECTED_MASK 0x00000002L
+#define CPF_UTCL1_STATUS__PRT_DETECTED_MASK 0x00000004L
+#define CPF_UTCL1_STATUS__FAULT_UTCL1ID_MASK 0x00003F00L
+#define CPF_UTCL1_STATUS__RETRY_UTCL1ID_MASK 0x003F0000L
+#define CPF_UTCL1_STATUS__PRT_UTCL1ID_MASK 0x3F000000L
+//CP_SD_CNTL
+#define CP_SD_CNTL__CPF_EN__SHIFT 0x0
+#define CP_SD_CNTL__CPG_EN__SHIFT 0x1
+#define CP_SD_CNTL__CPC_EN__SHIFT 0x2
+#define CP_SD_CNTL__RLC_EN__SHIFT 0x3
+#define CP_SD_CNTL__SPI_EN__SHIFT 0x4
+#define CP_SD_CNTL__WD_EN__SHIFT 0x5
+#define CP_SD_CNTL__IA_EN__SHIFT 0x6
+#define CP_SD_CNTL__PA_EN__SHIFT 0x7
+#define CP_SD_CNTL__RMI_EN__SHIFT 0x8
+#define CP_SD_CNTL__EA_EN__SHIFT 0x9
+#define CP_SD_CNTL__CPF_EN_MASK 0x00000001L
+#define CP_SD_CNTL__CPG_EN_MASK 0x00000002L
+#define CP_SD_CNTL__CPC_EN_MASK 0x00000004L
+#define CP_SD_CNTL__RLC_EN_MASK 0x00000008L
+#define CP_SD_CNTL__SPI_EN_MASK 0x00000010L
+#define CP_SD_CNTL__WD_EN_MASK 0x00000020L
+#define CP_SD_CNTL__IA_EN_MASK 0x00000040L
+#define CP_SD_CNTL__PA_EN_MASK 0x00000080L
+#define CP_SD_CNTL__RMI_EN_MASK 0x00000100L
+#define CP_SD_CNTL__EA_EN_MASK 0x00000200L
+//CP_SOFT_RESET_CNTL
+#define CP_SOFT_RESET_CNTL__CMP_ONLY_SOFT_RESET__SHIFT 0x0
+#define CP_SOFT_RESET_CNTL__GFX_ONLY_SOFT_RESET__SHIFT 0x1
+#define CP_SOFT_RESET_CNTL__CMP_HQD_REG_RESET__SHIFT 0x2
+#define CP_SOFT_RESET_CNTL__CMP_INTR_REG_RESET__SHIFT 0x3
+#define CP_SOFT_RESET_CNTL__CMP_HQD_QUEUE_DOORBELL_RESET__SHIFT 0x4
+#define CP_SOFT_RESET_CNTL__GFX_RB_DOORBELL_RESET__SHIFT 0x5
+#define CP_SOFT_RESET_CNTL__GFX_INTR_REG_RESET__SHIFT 0x6
+#define CP_SOFT_RESET_CNTL__CMP_ONLY_SOFT_RESET_MASK 0x00000001L
+#define CP_SOFT_RESET_CNTL__GFX_ONLY_SOFT_RESET_MASK 0x00000002L
+#define CP_SOFT_RESET_CNTL__CMP_HQD_REG_RESET_MASK 0x00000004L
+#define CP_SOFT_RESET_CNTL__CMP_INTR_REG_RESET_MASK 0x00000008L
+#define CP_SOFT_RESET_CNTL__CMP_HQD_QUEUE_DOORBELL_RESET_MASK 0x00000010L
+#define CP_SOFT_RESET_CNTL__GFX_RB_DOORBELL_RESET_MASK 0x00000020L
+#define CP_SOFT_RESET_CNTL__GFX_INTR_REG_RESET_MASK 0x00000040L
+//CP_CPC_GFX_CNTL
+#define CP_CPC_GFX_CNTL__QUEUEID__SHIFT 0x0
+#define CP_CPC_GFX_CNTL__PIPEID__SHIFT 0x3
+#define CP_CPC_GFX_CNTL__MEID__SHIFT 0x5
+#define CP_CPC_GFX_CNTL__VALID__SHIFT 0x7
+#define CP_CPC_GFX_CNTL__QUEUEID_MASK 0x00000007L
+#define CP_CPC_GFX_CNTL__PIPEID_MASK 0x00000018L
+#define CP_CPC_GFX_CNTL__MEID_MASK 0x00000060L
+#define CP_CPC_GFX_CNTL__VALID_MASK 0x00000080L
+
+
+// addressBlock: xcd0_gc_spipdec
+//SPI_ARB_PRIORITY
+#define SPI_ARB_PRIORITY__PIPE_ORDER_TS0__SHIFT 0x0
+#define SPI_ARB_PRIORITY__PIPE_ORDER_TS1__SHIFT 0x3
+#define SPI_ARB_PRIORITY__PIPE_ORDER_TS2__SHIFT 0x6
+#define SPI_ARB_PRIORITY__PIPE_ORDER_TS3__SHIFT 0x9
+#define SPI_ARB_PRIORITY__TS0_DUR_MULT__SHIFT 0xc
+#define SPI_ARB_PRIORITY__TS1_DUR_MULT__SHIFT 0xe
+#define SPI_ARB_PRIORITY__TS2_DUR_MULT__SHIFT 0x10
+#define SPI_ARB_PRIORITY__TS3_DUR_MULT__SHIFT 0x12
+#define SPI_ARB_PRIORITY__PIPE_ORDER_TS0_MASK 0x00000007L
+#define SPI_ARB_PRIORITY__PIPE_ORDER_TS1_MASK 0x00000038L
+#define SPI_ARB_PRIORITY__PIPE_ORDER_TS2_MASK 0x000001C0L
+#define SPI_ARB_PRIORITY__PIPE_ORDER_TS3_MASK 0x00000E00L
+#define SPI_ARB_PRIORITY__TS0_DUR_MULT_MASK 0x00003000L
+#define SPI_ARB_PRIORITY__TS1_DUR_MULT_MASK 0x0000C000L
+#define SPI_ARB_PRIORITY__TS2_DUR_MULT_MASK 0x00030000L
+#define SPI_ARB_PRIORITY__TS3_DUR_MULT_MASK 0x000C0000L
+//SPI_ARB_CYCLES_0
+#define SPI_ARB_CYCLES_0__TS0_DURATION__SHIFT 0x0
+#define SPI_ARB_CYCLES_0__TS1_DURATION__SHIFT 0x10
+#define SPI_ARB_CYCLES_0__TS0_DURATION_MASK 0x0000FFFFL
+#define SPI_ARB_CYCLES_0__TS1_DURATION_MASK 0xFFFF0000L
+//SPI_ARB_CYCLES_1
+#define SPI_ARB_CYCLES_1__TS2_DURATION__SHIFT 0x0
+#define SPI_ARB_CYCLES_1__TS3_DURATION__SHIFT 0x10
+#define SPI_ARB_CYCLES_1__TS2_DURATION_MASK 0x0000FFFFL
+#define SPI_ARB_CYCLES_1__TS3_DURATION_MASK 0xFFFF0000L
+//SPI_CDBG_SYS_GFX
+#define SPI_CDBG_SYS_GFX__PS_EN__SHIFT 0x0
+#define SPI_CDBG_SYS_GFX__VS_EN__SHIFT 0x1
+#define SPI_CDBG_SYS_GFX__GS_EN__SHIFT 0x2
+#define SPI_CDBG_SYS_GFX__ES_EN__SHIFT 0x3
+#define SPI_CDBG_SYS_GFX__HS_EN__SHIFT 0x4
+#define SPI_CDBG_SYS_GFX__LS_EN__SHIFT 0x5
+#define SPI_CDBG_SYS_GFX__CS_EN__SHIFT 0x6
+#define SPI_CDBG_SYS_GFX__PS_EN_MASK 0x0001L
+#define SPI_CDBG_SYS_GFX__VS_EN_MASK 0x0002L
+#define SPI_CDBG_SYS_GFX__GS_EN_MASK 0x0004L
+#define SPI_CDBG_SYS_GFX__ES_EN_MASK 0x0008L
+#define SPI_CDBG_SYS_GFX__HS_EN_MASK 0x0010L
+#define SPI_CDBG_SYS_GFX__LS_EN_MASK 0x0020L
+#define SPI_CDBG_SYS_GFX__CS_EN_MASK 0x0040L
+//SPI_CDBG_SYS_HP3D
+#define SPI_CDBG_SYS_HP3D__PS_EN__SHIFT 0x0
+#define SPI_CDBG_SYS_HP3D__VS_EN__SHIFT 0x1
+#define SPI_CDBG_SYS_HP3D__GS_EN__SHIFT 0x2
+#define SPI_CDBG_SYS_HP3D__ES_EN__SHIFT 0x3
+#define SPI_CDBG_SYS_HP3D__HS_EN__SHIFT 0x4
+#define SPI_CDBG_SYS_HP3D__LS_EN__SHIFT 0x5
+#define SPI_CDBG_SYS_HP3D__PS_EN_MASK 0x0001L
+#define SPI_CDBG_SYS_HP3D__VS_EN_MASK 0x0002L
+#define SPI_CDBG_SYS_HP3D__GS_EN_MASK 0x0004L
+#define SPI_CDBG_SYS_HP3D__ES_EN_MASK 0x0008L
+#define SPI_CDBG_SYS_HP3D__HS_EN_MASK 0x0010L
+#define SPI_CDBG_SYS_HP3D__LS_EN_MASK 0x0020L
+//SPI_CDBG_SYS_CS0
+#define SPI_CDBG_SYS_CS0__PIPE0__SHIFT 0x0
+#define SPI_CDBG_SYS_CS0__PIPE1__SHIFT 0x8
+#define SPI_CDBG_SYS_CS0__PIPE2__SHIFT 0x10
+#define SPI_CDBG_SYS_CS0__PIPE3__SHIFT 0x18
+#define SPI_CDBG_SYS_CS0__PIPE0_MASK 0x000000FFL
+#define SPI_CDBG_SYS_CS0__PIPE1_MASK 0x0000FF00L
+#define SPI_CDBG_SYS_CS0__PIPE2_MASK 0x00FF0000L
+#define SPI_CDBG_SYS_CS0__PIPE3_MASK 0xFF000000L
+//SPI_CDBG_SYS_CS1
+#define SPI_CDBG_SYS_CS1__PIPE0__SHIFT 0x0
+#define SPI_CDBG_SYS_CS1__PIPE1__SHIFT 0x8
+#define SPI_CDBG_SYS_CS1__PIPE2__SHIFT 0x10
+#define SPI_CDBG_SYS_CS1__PIPE3__SHIFT 0x18
+#define SPI_CDBG_SYS_CS1__PIPE0_MASK 0x000000FFL
+#define SPI_CDBG_SYS_CS1__PIPE1_MASK 0x0000FF00L
+#define SPI_CDBG_SYS_CS1__PIPE2_MASK 0x00FF0000L
+#define SPI_CDBG_SYS_CS1__PIPE3_MASK 0xFF000000L
+//SPI_WCL_PIPE_PERCENT_GFX
+#define SPI_WCL_PIPE_PERCENT_GFX__VALUE__SHIFT 0x0
+#define SPI_WCL_PIPE_PERCENT_GFX__LS_GRP_VALUE__SHIFT 0x7
+#define SPI_WCL_PIPE_PERCENT_GFX__HS_GRP_VALUE__SHIFT 0xc
+#define SPI_WCL_PIPE_PERCENT_GFX__ES_GRP_VALUE__SHIFT 0x11
+#define SPI_WCL_PIPE_PERCENT_GFX__GS_GRP_VALUE__SHIFT 0x16
+#define SPI_WCL_PIPE_PERCENT_GFX__VALUE_MASK 0x0000007FL
+#define SPI_WCL_PIPE_PERCENT_GFX__LS_GRP_VALUE_MASK 0x00000F80L
+#define SPI_WCL_PIPE_PERCENT_GFX__HS_GRP_VALUE_MASK 0x0001F000L
+#define SPI_WCL_PIPE_PERCENT_GFX__ES_GRP_VALUE_MASK 0x003E0000L
+#define SPI_WCL_PIPE_PERCENT_GFX__GS_GRP_VALUE_MASK 0x07C00000L
+//SPI_WCL_PIPE_PERCENT_HP3D
+#define SPI_WCL_PIPE_PERCENT_HP3D__VALUE__SHIFT 0x0
+#define SPI_WCL_PIPE_PERCENT_HP3D__HS_GRP_VALUE__SHIFT 0xc
+#define SPI_WCL_PIPE_PERCENT_HP3D__GS_GRP_VALUE__SHIFT 0x16
+#define SPI_WCL_PIPE_PERCENT_HP3D__VALUE_MASK 0x0000007FL
+#define SPI_WCL_PIPE_PERCENT_HP3D__HS_GRP_VALUE_MASK 0x0001F000L
+#define SPI_WCL_PIPE_PERCENT_HP3D__GS_GRP_VALUE_MASK 0x07C00000L
+//SPI_WCL_PIPE_PERCENT_CS0
+#define SPI_WCL_PIPE_PERCENT_CS0__VALUE__SHIFT 0x0
+#define SPI_WCL_PIPE_PERCENT_CS0__VALUE_MASK 0x7FL
+//SPI_WCL_PIPE_PERCENT_CS1
+#define SPI_WCL_PIPE_PERCENT_CS1__VALUE__SHIFT 0x0
+#define SPI_WCL_PIPE_PERCENT_CS1__VALUE_MASK 0x7FL
+//SPI_WCL_PIPE_PERCENT_CS2
+#define SPI_WCL_PIPE_PERCENT_CS2__VALUE__SHIFT 0x0
+#define SPI_WCL_PIPE_PERCENT_CS2__VALUE_MASK 0x7FL
+//SPI_WCL_PIPE_PERCENT_CS3
+#define SPI_WCL_PIPE_PERCENT_CS3__VALUE__SHIFT 0x0
+#define SPI_WCL_PIPE_PERCENT_CS3__VALUE_MASK 0x7FL
+//SPI_WCL_PIPE_PERCENT_CS4
+#define SPI_WCL_PIPE_PERCENT_CS4__VALUE__SHIFT 0x0
+#define SPI_WCL_PIPE_PERCENT_CS4__VALUE_MASK 0x7FL
+//SPI_WCL_PIPE_PERCENT_CS5
+#define SPI_WCL_PIPE_PERCENT_CS5__VALUE__SHIFT 0x0
+#define SPI_WCL_PIPE_PERCENT_CS5__VALUE_MASK 0x7FL
+//SPI_WCL_PIPE_PERCENT_CS6
+#define SPI_WCL_PIPE_PERCENT_CS6__VALUE__SHIFT 0x0
+#define SPI_WCL_PIPE_PERCENT_CS6__VALUE_MASK 0x7FL
+//SPI_WCL_PIPE_PERCENT_CS7
+#define SPI_WCL_PIPE_PERCENT_CS7__VALUE__SHIFT 0x0
+#define SPI_WCL_PIPE_PERCENT_CS7__VALUE_MASK 0x7FL
+//SPI_GDBG_WAVE_CNTL
+#define SPI_GDBG_WAVE_CNTL__STALL_RA__SHIFT 0x0
+#define SPI_GDBG_WAVE_CNTL__STALL_RA_MASK 0x01L
+//SPI_GDBG_TRAP_CONFIG
+#define SPI_GDBG_TRAP_CONFIG__PIPE0_EN__SHIFT 0x0
+#define SPI_GDBG_TRAP_CONFIG__PIPE1_EN__SHIFT 0x8
+#define SPI_GDBG_TRAP_CONFIG__PIPE2_EN__SHIFT 0x10
+#define SPI_GDBG_TRAP_CONFIG__PIPE3_EN__SHIFT 0x18
+#define SPI_GDBG_TRAP_CONFIG__PIPE0_EN_MASK 0x000000FFL
+#define SPI_GDBG_TRAP_CONFIG__PIPE1_EN_MASK 0x0000FF00L
+#define SPI_GDBG_TRAP_CONFIG__PIPE2_EN_MASK 0x00FF0000L
+#define SPI_GDBG_TRAP_CONFIG__PIPE3_EN_MASK 0xFF000000L
+//SPI_GDBG_PER_VMID_CNTL
+#define SPI_GDBG_PER_VMID_CNTL__STALL_VMID__SHIFT 0x0
+#define SPI_GDBG_PER_VMID_CNTL__LAUNCH_MODE__SHIFT 0x1
+#define SPI_GDBG_PER_VMID_CNTL__TRAP_EN__SHIFT 0x3
+#define SPI_GDBG_PER_VMID_CNTL__EXCP_EN__SHIFT 0x4
+#define SPI_GDBG_PER_VMID_CNTL__EXCP_REPLACE__SHIFT 0xd
+#define SPI_GDBG_PER_VMID_CNTL__TRAP_ON_START__SHIFT 0xe
+#define SPI_GDBG_PER_VMID_CNTL__TRAP_ON_END__SHIFT 0xf
+#define SPI_GDBG_PER_VMID_CNTL__STALL_VMID_MASK 0x0001L
+#define SPI_GDBG_PER_VMID_CNTL__LAUNCH_MODE_MASK 0x0006L
+#define SPI_GDBG_PER_VMID_CNTL__TRAP_EN_MASK 0x0008L
+#define SPI_GDBG_PER_VMID_CNTL__EXCP_EN_MASK 0x1FF0L
+#define SPI_GDBG_PER_VMID_CNTL__EXCP_REPLACE_MASK 0x2000L
+#define SPI_GDBG_PER_VMID_CNTL__TRAP_ON_START_MASK 0x4000L
+#define SPI_GDBG_PER_VMID_CNTL__TRAP_ON_END_MASK 0x8000L
+//SPI_GDBG_WAVE_CNTL3
+#define SPI_GDBG_WAVE_CNTL3__STALL_PS__SHIFT 0x0
+#define SPI_GDBG_WAVE_CNTL3__STALL_VS__SHIFT 0x1
+#define SPI_GDBG_WAVE_CNTL3__STALL_GS__SHIFT 0x2
+#define SPI_GDBG_WAVE_CNTL3__STALL_HS__SHIFT 0x3
+#define SPI_GDBG_WAVE_CNTL3__STALL_CSG__SHIFT 0x4
+#define SPI_GDBG_WAVE_CNTL3__STALL_CS0__SHIFT 0x5
+#define SPI_GDBG_WAVE_CNTL3__STALL_CS1__SHIFT 0x6
+#define SPI_GDBG_WAVE_CNTL3__STALL_CS2__SHIFT 0x7
+#define SPI_GDBG_WAVE_CNTL3__STALL_CS3__SHIFT 0x8
+#define SPI_GDBG_WAVE_CNTL3__STALL_CS4__SHIFT 0x9
+#define SPI_GDBG_WAVE_CNTL3__STALL_CS5__SHIFT 0xa
+#define SPI_GDBG_WAVE_CNTL3__STALL_CS6__SHIFT 0xb
+#define SPI_GDBG_WAVE_CNTL3__STALL_CS7__SHIFT 0xc
+#define SPI_GDBG_WAVE_CNTL3__STALL_DURATION__SHIFT 0xd
+#define SPI_GDBG_WAVE_CNTL3__STALL_MULT__SHIFT 0x1c
+#define SPI_GDBG_WAVE_CNTL3__STALL_PS_MASK 0x00000001L
+#define SPI_GDBG_WAVE_CNTL3__STALL_VS_MASK 0x00000002L
+#define SPI_GDBG_WAVE_CNTL3__STALL_GS_MASK 0x00000004L
+#define SPI_GDBG_WAVE_CNTL3__STALL_HS_MASK 0x00000008L
+#define SPI_GDBG_WAVE_CNTL3__STALL_CSG_MASK 0x00000010L
+#define SPI_GDBG_WAVE_CNTL3__STALL_CS0_MASK 0x00000020L
+#define SPI_GDBG_WAVE_CNTL3__STALL_CS1_MASK 0x00000040L
+#define SPI_GDBG_WAVE_CNTL3__STALL_CS2_MASK 0x00000080L
+#define SPI_GDBG_WAVE_CNTL3__STALL_CS3_MASK 0x00000100L
+#define SPI_GDBG_WAVE_CNTL3__STALL_CS4_MASK 0x00000200L
+#define SPI_GDBG_WAVE_CNTL3__STALL_CS5_MASK 0x00000400L
+#define SPI_GDBG_WAVE_CNTL3__STALL_CS6_MASK 0x00000800L
+#define SPI_GDBG_WAVE_CNTL3__STALL_CS7_MASK 0x00001000L
+#define SPI_GDBG_WAVE_CNTL3__STALL_DURATION_MASK 0x0FFFE000L
+#define SPI_GDBG_WAVE_CNTL3__STALL_MULT_MASK 0x10000000L
+//SPI_SCRATCH_ADDR_CHECK
+#define SPI_SCRATCH_ADDR_CHECK__RESERVED__SHIFT 0x0
+#define SPI_SCRATCH_ADDR_CHECK__RESERVED_MASK 0x0FL
+//SPI_SCRATCH_ADDR_STATUS
+#define SPI_SCRATCH_ADDR_STATUS__WRITE_DIS__SHIFT 0x0
+#define SPI_SCRATCH_ADDR_STATUS__OVERFLOW_DETECTED__SHIFT 0x1
+#define SPI_SCRATCH_ADDR_STATUS__ME_ID__SHIFT 0x2
+#define SPI_SCRATCH_ADDR_STATUS__PIPE_ID__SHIFT 0x4
+#define SPI_SCRATCH_ADDR_STATUS__WRITE_DIS_MASK 0x01L
+#define SPI_SCRATCH_ADDR_STATUS__OVERFLOW_DETECTED_MASK 0x02L
+#define SPI_SCRATCH_ADDR_STATUS__ME_ID_MASK 0x0CL
+#define SPI_SCRATCH_ADDR_STATUS__PIPE_ID_MASK 0x30L
+//SPI_RESET_DEBUG
+#define SPI_RESET_DEBUG__DISABLE_GFX_RESET__SHIFT 0x0
+#define SPI_RESET_DEBUG__DISABLE_GFX_RESET_PER_VMID__SHIFT 0x1
+#define SPI_RESET_DEBUG__DISABLE_GFX_RESET_ALL_VMID__SHIFT 0x2
+#define SPI_RESET_DEBUG__DISABLE_GFX_RESET_RESOURCE__SHIFT 0x3
+#define SPI_RESET_DEBUG__DISABLE_GFX_RESET_PRIORITY__SHIFT 0x4
+#define SPI_RESET_DEBUG__DISABLE_GFX_RESET_MASK 0x01L
+#define SPI_RESET_DEBUG__DISABLE_GFX_RESET_PER_VMID_MASK 0x02L
+#define SPI_RESET_DEBUG__DISABLE_GFX_RESET_ALL_VMID_MASK 0x04L
+#define SPI_RESET_DEBUG__DISABLE_GFX_RESET_RESOURCE_MASK 0x08L
+#define SPI_RESET_DEBUG__DISABLE_GFX_RESET_PRIORITY_MASK 0x10L
+//SPI_COMPUTE_QUEUE_RESET
+#define SPI_COMPUTE_QUEUE_RESET__RESET__SHIFT 0x0
+#define SPI_COMPUTE_QUEUE_RESET__RESET_MASK 0x01L
+//SPI_RESOURCE_RESERVE_CU_0
+#define SPI_RESOURCE_RESERVE_CU_0__VGPR__SHIFT 0x0
+#define SPI_RESOURCE_RESERVE_CU_0__SGPR__SHIFT 0x4
+#define SPI_RESOURCE_RESERVE_CU_0__LDS__SHIFT 0x8
+#define SPI_RESOURCE_RESERVE_CU_0__WAVES__SHIFT 0xc
+#define SPI_RESOURCE_RESERVE_CU_0__BARRIERS__SHIFT 0xf
+#define SPI_RESOURCE_RESERVE_CU_0__VGPR_MASK 0x0000000FL
+#define SPI_RESOURCE_RESERVE_CU_0__SGPR_MASK 0x000000F0L
+#define SPI_RESOURCE_RESERVE_CU_0__LDS_MASK 0x00000F00L
+#define SPI_RESOURCE_RESERVE_CU_0__WAVES_MASK 0x00007000L
+#define SPI_RESOURCE_RESERVE_CU_0__BARRIERS_MASK 0x00078000L
+//SPI_RESOURCE_RESERVE_CU_1
+#define SPI_RESOURCE_RESERVE_CU_1__VGPR__SHIFT 0x0
+#define SPI_RESOURCE_RESERVE_CU_1__SGPR__SHIFT 0x4
+#define SPI_RESOURCE_RESERVE_CU_1__LDS__SHIFT 0x8
+#define SPI_RESOURCE_RESERVE_CU_1__WAVES__SHIFT 0xc
+#define SPI_RESOURCE_RESERVE_CU_1__BARRIERS__SHIFT 0xf
+#define SPI_RESOURCE_RESERVE_CU_1__VGPR_MASK 0x0000000FL
+#define SPI_RESOURCE_RESERVE_CU_1__SGPR_MASK 0x000000F0L
+#define SPI_RESOURCE_RESERVE_CU_1__LDS_MASK 0x00000F00L
+#define SPI_RESOURCE_RESERVE_CU_1__WAVES_MASK 0x00007000L
+#define SPI_RESOURCE_RESERVE_CU_1__BARRIERS_MASK 0x00078000L
+//SPI_RESOURCE_RESERVE_CU_2
+#define SPI_RESOURCE_RESERVE_CU_2__VGPR__SHIFT 0x0
+#define SPI_RESOURCE_RESERVE_CU_2__SGPR__SHIFT 0x4
+#define SPI_RESOURCE_RESERVE_CU_2__LDS__SHIFT 0x8
+#define SPI_RESOURCE_RESERVE_CU_2__WAVES__SHIFT 0xc
+#define SPI_RESOURCE_RESERVE_CU_2__BARRIERS__SHIFT 0xf
+#define SPI_RESOURCE_RESERVE_CU_2__VGPR_MASK 0x0000000FL
+#define SPI_RESOURCE_RESERVE_CU_2__SGPR_MASK 0x000000F0L
+#define SPI_RESOURCE_RESERVE_CU_2__LDS_MASK 0x00000F00L
+#define SPI_RESOURCE_RESERVE_CU_2__WAVES_MASK 0x00007000L
+#define SPI_RESOURCE_RESERVE_CU_2__BARRIERS_MASK 0x00078000L
+//SPI_RESOURCE_RESERVE_CU_3
+#define SPI_RESOURCE_RESERVE_CU_3__VGPR__SHIFT 0x0
+#define SPI_RESOURCE_RESERVE_CU_3__SGPR__SHIFT 0x4
+#define SPI_RESOURCE_RESERVE_CU_3__LDS__SHIFT 0x8
+#define SPI_RESOURCE_RESERVE_CU_3__WAVES__SHIFT 0xc
+#define SPI_RESOURCE_RESERVE_CU_3__BARRIERS__SHIFT 0xf
+#define SPI_RESOURCE_RESERVE_CU_3__VGPR_MASK 0x0000000FL
+#define SPI_RESOURCE_RESERVE_CU_3__SGPR_MASK 0x000000F0L
+#define SPI_RESOURCE_RESERVE_CU_3__LDS_MASK 0x00000F00L
+#define SPI_RESOURCE_RESERVE_CU_3__WAVES_MASK 0x00007000L
+#define SPI_RESOURCE_RESERVE_CU_3__BARRIERS_MASK 0x00078000L
+//SPI_RESOURCE_RESERVE_CU_4
+#define SPI_RESOURCE_RESERVE_CU_4__VGPR__SHIFT 0x0
+#define SPI_RESOURCE_RESERVE_CU_4__SGPR__SHIFT 0x4
+#define SPI_RESOURCE_RESERVE_CU_4__LDS__SHIFT 0x8
+#define SPI_RESOURCE_RESERVE_CU_4__WAVES__SHIFT 0xc
+#define SPI_RESOURCE_RESERVE_CU_4__BARRIERS__SHIFT 0xf
+#define SPI_RESOURCE_RESERVE_CU_4__VGPR_MASK 0x0000000FL
+#define SPI_RESOURCE_RESERVE_CU_4__SGPR_MASK 0x000000F0L
+#define SPI_RESOURCE_RESERVE_CU_4__LDS_MASK 0x00000F00L
+#define SPI_RESOURCE_RESERVE_CU_4__WAVES_MASK 0x00007000L
+#define SPI_RESOURCE_RESERVE_CU_4__BARRIERS_MASK 0x00078000L
+//SPI_RESOURCE_RESERVE_CU_5
+#define SPI_RESOURCE_RESERVE_CU_5__VGPR__SHIFT 0x0
+#define SPI_RESOURCE_RESERVE_CU_5__SGPR__SHIFT 0x4
+#define SPI_RESOURCE_RESERVE_CU_5__LDS__SHIFT 0x8
+#define SPI_RESOURCE_RESERVE_CU_5__WAVES__SHIFT 0xc
+#define SPI_RESOURCE_RESERVE_CU_5__BARRIERS__SHIFT 0xf
+#define SPI_RESOURCE_RESERVE_CU_5__VGPR_MASK 0x0000000FL
+#define SPI_RESOURCE_RESERVE_CU_5__SGPR_MASK 0x000000F0L
+#define SPI_RESOURCE_RESERVE_CU_5__LDS_MASK 0x00000F00L
+#define SPI_RESOURCE_RESERVE_CU_5__WAVES_MASK 0x00007000L
+#define SPI_RESOURCE_RESERVE_CU_5__BARRIERS_MASK 0x00078000L
+//SPI_RESOURCE_RESERVE_CU_6
+#define SPI_RESOURCE_RESERVE_CU_6__VGPR__SHIFT 0x0
+#define SPI_RESOURCE_RESERVE_CU_6__SGPR__SHIFT 0x4
+#define SPI_RESOURCE_RESERVE_CU_6__LDS__SHIFT 0x8
+#define SPI_RESOURCE_RESERVE_CU_6__WAVES__SHIFT 0xc
+#define SPI_RESOURCE_RESERVE_CU_6__BARRIERS__SHIFT 0xf
+#define SPI_RESOURCE_RESERVE_CU_6__VGPR_MASK 0x0000000FL
+#define SPI_RESOURCE_RESERVE_CU_6__SGPR_MASK 0x000000F0L
+#define SPI_RESOURCE_RESERVE_CU_6__LDS_MASK 0x00000F00L
+#define SPI_RESOURCE_RESERVE_CU_6__WAVES_MASK 0x00007000L
+#define SPI_RESOURCE_RESERVE_CU_6__BARRIERS_MASK 0x00078000L
+//SPI_RESOURCE_RESERVE_CU_7
+#define SPI_RESOURCE_RESERVE_CU_7__VGPR__SHIFT 0x0
+#define SPI_RESOURCE_RESERVE_CU_7__SGPR__SHIFT 0x4
+#define SPI_RESOURCE_RESERVE_CU_7__LDS__SHIFT 0x8
+#define SPI_RESOURCE_RESERVE_CU_7__WAVES__SHIFT 0xc
+#define SPI_RESOURCE_RESERVE_CU_7__BARRIERS__SHIFT 0xf
+#define SPI_RESOURCE_RESERVE_CU_7__VGPR_MASK 0x0000000FL
+#define SPI_RESOURCE_RESERVE_CU_7__SGPR_MASK 0x000000F0L
+#define SPI_RESOURCE_RESERVE_CU_7__LDS_MASK 0x00000F00L
+#define SPI_RESOURCE_RESERVE_CU_7__WAVES_MASK 0x00007000L
+#define SPI_RESOURCE_RESERVE_CU_7__BARRIERS_MASK 0x00078000L
+//SPI_RESOURCE_RESERVE_CU_8
+#define SPI_RESOURCE_RESERVE_CU_8__VGPR__SHIFT 0x0
+#define SPI_RESOURCE_RESERVE_CU_8__SGPR__SHIFT 0x4
+#define SPI_RESOURCE_RESERVE_CU_8__LDS__SHIFT 0x8
+#define SPI_RESOURCE_RESERVE_CU_8__WAVES__SHIFT 0xc
+#define SPI_RESOURCE_RESERVE_CU_8__BARRIERS__SHIFT 0xf
+#define SPI_RESOURCE_RESERVE_CU_8__VGPR_MASK 0x0000000FL
+#define SPI_RESOURCE_RESERVE_CU_8__SGPR_MASK 0x000000F0L
+#define SPI_RESOURCE_RESERVE_CU_8__LDS_MASK 0x00000F00L
+#define SPI_RESOURCE_RESERVE_CU_8__WAVES_MASK 0x00007000L
+#define SPI_RESOURCE_RESERVE_CU_8__BARRIERS_MASK 0x00078000L
+//SPI_RESOURCE_RESERVE_CU_9
+#define SPI_RESOURCE_RESERVE_CU_9__VGPR__SHIFT 0x0
+#define SPI_RESOURCE_RESERVE_CU_9__SGPR__SHIFT 0x4
+#define SPI_RESOURCE_RESERVE_CU_9__LDS__SHIFT 0x8
+#define SPI_RESOURCE_RESERVE_CU_9__WAVES__SHIFT 0xc
+#define SPI_RESOURCE_RESERVE_CU_9__BARRIERS__SHIFT 0xf
+#define SPI_RESOURCE_RESERVE_CU_9__VGPR_MASK 0x0000000FL
+#define SPI_RESOURCE_RESERVE_CU_9__SGPR_MASK 0x000000F0L
+#define SPI_RESOURCE_RESERVE_CU_9__LDS_MASK 0x00000F00L
+#define SPI_RESOURCE_RESERVE_CU_9__WAVES_MASK 0x00007000L
+#define SPI_RESOURCE_RESERVE_CU_9__BARRIERS_MASK 0x00078000L
+//SPI_RESOURCE_RESERVE_EN_CU_0
+#define SPI_RESOURCE_RESERVE_EN_CU_0__EN__SHIFT 0x0
+#define SPI_RESOURCE_RESERVE_EN_CU_0__TYPE_MASK__SHIFT 0x1
+#define SPI_RESOURCE_RESERVE_EN_CU_0__QUEUE_MASK__SHIFT 0x10
+#define SPI_RESOURCE_RESERVE_EN_CU_0__RESERVE_SPACE_ONLY__SHIFT 0x18
+#define SPI_RESOURCE_RESERVE_EN_CU_0__EN_MASK 0x00000001L
+#define SPI_RESOURCE_RESERVE_EN_CU_0__TYPE_MASK_MASK 0x0000FFFEL
+#define SPI_RESOURCE_RESERVE_EN_CU_0__QUEUE_MASK_MASK 0x00FF0000L
+#define SPI_RESOURCE_RESERVE_EN_CU_0__RESERVE_SPACE_ONLY_MASK 0x01000000L
+//SPI_RESOURCE_RESERVE_EN_CU_1
+#define SPI_RESOURCE_RESERVE_EN_CU_1__EN__SHIFT 0x0
+#define SPI_RESOURCE_RESERVE_EN_CU_1__TYPE_MASK__SHIFT 0x1
+#define SPI_RESOURCE_RESERVE_EN_CU_1__QUEUE_MASK__SHIFT 0x10
+#define SPI_RESOURCE_RESERVE_EN_CU_1__RESERVE_SPACE_ONLY__SHIFT 0x18
+#define SPI_RESOURCE_RESERVE_EN_CU_1__EN_MASK 0x00000001L
+#define SPI_RESOURCE_RESERVE_EN_CU_1__TYPE_MASK_MASK 0x0000FFFEL
+#define SPI_RESOURCE_RESERVE_EN_CU_1__QUEUE_MASK_MASK 0x00FF0000L
+#define SPI_RESOURCE_RESERVE_EN_CU_1__RESERVE_SPACE_ONLY_MASK 0x01000000L
+//SPI_RESOURCE_RESERVE_EN_CU_2
+#define SPI_RESOURCE_RESERVE_EN_CU_2__EN__SHIFT 0x0
+#define SPI_RESOURCE_RESERVE_EN_CU_2__TYPE_MASK__SHIFT 0x1
+#define SPI_RESOURCE_RESERVE_EN_CU_2__QUEUE_MASK__SHIFT 0x10
+#define SPI_RESOURCE_RESERVE_EN_CU_2__RESERVE_SPACE_ONLY__SHIFT 0x18
+#define SPI_RESOURCE_RESERVE_EN_CU_2__EN_MASK 0x00000001L
+#define SPI_RESOURCE_RESERVE_EN_CU_2__TYPE_MASK_MASK 0x0000FFFEL
+#define SPI_RESOURCE_RESERVE_EN_CU_2__QUEUE_MASK_MASK 0x00FF0000L
+#define SPI_RESOURCE_RESERVE_EN_CU_2__RESERVE_SPACE_ONLY_MASK 0x01000000L
+//SPI_RESOURCE_RESERVE_EN_CU_3
+#define SPI_RESOURCE_RESERVE_EN_CU_3__EN__SHIFT 0x0
+#define SPI_RESOURCE_RESERVE_EN_CU_3__TYPE_MASK__SHIFT 0x1
+#define SPI_RESOURCE_RESERVE_EN_CU_3__QUEUE_MASK__SHIFT 0x10
+#define SPI_RESOURCE_RESERVE_EN_CU_3__RESERVE_SPACE_ONLY__SHIFT 0x18
+#define SPI_RESOURCE_RESERVE_EN_CU_3__EN_MASK 0x00000001L
+#define SPI_RESOURCE_RESERVE_EN_CU_3__TYPE_MASK_MASK 0x0000FFFEL
+#define SPI_RESOURCE_RESERVE_EN_CU_3__QUEUE_MASK_MASK 0x00FF0000L
+#define SPI_RESOURCE_RESERVE_EN_CU_3__RESERVE_SPACE_ONLY_MASK 0x01000000L
+//SPI_RESOURCE_RESERVE_EN_CU_4
+#define SPI_RESOURCE_RESERVE_EN_CU_4__EN__SHIFT 0x0
+#define SPI_RESOURCE_RESERVE_EN_CU_4__TYPE_MASK__SHIFT 0x1
+#define SPI_RESOURCE_RESERVE_EN_CU_4__QUEUE_MASK__SHIFT 0x10
+#define SPI_RESOURCE_RESERVE_EN_CU_4__RESERVE_SPACE_ONLY__SHIFT 0x18
+#define SPI_RESOURCE_RESERVE_EN_CU_4__EN_MASK 0x00000001L
+#define SPI_RESOURCE_RESERVE_EN_CU_4__TYPE_MASK_MASK 0x0000FFFEL
+#define SPI_RESOURCE_RESERVE_EN_CU_4__QUEUE_MASK_MASK 0x00FF0000L
+#define SPI_RESOURCE_RESERVE_EN_CU_4__RESERVE_SPACE_ONLY_MASK 0x01000000L
+//SPI_RESOURCE_RESERVE_EN_CU_5
+#define SPI_RESOURCE_RESERVE_EN_CU_5__EN__SHIFT 0x0
+#define SPI_RESOURCE_RESERVE_EN_CU_5__TYPE_MASK__SHIFT 0x1
+#define SPI_RESOURCE_RESERVE_EN_CU_5__QUEUE_MASK__SHIFT 0x10
+#define SPI_RESOURCE_RESERVE_EN_CU_5__RESERVE_SPACE_ONLY__SHIFT 0x18
+#define SPI_RESOURCE_RESERVE_EN_CU_5__EN_MASK 0x00000001L
+#define SPI_RESOURCE_RESERVE_EN_CU_5__TYPE_MASK_MASK 0x0000FFFEL
+#define SPI_RESOURCE_RESERVE_EN_CU_5__QUEUE_MASK_MASK 0x00FF0000L
+#define SPI_RESOURCE_RESERVE_EN_CU_5__RESERVE_SPACE_ONLY_MASK 0x01000000L
+//SPI_RESOURCE_RESERVE_EN_CU_6
+#define SPI_RESOURCE_RESERVE_EN_CU_6__EN__SHIFT 0x0
+#define SPI_RESOURCE_RESERVE_EN_CU_6__TYPE_MASK__SHIFT 0x1
+#define SPI_RESOURCE_RESERVE_EN_CU_6__QUEUE_MASK__SHIFT 0x10
+#define SPI_RESOURCE_RESERVE_EN_CU_6__RESERVE_SPACE_ONLY__SHIFT 0x18
+#define SPI_RESOURCE_RESERVE_EN_CU_6__EN_MASK 0x00000001L
+#define SPI_RESOURCE_RESERVE_EN_CU_6__TYPE_MASK_MASK 0x0000FFFEL
+#define SPI_RESOURCE_RESERVE_EN_CU_6__QUEUE_MASK_MASK 0x00FF0000L
+#define SPI_RESOURCE_RESERVE_EN_CU_6__RESERVE_SPACE_ONLY_MASK 0x01000000L
+//SPI_RESOURCE_RESERVE_EN_CU_7
+#define SPI_RESOURCE_RESERVE_EN_CU_7__EN__SHIFT 0x0
+#define SPI_RESOURCE_RESERVE_EN_CU_7__TYPE_MASK__SHIFT 0x1
+#define SPI_RESOURCE_RESERVE_EN_CU_7__QUEUE_MASK__SHIFT 0x10
+#define SPI_RESOURCE_RESERVE_EN_CU_7__RESERVE_SPACE_ONLY__SHIFT 0x18
+#define SPI_RESOURCE_RESERVE_EN_CU_7__EN_MASK 0x00000001L
+#define SPI_RESOURCE_RESERVE_EN_CU_7__TYPE_MASK_MASK 0x0000FFFEL
+#define SPI_RESOURCE_RESERVE_EN_CU_7__QUEUE_MASK_MASK 0x00FF0000L
+#define SPI_RESOURCE_RESERVE_EN_CU_7__RESERVE_SPACE_ONLY_MASK 0x01000000L
+//SPI_RESOURCE_RESERVE_EN_CU_8
+#define SPI_RESOURCE_RESERVE_EN_CU_8__EN__SHIFT 0x0
+#define SPI_RESOURCE_RESERVE_EN_CU_8__TYPE_MASK__SHIFT 0x1
+#define SPI_RESOURCE_RESERVE_EN_CU_8__QUEUE_MASK__SHIFT 0x10
+#define SPI_RESOURCE_RESERVE_EN_CU_8__RESERVE_SPACE_ONLY__SHIFT 0x18
+#define SPI_RESOURCE_RESERVE_EN_CU_8__EN_MASK 0x00000001L
+#define SPI_RESOURCE_RESERVE_EN_CU_8__TYPE_MASK_MASK 0x0000FFFEL
+#define SPI_RESOURCE_RESERVE_EN_CU_8__QUEUE_MASK_MASK 0x00FF0000L
+#define SPI_RESOURCE_RESERVE_EN_CU_8__RESERVE_SPACE_ONLY_MASK 0x01000000L
+//SPI_RESOURCE_RESERVE_EN_CU_9
+#define SPI_RESOURCE_RESERVE_EN_CU_9__EN__SHIFT 0x0
+#define SPI_RESOURCE_RESERVE_EN_CU_9__TYPE_MASK__SHIFT 0x1
+#define SPI_RESOURCE_RESERVE_EN_CU_9__QUEUE_MASK__SHIFT 0x10
+#define SPI_RESOURCE_RESERVE_EN_CU_9__RESERVE_SPACE_ONLY__SHIFT 0x18
+#define SPI_RESOURCE_RESERVE_EN_CU_9__EN_MASK 0x00000001L
+#define SPI_RESOURCE_RESERVE_EN_CU_9__TYPE_MASK_MASK 0x0000FFFEL
+#define SPI_RESOURCE_RESERVE_EN_CU_9__QUEUE_MASK_MASK 0x00FF0000L
+#define SPI_RESOURCE_RESERVE_EN_CU_9__RESERVE_SPACE_ONLY_MASK 0x01000000L
+//SPI_RESOURCE_RESERVE_CU_10
+#define SPI_RESOURCE_RESERVE_CU_10__VGPR__SHIFT 0x0
+#define SPI_RESOURCE_RESERVE_CU_10__SGPR__SHIFT 0x4
+#define SPI_RESOURCE_RESERVE_CU_10__LDS__SHIFT 0x8
+#define SPI_RESOURCE_RESERVE_CU_10__WAVES__SHIFT 0xc
+#define SPI_RESOURCE_RESERVE_CU_10__BARRIERS__SHIFT 0xf
+#define SPI_RESOURCE_RESERVE_CU_10__VGPR_MASK 0x0000000FL
+#define SPI_RESOURCE_RESERVE_CU_10__SGPR_MASK 0x000000F0L
+#define SPI_RESOURCE_RESERVE_CU_10__LDS_MASK 0x00000F00L
+#define SPI_RESOURCE_RESERVE_CU_10__WAVES_MASK 0x00007000L
+#define SPI_RESOURCE_RESERVE_CU_10__BARRIERS_MASK 0x00078000L
+//SPI_RESOURCE_RESERVE_CU_11
+#define SPI_RESOURCE_RESERVE_CU_11__VGPR__SHIFT 0x0
+#define SPI_RESOURCE_RESERVE_CU_11__SGPR__SHIFT 0x4
+#define SPI_RESOURCE_RESERVE_CU_11__LDS__SHIFT 0x8
+#define SPI_RESOURCE_RESERVE_CU_11__WAVES__SHIFT 0xc
+#define SPI_RESOURCE_RESERVE_CU_11__BARRIERS__SHIFT 0xf
+#define SPI_RESOURCE_RESERVE_CU_11__VGPR_MASK 0x0000000FL
+#define SPI_RESOURCE_RESERVE_CU_11__SGPR_MASK 0x000000F0L
+#define SPI_RESOURCE_RESERVE_CU_11__LDS_MASK 0x00000F00L
+#define SPI_RESOURCE_RESERVE_CU_11__WAVES_MASK 0x00007000L
+#define SPI_RESOURCE_RESERVE_CU_11__BARRIERS_MASK 0x00078000L
+//SPI_RESOURCE_RESERVE_EN_CU_10
+#define SPI_RESOURCE_RESERVE_EN_CU_10__EN__SHIFT 0x0
+#define SPI_RESOURCE_RESERVE_EN_CU_10__TYPE_MASK__SHIFT 0x1
+#define SPI_RESOURCE_RESERVE_EN_CU_10__QUEUE_MASK__SHIFT 0x10
+#define SPI_RESOURCE_RESERVE_EN_CU_10__RESERVE_SPACE_ONLY__SHIFT 0x18
+#define SPI_RESOURCE_RESERVE_EN_CU_10__EN_MASK 0x00000001L
+#define SPI_RESOURCE_RESERVE_EN_CU_10__TYPE_MASK_MASK 0x0000FFFEL
+#define SPI_RESOURCE_RESERVE_EN_CU_10__QUEUE_MASK_MASK 0x00FF0000L
+#define SPI_RESOURCE_RESERVE_EN_CU_10__RESERVE_SPACE_ONLY_MASK 0x01000000L
+//SPI_RESOURCE_RESERVE_EN_CU_11
+#define SPI_RESOURCE_RESERVE_EN_CU_11__EN__SHIFT 0x0
+#define SPI_RESOURCE_RESERVE_EN_CU_11__TYPE_MASK__SHIFT 0x1
+#define SPI_RESOURCE_RESERVE_EN_CU_11__QUEUE_MASK__SHIFT 0x10
+#define SPI_RESOURCE_RESERVE_EN_CU_11__RESERVE_SPACE_ONLY__SHIFT 0x18
+#define SPI_RESOURCE_RESERVE_EN_CU_11__EN_MASK 0x00000001L
+#define SPI_RESOURCE_RESERVE_EN_CU_11__TYPE_MASK_MASK 0x0000FFFEL
+#define SPI_RESOURCE_RESERVE_EN_CU_11__QUEUE_MASK_MASK 0x00FF0000L
+#define SPI_RESOURCE_RESERVE_EN_CU_11__RESERVE_SPACE_ONLY_MASK 0x01000000L
+//SPI_RESOURCE_RESERVE_CU_12
+#define SPI_RESOURCE_RESERVE_CU_12__VGPR__SHIFT 0x0
+#define SPI_RESOURCE_RESERVE_CU_12__SGPR__SHIFT 0x4
+#define SPI_RESOURCE_RESERVE_CU_12__LDS__SHIFT 0x8
+#define SPI_RESOURCE_RESERVE_CU_12__WAVES__SHIFT 0xc
+#define SPI_RESOURCE_RESERVE_CU_12__BARRIERS__SHIFT 0xf
+#define SPI_RESOURCE_RESERVE_CU_12__VGPR_MASK 0x0000000FL
+#define SPI_RESOURCE_RESERVE_CU_12__SGPR_MASK 0x000000F0L
+#define SPI_RESOURCE_RESERVE_CU_12__LDS_MASK 0x00000F00L
+#define SPI_RESOURCE_RESERVE_CU_12__WAVES_MASK 0x00007000L
+#define SPI_RESOURCE_RESERVE_CU_12__BARRIERS_MASK 0x00078000L
+//SPI_RESOURCE_RESERVE_CU_13
+#define SPI_RESOURCE_RESERVE_CU_13__VGPR__SHIFT 0x0
+#define SPI_RESOURCE_RESERVE_CU_13__SGPR__SHIFT 0x4
+#define SPI_RESOURCE_RESERVE_CU_13__LDS__SHIFT 0x8
+#define SPI_RESOURCE_RESERVE_CU_13__WAVES__SHIFT 0xc
+#define SPI_RESOURCE_RESERVE_CU_13__BARRIERS__SHIFT 0xf
+#define SPI_RESOURCE_RESERVE_CU_13__VGPR_MASK 0x0000000FL
+#define SPI_RESOURCE_RESERVE_CU_13__SGPR_MASK 0x000000F0L
+#define SPI_RESOURCE_RESERVE_CU_13__LDS_MASK 0x00000F00L
+#define SPI_RESOURCE_RESERVE_CU_13__WAVES_MASK 0x00007000L
+#define SPI_RESOURCE_RESERVE_CU_13__BARRIERS_MASK 0x00078000L
+//SPI_RESOURCE_RESERVE_CU_14
+#define SPI_RESOURCE_RESERVE_CU_14__VGPR__SHIFT 0x0
+#define SPI_RESOURCE_RESERVE_CU_14__SGPR__SHIFT 0x4
+#define SPI_RESOURCE_RESERVE_CU_14__LDS__SHIFT 0x8
+#define SPI_RESOURCE_RESERVE_CU_14__WAVES__SHIFT 0xc
+#define SPI_RESOURCE_RESERVE_CU_14__BARRIERS__SHIFT 0xf
+#define SPI_RESOURCE_RESERVE_CU_14__VGPR_MASK 0x0000000FL
+#define SPI_RESOURCE_RESERVE_CU_14__SGPR_MASK 0x000000F0L
+#define SPI_RESOURCE_RESERVE_CU_14__LDS_MASK 0x00000F00L
+#define SPI_RESOURCE_RESERVE_CU_14__WAVES_MASK 0x00007000L
+#define SPI_RESOURCE_RESERVE_CU_14__BARRIERS_MASK 0x00078000L
+//SPI_RESOURCE_RESERVE_CU_15
+#define SPI_RESOURCE_RESERVE_CU_15__VGPR__SHIFT 0x0
+#define SPI_RESOURCE_RESERVE_CU_15__SGPR__SHIFT 0x4
+#define SPI_RESOURCE_RESERVE_CU_15__LDS__SHIFT 0x8
+#define SPI_RESOURCE_RESERVE_CU_15__WAVES__SHIFT 0xc
+#define SPI_RESOURCE_RESERVE_CU_15__BARRIERS__SHIFT 0xf
+#define SPI_RESOURCE_RESERVE_CU_15__VGPR_MASK 0x0000000FL
+#define SPI_RESOURCE_RESERVE_CU_15__SGPR_MASK 0x000000F0L
+#define SPI_RESOURCE_RESERVE_CU_15__LDS_MASK 0x00000F00L
+#define SPI_RESOURCE_RESERVE_CU_15__WAVES_MASK 0x00007000L
+#define SPI_RESOURCE_RESERVE_CU_15__BARRIERS_MASK 0x00078000L
+//SPI_RESOURCE_RESERVE_EN_CU_12
+#define SPI_RESOURCE_RESERVE_EN_CU_12__EN__SHIFT 0x0
+#define SPI_RESOURCE_RESERVE_EN_CU_12__TYPE_MASK__SHIFT 0x1
+#define SPI_RESOURCE_RESERVE_EN_CU_12__QUEUE_MASK__SHIFT 0x10
+#define SPI_RESOURCE_RESERVE_EN_CU_12__RESERVE_SPACE_ONLY__SHIFT 0x18
+#define SPI_RESOURCE_RESERVE_EN_CU_12__EN_MASK 0x00000001L
+#define SPI_RESOURCE_RESERVE_EN_CU_12__TYPE_MASK_MASK 0x0000FFFEL
+#define SPI_RESOURCE_RESERVE_EN_CU_12__QUEUE_MASK_MASK 0x00FF0000L
+#define SPI_RESOURCE_RESERVE_EN_CU_12__RESERVE_SPACE_ONLY_MASK 0x01000000L
+//SPI_RESOURCE_RESERVE_EN_CU_13
+#define SPI_RESOURCE_RESERVE_EN_CU_13__EN__SHIFT 0x0
+#define SPI_RESOURCE_RESERVE_EN_CU_13__TYPE_MASK__SHIFT 0x1
+#define SPI_RESOURCE_RESERVE_EN_CU_13__QUEUE_MASK__SHIFT 0x10
+#define SPI_RESOURCE_RESERVE_EN_CU_13__RESERVE_SPACE_ONLY__SHIFT 0x18
+#define SPI_RESOURCE_RESERVE_EN_CU_13__EN_MASK 0x00000001L
+#define SPI_RESOURCE_RESERVE_EN_CU_13__TYPE_MASK_MASK 0x0000FFFEL
+#define SPI_RESOURCE_RESERVE_EN_CU_13__QUEUE_MASK_MASK 0x00FF0000L
+#define SPI_RESOURCE_RESERVE_EN_CU_13__RESERVE_SPACE_ONLY_MASK 0x01000000L
+//SPI_RESOURCE_RESERVE_EN_CU_14
+#define SPI_RESOURCE_RESERVE_EN_CU_14__EN__SHIFT 0x0
+#define SPI_RESOURCE_RESERVE_EN_CU_14__TYPE_MASK__SHIFT 0x1
+#define SPI_RESOURCE_RESERVE_EN_CU_14__QUEUE_MASK__SHIFT 0x10
+#define SPI_RESOURCE_RESERVE_EN_CU_14__RESERVE_SPACE_ONLY__SHIFT 0x18
+#define SPI_RESOURCE_RESERVE_EN_CU_14__EN_MASK 0x00000001L
+#define SPI_RESOURCE_RESERVE_EN_CU_14__TYPE_MASK_MASK 0x0000FFFEL
+#define SPI_RESOURCE_RESERVE_EN_CU_14__QUEUE_MASK_MASK 0x00FF0000L
+#define SPI_RESOURCE_RESERVE_EN_CU_14__RESERVE_SPACE_ONLY_MASK 0x01000000L
+//SPI_RESOURCE_RESERVE_EN_CU_15
+#define SPI_RESOURCE_RESERVE_EN_CU_15__EN__SHIFT 0x0
+#define SPI_RESOURCE_RESERVE_EN_CU_15__TYPE_MASK__SHIFT 0x1
+#define SPI_RESOURCE_RESERVE_EN_CU_15__QUEUE_MASK__SHIFT 0x10
+#define SPI_RESOURCE_RESERVE_EN_CU_15__RESERVE_SPACE_ONLY__SHIFT 0x18
+#define SPI_RESOURCE_RESERVE_EN_CU_15__EN_MASK 0x00000001L
+#define SPI_RESOURCE_RESERVE_EN_CU_15__TYPE_MASK_MASK 0x0000FFFEL
+#define SPI_RESOURCE_RESERVE_EN_CU_15__QUEUE_MASK_MASK 0x00FF0000L
+#define SPI_RESOURCE_RESERVE_EN_CU_15__RESERVE_SPACE_ONLY_MASK 0x01000000L
+//SPI_COMPUTE_WF_CTX_SAVE
+#define SPI_COMPUTE_WF_CTX_SAVE__INITIATE__SHIFT 0x0
+#define SPI_COMPUTE_WF_CTX_SAVE__GDS_INTERRUPT_EN__SHIFT 0x1
+#define SPI_COMPUTE_WF_CTX_SAVE__DONE_INTERRUPT_EN__SHIFT 0x2
+#define SPI_COMPUTE_WF_CTX_SAVE__GDS_REQ_BUSY__SHIFT 0x1e
+#define SPI_COMPUTE_WF_CTX_SAVE__SAVE_BUSY__SHIFT 0x1f
+#define SPI_COMPUTE_WF_CTX_SAVE__INITIATE_MASK 0x00000001L
+#define SPI_COMPUTE_WF_CTX_SAVE__GDS_INTERRUPT_EN_MASK 0x00000002L
+#define SPI_COMPUTE_WF_CTX_SAVE__DONE_INTERRUPT_EN_MASK 0x00000004L
+#define SPI_COMPUTE_WF_CTX_SAVE__GDS_REQ_BUSY_MASK 0x40000000L
+#define SPI_COMPUTE_WF_CTX_SAVE__SAVE_BUSY_MASK 0x80000000L
+//SPI_ARB_CNTL_0
+#define SPI_ARB_CNTL_0__EXP_ARB_COL_WT__SHIFT 0x0
+#define SPI_ARB_CNTL_0__EXP_ARB_POS_WT__SHIFT 0x4
+#define SPI_ARB_CNTL_0__EXP_ARB_GDS_WT__SHIFT 0x8
+#define SPI_ARB_CNTL_0__EXP_ARB_COL_WT_MASK 0x0000000FL
+#define SPI_ARB_CNTL_0__EXP_ARB_POS_WT_MASK 0x000000F0L
+#define SPI_ARB_CNTL_0__EXP_ARB_GDS_WT_MASK 0x00000F00L
+
+
+// addressBlock: xcd0_gc_cpphqddec
+//CP_HQD_GFX_CONTROL
+#define CP_HQD_GFX_CONTROL__MESSAGE__SHIFT 0x0
+#define CP_HQD_GFX_CONTROL__MISC__SHIFT 0x4
+#define CP_HQD_GFX_CONTROL__DB_UPDATED_MSG_EN__SHIFT 0xf
+#define CP_HQD_GFX_CONTROL__MESSAGE_MASK 0x0000000FL
+#define CP_HQD_GFX_CONTROL__MISC_MASK 0x00007FF0L
+#define CP_HQD_GFX_CONTROL__DB_UPDATED_MSG_EN_MASK 0x00008000L
+//CP_HQD_GFX_STATUS
+#define CP_HQD_GFX_STATUS__STATUS__SHIFT 0x0
+#define CP_HQD_GFX_STATUS__STATUS_MASK 0x0000FFFFL
+//CP_HPD_ROQ_OFFSETS
+#define CP_HPD_ROQ_OFFSETS__IQ_OFFSET__SHIFT 0x0
+#define CP_HPD_ROQ_OFFSETS__PQ_OFFSET__SHIFT 0x8
+#define CP_HPD_ROQ_OFFSETS__IB_OFFSET__SHIFT 0x10
+#define CP_HPD_ROQ_OFFSETS__IQ_OFFSET_MASK 0x00000007L
+#define CP_HPD_ROQ_OFFSETS__PQ_OFFSET_MASK 0x00003F00L
+#define CP_HPD_ROQ_OFFSETS__IB_OFFSET_MASK 0x003F0000L
+//CP_HPD_STATUS0
+#define CP_HPD_STATUS0__QUEUE_STATE__SHIFT 0x0
+#define CP_HPD_STATUS0__MAPPED_QUEUE__SHIFT 0x5
+#define CP_HPD_STATUS0__QUEUE_AVAILABLE__SHIFT 0x8
+#define CP_HPD_STATUS0__FETCHING_MQD__SHIFT 0x10
+#define CP_HPD_STATUS0__PEND_TXFER_SIZE_PQIB__SHIFT 0x11
+#define CP_HPD_STATUS0__PEND_TXFER_SIZE_IQ__SHIFT 0x12
+#define CP_HPD_STATUS0__FORCE_QUEUE_STATE__SHIFT 0x14
+#define CP_HPD_STATUS0__ENABLE_OFFLOAD_CHECK__SHIFT 0x1d
+#define CP_HPD_STATUS0__FORCE_QUEUE__SHIFT 0x1f
+#define CP_HPD_STATUS0__QUEUE_STATE_MASK 0x0000001FL
+#define CP_HPD_STATUS0__MAPPED_QUEUE_MASK 0x000000E0L
+#define CP_HPD_STATUS0__QUEUE_AVAILABLE_MASK 0x0000FF00L
+#define CP_HPD_STATUS0__FETCHING_MQD_MASK 0x00010000L
+#define CP_HPD_STATUS0__PEND_TXFER_SIZE_PQIB_MASK 0x00020000L
+#define CP_HPD_STATUS0__PEND_TXFER_SIZE_IQ_MASK 0x00040000L
+#define CP_HPD_STATUS0__FORCE_QUEUE_STATE_MASK 0x01F00000L
+#define CP_HPD_STATUS0__ENABLE_OFFLOAD_CHECK_MASK 0x20000000L
+#define CP_HPD_STATUS0__FORCE_QUEUE_MASK 0x80000000L
+//CP_HPD_UTCL1_CNTL
+#define CP_HPD_UTCL1_CNTL__SELECT__SHIFT 0x0
+#define CP_HPD_UTCL1_CNTL__SELECT_MASK 0x0000000FL
+//CP_HPD_UTCL1_ERROR
+#define CP_HPD_UTCL1_ERROR__ADDR_HI__SHIFT 0x0
+#define CP_HPD_UTCL1_ERROR__TYPE__SHIFT 0x10
+#define CP_HPD_UTCL1_ERROR__VMID__SHIFT 0x14
+#define CP_HPD_UTCL1_ERROR__ADDR_HI_MASK 0x0000FFFFL
+#define CP_HPD_UTCL1_ERROR__TYPE_MASK 0x00010000L
+#define CP_HPD_UTCL1_ERROR__VMID_MASK 0x00F00000L
+//CP_HPD_UTCL1_ERROR_ADDR
+#define CP_HPD_UTCL1_ERROR_ADDR__ADDR__SHIFT 0xc
+#define CP_HPD_UTCL1_ERROR_ADDR__ADDR_MASK 0xFFFFF000L
+//CP_MQD_BASE_ADDR
+#define CP_MQD_BASE_ADDR__BASE_ADDR__SHIFT 0x2
+#define CP_MQD_BASE_ADDR__BASE_ADDR_MASK 0xFFFFFFFCL
+//CP_MQD_BASE_ADDR_HI
+#define CP_MQD_BASE_ADDR_HI__BASE_ADDR_HI__SHIFT 0x0
+#define CP_MQD_BASE_ADDR_HI__BASE_ADDR_HI_MASK 0x0000FFFFL
+//CP_HQD_ACTIVE
+#define CP_HQD_ACTIVE__ACTIVE__SHIFT 0x0
+#define CP_HQD_ACTIVE__BUSY_GATE__SHIFT 0x1
+#define CP_HQD_ACTIVE__ACTIVE_MASK 0x00000001L
+#define CP_HQD_ACTIVE__BUSY_GATE_MASK 0x00000002L
+//CP_HQD_VMID
+#define CP_HQD_VMID__VMID__SHIFT 0x0
+#define CP_HQD_VMID__IB_VMID__SHIFT 0x8
+#define CP_HQD_VMID__VQID__SHIFT 0x10
+#define CP_HQD_VMID__VMID_MASK 0x0000000FL
+#define CP_HQD_VMID__IB_VMID_MASK 0x00000F00L
+#define CP_HQD_VMID__VQID_MASK 0x03FF0000L
+//CP_HQD_PERSISTENT_STATE
+#define CP_HQD_PERSISTENT_STATE__PRELOAD_REQ__SHIFT 0x0
+#define CP_HQD_PERSISTENT_STATE__PRELOAD_SIZE__SHIFT 0x8
+#define CP_HQD_PERSISTENT_STATE__WPP_SWITCH_QOS_EN__SHIFT 0x15
+#define CP_HQD_PERSISTENT_STATE__IQ_SWITCH_QOS_EN__SHIFT 0x16
+#define CP_HQD_PERSISTENT_STATE__IB_SWITCH_QOS_EN__SHIFT 0x17
+#define CP_HQD_PERSISTENT_STATE__EOP_SWITCH_QOS_EN__SHIFT 0x18
+#define CP_HQD_PERSISTENT_STATE__PQ_SWITCH_QOS_EN__SHIFT 0x19
+#define CP_HQD_PERSISTENT_STATE__TC_OFFLOAD_QOS_EN__SHIFT 0x1a
+#define CP_HQD_PERSISTENT_STATE__CACHE_FULL_PACKET_EN__SHIFT 0x1b
+#define CP_HQD_PERSISTENT_STATE__RESTORE_ACTIVE__SHIFT 0x1c
+#define CP_HQD_PERSISTENT_STATE__RELAUNCH_WAVES__SHIFT 0x1d
+#define CP_HQD_PERSISTENT_STATE__QSWITCH_MODE__SHIFT 0x1e
+#define CP_HQD_PERSISTENT_STATE__DISP_ACTIVE__SHIFT 0x1f
+#define CP_HQD_PERSISTENT_STATE__PRELOAD_REQ_MASK 0x00000001L
+#define CP_HQD_PERSISTENT_STATE__PRELOAD_SIZE_MASK 0x0003FF00L
+#define CP_HQD_PERSISTENT_STATE__WPP_SWITCH_QOS_EN_MASK 0x00200000L
+#define CP_HQD_PERSISTENT_STATE__IQ_SWITCH_QOS_EN_MASK 0x00400000L
+#define CP_HQD_PERSISTENT_STATE__IB_SWITCH_QOS_EN_MASK 0x00800000L
+#define CP_HQD_PERSISTENT_STATE__EOP_SWITCH_QOS_EN_MASK 0x01000000L
+#define CP_HQD_PERSISTENT_STATE__PQ_SWITCH_QOS_EN_MASK 0x02000000L
+#define CP_HQD_PERSISTENT_STATE__TC_OFFLOAD_QOS_EN_MASK 0x04000000L
+#define CP_HQD_PERSISTENT_STATE__CACHE_FULL_PACKET_EN_MASK 0x08000000L
+#define CP_HQD_PERSISTENT_STATE__RESTORE_ACTIVE_MASK 0x10000000L
+#define CP_HQD_PERSISTENT_STATE__RELAUNCH_WAVES_MASK 0x20000000L
+#define CP_HQD_PERSISTENT_STATE__QSWITCH_MODE_MASK 0x40000000L
+#define CP_HQD_PERSISTENT_STATE__DISP_ACTIVE_MASK 0x80000000L
+//CP_HQD_PIPE_PRIORITY
+#define CP_HQD_PIPE_PRIORITY__PIPE_PRIORITY__SHIFT 0x0
+#define CP_HQD_PIPE_PRIORITY__PIPE_PRIORITY_MASK 0x00000003L
+//CP_HQD_QUEUE_PRIORITY
+#define CP_HQD_QUEUE_PRIORITY__PRIORITY_LEVEL__SHIFT 0x0
+#define CP_HQD_QUEUE_PRIORITY__PRIORITY_LEVEL_MASK 0x0000000FL
+//CP_HQD_QUANTUM
+#define CP_HQD_QUANTUM__QUANTUM_EN__SHIFT 0x0
+#define CP_HQD_QUANTUM__QUANTUM_SCALE__SHIFT 0x4
+#define CP_HQD_QUANTUM__QUANTUM_DURATION__SHIFT 0x8
+#define CP_HQD_QUANTUM__QUANTUM_ACTIVE__SHIFT 0x1f
+#define CP_HQD_QUANTUM__QUANTUM_EN_MASK 0x00000001L
+#define CP_HQD_QUANTUM__QUANTUM_SCALE_MASK 0x00000010L
+#define CP_HQD_QUANTUM__QUANTUM_DURATION_MASK 0x00003F00L
+#define CP_HQD_QUANTUM__QUANTUM_ACTIVE_MASK 0x80000000L
+//CP_HQD_PQ_BASE
+#define CP_HQD_PQ_BASE__ADDR__SHIFT 0x0
+#define CP_HQD_PQ_BASE__ADDR_MASK 0xFFFFFFFFL
+//CP_HQD_PQ_BASE_HI
+#define CP_HQD_PQ_BASE_HI__ADDR_HI__SHIFT 0x0
+#define CP_HQD_PQ_BASE_HI__ADDR_HI_MASK 0x000000FFL
+//CP_HQD_PQ_RPTR
+#define CP_HQD_PQ_RPTR__CONSUMED_OFFSET__SHIFT 0x0
+#define CP_HQD_PQ_RPTR__CONSUMED_OFFSET_MASK 0xFFFFFFFFL
+//CP_HQD_PQ_RPTR_REPORT_ADDR
+#define CP_HQD_PQ_RPTR_REPORT_ADDR__RPTR_REPORT_ADDR__SHIFT 0x2
+#define CP_HQD_PQ_RPTR_REPORT_ADDR__RPTR_REPORT_ADDR_MASK 0xFFFFFFFCL
+//CP_HQD_PQ_RPTR_REPORT_ADDR_HI
+#define CP_HQD_PQ_RPTR_REPORT_ADDR_HI__RPTR_REPORT_ADDR_HI__SHIFT 0x0
+#define CP_HQD_PQ_RPTR_REPORT_ADDR_HI__RPTR_REPORT_ADDR_HI_MASK 0x0000FFFFL
+//CP_HQD_PQ_WPTR_POLL_ADDR
+#define CP_HQD_PQ_WPTR_POLL_ADDR__WPTR_ADDR__SHIFT 0x3
+#define CP_HQD_PQ_WPTR_POLL_ADDR__WPTR_ADDR_MASK 0xFFFFFFF8L
+//CP_HQD_PQ_WPTR_POLL_ADDR_HI
+#define CP_HQD_PQ_WPTR_POLL_ADDR_HI__WPTR_ADDR_HI__SHIFT 0x0
+#define CP_HQD_PQ_WPTR_POLL_ADDR_HI__WPTR_ADDR_HI_MASK 0x0000FFFFL
+//CP_HQD_PQ_DOORBELL_CONTROL
+#define CP_HQD_PQ_DOORBELL_CONTROL__DOORBELL_MODE__SHIFT 0x0
+#define CP_HQD_PQ_DOORBELL_CONTROL__DOORBELL_BIF_DROP__SHIFT 0x1
+#define CP_HQD_PQ_DOORBELL_CONTROL__DOORBELL_OFFSET__SHIFT 0x2
+#define CP_HQD_PQ_DOORBELL_CONTROL__DOORBELL_SOURCE__SHIFT 0x1c
+#define CP_HQD_PQ_DOORBELL_CONTROL__DOORBELL_SCHD_HIT__SHIFT 0x1d
+#define CP_HQD_PQ_DOORBELL_CONTROL__DOORBELL_EN__SHIFT 0x1e
+#define CP_HQD_PQ_DOORBELL_CONTROL__DOORBELL_HIT__SHIFT 0x1f
+#define CP_HQD_PQ_DOORBELL_CONTROL__DOORBELL_MODE_MASK 0x00000001L
+#define CP_HQD_PQ_DOORBELL_CONTROL__DOORBELL_BIF_DROP_MASK 0x00000002L
+#define CP_HQD_PQ_DOORBELL_CONTROL__DOORBELL_OFFSET_MASK 0x0FFFFFFCL
+#define CP_HQD_PQ_DOORBELL_CONTROL__DOORBELL_SOURCE_MASK 0x10000000L
+#define CP_HQD_PQ_DOORBELL_CONTROL__DOORBELL_SCHD_HIT_MASK 0x20000000L
+#define CP_HQD_PQ_DOORBELL_CONTROL__DOORBELL_EN_MASK 0x40000000L
+#define CP_HQD_PQ_DOORBELL_CONTROL__DOORBELL_HIT_MASK 0x80000000L
+//CP_HQD_PQ_CONTROL
+#define CP_HQD_PQ_CONTROL__QUEUE_SIZE__SHIFT 0x0
+#define CP_HQD_PQ_CONTROL__WPTR_CARRY__SHIFT 0x6
+#define CP_HQD_PQ_CONTROL__RPTR_CARRY__SHIFT 0x7
+#define CP_HQD_PQ_CONTROL__RPTR_BLOCK_SIZE__SHIFT 0x8
+#define CP_HQD_PQ_CONTROL__QUEUE_FULL_EN__SHIFT 0xe
+#define CP_HQD_PQ_CONTROL__PQ_EMPTY__SHIFT 0xf
+#define CP_HQD_PQ_CONTROL__WPP_CLAMP_EN__SHIFT 0x10
+#define CP_HQD_PQ_CONTROL__ENDIAN_SWAP__SHIFT 0x11
+#define CP_HQD_PQ_CONTROL__MIN_AVAIL_SIZE__SHIFT 0x14
+#define CP_HQD_PQ_CONTROL__TMZ__SHIFT 0x16
+#define CP_HQD_PQ_CONTROL__EXE_DISABLE__SHIFT 0x17
+#define CP_HQD_PQ_CONTROL__CACHE_POLICY__SHIFT 0x18
+#define CP_HQD_PQ_CONTROL__SLOT_BASED_WPTR__SHIFT 0x19
+#define CP_HQD_PQ_CONTROL__NO_UPDATE_RPTR__SHIFT 0x1b
+#define CP_HQD_PQ_CONTROL__UNORD_DISPATCH__SHIFT 0x1c
+#define CP_HQD_PQ_CONTROL__ROQ_PQ_IB_FLIP__SHIFT 0x1d
+#define CP_HQD_PQ_CONTROL__PRIV_STATE__SHIFT 0x1e
+#define CP_HQD_PQ_CONTROL__KMD_QUEUE__SHIFT 0x1f
+#define CP_HQD_PQ_CONTROL__QUEUE_SIZE_MASK 0x0000003FL
+#define CP_HQD_PQ_CONTROL__WPTR_CARRY_MASK 0x00000040L
+#define CP_HQD_PQ_CONTROL__RPTR_CARRY_MASK 0x00000080L
+#define CP_HQD_PQ_CONTROL__RPTR_BLOCK_SIZE_MASK 0x00003F00L
+#define CP_HQD_PQ_CONTROL__QUEUE_FULL_EN_MASK 0x00004000L
+#define CP_HQD_PQ_CONTROL__PQ_EMPTY_MASK 0x00008000L
+#define CP_HQD_PQ_CONTROL__WPP_CLAMP_EN_MASK 0x00010000L
+#define CP_HQD_PQ_CONTROL__ENDIAN_SWAP_MASK 0x00060000L
+#define CP_HQD_PQ_CONTROL__MIN_AVAIL_SIZE_MASK 0x00300000L
+#define CP_HQD_PQ_CONTROL__TMZ_MASK 0x00400000L
+#define CP_HQD_PQ_CONTROL__EXE_DISABLE_MASK 0x00800000L
+#define CP_HQD_PQ_CONTROL__CACHE_POLICY_MASK 0x01000000L
+#define CP_HQD_PQ_CONTROL__SLOT_BASED_WPTR_MASK 0x06000000L
+#define CP_HQD_PQ_CONTROL__NO_UPDATE_RPTR_MASK 0x08000000L
+#define CP_HQD_PQ_CONTROL__UNORD_DISPATCH_MASK 0x10000000L
+#define CP_HQD_PQ_CONTROL__ROQ_PQ_IB_FLIP_MASK 0x20000000L
+#define CP_HQD_PQ_CONTROL__PRIV_STATE_MASK 0x40000000L
+#define CP_HQD_PQ_CONTROL__KMD_QUEUE_MASK 0x80000000L
+//CP_HQD_IB_BASE_ADDR
+#define CP_HQD_IB_BASE_ADDR__IB_BASE_ADDR__SHIFT 0x2
+#define CP_HQD_IB_BASE_ADDR__IB_BASE_ADDR_MASK 0xFFFFFFFCL
+//CP_HQD_IB_BASE_ADDR_HI
+#define CP_HQD_IB_BASE_ADDR_HI__IB_BASE_ADDR_HI__SHIFT 0x0
+#define CP_HQD_IB_BASE_ADDR_HI__IB_BASE_ADDR_HI_MASK 0x0000FFFFL
+//CP_HQD_IB_RPTR
+#define CP_HQD_IB_RPTR__CONSUMED_OFFSET__SHIFT 0x0
+#define CP_HQD_IB_RPTR__CONSUMED_OFFSET_MASK 0x000FFFFFL
+//CP_HQD_IB_CONTROL
+#define CP_HQD_IB_CONTROL__IB_SIZE__SHIFT 0x0
+#define CP_HQD_IB_CONTROL__MIN_IB_AVAIL_SIZE__SHIFT 0x14
+#define CP_HQD_IB_CONTROL__IB_EXE_DISABLE__SHIFT 0x17
+#define CP_HQD_IB_CONTROL__IB_CACHE_POLICY__SHIFT 0x18
+#define CP_HQD_IB_CONTROL__IB_PRIV_STATE__SHIFT 0x1e
+#define CP_HQD_IB_CONTROL__PROCESSING_IB__SHIFT 0x1f
+#define CP_HQD_IB_CONTROL__IB_SIZE_MASK 0x000FFFFFL
+#define CP_HQD_IB_CONTROL__MIN_IB_AVAIL_SIZE_MASK 0x00300000L
+#define CP_HQD_IB_CONTROL__IB_EXE_DISABLE_MASK 0x00800000L
+#define CP_HQD_IB_CONTROL__IB_CACHE_POLICY_MASK 0x01000000L
+#define CP_HQD_IB_CONTROL__IB_PRIV_STATE_MASK 0x40000000L
+#define CP_HQD_IB_CONTROL__PROCESSING_IB_MASK 0x80000000L
+//CP_HQD_IQ_TIMER
+#define CP_HQD_IQ_TIMER__WAIT_TIME__SHIFT 0x0
+#define CP_HQD_IQ_TIMER__RETRY_TYPE__SHIFT 0x8
+#define CP_HQD_IQ_TIMER__IMMEDIATE_EXPIRE__SHIFT 0xb
+#define CP_HQD_IQ_TIMER__INTERRUPT_TYPE__SHIFT 0xc
+#define CP_HQD_IQ_TIMER__CLOCK_COUNT__SHIFT 0xe
+#define CP_HQD_IQ_TIMER__INTERRUPT_SIZE__SHIFT 0x10
+#define CP_HQD_IQ_TIMER__QUANTUM_TIMER__SHIFT 0x16
+#define CP_HQD_IQ_TIMER__EXE_DISABLE__SHIFT 0x17
+#define CP_HQD_IQ_TIMER__CACHE_POLICY__SHIFT 0x18
+#define CP_HQD_IQ_TIMER__QUEUE_TYPE__SHIFT 0x19
+#define CP_HQD_IQ_TIMER__REARM_TIMER__SHIFT 0x1c
+#define CP_HQD_IQ_TIMER__PROCESS_IQ_EN__SHIFT 0x1d
+#define CP_HQD_IQ_TIMER__PROCESSING_IQ__SHIFT 0x1e
+#define CP_HQD_IQ_TIMER__ACTIVE__SHIFT 0x1f
+#define CP_HQD_IQ_TIMER__WAIT_TIME_MASK 0x000000FFL
+#define CP_HQD_IQ_TIMER__RETRY_TYPE_MASK 0x00000700L
+#define CP_HQD_IQ_TIMER__IMMEDIATE_EXPIRE_MASK 0x00000800L
+#define CP_HQD_IQ_TIMER__INTERRUPT_TYPE_MASK 0x00003000L
+#define CP_HQD_IQ_TIMER__CLOCK_COUNT_MASK 0x0000C000L
+#define CP_HQD_IQ_TIMER__INTERRUPT_SIZE_MASK 0x003F0000L
+#define CP_HQD_IQ_TIMER__QUANTUM_TIMER_MASK 0x00400000L
+#define CP_HQD_IQ_TIMER__EXE_DISABLE_MASK 0x00800000L
+#define CP_HQD_IQ_TIMER__CACHE_POLICY_MASK 0x01000000L
+#define CP_HQD_IQ_TIMER__QUEUE_TYPE_MASK 0x02000000L
+#define CP_HQD_IQ_TIMER__REARM_TIMER_MASK 0x10000000L
+#define CP_HQD_IQ_TIMER__PROCESS_IQ_EN_MASK 0x20000000L
+#define CP_HQD_IQ_TIMER__PROCESSING_IQ_MASK 0x40000000L
+#define CP_HQD_IQ_TIMER__ACTIVE_MASK 0x80000000L
+//CP_HQD_IQ_RPTR
+#define CP_HQD_IQ_RPTR__OFFSET__SHIFT 0x0
+#define CP_HQD_IQ_RPTR__OFFSET_MASK 0x0000003FL
+//CP_HQD_DEQUEUE_REQUEST
+#define CP_HQD_DEQUEUE_REQUEST__DEQUEUE_REQ__SHIFT 0x0
+#define CP_HQD_DEQUEUE_REQUEST__IQ_REQ_PEND__SHIFT 0x4
+#define CP_HQD_DEQUEUE_REQUEST__DEQUEUE_INT__SHIFT 0x8
+#define CP_HQD_DEQUEUE_REQUEST__IQ_REQ_PEND_EN__SHIFT 0x9
+#define CP_HQD_DEQUEUE_REQUEST__DEQUEUE_REQ_EN__SHIFT 0xa
+#define CP_HQD_DEQUEUE_REQUEST__DEQUEUE_REQ_MASK 0x00000007L
+#define CP_HQD_DEQUEUE_REQUEST__IQ_REQ_PEND_MASK 0x00000010L
+#define CP_HQD_DEQUEUE_REQUEST__DEQUEUE_INT_MASK 0x00000100L
+#define CP_HQD_DEQUEUE_REQUEST__IQ_REQ_PEND_EN_MASK 0x00000200L
+#define CP_HQD_DEQUEUE_REQUEST__DEQUEUE_REQ_EN_MASK 0x00000400L
+//CP_HQD_DMA_OFFLOAD
+#define CP_HQD_DMA_OFFLOAD__DMA_OFFLOAD__SHIFT 0x0
+#define CP_HQD_DMA_OFFLOAD__DMA_OFFLOAD_MASK 0x00000001L
+//CP_HQD_OFFLOAD
+#define CP_HQD_OFFLOAD__DMA_OFFLOAD__SHIFT 0x0
+#define CP_HQD_OFFLOAD__DMA_OFFLOAD_EN__SHIFT 0x1
+#define CP_HQD_OFFLOAD__AQL_OFFLOAD__SHIFT 0x2
+#define CP_HQD_OFFLOAD__AQL_OFFLOAD_EN__SHIFT 0x3
+#define CP_HQD_OFFLOAD__EOP_OFFLOAD__SHIFT 0x4
+#define CP_HQD_OFFLOAD__EOP_OFFLOAD_EN__SHIFT 0x5
+#define CP_HQD_OFFLOAD__DMA_OFFLOAD_MASK 0x00000001L
+#define CP_HQD_OFFLOAD__DMA_OFFLOAD_EN_MASK 0x00000002L
+#define CP_HQD_OFFLOAD__AQL_OFFLOAD_MASK 0x00000004L
+#define CP_HQD_OFFLOAD__AQL_OFFLOAD_EN_MASK 0x00000008L
+#define CP_HQD_OFFLOAD__EOP_OFFLOAD_MASK 0x00000010L
+#define CP_HQD_OFFLOAD__EOP_OFFLOAD_EN_MASK 0x00000020L
+//CP_HQD_SEMA_CMD
+#define CP_HQD_SEMA_CMD__RETRY__SHIFT 0x0
+#define CP_HQD_SEMA_CMD__RESULT__SHIFT 0x1
+#define CP_HQD_SEMA_CMD__RETRY_MASK 0x00000001L
+#define CP_HQD_SEMA_CMD__RESULT_MASK 0x00000006L
+//CP_HQD_MSG_TYPE
+#define CP_HQD_MSG_TYPE__ACTION__SHIFT 0x0
+#define CP_HQD_MSG_TYPE__SAVE_STATE__SHIFT 0x4
+#define CP_HQD_MSG_TYPE__ACTION_MASK 0x00000007L
+#define CP_HQD_MSG_TYPE__SAVE_STATE_MASK 0x00000070L
+//CP_HQD_ATOMIC0_PREOP_LO
+#define CP_HQD_ATOMIC0_PREOP_LO__ATOMIC0_PREOP_LO__SHIFT 0x0
+#define CP_HQD_ATOMIC0_PREOP_LO__ATOMIC0_PREOP_LO_MASK 0xFFFFFFFFL
+//CP_HQD_ATOMIC0_PREOP_HI
+#define CP_HQD_ATOMIC0_PREOP_HI__ATOMIC0_PREOP_HI__SHIFT 0x0
+#define CP_HQD_ATOMIC0_PREOP_HI__ATOMIC0_PREOP_HI_MASK 0xFFFFFFFFL
+//CP_HQD_ATOMIC1_PREOP_LO
+#define CP_HQD_ATOMIC1_PREOP_LO__ATOMIC1_PREOP_LO__SHIFT 0x0
+#define CP_HQD_ATOMIC1_PREOP_LO__ATOMIC1_PREOP_LO_MASK 0xFFFFFFFFL
+//CP_HQD_ATOMIC1_PREOP_HI
+#define CP_HQD_ATOMIC1_PREOP_HI__ATOMIC1_PREOP_HI__SHIFT 0x0
+#define CP_HQD_ATOMIC1_PREOP_HI__ATOMIC1_PREOP_HI_MASK 0xFFFFFFFFL
+//CP_HQD_HQ_SCHEDULER0
+#define CP_HQD_HQ_SCHEDULER0__SCHEDULER__SHIFT 0x0
+#define CP_HQD_HQ_SCHEDULER0__SCHEDULER_MASK 0xFFFFFFFFL
+//CP_HQD_HQ_STATUS0
+#define CP_HQD_HQ_STATUS0__DEQUEUE_STATUS__SHIFT 0x0
+#define CP_HQD_HQ_STATUS0__DEQUEUE_RETRY_CNT__SHIFT 0x2
+#define CP_HQD_HQ_STATUS0__RSV_6_4__SHIFT 0x4
+#define CP_HQD_HQ_STATUS0__SCRATCH_RAM_INIT__SHIFT 0x7
+#define CP_HQD_HQ_STATUS0__TCL2_DIRTY__SHIFT 0x8
+#define CP_HQD_HQ_STATUS0__PG_ACTIVATED__SHIFT 0x9
+#define CP_HQD_HQ_STATUS0__RSVR_29_10__SHIFT 0xa
+#define CP_HQD_HQ_STATUS0__QUEUE_IDLE__SHIFT 0x1e
+#define CP_HQD_HQ_STATUS0__DB_UPDATED_MSG_EN__SHIFT 0x1f
+#define CP_HQD_HQ_STATUS0__DEQUEUE_STATUS_MASK 0x00000003L
+#define CP_HQD_HQ_STATUS0__DEQUEUE_RETRY_CNT_MASK 0x0000000CL
+#define CP_HQD_HQ_STATUS0__RSV_6_4_MASK 0x00000070L
+#define CP_HQD_HQ_STATUS0__SCRATCH_RAM_INIT_MASK 0x00000080L
+#define CP_HQD_HQ_STATUS0__TCL2_DIRTY_MASK 0x00000100L
+#define CP_HQD_HQ_STATUS0__PG_ACTIVATED_MASK 0x00000200L
+#define CP_HQD_HQ_STATUS0__RSVR_29_10_MASK 0x3FFFFC00L
+#define CP_HQD_HQ_STATUS0__QUEUE_IDLE_MASK 0x40000000L
+#define CP_HQD_HQ_STATUS0__DB_UPDATED_MSG_EN_MASK 0x80000000L
+//CP_HQD_HQ_CONTROL0
+#define CP_HQD_HQ_CONTROL0__CONTROL__SHIFT 0x0
+#define CP_HQD_HQ_CONTROL0__CONTROL_MASK 0xFFFFFFFFL
+//CP_HQD_HQ_SCHEDULER1
+#define CP_HQD_HQ_SCHEDULER1__SCHEDULER__SHIFT 0x0
+#define CP_HQD_HQ_SCHEDULER1__SCHEDULER_MASK 0xFFFFFFFFL
+//CP_MQD_CONTROL
+#define CP_MQD_CONTROL__VMID__SHIFT 0x0
+#define CP_MQD_CONTROL__PRIV_STATE__SHIFT 0x8
+#define CP_MQD_CONTROL__PROCESSING_MQD__SHIFT 0xc
+#define CP_MQD_CONTROL__PROCESSING_MQD_EN__SHIFT 0xd
+#define CP_MQD_CONTROL__EXE_DISABLE__SHIFT 0x17
+#define CP_MQD_CONTROL__CACHE_POLICY__SHIFT 0x18
+#define CP_MQD_CONTROL__VMID_MASK 0x0000000FL
+#define CP_MQD_CONTROL__PRIV_STATE_MASK 0x00000100L
+#define CP_MQD_CONTROL__PROCESSING_MQD_MASK 0x00001000L
+#define CP_MQD_CONTROL__PROCESSING_MQD_EN_MASK 0x00002000L
+#define CP_MQD_CONTROL__EXE_DISABLE_MASK 0x00800000L
+#define CP_MQD_CONTROL__CACHE_POLICY_MASK 0x01000000L
+//CP_HQD_HQ_STATUS1
+#define CP_HQD_HQ_STATUS1__STATUS__SHIFT 0x0
+#define CP_HQD_HQ_STATUS1__STATUS_MASK 0xFFFFFFFFL
+//CP_HQD_HQ_CONTROL1
+#define CP_HQD_HQ_CONTROL1__CONTROL__SHIFT 0x0
+#define CP_HQD_HQ_CONTROL1__CONTROL_MASK 0xFFFFFFFFL
+//CP_HQD_EOP_BASE_ADDR
+#define CP_HQD_EOP_BASE_ADDR__BASE_ADDR__SHIFT 0x0
+#define CP_HQD_EOP_BASE_ADDR__BASE_ADDR_MASK 0xFFFFFFFFL
+//CP_HQD_EOP_BASE_ADDR_HI
+#define CP_HQD_EOP_BASE_ADDR_HI__BASE_ADDR_HI__SHIFT 0x0
+#define CP_HQD_EOP_BASE_ADDR_HI__BASE_ADDR_HI_MASK 0x000000FFL
+//CP_HQD_EOP_CONTROL
+#define CP_HQD_EOP_CONTROL__EOP_SIZE__SHIFT 0x0
+#define CP_HQD_EOP_CONTROL__PROCESSING_EOP__SHIFT 0x8
+#define CP_HQD_EOP_CONTROL__PROCESS_EOP_EN__SHIFT 0xc
+#define CP_HQD_EOP_CONTROL__PROCESSING_EOPIB__SHIFT 0xd
+#define CP_HQD_EOP_CONTROL__PROCESS_EOPIB_EN__SHIFT 0xe
+#define CP_HQD_EOP_CONTROL__HALT_FETCHER__SHIFT 0x15
+#define CP_HQD_EOP_CONTROL__HALT_FETCHER_EN__SHIFT 0x16
+#define CP_HQD_EOP_CONTROL__EXE_DISABLE__SHIFT 0x17
+#define CP_HQD_EOP_CONTROL__CACHE_POLICY__SHIFT 0x18
+#define CP_HQD_EOP_CONTROL__SIG_SEM_RESULT__SHIFT 0x1d
+#define CP_HQD_EOP_CONTROL__PEND_SIG_SEM__SHIFT 0x1f
+#define CP_HQD_EOP_CONTROL__EOP_SIZE_MASK 0x0000003FL
+#define CP_HQD_EOP_CONTROL__PROCESSING_EOP_MASK 0x00000100L
+#define CP_HQD_EOP_CONTROL__PROCESS_EOP_EN_MASK 0x00001000L
+#define CP_HQD_EOP_CONTROL__PROCESSING_EOPIB_MASK 0x00002000L
+#define CP_HQD_EOP_CONTROL__PROCESS_EOPIB_EN_MASK 0x00004000L
+#define CP_HQD_EOP_CONTROL__HALT_FETCHER_MASK 0x00200000L
+#define CP_HQD_EOP_CONTROL__HALT_FETCHER_EN_MASK 0x00400000L
+#define CP_HQD_EOP_CONTROL__EXE_DISABLE_MASK 0x00800000L
+#define CP_HQD_EOP_CONTROL__CACHE_POLICY_MASK 0x01000000L
+#define CP_HQD_EOP_CONTROL__SIG_SEM_RESULT_MASK 0x60000000L
+#define CP_HQD_EOP_CONTROL__PEND_SIG_SEM_MASK 0x80000000L
+//CP_HQD_EOP_RPTR
+#define CP_HQD_EOP_RPTR__RPTR__SHIFT 0x0
+#define CP_HQD_EOP_RPTR__RESET_FETCHER__SHIFT 0x1c
+#define CP_HQD_EOP_RPTR__DEQUEUE_PEND__SHIFT 0x1d
+#define CP_HQD_EOP_RPTR__RPTR_EQ_CSMD_WPTR__SHIFT 0x1e
+#define CP_HQD_EOP_RPTR__INIT_FETCHER__SHIFT 0x1f
+#define CP_HQD_EOP_RPTR__RPTR_MASK 0x00001FFFL
+#define CP_HQD_EOP_RPTR__RESET_FETCHER_MASK 0x10000000L
+#define CP_HQD_EOP_RPTR__DEQUEUE_PEND_MASK 0x20000000L
+#define CP_HQD_EOP_RPTR__RPTR_EQ_CSMD_WPTR_MASK 0x40000000L
+#define CP_HQD_EOP_RPTR__INIT_FETCHER_MASK 0x80000000L
+//CP_HQD_EOP_WPTR
+#define CP_HQD_EOP_WPTR__WPTR__SHIFT 0x0
+#define CP_HQD_EOP_WPTR__EOP_EMPTY__SHIFT 0xf
+#define CP_HQD_EOP_WPTR__EOP_AVAIL__SHIFT 0x10
+#define CP_HQD_EOP_WPTR__WPTR_MASK 0x00001FFFL
+#define CP_HQD_EOP_WPTR__EOP_EMPTY_MASK 0x00008000L
+#define CP_HQD_EOP_WPTR__EOP_AVAIL_MASK 0x1FFF0000L
+//CP_HQD_EOP_EVENTS
+#define CP_HQD_EOP_EVENTS__EVENT_COUNT__SHIFT 0x0
+#define CP_HQD_EOP_EVENTS__CS_PARTIAL_FLUSH_PEND__SHIFT 0x10
+#define CP_HQD_EOP_EVENTS__EVENT_COUNT_MASK 0x00000FFFL
+#define CP_HQD_EOP_EVENTS__CS_PARTIAL_FLUSH_PEND_MASK 0x00010000L
+//CP_HQD_CTX_SAVE_BASE_ADDR_LO
+#define CP_HQD_CTX_SAVE_BASE_ADDR_LO__ADDR__SHIFT 0xc
+#define CP_HQD_CTX_SAVE_BASE_ADDR_LO__ADDR_MASK 0xFFFFF000L
+//CP_HQD_CTX_SAVE_BASE_ADDR_HI
+#define CP_HQD_CTX_SAVE_BASE_ADDR_HI__ADDR_HI__SHIFT 0x0
+#define CP_HQD_CTX_SAVE_BASE_ADDR_HI__ADDR_HI_MASK 0x0000FFFFL
+//CP_HQD_CTX_SAVE_CONTROL
+#define CP_HQD_CTX_SAVE_CONTROL__POLICY__SHIFT 0x3
+#define CP_HQD_CTX_SAVE_CONTROL__EXE_DISABLE__SHIFT 0x17
+#define CP_HQD_CTX_SAVE_CONTROL__POLICY_MASK 0x00000008L
+#define CP_HQD_CTX_SAVE_CONTROL__EXE_DISABLE_MASK 0x00800000L
+//CP_HQD_CNTL_STACK_OFFSET
+#define CP_HQD_CNTL_STACK_OFFSET__OFFSET__SHIFT 0x2
+#define CP_HQD_CNTL_STACK_OFFSET__OFFSET_MASK 0x0000FFFCL
+//CP_HQD_CNTL_STACK_SIZE
+#define CP_HQD_CNTL_STACK_SIZE__SIZE__SHIFT 0xc
+#define CP_HQD_CNTL_STACK_SIZE__SIZE_MASK 0x0000F000L
+//CP_HQD_WG_STATE_OFFSET
+#define CP_HQD_WG_STATE_OFFSET__OFFSET__SHIFT 0x2
+#define CP_HQD_WG_STATE_OFFSET__OFFSET_MASK 0x07FFFFFCL
+//CP_HQD_CTX_SAVE_SIZE
+#define CP_HQD_CTX_SAVE_SIZE__SIZE__SHIFT 0xc
+#define CP_HQD_CTX_SAVE_SIZE__SIZE_MASK 0x07FFF000L
+//CP_HQD_GDS_RESOURCE_STATE
+#define CP_HQD_GDS_RESOURCE_STATE__OA_REQUIRED__SHIFT 0x0
+#define CP_HQD_GDS_RESOURCE_STATE__OA_ACQUIRED__SHIFT 0x1
+#define CP_HQD_GDS_RESOURCE_STATE__GWS_SIZE__SHIFT 0x4
+#define CP_HQD_GDS_RESOURCE_STATE__GWS_PNTR__SHIFT 0xc
+#define CP_HQD_GDS_RESOURCE_STATE__OA_REQUIRED_MASK 0x00000001L
+#define CP_HQD_GDS_RESOURCE_STATE__OA_ACQUIRED_MASK 0x00000002L
+#define CP_HQD_GDS_RESOURCE_STATE__GWS_SIZE_MASK 0x000003F0L
+#define CP_HQD_GDS_RESOURCE_STATE__GWS_PNTR_MASK 0x0003F000L
+//CP_HQD_ERROR
+#define CP_HQD_ERROR__EDC_ERROR_ID__SHIFT 0x0
+#define CP_HQD_ERROR__SUA_ERROR__SHIFT 0x4
+#define CP_HQD_ERROR__AQL_ERROR__SHIFT 0x5
+#define CP_HQD_ERROR__PQ_UTCL1_ERROR__SHIFT 0x8
+#define CP_HQD_ERROR__IB_UTCL1_ERROR__SHIFT 0x9
+#define CP_HQD_ERROR__EOP_UTCL1_ERROR__SHIFT 0xa
+#define CP_HQD_ERROR__IQ_UTCL1_ERROR__SHIFT 0xb
+#define CP_HQD_ERROR__RRPT_UTCL1_ERROR__SHIFT 0xc
+#define CP_HQD_ERROR__WPP_UTCL1_ERROR__SHIFT 0xd
+#define CP_HQD_ERROR__SEM_UTCL1_ERROR__SHIFT 0xe
+#define CP_HQD_ERROR__DMA_SRC_UTCL1_ERROR__SHIFT 0xf
+#define CP_HQD_ERROR__DMA_DST_UTCL1_ERROR__SHIFT 0x10
+#define CP_HQD_ERROR__SR_UTCL1_ERROR__SHIFT 0x11
+#define CP_HQD_ERROR__QU_UTCL1_ERROR__SHIFT 0x12
+#define CP_HQD_ERROR__TC_UTCL1_ERROR__SHIFT 0x13
+#define CP_HQD_ERROR__EDC_ERROR_ID_MASK 0x0000000FL
+#define CP_HQD_ERROR__SUA_ERROR_MASK 0x00000010L
+#define CP_HQD_ERROR__AQL_ERROR_MASK 0x00000020L
+#define CP_HQD_ERROR__PQ_UTCL1_ERROR_MASK 0x00000100L
+#define CP_HQD_ERROR__IB_UTCL1_ERROR_MASK 0x00000200L
+#define CP_HQD_ERROR__EOP_UTCL1_ERROR_MASK 0x00000400L
+#define CP_HQD_ERROR__IQ_UTCL1_ERROR_MASK 0x00000800L
+#define CP_HQD_ERROR__RRPT_UTCL1_ERROR_MASK 0x00001000L
+#define CP_HQD_ERROR__WPP_UTCL1_ERROR_MASK 0x00002000L
+#define CP_HQD_ERROR__SEM_UTCL1_ERROR_MASK 0x00004000L
+#define CP_HQD_ERROR__DMA_SRC_UTCL1_ERROR_MASK 0x00008000L
+#define CP_HQD_ERROR__DMA_DST_UTCL1_ERROR_MASK 0x00010000L
+#define CP_HQD_ERROR__SR_UTCL1_ERROR_MASK 0x00020000L
+#define CP_HQD_ERROR__QU_UTCL1_ERROR_MASK 0x00040000L
+#define CP_HQD_ERROR__TC_UTCL1_ERROR_MASK 0x00080000L
+//CP_HQD_EOP_WPTR_MEM
+#define CP_HQD_EOP_WPTR_MEM__WPTR__SHIFT 0x0
+#define CP_HQD_EOP_WPTR_MEM__WPTR_MASK 0x00001FFFL
+//CP_HQD_AQL_CONTROL
+#define CP_HQD_AQL_CONTROL__CONTROL0__SHIFT 0x0
+#define CP_HQD_AQL_CONTROL__CONTROL0_EN__SHIFT 0xf
+#define CP_HQD_AQL_CONTROL__CONTROL1__SHIFT 0x10
+#define CP_HQD_AQL_CONTROL__CONTROL1_EN__SHIFT 0x1f
+#define CP_HQD_AQL_CONTROL__CONTROL0_MASK 0x00007FFFL
+#define CP_HQD_AQL_CONTROL__CONTROL0_EN_MASK 0x00008000L
+#define CP_HQD_AQL_CONTROL__CONTROL1_MASK 0x7FFF0000L
+#define CP_HQD_AQL_CONTROL__CONTROL1_EN_MASK 0x80000000L
+//CP_HQD_PQ_WPTR_LO
+#define CP_HQD_PQ_WPTR_LO__OFFSET__SHIFT 0x0
+#define CP_HQD_PQ_WPTR_LO__OFFSET_MASK 0xFFFFFFFFL
+//CP_HQD_PQ_WPTR_HI
+#define CP_HQD_PQ_WPTR_HI__DATA__SHIFT 0x0
+#define CP_HQD_PQ_WPTR_HI__DATA_MASK 0xFFFFFFFFL
+//CP_HQD_AQL_CONTROL_1
+#define CP_HQD_AQL_CONTROL_1__RESERVED__SHIFT 0x0
+#define CP_HQD_AQL_CONTROL_1__RESERVED_MASK 0xFFFFFFFFL
+//CP_HQD_AQL_DISPATCH_ID
+#define CP_HQD_AQL_DISPATCH_ID__CONSUMED_OFFSET__SHIFT 0x0
+#define CP_HQD_AQL_DISPATCH_ID__CONSUMED_OFFSET_MASK 0xFFFFFFFFL
+//CP_HQD_AQL_DISPATCH_ID_HI
+#define CP_HQD_AQL_DISPATCH_ID_HI__CONSUMED_OFFSET__SHIFT 0x0
+#define CP_HQD_AQL_DISPATCH_ID_HI__CONSUMED_OFFSET_MASK 0xFFFFFFFFL
+
+
+// addressBlock: xcd0_gc_tcpdec
+//TCP_WATCH0_ADDR_H
+#define TCP_WATCH0_ADDR_H__ADDR__SHIFT 0x0
+#define TCP_WATCH0_ADDR_H__ADDR_MASK 0x0000FFFFL
+//TCP_WATCH0_ADDR_L
+#define TCP_WATCH0_ADDR_L__ADDR__SHIFT 0x7
+#define TCP_WATCH0_ADDR_L__ADDR_MASK 0xFFFFFF80L
+//TCP_WATCH0_CNTL
+#define TCP_WATCH0_CNTL__MASK__SHIFT 0x0
+#define TCP_WATCH0_CNTL__VMID__SHIFT 0x18
+#define TCP_WATCH0_CNTL__ATC__SHIFT 0x1c
+#define TCP_WATCH0_CNTL__MODE__SHIFT 0x1d
+#define TCP_WATCH0_CNTL__VALID__SHIFT 0x1f
+#define TCP_WATCH0_CNTL__MASK_MASK 0x00FFFFFFL
+#define TCP_WATCH0_CNTL__VMID_MASK 0x0F000000L
+#define TCP_WATCH0_CNTL__ATC_MASK 0x10000000L
+#define TCP_WATCH0_CNTL__MODE_MASK 0x60000000L
+#define TCP_WATCH0_CNTL__VALID_MASK 0x80000000L
+//TCP_WATCH1_ADDR_H
+#define TCP_WATCH1_ADDR_H__ADDR__SHIFT 0x0
+#define TCP_WATCH1_ADDR_H__ADDR_MASK 0x0000FFFFL
+//TCP_WATCH1_ADDR_L
+#define TCP_WATCH1_ADDR_L__ADDR__SHIFT 0x7
+#define TCP_WATCH1_ADDR_L__ADDR_MASK 0xFFFFFF80L
+//TCP_WATCH1_CNTL
+#define TCP_WATCH1_CNTL__MASK__SHIFT 0x0
+#define TCP_WATCH1_CNTL__VMID__SHIFT 0x18
+#define TCP_WATCH1_CNTL__ATC__SHIFT 0x1c
+#define TCP_WATCH1_CNTL__MODE__SHIFT 0x1d
+#define TCP_WATCH1_CNTL__VALID__SHIFT 0x1f
+#define TCP_WATCH1_CNTL__MASK_MASK 0x00FFFFFFL
+#define TCP_WATCH1_CNTL__VMID_MASK 0x0F000000L
+#define TCP_WATCH1_CNTL__ATC_MASK 0x10000000L
+#define TCP_WATCH1_CNTL__MODE_MASK 0x60000000L
+#define TCP_WATCH1_CNTL__VALID_MASK 0x80000000L
+//TCP_WATCH2_ADDR_H
+#define TCP_WATCH2_ADDR_H__ADDR__SHIFT 0x0
+#define TCP_WATCH2_ADDR_H__ADDR_MASK 0x0000FFFFL
+//TCP_WATCH2_ADDR_L
+#define TCP_WATCH2_ADDR_L__ADDR__SHIFT 0x7
+#define TCP_WATCH2_ADDR_L__ADDR_MASK 0xFFFFFF80L
+//TCP_WATCH2_CNTL
+#define TCP_WATCH2_CNTL__MASK__SHIFT 0x0
+#define TCP_WATCH2_CNTL__VMID__SHIFT 0x18
+#define TCP_WATCH2_CNTL__ATC__SHIFT 0x1c
+#define TCP_WATCH2_CNTL__MODE__SHIFT 0x1d
+#define TCP_WATCH2_CNTL__VALID__SHIFT 0x1f
+#define TCP_WATCH2_CNTL__MASK_MASK 0x00FFFFFFL
+#define TCP_WATCH2_CNTL__VMID_MASK 0x0F000000L
+#define TCP_WATCH2_CNTL__ATC_MASK 0x10000000L
+#define TCP_WATCH2_CNTL__MODE_MASK 0x60000000L
+#define TCP_WATCH2_CNTL__VALID_MASK 0x80000000L
+//TCP_WATCH3_ADDR_H
+#define TCP_WATCH3_ADDR_H__ADDR__SHIFT 0x0
+#define TCP_WATCH3_ADDR_H__ADDR_MASK 0x0000FFFFL
+//TCP_WATCH3_ADDR_L
+#define TCP_WATCH3_ADDR_L__ADDR__SHIFT 0x7
+#define TCP_WATCH3_ADDR_L__ADDR_MASK 0xFFFFFF80L
+//TCP_WATCH3_CNTL
+#define TCP_WATCH3_CNTL__MASK__SHIFT 0x0
+#define TCP_WATCH3_CNTL__VMID__SHIFT 0x18
+#define TCP_WATCH3_CNTL__ATC__SHIFT 0x1c
+#define TCP_WATCH3_CNTL__MODE__SHIFT 0x1d
+#define TCP_WATCH3_CNTL__VALID__SHIFT 0x1f
+#define TCP_WATCH3_CNTL__MASK_MASK 0x00FFFFFFL
+#define TCP_WATCH3_CNTL__VMID_MASK 0x0F000000L
+#define TCP_WATCH3_CNTL__ATC_MASK 0x10000000L
+#define TCP_WATCH3_CNTL__MODE_MASK 0x60000000L
+#define TCP_WATCH3_CNTL__VALID_MASK 0x80000000L
+//TCP_GATCL1_CNTL
+#define TCP_GATCL1_CNTL__INVALIDATE_ALL_VMID__SHIFT 0x19
+#define TCP_GATCL1_CNTL__FORCE_MISS__SHIFT 0x1a
+#define TCP_GATCL1_CNTL__FORCE_IN_ORDER__SHIFT 0x1b
+#define TCP_GATCL1_CNTL__REDUCE_FIFO_DEPTH_BY_2__SHIFT 0x1c
+#define TCP_GATCL1_CNTL__REDUCE_CACHE_SIZE_BY_2__SHIFT 0x1e
+#define TCP_GATCL1_CNTL__INVALIDATE_ALL_VMID_MASK 0x02000000L
+#define TCP_GATCL1_CNTL__FORCE_MISS_MASK 0x04000000L
+#define TCP_GATCL1_CNTL__FORCE_IN_ORDER_MASK 0x08000000L
+#define TCP_GATCL1_CNTL__REDUCE_FIFO_DEPTH_BY_2_MASK 0x30000000L
+#define TCP_GATCL1_CNTL__REDUCE_CACHE_SIZE_BY_2_MASK 0xC0000000L
+//TCP_ATC_EDC_GATCL1_CNT
+#define TCP_ATC_EDC_GATCL1_CNT__DATA_SEC__SHIFT 0x0
+#define TCP_ATC_EDC_GATCL1_CNT__DATA_SEC_MASK 0x000000FFL
+//TCP_GATCL1_DSM_CNTL
+#define TCP_GATCL1_DSM_CNTL__SEL_DSM_TCP_GATCL1_IRRITATOR_DATA_A0__SHIFT 0x0
+#define TCP_GATCL1_DSM_CNTL__SEL_DSM_TCP_GATCL1_IRRITATOR_DATA_A1__SHIFT 0x1
+#define TCP_GATCL1_DSM_CNTL__TCP_GATCL1_ENABLE_SINGLE_WRITE_A__SHIFT 0x2
+#define TCP_GATCL1_DSM_CNTL__SEL_DSM_TCP_GATCL1_IRRITATOR_DATA_A0_MASK 0x00000001L
+#define TCP_GATCL1_DSM_CNTL__SEL_DSM_TCP_GATCL1_IRRITATOR_DATA_A1_MASK 0x00000002L
+#define TCP_GATCL1_DSM_CNTL__TCP_GATCL1_ENABLE_SINGLE_WRITE_A_MASK 0x00000004L
+//TCP_DSM_CNTL
+#define TCP_DSM_CNTL__CACHE_RAM_IRRITATOR_DATA_SEL__SHIFT 0x0
+#define TCP_DSM_CNTL__CACHE_RAM_IRRITATOR_SINGLE_WRITE__SHIFT 0x2
+#define TCP_DSM_CNTL__LFIFO_RAM_IRRITATOR_DATA_SEL__SHIFT 0x3
+#define TCP_DSM_CNTL__LFIFO_RAM_IRRITATOR_SINGLE_WRITE__SHIFT 0x5
+#define TCP_DSM_CNTL__CMD_FIFO_IRRITATOR_DATA_SEL__SHIFT 0x6
+#define TCP_DSM_CNTL__CMD_FIFO_IRRITATOR_SINGLE_WRITE__SHIFT 0x8
+#define TCP_DSM_CNTL__VM_FIFO_IRRITATOR_DATA_SEL__SHIFT 0x9
+#define TCP_DSM_CNTL__VM_FIFO_IRRITATOR_SINGLE_WRITE__SHIFT 0xb
+#define TCP_DSM_CNTL__DB_RAM_IRRITATOR_DATA_SEL__SHIFT 0xc
+#define TCP_DSM_CNTL__DB_RAM_IRRITATOR_SINGLE_WRITE__SHIFT 0xe
+#define TCP_DSM_CNTL__UTCL1_LFIFO0_IRRITATOR_DATA_SEL__SHIFT 0xf
+#define TCP_DSM_CNTL__UTCL1_LFIFO0_IRRITATOR_SINGLE_WRITE__SHIFT 0x11
+#define TCP_DSM_CNTL__UTCL1_LFIFO1_IRRITATOR_DATA_SEL__SHIFT 0x12
+#define TCP_DSM_CNTL__UTCL1_LFIFO1_IRRITATOR_SINGLE_WRITE__SHIFT 0x14
+#define TCP_DSM_CNTL__CACHE_RAM_IRRITATOR_DATA_SEL_MASK 0x00000003L
+#define TCP_DSM_CNTL__CACHE_RAM_IRRITATOR_SINGLE_WRITE_MASK 0x00000004L
+#define TCP_DSM_CNTL__LFIFO_RAM_IRRITATOR_DATA_SEL_MASK 0x00000018L
+#define TCP_DSM_CNTL__LFIFO_RAM_IRRITATOR_SINGLE_WRITE_MASK 0x00000020L
+#define TCP_DSM_CNTL__CMD_FIFO_IRRITATOR_DATA_SEL_MASK 0x000000C0L
+#define TCP_DSM_CNTL__CMD_FIFO_IRRITATOR_SINGLE_WRITE_MASK 0x00000100L
+#define TCP_DSM_CNTL__VM_FIFO_IRRITATOR_DATA_SEL_MASK 0x00000600L
+#define TCP_DSM_CNTL__VM_FIFO_IRRITATOR_SINGLE_WRITE_MASK 0x00000800L
+#define TCP_DSM_CNTL__DB_RAM_IRRITATOR_DATA_SEL_MASK 0x00003000L
+#define TCP_DSM_CNTL__DB_RAM_IRRITATOR_SINGLE_WRITE_MASK 0x00004000L
+#define TCP_DSM_CNTL__UTCL1_LFIFO0_IRRITATOR_DATA_SEL_MASK 0x00018000L
+#define TCP_DSM_CNTL__UTCL1_LFIFO0_IRRITATOR_SINGLE_WRITE_MASK 0x00020000L
+#define TCP_DSM_CNTL__UTCL1_LFIFO1_IRRITATOR_DATA_SEL_MASK 0x000C0000L
+#define TCP_DSM_CNTL__UTCL1_LFIFO1_IRRITATOR_SINGLE_WRITE_MASK 0x00100000L
+//TCP_CNTL2
+#define TCP_CNTL2__LS_DISABLE_CLOCKS__SHIFT 0x0
+#define TCP_CNTL2__TCPF_FMT_MGCG_DISABLE__SHIFT 0x8
+#define TCP_CNTL2__TCPI_NEW_MGCG_CTRL_BIT__SHIFT 0xa
+#define TCP_CNTL2__MISS_CLK_DISABLE__SHIFT 0xb
+#define TCP_CNTL2__ADRS_CLK_DISABLE__SHIFT 0xc
+#define TCP_CNTL2__VM_CLK_DISABLE__SHIFT 0xd
+#define TCP_CNTL2__TAGRAM_CLK_DISABLE__SHIFT 0xe
+#define TCP_CNTL2__LEGACY_MGCG_DISABLE__SHIFT 0xf
+#define TCP_CNTL2__MEM_MID_GATE_MGCG_DISABLE__SHIFT 0x13
+#define TCP_CNTL2__UTCL1_MID_GATE_MGCG_DISABLE__SHIFT 0x14
+#define TCP_CNTL2__LS_DISABLE_CLOCKS_MASK 0x000000FFL
+#define TCP_CNTL2__TCPF_FMT_MGCG_DISABLE_MASK 0x00000100L
+#define TCP_CNTL2__TCPI_NEW_MGCG_CTRL_BIT_MASK 0x00000400L
+#define TCP_CNTL2__MISS_CLK_DISABLE_MASK 0x00000800L
+#define TCP_CNTL2__ADRS_CLK_DISABLE_MASK 0x00001000L
+#define TCP_CNTL2__VM_CLK_DISABLE_MASK 0x00002000L
+#define TCP_CNTL2__TAGRAM_CLK_DISABLE_MASK 0x00004000L
+#define TCP_CNTL2__LEGACY_MGCG_DISABLE_MASK 0x00008000L
+#define TCP_CNTL2__MEM_MID_GATE_MGCG_DISABLE_MASK 0x00080000L
+#define TCP_CNTL2__UTCL1_MID_GATE_MGCG_DISABLE_MASK 0x00100000L
+//TCP_UTCL1_CNTL1
+#define TCP_UTCL1_CNTL1__FORCE_4K_L2_RESP__SHIFT 0x0
+#define TCP_UTCL1_CNTL1__GPUVM_64K_DEFAULT__SHIFT 0x1
+#define TCP_UTCL1_CNTL1__GPUVM_PERM_MODE__SHIFT 0x2
+#define TCP_UTCL1_CNTL1__RESP_MODE__SHIFT 0x3
+#define TCP_UTCL1_CNTL1__RESP_FAULT_MODE__SHIFT 0x5
+#define TCP_UTCL1_CNTL1__CLIENTID__SHIFT 0x7
+#define TCP_UTCL1_CNTL1__UTCL1_FGCG_REPEATER_DISABLE__SHIFT 0x10
+#define TCP_UTCL1_CNTL1__REG_INV_VMID__SHIFT 0x13
+#define TCP_UTCL1_CNTL1__REG_INV_ALL_VMID__SHIFT 0x17
+#define TCP_UTCL1_CNTL1__REG_INV_TOGGLE__SHIFT 0x18
+#define TCP_UTCL1_CNTL1__CLIENT_INVALIDATE_ALL_VMID__SHIFT 0x19
+#define TCP_UTCL1_CNTL1__FORCE_MISS__SHIFT 0x1a
+#define TCP_UTCL1_CNTL1__REDUCE_FIFO_DEPTH_BY_2__SHIFT 0x1c
+#define TCP_UTCL1_CNTL1__REDUCE_CACHE_SIZE_BY_2__SHIFT 0x1e
+#define TCP_UTCL1_CNTL1__FORCE_4K_L2_RESP_MASK 0x00000001L
+#define TCP_UTCL1_CNTL1__GPUVM_64K_DEFAULT_MASK 0x00000002L
+#define TCP_UTCL1_CNTL1__GPUVM_PERM_MODE_MASK 0x00000004L
+#define TCP_UTCL1_CNTL1__RESP_MODE_MASK 0x00000018L
+#define TCP_UTCL1_CNTL1__RESP_FAULT_MODE_MASK 0x00000060L
+#define TCP_UTCL1_CNTL1__CLIENTID_MASK 0x0000FF80L
+#define TCP_UTCL1_CNTL1__UTCL1_FGCG_REPEATER_DISABLE_MASK 0x00010000L
+#define TCP_UTCL1_CNTL1__REG_INV_VMID_MASK 0x00780000L
+#define TCP_UTCL1_CNTL1__REG_INV_ALL_VMID_MASK 0x00800000L
+#define TCP_UTCL1_CNTL1__REG_INV_TOGGLE_MASK 0x01000000L
+#define TCP_UTCL1_CNTL1__CLIENT_INVALIDATE_ALL_VMID_MASK 0x02000000L
+#define TCP_UTCL1_CNTL1__FORCE_MISS_MASK 0x04000000L
+#define TCP_UTCL1_CNTL1__REDUCE_FIFO_DEPTH_BY_2_MASK 0x30000000L
+#define TCP_UTCL1_CNTL1__REDUCE_CACHE_SIZE_BY_2_MASK 0xC0000000L
+//TCP_UTCL1_CNTL2
+#define TCP_UTCL1_CNTL2__SPARE__SHIFT 0x0
+#define TCP_UTCL1_CNTL2__MTYPE_OVRD_DIS__SHIFT 0x9
+#define TCP_UTCL1_CNTL2__ANY_LINE_VALID__SHIFT 0xa
+#define TCP_UTCL1_CNTL2__GPUVM_INV_MODE__SHIFT 0xc
+#define TCP_UTCL1_CNTL2__FORCE_SNOOP__SHIFT 0xe
+#define TCP_UTCL1_CNTL2__FORCE_GPUVM_INV_ACK__SHIFT 0xf
+#define TCP_UTCL1_CNTL2__FORCE_FRAG_2M_TO_64K__SHIFT 0x1a
+#define TCP_UTCL1_CNTL2__THRASHING_TIMEOUT_PROTECT_ENABLE__SHIFT 0x1b
+#define TCP_UTCL1_CNTL2__THRASHING_ENABLE__SHIFT 0x1c
+#define TCP_UTCL1_CNTL2__SPARE_MASK 0x000000FFL
+#define TCP_UTCL1_CNTL2__MTYPE_OVRD_DIS_MASK 0x00000200L
+#define TCP_UTCL1_CNTL2__ANY_LINE_VALID_MASK 0x00000400L
+#define TCP_UTCL1_CNTL2__GPUVM_INV_MODE_MASK 0x00001000L
+#define TCP_UTCL1_CNTL2__FORCE_SNOOP_MASK 0x00004000L
+#define TCP_UTCL1_CNTL2__FORCE_GPUVM_INV_ACK_MASK 0x00008000L
+#define TCP_UTCL1_CNTL2__FORCE_FRAG_2M_TO_64K_MASK 0x04000000L
+#define TCP_UTCL1_CNTL2__THRASHING_TIMEOUT_PROTECT_ENABLE_MASK 0x08000000L
+#define TCP_UTCL1_CNTL2__THRASHING_ENABLE_MASK 0x10000000L
+//TCP_UTCL1_STATUS
+#define TCP_UTCL1_STATUS__FAULT_DETECTED__SHIFT 0x0
+#define TCP_UTCL1_STATUS__RETRY_DETECTED__SHIFT 0x1
+#define TCP_UTCL1_STATUS__PRT_DETECTED__SHIFT 0x2
+#define TCP_UTCL1_STATUS__TIMEOUT_DETECTED__SHIFT 0x3
+#define TCP_UTCL1_STATUS__FAULT_DETECTED_MASK 0x00000001L
+#define TCP_UTCL1_STATUS__RETRY_DETECTED_MASK 0x00000002L
+#define TCP_UTCL1_STATUS__PRT_DETECTED_MASK 0x00000004L
+#define TCP_UTCL1_STATUS__TIMEOUT_DETECTED_MASK 0x00000008L
+//TCP_DSM_CNTL2
+#define TCP_DSM_CNTL2__CACHE_RAM_ENABLE_ERROR_INJECT__SHIFT 0x0
+#define TCP_DSM_CNTL2__CACHE_RAM_SELECT_INJECT_DELAY__SHIFT 0x2
+#define TCP_DSM_CNTL2__LFIFO_RAM_ENABLE_ERROR_INJECT__SHIFT 0x3
+#define TCP_DSM_CNTL2__LFIFO_RAM_SELECT_INJECT_DELAY__SHIFT 0x5
+#define TCP_DSM_CNTL2__CMD_FIFO_ENABLE_ERROR_INJECT__SHIFT 0x6
+#define TCP_DSM_CNTL2__CMD_FIFO_SELECT_INJECT_DELAY__SHIFT 0x8
+#define TCP_DSM_CNTL2__VM_FIFO_ENABLE_ERROR_INJECT__SHIFT 0x9
+#define TCP_DSM_CNTL2__VM_FIFO_SELECT_INJECT_DELAY__SHIFT 0xb
+#define TCP_DSM_CNTL2__DB_RAM_ENABLE_ERROR_INJECT__SHIFT 0xc
+#define TCP_DSM_CNTL2__DB_RAM_SELECT_INJECT_DELAY__SHIFT 0xe
+#define TCP_DSM_CNTL2__UTCL1_LFIFO0_ENABLE_ERROR_INJECT__SHIFT 0xf
+#define TCP_DSM_CNTL2__UTCL1_LFIFO0_SELECT_INJECT_DELAY__SHIFT 0x11
+#define TCP_DSM_CNTL2__UTCL1_LFIFO1_ENABLE_ERROR_INJECT__SHIFT 0x12
+#define TCP_DSM_CNTL2__UTCL1_LFIFO1_SELECT_INJECT_DELAY__SHIFT 0x14
+#define TCP_DSM_CNTL2__TCP_INJECT_DELAY__SHIFT 0x1a
+#define TCP_DSM_CNTL2__CACHE_RAM_ENABLE_ERROR_INJECT_MASK 0x00000003L
+#define TCP_DSM_CNTL2__CACHE_RAM_SELECT_INJECT_DELAY_MASK 0x00000004L
+#define TCP_DSM_CNTL2__LFIFO_RAM_ENABLE_ERROR_INJECT_MASK 0x00000018L
+#define TCP_DSM_CNTL2__LFIFO_RAM_SELECT_INJECT_DELAY_MASK 0x00000020L
+#define TCP_DSM_CNTL2__CMD_FIFO_ENABLE_ERROR_INJECT_MASK 0x000000C0L
+#define TCP_DSM_CNTL2__CMD_FIFO_SELECT_INJECT_DELAY_MASK 0x00000100L
+#define TCP_DSM_CNTL2__VM_FIFO_ENABLE_ERROR_INJECT_MASK 0x00000600L
+#define TCP_DSM_CNTL2__VM_FIFO_SELECT_INJECT_DELAY_MASK 0x00000800L
+#define TCP_DSM_CNTL2__DB_RAM_ENABLE_ERROR_INJECT_MASK 0x00003000L
+#define TCP_DSM_CNTL2__DB_RAM_SELECT_INJECT_DELAY_MASK 0x00004000L
+#define TCP_DSM_CNTL2__UTCL1_LFIFO0_ENABLE_ERROR_INJECT_MASK 0x00018000L
+#define TCP_DSM_CNTL2__UTCL1_LFIFO0_SELECT_INJECT_DELAY_MASK 0x00020000L
+#define TCP_DSM_CNTL2__UTCL1_LFIFO1_ENABLE_ERROR_INJECT_MASK 0x000C0000L
+#define TCP_DSM_CNTL2__UTCL1_LFIFO1_SELECT_INJECT_DELAY_MASK 0x00100000L
+#define TCP_DSM_CNTL2__TCP_INJECT_DELAY_MASK 0xFC000000L
+//TCP_PERFCOUNTER_FILTER
+#define TCP_PERFCOUNTER_FILTER__BUFFER__SHIFT 0x0
+#define TCP_PERFCOUNTER_FILTER__FLAT__SHIFT 0x1
+#define TCP_PERFCOUNTER_FILTER__DIM__SHIFT 0x2
+#define TCP_PERFCOUNTER_FILTER__DATA_FORMAT__SHIFT 0x5
+#define TCP_PERFCOUNTER_FILTER__NUM_FORMAT__SHIFT 0xb
+#define TCP_PERFCOUNTER_FILTER__SW_MODE__SHIFT 0xf
+#define TCP_PERFCOUNTER_FILTER__NUM_SAMPLES__SHIFT 0x14
+#define TCP_PERFCOUNTER_FILTER__OPCODE_TYPE__SHIFT 0x16
+#define TCP_PERFCOUNTER_FILTER__GLC__SHIFT 0x19
+#define TCP_PERFCOUNTER_FILTER__SLC__SHIFT 0x1a
+#define TCP_PERFCOUNTER_FILTER__COMPRESSION_ENABLE__SHIFT 0x1b
+#define TCP_PERFCOUNTER_FILTER__ADDR_MODE__SHIFT 0x1c
+#define TCP_PERFCOUNTER_FILTER__BUFFER_MASK 0x00000001L
+#define TCP_PERFCOUNTER_FILTER__FLAT_MASK 0x00000002L
+#define TCP_PERFCOUNTER_FILTER__DIM_MASK 0x0000001CL
+#define TCP_PERFCOUNTER_FILTER__DATA_FORMAT_MASK 0x000007E0L
+#define TCP_PERFCOUNTER_FILTER__NUM_FORMAT_MASK 0x00007800L
+#define TCP_PERFCOUNTER_FILTER__SW_MODE_MASK 0x000F8000L
+#define TCP_PERFCOUNTER_FILTER__NUM_SAMPLES_MASK 0x00300000L
+#define TCP_PERFCOUNTER_FILTER__OPCODE_TYPE_MASK 0x01C00000L
+#define TCP_PERFCOUNTER_FILTER__GLC_MASK 0x02000000L
+#define TCP_PERFCOUNTER_FILTER__SLC_MASK 0x04000000L
+#define TCP_PERFCOUNTER_FILTER__COMPRESSION_ENABLE_MASK 0x08000000L
+#define TCP_PERFCOUNTER_FILTER__ADDR_MODE_MASK 0x70000000L
+//TCP_PERFCOUNTER_FILTER_EN
+#define TCP_PERFCOUNTER_FILTER_EN__BUFFER__SHIFT 0x0
+#define TCP_PERFCOUNTER_FILTER_EN__FLAT__SHIFT 0x1
+#define TCP_PERFCOUNTER_FILTER_EN__DIM__SHIFT 0x2
+#define TCP_PERFCOUNTER_FILTER_EN__DATA_FORMAT__SHIFT 0x3
+#define TCP_PERFCOUNTER_FILTER_EN__NUM_FORMAT__SHIFT 0x4
+#define TCP_PERFCOUNTER_FILTER_EN__SW_MODE__SHIFT 0x5
+#define TCP_PERFCOUNTER_FILTER_EN__NUM_SAMPLES__SHIFT 0x6
+#define TCP_PERFCOUNTER_FILTER_EN__OPCODE_TYPE__SHIFT 0x7
+#define TCP_PERFCOUNTER_FILTER_EN__GLC__SHIFT 0x8
+#define TCP_PERFCOUNTER_FILTER_EN__SLC__SHIFT 0x9
+#define TCP_PERFCOUNTER_FILTER_EN__COMPRESSION_ENABLE__SHIFT 0xa
+#define TCP_PERFCOUNTER_FILTER_EN__ADDR_MODE__SHIFT 0xb
+#define TCP_PERFCOUNTER_FILTER_EN__BUFFER_MASK 0x00000001L
+#define TCP_PERFCOUNTER_FILTER_EN__FLAT_MASK 0x00000002L
+#define TCP_PERFCOUNTER_FILTER_EN__DIM_MASK 0x00000004L
+#define TCP_PERFCOUNTER_FILTER_EN__DATA_FORMAT_MASK 0x00000008L
+#define TCP_PERFCOUNTER_FILTER_EN__NUM_FORMAT_MASK 0x00000010L
+#define TCP_PERFCOUNTER_FILTER_EN__SW_MODE_MASK 0x00000020L
+#define TCP_PERFCOUNTER_FILTER_EN__NUM_SAMPLES_MASK 0x00000040L
+#define TCP_PERFCOUNTER_FILTER_EN__OPCODE_TYPE_MASK 0x00000080L
+#define TCP_PERFCOUNTER_FILTER_EN__GLC_MASK 0x00000100L
+#define TCP_PERFCOUNTER_FILTER_EN__SLC_MASK 0x00000200L
+#define TCP_PERFCOUNTER_FILTER_EN__COMPRESSION_ENABLE_MASK 0x00000400L
+#define TCP_PERFCOUNTER_FILTER_EN__ADDR_MODE_MASK 0x00000800L
+
+
+// addressBlock: xcd0_gc_gdspdec
+//GDS_VMID0_BASE
+#define GDS_VMID0_BASE__BASE__SHIFT 0x0
+#define GDS_VMID0_BASE__BASE_MASK 0x0000FFFFL
+//GDS_VMID0_SIZE
+#define GDS_VMID0_SIZE__SIZE__SHIFT 0x0
+#define GDS_VMID0_SIZE__SIZE_MASK 0x0001FFFFL
+//GDS_VMID1_BASE
+#define GDS_VMID1_BASE__BASE__SHIFT 0x0
+#define GDS_VMID1_BASE__BASE_MASK 0x0000FFFFL
+//GDS_VMID1_SIZE
+#define GDS_VMID1_SIZE__SIZE__SHIFT 0x0
+#define GDS_VMID1_SIZE__SIZE_MASK 0x0001FFFFL
+//GDS_VMID2_BASE
+#define GDS_VMID2_BASE__BASE__SHIFT 0x0
+#define GDS_VMID2_BASE__BASE_MASK 0x0000FFFFL
+//GDS_VMID2_SIZE
+#define GDS_VMID2_SIZE__SIZE__SHIFT 0x0
+#define GDS_VMID2_SIZE__SIZE_MASK 0x0001FFFFL
+//GDS_VMID3_BASE
+#define GDS_VMID3_BASE__BASE__SHIFT 0x0
+#define GDS_VMID3_BASE__BASE_MASK 0x0000FFFFL
+//GDS_VMID3_SIZE
+#define GDS_VMID3_SIZE__SIZE__SHIFT 0x0
+#define GDS_VMID3_SIZE__SIZE_MASK 0x0001FFFFL
+//GDS_VMID4_BASE
+#define GDS_VMID4_BASE__BASE__SHIFT 0x0
+#define GDS_VMID4_BASE__BASE_MASK 0x0000FFFFL
+//GDS_VMID4_SIZE
+#define GDS_VMID4_SIZE__SIZE__SHIFT 0x0
+#define GDS_VMID4_SIZE__SIZE_MASK 0x0001FFFFL
+//GDS_VMID5_BASE
+#define GDS_VMID5_BASE__BASE__SHIFT 0x0
+#define GDS_VMID5_BASE__BASE_MASK 0x0000FFFFL
+//GDS_VMID5_SIZE
+#define GDS_VMID5_SIZE__SIZE__SHIFT 0x0
+#define GDS_VMID5_SIZE__SIZE_MASK 0x0001FFFFL
+//GDS_VMID6_BASE
+#define GDS_VMID6_BASE__BASE__SHIFT 0x0
+#define GDS_VMID6_BASE__BASE_MASK 0x0000FFFFL
+//GDS_VMID6_SIZE
+#define GDS_VMID6_SIZE__SIZE__SHIFT 0x0
+#define GDS_VMID6_SIZE__SIZE_MASK 0x0001FFFFL
+//GDS_VMID7_BASE
+#define GDS_VMID7_BASE__BASE__SHIFT 0x0
+#define GDS_VMID7_BASE__BASE_MASK 0x0000FFFFL
+//GDS_VMID7_SIZE
+#define GDS_VMID7_SIZE__SIZE__SHIFT 0x0
+#define GDS_VMID7_SIZE__SIZE_MASK 0x0001FFFFL
+//GDS_VMID8_BASE
+#define GDS_VMID8_BASE__BASE__SHIFT 0x0
+#define GDS_VMID8_BASE__BASE_MASK 0x0000FFFFL
+//GDS_VMID8_SIZE
+#define GDS_VMID8_SIZE__SIZE__SHIFT 0x0
+#define GDS_VMID8_SIZE__SIZE_MASK 0x0001FFFFL
+//GDS_VMID9_BASE
+#define GDS_VMID9_BASE__BASE__SHIFT 0x0
+#define GDS_VMID9_BASE__BASE_MASK 0x0000FFFFL
+//GDS_VMID9_SIZE
+#define GDS_VMID9_SIZE__SIZE__SHIFT 0x0
+#define GDS_VMID9_SIZE__SIZE_MASK 0x0001FFFFL
+//GDS_VMID10_BASE
+#define GDS_VMID10_BASE__BASE__SHIFT 0x0
+#define GDS_VMID10_BASE__BASE_MASK 0x0000FFFFL
+//GDS_VMID10_SIZE
+#define GDS_VMID10_SIZE__SIZE__SHIFT 0x0
+#define GDS_VMID10_SIZE__SIZE_MASK 0x0001FFFFL
+//GDS_VMID11_BASE
+#define GDS_VMID11_BASE__BASE__SHIFT 0x0
+#define GDS_VMID11_BASE__BASE_MASK 0x0000FFFFL
+//GDS_VMID11_SIZE
+#define GDS_VMID11_SIZE__SIZE__SHIFT 0x0
+#define GDS_VMID11_SIZE__SIZE_MASK 0x0001FFFFL
+//GDS_VMID12_BASE
+#define GDS_VMID12_BASE__BASE__SHIFT 0x0
+#define GDS_VMID12_BASE__BASE_MASK 0x0000FFFFL
+//GDS_VMID12_SIZE
+#define GDS_VMID12_SIZE__SIZE__SHIFT 0x0
+#define GDS_VMID12_SIZE__SIZE_MASK 0x0001FFFFL
+//GDS_VMID13_BASE
+#define GDS_VMID13_BASE__BASE__SHIFT 0x0
+#define GDS_VMID13_BASE__BASE_MASK 0x0000FFFFL
+//GDS_VMID13_SIZE
+#define GDS_VMID13_SIZE__SIZE__SHIFT 0x0
+#define GDS_VMID13_SIZE__SIZE_MASK 0x0001FFFFL
+//GDS_VMID14_BASE
+#define GDS_VMID14_BASE__BASE__SHIFT 0x0
+#define GDS_VMID14_BASE__BASE_MASK 0x0000FFFFL
+//GDS_VMID14_SIZE
+#define GDS_VMID14_SIZE__SIZE__SHIFT 0x0
+#define GDS_VMID14_SIZE__SIZE_MASK 0x0001FFFFL
+//GDS_VMID15_BASE
+#define GDS_VMID15_BASE__BASE__SHIFT 0x0
+#define GDS_VMID15_BASE__BASE_MASK 0x0000FFFFL
+//GDS_VMID15_SIZE
+#define GDS_VMID15_SIZE__SIZE__SHIFT 0x0
+#define GDS_VMID15_SIZE__SIZE_MASK 0x0001FFFFL
+//GDS_GWS_VMID0
+#define GDS_GWS_VMID0__BASE__SHIFT 0x0
+#define GDS_GWS_VMID0__SIZE__SHIFT 0x10
+#define GDS_GWS_VMID0__BASE_MASK 0x0000003FL
+#define GDS_GWS_VMID0__SIZE_MASK 0x007F0000L
+//GDS_GWS_VMID1
+#define GDS_GWS_VMID1__BASE__SHIFT 0x0
+#define GDS_GWS_VMID1__SIZE__SHIFT 0x10
+#define GDS_GWS_VMID1__BASE_MASK 0x0000003FL
+#define GDS_GWS_VMID1__SIZE_MASK 0x007F0000L
+//GDS_GWS_VMID2
+#define GDS_GWS_VMID2__BASE__SHIFT 0x0
+#define GDS_GWS_VMID2__SIZE__SHIFT 0x10
+#define GDS_GWS_VMID2__BASE_MASK 0x0000003FL
+#define GDS_GWS_VMID2__SIZE_MASK 0x007F0000L
+//GDS_GWS_VMID3
+#define GDS_GWS_VMID3__BASE__SHIFT 0x0
+#define GDS_GWS_VMID3__SIZE__SHIFT 0x10
+#define GDS_GWS_VMID3__BASE_MASK 0x0000003FL
+#define GDS_GWS_VMID3__SIZE_MASK 0x007F0000L
+//GDS_GWS_VMID4
+#define GDS_GWS_VMID4__BASE__SHIFT 0x0
+#define GDS_GWS_VMID4__SIZE__SHIFT 0x10
+#define GDS_GWS_VMID4__BASE_MASK 0x0000003FL
+#define GDS_GWS_VMID4__SIZE_MASK 0x007F0000L
+//GDS_GWS_VMID5
+#define GDS_GWS_VMID5__BASE__SHIFT 0x0
+#define GDS_GWS_VMID5__SIZE__SHIFT 0x10
+#define GDS_GWS_VMID5__BASE_MASK 0x0000003FL
+#define GDS_GWS_VMID5__SIZE_MASK 0x007F0000L
+//GDS_GWS_VMID6
+#define GDS_GWS_VMID6__BASE__SHIFT 0x0
+#define GDS_GWS_VMID6__SIZE__SHIFT 0x10
+#define GDS_GWS_VMID6__BASE_MASK 0x0000003FL
+#define GDS_GWS_VMID6__SIZE_MASK 0x007F0000L
+//GDS_GWS_VMID7
+#define GDS_GWS_VMID7__BASE__SHIFT 0x0
+#define GDS_GWS_VMID7__SIZE__SHIFT 0x10
+#define GDS_GWS_VMID7__BASE_MASK 0x0000003FL
+#define GDS_GWS_VMID7__SIZE_MASK 0x007F0000L
+//GDS_GWS_VMID8
+#define GDS_GWS_VMID8__BASE__SHIFT 0x0
+#define GDS_GWS_VMID8__SIZE__SHIFT 0x10
+#define GDS_GWS_VMID8__BASE_MASK 0x0000003FL
+#define GDS_GWS_VMID8__SIZE_MASK 0x007F0000L
+//GDS_GWS_VMID9
+#define GDS_GWS_VMID9__BASE__SHIFT 0x0
+#define GDS_GWS_VMID9__SIZE__SHIFT 0x10
+#define GDS_GWS_VMID9__BASE_MASK 0x0000003FL
+#define GDS_GWS_VMID9__SIZE_MASK 0x007F0000L
+//GDS_GWS_VMID10
+#define GDS_GWS_VMID10__BASE__SHIFT 0x0
+#define GDS_GWS_VMID10__SIZE__SHIFT 0x10
+#define GDS_GWS_VMID10__BASE_MASK 0x0000003FL
+#define GDS_GWS_VMID10__SIZE_MASK 0x007F0000L
+//GDS_GWS_VMID11
+#define GDS_GWS_VMID11__BASE__SHIFT 0x0
+#define GDS_GWS_VMID11__SIZE__SHIFT 0x10
+#define GDS_GWS_VMID11__BASE_MASK 0x0000003FL
+#define GDS_GWS_VMID11__SIZE_MASK 0x007F0000L
+//GDS_GWS_VMID12
+#define GDS_GWS_VMID12__BASE__SHIFT 0x0
+#define GDS_GWS_VMID12__SIZE__SHIFT 0x10
+#define GDS_GWS_VMID12__BASE_MASK 0x0000003FL
+#define GDS_GWS_VMID12__SIZE_MASK 0x007F0000L
+//GDS_GWS_VMID13
+#define GDS_GWS_VMID13__BASE__SHIFT 0x0
+#define GDS_GWS_VMID13__SIZE__SHIFT 0x10
+#define GDS_GWS_VMID13__BASE_MASK 0x0000003FL
+#define GDS_GWS_VMID13__SIZE_MASK 0x007F0000L
+//GDS_GWS_VMID14
+#define GDS_GWS_VMID14__BASE__SHIFT 0x0
+#define GDS_GWS_VMID14__SIZE__SHIFT 0x10
+#define GDS_GWS_VMID14__BASE_MASK 0x0000003FL
+#define GDS_GWS_VMID14__SIZE_MASK 0x007F0000L
+//GDS_GWS_VMID15
+#define GDS_GWS_VMID15__BASE__SHIFT 0x0
+#define GDS_GWS_VMID15__SIZE__SHIFT 0x10
+#define GDS_GWS_VMID15__BASE_MASK 0x0000003FL
+#define GDS_GWS_VMID15__SIZE_MASK 0x007F0000L
+//GDS_OA_VMID0
+#define GDS_OA_VMID0__MASK__SHIFT 0x0
+#define GDS_OA_VMID0__UNUSED__SHIFT 0x10
+#define GDS_OA_VMID0__MASK_MASK 0x0000FFFFL
+#define GDS_OA_VMID0__UNUSED_MASK 0xFFFF0000L
+//GDS_OA_VMID1
+#define GDS_OA_VMID1__MASK__SHIFT 0x0
+#define GDS_OA_VMID1__UNUSED__SHIFT 0x10
+#define GDS_OA_VMID1__MASK_MASK 0x0000FFFFL
+#define GDS_OA_VMID1__UNUSED_MASK 0xFFFF0000L
+//GDS_OA_VMID2
+#define GDS_OA_VMID2__MASK__SHIFT 0x0
+#define GDS_OA_VMID2__UNUSED__SHIFT 0x10
+#define GDS_OA_VMID2__MASK_MASK 0x0000FFFFL
+#define GDS_OA_VMID2__UNUSED_MASK 0xFFFF0000L
+//GDS_OA_VMID3
+#define GDS_OA_VMID3__MASK__SHIFT 0x0
+#define GDS_OA_VMID3__UNUSED__SHIFT 0x10
+#define GDS_OA_VMID3__MASK_MASK 0x0000FFFFL
+#define GDS_OA_VMID3__UNUSED_MASK 0xFFFF0000L
+//GDS_OA_VMID4
+#define GDS_OA_VMID4__MASK__SHIFT 0x0
+#define GDS_OA_VMID4__UNUSED__SHIFT 0x10
+#define GDS_OA_VMID4__MASK_MASK 0x0000FFFFL
+#define GDS_OA_VMID4__UNUSED_MASK 0xFFFF0000L
+//GDS_OA_VMID5
+#define GDS_OA_VMID5__MASK__SHIFT 0x0
+#define GDS_OA_VMID5__UNUSED__SHIFT 0x10
+#define GDS_OA_VMID5__MASK_MASK 0x0000FFFFL
+#define GDS_OA_VMID5__UNUSED_MASK 0xFFFF0000L
+//GDS_OA_VMID6
+#define GDS_OA_VMID6__MASK__SHIFT 0x0
+#define GDS_OA_VMID6__UNUSED__SHIFT 0x10
+#define GDS_OA_VMID6__MASK_MASK 0x0000FFFFL
+#define GDS_OA_VMID6__UNUSED_MASK 0xFFFF0000L
+//GDS_OA_VMID7
+#define GDS_OA_VMID7__MASK__SHIFT 0x0
+#define GDS_OA_VMID7__UNUSED__SHIFT 0x10
+#define GDS_OA_VMID7__MASK_MASK 0x0000FFFFL
+#define GDS_OA_VMID7__UNUSED_MASK 0xFFFF0000L
+//GDS_OA_VMID8
+#define GDS_OA_VMID8__MASK__SHIFT 0x0
+#define GDS_OA_VMID8__UNUSED__SHIFT 0x10
+#define GDS_OA_VMID8__MASK_MASK 0x0000FFFFL
+#define GDS_OA_VMID8__UNUSED_MASK 0xFFFF0000L
+//GDS_OA_VMID9
+#define GDS_OA_VMID9__MASK__SHIFT 0x0
+#define GDS_OA_VMID9__UNUSED__SHIFT 0x10
+#define GDS_OA_VMID9__MASK_MASK 0x0000FFFFL
+#define GDS_OA_VMID9__UNUSED_MASK 0xFFFF0000L
+//GDS_OA_VMID10
+#define GDS_OA_VMID10__MASK__SHIFT 0x0
+#define GDS_OA_VMID10__UNUSED__SHIFT 0x10
+#define GDS_OA_VMID10__MASK_MASK 0x0000FFFFL
+#define GDS_OA_VMID10__UNUSED_MASK 0xFFFF0000L
+//GDS_OA_VMID11
+#define GDS_OA_VMID11__MASK__SHIFT 0x0
+#define GDS_OA_VMID11__UNUSED__SHIFT 0x10
+#define GDS_OA_VMID11__MASK_MASK 0x0000FFFFL
+#define GDS_OA_VMID11__UNUSED_MASK 0xFFFF0000L
+//GDS_OA_VMID12
+#define GDS_OA_VMID12__MASK__SHIFT 0x0
+#define GDS_OA_VMID12__UNUSED__SHIFT 0x10
+#define GDS_OA_VMID12__MASK_MASK 0x0000FFFFL
+#define GDS_OA_VMID12__UNUSED_MASK 0xFFFF0000L
+//GDS_OA_VMID13
+#define GDS_OA_VMID13__MASK__SHIFT 0x0
+#define GDS_OA_VMID13__UNUSED__SHIFT 0x10
+#define GDS_OA_VMID13__MASK_MASK 0x0000FFFFL
+#define GDS_OA_VMID13__UNUSED_MASK 0xFFFF0000L
+//GDS_OA_VMID14
+#define GDS_OA_VMID14__MASK__SHIFT 0x0
+#define GDS_OA_VMID14__UNUSED__SHIFT 0x10
+#define GDS_OA_VMID14__MASK_MASK 0x0000FFFFL
+#define GDS_OA_VMID14__UNUSED_MASK 0xFFFF0000L
+//GDS_OA_VMID15
+#define GDS_OA_VMID15__MASK__SHIFT 0x0
+#define GDS_OA_VMID15__UNUSED__SHIFT 0x10
+#define GDS_OA_VMID15__MASK_MASK 0x0000FFFFL
+#define GDS_OA_VMID15__UNUSED_MASK 0xFFFF0000L
+//GDS_GWS_RESET0
+#define GDS_GWS_RESET0__RESOURCE0_RESET__SHIFT 0x0
+#define GDS_GWS_RESET0__RESOURCE1_RESET__SHIFT 0x1
+#define GDS_GWS_RESET0__RESOURCE2_RESET__SHIFT 0x2
+#define GDS_GWS_RESET0__RESOURCE3_RESET__SHIFT 0x3
+#define GDS_GWS_RESET0__RESOURCE4_RESET__SHIFT 0x4
+#define GDS_GWS_RESET0__RESOURCE5_RESET__SHIFT 0x5
+#define GDS_GWS_RESET0__RESOURCE6_RESET__SHIFT 0x6
+#define GDS_GWS_RESET0__RESOURCE7_RESET__SHIFT 0x7
+#define GDS_GWS_RESET0__RESOURCE8_RESET__SHIFT 0x8
+#define GDS_GWS_RESET0__RESOURCE9_RESET__SHIFT 0x9
+#define GDS_GWS_RESET0__RESOURCE10_RESET__SHIFT 0xa
+#define GDS_GWS_RESET0__RESOURCE11_RESET__SHIFT 0xb
+#define GDS_GWS_RESET0__RESOURCE12_RESET__SHIFT 0xc
+#define GDS_GWS_RESET0__RESOURCE13_RESET__SHIFT 0xd
+#define GDS_GWS_RESET0__RESOURCE14_RESET__SHIFT 0xe
+#define GDS_GWS_RESET0__RESOURCE15_RESET__SHIFT 0xf
+#define GDS_GWS_RESET0__RESOURCE16_RESET__SHIFT 0x10
+#define GDS_GWS_RESET0__RESOURCE17_RESET__SHIFT 0x11
+#define GDS_GWS_RESET0__RESOURCE18_RESET__SHIFT 0x12
+#define GDS_GWS_RESET0__RESOURCE19_RESET__SHIFT 0x13
+#define GDS_GWS_RESET0__RESOURCE20_RESET__SHIFT 0x14
+#define GDS_GWS_RESET0__RESOURCE21_RESET__SHIFT 0x15
+#define GDS_GWS_RESET0__RESOURCE22_RESET__SHIFT 0x16
+#define GDS_GWS_RESET0__RESOURCE23_RESET__SHIFT 0x17
+#define GDS_GWS_RESET0__RESOURCE24_RESET__SHIFT 0x18
+#define GDS_GWS_RESET0__RESOURCE25_RESET__SHIFT 0x19
+#define GDS_GWS_RESET0__RESOURCE26_RESET__SHIFT 0x1a
+#define GDS_GWS_RESET0__RESOURCE27_RESET__SHIFT 0x1b
+#define GDS_GWS_RESET0__RESOURCE28_RESET__SHIFT 0x1c
+#define GDS_GWS_RESET0__RESOURCE29_RESET__SHIFT 0x1d
+#define GDS_GWS_RESET0__RESOURCE30_RESET__SHIFT 0x1e
+#define GDS_GWS_RESET0__RESOURCE31_RESET__SHIFT 0x1f
+#define GDS_GWS_RESET0__RESOURCE0_RESET_MASK 0x00000001L
+#define GDS_GWS_RESET0__RESOURCE1_RESET_MASK 0x00000002L
+#define GDS_GWS_RESET0__RESOURCE2_RESET_MASK 0x00000004L
+#define GDS_GWS_RESET0__RESOURCE3_RESET_MASK 0x00000008L
+#define GDS_GWS_RESET0__RESOURCE4_RESET_MASK 0x00000010L
+#define GDS_GWS_RESET0__RESOURCE5_RESET_MASK 0x00000020L
+#define GDS_GWS_RESET0__RESOURCE6_RESET_MASK 0x00000040L
+#define GDS_GWS_RESET0__RESOURCE7_RESET_MASK 0x00000080L
+#define GDS_GWS_RESET0__RESOURCE8_RESET_MASK 0x00000100L
+#define GDS_GWS_RESET0__RESOURCE9_RESET_MASK 0x00000200L
+#define GDS_GWS_RESET0__RESOURCE10_RESET_MASK 0x00000400L
+#define GDS_GWS_RESET0__RESOURCE11_RESET_MASK 0x00000800L
+#define GDS_GWS_RESET0__RESOURCE12_RESET_MASK 0x00001000L
+#define GDS_GWS_RESET0__RESOURCE13_RESET_MASK 0x00002000L
+#define GDS_GWS_RESET0__RESOURCE14_RESET_MASK 0x00004000L
+#define GDS_GWS_RESET0__RESOURCE15_RESET_MASK 0x00008000L
+#define GDS_GWS_RESET0__RESOURCE16_RESET_MASK 0x00010000L
+#define GDS_GWS_RESET0__RESOURCE17_RESET_MASK 0x00020000L
+#define GDS_GWS_RESET0__RESOURCE18_RESET_MASK 0x00040000L
+#define GDS_GWS_RESET0__RESOURCE19_RESET_MASK 0x00080000L
+#define GDS_GWS_RESET0__RESOURCE20_RESET_MASK 0x00100000L
+#define GDS_GWS_RESET0__RESOURCE21_RESET_MASK 0x00200000L
+#define GDS_GWS_RESET0__RESOURCE22_RESET_MASK 0x00400000L
+#define GDS_GWS_RESET0__RESOURCE23_RESET_MASK 0x00800000L
+#define GDS_GWS_RESET0__RESOURCE24_RESET_MASK 0x01000000L
+#define GDS_GWS_RESET0__RESOURCE25_RESET_MASK 0x02000000L
+#define GDS_GWS_RESET0__RESOURCE26_RESET_MASK 0x04000000L
+#define GDS_GWS_RESET0__RESOURCE27_RESET_MASK 0x08000000L
+#define GDS_GWS_RESET0__RESOURCE28_RESET_MASK 0x10000000L
+#define GDS_GWS_RESET0__RESOURCE29_RESET_MASK 0x20000000L
+#define GDS_GWS_RESET0__RESOURCE30_RESET_MASK 0x40000000L
+#define GDS_GWS_RESET0__RESOURCE31_RESET_MASK 0x80000000L
+//GDS_GWS_RESET1
+#define GDS_GWS_RESET1__RESOURCE32_RESET__SHIFT 0x0
+#define GDS_GWS_RESET1__RESOURCE33_RESET__SHIFT 0x1
+#define GDS_GWS_RESET1__RESOURCE34_RESET__SHIFT 0x2
+#define GDS_GWS_RESET1__RESOURCE35_RESET__SHIFT 0x3
+#define GDS_GWS_RESET1__RESOURCE36_RESET__SHIFT 0x4
+#define GDS_GWS_RESET1__RESOURCE37_RESET__SHIFT 0x5
+#define GDS_GWS_RESET1__RESOURCE38_RESET__SHIFT 0x6
+#define GDS_GWS_RESET1__RESOURCE39_RESET__SHIFT 0x7
+#define GDS_GWS_RESET1__RESOURCE40_RESET__SHIFT 0x8
+#define GDS_GWS_RESET1__RESOURCE41_RESET__SHIFT 0x9
+#define GDS_GWS_RESET1__RESOURCE42_RESET__SHIFT 0xa
+#define GDS_GWS_RESET1__RESOURCE43_RESET__SHIFT 0xb
+#define GDS_GWS_RESET1__RESOURCE44_RESET__SHIFT 0xc
+#define GDS_GWS_RESET1__RESOURCE45_RESET__SHIFT 0xd
+#define GDS_GWS_RESET1__RESOURCE46_RESET__SHIFT 0xe
+#define GDS_GWS_RESET1__RESOURCE47_RESET__SHIFT 0xf
+#define GDS_GWS_RESET1__RESOURCE48_RESET__SHIFT 0x10
+#define GDS_GWS_RESET1__RESOURCE49_RESET__SHIFT 0x11
+#define GDS_GWS_RESET1__RESOURCE50_RESET__SHIFT 0x12
+#define GDS_GWS_RESET1__RESOURCE51_RESET__SHIFT 0x13
+#define GDS_GWS_RESET1__RESOURCE52_RESET__SHIFT 0x14
+#define GDS_GWS_RESET1__RESOURCE53_RESET__SHIFT 0x15
+#define GDS_GWS_RESET1__RESOURCE54_RESET__SHIFT 0x16
+#define GDS_GWS_RESET1__RESOURCE55_RESET__SHIFT 0x17
+#define GDS_GWS_RESET1__RESOURCE56_RESET__SHIFT 0x18
+#define GDS_GWS_RESET1__RESOURCE57_RESET__SHIFT 0x19
+#define GDS_GWS_RESET1__RESOURCE58_RESET__SHIFT 0x1a
+#define GDS_GWS_RESET1__RESOURCE59_RESET__SHIFT 0x1b
+#define GDS_GWS_RESET1__RESOURCE60_RESET__SHIFT 0x1c
+#define GDS_GWS_RESET1__RESOURCE61_RESET__SHIFT 0x1d
+#define GDS_GWS_RESET1__RESOURCE62_RESET__SHIFT 0x1e
+#define GDS_GWS_RESET1__RESOURCE63_RESET__SHIFT 0x1f
+#define GDS_GWS_RESET1__RESOURCE32_RESET_MASK 0x00000001L
+#define GDS_GWS_RESET1__RESOURCE33_RESET_MASK 0x00000002L
+#define GDS_GWS_RESET1__RESOURCE34_RESET_MASK 0x00000004L
+#define GDS_GWS_RESET1__RESOURCE35_RESET_MASK 0x00000008L
+#define GDS_GWS_RESET1__RESOURCE36_RESET_MASK 0x00000010L
+#define GDS_GWS_RESET1__RESOURCE37_RESET_MASK 0x00000020L
+#define GDS_GWS_RESET1__RESOURCE38_RESET_MASK 0x00000040L
+#define GDS_GWS_RESET1__RESOURCE39_RESET_MASK 0x00000080L
+#define GDS_GWS_RESET1__RESOURCE40_RESET_MASK 0x00000100L
+#define GDS_GWS_RESET1__RESOURCE41_RESET_MASK 0x00000200L
+#define GDS_GWS_RESET1__RESOURCE42_RESET_MASK 0x00000400L
+#define GDS_GWS_RESET1__RESOURCE43_RESET_MASK 0x00000800L
+#define GDS_GWS_RESET1__RESOURCE44_RESET_MASK 0x00001000L
+#define GDS_GWS_RESET1__RESOURCE45_RESET_MASK 0x00002000L
+#define GDS_GWS_RESET1__RESOURCE46_RESET_MASK 0x00004000L
+#define GDS_GWS_RESET1__RESOURCE47_RESET_MASK 0x00008000L
+#define GDS_GWS_RESET1__RESOURCE48_RESET_MASK 0x00010000L
+#define GDS_GWS_RESET1__RESOURCE49_RESET_MASK 0x00020000L
+#define GDS_GWS_RESET1__RESOURCE50_RESET_MASK 0x00040000L
+#define GDS_GWS_RESET1__RESOURCE51_RESET_MASK 0x00080000L
+#define GDS_GWS_RESET1__RESOURCE52_RESET_MASK 0x00100000L
+#define GDS_GWS_RESET1__RESOURCE53_RESET_MASK 0x00200000L
+#define GDS_GWS_RESET1__RESOURCE54_RESET_MASK 0x00400000L
+#define GDS_GWS_RESET1__RESOURCE55_RESET_MASK 0x00800000L
+#define GDS_GWS_RESET1__RESOURCE56_RESET_MASK 0x01000000L
+#define GDS_GWS_RESET1__RESOURCE57_RESET_MASK 0x02000000L
+#define GDS_GWS_RESET1__RESOURCE58_RESET_MASK 0x04000000L
+#define GDS_GWS_RESET1__RESOURCE59_RESET_MASK 0x08000000L
+#define GDS_GWS_RESET1__RESOURCE60_RESET_MASK 0x10000000L
+#define GDS_GWS_RESET1__RESOURCE61_RESET_MASK 0x20000000L
+#define GDS_GWS_RESET1__RESOURCE62_RESET_MASK 0x40000000L
+#define GDS_GWS_RESET1__RESOURCE63_RESET_MASK 0x80000000L
+//GDS_GWS_RESOURCE_RESET
+#define GDS_GWS_RESOURCE_RESET__RESET__SHIFT 0x0
+#define GDS_GWS_RESOURCE_RESET__RESOURCE_ID__SHIFT 0x8
+#define GDS_GWS_RESOURCE_RESET__RESET_MASK 0x00000001L
+#define GDS_GWS_RESOURCE_RESET__RESOURCE_ID_MASK 0x0000FF00L
+//GDS_COMPUTE_MAX_WAVE_ID
+#define GDS_COMPUTE_MAX_WAVE_ID__MAX_WAVE_ID__SHIFT 0x0
+#define GDS_COMPUTE_MAX_WAVE_ID__MAX_WAVE_ID_MASK 0x00000FFFL
+//GDS_OA_RESET_MASK
+#define GDS_OA_RESET_MASK__ME0_GFXHP3D_PIX_RESET__SHIFT 0x0
+#define GDS_OA_RESET_MASK__ME0_GFXHP3D_VTX_RESET__SHIFT 0x1
+#define GDS_OA_RESET_MASK__ME0_CS_RESET__SHIFT 0x2
+#define GDS_OA_RESET_MASK__ME0_GFXHP3D_GS_RESET__SHIFT 0x3
+#define GDS_OA_RESET_MASK__ME1_PIPE0_RESET__SHIFT 0x4
+#define GDS_OA_RESET_MASK__ME1_PIPE1_RESET__SHIFT 0x5
+#define GDS_OA_RESET_MASK__ME1_PIPE2_RESET__SHIFT 0x6
+#define GDS_OA_RESET_MASK__ME1_PIPE3_RESET__SHIFT 0x7
+#define GDS_OA_RESET_MASK__ME2_PIPE0_RESET__SHIFT 0x8
+#define GDS_OA_RESET_MASK__ME2_PIPE1_RESET__SHIFT 0x9
+#define GDS_OA_RESET_MASK__ME2_PIPE2_RESET__SHIFT 0xa
+#define GDS_OA_RESET_MASK__ME2_PIPE3_RESET__SHIFT 0xb
+#define GDS_OA_RESET_MASK__UNUSED1__SHIFT 0xc
+#define GDS_OA_RESET_MASK__ME0_GFXHP3D_PIX_RESET_MASK 0x00000001L
+#define GDS_OA_RESET_MASK__ME0_GFXHP3D_VTX_RESET_MASK 0x00000002L
+#define GDS_OA_RESET_MASK__ME0_CS_RESET_MASK 0x00000004L
+#define GDS_OA_RESET_MASK__ME0_GFXHP3D_GS_RESET_MASK 0x00000008L
+#define GDS_OA_RESET_MASK__ME1_PIPE0_RESET_MASK 0x00000010L
+#define GDS_OA_RESET_MASK__ME1_PIPE1_RESET_MASK 0x00000020L
+#define GDS_OA_RESET_MASK__ME1_PIPE2_RESET_MASK 0x00000040L
+#define GDS_OA_RESET_MASK__ME1_PIPE3_RESET_MASK 0x00000080L
+#define GDS_OA_RESET_MASK__ME2_PIPE0_RESET_MASK 0x00000100L
+#define GDS_OA_RESET_MASK__ME2_PIPE1_RESET_MASK 0x00000200L
+#define GDS_OA_RESET_MASK__ME2_PIPE2_RESET_MASK 0x00000400L
+#define GDS_OA_RESET_MASK__ME2_PIPE3_RESET_MASK 0x00000800L
+#define GDS_OA_RESET_MASK__UNUSED1_MASK 0xFFFFF000L
+//GDS_OA_RESET
+#define GDS_OA_RESET__RESET__SHIFT 0x0
+#define GDS_OA_RESET__PIPE_ID__SHIFT 0x8
+#define GDS_OA_RESET__RESET_MASK 0x00000001L
+#define GDS_OA_RESET__PIPE_ID_MASK 0x0000FF00L
+//GDS_ENHANCE
+#define GDS_ENHANCE__MISC__SHIFT 0x0
+#define GDS_ENHANCE__AUTO_INC_INDEX__SHIFT 0x10
+#define GDS_ENHANCE__CGPG_RESTORE__SHIFT 0x11
+#define GDS_ENHANCE__RD_BUF_TAG_MISS__SHIFT 0x12
+#define GDS_ENHANCE__GDSA_PC_CGTS_DIS__SHIFT 0x13
+#define GDS_ENHANCE__GDSO_PC_CGTS_DIS__SHIFT 0x14
+#define GDS_ENHANCE__WD_GDS_CSB_OVERRIDE__SHIFT 0x15
+#define GDS_ENHANCE__GDS_CLK_ENHANCE_DIS__SHIFT 0x16
+#define GDS_ENHANCE__DS_MEM_CLK_GATE_DIS__SHIFT 0x17
+#define GDS_ENHANCE__UNUSED__SHIFT 0x18
+#define GDS_ENHANCE__MISC_MASK 0x0000FFFFL
+#define GDS_ENHANCE__AUTO_INC_INDEX_MASK 0x00010000L
+#define GDS_ENHANCE__CGPG_RESTORE_MASK 0x00020000L
+#define GDS_ENHANCE__RD_BUF_TAG_MISS_MASK 0x00040000L
+#define GDS_ENHANCE__GDSA_PC_CGTS_DIS_MASK 0x00080000L
+#define GDS_ENHANCE__GDSO_PC_CGTS_DIS_MASK 0x00100000L
+#define GDS_ENHANCE__WD_GDS_CSB_OVERRIDE_MASK 0x00200000L
+#define GDS_ENHANCE__GDS_CLK_ENHANCE_DIS_MASK 0x00400000L
+#define GDS_ENHANCE__DS_MEM_CLK_GATE_DIS_MASK 0x00800000L
+#define GDS_ENHANCE__UNUSED_MASK 0xFF000000L
+//GDS_OA_CGPG_RESTORE
+#define GDS_OA_CGPG_RESTORE__VMID__SHIFT 0x0
+#define GDS_OA_CGPG_RESTORE__MEID__SHIFT 0x8
+#define GDS_OA_CGPG_RESTORE__PIPEID__SHIFT 0xc
+#define GDS_OA_CGPG_RESTORE__QUEUEID__SHIFT 0x10
+#define GDS_OA_CGPG_RESTORE__UNUSED__SHIFT 0x14
+#define GDS_OA_CGPG_RESTORE__VMID_MASK 0x000000FFL
+#define GDS_OA_CGPG_RESTORE__MEID_MASK 0x00000F00L
+#define GDS_OA_CGPG_RESTORE__PIPEID_MASK 0x0000F000L
+#define GDS_OA_CGPG_RESTORE__QUEUEID_MASK 0x000F0000L
+#define GDS_OA_CGPG_RESTORE__UNUSED_MASK 0xFFF00000L
+//GDS_CS_CTXSW_STATUS
+#define GDS_CS_CTXSW_STATUS__R__SHIFT 0x0
+#define GDS_CS_CTXSW_STATUS__W__SHIFT 0x1
+#define GDS_CS_CTXSW_STATUS__UNUSED__SHIFT 0x2
+#define GDS_CS_CTXSW_STATUS__R_MASK 0x00000001L
+#define GDS_CS_CTXSW_STATUS__W_MASK 0x00000002L
+#define GDS_CS_CTXSW_STATUS__UNUSED_MASK 0xFFFFFFFCL
+//GDS_CS_CTXSW_CNT0
+#define GDS_CS_CTXSW_CNT0__UPDN__SHIFT 0x0
+#define GDS_CS_CTXSW_CNT0__PTR__SHIFT 0x10
+#define GDS_CS_CTXSW_CNT0__UPDN_MASK 0x0000FFFFL
+#define GDS_CS_CTXSW_CNT0__PTR_MASK 0xFFFF0000L
+//GDS_CS_CTXSW_CNT1
+#define GDS_CS_CTXSW_CNT1__UPDN__SHIFT 0x0
+#define GDS_CS_CTXSW_CNT1__PTR__SHIFT 0x10
+#define GDS_CS_CTXSW_CNT1__UPDN_MASK 0x0000FFFFL
+#define GDS_CS_CTXSW_CNT1__PTR_MASK 0xFFFF0000L
+//GDS_CS_CTXSW_CNT2
+#define GDS_CS_CTXSW_CNT2__UPDN__SHIFT 0x0
+#define GDS_CS_CTXSW_CNT2__PTR__SHIFT 0x10
+#define GDS_CS_CTXSW_CNT2__UPDN_MASK 0x0000FFFFL
+#define GDS_CS_CTXSW_CNT2__PTR_MASK 0xFFFF0000L
+//GDS_CS_CTXSW_CNT3
+#define GDS_CS_CTXSW_CNT3__UPDN__SHIFT 0x0
+#define GDS_CS_CTXSW_CNT3__PTR__SHIFT 0x10
+#define GDS_CS_CTXSW_CNT3__UPDN_MASK 0x0000FFFFL
+#define GDS_CS_CTXSW_CNT3__PTR_MASK 0xFFFF0000L
+//GDS_GFX_CTXSW_STATUS
+#define GDS_GFX_CTXSW_STATUS__R__SHIFT 0x0
+#define GDS_GFX_CTXSW_STATUS__W__SHIFT 0x1
+#define GDS_GFX_CTXSW_STATUS__UNUSED__SHIFT 0x2
+#define GDS_GFX_CTXSW_STATUS__R_MASK 0x00000001L
+#define GDS_GFX_CTXSW_STATUS__W_MASK 0x00000002L
+#define GDS_GFX_CTXSW_STATUS__UNUSED_MASK 0xFFFFFFFCL
+//GDS_VS_CTXSW_CNT0
+#define GDS_VS_CTXSW_CNT0__UPDN__SHIFT 0x0
+#define GDS_VS_CTXSW_CNT0__PTR__SHIFT 0x10
+#define GDS_VS_CTXSW_CNT0__UPDN_MASK 0x0000FFFFL
+#define GDS_VS_CTXSW_CNT0__PTR_MASK 0xFFFF0000L
+//GDS_VS_CTXSW_CNT1
+#define GDS_VS_CTXSW_CNT1__UPDN__SHIFT 0x0
+#define GDS_VS_CTXSW_CNT1__PTR__SHIFT 0x10
+#define GDS_VS_CTXSW_CNT1__UPDN_MASK 0x0000FFFFL
+#define GDS_VS_CTXSW_CNT1__PTR_MASK 0xFFFF0000L
+//GDS_VS_CTXSW_CNT2
+#define GDS_VS_CTXSW_CNT2__UPDN__SHIFT 0x0
+#define GDS_VS_CTXSW_CNT2__PTR__SHIFT 0x10
+#define GDS_VS_CTXSW_CNT2__UPDN_MASK 0x0000FFFFL
+#define GDS_VS_CTXSW_CNT2__PTR_MASK 0xFFFF0000L
+//GDS_VS_CTXSW_CNT3
+#define GDS_VS_CTXSW_CNT3__UPDN__SHIFT 0x0
+#define GDS_VS_CTXSW_CNT3__PTR__SHIFT 0x10
+#define GDS_VS_CTXSW_CNT3__UPDN_MASK 0x0000FFFFL
+#define GDS_VS_CTXSW_CNT3__PTR_MASK 0xFFFF0000L
+//GDS_PS0_CTXSW_CNT0
+#define GDS_PS0_CTXSW_CNT0__UPDN__SHIFT 0x0
+#define GDS_PS0_CTXSW_CNT0__PTR__SHIFT 0x10
+#define GDS_PS0_CTXSW_CNT0__UPDN_MASK 0x0000FFFFL
+#define GDS_PS0_CTXSW_CNT0__PTR_MASK 0xFFFF0000L
+//GDS_PS0_CTXSW_CNT1
+#define GDS_PS0_CTXSW_CNT1__UPDN__SHIFT 0x0
+#define GDS_PS0_CTXSW_CNT1__PTR__SHIFT 0x10
+#define GDS_PS0_CTXSW_CNT1__UPDN_MASK 0x0000FFFFL
+#define GDS_PS0_CTXSW_CNT1__PTR_MASK 0xFFFF0000L
+//GDS_PS0_CTXSW_CNT2
+#define GDS_PS0_CTXSW_CNT2__UPDN__SHIFT 0x0
+#define GDS_PS0_CTXSW_CNT2__PTR__SHIFT 0x10
+#define GDS_PS0_CTXSW_CNT2__UPDN_MASK 0x0000FFFFL
+#define GDS_PS0_CTXSW_CNT2__PTR_MASK 0xFFFF0000L
+//GDS_PS0_CTXSW_CNT3
+#define GDS_PS0_CTXSW_CNT3__UPDN__SHIFT 0x0
+#define GDS_PS0_CTXSW_CNT3__PTR__SHIFT 0x10
+#define GDS_PS0_CTXSW_CNT3__UPDN_MASK 0x0000FFFFL
+#define GDS_PS0_CTXSW_CNT3__PTR_MASK 0xFFFF0000L
+//GDS_PS1_CTXSW_CNT0
+#define GDS_PS1_CTXSW_CNT0__UPDN__SHIFT 0x0
+#define GDS_PS1_CTXSW_CNT0__PTR__SHIFT 0x10
+#define GDS_PS1_CTXSW_CNT0__UPDN_MASK 0x0000FFFFL
+#define GDS_PS1_CTXSW_CNT0__PTR_MASK 0xFFFF0000L
+//GDS_PS1_CTXSW_CNT1
+#define GDS_PS1_CTXSW_CNT1__UPDN__SHIFT 0x0
+#define GDS_PS1_CTXSW_CNT1__PTR__SHIFT 0x10
+#define GDS_PS1_CTXSW_CNT1__UPDN_MASK 0x0000FFFFL
+#define GDS_PS1_CTXSW_CNT1__PTR_MASK 0xFFFF0000L
+//GDS_PS1_CTXSW_CNT2
+#define GDS_PS1_CTXSW_CNT2__UPDN__SHIFT 0x0
+#define GDS_PS1_CTXSW_CNT2__PTR__SHIFT 0x10
+#define GDS_PS1_CTXSW_CNT2__UPDN_MASK 0x0000FFFFL
+#define GDS_PS1_CTXSW_CNT2__PTR_MASK 0xFFFF0000L
+//GDS_PS1_CTXSW_CNT3
+#define GDS_PS1_CTXSW_CNT3__UPDN__SHIFT 0x0
+#define GDS_PS1_CTXSW_CNT3__PTR__SHIFT 0x10
+#define GDS_PS1_CTXSW_CNT3__UPDN_MASK 0x0000FFFFL
+#define GDS_PS1_CTXSW_CNT3__PTR_MASK 0xFFFF0000L
+//GDS_PS2_CTXSW_CNT0
+#define GDS_PS2_CTXSW_CNT0__UPDN__SHIFT 0x0
+#define GDS_PS2_CTXSW_CNT0__PTR__SHIFT 0x10
+#define GDS_PS2_CTXSW_CNT0__UPDN_MASK 0x0000FFFFL
+#define GDS_PS2_CTXSW_CNT0__PTR_MASK 0xFFFF0000L
+//GDS_PS2_CTXSW_CNT1
+#define GDS_PS2_CTXSW_CNT1__UPDN__SHIFT 0x0
+#define GDS_PS2_CTXSW_CNT1__PTR__SHIFT 0x10
+#define GDS_PS2_CTXSW_CNT1__UPDN_MASK 0x0000FFFFL
+#define GDS_PS2_CTXSW_CNT1__PTR_MASK 0xFFFF0000L
+//GDS_PS2_CTXSW_CNT2
+#define GDS_PS2_CTXSW_CNT2__UPDN__SHIFT 0x0
+#define GDS_PS2_CTXSW_CNT2__PTR__SHIFT 0x10
+#define GDS_PS2_CTXSW_CNT2__UPDN_MASK 0x0000FFFFL
+#define GDS_PS2_CTXSW_CNT2__PTR_MASK 0xFFFF0000L
+//GDS_PS2_CTXSW_CNT3
+#define GDS_PS2_CTXSW_CNT3__UPDN__SHIFT 0x0
+#define GDS_PS2_CTXSW_CNT3__PTR__SHIFT 0x10
+#define GDS_PS2_CTXSW_CNT3__UPDN_MASK 0x0000FFFFL
+#define GDS_PS2_CTXSW_CNT3__PTR_MASK 0xFFFF0000L
+//GDS_PS3_CTXSW_CNT0
+#define GDS_PS3_CTXSW_CNT0__UPDN__SHIFT 0x0
+#define GDS_PS3_CTXSW_CNT0__PTR__SHIFT 0x10
+#define GDS_PS3_CTXSW_CNT0__UPDN_MASK 0x0000FFFFL
+#define GDS_PS3_CTXSW_CNT0__PTR_MASK 0xFFFF0000L
+//GDS_PS3_CTXSW_CNT1
+#define GDS_PS3_CTXSW_CNT1__UPDN__SHIFT 0x0
+#define GDS_PS3_CTXSW_CNT1__PTR__SHIFT 0x10
+#define GDS_PS3_CTXSW_CNT1__UPDN_MASK 0x0000FFFFL
+#define GDS_PS3_CTXSW_CNT1__PTR_MASK 0xFFFF0000L
+//GDS_PS3_CTXSW_CNT2
+#define GDS_PS3_CTXSW_CNT2__UPDN__SHIFT 0x0
+#define GDS_PS3_CTXSW_CNT2__PTR__SHIFT 0x10
+#define GDS_PS3_CTXSW_CNT2__UPDN_MASK 0x0000FFFFL
+#define GDS_PS3_CTXSW_CNT2__PTR_MASK 0xFFFF0000L
+//GDS_PS3_CTXSW_CNT3
+#define GDS_PS3_CTXSW_CNT3__UPDN__SHIFT 0x0
+#define GDS_PS3_CTXSW_CNT3__PTR__SHIFT 0x10
+#define GDS_PS3_CTXSW_CNT3__UPDN_MASK 0x0000FFFFL
+#define GDS_PS3_CTXSW_CNT3__PTR_MASK 0xFFFF0000L
+//GDS_PS4_CTXSW_CNT0
+#define GDS_PS4_CTXSW_CNT0__UPDN__SHIFT 0x0
+#define GDS_PS4_CTXSW_CNT0__PTR__SHIFT 0x10
+#define GDS_PS4_CTXSW_CNT0__UPDN_MASK 0x0000FFFFL
+#define GDS_PS4_CTXSW_CNT0__PTR_MASK 0xFFFF0000L
+//GDS_PS4_CTXSW_CNT1
+#define GDS_PS4_CTXSW_CNT1__UPDN__SHIFT 0x0
+#define GDS_PS4_CTXSW_CNT1__PTR__SHIFT 0x10
+#define GDS_PS4_CTXSW_CNT1__UPDN_MASK 0x0000FFFFL
+#define GDS_PS4_CTXSW_CNT1__PTR_MASK 0xFFFF0000L
+//GDS_PS4_CTXSW_CNT2
+#define GDS_PS4_CTXSW_CNT2__UPDN__SHIFT 0x0
+#define GDS_PS4_CTXSW_CNT2__PTR__SHIFT 0x10
+#define GDS_PS4_CTXSW_CNT2__UPDN_MASK 0x0000FFFFL
+#define GDS_PS4_CTXSW_CNT2__PTR_MASK 0xFFFF0000L
+//GDS_PS4_CTXSW_CNT3
+#define GDS_PS4_CTXSW_CNT3__UPDN__SHIFT 0x0
+#define GDS_PS4_CTXSW_CNT3__PTR__SHIFT 0x10
+#define GDS_PS4_CTXSW_CNT3__UPDN_MASK 0x0000FFFFL
+#define GDS_PS4_CTXSW_CNT3__PTR_MASK 0xFFFF0000L
+//GDS_PS5_CTXSW_CNT0
+#define GDS_PS5_CTXSW_CNT0__UPDN__SHIFT 0x0
+#define GDS_PS5_CTXSW_CNT0__PTR__SHIFT 0x10
+#define GDS_PS5_CTXSW_CNT0__UPDN_MASK 0x0000FFFFL
+#define GDS_PS5_CTXSW_CNT0__PTR_MASK 0xFFFF0000L
+//GDS_PS5_CTXSW_CNT1
+#define GDS_PS5_CTXSW_CNT1__UPDN__SHIFT 0x0
+#define GDS_PS5_CTXSW_CNT1__PTR__SHIFT 0x10
+#define GDS_PS5_CTXSW_CNT1__UPDN_MASK 0x0000FFFFL
+#define GDS_PS5_CTXSW_CNT1__PTR_MASK 0xFFFF0000L
+//GDS_PS5_CTXSW_CNT2
+#define GDS_PS5_CTXSW_CNT2__UPDN__SHIFT 0x0
+#define GDS_PS5_CTXSW_CNT2__PTR__SHIFT 0x10
+#define GDS_PS5_CTXSW_CNT2__UPDN_MASK 0x0000FFFFL
+#define GDS_PS5_CTXSW_CNT2__PTR_MASK 0xFFFF0000L
+//GDS_PS5_CTXSW_CNT3
+#define GDS_PS5_CTXSW_CNT3__UPDN__SHIFT 0x0
+#define GDS_PS5_CTXSW_CNT3__PTR__SHIFT 0x10
+#define GDS_PS5_CTXSW_CNT3__UPDN_MASK 0x0000FFFFL
+#define GDS_PS5_CTXSW_CNT3__PTR_MASK 0xFFFF0000L
+//GDS_PS6_CTXSW_CNT0
+#define GDS_PS6_CTXSW_CNT0__UPDN__SHIFT 0x0
+#define GDS_PS6_CTXSW_CNT0__PTR__SHIFT 0x10
+#define GDS_PS6_CTXSW_CNT0__UPDN_MASK 0x0000FFFFL
+#define GDS_PS6_CTXSW_CNT0__PTR_MASK 0xFFFF0000L
+//GDS_PS6_CTXSW_CNT1
+#define GDS_PS6_CTXSW_CNT1__UPDN__SHIFT 0x0
+#define GDS_PS6_CTXSW_CNT1__PTR__SHIFT 0x10
+#define GDS_PS6_CTXSW_CNT1__UPDN_MASK 0x0000FFFFL
+#define GDS_PS6_CTXSW_CNT1__PTR_MASK 0xFFFF0000L
+//GDS_PS6_CTXSW_CNT2
+#define GDS_PS6_CTXSW_CNT2__UPDN__SHIFT 0x0
+#define GDS_PS6_CTXSW_CNT2__PTR__SHIFT 0x10
+#define GDS_PS6_CTXSW_CNT2__UPDN_MASK 0x0000FFFFL
+#define GDS_PS6_CTXSW_CNT2__PTR_MASK 0xFFFF0000L
+//GDS_PS6_CTXSW_CNT3
+#define GDS_PS6_CTXSW_CNT3__UPDN__SHIFT 0x0
+#define GDS_PS6_CTXSW_CNT3__PTR__SHIFT 0x10
+#define GDS_PS6_CTXSW_CNT3__UPDN_MASK 0x0000FFFFL
+#define GDS_PS6_CTXSW_CNT3__PTR_MASK 0xFFFF0000L
+//GDS_PS7_CTXSW_CNT0
+#define GDS_PS7_CTXSW_CNT0__UPDN__SHIFT 0x0
+#define GDS_PS7_CTXSW_CNT0__PTR__SHIFT 0x10
+#define GDS_PS7_CTXSW_CNT0__UPDN_MASK 0x0000FFFFL
+#define GDS_PS7_CTXSW_CNT0__PTR_MASK 0xFFFF0000L
+//GDS_PS7_CTXSW_CNT1
+#define GDS_PS7_CTXSW_CNT1__UPDN__SHIFT 0x0
+#define GDS_PS7_CTXSW_CNT1__PTR__SHIFT 0x10
+#define GDS_PS7_CTXSW_CNT1__UPDN_MASK 0x0000FFFFL
+#define GDS_PS7_CTXSW_CNT1__PTR_MASK 0xFFFF0000L
+//GDS_PS7_CTXSW_CNT2
+#define GDS_PS7_CTXSW_CNT2__UPDN__SHIFT 0x0
+#define GDS_PS7_CTXSW_CNT2__PTR__SHIFT 0x10
+#define GDS_PS7_CTXSW_CNT2__UPDN_MASK 0x0000FFFFL
+#define GDS_PS7_CTXSW_CNT2__PTR_MASK 0xFFFF0000L
+//GDS_PS7_CTXSW_CNT3
+#define GDS_PS7_CTXSW_CNT3__UPDN__SHIFT 0x0
+#define GDS_PS7_CTXSW_CNT3__PTR__SHIFT 0x10
+#define GDS_PS7_CTXSW_CNT3__UPDN_MASK 0x0000FFFFL
+#define GDS_PS7_CTXSW_CNT3__PTR_MASK 0xFFFF0000L
+//GDS_GS_CTXSW_CNT0
+#define GDS_GS_CTXSW_CNT0__UPDN__SHIFT 0x0
+#define GDS_GS_CTXSW_CNT0__PTR__SHIFT 0x10
+#define GDS_GS_CTXSW_CNT0__UPDN_MASK 0x0000FFFFL
+#define GDS_GS_CTXSW_CNT0__PTR_MASK 0xFFFF0000L
+//GDS_GS_CTXSW_CNT1
+#define GDS_GS_CTXSW_CNT1__UPDN__SHIFT 0x0
+#define GDS_GS_CTXSW_CNT1__PTR__SHIFT 0x10
+#define GDS_GS_CTXSW_CNT1__UPDN_MASK 0x0000FFFFL
+#define GDS_GS_CTXSW_CNT1__PTR_MASK 0xFFFF0000L
+//GDS_GS_CTXSW_CNT2
+#define GDS_GS_CTXSW_CNT2__UPDN__SHIFT 0x0
+#define GDS_GS_CTXSW_CNT2__PTR__SHIFT 0x10
+#define GDS_GS_CTXSW_CNT2__UPDN_MASK 0x0000FFFFL
+#define GDS_GS_CTXSW_CNT2__PTR_MASK 0xFFFF0000L
+//GDS_GS_CTXSW_CNT3
+#define GDS_GS_CTXSW_CNT3__UPDN__SHIFT 0x0
+#define GDS_GS_CTXSW_CNT3__PTR__SHIFT 0x10
+#define GDS_GS_CTXSW_CNT3__UPDN_MASK 0x0000FFFFL
+#define GDS_GS_CTXSW_CNT3__PTR_MASK 0xFFFF0000L
+
+
+// addressBlock: xcd0_gc_rasdec
+//RAS_SIGNATURE_CONTROL
+#define RAS_SIGNATURE_CONTROL__ENABLE__SHIFT 0x0
+#define RAS_SIGNATURE_CONTROL__ENABLE_MASK 0x00000001L
+//RAS_SIGNATURE_MASK
+#define RAS_SIGNATURE_MASK__INPUT_BUS_MASK__SHIFT 0x0
+#define RAS_SIGNATURE_MASK__INPUT_BUS_MASK_MASK 0xFFFFFFFFL
+//RAS_SX_SIGNATURE0
+#define RAS_SX_SIGNATURE0__SIGNATURE__SHIFT 0x0
+#define RAS_SX_SIGNATURE0__SIGNATURE_MASK 0xFFFFFFFFL
+//RAS_SX_SIGNATURE1
+#define RAS_SX_SIGNATURE1__SIGNATURE__SHIFT 0x0
+#define RAS_SX_SIGNATURE1__SIGNATURE_MASK 0xFFFFFFFFL
+//RAS_SX_SIGNATURE2
+#define RAS_SX_SIGNATURE2__SIGNATURE__SHIFT 0x0
+#define RAS_SX_SIGNATURE2__SIGNATURE_MASK 0xFFFFFFFFL
+//RAS_SX_SIGNATURE3
+#define RAS_SX_SIGNATURE3__SIGNATURE__SHIFT 0x0
+#define RAS_SX_SIGNATURE3__SIGNATURE_MASK 0xFFFFFFFFL
+//RAS_DB_SIGNATURE0
+#define RAS_DB_SIGNATURE0__SIGNATURE__SHIFT 0x0
+#define RAS_DB_SIGNATURE0__SIGNATURE_MASK 0xFFFFFFFFL
+//RAS_PA_SIGNATURE0
+#define RAS_PA_SIGNATURE0__SIGNATURE__SHIFT 0x0
+#define RAS_PA_SIGNATURE0__SIGNATURE_MASK 0xFFFFFFFFL
+//RAS_VGT_SIGNATURE0
+#define RAS_VGT_SIGNATURE0__SIGNATURE__SHIFT 0x0
+#define RAS_VGT_SIGNATURE0__SIGNATURE_MASK 0xFFFFFFFFL
+//RAS_SQ_SIGNATURE0
+#define RAS_SQ_SIGNATURE0__SIGNATURE__SHIFT 0x0
+#define RAS_SQ_SIGNATURE0__SIGNATURE_MASK 0xFFFFFFFFL
+//RAS_SC_SIGNATURE0
+#define RAS_SC_SIGNATURE0__SIGNATURE__SHIFT 0x0
+#define RAS_SC_SIGNATURE0__SIGNATURE_MASK 0xFFFFFFFFL
+//RAS_SC_SIGNATURE1
+#define RAS_SC_SIGNATURE1__SIGNATURE__SHIFT 0x0
+#define RAS_SC_SIGNATURE1__SIGNATURE_MASK 0xFFFFFFFFL
+//RAS_SC_SIGNATURE2
+#define RAS_SC_SIGNATURE2__SIGNATURE__SHIFT 0x0
+#define RAS_SC_SIGNATURE2__SIGNATURE_MASK 0xFFFFFFFFL
+//RAS_SC_SIGNATURE3
+#define RAS_SC_SIGNATURE3__SIGNATURE__SHIFT 0x0
+#define RAS_SC_SIGNATURE3__SIGNATURE_MASK 0xFFFFFFFFL
+//RAS_SC_SIGNATURE4
+#define RAS_SC_SIGNATURE4__SIGNATURE__SHIFT 0x0
+#define RAS_SC_SIGNATURE4__SIGNATURE_MASK 0xFFFFFFFFL
+//RAS_SC_SIGNATURE5
+#define RAS_SC_SIGNATURE5__SIGNATURE__SHIFT 0x0
+#define RAS_SC_SIGNATURE5__SIGNATURE_MASK 0xFFFFFFFFL
+//RAS_SC_SIGNATURE6
+#define RAS_SC_SIGNATURE6__SIGNATURE__SHIFT 0x0
+#define RAS_SC_SIGNATURE6__SIGNATURE_MASK 0xFFFFFFFFL
+//RAS_SC_SIGNATURE7
+#define RAS_SC_SIGNATURE7__SIGNATURE__SHIFT 0x0
+#define RAS_SC_SIGNATURE7__SIGNATURE_MASK 0xFFFFFFFFL
+//RAS_IA_SIGNATURE0
+#define RAS_IA_SIGNATURE0__SIGNATURE__SHIFT 0x0
+#define RAS_IA_SIGNATURE0__SIGNATURE_MASK 0xFFFFFFFFL
+//RAS_IA_SIGNATURE1
+#define RAS_IA_SIGNATURE1__SIGNATURE__SHIFT 0x0
+#define RAS_IA_SIGNATURE1__SIGNATURE_MASK 0xFFFFFFFFL
+//RAS_SPI_SIGNATURE0
+#define RAS_SPI_SIGNATURE0__SIGNATURE__SHIFT 0x0
+#define RAS_SPI_SIGNATURE0__SIGNATURE_MASK 0xFFFFFFFFL
+//RAS_SPI_SIGNATURE1
+#define RAS_SPI_SIGNATURE1__SIGNATURE__SHIFT 0x0
+#define RAS_SPI_SIGNATURE1__SIGNATURE_MASK 0xFFFFFFFFL
+//RAS_TA_SIGNATURE0
+#define RAS_TA_SIGNATURE0__SIGNATURE__SHIFT 0x0
+#define RAS_TA_SIGNATURE0__SIGNATURE_MASK 0xFFFFFFFFL
+//RAS_TD_SIGNATURE0
+#define RAS_TD_SIGNATURE0__SIGNATURE__SHIFT 0x0
+#define RAS_TD_SIGNATURE0__SIGNATURE_MASK 0xFFFFFFFFL
+//RAS_CB_SIGNATURE0
+#define RAS_CB_SIGNATURE0__SIGNATURE__SHIFT 0x0
+#define RAS_CB_SIGNATURE0__SIGNATURE_MASK 0xFFFFFFFFL
+//RAS_BCI_SIGNATURE0
+#define RAS_BCI_SIGNATURE0__SIGNATURE__SHIFT 0x0
+#define RAS_BCI_SIGNATURE0__SIGNATURE_MASK 0xFFFFFFFFL
+//RAS_BCI_SIGNATURE1
+#define RAS_BCI_SIGNATURE1__SIGNATURE__SHIFT 0x0
+#define RAS_BCI_SIGNATURE1__SIGNATURE_MASK 0xFFFFFFFFL
+//RAS_TA_SIGNATURE1
+#define RAS_TA_SIGNATURE1__SIGNATURE__SHIFT 0x0
+#define RAS_TA_SIGNATURE1__SIGNATURE_MASK 0xFFFFFFFFL
+
+
+// addressBlock: xcd0_gc_gfxdec0
+//DB_RENDER_CONTROL
+#define DB_RENDER_CONTROL__DEPTH_CLEAR_ENABLE__SHIFT 0x0
+#define DB_RENDER_CONTROL__STENCIL_CLEAR_ENABLE__SHIFT 0x1
+#define DB_RENDER_CONTROL__DEPTH_COPY__SHIFT 0x2
+#define DB_RENDER_CONTROL__STENCIL_COPY__SHIFT 0x3
+#define DB_RENDER_CONTROL__RESUMMARIZE_ENABLE__SHIFT 0x4
+#define DB_RENDER_CONTROL__STENCIL_COMPRESS_DISABLE__SHIFT 0x5
+#define DB_RENDER_CONTROL__DEPTH_COMPRESS_DISABLE__SHIFT 0x6
+#define DB_RENDER_CONTROL__COPY_CENTROID__SHIFT 0x7
+#define DB_RENDER_CONTROL__COPY_SAMPLE__SHIFT 0x8
+#define DB_RENDER_CONTROL__DECOMPRESS_ENABLE__SHIFT 0xc
+#define DB_RENDER_CONTROL__DEPTH_CLEAR_ENABLE_MASK 0x00000001L
+#define DB_RENDER_CONTROL__STENCIL_CLEAR_ENABLE_MASK 0x00000002L
+#define DB_RENDER_CONTROL__DEPTH_COPY_MASK 0x00000004L
+#define DB_RENDER_CONTROL__STENCIL_COPY_MASK 0x00000008L
+#define DB_RENDER_CONTROL__RESUMMARIZE_ENABLE_MASK 0x00000010L
+#define DB_RENDER_CONTROL__STENCIL_COMPRESS_DISABLE_MASK 0x00000020L
+#define DB_RENDER_CONTROL__DEPTH_COMPRESS_DISABLE_MASK 0x00000040L
+#define DB_RENDER_CONTROL__COPY_CENTROID_MASK 0x00000080L
+#define DB_RENDER_CONTROL__COPY_SAMPLE_MASK 0x00000F00L
+#define DB_RENDER_CONTROL__DECOMPRESS_ENABLE_MASK 0x00001000L
+//DB_COUNT_CONTROL
+#define DB_COUNT_CONTROL__ZPASS_INCREMENT_DISABLE__SHIFT 0x0
+#define DB_COUNT_CONTROL__PERFECT_ZPASS_COUNTS__SHIFT 0x1
+#define DB_COUNT_CONTROL__SAMPLE_RATE__SHIFT 0x4
+#define DB_COUNT_CONTROL__ZPASS_ENABLE__SHIFT 0x8
+#define DB_COUNT_CONTROL__ZFAIL_ENABLE__SHIFT 0xc
+#define DB_COUNT_CONTROL__SFAIL_ENABLE__SHIFT 0x10
+#define DB_COUNT_CONTROL__DBFAIL_ENABLE__SHIFT 0x14
+#define DB_COUNT_CONTROL__SLICE_EVEN_ENABLE__SHIFT 0x18
+#define DB_COUNT_CONTROL__SLICE_ODD_ENABLE__SHIFT 0x1c
+#define DB_COUNT_CONTROL__ZPASS_INCREMENT_DISABLE_MASK 0x00000001L
+#define DB_COUNT_CONTROL__PERFECT_ZPASS_COUNTS_MASK 0x00000002L
+#define DB_COUNT_CONTROL__SAMPLE_RATE_MASK 0x00000070L
+#define DB_COUNT_CONTROL__ZPASS_ENABLE_MASK 0x00000F00L
+#define DB_COUNT_CONTROL__ZFAIL_ENABLE_MASK 0x0000F000L
+#define DB_COUNT_CONTROL__SFAIL_ENABLE_MASK 0x000F0000L
+#define DB_COUNT_CONTROL__DBFAIL_ENABLE_MASK 0x00F00000L
+#define DB_COUNT_CONTROL__SLICE_EVEN_ENABLE_MASK 0x0F000000L
+#define DB_COUNT_CONTROL__SLICE_ODD_ENABLE_MASK 0xF0000000L
+//DB_DEPTH_VIEW
+#define DB_DEPTH_VIEW__SLICE_START__SHIFT 0x0
+#define DB_DEPTH_VIEW__SLICE_MAX__SHIFT 0xd
+#define DB_DEPTH_VIEW__Z_READ_ONLY__SHIFT 0x18
+#define DB_DEPTH_VIEW__STENCIL_READ_ONLY__SHIFT 0x19
+#define DB_DEPTH_VIEW__MIPID__SHIFT 0x1a
+#define DB_DEPTH_VIEW__SLICE_START_MASK 0x000007FFL
+#define DB_DEPTH_VIEW__SLICE_MAX_MASK 0x00FFE000L
+#define DB_DEPTH_VIEW__Z_READ_ONLY_MASK 0x01000000L
+#define DB_DEPTH_VIEW__STENCIL_READ_ONLY_MASK 0x02000000L
+#define DB_DEPTH_VIEW__MIPID_MASK 0x3C000000L
+//DB_RENDER_OVERRIDE
+#define DB_RENDER_OVERRIDE__FORCE_HIZ_ENABLE__SHIFT 0x0
+#define DB_RENDER_OVERRIDE__FORCE_HIS_ENABLE0__SHIFT 0x2
+#define DB_RENDER_OVERRIDE__FORCE_HIS_ENABLE1__SHIFT 0x4
+#define DB_RENDER_OVERRIDE__FORCE_SHADER_Z_ORDER__SHIFT 0x6
+#define DB_RENDER_OVERRIDE__FAST_Z_DISABLE__SHIFT 0x7
+#define DB_RENDER_OVERRIDE__FAST_STENCIL_DISABLE__SHIFT 0x8
+#define DB_RENDER_OVERRIDE__NOOP_CULL_DISABLE__SHIFT 0x9
+#define DB_RENDER_OVERRIDE__FORCE_COLOR_KILL__SHIFT 0xa
+#define DB_RENDER_OVERRIDE__FORCE_Z_READ__SHIFT 0xb
+#define DB_RENDER_OVERRIDE__FORCE_STENCIL_READ__SHIFT 0xc
+#define DB_RENDER_OVERRIDE__FORCE_FULL_Z_RANGE__SHIFT 0xd
+#define DB_RENDER_OVERRIDE__FORCE_QC_SMASK_CONFLICT__SHIFT 0xf
+#define DB_RENDER_OVERRIDE__DISABLE_VIEWPORT_CLAMP__SHIFT 0x10
+#define DB_RENDER_OVERRIDE__IGNORE_SC_ZRANGE__SHIFT 0x11
+#define DB_RENDER_OVERRIDE__DISABLE_FULLY_COVERED__SHIFT 0x12
+#define DB_RENDER_OVERRIDE__FORCE_Z_LIMIT_SUMM__SHIFT 0x13
+#define DB_RENDER_OVERRIDE__MAX_TILES_IN_DTT__SHIFT 0x15
+#define DB_RENDER_OVERRIDE__DISABLE_TILE_RATE_TILES__SHIFT 0x1a
+#define DB_RENDER_OVERRIDE__FORCE_Z_DIRTY__SHIFT 0x1b
+#define DB_RENDER_OVERRIDE__FORCE_STENCIL_DIRTY__SHIFT 0x1c
+#define DB_RENDER_OVERRIDE__FORCE_Z_VALID__SHIFT 0x1d
+#define DB_RENDER_OVERRIDE__FORCE_STENCIL_VALID__SHIFT 0x1e
+#define DB_RENDER_OVERRIDE__PRESERVE_COMPRESSION__SHIFT 0x1f
+#define DB_RENDER_OVERRIDE__FORCE_HIZ_ENABLE_MASK 0x00000003L
+#define DB_RENDER_OVERRIDE__FORCE_HIS_ENABLE0_MASK 0x0000000CL
+#define DB_RENDER_OVERRIDE__FORCE_HIS_ENABLE1_MASK 0x00000030L
+#define DB_RENDER_OVERRIDE__FORCE_SHADER_Z_ORDER_MASK 0x00000040L
+#define DB_RENDER_OVERRIDE__FAST_Z_DISABLE_MASK 0x00000080L
+#define DB_RENDER_OVERRIDE__FAST_STENCIL_DISABLE_MASK 0x00000100L
+#define DB_RENDER_OVERRIDE__NOOP_CULL_DISABLE_MASK 0x00000200L
+#define DB_RENDER_OVERRIDE__FORCE_COLOR_KILL_MASK 0x00000400L
+#define DB_RENDER_OVERRIDE__FORCE_Z_READ_MASK 0x00000800L
+#define DB_RENDER_OVERRIDE__FORCE_STENCIL_READ_MASK 0x00001000L
+#define DB_RENDER_OVERRIDE__FORCE_FULL_Z_RANGE_MASK 0x00006000L
+#define DB_RENDER_OVERRIDE__FORCE_QC_SMASK_CONFLICT_MASK 0x00008000L
+#define DB_RENDER_OVERRIDE__DISABLE_VIEWPORT_CLAMP_MASK 0x00010000L
+#define DB_RENDER_OVERRIDE__IGNORE_SC_ZRANGE_MASK 0x00020000L
+#define DB_RENDER_OVERRIDE__DISABLE_FULLY_COVERED_MASK 0x00040000L
+#define DB_RENDER_OVERRIDE__FORCE_Z_LIMIT_SUMM_MASK 0x00180000L
+#define DB_RENDER_OVERRIDE__MAX_TILES_IN_DTT_MASK 0x03E00000L
+#define DB_RENDER_OVERRIDE__DISABLE_TILE_RATE_TILES_MASK 0x04000000L
+#define DB_RENDER_OVERRIDE__FORCE_Z_DIRTY_MASK 0x08000000L
+#define DB_RENDER_OVERRIDE__FORCE_STENCIL_DIRTY_MASK 0x10000000L
+#define DB_RENDER_OVERRIDE__FORCE_Z_VALID_MASK 0x20000000L
+#define DB_RENDER_OVERRIDE__FORCE_STENCIL_VALID_MASK 0x40000000L
+#define DB_RENDER_OVERRIDE__PRESERVE_COMPRESSION_MASK 0x80000000L
+//DB_RENDER_OVERRIDE2
+#define DB_RENDER_OVERRIDE2__PARTIAL_SQUAD_LAUNCH_CONTROL__SHIFT 0x0
+#define DB_RENDER_OVERRIDE2__PARTIAL_SQUAD_LAUNCH_COUNTDOWN__SHIFT 0x2
+#define DB_RENDER_OVERRIDE2__DISABLE_ZMASK_EXPCLEAR_OPTIMIZATION__SHIFT 0x5
+#define DB_RENDER_OVERRIDE2__DISABLE_SMEM_EXPCLEAR_OPTIMIZATION__SHIFT 0x6
+#define DB_RENDER_OVERRIDE2__DISABLE_COLOR_ON_VALIDATION__SHIFT 0x7
+#define DB_RENDER_OVERRIDE2__DECOMPRESS_Z_ON_FLUSH__SHIFT 0x8
+#define DB_RENDER_OVERRIDE2__DISABLE_REG_SNOOP__SHIFT 0x9
+#define DB_RENDER_OVERRIDE2__DEPTH_BOUNDS_HIER_DEPTH_DISABLE__SHIFT 0xa
+#define DB_RENDER_OVERRIDE2__SEPARATE_HIZS_FUNC_ENABLE__SHIFT 0xb
+#define DB_RENDER_OVERRIDE2__HIZ_ZFUNC__SHIFT 0xc
+#define DB_RENDER_OVERRIDE2__HIS_SFUNC_FF__SHIFT 0xf
+#define DB_RENDER_OVERRIDE2__HIS_SFUNC_BF__SHIFT 0x12
+#define DB_RENDER_OVERRIDE2__PRESERVE_ZRANGE__SHIFT 0x15
+#define DB_RENDER_OVERRIDE2__PRESERVE_SRESULTS__SHIFT 0x16
+#define DB_RENDER_OVERRIDE2__DISABLE_FAST_PASS__SHIFT 0x17
+#define DB_RENDER_OVERRIDE2__ALLOW_PARTIAL_RES_HIER_KILL__SHIFT 0x19
+#define DB_RENDER_OVERRIDE2__PARTIAL_SQUAD_LAUNCH_CONTROL_MASK 0x00000003L
+#define DB_RENDER_OVERRIDE2__PARTIAL_SQUAD_LAUNCH_COUNTDOWN_MASK 0x0000001CL
+#define DB_RENDER_OVERRIDE2__DISABLE_ZMASK_EXPCLEAR_OPTIMIZATION_MASK 0x00000020L
+#define DB_RENDER_OVERRIDE2__DISABLE_SMEM_EXPCLEAR_OPTIMIZATION_MASK 0x00000040L
+#define DB_RENDER_OVERRIDE2__DISABLE_COLOR_ON_VALIDATION_MASK 0x00000080L
+#define DB_RENDER_OVERRIDE2__DECOMPRESS_Z_ON_FLUSH_MASK 0x00000100L
+#define DB_RENDER_OVERRIDE2__DISABLE_REG_SNOOP_MASK 0x00000200L
+#define DB_RENDER_OVERRIDE2__DEPTH_BOUNDS_HIER_DEPTH_DISABLE_MASK 0x00000400L
+#define DB_RENDER_OVERRIDE2__SEPARATE_HIZS_FUNC_ENABLE_MASK 0x00000800L
+#define DB_RENDER_OVERRIDE2__HIZ_ZFUNC_MASK 0x00007000L
+#define DB_RENDER_OVERRIDE2__HIS_SFUNC_FF_MASK 0x00038000L
+#define DB_RENDER_OVERRIDE2__HIS_SFUNC_BF_MASK 0x001C0000L
+#define DB_RENDER_OVERRIDE2__PRESERVE_ZRANGE_MASK 0x00200000L
+#define DB_RENDER_OVERRIDE2__PRESERVE_SRESULTS_MASK 0x00400000L
+#define DB_RENDER_OVERRIDE2__DISABLE_FAST_PASS_MASK 0x00800000L
+#define DB_RENDER_OVERRIDE2__ALLOW_PARTIAL_RES_HIER_KILL_MASK 0x02000000L
+//DB_HTILE_DATA_BASE
+#define DB_HTILE_DATA_BASE__BASE_256B__SHIFT 0x0
+#define DB_HTILE_DATA_BASE__BASE_256B_MASK 0xFFFFFFFFL
+//DB_HTILE_DATA_BASE_HI
+#define DB_HTILE_DATA_BASE_HI__BASE_HI__SHIFT 0x0
+#define DB_HTILE_DATA_BASE_HI__BASE_HI_MASK 0x000000FFL
+//DB_DEPTH_SIZE
+#define DB_DEPTH_SIZE__X_MAX__SHIFT 0x0
+#define DB_DEPTH_SIZE__Y_MAX__SHIFT 0x10
+#define DB_DEPTH_SIZE__X_MAX_MASK 0x00003FFFL
+#define DB_DEPTH_SIZE__Y_MAX_MASK 0x3FFF0000L
+//DB_DEPTH_BOUNDS_MIN
+#define DB_DEPTH_BOUNDS_MIN__MIN__SHIFT 0x0
+#define DB_DEPTH_BOUNDS_MIN__MIN_MASK 0xFFFFFFFFL
+//DB_DEPTH_BOUNDS_MAX
+#define DB_DEPTH_BOUNDS_MAX__MAX__SHIFT 0x0
+#define DB_DEPTH_BOUNDS_MAX__MAX_MASK 0xFFFFFFFFL
+//DB_STENCIL_CLEAR
+#define DB_STENCIL_CLEAR__CLEAR__SHIFT 0x0
+#define DB_STENCIL_CLEAR__CLEAR_MASK 0x000000FFL
+//DB_DEPTH_CLEAR
+#define DB_DEPTH_CLEAR__DEPTH_CLEAR__SHIFT 0x0
+#define DB_DEPTH_CLEAR__DEPTH_CLEAR_MASK 0xFFFFFFFFL
+//PA_SC_SCREEN_SCISSOR_TL
+#define PA_SC_SCREEN_SCISSOR_TL__TL_X__SHIFT 0x0
+#define PA_SC_SCREEN_SCISSOR_TL__TL_Y__SHIFT 0x10
+#define PA_SC_SCREEN_SCISSOR_TL__TL_X_MASK 0x0000FFFFL
+#define PA_SC_SCREEN_SCISSOR_TL__TL_Y_MASK 0xFFFF0000L
+//PA_SC_SCREEN_SCISSOR_BR
+#define PA_SC_SCREEN_SCISSOR_BR__BR_X__SHIFT 0x0
+#define PA_SC_SCREEN_SCISSOR_BR__BR_Y__SHIFT 0x10
+#define PA_SC_SCREEN_SCISSOR_BR__BR_X_MASK 0x0000FFFFL
+#define PA_SC_SCREEN_SCISSOR_BR__BR_Y_MASK 0xFFFF0000L
+//DB_Z_INFO
+#define DB_Z_INFO__FORMAT__SHIFT 0x0
+#define DB_Z_INFO__NUM_SAMPLES__SHIFT 0x2
+#define DB_Z_INFO__SW_MODE__SHIFT 0x4
+#define DB_Z_INFO__PARTIALLY_RESIDENT__SHIFT 0xc
+#define DB_Z_INFO__FAULT_BEHAVIOR__SHIFT 0xd
+#define DB_Z_INFO__ITERATE_FLUSH__SHIFT 0xf
+#define DB_Z_INFO__MAXMIP__SHIFT 0x10
+#define DB_Z_INFO__DECOMPRESS_ON_N_ZPLANES__SHIFT 0x17
+#define DB_Z_INFO__ALLOW_EXPCLEAR__SHIFT 0x1b
+#define DB_Z_INFO__READ_SIZE__SHIFT 0x1c
+#define DB_Z_INFO__TILE_SURFACE_ENABLE__SHIFT 0x1d
+#define DB_Z_INFO__CLEAR_DISALLOWED__SHIFT 0x1e
+#define DB_Z_INFO__ZRANGE_PRECISION__SHIFT 0x1f
+#define DB_Z_INFO__FORMAT_MASK 0x00000003L
+#define DB_Z_INFO__NUM_SAMPLES_MASK 0x0000000CL
+#define DB_Z_INFO__SW_MODE_MASK 0x000001F0L
+#define DB_Z_INFO__PARTIALLY_RESIDENT_MASK 0x00001000L
+#define DB_Z_INFO__FAULT_BEHAVIOR_MASK 0x00006000L
+#define DB_Z_INFO__ITERATE_FLUSH_MASK 0x00008000L
+#define DB_Z_INFO__MAXMIP_MASK 0x000F0000L
+#define DB_Z_INFO__DECOMPRESS_ON_N_ZPLANES_MASK 0x07800000L
+#define DB_Z_INFO__ALLOW_EXPCLEAR_MASK 0x08000000L
+#define DB_Z_INFO__READ_SIZE_MASK 0x10000000L
+#define DB_Z_INFO__TILE_SURFACE_ENABLE_MASK 0x20000000L
+#define DB_Z_INFO__CLEAR_DISALLOWED_MASK 0x40000000L
+#define DB_Z_INFO__ZRANGE_PRECISION_MASK 0x80000000L
+//DB_STENCIL_INFO
+#define DB_STENCIL_INFO__FORMAT__SHIFT 0x0
+#define DB_STENCIL_INFO__SW_MODE__SHIFT 0x4
+#define DB_STENCIL_INFO__PARTIALLY_RESIDENT__SHIFT 0xc
+#define DB_STENCIL_INFO__FAULT_BEHAVIOR__SHIFT 0xd
+#define DB_STENCIL_INFO__ITERATE_FLUSH__SHIFT 0xf
+#define DB_STENCIL_INFO__ALLOW_EXPCLEAR__SHIFT 0x1b
+#define DB_STENCIL_INFO__TILE_STENCIL_DISABLE__SHIFT 0x1d
+#define DB_STENCIL_INFO__CLEAR_DISALLOWED__SHIFT 0x1e
+#define DB_STENCIL_INFO__FORMAT_MASK 0x00000001L
+#define DB_STENCIL_INFO__SW_MODE_MASK 0x000001F0L
+#define DB_STENCIL_INFO__PARTIALLY_RESIDENT_MASK 0x00001000L
+#define DB_STENCIL_INFO__FAULT_BEHAVIOR_MASK 0x00006000L
+#define DB_STENCIL_INFO__ITERATE_FLUSH_MASK 0x00008000L
+#define DB_STENCIL_INFO__ALLOW_EXPCLEAR_MASK 0x08000000L
+#define DB_STENCIL_INFO__TILE_STENCIL_DISABLE_MASK 0x20000000L
+#define DB_STENCIL_INFO__CLEAR_DISALLOWED_MASK 0x40000000L
+//DB_Z_READ_BASE
+#define DB_Z_READ_BASE__BASE_256B__SHIFT 0x0
+#define DB_Z_READ_BASE__BASE_256B_MASK 0xFFFFFFFFL
+//DB_Z_READ_BASE_HI
+#define DB_Z_READ_BASE_HI__BASE_HI__SHIFT 0x0
+#define DB_Z_READ_BASE_HI__BASE_HI_MASK 0x000000FFL
+//DB_STENCIL_READ_BASE
+#define DB_STENCIL_READ_BASE__BASE_256B__SHIFT 0x0
+#define DB_STENCIL_READ_BASE__BASE_256B_MASK 0xFFFFFFFFL
+//DB_STENCIL_READ_BASE_HI
+#define DB_STENCIL_READ_BASE_HI__BASE_HI__SHIFT 0x0
+#define DB_STENCIL_READ_BASE_HI__BASE_HI_MASK 0x000000FFL
+//DB_Z_WRITE_BASE
+#define DB_Z_WRITE_BASE__BASE_256B__SHIFT 0x0
+#define DB_Z_WRITE_BASE__BASE_256B_MASK 0xFFFFFFFFL
+//DB_Z_WRITE_BASE_HI
+#define DB_Z_WRITE_BASE_HI__BASE_HI__SHIFT 0x0
+#define DB_Z_WRITE_BASE_HI__BASE_HI_MASK 0x000000FFL
+//DB_STENCIL_WRITE_BASE
+#define DB_STENCIL_WRITE_BASE__BASE_256B__SHIFT 0x0
+#define DB_STENCIL_WRITE_BASE__BASE_256B_MASK 0xFFFFFFFFL
+//DB_STENCIL_WRITE_BASE_HI
+#define DB_STENCIL_WRITE_BASE_HI__BASE_HI__SHIFT 0x0
+#define DB_STENCIL_WRITE_BASE_HI__BASE_HI_MASK 0x000000FFL
+//DB_DFSM_CONTROL
+#define DB_DFSM_CONTROL__PUNCHOUT_MODE__SHIFT 0x0
+#define DB_DFSM_CONTROL__POPS_DRAIN_PS_ON_OVERLAP__SHIFT 0x2
+#define DB_DFSM_CONTROL__DISALLOW_OVERFLOW__SHIFT 0x3
+#define DB_DFSM_CONTROL__PUNCHOUT_MODE_MASK 0x00000003L
+#define DB_DFSM_CONTROL__POPS_DRAIN_PS_ON_OVERLAP_MASK 0x00000004L
+#define DB_DFSM_CONTROL__DISALLOW_OVERFLOW_MASK 0x00000008L
+//DB_Z_INFO2
+#define DB_Z_INFO2__EPITCH__SHIFT 0x0
+#define DB_Z_INFO2__EPITCH_MASK 0x0000FFFFL
+//DB_STENCIL_INFO2
+#define DB_STENCIL_INFO2__EPITCH__SHIFT 0x0
+#define DB_STENCIL_INFO2__EPITCH_MASK 0x0000FFFFL
+//COHER_DEST_BASE_HI_0
+#define COHER_DEST_BASE_HI_0__DEST_BASE_HI_256B__SHIFT 0x0
+#define COHER_DEST_BASE_HI_0__DEST_BASE_HI_256B_MASK 0x000000FFL
+//COHER_DEST_BASE_HI_1
+#define COHER_DEST_BASE_HI_1__DEST_BASE_HI_256B__SHIFT 0x0
+#define COHER_DEST_BASE_HI_1__DEST_BASE_HI_256B_MASK 0x000000FFL
+//COHER_DEST_BASE_HI_2
+#define COHER_DEST_BASE_HI_2__DEST_BASE_HI_256B__SHIFT 0x0
+#define COHER_DEST_BASE_HI_2__DEST_BASE_HI_256B_MASK 0x000000FFL
+//COHER_DEST_BASE_HI_3
+#define COHER_DEST_BASE_HI_3__DEST_BASE_HI_256B__SHIFT 0x0
+#define COHER_DEST_BASE_HI_3__DEST_BASE_HI_256B_MASK 0x000000FFL
+//COHER_DEST_BASE_2
+#define COHER_DEST_BASE_2__DEST_BASE_256B__SHIFT 0x0
+#define COHER_DEST_BASE_2__DEST_BASE_256B_MASK 0xFFFFFFFFL
+//COHER_DEST_BASE_3
+#define COHER_DEST_BASE_3__DEST_BASE_256B__SHIFT 0x0
+#define COHER_DEST_BASE_3__DEST_BASE_256B_MASK 0xFFFFFFFFL
+//PA_SC_WINDOW_OFFSET
+#define PA_SC_WINDOW_OFFSET__WINDOW_X_OFFSET__SHIFT 0x0
+#define PA_SC_WINDOW_OFFSET__WINDOW_Y_OFFSET__SHIFT 0x10
+#define PA_SC_WINDOW_OFFSET__WINDOW_X_OFFSET_MASK 0x0000FFFFL
+#define PA_SC_WINDOW_OFFSET__WINDOW_Y_OFFSET_MASK 0xFFFF0000L
+//PA_SC_WINDOW_SCISSOR_TL
+#define PA_SC_WINDOW_SCISSOR_TL__TL_X__SHIFT 0x0
+#define PA_SC_WINDOW_SCISSOR_TL__TL_Y__SHIFT 0x10
+#define PA_SC_WINDOW_SCISSOR_TL__WINDOW_OFFSET_DISABLE__SHIFT 0x1f
+#define PA_SC_WINDOW_SCISSOR_TL__TL_X_MASK 0x00007FFFL
+#define PA_SC_WINDOW_SCISSOR_TL__TL_Y_MASK 0x7FFF0000L
+#define PA_SC_WINDOW_SCISSOR_TL__WINDOW_OFFSET_DISABLE_MASK 0x80000000L
+//PA_SC_WINDOW_SCISSOR_BR
+#define PA_SC_WINDOW_SCISSOR_BR__BR_X__SHIFT 0x0
+#define PA_SC_WINDOW_SCISSOR_BR__BR_Y__SHIFT 0x10
+#define PA_SC_WINDOW_SCISSOR_BR__BR_X_MASK 0x00007FFFL
+#define PA_SC_WINDOW_SCISSOR_BR__BR_Y_MASK 0x7FFF0000L
+//PA_SC_CLIPRECT_RULE
+#define PA_SC_CLIPRECT_RULE__CLIP_RULE__SHIFT 0x0
+#define PA_SC_CLIPRECT_RULE__CLIP_RULE_MASK 0x0000FFFFL
+//PA_SC_CLIPRECT_0_TL
+#define PA_SC_CLIPRECT_0_TL__TL_X__SHIFT 0x0
+#define PA_SC_CLIPRECT_0_TL__TL_Y__SHIFT 0x10
+#define PA_SC_CLIPRECT_0_TL__TL_X_MASK 0x00007FFFL
+#define PA_SC_CLIPRECT_0_TL__TL_Y_MASK 0x7FFF0000L
+//PA_SC_CLIPRECT_0_BR
+#define PA_SC_CLIPRECT_0_BR__BR_X__SHIFT 0x0
+#define PA_SC_CLIPRECT_0_BR__BR_Y__SHIFT 0x10
+#define PA_SC_CLIPRECT_0_BR__BR_X_MASK 0x00007FFFL
+#define PA_SC_CLIPRECT_0_BR__BR_Y_MASK 0x7FFF0000L
+//PA_SC_CLIPRECT_1_TL
+#define PA_SC_CLIPRECT_1_TL__TL_X__SHIFT 0x0
+#define PA_SC_CLIPRECT_1_TL__TL_Y__SHIFT 0x10
+#define PA_SC_CLIPRECT_1_TL__TL_X_MASK 0x00007FFFL
+#define PA_SC_CLIPRECT_1_TL__TL_Y_MASK 0x7FFF0000L
+//PA_SC_CLIPRECT_1_BR
+#define PA_SC_CLIPRECT_1_BR__BR_X__SHIFT 0x0
+#define PA_SC_CLIPRECT_1_BR__BR_Y__SHIFT 0x10
+#define PA_SC_CLIPRECT_1_BR__BR_X_MASK 0x00007FFFL
+#define PA_SC_CLIPRECT_1_BR__BR_Y_MASK 0x7FFF0000L
+//PA_SC_CLIPRECT_2_TL
+#define PA_SC_CLIPRECT_2_TL__TL_X__SHIFT 0x0
+#define PA_SC_CLIPRECT_2_TL__TL_Y__SHIFT 0x10
+#define PA_SC_CLIPRECT_2_TL__TL_X_MASK 0x00007FFFL
+#define PA_SC_CLIPRECT_2_TL__TL_Y_MASK 0x7FFF0000L
+//PA_SC_CLIPRECT_2_BR
+#define PA_SC_CLIPRECT_2_BR__BR_X__SHIFT 0x0
+#define PA_SC_CLIPRECT_2_BR__BR_Y__SHIFT 0x10
+#define PA_SC_CLIPRECT_2_BR__BR_X_MASK 0x00007FFFL
+#define PA_SC_CLIPRECT_2_BR__BR_Y_MASK 0x7FFF0000L
+//PA_SC_CLIPRECT_3_TL
+#define PA_SC_CLIPRECT_3_TL__TL_X__SHIFT 0x0
+#define PA_SC_CLIPRECT_3_TL__TL_Y__SHIFT 0x10
+#define PA_SC_CLIPRECT_3_TL__TL_X_MASK 0x00007FFFL
+#define PA_SC_CLIPRECT_3_TL__TL_Y_MASK 0x7FFF0000L
+//PA_SC_CLIPRECT_3_BR
+#define PA_SC_CLIPRECT_3_BR__BR_X__SHIFT 0x0
+#define PA_SC_CLIPRECT_3_BR__BR_Y__SHIFT 0x10
+#define PA_SC_CLIPRECT_3_BR__BR_X_MASK 0x00007FFFL
+#define PA_SC_CLIPRECT_3_BR__BR_Y_MASK 0x7FFF0000L
+//PA_SC_EDGERULE
+#define PA_SC_EDGERULE__ER_TRI__SHIFT 0x0
+#define PA_SC_EDGERULE__ER_POINT__SHIFT 0x4
+#define PA_SC_EDGERULE__ER_RECT__SHIFT 0x8
+#define PA_SC_EDGERULE__ER_LINE_LR__SHIFT 0xc
+#define PA_SC_EDGERULE__ER_LINE_RL__SHIFT 0x12
+#define PA_SC_EDGERULE__ER_LINE_TB__SHIFT 0x18
+#define PA_SC_EDGERULE__ER_LINE_BT__SHIFT 0x1c
+#define PA_SC_EDGERULE__ER_TRI_MASK 0x0000000FL
+#define PA_SC_EDGERULE__ER_POINT_MASK 0x000000F0L
+#define PA_SC_EDGERULE__ER_RECT_MASK 0x00000F00L
+#define PA_SC_EDGERULE__ER_LINE_LR_MASK 0x0003F000L
+#define PA_SC_EDGERULE__ER_LINE_RL_MASK 0x00FC0000L
+#define PA_SC_EDGERULE__ER_LINE_TB_MASK 0x0F000000L
+#define PA_SC_EDGERULE__ER_LINE_BT_MASK 0xF0000000L
+//PA_SU_HARDWARE_SCREEN_OFFSET
+#define PA_SU_HARDWARE_SCREEN_OFFSET__HW_SCREEN_OFFSET_X__SHIFT 0x0
+#define PA_SU_HARDWARE_SCREEN_OFFSET__HW_SCREEN_OFFSET_Y__SHIFT 0x10
+#define PA_SU_HARDWARE_SCREEN_OFFSET__HW_SCREEN_OFFSET_X_MASK 0x000001FFL
+#define PA_SU_HARDWARE_SCREEN_OFFSET__HW_SCREEN_OFFSET_Y_MASK 0x01FF0000L
+//CB_TARGET_MASK
+#define CB_TARGET_MASK__TARGET0_ENABLE__SHIFT 0x0
+#define CB_TARGET_MASK__TARGET1_ENABLE__SHIFT 0x4
+#define CB_TARGET_MASK__TARGET2_ENABLE__SHIFT 0x8
+#define CB_TARGET_MASK__TARGET3_ENABLE__SHIFT 0xc
+#define CB_TARGET_MASK__TARGET4_ENABLE__SHIFT 0x10
+#define CB_TARGET_MASK__TARGET5_ENABLE__SHIFT 0x14
+#define CB_TARGET_MASK__TARGET6_ENABLE__SHIFT 0x18
+#define CB_TARGET_MASK__TARGET7_ENABLE__SHIFT 0x1c
+#define CB_TARGET_MASK__TARGET0_ENABLE_MASK 0x0000000FL
+#define CB_TARGET_MASK__TARGET1_ENABLE_MASK 0x000000F0L
+#define CB_TARGET_MASK__TARGET2_ENABLE_MASK 0x00000F00L
+#define CB_TARGET_MASK__TARGET3_ENABLE_MASK 0x0000F000L
+#define CB_TARGET_MASK__TARGET4_ENABLE_MASK 0x000F0000L
+#define CB_TARGET_MASK__TARGET5_ENABLE_MASK 0x00F00000L
+#define CB_TARGET_MASK__TARGET6_ENABLE_MASK 0x0F000000L
+#define CB_TARGET_MASK__TARGET7_ENABLE_MASK 0xF0000000L
+//CB_SHADER_MASK
+#define CB_SHADER_MASK__OUTPUT0_ENABLE__SHIFT 0x0
+#define CB_SHADER_MASK__OUTPUT1_ENABLE__SHIFT 0x4
+#define CB_SHADER_MASK__OUTPUT2_ENABLE__SHIFT 0x8
+#define CB_SHADER_MASK__OUTPUT3_ENABLE__SHIFT 0xc
+#define CB_SHADER_MASK__OUTPUT4_ENABLE__SHIFT 0x10
+#define CB_SHADER_MASK__OUTPUT5_ENABLE__SHIFT 0x14
+#define CB_SHADER_MASK__OUTPUT6_ENABLE__SHIFT 0x18
+#define CB_SHADER_MASK__OUTPUT7_ENABLE__SHIFT 0x1c
+#define CB_SHADER_MASK__OUTPUT0_ENABLE_MASK 0x0000000FL
+#define CB_SHADER_MASK__OUTPUT1_ENABLE_MASK 0x000000F0L
+#define CB_SHADER_MASK__OUTPUT2_ENABLE_MASK 0x00000F00L
+#define CB_SHADER_MASK__OUTPUT3_ENABLE_MASK 0x0000F000L
+#define CB_SHADER_MASK__OUTPUT4_ENABLE_MASK 0x000F0000L
+#define CB_SHADER_MASK__OUTPUT5_ENABLE_MASK 0x00F00000L
+#define CB_SHADER_MASK__OUTPUT6_ENABLE_MASK 0x0F000000L
+#define CB_SHADER_MASK__OUTPUT7_ENABLE_MASK 0xF0000000L
+//PA_SC_GENERIC_SCISSOR_TL
+#define PA_SC_GENERIC_SCISSOR_TL__TL_X__SHIFT 0x0
+#define PA_SC_GENERIC_SCISSOR_TL__TL_Y__SHIFT 0x10
+#define PA_SC_GENERIC_SCISSOR_TL__WINDOW_OFFSET_DISABLE__SHIFT 0x1f
+#define PA_SC_GENERIC_SCISSOR_TL__TL_X_MASK 0x00007FFFL
+#define PA_SC_GENERIC_SCISSOR_TL__TL_Y_MASK 0x7FFF0000L
+#define PA_SC_GENERIC_SCISSOR_TL__WINDOW_OFFSET_DISABLE_MASK 0x80000000L
+//PA_SC_GENERIC_SCISSOR_BR
+#define PA_SC_GENERIC_SCISSOR_BR__BR_X__SHIFT 0x0
+#define PA_SC_GENERIC_SCISSOR_BR__BR_Y__SHIFT 0x10
+#define PA_SC_GENERIC_SCISSOR_BR__BR_X_MASK 0x00007FFFL
+#define PA_SC_GENERIC_SCISSOR_BR__BR_Y_MASK 0x7FFF0000L
+//COHER_DEST_BASE_0
+#define COHER_DEST_BASE_0__DEST_BASE_256B__SHIFT 0x0
+#define COHER_DEST_BASE_0__DEST_BASE_256B_MASK 0xFFFFFFFFL
+//COHER_DEST_BASE_1
+#define COHER_DEST_BASE_1__DEST_BASE_256B__SHIFT 0x0
+#define COHER_DEST_BASE_1__DEST_BASE_256B_MASK 0xFFFFFFFFL
+//PA_SC_VPORT_SCISSOR_0_TL
+#define PA_SC_VPORT_SCISSOR_0_TL__TL_X__SHIFT 0x0
+#define PA_SC_VPORT_SCISSOR_0_TL__TL_Y__SHIFT 0x10
+#define PA_SC_VPORT_SCISSOR_0_TL__WINDOW_OFFSET_DISABLE__SHIFT 0x1f
+#define PA_SC_VPORT_SCISSOR_0_TL__TL_X_MASK 0x00007FFFL
+#define PA_SC_VPORT_SCISSOR_0_TL__TL_Y_MASK 0x7FFF0000L
+#define PA_SC_VPORT_SCISSOR_0_TL__WINDOW_OFFSET_DISABLE_MASK 0x80000000L
+//PA_SC_VPORT_SCISSOR_0_BR
+#define PA_SC_VPORT_SCISSOR_0_BR__BR_X__SHIFT 0x0
+#define PA_SC_VPORT_SCISSOR_0_BR__BR_Y__SHIFT 0x10
+#define PA_SC_VPORT_SCISSOR_0_BR__BR_X_MASK 0x00007FFFL
+#define PA_SC_VPORT_SCISSOR_0_BR__BR_Y_MASK 0x7FFF0000L
+//PA_SC_VPORT_SCISSOR_1_TL
+#define PA_SC_VPORT_SCISSOR_1_TL__TL_X__SHIFT 0x0
+#define PA_SC_VPORT_SCISSOR_1_TL__TL_Y__SHIFT 0x10
+#define PA_SC_VPORT_SCISSOR_1_TL__WINDOW_OFFSET_DISABLE__SHIFT 0x1f
+#define PA_SC_VPORT_SCISSOR_1_TL__TL_X_MASK 0x00007FFFL
+#define PA_SC_VPORT_SCISSOR_1_TL__TL_Y_MASK 0x7FFF0000L
+#define PA_SC_VPORT_SCISSOR_1_TL__WINDOW_OFFSET_DISABLE_MASK 0x80000000L
+//PA_SC_VPORT_SCISSOR_1_BR
+#define PA_SC_VPORT_SCISSOR_1_BR__BR_X__SHIFT 0x0
+#define PA_SC_VPORT_SCISSOR_1_BR__BR_Y__SHIFT 0x10
+#define PA_SC_VPORT_SCISSOR_1_BR__BR_X_MASK 0x00007FFFL
+#define PA_SC_VPORT_SCISSOR_1_BR__BR_Y_MASK 0x7FFF0000L
+//PA_SC_VPORT_SCISSOR_2_TL
+#define PA_SC_VPORT_SCISSOR_2_TL__TL_X__SHIFT 0x0
+#define PA_SC_VPORT_SCISSOR_2_TL__TL_Y__SHIFT 0x10
+#define PA_SC_VPORT_SCISSOR_2_TL__WINDOW_OFFSET_DISABLE__SHIFT 0x1f
+#define PA_SC_VPORT_SCISSOR_2_TL__TL_X_MASK 0x00007FFFL
+#define PA_SC_VPORT_SCISSOR_2_TL__TL_Y_MASK 0x7FFF0000L
+#define PA_SC_VPORT_SCISSOR_2_TL__WINDOW_OFFSET_DISABLE_MASK 0x80000000L
+//PA_SC_VPORT_SCISSOR_2_BR
+#define PA_SC_VPORT_SCISSOR_2_BR__BR_X__SHIFT 0x0
+#define PA_SC_VPORT_SCISSOR_2_BR__BR_Y__SHIFT 0x10
+#define PA_SC_VPORT_SCISSOR_2_BR__BR_X_MASK 0x00007FFFL
+#define PA_SC_VPORT_SCISSOR_2_BR__BR_Y_MASK 0x7FFF0000L
+//PA_SC_VPORT_SCISSOR_3_TL
+#define PA_SC_VPORT_SCISSOR_3_TL__TL_X__SHIFT 0x0
+#define PA_SC_VPORT_SCISSOR_3_TL__TL_Y__SHIFT 0x10
+#define PA_SC_VPORT_SCISSOR_3_TL__WINDOW_OFFSET_DISABLE__SHIFT 0x1f
+#define PA_SC_VPORT_SCISSOR_3_TL__TL_X_MASK 0x00007FFFL
+#define PA_SC_VPORT_SCISSOR_3_TL__TL_Y_MASK 0x7FFF0000L
+#define PA_SC_VPORT_SCISSOR_3_TL__WINDOW_OFFSET_DISABLE_MASK 0x80000000L
+//PA_SC_VPORT_SCISSOR_3_BR
+#define PA_SC_VPORT_SCISSOR_3_BR__BR_X__SHIFT 0x0
+#define PA_SC_VPORT_SCISSOR_3_BR__BR_Y__SHIFT 0x10
+#define PA_SC_VPORT_SCISSOR_3_BR__BR_X_MASK 0x00007FFFL
+#define PA_SC_VPORT_SCISSOR_3_BR__BR_Y_MASK 0x7FFF0000L
+//PA_SC_VPORT_SCISSOR_4_TL
+#define PA_SC_VPORT_SCISSOR_4_TL__TL_X__SHIFT 0x0
+#define PA_SC_VPORT_SCISSOR_4_TL__TL_Y__SHIFT 0x10
+#define PA_SC_VPORT_SCISSOR_4_TL__WINDOW_OFFSET_DISABLE__SHIFT 0x1f
+#define PA_SC_VPORT_SCISSOR_4_TL__TL_X_MASK 0x00007FFFL
+#define PA_SC_VPORT_SCISSOR_4_TL__TL_Y_MASK 0x7FFF0000L
+#define PA_SC_VPORT_SCISSOR_4_TL__WINDOW_OFFSET_DISABLE_MASK 0x80000000L
+//PA_SC_VPORT_SCISSOR_4_BR
+#define PA_SC_VPORT_SCISSOR_4_BR__BR_X__SHIFT 0x0
+#define PA_SC_VPORT_SCISSOR_4_BR__BR_Y__SHIFT 0x10
+#define PA_SC_VPORT_SCISSOR_4_BR__BR_X_MASK 0x00007FFFL
+#define PA_SC_VPORT_SCISSOR_4_BR__BR_Y_MASK 0x7FFF0000L
+//PA_SC_VPORT_SCISSOR_5_TL
+#define PA_SC_VPORT_SCISSOR_5_TL__TL_X__SHIFT 0x0
+#define PA_SC_VPORT_SCISSOR_5_TL__TL_Y__SHIFT 0x10
+#define PA_SC_VPORT_SCISSOR_5_TL__WINDOW_OFFSET_DISABLE__SHIFT 0x1f
+#define PA_SC_VPORT_SCISSOR_5_TL__TL_X_MASK 0x00007FFFL
+#define PA_SC_VPORT_SCISSOR_5_TL__TL_Y_MASK 0x7FFF0000L
+#define PA_SC_VPORT_SCISSOR_5_TL__WINDOW_OFFSET_DISABLE_MASK 0x80000000L
+//PA_SC_VPORT_SCISSOR_5_BR
+#define PA_SC_VPORT_SCISSOR_5_BR__BR_X__SHIFT 0x0
+#define PA_SC_VPORT_SCISSOR_5_BR__BR_Y__SHIFT 0x10
+#define PA_SC_VPORT_SCISSOR_5_BR__BR_X_MASK 0x00007FFFL
+#define PA_SC_VPORT_SCISSOR_5_BR__BR_Y_MASK 0x7FFF0000L
+//PA_SC_VPORT_SCISSOR_6_TL
+#define PA_SC_VPORT_SCISSOR_6_TL__TL_X__SHIFT 0x0
+#define PA_SC_VPORT_SCISSOR_6_TL__TL_Y__SHIFT 0x10
+#define PA_SC_VPORT_SCISSOR_6_TL__WINDOW_OFFSET_DISABLE__SHIFT 0x1f
+#define PA_SC_VPORT_SCISSOR_6_TL__TL_X_MASK 0x00007FFFL
+#define PA_SC_VPORT_SCISSOR_6_TL__TL_Y_MASK 0x7FFF0000L
+#define PA_SC_VPORT_SCISSOR_6_TL__WINDOW_OFFSET_DISABLE_MASK 0x80000000L
+//PA_SC_VPORT_SCISSOR_6_BR
+#define PA_SC_VPORT_SCISSOR_6_BR__BR_X__SHIFT 0x0
+#define PA_SC_VPORT_SCISSOR_6_BR__BR_Y__SHIFT 0x10
+#define PA_SC_VPORT_SCISSOR_6_BR__BR_X_MASK 0x00007FFFL
+#define PA_SC_VPORT_SCISSOR_6_BR__BR_Y_MASK 0x7FFF0000L
+//PA_SC_VPORT_SCISSOR_7_TL
+#define PA_SC_VPORT_SCISSOR_7_TL__TL_X__SHIFT 0x0
+#define PA_SC_VPORT_SCISSOR_7_TL__TL_Y__SHIFT 0x10
+#define PA_SC_VPORT_SCISSOR_7_TL__WINDOW_OFFSET_DISABLE__SHIFT 0x1f
+#define PA_SC_VPORT_SCISSOR_7_TL__TL_X_MASK 0x00007FFFL
+#define PA_SC_VPORT_SCISSOR_7_TL__TL_Y_MASK 0x7FFF0000L
+#define PA_SC_VPORT_SCISSOR_7_TL__WINDOW_OFFSET_DISABLE_MASK 0x80000000L
+//PA_SC_VPORT_SCISSOR_7_BR
+#define PA_SC_VPORT_SCISSOR_7_BR__BR_X__SHIFT 0x0
+#define PA_SC_VPORT_SCISSOR_7_BR__BR_Y__SHIFT 0x10
+#define PA_SC_VPORT_SCISSOR_7_BR__BR_X_MASK 0x00007FFFL
+#define PA_SC_VPORT_SCISSOR_7_BR__BR_Y_MASK 0x7FFF0000L
+//PA_SC_VPORT_SCISSOR_8_TL
+#define PA_SC_VPORT_SCISSOR_8_TL__TL_X__SHIFT 0x0
+#define PA_SC_VPORT_SCISSOR_8_TL__TL_Y__SHIFT 0x10
+#define PA_SC_VPORT_SCISSOR_8_TL__WINDOW_OFFSET_DISABLE__SHIFT 0x1f
+#define PA_SC_VPORT_SCISSOR_8_TL__TL_X_MASK 0x00007FFFL
+#define PA_SC_VPORT_SCISSOR_8_TL__TL_Y_MASK 0x7FFF0000L
+#define PA_SC_VPORT_SCISSOR_8_TL__WINDOW_OFFSET_DISABLE_MASK 0x80000000L
+//PA_SC_VPORT_SCISSOR_8_BR
+#define PA_SC_VPORT_SCISSOR_8_BR__BR_X__SHIFT 0x0
+#define PA_SC_VPORT_SCISSOR_8_BR__BR_Y__SHIFT 0x10
+#define PA_SC_VPORT_SCISSOR_8_BR__BR_X_MASK 0x00007FFFL
+#define PA_SC_VPORT_SCISSOR_8_BR__BR_Y_MASK 0x7FFF0000L
+//PA_SC_VPORT_SCISSOR_9_TL
+#define PA_SC_VPORT_SCISSOR_9_TL__TL_X__SHIFT 0x0
+#define PA_SC_VPORT_SCISSOR_9_TL__TL_Y__SHIFT 0x10
+#define PA_SC_VPORT_SCISSOR_9_TL__WINDOW_OFFSET_DISABLE__SHIFT 0x1f
+#define PA_SC_VPORT_SCISSOR_9_TL__TL_X_MASK 0x00007FFFL
+#define PA_SC_VPORT_SCISSOR_9_TL__TL_Y_MASK 0x7FFF0000L
+#define PA_SC_VPORT_SCISSOR_9_TL__WINDOW_OFFSET_DISABLE_MASK 0x80000000L
+//PA_SC_VPORT_SCISSOR_9_BR
+#define PA_SC_VPORT_SCISSOR_9_BR__BR_X__SHIFT 0x0
+#define PA_SC_VPORT_SCISSOR_9_BR__BR_Y__SHIFT 0x10
+#define PA_SC_VPORT_SCISSOR_9_BR__BR_X_MASK 0x00007FFFL
+#define PA_SC_VPORT_SCISSOR_9_BR__BR_Y_MASK 0x7FFF0000L
+//PA_SC_VPORT_SCISSOR_10_TL
+#define PA_SC_VPORT_SCISSOR_10_TL__TL_X__SHIFT 0x0
+#define PA_SC_VPORT_SCISSOR_10_TL__TL_Y__SHIFT 0x10
+#define PA_SC_VPORT_SCISSOR_10_TL__WINDOW_OFFSET_DISABLE__SHIFT 0x1f
+#define PA_SC_VPORT_SCISSOR_10_TL__TL_X_MASK 0x00007FFFL
+#define PA_SC_VPORT_SCISSOR_10_TL__TL_Y_MASK 0x7FFF0000L
+#define PA_SC_VPORT_SCISSOR_10_TL__WINDOW_OFFSET_DISABLE_MASK 0x80000000L
+//PA_SC_VPORT_SCISSOR_10_BR
+#define PA_SC_VPORT_SCISSOR_10_BR__BR_X__SHIFT 0x0
+#define PA_SC_VPORT_SCISSOR_10_BR__BR_Y__SHIFT 0x10
+#define PA_SC_VPORT_SCISSOR_10_BR__BR_X_MASK 0x00007FFFL
+#define PA_SC_VPORT_SCISSOR_10_BR__BR_Y_MASK 0x7FFF0000L
+//PA_SC_VPORT_SCISSOR_11_TL
+#define PA_SC_VPORT_SCISSOR_11_TL__TL_X__SHIFT 0x0
+#define PA_SC_VPORT_SCISSOR_11_TL__TL_Y__SHIFT 0x10
+#define PA_SC_VPORT_SCISSOR_11_TL__WINDOW_OFFSET_DISABLE__SHIFT 0x1f
+#define PA_SC_VPORT_SCISSOR_11_TL__TL_X_MASK 0x00007FFFL
+#define PA_SC_VPORT_SCISSOR_11_TL__TL_Y_MASK 0x7FFF0000L
+#define PA_SC_VPORT_SCISSOR_11_TL__WINDOW_OFFSET_DISABLE_MASK 0x80000000L
+//PA_SC_VPORT_SCISSOR_11_BR
+#define PA_SC_VPORT_SCISSOR_11_BR__BR_X__SHIFT 0x0
+#define PA_SC_VPORT_SCISSOR_11_BR__BR_Y__SHIFT 0x10
+#define PA_SC_VPORT_SCISSOR_11_BR__BR_X_MASK 0x00007FFFL
+#define PA_SC_VPORT_SCISSOR_11_BR__BR_Y_MASK 0x7FFF0000L
+//PA_SC_VPORT_SCISSOR_12_TL
+#define PA_SC_VPORT_SCISSOR_12_TL__TL_X__SHIFT 0x0
+#define PA_SC_VPORT_SCISSOR_12_TL__TL_Y__SHIFT 0x10
+#define PA_SC_VPORT_SCISSOR_12_TL__WINDOW_OFFSET_DISABLE__SHIFT 0x1f
+#define PA_SC_VPORT_SCISSOR_12_TL__TL_X_MASK 0x00007FFFL
+#define PA_SC_VPORT_SCISSOR_12_TL__TL_Y_MASK 0x7FFF0000L
+#define PA_SC_VPORT_SCISSOR_12_TL__WINDOW_OFFSET_DISABLE_MASK 0x80000000L
+//PA_SC_VPORT_SCISSOR_12_BR
+#define PA_SC_VPORT_SCISSOR_12_BR__BR_X__SHIFT 0x0
+#define PA_SC_VPORT_SCISSOR_12_BR__BR_Y__SHIFT 0x10
+#define PA_SC_VPORT_SCISSOR_12_BR__BR_X_MASK 0x00007FFFL
+#define PA_SC_VPORT_SCISSOR_12_BR__BR_Y_MASK 0x7FFF0000L
+//PA_SC_VPORT_SCISSOR_13_TL
+#define PA_SC_VPORT_SCISSOR_13_TL__TL_X__SHIFT 0x0
+#define PA_SC_VPORT_SCISSOR_13_TL__TL_Y__SHIFT 0x10
+#define PA_SC_VPORT_SCISSOR_13_TL__WINDOW_OFFSET_DISABLE__SHIFT 0x1f
+#define PA_SC_VPORT_SCISSOR_13_TL__TL_X_MASK 0x00007FFFL
+#define PA_SC_VPORT_SCISSOR_13_TL__TL_Y_MASK 0x7FFF0000L
+#define PA_SC_VPORT_SCISSOR_13_TL__WINDOW_OFFSET_DISABLE_MASK 0x80000000L
+//PA_SC_VPORT_SCISSOR_13_BR
+#define PA_SC_VPORT_SCISSOR_13_BR__BR_X__SHIFT 0x0
+#define PA_SC_VPORT_SCISSOR_13_BR__BR_Y__SHIFT 0x10
+#define PA_SC_VPORT_SCISSOR_13_BR__BR_X_MASK 0x00007FFFL
+#define PA_SC_VPORT_SCISSOR_13_BR__BR_Y_MASK 0x7FFF0000L
+//PA_SC_VPORT_SCISSOR_14_TL
+#define PA_SC_VPORT_SCISSOR_14_TL__TL_X__SHIFT 0x0
+#define PA_SC_VPORT_SCISSOR_14_TL__TL_Y__SHIFT 0x10
+#define PA_SC_VPORT_SCISSOR_14_TL__WINDOW_OFFSET_DISABLE__SHIFT 0x1f
+#define PA_SC_VPORT_SCISSOR_14_TL__TL_X_MASK 0x00007FFFL
+#define PA_SC_VPORT_SCISSOR_14_TL__TL_Y_MASK 0x7FFF0000L
+#define PA_SC_VPORT_SCISSOR_14_TL__WINDOW_OFFSET_DISABLE_MASK 0x80000000L
+//PA_SC_VPORT_SCISSOR_14_BR
+#define PA_SC_VPORT_SCISSOR_14_BR__BR_X__SHIFT 0x0
+#define PA_SC_VPORT_SCISSOR_14_BR__BR_Y__SHIFT 0x10
+#define PA_SC_VPORT_SCISSOR_14_BR__BR_X_MASK 0x00007FFFL
+#define PA_SC_VPORT_SCISSOR_14_BR__BR_Y_MASK 0x7FFF0000L
+//PA_SC_VPORT_SCISSOR_15_TL
+#define PA_SC_VPORT_SCISSOR_15_TL__TL_X__SHIFT 0x0
+#define PA_SC_VPORT_SCISSOR_15_TL__TL_Y__SHIFT 0x10
+#define PA_SC_VPORT_SCISSOR_15_TL__WINDOW_OFFSET_DISABLE__SHIFT 0x1f
+#define PA_SC_VPORT_SCISSOR_15_TL__TL_X_MASK 0x00007FFFL
+#define PA_SC_VPORT_SCISSOR_15_TL__TL_Y_MASK 0x7FFF0000L
+#define PA_SC_VPORT_SCISSOR_15_TL__WINDOW_OFFSET_DISABLE_MASK 0x80000000L
+//PA_SC_VPORT_SCISSOR_15_BR
+#define PA_SC_VPORT_SCISSOR_15_BR__BR_X__SHIFT 0x0
+#define PA_SC_VPORT_SCISSOR_15_BR__BR_Y__SHIFT 0x10
+#define PA_SC_VPORT_SCISSOR_15_BR__BR_X_MASK 0x00007FFFL
+#define PA_SC_VPORT_SCISSOR_15_BR__BR_Y_MASK 0x7FFF0000L
+//PA_SC_VPORT_ZMIN_0
+#define PA_SC_VPORT_ZMIN_0__VPORT_ZMIN__SHIFT 0x0
+#define PA_SC_VPORT_ZMIN_0__VPORT_ZMIN_MASK 0xFFFFFFFFL
+//PA_SC_VPORT_ZMAX_0
+#define PA_SC_VPORT_ZMAX_0__VPORT_ZMAX__SHIFT 0x0
+#define PA_SC_VPORT_ZMAX_0__VPORT_ZMAX_MASK 0xFFFFFFFFL
+//PA_SC_VPORT_ZMIN_1
+#define PA_SC_VPORT_ZMIN_1__VPORT_ZMIN__SHIFT 0x0
+#define PA_SC_VPORT_ZMIN_1__VPORT_ZMIN_MASK 0xFFFFFFFFL
+//PA_SC_VPORT_ZMAX_1
+#define PA_SC_VPORT_ZMAX_1__VPORT_ZMAX__SHIFT 0x0
+#define PA_SC_VPORT_ZMAX_1__VPORT_ZMAX_MASK 0xFFFFFFFFL
+//PA_SC_VPORT_ZMIN_2
+#define PA_SC_VPORT_ZMIN_2__VPORT_ZMIN__SHIFT 0x0
+#define PA_SC_VPORT_ZMIN_2__VPORT_ZMIN_MASK 0xFFFFFFFFL
+//PA_SC_VPORT_ZMAX_2
+#define PA_SC_VPORT_ZMAX_2__VPORT_ZMAX__SHIFT 0x0
+#define PA_SC_VPORT_ZMAX_2__VPORT_ZMAX_MASK 0xFFFFFFFFL
+//PA_SC_VPORT_ZMIN_3
+#define PA_SC_VPORT_ZMIN_3__VPORT_ZMIN__SHIFT 0x0
+#define PA_SC_VPORT_ZMIN_3__VPORT_ZMIN_MASK 0xFFFFFFFFL
+//PA_SC_VPORT_ZMAX_3
+#define PA_SC_VPORT_ZMAX_3__VPORT_ZMAX__SHIFT 0x0
+#define PA_SC_VPORT_ZMAX_3__VPORT_ZMAX_MASK 0xFFFFFFFFL
+//PA_SC_VPORT_ZMIN_4
+#define PA_SC_VPORT_ZMIN_4__VPORT_ZMIN__SHIFT 0x0
+#define PA_SC_VPORT_ZMIN_4__VPORT_ZMIN_MASK 0xFFFFFFFFL
+//PA_SC_VPORT_ZMAX_4
+#define PA_SC_VPORT_ZMAX_4__VPORT_ZMAX__SHIFT 0x0
+#define PA_SC_VPORT_ZMAX_4__VPORT_ZMAX_MASK 0xFFFFFFFFL
+//PA_SC_VPORT_ZMIN_5
+#define PA_SC_VPORT_ZMIN_5__VPORT_ZMIN__SHIFT 0x0
+#define PA_SC_VPORT_ZMIN_5__VPORT_ZMIN_MASK 0xFFFFFFFFL
+//PA_SC_VPORT_ZMAX_5
+#define PA_SC_VPORT_ZMAX_5__VPORT_ZMAX__SHIFT 0x0
+#define PA_SC_VPORT_ZMAX_5__VPORT_ZMAX_MASK 0xFFFFFFFFL
+//PA_SC_VPORT_ZMIN_6
+#define PA_SC_VPORT_ZMIN_6__VPORT_ZMIN__SHIFT 0x0
+#define PA_SC_VPORT_ZMIN_6__VPORT_ZMIN_MASK 0xFFFFFFFFL
+//PA_SC_VPORT_ZMAX_6
+#define PA_SC_VPORT_ZMAX_6__VPORT_ZMAX__SHIFT 0x0
+#define PA_SC_VPORT_ZMAX_6__VPORT_ZMAX_MASK 0xFFFFFFFFL
+//PA_SC_VPORT_ZMIN_7
+#define PA_SC_VPORT_ZMIN_7__VPORT_ZMIN__SHIFT 0x0
+#define PA_SC_VPORT_ZMIN_7__VPORT_ZMIN_MASK 0xFFFFFFFFL
+//PA_SC_VPORT_ZMAX_7
+#define PA_SC_VPORT_ZMAX_7__VPORT_ZMAX__SHIFT 0x0
+#define PA_SC_VPORT_ZMAX_7__VPORT_ZMAX_MASK 0xFFFFFFFFL
+//PA_SC_VPORT_ZMIN_8
+#define PA_SC_VPORT_ZMIN_8__VPORT_ZMIN__SHIFT 0x0
+#define PA_SC_VPORT_ZMIN_8__VPORT_ZMIN_MASK 0xFFFFFFFFL
+//PA_SC_VPORT_ZMAX_8
+#define PA_SC_VPORT_ZMAX_8__VPORT_ZMAX__SHIFT 0x0
+#define PA_SC_VPORT_ZMAX_8__VPORT_ZMAX_MASK 0xFFFFFFFFL
+//PA_SC_VPORT_ZMIN_9
+#define PA_SC_VPORT_ZMIN_9__VPORT_ZMIN__SHIFT 0x0
+#define PA_SC_VPORT_ZMIN_9__VPORT_ZMIN_MASK 0xFFFFFFFFL
+//PA_SC_VPORT_ZMAX_9
+#define PA_SC_VPORT_ZMAX_9__VPORT_ZMAX__SHIFT 0x0
+#define PA_SC_VPORT_ZMAX_9__VPORT_ZMAX_MASK 0xFFFFFFFFL
+//PA_SC_VPORT_ZMIN_10
+#define PA_SC_VPORT_ZMIN_10__VPORT_ZMIN__SHIFT 0x0
+#define PA_SC_VPORT_ZMIN_10__VPORT_ZMIN_MASK 0xFFFFFFFFL
+//PA_SC_VPORT_ZMAX_10
+#define PA_SC_VPORT_ZMAX_10__VPORT_ZMAX__SHIFT 0x0
+#define PA_SC_VPORT_ZMAX_10__VPORT_ZMAX_MASK 0xFFFFFFFFL
+//PA_SC_VPORT_ZMIN_11
+#define PA_SC_VPORT_ZMIN_11__VPORT_ZMIN__SHIFT 0x0
+#define PA_SC_VPORT_ZMIN_11__VPORT_ZMIN_MASK 0xFFFFFFFFL
+//PA_SC_VPORT_ZMAX_11
+#define PA_SC_VPORT_ZMAX_11__VPORT_ZMAX__SHIFT 0x0
+#define PA_SC_VPORT_ZMAX_11__VPORT_ZMAX_MASK 0xFFFFFFFFL
+//PA_SC_VPORT_ZMIN_12
+#define PA_SC_VPORT_ZMIN_12__VPORT_ZMIN__SHIFT 0x0
+#define PA_SC_VPORT_ZMIN_12__VPORT_ZMIN_MASK 0xFFFFFFFFL
+//PA_SC_VPORT_ZMAX_12
+#define PA_SC_VPORT_ZMAX_12__VPORT_ZMAX__SHIFT 0x0
+#define PA_SC_VPORT_ZMAX_12__VPORT_ZMAX_MASK 0xFFFFFFFFL
+//PA_SC_VPORT_ZMIN_13
+#define PA_SC_VPORT_ZMIN_13__VPORT_ZMIN__SHIFT 0x0
+#define PA_SC_VPORT_ZMIN_13__VPORT_ZMIN_MASK 0xFFFFFFFFL
+//PA_SC_VPORT_ZMAX_13
+#define PA_SC_VPORT_ZMAX_13__VPORT_ZMAX__SHIFT 0x0
+#define PA_SC_VPORT_ZMAX_13__VPORT_ZMAX_MASK 0xFFFFFFFFL
+//PA_SC_VPORT_ZMIN_14
+#define PA_SC_VPORT_ZMIN_14__VPORT_ZMIN__SHIFT 0x0
+#define PA_SC_VPORT_ZMIN_14__VPORT_ZMIN_MASK 0xFFFFFFFFL
+//PA_SC_VPORT_ZMAX_14
+#define PA_SC_VPORT_ZMAX_14__VPORT_ZMAX__SHIFT 0x0
+#define PA_SC_VPORT_ZMAX_14__VPORT_ZMAX_MASK 0xFFFFFFFFL
+//PA_SC_VPORT_ZMIN_15
+#define PA_SC_VPORT_ZMIN_15__VPORT_ZMIN__SHIFT 0x0
+#define PA_SC_VPORT_ZMIN_15__VPORT_ZMIN_MASK 0xFFFFFFFFL
+//PA_SC_VPORT_ZMAX_15
+#define PA_SC_VPORT_ZMAX_15__VPORT_ZMAX__SHIFT 0x0
+#define PA_SC_VPORT_ZMAX_15__VPORT_ZMAX_MASK 0xFFFFFFFFL
+//PA_SC_RASTER_CONFIG
+#define PA_SC_RASTER_CONFIG__RB_MAP_PKR0__SHIFT 0x0
+#define PA_SC_RASTER_CONFIG__RB_MAP_PKR1__SHIFT 0x2
+#define PA_SC_RASTER_CONFIG__RB_XSEL2__SHIFT 0x4
+#define PA_SC_RASTER_CONFIG__RB_XSEL__SHIFT 0x6
+#define PA_SC_RASTER_CONFIG__RB_YSEL__SHIFT 0x7
+#define PA_SC_RASTER_CONFIG__PKR_MAP__SHIFT 0x8
+#define PA_SC_RASTER_CONFIG__PKR_XSEL__SHIFT 0xa
+#define PA_SC_RASTER_CONFIG__PKR_YSEL__SHIFT 0xc
+#define PA_SC_RASTER_CONFIG__PKR_XSEL2__SHIFT 0xe
+#define PA_SC_RASTER_CONFIG__SC_MAP__SHIFT 0x10
+#define PA_SC_RASTER_CONFIG__SC_XSEL__SHIFT 0x12
+#define PA_SC_RASTER_CONFIG__SC_YSEL__SHIFT 0x14
+#define PA_SC_RASTER_CONFIG__SE_MAP__SHIFT 0x18
+#define PA_SC_RASTER_CONFIG__SE_XSEL__SHIFT 0x1a
+#define PA_SC_RASTER_CONFIG__SE_YSEL__SHIFT 0x1d
+#define PA_SC_RASTER_CONFIG__RB_MAP_PKR0_MASK 0x00000003L
+#define PA_SC_RASTER_CONFIG__RB_MAP_PKR1_MASK 0x0000000CL
+#define PA_SC_RASTER_CONFIG__RB_XSEL2_MASK 0x00000030L
+#define PA_SC_RASTER_CONFIG__RB_XSEL_MASK 0x00000040L
+#define PA_SC_RASTER_CONFIG__RB_YSEL_MASK 0x00000080L
+#define PA_SC_RASTER_CONFIG__PKR_MAP_MASK 0x00000300L
+#define PA_SC_RASTER_CONFIG__PKR_XSEL_MASK 0x00000C00L
+#define PA_SC_RASTER_CONFIG__PKR_YSEL_MASK 0x00003000L
+#define PA_SC_RASTER_CONFIG__PKR_XSEL2_MASK 0x0000C000L
+#define PA_SC_RASTER_CONFIG__SC_MAP_MASK 0x00030000L
+#define PA_SC_RASTER_CONFIG__SC_XSEL_MASK 0x000C0000L
+#define PA_SC_RASTER_CONFIG__SC_YSEL_MASK 0x00300000L
+#define PA_SC_RASTER_CONFIG__SE_MAP_MASK 0x03000000L
+#define PA_SC_RASTER_CONFIG__SE_XSEL_MASK 0x1C000000L
+#define PA_SC_RASTER_CONFIG__SE_YSEL_MASK 0xE0000000L
+//PA_SC_RASTER_CONFIG_1
+#define PA_SC_RASTER_CONFIG_1__SE_PAIR_MAP__SHIFT 0x0
+#define PA_SC_RASTER_CONFIG_1__SE_PAIR_XSEL__SHIFT 0x2
+#define PA_SC_RASTER_CONFIG_1__SE_PAIR_YSEL__SHIFT 0x5
+#define PA_SC_RASTER_CONFIG_1__SE_PAIR_MAP_MASK 0x00000003L
+#define PA_SC_RASTER_CONFIG_1__SE_PAIR_XSEL_MASK 0x0000001CL
+#define PA_SC_RASTER_CONFIG_1__SE_PAIR_YSEL_MASK 0x000000E0L
+//PA_SC_SCREEN_EXTENT_CONTROL
+#define PA_SC_SCREEN_EXTENT_CONTROL__SLICE_EVEN_ENABLE__SHIFT 0x0
+#define PA_SC_SCREEN_EXTENT_CONTROL__SLICE_ODD_ENABLE__SHIFT 0x2
+#define PA_SC_SCREEN_EXTENT_CONTROL__SLICE_EVEN_ENABLE_MASK 0x00000003L
+#define PA_SC_SCREEN_EXTENT_CONTROL__SLICE_ODD_ENABLE_MASK 0x0000000CL
+//PA_SC_TILE_STEERING_OVERRIDE
+#define PA_SC_TILE_STEERING_OVERRIDE__ENABLE__SHIFT 0x0
+#define PA_SC_TILE_STEERING_OVERRIDE__NUM_SE__SHIFT 0x1
+#define PA_SC_TILE_STEERING_OVERRIDE__NUM_RB_PER_SE__SHIFT 0x5
+#define PA_SC_TILE_STEERING_OVERRIDE__DISABLE_SRBSL_DB_OPTIMIZED_PACKING__SHIFT 0x8
+#define PA_SC_TILE_STEERING_OVERRIDE__ENABLE_MASK 0x00000001L
+#define PA_SC_TILE_STEERING_OVERRIDE__NUM_SE_MASK 0x00000006L
+#define PA_SC_TILE_STEERING_OVERRIDE__NUM_RB_PER_SE_MASK 0x00000060L
+#define PA_SC_TILE_STEERING_OVERRIDE__DISABLE_SRBSL_DB_OPTIMIZED_PACKING_MASK 0x00000100L
+//CP_PERFMON_CNTX_CNTL
+#define CP_PERFMON_CNTX_CNTL__PERFMON_ENABLE__SHIFT 0x1f
+#define CP_PERFMON_CNTX_CNTL__PERFMON_ENABLE_MASK 0x80000000L
+//CP_PIPEID
+#define CP_PIPEID__PIPE_ID__SHIFT 0x0
+#define CP_PIPEID__PIPE_ID_MASK 0x00000003L
+//CP_RINGID
+#define CP_RINGID__RINGID__SHIFT 0x0
+#define CP_RINGID__RINGID_MASK 0x00000003L
+//CP_VMID
+#define CP_VMID__VMID__SHIFT 0x0
+#define CP_VMID__VMID_MASK 0x0000000FL
+//PA_SC_RIGHT_VERT_GRID
+#define PA_SC_RIGHT_VERT_GRID__LEFT_QTR__SHIFT 0x0
+#define PA_SC_RIGHT_VERT_GRID__LEFT_HALF__SHIFT 0x8
+#define PA_SC_RIGHT_VERT_GRID__RIGHT_HALF__SHIFT 0x10
+#define PA_SC_RIGHT_VERT_GRID__RIGHT_QTR__SHIFT 0x18
+#define PA_SC_RIGHT_VERT_GRID__LEFT_QTR_MASK 0x000000FFL
+#define PA_SC_RIGHT_VERT_GRID__LEFT_HALF_MASK 0x0000FF00L
+#define PA_SC_RIGHT_VERT_GRID__RIGHT_HALF_MASK 0x00FF0000L
+#define PA_SC_RIGHT_VERT_GRID__RIGHT_QTR_MASK 0xFF000000L
+//PA_SC_LEFT_VERT_GRID
+#define PA_SC_LEFT_VERT_GRID__LEFT_QTR__SHIFT 0x0
+#define PA_SC_LEFT_VERT_GRID__LEFT_HALF__SHIFT 0x8
+#define PA_SC_LEFT_VERT_GRID__RIGHT_HALF__SHIFT 0x10
+#define PA_SC_LEFT_VERT_GRID__RIGHT_QTR__SHIFT 0x18
+#define PA_SC_LEFT_VERT_GRID__LEFT_QTR_MASK 0x000000FFL
+#define PA_SC_LEFT_VERT_GRID__LEFT_HALF_MASK 0x0000FF00L
+#define PA_SC_LEFT_VERT_GRID__RIGHT_HALF_MASK 0x00FF0000L
+#define PA_SC_LEFT_VERT_GRID__RIGHT_QTR_MASK 0xFF000000L
+//PA_SC_HORIZ_GRID
+#define PA_SC_HORIZ_GRID__TOP_QTR__SHIFT 0x0
+#define PA_SC_HORIZ_GRID__TOP_HALF__SHIFT 0x8
+#define PA_SC_HORIZ_GRID__BOT_HALF__SHIFT 0x10
+#define PA_SC_HORIZ_GRID__BOT_QTR__SHIFT 0x18
+#define PA_SC_HORIZ_GRID__TOP_QTR_MASK 0x000000FFL
+#define PA_SC_HORIZ_GRID__TOP_HALF_MASK 0x0000FF00L
+#define PA_SC_HORIZ_GRID__BOT_HALF_MASK 0x00FF0000L
+#define PA_SC_HORIZ_GRID__BOT_QTR_MASK 0xFF000000L
+//VGT_MULTI_PRIM_IB_RESET_INDX
+#define VGT_MULTI_PRIM_IB_RESET_INDX__RESET_INDX__SHIFT 0x0
+#define VGT_MULTI_PRIM_IB_RESET_INDX__RESET_INDX_MASK 0xFFFFFFFFL
+//CB_BLEND_RED
+#define CB_BLEND_RED__BLEND_RED__SHIFT 0x0
+#define CB_BLEND_RED__BLEND_RED_MASK 0xFFFFFFFFL
+//CB_BLEND_GREEN
+#define CB_BLEND_GREEN__BLEND_GREEN__SHIFT 0x0
+#define CB_BLEND_GREEN__BLEND_GREEN_MASK 0xFFFFFFFFL
+//CB_BLEND_BLUE
+#define CB_BLEND_BLUE__BLEND_BLUE__SHIFT 0x0
+#define CB_BLEND_BLUE__BLEND_BLUE_MASK 0xFFFFFFFFL
+//CB_BLEND_ALPHA
+#define CB_BLEND_ALPHA__BLEND_ALPHA__SHIFT 0x0
+#define CB_BLEND_ALPHA__BLEND_ALPHA_MASK 0xFFFFFFFFL
+//CB_DCC_CONTROL
+#define CB_DCC_CONTROL__OVERWRITE_COMBINER_DISABLE__SHIFT 0x0
+#define CB_DCC_CONTROL__OVERWRITE_COMBINER_MRT_SHARING_DISABLE__SHIFT 0x1
+#define CB_DCC_CONTROL__OVERWRITE_COMBINER_WATERMARK__SHIFT 0x2
+#define CB_DCC_CONTROL__DISABLE_CONSTANT_ENCODE_AC01__SHIFT 0x8
+#define CB_DCC_CONTROL__DISABLE_CONSTANT_ENCODE_SINGLE__SHIFT 0x9
+#define CB_DCC_CONTROL__DISABLE_CONSTANT_ENCODE_REG__SHIFT 0xa
+#define CB_DCC_CONTROL__DISABLE_ELIMFC_SKIP_OF_AC01__SHIFT 0xc
+#define CB_DCC_CONTROL__DISABLE_ELIMFC_SKIP_OF_SINGLE__SHIFT 0xd
+#define CB_DCC_CONTROL__ENABLE_ELIMFC_SKIP_OF_REG__SHIFT 0xe
+#define CB_DCC_CONTROL__OVERWRITE_COMBINER_DISABLE_MASK 0x00000001L
+#define CB_DCC_CONTROL__OVERWRITE_COMBINER_MRT_SHARING_DISABLE_MASK 0x00000002L
+#define CB_DCC_CONTROL__OVERWRITE_COMBINER_WATERMARK_MASK 0x0000007CL
+#define CB_DCC_CONTROL__DISABLE_CONSTANT_ENCODE_AC01_MASK 0x00000100L
+#define CB_DCC_CONTROL__DISABLE_CONSTANT_ENCODE_SINGLE_MASK 0x00000200L
+#define CB_DCC_CONTROL__DISABLE_CONSTANT_ENCODE_REG_MASK 0x00000400L
+#define CB_DCC_CONTROL__DISABLE_ELIMFC_SKIP_OF_AC01_MASK 0x00001000L
+#define CB_DCC_CONTROL__DISABLE_ELIMFC_SKIP_OF_SINGLE_MASK 0x00002000L
+#define CB_DCC_CONTROL__ENABLE_ELIMFC_SKIP_OF_REG_MASK 0x00004000L
+//DB_STENCIL_CONTROL
+#define DB_STENCIL_CONTROL__STENCILFAIL__SHIFT 0x0
+#define DB_STENCIL_CONTROL__STENCILZPASS__SHIFT 0x4
+#define DB_STENCIL_CONTROL__STENCILZFAIL__SHIFT 0x8
+#define DB_STENCIL_CONTROL__STENCILFAIL_BF__SHIFT 0xc
+#define DB_STENCIL_CONTROL__STENCILZPASS_BF__SHIFT 0x10
+#define DB_STENCIL_CONTROL__STENCILZFAIL_BF__SHIFT 0x14
+#define DB_STENCIL_CONTROL__STENCILFAIL_MASK 0x0000000FL
+#define DB_STENCIL_CONTROL__STENCILZPASS_MASK 0x000000F0L
+#define DB_STENCIL_CONTROL__STENCILZFAIL_MASK 0x00000F00L
+#define DB_STENCIL_CONTROL__STENCILFAIL_BF_MASK 0x0000F000L
+#define DB_STENCIL_CONTROL__STENCILZPASS_BF_MASK 0x000F0000L
+#define DB_STENCIL_CONTROL__STENCILZFAIL_BF_MASK 0x00F00000L
+//DB_STENCILREFMASK
+#define DB_STENCILREFMASK__STENCILTESTVAL__SHIFT 0x0
+#define DB_STENCILREFMASK__STENCILMASK__SHIFT 0x8
+#define DB_STENCILREFMASK__STENCILWRITEMASK__SHIFT 0x10
+#define DB_STENCILREFMASK__STENCILOPVAL__SHIFT 0x18
+#define DB_STENCILREFMASK__STENCILTESTVAL_MASK 0x000000FFL
+#define DB_STENCILREFMASK__STENCILMASK_MASK 0x0000FF00L
+#define DB_STENCILREFMASK__STENCILWRITEMASK_MASK 0x00FF0000L
+#define DB_STENCILREFMASK__STENCILOPVAL_MASK 0xFF000000L
+//DB_STENCILREFMASK_BF
+#define DB_STENCILREFMASK_BF__STENCILTESTVAL_BF__SHIFT 0x0
+#define DB_STENCILREFMASK_BF__STENCILMASK_BF__SHIFT 0x8
+#define DB_STENCILREFMASK_BF__STENCILWRITEMASK_BF__SHIFT 0x10
+#define DB_STENCILREFMASK_BF__STENCILOPVAL_BF__SHIFT 0x18
+#define DB_STENCILREFMASK_BF__STENCILTESTVAL_BF_MASK 0x000000FFL
+#define DB_STENCILREFMASK_BF__STENCILMASK_BF_MASK 0x0000FF00L
+#define DB_STENCILREFMASK_BF__STENCILWRITEMASK_BF_MASK 0x00FF0000L
+#define DB_STENCILREFMASK_BF__STENCILOPVAL_BF_MASK 0xFF000000L
+//PA_CL_VPORT_XSCALE
+#define PA_CL_VPORT_XSCALE__VPORT_XSCALE__SHIFT 0x0
+#define PA_CL_VPORT_XSCALE__VPORT_XSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_XOFFSET
+#define PA_CL_VPORT_XOFFSET__VPORT_XOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_XOFFSET__VPORT_XOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_YSCALE
+#define PA_CL_VPORT_YSCALE__VPORT_YSCALE__SHIFT 0x0
+#define PA_CL_VPORT_YSCALE__VPORT_YSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_YOFFSET
+#define PA_CL_VPORT_YOFFSET__VPORT_YOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_YOFFSET__VPORT_YOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_ZSCALE
+#define PA_CL_VPORT_ZSCALE__VPORT_ZSCALE__SHIFT 0x0
+#define PA_CL_VPORT_ZSCALE__VPORT_ZSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_ZOFFSET
+#define PA_CL_VPORT_ZOFFSET__VPORT_ZOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_ZOFFSET__VPORT_ZOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_XSCALE_1
+#define PA_CL_VPORT_XSCALE_1__VPORT_XSCALE__SHIFT 0x0
+#define PA_CL_VPORT_XSCALE_1__VPORT_XSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_XOFFSET_1
+#define PA_CL_VPORT_XOFFSET_1__VPORT_XOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_XOFFSET_1__VPORT_XOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_YSCALE_1
+#define PA_CL_VPORT_YSCALE_1__VPORT_YSCALE__SHIFT 0x0
+#define PA_CL_VPORT_YSCALE_1__VPORT_YSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_YOFFSET_1
+#define PA_CL_VPORT_YOFFSET_1__VPORT_YOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_YOFFSET_1__VPORT_YOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_ZSCALE_1
+#define PA_CL_VPORT_ZSCALE_1__VPORT_ZSCALE__SHIFT 0x0
+#define PA_CL_VPORT_ZSCALE_1__VPORT_ZSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_ZOFFSET_1
+#define PA_CL_VPORT_ZOFFSET_1__VPORT_ZOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_ZOFFSET_1__VPORT_ZOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_XSCALE_2
+#define PA_CL_VPORT_XSCALE_2__VPORT_XSCALE__SHIFT 0x0
+#define PA_CL_VPORT_XSCALE_2__VPORT_XSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_XOFFSET_2
+#define PA_CL_VPORT_XOFFSET_2__VPORT_XOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_XOFFSET_2__VPORT_XOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_YSCALE_2
+#define PA_CL_VPORT_YSCALE_2__VPORT_YSCALE__SHIFT 0x0
+#define PA_CL_VPORT_YSCALE_2__VPORT_YSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_YOFFSET_2
+#define PA_CL_VPORT_YOFFSET_2__VPORT_YOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_YOFFSET_2__VPORT_YOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_ZSCALE_2
+#define PA_CL_VPORT_ZSCALE_2__VPORT_ZSCALE__SHIFT 0x0
+#define PA_CL_VPORT_ZSCALE_2__VPORT_ZSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_ZOFFSET_2
+#define PA_CL_VPORT_ZOFFSET_2__VPORT_ZOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_ZOFFSET_2__VPORT_ZOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_XSCALE_3
+#define PA_CL_VPORT_XSCALE_3__VPORT_XSCALE__SHIFT 0x0
+#define PA_CL_VPORT_XSCALE_3__VPORT_XSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_XOFFSET_3
+#define PA_CL_VPORT_XOFFSET_3__VPORT_XOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_XOFFSET_3__VPORT_XOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_YSCALE_3
+#define PA_CL_VPORT_YSCALE_3__VPORT_YSCALE__SHIFT 0x0
+#define PA_CL_VPORT_YSCALE_3__VPORT_YSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_YOFFSET_3
+#define PA_CL_VPORT_YOFFSET_3__VPORT_YOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_YOFFSET_3__VPORT_YOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_ZSCALE_3
+#define PA_CL_VPORT_ZSCALE_3__VPORT_ZSCALE__SHIFT 0x0
+#define PA_CL_VPORT_ZSCALE_3__VPORT_ZSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_ZOFFSET_3
+#define PA_CL_VPORT_ZOFFSET_3__VPORT_ZOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_ZOFFSET_3__VPORT_ZOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_XSCALE_4
+#define PA_CL_VPORT_XSCALE_4__VPORT_XSCALE__SHIFT 0x0
+#define PA_CL_VPORT_XSCALE_4__VPORT_XSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_XOFFSET_4
+#define PA_CL_VPORT_XOFFSET_4__VPORT_XOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_XOFFSET_4__VPORT_XOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_YSCALE_4
+#define PA_CL_VPORT_YSCALE_4__VPORT_YSCALE__SHIFT 0x0
+#define PA_CL_VPORT_YSCALE_4__VPORT_YSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_YOFFSET_4
+#define PA_CL_VPORT_YOFFSET_4__VPORT_YOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_YOFFSET_4__VPORT_YOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_ZSCALE_4
+#define PA_CL_VPORT_ZSCALE_4__VPORT_ZSCALE__SHIFT 0x0
+#define PA_CL_VPORT_ZSCALE_4__VPORT_ZSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_ZOFFSET_4
+#define PA_CL_VPORT_ZOFFSET_4__VPORT_ZOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_ZOFFSET_4__VPORT_ZOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_XSCALE_5
+#define PA_CL_VPORT_XSCALE_5__VPORT_XSCALE__SHIFT 0x0
+#define PA_CL_VPORT_XSCALE_5__VPORT_XSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_XOFFSET_5
+#define PA_CL_VPORT_XOFFSET_5__VPORT_XOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_XOFFSET_5__VPORT_XOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_YSCALE_5
+#define PA_CL_VPORT_YSCALE_5__VPORT_YSCALE__SHIFT 0x0
+#define PA_CL_VPORT_YSCALE_5__VPORT_YSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_YOFFSET_5
+#define PA_CL_VPORT_YOFFSET_5__VPORT_YOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_YOFFSET_5__VPORT_YOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_ZSCALE_5
+#define PA_CL_VPORT_ZSCALE_5__VPORT_ZSCALE__SHIFT 0x0
+#define PA_CL_VPORT_ZSCALE_5__VPORT_ZSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_ZOFFSET_5
+#define PA_CL_VPORT_ZOFFSET_5__VPORT_ZOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_ZOFFSET_5__VPORT_ZOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_XSCALE_6
+#define PA_CL_VPORT_XSCALE_6__VPORT_XSCALE__SHIFT 0x0
+#define PA_CL_VPORT_XSCALE_6__VPORT_XSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_XOFFSET_6
+#define PA_CL_VPORT_XOFFSET_6__VPORT_XOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_XOFFSET_6__VPORT_XOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_YSCALE_6
+#define PA_CL_VPORT_YSCALE_6__VPORT_YSCALE__SHIFT 0x0
+#define PA_CL_VPORT_YSCALE_6__VPORT_YSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_YOFFSET_6
+#define PA_CL_VPORT_YOFFSET_6__VPORT_YOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_YOFFSET_6__VPORT_YOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_ZSCALE_6
+#define PA_CL_VPORT_ZSCALE_6__VPORT_ZSCALE__SHIFT 0x0
+#define PA_CL_VPORT_ZSCALE_6__VPORT_ZSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_ZOFFSET_6
+#define PA_CL_VPORT_ZOFFSET_6__VPORT_ZOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_ZOFFSET_6__VPORT_ZOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_XSCALE_7
+#define PA_CL_VPORT_XSCALE_7__VPORT_XSCALE__SHIFT 0x0
+#define PA_CL_VPORT_XSCALE_7__VPORT_XSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_XOFFSET_7
+#define PA_CL_VPORT_XOFFSET_7__VPORT_XOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_XOFFSET_7__VPORT_XOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_YSCALE_7
+#define PA_CL_VPORT_YSCALE_7__VPORT_YSCALE__SHIFT 0x0
+#define PA_CL_VPORT_YSCALE_7__VPORT_YSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_YOFFSET_7
+#define PA_CL_VPORT_YOFFSET_7__VPORT_YOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_YOFFSET_7__VPORT_YOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_ZSCALE_7
+#define PA_CL_VPORT_ZSCALE_7__VPORT_ZSCALE__SHIFT 0x0
+#define PA_CL_VPORT_ZSCALE_7__VPORT_ZSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_ZOFFSET_7
+#define PA_CL_VPORT_ZOFFSET_7__VPORT_ZOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_ZOFFSET_7__VPORT_ZOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_XSCALE_8
+#define PA_CL_VPORT_XSCALE_8__VPORT_XSCALE__SHIFT 0x0
+#define PA_CL_VPORT_XSCALE_8__VPORT_XSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_XOFFSET_8
+#define PA_CL_VPORT_XOFFSET_8__VPORT_XOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_XOFFSET_8__VPORT_XOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_YSCALE_8
+#define PA_CL_VPORT_YSCALE_8__VPORT_YSCALE__SHIFT 0x0
+#define PA_CL_VPORT_YSCALE_8__VPORT_YSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_YOFFSET_8
+#define PA_CL_VPORT_YOFFSET_8__VPORT_YOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_YOFFSET_8__VPORT_YOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_ZSCALE_8
+#define PA_CL_VPORT_ZSCALE_8__VPORT_ZSCALE__SHIFT 0x0
+#define PA_CL_VPORT_ZSCALE_8__VPORT_ZSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_ZOFFSET_8
+#define PA_CL_VPORT_ZOFFSET_8__VPORT_ZOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_ZOFFSET_8__VPORT_ZOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_XSCALE_9
+#define PA_CL_VPORT_XSCALE_9__VPORT_XSCALE__SHIFT 0x0
+#define PA_CL_VPORT_XSCALE_9__VPORT_XSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_XOFFSET_9
+#define PA_CL_VPORT_XOFFSET_9__VPORT_XOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_XOFFSET_9__VPORT_XOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_YSCALE_9
+#define PA_CL_VPORT_YSCALE_9__VPORT_YSCALE__SHIFT 0x0
+#define PA_CL_VPORT_YSCALE_9__VPORT_YSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_YOFFSET_9
+#define PA_CL_VPORT_YOFFSET_9__VPORT_YOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_YOFFSET_9__VPORT_YOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_ZSCALE_9
+#define PA_CL_VPORT_ZSCALE_9__VPORT_ZSCALE__SHIFT 0x0
+#define PA_CL_VPORT_ZSCALE_9__VPORT_ZSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_ZOFFSET_9
+#define PA_CL_VPORT_ZOFFSET_9__VPORT_ZOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_ZOFFSET_9__VPORT_ZOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_XSCALE_10
+#define PA_CL_VPORT_XSCALE_10__VPORT_XSCALE__SHIFT 0x0
+#define PA_CL_VPORT_XSCALE_10__VPORT_XSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_XOFFSET_10
+#define PA_CL_VPORT_XOFFSET_10__VPORT_XOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_XOFFSET_10__VPORT_XOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_YSCALE_10
+#define PA_CL_VPORT_YSCALE_10__VPORT_YSCALE__SHIFT 0x0
+#define PA_CL_VPORT_YSCALE_10__VPORT_YSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_YOFFSET_10
+#define PA_CL_VPORT_YOFFSET_10__VPORT_YOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_YOFFSET_10__VPORT_YOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_ZSCALE_10
+#define PA_CL_VPORT_ZSCALE_10__VPORT_ZSCALE__SHIFT 0x0
+#define PA_CL_VPORT_ZSCALE_10__VPORT_ZSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_ZOFFSET_10
+#define PA_CL_VPORT_ZOFFSET_10__VPORT_ZOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_ZOFFSET_10__VPORT_ZOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_XSCALE_11
+#define PA_CL_VPORT_XSCALE_11__VPORT_XSCALE__SHIFT 0x0
+#define PA_CL_VPORT_XSCALE_11__VPORT_XSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_XOFFSET_11
+#define PA_CL_VPORT_XOFFSET_11__VPORT_XOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_XOFFSET_11__VPORT_XOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_YSCALE_11
+#define PA_CL_VPORT_YSCALE_11__VPORT_YSCALE__SHIFT 0x0
+#define PA_CL_VPORT_YSCALE_11__VPORT_YSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_YOFFSET_11
+#define PA_CL_VPORT_YOFFSET_11__VPORT_YOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_YOFFSET_11__VPORT_YOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_ZSCALE_11
+#define PA_CL_VPORT_ZSCALE_11__VPORT_ZSCALE__SHIFT 0x0
+#define PA_CL_VPORT_ZSCALE_11__VPORT_ZSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_ZOFFSET_11
+#define PA_CL_VPORT_ZOFFSET_11__VPORT_ZOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_ZOFFSET_11__VPORT_ZOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_XSCALE_12
+#define PA_CL_VPORT_XSCALE_12__VPORT_XSCALE__SHIFT 0x0
+#define PA_CL_VPORT_XSCALE_12__VPORT_XSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_XOFFSET_12
+#define PA_CL_VPORT_XOFFSET_12__VPORT_XOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_XOFFSET_12__VPORT_XOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_YSCALE_12
+#define PA_CL_VPORT_YSCALE_12__VPORT_YSCALE__SHIFT 0x0
+#define PA_CL_VPORT_YSCALE_12__VPORT_YSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_YOFFSET_12
+#define PA_CL_VPORT_YOFFSET_12__VPORT_YOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_YOFFSET_12__VPORT_YOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_ZSCALE_12
+#define PA_CL_VPORT_ZSCALE_12__VPORT_ZSCALE__SHIFT 0x0
+#define PA_CL_VPORT_ZSCALE_12__VPORT_ZSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_ZOFFSET_12
+#define PA_CL_VPORT_ZOFFSET_12__VPORT_ZOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_ZOFFSET_12__VPORT_ZOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_XSCALE_13
+#define PA_CL_VPORT_XSCALE_13__VPORT_XSCALE__SHIFT 0x0
+#define PA_CL_VPORT_XSCALE_13__VPORT_XSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_XOFFSET_13
+#define PA_CL_VPORT_XOFFSET_13__VPORT_XOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_XOFFSET_13__VPORT_XOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_YSCALE_13
+#define PA_CL_VPORT_YSCALE_13__VPORT_YSCALE__SHIFT 0x0
+#define PA_CL_VPORT_YSCALE_13__VPORT_YSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_YOFFSET_13
+#define PA_CL_VPORT_YOFFSET_13__VPORT_YOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_YOFFSET_13__VPORT_YOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_ZSCALE_13
+#define PA_CL_VPORT_ZSCALE_13__VPORT_ZSCALE__SHIFT 0x0
+#define PA_CL_VPORT_ZSCALE_13__VPORT_ZSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_ZOFFSET_13
+#define PA_CL_VPORT_ZOFFSET_13__VPORT_ZOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_ZOFFSET_13__VPORT_ZOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_XSCALE_14
+#define PA_CL_VPORT_XSCALE_14__VPORT_XSCALE__SHIFT 0x0
+#define PA_CL_VPORT_XSCALE_14__VPORT_XSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_XOFFSET_14
+#define PA_CL_VPORT_XOFFSET_14__VPORT_XOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_XOFFSET_14__VPORT_XOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_YSCALE_14
+#define PA_CL_VPORT_YSCALE_14__VPORT_YSCALE__SHIFT 0x0
+#define PA_CL_VPORT_YSCALE_14__VPORT_YSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_YOFFSET_14
+#define PA_CL_VPORT_YOFFSET_14__VPORT_YOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_YOFFSET_14__VPORT_YOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_ZSCALE_14
+#define PA_CL_VPORT_ZSCALE_14__VPORT_ZSCALE__SHIFT 0x0
+#define PA_CL_VPORT_ZSCALE_14__VPORT_ZSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_ZOFFSET_14
+#define PA_CL_VPORT_ZOFFSET_14__VPORT_ZOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_ZOFFSET_14__VPORT_ZOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_XSCALE_15
+#define PA_CL_VPORT_XSCALE_15__VPORT_XSCALE__SHIFT 0x0
+#define PA_CL_VPORT_XSCALE_15__VPORT_XSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_XOFFSET_15
+#define PA_CL_VPORT_XOFFSET_15__VPORT_XOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_XOFFSET_15__VPORT_XOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_YSCALE_15
+#define PA_CL_VPORT_YSCALE_15__VPORT_YSCALE__SHIFT 0x0
+#define PA_CL_VPORT_YSCALE_15__VPORT_YSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_YOFFSET_15
+#define PA_CL_VPORT_YOFFSET_15__VPORT_YOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_YOFFSET_15__VPORT_YOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_ZSCALE_15
+#define PA_CL_VPORT_ZSCALE_15__VPORT_ZSCALE__SHIFT 0x0
+#define PA_CL_VPORT_ZSCALE_15__VPORT_ZSCALE_MASK 0xFFFFFFFFL
+//PA_CL_VPORT_ZOFFSET_15
+#define PA_CL_VPORT_ZOFFSET_15__VPORT_ZOFFSET__SHIFT 0x0
+#define PA_CL_VPORT_ZOFFSET_15__VPORT_ZOFFSET_MASK 0xFFFFFFFFL
+//PA_CL_UCP_0_X
+#define PA_CL_UCP_0_X__DATA_REGISTER__SHIFT 0x0
+#define PA_CL_UCP_0_X__DATA_REGISTER_MASK 0xFFFFFFFFL
+//PA_CL_UCP_0_Y
+#define PA_CL_UCP_0_Y__DATA_REGISTER__SHIFT 0x0
+#define PA_CL_UCP_0_Y__DATA_REGISTER_MASK 0xFFFFFFFFL
+//PA_CL_UCP_0_Z
+#define PA_CL_UCP_0_Z__DATA_REGISTER__SHIFT 0x0
+#define PA_CL_UCP_0_Z__DATA_REGISTER_MASK 0xFFFFFFFFL
+//PA_CL_UCP_0_W
+#define PA_CL_UCP_0_W__DATA_REGISTER__SHIFT 0x0
+#define PA_CL_UCP_0_W__DATA_REGISTER_MASK 0xFFFFFFFFL
+//PA_CL_UCP_1_X
+#define PA_CL_UCP_1_X__DATA_REGISTER__SHIFT 0x0
+#define PA_CL_UCP_1_X__DATA_REGISTER_MASK 0xFFFFFFFFL
+//PA_CL_UCP_1_Y
+#define PA_CL_UCP_1_Y__DATA_REGISTER__SHIFT 0x0
+#define PA_CL_UCP_1_Y__DATA_REGISTER_MASK 0xFFFFFFFFL
+//PA_CL_UCP_1_Z
+#define PA_CL_UCP_1_Z__DATA_REGISTER__SHIFT 0x0
+#define PA_CL_UCP_1_Z__DATA_REGISTER_MASK 0xFFFFFFFFL
+//PA_CL_UCP_1_W
+#define PA_CL_UCP_1_W__DATA_REGISTER__SHIFT 0x0
+#define PA_CL_UCP_1_W__DATA_REGISTER_MASK 0xFFFFFFFFL
+//PA_CL_UCP_2_X
+#define PA_CL_UCP_2_X__DATA_REGISTER__SHIFT 0x0
+#define PA_CL_UCP_2_X__DATA_REGISTER_MASK 0xFFFFFFFFL
+//PA_CL_UCP_2_Y
+#define PA_CL_UCP_2_Y__DATA_REGISTER__SHIFT 0x0
+#define PA_CL_UCP_2_Y__DATA_REGISTER_MASK 0xFFFFFFFFL
+//PA_CL_UCP_2_Z
+#define PA_CL_UCP_2_Z__DATA_REGISTER__SHIFT 0x0
+#define PA_CL_UCP_2_Z__DATA_REGISTER_MASK 0xFFFFFFFFL
+//PA_CL_UCP_2_W
+#define PA_CL_UCP_2_W__DATA_REGISTER__SHIFT 0x0
+#define PA_CL_UCP_2_W__DATA_REGISTER_MASK 0xFFFFFFFFL
+//PA_CL_UCP_3_X
+#define PA_CL_UCP_3_X__DATA_REGISTER__SHIFT 0x0
+#define PA_CL_UCP_3_X__DATA_REGISTER_MASK 0xFFFFFFFFL
+//PA_CL_UCP_3_Y
+#define PA_CL_UCP_3_Y__DATA_REGISTER__SHIFT 0x0
+#define PA_CL_UCP_3_Y__DATA_REGISTER_MASK 0xFFFFFFFFL
+//PA_CL_UCP_3_Z
+#define PA_CL_UCP_3_Z__DATA_REGISTER__SHIFT 0x0
+#define PA_CL_UCP_3_Z__DATA_REGISTER_MASK 0xFFFFFFFFL
+//PA_CL_UCP_3_W
+#define PA_CL_UCP_3_W__DATA_REGISTER__SHIFT 0x0
+#define PA_CL_UCP_3_W__DATA_REGISTER_MASK 0xFFFFFFFFL
+//PA_CL_UCP_4_X
+#define PA_CL_UCP_4_X__DATA_REGISTER__SHIFT 0x0
+#define PA_CL_UCP_4_X__DATA_REGISTER_MASK 0xFFFFFFFFL
+//PA_CL_UCP_4_Y
+#define PA_CL_UCP_4_Y__DATA_REGISTER__SHIFT 0x0
+#define PA_CL_UCP_4_Y__DATA_REGISTER_MASK 0xFFFFFFFFL
+//PA_CL_UCP_4_Z
+#define PA_CL_UCP_4_Z__DATA_REGISTER__SHIFT 0x0
+#define PA_CL_UCP_4_Z__DATA_REGISTER_MASK 0xFFFFFFFFL
+//PA_CL_UCP_4_W
+#define PA_CL_UCP_4_W__DATA_REGISTER__SHIFT 0x0
+#define PA_CL_UCP_4_W__DATA_REGISTER_MASK 0xFFFFFFFFL
+//PA_CL_UCP_5_X
+#define PA_CL_UCP_5_X__DATA_REGISTER__SHIFT 0x0
+#define PA_CL_UCP_5_X__DATA_REGISTER_MASK 0xFFFFFFFFL
+//PA_CL_UCP_5_Y
+#define PA_CL_UCP_5_Y__DATA_REGISTER__SHIFT 0x0
+#define PA_CL_UCP_5_Y__DATA_REGISTER_MASK 0xFFFFFFFFL
+//PA_CL_UCP_5_Z
+#define PA_CL_UCP_5_Z__DATA_REGISTER__SHIFT 0x0
+#define PA_CL_UCP_5_Z__DATA_REGISTER_MASK 0xFFFFFFFFL
+//PA_CL_UCP_5_W
+#define PA_CL_UCP_5_W__DATA_REGISTER__SHIFT 0x0
+#define PA_CL_UCP_5_W__DATA_REGISTER_MASK 0xFFFFFFFFL
+//PA_CL_PROG_NEAR_CLIP_Z
+#define PA_CL_PROG_NEAR_CLIP_Z__DATA_REGISTER__SHIFT 0x0
+#define PA_CL_PROG_NEAR_CLIP_Z__DATA_REGISTER_MASK 0xFFFFFFFFL
+//SPI_PS_INPUT_CNTL_0
+#define SPI_PS_INPUT_CNTL_0__OFFSET__SHIFT 0x0
+#define SPI_PS_INPUT_CNTL_0__DEFAULT_VAL__SHIFT 0x8
+#define SPI_PS_INPUT_CNTL_0__FLAT_SHADE__SHIFT 0xa
+#define SPI_PS_INPUT_CNTL_0__CYL_WRAP__SHIFT 0xd
+#define SPI_PS_INPUT_CNTL_0__PT_SPRITE_TEX__SHIFT 0x11
+#define SPI_PS_INPUT_CNTL_0__DUP__SHIFT 0x12
+#define SPI_PS_INPUT_CNTL_0__FP16_INTERP_MODE__SHIFT 0x13
+#define SPI_PS_INPUT_CNTL_0__USE_DEFAULT_ATTR1__SHIFT 0x14
+#define SPI_PS_INPUT_CNTL_0__DEFAULT_VAL_ATTR1__SHIFT 0x15
+#define SPI_PS_INPUT_CNTL_0__PT_SPRITE_TEX_ATTR1__SHIFT 0x17
+#define SPI_PS_INPUT_CNTL_0__ATTR0_VALID__SHIFT 0x18
+#define SPI_PS_INPUT_CNTL_0__ATTR1_VALID__SHIFT 0x19
+#define SPI_PS_INPUT_CNTL_0__OFFSET_MASK 0x0000003FL
+#define SPI_PS_INPUT_CNTL_0__DEFAULT_VAL_MASK 0x00000300L
+#define SPI_PS_INPUT_CNTL_0__FLAT_SHADE_MASK 0x00000400L
+#define SPI_PS_INPUT_CNTL_0__CYL_WRAP_MASK 0x0001E000L
+#define SPI_PS_INPUT_CNTL_0__PT_SPRITE_TEX_MASK 0x00020000L
+#define SPI_PS_INPUT_CNTL_0__DUP_MASK 0x00040000L
+#define SPI_PS_INPUT_CNTL_0__FP16_INTERP_MODE_MASK 0x00080000L
+#define SPI_PS_INPUT_CNTL_0__USE_DEFAULT_ATTR1_MASK 0x00100000L
+#define SPI_PS_INPUT_CNTL_0__DEFAULT_VAL_ATTR1_MASK 0x00600000L
+#define SPI_PS_INPUT_CNTL_0__PT_SPRITE_TEX_ATTR1_MASK 0x00800000L
+#define SPI_PS_INPUT_CNTL_0__ATTR0_VALID_MASK 0x01000000L
+#define SPI_PS_INPUT_CNTL_0__ATTR1_VALID_MASK 0x02000000L
+//SPI_PS_INPUT_CNTL_1
+#define SPI_PS_INPUT_CNTL_1__OFFSET__SHIFT 0x0
+#define SPI_PS_INPUT_CNTL_1__DEFAULT_VAL__SHIFT 0x8
+#define SPI_PS_INPUT_CNTL_1__FLAT_SHADE__SHIFT 0xa
+#define SPI_PS_INPUT_CNTL_1__CYL_WRAP__SHIFT 0xd
+#define SPI_PS_INPUT_CNTL_1__PT_SPRITE_TEX__SHIFT 0x11
+#define SPI_PS_INPUT_CNTL_1__DUP__SHIFT 0x12
+#define SPI_PS_INPUT_CNTL_1__FP16_INTERP_MODE__SHIFT 0x13
+#define SPI_PS_INPUT_CNTL_1__USE_DEFAULT_ATTR1__SHIFT 0x14
+#define SPI_PS_INPUT_CNTL_1__DEFAULT_VAL_ATTR1__SHIFT 0x15
+#define SPI_PS_INPUT_CNTL_1__PT_SPRITE_TEX_ATTR1__SHIFT 0x17
+#define SPI_PS_INPUT_CNTL_1__ATTR0_VALID__SHIFT 0x18
+#define SPI_PS_INPUT_CNTL_1__ATTR1_VALID__SHIFT 0x19
+#define SPI_PS_INPUT_CNTL_1__OFFSET_MASK 0x0000003FL
+#define SPI_PS_INPUT_CNTL_1__DEFAULT_VAL_MASK 0x00000300L
+#define SPI_PS_INPUT_CNTL_1__FLAT_SHADE_MASK 0x00000400L
+#define SPI_PS_INPUT_CNTL_1__CYL_WRAP_MASK 0x0001E000L
+#define SPI_PS_INPUT_CNTL_1__PT_SPRITE_TEX_MASK 0x00020000L
+#define SPI_PS_INPUT_CNTL_1__DUP_MASK 0x00040000L
+#define SPI_PS_INPUT_CNTL_1__FP16_INTERP_MODE_MASK 0x00080000L
+#define SPI_PS_INPUT_CNTL_1__USE_DEFAULT_ATTR1_MASK 0x00100000L
+#define SPI_PS_INPUT_CNTL_1__DEFAULT_VAL_ATTR1_MASK 0x00600000L
+#define SPI_PS_INPUT_CNTL_1__PT_SPRITE_TEX_ATTR1_MASK 0x00800000L
+#define SPI_PS_INPUT_CNTL_1__ATTR0_VALID_MASK 0x01000000L
+#define SPI_PS_INPUT_CNTL_1__ATTR1_VALID_MASK 0x02000000L
+//SPI_PS_INPUT_CNTL_2
+#define SPI_PS_INPUT_CNTL_2__OFFSET__SHIFT 0x0
+#define SPI_PS_INPUT_CNTL_2__DEFAULT_VAL__SHIFT 0x8
+#define SPI_PS_INPUT_CNTL_2__FLAT_SHADE__SHIFT 0xa
+#define SPI_PS_INPUT_CNTL_2__CYL_WRAP__SHIFT 0xd
+#define SPI_PS_INPUT_CNTL_2__PT_SPRITE_TEX__SHIFT 0x11
+#define SPI_PS_INPUT_CNTL_2__DUP__SHIFT 0x12
+#define SPI_PS_INPUT_CNTL_2__FP16_INTERP_MODE__SHIFT 0x13
+#define SPI_PS_INPUT_CNTL_2__USE_DEFAULT_ATTR1__SHIFT 0x14
+#define SPI_PS_INPUT_CNTL_2__DEFAULT_VAL_ATTR1__SHIFT 0x15
+#define SPI_PS_INPUT_CNTL_2__PT_SPRITE_TEX_ATTR1__SHIFT 0x17
+#define SPI_PS_INPUT_CNTL_2__ATTR0_VALID__SHIFT 0x18
+#define SPI_PS_INPUT_CNTL_2__ATTR1_VALID__SHIFT 0x19
+#define SPI_PS_INPUT_CNTL_2__OFFSET_MASK 0x0000003FL
+#define SPI_PS_INPUT_CNTL_2__DEFAULT_VAL_MASK 0x00000300L
+#define SPI_PS_INPUT_CNTL_2__FLAT_SHADE_MASK 0x00000400L
+#define SPI_PS_INPUT_CNTL_2__CYL_WRAP_MASK 0x0001E000L
+#define SPI_PS_INPUT_CNTL_2__PT_SPRITE_TEX_MASK 0x00020000L
+#define SPI_PS_INPUT_CNTL_2__DUP_MASK 0x00040000L
+#define SPI_PS_INPUT_CNTL_2__FP16_INTERP_MODE_MASK 0x00080000L
+#define SPI_PS_INPUT_CNTL_2__USE_DEFAULT_ATTR1_MASK 0x00100000L
+#define SPI_PS_INPUT_CNTL_2__DEFAULT_VAL_ATTR1_MASK 0x00600000L
+#define SPI_PS_INPUT_CNTL_2__PT_SPRITE_TEX_ATTR1_MASK 0x00800000L
+#define SPI_PS_INPUT_CNTL_2__ATTR0_VALID_MASK 0x01000000L
+#define SPI_PS_INPUT_CNTL_2__ATTR1_VALID_MASK 0x02000000L
+//SPI_PS_INPUT_CNTL_3
+#define SPI_PS_INPUT_CNTL_3__OFFSET__SHIFT 0x0
+#define SPI_PS_INPUT_CNTL_3__DEFAULT_VAL__SHIFT 0x8
+#define SPI_PS_INPUT_CNTL_3__FLAT_SHADE__SHIFT 0xa
+#define SPI_PS_INPUT_CNTL_3__CYL_WRAP__SHIFT 0xd
+#define SPI_PS_INPUT_CNTL_3__PT_SPRITE_TEX__SHIFT 0x11
+#define SPI_PS_INPUT_CNTL_3__DUP__SHIFT 0x12
+#define SPI_PS_INPUT_CNTL_3__FP16_INTERP_MODE__SHIFT 0x13
+#define SPI_PS_INPUT_CNTL_3__USE_DEFAULT_ATTR1__SHIFT 0x14
+#define SPI_PS_INPUT_CNTL_3__DEFAULT_VAL_ATTR1__SHIFT 0x15
+#define SPI_PS_INPUT_CNTL_3__PT_SPRITE_TEX_ATTR1__SHIFT 0x17
+#define SPI_PS_INPUT_CNTL_3__ATTR0_VALID__SHIFT 0x18
+#define SPI_PS_INPUT_CNTL_3__ATTR1_VALID__SHIFT 0x19
+#define SPI_PS_INPUT_CNTL_3__OFFSET_MASK 0x0000003FL
+#define SPI_PS_INPUT_CNTL_3__DEFAULT_VAL_MASK 0x00000300L
+#define SPI_PS_INPUT_CNTL_3__FLAT_SHADE_MASK 0x00000400L
+#define SPI_PS_INPUT_CNTL_3__CYL_WRAP_MASK 0x0001E000L
+#define SPI_PS_INPUT_CNTL_3__PT_SPRITE_TEX_MASK 0x00020000L
+#define SPI_PS_INPUT_CNTL_3__DUP_MASK 0x00040000L
+#define SPI_PS_INPUT_CNTL_3__FP16_INTERP_MODE_MASK 0x00080000L
+#define SPI_PS_INPUT_CNTL_3__USE_DEFAULT_ATTR1_MASK 0x00100000L
+#define SPI_PS_INPUT_CNTL_3__DEFAULT_VAL_ATTR1_MASK 0x00600000L
+#define SPI_PS_INPUT_CNTL_3__PT_SPRITE_TEX_ATTR1_MASK 0x00800000L
+#define SPI_PS_INPUT_CNTL_3__ATTR0_VALID_MASK 0x01000000L
+#define SPI_PS_INPUT_CNTL_3__ATTR1_VALID_MASK 0x02000000L
+//SPI_PS_INPUT_CNTL_4
+#define SPI_PS_INPUT_CNTL_4__OFFSET__SHIFT 0x0
+#define SPI_PS_INPUT_CNTL_4__DEFAULT_VAL__SHIFT 0x8
+#define SPI_PS_INPUT_CNTL_4__FLAT_SHADE__SHIFT 0xa
+#define SPI_PS_INPUT_CNTL_4__CYL_WRAP__SHIFT 0xd
+#define SPI_PS_INPUT_CNTL_4__PT_SPRITE_TEX__SHIFT 0x11
+#define SPI_PS_INPUT_CNTL_4__DUP__SHIFT 0x12
+#define SPI_PS_INPUT_CNTL_4__FP16_INTERP_MODE__SHIFT 0x13
+#define SPI_PS_INPUT_CNTL_4__USE_DEFAULT_ATTR1__SHIFT 0x14
+#define SPI_PS_INPUT_CNTL_4__DEFAULT_VAL_ATTR1__SHIFT 0x15
+#define SPI_PS_INPUT_CNTL_4__PT_SPRITE_TEX_ATTR1__SHIFT 0x17
+#define SPI_PS_INPUT_CNTL_4__ATTR0_VALID__SHIFT 0x18
+#define SPI_PS_INPUT_CNTL_4__ATTR1_VALID__SHIFT 0x19
+#define SPI_PS_INPUT_CNTL_4__OFFSET_MASK 0x0000003FL
+#define SPI_PS_INPUT_CNTL_4__DEFAULT_VAL_MASK 0x00000300L
+#define SPI_PS_INPUT_CNTL_4__FLAT_SHADE_MASK 0x00000400L
+#define SPI_PS_INPUT_CNTL_4__CYL_WRAP_MASK 0x0001E000L
+#define SPI_PS_INPUT_CNTL_4__PT_SPRITE_TEX_MASK 0x00020000L
+#define SPI_PS_INPUT_CNTL_4__DUP_MASK 0x00040000L
+#define SPI_PS_INPUT_CNTL_4__FP16_INTERP_MODE_MASK 0x00080000L
+#define SPI_PS_INPUT_CNTL_4__USE_DEFAULT_ATTR1_MASK 0x00100000L
+#define SPI_PS_INPUT_CNTL_4__DEFAULT_VAL_ATTR1_MASK 0x00600000L
+#define SPI_PS_INPUT_CNTL_4__PT_SPRITE_TEX_ATTR1_MASK 0x00800000L
+#define SPI_PS_INPUT_CNTL_4__ATTR0_VALID_MASK 0x01000000L
+#define SPI_PS_INPUT_CNTL_4__ATTR1_VALID_MASK 0x02000000L
+//SPI_PS_INPUT_CNTL_5
+#define SPI_PS_INPUT_CNTL_5__OFFSET__SHIFT 0x0
+#define SPI_PS_INPUT_CNTL_5__DEFAULT_VAL__SHIFT 0x8
+#define SPI_PS_INPUT_CNTL_5__FLAT_SHADE__SHIFT 0xa
+#define SPI_PS_INPUT_CNTL_5__CYL_WRAP__SHIFT 0xd
+#define SPI_PS_INPUT_CNTL_5__PT_SPRITE_TEX__SHIFT 0x11
+#define SPI_PS_INPUT_CNTL_5__DUP__SHIFT 0x12
+#define SPI_PS_INPUT_CNTL_5__FP16_INTERP_MODE__SHIFT 0x13
+#define SPI_PS_INPUT_CNTL_5__USE_DEFAULT_ATTR1__SHIFT 0x14
+#define SPI_PS_INPUT_CNTL_5__DEFAULT_VAL_ATTR1__SHIFT 0x15
+#define SPI_PS_INPUT_CNTL_5__PT_SPRITE_TEX_ATTR1__SHIFT 0x17
+#define SPI_PS_INPUT_CNTL_5__ATTR0_VALID__SHIFT 0x18
+#define SPI_PS_INPUT_CNTL_5__ATTR1_VALID__SHIFT 0x19
+#define SPI_PS_INPUT_CNTL_5__OFFSET_MASK 0x0000003FL
+#define SPI_PS_INPUT_CNTL_5__DEFAULT_VAL_MASK 0x00000300L
+#define SPI_PS_INPUT_CNTL_5__FLAT_SHADE_MASK 0x00000400L
+#define SPI_PS_INPUT_CNTL_5__CYL_WRAP_MASK 0x0001E000L
+#define SPI_PS_INPUT_CNTL_5__PT_SPRITE_TEX_MASK 0x00020000L
+#define SPI_PS_INPUT_CNTL_5__DUP_MASK 0x00040000L
+#define SPI_PS_INPUT_CNTL_5__FP16_INTERP_MODE_MASK 0x00080000L
+#define SPI_PS_INPUT_CNTL_5__USE_DEFAULT_ATTR1_MASK 0x00100000L
+#define SPI_PS_INPUT_CNTL_5__DEFAULT_VAL_ATTR1_MASK 0x00600000L
+#define SPI_PS_INPUT_CNTL_5__PT_SPRITE_TEX_ATTR1_MASK 0x00800000L
+#define SPI_PS_INPUT_CNTL_5__ATTR0_VALID_MASK 0x01000000L
+#define SPI_PS_INPUT_CNTL_5__ATTR1_VALID_MASK 0x02000000L
+//SPI_PS_INPUT_CNTL_6
+#define SPI_PS_INPUT_CNTL_6__OFFSET__SHIFT 0x0
+#define SPI_PS_INPUT_CNTL_6__DEFAULT_VAL__SHIFT 0x8
+#define SPI_PS_INPUT_CNTL_6__FLAT_SHADE__SHIFT 0xa
+#define SPI_PS_INPUT_CNTL_6__CYL_WRAP__SHIFT 0xd
+#define SPI_PS_INPUT_CNTL_6__PT_SPRITE_TEX__SHIFT 0x11
+#define SPI_PS_INPUT_CNTL_6__DUP__SHIFT 0x12
+#define SPI_PS_INPUT_CNTL_6__FP16_INTERP_MODE__SHIFT 0x13
+#define SPI_PS_INPUT_CNTL_6__USE_DEFAULT_ATTR1__SHIFT 0x14
+#define SPI_PS_INPUT_CNTL_6__DEFAULT_VAL_ATTR1__SHIFT 0x15
+#define SPI_PS_INPUT_CNTL_6__PT_SPRITE_TEX_ATTR1__SHIFT 0x17
+#define SPI_PS_INPUT_CNTL_6__ATTR0_VALID__SHIFT 0x18
+#define SPI_PS_INPUT_CNTL_6__ATTR1_VALID__SHIFT 0x19
+#define SPI_PS_INPUT_CNTL_6__OFFSET_MASK 0x0000003FL
+#define SPI_PS_INPUT_CNTL_6__DEFAULT_VAL_MASK 0x00000300L
+#define SPI_PS_INPUT_CNTL_6__FLAT_SHADE_MASK 0x00000400L
+#define SPI_PS_INPUT_CNTL_6__CYL_WRAP_MASK 0x0001E000L
+#define SPI_PS_INPUT_CNTL_6__PT_SPRITE_TEX_MASK 0x00020000L
+#define SPI_PS_INPUT_CNTL_6__DUP_MASK 0x00040000L
+#define SPI_PS_INPUT_CNTL_6__FP16_INTERP_MODE_MASK 0x00080000L
+#define SPI_PS_INPUT_CNTL_6__USE_DEFAULT_ATTR1_MASK 0x00100000L
+#define SPI_PS_INPUT_CNTL_6__DEFAULT_VAL_ATTR1_MASK 0x00600000L
+#define SPI_PS_INPUT_CNTL_6__PT_SPRITE_TEX_ATTR1_MASK 0x00800000L
+#define SPI_PS_INPUT_CNTL_6__ATTR0_VALID_MASK 0x01000000L
+#define SPI_PS_INPUT_CNTL_6__ATTR1_VALID_MASK 0x02000000L
+//SPI_PS_INPUT_CNTL_7
+#define SPI_PS_INPUT_CNTL_7__OFFSET__SHIFT 0x0
+#define SPI_PS_INPUT_CNTL_7__DEFAULT_VAL__SHIFT 0x8
+#define SPI_PS_INPUT_CNTL_7__FLAT_SHADE__SHIFT 0xa
+#define SPI_PS_INPUT_CNTL_7__CYL_WRAP__SHIFT 0xd
+#define SPI_PS_INPUT_CNTL_7__PT_SPRITE_TEX__SHIFT 0x11
+#define SPI_PS_INPUT_CNTL_7__DUP__SHIFT 0x12
+#define SPI_PS_INPUT_CNTL_7__FP16_INTERP_MODE__SHIFT 0x13
+#define SPI_PS_INPUT_CNTL_7__USE_DEFAULT_ATTR1__SHIFT 0x14
+#define SPI_PS_INPUT_CNTL_7__DEFAULT_VAL_ATTR1__SHIFT 0x15
+#define SPI_PS_INPUT_CNTL_7__PT_SPRITE_TEX_ATTR1__SHIFT 0x17
+#define SPI_PS_INPUT_CNTL_7__ATTR0_VALID__SHIFT 0x18
+#define SPI_PS_INPUT_CNTL_7__ATTR1_VALID__SHIFT 0x19
+#define SPI_PS_INPUT_CNTL_7__OFFSET_MASK 0x0000003FL
+#define SPI_PS_INPUT_CNTL_7__DEFAULT_VAL_MASK 0x00000300L
+#define SPI_PS_INPUT_CNTL_7__FLAT_SHADE_MASK 0x00000400L
+#define SPI_PS_INPUT_CNTL_7__CYL_WRAP_MASK 0x0001E000L
+#define SPI_PS_INPUT_CNTL_7__PT_SPRITE_TEX_MASK 0x00020000L
+#define SPI_PS_INPUT_CNTL_7__DUP_MASK 0x00040000L
+#define SPI_PS_INPUT_CNTL_7__FP16_INTERP_MODE_MASK 0x00080000L
+#define SPI_PS_INPUT_CNTL_7__USE_DEFAULT_ATTR1_MASK 0x00100000L
+#define SPI_PS_INPUT_CNTL_7__DEFAULT_VAL_ATTR1_MASK 0x00600000L
+#define SPI_PS_INPUT_CNTL_7__PT_SPRITE_TEX_ATTR1_MASK 0x00800000L
+#define SPI_PS_INPUT_CNTL_7__ATTR0_VALID_MASK 0x01000000L
+#define SPI_PS_INPUT_CNTL_7__ATTR1_VALID_MASK 0x02000000L
+//SPI_PS_INPUT_CNTL_8
+#define SPI_PS_INPUT_CNTL_8__OFFSET__SHIFT 0x0
+#define SPI_PS_INPUT_CNTL_8__DEFAULT_VAL__SHIFT 0x8
+#define SPI_PS_INPUT_CNTL_8__FLAT_SHADE__SHIFT 0xa
+#define SPI_PS_INPUT_CNTL_8__CYL_WRAP__SHIFT 0xd
+#define SPI_PS_INPUT_CNTL_8__PT_SPRITE_TEX__SHIFT 0x11
+#define SPI_PS_INPUT_CNTL_8__DUP__SHIFT 0x12
+#define SPI_PS_INPUT_CNTL_8__FP16_INTERP_MODE__SHIFT 0x13
+#define SPI_PS_INPUT_CNTL_8__USE_DEFAULT_ATTR1__SHIFT 0x14
+#define SPI_PS_INPUT_CNTL_8__DEFAULT_VAL_ATTR1__SHIFT 0x15
+#define SPI_PS_INPUT_CNTL_8__PT_SPRITE_TEX_ATTR1__SHIFT 0x17
+#define SPI_PS_INPUT_CNTL_8__ATTR0_VALID__SHIFT 0x18
+#define SPI_PS_INPUT_CNTL_8__ATTR1_VALID__SHIFT 0x19
+#define SPI_PS_INPUT_CNTL_8__OFFSET_MASK 0x0000003FL
+#define SPI_PS_INPUT_CNTL_8__DEFAULT_VAL_MASK 0x00000300L
+#define SPI_PS_INPUT_CNTL_8__FLAT_SHADE_MASK 0x00000400L
+#define SPI_PS_INPUT_CNTL_8__CYL_WRAP_MASK 0x0001E000L
+#define SPI_PS_INPUT_CNTL_8__PT_SPRITE_TEX_MASK 0x00020000L
+#define SPI_PS_INPUT_CNTL_8__DUP_MASK 0x00040000L
+#define SPI_PS_INPUT_CNTL_8__FP16_INTERP_MODE_MASK 0x00080000L
+#define SPI_PS_INPUT_CNTL_8__USE_DEFAULT_ATTR1_MASK 0x00100000L
+#define SPI_PS_INPUT_CNTL_8__DEFAULT_VAL_ATTR1_MASK 0x00600000L
+#define SPI_PS_INPUT_CNTL_8__PT_SPRITE_TEX_ATTR1_MASK 0x00800000L
+#define SPI_PS_INPUT_CNTL_8__ATTR0_VALID_MASK 0x01000000L
+#define SPI_PS_INPUT_CNTL_8__ATTR1_VALID_MASK 0x02000000L
+//SPI_PS_INPUT_CNTL_9
+#define SPI_PS_INPUT_CNTL_9__OFFSET__SHIFT 0x0
+#define SPI_PS_INPUT_CNTL_9__DEFAULT_VAL__SHIFT 0x8
+#define SPI_PS_INPUT_CNTL_9__FLAT_SHADE__SHIFT 0xa
+#define SPI_PS_INPUT_CNTL_9__CYL_WRAP__SHIFT 0xd
+#define SPI_PS_INPUT_CNTL_9__PT_SPRITE_TEX__SHIFT 0x11
+#define SPI_PS_INPUT_CNTL_9__DUP__SHIFT 0x12
+#define SPI_PS_INPUT_CNTL_9__FP16_INTERP_MODE__SHIFT 0x13
+#define SPI_PS_INPUT_CNTL_9__USE_DEFAULT_ATTR1__SHIFT 0x14
+#define SPI_PS_INPUT_CNTL_9__DEFAULT_VAL_ATTR1__SHIFT 0x15
+#define SPI_PS_INPUT_CNTL_9__PT_SPRITE_TEX_ATTR1__SHIFT 0x17
+#define SPI_PS_INPUT_CNTL_9__ATTR0_VALID__SHIFT 0x18
+#define SPI_PS_INPUT_CNTL_9__ATTR1_VALID__SHIFT 0x19
+#define SPI_PS_INPUT_CNTL_9__OFFSET_MASK 0x0000003FL
+#define SPI_PS_INPUT_CNTL_9__DEFAULT_VAL_MASK 0x00000300L
+#define SPI_PS_INPUT_CNTL_9__FLAT_SHADE_MASK 0x00000400L
+#define SPI_PS_INPUT_CNTL_9__CYL_WRAP_MASK 0x0001E000L
+#define SPI_PS_INPUT_CNTL_9__PT_SPRITE_TEX_MASK 0x00020000L
+#define SPI_PS_INPUT_CNTL_9__DUP_MASK 0x00040000L
+#define SPI_PS_INPUT_CNTL_9__FP16_INTERP_MODE_MASK 0x00080000L
+#define SPI_PS_INPUT_CNTL_9__USE_DEFAULT_ATTR1_MASK 0x00100000L
+#define SPI_PS_INPUT_CNTL_9__DEFAULT_VAL_ATTR1_MASK 0x00600000L
+#define SPI_PS_INPUT_CNTL_9__PT_SPRITE_TEX_ATTR1_MASK 0x00800000L
+#define SPI_PS_INPUT_CNTL_9__ATTR0_VALID_MASK 0x01000000L
+#define SPI_PS_INPUT_CNTL_9__ATTR1_VALID_MASK 0x02000000L
+//SPI_PS_INPUT_CNTL_10
+#define SPI_PS_INPUT_CNTL_10__OFFSET__SHIFT 0x0
+#define SPI_PS_INPUT_CNTL_10__DEFAULT_VAL__SHIFT 0x8
+#define SPI_PS_INPUT_CNTL_10__FLAT_SHADE__SHIFT 0xa
+#define SPI_PS_INPUT_CNTL_10__CYL_WRAP__SHIFT 0xd
+#define SPI_PS_INPUT_CNTL_10__PT_SPRITE_TEX__SHIFT 0x11
+#define SPI_PS_INPUT_CNTL_10__DUP__SHIFT 0x12
+#define SPI_PS_INPUT_CNTL_10__FP16_INTERP_MODE__SHIFT 0x13
+#define SPI_PS_INPUT_CNTL_10__USE_DEFAULT_ATTR1__SHIFT 0x14
+#define SPI_PS_INPUT_CNTL_10__DEFAULT_VAL_ATTR1__SHIFT 0x15
+#define SPI_PS_INPUT_CNTL_10__PT_SPRITE_TEX_ATTR1__SHIFT 0x17
+#define SPI_PS_INPUT_CNTL_10__ATTR0_VALID__SHIFT 0x18
+#define SPI_PS_INPUT_CNTL_10__ATTR1_VALID__SHIFT 0x19
+#define SPI_PS_INPUT_CNTL_10__OFFSET_MASK 0x0000003FL
+#define SPI_PS_INPUT_CNTL_10__DEFAULT_VAL_MASK 0x00000300L
+#define SPI_PS_INPUT_CNTL_10__FLAT_SHADE_MASK 0x00000400L
+#define SPI_PS_INPUT_CNTL_10__CYL_WRAP_MASK 0x0001E000L
+#define SPI_PS_INPUT_CNTL_10__PT_SPRITE_TEX_MASK 0x00020000L
+#define SPI_PS_INPUT_CNTL_10__DUP_MASK 0x00040000L
+#define SPI_PS_INPUT_CNTL_10__FP16_INTERP_MODE_MASK 0x00080000L
+#define SPI_PS_INPUT_CNTL_10__USE_DEFAULT_ATTR1_MASK 0x00100000L
+#define SPI_PS_INPUT_CNTL_10__DEFAULT_VAL_ATTR1_MASK 0x00600000L
+#define SPI_PS_INPUT_CNTL_10__PT_SPRITE_TEX_ATTR1_MASK 0x00800000L
+#define SPI_PS_INPUT_CNTL_10__ATTR0_VALID_MASK 0x01000000L
+#define SPI_PS_INPUT_CNTL_10__ATTR1_VALID_MASK 0x02000000L
+//SPI_PS_INPUT_CNTL_11
+#define SPI_PS_INPUT_CNTL_11__OFFSET__SHIFT 0x0
+#define SPI_PS_INPUT_CNTL_11__DEFAULT_VAL__SHIFT 0x8
+#define SPI_PS_INPUT_CNTL_11__FLAT_SHADE__SHIFT 0xa
+#define SPI_PS_INPUT_CNTL_11__CYL_WRAP__SHIFT 0xd
+#define SPI_PS_INPUT_CNTL_11__PT_SPRITE_TEX__SHIFT 0x11
+#define SPI_PS_INPUT_CNTL_11__DUP__SHIFT 0x12
+#define SPI_PS_INPUT_CNTL_11__FP16_INTERP_MODE__SHIFT 0x13
+#define SPI_PS_INPUT_CNTL_11__USE_DEFAULT_ATTR1__SHIFT 0x14
+#define SPI_PS_INPUT_CNTL_11__DEFAULT_VAL_ATTR1__SHIFT 0x15
+#define SPI_PS_INPUT_CNTL_11__PT_SPRITE_TEX_ATTR1__SHIFT 0x17
+#define SPI_PS_INPUT_CNTL_11__ATTR0_VALID__SHIFT 0x18
+#define SPI_PS_INPUT_CNTL_11__ATTR1_VALID__SHIFT 0x19
+#define SPI_PS_INPUT_CNTL_11__OFFSET_MASK 0x0000003FL
+#define SPI_PS_INPUT_CNTL_11__DEFAULT_VAL_MASK 0x00000300L
+#define SPI_PS_INPUT_CNTL_11__FLAT_SHADE_MASK 0x00000400L
+#define SPI_PS_INPUT_CNTL_11__CYL_WRAP_MASK 0x0001E000L
+#define SPI_PS_INPUT_CNTL_11__PT_SPRITE_TEX_MASK 0x00020000L
+#define SPI_PS_INPUT_CNTL_11__DUP_MASK 0x00040000L
+#define SPI_PS_INPUT_CNTL_11__FP16_INTERP_MODE_MASK 0x00080000L
+#define SPI_PS_INPUT_CNTL_11__USE_DEFAULT_ATTR1_MASK 0x00100000L
+#define SPI_PS_INPUT_CNTL_11__DEFAULT_VAL_ATTR1_MASK 0x00600000L
+#define SPI_PS_INPUT_CNTL_11__PT_SPRITE_TEX_ATTR1_MASK 0x00800000L
+#define SPI_PS_INPUT_CNTL_11__ATTR0_VALID_MASK 0x01000000L
+#define SPI_PS_INPUT_CNTL_11__ATTR1_VALID_MASK 0x02000000L
+//SPI_PS_INPUT_CNTL_12
+#define SPI_PS_INPUT_CNTL_12__OFFSET__SHIFT 0x0
+#define SPI_PS_INPUT_CNTL_12__DEFAULT_VAL__SHIFT 0x8
+#define SPI_PS_INPUT_CNTL_12__FLAT_SHADE__SHIFT 0xa
+#define SPI_PS_INPUT_CNTL_12__CYL_WRAP__SHIFT 0xd
+#define SPI_PS_INPUT_CNTL_12__PT_SPRITE_TEX__SHIFT 0x11
+#define SPI_PS_INPUT_CNTL_12__DUP__SHIFT 0x12
+#define SPI_PS_INPUT_CNTL_12__FP16_INTERP_MODE__SHIFT 0x13
+#define SPI_PS_INPUT_CNTL_12__USE_DEFAULT_ATTR1__SHIFT 0x14
+#define SPI_PS_INPUT_CNTL_12__DEFAULT_VAL_ATTR1__SHIFT 0x15
+#define SPI_PS_INPUT_CNTL_12__PT_SPRITE_TEX_ATTR1__SHIFT 0x17
+#define SPI_PS_INPUT_CNTL_12__ATTR0_VALID__SHIFT 0x18
+#define SPI_PS_INPUT_CNTL_12__ATTR1_VALID__SHIFT 0x19
+#define SPI_PS_INPUT_CNTL_12__OFFSET_MASK 0x0000003FL
+#define SPI_PS_INPUT_CNTL_12__DEFAULT_VAL_MASK 0x00000300L
+#define SPI_PS_INPUT_CNTL_12__FLAT_SHADE_MASK 0x00000400L
+#define SPI_PS_INPUT_CNTL_12__CYL_WRAP_MASK 0x0001E000L
+#define SPI_PS_INPUT_CNTL_12__PT_SPRITE_TEX_MASK 0x00020000L
+#define SPI_PS_INPUT_CNTL_12__DUP_MASK 0x00040000L
+#define SPI_PS_INPUT_CNTL_12__FP16_INTERP_MODE_MASK 0x00080000L
+#define SPI_PS_INPUT_CNTL_12__USE_DEFAULT_ATTR1_MASK 0x00100000L
+#define SPI_PS_INPUT_CNTL_12__DEFAULT_VAL_ATTR1_MASK 0x00600000L
+#define SPI_PS_INPUT_CNTL_12__PT_SPRITE_TEX_ATTR1_MASK 0x00800000L
+#define SPI_PS_INPUT_CNTL_12__ATTR0_VALID_MASK 0x01000000L
+#define SPI_PS_INPUT_CNTL_12__ATTR1_VALID_MASK 0x02000000L
+//SPI_PS_INPUT_CNTL_13
+#define SPI_PS_INPUT_CNTL_13__OFFSET__SHIFT 0x0
+#define SPI_PS_INPUT_CNTL_13__DEFAULT_VAL__SHIFT 0x8
+#define SPI_PS_INPUT_CNTL_13__FLAT_SHADE__SHIFT 0xa
+#define SPI_PS_INPUT_CNTL_13__CYL_WRAP__SHIFT 0xd
+#define SPI_PS_INPUT_CNTL_13__PT_SPRITE_TEX__SHIFT 0x11
+#define SPI_PS_INPUT_CNTL_13__DUP__SHIFT 0x12
+#define SPI_PS_INPUT_CNTL_13__FP16_INTERP_MODE__SHIFT 0x13
+#define SPI_PS_INPUT_CNTL_13__USE_DEFAULT_ATTR1__SHIFT 0x14
+#define SPI_PS_INPUT_CNTL_13__DEFAULT_VAL_ATTR1__SHIFT 0x15
+#define SPI_PS_INPUT_CNTL_13__PT_SPRITE_TEX_ATTR1__SHIFT 0x17
+#define SPI_PS_INPUT_CNTL_13__ATTR0_VALID__SHIFT 0x18
+#define SPI_PS_INPUT_CNTL_13__ATTR1_VALID__SHIFT 0x19
+#define SPI_PS_INPUT_CNTL_13__OFFSET_MASK 0x0000003FL
+#define SPI_PS_INPUT_CNTL_13__DEFAULT_VAL_MASK 0x00000300L
+#define SPI_PS_INPUT_CNTL_13__FLAT_SHADE_MASK 0x00000400L
+#define SPI_PS_INPUT_CNTL_13__CYL_WRAP_MASK 0x0001E000L
+#define SPI_PS_INPUT_CNTL_13__PT_SPRITE_TEX_MASK 0x00020000L
+#define SPI_PS_INPUT_CNTL_13__DUP_MASK 0x00040000L
+#define SPI_PS_INPUT_CNTL_13__FP16_INTERP_MODE_MASK 0x00080000L
+#define SPI_PS_INPUT_CNTL_13__USE_DEFAULT_ATTR1_MASK 0x00100000L
+#define SPI_PS_INPUT_CNTL_13__DEFAULT_VAL_ATTR1_MASK 0x00600000L
+#define SPI_PS_INPUT_CNTL_13__PT_SPRITE_TEX_ATTR1_MASK 0x00800000L
+#define SPI_PS_INPUT_CNTL_13__ATTR0_VALID_MASK 0x01000000L
+#define SPI_PS_INPUT_CNTL_13__ATTR1_VALID_MASK 0x02000000L
+//SPI_PS_INPUT_CNTL_14
+#define SPI_PS_INPUT_CNTL_14__OFFSET__SHIFT 0x0
+#define SPI_PS_INPUT_CNTL_14__DEFAULT_VAL__SHIFT 0x8
+#define SPI_PS_INPUT_CNTL_14__FLAT_SHADE__SHIFT 0xa
+#define SPI_PS_INPUT_CNTL_14__CYL_WRAP__SHIFT 0xd
+#define SPI_PS_INPUT_CNTL_14__PT_SPRITE_TEX__SHIFT 0x11
+#define SPI_PS_INPUT_CNTL_14__DUP__SHIFT 0x12
+#define SPI_PS_INPUT_CNTL_14__FP16_INTERP_MODE__SHIFT 0x13
+#define SPI_PS_INPUT_CNTL_14__USE_DEFAULT_ATTR1__SHIFT 0x14
+#define SPI_PS_INPUT_CNTL_14__DEFAULT_VAL_ATTR1__SHIFT 0x15
+#define SPI_PS_INPUT_CNTL_14__PT_SPRITE_TEX_ATTR1__SHIFT 0x17
+#define SPI_PS_INPUT_CNTL_14__ATTR0_VALID__SHIFT 0x18
+#define SPI_PS_INPUT_CNTL_14__ATTR1_VALID__SHIFT 0x19
+#define SPI_PS_INPUT_CNTL_14__OFFSET_MASK 0x0000003FL
+#define SPI_PS_INPUT_CNTL_14__DEFAULT_VAL_MASK 0x00000300L
+#define SPI_PS_INPUT_CNTL_14__FLAT_SHADE_MASK 0x00000400L
+#define SPI_PS_INPUT_CNTL_14__CYL_WRAP_MASK 0x0001E000L
+#define SPI_PS_INPUT_CNTL_14__PT_SPRITE_TEX_MASK 0x00020000L
+#define SPI_PS_INPUT_CNTL_14__DUP_MASK 0x00040000L
+#define SPI_PS_INPUT_CNTL_14__FP16_INTERP_MODE_MASK 0x00080000L
+#define SPI_PS_INPUT_CNTL_14__USE_DEFAULT_ATTR1_MASK 0x00100000L
+#define SPI_PS_INPUT_CNTL_14__DEFAULT_VAL_ATTR1_MASK 0x00600000L
+#define SPI_PS_INPUT_CNTL_14__PT_SPRITE_TEX_ATTR1_MASK 0x00800000L
+#define SPI_PS_INPUT_CNTL_14__ATTR0_VALID_MASK 0x01000000L
+#define SPI_PS_INPUT_CNTL_14__ATTR1_VALID_MASK 0x02000000L
+//SPI_PS_INPUT_CNTL_15
+#define SPI_PS_INPUT_CNTL_15__OFFSET__SHIFT 0x0
+#define SPI_PS_INPUT_CNTL_15__DEFAULT_VAL__SHIFT 0x8
+#define SPI_PS_INPUT_CNTL_15__FLAT_SHADE__SHIFT 0xa
+#define SPI_PS_INPUT_CNTL_15__CYL_WRAP__SHIFT 0xd
+#define SPI_PS_INPUT_CNTL_15__PT_SPRITE_TEX__SHIFT 0x11
+#define SPI_PS_INPUT_CNTL_15__DUP__SHIFT 0x12
+#define SPI_PS_INPUT_CNTL_15__FP16_INTERP_MODE__SHIFT 0x13
+#define SPI_PS_INPUT_CNTL_15__USE_DEFAULT_ATTR1__SHIFT 0x14
+#define SPI_PS_INPUT_CNTL_15__DEFAULT_VAL_ATTR1__SHIFT 0x15
+#define SPI_PS_INPUT_CNTL_15__PT_SPRITE_TEX_ATTR1__SHIFT 0x17
+#define SPI_PS_INPUT_CNTL_15__ATTR0_VALID__SHIFT 0x18
+#define SPI_PS_INPUT_CNTL_15__ATTR1_VALID__SHIFT 0x19
+#define SPI_PS_INPUT_CNTL_15__OFFSET_MASK 0x0000003FL
+#define SPI_PS_INPUT_CNTL_15__DEFAULT_VAL_MASK 0x00000300L
+#define SPI_PS_INPUT_CNTL_15__FLAT_SHADE_MASK 0x00000400L
+#define SPI_PS_INPUT_CNTL_15__CYL_WRAP_MASK 0x0001E000L
+#define SPI_PS_INPUT_CNTL_15__PT_SPRITE_TEX_MASK 0x00020000L
+#define SPI_PS_INPUT_CNTL_15__DUP_MASK 0x00040000L
+#define SPI_PS_INPUT_CNTL_15__FP16_INTERP_MODE_MASK 0x00080000L
+#define SPI_PS_INPUT_CNTL_15__USE_DEFAULT_ATTR1_MASK 0x00100000L
+#define SPI_PS_INPUT_CNTL_15__DEFAULT_VAL_ATTR1_MASK 0x00600000L
+#define SPI_PS_INPUT_CNTL_15__PT_SPRITE_TEX_ATTR1_MASK 0x00800000L
+#define SPI_PS_INPUT_CNTL_15__ATTR0_VALID_MASK 0x01000000L
+#define SPI_PS_INPUT_CNTL_15__ATTR1_VALID_MASK 0x02000000L
+//SPI_PS_INPUT_CNTL_16
+#define SPI_PS_INPUT_CNTL_16__OFFSET__SHIFT 0x0
+#define SPI_PS_INPUT_CNTL_16__DEFAULT_VAL__SHIFT 0x8
+#define SPI_PS_INPUT_CNTL_16__FLAT_SHADE__SHIFT 0xa
+#define SPI_PS_INPUT_CNTL_16__CYL_WRAP__SHIFT 0xd
+#define SPI_PS_INPUT_CNTL_16__PT_SPRITE_TEX__SHIFT 0x11
+#define SPI_PS_INPUT_CNTL_16__DUP__SHIFT 0x12
+#define SPI_PS_INPUT_CNTL_16__FP16_INTERP_MODE__SHIFT 0x13
+#define SPI_PS_INPUT_CNTL_16__USE_DEFAULT_ATTR1__SHIFT 0x14
+#define SPI_PS_INPUT_CNTL_16__DEFAULT_VAL_ATTR1__SHIFT 0x15
+#define SPI_PS_INPUT_CNTL_16__PT_SPRITE_TEX_ATTR1__SHIFT 0x17
+#define SPI_PS_INPUT_CNTL_16__ATTR0_VALID__SHIFT 0x18
+#define SPI_PS_INPUT_CNTL_16__ATTR1_VALID__SHIFT 0x19
+#define SPI_PS_INPUT_CNTL_16__OFFSET_MASK 0x0000003FL
+#define SPI_PS_INPUT_CNTL_16__DEFAULT_VAL_MASK 0x00000300L
+#define SPI_PS_INPUT_CNTL_16__FLAT_SHADE_MASK 0x00000400L
+#define SPI_PS_INPUT_CNTL_16__CYL_WRAP_MASK 0x0001E000L
+#define SPI_PS_INPUT_CNTL_16__PT_SPRITE_TEX_MASK 0x00020000L
+#define SPI_PS_INPUT_CNTL_16__DUP_MASK 0x00040000L
+#define SPI_PS_INPUT_CNTL_16__FP16_INTERP_MODE_MASK 0x00080000L
+#define SPI_PS_INPUT_CNTL_16__USE_DEFAULT_ATTR1_MASK 0x00100000L
+#define SPI_PS_INPUT_CNTL_16__DEFAULT_VAL_ATTR1_MASK 0x00600000L
+#define SPI_PS_INPUT_CNTL_16__PT_SPRITE_TEX_ATTR1_MASK 0x00800000L
+#define SPI_PS_INPUT_CNTL_16__ATTR0_VALID_MASK 0x01000000L
+#define SPI_PS_INPUT_CNTL_16__ATTR1_VALID_MASK 0x02000000L
+//SPI_PS_INPUT_CNTL_17
+#define SPI_PS_INPUT_CNTL_17__OFFSET__SHIFT 0x0
+#define SPI_PS_INPUT_CNTL_17__DEFAULT_VAL__SHIFT 0x8
+#define SPI_PS_INPUT_CNTL_17__FLAT_SHADE__SHIFT 0xa
+#define SPI_PS_INPUT_CNTL_17__CYL_WRAP__SHIFT 0xd
+#define SPI_PS_INPUT_CNTL_17__PT_SPRITE_TEX__SHIFT 0x11
+#define SPI_PS_INPUT_CNTL_17__DUP__SHIFT 0x12
+#define SPI_PS_INPUT_CNTL_17__FP16_INTERP_MODE__SHIFT 0x13
+#define SPI_PS_INPUT_CNTL_17__USE_DEFAULT_ATTR1__SHIFT 0x14
+#define SPI_PS_INPUT_CNTL_17__DEFAULT_VAL_ATTR1__SHIFT 0x15
+#define SPI_PS_INPUT_CNTL_17__PT_SPRITE_TEX_ATTR1__SHIFT 0x17
+#define SPI_PS_INPUT_CNTL_17__ATTR0_VALID__SHIFT 0x18
+#define SPI_PS_INPUT_CNTL_17__ATTR1_VALID__SHIFT 0x19
+#define SPI_PS_INPUT_CNTL_17__OFFSET_MASK 0x0000003FL
+#define SPI_PS_INPUT_CNTL_17__DEFAULT_VAL_MASK 0x00000300L
+#define SPI_PS_INPUT_CNTL_17__FLAT_SHADE_MASK 0x00000400L
+#define SPI_PS_INPUT_CNTL_17__CYL_WRAP_MASK 0x0001E000L
+#define SPI_PS_INPUT_CNTL_17__PT_SPRITE_TEX_MASK 0x00020000L
+#define SPI_PS_INPUT_CNTL_17__DUP_MASK 0x00040000L
+#define SPI_PS_INPUT_CNTL_17__FP16_INTERP_MODE_MASK 0x00080000L
+#define SPI_PS_INPUT_CNTL_17__USE_DEFAULT_ATTR1_MASK 0x00100000L
+#define SPI_PS_INPUT_CNTL_17__DEFAULT_VAL_ATTR1_MASK 0x00600000L
+#define SPI_PS_INPUT_CNTL_17__PT_SPRITE_TEX_ATTR1_MASK 0x00800000L
+#define SPI_PS_INPUT_CNTL_17__ATTR0_VALID_MASK 0x01000000L
+#define SPI_PS_INPUT_CNTL_17__ATTR1_VALID_MASK 0x02000000L
+//SPI_PS_INPUT_CNTL_18
+#define SPI_PS_INPUT_CNTL_18__OFFSET__SHIFT 0x0
+#define SPI_PS_INPUT_CNTL_18__DEFAULT_VAL__SHIFT 0x8
+#define SPI_PS_INPUT_CNTL_18__FLAT_SHADE__SHIFT 0xa
+#define SPI_PS_INPUT_CNTL_18__CYL_WRAP__SHIFT 0xd
+#define SPI_PS_INPUT_CNTL_18__PT_SPRITE_TEX__SHIFT 0x11
+#define SPI_PS_INPUT_CNTL_18__DUP__SHIFT 0x12
+#define SPI_PS_INPUT_CNTL_18__FP16_INTERP_MODE__SHIFT 0x13
+#define SPI_PS_INPUT_CNTL_18__USE_DEFAULT_ATTR1__SHIFT 0x14
+#define SPI_PS_INPUT_CNTL_18__DEFAULT_VAL_ATTR1__SHIFT 0x15
+#define SPI_PS_INPUT_CNTL_18__PT_SPRITE_TEX_ATTR1__SHIFT 0x17
+#define SPI_PS_INPUT_CNTL_18__ATTR0_VALID__SHIFT 0x18
+#define SPI_PS_INPUT_CNTL_18__ATTR1_VALID__SHIFT 0x19
+#define SPI_PS_INPUT_CNTL_18__OFFSET_MASK 0x0000003FL
+#define SPI_PS_INPUT_CNTL_18__DEFAULT_VAL_MASK 0x00000300L
+#define SPI_PS_INPUT_CNTL_18__FLAT_SHADE_MASK 0x00000400L
+#define SPI_PS_INPUT_CNTL_18__CYL_WRAP_MASK 0x0001E000L
+#define SPI_PS_INPUT_CNTL_18__PT_SPRITE_TEX_MASK 0x00020000L
+#define SPI_PS_INPUT_CNTL_18__DUP_MASK 0x00040000L
+#define SPI_PS_INPUT_CNTL_18__FP16_INTERP_MODE_MASK 0x00080000L
+#define SPI_PS_INPUT_CNTL_18__USE_DEFAULT_ATTR1_MASK 0x00100000L
+#define SPI_PS_INPUT_CNTL_18__DEFAULT_VAL_ATTR1_MASK 0x00600000L
+#define SPI_PS_INPUT_CNTL_18__PT_SPRITE_TEX_ATTR1_MASK 0x00800000L
+#define SPI_PS_INPUT_CNTL_18__ATTR0_VALID_MASK 0x01000000L
+#define SPI_PS_INPUT_CNTL_18__ATTR1_VALID_MASK 0x02000000L
+//SPI_PS_INPUT_CNTL_19
+#define SPI_PS_INPUT_CNTL_19__OFFSET__SHIFT 0x0
+#define SPI_PS_INPUT_CNTL_19__DEFAULT_VAL__SHIFT 0x8
+#define SPI_PS_INPUT_CNTL_19__FLAT_SHADE__SHIFT 0xa
+#define SPI_PS_INPUT_CNTL_19__CYL_WRAP__SHIFT 0xd
+#define SPI_PS_INPUT_CNTL_19__PT_SPRITE_TEX__SHIFT 0x11
+#define SPI_PS_INPUT_CNTL_19__DUP__SHIFT 0x12
+#define SPI_PS_INPUT_CNTL_19__FP16_INTERP_MODE__SHIFT 0x13
+#define SPI_PS_INPUT_CNTL_19__USE_DEFAULT_ATTR1__SHIFT 0x14
+#define SPI_PS_INPUT_CNTL_19__DEFAULT_VAL_ATTR1__SHIFT 0x15
+#define SPI_PS_INPUT_CNTL_19__PT_SPRITE_TEX_ATTR1__SHIFT 0x17
+#define SPI_PS_INPUT_CNTL_19__ATTR0_VALID__SHIFT 0x18
+#define SPI_PS_INPUT_CNTL_19__ATTR1_VALID__SHIFT 0x19
+#define SPI_PS_INPUT_CNTL_19__OFFSET_MASK 0x0000003FL
+#define SPI_PS_INPUT_CNTL_19__DEFAULT_VAL_MASK 0x00000300L
+#define SPI_PS_INPUT_CNTL_19__FLAT_SHADE_MASK 0x00000400L
+#define SPI_PS_INPUT_CNTL_19__CYL_WRAP_MASK 0x0001E000L
+#define SPI_PS_INPUT_CNTL_19__PT_SPRITE_TEX_MASK 0x00020000L
+#define SPI_PS_INPUT_CNTL_19__DUP_MASK 0x00040000L
+#define SPI_PS_INPUT_CNTL_19__FP16_INTERP_MODE_MASK 0x00080000L
+#define SPI_PS_INPUT_CNTL_19__USE_DEFAULT_ATTR1_MASK 0x00100000L
+#define SPI_PS_INPUT_CNTL_19__DEFAULT_VAL_ATTR1_MASK 0x00600000L
+#define SPI_PS_INPUT_CNTL_19__PT_SPRITE_TEX_ATTR1_MASK 0x00800000L
+#define SPI_PS_INPUT_CNTL_19__ATTR0_VALID_MASK 0x01000000L
+#define SPI_PS_INPUT_CNTL_19__ATTR1_VALID_MASK 0x02000000L
+//SPI_PS_INPUT_CNTL_20
+#define SPI_PS_INPUT_CNTL_20__OFFSET__SHIFT 0x0
+#define SPI_PS_INPUT_CNTL_20__DEFAULT_VAL__SHIFT 0x8
+#define SPI_PS_INPUT_CNTL_20__FLAT_SHADE__SHIFT 0xa
+#define SPI_PS_INPUT_CNTL_20__DUP__SHIFT 0x12
+#define SPI_PS_INPUT_CNTL_20__FP16_INTERP_MODE__SHIFT 0x13
+#define SPI_PS_INPUT_CNTL_20__USE_DEFAULT_ATTR1__SHIFT 0x14
+#define SPI_PS_INPUT_CNTL_20__DEFAULT_VAL_ATTR1__SHIFT 0x15
+#define SPI_PS_INPUT_CNTL_20__ATTR0_VALID__SHIFT 0x18
+#define SPI_PS_INPUT_CNTL_20__ATTR1_VALID__SHIFT 0x19
+#define SPI_PS_INPUT_CNTL_20__OFFSET_MASK 0x0000003FL
+#define SPI_PS_INPUT_CNTL_20__DEFAULT_VAL_MASK 0x00000300L
+#define SPI_PS_INPUT_CNTL_20__FLAT_SHADE_MASK 0x00000400L
+#define SPI_PS_INPUT_CNTL_20__DUP_MASK 0x00040000L
+#define SPI_PS_INPUT_CNTL_20__FP16_INTERP_MODE_MASK 0x00080000L
+#define SPI_PS_INPUT_CNTL_20__USE_DEFAULT_ATTR1_MASK 0x00100000L
+#define SPI_PS_INPUT_CNTL_20__DEFAULT_VAL_ATTR1_MASK 0x00600000L
+#define SPI_PS_INPUT_CNTL_20__ATTR0_VALID_MASK 0x01000000L
+#define SPI_PS_INPUT_CNTL_20__ATTR1_VALID_MASK 0x02000000L
+//SPI_PS_INPUT_CNTL_21
+#define SPI_PS_INPUT_CNTL_21__OFFSET__SHIFT 0x0
+#define SPI_PS_INPUT_CNTL_21__DEFAULT_VAL__SHIFT 0x8
+#define SPI_PS_INPUT_CNTL_21__FLAT_SHADE__SHIFT 0xa
+#define SPI_PS_INPUT_CNTL_21__DUP__SHIFT 0x12
+#define SPI_PS_INPUT_CNTL_21__FP16_INTERP_MODE__SHIFT 0x13
+#define SPI_PS_INPUT_CNTL_21__USE_DEFAULT_ATTR1__SHIFT 0x14
+#define SPI_PS_INPUT_CNTL_21__DEFAULT_VAL_ATTR1__SHIFT 0x15
+#define SPI_PS_INPUT_CNTL_21__ATTR0_VALID__SHIFT 0x18
+#define SPI_PS_INPUT_CNTL_21__ATTR1_VALID__SHIFT 0x19
+#define SPI_PS_INPUT_CNTL_21__OFFSET_MASK 0x0000003FL
+#define SPI_PS_INPUT_CNTL_21__DEFAULT_VAL_MASK 0x00000300L
+#define SPI_PS_INPUT_CNTL_21__FLAT_SHADE_MASK 0x00000400L
+#define SPI_PS_INPUT_CNTL_21__DUP_MASK 0x00040000L
+#define SPI_PS_INPUT_CNTL_21__FP16_INTERP_MODE_MASK 0x00080000L
+#define SPI_PS_INPUT_CNTL_21__USE_DEFAULT_ATTR1_MASK 0x00100000L
+#define SPI_PS_INPUT_CNTL_21__DEFAULT_VAL_ATTR1_MASK 0x00600000L
+#define SPI_PS_INPUT_CNTL_21__ATTR0_VALID_MASK 0x01000000L
+#define SPI_PS_INPUT_CNTL_21__ATTR1_VALID_MASK 0x02000000L
+//SPI_PS_INPUT_CNTL_22
+#define SPI_PS_INPUT_CNTL_22__OFFSET__SHIFT 0x0
+#define SPI_PS_INPUT_CNTL_22__DEFAULT_VAL__SHIFT 0x8
+#define SPI_PS_INPUT_CNTL_22__FLAT_SHADE__SHIFT 0xa
+#define SPI_PS_INPUT_CNTL_22__DUP__SHIFT 0x12
+#define SPI_PS_INPUT_CNTL_22__FP16_INTERP_MODE__SHIFT 0x13
+#define SPI_PS_INPUT_CNTL_22__USE_DEFAULT_ATTR1__SHIFT 0x14
+#define SPI_PS_INPUT_CNTL_22__DEFAULT_VAL_ATTR1__SHIFT 0x15
+#define SPI_PS_INPUT_CNTL_22__ATTR0_VALID__SHIFT 0x18
+#define SPI_PS_INPUT_CNTL_22__ATTR1_VALID__SHIFT 0x19
+#define SPI_PS_INPUT_CNTL_22__OFFSET_MASK 0x0000003FL
+#define SPI_PS_INPUT_CNTL_22__DEFAULT_VAL_MASK 0x00000300L
+#define SPI_PS_INPUT_CNTL_22__FLAT_SHADE_MASK 0x00000400L
+#define SPI_PS_INPUT_CNTL_22__DUP_MASK 0x00040000L
+#define SPI_PS_INPUT_CNTL_22__FP16_INTERP_MODE_MASK 0x00080000L
+#define SPI_PS_INPUT_CNTL_22__USE_DEFAULT_ATTR1_MASK 0x00100000L
+#define SPI_PS_INPUT_CNTL_22__DEFAULT_VAL_ATTR1_MASK 0x00600000L
+#define SPI_PS_INPUT_CNTL_22__ATTR0_VALID_MASK 0x01000000L
+#define SPI_PS_INPUT_CNTL_22__ATTR1_VALID_MASK 0x02000000L
+//SPI_PS_INPUT_CNTL_23
+#define SPI_PS_INPUT_CNTL_23__OFFSET__SHIFT 0x0
+#define SPI_PS_INPUT_CNTL_23__DEFAULT_VAL__SHIFT 0x8
+#define SPI_PS_INPUT_CNTL_23__FLAT_SHADE__SHIFT 0xa
+#define SPI_PS_INPUT_CNTL_23__DUP__SHIFT 0x12
+#define SPI_PS_INPUT_CNTL_23__FP16_INTERP_MODE__SHIFT 0x13
+#define SPI_PS_INPUT_CNTL_23__USE_DEFAULT_ATTR1__SHIFT 0x14
+#define SPI_PS_INPUT_CNTL_23__DEFAULT_VAL_ATTR1__SHIFT 0x15
+#define SPI_PS_INPUT_CNTL_23__ATTR0_VALID__SHIFT 0x18
+#define SPI_PS_INPUT_CNTL_23__ATTR1_VALID__SHIFT 0x19
+#define SPI_PS_INPUT_CNTL_23__OFFSET_MASK 0x0000003FL
+#define SPI_PS_INPUT_CNTL_23__DEFAULT_VAL_MASK 0x00000300L
+#define SPI_PS_INPUT_CNTL_23__FLAT_SHADE_MASK 0x00000400L
+#define SPI_PS_INPUT_CNTL_23__DUP_MASK 0x00040000L
+#define SPI_PS_INPUT_CNTL_23__FP16_INTERP_MODE_MASK 0x00080000L
+#define SPI_PS_INPUT_CNTL_23__USE_DEFAULT_ATTR1_MASK 0x00100000L
+#define SPI_PS_INPUT_CNTL_23__DEFAULT_VAL_ATTR1_MASK 0x00600000L
+#define SPI_PS_INPUT_CNTL_23__ATTR0_VALID_MASK 0x01000000L
+#define SPI_PS_INPUT_CNTL_23__ATTR1_VALID_MASK 0x02000000L
+//SPI_PS_INPUT_CNTL_24
+#define SPI_PS_INPUT_CNTL_24__OFFSET__SHIFT 0x0
+#define SPI_PS_INPUT_CNTL_24__DEFAULT_VAL__SHIFT 0x8
+#define SPI_PS_INPUT_CNTL_24__FLAT_SHADE__SHIFT 0xa
+#define SPI_PS_INPUT_CNTL_24__DUP__SHIFT 0x12
+#define SPI_PS_INPUT_CNTL_24__FP16_INTERP_MODE__SHIFT 0x13
+#define SPI_PS_INPUT_CNTL_24__USE_DEFAULT_ATTR1__SHIFT 0x14
+#define SPI_PS_INPUT_CNTL_24__DEFAULT_VAL_ATTR1__SHIFT 0x15
+#define SPI_PS_INPUT_CNTL_24__ATTR0_VALID__SHIFT 0x18
+#define SPI_PS_INPUT_CNTL_24__ATTR1_VALID__SHIFT 0x19
+#define SPI_PS_INPUT_CNTL_24__OFFSET_MASK 0x0000003FL
+#define SPI_PS_INPUT_CNTL_24__DEFAULT_VAL_MASK 0x00000300L
+#define SPI_PS_INPUT_CNTL_24__FLAT_SHADE_MASK 0x00000400L
+#define SPI_PS_INPUT_CNTL_24__DUP_MASK 0x00040000L
+#define SPI_PS_INPUT_CNTL_24__FP16_INTERP_MODE_MASK 0x00080000L
+#define SPI_PS_INPUT_CNTL_24__USE_DEFAULT_ATTR1_MASK 0x00100000L
+#define SPI_PS_INPUT_CNTL_24__DEFAULT_VAL_ATTR1_MASK 0x00600000L
+#define SPI_PS_INPUT_CNTL_24__ATTR0_VALID_MASK 0x01000000L
+#define SPI_PS_INPUT_CNTL_24__ATTR1_VALID_MASK 0x02000000L
+//SPI_PS_INPUT_CNTL_25
+#define SPI_PS_INPUT_CNTL_25__OFFSET__SHIFT 0x0
+#define SPI_PS_INPUT_CNTL_25__DEFAULT_VAL__SHIFT 0x8
+#define SPI_PS_INPUT_CNTL_25__FLAT_SHADE__SHIFT 0xa
+#define SPI_PS_INPUT_CNTL_25__DUP__SHIFT 0x12
+#define SPI_PS_INPUT_CNTL_25__FP16_INTERP_MODE__SHIFT 0x13
+#define SPI_PS_INPUT_CNTL_25__USE_DEFAULT_ATTR1__SHIFT 0x14
+#define SPI_PS_INPUT_CNTL_25__DEFAULT_VAL_ATTR1__SHIFT 0x15
+#define SPI_PS_INPUT_CNTL_25__ATTR0_VALID__SHIFT 0x18
+#define SPI_PS_INPUT_CNTL_25__ATTR1_VALID__SHIFT 0x19
+#define SPI_PS_INPUT_CNTL_25__OFFSET_MASK 0x0000003FL
+#define SPI_PS_INPUT_CNTL_25__DEFAULT_VAL_MASK 0x00000300L
+#define SPI_PS_INPUT_CNTL_25__FLAT_SHADE_MASK 0x00000400L
+#define SPI_PS_INPUT_CNTL_25__DUP_MASK 0x00040000L
+#define SPI_PS_INPUT_CNTL_25__FP16_INTERP_MODE_MASK 0x00080000L
+#define SPI_PS_INPUT_CNTL_25__USE_DEFAULT_ATTR1_MASK 0x00100000L
+#define SPI_PS_INPUT_CNTL_25__DEFAULT_VAL_ATTR1_MASK 0x00600000L
+#define SPI_PS_INPUT_CNTL_25__ATTR0_VALID_MASK 0x01000000L
+#define SPI_PS_INPUT_CNTL_25__ATTR1_VALID_MASK 0x02000000L
+//SPI_PS_INPUT_CNTL_26
+#define SPI_PS_INPUT_CNTL_26__OFFSET__SHIFT 0x0
+#define SPI_PS_INPUT_CNTL_26__DEFAULT_VAL__SHIFT 0x8
+#define SPI_PS_INPUT_CNTL_26__FLAT_SHADE__SHIFT 0xa
+#define SPI_PS_INPUT_CNTL_26__DUP__SHIFT 0x12
+#define SPI_PS_INPUT_CNTL_26__FP16_INTERP_MODE__SHIFT 0x13
+#define SPI_PS_INPUT_CNTL_26__USE_DEFAULT_ATTR1__SHIFT 0x14
+#define SPI_PS_INPUT_CNTL_26__DEFAULT_VAL_ATTR1__SHIFT 0x15
+#define SPI_PS_INPUT_CNTL_26__ATTR0_VALID__SHIFT 0x18
+#define SPI_PS_INPUT_CNTL_26__ATTR1_VALID__SHIFT 0x19
+#define SPI_PS_INPUT_CNTL_26__OFFSET_MASK 0x0000003FL
+#define SPI_PS_INPUT_CNTL_26__DEFAULT_VAL_MASK 0x00000300L
+#define SPI_PS_INPUT_CNTL_26__FLAT_SHADE_MASK 0x00000400L
+#define SPI_PS_INPUT_CNTL_26__DUP_MASK 0x00040000L
+#define SPI_PS_INPUT_CNTL_26__FP16_INTERP_MODE_MASK 0x00080000L
+#define SPI_PS_INPUT_CNTL_26__USE_DEFAULT_ATTR1_MASK 0x00100000L
+#define SPI_PS_INPUT_CNTL_26__DEFAULT_VAL_ATTR1_MASK 0x00600000L
+#define SPI_PS_INPUT_CNTL_26__ATTR0_VALID_MASK 0x01000000L
+#define SPI_PS_INPUT_CNTL_26__ATTR1_VALID_MASK 0x02000000L
+//SPI_PS_INPUT_CNTL_27
+#define SPI_PS_INPUT_CNTL_27__OFFSET__SHIFT 0x0
+#define SPI_PS_INPUT_CNTL_27__DEFAULT_VAL__SHIFT 0x8
+#define SPI_PS_INPUT_CNTL_27__FLAT_SHADE__SHIFT 0xa
+#define SPI_PS_INPUT_CNTL_27__DUP__SHIFT 0x12
+#define SPI_PS_INPUT_CNTL_27__FP16_INTERP_MODE__SHIFT 0x13
+#define SPI_PS_INPUT_CNTL_27__USE_DEFAULT_ATTR1__SHIFT 0x14
+#define SPI_PS_INPUT_CNTL_27__DEFAULT_VAL_ATTR1__SHIFT 0x15
+#define SPI_PS_INPUT_CNTL_27__ATTR0_VALID__SHIFT 0x18
+#define SPI_PS_INPUT_CNTL_27__ATTR1_VALID__SHIFT 0x19
+#define SPI_PS_INPUT_CNTL_27__OFFSET_MASK 0x0000003FL
+#define SPI_PS_INPUT_CNTL_27__DEFAULT_VAL_MASK 0x00000300L
+#define SPI_PS_INPUT_CNTL_27__FLAT_SHADE_MASK 0x00000400L
+#define SPI_PS_INPUT_CNTL_27__DUP_MASK 0x00040000L
+#define SPI_PS_INPUT_CNTL_27__FP16_INTERP_MODE_MASK 0x00080000L
+#define SPI_PS_INPUT_CNTL_27__USE_DEFAULT_ATTR1_MASK 0x00100000L
+#define SPI_PS_INPUT_CNTL_27__DEFAULT_VAL_ATTR1_MASK 0x00600000L
+#define SPI_PS_INPUT_CNTL_27__ATTR0_VALID_MASK 0x01000000L
+#define SPI_PS_INPUT_CNTL_27__ATTR1_VALID_MASK 0x02000000L
+//SPI_PS_INPUT_CNTL_28
+#define SPI_PS_INPUT_CNTL_28__OFFSET__SHIFT 0x0
+#define SPI_PS_INPUT_CNTL_28__DEFAULT_VAL__SHIFT 0x8
+#define SPI_PS_INPUT_CNTL_28__FLAT_SHADE__SHIFT 0xa
+#define SPI_PS_INPUT_CNTL_28__DUP__SHIFT 0x12
+#define SPI_PS_INPUT_CNTL_28__FP16_INTERP_MODE__SHIFT 0x13
+#define SPI_PS_INPUT_CNTL_28__USE_DEFAULT_ATTR1__SHIFT 0x14
+#define SPI_PS_INPUT_CNTL_28__DEFAULT_VAL_ATTR1__SHIFT 0x15
+#define SPI_PS_INPUT_CNTL_28__ATTR0_VALID__SHIFT 0x18
+#define SPI_PS_INPUT_CNTL_28__ATTR1_VALID__SHIFT 0x19
+#define SPI_PS_INPUT_CNTL_28__OFFSET_MASK 0x0000003FL
+#define SPI_PS_INPUT_CNTL_28__DEFAULT_VAL_MASK 0x00000300L
+#define SPI_PS_INPUT_CNTL_28__FLAT_SHADE_MASK 0x00000400L
+#define SPI_PS_INPUT_CNTL_28__DUP_MASK 0x00040000L
+#define SPI_PS_INPUT_CNTL_28__FP16_INTERP_MODE_MASK 0x00080000L
+#define SPI_PS_INPUT_CNTL_28__USE_DEFAULT_ATTR1_MASK 0x00100000L
+#define SPI_PS_INPUT_CNTL_28__DEFAULT_VAL_ATTR1_MASK 0x00600000L
+#define SPI_PS_INPUT_CNTL_28__ATTR0_VALID_MASK 0x01000000L
+#define SPI_PS_INPUT_CNTL_28__ATTR1_VALID_MASK 0x02000000L
+//SPI_PS_INPUT_CNTL_29
+#define SPI_PS_INPUT_CNTL_29__OFFSET__SHIFT 0x0
+#define SPI_PS_INPUT_CNTL_29__DEFAULT_VAL__SHIFT 0x8
+#define SPI_PS_INPUT_CNTL_29__FLAT_SHADE__SHIFT 0xa
+#define SPI_PS_INPUT_CNTL_29__DUP__SHIFT 0x12
+#define SPI_PS_INPUT_CNTL_29__FP16_INTERP_MODE__SHIFT 0x13
+#define SPI_PS_INPUT_CNTL_29__USE_DEFAULT_ATTR1__SHIFT 0x14
+#define SPI_PS_INPUT_CNTL_29__DEFAULT_VAL_ATTR1__SHIFT 0x15
+#define SPI_PS_INPUT_CNTL_29__ATTR0_VALID__SHIFT 0x18
+#define SPI_PS_INPUT_CNTL_29__ATTR1_VALID__SHIFT 0x19
+#define SPI_PS_INPUT_CNTL_29__OFFSET_MASK 0x0000003FL
+#define SPI_PS_INPUT_CNTL_29__DEFAULT_VAL_MASK 0x00000300L
+#define SPI_PS_INPUT_CNTL_29__FLAT_SHADE_MASK 0x00000400L
+#define SPI_PS_INPUT_CNTL_29__DUP_MASK 0x00040000L
+#define SPI_PS_INPUT_CNTL_29__FP16_INTERP_MODE_MASK 0x00080000L
+#define SPI_PS_INPUT_CNTL_29__USE_DEFAULT_ATTR1_MASK 0x00100000L
+#define SPI_PS_INPUT_CNTL_29__DEFAULT_VAL_ATTR1_MASK 0x00600000L
+#define SPI_PS_INPUT_CNTL_29__ATTR0_VALID_MASK 0x01000000L
+#define SPI_PS_INPUT_CNTL_29__ATTR1_VALID_MASK 0x02000000L
+//SPI_PS_INPUT_CNTL_30
+#define SPI_PS_INPUT_CNTL_30__OFFSET__SHIFT 0x0
+#define SPI_PS_INPUT_CNTL_30__DEFAULT_VAL__SHIFT 0x8
+#define SPI_PS_INPUT_CNTL_30__FLAT_SHADE__SHIFT 0xa
+#define SPI_PS_INPUT_CNTL_30__DUP__SHIFT 0x12
+#define SPI_PS_INPUT_CNTL_30__FP16_INTERP_MODE__SHIFT 0x13
+#define SPI_PS_INPUT_CNTL_30__USE_DEFAULT_ATTR1__SHIFT 0x14
+#define SPI_PS_INPUT_CNTL_30__DEFAULT_VAL_ATTR1__SHIFT 0x15
+#define SPI_PS_INPUT_CNTL_30__ATTR0_VALID__SHIFT 0x18
+#define SPI_PS_INPUT_CNTL_30__ATTR1_VALID__SHIFT 0x19
+#define SPI_PS_INPUT_CNTL_30__OFFSET_MASK 0x0000003FL
+#define SPI_PS_INPUT_CNTL_30__DEFAULT_VAL_MASK 0x00000300L
+#define SPI_PS_INPUT_CNTL_30__FLAT_SHADE_MASK 0x00000400L
+#define SPI_PS_INPUT_CNTL_30__DUP_MASK 0x00040000L
+#define SPI_PS_INPUT_CNTL_30__FP16_INTERP_MODE_MASK 0x00080000L
+#define SPI_PS_INPUT_CNTL_30__USE_DEFAULT_ATTR1_MASK 0x00100000L
+#define SPI_PS_INPUT_CNTL_30__DEFAULT_VAL_ATTR1_MASK 0x00600000L
+#define SPI_PS_INPUT_CNTL_30__ATTR0_VALID_MASK 0x01000000L
+#define SPI_PS_INPUT_CNTL_30__ATTR1_VALID_MASK 0x02000000L
+//SPI_PS_INPUT_CNTL_31
+#define SPI_PS_INPUT_CNTL_31__OFFSET__SHIFT 0x0
+#define SPI_PS_INPUT_CNTL_31__DEFAULT_VAL__SHIFT 0x8
+#define SPI_PS_INPUT_CNTL_31__FLAT_SHADE__SHIFT 0xa
+#define SPI_PS_INPUT_CNTL_31__DUP__SHIFT 0x12
+#define SPI_PS_INPUT_CNTL_31__FP16_INTERP_MODE__SHIFT 0x13
+#define SPI_PS_INPUT_CNTL_31__USE_DEFAULT_ATTR1__SHIFT 0x14
+#define SPI_PS_INPUT_CNTL_31__DEFAULT_VAL_ATTR1__SHIFT 0x15
+#define SPI_PS_INPUT_CNTL_31__ATTR0_VALID__SHIFT 0x18
+#define SPI_PS_INPUT_CNTL_31__ATTR1_VALID__SHIFT 0x19
+#define SPI_PS_INPUT_CNTL_31__OFFSET_MASK 0x0000003FL
+#define SPI_PS_INPUT_CNTL_31__DEFAULT_VAL_MASK 0x00000300L
+#define SPI_PS_INPUT_CNTL_31__FLAT_SHADE_MASK 0x00000400L
+#define SPI_PS_INPUT_CNTL_31__DUP_MASK 0x00040000L
+#define SPI_PS_INPUT_CNTL_31__FP16_INTERP_MODE_MASK 0x00080000L
+#define SPI_PS_INPUT_CNTL_31__USE_DEFAULT_ATTR1_MASK 0x00100000L
+#define SPI_PS_INPUT_CNTL_31__DEFAULT_VAL_ATTR1_MASK 0x00600000L
+#define SPI_PS_INPUT_CNTL_31__ATTR0_VALID_MASK 0x01000000L
+#define SPI_PS_INPUT_CNTL_31__ATTR1_VALID_MASK 0x02000000L
+//SPI_VS_OUT_CONFIG
+#define SPI_VS_OUT_CONFIG__VS_EXPORT_COUNT__SHIFT 0x1
+#define SPI_VS_OUT_CONFIG__VS_HALF_PACK__SHIFT 0x6
+#define SPI_VS_OUT_CONFIG__VS_EXPORT_COUNT_MASK 0x0000003EL
+#define SPI_VS_OUT_CONFIG__VS_HALF_PACK_MASK 0x00000040L
+//SPI_PS_INPUT_ENA
+#define SPI_PS_INPUT_ENA__PERSP_SAMPLE_ENA__SHIFT 0x0
+#define SPI_PS_INPUT_ENA__PERSP_CENTER_ENA__SHIFT 0x1
+#define SPI_PS_INPUT_ENA__PERSP_CENTROID_ENA__SHIFT 0x2
+#define SPI_PS_INPUT_ENA__PERSP_PULL_MODEL_ENA__SHIFT 0x3
+#define SPI_PS_INPUT_ENA__LINEAR_SAMPLE_ENA__SHIFT 0x4
+#define SPI_PS_INPUT_ENA__LINEAR_CENTER_ENA__SHIFT 0x5
+#define SPI_PS_INPUT_ENA__LINEAR_CENTROID_ENA__SHIFT 0x6
+#define SPI_PS_INPUT_ENA__LINE_STIPPLE_TEX_ENA__SHIFT 0x7
+#define SPI_PS_INPUT_ENA__POS_X_FLOAT_ENA__SHIFT 0x8
+#define SPI_PS_INPUT_ENA__POS_Y_FLOAT_ENA__SHIFT 0x9
+#define SPI_PS_INPUT_ENA__POS_Z_FLOAT_ENA__SHIFT 0xa
+#define SPI_PS_INPUT_ENA__POS_W_FLOAT_ENA__SHIFT 0xb
+#define SPI_PS_INPUT_ENA__FRONT_FACE_ENA__SHIFT 0xc
+#define SPI_PS_INPUT_ENA__ANCILLARY_ENA__SHIFT 0xd
+#define SPI_PS_INPUT_ENA__SAMPLE_COVERAGE_ENA__SHIFT 0xe
+#define SPI_PS_INPUT_ENA__POS_FIXED_PT_ENA__SHIFT 0xf
+#define SPI_PS_INPUT_ENA__PERSP_SAMPLE_ENA_MASK 0x00000001L
+#define SPI_PS_INPUT_ENA__PERSP_CENTER_ENA_MASK 0x00000002L
+#define SPI_PS_INPUT_ENA__PERSP_CENTROID_ENA_MASK 0x00000004L
+#define SPI_PS_INPUT_ENA__PERSP_PULL_MODEL_ENA_MASK 0x00000008L
+#define SPI_PS_INPUT_ENA__LINEAR_SAMPLE_ENA_MASK 0x00000010L
+#define SPI_PS_INPUT_ENA__LINEAR_CENTER_ENA_MASK 0x00000020L
+#define SPI_PS_INPUT_ENA__LINEAR_CENTROID_ENA_MASK 0x00000040L
+#define SPI_PS_INPUT_ENA__LINE_STIPPLE_TEX_ENA_MASK 0x00000080L
+#define SPI_PS_INPUT_ENA__POS_X_FLOAT_ENA_MASK 0x00000100L
+#define SPI_PS_INPUT_ENA__POS_Y_FLOAT_ENA_MASK 0x00000200L
+#define SPI_PS_INPUT_ENA__POS_Z_FLOAT_ENA_MASK 0x00000400L
+#define SPI_PS_INPUT_ENA__POS_W_FLOAT_ENA_MASK 0x00000800L
+#define SPI_PS_INPUT_ENA__FRONT_FACE_ENA_MASK 0x00001000L
+#define SPI_PS_INPUT_ENA__ANCILLARY_ENA_MASK 0x00002000L
+#define SPI_PS_INPUT_ENA__SAMPLE_COVERAGE_ENA_MASK 0x00004000L
+#define SPI_PS_INPUT_ENA__POS_FIXED_PT_ENA_MASK 0x00008000L
+//SPI_PS_INPUT_ADDR
+#define SPI_PS_INPUT_ADDR__PERSP_SAMPLE_ENA__SHIFT 0x0
+#define SPI_PS_INPUT_ADDR__PERSP_CENTER_ENA__SHIFT 0x1
+#define SPI_PS_INPUT_ADDR__PERSP_CENTROID_ENA__SHIFT 0x2
+#define SPI_PS_INPUT_ADDR__PERSP_PULL_MODEL_ENA__SHIFT 0x3
+#define SPI_PS_INPUT_ADDR__LINEAR_SAMPLE_ENA__SHIFT 0x4
+#define SPI_PS_INPUT_ADDR__LINEAR_CENTER_ENA__SHIFT 0x5
+#define SPI_PS_INPUT_ADDR__LINEAR_CENTROID_ENA__SHIFT 0x6
+#define SPI_PS_INPUT_ADDR__LINE_STIPPLE_TEX_ENA__SHIFT 0x7
+#define SPI_PS_INPUT_ADDR__POS_X_FLOAT_ENA__SHIFT 0x8
+#define SPI_PS_INPUT_ADDR__POS_Y_FLOAT_ENA__SHIFT 0x9
+#define SPI_PS_INPUT_ADDR__POS_Z_FLOAT_ENA__SHIFT 0xa
+#define SPI_PS_INPUT_ADDR__POS_W_FLOAT_ENA__SHIFT 0xb
+#define SPI_PS_INPUT_ADDR__FRONT_FACE_ENA__SHIFT 0xc
+#define SPI_PS_INPUT_ADDR__ANCILLARY_ENA__SHIFT 0xd
+#define SPI_PS_INPUT_ADDR__SAMPLE_COVERAGE_ENA__SHIFT 0xe
+#define SPI_PS_INPUT_ADDR__POS_FIXED_PT_ENA__SHIFT 0xf
+#define SPI_PS_INPUT_ADDR__PERSP_SAMPLE_ENA_MASK 0x00000001L
+#define SPI_PS_INPUT_ADDR__PERSP_CENTER_ENA_MASK 0x00000002L
+#define SPI_PS_INPUT_ADDR__PERSP_CENTROID_ENA_MASK 0x00000004L
+#define SPI_PS_INPUT_ADDR__PERSP_PULL_MODEL_ENA_MASK 0x00000008L
+#define SPI_PS_INPUT_ADDR__LINEAR_SAMPLE_ENA_MASK 0x00000010L
+#define SPI_PS_INPUT_ADDR__LINEAR_CENTER_ENA_MASK 0x00000020L
+#define SPI_PS_INPUT_ADDR__LINEAR_CENTROID_ENA_MASK 0x00000040L
+#define SPI_PS_INPUT_ADDR__LINE_STIPPLE_TEX_ENA_MASK 0x00000080L
+#define SPI_PS_INPUT_ADDR__POS_X_FLOAT_ENA_MASK 0x00000100L
+#define SPI_PS_INPUT_ADDR__POS_Y_FLOAT_ENA_MASK 0x00000200L
+#define SPI_PS_INPUT_ADDR__POS_Z_FLOAT_ENA_MASK 0x00000400L
+#define SPI_PS_INPUT_ADDR__POS_W_FLOAT_ENA_MASK 0x00000800L
+#define SPI_PS_INPUT_ADDR__FRONT_FACE_ENA_MASK 0x00001000L
+#define SPI_PS_INPUT_ADDR__ANCILLARY_ENA_MASK 0x00002000L
+#define SPI_PS_INPUT_ADDR__SAMPLE_COVERAGE_ENA_MASK 0x00004000L
+#define SPI_PS_INPUT_ADDR__POS_FIXED_PT_ENA_MASK 0x00008000L
+//SPI_INTERP_CONTROL_0
+#define SPI_INTERP_CONTROL_0__FLAT_SHADE_ENA__SHIFT 0x0
+#define SPI_INTERP_CONTROL_0__PNT_SPRITE_ENA__SHIFT 0x1
+#define SPI_INTERP_CONTROL_0__PNT_SPRITE_OVRD_X__SHIFT 0x2
+#define SPI_INTERP_CONTROL_0__PNT_SPRITE_OVRD_Y__SHIFT 0x5
+#define SPI_INTERP_CONTROL_0__PNT_SPRITE_OVRD_Z__SHIFT 0x8
+#define SPI_INTERP_CONTROL_0__PNT_SPRITE_OVRD_W__SHIFT 0xb
+#define SPI_INTERP_CONTROL_0__PNT_SPRITE_TOP_1__SHIFT 0xe
+#define SPI_INTERP_CONTROL_0__FLAT_SHADE_ENA_MASK 0x00000001L
+#define SPI_INTERP_CONTROL_0__PNT_SPRITE_ENA_MASK 0x00000002L
+#define SPI_INTERP_CONTROL_0__PNT_SPRITE_OVRD_X_MASK 0x0000001CL
+#define SPI_INTERP_CONTROL_0__PNT_SPRITE_OVRD_Y_MASK 0x000000E0L
+#define SPI_INTERP_CONTROL_0__PNT_SPRITE_OVRD_Z_MASK 0x00000700L
+#define SPI_INTERP_CONTROL_0__PNT_SPRITE_OVRD_W_MASK 0x00003800L
+#define SPI_INTERP_CONTROL_0__PNT_SPRITE_TOP_1_MASK 0x00004000L
+//SPI_PS_IN_CONTROL
+#define SPI_PS_IN_CONTROL__NUM_INTERP__SHIFT 0x0
+#define SPI_PS_IN_CONTROL__PARAM_GEN__SHIFT 0x6
+#define SPI_PS_IN_CONTROL__OFFCHIP_PARAM_EN__SHIFT 0x7
+#define SPI_PS_IN_CONTROL__LATE_PC_DEALLOC__SHIFT 0x8
+#define SPI_PS_IN_CONTROL__BC_OPTIMIZE_DISABLE__SHIFT 0xe
+#define SPI_PS_IN_CONTROL__NUM_INTERP_MASK 0x0000003FL
+#define SPI_PS_IN_CONTROL__PARAM_GEN_MASK 0x00000040L
+#define SPI_PS_IN_CONTROL__OFFCHIP_PARAM_EN_MASK 0x00000080L
+#define SPI_PS_IN_CONTROL__LATE_PC_DEALLOC_MASK 0x00000100L
+#define SPI_PS_IN_CONTROL__BC_OPTIMIZE_DISABLE_MASK 0x00004000L
+//SPI_BARYC_CNTL
+#define SPI_BARYC_CNTL__PERSP_CENTER_CNTL__SHIFT 0x0
+#define SPI_BARYC_CNTL__PERSP_CENTROID_CNTL__SHIFT 0x4
+#define SPI_BARYC_CNTL__LINEAR_CENTER_CNTL__SHIFT 0x8
+#define SPI_BARYC_CNTL__LINEAR_CENTROID_CNTL__SHIFT 0xc
+#define SPI_BARYC_CNTL__POS_FLOAT_LOCATION__SHIFT 0x10
+#define SPI_BARYC_CNTL__POS_FLOAT_ULC__SHIFT 0x14
+#define SPI_BARYC_CNTL__FRONT_FACE_ALL_BITS__SHIFT 0x18
+#define SPI_BARYC_CNTL__PERSP_CENTER_CNTL_MASK 0x00000001L
+#define SPI_BARYC_CNTL__PERSP_CENTROID_CNTL_MASK 0x00000010L
+#define SPI_BARYC_CNTL__LINEAR_CENTER_CNTL_MASK 0x00000100L
+#define SPI_BARYC_CNTL__LINEAR_CENTROID_CNTL_MASK 0x00001000L
+#define SPI_BARYC_CNTL__POS_FLOAT_LOCATION_MASK 0x00030000L
+#define SPI_BARYC_CNTL__POS_FLOAT_ULC_MASK 0x00100000L
+#define SPI_BARYC_CNTL__FRONT_FACE_ALL_BITS_MASK 0x01000000L
+//SPI_TMPRING_SIZE
+#define SPI_TMPRING_SIZE__WAVES__SHIFT 0x0
+#define SPI_TMPRING_SIZE__WAVESIZE__SHIFT 0xc
+#define SPI_TMPRING_SIZE__WAVES_MASK 0x00000FFFL
+#define SPI_TMPRING_SIZE__WAVESIZE_MASK 0x01FFF000L
+//SPI_SHADER_POS_FORMAT
+#define SPI_SHADER_POS_FORMAT__POS0_EXPORT_FORMAT__SHIFT 0x0
+#define SPI_SHADER_POS_FORMAT__POS1_EXPORT_FORMAT__SHIFT 0x4
+#define SPI_SHADER_POS_FORMAT__POS2_EXPORT_FORMAT__SHIFT 0x8
+#define SPI_SHADER_POS_FORMAT__POS3_EXPORT_FORMAT__SHIFT 0xc
+#define SPI_SHADER_POS_FORMAT__POS0_EXPORT_FORMAT_MASK 0x0000000FL
+#define SPI_SHADER_POS_FORMAT__POS1_EXPORT_FORMAT_MASK 0x000000F0L
+#define SPI_SHADER_POS_FORMAT__POS2_EXPORT_FORMAT_MASK 0x00000F00L
+#define SPI_SHADER_POS_FORMAT__POS3_EXPORT_FORMAT_MASK 0x0000F000L
+//SPI_SHADER_Z_FORMAT
+#define SPI_SHADER_Z_FORMAT__Z_EXPORT_FORMAT__SHIFT 0x0
+#define SPI_SHADER_Z_FORMAT__Z_EXPORT_FORMAT_MASK 0x0000000FL
+//SPI_SHADER_COL_FORMAT
+#define SPI_SHADER_COL_FORMAT__COL0_EXPORT_FORMAT__SHIFT 0x0
+#define SPI_SHADER_COL_FORMAT__COL1_EXPORT_FORMAT__SHIFT 0x4
+#define SPI_SHADER_COL_FORMAT__COL2_EXPORT_FORMAT__SHIFT 0x8
+#define SPI_SHADER_COL_FORMAT__COL3_EXPORT_FORMAT__SHIFT 0xc
+#define SPI_SHADER_COL_FORMAT__COL4_EXPORT_FORMAT__SHIFT 0x10
+#define SPI_SHADER_COL_FORMAT__COL5_EXPORT_FORMAT__SHIFT 0x14
+#define SPI_SHADER_COL_FORMAT__COL6_EXPORT_FORMAT__SHIFT 0x18
+#define SPI_SHADER_COL_FORMAT__COL7_EXPORT_FORMAT__SHIFT 0x1c
+#define SPI_SHADER_COL_FORMAT__COL0_EXPORT_FORMAT_MASK 0x0000000FL
+#define SPI_SHADER_COL_FORMAT__COL1_EXPORT_FORMAT_MASK 0x000000F0L
+#define SPI_SHADER_COL_FORMAT__COL2_EXPORT_FORMAT_MASK 0x00000F00L
+#define SPI_SHADER_COL_FORMAT__COL3_EXPORT_FORMAT_MASK 0x0000F000L
+#define SPI_SHADER_COL_FORMAT__COL4_EXPORT_FORMAT_MASK 0x000F0000L
+#define SPI_SHADER_COL_FORMAT__COL5_EXPORT_FORMAT_MASK 0x00F00000L
+#define SPI_SHADER_COL_FORMAT__COL6_EXPORT_FORMAT_MASK 0x0F000000L
+#define SPI_SHADER_COL_FORMAT__COL7_EXPORT_FORMAT_MASK 0xF0000000L
+//CB_BLEND0_CONTROL
+#define CB_BLEND0_CONTROL__COLOR_SRCBLEND__SHIFT 0x0
+#define CB_BLEND0_CONTROL__COLOR_COMB_FCN__SHIFT 0x5
+#define CB_BLEND0_CONTROL__COLOR_DESTBLEND__SHIFT 0x8
+#define CB_BLEND0_CONTROL__ALPHA_SRCBLEND__SHIFT 0x10
+#define CB_BLEND0_CONTROL__ALPHA_COMB_FCN__SHIFT 0x15
+#define CB_BLEND0_CONTROL__ALPHA_DESTBLEND__SHIFT 0x18
+#define CB_BLEND0_CONTROL__SEPARATE_ALPHA_BLEND__SHIFT 0x1d
+#define CB_BLEND0_CONTROL__ENABLE__SHIFT 0x1e
+#define CB_BLEND0_CONTROL__DISABLE_ROP3__SHIFT 0x1f
+#define CB_BLEND0_CONTROL__COLOR_SRCBLEND_MASK 0x0000001FL
+#define CB_BLEND0_CONTROL__COLOR_COMB_FCN_MASK 0x000000E0L
+#define CB_BLEND0_CONTROL__COLOR_DESTBLEND_MASK 0x00001F00L
+#define CB_BLEND0_CONTROL__ALPHA_SRCBLEND_MASK 0x001F0000L
+#define CB_BLEND0_CONTROL__ALPHA_COMB_FCN_MASK 0x00E00000L
+#define CB_BLEND0_CONTROL__ALPHA_DESTBLEND_MASK 0x1F000000L
+#define CB_BLEND0_CONTROL__SEPARATE_ALPHA_BLEND_MASK 0x20000000L
+#define CB_BLEND0_CONTROL__ENABLE_MASK 0x40000000L
+#define CB_BLEND0_CONTROL__DISABLE_ROP3_MASK 0x80000000L
+//CB_BLEND1_CONTROL
+#define CB_BLEND1_CONTROL__COLOR_SRCBLEND__SHIFT 0x0
+#define CB_BLEND1_CONTROL__COLOR_COMB_FCN__SHIFT 0x5
+#define CB_BLEND1_CONTROL__COLOR_DESTBLEND__SHIFT 0x8
+#define CB_BLEND1_CONTROL__ALPHA_SRCBLEND__SHIFT 0x10
+#define CB_BLEND1_CONTROL__ALPHA_COMB_FCN__SHIFT 0x15
+#define CB_BLEND1_CONTROL__ALPHA_DESTBLEND__SHIFT 0x18
+#define CB_BLEND1_CONTROL__SEPARATE_ALPHA_BLEND__SHIFT 0x1d
+#define CB_BLEND1_CONTROL__ENABLE__SHIFT 0x1e
+#define CB_BLEND1_CONTROL__DISABLE_ROP3__SHIFT 0x1f
+#define CB_BLEND1_CONTROL__COLOR_SRCBLEND_MASK 0x0000001FL
+#define CB_BLEND1_CONTROL__COLOR_COMB_FCN_MASK 0x000000E0L
+#define CB_BLEND1_CONTROL__COLOR_DESTBLEND_MASK 0x00001F00L
+#define CB_BLEND1_CONTROL__ALPHA_SRCBLEND_MASK 0x001F0000L
+#define CB_BLEND1_CONTROL__ALPHA_COMB_FCN_MASK 0x00E00000L
+#define CB_BLEND1_CONTROL__ALPHA_DESTBLEND_MASK 0x1F000000L
+#define CB_BLEND1_CONTROL__SEPARATE_ALPHA_BLEND_MASK 0x20000000L
+#define CB_BLEND1_CONTROL__ENABLE_MASK 0x40000000L
+#define CB_BLEND1_CONTROL__DISABLE_ROP3_MASK 0x80000000L
+//CB_BLEND2_CONTROL
+#define CB_BLEND2_CONTROL__COLOR_SRCBLEND__SHIFT 0x0
+#define CB_BLEND2_CONTROL__COLOR_COMB_FCN__SHIFT 0x5
+#define CB_BLEND2_CONTROL__COLOR_DESTBLEND__SHIFT 0x8
+#define CB_BLEND2_CONTROL__ALPHA_SRCBLEND__SHIFT 0x10
+#define CB_BLEND2_CONTROL__ALPHA_COMB_FCN__SHIFT 0x15
+#define CB_BLEND2_CONTROL__ALPHA_DESTBLEND__SHIFT 0x18
+#define CB_BLEND2_CONTROL__SEPARATE_ALPHA_BLEND__SHIFT 0x1d
+#define CB_BLEND2_CONTROL__ENABLE__SHIFT 0x1e
+#define CB_BLEND2_CONTROL__DISABLE_ROP3__SHIFT 0x1f
+#define CB_BLEND2_CONTROL__COLOR_SRCBLEND_MASK 0x0000001FL
+#define CB_BLEND2_CONTROL__COLOR_COMB_FCN_MASK 0x000000E0L
+#define CB_BLEND2_CONTROL__COLOR_DESTBLEND_MASK 0x00001F00L
+#define CB_BLEND2_CONTROL__ALPHA_SRCBLEND_MASK 0x001F0000L
+#define CB_BLEND2_CONTROL__ALPHA_COMB_FCN_MASK 0x00E00000L
+#define CB_BLEND2_CONTROL__ALPHA_DESTBLEND_MASK 0x1F000000L
+#define CB_BLEND2_CONTROL__SEPARATE_ALPHA_BLEND_MASK 0x20000000L
+#define CB_BLEND2_CONTROL__ENABLE_MASK 0x40000000L
+#define CB_BLEND2_CONTROL__DISABLE_ROP3_MASK 0x80000000L
+//CB_BLEND3_CONTROL
+#define CB_BLEND3_CONTROL__COLOR_SRCBLEND__SHIFT 0x0
+#define CB_BLEND3_CONTROL__COLOR_COMB_FCN__SHIFT 0x5
+#define CB_BLEND3_CONTROL__COLOR_DESTBLEND__SHIFT 0x8
+#define CB_BLEND3_CONTROL__ALPHA_SRCBLEND__SHIFT 0x10
+#define CB_BLEND3_CONTROL__ALPHA_COMB_FCN__SHIFT 0x15
+#define CB_BLEND3_CONTROL__ALPHA_DESTBLEND__SHIFT 0x18
+#define CB_BLEND3_CONTROL__SEPARATE_ALPHA_BLEND__SHIFT 0x1d
+#define CB_BLEND3_CONTROL__ENABLE__SHIFT 0x1e
+#define CB_BLEND3_CONTROL__DISABLE_ROP3__SHIFT 0x1f
+#define CB_BLEND3_CONTROL__COLOR_SRCBLEND_MASK 0x0000001FL
+#define CB_BLEND3_CONTROL__COLOR_COMB_FCN_MASK 0x000000E0L
+#define CB_BLEND3_CONTROL__COLOR_DESTBLEND_MASK 0x00001F00L
+#define CB_BLEND3_CONTROL__ALPHA_SRCBLEND_MASK 0x001F0000L
+#define CB_BLEND3_CONTROL__ALPHA_COMB_FCN_MASK 0x00E00000L
+#define CB_BLEND3_CONTROL__ALPHA_DESTBLEND_MASK 0x1F000000L
+#define CB_BLEND3_CONTROL__SEPARATE_ALPHA_BLEND_MASK 0x20000000L
+#define CB_BLEND3_CONTROL__ENABLE_MASK 0x40000000L
+#define CB_BLEND3_CONTROL__DISABLE_ROP3_MASK 0x80000000L
+//CB_BLEND4_CONTROL
+#define CB_BLEND4_CONTROL__COLOR_SRCBLEND__SHIFT 0x0
+#define CB_BLEND4_CONTROL__COLOR_COMB_FCN__SHIFT 0x5
+#define CB_BLEND4_CONTROL__COLOR_DESTBLEND__SHIFT 0x8
+#define CB_BLEND4_CONTROL__ALPHA_SRCBLEND__SHIFT 0x10
+#define CB_BLEND4_CONTROL__ALPHA_COMB_FCN__SHIFT 0x15
+#define CB_BLEND4_CONTROL__ALPHA_DESTBLEND__SHIFT 0x18
+#define CB_BLEND4_CONTROL__SEPARATE_ALPHA_BLEND__SHIFT 0x1d
+#define CB_BLEND4_CONTROL__ENABLE__SHIFT 0x1e
+#define CB_BLEND4_CONTROL__DISABLE_ROP3__SHIFT 0x1f
+#define CB_BLEND4_CONTROL__COLOR_SRCBLEND_MASK 0x0000001FL
+#define CB_BLEND4_CONTROL__COLOR_COMB_FCN_MASK 0x000000E0L
+#define CB_BLEND4_CONTROL__COLOR_DESTBLEND_MASK 0x00001F00L
+#define CB_BLEND4_CONTROL__ALPHA_SRCBLEND_MASK 0x001F0000L
+#define CB_BLEND4_CONTROL__ALPHA_COMB_FCN_MASK 0x00E00000L
+#define CB_BLEND4_CONTROL__ALPHA_DESTBLEND_MASK 0x1F000000L
+#define CB_BLEND4_CONTROL__SEPARATE_ALPHA_BLEND_MASK 0x20000000L
+#define CB_BLEND4_CONTROL__ENABLE_MASK 0x40000000L
+#define CB_BLEND4_CONTROL__DISABLE_ROP3_MASK 0x80000000L
+//CB_BLEND5_CONTROL
+#define CB_BLEND5_CONTROL__COLOR_SRCBLEND__SHIFT 0x0
+#define CB_BLEND5_CONTROL__COLOR_COMB_FCN__SHIFT 0x5
+#define CB_BLEND5_CONTROL__COLOR_DESTBLEND__SHIFT 0x8
+#define CB_BLEND5_CONTROL__ALPHA_SRCBLEND__SHIFT 0x10
+#define CB_BLEND5_CONTROL__ALPHA_COMB_FCN__SHIFT 0x15
+#define CB_BLEND5_CONTROL__ALPHA_DESTBLEND__SHIFT 0x18
+#define CB_BLEND5_CONTROL__SEPARATE_ALPHA_BLEND__SHIFT 0x1d
+#define CB_BLEND5_CONTROL__ENABLE__SHIFT 0x1e
+#define CB_BLEND5_CONTROL__DISABLE_ROP3__SHIFT 0x1f
+#define CB_BLEND5_CONTROL__COLOR_SRCBLEND_MASK 0x0000001FL
+#define CB_BLEND5_CONTROL__COLOR_COMB_FCN_MASK 0x000000E0L
+#define CB_BLEND5_CONTROL__COLOR_DESTBLEND_MASK 0x00001F00L
+#define CB_BLEND5_CONTROL__ALPHA_SRCBLEND_MASK 0x001F0000L
+#define CB_BLEND5_CONTROL__ALPHA_COMB_FCN_MASK 0x00E00000L
+#define CB_BLEND5_CONTROL__ALPHA_DESTBLEND_MASK 0x1F000000L
+#define CB_BLEND5_CONTROL__SEPARATE_ALPHA_BLEND_MASK 0x20000000L
+#define CB_BLEND5_CONTROL__ENABLE_MASK 0x40000000L
+#define CB_BLEND5_CONTROL__DISABLE_ROP3_MASK 0x80000000L
+//CB_BLEND6_CONTROL
+#define CB_BLEND6_CONTROL__COLOR_SRCBLEND__SHIFT 0x0
+#define CB_BLEND6_CONTROL__COLOR_COMB_FCN__SHIFT 0x5
+#define CB_BLEND6_CONTROL__COLOR_DESTBLEND__SHIFT 0x8
+#define CB_BLEND6_CONTROL__ALPHA_SRCBLEND__SHIFT 0x10
+#define CB_BLEND6_CONTROL__ALPHA_COMB_FCN__SHIFT 0x15
+#define CB_BLEND6_CONTROL__ALPHA_DESTBLEND__SHIFT 0x18
+#define CB_BLEND6_CONTROL__SEPARATE_ALPHA_BLEND__SHIFT 0x1d
+#define CB_BLEND6_CONTROL__ENABLE__SHIFT 0x1e
+#define CB_BLEND6_CONTROL__DISABLE_ROP3__SHIFT 0x1f
+#define CB_BLEND6_CONTROL__COLOR_SRCBLEND_MASK 0x0000001FL
+#define CB_BLEND6_CONTROL__COLOR_COMB_FCN_MASK 0x000000E0L
+#define CB_BLEND6_CONTROL__COLOR_DESTBLEND_MASK 0x00001F00L
+#define CB_BLEND6_CONTROL__ALPHA_SRCBLEND_MASK 0x001F0000L
+#define CB_BLEND6_CONTROL__ALPHA_COMB_FCN_MASK 0x00E00000L
+#define CB_BLEND6_CONTROL__ALPHA_DESTBLEND_MASK 0x1F000000L
+#define CB_BLEND6_CONTROL__SEPARATE_ALPHA_BLEND_MASK 0x20000000L
+#define CB_BLEND6_CONTROL__ENABLE_MASK 0x40000000L
+#define CB_BLEND6_CONTROL__DISABLE_ROP3_MASK 0x80000000L
+//CB_BLEND7_CONTROL
+#define CB_BLEND7_CONTROL__COLOR_SRCBLEND__SHIFT 0x0
+#define CB_BLEND7_CONTROL__COLOR_COMB_FCN__SHIFT 0x5
+#define CB_BLEND7_CONTROL__COLOR_DESTBLEND__SHIFT 0x8
+#define CB_BLEND7_CONTROL__ALPHA_SRCBLEND__SHIFT 0x10
+#define CB_BLEND7_CONTROL__ALPHA_COMB_FCN__SHIFT 0x15
+#define CB_BLEND7_CONTROL__ALPHA_DESTBLEND__SHIFT 0x18
+#define CB_BLEND7_CONTROL__SEPARATE_ALPHA_BLEND__SHIFT 0x1d
+#define CB_BLEND7_CONTROL__ENABLE__SHIFT 0x1e
+#define CB_BLEND7_CONTROL__DISABLE_ROP3__SHIFT 0x1f
+#define CB_BLEND7_CONTROL__COLOR_SRCBLEND_MASK 0x0000001FL
+#define CB_BLEND7_CONTROL__COLOR_COMB_FCN_MASK 0x000000E0L
+#define CB_BLEND7_CONTROL__COLOR_DESTBLEND_MASK 0x00001F00L
+#define CB_BLEND7_CONTROL__ALPHA_SRCBLEND_MASK 0x001F0000L
+#define CB_BLEND7_CONTROL__ALPHA_COMB_FCN_MASK 0x00E00000L
+#define CB_BLEND7_CONTROL__ALPHA_DESTBLEND_MASK 0x1F000000L
+#define CB_BLEND7_CONTROL__SEPARATE_ALPHA_BLEND_MASK 0x20000000L
+#define CB_BLEND7_CONTROL__ENABLE_MASK 0x40000000L
+#define CB_BLEND7_CONTROL__DISABLE_ROP3_MASK 0x80000000L
+//CB_MRT0_EPITCH
+#define CB_MRT0_EPITCH__EPITCH__SHIFT 0x0
+#define CB_MRT0_EPITCH__EPITCH_MASK 0x0000FFFFL
+//CB_MRT1_EPITCH
+#define CB_MRT1_EPITCH__EPITCH__SHIFT 0x0
+#define CB_MRT1_EPITCH__EPITCH_MASK 0x0000FFFFL
+//CB_MRT2_EPITCH
+#define CB_MRT2_EPITCH__EPITCH__SHIFT 0x0
+#define CB_MRT2_EPITCH__EPITCH_MASK 0x0000FFFFL
+//CB_MRT3_EPITCH
+#define CB_MRT3_EPITCH__EPITCH__SHIFT 0x0
+#define CB_MRT3_EPITCH__EPITCH_MASK 0x0000FFFFL
+//CB_MRT4_EPITCH
+#define CB_MRT4_EPITCH__EPITCH__SHIFT 0x0
+#define CB_MRT4_EPITCH__EPITCH_MASK 0x0000FFFFL
+//CB_MRT5_EPITCH
+#define CB_MRT5_EPITCH__EPITCH__SHIFT 0x0
+#define CB_MRT5_EPITCH__EPITCH_MASK 0x0000FFFFL
+//CB_MRT6_EPITCH
+#define CB_MRT6_EPITCH__EPITCH__SHIFT 0x0
+#define CB_MRT6_EPITCH__EPITCH_MASK 0x0000FFFFL
+//CB_MRT7_EPITCH
+#define CB_MRT7_EPITCH__EPITCH__SHIFT 0x0
+#define CB_MRT7_EPITCH__EPITCH_MASK 0x0000FFFFL
+//CS_COPY_STATE
+#define CS_COPY_STATE__SRC_STATE_ID__SHIFT 0x0
+#define CS_COPY_STATE__SRC_STATE_ID_MASK 0x00000007L
+//GFX_COPY_STATE
+#define GFX_COPY_STATE__SRC_STATE_ID__SHIFT 0x0
+#define GFX_COPY_STATE__SRC_STATE_ID_MASK 0x00000007L
+//PA_CL_POINT_X_RAD
+#define PA_CL_POINT_X_RAD__DATA_REGISTER__SHIFT 0x0
+#define PA_CL_POINT_X_RAD__DATA_REGISTER_MASK 0xFFFFFFFFL
+//PA_CL_POINT_Y_RAD
+#define PA_CL_POINT_Y_RAD__DATA_REGISTER__SHIFT 0x0
+#define PA_CL_POINT_Y_RAD__DATA_REGISTER_MASK 0xFFFFFFFFL
+//PA_CL_POINT_SIZE
+#define PA_CL_POINT_SIZE__DATA_REGISTER__SHIFT 0x0
+#define PA_CL_POINT_SIZE__DATA_REGISTER_MASK 0xFFFFFFFFL
+//PA_CL_POINT_CULL_RAD
+#define PA_CL_POINT_CULL_RAD__DATA_REGISTER__SHIFT 0x0
+#define PA_CL_POINT_CULL_RAD__DATA_REGISTER_MASK 0xFFFFFFFFL
+//VGT_DMA_BASE_HI
+#define VGT_DMA_BASE_HI__BASE_ADDR__SHIFT 0x0
+#define VGT_DMA_BASE_HI__BASE_ADDR_MASK 0x0000FFFFL
+//VGT_DMA_BASE
+#define VGT_DMA_BASE__BASE_ADDR__SHIFT 0x0
+#define VGT_DMA_BASE__BASE_ADDR_MASK 0xFFFFFFFFL
+//VGT_DRAW_INITIATOR
+#define VGT_DRAW_INITIATOR__SOURCE_SELECT__SHIFT 0x0
+#define VGT_DRAW_INITIATOR__MAJOR_MODE__SHIFT 0x2
+#define VGT_DRAW_INITIATOR__SPRITE_EN_R6XX__SHIFT 0x4
+#define VGT_DRAW_INITIATOR__NOT_EOP__SHIFT 0x5
+#define VGT_DRAW_INITIATOR__USE_OPAQUE__SHIFT 0x6
+#define VGT_DRAW_INITIATOR__UNROLLED_INST__SHIFT 0x7
+#define VGT_DRAW_INITIATOR__GRBM_SKEW_NO_DEC__SHIFT 0x8
+#define VGT_DRAW_INITIATOR__REG_RT_INDEX__SHIFT 0x1d
+#define VGT_DRAW_INITIATOR__SOURCE_SELECT_MASK 0x00000003L
+#define VGT_DRAW_INITIATOR__MAJOR_MODE_MASK 0x0000000CL
+#define VGT_DRAW_INITIATOR__SPRITE_EN_R6XX_MASK 0x00000010L
+#define VGT_DRAW_INITIATOR__NOT_EOP_MASK 0x00000020L
+#define VGT_DRAW_INITIATOR__USE_OPAQUE_MASK 0x00000040L
+#define VGT_DRAW_INITIATOR__UNROLLED_INST_MASK 0x00000080L
+#define VGT_DRAW_INITIATOR__GRBM_SKEW_NO_DEC_MASK 0x00000100L
+#define VGT_DRAW_INITIATOR__REG_RT_INDEX_MASK 0xE0000000L
+//VGT_IMMED_DATA
+#define VGT_IMMED_DATA__DATA__SHIFT 0x0
+#define VGT_IMMED_DATA__DATA_MASK 0xFFFFFFFFL
+//VGT_EVENT_ADDRESS_REG
+#define VGT_EVENT_ADDRESS_REG__ADDRESS_LOW__SHIFT 0x0
+#define VGT_EVENT_ADDRESS_REG__ADDRESS_LOW_MASK 0x0FFFFFFFL
+//DB_DEPTH_CONTROL
+#define DB_DEPTH_CONTROL__STENCIL_ENABLE__SHIFT 0x0
+#define DB_DEPTH_CONTROL__Z_ENABLE__SHIFT 0x1
+#define DB_DEPTH_CONTROL__Z_WRITE_ENABLE__SHIFT 0x2
+#define DB_DEPTH_CONTROL__DEPTH_BOUNDS_ENABLE__SHIFT 0x3
+#define DB_DEPTH_CONTROL__ZFUNC__SHIFT 0x4
+#define DB_DEPTH_CONTROL__BACKFACE_ENABLE__SHIFT 0x7
+#define DB_DEPTH_CONTROL__STENCILFUNC__SHIFT 0x8
+#define DB_DEPTH_CONTROL__STENCILFUNC_BF__SHIFT 0x14
+#define DB_DEPTH_CONTROL__ENABLE_COLOR_WRITES_ON_DEPTH_FAIL__SHIFT 0x1e
+#define DB_DEPTH_CONTROL__DISABLE_COLOR_WRITES_ON_DEPTH_PASS__SHIFT 0x1f
+#define DB_DEPTH_CONTROL__STENCIL_ENABLE_MASK 0x00000001L
+#define DB_DEPTH_CONTROL__Z_ENABLE_MASK 0x00000002L
+#define DB_DEPTH_CONTROL__Z_WRITE_ENABLE_MASK 0x00000004L
+#define DB_DEPTH_CONTROL__DEPTH_BOUNDS_ENABLE_MASK 0x00000008L
+#define DB_DEPTH_CONTROL__ZFUNC_MASK 0x00000070L
+#define DB_DEPTH_CONTROL__BACKFACE_ENABLE_MASK 0x00000080L
+#define DB_DEPTH_CONTROL__STENCILFUNC_MASK 0x00000700L
+#define DB_DEPTH_CONTROL__STENCILFUNC_BF_MASK 0x00700000L
+#define DB_DEPTH_CONTROL__ENABLE_COLOR_WRITES_ON_DEPTH_FAIL_MASK 0x40000000L
+#define DB_DEPTH_CONTROL__DISABLE_COLOR_WRITES_ON_DEPTH_PASS_MASK 0x80000000L
+//DB_EQAA
+#define DB_EQAA__MAX_ANCHOR_SAMPLES__SHIFT 0x0
+#define DB_EQAA__PS_ITER_SAMPLES__SHIFT 0x4
+#define DB_EQAA__MASK_EXPORT_NUM_SAMPLES__SHIFT 0x8
+#define DB_EQAA__ALPHA_TO_MASK_NUM_SAMPLES__SHIFT 0xc
+#define DB_EQAA__HIGH_QUALITY_INTERSECTIONS__SHIFT 0x10
+#define DB_EQAA__INCOHERENT_EQAA_READS__SHIFT 0x11
+#define DB_EQAA__INTERPOLATE_COMP_Z__SHIFT 0x12
+#define DB_EQAA__INTERPOLATE_SRC_Z__SHIFT 0x13
+#define DB_EQAA__STATIC_ANCHOR_ASSOCIATIONS__SHIFT 0x14
+#define DB_EQAA__ALPHA_TO_MASK_EQAA_DISABLE__SHIFT 0x15
+#define DB_EQAA__OVERRASTERIZATION_AMOUNT__SHIFT 0x18
+#define DB_EQAA__ENABLE_POSTZ_OVERRASTERIZATION__SHIFT 0x1b
+#define DB_EQAA__MAX_ANCHOR_SAMPLES_MASK 0x00000007L
+#define DB_EQAA__PS_ITER_SAMPLES_MASK 0x00000070L
+#define DB_EQAA__MASK_EXPORT_NUM_SAMPLES_MASK 0x00000700L
+#define DB_EQAA__ALPHA_TO_MASK_NUM_SAMPLES_MASK 0x00007000L
+#define DB_EQAA__HIGH_QUALITY_INTERSECTIONS_MASK 0x00010000L
+#define DB_EQAA__INCOHERENT_EQAA_READS_MASK 0x00020000L
+#define DB_EQAA__INTERPOLATE_COMP_Z_MASK 0x00040000L
+#define DB_EQAA__INTERPOLATE_SRC_Z_MASK 0x00080000L
+#define DB_EQAA__STATIC_ANCHOR_ASSOCIATIONS_MASK 0x00100000L
+#define DB_EQAA__ALPHA_TO_MASK_EQAA_DISABLE_MASK 0x00200000L
+#define DB_EQAA__OVERRASTERIZATION_AMOUNT_MASK 0x07000000L
+#define DB_EQAA__ENABLE_POSTZ_OVERRASTERIZATION_MASK 0x08000000L
+//CB_COLOR_CONTROL
+#define CB_COLOR_CONTROL__DISABLE_DUAL_QUAD__SHIFT 0x0
+#define CB_COLOR_CONTROL__DEGAMMA_ENABLE__SHIFT 0x3
+#define CB_COLOR_CONTROL__MODE__SHIFT 0x4
+#define CB_COLOR_CONTROL__ROP3__SHIFT 0x10
+#define CB_COLOR_CONTROL__DISABLE_DUAL_QUAD_MASK 0x00000001L
+#define CB_COLOR_CONTROL__DEGAMMA_ENABLE_MASK 0x00000008L
+#define CB_COLOR_CONTROL__MODE_MASK 0x00000070L
+#define CB_COLOR_CONTROL__ROP3_MASK 0x00FF0000L
+//DB_SHADER_CONTROL
+#define DB_SHADER_CONTROL__Z_EXPORT_ENABLE__SHIFT 0x0
+#define DB_SHADER_CONTROL__STENCIL_TEST_VAL_EXPORT_ENABLE__SHIFT 0x1
+#define DB_SHADER_CONTROL__STENCIL_OP_VAL_EXPORT_ENABLE__SHIFT 0x2
+#define DB_SHADER_CONTROL__Z_ORDER__SHIFT 0x4
+#define DB_SHADER_CONTROL__KILL_ENABLE__SHIFT 0x6
+#define DB_SHADER_CONTROL__COVERAGE_TO_MASK_ENABLE__SHIFT 0x7
+#define DB_SHADER_CONTROL__MASK_EXPORT_ENABLE__SHIFT 0x8
+#define DB_SHADER_CONTROL__EXEC_ON_HIER_FAIL__SHIFT 0x9
+#define DB_SHADER_CONTROL__EXEC_ON_NOOP__SHIFT 0xa
+#define DB_SHADER_CONTROL__ALPHA_TO_MASK_DISABLE__SHIFT 0xb
+#define DB_SHADER_CONTROL__DEPTH_BEFORE_SHADER__SHIFT 0xc
+#define DB_SHADER_CONTROL__CONSERVATIVE_Z_EXPORT__SHIFT 0xd
+#define DB_SHADER_CONTROL__DUAL_QUAD_DISABLE__SHIFT 0xf
+#define DB_SHADER_CONTROL__PRIMITIVE_ORDERED_PIXEL_SHADER__SHIFT 0x10
+#define DB_SHADER_CONTROL__EXEC_IF_OVERLAPPED__SHIFT 0x11
+#define DB_SHADER_CONTROL__POPS_OVERLAP_NUM_SAMPLES__SHIFT 0x14
+#define DB_SHADER_CONTROL__Z_EXPORT_ENABLE_MASK 0x00000001L
+#define DB_SHADER_CONTROL__STENCIL_TEST_VAL_EXPORT_ENABLE_MASK 0x00000002L
+#define DB_SHADER_CONTROL__STENCIL_OP_VAL_EXPORT_ENABLE_MASK 0x00000004L
+#define DB_SHADER_CONTROL__Z_ORDER_MASK 0x00000030L
+#define DB_SHADER_CONTROL__KILL_ENABLE_MASK 0x00000040L
+#define DB_SHADER_CONTROL__COVERAGE_TO_MASK_ENABLE_MASK 0x00000080L
+#define DB_SHADER_CONTROL__MASK_EXPORT_ENABLE_MASK 0x00000100L
+#define DB_SHADER_CONTROL__EXEC_ON_HIER_FAIL_MASK 0x00000200L
+#define DB_SHADER_CONTROL__EXEC_ON_NOOP_MASK 0x00000400L
+#define DB_SHADER_CONTROL__ALPHA_TO_MASK_DISABLE_MASK 0x00000800L
+#define DB_SHADER_CONTROL__DEPTH_BEFORE_SHADER_MASK 0x00001000L
+#define DB_SHADER_CONTROL__CONSERVATIVE_Z_EXPORT_MASK 0x00006000L
+#define DB_SHADER_CONTROL__DUAL_QUAD_DISABLE_MASK 0x00008000L
+#define DB_SHADER_CONTROL__PRIMITIVE_ORDERED_PIXEL_SHADER_MASK 0x00010000L
+#define DB_SHADER_CONTROL__EXEC_IF_OVERLAPPED_MASK 0x00020000L
+#define DB_SHADER_CONTROL__POPS_OVERLAP_NUM_SAMPLES_MASK 0x00700000L
+//PA_CL_CLIP_CNTL
+#define PA_CL_CLIP_CNTL__UCP_ENA_0__SHIFT 0x0
+#define PA_CL_CLIP_CNTL__UCP_ENA_1__SHIFT 0x1
+#define PA_CL_CLIP_CNTL__UCP_ENA_2__SHIFT 0x2
+#define PA_CL_CLIP_CNTL__UCP_ENA_3__SHIFT 0x3
+#define PA_CL_CLIP_CNTL__UCP_ENA_4__SHIFT 0x4
+#define PA_CL_CLIP_CNTL__UCP_ENA_5__SHIFT 0x5
+#define PA_CL_CLIP_CNTL__PS_UCP_Y_SCALE_NEG__SHIFT 0xd
+#define PA_CL_CLIP_CNTL__PS_UCP_MODE__SHIFT 0xe
+#define PA_CL_CLIP_CNTL__CLIP_DISABLE__SHIFT 0x10
+#define PA_CL_CLIP_CNTL__UCP_CULL_ONLY_ENA__SHIFT 0x11
+#define PA_CL_CLIP_CNTL__BOUNDARY_EDGE_FLAG_ENA__SHIFT 0x12
+#define PA_CL_CLIP_CNTL__DX_CLIP_SPACE_DEF__SHIFT 0x13
+#define PA_CL_CLIP_CNTL__DIS_CLIP_ERR_DETECT__SHIFT 0x14
+#define PA_CL_CLIP_CNTL__VTX_KILL_OR__SHIFT 0x15
+#define PA_CL_CLIP_CNTL__DX_RASTERIZATION_KILL__SHIFT 0x16
+#define PA_CL_CLIP_CNTL__DX_LINEAR_ATTR_CLIP_ENA__SHIFT 0x18
+#define PA_CL_CLIP_CNTL__VTE_VPORT_PROVOKE_DISABLE__SHIFT 0x19
+#define PA_CL_CLIP_CNTL__ZCLIP_NEAR_DISABLE__SHIFT 0x1a
+#define PA_CL_CLIP_CNTL__ZCLIP_FAR_DISABLE__SHIFT 0x1b
+#define PA_CL_CLIP_CNTL__ZCLIP_PROG_NEAR_ENA__SHIFT 0x1c
+#define PA_CL_CLIP_CNTL__UCP_ENA_0_MASK 0x00000001L
+#define PA_CL_CLIP_CNTL__UCP_ENA_1_MASK 0x00000002L
+#define PA_CL_CLIP_CNTL__UCP_ENA_2_MASK 0x00000004L
+#define PA_CL_CLIP_CNTL__UCP_ENA_3_MASK 0x00000008L
+#define PA_CL_CLIP_CNTL__UCP_ENA_4_MASK 0x00000010L
+#define PA_CL_CLIP_CNTL__UCP_ENA_5_MASK 0x00000020L
+#define PA_CL_CLIP_CNTL__PS_UCP_Y_SCALE_NEG_MASK 0x00002000L
+#define PA_CL_CLIP_CNTL__PS_UCP_MODE_MASK 0x0000C000L
+#define PA_CL_CLIP_CNTL__CLIP_DISABLE_MASK 0x00010000L
+#define PA_CL_CLIP_CNTL__UCP_CULL_ONLY_ENA_MASK 0x00020000L
+#define PA_CL_CLIP_CNTL__BOUNDARY_EDGE_FLAG_ENA_MASK 0x00040000L
+#define PA_CL_CLIP_CNTL__DX_CLIP_SPACE_DEF_MASK 0x00080000L
+#define PA_CL_CLIP_CNTL__DIS_CLIP_ERR_DETECT_MASK 0x00100000L
+#define PA_CL_CLIP_CNTL__VTX_KILL_OR_MASK 0x00200000L
+#define PA_CL_CLIP_CNTL__DX_RASTERIZATION_KILL_MASK 0x00400000L
+#define PA_CL_CLIP_CNTL__DX_LINEAR_ATTR_CLIP_ENA_MASK 0x01000000L
+#define PA_CL_CLIP_CNTL__VTE_VPORT_PROVOKE_DISABLE_MASK 0x02000000L
+#define PA_CL_CLIP_CNTL__ZCLIP_NEAR_DISABLE_MASK 0x04000000L
+#define PA_CL_CLIP_CNTL__ZCLIP_FAR_DISABLE_MASK 0x08000000L
+#define PA_CL_CLIP_CNTL__ZCLIP_PROG_NEAR_ENA_MASK 0x10000000L
+//PA_SU_SC_MODE_CNTL
+#define PA_SU_SC_MODE_CNTL__CULL_FRONT__SHIFT 0x0
+#define PA_SU_SC_MODE_CNTL__CULL_BACK__SHIFT 0x1
+#define PA_SU_SC_MODE_CNTL__FACE__SHIFT 0x2
+#define PA_SU_SC_MODE_CNTL__POLY_MODE__SHIFT 0x3
+#define PA_SU_SC_MODE_CNTL__POLYMODE_FRONT_PTYPE__SHIFT 0x5
+#define PA_SU_SC_MODE_CNTL__POLYMODE_BACK_PTYPE__SHIFT 0x8
+#define PA_SU_SC_MODE_CNTL__POLY_OFFSET_FRONT_ENABLE__SHIFT 0xb
+#define PA_SU_SC_MODE_CNTL__POLY_OFFSET_BACK_ENABLE__SHIFT 0xc
+#define PA_SU_SC_MODE_CNTL__POLY_OFFSET_PARA_ENABLE__SHIFT 0xd
+#define PA_SU_SC_MODE_CNTL__VTX_WINDOW_OFFSET_ENABLE__SHIFT 0x10
+#define PA_SU_SC_MODE_CNTL__PROVOKING_VTX_LAST__SHIFT 0x13
+#define PA_SU_SC_MODE_CNTL__PERSP_CORR_DIS__SHIFT 0x14
+#define PA_SU_SC_MODE_CNTL__MULTI_PRIM_IB_ENA__SHIFT 0x15
+#define PA_SU_SC_MODE_CNTL__RIGHT_TRIANGLE_ALTERNATE_GRADIENT_REF__SHIFT 0x16
+#define PA_SU_SC_MODE_CNTL__NEW_QUAD_DECOMPOSITION__SHIFT 0x17
+#define PA_SU_SC_MODE_CNTL__CULL_FRONT_MASK 0x00000001L
+#define PA_SU_SC_MODE_CNTL__CULL_BACK_MASK 0x00000002L
+#define PA_SU_SC_MODE_CNTL__FACE_MASK 0x00000004L
+#define PA_SU_SC_MODE_CNTL__POLY_MODE_MASK 0x00000018L
+#define PA_SU_SC_MODE_CNTL__POLYMODE_FRONT_PTYPE_MASK 0x000000E0L
+#define PA_SU_SC_MODE_CNTL__POLYMODE_BACK_PTYPE_MASK 0x00000700L
+#define PA_SU_SC_MODE_CNTL__POLY_OFFSET_FRONT_ENABLE_MASK 0x00000800L
+#define PA_SU_SC_MODE_CNTL__POLY_OFFSET_BACK_ENABLE_MASK 0x00001000L
+#define PA_SU_SC_MODE_CNTL__POLY_OFFSET_PARA_ENABLE_MASK 0x00002000L
+#define PA_SU_SC_MODE_CNTL__VTX_WINDOW_OFFSET_ENABLE_MASK 0x00010000L
+#define PA_SU_SC_MODE_CNTL__PROVOKING_VTX_LAST_MASK 0x00080000L
+#define PA_SU_SC_MODE_CNTL__PERSP_CORR_DIS_MASK 0x00100000L
+#define PA_SU_SC_MODE_CNTL__MULTI_PRIM_IB_ENA_MASK 0x00200000L
+#define PA_SU_SC_MODE_CNTL__RIGHT_TRIANGLE_ALTERNATE_GRADIENT_REF_MASK 0x00400000L
+#define PA_SU_SC_MODE_CNTL__NEW_QUAD_DECOMPOSITION_MASK 0x00800000L
+//PA_CL_VTE_CNTL
+#define PA_CL_VTE_CNTL__VPORT_X_SCALE_ENA__SHIFT 0x0
+#define PA_CL_VTE_CNTL__VPORT_X_OFFSET_ENA__SHIFT 0x1
+#define PA_CL_VTE_CNTL__VPORT_Y_SCALE_ENA__SHIFT 0x2
+#define PA_CL_VTE_CNTL__VPORT_Y_OFFSET_ENA__SHIFT 0x3
+#define PA_CL_VTE_CNTL__VPORT_Z_SCALE_ENA__SHIFT 0x4
+#define PA_CL_VTE_CNTL__VPORT_Z_OFFSET_ENA__SHIFT 0x5
+#define PA_CL_VTE_CNTL__VTX_XY_FMT__SHIFT 0x8
+#define PA_CL_VTE_CNTL__VTX_Z_FMT__SHIFT 0x9
+#define PA_CL_VTE_CNTL__VTX_W0_FMT__SHIFT 0xa
+#define PA_CL_VTE_CNTL__PERFCOUNTER_REF__SHIFT 0xb
+#define PA_CL_VTE_CNTL__VPORT_X_SCALE_ENA_MASK 0x00000001L
+#define PA_CL_VTE_CNTL__VPORT_X_OFFSET_ENA_MASK 0x00000002L
+#define PA_CL_VTE_CNTL__VPORT_Y_SCALE_ENA_MASK 0x00000004L
+#define PA_CL_VTE_CNTL__VPORT_Y_OFFSET_ENA_MASK 0x00000008L
+#define PA_CL_VTE_CNTL__VPORT_Z_SCALE_ENA_MASK 0x00000010L
+#define PA_CL_VTE_CNTL__VPORT_Z_OFFSET_ENA_MASK 0x00000020L
+#define PA_CL_VTE_CNTL__VTX_XY_FMT_MASK 0x00000100L
+#define PA_CL_VTE_CNTL__VTX_Z_FMT_MASK 0x00000200L
+#define PA_CL_VTE_CNTL__VTX_W0_FMT_MASK 0x00000400L
+#define PA_CL_VTE_CNTL__PERFCOUNTER_REF_MASK 0x00000800L
+//PA_CL_VS_OUT_CNTL
+#define PA_CL_VS_OUT_CNTL__CLIP_DIST_ENA_0__SHIFT 0x0
+#define PA_CL_VS_OUT_CNTL__CLIP_DIST_ENA_1__SHIFT 0x1
+#define PA_CL_VS_OUT_CNTL__CLIP_DIST_ENA_2__SHIFT 0x2
+#define PA_CL_VS_OUT_CNTL__CLIP_DIST_ENA_3__SHIFT 0x3
+#define PA_CL_VS_OUT_CNTL__CLIP_DIST_ENA_4__SHIFT 0x4
+#define PA_CL_VS_OUT_CNTL__CLIP_DIST_ENA_5__SHIFT 0x5
+#define PA_CL_VS_OUT_CNTL__CLIP_DIST_ENA_6__SHIFT 0x6
+#define PA_CL_VS_OUT_CNTL__CLIP_DIST_ENA_7__SHIFT 0x7
+#define PA_CL_VS_OUT_CNTL__CULL_DIST_ENA_0__SHIFT 0x8
+#define PA_CL_VS_OUT_CNTL__CULL_DIST_ENA_1__SHIFT 0x9
+#define PA_CL_VS_OUT_CNTL__CULL_DIST_ENA_2__SHIFT 0xa
+#define PA_CL_VS_OUT_CNTL__CULL_DIST_ENA_3__SHIFT 0xb
+#define PA_CL_VS_OUT_CNTL__CULL_DIST_ENA_4__SHIFT 0xc
+#define PA_CL_VS_OUT_CNTL__CULL_DIST_ENA_5__SHIFT 0xd
+#define PA_CL_VS_OUT_CNTL__CULL_DIST_ENA_6__SHIFT 0xe
+#define PA_CL_VS_OUT_CNTL__CULL_DIST_ENA_7__SHIFT 0xf
+#define PA_CL_VS_OUT_CNTL__USE_VTX_POINT_SIZE__SHIFT 0x10
+#define PA_CL_VS_OUT_CNTL__USE_VTX_EDGE_FLAG__SHIFT 0x11
+#define PA_CL_VS_OUT_CNTL__USE_VTX_RENDER_TARGET_INDX__SHIFT 0x12
+#define PA_CL_VS_OUT_CNTL__USE_VTX_VIEWPORT_INDX__SHIFT 0x13
+#define PA_CL_VS_OUT_CNTL__USE_VTX_KILL_FLAG__SHIFT 0x14
+#define PA_CL_VS_OUT_CNTL__VS_OUT_MISC_VEC_ENA__SHIFT 0x15
+#define PA_CL_VS_OUT_CNTL__VS_OUT_CCDIST0_VEC_ENA__SHIFT 0x16
+#define PA_CL_VS_OUT_CNTL__VS_OUT_CCDIST1_VEC_ENA__SHIFT 0x17
+#define PA_CL_VS_OUT_CNTL__VS_OUT_MISC_SIDE_BUS_ENA__SHIFT 0x18
+#define PA_CL_VS_OUT_CNTL__USE_VTX_GS_CUT_FLAG__SHIFT 0x19
+#define PA_CL_VS_OUT_CNTL__USE_VTX_LINE_WIDTH__SHIFT 0x1a
+#define PA_CL_VS_OUT_CNTL__USE_VTX_SHD_OBJPRIM_ID__SHIFT 0x1b
+#define PA_CL_VS_OUT_CNTL__CLIP_DIST_ENA_0_MASK 0x00000001L
+#define PA_CL_VS_OUT_CNTL__CLIP_DIST_ENA_1_MASK 0x00000002L
+#define PA_CL_VS_OUT_CNTL__CLIP_DIST_ENA_2_MASK 0x00000004L
+#define PA_CL_VS_OUT_CNTL__CLIP_DIST_ENA_3_MASK 0x00000008L
+#define PA_CL_VS_OUT_CNTL__CLIP_DIST_ENA_4_MASK 0x00000010L
+#define PA_CL_VS_OUT_CNTL__CLIP_DIST_ENA_5_MASK 0x00000020L
+#define PA_CL_VS_OUT_CNTL__CLIP_DIST_ENA_6_MASK 0x00000040L
+#define PA_CL_VS_OUT_CNTL__CLIP_DIST_ENA_7_MASK 0x00000080L
+#define PA_CL_VS_OUT_CNTL__CULL_DIST_ENA_0_MASK 0x00000100L
+#define PA_CL_VS_OUT_CNTL__CULL_DIST_ENA_1_MASK 0x00000200L
+#define PA_CL_VS_OUT_CNTL__CULL_DIST_ENA_2_MASK 0x00000400L
+#define PA_CL_VS_OUT_CNTL__CULL_DIST_ENA_3_MASK 0x00000800L
+#define PA_CL_VS_OUT_CNTL__CULL_DIST_ENA_4_MASK 0x00001000L
+#define PA_CL_VS_OUT_CNTL__CULL_DIST_ENA_5_MASK 0x00002000L
+#define PA_CL_VS_OUT_CNTL__CULL_DIST_ENA_6_MASK 0x00004000L
+#define PA_CL_VS_OUT_CNTL__CULL_DIST_ENA_7_MASK 0x00008000L
+#define PA_CL_VS_OUT_CNTL__USE_VTX_POINT_SIZE_MASK 0x00010000L
+#define PA_CL_VS_OUT_CNTL__USE_VTX_EDGE_FLAG_MASK 0x00020000L
+#define PA_CL_VS_OUT_CNTL__USE_VTX_RENDER_TARGET_INDX_MASK 0x00040000L
+#define PA_CL_VS_OUT_CNTL__USE_VTX_VIEWPORT_INDX_MASK 0x00080000L
+#define PA_CL_VS_OUT_CNTL__USE_VTX_KILL_FLAG_MASK 0x00100000L
+#define PA_CL_VS_OUT_CNTL__VS_OUT_MISC_VEC_ENA_MASK 0x00200000L
+#define PA_CL_VS_OUT_CNTL__VS_OUT_CCDIST0_VEC_ENA_MASK 0x00400000L
+#define PA_CL_VS_OUT_CNTL__VS_OUT_CCDIST1_VEC_ENA_MASK 0x00800000L
+#define PA_CL_VS_OUT_CNTL__VS_OUT_MISC_SIDE_BUS_ENA_MASK 0x01000000L
+#define PA_CL_VS_OUT_CNTL__USE_VTX_GS_CUT_FLAG_MASK 0x02000000L
+#define PA_CL_VS_OUT_CNTL__USE_VTX_LINE_WIDTH_MASK 0x04000000L
+#define PA_CL_VS_OUT_CNTL__USE_VTX_SHD_OBJPRIM_ID_MASK 0x08000000L
+//PA_CL_NANINF_CNTL
+#define PA_CL_NANINF_CNTL__VTE_XY_INF_DISCARD__SHIFT 0x0
+#define PA_CL_NANINF_CNTL__VTE_Z_INF_DISCARD__SHIFT 0x1
+#define PA_CL_NANINF_CNTL__VTE_W_INF_DISCARD__SHIFT 0x2
+#define PA_CL_NANINF_CNTL__VTE_0XNANINF_IS_0__SHIFT 0x3
+#define PA_CL_NANINF_CNTL__VTE_XY_NAN_RETAIN__SHIFT 0x4
+#define PA_CL_NANINF_CNTL__VTE_Z_NAN_RETAIN__SHIFT 0x5
+#define PA_CL_NANINF_CNTL__VTE_W_NAN_RETAIN__SHIFT 0x6
+#define PA_CL_NANINF_CNTL__VTE_W_RECIP_NAN_IS_0__SHIFT 0x7
+#define PA_CL_NANINF_CNTL__VS_XY_NAN_TO_INF__SHIFT 0x8
+#define PA_CL_NANINF_CNTL__VS_XY_INF_RETAIN__SHIFT 0x9
+#define PA_CL_NANINF_CNTL__VS_Z_NAN_TO_INF__SHIFT 0xa
+#define PA_CL_NANINF_CNTL__VS_Z_INF_RETAIN__SHIFT 0xb
+#define PA_CL_NANINF_CNTL__VS_W_NAN_TO_INF__SHIFT 0xc
+#define PA_CL_NANINF_CNTL__VS_W_INF_RETAIN__SHIFT 0xd
+#define PA_CL_NANINF_CNTL__VS_CLIP_DIST_INF_DISCARD__SHIFT 0xe
+#define PA_CL_NANINF_CNTL__VTE_NO_OUTPUT_NEG_0__SHIFT 0x14
+#define PA_CL_NANINF_CNTL__VTE_XY_INF_DISCARD_MASK 0x00000001L
+#define PA_CL_NANINF_CNTL__VTE_Z_INF_DISCARD_MASK 0x00000002L
+#define PA_CL_NANINF_CNTL__VTE_W_INF_DISCARD_MASK 0x00000004L
+#define PA_CL_NANINF_CNTL__VTE_0XNANINF_IS_0_MASK 0x00000008L
+#define PA_CL_NANINF_CNTL__VTE_XY_NAN_RETAIN_MASK 0x00000010L
+#define PA_CL_NANINF_CNTL__VTE_Z_NAN_RETAIN_MASK 0x00000020L
+#define PA_CL_NANINF_CNTL__VTE_W_NAN_RETAIN_MASK 0x00000040L
+#define PA_CL_NANINF_CNTL__VTE_W_RECIP_NAN_IS_0_MASK 0x00000080L
+#define PA_CL_NANINF_CNTL__VS_XY_NAN_TO_INF_MASK 0x00000100L
+#define PA_CL_NANINF_CNTL__VS_XY_INF_RETAIN_MASK 0x00000200L
+#define PA_CL_NANINF_CNTL__VS_Z_NAN_TO_INF_MASK 0x00000400L
+#define PA_CL_NANINF_CNTL__VS_Z_INF_RETAIN_MASK 0x00000800L
+#define PA_CL_NANINF_CNTL__VS_W_NAN_TO_INF_MASK 0x00001000L
+#define PA_CL_NANINF_CNTL__VS_W_INF_RETAIN_MASK 0x00002000L
+#define PA_CL_NANINF_CNTL__VS_CLIP_DIST_INF_DISCARD_MASK 0x00004000L
+#define PA_CL_NANINF_CNTL__VTE_NO_OUTPUT_NEG_0_MASK 0x00100000L
+//PA_SU_LINE_STIPPLE_CNTL
+#define PA_SU_LINE_STIPPLE_CNTL__LINE_STIPPLE_RESET__SHIFT 0x0
+#define PA_SU_LINE_STIPPLE_CNTL__EXPAND_FULL_LENGTH__SHIFT 0x2
+#define PA_SU_LINE_STIPPLE_CNTL__FRACTIONAL_ACCUM__SHIFT 0x3
+#define PA_SU_LINE_STIPPLE_CNTL__DIAMOND_ADJUST__SHIFT 0x4
+#define PA_SU_LINE_STIPPLE_CNTL__LINE_STIPPLE_RESET_MASK 0x00000003L
+#define PA_SU_LINE_STIPPLE_CNTL__EXPAND_FULL_LENGTH_MASK 0x00000004L
+#define PA_SU_LINE_STIPPLE_CNTL__FRACTIONAL_ACCUM_MASK 0x00000008L
+#define PA_SU_LINE_STIPPLE_CNTL__DIAMOND_ADJUST_MASK 0x00000010L
+//PA_SU_LINE_STIPPLE_SCALE
+#define PA_SU_LINE_STIPPLE_SCALE__LINE_STIPPLE_SCALE__SHIFT 0x0
+#define PA_SU_LINE_STIPPLE_SCALE__LINE_STIPPLE_SCALE_MASK 0xFFFFFFFFL
+//PA_SU_PRIM_FILTER_CNTL
+#define PA_SU_PRIM_FILTER_CNTL__TRIANGLE_FILTER_DISABLE__SHIFT 0x0
+#define PA_SU_PRIM_FILTER_CNTL__LINE_FILTER_DISABLE__SHIFT 0x1
+#define PA_SU_PRIM_FILTER_CNTL__POINT_FILTER_DISABLE__SHIFT 0x2
+#define PA_SU_PRIM_FILTER_CNTL__RECTANGLE_FILTER_DISABLE__SHIFT 0x3
+#define PA_SU_PRIM_FILTER_CNTL__TRIANGLE_EXPAND_ENA__SHIFT 0x4
+#define PA_SU_PRIM_FILTER_CNTL__LINE_EXPAND_ENA__SHIFT 0x5
+#define PA_SU_PRIM_FILTER_CNTL__POINT_EXPAND_ENA__SHIFT 0x6
+#define PA_SU_PRIM_FILTER_CNTL__RECTANGLE_EXPAND_ENA__SHIFT 0x7
+#define PA_SU_PRIM_FILTER_CNTL__PRIM_EXPAND_CONSTANT__SHIFT 0x8
+#define PA_SU_PRIM_FILTER_CNTL__XMAX_RIGHT_EXCLUSION__SHIFT 0x1e
+#define PA_SU_PRIM_FILTER_CNTL__YMAX_BOTTOM_EXCLUSION__SHIFT 0x1f
+#define PA_SU_PRIM_FILTER_CNTL__TRIANGLE_FILTER_DISABLE_MASK 0x00000001L
+#define PA_SU_PRIM_FILTER_CNTL__LINE_FILTER_DISABLE_MASK 0x00000002L
+#define PA_SU_PRIM_FILTER_CNTL__POINT_FILTER_DISABLE_MASK 0x00000004L
+#define PA_SU_PRIM_FILTER_CNTL__RECTANGLE_FILTER_DISABLE_MASK 0x00000008L
+#define PA_SU_PRIM_FILTER_CNTL__TRIANGLE_EXPAND_ENA_MASK 0x00000010L
+#define PA_SU_PRIM_FILTER_CNTL__LINE_EXPAND_ENA_MASK 0x00000020L
+#define PA_SU_PRIM_FILTER_CNTL__POINT_EXPAND_ENA_MASK 0x00000040L
+#define PA_SU_PRIM_FILTER_CNTL__RECTANGLE_EXPAND_ENA_MASK 0x00000080L
+#define PA_SU_PRIM_FILTER_CNTL__PRIM_EXPAND_CONSTANT_MASK 0x0000FF00L
+#define PA_SU_PRIM_FILTER_CNTL__XMAX_RIGHT_EXCLUSION_MASK 0x40000000L
+#define PA_SU_PRIM_FILTER_CNTL__YMAX_BOTTOM_EXCLUSION_MASK 0x80000000L
+//PA_SU_SMALL_PRIM_FILTER_CNTL
+#define PA_SU_SMALL_PRIM_FILTER_CNTL__SMALL_PRIM_FILTER_ENABLE__SHIFT 0x0
+#define PA_SU_SMALL_PRIM_FILTER_CNTL__TRIANGLE_FILTER_DISABLE__SHIFT 0x1
+#define PA_SU_SMALL_PRIM_FILTER_CNTL__LINE_FILTER_DISABLE__SHIFT 0x2
+#define PA_SU_SMALL_PRIM_FILTER_CNTL__POINT_FILTER_DISABLE__SHIFT 0x3
+#define PA_SU_SMALL_PRIM_FILTER_CNTL__RECTANGLE_FILTER_DISABLE__SHIFT 0x4
+#define PA_SU_SMALL_PRIM_FILTER_CNTL__SRBSL_ENABLE__SHIFT 0x5
+#define PA_SU_SMALL_PRIM_FILTER_CNTL__SC_1XMSAA_COMPATIBLE_DISABLE__SHIFT 0x6
+#define PA_SU_SMALL_PRIM_FILTER_CNTL__SMALL_PRIM_FILTER_ENABLE_MASK 0x00000001L
+#define PA_SU_SMALL_PRIM_FILTER_CNTL__TRIANGLE_FILTER_DISABLE_MASK 0x00000002L
+#define PA_SU_SMALL_PRIM_FILTER_CNTL__LINE_FILTER_DISABLE_MASK 0x00000004L
+#define PA_SU_SMALL_PRIM_FILTER_CNTL__POINT_FILTER_DISABLE_MASK 0x00000008L
+#define PA_SU_SMALL_PRIM_FILTER_CNTL__RECTANGLE_FILTER_DISABLE_MASK 0x00000010L
+#define PA_SU_SMALL_PRIM_FILTER_CNTL__SRBSL_ENABLE_MASK 0x00000020L
+#define PA_SU_SMALL_PRIM_FILTER_CNTL__SC_1XMSAA_COMPATIBLE_DISABLE_MASK 0x00000040L
+//PA_CL_OBJPRIM_ID_CNTL
+#define PA_CL_OBJPRIM_ID_CNTL__OBJ_ID_SEL__SHIFT 0x0
+#define PA_CL_OBJPRIM_ID_CNTL__ADD_PIPED_PRIM_ID__SHIFT 0x1
+#define PA_CL_OBJPRIM_ID_CNTL__EN_32BIT_OBJPRIMID__SHIFT 0x2
+#define PA_CL_OBJPRIM_ID_CNTL__OBJ_ID_SEL_MASK 0x00000001L
+#define PA_CL_OBJPRIM_ID_CNTL__ADD_PIPED_PRIM_ID_MASK 0x00000002L
+#define PA_CL_OBJPRIM_ID_CNTL__EN_32BIT_OBJPRIMID_MASK 0x00000004L
+//PA_CL_NGG_CNTL
+#define PA_CL_NGG_CNTL__VERTEX_REUSE_OFF__SHIFT 0x0
+#define PA_CL_NGG_CNTL__INDEX_BUF_EDGE_FLAG_ENA__SHIFT 0x1
+#define PA_CL_NGG_CNTL__VERTEX_REUSE_OFF_MASK 0x00000001L
+#define PA_CL_NGG_CNTL__INDEX_BUF_EDGE_FLAG_ENA_MASK 0x00000002L
+//PA_SU_OVER_RASTERIZATION_CNTL
+#define PA_SU_OVER_RASTERIZATION_CNTL__DISCARD_0_AREA_TRIANGLES__SHIFT 0x0
+#define PA_SU_OVER_RASTERIZATION_CNTL__DISCARD_0_AREA_LINES__SHIFT 0x1
+#define PA_SU_OVER_RASTERIZATION_CNTL__DISCARD_0_AREA_POINTS__SHIFT 0x2
+#define PA_SU_OVER_RASTERIZATION_CNTL__DISCARD_0_AREA_RECTANGLES__SHIFT 0x3
+#define PA_SU_OVER_RASTERIZATION_CNTL__USE_PROVOKING_ZW__SHIFT 0x4
+#define PA_SU_OVER_RASTERIZATION_CNTL__DISCARD_0_AREA_TRIANGLES_MASK 0x00000001L
+#define PA_SU_OVER_RASTERIZATION_CNTL__DISCARD_0_AREA_LINES_MASK 0x00000002L
+#define PA_SU_OVER_RASTERIZATION_CNTL__DISCARD_0_AREA_POINTS_MASK 0x00000004L
+#define PA_SU_OVER_RASTERIZATION_CNTL__DISCARD_0_AREA_RECTANGLES_MASK 0x00000008L
+#define PA_SU_OVER_RASTERIZATION_CNTL__USE_PROVOKING_ZW_MASK 0x00000010L
+//PA_STEREO_CNTL
+#define PA_STEREO_CNTL__EN_STEREO__SHIFT 0x0
+#define PA_STEREO_CNTL__STEREO_MODE__SHIFT 0x1
+#define PA_STEREO_CNTL__RT_SLICE_MODE__SHIFT 0x5
+#define PA_STEREO_CNTL__RT_SLICE_OFFSET__SHIFT 0x8
+#define PA_STEREO_CNTL__VP_ID_MODE__SHIFT 0xa
+#define PA_STEREO_CNTL__VP_ID_OFFSET__SHIFT 0xd
+#define PA_STEREO_CNTL__EN_STEREO_MASK 0x00000001L
+#define PA_STEREO_CNTL__STEREO_MODE_MASK 0x0000001EL
+#define PA_STEREO_CNTL__RT_SLICE_MODE_MASK 0x000000E0L
+#define PA_STEREO_CNTL__RT_SLICE_OFFSET_MASK 0x00000300L
+#define PA_STEREO_CNTL__VP_ID_MODE_MASK 0x00001C00L
+#define PA_STEREO_CNTL__VP_ID_OFFSET_MASK 0x0001E000L
+//PA_SU_POINT_SIZE
+#define PA_SU_POINT_SIZE__HEIGHT__SHIFT 0x0
+#define PA_SU_POINT_SIZE__WIDTH__SHIFT 0x10
+#define PA_SU_POINT_SIZE__HEIGHT_MASK 0x0000FFFFL
+#define PA_SU_POINT_SIZE__WIDTH_MASK 0xFFFF0000L
+//PA_SU_POINT_MINMAX
+#define PA_SU_POINT_MINMAX__MIN_SIZE__SHIFT 0x0
+#define PA_SU_POINT_MINMAX__MAX_SIZE__SHIFT 0x10
+#define PA_SU_POINT_MINMAX__MIN_SIZE_MASK 0x0000FFFFL
+#define PA_SU_POINT_MINMAX__MAX_SIZE_MASK 0xFFFF0000L
+//PA_SU_LINE_CNTL
+#define PA_SU_LINE_CNTL__WIDTH__SHIFT 0x0
+#define PA_SU_LINE_CNTL__WIDTH_MASK 0x0000FFFFL
+//PA_SC_LINE_STIPPLE
+#define PA_SC_LINE_STIPPLE__LINE_PATTERN__SHIFT 0x0
+#define PA_SC_LINE_STIPPLE__REPEAT_COUNT__SHIFT 0x10
+#define PA_SC_LINE_STIPPLE__PATTERN_BIT_ORDER__SHIFT 0x1c
+#define PA_SC_LINE_STIPPLE__AUTO_RESET_CNTL__SHIFT 0x1d
+#define PA_SC_LINE_STIPPLE__LINE_PATTERN_MASK 0x0000FFFFL
+#define PA_SC_LINE_STIPPLE__REPEAT_COUNT_MASK 0x00FF0000L
+#define PA_SC_LINE_STIPPLE__PATTERN_BIT_ORDER_MASK 0x10000000L
+#define PA_SC_LINE_STIPPLE__AUTO_RESET_CNTL_MASK 0x60000000L
+//VGT_OUTPUT_PATH_CNTL
+#define VGT_OUTPUT_PATH_CNTL__PATH_SELECT__SHIFT 0x0
+#define VGT_OUTPUT_PATH_CNTL__PATH_SELECT_MASK 0x00000007L
+//VGT_HOS_CNTL
+#define VGT_HOS_CNTL__TESS_MODE__SHIFT 0x0
+#define VGT_HOS_CNTL__TESS_MODE_MASK 0x00000003L
+//VGT_HOS_MAX_TESS_LEVEL
+#define VGT_HOS_MAX_TESS_LEVEL__MAX_TESS__SHIFT 0x0
+#define VGT_HOS_MAX_TESS_LEVEL__MAX_TESS_MASK 0xFFFFFFFFL
+//VGT_HOS_MIN_TESS_LEVEL
+#define VGT_HOS_MIN_TESS_LEVEL__MIN_TESS__SHIFT 0x0
+#define VGT_HOS_MIN_TESS_LEVEL__MIN_TESS_MASK 0xFFFFFFFFL
+//VGT_HOS_REUSE_DEPTH
+#define VGT_HOS_REUSE_DEPTH__REUSE_DEPTH__SHIFT 0x0
+#define VGT_HOS_REUSE_DEPTH__REUSE_DEPTH_MASK 0x000000FFL
+//VGT_GROUP_PRIM_TYPE
+#define VGT_GROUP_PRIM_TYPE__PRIM_TYPE__SHIFT 0x0
+#define VGT_GROUP_PRIM_TYPE__RETAIN_ORDER__SHIFT 0xe
+#define VGT_GROUP_PRIM_TYPE__RETAIN_QUADS__SHIFT 0xf
+#define VGT_GROUP_PRIM_TYPE__PRIM_ORDER__SHIFT 0x10
+#define VGT_GROUP_PRIM_TYPE__PRIM_TYPE_MASK 0x0000001FL
+#define VGT_GROUP_PRIM_TYPE__RETAIN_ORDER_MASK 0x00004000L
+#define VGT_GROUP_PRIM_TYPE__RETAIN_QUADS_MASK 0x00008000L
+#define VGT_GROUP_PRIM_TYPE__PRIM_ORDER_MASK 0x00070000L
+//VGT_GROUP_FIRST_DECR
+#define VGT_GROUP_FIRST_DECR__FIRST_DECR__SHIFT 0x0
+#define VGT_GROUP_FIRST_DECR__FIRST_DECR_MASK 0x0000000FL
+//VGT_GROUP_DECR
+#define VGT_GROUP_DECR__DECR__SHIFT 0x0
+#define VGT_GROUP_DECR__DECR_MASK 0x0000000FL
+//VGT_GROUP_VECT_0_CNTL
+#define VGT_GROUP_VECT_0_CNTL__COMP_X_EN__SHIFT 0x0
+#define VGT_GROUP_VECT_0_CNTL__COMP_Y_EN__SHIFT 0x1
+#define VGT_GROUP_VECT_0_CNTL__COMP_Z_EN__SHIFT 0x2
+#define VGT_GROUP_VECT_0_CNTL__COMP_W_EN__SHIFT 0x3
+#define VGT_GROUP_VECT_0_CNTL__STRIDE__SHIFT 0x8
+#define VGT_GROUP_VECT_0_CNTL__SHIFT__SHIFT 0x10
+#define VGT_GROUP_VECT_0_CNTL__COMP_X_EN_MASK 0x00000001L
+#define VGT_GROUP_VECT_0_CNTL__COMP_Y_EN_MASK 0x00000002L
+#define VGT_GROUP_VECT_0_CNTL__COMP_Z_EN_MASK 0x00000004L
+#define VGT_GROUP_VECT_0_CNTL__COMP_W_EN_MASK 0x00000008L
+#define VGT_GROUP_VECT_0_CNTL__STRIDE_MASK 0x0000FF00L
+#define VGT_GROUP_VECT_0_CNTL__SHIFT_MASK 0x00FF0000L
+//VGT_GROUP_VECT_1_CNTL
+#define VGT_GROUP_VECT_1_CNTL__COMP_X_EN__SHIFT 0x0
+#define VGT_GROUP_VECT_1_CNTL__COMP_Y_EN__SHIFT 0x1
+#define VGT_GROUP_VECT_1_CNTL__COMP_Z_EN__SHIFT 0x2
+#define VGT_GROUP_VECT_1_CNTL__COMP_W_EN__SHIFT 0x3
+#define VGT_GROUP_VECT_1_CNTL__STRIDE__SHIFT 0x8
+#define VGT_GROUP_VECT_1_CNTL__SHIFT__SHIFT 0x10
+#define VGT_GROUP_VECT_1_CNTL__COMP_X_EN_MASK 0x00000001L
+#define VGT_GROUP_VECT_1_CNTL__COMP_Y_EN_MASK 0x00000002L
+#define VGT_GROUP_VECT_1_CNTL__COMP_Z_EN_MASK 0x00000004L
+#define VGT_GROUP_VECT_1_CNTL__COMP_W_EN_MASK 0x00000008L
+#define VGT_GROUP_VECT_1_CNTL__STRIDE_MASK 0x0000FF00L
+#define VGT_GROUP_VECT_1_CNTL__SHIFT_MASK 0x00FF0000L
+//VGT_GROUP_VECT_0_FMT_CNTL
+#define VGT_GROUP_VECT_0_FMT_CNTL__X_CONV__SHIFT 0x0
+#define VGT_GROUP_VECT_0_FMT_CNTL__X_OFFSET__SHIFT 0x4
+#define VGT_GROUP_VECT_0_FMT_CNTL__Y_CONV__SHIFT 0x8
+#define VGT_GROUP_VECT_0_FMT_CNTL__Y_OFFSET__SHIFT 0xc
+#define VGT_GROUP_VECT_0_FMT_CNTL__Z_CONV__SHIFT 0x10
+#define VGT_GROUP_VECT_0_FMT_CNTL__Z_OFFSET__SHIFT 0x14
+#define VGT_GROUP_VECT_0_FMT_CNTL__W_CONV__SHIFT 0x18
+#define VGT_GROUP_VECT_0_FMT_CNTL__W_OFFSET__SHIFT 0x1c
+#define VGT_GROUP_VECT_0_FMT_CNTL__X_CONV_MASK 0x0000000FL
+#define VGT_GROUP_VECT_0_FMT_CNTL__X_OFFSET_MASK 0x000000F0L
+#define VGT_GROUP_VECT_0_FMT_CNTL__Y_CONV_MASK 0x00000F00L
+#define VGT_GROUP_VECT_0_FMT_CNTL__Y_OFFSET_MASK 0x0000F000L
+#define VGT_GROUP_VECT_0_FMT_CNTL__Z_CONV_MASK 0x000F0000L
+#define VGT_GROUP_VECT_0_FMT_CNTL__Z_OFFSET_MASK 0x00F00000L
+#define VGT_GROUP_VECT_0_FMT_CNTL__W_CONV_MASK 0x0F000000L
+#define VGT_GROUP_VECT_0_FMT_CNTL__W_OFFSET_MASK 0xF0000000L
+//VGT_GROUP_VECT_1_FMT_CNTL
+#define VGT_GROUP_VECT_1_FMT_CNTL__X_CONV__SHIFT 0x0
+#define VGT_GROUP_VECT_1_FMT_CNTL__X_OFFSET__SHIFT 0x4
+#define VGT_GROUP_VECT_1_FMT_CNTL__Y_CONV__SHIFT 0x8
+#define VGT_GROUP_VECT_1_FMT_CNTL__Y_OFFSET__SHIFT 0xc
+#define VGT_GROUP_VECT_1_FMT_CNTL__Z_CONV__SHIFT 0x10
+#define VGT_GROUP_VECT_1_FMT_CNTL__Z_OFFSET__SHIFT 0x14
+#define VGT_GROUP_VECT_1_FMT_CNTL__W_CONV__SHIFT 0x18
+#define VGT_GROUP_VECT_1_FMT_CNTL__W_OFFSET__SHIFT 0x1c
+#define VGT_GROUP_VECT_1_FMT_CNTL__X_CONV_MASK 0x0000000FL
+#define VGT_GROUP_VECT_1_FMT_CNTL__X_OFFSET_MASK 0x000000F0L
+#define VGT_GROUP_VECT_1_FMT_CNTL__Y_CONV_MASK 0x00000F00L
+#define VGT_GROUP_VECT_1_FMT_CNTL__Y_OFFSET_MASK 0x0000F000L
+#define VGT_GROUP_VECT_1_FMT_CNTL__Z_CONV_MASK 0x000F0000L
+#define VGT_GROUP_VECT_1_FMT_CNTL__Z_OFFSET_MASK 0x00F00000L
+#define VGT_GROUP_VECT_1_FMT_CNTL__W_CONV_MASK 0x0F000000L
+#define VGT_GROUP_VECT_1_FMT_CNTL__W_OFFSET_MASK 0xF0000000L
+//VGT_GS_MODE
+#define VGT_GS_MODE__MODE__SHIFT 0x0
+#define VGT_GS_MODE__RESERVED_0__SHIFT 0x3
+#define VGT_GS_MODE__CUT_MODE__SHIFT 0x4
+#define VGT_GS_MODE__RESERVED_1__SHIFT 0x6
+#define VGT_GS_MODE__GS_C_PACK_EN__SHIFT 0xb
+#define VGT_GS_MODE__RESERVED_2__SHIFT 0xc
+#define VGT_GS_MODE__ES_PASSTHRU__SHIFT 0xd
+#define VGT_GS_MODE__RESERVED_3__SHIFT 0xe
+#define VGT_GS_MODE__RESERVED_4__SHIFT 0xf
+#define VGT_GS_MODE__RESERVED_5__SHIFT 0x10
+#define VGT_GS_MODE__PARTIAL_THD_AT_EOI__SHIFT 0x11
+#define VGT_GS_MODE__SUPPRESS_CUTS__SHIFT 0x12
+#define VGT_GS_MODE__ES_WRITE_OPTIMIZE__SHIFT 0x13
+#define VGT_GS_MODE__GS_WRITE_OPTIMIZE__SHIFT 0x14
+#define VGT_GS_MODE__ONCHIP__SHIFT 0x15
+#define VGT_GS_MODE__MODE_MASK 0x00000007L
+#define VGT_GS_MODE__RESERVED_0_MASK 0x00000008L
+#define VGT_GS_MODE__CUT_MODE_MASK 0x00000030L
+#define VGT_GS_MODE__RESERVED_1_MASK 0x000007C0L
+#define VGT_GS_MODE__GS_C_PACK_EN_MASK 0x00000800L
+#define VGT_GS_MODE__RESERVED_2_MASK 0x00001000L
+#define VGT_GS_MODE__ES_PASSTHRU_MASK 0x00002000L
+#define VGT_GS_MODE__RESERVED_3_MASK 0x00004000L
+#define VGT_GS_MODE__RESERVED_4_MASK 0x00008000L
+#define VGT_GS_MODE__RESERVED_5_MASK 0x00010000L
+#define VGT_GS_MODE__PARTIAL_THD_AT_EOI_MASK 0x00020000L
+#define VGT_GS_MODE__SUPPRESS_CUTS_MASK 0x00040000L
+#define VGT_GS_MODE__ES_WRITE_OPTIMIZE_MASK 0x00080000L
+#define VGT_GS_MODE__GS_WRITE_OPTIMIZE_MASK 0x00100000L
+#define VGT_GS_MODE__ONCHIP_MASK 0x00600000L
+//VGT_GS_ONCHIP_CNTL
+#define VGT_GS_ONCHIP_CNTL__ES_VERTS_PER_SUBGRP__SHIFT 0x0
+#define VGT_GS_ONCHIP_CNTL__GS_PRIMS_PER_SUBGRP__SHIFT 0xb
+#define VGT_GS_ONCHIP_CNTL__GS_INST_PRIMS_IN_SUBGRP__SHIFT 0x16
+#define VGT_GS_ONCHIP_CNTL__ES_VERTS_PER_SUBGRP_MASK 0x000007FFL
+#define VGT_GS_ONCHIP_CNTL__GS_PRIMS_PER_SUBGRP_MASK 0x003FF800L
+#define VGT_GS_ONCHIP_CNTL__GS_INST_PRIMS_IN_SUBGRP_MASK 0xFFC00000L
+//PA_SC_MODE_CNTL_0
+#define PA_SC_MODE_CNTL_0__MSAA_ENABLE__SHIFT 0x0
+#define PA_SC_MODE_CNTL_0__VPORT_SCISSOR_ENABLE__SHIFT 0x1
+#define PA_SC_MODE_CNTL_0__LINE_STIPPLE_ENABLE__SHIFT 0x2
+#define PA_SC_MODE_CNTL_0__SEND_UNLIT_STILES_TO_PKR__SHIFT 0x3
+#define PA_SC_MODE_CNTL_0__SCALE_LINE_WIDTH_PAD__SHIFT 0x4
+#define PA_SC_MODE_CNTL_0__ALTERNATE_RBS_PER_TILE__SHIFT 0x5
+#define PA_SC_MODE_CNTL_0__COARSE_TILE_STARTS_ON_EVEN_RB__SHIFT 0x6
+#define PA_SC_MODE_CNTL_0__MSAA_ENABLE_MASK 0x00000001L
+#define PA_SC_MODE_CNTL_0__VPORT_SCISSOR_ENABLE_MASK 0x00000002L
+#define PA_SC_MODE_CNTL_0__LINE_STIPPLE_ENABLE_MASK 0x00000004L
+#define PA_SC_MODE_CNTL_0__SEND_UNLIT_STILES_TO_PKR_MASK 0x00000008L
+#define PA_SC_MODE_CNTL_0__SCALE_LINE_WIDTH_PAD_MASK 0x00000010L
+#define PA_SC_MODE_CNTL_0__ALTERNATE_RBS_PER_TILE_MASK 0x00000020L
+#define PA_SC_MODE_CNTL_0__COARSE_TILE_STARTS_ON_EVEN_RB_MASK 0x00000040L
+//PA_SC_MODE_CNTL_1
+#define PA_SC_MODE_CNTL_1__WALK_SIZE__SHIFT 0x0
+#define PA_SC_MODE_CNTL_1__WALK_ALIGNMENT__SHIFT 0x1
+#define PA_SC_MODE_CNTL_1__WALK_ALIGN8_PRIM_FITS_ST__SHIFT 0x2
+#define PA_SC_MODE_CNTL_1__WALK_FENCE_ENABLE__SHIFT 0x3
+#define PA_SC_MODE_CNTL_1__WALK_FENCE_SIZE__SHIFT 0x4
+#define PA_SC_MODE_CNTL_1__SUPERTILE_WALK_ORDER_ENABLE__SHIFT 0x7
+#define PA_SC_MODE_CNTL_1__TILE_WALK_ORDER_ENABLE__SHIFT 0x8
+#define PA_SC_MODE_CNTL_1__TILE_COVER_DISABLE__SHIFT 0x9
+#define PA_SC_MODE_CNTL_1__TILE_COVER_NO_SCISSOR__SHIFT 0xa
+#define PA_SC_MODE_CNTL_1__ZMM_LINE_EXTENT__SHIFT 0xb
+#define PA_SC_MODE_CNTL_1__ZMM_LINE_OFFSET__SHIFT 0xc
+#define PA_SC_MODE_CNTL_1__ZMM_RECT_EXTENT__SHIFT 0xd
+#define PA_SC_MODE_CNTL_1__KILL_PIX_POST_HI_Z__SHIFT 0xe
+#define PA_SC_MODE_CNTL_1__KILL_PIX_POST_DETAIL_MASK__SHIFT 0xf
+#define PA_SC_MODE_CNTL_1__PS_ITER_SAMPLE__SHIFT 0x10
+#define PA_SC_MODE_CNTL_1__MULTI_SHADER_ENGINE_PRIM_DISCARD_ENABLE__SHIFT 0x11
+#define PA_SC_MODE_CNTL_1__MULTI_GPU_SUPERTILE_ENABLE__SHIFT 0x12
+#define PA_SC_MODE_CNTL_1__GPU_ID_OVERRIDE_ENABLE__SHIFT 0x13
+#define PA_SC_MODE_CNTL_1__GPU_ID_OVERRIDE__SHIFT 0x14
+#define PA_SC_MODE_CNTL_1__MULTI_GPU_PRIM_DISCARD_ENABLE__SHIFT 0x18
+#define PA_SC_MODE_CNTL_1__FORCE_EOV_CNTDWN_ENABLE__SHIFT 0x19
+#define PA_SC_MODE_CNTL_1__FORCE_EOV_REZ_ENABLE__SHIFT 0x1a
+#define PA_SC_MODE_CNTL_1__OUT_OF_ORDER_PRIMITIVE_ENABLE__SHIFT 0x1b
+#define PA_SC_MODE_CNTL_1__OUT_OF_ORDER_WATER_MARK__SHIFT 0x1c
+#define PA_SC_MODE_CNTL_1__WALK_SIZE_MASK 0x00000001L
+#define PA_SC_MODE_CNTL_1__WALK_ALIGNMENT_MASK 0x00000002L
+#define PA_SC_MODE_CNTL_1__WALK_ALIGN8_PRIM_FITS_ST_MASK 0x00000004L
+#define PA_SC_MODE_CNTL_1__WALK_FENCE_ENABLE_MASK 0x00000008L
+#define PA_SC_MODE_CNTL_1__WALK_FENCE_SIZE_MASK 0x00000070L
+#define PA_SC_MODE_CNTL_1__SUPERTILE_WALK_ORDER_ENABLE_MASK 0x00000080L
+#define PA_SC_MODE_CNTL_1__TILE_WALK_ORDER_ENABLE_MASK 0x00000100L
+#define PA_SC_MODE_CNTL_1__TILE_COVER_DISABLE_MASK 0x00000200L
+#define PA_SC_MODE_CNTL_1__TILE_COVER_NO_SCISSOR_MASK 0x00000400L
+#define PA_SC_MODE_CNTL_1__ZMM_LINE_EXTENT_MASK 0x00000800L
+#define PA_SC_MODE_CNTL_1__ZMM_LINE_OFFSET_MASK 0x00001000L
+#define PA_SC_MODE_CNTL_1__ZMM_RECT_EXTENT_MASK 0x00002000L
+#define PA_SC_MODE_CNTL_1__KILL_PIX_POST_HI_Z_MASK 0x00004000L
+#define PA_SC_MODE_CNTL_1__KILL_PIX_POST_DETAIL_MASK_MASK 0x00008000L
+#define PA_SC_MODE_CNTL_1__PS_ITER_SAMPLE_MASK 0x00010000L
+#define PA_SC_MODE_CNTL_1__MULTI_SHADER_ENGINE_PRIM_DISCARD_ENABLE_MASK 0x00020000L
+#define PA_SC_MODE_CNTL_1__MULTI_GPU_SUPERTILE_ENABLE_MASK 0x00040000L
+#define PA_SC_MODE_CNTL_1__GPU_ID_OVERRIDE_ENABLE_MASK 0x00080000L
+#define PA_SC_MODE_CNTL_1__GPU_ID_OVERRIDE_MASK 0x00F00000L
+#define PA_SC_MODE_CNTL_1__MULTI_GPU_PRIM_DISCARD_ENABLE_MASK 0x01000000L
+#define PA_SC_MODE_CNTL_1__FORCE_EOV_CNTDWN_ENABLE_MASK 0x02000000L
+#define PA_SC_MODE_CNTL_1__FORCE_EOV_REZ_ENABLE_MASK 0x04000000L
+#define PA_SC_MODE_CNTL_1__OUT_OF_ORDER_PRIMITIVE_ENABLE_MASK 0x08000000L
+#define PA_SC_MODE_CNTL_1__OUT_OF_ORDER_WATER_MARK_MASK 0x70000000L
+//VGT_ENHANCE
+#define VGT_ENHANCE__MISC__SHIFT 0x0
+#define VGT_ENHANCE__MISC_MASK 0xFFFFFFFFL
+//VGT_GS_PER_ES
+#define VGT_GS_PER_ES__GS_PER_ES__SHIFT 0x0
+#define VGT_GS_PER_ES__GS_PER_ES_MASK 0x000007FFL
+//VGT_ES_PER_GS
+#define VGT_ES_PER_GS__ES_PER_GS__SHIFT 0x0
+#define VGT_ES_PER_GS__ES_PER_GS_MASK 0x000007FFL
+//VGT_GS_PER_VS
+#define VGT_GS_PER_VS__GS_PER_VS__SHIFT 0x0
+#define VGT_GS_PER_VS__GS_PER_VS_MASK 0x0000000FL
+//VGT_GSVS_RING_OFFSET_1
+#define VGT_GSVS_RING_OFFSET_1__OFFSET__SHIFT 0x0
+#define VGT_GSVS_RING_OFFSET_1__OFFSET_MASK 0x00007FFFL
+//VGT_GSVS_RING_OFFSET_2
+#define VGT_GSVS_RING_OFFSET_2__OFFSET__SHIFT 0x0
+#define VGT_GSVS_RING_OFFSET_2__OFFSET_MASK 0x00007FFFL
+//VGT_GSVS_RING_OFFSET_3
+#define VGT_GSVS_RING_OFFSET_3__OFFSET__SHIFT 0x0
+#define VGT_GSVS_RING_OFFSET_3__OFFSET_MASK 0x00007FFFL
+//VGT_GS_OUT_PRIM_TYPE
+#define VGT_GS_OUT_PRIM_TYPE__OUTPRIM_TYPE__SHIFT 0x0
+#define VGT_GS_OUT_PRIM_TYPE__OUTPRIM_TYPE_1__SHIFT 0x8
+#define VGT_GS_OUT_PRIM_TYPE__OUTPRIM_TYPE_2__SHIFT 0x10
+#define VGT_GS_OUT_PRIM_TYPE__OUTPRIM_TYPE_3__SHIFT 0x16
+#define VGT_GS_OUT_PRIM_TYPE__UNIQUE_TYPE_PER_STREAM__SHIFT 0x1f
+#define VGT_GS_OUT_PRIM_TYPE__OUTPRIM_TYPE_MASK 0x0000003FL
+#define VGT_GS_OUT_PRIM_TYPE__OUTPRIM_TYPE_1_MASK 0x00003F00L
+#define VGT_GS_OUT_PRIM_TYPE__OUTPRIM_TYPE_2_MASK 0x003F0000L
+#define VGT_GS_OUT_PRIM_TYPE__OUTPRIM_TYPE_3_MASK 0x0FC00000L
+#define VGT_GS_OUT_PRIM_TYPE__UNIQUE_TYPE_PER_STREAM_MASK 0x80000000L
+//IA_ENHANCE
+#define IA_ENHANCE__MISC__SHIFT 0x0
+#define IA_ENHANCE__MISC_MASK 0xFFFFFFFFL
+//VGT_DMA_SIZE
+#define VGT_DMA_SIZE__NUM_INDICES__SHIFT 0x0
+#define VGT_DMA_SIZE__NUM_INDICES_MASK 0xFFFFFFFFL
+//VGT_DMA_MAX_SIZE
+#define VGT_DMA_MAX_SIZE__MAX_SIZE__SHIFT 0x0
+#define VGT_DMA_MAX_SIZE__MAX_SIZE_MASK 0xFFFFFFFFL
+//VGT_DMA_INDEX_TYPE
+#define VGT_DMA_INDEX_TYPE__INDEX_TYPE__SHIFT 0x0
+#define VGT_DMA_INDEX_TYPE__SWAP_MODE__SHIFT 0x2
+#define VGT_DMA_INDEX_TYPE__BUF_TYPE__SHIFT 0x4
+#define VGT_DMA_INDEX_TYPE__RDREQ_POLICY__SHIFT 0x6
+#define VGT_DMA_INDEX_TYPE__PRIMGEN_EN__SHIFT 0x8
+#define VGT_DMA_INDEX_TYPE__NOT_EOP__SHIFT 0x9
+#define VGT_DMA_INDEX_TYPE__REQ_PATH__SHIFT 0xa
+#define VGT_DMA_INDEX_TYPE__INDEX_TYPE_MASK 0x00000003L
+#define VGT_DMA_INDEX_TYPE__SWAP_MODE_MASK 0x0000000CL
+#define VGT_DMA_INDEX_TYPE__BUF_TYPE_MASK 0x00000030L
+#define VGT_DMA_INDEX_TYPE__RDREQ_POLICY_MASK 0x00000040L
+#define VGT_DMA_INDEX_TYPE__PRIMGEN_EN_MASK 0x00000100L
+#define VGT_DMA_INDEX_TYPE__NOT_EOP_MASK 0x00000200L
+#define VGT_DMA_INDEX_TYPE__REQ_PATH_MASK 0x00000400L
+//WD_ENHANCE
+#define WD_ENHANCE__MISC__SHIFT 0x0
+#define WD_ENHANCE__MISC_MASK 0xFFFFFFFFL
+//VGT_PRIMITIVEID_EN
+#define VGT_PRIMITIVEID_EN__PRIMITIVEID_EN__SHIFT 0x0
+#define VGT_PRIMITIVEID_EN__DISABLE_RESET_ON_EOI__SHIFT 0x1
+#define VGT_PRIMITIVEID_EN__NGG_DISABLE_PROVOK_REUSE__SHIFT 0x2
+#define VGT_PRIMITIVEID_EN__PRIMITIVEID_EN_MASK 0x00000001L
+#define VGT_PRIMITIVEID_EN__DISABLE_RESET_ON_EOI_MASK 0x00000002L
+#define VGT_PRIMITIVEID_EN__NGG_DISABLE_PROVOK_REUSE_MASK 0x00000004L
+//VGT_DMA_NUM_INSTANCES
+#define VGT_DMA_NUM_INSTANCES__NUM_INSTANCES__SHIFT 0x0
+#define VGT_DMA_NUM_INSTANCES__NUM_INSTANCES_MASK 0xFFFFFFFFL
+//VGT_PRIMITIVEID_RESET
+#define VGT_PRIMITIVEID_RESET__VALUE__SHIFT 0x0
+#define VGT_PRIMITIVEID_RESET__VALUE_MASK 0xFFFFFFFFL
+//VGT_EVENT_INITIATOR
+#define VGT_EVENT_INITIATOR__EVENT_TYPE__SHIFT 0x0
+#define VGT_EVENT_INITIATOR__ADDRESS_HI__SHIFT 0xa
+#define VGT_EVENT_INITIATOR__EXTENDED_EVENT__SHIFT 0x1b
+#define VGT_EVENT_INITIATOR__EVENT_TYPE_MASK 0x0000003FL
+#define VGT_EVENT_INITIATOR__ADDRESS_HI_MASK 0x07FFFC00L
+#define VGT_EVENT_INITIATOR__EXTENDED_EVENT_MASK 0x08000000L
+//VGT_GS_MAX_PRIMS_PER_SUBGROUP
+#define VGT_GS_MAX_PRIMS_PER_SUBGROUP__MAX_PRIMS_PER_SUBGROUP__SHIFT 0x0
+#define VGT_GS_MAX_PRIMS_PER_SUBGROUP__MAX_PRIMS_PER_SUBGROUP_MASK 0x0000FFFFL
+//VGT_DRAW_PAYLOAD_CNTL
+#define VGT_DRAW_PAYLOAD_CNTL__OBJPRIM_ID_EN__SHIFT 0x0
+#define VGT_DRAW_PAYLOAD_CNTL__EN_REG_RT_INDEX__SHIFT 0x1
+#define VGT_DRAW_PAYLOAD_CNTL__EN_PIPELINE_PRIMID__SHIFT 0x2
+#define VGT_DRAW_PAYLOAD_CNTL__OBJECT_ID_INST_EN__SHIFT 0x3
+#define VGT_DRAW_PAYLOAD_CNTL__OBJPRIM_ID_EN_MASK 0x00000001L
+#define VGT_DRAW_PAYLOAD_CNTL__EN_REG_RT_INDEX_MASK 0x00000002L
+#define VGT_DRAW_PAYLOAD_CNTL__EN_PIPELINE_PRIMID_MASK 0x00000004L
+#define VGT_DRAW_PAYLOAD_CNTL__OBJECT_ID_INST_EN_MASK 0x00000008L
+//VGT_INSTANCE_STEP_RATE_0
+#define VGT_INSTANCE_STEP_RATE_0__STEP_RATE__SHIFT 0x0
+#define VGT_INSTANCE_STEP_RATE_0__STEP_RATE_MASK 0xFFFFFFFFL
+//VGT_INSTANCE_STEP_RATE_1
+#define VGT_INSTANCE_STEP_RATE_1__STEP_RATE__SHIFT 0x0
+#define VGT_INSTANCE_STEP_RATE_1__STEP_RATE_MASK 0xFFFFFFFFL
+//IA_MULTI_VGT_PARAM_BC
+//VGT_ESGS_RING_ITEMSIZE
+#define VGT_ESGS_RING_ITEMSIZE__ITEMSIZE__SHIFT 0x0
+#define VGT_ESGS_RING_ITEMSIZE__ITEMSIZE_MASK 0x00007FFFL
+//VGT_GSVS_RING_ITEMSIZE
+#define VGT_GSVS_RING_ITEMSIZE__ITEMSIZE__SHIFT 0x0
+#define VGT_GSVS_RING_ITEMSIZE__ITEMSIZE_MASK 0x00007FFFL
+//VGT_REUSE_OFF
+#define VGT_REUSE_OFF__REUSE_OFF__SHIFT 0x0
+#define VGT_REUSE_OFF__REUSE_OFF_MASK 0x00000001L
+//VGT_VTX_CNT_EN
+#define VGT_VTX_CNT_EN__VTX_CNT_EN__SHIFT 0x0
+#define VGT_VTX_CNT_EN__VTX_CNT_EN_MASK 0x00000001L
+//DB_HTILE_SURFACE
+#define DB_HTILE_SURFACE__FULL_CACHE__SHIFT 0x1
+#define DB_HTILE_SURFACE__HTILE_USES_PRELOAD_WIN__SHIFT 0x2
+#define DB_HTILE_SURFACE__PRELOAD__SHIFT 0x3
+#define DB_HTILE_SURFACE__PREFETCH_WIDTH__SHIFT 0x4
+#define DB_HTILE_SURFACE__PREFETCH_HEIGHT__SHIFT 0xa
+#define DB_HTILE_SURFACE__DST_OUTSIDE_ZERO_TO_ONE__SHIFT 0x10
+#define DB_HTILE_SURFACE__PIPE_ALIGNED__SHIFT 0x12
+#define DB_HTILE_SURFACE__RB_ALIGNED__SHIFT 0x13
+#define DB_HTILE_SURFACE__FULL_CACHE_MASK 0x00000002L
+#define DB_HTILE_SURFACE__HTILE_USES_PRELOAD_WIN_MASK 0x00000004L
+#define DB_HTILE_SURFACE__PRELOAD_MASK 0x00000008L
+#define DB_HTILE_SURFACE__PREFETCH_WIDTH_MASK 0x000003F0L
+#define DB_HTILE_SURFACE__PREFETCH_HEIGHT_MASK 0x0000FC00L
+#define DB_HTILE_SURFACE__DST_OUTSIDE_ZERO_TO_ONE_MASK 0x00010000L
+#define DB_HTILE_SURFACE__PIPE_ALIGNED_MASK 0x00040000L
+#define DB_HTILE_SURFACE__RB_ALIGNED_MASK 0x00080000L
+//DB_SRESULTS_COMPARE_STATE0
+#define DB_SRESULTS_COMPARE_STATE0__COMPAREFUNC0__SHIFT 0x0
+#define DB_SRESULTS_COMPARE_STATE0__COMPAREVALUE0__SHIFT 0x4
+#define DB_SRESULTS_COMPARE_STATE0__COMPAREMASK0__SHIFT 0xc
+#define DB_SRESULTS_COMPARE_STATE0__ENABLE0__SHIFT 0x18
+#define DB_SRESULTS_COMPARE_STATE0__COMPAREFUNC0_MASK 0x00000007L
+#define DB_SRESULTS_COMPARE_STATE0__COMPAREVALUE0_MASK 0x00000FF0L
+#define DB_SRESULTS_COMPARE_STATE0__COMPAREMASK0_MASK 0x000FF000L
+#define DB_SRESULTS_COMPARE_STATE0__ENABLE0_MASK 0x01000000L
+//DB_SRESULTS_COMPARE_STATE1
+#define DB_SRESULTS_COMPARE_STATE1__COMPAREFUNC1__SHIFT 0x0
+#define DB_SRESULTS_COMPARE_STATE1__COMPAREVALUE1__SHIFT 0x4
+#define DB_SRESULTS_COMPARE_STATE1__COMPAREMASK1__SHIFT 0xc
+#define DB_SRESULTS_COMPARE_STATE1__ENABLE1__SHIFT 0x18
+#define DB_SRESULTS_COMPARE_STATE1__COMPAREFUNC1_MASK 0x00000007L
+#define DB_SRESULTS_COMPARE_STATE1__COMPAREVALUE1_MASK 0x00000FF0L
+#define DB_SRESULTS_COMPARE_STATE1__COMPAREMASK1_MASK 0x000FF000L
+#define DB_SRESULTS_COMPARE_STATE1__ENABLE1_MASK 0x01000000L
+//DB_PRELOAD_CONTROL
+#define DB_PRELOAD_CONTROL__START_X__SHIFT 0x0
+#define DB_PRELOAD_CONTROL__START_Y__SHIFT 0x8
+#define DB_PRELOAD_CONTROL__MAX_X__SHIFT 0x10
+#define DB_PRELOAD_CONTROL__MAX_Y__SHIFT 0x18
+#define DB_PRELOAD_CONTROL__START_X_MASK 0x000000FFL
+#define DB_PRELOAD_CONTROL__START_Y_MASK 0x0000FF00L
+#define DB_PRELOAD_CONTROL__MAX_X_MASK 0x00FF0000L
+#define DB_PRELOAD_CONTROL__MAX_Y_MASK 0xFF000000L
+//VGT_STRMOUT_BUFFER_SIZE_0
+#define VGT_STRMOUT_BUFFER_SIZE_0__SIZE__SHIFT 0x0
+#define VGT_STRMOUT_BUFFER_SIZE_0__SIZE_MASK 0xFFFFFFFFL
+//VGT_STRMOUT_VTX_STRIDE_0
+#define VGT_STRMOUT_VTX_STRIDE_0__STRIDE__SHIFT 0x0
+#define VGT_STRMOUT_VTX_STRIDE_0__STRIDE_MASK 0x000003FFL
+//VGT_STRMOUT_BUFFER_OFFSET_0
+#define VGT_STRMOUT_BUFFER_OFFSET_0__OFFSET__SHIFT 0x0
+#define VGT_STRMOUT_BUFFER_OFFSET_0__OFFSET_MASK 0xFFFFFFFFL
+//VGT_STRMOUT_BUFFER_SIZE_1
+#define VGT_STRMOUT_BUFFER_SIZE_1__SIZE__SHIFT 0x0
+#define VGT_STRMOUT_BUFFER_SIZE_1__SIZE_MASK 0xFFFFFFFFL
+//VGT_STRMOUT_VTX_STRIDE_1
+#define VGT_STRMOUT_VTX_STRIDE_1__STRIDE__SHIFT 0x0
+#define VGT_STRMOUT_VTX_STRIDE_1__STRIDE_MASK 0x000003FFL
+//VGT_STRMOUT_BUFFER_OFFSET_1
+#define VGT_STRMOUT_BUFFER_OFFSET_1__OFFSET__SHIFT 0x0
+#define VGT_STRMOUT_BUFFER_OFFSET_1__OFFSET_MASK 0xFFFFFFFFL
+//VGT_STRMOUT_BUFFER_SIZE_2
+#define VGT_STRMOUT_BUFFER_SIZE_2__SIZE__SHIFT 0x0
+#define VGT_STRMOUT_BUFFER_SIZE_2__SIZE_MASK 0xFFFFFFFFL
+//VGT_STRMOUT_VTX_STRIDE_2
+#define VGT_STRMOUT_VTX_STRIDE_2__STRIDE__SHIFT 0x0
+#define VGT_STRMOUT_VTX_STRIDE_2__STRIDE_MASK 0x000003FFL
+//VGT_STRMOUT_BUFFER_OFFSET_2
+#define VGT_STRMOUT_BUFFER_OFFSET_2__OFFSET__SHIFT 0x0
+#define VGT_STRMOUT_BUFFER_OFFSET_2__OFFSET_MASK 0xFFFFFFFFL
+//VGT_STRMOUT_BUFFER_SIZE_3
+#define VGT_STRMOUT_BUFFER_SIZE_3__SIZE__SHIFT 0x0
+#define VGT_STRMOUT_BUFFER_SIZE_3__SIZE_MASK 0xFFFFFFFFL
+//VGT_STRMOUT_VTX_STRIDE_3
+#define VGT_STRMOUT_VTX_STRIDE_3__STRIDE__SHIFT 0x0
+#define VGT_STRMOUT_VTX_STRIDE_3__STRIDE_MASK 0x000003FFL
+//VGT_STRMOUT_BUFFER_OFFSET_3
+#define VGT_STRMOUT_BUFFER_OFFSET_3__OFFSET__SHIFT 0x0
+#define VGT_STRMOUT_BUFFER_OFFSET_3__OFFSET_MASK 0xFFFFFFFFL
+//VGT_STRMOUT_DRAW_OPAQUE_OFFSET
+#define VGT_STRMOUT_DRAW_OPAQUE_OFFSET__OFFSET__SHIFT 0x0
+#define VGT_STRMOUT_DRAW_OPAQUE_OFFSET__OFFSET_MASK 0xFFFFFFFFL
+//VGT_STRMOUT_DRAW_OPAQUE_BUFFER_FILLED_SIZE
+#define VGT_STRMOUT_DRAW_OPAQUE_BUFFER_FILLED_SIZE__SIZE__SHIFT 0x0
+#define VGT_STRMOUT_DRAW_OPAQUE_BUFFER_FILLED_SIZE__SIZE_MASK 0xFFFFFFFFL
+//VGT_STRMOUT_DRAW_OPAQUE_VERTEX_STRIDE
+#define VGT_STRMOUT_DRAW_OPAQUE_VERTEX_STRIDE__VERTEX_STRIDE__SHIFT 0x0
+#define VGT_STRMOUT_DRAW_OPAQUE_VERTEX_STRIDE__VERTEX_STRIDE_MASK 0x000001FFL
+//VGT_GS_MAX_VERT_OUT
+#define VGT_GS_MAX_VERT_OUT__MAX_VERT_OUT__SHIFT 0x0
+#define VGT_GS_MAX_VERT_OUT__MAX_VERT_OUT_MASK 0x000007FFL
+//VGT_TESS_DISTRIBUTION
+#define VGT_TESS_DISTRIBUTION__ACCUM_ISOLINE__SHIFT 0x0
+#define VGT_TESS_DISTRIBUTION__ACCUM_TRI__SHIFT 0x8
+#define VGT_TESS_DISTRIBUTION__ACCUM_QUAD__SHIFT 0x10
+#define VGT_TESS_DISTRIBUTION__DONUT_SPLIT__SHIFT 0x18
+#define VGT_TESS_DISTRIBUTION__TRAP_SPLIT__SHIFT 0x1d
+#define VGT_TESS_DISTRIBUTION__ACCUM_ISOLINE_MASK 0x000000FFL
+#define VGT_TESS_DISTRIBUTION__ACCUM_TRI_MASK 0x0000FF00L
+#define VGT_TESS_DISTRIBUTION__ACCUM_QUAD_MASK 0x00FF0000L
+#define VGT_TESS_DISTRIBUTION__DONUT_SPLIT_MASK 0x1F000000L
+#define VGT_TESS_DISTRIBUTION__TRAP_SPLIT_MASK 0xE0000000L
+//VGT_SHADER_STAGES_EN
+#define VGT_SHADER_STAGES_EN__LS_EN__SHIFT 0x0
+#define VGT_SHADER_STAGES_EN__HS_EN__SHIFT 0x2
+#define VGT_SHADER_STAGES_EN__ES_EN__SHIFT 0x3
+#define VGT_SHADER_STAGES_EN__GS_EN__SHIFT 0x5
+#define VGT_SHADER_STAGES_EN__VS_EN__SHIFT 0x6
+#define VGT_SHADER_STAGES_EN__DISPATCH_DRAW_EN__SHIFT 0x9
+#define VGT_SHADER_STAGES_EN__DIS_DEALLOC_ACCUM_0__SHIFT 0xa
+#define VGT_SHADER_STAGES_EN__DIS_DEALLOC_ACCUM_1__SHIFT 0xb
+#define VGT_SHADER_STAGES_EN__VS_WAVE_ID_EN__SHIFT 0xc
+#define VGT_SHADER_STAGES_EN__PRIMGEN_EN__SHIFT 0xd
+#define VGT_SHADER_STAGES_EN__ORDERED_ID_MODE__SHIFT 0xe
+#define VGT_SHADER_STAGES_EN__MAX_PRIMGRP_IN_WAVE__SHIFT 0xf
+#define VGT_SHADER_STAGES_EN__GS_FAST_LAUNCH__SHIFT 0x13
+#define VGT_SHADER_STAGES_EN__LS_EN_MASK 0x00000003L
+#define VGT_SHADER_STAGES_EN__HS_EN_MASK 0x00000004L
+#define VGT_SHADER_STAGES_EN__ES_EN_MASK 0x00000018L
+#define VGT_SHADER_STAGES_EN__GS_EN_MASK 0x00000020L
+#define VGT_SHADER_STAGES_EN__VS_EN_MASK 0x000000C0L
+#define VGT_SHADER_STAGES_EN__DISPATCH_DRAW_EN_MASK 0x00000200L
+#define VGT_SHADER_STAGES_EN__DIS_DEALLOC_ACCUM_0_MASK 0x00000400L
+#define VGT_SHADER_STAGES_EN__DIS_DEALLOC_ACCUM_1_MASK 0x00000800L
+#define VGT_SHADER_STAGES_EN__VS_WAVE_ID_EN_MASK 0x00001000L
+#define VGT_SHADER_STAGES_EN__PRIMGEN_EN_MASK 0x00002000L
+#define VGT_SHADER_STAGES_EN__ORDERED_ID_MODE_MASK 0x00004000L
+#define VGT_SHADER_STAGES_EN__MAX_PRIMGRP_IN_WAVE_MASK 0x00078000L
+#define VGT_SHADER_STAGES_EN__GS_FAST_LAUNCH_MASK 0x00180000L
+//VGT_LS_HS_CONFIG
+#define VGT_LS_HS_CONFIG__NUM_PATCHES__SHIFT 0x0
+#define VGT_LS_HS_CONFIG__HS_NUM_INPUT_CP__SHIFT 0x8
+#define VGT_LS_HS_CONFIG__HS_NUM_OUTPUT_CP__SHIFT 0xe
+#define VGT_LS_HS_CONFIG__NUM_PATCHES_MASK 0x000000FFL
+#define VGT_LS_HS_CONFIG__HS_NUM_INPUT_CP_MASK 0x00003F00L
+#define VGT_LS_HS_CONFIG__HS_NUM_OUTPUT_CP_MASK 0x000FC000L
+//VGT_GS_VERT_ITEMSIZE
+#define VGT_GS_VERT_ITEMSIZE__ITEMSIZE__SHIFT 0x0
+#define VGT_GS_VERT_ITEMSIZE__ITEMSIZE_MASK 0x00007FFFL
+//VGT_GS_VERT_ITEMSIZE_1
+#define VGT_GS_VERT_ITEMSIZE_1__ITEMSIZE__SHIFT 0x0
+#define VGT_GS_VERT_ITEMSIZE_1__ITEMSIZE_MASK 0x00007FFFL
+//VGT_GS_VERT_ITEMSIZE_2
+#define VGT_GS_VERT_ITEMSIZE_2__ITEMSIZE__SHIFT 0x0
+#define VGT_GS_VERT_ITEMSIZE_2__ITEMSIZE_MASK 0x00007FFFL
+//VGT_GS_VERT_ITEMSIZE_3
+#define VGT_GS_VERT_ITEMSIZE_3__ITEMSIZE__SHIFT 0x0
+#define VGT_GS_VERT_ITEMSIZE_3__ITEMSIZE_MASK 0x00007FFFL
+//VGT_TF_PARAM
+#define VGT_TF_PARAM__TYPE__SHIFT 0x0
+#define VGT_TF_PARAM__PARTITIONING__SHIFT 0x2
+#define VGT_TF_PARAM__TOPOLOGY__SHIFT 0x5
+#define VGT_TF_PARAM__RESERVED_REDUC_AXIS__SHIFT 0x8
+#define VGT_TF_PARAM__DEPRECATED__SHIFT 0x9
+#define VGT_TF_PARAM__DISABLE_DONUTS__SHIFT 0xe
+#define VGT_TF_PARAM__RDREQ_POLICY__SHIFT 0xf
+#define VGT_TF_PARAM__DISTRIBUTION_MODE__SHIFT 0x11
+#define VGT_TF_PARAM__TYPE_MASK 0x00000003L
+#define VGT_TF_PARAM__PARTITIONING_MASK 0x0000001CL
+#define VGT_TF_PARAM__TOPOLOGY_MASK 0x000000E0L
+#define VGT_TF_PARAM__RESERVED_REDUC_AXIS_MASK 0x00000100L
+#define VGT_TF_PARAM__DEPRECATED_MASK 0x00000200L
+#define VGT_TF_PARAM__DISABLE_DONUTS_MASK 0x00004000L
+#define VGT_TF_PARAM__RDREQ_POLICY_MASK 0x00008000L
+#define VGT_TF_PARAM__DISTRIBUTION_MODE_MASK 0x00060000L
+//DB_ALPHA_TO_MASK
+#define DB_ALPHA_TO_MASK__ALPHA_TO_MASK_ENABLE__SHIFT 0x0
+#define DB_ALPHA_TO_MASK__ALPHA_TO_MASK_OFFSET0__SHIFT 0x8
+#define DB_ALPHA_TO_MASK__ALPHA_TO_MASK_OFFSET1__SHIFT 0xa
+#define DB_ALPHA_TO_MASK__ALPHA_TO_MASK_OFFSET2__SHIFT 0xc
+#define DB_ALPHA_TO_MASK__ALPHA_TO_MASK_OFFSET3__SHIFT 0xe
+#define DB_ALPHA_TO_MASK__OFFSET_ROUND__SHIFT 0x10
+#define DB_ALPHA_TO_MASK__ALPHA_TO_MASK_ENABLE_MASK 0x00000001L
+#define DB_ALPHA_TO_MASK__ALPHA_TO_MASK_OFFSET0_MASK 0x00000300L
+#define DB_ALPHA_TO_MASK__ALPHA_TO_MASK_OFFSET1_MASK 0x00000C00L
+#define DB_ALPHA_TO_MASK__ALPHA_TO_MASK_OFFSET2_MASK 0x00003000L
+#define DB_ALPHA_TO_MASK__ALPHA_TO_MASK_OFFSET3_MASK 0x0000C000L
+#define DB_ALPHA_TO_MASK__OFFSET_ROUND_MASK 0x00010000L
+//VGT_DISPATCH_DRAW_INDEX
+#define VGT_DISPATCH_DRAW_INDEX__MATCH_INDEX__SHIFT 0x0
+#define VGT_DISPATCH_DRAW_INDEX__MATCH_INDEX_MASK 0xFFFFFFFFL
+//PA_SU_POLY_OFFSET_DB_FMT_CNTL
+#define PA_SU_POLY_OFFSET_DB_FMT_CNTL__POLY_OFFSET_NEG_NUM_DB_BITS__SHIFT 0x0
+#define PA_SU_POLY_OFFSET_DB_FMT_CNTL__POLY_OFFSET_DB_IS_FLOAT_FMT__SHIFT 0x8
+#define PA_SU_POLY_OFFSET_DB_FMT_CNTL__POLY_OFFSET_NEG_NUM_DB_BITS_MASK 0x000000FFL
+#define PA_SU_POLY_OFFSET_DB_FMT_CNTL__POLY_OFFSET_DB_IS_FLOAT_FMT_MASK 0x00000100L
+//PA_SU_POLY_OFFSET_CLAMP
+#define PA_SU_POLY_OFFSET_CLAMP__CLAMP__SHIFT 0x0
+#define PA_SU_POLY_OFFSET_CLAMP__CLAMP_MASK 0xFFFFFFFFL
+//PA_SU_POLY_OFFSET_FRONT_SCALE
+#define PA_SU_POLY_OFFSET_FRONT_SCALE__SCALE__SHIFT 0x0
+#define PA_SU_POLY_OFFSET_FRONT_SCALE__SCALE_MASK 0xFFFFFFFFL
+//PA_SU_POLY_OFFSET_FRONT_OFFSET
+#define PA_SU_POLY_OFFSET_FRONT_OFFSET__OFFSET__SHIFT 0x0
+#define PA_SU_POLY_OFFSET_FRONT_OFFSET__OFFSET_MASK 0xFFFFFFFFL
+//PA_SU_POLY_OFFSET_BACK_SCALE
+#define PA_SU_POLY_OFFSET_BACK_SCALE__SCALE__SHIFT 0x0
+#define PA_SU_POLY_OFFSET_BACK_SCALE__SCALE_MASK 0xFFFFFFFFL
+//PA_SU_POLY_OFFSET_BACK_OFFSET
+#define PA_SU_POLY_OFFSET_BACK_OFFSET__OFFSET__SHIFT 0x0
+#define PA_SU_POLY_OFFSET_BACK_OFFSET__OFFSET_MASK 0xFFFFFFFFL
+//VGT_GS_INSTANCE_CNT
+#define VGT_GS_INSTANCE_CNT__ENABLE__SHIFT 0x0
+#define VGT_GS_INSTANCE_CNT__CNT__SHIFT 0x2
+#define VGT_GS_INSTANCE_CNT__ENABLE_MASK 0x00000001L
+#define VGT_GS_INSTANCE_CNT__CNT_MASK 0x000001FCL
+//VGT_STRMOUT_CONFIG
+#define VGT_STRMOUT_CONFIG__STREAMOUT_0_EN__SHIFT 0x0
+#define VGT_STRMOUT_CONFIG__STREAMOUT_1_EN__SHIFT 0x1
+#define VGT_STRMOUT_CONFIG__STREAMOUT_2_EN__SHIFT 0x2
+#define VGT_STRMOUT_CONFIG__STREAMOUT_3_EN__SHIFT 0x3
+#define VGT_STRMOUT_CONFIG__RAST_STREAM__SHIFT 0x4
+#define VGT_STRMOUT_CONFIG__EN_PRIMS_NEEDED_CNT__SHIFT 0x7
+#define VGT_STRMOUT_CONFIG__RAST_STREAM_MASK__SHIFT 0x8
+#define VGT_STRMOUT_CONFIG__USE_RAST_STREAM_MASK__SHIFT 0x1f
+#define VGT_STRMOUT_CONFIG__STREAMOUT_0_EN_MASK 0x00000001L
+#define VGT_STRMOUT_CONFIG__STREAMOUT_1_EN_MASK 0x00000002L
+#define VGT_STRMOUT_CONFIG__STREAMOUT_2_EN_MASK 0x00000004L
+#define VGT_STRMOUT_CONFIG__STREAMOUT_3_EN_MASK 0x00000008L
+#define VGT_STRMOUT_CONFIG__RAST_STREAM_MASK 0x00000070L
+#define VGT_STRMOUT_CONFIG__EN_PRIMS_NEEDED_CNT_MASK 0x00000080L
+#define VGT_STRMOUT_CONFIG__RAST_STREAM_MASK_MASK 0x00000F00L
+#define VGT_STRMOUT_CONFIG__USE_RAST_STREAM_MASK_MASK 0x80000000L
+//VGT_STRMOUT_BUFFER_CONFIG
+#define VGT_STRMOUT_BUFFER_CONFIG__STREAM_0_BUFFER_EN__SHIFT 0x0
+#define VGT_STRMOUT_BUFFER_CONFIG__STREAM_1_BUFFER_EN__SHIFT 0x4
+#define VGT_STRMOUT_BUFFER_CONFIG__STREAM_2_BUFFER_EN__SHIFT 0x8
+#define VGT_STRMOUT_BUFFER_CONFIG__STREAM_3_BUFFER_EN__SHIFT 0xc
+#define VGT_STRMOUT_BUFFER_CONFIG__STREAM_0_BUFFER_EN_MASK 0x0000000FL
+#define VGT_STRMOUT_BUFFER_CONFIG__STREAM_1_BUFFER_EN_MASK 0x000000F0L
+#define VGT_STRMOUT_BUFFER_CONFIG__STREAM_2_BUFFER_EN_MASK 0x00000F00L
+#define VGT_STRMOUT_BUFFER_CONFIG__STREAM_3_BUFFER_EN_MASK 0x0000F000L
+//VGT_DMA_EVENT_INITIATOR
+#define VGT_DMA_EVENT_INITIATOR__EVENT_TYPE__SHIFT 0x0
+#define VGT_DMA_EVENT_INITIATOR__ADDRESS_HI__SHIFT 0xa
+#define VGT_DMA_EVENT_INITIATOR__EXTENDED_EVENT__SHIFT 0x1b
+#define VGT_DMA_EVENT_INITIATOR__EVENT_TYPE_MASK 0x0000003FL
+#define VGT_DMA_EVENT_INITIATOR__ADDRESS_HI_MASK 0x07FFFC00L
+#define VGT_DMA_EVENT_INITIATOR__EXTENDED_EVENT_MASK 0x08000000L
+//PA_SC_CENTROID_PRIORITY_0
+#define PA_SC_CENTROID_PRIORITY_0__DISTANCE_0__SHIFT 0x0
+#define PA_SC_CENTROID_PRIORITY_0__DISTANCE_1__SHIFT 0x4
+#define PA_SC_CENTROID_PRIORITY_0__DISTANCE_2__SHIFT 0x8
+#define PA_SC_CENTROID_PRIORITY_0__DISTANCE_3__SHIFT 0xc
+#define PA_SC_CENTROID_PRIORITY_0__DISTANCE_4__SHIFT 0x10
+#define PA_SC_CENTROID_PRIORITY_0__DISTANCE_5__SHIFT 0x14
+#define PA_SC_CENTROID_PRIORITY_0__DISTANCE_6__SHIFT 0x18
+#define PA_SC_CENTROID_PRIORITY_0__DISTANCE_7__SHIFT 0x1c
+#define PA_SC_CENTROID_PRIORITY_0__DISTANCE_0_MASK 0x0000000FL
+#define PA_SC_CENTROID_PRIORITY_0__DISTANCE_1_MASK 0x000000F0L
+#define PA_SC_CENTROID_PRIORITY_0__DISTANCE_2_MASK 0x00000F00L
+#define PA_SC_CENTROID_PRIORITY_0__DISTANCE_3_MASK 0x0000F000L
+#define PA_SC_CENTROID_PRIORITY_0__DISTANCE_4_MASK 0x000F0000L
+#define PA_SC_CENTROID_PRIORITY_0__DISTANCE_5_MASK 0x00F00000L
+#define PA_SC_CENTROID_PRIORITY_0__DISTANCE_6_MASK 0x0F000000L
+#define PA_SC_CENTROID_PRIORITY_0__DISTANCE_7_MASK 0xF0000000L
+//PA_SC_CENTROID_PRIORITY_1
+#define PA_SC_CENTROID_PRIORITY_1__DISTANCE_8__SHIFT 0x0
+#define PA_SC_CENTROID_PRIORITY_1__DISTANCE_9__SHIFT 0x4
+#define PA_SC_CENTROID_PRIORITY_1__DISTANCE_10__SHIFT 0x8
+#define PA_SC_CENTROID_PRIORITY_1__DISTANCE_11__SHIFT 0xc
+#define PA_SC_CENTROID_PRIORITY_1__DISTANCE_12__SHIFT 0x10
+#define PA_SC_CENTROID_PRIORITY_1__DISTANCE_13__SHIFT 0x14
+#define PA_SC_CENTROID_PRIORITY_1__DISTANCE_14__SHIFT 0x18
+#define PA_SC_CENTROID_PRIORITY_1__DISTANCE_15__SHIFT 0x1c
+#define PA_SC_CENTROID_PRIORITY_1__DISTANCE_8_MASK 0x0000000FL
+#define PA_SC_CENTROID_PRIORITY_1__DISTANCE_9_MASK 0x000000F0L
+#define PA_SC_CENTROID_PRIORITY_1__DISTANCE_10_MASK 0x00000F00L
+#define PA_SC_CENTROID_PRIORITY_1__DISTANCE_11_MASK 0x0000F000L
+#define PA_SC_CENTROID_PRIORITY_1__DISTANCE_12_MASK 0x000F0000L
+#define PA_SC_CENTROID_PRIORITY_1__DISTANCE_13_MASK 0x00F00000L
+#define PA_SC_CENTROID_PRIORITY_1__DISTANCE_14_MASK 0x0F000000L
+#define PA_SC_CENTROID_PRIORITY_1__DISTANCE_15_MASK 0xF0000000L
+//PA_SC_LINE_CNTL
+#define PA_SC_LINE_CNTL__EXPAND_LINE_WIDTH__SHIFT 0x9
+#define PA_SC_LINE_CNTL__LAST_PIXEL__SHIFT 0xa
+#define PA_SC_LINE_CNTL__PERPENDICULAR_ENDCAP_ENA__SHIFT 0xb
+#define PA_SC_LINE_CNTL__DX10_DIAMOND_TEST_ENA__SHIFT 0xc
+#define PA_SC_LINE_CNTL__EXTRA_DX_DY_PRECISION__SHIFT 0xd
+#define PA_SC_LINE_CNTL__EXPAND_LINE_WIDTH_MASK 0x00000200L
+#define PA_SC_LINE_CNTL__LAST_PIXEL_MASK 0x00000400L
+#define PA_SC_LINE_CNTL__PERPENDICULAR_ENDCAP_ENA_MASK 0x00000800L
+#define PA_SC_LINE_CNTL__DX10_DIAMOND_TEST_ENA_MASK 0x00001000L
+#define PA_SC_LINE_CNTL__EXTRA_DX_DY_PRECISION_MASK 0x00002000L
+//PA_SC_AA_CONFIG
+#define PA_SC_AA_CONFIG__MSAA_NUM_SAMPLES__SHIFT 0x0
+#define PA_SC_AA_CONFIG__AA_MASK_CENTROID_DTMN__SHIFT 0x4
+#define PA_SC_AA_CONFIG__MAX_SAMPLE_DIST__SHIFT 0xd
+#define PA_SC_AA_CONFIG__MSAA_EXPOSED_SAMPLES__SHIFT 0x14
+#define PA_SC_AA_CONFIG__DETAIL_TO_EXPOSED_MODE__SHIFT 0x18
+#define PA_SC_AA_CONFIG__COVERAGE_TO_SHADER_SELECT__SHIFT 0x1a
+#define PA_SC_AA_CONFIG__MSAA_NUM_SAMPLES_MASK 0x00000007L
+#define PA_SC_AA_CONFIG__AA_MASK_CENTROID_DTMN_MASK 0x00000010L
+#define PA_SC_AA_CONFIG__MAX_SAMPLE_DIST_MASK 0x0001E000L
+#define PA_SC_AA_CONFIG__MSAA_EXPOSED_SAMPLES_MASK 0x00700000L
+#define PA_SC_AA_CONFIG__DETAIL_TO_EXPOSED_MODE_MASK 0x03000000L
+#define PA_SC_AA_CONFIG__COVERAGE_TO_SHADER_SELECT_MASK 0x0C000000L
+//PA_SU_VTX_CNTL
+#define PA_SU_VTX_CNTL__PIX_CENTER__SHIFT 0x0
+#define PA_SU_VTX_CNTL__ROUND_MODE__SHIFT 0x1
+#define PA_SU_VTX_CNTL__QUANT_MODE__SHIFT 0x3
+#define PA_SU_VTX_CNTL__PIX_CENTER_MASK 0x00000001L
+#define PA_SU_VTX_CNTL__ROUND_MODE_MASK 0x00000006L
+#define PA_SU_VTX_CNTL__QUANT_MODE_MASK 0x00000038L
+//PA_CL_GB_VERT_CLIP_ADJ
+#define PA_CL_GB_VERT_CLIP_ADJ__DATA_REGISTER__SHIFT 0x0
+#define PA_CL_GB_VERT_CLIP_ADJ__DATA_REGISTER_MASK 0xFFFFFFFFL
+//PA_CL_GB_VERT_DISC_ADJ
+#define PA_CL_GB_VERT_DISC_ADJ__DATA_REGISTER__SHIFT 0x0
+#define PA_CL_GB_VERT_DISC_ADJ__DATA_REGISTER_MASK 0xFFFFFFFFL
+//PA_CL_GB_HORZ_CLIP_ADJ
+#define PA_CL_GB_HORZ_CLIP_ADJ__DATA_REGISTER__SHIFT 0x0
+#define PA_CL_GB_HORZ_CLIP_ADJ__DATA_REGISTER_MASK 0xFFFFFFFFL
+//PA_CL_GB_HORZ_DISC_ADJ
+#define PA_CL_GB_HORZ_DISC_ADJ__DATA_REGISTER__SHIFT 0x0
+#define PA_CL_GB_HORZ_DISC_ADJ__DATA_REGISTER_MASK 0xFFFFFFFFL
+//PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_0
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_0__S0_X__SHIFT 0x0
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_0__S0_Y__SHIFT 0x4
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_0__S1_X__SHIFT 0x8
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_0__S1_Y__SHIFT 0xc
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_0__S2_X__SHIFT 0x10
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_0__S2_Y__SHIFT 0x14
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_0__S3_X__SHIFT 0x18
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_0__S3_Y__SHIFT 0x1c
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_0__S0_X_MASK 0x0000000FL
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_0__S0_Y_MASK 0x000000F0L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_0__S1_X_MASK 0x00000F00L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_0__S1_Y_MASK 0x0000F000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_0__S2_X_MASK 0x000F0000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_0__S2_Y_MASK 0x00F00000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_0__S3_X_MASK 0x0F000000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_0__S3_Y_MASK 0xF0000000L
+//PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_1
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_1__S4_X__SHIFT 0x0
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_1__S4_Y__SHIFT 0x4
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_1__S5_X__SHIFT 0x8
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_1__S5_Y__SHIFT 0xc
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_1__S6_X__SHIFT 0x10
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_1__S6_Y__SHIFT 0x14
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_1__S7_X__SHIFT 0x18
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_1__S7_Y__SHIFT 0x1c
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_1__S4_X_MASK 0x0000000FL
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_1__S4_Y_MASK 0x000000F0L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_1__S5_X_MASK 0x00000F00L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_1__S5_Y_MASK 0x0000F000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_1__S6_X_MASK 0x000F0000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_1__S6_Y_MASK 0x00F00000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_1__S7_X_MASK 0x0F000000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_1__S7_Y_MASK 0xF0000000L
+//PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_2
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_2__S8_X__SHIFT 0x0
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_2__S8_Y__SHIFT 0x4
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_2__S9_X__SHIFT 0x8
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_2__S9_Y__SHIFT 0xc
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_2__S10_X__SHIFT 0x10
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_2__S10_Y__SHIFT 0x14
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_2__S11_X__SHIFT 0x18
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_2__S11_Y__SHIFT 0x1c
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_2__S8_X_MASK 0x0000000FL
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_2__S8_Y_MASK 0x000000F0L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_2__S9_X_MASK 0x00000F00L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_2__S9_Y_MASK 0x0000F000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_2__S10_X_MASK 0x000F0000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_2__S10_Y_MASK 0x00F00000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_2__S11_X_MASK 0x0F000000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_2__S11_Y_MASK 0xF0000000L
+//PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_3
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_3__S12_X__SHIFT 0x0
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_3__S12_Y__SHIFT 0x4
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_3__S13_X__SHIFT 0x8
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_3__S13_Y__SHIFT 0xc
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_3__S14_X__SHIFT 0x10
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_3__S14_Y__SHIFT 0x14
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_3__S15_X__SHIFT 0x18
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_3__S15_Y__SHIFT 0x1c
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_3__S12_X_MASK 0x0000000FL
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_3__S12_Y_MASK 0x000000F0L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_3__S13_X_MASK 0x00000F00L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_3__S13_Y_MASK 0x0000F000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_3__S14_X_MASK 0x000F0000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_3__S14_Y_MASK 0x00F00000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_3__S15_X_MASK 0x0F000000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y0_3__S15_Y_MASK 0xF0000000L
+//PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_0
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_0__S0_X__SHIFT 0x0
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_0__S0_Y__SHIFT 0x4
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_0__S1_X__SHIFT 0x8
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_0__S1_Y__SHIFT 0xc
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_0__S2_X__SHIFT 0x10
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_0__S2_Y__SHIFT 0x14
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_0__S3_X__SHIFT 0x18
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_0__S3_Y__SHIFT 0x1c
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_0__S0_X_MASK 0x0000000FL
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_0__S0_Y_MASK 0x000000F0L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_0__S1_X_MASK 0x00000F00L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_0__S1_Y_MASK 0x0000F000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_0__S2_X_MASK 0x000F0000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_0__S2_Y_MASK 0x00F00000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_0__S3_X_MASK 0x0F000000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_0__S3_Y_MASK 0xF0000000L
+//PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_1
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_1__S4_X__SHIFT 0x0
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_1__S4_Y__SHIFT 0x4
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_1__S5_X__SHIFT 0x8
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_1__S5_Y__SHIFT 0xc
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_1__S6_X__SHIFT 0x10
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_1__S6_Y__SHIFT 0x14
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_1__S7_X__SHIFT 0x18
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_1__S7_Y__SHIFT 0x1c
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_1__S4_X_MASK 0x0000000FL
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_1__S4_Y_MASK 0x000000F0L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_1__S5_X_MASK 0x00000F00L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_1__S5_Y_MASK 0x0000F000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_1__S6_X_MASK 0x000F0000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_1__S6_Y_MASK 0x00F00000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_1__S7_X_MASK 0x0F000000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_1__S7_Y_MASK 0xF0000000L
+//PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_2
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_2__S8_X__SHIFT 0x0
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_2__S8_Y__SHIFT 0x4
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_2__S9_X__SHIFT 0x8
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_2__S9_Y__SHIFT 0xc
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_2__S10_X__SHIFT 0x10
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_2__S10_Y__SHIFT 0x14
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_2__S11_X__SHIFT 0x18
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_2__S11_Y__SHIFT 0x1c
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_2__S8_X_MASK 0x0000000FL
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_2__S8_Y_MASK 0x000000F0L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_2__S9_X_MASK 0x00000F00L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_2__S9_Y_MASK 0x0000F000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_2__S10_X_MASK 0x000F0000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_2__S10_Y_MASK 0x00F00000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_2__S11_X_MASK 0x0F000000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_2__S11_Y_MASK 0xF0000000L
+//PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_3
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_3__S12_X__SHIFT 0x0
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_3__S12_Y__SHIFT 0x4
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_3__S13_X__SHIFT 0x8
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_3__S13_Y__SHIFT 0xc
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_3__S14_X__SHIFT 0x10
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_3__S14_Y__SHIFT 0x14
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_3__S15_X__SHIFT 0x18
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_3__S15_Y__SHIFT 0x1c
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_3__S12_X_MASK 0x0000000FL
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_3__S12_Y_MASK 0x000000F0L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_3__S13_X_MASK 0x00000F00L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_3__S13_Y_MASK 0x0000F000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_3__S14_X_MASK 0x000F0000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_3__S14_Y_MASK 0x00F00000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_3__S15_X_MASK 0x0F000000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y0_3__S15_Y_MASK 0xF0000000L
+//PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_0
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_0__S0_X__SHIFT 0x0
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_0__S0_Y__SHIFT 0x4
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_0__S1_X__SHIFT 0x8
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_0__S1_Y__SHIFT 0xc
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_0__S2_X__SHIFT 0x10
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_0__S2_Y__SHIFT 0x14
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_0__S3_X__SHIFT 0x18
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_0__S3_Y__SHIFT 0x1c
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_0__S0_X_MASK 0x0000000FL
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_0__S0_Y_MASK 0x000000F0L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_0__S1_X_MASK 0x00000F00L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_0__S1_Y_MASK 0x0000F000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_0__S2_X_MASK 0x000F0000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_0__S2_Y_MASK 0x00F00000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_0__S3_X_MASK 0x0F000000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_0__S3_Y_MASK 0xF0000000L
+//PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_1
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_1__S4_X__SHIFT 0x0
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_1__S4_Y__SHIFT 0x4
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_1__S5_X__SHIFT 0x8
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_1__S5_Y__SHIFT 0xc
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_1__S6_X__SHIFT 0x10
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_1__S6_Y__SHIFT 0x14
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_1__S7_X__SHIFT 0x18
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_1__S7_Y__SHIFT 0x1c
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_1__S4_X_MASK 0x0000000FL
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_1__S4_Y_MASK 0x000000F0L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_1__S5_X_MASK 0x00000F00L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_1__S5_Y_MASK 0x0000F000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_1__S6_X_MASK 0x000F0000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_1__S6_Y_MASK 0x00F00000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_1__S7_X_MASK 0x0F000000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_1__S7_Y_MASK 0xF0000000L
+//PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_2
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_2__S8_X__SHIFT 0x0
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_2__S8_Y__SHIFT 0x4
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_2__S9_X__SHIFT 0x8
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_2__S9_Y__SHIFT 0xc
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_2__S10_X__SHIFT 0x10
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_2__S10_Y__SHIFT 0x14
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_2__S11_X__SHIFT 0x18
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_2__S11_Y__SHIFT 0x1c
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_2__S8_X_MASK 0x0000000FL
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_2__S8_Y_MASK 0x000000F0L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_2__S9_X_MASK 0x00000F00L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_2__S9_Y_MASK 0x0000F000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_2__S10_X_MASK 0x000F0000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_2__S10_Y_MASK 0x00F00000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_2__S11_X_MASK 0x0F000000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_2__S11_Y_MASK 0xF0000000L
+//PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_3
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_3__S12_X__SHIFT 0x0
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_3__S12_Y__SHIFT 0x4
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_3__S13_X__SHIFT 0x8
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_3__S13_Y__SHIFT 0xc
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_3__S14_X__SHIFT 0x10
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_3__S14_Y__SHIFT 0x14
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_3__S15_X__SHIFT 0x18
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_3__S15_Y__SHIFT 0x1c
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_3__S12_X_MASK 0x0000000FL
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_3__S12_Y_MASK 0x000000F0L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_3__S13_X_MASK 0x00000F00L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_3__S13_Y_MASK 0x0000F000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_3__S14_X_MASK 0x000F0000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_3__S14_Y_MASK 0x00F00000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_3__S15_X_MASK 0x0F000000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X0Y1_3__S15_Y_MASK 0xF0000000L
+//PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_0
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_0__S0_X__SHIFT 0x0
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_0__S0_Y__SHIFT 0x4
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_0__S1_X__SHIFT 0x8
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_0__S1_Y__SHIFT 0xc
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_0__S2_X__SHIFT 0x10
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_0__S2_Y__SHIFT 0x14
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_0__S3_X__SHIFT 0x18
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_0__S3_Y__SHIFT 0x1c
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_0__S0_X_MASK 0x0000000FL
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_0__S0_Y_MASK 0x000000F0L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_0__S1_X_MASK 0x00000F00L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_0__S1_Y_MASK 0x0000F000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_0__S2_X_MASK 0x000F0000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_0__S2_Y_MASK 0x00F00000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_0__S3_X_MASK 0x0F000000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_0__S3_Y_MASK 0xF0000000L
+//PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_1
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_1__S4_X__SHIFT 0x0
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_1__S4_Y__SHIFT 0x4
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_1__S5_X__SHIFT 0x8
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_1__S5_Y__SHIFT 0xc
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_1__S6_X__SHIFT 0x10
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_1__S6_Y__SHIFT 0x14
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_1__S7_X__SHIFT 0x18
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_1__S7_Y__SHIFT 0x1c
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_1__S4_X_MASK 0x0000000FL
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_1__S4_Y_MASK 0x000000F0L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_1__S5_X_MASK 0x00000F00L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_1__S5_Y_MASK 0x0000F000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_1__S6_X_MASK 0x000F0000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_1__S6_Y_MASK 0x00F00000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_1__S7_X_MASK 0x0F000000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_1__S7_Y_MASK 0xF0000000L
+//PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_2
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_2__S8_X__SHIFT 0x0
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_2__S8_Y__SHIFT 0x4
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_2__S9_X__SHIFT 0x8
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_2__S9_Y__SHIFT 0xc
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_2__S10_X__SHIFT 0x10
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_2__S10_Y__SHIFT 0x14
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_2__S11_X__SHIFT 0x18
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_2__S11_Y__SHIFT 0x1c
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_2__S8_X_MASK 0x0000000FL
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_2__S8_Y_MASK 0x000000F0L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_2__S9_X_MASK 0x00000F00L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_2__S9_Y_MASK 0x0000F000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_2__S10_X_MASK 0x000F0000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_2__S10_Y_MASK 0x00F00000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_2__S11_X_MASK 0x0F000000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_2__S11_Y_MASK 0xF0000000L
+//PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_3
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_3__S12_X__SHIFT 0x0
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_3__S12_Y__SHIFT 0x4
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_3__S13_X__SHIFT 0x8
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_3__S13_Y__SHIFT 0xc
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_3__S14_X__SHIFT 0x10
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_3__S14_Y__SHIFT 0x14
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_3__S15_X__SHIFT 0x18
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_3__S15_Y__SHIFT 0x1c
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_3__S12_X_MASK 0x0000000FL
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_3__S12_Y_MASK 0x000000F0L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_3__S13_X_MASK 0x00000F00L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_3__S13_Y_MASK 0x0000F000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_3__S14_X_MASK 0x000F0000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_3__S14_Y_MASK 0x00F00000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_3__S15_X_MASK 0x0F000000L
+#define PA_SC_AA_SAMPLE_LOCS_PIXEL_X1Y1_3__S15_Y_MASK 0xF0000000L
+//PA_SC_AA_MASK_X0Y0_X1Y0
+#define PA_SC_AA_MASK_X0Y0_X1Y0__AA_MASK_X0Y0__SHIFT 0x0
+#define PA_SC_AA_MASK_X0Y0_X1Y0__AA_MASK_X1Y0__SHIFT 0x10
+#define PA_SC_AA_MASK_X0Y0_X1Y0__AA_MASK_X0Y0_MASK 0x0000FFFFL
+#define PA_SC_AA_MASK_X0Y0_X1Y0__AA_MASK_X1Y0_MASK 0xFFFF0000L
+//PA_SC_AA_MASK_X0Y1_X1Y1
+#define PA_SC_AA_MASK_X0Y1_X1Y1__AA_MASK_X0Y1__SHIFT 0x0
+#define PA_SC_AA_MASK_X0Y1_X1Y1__AA_MASK_X1Y1__SHIFT 0x10
+#define PA_SC_AA_MASK_X0Y1_X1Y1__AA_MASK_X0Y1_MASK 0x0000FFFFL
+#define PA_SC_AA_MASK_X0Y1_X1Y1__AA_MASK_X1Y1_MASK 0xFFFF0000L
+//PA_SC_SHADER_CONTROL
+#define PA_SC_SHADER_CONTROL__REALIGN_DQUADS_AFTER_N_WAVES__SHIFT 0x0
+#define PA_SC_SHADER_CONTROL__LOAD_COLLISION_WAVEID__SHIFT 0x2
+#define PA_SC_SHADER_CONTROL__LOAD_INTRAWAVE_COLLISION__SHIFT 0x3
+#define PA_SC_SHADER_CONTROL__REALIGN_DQUADS_AFTER_N_WAVES_MASK 0x00000003L
+#define PA_SC_SHADER_CONTROL__LOAD_COLLISION_WAVEID_MASK 0x00000004L
+#define PA_SC_SHADER_CONTROL__LOAD_INTRAWAVE_COLLISION_MASK 0x00000008L
+//PA_SC_BINNER_CNTL_0
+#define PA_SC_BINNER_CNTL_0__BINNING_MODE__SHIFT 0x0
+#define PA_SC_BINNER_CNTL_0__BIN_SIZE_X__SHIFT 0x2
+#define PA_SC_BINNER_CNTL_0__BIN_SIZE_Y__SHIFT 0x3
+#define PA_SC_BINNER_CNTL_0__BIN_SIZE_X_EXTEND__SHIFT 0x4
+#define PA_SC_BINNER_CNTL_0__BIN_SIZE_Y_EXTEND__SHIFT 0x7
+#define PA_SC_BINNER_CNTL_0__CONTEXT_STATES_PER_BIN__SHIFT 0xa
+#define PA_SC_BINNER_CNTL_0__PERSISTENT_STATES_PER_BIN__SHIFT 0xd
+#define PA_SC_BINNER_CNTL_0__DISABLE_START_OF_PRIM__SHIFT 0x12
+#define PA_SC_BINNER_CNTL_0__FPOVS_PER_BATCH__SHIFT 0x13
+#define PA_SC_BINNER_CNTL_0__OPTIMAL_BIN_SELECTION__SHIFT 0x1b
+#define PA_SC_BINNER_CNTL_0__FLUSH_ON_BINNING_TRANSITION__SHIFT 0x1c
+#define PA_SC_BINNER_CNTL_0__BINNING_MODE_MASK 0x00000003L
+#define PA_SC_BINNER_CNTL_0__BIN_SIZE_X_MASK 0x00000004L
+#define PA_SC_BINNER_CNTL_0__BIN_SIZE_Y_MASK 0x00000008L
+#define PA_SC_BINNER_CNTL_0__BIN_SIZE_X_EXTEND_MASK 0x00000070L
+#define PA_SC_BINNER_CNTL_0__BIN_SIZE_Y_EXTEND_MASK 0x00000380L
+#define PA_SC_BINNER_CNTL_0__CONTEXT_STATES_PER_BIN_MASK 0x00001C00L
+#define PA_SC_BINNER_CNTL_0__PERSISTENT_STATES_PER_BIN_MASK 0x0003E000L
+#define PA_SC_BINNER_CNTL_0__DISABLE_START_OF_PRIM_MASK 0x00040000L
+#define PA_SC_BINNER_CNTL_0__FPOVS_PER_BATCH_MASK 0x07F80000L
+#define PA_SC_BINNER_CNTL_0__OPTIMAL_BIN_SELECTION_MASK 0x08000000L
+#define PA_SC_BINNER_CNTL_0__FLUSH_ON_BINNING_TRANSITION_MASK 0x10000000L
+//PA_SC_BINNER_CNTL_1
+#define PA_SC_BINNER_CNTL_1__MAX_ALLOC_COUNT__SHIFT 0x0
+#define PA_SC_BINNER_CNTL_1__MAX_PRIM_PER_BATCH__SHIFT 0x10
+#define PA_SC_BINNER_CNTL_1__MAX_ALLOC_COUNT_MASK 0x0000FFFFL
+#define PA_SC_BINNER_CNTL_1__MAX_PRIM_PER_BATCH_MASK 0xFFFF0000L
+//PA_SC_CONSERVATIVE_RASTERIZATION_CNTL
+#define PA_SC_CONSERVATIVE_RASTERIZATION_CNTL__OVER_RAST_ENABLE__SHIFT 0x0
+#define PA_SC_CONSERVATIVE_RASTERIZATION_CNTL__OVER_RAST_SAMPLE_SELECT__SHIFT 0x1
+#define PA_SC_CONSERVATIVE_RASTERIZATION_CNTL__UNDER_RAST_ENABLE__SHIFT 0x5
+#define PA_SC_CONSERVATIVE_RASTERIZATION_CNTL__UNDER_RAST_SAMPLE_SELECT__SHIFT 0x6
+#define PA_SC_CONSERVATIVE_RASTERIZATION_CNTL__PBB_UNCERTAINTY_REGION_ENABLE__SHIFT 0xa
+#define PA_SC_CONSERVATIVE_RASTERIZATION_CNTL__ZMM_TRI_EXTENT__SHIFT 0xb
+#define PA_SC_CONSERVATIVE_RASTERIZATION_CNTL__ZMM_TRI_OFFSET__SHIFT 0xc
+#define PA_SC_CONSERVATIVE_RASTERIZATION_CNTL__OVERRIDE_OVER_RAST_INNER_TO_NORMAL__SHIFT 0xd
+#define PA_SC_CONSERVATIVE_RASTERIZATION_CNTL__OVERRIDE_UNDER_RAST_INNER_TO_NORMAL__SHIFT 0xe
+#define PA_SC_CONSERVATIVE_RASTERIZATION_CNTL__DEGENERATE_OVERRIDE_INNER_TO_NORMAL_DISABLE__SHIFT 0xf
+#define PA_SC_CONSERVATIVE_RASTERIZATION_CNTL__UNCERTAINTY_REGION_MODE__SHIFT 0x10
+#define PA_SC_CONSERVATIVE_RASTERIZATION_CNTL__OUTER_UNCERTAINTY_EDGERULE_OVERRIDE__SHIFT 0x12
+#define PA_SC_CONSERVATIVE_RASTERIZATION_CNTL__INNER_UNCERTAINTY_EDGERULE_OVERRIDE__SHIFT 0x13
+#define PA_SC_CONSERVATIVE_RASTERIZATION_CNTL__NULL_SQUAD_AA_MASK_ENABLE__SHIFT 0x14
+#define PA_SC_CONSERVATIVE_RASTERIZATION_CNTL__COVERAGE_AA_MASK_ENABLE__SHIFT 0x15
+#define PA_SC_CONSERVATIVE_RASTERIZATION_CNTL__PREZ_AA_MASK_ENABLE__SHIFT 0x16
+#define PA_SC_CONSERVATIVE_RASTERIZATION_CNTL__POSTZ_AA_MASK_ENABLE__SHIFT 0x17
+#define PA_SC_CONSERVATIVE_RASTERIZATION_CNTL__CENTROID_SAMPLE_OVERRIDE__SHIFT 0x18
+#define PA_SC_CONSERVATIVE_RASTERIZATION_CNTL__OVER_RAST_ENABLE_MASK 0x00000001L
+#define PA_SC_CONSERVATIVE_RASTERIZATION_CNTL__OVER_RAST_SAMPLE_SELECT_MASK 0x0000001EL
+#define PA_SC_CONSERVATIVE_RASTERIZATION_CNTL__UNDER_RAST_ENABLE_MASK 0x00000020L
+#define PA_SC_CONSERVATIVE_RASTERIZATION_CNTL__UNDER_RAST_SAMPLE_SELECT_MASK 0x000003C0L
+#define PA_SC_CONSERVATIVE_RASTERIZATION_CNTL__PBB_UNCERTAINTY_REGION_ENABLE_MASK 0x00000400L
+#define PA_SC_CONSERVATIVE_RASTERIZATION_CNTL__ZMM_TRI_EXTENT_MASK 0x00000800L
+#define PA_SC_CONSERVATIVE_RASTERIZATION_CNTL__ZMM_TRI_OFFSET_MASK 0x00001000L
+#define PA_SC_CONSERVATIVE_RASTERIZATION_CNTL__OVERRIDE_OVER_RAST_INNER_TO_NORMAL_MASK 0x00002000L
+#define PA_SC_CONSERVATIVE_RASTERIZATION_CNTL__OVERRIDE_UNDER_RAST_INNER_TO_NORMAL_MASK 0x00004000L
+#define PA_SC_CONSERVATIVE_RASTERIZATION_CNTL__DEGENERATE_OVERRIDE_INNER_TO_NORMAL_DISABLE_MASK 0x00008000L
+#define PA_SC_CONSERVATIVE_RASTERIZATION_CNTL__UNCERTAINTY_REGION_MODE_MASK 0x00030000L
+#define PA_SC_CONSERVATIVE_RASTERIZATION_CNTL__OUTER_UNCERTAINTY_EDGERULE_OVERRIDE_MASK 0x00040000L
+#define PA_SC_CONSERVATIVE_RASTERIZATION_CNTL__INNER_UNCERTAINTY_EDGERULE_OVERRIDE_MASK 0x00080000L
+#define PA_SC_CONSERVATIVE_RASTERIZATION_CNTL__NULL_SQUAD_AA_MASK_ENABLE_MASK 0x00100000L
+#define PA_SC_CONSERVATIVE_RASTERIZATION_CNTL__COVERAGE_AA_MASK_ENABLE_MASK 0x00200000L
+#define PA_SC_CONSERVATIVE_RASTERIZATION_CNTL__PREZ_AA_MASK_ENABLE_MASK 0x00400000L
+#define PA_SC_CONSERVATIVE_RASTERIZATION_CNTL__POSTZ_AA_MASK_ENABLE_MASK 0x00800000L
+#define PA_SC_CONSERVATIVE_RASTERIZATION_CNTL__CENTROID_SAMPLE_OVERRIDE_MASK 0x01000000L
+//PA_SC_NGG_MODE_CNTL
+#define PA_SC_NGG_MODE_CNTL__MAX_DEALLOCS_IN_WAVE__SHIFT 0x0
+#define PA_SC_NGG_MODE_CNTL__MAX_DEALLOCS_IN_WAVE_MASK 0x000007FFL
+//VGT_VERTEX_REUSE_BLOCK_CNTL
+#define VGT_VERTEX_REUSE_BLOCK_CNTL__VTX_REUSE_DEPTH__SHIFT 0x0
+#define VGT_VERTEX_REUSE_BLOCK_CNTL__VTX_REUSE_DEPTH_MASK 0x000000FFL
+//VGT_OUT_DEALLOC_CNTL
+#define VGT_OUT_DEALLOC_CNTL__DEALLOC_DIST__SHIFT 0x0
+#define VGT_OUT_DEALLOC_CNTL__DEALLOC_DIST_MASK 0x0000007FL
+//CB_COLOR0_BASE
+#define CB_COLOR0_BASE__BASE_256B__SHIFT 0x0
+#define CB_COLOR0_BASE__BASE_256B_MASK 0xFFFFFFFFL
+//CB_COLOR0_BASE_EXT
+#define CB_COLOR0_BASE_EXT__BASE_256B__SHIFT 0x0
+#define CB_COLOR0_BASE_EXT__BASE_256B_MASK 0x000000FFL
+//CB_COLOR0_ATTRIB2
+#define CB_COLOR0_ATTRIB2__MIP0_HEIGHT__SHIFT 0x0
+#define CB_COLOR0_ATTRIB2__MIP0_WIDTH__SHIFT 0xe
+#define CB_COLOR0_ATTRIB2__MAX_MIP__SHIFT 0x1c
+#define CB_COLOR0_ATTRIB2__MIP0_HEIGHT_MASK 0x00003FFFL
+#define CB_COLOR0_ATTRIB2__MIP0_WIDTH_MASK 0x0FFFC000L
+#define CB_COLOR0_ATTRIB2__MAX_MIP_MASK 0xF0000000L
+//CB_COLOR0_VIEW
+#define CB_COLOR0_VIEW__SLICE_START__SHIFT 0x0
+#define CB_COLOR0_VIEW__SLICE_MAX__SHIFT 0xd
+#define CB_COLOR0_VIEW__MIP_LEVEL__SHIFT 0x18
+#define CB_COLOR0_VIEW__SLICE_START_MASK 0x000007FFL
+#define CB_COLOR0_VIEW__SLICE_MAX_MASK 0x00FFE000L
+#define CB_COLOR0_VIEW__MIP_LEVEL_MASK 0x0F000000L
+//CB_COLOR0_INFO
+#define CB_COLOR0_INFO__ENDIAN__SHIFT 0x0
+#define CB_COLOR0_INFO__FORMAT__SHIFT 0x2
+#define CB_COLOR0_INFO__NUMBER_TYPE__SHIFT 0x8
+#define CB_COLOR0_INFO__COMP_SWAP__SHIFT 0xb
+#define CB_COLOR0_INFO__FAST_CLEAR__SHIFT 0xd
+#define CB_COLOR0_INFO__COMPRESSION__SHIFT 0xe
+#define CB_COLOR0_INFO__BLEND_CLAMP__SHIFT 0xf
+#define CB_COLOR0_INFO__BLEND_BYPASS__SHIFT 0x10
+#define CB_COLOR0_INFO__SIMPLE_FLOAT__SHIFT 0x11
+#define CB_COLOR0_INFO__ROUND_MODE__SHIFT 0x12
+#define CB_COLOR0_INFO__BLEND_OPT_DONT_RD_DST__SHIFT 0x14
+#define CB_COLOR0_INFO__BLEND_OPT_DISCARD_PIXEL__SHIFT 0x17
+#define CB_COLOR0_INFO__FMASK_COMPRESSION_DISABLE__SHIFT 0x1a
+#define CB_COLOR0_INFO__FMASK_COMPRESS_1FRAG_ONLY__SHIFT 0x1b
+#define CB_COLOR0_INFO__DCC_ENABLE__SHIFT 0x1c
+#define CB_COLOR0_INFO__CMASK_ADDR_TYPE__SHIFT 0x1d
+#define CB_COLOR0_INFO__ENDIAN_MASK 0x00000003L
+#define CB_COLOR0_INFO__FORMAT_MASK 0x0000007CL
+#define CB_COLOR0_INFO__NUMBER_TYPE_MASK 0x00000700L
+#define CB_COLOR0_INFO__COMP_SWAP_MASK 0x00001800L
+#define CB_COLOR0_INFO__FAST_CLEAR_MASK 0x00002000L
+#define CB_COLOR0_INFO__COMPRESSION_MASK 0x00004000L
+#define CB_COLOR0_INFO__BLEND_CLAMP_MASK 0x00008000L
+#define CB_COLOR0_INFO__BLEND_BYPASS_MASK 0x00010000L
+#define CB_COLOR0_INFO__SIMPLE_FLOAT_MASK 0x00020000L
+#define CB_COLOR0_INFO__ROUND_MODE_MASK 0x00040000L
+#define CB_COLOR0_INFO__BLEND_OPT_DONT_RD_DST_MASK 0x00700000L
+#define CB_COLOR0_INFO__BLEND_OPT_DISCARD_PIXEL_MASK 0x03800000L
+#define CB_COLOR0_INFO__FMASK_COMPRESSION_DISABLE_MASK 0x04000000L
+#define CB_COLOR0_INFO__FMASK_COMPRESS_1FRAG_ONLY_MASK 0x08000000L
+#define CB_COLOR0_INFO__DCC_ENABLE_MASK 0x10000000L
+#define CB_COLOR0_INFO__CMASK_ADDR_TYPE_MASK 0x60000000L
+//CB_COLOR0_ATTRIB
+#define CB_COLOR0_ATTRIB__MIP0_DEPTH__SHIFT 0x0
+#define CB_COLOR0_ATTRIB__META_LINEAR__SHIFT 0xb
+#define CB_COLOR0_ATTRIB__NUM_SAMPLES__SHIFT 0xc
+#define CB_COLOR0_ATTRIB__NUM_FRAGMENTS__SHIFT 0xf
+#define CB_COLOR0_ATTRIB__FORCE_DST_ALPHA_1__SHIFT 0x11
+#define CB_COLOR0_ATTRIB__COLOR_SW_MODE__SHIFT 0x12
+#define CB_COLOR0_ATTRIB__FMASK_SW_MODE__SHIFT 0x17
+#define CB_COLOR0_ATTRIB__RESOURCE_TYPE__SHIFT 0x1c
+#define CB_COLOR0_ATTRIB__RB_ALIGNED__SHIFT 0x1e
+#define CB_COLOR0_ATTRIB__PIPE_ALIGNED__SHIFT 0x1f
+#define CB_COLOR0_ATTRIB__MIP0_DEPTH_MASK 0x000007FFL
+#define CB_COLOR0_ATTRIB__META_LINEAR_MASK 0x00000800L
+#define CB_COLOR0_ATTRIB__NUM_SAMPLES_MASK 0x00007000L
+#define CB_COLOR0_ATTRIB__NUM_FRAGMENTS_MASK 0x00018000L
+#define CB_COLOR0_ATTRIB__FORCE_DST_ALPHA_1_MASK 0x00020000L
+#define CB_COLOR0_ATTRIB__COLOR_SW_MODE_MASK 0x007C0000L
+#define CB_COLOR0_ATTRIB__FMASK_SW_MODE_MASK 0x0F800000L
+#define CB_COLOR0_ATTRIB__RESOURCE_TYPE_MASK 0x30000000L
+#define CB_COLOR0_ATTRIB__RB_ALIGNED_MASK 0x40000000L
+#define CB_COLOR0_ATTRIB__PIPE_ALIGNED_MASK 0x80000000L
+//CB_COLOR0_DCC_CONTROL
+#define CB_COLOR0_DCC_CONTROL__OVERWRITE_COMBINER_DISABLE__SHIFT 0x0
+#define CB_COLOR0_DCC_CONTROL__KEY_CLEAR_ENABLE__SHIFT 0x1
+#define CB_COLOR0_DCC_CONTROL__MAX_UNCOMPRESSED_BLOCK_SIZE__SHIFT 0x2
+#define CB_COLOR0_DCC_CONTROL__MIN_COMPRESSED_BLOCK_SIZE__SHIFT 0x4
+#define CB_COLOR0_DCC_CONTROL__MAX_COMPRESSED_BLOCK_SIZE__SHIFT 0x5
+#define CB_COLOR0_DCC_CONTROL__COLOR_TRANSFORM__SHIFT 0x7
+#define CB_COLOR0_DCC_CONTROL__INDEPENDENT_64B_BLOCKS__SHIFT 0x9
+#define CB_COLOR0_DCC_CONTROL__LOSSY_RGB_PRECISION__SHIFT 0xa
+#define CB_COLOR0_DCC_CONTROL__LOSSY_ALPHA_PRECISION__SHIFT 0xe
+#define CB_COLOR0_DCC_CONTROL__DISABLE_CONSTANT_ENCODE_REG__SHIFT 0x12
+#define CB_COLOR0_DCC_CONTROL__ENABLE_CONSTANT_ENCODE_REG_WRITE__SHIFT 0x13
+#define CB_COLOR0_DCC_CONTROL__OVERWRITE_COMBINER_DISABLE_MASK 0x00000001L
+#define CB_COLOR0_DCC_CONTROL__KEY_CLEAR_ENABLE_MASK 0x00000002L
+#define CB_COLOR0_DCC_CONTROL__MAX_UNCOMPRESSED_BLOCK_SIZE_MASK 0x0000000CL
+#define CB_COLOR0_DCC_CONTROL__MIN_COMPRESSED_BLOCK_SIZE_MASK 0x00000010L
+#define CB_COLOR0_DCC_CONTROL__MAX_COMPRESSED_BLOCK_SIZE_MASK 0x00000060L
+#define CB_COLOR0_DCC_CONTROL__COLOR_TRANSFORM_MASK 0x00000180L
+#define CB_COLOR0_DCC_CONTROL__INDEPENDENT_64B_BLOCKS_MASK 0x00000200L
+#define CB_COLOR0_DCC_CONTROL__LOSSY_RGB_PRECISION_MASK 0x00003C00L
+#define CB_COLOR0_DCC_CONTROL__LOSSY_ALPHA_PRECISION_MASK 0x0003C000L
+#define CB_COLOR0_DCC_CONTROL__DISABLE_CONSTANT_ENCODE_REG_MASK 0x00040000L
+#define CB_COLOR0_DCC_CONTROL__ENABLE_CONSTANT_ENCODE_REG_WRITE_MASK 0x00080000L
+//CB_COLOR0_CMASK
+#define CB_COLOR0_CMASK__BASE_256B__SHIFT 0x0
+#define CB_COLOR0_CMASK__BASE_256B_MASK 0xFFFFFFFFL
+//CB_COLOR0_CMASK_BASE_EXT
+#define CB_COLOR0_CMASK_BASE_EXT__BASE_256B__SHIFT 0x0
+#define CB_COLOR0_CMASK_BASE_EXT__BASE_256B_MASK 0x000000FFL
+//CB_COLOR0_FMASK
+#define CB_COLOR0_FMASK__BASE_256B__SHIFT 0x0
+#define CB_COLOR0_FMASK__BASE_256B_MASK 0xFFFFFFFFL
+//CB_COLOR0_FMASK_BASE_EXT
+#define CB_COLOR0_FMASK_BASE_EXT__BASE_256B__SHIFT 0x0
+#define CB_COLOR0_FMASK_BASE_EXT__BASE_256B_MASK 0x000000FFL
+//CB_COLOR0_CLEAR_WORD0
+#define CB_COLOR0_CLEAR_WORD0__CLEAR_WORD0__SHIFT 0x0
+#define CB_COLOR0_CLEAR_WORD0__CLEAR_WORD0_MASK 0xFFFFFFFFL
+//CB_COLOR0_CLEAR_WORD1
+#define CB_COLOR0_CLEAR_WORD1__CLEAR_WORD1__SHIFT 0x0
+#define CB_COLOR0_CLEAR_WORD1__CLEAR_WORD1_MASK 0xFFFFFFFFL
+//CB_COLOR0_DCC_BASE
+#define CB_COLOR0_DCC_BASE__BASE_256B__SHIFT 0x0
+#define CB_COLOR0_DCC_BASE__BASE_256B_MASK 0xFFFFFFFFL
+//CB_COLOR0_DCC_BASE_EXT
+#define CB_COLOR0_DCC_BASE_EXT__BASE_256B__SHIFT 0x0
+#define CB_COLOR0_DCC_BASE_EXT__BASE_256B_MASK 0x000000FFL
+//CB_COLOR1_BASE
+#define CB_COLOR1_BASE__BASE_256B__SHIFT 0x0
+#define CB_COLOR1_BASE__BASE_256B_MASK 0xFFFFFFFFL
+//CB_COLOR1_BASE_EXT
+#define CB_COLOR1_BASE_EXT__BASE_256B__SHIFT 0x0
+#define CB_COLOR1_BASE_EXT__BASE_256B_MASK 0x000000FFL
+//CB_COLOR1_ATTRIB2
+#define CB_COLOR1_ATTRIB2__MIP0_HEIGHT__SHIFT 0x0
+#define CB_COLOR1_ATTRIB2__MIP0_WIDTH__SHIFT 0xe
+#define CB_COLOR1_ATTRIB2__MAX_MIP__SHIFT 0x1c
+#define CB_COLOR1_ATTRIB2__MIP0_HEIGHT_MASK 0x00003FFFL
+#define CB_COLOR1_ATTRIB2__MIP0_WIDTH_MASK 0x0FFFC000L
+#define CB_COLOR1_ATTRIB2__MAX_MIP_MASK 0xF0000000L
+//CB_COLOR1_VIEW
+#define CB_COLOR1_VIEW__SLICE_START__SHIFT 0x0
+#define CB_COLOR1_VIEW__SLICE_MAX__SHIFT 0xd
+#define CB_COLOR1_VIEW__MIP_LEVEL__SHIFT 0x18
+#define CB_COLOR1_VIEW__SLICE_START_MASK 0x000007FFL
+#define CB_COLOR1_VIEW__SLICE_MAX_MASK 0x00FFE000L
+#define CB_COLOR1_VIEW__MIP_LEVEL_MASK 0x0F000000L
+//CB_COLOR1_INFO
+#define CB_COLOR1_INFO__ENDIAN__SHIFT 0x0
+#define CB_COLOR1_INFO__FORMAT__SHIFT 0x2
+#define CB_COLOR1_INFO__NUMBER_TYPE__SHIFT 0x8
+#define CB_COLOR1_INFO__COMP_SWAP__SHIFT 0xb
+#define CB_COLOR1_INFO__FAST_CLEAR__SHIFT 0xd
+#define CB_COLOR1_INFO__COMPRESSION__SHIFT 0xe
+#define CB_COLOR1_INFO__BLEND_CLAMP__SHIFT 0xf
+#define CB_COLOR1_INFO__BLEND_BYPASS__SHIFT 0x10
+#define CB_COLOR1_INFO__SIMPLE_FLOAT__SHIFT 0x11
+#define CB_COLOR1_INFO__ROUND_MODE__SHIFT 0x12
+#define CB_COLOR1_INFO__BLEND_OPT_DONT_RD_DST__SHIFT 0x14
+#define CB_COLOR1_INFO__BLEND_OPT_DISCARD_PIXEL__SHIFT 0x17
+#define CB_COLOR1_INFO__FMASK_COMPRESSION_DISABLE__SHIFT 0x1a
+#define CB_COLOR1_INFO__FMASK_COMPRESS_1FRAG_ONLY__SHIFT 0x1b
+#define CB_COLOR1_INFO__DCC_ENABLE__SHIFT 0x1c
+#define CB_COLOR1_INFO__CMASK_ADDR_TYPE__SHIFT 0x1d
+#define CB_COLOR1_INFO__ENDIAN_MASK 0x00000003L
+#define CB_COLOR1_INFO__FORMAT_MASK 0x0000007CL
+#define CB_COLOR1_INFO__NUMBER_TYPE_MASK 0x00000700L
+#define CB_COLOR1_INFO__COMP_SWAP_MASK 0x00001800L
+#define CB_COLOR1_INFO__FAST_CLEAR_MASK 0x00002000L
+#define CB_COLOR1_INFO__COMPRESSION_MASK 0x00004000L
+#define CB_COLOR1_INFO__BLEND_CLAMP_MASK 0x00008000L
+#define CB_COLOR1_INFO__BLEND_BYPASS_MASK 0x00010000L
+#define CB_COLOR1_INFO__SIMPLE_FLOAT_MASK 0x00020000L
+#define CB_COLOR1_INFO__ROUND_MODE_MASK 0x00040000L
+#define CB_COLOR1_INFO__BLEND_OPT_DONT_RD_DST_MASK 0x00700000L
+#define CB_COLOR1_INFO__BLEND_OPT_DISCARD_PIXEL_MASK 0x03800000L
+#define CB_COLOR1_INFO__FMASK_COMPRESSION_DISABLE_MASK 0x04000000L
+#define CB_COLOR1_INFO__FMASK_COMPRESS_1FRAG_ONLY_MASK 0x08000000L
+#define CB_COLOR1_INFO__DCC_ENABLE_MASK 0x10000000L
+#define CB_COLOR1_INFO__CMASK_ADDR_TYPE_MASK 0x60000000L
+//CB_COLOR1_ATTRIB
+#define CB_COLOR1_ATTRIB__MIP0_DEPTH__SHIFT 0x0
+#define CB_COLOR1_ATTRIB__META_LINEAR__SHIFT 0xb
+#define CB_COLOR1_ATTRIB__NUM_SAMPLES__SHIFT 0xc
+#define CB_COLOR1_ATTRIB__NUM_FRAGMENTS__SHIFT 0xf
+#define CB_COLOR1_ATTRIB__FORCE_DST_ALPHA_1__SHIFT 0x11
+#define CB_COLOR1_ATTRIB__COLOR_SW_MODE__SHIFT 0x12
+#define CB_COLOR1_ATTRIB__FMASK_SW_MODE__SHIFT 0x17
+#define CB_COLOR1_ATTRIB__RESOURCE_TYPE__SHIFT 0x1c
+#define CB_COLOR1_ATTRIB__RB_ALIGNED__SHIFT 0x1e
+#define CB_COLOR1_ATTRIB__PIPE_ALIGNED__SHIFT 0x1f
+#define CB_COLOR1_ATTRIB__MIP0_DEPTH_MASK 0x000007FFL
+#define CB_COLOR1_ATTRIB__META_LINEAR_MASK 0x00000800L
+#define CB_COLOR1_ATTRIB__NUM_SAMPLES_MASK 0x00007000L
+#define CB_COLOR1_ATTRIB__NUM_FRAGMENTS_MASK 0x00018000L
+#define CB_COLOR1_ATTRIB__FORCE_DST_ALPHA_1_MASK 0x00020000L
+#define CB_COLOR1_ATTRIB__COLOR_SW_MODE_MASK 0x007C0000L
+#define CB_COLOR1_ATTRIB__FMASK_SW_MODE_MASK 0x0F800000L
+#define CB_COLOR1_ATTRIB__RESOURCE_TYPE_MASK 0x30000000L
+#define CB_COLOR1_ATTRIB__RB_ALIGNED_MASK 0x40000000L
+#define CB_COLOR1_ATTRIB__PIPE_ALIGNED_MASK 0x80000000L
+//CB_COLOR1_DCC_CONTROL
+#define CB_COLOR1_DCC_CONTROL__OVERWRITE_COMBINER_DISABLE__SHIFT 0x0
+#define CB_COLOR1_DCC_CONTROL__KEY_CLEAR_ENABLE__SHIFT 0x1
+#define CB_COLOR1_DCC_CONTROL__MAX_UNCOMPRESSED_BLOCK_SIZE__SHIFT 0x2
+#define CB_COLOR1_DCC_CONTROL__MIN_COMPRESSED_BLOCK_SIZE__SHIFT 0x4
+#define CB_COLOR1_DCC_CONTROL__MAX_COMPRESSED_BLOCK_SIZE__SHIFT 0x5
+#define CB_COLOR1_DCC_CONTROL__COLOR_TRANSFORM__SHIFT 0x7
+#define CB_COLOR1_DCC_CONTROL__INDEPENDENT_64B_BLOCKS__SHIFT 0x9
+#define CB_COLOR1_DCC_CONTROL__LOSSY_RGB_PRECISION__SHIFT 0xa
+#define CB_COLOR1_DCC_CONTROL__LOSSY_ALPHA_PRECISION__SHIFT 0xe
+#define CB_COLOR1_DCC_CONTROL__DISABLE_CONSTANT_ENCODE_REG__SHIFT 0x12
+#define CB_COLOR1_DCC_CONTROL__ENABLE_CONSTANT_ENCODE_REG_WRITE__SHIFT 0x13
+#define CB_COLOR1_DCC_CONTROL__OVERWRITE_COMBINER_DISABLE_MASK 0x00000001L
+#define CB_COLOR1_DCC_CONTROL__KEY_CLEAR_ENABLE_MASK 0x00000002L
+#define CB_COLOR1_DCC_CONTROL__MAX_UNCOMPRESSED_BLOCK_SIZE_MASK 0x0000000CL
+#define CB_COLOR1_DCC_CONTROL__MIN_COMPRESSED_BLOCK_SIZE_MASK 0x00000010L
+#define CB_COLOR1_DCC_CONTROL__MAX_COMPRESSED_BLOCK_SIZE_MASK 0x00000060L
+#define CB_COLOR1_DCC_CONTROL__COLOR_TRANSFORM_MASK 0x00000180L
+#define CB_COLOR1_DCC_CONTROL__INDEPENDENT_64B_BLOCKS_MASK 0x00000200L
+#define CB_COLOR1_DCC_CONTROL__LOSSY_RGB_PRECISION_MASK 0x00003C00L
+#define CB_COLOR1_DCC_CONTROL__LOSSY_ALPHA_PRECISION_MASK 0x0003C000L
+#define CB_COLOR1_DCC_CONTROL__DISABLE_CONSTANT_ENCODE_REG_MASK 0x00040000L
+#define CB_COLOR1_DCC_CONTROL__ENABLE_CONSTANT_ENCODE_REG_WRITE_MASK 0x00080000L
+//CB_COLOR1_CMASK
+#define CB_COLOR1_CMASK__BASE_256B__SHIFT 0x0
+#define CB_COLOR1_CMASK__BASE_256B_MASK 0xFFFFFFFFL
+//CB_COLOR1_CMASK_BASE_EXT
+#define CB_COLOR1_CMASK_BASE_EXT__BASE_256B__SHIFT 0x0
+#define CB_COLOR1_CMASK_BASE_EXT__BASE_256B_MASK 0x000000FFL
+//CB_COLOR1_FMASK
+#define CB_COLOR1_FMASK__BASE_256B__SHIFT 0x0
+#define CB_COLOR1_FMASK__BASE_256B_MASK 0xFFFFFFFFL
+//CB_COLOR1_FMASK_BASE_EXT
+#define CB_COLOR1_FMASK_BASE_EXT__BASE_256B__SHIFT 0x0
+#define CB_COLOR1_FMASK_BASE_EXT__BASE_256B_MASK 0x000000FFL
+//CB_COLOR1_CLEAR_WORD0
+#define CB_COLOR1_CLEAR_WORD0__CLEAR_WORD0__SHIFT 0x0
+#define CB_COLOR1_CLEAR_WORD0__CLEAR_WORD0_MASK 0xFFFFFFFFL
+//CB_COLOR1_CLEAR_WORD1
+#define CB_COLOR1_CLEAR_WORD1__CLEAR_WORD1__SHIFT 0x0
+#define CB_COLOR1_CLEAR_WORD1__CLEAR_WORD1_MASK 0xFFFFFFFFL
+//CB_COLOR1_DCC_BASE
+#define CB_COLOR1_DCC_BASE__BASE_256B__SHIFT 0x0
+#define CB_COLOR1_DCC_BASE__BASE_256B_MASK 0xFFFFFFFFL
+//CB_COLOR1_DCC_BASE_EXT
+#define CB_COLOR1_DCC_BASE_EXT__BASE_256B__SHIFT 0x0
+#define CB_COLOR1_DCC_BASE_EXT__BASE_256B_MASK 0x000000FFL
+//CB_COLOR2_BASE
+#define CB_COLOR2_BASE__BASE_256B__SHIFT 0x0
+#define CB_COLOR2_BASE__BASE_256B_MASK 0xFFFFFFFFL
+//CB_COLOR2_BASE_EXT
+#define CB_COLOR2_BASE_EXT__BASE_256B__SHIFT 0x0
+#define CB_COLOR2_BASE_EXT__BASE_256B_MASK 0x000000FFL
+//CB_COLOR2_ATTRIB2
+#define CB_COLOR2_ATTRIB2__MIP0_HEIGHT__SHIFT 0x0
+#define CB_COLOR2_ATTRIB2__MIP0_WIDTH__SHIFT 0xe
+#define CB_COLOR2_ATTRIB2__MAX_MIP__SHIFT 0x1c
+#define CB_COLOR2_ATTRIB2__MIP0_HEIGHT_MASK 0x00003FFFL
+#define CB_COLOR2_ATTRIB2__MIP0_WIDTH_MASK 0x0FFFC000L
+#define CB_COLOR2_ATTRIB2__MAX_MIP_MASK 0xF0000000L
+//CB_COLOR2_VIEW
+#define CB_COLOR2_VIEW__SLICE_START__SHIFT 0x0
+#define CB_COLOR2_VIEW__SLICE_MAX__SHIFT 0xd
+#define CB_COLOR2_VIEW__MIP_LEVEL__SHIFT 0x18
+#define CB_COLOR2_VIEW__SLICE_START_MASK 0x000007FFL
+#define CB_COLOR2_VIEW__SLICE_MAX_MASK 0x00FFE000L
+#define CB_COLOR2_VIEW__MIP_LEVEL_MASK 0x0F000000L
+//CB_COLOR2_INFO
+#define CB_COLOR2_INFO__ENDIAN__SHIFT 0x0
+#define CB_COLOR2_INFO__FORMAT__SHIFT 0x2
+#define CB_COLOR2_INFO__NUMBER_TYPE__SHIFT 0x8
+#define CB_COLOR2_INFO__COMP_SWAP__SHIFT 0xb
+#define CB_COLOR2_INFO__FAST_CLEAR__SHIFT 0xd
+#define CB_COLOR2_INFO__COMPRESSION__SHIFT 0xe
+#define CB_COLOR2_INFO__BLEND_CLAMP__SHIFT 0xf
+#define CB_COLOR2_INFO__BLEND_BYPASS__SHIFT 0x10
+#define CB_COLOR2_INFO__SIMPLE_FLOAT__SHIFT 0x11
+#define CB_COLOR2_INFO__ROUND_MODE__SHIFT 0x12
+#define CB_COLOR2_INFO__BLEND_OPT_DONT_RD_DST__SHIFT 0x14
+#define CB_COLOR2_INFO__BLEND_OPT_DISCARD_PIXEL__SHIFT 0x17
+#define CB_COLOR2_INFO__FMASK_COMPRESSION_DISABLE__SHIFT 0x1a
+#define CB_COLOR2_INFO__FMASK_COMPRESS_1FRAG_ONLY__SHIFT 0x1b
+#define CB_COLOR2_INFO__DCC_ENABLE__SHIFT 0x1c
+#define CB_COLOR2_INFO__CMASK_ADDR_TYPE__SHIFT 0x1d
+#define CB_COLOR2_INFO__ENDIAN_MASK 0x00000003L
+#define CB_COLOR2_INFO__FORMAT_MASK 0x0000007CL
+#define CB_COLOR2_INFO__NUMBER_TYPE_MASK 0x00000700L
+#define CB_COLOR2_INFO__COMP_SWAP_MASK 0x00001800L
+#define CB_COLOR2_INFO__FAST_CLEAR_MASK 0x00002000L
+#define CB_COLOR2_INFO__COMPRESSION_MASK 0x00004000L
+#define CB_COLOR2_INFO__BLEND_CLAMP_MASK 0x00008000L
+#define CB_COLOR2_INFO__BLEND_BYPASS_MASK 0x00010000L
+#define CB_COLOR2_INFO__SIMPLE_FLOAT_MASK 0x00020000L
+#define CB_COLOR2_INFO__ROUND_MODE_MASK 0x00040000L
+#define CB_COLOR2_INFO__BLEND_OPT_DONT_RD_DST_MASK 0x00700000L
+#define CB_COLOR2_INFO__BLEND_OPT_DISCARD_PIXEL_MASK 0x03800000L
+#define CB_COLOR2_INFO__FMASK_COMPRESSION_DISABLE_MASK 0x04000000L
+#define CB_COLOR2_INFO__FMASK_COMPRESS_1FRAG_ONLY_MASK 0x08000000L
+#define CB_COLOR2_INFO__DCC_ENABLE_MASK 0x10000000L
+#define CB_COLOR2_INFO__CMASK_ADDR_TYPE_MASK 0x60000000L
+//CB_COLOR2_ATTRIB
+#define CB_COLOR2_ATTRIB__MIP0_DEPTH__SHIFT 0x0
+#define CB_COLOR2_ATTRIB__META_LINEAR__SHIFT 0xb
+#define CB_COLOR2_ATTRIB__NUM_SAMPLES__SHIFT 0xc
+#define CB_COLOR2_ATTRIB__NUM_FRAGMENTS__SHIFT 0xf
+#define CB_COLOR2_ATTRIB__FORCE_DST_ALPHA_1__SHIFT 0x11
+#define CB_COLOR2_ATTRIB__COLOR_SW_MODE__SHIFT 0x12
+#define CB_COLOR2_ATTRIB__FMASK_SW_MODE__SHIFT 0x17
+#define CB_COLOR2_ATTRIB__RESOURCE_TYPE__SHIFT 0x1c
+#define CB_COLOR2_ATTRIB__RB_ALIGNED__SHIFT 0x1e
+#define CB_COLOR2_ATTRIB__PIPE_ALIGNED__SHIFT 0x1f
+#define CB_COLOR2_ATTRIB__MIP0_DEPTH_MASK 0x000007FFL
+#define CB_COLOR2_ATTRIB__META_LINEAR_MASK 0x00000800L
+#define CB_COLOR2_ATTRIB__NUM_SAMPLES_MASK 0x00007000L
+#define CB_COLOR2_ATTRIB__NUM_FRAGMENTS_MASK 0x00018000L
+#define CB_COLOR2_ATTRIB__FORCE_DST_ALPHA_1_MASK 0x00020000L
+#define CB_COLOR2_ATTRIB__COLOR_SW_MODE_MASK 0x007C0000L
+#define CB_COLOR2_ATTRIB__FMASK_SW_MODE_MASK 0x0F800000L
+#define CB_COLOR2_ATTRIB__RESOURCE_TYPE_MASK 0x30000000L
+#define CB_COLOR2_ATTRIB__RB_ALIGNED_MASK 0x40000000L
+#define CB_COLOR2_ATTRIB__PIPE_ALIGNED_MASK 0x80000000L
+//CB_COLOR2_DCC_CONTROL
+#define CB_COLOR2_DCC_CONTROL__OVERWRITE_COMBINER_DISABLE__SHIFT 0x0
+#define CB_COLOR2_DCC_CONTROL__KEY_CLEAR_ENABLE__SHIFT 0x1
+#define CB_COLOR2_DCC_CONTROL__MAX_UNCOMPRESSED_BLOCK_SIZE__SHIFT 0x2
+#define CB_COLOR2_DCC_CONTROL__MIN_COMPRESSED_BLOCK_SIZE__SHIFT 0x4
+#define CB_COLOR2_DCC_CONTROL__MAX_COMPRESSED_BLOCK_SIZE__SHIFT 0x5
+#define CB_COLOR2_DCC_CONTROL__COLOR_TRANSFORM__SHIFT 0x7
+#define CB_COLOR2_DCC_CONTROL__INDEPENDENT_64B_BLOCKS__SHIFT 0x9
+#define CB_COLOR2_DCC_CONTROL__LOSSY_RGB_PRECISION__SHIFT 0xa
+#define CB_COLOR2_DCC_CONTROL__LOSSY_ALPHA_PRECISION__SHIFT 0xe
+#define CB_COLOR2_DCC_CONTROL__DISABLE_CONSTANT_ENCODE_REG__SHIFT 0x12
+#define CB_COLOR2_DCC_CONTROL__ENABLE_CONSTANT_ENCODE_REG_WRITE__SHIFT 0x13
+#define CB_COLOR2_DCC_CONTROL__OVERWRITE_COMBINER_DISABLE_MASK 0x00000001L
+#define CB_COLOR2_DCC_CONTROL__KEY_CLEAR_ENABLE_MASK 0x00000002L
+#define CB_COLOR2_DCC_CONTROL__MAX_UNCOMPRESSED_BLOCK_SIZE_MASK 0x0000000CL
+#define CB_COLOR2_DCC_CONTROL__MIN_COMPRESSED_BLOCK_SIZE_MASK 0x00000010L
+#define CB_COLOR2_DCC_CONTROL__MAX_COMPRESSED_BLOCK_SIZE_MASK 0x00000060L
+#define CB_COLOR2_DCC_CONTROL__COLOR_TRANSFORM_MASK 0x00000180L
+#define CB_COLOR2_DCC_CONTROL__INDEPENDENT_64B_BLOCKS_MASK 0x00000200L
+#define CB_COLOR2_DCC_CONTROL__LOSSY_RGB_PRECISION_MASK 0x00003C00L
+#define CB_COLOR2_DCC_CONTROL__LOSSY_ALPHA_PRECISION_MASK 0x0003C000L
+#define CB_COLOR2_DCC_CONTROL__DISABLE_CONSTANT_ENCODE_REG_MASK 0x00040000L
+#define CB_COLOR2_DCC_CONTROL__ENABLE_CONSTANT_ENCODE_REG_WRITE_MASK 0x00080000L
+//CB_COLOR2_CMASK
+#define CB_COLOR2_CMASK__BASE_256B__SHIFT 0x0
+#define CB_COLOR2_CMASK__BASE_256B_MASK 0xFFFFFFFFL
+//CB_COLOR2_CMASK_BASE_EXT
+#define CB_COLOR2_CMASK_BASE_EXT__BASE_256B__SHIFT 0x0
+#define CB_COLOR2_CMASK_BASE_EXT__BASE_256B_MASK 0x000000FFL
+//CB_COLOR2_FMASK
+#define CB_COLOR2_FMASK__BASE_256B__SHIFT 0x0
+#define CB_COLOR2_FMASK__BASE_256B_MASK 0xFFFFFFFFL
+//CB_COLOR2_FMASK_BASE_EXT
+#define CB_COLOR2_FMASK_BASE_EXT__BASE_256B__SHIFT 0x0
+#define CB_COLOR2_FMASK_BASE_EXT__BASE_256B_MASK 0x000000FFL
+//CB_COLOR2_CLEAR_WORD0
+#define CB_COLOR2_CLEAR_WORD0__CLEAR_WORD0__SHIFT 0x0
+#define CB_COLOR2_CLEAR_WORD0__CLEAR_WORD0_MASK 0xFFFFFFFFL
+//CB_COLOR2_CLEAR_WORD1
+#define CB_COLOR2_CLEAR_WORD1__CLEAR_WORD1__SHIFT 0x0
+#define CB_COLOR2_CLEAR_WORD1__CLEAR_WORD1_MASK 0xFFFFFFFFL
+//CB_COLOR2_DCC_BASE
+#define CB_COLOR2_DCC_BASE__BASE_256B__SHIFT 0x0
+#define CB_COLOR2_DCC_BASE__BASE_256B_MASK 0xFFFFFFFFL
+//CB_COLOR2_DCC_BASE_EXT
+#define CB_COLOR2_DCC_BASE_EXT__BASE_256B__SHIFT 0x0
+#define CB_COLOR2_DCC_BASE_EXT__BASE_256B_MASK 0x000000FFL
+//CB_COLOR3_BASE
+#define CB_COLOR3_BASE__BASE_256B__SHIFT 0x0
+#define CB_COLOR3_BASE__BASE_256B_MASK 0xFFFFFFFFL
+//CB_COLOR3_BASE_EXT
+#define CB_COLOR3_BASE_EXT__BASE_256B__SHIFT 0x0
+#define CB_COLOR3_BASE_EXT__BASE_256B_MASK 0x000000FFL
+//CB_COLOR3_ATTRIB2
+#define CB_COLOR3_ATTRIB2__MIP0_HEIGHT__SHIFT 0x0
+#define CB_COLOR3_ATTRIB2__MIP0_WIDTH__SHIFT 0xe
+#define CB_COLOR3_ATTRIB2__MAX_MIP__SHIFT 0x1c
+#define CB_COLOR3_ATTRIB2__MIP0_HEIGHT_MASK 0x00003FFFL
+#define CB_COLOR3_ATTRIB2__MIP0_WIDTH_MASK 0x0FFFC000L
+#define CB_COLOR3_ATTRIB2__MAX_MIP_MASK 0xF0000000L
+//CB_COLOR3_VIEW
+#define CB_COLOR3_VIEW__SLICE_START__SHIFT 0x0
+#define CB_COLOR3_VIEW__SLICE_MAX__SHIFT 0xd
+#define CB_COLOR3_VIEW__MIP_LEVEL__SHIFT 0x18
+#define CB_COLOR3_VIEW__SLICE_START_MASK 0x000007FFL
+#define CB_COLOR3_VIEW__SLICE_MAX_MASK 0x00FFE000L
+#define CB_COLOR3_VIEW__MIP_LEVEL_MASK 0x0F000000L
+//CB_COLOR3_INFO
+#define CB_COLOR3_INFO__ENDIAN__SHIFT 0x0
+#define CB_COLOR3_INFO__FORMAT__SHIFT 0x2
+#define CB_COLOR3_INFO__NUMBER_TYPE__SHIFT 0x8
+#define CB_COLOR3_INFO__COMP_SWAP__SHIFT 0xb
+#define CB_COLOR3_INFO__FAST_CLEAR__SHIFT 0xd
+#define CB_COLOR3_INFO__COMPRESSION__SHIFT 0xe
+#define CB_COLOR3_INFO__BLEND_CLAMP__SHIFT 0xf
+#define CB_COLOR3_INFO__BLEND_BYPASS__SHIFT 0x10
+#define CB_COLOR3_INFO__SIMPLE_FLOAT__SHIFT 0x11
+#define CB_COLOR3_INFO__ROUND_MODE__SHIFT 0x12
+#define CB_COLOR3_INFO__BLEND_OPT_DONT_RD_DST__SHIFT 0x14
+#define CB_COLOR3_INFO__BLEND_OPT_DISCARD_PIXEL__SHIFT 0x17
+#define CB_COLOR3_INFO__FMASK_COMPRESSION_DISABLE__SHIFT 0x1a
+#define CB_COLOR3_INFO__FMASK_COMPRESS_1FRAG_ONLY__SHIFT 0x1b
+#define CB_COLOR3_INFO__DCC_ENABLE__SHIFT 0x1c
+#define CB_COLOR3_INFO__CMASK_ADDR_TYPE__SHIFT 0x1d
+#define CB_COLOR3_INFO__ENDIAN_MASK 0x00000003L
+#define CB_COLOR3_INFO__FORMAT_MASK 0x0000007CL
+#define CB_COLOR3_INFO__NUMBER_TYPE_MASK 0x00000700L
+#define CB_COLOR3_INFO__COMP_SWAP_MASK 0x00001800L
+#define CB_COLOR3_INFO__FAST_CLEAR_MASK 0x00002000L
+#define CB_COLOR3_INFO__COMPRESSION_MASK 0x00004000L
+#define CB_COLOR3_INFO__BLEND_CLAMP_MASK 0x00008000L
+#define CB_COLOR3_INFO__BLEND_BYPASS_MASK 0x00010000L
+#define CB_COLOR3_INFO__SIMPLE_FLOAT_MASK 0x00020000L
+#define CB_COLOR3_INFO__ROUND_MODE_MASK 0x00040000L
+#define CB_COLOR3_INFO__BLEND_OPT_DONT_RD_DST_MASK 0x00700000L
+#define CB_COLOR3_INFO__BLEND_OPT_DISCARD_PIXEL_MASK 0x03800000L
+#define CB_COLOR3_INFO__FMASK_COMPRESSION_DISABLE_MASK 0x04000000L
+#define CB_COLOR3_INFO__FMASK_COMPRESS_1FRAG_ONLY_MASK 0x08000000L
+#define CB_COLOR3_INFO__DCC_ENABLE_MASK 0x10000000L
+#define CB_COLOR3_INFO__CMASK_ADDR_TYPE_MASK 0x60000000L
+//CB_COLOR3_ATTRIB
+#define CB_COLOR3_ATTRIB__MIP0_DEPTH__SHIFT 0x0
+#define CB_COLOR3_ATTRIB__META_LINEAR__SHIFT 0xb
+#define CB_COLOR3_ATTRIB__NUM_SAMPLES__SHIFT 0xc
+#define CB_COLOR3_ATTRIB__NUM_FRAGMENTS__SHIFT 0xf
+#define CB_COLOR3_ATTRIB__FORCE_DST_ALPHA_1__SHIFT 0x11
+#define CB_COLOR3_ATTRIB__COLOR_SW_MODE__SHIFT 0x12
+#define CB_COLOR3_ATTRIB__FMASK_SW_MODE__SHIFT 0x17
+#define CB_COLOR3_ATTRIB__RESOURCE_TYPE__SHIFT 0x1c
+#define CB_COLOR3_ATTRIB__RB_ALIGNED__SHIFT 0x1e
+#define CB_COLOR3_ATTRIB__PIPE_ALIGNED__SHIFT 0x1f
+#define CB_COLOR3_ATTRIB__MIP0_DEPTH_MASK 0x000007FFL
+#define CB_COLOR3_ATTRIB__META_LINEAR_MASK 0x00000800L
+#define CB_COLOR3_ATTRIB__NUM_SAMPLES_MASK 0x00007000L
+#define CB_COLOR3_ATTRIB__NUM_FRAGMENTS_MASK 0x00018000L
+#define CB_COLOR3_ATTRIB__FORCE_DST_ALPHA_1_MASK 0x00020000L
+#define CB_COLOR3_ATTRIB__COLOR_SW_MODE_MASK 0x007C0000L
+#define CB_COLOR3_ATTRIB__FMASK_SW_MODE_MASK 0x0F800000L
+#define CB_COLOR3_ATTRIB__RESOURCE_TYPE_MASK 0x30000000L
+#define CB_COLOR3_ATTRIB__RB_ALIGNED_MASK 0x40000000L
+#define CB_COLOR3_ATTRIB__PIPE_ALIGNED_MASK 0x80000000L
+//CB_COLOR3_DCC_CONTROL
+#define CB_COLOR3_DCC_CONTROL__OVERWRITE_COMBINER_DISABLE__SHIFT 0x0
+#define CB_COLOR3_DCC_CONTROL__KEY_CLEAR_ENABLE__SHIFT 0x1
+#define CB_COLOR3_DCC_CONTROL__MAX_UNCOMPRESSED_BLOCK_SIZE__SHIFT 0x2
+#define CB_COLOR3_DCC_CONTROL__MIN_COMPRESSED_BLOCK_SIZE__SHIFT 0x4
+#define CB_COLOR3_DCC_CONTROL__MAX_COMPRESSED_BLOCK_SIZE__SHIFT 0x5
+#define CB_COLOR3_DCC_CONTROL__COLOR_TRANSFORM__SHIFT 0x7
+#define CB_COLOR3_DCC_CONTROL__INDEPENDENT_64B_BLOCKS__SHIFT 0x9
+#define CB_COLOR3_DCC_CONTROL__LOSSY_RGB_PRECISION__SHIFT 0xa
+#define CB_COLOR3_DCC_CONTROL__LOSSY_ALPHA_PRECISION__SHIFT 0xe
+#define CB_COLOR3_DCC_CONTROL__DISABLE_CONSTANT_ENCODE_REG__SHIFT 0x12
+#define CB_COLOR3_DCC_CONTROL__ENABLE_CONSTANT_ENCODE_REG_WRITE__SHIFT 0x13
+#define CB_COLOR3_DCC_CONTROL__OVERWRITE_COMBINER_DISABLE_MASK 0x00000001L
+#define CB_COLOR3_DCC_CONTROL__KEY_CLEAR_ENABLE_MASK 0x00000002L
+#define CB_COLOR3_DCC_CONTROL__MAX_UNCOMPRESSED_BLOCK_SIZE_MASK 0x0000000CL
+#define CB_COLOR3_DCC_CONTROL__MIN_COMPRESSED_BLOCK_SIZE_MASK 0x00000010L
+#define CB_COLOR3_DCC_CONTROL__MAX_COMPRESSED_BLOCK_SIZE_MASK 0x00000060L
+#define CB_COLOR3_DCC_CONTROL__COLOR_TRANSFORM_MASK 0x00000180L
+#define CB_COLOR3_DCC_CONTROL__INDEPENDENT_64B_BLOCKS_MASK 0x00000200L
+#define CB_COLOR3_DCC_CONTROL__LOSSY_RGB_PRECISION_MASK 0x00003C00L
+#define CB_COLOR3_DCC_CONTROL__LOSSY_ALPHA_PRECISION_MASK 0x0003C000L
+#define CB_COLOR3_DCC_CONTROL__DISABLE_CONSTANT_ENCODE_REG_MASK 0x00040000L
+#define CB_COLOR3_DCC_CONTROL__ENABLE_CONSTANT_ENCODE_REG_WRITE_MASK 0x00080000L
+//CB_COLOR3_CMASK
+#define CB_COLOR3_CMASK__BASE_256B__SHIFT 0x0
+#define CB_COLOR3_CMASK__BASE_256B_MASK 0xFFFFFFFFL
+//CB_COLOR3_CMASK_BASE_EXT
+#define CB_COLOR3_CMASK_BASE_EXT__BASE_256B__SHIFT 0x0
+#define CB_COLOR3_CMASK_BASE_EXT__BASE_256B_MASK 0x000000FFL
+//CB_COLOR3_FMASK
+#define CB_COLOR3_FMASK__BASE_256B__SHIFT 0x0
+#define CB_COLOR3_FMASK__BASE_256B_MASK 0xFFFFFFFFL
+//CB_COLOR3_FMASK_BASE_EXT
+#define CB_COLOR3_FMASK_BASE_EXT__BASE_256B__SHIFT 0x0
+#define CB_COLOR3_FMASK_BASE_EXT__BASE_256B_MASK 0x000000FFL
+//CB_COLOR3_CLEAR_WORD0
+#define CB_COLOR3_CLEAR_WORD0__CLEAR_WORD0__SHIFT 0x0
+#define CB_COLOR3_CLEAR_WORD0__CLEAR_WORD0_MASK 0xFFFFFFFFL
+//CB_COLOR3_CLEAR_WORD1
+#define CB_COLOR3_CLEAR_WORD1__CLEAR_WORD1__SHIFT 0x0
+#define CB_COLOR3_CLEAR_WORD1__CLEAR_WORD1_MASK 0xFFFFFFFFL
+//CB_COLOR3_DCC_BASE
+#define CB_COLOR3_DCC_BASE__BASE_256B__SHIFT 0x0
+#define CB_COLOR3_DCC_BASE__BASE_256B_MASK 0xFFFFFFFFL
+//CB_COLOR3_DCC_BASE_EXT
+#define CB_COLOR3_DCC_BASE_EXT__BASE_256B__SHIFT 0x0
+#define CB_COLOR3_DCC_BASE_EXT__BASE_256B_MASK 0x000000FFL
+//CB_COLOR4_BASE
+#define CB_COLOR4_BASE__BASE_256B__SHIFT 0x0
+#define CB_COLOR4_BASE__BASE_256B_MASK 0xFFFFFFFFL
+//CB_COLOR4_BASE_EXT
+#define CB_COLOR4_BASE_EXT__BASE_256B__SHIFT 0x0
+#define CB_COLOR4_BASE_EXT__BASE_256B_MASK 0x000000FFL
+//CB_COLOR4_ATTRIB2
+#define CB_COLOR4_ATTRIB2__MIP0_HEIGHT__SHIFT 0x0
+#define CB_COLOR4_ATTRIB2__MIP0_WIDTH__SHIFT 0xe
+#define CB_COLOR4_ATTRIB2__MAX_MIP__SHIFT 0x1c
+#define CB_COLOR4_ATTRIB2__MIP0_HEIGHT_MASK 0x00003FFFL
+#define CB_COLOR4_ATTRIB2__MIP0_WIDTH_MASK 0x0FFFC000L
+#define CB_COLOR4_ATTRIB2__MAX_MIP_MASK 0xF0000000L
+//CB_COLOR4_VIEW
+#define CB_COLOR4_VIEW__SLICE_START__SHIFT 0x0
+#define CB_COLOR4_VIEW__SLICE_MAX__SHIFT 0xd
+#define CB_COLOR4_VIEW__MIP_LEVEL__SHIFT 0x18
+#define CB_COLOR4_VIEW__SLICE_START_MASK 0x000007FFL
+#define CB_COLOR4_VIEW__SLICE_MAX_MASK 0x00FFE000L
+#define CB_COLOR4_VIEW__MIP_LEVEL_MASK 0x0F000000L
+//CB_COLOR4_INFO
+#define CB_COLOR4_INFO__ENDIAN__SHIFT 0x0
+#define CB_COLOR4_INFO__FORMAT__SHIFT 0x2
+#define CB_COLOR4_INFO__NUMBER_TYPE__SHIFT 0x8
+#define CB_COLOR4_INFO__COMP_SWAP__SHIFT 0xb
+#define CB_COLOR4_INFO__FAST_CLEAR__SHIFT 0xd
+#define CB_COLOR4_INFO__COMPRESSION__SHIFT 0xe
+#define CB_COLOR4_INFO__BLEND_CLAMP__SHIFT 0xf
+#define CB_COLOR4_INFO__BLEND_BYPASS__SHIFT 0x10
+#define CB_COLOR4_INFO__SIMPLE_FLOAT__SHIFT 0x11
+#define CB_COLOR4_INFO__ROUND_MODE__SHIFT 0x12
+#define CB_COLOR4_INFO__BLEND_OPT_DONT_RD_DST__SHIFT 0x14
+#define CB_COLOR4_INFO__BLEND_OPT_DISCARD_PIXEL__SHIFT 0x17
+#define CB_COLOR4_INFO__FMASK_COMPRESSION_DISABLE__SHIFT 0x1a
+#define CB_COLOR4_INFO__FMASK_COMPRESS_1FRAG_ONLY__SHIFT 0x1b
+#define CB_COLOR4_INFO__DCC_ENABLE__SHIFT 0x1c
+#define CB_COLOR4_INFO__CMASK_ADDR_TYPE__SHIFT 0x1d
+#define CB_COLOR4_INFO__ENDIAN_MASK 0x00000003L
+#define CB_COLOR4_INFO__FORMAT_MASK 0x0000007CL
+#define CB_COLOR4_INFO__NUMBER_TYPE_MASK 0x00000700L
+#define CB_COLOR4_INFO__COMP_SWAP_MASK 0x00001800L
+#define CB_COLOR4_INFO__FAST_CLEAR_MASK 0x00002000L
+#define CB_COLOR4_INFO__COMPRESSION_MASK 0x00004000L
+#define CB_COLOR4_INFO__BLEND_CLAMP_MASK 0x00008000L
+#define CB_COLOR4_INFO__BLEND_BYPASS_MASK 0x00010000L
+#define CB_COLOR4_INFO__SIMPLE_FLOAT_MASK 0x00020000L
+#define CB_COLOR4_INFO__ROUND_MODE_MASK 0x00040000L
+#define CB_COLOR4_INFO__BLEND_OPT_DONT_RD_DST_MASK 0x00700000L
+#define CB_COLOR4_INFO__BLEND_OPT_DISCARD_PIXEL_MASK 0x03800000L
+#define CB_COLOR4_INFO__FMASK_COMPRESSION_DISABLE_MASK 0x04000000L
+#define CB_COLOR4_INFO__FMASK_COMPRESS_1FRAG_ONLY_MASK 0x08000000L
+#define CB_COLOR4_INFO__DCC_ENABLE_MASK 0x10000000L
+#define CB_COLOR4_INFO__CMASK_ADDR_TYPE_MASK 0x60000000L
+//CB_COLOR4_ATTRIB
+#define CB_COLOR4_ATTRIB__MIP0_DEPTH__SHIFT 0x0
+#define CB_COLOR4_ATTRIB__META_LINEAR__SHIFT 0xb
+#define CB_COLOR4_ATTRIB__NUM_SAMPLES__SHIFT 0xc
+#define CB_COLOR4_ATTRIB__NUM_FRAGMENTS__SHIFT 0xf
+#define CB_COLOR4_ATTRIB__FORCE_DST_ALPHA_1__SHIFT 0x11
+#define CB_COLOR4_ATTRIB__COLOR_SW_MODE__SHIFT 0x12
+#define CB_COLOR4_ATTRIB__FMASK_SW_MODE__SHIFT 0x17
+#define CB_COLOR4_ATTRIB__RESOURCE_TYPE__SHIFT 0x1c
+#define CB_COLOR4_ATTRIB__RB_ALIGNED__SHIFT 0x1e
+#define CB_COLOR4_ATTRIB__PIPE_ALIGNED__SHIFT 0x1f
+#define CB_COLOR4_ATTRIB__MIP0_DEPTH_MASK 0x000007FFL
+#define CB_COLOR4_ATTRIB__META_LINEAR_MASK 0x00000800L
+#define CB_COLOR4_ATTRIB__NUM_SAMPLES_MASK 0x00007000L
+#define CB_COLOR4_ATTRIB__NUM_FRAGMENTS_MASK 0x00018000L
+#define CB_COLOR4_ATTRIB__FORCE_DST_ALPHA_1_MASK 0x00020000L
+#define CB_COLOR4_ATTRIB__COLOR_SW_MODE_MASK 0x007C0000L
+#define CB_COLOR4_ATTRIB__FMASK_SW_MODE_MASK 0x0F800000L
+#define CB_COLOR4_ATTRIB__RESOURCE_TYPE_MASK 0x30000000L
+#define CB_COLOR4_ATTRIB__RB_ALIGNED_MASK 0x40000000L
+#define CB_COLOR4_ATTRIB__PIPE_ALIGNED_MASK 0x80000000L
+//CB_COLOR4_DCC_CONTROL
+#define CB_COLOR4_DCC_CONTROL__OVERWRITE_COMBINER_DISABLE__SHIFT 0x0
+#define CB_COLOR4_DCC_CONTROL__KEY_CLEAR_ENABLE__SHIFT 0x1
+#define CB_COLOR4_DCC_CONTROL__MAX_UNCOMPRESSED_BLOCK_SIZE__SHIFT 0x2
+#define CB_COLOR4_DCC_CONTROL__MIN_COMPRESSED_BLOCK_SIZE__SHIFT 0x4
+#define CB_COLOR4_DCC_CONTROL__MAX_COMPRESSED_BLOCK_SIZE__SHIFT 0x5
+#define CB_COLOR4_DCC_CONTROL__COLOR_TRANSFORM__SHIFT 0x7
+#define CB_COLOR4_DCC_CONTROL__INDEPENDENT_64B_BLOCKS__SHIFT 0x9
+#define CB_COLOR4_DCC_CONTROL__LOSSY_RGB_PRECISION__SHIFT 0xa
+#define CB_COLOR4_DCC_CONTROL__LOSSY_ALPHA_PRECISION__SHIFT 0xe
+#define CB_COLOR4_DCC_CONTROL__DISABLE_CONSTANT_ENCODE_REG__SHIFT 0x12
+#define CB_COLOR4_DCC_CONTROL__ENABLE_CONSTANT_ENCODE_REG_WRITE__SHIFT 0x13
+#define CB_COLOR4_DCC_CONTROL__OVERWRITE_COMBINER_DISABLE_MASK 0x00000001L
+#define CB_COLOR4_DCC_CONTROL__KEY_CLEAR_ENABLE_MASK 0x00000002L
+#define CB_COLOR4_DCC_CONTROL__MAX_UNCOMPRESSED_BLOCK_SIZE_MASK 0x0000000CL
+#define CB_COLOR4_DCC_CONTROL__MIN_COMPRESSED_BLOCK_SIZE_MASK 0x00000010L
+#define CB_COLOR4_DCC_CONTROL__MAX_COMPRESSED_BLOCK_SIZE_MASK 0x00000060L
+#define CB_COLOR4_DCC_CONTROL__COLOR_TRANSFORM_MASK 0x00000180L
+#define CB_COLOR4_DCC_CONTROL__INDEPENDENT_64B_BLOCKS_MASK 0x00000200L
+#define CB_COLOR4_DCC_CONTROL__LOSSY_RGB_PRECISION_MASK 0x00003C00L
+#define CB_COLOR4_DCC_CONTROL__LOSSY_ALPHA_PRECISION_MASK 0x0003C000L
+#define CB_COLOR4_DCC_CONTROL__DISABLE_CONSTANT_ENCODE_REG_MASK 0x00040000L
+#define CB_COLOR4_DCC_CONTROL__ENABLE_CONSTANT_ENCODE_REG_WRITE_MASK 0x00080000L
+//CB_COLOR4_CMASK
+#define CB_COLOR4_CMASK__BASE_256B__SHIFT 0x0
+#define CB_COLOR4_CMASK__BASE_256B_MASK 0xFFFFFFFFL
+//CB_COLOR4_CMASK_BASE_EXT
+#define CB_COLOR4_CMASK_BASE_EXT__BASE_256B__SHIFT 0x0
+#define CB_COLOR4_CMASK_BASE_EXT__BASE_256B_MASK 0x000000FFL
+//CB_COLOR4_FMASK
+#define CB_COLOR4_FMASK__BASE_256B__SHIFT 0x0
+#define CB_COLOR4_FMASK__BASE_256B_MASK 0xFFFFFFFFL
+//CB_COLOR4_FMASK_BASE_EXT
+#define CB_COLOR4_FMASK_BASE_EXT__BASE_256B__SHIFT 0x0
+#define CB_COLOR4_FMASK_BASE_EXT__BASE_256B_MASK 0x000000FFL
+//CB_COLOR4_CLEAR_WORD0
+#define CB_COLOR4_CLEAR_WORD0__CLEAR_WORD0__SHIFT 0x0
+#define CB_COLOR4_CLEAR_WORD0__CLEAR_WORD0_MASK 0xFFFFFFFFL
+//CB_COLOR4_CLEAR_WORD1
+#define CB_COLOR4_CLEAR_WORD1__CLEAR_WORD1__SHIFT 0x0
+#define CB_COLOR4_CLEAR_WORD1__CLEAR_WORD1_MASK 0xFFFFFFFFL
+//CB_COLOR4_DCC_BASE
+#define CB_COLOR4_DCC_BASE__BASE_256B__SHIFT 0x0
+#define CB_COLOR4_DCC_BASE__BASE_256B_MASK 0xFFFFFFFFL
+//CB_COLOR4_DCC_BASE_EXT
+#define CB_COLOR4_DCC_BASE_EXT__BASE_256B__SHIFT 0x0
+#define CB_COLOR4_DCC_BASE_EXT__BASE_256B_MASK 0x000000FFL
+//CB_COLOR5_BASE
+#define CB_COLOR5_BASE__BASE_256B__SHIFT 0x0
+#define CB_COLOR5_BASE__BASE_256B_MASK 0xFFFFFFFFL
+//CB_COLOR5_BASE_EXT
+#define CB_COLOR5_BASE_EXT__BASE_256B__SHIFT 0x0
+#define CB_COLOR5_BASE_EXT__BASE_256B_MASK 0x000000FFL
+//CB_COLOR5_ATTRIB2
+#define CB_COLOR5_ATTRIB2__MIP0_HEIGHT__SHIFT 0x0
+#define CB_COLOR5_ATTRIB2__MIP0_WIDTH__SHIFT 0xe
+#define CB_COLOR5_ATTRIB2__MAX_MIP__SHIFT 0x1c
+#define CB_COLOR5_ATTRIB2__MIP0_HEIGHT_MASK 0x00003FFFL
+#define CB_COLOR5_ATTRIB2__MIP0_WIDTH_MASK 0x0FFFC000L
+#define CB_COLOR5_ATTRIB2__MAX_MIP_MASK 0xF0000000L
+//CB_COLOR5_VIEW
+#define CB_COLOR5_VIEW__SLICE_START__SHIFT 0x0
+#define CB_COLOR5_VIEW__SLICE_MAX__SHIFT 0xd
+#define CB_COLOR5_VIEW__MIP_LEVEL__SHIFT 0x18
+#define CB_COLOR5_VIEW__SLICE_START_MASK 0x000007FFL
+#define CB_COLOR5_VIEW__SLICE_MAX_MASK 0x00FFE000L
+#define CB_COLOR5_VIEW__MIP_LEVEL_MASK 0x0F000000L
+//CB_COLOR5_INFO
+#define CB_COLOR5_INFO__ENDIAN__SHIFT 0x0
+#define CB_COLOR5_INFO__FORMAT__SHIFT 0x2
+#define CB_COLOR5_INFO__NUMBER_TYPE__SHIFT 0x8
+#define CB_COLOR5_INFO__COMP_SWAP__SHIFT 0xb
+#define CB_COLOR5_INFO__FAST_CLEAR__SHIFT 0xd
+#define CB_COLOR5_INFO__COMPRESSION__SHIFT 0xe
+#define CB_COLOR5_INFO__BLEND_CLAMP__SHIFT 0xf
+#define CB_COLOR5_INFO__BLEND_BYPASS__SHIFT 0x10
+#define CB_COLOR5_INFO__SIMPLE_FLOAT__SHIFT 0x11
+#define CB_COLOR5_INFO__ROUND_MODE__SHIFT 0x12
+#define CB_COLOR5_INFO__BLEND_OPT_DONT_RD_DST__SHIFT 0x14
+#define CB_COLOR5_INFO__BLEND_OPT_DISCARD_PIXEL__SHIFT 0x17
+#define CB_COLOR5_INFO__FMASK_COMPRESSION_DISABLE__SHIFT 0x1a
+#define CB_COLOR5_INFO__FMASK_COMPRESS_1FRAG_ONLY__SHIFT 0x1b
+#define CB_COLOR5_INFO__DCC_ENABLE__SHIFT 0x1c
+#define CB_COLOR5_INFO__CMASK_ADDR_TYPE__SHIFT 0x1d
+#define CB_COLOR5_INFO__ENDIAN_MASK 0x00000003L
+#define CB_COLOR5_INFO__FORMAT_MASK 0x0000007CL
+#define CB_COLOR5_INFO__NUMBER_TYPE_MASK 0x00000700L
+#define CB_COLOR5_INFO__COMP_SWAP_MASK 0x00001800L
+#define CB_COLOR5_INFO__FAST_CLEAR_MASK 0x00002000L
+#define CB_COLOR5_INFO__COMPRESSION_MASK 0x00004000L
+#define CB_COLOR5_INFO__BLEND_CLAMP_MASK 0x00008000L
+#define CB_COLOR5_INFO__BLEND_BYPASS_MASK 0x00010000L
+#define CB_COLOR5_INFO__SIMPLE_FLOAT_MASK 0x00020000L
+#define CB_COLOR5_INFO__ROUND_MODE_MASK 0x00040000L
+#define CB_COLOR5_INFO__BLEND_OPT_DONT_RD_DST_MASK 0x00700000L
+#define CB_COLOR5_INFO__BLEND_OPT_DISCARD_PIXEL_MASK 0x03800000L
+#define CB_COLOR5_INFO__FMASK_COMPRESSION_DISABLE_MASK 0x04000000L
+#define CB_COLOR5_INFO__FMASK_COMPRESS_1FRAG_ONLY_MASK 0x08000000L
+#define CB_COLOR5_INFO__DCC_ENABLE_MASK 0x10000000L
+#define CB_COLOR5_INFO__CMASK_ADDR_TYPE_MASK 0x60000000L
+//CB_COLOR5_ATTRIB
+#define CB_COLOR5_ATTRIB__MIP0_DEPTH__SHIFT 0x0
+#define CB_COLOR5_ATTRIB__META_LINEAR__SHIFT 0xb
+#define CB_COLOR5_ATTRIB__NUM_SAMPLES__SHIFT 0xc
+#define CB_COLOR5_ATTRIB__NUM_FRAGMENTS__SHIFT 0xf
+#define CB_COLOR5_ATTRIB__FORCE_DST_ALPHA_1__SHIFT 0x11
+#define CB_COLOR5_ATTRIB__COLOR_SW_MODE__SHIFT 0x12
+#define CB_COLOR5_ATTRIB__FMASK_SW_MODE__SHIFT 0x17
+#define CB_COLOR5_ATTRIB__RESOURCE_TYPE__SHIFT 0x1c
+#define CB_COLOR5_ATTRIB__RB_ALIGNED__SHIFT 0x1e
+#define CB_COLOR5_ATTRIB__PIPE_ALIGNED__SHIFT 0x1f
+#define CB_COLOR5_ATTRIB__MIP0_DEPTH_MASK 0x000007FFL
+#define CB_COLOR5_ATTRIB__META_LINEAR_MASK 0x00000800L
+#define CB_COLOR5_ATTRIB__NUM_SAMPLES_MASK 0x00007000L
+#define CB_COLOR5_ATTRIB__NUM_FRAGMENTS_MASK 0x00018000L
+#define CB_COLOR5_ATTRIB__FORCE_DST_ALPHA_1_MASK 0x00020000L
+#define CB_COLOR5_ATTRIB__COLOR_SW_MODE_MASK 0x007C0000L
+#define CB_COLOR5_ATTRIB__FMASK_SW_MODE_MASK 0x0F800000L
+#define CB_COLOR5_ATTRIB__RESOURCE_TYPE_MASK 0x30000000L
+#define CB_COLOR5_ATTRIB__RB_ALIGNED_MASK 0x40000000L
+#define CB_COLOR5_ATTRIB__PIPE_ALIGNED_MASK 0x80000000L
+//CB_COLOR5_DCC_CONTROL
+#define CB_COLOR5_DCC_CONTROL__OVERWRITE_COMBINER_DISABLE__SHIFT 0x0
+#define CB_COLOR5_DCC_CONTROL__KEY_CLEAR_ENABLE__SHIFT 0x1
+#define CB_COLOR5_DCC_CONTROL__MAX_UNCOMPRESSED_BLOCK_SIZE__SHIFT 0x2
+#define CB_COLOR5_DCC_CONTROL__MIN_COMPRESSED_BLOCK_SIZE__SHIFT 0x4
+#define CB_COLOR5_DCC_CONTROL__MAX_COMPRESSED_BLOCK_SIZE__SHIFT 0x5
+#define CB_COLOR5_DCC_CONTROL__COLOR_TRANSFORM__SHIFT 0x7
+#define CB_COLOR5_DCC_CONTROL__INDEPENDENT_64B_BLOCKS__SHIFT 0x9
+#define CB_COLOR5_DCC_CONTROL__LOSSY_RGB_PRECISION__SHIFT 0xa
+#define CB_COLOR5_DCC_CONTROL__LOSSY_ALPHA_PRECISION__SHIFT 0xe
+#define CB_COLOR5_DCC_CONTROL__DISABLE_CONSTANT_ENCODE_REG__SHIFT 0x12
+#define CB_COLOR5_DCC_CONTROL__ENABLE_CONSTANT_ENCODE_REG_WRITE__SHIFT 0x13
+#define CB_COLOR5_DCC_CONTROL__OVERWRITE_COMBINER_DISABLE_MASK 0x00000001L
+#define CB_COLOR5_DCC_CONTROL__KEY_CLEAR_ENABLE_MASK 0x00000002L
+#define CB_COLOR5_DCC_CONTROL__MAX_UNCOMPRESSED_BLOCK_SIZE_MASK 0x0000000CL
+#define CB_COLOR5_DCC_CONTROL__MIN_COMPRESSED_BLOCK_SIZE_MASK 0x00000010L
+#define CB_COLOR5_DCC_CONTROL__MAX_COMPRESSED_BLOCK_SIZE_MASK 0x00000060L
+#define CB_COLOR5_DCC_CONTROL__COLOR_TRANSFORM_MASK 0x00000180L
+#define CB_COLOR5_DCC_CONTROL__INDEPENDENT_64B_BLOCKS_MASK 0x00000200L
+#define CB_COLOR5_DCC_CONTROL__LOSSY_RGB_PRECISION_MASK 0x00003C00L
+#define CB_COLOR5_DCC_CONTROL__LOSSY_ALPHA_PRECISION_MASK 0x0003C000L
+#define CB_COLOR5_DCC_CONTROL__DISABLE_CONSTANT_ENCODE_REG_MASK 0x00040000L
+#define CB_COLOR5_DCC_CONTROL__ENABLE_CONSTANT_ENCODE_REG_WRITE_MASK 0x00080000L
+//CB_COLOR5_CMASK
+#define CB_COLOR5_CMASK__BASE_256B__SHIFT 0x0
+#define CB_COLOR5_CMASK__BASE_256B_MASK 0xFFFFFFFFL
+//CB_COLOR5_CMASK_BASE_EXT
+#define CB_COLOR5_CMASK_BASE_EXT__BASE_256B__SHIFT 0x0
+#define CB_COLOR5_CMASK_BASE_EXT__BASE_256B_MASK 0x000000FFL
+//CB_COLOR5_FMASK
+#define CB_COLOR5_FMASK__BASE_256B__SHIFT 0x0
+#define CB_COLOR5_FMASK__BASE_256B_MASK 0xFFFFFFFFL
+//CB_COLOR5_FMASK_BASE_EXT
+#define CB_COLOR5_FMASK_BASE_EXT__BASE_256B__SHIFT 0x0
+#define CB_COLOR5_FMASK_BASE_EXT__BASE_256B_MASK 0x000000FFL
+//CB_COLOR5_CLEAR_WORD0
+#define CB_COLOR5_CLEAR_WORD0__CLEAR_WORD0__SHIFT 0x0
+#define CB_COLOR5_CLEAR_WORD0__CLEAR_WORD0_MASK 0xFFFFFFFFL
+//CB_COLOR5_CLEAR_WORD1
+#define CB_COLOR5_CLEAR_WORD1__CLEAR_WORD1__SHIFT 0x0
+#define CB_COLOR5_CLEAR_WORD1__CLEAR_WORD1_MASK 0xFFFFFFFFL
+//CB_COLOR5_DCC_BASE
+#define CB_COLOR5_DCC_BASE__BASE_256B__SHIFT 0x0
+#define CB_COLOR5_DCC_BASE__BASE_256B_MASK 0xFFFFFFFFL
+//CB_COLOR5_DCC_BASE_EXT
+#define CB_COLOR5_DCC_BASE_EXT__BASE_256B__SHIFT 0x0
+#define CB_COLOR5_DCC_BASE_EXT__BASE_256B_MASK 0x000000FFL
+//CB_COLOR6_BASE
+#define CB_COLOR6_BASE__BASE_256B__SHIFT 0x0
+#define CB_COLOR6_BASE__BASE_256B_MASK 0xFFFFFFFFL
+//CB_COLOR6_BASE_EXT
+#define CB_COLOR6_BASE_EXT__BASE_256B__SHIFT 0x0
+#define CB_COLOR6_BASE_EXT__BASE_256B_MASK 0x000000FFL
+//CB_COLOR6_ATTRIB2
+#define CB_COLOR6_ATTRIB2__MIP0_HEIGHT__SHIFT 0x0
+#define CB_COLOR6_ATTRIB2__MIP0_WIDTH__SHIFT 0xe
+#define CB_COLOR6_ATTRIB2__MAX_MIP__SHIFT 0x1c
+#define CB_COLOR6_ATTRIB2__MIP0_HEIGHT_MASK 0x00003FFFL
+#define CB_COLOR6_ATTRIB2__MIP0_WIDTH_MASK 0x0FFFC000L
+#define CB_COLOR6_ATTRIB2__MAX_MIP_MASK 0xF0000000L
+//CB_COLOR6_VIEW
+#define CB_COLOR6_VIEW__SLICE_START__SHIFT 0x0
+#define CB_COLOR6_VIEW__SLICE_MAX__SHIFT 0xd
+#define CB_COLOR6_VIEW__MIP_LEVEL__SHIFT 0x18
+#define CB_COLOR6_VIEW__SLICE_START_MASK 0x000007FFL
+#define CB_COLOR6_VIEW__SLICE_MAX_MASK 0x00FFE000L
+#define CB_COLOR6_VIEW__MIP_LEVEL_MASK 0x0F000000L
+//CB_COLOR6_INFO
+#define CB_COLOR6_INFO__ENDIAN__SHIFT 0x0
+#define CB_COLOR6_INFO__FORMAT__SHIFT 0x2
+#define CB_COLOR6_INFO__NUMBER_TYPE__SHIFT 0x8
+#define CB_COLOR6_INFO__COMP_SWAP__SHIFT 0xb
+#define CB_COLOR6_INFO__FAST_CLEAR__SHIFT 0xd
+#define CB_COLOR6_INFO__COMPRESSION__SHIFT 0xe
+#define CB_COLOR6_INFO__BLEND_CLAMP__SHIFT 0xf
+#define CB_COLOR6_INFO__BLEND_BYPASS__SHIFT 0x10
+#define CB_COLOR6_INFO__SIMPLE_FLOAT__SHIFT 0x11
+#define CB_COLOR6_INFO__ROUND_MODE__SHIFT 0x12
+#define CB_COLOR6_INFO__BLEND_OPT_DONT_RD_DST__SHIFT 0x14
+#define CB_COLOR6_INFO__BLEND_OPT_DISCARD_PIXEL__SHIFT 0x17
+#define CB_COLOR6_INFO__FMASK_COMPRESSION_DISABLE__SHIFT 0x1a
+#define CB_COLOR6_INFO__FMASK_COMPRESS_1FRAG_ONLY__SHIFT 0x1b
+#define CB_COLOR6_INFO__DCC_ENABLE__SHIFT 0x1c
+#define CB_COLOR6_INFO__CMASK_ADDR_TYPE__SHIFT 0x1d
+#define CB_COLOR6_INFO__ENDIAN_MASK 0x00000003L
+#define CB_COLOR6_INFO__FORMAT_MASK 0x0000007CL
+#define CB_COLOR6_INFO__NUMBER_TYPE_MASK 0x00000700L
+#define CB_COLOR6_INFO__COMP_SWAP_MASK 0x00001800L
+#define CB_COLOR6_INFO__FAST_CLEAR_MASK 0x00002000L
+#define CB_COLOR6_INFO__COMPRESSION_MASK 0x00004000L
+#define CB_COLOR6_INFO__BLEND_CLAMP_MASK 0x00008000L
+#define CB_COLOR6_INFO__BLEND_BYPASS_MASK 0x00010000L
+#define CB_COLOR6_INFO__SIMPLE_FLOAT_MASK 0x00020000L
+#define CB_COLOR6_INFO__ROUND_MODE_MASK 0x00040000L
+#define CB_COLOR6_INFO__BLEND_OPT_DONT_RD_DST_MASK 0x00700000L
+#define CB_COLOR6_INFO__BLEND_OPT_DISCARD_PIXEL_MASK 0x03800000L
+#define CB_COLOR6_INFO__FMASK_COMPRESSION_DISABLE_MASK 0x04000000L
+#define CB_COLOR6_INFO__FMASK_COMPRESS_1FRAG_ONLY_MASK 0x08000000L
+#define CB_COLOR6_INFO__DCC_ENABLE_MASK 0x10000000L
+#define CB_COLOR6_INFO__CMASK_ADDR_TYPE_MASK 0x60000000L
+//CB_COLOR6_ATTRIB
+#define CB_COLOR6_ATTRIB__MIP0_DEPTH__SHIFT 0x0
+#define CB_COLOR6_ATTRIB__META_LINEAR__SHIFT 0xb
+#define CB_COLOR6_ATTRIB__NUM_SAMPLES__SHIFT 0xc
+#define CB_COLOR6_ATTRIB__NUM_FRAGMENTS__SHIFT 0xf
+#define CB_COLOR6_ATTRIB__FORCE_DST_ALPHA_1__SHIFT 0x11
+#define CB_COLOR6_ATTRIB__COLOR_SW_MODE__SHIFT 0x12
+#define CB_COLOR6_ATTRIB__FMASK_SW_MODE__SHIFT 0x17
+#define CB_COLOR6_ATTRIB__RESOURCE_TYPE__SHIFT 0x1c
+#define CB_COLOR6_ATTRIB__RB_ALIGNED__SHIFT 0x1e
+#define CB_COLOR6_ATTRIB__PIPE_ALIGNED__SHIFT 0x1f
+#define CB_COLOR6_ATTRIB__MIP0_DEPTH_MASK 0x000007FFL
+#define CB_COLOR6_ATTRIB__META_LINEAR_MASK 0x00000800L
+#define CB_COLOR6_ATTRIB__NUM_SAMPLES_MASK 0x00007000L
+#define CB_COLOR6_ATTRIB__NUM_FRAGMENTS_MASK 0x00018000L
+#define CB_COLOR6_ATTRIB__FORCE_DST_ALPHA_1_MASK 0x00020000L
+#define CB_COLOR6_ATTRIB__COLOR_SW_MODE_MASK 0x007C0000L
+#define CB_COLOR6_ATTRIB__FMASK_SW_MODE_MASK 0x0F800000L
+#define CB_COLOR6_ATTRIB__RESOURCE_TYPE_MASK 0x30000000L
+#define CB_COLOR6_ATTRIB__RB_ALIGNED_MASK 0x40000000L
+#define CB_COLOR6_ATTRIB__PIPE_ALIGNED_MASK 0x80000000L
+//CB_COLOR6_DCC_CONTROL
+#define CB_COLOR6_DCC_CONTROL__OVERWRITE_COMBINER_DISABLE__SHIFT 0x0
+#define CB_COLOR6_DCC_CONTROL__KEY_CLEAR_ENABLE__SHIFT 0x1
+#define CB_COLOR6_DCC_CONTROL__MAX_UNCOMPRESSED_BLOCK_SIZE__SHIFT 0x2
+#define CB_COLOR6_DCC_CONTROL__MIN_COMPRESSED_BLOCK_SIZE__SHIFT 0x4
+#define CB_COLOR6_DCC_CONTROL__MAX_COMPRESSED_BLOCK_SIZE__SHIFT 0x5
+#define CB_COLOR6_DCC_CONTROL__COLOR_TRANSFORM__SHIFT 0x7
+#define CB_COLOR6_DCC_CONTROL__INDEPENDENT_64B_BLOCKS__SHIFT 0x9
+#define CB_COLOR6_DCC_CONTROL__LOSSY_RGB_PRECISION__SHIFT 0xa
+#define CB_COLOR6_DCC_CONTROL__LOSSY_ALPHA_PRECISION__SHIFT 0xe
+#define CB_COLOR6_DCC_CONTROL__DISABLE_CONSTANT_ENCODE_REG__SHIFT 0x12
+#define CB_COLOR6_DCC_CONTROL__ENABLE_CONSTANT_ENCODE_REG_WRITE__SHIFT 0x13
+#define CB_COLOR6_DCC_CONTROL__OVERWRITE_COMBINER_DISABLE_MASK 0x00000001L
+#define CB_COLOR6_DCC_CONTROL__KEY_CLEAR_ENABLE_MASK 0x00000002L
+#define CB_COLOR6_DCC_CONTROL__MAX_UNCOMPRESSED_BLOCK_SIZE_MASK 0x0000000CL
+#define CB_COLOR6_DCC_CONTROL__MIN_COMPRESSED_BLOCK_SIZE_MASK 0x00000010L
+#define CB_COLOR6_DCC_CONTROL__MAX_COMPRESSED_BLOCK_SIZE_MASK 0x00000060L
+#define CB_COLOR6_DCC_CONTROL__COLOR_TRANSFORM_MASK 0x00000180L
+#define CB_COLOR6_DCC_CONTROL__INDEPENDENT_64B_BLOCKS_MASK 0x00000200L
+#define CB_COLOR6_DCC_CONTROL__LOSSY_RGB_PRECISION_MASK 0x00003C00L
+#define CB_COLOR6_DCC_CONTROL__LOSSY_ALPHA_PRECISION_MASK 0x0003C000L
+#define CB_COLOR6_DCC_CONTROL__DISABLE_CONSTANT_ENCODE_REG_MASK 0x00040000L
+#define CB_COLOR6_DCC_CONTROL__ENABLE_CONSTANT_ENCODE_REG_WRITE_MASK 0x00080000L
+//CB_COLOR6_CMASK
+#define CB_COLOR6_CMASK__BASE_256B__SHIFT 0x0
+#define CB_COLOR6_CMASK__BASE_256B_MASK 0xFFFFFFFFL
+//CB_COLOR6_CMASK_BASE_EXT
+#define CB_COLOR6_CMASK_BASE_EXT__BASE_256B__SHIFT 0x0
+#define CB_COLOR6_CMASK_BASE_EXT__BASE_256B_MASK 0x000000FFL
+//CB_COLOR6_FMASK
+#define CB_COLOR6_FMASK__BASE_256B__SHIFT 0x0
+#define CB_COLOR6_FMASK__BASE_256B_MASK 0xFFFFFFFFL
+//CB_COLOR6_FMASK_BASE_EXT
+#define CB_COLOR6_FMASK_BASE_EXT__BASE_256B__SHIFT 0x0
+#define CB_COLOR6_FMASK_BASE_EXT__BASE_256B_MASK 0x000000FFL
+//CB_COLOR6_CLEAR_WORD0
+#define CB_COLOR6_CLEAR_WORD0__CLEAR_WORD0__SHIFT 0x0
+#define CB_COLOR6_CLEAR_WORD0__CLEAR_WORD0_MASK 0xFFFFFFFFL
+//CB_COLOR6_CLEAR_WORD1
+#define CB_COLOR6_CLEAR_WORD1__CLEAR_WORD1__SHIFT 0x0
+#define CB_COLOR6_CLEAR_WORD1__CLEAR_WORD1_MASK 0xFFFFFFFFL
+//CB_COLOR6_DCC_BASE
+#define CB_COLOR6_DCC_BASE__BASE_256B__SHIFT 0x0
+#define CB_COLOR6_DCC_BASE__BASE_256B_MASK 0xFFFFFFFFL
+//CB_COLOR6_DCC_BASE_EXT
+#define CB_COLOR6_DCC_BASE_EXT__BASE_256B__SHIFT 0x0
+#define CB_COLOR6_DCC_BASE_EXT__BASE_256B_MASK 0x000000FFL
+//CB_COLOR7_BASE
+#define CB_COLOR7_BASE__BASE_256B__SHIFT 0x0
+#define CB_COLOR7_BASE__BASE_256B_MASK 0xFFFFFFFFL
+//CB_COLOR7_BASE_EXT
+#define CB_COLOR7_BASE_EXT__BASE_256B__SHIFT 0x0
+#define CB_COLOR7_BASE_EXT__BASE_256B_MASK 0x000000FFL
+//CB_COLOR7_ATTRIB2
+#define CB_COLOR7_ATTRIB2__MIP0_HEIGHT__SHIFT 0x0
+#define CB_COLOR7_ATTRIB2__MIP0_WIDTH__SHIFT 0xe
+#define CB_COLOR7_ATTRIB2__MAX_MIP__SHIFT 0x1c
+#define CB_COLOR7_ATTRIB2__MIP0_HEIGHT_MASK 0x00003FFFL
+#define CB_COLOR7_ATTRIB2__MIP0_WIDTH_MASK 0x0FFFC000L
+#define CB_COLOR7_ATTRIB2__MAX_MIP_MASK 0xF0000000L
+//CB_COLOR7_VIEW
+#define CB_COLOR7_VIEW__SLICE_START__SHIFT 0x0
+#define CB_COLOR7_VIEW__SLICE_MAX__SHIFT 0xd
+#define CB_COLOR7_VIEW__MIP_LEVEL__SHIFT 0x18
+#define CB_COLOR7_VIEW__SLICE_START_MASK 0x000007FFL
+#define CB_COLOR7_VIEW__SLICE_MAX_MASK 0x00FFE000L
+#define CB_COLOR7_VIEW__MIP_LEVEL_MASK 0x0F000000L
+//CB_COLOR7_INFO
+#define CB_COLOR7_INFO__ENDIAN__SHIFT 0x0
+#define CB_COLOR7_INFO__FORMAT__SHIFT 0x2
+#define CB_COLOR7_INFO__NUMBER_TYPE__SHIFT 0x8
+#define CB_COLOR7_INFO__COMP_SWAP__SHIFT 0xb
+#define CB_COLOR7_INFO__FAST_CLEAR__SHIFT 0xd
+#define CB_COLOR7_INFO__COMPRESSION__SHIFT 0xe
+#define CB_COLOR7_INFO__BLEND_CLAMP__SHIFT 0xf
+#define CB_COLOR7_INFO__BLEND_BYPASS__SHIFT 0x10
+#define CB_COLOR7_INFO__SIMPLE_FLOAT__SHIFT 0x11
+#define CB_COLOR7_INFO__ROUND_MODE__SHIFT 0x12
+#define CB_COLOR7_INFO__BLEND_OPT_DONT_RD_DST__SHIFT 0x14
+#define CB_COLOR7_INFO__BLEND_OPT_DISCARD_PIXEL__SHIFT 0x17
+#define CB_COLOR7_INFO__FMASK_COMPRESSION_DISABLE__SHIFT 0x1a
+#define CB_COLOR7_INFO__FMASK_COMPRESS_1FRAG_ONLY__SHIFT 0x1b
+#define CB_COLOR7_INFO__DCC_ENABLE__SHIFT 0x1c
+#define CB_COLOR7_INFO__CMASK_ADDR_TYPE__SHIFT 0x1d
+#define CB_COLOR7_INFO__ENDIAN_MASK 0x00000003L
+#define CB_COLOR7_INFO__FORMAT_MASK 0x0000007CL
+#define CB_COLOR7_INFO__NUMBER_TYPE_MASK 0x00000700L
+#define CB_COLOR7_INFO__COMP_SWAP_MASK 0x00001800L
+#define CB_COLOR7_INFO__FAST_CLEAR_MASK 0x00002000L
+#define CB_COLOR7_INFO__COMPRESSION_MASK 0x00004000L
+#define CB_COLOR7_INFO__BLEND_CLAMP_MASK 0x00008000L
+#define CB_COLOR7_INFO__BLEND_BYPASS_MASK 0x00010000L
+#define CB_COLOR7_INFO__SIMPLE_FLOAT_MASK 0x00020000L
+#define CB_COLOR7_INFO__ROUND_MODE_MASK 0x00040000L
+#define CB_COLOR7_INFO__BLEND_OPT_DONT_RD_DST_MASK 0x00700000L
+#define CB_COLOR7_INFO__BLEND_OPT_DISCARD_PIXEL_MASK 0x03800000L
+#define CB_COLOR7_INFO__FMASK_COMPRESSION_DISABLE_MASK 0x04000000L
+#define CB_COLOR7_INFO__FMASK_COMPRESS_1FRAG_ONLY_MASK 0x08000000L
+#define CB_COLOR7_INFO__DCC_ENABLE_MASK 0x10000000L
+#define CB_COLOR7_INFO__CMASK_ADDR_TYPE_MASK 0x60000000L
+//CB_COLOR7_ATTRIB
+#define CB_COLOR7_ATTRIB__MIP0_DEPTH__SHIFT 0x0
+#define CB_COLOR7_ATTRIB__META_LINEAR__SHIFT 0xb
+#define CB_COLOR7_ATTRIB__NUM_SAMPLES__SHIFT 0xc
+#define CB_COLOR7_ATTRIB__NUM_FRAGMENTS__SHIFT 0xf
+#define CB_COLOR7_ATTRIB__FORCE_DST_ALPHA_1__SHIFT 0x11
+#define CB_COLOR7_ATTRIB__COLOR_SW_MODE__SHIFT 0x12
+#define CB_COLOR7_ATTRIB__FMASK_SW_MODE__SHIFT 0x17
+#define CB_COLOR7_ATTRIB__RESOURCE_TYPE__SHIFT 0x1c
+#define CB_COLOR7_ATTRIB__RB_ALIGNED__SHIFT 0x1e
+#define CB_COLOR7_ATTRIB__PIPE_ALIGNED__SHIFT 0x1f
+#define CB_COLOR7_ATTRIB__MIP0_DEPTH_MASK 0x000007FFL
+#define CB_COLOR7_ATTRIB__META_LINEAR_MASK 0x00000800L
+#define CB_COLOR7_ATTRIB__NUM_SAMPLES_MASK 0x00007000L
+#define CB_COLOR7_ATTRIB__NUM_FRAGMENTS_MASK 0x00018000L
+#define CB_COLOR7_ATTRIB__FORCE_DST_ALPHA_1_MASK 0x00020000L
+#define CB_COLOR7_ATTRIB__COLOR_SW_MODE_MASK 0x007C0000L
+#define CB_COLOR7_ATTRIB__FMASK_SW_MODE_MASK 0x0F800000L
+#define CB_COLOR7_ATTRIB__RESOURCE_TYPE_MASK 0x30000000L
+#define CB_COLOR7_ATTRIB__RB_ALIGNED_MASK 0x40000000L
+#define CB_COLOR7_ATTRIB__PIPE_ALIGNED_MASK 0x80000000L
+//CB_COLOR7_DCC_CONTROL
+#define CB_COLOR7_DCC_CONTROL__OVERWRITE_COMBINER_DISABLE__SHIFT 0x0
+#define CB_COLOR7_DCC_CONTROL__KEY_CLEAR_ENABLE__SHIFT 0x1
+#define CB_COLOR7_DCC_CONTROL__MAX_UNCOMPRESSED_BLOCK_SIZE__SHIFT 0x2
+#define CB_COLOR7_DCC_CONTROL__MIN_COMPRESSED_BLOCK_SIZE__SHIFT 0x4
+#define CB_COLOR7_DCC_CONTROL__MAX_COMPRESSED_BLOCK_SIZE__SHIFT 0x5
+#define CB_COLOR7_DCC_CONTROL__COLOR_TRANSFORM__SHIFT 0x7
+#define CB_COLOR7_DCC_CONTROL__INDEPENDENT_64B_BLOCKS__SHIFT 0x9
+#define CB_COLOR7_DCC_CONTROL__LOSSY_RGB_PRECISION__SHIFT 0xa
+#define CB_COLOR7_DCC_CONTROL__LOSSY_ALPHA_PRECISION__SHIFT 0xe
+#define CB_COLOR7_DCC_CONTROL__DISABLE_CONSTANT_ENCODE_REG__SHIFT 0x12
+#define CB_COLOR7_DCC_CONTROL__ENABLE_CONSTANT_ENCODE_REG_WRITE__SHIFT 0x13
+#define CB_COLOR7_DCC_CONTROL__OVERWRITE_COMBINER_DISABLE_MASK 0x00000001L
+#define CB_COLOR7_DCC_CONTROL__KEY_CLEAR_ENABLE_MASK 0x00000002L
+#define CB_COLOR7_DCC_CONTROL__MAX_UNCOMPRESSED_BLOCK_SIZE_MASK 0x0000000CL
+#define CB_COLOR7_DCC_CONTROL__MIN_COMPRESSED_BLOCK_SIZE_MASK 0x00000010L
+#define CB_COLOR7_DCC_CONTROL__MAX_COMPRESSED_BLOCK_SIZE_MASK 0x00000060L
+#define CB_COLOR7_DCC_CONTROL__COLOR_TRANSFORM_MASK 0x00000180L
+#define CB_COLOR7_DCC_CONTROL__INDEPENDENT_64B_BLOCKS_MASK 0x00000200L
+#define CB_COLOR7_DCC_CONTROL__LOSSY_RGB_PRECISION_MASK 0x00003C00L
+#define CB_COLOR7_DCC_CONTROL__LOSSY_ALPHA_PRECISION_MASK 0x0003C000L
+#define CB_COLOR7_DCC_CONTROL__DISABLE_CONSTANT_ENCODE_REG_MASK 0x00040000L
+#define CB_COLOR7_DCC_CONTROL__ENABLE_CONSTANT_ENCODE_REG_WRITE_MASK 0x00080000L
+//CB_COLOR7_CMASK
+#define CB_COLOR7_CMASK__BASE_256B__SHIFT 0x0
+#define CB_COLOR7_CMASK__BASE_256B_MASK 0xFFFFFFFFL
+//CB_COLOR7_CMASK_BASE_EXT
+#define CB_COLOR7_CMASK_BASE_EXT__BASE_256B__SHIFT 0x0
+#define CB_COLOR7_CMASK_BASE_EXT__BASE_256B_MASK 0x000000FFL
+//CB_COLOR7_FMASK
+#define CB_COLOR7_FMASK__BASE_256B__SHIFT 0x0
+#define CB_COLOR7_FMASK__BASE_256B_MASK 0xFFFFFFFFL
+//CB_COLOR7_FMASK_BASE_EXT
+#define CB_COLOR7_FMASK_BASE_EXT__BASE_256B__SHIFT 0x0
+#define CB_COLOR7_FMASK_BASE_EXT__BASE_256B_MASK 0x000000FFL
+//CB_COLOR7_CLEAR_WORD0
+#define CB_COLOR7_CLEAR_WORD0__CLEAR_WORD0__SHIFT 0x0
+#define CB_COLOR7_CLEAR_WORD0__CLEAR_WORD0_MASK 0xFFFFFFFFL
+//CB_COLOR7_CLEAR_WORD1
+#define CB_COLOR7_CLEAR_WORD1__CLEAR_WORD1__SHIFT 0x0
+#define CB_COLOR7_CLEAR_WORD1__CLEAR_WORD1_MASK 0xFFFFFFFFL
+//CB_COLOR7_DCC_BASE
+#define CB_COLOR7_DCC_BASE__BASE_256B__SHIFT 0x0
+#define CB_COLOR7_DCC_BASE__BASE_256B_MASK 0xFFFFFFFFL
+//CB_COLOR7_DCC_BASE_EXT
+#define CB_COLOR7_DCC_BASE_EXT__BASE_256B__SHIFT 0x0
+#define CB_COLOR7_DCC_BASE_EXT__BASE_256B_MASK 0x000000FFL
+
+
+// addressBlock: xcd0_gc_gfxudec
+//CP_EOP_DONE_ADDR_LO
+#define CP_EOP_DONE_ADDR_LO__ADDR_LO__SHIFT 0x2
+#define CP_EOP_DONE_ADDR_LO__ADDR_LO_MASK 0xFFFFFFFCL
+//CP_EOP_DONE_ADDR_HI
+#define CP_EOP_DONE_ADDR_HI__ADDR_HI__SHIFT 0x0
+#define CP_EOP_DONE_ADDR_HI__ADDR_HI_MASK 0x0000FFFFL
+//CP_EOP_DONE_DATA_LO
+#define CP_EOP_DONE_DATA_LO__DATA_LO__SHIFT 0x0
+#define CP_EOP_DONE_DATA_LO__DATA_LO_MASK 0xFFFFFFFFL
+//CP_EOP_DONE_DATA_HI
+#define CP_EOP_DONE_DATA_HI__DATA_HI__SHIFT 0x0
+#define CP_EOP_DONE_DATA_HI__DATA_HI_MASK 0xFFFFFFFFL
+//CP_EOP_LAST_FENCE_LO
+#define CP_EOP_LAST_FENCE_LO__LAST_FENCE_LO__SHIFT 0x0
+#define CP_EOP_LAST_FENCE_LO__LAST_FENCE_LO_MASK 0xFFFFFFFFL
+//CP_EOP_LAST_FENCE_HI
+#define CP_EOP_LAST_FENCE_HI__LAST_FENCE_HI__SHIFT 0x0
+#define CP_EOP_LAST_FENCE_HI__LAST_FENCE_HI_MASK 0xFFFFFFFFL
+//CP_STREAM_OUT_ADDR_LO
+#define CP_STREAM_OUT_ADDR_LO__STREAM_OUT_ADDR_LO__SHIFT 0x2
+#define CP_STREAM_OUT_ADDR_LO__STREAM_OUT_ADDR_LO_MASK 0xFFFFFFFCL
+//CP_STREAM_OUT_ADDR_HI
+#define CP_STREAM_OUT_ADDR_HI__STREAM_OUT_ADDR_HI__SHIFT 0x0
+#define CP_STREAM_OUT_ADDR_HI__STREAM_OUT_ADDR_HI_MASK 0x0000FFFFL
+//CP_NUM_PRIM_WRITTEN_COUNT0_LO
+#define CP_NUM_PRIM_WRITTEN_COUNT0_LO__NUM_PRIM_WRITTEN_CNT0_LO__SHIFT 0x0
+#define CP_NUM_PRIM_WRITTEN_COUNT0_LO__NUM_PRIM_WRITTEN_CNT0_LO_MASK 0xFFFFFFFFL
+//CP_NUM_PRIM_WRITTEN_COUNT0_HI
+#define CP_NUM_PRIM_WRITTEN_COUNT0_HI__NUM_PRIM_WRITTEN_CNT0_HI__SHIFT 0x0
+#define CP_NUM_PRIM_WRITTEN_COUNT0_HI__NUM_PRIM_WRITTEN_CNT0_HI_MASK 0xFFFFFFFFL
+//CP_NUM_PRIM_NEEDED_COUNT0_LO
+#define CP_NUM_PRIM_NEEDED_COUNT0_LO__NUM_PRIM_NEEDED_CNT0_LO__SHIFT 0x0
+#define CP_NUM_PRIM_NEEDED_COUNT0_LO__NUM_PRIM_NEEDED_CNT0_LO_MASK 0xFFFFFFFFL
+//CP_NUM_PRIM_NEEDED_COUNT0_HI
+#define CP_NUM_PRIM_NEEDED_COUNT0_HI__NUM_PRIM_NEEDED_CNT0_HI__SHIFT 0x0
+#define CP_NUM_PRIM_NEEDED_COUNT0_HI__NUM_PRIM_NEEDED_CNT0_HI_MASK 0xFFFFFFFFL
+//CP_NUM_PRIM_WRITTEN_COUNT1_LO
+#define CP_NUM_PRIM_WRITTEN_COUNT1_LO__NUM_PRIM_WRITTEN_CNT1_LO__SHIFT 0x0
+#define CP_NUM_PRIM_WRITTEN_COUNT1_LO__NUM_PRIM_WRITTEN_CNT1_LO_MASK 0xFFFFFFFFL
+//CP_NUM_PRIM_WRITTEN_COUNT1_HI
+#define CP_NUM_PRIM_WRITTEN_COUNT1_HI__NUM_PRIM_WRITTEN_CNT1_HI__SHIFT 0x0
+#define CP_NUM_PRIM_WRITTEN_COUNT1_HI__NUM_PRIM_WRITTEN_CNT1_HI_MASK 0xFFFFFFFFL
+//CP_NUM_PRIM_NEEDED_COUNT1_LO
+#define CP_NUM_PRIM_NEEDED_COUNT1_LO__NUM_PRIM_NEEDED_CNT1_LO__SHIFT 0x0
+#define CP_NUM_PRIM_NEEDED_COUNT1_LO__NUM_PRIM_NEEDED_CNT1_LO_MASK 0xFFFFFFFFL
+//CP_NUM_PRIM_NEEDED_COUNT1_HI
+#define CP_NUM_PRIM_NEEDED_COUNT1_HI__NUM_PRIM_NEEDED_CNT1_HI__SHIFT 0x0
+#define CP_NUM_PRIM_NEEDED_COUNT1_HI__NUM_PRIM_NEEDED_CNT1_HI_MASK 0xFFFFFFFFL
+//CP_NUM_PRIM_WRITTEN_COUNT2_LO
+#define CP_NUM_PRIM_WRITTEN_COUNT2_LO__NUM_PRIM_WRITTEN_CNT2_LO__SHIFT 0x0
+#define CP_NUM_PRIM_WRITTEN_COUNT2_LO__NUM_PRIM_WRITTEN_CNT2_LO_MASK 0xFFFFFFFFL
+//CP_NUM_PRIM_WRITTEN_COUNT2_HI
+#define CP_NUM_PRIM_WRITTEN_COUNT2_HI__NUM_PRIM_WRITTEN_CNT2_HI__SHIFT 0x0
+#define CP_NUM_PRIM_WRITTEN_COUNT2_HI__NUM_PRIM_WRITTEN_CNT2_HI_MASK 0xFFFFFFFFL
+//CP_NUM_PRIM_NEEDED_COUNT2_LO
+#define CP_NUM_PRIM_NEEDED_COUNT2_LO__NUM_PRIM_NEEDED_CNT2_LO__SHIFT 0x0
+#define CP_NUM_PRIM_NEEDED_COUNT2_LO__NUM_PRIM_NEEDED_CNT2_LO_MASK 0xFFFFFFFFL
+//CP_NUM_PRIM_NEEDED_COUNT2_HI
+#define CP_NUM_PRIM_NEEDED_COUNT2_HI__NUM_PRIM_NEEDED_CNT2_HI__SHIFT 0x0
+#define CP_NUM_PRIM_NEEDED_COUNT2_HI__NUM_PRIM_NEEDED_CNT2_HI_MASK 0xFFFFFFFFL
+//CP_NUM_PRIM_WRITTEN_COUNT3_LO
+#define CP_NUM_PRIM_WRITTEN_COUNT3_LO__NUM_PRIM_WRITTEN_CNT3_LO__SHIFT 0x0
+#define CP_NUM_PRIM_WRITTEN_COUNT3_LO__NUM_PRIM_WRITTEN_CNT3_LO_MASK 0xFFFFFFFFL
+//CP_NUM_PRIM_WRITTEN_COUNT3_HI
+#define CP_NUM_PRIM_WRITTEN_COUNT3_HI__NUM_PRIM_WRITTEN_CNT3_HI__SHIFT 0x0
+#define CP_NUM_PRIM_WRITTEN_COUNT3_HI__NUM_PRIM_WRITTEN_CNT3_HI_MASK 0xFFFFFFFFL
+//CP_NUM_PRIM_NEEDED_COUNT3_LO
+#define CP_NUM_PRIM_NEEDED_COUNT3_LO__NUM_PRIM_NEEDED_CNT3_LO__SHIFT 0x0
+#define CP_NUM_PRIM_NEEDED_COUNT3_LO__NUM_PRIM_NEEDED_CNT3_LO_MASK 0xFFFFFFFFL
+//CP_NUM_PRIM_NEEDED_COUNT3_HI
+#define CP_NUM_PRIM_NEEDED_COUNT3_HI__NUM_PRIM_NEEDED_CNT3_HI__SHIFT 0x0
+#define CP_NUM_PRIM_NEEDED_COUNT3_HI__NUM_PRIM_NEEDED_CNT3_HI_MASK 0xFFFFFFFFL
+//CP_PIPE_STATS_ADDR_LO
+#define CP_PIPE_STATS_ADDR_LO__PIPE_STATS_ADDR_LO__SHIFT 0x2
+#define CP_PIPE_STATS_ADDR_LO__PIPE_STATS_ADDR_LO_MASK 0xFFFFFFFCL
+//CP_PIPE_STATS_ADDR_HI
+#define CP_PIPE_STATS_ADDR_HI__PIPE_STATS_ADDR_HI__SHIFT 0x0
+#define CP_PIPE_STATS_ADDR_HI__PIPE_STATS_ADDR_HI_MASK 0x0000FFFFL
+//CP_VGT_IAVERT_COUNT_LO
+#define CP_VGT_IAVERT_COUNT_LO__IAVERT_COUNT_LO__SHIFT 0x0
+#define CP_VGT_IAVERT_COUNT_LO__IAVERT_COUNT_LO_MASK 0xFFFFFFFFL
+//CP_VGT_IAVERT_COUNT_HI
+#define CP_VGT_IAVERT_COUNT_HI__IAVERT_COUNT_HI__SHIFT 0x0
+#define CP_VGT_IAVERT_COUNT_HI__IAVERT_COUNT_HI_MASK 0xFFFFFFFFL
+//CP_VGT_IAPRIM_COUNT_LO
+#define CP_VGT_IAPRIM_COUNT_LO__IAPRIM_COUNT_LO__SHIFT 0x0
+#define CP_VGT_IAPRIM_COUNT_LO__IAPRIM_COUNT_LO_MASK 0xFFFFFFFFL
+//CP_VGT_IAPRIM_COUNT_HI
+#define CP_VGT_IAPRIM_COUNT_HI__IAPRIM_COUNT_HI__SHIFT 0x0
+#define CP_VGT_IAPRIM_COUNT_HI__IAPRIM_COUNT_HI_MASK 0xFFFFFFFFL
+//CP_VGT_GSPRIM_COUNT_LO
+#define CP_VGT_GSPRIM_COUNT_LO__GSPRIM_COUNT_LO__SHIFT 0x0
+#define CP_VGT_GSPRIM_COUNT_LO__GSPRIM_COUNT_LO_MASK 0xFFFFFFFFL
+//CP_VGT_GSPRIM_COUNT_HI
+#define CP_VGT_GSPRIM_COUNT_HI__GSPRIM_COUNT_HI__SHIFT 0x0
+#define CP_VGT_GSPRIM_COUNT_HI__GSPRIM_COUNT_HI_MASK 0xFFFFFFFFL
+//CP_VGT_VSINVOC_COUNT_LO
+#define CP_VGT_VSINVOC_COUNT_LO__VSINVOC_COUNT_LO__SHIFT 0x0
+#define CP_VGT_VSINVOC_COUNT_LO__VSINVOC_COUNT_LO_MASK 0xFFFFFFFFL
+//CP_VGT_VSINVOC_COUNT_HI
+#define CP_VGT_VSINVOC_COUNT_HI__VSINVOC_COUNT_HI__SHIFT 0x0
+#define CP_VGT_VSINVOC_COUNT_HI__VSINVOC_COUNT_HI_MASK 0xFFFFFFFFL
+//CP_VGT_GSINVOC_COUNT_LO
+#define CP_VGT_GSINVOC_COUNT_LO__GSINVOC_COUNT_LO__SHIFT 0x0
+#define CP_VGT_GSINVOC_COUNT_LO__GSINVOC_COUNT_LO_MASK 0xFFFFFFFFL
+//CP_VGT_GSINVOC_COUNT_HI
+#define CP_VGT_GSINVOC_COUNT_HI__GSINVOC_COUNT_HI__SHIFT 0x0
+#define CP_VGT_GSINVOC_COUNT_HI__GSINVOC_COUNT_HI_MASK 0xFFFFFFFFL
+//CP_VGT_HSINVOC_COUNT_LO
+#define CP_VGT_HSINVOC_COUNT_LO__HSINVOC_COUNT_LO__SHIFT 0x0
+#define CP_VGT_HSINVOC_COUNT_LO__HSINVOC_COUNT_LO_MASK 0xFFFFFFFFL
+//CP_VGT_HSINVOC_COUNT_HI
+#define CP_VGT_HSINVOC_COUNT_HI__HSINVOC_COUNT_HI__SHIFT 0x0
+#define CP_VGT_HSINVOC_COUNT_HI__HSINVOC_COUNT_HI_MASK 0xFFFFFFFFL
+//CP_VGT_DSINVOC_COUNT_LO
+#define CP_VGT_DSINVOC_COUNT_LO__DSINVOC_COUNT_LO__SHIFT 0x0
+#define CP_VGT_DSINVOC_COUNT_LO__DSINVOC_COUNT_LO_MASK 0xFFFFFFFFL
+//CP_VGT_DSINVOC_COUNT_HI
+#define CP_VGT_DSINVOC_COUNT_HI__DSINVOC_COUNT_HI__SHIFT 0x0
+#define CP_VGT_DSINVOC_COUNT_HI__DSINVOC_COUNT_HI_MASK 0xFFFFFFFFL
+//CP_PA_CINVOC_COUNT_LO
+#define CP_PA_CINVOC_COUNT_LO__CINVOC_COUNT_LO__SHIFT 0x0
+#define CP_PA_CINVOC_COUNT_LO__CINVOC_COUNT_LO_MASK 0xFFFFFFFFL
+//CP_PA_CINVOC_COUNT_HI
+#define CP_PA_CINVOC_COUNT_HI__CINVOC_COUNT_HI__SHIFT 0x0
+#define CP_PA_CINVOC_COUNT_HI__CINVOC_COUNT_HI_MASK 0xFFFFFFFFL
+//CP_PA_CPRIM_COUNT_LO
+#define CP_PA_CPRIM_COUNT_LO__CPRIM_COUNT_LO__SHIFT 0x0
+#define CP_PA_CPRIM_COUNT_LO__CPRIM_COUNT_LO_MASK 0xFFFFFFFFL
+//CP_PA_CPRIM_COUNT_HI
+#define CP_PA_CPRIM_COUNT_HI__CPRIM_COUNT_HI__SHIFT 0x0
+#define CP_PA_CPRIM_COUNT_HI__CPRIM_COUNT_HI_MASK 0xFFFFFFFFL
+//CP_SC_PSINVOC_COUNT0_LO
+#define CP_SC_PSINVOC_COUNT0_LO__PSINVOC_COUNT0_LO__SHIFT 0x0
+#define CP_SC_PSINVOC_COUNT0_LO__PSINVOC_COUNT0_LO_MASK 0xFFFFFFFFL
+//CP_SC_PSINVOC_COUNT0_HI
+#define CP_SC_PSINVOC_COUNT0_HI__PSINVOC_COUNT0_HI__SHIFT 0x0
+#define CP_SC_PSINVOC_COUNT0_HI__PSINVOC_COUNT0_HI_MASK 0xFFFFFFFFL
+//CP_SC_PSINVOC_COUNT1_LO
+#define CP_SC_PSINVOC_COUNT1_LO__OBSOLETE__SHIFT 0x0
+#define CP_SC_PSINVOC_COUNT1_LO__OBSOLETE_MASK 0xFFFFFFFFL
+//CP_SC_PSINVOC_COUNT1_HI
+#define CP_SC_PSINVOC_COUNT1_HI__OBSOLETE__SHIFT 0x0
+#define CP_SC_PSINVOC_COUNT1_HI__OBSOLETE_MASK 0xFFFFFFFFL
+//CP_VGT_CSINVOC_COUNT_LO
+#define CP_VGT_CSINVOC_COUNT_LO__CSINVOC_COUNT_LO__SHIFT 0x0
+#define CP_VGT_CSINVOC_COUNT_LO__CSINVOC_COUNT_LO_MASK 0xFFFFFFFFL
+//CP_VGT_CSINVOC_COUNT_HI
+#define CP_VGT_CSINVOC_COUNT_HI__CSINVOC_COUNT_HI__SHIFT 0x0
+#define CP_VGT_CSINVOC_COUNT_HI__CSINVOC_COUNT_HI_MASK 0xFFFFFFFFL
+//CP_PIPE_STATS_CONTROL
+#define CP_PIPE_STATS_CONTROL__CACHE_POLICY__SHIFT 0x19
+#define CP_PIPE_STATS_CONTROL__CACHE_POLICY_MASK 0x02000000L
+//CP_STREAM_OUT_CONTROL
+#define CP_STREAM_OUT_CONTROL__CACHE_POLICY__SHIFT 0x19
+#define CP_STREAM_OUT_CONTROL__CACHE_POLICY_MASK 0x02000000L
+//CP_STRMOUT_CNTL
+#define CP_STRMOUT_CNTL__OFFSET_UPDATE_DONE__SHIFT 0x0
+#define CP_STRMOUT_CNTL__OFFSET_UPDATE_DONE_MASK 0x00000001L
+//SCRATCH_REG0
+#define SCRATCH_REG0__SCRATCH_REG0__SHIFT 0x0
+#define SCRATCH_REG0__SCRATCH_REG0_MASK 0xFFFFFFFFL
+//SCRATCH_REG1
+#define SCRATCH_REG1__SCRATCH_REG1__SHIFT 0x0
+#define SCRATCH_REG1__SCRATCH_REG1_MASK 0xFFFFFFFFL
+//SCRATCH_REG2
+#define SCRATCH_REG2__SCRATCH_REG2__SHIFT 0x0
+#define SCRATCH_REG2__SCRATCH_REG2_MASK 0xFFFFFFFFL
+//SCRATCH_REG3
+#define SCRATCH_REG3__SCRATCH_REG3__SHIFT 0x0
+#define SCRATCH_REG3__SCRATCH_REG3_MASK 0xFFFFFFFFL
+//SCRATCH_REG4
+#define SCRATCH_REG4__SCRATCH_REG4__SHIFT 0x0
+#define SCRATCH_REG4__SCRATCH_REG4_MASK 0xFFFFFFFFL
+//SCRATCH_REG5
+#define SCRATCH_REG5__SCRATCH_REG5__SHIFT 0x0
+#define SCRATCH_REG5__SCRATCH_REG5_MASK 0xFFFFFFFFL
+//SCRATCH_REG6
+#define SCRATCH_REG6__SCRATCH_REG6__SHIFT 0x0
+#define SCRATCH_REG6__SCRATCH_REG6_MASK 0xFFFFFFFFL
+//SCRATCH_REG7
+#define SCRATCH_REG7__SCRATCH_REG7__SHIFT 0x0
+#define SCRATCH_REG7__SCRATCH_REG7_MASK 0xFFFFFFFFL
+//CP_APPEND_DATA_HI
+#define CP_APPEND_DATA_HI__DATA__SHIFT 0x0
+#define CP_APPEND_DATA_HI__DATA_MASK 0xFFFFFFFFL
+//CP_APPEND_LAST_CS_FENCE_HI
+#define CP_APPEND_LAST_CS_FENCE_HI__LAST_FENCE__SHIFT 0x0
+#define CP_APPEND_LAST_CS_FENCE_HI__LAST_FENCE_MASK 0xFFFFFFFFL
+//CP_APPEND_LAST_PS_FENCE_HI
+#define CP_APPEND_LAST_PS_FENCE_HI__LAST_FENCE__SHIFT 0x0
+#define CP_APPEND_LAST_PS_FENCE_HI__LAST_FENCE_MASK 0xFFFFFFFFL
+//SCRATCH_UMSK
+#define SCRATCH_UMSK__OBSOLETE_UMSK__SHIFT 0x0
+#define SCRATCH_UMSK__OBSOLETE_SWAP__SHIFT 0x10
+#define SCRATCH_UMSK__OBSOLETE_UMSK_MASK 0x000000FFL
+#define SCRATCH_UMSK__OBSOLETE_SWAP_MASK 0x00030000L
+//SCRATCH_ADDR
+#define SCRATCH_ADDR__OBSOLETE_ADDR__SHIFT 0x0
+#define SCRATCH_ADDR__OBSOLETE_ADDR_MASK 0xFFFFFFFFL
+//CP_PFP_ATOMIC_PREOP_LO
+#define CP_PFP_ATOMIC_PREOP_LO__ATOMIC_PREOP_LO__SHIFT 0x0
+#define CP_PFP_ATOMIC_PREOP_LO__ATOMIC_PREOP_LO_MASK 0xFFFFFFFFL
+//CP_PFP_ATOMIC_PREOP_HI
+#define CP_PFP_ATOMIC_PREOP_HI__ATOMIC_PREOP_HI__SHIFT 0x0
+#define CP_PFP_ATOMIC_PREOP_HI__ATOMIC_PREOP_HI_MASK 0xFFFFFFFFL
+//CP_PFP_GDS_ATOMIC0_PREOP_LO
+#define CP_PFP_GDS_ATOMIC0_PREOP_LO__GDS_ATOMIC0_PREOP_LO__SHIFT 0x0
+#define CP_PFP_GDS_ATOMIC0_PREOP_LO__GDS_ATOMIC0_PREOP_LO_MASK 0xFFFFFFFFL
+//CP_PFP_GDS_ATOMIC0_PREOP_HI
+#define CP_PFP_GDS_ATOMIC0_PREOP_HI__GDS_ATOMIC0_PREOP_HI__SHIFT 0x0
+#define CP_PFP_GDS_ATOMIC0_PREOP_HI__GDS_ATOMIC0_PREOP_HI_MASK 0xFFFFFFFFL
+//CP_PFP_GDS_ATOMIC1_PREOP_LO
+#define CP_PFP_GDS_ATOMIC1_PREOP_LO__GDS_ATOMIC1_PREOP_LO__SHIFT 0x0
+#define CP_PFP_GDS_ATOMIC1_PREOP_LO__GDS_ATOMIC1_PREOP_LO_MASK 0xFFFFFFFFL
+//CP_PFP_GDS_ATOMIC1_PREOP_HI
+#define CP_PFP_GDS_ATOMIC1_PREOP_HI__GDS_ATOMIC1_PREOP_HI__SHIFT 0x0
+#define CP_PFP_GDS_ATOMIC1_PREOP_HI__GDS_ATOMIC1_PREOP_HI_MASK 0xFFFFFFFFL
+//CP_APPEND_ADDR_LO
+#define CP_APPEND_ADDR_LO__MEM_ADDR_LO__SHIFT 0x2
+#define CP_APPEND_ADDR_LO__MEM_ADDR_LO_MASK 0xFFFFFFFCL
+//CP_APPEND_ADDR_HI
+#define CP_APPEND_ADDR_HI__MEM_ADDR_HI__SHIFT 0x0
+#define CP_APPEND_ADDR_HI__CS_PS_SEL__SHIFT 0x10
+#define CP_APPEND_ADDR_HI__CACHE_POLICY__SHIFT 0x19
+#define CP_APPEND_ADDR_HI__COMMAND__SHIFT 0x1d
+#define CP_APPEND_ADDR_HI__MEM_ADDR_HI_MASK 0x0000FFFFL
+#define CP_APPEND_ADDR_HI__CS_PS_SEL_MASK 0x00010000L
+#define CP_APPEND_ADDR_HI__CACHE_POLICY_MASK 0x02000000L
+#define CP_APPEND_ADDR_HI__COMMAND_MASK 0xE0000000L
+//CP_APPEND_DATA_LO
+#define CP_APPEND_DATA_LO__DATA__SHIFT 0x0
+#define CP_APPEND_DATA_LO__DATA_MASK 0xFFFFFFFFL
+//CP_APPEND_LAST_CS_FENCE_LO
+#define CP_APPEND_LAST_CS_FENCE_LO__LAST_FENCE__SHIFT 0x0
+#define CP_APPEND_LAST_CS_FENCE_LO__LAST_FENCE_MASK 0xFFFFFFFFL
+//CP_APPEND_LAST_PS_FENCE_LO
+#define CP_APPEND_LAST_PS_FENCE_LO__LAST_FENCE__SHIFT 0x0
+#define CP_APPEND_LAST_PS_FENCE_LO__LAST_FENCE_MASK 0xFFFFFFFFL
+//CP_ATOMIC_PREOP_LO
+#define CP_ATOMIC_PREOP_LO__ATOMIC_PREOP_LO__SHIFT 0x0
+#define CP_ATOMIC_PREOP_LO__ATOMIC_PREOP_LO_MASK 0xFFFFFFFFL
+//CP_ME_ATOMIC_PREOP_LO
+#define CP_ME_ATOMIC_PREOP_LO__ATOMIC_PREOP_LO__SHIFT 0x0
+#define CP_ME_ATOMIC_PREOP_LO__ATOMIC_PREOP_LO_MASK 0xFFFFFFFFL
+//CP_ATOMIC_PREOP_HI
+#define CP_ATOMIC_PREOP_HI__ATOMIC_PREOP_HI__SHIFT 0x0
+#define CP_ATOMIC_PREOP_HI__ATOMIC_PREOP_HI_MASK 0xFFFFFFFFL
+//CP_ME_ATOMIC_PREOP_HI
+#define CP_ME_ATOMIC_PREOP_HI__ATOMIC_PREOP_HI__SHIFT 0x0
+#define CP_ME_ATOMIC_PREOP_HI__ATOMIC_PREOP_HI_MASK 0xFFFFFFFFL
+//CP_GDS_ATOMIC0_PREOP_LO
+#define CP_GDS_ATOMIC0_PREOP_LO__GDS_ATOMIC0_PREOP_LO__SHIFT 0x0
+#define CP_GDS_ATOMIC0_PREOP_LO__GDS_ATOMIC0_PREOP_LO_MASK 0xFFFFFFFFL
+//CP_ME_GDS_ATOMIC0_PREOP_LO
+#define CP_ME_GDS_ATOMIC0_PREOP_LO__GDS_ATOMIC0_PREOP_LO__SHIFT 0x0
+#define CP_ME_GDS_ATOMIC0_PREOP_LO__GDS_ATOMIC0_PREOP_LO_MASK 0xFFFFFFFFL
+//CP_GDS_ATOMIC0_PREOP_HI
+#define CP_GDS_ATOMIC0_PREOP_HI__GDS_ATOMIC0_PREOP_HI__SHIFT 0x0
+#define CP_GDS_ATOMIC0_PREOP_HI__GDS_ATOMIC0_PREOP_HI_MASK 0xFFFFFFFFL
+//CP_ME_GDS_ATOMIC0_PREOP_HI
+#define CP_ME_GDS_ATOMIC0_PREOP_HI__GDS_ATOMIC0_PREOP_HI__SHIFT 0x0
+#define CP_ME_GDS_ATOMIC0_PREOP_HI__GDS_ATOMIC0_PREOP_HI_MASK 0xFFFFFFFFL
+//CP_GDS_ATOMIC1_PREOP_LO
+#define CP_GDS_ATOMIC1_PREOP_LO__GDS_ATOMIC1_PREOP_LO__SHIFT 0x0
+#define CP_GDS_ATOMIC1_PREOP_LO__GDS_ATOMIC1_PREOP_LO_MASK 0xFFFFFFFFL
+//CP_ME_GDS_ATOMIC1_PREOP_LO
+#define CP_ME_GDS_ATOMIC1_PREOP_LO__GDS_ATOMIC1_PREOP_LO__SHIFT 0x0
+#define CP_ME_GDS_ATOMIC1_PREOP_LO__GDS_ATOMIC1_PREOP_LO_MASK 0xFFFFFFFFL
+//CP_GDS_ATOMIC1_PREOP_HI
+#define CP_GDS_ATOMIC1_PREOP_HI__GDS_ATOMIC1_PREOP_HI__SHIFT 0x0
+#define CP_GDS_ATOMIC1_PREOP_HI__GDS_ATOMIC1_PREOP_HI_MASK 0xFFFFFFFFL
+//CP_ME_GDS_ATOMIC1_PREOP_HI
+#define CP_ME_GDS_ATOMIC1_PREOP_HI__GDS_ATOMIC1_PREOP_HI__SHIFT 0x0
+#define CP_ME_GDS_ATOMIC1_PREOP_HI__GDS_ATOMIC1_PREOP_HI_MASK 0xFFFFFFFFL
+//CP_ME_MC_WADDR_LO
+#define CP_ME_MC_WADDR_LO__ME_MC_WADDR_LO__SHIFT 0x2
+#define CP_ME_MC_WADDR_LO__ME_MC_WADDR_LO_MASK 0xFFFFFFFCL
+//CP_ME_MC_WADDR_HI
+#define CP_ME_MC_WADDR_HI__ME_MC_WADDR_HI__SHIFT 0x0
+#define CP_ME_MC_WADDR_HI__CACHE_POLICY__SHIFT 0x16
+#define CP_ME_MC_WADDR_HI__ME_MC_WADDR_HI_MASK 0x0000FFFFL
+#define CP_ME_MC_WADDR_HI__CACHE_POLICY_MASK 0x00400000L
+//CP_ME_MC_WDATA_LO
+#define CP_ME_MC_WDATA_LO__ME_MC_WDATA_LO__SHIFT 0x0
+#define CP_ME_MC_WDATA_LO__ME_MC_WDATA_LO_MASK 0xFFFFFFFFL
+//CP_ME_MC_WDATA_HI
+#define CP_ME_MC_WDATA_HI__ME_MC_WDATA_HI__SHIFT 0x0
+#define CP_ME_MC_WDATA_HI__ME_MC_WDATA_HI_MASK 0xFFFFFFFFL
+//CP_ME_MC_RADDR_LO
+#define CP_ME_MC_RADDR_LO__ME_MC_RADDR_LO__SHIFT 0x2
+#define CP_ME_MC_RADDR_LO__ME_MC_RADDR_LO_MASK 0xFFFFFFFCL
+//CP_ME_MC_RADDR_HI
+#define CP_ME_MC_RADDR_HI__ME_MC_RADDR_HI__SHIFT 0x0
+#define CP_ME_MC_RADDR_HI__CACHE_POLICY__SHIFT 0x16
+#define CP_ME_MC_RADDR_HI__ME_MC_RADDR_HI_MASK 0x0000FFFFL
+#define CP_ME_MC_RADDR_HI__CACHE_POLICY_MASK 0x00400000L
+//CP_SEM_WAIT_TIMER
+#define CP_SEM_WAIT_TIMER__SEM_WAIT_TIMER__SHIFT 0x0
+#define CP_SEM_WAIT_TIMER__SEM_WAIT_TIMER_MASK 0xFFFFFFFFL
+//CP_SIG_SEM_ADDR_LO
+#define CP_SIG_SEM_ADDR_LO__SEM_ADDR_SWAP__SHIFT 0x0
+#define CP_SIG_SEM_ADDR_LO__SEM_ADDR_LO__SHIFT 0x3
+#define CP_SIG_SEM_ADDR_LO__SEM_ADDR_SWAP_MASK 0x00000003L
+#define CP_SIG_SEM_ADDR_LO__SEM_ADDR_LO_MASK 0xFFFFFFF8L
+//CP_SIG_SEM_ADDR_HI
+#define CP_SIG_SEM_ADDR_HI__SEM_ADDR_HI__SHIFT 0x0
+#define CP_SIG_SEM_ADDR_HI__SEM_USE_MAILBOX__SHIFT 0x10
+#define CP_SIG_SEM_ADDR_HI__SEM_SIGNAL_TYPE__SHIFT 0x14
+#define CP_SIG_SEM_ADDR_HI__SEM_CLIENT_CODE__SHIFT 0x18
+#define CP_SIG_SEM_ADDR_HI__SEM_SELECT__SHIFT 0x1d
+#define CP_SIG_SEM_ADDR_HI__SEM_ADDR_HI_MASK 0x0000FFFFL
+#define CP_SIG_SEM_ADDR_HI__SEM_USE_MAILBOX_MASK 0x00010000L
+#define CP_SIG_SEM_ADDR_HI__SEM_SIGNAL_TYPE_MASK 0x00100000L
+#define CP_SIG_SEM_ADDR_HI__SEM_CLIENT_CODE_MASK 0x03000000L
+#define CP_SIG_SEM_ADDR_HI__SEM_SELECT_MASK 0xE0000000L
+//CP_WAIT_REG_MEM_TIMEOUT
+#define CP_WAIT_REG_MEM_TIMEOUT__WAIT_REG_MEM_TIMEOUT__SHIFT 0x0
+#define CP_WAIT_REG_MEM_TIMEOUT__WAIT_REG_MEM_TIMEOUT_MASK 0xFFFFFFFFL
+//CP_WAIT_SEM_ADDR_LO
+#define CP_WAIT_SEM_ADDR_LO__SEM_ADDR_SWAP__SHIFT 0x0
+#define CP_WAIT_SEM_ADDR_LO__SEM_ADDR_LO__SHIFT 0x3
+#define CP_WAIT_SEM_ADDR_LO__SEM_ADDR_SWAP_MASK 0x00000003L
+#define CP_WAIT_SEM_ADDR_LO__SEM_ADDR_LO_MASK 0xFFFFFFF8L
+//CP_WAIT_SEM_ADDR_HI
+#define CP_WAIT_SEM_ADDR_HI__SEM_ADDR_HI__SHIFT 0x0
+#define CP_WAIT_SEM_ADDR_HI__SEM_USE_MAILBOX__SHIFT 0x10
+#define CP_WAIT_SEM_ADDR_HI__SEM_SIGNAL_TYPE__SHIFT 0x14
+#define CP_WAIT_SEM_ADDR_HI__SEM_CLIENT_CODE__SHIFT 0x18
+#define CP_WAIT_SEM_ADDR_HI__SEM_SELECT__SHIFT 0x1d
+#define CP_WAIT_SEM_ADDR_HI__SEM_ADDR_HI_MASK 0x0000FFFFL
+#define CP_WAIT_SEM_ADDR_HI__SEM_USE_MAILBOX_MASK 0x00010000L
+#define CP_WAIT_SEM_ADDR_HI__SEM_SIGNAL_TYPE_MASK 0x00100000L
+#define CP_WAIT_SEM_ADDR_HI__SEM_CLIENT_CODE_MASK 0x03000000L
+#define CP_WAIT_SEM_ADDR_HI__SEM_SELECT_MASK 0xE0000000L
+//CP_DMA_PFP_CONTROL
+#define CP_DMA_PFP_CONTROL__MEMLOG_CLEAR__SHIFT 0xa
+#define CP_DMA_PFP_CONTROL__SRC_CACHE_POLICY__SHIFT 0xd
+#define CP_DMA_PFP_CONTROL__DST_SELECT__SHIFT 0x14
+#define CP_DMA_PFP_CONTROL__DST_CACHE_POLICY__SHIFT 0x19
+#define CP_DMA_PFP_CONTROL__SRC_SELECT__SHIFT 0x1d
+#define CP_DMA_PFP_CONTROL__MEMLOG_CLEAR_MASK 0x00000400L
+#define CP_DMA_PFP_CONTROL__SRC_CACHE_POLICY_MASK 0x00002000L
+#define CP_DMA_PFP_CONTROL__DST_SELECT_MASK 0x00300000L
+#define CP_DMA_PFP_CONTROL__DST_CACHE_POLICY_MASK 0x02000000L
+#define CP_DMA_PFP_CONTROL__SRC_SELECT_MASK 0x60000000L
+//CP_DMA_ME_CONTROL
+#define CP_DMA_ME_CONTROL__MEMLOG_CLEAR__SHIFT 0xa
+#define CP_DMA_ME_CONTROL__SRC_CACHE_POLICY__SHIFT 0xd
+#define CP_DMA_ME_CONTROL__DST_SELECT__SHIFT 0x14
+#define CP_DMA_ME_CONTROL__DST_CACHE_POLICY__SHIFT 0x19
+#define CP_DMA_ME_CONTROL__SRC_SELECT__SHIFT 0x1d
+#define CP_DMA_ME_CONTROL__MEMLOG_CLEAR_MASK 0x00000400L
+#define CP_DMA_ME_CONTROL__SRC_CACHE_POLICY_MASK 0x00002000L
+#define CP_DMA_ME_CONTROL__DST_SELECT_MASK 0x00300000L
+#define CP_DMA_ME_CONTROL__DST_CACHE_POLICY_MASK 0x02000000L
+#define CP_DMA_ME_CONTROL__SRC_SELECT_MASK 0x60000000L
+//CP_COHER_BASE_HI
+#define CP_COHER_BASE_HI__COHER_BASE_HI_256B__SHIFT 0x0
+#define CP_COHER_BASE_HI__COHER_BASE_HI_256B_MASK 0x000000FFL
+//CP_COHER_START_DELAY
+#define CP_COHER_START_DELAY__START_DELAY_COUNT__SHIFT 0x0
+#define CP_COHER_START_DELAY__START_DELAY_COUNT_MASK 0x0000003FL
+//CP_COHER_CNTL
+#define CP_COHER_CNTL__TC_NC_ACTION_ENA__SHIFT 0x3
+#define CP_COHER_CNTL__TC_WC_ACTION_ENA__SHIFT 0x4
+#define CP_COHER_CNTL__TC_INV_METADATA_ACTION_ENA__SHIFT 0x5
+#define CP_COHER_CNTL__TCL1_VOL_ACTION_ENA__SHIFT 0xf
+#define CP_COHER_CNTL__TC_WB_ACTION_ENA__SHIFT 0x12
+#define CP_COHER_CNTL__TCL1_ACTION_ENA__SHIFT 0x16
+#define CP_COHER_CNTL__TC_ACTION_ENA__SHIFT 0x17
+#define CP_COHER_CNTL__CB_ACTION_ENA__SHIFT 0x19
+#define CP_COHER_CNTL__DB_ACTION_ENA__SHIFT 0x1a
+#define CP_COHER_CNTL__SH_KCACHE_ACTION_ENA__SHIFT 0x1b
+#define CP_COHER_CNTL__SH_KCACHE_VOL_ACTION_ENA__SHIFT 0x1c
+#define CP_COHER_CNTL__SH_ICACHE_ACTION_ENA__SHIFT 0x1d
+#define CP_COHER_CNTL__SH_KCACHE_WB_ACTION_ENA__SHIFT 0x1e
+#define CP_COHER_CNTL__TC_NC_ACTION_ENA_MASK 0x00000008L
+#define CP_COHER_CNTL__TC_WC_ACTION_ENA_MASK 0x00000010L
+#define CP_COHER_CNTL__TC_INV_METADATA_ACTION_ENA_MASK 0x00000020L
+#define CP_COHER_CNTL__TCL1_VOL_ACTION_ENA_MASK 0x00008000L
+#define CP_COHER_CNTL__TC_WB_ACTION_ENA_MASK 0x00040000L
+#define CP_COHER_CNTL__TCL1_ACTION_ENA_MASK 0x00400000L
+#define CP_COHER_CNTL__TC_ACTION_ENA_MASK 0x00800000L
+#define CP_COHER_CNTL__CB_ACTION_ENA_MASK 0x02000000L
+#define CP_COHER_CNTL__DB_ACTION_ENA_MASK 0x04000000L
+#define CP_COHER_CNTL__SH_KCACHE_ACTION_ENA_MASK 0x08000000L
+#define CP_COHER_CNTL__SH_KCACHE_VOL_ACTION_ENA_MASK 0x10000000L
+#define CP_COHER_CNTL__SH_ICACHE_ACTION_ENA_MASK 0x20000000L
+#define CP_COHER_CNTL__SH_KCACHE_WB_ACTION_ENA_MASK 0x40000000L
+//CP_COHER_SIZE
+#define CP_COHER_SIZE__COHER_SIZE_256B__SHIFT 0x0
+#define CP_COHER_SIZE__COHER_SIZE_256B_MASK 0xFFFFFFFFL
+//CP_COHER_BASE
+#define CP_COHER_BASE__COHER_BASE_256B__SHIFT 0x0
+#define CP_COHER_BASE__COHER_BASE_256B_MASK 0xFFFFFFFFL
+//CP_COHER_STATUS
+#define CP_COHER_STATUS__MEID__SHIFT 0x18
+#define CP_COHER_STATUS__STATUS__SHIFT 0x1f
+#define CP_COHER_STATUS__MEID_MASK 0x03000000L
+#define CP_COHER_STATUS__STATUS_MASK 0x80000000L
+//CP_DMA_ME_SRC_ADDR
+#define CP_DMA_ME_SRC_ADDR__SRC_ADDR__SHIFT 0x0
+#define CP_DMA_ME_SRC_ADDR__SRC_ADDR_MASK 0xFFFFFFFFL
+//CP_DMA_ME_SRC_ADDR_HI
+#define CP_DMA_ME_SRC_ADDR_HI__SRC_ADDR_HI__SHIFT 0x0
+#define CP_DMA_ME_SRC_ADDR_HI__SRC_ADDR_HI_MASK 0x0000FFFFL
+//CP_DMA_ME_DST_ADDR
+#define CP_DMA_ME_DST_ADDR__DST_ADDR__SHIFT 0x0
+#define CP_DMA_ME_DST_ADDR__DST_ADDR_MASK 0xFFFFFFFFL
+//CP_DMA_ME_DST_ADDR_HI
+#define CP_DMA_ME_DST_ADDR_HI__DST_ADDR_HI__SHIFT 0x0
+#define CP_DMA_ME_DST_ADDR_HI__DST_ADDR_HI_MASK 0x0000FFFFL
+//CP_DMA_ME_COMMAND
+#define CP_DMA_ME_COMMAND__BYTE_COUNT__SHIFT 0x0
+#define CP_DMA_ME_COMMAND__SAS__SHIFT 0x1a
+#define CP_DMA_ME_COMMAND__DAS__SHIFT 0x1b
+#define CP_DMA_ME_COMMAND__SAIC__SHIFT 0x1c
+#define CP_DMA_ME_COMMAND__DAIC__SHIFT 0x1d
+#define CP_DMA_ME_COMMAND__RAW_WAIT__SHIFT 0x1e
+#define CP_DMA_ME_COMMAND__DIS_WC__SHIFT 0x1f
+#define CP_DMA_ME_COMMAND__BYTE_COUNT_MASK 0x03FFFFFFL
+#define CP_DMA_ME_COMMAND__SAS_MASK 0x04000000L
+#define CP_DMA_ME_COMMAND__DAS_MASK 0x08000000L
+#define CP_DMA_ME_COMMAND__SAIC_MASK 0x10000000L
+#define CP_DMA_ME_COMMAND__DAIC_MASK 0x20000000L
+#define CP_DMA_ME_COMMAND__RAW_WAIT_MASK 0x40000000L
+#define CP_DMA_ME_COMMAND__DIS_WC_MASK 0x80000000L
+//CP_DMA_PFP_SRC_ADDR
+#define CP_DMA_PFP_SRC_ADDR__SRC_ADDR__SHIFT 0x0
+#define CP_DMA_PFP_SRC_ADDR__SRC_ADDR_MASK 0xFFFFFFFFL
+//CP_DMA_PFP_SRC_ADDR_HI
+#define CP_DMA_PFP_SRC_ADDR_HI__SRC_ADDR_HI__SHIFT 0x0
+#define CP_DMA_PFP_SRC_ADDR_HI__SRC_ADDR_HI_MASK 0x0000FFFFL
+//CP_DMA_PFP_DST_ADDR
+#define CP_DMA_PFP_DST_ADDR__DST_ADDR__SHIFT 0x0
+#define CP_DMA_PFP_DST_ADDR__DST_ADDR_MASK 0xFFFFFFFFL
+//CP_DMA_PFP_DST_ADDR_HI
+#define CP_DMA_PFP_DST_ADDR_HI__DST_ADDR_HI__SHIFT 0x0
+#define CP_DMA_PFP_DST_ADDR_HI__DST_ADDR_HI_MASK 0x0000FFFFL
+//CP_DMA_PFP_COMMAND
+#define CP_DMA_PFP_COMMAND__BYTE_COUNT__SHIFT 0x0
+#define CP_DMA_PFP_COMMAND__SAS__SHIFT 0x1a
+#define CP_DMA_PFP_COMMAND__DAS__SHIFT 0x1b
+#define CP_DMA_PFP_COMMAND__SAIC__SHIFT 0x1c
+#define CP_DMA_PFP_COMMAND__DAIC__SHIFT 0x1d
+#define CP_DMA_PFP_COMMAND__RAW_WAIT__SHIFT 0x1e
+#define CP_DMA_PFP_COMMAND__DIS_WC__SHIFT 0x1f
+#define CP_DMA_PFP_COMMAND__BYTE_COUNT_MASK 0x03FFFFFFL
+#define CP_DMA_PFP_COMMAND__SAS_MASK 0x04000000L
+#define CP_DMA_PFP_COMMAND__DAS_MASK 0x08000000L
+#define CP_DMA_PFP_COMMAND__SAIC_MASK 0x10000000L
+#define CP_DMA_PFP_COMMAND__DAIC_MASK 0x20000000L
+#define CP_DMA_PFP_COMMAND__RAW_WAIT_MASK 0x40000000L
+#define CP_DMA_PFP_COMMAND__DIS_WC_MASK 0x80000000L
+//CP_DMA_CNTL
+#define CP_DMA_CNTL__UTCL1_FAULT_CONTROL__SHIFT 0x0
+#define CP_DMA_CNTL__MIN_AVAILSZ__SHIFT 0x4
+#define CP_DMA_CNTL__BUFFER_DEPTH__SHIFT 0x10
+#define CP_DMA_CNTL__PIO_FIFO_EMPTY__SHIFT 0x1c
+#define CP_DMA_CNTL__PIO_FIFO_FULL__SHIFT 0x1d
+#define CP_DMA_CNTL__PIO_COUNT__SHIFT 0x1e
+#define CP_DMA_CNTL__UTCL1_FAULT_CONTROL_MASK 0x00000001L
+#define CP_DMA_CNTL__MIN_AVAILSZ_MASK 0x00000030L
+#define CP_DMA_CNTL__BUFFER_DEPTH_MASK 0x000F0000L
+#define CP_DMA_CNTL__PIO_FIFO_EMPTY_MASK 0x10000000L
+#define CP_DMA_CNTL__PIO_FIFO_FULL_MASK 0x20000000L
+#define CP_DMA_CNTL__PIO_COUNT_MASK 0xC0000000L
+//CP_DMA_READ_TAGS
+#define CP_DMA_READ_TAGS__DMA_READ_TAG__SHIFT 0x0
+#define CP_DMA_READ_TAGS__DMA_READ_TAG_VALID__SHIFT 0x1c
+#define CP_DMA_READ_TAGS__DMA_READ_TAG_MASK 0x03FFFFFFL
+#define CP_DMA_READ_TAGS__DMA_READ_TAG_VALID_MASK 0x10000000L
+//CP_COHER_SIZE_HI
+#define CP_COHER_SIZE_HI__COHER_SIZE_HI_256B__SHIFT 0x0
+#define CP_COHER_SIZE_HI__COHER_SIZE_HI_256B_MASK 0x000000FFL
+//CP_PFP_IB_CONTROL
+#define CP_PFP_IB_CONTROL__IB_EN__SHIFT 0x0
+#define CP_PFP_IB_CONTROL__IB_EN_MASK 0x000000FFL
+//CP_PFP_LOAD_CONTROL
+#define CP_PFP_LOAD_CONTROL__CONFIG_REG_EN__SHIFT 0x0
+#define CP_PFP_LOAD_CONTROL__CNTX_REG_EN__SHIFT 0x1
+#define CP_PFP_LOAD_CONTROL__SH_GFX_REG_EN__SHIFT 0x10
+#define CP_PFP_LOAD_CONTROL__SH_CS_REG_EN__SHIFT 0x18
+#define CP_PFP_LOAD_CONTROL__CONFIG_REG_EN_MASK 0x00000001L
+#define CP_PFP_LOAD_CONTROL__CNTX_REG_EN_MASK 0x00000002L
+#define CP_PFP_LOAD_CONTROL__SH_GFX_REG_EN_MASK 0x00010000L
+#define CP_PFP_LOAD_CONTROL__SH_CS_REG_EN_MASK 0x01000000L
+//CP_SCRATCH_INDEX
+#define CP_SCRATCH_INDEX__SCRATCH_INDEX__SHIFT 0x0
+#define CP_SCRATCH_INDEX__SCRATCH_INDEX_MASK 0x000000FFL
+//CP_SCRATCH_DATA
+#define CP_SCRATCH_DATA__SCRATCH_DATA__SHIFT 0x0
+#define CP_SCRATCH_DATA__SCRATCH_DATA_MASK 0xFFFFFFFFL
+//CP_RB_OFFSET
+#define CP_RB_OFFSET__RB_OFFSET__SHIFT 0x0
+#define CP_RB_OFFSET__RB_OFFSET_MASK 0x000FFFFFL
+//CP_IB1_OFFSET
+#define CP_IB1_OFFSET__IB1_OFFSET__SHIFT 0x0
+#define CP_IB1_OFFSET__IB1_OFFSET_MASK 0x000FFFFFL
+//CP_IB2_OFFSET
+#define CP_IB2_OFFSET__IB2_OFFSET__SHIFT 0x0
+#define CP_IB2_OFFSET__IB2_OFFSET_MASK 0x000FFFFFL
+//CP_IB1_PREAMBLE_BEGIN
+#define CP_IB1_PREAMBLE_BEGIN__IB1_PREAMBLE_BEGIN__SHIFT 0x0
+#define CP_IB1_PREAMBLE_BEGIN__IB1_PREAMBLE_BEGIN_MASK 0x000FFFFFL
+//CP_IB1_PREAMBLE_END
+#define CP_IB1_PREAMBLE_END__IB1_PREAMBLE_END__SHIFT 0x0
+#define CP_IB1_PREAMBLE_END__IB1_PREAMBLE_END_MASK 0x000FFFFFL
+//CP_IB2_PREAMBLE_BEGIN
+#define CP_IB2_PREAMBLE_BEGIN__IB2_PREAMBLE_BEGIN__SHIFT 0x0
+#define CP_IB2_PREAMBLE_BEGIN__IB2_PREAMBLE_BEGIN_MASK 0x000FFFFFL
+//CP_IB2_PREAMBLE_END
+#define CP_IB2_PREAMBLE_END__IB2_PREAMBLE_END__SHIFT 0x0
+#define CP_IB2_PREAMBLE_END__IB2_PREAMBLE_END_MASK 0x000FFFFFL
+//CP_CE_IB1_OFFSET
+#define CP_CE_IB1_OFFSET__IB1_OFFSET__SHIFT 0x0
+#define CP_CE_IB1_OFFSET__IB1_OFFSET_MASK 0x000FFFFFL
+//CP_CE_IB2_OFFSET
+#define CP_CE_IB2_OFFSET__IB2_OFFSET__SHIFT 0x0
+#define CP_CE_IB2_OFFSET__IB2_OFFSET_MASK 0x000FFFFFL
+//CP_CE_COUNTER
+#define CP_CE_COUNTER__CONST_ENGINE_COUNT__SHIFT 0x0
+#define CP_CE_COUNTER__CONST_ENGINE_COUNT_MASK 0xFFFFFFFFL
+//CP_CE_RB_OFFSET
+#define CP_CE_RB_OFFSET__RB_OFFSET__SHIFT 0x0
+#define CP_CE_RB_OFFSET__RB_OFFSET_MASK 0x000FFFFFL
+//CP_CE_INIT_CMD_BUFSZ
+#define CP_CE_INIT_CMD_BUFSZ__INIT_CMD_REQSZ__SHIFT 0x0
+#define CP_CE_INIT_CMD_BUFSZ__INIT_CMD_REQSZ_MASK 0x00000FFFL
+//CP_CE_IB1_CMD_BUFSZ
+#define CP_CE_IB1_CMD_BUFSZ__IB1_CMD_REQSZ__SHIFT 0x0
+#define CP_CE_IB1_CMD_BUFSZ__IB1_CMD_REQSZ_MASK 0x000FFFFFL
+//CP_CE_IB2_CMD_BUFSZ
+#define CP_CE_IB2_CMD_BUFSZ__IB2_CMD_REQSZ__SHIFT 0x0
+#define CP_CE_IB2_CMD_BUFSZ__IB2_CMD_REQSZ_MASK 0x000FFFFFL
+//CP_IB1_CMD_BUFSZ
+#define CP_IB1_CMD_BUFSZ__IB1_CMD_REQSZ__SHIFT 0x0
+#define CP_IB1_CMD_BUFSZ__IB1_CMD_REQSZ_MASK 0x000FFFFFL
+//CP_IB2_CMD_BUFSZ
+#define CP_IB2_CMD_BUFSZ__IB2_CMD_REQSZ__SHIFT 0x0
+#define CP_IB2_CMD_BUFSZ__IB2_CMD_REQSZ_MASK 0x000FFFFFL
+//CP_ST_CMD_BUFSZ
+#define CP_ST_CMD_BUFSZ__ST_CMD_REQSZ__SHIFT 0x0
+#define CP_ST_CMD_BUFSZ__ST_CMD_REQSZ_MASK 0x000FFFFFL
+//CP_CE_INIT_BASE_LO
+#define CP_CE_INIT_BASE_LO__INIT_BASE_LO__SHIFT 0x5
+#define CP_CE_INIT_BASE_LO__INIT_BASE_LO_MASK 0xFFFFFFE0L
+//CP_CE_INIT_BASE_HI
+#define CP_CE_INIT_BASE_HI__INIT_BASE_HI__SHIFT 0x0
+#define CP_CE_INIT_BASE_HI__INIT_BASE_HI_MASK 0x0000FFFFL
+//CP_CE_INIT_BUFSZ
+#define CP_CE_INIT_BUFSZ__INIT_BUFSZ__SHIFT 0x0
+#define CP_CE_INIT_BUFSZ__INIT_BUFSZ_MASK 0x00000FFFL
+//CP_CE_IB1_BASE_LO
+#define CP_CE_IB1_BASE_LO__IB1_BASE_LO__SHIFT 0x2
+#define CP_CE_IB1_BASE_LO__IB1_BASE_LO_MASK 0xFFFFFFFCL
+//CP_CE_IB1_BASE_HI
+#define CP_CE_IB1_BASE_HI__IB1_BASE_HI__SHIFT 0x0
+#define CP_CE_IB1_BASE_HI__IB1_BASE_HI_MASK 0x0000FFFFL
+//CP_CE_IB1_BUFSZ
+#define CP_CE_IB1_BUFSZ__IB1_BUFSZ__SHIFT 0x0
+#define CP_CE_IB1_BUFSZ__IB1_BUFSZ_MASK 0x000FFFFFL
+//CP_CE_IB2_BASE_LO
+#define CP_CE_IB2_BASE_LO__IB2_BASE_LO__SHIFT 0x2
+#define CP_CE_IB2_BASE_LO__IB2_BASE_LO_MASK 0xFFFFFFFCL
+//CP_CE_IB2_BASE_HI
+#define CP_CE_IB2_BASE_HI__IB2_BASE_HI__SHIFT 0x0
+#define CP_CE_IB2_BASE_HI__IB2_BASE_HI_MASK 0x0000FFFFL
+//CP_CE_IB2_BUFSZ
+#define CP_CE_IB2_BUFSZ__IB2_BUFSZ__SHIFT 0x0
+#define CP_CE_IB2_BUFSZ__IB2_BUFSZ_MASK 0x000FFFFFL
+//CP_IB1_BASE_LO
+#define CP_IB1_BASE_LO__IB1_BASE_LO__SHIFT 0x2
+#define CP_IB1_BASE_LO__IB1_BASE_LO_MASK 0xFFFFFFFCL
+//CP_IB1_BASE_HI
+#define CP_IB1_BASE_HI__IB1_BASE_HI__SHIFT 0x0
+#define CP_IB1_BASE_HI__IB1_BASE_HI_MASK 0x0000FFFFL
+//CP_IB1_BUFSZ
+#define CP_IB1_BUFSZ__IB1_BUFSZ__SHIFT 0x0
+#define CP_IB1_BUFSZ__IB1_BUFSZ_MASK 0x000FFFFFL
+//CP_IB2_BASE_LO
+#define CP_IB2_BASE_LO__IB2_BASE_LO__SHIFT 0x2
+#define CP_IB2_BASE_LO__IB2_BASE_LO_MASK 0xFFFFFFFCL
+//CP_IB2_BASE_HI
+#define CP_IB2_BASE_HI__IB2_BASE_HI__SHIFT 0x0
+#define CP_IB2_BASE_HI__IB2_BASE_HI_MASK 0x0000FFFFL
+//CP_IB2_BUFSZ
+#define CP_IB2_BUFSZ__IB2_BUFSZ__SHIFT 0x0
+#define CP_IB2_BUFSZ__IB2_BUFSZ_MASK 0x000FFFFFL
+//CP_ST_BASE_LO
+#define CP_ST_BASE_LO__ST_BASE_LO__SHIFT 0x2
+#define CP_ST_BASE_LO__ST_BASE_LO_MASK 0xFFFFFFFCL
+//CP_ST_BASE_HI
+#define CP_ST_BASE_HI__ST_BASE_HI__SHIFT 0x0
+#define CP_ST_BASE_HI__ST_BASE_HI_MASK 0x0000FFFFL
+//CP_ST_BUFSZ
+#define CP_ST_BUFSZ__ST_BUFSZ__SHIFT 0x0
+#define CP_ST_BUFSZ__ST_BUFSZ_MASK 0x000FFFFFL
+//CP_EOP_DONE_EVENT_CNTL
+#define CP_EOP_DONE_EVENT_CNTL__WBINV_TC_OP__SHIFT 0x0
+#define CP_EOP_DONE_EVENT_CNTL__WBINV_ACTION_ENA__SHIFT 0xc
+#define CP_EOP_DONE_EVENT_CNTL__CACHE_POLICY__SHIFT 0x19
+#define CP_EOP_DONE_EVENT_CNTL__EXECUTE__SHIFT 0x1c
+#define CP_EOP_DONE_EVENT_CNTL__WBINV_TC_OP_MASK 0x0000007FL
+#define CP_EOP_DONE_EVENT_CNTL__WBINV_ACTION_ENA_MASK 0x0003F000L
+#define CP_EOP_DONE_EVENT_CNTL__CACHE_POLICY_MASK 0x02000000L
+#define CP_EOP_DONE_EVENT_CNTL__EXECUTE_MASK 0x10000000L
+//CP_EOP_DONE_DATA_CNTL
+#define CP_EOP_DONE_DATA_CNTL__DST_SEL__SHIFT 0x10
+#define CP_EOP_DONE_DATA_CNTL__INT_SEL__SHIFT 0x18
+#define CP_EOP_DONE_DATA_CNTL__DATA_SEL__SHIFT 0x1d
+#define CP_EOP_DONE_DATA_CNTL__DST_SEL_MASK 0x00030000L
+#define CP_EOP_DONE_DATA_CNTL__INT_SEL_MASK 0x07000000L
+#define CP_EOP_DONE_DATA_CNTL__DATA_SEL_MASK 0xE0000000L
+//CP_EOP_DONE_CNTX_ID
+#define CP_EOP_DONE_CNTX_ID__CNTX_ID__SHIFT 0x0
+#define CP_EOP_DONE_CNTX_ID__CNTX_ID_MASK 0xFFFFFFFFL
+//CP_PFP_COMPLETION_STATUS
+#define CP_PFP_COMPLETION_STATUS__STATUS__SHIFT 0x0
+#define CP_PFP_COMPLETION_STATUS__STATUS_MASK 0x00000003L
+//CP_CE_COMPLETION_STATUS
+#define CP_CE_COMPLETION_STATUS__STATUS__SHIFT 0x0
+#define CP_CE_COMPLETION_STATUS__STATUS_MASK 0x00000003L
+//CP_PRED_NOT_VISIBLE
+#define CP_PRED_NOT_VISIBLE__NOT_VISIBLE__SHIFT 0x0
+#define CP_PRED_NOT_VISIBLE__NOT_VISIBLE_MASK 0x00000001L
+//CP_PFP_METADATA_BASE_ADDR
+#define CP_PFP_METADATA_BASE_ADDR__ADDR_LO__SHIFT 0x0
+#define CP_PFP_METADATA_BASE_ADDR__ADDR_LO_MASK 0xFFFFFFFFL
+//CP_PFP_METADATA_BASE_ADDR_HI
+#define CP_PFP_METADATA_BASE_ADDR_HI__ADDR_HI__SHIFT 0x0
+#define CP_PFP_METADATA_BASE_ADDR_HI__ADDR_HI_MASK 0x0000FFFFL
+//CP_CE_METADATA_BASE_ADDR
+#define CP_CE_METADATA_BASE_ADDR__ADDR_LO__SHIFT 0x0
+#define CP_CE_METADATA_BASE_ADDR__ADDR_LO_MASK 0xFFFFFFFFL
+//CP_CE_METADATA_BASE_ADDR_HI
+#define CP_CE_METADATA_BASE_ADDR_HI__ADDR_HI__SHIFT 0x0
+#define CP_CE_METADATA_BASE_ADDR_HI__ADDR_HI_MASK 0x0000FFFFL
+//CP_DRAW_INDX_INDR_ADDR
+#define CP_DRAW_INDX_INDR_ADDR__ADDR_LO__SHIFT 0x0
+#define CP_DRAW_INDX_INDR_ADDR__ADDR_LO_MASK 0xFFFFFFFFL
+//CP_DRAW_INDX_INDR_ADDR_HI
+#define CP_DRAW_INDX_INDR_ADDR_HI__ADDR_HI__SHIFT 0x0
+#define CP_DRAW_INDX_INDR_ADDR_HI__ADDR_HI_MASK 0x0000FFFFL
+//CP_DISPATCH_INDR_ADDR
+#define CP_DISPATCH_INDR_ADDR__ADDR_LO__SHIFT 0x0
+#define CP_DISPATCH_INDR_ADDR__ADDR_LO_MASK 0xFFFFFFFFL
+//CP_DISPATCH_INDR_ADDR_HI
+#define CP_DISPATCH_INDR_ADDR_HI__ADDR_HI__SHIFT 0x0
+#define CP_DISPATCH_INDR_ADDR_HI__ADDR_HI_MASK 0x0000FFFFL
+//CP_INDEX_BASE_ADDR
+#define CP_INDEX_BASE_ADDR__ADDR_LO__SHIFT 0x0
+#define CP_INDEX_BASE_ADDR__ADDR_LO_MASK 0xFFFFFFFFL
+//CP_INDEX_BASE_ADDR_HI
+#define CP_INDEX_BASE_ADDR_HI__ADDR_HI__SHIFT 0x0
+#define CP_INDEX_BASE_ADDR_HI__ADDR_HI_MASK 0x0000FFFFL
+//CP_INDEX_TYPE
+#define CP_INDEX_TYPE__INDEX_TYPE__SHIFT 0x0
+#define CP_INDEX_TYPE__INDEX_TYPE_MASK 0x00000003L
+//CP_GDS_BKUP_ADDR
+#define CP_GDS_BKUP_ADDR__ADDR_LO__SHIFT 0x0
+#define CP_GDS_BKUP_ADDR__ADDR_LO_MASK 0xFFFFFFFFL
+//CP_GDS_BKUP_ADDR_HI
+#define CP_GDS_BKUP_ADDR_HI__ADDR_HI__SHIFT 0x0
+#define CP_GDS_BKUP_ADDR_HI__ADDR_HI_MASK 0x0000FFFFL
+//CP_SAMPLE_STATUS
+#define CP_SAMPLE_STATUS__Z_PASS_ACITVE__SHIFT 0x0
+#define CP_SAMPLE_STATUS__STREAMOUT_ACTIVE__SHIFT 0x1
+#define CP_SAMPLE_STATUS__PIPELINE_ACTIVE__SHIFT 0x2
+#define CP_SAMPLE_STATUS__STIPPLE_ACTIVE__SHIFT 0x3
+#define CP_SAMPLE_STATUS__VGT_BUFFERS_ACTIVE__SHIFT 0x4
+#define CP_SAMPLE_STATUS__SCREEN_EXT_ACTIVE__SHIFT 0x5
+#define CP_SAMPLE_STATUS__DRAW_INDIRECT_ACTIVE__SHIFT 0x6
+#define CP_SAMPLE_STATUS__DISP_INDIRECT_ACTIVE__SHIFT 0x7
+#define CP_SAMPLE_STATUS__Z_PASS_ACITVE_MASK 0x00000001L
+#define CP_SAMPLE_STATUS__STREAMOUT_ACTIVE_MASK 0x00000002L
+#define CP_SAMPLE_STATUS__PIPELINE_ACTIVE_MASK 0x00000004L
+#define CP_SAMPLE_STATUS__STIPPLE_ACTIVE_MASK 0x00000008L
+#define CP_SAMPLE_STATUS__VGT_BUFFERS_ACTIVE_MASK 0x00000010L
+#define CP_SAMPLE_STATUS__SCREEN_EXT_ACTIVE_MASK 0x00000020L
+#define CP_SAMPLE_STATUS__DRAW_INDIRECT_ACTIVE_MASK 0x00000040L
+#define CP_SAMPLE_STATUS__DISP_INDIRECT_ACTIVE_MASK 0x00000080L
+//CP_ME_COHER_CNTL
+#define CP_ME_COHER_CNTL__DEST_BASE_0_ENA__SHIFT 0x0
+#define CP_ME_COHER_CNTL__DEST_BASE_1_ENA__SHIFT 0x1
+#define CP_ME_COHER_CNTL__CB0_DEST_BASE_ENA__SHIFT 0x6
+#define CP_ME_COHER_CNTL__CB1_DEST_BASE_ENA__SHIFT 0x7
+#define CP_ME_COHER_CNTL__CB2_DEST_BASE_ENA__SHIFT 0x8
+#define CP_ME_COHER_CNTL__CB3_DEST_BASE_ENA__SHIFT 0x9
+#define CP_ME_COHER_CNTL__CB4_DEST_BASE_ENA__SHIFT 0xa
+#define CP_ME_COHER_CNTL__CB5_DEST_BASE_ENA__SHIFT 0xb
+#define CP_ME_COHER_CNTL__CB6_DEST_BASE_ENA__SHIFT 0xc
+#define CP_ME_COHER_CNTL__CB7_DEST_BASE_ENA__SHIFT 0xd
+#define CP_ME_COHER_CNTL__DB_DEST_BASE_ENA__SHIFT 0xe
+#define CP_ME_COHER_CNTL__DEST_BASE_2_ENA__SHIFT 0x13
+#define CP_ME_COHER_CNTL__DEST_BASE_3_ENA__SHIFT 0x15
+#define CP_ME_COHER_CNTL__DEST_BASE_0_ENA_MASK 0x00000001L
+#define CP_ME_COHER_CNTL__DEST_BASE_1_ENA_MASK 0x00000002L
+#define CP_ME_COHER_CNTL__CB0_DEST_BASE_ENA_MASK 0x00000040L
+#define CP_ME_COHER_CNTL__CB1_DEST_BASE_ENA_MASK 0x00000080L
+#define CP_ME_COHER_CNTL__CB2_DEST_BASE_ENA_MASK 0x00000100L
+#define CP_ME_COHER_CNTL__CB3_DEST_BASE_ENA_MASK 0x00000200L
+#define CP_ME_COHER_CNTL__CB4_DEST_BASE_ENA_MASK 0x00000400L
+#define CP_ME_COHER_CNTL__CB5_DEST_BASE_ENA_MASK 0x00000800L
+#define CP_ME_COHER_CNTL__CB6_DEST_BASE_ENA_MASK 0x00001000L
+#define CP_ME_COHER_CNTL__CB7_DEST_BASE_ENA_MASK 0x00002000L
+#define CP_ME_COHER_CNTL__DB_DEST_BASE_ENA_MASK 0x00004000L
+#define CP_ME_COHER_CNTL__DEST_BASE_2_ENA_MASK 0x00080000L
+#define CP_ME_COHER_CNTL__DEST_BASE_3_ENA_MASK 0x00200000L
+//CP_ME_COHER_SIZE
+#define CP_ME_COHER_SIZE__COHER_SIZE_256B__SHIFT 0x0
+#define CP_ME_COHER_SIZE__COHER_SIZE_256B_MASK 0xFFFFFFFFL
+//CP_ME_COHER_SIZE_HI
+#define CP_ME_COHER_SIZE_HI__COHER_SIZE_HI_256B__SHIFT 0x0
+#define CP_ME_COHER_SIZE_HI__COHER_SIZE_HI_256B_MASK 0x000000FFL
+//CP_ME_COHER_BASE
+#define CP_ME_COHER_BASE__COHER_BASE_256B__SHIFT 0x0
+#define CP_ME_COHER_BASE__COHER_BASE_256B_MASK 0xFFFFFFFFL
+//CP_ME_COHER_BASE_HI
+#define CP_ME_COHER_BASE_HI__COHER_BASE_HI_256B__SHIFT 0x0
+#define CP_ME_COHER_BASE_HI__COHER_BASE_HI_256B_MASK 0x000000FFL
+//CP_ME_COHER_STATUS
+#define CP_ME_COHER_STATUS__MATCHING_GFX_CNTX__SHIFT 0x0
+#define CP_ME_COHER_STATUS__STATUS__SHIFT 0x1f
+#define CP_ME_COHER_STATUS__MATCHING_GFX_CNTX_MASK 0x000000FFL
+#define CP_ME_COHER_STATUS__STATUS_MASK 0x80000000L
+//RLC_GPM_PERF_COUNT_0
+#define RLC_GPM_PERF_COUNT_0__FEATURE_SEL__SHIFT 0x0
+#define RLC_GPM_PERF_COUNT_0__SE_INDEX__SHIFT 0x4
+#define RLC_GPM_PERF_COUNT_0__SH_INDEX__SHIFT 0x8
+#define RLC_GPM_PERF_COUNT_0__CU_INDEX__SHIFT 0xc
+#define RLC_GPM_PERF_COUNT_0__EVENT_SEL__SHIFT 0x10
+#define RLC_GPM_PERF_COUNT_0__UNUSED__SHIFT 0x12
+#define RLC_GPM_PERF_COUNT_0__ENABLE__SHIFT 0x14
+#define RLC_GPM_PERF_COUNT_0__RESERVED__SHIFT 0x15
+#define RLC_GPM_PERF_COUNT_0__FEATURE_SEL_MASK 0x0000000FL
+#define RLC_GPM_PERF_COUNT_0__SE_INDEX_MASK 0x000000F0L
+#define RLC_GPM_PERF_COUNT_0__SH_INDEX_MASK 0x00000F00L
+#define RLC_GPM_PERF_COUNT_0__CU_INDEX_MASK 0x0000F000L
+#define RLC_GPM_PERF_COUNT_0__EVENT_SEL_MASK 0x00030000L
+#define RLC_GPM_PERF_COUNT_0__UNUSED_MASK 0x000C0000L
+#define RLC_GPM_PERF_COUNT_0__ENABLE_MASK 0x00100000L
+#define RLC_GPM_PERF_COUNT_0__RESERVED_MASK 0xFFE00000L
+//RLC_GPM_PERF_COUNT_1
+#define RLC_GPM_PERF_COUNT_1__FEATURE_SEL__SHIFT 0x0
+#define RLC_GPM_PERF_COUNT_1__SE_INDEX__SHIFT 0x4
+#define RLC_GPM_PERF_COUNT_1__SH_INDEX__SHIFT 0x8
+#define RLC_GPM_PERF_COUNT_1__CU_INDEX__SHIFT 0xc
+#define RLC_GPM_PERF_COUNT_1__EVENT_SEL__SHIFT 0x10
+#define RLC_GPM_PERF_COUNT_1__UNUSED__SHIFT 0x12
+#define RLC_GPM_PERF_COUNT_1__ENABLE__SHIFT 0x14
+#define RLC_GPM_PERF_COUNT_1__RESERVED__SHIFT 0x15
+#define RLC_GPM_PERF_COUNT_1__FEATURE_SEL_MASK 0x0000000FL
+#define RLC_GPM_PERF_COUNT_1__SE_INDEX_MASK 0x000000F0L
+#define RLC_GPM_PERF_COUNT_1__SH_INDEX_MASK 0x00000F00L
+#define RLC_GPM_PERF_COUNT_1__CU_INDEX_MASK 0x0000F000L
+#define RLC_GPM_PERF_COUNT_1__EVENT_SEL_MASK 0x00030000L
+#define RLC_GPM_PERF_COUNT_1__UNUSED_MASK 0x000C0000L
+#define RLC_GPM_PERF_COUNT_1__ENABLE_MASK 0x00100000L
+#define RLC_GPM_PERF_COUNT_1__RESERVED_MASK 0xFFE00000L
+//GRBM_GFX_INDEX
+#define GRBM_GFX_INDEX__INSTANCE_INDEX__SHIFT 0x0
+#define GRBM_GFX_INDEX__SH_INDEX__SHIFT 0x8
+#define GRBM_GFX_INDEX__SE_INDEX__SHIFT 0x10
+#define GRBM_GFX_INDEX__SH_BROADCAST_WRITES__SHIFT 0x1d
+#define GRBM_GFX_INDEX__INSTANCE_BROADCAST_WRITES__SHIFT 0x1e
+#define GRBM_GFX_INDEX__SE_BROADCAST_WRITES__SHIFT 0x1f
+#define GRBM_GFX_INDEX__INSTANCE_INDEX_MASK 0x000000FFL
+#define GRBM_GFX_INDEX__SH_INDEX_MASK 0x0000FF00L
+#define GRBM_GFX_INDEX__SE_INDEX_MASK 0x00FF0000L
+#define GRBM_GFX_INDEX__SH_BROADCAST_WRITES_MASK 0x20000000L
+#define GRBM_GFX_INDEX__INSTANCE_BROADCAST_WRITES_MASK 0x40000000L
+#define GRBM_GFX_INDEX__SE_BROADCAST_WRITES_MASK 0x80000000L
+//VGT_GSVS_RING_SIZE
+#define VGT_GSVS_RING_SIZE__MEM_SIZE__SHIFT 0x0
+#define VGT_GSVS_RING_SIZE__MEM_SIZE_MASK 0xFFFFFFFFL
+//VGT_PRIMITIVE_TYPE
+#define VGT_PRIMITIVE_TYPE__PRIM_TYPE__SHIFT 0x0
+#define VGT_PRIMITIVE_TYPE__PRIM_TYPE_MASK 0x0000003FL
+//VGT_INDEX_TYPE
+#define VGT_INDEX_TYPE__INDEX_TYPE__SHIFT 0x0
+#define VGT_INDEX_TYPE__PRIMGEN_EN__SHIFT 0x8
+#define VGT_INDEX_TYPE__INDEX_TYPE_MASK 0x00000003L
+#define VGT_INDEX_TYPE__PRIMGEN_EN_MASK 0x00000100L
+//VGT_STRMOUT_BUFFER_FILLED_SIZE_0
+#define VGT_STRMOUT_BUFFER_FILLED_SIZE_0__SIZE__SHIFT 0x0
+#define VGT_STRMOUT_BUFFER_FILLED_SIZE_0__SIZE_MASK 0xFFFFFFFFL
+//VGT_STRMOUT_BUFFER_FILLED_SIZE_1
+#define VGT_STRMOUT_BUFFER_FILLED_SIZE_1__SIZE__SHIFT 0x0
+#define VGT_STRMOUT_BUFFER_FILLED_SIZE_1__SIZE_MASK 0xFFFFFFFFL
+//VGT_STRMOUT_BUFFER_FILLED_SIZE_2
+#define VGT_STRMOUT_BUFFER_FILLED_SIZE_2__SIZE__SHIFT 0x0
+#define VGT_STRMOUT_BUFFER_FILLED_SIZE_2__SIZE_MASK 0xFFFFFFFFL
+//VGT_STRMOUT_BUFFER_FILLED_SIZE_3
+#define VGT_STRMOUT_BUFFER_FILLED_SIZE_3__SIZE__SHIFT 0x0
+#define VGT_STRMOUT_BUFFER_FILLED_SIZE_3__SIZE_MASK 0xFFFFFFFFL
+//VGT_MAX_VTX_INDX
+#define VGT_MAX_VTX_INDX__MAX_INDX__SHIFT 0x0
+#define VGT_MAX_VTX_INDX__MAX_INDX_MASK 0xFFFFFFFFL
+//VGT_MIN_VTX_INDX
+#define VGT_MIN_VTX_INDX__MIN_INDX__SHIFT 0x0
+#define VGT_MIN_VTX_INDX__MIN_INDX_MASK 0xFFFFFFFFL
+//VGT_INDX_OFFSET
+#define VGT_INDX_OFFSET__INDX_OFFSET__SHIFT 0x0
+#define VGT_INDX_OFFSET__INDX_OFFSET_MASK 0xFFFFFFFFL
+//VGT_MULTI_PRIM_IB_RESET_EN
+#define VGT_MULTI_PRIM_IB_RESET_EN__RESET_EN__SHIFT 0x0
+#define VGT_MULTI_PRIM_IB_RESET_EN__MATCH_ALL_BITS__SHIFT 0x1
+#define VGT_MULTI_PRIM_IB_RESET_EN__RESET_EN_MASK 0x00000001L
+#define VGT_MULTI_PRIM_IB_RESET_EN__MATCH_ALL_BITS_MASK 0x00000002L
+//VGT_NUM_INDICES
+#define VGT_NUM_INDICES__NUM_INDICES__SHIFT 0x0
+#define VGT_NUM_INDICES__NUM_INDICES_MASK 0xFFFFFFFFL
+//VGT_NUM_INSTANCES
+#define VGT_NUM_INSTANCES__NUM_INSTANCES__SHIFT 0x0
+#define VGT_NUM_INSTANCES__NUM_INSTANCES_MASK 0xFFFFFFFFL
+//VGT_TF_RING_SIZE
+#define VGT_TF_RING_SIZE__SIZE__SHIFT 0x0
+#define VGT_TF_RING_SIZE__SIZE_MASK 0x0000FFFFL
+//VGT_HS_OFFCHIP_PARAM
+#define VGT_HS_OFFCHIP_PARAM__OFFCHIP_BUFFERING__SHIFT 0x0
+#define VGT_HS_OFFCHIP_PARAM__OFFCHIP_GRANULARITY__SHIFT 0x9
+#define VGT_HS_OFFCHIP_PARAM__OFFCHIP_BUFFERING_MASK 0x000001FFL
+#define VGT_HS_OFFCHIP_PARAM__OFFCHIP_GRANULARITY_MASK 0x00000600L
+//VGT_TF_MEMORY_BASE
+#define VGT_TF_MEMORY_BASE__BASE__SHIFT 0x0
+#define VGT_TF_MEMORY_BASE__BASE_MASK 0xFFFFFFFFL
+//VGT_TF_MEMORY_BASE_HI
+#define VGT_TF_MEMORY_BASE_HI__BASE_HI__SHIFT 0x0
+#define VGT_TF_MEMORY_BASE_HI__BASE_HI_MASK 0x000000FFL
+//WD_POS_BUF_BASE
+#define WD_POS_BUF_BASE__BASE__SHIFT 0x0
+#define WD_POS_BUF_BASE__BASE_MASK 0xFFFFFFFFL
+//WD_POS_BUF_BASE_HI
+#define WD_POS_BUF_BASE_HI__BASE_HI__SHIFT 0x0
+#define WD_POS_BUF_BASE_HI__BASE_HI_MASK 0x000000FFL
+//WD_CNTL_SB_BUF_BASE
+#define WD_CNTL_SB_BUF_BASE__BASE__SHIFT 0x0
+#define WD_CNTL_SB_BUF_BASE__BASE_MASK 0xFFFFFFFFL
+//WD_CNTL_SB_BUF_BASE_HI
+#define WD_CNTL_SB_BUF_BASE_HI__BASE_HI__SHIFT 0x0
+#define WD_CNTL_SB_BUF_BASE_HI__BASE_HI_MASK 0x000000FFL
+//WD_INDEX_BUF_BASE
+#define WD_INDEX_BUF_BASE__BASE__SHIFT 0x0
+#define WD_INDEX_BUF_BASE__BASE_MASK 0xFFFFFFFFL
+//WD_INDEX_BUF_BASE_HI
+#define WD_INDEX_BUF_BASE_HI__BASE_HI__SHIFT 0x0
+#define WD_INDEX_BUF_BASE_HI__BASE_HI_MASK 0x000000FFL
+//IA_MULTI_VGT_PARAM
+#define IA_MULTI_VGT_PARAM__PRIMGROUP_SIZE__SHIFT 0x0
+#define IA_MULTI_VGT_PARAM__PARTIAL_VS_WAVE_ON__SHIFT 0x10
+#define IA_MULTI_VGT_PARAM__SWITCH_ON_EOP__SHIFT 0x11
+#define IA_MULTI_VGT_PARAM__PARTIAL_ES_WAVE_ON__SHIFT 0x12
+#define IA_MULTI_VGT_PARAM__SWITCH_ON_EOI__SHIFT 0x13
+#define IA_MULTI_VGT_PARAM__WD_SWITCH_ON_EOP__SHIFT 0x14
+#define IA_MULTI_VGT_PARAM__EN_INST_OPT_BASIC__SHIFT 0x15
+#define IA_MULTI_VGT_PARAM__EN_INST_OPT_ADV__SHIFT 0x16
+#define IA_MULTI_VGT_PARAM__HW_USE_ONLY__SHIFT 0x17
+#define IA_MULTI_VGT_PARAM__PRIMGROUP_SIZE_MASK 0x0000FFFFL
+#define IA_MULTI_VGT_PARAM__PARTIAL_VS_WAVE_ON_MASK 0x00010000L
+#define IA_MULTI_VGT_PARAM__SWITCH_ON_EOP_MASK 0x00020000L
+#define IA_MULTI_VGT_PARAM__PARTIAL_ES_WAVE_ON_MASK 0x00040000L
+#define IA_MULTI_VGT_PARAM__SWITCH_ON_EOI_MASK 0x00080000L
+#define IA_MULTI_VGT_PARAM__WD_SWITCH_ON_EOP_MASK 0x00100000L
+#define IA_MULTI_VGT_PARAM__EN_INST_OPT_BASIC_MASK 0x00200000L
+#define IA_MULTI_VGT_PARAM__EN_INST_OPT_ADV_MASK 0x00400000L
+#define IA_MULTI_VGT_PARAM__HW_USE_ONLY_MASK 0x00800000L
+//VGT_INSTANCE_BASE_ID
+#define VGT_INSTANCE_BASE_ID__INSTANCE_BASE_ID__SHIFT 0x0
+#define VGT_INSTANCE_BASE_ID__INSTANCE_BASE_ID_MASK 0xFFFFFFFFL
+//PA_SU_LINE_STIPPLE_VALUE
+#define PA_SU_LINE_STIPPLE_VALUE__LINE_STIPPLE_VALUE__SHIFT 0x0
+#define PA_SU_LINE_STIPPLE_VALUE__LINE_STIPPLE_VALUE_MASK 0x00FFFFFFL
+//PA_SC_LINE_STIPPLE_STATE
+#define PA_SC_LINE_STIPPLE_STATE__CURRENT_PTR__SHIFT 0x0
+#define PA_SC_LINE_STIPPLE_STATE__CURRENT_COUNT__SHIFT 0x8
+#define PA_SC_LINE_STIPPLE_STATE__CURRENT_PTR_MASK 0x0000000FL
+#define PA_SC_LINE_STIPPLE_STATE__CURRENT_COUNT_MASK 0x0000FF00L
+//PA_SC_SCREEN_EXTENT_MIN_0
+#define PA_SC_SCREEN_EXTENT_MIN_0__X__SHIFT 0x0
+#define PA_SC_SCREEN_EXTENT_MIN_0__Y__SHIFT 0x10
+#define PA_SC_SCREEN_EXTENT_MIN_0__X_MASK 0x0000FFFFL
+#define PA_SC_SCREEN_EXTENT_MIN_0__Y_MASK 0xFFFF0000L
+//PA_SC_SCREEN_EXTENT_MAX_0
+#define PA_SC_SCREEN_EXTENT_MAX_0__X__SHIFT 0x0
+#define PA_SC_SCREEN_EXTENT_MAX_0__Y__SHIFT 0x10
+#define PA_SC_SCREEN_EXTENT_MAX_0__X_MASK 0x0000FFFFL
+#define PA_SC_SCREEN_EXTENT_MAX_0__Y_MASK 0xFFFF0000L
+//PA_SC_SCREEN_EXTENT_MIN_1
+#define PA_SC_SCREEN_EXTENT_MIN_1__X__SHIFT 0x0
+#define PA_SC_SCREEN_EXTENT_MIN_1__Y__SHIFT 0x10
+#define PA_SC_SCREEN_EXTENT_MIN_1__X_MASK 0x0000FFFFL
+#define PA_SC_SCREEN_EXTENT_MIN_1__Y_MASK 0xFFFF0000L
+//PA_SC_SCREEN_EXTENT_MAX_1
+#define PA_SC_SCREEN_EXTENT_MAX_1__X__SHIFT 0x0
+#define PA_SC_SCREEN_EXTENT_MAX_1__Y__SHIFT 0x10
+#define PA_SC_SCREEN_EXTENT_MAX_1__X_MASK 0x0000FFFFL
+#define PA_SC_SCREEN_EXTENT_MAX_1__Y_MASK 0xFFFF0000L
+//PA_SC_P3D_TRAP_SCREEN_HV_EN
+#define PA_SC_P3D_TRAP_SCREEN_HV_EN__ENABLE_HV_PRE_SHADER__SHIFT 0x0
+#define PA_SC_P3D_TRAP_SCREEN_HV_EN__FORCE_PRE_SHADER_ALL_PIXELS__SHIFT 0x1
+#define PA_SC_P3D_TRAP_SCREEN_HV_EN__ENABLE_HV_PRE_SHADER_MASK 0x00000001L
+#define PA_SC_P3D_TRAP_SCREEN_HV_EN__FORCE_PRE_SHADER_ALL_PIXELS_MASK 0x00000002L
+//PA_SC_P3D_TRAP_SCREEN_H
+#define PA_SC_P3D_TRAP_SCREEN_H__X_COORD__SHIFT 0x0
+#define PA_SC_P3D_TRAP_SCREEN_H__X_COORD_MASK 0x00003FFFL
+//PA_SC_P3D_TRAP_SCREEN_V
+#define PA_SC_P3D_TRAP_SCREEN_V__Y_COORD__SHIFT 0x0
+#define PA_SC_P3D_TRAP_SCREEN_V__Y_COORD_MASK 0x00003FFFL
+//PA_SC_P3D_TRAP_SCREEN_OCCURRENCE
+#define PA_SC_P3D_TRAP_SCREEN_OCCURRENCE__COUNT__SHIFT 0x0
+#define PA_SC_P3D_TRAP_SCREEN_OCCURRENCE__COUNT_MASK 0x0000FFFFL
+//PA_SC_P3D_TRAP_SCREEN_COUNT
+#define PA_SC_P3D_TRAP_SCREEN_COUNT__COUNT__SHIFT 0x0
+#define PA_SC_P3D_TRAP_SCREEN_COUNT__COUNT_MASK 0x0000FFFFL
+//PA_SC_HP3D_TRAP_SCREEN_HV_EN
+#define PA_SC_HP3D_TRAP_SCREEN_HV_EN__ENABLE_HV_PRE_SHADER__SHIFT 0x0
+#define PA_SC_HP3D_TRAP_SCREEN_HV_EN__FORCE_PRE_SHADER_ALL_PIXELS__SHIFT 0x1
+#define PA_SC_HP3D_TRAP_SCREEN_HV_EN__ENABLE_HV_PRE_SHADER_MASK 0x00000001L
+#define PA_SC_HP3D_TRAP_SCREEN_HV_EN__FORCE_PRE_SHADER_ALL_PIXELS_MASK 0x00000002L
+//PA_SC_HP3D_TRAP_SCREEN_H
+#define PA_SC_HP3D_TRAP_SCREEN_H__X_COORD__SHIFT 0x0
+#define PA_SC_HP3D_TRAP_SCREEN_H__X_COORD_MASK 0x00003FFFL
+//PA_SC_HP3D_TRAP_SCREEN_V
+#define PA_SC_HP3D_TRAP_SCREEN_V__Y_COORD__SHIFT 0x0
+#define PA_SC_HP3D_TRAP_SCREEN_V__Y_COORD_MASK 0x00003FFFL
+//PA_SC_HP3D_TRAP_SCREEN_OCCURRENCE
+#define PA_SC_HP3D_TRAP_SCREEN_OCCURRENCE__COUNT__SHIFT 0x0
+#define PA_SC_HP3D_TRAP_SCREEN_OCCURRENCE__COUNT_MASK 0x0000FFFFL
+//PA_SC_HP3D_TRAP_SCREEN_COUNT
+#define PA_SC_HP3D_TRAP_SCREEN_COUNT__COUNT__SHIFT 0x0
+#define PA_SC_HP3D_TRAP_SCREEN_COUNT__COUNT_MASK 0x0000FFFFL
+//PA_SC_TRAP_SCREEN_HV_EN
+#define PA_SC_TRAP_SCREEN_HV_EN__ENABLE_HV_PRE_SHADER__SHIFT 0x0
+#define PA_SC_TRAP_SCREEN_HV_EN__FORCE_PRE_SHADER_ALL_PIXELS__SHIFT 0x1
+#define PA_SC_TRAP_SCREEN_HV_EN__ENABLE_HV_PRE_SHADER_MASK 0x00000001L
+#define PA_SC_TRAP_SCREEN_HV_EN__FORCE_PRE_SHADER_ALL_PIXELS_MASK 0x00000002L
+//PA_SC_TRAP_SCREEN_H
+#define PA_SC_TRAP_SCREEN_H__X_COORD__SHIFT 0x0
+#define PA_SC_TRAP_SCREEN_H__X_COORD_MASK 0x00003FFFL
+//PA_SC_TRAP_SCREEN_V
+#define PA_SC_TRAP_SCREEN_V__Y_COORD__SHIFT 0x0
+#define PA_SC_TRAP_SCREEN_V__Y_COORD_MASK 0x00003FFFL
+//PA_SC_TRAP_SCREEN_OCCURRENCE
+#define PA_SC_TRAP_SCREEN_OCCURRENCE__COUNT__SHIFT 0x0
+#define PA_SC_TRAP_SCREEN_OCCURRENCE__COUNT_MASK 0x0000FFFFL
+//PA_SC_TRAP_SCREEN_COUNT
+#define PA_SC_TRAP_SCREEN_COUNT__COUNT__SHIFT 0x0
+#define PA_SC_TRAP_SCREEN_COUNT__COUNT_MASK 0x0000FFFFL
+//PA_STATE_STEREO_X
+#define PA_STATE_STEREO_X__STEREO_X_OFFSET__SHIFT 0x0
+#define PA_STATE_STEREO_X__STEREO_X_OFFSET_MASK 0xFFFFFFFFL
+//SQ_THREAD_TRACE_BASE
+#define SQ_THREAD_TRACE_BASE__ADDR__SHIFT 0x0
+#define SQ_THREAD_TRACE_BASE__ADDR_MASK 0xFFFFFFFFL
+//SQ_THREAD_TRACE_SIZE
+#define SQ_THREAD_TRACE_SIZE__SIZE__SHIFT 0x0
+#define SQ_THREAD_TRACE_SIZE__SIZE_MASK 0x003FFFFFL
+//SQ_THREAD_TRACE_MASK
+#define SQ_THREAD_TRACE_MASK__CU_SEL__SHIFT 0x0
+#define SQ_THREAD_TRACE_MASK__SH_SEL__SHIFT 0x5
+#define SQ_THREAD_TRACE_MASK__REG_STALL_EN__SHIFT 0x7
+#define SQ_THREAD_TRACE_MASK__SIMD_EN__SHIFT 0x8
+#define SQ_THREAD_TRACE_MASK__VM_ID_MASK__SHIFT 0xc
+#define SQ_THREAD_TRACE_MASK__SPI_STALL_EN__SHIFT 0xe
+#define SQ_THREAD_TRACE_MASK__SQ_STALL_EN__SHIFT 0xf
+#define SQ_THREAD_TRACE_MASK__CU_SEL_MASK 0x0000001FL
+#define SQ_THREAD_TRACE_MASK__SH_SEL_MASK 0x00000020L
+#define SQ_THREAD_TRACE_MASK__REG_STALL_EN_MASK 0x00000080L
+#define SQ_THREAD_TRACE_MASK__SIMD_EN_MASK 0x00000F00L
+#define SQ_THREAD_TRACE_MASK__VM_ID_MASK_MASK 0x00003000L
+#define SQ_THREAD_TRACE_MASK__SPI_STALL_EN_MASK 0x00004000L
+#define SQ_THREAD_TRACE_MASK__SQ_STALL_EN_MASK 0x00008000L
+//SQ_THREAD_TRACE_TOKEN_MASK
+#define SQ_THREAD_TRACE_TOKEN_MASK__TOKEN_MASK__SHIFT 0x0
+#define SQ_THREAD_TRACE_TOKEN_MASK__REG_MASK__SHIFT 0x10
+#define SQ_THREAD_TRACE_TOKEN_MASK__REG_DROP_ON_STALL__SHIFT 0x18
+#define SQ_THREAD_TRACE_TOKEN_MASK__TOKEN_MASK_MASK 0x0000FFFFL
+#define SQ_THREAD_TRACE_TOKEN_MASK__REG_MASK_MASK 0x00FF0000L
+#define SQ_THREAD_TRACE_TOKEN_MASK__REG_DROP_ON_STALL_MASK 0x01000000L
+//SQ_THREAD_TRACE_PERF_MASK
+#define SQ_THREAD_TRACE_PERF_MASK__SH0_MASK__SHIFT 0x0
+#define SQ_THREAD_TRACE_PERF_MASK__SH1_MASK__SHIFT 0x10
+#define SQ_THREAD_TRACE_PERF_MASK__SH0_MASK_MASK 0x0000FFFFL
+#define SQ_THREAD_TRACE_PERF_MASK__SH1_MASK_MASK 0xFFFF0000L
+//SQ_THREAD_TRACE_CTRL
+#define SQ_THREAD_TRACE_CTRL__RESET_BUFFER__SHIFT 0x1f
+#define SQ_THREAD_TRACE_CTRL__RESET_BUFFER_MASK 0x80000000L
+//SQ_THREAD_TRACE_MODE
+#define SQ_THREAD_TRACE_MODE__MASK_PS__SHIFT 0x0
+#define SQ_THREAD_TRACE_MODE__MASK_VS__SHIFT 0x3
+#define SQ_THREAD_TRACE_MODE__MASK_GS__SHIFT 0x6
+#define SQ_THREAD_TRACE_MODE__MASK_ES__SHIFT 0x9
+#define SQ_THREAD_TRACE_MODE__MASK_HS__SHIFT 0xc
+#define SQ_THREAD_TRACE_MODE__MASK_LS__SHIFT 0xf
+#define SQ_THREAD_TRACE_MODE__MASK_CS__SHIFT 0x12
+#define SQ_THREAD_TRACE_MODE__MODE__SHIFT 0x15
+#define SQ_THREAD_TRACE_MODE__CAPTURE_MODE__SHIFT 0x17
+#define SQ_THREAD_TRACE_MODE__AUTOFLUSH_EN__SHIFT 0x19
+#define SQ_THREAD_TRACE_MODE__TC_PERF_EN__SHIFT 0x1a
+#define SQ_THREAD_TRACE_MODE__ISSUE_MASK__SHIFT 0x1b
+#define SQ_THREAD_TRACE_MODE__TEST_MODE__SHIFT 0x1d
+#define SQ_THREAD_TRACE_MODE__INTERRUPT_EN__SHIFT 0x1e
+#define SQ_THREAD_TRACE_MODE__WRAP__SHIFT 0x1f
+#define SQ_THREAD_TRACE_MODE__MASK_PS_MASK 0x00000007L
+#define SQ_THREAD_TRACE_MODE__MASK_VS_MASK 0x00000038L
+#define SQ_THREAD_TRACE_MODE__MASK_GS_MASK 0x000001C0L
+#define SQ_THREAD_TRACE_MODE__MASK_ES_MASK 0x00000E00L
+#define SQ_THREAD_TRACE_MODE__MASK_HS_MASK 0x00007000L
+#define SQ_THREAD_TRACE_MODE__MASK_LS_MASK 0x00038000L
+#define SQ_THREAD_TRACE_MODE__MASK_CS_MASK 0x001C0000L
+#define SQ_THREAD_TRACE_MODE__MODE_MASK 0x00600000L
+#define SQ_THREAD_TRACE_MODE__CAPTURE_MODE_MASK 0x01800000L
+#define SQ_THREAD_TRACE_MODE__AUTOFLUSH_EN_MASK 0x02000000L
+#define SQ_THREAD_TRACE_MODE__TC_PERF_EN_MASK 0x04000000L
+#define SQ_THREAD_TRACE_MODE__ISSUE_MASK_MASK 0x18000000L
+#define SQ_THREAD_TRACE_MODE__TEST_MODE_MASK 0x20000000L
+#define SQ_THREAD_TRACE_MODE__INTERRUPT_EN_MASK 0x40000000L
+#define SQ_THREAD_TRACE_MODE__WRAP_MASK 0x80000000L
+//SQ_THREAD_TRACE_BASE2
+#define SQ_THREAD_TRACE_BASE2__ADDR_HI__SHIFT 0x0
+#define SQ_THREAD_TRACE_BASE2__ADDR_HI_MASK 0x0000000FL
+//SQ_THREAD_TRACE_TOKEN_MASK2
+#define SQ_THREAD_TRACE_TOKEN_MASK2__INST_MASK__SHIFT 0x0
+#define SQ_THREAD_TRACE_TOKEN_MASK2__INST_MASK_MASK 0xFFFFFFFFL
+//SQ_THREAD_TRACE_WPTR
+#define SQ_THREAD_TRACE_WPTR__WPTR__SHIFT 0x0
+#define SQ_THREAD_TRACE_WPTR__READ_OFFSET__SHIFT 0x1e
+#define SQ_THREAD_TRACE_WPTR__WPTR_MASK 0x3FFFFFFFL
+#define SQ_THREAD_TRACE_WPTR__READ_OFFSET_MASK 0xC0000000L
+//SQ_THREAD_TRACE_STATUS
+#define SQ_THREAD_TRACE_STATUS__FINISH_PENDING__SHIFT 0x0
+#define SQ_THREAD_TRACE_STATUS__FINISH_DONE__SHIFT 0x10
+#define SQ_THREAD_TRACE_STATUS__UTC_ERROR__SHIFT 0x1c
+#define SQ_THREAD_TRACE_STATUS__NEW_BUF__SHIFT 0x1d
+#define SQ_THREAD_TRACE_STATUS__BUSY__SHIFT 0x1e
+#define SQ_THREAD_TRACE_STATUS__FULL__SHIFT 0x1f
+#define SQ_THREAD_TRACE_STATUS__FINISH_PENDING_MASK 0x000003FFL
+#define SQ_THREAD_TRACE_STATUS__FINISH_DONE_MASK 0x03FF0000L
+#define SQ_THREAD_TRACE_STATUS__UTC_ERROR_MASK 0x10000000L
+#define SQ_THREAD_TRACE_STATUS__NEW_BUF_MASK 0x20000000L
+#define SQ_THREAD_TRACE_STATUS__BUSY_MASK 0x40000000L
+#define SQ_THREAD_TRACE_STATUS__FULL_MASK 0x80000000L
+//SQ_THREAD_TRACE_HIWATER
+#define SQ_THREAD_TRACE_HIWATER__HIWATER__SHIFT 0x0
+#define SQ_THREAD_TRACE_HIWATER__HIWATER_MASK 0x00000007L
+//SQ_THREAD_TRACE_CNTR
+#define SQ_THREAD_TRACE_CNTR__CNTR__SHIFT 0x0
+#define SQ_THREAD_TRACE_CNTR__CNTR_MASK 0xFFFFFFFFL
+//SQ_THREAD_TRACE_USERDATA_0
+#define SQ_THREAD_TRACE_USERDATA_0__DATA__SHIFT 0x0
+#define SQ_THREAD_TRACE_USERDATA_0__DATA_MASK 0xFFFFFFFFL
+//SQ_THREAD_TRACE_USERDATA_1
+#define SQ_THREAD_TRACE_USERDATA_1__DATA__SHIFT 0x0
+#define SQ_THREAD_TRACE_USERDATA_1__DATA_MASK 0xFFFFFFFFL
+//SQ_THREAD_TRACE_USERDATA_2
+#define SQ_THREAD_TRACE_USERDATA_2__DATA__SHIFT 0x0
+#define SQ_THREAD_TRACE_USERDATA_2__DATA_MASK 0xFFFFFFFFL
+//SQ_THREAD_TRACE_USERDATA_3
+#define SQ_THREAD_TRACE_USERDATA_3__DATA__SHIFT 0x0
+#define SQ_THREAD_TRACE_USERDATA_3__DATA_MASK 0xFFFFFFFFL
+//SQC_CACHES
+#define SQC_CACHES__TARGET_INST__SHIFT 0x0
+#define SQC_CACHES__TARGET_DATA__SHIFT 0x1
+#define SQC_CACHES__INVALIDATE__SHIFT 0x2
+#define SQC_CACHES__WRITEBACK__SHIFT 0x3
+#define SQC_CACHES__VOL__SHIFT 0x4
+#define SQC_CACHES__COMPLETE__SHIFT 0x10
+#define SQC_CACHES__TARGET_INST_MASK 0x00000001L
+#define SQC_CACHES__TARGET_DATA_MASK 0x00000002L
+#define SQC_CACHES__INVALIDATE_MASK 0x00000004L
+#define SQC_CACHES__WRITEBACK_MASK 0x00000008L
+#define SQC_CACHES__VOL_MASK 0x00000010L
+#define SQC_CACHES__COMPLETE_MASK 0x00010000L
+//SQC_WRITEBACK
+#define SQC_WRITEBACK__DWB__SHIFT 0x0
+#define SQC_WRITEBACK__DIRTY__SHIFT 0x1
+#define SQC_WRITEBACK__DWB_MASK 0x00000001L
+#define SQC_WRITEBACK__DIRTY_MASK 0x00000002L
+//DB_OCCLUSION_COUNT0_LOW
+#define DB_OCCLUSION_COUNT0_LOW__COUNT_LOW__SHIFT 0x0
+#define DB_OCCLUSION_COUNT0_LOW__COUNT_LOW_MASK 0xFFFFFFFFL
+//DB_OCCLUSION_COUNT0_HI
+#define DB_OCCLUSION_COUNT0_HI__COUNT_HI__SHIFT 0x0
+#define DB_OCCLUSION_COUNT0_HI__COUNT_HI_MASK 0x7FFFFFFFL
+//DB_OCCLUSION_COUNT1_LOW
+#define DB_OCCLUSION_COUNT1_LOW__COUNT_LOW__SHIFT 0x0
+#define DB_OCCLUSION_COUNT1_LOW__COUNT_LOW_MASK 0xFFFFFFFFL
+//DB_OCCLUSION_COUNT1_HI
+#define DB_OCCLUSION_COUNT1_HI__COUNT_HI__SHIFT 0x0
+#define DB_OCCLUSION_COUNT1_HI__COUNT_HI_MASK 0x7FFFFFFFL
+//DB_OCCLUSION_COUNT2_LOW
+#define DB_OCCLUSION_COUNT2_LOW__COUNT_LOW__SHIFT 0x0
+#define DB_OCCLUSION_COUNT2_LOW__COUNT_LOW_MASK 0xFFFFFFFFL
+//DB_OCCLUSION_COUNT2_HI
+#define DB_OCCLUSION_COUNT2_HI__COUNT_HI__SHIFT 0x0
+#define DB_OCCLUSION_COUNT2_HI__COUNT_HI_MASK 0x7FFFFFFFL
+//DB_OCCLUSION_COUNT3_LOW
+#define DB_OCCLUSION_COUNT3_LOW__COUNT_LOW__SHIFT 0x0
+#define DB_OCCLUSION_COUNT3_LOW__COUNT_LOW_MASK 0xFFFFFFFFL
+//DB_OCCLUSION_COUNT3_HI
+#define DB_OCCLUSION_COUNT3_HI__COUNT_HI__SHIFT 0x0
+#define DB_OCCLUSION_COUNT3_HI__COUNT_HI_MASK 0x7FFFFFFFL
+//DB_ZPASS_COUNT_LOW
+#define DB_ZPASS_COUNT_LOW__COUNT_LOW__SHIFT 0x0
+#define DB_ZPASS_COUNT_LOW__COUNT_LOW_MASK 0xFFFFFFFFL
+//DB_ZPASS_COUNT_HI
+#define DB_ZPASS_COUNT_HI__COUNT_HI__SHIFT 0x0
+#define DB_ZPASS_COUNT_HI__COUNT_HI_MASK 0x7FFFFFFFL
+//GDS_RD_ADDR
+#define GDS_RD_ADDR__READ_ADDR__SHIFT 0x0
+#define GDS_RD_ADDR__READ_ADDR_MASK 0xFFFFFFFFL
+//GDS_RD_DATA
+#define GDS_RD_DATA__READ_DATA__SHIFT 0x0
+#define GDS_RD_DATA__READ_DATA_MASK 0xFFFFFFFFL
+//GDS_RD_BURST_ADDR
+#define GDS_RD_BURST_ADDR__BURST_ADDR__SHIFT 0x0
+#define GDS_RD_BURST_ADDR__BURST_ADDR_MASK 0xFFFFFFFFL
+//GDS_RD_BURST_COUNT
+#define GDS_RD_BURST_COUNT__BURST_COUNT__SHIFT 0x0
+#define GDS_RD_BURST_COUNT__BURST_COUNT_MASK 0xFFFFFFFFL
+//GDS_RD_BURST_DATA
+#define GDS_RD_BURST_DATA__BURST_DATA__SHIFT 0x0
+#define GDS_RD_BURST_DATA__BURST_DATA_MASK 0xFFFFFFFFL
+//GDS_WR_ADDR
+#define GDS_WR_ADDR__WRITE_ADDR__SHIFT 0x0
+#define GDS_WR_ADDR__WRITE_ADDR_MASK 0xFFFFFFFFL
+//GDS_WR_DATA
+#define GDS_WR_DATA__WRITE_DATA__SHIFT 0x0
+#define GDS_WR_DATA__WRITE_DATA_MASK 0xFFFFFFFFL
+//GDS_WR_BURST_ADDR
+#define GDS_WR_BURST_ADDR__WRITE_ADDR__SHIFT 0x0
+#define GDS_WR_BURST_ADDR__WRITE_ADDR_MASK 0xFFFFFFFFL
+//GDS_WR_BURST_DATA
+#define GDS_WR_BURST_DATA__WRITE_DATA__SHIFT 0x0
+#define GDS_WR_BURST_DATA__WRITE_DATA_MASK 0xFFFFFFFFL
+//GDS_WRITE_COMPLETE
+#define GDS_WRITE_COMPLETE__WRITE_COMPLETE__SHIFT 0x0
+#define GDS_WRITE_COMPLETE__WRITE_COMPLETE_MASK 0xFFFFFFFFL
+//GDS_ATOM_CNTL
+#define GDS_ATOM_CNTL__AINC__SHIFT 0x0
+#define GDS_ATOM_CNTL__UNUSED1__SHIFT 0x6
+#define GDS_ATOM_CNTL__DMODE__SHIFT 0x8
+#define GDS_ATOM_CNTL__UNUSED2__SHIFT 0xa
+#define GDS_ATOM_CNTL__AINC_MASK 0x0000003FL
+#define GDS_ATOM_CNTL__UNUSED1_MASK 0x000000C0L
+#define GDS_ATOM_CNTL__DMODE_MASK 0x00000300L
+#define GDS_ATOM_CNTL__UNUSED2_MASK 0xFFFFFC00L
+//GDS_ATOM_COMPLETE
+#define GDS_ATOM_COMPLETE__COMPLETE__SHIFT 0x0
+#define GDS_ATOM_COMPLETE__UNUSED__SHIFT 0x1
+#define GDS_ATOM_COMPLETE__COMPLETE_MASK 0x00000001L
+#define GDS_ATOM_COMPLETE__UNUSED_MASK 0xFFFFFFFEL
+//GDS_ATOM_BASE
+#define GDS_ATOM_BASE__BASE__SHIFT 0x0
+#define GDS_ATOM_BASE__UNUSED__SHIFT 0x10
+#define GDS_ATOM_BASE__BASE_MASK 0x0000FFFFL
+#define GDS_ATOM_BASE__UNUSED_MASK 0xFFFF0000L
+//GDS_ATOM_SIZE
+#define GDS_ATOM_SIZE__SIZE__SHIFT 0x0
+#define GDS_ATOM_SIZE__UNUSED__SHIFT 0x10
+#define GDS_ATOM_SIZE__SIZE_MASK 0x0000FFFFL
+#define GDS_ATOM_SIZE__UNUSED_MASK 0xFFFF0000L
+//GDS_ATOM_OFFSET0
+#define GDS_ATOM_OFFSET0__OFFSET0__SHIFT 0x0
+#define GDS_ATOM_OFFSET0__UNUSED__SHIFT 0x8
+#define GDS_ATOM_OFFSET0__OFFSET0_MASK 0x000000FFL
+#define GDS_ATOM_OFFSET0__UNUSED_MASK 0xFFFFFF00L
+//GDS_ATOM_OFFSET1
+#define GDS_ATOM_OFFSET1__OFFSET1__SHIFT 0x0
+#define GDS_ATOM_OFFSET1__UNUSED__SHIFT 0x8
+#define GDS_ATOM_OFFSET1__OFFSET1_MASK 0x000000FFL
+#define GDS_ATOM_OFFSET1__UNUSED_MASK 0xFFFFFF00L
+//GDS_ATOM_DST
+#define GDS_ATOM_DST__DST__SHIFT 0x0
+#define GDS_ATOM_DST__DST_MASK 0xFFFFFFFFL
+//GDS_ATOM_OP
+#define GDS_ATOM_OP__OP__SHIFT 0x0
+#define GDS_ATOM_OP__UNUSED__SHIFT 0x8
+#define GDS_ATOM_OP__OP_MASK 0x000000FFL
+#define GDS_ATOM_OP__UNUSED_MASK 0xFFFFFF00L
+//GDS_ATOM_SRC0
+#define GDS_ATOM_SRC0__DATA__SHIFT 0x0
+#define GDS_ATOM_SRC0__DATA_MASK 0xFFFFFFFFL
+//GDS_ATOM_SRC0_U
+#define GDS_ATOM_SRC0_U__DATA__SHIFT 0x0
+#define GDS_ATOM_SRC0_U__DATA_MASK 0xFFFFFFFFL
+//GDS_ATOM_SRC1
+#define GDS_ATOM_SRC1__DATA__SHIFT 0x0
+#define GDS_ATOM_SRC1__DATA_MASK 0xFFFFFFFFL
+//GDS_ATOM_SRC1_U
+#define GDS_ATOM_SRC1_U__DATA__SHIFT 0x0
+#define GDS_ATOM_SRC1_U__DATA_MASK 0xFFFFFFFFL
+//GDS_ATOM_READ0
+#define GDS_ATOM_READ0__DATA__SHIFT 0x0
+#define GDS_ATOM_READ0__DATA_MASK 0xFFFFFFFFL
+//GDS_ATOM_READ0_U
+#define GDS_ATOM_READ0_U__DATA__SHIFT 0x0
+#define GDS_ATOM_READ0_U__DATA_MASK 0xFFFFFFFFL
+//GDS_ATOM_READ1
+#define GDS_ATOM_READ1__DATA__SHIFT 0x0
+#define GDS_ATOM_READ1__DATA_MASK 0xFFFFFFFFL
+//GDS_ATOM_READ1_U
+#define GDS_ATOM_READ1_U__DATA__SHIFT 0x0
+#define GDS_ATOM_READ1_U__DATA_MASK 0xFFFFFFFFL
+//GDS_GWS_RESOURCE_CNTL
+#define GDS_GWS_RESOURCE_CNTL__INDEX__SHIFT 0x0
+#define GDS_GWS_RESOURCE_CNTL__UNUSED__SHIFT 0x6
+#define GDS_GWS_RESOURCE_CNTL__INDEX_MASK 0x0000003FL
+#define GDS_GWS_RESOURCE_CNTL__UNUSED_MASK 0xFFFFFFC0L
+//GDS_GWS_RESOURCE
+#define GDS_GWS_RESOURCE__FLAG__SHIFT 0x0
+#define GDS_GWS_RESOURCE__COUNTER__SHIFT 0x1
+#define GDS_GWS_RESOURCE__TYPE__SHIFT 0xe
+#define GDS_GWS_RESOURCE__DED__SHIFT 0xf
+#define GDS_GWS_RESOURCE__RELEASE_ALL__SHIFT 0x10
+#define GDS_GWS_RESOURCE__HEAD_QUEUE__SHIFT 0x11
+#define GDS_GWS_RESOURCE__HEAD_VALID__SHIFT 0x1d
+#define GDS_GWS_RESOURCE__HEAD_FLAG__SHIFT 0x1e
+#define GDS_GWS_RESOURCE__HALTED__SHIFT 0x1f
+#define GDS_GWS_RESOURCE__FLAG_MASK 0x00000001L
+#define GDS_GWS_RESOURCE__COUNTER_MASK 0x00003FFEL
+#define GDS_GWS_RESOURCE__TYPE_MASK 0x00004000L
+#define GDS_GWS_RESOURCE__DED_MASK 0x00008000L
+#define GDS_GWS_RESOURCE__RELEASE_ALL_MASK 0x00010000L
+#define GDS_GWS_RESOURCE__HEAD_QUEUE_MASK 0x1FFE0000L
+#define GDS_GWS_RESOURCE__HEAD_VALID_MASK 0x20000000L
+#define GDS_GWS_RESOURCE__HEAD_FLAG_MASK 0x40000000L
+#define GDS_GWS_RESOURCE__HALTED_MASK 0x80000000L
+//GDS_GWS_RESOURCE_CNT
+#define GDS_GWS_RESOURCE_CNT__RESOURCE_CNT__SHIFT 0x0
+#define GDS_GWS_RESOURCE_CNT__UNUSED__SHIFT 0x10
+#define GDS_GWS_RESOURCE_CNT__RESOURCE_CNT_MASK 0x0000FFFFL
+#define GDS_GWS_RESOURCE_CNT__UNUSED_MASK 0xFFFF0000L
+//GDS_OA_CNTL
+#define GDS_OA_CNTL__INDEX__SHIFT 0x0
+#define GDS_OA_CNTL__UNUSED__SHIFT 0x4
+#define GDS_OA_CNTL__INDEX_MASK 0x0000000FL
+#define GDS_OA_CNTL__UNUSED_MASK 0xFFFFFFF0L
+//GDS_OA_COUNTER
+#define GDS_OA_COUNTER__SPACE_AVAILABLE__SHIFT 0x0
+#define GDS_OA_COUNTER__SPACE_AVAILABLE_MASK 0xFFFFFFFFL
+//GDS_OA_ADDRESS
+#define GDS_OA_ADDRESS__DS_ADDRESS__SHIFT 0x0
+#define GDS_OA_ADDRESS__CRAWLER__SHIFT 0x10
+#define GDS_OA_ADDRESS__CRAWLER_TYPE__SHIFT 0x14
+#define GDS_OA_ADDRESS__UNUSED__SHIFT 0x16
+#define GDS_OA_ADDRESS__NO_ALLOC__SHIFT 0x1e
+#define GDS_OA_ADDRESS__ENABLE__SHIFT 0x1f
+#define GDS_OA_ADDRESS__DS_ADDRESS_MASK 0x0000FFFFL
+#define GDS_OA_ADDRESS__CRAWLER_MASK 0x000F0000L
+#define GDS_OA_ADDRESS__CRAWLER_TYPE_MASK 0x00300000L
+#define GDS_OA_ADDRESS__UNUSED_MASK 0x3FC00000L
+#define GDS_OA_ADDRESS__NO_ALLOC_MASK 0x40000000L
+#define GDS_OA_ADDRESS__ENABLE_MASK 0x80000000L
+//GDS_OA_INCDEC
+#define GDS_OA_INCDEC__VALUE__SHIFT 0x0
+#define GDS_OA_INCDEC__INCDEC__SHIFT 0x1f
+#define GDS_OA_INCDEC__VALUE_MASK 0x7FFFFFFFL
+#define GDS_OA_INCDEC__INCDEC_MASK 0x80000000L
+//GDS_OA_RING_SIZE
+#define GDS_OA_RING_SIZE__RING_SIZE__SHIFT 0x0
+#define GDS_OA_RING_SIZE__RING_SIZE_MASK 0xFFFFFFFFL
+//SPI_CONFIG_CNTL
+#define SPI_CONFIG_CNTL__GPR_WRITE_PRIORITY__SHIFT 0x0
+#define SPI_CONFIG_CNTL__EXP_PRIORITY_ORDER__SHIFT 0x15
+#define SPI_CONFIG_CNTL__ENABLE_SQG_TOP_EVENTS__SHIFT 0x18
+#define SPI_CONFIG_CNTL__ENABLE_SQG_BOP_EVENTS__SHIFT 0x19
+#define SPI_CONFIG_CNTL__RSRC_MGMT_RESET__SHIFT 0x1a
+#define SPI_CONFIG_CNTL__TTRACE_STALL_ALL__SHIFT 0x1b
+#define SPI_CONFIG_CNTL__ALLOC_ARB_LRU_ENA__SHIFT 0x1c
+#define SPI_CONFIG_CNTL__EXP_ARB_LRU_ENA__SHIFT 0x1d
+#define SPI_CONFIG_CNTL__PS_PKR_PRIORITY_CNTL__SHIFT 0x1e
+#define SPI_CONFIG_CNTL__GPR_WRITE_PRIORITY_MASK 0x001FFFFFL
+#define SPI_CONFIG_CNTL__EXP_PRIORITY_ORDER_MASK 0x00E00000L
+#define SPI_CONFIG_CNTL__ENABLE_SQG_TOP_EVENTS_MASK 0x01000000L
+#define SPI_CONFIG_CNTL__ENABLE_SQG_BOP_EVENTS_MASK 0x02000000L
+#define SPI_CONFIG_CNTL__RSRC_MGMT_RESET_MASK 0x04000000L
+#define SPI_CONFIG_CNTL__TTRACE_STALL_ALL_MASK 0x08000000L
+#define SPI_CONFIG_CNTL__ALLOC_ARB_LRU_ENA_MASK 0x10000000L
+#define SPI_CONFIG_CNTL__EXP_ARB_LRU_ENA_MASK 0x20000000L
+#define SPI_CONFIG_CNTL__PS_PKR_PRIORITY_CNTL_MASK 0xC0000000L
+//SPI_CONFIG_CNTL_1
+#define SPI_CONFIG_CNTL_1__VTX_DONE_DELAY__SHIFT 0x0
+#define SPI_CONFIG_CNTL_1__INTERP_ONE_PRIM_PER_ROW__SHIFT 0x4
+#define SPI_CONFIG_CNTL_1__BATON_RESET_DISABLE__SHIFT 0x5
+#define SPI_CONFIG_CNTL_1__PC_LIMIT_ENABLE__SHIFT 0x6
+#define SPI_CONFIG_CNTL_1__PC_LIMIT_STRICT__SHIFT 0x7
+#define SPI_CONFIG_CNTL_1__CRC_SIMD_ID_WADDR_DISABLE__SHIFT 0x8
+#define SPI_CONFIG_CNTL_1__LBPW_CU_CHK_MODE__SHIFT 0x9
+#define SPI_CONFIG_CNTL_1__LBPW_CU_CHK_CNT__SHIFT 0xa
+#define SPI_CONFIG_CNTL_1__CSC_PWR_SAVE_DISABLE__SHIFT 0xe
+#define SPI_CONFIG_CNTL_1__CSG_PWR_SAVE_DISABLE__SHIFT 0xf
+#define SPI_CONFIG_CNTL_1__PC_LIMIT_SIZE__SHIFT 0x10
+#define SPI_CONFIG_CNTL_1__VTX_DONE_DELAY_MASK 0x0000000FL
+#define SPI_CONFIG_CNTL_1__INTERP_ONE_PRIM_PER_ROW_MASK 0x00000010L
+#define SPI_CONFIG_CNTL_1__BATON_RESET_DISABLE_MASK 0x00000020L
+#define SPI_CONFIG_CNTL_1__PC_LIMIT_ENABLE_MASK 0x00000040L
+#define SPI_CONFIG_CNTL_1__PC_LIMIT_STRICT_MASK 0x00000080L
+#define SPI_CONFIG_CNTL_1__CRC_SIMD_ID_WADDR_DISABLE_MASK 0x00000100L
+#define SPI_CONFIG_CNTL_1__LBPW_CU_CHK_MODE_MASK 0x00000200L
+#define SPI_CONFIG_CNTL_1__LBPW_CU_CHK_CNT_MASK 0x00003C00L
+#define SPI_CONFIG_CNTL_1__CSC_PWR_SAVE_DISABLE_MASK 0x00004000L
+#define SPI_CONFIG_CNTL_1__CSG_PWR_SAVE_DISABLE_MASK 0x00008000L
+#define SPI_CONFIG_CNTL_1__PC_LIMIT_SIZE_MASK 0xFFFF0000L
+//SPI_CONFIG_CNTL_2
+#define SPI_CONFIG_CNTL_2__CONTEXT_SAVE_WAIT_GDS_REQUEST_CYCLE_OVHD__SHIFT 0x0
+#define SPI_CONFIG_CNTL_2__CONTEXT_SAVE_WAIT_GDS_GRANT_CYCLE_OVHD__SHIFT 0x4
+#define SPI_CONFIG_CNTL_2__CONTEXT_SAVE_WAIT_GDS_REQUEST_CYCLE_OVHD_MASK 0x0000000FL
+#define SPI_CONFIG_CNTL_2__CONTEXT_SAVE_WAIT_GDS_GRANT_CYCLE_OVHD_MASK 0x000000F0L
+//SPI_WAVE_LIMIT_CNTL
+#define SPI_WAVE_LIMIT_CNTL__PS_WAVE_GRAN__SHIFT 0x0
+#define SPI_WAVE_LIMIT_CNTL__VS_WAVE_GRAN__SHIFT 0x2
+#define SPI_WAVE_LIMIT_CNTL__GS_WAVE_GRAN__SHIFT 0x4
+#define SPI_WAVE_LIMIT_CNTL__HS_WAVE_GRAN__SHIFT 0x6
+#define SPI_WAVE_LIMIT_CNTL__PS_WAVE_GRAN_MASK 0x00000003L
+#define SPI_WAVE_LIMIT_CNTL__VS_WAVE_GRAN_MASK 0x0000000CL
+#define SPI_WAVE_LIMIT_CNTL__GS_WAVE_GRAN_MASK 0x00000030L
+#define SPI_WAVE_LIMIT_CNTL__HS_WAVE_GRAN_MASK 0x000000C0L
+
+
+// addressBlock: xcd0_gc_perfddec
+//CPG_PERFCOUNTER1_LO
+#define CPG_PERFCOUNTER1_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define CPG_PERFCOUNTER1_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//CPG_PERFCOUNTER1_HI
+#define CPG_PERFCOUNTER1_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define CPG_PERFCOUNTER1_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//CPG_PERFCOUNTER0_LO
+#define CPG_PERFCOUNTER0_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define CPG_PERFCOUNTER0_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//CPG_PERFCOUNTER0_HI
+#define CPG_PERFCOUNTER0_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define CPG_PERFCOUNTER0_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//CPC_PERFCOUNTER1_LO
+#define CPC_PERFCOUNTER1_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define CPC_PERFCOUNTER1_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//CPC_PERFCOUNTER1_HI
+#define CPC_PERFCOUNTER1_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define CPC_PERFCOUNTER1_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//CPC_PERFCOUNTER0_LO
+#define CPC_PERFCOUNTER0_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define CPC_PERFCOUNTER0_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//CPC_PERFCOUNTER0_HI
+#define CPC_PERFCOUNTER0_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define CPC_PERFCOUNTER0_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//CPF_PERFCOUNTER1_LO
+#define CPF_PERFCOUNTER1_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define CPF_PERFCOUNTER1_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//CPF_PERFCOUNTER1_HI
+#define CPF_PERFCOUNTER1_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define CPF_PERFCOUNTER1_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//CPF_PERFCOUNTER0_LO
+#define CPF_PERFCOUNTER0_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define CPF_PERFCOUNTER0_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//CPF_PERFCOUNTER0_HI
+#define CPF_PERFCOUNTER0_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define CPF_PERFCOUNTER0_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//CPF_LATENCY_STATS_DATA
+#define CPF_LATENCY_STATS_DATA__DATA__SHIFT 0x0
+#define CPF_LATENCY_STATS_DATA__DATA_MASK 0xFFFFFFFFL
+//CPG_LATENCY_STATS_DATA
+#define CPG_LATENCY_STATS_DATA__DATA__SHIFT 0x0
+#define CPG_LATENCY_STATS_DATA__DATA_MASK 0xFFFFFFFFL
+//CPC_LATENCY_STATS_DATA
+#define CPC_LATENCY_STATS_DATA__DATA__SHIFT 0x0
+#define CPC_LATENCY_STATS_DATA__DATA_MASK 0xFFFFFFFFL
+//GRBM_PERFCOUNTER0_LO
+#define GRBM_PERFCOUNTER0_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define GRBM_PERFCOUNTER0_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//GRBM_PERFCOUNTER0_HI
+#define GRBM_PERFCOUNTER0_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define GRBM_PERFCOUNTER0_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//GRBM_PERFCOUNTER1_LO
+#define GRBM_PERFCOUNTER1_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define GRBM_PERFCOUNTER1_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//GRBM_PERFCOUNTER1_HI
+#define GRBM_PERFCOUNTER1_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define GRBM_PERFCOUNTER1_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//GRBM_SE0_PERFCOUNTER_LO
+#define GRBM_SE0_PERFCOUNTER_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define GRBM_SE0_PERFCOUNTER_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//GRBM_SE0_PERFCOUNTER_HI
+#define GRBM_SE0_PERFCOUNTER_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define GRBM_SE0_PERFCOUNTER_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//GRBM_SE1_PERFCOUNTER_LO
+#define GRBM_SE1_PERFCOUNTER_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define GRBM_SE1_PERFCOUNTER_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//GRBM_SE1_PERFCOUNTER_HI
+#define GRBM_SE1_PERFCOUNTER_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define GRBM_SE1_PERFCOUNTER_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//GRBM_SE2_PERFCOUNTER_LO
+#define GRBM_SE2_PERFCOUNTER_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define GRBM_SE2_PERFCOUNTER_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//GRBM_SE2_PERFCOUNTER_HI
+#define GRBM_SE2_PERFCOUNTER_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define GRBM_SE2_PERFCOUNTER_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//GRBM_SE3_PERFCOUNTER_LO
+#define GRBM_SE3_PERFCOUNTER_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define GRBM_SE3_PERFCOUNTER_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//GRBM_SE3_PERFCOUNTER_HI
+#define GRBM_SE3_PERFCOUNTER_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define GRBM_SE3_PERFCOUNTER_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//WD_PERFCOUNTER0_LO
+#define WD_PERFCOUNTER0_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define WD_PERFCOUNTER0_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//WD_PERFCOUNTER0_HI
+#define WD_PERFCOUNTER0_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define WD_PERFCOUNTER0_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//WD_PERFCOUNTER1_LO
+#define WD_PERFCOUNTER1_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define WD_PERFCOUNTER1_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//WD_PERFCOUNTER1_HI
+#define WD_PERFCOUNTER1_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define WD_PERFCOUNTER1_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//WD_PERFCOUNTER2_LO
+#define WD_PERFCOUNTER2_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define WD_PERFCOUNTER2_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//WD_PERFCOUNTER2_HI
+#define WD_PERFCOUNTER2_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define WD_PERFCOUNTER2_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//WD_PERFCOUNTER3_LO
+#define WD_PERFCOUNTER3_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define WD_PERFCOUNTER3_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//WD_PERFCOUNTER3_HI
+#define WD_PERFCOUNTER3_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define WD_PERFCOUNTER3_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//IA_PERFCOUNTER0_LO
+#define IA_PERFCOUNTER0_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define IA_PERFCOUNTER0_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//IA_PERFCOUNTER0_HI
+#define IA_PERFCOUNTER0_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define IA_PERFCOUNTER0_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//IA_PERFCOUNTER1_LO
+#define IA_PERFCOUNTER1_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define IA_PERFCOUNTER1_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//IA_PERFCOUNTER1_HI
+#define IA_PERFCOUNTER1_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define IA_PERFCOUNTER1_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//IA_PERFCOUNTER2_LO
+#define IA_PERFCOUNTER2_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define IA_PERFCOUNTER2_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//IA_PERFCOUNTER2_HI
+#define IA_PERFCOUNTER2_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define IA_PERFCOUNTER2_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//IA_PERFCOUNTER3_LO
+#define IA_PERFCOUNTER3_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define IA_PERFCOUNTER3_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//IA_PERFCOUNTER3_HI
+#define IA_PERFCOUNTER3_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define IA_PERFCOUNTER3_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//VGT_PERFCOUNTER0_LO
+#define VGT_PERFCOUNTER0_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define VGT_PERFCOUNTER0_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//VGT_PERFCOUNTER0_HI
+#define VGT_PERFCOUNTER0_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define VGT_PERFCOUNTER0_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//VGT_PERFCOUNTER1_LO
+#define VGT_PERFCOUNTER1_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define VGT_PERFCOUNTER1_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//VGT_PERFCOUNTER1_HI
+#define VGT_PERFCOUNTER1_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define VGT_PERFCOUNTER1_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//VGT_PERFCOUNTER2_LO
+#define VGT_PERFCOUNTER2_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define VGT_PERFCOUNTER2_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//VGT_PERFCOUNTER2_HI
+#define VGT_PERFCOUNTER2_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define VGT_PERFCOUNTER2_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//VGT_PERFCOUNTER3_LO
+#define VGT_PERFCOUNTER3_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define VGT_PERFCOUNTER3_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//VGT_PERFCOUNTER3_HI
+#define VGT_PERFCOUNTER3_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define VGT_PERFCOUNTER3_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//PA_SU_PERFCOUNTER0_LO
+#define PA_SU_PERFCOUNTER0_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define PA_SU_PERFCOUNTER0_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//PA_SU_PERFCOUNTER0_HI
+#define PA_SU_PERFCOUNTER0_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define PA_SU_PERFCOUNTER0_HI__PERFCOUNTER_HI_MASK 0x0000FFFFL
+//PA_SU_PERFCOUNTER1_LO
+#define PA_SU_PERFCOUNTER1_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define PA_SU_PERFCOUNTER1_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//PA_SU_PERFCOUNTER1_HI
+#define PA_SU_PERFCOUNTER1_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define PA_SU_PERFCOUNTER1_HI__PERFCOUNTER_HI_MASK 0x0000FFFFL
+//PA_SU_PERFCOUNTER2_LO
+#define PA_SU_PERFCOUNTER2_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define PA_SU_PERFCOUNTER2_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//PA_SU_PERFCOUNTER2_HI
+#define PA_SU_PERFCOUNTER2_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define PA_SU_PERFCOUNTER2_HI__PERFCOUNTER_HI_MASK 0x0000FFFFL
+//PA_SU_PERFCOUNTER3_LO
+#define PA_SU_PERFCOUNTER3_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define PA_SU_PERFCOUNTER3_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//PA_SU_PERFCOUNTER3_HI
+#define PA_SU_PERFCOUNTER3_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define PA_SU_PERFCOUNTER3_HI__PERFCOUNTER_HI_MASK 0x0000FFFFL
+//PA_SC_PERFCOUNTER0_LO
+#define PA_SC_PERFCOUNTER0_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define PA_SC_PERFCOUNTER0_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//PA_SC_PERFCOUNTER0_HI
+#define PA_SC_PERFCOUNTER0_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define PA_SC_PERFCOUNTER0_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//PA_SC_PERFCOUNTER1_LO
+#define PA_SC_PERFCOUNTER1_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define PA_SC_PERFCOUNTER1_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//PA_SC_PERFCOUNTER1_HI
+#define PA_SC_PERFCOUNTER1_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define PA_SC_PERFCOUNTER1_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//PA_SC_PERFCOUNTER2_LO
+#define PA_SC_PERFCOUNTER2_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define PA_SC_PERFCOUNTER2_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//PA_SC_PERFCOUNTER2_HI
+#define PA_SC_PERFCOUNTER2_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define PA_SC_PERFCOUNTER2_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//PA_SC_PERFCOUNTER3_LO
+#define PA_SC_PERFCOUNTER3_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define PA_SC_PERFCOUNTER3_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//PA_SC_PERFCOUNTER3_HI
+#define PA_SC_PERFCOUNTER3_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define PA_SC_PERFCOUNTER3_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//PA_SC_PERFCOUNTER4_LO
+#define PA_SC_PERFCOUNTER4_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define PA_SC_PERFCOUNTER4_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//PA_SC_PERFCOUNTER4_HI
+#define PA_SC_PERFCOUNTER4_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define PA_SC_PERFCOUNTER4_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//PA_SC_PERFCOUNTER5_LO
+#define PA_SC_PERFCOUNTER5_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define PA_SC_PERFCOUNTER5_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//PA_SC_PERFCOUNTER5_HI
+#define PA_SC_PERFCOUNTER5_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define PA_SC_PERFCOUNTER5_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//PA_SC_PERFCOUNTER6_LO
+#define PA_SC_PERFCOUNTER6_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define PA_SC_PERFCOUNTER6_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//PA_SC_PERFCOUNTER6_HI
+#define PA_SC_PERFCOUNTER6_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define PA_SC_PERFCOUNTER6_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//PA_SC_PERFCOUNTER7_LO
+#define PA_SC_PERFCOUNTER7_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define PA_SC_PERFCOUNTER7_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//PA_SC_PERFCOUNTER7_HI
+#define PA_SC_PERFCOUNTER7_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define PA_SC_PERFCOUNTER7_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//SPI_PERFCOUNTER0_HI
+#define SPI_PERFCOUNTER0_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define SPI_PERFCOUNTER0_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//SPI_PERFCOUNTER0_LO
+#define SPI_PERFCOUNTER0_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define SPI_PERFCOUNTER0_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//SPI_PERFCOUNTER1_HI
+#define SPI_PERFCOUNTER1_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define SPI_PERFCOUNTER1_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//SPI_PERFCOUNTER1_LO
+#define SPI_PERFCOUNTER1_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define SPI_PERFCOUNTER1_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//SPI_PERFCOUNTER2_HI
+#define SPI_PERFCOUNTER2_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define SPI_PERFCOUNTER2_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//SPI_PERFCOUNTER2_LO
+#define SPI_PERFCOUNTER2_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define SPI_PERFCOUNTER2_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//SPI_PERFCOUNTER3_HI
+#define SPI_PERFCOUNTER3_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define SPI_PERFCOUNTER3_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//SPI_PERFCOUNTER3_LO
+#define SPI_PERFCOUNTER3_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define SPI_PERFCOUNTER3_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//SPI_PERFCOUNTER4_HI
+#define SPI_PERFCOUNTER4_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define SPI_PERFCOUNTER4_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//SPI_PERFCOUNTER4_LO
+#define SPI_PERFCOUNTER4_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define SPI_PERFCOUNTER4_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//SPI_PERFCOUNTER5_HI
+#define SPI_PERFCOUNTER5_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define SPI_PERFCOUNTER5_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//SPI_PERFCOUNTER5_LO
+#define SPI_PERFCOUNTER5_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define SPI_PERFCOUNTER5_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//SQ_PERFCOUNTER0_LO
+#define SQ_PERFCOUNTER0_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define SQ_PERFCOUNTER0_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//SQ_PERFCOUNTER0_HI
+#define SQ_PERFCOUNTER0_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define SQ_PERFCOUNTER0_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//SQ_PERFCOUNTER1_LO
+#define SQ_PERFCOUNTER1_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define SQ_PERFCOUNTER1_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//SQ_PERFCOUNTER1_HI
+#define SQ_PERFCOUNTER1_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define SQ_PERFCOUNTER1_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//SQ_PERFCOUNTER2_LO
+#define SQ_PERFCOUNTER2_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define SQ_PERFCOUNTER2_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//SQ_PERFCOUNTER2_HI
+#define SQ_PERFCOUNTER2_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define SQ_PERFCOUNTER2_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//SQ_PERFCOUNTER3_LO
+#define SQ_PERFCOUNTER3_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define SQ_PERFCOUNTER3_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//SQ_PERFCOUNTER3_HI
+#define SQ_PERFCOUNTER3_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define SQ_PERFCOUNTER3_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//SQ_PERFCOUNTER4_LO
+#define SQ_PERFCOUNTER4_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define SQ_PERFCOUNTER4_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//SQ_PERFCOUNTER4_HI
+#define SQ_PERFCOUNTER4_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define SQ_PERFCOUNTER4_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//SQ_PERFCOUNTER5_LO
+#define SQ_PERFCOUNTER5_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define SQ_PERFCOUNTER5_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//SQ_PERFCOUNTER5_HI
+#define SQ_PERFCOUNTER5_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define SQ_PERFCOUNTER5_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//SQ_PERFCOUNTER6_LO
+#define SQ_PERFCOUNTER6_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define SQ_PERFCOUNTER6_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//SQ_PERFCOUNTER6_HI
+#define SQ_PERFCOUNTER6_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define SQ_PERFCOUNTER6_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//SQ_PERFCOUNTER7_LO
+#define SQ_PERFCOUNTER7_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define SQ_PERFCOUNTER7_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//SQ_PERFCOUNTER7_HI
+#define SQ_PERFCOUNTER7_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define SQ_PERFCOUNTER7_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//SQ_PERFCOUNTER8_LO
+#define SQ_PERFCOUNTER8_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define SQ_PERFCOUNTER8_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//SQ_PERFCOUNTER8_HI
+#define SQ_PERFCOUNTER8_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define SQ_PERFCOUNTER8_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//SQ_PERFCOUNTER9_LO
+#define SQ_PERFCOUNTER9_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define SQ_PERFCOUNTER9_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//SQ_PERFCOUNTER9_HI
+#define SQ_PERFCOUNTER9_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define SQ_PERFCOUNTER9_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//SQ_PERFCOUNTER10_LO
+#define SQ_PERFCOUNTER10_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define SQ_PERFCOUNTER10_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//SQ_PERFCOUNTER10_HI
+#define SQ_PERFCOUNTER10_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define SQ_PERFCOUNTER10_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//SQ_PERFCOUNTER11_LO
+#define SQ_PERFCOUNTER11_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define SQ_PERFCOUNTER11_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//SQ_PERFCOUNTER11_HI
+#define SQ_PERFCOUNTER11_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define SQ_PERFCOUNTER11_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//SQ_PERFCOUNTER12_LO
+#define SQ_PERFCOUNTER12_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define SQ_PERFCOUNTER12_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//SQ_PERFCOUNTER12_HI
+#define SQ_PERFCOUNTER12_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define SQ_PERFCOUNTER12_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//SQ_PERFCOUNTER13_LO
+#define SQ_PERFCOUNTER13_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define SQ_PERFCOUNTER13_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//SQ_PERFCOUNTER13_HI
+#define SQ_PERFCOUNTER13_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define SQ_PERFCOUNTER13_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//SQ_PERFCOUNTER14_LO
+#define SQ_PERFCOUNTER14_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define SQ_PERFCOUNTER14_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//SQ_PERFCOUNTER14_HI
+#define SQ_PERFCOUNTER14_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define SQ_PERFCOUNTER14_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//SQ_PERFCOUNTER15_LO
+#define SQ_PERFCOUNTER15_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define SQ_PERFCOUNTER15_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//SQ_PERFCOUNTER15_HI
+#define SQ_PERFCOUNTER15_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define SQ_PERFCOUNTER15_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//SX_PERFCOUNTER0_LO
+#define SX_PERFCOUNTER0_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define SX_PERFCOUNTER0_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//SX_PERFCOUNTER0_HI
+#define SX_PERFCOUNTER0_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define SX_PERFCOUNTER0_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//SX_PERFCOUNTER1_LO
+#define SX_PERFCOUNTER1_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define SX_PERFCOUNTER1_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//SX_PERFCOUNTER1_HI
+#define SX_PERFCOUNTER1_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define SX_PERFCOUNTER1_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//SX_PERFCOUNTER2_LO
+#define SX_PERFCOUNTER2_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define SX_PERFCOUNTER2_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//SX_PERFCOUNTER2_HI
+#define SX_PERFCOUNTER2_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define SX_PERFCOUNTER2_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//SX_PERFCOUNTER3_LO
+#define SX_PERFCOUNTER3_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define SX_PERFCOUNTER3_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//SX_PERFCOUNTER3_HI
+#define SX_PERFCOUNTER3_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define SX_PERFCOUNTER3_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//GDS_PERFCOUNTER0_LO
+#define GDS_PERFCOUNTER0_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define GDS_PERFCOUNTER0_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//GDS_PERFCOUNTER0_HI
+#define GDS_PERFCOUNTER0_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define GDS_PERFCOUNTER0_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//GDS_PERFCOUNTER1_LO
+#define GDS_PERFCOUNTER1_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define GDS_PERFCOUNTER1_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//GDS_PERFCOUNTER1_HI
+#define GDS_PERFCOUNTER1_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define GDS_PERFCOUNTER1_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//GDS_PERFCOUNTER2_LO
+#define GDS_PERFCOUNTER2_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define GDS_PERFCOUNTER2_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//GDS_PERFCOUNTER2_HI
+#define GDS_PERFCOUNTER2_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define GDS_PERFCOUNTER2_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//GDS_PERFCOUNTER3_LO
+#define GDS_PERFCOUNTER3_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define GDS_PERFCOUNTER3_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//GDS_PERFCOUNTER3_HI
+#define GDS_PERFCOUNTER3_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define GDS_PERFCOUNTER3_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//TA_PERFCOUNTER0_LO
+#define TA_PERFCOUNTER0_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define TA_PERFCOUNTER0_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//TA_PERFCOUNTER0_HI
+#define TA_PERFCOUNTER0_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define TA_PERFCOUNTER0_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//TA_PERFCOUNTER1_LO
+#define TA_PERFCOUNTER1_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define TA_PERFCOUNTER1_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//TA_PERFCOUNTER1_HI
+#define TA_PERFCOUNTER1_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define TA_PERFCOUNTER1_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//TD_PERFCOUNTER0_LO
+#define TD_PERFCOUNTER0_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define TD_PERFCOUNTER0_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//TD_PERFCOUNTER0_HI
+#define TD_PERFCOUNTER0_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define TD_PERFCOUNTER0_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//TD_PERFCOUNTER1_LO
+#define TD_PERFCOUNTER1_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define TD_PERFCOUNTER1_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//TD_PERFCOUNTER1_HI
+#define TD_PERFCOUNTER1_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define TD_PERFCOUNTER1_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//TCP_PERFCOUNTER0_LO
+#define TCP_PERFCOUNTER0_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define TCP_PERFCOUNTER0_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//TCP_PERFCOUNTER0_HI
+#define TCP_PERFCOUNTER0_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define TCP_PERFCOUNTER0_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//TCP_PERFCOUNTER1_LO
+#define TCP_PERFCOUNTER1_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define TCP_PERFCOUNTER1_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//TCP_PERFCOUNTER1_HI
+#define TCP_PERFCOUNTER1_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define TCP_PERFCOUNTER1_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//TCP_PERFCOUNTER2_LO
+#define TCP_PERFCOUNTER2_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define TCP_PERFCOUNTER2_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//TCP_PERFCOUNTER2_HI
+#define TCP_PERFCOUNTER2_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define TCP_PERFCOUNTER2_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//TCP_PERFCOUNTER3_LO
+#define TCP_PERFCOUNTER3_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define TCP_PERFCOUNTER3_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//TCP_PERFCOUNTER3_HI
+#define TCP_PERFCOUNTER3_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define TCP_PERFCOUNTER3_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//TCC_PERFCOUNTER0_LO
+#define TCC_PERFCOUNTER0_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define TCC_PERFCOUNTER0_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//TCC_PERFCOUNTER0_HI
+#define TCC_PERFCOUNTER0_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define TCC_PERFCOUNTER0_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//TCC_PERFCOUNTER1_LO
+#define TCC_PERFCOUNTER1_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define TCC_PERFCOUNTER1_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//TCC_PERFCOUNTER1_HI
+#define TCC_PERFCOUNTER1_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define TCC_PERFCOUNTER1_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//TCC_PERFCOUNTER2_LO
+#define TCC_PERFCOUNTER2_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define TCC_PERFCOUNTER2_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//TCC_PERFCOUNTER2_HI
+#define TCC_PERFCOUNTER2_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define TCC_PERFCOUNTER2_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//TCC_PERFCOUNTER3_LO
+#define TCC_PERFCOUNTER3_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define TCC_PERFCOUNTER3_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//TCC_PERFCOUNTER3_HI
+#define TCC_PERFCOUNTER3_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define TCC_PERFCOUNTER3_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//TCA_PERFCOUNTER0_LO
+#define TCA_PERFCOUNTER0_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define TCA_PERFCOUNTER0_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//TCA_PERFCOUNTER0_HI
+#define TCA_PERFCOUNTER0_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define TCA_PERFCOUNTER0_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//TCA_PERFCOUNTER1_LO
+#define TCA_PERFCOUNTER1_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define TCA_PERFCOUNTER1_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//TCA_PERFCOUNTER1_HI
+#define TCA_PERFCOUNTER1_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define TCA_PERFCOUNTER1_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//TCA_PERFCOUNTER2_LO
+#define TCA_PERFCOUNTER2_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define TCA_PERFCOUNTER2_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//TCA_PERFCOUNTER2_HI
+#define TCA_PERFCOUNTER2_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define TCA_PERFCOUNTER2_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//TCA_PERFCOUNTER3_LO
+#define TCA_PERFCOUNTER3_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define TCA_PERFCOUNTER3_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//TCA_PERFCOUNTER3_HI
+#define TCA_PERFCOUNTER3_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define TCA_PERFCOUNTER3_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//CB_PERFCOUNTER0_LO
+#define CB_PERFCOUNTER0_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define CB_PERFCOUNTER0_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//CB_PERFCOUNTER0_HI
+#define CB_PERFCOUNTER0_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define CB_PERFCOUNTER0_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//CB_PERFCOUNTER1_LO
+#define CB_PERFCOUNTER1_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define CB_PERFCOUNTER1_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//CB_PERFCOUNTER1_HI
+#define CB_PERFCOUNTER1_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define CB_PERFCOUNTER1_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//CB_PERFCOUNTER2_LO
+#define CB_PERFCOUNTER2_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define CB_PERFCOUNTER2_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//CB_PERFCOUNTER2_HI
+#define CB_PERFCOUNTER2_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define CB_PERFCOUNTER2_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//CB_PERFCOUNTER3_LO
+#define CB_PERFCOUNTER3_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define CB_PERFCOUNTER3_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//CB_PERFCOUNTER3_HI
+#define CB_PERFCOUNTER3_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define CB_PERFCOUNTER3_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//DB_PERFCOUNTER0_LO
+#define DB_PERFCOUNTER0_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define DB_PERFCOUNTER0_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//DB_PERFCOUNTER0_HI
+#define DB_PERFCOUNTER0_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define DB_PERFCOUNTER0_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//DB_PERFCOUNTER1_LO
+#define DB_PERFCOUNTER1_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define DB_PERFCOUNTER1_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//DB_PERFCOUNTER1_HI
+#define DB_PERFCOUNTER1_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define DB_PERFCOUNTER1_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//DB_PERFCOUNTER2_LO
+#define DB_PERFCOUNTER2_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define DB_PERFCOUNTER2_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//DB_PERFCOUNTER2_HI
+#define DB_PERFCOUNTER2_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define DB_PERFCOUNTER2_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//DB_PERFCOUNTER3_LO
+#define DB_PERFCOUNTER3_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define DB_PERFCOUNTER3_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//DB_PERFCOUNTER3_HI
+#define DB_PERFCOUNTER3_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define DB_PERFCOUNTER3_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//RLC_PERFCOUNTER0_LO
+#define RLC_PERFCOUNTER0_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define RLC_PERFCOUNTER0_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//RLC_PERFCOUNTER0_HI
+#define RLC_PERFCOUNTER0_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define RLC_PERFCOUNTER0_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//RLC_PERFCOUNTER1_LO
+#define RLC_PERFCOUNTER1_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define RLC_PERFCOUNTER1_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//RLC_PERFCOUNTER1_HI
+#define RLC_PERFCOUNTER1_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define RLC_PERFCOUNTER1_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//RMI_PERFCOUNTER0_LO
+#define RMI_PERFCOUNTER0_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define RMI_PERFCOUNTER0_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//RMI_PERFCOUNTER0_HI
+#define RMI_PERFCOUNTER0_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define RMI_PERFCOUNTER0_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//RMI_PERFCOUNTER1_LO
+#define RMI_PERFCOUNTER1_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define RMI_PERFCOUNTER1_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//RMI_PERFCOUNTER1_HI
+#define RMI_PERFCOUNTER1_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define RMI_PERFCOUNTER1_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//RMI_PERFCOUNTER2_LO
+#define RMI_PERFCOUNTER2_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define RMI_PERFCOUNTER2_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//RMI_PERFCOUNTER2_HI
+#define RMI_PERFCOUNTER2_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define RMI_PERFCOUNTER2_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+//RMI_PERFCOUNTER3_LO
+#define RMI_PERFCOUNTER3_LO__PERFCOUNTER_LO__SHIFT 0x0
+#define RMI_PERFCOUNTER3_LO__PERFCOUNTER_LO_MASK 0xFFFFFFFFL
+//RMI_PERFCOUNTER3_HI
+#define RMI_PERFCOUNTER3_HI__PERFCOUNTER_HI__SHIFT 0x0
+#define RMI_PERFCOUNTER3_HI__PERFCOUNTER_HI_MASK 0xFFFFFFFFL
+
+
+// addressBlock: xcd0_gc_utcl2_atcl2pfcntrdec
+//ATC_L2_PERFCOUNTER_LO
+#define ATC_L2_PERFCOUNTER_LO__COUNTER_LO__SHIFT 0x0
+#define ATC_L2_PERFCOUNTER_LO__COUNTER_LO_MASK 0xFFFFFFFFL
+//ATC_L2_PERFCOUNTER_HI
+#define ATC_L2_PERFCOUNTER_HI__COUNTER_HI__SHIFT 0x0
+#define ATC_L2_PERFCOUNTER_HI__COMPARE_VALUE__SHIFT 0x10
+#define ATC_L2_PERFCOUNTER_HI__COUNTER_HI_MASK 0x0000FFFFL
+#define ATC_L2_PERFCOUNTER_HI__COMPARE_VALUE_MASK 0xFFFF0000L
+
+
+// addressBlock: xcd0_gc_utcl2_vml2prdec
+//MC_VM_L2_PERFCOUNTER_LO
+#define MC_VM_L2_PERFCOUNTER_LO__COUNTER_LO__SHIFT 0x0
+#define MC_VM_L2_PERFCOUNTER_LO__COUNTER_LO_MASK 0xFFFFFFFFL
+//MC_VM_L2_PERFCOUNTER_HI
+#define MC_VM_L2_PERFCOUNTER_HI__COUNTER_HI__SHIFT 0x0
+#define MC_VM_L2_PERFCOUNTER_HI__COMPARE_VALUE__SHIFT 0x10
+#define MC_VM_L2_PERFCOUNTER_HI__COUNTER_HI_MASK 0x0000FFFFL
+#define MC_VM_L2_PERFCOUNTER_HI__COMPARE_VALUE_MASK 0xFFFF0000L
+
+
+// addressBlock: xcd0_gc_utcl2_l2tlbprdec
+//L2TLB_PERFCOUNTER_LO
+#define L2TLB_PERFCOUNTER_LO__COUNTER_LO__SHIFT 0x0
+#define L2TLB_PERFCOUNTER_LO__COUNTER_LO_MASK 0xFFFFFFFFL
+//L2TLB_PERFCOUNTER_HI
+#define L2TLB_PERFCOUNTER_HI__COUNTER_HI__SHIFT 0x0
+#define L2TLB_PERFCOUNTER_HI__COMPARE_VALUE__SHIFT 0x10
+#define L2TLB_PERFCOUNTER_HI__COUNTER_HI_MASK 0x0000FFFFL
+#define L2TLB_PERFCOUNTER_HI__COMPARE_VALUE_MASK 0xFFFF0000L
+
+
+// addressBlock: xcd0_gc_perfsdec
+//CPG_PERFCOUNTER1_SELECT
+#define CPG_PERFCOUNTER1_SELECT__CNTR_SEL0__SHIFT 0x0
+#define CPG_PERFCOUNTER1_SELECT__CNTR_SEL1__SHIFT 0xa
+#define CPG_PERFCOUNTER1_SELECT__SPM_MODE__SHIFT 0x14
+#define CPG_PERFCOUNTER1_SELECT__CNTR_MODE1__SHIFT 0x18
+#define CPG_PERFCOUNTER1_SELECT__CNTR_MODE0__SHIFT 0x1c
+#define CPG_PERFCOUNTER1_SELECT__CNTR_SEL0_MASK 0x000003FFL
+#define CPG_PERFCOUNTER1_SELECT__CNTR_SEL1_MASK 0x000FFC00L
+#define CPG_PERFCOUNTER1_SELECT__SPM_MODE_MASK 0x00F00000L
+#define CPG_PERFCOUNTER1_SELECT__CNTR_MODE1_MASK 0x0F000000L
+#define CPG_PERFCOUNTER1_SELECT__CNTR_MODE0_MASK 0xF0000000L
+//CPG_PERFCOUNTER0_SELECT1
+#define CPG_PERFCOUNTER0_SELECT1__CNTR_SEL2__SHIFT 0x0
+#define CPG_PERFCOUNTER0_SELECT1__CNTR_SEL3__SHIFT 0xa
+#define CPG_PERFCOUNTER0_SELECT1__CNTR_MODE3__SHIFT 0x18
+#define CPG_PERFCOUNTER0_SELECT1__CNTR_MODE2__SHIFT 0x1c
+#define CPG_PERFCOUNTER0_SELECT1__CNTR_SEL2_MASK 0x000003FFL
+#define CPG_PERFCOUNTER0_SELECT1__CNTR_SEL3_MASK 0x000FFC00L
+#define CPG_PERFCOUNTER0_SELECT1__CNTR_MODE3_MASK 0x0F000000L
+#define CPG_PERFCOUNTER0_SELECT1__CNTR_MODE2_MASK 0xF0000000L
+//CPG_PERFCOUNTER0_SELECT
+#define CPG_PERFCOUNTER0_SELECT__CNTR_SEL0__SHIFT 0x0
+#define CPG_PERFCOUNTER0_SELECT__CNTR_SEL1__SHIFT 0xa
+#define CPG_PERFCOUNTER0_SELECT__SPM_MODE__SHIFT 0x14
+#define CPG_PERFCOUNTER0_SELECT__CNTR_MODE1__SHIFT 0x18
+#define CPG_PERFCOUNTER0_SELECT__CNTR_MODE0__SHIFT 0x1c
+#define CPG_PERFCOUNTER0_SELECT__CNTR_SEL0_MASK 0x000003FFL
+#define CPG_PERFCOUNTER0_SELECT__CNTR_SEL1_MASK 0x000FFC00L
+#define CPG_PERFCOUNTER0_SELECT__SPM_MODE_MASK 0x00F00000L
+#define CPG_PERFCOUNTER0_SELECT__CNTR_MODE1_MASK 0x0F000000L
+#define CPG_PERFCOUNTER0_SELECT__CNTR_MODE0_MASK 0xF0000000L
+//CPC_PERFCOUNTER1_SELECT
+#define CPC_PERFCOUNTER1_SELECT__CNTR_SEL0__SHIFT 0x0
+#define CPC_PERFCOUNTER1_SELECT__SPM_MODE__SHIFT 0x14
+#define CPC_PERFCOUNTER1_SELECT__CNTR_MODE0__SHIFT 0x1c
+#define CPC_PERFCOUNTER1_SELECT__CNTR_SEL0_MASK 0x000003FFL
+#define CPC_PERFCOUNTER1_SELECT__SPM_MODE_MASK 0x00F00000L
+#define CPC_PERFCOUNTER1_SELECT__CNTR_MODE0_MASK 0xF0000000L
+//CPC_PERFCOUNTER0_SELECT1
+#define CPC_PERFCOUNTER0_SELECT1__CNTR_SEL2__SHIFT 0x0
+#define CPC_PERFCOUNTER0_SELECT1__CNTR_SEL3__SHIFT 0xa
+#define CPC_PERFCOUNTER0_SELECT1__CNTR_MODE3__SHIFT 0x18
+#define CPC_PERFCOUNTER0_SELECT1__CNTR_MODE2__SHIFT 0x1c
+#define CPC_PERFCOUNTER0_SELECT1__CNTR_SEL2_MASK 0x000003FFL
+#define CPC_PERFCOUNTER0_SELECT1__CNTR_SEL3_MASK 0x000FFC00L
+#define CPC_PERFCOUNTER0_SELECT1__CNTR_MODE3_MASK 0x0F000000L
+#define CPC_PERFCOUNTER0_SELECT1__CNTR_MODE2_MASK 0xF0000000L
+//CPF_PERFCOUNTER1_SELECT
+#define CPF_PERFCOUNTER1_SELECT__CNTR_SEL0__SHIFT 0x0
+#define CPF_PERFCOUNTER1_SELECT__CNTR_SEL1__SHIFT 0xa
+#define CPF_PERFCOUNTER1_SELECT__SPM_MODE__SHIFT 0x14
+#define CPF_PERFCOUNTER1_SELECT__CNTR_MODE1__SHIFT 0x18
+#define CPF_PERFCOUNTER1_SELECT__CNTR_MODE0__SHIFT 0x1c
+#define CPF_PERFCOUNTER1_SELECT__CNTR_SEL0_MASK 0x000003FFL
+#define CPF_PERFCOUNTER1_SELECT__CNTR_SEL1_MASK 0x000FFC00L
+#define CPF_PERFCOUNTER1_SELECT__SPM_MODE_MASK 0x00F00000L
+#define CPF_PERFCOUNTER1_SELECT__CNTR_MODE1_MASK 0x0F000000L
+#define CPF_PERFCOUNTER1_SELECT__CNTR_MODE0_MASK 0xF0000000L
+//CPF_PERFCOUNTER0_SELECT1
+#define CPF_PERFCOUNTER0_SELECT1__CNTR_SEL2__SHIFT 0x0
+#define CPF_PERFCOUNTER0_SELECT1__CNTR_SEL3__SHIFT 0xa
+#define CPF_PERFCOUNTER0_SELECT1__CNTR_MODE3__SHIFT 0x18
+#define CPF_PERFCOUNTER0_SELECT1__CNTR_MODE2__SHIFT 0x1c
+#define CPF_PERFCOUNTER0_SELECT1__CNTR_SEL2_MASK 0x000003FFL
+#define CPF_PERFCOUNTER0_SELECT1__CNTR_SEL3_MASK 0x000FFC00L
+#define CPF_PERFCOUNTER0_SELECT1__CNTR_MODE3_MASK 0x0F000000L
+#define CPF_PERFCOUNTER0_SELECT1__CNTR_MODE2_MASK 0xF0000000L
+//CPF_PERFCOUNTER0_SELECT
+#define CPF_PERFCOUNTER0_SELECT__CNTR_SEL0__SHIFT 0x0
+#define CPF_PERFCOUNTER0_SELECT__CNTR_SEL1__SHIFT 0xa
+#define CPF_PERFCOUNTER0_SELECT__SPM_MODE__SHIFT 0x14
+#define CPF_PERFCOUNTER0_SELECT__CNTR_MODE1__SHIFT 0x18
+#define CPF_PERFCOUNTER0_SELECT__CNTR_MODE0__SHIFT 0x1c
+#define CPF_PERFCOUNTER0_SELECT__CNTR_SEL0_MASK 0x000003FFL
+#define CPF_PERFCOUNTER0_SELECT__CNTR_SEL1_MASK 0x000FFC00L
+#define CPF_PERFCOUNTER0_SELECT__SPM_MODE_MASK 0x00F00000L
+#define CPF_PERFCOUNTER0_SELECT__CNTR_MODE1_MASK 0x0F000000L
+#define CPF_PERFCOUNTER0_SELECT__CNTR_MODE0_MASK 0xF0000000L
+//CP_PERFMON_CNTL
+#define CP_PERFMON_CNTL__PERFMON_STATE__SHIFT 0x0
+#define CP_PERFMON_CNTL__SPM_PERFMON_STATE__SHIFT 0x4
+#define CP_PERFMON_CNTL__PERFMON_ENABLE_MODE__SHIFT 0x8
+#define CP_PERFMON_CNTL__PERFMON_SAMPLE_ENABLE__SHIFT 0xa
+#define CP_PERFMON_CNTL__PERFMON_STATE_MASK 0x0000000FL
+#define CP_PERFMON_CNTL__SPM_PERFMON_STATE_MASK 0x000000F0L
+#define CP_PERFMON_CNTL__PERFMON_ENABLE_MODE_MASK 0x00000300L
+#define CP_PERFMON_CNTL__PERFMON_SAMPLE_ENABLE_MASK 0x00000400L
+//CPC_PERFCOUNTER0_SELECT
+#define CPC_PERFCOUNTER0_SELECT__CNTR_SEL0__SHIFT 0x0
+#define CPC_PERFCOUNTER0_SELECT__CNTR_SEL1__SHIFT 0xa
+#define CPC_PERFCOUNTER0_SELECT__SPM_MODE__SHIFT 0x14
+#define CPC_PERFCOUNTER0_SELECT__CNTR_MODE1__SHIFT 0x18
+#define CPC_PERFCOUNTER0_SELECT__CNTR_MODE0__SHIFT 0x1c
+#define CPC_PERFCOUNTER0_SELECT__CNTR_SEL0_MASK 0x000003FFL
+#define CPC_PERFCOUNTER0_SELECT__CNTR_SEL1_MASK 0x000FFC00L
+#define CPC_PERFCOUNTER0_SELECT__SPM_MODE_MASK 0x00F00000L
+#define CPC_PERFCOUNTER0_SELECT__CNTR_MODE1_MASK 0x0F000000L
+#define CPC_PERFCOUNTER0_SELECT__CNTR_MODE0_MASK 0xF0000000L
+//CPF_TC_PERF_COUNTER_WINDOW_SELECT
+#define CPF_TC_PERF_COUNTER_WINDOW_SELECT__INDEX__SHIFT 0x0
+#define CPF_TC_PERF_COUNTER_WINDOW_SELECT__ALWAYS__SHIFT 0x1e
+#define CPF_TC_PERF_COUNTER_WINDOW_SELECT__ENABLE__SHIFT 0x1f
+#define CPF_TC_PERF_COUNTER_WINDOW_SELECT__INDEX_MASK 0x00000007L
+#define CPF_TC_PERF_COUNTER_WINDOW_SELECT__ALWAYS_MASK 0x40000000L
+#define CPF_TC_PERF_COUNTER_WINDOW_SELECT__ENABLE_MASK 0x80000000L
+//CPG_TC_PERF_COUNTER_WINDOW_SELECT
+#define CPG_TC_PERF_COUNTER_WINDOW_SELECT__INDEX__SHIFT 0x0
+#define CPG_TC_PERF_COUNTER_WINDOW_SELECT__ALWAYS__SHIFT 0x1e
+#define CPG_TC_PERF_COUNTER_WINDOW_SELECT__ENABLE__SHIFT 0x1f
+#define CPG_TC_PERF_COUNTER_WINDOW_SELECT__INDEX_MASK 0x0000001FL
+#define CPG_TC_PERF_COUNTER_WINDOW_SELECT__ALWAYS_MASK 0x40000000L
+#define CPG_TC_PERF_COUNTER_WINDOW_SELECT__ENABLE_MASK 0x80000000L
+//CPF_LATENCY_STATS_SELECT
+#define CPF_LATENCY_STATS_SELECT__INDEX__SHIFT 0x0
+#define CPF_LATENCY_STATS_SELECT__CLEAR__SHIFT 0x1e
+#define CPF_LATENCY_STATS_SELECT__ENABLE__SHIFT 0x1f
+#define CPF_LATENCY_STATS_SELECT__INDEX_MASK 0x0000000FL
+#define CPF_LATENCY_STATS_SELECT__CLEAR_MASK 0x40000000L
+#define CPF_LATENCY_STATS_SELECT__ENABLE_MASK 0x80000000L
+//CPG_LATENCY_STATS_SELECT
+#define CPG_LATENCY_STATS_SELECT__INDEX__SHIFT 0x0
+#define CPG_LATENCY_STATS_SELECT__CLEAR__SHIFT 0x1e
+#define CPG_LATENCY_STATS_SELECT__ENABLE__SHIFT 0x1f
+#define CPG_LATENCY_STATS_SELECT__INDEX_MASK 0x0000001FL
+#define CPG_LATENCY_STATS_SELECT__CLEAR_MASK 0x40000000L
+#define CPG_LATENCY_STATS_SELECT__ENABLE_MASK 0x80000000L
+//CPC_LATENCY_STATS_SELECT
+#define CPC_LATENCY_STATS_SELECT__INDEX__SHIFT 0x0
+#define CPC_LATENCY_STATS_SELECT__CLEAR__SHIFT 0x1e
+#define CPC_LATENCY_STATS_SELECT__ENABLE__SHIFT 0x1f
+#define CPC_LATENCY_STATS_SELECT__INDEX_MASK 0x00000007L
+#define CPC_LATENCY_STATS_SELECT__CLEAR_MASK 0x40000000L
+#define CPC_LATENCY_STATS_SELECT__ENABLE_MASK 0x80000000L
+//CP_DRAW_OBJECT
+#define CP_DRAW_OBJECT__OBJECT__SHIFT 0x0
+#define CP_DRAW_OBJECT__OBJECT_MASK 0xFFFFFFFFL
+//CP_DRAW_OBJECT_COUNTER
+#define CP_DRAW_OBJECT_COUNTER__COUNT__SHIFT 0x0
+#define CP_DRAW_OBJECT_COUNTER__COUNT_MASK 0x0000FFFFL
+//CP_DRAW_WINDOW_MASK_HI
+#define CP_DRAW_WINDOW_MASK_HI__WINDOW_MASK_HI__SHIFT 0x0
+#define CP_DRAW_WINDOW_MASK_HI__WINDOW_MASK_HI_MASK 0xFFFFFFFFL
+//CP_DRAW_WINDOW_HI
+#define CP_DRAW_WINDOW_HI__WINDOW_HI__SHIFT 0x0
+#define CP_DRAW_WINDOW_HI__WINDOW_HI_MASK 0xFFFFFFFFL
+//CP_DRAW_WINDOW_LO
+#define CP_DRAW_WINDOW_LO__MIN__SHIFT 0x0
+#define CP_DRAW_WINDOW_LO__MAX__SHIFT 0x10
+#define CP_DRAW_WINDOW_LO__MIN_MASK 0x0000FFFFL
+#define CP_DRAW_WINDOW_LO__MAX_MASK 0xFFFF0000L
+//CP_DRAW_WINDOW_CNTL
+#define CP_DRAW_WINDOW_CNTL__DISABLE_DRAW_WINDOW_LO_MAX__SHIFT 0x0
+#define CP_DRAW_WINDOW_CNTL__DISABLE_DRAW_WINDOW_LO_MIN__SHIFT 0x1
+#define CP_DRAW_WINDOW_CNTL__DISABLE_DRAW_WINDOW_HI__SHIFT 0x2
+#define CP_DRAW_WINDOW_CNTL__MODE__SHIFT 0x8
+#define CP_DRAW_WINDOW_CNTL__DISABLE_DRAW_WINDOW_LO_MAX_MASK 0x00000001L
+#define CP_DRAW_WINDOW_CNTL__DISABLE_DRAW_WINDOW_LO_MIN_MASK 0x00000002L
+#define CP_DRAW_WINDOW_CNTL__DISABLE_DRAW_WINDOW_HI_MASK 0x00000004L
+#define CP_DRAW_WINDOW_CNTL__MODE_MASK 0x00000100L
+//GRBM_PERFCOUNTER0_SELECT
+#define GRBM_PERFCOUNTER0_SELECT__PERF_SEL__SHIFT 0x0
+#define GRBM_PERFCOUNTER0_SELECT__DB_CLEAN_USER_DEFINED_MASK__SHIFT 0xa
+#define GRBM_PERFCOUNTER0_SELECT__CB_CLEAN_USER_DEFINED_MASK__SHIFT 0xb
+#define GRBM_PERFCOUNTER0_SELECT__VGT_BUSY_USER_DEFINED_MASK__SHIFT 0xc
+#define GRBM_PERFCOUNTER0_SELECT__TA_BUSY_USER_DEFINED_MASK__SHIFT 0xd
+#define GRBM_PERFCOUNTER0_SELECT__SX_BUSY_USER_DEFINED_MASK__SHIFT 0xe
+#define GRBM_PERFCOUNTER0_SELECT__SPI_BUSY_USER_DEFINED_MASK__SHIFT 0x10
+#define GRBM_PERFCOUNTER0_SELECT__SC_BUSY_USER_DEFINED_MASK__SHIFT 0x11
+#define GRBM_PERFCOUNTER0_SELECT__PA_BUSY_USER_DEFINED_MASK__SHIFT 0x12
+#define GRBM_PERFCOUNTER0_SELECT__GRBM_BUSY_USER_DEFINED_MASK__SHIFT 0x13
+#define GRBM_PERFCOUNTER0_SELECT__DB_BUSY_USER_DEFINED_MASK__SHIFT 0x14
+#define GRBM_PERFCOUNTER0_SELECT__CB_BUSY_USER_DEFINED_MASK__SHIFT 0x15
+#define GRBM_PERFCOUNTER0_SELECT__CP_BUSY_USER_DEFINED_MASK__SHIFT 0x16
+#define GRBM_PERFCOUNTER0_SELECT__IA_BUSY_USER_DEFINED_MASK__SHIFT 0x17
+#define GRBM_PERFCOUNTER0_SELECT__GDS_BUSY_USER_DEFINED_MASK__SHIFT 0x18
+#define GRBM_PERFCOUNTER0_SELECT__BCI_BUSY_USER_DEFINED_MASK__SHIFT 0x19
+#define GRBM_PERFCOUNTER0_SELECT__RLC_BUSY_USER_DEFINED_MASK__SHIFT 0x1a
+#define GRBM_PERFCOUNTER0_SELECT__TC_BUSY_USER_DEFINED_MASK__SHIFT 0x1b
+#define GRBM_PERFCOUNTER0_SELECT__WD_BUSY_USER_DEFINED_MASK__SHIFT 0x1c
+#define GRBM_PERFCOUNTER0_SELECT__UTCL2_BUSY_USER_DEFINED_MASK__SHIFT 0x1d
+#define GRBM_PERFCOUNTER0_SELECT__EA_BUSY_USER_DEFINED_MASK__SHIFT 0x1e
+#define GRBM_PERFCOUNTER0_SELECT__RMI_BUSY_USER_DEFINED_MASK__SHIFT 0x1f
+#define GRBM_PERFCOUNTER0_SELECT__PERF_SEL_MASK 0x0000003FL
+#define GRBM_PERFCOUNTER0_SELECT__DB_CLEAN_USER_DEFINED_MASK_MASK 0x00000400L
+#define GRBM_PERFCOUNTER0_SELECT__CB_CLEAN_USER_DEFINED_MASK_MASK 0x00000800L
+#define GRBM_PERFCOUNTER0_SELECT__VGT_BUSY_USER_DEFINED_MASK_MASK 0x00001000L
+#define GRBM_PERFCOUNTER0_SELECT__TA_BUSY_USER_DEFINED_MASK_MASK 0x00002000L
+#define GRBM_PERFCOUNTER0_SELECT__SX_BUSY_USER_DEFINED_MASK_MASK 0x00004000L
+#define GRBM_PERFCOUNTER0_SELECT__SPI_BUSY_USER_DEFINED_MASK_MASK 0x00010000L
+#define GRBM_PERFCOUNTER0_SELECT__SC_BUSY_USER_DEFINED_MASK_MASK 0x00020000L
+#define GRBM_PERFCOUNTER0_SELECT__PA_BUSY_USER_DEFINED_MASK_MASK 0x00040000L
+#define GRBM_PERFCOUNTER0_SELECT__GRBM_BUSY_USER_DEFINED_MASK_MASK 0x00080000L
+#define GRBM_PERFCOUNTER0_SELECT__DB_BUSY_USER_DEFINED_MASK_MASK 0x00100000L
+#define GRBM_PERFCOUNTER0_SELECT__CB_BUSY_USER_DEFINED_MASK_MASK 0x00200000L
+#define GRBM_PERFCOUNTER0_SELECT__CP_BUSY_USER_DEFINED_MASK_MASK 0x00400000L
+#define GRBM_PERFCOUNTER0_SELECT__IA_BUSY_USER_DEFINED_MASK_MASK 0x00800000L
+#define GRBM_PERFCOUNTER0_SELECT__GDS_BUSY_USER_DEFINED_MASK_MASK 0x01000000L
+#define GRBM_PERFCOUNTER0_SELECT__BCI_BUSY_USER_DEFINED_MASK_MASK 0x02000000L
+#define GRBM_PERFCOUNTER0_SELECT__RLC_BUSY_USER_DEFINED_MASK_MASK 0x04000000L
+#define GRBM_PERFCOUNTER0_SELECT__TC_BUSY_USER_DEFINED_MASK_MASK 0x08000000L
+#define GRBM_PERFCOUNTER0_SELECT__WD_BUSY_USER_DEFINED_MASK_MASK 0x10000000L
+#define GRBM_PERFCOUNTER0_SELECT__UTCL2_BUSY_USER_DEFINED_MASK_MASK 0x20000000L
+#define GRBM_PERFCOUNTER0_SELECT__EA_BUSY_USER_DEFINED_MASK_MASK 0x40000000L
+#define GRBM_PERFCOUNTER0_SELECT__RMI_BUSY_USER_DEFINED_MASK_MASK 0x80000000L
+//GRBM_PERFCOUNTER1_SELECT
+#define GRBM_PERFCOUNTER1_SELECT__PERF_SEL__SHIFT 0x0
+#define GRBM_PERFCOUNTER1_SELECT__DB_CLEAN_USER_DEFINED_MASK__SHIFT 0xa
+#define GRBM_PERFCOUNTER1_SELECT__CB_CLEAN_USER_DEFINED_MASK__SHIFT 0xb
+#define GRBM_PERFCOUNTER1_SELECT__VGT_BUSY_USER_DEFINED_MASK__SHIFT 0xc
+#define GRBM_PERFCOUNTER1_SELECT__TA_BUSY_USER_DEFINED_MASK__SHIFT 0xd
+#define GRBM_PERFCOUNTER1_SELECT__SX_BUSY_USER_DEFINED_MASK__SHIFT 0xe
+#define GRBM_PERFCOUNTER1_SELECT__SPI_BUSY_USER_DEFINED_MASK__SHIFT 0x10
+#define GRBM_PERFCOUNTER1_SELECT__SC_BUSY_USER_DEFINED_MASK__SHIFT 0x11
+#define GRBM_PERFCOUNTER1_SELECT__PA_BUSY_USER_DEFINED_MASK__SHIFT 0x12
+#define GRBM_PERFCOUNTER1_SELECT__GRBM_BUSY_USER_DEFINED_MASK__SHIFT 0x13
+#define GRBM_PERFCOUNTER1_SELECT__DB_BUSY_USER_DEFINED_MASK__SHIFT 0x14
+#define GRBM_PERFCOUNTER1_SELECT__CB_BUSY_USER_DEFINED_MASK__SHIFT 0x15
+#define GRBM_PERFCOUNTER1_SELECT__CP_BUSY_USER_DEFINED_MASK__SHIFT 0x16
+#define GRBM_PERFCOUNTER1_SELECT__IA_BUSY_USER_DEFINED_MASK__SHIFT 0x17
+#define GRBM_PERFCOUNTER1_SELECT__GDS_BUSY_USER_DEFINED_MASK__SHIFT 0x18
+#define GRBM_PERFCOUNTER1_SELECT__BCI_BUSY_USER_DEFINED_MASK__SHIFT 0x19
+#define GRBM_PERFCOUNTER1_SELECT__RLC_BUSY_USER_DEFINED_MASK__SHIFT 0x1a
+#define GRBM_PERFCOUNTER1_SELECT__TC_BUSY_USER_DEFINED_MASK__SHIFT 0x1b
+#define GRBM_PERFCOUNTER1_SELECT__WD_BUSY_USER_DEFINED_MASK__SHIFT 0x1c
+#define GRBM_PERFCOUNTER1_SELECT__UTCL2_BUSY_USER_DEFINED_MASK__SHIFT 0x1d
+#define GRBM_PERFCOUNTER1_SELECT__EA_BUSY_USER_DEFINED_MASK__SHIFT 0x1e
+#define GRBM_PERFCOUNTER1_SELECT__RMI_BUSY_USER_DEFINED_MASK__SHIFT 0x1f
+#define GRBM_PERFCOUNTER1_SELECT__PERF_SEL_MASK 0x0000003FL
+#define GRBM_PERFCOUNTER1_SELECT__DB_CLEAN_USER_DEFINED_MASK_MASK 0x00000400L
+#define GRBM_PERFCOUNTER1_SELECT__CB_CLEAN_USER_DEFINED_MASK_MASK 0x00000800L
+#define GRBM_PERFCOUNTER1_SELECT__VGT_BUSY_USER_DEFINED_MASK_MASK 0x00001000L
+#define GRBM_PERFCOUNTER1_SELECT__TA_BUSY_USER_DEFINED_MASK_MASK 0x00002000L
+#define GRBM_PERFCOUNTER1_SELECT__SX_BUSY_USER_DEFINED_MASK_MASK 0x00004000L
+#define GRBM_PERFCOUNTER1_SELECT__SPI_BUSY_USER_DEFINED_MASK_MASK 0x00010000L
+#define GRBM_PERFCOUNTER1_SELECT__SC_BUSY_USER_DEFINED_MASK_MASK 0x00020000L
+#define GRBM_PERFCOUNTER1_SELECT__PA_BUSY_USER_DEFINED_MASK_MASK 0x00040000L
+#define GRBM_PERFCOUNTER1_SELECT__GRBM_BUSY_USER_DEFINED_MASK_MASK 0x00080000L
+#define GRBM_PERFCOUNTER1_SELECT__DB_BUSY_USER_DEFINED_MASK_MASK 0x00100000L
+#define GRBM_PERFCOUNTER1_SELECT__CB_BUSY_USER_DEFINED_MASK_MASK 0x00200000L
+#define GRBM_PERFCOUNTER1_SELECT__CP_BUSY_USER_DEFINED_MASK_MASK 0x00400000L
+#define GRBM_PERFCOUNTER1_SELECT__IA_BUSY_USER_DEFINED_MASK_MASK 0x00800000L
+#define GRBM_PERFCOUNTER1_SELECT__GDS_BUSY_USER_DEFINED_MASK_MASK 0x01000000L
+#define GRBM_PERFCOUNTER1_SELECT__BCI_BUSY_USER_DEFINED_MASK_MASK 0x02000000L
+#define GRBM_PERFCOUNTER1_SELECT__RLC_BUSY_USER_DEFINED_MASK_MASK 0x04000000L
+#define GRBM_PERFCOUNTER1_SELECT__TC_BUSY_USER_DEFINED_MASK_MASK 0x08000000L
+#define GRBM_PERFCOUNTER1_SELECT__WD_BUSY_USER_DEFINED_MASK_MASK 0x10000000L
+#define GRBM_PERFCOUNTER1_SELECT__UTCL2_BUSY_USER_DEFINED_MASK_MASK 0x20000000L
+#define GRBM_PERFCOUNTER1_SELECT__EA_BUSY_USER_DEFINED_MASK_MASK 0x40000000L
+#define GRBM_PERFCOUNTER1_SELECT__RMI_BUSY_USER_DEFINED_MASK_MASK 0x80000000L
+//GRBM_SE0_PERFCOUNTER_SELECT
+#define GRBM_SE0_PERFCOUNTER_SELECT__PERF_SEL__SHIFT 0x0
+#define GRBM_SE0_PERFCOUNTER_SELECT__DB_CLEAN_USER_DEFINED_MASK__SHIFT 0xa
+#define GRBM_SE0_PERFCOUNTER_SELECT__CB_CLEAN_USER_DEFINED_MASK__SHIFT 0xb
+#define GRBM_SE0_PERFCOUNTER_SELECT__TA_BUSY_USER_DEFINED_MASK__SHIFT 0xc
+#define GRBM_SE0_PERFCOUNTER_SELECT__SX_BUSY_USER_DEFINED_MASK__SHIFT 0xd
+#define GRBM_SE0_PERFCOUNTER_SELECT__SPI_BUSY_USER_DEFINED_MASK__SHIFT 0xf
+#define GRBM_SE0_PERFCOUNTER_SELECT__SC_BUSY_USER_DEFINED_MASK__SHIFT 0x10
+#define GRBM_SE0_PERFCOUNTER_SELECT__DB_BUSY_USER_DEFINED_MASK__SHIFT 0x11
+#define GRBM_SE0_PERFCOUNTER_SELECT__CB_BUSY_USER_DEFINED_MASK__SHIFT 0x12
+#define GRBM_SE0_PERFCOUNTER_SELECT__VGT_BUSY_USER_DEFINED_MASK__SHIFT 0x13
+#define GRBM_SE0_PERFCOUNTER_SELECT__PA_BUSY_USER_DEFINED_MASK__SHIFT 0x14
+#define GRBM_SE0_PERFCOUNTER_SELECT__BCI_BUSY_USER_DEFINED_MASK__SHIFT 0x15
+#define GRBM_SE0_PERFCOUNTER_SELECT__RMI_BUSY_USER_DEFINED_MASK__SHIFT 0x16
+#define GRBM_SE0_PERFCOUNTER_SELECT__PERF_SEL_MASK 0x0000003FL
+#define GRBM_SE0_PERFCOUNTER_SELECT__DB_CLEAN_USER_DEFINED_MASK_MASK 0x00000400L
+#define GRBM_SE0_PERFCOUNTER_SELECT__CB_CLEAN_USER_DEFINED_MASK_MASK 0x00000800L
+#define GRBM_SE0_PERFCOUNTER_SELECT__TA_BUSY_USER_DEFINED_MASK_MASK 0x00001000L
+#define GRBM_SE0_PERFCOUNTER_SELECT__SX_BUSY_USER_DEFINED_MASK_MASK 0x00002000L
+#define GRBM_SE0_PERFCOUNTER_SELECT__SPI_BUSY_USER_DEFINED_MASK_MASK 0x00008000L
+#define GRBM_SE0_PERFCOUNTER_SELECT__SC_BUSY_USER_DEFINED_MASK_MASK 0x00010000L
+#define GRBM_SE0_PERFCOUNTER_SELECT__DB_BUSY_USER_DEFINED_MASK_MASK 0x00020000L
+#define GRBM_SE0_PERFCOUNTER_SELECT__CB_BUSY_USER_DEFINED_MASK_MASK 0x00040000L
+#define GRBM_SE0_PERFCOUNTER_SELECT__VGT_BUSY_USER_DEFINED_MASK_MASK 0x00080000L
+#define GRBM_SE0_PERFCOUNTER_SELECT__PA_BUSY_USER_DEFINED_MASK_MASK 0x00100000L
+#define GRBM_SE0_PERFCOUNTER_SELECT__BCI_BUSY_USER_DEFINED_MASK_MASK 0x00200000L
+#define GRBM_SE0_PERFCOUNTER_SELECT__RMI_BUSY_USER_DEFINED_MASK_MASK 0x00400000L
+//GRBM_SE1_PERFCOUNTER_SELECT
+#define GRBM_SE1_PERFCOUNTER_SELECT__PERF_SEL__SHIFT 0x0
+#define GRBM_SE1_PERFCOUNTER_SELECT__DB_CLEAN_USER_DEFINED_MASK__SHIFT 0xa
+#define GRBM_SE1_PERFCOUNTER_SELECT__CB_CLEAN_USER_DEFINED_MASK__SHIFT 0xb
+#define GRBM_SE1_PERFCOUNTER_SELECT__TA_BUSY_USER_DEFINED_MASK__SHIFT 0xc
+#define GRBM_SE1_PERFCOUNTER_SELECT__SX_BUSY_USER_DEFINED_MASK__SHIFT 0xd
+#define GRBM_SE1_PERFCOUNTER_SELECT__SPI_BUSY_USER_DEFINED_MASK__SHIFT 0xf
+#define GRBM_SE1_PERFCOUNTER_SELECT__SC_BUSY_USER_DEFINED_MASK__SHIFT 0x10
+#define GRBM_SE1_PERFCOUNTER_SELECT__DB_BUSY_USER_DEFINED_MASK__SHIFT 0x11
+#define GRBM_SE1_PERFCOUNTER_SELECT__CB_BUSY_USER_DEFINED_MASK__SHIFT 0x12
+#define GRBM_SE1_PERFCOUNTER_SELECT__VGT_BUSY_USER_DEFINED_MASK__SHIFT 0x13
+#define GRBM_SE1_PERFCOUNTER_SELECT__PA_BUSY_USER_DEFINED_MASK__SHIFT 0x14
+#define GRBM_SE1_PERFCOUNTER_SELECT__BCI_BUSY_USER_DEFINED_MASK__SHIFT 0x15
+#define GRBM_SE1_PERFCOUNTER_SELECT__RMI_BUSY_USER_DEFINED_MASK__SHIFT 0x16
+#define GRBM_SE1_PERFCOUNTER_SELECT__PERF_SEL_MASK 0x0000003FL
+#define GRBM_SE1_PERFCOUNTER_SELECT__DB_CLEAN_USER_DEFINED_MASK_MASK 0x00000400L
+#define GRBM_SE1_PERFCOUNTER_SELECT__CB_CLEAN_USER_DEFINED_MASK_MASK 0x00000800L
+#define GRBM_SE1_PERFCOUNTER_SELECT__TA_BUSY_USER_DEFINED_MASK_MASK 0x00001000L
+#define GRBM_SE1_PERFCOUNTER_SELECT__SX_BUSY_USER_DEFINED_MASK_MASK 0x00002000L
+#define GRBM_SE1_PERFCOUNTER_SELECT__SPI_BUSY_USER_DEFINED_MASK_MASK 0x00008000L
+#define GRBM_SE1_PERFCOUNTER_SELECT__SC_BUSY_USER_DEFINED_MASK_MASK 0x00010000L
+#define GRBM_SE1_PERFCOUNTER_SELECT__DB_BUSY_USER_DEFINED_MASK_MASK 0x00020000L
+#define GRBM_SE1_PERFCOUNTER_SELECT__CB_BUSY_USER_DEFINED_MASK_MASK 0x00040000L
+#define GRBM_SE1_PERFCOUNTER_SELECT__VGT_BUSY_USER_DEFINED_MASK_MASK 0x00080000L
+#define GRBM_SE1_PERFCOUNTER_SELECT__PA_BUSY_USER_DEFINED_MASK_MASK 0x00100000L
+#define GRBM_SE1_PERFCOUNTER_SELECT__BCI_BUSY_USER_DEFINED_MASK_MASK 0x00200000L
+#define GRBM_SE1_PERFCOUNTER_SELECT__RMI_BUSY_USER_DEFINED_MASK_MASK 0x00400000L
+//GRBM_SE2_PERFCOUNTER_SELECT
+#define GRBM_SE2_PERFCOUNTER_SELECT__PERF_SEL__SHIFT 0x0
+#define GRBM_SE2_PERFCOUNTER_SELECT__DB_CLEAN_USER_DEFINED_MASK__SHIFT 0xa
+#define GRBM_SE2_PERFCOUNTER_SELECT__CB_CLEAN_USER_DEFINED_MASK__SHIFT 0xb
+#define GRBM_SE2_PERFCOUNTER_SELECT__TA_BUSY_USER_DEFINED_MASK__SHIFT 0xc
+#define GRBM_SE2_PERFCOUNTER_SELECT__SX_BUSY_USER_DEFINED_MASK__SHIFT 0xd
+#define GRBM_SE2_PERFCOUNTER_SELECT__SPI_BUSY_USER_DEFINED_MASK__SHIFT 0xf
+#define GRBM_SE2_PERFCOUNTER_SELECT__SC_BUSY_USER_DEFINED_MASK__SHIFT 0x10
+#define GRBM_SE2_PERFCOUNTER_SELECT__DB_BUSY_USER_DEFINED_MASK__SHIFT 0x11
+#define GRBM_SE2_PERFCOUNTER_SELECT__CB_BUSY_USER_DEFINED_MASK__SHIFT 0x12
+#define GRBM_SE2_PERFCOUNTER_SELECT__VGT_BUSY_USER_DEFINED_MASK__SHIFT 0x13
+#define GRBM_SE2_PERFCOUNTER_SELECT__PA_BUSY_USER_DEFINED_MASK__SHIFT 0x14
+#define GRBM_SE2_PERFCOUNTER_SELECT__BCI_BUSY_USER_DEFINED_MASK__SHIFT 0x15
+#define GRBM_SE2_PERFCOUNTER_SELECT__RMI_BUSY_USER_DEFINED_MASK__SHIFT 0x16
+#define GRBM_SE2_PERFCOUNTER_SELECT__PERF_SEL_MASK 0x0000003FL
+#define GRBM_SE2_PERFCOUNTER_SELECT__DB_CLEAN_USER_DEFINED_MASK_MASK 0x00000400L
+#define GRBM_SE2_PERFCOUNTER_SELECT__CB_CLEAN_USER_DEFINED_MASK_MASK 0x00000800L
+#define GRBM_SE2_PERFCOUNTER_SELECT__TA_BUSY_USER_DEFINED_MASK_MASK 0x00001000L
+#define GRBM_SE2_PERFCOUNTER_SELECT__SX_BUSY_USER_DEFINED_MASK_MASK 0x00002000L
+#define GRBM_SE2_PERFCOUNTER_SELECT__SPI_BUSY_USER_DEFINED_MASK_MASK 0x00008000L
+#define GRBM_SE2_PERFCOUNTER_SELECT__SC_BUSY_USER_DEFINED_MASK_MASK 0x00010000L
+#define GRBM_SE2_PERFCOUNTER_SELECT__DB_BUSY_USER_DEFINED_MASK_MASK 0x00020000L
+#define GRBM_SE2_PERFCOUNTER_SELECT__CB_BUSY_USER_DEFINED_MASK_MASK 0x00040000L
+#define GRBM_SE2_PERFCOUNTER_SELECT__VGT_BUSY_USER_DEFINED_MASK_MASK 0x00080000L
+#define GRBM_SE2_PERFCOUNTER_SELECT__PA_BUSY_USER_DEFINED_MASK_MASK 0x00100000L
+#define GRBM_SE2_PERFCOUNTER_SELECT__BCI_BUSY_USER_DEFINED_MASK_MASK 0x00200000L
+#define GRBM_SE2_PERFCOUNTER_SELECT__RMI_BUSY_USER_DEFINED_MASK_MASK 0x00400000L
+//GRBM_SE3_PERFCOUNTER_SELECT
+#define GRBM_SE3_PERFCOUNTER_SELECT__PERF_SEL__SHIFT 0x0
+#define GRBM_SE3_PERFCOUNTER_SELECT__DB_CLEAN_USER_DEFINED_MASK__SHIFT 0xa
+#define GRBM_SE3_PERFCOUNTER_SELECT__CB_CLEAN_USER_DEFINED_MASK__SHIFT 0xb
+#define GRBM_SE3_PERFCOUNTER_SELECT__TA_BUSY_USER_DEFINED_MASK__SHIFT 0xc
+#define GRBM_SE3_PERFCOUNTER_SELECT__SX_BUSY_USER_DEFINED_MASK__SHIFT 0xd
+#define GRBM_SE3_PERFCOUNTER_SELECT__SPI_BUSY_USER_DEFINED_MASK__SHIFT 0xf
+#define GRBM_SE3_PERFCOUNTER_SELECT__SC_BUSY_USER_DEFINED_MASK__SHIFT 0x10
+#define GRBM_SE3_PERFCOUNTER_SELECT__DB_BUSY_USER_DEFINED_MASK__SHIFT 0x11
+#define GRBM_SE3_PERFCOUNTER_SELECT__CB_BUSY_USER_DEFINED_MASK__SHIFT 0x12
+#define GRBM_SE3_PERFCOUNTER_SELECT__VGT_BUSY_USER_DEFINED_MASK__SHIFT 0x13
+#define GRBM_SE3_PERFCOUNTER_SELECT__PA_BUSY_USER_DEFINED_MASK__SHIFT 0x14
+#define GRBM_SE3_PERFCOUNTER_SELECT__BCI_BUSY_USER_DEFINED_MASK__SHIFT 0x15
+#define GRBM_SE3_PERFCOUNTER_SELECT__RMI_BUSY_USER_DEFINED_MASK__SHIFT 0x16
+#define GRBM_SE3_PERFCOUNTER_SELECT__PERF_SEL_MASK 0x0000003FL
+#define GRBM_SE3_PERFCOUNTER_SELECT__DB_CLEAN_USER_DEFINED_MASK_MASK 0x00000400L
+#define GRBM_SE3_PERFCOUNTER_SELECT__CB_CLEAN_USER_DEFINED_MASK_MASK 0x00000800L
+#define GRBM_SE3_PERFCOUNTER_SELECT__TA_BUSY_USER_DEFINED_MASK_MASK 0x00001000L
+#define GRBM_SE3_PERFCOUNTER_SELECT__SX_BUSY_USER_DEFINED_MASK_MASK 0x00002000L
+#define GRBM_SE3_PERFCOUNTER_SELECT__SPI_BUSY_USER_DEFINED_MASK_MASK 0x00008000L
+#define GRBM_SE3_PERFCOUNTER_SELECT__SC_BUSY_USER_DEFINED_MASK_MASK 0x00010000L
+#define GRBM_SE3_PERFCOUNTER_SELECT__DB_BUSY_USER_DEFINED_MASK_MASK 0x00020000L
+#define GRBM_SE3_PERFCOUNTER_SELECT__CB_BUSY_USER_DEFINED_MASK_MASK 0x00040000L
+#define GRBM_SE3_PERFCOUNTER_SELECT__VGT_BUSY_USER_DEFINED_MASK_MASK 0x00080000L
+#define GRBM_SE3_PERFCOUNTER_SELECT__PA_BUSY_USER_DEFINED_MASK_MASK 0x00100000L
+#define GRBM_SE3_PERFCOUNTER_SELECT__BCI_BUSY_USER_DEFINED_MASK_MASK 0x00200000L
+#define GRBM_SE3_PERFCOUNTER_SELECT__RMI_BUSY_USER_DEFINED_MASK_MASK 0x00400000L
+//WD_PERFCOUNTER0_SELECT
+#define WD_PERFCOUNTER0_SELECT__PERF_SEL__SHIFT 0x0
+#define WD_PERFCOUNTER0_SELECT__PERF_MODE__SHIFT 0x1c
+#define WD_PERFCOUNTER0_SELECT__PERF_SEL_MASK 0x000000FFL
+#define WD_PERFCOUNTER0_SELECT__PERF_MODE_MASK 0xF0000000L
+//WD_PERFCOUNTER1_SELECT
+#define WD_PERFCOUNTER1_SELECT__PERF_SEL__SHIFT 0x0
+#define WD_PERFCOUNTER1_SELECT__PERF_MODE__SHIFT 0x1c
+#define WD_PERFCOUNTER1_SELECT__PERF_SEL_MASK 0x000000FFL
+#define WD_PERFCOUNTER1_SELECT__PERF_MODE_MASK 0xF0000000L
+//WD_PERFCOUNTER2_SELECT
+#define WD_PERFCOUNTER2_SELECT__PERF_SEL__SHIFT 0x0
+#define WD_PERFCOUNTER2_SELECT__PERF_MODE__SHIFT 0x1c
+#define WD_PERFCOUNTER2_SELECT__PERF_SEL_MASK 0x000000FFL
+#define WD_PERFCOUNTER2_SELECT__PERF_MODE_MASK 0xF0000000L
+//WD_PERFCOUNTER3_SELECT
+#define WD_PERFCOUNTER3_SELECT__PERF_SEL__SHIFT 0x0
+#define WD_PERFCOUNTER3_SELECT__PERF_MODE__SHIFT 0x1c
+#define WD_PERFCOUNTER3_SELECT__PERF_SEL_MASK 0x000000FFL
+#define WD_PERFCOUNTER3_SELECT__PERF_MODE_MASK 0xF0000000L
+//IA_PERFCOUNTER0_SELECT
+#define IA_PERFCOUNTER0_SELECT__PERF_SEL__SHIFT 0x0
+#define IA_PERFCOUNTER0_SELECT__PERF_SEL1__SHIFT 0xa
+#define IA_PERFCOUNTER0_SELECT__CNTR_MODE__SHIFT 0x14
+#define IA_PERFCOUNTER0_SELECT__PERF_MODE1__SHIFT 0x18
+#define IA_PERFCOUNTER0_SELECT__PERF_MODE__SHIFT 0x1c
+#define IA_PERFCOUNTER0_SELECT__PERF_SEL_MASK 0x000003FFL
+#define IA_PERFCOUNTER0_SELECT__PERF_SEL1_MASK 0x000FFC00L
+#define IA_PERFCOUNTER0_SELECT__CNTR_MODE_MASK 0x00F00000L
+#define IA_PERFCOUNTER0_SELECT__PERF_MODE1_MASK 0x0F000000L
+#define IA_PERFCOUNTER0_SELECT__PERF_MODE_MASK 0xF0000000L
+//IA_PERFCOUNTER1_SELECT
+#define IA_PERFCOUNTER1_SELECT__PERF_SEL__SHIFT 0x0
+#define IA_PERFCOUNTER1_SELECT__PERF_MODE__SHIFT 0x1c
+#define IA_PERFCOUNTER1_SELECT__PERF_SEL_MASK 0x000000FFL
+#define IA_PERFCOUNTER1_SELECT__PERF_MODE_MASK 0xF0000000L
+//IA_PERFCOUNTER2_SELECT
+#define IA_PERFCOUNTER2_SELECT__PERF_SEL__SHIFT 0x0
+#define IA_PERFCOUNTER2_SELECT__PERF_MODE__SHIFT 0x1c
+#define IA_PERFCOUNTER2_SELECT__PERF_SEL_MASK 0x000000FFL
+#define IA_PERFCOUNTER2_SELECT__PERF_MODE_MASK 0xF0000000L
+//IA_PERFCOUNTER3_SELECT
+#define IA_PERFCOUNTER3_SELECT__PERF_SEL__SHIFT 0x0
+#define IA_PERFCOUNTER3_SELECT__PERF_MODE__SHIFT 0x1c
+#define IA_PERFCOUNTER3_SELECT__PERF_SEL_MASK 0x000000FFL
+#define IA_PERFCOUNTER3_SELECT__PERF_MODE_MASK 0xF0000000L
+//IA_PERFCOUNTER0_SELECT1
+#define IA_PERFCOUNTER0_SELECT1__PERF_SEL2__SHIFT 0x0
+#define IA_PERFCOUNTER0_SELECT1__PERF_SEL3__SHIFT 0xa
+#define IA_PERFCOUNTER0_SELECT1__PERF_MODE3__SHIFT 0x18
+#define IA_PERFCOUNTER0_SELECT1__PERF_MODE2__SHIFT 0x1c
+#define IA_PERFCOUNTER0_SELECT1__PERF_SEL2_MASK 0x000003FFL
+#define IA_PERFCOUNTER0_SELECT1__PERF_SEL3_MASK 0x000FFC00L
+#define IA_PERFCOUNTER0_SELECT1__PERF_MODE3_MASK 0x0F000000L
+#define IA_PERFCOUNTER0_SELECT1__PERF_MODE2_MASK 0xF0000000L
+//VGT_PERFCOUNTER0_SELECT
+#define VGT_PERFCOUNTER0_SELECT__PERF_SEL__SHIFT 0x0
+#define VGT_PERFCOUNTER0_SELECT__PERF_SEL1__SHIFT 0xa
+#define VGT_PERFCOUNTER0_SELECT__CNTR_MODE__SHIFT 0x14
+#define VGT_PERFCOUNTER0_SELECT__PERF_MODE1__SHIFT 0x18
+#define VGT_PERFCOUNTER0_SELECT__PERF_MODE__SHIFT 0x1c
+#define VGT_PERFCOUNTER0_SELECT__PERF_SEL_MASK 0x000003FFL
+#define VGT_PERFCOUNTER0_SELECT__PERF_SEL1_MASK 0x000FFC00L
+#define VGT_PERFCOUNTER0_SELECT__CNTR_MODE_MASK 0x00F00000L
+#define VGT_PERFCOUNTER0_SELECT__PERF_MODE1_MASK 0x0F000000L
+#define VGT_PERFCOUNTER0_SELECT__PERF_MODE_MASK 0xF0000000L
+//VGT_PERFCOUNTER1_SELECT
+#define VGT_PERFCOUNTER1_SELECT__PERF_SEL__SHIFT 0x0
+#define VGT_PERFCOUNTER1_SELECT__PERF_SEL1__SHIFT 0xa
+#define VGT_PERFCOUNTER1_SELECT__CNTR_MODE__SHIFT 0x14
+#define VGT_PERFCOUNTER1_SELECT__PERF_MODE1__SHIFT 0x18
+#define VGT_PERFCOUNTER1_SELECT__PERF_MODE__SHIFT 0x1c
+#define VGT_PERFCOUNTER1_SELECT__PERF_SEL_MASK 0x000003FFL
+#define VGT_PERFCOUNTER1_SELECT__PERF_SEL1_MASK 0x000FFC00L
+#define VGT_PERFCOUNTER1_SELECT__CNTR_MODE_MASK 0x00F00000L
+#define VGT_PERFCOUNTER1_SELECT__PERF_MODE1_MASK 0x0F000000L
+#define VGT_PERFCOUNTER1_SELECT__PERF_MODE_MASK 0xF0000000L
+//VGT_PERFCOUNTER2_SELECT
+#define VGT_PERFCOUNTER2_SELECT__PERF_SEL__SHIFT 0x0
+#define VGT_PERFCOUNTER2_SELECT__PERF_MODE__SHIFT 0x1c
+#define VGT_PERFCOUNTER2_SELECT__PERF_SEL_MASK 0x000000FFL
+#define VGT_PERFCOUNTER2_SELECT__PERF_MODE_MASK 0xF0000000L
+//VGT_PERFCOUNTER3_SELECT
+#define VGT_PERFCOUNTER3_SELECT__PERF_SEL__SHIFT 0x0
+#define VGT_PERFCOUNTER3_SELECT__PERF_MODE__SHIFT 0x1c
+#define VGT_PERFCOUNTER3_SELECT__PERF_SEL_MASK 0x000000FFL
+#define VGT_PERFCOUNTER3_SELECT__PERF_MODE_MASK 0xF0000000L
+//VGT_PERFCOUNTER0_SELECT1
+#define VGT_PERFCOUNTER0_SELECT1__PERF_SEL2__SHIFT 0x0
+#define VGT_PERFCOUNTER0_SELECT1__PERF_SEL3__SHIFT 0xa
+#define VGT_PERFCOUNTER0_SELECT1__PERF_MODE3__SHIFT 0x18
+#define VGT_PERFCOUNTER0_SELECT1__PERF_MODE2__SHIFT 0x1c
+#define VGT_PERFCOUNTER0_SELECT1__PERF_SEL2_MASK 0x000003FFL
+#define VGT_PERFCOUNTER0_SELECT1__PERF_SEL3_MASK 0x000FFC00L
+#define VGT_PERFCOUNTER0_SELECT1__PERF_MODE3_MASK 0x0F000000L
+#define VGT_PERFCOUNTER0_SELECT1__PERF_MODE2_MASK 0xF0000000L
+//VGT_PERFCOUNTER1_SELECT1
+#define VGT_PERFCOUNTER1_SELECT1__PERF_SEL2__SHIFT 0x0
+#define VGT_PERFCOUNTER1_SELECT1__PERF_SEL3__SHIFT 0xa
+#define VGT_PERFCOUNTER1_SELECT1__PERF_MODE3__SHIFT 0x18
+#define VGT_PERFCOUNTER1_SELECT1__PERF_MODE2__SHIFT 0x1c
+#define VGT_PERFCOUNTER1_SELECT1__PERF_SEL2_MASK 0x000003FFL
+#define VGT_PERFCOUNTER1_SELECT1__PERF_SEL3_MASK 0x000FFC00L
+#define VGT_PERFCOUNTER1_SELECT1__PERF_MODE3_MASK 0x0F000000L
+#define VGT_PERFCOUNTER1_SELECT1__PERF_MODE2_MASK 0xF0000000L
+//VGT_PERFCOUNTER_SEID_MASK
+#define VGT_PERFCOUNTER_SEID_MASK__PERF_SEID_IGNORE_MASK__SHIFT 0x0
+#define VGT_PERFCOUNTER_SEID_MASK__PERF_SEID_IGNORE_MASK_MASK 0x000000FFL
+//PA_SU_PERFCOUNTER0_SELECT
+#define PA_SU_PERFCOUNTER0_SELECT__PERF_SEL__SHIFT 0x0
+#define PA_SU_PERFCOUNTER0_SELECT__PERF_SEL1__SHIFT 0xa
+#define PA_SU_PERFCOUNTER0_SELECT__CNTR_MODE__SHIFT 0x14
+#define PA_SU_PERFCOUNTER0_SELECT__PERF_MODE1__SHIFT 0x18
+#define PA_SU_PERFCOUNTER0_SELECT__PERF_MODE__SHIFT 0x1c
+#define PA_SU_PERFCOUNTER0_SELECT__PERF_SEL_MASK 0x000003FFL
+#define PA_SU_PERFCOUNTER0_SELECT__PERF_SEL1_MASK 0x000FFC00L
+#define PA_SU_PERFCOUNTER0_SELECT__CNTR_MODE_MASK 0x00F00000L
+#define PA_SU_PERFCOUNTER0_SELECT__PERF_MODE1_MASK 0x0F000000L
+#define PA_SU_PERFCOUNTER0_SELECT__PERF_MODE_MASK 0xF0000000L
+//PA_SU_PERFCOUNTER0_SELECT1
+#define PA_SU_PERFCOUNTER0_SELECT1__PERF_SEL2__SHIFT 0x0
+#define PA_SU_PERFCOUNTER0_SELECT1__PERF_SEL3__SHIFT 0xa
+#define PA_SU_PERFCOUNTER0_SELECT1__PERF_MODE3__SHIFT 0x18
+#define PA_SU_PERFCOUNTER0_SELECT1__PERF_MODE2__SHIFT 0x1c
+#define PA_SU_PERFCOUNTER0_SELECT1__PERF_SEL2_MASK 0x000003FFL
+#define PA_SU_PERFCOUNTER0_SELECT1__PERF_SEL3_MASK 0x000FFC00L
+#define PA_SU_PERFCOUNTER0_SELECT1__PERF_MODE3_MASK 0x0F000000L
+#define PA_SU_PERFCOUNTER0_SELECT1__PERF_MODE2_MASK 0xF0000000L
+//PA_SU_PERFCOUNTER1_SELECT
+#define PA_SU_PERFCOUNTER1_SELECT__PERF_SEL__SHIFT 0x0
+#define PA_SU_PERFCOUNTER1_SELECT__PERF_SEL1__SHIFT 0xa
+#define PA_SU_PERFCOUNTER1_SELECT__CNTR_MODE__SHIFT 0x14
+#define PA_SU_PERFCOUNTER1_SELECT__PERF_MODE1__SHIFT 0x18
+#define PA_SU_PERFCOUNTER1_SELECT__PERF_MODE__SHIFT 0x1c
+#define PA_SU_PERFCOUNTER1_SELECT__PERF_SEL_MASK 0x000003FFL
+#define PA_SU_PERFCOUNTER1_SELECT__PERF_SEL1_MASK 0x000FFC00L
+#define PA_SU_PERFCOUNTER1_SELECT__CNTR_MODE_MASK 0x00F00000L
+#define PA_SU_PERFCOUNTER1_SELECT__PERF_MODE1_MASK 0x0F000000L
+#define PA_SU_PERFCOUNTER1_SELECT__PERF_MODE_MASK 0xF0000000L
+//PA_SU_PERFCOUNTER1_SELECT1
+#define PA_SU_PERFCOUNTER1_SELECT1__PERF_SEL2__SHIFT 0x0
+#define PA_SU_PERFCOUNTER1_SELECT1__PERF_SEL3__SHIFT 0xa
+#define PA_SU_PERFCOUNTER1_SELECT1__PERF_MODE3__SHIFT 0x18
+#define PA_SU_PERFCOUNTER1_SELECT1__PERF_MODE2__SHIFT 0x1c
+#define PA_SU_PERFCOUNTER1_SELECT1__PERF_SEL2_MASK 0x000003FFL
+#define PA_SU_PERFCOUNTER1_SELECT1__PERF_SEL3_MASK 0x000FFC00L
+#define PA_SU_PERFCOUNTER1_SELECT1__PERF_MODE3_MASK 0x0F000000L
+#define PA_SU_PERFCOUNTER1_SELECT1__PERF_MODE2_MASK 0xF0000000L
+//PA_SU_PERFCOUNTER2_SELECT
+#define PA_SU_PERFCOUNTER2_SELECT__PERF_SEL__SHIFT 0x0
+#define PA_SU_PERFCOUNTER2_SELECT__CNTR_MODE__SHIFT 0x14
+#define PA_SU_PERFCOUNTER2_SELECT__PERF_MODE__SHIFT 0x1c
+#define PA_SU_PERFCOUNTER2_SELECT__PERF_SEL_MASK 0x000003FFL
+#define PA_SU_PERFCOUNTER2_SELECT__CNTR_MODE_MASK 0x00F00000L
+#define PA_SU_PERFCOUNTER2_SELECT__PERF_MODE_MASK 0xF0000000L
+//PA_SU_PERFCOUNTER3_SELECT
+#define PA_SU_PERFCOUNTER3_SELECT__PERF_SEL__SHIFT 0x0
+#define PA_SU_PERFCOUNTER3_SELECT__CNTR_MODE__SHIFT 0x14
+#define PA_SU_PERFCOUNTER3_SELECT__PERF_MODE__SHIFT 0x1c
+#define PA_SU_PERFCOUNTER3_SELECT__PERF_SEL_MASK 0x000003FFL
+#define PA_SU_PERFCOUNTER3_SELECT__CNTR_MODE_MASK 0x00F00000L
+#define PA_SU_PERFCOUNTER3_SELECT__PERF_MODE_MASK 0xF0000000L
+//PA_SC_PERFCOUNTER0_SELECT
+#define PA_SC_PERFCOUNTER0_SELECT__PERF_SEL__SHIFT 0x0
+#define PA_SC_PERFCOUNTER0_SELECT__PERF_SEL1__SHIFT 0xa
+#define PA_SC_PERFCOUNTER0_SELECT__CNTR_MODE__SHIFT 0x14
+#define PA_SC_PERFCOUNTER0_SELECT__PERF_MODE1__SHIFT 0x18
+#define PA_SC_PERFCOUNTER0_SELECT__PERF_MODE__SHIFT 0x1c
+#define PA_SC_PERFCOUNTER0_SELECT__PERF_SEL_MASK 0x000003FFL
+#define PA_SC_PERFCOUNTER0_SELECT__PERF_SEL1_MASK 0x000FFC00L
+#define PA_SC_PERFCOUNTER0_SELECT__CNTR_MODE_MASK 0x00F00000L
+#define PA_SC_PERFCOUNTER0_SELECT__PERF_MODE1_MASK 0x0F000000L
+#define PA_SC_PERFCOUNTER0_SELECT__PERF_MODE_MASK 0xF0000000L
+//PA_SC_PERFCOUNTER0_SELECT1
+#define PA_SC_PERFCOUNTER0_SELECT1__PERF_SEL2__SHIFT 0x0
+#define PA_SC_PERFCOUNTER0_SELECT1__PERF_SEL3__SHIFT 0xa
+#define PA_SC_PERFCOUNTER0_SELECT1__PERF_MODE3__SHIFT 0x18
+#define PA_SC_PERFCOUNTER0_SELECT1__PERF_MODE2__SHIFT 0x1c
+#define PA_SC_PERFCOUNTER0_SELECT1__PERF_SEL2_MASK 0x000003FFL
+#define PA_SC_PERFCOUNTER0_SELECT1__PERF_SEL3_MASK 0x000FFC00L
+#define PA_SC_PERFCOUNTER0_SELECT1__PERF_MODE3_MASK 0x0F000000L
+#define PA_SC_PERFCOUNTER0_SELECT1__PERF_MODE2_MASK 0xF0000000L
+//PA_SC_PERFCOUNTER1_SELECT
+#define PA_SC_PERFCOUNTER1_SELECT__PERF_SEL__SHIFT 0x0
+#define PA_SC_PERFCOUNTER1_SELECT__PERF_SEL_MASK 0x000003FFL
+//PA_SC_PERFCOUNTER2_SELECT
+#define PA_SC_PERFCOUNTER2_SELECT__PERF_SEL__SHIFT 0x0
+#define PA_SC_PERFCOUNTER2_SELECT__PERF_SEL_MASK 0x000003FFL
+//PA_SC_PERFCOUNTER3_SELECT
+#define PA_SC_PERFCOUNTER3_SELECT__PERF_SEL__SHIFT 0x0
+#define PA_SC_PERFCOUNTER3_SELECT__PERF_SEL_MASK 0x000003FFL
+//PA_SC_PERFCOUNTER4_SELECT
+#define PA_SC_PERFCOUNTER4_SELECT__PERF_SEL__SHIFT 0x0
+#define PA_SC_PERFCOUNTER4_SELECT__PERF_SEL_MASK 0x000003FFL
+//PA_SC_PERFCOUNTER5_SELECT
+#define PA_SC_PERFCOUNTER5_SELECT__PERF_SEL__SHIFT 0x0
+#define PA_SC_PERFCOUNTER5_SELECT__PERF_SEL_MASK 0x000003FFL
+//PA_SC_PERFCOUNTER6_SELECT
+#define PA_SC_PERFCOUNTER6_SELECT__PERF_SEL__SHIFT 0x0
+#define PA_SC_PERFCOUNTER6_SELECT__PERF_SEL_MASK 0x000003FFL
+//PA_SC_PERFCOUNTER7_SELECT
+#define PA_SC_PERFCOUNTER7_SELECT__PERF_SEL__SHIFT 0x0
+#define PA_SC_PERFCOUNTER7_SELECT__PERF_SEL_MASK 0x000003FFL
+//SPI_PERFCOUNTER0_SELECT
+#define SPI_PERFCOUNTER0_SELECT__PERF_SEL__SHIFT 0x0
+#define SPI_PERFCOUNTER0_SELECT__PERF_SEL1__SHIFT 0xa
+#define SPI_PERFCOUNTER0_SELECT__CNTR_MODE__SHIFT 0x14
+#define SPI_PERFCOUNTER0_SELECT__PERF_MODE1__SHIFT 0x18
+#define SPI_PERFCOUNTER0_SELECT__PERF_MODE__SHIFT 0x1c
+#define SPI_PERFCOUNTER0_SELECT__PERF_SEL_MASK 0x000003FFL
+#define SPI_PERFCOUNTER0_SELECT__PERF_SEL1_MASK 0x000FFC00L
+#define SPI_PERFCOUNTER0_SELECT__CNTR_MODE_MASK 0x00F00000L
+#define SPI_PERFCOUNTER0_SELECT__PERF_MODE1_MASK 0x0F000000L
+#define SPI_PERFCOUNTER0_SELECT__PERF_MODE_MASK 0xF0000000L
+//SPI_PERFCOUNTER1_SELECT
+#define SPI_PERFCOUNTER1_SELECT__PERF_SEL__SHIFT 0x0
+#define SPI_PERFCOUNTER1_SELECT__PERF_SEL1__SHIFT 0xa
+#define SPI_PERFCOUNTER1_SELECT__CNTR_MODE__SHIFT 0x14
+#define SPI_PERFCOUNTER1_SELECT__PERF_MODE1__SHIFT 0x18
+#define SPI_PERFCOUNTER1_SELECT__PERF_MODE__SHIFT 0x1c
+#define SPI_PERFCOUNTER1_SELECT__PERF_SEL_MASK 0x000003FFL
+#define SPI_PERFCOUNTER1_SELECT__PERF_SEL1_MASK 0x000FFC00L
+#define SPI_PERFCOUNTER1_SELECT__CNTR_MODE_MASK 0x00F00000L
+#define SPI_PERFCOUNTER1_SELECT__PERF_MODE1_MASK 0x0F000000L
+#define SPI_PERFCOUNTER1_SELECT__PERF_MODE_MASK 0xF0000000L
+//SPI_PERFCOUNTER2_SELECT
+#define SPI_PERFCOUNTER2_SELECT__PERF_SEL__SHIFT 0x0
+#define SPI_PERFCOUNTER2_SELECT__PERF_SEL1__SHIFT 0xa
+#define SPI_PERFCOUNTER2_SELECT__CNTR_MODE__SHIFT 0x14
+#define SPI_PERFCOUNTER2_SELECT__PERF_MODE1__SHIFT 0x18
+#define SPI_PERFCOUNTER2_SELECT__PERF_MODE__SHIFT 0x1c
+#define SPI_PERFCOUNTER2_SELECT__PERF_SEL_MASK 0x000003FFL
+#define SPI_PERFCOUNTER2_SELECT__PERF_SEL1_MASK 0x000FFC00L
+#define SPI_PERFCOUNTER2_SELECT__CNTR_MODE_MASK 0x00F00000L
+#define SPI_PERFCOUNTER2_SELECT__PERF_MODE1_MASK 0x0F000000L
+#define SPI_PERFCOUNTER2_SELECT__PERF_MODE_MASK 0xF0000000L
+//SPI_PERFCOUNTER3_SELECT
+#define SPI_PERFCOUNTER3_SELECT__PERF_SEL__SHIFT 0x0
+#define SPI_PERFCOUNTER3_SELECT__PERF_SEL1__SHIFT 0xa
+#define SPI_PERFCOUNTER3_SELECT__CNTR_MODE__SHIFT 0x14
+#define SPI_PERFCOUNTER3_SELECT__PERF_MODE1__SHIFT 0x18
+#define SPI_PERFCOUNTER3_SELECT__PERF_MODE__SHIFT 0x1c
+#define SPI_PERFCOUNTER3_SELECT__PERF_SEL_MASK 0x000003FFL
+#define SPI_PERFCOUNTER3_SELECT__PERF_SEL1_MASK 0x000FFC00L
+#define SPI_PERFCOUNTER3_SELECT__CNTR_MODE_MASK 0x00F00000L
+#define SPI_PERFCOUNTER3_SELECT__PERF_MODE1_MASK 0x0F000000L
+#define SPI_PERFCOUNTER3_SELECT__PERF_MODE_MASK 0xF0000000L
+//SPI_PERFCOUNTER0_SELECT1
+#define SPI_PERFCOUNTER0_SELECT1__PERF_SEL2__SHIFT 0x0
+#define SPI_PERFCOUNTER0_SELECT1__PERF_SEL3__SHIFT 0xa
+#define SPI_PERFCOUNTER0_SELECT1__PERF_MODE3__SHIFT 0x18
+#define SPI_PERFCOUNTER0_SELECT1__PERF_MODE2__SHIFT 0x1c
+#define SPI_PERFCOUNTER0_SELECT1__PERF_SEL2_MASK 0x000003FFL
+#define SPI_PERFCOUNTER0_SELECT1__PERF_SEL3_MASK 0x000FFC00L
+#define SPI_PERFCOUNTER0_SELECT1__PERF_MODE3_MASK 0x0F000000L
+#define SPI_PERFCOUNTER0_SELECT1__PERF_MODE2_MASK 0xF0000000L
+//SPI_PERFCOUNTER1_SELECT1
+#define SPI_PERFCOUNTER1_SELECT1__PERF_SEL2__SHIFT 0x0
+#define SPI_PERFCOUNTER1_SELECT1__PERF_SEL3__SHIFT 0xa
+#define SPI_PERFCOUNTER1_SELECT1__PERF_MODE3__SHIFT 0x18
+#define SPI_PERFCOUNTER1_SELECT1__PERF_MODE2__SHIFT 0x1c
+#define SPI_PERFCOUNTER1_SELECT1__PERF_SEL2_MASK 0x000003FFL
+#define SPI_PERFCOUNTER1_SELECT1__PERF_SEL3_MASK 0x000FFC00L
+#define SPI_PERFCOUNTER1_SELECT1__PERF_MODE3_MASK 0x0F000000L
+#define SPI_PERFCOUNTER1_SELECT1__PERF_MODE2_MASK 0xF0000000L
+//SPI_PERFCOUNTER2_SELECT1
+#define SPI_PERFCOUNTER2_SELECT1__PERF_SEL2__SHIFT 0x0
+#define SPI_PERFCOUNTER2_SELECT1__PERF_SEL3__SHIFT 0xa
+#define SPI_PERFCOUNTER2_SELECT1__PERF_MODE3__SHIFT 0x18
+#define SPI_PERFCOUNTER2_SELECT1__PERF_MODE2__SHIFT 0x1c
+#define SPI_PERFCOUNTER2_SELECT1__PERF_SEL2_MASK 0x000003FFL
+#define SPI_PERFCOUNTER2_SELECT1__PERF_SEL3_MASK 0x000FFC00L
+#define SPI_PERFCOUNTER2_SELECT1__PERF_MODE3_MASK 0x0F000000L
+#define SPI_PERFCOUNTER2_SELECT1__PERF_MODE2_MASK 0xF0000000L
+//SPI_PERFCOUNTER3_SELECT1
+#define SPI_PERFCOUNTER3_SELECT1__PERF_SEL2__SHIFT 0x0
+#define SPI_PERFCOUNTER3_SELECT1__PERF_SEL3__SHIFT 0xa
+#define SPI_PERFCOUNTER3_SELECT1__PERF_MODE3__SHIFT 0x18
+#define SPI_PERFCOUNTER3_SELECT1__PERF_MODE2__SHIFT 0x1c
+#define SPI_PERFCOUNTER3_SELECT1__PERF_SEL2_MASK 0x000003FFL
+#define SPI_PERFCOUNTER3_SELECT1__PERF_SEL3_MASK 0x000FFC00L
+#define SPI_PERFCOUNTER3_SELECT1__PERF_MODE3_MASK 0x0F000000L
+#define SPI_PERFCOUNTER3_SELECT1__PERF_MODE2_MASK 0xF0000000L
+//SPI_PERFCOUNTER4_SELECT
+#define SPI_PERFCOUNTER4_SELECT__PERF_SEL__SHIFT 0x0
+#define SPI_PERFCOUNTER4_SELECT__PERF_SEL_MASK 0x000000FFL
+//SPI_PERFCOUNTER5_SELECT
+#define SPI_PERFCOUNTER5_SELECT__PERF_SEL__SHIFT 0x0
+#define SPI_PERFCOUNTER5_SELECT__PERF_SEL_MASK 0x000000FFL
+//SPI_PERFCOUNTER_BINS
+#define SPI_PERFCOUNTER_BINS__BIN0_MIN__SHIFT 0x0
+#define SPI_PERFCOUNTER_BINS__BIN0_MAX__SHIFT 0x4
+#define SPI_PERFCOUNTER_BINS__BIN1_MIN__SHIFT 0x8
+#define SPI_PERFCOUNTER_BINS__BIN1_MAX__SHIFT 0xc
+#define SPI_PERFCOUNTER_BINS__BIN2_MIN__SHIFT 0x10
+#define SPI_PERFCOUNTER_BINS__BIN2_MAX__SHIFT 0x14
+#define SPI_PERFCOUNTER_BINS__BIN3_MIN__SHIFT 0x18
+#define SPI_PERFCOUNTER_BINS__BIN3_MAX__SHIFT 0x1c
+#define SPI_PERFCOUNTER_BINS__BIN0_MIN_MASK 0x0000000FL
+#define SPI_PERFCOUNTER_BINS__BIN0_MAX_MASK 0x000000F0L
+#define SPI_PERFCOUNTER_BINS__BIN1_MIN_MASK 0x00000F00L
+#define SPI_PERFCOUNTER_BINS__BIN1_MAX_MASK 0x0000F000L
+#define SPI_PERFCOUNTER_BINS__BIN2_MIN_MASK 0x000F0000L
+#define SPI_PERFCOUNTER_BINS__BIN2_MAX_MASK 0x00F00000L
+#define SPI_PERFCOUNTER_BINS__BIN3_MIN_MASK 0x0F000000L
+#define SPI_PERFCOUNTER_BINS__BIN3_MAX_MASK 0xF0000000L
+//SQ_PERFCOUNTER0_SELECT
+#define SQ_PERFCOUNTER0_SELECT__PERF_SEL__SHIFT 0x0
+#define SQ_PERFCOUNTER0_SELECT__SQC_BANK_MASK__SHIFT 0xc
+#define SQ_PERFCOUNTER0_SELECT__SQC_CLIENT_MASK__SHIFT 0x10
+#define SQ_PERFCOUNTER0_SELECT__SPM_MODE__SHIFT 0x14
+#define SQ_PERFCOUNTER0_SELECT__SIMD_MASK__SHIFT 0x18
+#define SQ_PERFCOUNTER0_SELECT__PERF_MODE__SHIFT 0x1c
+#define SQ_PERFCOUNTER0_SELECT__PERF_SEL_MASK 0x000001FFL
+#define SQ_PERFCOUNTER0_SELECT__SQC_BANK_MASK_MASK 0x0000F000L
+#define SQ_PERFCOUNTER0_SELECT__SQC_CLIENT_MASK_MASK 0x000F0000L
+#define SQ_PERFCOUNTER0_SELECT__SPM_MODE_MASK 0x00F00000L
+#define SQ_PERFCOUNTER0_SELECT__SIMD_MASK_MASK 0x0F000000L
+#define SQ_PERFCOUNTER0_SELECT__PERF_MODE_MASK 0xF0000000L
+//SQ_PERFCOUNTER1_SELECT
+#define SQ_PERFCOUNTER1_SELECT__PERF_SEL__SHIFT 0x0
+#define SQ_PERFCOUNTER1_SELECT__SQC_BANK_MASK__SHIFT 0xc
+#define SQ_PERFCOUNTER1_SELECT__SQC_CLIENT_MASK__SHIFT 0x10
+#define SQ_PERFCOUNTER1_SELECT__SPM_MODE__SHIFT 0x14
+#define SQ_PERFCOUNTER1_SELECT__SIMD_MASK__SHIFT 0x18
+#define SQ_PERFCOUNTER1_SELECT__PERF_MODE__SHIFT 0x1c
+#define SQ_PERFCOUNTER1_SELECT__PERF_SEL_MASK 0x000001FFL
+#define SQ_PERFCOUNTER1_SELECT__SQC_BANK_MASK_MASK 0x0000F000L
+#define SQ_PERFCOUNTER1_SELECT__SQC_CLIENT_MASK_MASK 0x000F0000L
+#define SQ_PERFCOUNTER1_SELECT__SPM_MODE_MASK 0x00F00000L
+#define SQ_PERFCOUNTER1_SELECT__SIMD_MASK_MASK 0x0F000000L
+#define SQ_PERFCOUNTER1_SELECT__PERF_MODE_MASK 0xF0000000L
+//SQ_PERFCOUNTER2_SELECT
+#define SQ_PERFCOUNTER2_SELECT__PERF_SEL__SHIFT 0x0
+#define SQ_PERFCOUNTER2_SELECT__SQC_BANK_MASK__SHIFT 0xc
+#define SQ_PERFCOUNTER2_SELECT__SQC_CLIENT_MASK__SHIFT 0x10
+#define SQ_PERFCOUNTER2_SELECT__SPM_MODE__SHIFT 0x14
+#define SQ_PERFCOUNTER2_SELECT__SIMD_MASK__SHIFT 0x18
+#define SQ_PERFCOUNTER2_SELECT__PERF_MODE__SHIFT 0x1c
+#define SQ_PERFCOUNTER2_SELECT__PERF_SEL_MASK 0x000001FFL
+#define SQ_PERFCOUNTER2_SELECT__SQC_BANK_MASK_MASK 0x0000F000L
+#define SQ_PERFCOUNTER2_SELECT__SQC_CLIENT_MASK_MASK 0x000F0000L
+#define SQ_PERFCOUNTER2_SELECT__SPM_MODE_MASK 0x00F00000L
+#define SQ_PERFCOUNTER2_SELECT__SIMD_MASK_MASK 0x0F000000L
+#define SQ_PERFCOUNTER2_SELECT__PERF_MODE_MASK 0xF0000000L
+//SQ_PERFCOUNTER3_SELECT
+#define SQ_PERFCOUNTER3_SELECT__PERF_SEL__SHIFT 0x0
+#define SQ_PERFCOUNTER3_SELECT__SQC_BANK_MASK__SHIFT 0xc
+#define SQ_PERFCOUNTER3_SELECT__SQC_CLIENT_MASK__SHIFT 0x10
+#define SQ_PERFCOUNTER3_SELECT__SPM_MODE__SHIFT 0x14
+#define SQ_PERFCOUNTER3_SELECT__SIMD_MASK__SHIFT 0x18
+#define SQ_PERFCOUNTER3_SELECT__PERF_MODE__SHIFT 0x1c
+#define SQ_PERFCOUNTER3_SELECT__PERF_SEL_MASK 0x000001FFL
+#define SQ_PERFCOUNTER3_SELECT__SQC_BANK_MASK_MASK 0x0000F000L
+#define SQ_PERFCOUNTER3_SELECT__SQC_CLIENT_MASK_MASK 0x000F0000L
+#define SQ_PERFCOUNTER3_SELECT__SPM_MODE_MASK 0x00F00000L
+#define SQ_PERFCOUNTER3_SELECT__SIMD_MASK_MASK 0x0F000000L
+#define SQ_PERFCOUNTER3_SELECT__PERF_MODE_MASK 0xF0000000L
+//SQ_PERFCOUNTER4_SELECT
+#define SQ_PERFCOUNTER4_SELECT__PERF_SEL__SHIFT 0x0
+#define SQ_PERFCOUNTER4_SELECT__SQC_BANK_MASK__SHIFT 0xc
+#define SQ_PERFCOUNTER4_SELECT__SQC_CLIENT_MASK__SHIFT 0x10
+#define SQ_PERFCOUNTER4_SELECT__SPM_MODE__SHIFT 0x14
+#define SQ_PERFCOUNTER4_SELECT__SIMD_MASK__SHIFT 0x18
+#define SQ_PERFCOUNTER4_SELECT__PERF_MODE__SHIFT 0x1c
+#define SQ_PERFCOUNTER4_SELECT__PERF_SEL_MASK 0x000001FFL
+#define SQ_PERFCOUNTER4_SELECT__SQC_BANK_MASK_MASK 0x0000F000L
+#define SQ_PERFCOUNTER4_SELECT__SQC_CLIENT_MASK_MASK 0x000F0000L
+#define SQ_PERFCOUNTER4_SELECT__SPM_MODE_MASK 0x00F00000L
+#define SQ_PERFCOUNTER4_SELECT__SIMD_MASK_MASK 0x0F000000L
+#define SQ_PERFCOUNTER4_SELECT__PERF_MODE_MASK 0xF0000000L
+//SQ_PERFCOUNTER5_SELECT
+#define SQ_PERFCOUNTER5_SELECT__PERF_SEL__SHIFT 0x0
+#define SQ_PERFCOUNTER5_SELECT__SQC_BANK_MASK__SHIFT 0xc
+#define SQ_PERFCOUNTER5_SELECT__SQC_CLIENT_MASK__SHIFT 0x10
+#define SQ_PERFCOUNTER5_SELECT__SPM_MODE__SHIFT 0x14
+#define SQ_PERFCOUNTER5_SELECT__SIMD_MASK__SHIFT 0x18
+#define SQ_PERFCOUNTER5_SELECT__PERF_MODE__SHIFT 0x1c
+#define SQ_PERFCOUNTER5_SELECT__PERF_SEL_MASK 0x000001FFL
+#define SQ_PERFCOUNTER5_SELECT__SQC_BANK_MASK_MASK 0x0000F000L
+#define SQ_PERFCOUNTER5_SELECT__SQC_CLIENT_MASK_MASK 0x000F0000L
+#define SQ_PERFCOUNTER5_SELECT__SPM_MODE_MASK 0x00F00000L
+#define SQ_PERFCOUNTER5_SELECT__SIMD_MASK_MASK 0x0F000000L
+#define SQ_PERFCOUNTER5_SELECT__PERF_MODE_MASK 0xF0000000L
+//SQ_PERFCOUNTER6_SELECT
+#define SQ_PERFCOUNTER6_SELECT__PERF_SEL__SHIFT 0x0
+#define SQ_PERFCOUNTER6_SELECT__SQC_BANK_MASK__SHIFT 0xc
+#define SQ_PERFCOUNTER6_SELECT__SQC_CLIENT_MASK__SHIFT 0x10
+#define SQ_PERFCOUNTER6_SELECT__SPM_MODE__SHIFT 0x14
+#define SQ_PERFCOUNTER6_SELECT__SIMD_MASK__SHIFT 0x18
+#define SQ_PERFCOUNTER6_SELECT__PERF_MODE__SHIFT 0x1c
+#define SQ_PERFCOUNTER6_SELECT__PERF_SEL_MASK 0x000001FFL
+#define SQ_PERFCOUNTER6_SELECT__SQC_BANK_MASK_MASK 0x0000F000L
+#define SQ_PERFCOUNTER6_SELECT__SQC_CLIENT_MASK_MASK 0x000F0000L
+#define SQ_PERFCOUNTER6_SELECT__SPM_MODE_MASK 0x00F00000L
+#define SQ_PERFCOUNTER6_SELECT__SIMD_MASK_MASK 0x0F000000L
+#define SQ_PERFCOUNTER6_SELECT__PERF_MODE_MASK 0xF0000000L
+//SQ_PERFCOUNTER7_SELECT
+#define SQ_PERFCOUNTER7_SELECT__PERF_SEL__SHIFT 0x0
+#define SQ_PERFCOUNTER7_SELECT__SQC_BANK_MASK__SHIFT 0xc
+#define SQ_PERFCOUNTER7_SELECT__SQC_CLIENT_MASK__SHIFT 0x10
+#define SQ_PERFCOUNTER7_SELECT__SPM_MODE__SHIFT 0x14
+#define SQ_PERFCOUNTER7_SELECT__SIMD_MASK__SHIFT 0x18
+#define SQ_PERFCOUNTER7_SELECT__PERF_MODE__SHIFT 0x1c
+#define SQ_PERFCOUNTER7_SELECT__PERF_SEL_MASK 0x000001FFL
+#define SQ_PERFCOUNTER7_SELECT__SQC_BANK_MASK_MASK 0x0000F000L
+#define SQ_PERFCOUNTER7_SELECT__SQC_CLIENT_MASK_MASK 0x000F0000L
+#define SQ_PERFCOUNTER7_SELECT__SPM_MODE_MASK 0x00F00000L
+#define SQ_PERFCOUNTER7_SELECT__SIMD_MASK_MASK 0x0F000000L
+#define SQ_PERFCOUNTER7_SELECT__PERF_MODE_MASK 0xF0000000L
+//SQ_PERFCOUNTER8_SELECT
+#define SQ_PERFCOUNTER8_SELECT__PERF_SEL__SHIFT 0x0
+#define SQ_PERFCOUNTER8_SELECT__SQC_BANK_MASK__SHIFT 0xc
+#define SQ_PERFCOUNTER8_SELECT__SQC_CLIENT_MASK__SHIFT 0x10
+#define SQ_PERFCOUNTER8_SELECT__SPM_MODE__SHIFT 0x14
+#define SQ_PERFCOUNTER8_SELECT__SIMD_MASK__SHIFT 0x18
+#define SQ_PERFCOUNTER8_SELECT__PERF_MODE__SHIFT 0x1c
+#define SQ_PERFCOUNTER8_SELECT__PERF_SEL_MASK 0x000001FFL
+#define SQ_PERFCOUNTER8_SELECT__SQC_BANK_MASK_MASK 0x0000F000L
+#define SQ_PERFCOUNTER8_SELECT__SQC_CLIENT_MASK_MASK 0x000F0000L
+#define SQ_PERFCOUNTER8_SELECT__SPM_MODE_MASK 0x00F00000L
+#define SQ_PERFCOUNTER8_SELECT__SIMD_MASK_MASK 0x0F000000L
+#define SQ_PERFCOUNTER8_SELECT__PERF_MODE_MASK 0xF0000000L
+//SQ_PERFCOUNTER9_SELECT
+#define SQ_PERFCOUNTER9_SELECT__PERF_SEL__SHIFT 0x0
+#define SQ_PERFCOUNTER9_SELECT__SQC_BANK_MASK__SHIFT 0xc
+#define SQ_PERFCOUNTER9_SELECT__SQC_CLIENT_MASK__SHIFT 0x10
+#define SQ_PERFCOUNTER9_SELECT__SPM_MODE__SHIFT 0x14
+#define SQ_PERFCOUNTER9_SELECT__SIMD_MASK__SHIFT 0x18
+#define SQ_PERFCOUNTER9_SELECT__PERF_MODE__SHIFT 0x1c
+#define SQ_PERFCOUNTER9_SELECT__PERF_SEL_MASK 0x000001FFL
+#define SQ_PERFCOUNTER9_SELECT__SQC_BANK_MASK_MASK 0x0000F000L
+#define SQ_PERFCOUNTER9_SELECT__SQC_CLIENT_MASK_MASK 0x000F0000L
+#define SQ_PERFCOUNTER9_SELECT__SPM_MODE_MASK 0x00F00000L
+#define SQ_PERFCOUNTER9_SELECT__SIMD_MASK_MASK 0x0F000000L
+#define SQ_PERFCOUNTER9_SELECT__PERF_MODE_MASK 0xF0000000L
+//SQ_PERFCOUNTER10_SELECT
+#define SQ_PERFCOUNTER10_SELECT__PERF_SEL__SHIFT 0x0
+#define SQ_PERFCOUNTER10_SELECT__SQC_BANK_MASK__SHIFT 0xc
+#define SQ_PERFCOUNTER10_SELECT__SQC_CLIENT_MASK__SHIFT 0x10
+#define SQ_PERFCOUNTER10_SELECT__SPM_MODE__SHIFT 0x14
+#define SQ_PERFCOUNTER10_SELECT__SIMD_MASK__SHIFT 0x18
+#define SQ_PERFCOUNTER10_SELECT__PERF_MODE__SHIFT 0x1c
+#define SQ_PERFCOUNTER10_SELECT__PERF_SEL_MASK 0x000001FFL
+#define SQ_PERFCOUNTER10_SELECT__SQC_BANK_MASK_MASK 0x0000F000L
+#define SQ_PERFCOUNTER10_SELECT__SQC_CLIENT_MASK_MASK 0x000F0000L
+#define SQ_PERFCOUNTER10_SELECT__SPM_MODE_MASK 0x00F00000L
+#define SQ_PERFCOUNTER10_SELECT__SIMD_MASK_MASK 0x0F000000L
+#define SQ_PERFCOUNTER10_SELECT__PERF_MODE_MASK 0xF0000000L
+//SQ_PERFCOUNTER11_SELECT
+#define SQ_PERFCOUNTER11_SELECT__PERF_SEL__SHIFT 0x0
+#define SQ_PERFCOUNTER11_SELECT__SQC_BANK_MASK__SHIFT 0xc
+#define SQ_PERFCOUNTER11_SELECT__SQC_CLIENT_MASK__SHIFT 0x10
+#define SQ_PERFCOUNTER11_SELECT__SPM_MODE__SHIFT 0x14
+#define SQ_PERFCOUNTER11_SELECT__SIMD_MASK__SHIFT 0x18
+#define SQ_PERFCOUNTER11_SELECT__PERF_MODE__SHIFT 0x1c
+#define SQ_PERFCOUNTER11_SELECT__PERF_SEL_MASK 0x000001FFL
+#define SQ_PERFCOUNTER11_SELECT__SQC_BANK_MASK_MASK 0x0000F000L
+#define SQ_PERFCOUNTER11_SELECT__SQC_CLIENT_MASK_MASK 0x000F0000L
+#define SQ_PERFCOUNTER11_SELECT__SPM_MODE_MASK 0x00F00000L
+#define SQ_PERFCOUNTER11_SELECT__SIMD_MASK_MASK 0x0F000000L
+#define SQ_PERFCOUNTER11_SELECT__PERF_MODE_MASK 0xF0000000L
+//SQ_PERFCOUNTER12_SELECT
+#define SQ_PERFCOUNTER12_SELECT__PERF_SEL__SHIFT 0x0
+#define SQ_PERFCOUNTER12_SELECT__SQC_BANK_MASK__SHIFT 0xc
+#define SQ_PERFCOUNTER12_SELECT__SQC_CLIENT_MASK__SHIFT 0x10
+#define SQ_PERFCOUNTER12_SELECT__SPM_MODE__SHIFT 0x14
+#define SQ_PERFCOUNTER12_SELECT__SIMD_MASK__SHIFT 0x18
+#define SQ_PERFCOUNTER12_SELECT__PERF_MODE__SHIFT 0x1c
+#define SQ_PERFCOUNTER12_SELECT__PERF_SEL_MASK 0x000001FFL
+#define SQ_PERFCOUNTER12_SELECT__SQC_BANK_MASK_MASK 0x0000F000L
+#define SQ_PERFCOUNTER12_SELECT__SQC_CLIENT_MASK_MASK 0x000F0000L
+#define SQ_PERFCOUNTER12_SELECT__SPM_MODE_MASK 0x00F00000L
+#define SQ_PERFCOUNTER12_SELECT__SIMD_MASK_MASK 0x0F000000L
+#define SQ_PERFCOUNTER12_SELECT__PERF_MODE_MASK 0xF0000000L
+//SQ_PERFCOUNTER13_SELECT
+#define SQ_PERFCOUNTER13_SELECT__PERF_SEL__SHIFT 0x0
+#define SQ_PERFCOUNTER13_SELECT__SQC_BANK_MASK__SHIFT 0xc
+#define SQ_PERFCOUNTER13_SELECT__SQC_CLIENT_MASK__SHIFT 0x10
+#define SQ_PERFCOUNTER13_SELECT__SPM_MODE__SHIFT 0x14
+#define SQ_PERFCOUNTER13_SELECT__SIMD_MASK__SHIFT 0x18
+#define SQ_PERFCOUNTER13_SELECT__PERF_MODE__SHIFT 0x1c
+#define SQ_PERFCOUNTER13_SELECT__PERF_SEL_MASK 0x000001FFL
+#define SQ_PERFCOUNTER13_SELECT__SQC_BANK_MASK_MASK 0x0000F000L
+#define SQ_PERFCOUNTER13_SELECT__SQC_CLIENT_MASK_MASK 0x000F0000L
+#define SQ_PERFCOUNTER13_SELECT__SPM_MODE_MASK 0x00F00000L
+#define SQ_PERFCOUNTER13_SELECT__SIMD_MASK_MASK 0x0F000000L
+#define SQ_PERFCOUNTER13_SELECT__PERF_MODE_MASK 0xF0000000L
+//SQ_PERFCOUNTER14_SELECT
+#define SQ_PERFCOUNTER14_SELECT__PERF_SEL__SHIFT 0x0
+#define SQ_PERFCOUNTER14_SELECT__SQC_BANK_MASK__SHIFT 0xc
+#define SQ_PERFCOUNTER14_SELECT__SQC_CLIENT_MASK__SHIFT 0x10
+#define SQ_PERFCOUNTER14_SELECT__SPM_MODE__SHIFT 0x14
+#define SQ_PERFCOUNTER14_SELECT__SIMD_MASK__SHIFT 0x18
+#define SQ_PERFCOUNTER14_SELECT__PERF_MODE__SHIFT 0x1c
+#define SQ_PERFCOUNTER14_SELECT__PERF_SEL_MASK 0x000001FFL
+#define SQ_PERFCOUNTER14_SELECT__SQC_BANK_MASK_MASK 0x0000F000L
+#define SQ_PERFCOUNTER14_SELECT__SQC_CLIENT_MASK_MASK 0x000F0000L
+#define SQ_PERFCOUNTER14_SELECT__SPM_MODE_MASK 0x00F00000L
+#define SQ_PERFCOUNTER14_SELECT__SIMD_MASK_MASK 0x0F000000L
+#define SQ_PERFCOUNTER14_SELECT__PERF_MODE_MASK 0xF0000000L
+//SQ_PERFCOUNTER15_SELECT
+#define SQ_PERFCOUNTER15_SELECT__PERF_SEL__SHIFT 0x0
+#define SQ_PERFCOUNTER15_SELECT__SQC_BANK_MASK__SHIFT 0xc
+#define SQ_PERFCOUNTER15_SELECT__SQC_CLIENT_MASK__SHIFT 0x10
+#define SQ_PERFCOUNTER15_SELECT__SPM_MODE__SHIFT 0x14
+#define SQ_PERFCOUNTER15_SELECT__SIMD_MASK__SHIFT 0x18
+#define SQ_PERFCOUNTER15_SELECT__PERF_MODE__SHIFT 0x1c
+#define SQ_PERFCOUNTER15_SELECT__PERF_SEL_MASK 0x000001FFL
+#define SQ_PERFCOUNTER15_SELECT__SQC_BANK_MASK_MASK 0x0000F000L
+#define SQ_PERFCOUNTER15_SELECT__SQC_CLIENT_MASK_MASK 0x000F0000L
+#define SQ_PERFCOUNTER15_SELECT__SPM_MODE_MASK 0x00F00000L
+#define SQ_PERFCOUNTER15_SELECT__SIMD_MASK_MASK 0x0F000000L
+#define SQ_PERFCOUNTER15_SELECT__PERF_MODE_MASK 0xF0000000L
+//SQ_PERFCOUNTER_CTRL
+#define SQ_PERFCOUNTER_CTRL__PS_EN__SHIFT 0x0
+#define SQ_PERFCOUNTER_CTRL__VS_EN__SHIFT 0x1
+#define SQ_PERFCOUNTER_CTRL__GS_EN__SHIFT 0x2
+#define SQ_PERFCOUNTER_CTRL__ES_EN__SHIFT 0x3
+#define SQ_PERFCOUNTER_CTRL__HS_EN__SHIFT 0x4
+#define SQ_PERFCOUNTER_CTRL__LS_EN__SHIFT 0x5
+#define SQ_PERFCOUNTER_CTRL__CS_EN__SHIFT 0x6
+#define SQ_PERFCOUNTER_CTRL__CNTR_RATE__SHIFT 0x8
+#define SQ_PERFCOUNTER_CTRL__DISABLE_FLUSH__SHIFT 0xd
+#define SQ_PERFCOUNTER_CTRL__VMID_MASK__SHIFT 0x10
+#define SQ_PERFCOUNTER_CTRL__PS_EN_MASK 0x00000001L
+#define SQ_PERFCOUNTER_CTRL__VS_EN_MASK 0x00000002L
+#define SQ_PERFCOUNTER_CTRL__GS_EN_MASK 0x00000004L
+#define SQ_PERFCOUNTER_CTRL__ES_EN_MASK 0x00000008L
+#define SQ_PERFCOUNTER_CTRL__HS_EN_MASK 0x00000010L
+#define SQ_PERFCOUNTER_CTRL__LS_EN_MASK 0x00000020L
+#define SQ_PERFCOUNTER_CTRL__CS_EN_MASK 0x00000040L
+#define SQ_PERFCOUNTER_CTRL__CNTR_RATE_MASK 0x00001F00L
+#define SQ_PERFCOUNTER_CTRL__DISABLE_FLUSH_MASK 0x00002000L
+#define SQ_PERFCOUNTER_CTRL__VMID_MASK_MASK 0xFFFF0000L
+//SQ_PERFCOUNTER_MASK
+#define SQ_PERFCOUNTER_MASK__SH0_MASK__SHIFT 0x0
+#define SQ_PERFCOUNTER_MASK__SH1_MASK__SHIFT 0x10
+#define SQ_PERFCOUNTER_MASK__SH0_MASK_MASK 0x0000FFFFL
+#define SQ_PERFCOUNTER_MASK__SH1_MASK_MASK 0xFFFF0000L
+//SQ_PERFCOUNTER_CTRL2
+#define SQ_PERFCOUNTER_CTRL2__FORCE_EN__SHIFT 0x0
+#define SQ_PERFCOUNTER_CTRL2__FORCE_EN_MASK 0x00000001L
+//SX_PERFCOUNTER0_SELECT
+#define SX_PERFCOUNTER0_SELECT__PERF_SEL__SHIFT 0x0
+#define SX_PERFCOUNTER0_SELECT__PERF_SEL1__SHIFT 0xa
+#define SX_PERFCOUNTER0_SELECT__CNTR_MODE__SHIFT 0x14
+#define SX_PERFCOUNTER0_SELECT__PERF_MODE1__SHIFT 0x18
+#define SX_PERFCOUNTER0_SELECT__PERF_MODE__SHIFT 0x1c
+#define SX_PERFCOUNTER0_SELECT__PERF_SEL_MASK 0x000003FFL
+#define SX_PERFCOUNTER0_SELECT__PERF_SEL1_MASK 0x000FFC00L
+#define SX_PERFCOUNTER0_SELECT__CNTR_MODE_MASK 0x00F00000L
+#define SX_PERFCOUNTER0_SELECT__PERF_MODE1_MASK 0x0F000000L
+#define SX_PERFCOUNTER0_SELECT__PERF_MODE_MASK 0xF0000000L
+//SX_PERFCOUNTER1_SELECT
+#define SX_PERFCOUNTER1_SELECT__PERF_SEL__SHIFT 0x0
+#define SX_PERFCOUNTER1_SELECT__PERF_SEL1__SHIFT 0xa
+#define SX_PERFCOUNTER1_SELECT__CNTR_MODE__SHIFT 0x14
+#define SX_PERFCOUNTER1_SELECT__PERF_MODE1__SHIFT 0x18
+#define SX_PERFCOUNTER1_SELECT__PERF_MODE__SHIFT 0x1c
+#define SX_PERFCOUNTER1_SELECT__PERF_SEL_MASK 0x000003FFL
+#define SX_PERFCOUNTER1_SELECT__PERF_SEL1_MASK 0x000FFC00L
+#define SX_PERFCOUNTER1_SELECT__CNTR_MODE_MASK 0x00F00000L
+#define SX_PERFCOUNTER1_SELECT__PERF_MODE1_MASK 0x0F000000L
+#define SX_PERFCOUNTER1_SELECT__PERF_MODE_MASK 0xF0000000L
+//SX_PERFCOUNTER2_SELECT
+#define SX_PERFCOUNTER2_SELECT__PERF_SEL__SHIFT 0x0
+#define SX_PERFCOUNTER2_SELECT__CNTR_MODE__SHIFT 0x14
+#define SX_PERFCOUNTER2_SELECT__PERF_MODE__SHIFT 0x1c
+#define SX_PERFCOUNTER2_SELECT__PERF_SEL_MASK 0x000003FFL
+#define SX_PERFCOUNTER2_SELECT__CNTR_MODE_MASK 0x00F00000L
+#define SX_PERFCOUNTER2_SELECT__PERF_MODE_MASK 0xF0000000L
+//SX_PERFCOUNTER3_SELECT
+#define SX_PERFCOUNTER3_SELECT__PERF_SEL__SHIFT 0x0
+#define SX_PERFCOUNTER3_SELECT__CNTR_MODE__SHIFT 0x14
+#define SX_PERFCOUNTER3_SELECT__PERF_MODE__SHIFT 0x1c
+#define SX_PERFCOUNTER3_SELECT__PERF_SEL_MASK 0x000003FFL
+#define SX_PERFCOUNTER3_SELECT__CNTR_MODE_MASK 0x00F00000L
+#define SX_PERFCOUNTER3_SELECT__PERF_MODE_MASK 0xF0000000L
+//SX_PERFCOUNTER0_SELECT1
+#define SX_PERFCOUNTER0_SELECT1__PERF_SEL2__SHIFT 0x0
+#define SX_PERFCOUNTER0_SELECT1__PERF_SEL3__SHIFT 0xa
+#define SX_PERFCOUNTER0_SELECT1__PERF_MODE3__SHIFT 0x18
+#define SX_PERFCOUNTER0_SELECT1__PERF_MODE2__SHIFT 0x1c
+#define SX_PERFCOUNTER0_SELECT1__PERF_SEL2_MASK 0x000003FFL
+#define SX_PERFCOUNTER0_SELECT1__PERF_SEL3_MASK 0x000FFC00L
+#define SX_PERFCOUNTER0_SELECT1__PERF_MODE3_MASK 0x0F000000L
+#define SX_PERFCOUNTER0_SELECT1__PERF_MODE2_MASK 0xF0000000L
+//SX_PERFCOUNTER1_SELECT1
+#define SX_PERFCOUNTER1_SELECT1__PERF_SEL2__SHIFT 0x0
+#define SX_PERFCOUNTER1_SELECT1__PERF_SEL3__SHIFT 0xa
+#define SX_PERFCOUNTER1_SELECT1__PERF_MODE3__SHIFT 0x18
+#define SX_PERFCOUNTER1_SELECT1__PERF_MODE2__SHIFT 0x1c
+#define SX_PERFCOUNTER1_SELECT1__PERF_SEL2_MASK 0x000003FFL
+#define SX_PERFCOUNTER1_SELECT1__PERF_SEL3_MASK 0x000FFC00L
+#define SX_PERFCOUNTER1_SELECT1__PERF_MODE3_MASK 0x0F000000L
+#define SX_PERFCOUNTER1_SELECT1__PERF_MODE2_MASK 0xF0000000L
+//GDS_PERFCOUNTER0_SELECT
+#define GDS_PERFCOUNTER0_SELECT__PERF_SEL__SHIFT 0x0
+#define GDS_PERFCOUNTER0_SELECT__PERF_SEL1__SHIFT 0xa
+#define GDS_PERFCOUNTER0_SELECT__CNTR_MODE__SHIFT 0x14
+#define GDS_PERFCOUNTER0_SELECT__PERF_MODE1__SHIFT 0x18
+#define GDS_PERFCOUNTER0_SELECT__PERF_MODE__SHIFT 0x1c
+#define GDS_PERFCOUNTER0_SELECT__PERF_SEL_MASK 0x000003FFL
+#define GDS_PERFCOUNTER0_SELECT__PERF_SEL1_MASK 0x000FFC00L
+#define GDS_PERFCOUNTER0_SELECT__CNTR_MODE_MASK 0x00F00000L
+#define GDS_PERFCOUNTER0_SELECT__PERF_MODE1_MASK 0x0F000000L
+#define GDS_PERFCOUNTER0_SELECT__PERF_MODE_MASK 0xF0000000L
+//GDS_PERFCOUNTER1_SELECT
+#define GDS_PERFCOUNTER1_SELECT__PERF_SEL__SHIFT 0x0
+#define GDS_PERFCOUNTER1_SELECT__CNTR_MODE__SHIFT 0x14
+#define GDS_PERFCOUNTER1_SELECT__PERF_MODE__SHIFT 0x1c
+#define GDS_PERFCOUNTER1_SELECT__PERF_SEL_MASK 0x000003FFL
+#define GDS_PERFCOUNTER1_SELECT__CNTR_MODE_MASK 0x00F00000L
+#define GDS_PERFCOUNTER1_SELECT__PERF_MODE_MASK 0xF0000000L
+//GDS_PERFCOUNTER2_SELECT
+#define GDS_PERFCOUNTER2_SELECT__PERF_SEL__SHIFT 0x0
+#define GDS_PERFCOUNTER2_SELECT__CNTR_MODE__SHIFT 0x14
+#define GDS_PERFCOUNTER2_SELECT__PERF_MODE__SHIFT 0x1c
+#define GDS_PERFCOUNTER2_SELECT__PERF_SEL_MASK 0x000003FFL
+#define GDS_PERFCOUNTER2_SELECT__CNTR_MODE_MASK 0x00F00000L
+#define GDS_PERFCOUNTER2_SELECT__PERF_MODE_MASK 0xF0000000L
+//GDS_PERFCOUNTER3_SELECT
+#define GDS_PERFCOUNTER3_SELECT__PERF_SEL__SHIFT 0x0
+#define GDS_PERFCOUNTER3_SELECT__CNTR_MODE__SHIFT 0x14
+#define GDS_PERFCOUNTER3_SELECT__PERF_MODE__SHIFT 0x1c
+#define GDS_PERFCOUNTER3_SELECT__PERF_SEL_MASK 0x000003FFL
+#define GDS_PERFCOUNTER3_SELECT__CNTR_MODE_MASK 0x00F00000L
+#define GDS_PERFCOUNTER3_SELECT__PERF_MODE_MASK 0xF0000000L
+//GDS_PERFCOUNTER0_SELECT1
+#define GDS_PERFCOUNTER0_SELECT1__PERF_SEL2__SHIFT 0x0
+#define GDS_PERFCOUNTER0_SELECT1__PERF_SEL3__SHIFT 0xa
+#define GDS_PERFCOUNTER0_SELECT1__PERF_MODE3__SHIFT 0x18
+#define GDS_PERFCOUNTER0_SELECT1__PERF_MODE2__SHIFT 0x1c
+#define GDS_PERFCOUNTER0_SELECT1__PERF_SEL2_MASK 0x000003FFL
+#define GDS_PERFCOUNTER0_SELECT1__PERF_SEL3_MASK 0x000FFC00L
+#define GDS_PERFCOUNTER0_SELECT1__PERF_MODE3_MASK 0x0F000000L
+#define GDS_PERFCOUNTER0_SELECT1__PERF_MODE2_MASK 0xF0000000L
+//TA_PERFCOUNTER0_SELECT
+#define TA_PERFCOUNTER0_SELECT__PERF_SEL__SHIFT 0x0
+#define TA_PERFCOUNTER0_SELECT__PERF_SEL1__SHIFT 0xa
+#define TA_PERFCOUNTER0_SELECT__CNTR_MODE__SHIFT 0x14
+#define TA_PERFCOUNTER0_SELECT__PERF_MODE1__SHIFT 0x18
+#define TA_PERFCOUNTER0_SELECT__PERF_MODE__SHIFT 0x1c
+#define TA_PERFCOUNTER0_SELECT__PERF_SEL_MASK 0x0000007FL
+#define TA_PERFCOUNTER0_SELECT__PERF_SEL1_MASK 0x0001FC00L
+#define TA_PERFCOUNTER0_SELECT__CNTR_MODE_MASK 0x00F00000L
+#define TA_PERFCOUNTER0_SELECT__PERF_MODE1_MASK 0x0F000000L
+#define TA_PERFCOUNTER0_SELECT__PERF_MODE_MASK 0xF0000000L
+//TA_PERFCOUNTER0_SELECT1
+#define TA_PERFCOUNTER0_SELECT1__PERF_SEL2__SHIFT 0x0
+#define TA_PERFCOUNTER0_SELECT1__PERF_SEL3__SHIFT 0xa
+#define TA_PERFCOUNTER0_SELECT1__PERF_MODE3__SHIFT 0x18
+#define TA_PERFCOUNTER0_SELECT1__PERF_MODE2__SHIFT 0x1c
+#define TA_PERFCOUNTER0_SELECT1__PERF_SEL2_MASK 0x0000007FL
+#define TA_PERFCOUNTER0_SELECT1__PERF_SEL3_MASK 0x0001FC00L
+#define TA_PERFCOUNTER0_SELECT1__PERF_MODE3_MASK 0x0F000000L
+#define TA_PERFCOUNTER0_SELECT1__PERF_MODE2_MASK 0xF0000000L
+//TA_PERFCOUNTER1_SELECT
+#define TA_PERFCOUNTER1_SELECT__PERF_SEL__SHIFT 0x0
+#define TA_PERFCOUNTER1_SELECT__CNTR_MODE__SHIFT 0x14
+#define TA_PERFCOUNTER1_SELECT__PERF_MODE__SHIFT 0x1c
+#define TA_PERFCOUNTER1_SELECT__PERF_SEL_MASK 0x0000007FL
+#define TA_PERFCOUNTER1_SELECT__CNTR_MODE_MASK 0x00F00000L
+#define TA_PERFCOUNTER1_SELECT__PERF_MODE_MASK 0xF0000000L
+//TD_PERFCOUNTER0_SELECT
+#define TD_PERFCOUNTER0_SELECT__PERF_SEL__SHIFT 0x0
+#define TD_PERFCOUNTER0_SELECT__PERF_SEL1__SHIFT 0xa
+#define TD_PERFCOUNTER0_SELECT__CNTR_MODE__SHIFT 0x14
+#define TD_PERFCOUNTER0_SELECT__PERF_MODE1__SHIFT 0x18
+#define TD_PERFCOUNTER0_SELECT__PERF_MODE__SHIFT 0x1c
+#define TD_PERFCOUNTER0_SELECT__PERF_SEL_MASK 0x0000003FL
+#define TD_PERFCOUNTER0_SELECT__PERF_SEL1_MASK 0x0000FC00L
+#define TD_PERFCOUNTER0_SELECT__CNTR_MODE_MASK 0x00F00000L
+#define TD_PERFCOUNTER0_SELECT__PERF_MODE1_MASK 0x0F000000L
+#define TD_PERFCOUNTER0_SELECT__PERF_MODE_MASK 0xF0000000L
+//TD_PERFCOUNTER0_SELECT1
+#define TD_PERFCOUNTER0_SELECT1__PERF_SEL2__SHIFT 0x0
+#define TD_PERFCOUNTER0_SELECT1__PERF_SEL3__SHIFT 0xa
+#define TD_PERFCOUNTER0_SELECT1__PERF_MODE3__SHIFT 0x18
+#define TD_PERFCOUNTER0_SELECT1__PERF_MODE2__SHIFT 0x1c
+#define TD_PERFCOUNTER0_SELECT1__PERF_SEL2_MASK 0x0000003FL
+#define TD_PERFCOUNTER0_SELECT1__PERF_SEL3_MASK 0x0000FC00L
+#define TD_PERFCOUNTER0_SELECT1__PERF_MODE3_MASK 0x0F000000L
+#define TD_PERFCOUNTER0_SELECT1__PERF_MODE2_MASK 0xF0000000L
+//TD_PERFCOUNTER1_SELECT
+#define TD_PERFCOUNTER1_SELECT__PERF_SEL__SHIFT 0x0
+#define TD_PERFCOUNTER1_SELECT__CNTR_MODE__SHIFT 0x14
+#define TD_PERFCOUNTER1_SELECT__PERF_MODE__SHIFT 0x1c
+#define TD_PERFCOUNTER1_SELECT__PERF_SEL_MASK 0x0000003FL
+#define TD_PERFCOUNTER1_SELECT__CNTR_MODE_MASK 0x00F00000L
+#define TD_PERFCOUNTER1_SELECT__PERF_MODE_MASK 0xF0000000L
+//TCP_PERFCOUNTER0_SELECT
+#define TCP_PERFCOUNTER0_SELECT__PERF_SEL__SHIFT 0x0
+#define TCP_PERFCOUNTER0_SELECT__PERF_SEL1__SHIFT 0xa
+#define TCP_PERFCOUNTER0_SELECT__CNTR_MODE__SHIFT 0x14
+#define TCP_PERFCOUNTER0_SELECT__PERF_MODE1__SHIFT 0x18
+#define TCP_PERFCOUNTER0_SELECT__PERF_MODE__SHIFT 0x1c
+#define TCP_PERFCOUNTER0_SELECT__PERF_SEL_MASK 0x0000007FL
+#define TCP_PERFCOUNTER0_SELECT__PERF_SEL1_MASK 0x0001FC00L
+#define TCP_PERFCOUNTER0_SELECT__CNTR_MODE_MASK 0x00F00000L
+#define TCP_PERFCOUNTER0_SELECT__PERF_MODE1_MASK 0x0F000000L
+#define TCP_PERFCOUNTER0_SELECT__PERF_MODE_MASK 0xF0000000L
+//TCP_PERFCOUNTER0_SELECT1
+#define TCP_PERFCOUNTER0_SELECT1__PERF_SEL2__SHIFT 0x0
+#define TCP_PERFCOUNTER0_SELECT1__PERF_SEL3__SHIFT 0xa
+#define TCP_PERFCOUNTER0_SELECT1__PERF_MODE3__SHIFT 0x18
+#define TCP_PERFCOUNTER0_SELECT1__PERF_MODE2__SHIFT 0x1c
+#define TCP_PERFCOUNTER0_SELECT1__PERF_SEL2_MASK 0x0000007FL
+#define TCP_PERFCOUNTER0_SELECT1__PERF_SEL3_MASK 0x0001FC00L
+#define TCP_PERFCOUNTER0_SELECT1__PERF_MODE3_MASK 0x0F000000L
+#define TCP_PERFCOUNTER0_SELECT1__PERF_MODE2_MASK 0xF0000000L
+//TCP_PERFCOUNTER1_SELECT
+#define TCP_PERFCOUNTER1_SELECT__PERF_SEL__SHIFT 0x0
+#define TCP_PERFCOUNTER1_SELECT__PERF_SEL1__SHIFT 0xa
+#define TCP_PERFCOUNTER1_SELECT__CNTR_MODE__SHIFT 0x14
+#define TCP_PERFCOUNTER1_SELECT__PERF_MODE1__SHIFT 0x18
+#define TCP_PERFCOUNTER1_SELECT__PERF_MODE__SHIFT 0x1c
+#define TCP_PERFCOUNTER1_SELECT__PERF_SEL_MASK 0x0000007FL
+#define TCP_PERFCOUNTER1_SELECT__PERF_SEL1_MASK 0x0001FC00L
+#define TCP_PERFCOUNTER1_SELECT__CNTR_MODE_MASK 0x00F00000L
+#define TCP_PERFCOUNTER1_SELECT__PERF_MODE1_MASK 0x0F000000L
+#define TCP_PERFCOUNTER1_SELECT__PERF_MODE_MASK 0xF0000000L
+//TCP_PERFCOUNTER1_SELECT1
+#define TCP_PERFCOUNTER1_SELECT1__PERF_SEL2__SHIFT 0x0
+#define TCP_PERFCOUNTER1_SELECT1__PERF_SEL3__SHIFT 0xa
+#define TCP_PERFCOUNTER1_SELECT1__PERF_MODE3__SHIFT 0x18
+#define TCP_PERFCOUNTER1_SELECT1__PERF_MODE2__SHIFT 0x1c
+#define TCP_PERFCOUNTER1_SELECT1__PERF_SEL2_MASK 0x0000007FL
+#define TCP_PERFCOUNTER1_SELECT1__PERF_SEL3_MASK 0x0001FC00L
+#define TCP_PERFCOUNTER1_SELECT1__PERF_MODE3_MASK 0x0F000000L
+#define TCP_PERFCOUNTER1_SELECT1__PERF_MODE2_MASK 0xF0000000L
+//TCP_PERFCOUNTER2_SELECT
+#define TCP_PERFCOUNTER2_SELECT__PERF_SEL__SHIFT 0x0
+#define TCP_PERFCOUNTER2_SELECT__CNTR_MODE__SHIFT 0x14
+#define TCP_PERFCOUNTER2_SELECT__PERF_MODE__SHIFT 0x1c
+#define TCP_PERFCOUNTER2_SELECT__PERF_SEL_MASK 0x0000007FL
+#define TCP_PERFCOUNTER2_SELECT__CNTR_MODE_MASK 0x00F00000L
+#define TCP_PERFCOUNTER2_SELECT__PERF_MODE_MASK 0xF0000000L
+//TCP_PERFCOUNTER3_SELECT
+#define TCP_PERFCOUNTER3_SELECT__PERF_SEL__SHIFT 0x0
+#define TCP_PERFCOUNTER3_SELECT__CNTR_MODE__SHIFT 0x14
+#define TCP_PERFCOUNTER3_SELECT__PERF_MODE__SHIFT 0x1c
+#define TCP_PERFCOUNTER3_SELECT__PERF_SEL_MASK 0x0000007FL
+#define TCP_PERFCOUNTER3_SELECT__CNTR_MODE_MASK 0x00F00000L
+#define TCP_PERFCOUNTER3_SELECT__PERF_MODE_MASK 0xF0000000L
+//TCC_PERFCOUNTER0_SELECT
+#define TCC_PERFCOUNTER0_SELECT__PERF_SEL__SHIFT 0x0
+#define TCC_PERFCOUNTER0_SELECT__PERF_SEL1__SHIFT 0xa
+#define TCC_PERFCOUNTER0_SELECT__CNTR_MODE__SHIFT 0x14
+#define TCC_PERFCOUNTER0_SELECT__PERF_MODE1__SHIFT 0x18
+#define TCC_PERFCOUNTER0_SELECT__PERF_MODE__SHIFT 0x1c
+#define TCC_PERFCOUNTER0_SELECT__PERF_SEL_MASK 0x000003FFL
+#define TCC_PERFCOUNTER0_SELECT__PERF_SEL1_MASK 0x000FFC00L
+#define TCC_PERFCOUNTER0_SELECT__CNTR_MODE_MASK 0x00F00000L
+#define TCC_PERFCOUNTER0_SELECT__PERF_MODE1_MASK 0x0F000000L
+#define TCC_PERFCOUNTER0_SELECT__PERF_MODE_MASK 0xF0000000L
+//TCC_PERFCOUNTER0_SELECT1
+#define TCC_PERFCOUNTER0_SELECT1__PERF_SEL2__SHIFT 0x0
+#define TCC_PERFCOUNTER0_SELECT1__PERF_SEL3__SHIFT 0xa
+#define TCC_PERFCOUNTER0_SELECT1__PERF_MODE2__SHIFT 0x18
+#define TCC_PERFCOUNTER0_SELECT1__PERF_MODE3__SHIFT 0x1c
+#define TCC_PERFCOUNTER0_SELECT1__PERF_SEL2_MASK 0x000003FFL
+#define TCC_PERFCOUNTER0_SELECT1__PERF_SEL3_MASK 0x000FFC00L
+#define TCC_PERFCOUNTER0_SELECT1__PERF_MODE2_MASK 0x0F000000L
+#define TCC_PERFCOUNTER0_SELECT1__PERF_MODE3_MASK 0xF0000000L
+//TCC_PERFCOUNTER1_SELECT
+#define TCC_PERFCOUNTER1_SELECT__PERF_SEL__SHIFT 0x0
+#define TCC_PERFCOUNTER1_SELECT__PERF_SEL1__SHIFT 0xa
+#define TCC_PERFCOUNTER1_SELECT__CNTR_MODE__SHIFT 0x14
+#define TCC_PERFCOUNTER1_SELECT__PERF_MODE1__SHIFT 0x18
+#define TCC_PERFCOUNTER1_SELECT__PERF_MODE__SHIFT 0x1c
+#define TCC_PERFCOUNTER1_SELECT__PERF_SEL_MASK 0x000003FFL
+#define TCC_PERFCOUNTER1_SELECT__PERF_SEL1_MASK 0x000FFC00L
+#define TCC_PERFCOUNTER1_SELECT__CNTR_MODE_MASK 0x00F00000L
+#define TCC_PERFCOUNTER1_SELECT__PERF_MODE1_MASK 0x0F000000L
+#define TCC_PERFCOUNTER1_SELECT__PERF_MODE_MASK 0xF0000000L
+//TCC_PERFCOUNTER1_SELECT1
+#define TCC_PERFCOUNTER1_SELECT1__PERF_SEL2__SHIFT 0x0
+#define TCC_PERFCOUNTER1_SELECT1__PERF_SEL3__SHIFT 0xa
+#define TCC_PERFCOUNTER1_SELECT1__PERF_MODE2__SHIFT 0x18
+#define TCC_PERFCOUNTER1_SELECT1__PERF_MODE3__SHIFT 0x1c
+#define TCC_PERFCOUNTER1_SELECT1__PERF_SEL2_MASK 0x000003FFL
+#define TCC_PERFCOUNTER1_SELECT1__PERF_SEL3_MASK 0x000FFC00L
+#define TCC_PERFCOUNTER1_SELECT1__PERF_MODE2_MASK 0x0F000000L
+#define TCC_PERFCOUNTER1_SELECT1__PERF_MODE3_MASK 0xF0000000L
+//TCC_PERFCOUNTER2_SELECT
+#define TCC_PERFCOUNTER2_SELECT__PERF_SEL__SHIFT 0x0
+#define TCC_PERFCOUNTER2_SELECT__CNTR_MODE__SHIFT 0x14
+#define TCC_PERFCOUNTER2_SELECT__PERF_MODE__SHIFT 0x1c
+#define TCC_PERFCOUNTER2_SELECT__PERF_SEL_MASK 0x000003FFL
+#define TCC_PERFCOUNTER2_SELECT__CNTR_MODE_MASK 0x00F00000L
+#define TCC_PERFCOUNTER2_SELECT__PERF_MODE_MASK 0xF0000000L
+//TCC_PERFCOUNTER3_SELECT
+#define TCC_PERFCOUNTER3_SELECT__PERF_SEL__SHIFT 0x0
+#define TCC_PERFCOUNTER3_SELECT__CNTR_MODE__SHIFT 0x14
+#define TCC_PERFCOUNTER3_SELECT__PERF_MODE__SHIFT 0x1c
+#define TCC_PERFCOUNTER3_SELECT__PERF_SEL_MASK 0x000003FFL
+#define TCC_PERFCOUNTER3_SELECT__CNTR_MODE_MASK 0x00F00000L
+#define TCC_PERFCOUNTER3_SELECT__PERF_MODE_MASK 0xF0000000L
+//TCA_PERFCOUNTER0_SELECT
+#define TCA_PERFCOUNTER0_SELECT__PERF_SEL__SHIFT 0x0
+#define TCA_PERFCOUNTER0_SELECT__PERF_SEL1__SHIFT 0xa
+#define TCA_PERFCOUNTER0_SELECT__CNTR_MODE__SHIFT 0x14
+#define TCA_PERFCOUNTER0_SELECT__PERF_MODE1__SHIFT 0x18
+#define TCA_PERFCOUNTER0_SELECT__PERF_MODE__SHIFT 0x1c
+#define TCA_PERFCOUNTER0_SELECT__PERF_SEL_MASK 0x000003FFL
+#define TCA_PERFCOUNTER0_SELECT__PERF_SEL1_MASK 0x000FFC00L
+#define TCA_PERFCOUNTER0_SELECT__CNTR_MODE_MASK 0x00F00000L
+#define TCA_PERFCOUNTER0_SELECT__PERF_MODE1_MASK 0x0F000000L
+#define TCA_PERFCOUNTER0_SELECT__PERF_MODE_MASK 0xF0000000L
+//TCA_PERFCOUNTER0_SELECT1
+#define TCA_PERFCOUNTER0_SELECT1__PERF_SEL2__SHIFT 0x0
+#define TCA_PERFCOUNTER0_SELECT1__PERF_SEL3__SHIFT 0xa
+#define TCA_PERFCOUNTER0_SELECT1__PERF_MODE2__SHIFT 0x18
+#define TCA_PERFCOUNTER0_SELECT1__PERF_MODE3__SHIFT 0x1c
+#define TCA_PERFCOUNTER0_SELECT1__PERF_SEL2_MASK 0x000003FFL
+#define TCA_PERFCOUNTER0_SELECT1__PERF_SEL3_MASK 0x000FFC00L
+#define TCA_PERFCOUNTER0_SELECT1__PERF_MODE2_MASK 0x0F000000L
+#define TCA_PERFCOUNTER0_SELECT1__PERF_MODE3_MASK 0xF0000000L
+//TCA_PERFCOUNTER1_SELECT
+#define TCA_PERFCOUNTER1_SELECT__PERF_SEL__SHIFT 0x0
+#define TCA_PERFCOUNTER1_SELECT__PERF_SEL1__SHIFT 0xa
+#define TCA_PERFCOUNTER1_SELECT__CNTR_MODE__SHIFT 0x14
+#define TCA_PERFCOUNTER1_SELECT__PERF_MODE1__SHIFT 0x18
+#define TCA_PERFCOUNTER1_SELECT__PERF_MODE__SHIFT 0x1c
+#define TCA_PERFCOUNTER1_SELECT__PERF_SEL_MASK 0x000003FFL
+#define TCA_PERFCOUNTER1_SELECT__PERF_SEL1_MASK 0x000FFC00L
+#define TCA_PERFCOUNTER1_SELECT__CNTR_MODE_MASK 0x00F00000L
+#define TCA_PERFCOUNTER1_SELECT__PERF_MODE1_MASK 0x0F000000L
+#define TCA_PERFCOUNTER1_SELECT__PERF_MODE_MASK 0xF0000000L
+//TCA_PERFCOUNTER1_SELECT1
+#define TCA_PERFCOUNTER1_SELECT1__PERF_SEL2__SHIFT 0x0
+#define TCA_PERFCOUNTER1_SELECT1__PERF_SEL3__SHIFT 0xa
+#define TCA_PERFCOUNTER1_SELECT1__PERF_MODE2__SHIFT 0x18
+#define TCA_PERFCOUNTER1_SELECT1__PERF_MODE3__SHIFT 0x1c
+#define TCA_PERFCOUNTER1_SELECT1__PERF_SEL2_MASK 0x000003FFL
+#define TCA_PERFCOUNTER1_SELECT1__PERF_SEL3_MASK 0x000FFC00L
+#define TCA_PERFCOUNTER1_SELECT1__PERF_MODE2_MASK 0x0F000000L
+#define TCA_PERFCOUNTER1_SELECT1__PERF_MODE3_MASK 0xF0000000L
+//TCA_PERFCOUNTER2_SELECT
+#define TCA_PERFCOUNTER2_SELECT__PERF_SEL__SHIFT 0x0
+#define TCA_PERFCOUNTER2_SELECT__CNTR_MODE__SHIFT 0x14
+#define TCA_PERFCOUNTER2_SELECT__PERF_MODE__SHIFT 0x1c
+#define TCA_PERFCOUNTER2_SELECT__PERF_SEL_MASK 0x000003FFL
+#define TCA_PERFCOUNTER2_SELECT__CNTR_MODE_MASK 0x00F00000L
+#define TCA_PERFCOUNTER2_SELECT__PERF_MODE_MASK 0xF0000000L
+//TCA_PERFCOUNTER3_SELECT
+#define TCA_PERFCOUNTER3_SELECT__PERF_SEL__SHIFT 0x0
+#define TCA_PERFCOUNTER3_SELECT__CNTR_MODE__SHIFT 0x14
+#define TCA_PERFCOUNTER3_SELECT__PERF_MODE__SHIFT 0x1c
+#define TCA_PERFCOUNTER3_SELECT__PERF_SEL_MASK 0x000003FFL
+#define TCA_PERFCOUNTER3_SELECT__CNTR_MODE_MASK 0x00F00000L
+#define TCA_PERFCOUNTER3_SELECT__PERF_MODE_MASK 0xF0000000L
+//CB_PERFCOUNTER_FILTER
+#define CB_PERFCOUNTER_FILTER__OP_FILTER_ENABLE__SHIFT 0x0
+#define CB_PERFCOUNTER_FILTER__OP_FILTER_SEL__SHIFT 0x1
+#define CB_PERFCOUNTER_FILTER__FORMAT_FILTER_ENABLE__SHIFT 0x4
+#define CB_PERFCOUNTER_FILTER__FORMAT_FILTER_SEL__SHIFT 0x5
+#define CB_PERFCOUNTER_FILTER__CLEAR_FILTER_ENABLE__SHIFT 0xa
+#define CB_PERFCOUNTER_FILTER__CLEAR_FILTER_SEL__SHIFT 0xb
+#define CB_PERFCOUNTER_FILTER__MRT_FILTER_ENABLE__SHIFT 0xc
+#define CB_PERFCOUNTER_FILTER__MRT_FILTER_SEL__SHIFT 0xd
+#define CB_PERFCOUNTER_FILTER__NUM_SAMPLES_FILTER_ENABLE__SHIFT 0x11
+#define CB_PERFCOUNTER_FILTER__NUM_SAMPLES_FILTER_SEL__SHIFT 0x12
+#define CB_PERFCOUNTER_FILTER__NUM_FRAGMENTS_FILTER_ENABLE__SHIFT 0x15
+#define CB_PERFCOUNTER_FILTER__NUM_FRAGMENTS_FILTER_SEL__SHIFT 0x16
+#define CB_PERFCOUNTER_FILTER__OP_FILTER_ENABLE_MASK 0x00000001L
+#define CB_PERFCOUNTER_FILTER__OP_FILTER_SEL_MASK 0x0000000EL
+#define CB_PERFCOUNTER_FILTER__FORMAT_FILTER_ENABLE_MASK 0x00000010L
+#define CB_PERFCOUNTER_FILTER__FORMAT_FILTER_SEL_MASK 0x000003E0L
+#define CB_PERFCOUNTER_FILTER__CLEAR_FILTER_ENABLE_MASK 0x00000400L
+#define CB_PERFCOUNTER_FILTER__CLEAR_FILTER_SEL_MASK 0x00000800L
+#define CB_PERFCOUNTER_FILTER__MRT_FILTER_ENABLE_MASK 0x00001000L
+#define CB_PERFCOUNTER_FILTER__MRT_FILTER_SEL_MASK 0x0000E000L
+#define CB_PERFCOUNTER_FILTER__NUM_SAMPLES_FILTER_ENABLE_MASK 0x00020000L
+#define CB_PERFCOUNTER_FILTER__NUM_SAMPLES_FILTER_SEL_MASK 0x001C0000L
+#define CB_PERFCOUNTER_FILTER__NUM_FRAGMENTS_FILTER_ENABLE_MASK 0x00200000L
+#define CB_PERFCOUNTER_FILTER__NUM_FRAGMENTS_FILTER_SEL_MASK 0x00C00000L
+//CB_PERFCOUNTER0_SELECT
+#define CB_PERFCOUNTER0_SELECT__PERF_SEL__SHIFT 0x0
+#define CB_PERFCOUNTER0_SELECT__PERF_SEL1__SHIFT 0xa
+#define CB_PERFCOUNTER0_SELECT__CNTR_MODE__SHIFT 0x14
+#define CB_PERFCOUNTER0_SELECT__PERF_MODE1__SHIFT 0x18
+#define CB_PERFCOUNTER0_SELECT__PERF_MODE__SHIFT 0x1c
+#define CB_PERFCOUNTER0_SELECT__PERF_SEL_MASK 0x000001FFL
+#define CB_PERFCOUNTER0_SELECT__PERF_SEL1_MASK 0x0007FC00L
+#define CB_PERFCOUNTER0_SELECT__CNTR_MODE_MASK 0x00F00000L
+#define CB_PERFCOUNTER0_SELECT__PERF_MODE1_MASK 0x0F000000L
+#define CB_PERFCOUNTER0_SELECT__PERF_MODE_MASK 0xF0000000L
+//CB_PERFCOUNTER0_SELECT1
+#define CB_PERFCOUNTER0_SELECT1__PERF_SEL2__SHIFT 0x0
+#define CB_PERFCOUNTER0_SELECT1__PERF_SEL3__SHIFT 0xa
+#define CB_PERFCOUNTER0_SELECT1__PERF_MODE3__SHIFT 0x18
+#define CB_PERFCOUNTER0_SELECT1__PERF_MODE2__SHIFT 0x1c
+#define CB_PERFCOUNTER0_SELECT1__PERF_SEL2_MASK 0x000001FFL
+#define CB_PERFCOUNTER0_SELECT1__PERF_SEL3_MASK 0x0007FC00L
+#define CB_PERFCOUNTER0_SELECT1__PERF_MODE3_MASK 0x0F000000L
+#define CB_PERFCOUNTER0_SELECT1__PERF_MODE2_MASK 0xF0000000L
+//CB_PERFCOUNTER1_SELECT
+#define CB_PERFCOUNTER1_SELECT__PERF_SEL__SHIFT 0x0
+#define CB_PERFCOUNTER1_SELECT__PERF_MODE__SHIFT 0x1c
+#define CB_PERFCOUNTER1_SELECT__PERF_SEL_MASK 0x000001FFL
+#define CB_PERFCOUNTER1_SELECT__PERF_MODE_MASK 0xF0000000L
+//CB_PERFCOUNTER2_SELECT
+#define CB_PERFCOUNTER2_SELECT__PERF_SEL__SHIFT 0x0
+#define CB_PERFCOUNTER2_SELECT__PERF_MODE__SHIFT 0x1c
+#define CB_PERFCOUNTER2_SELECT__PERF_SEL_MASK 0x000001FFL
+#define CB_PERFCOUNTER2_SELECT__PERF_MODE_MASK 0xF0000000L
+//CB_PERFCOUNTER3_SELECT
+#define CB_PERFCOUNTER3_SELECT__PERF_SEL__SHIFT 0x0
+#define CB_PERFCOUNTER3_SELECT__PERF_MODE__SHIFT 0x1c
+#define CB_PERFCOUNTER3_SELECT__PERF_SEL_MASK 0x000001FFL
+#define CB_PERFCOUNTER3_SELECT__PERF_MODE_MASK 0xF0000000L
+//DB_PERFCOUNTER0_SELECT
+#define DB_PERFCOUNTER0_SELECT__PERF_SEL__SHIFT 0x0
+#define DB_PERFCOUNTER0_SELECT__PERF_SEL1__SHIFT 0xa
+#define DB_PERFCOUNTER0_SELECT__CNTR_MODE__SHIFT 0x14
+#define DB_PERFCOUNTER0_SELECT__PERF_MODE1__SHIFT 0x18
+#define DB_PERFCOUNTER0_SELECT__PERF_MODE__SHIFT 0x1c
+#define DB_PERFCOUNTER0_SELECT__PERF_SEL_MASK 0x000003FFL
+#define DB_PERFCOUNTER0_SELECT__PERF_SEL1_MASK 0x000FFC00L
+#define DB_PERFCOUNTER0_SELECT__CNTR_MODE_MASK 0x00F00000L
+#define DB_PERFCOUNTER0_SELECT__PERF_MODE1_MASK 0x0F000000L
+#define DB_PERFCOUNTER0_SELECT__PERF_MODE_MASK 0xF0000000L
+//DB_PERFCOUNTER0_SELECT1
+#define DB_PERFCOUNTER0_SELECT1__PERF_SEL2__SHIFT 0x0
+#define DB_PERFCOUNTER0_SELECT1__PERF_SEL3__SHIFT 0xa
+#define DB_PERFCOUNTER0_SELECT1__PERF_MODE3__SHIFT 0x18
+#define DB_PERFCOUNTER0_SELECT1__PERF_MODE2__SHIFT 0x1c
+#define DB_PERFCOUNTER0_SELECT1__PERF_SEL2_MASK 0x000003FFL
+#define DB_PERFCOUNTER0_SELECT1__PERF_SEL3_MASK 0x000FFC00L
+#define DB_PERFCOUNTER0_SELECT1__PERF_MODE3_MASK 0x0F000000L
+#define DB_PERFCOUNTER0_SELECT1__PERF_MODE2_MASK 0xF0000000L
+//DB_PERFCOUNTER1_SELECT
+#define DB_PERFCOUNTER1_SELECT__PERF_SEL__SHIFT 0x0
+#define DB_PERFCOUNTER1_SELECT__PERF_SEL1__SHIFT 0xa
+#define DB_PERFCOUNTER1_SELECT__CNTR_MODE__SHIFT 0x14
+#define DB_PERFCOUNTER1_SELECT__PERF_MODE1__SHIFT 0x18
+#define DB_PERFCOUNTER1_SELECT__PERF_MODE__SHIFT 0x1c
+#define DB_PERFCOUNTER1_SELECT__PERF_SEL_MASK 0x000003FFL
+#define DB_PERFCOUNTER1_SELECT__PERF_SEL1_MASK 0x000FFC00L
+#define DB_PERFCOUNTER1_SELECT__CNTR_MODE_MASK 0x00F00000L
+#define DB_PERFCOUNTER1_SELECT__PERF_MODE1_MASK 0x0F000000L
+#define DB_PERFCOUNTER1_SELECT__PERF_MODE_MASK 0xF0000000L
+//DB_PERFCOUNTER1_SELECT1
+#define DB_PERFCOUNTER1_SELECT1__PERF_SEL2__SHIFT 0x0
+#define DB_PERFCOUNTER1_SELECT1__PERF_SEL3__SHIFT 0xa
+#define DB_PERFCOUNTER1_SELECT1__PERF_MODE3__SHIFT 0x18
+#define DB_PERFCOUNTER1_SELECT1__PERF_MODE2__SHIFT 0x1c
+#define DB_PERFCOUNTER1_SELECT1__PERF_SEL2_MASK 0x000003FFL
+#define DB_PERFCOUNTER1_SELECT1__PERF_SEL3_MASK 0x000FFC00L
+#define DB_PERFCOUNTER1_SELECT1__PERF_MODE3_MASK 0x0F000000L
+#define DB_PERFCOUNTER1_SELECT1__PERF_MODE2_MASK 0xF0000000L
+//DB_PERFCOUNTER2_SELECT
+#define DB_PERFCOUNTER2_SELECT__PERF_SEL__SHIFT 0x0
+#define DB_PERFCOUNTER2_SELECT__PERF_SEL1__SHIFT 0xa
+#define DB_PERFCOUNTER2_SELECT__CNTR_MODE__SHIFT 0x14
+#define DB_PERFCOUNTER2_SELECT__PERF_MODE1__SHIFT 0x18
+#define DB_PERFCOUNTER2_SELECT__PERF_MODE__SHIFT 0x1c
+#define DB_PERFCOUNTER2_SELECT__PERF_SEL_MASK 0x000003FFL
+#define DB_PERFCOUNTER2_SELECT__PERF_SEL1_MASK 0x000FFC00L
+#define DB_PERFCOUNTER2_SELECT__CNTR_MODE_MASK 0x00F00000L
+#define DB_PERFCOUNTER2_SELECT__PERF_MODE1_MASK 0x0F000000L
+#define DB_PERFCOUNTER2_SELECT__PERF_MODE_MASK 0xF0000000L
+//DB_PERFCOUNTER3_SELECT
+#define DB_PERFCOUNTER3_SELECT__PERF_SEL__SHIFT 0x0
+#define DB_PERFCOUNTER3_SELECT__PERF_SEL1__SHIFT 0xa
+#define DB_PERFCOUNTER3_SELECT__CNTR_MODE__SHIFT 0x14
+#define DB_PERFCOUNTER3_SELECT__PERF_MODE1__SHIFT 0x18
+#define DB_PERFCOUNTER3_SELECT__PERF_MODE__SHIFT 0x1c
+#define DB_PERFCOUNTER3_SELECT__PERF_SEL_MASK 0x000003FFL
+#define DB_PERFCOUNTER3_SELECT__PERF_SEL1_MASK 0x000FFC00L
+#define DB_PERFCOUNTER3_SELECT__CNTR_MODE_MASK 0x00F00000L
+#define DB_PERFCOUNTER3_SELECT__PERF_MODE1_MASK 0x0F000000L
+#define DB_PERFCOUNTER3_SELECT__PERF_MODE_MASK 0xF0000000L
+//RLC_SPM_PERFMON_CNTL
+#define RLC_SPM_PERFMON_CNTL__RESERVED1__SHIFT 0x0
+#define RLC_SPM_PERFMON_CNTL__PERFMON_RING_MODE__SHIFT 0xc
+#define RLC_SPM_PERFMON_CNTL__RESERVED__SHIFT 0xe
+#define RLC_SPM_PERFMON_CNTL__PERFMON_SAMPLE_INTERVAL__SHIFT 0x10
+#define RLC_SPM_PERFMON_CNTL__RESERVED1_MASK 0x00000FFFL
+#define RLC_SPM_PERFMON_CNTL__PERFMON_RING_MODE_MASK 0x00003000L
+#define RLC_SPM_PERFMON_CNTL__RESERVED_MASK 0x0000C000L
+#define RLC_SPM_PERFMON_CNTL__PERFMON_SAMPLE_INTERVAL_MASK 0xFFFF0000L
+//RLC_SPM_PERFMON_RING_BASE_LO
+#define RLC_SPM_PERFMON_RING_BASE_LO__RING_BASE_LO__SHIFT 0x0
+#define RLC_SPM_PERFMON_RING_BASE_LO__RING_BASE_LO_MASK 0xFFFFFFFFL
+//RLC_SPM_PERFMON_RING_BASE_HI
+#define RLC_SPM_PERFMON_RING_BASE_HI__RING_BASE_HI__SHIFT 0x0
+#define RLC_SPM_PERFMON_RING_BASE_HI__RESERVED__SHIFT 0x10
+#define RLC_SPM_PERFMON_RING_BASE_HI__RING_BASE_HI_MASK 0x0000FFFFL
+#define RLC_SPM_PERFMON_RING_BASE_HI__RESERVED_MASK 0xFFFF0000L
+//RLC_SPM_PERFMON_RING_SIZE
+#define RLC_SPM_PERFMON_RING_SIZE__RING_BASE_SIZE__SHIFT 0x0
+#define RLC_SPM_PERFMON_RING_SIZE__RING_BASE_SIZE_MASK 0xFFFFFFFFL
+//RLC_SPM_PERFMON_SEGMENT_SIZE
+#define RLC_SPM_PERFMON_SEGMENT_SIZE__PERFMON_SEGMENT_SIZE__SHIFT 0x0
+#define RLC_SPM_PERFMON_SEGMENT_SIZE__RESERVED1__SHIFT 0x8
+#define RLC_SPM_PERFMON_SEGMENT_SIZE__GLOBAL_NUM_LINE__SHIFT 0xb
+#define RLC_SPM_PERFMON_SEGMENT_SIZE__SE0_NUM_LINE__SHIFT 0x10
+#define RLC_SPM_PERFMON_SEGMENT_SIZE__SE1_NUM_LINE__SHIFT 0x15
+#define RLC_SPM_PERFMON_SEGMENT_SIZE__SE2_NUM_LINE__SHIFT 0x1a
+#define RLC_SPM_PERFMON_SEGMENT_SIZE__RESERVED__SHIFT 0x1f
+#define RLC_SPM_PERFMON_SEGMENT_SIZE__PERFMON_SEGMENT_SIZE_MASK 0x000000FFL
+#define RLC_SPM_PERFMON_SEGMENT_SIZE__RESERVED1_MASK 0x00000700L
+#define RLC_SPM_PERFMON_SEGMENT_SIZE__GLOBAL_NUM_LINE_MASK 0x0000F800L
+#define RLC_SPM_PERFMON_SEGMENT_SIZE__SE0_NUM_LINE_MASK 0x001F0000L
+#define RLC_SPM_PERFMON_SEGMENT_SIZE__SE1_NUM_LINE_MASK 0x03E00000L
+#define RLC_SPM_PERFMON_SEGMENT_SIZE__SE2_NUM_LINE_MASK 0x7C000000L
+#define RLC_SPM_PERFMON_SEGMENT_SIZE__RESERVED_MASK 0x80000000L
+//RLC_SPM_SE_MUXSEL_ADDR
+#define RLC_SPM_SE_MUXSEL_ADDR__PERFMON_SEL_ADDR__SHIFT 0x0
+#define RLC_SPM_SE_MUXSEL_ADDR__RESERVED__SHIFT 0x8
+#define RLC_SPM_SE_MUXSEL_ADDR__PERFMON_SEL_ADDR_MASK 0x000000FFL
+#define RLC_SPM_SE_MUXSEL_ADDR__RESERVED_MASK 0xFFFFFF00L
+//RLC_SPM_SE_MUXSEL_DATA
+#define RLC_SPM_SE_MUXSEL_DATA__PERFMON_SEL_DATA__SHIFT 0x0
+#define RLC_SPM_SE_MUXSEL_DATA__PERFMON_SEL_DATA_MASK 0xFFFFFFFFL
+//RLC_SPM_CPG_PERFMON_SAMPLE_DELAY
+#define RLC_SPM_CPG_PERFMON_SAMPLE_DELAY__PERFMON_SAMPLE_DELAY__SHIFT 0x0
+#define RLC_SPM_CPG_PERFMON_SAMPLE_DELAY__RESERVED__SHIFT 0x8
+#define RLC_SPM_CPG_PERFMON_SAMPLE_DELAY__PERFMON_SAMPLE_DELAY_MASK 0x000000FFL
+#define RLC_SPM_CPG_PERFMON_SAMPLE_DELAY__RESERVED_MASK 0xFFFFFF00L
+//RLC_SPM_CPC_PERFMON_SAMPLE_DELAY
+#define RLC_SPM_CPC_PERFMON_SAMPLE_DELAY__PERFMON_SAMPLE_DELAY__SHIFT 0x0
+#define RLC_SPM_CPC_PERFMON_SAMPLE_DELAY__RESERVED__SHIFT 0x8
+#define RLC_SPM_CPC_PERFMON_SAMPLE_DELAY__PERFMON_SAMPLE_DELAY_MASK 0x000000FFL
+#define RLC_SPM_CPC_PERFMON_SAMPLE_DELAY__RESERVED_MASK 0xFFFFFF00L
+//RLC_SPM_CPF_PERFMON_SAMPLE_DELAY
+#define RLC_SPM_CPF_PERFMON_SAMPLE_DELAY__PERFMON_SAMPLE_DELAY__SHIFT 0x0
+#define RLC_SPM_CPF_PERFMON_SAMPLE_DELAY__RESERVED__SHIFT 0x8
+#define RLC_SPM_CPF_PERFMON_SAMPLE_DELAY__PERFMON_SAMPLE_DELAY_MASK 0x000000FFL
+#define RLC_SPM_CPF_PERFMON_SAMPLE_DELAY__RESERVED_MASK 0xFFFFFF00L
+//RLC_SPM_CB_PERFMON_SAMPLE_DELAY
+#define RLC_SPM_CB_PERFMON_SAMPLE_DELAY__PERFMON_SAMPLE_DELAY__SHIFT 0x0
+#define RLC_SPM_CB_PERFMON_SAMPLE_DELAY__RESERVED__SHIFT 0x8
+#define RLC_SPM_CB_PERFMON_SAMPLE_DELAY__PERFMON_SAMPLE_DELAY_MASK 0x000000FFL
+#define RLC_SPM_CB_PERFMON_SAMPLE_DELAY__RESERVED_MASK 0xFFFFFF00L
+//RLC_SPM_DB_PERFMON_SAMPLE_DELAY
+#define RLC_SPM_DB_PERFMON_SAMPLE_DELAY__PERFMON_SAMPLE_DELAY__SHIFT 0x0
+#define RLC_SPM_DB_PERFMON_SAMPLE_DELAY__RESERVED__SHIFT 0x8
+#define RLC_SPM_DB_PERFMON_SAMPLE_DELAY__PERFMON_SAMPLE_DELAY_MASK 0x000000FFL
+#define RLC_SPM_DB_PERFMON_SAMPLE_DELAY__RESERVED_MASK 0xFFFFFF00L
+//RLC_SPM_PA_PERFMON_SAMPLE_DELAY
+#define RLC_SPM_PA_PERFMON_SAMPLE_DELAY__PERFMON_SAMPLE_DELAY__SHIFT 0x0
+#define RLC_SPM_PA_PERFMON_SAMPLE_DELAY__RESERVED__SHIFT 0x8
+#define RLC_SPM_PA_PERFMON_SAMPLE_DELAY__PERFMON_SAMPLE_DELAY_MASK 0x000000FFL
+#define RLC_SPM_PA_PERFMON_SAMPLE_DELAY__RESERVED_MASK 0xFFFFFF00L
+//RLC_SPM_GDS_PERFMON_SAMPLE_DELAY
+#define RLC_SPM_GDS_PERFMON_SAMPLE_DELAY__PERFMON_SAMPLE_DELAY__SHIFT 0x0
+#define RLC_SPM_GDS_PERFMON_SAMPLE_DELAY__RESERVED__SHIFT 0x8
+#define RLC_SPM_GDS_PERFMON_SAMPLE_DELAY__PERFMON_SAMPLE_DELAY_MASK 0x000000FFL
+#define RLC_SPM_GDS_PERFMON_SAMPLE_DELAY__RESERVED_MASK 0xFFFFFF00L
+//RLC_SPM_IA_PERFMON_SAMPLE_DELAY
+#define RLC_SPM_IA_PERFMON_SAMPLE_DELAY__PERFMON_SAMPLE_DELAY__SHIFT 0x0
+#define RLC_SPM_IA_PERFMON_SAMPLE_DELAY__RESERVED__SHIFT 0x8
+#define RLC_SPM_IA_PERFMON_SAMPLE_DELAY__PERFMON_SAMPLE_DELAY_MASK 0x000000FFL
+#define RLC_SPM_IA_PERFMON_SAMPLE_DELAY__RESERVED_MASK 0xFFFFFF00L
+//RLC_SPM_SC_PERFMON_SAMPLE_DELAY
+#define RLC_SPM_SC_PERFMON_SAMPLE_DELAY__PERFMON_SAMPLE_DELAY__SHIFT 0x0
+#define RLC_SPM_SC_PERFMON_SAMPLE_DELAY__RESERVED__SHIFT 0x8
+#define RLC_SPM_SC_PERFMON_SAMPLE_DELAY__PERFMON_SAMPLE_DELAY_MASK 0x000000FFL
+#define RLC_SPM_SC_PERFMON_SAMPLE_DELAY__RESERVED_MASK 0xFFFFFF00L
+//RLC_SPM_TCC_PERFMON_SAMPLE_DELAY
+#define RLC_SPM_TCC_PERFMON_SAMPLE_DELAY__PERFMON_SAMPLE_DELAY__SHIFT 0x0
+#define RLC_SPM_TCC_PERFMON_SAMPLE_DELAY__RESERVED__SHIFT 0x8
+#define RLC_SPM_TCC_PERFMON_SAMPLE_DELAY__PERFMON_SAMPLE_DELAY_MASK 0x000000FFL
+#define RLC_SPM_TCC_PERFMON_SAMPLE_DELAY__RESERVED_MASK 0xFFFFFF00L
+//RLC_SPM_TCA_PERFMON_SAMPLE_DELAY
+#define RLC_SPM_TCA_PERFMON_SAMPLE_DELAY__PERFMON_SAMPLE_DELAY__SHIFT 0x0
+#define RLC_SPM_TCA_PERFMON_SAMPLE_DELAY__RESERVED__SHIFT 0x8
+#define RLC_SPM_TCA_PERFMON_SAMPLE_DELAY__PERFMON_SAMPLE_DELAY_MASK 0x000000FFL
+#define RLC_SPM_TCA_PERFMON_SAMPLE_DELAY__RESERVED_MASK 0xFFFFFF00L
+//RLC_SPM_TCP_PERFMON_SAMPLE_DELAY
+#define RLC_SPM_TCP_PERFMON_SAMPLE_DELAY__PERFMON_SAMPLE_DELAY__SHIFT 0x0
+#define RLC_SPM_TCP_PERFMON_SAMPLE_DELAY__RESERVED__SHIFT 0x8
+#define RLC_SPM_TCP_PERFMON_SAMPLE_DELAY__PERFMON_SAMPLE_DELAY_MASK 0x000000FFL
+#define RLC_SPM_TCP_PERFMON_SAMPLE_DELAY__RESERVED_MASK 0xFFFFFF00L
+//RLC_SPM_TA_PERFMON_SAMPLE_DELAY
+#define RLC_SPM_TA_PERFMON_SAMPLE_DELAY__PERFMON_SAMPLE_DELAY__SHIFT 0x0
+#define RLC_SPM_TA_PERFMON_SAMPLE_DELAY__RESERVED__SHIFT 0x8
+#define RLC_SPM_TA_PERFMON_SAMPLE_DELAY__PERFMON_SAMPLE_DELAY_MASK 0x000000FFL
+#define RLC_SPM_TA_PERFMON_SAMPLE_DELAY__RESERVED_MASK 0xFFFFFF00L
+//RLC_SPM_TD_PERFMON_SAMPLE_DELAY
+#define RLC_SPM_TD_PERFMON_SAMPLE_DELAY__PERFMON_SAMPLE_DELAY__SHIFT 0x0
+#define RLC_SPM_TD_PERFMON_SAMPLE_DELAY__RESERVED__SHIFT 0x8
+#define RLC_SPM_TD_PERFMON_SAMPLE_DELAY__PERFMON_SAMPLE_DELAY_MASK 0x000000FFL
+#define RLC_SPM_TD_PERFMON_SAMPLE_DELAY__RESERVED_MASK 0xFFFFFF00L
+//RLC_SPM_VGT_PERFMON_SAMPLE_DELAY
+#define RLC_SPM_VGT_PERFMON_SAMPLE_DELAY__PERFMON_SAMPLE_DELAY__SHIFT 0x0
+#define RLC_SPM_VGT_PERFMON_SAMPLE_DELAY__RESERVED__SHIFT 0x8
+#define RLC_SPM_VGT_PERFMON_SAMPLE_DELAY__PERFMON_SAMPLE_DELAY_MASK 0x000000FFL
+#define RLC_SPM_VGT_PERFMON_SAMPLE_DELAY__RESERVED_MASK 0xFFFFFF00L
+//RLC_SPM_SPI_PERFMON_SAMPLE_DELAY
+#define RLC_SPM_SPI_PERFMON_SAMPLE_DELAY__PERFMON_SAMPLE_DELAY__SHIFT 0x0
+#define RLC_SPM_SPI_PERFMON_SAMPLE_DELAY__RESERVED__SHIFT 0x8
+#define RLC_SPM_SPI_PERFMON_SAMPLE_DELAY__PERFMON_SAMPLE_DELAY_MASK 0x000000FFL
+#define RLC_SPM_SPI_PERFMON_SAMPLE_DELAY__RESERVED_MASK 0xFFFFFF00L
+//RLC_SPM_SQG_PERFMON_SAMPLE_DELAY
+#define RLC_SPM_SQG_PERFMON_SAMPLE_DELAY__PERFMON_SAMPLE_DELAY__SHIFT 0x0
+#define RLC_SPM_SQG_PERFMON_SAMPLE_DELAY__RESERVED__SHIFT 0x8
+#define RLC_SPM_SQG_PERFMON_SAMPLE_DELAY__PERFMON_SAMPLE_DELAY_MASK 0x000000FFL
+#define RLC_SPM_SQG_PERFMON_SAMPLE_DELAY__RESERVED_MASK 0xFFFFFF00L
+//RLC_SPM_SX_PERFMON_SAMPLE_DELAY
+#define RLC_SPM_SX_PERFMON_SAMPLE_DELAY__PERFMON_SAMPLE_DELAY__SHIFT 0x0
+#define RLC_SPM_SX_PERFMON_SAMPLE_DELAY__RESERVED__SHIFT 0x8
+#define RLC_SPM_SX_PERFMON_SAMPLE_DELAY__PERFMON_SAMPLE_DELAY_MASK 0x000000FFL
+#define RLC_SPM_SX_PERFMON_SAMPLE_DELAY__RESERVED_MASK 0xFFFFFF00L
+//RLC_SPM_GLOBAL_MUXSEL_ADDR
+#define RLC_SPM_GLOBAL_MUXSEL_ADDR__PERFMON_SEL_ADDR__SHIFT 0x0
+#define RLC_SPM_GLOBAL_MUXSEL_ADDR__RESERVED__SHIFT 0x7
+#define RLC_SPM_GLOBAL_MUXSEL_ADDR__PERFMON_SEL_ADDR_MASK 0x0000007FL
+#define RLC_SPM_GLOBAL_MUXSEL_ADDR__RESERVED_MASK 0xFFFFFF80L
+//RLC_SPM_GLOBAL_MUXSEL_DATA
+#define RLC_SPM_GLOBAL_MUXSEL_DATA__PERFMON_SEL_DATA__SHIFT 0x0
+#define RLC_SPM_GLOBAL_MUXSEL_DATA__PERFMON_SEL_DATA_MASK 0xFFFFFFFFL
+//RLC_SPM_RING_RDPTR
+#define RLC_SPM_RING_RDPTR__PERFMON_RING_RDPTR__SHIFT 0x0
+#define RLC_SPM_RING_RDPTR__PERFMON_RING_RDPTR_MASK 0xFFFFFFFFL
+//RLC_SPM_SEGMENT_THRESHOLD
+#define RLC_SPM_SEGMENT_THRESHOLD__NUM_SEGMENT_THRESHOLD__SHIFT 0x0
+#define RLC_SPM_SEGMENT_THRESHOLD__NUM_SEGMENT_THRESHOLD_MASK 0xFFFFFFFFL
+//RLC_SPM_RMI_PERFMON_SAMPLE_DELAY
+#define RLC_SPM_RMI_PERFMON_SAMPLE_DELAY__PERFMON_SAMPLE_DELAY__SHIFT 0x0
+#define RLC_SPM_RMI_PERFMON_SAMPLE_DELAY__RESERVED__SHIFT 0x8
+#define RLC_SPM_RMI_PERFMON_SAMPLE_DELAY__PERFMON_SAMPLE_DELAY_MASK 0x000000FFL
+#define RLC_SPM_RMI_PERFMON_SAMPLE_DELAY__RESERVED_MASK 0xFFFFFF00L
+//RLC_SPM_PERFMON_SAMPLE_DELAY_MAX
+#define RLC_SPM_PERFMON_SAMPLE_DELAY_MAX__PERFMON_MAX_SAMPLE_DELAY__SHIFT 0x0
+#define RLC_SPM_PERFMON_SAMPLE_DELAY_MAX__RESERVED__SHIFT 0x8
+#define RLC_SPM_PERFMON_SAMPLE_DELAY_MAX__PERFMON_MAX_SAMPLE_DELAY_MASK 0x000000FFL
+#define RLC_SPM_PERFMON_SAMPLE_DELAY_MAX__RESERVED_MASK 0xFFFFFF00L
+//RLC_PERFMON_CNTL
+#define RLC_PERFMON_CNTL__PERFMON_STATE__SHIFT 0x0
+#define RLC_PERFMON_CNTL__PERFMON_SAMPLE_ENABLE__SHIFT 0xa
+#define RLC_PERFMON_CNTL__PERFMON_STATE_MASK 0x00000007L
+#define RLC_PERFMON_CNTL__PERFMON_SAMPLE_ENABLE_MASK 0x00000400L
+//RLC_PERFCOUNTER0_SELECT
+#define RLC_PERFCOUNTER0_SELECT__PERFCOUNTER_SELECT__SHIFT 0x0
+#define RLC_PERFCOUNTER0_SELECT__PERFCOUNTER_SELECT_MASK 0x00FFL
+//RLC_PERFCOUNTER1_SELECT
+#define RLC_PERFCOUNTER1_SELECT__PERFCOUNTER_SELECT__SHIFT 0x0
+#define RLC_PERFCOUNTER1_SELECT__PERFCOUNTER_SELECT_MASK 0x00FFL
+//RLC_GPU_IOV_PERF_CNT_CNTL
+#define RLC_GPU_IOV_PERF_CNT_CNTL__ENABLE__SHIFT 0x0
+#define RLC_GPU_IOV_PERF_CNT_CNTL__MODE_SELECT__SHIFT 0x1
+#define RLC_GPU_IOV_PERF_CNT_CNTL__RESET__SHIFT 0x2
+#define RLC_GPU_IOV_PERF_CNT_CNTL__RESERVED__SHIFT 0x3
+#define RLC_GPU_IOV_PERF_CNT_CNTL__ENABLE_MASK 0x00000001L
+#define RLC_GPU_IOV_PERF_CNT_CNTL__MODE_SELECT_MASK 0x00000002L
+#define RLC_GPU_IOV_PERF_CNT_CNTL__RESET_MASK 0x00000004L
+#define RLC_GPU_IOV_PERF_CNT_CNTL__RESERVED_MASK 0xFFFFFFF8L
+//RLC_GPU_IOV_PERF_CNT_WR_ADDR
+#define RLC_GPU_IOV_PERF_CNT_WR_ADDR__VFID__SHIFT 0x0
+#define RLC_GPU_IOV_PERF_CNT_WR_ADDR__CNT_ID__SHIFT 0x4
+#define RLC_GPU_IOV_PERF_CNT_WR_ADDR__RESERVED__SHIFT 0x6
+#define RLC_GPU_IOV_PERF_CNT_WR_ADDR__VFID_MASK 0x0000000FL
+#define RLC_GPU_IOV_PERF_CNT_WR_ADDR__CNT_ID_MASK 0x00000030L
+#define RLC_GPU_IOV_PERF_CNT_WR_ADDR__RESERVED_MASK 0xFFFFFFC0L
+//RLC_GPU_IOV_PERF_CNT_WR_DATA
+#define RLC_GPU_IOV_PERF_CNT_WR_DATA__DATA__SHIFT 0x0
+#define RLC_GPU_IOV_PERF_CNT_WR_DATA__DATA_MASK 0x0000000FL
+//RLC_GPU_IOV_PERF_CNT_RD_ADDR
+#define RLC_GPU_IOV_PERF_CNT_RD_ADDR__VFID__SHIFT 0x0
+#define RLC_GPU_IOV_PERF_CNT_RD_ADDR__CNT_ID__SHIFT 0x4
+#define RLC_GPU_IOV_PERF_CNT_RD_ADDR__RESERVED__SHIFT 0x6
+#define RLC_GPU_IOV_PERF_CNT_RD_ADDR__VFID_MASK 0x0000000FL
+#define RLC_GPU_IOV_PERF_CNT_RD_ADDR__CNT_ID_MASK 0x00000030L
+#define RLC_GPU_IOV_PERF_CNT_RD_ADDR__RESERVED_MASK 0xFFFFFFC0L
+//RLC_GPU_IOV_PERF_CNT_RD_DATA
+#define RLC_GPU_IOV_PERF_CNT_RD_DATA__DATA__SHIFT 0x0
+#define RLC_GPU_IOV_PERF_CNT_RD_DATA__DATA_MASK 0x0000000FL
+//RMI_PERFCOUNTER0_SELECT
+#define RMI_PERFCOUNTER0_SELECT__PERF_SEL__SHIFT 0x0
+#define RMI_PERFCOUNTER0_SELECT__PERF_SEL1__SHIFT 0xa
+#define RMI_PERFCOUNTER0_SELECT__CNTR_MODE__SHIFT 0x14
+#define RMI_PERFCOUNTER0_SELECT__PERF_MODE1__SHIFT 0x18
+#define RMI_PERFCOUNTER0_SELECT__PERF_MODE__SHIFT 0x1c
+#define RMI_PERFCOUNTER0_SELECT__PERF_SEL_MASK 0x000001FFL
+#define RMI_PERFCOUNTER0_SELECT__PERF_SEL1_MASK 0x0007FC00L
+#define RMI_PERFCOUNTER0_SELECT__CNTR_MODE_MASK 0x00F00000L
+#define RMI_PERFCOUNTER0_SELECT__PERF_MODE1_MASK 0x0F000000L
+#define RMI_PERFCOUNTER0_SELECT__PERF_MODE_MASK 0xF0000000L
+//RMI_PERFCOUNTER0_SELECT1
+#define RMI_PERFCOUNTER0_SELECT1__PERF_SEL2__SHIFT 0x0
+#define RMI_PERFCOUNTER0_SELECT1__PERF_SEL3__SHIFT 0xa
+#define RMI_PERFCOUNTER0_SELECT1__PERF_MODE3__SHIFT 0x18
+#define RMI_PERFCOUNTER0_SELECT1__PERF_MODE2__SHIFT 0x1c
+#define RMI_PERFCOUNTER0_SELECT1__PERF_SEL2_MASK 0x000001FFL
+#define RMI_PERFCOUNTER0_SELECT1__PERF_SEL3_MASK 0x0007FC00L
+#define RMI_PERFCOUNTER0_SELECT1__PERF_MODE3_MASK 0x0F000000L
+#define RMI_PERFCOUNTER0_SELECT1__PERF_MODE2_MASK 0xF0000000L
+//RMI_PERFCOUNTER1_SELECT
+#define RMI_PERFCOUNTER1_SELECT__PERF_SEL__SHIFT 0x0
+#define RMI_PERFCOUNTER1_SELECT__PERF_MODE__SHIFT 0x1c
+#define RMI_PERFCOUNTER1_SELECT__PERF_SEL_MASK 0x000001FFL
+#define RMI_PERFCOUNTER1_SELECT__PERF_MODE_MASK 0xF0000000L
+//RMI_PERFCOUNTER2_SELECT
+#define RMI_PERFCOUNTER2_SELECT__PERF_SEL__SHIFT 0x0
+#define RMI_PERFCOUNTER2_SELECT__PERF_SEL1__SHIFT 0xa
+#define RMI_PERFCOUNTER2_SELECT__CNTR_MODE__SHIFT 0x14
+#define RMI_PERFCOUNTER2_SELECT__PERF_MODE1__SHIFT 0x18
+#define RMI_PERFCOUNTER2_SELECT__PERF_MODE__SHIFT 0x1c
+#define RMI_PERFCOUNTER2_SELECT__PERF_SEL_MASK 0x000001FFL
+#define RMI_PERFCOUNTER2_SELECT__PERF_SEL1_MASK 0x0007FC00L
+#define RMI_PERFCOUNTER2_SELECT__CNTR_MODE_MASK 0x00F00000L
+#define RMI_PERFCOUNTER2_SELECT__PERF_MODE1_MASK 0x0F000000L
+#define RMI_PERFCOUNTER2_SELECT__PERF_MODE_MASK 0xF0000000L
+//RMI_PERFCOUNTER2_SELECT1
+#define RMI_PERFCOUNTER2_SELECT1__PERF_SEL2__SHIFT 0x0
+#define RMI_PERFCOUNTER2_SELECT1__PERF_SEL3__SHIFT 0xa
+#define RMI_PERFCOUNTER2_SELECT1__PERF_MODE3__SHIFT 0x18
+#define RMI_PERFCOUNTER2_SELECT1__PERF_MODE2__SHIFT 0x1c
+#define RMI_PERFCOUNTER2_SELECT1__PERF_SEL2_MASK 0x000001FFL
+#define RMI_PERFCOUNTER2_SELECT1__PERF_SEL3_MASK 0x0007FC00L
+#define RMI_PERFCOUNTER2_SELECT1__PERF_MODE3_MASK 0x0F000000L
+#define RMI_PERFCOUNTER2_SELECT1__PERF_MODE2_MASK 0xF0000000L
+//RMI_PERFCOUNTER3_SELECT
+#define RMI_PERFCOUNTER3_SELECT__PERF_SEL__SHIFT 0x0
+#define RMI_PERFCOUNTER3_SELECT__PERF_MODE__SHIFT 0x1c
+#define RMI_PERFCOUNTER3_SELECT__PERF_SEL_MASK 0x000001FFL
+#define RMI_PERFCOUNTER3_SELECT__PERF_MODE_MASK 0xF0000000L
+//RMI_PERF_COUNTER_CNTL
+#define RMI_PERF_COUNTER_CNTL__TRANS_BASED_PERF_EN_SEL__SHIFT 0x0
+#define RMI_PERF_COUNTER_CNTL__EVENT_BASED_PERF_EN_SEL__SHIFT 0x2
+#define RMI_PERF_COUNTER_CNTL__TC_PERF_EN_SEL__SHIFT 0x4
+#define RMI_PERF_COUNTER_CNTL__PERF_EVENT_WINDOW_MASK0__SHIFT 0x6
+#define RMI_PERF_COUNTER_CNTL__PERF_EVENT_WINDOW_MASK1__SHIFT 0x8
+#define RMI_PERF_COUNTER_CNTL__PERF_COUNTER_CID__SHIFT 0xa
+#define RMI_PERF_COUNTER_CNTL__PERF_COUNTER_VMID__SHIFT 0xe
+#define RMI_PERF_COUNTER_CNTL__PERF_COUNTER_BURST_LENGTH_THRESHOLD__SHIFT 0x13
+#define RMI_PERF_COUNTER_CNTL__PERF_SOFT_RESET__SHIFT 0x19
+#define RMI_PERF_COUNTER_CNTL__PERF_CNTR_SPM_SEL__SHIFT 0x1a
+#define RMI_PERF_COUNTER_CNTL__TRANS_BASED_PERF_EN_SEL_MASK 0x00000003L
+#define RMI_PERF_COUNTER_CNTL__EVENT_BASED_PERF_EN_SEL_MASK 0x0000000CL
+#define RMI_PERF_COUNTER_CNTL__TC_PERF_EN_SEL_MASK 0x00000030L
+#define RMI_PERF_COUNTER_CNTL__PERF_EVENT_WINDOW_MASK0_MASK 0x000000C0L
+#define RMI_PERF_COUNTER_CNTL__PERF_EVENT_WINDOW_MASK1_MASK 0x00000300L
+#define RMI_PERF_COUNTER_CNTL__PERF_COUNTER_CID_MASK 0x00003C00L
+#define RMI_PERF_COUNTER_CNTL__PERF_COUNTER_VMID_MASK 0x0007C000L
+#define RMI_PERF_COUNTER_CNTL__PERF_COUNTER_BURST_LENGTH_THRESHOLD_MASK 0x01F80000L
+#define RMI_PERF_COUNTER_CNTL__PERF_SOFT_RESET_MASK 0x02000000L
+#define RMI_PERF_COUNTER_CNTL__PERF_CNTR_SPM_SEL_MASK 0x04000000L
+
+
+// addressBlock: xcd0_gc_utcl2_atcl2pfcntldec
+//ATC_L2_PERFCOUNTER0_CFG
+#define ATC_L2_PERFCOUNTER0_CFG__PERF_SEL__SHIFT 0x0
+#define ATC_L2_PERFCOUNTER0_CFG__PERF_SEL_END__SHIFT 0x8
+#define ATC_L2_PERFCOUNTER0_CFG__PERF_MODE__SHIFT 0x18
+#define ATC_L2_PERFCOUNTER0_CFG__ENABLE__SHIFT 0x1c
+#define ATC_L2_PERFCOUNTER0_CFG__CLEAR__SHIFT 0x1d
+#define ATC_L2_PERFCOUNTER0_CFG__PERF_SEL_MASK 0x000000FFL
+#define ATC_L2_PERFCOUNTER0_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define ATC_L2_PERFCOUNTER0_CFG__PERF_MODE_MASK 0x0F000000L
+#define ATC_L2_PERFCOUNTER0_CFG__ENABLE_MASK 0x10000000L
+#define ATC_L2_PERFCOUNTER0_CFG__CLEAR_MASK 0x20000000L
+//ATC_L2_PERFCOUNTER1_CFG
+#define ATC_L2_PERFCOUNTER1_CFG__PERF_SEL__SHIFT 0x0
+#define ATC_L2_PERFCOUNTER1_CFG__PERF_SEL_END__SHIFT 0x8
+#define ATC_L2_PERFCOUNTER1_CFG__PERF_MODE__SHIFT 0x18
+#define ATC_L2_PERFCOUNTER1_CFG__ENABLE__SHIFT 0x1c
+#define ATC_L2_PERFCOUNTER1_CFG__CLEAR__SHIFT 0x1d
+#define ATC_L2_PERFCOUNTER1_CFG__PERF_SEL_MASK 0x000000FFL
+#define ATC_L2_PERFCOUNTER1_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define ATC_L2_PERFCOUNTER1_CFG__PERF_MODE_MASK 0x0F000000L
+#define ATC_L2_PERFCOUNTER1_CFG__ENABLE_MASK 0x10000000L
+#define ATC_L2_PERFCOUNTER1_CFG__CLEAR_MASK 0x20000000L
+//ATC_L2_PERFCOUNTER_RSLT_CNTL
+#define ATC_L2_PERFCOUNTER_RSLT_CNTL__PERF_COUNTER_SELECT__SHIFT 0x0
+#define ATC_L2_PERFCOUNTER_RSLT_CNTL__START_TRIGGER__SHIFT 0x8
+#define ATC_L2_PERFCOUNTER_RSLT_CNTL__STOP_TRIGGER__SHIFT 0x10
+#define ATC_L2_PERFCOUNTER_RSLT_CNTL__ENABLE_ANY__SHIFT 0x18
+#define ATC_L2_PERFCOUNTER_RSLT_CNTL__CLEAR_ALL__SHIFT 0x19
+#define ATC_L2_PERFCOUNTER_RSLT_CNTL__STOP_ALL_ON_SATURATE__SHIFT 0x1a
+#define ATC_L2_PERFCOUNTER_RSLT_CNTL__PERF_COUNTER_SELECT_MASK 0x0000000FL
+#define ATC_L2_PERFCOUNTER_RSLT_CNTL__START_TRIGGER_MASK 0x0000FF00L
+#define ATC_L2_PERFCOUNTER_RSLT_CNTL__STOP_TRIGGER_MASK 0x00FF0000L
+#define ATC_L2_PERFCOUNTER_RSLT_CNTL__ENABLE_ANY_MASK 0x01000000L
+#define ATC_L2_PERFCOUNTER_RSLT_CNTL__CLEAR_ALL_MASK 0x02000000L
+#define ATC_L2_PERFCOUNTER_RSLT_CNTL__STOP_ALL_ON_SATURATE_MASK 0x04000000L
+
+
+// addressBlock: xcd0_gc_utcl2_vml2pldec
+//MC_VM_L2_PERFCOUNTER0_CFG
+#define MC_VM_L2_PERFCOUNTER0_CFG__PERF_SEL__SHIFT 0x0
+#define MC_VM_L2_PERFCOUNTER0_CFG__PERF_SEL_END__SHIFT 0x8
+#define MC_VM_L2_PERFCOUNTER0_CFG__PERF_MODE__SHIFT 0x18
+#define MC_VM_L2_PERFCOUNTER0_CFG__ENABLE__SHIFT 0x1c
+#define MC_VM_L2_PERFCOUNTER0_CFG__CLEAR__SHIFT 0x1d
+#define MC_VM_L2_PERFCOUNTER0_CFG__PERF_SEL_MASK 0x000000FFL
+#define MC_VM_L2_PERFCOUNTER0_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define MC_VM_L2_PERFCOUNTER0_CFG__PERF_MODE_MASK 0x0F000000L
+#define MC_VM_L2_PERFCOUNTER0_CFG__ENABLE_MASK 0x10000000L
+#define MC_VM_L2_PERFCOUNTER0_CFG__CLEAR_MASK 0x20000000L
+//MC_VM_L2_PERFCOUNTER1_CFG
+#define MC_VM_L2_PERFCOUNTER1_CFG__PERF_SEL__SHIFT 0x0
+#define MC_VM_L2_PERFCOUNTER1_CFG__PERF_SEL_END__SHIFT 0x8
+#define MC_VM_L2_PERFCOUNTER1_CFG__PERF_MODE__SHIFT 0x18
+#define MC_VM_L2_PERFCOUNTER1_CFG__ENABLE__SHIFT 0x1c
+#define MC_VM_L2_PERFCOUNTER1_CFG__CLEAR__SHIFT 0x1d
+#define MC_VM_L2_PERFCOUNTER1_CFG__PERF_SEL_MASK 0x000000FFL
+#define MC_VM_L2_PERFCOUNTER1_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define MC_VM_L2_PERFCOUNTER1_CFG__PERF_MODE_MASK 0x0F000000L
+#define MC_VM_L2_PERFCOUNTER1_CFG__ENABLE_MASK 0x10000000L
+#define MC_VM_L2_PERFCOUNTER1_CFG__CLEAR_MASK 0x20000000L
+//MC_VM_L2_PERFCOUNTER2_CFG
+#define MC_VM_L2_PERFCOUNTER2_CFG__PERF_SEL__SHIFT 0x0
+#define MC_VM_L2_PERFCOUNTER2_CFG__PERF_SEL_END__SHIFT 0x8
+#define MC_VM_L2_PERFCOUNTER2_CFG__PERF_MODE__SHIFT 0x18
+#define MC_VM_L2_PERFCOUNTER2_CFG__ENABLE__SHIFT 0x1c
+#define MC_VM_L2_PERFCOUNTER2_CFG__CLEAR__SHIFT 0x1d
+#define MC_VM_L2_PERFCOUNTER2_CFG__PERF_SEL_MASK 0x000000FFL
+#define MC_VM_L2_PERFCOUNTER2_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define MC_VM_L2_PERFCOUNTER2_CFG__PERF_MODE_MASK 0x0F000000L
+#define MC_VM_L2_PERFCOUNTER2_CFG__ENABLE_MASK 0x10000000L
+#define MC_VM_L2_PERFCOUNTER2_CFG__CLEAR_MASK 0x20000000L
+//MC_VM_L2_PERFCOUNTER3_CFG
+#define MC_VM_L2_PERFCOUNTER3_CFG__PERF_SEL__SHIFT 0x0
+#define MC_VM_L2_PERFCOUNTER3_CFG__PERF_SEL_END__SHIFT 0x8
+#define MC_VM_L2_PERFCOUNTER3_CFG__PERF_MODE__SHIFT 0x18
+#define MC_VM_L2_PERFCOUNTER3_CFG__ENABLE__SHIFT 0x1c
+#define MC_VM_L2_PERFCOUNTER3_CFG__CLEAR__SHIFT 0x1d
+#define MC_VM_L2_PERFCOUNTER3_CFG__PERF_SEL_MASK 0x000000FFL
+#define MC_VM_L2_PERFCOUNTER3_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define MC_VM_L2_PERFCOUNTER3_CFG__PERF_MODE_MASK 0x0F000000L
+#define MC_VM_L2_PERFCOUNTER3_CFG__ENABLE_MASK 0x10000000L
+#define MC_VM_L2_PERFCOUNTER3_CFG__CLEAR_MASK 0x20000000L
+//MC_VM_L2_PERFCOUNTER4_CFG
+#define MC_VM_L2_PERFCOUNTER4_CFG__PERF_SEL__SHIFT 0x0
+#define MC_VM_L2_PERFCOUNTER4_CFG__PERF_SEL_END__SHIFT 0x8
+#define MC_VM_L2_PERFCOUNTER4_CFG__PERF_MODE__SHIFT 0x18
+#define MC_VM_L2_PERFCOUNTER4_CFG__ENABLE__SHIFT 0x1c
+#define MC_VM_L2_PERFCOUNTER4_CFG__CLEAR__SHIFT 0x1d
+#define MC_VM_L2_PERFCOUNTER4_CFG__PERF_SEL_MASK 0x000000FFL
+#define MC_VM_L2_PERFCOUNTER4_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define MC_VM_L2_PERFCOUNTER4_CFG__PERF_MODE_MASK 0x0F000000L
+#define MC_VM_L2_PERFCOUNTER4_CFG__ENABLE_MASK 0x10000000L
+#define MC_VM_L2_PERFCOUNTER4_CFG__CLEAR_MASK 0x20000000L
+//MC_VM_L2_PERFCOUNTER5_CFG
+#define MC_VM_L2_PERFCOUNTER5_CFG__PERF_SEL__SHIFT 0x0
+#define MC_VM_L2_PERFCOUNTER5_CFG__PERF_SEL_END__SHIFT 0x8
+#define MC_VM_L2_PERFCOUNTER5_CFG__PERF_MODE__SHIFT 0x18
+#define MC_VM_L2_PERFCOUNTER5_CFG__ENABLE__SHIFT 0x1c
+#define MC_VM_L2_PERFCOUNTER5_CFG__CLEAR__SHIFT 0x1d
+#define MC_VM_L2_PERFCOUNTER5_CFG__PERF_SEL_MASK 0x000000FFL
+#define MC_VM_L2_PERFCOUNTER5_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define MC_VM_L2_PERFCOUNTER5_CFG__PERF_MODE_MASK 0x0F000000L
+#define MC_VM_L2_PERFCOUNTER5_CFG__ENABLE_MASK 0x10000000L
+#define MC_VM_L2_PERFCOUNTER5_CFG__CLEAR_MASK 0x20000000L
+//MC_VM_L2_PERFCOUNTER6_CFG
+#define MC_VM_L2_PERFCOUNTER6_CFG__PERF_SEL__SHIFT 0x0
+#define MC_VM_L2_PERFCOUNTER6_CFG__PERF_SEL_END__SHIFT 0x8
+#define MC_VM_L2_PERFCOUNTER6_CFG__PERF_MODE__SHIFT 0x18
+#define MC_VM_L2_PERFCOUNTER6_CFG__ENABLE__SHIFT 0x1c
+#define MC_VM_L2_PERFCOUNTER6_CFG__CLEAR__SHIFT 0x1d
+#define MC_VM_L2_PERFCOUNTER6_CFG__PERF_SEL_MASK 0x000000FFL
+#define MC_VM_L2_PERFCOUNTER6_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define MC_VM_L2_PERFCOUNTER6_CFG__PERF_MODE_MASK 0x0F000000L
+#define MC_VM_L2_PERFCOUNTER6_CFG__ENABLE_MASK 0x10000000L
+#define MC_VM_L2_PERFCOUNTER6_CFG__CLEAR_MASK 0x20000000L
+//MC_VM_L2_PERFCOUNTER7_CFG
+#define MC_VM_L2_PERFCOUNTER7_CFG__PERF_SEL__SHIFT 0x0
+#define MC_VM_L2_PERFCOUNTER7_CFG__PERF_SEL_END__SHIFT 0x8
+#define MC_VM_L2_PERFCOUNTER7_CFG__PERF_MODE__SHIFT 0x18
+#define MC_VM_L2_PERFCOUNTER7_CFG__ENABLE__SHIFT 0x1c
+#define MC_VM_L2_PERFCOUNTER7_CFG__CLEAR__SHIFT 0x1d
+#define MC_VM_L2_PERFCOUNTER7_CFG__PERF_SEL_MASK 0x000000FFL
+#define MC_VM_L2_PERFCOUNTER7_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define MC_VM_L2_PERFCOUNTER7_CFG__PERF_MODE_MASK 0x0F000000L
+#define MC_VM_L2_PERFCOUNTER7_CFG__ENABLE_MASK 0x10000000L
+#define MC_VM_L2_PERFCOUNTER7_CFG__CLEAR_MASK 0x20000000L
+//MC_VM_L2_PERFCOUNTER_RSLT_CNTL
+#define MC_VM_L2_PERFCOUNTER_RSLT_CNTL__PERF_COUNTER_SELECT__SHIFT 0x0
+#define MC_VM_L2_PERFCOUNTER_RSLT_CNTL__START_TRIGGER__SHIFT 0x8
+#define MC_VM_L2_PERFCOUNTER_RSLT_CNTL__STOP_TRIGGER__SHIFT 0x10
+#define MC_VM_L2_PERFCOUNTER_RSLT_CNTL__ENABLE_ANY__SHIFT 0x18
+#define MC_VM_L2_PERFCOUNTER_RSLT_CNTL__CLEAR_ALL__SHIFT 0x19
+#define MC_VM_L2_PERFCOUNTER_RSLT_CNTL__STOP_ALL_ON_SATURATE__SHIFT 0x1a
+#define MC_VM_L2_PERFCOUNTER_RSLT_CNTL__PERF_COUNTER_SELECT_MASK 0x0000000FL
+#define MC_VM_L2_PERFCOUNTER_RSLT_CNTL__START_TRIGGER_MASK 0x0000FF00L
+#define MC_VM_L2_PERFCOUNTER_RSLT_CNTL__STOP_TRIGGER_MASK 0x00FF0000L
+#define MC_VM_L2_PERFCOUNTER_RSLT_CNTL__ENABLE_ANY_MASK 0x01000000L
+#define MC_VM_L2_PERFCOUNTER_RSLT_CNTL__CLEAR_ALL_MASK 0x02000000L
+#define MC_VM_L2_PERFCOUNTER_RSLT_CNTL__STOP_ALL_ON_SATURATE_MASK 0x04000000L
+
+
+// addressBlock: xcd0_gc_utcl2_l2tlbpldec
+//L2TLB_PERFCOUNTER0_CFG
+#define L2TLB_PERFCOUNTER0_CFG__PERF_SEL__SHIFT 0x0
+#define L2TLB_PERFCOUNTER0_CFG__PERF_SEL_END__SHIFT 0x8
+#define L2TLB_PERFCOUNTER0_CFG__PERF_MODE__SHIFT 0x18
+#define L2TLB_PERFCOUNTER0_CFG__ENABLE__SHIFT 0x1c
+#define L2TLB_PERFCOUNTER0_CFG__CLEAR__SHIFT 0x1d
+#define L2TLB_PERFCOUNTER0_CFG__PERF_SEL_MASK 0x000000FFL
+#define L2TLB_PERFCOUNTER0_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define L2TLB_PERFCOUNTER0_CFG__PERF_MODE_MASK 0x0F000000L
+#define L2TLB_PERFCOUNTER0_CFG__ENABLE_MASK 0x10000000L
+#define L2TLB_PERFCOUNTER0_CFG__CLEAR_MASK 0x20000000L
+//L2TLB_PERFCOUNTER1_CFG
+#define L2TLB_PERFCOUNTER1_CFG__PERF_SEL__SHIFT 0x0
+#define L2TLB_PERFCOUNTER1_CFG__PERF_SEL_END__SHIFT 0x8
+#define L2TLB_PERFCOUNTER1_CFG__PERF_MODE__SHIFT 0x18
+#define L2TLB_PERFCOUNTER1_CFG__ENABLE__SHIFT 0x1c
+#define L2TLB_PERFCOUNTER1_CFG__CLEAR__SHIFT 0x1d
+#define L2TLB_PERFCOUNTER1_CFG__PERF_SEL_MASK 0x000000FFL
+#define L2TLB_PERFCOUNTER1_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define L2TLB_PERFCOUNTER1_CFG__PERF_MODE_MASK 0x0F000000L
+#define L2TLB_PERFCOUNTER1_CFG__ENABLE_MASK 0x10000000L
+#define L2TLB_PERFCOUNTER1_CFG__CLEAR_MASK 0x20000000L
+//L2TLB_PERFCOUNTER2_CFG
+#define L2TLB_PERFCOUNTER2_CFG__PERF_SEL__SHIFT 0x0
+#define L2TLB_PERFCOUNTER2_CFG__PERF_SEL_END__SHIFT 0x8
+#define L2TLB_PERFCOUNTER2_CFG__PERF_MODE__SHIFT 0x18
+#define L2TLB_PERFCOUNTER2_CFG__ENABLE__SHIFT 0x1c
+#define L2TLB_PERFCOUNTER2_CFG__CLEAR__SHIFT 0x1d
+#define L2TLB_PERFCOUNTER2_CFG__PERF_SEL_MASK 0x000000FFL
+#define L2TLB_PERFCOUNTER2_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define L2TLB_PERFCOUNTER2_CFG__PERF_MODE_MASK 0x0F000000L
+#define L2TLB_PERFCOUNTER2_CFG__ENABLE_MASK 0x10000000L
+#define L2TLB_PERFCOUNTER2_CFG__CLEAR_MASK 0x20000000L
+//L2TLB_PERFCOUNTER3_CFG
+#define L2TLB_PERFCOUNTER3_CFG__PERF_SEL__SHIFT 0x0
+#define L2TLB_PERFCOUNTER3_CFG__PERF_SEL_END__SHIFT 0x8
+#define L2TLB_PERFCOUNTER3_CFG__PERF_MODE__SHIFT 0x18
+#define L2TLB_PERFCOUNTER3_CFG__ENABLE__SHIFT 0x1c
+#define L2TLB_PERFCOUNTER3_CFG__CLEAR__SHIFT 0x1d
+#define L2TLB_PERFCOUNTER3_CFG__PERF_SEL_MASK 0x000000FFL
+#define L2TLB_PERFCOUNTER3_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define L2TLB_PERFCOUNTER3_CFG__PERF_MODE_MASK 0x0F000000L
+#define L2TLB_PERFCOUNTER3_CFG__ENABLE_MASK 0x10000000L
+#define L2TLB_PERFCOUNTER3_CFG__CLEAR_MASK 0x20000000L
+//L2TLB_PERFCOUNTER_RSLT_CNTL
+#define L2TLB_PERFCOUNTER_RSLT_CNTL__PERF_COUNTER_SELECT__SHIFT 0x0
+#define L2TLB_PERFCOUNTER_RSLT_CNTL__START_TRIGGER__SHIFT 0x8
+#define L2TLB_PERFCOUNTER_RSLT_CNTL__STOP_TRIGGER__SHIFT 0x10
+#define L2TLB_PERFCOUNTER_RSLT_CNTL__ENABLE_ANY__SHIFT 0x18
+#define L2TLB_PERFCOUNTER_RSLT_CNTL__CLEAR_ALL__SHIFT 0x19
+#define L2TLB_PERFCOUNTER_RSLT_CNTL__STOP_ALL_ON_SATURATE__SHIFT 0x1a
+#define L2TLB_PERFCOUNTER_RSLT_CNTL__PERF_COUNTER_SELECT_MASK 0x0000000FL
+#define L2TLB_PERFCOUNTER_RSLT_CNTL__START_TRIGGER_MASK 0x0000FF00L
+#define L2TLB_PERFCOUNTER_RSLT_CNTL__STOP_TRIGGER_MASK 0x00FF0000L
+#define L2TLB_PERFCOUNTER_RSLT_CNTL__ENABLE_ANY_MASK 0x01000000L
+#define L2TLB_PERFCOUNTER_RSLT_CNTL__CLEAR_ALL_MASK 0x02000000L
+#define L2TLB_PERFCOUNTER_RSLT_CNTL__STOP_ALL_ON_SATURATE_MASK 0x04000000L
+
+
+// addressBlock: xcd0_gc_gdflldec
+//GDFLL_EDC_HYSTERESIS_CNTL
+#define GDFLL_EDC_HYSTERESIS_CNTL__MAX_HYSTERESIS__SHIFT 0x0
+#define GDFLL_EDC_HYSTERESIS_CNTL__MAX_HYSTERESIS_MASK 0x000000FFL
+//GDFLL_EDC_HYSTERESIS_STAT
+#define GDFLL_EDC_HYSTERESIS_STAT__HYSTERESIS_CNT__SHIFT 0x0
+#define GDFLL_EDC_HYSTERESIS_STAT__EDC__SHIFT 0x8
+#define GDFLL_EDC_HYSTERESIS_STAT__HYSTERESIS_CNT_MASK 0x000000FFL
+#define GDFLL_EDC_HYSTERESIS_STAT__EDC_MASK 0x00000100L
+
+
+// addressBlock: xcd0_gc_rlcpdec
+//RLC_CNTL
+#define RLC_CNTL__RLC_ENABLE_F32__SHIFT 0x0
+#define RLC_CNTL__FORCE_RETRY__SHIFT 0x1
+#define RLC_CNTL__READ_CACHE_DISABLE__SHIFT 0x2
+#define RLC_CNTL__RLC_STEP_F32__SHIFT 0x3
+#define RLC_CNTL__RESERVED__SHIFT 0x4
+#define RLC_CNTL__RLC_ENABLE_F32_MASK 0x00000001L
+#define RLC_CNTL__FORCE_RETRY_MASK 0x00000002L
+#define RLC_CNTL__READ_CACHE_DISABLE_MASK 0x00000004L
+#define RLC_CNTL__RLC_STEP_F32_MASK 0x00000008L
+#define RLC_CNTL__RESERVED_MASK 0xFFFFFFF0L
+//RLC_CGCG_CGLS_CTRL_2
+#define RLC_CGCG_CGLS_CTRL_2__CANE_STAT_BUSY_MASK__SHIFT 0x0
+#define RLC_CGCG_CGLS_CTRL_2__RESERVED__SHIFT 0x1
+#define RLC_CGCG_CGLS_CTRL_2__CANE_STAT_BUSY_MASK_MASK 0x00000001L
+#define RLC_CGCG_CGLS_CTRL_2__RESERVED_MASK 0xFFFFFFFEL
+//RLC_STAT
+#define RLC_STAT__RLC_BUSY__SHIFT 0x0
+#define RLC_STAT__RLC_SRM_BUSY__SHIFT 0x1
+#define RLC_STAT__RLC_GPM_BUSY__SHIFT 0x2
+#define RLC_STAT__RLC_SPM_BUSY__SHIFT 0x3
+#define RLC_STAT__MC_BUSY__SHIFT 0x4
+#define RLC_STAT__RLC_THREAD_0_BUSY__SHIFT 0x5
+#define RLC_STAT__RLC_THREAD_1_BUSY__SHIFT 0x6
+#define RLC_STAT__RLC_THREAD_2_BUSY__SHIFT 0x7
+#define RLC_STAT__RESERVED__SHIFT 0x8
+#define RLC_STAT__RLC_BUSY_MASK 0x00000001L
+#define RLC_STAT__RLC_SRM_BUSY_MASK 0x00000002L
+#define RLC_STAT__RLC_GPM_BUSY_MASK 0x00000004L
+#define RLC_STAT__RLC_SPM_BUSY_MASK 0x00000008L
+#define RLC_STAT__MC_BUSY_MASK 0x00000010L
+#define RLC_STAT__RLC_THREAD_0_BUSY_MASK 0x00000020L
+#define RLC_STAT__RLC_THREAD_1_BUSY_MASK 0x00000040L
+#define RLC_STAT__RLC_THREAD_2_BUSY_MASK 0x00000080L
+#define RLC_STAT__RESERVED_MASK 0xFFFFFF00L
+//RLC_SAFE_MODE
+#define RLC_SAFE_MODE__CMD__SHIFT 0x0
+#define RLC_SAFE_MODE__MESSAGE__SHIFT 0x1
+#define RLC_SAFE_MODE__RESERVED1__SHIFT 0x5
+#define RLC_SAFE_MODE__RESPONSE__SHIFT 0x8
+#define RLC_SAFE_MODE__RESERVED__SHIFT 0xc
+#define RLC_SAFE_MODE__CMD_MASK 0x00000001L
+#define RLC_SAFE_MODE__MESSAGE_MASK 0x0000001EL
+#define RLC_SAFE_MODE__RESERVED1_MASK 0x000000E0L
+#define RLC_SAFE_MODE__RESPONSE_MASK 0x00000F00L
+#define RLC_SAFE_MODE__RESERVED_MASK 0xFFFFF000L
+//RLC_MEM_SLP_CNTL
+#define RLC_MEM_SLP_CNTL__RLC_MEM_LS_EN__SHIFT 0x0
+#define RLC_MEM_SLP_CNTL__RLC_MEM_DS_EN__SHIFT 0x1
+#define RLC_MEM_SLP_CNTL__RESERVED__SHIFT 0x2
+#define RLC_MEM_SLP_CNTL__RLC_LS_DS_BUSY_OVERRIDE__SHIFT 0x7
+#define RLC_MEM_SLP_CNTL__RLC_MEM_LS_ON_DELAY__SHIFT 0x8
+#define RLC_MEM_SLP_CNTL__RLC_MEM_LS_OFF_DELAY__SHIFT 0x10
+#define RLC_MEM_SLP_CNTL__RESERVED1__SHIFT 0x18
+#define RLC_MEM_SLP_CNTL__RLC_MEM_LS_EN_MASK 0x00000001L
+#define RLC_MEM_SLP_CNTL__RLC_MEM_DS_EN_MASK 0x00000002L
+#define RLC_MEM_SLP_CNTL__RESERVED_MASK 0x0000007CL
+#define RLC_MEM_SLP_CNTL__RLC_LS_DS_BUSY_OVERRIDE_MASK 0x00000080L
+#define RLC_MEM_SLP_CNTL__RLC_MEM_LS_ON_DELAY_MASK 0x0000FF00L
+#define RLC_MEM_SLP_CNTL__RLC_MEM_LS_OFF_DELAY_MASK 0x00FF0000L
+#define RLC_MEM_SLP_CNTL__RESERVED1_MASK 0xFF000000L
+//SMU_RLC_RESPONSE
+#define SMU_RLC_RESPONSE__RESP__SHIFT 0x0
+#define SMU_RLC_RESPONSE__RESP_MASK 0xFFFFFFFFL
+//RLC_RLCV_SAFE_MODE
+#define RLC_RLCV_SAFE_MODE__CMD__SHIFT 0x0
+#define RLC_RLCV_SAFE_MODE__MESSAGE__SHIFT 0x1
+#define RLC_RLCV_SAFE_MODE__RESERVED1__SHIFT 0x5
+#define RLC_RLCV_SAFE_MODE__RESPONSE__SHIFT 0x8
+#define RLC_RLCV_SAFE_MODE__RESERVED__SHIFT 0xc
+#define RLC_RLCV_SAFE_MODE__CMD_MASK 0x00000001L
+#define RLC_RLCV_SAFE_MODE__MESSAGE_MASK 0x0000001EL
+#define RLC_RLCV_SAFE_MODE__RESERVED1_MASK 0x000000E0L
+#define RLC_RLCV_SAFE_MODE__RESPONSE_MASK 0x00000F00L
+#define RLC_RLCV_SAFE_MODE__RESERVED_MASK 0xFFFFF000L
+//RLC_SMU_SAFE_MODE
+#define RLC_SMU_SAFE_MODE__CMD__SHIFT 0x0
+#define RLC_SMU_SAFE_MODE__MESSAGE__SHIFT 0x1
+#define RLC_SMU_SAFE_MODE__RESERVED1__SHIFT 0x5
+#define RLC_SMU_SAFE_MODE__RESPONSE__SHIFT 0x8
+#define RLC_SMU_SAFE_MODE__RESERVED__SHIFT 0xc
+#define RLC_SMU_SAFE_MODE__CMD_MASK 0x00000001L
+#define RLC_SMU_SAFE_MODE__MESSAGE_MASK 0x0000001EL
+#define RLC_SMU_SAFE_MODE__RESERVED1_MASK 0x000000E0L
+#define RLC_SMU_SAFE_MODE__RESPONSE_MASK 0x00000F00L
+#define RLC_SMU_SAFE_MODE__RESERVED_MASK 0xFFFFF000L
+//RLC_RLCV_COMMAND
+#define RLC_RLCV_COMMAND__CMD__SHIFT 0x0
+#define RLC_RLCV_COMMAND__RESERVED__SHIFT 0x4
+#define RLC_RLCV_COMMAND__CMD_MASK 0x0000000FL
+#define RLC_RLCV_COMMAND__RESERVED_MASK 0xFFFFFFF0L
+//RLC_REFCLOCK_TIMESTAMP_LSB
+#define RLC_REFCLOCK_TIMESTAMP_LSB__TIMESTAMP_LSB__SHIFT 0x0
+#define RLC_REFCLOCK_TIMESTAMP_LSB__TIMESTAMP_LSB_MASK 0xFFFFFFFFL
+//RLC_REFCLOCK_TIMESTAMP_MSB
+#define RLC_REFCLOCK_TIMESTAMP_MSB__TIMESTAMP_MSB__SHIFT 0x0
+#define RLC_REFCLOCK_TIMESTAMP_MSB__TIMESTAMP_MSB_MASK 0xFFFFFFFFL
+//RLC_GPM_TIMER_INT_0
+#define RLC_GPM_TIMER_INT_0__TIMER__SHIFT 0x0
+#define RLC_GPM_TIMER_INT_0__TIMER_MASK 0xFFFFFFFFL
+//RLC_GPM_TIMER_INT_1
+#define RLC_GPM_TIMER_INT_1__TIMER__SHIFT 0x0
+#define RLC_GPM_TIMER_INT_1__TIMER_MASK 0xFFFFFFFFL
+//RLC_GPM_TIMER_INT_2
+#define RLC_GPM_TIMER_INT_2__TIMER__SHIFT 0x0
+#define RLC_GPM_TIMER_INT_2__TIMER_MASK 0xFFFFFFFFL
+//RLC_GPM_TIMER_CTRL
+#define RLC_GPM_TIMER_CTRL__TIMER_0_EN__SHIFT 0x0
+#define RLC_GPM_TIMER_CTRL__TIMER_1_EN__SHIFT 0x1
+#define RLC_GPM_TIMER_CTRL__TIMER_2_EN__SHIFT 0x2
+#define RLC_GPM_TIMER_CTRL__TIMER_3_EN__SHIFT 0x3
+#define RLC_GPM_TIMER_CTRL__RESERVED__SHIFT 0x4
+#define RLC_GPM_TIMER_CTRL__TIMER_0_EN_MASK 0x00000001L
+#define RLC_GPM_TIMER_CTRL__TIMER_1_EN_MASK 0x00000002L
+#define RLC_GPM_TIMER_CTRL__TIMER_2_EN_MASK 0x00000004L
+#define RLC_GPM_TIMER_CTRL__TIMER_3_EN_MASK 0x00000008L
+#define RLC_GPM_TIMER_CTRL__RESERVED_MASK 0xFFFFFFF0L
+//RLC_LB_CNTR_MAX
+#define RLC_LB_CNTR_MAX__LB_CNTR_MAX__SHIFT 0x0
+#define RLC_LB_CNTR_MAX__LB_CNTR_MAX_MASK 0xFFFFFFFFL
+//RLC_GPM_TIMER_STAT
+#define RLC_GPM_TIMER_STAT__TIMER_0_STAT__SHIFT 0x0
+#define RLC_GPM_TIMER_STAT__TIMER_1_STAT__SHIFT 0x1
+#define RLC_GPM_TIMER_STAT__TIMER_2_STAT__SHIFT 0x2
+#define RLC_GPM_TIMER_STAT__TIMER_3_STAT__SHIFT 0x3
+#define RLC_GPM_TIMER_STAT__TIMER_0_ENABLE_SYNC__SHIFT 0x8
+#define RLC_GPM_TIMER_STAT__TIMER_1_ENABLE_SYNC__SHIFT 0x9
+#define RLC_GPM_TIMER_STAT__TIMER_2_ENABLE_SYNC__SHIFT 0xa
+#define RLC_GPM_TIMER_STAT__TIMER_3_ENABLE_SYNC__SHIFT 0xb
+#define RLC_GPM_TIMER_STAT__RESERVED__SHIFT 0xc
+#define RLC_GPM_TIMER_STAT__TIMER_0_STAT_MASK 0x00000001L
+#define RLC_GPM_TIMER_STAT__TIMER_1_STAT_MASK 0x00000002L
+#define RLC_GPM_TIMER_STAT__TIMER_2_STAT_MASK 0x00000004L
+#define RLC_GPM_TIMER_STAT__TIMER_3_STAT_MASK 0x00000008L
+#define RLC_GPM_TIMER_STAT__TIMER_0_ENABLE_SYNC_MASK 0x00000100L
+#define RLC_GPM_TIMER_STAT__TIMER_1_ENABLE_SYNC_MASK 0x00000200L
+#define RLC_GPM_TIMER_STAT__TIMER_2_ENABLE_SYNC_MASK 0x00000400L
+#define RLC_GPM_TIMER_STAT__TIMER_3_ENABLE_SYNC_MASK 0x00000800L
+#define RLC_GPM_TIMER_STAT__RESERVED_MASK 0xFFFFF000L
+//RLC_GPM_TIMER_INT_3
+#define RLC_GPM_TIMER_INT_3__TIMER__SHIFT 0x0
+#define RLC_GPM_TIMER_INT_3__TIMER_MASK 0xFFFFFFFFL
+//RLC_SERDES_WR_NONCU_MASTER_MASK_1
+#define RLC_SERDES_WR_NONCU_MASTER_MASK_1__SE_MASTER_MASK_1__SHIFT 0x0
+#define RLC_SERDES_WR_NONCU_MASTER_MASK_1__GC_MASTER_MASK_1__SHIFT 0x10
+#define RLC_SERDES_WR_NONCU_MASTER_MASK_1__GC_GFX_MASTER_MASK_1__SHIFT 0x11
+#define RLC_SERDES_WR_NONCU_MASTER_MASK_1__TC0_1_MASTER_MASK__SHIFT 0x12
+#define RLC_SERDES_WR_NONCU_MASTER_MASK_1__RESERVED_1__SHIFT 0x13
+#define RLC_SERDES_WR_NONCU_MASTER_MASK_1__SPARE4_MASTER_MASK__SHIFT 0x14
+#define RLC_SERDES_WR_NONCU_MASTER_MASK_1__SPARE5_MASTER_MASK__SHIFT 0x15
+#define RLC_SERDES_WR_NONCU_MASTER_MASK_1__SPARE6_MASTER_MASK__SHIFT 0x16
+#define RLC_SERDES_WR_NONCU_MASTER_MASK_1__SPARE7_MASTER_MASK__SHIFT 0x17
+#define RLC_SERDES_WR_NONCU_MASTER_MASK_1__EA_1_MASTER_MASK__SHIFT 0x18
+#define RLC_SERDES_WR_NONCU_MASTER_MASK_1__RESERVED__SHIFT 0x19
+#define RLC_SERDES_WR_NONCU_MASTER_MASK_1__SE_MASTER_MASK_1_MASK 0x0000FFFFL
+#define RLC_SERDES_WR_NONCU_MASTER_MASK_1__GC_MASTER_MASK_1_MASK 0x00010000L
+#define RLC_SERDES_WR_NONCU_MASTER_MASK_1__GC_GFX_MASTER_MASK_1_MASK 0x00020000L
+#define RLC_SERDES_WR_NONCU_MASTER_MASK_1__TC0_1_MASTER_MASK_MASK 0x00040000L
+#define RLC_SERDES_WR_NONCU_MASTER_MASK_1__RESERVED_1_MASK 0x00080000L
+#define RLC_SERDES_WR_NONCU_MASTER_MASK_1__SPARE4_MASTER_MASK_MASK 0x00100000L
+#define RLC_SERDES_WR_NONCU_MASTER_MASK_1__SPARE5_MASTER_MASK_MASK 0x00200000L
+#define RLC_SERDES_WR_NONCU_MASTER_MASK_1__SPARE6_MASTER_MASK_MASK 0x00400000L
+#define RLC_SERDES_WR_NONCU_MASTER_MASK_1__SPARE7_MASTER_MASK_MASK 0x00800000L
+#define RLC_SERDES_WR_NONCU_MASTER_MASK_1__EA_1_MASTER_MASK_MASK 0x01000000L
+#define RLC_SERDES_WR_NONCU_MASTER_MASK_1__RESERVED_MASK 0xFE000000L
+//RLC_SERDES_NONCU_MASTER_BUSY_1
+#define RLC_SERDES_NONCU_MASTER_BUSY_1__SE_MASTER_BUSY_1__SHIFT 0x0
+#define RLC_SERDES_NONCU_MASTER_BUSY_1__GC_MASTER_BUSY_1__SHIFT 0x10
+#define RLC_SERDES_NONCU_MASTER_BUSY_1__GC_GFX_MASTER_BUSY_1__SHIFT 0x11
+#define RLC_SERDES_NONCU_MASTER_BUSY_1__TC0_MASTER_BUSY_1__SHIFT 0x12
+#define RLC_SERDES_NONCU_MASTER_BUSY_1__RESERVED_1__SHIFT 0x13
+#define RLC_SERDES_NONCU_MASTER_BUSY_1__SPARE4_MASTER_BUSY__SHIFT 0x14
+#define RLC_SERDES_NONCU_MASTER_BUSY_1__SPARE5_MASTER_BUSY__SHIFT 0x15
+#define RLC_SERDES_NONCU_MASTER_BUSY_1__SPARE6_MASTER_BUSY__SHIFT 0x16
+#define RLC_SERDES_NONCU_MASTER_BUSY_1__SPARE7_MASTER_BUSY__SHIFT 0x17
+#define RLC_SERDES_NONCU_MASTER_BUSY_1__EA_1_MASTER_BUSY__SHIFT 0x18
+#define RLC_SERDES_NONCU_MASTER_BUSY_1__RESERVED__SHIFT 0x19
+#define RLC_SERDES_NONCU_MASTER_BUSY_1__SE_MASTER_BUSY_1_MASK 0x0000FFFFL
+#define RLC_SERDES_NONCU_MASTER_BUSY_1__GC_MASTER_BUSY_1_MASK 0x00010000L
+#define RLC_SERDES_NONCU_MASTER_BUSY_1__GC_GFX_MASTER_BUSY_1_MASK 0x00020000L
+#define RLC_SERDES_NONCU_MASTER_BUSY_1__TC0_MASTER_BUSY_1_MASK 0x00040000L
+#define RLC_SERDES_NONCU_MASTER_BUSY_1__RESERVED_1_MASK 0x00080000L
+#define RLC_SERDES_NONCU_MASTER_BUSY_1__SPARE4_MASTER_BUSY_MASK 0x00100000L
+#define RLC_SERDES_NONCU_MASTER_BUSY_1__SPARE5_MASTER_BUSY_MASK 0x00200000L
+#define RLC_SERDES_NONCU_MASTER_BUSY_1__SPARE6_MASTER_BUSY_MASK 0x00400000L
+#define RLC_SERDES_NONCU_MASTER_BUSY_1__SPARE7_MASTER_BUSY_MASK 0x00800000L
+#define RLC_SERDES_NONCU_MASTER_BUSY_1__EA_1_MASTER_BUSY_MASK 0x01000000L
+#define RLC_SERDES_NONCU_MASTER_BUSY_1__RESERVED_MASK 0xFE000000L
+//RLC_INT_STAT
+#define RLC_INT_STAT__LAST_CP_RLC_INT_ID__SHIFT 0x0
+#define RLC_INT_STAT__CP_RLC_INT_PENDING__SHIFT 0x8
+#define RLC_INT_STAT__RESERVED__SHIFT 0x9
+#define RLC_INT_STAT__LAST_CP_RLC_INT_ID_MASK 0x000000FFL
+#define RLC_INT_STAT__CP_RLC_INT_PENDING_MASK 0x00000100L
+#define RLC_INT_STAT__RESERVED_MASK 0xFFFFFE00L
+//RLC_LB_CNTL
+#define RLC_LB_CNTL__LOAD_BALANCE_ENABLE__SHIFT 0x0
+#define RLC_LB_CNTL__LB_CNT_CP_BUSY__SHIFT 0x1
+#define RLC_LB_CNTL__LB_CNT_SPIM_ACTIVE__SHIFT 0x2
+#define RLC_LB_CNTL__LB_CNT_REG_INC__SHIFT 0x3
+#define RLC_LB_CNTL__CU_MASK_USED_OFF_HYST__SHIFT 0x4
+#define RLC_LB_CNTL__RESERVED__SHIFT 0xc
+#define RLC_LB_CNTL__LOAD_BALANCE_ENABLE_MASK 0x00000001L
+#define RLC_LB_CNTL__LB_CNT_CP_BUSY_MASK 0x00000002L
+#define RLC_LB_CNTL__LB_CNT_SPIM_ACTIVE_MASK 0x00000004L
+#define RLC_LB_CNTL__LB_CNT_REG_INC_MASK 0x00000008L
+#define RLC_LB_CNTL__CU_MASK_USED_OFF_HYST_MASK 0x00000FF0L
+#define RLC_LB_CNTL__RESERVED_MASK 0xFFFFF000L
+//RLC_MGCG_CTRL
+#define RLC_MGCG_CTRL__MGCG_EN__SHIFT 0x0
+#define RLC_MGCG_CTRL__SILICON_EN__SHIFT 0x1
+#define RLC_MGCG_CTRL__SIMULATION_EN__SHIFT 0x2
+#define RLC_MGCG_CTRL__ON_DELAY__SHIFT 0x3
+#define RLC_MGCG_CTRL__OFF_HYSTERESIS__SHIFT 0x7
+#define RLC_MGCG_CTRL__GC_CAC_MGCG_CLK_CNTL__SHIFT 0xf
+#define RLC_MGCG_CTRL__SE_CAC_MGCG_CLK_CNTL__SHIFT 0x10
+#define RLC_MGCG_CTRL__SPARE__SHIFT 0x11
+#define RLC_MGCG_CTRL__MGCG_EN_MASK 0x00000001L
+#define RLC_MGCG_CTRL__SILICON_EN_MASK 0x00000002L
+#define RLC_MGCG_CTRL__SIMULATION_EN_MASK 0x00000004L
+#define RLC_MGCG_CTRL__ON_DELAY_MASK 0x00000078L
+#define RLC_MGCG_CTRL__OFF_HYSTERESIS_MASK 0x00007F80L
+#define RLC_MGCG_CTRL__GC_CAC_MGCG_CLK_CNTL_MASK 0x00008000L
+#define RLC_MGCG_CTRL__SE_CAC_MGCG_CLK_CNTL_MASK 0x00010000L
+#define RLC_MGCG_CTRL__SPARE_MASK 0xFFFE0000L
+//RLC_LB_CNTR_INIT
+#define RLC_LB_CNTR_INIT__LB_CNTR_INIT__SHIFT 0x0
+#define RLC_LB_CNTR_INIT__LB_CNTR_INIT_MASK 0xFFFFFFFFL
+//RLC_LOAD_BALANCE_CNTR
+#define RLC_LOAD_BALANCE_CNTR__RLC_LOAD_BALANCE_CNTR__SHIFT 0x0
+#define RLC_LOAD_BALANCE_CNTR__RLC_LOAD_BALANCE_CNTR_MASK 0xFFFFFFFFL
+//RLC_JUMP_TABLE_RESTORE
+#define RLC_JUMP_TABLE_RESTORE__ADDR__SHIFT 0x0
+#define RLC_JUMP_TABLE_RESTORE__ADDR_MASK 0xFFFFFFFFL
+//RLC_PG_DELAY_2
+#define RLC_PG_DELAY_2__SERDES_TIMEOUT_VALUE__SHIFT 0x0
+#define RLC_PG_DELAY_2__SERDES_CMD_DELAY__SHIFT 0x8
+#define RLC_PG_DELAY_2__PERCU_TIMEOUT_VALUE__SHIFT 0x10
+#define RLC_PG_DELAY_2__SERDES_TIMEOUT_VALUE_MASK 0x000000FFL
+#define RLC_PG_DELAY_2__SERDES_CMD_DELAY_MASK 0x0000FF00L
+#define RLC_PG_DELAY_2__PERCU_TIMEOUT_VALUE_MASK 0xFFFF0000L
+//RLC_GPU_CLOCK_COUNT_LSB
+#define RLC_GPU_CLOCK_COUNT_LSB__GPU_CLOCKS_LSB__SHIFT 0x0
+#define RLC_GPU_CLOCK_COUNT_LSB__GPU_CLOCKS_LSB_MASK 0xFFFFFFFFL
+//RLC_GPU_CLOCK_COUNT_MSB
+#define RLC_GPU_CLOCK_COUNT_MSB__GPU_CLOCKS_MSB__SHIFT 0x0
+#define RLC_GPU_CLOCK_COUNT_MSB__GPU_CLOCKS_MSB_MASK 0xFFFFFFFFL
+//RLC_CAPTURE_GPU_CLOCK_COUNT
+#define RLC_CAPTURE_GPU_CLOCK_COUNT__CAPTURE__SHIFT 0x0
+#define RLC_CAPTURE_GPU_CLOCK_COUNT__RESERVED__SHIFT 0x1
+#define RLC_CAPTURE_GPU_CLOCK_COUNT__CAPTURE_MASK 0x00000001L
+#define RLC_CAPTURE_GPU_CLOCK_COUNT__RESERVED_MASK 0xFFFFFFFEL
+//RLC_UCODE_CNTL
+#define RLC_UCODE_CNTL__RLC_UCODE_FLAGS__SHIFT 0x0
+#define RLC_UCODE_CNTL__RLC_UCODE_FLAGS_MASK 0xFFFFFFFFL
+//RLC_GPM_THREAD_RESET
+#define RLC_GPM_THREAD_RESET__THREAD0_RESET__SHIFT 0x0
+#define RLC_GPM_THREAD_RESET__THREAD1_RESET__SHIFT 0x1
+#define RLC_GPM_THREAD_RESET__THREAD2_RESET__SHIFT 0x2
+#define RLC_GPM_THREAD_RESET__THREAD3_RESET__SHIFT 0x3
+#define RLC_GPM_THREAD_RESET__RESERVED__SHIFT 0x4
+#define RLC_GPM_THREAD_RESET__THREAD0_RESET_MASK 0x00000001L
+#define RLC_GPM_THREAD_RESET__THREAD1_RESET_MASK 0x00000002L
+#define RLC_GPM_THREAD_RESET__THREAD2_RESET_MASK 0x00000004L
+#define RLC_GPM_THREAD_RESET__THREAD3_RESET_MASK 0x00000008L
+#define RLC_GPM_THREAD_RESET__RESERVED_MASK 0xFFFFFFF0L
+//RLC_GPM_CP_DMA_COMPLETE_T0
+#define RLC_GPM_CP_DMA_COMPLETE_T0__DATA__SHIFT 0x0
+#define RLC_GPM_CP_DMA_COMPLETE_T0__RESERVED__SHIFT 0x1
+#define RLC_GPM_CP_DMA_COMPLETE_T0__DATA_MASK 0x00000001L
+#define RLC_GPM_CP_DMA_COMPLETE_T0__RESERVED_MASK 0xFFFFFFFEL
+//RLC_GPM_CP_DMA_COMPLETE_T1
+#define RLC_GPM_CP_DMA_COMPLETE_T1__DATA__SHIFT 0x0
+#define RLC_GPM_CP_DMA_COMPLETE_T1__RESERVED__SHIFT 0x1
+#define RLC_GPM_CP_DMA_COMPLETE_T1__DATA_MASK 0x00000001L
+#define RLC_GPM_CP_DMA_COMPLETE_T1__RESERVED_MASK 0xFFFFFFFEL
+//RLC_FIREWALL_VIOLATION
+#define RLC_FIREWALL_VIOLATION__ADDR__SHIFT 0x0
+#define RLC_FIREWALL_VIOLATION__ADDR_MASK 0xFFFFFFFFL
+//RLC_CLK_COUNT_GFXCLK_LSB
+#define RLC_CLK_COUNT_GFXCLK_LSB__COUNTER__SHIFT 0x0
+#define RLC_CLK_COUNT_GFXCLK_LSB__COUNTER_MASK 0xFFFFFFFFL
+//RLC_CLK_COUNT_GFXCLK_MSB
+#define RLC_CLK_COUNT_GFXCLK_MSB__COUNTER__SHIFT 0x0
+#define RLC_CLK_COUNT_GFXCLK_MSB__COUNTER_MASK 0xFFFFFFFFL
+//RLC_CLK_COUNT_REFCLK_LSB
+#define RLC_CLK_COUNT_REFCLK_LSB__COUNTER__SHIFT 0x0
+#define RLC_CLK_COUNT_REFCLK_LSB__COUNTER_MASK 0xFFFFFFFFL
+//RLC_CLK_COUNT_REFCLK_MSB
+#define RLC_CLK_COUNT_REFCLK_MSB__COUNTER__SHIFT 0x0
+#define RLC_CLK_COUNT_REFCLK_MSB__COUNTER_MASK 0xFFFFFFFFL
+//RLC_CLK_COUNT_CTRL
+#define RLC_CLK_COUNT_CTRL__GFXCLK_RUN__SHIFT 0x0
+#define RLC_CLK_COUNT_CTRL__GFXCLK_RESET__SHIFT 0x1
+#define RLC_CLK_COUNT_CTRL__GFXCLK_SAMPLE__SHIFT 0x2
+#define RLC_CLK_COUNT_CTRL__REFCLK_RUN__SHIFT 0x3
+#define RLC_CLK_COUNT_CTRL__REFCLK_RESET__SHIFT 0x4
+#define RLC_CLK_COUNT_CTRL__REFCLK_SAMPLE__SHIFT 0x5
+#define RLC_CLK_COUNT_CTRL__GFXCLK_RUN_MASK 0x00000001L
+#define RLC_CLK_COUNT_CTRL__GFXCLK_RESET_MASK 0x00000002L
+#define RLC_CLK_COUNT_CTRL__GFXCLK_SAMPLE_MASK 0x00000004L
+#define RLC_CLK_COUNT_CTRL__REFCLK_RUN_MASK 0x00000008L
+#define RLC_CLK_COUNT_CTRL__REFCLK_RESET_MASK 0x00000010L
+#define RLC_CLK_COUNT_CTRL__REFCLK_SAMPLE_MASK 0x00000020L
+//RLC_CLK_COUNT_STAT
+#define RLC_CLK_COUNT_STAT__GFXCLK_VALID__SHIFT 0x0
+#define RLC_CLK_COUNT_STAT__REFCLK_VALID__SHIFT 0x1
+#define RLC_CLK_COUNT_STAT__REFCLK_RUN_RESYNC__SHIFT 0x2
+#define RLC_CLK_COUNT_STAT__REFCLK_RESET_RESYNC__SHIFT 0x3
+#define RLC_CLK_COUNT_STAT__REFCLK_SAMPLE_RESYNC__SHIFT 0x4
+#define RLC_CLK_COUNT_STAT__RESERVED__SHIFT 0x5
+#define RLC_CLK_COUNT_STAT__GFXCLK_VALID_MASK 0x00000001L
+#define RLC_CLK_COUNT_STAT__REFCLK_VALID_MASK 0x00000002L
+#define RLC_CLK_COUNT_STAT__REFCLK_RUN_RESYNC_MASK 0x00000004L
+#define RLC_CLK_COUNT_STAT__REFCLK_RESET_RESYNC_MASK 0x00000008L
+#define RLC_CLK_COUNT_STAT__REFCLK_SAMPLE_RESYNC_MASK 0x00000010L
+#define RLC_CLK_COUNT_STAT__RESERVED_MASK 0xFFFFFFE0L
+//RLC_GPM_STAT
+#define RLC_GPM_STAT__RLC_BUSY__SHIFT 0x0
+#define RLC_GPM_STAT__GFX_POWER_STATUS__SHIFT 0x1
+#define RLC_GPM_STAT__GFX_CLOCK_STATUS__SHIFT 0x2
+#define RLC_GPM_STAT__GFX_LS_STATUS__SHIFT 0x3
+#define RLC_GPM_STAT__GFX_PIPELINE_POWER_STATUS__SHIFT 0x4
+#define RLC_GPM_STAT__CNTX_IDLE_BEING_PROCESSED__SHIFT 0x5
+#define RLC_GPM_STAT__CNTX_BUSY_BEING_PROCESSED__SHIFT 0x6
+#define RLC_GPM_STAT__GFX_IDLE_BEING_PROCESSED__SHIFT 0x7
+#define RLC_GPM_STAT__CMP_BUSY_BEING_PROCESSED__SHIFT 0x8
+#define RLC_GPM_STAT__SAVING_REGISTERS__SHIFT 0x9
+#define RLC_GPM_STAT__RESTORING_REGISTERS__SHIFT 0xa
+#define RLC_GPM_STAT__GFX3D_BLOCKS_CHANGING_POWER_STATE__SHIFT 0xb
+#define RLC_GPM_STAT__CMP_BLOCKS_CHANGING_POWER_STATE__SHIFT 0xc
+#define RLC_GPM_STAT__STATIC_CU_POWERING_UP__SHIFT 0xd
+#define RLC_GPM_STAT__STATIC_CU_POWERING_DOWN__SHIFT 0xe
+#define RLC_GPM_STAT__DYN_CU_POWERING_UP__SHIFT 0xf
+#define RLC_GPM_STAT__DYN_CU_POWERING_DOWN__SHIFT 0x10
+#define RLC_GPM_STAT__ABORTED_PD_SEQUENCE__SHIFT 0x11
+#define RLC_GPM_STAT__CMP_power_status__SHIFT 0x12
+#define RLC_GPM_STAT__RESERVED_1__SHIFT 0x13
+#define RLC_GPM_STAT__MGCG_OVERRIDE_STATUS__SHIFT 0x15
+#define RLC_GPM_STAT__RLC_EXEC_ROM_CODE__SHIFT 0x16
+#define RLC_GPM_STAT__FGCG_OVERRIDE_STATUS__SHIFT 0x17
+#define RLC_GPM_STAT__PG_ERROR_STATUS__SHIFT 0x18
+#define RLC_GPM_STAT__RLC_BUSY_MASK 0x00000001L
+#define RLC_GPM_STAT__GFX_POWER_STATUS_MASK 0x00000002L
+#define RLC_GPM_STAT__GFX_CLOCK_STATUS_MASK 0x00000004L
+#define RLC_GPM_STAT__GFX_LS_STATUS_MASK 0x00000008L
+#define RLC_GPM_STAT__GFX_PIPELINE_POWER_STATUS_MASK 0x00000010L
+#define RLC_GPM_STAT__CNTX_IDLE_BEING_PROCESSED_MASK 0x00000020L
+#define RLC_GPM_STAT__CNTX_BUSY_BEING_PROCESSED_MASK 0x00000040L
+#define RLC_GPM_STAT__GFX_IDLE_BEING_PROCESSED_MASK 0x00000080L
+#define RLC_GPM_STAT__CMP_BUSY_BEING_PROCESSED_MASK 0x00000100L
+#define RLC_GPM_STAT__SAVING_REGISTERS_MASK 0x00000200L
+#define RLC_GPM_STAT__RESTORING_REGISTERS_MASK 0x00000400L
+#define RLC_GPM_STAT__GFX3D_BLOCKS_CHANGING_POWER_STATE_MASK 0x00000800L
+#define RLC_GPM_STAT__CMP_BLOCKS_CHANGING_POWER_STATE_MASK 0x00001000L
+#define RLC_GPM_STAT__STATIC_CU_POWERING_UP_MASK 0x00002000L
+#define RLC_GPM_STAT__STATIC_CU_POWERING_DOWN_MASK 0x00004000L
+#define RLC_GPM_STAT__DYN_CU_POWERING_UP_MASK 0x00008000L
+#define RLC_GPM_STAT__DYN_CU_POWERING_DOWN_MASK 0x00010000L
+#define RLC_GPM_STAT__ABORTED_PD_SEQUENCE_MASK 0x00020000L
+#define RLC_GPM_STAT__CMP_power_status_MASK 0x00040000L
+#define RLC_GPM_STAT__RESERVED_1_MASK 0x00180000L
+#define RLC_GPM_STAT__MGCG_OVERRIDE_STATUS_MASK 0x00200000L
+#define RLC_GPM_STAT__RLC_EXEC_ROM_CODE_MASK 0x00400000L
+#define RLC_GPM_STAT__FGCG_OVERRIDE_STATUS_MASK 0x00800000L
+#define RLC_GPM_STAT__PG_ERROR_STATUS_MASK 0xFF000000L
+//RLC_GPU_CLOCK_32_RES_SEL
+#define RLC_GPU_CLOCK_32_RES_SEL__RES_SEL__SHIFT 0x0
+#define RLC_GPU_CLOCK_32_RES_SEL__RESERVED__SHIFT 0x6
+#define RLC_GPU_CLOCK_32_RES_SEL__RES_SEL_MASK 0x0000003FL
+#define RLC_GPU_CLOCK_32_RES_SEL__RESERVED_MASK 0xFFFFFFC0L
+//RLC_GPU_CLOCK_32
+#define RLC_GPU_CLOCK_32__GPU_CLOCK_32__SHIFT 0x0
+#define RLC_GPU_CLOCK_32__GPU_CLOCK_32_MASK 0xFFFFFFFFL
+//RLC_PG_CNTL
+#define RLC_PG_CNTL__GFX_POWER_GATING_ENABLE__SHIFT 0x0
+#define RLC_PG_CNTL__GFX_POWER_GATING_SRC__SHIFT 0x1
+#define RLC_PG_CNTL__DYN_PER_CU_PG_ENABLE__SHIFT 0x2
+#define RLC_PG_CNTL__STATIC_PER_CU_PG_ENABLE__SHIFT 0x3
+#define RLC_PG_CNTL__GFX_PIPELINE_PG_ENABLE__SHIFT 0x4
+#define RLC_PG_CNTL__RESERVED__SHIFT 0x5
+#define RLC_PG_CNTL__PG_OVERRIDE__SHIFT 0xe
+#define RLC_PG_CNTL__CP_PG_DISABLE__SHIFT 0xf
+#define RLC_PG_CNTL__CHUB_HANDSHAKE_ENABLE__SHIFT 0x10
+#define RLC_PG_CNTL__SMU_CLK_SLOWDOWN_ON_PU_ENABLE__SHIFT 0x11
+#define RLC_PG_CNTL__SMU_CLK_SLOWDOWN_ON_PD_ENABLE__SHIFT 0x12
+#define RLC_PG_CNTL__RESERVED1__SHIFT 0x13
+#define RLC_PG_CNTL__Ultra_Low_Voltage_Enable__SHIFT 0x15
+#define RLC_PG_CNTL__RESERVED2__SHIFT 0x16
+#define RLC_PG_CNTL__SMU_HANDSHAKE_DISABLE__SHIFT 0x17
+#define RLC_PG_CNTL__GFX_POWER_GATING_ENABLE_MASK 0x00000001L
+#define RLC_PG_CNTL__GFX_POWER_GATING_SRC_MASK 0x00000002L
+#define RLC_PG_CNTL__DYN_PER_CU_PG_ENABLE_MASK 0x00000004L
+#define RLC_PG_CNTL__STATIC_PER_CU_PG_ENABLE_MASK 0x00000008L
+#define RLC_PG_CNTL__GFX_PIPELINE_PG_ENABLE_MASK 0x00000010L
+#define RLC_PG_CNTL__RESERVED_MASK 0x00003FE0L
+#define RLC_PG_CNTL__PG_OVERRIDE_MASK 0x00004000L
+#define RLC_PG_CNTL__CP_PG_DISABLE_MASK 0x00008000L
+#define RLC_PG_CNTL__CHUB_HANDSHAKE_ENABLE_MASK 0x00010000L
+#define RLC_PG_CNTL__SMU_CLK_SLOWDOWN_ON_PU_ENABLE_MASK 0x00020000L
+#define RLC_PG_CNTL__SMU_CLK_SLOWDOWN_ON_PD_ENABLE_MASK 0x00040000L
+#define RLC_PG_CNTL__RESERVED1_MASK 0x00180000L
+#define RLC_PG_CNTL__Ultra_Low_Voltage_Enable_MASK 0x00200000L
+#define RLC_PG_CNTL__RESERVED2_MASK 0x00400000L
+#define RLC_PG_CNTL__SMU_HANDSHAKE_DISABLE_MASK 0x00800000L
+//RLC_GPM_THREAD_PRIORITY
+#define RLC_GPM_THREAD_PRIORITY__THREAD0_PRIORITY__SHIFT 0x0
+#define RLC_GPM_THREAD_PRIORITY__THREAD1_PRIORITY__SHIFT 0x8
+#define RLC_GPM_THREAD_PRIORITY__THREAD2_PRIORITY__SHIFT 0x10
+#define RLC_GPM_THREAD_PRIORITY__THREAD3_PRIORITY__SHIFT 0x18
+#define RLC_GPM_THREAD_PRIORITY__THREAD0_PRIORITY_MASK 0x000000FFL
+#define RLC_GPM_THREAD_PRIORITY__THREAD1_PRIORITY_MASK 0x0000FF00L
+#define RLC_GPM_THREAD_PRIORITY__THREAD2_PRIORITY_MASK 0x00FF0000L
+#define RLC_GPM_THREAD_PRIORITY__THREAD3_PRIORITY_MASK 0xFF000000L
+//RLC_GPM_THREAD_ENABLE
+#define RLC_GPM_THREAD_ENABLE__THREAD0_ENABLE__SHIFT 0x0
+#define RLC_GPM_THREAD_ENABLE__THREAD1_ENABLE__SHIFT 0x1
+#define RLC_GPM_THREAD_ENABLE__THREAD2_ENABLE__SHIFT 0x2
+#define RLC_GPM_THREAD_ENABLE__THREAD3_ENABLE__SHIFT 0x3
+#define RLC_GPM_THREAD_ENABLE__RESERVED__SHIFT 0x4
+#define RLC_GPM_THREAD_ENABLE__THREAD0_ENABLE_MASK 0x00000001L
+#define RLC_GPM_THREAD_ENABLE__THREAD1_ENABLE_MASK 0x00000002L
+#define RLC_GPM_THREAD_ENABLE__THREAD2_ENABLE_MASK 0x00000004L
+#define RLC_GPM_THREAD_ENABLE__THREAD3_ENABLE_MASK 0x00000008L
+#define RLC_GPM_THREAD_ENABLE__RESERVED_MASK 0xFFFFFFF0L
+//RLC_CGTT_MGCG_OVERRIDE
+#define RLC_CGTT_MGCG_OVERRIDE__RESERVED_0__SHIFT 0x0
+#define RLC_CGTT_MGCG_OVERRIDE__RLC_CGTT_SCLK_OVERRIDE__SHIFT 0x1
+#define RLC_CGTT_MGCG_OVERRIDE__GFXIP_MGCG_OVERRIDE__SHIFT 0x2
+#define RLC_CGTT_MGCG_OVERRIDE__GFXIP_CGCG_OVERRIDE__SHIFT 0x3
+#define RLC_CGTT_MGCG_OVERRIDE__GFXIP_CGLS_OVERRIDE__SHIFT 0x4
+#define RLC_CGTT_MGCG_OVERRIDE__GRBM_CGTT_SCLK_OVERRIDE__SHIFT 0x5
+#define RLC_CGTT_MGCG_OVERRIDE__GFXIP_MGLS_OVERRIDE__SHIFT 0x6
+#define RLC_CGTT_MGCG_OVERRIDE__GFXIP_GFX3D_CG_OVERRIDE__SHIFT 0x7
+#define RLC_CGTT_MGCG_OVERRIDE__GFXIP_FGCG_OVERRIDE__SHIFT 0x8
+#define RLC_CGTT_MGCG_OVERRIDE__GFXIP_REP_FGCG_OVERRIDE__SHIFT 0x9
+#define RLC_CGTT_MGCG_OVERRIDE__GFXIP_PERF_CLK_EN__SHIFT 0xa
+#define RLC_CGTT_MGCG_OVERRIDE__RESERVED_15_11__SHIFT 0xb
+#define RLC_CGTT_MGCG_OVERRIDE__ENABLE_CGTS_LEGACY__SHIFT 0x10
+#define RLC_CGTT_MGCG_OVERRIDE__RESERVED_31_17__SHIFT 0x11
+#define RLC_CGTT_MGCG_OVERRIDE__RESERVED_0_MASK 0x00000001L
+#define RLC_CGTT_MGCG_OVERRIDE__RLC_CGTT_SCLK_OVERRIDE_MASK 0x00000002L
+#define RLC_CGTT_MGCG_OVERRIDE__GFXIP_MGCG_OVERRIDE_MASK 0x00000004L
+#define RLC_CGTT_MGCG_OVERRIDE__GFXIP_CGCG_OVERRIDE_MASK 0x00000008L
+#define RLC_CGTT_MGCG_OVERRIDE__GFXIP_CGLS_OVERRIDE_MASK 0x00000010L
+#define RLC_CGTT_MGCG_OVERRIDE__GRBM_CGTT_SCLK_OVERRIDE_MASK 0x00000020L
+#define RLC_CGTT_MGCG_OVERRIDE__GFXIP_MGLS_OVERRIDE_MASK 0x00000040L
+#define RLC_CGTT_MGCG_OVERRIDE__GFXIP_GFX3D_CG_OVERRIDE_MASK 0x00000080L
+#define RLC_CGTT_MGCG_OVERRIDE__GFXIP_FGCG_OVERRIDE_MASK 0x00000100L
+#define RLC_CGTT_MGCG_OVERRIDE__GFXIP_REP_FGCG_OVERRIDE_MASK 0x00000200L
+#define RLC_CGTT_MGCG_OVERRIDE__GFXIP_PERF_CLK_EN_MASK 0x00000400L
+#define RLC_CGTT_MGCG_OVERRIDE__RESERVED_15_11_MASK 0x0000F800L
+#define RLC_CGTT_MGCG_OVERRIDE__ENABLE_CGTS_LEGACY_MASK 0x00010000L
+#define RLC_CGTT_MGCG_OVERRIDE__RESERVED_31_17_MASK 0xFFFE0000L
+//RLC_CGCG_CGLS_CTRL
+#define RLC_CGCG_CGLS_CTRL__CGCG_EN__SHIFT 0x0
+#define RLC_CGCG_CGLS_CTRL__CGLS_EN__SHIFT 0x1
+#define RLC_CGCG_CGLS_CTRL__CGLS_REP_COMPANSAT_DELAY__SHIFT 0x2
+#define RLC_CGCG_CGLS_CTRL__CGCG_GFX_IDLE_THRESHOLD__SHIFT 0x8
+#define RLC_CGCG_CGLS_CTRL__CGCG_CONTROLLER__SHIFT 0x1b
+#define RLC_CGCG_CGLS_CTRL__CGCG_REG_CTRL__SHIFT 0x1c
+#define RLC_CGCG_CGLS_CTRL__SLEEP_MODE__SHIFT 0x1d
+#define RLC_CGCG_CGLS_CTRL__SIM_SILICON_EN__SHIFT 0x1f
+#define RLC_CGCG_CGLS_CTRL__CGCG_EN_MASK 0x00000001L
+#define RLC_CGCG_CGLS_CTRL__CGLS_EN_MASK 0x00000002L
+#define RLC_CGCG_CGLS_CTRL__CGLS_REP_COMPANSAT_DELAY_MASK 0x000000FCL
+#define RLC_CGCG_CGLS_CTRL__CGCG_GFX_IDLE_THRESHOLD_MASK 0x07FFFF00L
+#define RLC_CGCG_CGLS_CTRL__CGCG_CONTROLLER_MASK 0x08000000L
+#define RLC_CGCG_CGLS_CTRL__CGCG_REG_CTRL_MASK 0x10000000L
+#define RLC_CGCG_CGLS_CTRL__SLEEP_MODE_MASK 0x60000000L
+#define RLC_CGCG_CGLS_CTRL__SIM_SILICON_EN_MASK 0x80000000L
+//RLC_CGCG_RAMP_CTRL
+#define RLC_CGCG_RAMP_CTRL__DOWN_DIV_START_UNIT__SHIFT 0x0
+#define RLC_CGCG_RAMP_CTRL__DOWN_DIV_STEP_UNIT__SHIFT 0x4
+#define RLC_CGCG_RAMP_CTRL__UP_DIV_START_UNIT__SHIFT 0x8
+#define RLC_CGCG_RAMP_CTRL__UP_DIV_STEP_UNIT__SHIFT 0xc
+#define RLC_CGCG_RAMP_CTRL__STEP_DELAY_CNT__SHIFT 0x10
+#define RLC_CGCG_RAMP_CTRL__STEP_DELAY_UNIT__SHIFT 0x1c
+#define RLC_CGCG_RAMP_CTRL__DOWN_DIV_START_UNIT_MASK 0x0000000FL
+#define RLC_CGCG_RAMP_CTRL__DOWN_DIV_STEP_UNIT_MASK 0x000000F0L
+#define RLC_CGCG_RAMP_CTRL__UP_DIV_START_UNIT_MASK 0x00000F00L
+#define RLC_CGCG_RAMP_CTRL__UP_DIV_STEP_UNIT_MASK 0x0000F000L
+#define RLC_CGCG_RAMP_CTRL__STEP_DELAY_CNT_MASK 0x0FFF0000L
+#define RLC_CGCG_RAMP_CTRL__STEP_DELAY_UNIT_MASK 0xF0000000L
+//RLC_DYN_PG_STATUS
+#define RLC_DYN_PG_STATUS__PG_STATUS_CU_MASK__SHIFT 0x0
+#define RLC_DYN_PG_STATUS__PG_STATUS_CU_MASK_MASK 0xFFFFFFFFL
+//RLC_DYN_PG_REQUEST
+#define RLC_DYN_PG_REQUEST__PG_REQUEST_CU_MASK__SHIFT 0x0
+#define RLC_DYN_PG_REQUEST__PG_REQUEST_CU_MASK_MASK 0xFFFFFFFFL
+//RLC_PG_DELAY
+#define RLC_PG_DELAY__POWER_UP_DELAY__SHIFT 0x0
+#define RLC_PG_DELAY__POWER_DOWN_DELAY__SHIFT 0x8
+#define RLC_PG_DELAY__CMD_PROPAGATE_DELAY__SHIFT 0x10
+#define RLC_PG_DELAY__MEM_SLEEP_DELAY__SHIFT 0x18
+#define RLC_PG_DELAY__POWER_UP_DELAY_MASK 0x000000FFL
+#define RLC_PG_DELAY__POWER_DOWN_DELAY_MASK 0x0000FF00L
+#define RLC_PG_DELAY__CMD_PROPAGATE_DELAY_MASK 0x00FF0000L
+#define RLC_PG_DELAY__MEM_SLEEP_DELAY_MASK 0xFF000000L
+//RLC_CU_STATUS
+#define RLC_CU_STATUS__WORK_PENDING__SHIFT 0x0
+#define RLC_CU_STATUS__WORK_PENDING_MASK 0xFFFFFFFFL
+//RLC_LB_INIT_CU_MASK
+#define RLC_LB_INIT_CU_MASK__INIT_CU_MASK__SHIFT 0x0
+#define RLC_LB_INIT_CU_MASK__INIT_CU_MASK_MASK 0xFFFFFFFFL
+//RLC_LB_ALWAYS_ACTIVE_CU_MASK
+#define RLC_LB_ALWAYS_ACTIVE_CU_MASK__ALWAYS_ACTIVE_CU_MASK__SHIFT 0x0
+#define RLC_LB_ALWAYS_ACTIVE_CU_MASK__ALWAYS_ACTIVE_CU_MASK_MASK 0xFFFFFFFFL
+//RLC_LB_PARAMS
+#define RLC_LB_PARAMS__SKIP_L2_CHECK__SHIFT 0x0
+#define RLC_LB_PARAMS__FIFO_SAMPLES__SHIFT 0x1
+#define RLC_LB_PARAMS__PG_IDLE_SAMPLES__SHIFT 0x8
+#define RLC_LB_PARAMS__PG_IDLE_SAMPLE_INTERVAL__SHIFT 0x10
+#define RLC_LB_PARAMS__SKIP_L2_CHECK_MASK 0x00000001L
+#define RLC_LB_PARAMS__FIFO_SAMPLES_MASK 0x000000FEL
+#define RLC_LB_PARAMS__PG_IDLE_SAMPLES_MASK 0x0000FF00L
+#define RLC_LB_PARAMS__PG_IDLE_SAMPLE_INTERVAL_MASK 0xFFFF0000L
+//RLC_THREAD1_DELAY
+#define RLC_THREAD1_DELAY__CU_IDEL_DELAY__SHIFT 0x0
+#define RLC_THREAD1_DELAY__LBPW_INNER_LOOP_DELAY__SHIFT 0x8
+#define RLC_THREAD1_DELAY__LBPW_OUTER_LOOP_DELAY__SHIFT 0x10
+#define RLC_THREAD1_DELAY__SPARE__SHIFT 0x18
+#define RLC_THREAD1_DELAY__CU_IDEL_DELAY_MASK 0x000000FFL
+#define RLC_THREAD1_DELAY__LBPW_INNER_LOOP_DELAY_MASK 0x0000FF00L
+#define RLC_THREAD1_DELAY__LBPW_OUTER_LOOP_DELAY_MASK 0x00FF0000L
+#define RLC_THREAD1_DELAY__SPARE_MASK 0xFF000000L
+//RLC_PG_ALWAYS_ON_CU_MASK
+#define RLC_PG_ALWAYS_ON_CU_MASK__AON_CU_MASK__SHIFT 0x0
+#define RLC_PG_ALWAYS_ON_CU_MASK__AON_CU_MASK_MASK 0xFFFFFFFFL
+//RLC_MAX_PG_CU
+#define RLC_MAX_PG_CU__MAX_POWERED_UP_CU__SHIFT 0x0
+#define RLC_MAX_PG_CU__SPARE__SHIFT 0x8
+#define RLC_MAX_PG_CU__MAX_POWERED_UP_CU_MASK 0x000000FFL
+#define RLC_MAX_PG_CU__SPARE_MASK 0xFFFFFF00L
+//RLC_AUTO_PG_CTRL
+#define RLC_AUTO_PG_CTRL__AUTO_PG_EN__SHIFT 0x0
+#define RLC_AUTO_PG_CTRL__AUTO_GRBM_REG_SAVE_ON_IDLE_EN__SHIFT 0x1
+#define RLC_AUTO_PG_CTRL__AUTO_WAKE_UP_EN__SHIFT 0x2
+#define RLC_AUTO_PG_CTRL__GRBM_REG_SAVE_GFX_IDLE_THRESHOLD__SHIFT 0x3
+#define RLC_AUTO_PG_CTRL__PG_AFTER_GRBM_REG_SAVE_THRESHOLD__SHIFT 0x13
+#define RLC_AUTO_PG_CTRL__AUTO_PG_EN_MASK 0x00000001L
+#define RLC_AUTO_PG_CTRL__AUTO_GRBM_REG_SAVE_ON_IDLE_EN_MASK 0x00000002L
+#define RLC_AUTO_PG_CTRL__AUTO_WAKE_UP_EN_MASK 0x00000004L
+#define RLC_AUTO_PG_CTRL__GRBM_REG_SAVE_GFX_IDLE_THRESHOLD_MASK 0x0007FFF8L
+#define RLC_AUTO_PG_CTRL__PG_AFTER_GRBM_REG_SAVE_THRESHOLD_MASK 0xFFF80000L
+//RLC_SMU_GRBM_REG_SAVE_CTRL
+#define RLC_SMU_GRBM_REG_SAVE_CTRL__START_GRBM_REG_SAVE__SHIFT 0x0
+#define RLC_SMU_GRBM_REG_SAVE_CTRL__SPARE__SHIFT 0x1
+#define RLC_SMU_GRBM_REG_SAVE_CTRL__START_GRBM_REG_SAVE_MASK 0x00000001L
+#define RLC_SMU_GRBM_REG_SAVE_CTRL__SPARE_MASK 0xFFFFFFFEL
+//RLC_SERDES_RD_PENDING
+#define RLC_SERDES_RD_PENDING__RD_PENDING__SHIFT 0x0
+#define RLC_SERDES_RD_PENDING__RD_PENDING_MASK 0x00000001L
+//RLC_SERDES_RD_MASTER_INDEX
+#define RLC_SERDES_RD_MASTER_INDEX__CU_ID__SHIFT 0x0
+#define RLC_SERDES_RD_MASTER_INDEX__SH_ID__SHIFT 0x4
+#define RLC_SERDES_RD_MASTER_INDEX__SE_ID__SHIFT 0x6
+#define RLC_SERDES_RD_MASTER_INDEX__SE_NONCU_ID__SHIFT 0x9
+#define RLC_SERDES_RD_MASTER_INDEX__SE_NONCU__SHIFT 0xc
+#define RLC_SERDES_RD_MASTER_INDEX__NON_SE__SHIFT 0xd
+#define RLC_SERDES_RD_MASTER_INDEX__DATA_REG_ID__SHIFT 0x11
+#define RLC_SERDES_RD_MASTER_INDEX__SPARE__SHIFT 0x13
+#define RLC_SERDES_RD_MASTER_INDEX__CU_ID_MASK 0x0000000FL
+#define RLC_SERDES_RD_MASTER_INDEX__SH_ID_MASK 0x00000030L
+#define RLC_SERDES_RD_MASTER_INDEX__SE_ID_MASK 0x000001C0L
+#define RLC_SERDES_RD_MASTER_INDEX__SE_NONCU_ID_MASK 0x00000E00L
+#define RLC_SERDES_RD_MASTER_INDEX__SE_NONCU_MASK 0x00001000L
+#define RLC_SERDES_RD_MASTER_INDEX__NON_SE_MASK 0x0001E000L
+#define RLC_SERDES_RD_MASTER_INDEX__DATA_REG_ID_MASK 0x00060000L
+#define RLC_SERDES_RD_MASTER_INDEX__SPARE_MASK 0xFFF80000L
+//RLC_SERDES_RD_DATA_0
+#define RLC_SERDES_RD_DATA_0__DATA__SHIFT 0x0
+#define RLC_SERDES_RD_DATA_0__DATA_MASK 0xFFFFFFFFL
+//RLC_SERDES_RD_DATA_1
+#define RLC_SERDES_RD_DATA_1__DATA__SHIFT 0x0
+#define RLC_SERDES_RD_DATA_1__DATA_MASK 0xFFFFFFFFL
+//RLC_SERDES_RD_DATA_2
+#define RLC_SERDES_RD_DATA_2__DATA__SHIFT 0x0
+#define RLC_SERDES_RD_DATA_2__DATA_MASK 0xFFFFFFFFL
+//RLC_SERDES_WR_CU_MASTER_MASK
+#define RLC_SERDES_WR_CU_MASTER_MASK__MASTER_MASK__SHIFT 0x0
+#define RLC_SERDES_WR_CU_MASTER_MASK__MASTER_MASK_MASK 0xFFFFFFFFL
+//RLC_SERDES_WR_NONCU_MASTER_MASK
+#define RLC_SERDES_WR_NONCU_MASTER_MASK__SE_MASTER_MASK__SHIFT 0x0
+#define RLC_SERDES_WR_NONCU_MASTER_MASK__GC_MASTER_MASK__SHIFT 0x10
+#define RLC_SERDES_WR_NONCU_MASTER_MASK__GC_GFX_MASTER_MASK__SHIFT 0x11
+#define RLC_SERDES_WR_NONCU_MASTER_MASK__TC0_MASTER_MASK__SHIFT 0x12
+#define RLC_SERDES_WR_NONCU_MASTER_MASK__TC1_MASTER_MASK__SHIFT 0x13
+#define RLC_SERDES_WR_NONCU_MASTER_MASK__SPARE0_MASTER_MASK__SHIFT 0x14
+#define RLC_SERDES_WR_NONCU_MASTER_MASK__SPARE1_MASTER_MASK__SHIFT 0x15
+#define RLC_SERDES_WR_NONCU_MASTER_MASK__SPARE2_MASTER_MASK__SHIFT 0x16
+#define RLC_SERDES_WR_NONCU_MASTER_MASK__SPARE3_MASTER_MASK__SHIFT 0x17
+#define RLC_SERDES_WR_NONCU_MASTER_MASK__EA_0_MASTER_MASK__SHIFT 0x18
+#define RLC_SERDES_WR_NONCU_MASTER_MASK__TC2_MASTER_MASK__SHIFT 0x19
+#define RLC_SERDES_WR_NONCU_MASTER_MASK__RESERVED__SHIFT 0x1a
+#define RLC_SERDES_WR_NONCU_MASTER_MASK__SE_MASTER_MASK_MASK 0x0000FFFFL
+#define RLC_SERDES_WR_NONCU_MASTER_MASK__GC_MASTER_MASK_MASK 0x00010000L
+#define RLC_SERDES_WR_NONCU_MASTER_MASK__GC_GFX_MASTER_MASK_MASK 0x00020000L
+#define RLC_SERDES_WR_NONCU_MASTER_MASK__TC0_MASTER_MASK_MASK 0x00040000L
+#define RLC_SERDES_WR_NONCU_MASTER_MASK__TC1_MASTER_MASK_MASK 0x00080000L
+#define RLC_SERDES_WR_NONCU_MASTER_MASK__SPARE0_MASTER_MASK_MASK 0x00100000L
+#define RLC_SERDES_WR_NONCU_MASTER_MASK__SPARE1_MASTER_MASK_MASK 0x00200000L
+#define RLC_SERDES_WR_NONCU_MASTER_MASK__SPARE2_MASTER_MASK_MASK 0x00400000L
+#define RLC_SERDES_WR_NONCU_MASTER_MASK__SPARE3_MASTER_MASK_MASK 0x00800000L
+#define RLC_SERDES_WR_NONCU_MASTER_MASK__EA_0_MASTER_MASK_MASK 0x01000000L
+#define RLC_SERDES_WR_NONCU_MASTER_MASK__TC2_MASTER_MASK_MASK 0x02000000L
+#define RLC_SERDES_WR_NONCU_MASTER_MASK__RESERVED_MASK 0xFC000000L
+//RLC_SERDES_WR_CTRL
+#define RLC_SERDES_WR_CTRL__BPM_ADDR__SHIFT 0x0
+#define RLC_SERDES_WR_CTRL__POWER_DOWN__SHIFT 0x8
+#define RLC_SERDES_WR_CTRL__POWER_UP__SHIFT 0x9
+#define RLC_SERDES_WR_CTRL__P1_SELECT__SHIFT 0xa
+#define RLC_SERDES_WR_CTRL__P2_SELECT__SHIFT 0xb
+#define RLC_SERDES_WR_CTRL__WRITE_COMMAND__SHIFT 0xc
+#define RLC_SERDES_WR_CTRL__READ_COMMAND__SHIFT 0xd
+#define RLC_SERDES_WR_CTRL__RDDATA_RESET__SHIFT 0xe
+#define RLC_SERDES_WR_CTRL__SHORT_FORMAT__SHIFT 0xf
+#define RLC_SERDES_WR_CTRL__BPM_DATA__SHIFT 0x10
+#define RLC_SERDES_WR_CTRL__SRBM_OVERRIDE__SHIFT 0x1a
+#define RLC_SERDES_WR_CTRL__RSVD_BPM_ADDR__SHIFT 0x1b
+#define RLC_SERDES_WR_CTRL__REG_ADDR__SHIFT 0x1c
+#define RLC_SERDES_WR_CTRL__BPM_ADDR_MASK 0x000000FFL
+#define RLC_SERDES_WR_CTRL__POWER_DOWN_MASK 0x00000100L
+#define RLC_SERDES_WR_CTRL__POWER_UP_MASK 0x00000200L
+#define RLC_SERDES_WR_CTRL__P1_SELECT_MASK 0x00000400L
+#define RLC_SERDES_WR_CTRL__P2_SELECT_MASK 0x00000800L
+#define RLC_SERDES_WR_CTRL__WRITE_COMMAND_MASK 0x00001000L
+#define RLC_SERDES_WR_CTRL__READ_COMMAND_MASK 0x00002000L
+#define RLC_SERDES_WR_CTRL__RDDATA_RESET_MASK 0x00004000L
+#define RLC_SERDES_WR_CTRL__SHORT_FORMAT_MASK 0x00008000L
+#define RLC_SERDES_WR_CTRL__BPM_DATA_MASK 0x03FF0000L
+#define RLC_SERDES_WR_CTRL__SRBM_OVERRIDE_MASK 0x04000000L
+#define RLC_SERDES_WR_CTRL__RSVD_BPM_ADDR_MASK 0x08000000L
+#define RLC_SERDES_WR_CTRL__REG_ADDR_MASK 0xF0000000L
+//RLC_SERDES_WR_DATA
+#define RLC_SERDES_WR_DATA__DATA__SHIFT 0x0
+#define RLC_SERDES_WR_DATA__DATA_MASK 0xFFFFFFFFL
+//RLC_SERDES_CU_MASTER_BUSY
+#define RLC_SERDES_CU_MASTER_BUSY__BUSY_BUSY__SHIFT 0x0
+#define RLC_SERDES_CU_MASTER_BUSY__BUSY_BUSY_MASK 0xFFFFFFFFL
+//RLC_SERDES_NONCU_MASTER_BUSY
+#define RLC_SERDES_NONCU_MASTER_BUSY__SE_MASTER_BUSY__SHIFT 0x0
+#define RLC_SERDES_NONCU_MASTER_BUSY__GC_MASTER_BUSY__SHIFT 0x10
+#define RLC_SERDES_NONCU_MASTER_BUSY__GC_GFX_MASTER_BUSY__SHIFT 0x11
+#define RLC_SERDES_NONCU_MASTER_BUSY__TC0_MASTER_BUSY__SHIFT 0x12
+#define RLC_SERDES_NONCU_MASTER_BUSY__TC1_MASTER_BUSY__SHIFT 0x13
+#define RLC_SERDES_NONCU_MASTER_BUSY__SPARE0_MASTER_BUSY__SHIFT 0x14
+#define RLC_SERDES_NONCU_MASTER_BUSY__SPARE1_MASTER_BUSY__SHIFT 0x15
+#define RLC_SERDES_NONCU_MASTER_BUSY__SPARE2_MASTER_BUSY__SHIFT 0x16
+#define RLC_SERDES_NONCU_MASTER_BUSY__SPARE3_MASTER_BUSY__SHIFT 0x17
+#define RLC_SERDES_NONCU_MASTER_BUSY__EA_0_MASTER_BUSY__SHIFT 0x18
+#define RLC_SERDES_NONCU_MASTER_BUSY__TC2_MASTER_BUSY__SHIFT 0x19
+#define RLC_SERDES_NONCU_MASTER_BUSY__RESERVED__SHIFT 0x1a
+#define RLC_SERDES_NONCU_MASTER_BUSY__SE_MASTER_BUSY_MASK 0x0000FFFFL
+#define RLC_SERDES_NONCU_MASTER_BUSY__GC_MASTER_BUSY_MASK 0x00010000L
+#define RLC_SERDES_NONCU_MASTER_BUSY__GC_GFX_MASTER_BUSY_MASK 0x00020000L
+#define RLC_SERDES_NONCU_MASTER_BUSY__TC0_MASTER_BUSY_MASK 0x00040000L
+#define RLC_SERDES_NONCU_MASTER_BUSY__TC1_MASTER_BUSY_MASK 0x00080000L
+#define RLC_SERDES_NONCU_MASTER_BUSY__SPARE0_MASTER_BUSY_MASK 0x00100000L
+#define RLC_SERDES_NONCU_MASTER_BUSY__SPARE1_MASTER_BUSY_MASK 0x00200000L
+#define RLC_SERDES_NONCU_MASTER_BUSY__SPARE2_MASTER_BUSY_MASK 0x00400000L
+#define RLC_SERDES_NONCU_MASTER_BUSY__SPARE3_MASTER_BUSY_MASK 0x00800000L
+#define RLC_SERDES_NONCU_MASTER_BUSY__EA_0_MASTER_BUSY_MASK 0x01000000L
+#define RLC_SERDES_NONCU_MASTER_BUSY__TC2_MASTER_BUSY_MASK 0x02000000L
+#define RLC_SERDES_NONCU_MASTER_BUSY__RESERVED_MASK 0xFC000000L
+//RLC_GPM_GENERAL_0
+#define RLC_GPM_GENERAL_0__DATA__SHIFT 0x0
+#define RLC_GPM_GENERAL_0__DATA_MASK 0xFFFFFFFFL
+//RLC_GPM_GENERAL_1
+#define RLC_GPM_GENERAL_1__DATA__SHIFT 0x0
+#define RLC_GPM_GENERAL_1__DATA_MASK 0xFFFFFFFFL
+//RLC_GPM_GENERAL_2
+#define RLC_GPM_GENERAL_2__DATA__SHIFT 0x0
+#define RLC_GPM_GENERAL_2__DATA_MASK 0xFFFFFFFFL
+//RLC_GPM_GENERAL_3
+#define RLC_GPM_GENERAL_3__DATA__SHIFT 0x0
+#define RLC_GPM_GENERAL_3__DATA_MASK 0xFFFFFFFFL
+//RLC_GPM_GENERAL_4
+#define RLC_GPM_GENERAL_4__DATA__SHIFT 0x0
+#define RLC_GPM_GENERAL_4__DATA_MASK 0xFFFFFFFFL
+//RLC_GPM_GENERAL_5
+#define RLC_GPM_GENERAL_5__DATA__SHIFT 0x0
+#define RLC_GPM_GENERAL_5__DATA_MASK 0xFFFFFFFFL
+//RLC_GPM_GENERAL_6
+#define RLC_GPM_GENERAL_6__DATA__SHIFT 0x0
+#define RLC_GPM_GENERAL_6__DATA_MASK 0xFFFFFFFFL
+//RLC_GPM_GENERAL_7
+#define RLC_GPM_GENERAL_7__DATA__SHIFT 0x0
+#define RLC_GPM_GENERAL_7__DATA_MASK 0xFFFFFFFFL
+//RLC_GPM_SCRATCH_ADDR
+#define RLC_GPM_SCRATCH_ADDR__ADDR__SHIFT 0x0
+#define RLC_GPM_SCRATCH_ADDR__RESERVED__SHIFT 0x9
+#define RLC_GPM_SCRATCH_ADDR__ADDR_MASK 0x000001FFL
+#define RLC_GPM_SCRATCH_ADDR__RESERVED_MASK 0xFFFFFE00L
+//RLC_GPM_SCRATCH_DATA
+#define RLC_GPM_SCRATCH_DATA__DATA__SHIFT 0x0
+#define RLC_GPM_SCRATCH_DATA__DATA_MASK 0xFFFFFFFFL
+//RLC_STATIC_PG_STATUS
+#define RLC_STATIC_PG_STATUS__PG_STATUS_CU_MASK__SHIFT 0x0
+#define RLC_STATIC_PG_STATUS__PG_STATUS_CU_MASK_MASK 0xFFFFFFFFL
+//RLC_SPM_MC_CNTL
+#define RLC_SPM_MC_CNTL__RLC_SPM_VMID__SHIFT 0x0
+#define RLC_SPM_MC_CNTL__RLC_SPM_POLICY__SHIFT 0x4
+#define RLC_SPM_MC_CNTL__RLC_SPM_PERF_CNTR__SHIFT 0x5
+#define RLC_SPM_MC_CNTL__RLC_SPM_FED__SHIFT 0x6
+#define RLC_SPM_MC_CNTL__RLC_SPM_MTYPE_OVER__SHIFT 0x7
+#define RLC_SPM_MC_CNTL__RLC_SPM_MTYPE__SHIFT 0x8
+#define RLC_SPM_MC_CNTL__RESERVED__SHIFT 0xa
+#define RLC_SPM_MC_CNTL__RLC_SPM_VMID_MASK 0x0000000FL
+#define RLC_SPM_MC_CNTL__RLC_SPM_POLICY_MASK 0x00000010L
+#define RLC_SPM_MC_CNTL__RLC_SPM_PERF_CNTR_MASK 0x00000020L
+#define RLC_SPM_MC_CNTL__RLC_SPM_FED_MASK 0x00000040L
+#define RLC_SPM_MC_CNTL__RLC_SPM_MTYPE_OVER_MASK 0x00000080L
+#define RLC_SPM_MC_CNTL__RLC_SPM_MTYPE_MASK 0x00000300L
+#define RLC_SPM_MC_CNTL__RESERVED_MASK 0xFFFFFC00L
+//RLC_SPM_INT_CNTL
+#define RLC_SPM_INT_CNTL__RLC_SPM_INT_CNTL__SHIFT 0x0
+#define RLC_SPM_INT_CNTL__RESERVED__SHIFT 0x1
+#define RLC_SPM_INT_CNTL__RLC_SPM_INT_CNTL_MASK 0x00000001L
+#define RLC_SPM_INT_CNTL__RESERVED_MASK 0xFFFFFFFEL
+//RLC_SPM_INT_STATUS
+#define RLC_SPM_INT_STATUS__RLC_SPM_INT_STATUS__SHIFT 0x0
+#define RLC_SPM_INT_STATUS__RESERVED__SHIFT 0x1
+#define RLC_SPM_INT_STATUS__RLC_SPM_INT_STATUS_MASK 0x00000001L
+#define RLC_SPM_INT_STATUS__RESERVED_MASK 0xFFFFFFFEL
+//RLC_SMU_MESSAGE
+#define RLC_SMU_MESSAGE__CMD__SHIFT 0x0
+#define RLC_SMU_MESSAGE__CMD_MASK 0xFFFFFFFFL
+//RLC_GPM_LOG_SIZE
+#define RLC_GPM_LOG_SIZE__SIZE__SHIFT 0x0
+#define RLC_GPM_LOG_SIZE__SIZE_MASK 0xFFFFFFFFL
+//RLC_PG_DELAY_3
+#define RLC_PG_DELAY_3__CGCG_ACTIVE_BEFORE_CGPG__SHIFT 0x0
+#define RLC_PG_DELAY_3__RESERVED__SHIFT 0x8
+#define RLC_PG_DELAY_3__CGCG_ACTIVE_BEFORE_CGPG_MASK 0x000000FFL
+#define RLC_PG_DELAY_3__RESERVED_MASK 0xFFFFFF00L
+//RLC_GPR_REG1
+#define RLC_GPR_REG1__DATA__SHIFT 0x0
+#define RLC_GPR_REG1__DATA_MASK 0xFFFFFFFFL
+//RLC_GPR_REG2
+#define RLC_GPR_REG2__DATA__SHIFT 0x0
+#define RLC_GPR_REG2__DATA_MASK 0xFFFFFFFFL
+//RLC_GPM_LOG_CONT
+#define RLC_GPM_LOG_CONT__CONT__SHIFT 0x0
+#define RLC_GPM_LOG_CONT__CONT_MASK 0xFFFFFFFFL
+//RLC_GPM_INT_DISABLE_TH0
+#define RLC_GPM_INT_DISABLE_TH0__DISABLE__SHIFT 0x0
+#define RLC_GPM_INT_DISABLE_TH0__DISABLE_MASK 0xFFFFFFFFL
+//RLC_GPM_INT_FORCE_TH0
+#define RLC_GPM_INT_FORCE_TH0__FORCE__SHIFT 0x0
+#define RLC_GPM_INT_FORCE_TH0__FORCE_MASK 0xFFFFFFFFL
+//RLC_GPM_INT_FORCE_TH1
+#define RLC_GPM_INT_FORCE_TH1__FORCE__SHIFT 0x0
+#define RLC_GPM_INT_FORCE_TH1__FORCE_MASK 0xFFFFFFFFL
+//RLC_SRM_CNTL
+#define RLC_SRM_CNTL__SRM_ENABLE__SHIFT 0x0
+#define RLC_SRM_CNTL__AUTO_INCR_ADDR__SHIFT 0x1
+#define RLC_SRM_CNTL__RESERVED__SHIFT 0x2
+#define RLC_SRM_CNTL__SRM_ENABLE_MASK 0x00000001L
+#define RLC_SRM_CNTL__AUTO_INCR_ADDR_MASK 0x00000002L
+#define RLC_SRM_CNTL__RESERVED_MASK 0xFFFFFFFCL
+//RLC_SRM_ARAM_ADDR
+#define RLC_SRM_ARAM_ADDR__ADDR__SHIFT 0x0
+#define RLC_SRM_ARAM_ADDR__RESERVED__SHIFT 0xb
+#define RLC_SRM_ARAM_ADDR__ADDR_MASK 0x000007FFL
+#define RLC_SRM_ARAM_ADDR__RESERVED_MASK 0xFFFFF800L
+//RLC_SRM_ARAM_DATA
+#define RLC_SRM_ARAM_DATA__DATA__SHIFT 0x0
+#define RLC_SRM_ARAM_DATA__DATA_MASK 0xFFFFFFFFL
+//RLC_SRM_DRAM_ADDR
+#define RLC_SRM_DRAM_ADDR__ADDR__SHIFT 0x0
+#define RLC_SRM_DRAM_ADDR__RESERVED__SHIFT 0xb
+#define RLC_SRM_DRAM_ADDR__ADDR_MASK 0x000007FFL
+#define RLC_SRM_DRAM_ADDR__RESERVED_MASK 0xFFFFF800L
+//RLC_SRM_DRAM_DATA
+#define RLC_SRM_DRAM_DATA__DATA__SHIFT 0x0
+#define RLC_SRM_DRAM_DATA__DATA_MASK 0xFFFFFFFFL
+//RLC_SRM_GPM_COMMAND
+#define RLC_SRM_GPM_COMMAND__OP__SHIFT 0x0
+#define RLC_SRM_GPM_COMMAND__INDEX_CNTL__SHIFT 0x1
+#define RLC_SRM_GPM_COMMAND__INDEX_CNTL_NUM__SHIFT 0x2
+#define RLC_SRM_GPM_COMMAND__SIZE__SHIFT 0x5
+#define RLC_SRM_GPM_COMMAND__RESERVED_16__SHIFT 0x10
+#define RLC_SRM_GPM_COMMAND__START_OFFSET__SHIFT 0x11
+#define RLC_SRM_GPM_COMMAND__RESERVED_30_29__SHIFT 0x1d
+#define RLC_SRM_GPM_COMMAND__DEST_MEMORY__SHIFT 0x1f
+#define RLC_SRM_GPM_COMMAND__OP_MASK 0x00000001L
+#define RLC_SRM_GPM_COMMAND__INDEX_CNTL_MASK 0x00000002L
+#define RLC_SRM_GPM_COMMAND__INDEX_CNTL_NUM_MASK 0x0000001CL
+#define RLC_SRM_GPM_COMMAND__SIZE_MASK 0x0000FFE0L
+#define RLC_SRM_GPM_COMMAND__RESERVED_16_MASK 0x00010000L
+#define RLC_SRM_GPM_COMMAND__START_OFFSET_MASK 0x0FFE0000L
+#define RLC_SRM_GPM_COMMAND__RESERVED_30_29_MASK 0x60000000L
+#define RLC_SRM_GPM_COMMAND__DEST_MEMORY_MASK 0x80000000L
+//RLC_SRM_GPM_COMMAND_STATUS
+#define RLC_SRM_GPM_COMMAND_STATUS__FIFO_EMPTY__SHIFT 0x0
+#define RLC_SRM_GPM_COMMAND_STATUS__FIFO_FULL__SHIFT 0x1
+#define RLC_SRM_GPM_COMMAND_STATUS__RESERVED__SHIFT 0x2
+#define RLC_SRM_GPM_COMMAND_STATUS__FIFO_EMPTY_MASK 0x00000001L
+#define RLC_SRM_GPM_COMMAND_STATUS__FIFO_FULL_MASK 0x00000002L
+#define RLC_SRM_GPM_COMMAND_STATUS__RESERVED_MASK 0xFFFFFFFCL
+//RLC_SRM_RLCV_COMMAND
+#define RLC_SRM_RLCV_COMMAND__OP__SHIFT 0x0
+#define RLC_SRM_RLCV_COMMAND__INDEX_CNTL__SHIFT 0x1
+#define RLC_SRM_RLCV_COMMAND__INDEX_CNTL_NUM__SHIFT 0x2
+#define RLC_SRM_RLCV_COMMAND__SIZE__SHIFT 0x5
+#define RLC_SRM_RLCV_COMMAND__RESERVED_16__SHIFT 0x10
+#define RLC_SRM_RLCV_COMMAND__START_OFFSET__SHIFT 0x11
+#define RLC_SRM_RLCV_COMMAND__RESERVED1__SHIFT 0x1c
+#define RLC_SRM_RLCV_COMMAND__DEST_MEMORY__SHIFT 0x1f
+#define RLC_SRM_RLCV_COMMAND__OP_MASK 0x00000001L
+#define RLC_SRM_RLCV_COMMAND__INDEX_CNTL_MASK 0x00000002L
+#define RLC_SRM_RLCV_COMMAND__INDEX_CNTL_NUM_MASK 0x0000001CL
+#define RLC_SRM_RLCV_COMMAND__SIZE_MASK 0x0000FFE0L
+#define RLC_SRM_RLCV_COMMAND__RESERVED_16_MASK 0x00010000L
+#define RLC_SRM_RLCV_COMMAND__START_OFFSET_MASK 0x0FFE0000L
+#define RLC_SRM_RLCV_COMMAND__RESERVED1_MASK 0x70000000L
+#define RLC_SRM_RLCV_COMMAND__DEST_MEMORY_MASK 0x80000000L
+//RLC_SRM_RLCV_COMMAND_STATUS
+#define RLC_SRM_RLCV_COMMAND_STATUS__FIFO_EMPTY__SHIFT 0x0
+#define RLC_SRM_RLCV_COMMAND_STATUS__FIFO_FULL__SHIFT 0x1
+#define RLC_SRM_RLCV_COMMAND_STATUS__RESERVED__SHIFT 0x2
+#define RLC_SRM_RLCV_COMMAND_STATUS__FIFO_EMPTY_MASK 0x00000001L
+#define RLC_SRM_RLCV_COMMAND_STATUS__FIFO_FULL_MASK 0x00000002L
+#define RLC_SRM_RLCV_COMMAND_STATUS__RESERVED_MASK 0xFFFFFFFCL
+//RLC_SRM_INDEX_CNTL_ADDR_0
+#define RLC_SRM_INDEX_CNTL_ADDR_0__ADDRESS__SHIFT 0x0
+#define RLC_SRM_INDEX_CNTL_ADDR_0__RESERVED__SHIFT 0x10
+#define RLC_SRM_INDEX_CNTL_ADDR_0__ADDRESS_MASK 0x0000FFFFL
+#define RLC_SRM_INDEX_CNTL_ADDR_0__RESERVED_MASK 0xFFFF0000L
+//RLC_SRM_INDEX_CNTL_ADDR_1
+#define RLC_SRM_INDEX_CNTL_ADDR_1__ADDRESS__SHIFT 0x0
+#define RLC_SRM_INDEX_CNTL_ADDR_1__RESERVED__SHIFT 0x10
+#define RLC_SRM_INDEX_CNTL_ADDR_1__ADDRESS_MASK 0x0000FFFFL
+#define RLC_SRM_INDEX_CNTL_ADDR_1__RESERVED_MASK 0xFFFF0000L
+//RLC_SRM_INDEX_CNTL_ADDR_2
+#define RLC_SRM_INDEX_CNTL_ADDR_2__ADDRESS__SHIFT 0x0
+#define RLC_SRM_INDEX_CNTL_ADDR_2__RESERVED__SHIFT 0x10
+#define RLC_SRM_INDEX_CNTL_ADDR_2__ADDRESS_MASK 0x0000FFFFL
+#define RLC_SRM_INDEX_CNTL_ADDR_2__RESERVED_MASK 0xFFFF0000L
+//RLC_SRM_INDEX_CNTL_ADDR_3
+#define RLC_SRM_INDEX_CNTL_ADDR_3__ADDRESS__SHIFT 0x0
+#define RLC_SRM_INDEX_CNTL_ADDR_3__RESERVED__SHIFT 0x10
+#define RLC_SRM_INDEX_CNTL_ADDR_3__ADDRESS_MASK 0x0000FFFFL
+#define RLC_SRM_INDEX_CNTL_ADDR_3__RESERVED_MASK 0xFFFF0000L
+//RLC_SRM_INDEX_CNTL_ADDR_4
+#define RLC_SRM_INDEX_CNTL_ADDR_4__ADDRESS__SHIFT 0x0
+#define RLC_SRM_INDEX_CNTL_ADDR_4__RESERVED__SHIFT 0x10
+#define RLC_SRM_INDEX_CNTL_ADDR_4__ADDRESS_MASK 0x0000FFFFL
+#define RLC_SRM_INDEX_CNTL_ADDR_4__RESERVED_MASK 0xFFFF0000L
+//RLC_SRM_INDEX_CNTL_ADDR_5
+#define RLC_SRM_INDEX_CNTL_ADDR_5__ADDRESS__SHIFT 0x0
+#define RLC_SRM_INDEX_CNTL_ADDR_5__RESERVED__SHIFT 0x10
+#define RLC_SRM_INDEX_CNTL_ADDR_5__ADDRESS_MASK 0x0000FFFFL
+#define RLC_SRM_INDEX_CNTL_ADDR_5__RESERVED_MASK 0xFFFF0000L
+//RLC_SRM_INDEX_CNTL_ADDR_6
+#define RLC_SRM_INDEX_CNTL_ADDR_6__ADDRESS__SHIFT 0x0
+#define RLC_SRM_INDEX_CNTL_ADDR_6__RESERVED__SHIFT 0x10
+#define RLC_SRM_INDEX_CNTL_ADDR_6__ADDRESS_MASK 0x0000FFFFL
+#define RLC_SRM_INDEX_CNTL_ADDR_6__RESERVED_MASK 0xFFFF0000L
+//RLC_SRM_INDEX_CNTL_ADDR_7
+#define RLC_SRM_INDEX_CNTL_ADDR_7__ADDRESS__SHIFT 0x0
+#define RLC_SRM_INDEX_CNTL_ADDR_7__RESERVED__SHIFT 0x10
+#define RLC_SRM_INDEX_CNTL_ADDR_7__ADDRESS_MASK 0x0000FFFFL
+#define RLC_SRM_INDEX_CNTL_ADDR_7__RESERVED_MASK 0xFFFF0000L
+//RLC_SRM_INDEX_CNTL_DATA_0
+#define RLC_SRM_INDEX_CNTL_DATA_0__DATA__SHIFT 0x0
+#define RLC_SRM_INDEX_CNTL_DATA_0__DATA_MASK 0xFFFFFFFFL
+//RLC_SRM_INDEX_CNTL_DATA_1
+#define RLC_SRM_INDEX_CNTL_DATA_1__DATA__SHIFT 0x0
+#define RLC_SRM_INDEX_CNTL_DATA_1__DATA_MASK 0xFFFFFFFFL
+//RLC_SRM_INDEX_CNTL_DATA_2
+#define RLC_SRM_INDEX_CNTL_DATA_2__DATA__SHIFT 0x0
+#define RLC_SRM_INDEX_CNTL_DATA_2__DATA_MASK 0xFFFFFFFFL
+//RLC_SRM_INDEX_CNTL_DATA_3
+#define RLC_SRM_INDEX_CNTL_DATA_3__DATA__SHIFT 0x0
+#define RLC_SRM_INDEX_CNTL_DATA_3__DATA_MASK 0xFFFFFFFFL
+//RLC_SRM_INDEX_CNTL_DATA_4
+#define RLC_SRM_INDEX_CNTL_DATA_4__DATA__SHIFT 0x0
+#define RLC_SRM_INDEX_CNTL_DATA_4__DATA_MASK 0xFFFFFFFFL
+//RLC_SRM_INDEX_CNTL_DATA_5
+#define RLC_SRM_INDEX_CNTL_DATA_5__DATA__SHIFT 0x0
+#define RLC_SRM_INDEX_CNTL_DATA_5__DATA_MASK 0xFFFFFFFFL
+//RLC_SRM_INDEX_CNTL_DATA_6
+#define RLC_SRM_INDEX_CNTL_DATA_6__DATA__SHIFT 0x0
+#define RLC_SRM_INDEX_CNTL_DATA_6__DATA_MASK 0xFFFFFFFFL
+//RLC_SRM_INDEX_CNTL_DATA_7
+#define RLC_SRM_INDEX_CNTL_DATA_7__DATA__SHIFT 0x0
+#define RLC_SRM_INDEX_CNTL_DATA_7__DATA_MASK 0xFFFFFFFFL
+//RLC_SRM_STAT
+#define RLC_SRM_STAT__SRM_BUSY__SHIFT 0x0
+#define RLC_SRM_STAT__SRM_BUSY_DELAY__SHIFT 0x1
+#define RLC_SRM_STAT__RESERVED__SHIFT 0x2
+#define RLC_SRM_STAT__SRM_BUSY_MASK 0x00000001L
+#define RLC_SRM_STAT__SRM_BUSY_DELAY_MASK 0x00000002L
+#define RLC_SRM_STAT__RESERVED_MASK 0xFFFFFFFCL
+//RLC_SRM_GPM_ABORT
+#define RLC_SRM_GPM_ABORT__ABORT__SHIFT 0x0
+#define RLC_SRM_GPM_ABORT__RESERVED__SHIFT 0x1
+#define RLC_SRM_GPM_ABORT__ABORT_MASK 0x00000001L
+#define RLC_SRM_GPM_ABORT__RESERVED_MASK 0xFFFFFFFEL
+//RLC_CSIB_ADDR_LO
+#define RLC_CSIB_ADDR_LO__ADDRESS__SHIFT 0x0
+#define RLC_CSIB_ADDR_LO__ADDRESS_MASK 0xFFFFFFFFL
+//RLC_CSIB_ADDR_HI
+#define RLC_CSIB_ADDR_HI__ADDRESS__SHIFT 0x0
+#define RLC_CSIB_ADDR_HI__ADDRESS_MASK 0x0000FFFFL
+//RLC_CSIB_LENGTH
+#define RLC_CSIB_LENGTH__LENGTH__SHIFT 0x0
+#define RLC_CSIB_LENGTH__LENGTH_MASK 0xFFFFFFFFL
+//RLC_SMU_COMMAND
+#define RLC_SMU_COMMAND__CMD__SHIFT 0x0
+#define RLC_SMU_COMMAND__CMD_MASK 0xFFFFFFFFL
+//RLC_CP_SCHEDULERS
+#define RLC_CP_SCHEDULERS__scheduler0__SHIFT 0x0
+#define RLC_CP_SCHEDULERS__scheduler1__SHIFT 0x8
+#define RLC_CP_SCHEDULERS__scheduler2__SHIFT 0x10
+#define RLC_CP_SCHEDULERS__scheduler3__SHIFT 0x18
+#define RLC_CP_SCHEDULERS__scheduler0_MASK 0x000000FFL
+#define RLC_CP_SCHEDULERS__scheduler1_MASK 0x0000FF00L
+#define RLC_CP_SCHEDULERS__scheduler2_MASK 0x00FF0000L
+#define RLC_CP_SCHEDULERS__scheduler3_MASK 0xFF000000L
+//RLC_SMU_ARGUMENT_1
+#define RLC_SMU_ARGUMENT_1__ARG__SHIFT 0x0
+#define RLC_SMU_ARGUMENT_1__ARG_MASK 0xFFFFFFFFL
+//RLC_SMU_ARGUMENT_2
+#define RLC_SMU_ARGUMENT_2__ARG__SHIFT 0x0
+#define RLC_SMU_ARGUMENT_2__ARG_MASK 0xFFFFFFFFL
+//RLC_GPM_GENERAL_8
+#define RLC_GPM_GENERAL_8__DATA__SHIFT 0x0
+#define RLC_GPM_GENERAL_8__DATA_MASK 0xFFFFFFFFL
+//RLC_GPM_GENERAL_9
+#define RLC_GPM_GENERAL_9__DATA__SHIFT 0x0
+#define RLC_GPM_GENERAL_9__DATA_MASK 0xFFFFFFFFL
+//RLC_GPM_GENERAL_10
+#define RLC_GPM_GENERAL_10__DATA__SHIFT 0x0
+#define RLC_GPM_GENERAL_10__DATA_MASK 0xFFFFFFFFL
+//RLC_GPM_GENERAL_11
+#define RLC_GPM_GENERAL_11__DATA__SHIFT 0x0
+#define RLC_GPM_GENERAL_11__DATA_MASK 0xFFFFFFFFL
+//RLC_GPM_GENERAL_12
+#define RLC_GPM_GENERAL_12__DATA__SHIFT 0x0
+#define RLC_GPM_GENERAL_12__DATA_MASK 0xFFFFFFFFL
+//RLC_GPM_UTCL1_CNTL_0
+#define RLC_GPM_UTCL1_CNTL_0__XNACK_REDO_TIMER_CNT__SHIFT 0x0
+#define RLC_GPM_UTCL1_CNTL_0__DROP_MODE__SHIFT 0x18
+#define RLC_GPM_UTCL1_CNTL_0__RESERVED__SHIFT 0x19
+#define RLC_GPM_UTCL1_CNTL_0__INVALIDATE__SHIFT 0x1a
+#define RLC_GPM_UTCL1_CNTL_0__FRAG_LIMIT_MODE__SHIFT 0x1b
+#define RLC_GPM_UTCL1_CNTL_0__FORCE_SNOOP__SHIFT 0x1c
+#define RLC_GPM_UTCL1_CNTL_0__XNACK_REDO_TIMER_CNT_MASK 0x000FFFFFL
+#define RLC_GPM_UTCL1_CNTL_0__DROP_MODE_MASK 0x01000000L
+#define RLC_GPM_UTCL1_CNTL_0__RESERVED_MASK 0x02000000L
+#define RLC_GPM_UTCL1_CNTL_0__INVALIDATE_MASK 0x04000000L
+#define RLC_GPM_UTCL1_CNTL_0__FRAG_LIMIT_MODE_MASK 0x08000000L
+#define RLC_GPM_UTCL1_CNTL_0__FORCE_SNOOP_MASK 0x10000000L
+//RLC_GPM_UTCL1_CNTL_1
+#define RLC_GPM_UTCL1_CNTL_1__XNACK_REDO_TIMER_CNT__SHIFT 0x0
+#define RLC_GPM_UTCL1_CNTL_1__DROP_MODE__SHIFT 0x18
+#define RLC_GPM_UTCL1_CNTL_1__RESERVED__SHIFT 0x19
+#define RLC_GPM_UTCL1_CNTL_1__INVALIDATE__SHIFT 0x1a
+#define RLC_GPM_UTCL1_CNTL_1__FRAG_LIMIT_MODE__SHIFT 0x1b
+#define RLC_GPM_UTCL1_CNTL_1__FORCE_SNOOP__SHIFT 0x1c
+#define RLC_GPM_UTCL1_CNTL_1__XNACK_REDO_TIMER_CNT_MASK 0x000FFFFFL
+#define RLC_GPM_UTCL1_CNTL_1__DROP_MODE_MASK 0x01000000L
+#define RLC_GPM_UTCL1_CNTL_1__RESERVED_MASK 0x02000000L
+#define RLC_GPM_UTCL1_CNTL_1__INVALIDATE_MASK 0x04000000L
+#define RLC_GPM_UTCL1_CNTL_1__FRAG_LIMIT_MODE_MASK 0x08000000L
+#define RLC_GPM_UTCL1_CNTL_1__FORCE_SNOOP_MASK 0x10000000L
+//RLC_GPM_UTCL1_CNTL_2
+#define RLC_GPM_UTCL1_CNTL_2__XNACK_REDO_TIMER_CNT__SHIFT 0x0
+#define RLC_GPM_UTCL1_CNTL_2__DROP_MODE__SHIFT 0x18
+#define RLC_GPM_UTCL1_CNTL_2__RESERVED__SHIFT 0x19
+#define RLC_GPM_UTCL1_CNTL_2__INVALIDATE__SHIFT 0x1a
+#define RLC_GPM_UTCL1_CNTL_2__FRAG_LIMIT_MODE__SHIFT 0x1b
+#define RLC_GPM_UTCL1_CNTL_2__FORCE_SNOOP__SHIFT 0x1c
+#define RLC_GPM_UTCL1_CNTL_2__XNACK_REDO_TIMER_CNT_MASK 0x000FFFFFL
+#define RLC_GPM_UTCL1_CNTL_2__DROP_MODE_MASK 0x01000000L
+#define RLC_GPM_UTCL1_CNTL_2__RESERVED_MASK 0x02000000L
+#define RLC_GPM_UTCL1_CNTL_2__INVALIDATE_MASK 0x04000000L
+#define RLC_GPM_UTCL1_CNTL_2__FRAG_LIMIT_MODE_MASK 0x08000000L
+#define RLC_GPM_UTCL1_CNTL_2__FORCE_SNOOP_MASK 0x10000000L
+//RLC_SPM_UTCL1_CNTL
+#define RLC_SPM_UTCL1_CNTL__XNACK_REDO_TIMER_CNT__SHIFT 0x0
+#define RLC_SPM_UTCL1_CNTL__DROP_MODE__SHIFT 0x18
+#define RLC_SPM_UTCL1_CNTL__RESERVED__SHIFT 0x19
+#define RLC_SPM_UTCL1_CNTL__INVALIDATE__SHIFT 0x1a
+#define RLC_SPM_UTCL1_CNTL__FRAG_LIMIT_MODE__SHIFT 0x1b
+#define RLC_SPM_UTCL1_CNTL__FORCE_SNOOP__SHIFT 0x1c
+#define RLC_SPM_UTCL1_CNTL__XNACK_REDO_TIMER_CNT_MASK 0x000FFFFFL
+#define RLC_SPM_UTCL1_CNTL__DROP_MODE_MASK 0x01000000L
+#define RLC_SPM_UTCL1_CNTL__RESERVED_MASK 0x02000000L
+#define RLC_SPM_UTCL1_CNTL__INVALIDATE_MASK 0x04000000L
+#define RLC_SPM_UTCL1_CNTL__FRAG_LIMIT_MODE_MASK 0x08000000L
+#define RLC_SPM_UTCL1_CNTL__FORCE_SNOOP_MASK 0x10000000L
+//RLC_UTCL1_STATUS_2
+#define RLC_UTCL1_STATUS_2__GPM_TH0_UTCL1_BUSY__SHIFT 0x0
+#define RLC_UTCL1_STATUS_2__GPM_TH1_UTCL1_BUSY__SHIFT 0x1
+#define RLC_UTCL1_STATUS_2__GPM_TH2_UTCL1_BUSY__SHIFT 0x2
+#define RLC_UTCL1_STATUS_2__SPM_UTCL1_BUSY__SHIFT 0x3
+#define RLC_UTCL1_STATUS_2__PREWALKER_UTCL1_BUSY__SHIFT 0x4
+#define RLC_UTCL1_STATUS_2__GPM_TH0_UTCL1_StallOnTrans__SHIFT 0x5
+#define RLC_UTCL1_STATUS_2__GPM_TH1_UTCL1_StallOnTrans__SHIFT 0x6
+#define RLC_UTCL1_STATUS_2__GPM_TH2_UTCL1_StallOnTrans__SHIFT 0x7
+#define RLC_UTCL1_STATUS_2__SPM_UTCL1_StallOnTrans__SHIFT 0x8
+#define RLC_UTCL1_STATUS_2__PREWALKER_UTCL1_StallOnTrans__SHIFT 0x9
+#define RLC_UTCL1_STATUS_2__RESERVED__SHIFT 0xa
+#define RLC_UTCL1_STATUS_2__GPM_TH0_UTCL1_BUSY_MASK 0x00000001L
+#define RLC_UTCL1_STATUS_2__GPM_TH1_UTCL1_BUSY_MASK 0x00000002L
+#define RLC_UTCL1_STATUS_2__GPM_TH2_UTCL1_BUSY_MASK 0x00000004L
+#define RLC_UTCL1_STATUS_2__SPM_UTCL1_BUSY_MASK 0x00000008L
+#define RLC_UTCL1_STATUS_2__PREWALKER_UTCL1_BUSY_MASK 0x00000010L
+#define RLC_UTCL1_STATUS_2__GPM_TH0_UTCL1_StallOnTrans_MASK 0x00000020L
+#define RLC_UTCL1_STATUS_2__GPM_TH1_UTCL1_StallOnTrans_MASK 0x00000040L
+#define RLC_UTCL1_STATUS_2__GPM_TH2_UTCL1_StallOnTrans_MASK 0x00000080L
+#define RLC_UTCL1_STATUS_2__SPM_UTCL1_StallOnTrans_MASK 0x00000100L
+#define RLC_UTCL1_STATUS_2__PREWALKER_UTCL1_StallOnTrans_MASK 0x00000200L
+#define RLC_UTCL1_STATUS_2__RESERVED_MASK 0xFFFFFC00L
+//RLC_LB_THR_CONFIG_2
+#define RLC_LB_THR_CONFIG_2__DATA__SHIFT 0x0
+#define RLC_LB_THR_CONFIG_2__DATA_MASK 0xFFFFFFFFL
+//RLC_LB_THR_CONFIG_3
+#define RLC_LB_THR_CONFIG_3__DATA__SHIFT 0x0
+#define RLC_LB_THR_CONFIG_3__DATA_MASK 0xFFFFFFFFL
+//RLC_LB_THR_CONFIG_4
+#define RLC_LB_THR_CONFIG_4__DATA__SHIFT 0x0
+#define RLC_LB_THR_CONFIG_4__DATA_MASK 0xFFFFFFFFL
+//RLC_SPM_UTCL1_ERROR_1
+#define RLC_SPM_UTCL1_ERROR_1__Translated_ReqError__SHIFT 0x0
+#define RLC_SPM_UTCL1_ERROR_1__Translated_ReqErrorVmid__SHIFT 0x2
+#define RLC_SPM_UTCL1_ERROR_1__Translated_ReqErrorAddr_MSB__SHIFT 0x6
+#define RLC_SPM_UTCL1_ERROR_1__Translated_ReqError_MASK 0x00000003L
+#define RLC_SPM_UTCL1_ERROR_1__Translated_ReqErrorVmid_MASK 0x0000003CL
+#define RLC_SPM_UTCL1_ERROR_1__Translated_ReqErrorAddr_MSB_MASK 0x000003C0L
+//RLC_SPM_UTCL1_ERROR_2
+#define RLC_SPM_UTCL1_ERROR_2__Translated_ReqErrorAddr_LSB__SHIFT 0x0
+#define RLC_SPM_UTCL1_ERROR_2__Translated_ReqErrorAddr_LSB_MASK 0xFFFFFFFFL
+//RLC_GPM_UTCL1_TH0_ERROR_1
+#define RLC_GPM_UTCL1_TH0_ERROR_1__Translated_ReqError__SHIFT 0x0
+#define RLC_GPM_UTCL1_TH0_ERROR_1__Translated_ReqErrorVmid__SHIFT 0x2
+#define RLC_GPM_UTCL1_TH0_ERROR_1__Translated_ReqErrorAddr_MSB__SHIFT 0x6
+#define RLC_GPM_UTCL1_TH0_ERROR_1__Translated_ReqError_MASK 0x00000003L
+#define RLC_GPM_UTCL1_TH0_ERROR_1__Translated_ReqErrorVmid_MASK 0x0000003CL
+#define RLC_GPM_UTCL1_TH0_ERROR_1__Translated_ReqErrorAddr_MSB_MASK 0x000003C0L
+//RLC_LB_THR_CONFIG_1
+#define RLC_LB_THR_CONFIG_1__DATA__SHIFT 0x0
+#define RLC_LB_THR_CONFIG_1__DATA_MASK 0xFFFFFFFFL
+//RLC_GPM_UTCL1_TH0_ERROR_2
+#define RLC_GPM_UTCL1_TH0_ERROR_2__Translated_ReqErrorAddr_LSB__SHIFT 0x0
+#define RLC_GPM_UTCL1_TH0_ERROR_2__Translated_ReqErrorAddr_LSB_MASK 0xFFFFFFFFL
+//RLC_GPM_UTCL1_TH1_ERROR_1
+#define RLC_GPM_UTCL1_TH1_ERROR_1__Translated_ReqError__SHIFT 0x0
+#define RLC_GPM_UTCL1_TH1_ERROR_1__Translated_ReqErrorVmid__SHIFT 0x2
+#define RLC_GPM_UTCL1_TH1_ERROR_1__Translated_ReqErrorAddr_MSB__SHIFT 0x6
+#define RLC_GPM_UTCL1_TH1_ERROR_1__Translated_ReqError_MASK 0x00000003L
+#define RLC_GPM_UTCL1_TH1_ERROR_1__Translated_ReqErrorVmid_MASK 0x0000003CL
+#define RLC_GPM_UTCL1_TH1_ERROR_1__Translated_ReqErrorAddr_MSB_MASK 0x000003C0L
+//RLC_GPM_UTCL1_TH1_ERROR_2
+#define RLC_GPM_UTCL1_TH1_ERROR_2__Translated_ReqErrorAddr_LSB__SHIFT 0x0
+#define RLC_GPM_UTCL1_TH1_ERROR_2__Translated_ReqErrorAddr_LSB_MASK 0xFFFFFFFFL
+//RLC_GPM_UTCL1_TH2_ERROR_1
+#define RLC_GPM_UTCL1_TH2_ERROR_1__Translated_ReqError__SHIFT 0x0
+#define RLC_GPM_UTCL1_TH2_ERROR_1__Translated_ReqErrorVmid__SHIFT 0x2
+#define RLC_GPM_UTCL1_TH2_ERROR_1__Translated_ReqErrorAddr_MSB__SHIFT 0x6
+#define RLC_GPM_UTCL1_TH2_ERROR_1__Translated_ReqError_MASK 0x00000003L
+#define RLC_GPM_UTCL1_TH2_ERROR_1__Translated_ReqErrorVmid_MASK 0x0000003CL
+#define RLC_GPM_UTCL1_TH2_ERROR_1__Translated_ReqErrorAddr_MSB_MASK 0x000003C0L
+//RLC_GPM_UTCL1_TH2_ERROR_2
+#define RLC_GPM_UTCL1_TH2_ERROR_2__Translated_ReqErrorAddr_LSB__SHIFT 0x0
+#define RLC_GPM_UTCL1_TH2_ERROR_2__Translated_ReqErrorAddr_LSB_MASK 0xFFFFFFFFL
+//RLC_SEMAPHORE_0
+#define RLC_SEMAPHORE_0__CLIENT_ID__SHIFT 0x0
+#define RLC_SEMAPHORE_0__RESERVED__SHIFT 0x5
+#define RLC_SEMAPHORE_0__CLIENT_ID_MASK 0x0000001FL
+#define RLC_SEMAPHORE_0__RESERVED_MASK 0xFFFFFFE0L
+//RLC_SEMAPHORE_1
+#define RLC_SEMAPHORE_1__CLIENT_ID__SHIFT 0x0
+#define RLC_SEMAPHORE_1__RESERVED__SHIFT 0x5
+#define RLC_SEMAPHORE_1__CLIENT_ID_MASK 0x0000001FL
+#define RLC_SEMAPHORE_1__RESERVED_MASK 0xFFFFFFE0L
+//RLC_CP_EOF_INT
+#define RLC_CP_EOF_INT__INTERRUPT__SHIFT 0x0
+#define RLC_CP_EOF_INT__RESERVED__SHIFT 0x1
+#define RLC_CP_EOF_INT__INTERRUPT_MASK 0x00000001L
+#define RLC_CP_EOF_INT__RESERVED_MASK 0xFFFFFFFEL
+//RLC_CP_EOF_INT_CNT
+#define RLC_CP_EOF_INT_CNT__CNT__SHIFT 0x0
+#define RLC_CP_EOF_INT_CNT__CNT_MASK 0xFFFFFFFFL
+//RLC_SPARE_INT
+#define RLC_SPARE_INT__INTERRUPT__SHIFT 0x0
+#define RLC_SPARE_INT__RESERVED__SHIFT 0x1
+#define RLC_SPARE_INT__INTERRUPT_MASK 0x00000001L
+#define RLC_SPARE_INT__RESERVED_MASK 0xFFFFFFFEL
+//RLC_PREWALKER_UTCL1_CNTL
+#define RLC_PREWALKER_UTCL1_CNTL__XNACK_REDO_TIMER_CNT__SHIFT 0x0
+#define RLC_PREWALKER_UTCL1_CNTL__DROP_MODE__SHIFT 0x18
+#define RLC_PREWALKER_UTCL1_CNTL__RESERVED__SHIFT 0x19
+#define RLC_PREWALKER_UTCL1_CNTL__INVALIDATE__SHIFT 0x1a
+#define RLC_PREWALKER_UTCL1_CNTL__FRAG_LIMIT_MODE__SHIFT 0x1b
+#define RLC_PREWALKER_UTCL1_CNTL__FORCE_SNOOP__SHIFT 0x1c
+#define RLC_PREWALKER_UTCL1_CNTL__XNACK_REDO_TIMER_CNT_MASK 0x000FFFFFL
+#define RLC_PREWALKER_UTCL1_CNTL__DROP_MODE_MASK 0x01000000L
+#define RLC_PREWALKER_UTCL1_CNTL__RESERVED_MASK 0x02000000L
+#define RLC_PREWALKER_UTCL1_CNTL__INVALIDATE_MASK 0x04000000L
+#define RLC_PREWALKER_UTCL1_CNTL__FRAG_LIMIT_MODE_MASK 0x08000000L
+#define RLC_PREWALKER_UTCL1_CNTL__FORCE_SNOOP_MASK 0x10000000L
+//RLC_PREWALKER_UTCL1_TRIG
+#define RLC_PREWALKER_UTCL1_TRIG__VALID__SHIFT 0x0
+#define RLC_PREWALKER_UTCL1_TRIG__VMID__SHIFT 0x1
+#define RLC_PREWALKER_UTCL1_TRIG__PRIME_MODE__SHIFT 0x5
+#define RLC_PREWALKER_UTCL1_TRIG__READ_PERM__SHIFT 0x6
+#define RLC_PREWALKER_UTCL1_TRIG__WRITE_PERM__SHIFT 0x7
+#define RLC_PREWALKER_UTCL1_TRIG__EXEC_PERM__SHIFT 0x8
+#define RLC_PREWALKER_UTCL1_TRIG__RESERVED__SHIFT 0x9
+#define RLC_PREWALKER_UTCL1_TRIG__READY__SHIFT 0x1f
+#define RLC_PREWALKER_UTCL1_TRIG__VALID_MASK 0x00000001L
+#define RLC_PREWALKER_UTCL1_TRIG__VMID_MASK 0x0000001EL
+#define RLC_PREWALKER_UTCL1_TRIG__PRIME_MODE_MASK 0x00000020L
+#define RLC_PREWALKER_UTCL1_TRIG__READ_PERM_MASK 0x00000040L
+#define RLC_PREWALKER_UTCL1_TRIG__WRITE_PERM_MASK 0x00000080L
+#define RLC_PREWALKER_UTCL1_TRIG__EXEC_PERM_MASK 0x00000100L
+#define RLC_PREWALKER_UTCL1_TRIG__RESERVED_MASK 0x7FFFFE00L
+#define RLC_PREWALKER_UTCL1_TRIG__READY_MASK 0x80000000L
+//RLC_PREWALKER_UTCL1_ADDR_LSB
+#define RLC_PREWALKER_UTCL1_ADDR_LSB__ADDR_LSB__SHIFT 0x0
+#define RLC_PREWALKER_UTCL1_ADDR_LSB__ADDR_LSB_MASK 0xFFFFFFFFL
+//RLC_PREWALKER_UTCL1_ADDR_MSB
+#define RLC_PREWALKER_UTCL1_ADDR_MSB__ADDR_MSB__SHIFT 0x0
+#define RLC_PREWALKER_UTCL1_ADDR_MSB__ADDR_MSB_MASK 0x0000FFFFL
+//RLC_PREWALKER_UTCL1_SIZE_LSB
+#define RLC_PREWALKER_UTCL1_SIZE_LSB__SIZE_LSB__SHIFT 0x0
+#define RLC_PREWALKER_UTCL1_SIZE_LSB__SIZE_LSB_MASK 0xFFFFFFFFL
+//RLC_PREWALKER_UTCL1_SIZE_MSB
+#define RLC_PREWALKER_UTCL1_SIZE_MSB__SIZE_MSB__SHIFT 0x0
+#define RLC_PREWALKER_UTCL1_SIZE_MSB__SIZE_MSB_MASK 0x00000003L
+//RLC_DSM_TRIG
+#define RLC_DSM_TRIG__START__SHIFT 0x0
+#define RLC_DSM_TRIG__START_MASK 0x00000001L
+//RLC_UTCL1_STATUS
+#define RLC_UTCL1_STATUS__FAULT_DETECTED__SHIFT 0x0
+#define RLC_UTCL1_STATUS__RETRY_DETECTED__SHIFT 0x1
+#define RLC_UTCL1_STATUS__PRT_DETECTED__SHIFT 0x2
+#define RLC_UTCL1_STATUS__RESERVED__SHIFT 0x3
+#define RLC_UTCL1_STATUS__FAULT_UTCL1ID__SHIFT 0x8
+#define RLC_UTCL1_STATUS__RESERVED_1__SHIFT 0xe
+#define RLC_UTCL1_STATUS__RETRY_UTCL1ID__SHIFT 0x10
+#define RLC_UTCL1_STATUS__RESERVED_2__SHIFT 0x16
+#define RLC_UTCL1_STATUS__PRT_UTCL1ID__SHIFT 0x18
+#define RLC_UTCL1_STATUS__RESERVED_3__SHIFT 0x1e
+#define RLC_UTCL1_STATUS__FAULT_DETECTED_MASK 0x00000001L
+#define RLC_UTCL1_STATUS__RETRY_DETECTED_MASK 0x00000002L
+#define RLC_UTCL1_STATUS__PRT_DETECTED_MASK 0x00000004L
+#define RLC_UTCL1_STATUS__RESERVED_MASK 0x000000F8L
+#define RLC_UTCL1_STATUS__FAULT_UTCL1ID_MASK 0x00003F00L
+#define RLC_UTCL1_STATUS__RESERVED_1_MASK 0x0000C000L
+#define RLC_UTCL1_STATUS__RETRY_UTCL1ID_MASK 0x003F0000L
+#define RLC_UTCL1_STATUS__RESERVED_2_MASK 0x00C00000L
+#define RLC_UTCL1_STATUS__PRT_UTCL1ID_MASK 0x3F000000L
+#define RLC_UTCL1_STATUS__RESERVED_3_MASK 0xC0000000L
+//RLC_R2I_CNTL_0
+#define RLC_R2I_CNTL_0__Data__SHIFT 0x0
+#define RLC_R2I_CNTL_0__Data_MASK 0xFFFFFFFFL
+//RLC_R2I_CNTL_1
+#define RLC_R2I_CNTL_1__Data__SHIFT 0x0
+#define RLC_R2I_CNTL_1__Data_MASK 0xFFFFFFFFL
+//RLC_R2I_CNTL_2
+#define RLC_R2I_CNTL_2__Data__SHIFT 0x0
+#define RLC_R2I_CNTL_2__Data_MASK 0xFFFFFFFFL
+//RLC_R2I_CNTL_3
+#define RLC_R2I_CNTL_3__Data__SHIFT 0x0
+#define RLC_R2I_CNTL_3__Data_MASK 0xFFFFFFFFL
+//RLC_UTCL2_CNTL
+#define RLC_UTCL2_CNTL__MTYPE_NO_PTE_MODE__SHIFT 0x0
+#define RLC_UTCL2_CNTL__IGNORE_PTE_PERMISSION__SHIFT 0x1
+#define RLC_UTCL2_CNTL__RESERVED__SHIFT 0x2
+#define RLC_UTCL2_CNTL__MTYPE_NO_PTE_MODE_MASK 0x00000001L
+#define RLC_UTCL2_CNTL__IGNORE_PTE_PERMISSION_MASK 0x00000002L
+#define RLC_UTCL2_CNTL__RESERVED_MASK 0xFFFFFFFCL
+//RLC_LBPW_CU_STAT
+#define RLC_LBPW_CU_STAT__MAX_CU__SHIFT 0x0
+#define RLC_LBPW_CU_STAT__ON_CU__SHIFT 0x10
+#define RLC_LBPW_CU_STAT__MAX_CU_MASK 0x0000FFFFL
+#define RLC_LBPW_CU_STAT__ON_CU_MASK 0xFFFF0000L
+//RLC_DS_CNTL
+#define RLC_DS_CNTL__GFX_CLK_DS_RLC_BUSY_MASK__SHIFT 0x0
+#define RLC_DS_CNTL__GFX_CLK_DS_CP_BUSY_MASK__SHIFT 0x1
+#define RLC_DS_CNTL__GFX_CLK_TCC_RLC_GRBM_CC_RESIDENT_MASK__SHIFT 0x2
+#define RLC_DS_CNTL__GFX_CLK_EA_RLC_GRBM_STAT_BUSY_MASK__SHIFT 0x3
+#define RLC_DS_CNTL__RESRVED__SHIFT 0x4
+#define RLC_DS_CNTL__SOC_CLK_TCC_RLC_GRBM_CC_RESIDENT_MASK__SHIFT 0xe
+#define RLC_DS_CNTL__SOC_CLK_EA_RLC_GRBM_STAT_BUSY_MASK__SHIFT 0xf
+#define RLC_DS_CNTL__SOC_CLK_DS_RLC_BUSY_MASK__SHIFT 0x10
+#define RLC_DS_CNTL__SOC_CLK_DS_CP_BUSY_MASK__SHIFT 0x11
+#define RLC_DS_CNTL__RESRVED_1__SHIFT 0x12
+#define RLC_DS_CNTL__GFX_CLK_DS_RLC_BUSY_MASK_MASK 0x00000001L
+#define RLC_DS_CNTL__GFX_CLK_DS_CP_BUSY_MASK_MASK 0x00000002L
+#define RLC_DS_CNTL__GFX_CLK_TCC_RLC_GRBM_CC_RESIDENT_MASK_MASK 0x00000004L
+#define RLC_DS_CNTL__GFX_CLK_EA_RLC_GRBM_STAT_BUSY_MASK_MASK 0x00000008L
+#define RLC_DS_CNTL__RESRVED_MASK 0x00003FF0L
+#define RLC_DS_CNTL__SOC_CLK_TCC_RLC_GRBM_CC_RESIDENT_MASK_MASK 0x00004000L
+#define RLC_DS_CNTL__SOC_CLK_EA_RLC_GRBM_STAT_BUSY_MASK_MASK 0x00008000L
+#define RLC_DS_CNTL__SOC_CLK_DS_RLC_BUSY_MASK_MASK 0x00010000L
+#define RLC_DS_CNTL__SOC_CLK_DS_CP_BUSY_MASK_MASK 0x00020000L
+#define RLC_DS_CNTL__RESRVED_1_MASK 0xFFFC0000L
+//RLC_GPM_INT_STAT_TH0
+#define RLC_GPM_INT_STAT_TH0__STATUS__SHIFT 0x0
+#define RLC_GPM_INT_STAT_TH0__STATUS_MASK 0xFFFFFFFFL
+//RLC_GPM_GENERAL_13
+#define RLC_GPM_GENERAL_13__DATA__SHIFT 0x0
+#define RLC_GPM_GENERAL_13__DATA_MASK 0xFFFFFFFFL
+//RLC_GPM_GENERAL_14
+#define RLC_GPM_GENERAL_14__DATA__SHIFT 0x0
+#define RLC_GPM_GENERAL_14__DATA_MASK 0xFFFFFFFFL
+//RLC_GPM_GENERAL_15
+#define RLC_GPM_GENERAL_15__DATA__SHIFT 0x0
+#define RLC_GPM_GENERAL_15__DATA_MASK 0xFFFFFFFFL
+//RLC_SPARE_INT_1
+#define RLC_SPARE_INT_1__INTERRUPT__SHIFT 0x0
+#define RLC_SPARE_INT_1__RESERVED__SHIFT 0x1
+#define RLC_SPARE_INT_1__INTERRUPT_MASK 0x00000001L
+#define RLC_SPARE_INT_1__RESERVED_MASK 0xFFFFFFFEL
+//RLC_RLCV_SPARE_INT_1
+#define RLC_RLCV_SPARE_INT_1__INTERRUPT__SHIFT 0x0
+#define RLC_RLCV_SPARE_INT_1__RESERVED__SHIFT 0x1
+#define RLC_RLCV_SPARE_INT_1__INTERRUPT_MASK 0x00000001L
+#define RLC_RLCV_SPARE_INT_1__RESERVED_MASK 0xFFFFFFFEL
+//RLC_SEMAPHORE_2
+#define RLC_SEMAPHORE_2__CLIENT_ID__SHIFT 0x0
+#define RLC_SEMAPHORE_2__RESERVED__SHIFT 0x5
+#define RLC_SEMAPHORE_2__CLIENT_ID_MASK 0x0000001FL
+#define RLC_SEMAPHORE_2__RESERVED_MASK 0xFFFFFFE0L
+//RLC_SEMAPHORE_3
+#define RLC_SEMAPHORE_3__CLIENT_ID__SHIFT 0x0
+#define RLC_SEMAPHORE_3__RESERVED__SHIFT 0x5
+#define RLC_SEMAPHORE_3__CLIENT_ID_MASK 0x0000001FL
+#define RLC_SEMAPHORE_3__RESERVED_MASK 0xFFFFFFE0L
+//RLC_SMU_ARGUMENT_3
+#define RLC_SMU_ARGUMENT_3__ARG__SHIFT 0x0
+#define RLC_SMU_ARGUMENT_3__ARG_MASK 0xFFFFFFFFL
+//RLC_SMU_ARGUMENT_4
+#define RLC_SMU_ARGUMENT_4__ARG__SHIFT 0x0
+#define RLC_SMU_ARGUMENT_4__ARG_MASK 0xFFFFFFFFL
+//RLC_GPU_CLOCK_COUNT_LSB_1
+#define RLC_GPU_CLOCK_COUNT_LSB_1__GPU_CLOCKS_LSB__SHIFT 0x0
+#define RLC_GPU_CLOCK_COUNT_LSB_1__GPU_CLOCKS_LSB_MASK 0xFFFFFFFFL
+//RLC_GPU_CLOCK_COUNT_MSB_1
+#define RLC_GPU_CLOCK_COUNT_MSB_1__GPU_CLOCKS_MSB__SHIFT 0x0
+#define RLC_GPU_CLOCK_COUNT_MSB_1__GPU_CLOCKS_MSB_MASK 0xFFFFFFFFL
+//RLC_CAPTURE_GPU_CLOCK_COUNT_1
+#define RLC_CAPTURE_GPU_CLOCK_COUNT_1__CAPTURE__SHIFT 0x0
+#define RLC_CAPTURE_GPU_CLOCK_COUNT_1__RESERVED__SHIFT 0x1
+#define RLC_CAPTURE_GPU_CLOCK_COUNT_1__CAPTURE_MASK 0x00000001L
+#define RLC_CAPTURE_GPU_CLOCK_COUNT_1__RESERVED_MASK 0xFFFFFFFEL
+//RLC_GPU_CLOCK_COUNT_LSB_2
+#define RLC_GPU_CLOCK_COUNT_LSB_2__GPU_CLOCKS_LSB__SHIFT 0x0
+#define RLC_GPU_CLOCK_COUNT_LSB_2__GPU_CLOCKS_LSB_MASK 0xFFFFFFFFL
+//RLC_GPU_CLOCK_COUNT_MSB_2
+#define RLC_GPU_CLOCK_COUNT_MSB_2__GPU_CLOCKS_MSB__SHIFT 0x0
+#define RLC_GPU_CLOCK_COUNT_MSB_2__GPU_CLOCKS_MSB_MASK 0xFFFFFFFFL
+//RLC_CAPTURE_GPU_CLOCK_COUNT_2
+#define RLC_CAPTURE_GPU_CLOCK_COUNT_2__CAPTURE__SHIFT 0x0
+#define RLC_CAPTURE_GPU_CLOCK_COUNT_2__RESERVED__SHIFT 0x1
+#define RLC_CAPTURE_GPU_CLOCK_COUNT_2__CAPTURE_MASK 0x00000001L
+#define RLC_CAPTURE_GPU_CLOCK_COUNT_2__RESERVED_MASK 0xFFFFFFFEL
+//RLC_CPG_STAT_INVAL
+#define RLC_CPG_STAT_INVAL__CPG_stat_inval__SHIFT 0x0
+#define RLC_CPG_STAT_INVAL__CPG_stat_inval_MASK 0x00000001L
+//RLC_DSM_CNTL
+#define RLC_DSM_CNTL__RLCG_INSTR_RAM_IRRITATOR_DATA_SEL__SHIFT 0x0
+#define RLC_DSM_CNTL__RLCG_INSTR_RAM_IRRITATOR_SINGLE_WRITE__SHIFT 0x2
+#define RLC_DSM_CNTL__RLCG_SCRATCH_RAM_IRRITATOR_DATA_SEL__SHIFT 0x3
+#define RLC_DSM_CNTL__RLCG_SCRATCH_RAM_IRRITATOR_SINGLE_WRITE__SHIFT 0x5
+#define RLC_DSM_CNTL__RLCV_INSTR_RAM_IRRITATOR_DATA_SEL__SHIFT 0x6
+#define RLC_DSM_CNTL__RLCV_INSTR_RAM_IRRITATOR_SINGLE_WRITE__SHIFT 0x8
+#define RLC_DSM_CNTL__RLCV_SCRATCH_RAM_IRRITATOR_DATA_SEL__SHIFT 0x9
+#define RLC_DSM_CNTL__RLCV_SCRATCH_RAM_IRRITATOR_SINGLE_WRITE__SHIFT 0xb
+#define RLC_DSM_CNTL__RLC_TCTAG_RAM_IRRITATOR_DATA_SEL__SHIFT 0xc
+#define RLC_DSM_CNTL__RLC_TCTAG_RAM_IRRITATOR_SINGLE_WRITE__SHIFT 0xe
+#define RLC_DSM_CNTL__RLC_SPM_SCRATCH_RAM_IRRITATOR_DATA_SEL__SHIFT 0xf
+#define RLC_DSM_CNTL__RLC_SPM_SCRATCH_RAM_IRRITATOR_SINGLE_WRITE__SHIFT 0x11
+#define RLC_DSM_CNTL__RLC_SRM_DATA_RAM_IRRITATOR_DATA_SEL__SHIFT 0x12
+#define RLC_DSM_CNTL__RLC_SRM_DATA_RAM_IRRITATOR_SINGLE_WRITE__SHIFT 0x14
+#define RLC_DSM_CNTL__RLC_SRM_ADDR_RAM_IRRITATOR_DATA_SEL__SHIFT 0x15
+#define RLC_DSM_CNTL__RLC_SRM_ADDR_RAM_IRRITATOR_SINGLE_WRITE__SHIFT 0x17
+#define RLC_DSM_CNTL__RLCG_INSTR_RAM_IRRITATOR_DATA_SEL_MASK 0x00000003L
+#define RLC_DSM_CNTL__RLCG_INSTR_RAM_IRRITATOR_SINGLE_WRITE_MASK 0x00000004L
+#define RLC_DSM_CNTL__RLCG_SCRATCH_RAM_IRRITATOR_DATA_SEL_MASK 0x00000018L
+#define RLC_DSM_CNTL__RLCG_SCRATCH_RAM_IRRITATOR_SINGLE_WRITE_MASK 0x00000020L
+#define RLC_DSM_CNTL__RLCV_INSTR_RAM_IRRITATOR_DATA_SEL_MASK 0x000000C0L
+#define RLC_DSM_CNTL__RLCV_INSTR_RAM_IRRITATOR_SINGLE_WRITE_MASK 0x00000100L
+#define RLC_DSM_CNTL__RLCV_SCRATCH_RAM_IRRITATOR_DATA_SEL_MASK 0x00000600L
+#define RLC_DSM_CNTL__RLCV_SCRATCH_RAM_IRRITATOR_SINGLE_WRITE_MASK 0x00000800L
+#define RLC_DSM_CNTL__RLC_TCTAG_RAM_IRRITATOR_DATA_SEL_MASK 0x00003000L
+#define RLC_DSM_CNTL__RLC_TCTAG_RAM_IRRITATOR_SINGLE_WRITE_MASK 0x00004000L
+#define RLC_DSM_CNTL__RLC_SPM_SCRATCH_RAM_IRRITATOR_DATA_SEL_MASK 0x00018000L
+#define RLC_DSM_CNTL__RLC_SPM_SCRATCH_RAM_IRRITATOR_SINGLE_WRITE_MASK 0x00020000L
+#define RLC_DSM_CNTL__RLC_SRM_DATA_RAM_IRRITATOR_DATA_SEL_MASK 0x000C0000L
+#define RLC_DSM_CNTL__RLC_SRM_DATA_RAM_IRRITATOR_SINGLE_WRITE_MASK 0x00100000L
+#define RLC_DSM_CNTL__RLC_SRM_ADDR_RAM_IRRITATOR_DATA_SEL_MASK 0x00600000L
+#define RLC_DSM_CNTL__RLC_SRM_ADDR_RAM_IRRITATOR_SINGLE_WRITE_MASK 0x00800000L
+//RLC_DSM_CNTLA
+#define RLC_DSM_CNTLA__RLC_SPM_SE0_SCRATCH_RAM_IRRITATOR_DATA_SEL__SHIFT 0x0
+#define RLC_DSM_CNTLA__RLC_SPM_SE0_SCRATCH_RAM_IRRITATOR_SINGLE_WRITE__SHIFT 0x2
+#define RLC_DSM_CNTLA__RLC_SPM_SE1_SCRATCH_RAM_IRRITATOR_DATA_SEL__SHIFT 0x3
+#define RLC_DSM_CNTLA__RLC_SPM_SE1_SCRATCH_RAM_IRRITATOR_SINGLE_WRITE__SHIFT 0x5
+#define RLC_DSM_CNTLA__RLC_SPM_SE2_SCRATCH_RAM_IRRITATOR_DATA_SEL__SHIFT 0x6
+#define RLC_DSM_CNTLA__RLC_SPM_SE2_SCRATCH_RAM_IRRITATOR_SINGLE_WRITE__SHIFT 0x8
+#define RLC_DSM_CNTLA__RLC_SPM_SE3_SCRATCH_RAM_IRRITATOR_DATA_SEL__SHIFT 0x9
+#define RLC_DSM_CNTLA__RLC_SPM_SE3_SCRATCH_RAM_IRRITATOR_SINGLE_WRITE__SHIFT 0xb
+#define RLC_DSM_CNTLA__RLC_SPM_SE0_SCRATCH_RAM_IRRITATOR_DATA_SEL_MASK 0x00000003L
+#define RLC_DSM_CNTLA__RLC_SPM_SE0_SCRATCH_RAM_IRRITATOR_SINGLE_WRITE_MASK 0x00000004L
+#define RLC_DSM_CNTLA__RLC_SPM_SE1_SCRATCH_RAM_IRRITATOR_DATA_SEL_MASK 0x00000018L
+#define RLC_DSM_CNTLA__RLC_SPM_SE1_SCRATCH_RAM_IRRITATOR_SINGLE_WRITE_MASK 0x00000020L
+#define RLC_DSM_CNTLA__RLC_SPM_SE2_SCRATCH_RAM_IRRITATOR_DATA_SEL_MASK 0x000000C0L
+#define RLC_DSM_CNTLA__RLC_SPM_SE2_SCRATCH_RAM_IRRITATOR_SINGLE_WRITE_MASK 0x00000100L
+#define RLC_DSM_CNTLA__RLC_SPM_SE3_SCRATCH_RAM_IRRITATOR_DATA_SEL_MASK 0x00000600L
+#define RLC_DSM_CNTLA__RLC_SPM_SE3_SCRATCH_RAM_IRRITATOR_SINGLE_WRITE_MASK 0x00000800L
+//RLC_DSM_CNTL2
+#define RLC_DSM_CNTL2__RLCG_INSTR_RAM_ENABLE_ERROR_INJECT__SHIFT 0x0
+#define RLC_DSM_CNTL2__RLCG_INSTR_RAM_SELECT_INJECT_DELAY__SHIFT 0x2
+#define RLC_DSM_CNTL2__RLCG_SCRATCH_RAM_ENABLE_ERROR_INJECT__SHIFT 0x3
+#define RLC_DSM_CNTL2__RLCG_SCRATCH_RAM_SELECT_INJECT_DELAY__SHIFT 0x5
+#define RLC_DSM_CNTL2__RLCV_INSTR_RAM_ENABLE_ERROR_INJECT__SHIFT 0x6
+#define RLC_DSM_CNTL2__RLCV_INSTR_RAM_SELECT_INJECT_DELAY__SHIFT 0x8
+#define RLC_DSM_CNTL2__RLCV_SCRATCH_RAM_ENABLE_ERROR_INJECT__SHIFT 0x9
+#define RLC_DSM_CNTL2__RLCV_SCRATCH_RAM_SELECT_INJECT_DELAY__SHIFT 0xb
+#define RLC_DSM_CNTL2__RLC_TCTAG_RAM_ENABLE_ERROR_INJECT__SHIFT 0xc
+#define RLC_DSM_CNTL2__RLC_TCTAG_RAM_SELECT_INJECT_DELAY__SHIFT 0xe
+#define RLC_DSM_CNTL2__RLC_SPM_SCRATCH_RAM_ENABLE_ERROR_INJECT__SHIFT 0xf
+#define RLC_DSM_CNTL2__RLC_SPM_SCRATCH_RAM_SELECT_INJECT_DELAY__SHIFT 0x11
+#define RLC_DSM_CNTL2__RLC_SRM_DATA_RAM_ENABLE_ERROR_INJECT__SHIFT 0x12
+#define RLC_DSM_CNTL2__RLC_SRM_DATA_RAM_SELECT_INJECT_DELAY__SHIFT 0x14
+#define RLC_DSM_CNTL2__RLC_SRM_ADDR_RAM_ENABLE_ERROR_INJECT__SHIFT 0x15
+#define RLC_DSM_CNTL2__RLC_SRM_ADDR_RAM_SELECT_INJECT_DELAY__SHIFT 0x17
+#define RLC_DSM_CNTL2__INJECT_DELAY__SHIFT 0x1a
+#define RLC_DSM_CNTL2__RLCG_INSTR_RAM_ENABLE_ERROR_INJECT_MASK 0x00000003L
+#define RLC_DSM_CNTL2__RLCG_INSTR_RAM_SELECT_INJECT_DELAY_MASK 0x00000004L
+#define RLC_DSM_CNTL2__RLCG_SCRATCH_RAM_ENABLE_ERROR_INJECT_MASK 0x00000018L
+#define RLC_DSM_CNTL2__RLCG_SCRATCH_RAM_SELECT_INJECT_DELAY_MASK 0x00000020L
+#define RLC_DSM_CNTL2__RLCV_INSTR_RAM_ENABLE_ERROR_INJECT_MASK 0x000000C0L
+#define RLC_DSM_CNTL2__RLCV_INSTR_RAM_SELECT_INJECT_DELAY_MASK 0x00000100L
+#define RLC_DSM_CNTL2__RLCV_SCRATCH_RAM_ENABLE_ERROR_INJECT_MASK 0x00000600L
+#define RLC_DSM_CNTL2__RLCV_SCRATCH_RAM_SELECT_INJECT_DELAY_MASK 0x00000800L
+#define RLC_DSM_CNTL2__RLC_TCTAG_RAM_ENABLE_ERROR_INJECT_MASK 0x00003000L
+#define RLC_DSM_CNTL2__RLC_TCTAG_RAM_SELECT_INJECT_DELAY_MASK 0x00004000L
+#define RLC_DSM_CNTL2__RLC_SPM_SCRATCH_RAM_ENABLE_ERROR_INJECT_MASK 0x00018000L
+#define RLC_DSM_CNTL2__RLC_SPM_SCRATCH_RAM_SELECT_INJECT_DELAY_MASK 0x00020000L
+#define RLC_DSM_CNTL2__RLC_SRM_DATA_RAM_ENABLE_ERROR_INJECT_MASK 0x000C0000L
+#define RLC_DSM_CNTL2__RLC_SRM_DATA_RAM_SELECT_INJECT_DELAY_MASK 0x00100000L
+#define RLC_DSM_CNTL2__RLC_SRM_ADDR_RAM_ENABLE_ERROR_INJECT_MASK 0x00600000L
+#define RLC_DSM_CNTL2__RLC_SRM_ADDR_RAM_SELECT_INJECT_DELAY_MASK 0x00800000L
+#define RLC_DSM_CNTL2__INJECT_DELAY_MASK 0xFC000000L
+//RLC_DSM_CNTL2A
+#define RLC_DSM_CNTL2A__RLC_SPM_SE0_SCRATCH_RAM_ENABLE_ERROR_INJECT__SHIFT 0x0
+#define RLC_DSM_CNTL2A__RLC_SPM_SE0_SCRATCH_RAM_SELECT_INJECT_DELAY__SHIFT 0x2
+#define RLC_DSM_CNTL2A__RLC_SPM_SE1_SCRATCH_RAM_ENABLE_ERROR_INJECT__SHIFT 0x3
+#define RLC_DSM_CNTL2A__RLC_SPM_SE1_SCRATCH_RAM_SELECT_INJECT_DELAY__SHIFT 0x5
+#define RLC_DSM_CNTL2A__RLC_SPM_SE2_SCRATCH_RAM_ENABLE_ERROR_INJECT__SHIFT 0x6
+#define RLC_DSM_CNTL2A__RLC_SPM_SE2_SCRATCH_RAM_SELECT_INJECT_DELAY__SHIFT 0x8
+#define RLC_DSM_CNTL2A__RLC_SPM_SE3_SCRATCH_RAM_ENABLE_ERROR_INJECT__SHIFT 0x9
+#define RLC_DSM_CNTL2A__RLC_SPM_SE3_SCRATCH_RAM_SELECT_INJECT_DELAY__SHIFT 0xb
+#define RLC_DSM_CNTL2A__RLC_SPM_SE0_SCRATCH_RAM_ENABLE_ERROR_INJECT_MASK 0x00000003L
+#define RLC_DSM_CNTL2A__RLC_SPM_SE0_SCRATCH_RAM_SELECT_INJECT_DELAY_MASK 0x00000004L
+#define RLC_DSM_CNTL2A__RLC_SPM_SE1_SCRATCH_RAM_ENABLE_ERROR_INJECT_MASK 0x00000018L
+#define RLC_DSM_CNTL2A__RLC_SPM_SE1_SCRATCH_RAM_SELECT_INJECT_DELAY_MASK 0x00000020L
+#define RLC_DSM_CNTL2A__RLC_SPM_SE2_SCRATCH_RAM_ENABLE_ERROR_INJECT_MASK 0x000000C0L
+#define RLC_DSM_CNTL2A__RLC_SPM_SE2_SCRATCH_RAM_SELECT_INJECT_DELAY_MASK 0x00000100L
+#define RLC_DSM_CNTL2A__RLC_SPM_SE3_SCRATCH_RAM_ENABLE_ERROR_INJECT_MASK 0x00000600L
+#define RLC_DSM_CNTL2A__RLC_SPM_SE3_SCRATCH_RAM_SELECT_INJECT_DELAY_MASK 0x00000800L
+//RLC_RLCV_SPARE_INT
+#define RLC_RLCV_SPARE_INT__INTERRUPT__SHIFT 0x0
+#define RLC_RLCV_SPARE_INT__RESERVED__SHIFT 0x1
+#define RLC_RLCV_SPARE_INT__INTERRUPT_MASK 0x00000001L
+#define RLC_RLCV_SPARE_INT__RESERVED_MASK 0xFFFFFFFEL
+//RLC_SMU_CLK_REQ
+#define RLC_SMU_CLK_REQ__VALID__SHIFT 0x0
+#define RLC_SMU_CLK_REQ__VALID_MASK 0x00000001L
+
+
+// addressBlock: xcd0_gc_pwrdec
+//CGTS_SM_CTRL_REG
+#define CGTS_SM_CTRL_REG__ON_SEQ_DELAY__SHIFT 0x0
+#define CGTS_SM_CTRL_REG__OFF_SEQ_DELAY__SHIFT 0x4
+#define CGTS_SM_CTRL_REG__MGCG_ENABLED__SHIFT 0xc
+#define CGTS_SM_CTRL_REG__BASE_MODE__SHIFT 0x10
+#define CGTS_SM_CTRL_REG__SM_MODE__SHIFT 0x11
+#define CGTS_SM_CTRL_REG__SM_MODE_ENABLE__SHIFT 0x14
+#define CGTS_SM_CTRL_REG__OVERRIDE__SHIFT 0x15
+#define CGTS_SM_CTRL_REG__LS_OVERRIDE__SHIFT 0x16
+#define CGTS_SM_CTRL_REG__ON_MONITOR_ADD_EN__SHIFT 0x17
+#define CGTS_SM_CTRL_REG__ON_MONITOR_ADD__SHIFT 0x18
+#define CGTS_SM_CTRL_REG__ON_SEQ_DELAY_MASK 0x0000000FL
+#define CGTS_SM_CTRL_REG__OFF_SEQ_DELAY_MASK 0x00000FF0L
+#define CGTS_SM_CTRL_REG__MGCG_ENABLED_MASK 0x00001000L
+#define CGTS_SM_CTRL_REG__BASE_MODE_MASK 0x00010000L
+#define CGTS_SM_CTRL_REG__SM_MODE_MASK 0x000E0000L
+#define CGTS_SM_CTRL_REG__SM_MODE_ENABLE_MASK 0x00100000L
+#define CGTS_SM_CTRL_REG__OVERRIDE_MASK 0x00200000L
+#define CGTS_SM_CTRL_REG__LS_OVERRIDE_MASK 0x00400000L
+#define CGTS_SM_CTRL_REG__ON_MONITOR_ADD_EN_MASK 0x00800000L
+#define CGTS_SM_CTRL_REG__ON_MONITOR_ADD_MASK 0xFF000000L
+//CGTS_RD_CTRL_REG
+#define CGTS_RD_CTRL_REG__ROW_MUX_SEL__SHIFT 0x0
+#define CGTS_RD_CTRL_REG__REG_MUX_SEL__SHIFT 0x8
+#define CGTS_RD_CTRL_REG__ROW_MUX_SEL_MASK 0x0000001FL
+#define CGTS_RD_CTRL_REG__REG_MUX_SEL_MASK 0x00001F00L
+//CGTS_RD_REG
+#define CGTS_RD_REG__READ_DATA__SHIFT 0x0
+#define CGTS_RD_REG__READ_DATA_MASK 0x00003FFFL
+//CGTS_TCC_DISABLE
+#define CGTS_TCC_DISABLE__WRITE_DIS__SHIFT 0x0
+#define CGTS_TCC_DISABLE__TCC_DISABLE__SHIFT 0x10
+#define CGTS_TCC_DISABLE__WRITE_DIS_MASK 0x00000001L
+#define CGTS_TCC_DISABLE__TCC_DISABLE_MASK 0xFFFF0000L
+//CGTS_USER_TCC_DISABLE
+#define CGTS_USER_TCC_DISABLE__TCC_DISABLE__SHIFT 0x10
+#define CGTS_USER_TCC_DISABLE__TCC_DISABLE_MASK 0xFFFF0000L
+//CGTS_CU0_SP0_CTRL_REG
+#define CGTS_CU0_SP0_CTRL_REG__SP00__SHIFT 0x0
+#define CGTS_CU0_SP0_CTRL_REG__SP00_OVERRIDE__SHIFT 0x7
+#define CGTS_CU0_SP0_CTRL_REG__SP00_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU0_SP0_CTRL_REG__SP00_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU0_SP0_CTRL_REG__SP00_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU0_SP0_CTRL_REG__SP01__SHIFT 0x10
+#define CGTS_CU0_SP0_CTRL_REG__SP01_OVERRIDE__SHIFT 0x17
+#define CGTS_CU0_SP0_CTRL_REG__SP01_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU0_SP0_CTRL_REG__SP01_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU0_SP0_CTRL_REG__SP01_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU0_SP0_CTRL_REG__SP00_MASK 0x0000007FL
+#define CGTS_CU0_SP0_CTRL_REG__SP00_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU0_SP0_CTRL_REG__SP00_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU0_SP0_CTRL_REG__SP00_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU0_SP0_CTRL_REG__SP00_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU0_SP0_CTRL_REG__SP01_MASK 0x007F0000L
+#define CGTS_CU0_SP0_CTRL_REG__SP01_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU0_SP0_CTRL_REG__SP01_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU0_SP0_CTRL_REG__SP01_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU0_SP0_CTRL_REG__SP01_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU0_LDS_SQ_CTRL_REG
+#define CGTS_CU0_LDS_SQ_CTRL_REG__LDS__SHIFT 0x0
+#define CGTS_CU0_LDS_SQ_CTRL_REG__LDS_OVERRIDE__SHIFT 0x7
+#define CGTS_CU0_LDS_SQ_CTRL_REG__LDS_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU0_LDS_SQ_CTRL_REG__LDS_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU0_LDS_SQ_CTRL_REG__LDS_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU0_LDS_SQ_CTRL_REG__SQ__SHIFT 0x10
+#define CGTS_CU0_LDS_SQ_CTRL_REG__SQ_OVERRIDE__SHIFT 0x17
+#define CGTS_CU0_LDS_SQ_CTRL_REG__SQ_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU0_LDS_SQ_CTRL_REG__SQ_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU0_LDS_SQ_CTRL_REG__SQ_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU0_LDS_SQ_CTRL_REG__LDS_MASK 0x0000007FL
+#define CGTS_CU0_LDS_SQ_CTRL_REG__LDS_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU0_LDS_SQ_CTRL_REG__LDS_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU0_LDS_SQ_CTRL_REG__LDS_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU0_LDS_SQ_CTRL_REG__LDS_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU0_LDS_SQ_CTRL_REG__SQ_MASK 0x007F0000L
+#define CGTS_CU0_LDS_SQ_CTRL_REG__SQ_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU0_LDS_SQ_CTRL_REG__SQ_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU0_LDS_SQ_CTRL_REG__SQ_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU0_LDS_SQ_CTRL_REG__SQ_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU0_TA_SQC_CTRL_REG
+#define CGTS_CU0_TA_SQC_CTRL_REG__TA__SHIFT 0x0
+#define CGTS_CU0_TA_SQC_CTRL_REG__TA_OVERRIDE__SHIFT 0x7
+#define CGTS_CU0_TA_SQC_CTRL_REG__TA_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU0_TA_SQC_CTRL_REG__TA_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU0_TA_SQC_CTRL_REG__TA_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU0_TA_SQC_CTRL_REG__SQC__SHIFT 0x10
+#define CGTS_CU0_TA_SQC_CTRL_REG__SQC_OVERRIDE__SHIFT 0x17
+#define CGTS_CU0_TA_SQC_CTRL_REG__SQC_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU0_TA_SQC_CTRL_REG__SQC_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU0_TA_SQC_CTRL_REG__SQC_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU0_TA_SQC_CTRL_REG__TA_MASK 0x0000007FL
+#define CGTS_CU0_TA_SQC_CTRL_REG__TA_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU0_TA_SQC_CTRL_REG__TA_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU0_TA_SQC_CTRL_REG__TA_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU0_TA_SQC_CTRL_REG__TA_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU0_TA_SQC_CTRL_REG__SQC_MASK 0x007F0000L
+#define CGTS_CU0_TA_SQC_CTRL_REG__SQC_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU0_TA_SQC_CTRL_REG__SQC_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU0_TA_SQC_CTRL_REG__SQC_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU0_TA_SQC_CTRL_REG__SQC_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU0_SP1_CTRL_REG
+#define CGTS_CU0_SP1_CTRL_REG__SP10__SHIFT 0x0
+#define CGTS_CU0_SP1_CTRL_REG__SP10_OVERRIDE__SHIFT 0x7
+#define CGTS_CU0_SP1_CTRL_REG__SP10_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU0_SP1_CTRL_REG__SP10_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU0_SP1_CTRL_REG__SP10_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU0_SP1_CTRL_REG__SP11__SHIFT 0x10
+#define CGTS_CU0_SP1_CTRL_REG__SP11_OVERRIDE__SHIFT 0x17
+#define CGTS_CU0_SP1_CTRL_REG__SP11_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU0_SP1_CTRL_REG__SP11_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU0_SP1_CTRL_REG__SP11_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU0_SP1_CTRL_REG__SP10_MASK 0x0000007FL
+#define CGTS_CU0_SP1_CTRL_REG__SP10_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU0_SP1_CTRL_REG__SP10_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU0_SP1_CTRL_REG__SP10_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU0_SP1_CTRL_REG__SP10_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU0_SP1_CTRL_REG__SP11_MASK 0x007F0000L
+#define CGTS_CU0_SP1_CTRL_REG__SP11_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU0_SP1_CTRL_REG__SP11_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU0_SP1_CTRL_REG__SP11_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU0_SP1_CTRL_REG__SP11_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU0_TD_TCP_CTRL_REG
+#define CGTS_CU0_TD_TCP_CTRL_REG__TD__SHIFT 0x0
+#define CGTS_CU0_TD_TCP_CTRL_REG__TD_OVERRIDE__SHIFT 0x7
+#define CGTS_CU0_TD_TCP_CTRL_REG__TD_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU0_TD_TCP_CTRL_REG__TD_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU0_TD_TCP_CTRL_REG__TD_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU0_TD_TCP_CTRL_REG__TCPF__SHIFT 0x10
+#define CGTS_CU0_TD_TCP_CTRL_REG__TCPF_OVERRIDE__SHIFT 0x17
+#define CGTS_CU0_TD_TCP_CTRL_REG__TCPF_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU0_TD_TCP_CTRL_REG__TCPF_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU0_TD_TCP_CTRL_REG__TCPF_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU0_TD_TCP_CTRL_REG__TD_MASK 0x0000007FL
+#define CGTS_CU0_TD_TCP_CTRL_REG__TD_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU0_TD_TCP_CTRL_REG__TD_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU0_TD_TCP_CTRL_REG__TD_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU0_TD_TCP_CTRL_REG__TD_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU0_TD_TCP_CTRL_REG__TCPF_MASK 0x007F0000L
+#define CGTS_CU0_TD_TCP_CTRL_REG__TCPF_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU0_TD_TCP_CTRL_REG__TCPF_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU0_TD_TCP_CTRL_REG__TCPF_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU0_TD_TCP_CTRL_REG__TCPF_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU1_SP0_CTRL_REG
+#define CGTS_CU1_SP0_CTRL_REG__SP00__SHIFT 0x0
+#define CGTS_CU1_SP0_CTRL_REG__SP00_OVERRIDE__SHIFT 0x7
+#define CGTS_CU1_SP0_CTRL_REG__SP00_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU1_SP0_CTRL_REG__SP00_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU1_SP0_CTRL_REG__SP00_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU1_SP0_CTRL_REG__SP01__SHIFT 0x10
+#define CGTS_CU1_SP0_CTRL_REG__SP01_OVERRIDE__SHIFT 0x17
+#define CGTS_CU1_SP0_CTRL_REG__SP01_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU1_SP0_CTRL_REG__SP01_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU1_SP0_CTRL_REG__SP01_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU1_SP0_CTRL_REG__SP00_MASK 0x0000007FL
+#define CGTS_CU1_SP0_CTRL_REG__SP00_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU1_SP0_CTRL_REG__SP00_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU1_SP0_CTRL_REG__SP00_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU1_SP0_CTRL_REG__SP00_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU1_SP0_CTRL_REG__SP01_MASK 0x007F0000L
+#define CGTS_CU1_SP0_CTRL_REG__SP01_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU1_SP0_CTRL_REG__SP01_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU1_SP0_CTRL_REG__SP01_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU1_SP0_CTRL_REG__SP01_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU1_LDS_SQ_CTRL_REG
+#define CGTS_CU1_LDS_SQ_CTRL_REG__LDS__SHIFT 0x0
+#define CGTS_CU1_LDS_SQ_CTRL_REG__LDS_OVERRIDE__SHIFT 0x7
+#define CGTS_CU1_LDS_SQ_CTRL_REG__LDS_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU1_LDS_SQ_CTRL_REG__LDS_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU1_LDS_SQ_CTRL_REG__LDS_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU1_LDS_SQ_CTRL_REG__SQ__SHIFT 0x10
+#define CGTS_CU1_LDS_SQ_CTRL_REG__SQ_OVERRIDE__SHIFT 0x17
+#define CGTS_CU1_LDS_SQ_CTRL_REG__SQ_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU1_LDS_SQ_CTRL_REG__SQ_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU1_LDS_SQ_CTRL_REG__SQ_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU1_LDS_SQ_CTRL_REG__LDS_MASK 0x0000007FL
+#define CGTS_CU1_LDS_SQ_CTRL_REG__LDS_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU1_LDS_SQ_CTRL_REG__LDS_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU1_LDS_SQ_CTRL_REG__LDS_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU1_LDS_SQ_CTRL_REG__LDS_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU1_LDS_SQ_CTRL_REG__SQ_MASK 0x007F0000L
+#define CGTS_CU1_LDS_SQ_CTRL_REG__SQ_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU1_LDS_SQ_CTRL_REG__SQ_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU1_LDS_SQ_CTRL_REG__SQ_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU1_LDS_SQ_CTRL_REG__SQ_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU1_TA_SQC_CTRL_REG
+#define CGTS_CU1_TA_SQC_CTRL_REG__TA__SHIFT 0x0
+#define CGTS_CU1_TA_SQC_CTRL_REG__TA_OVERRIDE__SHIFT 0x7
+#define CGTS_CU1_TA_SQC_CTRL_REG__TA_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU1_TA_SQC_CTRL_REG__TA_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU1_TA_SQC_CTRL_REG__TA_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU1_TA_SQC_CTRL_REG__TA_MASK 0x0000007FL
+#define CGTS_CU1_TA_SQC_CTRL_REG__TA_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU1_TA_SQC_CTRL_REG__TA_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU1_TA_SQC_CTRL_REG__TA_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU1_TA_SQC_CTRL_REG__TA_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+//CGTS_CU1_SP1_CTRL_REG
+#define CGTS_CU1_SP1_CTRL_REG__SP10__SHIFT 0x0
+#define CGTS_CU1_SP1_CTRL_REG__SP10_OVERRIDE__SHIFT 0x7
+#define CGTS_CU1_SP1_CTRL_REG__SP10_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU1_SP1_CTRL_REG__SP10_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU1_SP1_CTRL_REG__SP10_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU1_SP1_CTRL_REG__SP11__SHIFT 0x10
+#define CGTS_CU1_SP1_CTRL_REG__SP11_OVERRIDE__SHIFT 0x17
+#define CGTS_CU1_SP1_CTRL_REG__SP11_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU1_SP1_CTRL_REG__SP11_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU1_SP1_CTRL_REG__SP11_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU1_SP1_CTRL_REG__SP10_MASK 0x0000007FL
+#define CGTS_CU1_SP1_CTRL_REG__SP10_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU1_SP1_CTRL_REG__SP10_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU1_SP1_CTRL_REG__SP10_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU1_SP1_CTRL_REG__SP10_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU1_SP1_CTRL_REG__SP11_MASK 0x007F0000L
+#define CGTS_CU1_SP1_CTRL_REG__SP11_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU1_SP1_CTRL_REG__SP11_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU1_SP1_CTRL_REG__SP11_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU1_SP1_CTRL_REG__SP11_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU1_TD_TCP_CTRL_REG
+#define CGTS_CU1_TD_TCP_CTRL_REG__TD__SHIFT 0x0
+#define CGTS_CU1_TD_TCP_CTRL_REG__TD_OVERRIDE__SHIFT 0x7
+#define CGTS_CU1_TD_TCP_CTRL_REG__TD_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU1_TD_TCP_CTRL_REG__TD_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU1_TD_TCP_CTRL_REG__TD_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU1_TD_TCP_CTRL_REG__TCPF__SHIFT 0x10
+#define CGTS_CU1_TD_TCP_CTRL_REG__TCPF_OVERRIDE__SHIFT 0x17
+#define CGTS_CU1_TD_TCP_CTRL_REG__TCPF_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU1_TD_TCP_CTRL_REG__TCPF_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU1_TD_TCP_CTRL_REG__TCPF_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU1_TD_TCP_CTRL_REG__TD_MASK 0x0000007FL
+#define CGTS_CU1_TD_TCP_CTRL_REG__TD_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU1_TD_TCP_CTRL_REG__TD_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU1_TD_TCP_CTRL_REG__TD_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU1_TD_TCP_CTRL_REG__TD_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU1_TD_TCP_CTRL_REG__TCPF_MASK 0x007F0000L
+#define CGTS_CU1_TD_TCP_CTRL_REG__TCPF_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU1_TD_TCP_CTRL_REG__TCPF_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU1_TD_TCP_CTRL_REG__TCPF_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU1_TD_TCP_CTRL_REG__TCPF_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU2_SP0_CTRL_REG
+#define CGTS_CU2_SP0_CTRL_REG__SP00__SHIFT 0x0
+#define CGTS_CU2_SP0_CTRL_REG__SP00_OVERRIDE__SHIFT 0x7
+#define CGTS_CU2_SP0_CTRL_REG__SP00_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU2_SP0_CTRL_REG__SP00_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU2_SP0_CTRL_REG__SP00_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU2_SP0_CTRL_REG__SP01__SHIFT 0x10
+#define CGTS_CU2_SP0_CTRL_REG__SP01_OVERRIDE__SHIFT 0x17
+#define CGTS_CU2_SP0_CTRL_REG__SP01_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU2_SP0_CTRL_REG__SP01_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU2_SP0_CTRL_REG__SP01_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU2_SP0_CTRL_REG__SP00_MASK 0x0000007FL
+#define CGTS_CU2_SP0_CTRL_REG__SP00_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU2_SP0_CTRL_REG__SP00_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU2_SP0_CTRL_REG__SP00_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU2_SP0_CTRL_REG__SP00_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU2_SP0_CTRL_REG__SP01_MASK 0x007F0000L
+#define CGTS_CU2_SP0_CTRL_REG__SP01_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU2_SP0_CTRL_REG__SP01_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU2_SP0_CTRL_REG__SP01_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU2_SP0_CTRL_REG__SP01_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU2_LDS_SQ_CTRL_REG
+#define CGTS_CU2_LDS_SQ_CTRL_REG__LDS__SHIFT 0x0
+#define CGTS_CU2_LDS_SQ_CTRL_REG__LDS_OVERRIDE__SHIFT 0x7
+#define CGTS_CU2_LDS_SQ_CTRL_REG__LDS_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU2_LDS_SQ_CTRL_REG__LDS_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU2_LDS_SQ_CTRL_REG__LDS_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU2_LDS_SQ_CTRL_REG__SQ__SHIFT 0x10
+#define CGTS_CU2_LDS_SQ_CTRL_REG__SQ_OVERRIDE__SHIFT 0x17
+#define CGTS_CU2_LDS_SQ_CTRL_REG__SQ_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU2_LDS_SQ_CTRL_REG__SQ_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU2_LDS_SQ_CTRL_REG__SQ_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU2_LDS_SQ_CTRL_REG__LDS_MASK 0x0000007FL
+#define CGTS_CU2_LDS_SQ_CTRL_REG__LDS_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU2_LDS_SQ_CTRL_REG__LDS_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU2_LDS_SQ_CTRL_REG__LDS_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU2_LDS_SQ_CTRL_REG__LDS_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU2_LDS_SQ_CTRL_REG__SQ_MASK 0x007F0000L
+#define CGTS_CU2_LDS_SQ_CTRL_REG__SQ_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU2_LDS_SQ_CTRL_REG__SQ_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU2_LDS_SQ_CTRL_REG__SQ_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU2_LDS_SQ_CTRL_REG__SQ_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU2_TA_SQC_CTRL_REG
+#define CGTS_CU2_TA_SQC_CTRL_REG__TA__SHIFT 0x0
+#define CGTS_CU2_TA_SQC_CTRL_REG__TA_OVERRIDE__SHIFT 0x7
+#define CGTS_CU2_TA_SQC_CTRL_REG__TA_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU2_TA_SQC_CTRL_REG__TA_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU2_TA_SQC_CTRL_REG__TA_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU2_TA_SQC_CTRL_REG__SQC__SHIFT 0x10
+#define CGTS_CU2_TA_SQC_CTRL_REG__SQC_OVERRIDE__SHIFT 0x17
+#define CGTS_CU2_TA_SQC_CTRL_REG__SQC_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU2_TA_SQC_CTRL_REG__SQC_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU2_TA_SQC_CTRL_REG__SQC_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU2_TA_SQC_CTRL_REG__TA_MASK 0x0000007FL
+#define CGTS_CU2_TA_SQC_CTRL_REG__TA_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU2_TA_SQC_CTRL_REG__TA_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU2_TA_SQC_CTRL_REG__TA_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU2_TA_SQC_CTRL_REG__TA_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU2_TA_SQC_CTRL_REG__SQC_MASK 0x007F0000L
+#define CGTS_CU2_TA_SQC_CTRL_REG__SQC_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU2_TA_SQC_CTRL_REG__SQC_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU2_TA_SQC_CTRL_REG__SQC_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU2_TA_SQC_CTRL_REG__SQC_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU2_SP1_CTRL_REG
+#define CGTS_CU2_SP1_CTRL_REG__SP10__SHIFT 0x0
+#define CGTS_CU2_SP1_CTRL_REG__SP10_OVERRIDE__SHIFT 0x7
+#define CGTS_CU2_SP1_CTRL_REG__SP10_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU2_SP1_CTRL_REG__SP10_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU2_SP1_CTRL_REG__SP10_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU2_SP1_CTRL_REG__SP11__SHIFT 0x10
+#define CGTS_CU2_SP1_CTRL_REG__SP11_OVERRIDE__SHIFT 0x17
+#define CGTS_CU2_SP1_CTRL_REG__SP11_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU2_SP1_CTRL_REG__SP11_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU2_SP1_CTRL_REG__SP11_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU2_SP1_CTRL_REG__SP10_MASK 0x0000007FL
+#define CGTS_CU2_SP1_CTRL_REG__SP10_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU2_SP1_CTRL_REG__SP10_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU2_SP1_CTRL_REG__SP10_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU2_SP1_CTRL_REG__SP10_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU2_SP1_CTRL_REG__SP11_MASK 0x007F0000L
+#define CGTS_CU2_SP1_CTRL_REG__SP11_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU2_SP1_CTRL_REG__SP11_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU2_SP1_CTRL_REG__SP11_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU2_SP1_CTRL_REG__SP11_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU2_TD_TCP_CTRL_REG
+#define CGTS_CU2_TD_TCP_CTRL_REG__TD__SHIFT 0x0
+#define CGTS_CU2_TD_TCP_CTRL_REG__TD_OVERRIDE__SHIFT 0x7
+#define CGTS_CU2_TD_TCP_CTRL_REG__TD_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU2_TD_TCP_CTRL_REG__TD_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU2_TD_TCP_CTRL_REG__TD_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU2_TD_TCP_CTRL_REG__TCPF__SHIFT 0x10
+#define CGTS_CU2_TD_TCP_CTRL_REG__TCPF_OVERRIDE__SHIFT 0x17
+#define CGTS_CU2_TD_TCP_CTRL_REG__TCPF_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU2_TD_TCP_CTRL_REG__TCPF_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU2_TD_TCP_CTRL_REG__TCPF_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU2_TD_TCP_CTRL_REG__TD_MASK 0x0000007FL
+#define CGTS_CU2_TD_TCP_CTRL_REG__TD_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU2_TD_TCP_CTRL_REG__TD_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU2_TD_TCP_CTRL_REG__TD_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU2_TD_TCP_CTRL_REG__TD_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU2_TD_TCP_CTRL_REG__TCPF_MASK 0x007F0000L
+#define CGTS_CU2_TD_TCP_CTRL_REG__TCPF_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU2_TD_TCP_CTRL_REG__TCPF_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU2_TD_TCP_CTRL_REG__TCPF_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU2_TD_TCP_CTRL_REG__TCPF_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU3_SP0_CTRL_REG
+#define CGTS_CU3_SP0_CTRL_REG__SP00__SHIFT 0x0
+#define CGTS_CU3_SP0_CTRL_REG__SP00_OVERRIDE__SHIFT 0x7
+#define CGTS_CU3_SP0_CTRL_REG__SP00_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU3_SP0_CTRL_REG__SP00_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU3_SP0_CTRL_REG__SP00_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU3_SP0_CTRL_REG__SP01__SHIFT 0x10
+#define CGTS_CU3_SP0_CTRL_REG__SP01_OVERRIDE__SHIFT 0x17
+#define CGTS_CU3_SP0_CTRL_REG__SP01_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU3_SP0_CTRL_REG__SP01_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU3_SP0_CTRL_REG__SP01_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU3_SP0_CTRL_REG__SP00_MASK 0x0000007FL
+#define CGTS_CU3_SP0_CTRL_REG__SP00_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU3_SP0_CTRL_REG__SP00_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU3_SP0_CTRL_REG__SP00_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU3_SP0_CTRL_REG__SP00_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU3_SP0_CTRL_REG__SP01_MASK 0x007F0000L
+#define CGTS_CU3_SP0_CTRL_REG__SP01_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU3_SP0_CTRL_REG__SP01_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU3_SP0_CTRL_REG__SP01_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU3_SP0_CTRL_REG__SP01_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU3_LDS_SQ_CTRL_REG
+#define CGTS_CU3_LDS_SQ_CTRL_REG__LDS__SHIFT 0x0
+#define CGTS_CU3_LDS_SQ_CTRL_REG__LDS_OVERRIDE__SHIFT 0x7
+#define CGTS_CU3_LDS_SQ_CTRL_REG__LDS_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU3_LDS_SQ_CTRL_REG__LDS_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU3_LDS_SQ_CTRL_REG__LDS_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU3_LDS_SQ_CTRL_REG__SQ__SHIFT 0x10
+#define CGTS_CU3_LDS_SQ_CTRL_REG__SQ_OVERRIDE__SHIFT 0x17
+#define CGTS_CU3_LDS_SQ_CTRL_REG__SQ_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU3_LDS_SQ_CTRL_REG__SQ_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU3_LDS_SQ_CTRL_REG__SQ_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU3_LDS_SQ_CTRL_REG__LDS_MASK 0x0000007FL
+#define CGTS_CU3_LDS_SQ_CTRL_REG__LDS_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU3_LDS_SQ_CTRL_REG__LDS_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU3_LDS_SQ_CTRL_REG__LDS_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU3_LDS_SQ_CTRL_REG__LDS_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU3_LDS_SQ_CTRL_REG__SQ_MASK 0x007F0000L
+#define CGTS_CU3_LDS_SQ_CTRL_REG__SQ_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU3_LDS_SQ_CTRL_REG__SQ_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU3_LDS_SQ_CTRL_REG__SQ_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU3_LDS_SQ_CTRL_REG__SQ_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU3_TA_SQC_CTRL_REG
+#define CGTS_CU3_TA_SQC_CTRL_REG__TA__SHIFT 0x0
+#define CGTS_CU3_TA_SQC_CTRL_REG__TA_OVERRIDE__SHIFT 0x7
+#define CGTS_CU3_TA_SQC_CTRL_REG__TA_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU3_TA_SQC_CTRL_REG__TA_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU3_TA_SQC_CTRL_REG__TA_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU3_TA_SQC_CTRL_REG__TA_MASK 0x0000007FL
+#define CGTS_CU3_TA_SQC_CTRL_REG__TA_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU3_TA_SQC_CTRL_REG__TA_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU3_TA_SQC_CTRL_REG__TA_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU3_TA_SQC_CTRL_REG__TA_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+//CGTS_CU3_SP1_CTRL_REG
+#define CGTS_CU3_SP1_CTRL_REG__SP10__SHIFT 0x0
+#define CGTS_CU3_SP1_CTRL_REG__SP10_OVERRIDE__SHIFT 0x7
+#define CGTS_CU3_SP1_CTRL_REG__SP10_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU3_SP1_CTRL_REG__SP10_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU3_SP1_CTRL_REG__SP10_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU3_SP1_CTRL_REG__SP11__SHIFT 0x10
+#define CGTS_CU3_SP1_CTRL_REG__SP11_OVERRIDE__SHIFT 0x17
+#define CGTS_CU3_SP1_CTRL_REG__SP11_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU3_SP1_CTRL_REG__SP11_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU3_SP1_CTRL_REG__SP11_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU3_SP1_CTRL_REG__SP10_MASK 0x0000007FL
+#define CGTS_CU3_SP1_CTRL_REG__SP10_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU3_SP1_CTRL_REG__SP10_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU3_SP1_CTRL_REG__SP10_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU3_SP1_CTRL_REG__SP10_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU3_SP1_CTRL_REG__SP11_MASK 0x007F0000L
+#define CGTS_CU3_SP1_CTRL_REG__SP11_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU3_SP1_CTRL_REG__SP11_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU3_SP1_CTRL_REG__SP11_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU3_SP1_CTRL_REG__SP11_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU3_TD_TCP_CTRL_REG
+#define CGTS_CU3_TD_TCP_CTRL_REG__TD__SHIFT 0x0
+#define CGTS_CU3_TD_TCP_CTRL_REG__TD_OVERRIDE__SHIFT 0x7
+#define CGTS_CU3_TD_TCP_CTRL_REG__TD_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU3_TD_TCP_CTRL_REG__TD_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU3_TD_TCP_CTRL_REG__TD_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU3_TD_TCP_CTRL_REG__TCPF__SHIFT 0x10
+#define CGTS_CU3_TD_TCP_CTRL_REG__TCPF_OVERRIDE__SHIFT 0x17
+#define CGTS_CU3_TD_TCP_CTRL_REG__TCPF_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU3_TD_TCP_CTRL_REG__TCPF_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU3_TD_TCP_CTRL_REG__TCPF_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU3_TD_TCP_CTRL_REG__TD_MASK 0x0000007FL
+#define CGTS_CU3_TD_TCP_CTRL_REG__TD_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU3_TD_TCP_CTRL_REG__TD_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU3_TD_TCP_CTRL_REG__TD_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU3_TD_TCP_CTRL_REG__TD_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU3_TD_TCP_CTRL_REG__TCPF_MASK 0x007F0000L
+#define CGTS_CU3_TD_TCP_CTRL_REG__TCPF_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU3_TD_TCP_CTRL_REG__TCPF_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU3_TD_TCP_CTRL_REG__TCPF_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU3_TD_TCP_CTRL_REG__TCPF_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU4_SP0_CTRL_REG
+#define CGTS_CU4_SP0_CTRL_REG__SP00__SHIFT 0x0
+#define CGTS_CU4_SP0_CTRL_REG__SP00_OVERRIDE__SHIFT 0x7
+#define CGTS_CU4_SP0_CTRL_REG__SP00_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU4_SP0_CTRL_REG__SP00_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU4_SP0_CTRL_REG__SP00_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU4_SP0_CTRL_REG__SP01__SHIFT 0x10
+#define CGTS_CU4_SP0_CTRL_REG__SP01_OVERRIDE__SHIFT 0x17
+#define CGTS_CU4_SP0_CTRL_REG__SP01_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU4_SP0_CTRL_REG__SP01_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU4_SP0_CTRL_REG__SP01_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU4_SP0_CTRL_REG__SP00_MASK 0x0000007FL
+#define CGTS_CU4_SP0_CTRL_REG__SP00_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU4_SP0_CTRL_REG__SP00_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU4_SP0_CTRL_REG__SP00_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU4_SP0_CTRL_REG__SP00_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU4_SP0_CTRL_REG__SP01_MASK 0x007F0000L
+#define CGTS_CU4_SP0_CTRL_REG__SP01_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU4_SP0_CTRL_REG__SP01_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU4_SP0_CTRL_REG__SP01_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU4_SP0_CTRL_REG__SP01_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU4_LDS_SQ_CTRL_REG
+#define CGTS_CU4_LDS_SQ_CTRL_REG__LDS__SHIFT 0x0
+#define CGTS_CU4_LDS_SQ_CTRL_REG__LDS_OVERRIDE__SHIFT 0x7
+#define CGTS_CU4_LDS_SQ_CTRL_REG__LDS_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU4_LDS_SQ_CTRL_REG__LDS_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU4_LDS_SQ_CTRL_REG__LDS_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU4_LDS_SQ_CTRL_REG__SQ__SHIFT 0x10
+#define CGTS_CU4_LDS_SQ_CTRL_REG__SQ_OVERRIDE__SHIFT 0x17
+#define CGTS_CU4_LDS_SQ_CTRL_REG__SQ_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU4_LDS_SQ_CTRL_REG__SQ_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU4_LDS_SQ_CTRL_REG__SQ_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU4_LDS_SQ_CTRL_REG__LDS_MASK 0x0000007FL
+#define CGTS_CU4_LDS_SQ_CTRL_REG__LDS_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU4_LDS_SQ_CTRL_REG__LDS_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU4_LDS_SQ_CTRL_REG__LDS_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU4_LDS_SQ_CTRL_REG__LDS_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU4_LDS_SQ_CTRL_REG__SQ_MASK 0x007F0000L
+#define CGTS_CU4_LDS_SQ_CTRL_REG__SQ_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU4_LDS_SQ_CTRL_REG__SQ_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU4_LDS_SQ_CTRL_REG__SQ_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU4_LDS_SQ_CTRL_REG__SQ_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU4_TA_SQC_CTRL_REG
+#define CGTS_CU4_TA_SQC_CTRL_REG__TA__SHIFT 0x0
+#define CGTS_CU4_TA_SQC_CTRL_REG__TA_OVERRIDE__SHIFT 0x7
+#define CGTS_CU4_TA_SQC_CTRL_REG__TA_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU4_TA_SQC_CTRL_REG__TA_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU4_TA_SQC_CTRL_REG__TA_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU4_TA_SQC_CTRL_REG__SQC__SHIFT 0x10
+#define CGTS_CU4_TA_SQC_CTRL_REG__SQC_OVERRIDE__SHIFT 0x17
+#define CGTS_CU4_TA_SQC_CTRL_REG__SQC_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU4_TA_SQC_CTRL_REG__SQC_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU4_TA_SQC_CTRL_REG__SQC_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU4_TA_SQC_CTRL_REG__TA_MASK 0x0000007FL
+#define CGTS_CU4_TA_SQC_CTRL_REG__TA_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU4_TA_SQC_CTRL_REG__TA_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU4_TA_SQC_CTRL_REG__TA_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU4_TA_SQC_CTRL_REG__TA_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU4_TA_SQC_CTRL_REG__SQC_MASK 0x007F0000L
+#define CGTS_CU4_TA_SQC_CTRL_REG__SQC_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU4_TA_SQC_CTRL_REG__SQC_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU4_TA_SQC_CTRL_REG__SQC_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU4_TA_SQC_CTRL_REG__SQC_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU4_SP1_CTRL_REG
+#define CGTS_CU4_SP1_CTRL_REG__SP10__SHIFT 0x0
+#define CGTS_CU4_SP1_CTRL_REG__SP10_OVERRIDE__SHIFT 0x7
+#define CGTS_CU4_SP1_CTRL_REG__SP10_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU4_SP1_CTRL_REG__SP10_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU4_SP1_CTRL_REG__SP10_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU4_SP1_CTRL_REG__SP11__SHIFT 0x10
+#define CGTS_CU4_SP1_CTRL_REG__SP11_OVERRIDE__SHIFT 0x17
+#define CGTS_CU4_SP1_CTRL_REG__SP11_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU4_SP1_CTRL_REG__SP11_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU4_SP1_CTRL_REG__SP11_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU4_SP1_CTRL_REG__SP10_MASK 0x0000007FL
+#define CGTS_CU4_SP1_CTRL_REG__SP10_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU4_SP1_CTRL_REG__SP10_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU4_SP1_CTRL_REG__SP10_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU4_SP1_CTRL_REG__SP10_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU4_SP1_CTRL_REG__SP11_MASK 0x007F0000L
+#define CGTS_CU4_SP1_CTRL_REG__SP11_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU4_SP1_CTRL_REG__SP11_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU4_SP1_CTRL_REG__SP11_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU4_SP1_CTRL_REG__SP11_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU4_TD_TCP_CTRL_REG
+#define CGTS_CU4_TD_TCP_CTRL_REG__TD__SHIFT 0x0
+#define CGTS_CU4_TD_TCP_CTRL_REG__TD_OVERRIDE__SHIFT 0x7
+#define CGTS_CU4_TD_TCP_CTRL_REG__TD_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU4_TD_TCP_CTRL_REG__TD_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU4_TD_TCP_CTRL_REG__TD_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU4_TD_TCP_CTRL_REG__TCPF__SHIFT 0x10
+#define CGTS_CU4_TD_TCP_CTRL_REG__TCPF_OVERRIDE__SHIFT 0x17
+#define CGTS_CU4_TD_TCP_CTRL_REG__TCPF_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU4_TD_TCP_CTRL_REG__TCPF_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU4_TD_TCP_CTRL_REG__TCPF_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU4_TD_TCP_CTRL_REG__TD_MASK 0x0000007FL
+#define CGTS_CU4_TD_TCP_CTRL_REG__TD_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU4_TD_TCP_CTRL_REG__TD_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU4_TD_TCP_CTRL_REG__TD_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU4_TD_TCP_CTRL_REG__TD_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU4_TD_TCP_CTRL_REG__TCPF_MASK 0x007F0000L
+#define CGTS_CU4_TD_TCP_CTRL_REG__TCPF_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU4_TD_TCP_CTRL_REG__TCPF_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU4_TD_TCP_CTRL_REG__TCPF_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU4_TD_TCP_CTRL_REG__TCPF_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU5_SP0_CTRL_REG
+#define CGTS_CU5_SP0_CTRL_REG__SP00__SHIFT 0x0
+#define CGTS_CU5_SP0_CTRL_REG__SP00_OVERRIDE__SHIFT 0x7
+#define CGTS_CU5_SP0_CTRL_REG__SP00_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU5_SP0_CTRL_REG__SP00_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU5_SP0_CTRL_REG__SP00_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU5_SP0_CTRL_REG__SP01__SHIFT 0x10
+#define CGTS_CU5_SP0_CTRL_REG__SP01_OVERRIDE__SHIFT 0x17
+#define CGTS_CU5_SP0_CTRL_REG__SP01_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU5_SP0_CTRL_REG__SP01_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU5_SP0_CTRL_REG__SP01_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU5_SP0_CTRL_REG__SP00_MASK 0x0000007FL
+#define CGTS_CU5_SP0_CTRL_REG__SP00_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU5_SP0_CTRL_REG__SP00_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU5_SP0_CTRL_REG__SP00_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU5_SP0_CTRL_REG__SP00_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU5_SP0_CTRL_REG__SP01_MASK 0x007F0000L
+#define CGTS_CU5_SP0_CTRL_REG__SP01_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU5_SP0_CTRL_REG__SP01_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU5_SP0_CTRL_REG__SP01_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU5_SP0_CTRL_REG__SP01_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU5_LDS_SQ_CTRL_REG
+#define CGTS_CU5_LDS_SQ_CTRL_REG__LDS__SHIFT 0x0
+#define CGTS_CU5_LDS_SQ_CTRL_REG__LDS_OVERRIDE__SHIFT 0x7
+#define CGTS_CU5_LDS_SQ_CTRL_REG__LDS_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU5_LDS_SQ_CTRL_REG__LDS_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU5_LDS_SQ_CTRL_REG__LDS_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU5_LDS_SQ_CTRL_REG__SQ__SHIFT 0x10
+#define CGTS_CU5_LDS_SQ_CTRL_REG__SQ_OVERRIDE__SHIFT 0x17
+#define CGTS_CU5_LDS_SQ_CTRL_REG__SQ_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU5_LDS_SQ_CTRL_REG__SQ_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU5_LDS_SQ_CTRL_REG__SQ_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU5_LDS_SQ_CTRL_REG__LDS_MASK 0x0000007FL
+#define CGTS_CU5_LDS_SQ_CTRL_REG__LDS_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU5_LDS_SQ_CTRL_REG__LDS_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU5_LDS_SQ_CTRL_REG__LDS_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU5_LDS_SQ_CTRL_REG__LDS_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU5_LDS_SQ_CTRL_REG__SQ_MASK 0x007F0000L
+#define CGTS_CU5_LDS_SQ_CTRL_REG__SQ_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU5_LDS_SQ_CTRL_REG__SQ_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU5_LDS_SQ_CTRL_REG__SQ_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU5_LDS_SQ_CTRL_REG__SQ_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU5_TA_SQC_CTRL_REG
+#define CGTS_CU5_TA_SQC_CTRL_REG__TA__SHIFT 0x0
+#define CGTS_CU5_TA_SQC_CTRL_REG__TA_OVERRIDE__SHIFT 0x7
+#define CGTS_CU5_TA_SQC_CTRL_REG__TA_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU5_TA_SQC_CTRL_REG__TA_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU5_TA_SQC_CTRL_REG__TA_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU5_TA_SQC_CTRL_REG__TA_MASK 0x0000007FL
+#define CGTS_CU5_TA_SQC_CTRL_REG__TA_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU5_TA_SQC_CTRL_REG__TA_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU5_TA_SQC_CTRL_REG__TA_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU5_TA_SQC_CTRL_REG__TA_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+//CGTS_CU5_SP1_CTRL_REG
+#define CGTS_CU5_SP1_CTRL_REG__SP10__SHIFT 0x0
+#define CGTS_CU5_SP1_CTRL_REG__SP10_OVERRIDE__SHIFT 0x7
+#define CGTS_CU5_SP1_CTRL_REG__SP10_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU5_SP1_CTRL_REG__SP10_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU5_SP1_CTRL_REG__SP10_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU5_SP1_CTRL_REG__SP11__SHIFT 0x10
+#define CGTS_CU5_SP1_CTRL_REG__SP11_OVERRIDE__SHIFT 0x17
+#define CGTS_CU5_SP1_CTRL_REG__SP11_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU5_SP1_CTRL_REG__SP11_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU5_SP1_CTRL_REG__SP11_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU5_SP1_CTRL_REG__SP10_MASK 0x0000007FL
+#define CGTS_CU5_SP1_CTRL_REG__SP10_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU5_SP1_CTRL_REG__SP10_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU5_SP1_CTRL_REG__SP10_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU5_SP1_CTRL_REG__SP10_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU5_SP1_CTRL_REG__SP11_MASK 0x007F0000L
+#define CGTS_CU5_SP1_CTRL_REG__SP11_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU5_SP1_CTRL_REG__SP11_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU5_SP1_CTRL_REG__SP11_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU5_SP1_CTRL_REG__SP11_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU5_TD_TCP_CTRL_REG
+#define CGTS_CU5_TD_TCP_CTRL_REG__TD__SHIFT 0x0
+#define CGTS_CU5_TD_TCP_CTRL_REG__TD_OVERRIDE__SHIFT 0x7
+#define CGTS_CU5_TD_TCP_CTRL_REG__TD_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU5_TD_TCP_CTRL_REG__TD_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU5_TD_TCP_CTRL_REG__TD_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU5_TD_TCP_CTRL_REG__TCPF__SHIFT 0x10
+#define CGTS_CU5_TD_TCP_CTRL_REG__TCPF_OVERRIDE__SHIFT 0x17
+#define CGTS_CU5_TD_TCP_CTRL_REG__TCPF_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU5_TD_TCP_CTRL_REG__TCPF_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU5_TD_TCP_CTRL_REG__TCPF_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU5_TD_TCP_CTRL_REG__TD_MASK 0x0000007FL
+#define CGTS_CU5_TD_TCP_CTRL_REG__TD_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU5_TD_TCP_CTRL_REG__TD_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU5_TD_TCP_CTRL_REG__TD_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU5_TD_TCP_CTRL_REG__TD_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU5_TD_TCP_CTRL_REG__TCPF_MASK 0x007F0000L
+#define CGTS_CU5_TD_TCP_CTRL_REG__TCPF_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU5_TD_TCP_CTRL_REG__TCPF_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU5_TD_TCP_CTRL_REG__TCPF_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU5_TD_TCP_CTRL_REG__TCPF_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU6_SP0_CTRL_REG
+#define CGTS_CU6_SP0_CTRL_REG__SP00__SHIFT 0x0
+#define CGTS_CU6_SP0_CTRL_REG__SP00_OVERRIDE__SHIFT 0x7
+#define CGTS_CU6_SP0_CTRL_REG__SP00_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU6_SP0_CTRL_REG__SP00_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU6_SP0_CTRL_REG__SP00_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU6_SP0_CTRL_REG__SP01__SHIFT 0x10
+#define CGTS_CU6_SP0_CTRL_REG__SP01_OVERRIDE__SHIFT 0x17
+#define CGTS_CU6_SP0_CTRL_REG__SP01_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU6_SP0_CTRL_REG__SP01_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU6_SP0_CTRL_REG__SP01_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU6_SP0_CTRL_REG__SP00_MASK 0x0000007FL
+#define CGTS_CU6_SP0_CTRL_REG__SP00_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU6_SP0_CTRL_REG__SP00_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU6_SP0_CTRL_REG__SP00_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU6_SP0_CTRL_REG__SP00_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU6_SP0_CTRL_REG__SP01_MASK 0x007F0000L
+#define CGTS_CU6_SP0_CTRL_REG__SP01_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU6_SP0_CTRL_REG__SP01_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU6_SP0_CTRL_REG__SP01_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU6_SP0_CTRL_REG__SP01_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU6_LDS_SQ_CTRL_REG
+#define CGTS_CU6_LDS_SQ_CTRL_REG__LDS__SHIFT 0x0
+#define CGTS_CU6_LDS_SQ_CTRL_REG__LDS_OVERRIDE__SHIFT 0x7
+#define CGTS_CU6_LDS_SQ_CTRL_REG__LDS_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU6_LDS_SQ_CTRL_REG__LDS_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU6_LDS_SQ_CTRL_REG__LDS_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU6_LDS_SQ_CTRL_REG__SQ__SHIFT 0x10
+#define CGTS_CU6_LDS_SQ_CTRL_REG__SQ_OVERRIDE__SHIFT 0x17
+#define CGTS_CU6_LDS_SQ_CTRL_REG__SQ_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU6_LDS_SQ_CTRL_REG__SQ_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU6_LDS_SQ_CTRL_REG__SQ_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU6_LDS_SQ_CTRL_REG__LDS_MASK 0x0000007FL
+#define CGTS_CU6_LDS_SQ_CTRL_REG__LDS_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU6_LDS_SQ_CTRL_REG__LDS_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU6_LDS_SQ_CTRL_REG__LDS_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU6_LDS_SQ_CTRL_REG__LDS_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU6_LDS_SQ_CTRL_REG__SQ_MASK 0x007F0000L
+#define CGTS_CU6_LDS_SQ_CTRL_REG__SQ_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU6_LDS_SQ_CTRL_REG__SQ_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU6_LDS_SQ_CTRL_REG__SQ_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU6_LDS_SQ_CTRL_REG__SQ_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU6_TA_SQC_CTRL_REG
+#define CGTS_CU6_TA_SQC_CTRL_REG__TA__SHIFT 0x0
+#define CGTS_CU6_TA_SQC_CTRL_REG__TA_OVERRIDE__SHIFT 0x7
+#define CGTS_CU6_TA_SQC_CTRL_REG__TA_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU6_TA_SQC_CTRL_REG__TA_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU6_TA_SQC_CTRL_REG__TA_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU6_TA_SQC_CTRL_REG__SQC__SHIFT 0x10
+#define CGTS_CU6_TA_SQC_CTRL_REG__SQC_OVERRIDE__SHIFT 0x17
+#define CGTS_CU6_TA_SQC_CTRL_REG__SQC_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU6_TA_SQC_CTRL_REG__SQC_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU6_TA_SQC_CTRL_REG__SQC_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU6_TA_SQC_CTRL_REG__TA_MASK 0x0000007FL
+#define CGTS_CU6_TA_SQC_CTRL_REG__TA_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU6_TA_SQC_CTRL_REG__TA_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU6_TA_SQC_CTRL_REG__TA_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU6_TA_SQC_CTRL_REG__TA_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU6_TA_SQC_CTRL_REG__SQC_MASK 0x007F0000L
+#define CGTS_CU6_TA_SQC_CTRL_REG__SQC_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU6_TA_SQC_CTRL_REG__SQC_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU6_TA_SQC_CTRL_REG__SQC_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU6_TA_SQC_CTRL_REG__SQC_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU6_SP1_CTRL_REG
+#define CGTS_CU6_SP1_CTRL_REG__SP10__SHIFT 0x0
+#define CGTS_CU6_SP1_CTRL_REG__SP10_OVERRIDE__SHIFT 0x7
+#define CGTS_CU6_SP1_CTRL_REG__SP10_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU6_SP1_CTRL_REG__SP10_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU6_SP1_CTRL_REG__SP10_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU6_SP1_CTRL_REG__SP11__SHIFT 0x10
+#define CGTS_CU6_SP1_CTRL_REG__SP11_OVERRIDE__SHIFT 0x17
+#define CGTS_CU6_SP1_CTRL_REG__SP11_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU6_SP1_CTRL_REG__SP11_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU6_SP1_CTRL_REG__SP11_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU6_SP1_CTRL_REG__SP10_MASK 0x0000007FL
+#define CGTS_CU6_SP1_CTRL_REG__SP10_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU6_SP1_CTRL_REG__SP10_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU6_SP1_CTRL_REG__SP10_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU6_SP1_CTRL_REG__SP10_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU6_SP1_CTRL_REG__SP11_MASK 0x007F0000L
+#define CGTS_CU6_SP1_CTRL_REG__SP11_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU6_SP1_CTRL_REG__SP11_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU6_SP1_CTRL_REG__SP11_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU6_SP1_CTRL_REG__SP11_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU6_TD_TCP_CTRL_REG
+#define CGTS_CU6_TD_TCP_CTRL_REG__TD__SHIFT 0x0
+#define CGTS_CU6_TD_TCP_CTRL_REG__TD_OVERRIDE__SHIFT 0x7
+#define CGTS_CU6_TD_TCP_CTRL_REG__TD_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU6_TD_TCP_CTRL_REG__TD_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU6_TD_TCP_CTRL_REG__TD_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU6_TD_TCP_CTRL_REG__TCPF__SHIFT 0x10
+#define CGTS_CU6_TD_TCP_CTRL_REG__TCPF_OVERRIDE__SHIFT 0x17
+#define CGTS_CU6_TD_TCP_CTRL_REG__TCPF_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU6_TD_TCP_CTRL_REG__TCPF_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU6_TD_TCP_CTRL_REG__TCPF_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU6_TD_TCP_CTRL_REG__TD_MASK 0x0000007FL
+#define CGTS_CU6_TD_TCP_CTRL_REG__TD_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU6_TD_TCP_CTRL_REG__TD_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU6_TD_TCP_CTRL_REG__TD_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU6_TD_TCP_CTRL_REG__TD_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU6_TD_TCP_CTRL_REG__TCPF_MASK 0x007F0000L
+#define CGTS_CU6_TD_TCP_CTRL_REG__TCPF_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU6_TD_TCP_CTRL_REG__TCPF_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU6_TD_TCP_CTRL_REG__TCPF_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU6_TD_TCP_CTRL_REG__TCPF_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU7_SP0_CTRL_REG
+#define CGTS_CU7_SP0_CTRL_REG__SP00__SHIFT 0x0
+#define CGTS_CU7_SP0_CTRL_REG__SP00_OVERRIDE__SHIFT 0x7
+#define CGTS_CU7_SP0_CTRL_REG__SP00_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU7_SP0_CTRL_REG__SP00_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU7_SP0_CTRL_REG__SP00_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU7_SP0_CTRL_REG__SP01__SHIFT 0x10
+#define CGTS_CU7_SP0_CTRL_REG__SP01_OVERRIDE__SHIFT 0x17
+#define CGTS_CU7_SP0_CTRL_REG__SP01_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU7_SP0_CTRL_REG__SP01_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU7_SP0_CTRL_REG__SP01_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU7_SP0_CTRL_REG__SP00_MASK 0x0000007FL
+#define CGTS_CU7_SP0_CTRL_REG__SP00_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU7_SP0_CTRL_REG__SP00_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU7_SP0_CTRL_REG__SP00_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU7_SP0_CTRL_REG__SP00_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU7_SP0_CTRL_REG__SP01_MASK 0x007F0000L
+#define CGTS_CU7_SP0_CTRL_REG__SP01_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU7_SP0_CTRL_REG__SP01_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU7_SP0_CTRL_REG__SP01_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU7_SP0_CTRL_REG__SP01_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU7_LDS_SQ_CTRL_REG
+#define CGTS_CU7_LDS_SQ_CTRL_REG__LDS__SHIFT 0x0
+#define CGTS_CU7_LDS_SQ_CTRL_REG__LDS_OVERRIDE__SHIFT 0x7
+#define CGTS_CU7_LDS_SQ_CTRL_REG__LDS_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU7_LDS_SQ_CTRL_REG__LDS_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU7_LDS_SQ_CTRL_REG__LDS_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU7_LDS_SQ_CTRL_REG__SQ__SHIFT 0x10
+#define CGTS_CU7_LDS_SQ_CTRL_REG__SQ_OVERRIDE__SHIFT 0x17
+#define CGTS_CU7_LDS_SQ_CTRL_REG__SQ_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU7_LDS_SQ_CTRL_REG__SQ_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU7_LDS_SQ_CTRL_REG__SQ_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU7_LDS_SQ_CTRL_REG__LDS_MASK 0x0000007FL
+#define CGTS_CU7_LDS_SQ_CTRL_REG__LDS_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU7_LDS_SQ_CTRL_REG__LDS_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU7_LDS_SQ_CTRL_REG__LDS_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU7_LDS_SQ_CTRL_REG__LDS_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU7_LDS_SQ_CTRL_REG__SQ_MASK 0x007F0000L
+#define CGTS_CU7_LDS_SQ_CTRL_REG__SQ_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU7_LDS_SQ_CTRL_REG__SQ_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU7_LDS_SQ_CTRL_REG__SQ_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU7_LDS_SQ_CTRL_REG__SQ_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU7_TA_SQC_CTRL_REG
+#define CGTS_CU7_TA_SQC_CTRL_REG__TA__SHIFT 0x0
+#define CGTS_CU7_TA_SQC_CTRL_REG__TA_OVERRIDE__SHIFT 0x7
+#define CGTS_CU7_TA_SQC_CTRL_REG__TA_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU7_TA_SQC_CTRL_REG__TA_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU7_TA_SQC_CTRL_REG__TA_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU7_TA_SQC_CTRL_REG__TA_MASK 0x0000007FL
+#define CGTS_CU7_TA_SQC_CTRL_REG__TA_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU7_TA_SQC_CTRL_REG__TA_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU7_TA_SQC_CTRL_REG__TA_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU7_TA_SQC_CTRL_REG__TA_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+//CGTS_CU7_SP1_CTRL_REG
+#define CGTS_CU7_SP1_CTRL_REG__SP10__SHIFT 0x0
+#define CGTS_CU7_SP1_CTRL_REG__SP10_OVERRIDE__SHIFT 0x7
+#define CGTS_CU7_SP1_CTRL_REG__SP10_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU7_SP1_CTRL_REG__SP10_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU7_SP1_CTRL_REG__SP10_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU7_SP1_CTRL_REG__SP11__SHIFT 0x10
+#define CGTS_CU7_SP1_CTRL_REG__SP11_OVERRIDE__SHIFT 0x17
+#define CGTS_CU7_SP1_CTRL_REG__SP11_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU7_SP1_CTRL_REG__SP11_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU7_SP1_CTRL_REG__SP11_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU7_SP1_CTRL_REG__SP10_MASK 0x0000007FL
+#define CGTS_CU7_SP1_CTRL_REG__SP10_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU7_SP1_CTRL_REG__SP10_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU7_SP1_CTRL_REG__SP10_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU7_SP1_CTRL_REG__SP10_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU7_SP1_CTRL_REG__SP11_MASK 0x007F0000L
+#define CGTS_CU7_SP1_CTRL_REG__SP11_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU7_SP1_CTRL_REG__SP11_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU7_SP1_CTRL_REG__SP11_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU7_SP1_CTRL_REG__SP11_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU7_TD_TCP_CTRL_REG
+#define CGTS_CU7_TD_TCP_CTRL_REG__TD__SHIFT 0x0
+#define CGTS_CU7_TD_TCP_CTRL_REG__TD_OVERRIDE__SHIFT 0x7
+#define CGTS_CU7_TD_TCP_CTRL_REG__TD_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU7_TD_TCP_CTRL_REG__TD_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU7_TD_TCP_CTRL_REG__TD_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU7_TD_TCP_CTRL_REG__TCPF__SHIFT 0x10
+#define CGTS_CU7_TD_TCP_CTRL_REG__TCPF_OVERRIDE__SHIFT 0x17
+#define CGTS_CU7_TD_TCP_CTRL_REG__TCPF_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU7_TD_TCP_CTRL_REG__TCPF_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU7_TD_TCP_CTRL_REG__TCPF_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU7_TD_TCP_CTRL_REG__TD_MASK 0x0000007FL
+#define CGTS_CU7_TD_TCP_CTRL_REG__TD_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU7_TD_TCP_CTRL_REG__TD_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU7_TD_TCP_CTRL_REG__TD_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU7_TD_TCP_CTRL_REG__TD_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU7_TD_TCP_CTRL_REG__TCPF_MASK 0x007F0000L
+#define CGTS_CU7_TD_TCP_CTRL_REG__TCPF_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU7_TD_TCP_CTRL_REG__TCPF_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU7_TD_TCP_CTRL_REG__TCPF_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU7_TD_TCP_CTRL_REG__TCPF_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU8_SP0_CTRL_REG
+#define CGTS_CU8_SP0_CTRL_REG__SP00__SHIFT 0x0
+#define CGTS_CU8_SP0_CTRL_REG__SP00_OVERRIDE__SHIFT 0x7
+#define CGTS_CU8_SP0_CTRL_REG__SP00_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU8_SP0_CTRL_REG__SP00_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU8_SP0_CTRL_REG__SP00_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU8_SP0_CTRL_REG__SP01__SHIFT 0x10
+#define CGTS_CU8_SP0_CTRL_REG__SP01_OVERRIDE__SHIFT 0x17
+#define CGTS_CU8_SP0_CTRL_REG__SP01_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU8_SP0_CTRL_REG__SP01_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU8_SP0_CTRL_REG__SP01_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU8_SP0_CTRL_REG__SP00_MASK 0x0000007FL
+#define CGTS_CU8_SP0_CTRL_REG__SP00_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU8_SP0_CTRL_REG__SP00_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU8_SP0_CTRL_REG__SP00_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU8_SP0_CTRL_REG__SP00_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU8_SP0_CTRL_REG__SP01_MASK 0x007F0000L
+#define CGTS_CU8_SP0_CTRL_REG__SP01_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU8_SP0_CTRL_REG__SP01_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU8_SP0_CTRL_REG__SP01_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU8_SP0_CTRL_REG__SP01_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU8_LDS_SQ_CTRL_REG
+#define CGTS_CU8_LDS_SQ_CTRL_REG__LDS__SHIFT 0x0
+#define CGTS_CU8_LDS_SQ_CTRL_REG__LDS_OVERRIDE__SHIFT 0x7
+#define CGTS_CU8_LDS_SQ_CTRL_REG__LDS_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU8_LDS_SQ_CTRL_REG__LDS_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU8_LDS_SQ_CTRL_REG__LDS_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU8_LDS_SQ_CTRL_REG__SQ__SHIFT 0x10
+#define CGTS_CU8_LDS_SQ_CTRL_REG__SQ_OVERRIDE__SHIFT 0x17
+#define CGTS_CU8_LDS_SQ_CTRL_REG__SQ_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU8_LDS_SQ_CTRL_REG__SQ_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU8_LDS_SQ_CTRL_REG__SQ_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU8_LDS_SQ_CTRL_REG__LDS_MASK 0x0000007FL
+#define CGTS_CU8_LDS_SQ_CTRL_REG__LDS_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU8_LDS_SQ_CTRL_REG__LDS_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU8_LDS_SQ_CTRL_REG__LDS_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU8_LDS_SQ_CTRL_REG__LDS_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU8_LDS_SQ_CTRL_REG__SQ_MASK 0x007F0000L
+#define CGTS_CU8_LDS_SQ_CTRL_REG__SQ_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU8_LDS_SQ_CTRL_REG__SQ_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU8_LDS_SQ_CTRL_REG__SQ_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU8_LDS_SQ_CTRL_REG__SQ_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU8_TA_SQC_CTRL_REG
+#define CGTS_CU8_TA_SQC_CTRL_REG__TA__SHIFT 0x0
+#define CGTS_CU8_TA_SQC_CTRL_REG__TA_OVERRIDE__SHIFT 0x7
+#define CGTS_CU8_TA_SQC_CTRL_REG__TA_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU8_TA_SQC_CTRL_REG__TA_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU8_TA_SQC_CTRL_REG__TA_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU8_TA_SQC_CTRL_REG__SQC__SHIFT 0x10
+#define CGTS_CU8_TA_SQC_CTRL_REG__SQC_OVERRIDE__SHIFT 0x17
+#define CGTS_CU8_TA_SQC_CTRL_REG__SQC_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU8_TA_SQC_CTRL_REG__SQC_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU8_TA_SQC_CTRL_REG__SQC_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU8_TA_SQC_CTRL_REG__TA_MASK 0x0000007FL
+#define CGTS_CU8_TA_SQC_CTRL_REG__TA_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU8_TA_SQC_CTRL_REG__TA_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU8_TA_SQC_CTRL_REG__TA_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU8_TA_SQC_CTRL_REG__TA_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU8_TA_SQC_CTRL_REG__SQC_MASK 0x007F0000L
+#define CGTS_CU8_TA_SQC_CTRL_REG__SQC_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU8_TA_SQC_CTRL_REG__SQC_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU8_TA_SQC_CTRL_REG__SQC_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU8_TA_SQC_CTRL_REG__SQC_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU8_SP1_CTRL_REG
+#define CGTS_CU8_SP1_CTRL_REG__SP10__SHIFT 0x0
+#define CGTS_CU8_SP1_CTRL_REG__SP10_OVERRIDE__SHIFT 0x7
+#define CGTS_CU8_SP1_CTRL_REG__SP10_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU8_SP1_CTRL_REG__SP10_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU8_SP1_CTRL_REG__SP10_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU8_SP1_CTRL_REG__SP11__SHIFT 0x10
+#define CGTS_CU8_SP1_CTRL_REG__SP11_OVERRIDE__SHIFT 0x17
+#define CGTS_CU8_SP1_CTRL_REG__SP11_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU8_SP1_CTRL_REG__SP11_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU8_SP1_CTRL_REG__SP11_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU8_SP1_CTRL_REG__SP10_MASK 0x0000007FL
+#define CGTS_CU8_SP1_CTRL_REG__SP10_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU8_SP1_CTRL_REG__SP10_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU8_SP1_CTRL_REG__SP10_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU8_SP1_CTRL_REG__SP10_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU8_SP1_CTRL_REG__SP11_MASK 0x007F0000L
+#define CGTS_CU8_SP1_CTRL_REG__SP11_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU8_SP1_CTRL_REG__SP11_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU8_SP1_CTRL_REG__SP11_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU8_SP1_CTRL_REG__SP11_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU8_TD_TCP_CTRL_REG
+#define CGTS_CU8_TD_TCP_CTRL_REG__TD__SHIFT 0x0
+#define CGTS_CU8_TD_TCP_CTRL_REG__TD_OVERRIDE__SHIFT 0x7
+#define CGTS_CU8_TD_TCP_CTRL_REG__TD_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU8_TD_TCP_CTRL_REG__TD_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU8_TD_TCP_CTRL_REG__TD_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU8_TD_TCP_CTRL_REG__TCPF__SHIFT 0x10
+#define CGTS_CU8_TD_TCP_CTRL_REG__TCPF_OVERRIDE__SHIFT 0x17
+#define CGTS_CU8_TD_TCP_CTRL_REG__TCPF_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU8_TD_TCP_CTRL_REG__TCPF_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU8_TD_TCP_CTRL_REG__TCPF_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU8_TD_TCP_CTRL_REG__TD_MASK 0x0000007FL
+#define CGTS_CU8_TD_TCP_CTRL_REG__TD_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU8_TD_TCP_CTRL_REG__TD_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU8_TD_TCP_CTRL_REG__TD_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU8_TD_TCP_CTRL_REG__TD_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU8_TD_TCP_CTRL_REG__TCPF_MASK 0x007F0000L
+#define CGTS_CU8_TD_TCP_CTRL_REG__TCPF_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU8_TD_TCP_CTRL_REG__TCPF_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU8_TD_TCP_CTRL_REG__TCPF_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU8_TD_TCP_CTRL_REG__TCPF_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU9_SP0_CTRL_REG
+#define CGTS_CU9_SP0_CTRL_REG__SP00__SHIFT 0x0
+#define CGTS_CU9_SP0_CTRL_REG__SP00_OVERRIDE__SHIFT 0x7
+#define CGTS_CU9_SP0_CTRL_REG__SP00_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU9_SP0_CTRL_REG__SP00_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU9_SP0_CTRL_REG__SP00_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU9_SP0_CTRL_REG__SP01__SHIFT 0x10
+#define CGTS_CU9_SP0_CTRL_REG__SP01_OVERRIDE__SHIFT 0x17
+#define CGTS_CU9_SP0_CTRL_REG__SP01_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU9_SP0_CTRL_REG__SP01_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU9_SP0_CTRL_REG__SP01_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU9_SP0_CTRL_REG__SP00_MASK 0x0000007FL
+#define CGTS_CU9_SP0_CTRL_REG__SP00_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU9_SP0_CTRL_REG__SP00_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU9_SP0_CTRL_REG__SP00_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU9_SP0_CTRL_REG__SP00_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU9_SP0_CTRL_REG__SP01_MASK 0x007F0000L
+#define CGTS_CU9_SP0_CTRL_REG__SP01_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU9_SP0_CTRL_REG__SP01_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU9_SP0_CTRL_REG__SP01_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU9_SP0_CTRL_REG__SP01_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU9_LDS_SQ_CTRL_REG
+#define CGTS_CU9_LDS_SQ_CTRL_REG__LDS__SHIFT 0x0
+#define CGTS_CU9_LDS_SQ_CTRL_REG__LDS_OVERRIDE__SHIFT 0x7
+#define CGTS_CU9_LDS_SQ_CTRL_REG__LDS_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU9_LDS_SQ_CTRL_REG__LDS_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU9_LDS_SQ_CTRL_REG__LDS_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU9_LDS_SQ_CTRL_REG__SQ__SHIFT 0x10
+#define CGTS_CU9_LDS_SQ_CTRL_REG__SQ_OVERRIDE__SHIFT 0x17
+#define CGTS_CU9_LDS_SQ_CTRL_REG__SQ_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU9_LDS_SQ_CTRL_REG__SQ_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU9_LDS_SQ_CTRL_REG__SQ_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU9_LDS_SQ_CTRL_REG__LDS_MASK 0x0000007FL
+#define CGTS_CU9_LDS_SQ_CTRL_REG__LDS_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU9_LDS_SQ_CTRL_REG__LDS_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU9_LDS_SQ_CTRL_REG__LDS_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU9_LDS_SQ_CTRL_REG__LDS_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU9_LDS_SQ_CTRL_REG__SQ_MASK 0x007F0000L
+#define CGTS_CU9_LDS_SQ_CTRL_REG__SQ_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU9_LDS_SQ_CTRL_REG__SQ_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU9_LDS_SQ_CTRL_REG__SQ_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU9_LDS_SQ_CTRL_REG__SQ_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU9_TA_SQC_CTRL_REG
+#define CGTS_CU9_TA_SQC_CTRL_REG__TA__SHIFT 0x0
+#define CGTS_CU9_TA_SQC_CTRL_REG__TA_OVERRIDE__SHIFT 0x7
+#define CGTS_CU9_TA_SQC_CTRL_REG__TA_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU9_TA_SQC_CTRL_REG__TA_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU9_TA_SQC_CTRL_REG__TA_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU9_TA_SQC_CTRL_REG__TA_MASK 0x0000007FL
+#define CGTS_CU9_TA_SQC_CTRL_REG__TA_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU9_TA_SQC_CTRL_REG__TA_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU9_TA_SQC_CTRL_REG__TA_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU9_TA_SQC_CTRL_REG__TA_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+//CGTS_CU9_SP1_CTRL_REG
+#define CGTS_CU9_SP1_CTRL_REG__SP10__SHIFT 0x0
+#define CGTS_CU9_SP1_CTRL_REG__SP10_OVERRIDE__SHIFT 0x7
+#define CGTS_CU9_SP1_CTRL_REG__SP10_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU9_SP1_CTRL_REG__SP10_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU9_SP1_CTRL_REG__SP10_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU9_SP1_CTRL_REG__SP11__SHIFT 0x10
+#define CGTS_CU9_SP1_CTRL_REG__SP11_OVERRIDE__SHIFT 0x17
+#define CGTS_CU9_SP1_CTRL_REG__SP11_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU9_SP1_CTRL_REG__SP11_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU9_SP1_CTRL_REG__SP11_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU9_SP1_CTRL_REG__SP10_MASK 0x0000007FL
+#define CGTS_CU9_SP1_CTRL_REG__SP10_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU9_SP1_CTRL_REG__SP10_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU9_SP1_CTRL_REG__SP10_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU9_SP1_CTRL_REG__SP10_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU9_SP1_CTRL_REG__SP11_MASK 0x007F0000L
+#define CGTS_CU9_SP1_CTRL_REG__SP11_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU9_SP1_CTRL_REG__SP11_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU9_SP1_CTRL_REG__SP11_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU9_SP1_CTRL_REG__SP11_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU9_TD_TCP_CTRL_REG
+#define CGTS_CU9_TD_TCP_CTRL_REG__TD__SHIFT 0x0
+#define CGTS_CU9_TD_TCP_CTRL_REG__TD_OVERRIDE__SHIFT 0x7
+#define CGTS_CU9_TD_TCP_CTRL_REG__TD_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU9_TD_TCP_CTRL_REG__TD_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU9_TD_TCP_CTRL_REG__TD_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU9_TD_TCP_CTRL_REG__TCPF__SHIFT 0x10
+#define CGTS_CU9_TD_TCP_CTRL_REG__TCPF_OVERRIDE__SHIFT 0x17
+#define CGTS_CU9_TD_TCP_CTRL_REG__TCPF_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU9_TD_TCP_CTRL_REG__TCPF_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU9_TD_TCP_CTRL_REG__TCPF_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU9_TD_TCP_CTRL_REG__TD_MASK 0x0000007FL
+#define CGTS_CU9_TD_TCP_CTRL_REG__TD_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU9_TD_TCP_CTRL_REG__TD_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU9_TD_TCP_CTRL_REG__TD_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU9_TD_TCP_CTRL_REG__TD_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU9_TD_TCP_CTRL_REG__TCPF_MASK 0x007F0000L
+#define CGTS_CU9_TD_TCP_CTRL_REG__TCPF_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU9_TD_TCP_CTRL_REG__TCPF_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU9_TD_TCP_CTRL_REG__TCPF_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU9_TD_TCP_CTRL_REG__TCPF_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU10_SP0_CTRL_REG
+#define CGTS_CU10_SP0_CTRL_REG__SP00__SHIFT 0x0
+#define CGTS_CU10_SP0_CTRL_REG__SP00_OVERRIDE__SHIFT 0x7
+#define CGTS_CU10_SP0_CTRL_REG__SP00_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU10_SP0_CTRL_REG__SP00_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU10_SP0_CTRL_REG__SP00_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU10_SP0_CTRL_REG__SP01__SHIFT 0x10
+#define CGTS_CU10_SP0_CTRL_REG__SP01_OVERRIDE__SHIFT 0x17
+#define CGTS_CU10_SP0_CTRL_REG__SP01_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU10_SP0_CTRL_REG__SP01_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU10_SP0_CTRL_REG__SP01_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU10_SP0_CTRL_REG__SP00_MASK 0x0000007FL
+#define CGTS_CU10_SP0_CTRL_REG__SP00_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU10_SP0_CTRL_REG__SP00_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU10_SP0_CTRL_REG__SP00_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU10_SP0_CTRL_REG__SP00_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU10_SP0_CTRL_REG__SP01_MASK 0x007F0000L
+#define CGTS_CU10_SP0_CTRL_REG__SP01_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU10_SP0_CTRL_REG__SP01_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU10_SP0_CTRL_REG__SP01_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU10_SP0_CTRL_REG__SP01_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU10_LDS_SQ_CTRL_REG
+#define CGTS_CU10_LDS_SQ_CTRL_REG__LDS__SHIFT 0x0
+#define CGTS_CU10_LDS_SQ_CTRL_REG__LDS_OVERRIDE__SHIFT 0x7
+#define CGTS_CU10_LDS_SQ_CTRL_REG__LDS_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU10_LDS_SQ_CTRL_REG__LDS_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU10_LDS_SQ_CTRL_REG__LDS_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU10_LDS_SQ_CTRL_REG__SQ__SHIFT 0x10
+#define CGTS_CU10_LDS_SQ_CTRL_REG__SQ_OVERRIDE__SHIFT 0x17
+#define CGTS_CU10_LDS_SQ_CTRL_REG__SQ_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU10_LDS_SQ_CTRL_REG__SQ_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU10_LDS_SQ_CTRL_REG__SQ_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU10_LDS_SQ_CTRL_REG__LDS_MASK 0x0000007FL
+#define CGTS_CU10_LDS_SQ_CTRL_REG__LDS_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU10_LDS_SQ_CTRL_REG__LDS_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU10_LDS_SQ_CTRL_REG__LDS_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU10_LDS_SQ_CTRL_REG__LDS_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU10_LDS_SQ_CTRL_REG__SQ_MASK 0x007F0000L
+#define CGTS_CU10_LDS_SQ_CTRL_REG__SQ_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU10_LDS_SQ_CTRL_REG__SQ_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU10_LDS_SQ_CTRL_REG__SQ_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU10_LDS_SQ_CTRL_REG__SQ_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU10_TA_SQC_CTRL_REG
+#define CGTS_CU10_TA_SQC_CTRL_REG__TA__SHIFT 0x0
+#define CGTS_CU10_TA_SQC_CTRL_REG__TA_OVERRIDE__SHIFT 0x7
+#define CGTS_CU10_TA_SQC_CTRL_REG__TA_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU10_TA_SQC_CTRL_REG__TA_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU10_TA_SQC_CTRL_REG__TA_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU10_TA_SQC_CTRL_REG__SQC__SHIFT 0x10
+#define CGTS_CU10_TA_SQC_CTRL_REG__SQC_OVERRIDE__SHIFT 0x17
+#define CGTS_CU10_TA_SQC_CTRL_REG__SQC_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU10_TA_SQC_CTRL_REG__SQC_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU10_TA_SQC_CTRL_REG__SQC_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU10_TA_SQC_CTRL_REG__TA_MASK 0x0000007FL
+#define CGTS_CU10_TA_SQC_CTRL_REG__TA_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU10_TA_SQC_CTRL_REG__TA_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU10_TA_SQC_CTRL_REG__TA_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU10_TA_SQC_CTRL_REG__TA_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU10_TA_SQC_CTRL_REG__SQC_MASK 0x007F0000L
+#define CGTS_CU10_TA_SQC_CTRL_REG__SQC_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU10_TA_SQC_CTRL_REG__SQC_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU10_TA_SQC_CTRL_REG__SQC_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU10_TA_SQC_CTRL_REG__SQC_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU10_SP1_CTRL_REG
+#define CGTS_CU10_SP1_CTRL_REG__SP10__SHIFT 0x0
+#define CGTS_CU10_SP1_CTRL_REG__SP10_OVERRIDE__SHIFT 0x7
+#define CGTS_CU10_SP1_CTRL_REG__SP10_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU10_SP1_CTRL_REG__SP10_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU10_SP1_CTRL_REG__SP10_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU10_SP1_CTRL_REG__SP11__SHIFT 0x10
+#define CGTS_CU10_SP1_CTRL_REG__SP11_OVERRIDE__SHIFT 0x17
+#define CGTS_CU10_SP1_CTRL_REG__SP11_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU10_SP1_CTRL_REG__SP11_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU10_SP1_CTRL_REG__SP11_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU10_SP1_CTRL_REG__SP10_MASK 0x0000007FL
+#define CGTS_CU10_SP1_CTRL_REG__SP10_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU10_SP1_CTRL_REG__SP10_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU10_SP1_CTRL_REG__SP10_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU10_SP1_CTRL_REG__SP10_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU10_SP1_CTRL_REG__SP11_MASK 0x007F0000L
+#define CGTS_CU10_SP1_CTRL_REG__SP11_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU10_SP1_CTRL_REG__SP11_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU10_SP1_CTRL_REG__SP11_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU10_SP1_CTRL_REG__SP11_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU10_TD_TCP_CTRL_REG
+#define CGTS_CU10_TD_TCP_CTRL_REG__TD__SHIFT 0x0
+#define CGTS_CU10_TD_TCP_CTRL_REG__TD_OVERRIDE__SHIFT 0x7
+#define CGTS_CU10_TD_TCP_CTRL_REG__TD_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU10_TD_TCP_CTRL_REG__TD_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU10_TD_TCP_CTRL_REG__TD_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU10_TD_TCP_CTRL_REG__TCPF__SHIFT 0x10
+#define CGTS_CU10_TD_TCP_CTRL_REG__TCPF_OVERRIDE__SHIFT 0x17
+#define CGTS_CU10_TD_TCP_CTRL_REG__TCPF_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU10_TD_TCP_CTRL_REG__TCPF_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU10_TD_TCP_CTRL_REG__TCPF_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU10_TD_TCP_CTRL_REG__TD_MASK 0x0000007FL
+#define CGTS_CU10_TD_TCP_CTRL_REG__TD_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU10_TD_TCP_CTRL_REG__TD_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU10_TD_TCP_CTRL_REG__TD_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU10_TD_TCP_CTRL_REG__TD_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU10_TD_TCP_CTRL_REG__TCPF_MASK 0x007F0000L
+#define CGTS_CU10_TD_TCP_CTRL_REG__TCPF_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU10_TD_TCP_CTRL_REG__TCPF_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU10_TD_TCP_CTRL_REG__TCPF_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU10_TD_TCP_CTRL_REG__TCPF_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU11_SP0_CTRL_REG
+#define CGTS_CU11_SP0_CTRL_REG__SP00__SHIFT 0x0
+#define CGTS_CU11_SP0_CTRL_REG__SP00_OVERRIDE__SHIFT 0x7
+#define CGTS_CU11_SP0_CTRL_REG__SP00_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU11_SP0_CTRL_REG__SP00_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU11_SP0_CTRL_REG__SP00_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU11_SP0_CTRL_REG__SP01__SHIFT 0x10
+#define CGTS_CU11_SP0_CTRL_REG__SP01_OVERRIDE__SHIFT 0x17
+#define CGTS_CU11_SP0_CTRL_REG__SP01_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU11_SP0_CTRL_REG__SP01_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU11_SP0_CTRL_REG__SP01_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU11_SP0_CTRL_REG__SP00_MASK 0x0000007FL
+#define CGTS_CU11_SP0_CTRL_REG__SP00_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU11_SP0_CTRL_REG__SP00_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU11_SP0_CTRL_REG__SP00_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU11_SP0_CTRL_REG__SP00_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU11_SP0_CTRL_REG__SP01_MASK 0x007F0000L
+#define CGTS_CU11_SP0_CTRL_REG__SP01_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU11_SP0_CTRL_REG__SP01_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU11_SP0_CTRL_REG__SP01_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU11_SP0_CTRL_REG__SP01_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU11_LDS_SQ_CTRL_REG
+#define CGTS_CU11_LDS_SQ_CTRL_REG__LDS__SHIFT 0x0
+#define CGTS_CU11_LDS_SQ_CTRL_REG__LDS_OVERRIDE__SHIFT 0x7
+#define CGTS_CU11_LDS_SQ_CTRL_REG__LDS_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU11_LDS_SQ_CTRL_REG__LDS_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU11_LDS_SQ_CTRL_REG__LDS_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU11_LDS_SQ_CTRL_REG__SQ__SHIFT 0x10
+#define CGTS_CU11_LDS_SQ_CTRL_REG__SQ_OVERRIDE__SHIFT 0x17
+#define CGTS_CU11_LDS_SQ_CTRL_REG__SQ_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU11_LDS_SQ_CTRL_REG__SQ_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU11_LDS_SQ_CTRL_REG__SQ_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU11_LDS_SQ_CTRL_REG__LDS_MASK 0x0000007FL
+#define CGTS_CU11_LDS_SQ_CTRL_REG__LDS_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU11_LDS_SQ_CTRL_REG__LDS_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU11_LDS_SQ_CTRL_REG__LDS_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU11_LDS_SQ_CTRL_REG__LDS_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU11_LDS_SQ_CTRL_REG__SQ_MASK 0x007F0000L
+#define CGTS_CU11_LDS_SQ_CTRL_REG__SQ_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU11_LDS_SQ_CTRL_REG__SQ_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU11_LDS_SQ_CTRL_REG__SQ_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU11_LDS_SQ_CTRL_REG__SQ_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU11_TA_SQC_CTRL_REG
+#define CGTS_CU11_TA_SQC_CTRL_REG__TA__SHIFT 0x0
+#define CGTS_CU11_TA_SQC_CTRL_REG__TA_OVERRIDE__SHIFT 0x7
+#define CGTS_CU11_TA_SQC_CTRL_REG__TA_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU11_TA_SQC_CTRL_REG__TA_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU11_TA_SQC_CTRL_REG__TA_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU11_TA_SQC_CTRL_REG__TA_MASK 0x0000007FL
+#define CGTS_CU11_TA_SQC_CTRL_REG__TA_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU11_TA_SQC_CTRL_REG__TA_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU11_TA_SQC_CTRL_REG__TA_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU11_TA_SQC_CTRL_REG__TA_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+//CGTS_CU11_SP1_CTRL_REG
+#define CGTS_CU11_SP1_CTRL_REG__SP10__SHIFT 0x0
+#define CGTS_CU11_SP1_CTRL_REG__SP10_OVERRIDE__SHIFT 0x7
+#define CGTS_CU11_SP1_CTRL_REG__SP10_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU11_SP1_CTRL_REG__SP10_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU11_SP1_CTRL_REG__SP10_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU11_SP1_CTRL_REG__SP11__SHIFT 0x10
+#define CGTS_CU11_SP1_CTRL_REG__SP11_OVERRIDE__SHIFT 0x17
+#define CGTS_CU11_SP1_CTRL_REG__SP11_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU11_SP1_CTRL_REG__SP11_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU11_SP1_CTRL_REG__SP11_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU11_SP1_CTRL_REG__SP10_MASK 0x0000007FL
+#define CGTS_CU11_SP1_CTRL_REG__SP10_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU11_SP1_CTRL_REG__SP10_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU11_SP1_CTRL_REG__SP10_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU11_SP1_CTRL_REG__SP10_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU11_SP1_CTRL_REG__SP11_MASK 0x007F0000L
+#define CGTS_CU11_SP1_CTRL_REG__SP11_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU11_SP1_CTRL_REG__SP11_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU11_SP1_CTRL_REG__SP11_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU11_SP1_CTRL_REG__SP11_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU11_TD_TCP_CTRL_REG
+#define CGTS_CU11_TD_TCP_CTRL_REG__TD__SHIFT 0x0
+#define CGTS_CU11_TD_TCP_CTRL_REG__TD_OVERRIDE__SHIFT 0x7
+#define CGTS_CU11_TD_TCP_CTRL_REG__TD_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU11_TD_TCP_CTRL_REG__TD_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU11_TD_TCP_CTRL_REG__TD_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU11_TD_TCP_CTRL_REG__TCPF__SHIFT 0x10
+#define CGTS_CU11_TD_TCP_CTRL_REG__TCPF_OVERRIDE__SHIFT 0x17
+#define CGTS_CU11_TD_TCP_CTRL_REG__TCPF_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU11_TD_TCP_CTRL_REG__TCPF_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU11_TD_TCP_CTRL_REG__TCPF_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU11_TD_TCP_CTRL_REG__TD_MASK 0x0000007FL
+#define CGTS_CU11_TD_TCP_CTRL_REG__TD_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU11_TD_TCP_CTRL_REG__TD_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU11_TD_TCP_CTRL_REG__TD_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU11_TD_TCP_CTRL_REG__TD_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU11_TD_TCP_CTRL_REG__TCPF_MASK 0x007F0000L
+#define CGTS_CU11_TD_TCP_CTRL_REG__TCPF_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU11_TD_TCP_CTRL_REG__TCPF_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU11_TD_TCP_CTRL_REG__TCPF_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU11_TD_TCP_CTRL_REG__TCPF_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU12_SP0_CTRL_REG
+#define CGTS_CU12_SP0_CTRL_REG__SP00__SHIFT 0x0
+#define CGTS_CU12_SP0_CTRL_REG__SP00_OVERRIDE__SHIFT 0x7
+#define CGTS_CU12_SP0_CTRL_REG__SP00_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU12_SP0_CTRL_REG__SP00_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU12_SP0_CTRL_REG__SP00_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU12_SP0_CTRL_REG__SP01__SHIFT 0x10
+#define CGTS_CU12_SP0_CTRL_REG__SP01_OVERRIDE__SHIFT 0x17
+#define CGTS_CU12_SP0_CTRL_REG__SP01_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU12_SP0_CTRL_REG__SP01_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU12_SP0_CTRL_REG__SP01_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU12_SP0_CTRL_REG__SP00_MASK 0x0000007FL
+#define CGTS_CU12_SP0_CTRL_REG__SP00_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU12_SP0_CTRL_REG__SP00_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU12_SP0_CTRL_REG__SP00_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU12_SP0_CTRL_REG__SP00_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU12_SP0_CTRL_REG__SP01_MASK 0x007F0000L
+#define CGTS_CU12_SP0_CTRL_REG__SP01_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU12_SP0_CTRL_REG__SP01_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU12_SP0_CTRL_REG__SP01_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU12_SP0_CTRL_REG__SP01_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU12_LDS_SQ_CTRL_REG
+#define CGTS_CU12_LDS_SQ_CTRL_REG__LDS__SHIFT 0x0
+#define CGTS_CU12_LDS_SQ_CTRL_REG__LDS_OVERRIDE__SHIFT 0x7
+#define CGTS_CU12_LDS_SQ_CTRL_REG__LDS_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU12_LDS_SQ_CTRL_REG__LDS_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU12_LDS_SQ_CTRL_REG__LDS_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU12_LDS_SQ_CTRL_REG__SQ__SHIFT 0x10
+#define CGTS_CU12_LDS_SQ_CTRL_REG__SQ_OVERRIDE__SHIFT 0x17
+#define CGTS_CU12_LDS_SQ_CTRL_REG__SQ_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU12_LDS_SQ_CTRL_REG__SQ_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU12_LDS_SQ_CTRL_REG__SQ_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU12_LDS_SQ_CTRL_REG__LDS_MASK 0x0000007FL
+#define CGTS_CU12_LDS_SQ_CTRL_REG__LDS_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU12_LDS_SQ_CTRL_REG__LDS_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU12_LDS_SQ_CTRL_REG__LDS_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU12_LDS_SQ_CTRL_REG__LDS_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU12_LDS_SQ_CTRL_REG__SQ_MASK 0x007F0000L
+#define CGTS_CU12_LDS_SQ_CTRL_REG__SQ_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU12_LDS_SQ_CTRL_REG__SQ_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU12_LDS_SQ_CTRL_REG__SQ_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU12_LDS_SQ_CTRL_REG__SQ_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU12_TA_SQC_CTRL_REG
+#define CGTS_CU12_TA_SQC_CTRL_REG__TA__SHIFT 0x0
+#define CGTS_CU12_TA_SQC_CTRL_REG__TA_OVERRIDE__SHIFT 0x7
+#define CGTS_CU12_TA_SQC_CTRL_REG__TA_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU12_TA_SQC_CTRL_REG__TA_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU12_TA_SQC_CTRL_REG__TA_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU12_TA_SQC_CTRL_REG__SQC__SHIFT 0x10
+#define CGTS_CU12_TA_SQC_CTRL_REG__SQC_OVERRIDE__SHIFT 0x17
+#define CGTS_CU12_TA_SQC_CTRL_REG__SQC_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU12_TA_SQC_CTRL_REG__SQC_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU12_TA_SQC_CTRL_REG__SQC_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU12_TA_SQC_CTRL_REG__TA_MASK 0x0000007FL
+#define CGTS_CU12_TA_SQC_CTRL_REG__TA_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU12_TA_SQC_CTRL_REG__TA_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU12_TA_SQC_CTRL_REG__TA_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU12_TA_SQC_CTRL_REG__TA_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU12_TA_SQC_CTRL_REG__SQC_MASK 0x007F0000L
+#define CGTS_CU12_TA_SQC_CTRL_REG__SQC_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU12_TA_SQC_CTRL_REG__SQC_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU12_TA_SQC_CTRL_REG__SQC_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU12_TA_SQC_CTRL_REG__SQC_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU12_SP1_CTRL_REG
+#define CGTS_CU12_SP1_CTRL_REG__SP10__SHIFT 0x0
+#define CGTS_CU12_SP1_CTRL_REG__SP10_OVERRIDE__SHIFT 0x7
+#define CGTS_CU12_SP1_CTRL_REG__SP10_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU12_SP1_CTRL_REG__SP10_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU12_SP1_CTRL_REG__SP10_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU12_SP1_CTRL_REG__SP11__SHIFT 0x10
+#define CGTS_CU12_SP1_CTRL_REG__SP11_OVERRIDE__SHIFT 0x17
+#define CGTS_CU12_SP1_CTRL_REG__SP11_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU12_SP1_CTRL_REG__SP11_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU12_SP1_CTRL_REG__SP11_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU12_SP1_CTRL_REG__SP10_MASK 0x0000007FL
+#define CGTS_CU12_SP1_CTRL_REG__SP10_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU12_SP1_CTRL_REG__SP10_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU12_SP1_CTRL_REG__SP10_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU12_SP1_CTRL_REG__SP10_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU12_SP1_CTRL_REG__SP11_MASK 0x007F0000L
+#define CGTS_CU12_SP1_CTRL_REG__SP11_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU12_SP1_CTRL_REG__SP11_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU12_SP1_CTRL_REG__SP11_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU12_SP1_CTRL_REG__SP11_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU12_TD_TCP_CTRL_REG
+#define CGTS_CU12_TD_TCP_CTRL_REG__TD__SHIFT 0x0
+#define CGTS_CU12_TD_TCP_CTRL_REG__TD_OVERRIDE__SHIFT 0x7
+#define CGTS_CU12_TD_TCP_CTRL_REG__TD_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU12_TD_TCP_CTRL_REG__TD_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU12_TD_TCP_CTRL_REG__TD_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU12_TD_TCP_CTRL_REG__TCPF__SHIFT 0x10
+#define CGTS_CU12_TD_TCP_CTRL_REG__TCPF_OVERRIDE__SHIFT 0x17
+#define CGTS_CU12_TD_TCP_CTRL_REG__TCPF_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU12_TD_TCP_CTRL_REG__TCPF_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU12_TD_TCP_CTRL_REG__TCPF_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU12_TD_TCP_CTRL_REG__TD_MASK 0x0000007FL
+#define CGTS_CU12_TD_TCP_CTRL_REG__TD_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU12_TD_TCP_CTRL_REG__TD_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU12_TD_TCP_CTRL_REG__TD_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU12_TD_TCP_CTRL_REG__TD_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU12_TD_TCP_CTRL_REG__TCPF_MASK 0x007F0000L
+#define CGTS_CU12_TD_TCP_CTRL_REG__TCPF_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU12_TD_TCP_CTRL_REG__TCPF_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU12_TD_TCP_CTRL_REG__TCPF_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU12_TD_TCP_CTRL_REG__TCPF_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU13_SP0_CTRL_REG
+#define CGTS_CU13_SP0_CTRL_REG__SP00__SHIFT 0x0
+#define CGTS_CU13_SP0_CTRL_REG__SP00_OVERRIDE__SHIFT 0x7
+#define CGTS_CU13_SP0_CTRL_REG__SP00_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU13_SP0_CTRL_REG__SP00_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU13_SP0_CTRL_REG__SP00_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU13_SP0_CTRL_REG__SP01__SHIFT 0x10
+#define CGTS_CU13_SP0_CTRL_REG__SP01_OVERRIDE__SHIFT 0x17
+#define CGTS_CU13_SP0_CTRL_REG__SP01_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU13_SP0_CTRL_REG__SP01_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU13_SP0_CTRL_REG__SP01_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU13_SP0_CTRL_REG__SP00_MASK 0x0000007FL
+#define CGTS_CU13_SP0_CTRL_REG__SP00_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU13_SP0_CTRL_REG__SP00_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU13_SP0_CTRL_REG__SP00_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU13_SP0_CTRL_REG__SP00_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU13_SP0_CTRL_REG__SP01_MASK 0x007F0000L
+#define CGTS_CU13_SP0_CTRL_REG__SP01_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU13_SP0_CTRL_REG__SP01_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU13_SP0_CTRL_REG__SP01_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU13_SP0_CTRL_REG__SP01_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU13_LDS_SQ_CTRL_REG
+#define CGTS_CU13_LDS_SQ_CTRL_REG__LDS__SHIFT 0x0
+#define CGTS_CU13_LDS_SQ_CTRL_REG__LDS_OVERRIDE__SHIFT 0x7
+#define CGTS_CU13_LDS_SQ_CTRL_REG__LDS_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU13_LDS_SQ_CTRL_REG__LDS_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU13_LDS_SQ_CTRL_REG__LDS_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU13_LDS_SQ_CTRL_REG__SQ__SHIFT 0x10
+#define CGTS_CU13_LDS_SQ_CTRL_REG__SQ_OVERRIDE__SHIFT 0x17
+#define CGTS_CU13_LDS_SQ_CTRL_REG__SQ_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU13_LDS_SQ_CTRL_REG__SQ_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU13_LDS_SQ_CTRL_REG__SQ_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU13_LDS_SQ_CTRL_REG__LDS_MASK 0x0000007FL
+#define CGTS_CU13_LDS_SQ_CTRL_REG__LDS_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU13_LDS_SQ_CTRL_REG__LDS_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU13_LDS_SQ_CTRL_REG__LDS_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU13_LDS_SQ_CTRL_REG__LDS_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU13_LDS_SQ_CTRL_REG__SQ_MASK 0x007F0000L
+#define CGTS_CU13_LDS_SQ_CTRL_REG__SQ_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU13_LDS_SQ_CTRL_REG__SQ_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU13_LDS_SQ_CTRL_REG__SQ_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU13_LDS_SQ_CTRL_REG__SQ_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU13_TA_SQC_CTRL_REG
+#define CGTS_CU13_TA_SQC_CTRL_REG__TA__SHIFT 0x0
+#define CGTS_CU13_TA_SQC_CTRL_REG__TA_OVERRIDE__SHIFT 0x7
+#define CGTS_CU13_TA_SQC_CTRL_REG__TA_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU13_TA_SQC_CTRL_REG__TA_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU13_TA_SQC_CTRL_REG__TA_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU13_TA_SQC_CTRL_REG__TA_MASK 0x0000007FL
+#define CGTS_CU13_TA_SQC_CTRL_REG__TA_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU13_TA_SQC_CTRL_REG__TA_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU13_TA_SQC_CTRL_REG__TA_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU13_TA_SQC_CTRL_REG__TA_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+//CGTS_CU13_SP1_CTRL_REG
+#define CGTS_CU13_SP1_CTRL_REG__SP10__SHIFT 0x0
+#define CGTS_CU13_SP1_CTRL_REG__SP10_OVERRIDE__SHIFT 0x7
+#define CGTS_CU13_SP1_CTRL_REG__SP10_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU13_SP1_CTRL_REG__SP10_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU13_SP1_CTRL_REG__SP10_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU13_SP1_CTRL_REG__SP11__SHIFT 0x10
+#define CGTS_CU13_SP1_CTRL_REG__SP11_OVERRIDE__SHIFT 0x17
+#define CGTS_CU13_SP1_CTRL_REG__SP11_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU13_SP1_CTRL_REG__SP11_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU13_SP1_CTRL_REG__SP11_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU13_SP1_CTRL_REG__SP10_MASK 0x0000007FL
+#define CGTS_CU13_SP1_CTRL_REG__SP10_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU13_SP1_CTRL_REG__SP10_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU13_SP1_CTRL_REG__SP10_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU13_SP1_CTRL_REG__SP10_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU13_SP1_CTRL_REG__SP11_MASK 0x007F0000L
+#define CGTS_CU13_SP1_CTRL_REG__SP11_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU13_SP1_CTRL_REG__SP11_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU13_SP1_CTRL_REG__SP11_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU13_SP1_CTRL_REG__SP11_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU13_TD_TCP_CTRL_REG
+#define CGTS_CU13_TD_TCP_CTRL_REG__TD__SHIFT 0x0
+#define CGTS_CU13_TD_TCP_CTRL_REG__TD_OVERRIDE__SHIFT 0x7
+#define CGTS_CU13_TD_TCP_CTRL_REG__TD_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU13_TD_TCP_CTRL_REG__TD_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU13_TD_TCP_CTRL_REG__TD_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU13_TD_TCP_CTRL_REG__TCPF__SHIFT 0x10
+#define CGTS_CU13_TD_TCP_CTRL_REG__TCPF_OVERRIDE__SHIFT 0x17
+#define CGTS_CU13_TD_TCP_CTRL_REG__TCPF_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU13_TD_TCP_CTRL_REG__TCPF_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU13_TD_TCP_CTRL_REG__TCPF_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU13_TD_TCP_CTRL_REG__TD_MASK 0x0000007FL
+#define CGTS_CU13_TD_TCP_CTRL_REG__TD_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU13_TD_TCP_CTRL_REG__TD_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU13_TD_TCP_CTRL_REG__TD_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU13_TD_TCP_CTRL_REG__TD_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU13_TD_TCP_CTRL_REG__TCPF_MASK 0x007F0000L
+#define CGTS_CU13_TD_TCP_CTRL_REG__TCPF_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU13_TD_TCP_CTRL_REG__TCPF_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU13_TD_TCP_CTRL_REG__TCPF_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU13_TD_TCP_CTRL_REG__TCPF_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU14_SP0_CTRL_REG
+#define CGTS_CU14_SP0_CTRL_REG__SP00__SHIFT 0x0
+#define CGTS_CU14_SP0_CTRL_REG__SP00_OVERRIDE__SHIFT 0x7
+#define CGTS_CU14_SP0_CTRL_REG__SP00_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU14_SP0_CTRL_REG__SP00_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU14_SP0_CTRL_REG__SP00_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU14_SP0_CTRL_REG__SP01__SHIFT 0x10
+#define CGTS_CU14_SP0_CTRL_REG__SP01_OVERRIDE__SHIFT 0x17
+#define CGTS_CU14_SP0_CTRL_REG__SP01_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU14_SP0_CTRL_REG__SP01_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU14_SP0_CTRL_REG__SP01_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU14_SP0_CTRL_REG__SP00_MASK 0x0000007FL
+#define CGTS_CU14_SP0_CTRL_REG__SP00_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU14_SP0_CTRL_REG__SP00_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU14_SP0_CTRL_REG__SP00_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU14_SP0_CTRL_REG__SP00_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU14_SP0_CTRL_REG__SP01_MASK 0x007F0000L
+#define CGTS_CU14_SP0_CTRL_REG__SP01_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU14_SP0_CTRL_REG__SP01_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU14_SP0_CTRL_REG__SP01_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU14_SP0_CTRL_REG__SP01_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU14_LDS_SQ_CTRL_REG
+#define CGTS_CU14_LDS_SQ_CTRL_REG__LDS__SHIFT 0x0
+#define CGTS_CU14_LDS_SQ_CTRL_REG__LDS_OVERRIDE__SHIFT 0x7
+#define CGTS_CU14_LDS_SQ_CTRL_REG__LDS_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU14_LDS_SQ_CTRL_REG__LDS_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU14_LDS_SQ_CTRL_REG__LDS_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU14_LDS_SQ_CTRL_REG__SQ__SHIFT 0x10
+#define CGTS_CU14_LDS_SQ_CTRL_REG__SQ_OVERRIDE__SHIFT 0x17
+#define CGTS_CU14_LDS_SQ_CTRL_REG__SQ_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU14_LDS_SQ_CTRL_REG__SQ_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU14_LDS_SQ_CTRL_REG__SQ_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU14_LDS_SQ_CTRL_REG__LDS_MASK 0x0000007FL
+#define CGTS_CU14_LDS_SQ_CTRL_REG__LDS_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU14_LDS_SQ_CTRL_REG__LDS_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU14_LDS_SQ_CTRL_REG__LDS_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU14_LDS_SQ_CTRL_REG__LDS_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU14_LDS_SQ_CTRL_REG__SQ_MASK 0x007F0000L
+#define CGTS_CU14_LDS_SQ_CTRL_REG__SQ_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU14_LDS_SQ_CTRL_REG__SQ_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU14_LDS_SQ_CTRL_REG__SQ_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU14_LDS_SQ_CTRL_REG__SQ_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU14_TA_SQC_CTRL_REG
+#define CGTS_CU14_TA_SQC_CTRL_REG__TA__SHIFT 0x0
+#define CGTS_CU14_TA_SQC_CTRL_REG__TA_OVERRIDE__SHIFT 0x7
+#define CGTS_CU14_TA_SQC_CTRL_REG__TA_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU14_TA_SQC_CTRL_REG__TA_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU14_TA_SQC_CTRL_REG__TA_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU14_TA_SQC_CTRL_REG__SQC__SHIFT 0x10
+#define CGTS_CU14_TA_SQC_CTRL_REG__SQC_OVERRIDE__SHIFT 0x17
+#define CGTS_CU14_TA_SQC_CTRL_REG__SQC_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU14_TA_SQC_CTRL_REG__SQC_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU14_TA_SQC_CTRL_REG__SQC_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU14_TA_SQC_CTRL_REG__TA_MASK 0x0000007FL
+#define CGTS_CU14_TA_SQC_CTRL_REG__TA_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU14_TA_SQC_CTRL_REG__TA_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU14_TA_SQC_CTRL_REG__TA_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU14_TA_SQC_CTRL_REG__TA_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU14_TA_SQC_CTRL_REG__SQC_MASK 0x007F0000L
+#define CGTS_CU14_TA_SQC_CTRL_REG__SQC_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU14_TA_SQC_CTRL_REG__SQC_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU14_TA_SQC_CTRL_REG__SQC_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU14_TA_SQC_CTRL_REG__SQC_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU14_SP1_CTRL_REG
+#define CGTS_CU14_SP1_CTRL_REG__SP10__SHIFT 0x0
+#define CGTS_CU14_SP1_CTRL_REG__SP10_OVERRIDE__SHIFT 0x7
+#define CGTS_CU14_SP1_CTRL_REG__SP10_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU14_SP1_CTRL_REG__SP10_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU14_SP1_CTRL_REG__SP10_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU14_SP1_CTRL_REG__SP11__SHIFT 0x10
+#define CGTS_CU14_SP1_CTRL_REG__SP11_OVERRIDE__SHIFT 0x17
+#define CGTS_CU14_SP1_CTRL_REG__SP11_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU14_SP1_CTRL_REG__SP11_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU14_SP1_CTRL_REG__SP11_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU14_SP1_CTRL_REG__SP10_MASK 0x0000007FL
+#define CGTS_CU14_SP1_CTRL_REG__SP10_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU14_SP1_CTRL_REG__SP10_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU14_SP1_CTRL_REG__SP10_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU14_SP1_CTRL_REG__SP10_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU14_SP1_CTRL_REG__SP11_MASK 0x007F0000L
+#define CGTS_CU14_SP1_CTRL_REG__SP11_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU14_SP1_CTRL_REG__SP11_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU14_SP1_CTRL_REG__SP11_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU14_SP1_CTRL_REG__SP11_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU14_TD_TCP_CTRL_REG
+#define CGTS_CU14_TD_TCP_CTRL_REG__TD__SHIFT 0x0
+#define CGTS_CU14_TD_TCP_CTRL_REG__TD_OVERRIDE__SHIFT 0x7
+#define CGTS_CU14_TD_TCP_CTRL_REG__TD_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU14_TD_TCP_CTRL_REG__TD_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU14_TD_TCP_CTRL_REG__TD_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU14_TD_TCP_CTRL_REG__TCPF__SHIFT 0x10
+#define CGTS_CU14_TD_TCP_CTRL_REG__TCPF_OVERRIDE__SHIFT 0x17
+#define CGTS_CU14_TD_TCP_CTRL_REG__TCPF_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU14_TD_TCP_CTRL_REG__TCPF_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU14_TD_TCP_CTRL_REG__TCPF_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU14_TD_TCP_CTRL_REG__TD_MASK 0x0000007FL
+#define CGTS_CU14_TD_TCP_CTRL_REG__TD_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU14_TD_TCP_CTRL_REG__TD_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU14_TD_TCP_CTRL_REG__TD_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU14_TD_TCP_CTRL_REG__TD_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU14_TD_TCP_CTRL_REG__TCPF_MASK 0x007F0000L
+#define CGTS_CU14_TD_TCP_CTRL_REG__TCPF_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU14_TD_TCP_CTRL_REG__TCPF_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU14_TD_TCP_CTRL_REG__TCPF_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU14_TD_TCP_CTRL_REG__TCPF_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU15_SP0_CTRL_REG
+#define CGTS_CU15_SP0_CTRL_REG__SP00__SHIFT 0x0
+#define CGTS_CU15_SP0_CTRL_REG__SP00_OVERRIDE__SHIFT 0x7
+#define CGTS_CU15_SP0_CTRL_REG__SP00_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU15_SP0_CTRL_REG__SP00_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU15_SP0_CTRL_REG__SP00_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU15_SP0_CTRL_REG__SP01__SHIFT 0x10
+#define CGTS_CU15_SP0_CTRL_REG__SP01_OVERRIDE__SHIFT 0x17
+#define CGTS_CU15_SP0_CTRL_REG__SP01_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU15_SP0_CTRL_REG__SP01_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU15_SP0_CTRL_REG__SP01_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU15_SP0_CTRL_REG__SP00_MASK 0x0000007FL
+#define CGTS_CU15_SP0_CTRL_REG__SP00_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU15_SP0_CTRL_REG__SP00_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU15_SP0_CTRL_REG__SP00_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU15_SP0_CTRL_REG__SP00_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU15_SP0_CTRL_REG__SP01_MASK 0x007F0000L
+#define CGTS_CU15_SP0_CTRL_REG__SP01_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU15_SP0_CTRL_REG__SP01_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU15_SP0_CTRL_REG__SP01_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU15_SP0_CTRL_REG__SP01_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU15_LDS_SQ_CTRL_REG
+#define CGTS_CU15_LDS_SQ_CTRL_REG__LDS__SHIFT 0x0
+#define CGTS_CU15_LDS_SQ_CTRL_REG__LDS_OVERRIDE__SHIFT 0x7
+#define CGTS_CU15_LDS_SQ_CTRL_REG__LDS_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU15_LDS_SQ_CTRL_REG__LDS_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU15_LDS_SQ_CTRL_REG__LDS_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU15_LDS_SQ_CTRL_REG__SQ__SHIFT 0x10
+#define CGTS_CU15_LDS_SQ_CTRL_REG__SQ_OVERRIDE__SHIFT 0x17
+#define CGTS_CU15_LDS_SQ_CTRL_REG__SQ_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU15_LDS_SQ_CTRL_REG__SQ_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU15_LDS_SQ_CTRL_REG__SQ_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU15_LDS_SQ_CTRL_REG__LDS_MASK 0x0000007FL
+#define CGTS_CU15_LDS_SQ_CTRL_REG__LDS_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU15_LDS_SQ_CTRL_REG__LDS_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU15_LDS_SQ_CTRL_REG__LDS_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU15_LDS_SQ_CTRL_REG__LDS_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU15_LDS_SQ_CTRL_REG__SQ_MASK 0x007F0000L
+#define CGTS_CU15_LDS_SQ_CTRL_REG__SQ_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU15_LDS_SQ_CTRL_REG__SQ_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU15_LDS_SQ_CTRL_REG__SQ_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU15_LDS_SQ_CTRL_REG__SQ_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU15_TA_SQC_CTRL_REG
+#define CGTS_CU15_TA_SQC_CTRL_REG__TA__SHIFT 0x0
+#define CGTS_CU15_TA_SQC_CTRL_REG__TA_OVERRIDE__SHIFT 0x7
+#define CGTS_CU15_TA_SQC_CTRL_REG__TA_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU15_TA_SQC_CTRL_REG__TA_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU15_TA_SQC_CTRL_REG__TA_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU15_TA_SQC_CTRL_REG__TA_MASK 0x0000007FL
+#define CGTS_CU15_TA_SQC_CTRL_REG__TA_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU15_TA_SQC_CTRL_REG__TA_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU15_TA_SQC_CTRL_REG__TA_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU15_TA_SQC_CTRL_REG__TA_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+//CGTS_CU15_SP1_CTRL_REG
+#define CGTS_CU15_SP1_CTRL_REG__SP10__SHIFT 0x0
+#define CGTS_CU15_SP1_CTRL_REG__SP10_OVERRIDE__SHIFT 0x7
+#define CGTS_CU15_SP1_CTRL_REG__SP10_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU15_SP1_CTRL_REG__SP10_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU15_SP1_CTRL_REG__SP10_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU15_SP1_CTRL_REG__SP11__SHIFT 0x10
+#define CGTS_CU15_SP1_CTRL_REG__SP11_OVERRIDE__SHIFT 0x17
+#define CGTS_CU15_SP1_CTRL_REG__SP11_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU15_SP1_CTRL_REG__SP11_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU15_SP1_CTRL_REG__SP11_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU15_SP1_CTRL_REG__SP10_MASK 0x0000007FL
+#define CGTS_CU15_SP1_CTRL_REG__SP10_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU15_SP1_CTRL_REG__SP10_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU15_SP1_CTRL_REG__SP10_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU15_SP1_CTRL_REG__SP10_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU15_SP1_CTRL_REG__SP11_MASK 0x007F0000L
+#define CGTS_CU15_SP1_CTRL_REG__SP11_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU15_SP1_CTRL_REG__SP11_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU15_SP1_CTRL_REG__SP11_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU15_SP1_CTRL_REG__SP11_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU15_TD_TCP_CTRL_REG
+#define CGTS_CU15_TD_TCP_CTRL_REG__TD__SHIFT 0x0
+#define CGTS_CU15_TD_TCP_CTRL_REG__TD_OVERRIDE__SHIFT 0x7
+#define CGTS_CU15_TD_TCP_CTRL_REG__TD_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU15_TD_TCP_CTRL_REG__TD_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU15_TD_TCP_CTRL_REG__TD_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU15_TD_TCP_CTRL_REG__TCPF__SHIFT 0x10
+#define CGTS_CU15_TD_TCP_CTRL_REG__TCPF_OVERRIDE__SHIFT 0x17
+#define CGTS_CU15_TD_TCP_CTRL_REG__TCPF_BUSY_OVERRIDE__SHIFT 0x18
+#define CGTS_CU15_TD_TCP_CTRL_REG__TCPF_LS_OVERRIDE__SHIFT 0x1a
+#define CGTS_CU15_TD_TCP_CTRL_REG__TCPF_SIMDBUSY_OVERRIDE__SHIFT 0x1b
+#define CGTS_CU15_TD_TCP_CTRL_REG__TD_MASK 0x0000007FL
+#define CGTS_CU15_TD_TCP_CTRL_REG__TD_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU15_TD_TCP_CTRL_REG__TD_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU15_TD_TCP_CTRL_REG__TD_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU15_TD_TCP_CTRL_REG__TD_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU15_TD_TCP_CTRL_REG__TCPF_MASK 0x007F0000L
+#define CGTS_CU15_TD_TCP_CTRL_REG__TCPF_OVERRIDE_MASK 0x00800000L
+#define CGTS_CU15_TD_TCP_CTRL_REG__TCPF_BUSY_OVERRIDE_MASK 0x03000000L
+#define CGTS_CU15_TD_TCP_CTRL_REG__TCPF_LS_OVERRIDE_MASK 0x04000000L
+#define CGTS_CU15_TD_TCP_CTRL_REG__TCPF_SIMDBUSY_OVERRIDE_MASK 0x08000000L
+//CGTS_CU0_TCPI_CTRL_REG
+#define CGTS_CU0_TCPI_CTRL_REG__TCPI__SHIFT 0x0
+#define CGTS_CU0_TCPI_CTRL_REG__TCPI_OVERRIDE__SHIFT 0x7
+#define CGTS_CU0_TCPI_CTRL_REG__TCPI_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU0_TCPI_CTRL_REG__TCPI_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU0_TCPI_CTRL_REG__TCPI_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU0_TCPI_CTRL_REG__RESERVED__SHIFT 0xc
+#define CGTS_CU0_TCPI_CTRL_REG__TCPI_MASK 0x0000007FL
+#define CGTS_CU0_TCPI_CTRL_REG__TCPI_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU0_TCPI_CTRL_REG__TCPI_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU0_TCPI_CTRL_REG__TCPI_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU0_TCPI_CTRL_REG__TCPI_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU0_TCPI_CTRL_REG__RESERVED_MASK 0xFFFFF000L
+//CGTS_CU1_TCPI_CTRL_REG
+#define CGTS_CU1_TCPI_CTRL_REG__TCPI__SHIFT 0x0
+#define CGTS_CU1_TCPI_CTRL_REG__TCPI_OVERRIDE__SHIFT 0x7
+#define CGTS_CU1_TCPI_CTRL_REG__TCPI_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU1_TCPI_CTRL_REG__TCPI_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU1_TCPI_CTRL_REG__TCPI_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU1_TCPI_CTRL_REG__RESERVED__SHIFT 0xc
+#define CGTS_CU1_TCPI_CTRL_REG__TCPI_MASK 0x0000007FL
+#define CGTS_CU1_TCPI_CTRL_REG__TCPI_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU1_TCPI_CTRL_REG__TCPI_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU1_TCPI_CTRL_REG__TCPI_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU1_TCPI_CTRL_REG__TCPI_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU1_TCPI_CTRL_REG__RESERVED_MASK 0xFFFFF000L
+//CGTS_CU2_TCPI_CTRL_REG
+#define CGTS_CU2_TCPI_CTRL_REG__TCPI__SHIFT 0x0
+#define CGTS_CU2_TCPI_CTRL_REG__TCPI_OVERRIDE__SHIFT 0x7
+#define CGTS_CU2_TCPI_CTRL_REG__TCPI_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU2_TCPI_CTRL_REG__TCPI_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU2_TCPI_CTRL_REG__TCPI_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU2_TCPI_CTRL_REG__RESERVED__SHIFT 0xc
+#define CGTS_CU2_TCPI_CTRL_REG__TCPI_MASK 0x0000007FL
+#define CGTS_CU2_TCPI_CTRL_REG__TCPI_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU2_TCPI_CTRL_REG__TCPI_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU2_TCPI_CTRL_REG__TCPI_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU2_TCPI_CTRL_REG__TCPI_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU2_TCPI_CTRL_REG__RESERVED_MASK 0xFFFFF000L
+//CGTS_CU3_TCPI_CTRL_REG
+#define CGTS_CU3_TCPI_CTRL_REG__TCPI__SHIFT 0x0
+#define CGTS_CU3_TCPI_CTRL_REG__TCPI_OVERRIDE__SHIFT 0x7
+#define CGTS_CU3_TCPI_CTRL_REG__TCPI_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU3_TCPI_CTRL_REG__TCPI_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU3_TCPI_CTRL_REG__TCPI_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU3_TCPI_CTRL_REG__RESERVED__SHIFT 0xc
+#define CGTS_CU3_TCPI_CTRL_REG__TCPI_MASK 0x0000007FL
+#define CGTS_CU3_TCPI_CTRL_REG__TCPI_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU3_TCPI_CTRL_REG__TCPI_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU3_TCPI_CTRL_REG__TCPI_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU3_TCPI_CTRL_REG__TCPI_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU3_TCPI_CTRL_REG__RESERVED_MASK 0xFFFFF000L
+//CGTS_CU4_TCPI_CTRL_REG
+#define CGTS_CU4_TCPI_CTRL_REG__TCPI__SHIFT 0x0
+#define CGTS_CU4_TCPI_CTRL_REG__TCPI_OVERRIDE__SHIFT 0x7
+#define CGTS_CU4_TCPI_CTRL_REG__TCPI_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU4_TCPI_CTRL_REG__TCPI_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU4_TCPI_CTRL_REG__TCPI_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU4_TCPI_CTRL_REG__RESERVED__SHIFT 0xc
+#define CGTS_CU4_TCPI_CTRL_REG__TCPI_MASK 0x0000007FL
+#define CGTS_CU4_TCPI_CTRL_REG__TCPI_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU4_TCPI_CTRL_REG__TCPI_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU4_TCPI_CTRL_REG__TCPI_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU4_TCPI_CTRL_REG__TCPI_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU4_TCPI_CTRL_REG__RESERVED_MASK 0xFFFFF000L
+//CGTS_CU5_TCPI_CTRL_REG
+#define CGTS_CU5_TCPI_CTRL_REG__TCPI__SHIFT 0x0
+#define CGTS_CU5_TCPI_CTRL_REG__TCPI_OVERRIDE__SHIFT 0x7
+#define CGTS_CU5_TCPI_CTRL_REG__TCPI_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU5_TCPI_CTRL_REG__TCPI_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU5_TCPI_CTRL_REG__TCPI_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU5_TCPI_CTRL_REG__RESERVED__SHIFT 0xc
+#define CGTS_CU5_TCPI_CTRL_REG__TCPI_MASK 0x0000007FL
+#define CGTS_CU5_TCPI_CTRL_REG__TCPI_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU5_TCPI_CTRL_REG__TCPI_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU5_TCPI_CTRL_REG__TCPI_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU5_TCPI_CTRL_REG__TCPI_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU5_TCPI_CTRL_REG__RESERVED_MASK 0xFFFFF000L
+//CGTS_CU6_TCPI_CTRL_REG
+#define CGTS_CU6_TCPI_CTRL_REG__TCPI__SHIFT 0x0
+#define CGTS_CU6_TCPI_CTRL_REG__TCPI_OVERRIDE__SHIFT 0x7
+#define CGTS_CU6_TCPI_CTRL_REG__TCPI_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU6_TCPI_CTRL_REG__TCPI_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU6_TCPI_CTRL_REG__TCPI_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU6_TCPI_CTRL_REG__RESERVED__SHIFT 0xc
+#define CGTS_CU6_TCPI_CTRL_REG__TCPI_MASK 0x0000007FL
+#define CGTS_CU6_TCPI_CTRL_REG__TCPI_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU6_TCPI_CTRL_REG__TCPI_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU6_TCPI_CTRL_REG__TCPI_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU6_TCPI_CTRL_REG__TCPI_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU6_TCPI_CTRL_REG__RESERVED_MASK 0xFFFFF000L
+//CGTS_CU7_TCPI_CTRL_REG
+#define CGTS_CU7_TCPI_CTRL_REG__TCPI__SHIFT 0x0
+#define CGTS_CU7_TCPI_CTRL_REG__TCPI_OVERRIDE__SHIFT 0x7
+#define CGTS_CU7_TCPI_CTRL_REG__TCPI_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU7_TCPI_CTRL_REG__TCPI_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU7_TCPI_CTRL_REG__TCPI_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU7_TCPI_CTRL_REG__RESERVED__SHIFT 0xc
+#define CGTS_CU7_TCPI_CTRL_REG__TCPI_MASK 0x0000007FL
+#define CGTS_CU7_TCPI_CTRL_REG__TCPI_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU7_TCPI_CTRL_REG__TCPI_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU7_TCPI_CTRL_REG__TCPI_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU7_TCPI_CTRL_REG__TCPI_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU7_TCPI_CTRL_REG__RESERVED_MASK 0xFFFFF000L
+//CGTS_CU8_TCPI_CTRL_REG
+#define CGTS_CU8_TCPI_CTRL_REG__TCPI__SHIFT 0x0
+#define CGTS_CU8_TCPI_CTRL_REG__TCPI_OVERRIDE__SHIFT 0x7
+#define CGTS_CU8_TCPI_CTRL_REG__TCPI_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU8_TCPI_CTRL_REG__TCPI_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU8_TCPI_CTRL_REG__TCPI_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU8_TCPI_CTRL_REG__RESERVED__SHIFT 0xc
+#define CGTS_CU8_TCPI_CTRL_REG__TCPI_MASK 0x0000007FL
+#define CGTS_CU8_TCPI_CTRL_REG__TCPI_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU8_TCPI_CTRL_REG__TCPI_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU8_TCPI_CTRL_REG__TCPI_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU8_TCPI_CTRL_REG__TCPI_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU8_TCPI_CTRL_REG__RESERVED_MASK 0xFFFFF000L
+//CGTS_CU9_TCPI_CTRL_REG
+#define CGTS_CU9_TCPI_CTRL_REG__TCPI__SHIFT 0x0
+#define CGTS_CU9_TCPI_CTRL_REG__TCPI_OVERRIDE__SHIFT 0x7
+#define CGTS_CU9_TCPI_CTRL_REG__TCPI_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU9_TCPI_CTRL_REG__TCPI_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU9_TCPI_CTRL_REG__TCPI_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU9_TCPI_CTRL_REG__RESERVED__SHIFT 0xc
+#define CGTS_CU9_TCPI_CTRL_REG__TCPI_MASK 0x0000007FL
+#define CGTS_CU9_TCPI_CTRL_REG__TCPI_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU9_TCPI_CTRL_REG__TCPI_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU9_TCPI_CTRL_REG__TCPI_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU9_TCPI_CTRL_REG__TCPI_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU9_TCPI_CTRL_REG__RESERVED_MASK 0xFFFFF000L
+//CGTS_CU10_TCPI_CTRL_REG
+#define CGTS_CU10_TCPI_CTRL_REG__TCPI__SHIFT 0x0
+#define CGTS_CU10_TCPI_CTRL_REG__TCPI_OVERRIDE__SHIFT 0x7
+#define CGTS_CU10_TCPI_CTRL_REG__TCPI_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU10_TCPI_CTRL_REG__TCPI_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU10_TCPI_CTRL_REG__TCPI_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU10_TCPI_CTRL_REG__RESERVED__SHIFT 0xc
+#define CGTS_CU10_TCPI_CTRL_REG__TCPI_MASK 0x0000007FL
+#define CGTS_CU10_TCPI_CTRL_REG__TCPI_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU10_TCPI_CTRL_REG__TCPI_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU10_TCPI_CTRL_REG__TCPI_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU10_TCPI_CTRL_REG__TCPI_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU10_TCPI_CTRL_REG__RESERVED_MASK 0xFFFFF000L
+//CGTS_CU11_TCPI_CTRL_REG
+#define CGTS_CU11_TCPI_CTRL_REG__TCPI__SHIFT 0x0
+#define CGTS_CU11_TCPI_CTRL_REG__TCPI_OVERRIDE__SHIFT 0x7
+#define CGTS_CU11_TCPI_CTRL_REG__TCPI_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU11_TCPI_CTRL_REG__TCPI_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU11_TCPI_CTRL_REG__TCPI_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU11_TCPI_CTRL_REG__RESERVED__SHIFT 0xc
+#define CGTS_CU11_TCPI_CTRL_REG__TCPI_MASK 0x0000007FL
+#define CGTS_CU11_TCPI_CTRL_REG__TCPI_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU11_TCPI_CTRL_REG__TCPI_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU11_TCPI_CTRL_REG__TCPI_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU11_TCPI_CTRL_REG__TCPI_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU11_TCPI_CTRL_REG__RESERVED_MASK 0xFFFFF000L
+//CGTS_CU12_TCPI_CTRL_REG
+#define CGTS_CU12_TCPI_CTRL_REG__TCPI__SHIFT 0x0
+#define CGTS_CU12_TCPI_CTRL_REG__TCPI_OVERRIDE__SHIFT 0x7
+#define CGTS_CU12_TCPI_CTRL_REG__TCPI_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU12_TCPI_CTRL_REG__TCPI_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU12_TCPI_CTRL_REG__TCPI_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU12_TCPI_CTRL_REG__RESERVED__SHIFT 0xc
+#define CGTS_CU12_TCPI_CTRL_REG__TCPI_MASK 0x0000007FL
+#define CGTS_CU12_TCPI_CTRL_REG__TCPI_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU12_TCPI_CTRL_REG__TCPI_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU12_TCPI_CTRL_REG__TCPI_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU12_TCPI_CTRL_REG__TCPI_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU12_TCPI_CTRL_REG__RESERVED_MASK 0xFFFFF000L
+//CGTS_CU13_TCPI_CTRL_REG
+#define CGTS_CU13_TCPI_CTRL_REG__TCPI__SHIFT 0x0
+#define CGTS_CU13_TCPI_CTRL_REG__TCPI_OVERRIDE__SHIFT 0x7
+#define CGTS_CU13_TCPI_CTRL_REG__TCPI_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU13_TCPI_CTRL_REG__TCPI_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU13_TCPI_CTRL_REG__TCPI_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU13_TCPI_CTRL_REG__RESERVED__SHIFT 0xc
+#define CGTS_CU13_TCPI_CTRL_REG__TCPI_MASK 0x0000007FL
+#define CGTS_CU13_TCPI_CTRL_REG__TCPI_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU13_TCPI_CTRL_REG__TCPI_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU13_TCPI_CTRL_REG__TCPI_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU13_TCPI_CTRL_REG__TCPI_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU13_TCPI_CTRL_REG__RESERVED_MASK 0xFFFFF000L
+//CGTS_CU14_TCPI_CTRL_REG
+#define CGTS_CU14_TCPI_CTRL_REG__TCPI__SHIFT 0x0
+#define CGTS_CU14_TCPI_CTRL_REG__TCPI_OVERRIDE__SHIFT 0x7
+#define CGTS_CU14_TCPI_CTRL_REG__TCPI_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU14_TCPI_CTRL_REG__TCPI_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU14_TCPI_CTRL_REG__TCPI_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU14_TCPI_CTRL_REG__RESERVED__SHIFT 0xc
+#define CGTS_CU14_TCPI_CTRL_REG__TCPI_MASK 0x0000007FL
+#define CGTS_CU14_TCPI_CTRL_REG__TCPI_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU14_TCPI_CTRL_REG__TCPI_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU14_TCPI_CTRL_REG__TCPI_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU14_TCPI_CTRL_REG__TCPI_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU14_TCPI_CTRL_REG__RESERVED_MASK 0xFFFFF000L
+//CGTS_CU15_TCPI_CTRL_REG
+#define CGTS_CU15_TCPI_CTRL_REG__TCPI__SHIFT 0x0
+#define CGTS_CU15_TCPI_CTRL_REG__TCPI_OVERRIDE__SHIFT 0x7
+#define CGTS_CU15_TCPI_CTRL_REG__TCPI_BUSY_OVERRIDE__SHIFT 0x8
+#define CGTS_CU15_TCPI_CTRL_REG__TCPI_LS_OVERRIDE__SHIFT 0xa
+#define CGTS_CU15_TCPI_CTRL_REG__TCPI_SIMDBUSY_OVERRIDE__SHIFT 0xb
+#define CGTS_CU15_TCPI_CTRL_REG__RESERVED__SHIFT 0xc
+#define CGTS_CU15_TCPI_CTRL_REG__TCPI_MASK 0x0000007FL
+#define CGTS_CU15_TCPI_CTRL_REG__TCPI_OVERRIDE_MASK 0x00000080L
+#define CGTS_CU15_TCPI_CTRL_REG__TCPI_BUSY_OVERRIDE_MASK 0x00000300L
+#define CGTS_CU15_TCPI_CTRL_REG__TCPI_LS_OVERRIDE_MASK 0x00000400L
+#define CGTS_CU15_TCPI_CTRL_REG__TCPI_SIMDBUSY_OVERRIDE_MASK 0x00000800L
+#define CGTS_CU15_TCPI_CTRL_REG__RESERVED_MASK 0xFFFFF000L
+//CGTT_SPI_PS_CLK_CTRL
+#define CGTT_SPI_PS_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define CGTT_SPI_PS_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define CGTT_SPI_PS_CLK_CTRL__SOFT_STALL_OVERRIDE6__SHIFT 0x10
+#define CGTT_SPI_PS_CLK_CTRL__SOFT_STALL_OVERRIDE5__SHIFT 0x11
+#define CGTT_SPI_PS_CLK_CTRL__SOFT_STALL_OVERRIDE4__SHIFT 0x12
+#define CGTT_SPI_PS_CLK_CTRL__SOFT_STALL_OVERRIDE3__SHIFT 0x13
+#define CGTT_SPI_PS_CLK_CTRL__SOFT_STALL_OVERRIDE2__SHIFT 0x14
+#define CGTT_SPI_PS_CLK_CTRL__SOFT_STALL_OVERRIDE1__SHIFT 0x15
+#define CGTT_SPI_PS_CLK_CTRL__SOFT_STALL_OVERRIDE0__SHIFT 0x16
+#define CGTT_SPI_PS_CLK_CTRL__GRP6_OVERRIDE__SHIFT 0x18
+#define CGTT_SPI_PS_CLK_CTRL__GRP5_OVERRIDE__SHIFT 0x19
+#define CGTT_SPI_PS_CLK_CTRL__GRP4_OVERRIDE__SHIFT 0x1a
+#define CGTT_SPI_PS_CLK_CTRL__GRP3_OVERRIDE__SHIFT 0x1b
+#define CGTT_SPI_PS_CLK_CTRL__GRP2_OVERRIDE__SHIFT 0x1c
+#define CGTT_SPI_PS_CLK_CTRL__GRP1_OVERRIDE__SHIFT 0x1d
+#define CGTT_SPI_PS_CLK_CTRL__GRP0_OVERRIDE__SHIFT 0x1e
+#define CGTT_SPI_PS_CLK_CTRL__REG_OVERRIDE__SHIFT 0x1f
+#define CGTT_SPI_PS_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define CGTT_SPI_PS_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define CGTT_SPI_PS_CLK_CTRL__SOFT_STALL_OVERRIDE6_MASK 0x00010000L
+#define CGTT_SPI_PS_CLK_CTRL__SOFT_STALL_OVERRIDE5_MASK 0x00020000L
+#define CGTT_SPI_PS_CLK_CTRL__SOFT_STALL_OVERRIDE4_MASK 0x00040000L
+#define CGTT_SPI_PS_CLK_CTRL__SOFT_STALL_OVERRIDE3_MASK 0x00080000L
+#define CGTT_SPI_PS_CLK_CTRL__SOFT_STALL_OVERRIDE2_MASK 0x00100000L
+#define CGTT_SPI_PS_CLK_CTRL__SOFT_STALL_OVERRIDE1_MASK 0x00200000L
+#define CGTT_SPI_PS_CLK_CTRL__SOFT_STALL_OVERRIDE0_MASK 0x00400000L
+#define CGTT_SPI_PS_CLK_CTRL__GRP6_OVERRIDE_MASK 0x01000000L
+#define CGTT_SPI_PS_CLK_CTRL__GRP5_OVERRIDE_MASK 0x02000000L
+#define CGTT_SPI_PS_CLK_CTRL__GRP4_OVERRIDE_MASK 0x04000000L
+#define CGTT_SPI_PS_CLK_CTRL__GRP3_OVERRIDE_MASK 0x08000000L
+#define CGTT_SPI_PS_CLK_CTRL__GRP2_OVERRIDE_MASK 0x10000000L
+#define CGTT_SPI_PS_CLK_CTRL__GRP1_OVERRIDE_MASK 0x20000000L
+#define CGTT_SPI_PS_CLK_CTRL__GRP0_OVERRIDE_MASK 0x40000000L
+#define CGTT_SPI_PS_CLK_CTRL__REG_OVERRIDE_MASK 0x80000000L
+//CGTT_SPIS_CLK_CTRL
+#define CGTT_SPIS_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define CGTT_SPIS_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define CGTT_SPIS_CLK_CTRL__SOFT_STALL_OVERRIDE6__SHIFT 0x10
+#define CGTT_SPIS_CLK_CTRL__SOFT_STALL_OVERRIDE5__SHIFT 0x11
+#define CGTT_SPIS_CLK_CTRL__SOFT_STALL_OVERRIDE4__SHIFT 0x12
+#define CGTT_SPIS_CLK_CTRL__SOFT_STALL_OVERRIDE3__SHIFT 0x13
+#define CGTT_SPIS_CLK_CTRL__SOFT_STALL_OVERRIDE2__SHIFT 0x14
+#define CGTT_SPIS_CLK_CTRL__SOFT_STALL_OVERRIDE1__SHIFT 0x15
+#define CGTT_SPIS_CLK_CTRL__SOFT_STALL_OVERRIDE0__SHIFT 0x16
+#define CGTT_SPIS_CLK_CTRL__GRP6_OVERRIDE__SHIFT 0x18
+#define CGTT_SPIS_CLK_CTRL__GRP5_OVERRIDE__SHIFT 0x19
+#define CGTT_SPIS_CLK_CTRL__GRP4_OVERRIDE__SHIFT 0x1a
+#define CGTT_SPIS_CLK_CTRL__GRP3_OVERRIDE__SHIFT 0x1b
+#define CGTT_SPIS_CLK_CTRL__GRP2_OVERRIDE__SHIFT 0x1c
+#define CGTT_SPIS_CLK_CTRL__GRP1_OVERRIDE__SHIFT 0x1d
+#define CGTT_SPIS_CLK_CTRL__GRP0_OVERRIDE__SHIFT 0x1e
+#define CGTT_SPIS_CLK_CTRL__REG_OVERRIDE__SHIFT 0x1f
+#define CGTT_SPIS_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define CGTT_SPIS_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define CGTT_SPIS_CLK_CTRL__SOFT_STALL_OVERRIDE6_MASK 0x00010000L
+#define CGTT_SPIS_CLK_CTRL__SOFT_STALL_OVERRIDE5_MASK 0x00020000L
+#define CGTT_SPIS_CLK_CTRL__SOFT_STALL_OVERRIDE4_MASK 0x00040000L
+#define CGTT_SPIS_CLK_CTRL__SOFT_STALL_OVERRIDE3_MASK 0x00080000L
+#define CGTT_SPIS_CLK_CTRL__SOFT_STALL_OVERRIDE2_MASK 0x00100000L
+#define CGTT_SPIS_CLK_CTRL__SOFT_STALL_OVERRIDE1_MASK 0x00200000L
+#define CGTT_SPIS_CLK_CTRL__SOFT_STALL_OVERRIDE0_MASK 0x00400000L
+#define CGTT_SPIS_CLK_CTRL__GRP6_OVERRIDE_MASK 0x01000000L
+#define CGTT_SPIS_CLK_CTRL__GRP5_OVERRIDE_MASK 0x02000000L
+#define CGTT_SPIS_CLK_CTRL__GRP4_OVERRIDE_MASK 0x04000000L
+#define CGTT_SPIS_CLK_CTRL__GRP3_OVERRIDE_MASK 0x08000000L
+#define CGTT_SPIS_CLK_CTRL__GRP2_OVERRIDE_MASK 0x10000000L
+#define CGTT_SPIS_CLK_CTRL__GRP1_OVERRIDE_MASK 0x20000000L
+#define CGTT_SPIS_CLK_CTRL__GRP0_OVERRIDE_MASK 0x40000000L
+#define CGTT_SPIS_CLK_CTRL__REG_OVERRIDE_MASK 0x80000000L
+//CGTX_SPI_DEBUG_CLK_CTRL
+#define CGTX_SPI_DEBUG_CLK_CTRL__GRP5_CG_OFF_HYST__SHIFT 0x0
+#define CGTX_SPI_DEBUG_CLK_CTRL__GRP5_CG_OVERRIDE__SHIFT 0x6
+#define CGTX_SPI_DEBUG_CLK_CTRL__ALL_CLK_ON_OVERRIDE__SHIFT 0x7
+#define CGTX_SPI_DEBUG_CLK_CTRL__SPI_SH_CLK_CONTROL__SHIFT 0x8
+#define CGTX_SPI_DEBUG_CLK_CTRL__SPI_REPEATER_FGCG_OVERRIDE__SHIFT 0x9
+#define CGTX_SPI_DEBUG_CLK_CTRL__GRP5_CG_OFF_HYST_MASK 0x0000003FL
+#define CGTX_SPI_DEBUG_CLK_CTRL__GRP5_CG_OVERRIDE_MASK 0x00000040L
+#define CGTX_SPI_DEBUG_CLK_CTRL__ALL_CLK_ON_OVERRIDE_MASK 0x00000080L
+#define CGTX_SPI_DEBUG_CLK_CTRL__SPI_SH_CLK_CONTROL_MASK 0x00000100L
+#define CGTX_SPI_DEBUG_CLK_CTRL__SPI_REPEATER_FGCG_OVERRIDE_MASK 0x00000200L
+//CGTT_SPI_CLK_CTRL
+#define CGTT_SPI_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define CGTT_SPI_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define CGTT_SPI_CLK_CTRL__SOFT_STALL_OVERRIDE2__SHIFT 0x14
+#define CGTT_SPI_CLK_CTRL__SOFT_STALL_OVERRIDE1__SHIFT 0x15
+#define CGTT_SPI_CLK_CTRL__SOFT_STALL_OVERRIDE0__SHIFT 0x16
+#define CGTT_SPI_CLK_CTRL__GRP2_OVERRIDE__SHIFT 0x1c
+#define CGTT_SPI_CLK_CTRL__GRP1_OVERRIDE__SHIFT 0x1d
+#define CGTT_SPI_CLK_CTRL__GRP0_OVERRIDE__SHIFT 0x1e
+#define CGTT_SPI_CLK_CTRL__REG_OVERRIDE__SHIFT 0x1f
+#define CGTT_SPI_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define CGTT_SPI_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define CGTT_SPI_CLK_CTRL__SOFT_STALL_OVERRIDE2_MASK 0x00100000L
+#define CGTT_SPI_CLK_CTRL__SOFT_STALL_OVERRIDE1_MASK 0x00200000L
+#define CGTT_SPI_CLK_CTRL__SOFT_STALL_OVERRIDE0_MASK 0x00400000L
+#define CGTT_SPI_CLK_CTRL__GRP2_OVERRIDE_MASK 0x10000000L
+#define CGTT_SPI_CLK_CTRL__GRP1_OVERRIDE_MASK 0x20000000L
+#define CGTT_SPI_CLK_CTRL__GRP0_OVERRIDE_MASK 0x40000000L
+#define CGTT_SPI_CLK_CTRL__REG_OVERRIDE_MASK 0x80000000L
+//CGTT_PC_CLK_CTRL
+#define CGTT_PC_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define CGTT_PC_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define CGTT_PC_CLK_CTRL__PC_RAM_FGCG_OVERRIDE__SHIFT 0x11
+#define CGTT_PC_CLK_CTRL__GRP5_CG_OFF_HYST__SHIFT 0x12
+#define CGTT_PC_CLK_CTRL__GRP5_CG_OVERRIDE__SHIFT 0x18
+#define CGTT_PC_CLK_CTRL__PC_WRITE_CLK_EN_OVERRIDE__SHIFT 0x19
+#define CGTT_PC_CLK_CTRL__PC_READ_CLK_EN_OVERRIDE__SHIFT 0x1a
+#define CGTT_PC_CLK_CTRL__CORE3_OVERRIDE__SHIFT 0x1b
+#define CGTT_PC_CLK_CTRL__CORE2_OVERRIDE__SHIFT 0x1c
+#define CGTT_PC_CLK_CTRL__CORE1_OVERRIDE__SHIFT 0x1d
+#define CGTT_PC_CLK_CTRL__CORE0_OVERRIDE__SHIFT 0x1e
+#define CGTT_PC_CLK_CTRL__REG_OVERRIDE__SHIFT 0x1f
+#define CGTT_PC_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define CGTT_PC_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define CGTT_PC_CLK_CTRL__PC_RAM_FGCG_OVERRIDE_MASK 0x00020000L
+#define CGTT_PC_CLK_CTRL__GRP5_CG_OFF_HYST_MASK 0x00FC0000L
+#define CGTT_PC_CLK_CTRL__GRP5_CG_OVERRIDE_MASK 0x01000000L
+#define CGTT_PC_CLK_CTRL__PC_WRITE_CLK_EN_OVERRIDE_MASK 0x02000000L
+#define CGTT_PC_CLK_CTRL__PC_READ_CLK_EN_OVERRIDE_MASK 0x04000000L
+#define CGTT_PC_CLK_CTRL__CORE3_OVERRIDE_MASK 0x08000000L
+#define CGTT_PC_CLK_CTRL__CORE2_OVERRIDE_MASK 0x10000000L
+#define CGTT_PC_CLK_CTRL__CORE1_OVERRIDE_MASK 0x20000000L
+#define CGTT_PC_CLK_CTRL__CORE0_OVERRIDE_MASK 0x40000000L
+#define CGTT_PC_CLK_CTRL__REG_OVERRIDE_MASK 0x80000000L
+//CGTT_BCI_CLK_CTRL
+#define CGTT_BCI_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define CGTT_BCI_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define CGTT_BCI_CLK_CTRL__RESERVED__SHIFT 0xc
+#define CGTT_BCI_CLK_CTRL__SOFT_STALL_OVERRIDE7__SHIFT 0x10
+#define CGTT_BCI_CLK_CTRL__SOFT_STALL_OVERRIDE6__SHIFT 0x11
+#define CGTT_BCI_CLK_CTRL__SOFT_STALL_OVERRIDE5__SHIFT 0x12
+#define CGTT_BCI_CLK_CTRL__SOFT_STALL_OVERRIDE4__SHIFT 0x13
+#define CGTT_BCI_CLK_CTRL__SOFT_STALL_OVERRIDE3__SHIFT 0x14
+#define CGTT_BCI_CLK_CTRL__SOFT_STALL_OVERRIDE2__SHIFT 0x15
+#define CGTT_BCI_CLK_CTRL__SOFT_STALL_OVERRIDE1__SHIFT 0x16
+#define CGTT_BCI_CLK_CTRL__SOFT_STALL_OVERRIDE0__SHIFT 0x17
+#define CGTT_BCI_CLK_CTRL__CORE6_OVERRIDE__SHIFT 0x18
+#define CGTT_BCI_CLK_CTRL__CORE5_OVERRIDE__SHIFT 0x19
+#define CGTT_BCI_CLK_CTRL__CORE4_OVERRIDE__SHIFT 0x1a
+#define CGTT_BCI_CLK_CTRL__CORE3_OVERRIDE__SHIFT 0x1b
+#define CGTT_BCI_CLK_CTRL__CORE2_OVERRIDE__SHIFT 0x1c
+#define CGTT_BCI_CLK_CTRL__CORE1_OVERRIDE__SHIFT 0x1d
+#define CGTT_BCI_CLK_CTRL__CORE0_OVERRIDE__SHIFT 0x1e
+#define CGTT_BCI_CLK_CTRL__REG_OVERRIDE__SHIFT 0x1f
+#define CGTT_BCI_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define CGTT_BCI_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define CGTT_BCI_CLK_CTRL__RESERVED_MASK 0x0000F000L
+#define CGTT_BCI_CLK_CTRL__SOFT_STALL_OVERRIDE7_MASK 0x00010000L
+#define CGTT_BCI_CLK_CTRL__SOFT_STALL_OVERRIDE6_MASK 0x00020000L
+#define CGTT_BCI_CLK_CTRL__SOFT_STALL_OVERRIDE5_MASK 0x00040000L
+#define CGTT_BCI_CLK_CTRL__SOFT_STALL_OVERRIDE4_MASK 0x00080000L
+#define CGTT_BCI_CLK_CTRL__SOFT_STALL_OVERRIDE3_MASK 0x00100000L
+#define CGTT_BCI_CLK_CTRL__SOFT_STALL_OVERRIDE2_MASK 0x00200000L
+#define CGTT_BCI_CLK_CTRL__SOFT_STALL_OVERRIDE1_MASK 0x00400000L
+#define CGTT_BCI_CLK_CTRL__SOFT_STALL_OVERRIDE0_MASK 0x00800000L
+#define CGTT_BCI_CLK_CTRL__CORE6_OVERRIDE_MASK 0x01000000L
+#define CGTT_BCI_CLK_CTRL__CORE5_OVERRIDE_MASK 0x02000000L
+#define CGTT_BCI_CLK_CTRL__CORE4_OVERRIDE_MASK 0x04000000L
+#define CGTT_BCI_CLK_CTRL__CORE3_OVERRIDE_MASK 0x08000000L
+#define CGTT_BCI_CLK_CTRL__CORE2_OVERRIDE_MASK 0x10000000L
+#define CGTT_BCI_CLK_CTRL__CORE1_OVERRIDE_MASK 0x20000000L
+#define CGTT_BCI_CLK_CTRL__CORE0_OVERRIDE_MASK 0x40000000L
+#define CGTT_BCI_CLK_CTRL__REG_OVERRIDE_MASK 0x80000000L
+//CGTT_VGT_CLK_CTRL
+#define CGTT_VGT_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define CGTT_VGT_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define CGTT_VGT_CLK_CTRL__PERF_ENABLE__SHIFT 0xf
+#define CGTT_VGT_CLK_CTRL__DBG_ENABLE__SHIFT 0x10
+#define CGTT_VGT_CLK_CTRL__SOFT_STALL_OVERRIDE6__SHIFT 0x11
+#define CGTT_VGT_CLK_CTRL__SOFT_STALL_OVERRIDE5__SHIFT 0x12
+#define CGTT_VGT_CLK_CTRL__SOFT_STALL_OVERRIDE4__SHIFT 0x13
+#define CGTT_VGT_CLK_CTRL__SOFT_STALL_OVERRIDE3__SHIFT 0x14
+#define CGTT_VGT_CLK_CTRL__SOFT_STALL_OVERRIDE2__SHIFT 0x15
+#define CGTT_VGT_CLK_CTRL__SOFT_STALL_OVERRIDE1__SHIFT 0x16
+#define CGTT_VGT_CLK_CTRL__SOFT_STALL_OVERRIDE0__SHIFT 0x17
+#define CGTT_VGT_CLK_CTRL__SOFT_OVERRIDE9__SHIFT 0x18
+#define CGTT_VGT_CLK_CTRL__SOFT_OVERRIDE8__SHIFT 0x19
+#define CGTT_VGT_CLK_CTRL__SOFT_OVERRIDE7__SHIFT 0x1a
+#define CGTT_VGT_CLK_CTRL__PRIMGEN_OVERRIDE__SHIFT 0x1b
+#define CGTT_VGT_CLK_CTRL__TESS_OVERRIDE__SHIFT 0x1c
+#define CGTT_VGT_CLK_CTRL__GS_OVERRIDE__SHIFT 0x1d
+#define CGTT_VGT_CLK_CTRL__CORE_OVERRIDE__SHIFT 0x1e
+#define CGTT_VGT_CLK_CTRL__REG_OVERRIDE__SHIFT 0x1f
+#define CGTT_VGT_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define CGTT_VGT_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define CGTT_VGT_CLK_CTRL__PERF_ENABLE_MASK 0x00008000L
+#define CGTT_VGT_CLK_CTRL__DBG_ENABLE_MASK 0x00010000L
+#define CGTT_VGT_CLK_CTRL__SOFT_STALL_OVERRIDE6_MASK 0x00020000L
+#define CGTT_VGT_CLK_CTRL__SOFT_STALL_OVERRIDE5_MASK 0x00040000L
+#define CGTT_VGT_CLK_CTRL__SOFT_STALL_OVERRIDE4_MASK 0x00080000L
+#define CGTT_VGT_CLK_CTRL__SOFT_STALL_OVERRIDE3_MASK 0x00100000L
+#define CGTT_VGT_CLK_CTRL__SOFT_STALL_OVERRIDE2_MASK 0x00200000L
+#define CGTT_VGT_CLK_CTRL__SOFT_STALL_OVERRIDE1_MASK 0x00400000L
+#define CGTT_VGT_CLK_CTRL__SOFT_STALL_OVERRIDE0_MASK 0x00800000L
+#define CGTT_VGT_CLK_CTRL__SOFT_OVERRIDE9_MASK 0x01000000L
+#define CGTT_VGT_CLK_CTRL__SOFT_OVERRIDE8_MASK 0x02000000L
+#define CGTT_VGT_CLK_CTRL__SOFT_OVERRIDE7_MASK 0x04000000L
+#define CGTT_VGT_CLK_CTRL__PRIMGEN_OVERRIDE_MASK 0x08000000L
+#define CGTT_VGT_CLK_CTRL__TESS_OVERRIDE_MASK 0x10000000L
+#define CGTT_VGT_CLK_CTRL__GS_OVERRIDE_MASK 0x20000000L
+#define CGTT_VGT_CLK_CTRL__CORE_OVERRIDE_MASK 0x40000000L
+#define CGTT_VGT_CLK_CTRL__REG_OVERRIDE_MASK 0x80000000L
+//CGTT_IA_CLK_CTRL
+#define CGTT_IA_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define CGTT_IA_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define CGTT_IA_CLK_CTRL__SOFT_STALL_OVERRIDE7__SHIFT 0x10
+#define CGTT_IA_CLK_CTRL__SOFT_STALL_OVERRIDE6__SHIFT 0x11
+#define CGTT_IA_CLK_CTRL__SOFT_STALL_OVERRIDE5__SHIFT 0x12
+#define CGTT_IA_CLK_CTRL__SOFT_STALL_OVERRIDE4__SHIFT 0x13
+#define CGTT_IA_CLK_CTRL__SOFT_STALL_OVERRIDE3__SHIFT 0x14
+#define CGTT_IA_CLK_CTRL__SOFT_STALL_OVERRIDE2__SHIFT 0x15
+#define CGTT_IA_CLK_CTRL__SOFT_STALL_OVERRIDE1__SHIFT 0x16
+#define CGTT_IA_CLK_CTRL__SOFT_STALL_OVERRIDE0__SHIFT 0x17
+#define CGTT_IA_CLK_CTRL__SOFT_OVERRIDE7__SHIFT 0x18
+#define CGTT_IA_CLK_CTRL__PERF_ENABLE__SHIFT 0x19
+#define CGTT_IA_CLK_CTRL__DBG_ENABLE__SHIFT 0x1a
+#define CGTT_IA_CLK_CTRL__SOFT_OVERRIDE4__SHIFT 0x1b
+#define CGTT_IA_CLK_CTRL__SOFT_OVERRIDE3__SHIFT 0x1c
+#define CGTT_IA_CLK_CTRL__SOFT_OVERRIDE2__SHIFT 0x1d
+#define CGTT_IA_CLK_CTRL__CORE_OVERRIDE__SHIFT 0x1e
+#define CGTT_IA_CLK_CTRL__REG_OVERRIDE__SHIFT 0x1f
+#define CGTT_IA_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define CGTT_IA_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define CGTT_IA_CLK_CTRL__SOFT_STALL_OVERRIDE7_MASK 0x00010000L
+#define CGTT_IA_CLK_CTRL__SOFT_STALL_OVERRIDE6_MASK 0x00020000L
+#define CGTT_IA_CLK_CTRL__SOFT_STALL_OVERRIDE5_MASK 0x00040000L
+#define CGTT_IA_CLK_CTRL__SOFT_STALL_OVERRIDE4_MASK 0x00080000L
+#define CGTT_IA_CLK_CTRL__SOFT_STALL_OVERRIDE3_MASK 0x00100000L
+#define CGTT_IA_CLK_CTRL__SOFT_STALL_OVERRIDE2_MASK 0x00200000L
+#define CGTT_IA_CLK_CTRL__SOFT_STALL_OVERRIDE1_MASK 0x00400000L
+#define CGTT_IA_CLK_CTRL__SOFT_STALL_OVERRIDE0_MASK 0x00800000L
+#define CGTT_IA_CLK_CTRL__SOFT_OVERRIDE7_MASK 0x01000000L
+#define CGTT_IA_CLK_CTRL__PERF_ENABLE_MASK 0x02000000L
+#define CGTT_IA_CLK_CTRL__DBG_ENABLE_MASK 0x04000000L
+#define CGTT_IA_CLK_CTRL__SOFT_OVERRIDE4_MASK 0x08000000L
+#define CGTT_IA_CLK_CTRL__SOFT_OVERRIDE3_MASK 0x10000000L
+#define CGTT_IA_CLK_CTRL__SOFT_OVERRIDE2_MASK 0x20000000L
+#define CGTT_IA_CLK_CTRL__CORE_OVERRIDE_MASK 0x40000000L
+#define CGTT_IA_CLK_CTRL__REG_OVERRIDE_MASK 0x80000000L
+//CGTT_WD_CLK_CTRL
+#define CGTT_WD_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define CGTT_WD_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define CGTT_WD_CLK_CTRL__PERF_ENABLE__SHIFT 0xf
+#define CGTT_WD_CLK_CTRL__DBG_ENABLE__SHIFT 0x10
+#define CGTT_WD_CLK_CTRL__SOFT_STALL_OVERRIDE6__SHIFT 0x11
+#define CGTT_WD_CLK_CTRL__SOFT_STALL_OVERRIDE5__SHIFT 0x12
+#define CGTT_WD_CLK_CTRL__SOFT_STALL_OVERRIDE4__SHIFT 0x13
+#define CGTT_WD_CLK_CTRL__SOFT_STALL_OVERRIDE3__SHIFT 0x14
+#define CGTT_WD_CLK_CTRL__SOFT_STALL_OVERRIDE2__SHIFT 0x15
+#define CGTT_WD_CLK_CTRL__SOFT_STALL_OVERRIDE1__SHIFT 0x16
+#define CGTT_WD_CLK_CTRL__SOFT_STALL_OVERRIDE0__SHIFT 0x17
+#define CGTT_WD_CLK_CTRL__SOFT_OVERRIDE8__SHIFT 0x19
+#define CGTT_WD_CLK_CTRL__SOFT_OVERRIDE7__SHIFT 0x1a
+#define CGTT_WD_CLK_CTRL__PRIMGEN_OVERRIDE__SHIFT 0x1b
+#define CGTT_WD_CLK_CTRL__TESS_OVERRIDE__SHIFT 0x1c
+#define CGTT_WD_CLK_CTRL__CORE_OVERRIDE__SHIFT 0x1d
+#define CGTT_WD_CLK_CTRL__RBIU_INPUT_OVERRIDE__SHIFT 0x1e
+#define CGTT_WD_CLK_CTRL__REG_OVERRIDE__SHIFT 0x1f
+#define CGTT_WD_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define CGTT_WD_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define CGTT_WD_CLK_CTRL__PERF_ENABLE_MASK 0x00008000L
+#define CGTT_WD_CLK_CTRL__DBG_ENABLE_MASK 0x00010000L
+#define CGTT_WD_CLK_CTRL__SOFT_STALL_OVERRIDE6_MASK 0x00020000L
+#define CGTT_WD_CLK_CTRL__SOFT_STALL_OVERRIDE5_MASK 0x00040000L
+#define CGTT_WD_CLK_CTRL__SOFT_STALL_OVERRIDE4_MASK 0x00080000L
+#define CGTT_WD_CLK_CTRL__SOFT_STALL_OVERRIDE3_MASK 0x00100000L
+#define CGTT_WD_CLK_CTRL__SOFT_STALL_OVERRIDE2_MASK 0x00200000L
+#define CGTT_WD_CLK_CTRL__SOFT_STALL_OVERRIDE1_MASK 0x00400000L
+#define CGTT_WD_CLK_CTRL__SOFT_STALL_OVERRIDE0_MASK 0x00800000L
+#define CGTT_WD_CLK_CTRL__SOFT_OVERRIDE8_MASK 0x02000000L
+#define CGTT_WD_CLK_CTRL__SOFT_OVERRIDE7_MASK 0x04000000L
+#define CGTT_WD_CLK_CTRL__PRIMGEN_OVERRIDE_MASK 0x08000000L
+#define CGTT_WD_CLK_CTRL__TESS_OVERRIDE_MASK 0x10000000L
+#define CGTT_WD_CLK_CTRL__CORE_OVERRIDE_MASK 0x20000000L
+#define CGTT_WD_CLK_CTRL__RBIU_INPUT_OVERRIDE_MASK 0x40000000L
+#define CGTT_WD_CLK_CTRL__REG_OVERRIDE_MASK 0x80000000L
+//CGTT_PA_CLK_CTRL
+#define CGTT_PA_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define CGTT_PA_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define CGTT_PA_CLK_CTRL__SOFT_STALL_OVERRIDE7__SHIFT 0x10
+#define CGTT_PA_CLK_CTRL__SOFT_STALL_OVERRIDE6__SHIFT 0x11
+#define CGTT_PA_CLK_CTRL__SOFT_STALL_OVERRIDE5__SHIFT 0x12
+#define CGTT_PA_CLK_CTRL__SOFT_STALL_OVERRIDE4__SHIFT 0x13
+#define CGTT_PA_CLK_CTRL__SOFT_STALL_OVERRIDE3__SHIFT 0x14
+#define CGTT_PA_CLK_CTRL__SOFT_STALL_OVERRIDE2__SHIFT 0x15
+#define CGTT_PA_CLK_CTRL__SOFT_STALL_OVERRIDE1__SHIFT 0x16
+#define CGTT_PA_CLK_CTRL__DEBUG_BUS_EN__SHIFT 0x17
+#define CGTT_PA_CLK_CTRL__SOFT_OVERRIDE7__SHIFT 0x18
+#define CGTT_PA_CLK_CTRL__SOFT_OVERRIDE6__SHIFT 0x19
+#define CGTT_PA_CLK_CTRL__SOFT_OVERRIDE5__SHIFT 0x1a
+#define CGTT_PA_CLK_CTRL__SOFT_OVERRIDE4__SHIFT 0x1b
+#define CGTT_PA_CLK_CTRL__SOFT_OVERRIDE3__SHIFT 0x1c
+#define CGTT_PA_CLK_CTRL__SU_CLK_OVERRIDE__SHIFT 0x1d
+#define CGTT_PA_CLK_CTRL__CL_CLK_OVERRIDE__SHIFT 0x1e
+#define CGTT_PA_CLK_CTRL__REG_CLK_OVERRIDE__SHIFT 0x1f
+#define CGTT_PA_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define CGTT_PA_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define CGTT_PA_CLK_CTRL__SOFT_STALL_OVERRIDE7_MASK 0x00010000L
+#define CGTT_PA_CLK_CTRL__SOFT_STALL_OVERRIDE6_MASK 0x00020000L
+#define CGTT_PA_CLK_CTRL__SOFT_STALL_OVERRIDE5_MASK 0x00040000L
+#define CGTT_PA_CLK_CTRL__SOFT_STALL_OVERRIDE4_MASK 0x00080000L
+#define CGTT_PA_CLK_CTRL__SOFT_STALL_OVERRIDE3_MASK 0x00100000L
+#define CGTT_PA_CLK_CTRL__SOFT_STALL_OVERRIDE2_MASK 0x00200000L
+#define CGTT_PA_CLK_CTRL__SOFT_STALL_OVERRIDE1_MASK 0x00400000L
+#define CGTT_PA_CLK_CTRL__DEBUG_BUS_EN_MASK 0x00800000L
+#define CGTT_PA_CLK_CTRL__SOFT_OVERRIDE7_MASK 0x01000000L
+#define CGTT_PA_CLK_CTRL__SOFT_OVERRIDE6_MASK 0x02000000L
+#define CGTT_PA_CLK_CTRL__SOFT_OVERRIDE5_MASK 0x04000000L
+#define CGTT_PA_CLK_CTRL__SOFT_OVERRIDE4_MASK 0x08000000L
+#define CGTT_PA_CLK_CTRL__SOFT_OVERRIDE3_MASK 0x10000000L
+#define CGTT_PA_CLK_CTRL__SU_CLK_OVERRIDE_MASK 0x20000000L
+#define CGTT_PA_CLK_CTRL__CL_CLK_OVERRIDE_MASK 0x40000000L
+#define CGTT_PA_CLK_CTRL__REG_CLK_OVERRIDE_MASK 0x80000000L
+//CGTT_SC_CLK_CTRL0
+#define CGTT_SC_CLK_CTRL0__ON_DELAY__SHIFT 0x0
+#define CGTT_SC_CLK_CTRL0__OFF_HYSTERESIS__SHIFT 0x4
+#define CGTT_SC_CLK_CTRL0__PFF_ZFF_MEM_CLK_STALL_OVERRIDE__SHIFT 0x10
+#define CGTT_SC_CLK_CTRL0__SOFT_STALL_OVERRIDE5__SHIFT 0x11
+#define CGTT_SC_CLK_CTRL0__SOFT_STALL_OVERRIDE4__SHIFT 0x12
+#define CGTT_SC_CLK_CTRL0__SOFT_STALL_OVERRIDE3__SHIFT 0x13
+#define CGTT_SC_CLK_CTRL0__SOFT_STALL_OVERRIDE2__SHIFT 0x14
+#define CGTT_SC_CLK_CTRL0__SOFT_STALL_OVERRIDE1__SHIFT 0x15
+#define CGTT_SC_CLK_CTRL0__SOFT_STALL_OVERRIDE0__SHIFT 0x16
+#define CGTT_SC_CLK_CTRL0__REG_CLK_STALL_OVERRIDE__SHIFT 0x17
+#define CGTT_SC_CLK_CTRL0__PFF_ZFF_MEM_CLK_OVERRIDE__SHIFT 0x18
+#define CGTT_SC_CLK_CTRL0__SOFT_OVERRIDE5__SHIFT 0x19
+#define CGTT_SC_CLK_CTRL0__SOFT_OVERRIDE4__SHIFT 0x1a
+#define CGTT_SC_CLK_CTRL0__SOFT_OVERRIDE3__SHIFT 0x1b
+#define CGTT_SC_CLK_CTRL0__SOFT_OVERRIDE2__SHIFT 0x1c
+#define CGTT_SC_CLK_CTRL0__SOFT_OVERRIDE1__SHIFT 0x1d
+#define CGTT_SC_CLK_CTRL0__SOFT_OVERRIDE0__SHIFT 0x1e
+#define CGTT_SC_CLK_CTRL0__REG_CLK_OVERRIDE__SHIFT 0x1f
+#define CGTT_SC_CLK_CTRL0__ON_DELAY_MASK 0x0000000FL
+#define CGTT_SC_CLK_CTRL0__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define CGTT_SC_CLK_CTRL0__PFF_ZFF_MEM_CLK_STALL_OVERRIDE_MASK 0x00010000L
+#define CGTT_SC_CLK_CTRL0__SOFT_STALL_OVERRIDE5_MASK 0x00020000L
+#define CGTT_SC_CLK_CTRL0__SOFT_STALL_OVERRIDE4_MASK 0x00040000L
+#define CGTT_SC_CLK_CTRL0__SOFT_STALL_OVERRIDE3_MASK 0x00080000L
+#define CGTT_SC_CLK_CTRL0__SOFT_STALL_OVERRIDE2_MASK 0x00100000L
+#define CGTT_SC_CLK_CTRL0__SOFT_STALL_OVERRIDE1_MASK 0x00200000L
+#define CGTT_SC_CLK_CTRL0__SOFT_STALL_OVERRIDE0_MASK 0x00400000L
+#define CGTT_SC_CLK_CTRL0__REG_CLK_STALL_OVERRIDE_MASK 0x00800000L
+#define CGTT_SC_CLK_CTRL0__PFF_ZFF_MEM_CLK_OVERRIDE_MASK 0x01000000L
+#define CGTT_SC_CLK_CTRL0__SOFT_OVERRIDE5_MASK 0x02000000L
+#define CGTT_SC_CLK_CTRL0__SOFT_OVERRIDE4_MASK 0x04000000L
+#define CGTT_SC_CLK_CTRL0__SOFT_OVERRIDE3_MASK 0x08000000L
+#define CGTT_SC_CLK_CTRL0__SOFT_OVERRIDE2_MASK 0x10000000L
+#define CGTT_SC_CLK_CTRL0__SOFT_OVERRIDE1_MASK 0x20000000L
+#define CGTT_SC_CLK_CTRL0__SOFT_OVERRIDE0_MASK 0x40000000L
+#define CGTT_SC_CLK_CTRL0__REG_CLK_OVERRIDE_MASK 0x80000000L
+//CGTT_SC_CLK_CTRL1
+#define CGTT_SC_CLK_CTRL1__ON_DELAY__SHIFT 0x0
+#define CGTT_SC_CLK_CTRL1__OFF_HYSTERESIS__SHIFT 0x4
+#define CGTT_SC_CLK_CTRL1__PBB_BINNING_CLK_STALL_OVERRIDE__SHIFT 0x11
+#define CGTT_SC_CLK_CTRL1__PBB_SCISSOR_CLK_STALL_OVERRIDE__SHIFT 0x12
+#define CGTT_SC_CLK_CTRL1__OTHER_SPECIAL_SC_REG_CLK_STALL_OVERRIDE__SHIFT 0x13
+#define CGTT_SC_CLK_CTRL1__SCREEN_EXT_REG_CLK_STALL_OVERRIDE__SHIFT 0x14
+#define CGTT_SC_CLK_CTRL1__VPORT_REG_MEM_CLK_STALL_OVERRIDE__SHIFT 0x15
+#define CGTT_SC_CLK_CTRL1__PBB_CLK_STALL_OVERRIDE__SHIFT 0x16
+#define CGTT_SC_CLK_CTRL1__PBB_BINNING_CLK_OVERRIDE__SHIFT 0x19
+#define CGTT_SC_CLK_CTRL1__PBB_SCISSOR_CLK_OVERRIDE__SHIFT 0x1a
+#define CGTT_SC_CLK_CTRL1__OTHER_SPECIAL_SC_REG_CLK_OVERRIDE__SHIFT 0x1b
+#define CGTT_SC_CLK_CTRL1__SCREEN_EXT_REG_CLK_OVERRIDE__SHIFT 0x1c
+#define CGTT_SC_CLK_CTRL1__VPORT_REG_MEM_CLK_OVERRIDE__SHIFT 0x1d
+#define CGTT_SC_CLK_CTRL1__PBB_CLK_OVERRIDE__SHIFT 0x1e
+#define CGTT_SC_CLK_CTRL1__ON_DELAY_MASK 0x0000000FL
+#define CGTT_SC_CLK_CTRL1__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define CGTT_SC_CLK_CTRL1__PBB_BINNING_CLK_STALL_OVERRIDE_MASK 0x00020000L
+#define CGTT_SC_CLK_CTRL1__PBB_SCISSOR_CLK_STALL_OVERRIDE_MASK 0x00040000L
+#define CGTT_SC_CLK_CTRL1__OTHER_SPECIAL_SC_REG_CLK_STALL_OVERRIDE_MASK 0x00080000L
+#define CGTT_SC_CLK_CTRL1__SCREEN_EXT_REG_CLK_STALL_OVERRIDE_MASK 0x00100000L
+#define CGTT_SC_CLK_CTRL1__VPORT_REG_MEM_CLK_STALL_OVERRIDE_MASK 0x00200000L
+#define CGTT_SC_CLK_CTRL1__PBB_CLK_STALL_OVERRIDE_MASK 0x00400000L
+#define CGTT_SC_CLK_CTRL1__PBB_BINNING_CLK_OVERRIDE_MASK 0x02000000L
+#define CGTT_SC_CLK_CTRL1__PBB_SCISSOR_CLK_OVERRIDE_MASK 0x04000000L
+#define CGTT_SC_CLK_CTRL1__OTHER_SPECIAL_SC_REG_CLK_OVERRIDE_MASK 0x08000000L
+#define CGTT_SC_CLK_CTRL1__SCREEN_EXT_REG_CLK_OVERRIDE_MASK 0x10000000L
+#define CGTT_SC_CLK_CTRL1__VPORT_REG_MEM_CLK_OVERRIDE_MASK 0x20000000L
+#define CGTT_SC_CLK_CTRL1__PBB_CLK_OVERRIDE_MASK 0x40000000L
+//CGTT_SC_CLK_CTRL2
+#define CGTT_SC_CLK_CTRL2__ON_DELAY__SHIFT 0x0
+#define CGTT_SC_CLK_CTRL2__OFF_HYSTERESIS__SHIFT 0x4
+#define CGTT_SC_CLK_CTRL2__SCF_SCB_INTF_CLK_OVERRIDE__SHIFT 0x1b
+#define CGTT_SC_CLK_CTRL2__SC_PKR_INTF_CLK_OVERRIDE__SHIFT 0x1c
+#define CGTT_SC_CLK_CTRL2__SC_DB_INTF_CLK_OVERRIDE__SHIFT 0x1d
+#define CGTT_SC_CLK_CTRL2__PA_SC_INTF_CLK_OVERRIDE__SHIFT 0x1e
+#define CGTT_SC_CLK_CTRL2__ON_DELAY_MASK 0x0000000FL
+#define CGTT_SC_CLK_CTRL2__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define CGTT_SC_CLK_CTRL2__SCF_SCB_INTF_CLK_OVERRIDE_MASK 0x08000000L
+#define CGTT_SC_CLK_CTRL2__SC_PKR_INTF_CLK_OVERRIDE_MASK 0x10000000L
+#define CGTT_SC_CLK_CTRL2__SC_DB_INTF_CLK_OVERRIDE_MASK 0x20000000L
+#define CGTT_SC_CLK_CTRL2__PA_SC_INTF_CLK_OVERRIDE_MASK 0x40000000L
+//CGTT_SQ_CLK_CTRL
+#define CGTT_SQ_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define CGTT_SQ_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define CGTT_SQ_CLK_CTRL__SOFT_STALL_OVERRIDE7__SHIFT 0x10
+#define CGTT_SQ_CLK_CTRL__SOFT_STALL_OVERRIDE6__SHIFT 0x11
+#define CGTT_SQ_CLK_CTRL__SOFT_STALL_OVERRIDE5__SHIFT 0x12
+#define CGTT_SQ_CLK_CTRL__SOFT_STALL_OVERRIDE4__SHIFT 0x13
+#define CGTT_SQ_CLK_CTRL__SOFT_STALL_OVERRIDE3__SHIFT 0x14
+#define CGTT_SQ_CLK_CTRL__SOFT_STALL_OVERRIDE2__SHIFT 0x15
+#define CGTT_SQ_CLK_CTRL__SOFT_STALL_OVERRIDE1__SHIFT 0x16
+#define CGTT_SQ_CLK_CTRL__SOFT_STALL_OVERRIDE0__SHIFT 0x17
+#define CGTT_SQ_CLK_CTRL__PERFMON_OVERRIDE__SHIFT 0x1d
+#define CGTT_SQ_CLK_CTRL__CORE_OVERRIDE__SHIFT 0x1e
+#define CGTT_SQ_CLK_CTRL__REG_OVERRIDE__SHIFT 0x1f
+#define CGTT_SQ_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define CGTT_SQ_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define CGTT_SQ_CLK_CTRL__SOFT_STALL_OVERRIDE7_MASK 0x00010000L
+#define CGTT_SQ_CLK_CTRL__SOFT_STALL_OVERRIDE6_MASK 0x00020000L
+#define CGTT_SQ_CLK_CTRL__SOFT_STALL_OVERRIDE5_MASK 0x00040000L
+#define CGTT_SQ_CLK_CTRL__SOFT_STALL_OVERRIDE4_MASK 0x00080000L
+#define CGTT_SQ_CLK_CTRL__SOFT_STALL_OVERRIDE3_MASK 0x00100000L
+#define CGTT_SQ_CLK_CTRL__SOFT_STALL_OVERRIDE2_MASK 0x00200000L
+#define CGTT_SQ_CLK_CTRL__SOFT_STALL_OVERRIDE1_MASK 0x00400000L
+#define CGTT_SQ_CLK_CTRL__SOFT_STALL_OVERRIDE0_MASK 0x00800000L
+#define CGTT_SQ_CLK_CTRL__PERFMON_OVERRIDE_MASK 0x20000000L
+#define CGTT_SQ_CLK_CTRL__CORE_OVERRIDE_MASK 0x40000000L
+#define CGTT_SQ_CLK_CTRL__REG_OVERRIDE_MASK 0x80000000L
+//CGTT_SQG_CLK_CTRL
+#define CGTT_SQG_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define CGTT_SQG_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define CGTT_SQG_CLK_CTRL__SOFT_STALL_OVERRIDE7__SHIFT 0x10
+#define CGTT_SQG_CLK_CTRL__SOFT_STALL_OVERRIDE6__SHIFT 0x11
+#define CGTT_SQG_CLK_CTRL__SOFT_STALL_OVERRIDE5__SHIFT 0x12
+#define CGTT_SQG_CLK_CTRL__SOFT_STALL_OVERRIDE4__SHIFT 0x13
+#define CGTT_SQG_CLK_CTRL__SOFT_STALL_OVERRIDE3__SHIFT 0x14
+#define CGTT_SQG_CLK_CTRL__SOFT_STALL_OVERRIDE2__SHIFT 0x15
+#define CGTT_SQG_CLK_CTRL__SOFT_STALL_OVERRIDE1__SHIFT 0x16
+#define CGTT_SQG_CLK_CTRL__SOFT_STALL_OVERRIDE0__SHIFT 0x17
+#define CGTT_SQG_CLK_CTRL__TTRACE_OVERRIDE__SHIFT 0x1c
+#define CGTT_SQG_CLK_CTRL__PERFMON_OVERRIDE__SHIFT 0x1d
+#define CGTT_SQG_CLK_CTRL__CORE_OVERRIDE__SHIFT 0x1e
+#define CGTT_SQG_CLK_CTRL__REG_OVERRIDE__SHIFT 0x1f
+#define CGTT_SQG_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define CGTT_SQG_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define CGTT_SQG_CLK_CTRL__SOFT_STALL_OVERRIDE7_MASK 0x00010000L
+#define CGTT_SQG_CLK_CTRL__SOFT_STALL_OVERRIDE6_MASK 0x00020000L
+#define CGTT_SQG_CLK_CTRL__SOFT_STALL_OVERRIDE5_MASK 0x00040000L
+#define CGTT_SQG_CLK_CTRL__SOFT_STALL_OVERRIDE4_MASK 0x00080000L
+#define CGTT_SQG_CLK_CTRL__SOFT_STALL_OVERRIDE3_MASK 0x00100000L
+#define CGTT_SQG_CLK_CTRL__SOFT_STALL_OVERRIDE2_MASK 0x00200000L
+#define CGTT_SQG_CLK_CTRL__SOFT_STALL_OVERRIDE1_MASK 0x00400000L
+#define CGTT_SQG_CLK_CTRL__SOFT_STALL_OVERRIDE0_MASK 0x00800000L
+#define CGTT_SQG_CLK_CTRL__TTRACE_OVERRIDE_MASK 0x10000000L
+#define CGTT_SQG_CLK_CTRL__PERFMON_OVERRIDE_MASK 0x20000000L
+#define CGTT_SQG_CLK_CTRL__CORE_OVERRIDE_MASK 0x40000000L
+#define CGTT_SQG_CLK_CTRL__REG_OVERRIDE_MASK 0x80000000L
+//SQ_ALU_CLK_CTRL
+#define SQ_ALU_CLK_CTRL__FORCE_CU_ON_SH0__SHIFT 0x0
+#define SQ_ALU_CLK_CTRL__FORCE_CU_ON_SH1__SHIFT 0x10
+#define SQ_ALU_CLK_CTRL__FORCE_CU_ON_SH0_MASK 0x0000FFFFL
+#define SQ_ALU_CLK_CTRL__FORCE_CU_ON_SH1_MASK 0xFFFF0000L
+//SQ_TEX_CLK_CTRL
+#define SQ_TEX_CLK_CTRL__FORCE_CU_ON_SH0__SHIFT 0x0
+#define SQ_TEX_CLK_CTRL__FORCE_CU_ON_SH1__SHIFT 0x10
+#define SQ_TEX_CLK_CTRL__FORCE_CU_ON_SH0_MASK 0x0000FFFFL
+#define SQ_TEX_CLK_CTRL__FORCE_CU_ON_SH1_MASK 0xFFFF0000L
+//SQ_LDS_CLK_CTRL
+#define SQ_LDS_CLK_CTRL__FORCE_CU_ON_SH0__SHIFT 0x0
+#define SQ_LDS_CLK_CTRL__FORCE_CU_ON_SH1__SHIFT 0x10
+#define SQ_LDS_CLK_CTRL__FORCE_CU_ON_SH0_MASK 0x0000FFFFL
+#define SQ_LDS_CLK_CTRL__FORCE_CU_ON_SH1_MASK 0xFFFF0000L
+//SQ_POWER_THROTTLE
+#define SQ_POWER_THROTTLE__MIN_POWER__SHIFT 0x0
+#define SQ_POWER_THROTTLE__MAX_POWER__SHIFT 0x10
+#define SQ_POWER_THROTTLE__PHASE_OFFSET__SHIFT 0x1e
+#define SQ_POWER_THROTTLE__MIN_POWER_MASK 0x00003FFFL
+#define SQ_POWER_THROTTLE__MAX_POWER_MASK 0x3FFF0000L
+#define SQ_POWER_THROTTLE__PHASE_OFFSET_MASK 0xC0000000L
+//SQ_POWER_THROTTLE2
+#define SQ_POWER_THROTTLE2__MAX_POWER_DELTA__SHIFT 0x0
+#define SQ_POWER_THROTTLE2__SHORT_TERM_INTERVAL_SIZE__SHIFT 0x10
+#define SQ_POWER_THROTTLE2__LONG_TERM_INTERVAL_RATIO__SHIFT 0x1b
+#define SQ_POWER_THROTTLE2__USE_REF_CLOCK__SHIFT 0x1f
+#define SQ_POWER_THROTTLE2__MAX_POWER_DELTA_MASK 0x00003FFFL
+#define SQ_POWER_THROTTLE2__SHORT_TERM_INTERVAL_SIZE_MASK 0x03FF0000L
+#define SQ_POWER_THROTTLE2__LONG_TERM_INTERVAL_RATIO_MASK 0x78000000L
+#define SQ_POWER_THROTTLE2__USE_REF_CLOCK_MASK 0x80000000L
+//TD_CGTT_CTRL
+#define TD_CGTT_CTRL__ON_DELAY__SHIFT 0x0
+#define TD_CGTT_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define TD_CGTT_CTRL__SOFT_OVERRIDE7__SHIFT 0x18
+#define TD_CGTT_CTRL__SOFT_OVERRIDE6__SHIFT 0x19
+#define TD_CGTT_CTRL__SOFT_OVERRIDE5__SHIFT 0x1a
+#define TD_CGTT_CTRL__SOFT_OVERRIDE4__SHIFT 0x1b
+#define TD_CGTT_CTRL__SOFT_OVERRIDE3__SHIFT 0x1c
+#define TD_CGTT_CTRL__SOFT_OVERRIDE2__SHIFT 0x1d
+#define TD_CGTT_CTRL__SOFT_OVERRIDE1__SHIFT 0x1e
+#define TD_CGTT_CTRL__SOFT_OVERRIDE0__SHIFT 0x1f
+#define TD_CGTT_CTRL__ON_DELAY_MASK 0x0000000FL
+#define TD_CGTT_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define TD_CGTT_CTRL__SOFT_OVERRIDE7_MASK 0x01000000L
+#define TD_CGTT_CTRL__SOFT_OVERRIDE6_MASK 0x02000000L
+#define TD_CGTT_CTRL__SOFT_OVERRIDE5_MASK 0x04000000L
+#define TD_CGTT_CTRL__SOFT_OVERRIDE4_MASK 0x08000000L
+#define TD_CGTT_CTRL__SOFT_OVERRIDE3_MASK 0x10000000L
+#define TD_CGTT_CTRL__SOFT_OVERRIDE2_MASK 0x20000000L
+#define TD_CGTT_CTRL__SOFT_OVERRIDE1_MASK 0x40000000L
+#define TD_CGTT_CTRL__SOFT_OVERRIDE0_MASK 0x80000000L
+//TA_CGTT_CTRL
+#define TA_CGTT_CTRL__ON_DELAY__SHIFT 0x0
+#define TA_CGTT_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define TA_CGTT_CTRL__SOFT_OVERRIDE7__SHIFT 0x18
+#define TA_CGTT_CTRL__SOFT_OVERRIDE6__SHIFT 0x19
+#define TA_CGTT_CTRL__SOFT_OVERRIDE5__SHIFT 0x1a
+#define TA_CGTT_CTRL__SOFT_OVERRIDE4__SHIFT 0x1b
+#define TA_CGTT_CTRL__SOFT_OVERRIDE3__SHIFT 0x1c
+#define TA_CGTT_CTRL__SOFT_OVERRIDE2__SHIFT 0x1d
+#define TA_CGTT_CTRL__SOFT_OVERRIDE1__SHIFT 0x1e
+#define TA_CGTT_CTRL__SOFT_OVERRIDE0__SHIFT 0x1f
+#define TA_CGTT_CTRL__ON_DELAY_MASK 0x0000000FL
+#define TA_CGTT_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define TA_CGTT_CTRL__SOFT_OVERRIDE7_MASK 0x01000000L
+#define TA_CGTT_CTRL__SOFT_OVERRIDE6_MASK 0x02000000L
+#define TA_CGTT_CTRL__SOFT_OVERRIDE5_MASK 0x04000000L
+#define TA_CGTT_CTRL__SOFT_OVERRIDE4_MASK 0x08000000L
+#define TA_CGTT_CTRL__SOFT_OVERRIDE3_MASK 0x10000000L
+#define TA_CGTT_CTRL__SOFT_OVERRIDE2_MASK 0x20000000L
+#define TA_CGTT_CTRL__SOFT_OVERRIDE1_MASK 0x40000000L
+#define TA_CGTT_CTRL__SOFT_OVERRIDE0_MASK 0x80000000L
+//CGTT_TCPI_CLK_CTRL
+#define CGTT_TCPI_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define CGTT_TCPI_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define CGTT_TCPI_CLK_CTRL__SPARE__SHIFT 0xc
+#define CGTT_TCPI_CLK_CTRL__SOFT_STALL_OVERRIDE7__SHIFT 0x10
+#define CGTT_TCPI_CLK_CTRL__SOFT_STALL_OVERRIDE6__SHIFT 0x11
+#define CGTT_TCPI_CLK_CTRL__SOFT_STALL_OVERRIDE5__SHIFT 0x12
+#define CGTT_TCPI_CLK_CTRL__SOFT_STALL_OVERRIDE4__SHIFT 0x13
+#define CGTT_TCPI_CLK_CTRL__SOFT_STALL_OVERRIDE3__SHIFT 0x14
+#define CGTT_TCPI_CLK_CTRL__SOFT_STALL_OVERRIDE2__SHIFT 0x15
+#define CGTT_TCPI_CLK_CTRL__SOFT_STALL_OVERRIDE1__SHIFT 0x16
+#define CGTT_TCPI_CLK_CTRL__SOFT_STALL_OVERRIDE0__SHIFT 0x17
+#define CGTT_TCPI_CLK_CTRL__SOFT_OVERRIDE7__SHIFT 0x18
+#define CGTT_TCPI_CLK_CTRL__SOFT_OVERRIDE6__SHIFT 0x19
+#define CGTT_TCPI_CLK_CTRL__SOFT_OVERRIDE5__SHIFT 0x1a
+#define CGTT_TCPI_CLK_CTRL__SOFT_OVERRIDE4__SHIFT 0x1b
+#define CGTT_TCPI_CLK_CTRL__SOFT_OVERRIDE3__SHIFT 0x1c
+#define CGTT_TCPI_CLK_CTRL__SOFT_OVERRIDE2__SHIFT 0x1d
+#define CGTT_TCPI_CLK_CTRL__SOFT_OVERRIDE1__SHIFT 0x1e
+#define CGTT_TCPI_CLK_CTRL__SOFT_OVERRIDE0__SHIFT 0x1f
+#define CGTT_TCPI_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define CGTT_TCPI_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define CGTT_TCPI_CLK_CTRL__SPARE_MASK 0x0000F000L
+#define CGTT_TCPI_CLK_CTRL__SOFT_STALL_OVERRIDE7_MASK 0x00010000L
+#define CGTT_TCPI_CLK_CTRL__SOFT_STALL_OVERRIDE6_MASK 0x00020000L
+#define CGTT_TCPI_CLK_CTRL__SOFT_STALL_OVERRIDE5_MASK 0x00040000L
+#define CGTT_TCPI_CLK_CTRL__SOFT_STALL_OVERRIDE4_MASK 0x00080000L
+#define CGTT_TCPI_CLK_CTRL__SOFT_STALL_OVERRIDE3_MASK 0x00100000L
+#define CGTT_TCPI_CLK_CTRL__SOFT_STALL_OVERRIDE2_MASK 0x00200000L
+#define CGTT_TCPI_CLK_CTRL__SOFT_STALL_OVERRIDE1_MASK 0x00400000L
+#define CGTT_TCPI_CLK_CTRL__SOFT_STALL_OVERRIDE0_MASK 0x00800000L
+#define CGTT_TCPI_CLK_CTRL__SOFT_OVERRIDE7_MASK 0x01000000L
+#define CGTT_TCPI_CLK_CTRL__SOFT_OVERRIDE6_MASK 0x02000000L
+#define CGTT_TCPI_CLK_CTRL__SOFT_OVERRIDE5_MASK 0x04000000L
+#define CGTT_TCPI_CLK_CTRL__SOFT_OVERRIDE4_MASK 0x08000000L
+#define CGTT_TCPI_CLK_CTRL__SOFT_OVERRIDE3_MASK 0x10000000L
+#define CGTT_TCPI_CLK_CTRL__SOFT_OVERRIDE2_MASK 0x20000000L
+#define CGTT_TCPI_CLK_CTRL__SOFT_OVERRIDE1_MASK 0x40000000L
+#define CGTT_TCPI_CLK_CTRL__SOFT_OVERRIDE0_MASK 0x80000000L
+//TCX_CGTT_SCLK_CTRL
+#define TCX_CGTT_SCLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define TCX_CGTT_SCLK_CTRL__SOFT_OVERRIDE5__SHIFT 0x1a
+#define TCX_CGTT_SCLK_CTRL__SOFT_OVERRIDE4__SHIFT 0x1b
+#define TCX_CGTT_SCLK_CTRL__SOFT_OVERRIDE3__SHIFT 0x1c
+#define TCX_CGTT_SCLK_CTRL__SOFT_OVERRIDE2__SHIFT 0x1d
+#define TCX_CGTT_SCLK_CTRL__SOFT_OVERRIDE1__SHIFT 0x1e
+#define TCX_CGTT_SCLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define TCX_CGTT_SCLK_CTRL__SOFT_OVERRIDE5_MASK 0x04000000L
+#define TCX_CGTT_SCLK_CTRL__SOFT_OVERRIDE4_MASK 0x08000000L
+#define TCX_CGTT_SCLK_CTRL__SOFT_OVERRIDE3_MASK 0x10000000L
+#define TCX_CGTT_SCLK_CTRL__SOFT_OVERRIDE2_MASK 0x20000000L
+#define TCX_CGTT_SCLK_CTRL__SOFT_OVERRIDE1_MASK 0x40000000L
+//DB_CGTT_CLK_CTRL_0
+#define DB_CGTT_CLK_CTRL_0__ON_DELAY__SHIFT 0x0
+#define DB_CGTT_CLK_CTRL_0__OFF_HYSTERESIS__SHIFT 0x4
+#define DB_CGTT_CLK_CTRL_0__RESERVED__SHIFT 0xc
+#define DB_CGTT_CLK_CTRL_0__SOFT_STALL_OVERRIDE7__SHIFT 0x10
+#define DB_CGTT_CLK_CTRL_0__SOFT_STALL_OVERRIDE6__SHIFT 0x11
+#define DB_CGTT_CLK_CTRL_0__SOFT_STALL_OVERRIDE5__SHIFT 0x12
+#define DB_CGTT_CLK_CTRL_0__SOFT_STALL_OVERRIDE4__SHIFT 0x13
+#define DB_CGTT_CLK_CTRL_0__SOFT_STALL_OVERRIDE3__SHIFT 0x14
+#define DB_CGTT_CLK_CTRL_0__SOFT_STALL_OVERRIDE2__SHIFT 0x15
+#define DB_CGTT_CLK_CTRL_0__SOFT_STALL_OVERRIDE1__SHIFT 0x16
+#define DB_CGTT_CLK_CTRL_0__SOFT_STALL_OVERRIDE0__SHIFT 0x17
+#define DB_CGTT_CLK_CTRL_0__SOFT_OVERRIDE7__SHIFT 0x18
+#define DB_CGTT_CLK_CTRL_0__SOFT_OVERRIDE6__SHIFT 0x19
+#define DB_CGTT_CLK_CTRL_0__SOFT_OVERRIDE5__SHIFT 0x1a
+#define DB_CGTT_CLK_CTRL_0__SOFT_OVERRIDE4__SHIFT 0x1b
+#define DB_CGTT_CLK_CTRL_0__SOFT_OVERRIDE3__SHIFT 0x1c
+#define DB_CGTT_CLK_CTRL_0__SOFT_OVERRIDE2__SHIFT 0x1d
+#define DB_CGTT_CLK_CTRL_0__SOFT_OVERRIDE1__SHIFT 0x1e
+#define DB_CGTT_CLK_CTRL_0__SOFT_OVERRIDE0__SHIFT 0x1f
+#define DB_CGTT_CLK_CTRL_0__ON_DELAY_MASK 0x0000000FL
+#define DB_CGTT_CLK_CTRL_0__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define DB_CGTT_CLK_CTRL_0__RESERVED_MASK 0x0000F000L
+#define DB_CGTT_CLK_CTRL_0__SOFT_STALL_OVERRIDE7_MASK 0x00010000L
+#define DB_CGTT_CLK_CTRL_0__SOFT_STALL_OVERRIDE6_MASK 0x00020000L
+#define DB_CGTT_CLK_CTRL_0__SOFT_STALL_OVERRIDE5_MASK 0x00040000L
+#define DB_CGTT_CLK_CTRL_0__SOFT_STALL_OVERRIDE4_MASK 0x00080000L
+#define DB_CGTT_CLK_CTRL_0__SOFT_STALL_OVERRIDE3_MASK 0x00100000L
+#define DB_CGTT_CLK_CTRL_0__SOFT_STALL_OVERRIDE2_MASK 0x00200000L
+#define DB_CGTT_CLK_CTRL_0__SOFT_STALL_OVERRIDE1_MASK 0x00400000L
+#define DB_CGTT_CLK_CTRL_0__SOFT_STALL_OVERRIDE0_MASK 0x00800000L
+#define DB_CGTT_CLK_CTRL_0__SOFT_OVERRIDE7_MASK 0x01000000L
+#define DB_CGTT_CLK_CTRL_0__SOFT_OVERRIDE6_MASK 0x02000000L
+#define DB_CGTT_CLK_CTRL_0__SOFT_OVERRIDE5_MASK 0x04000000L
+#define DB_CGTT_CLK_CTRL_0__SOFT_OVERRIDE4_MASK 0x08000000L
+#define DB_CGTT_CLK_CTRL_0__SOFT_OVERRIDE3_MASK 0x10000000L
+#define DB_CGTT_CLK_CTRL_0__SOFT_OVERRIDE2_MASK 0x20000000L
+#define DB_CGTT_CLK_CTRL_0__SOFT_OVERRIDE1_MASK 0x40000000L
+#define DB_CGTT_CLK_CTRL_0__SOFT_OVERRIDE0_MASK 0x80000000L
+//CB_CGTT_SCLK_CTRL
+#define CB_CGTT_SCLK_CTRL__ON_DELAY__SHIFT 0x0
+#define CB_CGTT_SCLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define CB_CGTT_SCLK_CTRL__SOFT_STALL_OVERRIDE7__SHIFT 0x10
+#define CB_CGTT_SCLK_CTRL__SOFT_STALL_OVERRIDE6__SHIFT 0x11
+#define CB_CGTT_SCLK_CTRL__SOFT_STALL_OVERRIDE5__SHIFT 0x12
+#define CB_CGTT_SCLK_CTRL__SOFT_STALL_OVERRIDE4__SHIFT 0x13
+#define CB_CGTT_SCLK_CTRL__SOFT_STALL_OVERRIDE3__SHIFT 0x14
+#define CB_CGTT_SCLK_CTRL__SOFT_STALL_OVERRIDE2__SHIFT 0x15
+#define CB_CGTT_SCLK_CTRL__SOFT_STALL_OVERRIDE1__SHIFT 0x16
+#define CB_CGTT_SCLK_CTRL__SOFT_STALL_OVERRIDE0__SHIFT 0x17
+#define CB_CGTT_SCLK_CTRL__SOFT_OVERRIDE7__SHIFT 0x18
+#define CB_CGTT_SCLK_CTRL__SOFT_OVERRIDE6__SHIFT 0x19
+#define CB_CGTT_SCLK_CTRL__SOFT_OVERRIDE5__SHIFT 0x1a
+#define CB_CGTT_SCLK_CTRL__SOFT_OVERRIDE4__SHIFT 0x1b
+#define CB_CGTT_SCLK_CTRL__SOFT_OVERRIDE3__SHIFT 0x1c
+#define CB_CGTT_SCLK_CTRL__SOFT_OVERRIDE2__SHIFT 0x1d
+#define CB_CGTT_SCLK_CTRL__SOFT_OVERRIDE1__SHIFT 0x1e
+#define CB_CGTT_SCLK_CTRL__SOFT_OVERRIDE0__SHIFT 0x1f
+#define CB_CGTT_SCLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define CB_CGTT_SCLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define CB_CGTT_SCLK_CTRL__SOFT_STALL_OVERRIDE7_MASK 0x00010000L
+#define CB_CGTT_SCLK_CTRL__SOFT_STALL_OVERRIDE6_MASK 0x00020000L
+#define CB_CGTT_SCLK_CTRL__SOFT_STALL_OVERRIDE5_MASK 0x00040000L
+#define CB_CGTT_SCLK_CTRL__SOFT_STALL_OVERRIDE4_MASK 0x00080000L
+#define CB_CGTT_SCLK_CTRL__SOFT_STALL_OVERRIDE3_MASK 0x00100000L
+#define CB_CGTT_SCLK_CTRL__SOFT_STALL_OVERRIDE2_MASK 0x00200000L
+#define CB_CGTT_SCLK_CTRL__SOFT_STALL_OVERRIDE1_MASK 0x00400000L
+#define CB_CGTT_SCLK_CTRL__SOFT_STALL_OVERRIDE0_MASK 0x00800000L
+#define CB_CGTT_SCLK_CTRL__SOFT_OVERRIDE7_MASK 0x01000000L
+#define CB_CGTT_SCLK_CTRL__SOFT_OVERRIDE6_MASK 0x02000000L
+#define CB_CGTT_SCLK_CTRL__SOFT_OVERRIDE5_MASK 0x04000000L
+#define CB_CGTT_SCLK_CTRL__SOFT_OVERRIDE4_MASK 0x08000000L
+#define CB_CGTT_SCLK_CTRL__SOFT_OVERRIDE3_MASK 0x10000000L
+#define CB_CGTT_SCLK_CTRL__SOFT_OVERRIDE2_MASK 0x20000000L
+#define CB_CGTT_SCLK_CTRL__SOFT_OVERRIDE1_MASK 0x40000000L
+#define CB_CGTT_SCLK_CTRL__SOFT_OVERRIDE0_MASK 0x80000000L
+//TCC_CGTT_SCLK_CTRL
+#define TCC_CGTT_SCLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define TCC_CGTT_SCLK_CTRL__SOFT_OVERRIDE6__SHIFT 0x19
+#define TCC_CGTT_SCLK_CTRL__SOFT_OVERRIDE5__SHIFT 0x1a
+#define TCC_CGTT_SCLK_CTRL__SOFT_OVERRIDE4__SHIFT 0x1b
+#define TCC_CGTT_SCLK_CTRL__SOFT_OVERRIDE3__SHIFT 0x1c
+#define TCC_CGTT_SCLK_CTRL__SOFT_OVERRIDE2__SHIFT 0x1d
+#define TCC_CGTT_SCLK_CTRL__SOFT_OVERRIDE1__SHIFT 0x1e
+#define TCC_CGTT_SCLK_CTRL__SOFT_OVERRIDE0__SHIFT 0x1f
+#define TCC_CGTT_SCLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define TCC_CGTT_SCLK_CTRL__SOFT_OVERRIDE6_MASK 0x02000000L
+#define TCC_CGTT_SCLK_CTRL__SOFT_OVERRIDE5_MASK 0x04000000L
+#define TCC_CGTT_SCLK_CTRL__SOFT_OVERRIDE4_MASK 0x08000000L
+#define TCC_CGTT_SCLK_CTRL__SOFT_OVERRIDE3_MASK 0x10000000L
+#define TCC_CGTT_SCLK_CTRL__SOFT_OVERRIDE2_MASK 0x20000000L
+#define TCC_CGTT_SCLK_CTRL__SOFT_OVERRIDE1_MASK 0x40000000L
+#define TCC_CGTT_SCLK_CTRL__SOFT_OVERRIDE0_MASK 0x80000000L
+//TCC_CGTT_SCLK_CTRL2
+#define TCC_CGTT_SCLK_CTRL2__OFF_HYSTERESIS__SHIFT 0x4
+#define TCC_CGTT_SCLK_CTRL2__SOFT_OVERRIDE4__SHIFT 0x1b
+#define TCC_CGTT_SCLK_CTRL2__SOFT_OVERRIDE3__SHIFT 0x1c
+#define TCC_CGTT_SCLK_CTRL2__SOFT_OVERRIDE2__SHIFT 0x1d
+#define TCC_CGTT_SCLK_CTRL2__SOFT_OVERRIDE1__SHIFT 0x1e
+#define TCC_CGTT_SCLK_CTRL2__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define TCC_CGTT_SCLK_CTRL2__SOFT_OVERRIDE4_MASK 0x08000000L
+#define TCC_CGTT_SCLK_CTRL2__SOFT_OVERRIDE3_MASK 0x10000000L
+#define TCC_CGTT_SCLK_CTRL2__SOFT_OVERRIDE2_MASK 0x20000000L
+#define TCC_CGTT_SCLK_CTRL2__SOFT_OVERRIDE1_MASK 0x40000000L
+//TCC_CGTT_SCLK_CTRL3
+#define TCC_CGTT_SCLK_CTRL3__OFF_HYSTERESIS__SHIFT 0x4
+#define TCC_CGTT_SCLK_CTRL3__SOFT_OVERRIDE18__SHIFT 0xc
+#define TCC_CGTT_SCLK_CTRL3__SOFT_OVERRIDE17__SHIFT 0xd
+#define TCC_CGTT_SCLK_CTRL3__SOFT_OVERRIDE16__SHIFT 0xe
+#define TCC_CGTT_SCLK_CTRL3__SOFT_OVERRIDE15__SHIFT 0xf
+#define TCC_CGTT_SCLK_CTRL3__SOFT_OVERRIDE14__SHIFT 0x10
+#define TCC_CGTT_SCLK_CTRL3__SOFT_OVERRIDE13__SHIFT 0x11
+#define TCC_CGTT_SCLK_CTRL3__SOFT_OVERRIDE12__SHIFT 0x12
+#define TCC_CGTT_SCLK_CTRL3__SOFT_OVERRIDE11__SHIFT 0x13
+#define TCC_CGTT_SCLK_CTRL3__SOFT_OVERRIDE10__SHIFT 0x14
+#define TCC_CGTT_SCLK_CTRL3__SOFT_OVERRIDE9__SHIFT 0x15
+#define TCC_CGTT_SCLK_CTRL3__SOFT_OVERRIDE8__SHIFT 0x17
+#define TCC_CGTT_SCLK_CTRL3__SOFT_OVERRIDE7__SHIFT 0x18
+#define TCC_CGTT_SCLK_CTRL3__SOFT_OVERRIDE6__SHIFT 0x19
+#define TCC_CGTT_SCLK_CTRL3__SOFT_OVERRIDE5__SHIFT 0x1a
+#define TCC_CGTT_SCLK_CTRL3__SOFT_OVERRIDE4__SHIFT 0x1b
+#define TCC_CGTT_SCLK_CTRL3__SOFT_OVERRIDE3__SHIFT 0x1c
+#define TCC_CGTT_SCLK_CTRL3__SOFT_OVERRIDE2__SHIFT 0x1d
+#define TCC_CGTT_SCLK_CTRL3__SOFT_OVERRIDE1__SHIFT 0x1e
+#define TCC_CGTT_SCLK_CTRL3__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define TCC_CGTT_SCLK_CTRL3__SOFT_OVERRIDE18_MASK 0x00001000L
+#define TCC_CGTT_SCLK_CTRL3__SOFT_OVERRIDE17_MASK 0x00002000L
+#define TCC_CGTT_SCLK_CTRL3__SOFT_OVERRIDE16_MASK 0x00004000L
+#define TCC_CGTT_SCLK_CTRL3__SOFT_OVERRIDE15_MASK 0x00008000L
+#define TCC_CGTT_SCLK_CTRL3__SOFT_OVERRIDE14_MASK 0x00010000L
+#define TCC_CGTT_SCLK_CTRL3__SOFT_OVERRIDE13_MASK 0x00020000L
+#define TCC_CGTT_SCLK_CTRL3__SOFT_OVERRIDE12_MASK 0x00040000L
+#define TCC_CGTT_SCLK_CTRL3__SOFT_OVERRIDE11_MASK 0x00080000L
+#define TCC_CGTT_SCLK_CTRL3__SOFT_OVERRIDE10_MASK 0x00100000L
+#define TCC_CGTT_SCLK_CTRL3__SOFT_OVERRIDE9_MASK 0x00200000L
+#define TCC_CGTT_SCLK_CTRL3__SOFT_OVERRIDE8_MASK 0x00800000L
+#define TCC_CGTT_SCLK_CTRL3__SOFT_OVERRIDE7_MASK 0x01000000L
+#define TCC_CGTT_SCLK_CTRL3__SOFT_OVERRIDE6_MASK 0x02000000L
+#define TCC_CGTT_SCLK_CTRL3__SOFT_OVERRIDE5_MASK 0x04000000L
+#define TCC_CGTT_SCLK_CTRL3__SOFT_OVERRIDE4_MASK 0x08000000L
+#define TCC_CGTT_SCLK_CTRL3__SOFT_OVERRIDE3_MASK 0x10000000L
+#define TCC_CGTT_SCLK_CTRL3__SOFT_OVERRIDE2_MASK 0x20000000L
+#define TCC_CGTT_SCLK_CTRL3__SOFT_OVERRIDE1_MASK 0x40000000L
+//TCA_CGTT_SCLK_CTRL
+#define TCA_CGTT_SCLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define TCA_CGTT_SCLK_CTRL__SOFT_OVERRIDE5__SHIFT 0x1a
+#define TCA_CGTT_SCLK_CTRL__SOFT_OVERRIDE4__SHIFT 0x1b
+#define TCA_CGTT_SCLK_CTRL__SOFT_OVERRIDE3__SHIFT 0x1c
+#define TCA_CGTT_SCLK_CTRL__SOFT_OVERRIDE2__SHIFT 0x1d
+#define TCA_CGTT_SCLK_CTRL__SOFT_OVERRIDE1__SHIFT 0x1e
+#define TCA_CGTT_SCLK_CTRL__SOFT_OVERRIDE0__SHIFT 0x1f
+#define TCA_CGTT_SCLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define TCA_CGTT_SCLK_CTRL__SOFT_OVERRIDE5_MASK 0x04000000L
+#define TCA_CGTT_SCLK_CTRL__SOFT_OVERRIDE4_MASK 0x08000000L
+#define TCA_CGTT_SCLK_CTRL__SOFT_OVERRIDE3_MASK 0x10000000L
+#define TCA_CGTT_SCLK_CTRL__SOFT_OVERRIDE2_MASK 0x20000000L
+#define TCA_CGTT_SCLK_CTRL__SOFT_OVERRIDE1_MASK 0x40000000L
+#define TCA_CGTT_SCLK_CTRL__SOFT_OVERRIDE0_MASK 0x80000000L
+//CGTT_CP_CLK_CTRL
+#define CGTT_CP_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define CGTT_CP_CLK_CTRL__MGLS_OVERRIDE__SHIFT 0xf
+#define CGTT_CP_CLK_CTRL__SOFT_STALL_OVERRIDE7__SHIFT 0x10
+#define CGTT_CP_CLK_CTRL__SOFT_STALL_OVERRIDE6__SHIFT 0x11
+#define CGTT_CP_CLK_CTRL__SOFT_STALL_OVERRIDE5__SHIFT 0x12
+#define CGTT_CP_CLK_CTRL__SOFT_STALL_OVERRIDE4__SHIFT 0x13
+#define CGTT_CP_CLK_CTRL__SOFT_STALL_OVERRIDE3__SHIFT 0x14
+#define CGTT_CP_CLK_CTRL__SOFT_STALL_OVERRIDE2__SHIFT 0x15
+#define CGTT_CP_CLK_CTRL__SOFT_STALL_OVERRIDE1__SHIFT 0x16
+#define CGTT_CP_CLK_CTRL__SOFT_STALL_OVERRIDE0__SHIFT 0x17
+#define CGTT_CP_CLK_CTRL__SOFT_OVERRIDE_PERFMON__SHIFT 0x1d
+#define CGTT_CP_CLK_CTRL__SOFT_OVERRIDE_DYN__SHIFT 0x1e
+#define CGTT_CP_CLK_CTRL__SOFT_OVERRIDE_REG__SHIFT 0x1f
+#define CGTT_CP_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define CGTT_CP_CLK_CTRL__MGLS_OVERRIDE_MASK 0x00008000L
+#define CGTT_CP_CLK_CTRL__SOFT_STALL_OVERRIDE7_MASK 0x00010000L
+#define CGTT_CP_CLK_CTRL__SOFT_STALL_OVERRIDE6_MASK 0x00020000L
+#define CGTT_CP_CLK_CTRL__SOFT_STALL_OVERRIDE5_MASK 0x00040000L
+#define CGTT_CP_CLK_CTRL__SOFT_STALL_OVERRIDE4_MASK 0x00080000L
+#define CGTT_CP_CLK_CTRL__SOFT_STALL_OVERRIDE3_MASK 0x00100000L
+#define CGTT_CP_CLK_CTRL__SOFT_STALL_OVERRIDE2_MASK 0x00200000L
+#define CGTT_CP_CLK_CTRL__SOFT_STALL_OVERRIDE1_MASK 0x00400000L
+#define CGTT_CP_CLK_CTRL__SOFT_STALL_OVERRIDE0_MASK 0x00800000L
+#define CGTT_CP_CLK_CTRL__SOFT_OVERRIDE_PERFMON_MASK 0x20000000L
+#define CGTT_CP_CLK_CTRL__SOFT_OVERRIDE_DYN_MASK 0x40000000L
+#define CGTT_CP_CLK_CTRL__SOFT_OVERRIDE_REG_MASK 0x80000000L
+//CGTT_CPC_CLK_CTRL
+#define CGTT_CPC_CLK_CTRL__REG_CLK_OFF_HYSTERESIS__SHIFT 0x0
+#define CGTT_CPC_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define CGTT_CPC_CLK_CTRL__MGLS_OVERRIDE__SHIFT 0xf
+#define CGTT_CPC_CLK_CTRL__SOFT_STALL_OVERRIDE7__SHIFT 0x10
+#define CGTT_CPC_CLK_CTRL__SOFT_STALL_OVERRIDE6__SHIFT 0x11
+#define CGTT_CPC_CLK_CTRL__SOFT_STALL_OVERRIDE5__SHIFT 0x12
+#define CGTT_CPC_CLK_CTRL__SOFT_STALL_OVERRIDE4__SHIFT 0x13
+#define CGTT_CPC_CLK_CTRL__SOFT_STALL_OVERRIDE3__SHIFT 0x14
+#define CGTT_CPC_CLK_CTRL__SOFT_STALL_OVERRIDE2__SHIFT 0x15
+#define CGTT_CPC_CLK_CTRL__SOFT_STALL_OVERRIDE1__SHIFT 0x16
+#define CGTT_CPC_CLK_CTRL__SOFT_STALL_OVERRIDE0__SHIFT 0x17
+#define CGTT_CPC_CLK_CTRL__SOFT_OVERRIDE_PERFMON__SHIFT 0x1d
+#define CGTT_CPC_CLK_CTRL__SOFT_OVERRIDE_DYN__SHIFT 0x1e
+#define CGTT_CPC_CLK_CTRL__SOFT_OVERRIDE_REG__SHIFT 0x1f
+#define CGTT_CPC_CLK_CTRL__REG_CLK_OFF_HYSTERESIS_MASK 0x0000000FL
+#define CGTT_CPC_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define CGTT_CPC_CLK_CTRL__MGLS_OVERRIDE_MASK 0x00008000L
+#define CGTT_CPC_CLK_CTRL__SOFT_STALL_OVERRIDE7_MASK 0x00010000L
+#define CGTT_CPC_CLK_CTRL__SOFT_STALL_OVERRIDE6_MASK 0x00020000L
+#define CGTT_CPC_CLK_CTRL__SOFT_STALL_OVERRIDE5_MASK 0x00040000L
+#define CGTT_CPC_CLK_CTRL__SOFT_STALL_OVERRIDE4_MASK 0x00080000L
+#define CGTT_CPC_CLK_CTRL__SOFT_STALL_OVERRIDE3_MASK 0x00100000L
+#define CGTT_CPC_CLK_CTRL__SOFT_STALL_OVERRIDE2_MASK 0x00200000L
+#define CGTT_CPC_CLK_CTRL__SOFT_STALL_OVERRIDE1_MASK 0x00400000L
+#define CGTT_CPC_CLK_CTRL__SOFT_STALL_OVERRIDE0_MASK 0x00800000L
+#define CGTT_CPC_CLK_CTRL__SOFT_OVERRIDE_PERFMON_MASK 0x20000000L
+#define CGTT_CPC_CLK_CTRL__SOFT_OVERRIDE_DYN_MASK 0x40000000L
+#define CGTT_CPC_CLK_CTRL__SOFT_OVERRIDE_REG_MASK 0x80000000L
+//CGTT_RLC_CLK_CTRL
+#define CGTT_RLC_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define CGTT_RLC_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define CGTT_RLC_CLK_CTRL__SOFT_STALL_OVERRIDE7__SHIFT 0x10
+#define CGTT_RLC_CLK_CTRL__SOFT_STALL_OVERRIDE6__SHIFT 0x11
+#define CGTT_RLC_CLK_CTRL__SOFT_STALL_OVERRIDE5__SHIFT 0x12
+#define CGTT_RLC_CLK_CTRL__SOFT_STALL_OVERRIDE4__SHIFT 0x13
+#define CGTT_RLC_CLK_CTRL__SOFT_STALL_OVERRIDE3__SHIFT 0x14
+#define CGTT_RLC_CLK_CTRL__SOFT_STALL_OVERRIDE2__SHIFT 0x15
+#define CGTT_RLC_CLK_CTRL__SOFT_STALL_OVERRIDE1__SHIFT 0x16
+#define CGTT_RLC_CLK_CTRL__SOFT_STALL_OVERRIDE0__SHIFT 0x17
+#define CGTT_RLC_CLK_CTRL__SOFT_OVERRIDE_DYN__SHIFT 0x1e
+#define CGTT_RLC_CLK_CTRL__SOFT_OVERRIDE_REG__SHIFT 0x1f
+#define CGTT_RLC_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define CGTT_RLC_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define CGTT_RLC_CLK_CTRL__SOFT_STALL_OVERRIDE7_MASK 0x00010000L
+#define CGTT_RLC_CLK_CTRL__SOFT_STALL_OVERRIDE6_MASK 0x00020000L
+#define CGTT_RLC_CLK_CTRL__SOFT_STALL_OVERRIDE5_MASK 0x00040000L
+#define CGTT_RLC_CLK_CTRL__SOFT_STALL_OVERRIDE4_MASK 0x00080000L
+#define CGTT_RLC_CLK_CTRL__SOFT_STALL_OVERRIDE3_MASK 0x00100000L
+#define CGTT_RLC_CLK_CTRL__SOFT_STALL_OVERRIDE2_MASK 0x00200000L
+#define CGTT_RLC_CLK_CTRL__SOFT_STALL_OVERRIDE1_MASK 0x00400000L
+#define CGTT_RLC_CLK_CTRL__SOFT_STALL_OVERRIDE0_MASK 0x00800000L
+#define CGTT_RLC_CLK_CTRL__SOFT_OVERRIDE_DYN_MASK 0x40000000L
+#define CGTT_RLC_CLK_CTRL__SOFT_OVERRIDE_REG_MASK 0x80000000L
+//RLC_GFX_RM_CNTL
+#define RLC_GFX_RM_CNTL__RLC_GFX_RM_VALID__SHIFT 0x0
+#define RLC_GFX_RM_CNTL__RESERVED__SHIFT 0x1
+#define RLC_GFX_RM_CNTL__RLC_GFX_RM_VALID_MASK 0x00000001L
+#define RLC_GFX_RM_CNTL__RESERVED_MASK 0xFFFFFFFEL
+//RMI_CGTT_SCLK_CTRL
+#define RMI_CGTT_SCLK_CTRL__ON_DELAY__SHIFT 0x0
+#define RMI_CGTT_SCLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define RMI_CGTT_SCLK_CTRL__SOFT_STALL_OVERRIDE7__SHIFT 0x10
+#define RMI_CGTT_SCLK_CTRL__SOFT_STALL_OVERRIDE6__SHIFT 0x11
+#define RMI_CGTT_SCLK_CTRL__SOFT_STALL_OVERRIDE5__SHIFT 0x12
+#define RMI_CGTT_SCLK_CTRL__SOFT_STALL_OVERRIDE4__SHIFT 0x13
+#define RMI_CGTT_SCLK_CTRL__SOFT_STALL_OVERRIDE3__SHIFT 0x14
+#define RMI_CGTT_SCLK_CTRL__SOFT_STALL_OVERRIDE2__SHIFT 0x15
+#define RMI_CGTT_SCLK_CTRL__SOFT_STALL_OVERRIDE1__SHIFT 0x16
+#define RMI_CGTT_SCLK_CTRL__SOFT_STALL_OVERRIDE0__SHIFT 0x17
+#define RMI_CGTT_SCLK_CTRL__SOFT_OVERRIDE6__SHIFT 0x19
+#define RMI_CGTT_SCLK_CTRL__SOFT_OVERRIDE5__SHIFT 0x1a
+#define RMI_CGTT_SCLK_CTRL__SOFT_OVERRIDE4__SHIFT 0x1b
+#define RMI_CGTT_SCLK_CTRL__SOFT_OVERRIDE3__SHIFT 0x1c
+#define RMI_CGTT_SCLK_CTRL__SOFT_OVERRIDE2__SHIFT 0x1d
+#define RMI_CGTT_SCLK_CTRL__SOFT_OVERRIDE1__SHIFT 0x1e
+#define RMI_CGTT_SCLK_CTRL__SOFT_OVERRIDE0__SHIFT 0x1f
+#define RMI_CGTT_SCLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define RMI_CGTT_SCLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define RMI_CGTT_SCLK_CTRL__SOFT_STALL_OVERRIDE7_MASK 0x00010000L
+#define RMI_CGTT_SCLK_CTRL__SOFT_STALL_OVERRIDE6_MASK 0x00020000L
+#define RMI_CGTT_SCLK_CTRL__SOFT_STALL_OVERRIDE5_MASK 0x00040000L
+#define RMI_CGTT_SCLK_CTRL__SOFT_STALL_OVERRIDE4_MASK 0x00080000L
+#define RMI_CGTT_SCLK_CTRL__SOFT_STALL_OVERRIDE3_MASK 0x00100000L
+#define RMI_CGTT_SCLK_CTRL__SOFT_STALL_OVERRIDE2_MASK 0x00200000L
+#define RMI_CGTT_SCLK_CTRL__SOFT_STALL_OVERRIDE1_MASK 0x00400000L
+#define RMI_CGTT_SCLK_CTRL__SOFT_STALL_OVERRIDE0_MASK 0x00800000L
+#define RMI_CGTT_SCLK_CTRL__SOFT_OVERRIDE6_MASK 0x02000000L
+#define RMI_CGTT_SCLK_CTRL__SOFT_OVERRIDE5_MASK 0x04000000L
+#define RMI_CGTT_SCLK_CTRL__SOFT_OVERRIDE4_MASK 0x08000000L
+#define RMI_CGTT_SCLK_CTRL__SOFT_OVERRIDE3_MASK 0x10000000L
+#define RMI_CGTT_SCLK_CTRL__SOFT_OVERRIDE2_MASK 0x20000000L
+#define RMI_CGTT_SCLK_CTRL__SOFT_OVERRIDE1_MASK 0x40000000L
+#define RMI_CGTT_SCLK_CTRL__SOFT_OVERRIDE0_MASK 0x80000000L
+//CGTT_TCPF_CLK_CTRL
+#define CGTT_TCPF_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define CGTT_TCPF_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define CGTT_TCPF_CLK_CTRL__SPARE__SHIFT 0xc
+#define CGTT_TCPF_CLK_CTRL__SOFT_STALL_OVERRIDE7__SHIFT 0x10
+#define CGTT_TCPF_CLK_CTRL__SOFT_STALL_OVERRIDE6__SHIFT 0x11
+#define CGTT_TCPF_CLK_CTRL__SOFT_STALL_OVERRIDE5__SHIFT 0x12
+#define CGTT_TCPF_CLK_CTRL__SOFT_STALL_OVERRIDE4__SHIFT 0x13
+#define CGTT_TCPF_CLK_CTRL__SOFT_STALL_OVERRIDE3__SHIFT 0x14
+#define CGTT_TCPF_CLK_CTRL__SOFT_STALL_OVERRIDE2__SHIFT 0x15
+#define CGTT_TCPF_CLK_CTRL__SOFT_STALL_OVERRIDE1__SHIFT 0x16
+#define CGTT_TCPF_CLK_CTRL__SOFT_STALL_OVERRIDE0__SHIFT 0x17
+#define CGTT_TCPF_CLK_CTRL__SOFT_OVERRIDE7__SHIFT 0x18
+#define CGTT_TCPF_CLK_CTRL__SOFT_OVERRIDE6__SHIFT 0x19
+#define CGTT_TCPF_CLK_CTRL__SOFT_OVERRIDE5__SHIFT 0x1a
+#define CGTT_TCPF_CLK_CTRL__SOFT_OVERRIDE4__SHIFT 0x1b
+#define CGTT_TCPF_CLK_CTRL__SOFT_OVERRIDE3__SHIFT 0x1c
+#define CGTT_TCPF_CLK_CTRL__SOFT_OVERRIDE2__SHIFT 0x1d
+#define CGTT_TCPF_CLK_CTRL__SOFT_OVERRIDE1__SHIFT 0x1e
+#define CGTT_TCPF_CLK_CTRL__SOFT_OVERRIDE0__SHIFT 0x1f
+#define CGTT_TCPF_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define CGTT_TCPF_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define CGTT_TCPF_CLK_CTRL__SPARE_MASK 0x0000F000L
+#define CGTT_TCPF_CLK_CTRL__SOFT_STALL_OVERRIDE7_MASK 0x00010000L
+#define CGTT_TCPF_CLK_CTRL__SOFT_STALL_OVERRIDE6_MASK 0x00020000L
+#define CGTT_TCPF_CLK_CTRL__SOFT_STALL_OVERRIDE5_MASK 0x00040000L
+#define CGTT_TCPF_CLK_CTRL__SOFT_STALL_OVERRIDE4_MASK 0x00080000L
+#define CGTT_TCPF_CLK_CTRL__SOFT_STALL_OVERRIDE3_MASK 0x00100000L
+#define CGTT_TCPF_CLK_CTRL__SOFT_STALL_OVERRIDE2_MASK 0x00200000L
+#define CGTT_TCPF_CLK_CTRL__SOFT_STALL_OVERRIDE1_MASK 0x00400000L
+#define CGTT_TCPF_CLK_CTRL__SOFT_STALL_OVERRIDE0_MASK 0x00800000L
+#define CGTT_TCPF_CLK_CTRL__SOFT_OVERRIDE7_MASK 0x01000000L
+#define CGTT_TCPF_CLK_CTRL__SOFT_OVERRIDE6_MASK 0x02000000L
+#define CGTT_TCPF_CLK_CTRL__SOFT_OVERRIDE5_MASK 0x04000000L
+#define CGTT_TCPF_CLK_CTRL__SOFT_OVERRIDE4_MASK 0x08000000L
+#define CGTT_TCPF_CLK_CTRL__SOFT_OVERRIDE3_MASK 0x10000000L
+#define CGTT_TCPF_CLK_CTRL__SOFT_OVERRIDE2_MASK 0x20000000L
+#define CGTT_TCPF_CLK_CTRL__SOFT_OVERRIDE1_MASK 0x40000000L
+#define CGTT_TCPF_CLK_CTRL__SOFT_OVERRIDE0_MASK 0x80000000L
+
+
+// addressBlock: xcd0_gc_hypdec
+//CP_HYP_PFP_UCODE_ADDR
+#define CP_HYP_PFP_UCODE_ADDR__UCODE_ADDR__SHIFT 0x0
+#define CP_HYP_PFP_UCODE_ADDR__UCODE_ADDR_MASK 0x00003FFFL
+//CP_PFP_UCODE_ADDR
+#define CP_PFP_UCODE_ADDR__UCODE_ADDR__SHIFT 0x0
+#define CP_PFP_UCODE_ADDR__UCODE_ADDR_MASK 0x00003FFFL
+//CP_HYP_PFP_UCODE_DATA
+#define CP_HYP_PFP_UCODE_DATA__UCODE_DATA__SHIFT 0x0
+#define CP_HYP_PFP_UCODE_DATA__UCODE_DATA_MASK 0xFFFFFFFFL
+//CP_PFP_UCODE_DATA
+#define CP_PFP_UCODE_DATA__UCODE_DATA__SHIFT 0x0
+#define CP_PFP_UCODE_DATA__UCODE_DATA_MASK 0xFFFFFFFFL
+//CP_HYP_ME_UCODE_ADDR
+#define CP_HYP_ME_UCODE_ADDR__UCODE_ADDR__SHIFT 0x0
+#define CP_HYP_ME_UCODE_ADDR__UCODE_ADDR_MASK 0x00001FFFL
+//CP_ME_RAM_RADDR
+#define CP_ME_RAM_RADDR__ME_RAM_RADDR__SHIFT 0x0
+#define CP_ME_RAM_RADDR__ME_RAM_RADDR_MASK 0x00001FFFL
+//CP_ME_RAM_WADDR
+#define CP_ME_RAM_WADDR__ME_RAM_WADDR__SHIFT 0x0
+#define CP_ME_RAM_WADDR__ME_RAM_WADDR_MASK 0x00001FFFL
+//CP_HYP_ME_UCODE_DATA
+#define CP_HYP_ME_UCODE_DATA__UCODE_DATA__SHIFT 0x0
+#define CP_HYP_ME_UCODE_DATA__UCODE_DATA_MASK 0xFFFFFFFFL
+//CP_ME_RAM_DATA
+#define CP_ME_RAM_DATA__ME_RAM_DATA__SHIFT 0x0
+#define CP_ME_RAM_DATA__ME_RAM_DATA_MASK 0xFFFFFFFFL
+//CP_CE_UCODE_ADDR
+#define CP_CE_UCODE_ADDR__UCODE_ADDR__SHIFT 0x0
+#define CP_CE_UCODE_ADDR__UCODE_ADDR_MASK 0x00000FFFL
+//CP_HYP_CE_UCODE_ADDR
+#define CP_HYP_CE_UCODE_ADDR__UCODE_ADDR__SHIFT 0x0
+#define CP_HYP_CE_UCODE_ADDR__UCODE_ADDR_MASK 0x00000FFFL
+//CP_CE_UCODE_DATA
+#define CP_CE_UCODE_DATA__UCODE_DATA__SHIFT 0x0
+#define CP_CE_UCODE_DATA__UCODE_DATA_MASK 0xFFFFFFFFL
+//CP_HYP_CE_UCODE_DATA
+#define CP_HYP_CE_UCODE_DATA__UCODE_DATA__SHIFT 0x0
+#define CP_HYP_CE_UCODE_DATA__UCODE_DATA_MASK 0xFFFFFFFFL
+//CP_HYP_MEC1_UCODE_ADDR
+#define CP_HYP_MEC1_UCODE_ADDR__UCODE_ADDR__SHIFT 0x0
+#define CP_HYP_MEC1_UCODE_ADDR__UCODE_ADDR_MASK 0x0001FFFFL
+//CP_MEC_ME1_UCODE_ADDR
+#define CP_MEC_ME1_UCODE_ADDR__UCODE_ADDR__SHIFT 0x0
+#define CP_MEC_ME1_UCODE_ADDR__UCODE_ADDR_MASK 0x0001FFFFL
+//CP_HYP_MEC1_UCODE_DATA
+#define CP_HYP_MEC1_UCODE_DATA__UCODE_DATA__SHIFT 0x0
+#define CP_HYP_MEC1_UCODE_DATA__UCODE_DATA_MASK 0xFFFFFFFFL
+//CP_MEC_ME1_UCODE_DATA
+#define CP_MEC_ME1_UCODE_DATA__UCODE_DATA__SHIFT 0x0
+#define CP_MEC_ME1_UCODE_DATA__UCODE_DATA_MASK 0xFFFFFFFFL
+//CP_HYP_MEC2_UCODE_ADDR
+#define CP_HYP_MEC2_UCODE_ADDR__UCODE_ADDR__SHIFT 0x0
+#define CP_HYP_MEC2_UCODE_ADDR__UCODE_ADDR_MASK 0x0001FFFFL
+//CP_MEC_ME2_UCODE_ADDR
+#define CP_MEC_ME2_UCODE_ADDR__UCODE_ADDR__SHIFT 0x0
+#define CP_MEC_ME2_UCODE_ADDR__UCODE_ADDR_MASK 0x0001FFFFL
+//CP_HYP_MEC2_UCODE_DATA
+#define CP_HYP_MEC2_UCODE_DATA__UCODE_DATA__SHIFT 0x0
+#define CP_HYP_MEC2_UCODE_DATA__UCODE_DATA_MASK 0xFFFFFFFFL
+//CP_MEC_ME2_UCODE_DATA
+#define CP_MEC_ME2_UCODE_DATA__UCODE_DATA__SHIFT 0x0
+#define CP_MEC_ME2_UCODE_DATA__UCODE_DATA_MASK 0xFFFFFFFFL
+//CP_HYP_PFP_UCODE_CHKSUM
+#define CP_HYP_PFP_UCODE_CHKSUM__UCODE_CHKSUM__SHIFT 0x0
+#define CP_HYP_PFP_UCODE_CHKSUM__UCODE_CHKSUM_MASK 0xFFFFFFFFL
+//CP_HYP_CE_UCODE_CHKSUM
+#define CP_HYP_CE_UCODE_CHKSUM__UCODE_CHKSUM__SHIFT 0x0
+#define CP_HYP_CE_UCODE_CHKSUM__UCODE_CHKSUM_MASK 0xFFFFFFFFL
+//CP_HYP_ME_UCODE_CHKSUM
+#define CP_HYP_ME_UCODE_CHKSUM__UCODE_CHKSUM__SHIFT 0x0
+#define CP_HYP_ME_UCODE_CHKSUM__UCODE_CHKSUM_MASK 0xFFFFFFFFL
+//CP_HYP_MEC_ME1_UCODE_CHKSUM
+#define CP_HYP_MEC_ME1_UCODE_CHKSUM__UCODE_CHKSUM__SHIFT 0x0
+#define CP_HYP_MEC_ME1_UCODE_CHKSUM__UCODE_CHKSUM_MASK 0xFFFFFFFFL
+//CP_HYP_MEC_ME2_UCODE_CHKSUM
+#define CP_HYP_MEC_ME2_UCODE_CHKSUM__UCODE_CHKSUM__SHIFT 0x0
+#define CP_HYP_MEC_ME2_UCODE_CHKSUM__UCODE_CHKSUM_MASK 0xFFFFFFFFL
+//CP_HYP_XCP_CTL
+#define CP_HYP_XCP_CTL__VIRTUAL_XCC_ID__SHIFT 0x0
+#define CP_HYP_XCP_CTL__NUM_XCC_IN_XCP__SHIFT 0x3
+#define CP_HYP_XCP_CTL__VIRTUAL_XCC_ID_MASK 0x00000007L
+#define CP_HYP_XCP_CTL__NUM_XCC_IN_XCP_MASK 0x00000078L
+//RLC_GPM_UCODE_ADDR
+#define RLC_GPM_UCODE_ADDR__UCODE_ADDR__SHIFT 0x0
+#define RLC_GPM_UCODE_ADDR__RESERVED__SHIFT 0xe
+#define RLC_GPM_UCODE_ADDR__UCODE_ADDR_MASK 0x00003FFFL
+#define RLC_GPM_UCODE_ADDR__RESERVED_MASK 0xFFFFC000L
+//RLC_GPM_UCODE_DATA
+#define RLC_GPM_UCODE_DATA__UCODE_DATA__SHIFT 0x0
+#define RLC_GPM_UCODE_DATA__UCODE_DATA_MASK 0xFFFFFFFFL
+//GRBM_GFX_INDEX_SR_SELECT
+#define GRBM_GFX_INDEX_SR_SELECT__INDEX__SHIFT 0x0
+#define GRBM_GFX_INDEX_SR_SELECT__VF_PF__SHIFT 0x1f
+#define GRBM_GFX_INDEX_SR_SELECT__INDEX_MASK 0x00000007L
+#define GRBM_GFX_INDEX_SR_SELECT__VF_PF_MASK 0x80000000L
+//GRBM_GFX_INDEX_SR_DATA
+#define GRBM_GFX_INDEX_SR_DATA__INSTANCE_INDEX__SHIFT 0x0
+#define GRBM_GFX_INDEX_SR_DATA__SH_INDEX__SHIFT 0x8
+#define GRBM_GFX_INDEX_SR_DATA__SE_INDEX__SHIFT 0x10
+#define GRBM_GFX_INDEX_SR_DATA__SH_BROADCAST_WRITES__SHIFT 0x1d
+#define GRBM_GFX_INDEX_SR_DATA__INSTANCE_BROADCAST_WRITES__SHIFT 0x1e
+#define GRBM_GFX_INDEX_SR_DATA__SE_BROADCAST_WRITES__SHIFT 0x1f
+#define GRBM_GFX_INDEX_SR_DATA__INSTANCE_INDEX_MASK 0x000000FFL
+#define GRBM_GFX_INDEX_SR_DATA__SH_INDEX_MASK 0x0000FF00L
+#define GRBM_GFX_INDEX_SR_DATA__SE_INDEX_MASK 0x00FF0000L
+#define GRBM_GFX_INDEX_SR_DATA__SH_BROADCAST_WRITES_MASK 0x20000000L
+#define GRBM_GFX_INDEX_SR_DATA__INSTANCE_BROADCAST_WRITES_MASK 0x40000000L
+#define GRBM_GFX_INDEX_SR_DATA__SE_BROADCAST_WRITES_MASK 0x80000000L
+//GRBM_GFX_CNTL_SR_SELECT
+#define GRBM_GFX_CNTL_SR_SELECT__INDEX__SHIFT 0x0
+#define GRBM_GFX_CNTL_SR_SELECT__VF_PF__SHIFT 0x1f
+#define GRBM_GFX_CNTL_SR_SELECT__INDEX_MASK 0x00000007L
+#define GRBM_GFX_CNTL_SR_SELECT__VF_PF_MASK 0x80000000L
+//GRBM_GFX_CNTL_SR_DATA
+#define GRBM_GFX_CNTL_SR_DATA__PIPEID__SHIFT 0x0
+#define GRBM_GFX_CNTL_SR_DATA__MEID__SHIFT 0x2
+#define GRBM_GFX_CNTL_SR_DATA__VMID__SHIFT 0x4
+#define GRBM_GFX_CNTL_SR_DATA__QUEUEID__SHIFT 0x8
+#define GRBM_GFX_CNTL_SR_DATA__PIPEID_MASK 0x00000003L
+#define GRBM_GFX_CNTL_SR_DATA__MEID_MASK 0x0000000CL
+#define GRBM_GFX_CNTL_SR_DATA__VMID_MASK 0x000000F0L
+#define GRBM_GFX_CNTL_SR_DATA__QUEUEID_MASK 0x00000700L
+//GRBM_MCM_ADDR
+#define GRBM_MCM_ADDR__MCM_ADDR_IH__SHIFT 0x0
+#define GRBM_MCM_ADDR__MCM_ADDR_IH_MASK 0x000000FFL
+//RLC_GPU_IOV_VF_ENABLE
+#define RLC_GPU_IOV_VF_ENABLE__VF_ENABLE__SHIFT 0x0
+#define RLC_GPU_IOV_VF_ENABLE__RESERVED__SHIFT 0x1
+#define RLC_GPU_IOV_VF_ENABLE__VF_NUM__SHIFT 0x10
+#define RLC_GPU_IOV_VF_ENABLE__VF_ENABLE_MASK 0x00000001L
+#define RLC_GPU_IOV_VF_ENABLE__RESERVED_MASK 0x0000FFFEL
+#define RLC_GPU_IOV_VF_ENABLE__VF_NUM_MASK 0xFFFF0000L
+//RLC_GPU_IOV_CFG_REG6
+#define RLC_GPU_IOV_CFG_REG6__CNTXT_SIZE__SHIFT 0x0
+#define RLC_GPU_IOV_CFG_REG6__CNTXT_LOCATION__SHIFT 0x7
+#define RLC_GPU_IOV_CFG_REG6__RESERVED__SHIFT 0x8
+#define RLC_GPU_IOV_CFG_REG6__CNTXT_OFFSET__SHIFT 0xa
+#define RLC_GPU_IOV_CFG_REG6__CNTXT_SIZE_MASK 0x0000007FL
+#define RLC_GPU_IOV_CFG_REG6__CNTXT_LOCATION_MASK 0x00000080L
+#define RLC_GPU_IOV_CFG_REG6__RESERVED_MASK 0x00000300L
+#define RLC_GPU_IOV_CFG_REG6__CNTXT_OFFSET_MASK 0xFFFFFC00L
+//RLC_GPU_IOV_CFG_REG8
+#define RLC_GPU_IOV_CFG_REG8__VM_BUSY_STATUS__SHIFT 0x0
+#define RLC_GPU_IOV_CFG_REG8__VM_BUSY_STATUS_MASK 0xFFFFFFFFL
+//RLC_RLCV_TIMER_INT_0
+#define RLC_RLCV_TIMER_INT_0__TIMER__SHIFT 0x0
+#define RLC_RLCV_TIMER_INT_0__TIMER_MASK 0xFFFFFFFFL
+//RLC_RLCV_TIMER_CTRL
+#define RLC_RLCV_TIMER_CTRL__TIMER_0_EN__SHIFT 0x0
+#define RLC_RLCV_TIMER_CTRL__TIMER_1_EN__SHIFT 0x1
+#define RLC_RLCV_TIMER_CTRL__RESERVED__SHIFT 0x2
+#define RLC_RLCV_TIMER_CTRL__TIMER_0_EN_MASK 0x00000001L
+#define RLC_RLCV_TIMER_CTRL__TIMER_1_EN_MASK 0x00000002L
+#define RLC_RLCV_TIMER_CTRL__RESERVED_MASK 0xFFFFFFFCL
+//RLC_RLCV_TIMER_STAT
+#define RLC_RLCV_TIMER_STAT__TIMER_0_STAT__SHIFT 0x0
+#define RLC_RLCV_TIMER_STAT__TIMER_1_STAT__SHIFT 0x1
+#define RLC_RLCV_TIMER_STAT__RESERVED__SHIFT 0x2
+#define RLC_RLCV_TIMER_STAT__TIMER_0_ENABLE_SYNC__SHIFT 0x8
+#define RLC_RLCV_TIMER_STAT__TIMER_1_ENABLE_SYNC__SHIFT 0x9
+#define RLC_RLCV_TIMER_STAT__TIMER_0_STAT_MASK 0x00000001L
+#define RLC_RLCV_TIMER_STAT__TIMER_1_STAT_MASK 0x00000002L
+#define RLC_RLCV_TIMER_STAT__RESERVED_MASK 0x000000FCL
+#define RLC_RLCV_TIMER_STAT__TIMER_0_ENABLE_SYNC_MASK 0x00000100L
+#define RLC_RLCV_TIMER_STAT__TIMER_1_ENABLE_SYNC_MASK 0x00000200L
+//RLC_GPU_IOV_VF_DOORBELL_STATUS
+#define RLC_GPU_IOV_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS__SHIFT 0x0
+#define RLC_GPU_IOV_VF_DOORBELL_STATUS__RESERVED__SHIFT 0x10
+#define RLC_GPU_IOV_VF_DOORBELL_STATUS__PF_DOORBELL_STATUS__SHIFT 0x1f
+#define RLC_GPU_IOV_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_MASK 0x0000FFFFL
+#define RLC_GPU_IOV_VF_DOORBELL_STATUS__RESERVED_MASK 0x7FFF0000L
+#define RLC_GPU_IOV_VF_DOORBELL_STATUS__PF_DOORBELL_STATUS_MASK 0x80000000L
+//RLC_GPU_IOV_VF_DOORBELL_STATUS_SET
+#define RLC_GPU_IOV_VF_DOORBELL_STATUS_SET__VF_DOORBELL_STATUS_SET__SHIFT 0x0
+#define RLC_GPU_IOV_VF_DOORBELL_STATUS_SET__RESERVED__SHIFT 0x10
+#define RLC_GPU_IOV_VF_DOORBELL_STATUS_SET__PF_DOORBELL_STATUS_SET__SHIFT 0x1f
+#define RLC_GPU_IOV_VF_DOORBELL_STATUS_SET__VF_DOORBELL_STATUS_SET_MASK 0x0000FFFFL
+#define RLC_GPU_IOV_VF_DOORBELL_STATUS_SET__RESERVED_MASK 0x7FFF0000L
+#define RLC_GPU_IOV_VF_DOORBELL_STATUS_SET__PF_DOORBELL_STATUS_SET_MASK 0x80000000L
+//RLC_GPU_IOV_VF_DOORBELL_STATUS_CLR
+#define RLC_GPU_IOV_VF_DOORBELL_STATUS_CLR__VF_DOORBELL_STATUS_CLR__SHIFT 0x0
+#define RLC_GPU_IOV_VF_DOORBELL_STATUS_CLR__RESERVED__SHIFT 0x10
+#define RLC_GPU_IOV_VF_DOORBELL_STATUS_CLR__PF_DOORBELL_STATUS_CLR__SHIFT 0x1f
+#define RLC_GPU_IOV_VF_DOORBELL_STATUS_CLR__VF_DOORBELL_STATUS_CLR_MASK 0x0000FFFFL
+#define RLC_GPU_IOV_VF_DOORBELL_STATUS_CLR__RESERVED_MASK 0x7FFF0000L
+#define RLC_GPU_IOV_VF_DOORBELL_STATUS_CLR__PF_DOORBELL_STATUS_CLR_MASK 0x80000000L
+//RLC_GPU_IOV_VF_MASK
+#define RLC_GPU_IOV_VF_MASK__VF_MASK__SHIFT 0x0
+#define RLC_GPU_IOV_VF_MASK__RESERVED__SHIFT 0x10
+#define RLC_GPU_IOV_VF_MASK__VF_MASK_MASK 0x0000FFFFL
+#define RLC_GPU_IOV_VF_MASK__RESERVED_MASK 0xFFFF0000L
+//RLC_HYP_SEMAPHORE_0
+#define RLC_HYP_SEMAPHORE_0__CLIENT_ID__SHIFT 0x0
+#define RLC_HYP_SEMAPHORE_0__RESERVED__SHIFT 0x5
+#define RLC_HYP_SEMAPHORE_0__CLIENT_ID_MASK 0x0000001FL
+#define RLC_HYP_SEMAPHORE_0__RESERVED_MASK 0xFFFFFFE0L
+//RLC_HYP_SEMAPHORE_1
+#define RLC_HYP_SEMAPHORE_1__CLIENT_ID__SHIFT 0x0
+#define RLC_HYP_SEMAPHORE_1__RESERVED__SHIFT 0x5
+#define RLC_HYP_SEMAPHORE_1__CLIENT_ID_MASK 0x0000001FL
+#define RLC_HYP_SEMAPHORE_1__RESERVED_MASK 0xFFFFFFE0L
+//RLC_CLK_CNTL
+#define RLC_CLK_CNTL__RLC_SRM_CLK_CNTL__SHIFT 0x0
+#define RLC_CLK_CNTL__RLC_SPM_CLK_CNTL__SHIFT 0x2
+#define RLC_CLK_CNTL__RLC_GPM_CLK_CNTL__SHIFT 0x4
+#define RLC_CLK_CNTL__RLC_CMN_CLK_CNTL__SHIFT 0x5
+#define RLC_CLK_CNTL__RLC_TC_CLK_CNTL__SHIFT 0x6
+#define RLC_CLK_CNTL__RLC_SPP_CLK_CNTL__SHIFT 0x7
+#define RLC_CLK_CNTL__RLC_SRAM_CLK_GATER_OVERRIDE__SHIFT 0x8
+#define RLC_CLK_CNTL__RLC_EDC_OVERRIDE__SHIFT 0x9
+#define RLC_CLK_CNTL__RESERVED_11_10__SHIFT 0xa
+#define RLC_CLK_CNTL__RLC_TC_FGCG_REP_OVERRIDE__SHIFT 0xc
+#define RLC_CLK_CNTL__RLC_DFLL_CLK_CNTL__SHIFT 0xd
+#define RLC_CLK_CNTL__DBGBUS_CLK_ACTIVE_OVERRIDE__SHIFT 0xe
+#define RLC_CLK_CNTL__RLC_CAC2_CLK_CNTL__SHIFT 0xf
+#define RLC_CLK_CNTL__RESERVED_1__SHIFT 0x11
+#define RLC_CLK_CNTL__RLC_UTCL2_FGCG_OVERRIDE__SHIFT 0x12
+#define RLC_CLK_CNTL__RESERVED__SHIFT 0x13
+#define RLC_CLK_CNTL__RLC_SRM_CLK_CNTL_MASK 0x00000003L
+#define RLC_CLK_CNTL__RLC_SPM_CLK_CNTL_MASK 0x0000000CL
+#define RLC_CLK_CNTL__RLC_GPM_CLK_CNTL_MASK 0x00000010L
+#define RLC_CLK_CNTL__RLC_CMN_CLK_CNTL_MASK 0x00000020L
+#define RLC_CLK_CNTL__RLC_TC_CLK_CNTL_MASK 0x00000040L
+#define RLC_CLK_CNTL__RLC_SPP_CLK_CNTL_MASK 0x00000080L
+#define RLC_CLK_CNTL__RLC_SRAM_CLK_GATER_OVERRIDE_MASK 0x00000100L
+#define RLC_CLK_CNTL__RLC_EDC_OVERRIDE_MASK 0x00000200L
+#define RLC_CLK_CNTL__RESERVED_11_10_MASK 0x00000C00L
+#define RLC_CLK_CNTL__RLC_TC_FGCG_REP_OVERRIDE_MASK 0x00001000L
+#define RLC_CLK_CNTL__RLC_DFLL_CLK_CNTL_MASK 0x00002000L
+#define RLC_CLK_CNTL__DBGBUS_CLK_ACTIVE_OVERRIDE_MASK 0x00004000L
+#define RLC_CLK_CNTL__RLC_CAC2_CLK_CNTL_MASK 0x00018000L
+#define RLC_CLK_CNTL__RESERVED_1_MASK 0x00020000L
+#define RLC_CLK_CNTL__RLC_UTCL2_FGCG_OVERRIDE_MASK 0x00040000L
+#define RLC_CLK_CNTL__RESERVED_MASK 0xFFF80000L
+//RLC_GPU_IOV_SCH_BLOCK
+#define RLC_GPU_IOV_SCH_BLOCK__Sch_Block_ID__SHIFT 0x0
+#define RLC_GPU_IOV_SCH_BLOCK__Sch_Block_Ver__SHIFT 0x4
+#define RLC_GPU_IOV_SCH_BLOCK__Sch_Block_Size__SHIFT 0x8
+#define RLC_GPU_IOV_SCH_BLOCK__RESERVED__SHIFT 0x10
+#define RLC_GPU_IOV_SCH_BLOCK__Sch_Block_ID_MASK 0x0000000FL
+#define RLC_GPU_IOV_SCH_BLOCK__Sch_Block_Ver_MASK 0x000000F0L
+#define RLC_GPU_IOV_SCH_BLOCK__Sch_Block_Size_MASK 0x00007F00L
+#define RLC_GPU_IOV_SCH_BLOCK__RESERVED_MASK 0x7FFF0000L
+//RLC_GPU_IOV_CFG_REG1
+#define RLC_GPU_IOV_CFG_REG1__CMD_TYPE__SHIFT 0x0
+#define RLC_GPU_IOV_CFG_REG1__CMD_EXECUTE__SHIFT 0x4
+#define RLC_GPU_IOV_CFG_REG1__CMD_EXECUTE_INTR_EN__SHIFT 0x5
+#define RLC_GPU_IOV_CFG_REG1__RESERVED__SHIFT 0x6
+#define RLC_GPU_IOV_CFG_REG1__FCN_ID__SHIFT 0x8
+#define RLC_GPU_IOV_CFG_REG1__NEXT_FCN_ID__SHIFT 0x10
+#define RLC_GPU_IOV_CFG_REG1__RESERVED1__SHIFT 0x18
+#define RLC_GPU_IOV_CFG_REG1__CMD_TYPE_MASK 0x0000000FL
+#define RLC_GPU_IOV_CFG_REG1__CMD_EXECUTE_MASK 0x00000010L
+#define RLC_GPU_IOV_CFG_REG1__CMD_EXECUTE_INTR_EN_MASK 0x00000020L
+#define RLC_GPU_IOV_CFG_REG1__RESERVED_MASK 0x000000C0L
+#define RLC_GPU_IOV_CFG_REG1__FCN_ID_MASK 0x0000FF00L
+#define RLC_GPU_IOV_CFG_REG1__NEXT_FCN_ID_MASK 0x00FF0000L
+#define RLC_GPU_IOV_CFG_REG1__RESERVED1_MASK 0xFF000000L
+//RLC_GPU_IOV_CFG_REG2
+#define RLC_GPU_IOV_CFG_REG2__CMD_STATUS__SHIFT 0x0
+#define RLC_GPU_IOV_CFG_REG2__RESERVED__SHIFT 0x4
+#define RLC_GPU_IOV_CFG_REG2__CMD_STATUS_MASK 0x0000000FL
+#define RLC_GPU_IOV_CFG_REG2__RESERVED_MASK 0xFFFFFFF0L
+//RLC_GPU_IOV_VM_BUSY_STATUS
+#define RLC_GPU_IOV_VM_BUSY_STATUS__VM_BUSY_STATUS__SHIFT 0x0
+#define RLC_GPU_IOV_VM_BUSY_STATUS__VM_BUSY_STATUS_MASK 0xFFFFFFFFL
+//RLC_GPU_IOV_SCH_0
+#define RLC_GPU_IOV_SCH_0__ACTIVE_FUNCTIONS__SHIFT 0x0
+#define RLC_GPU_IOV_SCH_0__ACTIVE_FUNCTIONS_MASK 0xFFFFFFFFL
+//RLC_GPU_IOV_ACTIVE_FCN_ID
+#define RLC_GPU_IOV_ACTIVE_FCN_ID__VF_ID__SHIFT 0x0
+#define RLC_GPU_IOV_ACTIVE_FCN_ID__RESERVED__SHIFT 0x4
+#define RLC_GPU_IOV_ACTIVE_FCN_ID__PF_VF__SHIFT 0x1f
+#define RLC_GPU_IOV_ACTIVE_FCN_ID__VF_ID_MASK 0x0000000FL
+#define RLC_GPU_IOV_ACTIVE_FCN_ID__RESERVED_MASK 0x7FFFFFF0L
+#define RLC_GPU_IOV_ACTIVE_FCN_ID__PF_VF_MASK 0x80000000L
+//RLC_GPU_IOV_SCH_3
+#define RLC_GPU_IOV_SCH_3__Time_Quanta_Def__SHIFT 0x0
+#define RLC_GPU_IOV_SCH_3__Time_Quanta_Def_MASK 0xFFFFFFFFL
+//RLC_GPU_IOV_SCH_1
+#define RLC_GPU_IOV_SCH_1__DATA__SHIFT 0x0
+#define RLC_GPU_IOV_SCH_1__DATA_MASK 0xFFFFFFFFL
+//RLC_GPU_IOV_SCH_2
+#define RLC_GPU_IOV_SCH_2__DATA__SHIFT 0x0
+#define RLC_GPU_IOV_SCH_2__DATA_MASK 0xFFFFFFFFL
+//RLC_GPU_IOV_INT_STAT
+#define RLC_GPU_IOV_INT_STAT__STATUS__SHIFT 0x0
+#define RLC_GPU_IOV_INT_STAT__STATUS_MASK 0xFFFFFFFFL
+//RLC_RLCV_TIMER_INT_1
+#define RLC_RLCV_TIMER_INT_1__TIMER__SHIFT 0x0
+#define RLC_RLCV_TIMER_INT_1__TIMER_MASK 0xFFFFFFFFL
+//RLC_GPU_IOV_UCODE_ADDR
+#define RLC_GPU_IOV_UCODE_ADDR__UCODE_ADDR__SHIFT 0x0
+#define RLC_GPU_IOV_UCODE_ADDR__RESERVED__SHIFT 0xc
+#define RLC_GPU_IOV_UCODE_ADDR__UCODE_ADDR_MASK 0x00000FFFL
+#define RLC_GPU_IOV_UCODE_ADDR__RESERVED_MASK 0xFFFFF000L
+//RLC_GPU_IOV_UCODE_DATA
+#define RLC_GPU_IOV_UCODE_DATA__UCODE_DATA__SHIFT 0x0
+#define RLC_GPU_IOV_UCODE_DATA__UCODE_DATA_MASK 0xFFFFFFFFL
+//RLC_GPU_IOV_SCRATCH_ADDR
+#define RLC_GPU_IOV_SCRATCH_ADDR__ADDR__SHIFT 0x0
+#define RLC_GPU_IOV_SCRATCH_ADDR__RESERVED__SHIFT 0x9
+#define RLC_GPU_IOV_SCRATCH_ADDR__ADDR_MASK 0x000001FFL
+#define RLC_GPU_IOV_SCRATCH_ADDR__RESERVED_MASK 0xFFFFFE00L
+//RLC_GPU_IOV_SCRATCH_DATA
+#define RLC_GPU_IOV_SCRATCH_DATA__DATA__SHIFT 0x0
+#define RLC_GPU_IOV_SCRATCH_DATA__DATA_MASK 0xFFFFFFFFL
+//RLC_GPU_IOV_F32_CNTL
+#define RLC_GPU_IOV_F32_CNTL__ENABLE__SHIFT 0x0
+#define RLC_GPU_IOV_F32_CNTL__RESERVED__SHIFT 0x1
+#define RLC_GPU_IOV_F32_CNTL__ENABLE_MASK 0x00000001L
+#define RLC_GPU_IOV_F32_CNTL__RESERVED_MASK 0xFFFFFFFEL
+//RLC_GPU_IOV_F32_RESET
+#define RLC_GPU_IOV_F32_RESET__RESET__SHIFT 0x0
+#define RLC_GPU_IOV_F32_RESET__RESERVED__SHIFT 0x1
+#define RLC_GPU_IOV_F32_RESET__RESET_MASK 0x00000001L
+#define RLC_GPU_IOV_F32_RESET__RESERVED_MASK 0xFFFFFFFEL
+//RLC_GPU_IOV_SDMA0_STATUS
+#define RLC_GPU_IOV_SDMA0_STATUS__PREEMPTED__SHIFT 0x0
+#define RLC_GPU_IOV_SDMA0_STATUS__RESERVED__SHIFT 0x1
+#define RLC_GPU_IOV_SDMA0_STATUS__SAVED__SHIFT 0x8
+#define RLC_GPU_IOV_SDMA0_STATUS__RESERVED1__SHIFT 0x9
+#define RLC_GPU_IOV_SDMA0_STATUS__RESTORED__SHIFT 0xc
+#define RLC_GPU_IOV_SDMA0_STATUS__RESERVED2__SHIFT 0xd
+#define RLC_GPU_IOV_SDMA0_STATUS__PREEMPTED_MASK 0x00000001L
+#define RLC_GPU_IOV_SDMA0_STATUS__RESERVED_MASK 0x000000FEL
+#define RLC_GPU_IOV_SDMA0_STATUS__SAVED_MASK 0x00000100L
+#define RLC_GPU_IOV_SDMA0_STATUS__RESERVED1_MASK 0x00000E00L
+#define RLC_GPU_IOV_SDMA0_STATUS__RESTORED_MASK 0x00001000L
+#define RLC_GPU_IOV_SDMA0_STATUS__RESERVED2_MASK 0xFFFFE000L
+//RLC_GPU_IOV_SDMA1_STATUS
+#define RLC_GPU_IOV_SDMA1_STATUS__PREEMPTED__SHIFT 0x0
+#define RLC_GPU_IOV_SDMA1_STATUS__RESERVED__SHIFT 0x1
+#define RLC_GPU_IOV_SDMA1_STATUS__SAVED__SHIFT 0x8
+#define RLC_GPU_IOV_SDMA1_STATUS__RESERVED1__SHIFT 0x9
+#define RLC_GPU_IOV_SDMA1_STATUS__RESTORED__SHIFT 0xc
+#define RLC_GPU_IOV_SDMA1_STATUS__RESERVED2__SHIFT 0xd
+#define RLC_GPU_IOV_SDMA1_STATUS__PREEMPTED_MASK 0x00000001L
+#define RLC_GPU_IOV_SDMA1_STATUS__RESERVED_MASK 0x000000FEL
+#define RLC_GPU_IOV_SDMA1_STATUS__SAVED_MASK 0x00000100L
+#define RLC_GPU_IOV_SDMA1_STATUS__RESERVED1_MASK 0x00000E00L
+#define RLC_GPU_IOV_SDMA1_STATUS__RESTORED_MASK 0x00001000L
+#define RLC_GPU_IOV_SDMA1_STATUS__RESERVED2_MASK 0xFFFFE000L
+//RLC_GPU_IOV_SMU_RESPONSE
+#define RLC_GPU_IOV_SMU_RESPONSE__RESP__SHIFT 0x0
+#define RLC_GPU_IOV_SMU_RESPONSE__RESP_MASK 0xFFFFFFFFL
+//RLC_GPU_IOV_VIRT_RESET_REQ
+#define RLC_GPU_IOV_VIRT_RESET_REQ__VF_FLR__SHIFT 0x0
+#define RLC_GPU_IOV_VIRT_RESET_REQ__RESERVED__SHIFT 0x10
+#define RLC_GPU_IOV_VIRT_RESET_REQ__SOFT_PF_FLR__SHIFT 0x1f
+#define RLC_GPU_IOV_VIRT_RESET_REQ__VF_FLR_MASK 0x0000FFFFL
+#define RLC_GPU_IOV_VIRT_RESET_REQ__RESERVED_MASK 0x7FFF0000L
+#define RLC_GPU_IOV_VIRT_RESET_REQ__SOFT_PF_FLR_MASK 0x80000000L
+//RLC_GPU_IOV_RLC_RESPONSE
+#define RLC_GPU_IOV_RLC_RESPONSE__RESP__SHIFT 0x0
+#define RLC_GPU_IOV_RLC_RESPONSE__RESP_MASK 0xFFFFFFFFL
+//RLC_GPU_IOV_INT_DISABLE
+#define RLC_GPU_IOV_INT_DISABLE__DISABLE__SHIFT 0x0
+#define RLC_GPU_IOV_INT_DISABLE__DISABLE_MASK 0xFFFFFFFFL
+//RLC_GPU_IOV_INT_FORCE
+#define RLC_GPU_IOV_INT_FORCE__FORCE__SHIFT 0x0
+#define RLC_GPU_IOV_INT_FORCE__FORCE_MASK 0xFFFFFFFFL
+//RLC_GPU_IOV_SDMA0_BUSY_STATUS
+#define RLC_GPU_IOV_SDMA0_BUSY_STATUS__VM_BUSY_STATUS__SHIFT 0x0
+#define RLC_GPU_IOV_SDMA0_BUSY_STATUS__VM_BUSY_STATUS_MASK 0xFFFFFFFFL
+//RLC_GPU_IOV_SDMA1_BUSY_STATUS
+#define RLC_GPU_IOV_SDMA1_BUSY_STATUS__VM_BUSY_STATUS__SHIFT 0x0
+#define RLC_GPU_IOV_SDMA1_BUSY_STATUS__VM_BUSY_STATUS_MASK 0xFFFFFFFFL
+//RLC_HYP_SEMAPHORE_2
+#define RLC_HYP_SEMAPHORE_2__CLIENT_ID__SHIFT 0x0
+#define RLC_HYP_SEMAPHORE_2__RESERVED__SHIFT 0x5
+#define RLC_HYP_SEMAPHORE_2__CLIENT_ID_MASK 0x0000001FL
+#define RLC_HYP_SEMAPHORE_2__RESERVED_MASK 0xFFFFFFE0L
+//RLC_HYP_SEMAPHORE_3
+#define RLC_HYP_SEMAPHORE_3__CLIENT_ID__SHIFT 0x0
+#define RLC_HYP_SEMAPHORE_3__RESERVED__SHIFT 0x5
+#define RLC_HYP_SEMAPHORE_3__CLIENT_ID_MASK 0x0000001FL
+#define RLC_HYP_SEMAPHORE_3__RESERVED_MASK 0xFFFFFFE0L
+//RLC_GPU_IOV_SDMA2_STATUS
+#define RLC_GPU_IOV_SDMA2_STATUS__PREEMPTED__SHIFT 0x0
+#define RLC_GPU_IOV_SDMA2_STATUS__RESERVED__SHIFT 0x1
+#define RLC_GPU_IOV_SDMA2_STATUS__SAVED__SHIFT 0x8
+#define RLC_GPU_IOV_SDMA2_STATUS__RESERVED1__SHIFT 0x9
+#define RLC_GPU_IOV_SDMA2_STATUS__RESTORED__SHIFT 0xc
+#define RLC_GPU_IOV_SDMA2_STATUS__RESERVED2__SHIFT 0xd
+#define RLC_GPU_IOV_SDMA2_STATUS__PREEMPTED_MASK 0x00000001L
+#define RLC_GPU_IOV_SDMA2_STATUS__RESERVED_MASK 0x000000FEL
+#define RLC_GPU_IOV_SDMA2_STATUS__SAVED_MASK 0x00000100L
+#define RLC_GPU_IOV_SDMA2_STATUS__RESERVED1_MASK 0x00000E00L
+#define RLC_GPU_IOV_SDMA2_STATUS__RESTORED_MASK 0x00001000L
+#define RLC_GPU_IOV_SDMA2_STATUS__RESERVED2_MASK 0xFFFFE000L
+//RLC_GPU_IOV_SDMA3_STATUS
+#define RLC_GPU_IOV_SDMA3_STATUS__PREEMPTED__SHIFT 0x0
+#define RLC_GPU_IOV_SDMA3_STATUS__RESERVED__SHIFT 0x1
+#define RLC_GPU_IOV_SDMA3_STATUS__SAVED__SHIFT 0x8
+#define RLC_GPU_IOV_SDMA3_STATUS__RESERVED1__SHIFT 0x9
+#define RLC_GPU_IOV_SDMA3_STATUS__RESTORED__SHIFT 0xc
+#define RLC_GPU_IOV_SDMA3_STATUS__RESERVED2__SHIFT 0xd
+#define RLC_GPU_IOV_SDMA3_STATUS__PREEMPTED_MASK 0x00000001L
+#define RLC_GPU_IOV_SDMA3_STATUS__RESERVED_MASK 0x000000FEL
+#define RLC_GPU_IOV_SDMA3_STATUS__SAVED_MASK 0x00000100L
+#define RLC_GPU_IOV_SDMA3_STATUS__RESERVED1_MASK 0x00000E00L
+#define RLC_GPU_IOV_SDMA3_STATUS__RESTORED_MASK 0x00001000L
+#define RLC_GPU_IOV_SDMA3_STATUS__RESERVED2_MASK 0xFFFFE000L
+//RLC_GPU_IOV_SDMA4_STATUS
+#define RLC_GPU_IOV_SDMA4_STATUS__PREEMPTED__SHIFT 0x0
+#define RLC_GPU_IOV_SDMA4_STATUS__RESERVED__SHIFT 0x1
+#define RLC_GPU_IOV_SDMA4_STATUS__SAVED__SHIFT 0x8
+#define RLC_GPU_IOV_SDMA4_STATUS__RESERVED1__SHIFT 0x9
+#define RLC_GPU_IOV_SDMA4_STATUS__RESTORED__SHIFT 0xc
+#define RLC_GPU_IOV_SDMA4_STATUS__RESERVED2__SHIFT 0xd
+#define RLC_GPU_IOV_SDMA4_STATUS__PREEMPTED_MASK 0x00000001L
+#define RLC_GPU_IOV_SDMA4_STATUS__RESERVED_MASK 0x000000FEL
+#define RLC_GPU_IOV_SDMA4_STATUS__SAVED_MASK 0x00000100L
+#define RLC_GPU_IOV_SDMA4_STATUS__RESERVED1_MASK 0x00000E00L
+#define RLC_GPU_IOV_SDMA4_STATUS__RESTORED_MASK 0x00001000L
+#define RLC_GPU_IOV_SDMA4_STATUS__RESERVED2_MASK 0xFFFFE000L
+//RLC_GPU_IOV_SDMA5_STATUS
+#define RLC_GPU_IOV_SDMA5_STATUS__PREEMPTED__SHIFT 0x0
+#define RLC_GPU_IOV_SDMA5_STATUS__RESERVED__SHIFT 0x1
+#define RLC_GPU_IOV_SDMA5_STATUS__SAVED__SHIFT 0x8
+#define RLC_GPU_IOV_SDMA5_STATUS__RESERVED1__SHIFT 0x9
+#define RLC_GPU_IOV_SDMA5_STATUS__RESTORED__SHIFT 0xc
+#define RLC_GPU_IOV_SDMA5_STATUS__RESERVED2__SHIFT 0xd
+#define RLC_GPU_IOV_SDMA5_STATUS__PREEMPTED_MASK 0x00000001L
+#define RLC_GPU_IOV_SDMA5_STATUS__RESERVED_MASK 0x000000FEL
+#define RLC_GPU_IOV_SDMA5_STATUS__SAVED_MASK 0x00000100L
+#define RLC_GPU_IOV_SDMA5_STATUS__RESERVED1_MASK 0x00000E00L
+#define RLC_GPU_IOV_SDMA5_STATUS__RESTORED_MASK 0x00001000L
+#define RLC_GPU_IOV_SDMA5_STATUS__RESERVED2_MASK 0xFFFFE000L
+//RLC_GPU_IOV_SDMA6_STATUS
+#define RLC_GPU_IOV_SDMA6_STATUS__PREEMPTED__SHIFT 0x0
+#define RLC_GPU_IOV_SDMA6_STATUS__RESERVED__SHIFT 0x1
+#define RLC_GPU_IOV_SDMA6_STATUS__SAVED__SHIFT 0x8
+#define RLC_GPU_IOV_SDMA6_STATUS__RESERVED1__SHIFT 0x9
+#define RLC_GPU_IOV_SDMA6_STATUS__RESTORED__SHIFT 0xc
+#define RLC_GPU_IOV_SDMA6_STATUS__RESERVED2__SHIFT 0xd
+#define RLC_GPU_IOV_SDMA6_STATUS__PREEMPTED_MASK 0x00000001L
+#define RLC_GPU_IOV_SDMA6_STATUS__RESERVED_MASK 0x000000FEL
+#define RLC_GPU_IOV_SDMA6_STATUS__SAVED_MASK 0x00000100L
+#define RLC_GPU_IOV_SDMA6_STATUS__RESERVED1_MASK 0x00000E00L
+#define RLC_GPU_IOV_SDMA6_STATUS__RESTORED_MASK 0x00001000L
+#define RLC_GPU_IOV_SDMA6_STATUS__RESERVED2_MASK 0xFFFFE000L
+//RLC_GPU_IOV_SDMA7_STATUS
+#define RLC_GPU_IOV_SDMA7_STATUS__PREEMPTED__SHIFT 0x0
+#define RLC_GPU_IOV_SDMA7_STATUS__RESERVED__SHIFT 0x1
+#define RLC_GPU_IOV_SDMA7_STATUS__SAVED__SHIFT 0x8
+#define RLC_GPU_IOV_SDMA7_STATUS__RESERVED1__SHIFT 0x9
+#define RLC_GPU_IOV_SDMA7_STATUS__RESTORED__SHIFT 0xc
+#define RLC_GPU_IOV_SDMA7_STATUS__RESERVED2__SHIFT 0xd
+#define RLC_GPU_IOV_SDMA7_STATUS__PREEMPTED_MASK 0x00000001L
+#define RLC_GPU_IOV_SDMA7_STATUS__RESERVED_MASK 0x000000FEL
+#define RLC_GPU_IOV_SDMA7_STATUS__SAVED_MASK 0x00000100L
+#define RLC_GPU_IOV_SDMA7_STATUS__RESERVED1_MASK 0x00000E00L
+#define RLC_GPU_IOV_SDMA7_STATUS__RESTORED_MASK 0x00001000L
+#define RLC_GPU_IOV_SDMA7_STATUS__RESERVED2_MASK 0xFFFFE000L
+//RLC_GPU_IOV_SDMA2_BUSY_STATUS
+#define RLC_GPU_IOV_SDMA2_BUSY_STATUS__VM_BUSY_STATUS__SHIFT 0x0
+#define RLC_GPU_IOV_SDMA2_BUSY_STATUS__VM_BUSY_STATUS_MASK 0xFFFFFFFFL
+//RLC_GPU_IOV_SDMA3_BUSY_STATUS
+#define RLC_GPU_IOV_SDMA3_BUSY_STATUS__VM_BUSY_STATUS__SHIFT 0x0
+#define RLC_GPU_IOV_SDMA3_BUSY_STATUS__VM_BUSY_STATUS_MASK 0xFFFFFFFFL
+//RLC_GPU_IOV_SDMA4_BUSY_STATUS
+#define RLC_GPU_IOV_SDMA4_BUSY_STATUS__VM_BUSY_STATUS__SHIFT 0x0
+#define RLC_GPU_IOV_SDMA4_BUSY_STATUS__VM_BUSY_STATUS_MASK 0xFFFFFFFFL
+//RLC_GPU_IOV_SDMA5_BUSY_STATUS
+#define RLC_GPU_IOV_SDMA5_BUSY_STATUS__VM_BUSY_STATUS__SHIFT 0x0
+#define RLC_GPU_IOV_SDMA5_BUSY_STATUS__VM_BUSY_STATUS_MASK 0xFFFFFFFFL
+//RLC_GPU_IOV_SDMA6_BUSY_STATUS
+#define RLC_GPU_IOV_SDMA6_BUSY_STATUS__VM_BUSY_STATUS__SHIFT 0x0
+#define RLC_GPU_IOV_SDMA6_BUSY_STATUS__VM_BUSY_STATUS_MASK 0xFFFFFFFFL
+//RLC_GPU_IOV_SDMA7_BUSY_STATUS
+#define RLC_GPU_IOV_SDMA7_BUSY_STATUS__VM_BUSY_STATUS__SHIFT 0x0
+#define RLC_GPU_IOV_SDMA7_BUSY_STATUS__VM_BUSY_STATUS_MASK 0xFFFFFFFFL
+
+
+// addressBlock: xcd0_gc_utcl2_vmsharedhvdec
+//MC_VM_FB_SIZE_OFFSET_VF0
+#define MC_VM_FB_SIZE_OFFSET_VF0__VF_FB_SIZE__SHIFT 0x0
+#define MC_VM_FB_SIZE_OFFSET_VF0__VF_FB_OFFSET__SHIFT 0x10
+#define MC_VM_FB_SIZE_OFFSET_VF0__VF_FB_SIZE_MASK 0x0000FFFFL
+#define MC_VM_FB_SIZE_OFFSET_VF0__VF_FB_OFFSET_MASK 0xFFFF0000L
+//MC_VM_FB_SIZE_OFFSET_VF1
+#define MC_VM_FB_SIZE_OFFSET_VF1__VF_FB_SIZE__SHIFT 0x0
+#define MC_VM_FB_SIZE_OFFSET_VF1__VF_FB_OFFSET__SHIFT 0x10
+#define MC_VM_FB_SIZE_OFFSET_VF1__VF_FB_SIZE_MASK 0x0000FFFFL
+#define MC_VM_FB_SIZE_OFFSET_VF1__VF_FB_OFFSET_MASK 0xFFFF0000L
+//MC_VM_FB_SIZE_OFFSET_VF2
+#define MC_VM_FB_SIZE_OFFSET_VF2__VF_FB_SIZE__SHIFT 0x0
+#define MC_VM_FB_SIZE_OFFSET_VF2__VF_FB_OFFSET__SHIFT 0x10
+#define MC_VM_FB_SIZE_OFFSET_VF2__VF_FB_SIZE_MASK 0x0000FFFFL
+#define MC_VM_FB_SIZE_OFFSET_VF2__VF_FB_OFFSET_MASK 0xFFFF0000L
+//MC_VM_FB_SIZE_OFFSET_VF3
+#define MC_VM_FB_SIZE_OFFSET_VF3__VF_FB_SIZE__SHIFT 0x0
+#define MC_VM_FB_SIZE_OFFSET_VF3__VF_FB_OFFSET__SHIFT 0x10
+#define MC_VM_FB_SIZE_OFFSET_VF3__VF_FB_SIZE_MASK 0x0000FFFFL
+#define MC_VM_FB_SIZE_OFFSET_VF3__VF_FB_OFFSET_MASK 0xFFFF0000L
+//MC_VM_FB_SIZE_OFFSET_VF4
+#define MC_VM_FB_SIZE_OFFSET_VF4__VF_FB_SIZE__SHIFT 0x0
+#define MC_VM_FB_SIZE_OFFSET_VF4__VF_FB_OFFSET__SHIFT 0x10
+#define MC_VM_FB_SIZE_OFFSET_VF4__VF_FB_SIZE_MASK 0x0000FFFFL
+#define MC_VM_FB_SIZE_OFFSET_VF4__VF_FB_OFFSET_MASK 0xFFFF0000L
+//MC_VM_FB_SIZE_OFFSET_VF5
+#define MC_VM_FB_SIZE_OFFSET_VF5__VF_FB_SIZE__SHIFT 0x0
+#define MC_VM_FB_SIZE_OFFSET_VF5__VF_FB_OFFSET__SHIFT 0x10
+#define MC_VM_FB_SIZE_OFFSET_VF5__VF_FB_SIZE_MASK 0x0000FFFFL
+#define MC_VM_FB_SIZE_OFFSET_VF5__VF_FB_OFFSET_MASK 0xFFFF0000L
+//MC_VM_FB_SIZE_OFFSET_VF6
+#define MC_VM_FB_SIZE_OFFSET_VF6__VF_FB_SIZE__SHIFT 0x0
+#define MC_VM_FB_SIZE_OFFSET_VF6__VF_FB_OFFSET__SHIFT 0x10
+#define MC_VM_FB_SIZE_OFFSET_VF6__VF_FB_SIZE_MASK 0x0000FFFFL
+#define MC_VM_FB_SIZE_OFFSET_VF6__VF_FB_OFFSET_MASK 0xFFFF0000L
+//MC_VM_FB_SIZE_OFFSET_VF7
+#define MC_VM_FB_SIZE_OFFSET_VF7__VF_FB_SIZE__SHIFT 0x0
+#define MC_VM_FB_SIZE_OFFSET_VF7__VF_FB_OFFSET__SHIFT 0x10
+#define MC_VM_FB_SIZE_OFFSET_VF7__VF_FB_SIZE_MASK 0x0000FFFFL
+#define MC_VM_FB_SIZE_OFFSET_VF7__VF_FB_OFFSET_MASK 0xFFFF0000L
+//MC_VM_FB_SIZE_OFFSET_VF8
+#define MC_VM_FB_SIZE_OFFSET_VF8__VF_FB_SIZE__SHIFT 0x0
+#define MC_VM_FB_SIZE_OFFSET_VF8__VF_FB_OFFSET__SHIFT 0x10
+#define MC_VM_FB_SIZE_OFFSET_VF8__VF_FB_SIZE_MASK 0x0000FFFFL
+#define MC_VM_FB_SIZE_OFFSET_VF8__VF_FB_OFFSET_MASK 0xFFFF0000L
+//MC_VM_FB_SIZE_OFFSET_VF9
+#define MC_VM_FB_SIZE_OFFSET_VF9__VF_FB_SIZE__SHIFT 0x0
+#define MC_VM_FB_SIZE_OFFSET_VF9__VF_FB_OFFSET__SHIFT 0x10
+#define MC_VM_FB_SIZE_OFFSET_VF9__VF_FB_SIZE_MASK 0x0000FFFFL
+#define MC_VM_FB_SIZE_OFFSET_VF9__VF_FB_OFFSET_MASK 0xFFFF0000L
+//MC_VM_FB_SIZE_OFFSET_VF10
+#define MC_VM_FB_SIZE_OFFSET_VF10__VF_FB_SIZE__SHIFT 0x0
+#define MC_VM_FB_SIZE_OFFSET_VF10__VF_FB_OFFSET__SHIFT 0x10
+#define MC_VM_FB_SIZE_OFFSET_VF10__VF_FB_SIZE_MASK 0x0000FFFFL
+#define MC_VM_FB_SIZE_OFFSET_VF10__VF_FB_OFFSET_MASK 0xFFFF0000L
+//MC_VM_FB_SIZE_OFFSET_VF11
+#define MC_VM_FB_SIZE_OFFSET_VF11__VF_FB_SIZE__SHIFT 0x0
+#define MC_VM_FB_SIZE_OFFSET_VF11__VF_FB_OFFSET__SHIFT 0x10
+#define MC_VM_FB_SIZE_OFFSET_VF11__VF_FB_SIZE_MASK 0x0000FFFFL
+#define MC_VM_FB_SIZE_OFFSET_VF11__VF_FB_OFFSET_MASK 0xFFFF0000L
+//MC_VM_FB_SIZE_OFFSET_VF12
+#define MC_VM_FB_SIZE_OFFSET_VF12__VF_FB_SIZE__SHIFT 0x0
+#define MC_VM_FB_SIZE_OFFSET_VF12__VF_FB_OFFSET__SHIFT 0x10
+#define MC_VM_FB_SIZE_OFFSET_VF12__VF_FB_SIZE_MASK 0x0000FFFFL
+#define MC_VM_FB_SIZE_OFFSET_VF12__VF_FB_OFFSET_MASK 0xFFFF0000L
+//MC_VM_FB_SIZE_OFFSET_VF13
+#define MC_VM_FB_SIZE_OFFSET_VF13__VF_FB_SIZE__SHIFT 0x0
+#define MC_VM_FB_SIZE_OFFSET_VF13__VF_FB_OFFSET__SHIFT 0x10
+#define MC_VM_FB_SIZE_OFFSET_VF13__VF_FB_SIZE_MASK 0x0000FFFFL
+#define MC_VM_FB_SIZE_OFFSET_VF13__VF_FB_OFFSET_MASK 0xFFFF0000L
+//MC_VM_FB_SIZE_OFFSET_VF14
+#define MC_VM_FB_SIZE_OFFSET_VF14__VF_FB_SIZE__SHIFT 0x0
+#define MC_VM_FB_SIZE_OFFSET_VF14__VF_FB_OFFSET__SHIFT 0x10
+#define MC_VM_FB_SIZE_OFFSET_VF14__VF_FB_SIZE_MASK 0x0000FFFFL
+#define MC_VM_FB_SIZE_OFFSET_VF14__VF_FB_OFFSET_MASK 0xFFFF0000L
+//MC_VM_FB_SIZE_OFFSET_VF15
+#define MC_VM_FB_SIZE_OFFSET_VF15__VF_FB_SIZE__SHIFT 0x0
+#define MC_VM_FB_SIZE_OFFSET_VF15__VF_FB_OFFSET__SHIFT 0x10
+#define MC_VM_FB_SIZE_OFFSET_VF15__VF_FB_SIZE_MASK 0x0000FFFFL
+#define MC_VM_FB_SIZE_OFFSET_VF15__VF_FB_OFFSET_MASK 0xFFFF0000L
+//VM_IOMMU_MMIO_CNTRL_1
+#define VM_IOMMU_MMIO_CNTRL_1__MARC_EN__SHIFT 0x8
+#define VM_IOMMU_MMIO_CNTRL_1__MARC_EN_MASK 0x00000100L
+//MC_VM_MARC_BASE_LO_0
+#define MC_VM_MARC_BASE_LO_0__MARC_BASE_LO_0__SHIFT 0xc
+#define MC_VM_MARC_BASE_LO_0__MARC_BASE_LO_0_MASK 0xFFFFF000L
+//MC_VM_MARC_BASE_LO_1
+#define MC_VM_MARC_BASE_LO_1__MARC_BASE_LO_1__SHIFT 0xc
+#define MC_VM_MARC_BASE_LO_1__MARC_BASE_LO_1_MASK 0xFFFFF000L
+//MC_VM_MARC_BASE_LO_2
+#define MC_VM_MARC_BASE_LO_2__MARC_BASE_LO_2__SHIFT 0xc
+#define MC_VM_MARC_BASE_LO_2__MARC_BASE_LO_2_MASK 0xFFFFF000L
+//MC_VM_MARC_BASE_LO_3
+#define MC_VM_MARC_BASE_LO_3__MARC_BASE_LO_3__SHIFT 0xc
+#define MC_VM_MARC_BASE_LO_3__MARC_BASE_LO_3_MASK 0xFFFFF000L
+//MC_VM_MARC_BASE_HI_0
+#define MC_VM_MARC_BASE_HI_0__MARC_BASE_HI_0__SHIFT 0x0
+#define MC_VM_MARC_BASE_HI_0__MARC_BASE_HI_0_MASK 0x000FFFFFL
+//MC_VM_MARC_BASE_HI_1
+#define MC_VM_MARC_BASE_HI_1__MARC_BASE_HI_1__SHIFT 0x0
+#define MC_VM_MARC_BASE_HI_1__MARC_BASE_HI_1_MASK 0x000FFFFFL
+//MC_VM_MARC_BASE_HI_2
+#define MC_VM_MARC_BASE_HI_2__MARC_BASE_HI_2__SHIFT 0x0
+#define MC_VM_MARC_BASE_HI_2__MARC_BASE_HI_2_MASK 0x000FFFFFL
+//MC_VM_MARC_BASE_HI_3
+#define MC_VM_MARC_BASE_HI_3__MARC_BASE_HI_3__SHIFT 0x0
+#define MC_VM_MARC_BASE_HI_3__MARC_BASE_HI_3_MASK 0x000FFFFFL
+//MC_VM_MARC_RELOC_LO_0
+#define MC_VM_MARC_RELOC_LO_0__MARC_ENABLE_0__SHIFT 0x0
+#define MC_VM_MARC_RELOC_LO_0__MARC_READONLY_0__SHIFT 0x1
+#define MC_VM_MARC_RELOC_LO_0__MARC_RELOC_LO_0__SHIFT 0xc
+#define MC_VM_MARC_RELOC_LO_0__MARC_ENABLE_0_MASK 0x00000001L
+#define MC_VM_MARC_RELOC_LO_0__MARC_READONLY_0_MASK 0x00000002L
+#define MC_VM_MARC_RELOC_LO_0__MARC_RELOC_LO_0_MASK 0xFFFFF000L
+//MC_VM_MARC_RELOC_LO_1
+#define MC_VM_MARC_RELOC_LO_1__MARC_ENABLE_1__SHIFT 0x0
+#define MC_VM_MARC_RELOC_LO_1__MARC_READONLY_1__SHIFT 0x1
+#define MC_VM_MARC_RELOC_LO_1__MARC_RELOC_LO_1__SHIFT 0xc
+#define MC_VM_MARC_RELOC_LO_1__MARC_ENABLE_1_MASK 0x00000001L
+#define MC_VM_MARC_RELOC_LO_1__MARC_READONLY_1_MASK 0x00000002L
+#define MC_VM_MARC_RELOC_LO_1__MARC_RELOC_LO_1_MASK 0xFFFFF000L
+//MC_VM_MARC_RELOC_LO_2
+#define MC_VM_MARC_RELOC_LO_2__MARC_ENABLE_2__SHIFT 0x0
+#define MC_VM_MARC_RELOC_LO_2__MARC_READONLY_2__SHIFT 0x1
+#define MC_VM_MARC_RELOC_LO_2__MARC_RELOC_LO_2__SHIFT 0xc
+#define MC_VM_MARC_RELOC_LO_2__MARC_ENABLE_2_MASK 0x00000001L
+#define MC_VM_MARC_RELOC_LO_2__MARC_READONLY_2_MASK 0x00000002L
+#define MC_VM_MARC_RELOC_LO_2__MARC_RELOC_LO_2_MASK 0xFFFFF000L
+//MC_VM_MARC_RELOC_LO_3
+#define MC_VM_MARC_RELOC_LO_3__MARC_ENABLE_3__SHIFT 0x0
+#define MC_VM_MARC_RELOC_LO_3__MARC_READONLY_3__SHIFT 0x1
+#define MC_VM_MARC_RELOC_LO_3__MARC_RELOC_LO_3__SHIFT 0xc
+#define MC_VM_MARC_RELOC_LO_3__MARC_ENABLE_3_MASK 0x00000001L
+#define MC_VM_MARC_RELOC_LO_3__MARC_READONLY_3_MASK 0x00000002L
+#define MC_VM_MARC_RELOC_LO_3__MARC_RELOC_LO_3_MASK 0xFFFFF000L
+//MC_VM_MARC_RELOC_HI_0
+#define MC_VM_MARC_RELOC_HI_0__MARC_RELOC_HI_0__SHIFT 0x0
+#define MC_VM_MARC_RELOC_HI_0__MARC_RELOC_HI_0_MASK 0x000FFFFFL
+//MC_VM_MARC_RELOC_HI_1
+#define MC_VM_MARC_RELOC_HI_1__MARC_RELOC_HI_1__SHIFT 0x0
+#define MC_VM_MARC_RELOC_HI_1__MARC_RELOC_HI_1_MASK 0x000FFFFFL
+//MC_VM_MARC_RELOC_HI_2
+#define MC_VM_MARC_RELOC_HI_2__MARC_RELOC_HI_2__SHIFT 0x0
+#define MC_VM_MARC_RELOC_HI_2__MARC_RELOC_HI_2_MASK 0x000FFFFFL
+//MC_VM_MARC_RELOC_HI_3
+#define MC_VM_MARC_RELOC_HI_3__MARC_RELOC_HI_3__SHIFT 0x0
+#define MC_VM_MARC_RELOC_HI_3__MARC_RELOC_HI_3_MASK 0x000FFFFFL
+//MC_VM_MARC_LEN_LO_0
+#define MC_VM_MARC_LEN_LO_0__MARC_LEN_LO_0__SHIFT 0xc
+#define MC_VM_MARC_LEN_LO_0__MARC_LEN_LO_0_MASK 0xFFFFF000L
+//MC_VM_MARC_LEN_LO_1
+#define MC_VM_MARC_LEN_LO_1__MARC_LEN_LO_1__SHIFT 0xc
+#define MC_VM_MARC_LEN_LO_1__MARC_LEN_LO_1_MASK 0xFFFFF000L
+//MC_VM_MARC_LEN_LO_2
+#define MC_VM_MARC_LEN_LO_2__MARC_LEN_LO_2__SHIFT 0xc
+#define MC_VM_MARC_LEN_LO_2__MARC_LEN_LO_2_MASK 0xFFFFF000L
+//MC_VM_MARC_LEN_LO_3
+#define MC_VM_MARC_LEN_LO_3__MARC_LEN_LO_3__SHIFT 0xc
+#define MC_VM_MARC_LEN_LO_3__MARC_LEN_LO_3_MASK 0xFFFFF000L
+//MC_VM_MARC_LEN_HI_0
+#define MC_VM_MARC_LEN_HI_0__MARC_LEN_HI_0__SHIFT 0x0
+#define MC_VM_MARC_LEN_HI_0__MARC_LEN_HI_0_MASK 0x000FFFFFL
+//MC_VM_MARC_LEN_HI_1
+#define MC_VM_MARC_LEN_HI_1__MARC_LEN_HI_1__SHIFT 0x0
+#define MC_VM_MARC_LEN_HI_1__MARC_LEN_HI_1_MASK 0x000FFFFFL
+//MC_VM_MARC_LEN_HI_2
+#define MC_VM_MARC_LEN_HI_2__MARC_LEN_HI_2__SHIFT 0x0
+#define MC_VM_MARC_LEN_HI_2__MARC_LEN_HI_2_MASK 0x000FFFFFL
+//MC_VM_MARC_LEN_HI_3
+#define MC_VM_MARC_LEN_HI_3__MARC_LEN_HI_3__SHIFT 0x0
+#define MC_VM_MARC_LEN_HI_3__MARC_LEN_HI_3_MASK 0x000FFFFFL
+//VM_IOMMU_CONTROL_REGISTER
+#define VM_IOMMU_CONTROL_REGISTER__IOMMUEN__SHIFT 0x0
+#define VM_IOMMU_CONTROL_REGISTER__IOMMUEN_MASK 0x00000001L
+//VM_IOMMU_PERFORMANCE_OPTIMIZATION_CONTROL_REGISTER
+#define VM_IOMMU_PERFORMANCE_OPTIMIZATION_CONTROL_REGISTER__PERFOPTEN__SHIFT 0xd
+#define VM_IOMMU_PERFORMANCE_OPTIMIZATION_CONTROL_REGISTER__PERFOPTEN_MASK 0x00002000L
+//VM_PCIE_ATS_CNTL
+#define VM_PCIE_ATS_CNTL__STU__SHIFT 0x10
+#define VM_PCIE_ATS_CNTL__ATC_ENABLE__SHIFT 0x1f
+#define VM_PCIE_ATS_CNTL__STU_MASK 0x001F0000L
+#define VM_PCIE_ATS_CNTL__ATC_ENABLE_MASK 0x80000000L
+//VM_PCIE_ATS_CNTL_VF_0
+#define VM_PCIE_ATS_CNTL_VF_0__ATC_ENABLE__SHIFT 0x1f
+#define VM_PCIE_ATS_CNTL_VF_0__ATC_ENABLE_MASK 0x80000000L
+//VM_PCIE_ATS_CNTL_VF_1
+#define VM_PCIE_ATS_CNTL_VF_1__ATC_ENABLE__SHIFT 0x1f
+#define VM_PCIE_ATS_CNTL_VF_1__ATC_ENABLE_MASK 0x80000000L
+//VM_PCIE_ATS_CNTL_VF_2
+#define VM_PCIE_ATS_CNTL_VF_2__ATC_ENABLE__SHIFT 0x1f
+#define VM_PCIE_ATS_CNTL_VF_2__ATC_ENABLE_MASK 0x80000000L
+//VM_PCIE_ATS_CNTL_VF_3
+#define VM_PCIE_ATS_CNTL_VF_3__ATC_ENABLE__SHIFT 0x1f
+#define VM_PCIE_ATS_CNTL_VF_3__ATC_ENABLE_MASK 0x80000000L
+//VM_PCIE_ATS_CNTL_VF_4
+#define VM_PCIE_ATS_CNTL_VF_4__ATC_ENABLE__SHIFT 0x1f
+#define VM_PCIE_ATS_CNTL_VF_4__ATC_ENABLE_MASK 0x80000000L
+//VM_PCIE_ATS_CNTL_VF_5
+#define VM_PCIE_ATS_CNTL_VF_5__ATC_ENABLE__SHIFT 0x1f
+#define VM_PCIE_ATS_CNTL_VF_5__ATC_ENABLE_MASK 0x80000000L
+//VM_PCIE_ATS_CNTL_VF_6
+#define VM_PCIE_ATS_CNTL_VF_6__ATC_ENABLE__SHIFT 0x1f
+#define VM_PCIE_ATS_CNTL_VF_6__ATC_ENABLE_MASK 0x80000000L
+//VM_PCIE_ATS_CNTL_VF_7
+#define VM_PCIE_ATS_CNTL_VF_7__ATC_ENABLE__SHIFT 0x1f
+#define VM_PCIE_ATS_CNTL_VF_7__ATC_ENABLE_MASK 0x80000000L
+//VM_PCIE_ATS_CNTL_VF_8
+#define VM_PCIE_ATS_CNTL_VF_8__ATC_ENABLE__SHIFT 0x1f
+#define VM_PCIE_ATS_CNTL_VF_8__ATC_ENABLE_MASK 0x80000000L
+//VM_PCIE_ATS_CNTL_VF_9
+#define VM_PCIE_ATS_CNTL_VF_9__ATC_ENABLE__SHIFT 0x1f
+#define VM_PCIE_ATS_CNTL_VF_9__ATC_ENABLE_MASK 0x80000000L
+//VM_PCIE_ATS_CNTL_VF_10
+#define VM_PCIE_ATS_CNTL_VF_10__ATC_ENABLE__SHIFT 0x1f
+#define VM_PCIE_ATS_CNTL_VF_10__ATC_ENABLE_MASK 0x80000000L
+//VM_PCIE_ATS_CNTL_VF_11
+#define VM_PCIE_ATS_CNTL_VF_11__ATC_ENABLE__SHIFT 0x1f
+#define VM_PCIE_ATS_CNTL_VF_11__ATC_ENABLE_MASK 0x80000000L
+//VM_PCIE_ATS_CNTL_VF_12
+#define VM_PCIE_ATS_CNTL_VF_12__ATC_ENABLE__SHIFT 0x1f
+#define VM_PCIE_ATS_CNTL_VF_12__ATC_ENABLE_MASK 0x80000000L
+//VM_PCIE_ATS_CNTL_VF_13
+#define VM_PCIE_ATS_CNTL_VF_13__ATC_ENABLE__SHIFT 0x1f
+#define VM_PCIE_ATS_CNTL_VF_13__ATC_ENABLE_MASK 0x80000000L
+//VM_PCIE_ATS_CNTL_VF_14
+#define VM_PCIE_ATS_CNTL_VF_14__ATC_ENABLE__SHIFT 0x1f
+#define VM_PCIE_ATS_CNTL_VF_14__ATC_ENABLE_MASK 0x80000000L
+//VM_PCIE_ATS_CNTL_VF_15
+#define VM_PCIE_ATS_CNTL_VF_15__ATC_ENABLE__SHIFT 0x1f
+#define VM_PCIE_ATS_CNTL_VF_15__ATC_ENABLE_MASK 0x80000000L
+//MC_SHARED_ACTIVE_FCN_ID
+#define MC_SHARED_ACTIVE_FCN_ID__VFID__SHIFT 0x0
+#define MC_SHARED_ACTIVE_FCN_ID__VF__SHIFT 0x1f
+#define MC_SHARED_ACTIVE_FCN_ID__VFID_MASK 0x0000000FL
+#define MC_SHARED_ACTIVE_FCN_ID__VF_MASK 0x80000000L
+//MC_VM_XGMI_GPUIOV_ENABLE
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF0__SHIFT 0x0
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF1__SHIFT 0x1
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF2__SHIFT 0x2
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF3__SHIFT 0x3
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF4__SHIFT 0x4
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF5__SHIFT 0x5
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF6__SHIFT 0x6
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF7__SHIFT 0x7
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF8__SHIFT 0x8
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF9__SHIFT 0x9
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF10__SHIFT 0xa
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF11__SHIFT 0xb
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF12__SHIFT 0xc
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF13__SHIFT 0xd
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF14__SHIFT 0xe
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF15__SHIFT 0xf
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_PF__SHIFT 0x1f
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF0_MASK 0x00000001L
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF1_MASK 0x00000002L
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF2_MASK 0x00000004L
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF3_MASK 0x00000008L
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF4_MASK 0x00000010L
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF5_MASK 0x00000020L
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF6_MASK 0x00000040L
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF7_MASK 0x00000080L
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF8_MASK 0x00000100L
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF9_MASK 0x00000200L
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF10_MASK 0x00000400L
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF11_MASK 0x00000800L
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF12_MASK 0x00001000L
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF13_MASK 0x00002000L
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF14_MASK 0x00004000L
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF15_MASK 0x00008000L
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_PF_MASK 0x80000000L
+
+
+// addressBlock: xcd0_gc_pspdec
+//CPG_PSP_DEBUG
+#define CPG_PSP_DEBUG__PRIV_VIOLATION_CNTL__SHIFT 0x0
+#define CPG_PSP_DEBUG__VMID_VIOLATION_CNTL__SHIFT 0x2
+#define CPG_PSP_DEBUG__PRIV_VIOLATION_CNTL_MASK 0x00000003L
+#define CPG_PSP_DEBUG__VMID_VIOLATION_CNTL_MASK 0x00000004L
+//CPC_PSP_DEBUG
+#define CPC_PSP_DEBUG__PRIV_VIOLATION_CNTL__SHIFT 0x0
+#define CPC_PSP_DEBUG__VMID_VIOLATION_CNTL__SHIFT 0x2
+#define CPC_PSP_DEBUG__UTCL2IUGPAOVERRIDE__SHIFT 0x3
+#define CPC_PSP_DEBUG__CPC_DC_FIX_DISABLE__SHIFT 0x4
+#define CPC_PSP_DEBUG__PRIV_VIOLATION_CNTL_MASK 0x00000003L
+#define CPC_PSP_DEBUG__VMID_VIOLATION_CNTL_MASK 0x00000004L
+#define CPC_PSP_DEBUG__UTCL2IUGPAOVERRIDE_MASK 0x00000008L
+#define CPC_PSP_DEBUG__CPC_DC_FIX_DISABLE_MASK 0x00000010L
+//CP_PSP_XCP_CTL
+#define CP_PSP_XCP_CTL__PHYSICAL_XCC_ID__SHIFT 0x0
+#define CP_PSP_XCP_CTL__XCC_DIE_ID__SHIFT 0x3
+#define CP_PSP_XCP_CTL__PHYSICAL_XCC_ID_MASK 0x00000007L
+#define CP_PSP_XCP_CTL__XCC_DIE_ID_MASK 0x00000038L
+//GRBM_SEC_CNTL
+#define GRBM_SEC_CNTL__DEBUG_ENABLE__SHIFT 0x0
+#define GRBM_SEC_CNTL__DEBUG_ENABLE_MASK 0x00000001L
+//GRBM_IOV_ERROR_FIFO_DATA
+#define GRBM_IOV_ERROR_FIFO_DATA__IOV_ADDR__SHIFT 0x0
+#define GRBM_IOV_ERROR_FIFO_DATA__IOV_VFID__SHIFT 0x12
+#define GRBM_IOV_ERROR_FIFO_DATA__IOV_SSRCID__SHIFT 0x18
+#define GRBM_IOV_ERROR_FIFO_DATA__IOV_OP__SHIFT 0x1c
+#define GRBM_IOV_ERROR_FIFO_DATA__IOV_VF__SHIFT 0x1d
+#define GRBM_IOV_ERROR_FIFO_DATA__IOV_OVERFLOW__SHIFT 0x1e
+#define GRBM_IOV_ERROR_FIFO_DATA__IOV_READ_VALID__SHIFT 0x1f
+#define GRBM_IOV_ERROR_FIFO_DATA__IOV_ADDR_MASK 0x0003FFFFL
+#define GRBM_IOV_ERROR_FIFO_DATA__IOV_VFID_MASK 0x00FC0000L
+#define GRBM_IOV_ERROR_FIFO_DATA__IOV_SSRCID_MASK 0x0F000000L
+#define GRBM_IOV_ERROR_FIFO_DATA__IOV_OP_MASK 0x10000000L
+#define GRBM_IOV_ERROR_FIFO_DATA__IOV_VF_MASK 0x20000000L
+#define GRBM_IOV_ERROR_FIFO_DATA__IOV_OVERFLOW_MASK 0x40000000L
+#define GRBM_IOV_ERROR_FIFO_DATA__IOV_READ_VALID_MASK 0x80000000L
+//GRBM_DSM_BYPASS
+#define GRBM_DSM_BYPASS__BYPASS_BITS__SHIFT 0x0
+#define GRBM_DSM_BYPASS__BYPASS_EN__SHIFT 0x2
+#define GRBM_DSM_BYPASS__BYPASS_BITS_MASK 0x00000003L
+#define GRBM_DSM_BYPASS__BYPASS_EN_MASK 0x00000004L
+//GRBM_CAM_INDEX
+#define GRBM_CAM_INDEX__CAM_INDEX__SHIFT 0x0
+#define GRBM_CAM_INDEX__CAM_INDEX_MASK 0x00000007L
+//GRBM_HYP_CAM_INDEX
+#define GRBM_HYP_CAM_INDEX__CAM_INDEX__SHIFT 0x0
+#define GRBM_HYP_CAM_INDEX__CAM_INDEX_MASK 0x00000007L
+//GRBM_CAM_DATA
+#define GRBM_CAM_DATA__CAM_ADDR__SHIFT 0x0
+#define GRBM_CAM_DATA__CAM_REMAPADDR__SHIFT 0x10
+#define GRBM_CAM_DATA__CAM_ADDR_MASK 0x0000FFFFL
+#define GRBM_CAM_DATA__CAM_REMAPADDR_MASK 0xFFFF0000L
+//GRBM_HYP_CAM_DATA
+#define GRBM_HYP_CAM_DATA__CAM_ADDR__SHIFT 0x0
+#define GRBM_HYP_CAM_DATA__CAM_REMAPADDR__SHIFT 0x10
+#define GRBM_HYP_CAM_DATA__CAM_ADDR_MASK 0x0000FFFFL
+#define GRBM_HYP_CAM_DATA__CAM_REMAPADDR_MASK 0xFFFF0000L
+//RLC_FWL_FIRST_VIOL_ADDR
+#define RLC_FWL_FIRST_VIOL_ADDR__VIOL_STATUS__SHIFT 0x0
+#define RLC_FWL_FIRST_VIOL_ADDR__VIOL_OP__SHIFT 0x1
+#define RLC_FWL_FIRST_VIOL_ADDR__VIOL_ADDR__SHIFT 0x2
+#define RLC_FWL_FIRST_VIOL_ADDR__VIOL_APERTURE_ID__SHIFT 0x14
+#define RLC_FWL_FIRST_VIOL_ADDR__VIOL_STATUS_MASK 0x00000001L
+#define RLC_FWL_FIRST_VIOL_ADDR__VIOL_OP_MASK 0x00000002L
+#define RLC_FWL_FIRST_VIOL_ADDR__VIOL_ADDR_MASK 0x000FFFFCL
+#define RLC_FWL_FIRST_VIOL_ADDR__VIOL_APERTURE_ID_MASK 0xFFF00000L
+
+
+// addressBlock: sqind
+//SQ_DEBUG_STS_LOCAL
+#define SQ_DEBUG_STS_LOCAL__BUSY__SHIFT 0x0
+#define SQ_DEBUG_STS_LOCAL__WAVE_LEVEL__SHIFT 0x4
+#define SQ_DEBUG_STS_LOCAL__BUSY_MASK 0x00000001L
+#define SQ_DEBUG_STS_LOCAL__WAVE_LEVEL_MASK 0x000003F0L
+//SQ_DEBUG_CTRL_LOCAL
+#define SQ_DEBUG_CTRL_LOCAL__UNUSED__SHIFT 0x0
+#define SQ_DEBUG_CTRL_LOCAL__PERF_SEL_INSTS_VALU_MFMA_NON_WAVE__SHIFT 0x8
+#define SQ_DEBUG_CTRL_LOCAL__PERF_SEL_INSTS_VALU_MFMA_MOPS_NON_WAVE__SHIFT 0x9
+#define SQ_DEBUG_CTRL_LOCAL__UNUSED_MASK 0x000000FFL
+#define SQ_DEBUG_CTRL_LOCAL__PERF_SEL_INSTS_VALU_MFMA_NON_WAVE_MASK 0x00000100L
+#define SQ_DEBUG_CTRL_LOCAL__PERF_SEL_INSTS_VALU_MFMA_MOPS_NON_WAVE_MASK 0x00000200L
+//SQ_WAVE_VALID_AND_IDLE
+#define SQ_WAVE_VALID_AND_IDLE__WAVE_SLOT__SHIFT 0x0
+#define SQ_WAVE_VALID_AND_IDLE__WAVE_SLOT_MASK 0xFFFFFFFFL
+//SQ_PERF_SNAPSHOT_DATA
+//SQ_PERF_SNAPSHOT_DATA1
+//SQ_PERF_SNAPSHOT_PC_LO
+//SQ_PERF_SNAPSHOT_PC_HI
+//SQ_WAVE_MODE
+#define SQ_WAVE_MODE__FP_ROUND__SHIFT 0x0
+#define SQ_WAVE_MODE__FP_DENORM__SHIFT 0x4
+#define SQ_WAVE_MODE__DX10_CLAMP__SHIFT 0x8
+#define SQ_WAVE_MODE__IEEE__SHIFT 0x9
+#define SQ_WAVE_MODE__LOD_CLAMPED__SHIFT 0xa
+#define SQ_WAVE_MODE__DEBUG_EN__SHIFT 0xb
+#define SQ_WAVE_MODE__EXCP_EN__SHIFT 0xc
+#define SQ_WAVE_MODE__FP16_OVFL__SHIFT 0x17
+#define SQ_WAVE_MODE__POPS_PACKER0__SHIFT 0x18
+#define SQ_WAVE_MODE__POPS_PACKER1__SHIFT 0x19
+#define SQ_WAVE_MODE__DISABLE_PERF__SHIFT 0x1a
+#define SQ_WAVE_MODE__GPR_IDX_EN__SHIFT 0x1b
+#define SQ_WAVE_MODE__VSKIP__SHIFT 0x1c
+#define SQ_WAVE_MODE__CSP__SHIFT 0x1d
+#define SQ_WAVE_MODE__FP_ROUND_MASK 0x0000000FL
+#define SQ_WAVE_MODE__FP_DENORM_MASK 0x000000F0L
+#define SQ_WAVE_MODE__DX10_CLAMP_MASK 0x00000100L
+#define SQ_WAVE_MODE__IEEE_MASK 0x00000200L
+#define SQ_WAVE_MODE__LOD_CLAMPED_MASK 0x00000400L
+#define SQ_WAVE_MODE__DEBUG_EN_MASK 0x00000800L
+#define SQ_WAVE_MODE__EXCP_EN_MASK 0x001FF000L
+#define SQ_WAVE_MODE__FP16_OVFL_MASK 0x00800000L
+#define SQ_WAVE_MODE__POPS_PACKER0_MASK 0x01000000L
+#define SQ_WAVE_MODE__POPS_PACKER1_MASK 0x02000000L
+#define SQ_WAVE_MODE__DISABLE_PERF_MASK 0x04000000L
+#define SQ_WAVE_MODE__GPR_IDX_EN_MASK 0x08000000L
+#define SQ_WAVE_MODE__VSKIP_MASK 0x10000000L
+#define SQ_WAVE_MODE__CSP_MASK 0xE0000000L
+//SQ_WAVE_STATUS
+#define SQ_WAVE_STATUS__SCC__SHIFT 0x0
+#define SQ_WAVE_STATUS__SPI_PRIO__SHIFT 0x1
+#define SQ_WAVE_STATUS__USER_PRIO__SHIFT 0x3
+#define SQ_WAVE_STATUS__PRIV__SHIFT 0x5
+#define SQ_WAVE_STATUS__TRAP_EN__SHIFT 0x6
+#define SQ_WAVE_STATUS__TTRACE_EN__SHIFT 0x7
+#define SQ_WAVE_STATUS__EXPORT_RDY__SHIFT 0x8
+#define SQ_WAVE_STATUS__EXECZ__SHIFT 0x9
+#define SQ_WAVE_STATUS__VCCZ__SHIFT 0xa
+#define SQ_WAVE_STATUS__IN_TG__SHIFT 0xb
+#define SQ_WAVE_STATUS__IN_BARRIER__SHIFT 0xc
+#define SQ_WAVE_STATUS__HALT__SHIFT 0xd
+#define SQ_WAVE_STATUS__TRAP__SHIFT 0xe
+#define SQ_WAVE_STATUS__TTRACE_CU_EN__SHIFT 0xf
+#define SQ_WAVE_STATUS__VALID__SHIFT 0x10
+#define SQ_WAVE_STATUS__ECC_ERR__SHIFT 0x11
+#define SQ_WAVE_STATUS__SKIP_EXPORT__SHIFT 0x12
+#define SQ_WAVE_STATUS__PERF_EN__SHIFT 0x13
+#define SQ_WAVE_STATUS__COND_DBG_USER__SHIFT 0x14
+#define SQ_WAVE_STATUS__COND_DBG_SYS__SHIFT 0x15
+#define SQ_WAVE_STATUS__ALLOW_REPLAY__SHIFT 0x16
+#define SQ_WAVE_STATUS__FATAL_HALT__SHIFT 0x17
+#define SQ_WAVE_STATUS__MUST_EXPORT__SHIFT 0x1b
+#define SQ_WAVE_STATUS__SCRATCH_EN__SHIFT 0x1c
+#define SQ_WAVE_STATUS__IDLE__SHIFT 0x1f
+#define SQ_WAVE_STATUS__SCC_MASK 0x00000001L
+#define SQ_WAVE_STATUS__SPI_PRIO_MASK 0x00000006L
+#define SQ_WAVE_STATUS__USER_PRIO_MASK 0x00000018L
+#define SQ_WAVE_STATUS__PRIV_MASK 0x00000020L
+#define SQ_WAVE_STATUS__TRAP_EN_MASK 0x00000040L
+#define SQ_WAVE_STATUS__TTRACE_EN_MASK 0x00000080L
+#define SQ_WAVE_STATUS__EXPORT_RDY_MASK 0x00000100L
+#define SQ_WAVE_STATUS__EXECZ_MASK 0x00000200L
+#define SQ_WAVE_STATUS__VCCZ_MASK 0x00000400L
+#define SQ_WAVE_STATUS__IN_TG_MASK 0x00000800L
+#define SQ_WAVE_STATUS__IN_BARRIER_MASK 0x00001000L
+#define SQ_WAVE_STATUS__HALT_MASK 0x00002000L
+#define SQ_WAVE_STATUS__TRAP_MASK 0x00004000L
+#define SQ_WAVE_STATUS__TTRACE_CU_EN_MASK 0x00008000L
+#define SQ_WAVE_STATUS__VALID_MASK 0x00010000L
+#define SQ_WAVE_STATUS__ECC_ERR_MASK 0x00020000L
+#define SQ_WAVE_STATUS__SKIP_EXPORT_MASK 0x00040000L
+#define SQ_WAVE_STATUS__PERF_EN_MASK 0x00080000L
+#define SQ_WAVE_STATUS__COND_DBG_USER_MASK 0x00100000L
+#define SQ_WAVE_STATUS__COND_DBG_SYS_MASK 0x00200000L
+#define SQ_WAVE_STATUS__ALLOW_REPLAY_MASK 0x00400000L
+#define SQ_WAVE_STATUS__FATAL_HALT_MASK 0x00800000L
+#define SQ_WAVE_STATUS__MUST_EXPORT_MASK 0x08000000L
+#define SQ_WAVE_STATUS__SCRATCH_EN_MASK 0x10000000L
+#define SQ_WAVE_STATUS__IDLE_MASK 0x80000000L
+//SQ_WAVE_TRAPSTS
+#define SQ_WAVE_TRAPSTS__EXCP__SHIFT 0x0
+#define SQ_WAVE_TRAPSTS__SAVECTX__SHIFT 0xa
+#define SQ_WAVE_TRAPSTS__ILLEGAL_INST__SHIFT 0xb
+#define SQ_WAVE_TRAPSTS__EXCP_HI__SHIFT 0xc
+#define SQ_WAVE_TRAPSTS__EXCP_CYCLE__SHIFT 0x10
+#define SQ_WAVE_TRAPSTS__HOST_TRAP__SHIFT 0x16
+#define SQ_WAVE_TRAPSTS__WAVE_END__SHIFT 0x18
+#define SQ_WAVE_TRAPSTS__TRAP_AFTER_INST__SHIFT 0x19
+#define SQ_WAVE_TRAPSTS__PERF_SNAPSHOT__SHIFT 0x1a
+#define SQ_WAVE_TRAPSTS__XNACK_ERROR__SHIFT 0x1c
+#define SQ_WAVE_TRAPSTS__DP_RATE__SHIFT 0x1d
+#define SQ_WAVE_TRAPSTS__EXCP_MASK 0x000001FFL
+#define SQ_WAVE_TRAPSTS__SAVECTX_MASK 0x00000400L
+#define SQ_WAVE_TRAPSTS__ILLEGAL_INST_MASK 0x00000800L
+#define SQ_WAVE_TRAPSTS__EXCP_HI_MASK 0x00007000L
+#define SQ_WAVE_TRAPSTS__EXCP_CYCLE_MASK 0x003F0000L
+#define SQ_WAVE_TRAPSTS__HOST_TRAP_MASK 0x00400000L
+#define SQ_WAVE_TRAPSTS__WAVE_END_MASK 0x01000000L
+#define SQ_WAVE_TRAPSTS__TRAP_AFTER_INST_MASK 0x02000000L
+#define SQ_WAVE_TRAPSTS__PERF_SNAPSHOT_MASK 0x04000000L
+#define SQ_WAVE_TRAPSTS__XNACK_ERROR_MASK 0x10000000L
+#define SQ_WAVE_TRAPSTS__DP_RATE_MASK 0xE0000000L
+//SQ_WAVE_HW_ID
+#define SQ_WAVE_HW_ID__WAVE_ID__SHIFT 0x0
+#define SQ_WAVE_HW_ID__SIMD_ID__SHIFT 0x4
+#define SQ_WAVE_HW_ID__PIPE_ID__SHIFT 0x6
+#define SQ_WAVE_HW_ID__CU_ID__SHIFT 0x8
+#define SQ_WAVE_HW_ID__SH_ID__SHIFT 0xc
+#define SQ_WAVE_HW_ID__SE_ID__SHIFT 0xd
+#define SQ_WAVE_HW_ID__TG_ID__SHIFT 0x10
+#define SQ_WAVE_HW_ID__VM_ID__SHIFT 0x14
+#define SQ_WAVE_HW_ID__QUEUE_ID__SHIFT 0x18
+#define SQ_WAVE_HW_ID__STATE_ID__SHIFT 0x1b
+#define SQ_WAVE_HW_ID__ME_ID__SHIFT 0x1e
+#define SQ_WAVE_HW_ID__WAVE_ID_MASK 0x0000000FL
+#define SQ_WAVE_HW_ID__SIMD_ID_MASK 0x00000030L
+#define SQ_WAVE_HW_ID__PIPE_ID_MASK 0x000000C0L
+#define SQ_WAVE_HW_ID__CU_ID_MASK 0x00000F00L
+#define SQ_WAVE_HW_ID__SH_ID_MASK 0x00001000L
+#define SQ_WAVE_HW_ID__SE_ID_MASK 0x0000E000L
+#define SQ_WAVE_HW_ID__TG_ID_MASK 0x000F0000L
+#define SQ_WAVE_HW_ID__VM_ID_MASK 0x00F00000L
+#define SQ_WAVE_HW_ID__QUEUE_ID_MASK 0x07000000L
+#define SQ_WAVE_HW_ID__STATE_ID_MASK 0x38000000L
+#define SQ_WAVE_HW_ID__ME_ID_MASK 0xC0000000L
+//SQ_WAVE_GPR_ALLOC
+#define SQ_WAVE_GPR_ALLOC__VGPR_BASE__SHIFT 0x0
+#define SQ_WAVE_GPR_ALLOC__VGPR_SIZE__SHIFT 0x6
+#define SQ_WAVE_GPR_ALLOC__ACCV_OFFSET__SHIFT 0xc
+#define SQ_WAVE_GPR_ALLOC__SGPR_BASE__SHIFT 0x12
+#define SQ_WAVE_GPR_ALLOC__SGPR_SIZE__SHIFT 0x18
+#define SQ_WAVE_GPR_ALLOC__VGPR_BASE_MASK 0x0000003FL
+#define SQ_WAVE_GPR_ALLOC__VGPR_SIZE_MASK 0x00000FC0L
+#define SQ_WAVE_GPR_ALLOC__ACCV_OFFSET_MASK 0x0003F000L
+#define SQ_WAVE_GPR_ALLOC__SGPR_BASE_MASK 0x00FC0000L
+#define SQ_WAVE_GPR_ALLOC__SGPR_SIZE_MASK 0x0F000000L
+//SQ_WAVE_LDS_ALLOC
+#define SQ_WAVE_LDS_ALLOC__LDS_BASE__SHIFT 0x0
+#define SQ_WAVE_LDS_ALLOC__LDS_SIZE__SHIFT 0xc
+#define SQ_WAVE_LDS_ALLOC__LDS_BASE_MASK 0x000000FFL
+#define SQ_WAVE_LDS_ALLOC__LDS_SIZE_MASK 0x001FF000L
+//SQ_WAVE_IB_STS
+#define SQ_WAVE_IB_STS__VM_CNT__SHIFT 0x0
+#define SQ_WAVE_IB_STS__EXP_CNT__SHIFT 0x4
+#define SQ_WAVE_IB_STS__LGKM_CNT__SHIFT 0x8
+#define SQ_WAVE_IB_STS__VALU_CNT__SHIFT 0xc
+#define SQ_WAVE_IB_STS__FIRST_REPLAY__SHIFT 0xf
+#define SQ_WAVE_IB_STS__RCNT__SHIFT 0x10
+#define SQ_WAVE_IB_STS__VM_CNT_HI__SHIFT 0x16
+#define SQ_WAVE_IB_STS__VM_CNT_MASK 0x0000000FL
+#define SQ_WAVE_IB_STS__EXP_CNT_MASK 0x00000070L
+#define SQ_WAVE_IB_STS__LGKM_CNT_MASK 0x00000F00L
+#define SQ_WAVE_IB_STS__VALU_CNT_MASK 0x00007000L
+#define SQ_WAVE_IB_STS__FIRST_REPLAY_MASK 0x00008000L
+#define SQ_WAVE_IB_STS__RCNT_MASK 0x001F0000L
+#define SQ_WAVE_IB_STS__VM_CNT_HI_MASK 0x00C00000L
+//SQ_WAVE_PC_LO
+#define SQ_WAVE_PC_LO__PC_LO__SHIFT 0x0
+#define SQ_WAVE_PC_LO__PC_LO_MASK 0xFFFFFFFFL
+//SQ_WAVE_PC_HI
+#define SQ_WAVE_PC_HI__PC_HI__SHIFT 0x0
+#define SQ_WAVE_PC_HI__PC_HI_MASK 0x0000FFFFL
+//SQ_WAVE_INST_DW0
+#define SQ_WAVE_INST_DW0__INST_DW0__SHIFT 0x0
+#define SQ_WAVE_INST_DW0__INST_DW0_MASK 0xFFFFFFFFL
+//SQ_WAVE_INST_DW1
+#define SQ_WAVE_INST_DW1__INST_DW1__SHIFT 0x0
+#define SQ_WAVE_INST_DW1__INST_DW1_MASK 0xFFFFFFFFL
+//SQ_WAVE_IB_DBG0
+#define SQ_WAVE_IB_DBG0__IBUF_ST__SHIFT 0x0
+#define SQ_WAVE_IB_DBG0__PC_INVALID__SHIFT 0x3
+#define SQ_WAVE_IB_DBG0__NEED_NEXT_DW__SHIFT 0x4
+#define SQ_WAVE_IB_DBG0__NO_PREFETCH_CNT__SHIFT 0x5
+#define SQ_WAVE_IB_DBG0__IBUF_RPTR__SHIFT 0x8
+#define SQ_WAVE_IB_DBG0__IBUF_WPTR__SHIFT 0xa
+#define SQ_WAVE_IB_DBG0__INST_STR_ST__SHIFT 0x10
+#define SQ_WAVE_IB_DBG0__ECC_ST__SHIFT 0x18
+#define SQ_WAVE_IB_DBG0__IS_HYB__SHIFT 0x1a
+#define SQ_WAVE_IB_DBG0__HYB_CNT__SHIFT 0x1b
+#define SQ_WAVE_IB_DBG0__KILL__SHIFT 0x1d
+#define SQ_WAVE_IB_DBG0__NEED_KILL_IFETCH__SHIFT 0x1e
+#define SQ_WAVE_IB_DBG0__NO_PREFETCH_CNT_HI__SHIFT 0x1f
+#define SQ_WAVE_IB_DBG0__IBUF_ST_MASK 0x00000007L
+#define SQ_WAVE_IB_DBG0__PC_INVALID_MASK 0x00000008L
+#define SQ_WAVE_IB_DBG0__NEED_NEXT_DW_MASK 0x00000010L
+#define SQ_WAVE_IB_DBG0__NO_PREFETCH_CNT_MASK 0x000000E0L
+#define SQ_WAVE_IB_DBG0__IBUF_RPTR_MASK 0x00000300L
+#define SQ_WAVE_IB_DBG0__IBUF_WPTR_MASK 0x00000C00L
+#define SQ_WAVE_IB_DBG0__INST_STR_ST_MASK 0x000F0000L
+#define SQ_WAVE_IB_DBG0__ECC_ST_MASK 0x03000000L
+#define SQ_WAVE_IB_DBG0__IS_HYB_MASK 0x04000000L
+#define SQ_WAVE_IB_DBG0__HYB_CNT_MASK 0x18000000L
+#define SQ_WAVE_IB_DBG0__KILL_MASK 0x20000000L
+#define SQ_WAVE_IB_DBG0__NEED_KILL_IFETCH_MASK 0x40000000L
+#define SQ_WAVE_IB_DBG0__NO_PREFETCH_CNT_HI_MASK 0x80000000L
+//SQ_WAVE_IB_DBG1
+#define SQ_WAVE_IB_DBG1__IXNACK__SHIFT 0x0
+#define SQ_WAVE_IB_DBG1__XNACK__SHIFT 0x1
+#define SQ_WAVE_IB_DBG1__TA_NEED_RESET__SHIFT 0x2
+#define SQ_WAVE_IB_DBG1__XCNT__SHIFT 0x4
+#define SQ_WAVE_IB_DBG1__QCNT__SHIFT 0xb
+#define SQ_WAVE_IB_DBG1__RCNT__SHIFT 0x12
+#define SQ_WAVE_IB_DBG1__MISC_CNT__SHIFT 0x19
+#define SQ_WAVE_IB_DBG1__IXNACK_MASK 0x00000001L
+#define SQ_WAVE_IB_DBG1__XNACK_MASK 0x00000002L
+#define SQ_WAVE_IB_DBG1__TA_NEED_RESET_MASK 0x00000004L
+#define SQ_WAVE_IB_DBG1__XCNT_MASK 0x000001F0L
+#define SQ_WAVE_IB_DBG1__QCNT_MASK 0x0000F800L
+#define SQ_WAVE_IB_DBG1__RCNT_MASK 0x007C0000L
+#define SQ_WAVE_IB_DBG1__MISC_CNT_MASK 0xFE000000L
+//SQ_WAVE_FLUSH_IB
+#define SQ_WAVE_FLUSH_IB__UNUSED__SHIFT 0x0
+#define SQ_WAVE_FLUSH_IB__UNUSED_MASK 0xFFFFFFFFL
+//SQ_WAVE_TTMP0
+#define SQ_WAVE_TTMP0__DATA__SHIFT 0x0
+#define SQ_WAVE_TTMP0__DATA_MASK 0xFFFFFFFFL
+//SQ_WAVE_TTMP1
+#define SQ_WAVE_TTMP1__DATA__SHIFT 0x0
+#define SQ_WAVE_TTMP1__DATA_MASK 0xFFFFFFFFL
+//SQ_WAVE_TTMP2
+#define SQ_WAVE_TTMP2__DATA__SHIFT 0x0
+#define SQ_WAVE_TTMP2__DATA_MASK 0xFFFFFFFFL
+//SQ_WAVE_TTMP3
+#define SQ_WAVE_TTMP3__DATA__SHIFT 0x0
+#define SQ_WAVE_TTMP3__DATA_MASK 0xFFFFFFFFL
+//SQ_WAVE_TTMP4
+#define SQ_WAVE_TTMP4__DATA__SHIFT 0x0
+#define SQ_WAVE_TTMP4__DATA_MASK 0xFFFFFFFFL
+//SQ_WAVE_TTMP5
+#define SQ_WAVE_TTMP5__DATA__SHIFT 0x0
+#define SQ_WAVE_TTMP5__DATA_MASK 0xFFFFFFFFL
+//SQ_WAVE_TTMP6
+#define SQ_WAVE_TTMP6__DATA__SHIFT 0x0
+#define SQ_WAVE_TTMP6__DATA_MASK 0xFFFFFFFFL
+//SQ_WAVE_TTMP7
+#define SQ_WAVE_TTMP7__DATA__SHIFT 0x0
+#define SQ_WAVE_TTMP7__DATA_MASK 0xFFFFFFFFL
+//SQ_WAVE_TTMP8
+#define SQ_WAVE_TTMP8__DATA__SHIFT 0x0
+#define SQ_WAVE_TTMP8__DATA_MASK 0xFFFFFFFFL
+//SQ_WAVE_TTMP9
+#define SQ_WAVE_TTMP9__DATA__SHIFT 0x0
+#define SQ_WAVE_TTMP9__DATA_MASK 0xFFFFFFFFL
+//SQ_WAVE_TTMP10
+#define SQ_WAVE_TTMP10__DATA__SHIFT 0x0
+#define SQ_WAVE_TTMP10__DATA_MASK 0xFFFFFFFFL
+//SQ_WAVE_TTMP11
+#define SQ_WAVE_TTMP11__DATA__SHIFT 0x0
+#define SQ_WAVE_TTMP11__DATA_MASK 0xFFFFFFFFL
+//SQ_WAVE_TTMP12
+#define SQ_WAVE_TTMP12__DATA__SHIFT 0x0
+#define SQ_WAVE_TTMP12__DATA_MASK 0xFFFFFFFFL
+//SQ_WAVE_TTMP13
+#define SQ_WAVE_TTMP13__DATA__SHIFT 0x0
+#define SQ_WAVE_TTMP13__DATA_MASK 0xFFFFFFFFL
+//SQ_WAVE_TTMP14
+#define SQ_WAVE_TTMP14__DATA__SHIFT 0x0
+#define SQ_WAVE_TTMP14__DATA_MASK 0xFFFFFFFFL
+//SQ_WAVE_TTMP15
+#define SQ_WAVE_TTMP15__DATA__SHIFT 0x0
+#define SQ_WAVE_TTMP15__DATA_MASK 0xFFFFFFFFL
+//SQ_WAVE_M0
+#define SQ_WAVE_M0__M0__SHIFT 0x0
+#define SQ_WAVE_M0__M0_MASK 0xFFFFFFFFL
+//SQ_WAVE_EXEC_LO
+#define SQ_WAVE_EXEC_LO__EXEC_LO__SHIFT 0x0
+#define SQ_WAVE_EXEC_LO__EXEC_LO_MASK 0xFFFFFFFFL
+//SQ_WAVE_EXEC_HI
+#define SQ_WAVE_EXEC_HI__EXEC_HI__SHIFT 0x0
+#define SQ_WAVE_EXEC_HI__EXEC_HI_MASK 0xFFFFFFFFL
+//SQ_INTERRUPT_WORD_AUTO_CTXID
+#define SQ_INTERRUPT_WORD_AUTO_CTXID__THREAD_TRACE__SHIFT 0x0
+#define SQ_INTERRUPT_WORD_AUTO_CTXID__WLT__SHIFT 0x1
+#define SQ_INTERRUPT_WORD_AUTO_CTXID__THREAD_TRACE_BUF_FULL__SHIFT 0x2
+#define SQ_INTERRUPT_WORD_AUTO_CTXID__REG_TIMESTAMP__SHIFT 0x3
+#define SQ_INTERRUPT_WORD_AUTO_CTXID__CMD_TIMESTAMP__SHIFT 0x4
+#define SQ_INTERRUPT_WORD_AUTO_CTXID__HOST_CMD_OVERFLOW__SHIFT 0x5
+#define SQ_INTERRUPT_WORD_AUTO_CTXID__HOST_REG_OVERFLOW__SHIFT 0x6
+#define SQ_INTERRUPT_WORD_AUTO_CTXID__IMMED_OVERFLOW__SHIFT 0x7
+#define SQ_INTERRUPT_WORD_AUTO_CTXID__THREAD_TRACE_UTC_ERROR__SHIFT 0x8
+#define SQ_INTERRUPT_WORD_AUTO_CTXID__SE_ID__SHIFT 0x18
+#define SQ_INTERRUPT_WORD_AUTO_CTXID__ENCODING__SHIFT 0x1a
+#define SQ_INTERRUPT_WORD_AUTO_CTXID__THREAD_TRACE_MASK 0x0000001L
+#define SQ_INTERRUPT_WORD_AUTO_CTXID__WLT_MASK 0x0000002L
+#define SQ_INTERRUPT_WORD_AUTO_CTXID__THREAD_TRACE_BUF_FULL_MASK 0x0000004L
+#define SQ_INTERRUPT_WORD_AUTO_CTXID__REG_TIMESTAMP_MASK 0x0000008L
+#define SQ_INTERRUPT_WORD_AUTO_CTXID__CMD_TIMESTAMP_MASK 0x0000010L
+#define SQ_INTERRUPT_WORD_AUTO_CTXID__HOST_CMD_OVERFLOW_MASK 0x0000020L
+#define SQ_INTERRUPT_WORD_AUTO_CTXID__HOST_REG_OVERFLOW_MASK 0x0000040L
+#define SQ_INTERRUPT_WORD_AUTO_CTXID__IMMED_OVERFLOW_MASK 0x0000080L
+#define SQ_INTERRUPT_WORD_AUTO_CTXID__THREAD_TRACE_UTC_ERROR_MASK 0x0000100L
+#define SQ_INTERRUPT_WORD_AUTO_CTXID__SE_ID_MASK 0x3000000L
+#define SQ_INTERRUPT_WORD_AUTO_CTXID__ENCODING_MASK 0xC000000L
+//SQ_INTERRUPT_WORD_AUTO_HI
+#define SQ_INTERRUPT_WORD_AUTO_HI__SE_ID__SHIFT 0x8
+#define SQ_INTERRUPT_WORD_AUTO_HI__ENCODING__SHIFT 0xa
+#define SQ_INTERRUPT_WORD_AUTO_HI__SE_ID_MASK 0x300L
+#define SQ_INTERRUPT_WORD_AUTO_HI__ENCODING_MASK 0xC00L
+//SQ_INTERRUPT_WORD_AUTO_LO
+#define SQ_INTERRUPT_WORD_AUTO_LO__THREAD_TRACE__SHIFT 0x0
+#define SQ_INTERRUPT_WORD_AUTO_LO__WLT__SHIFT 0x1
+#define SQ_INTERRUPT_WORD_AUTO_LO__THREAD_TRACE_BUF_FULL__SHIFT 0x2
+#define SQ_INTERRUPT_WORD_AUTO_LO__REG_TIMESTAMP__SHIFT 0x3
+#define SQ_INTERRUPT_WORD_AUTO_LO__CMD_TIMESTAMP__SHIFT 0x4
+#define SQ_INTERRUPT_WORD_AUTO_LO__HOST_CMD_OVERFLOW__SHIFT 0x5
+#define SQ_INTERRUPT_WORD_AUTO_LO__HOST_REG_OVERFLOW__SHIFT 0x6
+#define SQ_INTERRUPT_WORD_AUTO_LO__IMMED_OVERFLOW__SHIFT 0x7
+#define SQ_INTERRUPT_WORD_AUTO_LO__THREAD_TRACE_UTC_ERROR__SHIFT 0x8
+#define SQ_INTERRUPT_WORD_AUTO_LO__THREAD_TRACE_MASK 0x001L
+#define SQ_INTERRUPT_WORD_AUTO_LO__WLT_MASK 0x002L
+#define SQ_INTERRUPT_WORD_AUTO_LO__THREAD_TRACE_BUF_FULL_MASK 0x004L
+#define SQ_INTERRUPT_WORD_AUTO_LO__REG_TIMESTAMP_MASK 0x008L
+#define SQ_INTERRUPT_WORD_AUTO_LO__CMD_TIMESTAMP_MASK 0x010L
+#define SQ_INTERRUPT_WORD_AUTO_LO__HOST_CMD_OVERFLOW_MASK 0x020L
+#define SQ_INTERRUPT_WORD_AUTO_LO__HOST_REG_OVERFLOW_MASK 0x040L
+#define SQ_INTERRUPT_WORD_AUTO_LO__IMMED_OVERFLOW_MASK 0x080L
+#define SQ_INTERRUPT_WORD_AUTO_LO__THREAD_TRACE_UTC_ERROR_MASK 0x100L
+//SQ_INTERRUPT_WORD_CMN_CTXID
+#define SQ_INTERRUPT_WORD_CMN_CTXID__SE_ID__SHIFT 0x18
+#define SQ_INTERRUPT_WORD_CMN_CTXID__ENCODING__SHIFT 0x1a
+#define SQ_INTERRUPT_WORD_CMN_CTXID__SE_ID_MASK 0x3000000L
+#define SQ_INTERRUPT_WORD_CMN_CTXID__ENCODING_MASK 0xC000000L
+//SQ_INTERRUPT_WORD_CMN_HI
+#define SQ_INTERRUPT_WORD_CMN_HI__SE_ID__SHIFT 0x8
+#define SQ_INTERRUPT_WORD_CMN_HI__ENCODING__SHIFT 0xa
+#define SQ_INTERRUPT_WORD_CMN_HI__SE_ID_MASK 0x300L
+#define SQ_INTERRUPT_WORD_CMN_HI__ENCODING_MASK 0xC00L
+//SQ_INTERRUPT_WORD_WAVE_CTXID
+#define SQ_INTERRUPT_WORD_WAVE_CTXID__DATA__SHIFT 0x0
+#define SQ_INTERRUPT_WORD_WAVE_CTXID__SH_ID__SHIFT 0xc
+#define SQ_INTERRUPT_WORD_WAVE_CTXID__PRIV__SHIFT 0xd
+#define SQ_INTERRUPT_WORD_WAVE_CTXID__WAVE_ID__SHIFT 0xe
+#define SQ_INTERRUPT_WORD_WAVE_CTXID__SIMD_ID__SHIFT 0x12
+#define SQ_INTERRUPT_WORD_WAVE_CTXID__CU_ID__SHIFT 0x14
+#define SQ_INTERRUPT_WORD_WAVE_CTXID__SE_ID__SHIFT 0x18
+#define SQ_INTERRUPT_WORD_WAVE_CTXID__ENCODING__SHIFT 0x1a
+#define SQ_INTERRUPT_WORD_WAVE_CTXID__DATA_MASK 0x0000FFFL
+#define SQ_INTERRUPT_WORD_WAVE_CTXID__SH_ID_MASK 0x0001000L
+#define SQ_INTERRUPT_WORD_WAVE_CTXID__PRIV_MASK 0x0002000L
+#define SQ_INTERRUPT_WORD_WAVE_CTXID__WAVE_ID_MASK 0x003C000L
+#define SQ_INTERRUPT_WORD_WAVE_CTXID__SIMD_ID_MASK 0x00C0000L
+#define SQ_INTERRUPT_WORD_WAVE_CTXID__CU_ID_MASK 0x0F00000L
+#define SQ_INTERRUPT_WORD_WAVE_CTXID__SE_ID_MASK 0x3000000L
+#define SQ_INTERRUPT_WORD_WAVE_CTXID__ENCODING_MASK 0xC000000L
+//SQ_INTERRUPT_WORD_WAVE_HI
+#define SQ_INTERRUPT_WORD_WAVE_HI__CU_ID__SHIFT 0x0
+#define SQ_INTERRUPT_WORD_WAVE_HI__VM_ID__SHIFT 0x4
+#define SQ_INTERRUPT_WORD_WAVE_HI__SE_ID__SHIFT 0x8
+#define SQ_INTERRUPT_WORD_WAVE_HI__ENCODING__SHIFT 0xa
+#define SQ_INTERRUPT_WORD_WAVE_HI__CU_ID_MASK 0x00FL
+#define SQ_INTERRUPT_WORD_WAVE_HI__VM_ID_MASK 0x0F0L
+#define SQ_INTERRUPT_WORD_WAVE_HI__SE_ID_MASK 0x300L
+#define SQ_INTERRUPT_WORD_WAVE_HI__ENCODING_MASK 0xC00L
+//SQ_INTERRUPT_WORD_WAVE_LO
+#define SQ_INTERRUPT_WORD_WAVE_LO__DATA__SHIFT 0x0
+#define SQ_INTERRUPT_WORD_WAVE_LO__SH_ID__SHIFT 0x18
+#define SQ_INTERRUPT_WORD_WAVE_LO__PRIV__SHIFT 0x19
+#define SQ_INTERRUPT_WORD_WAVE_LO__WAVE_ID__SHIFT 0x1a
+#define SQ_INTERRUPT_WORD_WAVE_LO__SIMD_ID__SHIFT 0x1e
+#define SQ_INTERRUPT_WORD_WAVE_LO__DATA_MASK 0x00FFFFFFL
+#define SQ_INTERRUPT_WORD_WAVE_LO__SH_ID_MASK 0x01000000L
+#define SQ_INTERRUPT_WORD_WAVE_LO__PRIV_MASK 0x02000000L
+#define SQ_INTERRUPT_WORD_WAVE_LO__WAVE_ID_MASK 0x3C000000L
+#define SQ_INTERRUPT_WORD_WAVE_LO__SIMD_ID_MASK 0xC0000000L
+
+
+
+#endif
diff --git a/drivers/gpu/drm/amd/include/asic_reg/hdp/hdp_4_4_2_offset.h b/drivers/gpu/drm/amd/include/asic_reg/hdp/hdp_4_4_2_offset.h
new file mode 100644
index 000000000000..546b043ccdf5
--- /dev/null
+++ b/drivers/gpu/drm/amd/include/asic_reg/hdp/hdp_4_4_2_offset.h
@@ -0,0 +1,219 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ */
+#ifndef _hdp_4_4_2_OFFSET_HEADER
+#define _hdp_4_4_2_OFFSET_HEADER
+
+
+
+// addressBlock: aid_hdp_hdpdec
+// base address: 0x3c80
+#define regHDP_MMHUB_TLVL 0x0000
+#define regHDP_MMHUB_TLVL_BASE_IDX 0
+#define regHDP_MMHUB_UNITID 0x0001
+#define regHDP_MMHUB_UNITID_BASE_IDX 0
+#define regHDP_NONSURFACE_BASE 0x0040
+#define regHDP_NONSURFACE_BASE_BASE_IDX 0
+#define regHDP_NONSURFACE_INFO 0x0041
+#define regHDP_NONSURFACE_INFO_BASE_IDX 0
+#define regHDP_NONSURFACE_BASE_HI 0x0042
+#define regHDP_NONSURFACE_BASE_HI_BASE_IDX 0
+#define regHDP_SURFACE_WRITE_FLAGS 0x00c4
+#define regHDP_SURFACE_WRITE_FLAGS_BASE_IDX 0
+#define regHDP_SURFACE_READ_FLAGS 0x00c5
+#define regHDP_SURFACE_READ_FLAGS_BASE_IDX 0
+#define regHDP_SURFACE_WRITE_FLAGS_CLR 0x00c6
+#define regHDP_SURFACE_WRITE_FLAGS_CLR_BASE_IDX 0
+#define regHDP_SURFACE_READ_FLAGS_CLR 0x00c7
+#define regHDP_SURFACE_READ_FLAGS_CLR_BASE_IDX 0
+#define regHDP_NONSURF_FLAGS 0x00c8
+#define regHDP_NONSURF_FLAGS_BASE_IDX 0
+#define regHDP_NONSURF_FLAGS_CLR 0x00c9
+#define regHDP_NONSURF_FLAGS_CLR_BASE_IDX 0
+#define regHDP_HOST_PATH_CNTL 0x00cc
+#define regHDP_HOST_PATH_CNTL_BASE_IDX 0
+#define regHDP_SW_SEMAPHORE 0x00cd
+#define regHDP_SW_SEMAPHORE_BASE_IDX 0
+#define regHDP_DEBUG0 0x00ce
+#define regHDP_DEBUG0_BASE_IDX 0
+#define regHDP_LAST_SURFACE_HIT 0x00d0
+#define regHDP_LAST_SURFACE_HIT_BASE_IDX 0
+#define regHDP_OUTSTANDING_REQ 0x00d2
+#define regHDP_OUTSTANDING_REQ_BASE_IDX 0
+#define regHDP_MISC_CNTL 0x00d3
+#define regHDP_MISC_CNTL_BASE_IDX 0
+#define regHDP_MEM_POWER_CTRL 0x00d4
+#define regHDP_MEM_POWER_CTRL_BASE_IDX 0
+#define regHDP_MMHUB_CNTL 0x00d5
+#define regHDP_MMHUB_CNTL_BASE_IDX 0
+#define regHDP_EDC_CNT 0x00d6
+#define regHDP_EDC_CNT_BASE_IDX 0
+#define regHDP_VERSION 0x00d7
+#define regHDP_VERSION_BASE_IDX 0
+#define regHDP_CLK_CNTL 0x00d8
+#define regHDP_CLK_CNTL_BASE_IDX 0
+#define regHDP_MEMIO_CNTL 0x00f6
+#define regHDP_MEMIO_CNTL_BASE_IDX 0
+#define regHDP_MEMIO_ADDR 0x00f7
+#define regHDP_MEMIO_ADDR_BASE_IDX 0
+#define regHDP_MEMIO_STATUS 0x00f8
+#define regHDP_MEMIO_STATUS_BASE_IDX 0
+#define regHDP_MEMIO_WR_DATA 0x00f9
+#define regHDP_MEMIO_WR_DATA_BASE_IDX 0
+#define regHDP_MEMIO_RD_DATA 0x00fa
+#define regHDP_MEMIO_RD_DATA_BASE_IDX 0
+#define regHDP_XDP_DIRECT2HDP_FIRST 0x0100
+#define regHDP_XDP_DIRECT2HDP_FIRST_BASE_IDX 0
+#define regHDP_XDP_D2H_FLUSH 0x0101
+#define regHDP_XDP_D2H_FLUSH_BASE_IDX 0
+#define regHDP_XDP_D2H_BAR_UPDATE 0x0102
+#define regHDP_XDP_D2H_BAR_UPDATE_BASE_IDX 0
+#define regHDP_XDP_D2H_RSVD_3 0x0103
+#define regHDP_XDP_D2H_RSVD_3_BASE_IDX 0
+#define regHDP_XDP_D2H_RSVD_4 0x0104
+#define regHDP_XDP_D2H_RSVD_4_BASE_IDX 0
+#define regHDP_XDP_D2H_RSVD_5 0x0105
+#define regHDP_XDP_D2H_RSVD_5_BASE_IDX 0
+#define regHDP_XDP_D2H_RSVD_6 0x0106
+#define regHDP_XDP_D2H_RSVD_6_BASE_IDX 0
+#define regHDP_XDP_D2H_RSVD_7 0x0107
+#define regHDP_XDP_D2H_RSVD_7_BASE_IDX 0
+#define regHDP_XDP_D2H_RSVD_8 0x0108
+#define regHDP_XDP_D2H_RSVD_8_BASE_IDX 0
+#define regHDP_XDP_D2H_RSVD_9 0x0109
+#define regHDP_XDP_D2H_RSVD_9_BASE_IDX 0
+#define regHDP_XDP_D2H_RSVD_10 0x010a
+#define regHDP_XDP_D2H_RSVD_10_BASE_IDX 0
+#define regHDP_XDP_D2H_RSVD_11 0x010b
+#define regHDP_XDP_D2H_RSVD_11_BASE_IDX 0
+#define regHDP_XDP_D2H_RSVD_12 0x010c
+#define regHDP_XDP_D2H_RSVD_12_BASE_IDX 0
+#define regHDP_XDP_D2H_RSVD_13 0x010d
+#define regHDP_XDP_D2H_RSVD_13_BASE_IDX 0
+#define regHDP_XDP_D2H_RSVD_14 0x010e
+#define regHDP_XDP_D2H_RSVD_14_BASE_IDX 0
+#define regHDP_XDP_D2H_RSVD_15 0x010f
+#define regHDP_XDP_D2H_RSVD_15_BASE_IDX 0
+#define regHDP_XDP_D2H_RSVD_16 0x0110
+#define regHDP_XDP_D2H_RSVD_16_BASE_IDX 0
+#define regHDP_XDP_D2H_RSVD_17 0x0111
+#define regHDP_XDP_D2H_RSVD_17_BASE_IDX 0
+#define regHDP_XDP_D2H_RSVD_18 0x0112
+#define regHDP_XDP_D2H_RSVD_18_BASE_IDX 0
+#define regHDP_XDP_D2H_RSVD_19 0x0113
+#define regHDP_XDP_D2H_RSVD_19_BASE_IDX 0
+#define regHDP_XDP_D2H_RSVD_20 0x0114
+#define regHDP_XDP_D2H_RSVD_20_BASE_IDX 0
+#define regHDP_XDP_D2H_RSVD_21 0x0115
+#define regHDP_XDP_D2H_RSVD_21_BASE_IDX 0
+#define regHDP_XDP_D2H_RSVD_22 0x0116
+#define regHDP_XDP_D2H_RSVD_22_BASE_IDX 0
+#define regHDP_XDP_D2H_RSVD_23 0x0117
+#define regHDP_XDP_D2H_RSVD_23_BASE_IDX 0
+#define regHDP_XDP_D2H_RSVD_24 0x0118
+#define regHDP_XDP_D2H_RSVD_24_BASE_IDX 0
+#define regHDP_XDP_D2H_RSVD_25 0x0119
+#define regHDP_XDP_D2H_RSVD_25_BASE_IDX 0
+#define regHDP_XDP_D2H_RSVD_26 0x011a
+#define regHDP_XDP_D2H_RSVD_26_BASE_IDX 0
+#define regHDP_XDP_D2H_RSVD_27 0x011b
+#define regHDP_XDP_D2H_RSVD_27_BASE_IDX 0
+#define regHDP_XDP_D2H_RSVD_28 0x011c
+#define regHDP_XDP_D2H_RSVD_28_BASE_IDX 0
+#define regHDP_XDP_D2H_RSVD_29 0x011d
+#define regHDP_XDP_D2H_RSVD_29_BASE_IDX 0
+#define regHDP_XDP_D2H_RSVD_30 0x011e
+#define regHDP_XDP_D2H_RSVD_30_BASE_IDX 0
+#define regHDP_XDP_D2H_RSVD_31 0x011f
+#define regHDP_XDP_D2H_RSVD_31_BASE_IDX 0
+#define regHDP_XDP_D2H_RSVD_32 0x0120
+#define regHDP_XDP_D2H_RSVD_32_BASE_IDX 0
+#define regHDP_XDP_D2H_RSVD_33 0x0121
+#define regHDP_XDP_D2H_RSVD_33_BASE_IDX 0
+#define regHDP_XDP_D2H_RSVD_34 0x0122
+#define regHDP_XDP_D2H_RSVD_34_BASE_IDX 0
+#define regHDP_XDP_DIRECT2HDP_LAST 0x0123
+#define regHDP_XDP_DIRECT2HDP_LAST_BASE_IDX 0
+#define regHDP_XDP_P2P_BAR_CFG 0x0124
+#define regHDP_XDP_P2P_BAR_CFG_BASE_IDX 0
+#define regHDP_XDP_P2P_MBX_OFFSET 0x0125
+#define regHDP_XDP_P2P_MBX_OFFSET_BASE_IDX 0
+#define regHDP_XDP_P2P_MBX_ADDR0 0x0126
+#define regHDP_XDP_P2P_MBX_ADDR0_BASE_IDX 0
+#define regHDP_XDP_P2P_MBX_ADDR1 0x0127
+#define regHDP_XDP_P2P_MBX_ADDR1_BASE_IDX 0
+#define regHDP_XDP_P2P_MBX_ADDR2 0x0128
+#define regHDP_XDP_P2P_MBX_ADDR2_BASE_IDX 0
+#define regHDP_XDP_P2P_MBX_ADDR3 0x0129
+#define regHDP_XDP_P2P_MBX_ADDR3_BASE_IDX 0
+#define regHDP_XDP_P2P_MBX_ADDR4 0x012a
+#define regHDP_XDP_P2P_MBX_ADDR4_BASE_IDX 0
+#define regHDP_XDP_P2P_MBX_ADDR5 0x012b
+#define regHDP_XDP_P2P_MBX_ADDR5_BASE_IDX 0
+#define regHDP_XDP_P2P_MBX_ADDR6 0x012c
+#define regHDP_XDP_P2P_MBX_ADDR6_BASE_IDX 0
+#define regHDP_XDP_HDP_MBX_MC_CFG 0x012d
+#define regHDP_XDP_HDP_MBX_MC_CFG_BASE_IDX 0
+#define regHDP_XDP_HDP_MC_CFG 0x012e
+#define regHDP_XDP_HDP_MC_CFG_BASE_IDX 0
+#define regHDP_XDP_HST_CFG 0x012f
+#define regHDP_XDP_HST_CFG_BASE_IDX 0
+#define regHDP_XDP_HDP_IPH_CFG 0x0131
+#define regHDP_XDP_HDP_IPH_CFG_BASE_IDX 0
+#define regHDP_XDP_P2P_BAR0 0x0134
+#define regHDP_XDP_P2P_BAR0_BASE_IDX 0
+#define regHDP_XDP_P2P_BAR1 0x0135
+#define regHDP_XDP_P2P_BAR1_BASE_IDX 0
+#define regHDP_XDP_P2P_BAR2 0x0136
+#define regHDP_XDP_P2P_BAR2_BASE_IDX 0
+#define regHDP_XDP_P2P_BAR3 0x0137
+#define regHDP_XDP_P2P_BAR3_BASE_IDX 0
+#define regHDP_XDP_P2P_BAR4 0x0138
+#define regHDP_XDP_P2P_BAR4_BASE_IDX 0
+#define regHDP_XDP_P2P_BAR5 0x0139
+#define regHDP_XDP_P2P_BAR5_BASE_IDX 0
+#define regHDP_XDP_P2P_BAR6 0x013a
+#define regHDP_XDP_P2P_BAR6_BASE_IDX 0
+#define regHDP_XDP_P2P_BAR7 0x013b
+#define regHDP_XDP_P2P_BAR7_BASE_IDX 0
+#define regHDP_XDP_FLUSH_ARMED_STS 0x013c
+#define regHDP_XDP_FLUSH_ARMED_STS_BASE_IDX 0
+#define regHDP_XDP_FLUSH_CNTR0_STS 0x013d
+#define regHDP_XDP_FLUSH_CNTR0_STS_BASE_IDX 0
+#define regHDP_XDP_BUSY_STS 0x013e
+#define regHDP_XDP_BUSY_STS_BASE_IDX 0
+#define regHDP_XDP_STICKY 0x013f
+#define regHDP_XDP_STICKY_BASE_IDX 0
+#define regHDP_XDP_CHKN 0x0140
+#define regHDP_XDP_CHKN_BASE_IDX 0
+#define regHDP_XDP_BARS_ADDR_39_36 0x0144
+#define regHDP_XDP_BARS_ADDR_39_36_BASE_IDX 0
+#define regHDP_XDP_MC_VM_FB_LOCATION_BASE 0x0145
+#define regHDP_XDP_MC_VM_FB_LOCATION_BASE_BASE_IDX 0
+#define regHDP_XDP_GPU_IOV_VIOLATION_LOG 0x0148
+#define regHDP_XDP_GPU_IOV_VIOLATION_LOG_BASE_IDX 0
+#define regHDP_XDP_GPU_IOV_VIOLATION_LOG2 0x0149
+#define regHDP_XDP_GPU_IOV_VIOLATION_LOG2_BASE_IDX 0
+#define regHDP_XDP_MMHUB_ERROR 0x014a
+#define regHDP_XDP_MMHUB_ERROR_BASE_IDX 0
+
+#endif
diff --git a/drivers/gpu/drm/amd/include/asic_reg/hdp/hdp_4_4_2_sh_mask.h b/drivers/gpu/drm/amd/include/asic_reg/hdp/hdp_4_4_2_sh_mask.h
new file mode 100644
index 000000000000..3ccd2797936e
--- /dev/null
+++ b/drivers/gpu/drm/amd/include/asic_reg/hdp/hdp_4_4_2_sh_mask.h
@@ -0,0 +1,663 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ */
+#ifndef _hdp_4_4_2_SH_MASK_HEADER
+#define _hdp_4_4_2_SH_MASK_HEADER
+
+
+// addressBlock: aid_hdp_hdpdec
+//HDP_MMHUB_TLVL
+#define HDP_MMHUB_TLVL__HDP_WR_TLVL__SHIFT 0x0
+#define HDP_MMHUB_TLVL__HDP_RD_TLVL__SHIFT 0x4
+#define HDP_MMHUB_TLVL__XDP_WR_TLVL__SHIFT 0x8
+#define HDP_MMHUB_TLVL__XDP_RD_TLVL__SHIFT 0xc
+#define HDP_MMHUB_TLVL__XDP_MBX_WR_TLVL__SHIFT 0x10
+#define HDP_MMHUB_TLVL__HDP_WR_TLVL_MASK 0x0000000FL
+#define HDP_MMHUB_TLVL__HDP_RD_TLVL_MASK 0x000000F0L
+#define HDP_MMHUB_TLVL__XDP_WR_TLVL_MASK 0x00000F00L
+#define HDP_MMHUB_TLVL__XDP_RD_TLVL_MASK 0x0000F000L
+#define HDP_MMHUB_TLVL__XDP_MBX_WR_TLVL_MASK 0x000F0000L
+//HDP_MMHUB_UNITID
+#define HDP_MMHUB_UNITID__HDP_UNITID__SHIFT 0x0
+#define HDP_MMHUB_UNITID__XDP_UNITID__SHIFT 0x8
+#define HDP_MMHUB_UNITID__XDP_MBX_UNITID__SHIFT 0x10
+#define HDP_MMHUB_UNITID__HDP_UNITID_MASK 0x0000003FL
+#define HDP_MMHUB_UNITID__XDP_UNITID_MASK 0x00003F00L
+#define HDP_MMHUB_UNITID__XDP_MBX_UNITID_MASK 0x003F0000L
+//HDP_NONSURFACE_BASE
+#define HDP_NONSURFACE_BASE__NONSURF_BASE_39_8__SHIFT 0x0
+#define HDP_NONSURFACE_BASE__NONSURF_BASE_39_8_MASK 0xFFFFFFFFL
+//HDP_NONSURFACE_INFO
+#define HDP_NONSURFACE_INFO__NONSURF_SWAP__SHIFT 0x4
+#define HDP_NONSURFACE_INFO__NONSURF_VMID__SHIFT 0x8
+#define HDP_NONSURFACE_INFO__NONSURF_SWAP_MASK 0x00000030L
+#define HDP_NONSURFACE_INFO__NONSURF_VMID_MASK 0x00000F00L
+//HDP_NONSURFACE_BASE_HI
+#define HDP_NONSURFACE_BASE_HI__NONSURF_BASE_47_40__SHIFT 0x0
+#define HDP_NONSURFACE_BASE_HI__NONSURF_BASE_47_40_MASK 0x000000FFL
+//HDP_SURFACE_WRITE_FLAGS
+#define HDP_SURFACE_WRITE_FLAGS__SURF0_WRITE_FLAG__SHIFT 0x0
+#define HDP_SURFACE_WRITE_FLAGS__SURF1_WRITE_FLAG__SHIFT 0x1
+#define HDP_SURFACE_WRITE_FLAGS__SURF0_WRITE_FLAG_MASK 0x00000001L
+#define HDP_SURFACE_WRITE_FLAGS__SURF1_WRITE_FLAG_MASK 0x00000002L
+//HDP_SURFACE_READ_FLAGS
+#define HDP_SURFACE_READ_FLAGS__SURF0_READ_FLAG__SHIFT 0x0
+#define HDP_SURFACE_READ_FLAGS__SURF1_READ_FLAG__SHIFT 0x1
+#define HDP_SURFACE_READ_FLAGS__SURF0_READ_FLAG_MASK 0x00000001L
+#define HDP_SURFACE_READ_FLAGS__SURF1_READ_FLAG_MASK 0x00000002L
+//HDP_SURFACE_WRITE_FLAGS_CLR
+#define HDP_SURFACE_WRITE_FLAGS_CLR__SURF0_WRITE_FLAG_CLR__SHIFT 0x0
+#define HDP_SURFACE_WRITE_FLAGS_CLR__SURF1_WRITE_FLAG_CLR__SHIFT 0x1
+#define HDP_SURFACE_WRITE_FLAGS_CLR__SURF0_WRITE_FLAG_CLR_MASK 0x00000001L
+#define HDP_SURFACE_WRITE_FLAGS_CLR__SURF1_WRITE_FLAG_CLR_MASK 0x00000002L
+//HDP_SURFACE_READ_FLAGS_CLR
+#define HDP_SURFACE_READ_FLAGS_CLR__SURF0_READ_FLAG_CLR__SHIFT 0x0
+#define HDP_SURFACE_READ_FLAGS_CLR__SURF1_READ_FLAG_CLR__SHIFT 0x1
+#define HDP_SURFACE_READ_FLAGS_CLR__SURF0_READ_FLAG_CLR_MASK 0x00000001L
+#define HDP_SURFACE_READ_FLAGS_CLR__SURF1_READ_FLAG_CLR_MASK 0x00000002L
+//HDP_NONSURF_FLAGS
+#define HDP_NONSURF_FLAGS__NONSURF_WRITE_FLAG__SHIFT 0x0
+#define HDP_NONSURF_FLAGS__NONSURF_READ_FLAG__SHIFT 0x1
+#define HDP_NONSURF_FLAGS__NONSURF_WRITE_FLAG_MASK 0x00000001L
+#define HDP_NONSURF_FLAGS__NONSURF_READ_FLAG_MASK 0x00000002L
+//HDP_NONSURF_FLAGS_CLR
+#define HDP_NONSURF_FLAGS_CLR__NONSURF_WRITE_FLAG_CLR__SHIFT 0x0
+#define HDP_NONSURF_FLAGS_CLR__NONSURF_READ_FLAG_CLR__SHIFT 0x1
+#define HDP_NONSURF_FLAGS_CLR__NONSURF_WRITE_FLAG_CLR_MASK 0x00000001L
+#define HDP_NONSURF_FLAGS_CLR__NONSURF_READ_FLAG_CLR_MASK 0x00000002L
+//HDP_HOST_PATH_CNTL
+#define HDP_HOST_PATH_CNTL__WR_STALL_TIMER__SHIFT 0x9
+#define HDP_HOST_PATH_CNTL__RD_STALL_TIMER__SHIFT 0xb
+#define HDP_HOST_PATH_CNTL__WRITE_COMBINE_TIMER_PRELOAD_CFG__SHIFT 0x12
+#define HDP_HOST_PATH_CNTL__WRITE_COMBINE_TIMER__SHIFT 0x13
+#define HDP_HOST_PATH_CNTL__WRITE_COMBINE_EN__SHIFT 0x15
+#define HDP_HOST_PATH_CNTL__WRITE_COMBINE_64B_EN__SHIFT 0x16
+#define HDP_HOST_PATH_CNTL__ALL_SURFACES_DIS__SHIFT 0x1d
+#define HDP_HOST_PATH_CNTL__WR_STALL_TIMER_MASK 0x00000600L
+#define HDP_HOST_PATH_CNTL__RD_STALL_TIMER_MASK 0x00001800L
+#define HDP_HOST_PATH_CNTL__WRITE_COMBINE_TIMER_PRELOAD_CFG_MASK 0x00040000L
+#define HDP_HOST_PATH_CNTL__WRITE_COMBINE_TIMER_MASK 0x00180000L
+#define HDP_HOST_PATH_CNTL__WRITE_COMBINE_EN_MASK 0x00200000L
+#define HDP_HOST_PATH_CNTL__WRITE_COMBINE_64B_EN_MASK 0x00400000L
+#define HDP_HOST_PATH_CNTL__ALL_SURFACES_DIS_MASK 0x20000000L
+//HDP_SW_SEMAPHORE
+#define HDP_SW_SEMAPHORE__SW_SEMAPHORE__SHIFT 0x0
+#define HDP_SW_SEMAPHORE__SW_SEMAPHORE_MASK 0xFFFFFFFFL
+//HDP_DEBUG0
+#define HDP_DEBUG0__HDP_DEBUG__SHIFT 0x0
+#define HDP_DEBUG0__HDP_DEBUG_MASK 0xFFFFFFFFL
+//HDP_LAST_SURFACE_HIT
+#define HDP_LAST_SURFACE_HIT__LAST_SURFACE_HIT__SHIFT 0x0
+#define HDP_LAST_SURFACE_HIT__LAST_SURFACE_HIT_MASK 0x00000003L
+//HDP_OUTSTANDING_REQ
+#define HDP_OUTSTANDING_REQ__WRITE_REQ__SHIFT 0x0
+#define HDP_OUTSTANDING_REQ__READ_REQ__SHIFT 0x8
+#define HDP_OUTSTANDING_REQ__WRITE_REQ_MASK 0x000000FFL
+#define HDP_OUTSTANDING_REQ__READ_REQ_MASK 0x0000FF00L
+//HDP_MISC_CNTL
+#define HDP_MISC_CNTL__IDLE_HYSTERESIS_CNTL__SHIFT 0x2
+#define HDP_MISC_CNTL__ATOMIC_BUFFER_PROTECT_ENABLE__SHIFT 0x4
+#define HDP_MISC_CNTL__OUTSTANDING_WRITE_COUNT_1024__SHIFT 0x5
+#define HDP_MISC_CNTL__RAW_ADDR_CAM_ENABLE__SHIFT 0x7
+#define HDP_MISC_CNTL__MMHUB_EARLY_WRACK_ENABLE__SHIFT 0x8
+#define HDP_MISC_CNTL__EARLY_WRACK_MISSING_PROTECT_ENABLE__SHIFT 0x9
+#define HDP_MISC_CNTL__SIMULTANEOUS_READS_WRITES__SHIFT 0xb
+#define HDP_MISC_CNTL__SYSHUB_CHANNEL_PRIORITY__SHIFT 0xc
+#define HDP_MISC_CNTL__READ_BUFFER_WATERMARK__SHIFT 0xe
+#define HDP_MISC_CNTL__SRAM_ECC_ENABLE__SHIFT 0x14
+#define HDP_MISC_CNTL__FED_ENABLE__SHIFT 0x15
+#define HDP_MISC_CNTL__ATOMIC_FED_ENABLE__SHIFT 0x16
+#define HDP_MISC_CNTL__MMHUB_WRBURST_ENABLE__SHIFT 0x18
+#define HDP_MISC_CNTL__HDP_MMHUB_PENDING_WR_TAG_CHECK__SHIFT 0x1a
+#define HDP_MISC_CNTL__XDP_MMHUB_PENDING_WR_TAG_CHECK__SHIFT 0x1b
+#define HDP_MISC_CNTL__MMHUB_WRBURST_SIZE__SHIFT 0x1e
+#define HDP_MISC_CNTL__IDLE_HYSTERESIS_CNTL_MASK 0x0000000CL
+#define HDP_MISC_CNTL__ATOMIC_BUFFER_PROTECT_ENABLE_MASK 0x00000010L
+#define HDP_MISC_CNTL__OUTSTANDING_WRITE_COUNT_1024_MASK 0x00000020L
+#define HDP_MISC_CNTL__RAW_ADDR_CAM_ENABLE_MASK 0x00000080L
+#define HDP_MISC_CNTL__MMHUB_EARLY_WRACK_ENABLE_MASK 0x00000100L
+#define HDP_MISC_CNTL__EARLY_WRACK_MISSING_PROTECT_ENABLE_MASK 0x00000200L
+#define HDP_MISC_CNTL__SIMULTANEOUS_READS_WRITES_MASK 0x00000800L
+#define HDP_MISC_CNTL__SYSHUB_CHANNEL_PRIORITY_MASK 0x00003000L
+#define HDP_MISC_CNTL__READ_BUFFER_WATERMARK_MASK 0x0000C000L
+#define HDP_MISC_CNTL__SRAM_ECC_ENABLE_MASK 0x00100000L
+#define HDP_MISC_CNTL__FED_ENABLE_MASK 0x00200000L
+#define HDP_MISC_CNTL__ATOMIC_FED_ENABLE_MASK 0x00400000L
+#define HDP_MISC_CNTL__MMHUB_WRBURST_ENABLE_MASK 0x01000000L
+#define HDP_MISC_CNTL__HDP_MMHUB_PENDING_WR_TAG_CHECK_MASK 0x04000000L
+#define HDP_MISC_CNTL__XDP_MMHUB_PENDING_WR_TAG_CHECK_MASK 0x08000000L
+#define HDP_MISC_CNTL__MMHUB_WRBURST_SIZE_MASK 0x40000000L
+//HDP_MEM_POWER_CTRL
+#define HDP_MEM_POWER_CTRL__IPH_MEM_POWER_CTRL_EN__SHIFT 0x0
+#define HDP_MEM_POWER_CTRL__IPH_MEM_POWER_LS_EN__SHIFT 0x1
+#define HDP_MEM_POWER_CTRL__IPH_MEM_POWER_DS_EN__SHIFT 0x2
+#define HDP_MEM_POWER_CTRL__IPH_MEM_POWER_SD_EN__SHIFT 0x3
+#define HDP_MEM_POWER_CTRL__IPH_MEM_IDLE_HYSTERESIS__SHIFT 0x4
+#define HDP_MEM_POWER_CTRL__IPH_MEM_POWER_UP_RECOVER_DELAY__SHIFT 0x8
+#define HDP_MEM_POWER_CTRL__IPH_MEM_POWER_DOWN_LS_ENTER_DELAY__SHIFT 0xe
+#define HDP_MEM_POWER_CTRL__RC_MEM_POWER_CTRL_EN__SHIFT 0x10
+#define HDP_MEM_POWER_CTRL__RC_MEM_POWER_LS_EN__SHIFT 0x11
+#define HDP_MEM_POWER_CTRL__RC_MEM_POWER_DS_EN__SHIFT 0x12
+#define HDP_MEM_POWER_CTRL__RC_MEM_POWER_SD_EN__SHIFT 0x13
+#define HDP_MEM_POWER_CTRL__RC_MEM_IDLE_HYSTERESIS__SHIFT 0x14
+#define HDP_MEM_POWER_CTRL__RC_MEM_POWER_UP_RECOVER_DELAY__SHIFT 0x18
+#define HDP_MEM_POWER_CTRL__RC_MEM_POWER_DOWN_LS_ENTER_DELAY__SHIFT 0x1e
+#define HDP_MEM_POWER_CTRL__IPH_MEM_POWER_CTRL_EN_MASK 0x00000001L
+#define HDP_MEM_POWER_CTRL__IPH_MEM_POWER_LS_EN_MASK 0x00000002L
+#define HDP_MEM_POWER_CTRL__IPH_MEM_POWER_DS_EN_MASK 0x00000004L
+#define HDP_MEM_POWER_CTRL__IPH_MEM_POWER_SD_EN_MASK 0x00000008L
+#define HDP_MEM_POWER_CTRL__IPH_MEM_IDLE_HYSTERESIS_MASK 0x00000070L
+#define HDP_MEM_POWER_CTRL__IPH_MEM_POWER_UP_RECOVER_DELAY_MASK 0x00003F00L
+#define HDP_MEM_POWER_CTRL__IPH_MEM_POWER_DOWN_LS_ENTER_DELAY_MASK 0x0000C000L
+#define HDP_MEM_POWER_CTRL__RC_MEM_POWER_CTRL_EN_MASK 0x00010000L
+#define HDP_MEM_POWER_CTRL__RC_MEM_POWER_LS_EN_MASK 0x00020000L
+#define HDP_MEM_POWER_CTRL__RC_MEM_POWER_DS_EN_MASK 0x00040000L
+#define HDP_MEM_POWER_CTRL__RC_MEM_POWER_SD_EN_MASK 0x00080000L
+#define HDP_MEM_POWER_CTRL__RC_MEM_IDLE_HYSTERESIS_MASK 0x00700000L
+#define HDP_MEM_POWER_CTRL__RC_MEM_POWER_UP_RECOVER_DELAY_MASK 0x3F000000L
+#define HDP_MEM_POWER_CTRL__RC_MEM_POWER_DOWN_LS_ENTER_DELAY_MASK 0xC0000000L
+//HDP_MMHUB_CNTL
+#define HDP_MMHUB_CNTL__HDP_MMHUB_RO__SHIFT 0x0
+#define HDP_MMHUB_CNTL__HDP_MMHUB_GCC__SHIFT 0x1
+#define HDP_MMHUB_CNTL__HDP_MMHUB_SNOOP__SHIFT 0x2
+#define HDP_MMHUB_CNTL__HDP_MMHUB_RO_OVERRIDE__SHIFT 0x4
+#define HDP_MMHUB_CNTL__HDP_MMHUB_GCC_OVERRIDE__SHIFT 0x5
+#define HDP_MMHUB_CNTL__HDP_MMHUB_SNOOP_OVERRIDE__SHIFT 0x6
+#define HDP_MMHUB_CNTL__HDP_MMHUB_RO_MASK 0x00000001L
+#define HDP_MMHUB_CNTL__HDP_MMHUB_GCC_MASK 0x00000002L
+#define HDP_MMHUB_CNTL__HDP_MMHUB_SNOOP_MASK 0x00000004L
+#define HDP_MMHUB_CNTL__HDP_MMHUB_RO_OVERRIDE_MASK 0x00000010L
+#define HDP_MMHUB_CNTL__HDP_MMHUB_GCC_OVERRIDE_MASK 0x00000020L
+#define HDP_MMHUB_CNTL__HDP_MMHUB_SNOOP_OVERRIDE_MASK 0x00000040L
+//HDP_EDC_CNT
+#define HDP_EDC_CNT__MEM0_SED_COUNT__SHIFT 0x0
+#define HDP_EDC_CNT__MEM0_SED_COUNT_MASK 0x00000003L
+//HDP_VERSION
+#define HDP_VERSION__MINVER__SHIFT 0x0
+#define HDP_VERSION__MAJVER__SHIFT 0x8
+#define HDP_VERSION__REV__SHIFT 0x10
+#define HDP_VERSION__MINVER_MASK 0x000000FFL
+#define HDP_VERSION__MAJVER_MASK 0x0000FF00L
+#define HDP_VERSION__REV_MASK 0x00FF0000L
+//HDP_CLK_CNTL
+#define HDP_CLK_CNTL__REG_CLK_ENABLE_COUNT__SHIFT 0x0
+#define HDP_CLK_CNTL__REG_WAKE_DYN_CLK__SHIFT 0x4
+#define HDP_CLK_CNTL__IPH_MEM_CLK_SOFT_OVERRIDE__SHIFT 0x1a
+#define HDP_CLK_CNTL__RC_MEM_CLK_SOFT_OVERRIDE__SHIFT 0x1b
+#define HDP_CLK_CNTL__DBUS_CLK_SOFT_OVERRIDE__SHIFT 0x1c
+#define HDP_CLK_CNTL__DYN_CLK_SOFT_OVERRIDE__SHIFT 0x1d
+#define HDP_CLK_CNTL__XDP_REG_CLK_SOFT_OVERRIDE__SHIFT 0x1e
+#define HDP_CLK_CNTL__HDP_REG_CLK_SOFT_OVERRIDE__SHIFT 0x1f
+#define HDP_CLK_CNTL__REG_CLK_ENABLE_COUNT_MASK 0x0000000FL
+#define HDP_CLK_CNTL__REG_WAKE_DYN_CLK_MASK 0x00000010L
+#define HDP_CLK_CNTL__IPH_MEM_CLK_SOFT_OVERRIDE_MASK 0x04000000L
+#define HDP_CLK_CNTL__RC_MEM_CLK_SOFT_OVERRIDE_MASK 0x08000000L
+#define HDP_CLK_CNTL__DBUS_CLK_SOFT_OVERRIDE_MASK 0x10000000L
+#define HDP_CLK_CNTL__DYN_CLK_SOFT_OVERRIDE_MASK 0x20000000L
+#define HDP_CLK_CNTL__XDP_REG_CLK_SOFT_OVERRIDE_MASK 0x40000000L
+#define HDP_CLK_CNTL__HDP_REG_CLK_SOFT_OVERRIDE_MASK 0x80000000L
+//HDP_MEMIO_CNTL
+#define HDP_MEMIO_CNTL__MEMIO_SEND__SHIFT 0x0
+#define HDP_MEMIO_CNTL__MEMIO_OP__SHIFT 0x1
+#define HDP_MEMIO_CNTL__MEMIO_BE__SHIFT 0x2
+#define HDP_MEMIO_CNTL__MEMIO_WR_STROBE__SHIFT 0x6
+#define HDP_MEMIO_CNTL__MEMIO_RD_STROBE__SHIFT 0x7
+#define HDP_MEMIO_CNTL__MEMIO_ADDR_UPPER__SHIFT 0x8
+#define HDP_MEMIO_CNTL__MEMIO_CLR_WR_ERROR__SHIFT 0xe
+#define HDP_MEMIO_CNTL__MEMIO_CLR_RD_ERROR__SHIFT 0xf
+#define HDP_MEMIO_CNTL__MEMIO_VF__SHIFT 0x10
+#define HDP_MEMIO_CNTL__MEMIO_VFID__SHIFT 0x11
+#define HDP_MEMIO_CNTL__MEMIO_SEND_MASK 0x00000001L
+#define HDP_MEMIO_CNTL__MEMIO_OP_MASK 0x00000002L
+#define HDP_MEMIO_CNTL__MEMIO_BE_MASK 0x0000003CL
+#define HDP_MEMIO_CNTL__MEMIO_WR_STROBE_MASK 0x00000040L
+#define HDP_MEMIO_CNTL__MEMIO_RD_STROBE_MASK 0x00000080L
+#define HDP_MEMIO_CNTL__MEMIO_ADDR_UPPER_MASK 0x00003F00L
+#define HDP_MEMIO_CNTL__MEMIO_CLR_WR_ERROR_MASK 0x00004000L
+#define HDP_MEMIO_CNTL__MEMIO_CLR_RD_ERROR_MASK 0x00008000L
+#define HDP_MEMIO_CNTL__MEMIO_VF_MASK 0x00010000L
+#define HDP_MEMIO_CNTL__MEMIO_VFID_MASK 0x003E0000L
+//HDP_MEMIO_ADDR
+#define HDP_MEMIO_ADDR__MEMIO_ADDR_LOWER__SHIFT 0x0
+#define HDP_MEMIO_ADDR__MEMIO_ADDR_LOWER_MASK 0xFFFFFFFFL
+//HDP_MEMIO_STATUS
+#define HDP_MEMIO_STATUS__MEMIO_WR_STATUS__SHIFT 0x0
+#define HDP_MEMIO_STATUS__MEMIO_RD_STATUS__SHIFT 0x1
+#define HDP_MEMIO_STATUS__MEMIO_WR_ERROR__SHIFT 0x2
+#define HDP_MEMIO_STATUS__MEMIO_RD_ERROR__SHIFT 0x3
+#define HDP_MEMIO_STATUS__MEMIO_WR_STATUS_MASK 0x00000001L
+#define HDP_MEMIO_STATUS__MEMIO_RD_STATUS_MASK 0x00000002L
+#define HDP_MEMIO_STATUS__MEMIO_WR_ERROR_MASK 0x00000004L
+#define HDP_MEMIO_STATUS__MEMIO_RD_ERROR_MASK 0x00000008L
+//HDP_MEMIO_WR_DATA
+#define HDP_MEMIO_WR_DATA__MEMIO_WR_DATA__SHIFT 0x0
+#define HDP_MEMIO_WR_DATA__MEMIO_WR_DATA_MASK 0xFFFFFFFFL
+//HDP_MEMIO_RD_DATA
+#define HDP_MEMIO_RD_DATA__MEMIO_RD_DATA__SHIFT 0x0
+#define HDP_MEMIO_RD_DATA__MEMIO_RD_DATA_MASK 0xFFFFFFFFL
+//HDP_XDP_DIRECT2HDP_FIRST
+#define HDP_XDP_DIRECT2HDP_FIRST__RESERVED__SHIFT 0x0
+#define HDP_XDP_DIRECT2HDP_FIRST__RESERVED_MASK 0xFFFFFFFFL
+//HDP_XDP_D2H_FLUSH
+#define HDP_XDP_D2H_FLUSH__D2H_FLUSH_FLUSH_NUM__SHIFT 0x0
+#define HDP_XDP_D2H_FLUSH__D2H_FLUSH_MBX_ENC_DATA__SHIFT 0x4
+#define HDP_XDP_D2H_FLUSH__D2H_FLUSH_MBX_ADDR_SEL__SHIFT 0x8
+#define HDP_XDP_D2H_FLUSH__D2H_FLUSH_XPB_CLG__SHIFT 0xb
+#define HDP_XDP_D2H_FLUSH__D2H_FLUSH_SEND_HOST__SHIFT 0x10
+#define HDP_XDP_D2H_FLUSH__D2H_FLUSH_ALTER_FLUSH_NUM__SHIFT 0x12
+#define HDP_XDP_D2H_FLUSH__D2H_FLUSH_RSVD_0__SHIFT 0x13
+#define HDP_XDP_D2H_FLUSH__D2H_FLUSH_RSVD_1__SHIFT 0x14
+#define HDP_XDP_D2H_FLUSH__D2H_FLUSH_FLUSH_NUM_MASK 0x0000000FL
+#define HDP_XDP_D2H_FLUSH__D2H_FLUSH_MBX_ENC_DATA_MASK 0x000000F0L
+#define HDP_XDP_D2H_FLUSH__D2H_FLUSH_MBX_ADDR_SEL_MASK 0x00000700L
+#define HDP_XDP_D2H_FLUSH__D2H_FLUSH_XPB_CLG_MASK 0x0000F800L
+#define HDP_XDP_D2H_FLUSH__D2H_FLUSH_SEND_HOST_MASK 0x00010000L
+#define HDP_XDP_D2H_FLUSH__D2H_FLUSH_ALTER_FLUSH_NUM_MASK 0x00040000L
+#define HDP_XDP_D2H_FLUSH__D2H_FLUSH_RSVD_0_MASK 0x00080000L
+#define HDP_XDP_D2H_FLUSH__D2H_FLUSH_RSVD_1_MASK 0x00100000L
+//HDP_XDP_D2H_BAR_UPDATE
+#define HDP_XDP_D2H_BAR_UPDATE__D2H_BAR_UPDATE_ADDR__SHIFT 0x0
+#define HDP_XDP_D2H_BAR_UPDATE__D2H_BAR_UPDATE_FLUSH_NUM__SHIFT 0x10
+#define HDP_XDP_D2H_BAR_UPDATE__D2H_BAR_UPDATE_BAR_NUM__SHIFT 0x14
+#define HDP_XDP_D2H_BAR_UPDATE__D2H_BAR_UPDATE_ADDR_MASK 0x0000FFFFL
+#define HDP_XDP_D2H_BAR_UPDATE__D2H_BAR_UPDATE_FLUSH_NUM_MASK 0x000F0000L
+#define HDP_XDP_D2H_BAR_UPDATE__D2H_BAR_UPDATE_BAR_NUM_MASK 0x00700000L
+//HDP_XDP_D2H_RSVD_3
+#define HDP_XDP_D2H_RSVD_3__RESERVED__SHIFT 0x0
+#define HDP_XDP_D2H_RSVD_3__RESERVED_MASK 0xFFFFFFFFL
+//HDP_XDP_D2H_RSVD_4
+#define HDP_XDP_D2H_RSVD_4__RESERVED__SHIFT 0x0
+#define HDP_XDP_D2H_RSVD_4__RESERVED_MASK 0xFFFFFFFFL
+//HDP_XDP_D2H_RSVD_5
+#define HDP_XDP_D2H_RSVD_5__RESERVED__SHIFT 0x0
+#define HDP_XDP_D2H_RSVD_5__RESERVED_MASK 0xFFFFFFFFL
+//HDP_XDP_D2H_RSVD_6
+#define HDP_XDP_D2H_RSVD_6__RESERVED__SHIFT 0x0
+#define HDP_XDP_D2H_RSVD_6__RESERVED_MASK 0xFFFFFFFFL
+//HDP_XDP_D2H_RSVD_7
+#define HDP_XDP_D2H_RSVD_7__RESERVED__SHIFT 0x0
+#define HDP_XDP_D2H_RSVD_7__RESERVED_MASK 0xFFFFFFFFL
+//HDP_XDP_D2H_RSVD_8
+#define HDP_XDP_D2H_RSVD_8__RESERVED__SHIFT 0x0
+#define HDP_XDP_D2H_RSVD_8__RESERVED_MASK 0xFFFFFFFFL
+//HDP_XDP_D2H_RSVD_9
+#define HDP_XDP_D2H_RSVD_9__RESERVED__SHIFT 0x0
+#define HDP_XDP_D2H_RSVD_9__RESERVED_MASK 0xFFFFFFFFL
+//HDP_XDP_D2H_RSVD_10
+#define HDP_XDP_D2H_RSVD_10__RESERVED__SHIFT 0x0
+#define HDP_XDP_D2H_RSVD_10__RESERVED_MASK 0xFFFFFFFFL
+//HDP_XDP_D2H_RSVD_11
+#define HDP_XDP_D2H_RSVD_11__RESERVED__SHIFT 0x0
+#define HDP_XDP_D2H_RSVD_11__RESERVED_MASK 0xFFFFFFFFL
+//HDP_XDP_D2H_RSVD_12
+#define HDP_XDP_D2H_RSVD_12__RESERVED__SHIFT 0x0
+#define HDP_XDP_D2H_RSVD_12__RESERVED_MASK 0xFFFFFFFFL
+//HDP_XDP_D2H_RSVD_13
+#define HDP_XDP_D2H_RSVD_13__RESERVED__SHIFT 0x0
+#define HDP_XDP_D2H_RSVD_13__RESERVED_MASK 0xFFFFFFFFL
+//HDP_XDP_D2H_RSVD_14
+#define HDP_XDP_D2H_RSVD_14__RESERVED__SHIFT 0x0
+#define HDP_XDP_D2H_RSVD_14__RESERVED_MASK 0xFFFFFFFFL
+//HDP_XDP_D2H_RSVD_15
+#define HDP_XDP_D2H_RSVD_15__RESERVED__SHIFT 0x0
+#define HDP_XDP_D2H_RSVD_15__RESERVED_MASK 0xFFFFFFFFL
+//HDP_XDP_D2H_RSVD_16
+#define HDP_XDP_D2H_RSVD_16__RESERVED__SHIFT 0x0
+#define HDP_XDP_D2H_RSVD_16__RESERVED_MASK 0xFFFFFFFFL
+//HDP_XDP_D2H_RSVD_17
+#define HDP_XDP_D2H_RSVD_17__RESERVED__SHIFT 0x0
+#define HDP_XDP_D2H_RSVD_17__RESERVED_MASK 0xFFFFFFFFL
+//HDP_XDP_D2H_RSVD_18
+#define HDP_XDP_D2H_RSVD_18__RESERVED__SHIFT 0x0
+#define HDP_XDP_D2H_RSVD_18__RESERVED_MASK 0xFFFFFFFFL
+//HDP_XDP_D2H_RSVD_19
+#define HDP_XDP_D2H_RSVD_19__RESERVED__SHIFT 0x0
+#define HDP_XDP_D2H_RSVD_19__RESERVED_MASK 0xFFFFFFFFL
+//HDP_XDP_D2H_RSVD_20
+#define HDP_XDP_D2H_RSVD_20__RESERVED__SHIFT 0x0
+#define HDP_XDP_D2H_RSVD_20__RESERVED_MASK 0xFFFFFFFFL
+//HDP_XDP_D2H_RSVD_21
+#define HDP_XDP_D2H_RSVD_21__RESERVED__SHIFT 0x0
+#define HDP_XDP_D2H_RSVD_21__RESERVED_MASK 0xFFFFFFFFL
+//HDP_XDP_D2H_RSVD_22
+#define HDP_XDP_D2H_RSVD_22__RESERVED__SHIFT 0x0
+#define HDP_XDP_D2H_RSVD_22__RESERVED_MASK 0xFFFFFFFFL
+//HDP_XDP_D2H_RSVD_23
+#define HDP_XDP_D2H_RSVD_23__RESERVED__SHIFT 0x0
+#define HDP_XDP_D2H_RSVD_23__RESERVED_MASK 0xFFFFFFFFL
+//HDP_XDP_D2H_RSVD_24
+#define HDP_XDP_D2H_RSVD_24__RESERVED__SHIFT 0x0
+#define HDP_XDP_D2H_RSVD_24__RESERVED_MASK 0xFFFFFFFFL
+//HDP_XDP_D2H_RSVD_25
+#define HDP_XDP_D2H_RSVD_25__RESERVED__SHIFT 0x0
+#define HDP_XDP_D2H_RSVD_25__RESERVED_MASK 0xFFFFFFFFL
+//HDP_XDP_D2H_RSVD_26
+#define HDP_XDP_D2H_RSVD_26__RESERVED__SHIFT 0x0
+#define HDP_XDP_D2H_RSVD_26__RESERVED_MASK 0xFFFFFFFFL
+//HDP_XDP_D2H_RSVD_27
+#define HDP_XDP_D2H_RSVD_27__RESERVED__SHIFT 0x0
+#define HDP_XDP_D2H_RSVD_27__RESERVED_MASK 0xFFFFFFFFL
+//HDP_XDP_D2H_RSVD_28
+#define HDP_XDP_D2H_RSVD_28__RESERVED__SHIFT 0x0
+#define HDP_XDP_D2H_RSVD_28__RESERVED_MASK 0xFFFFFFFFL
+//HDP_XDP_D2H_RSVD_29
+#define HDP_XDP_D2H_RSVD_29__RESERVED__SHIFT 0x0
+#define HDP_XDP_D2H_RSVD_29__RESERVED_MASK 0xFFFFFFFFL
+//HDP_XDP_D2H_RSVD_30
+#define HDP_XDP_D2H_RSVD_30__RESERVED__SHIFT 0x0
+#define HDP_XDP_D2H_RSVD_30__RESERVED_MASK 0xFFFFFFFFL
+//HDP_XDP_D2H_RSVD_31
+#define HDP_XDP_D2H_RSVD_31__RESERVED__SHIFT 0x0
+#define HDP_XDP_D2H_RSVD_31__RESERVED_MASK 0xFFFFFFFFL
+//HDP_XDP_D2H_RSVD_32
+#define HDP_XDP_D2H_RSVD_32__RESERVED__SHIFT 0x0
+#define HDP_XDP_D2H_RSVD_32__RESERVED_MASK 0xFFFFFFFFL
+//HDP_XDP_D2H_RSVD_33
+#define HDP_XDP_D2H_RSVD_33__RESERVED__SHIFT 0x0
+#define HDP_XDP_D2H_RSVD_33__RESERVED_MASK 0xFFFFFFFFL
+//HDP_XDP_D2H_RSVD_34
+#define HDP_XDP_D2H_RSVD_34__RESERVED__SHIFT 0x0
+#define HDP_XDP_D2H_RSVD_34__RESERVED_MASK 0xFFFFFFFFL
+//HDP_XDP_DIRECT2HDP_LAST
+#define HDP_XDP_DIRECT2HDP_LAST__RESERVED__SHIFT 0x0
+#define HDP_XDP_DIRECT2HDP_LAST__RESERVED_MASK 0xFFFFFFFFL
+//HDP_XDP_P2P_BAR_CFG
+#define HDP_XDP_P2P_BAR_CFG__P2P_BAR_CFG_ADDR_SIZE__SHIFT 0x0
+#define HDP_XDP_P2P_BAR_CFG__P2P_BAR_CFG_BAR_FROM__SHIFT 0x4
+#define HDP_XDP_P2P_BAR_CFG__P2P_BAR_CFG_ADDR_SIZE_MASK 0x0000000FL
+#define HDP_XDP_P2P_BAR_CFG__P2P_BAR_CFG_BAR_FROM_MASK 0x00000030L
+//HDP_XDP_P2P_MBX_OFFSET
+#define HDP_XDP_P2P_MBX_OFFSET__P2P_MBX_OFFSET__SHIFT 0x0
+#define HDP_XDP_P2P_MBX_OFFSET__P2P_MBX_OFFSET_MASK 0x0001FFFFL
+//HDP_XDP_P2P_MBX_ADDR0
+#define HDP_XDP_P2P_MBX_ADDR0__VALID__SHIFT 0x0
+#define HDP_XDP_P2P_MBX_ADDR0__ADDR_35_19__SHIFT 0x3
+#define HDP_XDP_P2P_MBX_ADDR0__ADDR_39_36__SHIFT 0x14
+#define HDP_XDP_P2P_MBX_ADDR0__ADDR_47_40__SHIFT 0x18
+#define HDP_XDP_P2P_MBX_ADDR0__VALID_MASK 0x00000001L
+#define HDP_XDP_P2P_MBX_ADDR0__ADDR_35_19_MASK 0x000FFFF8L
+#define HDP_XDP_P2P_MBX_ADDR0__ADDR_39_36_MASK 0x00F00000L
+#define HDP_XDP_P2P_MBX_ADDR0__ADDR_47_40_MASK 0xFF000000L
+//HDP_XDP_P2P_MBX_ADDR1
+#define HDP_XDP_P2P_MBX_ADDR1__VALID__SHIFT 0x0
+#define HDP_XDP_P2P_MBX_ADDR1__ADDR_35_19__SHIFT 0x3
+#define HDP_XDP_P2P_MBX_ADDR1__ADDR_39_36__SHIFT 0x14
+#define HDP_XDP_P2P_MBX_ADDR1__ADDR_47_40__SHIFT 0x18
+#define HDP_XDP_P2P_MBX_ADDR1__VALID_MASK 0x00000001L
+#define HDP_XDP_P2P_MBX_ADDR1__ADDR_35_19_MASK 0x000FFFF8L
+#define HDP_XDP_P2P_MBX_ADDR1__ADDR_39_36_MASK 0x00F00000L
+#define HDP_XDP_P2P_MBX_ADDR1__ADDR_47_40_MASK 0xFF000000L
+//HDP_XDP_P2P_MBX_ADDR2
+#define HDP_XDP_P2P_MBX_ADDR2__VALID__SHIFT 0x0
+#define HDP_XDP_P2P_MBX_ADDR2__ADDR_35_19__SHIFT 0x3
+#define HDP_XDP_P2P_MBX_ADDR2__ADDR_39_36__SHIFT 0x14
+#define HDP_XDP_P2P_MBX_ADDR2__ADDR_47_40__SHIFT 0x18
+#define HDP_XDP_P2P_MBX_ADDR2__VALID_MASK 0x00000001L
+#define HDP_XDP_P2P_MBX_ADDR2__ADDR_35_19_MASK 0x000FFFF8L
+#define HDP_XDP_P2P_MBX_ADDR2__ADDR_39_36_MASK 0x00F00000L
+#define HDP_XDP_P2P_MBX_ADDR2__ADDR_47_40_MASK 0xFF000000L
+//HDP_XDP_P2P_MBX_ADDR3
+#define HDP_XDP_P2P_MBX_ADDR3__VALID__SHIFT 0x0
+#define HDP_XDP_P2P_MBX_ADDR3__ADDR_35_19__SHIFT 0x3
+#define HDP_XDP_P2P_MBX_ADDR3__ADDR_39_36__SHIFT 0x14
+#define HDP_XDP_P2P_MBX_ADDR3__ADDR_47_40__SHIFT 0x18
+#define HDP_XDP_P2P_MBX_ADDR3__VALID_MASK 0x00000001L
+#define HDP_XDP_P2P_MBX_ADDR3__ADDR_35_19_MASK 0x000FFFF8L
+#define HDP_XDP_P2P_MBX_ADDR3__ADDR_39_36_MASK 0x00F00000L
+#define HDP_XDP_P2P_MBX_ADDR3__ADDR_47_40_MASK 0xFF000000L
+//HDP_XDP_P2P_MBX_ADDR4
+#define HDP_XDP_P2P_MBX_ADDR4__VALID__SHIFT 0x0
+#define HDP_XDP_P2P_MBX_ADDR4__ADDR_35_19__SHIFT 0x3
+#define HDP_XDP_P2P_MBX_ADDR4__ADDR_39_36__SHIFT 0x14
+#define HDP_XDP_P2P_MBX_ADDR4__ADDR_47_40__SHIFT 0x18
+#define HDP_XDP_P2P_MBX_ADDR4__VALID_MASK 0x00000001L
+#define HDP_XDP_P2P_MBX_ADDR4__ADDR_35_19_MASK 0x000FFFF8L
+#define HDP_XDP_P2P_MBX_ADDR4__ADDR_39_36_MASK 0x00F00000L
+#define HDP_XDP_P2P_MBX_ADDR4__ADDR_47_40_MASK 0xFF000000L
+//HDP_XDP_P2P_MBX_ADDR5
+#define HDP_XDP_P2P_MBX_ADDR5__VALID__SHIFT 0x0
+#define HDP_XDP_P2P_MBX_ADDR5__ADDR_35_19__SHIFT 0x3
+#define HDP_XDP_P2P_MBX_ADDR5__ADDR_39_36__SHIFT 0x14
+#define HDP_XDP_P2P_MBX_ADDR5__ADDR_47_40__SHIFT 0x18
+#define HDP_XDP_P2P_MBX_ADDR5__VALID_MASK 0x00000001L
+#define HDP_XDP_P2P_MBX_ADDR5__ADDR_35_19_MASK 0x000FFFF8L
+#define HDP_XDP_P2P_MBX_ADDR5__ADDR_39_36_MASK 0x00F00000L
+#define HDP_XDP_P2P_MBX_ADDR5__ADDR_47_40_MASK 0xFF000000L
+//HDP_XDP_P2P_MBX_ADDR6
+#define HDP_XDP_P2P_MBX_ADDR6__VALID__SHIFT 0x0
+#define HDP_XDP_P2P_MBX_ADDR6__ADDR_35_19__SHIFT 0x3
+#define HDP_XDP_P2P_MBX_ADDR6__ADDR_39_36__SHIFT 0x14
+#define HDP_XDP_P2P_MBX_ADDR6__ADDR_47_40__SHIFT 0x18
+#define HDP_XDP_P2P_MBX_ADDR6__VALID_MASK 0x00000001L
+#define HDP_XDP_P2P_MBX_ADDR6__ADDR_35_19_MASK 0x000FFFF8L
+#define HDP_XDP_P2P_MBX_ADDR6__ADDR_39_36_MASK 0x00F00000L
+#define HDP_XDP_P2P_MBX_ADDR6__ADDR_47_40_MASK 0xFF000000L
+//HDP_XDP_HDP_MBX_MC_CFG
+#define HDP_XDP_HDP_MBX_MC_CFG__HDP_MBX_MC_CFG_TAP_WRREQ_QOS__SHIFT 0x0
+#define HDP_XDP_HDP_MBX_MC_CFG__HDP_MBX_MC_CFG_TAP_WRREQ_SWAP__SHIFT 0x4
+#define HDP_XDP_HDP_MBX_MC_CFG__HDP_MBX_MC_CFG_TAP_WRREQ_VMID__SHIFT 0x8
+#define HDP_XDP_HDP_MBX_MC_CFG__HDP_MBX_MC_CFG_TAP_WRREQ_RO__SHIFT 0xc
+#define HDP_XDP_HDP_MBX_MC_CFG__HDP_MBX_MC_CFG_TAP_WRREQ_GCC__SHIFT 0xd
+#define HDP_XDP_HDP_MBX_MC_CFG__HDP_MBX_MC_CFG_TAP_WRREQ_SNOOP__SHIFT 0xe
+#define HDP_XDP_HDP_MBX_MC_CFG__HDP_MBX_MC_CFG_TAP_WRREQ_QOS_MASK 0x0000000FL
+#define HDP_XDP_HDP_MBX_MC_CFG__HDP_MBX_MC_CFG_TAP_WRREQ_SWAP_MASK 0x00000030L
+#define HDP_XDP_HDP_MBX_MC_CFG__HDP_MBX_MC_CFG_TAP_WRREQ_VMID_MASK 0x00000F00L
+#define HDP_XDP_HDP_MBX_MC_CFG__HDP_MBX_MC_CFG_TAP_WRREQ_RO_MASK 0x00001000L
+#define HDP_XDP_HDP_MBX_MC_CFG__HDP_MBX_MC_CFG_TAP_WRREQ_GCC_MASK 0x00002000L
+#define HDP_XDP_HDP_MBX_MC_CFG__HDP_MBX_MC_CFG_TAP_WRREQ_SNOOP_MASK 0x00004000L
+//HDP_XDP_HDP_MC_CFG
+#define HDP_XDP_HDP_MC_CFG__HDP_MC_CFG_HST_TAP_REQ_SNOOP_OVERRIDE__SHIFT 0x0
+#define HDP_XDP_HDP_MC_CFG__HDP_MC_CFG_HST_TAP_REQ_GCC_OVERRIDE__SHIFT 0x1
+#define HDP_XDP_HDP_MC_CFG__HDP_MC_CFG_HST_TAP_REQ_RO_OVERRIDE__SHIFT 0x2
+#define HDP_XDP_HDP_MC_CFG__HDP_MC_CFG_HST_TAP_REQ_SNOOP__SHIFT 0x3
+#define HDP_XDP_HDP_MC_CFG__HDP_MC_CFG_HST_TAP_REQ_SWAP__SHIFT 0x4
+#define HDP_XDP_HDP_MC_CFG__HDP_MC_CFG_HST_TAP_REQ_VMID__SHIFT 0x8
+#define HDP_XDP_HDP_MC_CFG__HDP_MC_CFG_HST_TAP_REQ_RO__SHIFT 0xc
+#define HDP_XDP_HDP_MC_CFG__HDP_MC_CFG_HST_TAP_REQ_GCC__SHIFT 0xd
+#define HDP_XDP_HDP_MC_CFG__HDP_MC_CFG_XDP_HIGHER_PRI_THRESH__SHIFT 0xe
+#define HDP_XDP_HDP_MC_CFG__HDP_MC_CFG_HST_TAP_REQ_SNOOP_OVERRIDE_MASK 0x00000001L
+#define HDP_XDP_HDP_MC_CFG__HDP_MC_CFG_HST_TAP_REQ_GCC_OVERRIDE_MASK 0x00000002L
+#define HDP_XDP_HDP_MC_CFG__HDP_MC_CFG_HST_TAP_REQ_RO_OVERRIDE_MASK 0x00000004L
+#define HDP_XDP_HDP_MC_CFG__HDP_MC_CFG_HST_TAP_REQ_SNOOP_MASK 0x00000008L
+#define HDP_XDP_HDP_MC_CFG__HDP_MC_CFG_HST_TAP_REQ_SWAP_MASK 0x00000030L
+#define HDP_XDP_HDP_MC_CFG__HDP_MC_CFG_HST_TAP_REQ_VMID_MASK 0x00000F00L
+#define HDP_XDP_HDP_MC_CFG__HDP_MC_CFG_HST_TAP_REQ_RO_MASK 0x00001000L
+#define HDP_XDP_HDP_MC_CFG__HDP_MC_CFG_HST_TAP_REQ_GCC_MASK 0x00002000L
+#define HDP_XDP_HDP_MC_CFG__HDP_MC_CFG_XDP_HIGHER_PRI_THRESH_MASK 0x000FC000L
+//HDP_XDP_HST_CFG
+#define HDP_XDP_HST_CFG__HST_CFG_WR_COMBINE_EN__SHIFT 0x0
+#define HDP_XDP_HST_CFG__HST_CFG_WR_COMBINE_TIMER__SHIFT 0x1
+#define HDP_XDP_HST_CFG__HST_CFG_WR_BURST_EN__SHIFT 0x3
+#define HDP_XDP_HST_CFG__HST_CFG_WR_COMBINE_64B_EN__SHIFT 0x4
+#define HDP_XDP_HST_CFG__HST_CFG_WR_COMBINE_TIMER_PRELOAD_CFG__SHIFT 0x5
+#define HDP_XDP_HST_CFG__HST_CFG_WR_COMBINE_EN_MASK 0x00000001L
+#define HDP_XDP_HST_CFG__HST_CFG_WR_COMBINE_TIMER_MASK 0x00000006L
+#define HDP_XDP_HST_CFG__HST_CFG_WR_BURST_EN_MASK 0x00000008L
+#define HDP_XDP_HST_CFG__HST_CFG_WR_COMBINE_64B_EN_MASK 0x00000010L
+#define HDP_XDP_HST_CFG__HST_CFG_WR_COMBINE_TIMER_PRELOAD_CFG_MASK 0x00000020L
+//HDP_XDP_HDP_IPH_CFG
+#define HDP_XDP_HDP_IPH_CFG__HDP_IPH_CFG_SYS_FIFO_DEPTH_OVERRIDE__SHIFT 0x0
+#define HDP_XDP_HDP_IPH_CFG__HDP_IPH_CFG_XDP_FIFO_DEPTH_OVERRIDE__SHIFT 0x6
+#define HDP_XDP_HDP_IPH_CFG__HDP_IPH_CFG_INVERSE_PEER_TAG_MATCHING__SHIFT 0xc
+#define HDP_XDP_HDP_IPH_CFG__HDP_IPH_CFG_P2P_RD_EN__SHIFT 0xd
+#define HDP_XDP_HDP_IPH_CFG__HDP_IPH_CFG_SYS_FIFO_DEPTH_OVERRIDE_MASK 0x0000003FL
+#define HDP_XDP_HDP_IPH_CFG__HDP_IPH_CFG_XDP_FIFO_DEPTH_OVERRIDE_MASK 0x00000FC0L
+#define HDP_XDP_HDP_IPH_CFG__HDP_IPH_CFG_INVERSE_PEER_TAG_MATCHING_MASK 0x00001000L
+#define HDP_XDP_HDP_IPH_CFG__HDP_IPH_CFG_P2P_RD_EN_MASK 0x00002000L
+//HDP_XDP_P2P_BAR0
+#define HDP_XDP_P2P_BAR0__ADDR__SHIFT 0x0
+#define HDP_XDP_P2P_BAR0__FLUSH__SHIFT 0x10
+#define HDP_XDP_P2P_BAR0__VALID__SHIFT 0x14
+#define HDP_XDP_P2P_BAR0__ADDR_MASK 0x0000FFFFL
+#define HDP_XDP_P2P_BAR0__FLUSH_MASK 0x000F0000L
+#define HDP_XDP_P2P_BAR0__VALID_MASK 0x00100000L
+//HDP_XDP_P2P_BAR1
+#define HDP_XDP_P2P_BAR1__ADDR__SHIFT 0x0
+#define HDP_XDP_P2P_BAR1__FLUSH__SHIFT 0x10
+#define HDP_XDP_P2P_BAR1__VALID__SHIFT 0x14
+#define HDP_XDP_P2P_BAR1__ADDR_MASK 0x0000FFFFL
+#define HDP_XDP_P2P_BAR1__FLUSH_MASK 0x000F0000L
+#define HDP_XDP_P2P_BAR1__VALID_MASK 0x00100000L
+//HDP_XDP_P2P_BAR2
+#define HDP_XDP_P2P_BAR2__ADDR__SHIFT 0x0
+#define HDP_XDP_P2P_BAR2__FLUSH__SHIFT 0x10
+#define HDP_XDP_P2P_BAR2__VALID__SHIFT 0x14
+#define HDP_XDP_P2P_BAR2__ADDR_MASK 0x0000FFFFL
+#define HDP_XDP_P2P_BAR2__FLUSH_MASK 0x000F0000L
+#define HDP_XDP_P2P_BAR2__VALID_MASK 0x00100000L
+//HDP_XDP_P2P_BAR3
+#define HDP_XDP_P2P_BAR3__ADDR__SHIFT 0x0
+#define HDP_XDP_P2P_BAR3__FLUSH__SHIFT 0x10
+#define HDP_XDP_P2P_BAR3__VALID__SHIFT 0x14
+#define HDP_XDP_P2P_BAR3__ADDR_MASK 0x0000FFFFL
+#define HDP_XDP_P2P_BAR3__FLUSH_MASK 0x000F0000L
+#define HDP_XDP_P2P_BAR3__VALID_MASK 0x00100000L
+//HDP_XDP_P2P_BAR4
+#define HDP_XDP_P2P_BAR4__ADDR__SHIFT 0x0
+#define HDP_XDP_P2P_BAR4__FLUSH__SHIFT 0x10
+#define HDP_XDP_P2P_BAR4__VALID__SHIFT 0x14
+#define HDP_XDP_P2P_BAR4__ADDR_MASK 0x0000FFFFL
+#define HDP_XDP_P2P_BAR4__FLUSH_MASK 0x000F0000L
+#define HDP_XDP_P2P_BAR4__VALID_MASK 0x00100000L
+//HDP_XDP_P2P_BAR5
+#define HDP_XDP_P2P_BAR5__ADDR__SHIFT 0x0
+#define HDP_XDP_P2P_BAR5__FLUSH__SHIFT 0x10
+#define HDP_XDP_P2P_BAR5__VALID__SHIFT 0x14
+#define HDP_XDP_P2P_BAR5__ADDR_MASK 0x0000FFFFL
+#define HDP_XDP_P2P_BAR5__FLUSH_MASK 0x000F0000L
+#define HDP_XDP_P2P_BAR5__VALID_MASK 0x00100000L
+//HDP_XDP_P2P_BAR6
+#define HDP_XDP_P2P_BAR6__ADDR__SHIFT 0x0
+#define HDP_XDP_P2P_BAR6__FLUSH__SHIFT 0x10
+#define HDP_XDP_P2P_BAR6__VALID__SHIFT 0x14
+#define HDP_XDP_P2P_BAR6__ADDR_MASK 0x0000FFFFL
+#define HDP_XDP_P2P_BAR6__FLUSH_MASK 0x000F0000L
+#define HDP_XDP_P2P_BAR6__VALID_MASK 0x00100000L
+//HDP_XDP_P2P_BAR7
+#define HDP_XDP_P2P_BAR7__ADDR__SHIFT 0x0
+#define HDP_XDP_P2P_BAR7__FLUSH__SHIFT 0x10
+#define HDP_XDP_P2P_BAR7__VALID__SHIFT 0x14
+#define HDP_XDP_P2P_BAR7__ADDR_MASK 0x0000FFFFL
+#define HDP_XDP_P2P_BAR7__FLUSH_MASK 0x000F0000L
+#define HDP_XDP_P2P_BAR7__VALID_MASK 0x00100000L
+//HDP_XDP_FLUSH_ARMED_STS
+#define HDP_XDP_FLUSH_ARMED_STS__FLUSH_ARMED_STS__SHIFT 0x0
+#define HDP_XDP_FLUSH_ARMED_STS__FLUSH_ARMED_STS_MASK 0xFFFFFFFFL
+//HDP_XDP_FLUSH_CNTR0_STS
+#define HDP_XDP_FLUSH_CNTR0_STS__FLUSH_CNTR0_STS__SHIFT 0x0
+#define HDP_XDP_FLUSH_CNTR0_STS__FLUSH_CNTR0_STS_MASK 0x03FFFFFFL
+//HDP_XDP_BUSY_STS
+#define HDP_XDP_BUSY_STS__BUSY_BITS__SHIFT 0x0
+#define HDP_XDP_BUSY_STS__BUSY_BITS_MASK 0x00FFFFFFL
+//HDP_XDP_STICKY
+#define HDP_XDP_STICKY__STICKY_STS__SHIFT 0x0
+#define HDP_XDP_STICKY__STICKY_W1C__SHIFT 0x10
+#define HDP_XDP_STICKY__STICKY_STS_MASK 0x0000FFFFL
+#define HDP_XDP_STICKY__STICKY_W1C_MASK 0xFFFF0000L
+//HDP_XDP_CHKN
+#define HDP_XDP_CHKN__CHKN_0_RSVD__SHIFT 0x0
+#define HDP_XDP_CHKN__CHKN_1_RSVD__SHIFT 0x8
+#define HDP_XDP_CHKN__CHKN_2_RSVD__SHIFT 0x10
+#define HDP_XDP_CHKN__CHKN_3_RSVD__SHIFT 0x18
+#define HDP_XDP_CHKN__CHKN_0_RSVD_MASK 0x000000FFL
+#define HDP_XDP_CHKN__CHKN_1_RSVD_MASK 0x0000FF00L
+#define HDP_XDP_CHKN__CHKN_2_RSVD_MASK 0x00FF0000L
+#define HDP_XDP_CHKN__CHKN_3_RSVD_MASK 0xFF000000L
+//HDP_XDP_BARS_ADDR_39_36
+#define HDP_XDP_BARS_ADDR_39_36__BAR0_ADDR_39_36__SHIFT 0x0
+#define HDP_XDP_BARS_ADDR_39_36__BAR1_ADDR_39_36__SHIFT 0x4
+#define HDP_XDP_BARS_ADDR_39_36__BAR2_ADDR_39_36__SHIFT 0x8
+#define HDP_XDP_BARS_ADDR_39_36__BAR3_ADDR_39_36__SHIFT 0xc
+#define HDP_XDP_BARS_ADDR_39_36__BAR4_ADDR_39_36__SHIFT 0x10
+#define HDP_XDP_BARS_ADDR_39_36__BAR5_ADDR_39_36__SHIFT 0x14
+#define HDP_XDP_BARS_ADDR_39_36__BAR6_ADDR_39_36__SHIFT 0x18
+#define HDP_XDP_BARS_ADDR_39_36__BAR7_ADDR_39_36__SHIFT 0x1c
+#define HDP_XDP_BARS_ADDR_39_36__BAR0_ADDR_39_36_MASK 0x0000000FL
+#define HDP_XDP_BARS_ADDR_39_36__BAR1_ADDR_39_36_MASK 0x000000F0L
+#define HDP_XDP_BARS_ADDR_39_36__BAR2_ADDR_39_36_MASK 0x00000F00L
+#define HDP_XDP_BARS_ADDR_39_36__BAR3_ADDR_39_36_MASK 0x0000F000L
+#define HDP_XDP_BARS_ADDR_39_36__BAR4_ADDR_39_36_MASK 0x000F0000L
+#define HDP_XDP_BARS_ADDR_39_36__BAR5_ADDR_39_36_MASK 0x00F00000L
+#define HDP_XDP_BARS_ADDR_39_36__BAR6_ADDR_39_36_MASK 0x0F000000L
+#define HDP_XDP_BARS_ADDR_39_36__BAR7_ADDR_39_36_MASK 0xF0000000L
+//HDP_XDP_MC_VM_FB_LOCATION_BASE
+#define HDP_XDP_MC_VM_FB_LOCATION_BASE__FB_BASE__SHIFT 0x0
+#define HDP_XDP_MC_VM_FB_LOCATION_BASE__FB_BASE_MASK 0x03FFFFFFL
+//HDP_XDP_GPU_IOV_VIOLATION_LOG
+#define HDP_XDP_GPU_IOV_VIOLATION_LOG__VIOLATION_STATUS__SHIFT 0x0
+#define HDP_XDP_GPU_IOV_VIOLATION_LOG__MULTIPLE_VIOLATION_STATUS__SHIFT 0x1
+#define HDP_XDP_GPU_IOV_VIOLATION_LOG__ADDRESS__SHIFT 0x2
+#define HDP_XDP_GPU_IOV_VIOLATION_LOG__OPCODE__SHIFT 0x12
+#define HDP_XDP_GPU_IOV_VIOLATION_LOG__VF__SHIFT 0x13
+#define HDP_XDP_GPU_IOV_VIOLATION_LOG__VFID__SHIFT 0x14
+#define HDP_XDP_GPU_IOV_VIOLATION_LOG__VIOLATION_STATUS_MASK 0x00000001L
+#define HDP_XDP_GPU_IOV_VIOLATION_LOG__MULTIPLE_VIOLATION_STATUS_MASK 0x00000002L
+#define HDP_XDP_GPU_IOV_VIOLATION_LOG__ADDRESS_MASK 0x0003FFFCL
+#define HDP_XDP_GPU_IOV_VIOLATION_LOG__OPCODE_MASK 0x00040000L
+#define HDP_XDP_GPU_IOV_VIOLATION_LOG__VF_MASK 0x00080000L
+#define HDP_XDP_GPU_IOV_VIOLATION_LOG__VFID_MASK 0x00F00000L
+//HDP_XDP_GPU_IOV_VIOLATION_LOG2
+#define HDP_XDP_GPU_IOV_VIOLATION_LOG2__INITIATOR_ID__SHIFT 0x0
+#define HDP_XDP_GPU_IOV_VIOLATION_LOG2__INITIATOR_ID_MASK 0x000003FFL
+//HDP_XDP_MMHUB_ERROR
+#define HDP_XDP_MMHUB_ERROR__HDP_BRESP_01__SHIFT 0x1
+#define HDP_XDP_MMHUB_ERROR__HDP_BRESP_10__SHIFT 0x2
+#define HDP_XDP_MMHUB_ERROR__HDP_BRESP_11__SHIFT 0x3
+#define HDP_XDP_MMHUB_ERROR__HDP_BUSER_FED__SHIFT 0x4
+#define HDP_XDP_MMHUB_ERROR__HDP_BUSER_NACK_01__SHIFT 0x5
+#define HDP_XDP_MMHUB_ERROR__HDP_BUSER_NACK_10__SHIFT 0x6
+#define HDP_XDP_MMHUB_ERROR__HDP_BUSER_NACK_11__SHIFT 0x7
+#define HDP_XDP_MMHUB_ERROR__HDP_RRESP_01__SHIFT 0x9
+#define HDP_XDP_MMHUB_ERROR__HDP_RRESP_10__SHIFT 0xa
+#define HDP_XDP_MMHUB_ERROR__HDP_RRESP_11__SHIFT 0xb
+#define HDP_XDP_MMHUB_ERROR__HDP_RUSER_FED__SHIFT 0xc
+#define HDP_XDP_MMHUB_ERROR__HDP_RUSER_NACK_01__SHIFT 0xd
+#define HDP_XDP_MMHUB_ERROR__HDP_RUSER_NACK_10__SHIFT 0xe
+#define HDP_XDP_MMHUB_ERROR__HDP_RUSER_NACK_11__SHIFT 0xf
+#define HDP_XDP_MMHUB_ERROR__XDP_BRESP_01__SHIFT 0x11
+#define HDP_XDP_MMHUB_ERROR__XDP_BRESP_10__SHIFT 0x12
+#define HDP_XDP_MMHUB_ERROR__XDP_BRESP_11__SHIFT 0x13
+#define HDP_XDP_MMHUB_ERROR__XDP_BUSER_NACK_01__SHIFT 0x15
+#define HDP_XDP_MMHUB_ERROR__XDP_BUSER_NACK_10__SHIFT 0x16
+#define HDP_XDP_MMHUB_ERROR__XDP_BUSER_NACK_11__SHIFT 0x17
+#define HDP_XDP_MMHUB_ERROR__HDP_BRESP_01_MASK 0x00000002L
+#define HDP_XDP_MMHUB_ERROR__HDP_BRESP_10_MASK 0x00000004L
+#define HDP_XDP_MMHUB_ERROR__HDP_BRESP_11_MASK 0x00000008L
+#define HDP_XDP_MMHUB_ERROR__HDP_BUSER_FED_MASK 0x00000010L
+#define HDP_XDP_MMHUB_ERROR__HDP_BUSER_NACK_01_MASK 0x00000020L
+#define HDP_XDP_MMHUB_ERROR__HDP_BUSER_NACK_10_MASK 0x00000040L
+#define HDP_XDP_MMHUB_ERROR__HDP_BUSER_NACK_11_MASK 0x00000080L
+#define HDP_XDP_MMHUB_ERROR__HDP_RRESP_01_MASK 0x00000200L
+#define HDP_XDP_MMHUB_ERROR__HDP_RRESP_10_MASK 0x00000400L
+#define HDP_XDP_MMHUB_ERROR__HDP_RRESP_11_MASK 0x00000800L
+#define HDP_XDP_MMHUB_ERROR__HDP_RUSER_FED_MASK 0x00001000L
+#define HDP_XDP_MMHUB_ERROR__HDP_RUSER_NACK_01_MASK 0x00002000L
+#define HDP_XDP_MMHUB_ERROR__HDP_RUSER_NACK_10_MASK 0x00004000L
+#define HDP_XDP_MMHUB_ERROR__HDP_RUSER_NACK_11_MASK 0x00008000L
+#define HDP_XDP_MMHUB_ERROR__XDP_BRESP_01_MASK 0x00020000L
+#define HDP_XDP_MMHUB_ERROR__XDP_BRESP_10_MASK 0x00040000L
+#define HDP_XDP_MMHUB_ERROR__XDP_BRESP_11_MASK 0x00080000L
+#define HDP_XDP_MMHUB_ERROR__XDP_BUSER_NACK_01_MASK 0x00200000L
+#define HDP_XDP_MMHUB_ERROR__XDP_BUSER_NACK_10_MASK 0x00400000L
+#define HDP_XDP_MMHUB_ERROR__XDP_BUSER_NACK_11_MASK 0x00800000L
+
+#endif
diff --git a/drivers/gpu/drm/amd/include/asic_reg/mmhub/mmhub_1_8_0_offset.h b/drivers/gpu/drm/amd/include/asic_reg/mmhub/mmhub_1_8_0_offset.h
new file mode 100644
index 000000000000..8bcc81f2dfc0
--- /dev/null
+++ b/drivers/gpu/drm/amd/include/asic_reg/mmhub/mmhub_1_8_0_offset.h
@@ -0,0 +1,3314 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ */
+#ifndef _mmhub_1_8_0_OFFSET_HEADER
+#define _mmhub_1_8_0_OFFSET_HEADER
+
+
+
+// addressBlock: aid_mmhub_dagb_dagbdec0
+// base address: 0x60000
+#define regDAGB0_RDCLI0 0x0000
+#define regDAGB0_RDCLI0_BASE_IDX 0
+#define regDAGB0_RDCLI1 0x0001
+#define regDAGB0_RDCLI1_BASE_IDX 0
+#define regDAGB0_RDCLI2 0x0002
+#define regDAGB0_RDCLI2_BASE_IDX 0
+#define regDAGB0_RDCLI3 0x0003
+#define regDAGB0_RDCLI3_BASE_IDX 0
+#define regDAGB0_RDCLI4 0x0004
+#define regDAGB0_RDCLI4_BASE_IDX 0
+#define regDAGB0_RDCLI5 0x0005
+#define regDAGB0_RDCLI5_BASE_IDX 0
+#define regDAGB0_RDCLI6 0x0006
+#define regDAGB0_RDCLI6_BASE_IDX 0
+#define regDAGB0_RDCLI7 0x0007
+#define regDAGB0_RDCLI7_BASE_IDX 0
+#define regDAGB0_RDCLI8 0x0008
+#define regDAGB0_RDCLI8_BASE_IDX 0
+#define regDAGB0_RDCLI9 0x0009
+#define regDAGB0_RDCLI9_BASE_IDX 0
+#define regDAGB0_RDCLI10 0x000a
+#define regDAGB0_RDCLI10_BASE_IDX 0
+#define regDAGB0_RDCLI11 0x000b
+#define regDAGB0_RDCLI11_BASE_IDX 0
+#define regDAGB0_RDCLI12 0x000c
+#define regDAGB0_RDCLI12_BASE_IDX 0
+#define regDAGB0_RDCLI13 0x000d
+#define regDAGB0_RDCLI13_BASE_IDX 0
+#define regDAGB0_RDCLI14 0x000e
+#define regDAGB0_RDCLI14_BASE_IDX 0
+#define regDAGB0_RDCLI15 0x000f
+#define regDAGB0_RDCLI15_BASE_IDX 0
+#define regDAGB0_RD_CNTL 0x0010
+#define regDAGB0_RD_CNTL_BASE_IDX 0
+#define regDAGB0_RD_GMI_CNTL 0x0011
+#define regDAGB0_RD_GMI_CNTL_BASE_IDX 0
+#define regDAGB0_RD_ADDR_DAGB 0x0012
+#define regDAGB0_RD_ADDR_DAGB_BASE_IDX 0
+#define regDAGB0_RD_OUTPUT_DAGB_MAX_BURST 0x0013
+#define regDAGB0_RD_OUTPUT_DAGB_MAX_BURST_BASE_IDX 0
+#define regDAGB0_RD_OUTPUT_DAGB_LAZY_TIMER 0x0014
+#define regDAGB0_RD_OUTPUT_DAGB_LAZY_TIMER_BASE_IDX 0
+#define regDAGB0_RD_CGTT_CLK_CTRL 0x0015
+#define regDAGB0_RD_CGTT_CLK_CTRL_BASE_IDX 0
+#define regDAGB0_L1TLB_RD_CGTT_CLK_CTRL 0x0016
+#define regDAGB0_L1TLB_RD_CGTT_CLK_CTRL_BASE_IDX 0
+#define regDAGB0_ATCVM_RD_CGTT_CLK_CTRL 0x0017
+#define regDAGB0_ATCVM_RD_CGTT_CLK_CTRL_BASE_IDX 0
+#define regDAGB0_RD_ADDR_DAGB_MAX_BURST0 0x0018
+#define regDAGB0_RD_ADDR_DAGB_MAX_BURST0_BASE_IDX 0
+#define regDAGB0_RD_ADDR_DAGB_LAZY_TIMER0 0x0019
+#define regDAGB0_RD_ADDR_DAGB_LAZY_TIMER0_BASE_IDX 0
+#define regDAGB0_RD_ADDR_DAGB_MAX_BURST1 0x001a
+#define regDAGB0_RD_ADDR_DAGB_MAX_BURST1_BASE_IDX 0
+#define regDAGB0_RD_ADDR_DAGB_LAZY_TIMER1 0x001b
+#define regDAGB0_RD_ADDR_DAGB_LAZY_TIMER1_BASE_IDX 0
+#define regDAGB0_RD_VC0_CNTL 0x001c
+#define regDAGB0_RD_VC0_CNTL_BASE_IDX 0
+#define regDAGB0_RD_VC1_CNTL 0x001d
+#define regDAGB0_RD_VC1_CNTL_BASE_IDX 0
+#define regDAGB0_RD_VC2_CNTL 0x001e
+#define regDAGB0_RD_VC2_CNTL_BASE_IDX 0
+#define regDAGB0_RD_VC3_CNTL 0x001f
+#define regDAGB0_RD_VC3_CNTL_BASE_IDX 0
+#define regDAGB0_RD_VC4_CNTL 0x0020
+#define regDAGB0_RD_VC4_CNTL_BASE_IDX 0
+#define regDAGB0_RD_VC5_CNTL 0x0021
+#define regDAGB0_RD_VC5_CNTL_BASE_IDX 0
+#define regDAGB0_RD_VC6_CNTL 0x0022
+#define regDAGB0_RD_VC6_CNTL_BASE_IDX 0
+#define regDAGB0_RD_VC7_CNTL 0x0023
+#define regDAGB0_RD_VC7_CNTL_BASE_IDX 0
+#define regDAGB0_RD_CNTL_MISC 0x0024
+#define regDAGB0_RD_CNTL_MISC_BASE_IDX 0
+#define regDAGB0_RD_TLB_CREDIT 0x0025
+#define regDAGB0_RD_TLB_CREDIT_BASE_IDX 0
+#define regDAGB0_RD_RDRET_CREDIT_CNTL 0x0026
+#define regDAGB0_RD_RDRET_CREDIT_CNTL_BASE_IDX 0
+#define regDAGB0_RD_RDRET_CREDIT_CNTL2 0x0027
+#define regDAGB0_RD_RDRET_CREDIT_CNTL2_BASE_IDX 0
+#define regDAGB0_RDCLI_ASK_PENDING 0x0028
+#define regDAGB0_RDCLI_ASK_PENDING_BASE_IDX 0
+#define regDAGB0_RDCLI_GO_PENDING 0x0029
+#define regDAGB0_RDCLI_GO_PENDING_BASE_IDX 0
+#define regDAGB0_RDCLI_GBLSEND_PENDING 0x002a
+#define regDAGB0_RDCLI_GBLSEND_PENDING_BASE_IDX 0
+#define regDAGB0_RDCLI_TLB_PENDING 0x002b
+#define regDAGB0_RDCLI_TLB_PENDING_BASE_IDX 0
+#define regDAGB0_RDCLI_OARB_PENDING 0x002c
+#define regDAGB0_RDCLI_OARB_PENDING_BASE_IDX 0
+#define regDAGB0_RDCLI_OSD_PENDING 0x002d
+#define regDAGB0_RDCLI_OSD_PENDING_BASE_IDX 0
+#define regDAGB0_RDCLI_NOALLOC_OVERRIDE 0x002e
+#define regDAGB0_RDCLI_NOALLOC_OVERRIDE_BASE_IDX 0
+#define regDAGB0_RDCLI_NOALLOC_OVERRIDE_VALUE 0x002f
+#define regDAGB0_RDCLI_NOALLOC_OVERRIDE_VALUE_BASE_IDX 0
+#define regDAGB0_WRCLI0 0x0030
+#define regDAGB0_WRCLI0_BASE_IDX 0
+#define regDAGB0_WRCLI1 0x0031
+#define regDAGB0_WRCLI1_BASE_IDX 0
+#define regDAGB0_WRCLI2 0x0032
+#define regDAGB0_WRCLI2_BASE_IDX 0
+#define regDAGB0_WRCLI3 0x0033
+#define regDAGB0_WRCLI3_BASE_IDX 0
+#define regDAGB0_WRCLI4 0x0034
+#define regDAGB0_WRCLI4_BASE_IDX 0
+#define regDAGB0_WRCLI5 0x0035
+#define regDAGB0_WRCLI5_BASE_IDX 0
+#define regDAGB0_WRCLI6 0x0036
+#define regDAGB0_WRCLI6_BASE_IDX 0
+#define regDAGB0_WRCLI7 0x0037
+#define regDAGB0_WRCLI7_BASE_IDX 0
+#define regDAGB0_WRCLI8 0x0038
+#define regDAGB0_WRCLI8_BASE_IDX 0
+#define regDAGB0_WRCLI9 0x0039
+#define regDAGB0_WRCLI9_BASE_IDX 0
+#define regDAGB0_WRCLI10 0x003a
+#define regDAGB0_WRCLI10_BASE_IDX 0
+#define regDAGB0_WRCLI11 0x003b
+#define regDAGB0_WRCLI11_BASE_IDX 0
+#define regDAGB0_WRCLI12 0x003c
+#define regDAGB0_WRCLI12_BASE_IDX 0
+#define regDAGB0_WRCLI13 0x003d
+#define regDAGB0_WRCLI13_BASE_IDX 0
+#define regDAGB0_WRCLI14 0x003e
+#define regDAGB0_WRCLI14_BASE_IDX 0
+#define regDAGB0_WRCLI15 0x003f
+#define regDAGB0_WRCLI15_BASE_IDX 0
+#define regDAGB0_WR_CNTL 0x0040
+#define regDAGB0_WR_CNTL_BASE_IDX 0
+#define regDAGB0_WR_GMI_CNTL 0x0041
+#define regDAGB0_WR_GMI_CNTL_BASE_IDX 0
+#define regDAGB0_WR_ADDR_DAGB 0x0042
+#define regDAGB0_WR_ADDR_DAGB_BASE_IDX 0
+#define regDAGB0_WR_OUTPUT_DAGB_MAX_BURST 0x0043
+#define regDAGB0_WR_OUTPUT_DAGB_MAX_BURST_BASE_IDX 0
+#define regDAGB0_WR_OUTPUT_DAGB_LAZY_TIMER 0x0044
+#define regDAGB0_WR_OUTPUT_DAGB_LAZY_TIMER_BASE_IDX 0
+#define regDAGB0_WR_CGTT_CLK_CTRL 0x0045
+#define regDAGB0_WR_CGTT_CLK_CTRL_BASE_IDX 0
+#define regDAGB0_L1TLB_WR_CGTT_CLK_CTRL 0x0046
+#define regDAGB0_L1TLB_WR_CGTT_CLK_CTRL_BASE_IDX 0
+#define regDAGB0_ATCVM_WR_CGTT_CLK_CTRL 0x0047
+#define regDAGB0_ATCVM_WR_CGTT_CLK_CTRL_BASE_IDX 0
+#define regDAGB0_WR_ADDR_DAGB_MAX_BURST0 0x0048
+#define regDAGB0_WR_ADDR_DAGB_MAX_BURST0_BASE_IDX 0
+#define regDAGB0_WR_ADDR_DAGB_LAZY_TIMER0 0x0049
+#define regDAGB0_WR_ADDR_DAGB_LAZY_TIMER0_BASE_IDX 0
+#define regDAGB0_WR_ADDR_DAGB_MAX_BURST1 0x004a
+#define regDAGB0_WR_ADDR_DAGB_MAX_BURST1_BASE_IDX 0
+#define regDAGB0_WR_ADDR_DAGB_LAZY_TIMER1 0x004b
+#define regDAGB0_WR_ADDR_DAGB_LAZY_TIMER1_BASE_IDX 0
+#define regDAGB0_WR_DATA_DAGB 0x004c
+#define regDAGB0_WR_DATA_DAGB_BASE_IDX 0
+#define regDAGB0_WR_DATA_DAGB_MAX_BURST0 0x004d
+#define regDAGB0_WR_DATA_DAGB_MAX_BURST0_BASE_IDX 0
+#define regDAGB0_WR_DATA_DAGB_LAZY_TIMER0 0x004e
+#define regDAGB0_WR_DATA_DAGB_LAZY_TIMER0_BASE_IDX 0
+#define regDAGB0_WR_DATA_DAGB_MAX_BURST1 0x004f
+#define regDAGB0_WR_DATA_DAGB_MAX_BURST1_BASE_IDX 0
+#define regDAGB0_WR_DATA_DAGB_LAZY_TIMER1 0x0050
+#define regDAGB0_WR_DATA_DAGB_LAZY_TIMER1_BASE_IDX 0
+#define regDAGB0_WR_VC0_CNTL 0x0051
+#define regDAGB0_WR_VC0_CNTL_BASE_IDX 0
+#define regDAGB0_WR_VC1_CNTL 0x0052
+#define regDAGB0_WR_VC1_CNTL_BASE_IDX 0
+#define regDAGB0_WR_VC2_CNTL 0x0053
+#define regDAGB0_WR_VC2_CNTL_BASE_IDX 0
+#define regDAGB0_WR_VC3_CNTL 0x0054
+#define regDAGB0_WR_VC3_CNTL_BASE_IDX 0
+#define regDAGB0_WR_VC4_CNTL 0x0055
+#define regDAGB0_WR_VC4_CNTL_BASE_IDX 0
+#define regDAGB0_WR_VC5_CNTL 0x0056
+#define regDAGB0_WR_VC5_CNTL_BASE_IDX 0
+#define regDAGB0_WR_VC6_CNTL 0x0057
+#define regDAGB0_WR_VC6_CNTL_BASE_IDX 0
+#define regDAGB0_WR_VC7_CNTL 0x0058
+#define regDAGB0_WR_VC7_CNTL_BASE_IDX 0
+#define regDAGB0_WR_CNTL_MISC 0x0059
+#define regDAGB0_WR_CNTL_MISC_BASE_IDX 0
+#define regDAGB0_WR_TLB_CREDIT 0x005a
+#define regDAGB0_WR_TLB_CREDIT_BASE_IDX 0
+#define regDAGB0_WR_DATA_CREDIT 0x005b
+#define regDAGB0_WR_DATA_CREDIT_BASE_IDX 0
+#define regDAGB0_WR_MISC_CREDIT 0x005c
+#define regDAGB0_WR_MISC_CREDIT_BASE_IDX 0
+#define regDAGB0_WR_OSD_CREDIT_CNTL1 0x005d
+#define regDAGB0_WR_OSD_CREDIT_CNTL1_BASE_IDX 0
+#define regDAGB0_WR_OSD_CREDIT_CNTL2 0x005e
+#define regDAGB0_WR_OSD_CREDIT_CNTL2_BASE_IDX 0
+#define regDAGB0_WR_ATOMIC_FIFO_CREDIT_CNTL1 0x005f
+#define regDAGB0_WR_ATOMIC_FIFO_CREDIT_CNTL1_BASE_IDX 0
+#define regDAGB0_WRCLI_GPU_SNOOP_OVERRIDE 0x0060
+#define regDAGB0_WRCLI_GPU_SNOOP_OVERRIDE_BASE_IDX 0
+#define regDAGB0_WRCLI_GPU_SNOOP_OVERRIDE_VALUE 0x0061
+#define regDAGB0_WRCLI_GPU_SNOOP_OVERRIDE_VALUE_BASE_IDX 0
+#define regDAGB0_WRCLI_ASK_PENDING 0x0062
+#define regDAGB0_WRCLI_ASK_PENDING_BASE_IDX 0
+#define regDAGB0_WRCLI_GO_PENDING 0x0063
+#define regDAGB0_WRCLI_GO_PENDING_BASE_IDX 0
+#define regDAGB0_WRCLI_GBLSEND_PENDING 0x0064
+#define regDAGB0_WRCLI_GBLSEND_PENDING_BASE_IDX 0
+#define regDAGB0_WRCLI_TLB_PENDING 0x0065
+#define regDAGB0_WRCLI_TLB_PENDING_BASE_IDX 0
+#define regDAGB0_WRCLI_OARB_PENDING 0x0066
+#define regDAGB0_WRCLI_OARB_PENDING_BASE_IDX 0
+#define regDAGB0_WRCLI_OSD_PENDING 0x0067
+#define regDAGB0_WRCLI_OSD_PENDING_BASE_IDX 0
+#define regDAGB0_WRCLI_DBUS_ASK_PENDING 0x0068
+#define regDAGB0_WRCLI_DBUS_ASK_PENDING_BASE_IDX 0
+#define regDAGB0_WRCLI_DBUS_GO_PENDING 0x0069
+#define regDAGB0_WRCLI_DBUS_GO_PENDING_BASE_IDX 0
+#define regDAGB0_WRCLI_NOALLOC_OVERRIDE 0x006a
+#define regDAGB0_WRCLI_NOALLOC_OVERRIDE_BASE_IDX 0
+#define regDAGB0_WRCLI_NOALLOC_OVERRIDE_VALUE 0x006b
+#define regDAGB0_WRCLI_NOALLOC_OVERRIDE_VALUE_BASE_IDX 0
+#define regDAGB0_DAGB_DLY 0x006c
+#define regDAGB0_DAGB_DLY_BASE_IDX 0
+#define regDAGB0_CNTL_MISC 0x006d
+#define regDAGB0_CNTL_MISC_BASE_IDX 0
+#define regDAGB0_CNTL_MISC2 0x006e
+#define regDAGB0_CNTL_MISC2_BASE_IDX 0
+#define regDAGB0_FATAL_ERROR_CNTL 0x006f
+#define regDAGB0_FATAL_ERROR_CNTL_BASE_IDX 0
+#define regDAGB0_FATAL_ERROR_CLEAR 0x0070
+#define regDAGB0_FATAL_ERROR_CLEAR_BASE_IDX 0
+#define regDAGB0_FATAL_ERROR_STATUS0 0x0071
+#define regDAGB0_FATAL_ERROR_STATUS0_BASE_IDX 0
+#define regDAGB0_FATAL_ERROR_STATUS1 0x0072
+#define regDAGB0_FATAL_ERROR_STATUS1_BASE_IDX 0
+#define regDAGB0_FATAL_ERROR_STATUS2 0x0073
+#define regDAGB0_FATAL_ERROR_STATUS2_BASE_IDX 0
+#define regDAGB0_FATAL_ERROR_STATUS3 0x0074
+#define regDAGB0_FATAL_ERROR_STATUS3_BASE_IDX 0
+#define regDAGB0_FIFO_EMPTY 0x0075
+#define regDAGB0_FIFO_EMPTY_BASE_IDX 0
+#define regDAGB0_FIFO_FULL 0x0076
+#define regDAGB0_FIFO_FULL_BASE_IDX 0
+#define regDAGB0_WR_CREDITS_FULL 0x0077
+#define regDAGB0_WR_CREDITS_FULL_BASE_IDX 0
+#define regDAGB0_RD_CREDITS_FULL 0x0078
+#define regDAGB0_RD_CREDITS_FULL_BASE_IDX 0
+#define regDAGB0_PERFCOUNTER_LO 0x0079
+#define regDAGB0_PERFCOUNTER_LO_BASE_IDX 0
+#define regDAGB0_PERFCOUNTER_HI 0x007a
+#define regDAGB0_PERFCOUNTER_HI_BASE_IDX 0
+#define regDAGB0_PERFCOUNTER0_CFG 0x007b
+#define regDAGB0_PERFCOUNTER0_CFG_BASE_IDX 0
+#define regDAGB0_PERFCOUNTER1_CFG 0x007c
+#define regDAGB0_PERFCOUNTER1_CFG_BASE_IDX 0
+#define regDAGB0_PERFCOUNTER2_CFG 0x007d
+#define regDAGB0_PERFCOUNTER2_CFG_BASE_IDX 0
+#define regDAGB0_PERFCOUNTER_RSLT_CNTL 0x007e
+#define regDAGB0_PERFCOUNTER_RSLT_CNTL_BASE_IDX 0
+#define regDAGB0_L1TLB_REG_RW 0x007f
+#define regDAGB0_L1TLB_REG_RW_BASE_IDX 0
+
+
+// addressBlock: aid_mmhub_dagb_dagbdec1
+// base address: 0x60200
+#define regDAGB1_RDCLI0 0x0080
+#define regDAGB1_RDCLI0_BASE_IDX 0
+#define regDAGB1_RDCLI1 0x0081
+#define regDAGB1_RDCLI1_BASE_IDX 0
+#define regDAGB1_RDCLI2 0x0082
+#define regDAGB1_RDCLI2_BASE_IDX 0
+#define regDAGB1_RDCLI3 0x0083
+#define regDAGB1_RDCLI3_BASE_IDX 0
+#define regDAGB1_RDCLI4 0x0084
+#define regDAGB1_RDCLI4_BASE_IDX 0
+#define regDAGB1_RDCLI5 0x0085
+#define regDAGB1_RDCLI5_BASE_IDX 0
+#define regDAGB1_RDCLI6 0x0086
+#define regDAGB1_RDCLI6_BASE_IDX 0
+#define regDAGB1_RDCLI7 0x0087
+#define regDAGB1_RDCLI7_BASE_IDX 0
+#define regDAGB1_RDCLI8 0x0088
+#define regDAGB1_RDCLI8_BASE_IDX 0
+#define regDAGB1_RDCLI9 0x0089
+#define regDAGB1_RDCLI9_BASE_IDX 0
+#define regDAGB1_RDCLI10 0x008a
+#define regDAGB1_RDCLI10_BASE_IDX 0
+#define regDAGB1_RDCLI11 0x008b
+#define regDAGB1_RDCLI11_BASE_IDX 0
+#define regDAGB1_RDCLI12 0x008c
+#define regDAGB1_RDCLI12_BASE_IDX 0
+#define regDAGB1_RDCLI13 0x008d
+#define regDAGB1_RDCLI13_BASE_IDX 0
+#define regDAGB1_RDCLI14 0x008e
+#define regDAGB1_RDCLI14_BASE_IDX 0
+#define regDAGB1_RDCLI15 0x008f
+#define regDAGB1_RDCLI15_BASE_IDX 0
+#define regDAGB1_RD_CNTL 0x0090
+#define regDAGB1_RD_CNTL_BASE_IDX 0
+#define regDAGB1_RD_GMI_CNTL 0x0091
+#define regDAGB1_RD_GMI_CNTL_BASE_IDX 0
+#define regDAGB1_RD_ADDR_DAGB 0x0092
+#define regDAGB1_RD_ADDR_DAGB_BASE_IDX 0
+#define regDAGB1_RD_OUTPUT_DAGB_MAX_BURST 0x0093
+#define regDAGB1_RD_OUTPUT_DAGB_MAX_BURST_BASE_IDX 0
+#define regDAGB1_RD_OUTPUT_DAGB_LAZY_TIMER 0x0094
+#define regDAGB1_RD_OUTPUT_DAGB_LAZY_TIMER_BASE_IDX 0
+#define regDAGB1_RD_CGTT_CLK_CTRL 0x0095
+#define regDAGB1_RD_CGTT_CLK_CTRL_BASE_IDX 0
+#define regDAGB1_L1TLB_RD_CGTT_CLK_CTRL 0x0096
+#define regDAGB1_L1TLB_RD_CGTT_CLK_CTRL_BASE_IDX 0
+#define regDAGB1_ATCVM_RD_CGTT_CLK_CTRL 0x0097
+#define regDAGB1_ATCVM_RD_CGTT_CLK_CTRL_BASE_IDX 0
+#define regDAGB1_RD_ADDR_DAGB_MAX_BURST0 0x0098
+#define regDAGB1_RD_ADDR_DAGB_MAX_BURST0_BASE_IDX 0
+#define regDAGB1_RD_ADDR_DAGB_LAZY_TIMER0 0x0099
+#define regDAGB1_RD_ADDR_DAGB_LAZY_TIMER0_BASE_IDX 0
+#define regDAGB1_RD_ADDR_DAGB_MAX_BURST1 0x009a
+#define regDAGB1_RD_ADDR_DAGB_MAX_BURST1_BASE_IDX 0
+#define regDAGB1_RD_ADDR_DAGB_LAZY_TIMER1 0x009b
+#define regDAGB1_RD_ADDR_DAGB_LAZY_TIMER1_BASE_IDX 0
+#define regDAGB1_RD_VC0_CNTL 0x009c
+#define regDAGB1_RD_VC0_CNTL_BASE_IDX 0
+#define regDAGB1_RD_VC1_CNTL 0x009d
+#define regDAGB1_RD_VC1_CNTL_BASE_IDX 0
+#define regDAGB1_RD_VC2_CNTL 0x009e
+#define regDAGB1_RD_VC2_CNTL_BASE_IDX 0
+#define regDAGB1_RD_VC3_CNTL 0x009f
+#define regDAGB1_RD_VC3_CNTL_BASE_IDX 0
+#define regDAGB1_RD_VC4_CNTL 0x00a0
+#define regDAGB1_RD_VC4_CNTL_BASE_IDX 0
+#define regDAGB1_RD_VC5_CNTL 0x00a1
+#define regDAGB1_RD_VC5_CNTL_BASE_IDX 0
+#define regDAGB1_RD_VC6_CNTL 0x00a2
+#define regDAGB1_RD_VC6_CNTL_BASE_IDX 0
+#define regDAGB1_RD_VC7_CNTL 0x00a3
+#define regDAGB1_RD_VC7_CNTL_BASE_IDX 0
+#define regDAGB1_RD_CNTL_MISC 0x00a4
+#define regDAGB1_RD_CNTL_MISC_BASE_IDX 0
+#define regDAGB1_RD_TLB_CREDIT 0x00a5
+#define regDAGB1_RD_TLB_CREDIT_BASE_IDX 0
+#define regDAGB1_RD_RDRET_CREDIT_CNTL 0x00a6
+#define regDAGB1_RD_RDRET_CREDIT_CNTL_BASE_IDX 0
+#define regDAGB1_RD_RDRET_CREDIT_CNTL2 0x00a7
+#define regDAGB1_RD_RDRET_CREDIT_CNTL2_BASE_IDX 0
+#define regDAGB1_RDCLI_ASK_PENDING 0x00a8
+#define regDAGB1_RDCLI_ASK_PENDING_BASE_IDX 0
+#define regDAGB1_RDCLI_GO_PENDING 0x00a9
+#define regDAGB1_RDCLI_GO_PENDING_BASE_IDX 0
+#define regDAGB1_RDCLI_GBLSEND_PENDING 0x00aa
+#define regDAGB1_RDCLI_GBLSEND_PENDING_BASE_IDX 0
+#define regDAGB1_RDCLI_TLB_PENDING 0x00ab
+#define regDAGB1_RDCLI_TLB_PENDING_BASE_IDX 0
+#define regDAGB1_RDCLI_OARB_PENDING 0x00ac
+#define regDAGB1_RDCLI_OARB_PENDING_BASE_IDX 0
+#define regDAGB1_RDCLI_OSD_PENDING 0x00ad
+#define regDAGB1_RDCLI_OSD_PENDING_BASE_IDX 0
+#define regDAGB1_RDCLI_NOALLOC_OVERRIDE 0x00ae
+#define regDAGB1_RDCLI_NOALLOC_OVERRIDE_BASE_IDX 0
+#define regDAGB1_RDCLI_NOALLOC_OVERRIDE_VALUE 0x00af
+#define regDAGB1_RDCLI_NOALLOC_OVERRIDE_VALUE_BASE_IDX 0
+#define regDAGB1_WRCLI0 0x00b0
+#define regDAGB1_WRCLI0_BASE_IDX 0
+#define regDAGB1_WRCLI1 0x00b1
+#define regDAGB1_WRCLI1_BASE_IDX 0
+#define regDAGB1_WRCLI2 0x00b2
+#define regDAGB1_WRCLI2_BASE_IDX 0
+#define regDAGB1_WRCLI3 0x00b3
+#define regDAGB1_WRCLI3_BASE_IDX 0
+#define regDAGB1_WRCLI4 0x00b4
+#define regDAGB1_WRCLI4_BASE_IDX 0
+#define regDAGB1_WRCLI5 0x00b5
+#define regDAGB1_WRCLI5_BASE_IDX 0
+#define regDAGB1_WRCLI6 0x00b6
+#define regDAGB1_WRCLI6_BASE_IDX 0
+#define regDAGB1_WRCLI7 0x00b7
+#define regDAGB1_WRCLI7_BASE_IDX 0
+#define regDAGB1_WRCLI8 0x00b8
+#define regDAGB1_WRCLI8_BASE_IDX 0
+#define regDAGB1_WRCLI9 0x00b9
+#define regDAGB1_WRCLI9_BASE_IDX 0
+#define regDAGB1_WRCLI10 0x00ba
+#define regDAGB1_WRCLI10_BASE_IDX 0
+#define regDAGB1_WRCLI11 0x00bb
+#define regDAGB1_WRCLI11_BASE_IDX 0
+#define regDAGB1_WRCLI12 0x00bc
+#define regDAGB1_WRCLI12_BASE_IDX 0
+#define regDAGB1_WRCLI13 0x00bd
+#define regDAGB1_WRCLI13_BASE_IDX 0
+#define regDAGB1_WRCLI14 0x00be
+#define regDAGB1_WRCLI14_BASE_IDX 0
+#define regDAGB1_WRCLI15 0x00bf
+#define regDAGB1_WRCLI15_BASE_IDX 0
+#define regDAGB1_WR_CNTL 0x00c0
+#define regDAGB1_WR_CNTL_BASE_IDX 0
+#define regDAGB1_WR_GMI_CNTL 0x00c1
+#define regDAGB1_WR_GMI_CNTL_BASE_IDX 0
+#define regDAGB1_WR_ADDR_DAGB 0x00c2
+#define regDAGB1_WR_ADDR_DAGB_BASE_IDX 0
+#define regDAGB1_WR_OUTPUT_DAGB_MAX_BURST 0x00c3
+#define regDAGB1_WR_OUTPUT_DAGB_MAX_BURST_BASE_IDX 0
+#define regDAGB1_WR_OUTPUT_DAGB_LAZY_TIMER 0x00c4
+#define regDAGB1_WR_OUTPUT_DAGB_LAZY_TIMER_BASE_IDX 0
+#define regDAGB1_WR_CGTT_CLK_CTRL 0x00c5
+#define regDAGB1_WR_CGTT_CLK_CTRL_BASE_IDX 0
+#define regDAGB1_L1TLB_WR_CGTT_CLK_CTRL 0x00c6
+#define regDAGB1_L1TLB_WR_CGTT_CLK_CTRL_BASE_IDX 0
+#define regDAGB1_ATCVM_WR_CGTT_CLK_CTRL 0x00c7
+#define regDAGB1_ATCVM_WR_CGTT_CLK_CTRL_BASE_IDX 0
+#define regDAGB1_WR_ADDR_DAGB_MAX_BURST0 0x00c8
+#define regDAGB1_WR_ADDR_DAGB_MAX_BURST0_BASE_IDX 0
+#define regDAGB1_WR_ADDR_DAGB_LAZY_TIMER0 0x00c9
+#define regDAGB1_WR_ADDR_DAGB_LAZY_TIMER0_BASE_IDX 0
+#define regDAGB1_WR_ADDR_DAGB_MAX_BURST1 0x00ca
+#define regDAGB1_WR_ADDR_DAGB_MAX_BURST1_BASE_IDX 0
+#define regDAGB1_WR_ADDR_DAGB_LAZY_TIMER1 0x00cb
+#define regDAGB1_WR_ADDR_DAGB_LAZY_TIMER1_BASE_IDX 0
+#define regDAGB1_WR_DATA_DAGB 0x00cc
+#define regDAGB1_WR_DATA_DAGB_BASE_IDX 0
+#define regDAGB1_WR_DATA_DAGB_MAX_BURST0 0x00cd
+#define regDAGB1_WR_DATA_DAGB_MAX_BURST0_BASE_IDX 0
+#define regDAGB1_WR_DATA_DAGB_LAZY_TIMER0 0x00ce
+#define regDAGB1_WR_DATA_DAGB_LAZY_TIMER0_BASE_IDX 0
+#define regDAGB1_WR_DATA_DAGB_MAX_BURST1 0x00cf
+#define regDAGB1_WR_DATA_DAGB_MAX_BURST1_BASE_IDX 0
+#define regDAGB1_WR_DATA_DAGB_LAZY_TIMER1 0x00d0
+#define regDAGB1_WR_DATA_DAGB_LAZY_TIMER1_BASE_IDX 0
+#define regDAGB1_WR_VC0_CNTL 0x00d1
+#define regDAGB1_WR_VC0_CNTL_BASE_IDX 0
+#define regDAGB1_WR_VC1_CNTL 0x00d2
+#define regDAGB1_WR_VC1_CNTL_BASE_IDX 0
+#define regDAGB1_WR_VC2_CNTL 0x00d3
+#define regDAGB1_WR_VC2_CNTL_BASE_IDX 0
+#define regDAGB1_WR_VC3_CNTL 0x00d4
+#define regDAGB1_WR_VC3_CNTL_BASE_IDX 0
+#define regDAGB1_WR_VC4_CNTL 0x00d5
+#define regDAGB1_WR_VC4_CNTL_BASE_IDX 0
+#define regDAGB1_WR_VC5_CNTL 0x00d6
+#define regDAGB1_WR_VC5_CNTL_BASE_IDX 0
+#define regDAGB1_WR_VC6_CNTL 0x00d7
+#define regDAGB1_WR_VC6_CNTL_BASE_IDX 0
+#define regDAGB1_WR_VC7_CNTL 0x00d8
+#define regDAGB1_WR_VC7_CNTL_BASE_IDX 0
+#define regDAGB1_WR_CNTL_MISC 0x00d9
+#define regDAGB1_WR_CNTL_MISC_BASE_IDX 0
+#define regDAGB1_WR_TLB_CREDIT 0x00da
+#define regDAGB1_WR_TLB_CREDIT_BASE_IDX 0
+#define regDAGB1_WR_DATA_CREDIT 0x00db
+#define regDAGB1_WR_DATA_CREDIT_BASE_IDX 0
+#define regDAGB1_WR_MISC_CREDIT 0x00dc
+#define regDAGB1_WR_MISC_CREDIT_BASE_IDX 0
+#define regDAGB1_WR_OSD_CREDIT_CNTL1 0x00dd
+#define regDAGB1_WR_OSD_CREDIT_CNTL1_BASE_IDX 0
+#define regDAGB1_WR_OSD_CREDIT_CNTL2 0x00de
+#define regDAGB1_WR_OSD_CREDIT_CNTL2_BASE_IDX 0
+#define regDAGB1_WR_ATOMIC_FIFO_CREDIT_CNTL1 0x00df
+#define regDAGB1_WR_ATOMIC_FIFO_CREDIT_CNTL1_BASE_IDX 0
+#define regDAGB1_WRCLI_GPU_SNOOP_OVERRIDE 0x00e0
+#define regDAGB1_WRCLI_GPU_SNOOP_OVERRIDE_BASE_IDX 0
+#define regDAGB1_WRCLI_GPU_SNOOP_OVERRIDE_VALUE 0x00e1
+#define regDAGB1_WRCLI_GPU_SNOOP_OVERRIDE_VALUE_BASE_IDX 0
+#define regDAGB1_WRCLI_ASK_PENDING 0x00e2
+#define regDAGB1_WRCLI_ASK_PENDING_BASE_IDX 0
+#define regDAGB1_WRCLI_GO_PENDING 0x00e3
+#define regDAGB1_WRCLI_GO_PENDING_BASE_IDX 0
+#define regDAGB1_WRCLI_GBLSEND_PENDING 0x00e4
+#define regDAGB1_WRCLI_GBLSEND_PENDING_BASE_IDX 0
+#define regDAGB1_WRCLI_TLB_PENDING 0x00e5
+#define regDAGB1_WRCLI_TLB_PENDING_BASE_IDX 0
+#define regDAGB1_WRCLI_OARB_PENDING 0x00e6
+#define regDAGB1_WRCLI_OARB_PENDING_BASE_IDX 0
+#define regDAGB1_WRCLI_OSD_PENDING 0x00e7
+#define regDAGB1_WRCLI_OSD_PENDING_BASE_IDX 0
+#define regDAGB1_WRCLI_DBUS_ASK_PENDING 0x00e8
+#define regDAGB1_WRCLI_DBUS_ASK_PENDING_BASE_IDX 0
+#define regDAGB1_WRCLI_DBUS_GO_PENDING 0x00e9
+#define regDAGB1_WRCLI_DBUS_GO_PENDING_BASE_IDX 0
+#define regDAGB1_DAGB_DLY 0x00ec
+#define regDAGB1_DAGB_DLY_BASE_IDX 0
+#define regDAGB1_CNTL_MISC 0x00ed
+#define regDAGB1_CNTL_MISC_BASE_IDX 0
+#define regDAGB1_CNTL_MISC2 0x00ee
+#define regDAGB1_CNTL_MISC2_BASE_IDX 0
+#define regDAGB1_FATAL_ERROR_CNTL 0x00ef
+#define regDAGB1_FATAL_ERROR_CNTL_BASE_IDX 0
+#define regDAGB1_FATAL_ERROR_CLEAR 0x00f0
+#define regDAGB1_FATAL_ERROR_CLEAR_BASE_IDX 0
+#define regDAGB1_FATAL_ERROR_STATUS0 0x00f1
+#define regDAGB1_FATAL_ERROR_STATUS0_BASE_IDX 0
+#define regDAGB1_FATAL_ERROR_STATUS1 0x00f2
+#define regDAGB1_FATAL_ERROR_STATUS1_BASE_IDX 0
+#define regDAGB1_FATAL_ERROR_STATUS2 0x00f3
+#define regDAGB1_FATAL_ERROR_STATUS2_BASE_IDX 0
+#define regDAGB1_FATAL_ERROR_STATUS3 0x00f4
+#define regDAGB1_FATAL_ERROR_STATUS3_BASE_IDX 0
+#define regDAGB1_FIFO_EMPTY 0x00f5
+#define regDAGB1_FIFO_EMPTY_BASE_IDX 0
+#define regDAGB1_FIFO_FULL 0x00f6
+#define regDAGB1_FIFO_FULL_BASE_IDX 0
+#define regDAGB1_WR_CREDITS_FULL 0x00f7
+#define regDAGB1_WR_CREDITS_FULL_BASE_IDX 0
+#define regDAGB1_RD_CREDITS_FULL 0x00f8
+#define regDAGB1_RD_CREDITS_FULL_BASE_IDX 0
+#define regDAGB1_PERFCOUNTER_LO 0x00f9
+#define regDAGB1_PERFCOUNTER_LO_BASE_IDX 0
+#define regDAGB1_PERFCOUNTER_HI 0x00fa
+#define regDAGB1_PERFCOUNTER_HI_BASE_IDX 0
+#define regDAGB1_PERFCOUNTER0_CFG 0x00fb
+#define regDAGB1_PERFCOUNTER0_CFG_BASE_IDX 0
+#define regDAGB1_PERFCOUNTER1_CFG 0x00fc
+#define regDAGB1_PERFCOUNTER1_CFG_BASE_IDX 0
+#define regDAGB1_PERFCOUNTER2_CFG 0x00fd
+#define regDAGB1_PERFCOUNTER2_CFG_BASE_IDX 0
+#define regDAGB1_PERFCOUNTER_RSLT_CNTL 0x00fe
+#define regDAGB1_PERFCOUNTER_RSLT_CNTL_BASE_IDX 0
+#define regDAGB1_L1TLB_REG_RW 0x00ff
+#define regDAGB1_L1TLB_REG_RW_BASE_IDX 0
+
+
+// addressBlock: aid_mmhub_dagb_dagbdec2
+// base address: 0x60400
+#define regDAGB2_RDCLI0 0x0100
+#define regDAGB2_RDCLI0_BASE_IDX 0
+#define regDAGB2_RDCLI1 0x0101
+#define regDAGB2_RDCLI1_BASE_IDX 0
+#define regDAGB2_RDCLI2 0x0102
+#define regDAGB2_RDCLI2_BASE_IDX 0
+#define regDAGB2_RDCLI3 0x0103
+#define regDAGB2_RDCLI3_BASE_IDX 0
+#define regDAGB2_RDCLI4 0x0104
+#define regDAGB2_RDCLI4_BASE_IDX 0
+#define regDAGB2_RDCLI5 0x0105
+#define regDAGB2_RDCLI5_BASE_IDX 0
+#define regDAGB2_RDCLI6 0x0106
+#define regDAGB2_RDCLI6_BASE_IDX 0
+#define regDAGB2_RDCLI7 0x0107
+#define regDAGB2_RDCLI7_BASE_IDX 0
+#define regDAGB2_RDCLI8 0x0108
+#define regDAGB2_RDCLI8_BASE_IDX 0
+#define regDAGB2_RDCLI9 0x0109
+#define regDAGB2_RDCLI9_BASE_IDX 0
+#define regDAGB2_RDCLI10 0x010a
+#define regDAGB2_RDCLI10_BASE_IDX 0
+#define regDAGB2_RDCLI11 0x010b
+#define regDAGB2_RDCLI11_BASE_IDX 0
+#define regDAGB2_RDCLI12 0x010c
+#define regDAGB2_RDCLI12_BASE_IDX 0
+#define regDAGB2_RDCLI13 0x010d
+#define regDAGB2_RDCLI13_BASE_IDX 0
+#define regDAGB2_RDCLI14 0x010e
+#define regDAGB2_RDCLI14_BASE_IDX 0
+#define regDAGB2_RDCLI15 0x010f
+#define regDAGB2_RDCLI15_BASE_IDX 0
+#define regDAGB2_RD_CNTL 0x0110
+#define regDAGB2_RD_CNTL_BASE_IDX 0
+#define regDAGB2_RD_GMI_CNTL 0x0111
+#define regDAGB2_RD_GMI_CNTL_BASE_IDX 0
+#define regDAGB2_RD_ADDR_DAGB 0x0112
+#define regDAGB2_RD_ADDR_DAGB_BASE_IDX 0
+#define regDAGB2_RD_OUTPUT_DAGB_MAX_BURST 0x0113
+#define regDAGB2_RD_OUTPUT_DAGB_MAX_BURST_BASE_IDX 0
+#define regDAGB2_RD_OUTPUT_DAGB_LAZY_TIMER 0x0114
+#define regDAGB2_RD_OUTPUT_DAGB_LAZY_TIMER_BASE_IDX 0
+#define regDAGB2_RD_CGTT_CLK_CTRL 0x0115
+#define regDAGB2_RD_CGTT_CLK_CTRL_BASE_IDX 0
+#define regDAGB2_L1TLB_RD_CGTT_CLK_CTRL 0x0116
+#define regDAGB2_L1TLB_RD_CGTT_CLK_CTRL_BASE_IDX 0
+#define regDAGB2_ATCVM_RD_CGTT_CLK_CTRL 0x0117
+#define regDAGB2_ATCVM_RD_CGTT_CLK_CTRL_BASE_IDX 0
+#define regDAGB2_RD_ADDR_DAGB_MAX_BURST0 0x0118
+#define regDAGB2_RD_ADDR_DAGB_MAX_BURST0_BASE_IDX 0
+#define regDAGB2_RD_ADDR_DAGB_LAZY_TIMER0 0x0119
+#define regDAGB2_RD_ADDR_DAGB_LAZY_TIMER0_BASE_IDX 0
+#define regDAGB2_RD_ADDR_DAGB_MAX_BURST1 0x011a
+#define regDAGB2_RD_ADDR_DAGB_MAX_BURST1_BASE_IDX 0
+#define regDAGB2_RD_ADDR_DAGB_LAZY_TIMER1 0x011b
+#define regDAGB2_RD_ADDR_DAGB_LAZY_TIMER1_BASE_IDX 0
+#define regDAGB2_RD_VC0_CNTL 0x011c
+#define regDAGB2_RD_VC0_CNTL_BASE_IDX 0
+#define regDAGB2_RD_VC1_CNTL 0x011d
+#define regDAGB2_RD_VC1_CNTL_BASE_IDX 0
+#define regDAGB2_RD_VC2_CNTL 0x011e
+#define regDAGB2_RD_VC2_CNTL_BASE_IDX 0
+#define regDAGB2_RD_VC3_CNTL 0x011f
+#define regDAGB2_RD_VC3_CNTL_BASE_IDX 0
+#define regDAGB2_RD_VC4_CNTL 0x0120
+#define regDAGB2_RD_VC4_CNTL_BASE_IDX 0
+#define regDAGB2_RD_VC5_CNTL 0x0121
+#define regDAGB2_RD_VC5_CNTL_BASE_IDX 0
+#define regDAGB2_RD_VC6_CNTL 0x0122
+#define regDAGB2_RD_VC6_CNTL_BASE_IDX 0
+#define regDAGB2_RD_VC7_CNTL 0x0123
+#define regDAGB2_RD_VC7_CNTL_BASE_IDX 0
+#define regDAGB2_RD_CNTL_MISC 0x0124
+#define regDAGB2_RD_CNTL_MISC_BASE_IDX 0
+#define regDAGB2_RD_TLB_CREDIT 0x0125
+#define regDAGB2_RD_TLB_CREDIT_BASE_IDX 0
+#define regDAGB2_RD_RDRET_CREDIT_CNTL 0x0126
+#define regDAGB2_RD_RDRET_CREDIT_CNTL_BASE_IDX 0
+#define regDAGB2_RD_RDRET_CREDIT_CNTL2 0x0127
+#define regDAGB2_RD_RDRET_CREDIT_CNTL2_BASE_IDX 0
+#define regDAGB2_RDCLI_ASK_PENDING 0x0128
+#define regDAGB2_RDCLI_ASK_PENDING_BASE_IDX 0
+#define regDAGB2_RDCLI_GO_PENDING 0x0129
+#define regDAGB2_RDCLI_GO_PENDING_BASE_IDX 0
+#define regDAGB2_RDCLI_GBLSEND_PENDING 0x012a
+#define regDAGB2_RDCLI_GBLSEND_PENDING_BASE_IDX 0
+#define regDAGB2_RDCLI_TLB_PENDING 0x012b
+#define regDAGB2_RDCLI_TLB_PENDING_BASE_IDX 0
+#define regDAGB2_RDCLI_OARB_PENDING 0x012c
+#define regDAGB2_RDCLI_OARB_PENDING_BASE_IDX 0
+#define regDAGB2_RDCLI_OSD_PENDING 0x012d
+#define regDAGB2_RDCLI_OSD_PENDING_BASE_IDX 0
+#define regDAGB2_WRCLI0 0x0130
+#define regDAGB2_WRCLI0_BASE_IDX 0
+#define regDAGB2_WRCLI1 0x0131
+#define regDAGB2_WRCLI1_BASE_IDX 0
+#define regDAGB2_WRCLI2 0x0132
+#define regDAGB2_WRCLI2_BASE_IDX 0
+#define regDAGB2_WRCLI3 0x0133
+#define regDAGB2_WRCLI3_BASE_IDX 0
+#define regDAGB2_WRCLI4 0x0134
+#define regDAGB2_WRCLI4_BASE_IDX 0
+#define regDAGB2_WRCLI5 0x0135
+#define regDAGB2_WRCLI5_BASE_IDX 0
+#define regDAGB2_WRCLI6 0x0136
+#define regDAGB2_WRCLI6_BASE_IDX 0
+#define regDAGB2_WRCLI7 0x0137
+#define regDAGB2_WRCLI7_BASE_IDX 0
+#define regDAGB2_WRCLI8 0x0138
+#define regDAGB2_WRCLI8_BASE_IDX 0
+#define regDAGB2_WRCLI9 0x0139
+#define regDAGB2_WRCLI9_BASE_IDX 0
+#define regDAGB2_WRCLI10 0x013a
+#define regDAGB2_WRCLI10_BASE_IDX 0
+#define regDAGB2_WRCLI11 0x013b
+#define regDAGB2_WRCLI11_BASE_IDX 0
+#define regDAGB2_WRCLI12 0x013c
+#define regDAGB2_WRCLI12_BASE_IDX 0
+#define regDAGB2_WRCLI13 0x013d
+#define regDAGB2_WRCLI13_BASE_IDX 0
+#define regDAGB2_WRCLI14 0x013e
+#define regDAGB2_WRCLI14_BASE_IDX 0
+#define regDAGB2_WRCLI15 0x013f
+#define regDAGB2_WRCLI15_BASE_IDX 0
+#define regDAGB2_WR_CNTL 0x0140
+#define regDAGB2_WR_CNTL_BASE_IDX 0
+#define regDAGB2_WR_GMI_CNTL 0x0141
+#define regDAGB2_WR_GMI_CNTL_BASE_IDX 0
+#define regDAGB2_WR_ADDR_DAGB 0x0142
+#define regDAGB2_WR_ADDR_DAGB_BASE_IDX 0
+#define regDAGB2_WR_OUTPUT_DAGB_MAX_BURST 0x0143
+#define regDAGB2_WR_OUTPUT_DAGB_MAX_BURST_BASE_IDX 0
+#define regDAGB2_WR_OUTPUT_DAGB_LAZY_TIMER 0x0144
+#define regDAGB2_WR_OUTPUT_DAGB_LAZY_TIMER_BASE_IDX 0
+#define regDAGB2_WR_CGTT_CLK_CTRL 0x0145
+#define regDAGB2_WR_CGTT_CLK_CTRL_BASE_IDX 0
+#define regDAGB2_L1TLB_WR_CGTT_CLK_CTRL 0x0146
+#define regDAGB2_L1TLB_WR_CGTT_CLK_CTRL_BASE_IDX 0
+#define regDAGB2_ATCVM_WR_CGTT_CLK_CTRL 0x0147
+#define regDAGB2_ATCVM_WR_CGTT_CLK_CTRL_BASE_IDX 0
+#define regDAGB2_WR_ADDR_DAGB_MAX_BURST0 0x0148
+#define regDAGB2_WR_ADDR_DAGB_MAX_BURST0_BASE_IDX 0
+#define regDAGB2_WR_ADDR_DAGB_LAZY_TIMER0 0x0149
+#define regDAGB2_WR_ADDR_DAGB_LAZY_TIMER0_BASE_IDX 0
+#define regDAGB2_WR_ADDR_DAGB_MAX_BURST1 0x014a
+#define regDAGB2_WR_ADDR_DAGB_MAX_BURST1_BASE_IDX 0
+#define regDAGB2_WR_ADDR_DAGB_LAZY_TIMER1 0x014b
+#define regDAGB2_WR_ADDR_DAGB_LAZY_TIMER1_BASE_IDX 0
+#define regDAGB2_WR_DATA_DAGB 0x014c
+#define regDAGB2_WR_DATA_DAGB_BASE_IDX 0
+#define regDAGB2_WR_DATA_DAGB_MAX_BURST0 0x014d
+#define regDAGB2_WR_DATA_DAGB_MAX_BURST0_BASE_IDX 0
+#define regDAGB2_WR_DATA_DAGB_LAZY_TIMER0 0x014e
+#define regDAGB2_WR_DATA_DAGB_LAZY_TIMER0_BASE_IDX 0
+#define regDAGB2_WR_DATA_DAGB_MAX_BURST1 0x014f
+#define regDAGB2_WR_DATA_DAGB_MAX_BURST1_BASE_IDX 0
+#define regDAGB2_WR_DATA_DAGB_LAZY_TIMER1 0x0150
+#define regDAGB2_WR_DATA_DAGB_LAZY_TIMER1_BASE_IDX 0
+#define regDAGB2_WR_VC0_CNTL 0x0151
+#define regDAGB2_WR_VC0_CNTL_BASE_IDX 0
+#define regDAGB2_WR_VC1_CNTL 0x0152
+#define regDAGB2_WR_VC1_CNTL_BASE_IDX 0
+#define regDAGB2_WR_VC2_CNTL 0x0153
+#define regDAGB2_WR_VC2_CNTL_BASE_IDX 0
+#define regDAGB2_WR_VC3_CNTL 0x0154
+#define regDAGB2_WR_VC3_CNTL_BASE_IDX 0
+#define regDAGB2_WR_VC4_CNTL 0x0155
+#define regDAGB2_WR_VC4_CNTL_BASE_IDX 0
+#define regDAGB2_WR_VC5_CNTL 0x0156
+#define regDAGB2_WR_VC5_CNTL_BASE_IDX 0
+#define regDAGB2_WR_VC6_CNTL 0x0157
+#define regDAGB2_WR_VC6_CNTL_BASE_IDX 0
+#define regDAGB2_WR_VC7_CNTL 0x0158
+#define regDAGB2_WR_VC7_CNTL_BASE_IDX 0
+#define regDAGB2_WR_CNTL_MISC 0x0159
+#define regDAGB2_WR_CNTL_MISC_BASE_IDX 0
+#define regDAGB2_WR_TLB_CREDIT 0x015a
+#define regDAGB2_WR_TLB_CREDIT_BASE_IDX 0
+#define regDAGB2_WR_DATA_CREDIT 0x015b
+#define regDAGB2_WR_DATA_CREDIT_BASE_IDX 0
+#define regDAGB2_WR_MISC_CREDIT 0x015c
+#define regDAGB2_WR_MISC_CREDIT_BASE_IDX 0
+#define regDAGB2_WR_OSD_CREDIT_CNTL1 0x015d
+#define regDAGB2_WR_OSD_CREDIT_CNTL1_BASE_IDX 0
+#define regDAGB2_WR_OSD_CREDIT_CNTL2 0x015e
+#define regDAGB2_WR_OSD_CREDIT_CNTL2_BASE_IDX 0
+#define regDAGB2_WR_ATOMIC_FIFO_CREDIT_CNTL1 0x015f
+#define regDAGB2_WR_ATOMIC_FIFO_CREDIT_CNTL1_BASE_IDX 0
+#define regDAGB2_WRCLI_GPU_SNOOP_OVERRIDE 0x0160
+#define regDAGB2_WRCLI_GPU_SNOOP_OVERRIDE_BASE_IDX 0
+#define regDAGB2_WRCLI_GPU_SNOOP_OVERRIDE_VALUE 0x0161
+#define regDAGB2_WRCLI_GPU_SNOOP_OVERRIDE_VALUE_BASE_IDX 0
+#define regDAGB2_WRCLI_ASK_PENDING 0x0162
+#define regDAGB2_WRCLI_ASK_PENDING_BASE_IDX 0
+#define regDAGB2_WRCLI_GO_PENDING 0x0163
+#define regDAGB2_WRCLI_GO_PENDING_BASE_IDX 0
+#define regDAGB2_WRCLI_GBLSEND_PENDING 0x0164
+#define regDAGB2_WRCLI_GBLSEND_PENDING_BASE_IDX 0
+#define regDAGB2_WRCLI_TLB_PENDING 0x0165
+#define regDAGB2_WRCLI_TLB_PENDING_BASE_IDX 0
+#define regDAGB2_WRCLI_OARB_PENDING 0x0166
+#define regDAGB2_WRCLI_OARB_PENDING_BASE_IDX 0
+#define regDAGB2_WRCLI_OSD_PENDING 0x0167
+#define regDAGB2_WRCLI_OSD_PENDING_BASE_IDX 0
+#define regDAGB2_WRCLI_DBUS_ASK_PENDING 0x0168
+#define regDAGB2_WRCLI_DBUS_ASK_PENDING_BASE_IDX 0
+#define regDAGB2_WRCLI_DBUS_GO_PENDING 0x0169
+#define regDAGB2_WRCLI_DBUS_GO_PENDING_BASE_IDX 0
+#define regDAGB2_DAGB_DLY 0x016c
+#define regDAGB2_DAGB_DLY_BASE_IDX 0
+#define regDAGB2_CNTL_MISC 0x016d
+#define regDAGB2_CNTL_MISC_BASE_IDX 0
+#define regDAGB2_CNTL_MISC2 0x016e
+#define regDAGB2_CNTL_MISC2_BASE_IDX 0
+#define regDAGB2_FATAL_ERROR_CNTL 0x016f
+#define regDAGB2_FATAL_ERROR_CNTL_BASE_IDX 0
+#define regDAGB2_FATAL_ERROR_CLEAR 0x0170
+#define regDAGB2_FATAL_ERROR_CLEAR_BASE_IDX 0
+#define regDAGB2_FATAL_ERROR_STATUS0 0x0171
+#define regDAGB2_FATAL_ERROR_STATUS0_BASE_IDX 0
+#define regDAGB2_FATAL_ERROR_STATUS1 0x0172
+#define regDAGB2_FATAL_ERROR_STATUS1_BASE_IDX 0
+#define regDAGB2_FATAL_ERROR_STATUS2 0x0173
+#define regDAGB2_FATAL_ERROR_STATUS2_BASE_IDX 0
+#define regDAGB2_FATAL_ERROR_STATUS3 0x0174
+#define regDAGB2_FATAL_ERROR_STATUS3_BASE_IDX 0
+#define regDAGB2_FIFO_EMPTY 0x0175
+#define regDAGB2_FIFO_EMPTY_BASE_IDX 0
+#define regDAGB2_FIFO_FULL 0x0176
+#define regDAGB2_FIFO_FULL_BASE_IDX 0
+#define regDAGB2_WR_CREDITS_FULL 0x0177
+#define regDAGB2_WR_CREDITS_FULL_BASE_IDX 0
+#define regDAGB2_RD_CREDITS_FULL 0x0178
+#define regDAGB2_RD_CREDITS_FULL_BASE_IDX 0
+#define regDAGB2_PERFCOUNTER_LO 0x0179
+#define regDAGB2_PERFCOUNTER_LO_BASE_IDX 0
+#define regDAGB2_PERFCOUNTER_HI 0x017a
+#define regDAGB2_PERFCOUNTER_HI_BASE_IDX 0
+#define regDAGB2_PERFCOUNTER0_CFG 0x017b
+#define regDAGB2_PERFCOUNTER0_CFG_BASE_IDX 0
+#define regDAGB2_PERFCOUNTER1_CFG 0x017c
+#define regDAGB2_PERFCOUNTER1_CFG_BASE_IDX 0
+#define regDAGB2_PERFCOUNTER2_CFG 0x017d
+#define regDAGB2_PERFCOUNTER2_CFG_BASE_IDX 0
+#define regDAGB2_PERFCOUNTER_RSLT_CNTL 0x017e
+#define regDAGB2_PERFCOUNTER_RSLT_CNTL_BASE_IDX 0
+#define regDAGB2_L1TLB_REG_RW 0x017f
+#define regDAGB2_L1TLB_REG_RW_BASE_IDX 0
+
+
+// addressBlock: aid_mmhub_dagb_dagbdec3
+// base address: 0x60600
+#define regDAGB3_RDCLI0 0x0180
+#define regDAGB3_RDCLI0_BASE_IDX 0
+#define regDAGB3_RDCLI1 0x0181
+#define regDAGB3_RDCLI1_BASE_IDX 0
+#define regDAGB3_RDCLI2 0x0182
+#define regDAGB3_RDCLI2_BASE_IDX 0
+#define regDAGB3_RDCLI3 0x0183
+#define regDAGB3_RDCLI3_BASE_IDX 0
+#define regDAGB3_RDCLI4 0x0184
+#define regDAGB3_RDCLI4_BASE_IDX 0
+#define regDAGB3_RDCLI5 0x0185
+#define regDAGB3_RDCLI5_BASE_IDX 0
+#define regDAGB3_RDCLI6 0x0186
+#define regDAGB3_RDCLI6_BASE_IDX 0
+#define regDAGB3_RDCLI7 0x0187
+#define regDAGB3_RDCLI7_BASE_IDX 0
+#define regDAGB3_RDCLI8 0x0188
+#define regDAGB3_RDCLI8_BASE_IDX 0
+#define regDAGB3_RDCLI9 0x0189
+#define regDAGB3_RDCLI9_BASE_IDX 0
+#define regDAGB3_RDCLI10 0x018a
+#define regDAGB3_RDCLI10_BASE_IDX 0
+#define regDAGB3_RDCLI11 0x018b
+#define regDAGB3_RDCLI11_BASE_IDX 0
+#define regDAGB3_RDCLI12 0x018c
+#define regDAGB3_RDCLI12_BASE_IDX 0
+#define regDAGB3_RDCLI13 0x018d
+#define regDAGB3_RDCLI13_BASE_IDX 0
+#define regDAGB3_RDCLI14 0x018e
+#define regDAGB3_RDCLI14_BASE_IDX 0
+#define regDAGB3_RDCLI15 0x018f
+#define regDAGB3_RDCLI15_BASE_IDX 0
+#define regDAGB3_RD_CNTL 0x0190
+#define regDAGB3_RD_CNTL_BASE_IDX 0
+#define regDAGB3_RD_GMI_CNTL 0x0191
+#define regDAGB3_RD_GMI_CNTL_BASE_IDX 0
+#define regDAGB3_RD_ADDR_DAGB 0x0192
+#define regDAGB3_RD_ADDR_DAGB_BASE_IDX 0
+#define regDAGB3_RD_OUTPUT_DAGB_MAX_BURST 0x0193
+#define regDAGB3_RD_OUTPUT_DAGB_MAX_BURST_BASE_IDX 0
+#define regDAGB3_RD_OUTPUT_DAGB_LAZY_TIMER 0x0194
+#define regDAGB3_RD_OUTPUT_DAGB_LAZY_TIMER_BASE_IDX 0
+#define regDAGB3_RD_CGTT_CLK_CTRL 0x0195
+#define regDAGB3_RD_CGTT_CLK_CTRL_BASE_IDX 0
+#define regDAGB3_L1TLB_RD_CGTT_CLK_CTRL 0x0196
+#define regDAGB3_L1TLB_RD_CGTT_CLK_CTRL_BASE_IDX 0
+#define regDAGB3_ATCVM_RD_CGTT_CLK_CTRL 0x0197
+#define regDAGB3_ATCVM_RD_CGTT_CLK_CTRL_BASE_IDX 0
+#define regDAGB3_RD_ADDR_DAGB_MAX_BURST0 0x0198
+#define regDAGB3_RD_ADDR_DAGB_MAX_BURST0_BASE_IDX 0
+#define regDAGB3_RD_ADDR_DAGB_LAZY_TIMER0 0x0199
+#define regDAGB3_RD_ADDR_DAGB_LAZY_TIMER0_BASE_IDX 0
+#define regDAGB3_RD_ADDR_DAGB_MAX_BURST1 0x019a
+#define regDAGB3_RD_ADDR_DAGB_MAX_BURST1_BASE_IDX 0
+#define regDAGB3_RD_ADDR_DAGB_LAZY_TIMER1 0x019b
+#define regDAGB3_RD_ADDR_DAGB_LAZY_TIMER1_BASE_IDX 0
+#define regDAGB3_RD_VC0_CNTL 0x019c
+#define regDAGB3_RD_VC0_CNTL_BASE_IDX 0
+#define regDAGB3_RD_VC1_CNTL 0x019d
+#define regDAGB3_RD_VC1_CNTL_BASE_IDX 0
+#define regDAGB3_RD_VC2_CNTL 0x019e
+#define regDAGB3_RD_VC2_CNTL_BASE_IDX 0
+#define regDAGB3_RD_VC3_CNTL 0x019f
+#define regDAGB3_RD_VC3_CNTL_BASE_IDX 0
+#define regDAGB3_RD_VC4_CNTL 0x01a0
+#define regDAGB3_RD_VC4_CNTL_BASE_IDX 0
+#define regDAGB3_RD_VC5_CNTL 0x01a1
+#define regDAGB3_RD_VC5_CNTL_BASE_IDX 0
+#define regDAGB3_RD_VC6_CNTL 0x01a2
+#define regDAGB3_RD_VC6_CNTL_BASE_IDX 0
+#define regDAGB3_RD_VC7_CNTL 0x01a3
+#define regDAGB3_RD_VC7_CNTL_BASE_IDX 0
+#define regDAGB3_RD_CNTL_MISC 0x01a4
+#define regDAGB3_RD_CNTL_MISC_BASE_IDX 0
+#define regDAGB3_RD_TLB_CREDIT 0x01a5
+#define regDAGB3_RD_TLB_CREDIT_BASE_IDX 0
+#define regDAGB3_RD_RDRET_CREDIT_CNTL 0x01a6
+#define regDAGB3_RD_RDRET_CREDIT_CNTL_BASE_IDX 0
+#define regDAGB3_RD_RDRET_CREDIT_CNTL2 0x01a7
+#define regDAGB3_RD_RDRET_CREDIT_CNTL2_BASE_IDX 0
+#define regDAGB3_RDCLI_ASK_PENDING 0x01a8
+#define regDAGB3_RDCLI_ASK_PENDING_BASE_IDX 0
+#define regDAGB3_RDCLI_GO_PENDING 0x01a9
+#define regDAGB3_RDCLI_GO_PENDING_BASE_IDX 0
+#define regDAGB3_RDCLI_GBLSEND_PENDING 0x01aa
+#define regDAGB3_RDCLI_GBLSEND_PENDING_BASE_IDX 0
+#define regDAGB3_RDCLI_TLB_PENDING 0x01ab
+#define regDAGB3_RDCLI_TLB_PENDING_BASE_IDX 0
+#define regDAGB3_RDCLI_OARB_PENDING 0x01ac
+#define regDAGB3_RDCLI_OARB_PENDING_BASE_IDX 0
+#define regDAGB3_RDCLI_OSD_PENDING 0x01ad
+#define regDAGB3_RDCLI_OSD_PENDING_BASE_IDX 0
+#define regDAGB3_WRCLI0 0x01b0
+#define regDAGB3_WRCLI0_BASE_IDX 0
+#define regDAGB3_WRCLI1 0x01b1
+#define regDAGB3_WRCLI1_BASE_IDX 0
+#define regDAGB3_WRCLI2 0x01b2
+#define regDAGB3_WRCLI2_BASE_IDX 0
+#define regDAGB3_WRCLI3 0x01b3
+#define regDAGB3_WRCLI3_BASE_IDX 0
+#define regDAGB3_WRCLI4 0x01b4
+#define regDAGB3_WRCLI4_BASE_IDX 0
+#define regDAGB3_WRCLI5 0x01b5
+#define regDAGB3_WRCLI5_BASE_IDX 0
+#define regDAGB3_WRCLI6 0x01b6
+#define regDAGB3_WRCLI6_BASE_IDX 0
+#define regDAGB3_WRCLI7 0x01b7
+#define regDAGB3_WRCLI7_BASE_IDX 0
+#define regDAGB3_WRCLI8 0x01b8
+#define regDAGB3_WRCLI8_BASE_IDX 0
+#define regDAGB3_WRCLI9 0x01b9
+#define regDAGB3_WRCLI9_BASE_IDX 0
+#define regDAGB3_WRCLI10 0x01ba
+#define regDAGB3_WRCLI10_BASE_IDX 0
+#define regDAGB3_WRCLI11 0x01bb
+#define regDAGB3_WRCLI11_BASE_IDX 0
+#define regDAGB3_WRCLI12 0x01bc
+#define regDAGB3_WRCLI12_BASE_IDX 0
+#define regDAGB3_WRCLI13 0x01bd
+#define regDAGB3_WRCLI13_BASE_IDX 0
+#define regDAGB3_WRCLI14 0x01be
+#define regDAGB3_WRCLI14_BASE_IDX 0
+#define regDAGB3_WRCLI15 0x01bf
+#define regDAGB3_WRCLI15_BASE_IDX 0
+#define regDAGB3_WR_CNTL 0x01c0
+#define regDAGB3_WR_CNTL_BASE_IDX 0
+#define regDAGB3_WR_GMI_CNTL 0x01c1
+#define regDAGB3_WR_GMI_CNTL_BASE_IDX 0
+#define regDAGB3_WR_ADDR_DAGB 0x01c2
+#define regDAGB3_WR_ADDR_DAGB_BASE_IDX 0
+#define regDAGB3_WR_OUTPUT_DAGB_MAX_BURST 0x01c3
+#define regDAGB3_WR_OUTPUT_DAGB_MAX_BURST_BASE_IDX 0
+#define regDAGB3_WR_OUTPUT_DAGB_LAZY_TIMER 0x01c4
+#define regDAGB3_WR_OUTPUT_DAGB_LAZY_TIMER_BASE_IDX 0
+#define regDAGB3_WR_CGTT_CLK_CTRL 0x01c5
+#define regDAGB3_WR_CGTT_CLK_CTRL_BASE_IDX 0
+#define regDAGB3_L1TLB_WR_CGTT_CLK_CTRL 0x01c6
+#define regDAGB3_L1TLB_WR_CGTT_CLK_CTRL_BASE_IDX 0
+#define regDAGB3_ATCVM_WR_CGTT_CLK_CTRL 0x01c7
+#define regDAGB3_ATCVM_WR_CGTT_CLK_CTRL_BASE_IDX 0
+#define regDAGB3_WR_ADDR_DAGB_MAX_BURST0 0x01c8
+#define regDAGB3_WR_ADDR_DAGB_MAX_BURST0_BASE_IDX 0
+#define regDAGB3_WR_ADDR_DAGB_LAZY_TIMER0 0x01c9
+#define regDAGB3_WR_ADDR_DAGB_LAZY_TIMER0_BASE_IDX 0
+#define regDAGB3_WR_ADDR_DAGB_MAX_BURST1 0x01ca
+#define regDAGB3_WR_ADDR_DAGB_MAX_BURST1_BASE_IDX 0
+#define regDAGB3_WR_ADDR_DAGB_LAZY_TIMER1 0x01cb
+#define regDAGB3_WR_ADDR_DAGB_LAZY_TIMER1_BASE_IDX 0
+#define regDAGB3_WR_DATA_DAGB 0x01cc
+#define regDAGB3_WR_DATA_DAGB_BASE_IDX 0
+#define regDAGB3_WR_DATA_DAGB_MAX_BURST0 0x01cd
+#define regDAGB3_WR_DATA_DAGB_MAX_BURST0_BASE_IDX 0
+#define regDAGB3_WR_DATA_DAGB_LAZY_TIMER0 0x01ce
+#define regDAGB3_WR_DATA_DAGB_LAZY_TIMER0_BASE_IDX 0
+#define regDAGB3_WR_DATA_DAGB_MAX_BURST1 0x01cf
+#define regDAGB3_WR_DATA_DAGB_MAX_BURST1_BASE_IDX 0
+#define regDAGB3_WR_DATA_DAGB_LAZY_TIMER1 0x01d0
+#define regDAGB3_WR_DATA_DAGB_LAZY_TIMER1_BASE_IDX 0
+#define regDAGB3_WR_VC0_CNTL 0x01d1
+#define regDAGB3_WR_VC0_CNTL_BASE_IDX 0
+#define regDAGB3_WR_VC1_CNTL 0x01d2
+#define regDAGB3_WR_VC1_CNTL_BASE_IDX 0
+#define regDAGB3_WR_VC2_CNTL 0x01d3
+#define regDAGB3_WR_VC2_CNTL_BASE_IDX 0
+#define regDAGB3_WR_VC3_CNTL 0x01d4
+#define regDAGB3_WR_VC3_CNTL_BASE_IDX 0
+#define regDAGB3_WR_VC4_CNTL 0x01d5
+#define regDAGB3_WR_VC4_CNTL_BASE_IDX 0
+#define regDAGB3_WR_VC5_CNTL 0x01d6
+#define regDAGB3_WR_VC5_CNTL_BASE_IDX 0
+#define regDAGB3_WR_VC6_CNTL 0x01d7
+#define regDAGB3_WR_VC6_CNTL_BASE_IDX 0
+#define regDAGB3_WR_VC7_CNTL 0x01d8
+#define regDAGB3_WR_VC7_CNTL_BASE_IDX 0
+#define regDAGB3_WR_CNTL_MISC 0x01d9
+#define regDAGB3_WR_CNTL_MISC_BASE_IDX 0
+#define regDAGB3_WR_TLB_CREDIT 0x01da
+#define regDAGB3_WR_TLB_CREDIT_BASE_IDX 0
+#define regDAGB3_WR_DATA_CREDIT 0x01db
+#define regDAGB3_WR_DATA_CREDIT_BASE_IDX 0
+#define regDAGB3_WR_MISC_CREDIT 0x01dc
+#define regDAGB3_WR_MISC_CREDIT_BASE_IDX 0
+#define regDAGB3_WR_OSD_CREDIT_CNTL1 0x01dd
+#define regDAGB3_WR_OSD_CREDIT_CNTL1_BASE_IDX 0
+#define regDAGB3_WR_OSD_CREDIT_CNTL2 0x01de
+#define regDAGB3_WR_OSD_CREDIT_CNTL2_BASE_IDX 0
+#define regDAGB3_WR_ATOMIC_FIFO_CREDIT_CNTL1 0x01df
+#define regDAGB3_WR_ATOMIC_FIFO_CREDIT_CNTL1_BASE_IDX 0
+#define regDAGB3_WRCLI_GPU_SNOOP_OVERRIDE 0x01e0
+#define regDAGB3_WRCLI_GPU_SNOOP_OVERRIDE_BASE_IDX 0
+#define regDAGB3_WRCLI_GPU_SNOOP_OVERRIDE_VALUE 0x01e1
+#define regDAGB3_WRCLI_GPU_SNOOP_OVERRIDE_VALUE_BASE_IDX 0
+#define regDAGB3_WRCLI_ASK_PENDING 0x01e2
+#define regDAGB3_WRCLI_ASK_PENDING_BASE_IDX 0
+#define regDAGB3_WRCLI_GO_PENDING 0x01e3
+#define regDAGB3_WRCLI_GO_PENDING_BASE_IDX 0
+#define regDAGB3_WRCLI_GBLSEND_PENDING 0x01e4
+#define regDAGB3_WRCLI_GBLSEND_PENDING_BASE_IDX 0
+#define regDAGB3_WRCLI_TLB_PENDING 0x01e5
+#define regDAGB3_WRCLI_TLB_PENDING_BASE_IDX 0
+#define regDAGB3_WRCLI_OARB_PENDING 0x01e6
+#define regDAGB3_WRCLI_OARB_PENDING_BASE_IDX 0
+#define regDAGB3_WRCLI_OSD_PENDING 0x01e7
+#define regDAGB3_WRCLI_OSD_PENDING_BASE_IDX 0
+#define regDAGB3_WRCLI_DBUS_ASK_PENDING 0x01e8
+#define regDAGB3_WRCLI_DBUS_ASK_PENDING_BASE_IDX 0
+#define regDAGB3_WRCLI_DBUS_GO_PENDING 0x01e9
+#define regDAGB3_WRCLI_DBUS_GO_PENDING_BASE_IDX 0
+#define regDAGB3_DAGB_DLY 0x01ec
+#define regDAGB3_DAGB_DLY_BASE_IDX 0
+#define regDAGB3_CNTL_MISC 0x01ed
+#define regDAGB3_CNTL_MISC_BASE_IDX 0
+#define regDAGB3_CNTL_MISC2 0x01ee
+#define regDAGB3_CNTL_MISC2_BASE_IDX 0
+#define regDAGB3_FATAL_ERROR_CNTL 0x01ef
+#define regDAGB3_FATAL_ERROR_CNTL_BASE_IDX 0
+#define regDAGB3_FATAL_ERROR_CLEAR 0x01f0
+#define regDAGB3_FATAL_ERROR_CLEAR_BASE_IDX 0
+#define regDAGB3_FATAL_ERROR_STATUS0 0x01f1
+#define regDAGB3_FATAL_ERROR_STATUS0_BASE_IDX 0
+#define regDAGB3_FATAL_ERROR_STATUS1 0x01f2
+#define regDAGB3_FATAL_ERROR_STATUS1_BASE_IDX 0
+#define regDAGB3_FATAL_ERROR_STATUS2 0x01f3
+#define regDAGB3_FATAL_ERROR_STATUS2_BASE_IDX 0
+#define regDAGB3_FATAL_ERROR_STATUS3 0x01f4
+#define regDAGB3_FATAL_ERROR_STATUS3_BASE_IDX 0
+#define regDAGB3_FIFO_EMPTY 0x01f5
+#define regDAGB3_FIFO_EMPTY_BASE_IDX 0
+#define regDAGB3_FIFO_FULL 0x01f6
+#define regDAGB3_FIFO_FULL_BASE_IDX 0
+#define regDAGB3_WR_CREDITS_FULL 0x01f7
+#define regDAGB3_WR_CREDITS_FULL_BASE_IDX 0
+#define regDAGB3_RD_CREDITS_FULL 0x01f8
+#define regDAGB3_RD_CREDITS_FULL_BASE_IDX 0
+#define regDAGB3_PERFCOUNTER_LO 0x01f9
+#define regDAGB3_PERFCOUNTER_LO_BASE_IDX 0
+#define regDAGB3_PERFCOUNTER_HI 0x01fa
+#define regDAGB3_PERFCOUNTER_HI_BASE_IDX 0
+#define regDAGB3_PERFCOUNTER0_CFG 0x01fb
+#define regDAGB3_PERFCOUNTER0_CFG_BASE_IDX 0
+#define regDAGB3_PERFCOUNTER1_CFG 0x01fc
+#define regDAGB3_PERFCOUNTER1_CFG_BASE_IDX 0
+#define regDAGB3_PERFCOUNTER2_CFG 0x01fd
+#define regDAGB3_PERFCOUNTER2_CFG_BASE_IDX 0
+#define regDAGB3_PERFCOUNTER_RSLT_CNTL 0x01fe
+#define regDAGB3_PERFCOUNTER_RSLT_CNTL_BASE_IDX 0
+#define regDAGB3_L1TLB_REG_RW 0x01ff
+#define regDAGB3_L1TLB_REG_RW_BASE_IDX 0
+
+
+// addressBlock: aid_mmhub_dagb_dagbdec4
+// base address: 0x60800
+#define regDAGB4_RDCLI0 0x0200
+#define regDAGB4_RDCLI0_BASE_IDX 0
+#define regDAGB4_RDCLI1 0x0201
+#define regDAGB4_RDCLI1_BASE_IDX 0
+#define regDAGB4_RDCLI2 0x0202
+#define regDAGB4_RDCLI2_BASE_IDX 0
+#define regDAGB4_RDCLI3 0x0203
+#define regDAGB4_RDCLI3_BASE_IDX 0
+#define regDAGB4_RDCLI4 0x0204
+#define regDAGB4_RDCLI4_BASE_IDX 0
+#define regDAGB4_RDCLI5 0x0205
+#define regDAGB4_RDCLI5_BASE_IDX 0
+#define regDAGB4_RDCLI6 0x0206
+#define regDAGB4_RDCLI6_BASE_IDX 0
+#define regDAGB4_RDCLI7 0x0207
+#define regDAGB4_RDCLI7_BASE_IDX 0
+#define regDAGB4_RDCLI8 0x0208
+#define regDAGB4_RDCLI8_BASE_IDX 0
+#define regDAGB4_RDCLI9 0x0209
+#define regDAGB4_RDCLI9_BASE_IDX 0
+#define regDAGB4_RDCLI10 0x020a
+#define regDAGB4_RDCLI10_BASE_IDX 0
+#define regDAGB4_RDCLI11 0x020b
+#define regDAGB4_RDCLI11_BASE_IDX 0
+#define regDAGB4_RDCLI12 0x020c
+#define regDAGB4_RDCLI12_BASE_IDX 0
+#define regDAGB4_RDCLI13 0x020d
+#define regDAGB4_RDCLI13_BASE_IDX 0
+#define regDAGB4_RDCLI14 0x020e
+#define regDAGB4_RDCLI14_BASE_IDX 0
+#define regDAGB4_RDCLI15 0x020f
+#define regDAGB4_RDCLI15_BASE_IDX 0
+#define regDAGB4_RD_CNTL 0x0210
+#define regDAGB4_RD_CNTL_BASE_IDX 0
+#define regDAGB4_RD_GMI_CNTL 0x0211
+#define regDAGB4_RD_GMI_CNTL_BASE_IDX 0
+#define regDAGB4_RD_ADDR_DAGB 0x0212
+#define regDAGB4_RD_ADDR_DAGB_BASE_IDX 0
+#define regDAGB4_RD_OUTPUT_DAGB_MAX_BURST 0x0213
+#define regDAGB4_RD_OUTPUT_DAGB_MAX_BURST_BASE_IDX 0
+#define regDAGB4_RD_OUTPUT_DAGB_LAZY_TIMER 0x0214
+#define regDAGB4_RD_OUTPUT_DAGB_LAZY_TIMER_BASE_IDX 0
+#define regDAGB4_RD_CGTT_CLK_CTRL 0x0215
+#define regDAGB4_RD_CGTT_CLK_CTRL_BASE_IDX 0
+#define regDAGB4_L1TLB_RD_CGTT_CLK_CTRL 0x0216
+#define regDAGB4_L1TLB_RD_CGTT_CLK_CTRL_BASE_IDX 0
+#define regDAGB4_ATCVM_RD_CGTT_CLK_CTRL 0x0217
+#define regDAGB4_ATCVM_RD_CGTT_CLK_CTRL_BASE_IDX 0
+#define regDAGB4_RD_ADDR_DAGB_MAX_BURST0 0x0218
+#define regDAGB4_RD_ADDR_DAGB_MAX_BURST0_BASE_IDX 0
+#define regDAGB4_RD_ADDR_DAGB_LAZY_TIMER0 0x0219
+#define regDAGB4_RD_ADDR_DAGB_LAZY_TIMER0_BASE_IDX 0
+#define regDAGB4_RD_ADDR_DAGB_MAX_BURST1 0x021a
+#define regDAGB4_RD_ADDR_DAGB_MAX_BURST1_BASE_IDX 0
+#define regDAGB4_RD_ADDR_DAGB_LAZY_TIMER1 0x021b
+#define regDAGB4_RD_ADDR_DAGB_LAZY_TIMER1_BASE_IDX 0
+#define regDAGB4_RD_VC0_CNTL 0x021c
+#define regDAGB4_RD_VC0_CNTL_BASE_IDX 0
+#define regDAGB4_RD_VC1_CNTL 0x021d
+#define regDAGB4_RD_VC1_CNTL_BASE_IDX 0
+#define regDAGB4_RD_VC2_CNTL 0x021e
+#define regDAGB4_RD_VC2_CNTL_BASE_IDX 0
+#define regDAGB4_RD_VC3_CNTL 0x021f
+#define regDAGB4_RD_VC3_CNTL_BASE_IDX 0
+#define regDAGB4_RD_VC4_CNTL 0x0220
+#define regDAGB4_RD_VC4_CNTL_BASE_IDX 0
+#define regDAGB4_RD_VC5_CNTL 0x0221
+#define regDAGB4_RD_VC5_CNTL_BASE_IDX 0
+#define regDAGB4_RD_VC6_CNTL 0x0222
+#define regDAGB4_RD_VC6_CNTL_BASE_IDX 0
+#define regDAGB4_RD_VC7_CNTL 0x0223
+#define regDAGB4_RD_VC7_CNTL_BASE_IDX 0
+#define regDAGB4_RD_CNTL_MISC 0x0224
+#define regDAGB4_RD_CNTL_MISC_BASE_IDX 0
+#define regDAGB4_RD_TLB_CREDIT 0x0225
+#define regDAGB4_RD_TLB_CREDIT_BASE_IDX 0
+#define regDAGB4_RD_RDRET_CREDIT_CNTL 0x0226
+#define regDAGB4_RD_RDRET_CREDIT_CNTL_BASE_IDX 0
+#define regDAGB4_RD_RDRET_CREDIT_CNTL2 0x0227
+#define regDAGB4_RD_RDRET_CREDIT_CNTL2_BASE_IDX 0
+#define regDAGB4_RDCLI_ASK_PENDING 0x0228
+#define regDAGB4_RDCLI_ASK_PENDING_BASE_IDX 0
+#define regDAGB4_RDCLI_GO_PENDING 0x0229
+#define regDAGB4_RDCLI_GO_PENDING_BASE_IDX 0
+#define regDAGB4_RDCLI_GBLSEND_PENDING 0x022a
+#define regDAGB4_RDCLI_GBLSEND_PENDING_BASE_IDX 0
+#define regDAGB4_RDCLI_TLB_PENDING 0x022b
+#define regDAGB4_RDCLI_TLB_PENDING_BASE_IDX 0
+#define regDAGB4_RDCLI_OARB_PENDING 0x022c
+#define regDAGB4_RDCLI_OARB_PENDING_BASE_IDX 0
+#define regDAGB4_RDCLI_OSD_PENDING 0x022d
+#define regDAGB4_RDCLI_OSD_PENDING_BASE_IDX 0
+#define regDAGB4_WRCLI0 0x0230
+#define regDAGB4_WRCLI0_BASE_IDX 0
+#define regDAGB4_WRCLI1 0x0231
+#define regDAGB4_WRCLI1_BASE_IDX 0
+#define regDAGB4_WRCLI2 0x0232
+#define regDAGB4_WRCLI2_BASE_IDX 0
+#define regDAGB4_WRCLI3 0x0233
+#define regDAGB4_WRCLI3_BASE_IDX 0
+#define regDAGB4_WRCLI4 0x0234
+#define regDAGB4_WRCLI4_BASE_IDX 0
+#define regDAGB4_WRCLI5 0x0235
+#define regDAGB4_WRCLI5_BASE_IDX 0
+#define regDAGB4_WRCLI6 0x0236
+#define regDAGB4_WRCLI6_BASE_IDX 0
+#define regDAGB4_WRCLI7 0x0237
+#define regDAGB4_WRCLI7_BASE_IDX 0
+#define regDAGB4_WRCLI8 0x0238
+#define regDAGB4_WRCLI8_BASE_IDX 0
+#define regDAGB4_WRCLI9 0x0239
+#define regDAGB4_WRCLI9_BASE_IDX 0
+#define regDAGB4_WRCLI10 0x023a
+#define regDAGB4_WRCLI10_BASE_IDX 0
+#define regDAGB4_WRCLI11 0x023b
+#define regDAGB4_WRCLI11_BASE_IDX 0
+#define regDAGB4_WRCLI12 0x023c
+#define regDAGB4_WRCLI12_BASE_IDX 0
+#define regDAGB4_WRCLI13 0x023d
+#define regDAGB4_WRCLI13_BASE_IDX 0
+#define regDAGB4_WRCLI14 0x023e
+#define regDAGB4_WRCLI14_BASE_IDX 0
+#define regDAGB4_WRCLI15 0x023f
+#define regDAGB4_WRCLI15_BASE_IDX 0
+#define regDAGB4_WR_CNTL 0x0240
+#define regDAGB4_WR_CNTL_BASE_IDX 0
+#define regDAGB4_WR_GMI_CNTL 0x0241
+#define regDAGB4_WR_GMI_CNTL_BASE_IDX 0
+#define regDAGB4_WR_ADDR_DAGB 0x0242
+#define regDAGB4_WR_ADDR_DAGB_BASE_IDX 0
+#define regDAGB4_WR_OUTPUT_DAGB_MAX_BURST 0x0243
+#define regDAGB4_WR_OUTPUT_DAGB_MAX_BURST_BASE_IDX 0
+#define regDAGB4_WR_OUTPUT_DAGB_LAZY_TIMER 0x0244
+#define regDAGB4_WR_OUTPUT_DAGB_LAZY_TIMER_BASE_IDX 0
+#define regDAGB4_WR_CGTT_CLK_CTRL 0x0245
+#define regDAGB4_WR_CGTT_CLK_CTRL_BASE_IDX 0
+#define regDAGB4_L1TLB_WR_CGTT_CLK_CTRL 0x0246
+#define regDAGB4_L1TLB_WR_CGTT_CLK_CTRL_BASE_IDX 0
+#define regDAGB4_ATCVM_WR_CGTT_CLK_CTRL 0x0247
+#define regDAGB4_ATCVM_WR_CGTT_CLK_CTRL_BASE_IDX 0
+#define regDAGB4_WR_ADDR_DAGB_MAX_BURST0 0x0248
+#define regDAGB4_WR_ADDR_DAGB_MAX_BURST0_BASE_IDX 0
+#define regDAGB4_WR_ADDR_DAGB_LAZY_TIMER0 0x0249
+#define regDAGB4_WR_ADDR_DAGB_LAZY_TIMER0_BASE_IDX 0
+#define regDAGB4_WR_ADDR_DAGB_MAX_BURST1 0x024a
+#define regDAGB4_WR_ADDR_DAGB_MAX_BURST1_BASE_IDX 0
+#define regDAGB4_WR_ADDR_DAGB_LAZY_TIMER1 0x024b
+#define regDAGB4_WR_ADDR_DAGB_LAZY_TIMER1_BASE_IDX 0
+#define regDAGB4_WR_DATA_DAGB 0x024c
+#define regDAGB4_WR_DATA_DAGB_BASE_IDX 0
+#define regDAGB4_WR_DATA_DAGB_MAX_BURST0 0x024d
+#define regDAGB4_WR_DATA_DAGB_MAX_BURST0_BASE_IDX 0
+#define regDAGB4_WR_DATA_DAGB_LAZY_TIMER0 0x024e
+#define regDAGB4_WR_DATA_DAGB_LAZY_TIMER0_BASE_IDX 0
+#define regDAGB4_WR_DATA_DAGB_MAX_BURST1 0x024f
+#define regDAGB4_WR_DATA_DAGB_MAX_BURST1_BASE_IDX 0
+#define regDAGB4_WR_DATA_DAGB_LAZY_TIMER1 0x0250
+#define regDAGB4_WR_DATA_DAGB_LAZY_TIMER1_BASE_IDX 0
+#define regDAGB4_WR_VC0_CNTL 0x0251
+#define regDAGB4_WR_VC0_CNTL_BASE_IDX 0
+#define regDAGB4_WR_VC1_CNTL 0x0252
+#define regDAGB4_WR_VC1_CNTL_BASE_IDX 0
+#define regDAGB4_WR_VC2_CNTL 0x0253
+#define regDAGB4_WR_VC2_CNTL_BASE_IDX 0
+#define regDAGB4_WR_VC3_CNTL 0x0254
+#define regDAGB4_WR_VC3_CNTL_BASE_IDX 0
+#define regDAGB4_WR_VC4_CNTL 0x0255
+#define regDAGB4_WR_VC4_CNTL_BASE_IDX 0
+#define regDAGB4_WR_VC5_CNTL 0x0256
+#define regDAGB4_WR_VC5_CNTL_BASE_IDX 0
+#define regDAGB4_WR_VC6_CNTL 0x0257
+#define regDAGB4_WR_VC6_CNTL_BASE_IDX 0
+#define regDAGB4_WR_VC7_CNTL 0x0258
+#define regDAGB4_WR_VC7_CNTL_BASE_IDX 0
+#define regDAGB4_WR_CNTL_MISC 0x0259
+#define regDAGB4_WR_CNTL_MISC_BASE_IDX 0
+#define regDAGB4_WR_TLB_CREDIT 0x025a
+#define regDAGB4_WR_TLB_CREDIT_BASE_IDX 0
+#define regDAGB4_WR_DATA_CREDIT 0x025b
+#define regDAGB4_WR_DATA_CREDIT_BASE_IDX 0
+#define regDAGB4_WR_MISC_CREDIT 0x025c
+#define regDAGB4_WR_MISC_CREDIT_BASE_IDX 0
+#define regDAGB4_WR_OSD_CREDIT_CNTL1 0x025d
+#define regDAGB4_WR_OSD_CREDIT_CNTL1_BASE_IDX 0
+#define regDAGB4_WR_OSD_CREDIT_CNTL2 0x025e
+#define regDAGB4_WR_OSD_CREDIT_CNTL2_BASE_IDX 0
+#define regDAGB4_WR_ATOMIC_FIFO_CREDIT_CNTL1 0x025f
+#define regDAGB4_WR_ATOMIC_FIFO_CREDIT_CNTL1_BASE_IDX 0
+#define regDAGB4_WRCLI_GPU_SNOOP_OVERRIDE 0x0260
+#define regDAGB4_WRCLI_GPU_SNOOP_OVERRIDE_BASE_IDX 0
+#define regDAGB4_WRCLI_GPU_SNOOP_OVERRIDE_VALUE 0x0261
+#define regDAGB4_WRCLI_GPU_SNOOP_OVERRIDE_VALUE_BASE_IDX 0
+#define regDAGB4_WRCLI_ASK_PENDING 0x0262
+#define regDAGB4_WRCLI_ASK_PENDING_BASE_IDX 0
+#define regDAGB4_WRCLI_GO_PENDING 0x0263
+#define regDAGB4_WRCLI_GO_PENDING_BASE_IDX 0
+#define regDAGB4_WRCLI_GBLSEND_PENDING 0x0264
+#define regDAGB4_WRCLI_GBLSEND_PENDING_BASE_IDX 0
+#define regDAGB4_WRCLI_TLB_PENDING 0x0265
+#define regDAGB4_WRCLI_TLB_PENDING_BASE_IDX 0
+#define regDAGB4_WRCLI_OARB_PENDING 0x0266
+#define regDAGB4_WRCLI_OARB_PENDING_BASE_IDX 0
+#define regDAGB4_WRCLI_OSD_PENDING 0x0267
+#define regDAGB4_WRCLI_OSD_PENDING_BASE_IDX 0
+#define regDAGB4_WRCLI_DBUS_ASK_PENDING 0x0268
+#define regDAGB4_WRCLI_DBUS_ASK_PENDING_BASE_IDX 0
+#define regDAGB4_WRCLI_DBUS_GO_PENDING 0x0269
+#define regDAGB4_WRCLI_DBUS_GO_PENDING_BASE_IDX 0
+#define regDAGB4_DAGB_DLY 0x026c
+#define regDAGB4_DAGB_DLY_BASE_IDX 0
+#define regDAGB4_CNTL_MISC 0x026d
+#define regDAGB4_CNTL_MISC_BASE_IDX 0
+#define regDAGB4_CNTL_MISC2 0x026e
+#define regDAGB4_CNTL_MISC2_BASE_IDX 0
+#define regDAGB4_FATAL_ERROR_CNTL 0x026f
+#define regDAGB4_FATAL_ERROR_CNTL_BASE_IDX 0
+#define regDAGB4_FATAL_ERROR_CLEAR 0x0270
+#define regDAGB4_FATAL_ERROR_CLEAR_BASE_IDX 0
+#define regDAGB4_FATAL_ERROR_STATUS0 0x0271
+#define regDAGB4_FATAL_ERROR_STATUS0_BASE_IDX 0
+#define regDAGB4_FATAL_ERROR_STATUS1 0x0272
+#define regDAGB4_FATAL_ERROR_STATUS1_BASE_IDX 0
+#define regDAGB4_FATAL_ERROR_STATUS2 0x0273
+#define regDAGB4_FATAL_ERROR_STATUS2_BASE_IDX 0
+#define regDAGB4_FATAL_ERROR_STATUS3 0x0274
+#define regDAGB4_FATAL_ERROR_STATUS3_BASE_IDX 0
+#define regDAGB4_FIFO_EMPTY 0x0275
+#define regDAGB4_FIFO_EMPTY_BASE_IDX 0
+#define regDAGB4_FIFO_FULL 0x0276
+#define regDAGB4_FIFO_FULL_BASE_IDX 0
+#define regDAGB4_WR_CREDITS_FULL 0x0277
+#define regDAGB4_WR_CREDITS_FULL_BASE_IDX 0
+#define regDAGB4_RD_CREDITS_FULL 0x0278
+#define regDAGB4_RD_CREDITS_FULL_BASE_IDX 0
+#define regDAGB4_PERFCOUNTER_LO 0x0279
+#define regDAGB4_PERFCOUNTER_LO_BASE_IDX 0
+#define regDAGB4_PERFCOUNTER_HI 0x027a
+#define regDAGB4_PERFCOUNTER_HI_BASE_IDX 0
+#define regDAGB4_PERFCOUNTER0_CFG 0x027b
+#define regDAGB4_PERFCOUNTER0_CFG_BASE_IDX 0
+#define regDAGB4_PERFCOUNTER1_CFG 0x027c
+#define regDAGB4_PERFCOUNTER1_CFG_BASE_IDX 0
+#define regDAGB4_PERFCOUNTER2_CFG 0x027d
+#define regDAGB4_PERFCOUNTER2_CFG_BASE_IDX 0
+#define regDAGB4_PERFCOUNTER_RSLT_CNTL 0x027e
+#define regDAGB4_PERFCOUNTER_RSLT_CNTL_BASE_IDX 0
+#define regDAGB4_L1TLB_REG_RW 0x027f
+#define regDAGB4_L1TLB_REG_RW_BASE_IDX 0
+
+
+// addressBlock: aid_mmhub_ea_mmeadec0
+// base address: 0x60c00
+#define regMMEA0_DRAM_RD_CLI2GRP_MAP0 0x0300
+#define regMMEA0_DRAM_RD_CLI2GRP_MAP0_BASE_IDX 0
+#define regMMEA0_DRAM_RD_CLI2GRP_MAP1 0x0301
+#define regMMEA0_DRAM_RD_CLI2GRP_MAP1_BASE_IDX 0
+#define regMMEA0_DRAM_WR_CLI2GRP_MAP0 0x0302
+#define regMMEA0_DRAM_WR_CLI2GRP_MAP0_BASE_IDX 0
+#define regMMEA0_DRAM_WR_CLI2GRP_MAP1 0x0303
+#define regMMEA0_DRAM_WR_CLI2GRP_MAP1_BASE_IDX 0
+#define regMMEA0_DRAM_RD_GRP2VC_MAP 0x0304
+#define regMMEA0_DRAM_RD_GRP2VC_MAP_BASE_IDX 0
+#define regMMEA0_DRAM_WR_GRP2VC_MAP 0x0305
+#define regMMEA0_DRAM_WR_GRP2VC_MAP_BASE_IDX 0
+#define regMMEA0_DRAM_RD_LAZY 0x0306
+#define regMMEA0_DRAM_RD_LAZY_BASE_IDX 0
+#define regMMEA0_DRAM_WR_LAZY 0x0307
+#define regMMEA0_DRAM_WR_LAZY_BASE_IDX 0
+#define regMMEA0_DRAM_RD_CAM_CNTL 0x0308
+#define regMMEA0_DRAM_RD_CAM_CNTL_BASE_IDX 0
+#define regMMEA0_DRAM_WR_CAM_CNTL 0x0309
+#define regMMEA0_DRAM_WR_CAM_CNTL_BASE_IDX 0
+#define regMMEA0_DRAM_PAGE_BURST 0x030a
+#define regMMEA0_DRAM_PAGE_BURST_BASE_IDX 0
+#define regMMEA0_DRAM_RD_PRI_AGE 0x030b
+#define regMMEA0_DRAM_RD_PRI_AGE_BASE_IDX 0
+#define regMMEA0_DRAM_WR_PRI_AGE 0x030c
+#define regMMEA0_DRAM_WR_PRI_AGE_BASE_IDX 0
+#define regMMEA0_DRAM_RD_PRI_QUEUING 0x030d
+#define regMMEA0_DRAM_RD_PRI_QUEUING_BASE_IDX 0
+#define regMMEA0_DRAM_WR_PRI_QUEUING 0x030e
+#define regMMEA0_DRAM_WR_PRI_QUEUING_BASE_IDX 0
+#define regMMEA0_DRAM_RD_PRI_FIXED 0x030f
+#define regMMEA0_DRAM_RD_PRI_FIXED_BASE_IDX 0
+#define regMMEA0_DRAM_WR_PRI_FIXED 0x0310
+#define regMMEA0_DRAM_WR_PRI_FIXED_BASE_IDX 0
+#define regMMEA0_DRAM_RD_PRI_URGENCY 0x0311
+#define regMMEA0_DRAM_RD_PRI_URGENCY_BASE_IDX 0
+#define regMMEA0_DRAM_WR_PRI_URGENCY 0x0312
+#define regMMEA0_DRAM_WR_PRI_URGENCY_BASE_IDX 0
+#define regMMEA0_DRAM_RD_PRI_QUANT_PRI1 0x0313
+#define regMMEA0_DRAM_RD_PRI_QUANT_PRI1_BASE_IDX 0
+#define regMMEA0_DRAM_RD_PRI_QUANT_PRI2 0x0314
+#define regMMEA0_DRAM_RD_PRI_QUANT_PRI2_BASE_IDX 0
+#define regMMEA0_DRAM_RD_PRI_QUANT_PRI3 0x0315
+#define regMMEA0_DRAM_RD_PRI_QUANT_PRI3_BASE_IDX 0
+#define regMMEA0_DRAM_WR_PRI_QUANT_PRI1 0x0316
+#define regMMEA0_DRAM_WR_PRI_QUANT_PRI1_BASE_IDX 0
+#define regMMEA0_DRAM_WR_PRI_QUANT_PRI2 0x0317
+#define regMMEA0_DRAM_WR_PRI_QUANT_PRI2_BASE_IDX 0
+#define regMMEA0_DRAM_WR_PRI_QUANT_PRI3 0x0318
+#define regMMEA0_DRAM_WR_PRI_QUANT_PRI3_BASE_IDX 0
+#define regMMEA0_GMI_RD_CLI2GRP_MAP0 0x0319
+#define regMMEA0_GMI_RD_CLI2GRP_MAP0_BASE_IDX 0
+#define regMMEA0_GMI_RD_CLI2GRP_MAP1 0x031a
+#define regMMEA0_GMI_RD_CLI2GRP_MAP1_BASE_IDX 0
+#define regMMEA0_GMI_WR_CLI2GRP_MAP0 0x031b
+#define regMMEA0_GMI_WR_CLI2GRP_MAP0_BASE_IDX 0
+#define regMMEA0_GMI_WR_CLI2GRP_MAP1 0x031c
+#define regMMEA0_GMI_WR_CLI2GRP_MAP1_BASE_IDX 0
+#define regMMEA0_GMI_RD_GRP2VC_MAP 0x031d
+#define regMMEA0_GMI_RD_GRP2VC_MAP_BASE_IDX 0
+#define regMMEA0_GMI_WR_GRP2VC_MAP 0x031e
+#define regMMEA0_GMI_WR_GRP2VC_MAP_BASE_IDX 0
+#define regMMEA0_GMI_RD_LAZY 0x031f
+#define regMMEA0_GMI_RD_LAZY_BASE_IDX 0
+#define regMMEA0_GMI_WR_LAZY 0x0320
+#define regMMEA0_GMI_WR_LAZY_BASE_IDX 0
+#define regMMEA0_GMI_RD_CAM_CNTL 0x0321
+#define regMMEA0_GMI_RD_CAM_CNTL_BASE_IDX 0
+#define regMMEA0_GMI_WR_CAM_CNTL 0x0322
+#define regMMEA0_GMI_WR_CAM_CNTL_BASE_IDX 0
+#define regMMEA0_GMI_PAGE_BURST 0x0323
+#define regMMEA0_GMI_PAGE_BURST_BASE_IDX 0
+#define regMMEA0_GMI_RD_PRI_AGE 0x0324
+#define regMMEA0_GMI_RD_PRI_AGE_BASE_IDX 0
+#define regMMEA0_GMI_WR_PRI_AGE 0x0325
+#define regMMEA0_GMI_WR_PRI_AGE_BASE_IDX 0
+#define regMMEA0_GMI_RD_PRI_QUEUING 0x0326
+#define regMMEA0_GMI_RD_PRI_QUEUING_BASE_IDX 0
+#define regMMEA0_GMI_WR_PRI_QUEUING 0x0327
+#define regMMEA0_GMI_WR_PRI_QUEUING_BASE_IDX 0
+#define regMMEA0_GMI_RD_PRI_FIXED 0x0328
+#define regMMEA0_GMI_RD_PRI_FIXED_BASE_IDX 0
+#define regMMEA0_GMI_WR_PRI_FIXED 0x0329
+#define regMMEA0_GMI_WR_PRI_FIXED_BASE_IDX 0
+#define regMMEA0_GMI_RD_PRI_URGENCY 0x032a
+#define regMMEA0_GMI_RD_PRI_URGENCY_BASE_IDX 0
+#define regMMEA0_GMI_WR_PRI_URGENCY 0x032b
+#define regMMEA0_GMI_WR_PRI_URGENCY_BASE_IDX 0
+#define regMMEA0_GMI_RD_PRI_URGENCY_MASKING 0x032c
+#define regMMEA0_GMI_RD_PRI_URGENCY_MASKING_BASE_IDX 0
+#define regMMEA0_GMI_WR_PRI_URGENCY_MASKING 0x032d
+#define regMMEA0_GMI_WR_PRI_URGENCY_MASKING_BASE_IDX 0
+#define regMMEA0_GMI_RD_PRI_QUANT_PRI1 0x032e
+#define regMMEA0_GMI_RD_PRI_QUANT_PRI1_BASE_IDX 0
+#define regMMEA0_GMI_RD_PRI_QUANT_PRI2 0x032f
+#define regMMEA0_GMI_RD_PRI_QUANT_PRI2_BASE_IDX 0
+#define regMMEA0_GMI_RD_PRI_QUANT_PRI3 0x0330
+#define regMMEA0_GMI_RD_PRI_QUANT_PRI3_BASE_IDX 0
+#define regMMEA0_GMI_WR_PRI_QUANT_PRI1 0x0331
+#define regMMEA0_GMI_WR_PRI_QUANT_PRI1_BASE_IDX 0
+#define regMMEA0_GMI_WR_PRI_QUANT_PRI2 0x0332
+#define regMMEA0_GMI_WR_PRI_QUANT_PRI2_BASE_IDX 0
+#define regMMEA0_GMI_WR_PRI_QUANT_PRI3 0x0333
+#define regMMEA0_GMI_WR_PRI_QUANT_PRI3_BASE_IDX 0
+#define regMMEA0_IO_RD_CLI2GRP_MAP0 0x03d5
+#define regMMEA0_IO_RD_CLI2GRP_MAP0_BASE_IDX 0
+#define regMMEA0_IO_RD_CLI2GRP_MAP1 0x03d6
+#define regMMEA0_IO_RD_CLI2GRP_MAP1_BASE_IDX 0
+#define regMMEA0_IO_WR_CLI2GRP_MAP0 0x03d7
+#define regMMEA0_IO_WR_CLI2GRP_MAP0_BASE_IDX 0
+#define regMMEA0_IO_WR_CLI2GRP_MAP1 0x03d8
+#define regMMEA0_IO_WR_CLI2GRP_MAP1_BASE_IDX 0
+#define regMMEA0_IO_RD_COMBINE_FLUSH 0x03d9
+#define regMMEA0_IO_RD_COMBINE_FLUSH_BASE_IDX 0
+#define regMMEA0_IO_WR_COMBINE_FLUSH 0x03da
+#define regMMEA0_IO_WR_COMBINE_FLUSH_BASE_IDX 0
+#define regMMEA0_IO_GROUP_BURST 0x03db
+#define regMMEA0_IO_GROUP_BURST_BASE_IDX 0
+#define regMMEA0_IO_RD_PRI_AGE 0x03dc
+#define regMMEA0_IO_RD_PRI_AGE_BASE_IDX 0
+#define regMMEA0_IO_WR_PRI_AGE 0x03dd
+#define regMMEA0_IO_WR_PRI_AGE_BASE_IDX 0
+#define regMMEA0_IO_RD_PRI_QUEUING 0x03de
+#define regMMEA0_IO_RD_PRI_QUEUING_BASE_IDX 0
+#define regMMEA0_IO_WR_PRI_QUEUING 0x03df
+#define regMMEA0_IO_WR_PRI_QUEUING_BASE_IDX 0
+#define regMMEA0_IO_RD_PRI_FIXED 0x03e0
+#define regMMEA0_IO_RD_PRI_FIXED_BASE_IDX 0
+#define regMMEA0_IO_WR_PRI_FIXED 0x03e1
+#define regMMEA0_IO_WR_PRI_FIXED_BASE_IDX 0
+#define regMMEA0_IO_RD_PRI_URGENCY 0x03e2
+#define regMMEA0_IO_RD_PRI_URGENCY_BASE_IDX 0
+#define regMMEA0_IO_WR_PRI_URGENCY 0x03e3
+#define regMMEA0_IO_WR_PRI_URGENCY_BASE_IDX 0
+#define regMMEA0_IO_RD_PRI_URGENCY_MASKING 0x03e4
+#define regMMEA0_IO_RD_PRI_URGENCY_MASKING_BASE_IDX 0
+#define regMMEA0_IO_WR_PRI_URGENCY_MASKING 0x03e5
+#define regMMEA0_IO_WR_PRI_URGENCY_MASKING_BASE_IDX 0
+#define regMMEA0_IO_RD_PRI_QUANT_PRI1 0x03e6
+#define regMMEA0_IO_RD_PRI_QUANT_PRI1_BASE_IDX 0
+#define regMMEA0_IO_RD_PRI_QUANT_PRI2 0x03e7
+#define regMMEA0_IO_RD_PRI_QUANT_PRI2_BASE_IDX 0
+#define regMMEA0_IO_RD_PRI_QUANT_PRI3 0x03e8
+#define regMMEA0_IO_RD_PRI_QUANT_PRI3_BASE_IDX 0
+#define regMMEA0_IO_WR_PRI_QUANT_PRI1 0x03e9
+#define regMMEA0_IO_WR_PRI_QUANT_PRI1_BASE_IDX 0
+#define regMMEA0_IO_WR_PRI_QUANT_PRI2 0x03ea
+#define regMMEA0_IO_WR_PRI_QUANT_PRI2_BASE_IDX 0
+#define regMMEA0_IO_WR_PRI_QUANT_PRI3 0x03eb
+#define regMMEA0_IO_WR_PRI_QUANT_PRI3_BASE_IDX 0
+#define regMMEA0_SDP_ARB_DRAM 0x03ec
+#define regMMEA0_SDP_ARB_DRAM_BASE_IDX 0
+#define regMMEA0_SDP_ARB_GMI 0x03ed
+#define regMMEA0_SDP_ARB_GMI_BASE_IDX 0
+#define regMMEA0_SDP_ARB_FINAL 0x03ee
+#define regMMEA0_SDP_ARB_FINAL_BASE_IDX 0
+#define regMMEA0_SDP_DRAM_PRIORITY 0x03ef
+#define regMMEA0_SDP_DRAM_PRIORITY_BASE_IDX 0
+#define regMMEA0_SDP_GMI_PRIORITY 0x03f0
+#define regMMEA0_SDP_GMI_PRIORITY_BASE_IDX 0
+#define regMMEA0_SDP_IO_PRIORITY 0x03f1
+#define regMMEA0_SDP_IO_PRIORITY_BASE_IDX 0
+#define regMMEA0_SDP_CREDITS 0x03f2
+#define regMMEA0_SDP_CREDITS_BASE_IDX 0
+#define regMMEA0_SDP_TAG_RESERVE0 0x03f3
+#define regMMEA0_SDP_TAG_RESERVE0_BASE_IDX 0
+#define regMMEA0_SDP_TAG_RESERVE1 0x03f4
+#define regMMEA0_SDP_TAG_RESERVE1_BASE_IDX 0
+#define regMMEA0_SDP_VCC_RESERVE0 0x03f5
+#define regMMEA0_SDP_VCC_RESERVE0_BASE_IDX 0
+#define regMMEA0_SDP_VCC_RESERVE1 0x03f6
+#define regMMEA0_SDP_VCC_RESERVE1_BASE_IDX 0
+#define regMMEA0_SDP_VCD_RESERVE0 0x03f7
+#define regMMEA0_SDP_VCD_RESERVE0_BASE_IDX 0
+#define regMMEA0_SDP_VCD_RESERVE1 0x03f8
+#define regMMEA0_SDP_VCD_RESERVE1_BASE_IDX 0
+#define regMMEA0_SDP_REQ_CNTL 0x03f9
+#define regMMEA0_SDP_REQ_CNTL_BASE_IDX 0
+#define regMMEA0_MISC 0x03fa
+#define regMMEA0_MISC_BASE_IDX 0
+#define regMMEA0_LATENCY_SAMPLING 0x03fb
+#define regMMEA0_LATENCY_SAMPLING_BASE_IDX 0
+#define regMMEA0_PERFCOUNTER_LO 0x03fc
+#define regMMEA0_PERFCOUNTER_LO_BASE_IDX 0
+#define regMMEA0_PERFCOUNTER_HI 0x03fd
+#define regMMEA0_PERFCOUNTER_HI_BASE_IDX 0
+#define regMMEA0_PERFCOUNTER0_CFG 0x03fe
+#define regMMEA0_PERFCOUNTER0_CFG_BASE_IDX 0
+#define regMMEA0_PERFCOUNTER1_CFG 0x03ff
+#define regMMEA0_PERFCOUNTER1_CFG_BASE_IDX 0
+#define regMMEA0_PERFCOUNTER_RSLT_CNTL 0x0400
+#define regMMEA0_PERFCOUNTER_RSLT_CNTL_BASE_IDX 0
+#define regMMEA0_DSM_CNTL 0x0408
+#define regMMEA0_DSM_CNTL_BASE_IDX 0
+#define regMMEA0_DSM_CNTLA 0x0409
+#define regMMEA0_DSM_CNTLA_BASE_IDX 0
+#define regMMEA0_DSM_CNTLB 0x040a
+#define regMMEA0_DSM_CNTLB_BASE_IDX 0
+#define regMMEA0_DSM_CNTL2 0x040b
+#define regMMEA0_DSM_CNTL2_BASE_IDX 0
+#define regMMEA0_DSM_CNTL2A 0x040c
+#define regMMEA0_DSM_CNTL2A_BASE_IDX 0
+#define regMMEA0_DSM_CNTL2B 0x040d
+#define regMMEA0_DSM_CNTL2B_BASE_IDX 0
+#define regMMEA0_CGTT_CLK_CTRL 0x040f
+#define regMMEA0_CGTT_CLK_CTRL_BASE_IDX 0
+#define regMMEA0_EDC_MODE 0x0410
+#define regMMEA0_EDC_MODE_BASE_IDX 0
+#define regMMEA0_ERR_STATUS 0x0411
+#define regMMEA0_ERR_STATUS_BASE_IDX 0
+#define regMMEA0_MISC2 0x0412
+#define regMMEA0_MISC2_BASE_IDX 0
+#define regMMEA0_MISC_AON 0x0415
+#define regMMEA0_MISC_AON_BASE_IDX 0
+
+
+// addressBlock: aid_mmhub_ea_mmeadec1
+// base address: 0x61100
+#define regMMEA1_DRAM_RD_CLI2GRP_MAP0 0x0440
+#define regMMEA1_DRAM_RD_CLI2GRP_MAP0_BASE_IDX 0
+#define regMMEA1_DRAM_RD_CLI2GRP_MAP1 0x0441
+#define regMMEA1_DRAM_RD_CLI2GRP_MAP1_BASE_IDX 0
+#define regMMEA1_DRAM_WR_CLI2GRP_MAP0 0x0442
+#define regMMEA1_DRAM_WR_CLI2GRP_MAP0_BASE_IDX 0
+#define regMMEA1_DRAM_WR_CLI2GRP_MAP1 0x0443
+#define regMMEA1_DRAM_WR_CLI2GRP_MAP1_BASE_IDX 0
+#define regMMEA1_DRAM_RD_GRP2VC_MAP 0x0444
+#define regMMEA1_DRAM_RD_GRP2VC_MAP_BASE_IDX 0
+#define regMMEA1_DRAM_WR_GRP2VC_MAP 0x0445
+#define regMMEA1_DRAM_WR_GRP2VC_MAP_BASE_IDX 0
+#define regMMEA1_DRAM_RD_LAZY 0x0446
+#define regMMEA1_DRAM_RD_LAZY_BASE_IDX 0
+#define regMMEA1_DRAM_WR_LAZY 0x0447
+#define regMMEA1_DRAM_WR_LAZY_BASE_IDX 0
+#define regMMEA1_DRAM_RD_CAM_CNTL 0x0448
+#define regMMEA1_DRAM_RD_CAM_CNTL_BASE_IDX 0
+#define regMMEA1_DRAM_WR_CAM_CNTL 0x0449
+#define regMMEA1_DRAM_WR_CAM_CNTL_BASE_IDX 0
+#define regMMEA1_DRAM_PAGE_BURST 0x044a
+#define regMMEA1_DRAM_PAGE_BURST_BASE_IDX 0
+#define regMMEA1_DRAM_RD_PRI_AGE 0x044b
+#define regMMEA1_DRAM_RD_PRI_AGE_BASE_IDX 0
+#define regMMEA1_DRAM_WR_PRI_AGE 0x044c
+#define regMMEA1_DRAM_WR_PRI_AGE_BASE_IDX 0
+#define regMMEA1_DRAM_RD_PRI_QUEUING 0x044d
+#define regMMEA1_DRAM_RD_PRI_QUEUING_BASE_IDX 0
+#define regMMEA1_DRAM_WR_PRI_QUEUING 0x044e
+#define regMMEA1_DRAM_WR_PRI_QUEUING_BASE_IDX 0
+#define regMMEA1_DRAM_RD_PRI_FIXED 0x044f
+#define regMMEA1_DRAM_RD_PRI_FIXED_BASE_IDX 0
+#define regMMEA1_DRAM_WR_PRI_FIXED 0x0450
+#define regMMEA1_DRAM_WR_PRI_FIXED_BASE_IDX 0
+#define regMMEA1_DRAM_RD_PRI_URGENCY 0x0451
+#define regMMEA1_DRAM_RD_PRI_URGENCY_BASE_IDX 0
+#define regMMEA1_DRAM_WR_PRI_URGENCY 0x0452
+#define regMMEA1_DRAM_WR_PRI_URGENCY_BASE_IDX 0
+#define regMMEA1_DRAM_RD_PRI_QUANT_PRI1 0x0453
+#define regMMEA1_DRAM_RD_PRI_QUANT_PRI1_BASE_IDX 0
+#define regMMEA1_DRAM_RD_PRI_QUANT_PRI2 0x0454
+#define regMMEA1_DRAM_RD_PRI_QUANT_PRI2_BASE_IDX 0
+#define regMMEA1_DRAM_RD_PRI_QUANT_PRI3 0x0455
+#define regMMEA1_DRAM_RD_PRI_QUANT_PRI3_BASE_IDX 0
+#define regMMEA1_DRAM_WR_PRI_QUANT_PRI1 0x0456
+#define regMMEA1_DRAM_WR_PRI_QUANT_PRI1_BASE_IDX 0
+#define regMMEA1_DRAM_WR_PRI_QUANT_PRI2 0x0457
+#define regMMEA1_DRAM_WR_PRI_QUANT_PRI2_BASE_IDX 0
+#define regMMEA1_DRAM_WR_PRI_QUANT_PRI3 0x0458
+#define regMMEA1_DRAM_WR_PRI_QUANT_PRI3_BASE_IDX 0
+#define regMMEA1_GMI_RD_CLI2GRP_MAP0 0x0459
+#define regMMEA1_GMI_RD_CLI2GRP_MAP0_BASE_IDX 0
+#define regMMEA1_GMI_RD_CLI2GRP_MAP1 0x045a
+#define regMMEA1_GMI_RD_CLI2GRP_MAP1_BASE_IDX 0
+#define regMMEA1_GMI_WR_CLI2GRP_MAP0 0x045b
+#define regMMEA1_GMI_WR_CLI2GRP_MAP0_BASE_IDX 0
+#define regMMEA1_GMI_WR_CLI2GRP_MAP1 0x045c
+#define regMMEA1_GMI_WR_CLI2GRP_MAP1_BASE_IDX 0
+#define regMMEA1_GMI_RD_GRP2VC_MAP 0x045d
+#define regMMEA1_GMI_RD_GRP2VC_MAP_BASE_IDX 0
+#define regMMEA1_GMI_WR_GRP2VC_MAP 0x045e
+#define regMMEA1_GMI_WR_GRP2VC_MAP_BASE_IDX 0
+#define regMMEA1_GMI_RD_LAZY 0x045f
+#define regMMEA1_GMI_RD_LAZY_BASE_IDX 0
+#define regMMEA1_GMI_WR_LAZY 0x0460
+#define regMMEA1_GMI_WR_LAZY_BASE_IDX 0
+#define regMMEA1_GMI_RD_CAM_CNTL 0x0461
+#define regMMEA1_GMI_RD_CAM_CNTL_BASE_IDX 0
+#define regMMEA1_GMI_WR_CAM_CNTL 0x0462
+#define regMMEA1_GMI_WR_CAM_CNTL_BASE_IDX 0
+#define regMMEA1_GMI_PAGE_BURST 0x0463
+#define regMMEA1_GMI_PAGE_BURST_BASE_IDX 0
+#define regMMEA1_GMI_RD_PRI_AGE 0x0464
+#define regMMEA1_GMI_RD_PRI_AGE_BASE_IDX 0
+#define regMMEA1_GMI_WR_PRI_AGE 0x0465
+#define regMMEA1_GMI_WR_PRI_AGE_BASE_IDX 0
+#define regMMEA1_GMI_RD_PRI_QUEUING 0x0466
+#define regMMEA1_GMI_RD_PRI_QUEUING_BASE_IDX 0
+#define regMMEA1_GMI_WR_PRI_QUEUING 0x0467
+#define regMMEA1_GMI_WR_PRI_QUEUING_BASE_IDX 0
+#define regMMEA1_GMI_RD_PRI_FIXED 0x0468
+#define regMMEA1_GMI_RD_PRI_FIXED_BASE_IDX 0
+#define regMMEA1_GMI_WR_PRI_FIXED 0x0469
+#define regMMEA1_GMI_WR_PRI_FIXED_BASE_IDX 0
+#define regMMEA1_GMI_RD_PRI_URGENCY 0x046a
+#define regMMEA1_GMI_RD_PRI_URGENCY_BASE_IDX 0
+#define regMMEA1_GMI_WR_PRI_URGENCY 0x046b
+#define regMMEA1_GMI_WR_PRI_URGENCY_BASE_IDX 0
+#define regMMEA1_GMI_RD_PRI_URGENCY_MASKING 0x046c
+#define regMMEA1_GMI_RD_PRI_URGENCY_MASKING_BASE_IDX 0
+#define regMMEA1_GMI_WR_PRI_URGENCY_MASKING 0x046d
+#define regMMEA1_GMI_WR_PRI_URGENCY_MASKING_BASE_IDX 0
+#define regMMEA1_GMI_RD_PRI_QUANT_PRI1 0x046e
+#define regMMEA1_GMI_RD_PRI_QUANT_PRI1_BASE_IDX 0
+#define regMMEA1_GMI_RD_PRI_QUANT_PRI2 0x046f
+#define regMMEA1_GMI_RD_PRI_QUANT_PRI2_BASE_IDX 0
+#define regMMEA1_GMI_RD_PRI_QUANT_PRI3 0x0470
+#define regMMEA1_GMI_RD_PRI_QUANT_PRI3_BASE_IDX 0
+#define regMMEA1_GMI_WR_PRI_QUANT_PRI1 0x0471
+#define regMMEA1_GMI_WR_PRI_QUANT_PRI1_BASE_IDX 0
+#define regMMEA1_GMI_WR_PRI_QUANT_PRI2 0x0472
+#define regMMEA1_GMI_WR_PRI_QUANT_PRI2_BASE_IDX 0
+#define regMMEA1_GMI_WR_PRI_QUANT_PRI3 0x0473
+#define regMMEA1_GMI_WR_PRI_QUANT_PRI3_BASE_IDX 0
+#define regMMEA1_IO_RD_CLI2GRP_MAP0 0x0515
+#define regMMEA1_IO_RD_CLI2GRP_MAP0_BASE_IDX 0
+#define regMMEA1_IO_RD_CLI2GRP_MAP1 0x0516
+#define regMMEA1_IO_RD_CLI2GRP_MAP1_BASE_IDX 0
+#define regMMEA1_IO_WR_CLI2GRP_MAP0 0x0517
+#define regMMEA1_IO_WR_CLI2GRP_MAP0_BASE_IDX 0
+#define regMMEA1_IO_WR_CLI2GRP_MAP1 0x0518
+#define regMMEA1_IO_WR_CLI2GRP_MAP1_BASE_IDX 0
+#define regMMEA1_IO_RD_COMBINE_FLUSH 0x0519
+#define regMMEA1_IO_RD_COMBINE_FLUSH_BASE_IDX 0
+#define regMMEA1_IO_WR_COMBINE_FLUSH 0x051a
+#define regMMEA1_IO_WR_COMBINE_FLUSH_BASE_IDX 0
+#define regMMEA1_IO_GROUP_BURST 0x051b
+#define regMMEA1_IO_GROUP_BURST_BASE_IDX 0
+#define regMMEA1_IO_RD_PRI_AGE 0x051c
+#define regMMEA1_IO_RD_PRI_AGE_BASE_IDX 0
+#define regMMEA1_IO_WR_PRI_AGE 0x051d
+#define regMMEA1_IO_WR_PRI_AGE_BASE_IDX 0
+#define regMMEA1_IO_RD_PRI_QUEUING 0x051e
+#define regMMEA1_IO_RD_PRI_QUEUING_BASE_IDX 0
+#define regMMEA1_IO_WR_PRI_QUEUING 0x051f
+#define regMMEA1_IO_WR_PRI_QUEUING_BASE_IDX 0
+#define regMMEA1_IO_RD_PRI_FIXED 0x0520
+#define regMMEA1_IO_RD_PRI_FIXED_BASE_IDX 0
+#define regMMEA1_IO_WR_PRI_FIXED 0x0521
+#define regMMEA1_IO_WR_PRI_FIXED_BASE_IDX 0
+#define regMMEA1_IO_RD_PRI_URGENCY 0x0522
+#define regMMEA1_IO_RD_PRI_URGENCY_BASE_IDX 0
+#define regMMEA1_IO_WR_PRI_URGENCY 0x0523
+#define regMMEA1_IO_WR_PRI_URGENCY_BASE_IDX 0
+#define regMMEA1_IO_RD_PRI_URGENCY_MASKING 0x0524
+#define regMMEA1_IO_RD_PRI_URGENCY_MASKING_BASE_IDX 0
+#define regMMEA1_IO_WR_PRI_URGENCY_MASKING 0x0525
+#define regMMEA1_IO_WR_PRI_URGENCY_MASKING_BASE_IDX 0
+#define regMMEA1_IO_RD_PRI_QUANT_PRI1 0x0526
+#define regMMEA1_IO_RD_PRI_QUANT_PRI1_BASE_IDX 0
+#define regMMEA1_IO_RD_PRI_QUANT_PRI2 0x0527
+#define regMMEA1_IO_RD_PRI_QUANT_PRI2_BASE_IDX 0
+#define regMMEA1_IO_RD_PRI_QUANT_PRI3 0x0528
+#define regMMEA1_IO_RD_PRI_QUANT_PRI3_BASE_IDX 0
+#define regMMEA1_IO_WR_PRI_QUANT_PRI1 0x0529
+#define regMMEA1_IO_WR_PRI_QUANT_PRI1_BASE_IDX 0
+#define regMMEA1_IO_WR_PRI_QUANT_PRI2 0x052a
+#define regMMEA1_IO_WR_PRI_QUANT_PRI2_BASE_IDX 0
+#define regMMEA1_IO_WR_PRI_QUANT_PRI3 0x052b
+#define regMMEA1_IO_WR_PRI_QUANT_PRI3_BASE_IDX 0
+#define regMMEA1_SDP_ARB_DRAM 0x052c
+#define regMMEA1_SDP_ARB_DRAM_BASE_IDX 0
+#define regMMEA1_SDP_ARB_GMI 0x052d
+#define regMMEA1_SDP_ARB_GMI_BASE_IDX 0
+#define regMMEA1_SDP_ARB_FINAL 0x052e
+#define regMMEA1_SDP_ARB_FINAL_BASE_IDX 0
+#define regMMEA1_SDP_DRAM_PRIORITY 0x052f
+#define regMMEA1_SDP_DRAM_PRIORITY_BASE_IDX 0
+#define regMMEA1_SDP_GMI_PRIORITY 0x0530
+#define regMMEA1_SDP_GMI_PRIORITY_BASE_IDX 0
+#define regMMEA1_SDP_IO_PRIORITY 0x0531
+#define regMMEA1_SDP_IO_PRIORITY_BASE_IDX 0
+#define regMMEA1_SDP_CREDITS 0x0532
+#define regMMEA1_SDP_CREDITS_BASE_IDX 0
+#define regMMEA1_SDP_TAG_RESERVE0 0x0533
+#define regMMEA1_SDP_TAG_RESERVE0_BASE_IDX 0
+#define regMMEA1_SDP_TAG_RESERVE1 0x0534
+#define regMMEA1_SDP_TAG_RESERVE1_BASE_IDX 0
+#define regMMEA1_SDP_VCC_RESERVE0 0x0535
+#define regMMEA1_SDP_VCC_RESERVE0_BASE_IDX 0
+#define regMMEA1_SDP_VCC_RESERVE1 0x0536
+#define regMMEA1_SDP_VCC_RESERVE1_BASE_IDX 0
+#define regMMEA1_SDP_VCD_RESERVE0 0x0537
+#define regMMEA1_SDP_VCD_RESERVE0_BASE_IDX 0
+#define regMMEA1_SDP_VCD_RESERVE1 0x0538
+#define regMMEA1_SDP_VCD_RESERVE1_BASE_IDX 0
+#define regMMEA1_SDP_REQ_CNTL 0x0539
+#define regMMEA1_SDP_REQ_CNTL_BASE_IDX 0
+#define regMMEA1_MISC 0x053a
+#define regMMEA1_MISC_BASE_IDX 0
+#define regMMEA1_LATENCY_SAMPLING 0x053b
+#define regMMEA1_LATENCY_SAMPLING_BASE_IDX 0
+#define regMMEA1_PERFCOUNTER_LO 0x053c
+#define regMMEA1_PERFCOUNTER_LO_BASE_IDX 0
+#define regMMEA1_PERFCOUNTER_HI 0x053d
+#define regMMEA1_PERFCOUNTER_HI_BASE_IDX 0
+#define regMMEA1_PERFCOUNTER0_CFG 0x053e
+#define regMMEA1_PERFCOUNTER0_CFG_BASE_IDX 0
+#define regMMEA1_PERFCOUNTER1_CFG 0x053f
+#define regMMEA1_PERFCOUNTER1_CFG_BASE_IDX 0
+#define regMMEA1_PERFCOUNTER_RSLT_CNTL 0x0540
+#define regMMEA1_PERFCOUNTER_RSLT_CNTL_BASE_IDX 0
+#define regMMEA1_DSM_CNTL 0x0548
+#define regMMEA1_DSM_CNTL_BASE_IDX 0
+#define regMMEA1_DSM_CNTLA 0x0549
+#define regMMEA1_DSM_CNTLA_BASE_IDX 0
+#define regMMEA1_DSM_CNTLB 0x054a
+#define regMMEA1_DSM_CNTLB_BASE_IDX 0
+#define regMMEA1_DSM_CNTL2 0x054b
+#define regMMEA1_DSM_CNTL2_BASE_IDX 0
+#define regMMEA1_DSM_CNTL2A 0x054c
+#define regMMEA1_DSM_CNTL2A_BASE_IDX 0
+#define regMMEA1_DSM_CNTL2B 0x054d
+#define regMMEA1_DSM_CNTL2B_BASE_IDX 0
+#define regMMEA1_CGTT_CLK_CTRL 0x054f
+#define regMMEA1_CGTT_CLK_CTRL_BASE_IDX 0
+#define regMMEA1_EDC_MODE 0x0550
+#define regMMEA1_EDC_MODE_BASE_IDX 0
+#define regMMEA1_ERR_STATUS 0x0551
+#define regMMEA1_ERR_STATUS_BASE_IDX 0
+#define regMMEA1_MISC2 0x0552
+#define regMMEA1_MISC2_BASE_IDX 0
+#define regMMEA1_MISC_AON 0x0555
+#define regMMEA1_MISC_AON_BASE_IDX 0
+
+
+// addressBlock: aid_mmhub_ea_mmeadec2
+// base address: 0x61600
+#define regMMEA2_DRAM_RD_CLI2GRP_MAP0 0x0580
+#define regMMEA2_DRAM_RD_CLI2GRP_MAP0_BASE_IDX 0
+#define regMMEA2_DRAM_RD_CLI2GRP_MAP1 0x0581
+#define regMMEA2_DRAM_RD_CLI2GRP_MAP1_BASE_IDX 0
+#define regMMEA2_DRAM_WR_CLI2GRP_MAP0 0x0582
+#define regMMEA2_DRAM_WR_CLI2GRP_MAP0_BASE_IDX 0
+#define regMMEA2_DRAM_WR_CLI2GRP_MAP1 0x0583
+#define regMMEA2_DRAM_WR_CLI2GRP_MAP1_BASE_IDX 0
+#define regMMEA2_DRAM_RD_GRP2VC_MAP 0x0584
+#define regMMEA2_DRAM_RD_GRP2VC_MAP_BASE_IDX 0
+#define regMMEA2_DRAM_WR_GRP2VC_MAP 0x0585
+#define regMMEA2_DRAM_WR_GRP2VC_MAP_BASE_IDX 0
+#define regMMEA2_DRAM_RD_LAZY 0x0586
+#define regMMEA2_DRAM_RD_LAZY_BASE_IDX 0
+#define regMMEA2_DRAM_WR_LAZY 0x0587
+#define regMMEA2_DRAM_WR_LAZY_BASE_IDX 0
+#define regMMEA2_DRAM_RD_CAM_CNTL 0x0588
+#define regMMEA2_DRAM_RD_CAM_CNTL_BASE_IDX 0
+#define regMMEA2_DRAM_WR_CAM_CNTL 0x0589
+#define regMMEA2_DRAM_WR_CAM_CNTL_BASE_IDX 0
+#define regMMEA2_DRAM_PAGE_BURST 0x058a
+#define regMMEA2_DRAM_PAGE_BURST_BASE_IDX 0
+#define regMMEA2_DRAM_RD_PRI_AGE 0x058b
+#define regMMEA2_DRAM_RD_PRI_AGE_BASE_IDX 0
+#define regMMEA2_DRAM_WR_PRI_AGE 0x058c
+#define regMMEA2_DRAM_WR_PRI_AGE_BASE_IDX 0
+#define regMMEA2_DRAM_RD_PRI_QUEUING 0x058d
+#define regMMEA2_DRAM_RD_PRI_QUEUING_BASE_IDX 0
+#define regMMEA2_DRAM_WR_PRI_QUEUING 0x058e
+#define regMMEA2_DRAM_WR_PRI_QUEUING_BASE_IDX 0
+#define regMMEA2_DRAM_RD_PRI_FIXED 0x058f
+#define regMMEA2_DRAM_RD_PRI_FIXED_BASE_IDX 0
+#define regMMEA2_DRAM_WR_PRI_FIXED 0x0590
+#define regMMEA2_DRAM_WR_PRI_FIXED_BASE_IDX 0
+#define regMMEA2_DRAM_RD_PRI_URGENCY 0x0591
+#define regMMEA2_DRAM_RD_PRI_URGENCY_BASE_IDX 0
+#define regMMEA2_DRAM_WR_PRI_URGENCY 0x0592
+#define regMMEA2_DRAM_WR_PRI_URGENCY_BASE_IDX 0
+#define regMMEA2_DRAM_RD_PRI_QUANT_PRI1 0x0593
+#define regMMEA2_DRAM_RD_PRI_QUANT_PRI1_BASE_IDX 0
+#define regMMEA2_DRAM_RD_PRI_QUANT_PRI2 0x0594
+#define regMMEA2_DRAM_RD_PRI_QUANT_PRI2_BASE_IDX 0
+#define regMMEA2_DRAM_RD_PRI_QUANT_PRI3 0x0595
+#define regMMEA2_DRAM_RD_PRI_QUANT_PRI3_BASE_IDX 0
+#define regMMEA2_DRAM_WR_PRI_QUANT_PRI1 0x0596
+#define regMMEA2_DRAM_WR_PRI_QUANT_PRI1_BASE_IDX 0
+#define regMMEA2_DRAM_WR_PRI_QUANT_PRI2 0x0597
+#define regMMEA2_DRAM_WR_PRI_QUANT_PRI2_BASE_IDX 0
+#define regMMEA2_DRAM_WR_PRI_QUANT_PRI3 0x0598
+#define regMMEA2_DRAM_WR_PRI_QUANT_PRI3_BASE_IDX 0
+#define regMMEA2_GMI_RD_CLI2GRP_MAP0 0x0599
+#define regMMEA2_GMI_RD_CLI2GRP_MAP0_BASE_IDX 0
+#define regMMEA2_GMI_RD_CLI2GRP_MAP1 0x059a
+#define regMMEA2_GMI_RD_CLI2GRP_MAP1_BASE_IDX 0
+#define regMMEA2_GMI_WR_CLI2GRP_MAP0 0x059b
+#define regMMEA2_GMI_WR_CLI2GRP_MAP0_BASE_IDX 0
+#define regMMEA2_GMI_WR_CLI2GRP_MAP1 0x059c
+#define regMMEA2_GMI_WR_CLI2GRP_MAP1_BASE_IDX 0
+#define regMMEA2_GMI_RD_GRP2VC_MAP 0x059d
+#define regMMEA2_GMI_RD_GRP2VC_MAP_BASE_IDX 0
+#define regMMEA2_GMI_WR_GRP2VC_MAP 0x059e
+#define regMMEA2_GMI_WR_GRP2VC_MAP_BASE_IDX 0
+#define regMMEA2_GMI_RD_LAZY 0x059f
+#define regMMEA2_GMI_RD_LAZY_BASE_IDX 0
+#define regMMEA2_GMI_WR_LAZY 0x05a0
+#define regMMEA2_GMI_WR_LAZY_BASE_IDX 0
+#define regMMEA2_GMI_RD_CAM_CNTL 0x05a1
+#define regMMEA2_GMI_RD_CAM_CNTL_BASE_IDX 0
+#define regMMEA2_GMI_WR_CAM_CNTL 0x05a2
+#define regMMEA2_GMI_WR_CAM_CNTL_BASE_IDX 0
+#define regMMEA2_GMI_PAGE_BURST 0x05a3
+#define regMMEA2_GMI_PAGE_BURST_BASE_IDX 0
+#define regMMEA2_GMI_RD_PRI_AGE 0x05a4
+#define regMMEA2_GMI_RD_PRI_AGE_BASE_IDX 0
+#define regMMEA2_GMI_WR_PRI_AGE 0x05a5
+#define regMMEA2_GMI_WR_PRI_AGE_BASE_IDX 0
+#define regMMEA2_GMI_RD_PRI_QUEUING 0x05a6
+#define regMMEA2_GMI_RD_PRI_QUEUING_BASE_IDX 0
+#define regMMEA2_GMI_WR_PRI_QUEUING 0x05a7
+#define regMMEA2_GMI_WR_PRI_QUEUING_BASE_IDX 0
+#define regMMEA2_GMI_RD_PRI_FIXED 0x05a8
+#define regMMEA2_GMI_RD_PRI_FIXED_BASE_IDX 0
+#define regMMEA2_GMI_WR_PRI_FIXED 0x05a9
+#define regMMEA2_GMI_WR_PRI_FIXED_BASE_IDX 0
+#define regMMEA2_GMI_RD_PRI_URGENCY 0x05aa
+#define regMMEA2_GMI_RD_PRI_URGENCY_BASE_IDX 0
+#define regMMEA2_GMI_WR_PRI_URGENCY 0x05ab
+#define regMMEA2_GMI_WR_PRI_URGENCY_BASE_IDX 0
+#define regMMEA2_GMI_RD_PRI_URGENCY_MASKING 0x05ac
+#define regMMEA2_GMI_RD_PRI_URGENCY_MASKING_BASE_IDX 0
+#define regMMEA2_GMI_WR_PRI_URGENCY_MASKING 0x05ad
+#define regMMEA2_GMI_WR_PRI_URGENCY_MASKING_BASE_IDX 0
+#define regMMEA2_GMI_RD_PRI_QUANT_PRI1 0x05ae
+#define regMMEA2_GMI_RD_PRI_QUANT_PRI1_BASE_IDX 0
+#define regMMEA2_GMI_RD_PRI_QUANT_PRI2 0x05af
+#define regMMEA2_GMI_RD_PRI_QUANT_PRI2_BASE_IDX 0
+#define regMMEA2_GMI_RD_PRI_QUANT_PRI3 0x05b0
+#define regMMEA2_GMI_RD_PRI_QUANT_PRI3_BASE_IDX 0
+#define regMMEA2_GMI_WR_PRI_QUANT_PRI1 0x05b1
+#define regMMEA2_GMI_WR_PRI_QUANT_PRI1_BASE_IDX 0
+#define regMMEA2_GMI_WR_PRI_QUANT_PRI2 0x05b2
+#define regMMEA2_GMI_WR_PRI_QUANT_PRI2_BASE_IDX 0
+#define regMMEA2_GMI_WR_PRI_QUANT_PRI3 0x05b3
+#define regMMEA2_GMI_WR_PRI_QUANT_PRI3_BASE_IDX 0
+#define regMMEA2_IO_RD_CLI2GRP_MAP0 0x0655
+#define regMMEA2_IO_RD_CLI2GRP_MAP0_BASE_IDX 0
+#define regMMEA2_IO_RD_CLI2GRP_MAP1 0x0656
+#define regMMEA2_IO_RD_CLI2GRP_MAP1_BASE_IDX 0
+#define regMMEA2_IO_WR_CLI2GRP_MAP0 0x0657
+#define regMMEA2_IO_WR_CLI2GRP_MAP0_BASE_IDX 0
+#define regMMEA2_IO_WR_CLI2GRP_MAP1 0x0658
+#define regMMEA2_IO_WR_CLI2GRP_MAP1_BASE_IDX 0
+#define regMMEA2_IO_RD_COMBINE_FLUSH 0x0659
+#define regMMEA2_IO_RD_COMBINE_FLUSH_BASE_IDX 0
+#define regMMEA2_IO_WR_COMBINE_FLUSH 0x065a
+#define regMMEA2_IO_WR_COMBINE_FLUSH_BASE_IDX 0
+#define regMMEA2_IO_GROUP_BURST 0x065b
+#define regMMEA2_IO_GROUP_BURST_BASE_IDX 0
+#define regMMEA2_IO_RD_PRI_AGE 0x065c
+#define regMMEA2_IO_RD_PRI_AGE_BASE_IDX 0
+#define regMMEA2_IO_WR_PRI_AGE 0x065d
+#define regMMEA2_IO_WR_PRI_AGE_BASE_IDX 0
+#define regMMEA2_IO_RD_PRI_QUEUING 0x065e
+#define regMMEA2_IO_RD_PRI_QUEUING_BASE_IDX 0
+#define regMMEA2_IO_WR_PRI_QUEUING 0x065f
+#define regMMEA2_IO_WR_PRI_QUEUING_BASE_IDX 0
+#define regMMEA2_IO_RD_PRI_FIXED 0x0660
+#define regMMEA2_IO_RD_PRI_FIXED_BASE_IDX 0
+#define regMMEA2_IO_WR_PRI_FIXED 0x0661
+#define regMMEA2_IO_WR_PRI_FIXED_BASE_IDX 0
+#define regMMEA2_IO_RD_PRI_URGENCY 0x0662
+#define regMMEA2_IO_RD_PRI_URGENCY_BASE_IDX 0
+#define regMMEA2_IO_WR_PRI_URGENCY 0x0663
+#define regMMEA2_IO_WR_PRI_URGENCY_BASE_IDX 0
+#define regMMEA2_IO_RD_PRI_URGENCY_MASKING 0x0664
+#define regMMEA2_IO_RD_PRI_URGENCY_MASKING_BASE_IDX 0
+#define regMMEA2_IO_WR_PRI_URGENCY_MASKING 0x0665
+#define regMMEA2_IO_WR_PRI_URGENCY_MASKING_BASE_IDX 0
+#define regMMEA2_IO_RD_PRI_QUANT_PRI1 0x0666
+#define regMMEA2_IO_RD_PRI_QUANT_PRI1_BASE_IDX 0
+#define regMMEA2_IO_RD_PRI_QUANT_PRI2 0x0667
+#define regMMEA2_IO_RD_PRI_QUANT_PRI2_BASE_IDX 0
+#define regMMEA2_IO_RD_PRI_QUANT_PRI3 0x0668
+#define regMMEA2_IO_RD_PRI_QUANT_PRI3_BASE_IDX 0
+#define regMMEA2_IO_WR_PRI_QUANT_PRI1 0x0669
+#define regMMEA2_IO_WR_PRI_QUANT_PRI1_BASE_IDX 0
+#define regMMEA2_IO_WR_PRI_QUANT_PRI2 0x066a
+#define regMMEA2_IO_WR_PRI_QUANT_PRI2_BASE_IDX 0
+#define regMMEA2_IO_WR_PRI_QUANT_PRI3 0x066b
+#define regMMEA2_IO_WR_PRI_QUANT_PRI3_BASE_IDX 0
+#define regMMEA2_SDP_ARB_DRAM 0x066c
+#define regMMEA2_SDP_ARB_DRAM_BASE_IDX 0
+#define regMMEA2_SDP_ARB_GMI 0x066d
+#define regMMEA2_SDP_ARB_GMI_BASE_IDX 0
+#define regMMEA2_SDP_ARB_FINAL 0x066e
+#define regMMEA2_SDP_ARB_FINAL_BASE_IDX 0
+#define regMMEA2_SDP_DRAM_PRIORITY 0x066f
+#define regMMEA2_SDP_DRAM_PRIORITY_BASE_IDX 0
+#define regMMEA2_SDP_GMI_PRIORITY 0x0670
+#define regMMEA2_SDP_GMI_PRIORITY_BASE_IDX 0
+#define regMMEA2_SDP_IO_PRIORITY 0x0671
+#define regMMEA2_SDP_IO_PRIORITY_BASE_IDX 0
+#define regMMEA2_SDP_CREDITS 0x0672
+#define regMMEA2_SDP_CREDITS_BASE_IDX 0
+#define regMMEA2_SDP_TAG_RESERVE0 0x0673
+#define regMMEA2_SDP_TAG_RESERVE0_BASE_IDX 0
+#define regMMEA2_SDP_TAG_RESERVE1 0x0674
+#define regMMEA2_SDP_TAG_RESERVE1_BASE_IDX 0
+#define regMMEA2_SDP_VCC_RESERVE0 0x0675
+#define regMMEA2_SDP_VCC_RESERVE0_BASE_IDX 0
+#define regMMEA2_SDP_VCC_RESERVE1 0x0676
+#define regMMEA2_SDP_VCC_RESERVE1_BASE_IDX 0
+#define regMMEA2_SDP_VCD_RESERVE0 0x0677
+#define regMMEA2_SDP_VCD_RESERVE0_BASE_IDX 0
+#define regMMEA2_SDP_VCD_RESERVE1 0x0678
+#define regMMEA2_SDP_VCD_RESERVE1_BASE_IDX 0
+#define regMMEA2_SDP_REQ_CNTL 0x0679
+#define regMMEA2_SDP_REQ_CNTL_BASE_IDX 0
+#define regMMEA2_MISC 0x067a
+#define regMMEA2_MISC_BASE_IDX 0
+#define regMMEA2_LATENCY_SAMPLING 0x067b
+#define regMMEA2_LATENCY_SAMPLING_BASE_IDX 0
+#define regMMEA2_PERFCOUNTER_LO 0x067c
+#define regMMEA2_PERFCOUNTER_LO_BASE_IDX 0
+#define regMMEA2_PERFCOUNTER_HI 0x067d
+#define regMMEA2_PERFCOUNTER_HI_BASE_IDX 0
+#define regMMEA2_PERFCOUNTER0_CFG 0x067e
+#define regMMEA2_PERFCOUNTER0_CFG_BASE_IDX 0
+#define regMMEA2_PERFCOUNTER1_CFG 0x067f
+#define regMMEA2_PERFCOUNTER1_CFG_BASE_IDX 0
+#define regMMEA2_PERFCOUNTER_RSLT_CNTL 0x0680
+#define regMMEA2_PERFCOUNTER_RSLT_CNTL_BASE_IDX 0
+#define regMMEA2_DSM_CNTL 0x0688
+#define regMMEA2_DSM_CNTL_BASE_IDX 0
+#define regMMEA2_DSM_CNTLA 0x0689
+#define regMMEA2_DSM_CNTLA_BASE_IDX 0
+#define regMMEA2_DSM_CNTLB 0x068a
+#define regMMEA2_DSM_CNTLB_BASE_IDX 0
+#define regMMEA2_DSM_CNTL2 0x068b
+#define regMMEA2_DSM_CNTL2_BASE_IDX 0
+#define regMMEA2_DSM_CNTL2A 0x068c
+#define regMMEA2_DSM_CNTL2A_BASE_IDX 0
+#define regMMEA2_DSM_CNTL2B 0x068d
+#define regMMEA2_DSM_CNTL2B_BASE_IDX 0
+#define regMMEA2_CGTT_CLK_CTRL 0x068f
+#define regMMEA2_CGTT_CLK_CTRL_BASE_IDX 0
+#define regMMEA2_EDC_MODE 0x0690
+#define regMMEA2_EDC_MODE_BASE_IDX 0
+#define regMMEA2_ERR_STATUS 0x0691
+#define regMMEA2_ERR_STATUS_BASE_IDX 0
+#define regMMEA2_MISC2 0x0692
+#define regMMEA2_MISC2_BASE_IDX 0
+#define regMMEA2_MISC_AON 0x0695
+#define regMMEA2_MISC_AON_BASE_IDX 0
+
+
+// addressBlock: aid_mmhub_ea_mmeadec3
+// base address: 0x61b00
+#define regMMEA3_DRAM_RD_CLI2GRP_MAP0 0x06c0
+#define regMMEA3_DRAM_RD_CLI2GRP_MAP0_BASE_IDX 0
+#define regMMEA3_DRAM_RD_CLI2GRP_MAP1 0x06c1
+#define regMMEA3_DRAM_RD_CLI2GRP_MAP1_BASE_IDX 0
+#define regMMEA3_DRAM_WR_CLI2GRP_MAP0 0x06c2
+#define regMMEA3_DRAM_WR_CLI2GRP_MAP0_BASE_IDX 0
+#define regMMEA3_DRAM_WR_CLI2GRP_MAP1 0x06c3
+#define regMMEA3_DRAM_WR_CLI2GRP_MAP1_BASE_IDX 0
+#define regMMEA3_DRAM_RD_GRP2VC_MAP 0x06c4
+#define regMMEA3_DRAM_RD_GRP2VC_MAP_BASE_IDX 0
+#define regMMEA3_DRAM_WR_GRP2VC_MAP 0x06c5
+#define regMMEA3_DRAM_WR_GRP2VC_MAP_BASE_IDX 0
+#define regMMEA3_DRAM_RD_LAZY 0x06c6
+#define regMMEA3_DRAM_RD_LAZY_BASE_IDX 0
+#define regMMEA3_DRAM_WR_LAZY 0x06c7
+#define regMMEA3_DRAM_WR_LAZY_BASE_IDX 0
+#define regMMEA3_DRAM_RD_CAM_CNTL 0x06c8
+#define regMMEA3_DRAM_RD_CAM_CNTL_BASE_IDX 0
+#define regMMEA3_DRAM_WR_CAM_CNTL 0x06c9
+#define regMMEA3_DRAM_WR_CAM_CNTL_BASE_IDX 0
+#define regMMEA3_DRAM_PAGE_BURST 0x06ca
+#define regMMEA3_DRAM_PAGE_BURST_BASE_IDX 0
+#define regMMEA3_DRAM_RD_PRI_AGE 0x06cb
+#define regMMEA3_DRAM_RD_PRI_AGE_BASE_IDX 0
+#define regMMEA3_DRAM_WR_PRI_AGE 0x06cc
+#define regMMEA3_DRAM_WR_PRI_AGE_BASE_IDX 0
+#define regMMEA3_DRAM_RD_PRI_QUEUING 0x06cd
+#define regMMEA3_DRAM_RD_PRI_QUEUING_BASE_IDX 0
+#define regMMEA3_DRAM_WR_PRI_QUEUING 0x06ce
+#define regMMEA3_DRAM_WR_PRI_QUEUING_BASE_IDX 0
+#define regMMEA3_DRAM_RD_PRI_FIXED 0x06cf
+#define regMMEA3_DRAM_RD_PRI_FIXED_BASE_IDX 0
+#define regMMEA3_DRAM_WR_PRI_FIXED 0x06d0
+#define regMMEA3_DRAM_WR_PRI_FIXED_BASE_IDX 0
+#define regMMEA3_DRAM_RD_PRI_URGENCY 0x06d1
+#define regMMEA3_DRAM_RD_PRI_URGENCY_BASE_IDX 0
+#define regMMEA3_DRAM_WR_PRI_URGENCY 0x06d2
+#define regMMEA3_DRAM_WR_PRI_URGENCY_BASE_IDX 0
+#define regMMEA3_DRAM_RD_PRI_QUANT_PRI1 0x06d3
+#define regMMEA3_DRAM_RD_PRI_QUANT_PRI1_BASE_IDX 0
+#define regMMEA3_DRAM_RD_PRI_QUANT_PRI2 0x06d4
+#define regMMEA3_DRAM_RD_PRI_QUANT_PRI2_BASE_IDX 0
+#define regMMEA3_DRAM_RD_PRI_QUANT_PRI3 0x06d5
+#define regMMEA3_DRAM_RD_PRI_QUANT_PRI3_BASE_IDX 0
+#define regMMEA3_DRAM_WR_PRI_QUANT_PRI1 0x06d6
+#define regMMEA3_DRAM_WR_PRI_QUANT_PRI1_BASE_IDX 0
+#define regMMEA3_DRAM_WR_PRI_QUANT_PRI2 0x06d7
+#define regMMEA3_DRAM_WR_PRI_QUANT_PRI2_BASE_IDX 0
+#define regMMEA3_DRAM_WR_PRI_QUANT_PRI3 0x06d8
+#define regMMEA3_DRAM_WR_PRI_QUANT_PRI3_BASE_IDX 0
+#define regMMEA3_GMI_RD_CLI2GRP_MAP0 0x06d9
+#define regMMEA3_GMI_RD_CLI2GRP_MAP0_BASE_IDX 0
+#define regMMEA3_GMI_RD_CLI2GRP_MAP1 0x06da
+#define regMMEA3_GMI_RD_CLI2GRP_MAP1_BASE_IDX 0
+#define regMMEA3_GMI_WR_CLI2GRP_MAP0 0x06db
+#define regMMEA3_GMI_WR_CLI2GRP_MAP0_BASE_IDX 0
+#define regMMEA3_GMI_WR_CLI2GRP_MAP1 0x06dc
+#define regMMEA3_GMI_WR_CLI2GRP_MAP1_BASE_IDX 0
+#define regMMEA3_GMI_RD_GRP2VC_MAP 0x06dd
+#define regMMEA3_GMI_RD_GRP2VC_MAP_BASE_IDX 0
+#define regMMEA3_GMI_WR_GRP2VC_MAP 0x06de
+#define regMMEA3_GMI_WR_GRP2VC_MAP_BASE_IDX 0
+#define regMMEA3_GMI_RD_LAZY 0x06df
+#define regMMEA3_GMI_RD_LAZY_BASE_IDX 0
+#define regMMEA3_GMI_WR_LAZY 0x06e0
+#define regMMEA3_GMI_WR_LAZY_BASE_IDX 0
+#define regMMEA3_GMI_RD_CAM_CNTL 0x06e1
+#define regMMEA3_GMI_RD_CAM_CNTL_BASE_IDX 0
+#define regMMEA3_GMI_WR_CAM_CNTL 0x06e2
+#define regMMEA3_GMI_WR_CAM_CNTL_BASE_IDX 0
+#define regMMEA3_GMI_PAGE_BURST 0x06e3
+#define regMMEA3_GMI_PAGE_BURST_BASE_IDX 0
+#define regMMEA3_GMI_RD_PRI_AGE 0x06e4
+#define regMMEA3_GMI_RD_PRI_AGE_BASE_IDX 0
+#define regMMEA3_GMI_WR_PRI_AGE 0x06e5
+#define regMMEA3_GMI_WR_PRI_AGE_BASE_IDX 0
+#define regMMEA3_GMI_RD_PRI_QUEUING 0x06e6
+#define regMMEA3_GMI_RD_PRI_QUEUING_BASE_IDX 0
+#define regMMEA3_GMI_WR_PRI_QUEUING 0x06e7
+#define regMMEA3_GMI_WR_PRI_QUEUING_BASE_IDX 0
+#define regMMEA3_GMI_RD_PRI_FIXED 0x06e8
+#define regMMEA3_GMI_RD_PRI_FIXED_BASE_IDX 0
+#define regMMEA3_GMI_WR_PRI_FIXED 0x06e9
+#define regMMEA3_GMI_WR_PRI_FIXED_BASE_IDX 0
+#define regMMEA3_GMI_RD_PRI_URGENCY 0x06ea
+#define regMMEA3_GMI_RD_PRI_URGENCY_BASE_IDX 0
+#define regMMEA3_GMI_WR_PRI_URGENCY 0x06eb
+#define regMMEA3_GMI_WR_PRI_URGENCY_BASE_IDX 0
+#define regMMEA3_GMI_RD_PRI_URGENCY_MASKING 0x06ec
+#define regMMEA3_GMI_RD_PRI_URGENCY_MASKING_BASE_IDX 0
+#define regMMEA3_GMI_WR_PRI_URGENCY_MASKING 0x06ed
+#define regMMEA3_GMI_WR_PRI_URGENCY_MASKING_BASE_IDX 0
+#define regMMEA3_GMI_RD_PRI_QUANT_PRI1 0x06ee
+#define regMMEA3_GMI_RD_PRI_QUANT_PRI1_BASE_IDX 0
+#define regMMEA3_GMI_RD_PRI_QUANT_PRI2 0x06ef
+#define regMMEA3_GMI_RD_PRI_QUANT_PRI2_BASE_IDX 0
+#define regMMEA3_GMI_RD_PRI_QUANT_PRI3 0x06f0
+#define regMMEA3_GMI_RD_PRI_QUANT_PRI3_BASE_IDX 0
+#define regMMEA3_GMI_WR_PRI_QUANT_PRI1 0x06f1
+#define regMMEA3_GMI_WR_PRI_QUANT_PRI1_BASE_IDX 0
+#define regMMEA3_GMI_WR_PRI_QUANT_PRI2 0x06f2
+#define regMMEA3_GMI_WR_PRI_QUANT_PRI2_BASE_IDX 0
+#define regMMEA3_GMI_WR_PRI_QUANT_PRI3 0x06f3
+#define regMMEA3_GMI_WR_PRI_QUANT_PRI3_BASE_IDX 0
+#define regMMEA3_IO_RD_CLI2GRP_MAP0 0x0795
+#define regMMEA3_IO_RD_CLI2GRP_MAP0_BASE_IDX 0
+#define regMMEA3_IO_RD_CLI2GRP_MAP1 0x0796
+#define regMMEA3_IO_RD_CLI2GRP_MAP1_BASE_IDX 0
+#define regMMEA3_IO_WR_CLI2GRP_MAP0 0x0797
+#define regMMEA3_IO_WR_CLI2GRP_MAP0_BASE_IDX 0
+#define regMMEA3_IO_WR_CLI2GRP_MAP1 0x0798
+#define regMMEA3_IO_WR_CLI2GRP_MAP1_BASE_IDX 0
+#define regMMEA3_IO_RD_COMBINE_FLUSH 0x0799
+#define regMMEA3_IO_RD_COMBINE_FLUSH_BASE_IDX 0
+#define regMMEA3_IO_WR_COMBINE_FLUSH 0x079a
+#define regMMEA3_IO_WR_COMBINE_FLUSH_BASE_IDX 0
+#define regMMEA3_IO_GROUP_BURST 0x079b
+#define regMMEA3_IO_GROUP_BURST_BASE_IDX 0
+#define regMMEA3_IO_RD_PRI_AGE 0x079c
+#define regMMEA3_IO_RD_PRI_AGE_BASE_IDX 0
+#define regMMEA3_IO_WR_PRI_AGE 0x079d
+#define regMMEA3_IO_WR_PRI_AGE_BASE_IDX 0
+#define regMMEA3_IO_RD_PRI_QUEUING 0x079e
+#define regMMEA3_IO_RD_PRI_QUEUING_BASE_IDX 0
+#define regMMEA3_IO_WR_PRI_QUEUING 0x079f
+#define regMMEA3_IO_WR_PRI_QUEUING_BASE_IDX 0
+#define regMMEA3_IO_RD_PRI_FIXED 0x07a0
+#define regMMEA3_IO_RD_PRI_FIXED_BASE_IDX 0
+#define regMMEA3_IO_WR_PRI_FIXED 0x07a1
+#define regMMEA3_IO_WR_PRI_FIXED_BASE_IDX 0
+#define regMMEA3_IO_RD_PRI_URGENCY 0x07a2
+#define regMMEA3_IO_RD_PRI_URGENCY_BASE_IDX 0
+#define regMMEA3_IO_WR_PRI_URGENCY 0x07a3
+#define regMMEA3_IO_WR_PRI_URGENCY_BASE_IDX 0
+#define regMMEA3_IO_RD_PRI_URGENCY_MASKING 0x07a4
+#define regMMEA3_IO_RD_PRI_URGENCY_MASKING_BASE_IDX 0
+#define regMMEA3_IO_WR_PRI_URGENCY_MASKING 0x07a5
+#define regMMEA3_IO_WR_PRI_URGENCY_MASKING_BASE_IDX 0
+#define regMMEA3_IO_RD_PRI_QUANT_PRI1 0x07a6
+#define regMMEA3_IO_RD_PRI_QUANT_PRI1_BASE_IDX 0
+#define regMMEA3_IO_RD_PRI_QUANT_PRI2 0x07a7
+#define regMMEA3_IO_RD_PRI_QUANT_PRI2_BASE_IDX 0
+#define regMMEA3_IO_RD_PRI_QUANT_PRI3 0x07a8
+#define regMMEA3_IO_RD_PRI_QUANT_PRI3_BASE_IDX 0
+#define regMMEA3_IO_WR_PRI_QUANT_PRI1 0x07a9
+#define regMMEA3_IO_WR_PRI_QUANT_PRI1_BASE_IDX 0
+#define regMMEA3_IO_WR_PRI_QUANT_PRI2 0x07aa
+#define regMMEA3_IO_WR_PRI_QUANT_PRI2_BASE_IDX 0
+#define regMMEA3_IO_WR_PRI_QUANT_PRI3 0x07ab
+#define regMMEA3_IO_WR_PRI_QUANT_PRI3_BASE_IDX 0
+#define regMMEA3_SDP_ARB_DRAM 0x07ac
+#define regMMEA3_SDP_ARB_DRAM_BASE_IDX 0
+#define regMMEA3_SDP_ARB_GMI 0x07ad
+#define regMMEA3_SDP_ARB_GMI_BASE_IDX 0
+#define regMMEA3_SDP_ARB_FINAL 0x07ae
+#define regMMEA3_SDP_ARB_FINAL_BASE_IDX 0
+#define regMMEA3_SDP_DRAM_PRIORITY 0x07af
+#define regMMEA3_SDP_DRAM_PRIORITY_BASE_IDX 0
+#define regMMEA3_SDP_GMI_PRIORITY 0x07b0
+#define regMMEA3_SDP_GMI_PRIORITY_BASE_IDX 0
+#define regMMEA3_SDP_IO_PRIORITY 0x07b1
+#define regMMEA3_SDP_IO_PRIORITY_BASE_IDX 0
+#define regMMEA3_SDP_CREDITS 0x07b2
+#define regMMEA3_SDP_CREDITS_BASE_IDX 0
+#define regMMEA3_SDP_TAG_RESERVE0 0x07b3
+#define regMMEA3_SDP_TAG_RESERVE0_BASE_IDX 0
+#define regMMEA3_SDP_TAG_RESERVE1 0x07b4
+#define regMMEA3_SDP_TAG_RESERVE1_BASE_IDX 0
+#define regMMEA3_SDP_VCC_RESERVE0 0x07b5
+#define regMMEA3_SDP_VCC_RESERVE0_BASE_IDX 0
+#define regMMEA3_SDP_VCC_RESERVE1 0x07b6
+#define regMMEA3_SDP_VCC_RESERVE1_BASE_IDX 0
+#define regMMEA3_SDP_VCD_RESERVE0 0x07b7
+#define regMMEA3_SDP_VCD_RESERVE0_BASE_IDX 0
+#define regMMEA3_SDP_VCD_RESERVE1 0x07b8
+#define regMMEA3_SDP_VCD_RESERVE1_BASE_IDX 0
+#define regMMEA3_SDP_REQ_CNTL 0x07b9
+#define regMMEA3_SDP_REQ_CNTL_BASE_IDX 0
+#define regMMEA3_MISC 0x07ba
+#define regMMEA3_MISC_BASE_IDX 0
+#define regMMEA3_LATENCY_SAMPLING 0x07bb
+#define regMMEA3_LATENCY_SAMPLING_BASE_IDX 0
+#define regMMEA3_PERFCOUNTER_LO 0x07bc
+#define regMMEA3_PERFCOUNTER_LO_BASE_IDX 0
+#define regMMEA3_PERFCOUNTER_HI 0x07bd
+#define regMMEA3_PERFCOUNTER_HI_BASE_IDX 0
+#define regMMEA3_PERFCOUNTER0_CFG 0x07be
+#define regMMEA3_PERFCOUNTER0_CFG_BASE_IDX 0
+#define regMMEA3_PERFCOUNTER1_CFG 0x07bf
+#define regMMEA3_PERFCOUNTER1_CFG_BASE_IDX 0
+#define regMMEA3_PERFCOUNTER_RSLT_CNTL 0x07c0
+#define regMMEA3_PERFCOUNTER_RSLT_CNTL_BASE_IDX 0
+#define regMMEA3_DSM_CNTL 0x07c8
+#define regMMEA3_DSM_CNTL_BASE_IDX 0
+#define regMMEA3_DSM_CNTLA 0x07c9
+#define regMMEA3_DSM_CNTLA_BASE_IDX 0
+#define regMMEA3_DSM_CNTLB 0x07ca
+#define regMMEA3_DSM_CNTLB_BASE_IDX 0
+#define regMMEA3_DSM_CNTL2 0x07cb
+#define regMMEA3_DSM_CNTL2_BASE_IDX 0
+#define regMMEA3_DSM_CNTL2A 0x07cc
+#define regMMEA3_DSM_CNTL2A_BASE_IDX 0
+#define regMMEA3_DSM_CNTL2B 0x07cd
+#define regMMEA3_DSM_CNTL2B_BASE_IDX 0
+#define regMMEA3_CGTT_CLK_CTRL 0x07cf
+#define regMMEA3_CGTT_CLK_CTRL_BASE_IDX 0
+#define regMMEA3_EDC_MODE 0x07d0
+#define regMMEA3_EDC_MODE_BASE_IDX 0
+#define regMMEA3_ERR_STATUS 0x07d1
+#define regMMEA3_ERR_STATUS_BASE_IDX 0
+#define regMMEA3_MISC2 0x07d2
+#define regMMEA3_MISC2_BASE_IDX 0
+#define regMMEA3_MISC_AON 0x07d5
+#define regMMEA3_MISC_AON_BASE_IDX 0
+
+
+// addressBlock: aid_mmhub_ea_mmeadec4
+// base address: 0x62000
+#define regMMEA4_DRAM_RD_CLI2GRP_MAP0 0x0800
+#define regMMEA4_DRAM_RD_CLI2GRP_MAP0_BASE_IDX 0
+#define regMMEA4_DRAM_RD_CLI2GRP_MAP1 0x0801
+#define regMMEA4_DRAM_RD_CLI2GRP_MAP1_BASE_IDX 0
+#define regMMEA4_DRAM_WR_CLI2GRP_MAP0 0x0802
+#define regMMEA4_DRAM_WR_CLI2GRP_MAP0_BASE_IDX 0
+#define regMMEA4_DRAM_WR_CLI2GRP_MAP1 0x0803
+#define regMMEA4_DRAM_WR_CLI2GRP_MAP1_BASE_IDX 0
+#define regMMEA4_DRAM_RD_GRP2VC_MAP 0x0804
+#define regMMEA4_DRAM_RD_GRP2VC_MAP_BASE_IDX 0
+#define regMMEA4_DRAM_WR_GRP2VC_MAP 0x0805
+#define regMMEA4_DRAM_WR_GRP2VC_MAP_BASE_IDX 0
+#define regMMEA4_DRAM_RD_LAZY 0x0806
+#define regMMEA4_DRAM_RD_LAZY_BASE_IDX 0
+#define regMMEA4_DRAM_WR_LAZY 0x0807
+#define regMMEA4_DRAM_WR_LAZY_BASE_IDX 0
+#define regMMEA4_DRAM_RD_CAM_CNTL 0x0808
+#define regMMEA4_DRAM_RD_CAM_CNTL_BASE_IDX 0
+#define regMMEA4_DRAM_WR_CAM_CNTL 0x0809
+#define regMMEA4_DRAM_WR_CAM_CNTL_BASE_IDX 0
+#define regMMEA4_DRAM_PAGE_BURST 0x080a
+#define regMMEA4_DRAM_PAGE_BURST_BASE_IDX 0
+#define regMMEA4_DRAM_RD_PRI_AGE 0x080b
+#define regMMEA4_DRAM_RD_PRI_AGE_BASE_IDX 0
+#define regMMEA4_DRAM_WR_PRI_AGE 0x080c
+#define regMMEA4_DRAM_WR_PRI_AGE_BASE_IDX 0
+#define regMMEA4_DRAM_RD_PRI_QUEUING 0x080d
+#define regMMEA4_DRAM_RD_PRI_QUEUING_BASE_IDX 0
+#define regMMEA4_DRAM_WR_PRI_QUEUING 0x080e
+#define regMMEA4_DRAM_WR_PRI_QUEUING_BASE_IDX 0
+#define regMMEA4_DRAM_RD_PRI_FIXED 0x080f
+#define regMMEA4_DRAM_RD_PRI_FIXED_BASE_IDX 0
+#define regMMEA4_DRAM_WR_PRI_FIXED 0x0810
+#define regMMEA4_DRAM_WR_PRI_FIXED_BASE_IDX 0
+#define regMMEA4_DRAM_RD_PRI_URGENCY 0x0811
+#define regMMEA4_DRAM_RD_PRI_URGENCY_BASE_IDX 0
+#define regMMEA4_DRAM_WR_PRI_URGENCY 0x0812
+#define regMMEA4_DRAM_WR_PRI_URGENCY_BASE_IDX 0
+#define regMMEA4_DRAM_RD_PRI_QUANT_PRI1 0x0813
+#define regMMEA4_DRAM_RD_PRI_QUANT_PRI1_BASE_IDX 0
+#define regMMEA4_DRAM_RD_PRI_QUANT_PRI2 0x0814
+#define regMMEA4_DRAM_RD_PRI_QUANT_PRI2_BASE_IDX 0
+#define regMMEA4_DRAM_RD_PRI_QUANT_PRI3 0x0815
+#define regMMEA4_DRAM_RD_PRI_QUANT_PRI3_BASE_IDX 0
+#define regMMEA4_DRAM_WR_PRI_QUANT_PRI1 0x0816
+#define regMMEA4_DRAM_WR_PRI_QUANT_PRI1_BASE_IDX 0
+#define regMMEA4_DRAM_WR_PRI_QUANT_PRI2 0x0817
+#define regMMEA4_DRAM_WR_PRI_QUANT_PRI2_BASE_IDX 0
+#define regMMEA4_DRAM_WR_PRI_QUANT_PRI3 0x0818
+#define regMMEA4_DRAM_WR_PRI_QUANT_PRI3_BASE_IDX 0
+#define regMMEA4_GMI_RD_CLI2GRP_MAP0 0x0819
+#define regMMEA4_GMI_RD_CLI2GRP_MAP0_BASE_IDX 0
+#define regMMEA4_GMI_RD_CLI2GRP_MAP1 0x081a
+#define regMMEA4_GMI_RD_CLI2GRP_MAP1_BASE_IDX 0
+#define regMMEA4_GMI_WR_CLI2GRP_MAP0 0x081b
+#define regMMEA4_GMI_WR_CLI2GRP_MAP0_BASE_IDX 0
+#define regMMEA4_GMI_WR_CLI2GRP_MAP1 0x081c
+#define regMMEA4_GMI_WR_CLI2GRP_MAP1_BASE_IDX 0
+#define regMMEA4_GMI_RD_GRP2VC_MAP 0x081d
+#define regMMEA4_GMI_RD_GRP2VC_MAP_BASE_IDX 0
+#define regMMEA4_GMI_WR_GRP2VC_MAP 0x081e
+#define regMMEA4_GMI_WR_GRP2VC_MAP_BASE_IDX 0
+#define regMMEA4_GMI_RD_LAZY 0x081f
+#define regMMEA4_GMI_RD_LAZY_BASE_IDX 0
+#define regMMEA4_GMI_WR_LAZY 0x0820
+#define regMMEA4_GMI_WR_LAZY_BASE_IDX 0
+#define regMMEA4_GMI_RD_CAM_CNTL 0x0821
+#define regMMEA4_GMI_RD_CAM_CNTL_BASE_IDX 0
+#define regMMEA4_GMI_WR_CAM_CNTL 0x0822
+#define regMMEA4_GMI_WR_CAM_CNTL_BASE_IDX 0
+#define regMMEA4_GMI_PAGE_BURST 0x0823
+#define regMMEA4_GMI_PAGE_BURST_BASE_IDX 0
+#define regMMEA4_GMI_RD_PRI_AGE 0x0824
+#define regMMEA4_GMI_RD_PRI_AGE_BASE_IDX 0
+#define regMMEA4_GMI_WR_PRI_AGE 0x0825
+#define regMMEA4_GMI_WR_PRI_AGE_BASE_IDX 0
+#define regMMEA4_GMI_RD_PRI_QUEUING 0x0826
+#define regMMEA4_GMI_RD_PRI_QUEUING_BASE_IDX 0
+#define regMMEA4_GMI_WR_PRI_QUEUING 0x0827
+#define regMMEA4_GMI_WR_PRI_QUEUING_BASE_IDX 0
+#define regMMEA4_GMI_RD_PRI_FIXED 0x0828
+#define regMMEA4_GMI_RD_PRI_FIXED_BASE_IDX 0
+#define regMMEA4_GMI_WR_PRI_FIXED 0x0829
+#define regMMEA4_GMI_WR_PRI_FIXED_BASE_IDX 0
+#define regMMEA4_GMI_RD_PRI_URGENCY 0x082a
+#define regMMEA4_GMI_RD_PRI_URGENCY_BASE_IDX 0
+#define regMMEA4_GMI_WR_PRI_URGENCY 0x082b
+#define regMMEA4_GMI_WR_PRI_URGENCY_BASE_IDX 0
+#define regMMEA4_GMI_RD_PRI_URGENCY_MASKING 0x082c
+#define regMMEA4_GMI_RD_PRI_URGENCY_MASKING_BASE_IDX 0
+#define regMMEA4_GMI_WR_PRI_URGENCY_MASKING 0x082d
+#define regMMEA4_GMI_WR_PRI_URGENCY_MASKING_BASE_IDX 0
+#define regMMEA4_GMI_RD_PRI_QUANT_PRI1 0x082e
+#define regMMEA4_GMI_RD_PRI_QUANT_PRI1_BASE_IDX 0
+#define regMMEA4_GMI_RD_PRI_QUANT_PRI2 0x082f
+#define regMMEA4_GMI_RD_PRI_QUANT_PRI2_BASE_IDX 0
+#define regMMEA4_GMI_RD_PRI_QUANT_PRI3 0x0830
+#define regMMEA4_GMI_RD_PRI_QUANT_PRI3_BASE_IDX 0
+#define regMMEA4_GMI_WR_PRI_QUANT_PRI1 0x0831
+#define regMMEA4_GMI_WR_PRI_QUANT_PRI1_BASE_IDX 0
+#define regMMEA4_GMI_WR_PRI_QUANT_PRI2 0x0832
+#define regMMEA4_GMI_WR_PRI_QUANT_PRI2_BASE_IDX 0
+#define regMMEA4_GMI_WR_PRI_QUANT_PRI3 0x0833
+#define regMMEA4_GMI_WR_PRI_QUANT_PRI3_BASE_IDX 0
+#define regMMEA4_IO_RD_CLI2GRP_MAP0 0x08d5
+#define regMMEA4_IO_RD_CLI2GRP_MAP0_BASE_IDX 0
+#define regMMEA4_IO_RD_CLI2GRP_MAP1 0x08d6
+#define regMMEA4_IO_RD_CLI2GRP_MAP1_BASE_IDX 0
+#define regMMEA4_IO_WR_CLI2GRP_MAP0 0x08d7
+#define regMMEA4_IO_WR_CLI2GRP_MAP0_BASE_IDX 0
+#define regMMEA4_IO_WR_CLI2GRP_MAP1 0x08d8
+#define regMMEA4_IO_WR_CLI2GRP_MAP1_BASE_IDX 0
+#define regMMEA4_IO_RD_COMBINE_FLUSH 0x08d9
+#define regMMEA4_IO_RD_COMBINE_FLUSH_BASE_IDX 0
+#define regMMEA4_IO_WR_COMBINE_FLUSH 0x08da
+#define regMMEA4_IO_WR_COMBINE_FLUSH_BASE_IDX 0
+#define regMMEA4_IO_GROUP_BURST 0x08db
+#define regMMEA4_IO_GROUP_BURST_BASE_IDX 0
+#define regMMEA4_IO_RD_PRI_AGE 0x08dc
+#define regMMEA4_IO_RD_PRI_AGE_BASE_IDX 0
+#define regMMEA4_IO_WR_PRI_AGE 0x08dd
+#define regMMEA4_IO_WR_PRI_AGE_BASE_IDX 0
+#define regMMEA4_IO_RD_PRI_QUEUING 0x08de
+#define regMMEA4_IO_RD_PRI_QUEUING_BASE_IDX 0
+#define regMMEA4_IO_WR_PRI_QUEUING 0x08df
+#define regMMEA4_IO_WR_PRI_QUEUING_BASE_IDX 0
+#define regMMEA4_IO_RD_PRI_FIXED 0x08e0
+#define regMMEA4_IO_RD_PRI_FIXED_BASE_IDX 0
+#define regMMEA4_IO_WR_PRI_FIXED 0x08e1
+#define regMMEA4_IO_WR_PRI_FIXED_BASE_IDX 0
+#define regMMEA4_IO_RD_PRI_URGENCY 0x08e2
+#define regMMEA4_IO_RD_PRI_URGENCY_BASE_IDX 0
+#define regMMEA4_IO_WR_PRI_URGENCY 0x08e3
+#define regMMEA4_IO_WR_PRI_URGENCY_BASE_IDX 0
+#define regMMEA4_IO_RD_PRI_URGENCY_MASKING 0x08e4
+#define regMMEA4_IO_RD_PRI_URGENCY_MASKING_BASE_IDX 0
+#define regMMEA4_IO_WR_PRI_URGENCY_MASKING 0x08e5
+#define regMMEA4_IO_WR_PRI_URGENCY_MASKING_BASE_IDX 0
+#define regMMEA4_IO_RD_PRI_QUANT_PRI1 0x08e6
+#define regMMEA4_IO_RD_PRI_QUANT_PRI1_BASE_IDX 0
+#define regMMEA4_IO_RD_PRI_QUANT_PRI2 0x08e7
+#define regMMEA4_IO_RD_PRI_QUANT_PRI2_BASE_IDX 0
+#define regMMEA4_IO_RD_PRI_QUANT_PRI3 0x08e8
+#define regMMEA4_IO_RD_PRI_QUANT_PRI3_BASE_IDX 0
+#define regMMEA4_IO_WR_PRI_QUANT_PRI1 0x08e9
+#define regMMEA4_IO_WR_PRI_QUANT_PRI1_BASE_IDX 0
+#define regMMEA4_IO_WR_PRI_QUANT_PRI2 0x08ea
+#define regMMEA4_IO_WR_PRI_QUANT_PRI2_BASE_IDX 0
+#define regMMEA4_IO_WR_PRI_QUANT_PRI3 0x08eb
+#define regMMEA4_IO_WR_PRI_QUANT_PRI3_BASE_IDX 0
+#define regMMEA4_SDP_ARB_DRAM 0x08ec
+#define regMMEA4_SDP_ARB_DRAM_BASE_IDX 0
+#define regMMEA4_SDP_ARB_GMI 0x08ed
+#define regMMEA4_SDP_ARB_GMI_BASE_IDX 0
+#define regMMEA4_SDP_ARB_FINAL 0x08ee
+#define regMMEA4_SDP_ARB_FINAL_BASE_IDX 0
+#define regMMEA4_SDP_DRAM_PRIORITY 0x08ef
+#define regMMEA4_SDP_DRAM_PRIORITY_BASE_IDX 0
+#define regMMEA4_SDP_GMI_PRIORITY 0x08f0
+#define regMMEA4_SDP_GMI_PRIORITY_BASE_IDX 0
+#define regMMEA4_SDP_IO_PRIORITY 0x08f1
+#define regMMEA4_SDP_IO_PRIORITY_BASE_IDX 0
+#define regMMEA4_SDP_CREDITS 0x08f2
+#define regMMEA4_SDP_CREDITS_BASE_IDX 0
+#define regMMEA4_SDP_TAG_RESERVE0 0x08f3
+#define regMMEA4_SDP_TAG_RESERVE0_BASE_IDX 0
+#define regMMEA4_SDP_TAG_RESERVE1 0x08f4
+#define regMMEA4_SDP_TAG_RESERVE1_BASE_IDX 0
+#define regMMEA4_SDP_VCC_RESERVE0 0x08f5
+#define regMMEA4_SDP_VCC_RESERVE0_BASE_IDX 0
+#define regMMEA4_SDP_VCC_RESERVE1 0x08f6
+#define regMMEA4_SDP_VCC_RESERVE1_BASE_IDX 0
+#define regMMEA4_SDP_VCD_RESERVE0 0x08f7
+#define regMMEA4_SDP_VCD_RESERVE0_BASE_IDX 0
+#define regMMEA4_SDP_VCD_RESERVE1 0x08f8
+#define regMMEA4_SDP_VCD_RESERVE1_BASE_IDX 0
+#define regMMEA4_SDP_REQ_CNTL 0x08f9
+#define regMMEA4_SDP_REQ_CNTL_BASE_IDX 0
+#define regMMEA4_MISC 0x08fa
+#define regMMEA4_MISC_BASE_IDX 0
+#define regMMEA4_LATENCY_SAMPLING 0x08fb
+#define regMMEA4_LATENCY_SAMPLING_BASE_IDX 0
+#define regMMEA4_PERFCOUNTER_LO 0x08fc
+#define regMMEA4_PERFCOUNTER_LO_BASE_IDX 0
+#define regMMEA4_PERFCOUNTER_HI 0x08fd
+#define regMMEA4_PERFCOUNTER_HI_BASE_IDX 0
+#define regMMEA4_PERFCOUNTER0_CFG 0x08fe
+#define regMMEA4_PERFCOUNTER0_CFG_BASE_IDX 0
+#define regMMEA4_PERFCOUNTER1_CFG 0x08ff
+#define regMMEA4_PERFCOUNTER1_CFG_BASE_IDX 0
+#define regMMEA4_PERFCOUNTER_RSLT_CNTL 0x0900
+#define regMMEA4_PERFCOUNTER_RSLT_CNTL_BASE_IDX 0
+#define regMMEA4_DSM_CNTL 0x0908
+#define regMMEA4_DSM_CNTL_BASE_IDX 0
+#define regMMEA4_DSM_CNTLA 0x0909
+#define regMMEA4_DSM_CNTLA_BASE_IDX 0
+#define regMMEA4_DSM_CNTLB 0x090a
+#define regMMEA4_DSM_CNTLB_BASE_IDX 0
+#define regMMEA4_DSM_CNTL2 0x090b
+#define regMMEA4_DSM_CNTL2_BASE_IDX 0
+#define regMMEA4_DSM_CNTL2A 0x090c
+#define regMMEA4_DSM_CNTL2A_BASE_IDX 0
+#define regMMEA4_DSM_CNTL2B 0x090d
+#define regMMEA4_DSM_CNTL2B_BASE_IDX 0
+#define regMMEA4_CGTT_CLK_CTRL 0x090f
+#define regMMEA4_CGTT_CLK_CTRL_BASE_IDX 0
+#define regMMEA4_EDC_MODE 0x0910
+#define regMMEA4_EDC_MODE_BASE_IDX 0
+#define regMMEA4_ERR_STATUS 0x0911
+#define regMMEA4_ERR_STATUS_BASE_IDX 0
+#define regMMEA4_MISC2 0x0912
+#define regMMEA4_MISC2_BASE_IDX 0
+#define regMMEA4_MISC_AON 0x0915
+#define regMMEA4_MISC_AON_BASE_IDX 0
+
+
+// addressBlock: aid_mmhub_pctldec0
+// base address: 0x62a00
+#define regPCTL0_CTRL 0x0a80
+#define regPCTL0_CTRL_BASE_IDX 0
+#define regPCTL0_MMHUB_DEEPSLEEP_IB 0x0a81
+#define regPCTL0_MMHUB_DEEPSLEEP_IB_BASE_IDX 0
+#define regPCTL0_MMHUB_DEEPSLEEP_OVERRIDE 0x0a82
+#define regPCTL0_MMHUB_DEEPSLEEP_OVERRIDE_BASE_IDX 0
+#define regPCTL0_MMHUB_DEEPSLEEP_OVERRIDE_IB 0x0a83
+#define regPCTL0_MMHUB_DEEPSLEEP_OVERRIDE_IB_BASE_IDX 0
+#define regPCTL0_PG_IGNORE_DEEPSLEEP 0x0a84
+#define regPCTL0_PG_IGNORE_DEEPSLEEP_BASE_IDX 0
+#define regPCTL0_PG_IGNORE_DEEPSLEEP_IB 0x0a85
+#define regPCTL0_PG_IGNORE_DEEPSLEEP_IB_BASE_IDX 0
+#define regPCTL0_SLICE0_CFG_DAGB_BUSY 0x0a86
+#define regPCTL0_SLICE0_CFG_DAGB_BUSY_BASE_IDX 0
+#define regPCTL0_SLICE0_CFG_DS_ALLOW 0x0a87
+#define regPCTL0_SLICE0_CFG_DS_ALLOW_BASE_IDX 0
+#define regPCTL0_SLICE0_CFG_DS_ALLOW_IB 0x0a88
+#define regPCTL0_SLICE0_CFG_DS_ALLOW_IB_BASE_IDX 0
+#define regPCTL0_SLICE1_CFG_DAGB_BUSY 0x0a89
+#define regPCTL0_SLICE1_CFG_DAGB_BUSY_BASE_IDX 0
+#define regPCTL0_SLICE1_CFG_DS_ALLOW 0x0a8a
+#define regPCTL0_SLICE1_CFG_DS_ALLOW_BASE_IDX 0
+#define regPCTL0_SLICE1_CFG_DS_ALLOW_IB 0x0a8b
+#define regPCTL0_SLICE1_CFG_DS_ALLOW_IB_BASE_IDX 0
+#define regPCTL0_SLICE2_CFG_DAGB_BUSY 0x0a8c
+#define regPCTL0_SLICE2_CFG_DAGB_BUSY_BASE_IDX 0
+#define regPCTL0_SLICE2_CFG_DS_ALLOW 0x0a8d
+#define regPCTL0_SLICE2_CFG_DS_ALLOW_BASE_IDX 0
+#define regPCTL0_SLICE2_CFG_DS_ALLOW_IB 0x0a8e
+#define regPCTL0_SLICE2_CFG_DS_ALLOW_IB_BASE_IDX 0
+#define regPCTL0_SLICE3_CFG_DAGB_BUSY 0x0a8f
+#define regPCTL0_SLICE3_CFG_DAGB_BUSY_BASE_IDX 0
+#define regPCTL0_SLICE3_CFG_DS_ALLOW 0x0a90
+#define regPCTL0_SLICE3_CFG_DS_ALLOW_BASE_IDX 0
+#define regPCTL0_SLICE3_CFG_DS_ALLOW_IB 0x0a91
+#define regPCTL0_SLICE3_CFG_DS_ALLOW_IB_BASE_IDX 0
+#define regPCTL0_SLICE4_CFG_DAGB_BUSY 0x0a92
+#define regPCTL0_SLICE4_CFG_DAGB_BUSY_BASE_IDX 0
+#define regPCTL0_SLICE4_CFG_DS_ALLOW 0x0a93
+#define regPCTL0_SLICE4_CFG_DS_ALLOW_BASE_IDX 0
+#define regPCTL0_SLICE4_CFG_DS_ALLOW_IB 0x0a94
+#define regPCTL0_SLICE4_CFG_DS_ALLOW_IB_BASE_IDX 0
+#define regPCTL0_UTCL2_MISC 0x0a95
+#define regPCTL0_UTCL2_MISC_BASE_IDX 0
+#define regPCTL0_SLICE0_MISC 0x0a96
+#define regPCTL0_SLICE0_MISC_BASE_IDX 0
+#define regPCTL0_SLICE1_MISC 0x0a97
+#define regPCTL0_SLICE1_MISC_BASE_IDX 0
+#define regPCTL0_SLICE2_MISC 0x0a98
+#define regPCTL0_SLICE2_MISC_BASE_IDX 0
+#define regPCTL0_SLICE3_MISC 0x0a99
+#define regPCTL0_SLICE3_MISC_BASE_IDX 0
+#define regPCTL0_SLICE4_MISC 0x0a9a
+#define regPCTL0_SLICE4_MISC_BASE_IDX 0
+
+
+// addressBlock: aid_mmhub_l1tlb_vml1dec
+// base address: 0x62c00
+#define regMC_VM_MX_L1_TLB0_STATUS 0x0b08
+#define regMC_VM_MX_L1_TLB0_STATUS_BASE_IDX 0
+#define regMC_VM_MX_L1_TLB1_STATUS 0x0b09
+#define regMC_VM_MX_L1_TLB1_STATUS_BASE_IDX 0
+#define regMC_VM_MX_L1_TLB2_STATUS 0x0b0a
+#define regMC_VM_MX_L1_TLB2_STATUS_BASE_IDX 0
+#define regMC_VM_MX_L1_TLB3_STATUS 0x0b0b
+#define regMC_VM_MX_L1_TLB3_STATUS_BASE_IDX 0
+#define regMC_VM_MX_L1_TLB4_STATUS 0x0b0c
+#define regMC_VM_MX_L1_TLB4_STATUS_BASE_IDX 0
+#define regMC_VM_MX_L1_TLB5_STATUS 0x0b0d
+#define regMC_VM_MX_L1_TLB5_STATUS_BASE_IDX 0
+#define regMC_VM_MX_L1_TLB6_STATUS 0x0b0e
+#define regMC_VM_MX_L1_TLB6_STATUS_BASE_IDX 0
+#define regMC_VM_MX_L1_TLB7_STATUS 0x0b0f
+#define regMC_VM_MX_L1_TLB7_STATUS_BASE_IDX 0
+
+
+// addressBlock: aid_mmhub_l1tlb_vml1pldec
+// base address: 0x62c80
+#define regMC_VM_MX_L1_PERFCOUNTER0_CFG 0x0b20
+#define regMC_VM_MX_L1_PERFCOUNTER0_CFG_BASE_IDX 0
+#define regMC_VM_MX_L1_PERFCOUNTER1_CFG 0x0b21
+#define regMC_VM_MX_L1_PERFCOUNTER1_CFG_BASE_IDX 0
+#define regMC_VM_MX_L1_PERFCOUNTER2_CFG 0x0b22
+#define regMC_VM_MX_L1_PERFCOUNTER2_CFG_BASE_IDX 0
+#define regMC_VM_MX_L1_PERFCOUNTER3_CFG 0x0b23
+#define regMC_VM_MX_L1_PERFCOUNTER3_CFG_BASE_IDX 0
+#define regMC_VM_MX_L1_PERFCOUNTER_RSLT_CNTL 0x0b24
+#define regMC_VM_MX_L1_PERFCOUNTER_RSLT_CNTL_BASE_IDX 0
+
+
+// addressBlock: aid_mmhub_l1tlb_vml1prdec
+// base address: 0x62cc0
+#define regMC_VM_MX_L1_PERFCOUNTER_LO 0x0b30
+#define regMC_VM_MX_L1_PERFCOUNTER_LO_BASE_IDX 0
+#define regMC_VM_MX_L1_PERFCOUNTER_HI 0x0b31
+#define regMC_VM_MX_L1_PERFCOUNTER_HI_BASE_IDX 0
+
+
+// addressBlock: aid_mmhub_utcl2_atcl2dec
+// base address: 0x62d00
+#define regATC_L2_CNTL 0x0b40
+#define regATC_L2_CNTL_BASE_IDX 0
+#define regATC_L2_CNTL2 0x0b41
+#define regATC_L2_CNTL2_BASE_IDX 0
+#define regATC_L2_CACHE_DATA0 0x0b44
+#define regATC_L2_CACHE_DATA0_BASE_IDX 0
+#define regATC_L2_CACHE_DATA1 0x0b45
+#define regATC_L2_CACHE_DATA1_BASE_IDX 0
+#define regATC_L2_CACHE_DATA2 0x0b46
+#define regATC_L2_CACHE_DATA2_BASE_IDX 0
+#define regATC_L2_CACHE_DATA3 0x0b47
+#define regATC_L2_CACHE_DATA3_BASE_IDX 0
+#define regATC_L2_CNTL3 0x0b48
+#define regATC_L2_CNTL3_BASE_IDX 0
+#define regATC_L2_STATUS 0x0b49
+#define regATC_L2_STATUS_BASE_IDX 0
+#define regATC_L2_STATUS2 0x0b4a
+#define regATC_L2_STATUS2_BASE_IDX 0
+#define regATC_L2_MISC_CG 0x0b4b
+#define regATC_L2_MISC_CG_BASE_IDX 0
+#define regATC_L2_MEM_POWER_LS 0x0b4c
+#define regATC_L2_MEM_POWER_LS_BASE_IDX 0
+#define regATC_L2_CGTT_CLK_CTRL 0x0b4d
+#define regATC_L2_CGTT_CLK_CTRL_BASE_IDX 0
+#define regATC_L2_CACHE_4K_DSM_INDEX 0x0b4f
+#define regATC_L2_CACHE_4K_DSM_INDEX_BASE_IDX 0
+#define regATC_L2_CACHE_32K_DSM_INDEX 0x0b50
+#define regATC_L2_CACHE_32K_DSM_INDEX_BASE_IDX 0
+#define regATC_L2_CACHE_2M_DSM_INDEX 0x0b51
+#define regATC_L2_CACHE_2M_DSM_INDEX_BASE_IDX 0
+#define regATC_L2_CACHE_4K_DSM_CNTL 0x0b52
+#define regATC_L2_CACHE_4K_DSM_CNTL_BASE_IDX 0
+#define regATC_L2_CACHE_32K_DSM_CNTL 0x0b53
+#define regATC_L2_CACHE_32K_DSM_CNTL_BASE_IDX 0
+#define regATC_L2_CACHE_2M_DSM_CNTL 0x0b54
+#define regATC_L2_CACHE_2M_DSM_CNTL_BASE_IDX 0
+#define regATC_L2_CNTL4 0x0b55
+#define regATC_L2_CNTL4_BASE_IDX 0
+#define regATC_L2_MM_GROUP_RT_CLASSES 0x0b56
+#define regATC_L2_MM_GROUP_RT_CLASSES_BASE_IDX 0
+
+
+// addressBlock: aid_mmhub_utcl2_vml2pfdec
+// base address: 0x62d80
+#define regVM_L2_CNTL 0x0b60
+#define regVM_L2_CNTL_BASE_IDX 0
+#define regVM_L2_CNTL2 0x0b61
+#define regVM_L2_CNTL2_BASE_IDX 0
+#define regVM_L2_CNTL3 0x0b62
+#define regVM_L2_CNTL3_BASE_IDX 0
+#define regVM_L2_STATUS 0x0b63
+#define regVM_L2_STATUS_BASE_IDX 0
+#define regVM_DUMMY_PAGE_FAULT_CNTL 0x0b64
+#define regVM_DUMMY_PAGE_FAULT_CNTL_BASE_IDX 0
+#define regVM_DUMMY_PAGE_FAULT_ADDR_LO32 0x0b65
+#define regVM_DUMMY_PAGE_FAULT_ADDR_LO32_BASE_IDX 0
+#define regVM_DUMMY_PAGE_FAULT_ADDR_HI32 0x0b66
+#define regVM_DUMMY_PAGE_FAULT_ADDR_HI32_BASE_IDX 0
+#define regVM_L2_PROTECTION_FAULT_CNTL 0x0b67
+#define regVM_L2_PROTECTION_FAULT_CNTL_BASE_IDX 0
+#define regVM_L2_PROTECTION_FAULT_CNTL2 0x0b68
+#define regVM_L2_PROTECTION_FAULT_CNTL2_BASE_IDX 0
+#define regVM_L2_PROTECTION_FAULT_MM_CNTL3 0x0b69
+#define regVM_L2_PROTECTION_FAULT_MM_CNTL3_BASE_IDX 0
+#define regVM_L2_PROTECTION_FAULT_MM_CNTL4 0x0b6a
+#define regVM_L2_PROTECTION_FAULT_MM_CNTL4_BASE_IDX 0
+#define regVM_L2_PROTECTION_FAULT_STATUS 0x0b6b
+#define regVM_L2_PROTECTION_FAULT_STATUS_BASE_IDX 0
+#define regVM_L2_PROTECTION_FAULT_ADDR_LO32 0x0b6c
+#define regVM_L2_PROTECTION_FAULT_ADDR_LO32_BASE_IDX 0
+#define regVM_L2_PROTECTION_FAULT_ADDR_HI32 0x0b6d
+#define regVM_L2_PROTECTION_FAULT_ADDR_HI32_BASE_IDX 0
+#define regVM_L2_PROTECTION_FAULT_DEFAULT_ADDR_LO32 0x0b6e
+#define regVM_L2_PROTECTION_FAULT_DEFAULT_ADDR_LO32_BASE_IDX 0
+#define regVM_L2_PROTECTION_FAULT_DEFAULT_ADDR_HI32 0x0b6f
+#define regVM_L2_PROTECTION_FAULT_DEFAULT_ADDR_HI32_BASE_IDX 0
+#define regVM_L2_CONTEXT1_IDENTITY_APERTURE_LOW_ADDR_LO32 0x0b71
+#define regVM_L2_CONTEXT1_IDENTITY_APERTURE_LOW_ADDR_LO32_BASE_IDX 0
+#define regVM_L2_CONTEXT1_IDENTITY_APERTURE_LOW_ADDR_HI32 0x0b72
+#define regVM_L2_CONTEXT1_IDENTITY_APERTURE_LOW_ADDR_HI32_BASE_IDX 0
+#define regVM_L2_CONTEXT1_IDENTITY_APERTURE_HIGH_ADDR_LO32 0x0b73
+#define regVM_L2_CONTEXT1_IDENTITY_APERTURE_HIGH_ADDR_LO32_BASE_IDX 0
+#define regVM_L2_CONTEXT1_IDENTITY_APERTURE_HIGH_ADDR_HI32 0x0b74
+#define regVM_L2_CONTEXT1_IDENTITY_APERTURE_HIGH_ADDR_HI32_BASE_IDX 0
+#define regVM_L2_CONTEXT_IDENTITY_PHYSICAL_OFFSET_LO32 0x0b75
+#define regVM_L2_CONTEXT_IDENTITY_PHYSICAL_OFFSET_LO32_BASE_IDX 0
+#define regVM_L2_CONTEXT_IDENTITY_PHYSICAL_OFFSET_HI32 0x0b76
+#define regVM_L2_CONTEXT_IDENTITY_PHYSICAL_OFFSET_HI32_BASE_IDX 0
+#define regVM_L2_CNTL4 0x0b77
+#define regVM_L2_CNTL4_BASE_IDX 0
+#define regVM_L2_CNTL5 0x0b78
+#define regVM_L2_CNTL5_BASE_IDX 0
+#define regVM_L2_MM_GROUP_RT_CLASSES 0x0b79
+#define regVM_L2_MM_GROUP_RT_CLASSES_BASE_IDX 0
+#define regVM_L2_BANK_SELECT_RESERVED_CID 0x0b7a
+#define regVM_L2_BANK_SELECT_RESERVED_CID_BASE_IDX 0
+#define regVM_L2_BANK_SELECT_RESERVED_CID2 0x0b7b
+#define regVM_L2_BANK_SELECT_RESERVED_CID2_BASE_IDX 0
+#define regVM_L2_CACHE_PARITY_CNTL 0x0b7c
+#define regVM_L2_CACHE_PARITY_CNTL_BASE_IDX 0
+#define regVM_L2_CGTT_CLK_CTRL 0x0b7d
+#define regVM_L2_CGTT_CLK_CTRL_BASE_IDX 0
+#define regVM_L2_CGTT_BUSY_CTRL 0x0b7e
+#define regVM_L2_CGTT_BUSY_CTRL_BASE_IDX 0
+#define regVML2_MEM_ECC_INDEX 0x0b82
+#define regVML2_MEM_ECC_INDEX_BASE_IDX 0
+#define regVML2_WALKER_MEM_ECC_INDEX 0x0b83
+#define regVML2_WALKER_MEM_ECC_INDEX_BASE_IDX 0
+#define regUTCL2_MEM_ECC_INDEX 0x0b84
+#define regUTCL2_MEM_ECC_INDEX_BASE_IDX 0
+#define regVML2_MEM_ECC_CNTL 0x0b85
+#define regVML2_MEM_ECC_CNTL_BASE_IDX 0
+#define regVML2_WALKER_MEM_ECC_CNTL 0x0b86
+#define regVML2_WALKER_MEM_ECC_CNTL_BASE_IDX 0
+#define regUTCL2_MEM_ECC_CNTL 0x0b87
+#define regUTCL2_MEM_ECC_CNTL_BASE_IDX 0
+#define regVML2_MEM_ECC_STATUS 0x0b88
+#define regVML2_MEM_ECC_STATUS_BASE_IDX 0
+#define regVML2_WALKER_MEM_ECC_STATUS 0x0b89
+#define regVML2_WALKER_MEM_ECC_STATUS_BASE_IDX 0
+#define regUTCL2_MEM_ECC_STATUS 0x0b8a
+#define regUTCL2_MEM_ECC_STATUS_BASE_IDX 0
+#define regUTCL2_EDC_MODE 0x0b8b
+#define regUTCL2_EDC_MODE_BASE_IDX 0
+#define regUTCL2_EDC_CONFIG 0x0b8c
+#define regUTCL2_EDC_CONFIG_BASE_IDX 0
+
+
+// addressBlock: aid_mmhub_utcl2_vml2vcdec
+// base address: 0x62e80
+#define regVM_CONTEXT0_CNTL 0x0ba0
+#define regVM_CONTEXT0_CNTL_BASE_IDX 0
+#define regVM_CONTEXT1_CNTL 0x0ba1
+#define regVM_CONTEXT1_CNTL_BASE_IDX 0
+#define regVM_CONTEXT2_CNTL 0x0ba2
+#define regVM_CONTEXT2_CNTL_BASE_IDX 0
+#define regVM_CONTEXT3_CNTL 0x0ba3
+#define regVM_CONTEXT3_CNTL_BASE_IDX 0
+#define regVM_CONTEXT4_CNTL 0x0ba4
+#define regVM_CONTEXT4_CNTL_BASE_IDX 0
+#define regVM_CONTEXT5_CNTL 0x0ba5
+#define regVM_CONTEXT5_CNTL_BASE_IDX 0
+#define regVM_CONTEXT6_CNTL 0x0ba6
+#define regVM_CONTEXT6_CNTL_BASE_IDX 0
+#define regVM_CONTEXT7_CNTL 0x0ba7
+#define regVM_CONTEXT7_CNTL_BASE_IDX 0
+#define regVM_CONTEXT8_CNTL 0x0ba8
+#define regVM_CONTEXT8_CNTL_BASE_IDX 0
+#define regVM_CONTEXT9_CNTL 0x0ba9
+#define regVM_CONTEXT9_CNTL_BASE_IDX 0
+#define regVM_CONTEXT10_CNTL 0x0baa
+#define regVM_CONTEXT10_CNTL_BASE_IDX 0
+#define regVM_CONTEXT11_CNTL 0x0bab
+#define regVM_CONTEXT11_CNTL_BASE_IDX 0
+#define regVM_CONTEXT12_CNTL 0x0bac
+#define regVM_CONTEXT12_CNTL_BASE_IDX 0
+#define regVM_CONTEXT13_CNTL 0x0bad
+#define regVM_CONTEXT13_CNTL_BASE_IDX 0
+#define regVM_CONTEXT14_CNTL 0x0bae
+#define regVM_CONTEXT14_CNTL_BASE_IDX 0
+#define regVM_CONTEXT15_CNTL 0x0baf
+#define regVM_CONTEXT15_CNTL_BASE_IDX 0
+#define regVM_CONTEXTS_DISABLE 0x0bb0
+#define regVM_CONTEXTS_DISABLE_BASE_IDX 0
+#define regVM_INVALIDATE_ENG0_SEM 0x0bb1
+#define regVM_INVALIDATE_ENG0_SEM_BASE_IDX 0
+#define regVM_INVALIDATE_ENG1_SEM 0x0bb2
+#define regVM_INVALIDATE_ENG1_SEM_BASE_IDX 0
+#define regVM_INVALIDATE_ENG2_SEM 0x0bb3
+#define regVM_INVALIDATE_ENG2_SEM_BASE_IDX 0
+#define regVM_INVALIDATE_ENG3_SEM 0x0bb4
+#define regVM_INVALIDATE_ENG3_SEM_BASE_IDX 0
+#define regVM_INVALIDATE_ENG4_SEM 0x0bb5
+#define regVM_INVALIDATE_ENG4_SEM_BASE_IDX 0
+#define regVM_INVALIDATE_ENG5_SEM 0x0bb6
+#define regVM_INVALIDATE_ENG5_SEM_BASE_IDX 0
+#define regVM_INVALIDATE_ENG6_SEM 0x0bb7
+#define regVM_INVALIDATE_ENG6_SEM_BASE_IDX 0
+#define regVM_INVALIDATE_ENG7_SEM 0x0bb8
+#define regVM_INVALIDATE_ENG7_SEM_BASE_IDX 0
+#define regVM_INVALIDATE_ENG8_SEM 0x0bb9
+#define regVM_INVALIDATE_ENG8_SEM_BASE_IDX 0
+#define regVM_INVALIDATE_ENG9_SEM 0x0bba
+#define regVM_INVALIDATE_ENG9_SEM_BASE_IDX 0
+#define regVM_INVALIDATE_ENG10_SEM 0x0bbb
+#define regVM_INVALIDATE_ENG10_SEM_BASE_IDX 0
+#define regVM_INVALIDATE_ENG11_SEM 0x0bbc
+#define regVM_INVALIDATE_ENG11_SEM_BASE_IDX 0
+#define regVM_INVALIDATE_ENG12_SEM 0x0bbd
+#define regVM_INVALIDATE_ENG12_SEM_BASE_IDX 0
+#define regVM_INVALIDATE_ENG13_SEM 0x0bbe
+#define regVM_INVALIDATE_ENG13_SEM_BASE_IDX 0
+#define regVM_INVALIDATE_ENG14_SEM 0x0bbf
+#define regVM_INVALIDATE_ENG14_SEM_BASE_IDX 0
+#define regVM_INVALIDATE_ENG15_SEM 0x0bc0
+#define regVM_INVALIDATE_ENG15_SEM_BASE_IDX 0
+#define regVM_INVALIDATE_ENG16_SEM 0x0bc1
+#define regVM_INVALIDATE_ENG16_SEM_BASE_IDX 0
+#define regVM_INVALIDATE_ENG17_SEM 0x0bc2
+#define regVM_INVALIDATE_ENG17_SEM_BASE_IDX 0
+#define regVM_INVALIDATE_ENG0_REQ 0x0bc3
+#define regVM_INVALIDATE_ENG0_REQ_BASE_IDX 0
+#define regVM_INVALIDATE_ENG1_REQ 0x0bc4
+#define regVM_INVALIDATE_ENG1_REQ_BASE_IDX 0
+#define regVM_INVALIDATE_ENG2_REQ 0x0bc5
+#define regVM_INVALIDATE_ENG2_REQ_BASE_IDX 0
+#define regVM_INVALIDATE_ENG3_REQ 0x0bc6
+#define regVM_INVALIDATE_ENG3_REQ_BASE_IDX 0
+#define regVM_INVALIDATE_ENG4_REQ 0x0bc7
+#define regVM_INVALIDATE_ENG4_REQ_BASE_IDX 0
+#define regVM_INVALIDATE_ENG5_REQ 0x0bc8
+#define regVM_INVALIDATE_ENG5_REQ_BASE_IDX 0
+#define regVM_INVALIDATE_ENG6_REQ 0x0bc9
+#define regVM_INVALIDATE_ENG6_REQ_BASE_IDX 0
+#define regVM_INVALIDATE_ENG7_REQ 0x0bca
+#define regVM_INVALIDATE_ENG7_REQ_BASE_IDX 0
+#define regVM_INVALIDATE_ENG8_REQ 0x0bcb
+#define regVM_INVALIDATE_ENG8_REQ_BASE_IDX 0
+#define regVM_INVALIDATE_ENG9_REQ 0x0bcc
+#define regVM_INVALIDATE_ENG9_REQ_BASE_IDX 0
+#define regVM_INVALIDATE_ENG10_REQ 0x0bcd
+#define regVM_INVALIDATE_ENG10_REQ_BASE_IDX 0
+#define regVM_INVALIDATE_ENG11_REQ 0x0bce
+#define regVM_INVALIDATE_ENG11_REQ_BASE_IDX 0
+#define regVM_INVALIDATE_ENG12_REQ 0x0bcf
+#define regVM_INVALIDATE_ENG12_REQ_BASE_IDX 0
+#define regVM_INVALIDATE_ENG13_REQ 0x0bd0
+#define regVM_INVALIDATE_ENG13_REQ_BASE_IDX 0
+#define regVM_INVALIDATE_ENG14_REQ 0x0bd1
+#define regVM_INVALIDATE_ENG14_REQ_BASE_IDX 0
+#define regVM_INVALIDATE_ENG15_REQ 0x0bd2
+#define regVM_INVALIDATE_ENG15_REQ_BASE_IDX 0
+#define regVM_INVALIDATE_ENG16_REQ 0x0bd3
+#define regVM_INVALIDATE_ENG16_REQ_BASE_IDX 0
+#define regVM_INVALIDATE_ENG17_REQ 0x0bd4
+#define regVM_INVALIDATE_ENG17_REQ_BASE_IDX 0
+#define regVM_INVALIDATE_ENG0_ACK 0x0bd5
+#define regVM_INVALIDATE_ENG0_ACK_BASE_IDX 0
+#define regVM_INVALIDATE_ENG1_ACK 0x0bd6
+#define regVM_INVALIDATE_ENG1_ACK_BASE_IDX 0
+#define regVM_INVALIDATE_ENG2_ACK 0x0bd7
+#define regVM_INVALIDATE_ENG2_ACK_BASE_IDX 0
+#define regVM_INVALIDATE_ENG3_ACK 0x0bd8
+#define regVM_INVALIDATE_ENG3_ACK_BASE_IDX 0
+#define regVM_INVALIDATE_ENG4_ACK 0x0bd9
+#define regVM_INVALIDATE_ENG4_ACK_BASE_IDX 0
+#define regVM_INVALIDATE_ENG5_ACK 0x0bda
+#define regVM_INVALIDATE_ENG5_ACK_BASE_IDX 0
+#define regVM_INVALIDATE_ENG6_ACK 0x0bdb
+#define regVM_INVALIDATE_ENG6_ACK_BASE_IDX 0
+#define regVM_INVALIDATE_ENG7_ACK 0x0bdc
+#define regVM_INVALIDATE_ENG7_ACK_BASE_IDX 0
+#define regVM_INVALIDATE_ENG8_ACK 0x0bdd
+#define regVM_INVALIDATE_ENG8_ACK_BASE_IDX 0
+#define regVM_INVALIDATE_ENG9_ACK 0x0bde
+#define regVM_INVALIDATE_ENG9_ACK_BASE_IDX 0
+#define regVM_INVALIDATE_ENG10_ACK 0x0bdf
+#define regVM_INVALIDATE_ENG10_ACK_BASE_IDX 0
+#define regVM_INVALIDATE_ENG11_ACK 0x0be0
+#define regVM_INVALIDATE_ENG11_ACK_BASE_IDX 0
+#define regVM_INVALIDATE_ENG12_ACK 0x0be1
+#define regVM_INVALIDATE_ENG12_ACK_BASE_IDX 0
+#define regVM_INVALIDATE_ENG13_ACK 0x0be2
+#define regVM_INVALIDATE_ENG13_ACK_BASE_IDX 0
+#define regVM_INVALIDATE_ENG14_ACK 0x0be3
+#define regVM_INVALIDATE_ENG14_ACK_BASE_IDX 0
+#define regVM_INVALIDATE_ENG15_ACK 0x0be4
+#define regVM_INVALIDATE_ENG15_ACK_BASE_IDX 0
+#define regVM_INVALIDATE_ENG16_ACK 0x0be5
+#define regVM_INVALIDATE_ENG16_ACK_BASE_IDX 0
+#define regVM_INVALIDATE_ENG17_ACK 0x0be6
+#define regVM_INVALIDATE_ENG17_ACK_BASE_IDX 0
+#define regVM_INVALIDATE_ENG0_ADDR_RANGE_LO32 0x0be7
+#define regVM_INVALIDATE_ENG0_ADDR_RANGE_LO32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG0_ADDR_RANGE_HI32 0x0be8
+#define regVM_INVALIDATE_ENG0_ADDR_RANGE_HI32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG1_ADDR_RANGE_LO32 0x0be9
+#define regVM_INVALIDATE_ENG1_ADDR_RANGE_LO32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG1_ADDR_RANGE_HI32 0x0bea
+#define regVM_INVALIDATE_ENG1_ADDR_RANGE_HI32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG2_ADDR_RANGE_LO32 0x0beb
+#define regVM_INVALIDATE_ENG2_ADDR_RANGE_LO32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG2_ADDR_RANGE_HI32 0x0bec
+#define regVM_INVALIDATE_ENG2_ADDR_RANGE_HI32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG3_ADDR_RANGE_LO32 0x0bed
+#define regVM_INVALIDATE_ENG3_ADDR_RANGE_LO32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG3_ADDR_RANGE_HI32 0x0bee
+#define regVM_INVALIDATE_ENG3_ADDR_RANGE_HI32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG4_ADDR_RANGE_LO32 0x0bef
+#define regVM_INVALIDATE_ENG4_ADDR_RANGE_LO32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG4_ADDR_RANGE_HI32 0x0bf0
+#define regVM_INVALIDATE_ENG4_ADDR_RANGE_HI32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG5_ADDR_RANGE_LO32 0x0bf1
+#define regVM_INVALIDATE_ENG5_ADDR_RANGE_LO32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG5_ADDR_RANGE_HI32 0x0bf2
+#define regVM_INVALIDATE_ENG5_ADDR_RANGE_HI32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG6_ADDR_RANGE_LO32 0x0bf3
+#define regVM_INVALIDATE_ENG6_ADDR_RANGE_LO32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG6_ADDR_RANGE_HI32 0x0bf4
+#define regVM_INVALIDATE_ENG6_ADDR_RANGE_HI32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG7_ADDR_RANGE_LO32 0x0bf5
+#define regVM_INVALIDATE_ENG7_ADDR_RANGE_LO32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG7_ADDR_RANGE_HI32 0x0bf6
+#define regVM_INVALIDATE_ENG7_ADDR_RANGE_HI32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG8_ADDR_RANGE_LO32 0x0bf7
+#define regVM_INVALIDATE_ENG8_ADDR_RANGE_LO32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG8_ADDR_RANGE_HI32 0x0bf8
+#define regVM_INVALIDATE_ENG8_ADDR_RANGE_HI32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG9_ADDR_RANGE_LO32 0x0bf9
+#define regVM_INVALIDATE_ENG9_ADDR_RANGE_LO32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG9_ADDR_RANGE_HI32 0x0bfa
+#define regVM_INVALIDATE_ENG9_ADDR_RANGE_HI32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG10_ADDR_RANGE_LO32 0x0bfb
+#define regVM_INVALIDATE_ENG10_ADDR_RANGE_LO32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG10_ADDR_RANGE_HI32 0x0bfc
+#define regVM_INVALIDATE_ENG10_ADDR_RANGE_HI32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG11_ADDR_RANGE_LO32 0x0bfd
+#define regVM_INVALIDATE_ENG11_ADDR_RANGE_LO32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG11_ADDR_RANGE_HI32 0x0bfe
+#define regVM_INVALIDATE_ENG11_ADDR_RANGE_HI32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG12_ADDR_RANGE_LO32 0x0bff
+#define regVM_INVALIDATE_ENG12_ADDR_RANGE_LO32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG12_ADDR_RANGE_HI32 0x0c00
+#define regVM_INVALIDATE_ENG12_ADDR_RANGE_HI32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG13_ADDR_RANGE_LO32 0x0c01
+#define regVM_INVALIDATE_ENG13_ADDR_RANGE_LO32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG13_ADDR_RANGE_HI32 0x0c02
+#define regVM_INVALIDATE_ENG13_ADDR_RANGE_HI32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG14_ADDR_RANGE_LO32 0x0c03
+#define regVM_INVALIDATE_ENG14_ADDR_RANGE_LO32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG14_ADDR_RANGE_HI32 0x0c04
+#define regVM_INVALIDATE_ENG14_ADDR_RANGE_HI32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG15_ADDR_RANGE_LO32 0x0c05
+#define regVM_INVALIDATE_ENG15_ADDR_RANGE_LO32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG15_ADDR_RANGE_HI32 0x0c06
+#define regVM_INVALIDATE_ENG15_ADDR_RANGE_HI32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG16_ADDR_RANGE_LO32 0x0c07
+#define regVM_INVALIDATE_ENG16_ADDR_RANGE_LO32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG16_ADDR_RANGE_HI32 0x0c08
+#define regVM_INVALIDATE_ENG16_ADDR_RANGE_HI32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG17_ADDR_RANGE_LO32 0x0c09
+#define regVM_INVALIDATE_ENG17_ADDR_RANGE_LO32_BASE_IDX 0
+#define regVM_INVALIDATE_ENG17_ADDR_RANGE_HI32 0x0c0a
+#define regVM_INVALIDATE_ENG17_ADDR_RANGE_HI32_BASE_IDX 0
+#define regVM_CONTEXT0_PAGE_TABLE_BASE_ADDR_LO32 0x0c0b
+#define regVM_CONTEXT0_PAGE_TABLE_BASE_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT0_PAGE_TABLE_BASE_ADDR_HI32 0x0c0c
+#define regVM_CONTEXT0_PAGE_TABLE_BASE_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT1_PAGE_TABLE_BASE_ADDR_LO32 0x0c0d
+#define regVM_CONTEXT1_PAGE_TABLE_BASE_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT1_PAGE_TABLE_BASE_ADDR_HI32 0x0c0e
+#define regVM_CONTEXT1_PAGE_TABLE_BASE_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT2_PAGE_TABLE_BASE_ADDR_LO32 0x0c0f
+#define regVM_CONTEXT2_PAGE_TABLE_BASE_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT2_PAGE_TABLE_BASE_ADDR_HI32 0x0c10
+#define regVM_CONTEXT2_PAGE_TABLE_BASE_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT3_PAGE_TABLE_BASE_ADDR_LO32 0x0c11
+#define regVM_CONTEXT3_PAGE_TABLE_BASE_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT3_PAGE_TABLE_BASE_ADDR_HI32 0x0c12
+#define regVM_CONTEXT3_PAGE_TABLE_BASE_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT4_PAGE_TABLE_BASE_ADDR_LO32 0x0c13
+#define regVM_CONTEXT4_PAGE_TABLE_BASE_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT4_PAGE_TABLE_BASE_ADDR_HI32 0x0c14
+#define regVM_CONTEXT4_PAGE_TABLE_BASE_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT5_PAGE_TABLE_BASE_ADDR_LO32 0x0c15
+#define regVM_CONTEXT5_PAGE_TABLE_BASE_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT5_PAGE_TABLE_BASE_ADDR_HI32 0x0c16
+#define regVM_CONTEXT5_PAGE_TABLE_BASE_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT6_PAGE_TABLE_BASE_ADDR_LO32 0x0c17
+#define regVM_CONTEXT6_PAGE_TABLE_BASE_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT6_PAGE_TABLE_BASE_ADDR_HI32 0x0c18
+#define regVM_CONTEXT6_PAGE_TABLE_BASE_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT7_PAGE_TABLE_BASE_ADDR_LO32 0x0c19
+#define regVM_CONTEXT7_PAGE_TABLE_BASE_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT7_PAGE_TABLE_BASE_ADDR_HI32 0x0c1a
+#define regVM_CONTEXT7_PAGE_TABLE_BASE_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT8_PAGE_TABLE_BASE_ADDR_LO32 0x0c1b
+#define regVM_CONTEXT8_PAGE_TABLE_BASE_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT8_PAGE_TABLE_BASE_ADDR_HI32 0x0c1c
+#define regVM_CONTEXT8_PAGE_TABLE_BASE_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT9_PAGE_TABLE_BASE_ADDR_LO32 0x0c1d
+#define regVM_CONTEXT9_PAGE_TABLE_BASE_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT9_PAGE_TABLE_BASE_ADDR_HI32 0x0c1e
+#define regVM_CONTEXT9_PAGE_TABLE_BASE_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT10_PAGE_TABLE_BASE_ADDR_LO32 0x0c1f
+#define regVM_CONTEXT10_PAGE_TABLE_BASE_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT10_PAGE_TABLE_BASE_ADDR_HI32 0x0c20
+#define regVM_CONTEXT10_PAGE_TABLE_BASE_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT11_PAGE_TABLE_BASE_ADDR_LO32 0x0c21
+#define regVM_CONTEXT11_PAGE_TABLE_BASE_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT11_PAGE_TABLE_BASE_ADDR_HI32 0x0c22
+#define regVM_CONTEXT11_PAGE_TABLE_BASE_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT12_PAGE_TABLE_BASE_ADDR_LO32 0x0c23
+#define regVM_CONTEXT12_PAGE_TABLE_BASE_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT12_PAGE_TABLE_BASE_ADDR_HI32 0x0c24
+#define regVM_CONTEXT12_PAGE_TABLE_BASE_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT13_PAGE_TABLE_BASE_ADDR_LO32 0x0c25
+#define regVM_CONTEXT13_PAGE_TABLE_BASE_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT13_PAGE_TABLE_BASE_ADDR_HI32 0x0c26
+#define regVM_CONTEXT13_PAGE_TABLE_BASE_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT14_PAGE_TABLE_BASE_ADDR_LO32 0x0c27
+#define regVM_CONTEXT14_PAGE_TABLE_BASE_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT14_PAGE_TABLE_BASE_ADDR_HI32 0x0c28
+#define regVM_CONTEXT14_PAGE_TABLE_BASE_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT15_PAGE_TABLE_BASE_ADDR_LO32 0x0c29
+#define regVM_CONTEXT15_PAGE_TABLE_BASE_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT15_PAGE_TABLE_BASE_ADDR_HI32 0x0c2a
+#define regVM_CONTEXT15_PAGE_TABLE_BASE_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT0_PAGE_TABLE_START_ADDR_LO32 0x0c2b
+#define regVM_CONTEXT0_PAGE_TABLE_START_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT0_PAGE_TABLE_START_ADDR_HI32 0x0c2c
+#define regVM_CONTEXT0_PAGE_TABLE_START_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT1_PAGE_TABLE_START_ADDR_LO32 0x0c2d
+#define regVM_CONTEXT1_PAGE_TABLE_START_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT1_PAGE_TABLE_START_ADDR_HI32 0x0c2e
+#define regVM_CONTEXT1_PAGE_TABLE_START_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT2_PAGE_TABLE_START_ADDR_LO32 0x0c2f
+#define regVM_CONTEXT2_PAGE_TABLE_START_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT2_PAGE_TABLE_START_ADDR_HI32 0x0c30
+#define regVM_CONTEXT2_PAGE_TABLE_START_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT3_PAGE_TABLE_START_ADDR_LO32 0x0c31
+#define regVM_CONTEXT3_PAGE_TABLE_START_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT3_PAGE_TABLE_START_ADDR_HI32 0x0c32
+#define regVM_CONTEXT3_PAGE_TABLE_START_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT4_PAGE_TABLE_START_ADDR_LO32 0x0c33
+#define regVM_CONTEXT4_PAGE_TABLE_START_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT4_PAGE_TABLE_START_ADDR_HI32 0x0c34
+#define regVM_CONTEXT4_PAGE_TABLE_START_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT5_PAGE_TABLE_START_ADDR_LO32 0x0c35
+#define regVM_CONTEXT5_PAGE_TABLE_START_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT5_PAGE_TABLE_START_ADDR_HI32 0x0c36
+#define regVM_CONTEXT5_PAGE_TABLE_START_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT6_PAGE_TABLE_START_ADDR_LO32 0x0c37
+#define regVM_CONTEXT6_PAGE_TABLE_START_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT6_PAGE_TABLE_START_ADDR_HI32 0x0c38
+#define regVM_CONTEXT6_PAGE_TABLE_START_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT7_PAGE_TABLE_START_ADDR_LO32 0x0c39
+#define regVM_CONTEXT7_PAGE_TABLE_START_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT7_PAGE_TABLE_START_ADDR_HI32 0x0c3a
+#define regVM_CONTEXT7_PAGE_TABLE_START_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT8_PAGE_TABLE_START_ADDR_LO32 0x0c3b
+#define regVM_CONTEXT8_PAGE_TABLE_START_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT8_PAGE_TABLE_START_ADDR_HI32 0x0c3c
+#define regVM_CONTEXT8_PAGE_TABLE_START_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT9_PAGE_TABLE_START_ADDR_LO32 0x0c3d
+#define regVM_CONTEXT9_PAGE_TABLE_START_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT9_PAGE_TABLE_START_ADDR_HI32 0x0c3e
+#define regVM_CONTEXT9_PAGE_TABLE_START_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT10_PAGE_TABLE_START_ADDR_LO32 0x0c3f
+#define regVM_CONTEXT10_PAGE_TABLE_START_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT10_PAGE_TABLE_START_ADDR_HI32 0x0c40
+#define regVM_CONTEXT10_PAGE_TABLE_START_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT11_PAGE_TABLE_START_ADDR_LO32 0x0c41
+#define regVM_CONTEXT11_PAGE_TABLE_START_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT11_PAGE_TABLE_START_ADDR_HI32 0x0c42
+#define regVM_CONTEXT11_PAGE_TABLE_START_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT12_PAGE_TABLE_START_ADDR_LO32 0x0c43
+#define regVM_CONTEXT12_PAGE_TABLE_START_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT12_PAGE_TABLE_START_ADDR_HI32 0x0c44
+#define regVM_CONTEXT12_PAGE_TABLE_START_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT13_PAGE_TABLE_START_ADDR_LO32 0x0c45
+#define regVM_CONTEXT13_PAGE_TABLE_START_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT13_PAGE_TABLE_START_ADDR_HI32 0x0c46
+#define regVM_CONTEXT13_PAGE_TABLE_START_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT14_PAGE_TABLE_START_ADDR_LO32 0x0c47
+#define regVM_CONTEXT14_PAGE_TABLE_START_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT14_PAGE_TABLE_START_ADDR_HI32 0x0c48
+#define regVM_CONTEXT14_PAGE_TABLE_START_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT15_PAGE_TABLE_START_ADDR_LO32 0x0c49
+#define regVM_CONTEXT15_PAGE_TABLE_START_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT15_PAGE_TABLE_START_ADDR_HI32 0x0c4a
+#define regVM_CONTEXT15_PAGE_TABLE_START_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT0_PAGE_TABLE_END_ADDR_LO32 0x0c4b
+#define regVM_CONTEXT0_PAGE_TABLE_END_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT0_PAGE_TABLE_END_ADDR_HI32 0x0c4c
+#define regVM_CONTEXT0_PAGE_TABLE_END_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT1_PAGE_TABLE_END_ADDR_LO32 0x0c4d
+#define regVM_CONTEXT1_PAGE_TABLE_END_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT1_PAGE_TABLE_END_ADDR_HI32 0x0c4e
+#define regVM_CONTEXT1_PAGE_TABLE_END_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT2_PAGE_TABLE_END_ADDR_LO32 0x0c4f
+#define regVM_CONTEXT2_PAGE_TABLE_END_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT2_PAGE_TABLE_END_ADDR_HI32 0x0c50
+#define regVM_CONTEXT2_PAGE_TABLE_END_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT3_PAGE_TABLE_END_ADDR_LO32 0x0c51
+#define regVM_CONTEXT3_PAGE_TABLE_END_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT3_PAGE_TABLE_END_ADDR_HI32 0x0c52
+#define regVM_CONTEXT3_PAGE_TABLE_END_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT4_PAGE_TABLE_END_ADDR_LO32 0x0c53
+#define regVM_CONTEXT4_PAGE_TABLE_END_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT4_PAGE_TABLE_END_ADDR_HI32 0x0c54
+#define regVM_CONTEXT4_PAGE_TABLE_END_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT5_PAGE_TABLE_END_ADDR_LO32 0x0c55
+#define regVM_CONTEXT5_PAGE_TABLE_END_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT5_PAGE_TABLE_END_ADDR_HI32 0x0c56
+#define regVM_CONTEXT5_PAGE_TABLE_END_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT6_PAGE_TABLE_END_ADDR_LO32 0x0c57
+#define regVM_CONTEXT6_PAGE_TABLE_END_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT6_PAGE_TABLE_END_ADDR_HI32 0x0c58
+#define regVM_CONTEXT6_PAGE_TABLE_END_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT7_PAGE_TABLE_END_ADDR_LO32 0x0c59
+#define regVM_CONTEXT7_PAGE_TABLE_END_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT7_PAGE_TABLE_END_ADDR_HI32 0x0c5a
+#define regVM_CONTEXT7_PAGE_TABLE_END_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT8_PAGE_TABLE_END_ADDR_LO32 0x0c5b
+#define regVM_CONTEXT8_PAGE_TABLE_END_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT8_PAGE_TABLE_END_ADDR_HI32 0x0c5c
+#define regVM_CONTEXT8_PAGE_TABLE_END_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT9_PAGE_TABLE_END_ADDR_LO32 0x0c5d
+#define regVM_CONTEXT9_PAGE_TABLE_END_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT9_PAGE_TABLE_END_ADDR_HI32 0x0c5e
+#define regVM_CONTEXT9_PAGE_TABLE_END_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT10_PAGE_TABLE_END_ADDR_LO32 0x0c5f
+#define regVM_CONTEXT10_PAGE_TABLE_END_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT10_PAGE_TABLE_END_ADDR_HI32 0x0c60
+#define regVM_CONTEXT10_PAGE_TABLE_END_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT11_PAGE_TABLE_END_ADDR_LO32 0x0c61
+#define regVM_CONTEXT11_PAGE_TABLE_END_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT11_PAGE_TABLE_END_ADDR_HI32 0x0c62
+#define regVM_CONTEXT11_PAGE_TABLE_END_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT12_PAGE_TABLE_END_ADDR_LO32 0x0c63
+#define regVM_CONTEXT12_PAGE_TABLE_END_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT12_PAGE_TABLE_END_ADDR_HI32 0x0c64
+#define regVM_CONTEXT12_PAGE_TABLE_END_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT13_PAGE_TABLE_END_ADDR_LO32 0x0c65
+#define regVM_CONTEXT13_PAGE_TABLE_END_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT13_PAGE_TABLE_END_ADDR_HI32 0x0c66
+#define regVM_CONTEXT13_PAGE_TABLE_END_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT14_PAGE_TABLE_END_ADDR_LO32 0x0c67
+#define regVM_CONTEXT14_PAGE_TABLE_END_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT14_PAGE_TABLE_END_ADDR_HI32 0x0c68
+#define regVM_CONTEXT14_PAGE_TABLE_END_ADDR_HI32_BASE_IDX 0
+#define regVM_CONTEXT15_PAGE_TABLE_END_ADDR_LO32 0x0c69
+#define regVM_CONTEXT15_PAGE_TABLE_END_ADDR_LO32_BASE_IDX 0
+#define regVM_CONTEXT15_PAGE_TABLE_END_ADDR_HI32 0x0c6a
+#define regVM_CONTEXT15_PAGE_TABLE_END_ADDR_HI32_BASE_IDX 0
+
+
+// addressBlock: aid_mmhub_utcl2_vmsharedpfdec
+// base address: 0x63200
+#define regMC_VM_NB_MMIOBASE 0x0c80
+#define regMC_VM_NB_MMIOBASE_BASE_IDX 0
+#define regMC_VM_NB_MMIOLIMIT 0x0c81
+#define regMC_VM_NB_MMIOLIMIT_BASE_IDX 0
+#define regMC_VM_NB_PCI_CTRL 0x0c82
+#define regMC_VM_NB_PCI_CTRL_BASE_IDX 0
+#define regMC_VM_NB_PCI_ARB 0x0c83
+#define regMC_VM_NB_PCI_ARB_BASE_IDX 0
+#define regMC_VM_NB_TOP_OF_DRAM_SLOT1 0x0c84
+#define regMC_VM_NB_TOP_OF_DRAM_SLOT1_BASE_IDX 0
+#define regMC_VM_NB_LOWER_TOP_OF_DRAM2 0x0c85
+#define regMC_VM_NB_LOWER_TOP_OF_DRAM2_BASE_IDX 0
+#define regMC_VM_NB_UPPER_TOP_OF_DRAM2 0x0c86
+#define regMC_VM_NB_UPPER_TOP_OF_DRAM2_BASE_IDX 0
+#define regMC_VM_FB_OFFSET 0x0c87
+#define regMC_VM_FB_OFFSET_BASE_IDX 0
+#define regMC_VM_SYSTEM_APERTURE_DEFAULT_ADDR_LSB 0x0c88
+#define regMC_VM_SYSTEM_APERTURE_DEFAULT_ADDR_LSB_BASE_IDX 0
+#define regMC_VM_SYSTEM_APERTURE_DEFAULT_ADDR_MSB 0x0c89
+#define regMC_VM_SYSTEM_APERTURE_DEFAULT_ADDR_MSB_BASE_IDX 0
+#define regMC_VM_STEERING 0x0c8a
+#define regMC_VM_STEERING_BASE_IDX 0
+#define regMC_SHARED_VIRT_RESET_REQ 0x0c8b
+#define regMC_SHARED_VIRT_RESET_REQ_BASE_IDX 0
+#define regMC_MEM_POWER_LS 0x0c8c
+#define regMC_MEM_POWER_LS_BASE_IDX 0
+#define regMC_VM_CACHEABLE_DRAM_ADDRESS_START 0x0c8d
+#define regMC_VM_CACHEABLE_DRAM_ADDRESS_START_BASE_IDX 0
+#define regMC_VM_CACHEABLE_DRAM_ADDRESS_END 0x0c8e
+#define regMC_VM_CACHEABLE_DRAM_ADDRESS_END_BASE_IDX 0
+#define regMC_VM_APT_CNTL 0x0c91
+#define regMC_VM_APT_CNTL_BASE_IDX 0
+#define regMC_VM_LOCAL_HBM_ADDRESS_START 0x0c92
+#define regMC_VM_LOCAL_HBM_ADDRESS_START_BASE_IDX 0
+#define regMC_VM_LOCAL_HBM_ADDRESS_END 0x0c93
+#define regMC_VM_LOCAL_HBM_ADDRESS_END_BASE_IDX 0
+#define regMC_VM_LOCAL_HBM_ADDRESS_LOCK_CNTL 0x0c94
+#define regMC_VM_LOCAL_HBM_ADDRESS_LOCK_CNTL_BASE_IDX 0
+#define regUTCL2_CGTT_CLK_CTRL 0x0c95
+#define regUTCL2_CGTT_CLK_CTRL_BASE_IDX 0
+#define regMC_VM_XGMI_LFB_CNTL 0x0c97
+#define regMC_VM_XGMI_LFB_CNTL_BASE_IDX 0
+#define regMC_VM_XGMI_LFB_SIZE 0x0c98
+#define regMC_VM_XGMI_LFB_SIZE_BASE_IDX 0
+#define regMC_VM_CACHEABLE_DRAM_CNTL 0x0c99
+#define regMC_VM_CACHEABLE_DRAM_CNTL_BASE_IDX 0
+#define regMC_VM_HOST_MAPPING 0x0c9a
+#define regMC_VM_HOST_MAPPING_BASE_IDX 0
+
+
+// addressBlock: aid_mmhub_utcl2_vmsharedvcdec
+// base address: 0x63270
+#define regMC_VM_FB_LOCATION_BASE 0x0c9c
+#define regMC_VM_FB_LOCATION_BASE_BASE_IDX 0
+#define regMC_VM_FB_LOCATION_TOP 0x0c9d
+#define regMC_VM_FB_LOCATION_TOP_BASE_IDX 0
+#define regMC_VM_AGP_TOP 0x0c9e
+#define regMC_VM_AGP_TOP_BASE_IDX 0
+#define regMC_VM_AGP_BOT 0x0c9f
+#define regMC_VM_AGP_BOT_BASE_IDX 0
+#define regMC_VM_AGP_BASE 0x0ca0
+#define regMC_VM_AGP_BASE_BASE_IDX 0
+#define regMC_VM_SYSTEM_APERTURE_LOW_ADDR 0x0ca1
+#define regMC_VM_SYSTEM_APERTURE_LOW_ADDR_BASE_IDX 0
+#define regMC_VM_SYSTEM_APERTURE_HIGH_ADDR 0x0ca2
+#define regMC_VM_SYSTEM_APERTURE_HIGH_ADDR_BASE_IDX 0
+#define regMC_VM_MX_L1_TLB_CNTL 0x0ca3
+#define regMC_VM_MX_L1_TLB_CNTL_BASE_IDX 0
+
+
+// addressBlock: aid_mmhub_utcl2_vmsharedhvdec
+// base address: 0x632b0
+#define regMC_VM_FB_SIZE_OFFSET_VF0 0x0cac
+#define regMC_VM_FB_SIZE_OFFSET_VF0_BASE_IDX 0
+#define regMC_VM_FB_SIZE_OFFSET_VF1 0x0cad
+#define regMC_VM_FB_SIZE_OFFSET_VF1_BASE_IDX 0
+#define regMC_VM_FB_SIZE_OFFSET_VF2 0x0cae
+#define regMC_VM_FB_SIZE_OFFSET_VF2_BASE_IDX 0
+#define regMC_VM_FB_SIZE_OFFSET_VF3 0x0caf
+#define regMC_VM_FB_SIZE_OFFSET_VF3_BASE_IDX 0
+#define regMC_VM_FB_SIZE_OFFSET_VF4 0x0cb0
+#define regMC_VM_FB_SIZE_OFFSET_VF4_BASE_IDX 0
+#define regMC_VM_FB_SIZE_OFFSET_VF5 0x0cb1
+#define regMC_VM_FB_SIZE_OFFSET_VF5_BASE_IDX 0
+#define regMC_VM_FB_SIZE_OFFSET_VF6 0x0cb2
+#define regMC_VM_FB_SIZE_OFFSET_VF6_BASE_IDX 0
+#define regMC_VM_FB_SIZE_OFFSET_VF7 0x0cb3
+#define regMC_VM_FB_SIZE_OFFSET_VF7_BASE_IDX 0
+#define regMC_VM_FB_SIZE_OFFSET_VF8 0x0cb4
+#define regMC_VM_FB_SIZE_OFFSET_VF8_BASE_IDX 0
+#define regMC_VM_FB_SIZE_OFFSET_VF9 0x0cb5
+#define regMC_VM_FB_SIZE_OFFSET_VF9_BASE_IDX 0
+#define regMC_VM_FB_SIZE_OFFSET_VF10 0x0cb6
+#define regMC_VM_FB_SIZE_OFFSET_VF10_BASE_IDX 0
+#define regMC_VM_FB_SIZE_OFFSET_VF11 0x0cb7
+#define regMC_VM_FB_SIZE_OFFSET_VF11_BASE_IDX 0
+#define regMC_VM_FB_SIZE_OFFSET_VF12 0x0cb8
+#define regMC_VM_FB_SIZE_OFFSET_VF12_BASE_IDX 0
+#define regMC_VM_FB_SIZE_OFFSET_VF13 0x0cb9
+#define regMC_VM_FB_SIZE_OFFSET_VF13_BASE_IDX 0
+#define regMC_VM_FB_SIZE_OFFSET_VF14 0x0cba
+#define regMC_VM_FB_SIZE_OFFSET_VF14_BASE_IDX 0
+#define regMC_VM_FB_SIZE_OFFSET_VF15 0x0cbb
+#define regMC_VM_FB_SIZE_OFFSET_VF15_BASE_IDX 0
+#define regVM_IOMMU_MMIO_CNTRL_1 0x0cbc
+#define regVM_IOMMU_MMIO_CNTRL_1_BASE_IDX 0
+#define regMC_VM_MARC_BASE_LO_0 0x0cbd
+#define regMC_VM_MARC_BASE_LO_0_BASE_IDX 0
+#define regMC_VM_MARC_BASE_LO_1 0x0cbe
+#define regMC_VM_MARC_BASE_LO_1_BASE_IDX 0
+#define regMC_VM_MARC_BASE_LO_2 0x0cbf
+#define regMC_VM_MARC_BASE_LO_2_BASE_IDX 0
+#define regMC_VM_MARC_BASE_LO_3 0x0cc0
+#define regMC_VM_MARC_BASE_LO_3_BASE_IDX 0
+#define regMC_VM_MARC_BASE_HI_0 0x0cc1
+#define regMC_VM_MARC_BASE_HI_0_BASE_IDX 0
+#define regMC_VM_MARC_BASE_HI_1 0x0cc2
+#define regMC_VM_MARC_BASE_HI_1_BASE_IDX 0
+#define regMC_VM_MARC_BASE_HI_2 0x0cc3
+#define regMC_VM_MARC_BASE_HI_2_BASE_IDX 0
+#define regMC_VM_MARC_BASE_HI_3 0x0cc4
+#define regMC_VM_MARC_BASE_HI_3_BASE_IDX 0
+#define regMC_VM_MARC_RELOC_LO_0 0x0cc5
+#define regMC_VM_MARC_RELOC_LO_0_BASE_IDX 0
+#define regMC_VM_MARC_RELOC_LO_1 0x0cc6
+#define regMC_VM_MARC_RELOC_LO_1_BASE_IDX 0
+#define regMC_VM_MARC_RELOC_LO_2 0x0cc7
+#define regMC_VM_MARC_RELOC_LO_2_BASE_IDX 0
+#define regMC_VM_MARC_RELOC_LO_3 0x0cc8
+#define regMC_VM_MARC_RELOC_LO_3_BASE_IDX 0
+#define regMC_VM_MARC_RELOC_HI_0 0x0cc9
+#define regMC_VM_MARC_RELOC_HI_0_BASE_IDX 0
+#define regMC_VM_MARC_RELOC_HI_1 0x0cca
+#define regMC_VM_MARC_RELOC_HI_1_BASE_IDX 0
+#define regMC_VM_MARC_RELOC_HI_2 0x0ccb
+#define regMC_VM_MARC_RELOC_HI_2_BASE_IDX 0
+#define regMC_VM_MARC_RELOC_HI_3 0x0ccc
+#define regMC_VM_MARC_RELOC_HI_3_BASE_IDX 0
+#define regMC_VM_MARC_LEN_LO_0 0x0ccd
+#define regMC_VM_MARC_LEN_LO_0_BASE_IDX 0
+#define regMC_VM_MARC_LEN_LO_1 0x0cce
+#define regMC_VM_MARC_LEN_LO_1_BASE_IDX 0
+#define regMC_VM_MARC_LEN_LO_2 0x0ccf
+#define regMC_VM_MARC_LEN_LO_2_BASE_IDX 0
+#define regMC_VM_MARC_LEN_LO_3 0x0cd0
+#define regMC_VM_MARC_LEN_LO_3_BASE_IDX 0
+#define regMC_VM_MARC_LEN_HI_0 0x0cd1
+#define regMC_VM_MARC_LEN_HI_0_BASE_IDX 0
+#define regMC_VM_MARC_LEN_HI_1 0x0cd2
+#define regMC_VM_MARC_LEN_HI_1_BASE_IDX 0
+#define regMC_VM_MARC_LEN_HI_2 0x0cd3
+#define regMC_VM_MARC_LEN_HI_2_BASE_IDX 0
+#define regMC_VM_MARC_LEN_HI_3 0x0cd4
+#define regMC_VM_MARC_LEN_HI_3_BASE_IDX 0
+#define regVM_IOMMU_CONTROL_REGISTER 0x0cd5
+#define regVM_IOMMU_CONTROL_REGISTER_BASE_IDX 0
+#define regVM_IOMMU_PERFORMANCE_OPTIMIZATION_CONTROL_REGISTER 0x0cd6
+#define regVM_IOMMU_PERFORMANCE_OPTIMIZATION_CONTROL_REGISTER_BASE_IDX 0
+#define regVM_PCIE_ATS_CNTL 0x0cd7
+#define regVM_PCIE_ATS_CNTL_BASE_IDX 0
+#define regVM_PCIE_ATS_CNTL_VF_0 0x0cd8
+#define regVM_PCIE_ATS_CNTL_VF_0_BASE_IDX 0
+#define regVM_PCIE_ATS_CNTL_VF_1 0x0cd9
+#define regVM_PCIE_ATS_CNTL_VF_1_BASE_IDX 0
+#define regVM_PCIE_ATS_CNTL_VF_2 0x0cda
+#define regVM_PCIE_ATS_CNTL_VF_2_BASE_IDX 0
+#define regVM_PCIE_ATS_CNTL_VF_3 0x0cdb
+#define regVM_PCIE_ATS_CNTL_VF_3_BASE_IDX 0
+#define regVM_PCIE_ATS_CNTL_VF_4 0x0cdc
+#define regVM_PCIE_ATS_CNTL_VF_4_BASE_IDX 0
+#define regVM_PCIE_ATS_CNTL_VF_5 0x0cdd
+#define regVM_PCIE_ATS_CNTL_VF_5_BASE_IDX 0
+#define regVM_PCIE_ATS_CNTL_VF_6 0x0cde
+#define regVM_PCIE_ATS_CNTL_VF_6_BASE_IDX 0
+#define regVM_PCIE_ATS_CNTL_VF_7 0x0cdf
+#define regVM_PCIE_ATS_CNTL_VF_7_BASE_IDX 0
+#define regVM_PCIE_ATS_CNTL_VF_8 0x0ce0
+#define regVM_PCIE_ATS_CNTL_VF_8_BASE_IDX 0
+#define regVM_PCIE_ATS_CNTL_VF_9 0x0ce1
+#define regVM_PCIE_ATS_CNTL_VF_9_BASE_IDX 0
+#define regVM_PCIE_ATS_CNTL_VF_10 0x0ce2
+#define regVM_PCIE_ATS_CNTL_VF_10_BASE_IDX 0
+#define regVM_PCIE_ATS_CNTL_VF_11 0x0ce3
+#define regVM_PCIE_ATS_CNTL_VF_11_BASE_IDX 0
+#define regVM_PCIE_ATS_CNTL_VF_12 0x0ce4
+#define regVM_PCIE_ATS_CNTL_VF_12_BASE_IDX 0
+#define regVM_PCIE_ATS_CNTL_VF_13 0x0ce5
+#define regVM_PCIE_ATS_CNTL_VF_13_BASE_IDX 0
+#define regVM_PCIE_ATS_CNTL_VF_14 0x0ce6
+#define regVM_PCIE_ATS_CNTL_VF_14_BASE_IDX 0
+#define regVM_PCIE_ATS_CNTL_VF_15 0x0ce7
+#define regVM_PCIE_ATS_CNTL_VF_15_BASE_IDX 0
+#define regMC_SHARED_ACTIVE_FCN_ID 0x0ce8
+#define regMC_SHARED_ACTIVE_FCN_ID_BASE_IDX 0
+#define regMC_VM_XGMI_GPUIOV_ENABLE 0x0ce9
+#define regMC_VM_XGMI_GPUIOV_ENABLE_BASE_IDX 0
+
+
+// addressBlock: aid_mmhub_utcl2_atcl2pfcntrdec
+// base address: 0x633b0
+#define regATC_L2_PERFCOUNTER_LO 0x0cec
+#define regATC_L2_PERFCOUNTER_LO_BASE_IDX 0
+#define regATC_L2_PERFCOUNTER_HI 0x0ced
+#define regATC_L2_PERFCOUNTER_HI_BASE_IDX 0
+
+
+// addressBlock: aid_mmhub_utcl2_atcl2pfcntldec
+// base address: 0x633b8
+#define regATC_L2_PERFCOUNTER0_CFG 0x0cee
+#define regATC_L2_PERFCOUNTER0_CFG_BASE_IDX 0
+#define regATC_L2_PERFCOUNTER1_CFG 0x0cef
+#define regATC_L2_PERFCOUNTER1_CFG_BASE_IDX 0
+#define regATC_L2_PERFCOUNTER_RSLT_CNTL 0x0cf0
+#define regATC_L2_PERFCOUNTER_RSLT_CNTL_BASE_IDX 0
+
+
+// addressBlock: aid_mmhub_utcl2_vml2pldec
+// base address: 0x633d0
+#define regMC_VM_L2_PERFCOUNTER0_CFG 0x0cf4
+#define regMC_VM_L2_PERFCOUNTER0_CFG_BASE_IDX 0
+#define regMC_VM_L2_PERFCOUNTER1_CFG 0x0cf5
+#define regMC_VM_L2_PERFCOUNTER1_CFG_BASE_IDX 0
+#define regMC_VM_L2_PERFCOUNTER2_CFG 0x0cf6
+#define regMC_VM_L2_PERFCOUNTER2_CFG_BASE_IDX 0
+#define regMC_VM_L2_PERFCOUNTER3_CFG 0x0cf7
+#define regMC_VM_L2_PERFCOUNTER3_CFG_BASE_IDX 0
+#define regMC_VM_L2_PERFCOUNTER4_CFG 0x0cf8
+#define regMC_VM_L2_PERFCOUNTER4_CFG_BASE_IDX 0
+#define regMC_VM_L2_PERFCOUNTER5_CFG 0x0cf9
+#define regMC_VM_L2_PERFCOUNTER5_CFG_BASE_IDX 0
+#define regMC_VM_L2_PERFCOUNTER6_CFG 0x0cfa
+#define regMC_VM_L2_PERFCOUNTER6_CFG_BASE_IDX 0
+#define regMC_VM_L2_PERFCOUNTER7_CFG 0x0cfb
+#define regMC_VM_L2_PERFCOUNTER7_CFG_BASE_IDX 0
+#define regMC_VM_L2_PERFCOUNTER_RSLT_CNTL 0x0d04
+#define regMC_VM_L2_PERFCOUNTER_RSLT_CNTL_BASE_IDX 0
+
+
+// addressBlock: aid_mmhub_utcl2_vml2prdec
+// base address: 0x63430
+#define regMC_VM_L2_PERFCOUNTER_LO 0x0d0c
+#define regMC_VM_L2_PERFCOUNTER_LO_BASE_IDX 0
+#define regMC_VM_L2_PERFCOUNTER_HI 0x0d0d
+#define regMC_VM_L2_PERFCOUNTER_HI_BASE_IDX 0
+
+
+// addressBlock: aid_mmhub_utcl2_l2tlbdec
+// base address: 0x63470
+#define regL2TLB_TLB0_STATUS 0x0d1d
+#define regL2TLB_TLB0_STATUS_BASE_IDX 0
+#define regUTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_LO 0x0d1f
+#define regUTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_LO_BASE_IDX 0
+#define regUTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_HI 0x0d20
+#define regUTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_HI_BASE_IDX 0
+#define regUTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_LO 0x0d21
+#define regUTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_LO_BASE_IDX 0
+#define regUTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI 0x0d22
+#define regUTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI_BASE_IDX 0
+
+
+// addressBlock: aid_mmhub_utcl2_l2tlbpldec
+// base address: 0x63490
+#define regL2TLB_PERFCOUNTER0_CFG 0x0d24
+#define regL2TLB_PERFCOUNTER0_CFG_BASE_IDX 0
+#define regL2TLB_PERFCOUNTER1_CFG 0x0d25
+#define regL2TLB_PERFCOUNTER1_CFG_BASE_IDX 0
+#define regL2TLB_PERFCOUNTER2_CFG 0x0d26
+#define regL2TLB_PERFCOUNTER2_CFG_BASE_IDX 0
+#define regL2TLB_PERFCOUNTER3_CFG 0x0d27
+#define regL2TLB_PERFCOUNTER3_CFG_BASE_IDX 0
+#define regL2TLB_PERFCOUNTER_RSLT_CNTL 0x0d28
+#define regL2TLB_PERFCOUNTER_RSLT_CNTL_BASE_IDX 0
+
+
+// addressBlock: aid_mmhub_utcl2_l2tlbprdec
+// base address: 0x634b0
+#define regL2TLB_PERFCOUNTER_LO 0x0d2c
+#define regL2TLB_PERFCOUNTER_LO_BASE_IDX 0
+#define regL2TLB_PERFCOUNTER_HI 0x0d2d
+#define regL2TLB_PERFCOUNTER_HI_BASE_IDX 0
+
+
+#endif
diff --git a/drivers/gpu/drm/amd/include/asic_reg/mmhub/mmhub_1_8_0_sh_mask.h b/drivers/gpu/drm/amd/include/asic_reg/mmhub/mmhub_1_8_0_sh_mask.h
new file mode 100644
index 000000000000..af41468ce69f
--- /dev/null
+++ b/drivers/gpu/drm/amd/include/asic_reg/mmhub/mmhub_1_8_0_sh_mask.h
@@ -0,0 +1,22315 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ */
+#ifndef _mmhub_1_8_0_SH_MASK_HEADER
+#define _mmhub_1_8_0_SH_MASK_HEADER
+
+
+// addressBlock: aid_mmhub_dagb_dagbdec0
+//DAGB0_RDCLI0
+#define DAGB0_RDCLI0__VIRT_CHAN__SHIFT 0x0
+#define DAGB0_RDCLI0__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB0_RDCLI0__URG_HIGH__SHIFT 0x4
+#define DAGB0_RDCLI0__URG_LOW__SHIFT 0x8
+#define DAGB0_RDCLI0__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB0_RDCLI0__MAX_BW__SHIFT 0xd
+#define DAGB0_RDCLI0__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB0_RDCLI0__MIN_BW__SHIFT 0x16
+#define DAGB0_RDCLI0__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB0_RDCLI0__MAX_OSD__SHIFT 0x1a
+#define DAGB0_RDCLI0__VIRT_CHAN_MASK 0x00000007L
+#define DAGB0_RDCLI0__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB0_RDCLI0__URG_HIGH_MASK 0x000000F0L
+#define DAGB0_RDCLI0__URG_LOW_MASK 0x00000F00L
+#define DAGB0_RDCLI0__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB0_RDCLI0__MAX_BW_MASK 0x001FE000L
+#define DAGB0_RDCLI0__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB0_RDCLI0__MIN_BW_MASK 0x01C00000L
+#define DAGB0_RDCLI0__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB0_RDCLI0__MAX_OSD_MASK 0xFC000000L
+//DAGB0_RDCLI1
+#define DAGB0_RDCLI1__VIRT_CHAN__SHIFT 0x0
+#define DAGB0_RDCLI1__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB0_RDCLI1__URG_HIGH__SHIFT 0x4
+#define DAGB0_RDCLI1__URG_LOW__SHIFT 0x8
+#define DAGB0_RDCLI1__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB0_RDCLI1__MAX_BW__SHIFT 0xd
+#define DAGB0_RDCLI1__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB0_RDCLI1__MIN_BW__SHIFT 0x16
+#define DAGB0_RDCLI1__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB0_RDCLI1__MAX_OSD__SHIFT 0x1a
+#define DAGB0_RDCLI1__VIRT_CHAN_MASK 0x00000007L
+#define DAGB0_RDCLI1__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB0_RDCLI1__URG_HIGH_MASK 0x000000F0L
+#define DAGB0_RDCLI1__URG_LOW_MASK 0x00000F00L
+#define DAGB0_RDCLI1__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB0_RDCLI1__MAX_BW_MASK 0x001FE000L
+#define DAGB0_RDCLI1__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB0_RDCLI1__MIN_BW_MASK 0x01C00000L
+#define DAGB0_RDCLI1__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB0_RDCLI1__MAX_OSD_MASK 0xFC000000L
+//DAGB0_RDCLI2
+#define DAGB0_RDCLI2__VIRT_CHAN__SHIFT 0x0
+#define DAGB0_RDCLI2__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB0_RDCLI2__URG_HIGH__SHIFT 0x4
+#define DAGB0_RDCLI2__URG_LOW__SHIFT 0x8
+#define DAGB0_RDCLI2__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB0_RDCLI2__MAX_BW__SHIFT 0xd
+#define DAGB0_RDCLI2__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB0_RDCLI2__MIN_BW__SHIFT 0x16
+#define DAGB0_RDCLI2__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB0_RDCLI2__MAX_OSD__SHIFT 0x1a
+#define DAGB0_RDCLI2__VIRT_CHAN_MASK 0x00000007L
+#define DAGB0_RDCLI2__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB0_RDCLI2__URG_HIGH_MASK 0x000000F0L
+#define DAGB0_RDCLI2__URG_LOW_MASK 0x00000F00L
+#define DAGB0_RDCLI2__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB0_RDCLI2__MAX_BW_MASK 0x001FE000L
+#define DAGB0_RDCLI2__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB0_RDCLI2__MIN_BW_MASK 0x01C00000L
+#define DAGB0_RDCLI2__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB0_RDCLI2__MAX_OSD_MASK 0xFC000000L
+//DAGB0_RDCLI3
+#define DAGB0_RDCLI3__VIRT_CHAN__SHIFT 0x0
+#define DAGB0_RDCLI3__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB0_RDCLI3__URG_HIGH__SHIFT 0x4
+#define DAGB0_RDCLI3__URG_LOW__SHIFT 0x8
+#define DAGB0_RDCLI3__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB0_RDCLI3__MAX_BW__SHIFT 0xd
+#define DAGB0_RDCLI3__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB0_RDCLI3__MIN_BW__SHIFT 0x16
+#define DAGB0_RDCLI3__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB0_RDCLI3__MAX_OSD__SHIFT 0x1a
+#define DAGB0_RDCLI3__VIRT_CHAN_MASK 0x00000007L
+#define DAGB0_RDCLI3__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB0_RDCLI3__URG_HIGH_MASK 0x000000F0L
+#define DAGB0_RDCLI3__URG_LOW_MASK 0x00000F00L
+#define DAGB0_RDCLI3__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB0_RDCLI3__MAX_BW_MASK 0x001FE000L
+#define DAGB0_RDCLI3__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB0_RDCLI3__MIN_BW_MASK 0x01C00000L
+#define DAGB0_RDCLI3__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB0_RDCLI3__MAX_OSD_MASK 0xFC000000L
+//DAGB0_RDCLI4
+#define DAGB0_RDCLI4__VIRT_CHAN__SHIFT 0x0
+#define DAGB0_RDCLI4__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB0_RDCLI4__URG_HIGH__SHIFT 0x4
+#define DAGB0_RDCLI4__URG_LOW__SHIFT 0x8
+#define DAGB0_RDCLI4__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB0_RDCLI4__MAX_BW__SHIFT 0xd
+#define DAGB0_RDCLI4__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB0_RDCLI4__MIN_BW__SHIFT 0x16
+#define DAGB0_RDCLI4__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB0_RDCLI4__MAX_OSD__SHIFT 0x1a
+#define DAGB0_RDCLI4__VIRT_CHAN_MASK 0x00000007L
+#define DAGB0_RDCLI4__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB0_RDCLI4__URG_HIGH_MASK 0x000000F0L
+#define DAGB0_RDCLI4__URG_LOW_MASK 0x00000F00L
+#define DAGB0_RDCLI4__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB0_RDCLI4__MAX_BW_MASK 0x001FE000L
+#define DAGB0_RDCLI4__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB0_RDCLI4__MIN_BW_MASK 0x01C00000L
+#define DAGB0_RDCLI4__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB0_RDCLI4__MAX_OSD_MASK 0xFC000000L
+//DAGB0_RDCLI5
+#define DAGB0_RDCLI5__VIRT_CHAN__SHIFT 0x0
+#define DAGB0_RDCLI5__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB0_RDCLI5__URG_HIGH__SHIFT 0x4
+#define DAGB0_RDCLI5__URG_LOW__SHIFT 0x8
+#define DAGB0_RDCLI5__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB0_RDCLI5__MAX_BW__SHIFT 0xd
+#define DAGB0_RDCLI5__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB0_RDCLI5__MIN_BW__SHIFT 0x16
+#define DAGB0_RDCLI5__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB0_RDCLI5__MAX_OSD__SHIFT 0x1a
+#define DAGB0_RDCLI5__VIRT_CHAN_MASK 0x00000007L
+#define DAGB0_RDCLI5__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB0_RDCLI5__URG_HIGH_MASK 0x000000F0L
+#define DAGB0_RDCLI5__URG_LOW_MASK 0x00000F00L
+#define DAGB0_RDCLI5__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB0_RDCLI5__MAX_BW_MASK 0x001FE000L
+#define DAGB0_RDCLI5__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB0_RDCLI5__MIN_BW_MASK 0x01C00000L
+#define DAGB0_RDCLI5__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB0_RDCLI5__MAX_OSD_MASK 0xFC000000L
+//DAGB0_RDCLI6
+#define DAGB0_RDCLI6__VIRT_CHAN__SHIFT 0x0
+#define DAGB0_RDCLI6__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB0_RDCLI6__URG_HIGH__SHIFT 0x4
+#define DAGB0_RDCLI6__URG_LOW__SHIFT 0x8
+#define DAGB0_RDCLI6__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB0_RDCLI6__MAX_BW__SHIFT 0xd
+#define DAGB0_RDCLI6__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB0_RDCLI6__MIN_BW__SHIFT 0x16
+#define DAGB0_RDCLI6__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB0_RDCLI6__MAX_OSD__SHIFT 0x1a
+#define DAGB0_RDCLI6__VIRT_CHAN_MASK 0x00000007L
+#define DAGB0_RDCLI6__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB0_RDCLI6__URG_HIGH_MASK 0x000000F0L
+#define DAGB0_RDCLI6__URG_LOW_MASK 0x00000F00L
+#define DAGB0_RDCLI6__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB0_RDCLI6__MAX_BW_MASK 0x001FE000L
+#define DAGB0_RDCLI6__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB0_RDCLI6__MIN_BW_MASK 0x01C00000L
+#define DAGB0_RDCLI6__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB0_RDCLI6__MAX_OSD_MASK 0xFC000000L
+//DAGB0_RDCLI7
+#define DAGB0_RDCLI7__VIRT_CHAN__SHIFT 0x0
+#define DAGB0_RDCLI7__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB0_RDCLI7__URG_HIGH__SHIFT 0x4
+#define DAGB0_RDCLI7__URG_LOW__SHIFT 0x8
+#define DAGB0_RDCLI7__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB0_RDCLI7__MAX_BW__SHIFT 0xd
+#define DAGB0_RDCLI7__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB0_RDCLI7__MIN_BW__SHIFT 0x16
+#define DAGB0_RDCLI7__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB0_RDCLI7__MAX_OSD__SHIFT 0x1a
+#define DAGB0_RDCLI7__VIRT_CHAN_MASK 0x00000007L
+#define DAGB0_RDCLI7__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB0_RDCLI7__URG_HIGH_MASK 0x000000F0L
+#define DAGB0_RDCLI7__URG_LOW_MASK 0x00000F00L
+#define DAGB0_RDCLI7__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB0_RDCLI7__MAX_BW_MASK 0x001FE000L
+#define DAGB0_RDCLI7__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB0_RDCLI7__MIN_BW_MASK 0x01C00000L
+#define DAGB0_RDCLI7__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB0_RDCLI7__MAX_OSD_MASK 0xFC000000L
+//DAGB0_RDCLI8
+#define DAGB0_RDCLI8__VIRT_CHAN__SHIFT 0x0
+#define DAGB0_RDCLI8__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB0_RDCLI8__URG_HIGH__SHIFT 0x4
+#define DAGB0_RDCLI8__URG_LOW__SHIFT 0x8
+#define DAGB0_RDCLI8__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB0_RDCLI8__MAX_BW__SHIFT 0xd
+#define DAGB0_RDCLI8__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB0_RDCLI8__MIN_BW__SHIFT 0x16
+#define DAGB0_RDCLI8__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB0_RDCLI8__MAX_OSD__SHIFT 0x1a
+#define DAGB0_RDCLI8__VIRT_CHAN_MASK 0x00000007L
+#define DAGB0_RDCLI8__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB0_RDCLI8__URG_HIGH_MASK 0x000000F0L
+#define DAGB0_RDCLI8__URG_LOW_MASK 0x00000F00L
+#define DAGB0_RDCLI8__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB0_RDCLI8__MAX_BW_MASK 0x001FE000L
+#define DAGB0_RDCLI8__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB0_RDCLI8__MIN_BW_MASK 0x01C00000L
+#define DAGB0_RDCLI8__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB0_RDCLI8__MAX_OSD_MASK 0xFC000000L
+//DAGB0_RDCLI9
+#define DAGB0_RDCLI9__VIRT_CHAN__SHIFT 0x0
+#define DAGB0_RDCLI9__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB0_RDCLI9__URG_HIGH__SHIFT 0x4
+#define DAGB0_RDCLI9__URG_LOW__SHIFT 0x8
+#define DAGB0_RDCLI9__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB0_RDCLI9__MAX_BW__SHIFT 0xd
+#define DAGB0_RDCLI9__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB0_RDCLI9__MIN_BW__SHIFT 0x16
+#define DAGB0_RDCLI9__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB0_RDCLI9__MAX_OSD__SHIFT 0x1a
+#define DAGB0_RDCLI9__VIRT_CHAN_MASK 0x00000007L
+#define DAGB0_RDCLI9__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB0_RDCLI9__URG_HIGH_MASK 0x000000F0L
+#define DAGB0_RDCLI9__URG_LOW_MASK 0x00000F00L
+#define DAGB0_RDCLI9__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB0_RDCLI9__MAX_BW_MASK 0x001FE000L
+#define DAGB0_RDCLI9__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB0_RDCLI9__MIN_BW_MASK 0x01C00000L
+#define DAGB0_RDCLI9__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB0_RDCLI9__MAX_OSD_MASK 0xFC000000L
+//DAGB0_RDCLI10
+#define DAGB0_RDCLI10__VIRT_CHAN__SHIFT 0x0
+#define DAGB0_RDCLI10__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB0_RDCLI10__URG_HIGH__SHIFT 0x4
+#define DAGB0_RDCLI10__URG_LOW__SHIFT 0x8
+#define DAGB0_RDCLI10__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB0_RDCLI10__MAX_BW__SHIFT 0xd
+#define DAGB0_RDCLI10__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB0_RDCLI10__MIN_BW__SHIFT 0x16
+#define DAGB0_RDCLI10__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB0_RDCLI10__MAX_OSD__SHIFT 0x1a
+#define DAGB0_RDCLI10__VIRT_CHAN_MASK 0x00000007L
+#define DAGB0_RDCLI10__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB0_RDCLI10__URG_HIGH_MASK 0x000000F0L
+#define DAGB0_RDCLI10__URG_LOW_MASK 0x00000F00L
+#define DAGB0_RDCLI10__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB0_RDCLI10__MAX_BW_MASK 0x001FE000L
+#define DAGB0_RDCLI10__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB0_RDCLI10__MIN_BW_MASK 0x01C00000L
+#define DAGB0_RDCLI10__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB0_RDCLI10__MAX_OSD_MASK 0xFC000000L
+//DAGB0_RDCLI11
+#define DAGB0_RDCLI11__VIRT_CHAN__SHIFT 0x0
+#define DAGB0_RDCLI11__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB0_RDCLI11__URG_HIGH__SHIFT 0x4
+#define DAGB0_RDCLI11__URG_LOW__SHIFT 0x8
+#define DAGB0_RDCLI11__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB0_RDCLI11__MAX_BW__SHIFT 0xd
+#define DAGB0_RDCLI11__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB0_RDCLI11__MIN_BW__SHIFT 0x16
+#define DAGB0_RDCLI11__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB0_RDCLI11__MAX_OSD__SHIFT 0x1a
+#define DAGB0_RDCLI11__VIRT_CHAN_MASK 0x00000007L
+#define DAGB0_RDCLI11__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB0_RDCLI11__URG_HIGH_MASK 0x000000F0L
+#define DAGB0_RDCLI11__URG_LOW_MASK 0x00000F00L
+#define DAGB0_RDCLI11__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB0_RDCLI11__MAX_BW_MASK 0x001FE000L
+#define DAGB0_RDCLI11__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB0_RDCLI11__MIN_BW_MASK 0x01C00000L
+#define DAGB0_RDCLI11__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB0_RDCLI11__MAX_OSD_MASK 0xFC000000L
+//DAGB0_RDCLI12
+#define DAGB0_RDCLI12__VIRT_CHAN__SHIFT 0x0
+#define DAGB0_RDCLI12__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB0_RDCLI12__URG_HIGH__SHIFT 0x4
+#define DAGB0_RDCLI12__URG_LOW__SHIFT 0x8
+#define DAGB0_RDCLI12__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB0_RDCLI12__MAX_BW__SHIFT 0xd
+#define DAGB0_RDCLI12__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB0_RDCLI12__MIN_BW__SHIFT 0x16
+#define DAGB0_RDCLI12__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB0_RDCLI12__MAX_OSD__SHIFT 0x1a
+#define DAGB0_RDCLI12__VIRT_CHAN_MASK 0x00000007L
+#define DAGB0_RDCLI12__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB0_RDCLI12__URG_HIGH_MASK 0x000000F0L
+#define DAGB0_RDCLI12__URG_LOW_MASK 0x00000F00L
+#define DAGB0_RDCLI12__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB0_RDCLI12__MAX_BW_MASK 0x001FE000L
+#define DAGB0_RDCLI12__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB0_RDCLI12__MIN_BW_MASK 0x01C00000L
+#define DAGB0_RDCLI12__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB0_RDCLI12__MAX_OSD_MASK 0xFC000000L
+//DAGB0_RDCLI13
+#define DAGB0_RDCLI13__VIRT_CHAN__SHIFT 0x0
+#define DAGB0_RDCLI13__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB0_RDCLI13__URG_HIGH__SHIFT 0x4
+#define DAGB0_RDCLI13__URG_LOW__SHIFT 0x8
+#define DAGB0_RDCLI13__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB0_RDCLI13__MAX_BW__SHIFT 0xd
+#define DAGB0_RDCLI13__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB0_RDCLI13__MIN_BW__SHIFT 0x16
+#define DAGB0_RDCLI13__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB0_RDCLI13__MAX_OSD__SHIFT 0x1a
+#define DAGB0_RDCLI13__VIRT_CHAN_MASK 0x00000007L
+#define DAGB0_RDCLI13__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB0_RDCLI13__URG_HIGH_MASK 0x000000F0L
+#define DAGB0_RDCLI13__URG_LOW_MASK 0x00000F00L
+#define DAGB0_RDCLI13__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB0_RDCLI13__MAX_BW_MASK 0x001FE000L
+#define DAGB0_RDCLI13__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB0_RDCLI13__MIN_BW_MASK 0x01C00000L
+#define DAGB0_RDCLI13__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB0_RDCLI13__MAX_OSD_MASK 0xFC000000L
+//DAGB0_RDCLI14
+#define DAGB0_RDCLI14__VIRT_CHAN__SHIFT 0x0
+#define DAGB0_RDCLI14__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB0_RDCLI14__URG_HIGH__SHIFT 0x4
+#define DAGB0_RDCLI14__URG_LOW__SHIFT 0x8
+#define DAGB0_RDCLI14__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB0_RDCLI14__MAX_BW__SHIFT 0xd
+#define DAGB0_RDCLI14__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB0_RDCLI14__MIN_BW__SHIFT 0x16
+#define DAGB0_RDCLI14__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB0_RDCLI14__MAX_OSD__SHIFT 0x1a
+#define DAGB0_RDCLI14__VIRT_CHAN_MASK 0x00000007L
+#define DAGB0_RDCLI14__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB0_RDCLI14__URG_HIGH_MASK 0x000000F0L
+#define DAGB0_RDCLI14__URG_LOW_MASK 0x00000F00L
+#define DAGB0_RDCLI14__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB0_RDCLI14__MAX_BW_MASK 0x001FE000L
+#define DAGB0_RDCLI14__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB0_RDCLI14__MIN_BW_MASK 0x01C00000L
+#define DAGB0_RDCLI14__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB0_RDCLI14__MAX_OSD_MASK 0xFC000000L
+//DAGB0_RDCLI15
+#define DAGB0_RDCLI15__VIRT_CHAN__SHIFT 0x0
+#define DAGB0_RDCLI15__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB0_RDCLI15__URG_HIGH__SHIFT 0x4
+#define DAGB0_RDCLI15__URG_LOW__SHIFT 0x8
+#define DAGB0_RDCLI15__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB0_RDCLI15__MAX_BW__SHIFT 0xd
+#define DAGB0_RDCLI15__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB0_RDCLI15__MIN_BW__SHIFT 0x16
+#define DAGB0_RDCLI15__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB0_RDCLI15__MAX_OSD__SHIFT 0x1a
+#define DAGB0_RDCLI15__VIRT_CHAN_MASK 0x00000007L
+#define DAGB0_RDCLI15__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB0_RDCLI15__URG_HIGH_MASK 0x000000F0L
+#define DAGB0_RDCLI15__URG_LOW_MASK 0x00000F00L
+#define DAGB0_RDCLI15__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB0_RDCLI15__MAX_BW_MASK 0x001FE000L
+#define DAGB0_RDCLI15__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB0_RDCLI15__MIN_BW_MASK 0x01C00000L
+#define DAGB0_RDCLI15__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB0_RDCLI15__MAX_OSD_MASK 0xFC000000L
+//DAGB0_RD_CNTL
+#define DAGB0_RD_CNTL__SCLK_FREQ__SHIFT 0x0
+#define DAGB0_RD_CNTL__CLI_MAX_BW_WINDOW__SHIFT 0x4
+#define DAGB0_RD_CNTL__VC_MAX_BW_WINDOW__SHIFT 0xa
+#define DAGB0_RD_CNTL__IO_LEVEL_OVERRIDE_ENABLE__SHIFT 0x10
+#define DAGB0_RD_CNTL__IO_LEVEL__SHIFT 0x11
+#define DAGB0_RD_CNTL__IO_LEVEL_COMPLY_VC__SHIFT 0x14
+#define DAGB0_RD_CNTL__SHARE_VC_NUM__SHIFT 0x17
+#define DAGB0_RD_CNTL__FIX_JUMP__SHIFT 0x1a
+#define DAGB0_RD_CNTL__SCLK_FREQ_MASK 0x0000000FL
+#define DAGB0_RD_CNTL__CLI_MAX_BW_WINDOW_MASK 0x000003F0L
+#define DAGB0_RD_CNTL__VC_MAX_BW_WINDOW_MASK 0x0000FC00L
+#define DAGB0_RD_CNTL__IO_LEVEL_OVERRIDE_ENABLE_MASK 0x00010000L
+#define DAGB0_RD_CNTL__IO_LEVEL_MASK 0x000E0000L
+#define DAGB0_RD_CNTL__IO_LEVEL_COMPLY_VC_MASK 0x00700000L
+#define DAGB0_RD_CNTL__SHARE_VC_NUM_MASK 0x03800000L
+#define DAGB0_RD_CNTL__FIX_JUMP_MASK 0x04000000L
+//DAGB0_RD_GMI_CNTL
+#define DAGB0_RD_GMI_CNTL__EA_CREDIT__SHIFT 0x0
+#define DAGB0_RD_GMI_CNTL__LEVEL__SHIFT 0x6
+#define DAGB0_RD_GMI_CNTL__MAX_BURST__SHIFT 0x9
+#define DAGB0_RD_GMI_CNTL__LAZY_TIMER__SHIFT 0xd
+#define DAGB0_RD_GMI_CNTL__EA_CREDIT_MASK 0x0000003FL
+#define DAGB0_RD_GMI_CNTL__LEVEL_MASK 0x000001C0L
+#define DAGB0_RD_GMI_CNTL__MAX_BURST_MASK 0x00001E00L
+#define DAGB0_RD_GMI_CNTL__LAZY_TIMER_MASK 0x0001E000L
+//DAGB0_RD_ADDR_DAGB
+#define DAGB0_RD_ADDR_DAGB__DAGB_ENABLE__SHIFT 0x0
+#define DAGB0_RD_ADDR_DAGB__ENABLE_JUMP_AHEAD__SHIFT 0x3
+#define DAGB0_RD_ADDR_DAGB__DISABLE_SELF_INIT__SHIFT 0x6
+#define DAGB0_RD_ADDR_DAGB__WHOAMI__SHIFT 0x7
+#define DAGB0_RD_ADDR_DAGB__JUMP_MODE__SHIFT 0xd
+#define DAGB0_RD_ADDR_DAGB__DAGB_ENABLE_MASK 0x00000007L
+#define DAGB0_RD_ADDR_DAGB__ENABLE_JUMP_AHEAD_MASK 0x00000038L
+#define DAGB0_RD_ADDR_DAGB__DISABLE_SELF_INIT_MASK 0x00000040L
+#define DAGB0_RD_ADDR_DAGB__WHOAMI_MASK 0x00001F80L
+#define DAGB0_RD_ADDR_DAGB__JUMP_MODE_MASK 0x00002000L
+//DAGB0_RD_OUTPUT_DAGB_MAX_BURST
+#define DAGB0_RD_OUTPUT_DAGB_MAX_BURST__VC0__SHIFT 0x0
+#define DAGB0_RD_OUTPUT_DAGB_MAX_BURST__VC1__SHIFT 0x4
+#define DAGB0_RD_OUTPUT_DAGB_MAX_BURST__VC2__SHIFT 0x8
+#define DAGB0_RD_OUTPUT_DAGB_MAX_BURST__VC3__SHIFT 0xc
+#define DAGB0_RD_OUTPUT_DAGB_MAX_BURST__VC4__SHIFT 0x10
+#define DAGB0_RD_OUTPUT_DAGB_MAX_BURST__VC5__SHIFT 0x14
+#define DAGB0_RD_OUTPUT_DAGB_MAX_BURST__VC6__SHIFT 0x18
+#define DAGB0_RD_OUTPUT_DAGB_MAX_BURST__VC7__SHIFT 0x1c
+#define DAGB0_RD_OUTPUT_DAGB_MAX_BURST__VC0_MASK 0x0000000FL
+#define DAGB0_RD_OUTPUT_DAGB_MAX_BURST__VC1_MASK 0x000000F0L
+#define DAGB0_RD_OUTPUT_DAGB_MAX_BURST__VC2_MASK 0x00000F00L
+#define DAGB0_RD_OUTPUT_DAGB_MAX_BURST__VC3_MASK 0x0000F000L
+#define DAGB0_RD_OUTPUT_DAGB_MAX_BURST__VC4_MASK 0x000F0000L
+#define DAGB0_RD_OUTPUT_DAGB_MAX_BURST__VC5_MASK 0x00F00000L
+#define DAGB0_RD_OUTPUT_DAGB_MAX_BURST__VC6_MASK 0x0F000000L
+#define DAGB0_RD_OUTPUT_DAGB_MAX_BURST__VC7_MASK 0xF0000000L
+//DAGB0_RD_OUTPUT_DAGB_LAZY_TIMER
+#define DAGB0_RD_OUTPUT_DAGB_LAZY_TIMER__VC0__SHIFT 0x0
+#define DAGB0_RD_OUTPUT_DAGB_LAZY_TIMER__VC1__SHIFT 0x4
+#define DAGB0_RD_OUTPUT_DAGB_LAZY_TIMER__VC2__SHIFT 0x8
+#define DAGB0_RD_OUTPUT_DAGB_LAZY_TIMER__VC3__SHIFT 0xc
+#define DAGB0_RD_OUTPUT_DAGB_LAZY_TIMER__VC4__SHIFT 0x10
+#define DAGB0_RD_OUTPUT_DAGB_LAZY_TIMER__VC5__SHIFT 0x14
+#define DAGB0_RD_OUTPUT_DAGB_LAZY_TIMER__VC6__SHIFT 0x18
+#define DAGB0_RD_OUTPUT_DAGB_LAZY_TIMER__VC7__SHIFT 0x1c
+#define DAGB0_RD_OUTPUT_DAGB_LAZY_TIMER__VC0_MASK 0x0000000FL
+#define DAGB0_RD_OUTPUT_DAGB_LAZY_TIMER__VC1_MASK 0x000000F0L
+#define DAGB0_RD_OUTPUT_DAGB_LAZY_TIMER__VC2_MASK 0x00000F00L
+#define DAGB0_RD_OUTPUT_DAGB_LAZY_TIMER__VC3_MASK 0x0000F000L
+#define DAGB0_RD_OUTPUT_DAGB_LAZY_TIMER__VC4_MASK 0x000F0000L
+#define DAGB0_RD_OUTPUT_DAGB_LAZY_TIMER__VC5_MASK 0x00F00000L
+#define DAGB0_RD_OUTPUT_DAGB_LAZY_TIMER__VC6_MASK 0x0F000000L
+#define DAGB0_RD_OUTPUT_DAGB_LAZY_TIMER__VC7_MASK 0xF0000000L
+//DAGB0_RD_CGTT_CLK_CTRL
+#define DAGB0_RD_CGTT_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define DAGB0_RD_CGTT_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define DAGB0_RD_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS__SHIFT 0xc
+#define DAGB0_RD_CGTT_CLK_CTRL__LS_OVERRIDE__SHIFT 0x1e
+#define DAGB0_RD_CGTT_CLK_CTRL__SOFT_OVERRIDE__SHIFT 0x1f
+#define DAGB0_RD_CGTT_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define DAGB0_RD_CGTT_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define DAGB0_RD_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS_MASK 0x0FFFF000L
+#define DAGB0_RD_CGTT_CLK_CTRL__LS_OVERRIDE_MASK 0x40000000L
+#define DAGB0_RD_CGTT_CLK_CTRL__SOFT_OVERRIDE_MASK 0x80000000L
+//DAGB0_L1TLB_RD_CGTT_CLK_CTRL
+#define DAGB0_L1TLB_RD_CGTT_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define DAGB0_L1TLB_RD_CGTT_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define DAGB0_L1TLB_RD_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS__SHIFT 0xc
+#define DAGB0_L1TLB_RD_CGTT_CLK_CTRL__LS_OVERRIDE__SHIFT 0x1e
+#define DAGB0_L1TLB_RD_CGTT_CLK_CTRL__SOFT_OVERRIDE__SHIFT 0x1f
+#define DAGB0_L1TLB_RD_CGTT_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define DAGB0_L1TLB_RD_CGTT_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define DAGB0_L1TLB_RD_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS_MASK 0x0FFFF000L
+#define DAGB0_L1TLB_RD_CGTT_CLK_CTRL__LS_OVERRIDE_MASK 0x40000000L
+#define DAGB0_L1TLB_RD_CGTT_CLK_CTRL__SOFT_OVERRIDE_MASK 0x80000000L
+//DAGB0_ATCVM_RD_CGTT_CLK_CTRL
+#define DAGB0_ATCVM_RD_CGTT_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define DAGB0_ATCVM_RD_CGTT_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define DAGB0_ATCVM_RD_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS__SHIFT 0xc
+#define DAGB0_ATCVM_RD_CGTT_CLK_CTRL__LS_OVERRIDE__SHIFT 0x1e
+#define DAGB0_ATCVM_RD_CGTT_CLK_CTRL__SOFT_OVERRIDE__SHIFT 0x1f
+#define DAGB0_ATCVM_RD_CGTT_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define DAGB0_ATCVM_RD_CGTT_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define DAGB0_ATCVM_RD_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS_MASK 0x0FFFF000L
+#define DAGB0_ATCVM_RD_CGTT_CLK_CTRL__LS_OVERRIDE_MASK 0x40000000L
+#define DAGB0_ATCVM_RD_CGTT_CLK_CTRL__SOFT_OVERRIDE_MASK 0x80000000L
+//DAGB0_RD_ADDR_DAGB_MAX_BURST0
+#define DAGB0_RD_ADDR_DAGB_MAX_BURST0__CLIENT0__SHIFT 0x0
+#define DAGB0_RD_ADDR_DAGB_MAX_BURST0__CLIENT1__SHIFT 0x4
+#define DAGB0_RD_ADDR_DAGB_MAX_BURST0__CLIENT2__SHIFT 0x8
+#define DAGB0_RD_ADDR_DAGB_MAX_BURST0__CLIENT3__SHIFT 0xc
+#define DAGB0_RD_ADDR_DAGB_MAX_BURST0__CLIENT4__SHIFT 0x10
+#define DAGB0_RD_ADDR_DAGB_MAX_BURST0__CLIENT5__SHIFT 0x14
+#define DAGB0_RD_ADDR_DAGB_MAX_BURST0__CLIENT6__SHIFT 0x18
+#define DAGB0_RD_ADDR_DAGB_MAX_BURST0__CLIENT7__SHIFT 0x1c
+#define DAGB0_RD_ADDR_DAGB_MAX_BURST0__CLIENT0_MASK 0x0000000FL
+#define DAGB0_RD_ADDR_DAGB_MAX_BURST0__CLIENT1_MASK 0x000000F0L
+#define DAGB0_RD_ADDR_DAGB_MAX_BURST0__CLIENT2_MASK 0x00000F00L
+#define DAGB0_RD_ADDR_DAGB_MAX_BURST0__CLIENT3_MASK 0x0000F000L
+#define DAGB0_RD_ADDR_DAGB_MAX_BURST0__CLIENT4_MASK 0x000F0000L
+#define DAGB0_RD_ADDR_DAGB_MAX_BURST0__CLIENT5_MASK 0x00F00000L
+#define DAGB0_RD_ADDR_DAGB_MAX_BURST0__CLIENT6_MASK 0x0F000000L
+#define DAGB0_RD_ADDR_DAGB_MAX_BURST0__CLIENT7_MASK 0xF0000000L
+//DAGB0_RD_ADDR_DAGB_LAZY_TIMER0
+#define DAGB0_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT0__SHIFT 0x0
+#define DAGB0_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT1__SHIFT 0x4
+#define DAGB0_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT2__SHIFT 0x8
+#define DAGB0_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT3__SHIFT 0xc
+#define DAGB0_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT4__SHIFT 0x10
+#define DAGB0_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT5__SHIFT 0x14
+#define DAGB0_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT6__SHIFT 0x18
+#define DAGB0_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT7__SHIFT 0x1c
+#define DAGB0_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT0_MASK 0x0000000FL
+#define DAGB0_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT1_MASK 0x000000F0L
+#define DAGB0_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT2_MASK 0x00000F00L
+#define DAGB0_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT3_MASK 0x0000F000L
+#define DAGB0_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT4_MASK 0x000F0000L
+#define DAGB0_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT5_MASK 0x00F00000L
+#define DAGB0_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT6_MASK 0x0F000000L
+#define DAGB0_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT7_MASK 0xF0000000L
+//DAGB0_RD_ADDR_DAGB_MAX_BURST1
+#define DAGB0_RD_ADDR_DAGB_MAX_BURST1__CLIENT8__SHIFT 0x0
+#define DAGB0_RD_ADDR_DAGB_MAX_BURST1__CLIENT9__SHIFT 0x4
+#define DAGB0_RD_ADDR_DAGB_MAX_BURST1__CLIENT10__SHIFT 0x8
+#define DAGB0_RD_ADDR_DAGB_MAX_BURST1__CLIENT11__SHIFT 0xc
+#define DAGB0_RD_ADDR_DAGB_MAX_BURST1__CLIENT12__SHIFT 0x10
+#define DAGB0_RD_ADDR_DAGB_MAX_BURST1__CLIENT13__SHIFT 0x14
+#define DAGB0_RD_ADDR_DAGB_MAX_BURST1__CLIENT14__SHIFT 0x18
+#define DAGB0_RD_ADDR_DAGB_MAX_BURST1__CLIENT15__SHIFT 0x1c
+#define DAGB0_RD_ADDR_DAGB_MAX_BURST1__CLIENT8_MASK 0x0000000FL
+#define DAGB0_RD_ADDR_DAGB_MAX_BURST1__CLIENT9_MASK 0x000000F0L
+#define DAGB0_RD_ADDR_DAGB_MAX_BURST1__CLIENT10_MASK 0x00000F00L
+#define DAGB0_RD_ADDR_DAGB_MAX_BURST1__CLIENT11_MASK 0x0000F000L
+#define DAGB0_RD_ADDR_DAGB_MAX_BURST1__CLIENT12_MASK 0x000F0000L
+#define DAGB0_RD_ADDR_DAGB_MAX_BURST1__CLIENT13_MASK 0x00F00000L
+#define DAGB0_RD_ADDR_DAGB_MAX_BURST1__CLIENT14_MASK 0x0F000000L
+#define DAGB0_RD_ADDR_DAGB_MAX_BURST1__CLIENT15_MASK 0xF0000000L
+//DAGB0_RD_ADDR_DAGB_LAZY_TIMER1
+#define DAGB0_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT8__SHIFT 0x0
+#define DAGB0_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT9__SHIFT 0x4
+#define DAGB0_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT10__SHIFT 0x8
+#define DAGB0_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT11__SHIFT 0xc
+#define DAGB0_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT12__SHIFT 0x10
+#define DAGB0_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT13__SHIFT 0x14
+#define DAGB0_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT14__SHIFT 0x18
+#define DAGB0_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT15__SHIFT 0x1c
+#define DAGB0_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT8_MASK 0x0000000FL
+#define DAGB0_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT9_MASK 0x000000F0L
+#define DAGB0_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT10_MASK 0x00000F00L
+#define DAGB0_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT11_MASK 0x0000F000L
+#define DAGB0_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT12_MASK 0x000F0000L
+#define DAGB0_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT13_MASK 0x00F00000L
+#define DAGB0_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT14_MASK 0x0F000000L
+#define DAGB0_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT15_MASK 0xF0000000L
+//DAGB0_RD_VC0_CNTL
+#define DAGB0_RD_VC0_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB0_RD_VC0_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB0_RD_VC0_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB0_RD_VC0_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB0_RD_VC0_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB0_RD_VC0_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB0_RD_VC0_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB0_RD_VC0_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB0_RD_VC0_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB0_RD_VC0_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB0_RD_VC0_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB0_RD_VC0_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB0_RD_VC0_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB0_RD_VC0_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB0_RD_VC0_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB0_RD_VC0_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB0_RD_VC1_CNTL
+#define DAGB0_RD_VC1_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB0_RD_VC1_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB0_RD_VC1_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB0_RD_VC1_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB0_RD_VC1_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB0_RD_VC1_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB0_RD_VC1_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB0_RD_VC1_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB0_RD_VC1_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB0_RD_VC1_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB0_RD_VC1_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB0_RD_VC1_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB0_RD_VC1_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB0_RD_VC1_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB0_RD_VC1_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB0_RD_VC1_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB0_RD_VC2_CNTL
+#define DAGB0_RD_VC2_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB0_RD_VC2_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB0_RD_VC2_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB0_RD_VC2_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB0_RD_VC2_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB0_RD_VC2_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB0_RD_VC2_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB0_RD_VC2_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB0_RD_VC2_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB0_RD_VC2_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB0_RD_VC2_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB0_RD_VC2_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB0_RD_VC2_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB0_RD_VC2_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB0_RD_VC2_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB0_RD_VC2_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB0_RD_VC3_CNTL
+#define DAGB0_RD_VC3_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB0_RD_VC3_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB0_RD_VC3_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB0_RD_VC3_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB0_RD_VC3_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB0_RD_VC3_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB0_RD_VC3_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB0_RD_VC3_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB0_RD_VC3_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB0_RD_VC3_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB0_RD_VC3_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB0_RD_VC3_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB0_RD_VC3_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB0_RD_VC3_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB0_RD_VC3_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB0_RD_VC3_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB0_RD_VC4_CNTL
+#define DAGB0_RD_VC4_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB0_RD_VC4_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB0_RD_VC4_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB0_RD_VC4_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB0_RD_VC4_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB0_RD_VC4_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB0_RD_VC4_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB0_RD_VC4_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB0_RD_VC4_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB0_RD_VC4_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB0_RD_VC4_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB0_RD_VC4_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB0_RD_VC4_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB0_RD_VC4_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB0_RD_VC4_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB0_RD_VC4_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB0_RD_VC5_CNTL
+#define DAGB0_RD_VC5_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB0_RD_VC5_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB0_RD_VC5_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB0_RD_VC5_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB0_RD_VC5_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB0_RD_VC5_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB0_RD_VC5_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB0_RD_VC5_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB0_RD_VC5_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB0_RD_VC5_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB0_RD_VC5_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB0_RD_VC5_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB0_RD_VC5_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB0_RD_VC5_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB0_RD_VC5_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB0_RD_VC5_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB0_RD_VC6_CNTL
+#define DAGB0_RD_VC6_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB0_RD_VC6_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB0_RD_VC6_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB0_RD_VC6_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB0_RD_VC6_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB0_RD_VC6_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB0_RD_VC6_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB0_RD_VC6_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB0_RD_VC6_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB0_RD_VC6_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB0_RD_VC6_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB0_RD_VC6_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB0_RD_VC6_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB0_RD_VC6_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB0_RD_VC6_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB0_RD_VC6_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB0_RD_VC7_CNTL
+#define DAGB0_RD_VC7_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB0_RD_VC7_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB0_RD_VC7_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB0_RD_VC7_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB0_RD_VC7_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB0_RD_VC7_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB0_RD_VC7_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB0_RD_VC7_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB0_RD_VC7_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB0_RD_VC7_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB0_RD_VC7_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB0_RD_VC7_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB0_RD_VC7_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB0_RD_VC7_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB0_RD_VC7_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB0_RD_VC7_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB0_RD_CNTL_MISC
+#define DAGB0_RD_CNTL_MISC__STOR_POOL_CREDIT__SHIFT 0x0
+#define DAGB0_RD_CNTL_MISC__EA_POOL_CREDIT__SHIFT 0x6
+#define DAGB0_RD_CNTL_MISC__IO_EA_CREDIT__SHIFT 0xd
+#define DAGB0_RD_CNTL_MISC__STOR_CC_NEW_MODE__SHIFT 0x13
+#define DAGB0_RD_CNTL_MISC__EA_CC_LEGACY_MODE__SHIFT 0x14
+#define DAGB0_RD_CNTL_MISC__UTCL2_CID__SHIFT 0x15
+#define DAGB0_RD_CNTL_MISC__RDRET_FIFO_CREDITS__SHIFT 0x1a
+#define DAGB0_RD_CNTL_MISC__STOR_POOL_CREDIT_MASK 0x0000003FL
+#define DAGB0_RD_CNTL_MISC__EA_POOL_CREDIT_MASK 0x00001FC0L
+#define DAGB0_RD_CNTL_MISC__IO_EA_CREDIT_MASK 0x0007E000L
+#define DAGB0_RD_CNTL_MISC__STOR_CC_NEW_MODE_MASK 0x00080000L
+#define DAGB0_RD_CNTL_MISC__EA_CC_LEGACY_MODE_MASK 0x00100000L
+#define DAGB0_RD_CNTL_MISC__UTCL2_CID_MASK 0x03E00000L
+#define DAGB0_RD_CNTL_MISC__RDRET_FIFO_CREDITS_MASK 0xFC000000L
+//DAGB0_RD_TLB_CREDIT
+#define DAGB0_RD_TLB_CREDIT__TLB0__SHIFT 0x0
+#define DAGB0_RD_TLB_CREDIT__TLB1__SHIFT 0x5
+#define DAGB0_RD_TLB_CREDIT__TLB2__SHIFT 0xa
+#define DAGB0_RD_TLB_CREDIT__TLB3__SHIFT 0xf
+#define DAGB0_RD_TLB_CREDIT__TLB4__SHIFT 0x14
+#define DAGB0_RD_TLB_CREDIT__TLB5__SHIFT 0x19
+#define DAGB0_RD_TLB_CREDIT__TLB0_MASK 0x0000001FL
+#define DAGB0_RD_TLB_CREDIT__TLB1_MASK 0x000003E0L
+#define DAGB0_RD_TLB_CREDIT__TLB2_MASK 0x00007C00L
+#define DAGB0_RD_TLB_CREDIT__TLB3_MASK 0x000F8000L
+#define DAGB0_RD_TLB_CREDIT__TLB4_MASK 0x01F00000L
+#define DAGB0_RD_TLB_CREDIT__TLB5_MASK 0x3E000000L
+//DAGB0_RD_RDRET_CREDIT_CNTL
+#define DAGB0_RD_RDRET_CREDIT_CNTL__VC0_CREDIT__SHIFT 0x0
+#define DAGB0_RD_RDRET_CREDIT_CNTL__VC1_CREDIT__SHIFT 0x6
+#define DAGB0_RD_RDRET_CREDIT_CNTL__VC2_CREDIT__SHIFT 0xc
+#define DAGB0_RD_RDRET_CREDIT_CNTL__VC3_CREDIT__SHIFT 0x12
+#define DAGB0_RD_RDRET_CREDIT_CNTL__VC4_CREDIT__SHIFT 0x18
+#define DAGB0_RD_RDRET_CREDIT_CNTL__VC_MODE__SHIFT 0x1e
+#define DAGB0_RD_RDRET_CREDIT_CNTL__FIX_EQ__SHIFT 0x1f
+#define DAGB0_RD_RDRET_CREDIT_CNTL__VC0_CREDIT_MASK 0x0000003FL
+#define DAGB0_RD_RDRET_CREDIT_CNTL__VC1_CREDIT_MASK 0x00000FC0L
+#define DAGB0_RD_RDRET_CREDIT_CNTL__VC2_CREDIT_MASK 0x0003F000L
+#define DAGB0_RD_RDRET_CREDIT_CNTL__VC3_CREDIT_MASK 0x00FC0000L
+#define DAGB0_RD_RDRET_CREDIT_CNTL__VC4_CREDIT_MASK 0x3F000000L
+#define DAGB0_RD_RDRET_CREDIT_CNTL__VC_MODE_MASK 0x40000000L
+#define DAGB0_RD_RDRET_CREDIT_CNTL__FIX_EQ_MASK 0x80000000L
+//DAGB0_RD_RDRET_CREDIT_CNTL2
+#define DAGB0_RD_RDRET_CREDIT_CNTL2__IO_CREDIT__SHIFT 0x0
+#define DAGB0_RD_RDRET_CREDIT_CNTL2__GMI_CREDIT__SHIFT 0x6
+#define DAGB0_RD_RDRET_CREDIT_CNTL2__POOL_CREDIT__SHIFT 0xc
+#define DAGB0_RD_RDRET_CREDIT_CNTL2__IO_CREDIT_MASK 0x0000003FL
+#define DAGB0_RD_RDRET_CREDIT_CNTL2__GMI_CREDIT_MASK 0x00000FC0L
+#define DAGB0_RD_RDRET_CREDIT_CNTL2__POOL_CREDIT_MASK 0x0007F000L
+//DAGB0_RDCLI_ASK_PENDING
+#define DAGB0_RDCLI_ASK_PENDING__BUSY__SHIFT 0x0
+#define DAGB0_RDCLI_ASK_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB0_RDCLI_GO_PENDING
+#define DAGB0_RDCLI_GO_PENDING__BUSY__SHIFT 0x0
+#define DAGB0_RDCLI_GO_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB0_RDCLI_GBLSEND_PENDING
+#define DAGB0_RDCLI_GBLSEND_PENDING__BUSY__SHIFT 0x0
+#define DAGB0_RDCLI_GBLSEND_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB0_RDCLI_TLB_PENDING
+#define DAGB0_RDCLI_TLB_PENDING__BUSY__SHIFT 0x0
+#define DAGB0_RDCLI_TLB_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB0_RDCLI_OARB_PENDING
+#define DAGB0_RDCLI_OARB_PENDING__BUSY__SHIFT 0x0
+#define DAGB0_RDCLI_OARB_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB0_RDCLI_OSD_PENDING
+#define DAGB0_RDCLI_OSD_PENDING__BUSY__SHIFT 0x0
+#define DAGB0_RDCLI_OSD_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB0_RDCLI_NOALLOC_OVERRIDE
+#define DAGB0_RDCLI_NOALLOC_OVERRIDE__ENABLE__SHIFT 0x0
+#define DAGB0_RDCLI_NOALLOC_OVERRIDE__ENABLE_MASK 0x0000FFFFL
+//DAGB0_RDCLI_NOALLOC_OVERRIDE_VALUE
+#define DAGB0_RDCLI_NOALLOC_OVERRIDE_VALUE__VALUE__SHIFT 0x0
+#define DAGB0_RDCLI_NOALLOC_OVERRIDE_VALUE__VALUE_MASK 0x0000FFFFL
+//DAGB0_WRCLI0
+#define DAGB0_WRCLI0__VIRT_CHAN__SHIFT 0x0
+#define DAGB0_WRCLI0__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB0_WRCLI0__URG_HIGH__SHIFT 0x4
+#define DAGB0_WRCLI0__URG_LOW__SHIFT 0x8
+#define DAGB0_WRCLI0__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB0_WRCLI0__MAX_BW__SHIFT 0xd
+#define DAGB0_WRCLI0__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB0_WRCLI0__MIN_BW__SHIFT 0x16
+#define DAGB0_WRCLI0__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB0_WRCLI0__MAX_OSD__SHIFT 0x1a
+#define DAGB0_WRCLI0__VIRT_CHAN_MASK 0x00000007L
+#define DAGB0_WRCLI0__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB0_WRCLI0__URG_HIGH_MASK 0x000000F0L
+#define DAGB0_WRCLI0__URG_LOW_MASK 0x00000F00L
+#define DAGB0_WRCLI0__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB0_WRCLI0__MAX_BW_MASK 0x001FE000L
+#define DAGB0_WRCLI0__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB0_WRCLI0__MIN_BW_MASK 0x01C00000L
+#define DAGB0_WRCLI0__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB0_WRCLI0__MAX_OSD_MASK 0xFC000000L
+//DAGB0_WRCLI1
+#define DAGB0_WRCLI1__VIRT_CHAN__SHIFT 0x0
+#define DAGB0_WRCLI1__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB0_WRCLI1__URG_HIGH__SHIFT 0x4
+#define DAGB0_WRCLI1__URG_LOW__SHIFT 0x8
+#define DAGB0_WRCLI1__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB0_WRCLI1__MAX_BW__SHIFT 0xd
+#define DAGB0_WRCLI1__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB0_WRCLI1__MIN_BW__SHIFT 0x16
+#define DAGB0_WRCLI1__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB0_WRCLI1__MAX_OSD__SHIFT 0x1a
+#define DAGB0_WRCLI1__VIRT_CHAN_MASK 0x00000007L
+#define DAGB0_WRCLI1__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB0_WRCLI1__URG_HIGH_MASK 0x000000F0L
+#define DAGB0_WRCLI1__URG_LOW_MASK 0x00000F00L
+#define DAGB0_WRCLI1__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB0_WRCLI1__MAX_BW_MASK 0x001FE000L
+#define DAGB0_WRCLI1__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB0_WRCLI1__MIN_BW_MASK 0x01C00000L
+#define DAGB0_WRCLI1__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB0_WRCLI1__MAX_OSD_MASK 0xFC000000L
+//DAGB0_WRCLI2
+#define DAGB0_WRCLI2__VIRT_CHAN__SHIFT 0x0
+#define DAGB0_WRCLI2__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB0_WRCLI2__URG_HIGH__SHIFT 0x4
+#define DAGB0_WRCLI2__URG_LOW__SHIFT 0x8
+#define DAGB0_WRCLI2__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB0_WRCLI2__MAX_BW__SHIFT 0xd
+#define DAGB0_WRCLI2__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB0_WRCLI2__MIN_BW__SHIFT 0x16
+#define DAGB0_WRCLI2__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB0_WRCLI2__MAX_OSD__SHIFT 0x1a
+#define DAGB0_WRCLI2__VIRT_CHAN_MASK 0x00000007L
+#define DAGB0_WRCLI2__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB0_WRCLI2__URG_HIGH_MASK 0x000000F0L
+#define DAGB0_WRCLI2__URG_LOW_MASK 0x00000F00L
+#define DAGB0_WRCLI2__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB0_WRCLI2__MAX_BW_MASK 0x001FE000L
+#define DAGB0_WRCLI2__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB0_WRCLI2__MIN_BW_MASK 0x01C00000L
+#define DAGB0_WRCLI2__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB0_WRCLI2__MAX_OSD_MASK 0xFC000000L
+//DAGB0_WRCLI3
+#define DAGB0_WRCLI3__VIRT_CHAN__SHIFT 0x0
+#define DAGB0_WRCLI3__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB0_WRCLI3__URG_HIGH__SHIFT 0x4
+#define DAGB0_WRCLI3__URG_LOW__SHIFT 0x8
+#define DAGB0_WRCLI3__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB0_WRCLI3__MAX_BW__SHIFT 0xd
+#define DAGB0_WRCLI3__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB0_WRCLI3__MIN_BW__SHIFT 0x16
+#define DAGB0_WRCLI3__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB0_WRCLI3__MAX_OSD__SHIFT 0x1a
+#define DAGB0_WRCLI3__VIRT_CHAN_MASK 0x00000007L
+#define DAGB0_WRCLI3__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB0_WRCLI3__URG_HIGH_MASK 0x000000F0L
+#define DAGB0_WRCLI3__URG_LOW_MASK 0x00000F00L
+#define DAGB0_WRCLI3__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB0_WRCLI3__MAX_BW_MASK 0x001FE000L
+#define DAGB0_WRCLI3__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB0_WRCLI3__MIN_BW_MASK 0x01C00000L
+#define DAGB0_WRCLI3__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB0_WRCLI3__MAX_OSD_MASK 0xFC000000L
+//DAGB0_WRCLI4
+#define DAGB0_WRCLI4__VIRT_CHAN__SHIFT 0x0
+#define DAGB0_WRCLI4__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB0_WRCLI4__URG_HIGH__SHIFT 0x4
+#define DAGB0_WRCLI4__URG_LOW__SHIFT 0x8
+#define DAGB0_WRCLI4__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB0_WRCLI4__MAX_BW__SHIFT 0xd
+#define DAGB0_WRCLI4__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB0_WRCLI4__MIN_BW__SHIFT 0x16
+#define DAGB0_WRCLI4__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB0_WRCLI4__MAX_OSD__SHIFT 0x1a
+#define DAGB0_WRCLI4__VIRT_CHAN_MASK 0x00000007L
+#define DAGB0_WRCLI4__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB0_WRCLI4__URG_HIGH_MASK 0x000000F0L
+#define DAGB0_WRCLI4__URG_LOW_MASK 0x00000F00L
+#define DAGB0_WRCLI4__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB0_WRCLI4__MAX_BW_MASK 0x001FE000L
+#define DAGB0_WRCLI4__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB0_WRCLI4__MIN_BW_MASK 0x01C00000L
+#define DAGB0_WRCLI4__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB0_WRCLI4__MAX_OSD_MASK 0xFC000000L
+//DAGB0_WRCLI5
+#define DAGB0_WRCLI5__VIRT_CHAN__SHIFT 0x0
+#define DAGB0_WRCLI5__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB0_WRCLI5__URG_HIGH__SHIFT 0x4
+#define DAGB0_WRCLI5__URG_LOW__SHIFT 0x8
+#define DAGB0_WRCLI5__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB0_WRCLI5__MAX_BW__SHIFT 0xd
+#define DAGB0_WRCLI5__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB0_WRCLI5__MIN_BW__SHIFT 0x16
+#define DAGB0_WRCLI5__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB0_WRCLI5__MAX_OSD__SHIFT 0x1a
+#define DAGB0_WRCLI5__VIRT_CHAN_MASK 0x00000007L
+#define DAGB0_WRCLI5__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB0_WRCLI5__URG_HIGH_MASK 0x000000F0L
+#define DAGB0_WRCLI5__URG_LOW_MASK 0x00000F00L
+#define DAGB0_WRCLI5__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB0_WRCLI5__MAX_BW_MASK 0x001FE000L
+#define DAGB0_WRCLI5__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB0_WRCLI5__MIN_BW_MASK 0x01C00000L
+#define DAGB0_WRCLI5__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB0_WRCLI5__MAX_OSD_MASK 0xFC000000L
+//DAGB0_WRCLI6
+#define DAGB0_WRCLI6__VIRT_CHAN__SHIFT 0x0
+#define DAGB0_WRCLI6__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB0_WRCLI6__URG_HIGH__SHIFT 0x4
+#define DAGB0_WRCLI6__URG_LOW__SHIFT 0x8
+#define DAGB0_WRCLI6__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB0_WRCLI6__MAX_BW__SHIFT 0xd
+#define DAGB0_WRCLI6__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB0_WRCLI6__MIN_BW__SHIFT 0x16
+#define DAGB0_WRCLI6__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB0_WRCLI6__MAX_OSD__SHIFT 0x1a
+#define DAGB0_WRCLI6__VIRT_CHAN_MASK 0x00000007L
+#define DAGB0_WRCLI6__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB0_WRCLI6__URG_HIGH_MASK 0x000000F0L
+#define DAGB0_WRCLI6__URG_LOW_MASK 0x00000F00L
+#define DAGB0_WRCLI6__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB0_WRCLI6__MAX_BW_MASK 0x001FE000L
+#define DAGB0_WRCLI6__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB0_WRCLI6__MIN_BW_MASK 0x01C00000L
+#define DAGB0_WRCLI6__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB0_WRCLI6__MAX_OSD_MASK 0xFC000000L
+//DAGB0_WRCLI7
+#define DAGB0_WRCLI7__VIRT_CHAN__SHIFT 0x0
+#define DAGB0_WRCLI7__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB0_WRCLI7__URG_HIGH__SHIFT 0x4
+#define DAGB0_WRCLI7__URG_LOW__SHIFT 0x8
+#define DAGB0_WRCLI7__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB0_WRCLI7__MAX_BW__SHIFT 0xd
+#define DAGB0_WRCLI7__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB0_WRCLI7__MIN_BW__SHIFT 0x16
+#define DAGB0_WRCLI7__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB0_WRCLI7__MAX_OSD__SHIFT 0x1a
+#define DAGB0_WRCLI7__VIRT_CHAN_MASK 0x00000007L
+#define DAGB0_WRCLI7__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB0_WRCLI7__URG_HIGH_MASK 0x000000F0L
+#define DAGB0_WRCLI7__URG_LOW_MASK 0x00000F00L
+#define DAGB0_WRCLI7__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB0_WRCLI7__MAX_BW_MASK 0x001FE000L
+#define DAGB0_WRCLI7__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB0_WRCLI7__MIN_BW_MASK 0x01C00000L
+#define DAGB0_WRCLI7__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB0_WRCLI7__MAX_OSD_MASK 0xFC000000L
+//DAGB0_WRCLI8
+#define DAGB0_WRCLI8__VIRT_CHAN__SHIFT 0x0
+#define DAGB0_WRCLI8__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB0_WRCLI8__URG_HIGH__SHIFT 0x4
+#define DAGB0_WRCLI8__URG_LOW__SHIFT 0x8
+#define DAGB0_WRCLI8__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB0_WRCLI8__MAX_BW__SHIFT 0xd
+#define DAGB0_WRCLI8__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB0_WRCLI8__MIN_BW__SHIFT 0x16
+#define DAGB0_WRCLI8__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB0_WRCLI8__MAX_OSD__SHIFT 0x1a
+#define DAGB0_WRCLI8__VIRT_CHAN_MASK 0x00000007L
+#define DAGB0_WRCLI8__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB0_WRCLI8__URG_HIGH_MASK 0x000000F0L
+#define DAGB0_WRCLI8__URG_LOW_MASK 0x00000F00L
+#define DAGB0_WRCLI8__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB0_WRCLI8__MAX_BW_MASK 0x001FE000L
+#define DAGB0_WRCLI8__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB0_WRCLI8__MIN_BW_MASK 0x01C00000L
+#define DAGB0_WRCLI8__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB0_WRCLI8__MAX_OSD_MASK 0xFC000000L
+//DAGB0_WRCLI9
+#define DAGB0_WRCLI9__VIRT_CHAN__SHIFT 0x0
+#define DAGB0_WRCLI9__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB0_WRCLI9__URG_HIGH__SHIFT 0x4
+#define DAGB0_WRCLI9__URG_LOW__SHIFT 0x8
+#define DAGB0_WRCLI9__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB0_WRCLI9__MAX_BW__SHIFT 0xd
+#define DAGB0_WRCLI9__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB0_WRCLI9__MIN_BW__SHIFT 0x16
+#define DAGB0_WRCLI9__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB0_WRCLI9__MAX_OSD__SHIFT 0x1a
+#define DAGB0_WRCLI9__VIRT_CHAN_MASK 0x00000007L
+#define DAGB0_WRCLI9__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB0_WRCLI9__URG_HIGH_MASK 0x000000F0L
+#define DAGB0_WRCLI9__URG_LOW_MASK 0x00000F00L
+#define DAGB0_WRCLI9__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB0_WRCLI9__MAX_BW_MASK 0x001FE000L
+#define DAGB0_WRCLI9__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB0_WRCLI9__MIN_BW_MASK 0x01C00000L
+#define DAGB0_WRCLI9__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB0_WRCLI9__MAX_OSD_MASK 0xFC000000L
+//DAGB0_WRCLI10
+#define DAGB0_WRCLI10__VIRT_CHAN__SHIFT 0x0
+#define DAGB0_WRCLI10__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB0_WRCLI10__URG_HIGH__SHIFT 0x4
+#define DAGB0_WRCLI10__URG_LOW__SHIFT 0x8
+#define DAGB0_WRCLI10__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB0_WRCLI10__MAX_BW__SHIFT 0xd
+#define DAGB0_WRCLI10__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB0_WRCLI10__MIN_BW__SHIFT 0x16
+#define DAGB0_WRCLI10__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB0_WRCLI10__MAX_OSD__SHIFT 0x1a
+#define DAGB0_WRCLI10__VIRT_CHAN_MASK 0x00000007L
+#define DAGB0_WRCLI10__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB0_WRCLI10__URG_HIGH_MASK 0x000000F0L
+#define DAGB0_WRCLI10__URG_LOW_MASK 0x00000F00L
+#define DAGB0_WRCLI10__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB0_WRCLI10__MAX_BW_MASK 0x001FE000L
+#define DAGB0_WRCLI10__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB0_WRCLI10__MIN_BW_MASK 0x01C00000L
+#define DAGB0_WRCLI10__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB0_WRCLI10__MAX_OSD_MASK 0xFC000000L
+//DAGB0_WRCLI11
+#define DAGB0_WRCLI11__VIRT_CHAN__SHIFT 0x0
+#define DAGB0_WRCLI11__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB0_WRCLI11__URG_HIGH__SHIFT 0x4
+#define DAGB0_WRCLI11__URG_LOW__SHIFT 0x8
+#define DAGB0_WRCLI11__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB0_WRCLI11__MAX_BW__SHIFT 0xd
+#define DAGB0_WRCLI11__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB0_WRCLI11__MIN_BW__SHIFT 0x16
+#define DAGB0_WRCLI11__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB0_WRCLI11__MAX_OSD__SHIFT 0x1a
+#define DAGB0_WRCLI11__VIRT_CHAN_MASK 0x00000007L
+#define DAGB0_WRCLI11__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB0_WRCLI11__URG_HIGH_MASK 0x000000F0L
+#define DAGB0_WRCLI11__URG_LOW_MASK 0x00000F00L
+#define DAGB0_WRCLI11__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB0_WRCLI11__MAX_BW_MASK 0x001FE000L
+#define DAGB0_WRCLI11__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB0_WRCLI11__MIN_BW_MASK 0x01C00000L
+#define DAGB0_WRCLI11__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB0_WRCLI11__MAX_OSD_MASK 0xFC000000L
+//DAGB0_WRCLI12
+#define DAGB0_WRCLI12__VIRT_CHAN__SHIFT 0x0
+#define DAGB0_WRCLI12__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB0_WRCLI12__URG_HIGH__SHIFT 0x4
+#define DAGB0_WRCLI12__URG_LOW__SHIFT 0x8
+#define DAGB0_WRCLI12__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB0_WRCLI12__MAX_BW__SHIFT 0xd
+#define DAGB0_WRCLI12__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB0_WRCLI12__MIN_BW__SHIFT 0x16
+#define DAGB0_WRCLI12__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB0_WRCLI12__MAX_OSD__SHIFT 0x1a
+#define DAGB0_WRCLI12__VIRT_CHAN_MASK 0x00000007L
+#define DAGB0_WRCLI12__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB0_WRCLI12__URG_HIGH_MASK 0x000000F0L
+#define DAGB0_WRCLI12__URG_LOW_MASK 0x00000F00L
+#define DAGB0_WRCLI12__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB0_WRCLI12__MAX_BW_MASK 0x001FE000L
+#define DAGB0_WRCLI12__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB0_WRCLI12__MIN_BW_MASK 0x01C00000L
+#define DAGB0_WRCLI12__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB0_WRCLI12__MAX_OSD_MASK 0xFC000000L
+//DAGB0_WRCLI13
+#define DAGB0_WRCLI13__VIRT_CHAN__SHIFT 0x0
+#define DAGB0_WRCLI13__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB0_WRCLI13__URG_HIGH__SHIFT 0x4
+#define DAGB0_WRCLI13__URG_LOW__SHIFT 0x8
+#define DAGB0_WRCLI13__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB0_WRCLI13__MAX_BW__SHIFT 0xd
+#define DAGB0_WRCLI13__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB0_WRCLI13__MIN_BW__SHIFT 0x16
+#define DAGB0_WRCLI13__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB0_WRCLI13__MAX_OSD__SHIFT 0x1a
+#define DAGB0_WRCLI13__VIRT_CHAN_MASK 0x00000007L
+#define DAGB0_WRCLI13__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB0_WRCLI13__URG_HIGH_MASK 0x000000F0L
+#define DAGB0_WRCLI13__URG_LOW_MASK 0x00000F00L
+#define DAGB0_WRCLI13__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB0_WRCLI13__MAX_BW_MASK 0x001FE000L
+#define DAGB0_WRCLI13__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB0_WRCLI13__MIN_BW_MASK 0x01C00000L
+#define DAGB0_WRCLI13__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB0_WRCLI13__MAX_OSD_MASK 0xFC000000L
+//DAGB0_WRCLI14
+#define DAGB0_WRCLI14__VIRT_CHAN__SHIFT 0x0
+#define DAGB0_WRCLI14__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB0_WRCLI14__URG_HIGH__SHIFT 0x4
+#define DAGB0_WRCLI14__URG_LOW__SHIFT 0x8
+#define DAGB0_WRCLI14__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB0_WRCLI14__MAX_BW__SHIFT 0xd
+#define DAGB0_WRCLI14__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB0_WRCLI14__MIN_BW__SHIFT 0x16
+#define DAGB0_WRCLI14__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB0_WRCLI14__MAX_OSD__SHIFT 0x1a
+#define DAGB0_WRCLI14__VIRT_CHAN_MASK 0x00000007L
+#define DAGB0_WRCLI14__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB0_WRCLI14__URG_HIGH_MASK 0x000000F0L
+#define DAGB0_WRCLI14__URG_LOW_MASK 0x00000F00L
+#define DAGB0_WRCLI14__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB0_WRCLI14__MAX_BW_MASK 0x001FE000L
+#define DAGB0_WRCLI14__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB0_WRCLI14__MIN_BW_MASK 0x01C00000L
+#define DAGB0_WRCLI14__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB0_WRCLI14__MAX_OSD_MASK 0xFC000000L
+//DAGB0_WRCLI15
+#define DAGB0_WRCLI15__VIRT_CHAN__SHIFT 0x0
+#define DAGB0_WRCLI15__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB0_WRCLI15__URG_HIGH__SHIFT 0x4
+#define DAGB0_WRCLI15__URG_LOW__SHIFT 0x8
+#define DAGB0_WRCLI15__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB0_WRCLI15__MAX_BW__SHIFT 0xd
+#define DAGB0_WRCLI15__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB0_WRCLI15__MIN_BW__SHIFT 0x16
+#define DAGB0_WRCLI15__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB0_WRCLI15__MAX_OSD__SHIFT 0x1a
+#define DAGB0_WRCLI15__VIRT_CHAN_MASK 0x00000007L
+#define DAGB0_WRCLI15__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB0_WRCLI15__URG_HIGH_MASK 0x000000F0L
+#define DAGB0_WRCLI15__URG_LOW_MASK 0x00000F00L
+#define DAGB0_WRCLI15__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB0_WRCLI15__MAX_BW_MASK 0x001FE000L
+#define DAGB0_WRCLI15__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB0_WRCLI15__MIN_BW_MASK 0x01C00000L
+#define DAGB0_WRCLI15__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB0_WRCLI15__MAX_OSD_MASK 0xFC000000L
+//DAGB0_WR_CNTL
+#define DAGB0_WR_CNTL__SCLK_FREQ__SHIFT 0x0
+#define DAGB0_WR_CNTL__CLI_MAX_BW_WINDOW__SHIFT 0x4
+#define DAGB0_WR_CNTL__VC_MAX_BW_WINDOW__SHIFT 0xa
+#define DAGB0_WR_CNTL__IO_LEVEL_OVERRIDE_ENABLE__SHIFT 0x10
+#define DAGB0_WR_CNTL__IO_LEVEL__SHIFT 0x11
+#define DAGB0_WR_CNTL__IO_LEVEL_COMPLY_VC__SHIFT 0x14
+#define DAGB0_WR_CNTL__SHARE_VC_NUM__SHIFT 0x17
+#define DAGB0_WR_CNTL__FIX_JUMP__SHIFT 0x1a
+#define DAGB0_WR_CNTL__SCLK_FREQ_MASK 0x0000000FL
+#define DAGB0_WR_CNTL__CLI_MAX_BW_WINDOW_MASK 0x000003F0L
+#define DAGB0_WR_CNTL__VC_MAX_BW_WINDOW_MASK 0x0000FC00L
+#define DAGB0_WR_CNTL__IO_LEVEL_OVERRIDE_ENABLE_MASK 0x00010000L
+#define DAGB0_WR_CNTL__IO_LEVEL_MASK 0x000E0000L
+#define DAGB0_WR_CNTL__IO_LEVEL_COMPLY_VC_MASK 0x00700000L
+#define DAGB0_WR_CNTL__SHARE_VC_NUM_MASK 0x03800000L
+#define DAGB0_WR_CNTL__FIX_JUMP_MASK 0x04000000L
+//DAGB0_WR_GMI_CNTL
+#define DAGB0_WR_GMI_CNTL__EA_CREDIT__SHIFT 0x0
+#define DAGB0_WR_GMI_CNTL__LEVEL__SHIFT 0x6
+#define DAGB0_WR_GMI_CNTL__MAX_BURST__SHIFT 0x9
+#define DAGB0_WR_GMI_CNTL__LAZY_TIMER__SHIFT 0xd
+#define DAGB0_WR_GMI_CNTL__EA_CREDIT_MASK 0x0000003FL
+#define DAGB0_WR_GMI_CNTL__LEVEL_MASK 0x000001C0L
+#define DAGB0_WR_GMI_CNTL__MAX_BURST_MASK 0x00001E00L
+#define DAGB0_WR_GMI_CNTL__LAZY_TIMER_MASK 0x0001E000L
+//DAGB0_WR_ADDR_DAGB
+#define DAGB0_WR_ADDR_DAGB__DAGB_ENABLE__SHIFT 0x0
+#define DAGB0_WR_ADDR_DAGB__ENABLE_JUMP_AHEAD__SHIFT 0x3
+#define DAGB0_WR_ADDR_DAGB__DISABLE_SELF_INIT__SHIFT 0x6
+#define DAGB0_WR_ADDR_DAGB__WHOAMI__SHIFT 0x7
+#define DAGB0_WR_ADDR_DAGB__JUMP_MODE__SHIFT 0xd
+#define DAGB0_WR_ADDR_DAGB__DAGB_ENABLE_MASK 0x00000007L
+#define DAGB0_WR_ADDR_DAGB__ENABLE_JUMP_AHEAD_MASK 0x00000038L
+#define DAGB0_WR_ADDR_DAGB__DISABLE_SELF_INIT_MASK 0x00000040L
+#define DAGB0_WR_ADDR_DAGB__WHOAMI_MASK 0x00001F80L
+#define DAGB0_WR_ADDR_DAGB__JUMP_MODE_MASK 0x00002000L
+//DAGB0_WR_OUTPUT_DAGB_MAX_BURST
+#define DAGB0_WR_OUTPUT_DAGB_MAX_BURST__VC0__SHIFT 0x0
+#define DAGB0_WR_OUTPUT_DAGB_MAX_BURST__VC1__SHIFT 0x4
+#define DAGB0_WR_OUTPUT_DAGB_MAX_BURST__VC2__SHIFT 0x8
+#define DAGB0_WR_OUTPUT_DAGB_MAX_BURST__VC3__SHIFT 0xc
+#define DAGB0_WR_OUTPUT_DAGB_MAX_BURST__VC4__SHIFT 0x10
+#define DAGB0_WR_OUTPUT_DAGB_MAX_BURST__VC5__SHIFT 0x14
+#define DAGB0_WR_OUTPUT_DAGB_MAX_BURST__VC6__SHIFT 0x18
+#define DAGB0_WR_OUTPUT_DAGB_MAX_BURST__VC7__SHIFT 0x1c
+#define DAGB0_WR_OUTPUT_DAGB_MAX_BURST__VC0_MASK 0x0000000FL
+#define DAGB0_WR_OUTPUT_DAGB_MAX_BURST__VC1_MASK 0x000000F0L
+#define DAGB0_WR_OUTPUT_DAGB_MAX_BURST__VC2_MASK 0x00000F00L
+#define DAGB0_WR_OUTPUT_DAGB_MAX_BURST__VC3_MASK 0x0000F000L
+#define DAGB0_WR_OUTPUT_DAGB_MAX_BURST__VC4_MASK 0x000F0000L
+#define DAGB0_WR_OUTPUT_DAGB_MAX_BURST__VC5_MASK 0x00F00000L
+#define DAGB0_WR_OUTPUT_DAGB_MAX_BURST__VC6_MASK 0x0F000000L
+#define DAGB0_WR_OUTPUT_DAGB_MAX_BURST__VC7_MASK 0xF0000000L
+//DAGB0_WR_OUTPUT_DAGB_LAZY_TIMER
+#define DAGB0_WR_OUTPUT_DAGB_LAZY_TIMER__VC0__SHIFT 0x0
+#define DAGB0_WR_OUTPUT_DAGB_LAZY_TIMER__VC1__SHIFT 0x4
+#define DAGB0_WR_OUTPUT_DAGB_LAZY_TIMER__VC2__SHIFT 0x8
+#define DAGB0_WR_OUTPUT_DAGB_LAZY_TIMER__VC3__SHIFT 0xc
+#define DAGB0_WR_OUTPUT_DAGB_LAZY_TIMER__VC4__SHIFT 0x10
+#define DAGB0_WR_OUTPUT_DAGB_LAZY_TIMER__VC5__SHIFT 0x14
+#define DAGB0_WR_OUTPUT_DAGB_LAZY_TIMER__VC6__SHIFT 0x18
+#define DAGB0_WR_OUTPUT_DAGB_LAZY_TIMER__VC7__SHIFT 0x1c
+#define DAGB0_WR_OUTPUT_DAGB_LAZY_TIMER__VC0_MASK 0x0000000FL
+#define DAGB0_WR_OUTPUT_DAGB_LAZY_TIMER__VC1_MASK 0x000000F0L
+#define DAGB0_WR_OUTPUT_DAGB_LAZY_TIMER__VC2_MASK 0x00000F00L
+#define DAGB0_WR_OUTPUT_DAGB_LAZY_TIMER__VC3_MASK 0x0000F000L
+#define DAGB0_WR_OUTPUT_DAGB_LAZY_TIMER__VC4_MASK 0x000F0000L
+#define DAGB0_WR_OUTPUT_DAGB_LAZY_TIMER__VC5_MASK 0x00F00000L
+#define DAGB0_WR_OUTPUT_DAGB_LAZY_TIMER__VC6_MASK 0x0F000000L
+#define DAGB0_WR_OUTPUT_DAGB_LAZY_TIMER__VC7_MASK 0xF0000000L
+//DAGB0_WR_CGTT_CLK_CTRL
+#define DAGB0_WR_CGTT_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define DAGB0_WR_CGTT_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define DAGB0_WR_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS__SHIFT 0xc
+#define DAGB0_WR_CGTT_CLK_CTRL__LS_OVERRIDE__SHIFT 0x1e
+#define DAGB0_WR_CGTT_CLK_CTRL__SOFT_OVERRIDE__SHIFT 0x1f
+#define DAGB0_WR_CGTT_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define DAGB0_WR_CGTT_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define DAGB0_WR_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS_MASK 0x0FFFF000L
+#define DAGB0_WR_CGTT_CLK_CTRL__LS_OVERRIDE_MASK 0x40000000L
+#define DAGB0_WR_CGTT_CLK_CTRL__SOFT_OVERRIDE_MASK 0x80000000L
+//DAGB0_L1TLB_WR_CGTT_CLK_CTRL
+#define DAGB0_L1TLB_WR_CGTT_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define DAGB0_L1TLB_WR_CGTT_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define DAGB0_L1TLB_WR_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS__SHIFT 0xc
+#define DAGB0_L1TLB_WR_CGTT_CLK_CTRL__LS_OVERRIDE__SHIFT 0x1e
+#define DAGB0_L1TLB_WR_CGTT_CLK_CTRL__SOFT_OVERRIDE__SHIFT 0x1f
+#define DAGB0_L1TLB_WR_CGTT_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define DAGB0_L1TLB_WR_CGTT_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define DAGB0_L1TLB_WR_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS_MASK 0x0FFFF000L
+#define DAGB0_L1TLB_WR_CGTT_CLK_CTRL__LS_OVERRIDE_MASK 0x40000000L
+#define DAGB0_L1TLB_WR_CGTT_CLK_CTRL__SOFT_OVERRIDE_MASK 0x80000000L
+//DAGB0_ATCVM_WR_CGTT_CLK_CTRL
+#define DAGB0_ATCVM_WR_CGTT_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define DAGB0_ATCVM_WR_CGTT_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define DAGB0_ATCVM_WR_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS__SHIFT 0xc
+#define DAGB0_ATCVM_WR_CGTT_CLK_CTRL__LS_OVERRIDE__SHIFT 0x1e
+#define DAGB0_ATCVM_WR_CGTT_CLK_CTRL__SOFT_OVERRIDE__SHIFT 0x1f
+#define DAGB0_ATCVM_WR_CGTT_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define DAGB0_ATCVM_WR_CGTT_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define DAGB0_ATCVM_WR_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS_MASK 0x0FFFF000L
+#define DAGB0_ATCVM_WR_CGTT_CLK_CTRL__LS_OVERRIDE_MASK 0x40000000L
+#define DAGB0_ATCVM_WR_CGTT_CLK_CTRL__SOFT_OVERRIDE_MASK 0x80000000L
+//DAGB0_WR_ADDR_DAGB_MAX_BURST0
+#define DAGB0_WR_ADDR_DAGB_MAX_BURST0__CLIENT0__SHIFT 0x0
+#define DAGB0_WR_ADDR_DAGB_MAX_BURST0__CLIENT1__SHIFT 0x4
+#define DAGB0_WR_ADDR_DAGB_MAX_BURST0__CLIENT2__SHIFT 0x8
+#define DAGB0_WR_ADDR_DAGB_MAX_BURST0__CLIENT3__SHIFT 0xc
+#define DAGB0_WR_ADDR_DAGB_MAX_BURST0__CLIENT4__SHIFT 0x10
+#define DAGB0_WR_ADDR_DAGB_MAX_BURST0__CLIENT5__SHIFT 0x14
+#define DAGB0_WR_ADDR_DAGB_MAX_BURST0__CLIENT6__SHIFT 0x18
+#define DAGB0_WR_ADDR_DAGB_MAX_BURST0__CLIENT7__SHIFT 0x1c
+#define DAGB0_WR_ADDR_DAGB_MAX_BURST0__CLIENT0_MASK 0x0000000FL
+#define DAGB0_WR_ADDR_DAGB_MAX_BURST0__CLIENT1_MASK 0x000000F0L
+#define DAGB0_WR_ADDR_DAGB_MAX_BURST0__CLIENT2_MASK 0x00000F00L
+#define DAGB0_WR_ADDR_DAGB_MAX_BURST0__CLIENT3_MASK 0x0000F000L
+#define DAGB0_WR_ADDR_DAGB_MAX_BURST0__CLIENT4_MASK 0x000F0000L
+#define DAGB0_WR_ADDR_DAGB_MAX_BURST0__CLIENT5_MASK 0x00F00000L
+#define DAGB0_WR_ADDR_DAGB_MAX_BURST0__CLIENT6_MASK 0x0F000000L
+#define DAGB0_WR_ADDR_DAGB_MAX_BURST0__CLIENT7_MASK 0xF0000000L
+//DAGB0_WR_ADDR_DAGB_LAZY_TIMER0
+#define DAGB0_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT0__SHIFT 0x0
+#define DAGB0_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT1__SHIFT 0x4
+#define DAGB0_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT2__SHIFT 0x8
+#define DAGB0_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT3__SHIFT 0xc
+#define DAGB0_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT4__SHIFT 0x10
+#define DAGB0_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT5__SHIFT 0x14
+#define DAGB0_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT6__SHIFT 0x18
+#define DAGB0_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT7__SHIFT 0x1c
+#define DAGB0_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT0_MASK 0x0000000FL
+#define DAGB0_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT1_MASK 0x000000F0L
+#define DAGB0_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT2_MASK 0x00000F00L
+#define DAGB0_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT3_MASK 0x0000F000L
+#define DAGB0_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT4_MASK 0x000F0000L
+#define DAGB0_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT5_MASK 0x00F00000L
+#define DAGB0_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT6_MASK 0x0F000000L
+#define DAGB0_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT7_MASK 0xF0000000L
+//DAGB0_WR_ADDR_DAGB_MAX_BURST1
+#define DAGB0_WR_ADDR_DAGB_MAX_BURST1__CLIENT8__SHIFT 0x0
+#define DAGB0_WR_ADDR_DAGB_MAX_BURST1__CLIENT9__SHIFT 0x4
+#define DAGB0_WR_ADDR_DAGB_MAX_BURST1__CLIENT10__SHIFT 0x8
+#define DAGB0_WR_ADDR_DAGB_MAX_BURST1__CLIENT11__SHIFT 0xc
+#define DAGB0_WR_ADDR_DAGB_MAX_BURST1__CLIENT12__SHIFT 0x10
+#define DAGB0_WR_ADDR_DAGB_MAX_BURST1__CLIENT13__SHIFT 0x14
+#define DAGB0_WR_ADDR_DAGB_MAX_BURST1__CLIENT14__SHIFT 0x18
+#define DAGB0_WR_ADDR_DAGB_MAX_BURST1__CLIENT15__SHIFT 0x1c
+#define DAGB0_WR_ADDR_DAGB_MAX_BURST1__CLIENT8_MASK 0x0000000FL
+#define DAGB0_WR_ADDR_DAGB_MAX_BURST1__CLIENT9_MASK 0x000000F0L
+#define DAGB0_WR_ADDR_DAGB_MAX_BURST1__CLIENT10_MASK 0x00000F00L
+#define DAGB0_WR_ADDR_DAGB_MAX_BURST1__CLIENT11_MASK 0x0000F000L
+#define DAGB0_WR_ADDR_DAGB_MAX_BURST1__CLIENT12_MASK 0x000F0000L
+#define DAGB0_WR_ADDR_DAGB_MAX_BURST1__CLIENT13_MASK 0x00F00000L
+#define DAGB0_WR_ADDR_DAGB_MAX_BURST1__CLIENT14_MASK 0x0F000000L
+#define DAGB0_WR_ADDR_DAGB_MAX_BURST1__CLIENT15_MASK 0xF0000000L
+//DAGB0_WR_ADDR_DAGB_LAZY_TIMER1
+#define DAGB0_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT8__SHIFT 0x0
+#define DAGB0_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT9__SHIFT 0x4
+#define DAGB0_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT10__SHIFT 0x8
+#define DAGB0_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT11__SHIFT 0xc
+#define DAGB0_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT12__SHIFT 0x10
+#define DAGB0_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT13__SHIFT 0x14
+#define DAGB0_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT14__SHIFT 0x18
+#define DAGB0_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT15__SHIFT 0x1c
+#define DAGB0_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT8_MASK 0x0000000FL
+#define DAGB0_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT9_MASK 0x000000F0L
+#define DAGB0_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT10_MASK 0x00000F00L
+#define DAGB0_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT11_MASK 0x0000F000L
+#define DAGB0_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT12_MASK 0x000F0000L
+#define DAGB0_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT13_MASK 0x00F00000L
+#define DAGB0_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT14_MASK 0x0F000000L
+#define DAGB0_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT15_MASK 0xF0000000L
+//DAGB0_WR_DATA_DAGB
+#define DAGB0_WR_DATA_DAGB__DAGB_ENABLE__SHIFT 0x0
+#define DAGB0_WR_DATA_DAGB__ENABLE_JUMP_AHEAD__SHIFT 0x3
+#define DAGB0_WR_DATA_DAGB__DISABLE_SELF_INIT__SHIFT 0x6
+#define DAGB0_WR_DATA_DAGB__WHOAMI__SHIFT 0x7
+#define DAGB0_WR_DATA_DAGB__DAGB_ENABLE_MASK 0x00000007L
+#define DAGB0_WR_DATA_DAGB__ENABLE_JUMP_AHEAD_MASK 0x00000038L
+#define DAGB0_WR_DATA_DAGB__DISABLE_SELF_INIT_MASK 0x00000040L
+#define DAGB0_WR_DATA_DAGB__WHOAMI_MASK 0x00001F80L
+//DAGB0_WR_DATA_DAGB_MAX_BURST0
+#define DAGB0_WR_DATA_DAGB_MAX_BURST0__CLIENT0__SHIFT 0x0
+#define DAGB0_WR_DATA_DAGB_MAX_BURST0__CLIENT1__SHIFT 0x4
+#define DAGB0_WR_DATA_DAGB_MAX_BURST0__CLIENT2__SHIFT 0x8
+#define DAGB0_WR_DATA_DAGB_MAX_BURST0__CLIENT3__SHIFT 0xc
+#define DAGB0_WR_DATA_DAGB_MAX_BURST0__CLIENT4__SHIFT 0x10
+#define DAGB0_WR_DATA_DAGB_MAX_BURST0__CLIENT5__SHIFT 0x14
+#define DAGB0_WR_DATA_DAGB_MAX_BURST0__CLIENT6__SHIFT 0x18
+#define DAGB0_WR_DATA_DAGB_MAX_BURST0__CLIENT7__SHIFT 0x1c
+#define DAGB0_WR_DATA_DAGB_MAX_BURST0__CLIENT0_MASK 0x0000000FL
+#define DAGB0_WR_DATA_DAGB_MAX_BURST0__CLIENT1_MASK 0x000000F0L
+#define DAGB0_WR_DATA_DAGB_MAX_BURST0__CLIENT2_MASK 0x00000F00L
+#define DAGB0_WR_DATA_DAGB_MAX_BURST0__CLIENT3_MASK 0x0000F000L
+#define DAGB0_WR_DATA_DAGB_MAX_BURST0__CLIENT4_MASK 0x000F0000L
+#define DAGB0_WR_DATA_DAGB_MAX_BURST0__CLIENT5_MASK 0x00F00000L
+#define DAGB0_WR_DATA_DAGB_MAX_BURST0__CLIENT6_MASK 0x0F000000L
+#define DAGB0_WR_DATA_DAGB_MAX_BURST0__CLIENT7_MASK 0xF0000000L
+//DAGB0_WR_DATA_DAGB_LAZY_TIMER0
+#define DAGB0_WR_DATA_DAGB_LAZY_TIMER0__CLIENT0__SHIFT 0x0
+#define DAGB0_WR_DATA_DAGB_LAZY_TIMER0__CLIENT1__SHIFT 0x4
+#define DAGB0_WR_DATA_DAGB_LAZY_TIMER0__CLIENT2__SHIFT 0x8
+#define DAGB0_WR_DATA_DAGB_LAZY_TIMER0__CLIENT3__SHIFT 0xc
+#define DAGB0_WR_DATA_DAGB_LAZY_TIMER0__CLIENT4__SHIFT 0x10
+#define DAGB0_WR_DATA_DAGB_LAZY_TIMER0__CLIENT5__SHIFT 0x14
+#define DAGB0_WR_DATA_DAGB_LAZY_TIMER0__CLIENT6__SHIFT 0x18
+#define DAGB0_WR_DATA_DAGB_LAZY_TIMER0__CLIENT7__SHIFT 0x1c
+#define DAGB0_WR_DATA_DAGB_LAZY_TIMER0__CLIENT0_MASK 0x0000000FL
+#define DAGB0_WR_DATA_DAGB_LAZY_TIMER0__CLIENT1_MASK 0x000000F0L
+#define DAGB0_WR_DATA_DAGB_LAZY_TIMER0__CLIENT2_MASK 0x00000F00L
+#define DAGB0_WR_DATA_DAGB_LAZY_TIMER0__CLIENT3_MASK 0x0000F000L
+#define DAGB0_WR_DATA_DAGB_LAZY_TIMER0__CLIENT4_MASK 0x000F0000L
+#define DAGB0_WR_DATA_DAGB_LAZY_TIMER0__CLIENT5_MASK 0x00F00000L
+#define DAGB0_WR_DATA_DAGB_LAZY_TIMER0__CLIENT6_MASK 0x0F000000L
+#define DAGB0_WR_DATA_DAGB_LAZY_TIMER0__CLIENT7_MASK 0xF0000000L
+//DAGB0_WR_DATA_DAGB_MAX_BURST1
+#define DAGB0_WR_DATA_DAGB_MAX_BURST1__CLIENT8__SHIFT 0x0
+#define DAGB0_WR_DATA_DAGB_MAX_BURST1__CLIENT9__SHIFT 0x4
+#define DAGB0_WR_DATA_DAGB_MAX_BURST1__CLIENT10__SHIFT 0x8
+#define DAGB0_WR_DATA_DAGB_MAX_BURST1__CLIENT11__SHIFT 0xc
+#define DAGB0_WR_DATA_DAGB_MAX_BURST1__CLIENT12__SHIFT 0x10
+#define DAGB0_WR_DATA_DAGB_MAX_BURST1__CLIENT13__SHIFT 0x14
+#define DAGB0_WR_DATA_DAGB_MAX_BURST1__CLIENT14__SHIFT 0x18
+#define DAGB0_WR_DATA_DAGB_MAX_BURST1__CLIENT15__SHIFT 0x1c
+#define DAGB0_WR_DATA_DAGB_MAX_BURST1__CLIENT8_MASK 0x0000000FL
+#define DAGB0_WR_DATA_DAGB_MAX_BURST1__CLIENT9_MASK 0x000000F0L
+#define DAGB0_WR_DATA_DAGB_MAX_BURST1__CLIENT10_MASK 0x00000F00L
+#define DAGB0_WR_DATA_DAGB_MAX_BURST1__CLIENT11_MASK 0x0000F000L
+#define DAGB0_WR_DATA_DAGB_MAX_BURST1__CLIENT12_MASK 0x000F0000L
+#define DAGB0_WR_DATA_DAGB_MAX_BURST1__CLIENT13_MASK 0x00F00000L
+#define DAGB0_WR_DATA_DAGB_MAX_BURST1__CLIENT14_MASK 0x0F000000L
+#define DAGB0_WR_DATA_DAGB_MAX_BURST1__CLIENT15_MASK 0xF0000000L
+//DAGB0_WR_DATA_DAGB_LAZY_TIMER1
+#define DAGB0_WR_DATA_DAGB_LAZY_TIMER1__CLIENT8__SHIFT 0x0
+#define DAGB0_WR_DATA_DAGB_LAZY_TIMER1__CLIENT9__SHIFT 0x4
+#define DAGB0_WR_DATA_DAGB_LAZY_TIMER1__CLIENT10__SHIFT 0x8
+#define DAGB0_WR_DATA_DAGB_LAZY_TIMER1__CLIENT11__SHIFT 0xc
+#define DAGB0_WR_DATA_DAGB_LAZY_TIMER1__CLIENT12__SHIFT 0x10
+#define DAGB0_WR_DATA_DAGB_LAZY_TIMER1__CLIENT13__SHIFT 0x14
+#define DAGB0_WR_DATA_DAGB_LAZY_TIMER1__CLIENT14__SHIFT 0x18
+#define DAGB0_WR_DATA_DAGB_LAZY_TIMER1__CLIENT15__SHIFT 0x1c
+#define DAGB0_WR_DATA_DAGB_LAZY_TIMER1__CLIENT8_MASK 0x0000000FL
+#define DAGB0_WR_DATA_DAGB_LAZY_TIMER1__CLIENT9_MASK 0x000000F0L
+#define DAGB0_WR_DATA_DAGB_LAZY_TIMER1__CLIENT10_MASK 0x00000F00L
+#define DAGB0_WR_DATA_DAGB_LAZY_TIMER1__CLIENT11_MASK 0x0000F000L
+#define DAGB0_WR_DATA_DAGB_LAZY_TIMER1__CLIENT12_MASK 0x000F0000L
+#define DAGB0_WR_DATA_DAGB_LAZY_TIMER1__CLIENT13_MASK 0x00F00000L
+#define DAGB0_WR_DATA_DAGB_LAZY_TIMER1__CLIENT14_MASK 0x0F000000L
+#define DAGB0_WR_DATA_DAGB_LAZY_TIMER1__CLIENT15_MASK 0xF0000000L
+//DAGB0_WR_VC0_CNTL
+#define DAGB0_WR_VC0_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB0_WR_VC0_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB0_WR_VC0_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB0_WR_VC0_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB0_WR_VC0_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB0_WR_VC0_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB0_WR_VC0_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB0_WR_VC0_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB0_WR_VC0_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB0_WR_VC0_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB0_WR_VC0_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB0_WR_VC0_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB0_WR_VC0_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB0_WR_VC0_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB0_WR_VC0_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB0_WR_VC0_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB0_WR_VC1_CNTL
+#define DAGB0_WR_VC1_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB0_WR_VC1_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB0_WR_VC1_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB0_WR_VC1_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB0_WR_VC1_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB0_WR_VC1_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB0_WR_VC1_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB0_WR_VC1_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB0_WR_VC1_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB0_WR_VC1_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB0_WR_VC1_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB0_WR_VC1_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB0_WR_VC1_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB0_WR_VC1_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB0_WR_VC1_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB0_WR_VC1_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB0_WR_VC2_CNTL
+#define DAGB0_WR_VC2_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB0_WR_VC2_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB0_WR_VC2_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB0_WR_VC2_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB0_WR_VC2_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB0_WR_VC2_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB0_WR_VC2_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB0_WR_VC2_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB0_WR_VC2_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB0_WR_VC2_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB0_WR_VC2_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB0_WR_VC2_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB0_WR_VC2_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB0_WR_VC2_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB0_WR_VC2_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB0_WR_VC2_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB0_WR_VC3_CNTL
+#define DAGB0_WR_VC3_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB0_WR_VC3_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB0_WR_VC3_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB0_WR_VC3_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB0_WR_VC3_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB0_WR_VC3_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB0_WR_VC3_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB0_WR_VC3_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB0_WR_VC3_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB0_WR_VC3_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB0_WR_VC3_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB0_WR_VC3_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB0_WR_VC3_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB0_WR_VC3_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB0_WR_VC3_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB0_WR_VC3_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB0_WR_VC4_CNTL
+#define DAGB0_WR_VC4_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB0_WR_VC4_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB0_WR_VC4_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB0_WR_VC4_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB0_WR_VC4_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB0_WR_VC4_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB0_WR_VC4_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB0_WR_VC4_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB0_WR_VC4_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB0_WR_VC4_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB0_WR_VC4_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB0_WR_VC4_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB0_WR_VC4_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB0_WR_VC4_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB0_WR_VC4_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB0_WR_VC4_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB0_WR_VC5_CNTL
+#define DAGB0_WR_VC5_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB0_WR_VC5_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB0_WR_VC5_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB0_WR_VC5_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB0_WR_VC5_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB0_WR_VC5_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB0_WR_VC5_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB0_WR_VC5_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB0_WR_VC5_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB0_WR_VC5_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB0_WR_VC5_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB0_WR_VC5_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB0_WR_VC5_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB0_WR_VC5_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB0_WR_VC5_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB0_WR_VC5_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB0_WR_VC6_CNTL
+#define DAGB0_WR_VC6_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB0_WR_VC6_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB0_WR_VC6_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB0_WR_VC6_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB0_WR_VC6_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB0_WR_VC6_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB0_WR_VC6_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB0_WR_VC6_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB0_WR_VC6_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB0_WR_VC6_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB0_WR_VC6_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB0_WR_VC6_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB0_WR_VC6_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB0_WR_VC6_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB0_WR_VC6_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB0_WR_VC6_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB0_WR_VC7_CNTL
+#define DAGB0_WR_VC7_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB0_WR_VC7_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB0_WR_VC7_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB0_WR_VC7_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB0_WR_VC7_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB0_WR_VC7_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB0_WR_VC7_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB0_WR_VC7_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB0_WR_VC7_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB0_WR_VC7_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB0_WR_VC7_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB0_WR_VC7_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB0_WR_VC7_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB0_WR_VC7_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB0_WR_VC7_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB0_WR_VC7_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB0_WR_CNTL_MISC
+#define DAGB0_WR_CNTL_MISC__STOR_POOL_CREDIT__SHIFT 0x0
+#define DAGB0_WR_CNTL_MISC__EA_POOL_CREDIT__SHIFT 0x6
+#define DAGB0_WR_CNTL_MISC__IO_EA_CREDIT__SHIFT 0xd
+#define DAGB0_WR_CNTL_MISC__STOR_CC_NEW_MODE__SHIFT 0x13
+#define DAGB0_WR_CNTL_MISC__EA_CC_LEGACY_MODE__SHIFT 0x14
+#define DAGB0_WR_CNTL_MISC__UTCL2_CID__SHIFT 0x15
+#define DAGB0_WR_CNTL_MISC__RDRET_FIFO_CREDITS__SHIFT 0x1a
+#define DAGB0_WR_CNTL_MISC__STOR_POOL_CREDIT_MASK 0x0000003FL
+#define DAGB0_WR_CNTL_MISC__EA_POOL_CREDIT_MASK 0x00001FC0L
+#define DAGB0_WR_CNTL_MISC__IO_EA_CREDIT_MASK 0x0007E000L
+#define DAGB0_WR_CNTL_MISC__STOR_CC_NEW_MODE_MASK 0x00080000L
+#define DAGB0_WR_CNTL_MISC__EA_CC_LEGACY_MODE_MASK 0x00100000L
+#define DAGB0_WR_CNTL_MISC__UTCL2_CID_MASK 0x03E00000L
+#define DAGB0_WR_CNTL_MISC__RDRET_FIFO_CREDITS_MASK 0xFC000000L
+//DAGB0_WR_TLB_CREDIT
+#define DAGB0_WR_TLB_CREDIT__TLB0__SHIFT 0x0
+#define DAGB0_WR_TLB_CREDIT__TLB1__SHIFT 0x5
+#define DAGB0_WR_TLB_CREDIT__TLB2__SHIFT 0xa
+#define DAGB0_WR_TLB_CREDIT__TLB3__SHIFT 0xf
+#define DAGB0_WR_TLB_CREDIT__TLB4__SHIFT 0x14
+#define DAGB0_WR_TLB_CREDIT__TLB5__SHIFT 0x19
+#define DAGB0_WR_TLB_CREDIT__TLB0_MASK 0x0000001FL
+#define DAGB0_WR_TLB_CREDIT__TLB1_MASK 0x000003E0L
+#define DAGB0_WR_TLB_CREDIT__TLB2_MASK 0x00007C00L
+#define DAGB0_WR_TLB_CREDIT__TLB3_MASK 0x000F8000L
+#define DAGB0_WR_TLB_CREDIT__TLB4_MASK 0x01F00000L
+#define DAGB0_WR_TLB_CREDIT__TLB5_MASK 0x3E000000L
+//DAGB0_WR_DATA_CREDIT
+#define DAGB0_WR_DATA_CREDIT__DLOCK_VC_CREDITS__SHIFT 0x0
+#define DAGB0_WR_DATA_CREDIT__LARGE_BURST_CREDITS__SHIFT 0x8
+#define DAGB0_WR_DATA_CREDIT__MIDDLE_BURST_CREDITS__SHIFT 0x10
+#define DAGB0_WR_DATA_CREDIT__SMALL_BURST_CREDITS__SHIFT 0x18
+#define DAGB0_WR_DATA_CREDIT__DLOCK_VC_CREDITS_MASK 0x000000FFL
+#define DAGB0_WR_DATA_CREDIT__LARGE_BURST_CREDITS_MASK 0x0000FF00L
+#define DAGB0_WR_DATA_CREDIT__MIDDLE_BURST_CREDITS_MASK 0x00FF0000L
+#define DAGB0_WR_DATA_CREDIT__SMALL_BURST_CREDITS_MASK 0xFF000000L
+//DAGB0_WR_MISC_CREDIT
+#define DAGB0_WR_MISC_CREDIT__ATOMIC_CREDIT__SHIFT 0x0
+#define DAGB0_WR_MISC_CREDIT__DLOCK_VC_NUM__SHIFT 0x6
+#define DAGB0_WR_MISC_CREDIT__OSD_CREDIT__SHIFT 0x9
+#define DAGB0_WR_MISC_CREDIT__OSD_DLOCK_CREDIT__SHIFT 0x10
+#define DAGB0_WR_MISC_CREDIT__ATOMIC_CREDIT_MASK 0x0000003FL
+#define DAGB0_WR_MISC_CREDIT__DLOCK_VC_NUM_MASK 0x000001C0L
+#define DAGB0_WR_MISC_CREDIT__OSD_CREDIT_MASK 0x0000FE00L
+#define DAGB0_WR_MISC_CREDIT__OSD_DLOCK_CREDIT_MASK 0x007F0000L
+//DAGB0_WR_OSD_CREDIT_CNTL1
+#define DAGB0_WR_OSD_CREDIT_CNTL1__VC0_CREDIT__SHIFT 0x0
+#define DAGB0_WR_OSD_CREDIT_CNTL1__VC1_CREDIT__SHIFT 0x4
+#define DAGB0_WR_OSD_CREDIT_CNTL1__VC2_CREDIT__SHIFT 0x8
+#define DAGB0_WR_OSD_CREDIT_CNTL1__VC3_CREDIT__SHIFT 0xc
+#define DAGB0_WR_OSD_CREDIT_CNTL1__IO_CREDIT__SHIFT 0x10
+#define DAGB0_WR_OSD_CREDIT_CNTL1__GMI_CREDIT__SHIFT 0x14
+#define DAGB0_WR_OSD_CREDIT_CNTL1__POOL_CREDIT__SHIFT 0x18
+#define DAGB0_WR_OSD_CREDIT_CNTL1__VC0_CREDIT_MASK 0x0000000FL
+#define DAGB0_WR_OSD_CREDIT_CNTL1__VC1_CREDIT_MASK 0x000000F0L
+#define DAGB0_WR_OSD_CREDIT_CNTL1__VC2_CREDIT_MASK 0x00000F00L
+#define DAGB0_WR_OSD_CREDIT_CNTL1__VC3_CREDIT_MASK 0x0000F000L
+#define DAGB0_WR_OSD_CREDIT_CNTL1__IO_CREDIT_MASK 0x000F0000L
+#define DAGB0_WR_OSD_CREDIT_CNTL1__GMI_CREDIT_MASK 0x00F00000L
+#define DAGB0_WR_OSD_CREDIT_CNTL1__POOL_CREDIT_MASK 0x3F000000L
+//DAGB0_WR_OSD_CREDIT_CNTL2
+#define DAGB0_WR_OSD_CREDIT_CNTL2__CREDIT_MARGIN__SHIFT 0x0
+#define DAGB0_WR_OSD_CREDIT_CNTL2__ENABLE_LEGACY__SHIFT 0x4
+#define DAGB0_WR_OSD_CREDIT_CNTL2__CREDIT_MARGIN_MASK 0x0000000FL
+#define DAGB0_WR_OSD_CREDIT_CNTL2__ENABLE_LEGACY_MASK 0x00000010L
+//DAGB0_WR_ATOMIC_FIFO_CREDIT_CNTL1
+#define DAGB0_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC0_CREDIT__SHIFT 0x0
+#define DAGB0_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC1_CREDIT__SHIFT 0x5
+#define DAGB0_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC2_CREDIT__SHIFT 0xa
+#define DAGB0_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC3_CREDIT__SHIFT 0xf
+#define DAGB0_WR_ATOMIC_FIFO_CREDIT_CNTL1__POOL_CREDIT__SHIFT 0x14
+#define DAGB0_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC_MODE__SHIFT 0x19
+#define DAGB0_WR_ATOMIC_FIFO_CREDIT_CNTL1__FIX_EQ__SHIFT 0x1a
+#define DAGB0_WR_ATOMIC_FIFO_CREDIT_CNTL1__FIX0__SHIFT 0x1b
+#define DAGB0_WR_ATOMIC_FIFO_CREDIT_CNTL1__FIX1__SHIFT 0x1c
+#define DAGB0_WR_ATOMIC_FIFO_CREDIT_CNTL1__FIX2__SHIFT 0x1d
+#define DAGB0_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC0_CREDIT_MASK 0x0000001FL
+#define DAGB0_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC1_CREDIT_MASK 0x000003E0L
+#define DAGB0_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC2_CREDIT_MASK 0x00007C00L
+#define DAGB0_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC3_CREDIT_MASK 0x000F8000L
+#define DAGB0_WR_ATOMIC_FIFO_CREDIT_CNTL1__POOL_CREDIT_MASK 0x01F00000L
+#define DAGB0_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC_MODE_MASK 0x02000000L
+#define DAGB0_WR_ATOMIC_FIFO_CREDIT_CNTL1__FIX_EQ_MASK 0x04000000L
+#define DAGB0_WR_ATOMIC_FIFO_CREDIT_CNTL1__FIX0_MASK 0x08000000L
+#define DAGB0_WR_ATOMIC_FIFO_CREDIT_CNTL1__FIX1_MASK 0x10000000L
+#define DAGB0_WR_ATOMIC_FIFO_CREDIT_CNTL1__FIX2_MASK 0x20000000L
+//DAGB0_WRCLI_GPU_SNOOP_OVERRIDE
+#define DAGB0_WRCLI_GPU_SNOOP_OVERRIDE__ENABLE__SHIFT 0x0
+#define DAGB0_WRCLI_GPU_SNOOP_OVERRIDE__ENABLE_MASK 0x0000FFFFL
+//DAGB0_WRCLI_GPU_SNOOP_OVERRIDE_VALUE
+#define DAGB0_WRCLI_GPU_SNOOP_OVERRIDE_VALUE__ENABLE__SHIFT 0x0
+#define DAGB0_WRCLI_GPU_SNOOP_OVERRIDE_VALUE__ENABLE_MASK 0x0000FFFFL
+//DAGB0_WRCLI_ASK_PENDING
+#define DAGB0_WRCLI_ASK_PENDING__BUSY__SHIFT 0x0
+#define DAGB0_WRCLI_ASK_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB0_WRCLI_GO_PENDING
+#define DAGB0_WRCLI_GO_PENDING__BUSY__SHIFT 0x0
+#define DAGB0_WRCLI_GO_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB0_WRCLI_GBLSEND_PENDING
+#define DAGB0_WRCLI_GBLSEND_PENDING__BUSY__SHIFT 0x0
+#define DAGB0_WRCLI_GBLSEND_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB0_WRCLI_TLB_PENDING
+#define DAGB0_WRCLI_TLB_PENDING__BUSY__SHIFT 0x0
+#define DAGB0_WRCLI_TLB_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB0_WRCLI_OARB_PENDING
+#define DAGB0_WRCLI_OARB_PENDING__BUSY__SHIFT 0x0
+#define DAGB0_WRCLI_OARB_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB0_WRCLI_OSD_PENDING
+#define DAGB0_WRCLI_OSD_PENDING__BUSY__SHIFT 0x0
+#define DAGB0_WRCLI_OSD_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB0_WRCLI_DBUS_ASK_PENDING
+#define DAGB0_WRCLI_DBUS_ASK_PENDING__BUSY__SHIFT 0x0
+#define DAGB0_WRCLI_DBUS_ASK_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB0_WRCLI_DBUS_GO_PENDING
+#define DAGB0_WRCLI_DBUS_GO_PENDING__BUSY__SHIFT 0x0
+#define DAGB0_WRCLI_DBUS_GO_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB0_WRCLI_NOALLOC_OVERRIDE
+#define DAGB0_WRCLI_NOALLOC_OVERRIDE__ENABLE__SHIFT 0x0
+#define DAGB0_WRCLI_NOALLOC_OVERRIDE__ENABLE_MASK 0x0000FFFFL
+//DAGB0_WRCLI_NOALLOC_OVERRIDE_VALUE
+#define DAGB0_WRCLI_NOALLOC_OVERRIDE_VALUE__VALUE__SHIFT 0x0
+#define DAGB0_WRCLI_NOALLOC_OVERRIDE_VALUE__VALUE_MASK 0x0000FFFFL
+//DAGB0_DAGB_DLY
+#define DAGB0_DAGB_DLY__DLY__SHIFT 0x0
+#define DAGB0_DAGB_DLY__CLI__SHIFT 0x8
+#define DAGB0_DAGB_DLY__POS__SHIFT 0x10
+#define DAGB0_DAGB_DLY__DLY_MASK 0x000000FFL
+#define DAGB0_DAGB_DLY__CLI_MASK 0x0000FF00L
+#define DAGB0_DAGB_DLY__POS_MASK 0x000F0000L
+//DAGB0_CNTL_MISC
+#define DAGB0_CNTL_MISC__EA_VC0_REMAP__SHIFT 0x0
+#define DAGB0_CNTL_MISC__EA_VC1_REMAP__SHIFT 0x3
+#define DAGB0_CNTL_MISC__EA_VC2_REMAP__SHIFT 0x6
+#define DAGB0_CNTL_MISC__EA_VC3_REMAP__SHIFT 0x9
+#define DAGB0_CNTL_MISC__EA_VC4_REMAP__SHIFT 0xc
+#define DAGB0_CNTL_MISC__EA_VC5_REMAP__SHIFT 0xf
+#define DAGB0_CNTL_MISC__EA_VC6_REMAP__SHIFT 0x12
+#define DAGB0_CNTL_MISC__EA_VC7_REMAP__SHIFT 0x15
+#define DAGB0_CNTL_MISC__BW_INIT_CYCLE__SHIFT 0x18
+#define DAGB0_CNTL_MISC__BW_RW_GAP_CYCLE__SHIFT 0x1e
+#define DAGB0_CNTL_MISC__EA_VC0_REMAP_MASK 0x00000007L
+#define DAGB0_CNTL_MISC__EA_VC1_REMAP_MASK 0x00000038L
+#define DAGB0_CNTL_MISC__EA_VC2_REMAP_MASK 0x000001C0L
+#define DAGB0_CNTL_MISC__EA_VC3_REMAP_MASK 0x00000E00L
+#define DAGB0_CNTL_MISC__EA_VC4_REMAP_MASK 0x00007000L
+#define DAGB0_CNTL_MISC__EA_VC5_REMAP_MASK 0x00038000L
+#define DAGB0_CNTL_MISC__EA_VC6_REMAP_MASK 0x001C0000L
+#define DAGB0_CNTL_MISC__EA_VC7_REMAP_MASK 0x00E00000L
+#define DAGB0_CNTL_MISC__BW_INIT_CYCLE_MASK 0x3F000000L
+#define DAGB0_CNTL_MISC__BW_RW_GAP_CYCLE_MASK 0xC0000000L
+//DAGB0_CNTL_MISC2
+#define DAGB0_CNTL_MISC2__URG_BOOST_ENABLE__SHIFT 0x0
+#define DAGB0_CNTL_MISC2__URG_HALT_ENABLE__SHIFT 0x1
+#define DAGB0_CNTL_MISC2__DISABLE_WRREQ_CG__SHIFT 0x2
+#define DAGB0_CNTL_MISC2__DISABLE_WRRET_CG__SHIFT 0x3
+#define DAGB0_CNTL_MISC2__DISABLE_RDREQ_CG__SHIFT 0x4
+#define DAGB0_CNTL_MISC2__DISABLE_RDRET_CG__SHIFT 0x5
+#define DAGB0_CNTL_MISC2__DISABLE_TLBWR_CG__SHIFT 0x6
+#define DAGB0_CNTL_MISC2__DISABLE_TLBRD_CG__SHIFT 0x7
+#define DAGB0_CNTL_MISC2__DISABLE_EAWRREQ_BUSY__SHIFT 0x8
+#define DAGB0_CNTL_MISC2__DISABLE_EARDREQ_BUSY__SHIFT 0x9
+#define DAGB0_CNTL_MISC2__SWAP_CTL__SHIFT 0xa
+#define DAGB0_CNTL_MISC2__RDRET_FIFO_PERF__SHIFT 0xb
+#define DAGB0_CNTL_MISC2__HDP_CID__SHIFT 0xc
+#define DAGB0_CNTL_MISC2__RDRET_FIFO_DLOCK_CREDITS__SHIFT 0x10
+#define DAGB0_CNTL_MISC2__URG_BOOST_ENABLE_MASK 0x00000001L
+#define DAGB0_CNTL_MISC2__URG_HALT_ENABLE_MASK 0x00000002L
+#define DAGB0_CNTL_MISC2__DISABLE_WRREQ_CG_MASK 0x00000004L
+#define DAGB0_CNTL_MISC2__DISABLE_WRRET_CG_MASK 0x00000008L
+#define DAGB0_CNTL_MISC2__DISABLE_RDREQ_CG_MASK 0x00000010L
+#define DAGB0_CNTL_MISC2__DISABLE_RDRET_CG_MASK 0x00000020L
+#define DAGB0_CNTL_MISC2__DISABLE_TLBWR_CG_MASK 0x00000040L
+#define DAGB0_CNTL_MISC2__DISABLE_TLBRD_CG_MASK 0x00000080L
+#define DAGB0_CNTL_MISC2__DISABLE_EAWRREQ_BUSY_MASK 0x00000100L
+#define DAGB0_CNTL_MISC2__DISABLE_EARDREQ_BUSY_MASK 0x00000200L
+#define DAGB0_CNTL_MISC2__SWAP_CTL_MASK 0x00000400L
+#define DAGB0_CNTL_MISC2__RDRET_FIFO_PERF_MASK 0x00000800L
+#define DAGB0_CNTL_MISC2__HDP_CID_MASK 0x0000F000L
+#define DAGB0_CNTL_MISC2__RDRET_FIFO_DLOCK_CREDITS_MASK 0x003F0000L
+//DAGB0_FATAL_ERROR_CNTL
+#define DAGB0_FATAL_ERROR_CNTL__FILTER_NUM__SHIFT 0x0
+#define DAGB0_FATAL_ERROR_CNTL__FILTER_NUM_MASK 0x000003FFL
+//DAGB0_FATAL_ERROR_CLEAR
+#define DAGB0_FATAL_ERROR_CLEAR__CLEAR__SHIFT 0x0
+#define DAGB0_FATAL_ERROR_CLEAR__CLEAR_MASK 0x00000001L
+//DAGB0_FATAL_ERROR_STATUS0
+#define DAGB0_FATAL_ERROR_STATUS0__VALID__SHIFT 0x0
+#define DAGB0_FATAL_ERROR_STATUS0__CID__SHIFT 0x1
+#define DAGB0_FATAL_ERROR_STATUS0__ADDR_LO__SHIFT 0x6
+#define DAGB0_FATAL_ERROR_STATUS0__VALID_MASK 0x00000001L
+#define DAGB0_FATAL_ERROR_STATUS0__CID_MASK 0x0000003EL
+#define DAGB0_FATAL_ERROR_STATUS0__ADDR_LO_MASK 0xFFFFFFC0L
+//DAGB0_FATAL_ERROR_STATUS1
+#define DAGB0_FATAL_ERROR_STATUS1__ADDR_HI__SHIFT 0x0
+#define DAGB0_FATAL_ERROR_STATUS1__ADDR_HI_MASK 0x0001FFFFL
+//DAGB0_FATAL_ERROR_STATUS2
+#define DAGB0_FATAL_ERROR_STATUS2__TAG__SHIFT 0x0
+#define DAGB0_FATAL_ERROR_STATUS2__VFID__SHIFT 0x10
+#define DAGB0_FATAL_ERROR_STATUS2__VF__SHIFT 0x14
+#define DAGB0_FATAL_ERROR_STATUS2__SPACE__SHIFT 0x15
+#define DAGB0_FATAL_ERROR_STATUS2__IO__SHIFT 0x16
+#define DAGB0_FATAL_ERROR_STATUS2__SIZE__SHIFT 0x17
+#define DAGB0_FATAL_ERROR_STATUS2__DBGMSK__SHIFT 0x18
+#define DAGB0_FATAL_ERROR_STATUS2__FED__SHIFT 0x19
+#define DAGB0_FATAL_ERROR_STATUS2__TAG_MASK 0x0000FFFFL
+#define DAGB0_FATAL_ERROR_STATUS2__VFID_MASK 0x000F0000L
+#define DAGB0_FATAL_ERROR_STATUS2__VF_MASK 0x00100000L
+#define DAGB0_FATAL_ERROR_STATUS2__SPACE_MASK 0x00200000L
+#define DAGB0_FATAL_ERROR_STATUS2__IO_MASK 0x00400000L
+#define DAGB0_FATAL_ERROR_STATUS2__SIZE_MASK 0x00800000L
+#define DAGB0_FATAL_ERROR_STATUS2__DBGMSK_MASK 0x01000000L
+#define DAGB0_FATAL_ERROR_STATUS2__FED_MASK 0x02000000L
+//DAGB0_FATAL_ERROR_STATUS3
+#define DAGB0_FATAL_ERROR_STATUS3__NOALLOC__SHIFT 0x0
+#define DAGB0_FATAL_ERROR_STATUS3__UNITID__SHIFT 0x1
+#define DAGB0_FATAL_ERROR_STATUS3__OP__SHIFT 0x7
+#define DAGB0_FATAL_ERROR_STATUS3__SECLEVEL__SHIFT 0xe
+#define DAGB0_FATAL_ERROR_STATUS3__WRTMZ__SHIFT 0x11
+#define DAGB0_FATAL_ERROR_STATUS3__RDTMZ__SHIFT 0x12
+#define DAGB0_FATAL_ERROR_STATUS3__SNOOP__SHIFT 0x13
+#define DAGB0_FATAL_ERROR_STATUS3__INVAL__SHIFT 0x14
+#define DAGB0_FATAL_ERROR_STATUS3__NACK__SHIFT 0x15
+#define DAGB0_FATAL_ERROR_STATUS3__RO__SHIFT 0x17
+#define DAGB0_FATAL_ERROR_STATUS3__MEMLOG__SHIFT 0x18
+#define DAGB0_FATAL_ERROR_STATUS3__EOP__SHIFT 0x19
+#define DAGB0_FATAL_ERROR_STATUS3__NOALLOC_MASK 0x00000001L
+#define DAGB0_FATAL_ERROR_STATUS3__UNITID_MASK 0x0000007EL
+#define DAGB0_FATAL_ERROR_STATUS3__OP_MASK 0x00003F80L
+#define DAGB0_FATAL_ERROR_STATUS3__SECLEVEL_MASK 0x0001C000L
+#define DAGB0_FATAL_ERROR_STATUS3__WRTMZ_MASK 0x00020000L
+#define DAGB0_FATAL_ERROR_STATUS3__RDTMZ_MASK 0x00040000L
+#define DAGB0_FATAL_ERROR_STATUS3__SNOOP_MASK 0x00080000L
+#define DAGB0_FATAL_ERROR_STATUS3__INVAL_MASK 0x00100000L
+#define DAGB0_FATAL_ERROR_STATUS3__NACK_MASK 0x00600000L
+#define DAGB0_FATAL_ERROR_STATUS3__RO_MASK 0x00800000L
+#define DAGB0_FATAL_ERROR_STATUS3__MEMLOG_MASK 0x01000000L
+#define DAGB0_FATAL_ERROR_STATUS3__EOP_MASK 0x02000000L
+//DAGB0_FIFO_EMPTY
+#define DAGB0_FIFO_EMPTY__EMPTY__SHIFT 0x0
+#define DAGB0_FIFO_EMPTY__EMPTY_MASK 0x00FFFFFFL
+//DAGB0_FIFO_FULL
+#define DAGB0_FIFO_FULL__FULL__SHIFT 0x0
+#define DAGB0_FIFO_FULL__FULL_MASK 0x007FFFFFL
+//DAGB0_WR_CREDITS_FULL
+#define DAGB0_WR_CREDITS_FULL__FULL__SHIFT 0x0
+#define DAGB0_WR_CREDITS_FULL__FULL_MASK 0x1FFFFFFFL
+//DAGB0_RD_CREDITS_FULL
+#define DAGB0_RD_CREDITS_FULL__FULL__SHIFT 0x0
+#define DAGB0_RD_CREDITS_FULL__FULL_MASK 0x0003FFFFL
+//DAGB0_PERFCOUNTER_LO
+#define DAGB0_PERFCOUNTER_LO__COUNTER_LO__SHIFT 0x0
+#define DAGB0_PERFCOUNTER_LO__COUNTER_LO_MASK 0xFFFFFFFFL
+//DAGB0_PERFCOUNTER_HI
+#define DAGB0_PERFCOUNTER_HI__COUNTER_HI__SHIFT 0x0
+#define DAGB0_PERFCOUNTER_HI__COMPARE_VALUE__SHIFT 0x10
+#define DAGB0_PERFCOUNTER_HI__COUNTER_HI_MASK 0x0000FFFFL
+#define DAGB0_PERFCOUNTER_HI__COMPARE_VALUE_MASK 0xFFFF0000L
+//DAGB0_PERFCOUNTER0_CFG
+#define DAGB0_PERFCOUNTER0_CFG__PERF_SEL__SHIFT 0x0
+#define DAGB0_PERFCOUNTER0_CFG__PERF_SEL_END__SHIFT 0x8
+#define DAGB0_PERFCOUNTER0_CFG__PERF_MODE__SHIFT 0x18
+#define DAGB0_PERFCOUNTER0_CFG__ENABLE__SHIFT 0x1c
+#define DAGB0_PERFCOUNTER0_CFG__CLEAR__SHIFT 0x1d
+#define DAGB0_PERFCOUNTER0_CFG__PERF_SEL_MASK 0x000000FFL
+#define DAGB0_PERFCOUNTER0_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define DAGB0_PERFCOUNTER0_CFG__PERF_MODE_MASK 0x0F000000L
+#define DAGB0_PERFCOUNTER0_CFG__ENABLE_MASK 0x10000000L
+#define DAGB0_PERFCOUNTER0_CFG__CLEAR_MASK 0x20000000L
+//DAGB0_PERFCOUNTER1_CFG
+#define DAGB0_PERFCOUNTER1_CFG__PERF_SEL__SHIFT 0x0
+#define DAGB0_PERFCOUNTER1_CFG__PERF_SEL_END__SHIFT 0x8
+#define DAGB0_PERFCOUNTER1_CFG__PERF_MODE__SHIFT 0x18
+#define DAGB0_PERFCOUNTER1_CFG__ENABLE__SHIFT 0x1c
+#define DAGB0_PERFCOUNTER1_CFG__CLEAR__SHIFT 0x1d
+#define DAGB0_PERFCOUNTER1_CFG__PERF_SEL_MASK 0x000000FFL
+#define DAGB0_PERFCOUNTER1_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define DAGB0_PERFCOUNTER1_CFG__PERF_MODE_MASK 0x0F000000L
+#define DAGB0_PERFCOUNTER1_CFG__ENABLE_MASK 0x10000000L
+#define DAGB0_PERFCOUNTER1_CFG__CLEAR_MASK 0x20000000L
+//DAGB0_PERFCOUNTER2_CFG
+#define DAGB0_PERFCOUNTER2_CFG__PERF_SEL__SHIFT 0x0
+#define DAGB0_PERFCOUNTER2_CFG__PERF_SEL_END__SHIFT 0x8
+#define DAGB0_PERFCOUNTER2_CFG__PERF_MODE__SHIFT 0x18
+#define DAGB0_PERFCOUNTER2_CFG__ENABLE__SHIFT 0x1c
+#define DAGB0_PERFCOUNTER2_CFG__CLEAR__SHIFT 0x1d
+#define DAGB0_PERFCOUNTER2_CFG__PERF_SEL_MASK 0x000000FFL
+#define DAGB0_PERFCOUNTER2_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define DAGB0_PERFCOUNTER2_CFG__PERF_MODE_MASK 0x0F000000L
+#define DAGB0_PERFCOUNTER2_CFG__ENABLE_MASK 0x10000000L
+#define DAGB0_PERFCOUNTER2_CFG__CLEAR_MASK 0x20000000L
+//DAGB0_PERFCOUNTER_RSLT_CNTL
+#define DAGB0_PERFCOUNTER_RSLT_CNTL__PERF_COUNTER_SELECT__SHIFT 0x0
+#define DAGB0_PERFCOUNTER_RSLT_CNTL__START_TRIGGER__SHIFT 0x8
+#define DAGB0_PERFCOUNTER_RSLT_CNTL__STOP_TRIGGER__SHIFT 0x10
+#define DAGB0_PERFCOUNTER_RSLT_CNTL__ENABLE_ANY__SHIFT 0x18
+#define DAGB0_PERFCOUNTER_RSLT_CNTL__CLEAR_ALL__SHIFT 0x19
+#define DAGB0_PERFCOUNTER_RSLT_CNTL__STOP_ALL_ON_SATURATE__SHIFT 0x1a
+#define DAGB0_PERFCOUNTER_RSLT_CNTL__PERF_COUNTER_SELECT_MASK 0x0000000FL
+#define DAGB0_PERFCOUNTER_RSLT_CNTL__START_TRIGGER_MASK 0x0000FF00L
+#define DAGB0_PERFCOUNTER_RSLT_CNTL__STOP_TRIGGER_MASK 0x00FF0000L
+#define DAGB0_PERFCOUNTER_RSLT_CNTL__ENABLE_ANY_MASK 0x01000000L
+#define DAGB0_PERFCOUNTER_RSLT_CNTL__CLEAR_ALL_MASK 0x02000000L
+#define DAGB0_PERFCOUNTER_RSLT_CNTL__STOP_ALL_ON_SATURATE_MASK 0x04000000L
+//DAGB0_L1TLB_REG_RW
+#define DAGB0_L1TLB_REG_RW__REG_WRITE_L1TLB_CTRL__SHIFT 0x0
+#define DAGB0_L1TLB_REG_RW__REG_READ_L1TLB_CTRL__SHIFT 0x1
+#define DAGB0_L1TLB_REG_RW__VMID_EXCEP_INT_CTRL__SHIFT 0x2
+#define DAGB0_L1TLB_REG_RW__WDAT_PARITY_CHECK__SHIFT 0x4
+#define DAGB0_L1TLB_REG_RW__DISABLE_RDRET_CHECK__SHIFT 0x5
+#define DAGB0_L1TLB_REG_RW__RESERVE__SHIFT 0x6
+#define DAGB0_L1TLB_REG_RW__REG_WRITE_L1TLB_CTRL_MASK 0x00000001L
+#define DAGB0_L1TLB_REG_RW__REG_READ_L1TLB_CTRL_MASK 0x00000002L
+#define DAGB0_L1TLB_REG_RW__VMID_EXCEP_INT_CTRL_MASK 0x00000004L
+#define DAGB0_L1TLB_REG_RW__WDAT_PARITY_CHECK_MASK 0x00000010L
+#define DAGB0_L1TLB_REG_RW__DISABLE_RDRET_CHECK_MASK 0x00000020L
+#define DAGB0_L1TLB_REG_RW__RESERVE_MASK 0xFFFFFFC0L
+
+
+// addressBlock: aid_mmhub_dagb_dagbdec1
+//DAGB1_RDCLI0
+#define DAGB1_RDCLI0__VIRT_CHAN__SHIFT 0x0
+#define DAGB1_RDCLI0__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB1_RDCLI0__URG_HIGH__SHIFT 0x4
+#define DAGB1_RDCLI0__URG_LOW__SHIFT 0x8
+#define DAGB1_RDCLI0__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB1_RDCLI0__MAX_BW__SHIFT 0xd
+#define DAGB1_RDCLI0__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB1_RDCLI0__MIN_BW__SHIFT 0x16
+#define DAGB1_RDCLI0__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB1_RDCLI0__MAX_OSD__SHIFT 0x1a
+#define DAGB1_RDCLI0__VIRT_CHAN_MASK 0x00000007L
+#define DAGB1_RDCLI0__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB1_RDCLI0__URG_HIGH_MASK 0x000000F0L
+#define DAGB1_RDCLI0__URG_LOW_MASK 0x00000F00L
+#define DAGB1_RDCLI0__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB1_RDCLI0__MAX_BW_MASK 0x001FE000L
+#define DAGB1_RDCLI0__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB1_RDCLI0__MIN_BW_MASK 0x01C00000L
+#define DAGB1_RDCLI0__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB1_RDCLI0__MAX_OSD_MASK 0xFC000000L
+//DAGB1_RDCLI1
+#define DAGB1_RDCLI1__VIRT_CHAN__SHIFT 0x0
+#define DAGB1_RDCLI1__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB1_RDCLI1__URG_HIGH__SHIFT 0x4
+#define DAGB1_RDCLI1__URG_LOW__SHIFT 0x8
+#define DAGB1_RDCLI1__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB1_RDCLI1__MAX_BW__SHIFT 0xd
+#define DAGB1_RDCLI1__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB1_RDCLI1__MIN_BW__SHIFT 0x16
+#define DAGB1_RDCLI1__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB1_RDCLI1__MAX_OSD__SHIFT 0x1a
+#define DAGB1_RDCLI1__VIRT_CHAN_MASK 0x00000007L
+#define DAGB1_RDCLI1__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB1_RDCLI1__URG_HIGH_MASK 0x000000F0L
+#define DAGB1_RDCLI1__URG_LOW_MASK 0x00000F00L
+#define DAGB1_RDCLI1__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB1_RDCLI1__MAX_BW_MASK 0x001FE000L
+#define DAGB1_RDCLI1__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB1_RDCLI1__MIN_BW_MASK 0x01C00000L
+#define DAGB1_RDCLI1__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB1_RDCLI1__MAX_OSD_MASK 0xFC000000L
+//DAGB1_RDCLI2
+#define DAGB1_RDCLI2__VIRT_CHAN__SHIFT 0x0
+#define DAGB1_RDCLI2__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB1_RDCLI2__URG_HIGH__SHIFT 0x4
+#define DAGB1_RDCLI2__URG_LOW__SHIFT 0x8
+#define DAGB1_RDCLI2__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB1_RDCLI2__MAX_BW__SHIFT 0xd
+#define DAGB1_RDCLI2__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB1_RDCLI2__MIN_BW__SHIFT 0x16
+#define DAGB1_RDCLI2__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB1_RDCLI2__MAX_OSD__SHIFT 0x1a
+#define DAGB1_RDCLI2__VIRT_CHAN_MASK 0x00000007L
+#define DAGB1_RDCLI2__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB1_RDCLI2__URG_HIGH_MASK 0x000000F0L
+#define DAGB1_RDCLI2__URG_LOW_MASK 0x00000F00L
+#define DAGB1_RDCLI2__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB1_RDCLI2__MAX_BW_MASK 0x001FE000L
+#define DAGB1_RDCLI2__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB1_RDCLI2__MIN_BW_MASK 0x01C00000L
+#define DAGB1_RDCLI2__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB1_RDCLI2__MAX_OSD_MASK 0xFC000000L
+//DAGB1_RDCLI3
+#define DAGB1_RDCLI3__VIRT_CHAN__SHIFT 0x0
+#define DAGB1_RDCLI3__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB1_RDCLI3__URG_HIGH__SHIFT 0x4
+#define DAGB1_RDCLI3__URG_LOW__SHIFT 0x8
+#define DAGB1_RDCLI3__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB1_RDCLI3__MAX_BW__SHIFT 0xd
+#define DAGB1_RDCLI3__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB1_RDCLI3__MIN_BW__SHIFT 0x16
+#define DAGB1_RDCLI3__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB1_RDCLI3__MAX_OSD__SHIFT 0x1a
+#define DAGB1_RDCLI3__VIRT_CHAN_MASK 0x00000007L
+#define DAGB1_RDCLI3__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB1_RDCLI3__URG_HIGH_MASK 0x000000F0L
+#define DAGB1_RDCLI3__URG_LOW_MASK 0x00000F00L
+#define DAGB1_RDCLI3__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB1_RDCLI3__MAX_BW_MASK 0x001FE000L
+#define DAGB1_RDCLI3__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB1_RDCLI3__MIN_BW_MASK 0x01C00000L
+#define DAGB1_RDCLI3__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB1_RDCLI3__MAX_OSD_MASK 0xFC000000L
+//DAGB1_RDCLI4
+#define DAGB1_RDCLI4__VIRT_CHAN__SHIFT 0x0
+#define DAGB1_RDCLI4__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB1_RDCLI4__URG_HIGH__SHIFT 0x4
+#define DAGB1_RDCLI4__URG_LOW__SHIFT 0x8
+#define DAGB1_RDCLI4__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB1_RDCLI4__MAX_BW__SHIFT 0xd
+#define DAGB1_RDCLI4__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB1_RDCLI4__MIN_BW__SHIFT 0x16
+#define DAGB1_RDCLI4__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB1_RDCLI4__MAX_OSD__SHIFT 0x1a
+#define DAGB1_RDCLI4__VIRT_CHAN_MASK 0x00000007L
+#define DAGB1_RDCLI4__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB1_RDCLI4__URG_HIGH_MASK 0x000000F0L
+#define DAGB1_RDCLI4__URG_LOW_MASK 0x00000F00L
+#define DAGB1_RDCLI4__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB1_RDCLI4__MAX_BW_MASK 0x001FE000L
+#define DAGB1_RDCLI4__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB1_RDCLI4__MIN_BW_MASK 0x01C00000L
+#define DAGB1_RDCLI4__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB1_RDCLI4__MAX_OSD_MASK 0xFC000000L
+//DAGB1_RDCLI5
+#define DAGB1_RDCLI5__VIRT_CHAN__SHIFT 0x0
+#define DAGB1_RDCLI5__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB1_RDCLI5__URG_HIGH__SHIFT 0x4
+#define DAGB1_RDCLI5__URG_LOW__SHIFT 0x8
+#define DAGB1_RDCLI5__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB1_RDCLI5__MAX_BW__SHIFT 0xd
+#define DAGB1_RDCLI5__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB1_RDCLI5__MIN_BW__SHIFT 0x16
+#define DAGB1_RDCLI5__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB1_RDCLI5__MAX_OSD__SHIFT 0x1a
+#define DAGB1_RDCLI5__VIRT_CHAN_MASK 0x00000007L
+#define DAGB1_RDCLI5__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB1_RDCLI5__URG_HIGH_MASK 0x000000F0L
+#define DAGB1_RDCLI5__URG_LOW_MASK 0x00000F00L
+#define DAGB1_RDCLI5__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB1_RDCLI5__MAX_BW_MASK 0x001FE000L
+#define DAGB1_RDCLI5__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB1_RDCLI5__MIN_BW_MASK 0x01C00000L
+#define DAGB1_RDCLI5__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB1_RDCLI5__MAX_OSD_MASK 0xFC000000L
+//DAGB1_RDCLI6
+#define DAGB1_RDCLI6__VIRT_CHAN__SHIFT 0x0
+#define DAGB1_RDCLI6__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB1_RDCLI6__URG_HIGH__SHIFT 0x4
+#define DAGB1_RDCLI6__URG_LOW__SHIFT 0x8
+#define DAGB1_RDCLI6__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB1_RDCLI6__MAX_BW__SHIFT 0xd
+#define DAGB1_RDCLI6__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB1_RDCLI6__MIN_BW__SHIFT 0x16
+#define DAGB1_RDCLI6__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB1_RDCLI6__MAX_OSD__SHIFT 0x1a
+#define DAGB1_RDCLI6__VIRT_CHAN_MASK 0x00000007L
+#define DAGB1_RDCLI6__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB1_RDCLI6__URG_HIGH_MASK 0x000000F0L
+#define DAGB1_RDCLI6__URG_LOW_MASK 0x00000F00L
+#define DAGB1_RDCLI6__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB1_RDCLI6__MAX_BW_MASK 0x001FE000L
+#define DAGB1_RDCLI6__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB1_RDCLI6__MIN_BW_MASK 0x01C00000L
+#define DAGB1_RDCLI6__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB1_RDCLI6__MAX_OSD_MASK 0xFC000000L
+//DAGB1_RDCLI7
+#define DAGB1_RDCLI7__VIRT_CHAN__SHIFT 0x0
+#define DAGB1_RDCLI7__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB1_RDCLI7__URG_HIGH__SHIFT 0x4
+#define DAGB1_RDCLI7__URG_LOW__SHIFT 0x8
+#define DAGB1_RDCLI7__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB1_RDCLI7__MAX_BW__SHIFT 0xd
+#define DAGB1_RDCLI7__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB1_RDCLI7__MIN_BW__SHIFT 0x16
+#define DAGB1_RDCLI7__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB1_RDCLI7__MAX_OSD__SHIFT 0x1a
+#define DAGB1_RDCLI7__VIRT_CHAN_MASK 0x00000007L
+#define DAGB1_RDCLI7__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB1_RDCLI7__URG_HIGH_MASK 0x000000F0L
+#define DAGB1_RDCLI7__URG_LOW_MASK 0x00000F00L
+#define DAGB1_RDCLI7__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB1_RDCLI7__MAX_BW_MASK 0x001FE000L
+#define DAGB1_RDCLI7__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB1_RDCLI7__MIN_BW_MASK 0x01C00000L
+#define DAGB1_RDCLI7__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB1_RDCLI7__MAX_OSD_MASK 0xFC000000L
+//DAGB1_RDCLI8
+#define DAGB1_RDCLI8__VIRT_CHAN__SHIFT 0x0
+#define DAGB1_RDCLI8__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB1_RDCLI8__URG_HIGH__SHIFT 0x4
+#define DAGB1_RDCLI8__URG_LOW__SHIFT 0x8
+#define DAGB1_RDCLI8__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB1_RDCLI8__MAX_BW__SHIFT 0xd
+#define DAGB1_RDCLI8__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB1_RDCLI8__MIN_BW__SHIFT 0x16
+#define DAGB1_RDCLI8__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB1_RDCLI8__MAX_OSD__SHIFT 0x1a
+#define DAGB1_RDCLI8__VIRT_CHAN_MASK 0x00000007L
+#define DAGB1_RDCLI8__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB1_RDCLI8__URG_HIGH_MASK 0x000000F0L
+#define DAGB1_RDCLI8__URG_LOW_MASK 0x00000F00L
+#define DAGB1_RDCLI8__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB1_RDCLI8__MAX_BW_MASK 0x001FE000L
+#define DAGB1_RDCLI8__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB1_RDCLI8__MIN_BW_MASK 0x01C00000L
+#define DAGB1_RDCLI8__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB1_RDCLI8__MAX_OSD_MASK 0xFC000000L
+//DAGB1_RDCLI9
+#define DAGB1_RDCLI9__VIRT_CHAN__SHIFT 0x0
+#define DAGB1_RDCLI9__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB1_RDCLI9__URG_HIGH__SHIFT 0x4
+#define DAGB1_RDCLI9__URG_LOW__SHIFT 0x8
+#define DAGB1_RDCLI9__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB1_RDCLI9__MAX_BW__SHIFT 0xd
+#define DAGB1_RDCLI9__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB1_RDCLI9__MIN_BW__SHIFT 0x16
+#define DAGB1_RDCLI9__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB1_RDCLI9__MAX_OSD__SHIFT 0x1a
+#define DAGB1_RDCLI9__VIRT_CHAN_MASK 0x00000007L
+#define DAGB1_RDCLI9__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB1_RDCLI9__URG_HIGH_MASK 0x000000F0L
+#define DAGB1_RDCLI9__URG_LOW_MASK 0x00000F00L
+#define DAGB1_RDCLI9__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB1_RDCLI9__MAX_BW_MASK 0x001FE000L
+#define DAGB1_RDCLI9__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB1_RDCLI9__MIN_BW_MASK 0x01C00000L
+#define DAGB1_RDCLI9__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB1_RDCLI9__MAX_OSD_MASK 0xFC000000L
+//DAGB1_RDCLI10
+#define DAGB1_RDCLI10__VIRT_CHAN__SHIFT 0x0
+#define DAGB1_RDCLI10__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB1_RDCLI10__URG_HIGH__SHIFT 0x4
+#define DAGB1_RDCLI10__URG_LOW__SHIFT 0x8
+#define DAGB1_RDCLI10__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB1_RDCLI10__MAX_BW__SHIFT 0xd
+#define DAGB1_RDCLI10__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB1_RDCLI10__MIN_BW__SHIFT 0x16
+#define DAGB1_RDCLI10__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB1_RDCLI10__MAX_OSD__SHIFT 0x1a
+#define DAGB1_RDCLI10__VIRT_CHAN_MASK 0x00000007L
+#define DAGB1_RDCLI10__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB1_RDCLI10__URG_HIGH_MASK 0x000000F0L
+#define DAGB1_RDCLI10__URG_LOW_MASK 0x00000F00L
+#define DAGB1_RDCLI10__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB1_RDCLI10__MAX_BW_MASK 0x001FE000L
+#define DAGB1_RDCLI10__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB1_RDCLI10__MIN_BW_MASK 0x01C00000L
+#define DAGB1_RDCLI10__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB1_RDCLI10__MAX_OSD_MASK 0xFC000000L
+//DAGB1_RDCLI11
+#define DAGB1_RDCLI11__VIRT_CHAN__SHIFT 0x0
+#define DAGB1_RDCLI11__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB1_RDCLI11__URG_HIGH__SHIFT 0x4
+#define DAGB1_RDCLI11__URG_LOW__SHIFT 0x8
+#define DAGB1_RDCLI11__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB1_RDCLI11__MAX_BW__SHIFT 0xd
+#define DAGB1_RDCLI11__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB1_RDCLI11__MIN_BW__SHIFT 0x16
+#define DAGB1_RDCLI11__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB1_RDCLI11__MAX_OSD__SHIFT 0x1a
+#define DAGB1_RDCLI11__VIRT_CHAN_MASK 0x00000007L
+#define DAGB1_RDCLI11__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB1_RDCLI11__URG_HIGH_MASK 0x000000F0L
+#define DAGB1_RDCLI11__URG_LOW_MASK 0x00000F00L
+#define DAGB1_RDCLI11__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB1_RDCLI11__MAX_BW_MASK 0x001FE000L
+#define DAGB1_RDCLI11__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB1_RDCLI11__MIN_BW_MASK 0x01C00000L
+#define DAGB1_RDCLI11__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB1_RDCLI11__MAX_OSD_MASK 0xFC000000L
+//DAGB1_RDCLI12
+#define DAGB1_RDCLI12__VIRT_CHAN__SHIFT 0x0
+#define DAGB1_RDCLI12__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB1_RDCLI12__URG_HIGH__SHIFT 0x4
+#define DAGB1_RDCLI12__URG_LOW__SHIFT 0x8
+#define DAGB1_RDCLI12__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB1_RDCLI12__MAX_BW__SHIFT 0xd
+#define DAGB1_RDCLI12__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB1_RDCLI12__MIN_BW__SHIFT 0x16
+#define DAGB1_RDCLI12__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB1_RDCLI12__MAX_OSD__SHIFT 0x1a
+#define DAGB1_RDCLI12__VIRT_CHAN_MASK 0x00000007L
+#define DAGB1_RDCLI12__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB1_RDCLI12__URG_HIGH_MASK 0x000000F0L
+#define DAGB1_RDCLI12__URG_LOW_MASK 0x00000F00L
+#define DAGB1_RDCLI12__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB1_RDCLI12__MAX_BW_MASK 0x001FE000L
+#define DAGB1_RDCLI12__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB1_RDCLI12__MIN_BW_MASK 0x01C00000L
+#define DAGB1_RDCLI12__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB1_RDCLI12__MAX_OSD_MASK 0xFC000000L
+//DAGB1_RDCLI13
+#define DAGB1_RDCLI13__VIRT_CHAN__SHIFT 0x0
+#define DAGB1_RDCLI13__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB1_RDCLI13__URG_HIGH__SHIFT 0x4
+#define DAGB1_RDCLI13__URG_LOW__SHIFT 0x8
+#define DAGB1_RDCLI13__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB1_RDCLI13__MAX_BW__SHIFT 0xd
+#define DAGB1_RDCLI13__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB1_RDCLI13__MIN_BW__SHIFT 0x16
+#define DAGB1_RDCLI13__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB1_RDCLI13__MAX_OSD__SHIFT 0x1a
+#define DAGB1_RDCLI13__VIRT_CHAN_MASK 0x00000007L
+#define DAGB1_RDCLI13__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB1_RDCLI13__URG_HIGH_MASK 0x000000F0L
+#define DAGB1_RDCLI13__URG_LOW_MASK 0x00000F00L
+#define DAGB1_RDCLI13__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB1_RDCLI13__MAX_BW_MASK 0x001FE000L
+#define DAGB1_RDCLI13__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB1_RDCLI13__MIN_BW_MASK 0x01C00000L
+#define DAGB1_RDCLI13__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB1_RDCLI13__MAX_OSD_MASK 0xFC000000L
+//DAGB1_RDCLI14
+#define DAGB1_RDCLI14__VIRT_CHAN__SHIFT 0x0
+#define DAGB1_RDCLI14__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB1_RDCLI14__URG_HIGH__SHIFT 0x4
+#define DAGB1_RDCLI14__URG_LOW__SHIFT 0x8
+#define DAGB1_RDCLI14__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB1_RDCLI14__MAX_BW__SHIFT 0xd
+#define DAGB1_RDCLI14__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB1_RDCLI14__MIN_BW__SHIFT 0x16
+#define DAGB1_RDCLI14__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB1_RDCLI14__MAX_OSD__SHIFT 0x1a
+#define DAGB1_RDCLI14__VIRT_CHAN_MASK 0x00000007L
+#define DAGB1_RDCLI14__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB1_RDCLI14__URG_HIGH_MASK 0x000000F0L
+#define DAGB1_RDCLI14__URG_LOW_MASK 0x00000F00L
+#define DAGB1_RDCLI14__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB1_RDCLI14__MAX_BW_MASK 0x001FE000L
+#define DAGB1_RDCLI14__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB1_RDCLI14__MIN_BW_MASK 0x01C00000L
+#define DAGB1_RDCLI14__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB1_RDCLI14__MAX_OSD_MASK 0xFC000000L
+//DAGB1_RDCLI15
+#define DAGB1_RDCLI15__VIRT_CHAN__SHIFT 0x0
+#define DAGB1_RDCLI15__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB1_RDCLI15__URG_HIGH__SHIFT 0x4
+#define DAGB1_RDCLI15__URG_LOW__SHIFT 0x8
+#define DAGB1_RDCLI15__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB1_RDCLI15__MAX_BW__SHIFT 0xd
+#define DAGB1_RDCLI15__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB1_RDCLI15__MIN_BW__SHIFT 0x16
+#define DAGB1_RDCLI15__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB1_RDCLI15__MAX_OSD__SHIFT 0x1a
+#define DAGB1_RDCLI15__VIRT_CHAN_MASK 0x00000007L
+#define DAGB1_RDCLI15__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB1_RDCLI15__URG_HIGH_MASK 0x000000F0L
+#define DAGB1_RDCLI15__URG_LOW_MASK 0x00000F00L
+#define DAGB1_RDCLI15__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB1_RDCLI15__MAX_BW_MASK 0x001FE000L
+#define DAGB1_RDCLI15__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB1_RDCLI15__MIN_BW_MASK 0x01C00000L
+#define DAGB1_RDCLI15__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB1_RDCLI15__MAX_OSD_MASK 0xFC000000L
+//DAGB1_RD_CNTL
+#define DAGB1_RD_CNTL__SCLK_FREQ__SHIFT 0x0
+#define DAGB1_RD_CNTL__CLI_MAX_BW_WINDOW__SHIFT 0x4
+#define DAGB1_RD_CNTL__VC_MAX_BW_WINDOW__SHIFT 0xa
+#define DAGB1_RD_CNTL__IO_LEVEL_OVERRIDE_ENABLE__SHIFT 0x10
+#define DAGB1_RD_CNTL__IO_LEVEL__SHIFT 0x11
+#define DAGB1_RD_CNTL__IO_LEVEL_COMPLY_VC__SHIFT 0x14
+#define DAGB1_RD_CNTL__SHARE_VC_NUM__SHIFT 0x17
+#define DAGB1_RD_CNTL__FIX_JUMP__SHIFT 0x1a
+#define DAGB1_RD_CNTL__SCLK_FREQ_MASK 0x0000000FL
+#define DAGB1_RD_CNTL__CLI_MAX_BW_WINDOW_MASK 0x000003F0L
+#define DAGB1_RD_CNTL__VC_MAX_BW_WINDOW_MASK 0x0000FC00L
+#define DAGB1_RD_CNTL__IO_LEVEL_OVERRIDE_ENABLE_MASK 0x00010000L
+#define DAGB1_RD_CNTL__IO_LEVEL_MASK 0x000E0000L
+#define DAGB1_RD_CNTL__IO_LEVEL_COMPLY_VC_MASK 0x00700000L
+#define DAGB1_RD_CNTL__SHARE_VC_NUM_MASK 0x03800000L
+#define DAGB1_RD_CNTL__FIX_JUMP_MASK 0x04000000L
+//DAGB1_RD_GMI_CNTL
+#define DAGB1_RD_GMI_CNTL__EA_CREDIT__SHIFT 0x0
+#define DAGB1_RD_GMI_CNTL__LEVEL__SHIFT 0x6
+#define DAGB1_RD_GMI_CNTL__MAX_BURST__SHIFT 0x9
+#define DAGB1_RD_GMI_CNTL__LAZY_TIMER__SHIFT 0xd
+#define DAGB1_RD_GMI_CNTL__EA_CREDIT_MASK 0x0000003FL
+#define DAGB1_RD_GMI_CNTL__LEVEL_MASK 0x000001C0L
+#define DAGB1_RD_GMI_CNTL__MAX_BURST_MASK 0x00001E00L
+#define DAGB1_RD_GMI_CNTL__LAZY_TIMER_MASK 0x0001E000L
+//DAGB1_RD_ADDR_DAGB
+#define DAGB1_RD_ADDR_DAGB__DAGB_ENABLE__SHIFT 0x0
+#define DAGB1_RD_ADDR_DAGB__ENABLE_JUMP_AHEAD__SHIFT 0x3
+#define DAGB1_RD_ADDR_DAGB__DISABLE_SELF_INIT__SHIFT 0x6
+#define DAGB1_RD_ADDR_DAGB__WHOAMI__SHIFT 0x7
+#define DAGB1_RD_ADDR_DAGB__JUMP_MODE__SHIFT 0xd
+#define DAGB1_RD_ADDR_DAGB__DAGB_ENABLE_MASK 0x00000007L
+#define DAGB1_RD_ADDR_DAGB__ENABLE_JUMP_AHEAD_MASK 0x00000038L
+#define DAGB1_RD_ADDR_DAGB__DISABLE_SELF_INIT_MASK 0x00000040L
+#define DAGB1_RD_ADDR_DAGB__WHOAMI_MASK 0x00001F80L
+#define DAGB1_RD_ADDR_DAGB__JUMP_MODE_MASK 0x00002000L
+//DAGB1_RD_OUTPUT_DAGB_MAX_BURST
+#define DAGB1_RD_OUTPUT_DAGB_MAX_BURST__VC0__SHIFT 0x0
+#define DAGB1_RD_OUTPUT_DAGB_MAX_BURST__VC1__SHIFT 0x4
+#define DAGB1_RD_OUTPUT_DAGB_MAX_BURST__VC2__SHIFT 0x8
+#define DAGB1_RD_OUTPUT_DAGB_MAX_BURST__VC3__SHIFT 0xc
+#define DAGB1_RD_OUTPUT_DAGB_MAX_BURST__VC4__SHIFT 0x10
+#define DAGB1_RD_OUTPUT_DAGB_MAX_BURST__VC5__SHIFT 0x14
+#define DAGB1_RD_OUTPUT_DAGB_MAX_BURST__VC6__SHIFT 0x18
+#define DAGB1_RD_OUTPUT_DAGB_MAX_BURST__VC7__SHIFT 0x1c
+#define DAGB1_RD_OUTPUT_DAGB_MAX_BURST__VC0_MASK 0x0000000FL
+#define DAGB1_RD_OUTPUT_DAGB_MAX_BURST__VC1_MASK 0x000000F0L
+#define DAGB1_RD_OUTPUT_DAGB_MAX_BURST__VC2_MASK 0x00000F00L
+#define DAGB1_RD_OUTPUT_DAGB_MAX_BURST__VC3_MASK 0x0000F000L
+#define DAGB1_RD_OUTPUT_DAGB_MAX_BURST__VC4_MASK 0x000F0000L
+#define DAGB1_RD_OUTPUT_DAGB_MAX_BURST__VC5_MASK 0x00F00000L
+#define DAGB1_RD_OUTPUT_DAGB_MAX_BURST__VC6_MASK 0x0F000000L
+#define DAGB1_RD_OUTPUT_DAGB_MAX_BURST__VC7_MASK 0xF0000000L
+//DAGB1_RD_OUTPUT_DAGB_LAZY_TIMER
+#define DAGB1_RD_OUTPUT_DAGB_LAZY_TIMER__VC0__SHIFT 0x0
+#define DAGB1_RD_OUTPUT_DAGB_LAZY_TIMER__VC1__SHIFT 0x4
+#define DAGB1_RD_OUTPUT_DAGB_LAZY_TIMER__VC2__SHIFT 0x8
+#define DAGB1_RD_OUTPUT_DAGB_LAZY_TIMER__VC3__SHIFT 0xc
+#define DAGB1_RD_OUTPUT_DAGB_LAZY_TIMER__VC4__SHIFT 0x10
+#define DAGB1_RD_OUTPUT_DAGB_LAZY_TIMER__VC5__SHIFT 0x14
+#define DAGB1_RD_OUTPUT_DAGB_LAZY_TIMER__VC6__SHIFT 0x18
+#define DAGB1_RD_OUTPUT_DAGB_LAZY_TIMER__VC7__SHIFT 0x1c
+#define DAGB1_RD_OUTPUT_DAGB_LAZY_TIMER__VC0_MASK 0x0000000FL
+#define DAGB1_RD_OUTPUT_DAGB_LAZY_TIMER__VC1_MASK 0x000000F0L
+#define DAGB1_RD_OUTPUT_DAGB_LAZY_TIMER__VC2_MASK 0x00000F00L
+#define DAGB1_RD_OUTPUT_DAGB_LAZY_TIMER__VC3_MASK 0x0000F000L
+#define DAGB1_RD_OUTPUT_DAGB_LAZY_TIMER__VC4_MASK 0x000F0000L
+#define DAGB1_RD_OUTPUT_DAGB_LAZY_TIMER__VC5_MASK 0x00F00000L
+#define DAGB1_RD_OUTPUT_DAGB_LAZY_TIMER__VC6_MASK 0x0F000000L
+#define DAGB1_RD_OUTPUT_DAGB_LAZY_TIMER__VC7_MASK 0xF0000000L
+//DAGB1_RD_CGTT_CLK_CTRL
+#define DAGB1_RD_CGTT_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define DAGB1_RD_CGTT_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define DAGB1_RD_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS__SHIFT 0xc
+#define DAGB1_RD_CGTT_CLK_CTRL__LS_OVERRIDE__SHIFT 0x1e
+#define DAGB1_RD_CGTT_CLK_CTRL__SOFT_OVERRIDE__SHIFT 0x1f
+#define DAGB1_RD_CGTT_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define DAGB1_RD_CGTT_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define DAGB1_RD_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS_MASK 0x0FFFF000L
+#define DAGB1_RD_CGTT_CLK_CTRL__LS_OVERRIDE_MASK 0x40000000L
+#define DAGB1_RD_CGTT_CLK_CTRL__SOFT_OVERRIDE_MASK 0x80000000L
+//DAGB1_L1TLB_RD_CGTT_CLK_CTRL
+#define DAGB1_L1TLB_RD_CGTT_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define DAGB1_L1TLB_RD_CGTT_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define DAGB1_L1TLB_RD_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS__SHIFT 0xc
+#define DAGB1_L1TLB_RD_CGTT_CLK_CTRL__LS_OVERRIDE__SHIFT 0x1e
+#define DAGB1_L1TLB_RD_CGTT_CLK_CTRL__SOFT_OVERRIDE__SHIFT 0x1f
+#define DAGB1_L1TLB_RD_CGTT_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define DAGB1_L1TLB_RD_CGTT_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define DAGB1_L1TLB_RD_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS_MASK 0x0FFFF000L
+#define DAGB1_L1TLB_RD_CGTT_CLK_CTRL__LS_OVERRIDE_MASK 0x40000000L
+#define DAGB1_L1TLB_RD_CGTT_CLK_CTRL__SOFT_OVERRIDE_MASK 0x80000000L
+//DAGB1_ATCVM_RD_CGTT_CLK_CTRL
+#define DAGB1_ATCVM_RD_CGTT_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define DAGB1_ATCVM_RD_CGTT_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define DAGB1_ATCVM_RD_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS__SHIFT 0xc
+#define DAGB1_ATCVM_RD_CGTT_CLK_CTRL__LS_OVERRIDE__SHIFT 0x1e
+#define DAGB1_ATCVM_RD_CGTT_CLK_CTRL__SOFT_OVERRIDE__SHIFT 0x1f
+#define DAGB1_ATCVM_RD_CGTT_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define DAGB1_ATCVM_RD_CGTT_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define DAGB1_ATCVM_RD_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS_MASK 0x0FFFF000L
+#define DAGB1_ATCVM_RD_CGTT_CLK_CTRL__LS_OVERRIDE_MASK 0x40000000L
+#define DAGB1_ATCVM_RD_CGTT_CLK_CTRL__SOFT_OVERRIDE_MASK 0x80000000L
+//DAGB1_RD_ADDR_DAGB_MAX_BURST0
+#define DAGB1_RD_ADDR_DAGB_MAX_BURST0__CLIENT0__SHIFT 0x0
+#define DAGB1_RD_ADDR_DAGB_MAX_BURST0__CLIENT1__SHIFT 0x4
+#define DAGB1_RD_ADDR_DAGB_MAX_BURST0__CLIENT2__SHIFT 0x8
+#define DAGB1_RD_ADDR_DAGB_MAX_BURST0__CLIENT3__SHIFT 0xc
+#define DAGB1_RD_ADDR_DAGB_MAX_BURST0__CLIENT4__SHIFT 0x10
+#define DAGB1_RD_ADDR_DAGB_MAX_BURST0__CLIENT5__SHIFT 0x14
+#define DAGB1_RD_ADDR_DAGB_MAX_BURST0__CLIENT6__SHIFT 0x18
+#define DAGB1_RD_ADDR_DAGB_MAX_BURST0__CLIENT7__SHIFT 0x1c
+#define DAGB1_RD_ADDR_DAGB_MAX_BURST0__CLIENT0_MASK 0x0000000FL
+#define DAGB1_RD_ADDR_DAGB_MAX_BURST0__CLIENT1_MASK 0x000000F0L
+#define DAGB1_RD_ADDR_DAGB_MAX_BURST0__CLIENT2_MASK 0x00000F00L
+#define DAGB1_RD_ADDR_DAGB_MAX_BURST0__CLIENT3_MASK 0x0000F000L
+#define DAGB1_RD_ADDR_DAGB_MAX_BURST0__CLIENT4_MASK 0x000F0000L
+#define DAGB1_RD_ADDR_DAGB_MAX_BURST0__CLIENT5_MASK 0x00F00000L
+#define DAGB1_RD_ADDR_DAGB_MAX_BURST0__CLIENT6_MASK 0x0F000000L
+#define DAGB1_RD_ADDR_DAGB_MAX_BURST0__CLIENT7_MASK 0xF0000000L
+//DAGB1_RD_ADDR_DAGB_LAZY_TIMER0
+#define DAGB1_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT0__SHIFT 0x0
+#define DAGB1_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT1__SHIFT 0x4
+#define DAGB1_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT2__SHIFT 0x8
+#define DAGB1_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT3__SHIFT 0xc
+#define DAGB1_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT4__SHIFT 0x10
+#define DAGB1_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT5__SHIFT 0x14
+#define DAGB1_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT6__SHIFT 0x18
+#define DAGB1_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT7__SHIFT 0x1c
+#define DAGB1_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT0_MASK 0x0000000FL
+#define DAGB1_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT1_MASK 0x000000F0L
+#define DAGB1_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT2_MASK 0x00000F00L
+#define DAGB1_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT3_MASK 0x0000F000L
+#define DAGB1_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT4_MASK 0x000F0000L
+#define DAGB1_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT5_MASK 0x00F00000L
+#define DAGB1_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT6_MASK 0x0F000000L
+#define DAGB1_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT7_MASK 0xF0000000L
+//DAGB1_RD_ADDR_DAGB_MAX_BURST1
+#define DAGB1_RD_ADDR_DAGB_MAX_BURST1__CLIENT8__SHIFT 0x0
+#define DAGB1_RD_ADDR_DAGB_MAX_BURST1__CLIENT9__SHIFT 0x4
+#define DAGB1_RD_ADDR_DAGB_MAX_BURST1__CLIENT10__SHIFT 0x8
+#define DAGB1_RD_ADDR_DAGB_MAX_BURST1__CLIENT11__SHIFT 0xc
+#define DAGB1_RD_ADDR_DAGB_MAX_BURST1__CLIENT12__SHIFT 0x10
+#define DAGB1_RD_ADDR_DAGB_MAX_BURST1__CLIENT13__SHIFT 0x14
+#define DAGB1_RD_ADDR_DAGB_MAX_BURST1__CLIENT14__SHIFT 0x18
+#define DAGB1_RD_ADDR_DAGB_MAX_BURST1__CLIENT15__SHIFT 0x1c
+#define DAGB1_RD_ADDR_DAGB_MAX_BURST1__CLIENT8_MASK 0x0000000FL
+#define DAGB1_RD_ADDR_DAGB_MAX_BURST1__CLIENT9_MASK 0x000000F0L
+#define DAGB1_RD_ADDR_DAGB_MAX_BURST1__CLIENT10_MASK 0x00000F00L
+#define DAGB1_RD_ADDR_DAGB_MAX_BURST1__CLIENT11_MASK 0x0000F000L
+#define DAGB1_RD_ADDR_DAGB_MAX_BURST1__CLIENT12_MASK 0x000F0000L
+#define DAGB1_RD_ADDR_DAGB_MAX_BURST1__CLIENT13_MASK 0x00F00000L
+#define DAGB1_RD_ADDR_DAGB_MAX_BURST1__CLIENT14_MASK 0x0F000000L
+#define DAGB1_RD_ADDR_DAGB_MAX_BURST1__CLIENT15_MASK 0xF0000000L
+//DAGB1_RD_ADDR_DAGB_LAZY_TIMER1
+#define DAGB1_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT8__SHIFT 0x0
+#define DAGB1_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT9__SHIFT 0x4
+#define DAGB1_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT10__SHIFT 0x8
+#define DAGB1_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT11__SHIFT 0xc
+#define DAGB1_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT12__SHIFT 0x10
+#define DAGB1_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT13__SHIFT 0x14
+#define DAGB1_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT14__SHIFT 0x18
+#define DAGB1_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT15__SHIFT 0x1c
+#define DAGB1_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT8_MASK 0x0000000FL
+#define DAGB1_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT9_MASK 0x000000F0L
+#define DAGB1_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT10_MASK 0x00000F00L
+#define DAGB1_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT11_MASK 0x0000F000L
+#define DAGB1_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT12_MASK 0x000F0000L
+#define DAGB1_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT13_MASK 0x00F00000L
+#define DAGB1_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT14_MASK 0x0F000000L
+#define DAGB1_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT15_MASK 0xF0000000L
+//DAGB1_RD_VC0_CNTL
+#define DAGB1_RD_VC0_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB1_RD_VC0_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB1_RD_VC0_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB1_RD_VC0_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB1_RD_VC0_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB1_RD_VC0_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB1_RD_VC0_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB1_RD_VC0_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB1_RD_VC0_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB1_RD_VC0_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB1_RD_VC0_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB1_RD_VC0_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB1_RD_VC0_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB1_RD_VC0_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB1_RD_VC0_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB1_RD_VC0_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB1_RD_VC1_CNTL
+#define DAGB1_RD_VC1_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB1_RD_VC1_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB1_RD_VC1_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB1_RD_VC1_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB1_RD_VC1_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB1_RD_VC1_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB1_RD_VC1_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB1_RD_VC1_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB1_RD_VC1_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB1_RD_VC1_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB1_RD_VC1_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB1_RD_VC1_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB1_RD_VC1_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB1_RD_VC1_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB1_RD_VC1_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB1_RD_VC1_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB1_RD_VC2_CNTL
+#define DAGB1_RD_VC2_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB1_RD_VC2_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB1_RD_VC2_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB1_RD_VC2_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB1_RD_VC2_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB1_RD_VC2_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB1_RD_VC2_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB1_RD_VC2_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB1_RD_VC2_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB1_RD_VC2_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB1_RD_VC2_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB1_RD_VC2_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB1_RD_VC2_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB1_RD_VC2_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB1_RD_VC2_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB1_RD_VC2_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB1_RD_VC3_CNTL
+#define DAGB1_RD_VC3_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB1_RD_VC3_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB1_RD_VC3_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB1_RD_VC3_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB1_RD_VC3_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB1_RD_VC3_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB1_RD_VC3_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB1_RD_VC3_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB1_RD_VC3_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB1_RD_VC3_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB1_RD_VC3_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB1_RD_VC3_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB1_RD_VC3_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB1_RD_VC3_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB1_RD_VC3_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB1_RD_VC3_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB1_RD_VC4_CNTL
+#define DAGB1_RD_VC4_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB1_RD_VC4_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB1_RD_VC4_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB1_RD_VC4_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB1_RD_VC4_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB1_RD_VC4_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB1_RD_VC4_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB1_RD_VC4_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB1_RD_VC4_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB1_RD_VC4_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB1_RD_VC4_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB1_RD_VC4_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB1_RD_VC4_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB1_RD_VC4_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB1_RD_VC4_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB1_RD_VC4_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB1_RD_VC5_CNTL
+#define DAGB1_RD_VC5_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB1_RD_VC5_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB1_RD_VC5_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB1_RD_VC5_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB1_RD_VC5_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB1_RD_VC5_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB1_RD_VC5_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB1_RD_VC5_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB1_RD_VC5_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB1_RD_VC5_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB1_RD_VC5_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB1_RD_VC5_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB1_RD_VC5_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB1_RD_VC5_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB1_RD_VC5_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB1_RD_VC5_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB1_RD_VC6_CNTL
+#define DAGB1_RD_VC6_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB1_RD_VC6_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB1_RD_VC6_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB1_RD_VC6_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB1_RD_VC6_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB1_RD_VC6_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB1_RD_VC6_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB1_RD_VC6_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB1_RD_VC6_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB1_RD_VC6_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB1_RD_VC6_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB1_RD_VC6_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB1_RD_VC6_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB1_RD_VC6_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB1_RD_VC6_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB1_RD_VC6_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB1_RD_VC7_CNTL
+#define DAGB1_RD_VC7_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB1_RD_VC7_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB1_RD_VC7_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB1_RD_VC7_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB1_RD_VC7_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB1_RD_VC7_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB1_RD_VC7_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB1_RD_VC7_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB1_RD_VC7_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB1_RD_VC7_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB1_RD_VC7_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB1_RD_VC7_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB1_RD_VC7_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB1_RD_VC7_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB1_RD_VC7_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB1_RD_VC7_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB1_RD_CNTL_MISC
+#define DAGB1_RD_CNTL_MISC__STOR_POOL_CREDIT__SHIFT 0x0
+#define DAGB1_RD_CNTL_MISC__EA_POOL_CREDIT__SHIFT 0x6
+#define DAGB1_RD_CNTL_MISC__IO_EA_CREDIT__SHIFT 0xd
+#define DAGB1_RD_CNTL_MISC__STOR_CC_NEW_MODE__SHIFT 0x13
+#define DAGB1_RD_CNTL_MISC__EA_CC_LEGACY_MODE__SHIFT 0x14
+#define DAGB1_RD_CNTL_MISC__UTCL2_CID__SHIFT 0x15
+#define DAGB1_RD_CNTL_MISC__RDRET_FIFO_CREDITS__SHIFT 0x1a
+#define DAGB1_RD_CNTL_MISC__STOR_POOL_CREDIT_MASK 0x0000003FL
+#define DAGB1_RD_CNTL_MISC__EA_POOL_CREDIT_MASK 0x00001FC0L
+#define DAGB1_RD_CNTL_MISC__IO_EA_CREDIT_MASK 0x0007E000L
+#define DAGB1_RD_CNTL_MISC__STOR_CC_NEW_MODE_MASK 0x00080000L
+#define DAGB1_RD_CNTL_MISC__EA_CC_LEGACY_MODE_MASK 0x00100000L
+#define DAGB1_RD_CNTL_MISC__UTCL2_CID_MASK 0x03E00000L
+#define DAGB1_RD_CNTL_MISC__RDRET_FIFO_CREDITS_MASK 0xFC000000L
+//DAGB1_RD_TLB_CREDIT
+#define DAGB1_RD_TLB_CREDIT__TLB0__SHIFT 0x0
+#define DAGB1_RD_TLB_CREDIT__TLB1__SHIFT 0x5
+#define DAGB1_RD_TLB_CREDIT__TLB2__SHIFT 0xa
+#define DAGB1_RD_TLB_CREDIT__TLB3__SHIFT 0xf
+#define DAGB1_RD_TLB_CREDIT__TLB4__SHIFT 0x14
+#define DAGB1_RD_TLB_CREDIT__TLB5__SHIFT 0x19
+#define DAGB1_RD_TLB_CREDIT__TLB0_MASK 0x0000001FL
+#define DAGB1_RD_TLB_CREDIT__TLB1_MASK 0x000003E0L
+#define DAGB1_RD_TLB_CREDIT__TLB2_MASK 0x00007C00L
+#define DAGB1_RD_TLB_CREDIT__TLB3_MASK 0x000F8000L
+#define DAGB1_RD_TLB_CREDIT__TLB4_MASK 0x01F00000L
+#define DAGB1_RD_TLB_CREDIT__TLB5_MASK 0x3E000000L
+//DAGB1_RD_RDRET_CREDIT_CNTL
+#define DAGB1_RD_RDRET_CREDIT_CNTL__VC0_CREDIT__SHIFT 0x0
+#define DAGB1_RD_RDRET_CREDIT_CNTL__VC1_CREDIT__SHIFT 0x6
+#define DAGB1_RD_RDRET_CREDIT_CNTL__VC2_CREDIT__SHIFT 0xc
+#define DAGB1_RD_RDRET_CREDIT_CNTL__VC3_CREDIT__SHIFT 0x12
+#define DAGB1_RD_RDRET_CREDIT_CNTL__VC4_CREDIT__SHIFT 0x18
+#define DAGB1_RD_RDRET_CREDIT_CNTL__VC_MODE__SHIFT 0x1e
+#define DAGB1_RD_RDRET_CREDIT_CNTL__FIX_EQ__SHIFT 0x1f
+#define DAGB1_RD_RDRET_CREDIT_CNTL__VC0_CREDIT_MASK 0x0000003FL
+#define DAGB1_RD_RDRET_CREDIT_CNTL__VC1_CREDIT_MASK 0x00000FC0L
+#define DAGB1_RD_RDRET_CREDIT_CNTL__VC2_CREDIT_MASK 0x0003F000L
+#define DAGB1_RD_RDRET_CREDIT_CNTL__VC3_CREDIT_MASK 0x00FC0000L
+#define DAGB1_RD_RDRET_CREDIT_CNTL__VC4_CREDIT_MASK 0x3F000000L
+#define DAGB1_RD_RDRET_CREDIT_CNTL__VC_MODE_MASK 0x40000000L
+#define DAGB1_RD_RDRET_CREDIT_CNTL__FIX_EQ_MASK 0x80000000L
+//DAGB1_RD_RDRET_CREDIT_CNTL2
+#define DAGB1_RD_RDRET_CREDIT_CNTL2__IO_CREDIT__SHIFT 0x0
+#define DAGB1_RD_RDRET_CREDIT_CNTL2__GMI_CREDIT__SHIFT 0x6
+#define DAGB1_RD_RDRET_CREDIT_CNTL2__POOL_CREDIT__SHIFT 0xc
+#define DAGB1_RD_RDRET_CREDIT_CNTL2__IO_CREDIT_MASK 0x0000003FL
+#define DAGB1_RD_RDRET_CREDIT_CNTL2__GMI_CREDIT_MASK 0x00000FC0L
+#define DAGB1_RD_RDRET_CREDIT_CNTL2__POOL_CREDIT_MASK 0x0007F000L
+//DAGB1_RDCLI_ASK_PENDING
+#define DAGB1_RDCLI_ASK_PENDING__BUSY__SHIFT 0x0
+#define DAGB1_RDCLI_ASK_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB1_RDCLI_GO_PENDING
+#define DAGB1_RDCLI_GO_PENDING__BUSY__SHIFT 0x0
+#define DAGB1_RDCLI_GO_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB1_RDCLI_GBLSEND_PENDING
+#define DAGB1_RDCLI_GBLSEND_PENDING__BUSY__SHIFT 0x0
+#define DAGB1_RDCLI_GBLSEND_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB1_RDCLI_TLB_PENDING
+#define DAGB1_RDCLI_TLB_PENDING__BUSY__SHIFT 0x0
+#define DAGB1_RDCLI_TLB_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB1_RDCLI_OARB_PENDING
+#define DAGB1_RDCLI_OARB_PENDING__BUSY__SHIFT 0x0
+#define DAGB1_RDCLI_OARB_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB1_RDCLI_OSD_PENDING
+#define DAGB1_RDCLI_OSD_PENDING__BUSY__SHIFT 0x0
+#define DAGB1_RDCLI_OSD_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB1_RDCLI_NOALLOC_OVERRIDE
+#define DAGB1_RDCLI_NOALLOC_OVERRIDE__ENABLE__SHIFT 0x0
+#define DAGB1_RDCLI_NOALLOC_OVERRIDE__ENABLE_MASK 0x0000FFFFL
+//DAGB1_RDCLI_NOALLOC_OVERRIDE_VALUE
+#define DAGB1_RDCLI_NOALLOC_OVERRIDE_VALUE__VALUE__SHIFT 0x0
+#define DAGB1_RDCLI_NOALLOC_OVERRIDE_VALUE__VALUE_MASK 0x0000FFFFL
+//DAGB1_WRCLI0
+#define DAGB1_WRCLI0__VIRT_CHAN__SHIFT 0x0
+#define DAGB1_WRCLI0__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB1_WRCLI0__URG_HIGH__SHIFT 0x4
+#define DAGB1_WRCLI0__URG_LOW__SHIFT 0x8
+#define DAGB1_WRCLI0__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB1_WRCLI0__MAX_BW__SHIFT 0xd
+#define DAGB1_WRCLI0__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB1_WRCLI0__MIN_BW__SHIFT 0x16
+#define DAGB1_WRCLI0__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB1_WRCLI0__MAX_OSD__SHIFT 0x1a
+#define DAGB1_WRCLI0__VIRT_CHAN_MASK 0x00000007L
+#define DAGB1_WRCLI0__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB1_WRCLI0__URG_HIGH_MASK 0x000000F0L
+#define DAGB1_WRCLI0__URG_LOW_MASK 0x00000F00L
+#define DAGB1_WRCLI0__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB1_WRCLI0__MAX_BW_MASK 0x001FE000L
+#define DAGB1_WRCLI0__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB1_WRCLI0__MIN_BW_MASK 0x01C00000L
+#define DAGB1_WRCLI0__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB1_WRCLI0__MAX_OSD_MASK 0xFC000000L
+//DAGB1_WRCLI1
+#define DAGB1_WRCLI1__VIRT_CHAN__SHIFT 0x0
+#define DAGB1_WRCLI1__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB1_WRCLI1__URG_HIGH__SHIFT 0x4
+#define DAGB1_WRCLI1__URG_LOW__SHIFT 0x8
+#define DAGB1_WRCLI1__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB1_WRCLI1__MAX_BW__SHIFT 0xd
+#define DAGB1_WRCLI1__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB1_WRCLI1__MIN_BW__SHIFT 0x16
+#define DAGB1_WRCLI1__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB1_WRCLI1__MAX_OSD__SHIFT 0x1a
+#define DAGB1_WRCLI1__VIRT_CHAN_MASK 0x00000007L
+#define DAGB1_WRCLI1__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB1_WRCLI1__URG_HIGH_MASK 0x000000F0L
+#define DAGB1_WRCLI1__URG_LOW_MASK 0x00000F00L
+#define DAGB1_WRCLI1__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB1_WRCLI1__MAX_BW_MASK 0x001FE000L
+#define DAGB1_WRCLI1__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB1_WRCLI1__MIN_BW_MASK 0x01C00000L
+#define DAGB1_WRCLI1__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB1_WRCLI1__MAX_OSD_MASK 0xFC000000L
+//DAGB1_WRCLI2
+#define DAGB1_WRCLI2__VIRT_CHAN__SHIFT 0x0
+#define DAGB1_WRCLI2__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB1_WRCLI2__URG_HIGH__SHIFT 0x4
+#define DAGB1_WRCLI2__URG_LOW__SHIFT 0x8
+#define DAGB1_WRCLI2__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB1_WRCLI2__MAX_BW__SHIFT 0xd
+#define DAGB1_WRCLI2__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB1_WRCLI2__MIN_BW__SHIFT 0x16
+#define DAGB1_WRCLI2__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB1_WRCLI2__MAX_OSD__SHIFT 0x1a
+#define DAGB1_WRCLI2__VIRT_CHAN_MASK 0x00000007L
+#define DAGB1_WRCLI2__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB1_WRCLI2__URG_HIGH_MASK 0x000000F0L
+#define DAGB1_WRCLI2__URG_LOW_MASK 0x00000F00L
+#define DAGB1_WRCLI2__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB1_WRCLI2__MAX_BW_MASK 0x001FE000L
+#define DAGB1_WRCLI2__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB1_WRCLI2__MIN_BW_MASK 0x01C00000L
+#define DAGB1_WRCLI2__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB1_WRCLI2__MAX_OSD_MASK 0xFC000000L
+//DAGB1_WRCLI3
+#define DAGB1_WRCLI3__VIRT_CHAN__SHIFT 0x0
+#define DAGB1_WRCLI3__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB1_WRCLI3__URG_HIGH__SHIFT 0x4
+#define DAGB1_WRCLI3__URG_LOW__SHIFT 0x8
+#define DAGB1_WRCLI3__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB1_WRCLI3__MAX_BW__SHIFT 0xd
+#define DAGB1_WRCLI3__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB1_WRCLI3__MIN_BW__SHIFT 0x16
+#define DAGB1_WRCLI3__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB1_WRCLI3__MAX_OSD__SHIFT 0x1a
+#define DAGB1_WRCLI3__VIRT_CHAN_MASK 0x00000007L
+#define DAGB1_WRCLI3__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB1_WRCLI3__URG_HIGH_MASK 0x000000F0L
+#define DAGB1_WRCLI3__URG_LOW_MASK 0x00000F00L
+#define DAGB1_WRCLI3__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB1_WRCLI3__MAX_BW_MASK 0x001FE000L
+#define DAGB1_WRCLI3__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB1_WRCLI3__MIN_BW_MASK 0x01C00000L
+#define DAGB1_WRCLI3__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB1_WRCLI3__MAX_OSD_MASK 0xFC000000L
+//DAGB1_WRCLI4
+#define DAGB1_WRCLI4__VIRT_CHAN__SHIFT 0x0
+#define DAGB1_WRCLI4__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB1_WRCLI4__URG_HIGH__SHIFT 0x4
+#define DAGB1_WRCLI4__URG_LOW__SHIFT 0x8
+#define DAGB1_WRCLI4__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB1_WRCLI4__MAX_BW__SHIFT 0xd
+#define DAGB1_WRCLI4__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB1_WRCLI4__MIN_BW__SHIFT 0x16
+#define DAGB1_WRCLI4__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB1_WRCLI4__MAX_OSD__SHIFT 0x1a
+#define DAGB1_WRCLI4__VIRT_CHAN_MASK 0x00000007L
+#define DAGB1_WRCLI4__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB1_WRCLI4__URG_HIGH_MASK 0x000000F0L
+#define DAGB1_WRCLI4__URG_LOW_MASK 0x00000F00L
+#define DAGB1_WRCLI4__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB1_WRCLI4__MAX_BW_MASK 0x001FE000L
+#define DAGB1_WRCLI4__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB1_WRCLI4__MIN_BW_MASK 0x01C00000L
+#define DAGB1_WRCLI4__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB1_WRCLI4__MAX_OSD_MASK 0xFC000000L
+//DAGB1_WRCLI5
+#define DAGB1_WRCLI5__VIRT_CHAN__SHIFT 0x0
+#define DAGB1_WRCLI5__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB1_WRCLI5__URG_HIGH__SHIFT 0x4
+#define DAGB1_WRCLI5__URG_LOW__SHIFT 0x8
+#define DAGB1_WRCLI5__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB1_WRCLI5__MAX_BW__SHIFT 0xd
+#define DAGB1_WRCLI5__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB1_WRCLI5__MIN_BW__SHIFT 0x16
+#define DAGB1_WRCLI5__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB1_WRCLI5__MAX_OSD__SHIFT 0x1a
+#define DAGB1_WRCLI5__VIRT_CHAN_MASK 0x00000007L
+#define DAGB1_WRCLI5__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB1_WRCLI5__URG_HIGH_MASK 0x000000F0L
+#define DAGB1_WRCLI5__URG_LOW_MASK 0x00000F00L
+#define DAGB1_WRCLI5__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB1_WRCLI5__MAX_BW_MASK 0x001FE000L
+#define DAGB1_WRCLI5__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB1_WRCLI5__MIN_BW_MASK 0x01C00000L
+#define DAGB1_WRCLI5__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB1_WRCLI5__MAX_OSD_MASK 0xFC000000L
+//DAGB1_WRCLI6
+#define DAGB1_WRCLI6__VIRT_CHAN__SHIFT 0x0
+#define DAGB1_WRCLI6__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB1_WRCLI6__URG_HIGH__SHIFT 0x4
+#define DAGB1_WRCLI6__URG_LOW__SHIFT 0x8
+#define DAGB1_WRCLI6__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB1_WRCLI6__MAX_BW__SHIFT 0xd
+#define DAGB1_WRCLI6__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB1_WRCLI6__MIN_BW__SHIFT 0x16
+#define DAGB1_WRCLI6__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB1_WRCLI6__MAX_OSD__SHIFT 0x1a
+#define DAGB1_WRCLI6__VIRT_CHAN_MASK 0x00000007L
+#define DAGB1_WRCLI6__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB1_WRCLI6__URG_HIGH_MASK 0x000000F0L
+#define DAGB1_WRCLI6__URG_LOW_MASK 0x00000F00L
+#define DAGB1_WRCLI6__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB1_WRCLI6__MAX_BW_MASK 0x001FE000L
+#define DAGB1_WRCLI6__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB1_WRCLI6__MIN_BW_MASK 0x01C00000L
+#define DAGB1_WRCLI6__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB1_WRCLI6__MAX_OSD_MASK 0xFC000000L
+//DAGB1_WRCLI7
+#define DAGB1_WRCLI7__VIRT_CHAN__SHIFT 0x0
+#define DAGB1_WRCLI7__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB1_WRCLI7__URG_HIGH__SHIFT 0x4
+#define DAGB1_WRCLI7__URG_LOW__SHIFT 0x8
+#define DAGB1_WRCLI7__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB1_WRCLI7__MAX_BW__SHIFT 0xd
+#define DAGB1_WRCLI7__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB1_WRCLI7__MIN_BW__SHIFT 0x16
+#define DAGB1_WRCLI7__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB1_WRCLI7__MAX_OSD__SHIFT 0x1a
+#define DAGB1_WRCLI7__VIRT_CHAN_MASK 0x00000007L
+#define DAGB1_WRCLI7__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB1_WRCLI7__URG_HIGH_MASK 0x000000F0L
+#define DAGB1_WRCLI7__URG_LOW_MASK 0x00000F00L
+#define DAGB1_WRCLI7__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB1_WRCLI7__MAX_BW_MASK 0x001FE000L
+#define DAGB1_WRCLI7__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB1_WRCLI7__MIN_BW_MASK 0x01C00000L
+#define DAGB1_WRCLI7__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB1_WRCLI7__MAX_OSD_MASK 0xFC000000L
+//DAGB1_WRCLI8
+#define DAGB1_WRCLI8__VIRT_CHAN__SHIFT 0x0
+#define DAGB1_WRCLI8__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB1_WRCLI8__URG_HIGH__SHIFT 0x4
+#define DAGB1_WRCLI8__URG_LOW__SHIFT 0x8
+#define DAGB1_WRCLI8__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB1_WRCLI8__MAX_BW__SHIFT 0xd
+#define DAGB1_WRCLI8__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB1_WRCLI8__MIN_BW__SHIFT 0x16
+#define DAGB1_WRCLI8__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB1_WRCLI8__MAX_OSD__SHIFT 0x1a
+#define DAGB1_WRCLI8__VIRT_CHAN_MASK 0x00000007L
+#define DAGB1_WRCLI8__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB1_WRCLI8__URG_HIGH_MASK 0x000000F0L
+#define DAGB1_WRCLI8__URG_LOW_MASK 0x00000F00L
+#define DAGB1_WRCLI8__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB1_WRCLI8__MAX_BW_MASK 0x001FE000L
+#define DAGB1_WRCLI8__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB1_WRCLI8__MIN_BW_MASK 0x01C00000L
+#define DAGB1_WRCLI8__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB1_WRCLI8__MAX_OSD_MASK 0xFC000000L
+//DAGB1_WRCLI9
+#define DAGB1_WRCLI9__VIRT_CHAN__SHIFT 0x0
+#define DAGB1_WRCLI9__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB1_WRCLI9__URG_HIGH__SHIFT 0x4
+#define DAGB1_WRCLI9__URG_LOW__SHIFT 0x8
+#define DAGB1_WRCLI9__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB1_WRCLI9__MAX_BW__SHIFT 0xd
+#define DAGB1_WRCLI9__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB1_WRCLI9__MIN_BW__SHIFT 0x16
+#define DAGB1_WRCLI9__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB1_WRCLI9__MAX_OSD__SHIFT 0x1a
+#define DAGB1_WRCLI9__VIRT_CHAN_MASK 0x00000007L
+#define DAGB1_WRCLI9__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB1_WRCLI9__URG_HIGH_MASK 0x000000F0L
+#define DAGB1_WRCLI9__URG_LOW_MASK 0x00000F00L
+#define DAGB1_WRCLI9__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB1_WRCLI9__MAX_BW_MASK 0x001FE000L
+#define DAGB1_WRCLI9__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB1_WRCLI9__MIN_BW_MASK 0x01C00000L
+#define DAGB1_WRCLI9__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB1_WRCLI9__MAX_OSD_MASK 0xFC000000L
+//DAGB1_WRCLI10
+#define DAGB1_WRCLI10__VIRT_CHAN__SHIFT 0x0
+#define DAGB1_WRCLI10__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB1_WRCLI10__URG_HIGH__SHIFT 0x4
+#define DAGB1_WRCLI10__URG_LOW__SHIFT 0x8
+#define DAGB1_WRCLI10__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB1_WRCLI10__MAX_BW__SHIFT 0xd
+#define DAGB1_WRCLI10__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB1_WRCLI10__MIN_BW__SHIFT 0x16
+#define DAGB1_WRCLI10__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB1_WRCLI10__MAX_OSD__SHIFT 0x1a
+#define DAGB1_WRCLI10__VIRT_CHAN_MASK 0x00000007L
+#define DAGB1_WRCLI10__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB1_WRCLI10__URG_HIGH_MASK 0x000000F0L
+#define DAGB1_WRCLI10__URG_LOW_MASK 0x00000F00L
+#define DAGB1_WRCLI10__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB1_WRCLI10__MAX_BW_MASK 0x001FE000L
+#define DAGB1_WRCLI10__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB1_WRCLI10__MIN_BW_MASK 0x01C00000L
+#define DAGB1_WRCLI10__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB1_WRCLI10__MAX_OSD_MASK 0xFC000000L
+//DAGB1_WRCLI11
+#define DAGB1_WRCLI11__VIRT_CHAN__SHIFT 0x0
+#define DAGB1_WRCLI11__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB1_WRCLI11__URG_HIGH__SHIFT 0x4
+#define DAGB1_WRCLI11__URG_LOW__SHIFT 0x8
+#define DAGB1_WRCLI11__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB1_WRCLI11__MAX_BW__SHIFT 0xd
+#define DAGB1_WRCLI11__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB1_WRCLI11__MIN_BW__SHIFT 0x16
+#define DAGB1_WRCLI11__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB1_WRCLI11__MAX_OSD__SHIFT 0x1a
+#define DAGB1_WRCLI11__VIRT_CHAN_MASK 0x00000007L
+#define DAGB1_WRCLI11__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB1_WRCLI11__URG_HIGH_MASK 0x000000F0L
+#define DAGB1_WRCLI11__URG_LOW_MASK 0x00000F00L
+#define DAGB1_WRCLI11__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB1_WRCLI11__MAX_BW_MASK 0x001FE000L
+#define DAGB1_WRCLI11__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB1_WRCLI11__MIN_BW_MASK 0x01C00000L
+#define DAGB1_WRCLI11__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB1_WRCLI11__MAX_OSD_MASK 0xFC000000L
+//DAGB1_WRCLI12
+#define DAGB1_WRCLI12__VIRT_CHAN__SHIFT 0x0
+#define DAGB1_WRCLI12__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB1_WRCLI12__URG_HIGH__SHIFT 0x4
+#define DAGB1_WRCLI12__URG_LOW__SHIFT 0x8
+#define DAGB1_WRCLI12__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB1_WRCLI12__MAX_BW__SHIFT 0xd
+#define DAGB1_WRCLI12__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB1_WRCLI12__MIN_BW__SHIFT 0x16
+#define DAGB1_WRCLI12__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB1_WRCLI12__MAX_OSD__SHIFT 0x1a
+#define DAGB1_WRCLI12__VIRT_CHAN_MASK 0x00000007L
+#define DAGB1_WRCLI12__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB1_WRCLI12__URG_HIGH_MASK 0x000000F0L
+#define DAGB1_WRCLI12__URG_LOW_MASK 0x00000F00L
+#define DAGB1_WRCLI12__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB1_WRCLI12__MAX_BW_MASK 0x001FE000L
+#define DAGB1_WRCLI12__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB1_WRCLI12__MIN_BW_MASK 0x01C00000L
+#define DAGB1_WRCLI12__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB1_WRCLI12__MAX_OSD_MASK 0xFC000000L
+//DAGB1_WRCLI13
+#define DAGB1_WRCLI13__VIRT_CHAN__SHIFT 0x0
+#define DAGB1_WRCLI13__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB1_WRCLI13__URG_HIGH__SHIFT 0x4
+#define DAGB1_WRCLI13__URG_LOW__SHIFT 0x8
+#define DAGB1_WRCLI13__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB1_WRCLI13__MAX_BW__SHIFT 0xd
+#define DAGB1_WRCLI13__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB1_WRCLI13__MIN_BW__SHIFT 0x16
+#define DAGB1_WRCLI13__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB1_WRCLI13__MAX_OSD__SHIFT 0x1a
+#define DAGB1_WRCLI13__VIRT_CHAN_MASK 0x00000007L
+#define DAGB1_WRCLI13__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB1_WRCLI13__URG_HIGH_MASK 0x000000F0L
+#define DAGB1_WRCLI13__URG_LOW_MASK 0x00000F00L
+#define DAGB1_WRCLI13__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB1_WRCLI13__MAX_BW_MASK 0x001FE000L
+#define DAGB1_WRCLI13__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB1_WRCLI13__MIN_BW_MASK 0x01C00000L
+#define DAGB1_WRCLI13__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB1_WRCLI13__MAX_OSD_MASK 0xFC000000L
+//DAGB1_WRCLI14
+#define DAGB1_WRCLI14__VIRT_CHAN__SHIFT 0x0
+#define DAGB1_WRCLI14__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB1_WRCLI14__URG_HIGH__SHIFT 0x4
+#define DAGB1_WRCLI14__URG_LOW__SHIFT 0x8
+#define DAGB1_WRCLI14__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB1_WRCLI14__MAX_BW__SHIFT 0xd
+#define DAGB1_WRCLI14__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB1_WRCLI14__MIN_BW__SHIFT 0x16
+#define DAGB1_WRCLI14__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB1_WRCLI14__MAX_OSD__SHIFT 0x1a
+#define DAGB1_WRCLI14__VIRT_CHAN_MASK 0x00000007L
+#define DAGB1_WRCLI14__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB1_WRCLI14__URG_HIGH_MASK 0x000000F0L
+#define DAGB1_WRCLI14__URG_LOW_MASK 0x00000F00L
+#define DAGB1_WRCLI14__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB1_WRCLI14__MAX_BW_MASK 0x001FE000L
+#define DAGB1_WRCLI14__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB1_WRCLI14__MIN_BW_MASK 0x01C00000L
+#define DAGB1_WRCLI14__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB1_WRCLI14__MAX_OSD_MASK 0xFC000000L
+//DAGB1_WRCLI15
+#define DAGB1_WRCLI15__VIRT_CHAN__SHIFT 0x0
+#define DAGB1_WRCLI15__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB1_WRCLI15__URG_HIGH__SHIFT 0x4
+#define DAGB1_WRCLI15__URG_LOW__SHIFT 0x8
+#define DAGB1_WRCLI15__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB1_WRCLI15__MAX_BW__SHIFT 0xd
+#define DAGB1_WRCLI15__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB1_WRCLI15__MIN_BW__SHIFT 0x16
+#define DAGB1_WRCLI15__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB1_WRCLI15__MAX_OSD__SHIFT 0x1a
+#define DAGB1_WRCLI15__VIRT_CHAN_MASK 0x00000007L
+#define DAGB1_WRCLI15__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB1_WRCLI15__URG_HIGH_MASK 0x000000F0L
+#define DAGB1_WRCLI15__URG_LOW_MASK 0x00000F00L
+#define DAGB1_WRCLI15__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB1_WRCLI15__MAX_BW_MASK 0x001FE000L
+#define DAGB1_WRCLI15__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB1_WRCLI15__MIN_BW_MASK 0x01C00000L
+#define DAGB1_WRCLI15__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB1_WRCLI15__MAX_OSD_MASK 0xFC000000L
+//DAGB1_WR_CNTL
+#define DAGB1_WR_CNTL__SCLK_FREQ__SHIFT 0x0
+#define DAGB1_WR_CNTL__CLI_MAX_BW_WINDOW__SHIFT 0x4
+#define DAGB1_WR_CNTL__VC_MAX_BW_WINDOW__SHIFT 0xa
+#define DAGB1_WR_CNTL__IO_LEVEL_OVERRIDE_ENABLE__SHIFT 0x10
+#define DAGB1_WR_CNTL__IO_LEVEL__SHIFT 0x11
+#define DAGB1_WR_CNTL__IO_LEVEL_COMPLY_VC__SHIFT 0x14
+#define DAGB1_WR_CNTL__SHARE_VC_NUM__SHIFT 0x17
+#define DAGB1_WR_CNTL__FIX_JUMP__SHIFT 0x1a
+#define DAGB1_WR_CNTL__SCLK_FREQ_MASK 0x0000000FL
+#define DAGB1_WR_CNTL__CLI_MAX_BW_WINDOW_MASK 0x000003F0L
+#define DAGB1_WR_CNTL__VC_MAX_BW_WINDOW_MASK 0x0000FC00L
+#define DAGB1_WR_CNTL__IO_LEVEL_OVERRIDE_ENABLE_MASK 0x00010000L
+#define DAGB1_WR_CNTL__IO_LEVEL_MASK 0x000E0000L
+#define DAGB1_WR_CNTL__IO_LEVEL_COMPLY_VC_MASK 0x00700000L
+#define DAGB1_WR_CNTL__SHARE_VC_NUM_MASK 0x03800000L
+#define DAGB1_WR_CNTL__FIX_JUMP_MASK 0x04000000L
+//DAGB1_WR_GMI_CNTL
+#define DAGB1_WR_GMI_CNTL__EA_CREDIT__SHIFT 0x0
+#define DAGB1_WR_GMI_CNTL__LEVEL__SHIFT 0x6
+#define DAGB1_WR_GMI_CNTL__MAX_BURST__SHIFT 0x9
+#define DAGB1_WR_GMI_CNTL__LAZY_TIMER__SHIFT 0xd
+#define DAGB1_WR_GMI_CNTL__EA_CREDIT_MASK 0x0000003FL
+#define DAGB1_WR_GMI_CNTL__LEVEL_MASK 0x000001C0L
+#define DAGB1_WR_GMI_CNTL__MAX_BURST_MASK 0x00001E00L
+#define DAGB1_WR_GMI_CNTL__LAZY_TIMER_MASK 0x0001E000L
+//DAGB1_WR_ADDR_DAGB
+#define DAGB1_WR_ADDR_DAGB__DAGB_ENABLE__SHIFT 0x0
+#define DAGB1_WR_ADDR_DAGB__ENABLE_JUMP_AHEAD__SHIFT 0x3
+#define DAGB1_WR_ADDR_DAGB__DISABLE_SELF_INIT__SHIFT 0x6
+#define DAGB1_WR_ADDR_DAGB__WHOAMI__SHIFT 0x7
+#define DAGB1_WR_ADDR_DAGB__JUMP_MODE__SHIFT 0xd
+#define DAGB1_WR_ADDR_DAGB__DAGB_ENABLE_MASK 0x00000007L
+#define DAGB1_WR_ADDR_DAGB__ENABLE_JUMP_AHEAD_MASK 0x00000038L
+#define DAGB1_WR_ADDR_DAGB__DISABLE_SELF_INIT_MASK 0x00000040L
+#define DAGB1_WR_ADDR_DAGB__WHOAMI_MASK 0x00001F80L
+#define DAGB1_WR_ADDR_DAGB__JUMP_MODE_MASK 0x00002000L
+//DAGB1_WR_OUTPUT_DAGB_MAX_BURST
+#define DAGB1_WR_OUTPUT_DAGB_MAX_BURST__VC0__SHIFT 0x0
+#define DAGB1_WR_OUTPUT_DAGB_MAX_BURST__VC1__SHIFT 0x4
+#define DAGB1_WR_OUTPUT_DAGB_MAX_BURST__VC2__SHIFT 0x8
+#define DAGB1_WR_OUTPUT_DAGB_MAX_BURST__VC3__SHIFT 0xc
+#define DAGB1_WR_OUTPUT_DAGB_MAX_BURST__VC4__SHIFT 0x10
+#define DAGB1_WR_OUTPUT_DAGB_MAX_BURST__VC5__SHIFT 0x14
+#define DAGB1_WR_OUTPUT_DAGB_MAX_BURST__VC6__SHIFT 0x18
+#define DAGB1_WR_OUTPUT_DAGB_MAX_BURST__VC7__SHIFT 0x1c
+#define DAGB1_WR_OUTPUT_DAGB_MAX_BURST__VC0_MASK 0x0000000FL
+#define DAGB1_WR_OUTPUT_DAGB_MAX_BURST__VC1_MASK 0x000000F0L
+#define DAGB1_WR_OUTPUT_DAGB_MAX_BURST__VC2_MASK 0x00000F00L
+#define DAGB1_WR_OUTPUT_DAGB_MAX_BURST__VC3_MASK 0x0000F000L
+#define DAGB1_WR_OUTPUT_DAGB_MAX_BURST__VC4_MASK 0x000F0000L
+#define DAGB1_WR_OUTPUT_DAGB_MAX_BURST__VC5_MASK 0x00F00000L
+#define DAGB1_WR_OUTPUT_DAGB_MAX_BURST__VC6_MASK 0x0F000000L
+#define DAGB1_WR_OUTPUT_DAGB_MAX_BURST__VC7_MASK 0xF0000000L
+//DAGB1_WR_OUTPUT_DAGB_LAZY_TIMER
+#define DAGB1_WR_OUTPUT_DAGB_LAZY_TIMER__VC0__SHIFT 0x0
+#define DAGB1_WR_OUTPUT_DAGB_LAZY_TIMER__VC1__SHIFT 0x4
+#define DAGB1_WR_OUTPUT_DAGB_LAZY_TIMER__VC2__SHIFT 0x8
+#define DAGB1_WR_OUTPUT_DAGB_LAZY_TIMER__VC3__SHIFT 0xc
+#define DAGB1_WR_OUTPUT_DAGB_LAZY_TIMER__VC4__SHIFT 0x10
+#define DAGB1_WR_OUTPUT_DAGB_LAZY_TIMER__VC5__SHIFT 0x14
+#define DAGB1_WR_OUTPUT_DAGB_LAZY_TIMER__VC6__SHIFT 0x18
+#define DAGB1_WR_OUTPUT_DAGB_LAZY_TIMER__VC7__SHIFT 0x1c
+#define DAGB1_WR_OUTPUT_DAGB_LAZY_TIMER__VC0_MASK 0x0000000FL
+#define DAGB1_WR_OUTPUT_DAGB_LAZY_TIMER__VC1_MASK 0x000000F0L
+#define DAGB1_WR_OUTPUT_DAGB_LAZY_TIMER__VC2_MASK 0x00000F00L
+#define DAGB1_WR_OUTPUT_DAGB_LAZY_TIMER__VC3_MASK 0x0000F000L
+#define DAGB1_WR_OUTPUT_DAGB_LAZY_TIMER__VC4_MASK 0x000F0000L
+#define DAGB1_WR_OUTPUT_DAGB_LAZY_TIMER__VC5_MASK 0x00F00000L
+#define DAGB1_WR_OUTPUT_DAGB_LAZY_TIMER__VC6_MASK 0x0F000000L
+#define DAGB1_WR_OUTPUT_DAGB_LAZY_TIMER__VC7_MASK 0xF0000000L
+//DAGB1_WR_CGTT_CLK_CTRL
+#define DAGB1_WR_CGTT_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define DAGB1_WR_CGTT_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define DAGB1_WR_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS__SHIFT 0xc
+#define DAGB1_WR_CGTT_CLK_CTRL__LS_OVERRIDE__SHIFT 0x1e
+#define DAGB1_WR_CGTT_CLK_CTRL__SOFT_OVERRIDE__SHIFT 0x1f
+#define DAGB1_WR_CGTT_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define DAGB1_WR_CGTT_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define DAGB1_WR_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS_MASK 0x0FFFF000L
+#define DAGB1_WR_CGTT_CLK_CTRL__LS_OVERRIDE_MASK 0x40000000L
+#define DAGB1_WR_CGTT_CLK_CTRL__SOFT_OVERRIDE_MASK 0x80000000L
+//DAGB1_L1TLB_WR_CGTT_CLK_CTRL
+#define DAGB1_L1TLB_WR_CGTT_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define DAGB1_L1TLB_WR_CGTT_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define DAGB1_L1TLB_WR_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS__SHIFT 0xc
+#define DAGB1_L1TLB_WR_CGTT_CLK_CTRL__LS_OVERRIDE__SHIFT 0x1e
+#define DAGB1_L1TLB_WR_CGTT_CLK_CTRL__SOFT_OVERRIDE__SHIFT 0x1f
+#define DAGB1_L1TLB_WR_CGTT_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define DAGB1_L1TLB_WR_CGTT_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define DAGB1_L1TLB_WR_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS_MASK 0x0FFFF000L
+#define DAGB1_L1TLB_WR_CGTT_CLK_CTRL__LS_OVERRIDE_MASK 0x40000000L
+#define DAGB1_L1TLB_WR_CGTT_CLK_CTRL__SOFT_OVERRIDE_MASK 0x80000000L
+//DAGB1_ATCVM_WR_CGTT_CLK_CTRL
+#define DAGB1_ATCVM_WR_CGTT_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define DAGB1_ATCVM_WR_CGTT_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define DAGB1_ATCVM_WR_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS__SHIFT 0xc
+#define DAGB1_ATCVM_WR_CGTT_CLK_CTRL__LS_OVERRIDE__SHIFT 0x1e
+#define DAGB1_ATCVM_WR_CGTT_CLK_CTRL__SOFT_OVERRIDE__SHIFT 0x1f
+#define DAGB1_ATCVM_WR_CGTT_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define DAGB1_ATCVM_WR_CGTT_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define DAGB1_ATCVM_WR_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS_MASK 0x0FFFF000L
+#define DAGB1_ATCVM_WR_CGTT_CLK_CTRL__LS_OVERRIDE_MASK 0x40000000L
+#define DAGB1_ATCVM_WR_CGTT_CLK_CTRL__SOFT_OVERRIDE_MASK 0x80000000L
+//DAGB1_WR_ADDR_DAGB_MAX_BURST0
+#define DAGB1_WR_ADDR_DAGB_MAX_BURST0__CLIENT0__SHIFT 0x0
+#define DAGB1_WR_ADDR_DAGB_MAX_BURST0__CLIENT1__SHIFT 0x4
+#define DAGB1_WR_ADDR_DAGB_MAX_BURST0__CLIENT2__SHIFT 0x8
+#define DAGB1_WR_ADDR_DAGB_MAX_BURST0__CLIENT3__SHIFT 0xc
+#define DAGB1_WR_ADDR_DAGB_MAX_BURST0__CLIENT4__SHIFT 0x10
+#define DAGB1_WR_ADDR_DAGB_MAX_BURST0__CLIENT5__SHIFT 0x14
+#define DAGB1_WR_ADDR_DAGB_MAX_BURST0__CLIENT6__SHIFT 0x18
+#define DAGB1_WR_ADDR_DAGB_MAX_BURST0__CLIENT7__SHIFT 0x1c
+#define DAGB1_WR_ADDR_DAGB_MAX_BURST0__CLIENT0_MASK 0x0000000FL
+#define DAGB1_WR_ADDR_DAGB_MAX_BURST0__CLIENT1_MASK 0x000000F0L
+#define DAGB1_WR_ADDR_DAGB_MAX_BURST0__CLIENT2_MASK 0x00000F00L
+#define DAGB1_WR_ADDR_DAGB_MAX_BURST0__CLIENT3_MASK 0x0000F000L
+#define DAGB1_WR_ADDR_DAGB_MAX_BURST0__CLIENT4_MASK 0x000F0000L
+#define DAGB1_WR_ADDR_DAGB_MAX_BURST0__CLIENT5_MASK 0x00F00000L
+#define DAGB1_WR_ADDR_DAGB_MAX_BURST0__CLIENT6_MASK 0x0F000000L
+#define DAGB1_WR_ADDR_DAGB_MAX_BURST0__CLIENT7_MASK 0xF0000000L
+//DAGB1_WR_ADDR_DAGB_LAZY_TIMER0
+#define DAGB1_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT0__SHIFT 0x0
+#define DAGB1_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT1__SHIFT 0x4
+#define DAGB1_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT2__SHIFT 0x8
+#define DAGB1_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT3__SHIFT 0xc
+#define DAGB1_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT4__SHIFT 0x10
+#define DAGB1_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT5__SHIFT 0x14
+#define DAGB1_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT6__SHIFT 0x18
+#define DAGB1_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT7__SHIFT 0x1c
+#define DAGB1_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT0_MASK 0x0000000FL
+#define DAGB1_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT1_MASK 0x000000F0L
+#define DAGB1_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT2_MASK 0x00000F00L
+#define DAGB1_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT3_MASK 0x0000F000L
+#define DAGB1_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT4_MASK 0x000F0000L
+#define DAGB1_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT5_MASK 0x00F00000L
+#define DAGB1_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT6_MASK 0x0F000000L
+#define DAGB1_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT7_MASK 0xF0000000L
+//DAGB1_WR_ADDR_DAGB_MAX_BURST1
+#define DAGB1_WR_ADDR_DAGB_MAX_BURST1__CLIENT8__SHIFT 0x0
+#define DAGB1_WR_ADDR_DAGB_MAX_BURST1__CLIENT9__SHIFT 0x4
+#define DAGB1_WR_ADDR_DAGB_MAX_BURST1__CLIENT10__SHIFT 0x8
+#define DAGB1_WR_ADDR_DAGB_MAX_BURST1__CLIENT11__SHIFT 0xc
+#define DAGB1_WR_ADDR_DAGB_MAX_BURST1__CLIENT12__SHIFT 0x10
+#define DAGB1_WR_ADDR_DAGB_MAX_BURST1__CLIENT13__SHIFT 0x14
+#define DAGB1_WR_ADDR_DAGB_MAX_BURST1__CLIENT14__SHIFT 0x18
+#define DAGB1_WR_ADDR_DAGB_MAX_BURST1__CLIENT15__SHIFT 0x1c
+#define DAGB1_WR_ADDR_DAGB_MAX_BURST1__CLIENT8_MASK 0x0000000FL
+#define DAGB1_WR_ADDR_DAGB_MAX_BURST1__CLIENT9_MASK 0x000000F0L
+#define DAGB1_WR_ADDR_DAGB_MAX_BURST1__CLIENT10_MASK 0x00000F00L
+#define DAGB1_WR_ADDR_DAGB_MAX_BURST1__CLIENT11_MASK 0x0000F000L
+#define DAGB1_WR_ADDR_DAGB_MAX_BURST1__CLIENT12_MASK 0x000F0000L
+#define DAGB1_WR_ADDR_DAGB_MAX_BURST1__CLIENT13_MASK 0x00F00000L
+#define DAGB1_WR_ADDR_DAGB_MAX_BURST1__CLIENT14_MASK 0x0F000000L
+#define DAGB1_WR_ADDR_DAGB_MAX_BURST1__CLIENT15_MASK 0xF0000000L
+//DAGB1_WR_ADDR_DAGB_LAZY_TIMER1
+#define DAGB1_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT8__SHIFT 0x0
+#define DAGB1_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT9__SHIFT 0x4
+#define DAGB1_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT10__SHIFT 0x8
+#define DAGB1_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT11__SHIFT 0xc
+#define DAGB1_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT12__SHIFT 0x10
+#define DAGB1_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT13__SHIFT 0x14
+#define DAGB1_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT14__SHIFT 0x18
+#define DAGB1_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT15__SHIFT 0x1c
+#define DAGB1_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT8_MASK 0x0000000FL
+#define DAGB1_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT9_MASK 0x000000F0L
+#define DAGB1_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT10_MASK 0x00000F00L
+#define DAGB1_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT11_MASK 0x0000F000L
+#define DAGB1_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT12_MASK 0x000F0000L
+#define DAGB1_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT13_MASK 0x00F00000L
+#define DAGB1_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT14_MASK 0x0F000000L
+#define DAGB1_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT15_MASK 0xF0000000L
+//DAGB1_WR_DATA_DAGB
+#define DAGB1_WR_DATA_DAGB__DAGB_ENABLE__SHIFT 0x0
+#define DAGB1_WR_DATA_DAGB__ENABLE_JUMP_AHEAD__SHIFT 0x3
+#define DAGB1_WR_DATA_DAGB__DISABLE_SELF_INIT__SHIFT 0x6
+#define DAGB1_WR_DATA_DAGB__WHOAMI__SHIFT 0x7
+#define DAGB1_WR_DATA_DAGB__DAGB_ENABLE_MASK 0x00000007L
+#define DAGB1_WR_DATA_DAGB__ENABLE_JUMP_AHEAD_MASK 0x00000038L
+#define DAGB1_WR_DATA_DAGB__DISABLE_SELF_INIT_MASK 0x00000040L
+#define DAGB1_WR_DATA_DAGB__WHOAMI_MASK 0x00001F80L
+//DAGB1_WR_DATA_DAGB_MAX_BURST0
+#define DAGB1_WR_DATA_DAGB_MAX_BURST0__CLIENT0__SHIFT 0x0
+#define DAGB1_WR_DATA_DAGB_MAX_BURST0__CLIENT1__SHIFT 0x4
+#define DAGB1_WR_DATA_DAGB_MAX_BURST0__CLIENT2__SHIFT 0x8
+#define DAGB1_WR_DATA_DAGB_MAX_BURST0__CLIENT3__SHIFT 0xc
+#define DAGB1_WR_DATA_DAGB_MAX_BURST0__CLIENT4__SHIFT 0x10
+#define DAGB1_WR_DATA_DAGB_MAX_BURST0__CLIENT5__SHIFT 0x14
+#define DAGB1_WR_DATA_DAGB_MAX_BURST0__CLIENT6__SHIFT 0x18
+#define DAGB1_WR_DATA_DAGB_MAX_BURST0__CLIENT7__SHIFT 0x1c
+#define DAGB1_WR_DATA_DAGB_MAX_BURST0__CLIENT0_MASK 0x0000000FL
+#define DAGB1_WR_DATA_DAGB_MAX_BURST0__CLIENT1_MASK 0x000000F0L
+#define DAGB1_WR_DATA_DAGB_MAX_BURST0__CLIENT2_MASK 0x00000F00L
+#define DAGB1_WR_DATA_DAGB_MAX_BURST0__CLIENT3_MASK 0x0000F000L
+#define DAGB1_WR_DATA_DAGB_MAX_BURST0__CLIENT4_MASK 0x000F0000L
+#define DAGB1_WR_DATA_DAGB_MAX_BURST0__CLIENT5_MASK 0x00F00000L
+#define DAGB1_WR_DATA_DAGB_MAX_BURST0__CLIENT6_MASK 0x0F000000L
+#define DAGB1_WR_DATA_DAGB_MAX_BURST0__CLIENT7_MASK 0xF0000000L
+//DAGB1_WR_DATA_DAGB_LAZY_TIMER0
+#define DAGB1_WR_DATA_DAGB_LAZY_TIMER0__CLIENT0__SHIFT 0x0
+#define DAGB1_WR_DATA_DAGB_LAZY_TIMER0__CLIENT1__SHIFT 0x4
+#define DAGB1_WR_DATA_DAGB_LAZY_TIMER0__CLIENT2__SHIFT 0x8
+#define DAGB1_WR_DATA_DAGB_LAZY_TIMER0__CLIENT3__SHIFT 0xc
+#define DAGB1_WR_DATA_DAGB_LAZY_TIMER0__CLIENT4__SHIFT 0x10
+#define DAGB1_WR_DATA_DAGB_LAZY_TIMER0__CLIENT5__SHIFT 0x14
+#define DAGB1_WR_DATA_DAGB_LAZY_TIMER0__CLIENT6__SHIFT 0x18
+#define DAGB1_WR_DATA_DAGB_LAZY_TIMER0__CLIENT7__SHIFT 0x1c
+#define DAGB1_WR_DATA_DAGB_LAZY_TIMER0__CLIENT0_MASK 0x0000000FL
+#define DAGB1_WR_DATA_DAGB_LAZY_TIMER0__CLIENT1_MASK 0x000000F0L
+#define DAGB1_WR_DATA_DAGB_LAZY_TIMER0__CLIENT2_MASK 0x00000F00L
+#define DAGB1_WR_DATA_DAGB_LAZY_TIMER0__CLIENT3_MASK 0x0000F000L
+#define DAGB1_WR_DATA_DAGB_LAZY_TIMER0__CLIENT4_MASK 0x000F0000L
+#define DAGB1_WR_DATA_DAGB_LAZY_TIMER0__CLIENT5_MASK 0x00F00000L
+#define DAGB1_WR_DATA_DAGB_LAZY_TIMER0__CLIENT6_MASK 0x0F000000L
+#define DAGB1_WR_DATA_DAGB_LAZY_TIMER0__CLIENT7_MASK 0xF0000000L
+//DAGB1_WR_DATA_DAGB_MAX_BURST1
+#define DAGB1_WR_DATA_DAGB_MAX_BURST1__CLIENT8__SHIFT 0x0
+#define DAGB1_WR_DATA_DAGB_MAX_BURST1__CLIENT9__SHIFT 0x4
+#define DAGB1_WR_DATA_DAGB_MAX_BURST1__CLIENT10__SHIFT 0x8
+#define DAGB1_WR_DATA_DAGB_MAX_BURST1__CLIENT11__SHIFT 0xc
+#define DAGB1_WR_DATA_DAGB_MAX_BURST1__CLIENT12__SHIFT 0x10
+#define DAGB1_WR_DATA_DAGB_MAX_BURST1__CLIENT13__SHIFT 0x14
+#define DAGB1_WR_DATA_DAGB_MAX_BURST1__CLIENT14__SHIFT 0x18
+#define DAGB1_WR_DATA_DAGB_MAX_BURST1__CLIENT15__SHIFT 0x1c
+#define DAGB1_WR_DATA_DAGB_MAX_BURST1__CLIENT8_MASK 0x0000000FL
+#define DAGB1_WR_DATA_DAGB_MAX_BURST1__CLIENT9_MASK 0x000000F0L
+#define DAGB1_WR_DATA_DAGB_MAX_BURST1__CLIENT10_MASK 0x00000F00L
+#define DAGB1_WR_DATA_DAGB_MAX_BURST1__CLIENT11_MASK 0x0000F000L
+#define DAGB1_WR_DATA_DAGB_MAX_BURST1__CLIENT12_MASK 0x000F0000L
+#define DAGB1_WR_DATA_DAGB_MAX_BURST1__CLIENT13_MASK 0x00F00000L
+#define DAGB1_WR_DATA_DAGB_MAX_BURST1__CLIENT14_MASK 0x0F000000L
+#define DAGB1_WR_DATA_DAGB_MAX_BURST1__CLIENT15_MASK 0xF0000000L
+//DAGB1_WR_DATA_DAGB_LAZY_TIMER1
+#define DAGB1_WR_DATA_DAGB_LAZY_TIMER1__CLIENT8__SHIFT 0x0
+#define DAGB1_WR_DATA_DAGB_LAZY_TIMER1__CLIENT9__SHIFT 0x4
+#define DAGB1_WR_DATA_DAGB_LAZY_TIMER1__CLIENT10__SHIFT 0x8
+#define DAGB1_WR_DATA_DAGB_LAZY_TIMER1__CLIENT11__SHIFT 0xc
+#define DAGB1_WR_DATA_DAGB_LAZY_TIMER1__CLIENT12__SHIFT 0x10
+#define DAGB1_WR_DATA_DAGB_LAZY_TIMER1__CLIENT13__SHIFT 0x14
+#define DAGB1_WR_DATA_DAGB_LAZY_TIMER1__CLIENT14__SHIFT 0x18
+#define DAGB1_WR_DATA_DAGB_LAZY_TIMER1__CLIENT15__SHIFT 0x1c
+#define DAGB1_WR_DATA_DAGB_LAZY_TIMER1__CLIENT8_MASK 0x0000000FL
+#define DAGB1_WR_DATA_DAGB_LAZY_TIMER1__CLIENT9_MASK 0x000000F0L
+#define DAGB1_WR_DATA_DAGB_LAZY_TIMER1__CLIENT10_MASK 0x00000F00L
+#define DAGB1_WR_DATA_DAGB_LAZY_TIMER1__CLIENT11_MASK 0x0000F000L
+#define DAGB1_WR_DATA_DAGB_LAZY_TIMER1__CLIENT12_MASK 0x000F0000L
+#define DAGB1_WR_DATA_DAGB_LAZY_TIMER1__CLIENT13_MASK 0x00F00000L
+#define DAGB1_WR_DATA_DAGB_LAZY_TIMER1__CLIENT14_MASK 0x0F000000L
+#define DAGB1_WR_DATA_DAGB_LAZY_TIMER1__CLIENT15_MASK 0xF0000000L
+//DAGB1_WR_VC0_CNTL
+#define DAGB1_WR_VC0_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB1_WR_VC0_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB1_WR_VC0_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB1_WR_VC0_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB1_WR_VC0_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB1_WR_VC0_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB1_WR_VC0_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB1_WR_VC0_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB1_WR_VC0_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB1_WR_VC0_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB1_WR_VC0_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB1_WR_VC0_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB1_WR_VC0_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB1_WR_VC0_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB1_WR_VC0_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB1_WR_VC0_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB1_WR_VC1_CNTL
+#define DAGB1_WR_VC1_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB1_WR_VC1_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB1_WR_VC1_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB1_WR_VC1_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB1_WR_VC1_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB1_WR_VC1_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB1_WR_VC1_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB1_WR_VC1_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB1_WR_VC1_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB1_WR_VC1_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB1_WR_VC1_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB1_WR_VC1_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB1_WR_VC1_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB1_WR_VC1_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB1_WR_VC1_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB1_WR_VC1_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB1_WR_VC2_CNTL
+#define DAGB1_WR_VC2_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB1_WR_VC2_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB1_WR_VC2_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB1_WR_VC2_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB1_WR_VC2_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB1_WR_VC2_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB1_WR_VC2_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB1_WR_VC2_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB1_WR_VC2_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB1_WR_VC2_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB1_WR_VC2_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB1_WR_VC2_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB1_WR_VC2_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB1_WR_VC2_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB1_WR_VC2_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB1_WR_VC2_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB1_WR_VC3_CNTL
+#define DAGB1_WR_VC3_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB1_WR_VC3_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB1_WR_VC3_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB1_WR_VC3_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB1_WR_VC3_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB1_WR_VC3_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB1_WR_VC3_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB1_WR_VC3_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB1_WR_VC3_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB1_WR_VC3_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB1_WR_VC3_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB1_WR_VC3_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB1_WR_VC3_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB1_WR_VC3_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB1_WR_VC3_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB1_WR_VC3_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB1_WR_VC4_CNTL
+#define DAGB1_WR_VC4_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB1_WR_VC4_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB1_WR_VC4_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB1_WR_VC4_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB1_WR_VC4_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB1_WR_VC4_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB1_WR_VC4_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB1_WR_VC4_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB1_WR_VC4_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB1_WR_VC4_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB1_WR_VC4_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB1_WR_VC4_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB1_WR_VC4_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB1_WR_VC4_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB1_WR_VC4_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB1_WR_VC4_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB1_WR_VC5_CNTL
+#define DAGB1_WR_VC5_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB1_WR_VC5_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB1_WR_VC5_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB1_WR_VC5_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB1_WR_VC5_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB1_WR_VC5_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB1_WR_VC5_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB1_WR_VC5_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB1_WR_VC5_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB1_WR_VC5_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB1_WR_VC5_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB1_WR_VC5_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB1_WR_VC5_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB1_WR_VC5_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB1_WR_VC5_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB1_WR_VC5_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB1_WR_VC6_CNTL
+#define DAGB1_WR_VC6_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB1_WR_VC6_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB1_WR_VC6_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB1_WR_VC6_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB1_WR_VC6_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB1_WR_VC6_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB1_WR_VC6_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB1_WR_VC6_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB1_WR_VC6_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB1_WR_VC6_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB1_WR_VC6_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB1_WR_VC6_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB1_WR_VC6_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB1_WR_VC6_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB1_WR_VC6_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB1_WR_VC6_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB1_WR_VC7_CNTL
+#define DAGB1_WR_VC7_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB1_WR_VC7_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB1_WR_VC7_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB1_WR_VC7_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB1_WR_VC7_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB1_WR_VC7_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB1_WR_VC7_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB1_WR_VC7_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB1_WR_VC7_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB1_WR_VC7_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB1_WR_VC7_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB1_WR_VC7_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB1_WR_VC7_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB1_WR_VC7_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB1_WR_VC7_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB1_WR_VC7_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB1_WR_CNTL_MISC
+#define DAGB1_WR_CNTL_MISC__STOR_POOL_CREDIT__SHIFT 0x0
+#define DAGB1_WR_CNTL_MISC__EA_POOL_CREDIT__SHIFT 0x6
+#define DAGB1_WR_CNTL_MISC__IO_EA_CREDIT__SHIFT 0xd
+#define DAGB1_WR_CNTL_MISC__STOR_CC_NEW_MODE__SHIFT 0x13
+#define DAGB1_WR_CNTL_MISC__EA_CC_LEGACY_MODE__SHIFT 0x14
+#define DAGB1_WR_CNTL_MISC__UTCL2_CID__SHIFT 0x15
+#define DAGB1_WR_CNTL_MISC__RDRET_FIFO_CREDITS__SHIFT 0x1a
+#define DAGB1_WR_CNTL_MISC__STOR_POOL_CREDIT_MASK 0x0000003FL
+#define DAGB1_WR_CNTL_MISC__EA_POOL_CREDIT_MASK 0x00001FC0L
+#define DAGB1_WR_CNTL_MISC__IO_EA_CREDIT_MASK 0x0007E000L
+#define DAGB1_WR_CNTL_MISC__STOR_CC_NEW_MODE_MASK 0x00080000L
+#define DAGB1_WR_CNTL_MISC__EA_CC_LEGACY_MODE_MASK 0x00100000L
+#define DAGB1_WR_CNTL_MISC__UTCL2_CID_MASK 0x03E00000L
+#define DAGB1_WR_CNTL_MISC__RDRET_FIFO_CREDITS_MASK 0xFC000000L
+//DAGB1_WR_TLB_CREDIT
+#define DAGB1_WR_TLB_CREDIT__TLB0__SHIFT 0x0
+#define DAGB1_WR_TLB_CREDIT__TLB1__SHIFT 0x5
+#define DAGB1_WR_TLB_CREDIT__TLB2__SHIFT 0xa
+#define DAGB1_WR_TLB_CREDIT__TLB3__SHIFT 0xf
+#define DAGB1_WR_TLB_CREDIT__TLB4__SHIFT 0x14
+#define DAGB1_WR_TLB_CREDIT__TLB5__SHIFT 0x19
+#define DAGB1_WR_TLB_CREDIT__TLB0_MASK 0x0000001FL
+#define DAGB1_WR_TLB_CREDIT__TLB1_MASK 0x000003E0L
+#define DAGB1_WR_TLB_CREDIT__TLB2_MASK 0x00007C00L
+#define DAGB1_WR_TLB_CREDIT__TLB3_MASK 0x000F8000L
+#define DAGB1_WR_TLB_CREDIT__TLB4_MASK 0x01F00000L
+#define DAGB1_WR_TLB_CREDIT__TLB5_MASK 0x3E000000L
+//DAGB1_WR_DATA_CREDIT
+#define DAGB1_WR_DATA_CREDIT__DLOCK_VC_CREDITS__SHIFT 0x0
+#define DAGB1_WR_DATA_CREDIT__LARGE_BURST_CREDITS__SHIFT 0x8
+#define DAGB1_WR_DATA_CREDIT__MIDDLE_BURST_CREDITS__SHIFT 0x10
+#define DAGB1_WR_DATA_CREDIT__SMALL_BURST_CREDITS__SHIFT 0x18
+#define DAGB1_WR_DATA_CREDIT__DLOCK_VC_CREDITS_MASK 0x000000FFL
+#define DAGB1_WR_DATA_CREDIT__LARGE_BURST_CREDITS_MASK 0x0000FF00L
+#define DAGB1_WR_DATA_CREDIT__MIDDLE_BURST_CREDITS_MASK 0x00FF0000L
+#define DAGB1_WR_DATA_CREDIT__SMALL_BURST_CREDITS_MASK 0xFF000000L
+//DAGB1_WR_MISC_CREDIT
+#define DAGB1_WR_MISC_CREDIT__ATOMIC_CREDIT__SHIFT 0x0
+#define DAGB1_WR_MISC_CREDIT__DLOCK_VC_NUM__SHIFT 0x6
+#define DAGB1_WR_MISC_CREDIT__OSD_CREDIT__SHIFT 0x9
+#define DAGB1_WR_MISC_CREDIT__OSD_DLOCK_CREDIT__SHIFT 0x10
+#define DAGB1_WR_MISC_CREDIT__ATOMIC_CREDIT_MASK 0x0000003FL
+#define DAGB1_WR_MISC_CREDIT__DLOCK_VC_NUM_MASK 0x000001C0L
+#define DAGB1_WR_MISC_CREDIT__OSD_CREDIT_MASK 0x0000FE00L
+#define DAGB1_WR_MISC_CREDIT__OSD_DLOCK_CREDIT_MASK 0x007F0000L
+//DAGB1_WR_OSD_CREDIT_CNTL1
+#define DAGB1_WR_OSD_CREDIT_CNTL1__VC0_CREDIT__SHIFT 0x0
+#define DAGB1_WR_OSD_CREDIT_CNTL1__VC1_CREDIT__SHIFT 0x4
+#define DAGB1_WR_OSD_CREDIT_CNTL1__VC2_CREDIT__SHIFT 0x8
+#define DAGB1_WR_OSD_CREDIT_CNTL1__VC3_CREDIT__SHIFT 0xc
+#define DAGB1_WR_OSD_CREDIT_CNTL1__IO_CREDIT__SHIFT 0x10
+#define DAGB1_WR_OSD_CREDIT_CNTL1__GMI_CREDIT__SHIFT 0x14
+#define DAGB1_WR_OSD_CREDIT_CNTL1__POOL_CREDIT__SHIFT 0x18
+#define DAGB1_WR_OSD_CREDIT_CNTL1__VC0_CREDIT_MASK 0x0000000FL
+#define DAGB1_WR_OSD_CREDIT_CNTL1__VC1_CREDIT_MASK 0x000000F0L
+#define DAGB1_WR_OSD_CREDIT_CNTL1__VC2_CREDIT_MASK 0x00000F00L
+#define DAGB1_WR_OSD_CREDIT_CNTL1__VC3_CREDIT_MASK 0x0000F000L
+#define DAGB1_WR_OSD_CREDIT_CNTL1__IO_CREDIT_MASK 0x000F0000L
+#define DAGB1_WR_OSD_CREDIT_CNTL1__GMI_CREDIT_MASK 0x00F00000L
+#define DAGB1_WR_OSD_CREDIT_CNTL1__POOL_CREDIT_MASK 0x3F000000L
+//DAGB1_WR_OSD_CREDIT_CNTL2
+#define DAGB1_WR_OSD_CREDIT_CNTL2__CREDIT_MARGIN__SHIFT 0x0
+#define DAGB1_WR_OSD_CREDIT_CNTL2__ENABLE_LEGACY__SHIFT 0x4
+#define DAGB1_WR_OSD_CREDIT_CNTL2__CREDIT_MARGIN_MASK 0x0000000FL
+#define DAGB1_WR_OSD_CREDIT_CNTL2__ENABLE_LEGACY_MASK 0x00000010L
+//DAGB1_WR_ATOMIC_FIFO_CREDIT_CNTL1
+#define DAGB1_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC0_CREDIT__SHIFT 0x0
+#define DAGB1_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC1_CREDIT__SHIFT 0x5
+#define DAGB1_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC2_CREDIT__SHIFT 0xa
+#define DAGB1_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC3_CREDIT__SHIFT 0xf
+#define DAGB1_WR_ATOMIC_FIFO_CREDIT_CNTL1__POOL_CREDIT__SHIFT 0x14
+#define DAGB1_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC_MODE__SHIFT 0x19
+#define DAGB1_WR_ATOMIC_FIFO_CREDIT_CNTL1__FIX_EQ__SHIFT 0x1a
+#define DAGB1_WR_ATOMIC_FIFO_CREDIT_CNTL1__FIX0__SHIFT 0x1b
+#define DAGB1_WR_ATOMIC_FIFO_CREDIT_CNTL1__FIX1__SHIFT 0x1c
+#define DAGB1_WR_ATOMIC_FIFO_CREDIT_CNTL1__FIX2__SHIFT 0x1d
+#define DAGB1_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC0_CREDIT_MASK 0x0000001FL
+#define DAGB1_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC1_CREDIT_MASK 0x000003E0L
+#define DAGB1_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC2_CREDIT_MASK 0x00007C00L
+#define DAGB1_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC3_CREDIT_MASK 0x000F8000L
+#define DAGB1_WR_ATOMIC_FIFO_CREDIT_CNTL1__POOL_CREDIT_MASK 0x01F00000L
+#define DAGB1_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC_MODE_MASK 0x02000000L
+#define DAGB1_WR_ATOMIC_FIFO_CREDIT_CNTL1__FIX_EQ_MASK 0x04000000L
+#define DAGB1_WR_ATOMIC_FIFO_CREDIT_CNTL1__FIX0_MASK 0x08000000L
+#define DAGB1_WR_ATOMIC_FIFO_CREDIT_CNTL1__FIX1_MASK 0x10000000L
+#define DAGB1_WR_ATOMIC_FIFO_CREDIT_CNTL1__FIX2_MASK 0x20000000L
+//DAGB1_WRCLI_GPU_SNOOP_OVERRIDE
+#define DAGB1_WRCLI_GPU_SNOOP_OVERRIDE__ENABLE__SHIFT 0x0
+#define DAGB1_WRCLI_GPU_SNOOP_OVERRIDE__ENABLE_MASK 0x0000FFFFL
+//DAGB1_WRCLI_GPU_SNOOP_OVERRIDE_VALUE
+#define DAGB1_WRCLI_GPU_SNOOP_OVERRIDE_VALUE__ENABLE__SHIFT 0x0
+#define DAGB1_WRCLI_GPU_SNOOP_OVERRIDE_VALUE__ENABLE_MASK 0x0000FFFFL
+//DAGB1_WRCLI_ASK_PENDING
+#define DAGB1_WRCLI_ASK_PENDING__BUSY__SHIFT 0x0
+#define DAGB1_WRCLI_ASK_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB1_WRCLI_GO_PENDING
+#define DAGB1_WRCLI_GO_PENDING__BUSY__SHIFT 0x0
+#define DAGB1_WRCLI_GO_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB1_WRCLI_GBLSEND_PENDING
+#define DAGB1_WRCLI_GBLSEND_PENDING__BUSY__SHIFT 0x0
+#define DAGB1_WRCLI_GBLSEND_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB1_WRCLI_TLB_PENDING
+#define DAGB1_WRCLI_TLB_PENDING__BUSY__SHIFT 0x0
+#define DAGB1_WRCLI_TLB_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB1_WRCLI_OARB_PENDING
+#define DAGB1_WRCLI_OARB_PENDING__BUSY__SHIFT 0x0
+#define DAGB1_WRCLI_OARB_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB1_WRCLI_OSD_PENDING
+#define DAGB1_WRCLI_OSD_PENDING__BUSY__SHIFT 0x0
+#define DAGB1_WRCLI_OSD_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB1_WRCLI_DBUS_ASK_PENDING
+#define DAGB1_WRCLI_DBUS_ASK_PENDING__BUSY__SHIFT 0x0
+#define DAGB1_WRCLI_DBUS_ASK_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB1_WRCLI_DBUS_GO_PENDING
+#define DAGB1_WRCLI_DBUS_GO_PENDING__BUSY__SHIFT 0x0
+#define DAGB1_WRCLI_DBUS_GO_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB1_DAGB_DLY
+#define DAGB1_DAGB_DLY__DLY__SHIFT 0x0
+#define DAGB1_DAGB_DLY__CLI__SHIFT 0x8
+#define DAGB1_DAGB_DLY__POS__SHIFT 0x10
+#define DAGB1_DAGB_DLY__DLY_MASK 0x000000FFL
+#define DAGB1_DAGB_DLY__CLI_MASK 0x0000FF00L
+#define DAGB1_DAGB_DLY__POS_MASK 0x000F0000L
+//DAGB1_CNTL_MISC
+#define DAGB1_CNTL_MISC__EA_VC0_REMAP__SHIFT 0x0
+#define DAGB1_CNTL_MISC__EA_VC1_REMAP__SHIFT 0x3
+#define DAGB1_CNTL_MISC__EA_VC2_REMAP__SHIFT 0x6
+#define DAGB1_CNTL_MISC__EA_VC3_REMAP__SHIFT 0x9
+#define DAGB1_CNTL_MISC__EA_VC4_REMAP__SHIFT 0xc
+#define DAGB1_CNTL_MISC__EA_VC5_REMAP__SHIFT 0xf
+#define DAGB1_CNTL_MISC__EA_VC6_REMAP__SHIFT 0x12
+#define DAGB1_CNTL_MISC__EA_VC7_REMAP__SHIFT 0x15
+#define DAGB1_CNTL_MISC__BW_INIT_CYCLE__SHIFT 0x18
+#define DAGB1_CNTL_MISC__BW_RW_GAP_CYCLE__SHIFT 0x1e
+#define DAGB1_CNTL_MISC__EA_VC0_REMAP_MASK 0x00000007L
+#define DAGB1_CNTL_MISC__EA_VC1_REMAP_MASK 0x00000038L
+#define DAGB1_CNTL_MISC__EA_VC2_REMAP_MASK 0x000001C0L
+#define DAGB1_CNTL_MISC__EA_VC3_REMAP_MASK 0x00000E00L
+#define DAGB1_CNTL_MISC__EA_VC4_REMAP_MASK 0x00007000L
+#define DAGB1_CNTL_MISC__EA_VC5_REMAP_MASK 0x00038000L
+#define DAGB1_CNTL_MISC__EA_VC6_REMAP_MASK 0x001C0000L
+#define DAGB1_CNTL_MISC__EA_VC7_REMAP_MASK 0x00E00000L
+#define DAGB1_CNTL_MISC__BW_INIT_CYCLE_MASK 0x3F000000L
+#define DAGB1_CNTL_MISC__BW_RW_GAP_CYCLE_MASK 0xC0000000L
+//DAGB1_CNTL_MISC2
+#define DAGB1_CNTL_MISC2__URG_BOOST_ENABLE__SHIFT 0x0
+#define DAGB1_CNTL_MISC2__URG_HALT_ENABLE__SHIFT 0x1
+#define DAGB1_CNTL_MISC2__DISABLE_WRREQ_CG__SHIFT 0x2
+#define DAGB1_CNTL_MISC2__DISABLE_WRRET_CG__SHIFT 0x3
+#define DAGB1_CNTL_MISC2__DISABLE_RDREQ_CG__SHIFT 0x4
+#define DAGB1_CNTL_MISC2__DISABLE_RDRET_CG__SHIFT 0x5
+#define DAGB1_CNTL_MISC2__DISABLE_TLBWR_CG__SHIFT 0x6
+#define DAGB1_CNTL_MISC2__DISABLE_TLBRD_CG__SHIFT 0x7
+#define DAGB1_CNTL_MISC2__DISABLE_EAWRREQ_BUSY__SHIFT 0x8
+#define DAGB1_CNTL_MISC2__DISABLE_EARDREQ_BUSY__SHIFT 0x9
+#define DAGB1_CNTL_MISC2__SWAP_CTL__SHIFT 0xa
+#define DAGB1_CNTL_MISC2__RDRET_FIFO_PERF__SHIFT 0xb
+#define DAGB1_CNTL_MISC2__HDP_CID__SHIFT 0xc
+#define DAGB1_CNTL_MISC2__RDRET_FIFO_DLOCK_CREDITS__SHIFT 0x10
+#define DAGB1_CNTL_MISC2__URG_BOOST_ENABLE_MASK 0x00000001L
+#define DAGB1_CNTL_MISC2__URG_HALT_ENABLE_MASK 0x00000002L
+#define DAGB1_CNTL_MISC2__DISABLE_WRREQ_CG_MASK 0x00000004L
+#define DAGB1_CNTL_MISC2__DISABLE_WRRET_CG_MASK 0x00000008L
+#define DAGB1_CNTL_MISC2__DISABLE_RDREQ_CG_MASK 0x00000010L
+#define DAGB1_CNTL_MISC2__DISABLE_RDRET_CG_MASK 0x00000020L
+#define DAGB1_CNTL_MISC2__DISABLE_TLBWR_CG_MASK 0x00000040L
+#define DAGB1_CNTL_MISC2__DISABLE_TLBRD_CG_MASK 0x00000080L
+#define DAGB1_CNTL_MISC2__DISABLE_EAWRREQ_BUSY_MASK 0x00000100L
+#define DAGB1_CNTL_MISC2__DISABLE_EARDREQ_BUSY_MASK 0x00000200L
+#define DAGB1_CNTL_MISC2__SWAP_CTL_MASK 0x00000400L
+#define DAGB1_CNTL_MISC2__RDRET_FIFO_PERF_MASK 0x00000800L
+#define DAGB1_CNTL_MISC2__HDP_CID_MASK 0x0000F000L
+#define DAGB1_CNTL_MISC2__RDRET_FIFO_DLOCK_CREDITS_MASK 0x003F0000L
+//DAGB1_FATAL_ERROR_CNTL
+#define DAGB1_FATAL_ERROR_CNTL__FILTER_NUM__SHIFT 0x0
+#define DAGB1_FATAL_ERROR_CNTL__FILTER_NUM_MASK 0x000003FFL
+//DAGB1_FATAL_ERROR_CLEAR
+#define DAGB1_FATAL_ERROR_CLEAR__CLEAR__SHIFT 0x0
+#define DAGB1_FATAL_ERROR_CLEAR__CLEAR_MASK 0x00000001L
+//DAGB1_FATAL_ERROR_STATUS0
+#define DAGB1_FATAL_ERROR_STATUS0__VALID__SHIFT 0x0
+#define DAGB1_FATAL_ERROR_STATUS0__CID__SHIFT 0x1
+#define DAGB1_FATAL_ERROR_STATUS0__ADDR_LO__SHIFT 0x6
+#define DAGB1_FATAL_ERROR_STATUS0__VALID_MASK 0x00000001L
+#define DAGB1_FATAL_ERROR_STATUS0__CID_MASK 0x0000003EL
+#define DAGB1_FATAL_ERROR_STATUS0__ADDR_LO_MASK 0xFFFFFFC0L
+//DAGB1_FATAL_ERROR_STATUS1
+#define DAGB1_FATAL_ERROR_STATUS1__ADDR_HI__SHIFT 0x0
+#define DAGB1_FATAL_ERROR_STATUS1__ADDR_HI_MASK 0x0001FFFFL
+//DAGB1_FATAL_ERROR_STATUS2
+#define DAGB1_FATAL_ERROR_STATUS2__TAG__SHIFT 0x0
+#define DAGB1_FATAL_ERROR_STATUS2__VFID__SHIFT 0x10
+#define DAGB1_FATAL_ERROR_STATUS2__VF__SHIFT 0x14
+#define DAGB1_FATAL_ERROR_STATUS2__SPACE__SHIFT 0x15
+#define DAGB1_FATAL_ERROR_STATUS2__IO__SHIFT 0x16
+#define DAGB1_FATAL_ERROR_STATUS2__SIZE__SHIFT 0x17
+#define DAGB1_FATAL_ERROR_STATUS2__DBGMSK__SHIFT 0x18
+#define DAGB1_FATAL_ERROR_STATUS2__FED__SHIFT 0x19
+#define DAGB1_FATAL_ERROR_STATUS2__TAG_MASK 0x0000FFFFL
+#define DAGB1_FATAL_ERROR_STATUS2__VFID_MASK 0x000F0000L
+#define DAGB1_FATAL_ERROR_STATUS2__VF_MASK 0x00100000L
+#define DAGB1_FATAL_ERROR_STATUS2__SPACE_MASK 0x00200000L
+#define DAGB1_FATAL_ERROR_STATUS2__IO_MASK 0x00400000L
+#define DAGB1_FATAL_ERROR_STATUS2__SIZE_MASK 0x00800000L
+#define DAGB1_FATAL_ERROR_STATUS2__DBGMSK_MASK 0x01000000L
+#define DAGB1_FATAL_ERROR_STATUS2__FED_MASK 0x02000000L
+//DAGB1_FATAL_ERROR_STATUS3
+#define DAGB1_FATAL_ERROR_STATUS3__NOALLOC__SHIFT 0x0
+#define DAGB1_FATAL_ERROR_STATUS3__UNITID__SHIFT 0x1
+#define DAGB1_FATAL_ERROR_STATUS3__OP__SHIFT 0x7
+#define DAGB1_FATAL_ERROR_STATUS3__SECLEVEL__SHIFT 0xe
+#define DAGB1_FATAL_ERROR_STATUS3__WRTMZ__SHIFT 0x11
+#define DAGB1_FATAL_ERROR_STATUS3__RDTMZ__SHIFT 0x12
+#define DAGB1_FATAL_ERROR_STATUS3__SNOOP__SHIFT 0x13
+#define DAGB1_FATAL_ERROR_STATUS3__INVAL__SHIFT 0x14
+#define DAGB1_FATAL_ERROR_STATUS3__NACK__SHIFT 0x15
+#define DAGB1_FATAL_ERROR_STATUS3__RO__SHIFT 0x17
+#define DAGB1_FATAL_ERROR_STATUS3__MEMLOG__SHIFT 0x18
+#define DAGB1_FATAL_ERROR_STATUS3__EOP__SHIFT 0x19
+#define DAGB1_FATAL_ERROR_STATUS3__NOALLOC_MASK 0x00000001L
+#define DAGB1_FATAL_ERROR_STATUS3__UNITID_MASK 0x0000007EL
+#define DAGB1_FATAL_ERROR_STATUS3__OP_MASK 0x00003F80L
+#define DAGB1_FATAL_ERROR_STATUS3__SECLEVEL_MASK 0x0001C000L
+#define DAGB1_FATAL_ERROR_STATUS3__WRTMZ_MASK 0x00020000L
+#define DAGB1_FATAL_ERROR_STATUS3__RDTMZ_MASK 0x00040000L
+#define DAGB1_FATAL_ERROR_STATUS3__SNOOP_MASK 0x00080000L
+#define DAGB1_FATAL_ERROR_STATUS3__INVAL_MASK 0x00100000L
+#define DAGB1_FATAL_ERROR_STATUS3__NACK_MASK 0x00600000L
+#define DAGB1_FATAL_ERROR_STATUS3__RO_MASK 0x00800000L
+#define DAGB1_FATAL_ERROR_STATUS3__MEMLOG_MASK 0x01000000L
+#define DAGB1_FATAL_ERROR_STATUS3__EOP_MASK 0x02000000L
+//DAGB1_FIFO_EMPTY
+#define DAGB1_FIFO_EMPTY__EMPTY__SHIFT 0x0
+#define DAGB1_FIFO_EMPTY__EMPTY_MASK 0x00FFFFFFL
+//DAGB1_FIFO_FULL
+#define DAGB1_FIFO_FULL__FULL__SHIFT 0x0
+#define DAGB1_FIFO_FULL__FULL_MASK 0x007FFFFFL
+//DAGB1_WR_CREDITS_FULL
+#define DAGB1_WR_CREDITS_FULL__FULL__SHIFT 0x0
+#define DAGB1_WR_CREDITS_FULL__FULL_MASK 0x1FFFFFFFL
+//DAGB1_RD_CREDITS_FULL
+#define DAGB1_RD_CREDITS_FULL__FULL__SHIFT 0x0
+#define DAGB1_RD_CREDITS_FULL__FULL_MASK 0x0003FFFFL
+//DAGB1_PERFCOUNTER_LO
+#define DAGB1_PERFCOUNTER_LO__COUNTER_LO__SHIFT 0x0
+#define DAGB1_PERFCOUNTER_LO__COUNTER_LO_MASK 0xFFFFFFFFL
+//DAGB1_PERFCOUNTER_HI
+#define DAGB1_PERFCOUNTER_HI__COUNTER_HI__SHIFT 0x0
+#define DAGB1_PERFCOUNTER_HI__COMPARE_VALUE__SHIFT 0x10
+#define DAGB1_PERFCOUNTER_HI__COUNTER_HI_MASK 0x0000FFFFL
+#define DAGB1_PERFCOUNTER_HI__COMPARE_VALUE_MASK 0xFFFF0000L
+//DAGB1_PERFCOUNTER0_CFG
+#define DAGB1_PERFCOUNTER0_CFG__PERF_SEL__SHIFT 0x0
+#define DAGB1_PERFCOUNTER0_CFG__PERF_SEL_END__SHIFT 0x8
+#define DAGB1_PERFCOUNTER0_CFG__PERF_MODE__SHIFT 0x18
+#define DAGB1_PERFCOUNTER0_CFG__ENABLE__SHIFT 0x1c
+#define DAGB1_PERFCOUNTER0_CFG__CLEAR__SHIFT 0x1d
+#define DAGB1_PERFCOUNTER0_CFG__PERF_SEL_MASK 0x000000FFL
+#define DAGB1_PERFCOUNTER0_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define DAGB1_PERFCOUNTER0_CFG__PERF_MODE_MASK 0x0F000000L
+#define DAGB1_PERFCOUNTER0_CFG__ENABLE_MASK 0x10000000L
+#define DAGB1_PERFCOUNTER0_CFG__CLEAR_MASK 0x20000000L
+//DAGB1_PERFCOUNTER1_CFG
+#define DAGB1_PERFCOUNTER1_CFG__PERF_SEL__SHIFT 0x0
+#define DAGB1_PERFCOUNTER1_CFG__PERF_SEL_END__SHIFT 0x8
+#define DAGB1_PERFCOUNTER1_CFG__PERF_MODE__SHIFT 0x18
+#define DAGB1_PERFCOUNTER1_CFG__ENABLE__SHIFT 0x1c
+#define DAGB1_PERFCOUNTER1_CFG__CLEAR__SHIFT 0x1d
+#define DAGB1_PERFCOUNTER1_CFG__PERF_SEL_MASK 0x000000FFL
+#define DAGB1_PERFCOUNTER1_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define DAGB1_PERFCOUNTER1_CFG__PERF_MODE_MASK 0x0F000000L
+#define DAGB1_PERFCOUNTER1_CFG__ENABLE_MASK 0x10000000L
+#define DAGB1_PERFCOUNTER1_CFG__CLEAR_MASK 0x20000000L
+//DAGB1_PERFCOUNTER2_CFG
+#define DAGB1_PERFCOUNTER2_CFG__PERF_SEL__SHIFT 0x0
+#define DAGB1_PERFCOUNTER2_CFG__PERF_SEL_END__SHIFT 0x8
+#define DAGB1_PERFCOUNTER2_CFG__PERF_MODE__SHIFT 0x18
+#define DAGB1_PERFCOUNTER2_CFG__ENABLE__SHIFT 0x1c
+#define DAGB1_PERFCOUNTER2_CFG__CLEAR__SHIFT 0x1d
+#define DAGB1_PERFCOUNTER2_CFG__PERF_SEL_MASK 0x000000FFL
+#define DAGB1_PERFCOUNTER2_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define DAGB1_PERFCOUNTER2_CFG__PERF_MODE_MASK 0x0F000000L
+#define DAGB1_PERFCOUNTER2_CFG__ENABLE_MASK 0x10000000L
+#define DAGB1_PERFCOUNTER2_CFG__CLEAR_MASK 0x20000000L
+//DAGB1_PERFCOUNTER_RSLT_CNTL
+#define DAGB1_PERFCOUNTER_RSLT_CNTL__PERF_COUNTER_SELECT__SHIFT 0x0
+#define DAGB1_PERFCOUNTER_RSLT_CNTL__START_TRIGGER__SHIFT 0x8
+#define DAGB1_PERFCOUNTER_RSLT_CNTL__STOP_TRIGGER__SHIFT 0x10
+#define DAGB1_PERFCOUNTER_RSLT_CNTL__ENABLE_ANY__SHIFT 0x18
+#define DAGB1_PERFCOUNTER_RSLT_CNTL__CLEAR_ALL__SHIFT 0x19
+#define DAGB1_PERFCOUNTER_RSLT_CNTL__STOP_ALL_ON_SATURATE__SHIFT 0x1a
+#define DAGB1_PERFCOUNTER_RSLT_CNTL__PERF_COUNTER_SELECT_MASK 0x0000000FL
+#define DAGB1_PERFCOUNTER_RSLT_CNTL__START_TRIGGER_MASK 0x0000FF00L
+#define DAGB1_PERFCOUNTER_RSLT_CNTL__STOP_TRIGGER_MASK 0x00FF0000L
+#define DAGB1_PERFCOUNTER_RSLT_CNTL__ENABLE_ANY_MASK 0x01000000L
+#define DAGB1_PERFCOUNTER_RSLT_CNTL__CLEAR_ALL_MASK 0x02000000L
+#define DAGB1_PERFCOUNTER_RSLT_CNTL__STOP_ALL_ON_SATURATE_MASK 0x04000000L
+//DAGB1_L1TLB_REG_RW
+#define DAGB1_L1TLB_REG_RW__REG_WRITE_L1TLB_CTRL__SHIFT 0x0
+#define DAGB1_L1TLB_REG_RW__REG_READ_L1TLB_CTRL__SHIFT 0x1
+#define DAGB1_L1TLB_REG_RW__VMID_EXCEP_INT_CTRL__SHIFT 0x2
+#define DAGB1_L1TLB_REG_RW__WDAT_PARITY_CHECK__SHIFT 0x4
+#define DAGB1_L1TLB_REG_RW__DISABLE_RDRET_CHECK__SHIFT 0x5
+#define DAGB1_L1TLB_REG_RW__RESERVE__SHIFT 0x6
+#define DAGB1_L1TLB_REG_RW__REG_WRITE_L1TLB_CTRL_MASK 0x00000001L
+#define DAGB1_L1TLB_REG_RW__REG_READ_L1TLB_CTRL_MASK 0x00000002L
+#define DAGB1_L1TLB_REG_RW__VMID_EXCEP_INT_CTRL_MASK 0x00000004L
+#define DAGB1_L1TLB_REG_RW__WDAT_PARITY_CHECK_MASK 0x00000010L
+#define DAGB1_L1TLB_REG_RW__DISABLE_RDRET_CHECK_MASK 0x00000020L
+#define DAGB1_L1TLB_REG_RW__RESERVE_MASK 0xFFFFFFC0L
+
+
+// addressBlock: aid_mmhub_dagb_dagbdec2
+//DAGB2_RDCLI0
+#define DAGB2_RDCLI0__VIRT_CHAN__SHIFT 0x0
+#define DAGB2_RDCLI0__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB2_RDCLI0__URG_HIGH__SHIFT 0x4
+#define DAGB2_RDCLI0__URG_LOW__SHIFT 0x8
+#define DAGB2_RDCLI0__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB2_RDCLI0__MAX_BW__SHIFT 0xd
+#define DAGB2_RDCLI0__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB2_RDCLI0__MIN_BW__SHIFT 0x16
+#define DAGB2_RDCLI0__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB2_RDCLI0__MAX_OSD__SHIFT 0x1a
+#define DAGB2_RDCLI0__VIRT_CHAN_MASK 0x00000007L
+#define DAGB2_RDCLI0__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB2_RDCLI0__URG_HIGH_MASK 0x000000F0L
+#define DAGB2_RDCLI0__URG_LOW_MASK 0x00000F00L
+#define DAGB2_RDCLI0__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB2_RDCLI0__MAX_BW_MASK 0x001FE000L
+#define DAGB2_RDCLI0__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB2_RDCLI0__MIN_BW_MASK 0x01C00000L
+#define DAGB2_RDCLI0__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB2_RDCLI0__MAX_OSD_MASK 0xFC000000L
+//DAGB2_RDCLI1
+#define DAGB2_RDCLI1__VIRT_CHAN__SHIFT 0x0
+#define DAGB2_RDCLI1__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB2_RDCLI1__URG_HIGH__SHIFT 0x4
+#define DAGB2_RDCLI1__URG_LOW__SHIFT 0x8
+#define DAGB2_RDCLI1__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB2_RDCLI1__MAX_BW__SHIFT 0xd
+#define DAGB2_RDCLI1__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB2_RDCLI1__MIN_BW__SHIFT 0x16
+#define DAGB2_RDCLI1__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB2_RDCLI1__MAX_OSD__SHIFT 0x1a
+#define DAGB2_RDCLI1__VIRT_CHAN_MASK 0x00000007L
+#define DAGB2_RDCLI1__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB2_RDCLI1__URG_HIGH_MASK 0x000000F0L
+#define DAGB2_RDCLI1__URG_LOW_MASK 0x00000F00L
+#define DAGB2_RDCLI1__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB2_RDCLI1__MAX_BW_MASK 0x001FE000L
+#define DAGB2_RDCLI1__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB2_RDCLI1__MIN_BW_MASK 0x01C00000L
+#define DAGB2_RDCLI1__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB2_RDCLI1__MAX_OSD_MASK 0xFC000000L
+//DAGB2_RDCLI2
+#define DAGB2_RDCLI2__VIRT_CHAN__SHIFT 0x0
+#define DAGB2_RDCLI2__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB2_RDCLI2__URG_HIGH__SHIFT 0x4
+#define DAGB2_RDCLI2__URG_LOW__SHIFT 0x8
+#define DAGB2_RDCLI2__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB2_RDCLI2__MAX_BW__SHIFT 0xd
+#define DAGB2_RDCLI2__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB2_RDCLI2__MIN_BW__SHIFT 0x16
+#define DAGB2_RDCLI2__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB2_RDCLI2__MAX_OSD__SHIFT 0x1a
+#define DAGB2_RDCLI2__VIRT_CHAN_MASK 0x00000007L
+#define DAGB2_RDCLI2__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB2_RDCLI2__URG_HIGH_MASK 0x000000F0L
+#define DAGB2_RDCLI2__URG_LOW_MASK 0x00000F00L
+#define DAGB2_RDCLI2__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB2_RDCLI2__MAX_BW_MASK 0x001FE000L
+#define DAGB2_RDCLI2__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB2_RDCLI2__MIN_BW_MASK 0x01C00000L
+#define DAGB2_RDCLI2__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB2_RDCLI2__MAX_OSD_MASK 0xFC000000L
+//DAGB2_RDCLI3
+#define DAGB2_RDCLI3__VIRT_CHAN__SHIFT 0x0
+#define DAGB2_RDCLI3__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB2_RDCLI3__URG_HIGH__SHIFT 0x4
+#define DAGB2_RDCLI3__URG_LOW__SHIFT 0x8
+#define DAGB2_RDCLI3__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB2_RDCLI3__MAX_BW__SHIFT 0xd
+#define DAGB2_RDCLI3__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB2_RDCLI3__MIN_BW__SHIFT 0x16
+#define DAGB2_RDCLI3__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB2_RDCLI3__MAX_OSD__SHIFT 0x1a
+#define DAGB2_RDCLI3__VIRT_CHAN_MASK 0x00000007L
+#define DAGB2_RDCLI3__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB2_RDCLI3__URG_HIGH_MASK 0x000000F0L
+#define DAGB2_RDCLI3__URG_LOW_MASK 0x00000F00L
+#define DAGB2_RDCLI3__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB2_RDCLI3__MAX_BW_MASK 0x001FE000L
+#define DAGB2_RDCLI3__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB2_RDCLI3__MIN_BW_MASK 0x01C00000L
+#define DAGB2_RDCLI3__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB2_RDCLI3__MAX_OSD_MASK 0xFC000000L
+//DAGB2_RDCLI4
+#define DAGB2_RDCLI4__VIRT_CHAN__SHIFT 0x0
+#define DAGB2_RDCLI4__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB2_RDCLI4__URG_HIGH__SHIFT 0x4
+#define DAGB2_RDCLI4__URG_LOW__SHIFT 0x8
+#define DAGB2_RDCLI4__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB2_RDCLI4__MAX_BW__SHIFT 0xd
+#define DAGB2_RDCLI4__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB2_RDCLI4__MIN_BW__SHIFT 0x16
+#define DAGB2_RDCLI4__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB2_RDCLI4__MAX_OSD__SHIFT 0x1a
+#define DAGB2_RDCLI4__VIRT_CHAN_MASK 0x00000007L
+#define DAGB2_RDCLI4__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB2_RDCLI4__URG_HIGH_MASK 0x000000F0L
+#define DAGB2_RDCLI4__URG_LOW_MASK 0x00000F00L
+#define DAGB2_RDCLI4__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB2_RDCLI4__MAX_BW_MASK 0x001FE000L
+#define DAGB2_RDCLI4__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB2_RDCLI4__MIN_BW_MASK 0x01C00000L
+#define DAGB2_RDCLI4__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB2_RDCLI4__MAX_OSD_MASK 0xFC000000L
+//DAGB2_RDCLI5
+#define DAGB2_RDCLI5__VIRT_CHAN__SHIFT 0x0
+#define DAGB2_RDCLI5__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB2_RDCLI5__URG_HIGH__SHIFT 0x4
+#define DAGB2_RDCLI5__URG_LOW__SHIFT 0x8
+#define DAGB2_RDCLI5__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB2_RDCLI5__MAX_BW__SHIFT 0xd
+#define DAGB2_RDCLI5__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB2_RDCLI5__MIN_BW__SHIFT 0x16
+#define DAGB2_RDCLI5__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB2_RDCLI5__MAX_OSD__SHIFT 0x1a
+#define DAGB2_RDCLI5__VIRT_CHAN_MASK 0x00000007L
+#define DAGB2_RDCLI5__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB2_RDCLI5__URG_HIGH_MASK 0x000000F0L
+#define DAGB2_RDCLI5__URG_LOW_MASK 0x00000F00L
+#define DAGB2_RDCLI5__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB2_RDCLI5__MAX_BW_MASK 0x001FE000L
+#define DAGB2_RDCLI5__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB2_RDCLI5__MIN_BW_MASK 0x01C00000L
+#define DAGB2_RDCLI5__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB2_RDCLI5__MAX_OSD_MASK 0xFC000000L
+//DAGB2_RDCLI6
+#define DAGB2_RDCLI6__VIRT_CHAN__SHIFT 0x0
+#define DAGB2_RDCLI6__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB2_RDCLI6__URG_HIGH__SHIFT 0x4
+#define DAGB2_RDCLI6__URG_LOW__SHIFT 0x8
+#define DAGB2_RDCLI6__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB2_RDCLI6__MAX_BW__SHIFT 0xd
+#define DAGB2_RDCLI6__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB2_RDCLI6__MIN_BW__SHIFT 0x16
+#define DAGB2_RDCLI6__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB2_RDCLI6__MAX_OSD__SHIFT 0x1a
+#define DAGB2_RDCLI6__VIRT_CHAN_MASK 0x00000007L
+#define DAGB2_RDCLI6__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB2_RDCLI6__URG_HIGH_MASK 0x000000F0L
+#define DAGB2_RDCLI6__URG_LOW_MASK 0x00000F00L
+#define DAGB2_RDCLI6__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB2_RDCLI6__MAX_BW_MASK 0x001FE000L
+#define DAGB2_RDCLI6__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB2_RDCLI6__MIN_BW_MASK 0x01C00000L
+#define DAGB2_RDCLI6__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB2_RDCLI6__MAX_OSD_MASK 0xFC000000L
+//DAGB2_RDCLI7
+#define DAGB2_RDCLI7__VIRT_CHAN__SHIFT 0x0
+#define DAGB2_RDCLI7__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB2_RDCLI7__URG_HIGH__SHIFT 0x4
+#define DAGB2_RDCLI7__URG_LOW__SHIFT 0x8
+#define DAGB2_RDCLI7__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB2_RDCLI7__MAX_BW__SHIFT 0xd
+#define DAGB2_RDCLI7__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB2_RDCLI7__MIN_BW__SHIFT 0x16
+#define DAGB2_RDCLI7__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB2_RDCLI7__MAX_OSD__SHIFT 0x1a
+#define DAGB2_RDCLI7__VIRT_CHAN_MASK 0x00000007L
+#define DAGB2_RDCLI7__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB2_RDCLI7__URG_HIGH_MASK 0x000000F0L
+#define DAGB2_RDCLI7__URG_LOW_MASK 0x00000F00L
+#define DAGB2_RDCLI7__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB2_RDCLI7__MAX_BW_MASK 0x001FE000L
+#define DAGB2_RDCLI7__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB2_RDCLI7__MIN_BW_MASK 0x01C00000L
+#define DAGB2_RDCLI7__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB2_RDCLI7__MAX_OSD_MASK 0xFC000000L
+//DAGB2_RDCLI8
+#define DAGB2_RDCLI8__VIRT_CHAN__SHIFT 0x0
+#define DAGB2_RDCLI8__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB2_RDCLI8__URG_HIGH__SHIFT 0x4
+#define DAGB2_RDCLI8__URG_LOW__SHIFT 0x8
+#define DAGB2_RDCLI8__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB2_RDCLI8__MAX_BW__SHIFT 0xd
+#define DAGB2_RDCLI8__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB2_RDCLI8__MIN_BW__SHIFT 0x16
+#define DAGB2_RDCLI8__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB2_RDCLI8__MAX_OSD__SHIFT 0x1a
+#define DAGB2_RDCLI8__VIRT_CHAN_MASK 0x00000007L
+#define DAGB2_RDCLI8__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB2_RDCLI8__URG_HIGH_MASK 0x000000F0L
+#define DAGB2_RDCLI8__URG_LOW_MASK 0x00000F00L
+#define DAGB2_RDCLI8__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB2_RDCLI8__MAX_BW_MASK 0x001FE000L
+#define DAGB2_RDCLI8__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB2_RDCLI8__MIN_BW_MASK 0x01C00000L
+#define DAGB2_RDCLI8__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB2_RDCLI8__MAX_OSD_MASK 0xFC000000L
+//DAGB2_RDCLI9
+#define DAGB2_RDCLI9__VIRT_CHAN__SHIFT 0x0
+#define DAGB2_RDCLI9__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB2_RDCLI9__URG_HIGH__SHIFT 0x4
+#define DAGB2_RDCLI9__URG_LOW__SHIFT 0x8
+#define DAGB2_RDCLI9__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB2_RDCLI9__MAX_BW__SHIFT 0xd
+#define DAGB2_RDCLI9__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB2_RDCLI9__MIN_BW__SHIFT 0x16
+#define DAGB2_RDCLI9__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB2_RDCLI9__MAX_OSD__SHIFT 0x1a
+#define DAGB2_RDCLI9__VIRT_CHAN_MASK 0x00000007L
+#define DAGB2_RDCLI9__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB2_RDCLI9__URG_HIGH_MASK 0x000000F0L
+#define DAGB2_RDCLI9__URG_LOW_MASK 0x00000F00L
+#define DAGB2_RDCLI9__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB2_RDCLI9__MAX_BW_MASK 0x001FE000L
+#define DAGB2_RDCLI9__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB2_RDCLI9__MIN_BW_MASK 0x01C00000L
+#define DAGB2_RDCLI9__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB2_RDCLI9__MAX_OSD_MASK 0xFC000000L
+//DAGB2_RDCLI10
+#define DAGB2_RDCLI10__VIRT_CHAN__SHIFT 0x0
+#define DAGB2_RDCLI10__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB2_RDCLI10__URG_HIGH__SHIFT 0x4
+#define DAGB2_RDCLI10__URG_LOW__SHIFT 0x8
+#define DAGB2_RDCLI10__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB2_RDCLI10__MAX_BW__SHIFT 0xd
+#define DAGB2_RDCLI10__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB2_RDCLI10__MIN_BW__SHIFT 0x16
+#define DAGB2_RDCLI10__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB2_RDCLI10__MAX_OSD__SHIFT 0x1a
+#define DAGB2_RDCLI10__VIRT_CHAN_MASK 0x00000007L
+#define DAGB2_RDCLI10__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB2_RDCLI10__URG_HIGH_MASK 0x000000F0L
+#define DAGB2_RDCLI10__URG_LOW_MASK 0x00000F00L
+#define DAGB2_RDCLI10__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB2_RDCLI10__MAX_BW_MASK 0x001FE000L
+#define DAGB2_RDCLI10__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB2_RDCLI10__MIN_BW_MASK 0x01C00000L
+#define DAGB2_RDCLI10__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB2_RDCLI10__MAX_OSD_MASK 0xFC000000L
+//DAGB2_RDCLI11
+#define DAGB2_RDCLI11__VIRT_CHAN__SHIFT 0x0
+#define DAGB2_RDCLI11__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB2_RDCLI11__URG_HIGH__SHIFT 0x4
+#define DAGB2_RDCLI11__URG_LOW__SHIFT 0x8
+#define DAGB2_RDCLI11__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB2_RDCLI11__MAX_BW__SHIFT 0xd
+#define DAGB2_RDCLI11__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB2_RDCLI11__MIN_BW__SHIFT 0x16
+#define DAGB2_RDCLI11__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB2_RDCLI11__MAX_OSD__SHIFT 0x1a
+#define DAGB2_RDCLI11__VIRT_CHAN_MASK 0x00000007L
+#define DAGB2_RDCLI11__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB2_RDCLI11__URG_HIGH_MASK 0x000000F0L
+#define DAGB2_RDCLI11__URG_LOW_MASK 0x00000F00L
+#define DAGB2_RDCLI11__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB2_RDCLI11__MAX_BW_MASK 0x001FE000L
+#define DAGB2_RDCLI11__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB2_RDCLI11__MIN_BW_MASK 0x01C00000L
+#define DAGB2_RDCLI11__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB2_RDCLI11__MAX_OSD_MASK 0xFC000000L
+//DAGB2_RDCLI12
+#define DAGB2_RDCLI12__VIRT_CHAN__SHIFT 0x0
+#define DAGB2_RDCLI12__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB2_RDCLI12__URG_HIGH__SHIFT 0x4
+#define DAGB2_RDCLI12__URG_LOW__SHIFT 0x8
+#define DAGB2_RDCLI12__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB2_RDCLI12__MAX_BW__SHIFT 0xd
+#define DAGB2_RDCLI12__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB2_RDCLI12__MIN_BW__SHIFT 0x16
+#define DAGB2_RDCLI12__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB2_RDCLI12__MAX_OSD__SHIFT 0x1a
+#define DAGB2_RDCLI12__VIRT_CHAN_MASK 0x00000007L
+#define DAGB2_RDCLI12__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB2_RDCLI12__URG_HIGH_MASK 0x000000F0L
+#define DAGB2_RDCLI12__URG_LOW_MASK 0x00000F00L
+#define DAGB2_RDCLI12__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB2_RDCLI12__MAX_BW_MASK 0x001FE000L
+#define DAGB2_RDCLI12__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB2_RDCLI12__MIN_BW_MASK 0x01C00000L
+#define DAGB2_RDCLI12__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB2_RDCLI12__MAX_OSD_MASK 0xFC000000L
+//DAGB2_RDCLI13
+#define DAGB2_RDCLI13__VIRT_CHAN__SHIFT 0x0
+#define DAGB2_RDCLI13__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB2_RDCLI13__URG_HIGH__SHIFT 0x4
+#define DAGB2_RDCLI13__URG_LOW__SHIFT 0x8
+#define DAGB2_RDCLI13__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB2_RDCLI13__MAX_BW__SHIFT 0xd
+#define DAGB2_RDCLI13__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB2_RDCLI13__MIN_BW__SHIFT 0x16
+#define DAGB2_RDCLI13__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB2_RDCLI13__MAX_OSD__SHIFT 0x1a
+#define DAGB2_RDCLI13__VIRT_CHAN_MASK 0x00000007L
+#define DAGB2_RDCLI13__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB2_RDCLI13__URG_HIGH_MASK 0x000000F0L
+#define DAGB2_RDCLI13__URG_LOW_MASK 0x00000F00L
+#define DAGB2_RDCLI13__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB2_RDCLI13__MAX_BW_MASK 0x001FE000L
+#define DAGB2_RDCLI13__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB2_RDCLI13__MIN_BW_MASK 0x01C00000L
+#define DAGB2_RDCLI13__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB2_RDCLI13__MAX_OSD_MASK 0xFC000000L
+//DAGB2_RDCLI14
+#define DAGB2_RDCLI14__VIRT_CHAN__SHIFT 0x0
+#define DAGB2_RDCLI14__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB2_RDCLI14__URG_HIGH__SHIFT 0x4
+#define DAGB2_RDCLI14__URG_LOW__SHIFT 0x8
+#define DAGB2_RDCLI14__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB2_RDCLI14__MAX_BW__SHIFT 0xd
+#define DAGB2_RDCLI14__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB2_RDCLI14__MIN_BW__SHIFT 0x16
+#define DAGB2_RDCLI14__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB2_RDCLI14__MAX_OSD__SHIFT 0x1a
+#define DAGB2_RDCLI14__VIRT_CHAN_MASK 0x00000007L
+#define DAGB2_RDCLI14__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB2_RDCLI14__URG_HIGH_MASK 0x000000F0L
+#define DAGB2_RDCLI14__URG_LOW_MASK 0x00000F00L
+#define DAGB2_RDCLI14__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB2_RDCLI14__MAX_BW_MASK 0x001FE000L
+#define DAGB2_RDCLI14__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB2_RDCLI14__MIN_BW_MASK 0x01C00000L
+#define DAGB2_RDCLI14__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB2_RDCLI14__MAX_OSD_MASK 0xFC000000L
+//DAGB2_RDCLI15
+#define DAGB2_RDCLI15__VIRT_CHAN__SHIFT 0x0
+#define DAGB2_RDCLI15__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB2_RDCLI15__URG_HIGH__SHIFT 0x4
+#define DAGB2_RDCLI15__URG_LOW__SHIFT 0x8
+#define DAGB2_RDCLI15__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB2_RDCLI15__MAX_BW__SHIFT 0xd
+#define DAGB2_RDCLI15__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB2_RDCLI15__MIN_BW__SHIFT 0x16
+#define DAGB2_RDCLI15__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB2_RDCLI15__MAX_OSD__SHIFT 0x1a
+#define DAGB2_RDCLI15__VIRT_CHAN_MASK 0x00000007L
+#define DAGB2_RDCLI15__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB2_RDCLI15__URG_HIGH_MASK 0x000000F0L
+#define DAGB2_RDCLI15__URG_LOW_MASK 0x00000F00L
+#define DAGB2_RDCLI15__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB2_RDCLI15__MAX_BW_MASK 0x001FE000L
+#define DAGB2_RDCLI15__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB2_RDCLI15__MIN_BW_MASK 0x01C00000L
+#define DAGB2_RDCLI15__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB2_RDCLI15__MAX_OSD_MASK 0xFC000000L
+//DAGB2_RD_CNTL
+#define DAGB2_RD_CNTL__SCLK_FREQ__SHIFT 0x0
+#define DAGB2_RD_CNTL__CLI_MAX_BW_WINDOW__SHIFT 0x4
+#define DAGB2_RD_CNTL__VC_MAX_BW_WINDOW__SHIFT 0xa
+#define DAGB2_RD_CNTL__IO_LEVEL_OVERRIDE_ENABLE__SHIFT 0x10
+#define DAGB2_RD_CNTL__IO_LEVEL__SHIFT 0x11
+#define DAGB2_RD_CNTL__IO_LEVEL_COMPLY_VC__SHIFT 0x14
+#define DAGB2_RD_CNTL__SHARE_VC_NUM__SHIFT 0x17
+#define DAGB2_RD_CNTL__FIX_JUMP__SHIFT 0x1a
+#define DAGB2_RD_CNTL__SCLK_FREQ_MASK 0x0000000FL
+#define DAGB2_RD_CNTL__CLI_MAX_BW_WINDOW_MASK 0x000003F0L
+#define DAGB2_RD_CNTL__VC_MAX_BW_WINDOW_MASK 0x0000FC00L
+#define DAGB2_RD_CNTL__IO_LEVEL_OVERRIDE_ENABLE_MASK 0x00010000L
+#define DAGB2_RD_CNTL__IO_LEVEL_MASK 0x000E0000L
+#define DAGB2_RD_CNTL__IO_LEVEL_COMPLY_VC_MASK 0x00700000L
+#define DAGB2_RD_CNTL__SHARE_VC_NUM_MASK 0x03800000L
+#define DAGB2_RD_CNTL__FIX_JUMP_MASK 0x04000000L
+//DAGB2_RD_GMI_CNTL
+#define DAGB2_RD_GMI_CNTL__EA_CREDIT__SHIFT 0x0
+#define DAGB2_RD_GMI_CNTL__LEVEL__SHIFT 0x6
+#define DAGB2_RD_GMI_CNTL__MAX_BURST__SHIFT 0x9
+#define DAGB2_RD_GMI_CNTL__LAZY_TIMER__SHIFT 0xd
+#define DAGB2_RD_GMI_CNTL__EA_CREDIT_MASK 0x0000003FL
+#define DAGB2_RD_GMI_CNTL__LEVEL_MASK 0x000001C0L
+#define DAGB2_RD_GMI_CNTL__MAX_BURST_MASK 0x00001E00L
+#define DAGB2_RD_GMI_CNTL__LAZY_TIMER_MASK 0x0001E000L
+//DAGB2_RD_ADDR_DAGB
+#define DAGB2_RD_ADDR_DAGB__DAGB_ENABLE__SHIFT 0x0
+#define DAGB2_RD_ADDR_DAGB__ENABLE_JUMP_AHEAD__SHIFT 0x3
+#define DAGB2_RD_ADDR_DAGB__DISABLE_SELF_INIT__SHIFT 0x6
+#define DAGB2_RD_ADDR_DAGB__WHOAMI__SHIFT 0x7
+#define DAGB2_RD_ADDR_DAGB__JUMP_MODE__SHIFT 0xd
+#define DAGB2_RD_ADDR_DAGB__DAGB_ENABLE_MASK 0x00000007L
+#define DAGB2_RD_ADDR_DAGB__ENABLE_JUMP_AHEAD_MASK 0x00000038L
+#define DAGB2_RD_ADDR_DAGB__DISABLE_SELF_INIT_MASK 0x00000040L
+#define DAGB2_RD_ADDR_DAGB__WHOAMI_MASK 0x00001F80L
+#define DAGB2_RD_ADDR_DAGB__JUMP_MODE_MASK 0x00002000L
+//DAGB2_RD_OUTPUT_DAGB_MAX_BURST
+#define DAGB2_RD_OUTPUT_DAGB_MAX_BURST__VC0__SHIFT 0x0
+#define DAGB2_RD_OUTPUT_DAGB_MAX_BURST__VC1__SHIFT 0x4
+#define DAGB2_RD_OUTPUT_DAGB_MAX_BURST__VC2__SHIFT 0x8
+#define DAGB2_RD_OUTPUT_DAGB_MAX_BURST__VC3__SHIFT 0xc
+#define DAGB2_RD_OUTPUT_DAGB_MAX_BURST__VC4__SHIFT 0x10
+#define DAGB2_RD_OUTPUT_DAGB_MAX_BURST__VC5__SHIFT 0x14
+#define DAGB2_RD_OUTPUT_DAGB_MAX_BURST__VC6__SHIFT 0x18
+#define DAGB2_RD_OUTPUT_DAGB_MAX_BURST__VC7__SHIFT 0x1c
+#define DAGB2_RD_OUTPUT_DAGB_MAX_BURST__VC0_MASK 0x0000000FL
+#define DAGB2_RD_OUTPUT_DAGB_MAX_BURST__VC1_MASK 0x000000F0L
+#define DAGB2_RD_OUTPUT_DAGB_MAX_BURST__VC2_MASK 0x00000F00L
+#define DAGB2_RD_OUTPUT_DAGB_MAX_BURST__VC3_MASK 0x0000F000L
+#define DAGB2_RD_OUTPUT_DAGB_MAX_BURST__VC4_MASK 0x000F0000L
+#define DAGB2_RD_OUTPUT_DAGB_MAX_BURST__VC5_MASK 0x00F00000L
+#define DAGB2_RD_OUTPUT_DAGB_MAX_BURST__VC6_MASK 0x0F000000L
+#define DAGB2_RD_OUTPUT_DAGB_MAX_BURST__VC7_MASK 0xF0000000L
+//DAGB2_RD_OUTPUT_DAGB_LAZY_TIMER
+#define DAGB2_RD_OUTPUT_DAGB_LAZY_TIMER__VC0__SHIFT 0x0
+#define DAGB2_RD_OUTPUT_DAGB_LAZY_TIMER__VC1__SHIFT 0x4
+#define DAGB2_RD_OUTPUT_DAGB_LAZY_TIMER__VC2__SHIFT 0x8
+#define DAGB2_RD_OUTPUT_DAGB_LAZY_TIMER__VC3__SHIFT 0xc
+#define DAGB2_RD_OUTPUT_DAGB_LAZY_TIMER__VC4__SHIFT 0x10
+#define DAGB2_RD_OUTPUT_DAGB_LAZY_TIMER__VC5__SHIFT 0x14
+#define DAGB2_RD_OUTPUT_DAGB_LAZY_TIMER__VC6__SHIFT 0x18
+#define DAGB2_RD_OUTPUT_DAGB_LAZY_TIMER__VC7__SHIFT 0x1c
+#define DAGB2_RD_OUTPUT_DAGB_LAZY_TIMER__VC0_MASK 0x0000000FL
+#define DAGB2_RD_OUTPUT_DAGB_LAZY_TIMER__VC1_MASK 0x000000F0L
+#define DAGB2_RD_OUTPUT_DAGB_LAZY_TIMER__VC2_MASK 0x00000F00L
+#define DAGB2_RD_OUTPUT_DAGB_LAZY_TIMER__VC3_MASK 0x0000F000L
+#define DAGB2_RD_OUTPUT_DAGB_LAZY_TIMER__VC4_MASK 0x000F0000L
+#define DAGB2_RD_OUTPUT_DAGB_LAZY_TIMER__VC5_MASK 0x00F00000L
+#define DAGB2_RD_OUTPUT_DAGB_LAZY_TIMER__VC6_MASK 0x0F000000L
+#define DAGB2_RD_OUTPUT_DAGB_LAZY_TIMER__VC7_MASK 0xF0000000L
+//DAGB2_RD_CGTT_CLK_CTRL
+#define DAGB2_RD_CGTT_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define DAGB2_RD_CGTT_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define DAGB2_RD_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS__SHIFT 0xc
+#define DAGB2_RD_CGTT_CLK_CTRL__LS_OVERRIDE__SHIFT 0x1e
+#define DAGB2_RD_CGTT_CLK_CTRL__SOFT_OVERRIDE__SHIFT 0x1f
+#define DAGB2_RD_CGTT_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define DAGB2_RD_CGTT_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define DAGB2_RD_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS_MASK 0x0FFFF000L
+#define DAGB2_RD_CGTT_CLK_CTRL__LS_OVERRIDE_MASK 0x40000000L
+#define DAGB2_RD_CGTT_CLK_CTRL__SOFT_OVERRIDE_MASK 0x80000000L
+//DAGB2_L1TLB_RD_CGTT_CLK_CTRL
+#define DAGB2_L1TLB_RD_CGTT_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define DAGB2_L1TLB_RD_CGTT_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define DAGB2_L1TLB_RD_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS__SHIFT 0xc
+#define DAGB2_L1TLB_RD_CGTT_CLK_CTRL__LS_OVERRIDE__SHIFT 0x1e
+#define DAGB2_L1TLB_RD_CGTT_CLK_CTRL__SOFT_OVERRIDE__SHIFT 0x1f
+#define DAGB2_L1TLB_RD_CGTT_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define DAGB2_L1TLB_RD_CGTT_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define DAGB2_L1TLB_RD_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS_MASK 0x0FFFF000L
+#define DAGB2_L1TLB_RD_CGTT_CLK_CTRL__LS_OVERRIDE_MASK 0x40000000L
+#define DAGB2_L1TLB_RD_CGTT_CLK_CTRL__SOFT_OVERRIDE_MASK 0x80000000L
+//DAGB2_ATCVM_RD_CGTT_CLK_CTRL
+#define DAGB2_ATCVM_RD_CGTT_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define DAGB2_ATCVM_RD_CGTT_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define DAGB2_ATCVM_RD_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS__SHIFT 0xc
+#define DAGB2_ATCVM_RD_CGTT_CLK_CTRL__LS_OVERRIDE__SHIFT 0x1e
+#define DAGB2_ATCVM_RD_CGTT_CLK_CTRL__SOFT_OVERRIDE__SHIFT 0x1f
+#define DAGB2_ATCVM_RD_CGTT_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define DAGB2_ATCVM_RD_CGTT_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define DAGB2_ATCVM_RD_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS_MASK 0x0FFFF000L
+#define DAGB2_ATCVM_RD_CGTT_CLK_CTRL__LS_OVERRIDE_MASK 0x40000000L
+#define DAGB2_ATCVM_RD_CGTT_CLK_CTRL__SOFT_OVERRIDE_MASK 0x80000000L
+//DAGB2_RD_ADDR_DAGB_MAX_BURST0
+#define DAGB2_RD_ADDR_DAGB_MAX_BURST0__CLIENT0__SHIFT 0x0
+#define DAGB2_RD_ADDR_DAGB_MAX_BURST0__CLIENT1__SHIFT 0x4
+#define DAGB2_RD_ADDR_DAGB_MAX_BURST0__CLIENT2__SHIFT 0x8
+#define DAGB2_RD_ADDR_DAGB_MAX_BURST0__CLIENT3__SHIFT 0xc
+#define DAGB2_RD_ADDR_DAGB_MAX_BURST0__CLIENT4__SHIFT 0x10
+#define DAGB2_RD_ADDR_DAGB_MAX_BURST0__CLIENT5__SHIFT 0x14
+#define DAGB2_RD_ADDR_DAGB_MAX_BURST0__CLIENT6__SHIFT 0x18
+#define DAGB2_RD_ADDR_DAGB_MAX_BURST0__CLIENT7__SHIFT 0x1c
+#define DAGB2_RD_ADDR_DAGB_MAX_BURST0__CLIENT0_MASK 0x0000000FL
+#define DAGB2_RD_ADDR_DAGB_MAX_BURST0__CLIENT1_MASK 0x000000F0L
+#define DAGB2_RD_ADDR_DAGB_MAX_BURST0__CLIENT2_MASK 0x00000F00L
+#define DAGB2_RD_ADDR_DAGB_MAX_BURST0__CLIENT3_MASK 0x0000F000L
+#define DAGB2_RD_ADDR_DAGB_MAX_BURST0__CLIENT4_MASK 0x000F0000L
+#define DAGB2_RD_ADDR_DAGB_MAX_BURST0__CLIENT5_MASK 0x00F00000L
+#define DAGB2_RD_ADDR_DAGB_MAX_BURST0__CLIENT6_MASK 0x0F000000L
+#define DAGB2_RD_ADDR_DAGB_MAX_BURST0__CLIENT7_MASK 0xF0000000L
+//DAGB2_RD_ADDR_DAGB_LAZY_TIMER0
+#define DAGB2_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT0__SHIFT 0x0
+#define DAGB2_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT1__SHIFT 0x4
+#define DAGB2_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT2__SHIFT 0x8
+#define DAGB2_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT3__SHIFT 0xc
+#define DAGB2_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT4__SHIFT 0x10
+#define DAGB2_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT5__SHIFT 0x14
+#define DAGB2_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT6__SHIFT 0x18
+#define DAGB2_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT7__SHIFT 0x1c
+#define DAGB2_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT0_MASK 0x0000000FL
+#define DAGB2_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT1_MASK 0x000000F0L
+#define DAGB2_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT2_MASK 0x00000F00L
+#define DAGB2_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT3_MASK 0x0000F000L
+#define DAGB2_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT4_MASK 0x000F0000L
+#define DAGB2_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT5_MASK 0x00F00000L
+#define DAGB2_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT6_MASK 0x0F000000L
+#define DAGB2_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT7_MASK 0xF0000000L
+//DAGB2_RD_ADDR_DAGB_MAX_BURST1
+#define DAGB2_RD_ADDR_DAGB_MAX_BURST1__CLIENT8__SHIFT 0x0
+#define DAGB2_RD_ADDR_DAGB_MAX_BURST1__CLIENT9__SHIFT 0x4
+#define DAGB2_RD_ADDR_DAGB_MAX_BURST1__CLIENT10__SHIFT 0x8
+#define DAGB2_RD_ADDR_DAGB_MAX_BURST1__CLIENT11__SHIFT 0xc
+#define DAGB2_RD_ADDR_DAGB_MAX_BURST1__CLIENT12__SHIFT 0x10
+#define DAGB2_RD_ADDR_DAGB_MAX_BURST1__CLIENT13__SHIFT 0x14
+#define DAGB2_RD_ADDR_DAGB_MAX_BURST1__CLIENT14__SHIFT 0x18
+#define DAGB2_RD_ADDR_DAGB_MAX_BURST1__CLIENT15__SHIFT 0x1c
+#define DAGB2_RD_ADDR_DAGB_MAX_BURST1__CLIENT8_MASK 0x0000000FL
+#define DAGB2_RD_ADDR_DAGB_MAX_BURST1__CLIENT9_MASK 0x000000F0L
+#define DAGB2_RD_ADDR_DAGB_MAX_BURST1__CLIENT10_MASK 0x00000F00L
+#define DAGB2_RD_ADDR_DAGB_MAX_BURST1__CLIENT11_MASK 0x0000F000L
+#define DAGB2_RD_ADDR_DAGB_MAX_BURST1__CLIENT12_MASK 0x000F0000L
+#define DAGB2_RD_ADDR_DAGB_MAX_BURST1__CLIENT13_MASK 0x00F00000L
+#define DAGB2_RD_ADDR_DAGB_MAX_BURST1__CLIENT14_MASK 0x0F000000L
+#define DAGB2_RD_ADDR_DAGB_MAX_BURST1__CLIENT15_MASK 0xF0000000L
+//DAGB2_RD_ADDR_DAGB_LAZY_TIMER1
+#define DAGB2_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT8__SHIFT 0x0
+#define DAGB2_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT9__SHIFT 0x4
+#define DAGB2_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT10__SHIFT 0x8
+#define DAGB2_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT11__SHIFT 0xc
+#define DAGB2_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT12__SHIFT 0x10
+#define DAGB2_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT13__SHIFT 0x14
+#define DAGB2_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT14__SHIFT 0x18
+#define DAGB2_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT15__SHIFT 0x1c
+#define DAGB2_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT8_MASK 0x0000000FL
+#define DAGB2_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT9_MASK 0x000000F0L
+#define DAGB2_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT10_MASK 0x00000F00L
+#define DAGB2_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT11_MASK 0x0000F000L
+#define DAGB2_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT12_MASK 0x000F0000L
+#define DAGB2_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT13_MASK 0x00F00000L
+#define DAGB2_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT14_MASK 0x0F000000L
+#define DAGB2_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT15_MASK 0xF0000000L
+//DAGB2_RD_VC0_CNTL
+#define DAGB2_RD_VC0_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB2_RD_VC0_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB2_RD_VC0_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB2_RD_VC0_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB2_RD_VC0_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB2_RD_VC0_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB2_RD_VC0_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB2_RD_VC0_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB2_RD_VC0_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB2_RD_VC0_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB2_RD_VC0_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB2_RD_VC0_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB2_RD_VC0_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB2_RD_VC0_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB2_RD_VC0_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB2_RD_VC0_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB2_RD_VC1_CNTL
+#define DAGB2_RD_VC1_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB2_RD_VC1_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB2_RD_VC1_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB2_RD_VC1_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB2_RD_VC1_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB2_RD_VC1_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB2_RD_VC1_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB2_RD_VC1_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB2_RD_VC1_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB2_RD_VC1_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB2_RD_VC1_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB2_RD_VC1_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB2_RD_VC1_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB2_RD_VC1_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB2_RD_VC1_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB2_RD_VC1_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB2_RD_VC2_CNTL
+#define DAGB2_RD_VC2_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB2_RD_VC2_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB2_RD_VC2_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB2_RD_VC2_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB2_RD_VC2_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB2_RD_VC2_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB2_RD_VC2_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB2_RD_VC2_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB2_RD_VC2_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB2_RD_VC2_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB2_RD_VC2_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB2_RD_VC2_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB2_RD_VC2_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB2_RD_VC2_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB2_RD_VC2_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB2_RD_VC2_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB2_RD_VC3_CNTL
+#define DAGB2_RD_VC3_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB2_RD_VC3_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB2_RD_VC3_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB2_RD_VC3_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB2_RD_VC3_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB2_RD_VC3_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB2_RD_VC3_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB2_RD_VC3_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB2_RD_VC3_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB2_RD_VC3_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB2_RD_VC3_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB2_RD_VC3_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB2_RD_VC3_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB2_RD_VC3_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB2_RD_VC3_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB2_RD_VC3_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB2_RD_VC4_CNTL
+#define DAGB2_RD_VC4_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB2_RD_VC4_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB2_RD_VC4_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB2_RD_VC4_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB2_RD_VC4_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB2_RD_VC4_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB2_RD_VC4_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB2_RD_VC4_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB2_RD_VC4_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB2_RD_VC4_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB2_RD_VC4_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB2_RD_VC4_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB2_RD_VC4_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB2_RD_VC4_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB2_RD_VC4_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB2_RD_VC4_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB2_RD_VC5_CNTL
+#define DAGB2_RD_VC5_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB2_RD_VC5_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB2_RD_VC5_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB2_RD_VC5_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB2_RD_VC5_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB2_RD_VC5_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB2_RD_VC5_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB2_RD_VC5_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB2_RD_VC5_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB2_RD_VC5_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB2_RD_VC5_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB2_RD_VC5_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB2_RD_VC5_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB2_RD_VC5_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB2_RD_VC5_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB2_RD_VC5_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB2_RD_VC6_CNTL
+#define DAGB2_RD_VC6_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB2_RD_VC6_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB2_RD_VC6_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB2_RD_VC6_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB2_RD_VC6_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB2_RD_VC6_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB2_RD_VC6_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB2_RD_VC6_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB2_RD_VC6_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB2_RD_VC6_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB2_RD_VC6_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB2_RD_VC6_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB2_RD_VC6_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB2_RD_VC6_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB2_RD_VC6_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB2_RD_VC6_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB2_RD_VC7_CNTL
+#define DAGB2_RD_VC7_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB2_RD_VC7_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB2_RD_VC7_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB2_RD_VC7_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB2_RD_VC7_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB2_RD_VC7_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB2_RD_VC7_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB2_RD_VC7_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB2_RD_VC7_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB2_RD_VC7_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB2_RD_VC7_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB2_RD_VC7_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB2_RD_VC7_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB2_RD_VC7_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB2_RD_VC7_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB2_RD_VC7_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB2_RD_CNTL_MISC
+#define DAGB2_RD_CNTL_MISC__STOR_POOL_CREDIT__SHIFT 0x0
+#define DAGB2_RD_CNTL_MISC__EA_POOL_CREDIT__SHIFT 0x6
+#define DAGB2_RD_CNTL_MISC__IO_EA_CREDIT__SHIFT 0xd
+#define DAGB2_RD_CNTL_MISC__STOR_CC_NEW_MODE__SHIFT 0x13
+#define DAGB2_RD_CNTL_MISC__EA_CC_LEGACY_MODE__SHIFT 0x14
+#define DAGB2_RD_CNTL_MISC__UTCL2_CID__SHIFT 0x15
+#define DAGB2_RD_CNTL_MISC__RDRET_FIFO_CREDITS__SHIFT 0x1a
+#define DAGB2_RD_CNTL_MISC__STOR_POOL_CREDIT_MASK 0x0000003FL
+#define DAGB2_RD_CNTL_MISC__EA_POOL_CREDIT_MASK 0x00001FC0L
+#define DAGB2_RD_CNTL_MISC__IO_EA_CREDIT_MASK 0x0007E000L
+#define DAGB2_RD_CNTL_MISC__STOR_CC_NEW_MODE_MASK 0x00080000L
+#define DAGB2_RD_CNTL_MISC__EA_CC_LEGACY_MODE_MASK 0x00100000L
+#define DAGB2_RD_CNTL_MISC__UTCL2_CID_MASK 0x03E00000L
+#define DAGB2_RD_CNTL_MISC__RDRET_FIFO_CREDITS_MASK 0xFC000000L
+//DAGB2_RD_TLB_CREDIT
+#define DAGB2_RD_TLB_CREDIT__TLB0__SHIFT 0x0
+#define DAGB2_RD_TLB_CREDIT__TLB1__SHIFT 0x5
+#define DAGB2_RD_TLB_CREDIT__TLB2__SHIFT 0xa
+#define DAGB2_RD_TLB_CREDIT__TLB3__SHIFT 0xf
+#define DAGB2_RD_TLB_CREDIT__TLB4__SHIFT 0x14
+#define DAGB2_RD_TLB_CREDIT__TLB5__SHIFT 0x19
+#define DAGB2_RD_TLB_CREDIT__TLB0_MASK 0x0000001FL
+#define DAGB2_RD_TLB_CREDIT__TLB1_MASK 0x000003E0L
+#define DAGB2_RD_TLB_CREDIT__TLB2_MASK 0x00007C00L
+#define DAGB2_RD_TLB_CREDIT__TLB3_MASK 0x000F8000L
+#define DAGB2_RD_TLB_CREDIT__TLB4_MASK 0x01F00000L
+#define DAGB2_RD_TLB_CREDIT__TLB5_MASK 0x3E000000L
+//DAGB2_RD_RDRET_CREDIT_CNTL
+#define DAGB2_RD_RDRET_CREDIT_CNTL__VC0_CREDIT__SHIFT 0x0
+#define DAGB2_RD_RDRET_CREDIT_CNTL__VC1_CREDIT__SHIFT 0x6
+#define DAGB2_RD_RDRET_CREDIT_CNTL__VC2_CREDIT__SHIFT 0xc
+#define DAGB2_RD_RDRET_CREDIT_CNTL__VC3_CREDIT__SHIFT 0x12
+#define DAGB2_RD_RDRET_CREDIT_CNTL__VC4_CREDIT__SHIFT 0x18
+#define DAGB2_RD_RDRET_CREDIT_CNTL__VC_MODE__SHIFT 0x1e
+#define DAGB2_RD_RDRET_CREDIT_CNTL__FIX_EQ__SHIFT 0x1f
+#define DAGB2_RD_RDRET_CREDIT_CNTL__VC0_CREDIT_MASK 0x0000003FL
+#define DAGB2_RD_RDRET_CREDIT_CNTL__VC1_CREDIT_MASK 0x00000FC0L
+#define DAGB2_RD_RDRET_CREDIT_CNTL__VC2_CREDIT_MASK 0x0003F000L
+#define DAGB2_RD_RDRET_CREDIT_CNTL__VC3_CREDIT_MASK 0x00FC0000L
+#define DAGB2_RD_RDRET_CREDIT_CNTL__VC4_CREDIT_MASK 0x3F000000L
+#define DAGB2_RD_RDRET_CREDIT_CNTL__VC_MODE_MASK 0x40000000L
+#define DAGB2_RD_RDRET_CREDIT_CNTL__FIX_EQ_MASK 0x80000000L
+//DAGB2_RD_RDRET_CREDIT_CNTL2
+#define DAGB2_RD_RDRET_CREDIT_CNTL2__IO_CREDIT__SHIFT 0x0
+#define DAGB2_RD_RDRET_CREDIT_CNTL2__GMI_CREDIT__SHIFT 0x6
+#define DAGB2_RD_RDRET_CREDIT_CNTL2__POOL_CREDIT__SHIFT 0xc
+#define DAGB2_RD_RDRET_CREDIT_CNTL2__IO_CREDIT_MASK 0x0000003FL
+#define DAGB2_RD_RDRET_CREDIT_CNTL2__GMI_CREDIT_MASK 0x00000FC0L
+#define DAGB2_RD_RDRET_CREDIT_CNTL2__POOL_CREDIT_MASK 0x0007F000L
+//DAGB2_RDCLI_ASK_PENDING
+#define DAGB2_RDCLI_ASK_PENDING__BUSY__SHIFT 0x0
+#define DAGB2_RDCLI_ASK_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB2_RDCLI_GO_PENDING
+#define DAGB2_RDCLI_GO_PENDING__BUSY__SHIFT 0x0
+#define DAGB2_RDCLI_GO_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB2_RDCLI_GBLSEND_PENDING
+#define DAGB2_RDCLI_GBLSEND_PENDING__BUSY__SHIFT 0x0
+#define DAGB2_RDCLI_GBLSEND_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB2_RDCLI_TLB_PENDING
+#define DAGB2_RDCLI_TLB_PENDING__BUSY__SHIFT 0x0
+#define DAGB2_RDCLI_TLB_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB2_RDCLI_OARB_PENDING
+#define DAGB2_RDCLI_OARB_PENDING__BUSY__SHIFT 0x0
+#define DAGB2_RDCLI_OARB_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB2_RDCLI_OSD_PENDING
+#define DAGB2_RDCLI_OSD_PENDING__BUSY__SHIFT 0x0
+#define DAGB2_RDCLI_OSD_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB2_WRCLI0
+#define DAGB2_WRCLI0__VIRT_CHAN__SHIFT 0x0
+#define DAGB2_WRCLI0__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB2_WRCLI0__URG_HIGH__SHIFT 0x4
+#define DAGB2_WRCLI0__URG_LOW__SHIFT 0x8
+#define DAGB2_WRCLI0__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB2_WRCLI0__MAX_BW__SHIFT 0xd
+#define DAGB2_WRCLI0__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB2_WRCLI0__MIN_BW__SHIFT 0x16
+#define DAGB2_WRCLI0__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB2_WRCLI0__MAX_OSD__SHIFT 0x1a
+#define DAGB2_WRCLI0__VIRT_CHAN_MASK 0x00000007L
+#define DAGB2_WRCLI0__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB2_WRCLI0__URG_HIGH_MASK 0x000000F0L
+#define DAGB2_WRCLI0__URG_LOW_MASK 0x00000F00L
+#define DAGB2_WRCLI0__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB2_WRCLI0__MAX_BW_MASK 0x001FE000L
+#define DAGB2_WRCLI0__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB2_WRCLI0__MIN_BW_MASK 0x01C00000L
+#define DAGB2_WRCLI0__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB2_WRCLI0__MAX_OSD_MASK 0xFC000000L
+//DAGB2_WRCLI1
+#define DAGB2_WRCLI1__VIRT_CHAN__SHIFT 0x0
+#define DAGB2_WRCLI1__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB2_WRCLI1__URG_HIGH__SHIFT 0x4
+#define DAGB2_WRCLI1__URG_LOW__SHIFT 0x8
+#define DAGB2_WRCLI1__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB2_WRCLI1__MAX_BW__SHIFT 0xd
+#define DAGB2_WRCLI1__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB2_WRCLI1__MIN_BW__SHIFT 0x16
+#define DAGB2_WRCLI1__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB2_WRCLI1__MAX_OSD__SHIFT 0x1a
+#define DAGB2_WRCLI1__VIRT_CHAN_MASK 0x00000007L
+#define DAGB2_WRCLI1__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB2_WRCLI1__URG_HIGH_MASK 0x000000F0L
+#define DAGB2_WRCLI1__URG_LOW_MASK 0x00000F00L
+#define DAGB2_WRCLI1__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB2_WRCLI1__MAX_BW_MASK 0x001FE000L
+#define DAGB2_WRCLI1__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB2_WRCLI1__MIN_BW_MASK 0x01C00000L
+#define DAGB2_WRCLI1__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB2_WRCLI1__MAX_OSD_MASK 0xFC000000L
+//DAGB2_WRCLI2
+#define DAGB2_WRCLI2__VIRT_CHAN__SHIFT 0x0
+#define DAGB2_WRCLI2__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB2_WRCLI2__URG_HIGH__SHIFT 0x4
+#define DAGB2_WRCLI2__URG_LOW__SHIFT 0x8
+#define DAGB2_WRCLI2__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB2_WRCLI2__MAX_BW__SHIFT 0xd
+#define DAGB2_WRCLI2__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB2_WRCLI2__MIN_BW__SHIFT 0x16
+#define DAGB2_WRCLI2__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB2_WRCLI2__MAX_OSD__SHIFT 0x1a
+#define DAGB2_WRCLI2__VIRT_CHAN_MASK 0x00000007L
+#define DAGB2_WRCLI2__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB2_WRCLI2__URG_HIGH_MASK 0x000000F0L
+#define DAGB2_WRCLI2__URG_LOW_MASK 0x00000F00L
+#define DAGB2_WRCLI2__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB2_WRCLI2__MAX_BW_MASK 0x001FE000L
+#define DAGB2_WRCLI2__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB2_WRCLI2__MIN_BW_MASK 0x01C00000L
+#define DAGB2_WRCLI2__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB2_WRCLI2__MAX_OSD_MASK 0xFC000000L
+//DAGB2_WRCLI3
+#define DAGB2_WRCLI3__VIRT_CHAN__SHIFT 0x0
+#define DAGB2_WRCLI3__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB2_WRCLI3__URG_HIGH__SHIFT 0x4
+#define DAGB2_WRCLI3__URG_LOW__SHIFT 0x8
+#define DAGB2_WRCLI3__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB2_WRCLI3__MAX_BW__SHIFT 0xd
+#define DAGB2_WRCLI3__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB2_WRCLI3__MIN_BW__SHIFT 0x16
+#define DAGB2_WRCLI3__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB2_WRCLI3__MAX_OSD__SHIFT 0x1a
+#define DAGB2_WRCLI3__VIRT_CHAN_MASK 0x00000007L
+#define DAGB2_WRCLI3__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB2_WRCLI3__URG_HIGH_MASK 0x000000F0L
+#define DAGB2_WRCLI3__URG_LOW_MASK 0x00000F00L
+#define DAGB2_WRCLI3__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB2_WRCLI3__MAX_BW_MASK 0x001FE000L
+#define DAGB2_WRCLI3__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB2_WRCLI3__MIN_BW_MASK 0x01C00000L
+#define DAGB2_WRCLI3__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB2_WRCLI3__MAX_OSD_MASK 0xFC000000L
+//DAGB2_WRCLI4
+#define DAGB2_WRCLI4__VIRT_CHAN__SHIFT 0x0
+#define DAGB2_WRCLI4__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB2_WRCLI4__URG_HIGH__SHIFT 0x4
+#define DAGB2_WRCLI4__URG_LOW__SHIFT 0x8
+#define DAGB2_WRCLI4__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB2_WRCLI4__MAX_BW__SHIFT 0xd
+#define DAGB2_WRCLI4__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB2_WRCLI4__MIN_BW__SHIFT 0x16
+#define DAGB2_WRCLI4__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB2_WRCLI4__MAX_OSD__SHIFT 0x1a
+#define DAGB2_WRCLI4__VIRT_CHAN_MASK 0x00000007L
+#define DAGB2_WRCLI4__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB2_WRCLI4__URG_HIGH_MASK 0x000000F0L
+#define DAGB2_WRCLI4__URG_LOW_MASK 0x00000F00L
+#define DAGB2_WRCLI4__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB2_WRCLI4__MAX_BW_MASK 0x001FE000L
+#define DAGB2_WRCLI4__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB2_WRCLI4__MIN_BW_MASK 0x01C00000L
+#define DAGB2_WRCLI4__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB2_WRCLI4__MAX_OSD_MASK 0xFC000000L
+//DAGB2_WRCLI5
+#define DAGB2_WRCLI5__VIRT_CHAN__SHIFT 0x0
+#define DAGB2_WRCLI5__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB2_WRCLI5__URG_HIGH__SHIFT 0x4
+#define DAGB2_WRCLI5__URG_LOW__SHIFT 0x8
+#define DAGB2_WRCLI5__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB2_WRCLI5__MAX_BW__SHIFT 0xd
+#define DAGB2_WRCLI5__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB2_WRCLI5__MIN_BW__SHIFT 0x16
+#define DAGB2_WRCLI5__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB2_WRCLI5__MAX_OSD__SHIFT 0x1a
+#define DAGB2_WRCLI5__VIRT_CHAN_MASK 0x00000007L
+#define DAGB2_WRCLI5__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB2_WRCLI5__URG_HIGH_MASK 0x000000F0L
+#define DAGB2_WRCLI5__URG_LOW_MASK 0x00000F00L
+#define DAGB2_WRCLI5__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB2_WRCLI5__MAX_BW_MASK 0x001FE000L
+#define DAGB2_WRCLI5__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB2_WRCLI5__MIN_BW_MASK 0x01C00000L
+#define DAGB2_WRCLI5__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB2_WRCLI5__MAX_OSD_MASK 0xFC000000L
+//DAGB2_WRCLI6
+#define DAGB2_WRCLI6__VIRT_CHAN__SHIFT 0x0
+#define DAGB2_WRCLI6__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB2_WRCLI6__URG_HIGH__SHIFT 0x4
+#define DAGB2_WRCLI6__URG_LOW__SHIFT 0x8
+#define DAGB2_WRCLI6__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB2_WRCLI6__MAX_BW__SHIFT 0xd
+#define DAGB2_WRCLI6__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB2_WRCLI6__MIN_BW__SHIFT 0x16
+#define DAGB2_WRCLI6__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB2_WRCLI6__MAX_OSD__SHIFT 0x1a
+#define DAGB2_WRCLI6__VIRT_CHAN_MASK 0x00000007L
+#define DAGB2_WRCLI6__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB2_WRCLI6__URG_HIGH_MASK 0x000000F0L
+#define DAGB2_WRCLI6__URG_LOW_MASK 0x00000F00L
+#define DAGB2_WRCLI6__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB2_WRCLI6__MAX_BW_MASK 0x001FE000L
+#define DAGB2_WRCLI6__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB2_WRCLI6__MIN_BW_MASK 0x01C00000L
+#define DAGB2_WRCLI6__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB2_WRCLI6__MAX_OSD_MASK 0xFC000000L
+//DAGB2_WRCLI7
+#define DAGB2_WRCLI7__VIRT_CHAN__SHIFT 0x0
+#define DAGB2_WRCLI7__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB2_WRCLI7__URG_HIGH__SHIFT 0x4
+#define DAGB2_WRCLI7__URG_LOW__SHIFT 0x8
+#define DAGB2_WRCLI7__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB2_WRCLI7__MAX_BW__SHIFT 0xd
+#define DAGB2_WRCLI7__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB2_WRCLI7__MIN_BW__SHIFT 0x16
+#define DAGB2_WRCLI7__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB2_WRCLI7__MAX_OSD__SHIFT 0x1a
+#define DAGB2_WRCLI7__VIRT_CHAN_MASK 0x00000007L
+#define DAGB2_WRCLI7__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB2_WRCLI7__URG_HIGH_MASK 0x000000F0L
+#define DAGB2_WRCLI7__URG_LOW_MASK 0x00000F00L
+#define DAGB2_WRCLI7__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB2_WRCLI7__MAX_BW_MASK 0x001FE000L
+#define DAGB2_WRCLI7__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB2_WRCLI7__MIN_BW_MASK 0x01C00000L
+#define DAGB2_WRCLI7__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB2_WRCLI7__MAX_OSD_MASK 0xFC000000L
+//DAGB2_WRCLI8
+#define DAGB2_WRCLI8__VIRT_CHAN__SHIFT 0x0
+#define DAGB2_WRCLI8__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB2_WRCLI8__URG_HIGH__SHIFT 0x4
+#define DAGB2_WRCLI8__URG_LOW__SHIFT 0x8
+#define DAGB2_WRCLI8__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB2_WRCLI8__MAX_BW__SHIFT 0xd
+#define DAGB2_WRCLI8__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB2_WRCLI8__MIN_BW__SHIFT 0x16
+#define DAGB2_WRCLI8__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB2_WRCLI8__MAX_OSD__SHIFT 0x1a
+#define DAGB2_WRCLI8__VIRT_CHAN_MASK 0x00000007L
+#define DAGB2_WRCLI8__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB2_WRCLI8__URG_HIGH_MASK 0x000000F0L
+#define DAGB2_WRCLI8__URG_LOW_MASK 0x00000F00L
+#define DAGB2_WRCLI8__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB2_WRCLI8__MAX_BW_MASK 0x001FE000L
+#define DAGB2_WRCLI8__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB2_WRCLI8__MIN_BW_MASK 0x01C00000L
+#define DAGB2_WRCLI8__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB2_WRCLI8__MAX_OSD_MASK 0xFC000000L
+//DAGB2_WRCLI9
+#define DAGB2_WRCLI9__VIRT_CHAN__SHIFT 0x0
+#define DAGB2_WRCLI9__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB2_WRCLI9__URG_HIGH__SHIFT 0x4
+#define DAGB2_WRCLI9__URG_LOW__SHIFT 0x8
+#define DAGB2_WRCLI9__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB2_WRCLI9__MAX_BW__SHIFT 0xd
+#define DAGB2_WRCLI9__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB2_WRCLI9__MIN_BW__SHIFT 0x16
+#define DAGB2_WRCLI9__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB2_WRCLI9__MAX_OSD__SHIFT 0x1a
+#define DAGB2_WRCLI9__VIRT_CHAN_MASK 0x00000007L
+#define DAGB2_WRCLI9__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB2_WRCLI9__URG_HIGH_MASK 0x000000F0L
+#define DAGB2_WRCLI9__URG_LOW_MASK 0x00000F00L
+#define DAGB2_WRCLI9__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB2_WRCLI9__MAX_BW_MASK 0x001FE000L
+#define DAGB2_WRCLI9__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB2_WRCLI9__MIN_BW_MASK 0x01C00000L
+#define DAGB2_WRCLI9__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB2_WRCLI9__MAX_OSD_MASK 0xFC000000L
+//DAGB2_WRCLI10
+#define DAGB2_WRCLI10__VIRT_CHAN__SHIFT 0x0
+#define DAGB2_WRCLI10__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB2_WRCLI10__URG_HIGH__SHIFT 0x4
+#define DAGB2_WRCLI10__URG_LOW__SHIFT 0x8
+#define DAGB2_WRCLI10__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB2_WRCLI10__MAX_BW__SHIFT 0xd
+#define DAGB2_WRCLI10__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB2_WRCLI10__MIN_BW__SHIFT 0x16
+#define DAGB2_WRCLI10__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB2_WRCLI10__MAX_OSD__SHIFT 0x1a
+#define DAGB2_WRCLI10__VIRT_CHAN_MASK 0x00000007L
+#define DAGB2_WRCLI10__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB2_WRCLI10__URG_HIGH_MASK 0x000000F0L
+#define DAGB2_WRCLI10__URG_LOW_MASK 0x00000F00L
+#define DAGB2_WRCLI10__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB2_WRCLI10__MAX_BW_MASK 0x001FE000L
+#define DAGB2_WRCLI10__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB2_WRCLI10__MIN_BW_MASK 0x01C00000L
+#define DAGB2_WRCLI10__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB2_WRCLI10__MAX_OSD_MASK 0xFC000000L
+//DAGB2_WRCLI11
+#define DAGB2_WRCLI11__VIRT_CHAN__SHIFT 0x0
+#define DAGB2_WRCLI11__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB2_WRCLI11__URG_HIGH__SHIFT 0x4
+#define DAGB2_WRCLI11__URG_LOW__SHIFT 0x8
+#define DAGB2_WRCLI11__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB2_WRCLI11__MAX_BW__SHIFT 0xd
+#define DAGB2_WRCLI11__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB2_WRCLI11__MIN_BW__SHIFT 0x16
+#define DAGB2_WRCLI11__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB2_WRCLI11__MAX_OSD__SHIFT 0x1a
+#define DAGB2_WRCLI11__VIRT_CHAN_MASK 0x00000007L
+#define DAGB2_WRCLI11__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB2_WRCLI11__URG_HIGH_MASK 0x000000F0L
+#define DAGB2_WRCLI11__URG_LOW_MASK 0x00000F00L
+#define DAGB2_WRCLI11__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB2_WRCLI11__MAX_BW_MASK 0x001FE000L
+#define DAGB2_WRCLI11__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB2_WRCLI11__MIN_BW_MASK 0x01C00000L
+#define DAGB2_WRCLI11__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB2_WRCLI11__MAX_OSD_MASK 0xFC000000L
+//DAGB2_WRCLI12
+#define DAGB2_WRCLI12__VIRT_CHAN__SHIFT 0x0
+#define DAGB2_WRCLI12__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB2_WRCLI12__URG_HIGH__SHIFT 0x4
+#define DAGB2_WRCLI12__URG_LOW__SHIFT 0x8
+#define DAGB2_WRCLI12__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB2_WRCLI12__MAX_BW__SHIFT 0xd
+#define DAGB2_WRCLI12__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB2_WRCLI12__MIN_BW__SHIFT 0x16
+#define DAGB2_WRCLI12__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB2_WRCLI12__MAX_OSD__SHIFT 0x1a
+#define DAGB2_WRCLI12__VIRT_CHAN_MASK 0x00000007L
+#define DAGB2_WRCLI12__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB2_WRCLI12__URG_HIGH_MASK 0x000000F0L
+#define DAGB2_WRCLI12__URG_LOW_MASK 0x00000F00L
+#define DAGB2_WRCLI12__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB2_WRCLI12__MAX_BW_MASK 0x001FE000L
+#define DAGB2_WRCLI12__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB2_WRCLI12__MIN_BW_MASK 0x01C00000L
+#define DAGB2_WRCLI12__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB2_WRCLI12__MAX_OSD_MASK 0xFC000000L
+//DAGB2_WRCLI13
+#define DAGB2_WRCLI13__VIRT_CHAN__SHIFT 0x0
+#define DAGB2_WRCLI13__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB2_WRCLI13__URG_HIGH__SHIFT 0x4
+#define DAGB2_WRCLI13__URG_LOW__SHIFT 0x8
+#define DAGB2_WRCLI13__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB2_WRCLI13__MAX_BW__SHIFT 0xd
+#define DAGB2_WRCLI13__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB2_WRCLI13__MIN_BW__SHIFT 0x16
+#define DAGB2_WRCLI13__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB2_WRCLI13__MAX_OSD__SHIFT 0x1a
+#define DAGB2_WRCLI13__VIRT_CHAN_MASK 0x00000007L
+#define DAGB2_WRCLI13__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB2_WRCLI13__URG_HIGH_MASK 0x000000F0L
+#define DAGB2_WRCLI13__URG_LOW_MASK 0x00000F00L
+#define DAGB2_WRCLI13__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB2_WRCLI13__MAX_BW_MASK 0x001FE000L
+#define DAGB2_WRCLI13__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB2_WRCLI13__MIN_BW_MASK 0x01C00000L
+#define DAGB2_WRCLI13__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB2_WRCLI13__MAX_OSD_MASK 0xFC000000L
+//DAGB2_WRCLI14
+#define DAGB2_WRCLI14__VIRT_CHAN__SHIFT 0x0
+#define DAGB2_WRCLI14__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB2_WRCLI14__URG_HIGH__SHIFT 0x4
+#define DAGB2_WRCLI14__URG_LOW__SHIFT 0x8
+#define DAGB2_WRCLI14__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB2_WRCLI14__MAX_BW__SHIFT 0xd
+#define DAGB2_WRCLI14__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB2_WRCLI14__MIN_BW__SHIFT 0x16
+#define DAGB2_WRCLI14__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB2_WRCLI14__MAX_OSD__SHIFT 0x1a
+#define DAGB2_WRCLI14__VIRT_CHAN_MASK 0x00000007L
+#define DAGB2_WRCLI14__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB2_WRCLI14__URG_HIGH_MASK 0x000000F0L
+#define DAGB2_WRCLI14__URG_LOW_MASK 0x00000F00L
+#define DAGB2_WRCLI14__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB2_WRCLI14__MAX_BW_MASK 0x001FE000L
+#define DAGB2_WRCLI14__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB2_WRCLI14__MIN_BW_MASK 0x01C00000L
+#define DAGB2_WRCLI14__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB2_WRCLI14__MAX_OSD_MASK 0xFC000000L
+//DAGB2_WRCLI15
+#define DAGB2_WRCLI15__VIRT_CHAN__SHIFT 0x0
+#define DAGB2_WRCLI15__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB2_WRCLI15__URG_HIGH__SHIFT 0x4
+#define DAGB2_WRCLI15__URG_LOW__SHIFT 0x8
+#define DAGB2_WRCLI15__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB2_WRCLI15__MAX_BW__SHIFT 0xd
+#define DAGB2_WRCLI15__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB2_WRCLI15__MIN_BW__SHIFT 0x16
+#define DAGB2_WRCLI15__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB2_WRCLI15__MAX_OSD__SHIFT 0x1a
+#define DAGB2_WRCLI15__VIRT_CHAN_MASK 0x00000007L
+#define DAGB2_WRCLI15__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB2_WRCLI15__URG_HIGH_MASK 0x000000F0L
+#define DAGB2_WRCLI15__URG_LOW_MASK 0x00000F00L
+#define DAGB2_WRCLI15__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB2_WRCLI15__MAX_BW_MASK 0x001FE000L
+#define DAGB2_WRCLI15__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB2_WRCLI15__MIN_BW_MASK 0x01C00000L
+#define DAGB2_WRCLI15__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB2_WRCLI15__MAX_OSD_MASK 0xFC000000L
+//DAGB2_WR_CNTL
+#define DAGB2_WR_CNTL__SCLK_FREQ__SHIFT 0x0
+#define DAGB2_WR_CNTL__CLI_MAX_BW_WINDOW__SHIFT 0x4
+#define DAGB2_WR_CNTL__VC_MAX_BW_WINDOW__SHIFT 0xa
+#define DAGB2_WR_CNTL__IO_LEVEL_OVERRIDE_ENABLE__SHIFT 0x10
+#define DAGB2_WR_CNTL__IO_LEVEL__SHIFT 0x11
+#define DAGB2_WR_CNTL__IO_LEVEL_COMPLY_VC__SHIFT 0x14
+#define DAGB2_WR_CNTL__SHARE_VC_NUM__SHIFT 0x17
+#define DAGB2_WR_CNTL__FIX_JUMP__SHIFT 0x1a
+#define DAGB2_WR_CNTL__SCLK_FREQ_MASK 0x0000000FL
+#define DAGB2_WR_CNTL__CLI_MAX_BW_WINDOW_MASK 0x000003F0L
+#define DAGB2_WR_CNTL__VC_MAX_BW_WINDOW_MASK 0x0000FC00L
+#define DAGB2_WR_CNTL__IO_LEVEL_OVERRIDE_ENABLE_MASK 0x00010000L
+#define DAGB2_WR_CNTL__IO_LEVEL_MASK 0x000E0000L
+#define DAGB2_WR_CNTL__IO_LEVEL_COMPLY_VC_MASK 0x00700000L
+#define DAGB2_WR_CNTL__SHARE_VC_NUM_MASK 0x03800000L
+#define DAGB2_WR_CNTL__FIX_JUMP_MASK 0x04000000L
+//DAGB2_WR_GMI_CNTL
+#define DAGB2_WR_GMI_CNTL__EA_CREDIT__SHIFT 0x0
+#define DAGB2_WR_GMI_CNTL__LEVEL__SHIFT 0x6
+#define DAGB2_WR_GMI_CNTL__MAX_BURST__SHIFT 0x9
+#define DAGB2_WR_GMI_CNTL__LAZY_TIMER__SHIFT 0xd
+#define DAGB2_WR_GMI_CNTL__EA_CREDIT_MASK 0x0000003FL
+#define DAGB2_WR_GMI_CNTL__LEVEL_MASK 0x000001C0L
+#define DAGB2_WR_GMI_CNTL__MAX_BURST_MASK 0x00001E00L
+#define DAGB2_WR_GMI_CNTL__LAZY_TIMER_MASK 0x0001E000L
+//DAGB2_WR_ADDR_DAGB
+#define DAGB2_WR_ADDR_DAGB__DAGB_ENABLE__SHIFT 0x0
+#define DAGB2_WR_ADDR_DAGB__ENABLE_JUMP_AHEAD__SHIFT 0x3
+#define DAGB2_WR_ADDR_DAGB__DISABLE_SELF_INIT__SHIFT 0x6
+#define DAGB2_WR_ADDR_DAGB__WHOAMI__SHIFT 0x7
+#define DAGB2_WR_ADDR_DAGB__JUMP_MODE__SHIFT 0xd
+#define DAGB2_WR_ADDR_DAGB__DAGB_ENABLE_MASK 0x00000007L
+#define DAGB2_WR_ADDR_DAGB__ENABLE_JUMP_AHEAD_MASK 0x00000038L
+#define DAGB2_WR_ADDR_DAGB__DISABLE_SELF_INIT_MASK 0x00000040L
+#define DAGB2_WR_ADDR_DAGB__WHOAMI_MASK 0x00001F80L
+#define DAGB2_WR_ADDR_DAGB__JUMP_MODE_MASK 0x00002000L
+//DAGB2_WR_OUTPUT_DAGB_MAX_BURST
+#define DAGB2_WR_OUTPUT_DAGB_MAX_BURST__VC0__SHIFT 0x0
+#define DAGB2_WR_OUTPUT_DAGB_MAX_BURST__VC1__SHIFT 0x4
+#define DAGB2_WR_OUTPUT_DAGB_MAX_BURST__VC2__SHIFT 0x8
+#define DAGB2_WR_OUTPUT_DAGB_MAX_BURST__VC3__SHIFT 0xc
+#define DAGB2_WR_OUTPUT_DAGB_MAX_BURST__VC4__SHIFT 0x10
+#define DAGB2_WR_OUTPUT_DAGB_MAX_BURST__VC5__SHIFT 0x14
+#define DAGB2_WR_OUTPUT_DAGB_MAX_BURST__VC6__SHIFT 0x18
+#define DAGB2_WR_OUTPUT_DAGB_MAX_BURST__VC7__SHIFT 0x1c
+#define DAGB2_WR_OUTPUT_DAGB_MAX_BURST__VC0_MASK 0x0000000FL
+#define DAGB2_WR_OUTPUT_DAGB_MAX_BURST__VC1_MASK 0x000000F0L
+#define DAGB2_WR_OUTPUT_DAGB_MAX_BURST__VC2_MASK 0x00000F00L
+#define DAGB2_WR_OUTPUT_DAGB_MAX_BURST__VC3_MASK 0x0000F000L
+#define DAGB2_WR_OUTPUT_DAGB_MAX_BURST__VC4_MASK 0x000F0000L
+#define DAGB2_WR_OUTPUT_DAGB_MAX_BURST__VC5_MASK 0x00F00000L
+#define DAGB2_WR_OUTPUT_DAGB_MAX_BURST__VC6_MASK 0x0F000000L
+#define DAGB2_WR_OUTPUT_DAGB_MAX_BURST__VC7_MASK 0xF0000000L
+//DAGB2_WR_OUTPUT_DAGB_LAZY_TIMER
+#define DAGB2_WR_OUTPUT_DAGB_LAZY_TIMER__VC0__SHIFT 0x0
+#define DAGB2_WR_OUTPUT_DAGB_LAZY_TIMER__VC1__SHIFT 0x4
+#define DAGB2_WR_OUTPUT_DAGB_LAZY_TIMER__VC2__SHIFT 0x8
+#define DAGB2_WR_OUTPUT_DAGB_LAZY_TIMER__VC3__SHIFT 0xc
+#define DAGB2_WR_OUTPUT_DAGB_LAZY_TIMER__VC4__SHIFT 0x10
+#define DAGB2_WR_OUTPUT_DAGB_LAZY_TIMER__VC5__SHIFT 0x14
+#define DAGB2_WR_OUTPUT_DAGB_LAZY_TIMER__VC6__SHIFT 0x18
+#define DAGB2_WR_OUTPUT_DAGB_LAZY_TIMER__VC7__SHIFT 0x1c
+#define DAGB2_WR_OUTPUT_DAGB_LAZY_TIMER__VC0_MASK 0x0000000FL
+#define DAGB2_WR_OUTPUT_DAGB_LAZY_TIMER__VC1_MASK 0x000000F0L
+#define DAGB2_WR_OUTPUT_DAGB_LAZY_TIMER__VC2_MASK 0x00000F00L
+#define DAGB2_WR_OUTPUT_DAGB_LAZY_TIMER__VC3_MASK 0x0000F000L
+#define DAGB2_WR_OUTPUT_DAGB_LAZY_TIMER__VC4_MASK 0x000F0000L
+#define DAGB2_WR_OUTPUT_DAGB_LAZY_TIMER__VC5_MASK 0x00F00000L
+#define DAGB2_WR_OUTPUT_DAGB_LAZY_TIMER__VC6_MASK 0x0F000000L
+#define DAGB2_WR_OUTPUT_DAGB_LAZY_TIMER__VC7_MASK 0xF0000000L
+//DAGB2_WR_CGTT_CLK_CTRL
+#define DAGB2_WR_CGTT_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define DAGB2_WR_CGTT_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define DAGB2_WR_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS__SHIFT 0xc
+#define DAGB2_WR_CGTT_CLK_CTRL__LS_OVERRIDE__SHIFT 0x1e
+#define DAGB2_WR_CGTT_CLK_CTRL__SOFT_OVERRIDE__SHIFT 0x1f
+#define DAGB2_WR_CGTT_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define DAGB2_WR_CGTT_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define DAGB2_WR_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS_MASK 0x0FFFF000L
+#define DAGB2_WR_CGTT_CLK_CTRL__LS_OVERRIDE_MASK 0x40000000L
+#define DAGB2_WR_CGTT_CLK_CTRL__SOFT_OVERRIDE_MASK 0x80000000L
+//DAGB2_L1TLB_WR_CGTT_CLK_CTRL
+#define DAGB2_L1TLB_WR_CGTT_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define DAGB2_L1TLB_WR_CGTT_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define DAGB2_L1TLB_WR_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS__SHIFT 0xc
+#define DAGB2_L1TLB_WR_CGTT_CLK_CTRL__LS_OVERRIDE__SHIFT 0x1e
+#define DAGB2_L1TLB_WR_CGTT_CLK_CTRL__SOFT_OVERRIDE__SHIFT 0x1f
+#define DAGB2_L1TLB_WR_CGTT_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define DAGB2_L1TLB_WR_CGTT_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define DAGB2_L1TLB_WR_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS_MASK 0x0FFFF000L
+#define DAGB2_L1TLB_WR_CGTT_CLK_CTRL__LS_OVERRIDE_MASK 0x40000000L
+#define DAGB2_L1TLB_WR_CGTT_CLK_CTRL__SOFT_OVERRIDE_MASK 0x80000000L
+//DAGB2_ATCVM_WR_CGTT_CLK_CTRL
+#define DAGB2_ATCVM_WR_CGTT_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define DAGB2_ATCVM_WR_CGTT_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define DAGB2_ATCVM_WR_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS__SHIFT 0xc
+#define DAGB2_ATCVM_WR_CGTT_CLK_CTRL__LS_OVERRIDE__SHIFT 0x1e
+#define DAGB2_ATCVM_WR_CGTT_CLK_CTRL__SOFT_OVERRIDE__SHIFT 0x1f
+#define DAGB2_ATCVM_WR_CGTT_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define DAGB2_ATCVM_WR_CGTT_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define DAGB2_ATCVM_WR_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS_MASK 0x0FFFF000L
+#define DAGB2_ATCVM_WR_CGTT_CLK_CTRL__LS_OVERRIDE_MASK 0x40000000L
+#define DAGB2_ATCVM_WR_CGTT_CLK_CTRL__SOFT_OVERRIDE_MASK 0x80000000L
+//DAGB2_WR_ADDR_DAGB_MAX_BURST0
+#define DAGB2_WR_ADDR_DAGB_MAX_BURST0__CLIENT0__SHIFT 0x0
+#define DAGB2_WR_ADDR_DAGB_MAX_BURST0__CLIENT1__SHIFT 0x4
+#define DAGB2_WR_ADDR_DAGB_MAX_BURST0__CLIENT2__SHIFT 0x8
+#define DAGB2_WR_ADDR_DAGB_MAX_BURST0__CLIENT3__SHIFT 0xc
+#define DAGB2_WR_ADDR_DAGB_MAX_BURST0__CLIENT4__SHIFT 0x10
+#define DAGB2_WR_ADDR_DAGB_MAX_BURST0__CLIENT5__SHIFT 0x14
+#define DAGB2_WR_ADDR_DAGB_MAX_BURST0__CLIENT6__SHIFT 0x18
+#define DAGB2_WR_ADDR_DAGB_MAX_BURST0__CLIENT7__SHIFT 0x1c
+#define DAGB2_WR_ADDR_DAGB_MAX_BURST0__CLIENT0_MASK 0x0000000FL
+#define DAGB2_WR_ADDR_DAGB_MAX_BURST0__CLIENT1_MASK 0x000000F0L
+#define DAGB2_WR_ADDR_DAGB_MAX_BURST0__CLIENT2_MASK 0x00000F00L
+#define DAGB2_WR_ADDR_DAGB_MAX_BURST0__CLIENT3_MASK 0x0000F000L
+#define DAGB2_WR_ADDR_DAGB_MAX_BURST0__CLIENT4_MASK 0x000F0000L
+#define DAGB2_WR_ADDR_DAGB_MAX_BURST0__CLIENT5_MASK 0x00F00000L
+#define DAGB2_WR_ADDR_DAGB_MAX_BURST0__CLIENT6_MASK 0x0F000000L
+#define DAGB2_WR_ADDR_DAGB_MAX_BURST0__CLIENT7_MASK 0xF0000000L
+//DAGB2_WR_ADDR_DAGB_LAZY_TIMER0
+#define DAGB2_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT0__SHIFT 0x0
+#define DAGB2_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT1__SHIFT 0x4
+#define DAGB2_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT2__SHIFT 0x8
+#define DAGB2_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT3__SHIFT 0xc
+#define DAGB2_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT4__SHIFT 0x10
+#define DAGB2_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT5__SHIFT 0x14
+#define DAGB2_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT6__SHIFT 0x18
+#define DAGB2_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT7__SHIFT 0x1c
+#define DAGB2_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT0_MASK 0x0000000FL
+#define DAGB2_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT1_MASK 0x000000F0L
+#define DAGB2_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT2_MASK 0x00000F00L
+#define DAGB2_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT3_MASK 0x0000F000L
+#define DAGB2_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT4_MASK 0x000F0000L
+#define DAGB2_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT5_MASK 0x00F00000L
+#define DAGB2_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT6_MASK 0x0F000000L
+#define DAGB2_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT7_MASK 0xF0000000L
+//DAGB2_WR_ADDR_DAGB_MAX_BURST1
+#define DAGB2_WR_ADDR_DAGB_MAX_BURST1__CLIENT8__SHIFT 0x0
+#define DAGB2_WR_ADDR_DAGB_MAX_BURST1__CLIENT9__SHIFT 0x4
+#define DAGB2_WR_ADDR_DAGB_MAX_BURST1__CLIENT10__SHIFT 0x8
+#define DAGB2_WR_ADDR_DAGB_MAX_BURST1__CLIENT11__SHIFT 0xc
+#define DAGB2_WR_ADDR_DAGB_MAX_BURST1__CLIENT12__SHIFT 0x10
+#define DAGB2_WR_ADDR_DAGB_MAX_BURST1__CLIENT13__SHIFT 0x14
+#define DAGB2_WR_ADDR_DAGB_MAX_BURST1__CLIENT14__SHIFT 0x18
+#define DAGB2_WR_ADDR_DAGB_MAX_BURST1__CLIENT15__SHIFT 0x1c
+#define DAGB2_WR_ADDR_DAGB_MAX_BURST1__CLIENT8_MASK 0x0000000FL
+#define DAGB2_WR_ADDR_DAGB_MAX_BURST1__CLIENT9_MASK 0x000000F0L
+#define DAGB2_WR_ADDR_DAGB_MAX_BURST1__CLIENT10_MASK 0x00000F00L
+#define DAGB2_WR_ADDR_DAGB_MAX_BURST1__CLIENT11_MASK 0x0000F000L
+#define DAGB2_WR_ADDR_DAGB_MAX_BURST1__CLIENT12_MASK 0x000F0000L
+#define DAGB2_WR_ADDR_DAGB_MAX_BURST1__CLIENT13_MASK 0x00F00000L
+#define DAGB2_WR_ADDR_DAGB_MAX_BURST1__CLIENT14_MASK 0x0F000000L
+#define DAGB2_WR_ADDR_DAGB_MAX_BURST1__CLIENT15_MASK 0xF0000000L
+//DAGB2_WR_ADDR_DAGB_LAZY_TIMER1
+#define DAGB2_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT8__SHIFT 0x0
+#define DAGB2_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT9__SHIFT 0x4
+#define DAGB2_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT10__SHIFT 0x8
+#define DAGB2_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT11__SHIFT 0xc
+#define DAGB2_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT12__SHIFT 0x10
+#define DAGB2_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT13__SHIFT 0x14
+#define DAGB2_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT14__SHIFT 0x18
+#define DAGB2_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT15__SHIFT 0x1c
+#define DAGB2_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT8_MASK 0x0000000FL
+#define DAGB2_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT9_MASK 0x000000F0L
+#define DAGB2_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT10_MASK 0x00000F00L
+#define DAGB2_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT11_MASK 0x0000F000L
+#define DAGB2_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT12_MASK 0x000F0000L
+#define DAGB2_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT13_MASK 0x00F00000L
+#define DAGB2_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT14_MASK 0x0F000000L
+#define DAGB2_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT15_MASK 0xF0000000L
+//DAGB2_WR_DATA_DAGB
+#define DAGB2_WR_DATA_DAGB__DAGB_ENABLE__SHIFT 0x0
+#define DAGB2_WR_DATA_DAGB__ENABLE_JUMP_AHEAD__SHIFT 0x3
+#define DAGB2_WR_DATA_DAGB__DISABLE_SELF_INIT__SHIFT 0x6
+#define DAGB2_WR_DATA_DAGB__WHOAMI__SHIFT 0x7
+#define DAGB2_WR_DATA_DAGB__DAGB_ENABLE_MASK 0x00000007L
+#define DAGB2_WR_DATA_DAGB__ENABLE_JUMP_AHEAD_MASK 0x00000038L
+#define DAGB2_WR_DATA_DAGB__DISABLE_SELF_INIT_MASK 0x00000040L
+#define DAGB2_WR_DATA_DAGB__WHOAMI_MASK 0x00001F80L
+//DAGB2_WR_DATA_DAGB_MAX_BURST0
+#define DAGB2_WR_DATA_DAGB_MAX_BURST0__CLIENT0__SHIFT 0x0
+#define DAGB2_WR_DATA_DAGB_MAX_BURST0__CLIENT1__SHIFT 0x4
+#define DAGB2_WR_DATA_DAGB_MAX_BURST0__CLIENT2__SHIFT 0x8
+#define DAGB2_WR_DATA_DAGB_MAX_BURST0__CLIENT3__SHIFT 0xc
+#define DAGB2_WR_DATA_DAGB_MAX_BURST0__CLIENT4__SHIFT 0x10
+#define DAGB2_WR_DATA_DAGB_MAX_BURST0__CLIENT5__SHIFT 0x14
+#define DAGB2_WR_DATA_DAGB_MAX_BURST0__CLIENT6__SHIFT 0x18
+#define DAGB2_WR_DATA_DAGB_MAX_BURST0__CLIENT7__SHIFT 0x1c
+#define DAGB2_WR_DATA_DAGB_MAX_BURST0__CLIENT0_MASK 0x0000000FL
+#define DAGB2_WR_DATA_DAGB_MAX_BURST0__CLIENT1_MASK 0x000000F0L
+#define DAGB2_WR_DATA_DAGB_MAX_BURST0__CLIENT2_MASK 0x00000F00L
+#define DAGB2_WR_DATA_DAGB_MAX_BURST0__CLIENT3_MASK 0x0000F000L
+#define DAGB2_WR_DATA_DAGB_MAX_BURST0__CLIENT4_MASK 0x000F0000L
+#define DAGB2_WR_DATA_DAGB_MAX_BURST0__CLIENT5_MASK 0x00F00000L
+#define DAGB2_WR_DATA_DAGB_MAX_BURST0__CLIENT6_MASK 0x0F000000L
+#define DAGB2_WR_DATA_DAGB_MAX_BURST0__CLIENT7_MASK 0xF0000000L
+//DAGB2_WR_DATA_DAGB_LAZY_TIMER0
+#define DAGB2_WR_DATA_DAGB_LAZY_TIMER0__CLIENT0__SHIFT 0x0
+#define DAGB2_WR_DATA_DAGB_LAZY_TIMER0__CLIENT1__SHIFT 0x4
+#define DAGB2_WR_DATA_DAGB_LAZY_TIMER0__CLIENT2__SHIFT 0x8
+#define DAGB2_WR_DATA_DAGB_LAZY_TIMER0__CLIENT3__SHIFT 0xc
+#define DAGB2_WR_DATA_DAGB_LAZY_TIMER0__CLIENT4__SHIFT 0x10
+#define DAGB2_WR_DATA_DAGB_LAZY_TIMER0__CLIENT5__SHIFT 0x14
+#define DAGB2_WR_DATA_DAGB_LAZY_TIMER0__CLIENT6__SHIFT 0x18
+#define DAGB2_WR_DATA_DAGB_LAZY_TIMER0__CLIENT7__SHIFT 0x1c
+#define DAGB2_WR_DATA_DAGB_LAZY_TIMER0__CLIENT0_MASK 0x0000000FL
+#define DAGB2_WR_DATA_DAGB_LAZY_TIMER0__CLIENT1_MASK 0x000000F0L
+#define DAGB2_WR_DATA_DAGB_LAZY_TIMER0__CLIENT2_MASK 0x00000F00L
+#define DAGB2_WR_DATA_DAGB_LAZY_TIMER0__CLIENT3_MASK 0x0000F000L
+#define DAGB2_WR_DATA_DAGB_LAZY_TIMER0__CLIENT4_MASK 0x000F0000L
+#define DAGB2_WR_DATA_DAGB_LAZY_TIMER0__CLIENT5_MASK 0x00F00000L
+#define DAGB2_WR_DATA_DAGB_LAZY_TIMER0__CLIENT6_MASK 0x0F000000L
+#define DAGB2_WR_DATA_DAGB_LAZY_TIMER0__CLIENT7_MASK 0xF0000000L
+//DAGB2_WR_DATA_DAGB_MAX_BURST1
+#define DAGB2_WR_DATA_DAGB_MAX_BURST1__CLIENT8__SHIFT 0x0
+#define DAGB2_WR_DATA_DAGB_MAX_BURST1__CLIENT9__SHIFT 0x4
+#define DAGB2_WR_DATA_DAGB_MAX_BURST1__CLIENT10__SHIFT 0x8
+#define DAGB2_WR_DATA_DAGB_MAX_BURST1__CLIENT11__SHIFT 0xc
+#define DAGB2_WR_DATA_DAGB_MAX_BURST1__CLIENT12__SHIFT 0x10
+#define DAGB2_WR_DATA_DAGB_MAX_BURST1__CLIENT13__SHIFT 0x14
+#define DAGB2_WR_DATA_DAGB_MAX_BURST1__CLIENT14__SHIFT 0x18
+#define DAGB2_WR_DATA_DAGB_MAX_BURST1__CLIENT15__SHIFT 0x1c
+#define DAGB2_WR_DATA_DAGB_MAX_BURST1__CLIENT8_MASK 0x0000000FL
+#define DAGB2_WR_DATA_DAGB_MAX_BURST1__CLIENT9_MASK 0x000000F0L
+#define DAGB2_WR_DATA_DAGB_MAX_BURST1__CLIENT10_MASK 0x00000F00L
+#define DAGB2_WR_DATA_DAGB_MAX_BURST1__CLIENT11_MASK 0x0000F000L
+#define DAGB2_WR_DATA_DAGB_MAX_BURST1__CLIENT12_MASK 0x000F0000L
+#define DAGB2_WR_DATA_DAGB_MAX_BURST1__CLIENT13_MASK 0x00F00000L
+#define DAGB2_WR_DATA_DAGB_MAX_BURST1__CLIENT14_MASK 0x0F000000L
+#define DAGB2_WR_DATA_DAGB_MAX_BURST1__CLIENT15_MASK 0xF0000000L
+//DAGB2_WR_DATA_DAGB_LAZY_TIMER1
+#define DAGB2_WR_DATA_DAGB_LAZY_TIMER1__CLIENT8__SHIFT 0x0
+#define DAGB2_WR_DATA_DAGB_LAZY_TIMER1__CLIENT9__SHIFT 0x4
+#define DAGB2_WR_DATA_DAGB_LAZY_TIMER1__CLIENT10__SHIFT 0x8
+#define DAGB2_WR_DATA_DAGB_LAZY_TIMER1__CLIENT11__SHIFT 0xc
+#define DAGB2_WR_DATA_DAGB_LAZY_TIMER1__CLIENT12__SHIFT 0x10
+#define DAGB2_WR_DATA_DAGB_LAZY_TIMER1__CLIENT13__SHIFT 0x14
+#define DAGB2_WR_DATA_DAGB_LAZY_TIMER1__CLIENT14__SHIFT 0x18
+#define DAGB2_WR_DATA_DAGB_LAZY_TIMER1__CLIENT15__SHIFT 0x1c
+#define DAGB2_WR_DATA_DAGB_LAZY_TIMER1__CLIENT8_MASK 0x0000000FL
+#define DAGB2_WR_DATA_DAGB_LAZY_TIMER1__CLIENT9_MASK 0x000000F0L
+#define DAGB2_WR_DATA_DAGB_LAZY_TIMER1__CLIENT10_MASK 0x00000F00L
+#define DAGB2_WR_DATA_DAGB_LAZY_TIMER1__CLIENT11_MASK 0x0000F000L
+#define DAGB2_WR_DATA_DAGB_LAZY_TIMER1__CLIENT12_MASK 0x000F0000L
+#define DAGB2_WR_DATA_DAGB_LAZY_TIMER1__CLIENT13_MASK 0x00F00000L
+#define DAGB2_WR_DATA_DAGB_LAZY_TIMER1__CLIENT14_MASK 0x0F000000L
+#define DAGB2_WR_DATA_DAGB_LAZY_TIMER1__CLIENT15_MASK 0xF0000000L
+//DAGB2_WR_VC0_CNTL
+#define DAGB2_WR_VC0_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB2_WR_VC0_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB2_WR_VC0_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB2_WR_VC0_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB2_WR_VC0_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB2_WR_VC0_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB2_WR_VC0_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB2_WR_VC0_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB2_WR_VC0_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB2_WR_VC0_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB2_WR_VC0_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB2_WR_VC0_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB2_WR_VC0_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB2_WR_VC0_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB2_WR_VC0_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB2_WR_VC0_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB2_WR_VC1_CNTL
+#define DAGB2_WR_VC1_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB2_WR_VC1_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB2_WR_VC1_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB2_WR_VC1_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB2_WR_VC1_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB2_WR_VC1_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB2_WR_VC1_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB2_WR_VC1_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB2_WR_VC1_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB2_WR_VC1_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB2_WR_VC1_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB2_WR_VC1_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB2_WR_VC1_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB2_WR_VC1_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB2_WR_VC1_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB2_WR_VC1_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB2_WR_VC2_CNTL
+#define DAGB2_WR_VC2_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB2_WR_VC2_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB2_WR_VC2_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB2_WR_VC2_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB2_WR_VC2_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB2_WR_VC2_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB2_WR_VC2_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB2_WR_VC2_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB2_WR_VC2_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB2_WR_VC2_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB2_WR_VC2_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB2_WR_VC2_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB2_WR_VC2_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB2_WR_VC2_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB2_WR_VC2_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB2_WR_VC2_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB2_WR_VC3_CNTL
+#define DAGB2_WR_VC3_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB2_WR_VC3_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB2_WR_VC3_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB2_WR_VC3_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB2_WR_VC3_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB2_WR_VC3_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB2_WR_VC3_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB2_WR_VC3_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB2_WR_VC3_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB2_WR_VC3_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB2_WR_VC3_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB2_WR_VC3_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB2_WR_VC3_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB2_WR_VC3_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB2_WR_VC3_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB2_WR_VC3_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB2_WR_VC4_CNTL
+#define DAGB2_WR_VC4_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB2_WR_VC4_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB2_WR_VC4_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB2_WR_VC4_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB2_WR_VC4_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB2_WR_VC4_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB2_WR_VC4_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB2_WR_VC4_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB2_WR_VC4_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB2_WR_VC4_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB2_WR_VC4_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB2_WR_VC4_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB2_WR_VC4_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB2_WR_VC4_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB2_WR_VC4_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB2_WR_VC4_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB2_WR_VC5_CNTL
+#define DAGB2_WR_VC5_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB2_WR_VC5_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB2_WR_VC5_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB2_WR_VC5_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB2_WR_VC5_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB2_WR_VC5_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB2_WR_VC5_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB2_WR_VC5_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB2_WR_VC5_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB2_WR_VC5_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB2_WR_VC5_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB2_WR_VC5_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB2_WR_VC5_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB2_WR_VC5_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB2_WR_VC5_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB2_WR_VC5_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB2_WR_VC6_CNTL
+#define DAGB2_WR_VC6_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB2_WR_VC6_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB2_WR_VC6_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB2_WR_VC6_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB2_WR_VC6_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB2_WR_VC6_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB2_WR_VC6_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB2_WR_VC6_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB2_WR_VC6_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB2_WR_VC6_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB2_WR_VC6_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB2_WR_VC6_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB2_WR_VC6_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB2_WR_VC6_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB2_WR_VC6_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB2_WR_VC6_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB2_WR_VC7_CNTL
+#define DAGB2_WR_VC7_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB2_WR_VC7_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB2_WR_VC7_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB2_WR_VC7_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB2_WR_VC7_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB2_WR_VC7_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB2_WR_VC7_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB2_WR_VC7_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB2_WR_VC7_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB2_WR_VC7_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB2_WR_VC7_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB2_WR_VC7_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB2_WR_VC7_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB2_WR_VC7_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB2_WR_VC7_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB2_WR_VC7_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB2_WR_CNTL_MISC
+#define DAGB2_WR_CNTL_MISC__STOR_POOL_CREDIT__SHIFT 0x0
+#define DAGB2_WR_CNTL_MISC__EA_POOL_CREDIT__SHIFT 0x6
+#define DAGB2_WR_CNTL_MISC__IO_EA_CREDIT__SHIFT 0xd
+#define DAGB2_WR_CNTL_MISC__STOR_CC_NEW_MODE__SHIFT 0x13
+#define DAGB2_WR_CNTL_MISC__EA_CC_LEGACY_MODE__SHIFT 0x14
+#define DAGB2_WR_CNTL_MISC__UTCL2_CID__SHIFT 0x15
+#define DAGB2_WR_CNTL_MISC__RDRET_FIFO_CREDITS__SHIFT 0x1a
+#define DAGB2_WR_CNTL_MISC__STOR_POOL_CREDIT_MASK 0x0000003FL
+#define DAGB2_WR_CNTL_MISC__EA_POOL_CREDIT_MASK 0x00001FC0L
+#define DAGB2_WR_CNTL_MISC__IO_EA_CREDIT_MASK 0x0007E000L
+#define DAGB2_WR_CNTL_MISC__STOR_CC_NEW_MODE_MASK 0x00080000L
+#define DAGB2_WR_CNTL_MISC__EA_CC_LEGACY_MODE_MASK 0x00100000L
+#define DAGB2_WR_CNTL_MISC__UTCL2_CID_MASK 0x03E00000L
+#define DAGB2_WR_CNTL_MISC__RDRET_FIFO_CREDITS_MASK 0xFC000000L
+//DAGB2_WR_TLB_CREDIT
+#define DAGB2_WR_TLB_CREDIT__TLB0__SHIFT 0x0
+#define DAGB2_WR_TLB_CREDIT__TLB1__SHIFT 0x5
+#define DAGB2_WR_TLB_CREDIT__TLB2__SHIFT 0xa
+#define DAGB2_WR_TLB_CREDIT__TLB3__SHIFT 0xf
+#define DAGB2_WR_TLB_CREDIT__TLB4__SHIFT 0x14
+#define DAGB2_WR_TLB_CREDIT__TLB5__SHIFT 0x19
+#define DAGB2_WR_TLB_CREDIT__TLB0_MASK 0x0000001FL
+#define DAGB2_WR_TLB_CREDIT__TLB1_MASK 0x000003E0L
+#define DAGB2_WR_TLB_CREDIT__TLB2_MASK 0x00007C00L
+#define DAGB2_WR_TLB_CREDIT__TLB3_MASK 0x000F8000L
+#define DAGB2_WR_TLB_CREDIT__TLB4_MASK 0x01F00000L
+#define DAGB2_WR_TLB_CREDIT__TLB5_MASK 0x3E000000L
+//DAGB2_WR_DATA_CREDIT
+#define DAGB2_WR_DATA_CREDIT__DLOCK_VC_CREDITS__SHIFT 0x0
+#define DAGB2_WR_DATA_CREDIT__LARGE_BURST_CREDITS__SHIFT 0x8
+#define DAGB2_WR_DATA_CREDIT__MIDDLE_BURST_CREDITS__SHIFT 0x10
+#define DAGB2_WR_DATA_CREDIT__SMALL_BURST_CREDITS__SHIFT 0x18
+#define DAGB2_WR_DATA_CREDIT__DLOCK_VC_CREDITS_MASK 0x000000FFL
+#define DAGB2_WR_DATA_CREDIT__LARGE_BURST_CREDITS_MASK 0x0000FF00L
+#define DAGB2_WR_DATA_CREDIT__MIDDLE_BURST_CREDITS_MASK 0x00FF0000L
+#define DAGB2_WR_DATA_CREDIT__SMALL_BURST_CREDITS_MASK 0xFF000000L
+//DAGB2_WR_MISC_CREDIT
+#define DAGB2_WR_MISC_CREDIT__ATOMIC_CREDIT__SHIFT 0x0
+#define DAGB2_WR_MISC_CREDIT__DLOCK_VC_NUM__SHIFT 0x6
+#define DAGB2_WR_MISC_CREDIT__OSD_CREDIT__SHIFT 0x9
+#define DAGB2_WR_MISC_CREDIT__OSD_DLOCK_CREDIT__SHIFT 0x10
+#define DAGB2_WR_MISC_CREDIT__ATOMIC_CREDIT_MASK 0x0000003FL
+#define DAGB2_WR_MISC_CREDIT__DLOCK_VC_NUM_MASK 0x000001C0L
+#define DAGB2_WR_MISC_CREDIT__OSD_CREDIT_MASK 0x0000FE00L
+#define DAGB2_WR_MISC_CREDIT__OSD_DLOCK_CREDIT_MASK 0x007F0000L
+//DAGB2_WR_OSD_CREDIT_CNTL1
+#define DAGB2_WR_OSD_CREDIT_CNTL1__VC0_CREDIT__SHIFT 0x0
+#define DAGB2_WR_OSD_CREDIT_CNTL1__VC1_CREDIT__SHIFT 0x4
+#define DAGB2_WR_OSD_CREDIT_CNTL1__VC2_CREDIT__SHIFT 0x8
+#define DAGB2_WR_OSD_CREDIT_CNTL1__VC3_CREDIT__SHIFT 0xc
+#define DAGB2_WR_OSD_CREDIT_CNTL1__IO_CREDIT__SHIFT 0x10
+#define DAGB2_WR_OSD_CREDIT_CNTL1__GMI_CREDIT__SHIFT 0x14
+#define DAGB2_WR_OSD_CREDIT_CNTL1__POOL_CREDIT__SHIFT 0x18
+#define DAGB2_WR_OSD_CREDIT_CNTL1__VC0_CREDIT_MASK 0x0000000FL
+#define DAGB2_WR_OSD_CREDIT_CNTL1__VC1_CREDIT_MASK 0x000000F0L
+#define DAGB2_WR_OSD_CREDIT_CNTL1__VC2_CREDIT_MASK 0x00000F00L
+#define DAGB2_WR_OSD_CREDIT_CNTL1__VC3_CREDIT_MASK 0x0000F000L
+#define DAGB2_WR_OSD_CREDIT_CNTL1__IO_CREDIT_MASK 0x000F0000L
+#define DAGB2_WR_OSD_CREDIT_CNTL1__GMI_CREDIT_MASK 0x00F00000L
+#define DAGB2_WR_OSD_CREDIT_CNTL1__POOL_CREDIT_MASK 0x3F000000L
+//DAGB2_WR_OSD_CREDIT_CNTL2
+#define DAGB2_WR_OSD_CREDIT_CNTL2__CREDIT_MARGIN__SHIFT 0x0
+#define DAGB2_WR_OSD_CREDIT_CNTL2__ENABLE_LEGACY__SHIFT 0x4
+#define DAGB2_WR_OSD_CREDIT_CNTL2__CREDIT_MARGIN_MASK 0x0000000FL
+#define DAGB2_WR_OSD_CREDIT_CNTL2__ENABLE_LEGACY_MASK 0x00000010L
+//DAGB2_WR_ATOMIC_FIFO_CREDIT_CNTL1
+#define DAGB2_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC0_CREDIT__SHIFT 0x0
+#define DAGB2_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC1_CREDIT__SHIFT 0x5
+#define DAGB2_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC2_CREDIT__SHIFT 0xa
+#define DAGB2_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC3_CREDIT__SHIFT 0xf
+#define DAGB2_WR_ATOMIC_FIFO_CREDIT_CNTL1__POOL_CREDIT__SHIFT 0x14
+#define DAGB2_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC_MODE__SHIFT 0x19
+#define DAGB2_WR_ATOMIC_FIFO_CREDIT_CNTL1__FIX_EQ__SHIFT 0x1a
+#define DAGB2_WR_ATOMIC_FIFO_CREDIT_CNTL1__FIX0__SHIFT 0x1b
+#define DAGB2_WR_ATOMIC_FIFO_CREDIT_CNTL1__FIX1__SHIFT 0x1c
+#define DAGB2_WR_ATOMIC_FIFO_CREDIT_CNTL1__FIX2__SHIFT 0x1d
+#define DAGB2_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC0_CREDIT_MASK 0x0000001FL
+#define DAGB2_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC1_CREDIT_MASK 0x000003E0L
+#define DAGB2_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC2_CREDIT_MASK 0x00007C00L
+#define DAGB2_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC3_CREDIT_MASK 0x000F8000L
+#define DAGB2_WR_ATOMIC_FIFO_CREDIT_CNTL1__POOL_CREDIT_MASK 0x01F00000L
+#define DAGB2_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC_MODE_MASK 0x02000000L
+#define DAGB2_WR_ATOMIC_FIFO_CREDIT_CNTL1__FIX_EQ_MASK 0x04000000L
+#define DAGB2_WR_ATOMIC_FIFO_CREDIT_CNTL1__FIX0_MASK 0x08000000L
+#define DAGB2_WR_ATOMIC_FIFO_CREDIT_CNTL1__FIX1_MASK 0x10000000L
+#define DAGB2_WR_ATOMIC_FIFO_CREDIT_CNTL1__FIX2_MASK 0x20000000L
+//DAGB2_WRCLI_GPU_SNOOP_OVERRIDE
+#define DAGB2_WRCLI_GPU_SNOOP_OVERRIDE__ENABLE__SHIFT 0x0
+#define DAGB2_WRCLI_GPU_SNOOP_OVERRIDE__ENABLE_MASK 0x0000FFFFL
+//DAGB2_WRCLI_GPU_SNOOP_OVERRIDE_VALUE
+#define DAGB2_WRCLI_GPU_SNOOP_OVERRIDE_VALUE__ENABLE__SHIFT 0x0
+#define DAGB2_WRCLI_GPU_SNOOP_OVERRIDE_VALUE__ENABLE_MASK 0x0000FFFFL
+//DAGB2_WRCLI_ASK_PENDING
+#define DAGB2_WRCLI_ASK_PENDING__BUSY__SHIFT 0x0
+#define DAGB2_WRCLI_ASK_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB2_WRCLI_GO_PENDING
+#define DAGB2_WRCLI_GO_PENDING__BUSY__SHIFT 0x0
+#define DAGB2_WRCLI_GO_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB2_WRCLI_GBLSEND_PENDING
+#define DAGB2_WRCLI_GBLSEND_PENDING__BUSY__SHIFT 0x0
+#define DAGB2_WRCLI_GBLSEND_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB2_WRCLI_TLB_PENDING
+#define DAGB2_WRCLI_TLB_PENDING__BUSY__SHIFT 0x0
+#define DAGB2_WRCLI_TLB_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB2_WRCLI_OARB_PENDING
+#define DAGB2_WRCLI_OARB_PENDING__BUSY__SHIFT 0x0
+#define DAGB2_WRCLI_OARB_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB2_WRCLI_OSD_PENDING
+#define DAGB2_WRCLI_OSD_PENDING__BUSY__SHIFT 0x0
+#define DAGB2_WRCLI_OSD_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB2_WRCLI_DBUS_ASK_PENDING
+#define DAGB2_WRCLI_DBUS_ASK_PENDING__BUSY__SHIFT 0x0
+#define DAGB2_WRCLI_DBUS_ASK_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB2_WRCLI_DBUS_GO_PENDING
+#define DAGB2_WRCLI_DBUS_GO_PENDING__BUSY__SHIFT 0x0
+#define DAGB2_WRCLI_DBUS_GO_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB2_DAGB_DLY
+#define DAGB2_DAGB_DLY__DLY__SHIFT 0x0
+#define DAGB2_DAGB_DLY__CLI__SHIFT 0x8
+#define DAGB2_DAGB_DLY__POS__SHIFT 0x10
+#define DAGB2_DAGB_DLY__DLY_MASK 0x000000FFL
+#define DAGB2_DAGB_DLY__CLI_MASK 0x0000FF00L
+#define DAGB2_DAGB_DLY__POS_MASK 0x000F0000L
+//DAGB2_CNTL_MISC
+#define DAGB2_CNTL_MISC__EA_VC0_REMAP__SHIFT 0x0
+#define DAGB2_CNTL_MISC__EA_VC1_REMAP__SHIFT 0x3
+#define DAGB2_CNTL_MISC__EA_VC2_REMAP__SHIFT 0x6
+#define DAGB2_CNTL_MISC__EA_VC3_REMAP__SHIFT 0x9
+#define DAGB2_CNTL_MISC__EA_VC4_REMAP__SHIFT 0xc
+#define DAGB2_CNTL_MISC__EA_VC5_REMAP__SHIFT 0xf
+#define DAGB2_CNTL_MISC__EA_VC6_REMAP__SHIFT 0x12
+#define DAGB2_CNTL_MISC__EA_VC7_REMAP__SHIFT 0x15
+#define DAGB2_CNTL_MISC__BW_INIT_CYCLE__SHIFT 0x18
+#define DAGB2_CNTL_MISC__BW_RW_GAP_CYCLE__SHIFT 0x1e
+#define DAGB2_CNTL_MISC__EA_VC0_REMAP_MASK 0x00000007L
+#define DAGB2_CNTL_MISC__EA_VC1_REMAP_MASK 0x00000038L
+#define DAGB2_CNTL_MISC__EA_VC2_REMAP_MASK 0x000001C0L
+#define DAGB2_CNTL_MISC__EA_VC3_REMAP_MASK 0x00000E00L
+#define DAGB2_CNTL_MISC__EA_VC4_REMAP_MASK 0x00007000L
+#define DAGB2_CNTL_MISC__EA_VC5_REMAP_MASK 0x00038000L
+#define DAGB2_CNTL_MISC__EA_VC6_REMAP_MASK 0x001C0000L
+#define DAGB2_CNTL_MISC__EA_VC7_REMAP_MASK 0x00E00000L
+#define DAGB2_CNTL_MISC__BW_INIT_CYCLE_MASK 0x3F000000L
+#define DAGB2_CNTL_MISC__BW_RW_GAP_CYCLE_MASK 0xC0000000L
+//DAGB2_CNTL_MISC2
+#define DAGB2_CNTL_MISC2__URG_BOOST_ENABLE__SHIFT 0x0
+#define DAGB2_CNTL_MISC2__URG_HALT_ENABLE__SHIFT 0x1
+#define DAGB2_CNTL_MISC2__DISABLE_WRREQ_CG__SHIFT 0x2
+#define DAGB2_CNTL_MISC2__DISABLE_WRRET_CG__SHIFT 0x3
+#define DAGB2_CNTL_MISC2__DISABLE_RDREQ_CG__SHIFT 0x4
+#define DAGB2_CNTL_MISC2__DISABLE_RDRET_CG__SHIFT 0x5
+#define DAGB2_CNTL_MISC2__DISABLE_TLBWR_CG__SHIFT 0x6
+#define DAGB2_CNTL_MISC2__DISABLE_TLBRD_CG__SHIFT 0x7
+#define DAGB2_CNTL_MISC2__DISABLE_EAWRREQ_BUSY__SHIFT 0x8
+#define DAGB2_CNTL_MISC2__DISABLE_EARDREQ_BUSY__SHIFT 0x9
+#define DAGB2_CNTL_MISC2__SWAP_CTL__SHIFT 0xa
+#define DAGB2_CNTL_MISC2__RDRET_FIFO_PERF__SHIFT 0xb
+#define DAGB2_CNTL_MISC2__HDP_CID__SHIFT 0xc
+#define DAGB2_CNTL_MISC2__RDRET_FIFO_DLOCK_CREDITS__SHIFT 0x10
+#define DAGB2_CNTL_MISC2__URG_BOOST_ENABLE_MASK 0x00000001L
+#define DAGB2_CNTL_MISC2__URG_HALT_ENABLE_MASK 0x00000002L
+#define DAGB2_CNTL_MISC2__DISABLE_WRREQ_CG_MASK 0x00000004L
+#define DAGB2_CNTL_MISC2__DISABLE_WRRET_CG_MASK 0x00000008L
+#define DAGB2_CNTL_MISC2__DISABLE_RDREQ_CG_MASK 0x00000010L
+#define DAGB2_CNTL_MISC2__DISABLE_RDRET_CG_MASK 0x00000020L
+#define DAGB2_CNTL_MISC2__DISABLE_TLBWR_CG_MASK 0x00000040L
+#define DAGB2_CNTL_MISC2__DISABLE_TLBRD_CG_MASK 0x00000080L
+#define DAGB2_CNTL_MISC2__DISABLE_EAWRREQ_BUSY_MASK 0x00000100L
+#define DAGB2_CNTL_MISC2__DISABLE_EARDREQ_BUSY_MASK 0x00000200L
+#define DAGB2_CNTL_MISC2__SWAP_CTL_MASK 0x00000400L
+#define DAGB2_CNTL_MISC2__RDRET_FIFO_PERF_MASK 0x00000800L
+#define DAGB2_CNTL_MISC2__HDP_CID_MASK 0x0000F000L
+#define DAGB2_CNTL_MISC2__RDRET_FIFO_DLOCK_CREDITS_MASK 0x003F0000L
+//DAGB2_FATAL_ERROR_CNTL
+#define DAGB2_FATAL_ERROR_CNTL__FILTER_NUM__SHIFT 0x0
+#define DAGB2_FATAL_ERROR_CNTL__FILTER_NUM_MASK 0x000003FFL
+//DAGB2_FATAL_ERROR_CLEAR
+#define DAGB2_FATAL_ERROR_CLEAR__CLEAR__SHIFT 0x0
+#define DAGB2_FATAL_ERROR_CLEAR__CLEAR_MASK 0x00000001L
+//DAGB2_FATAL_ERROR_STATUS0
+#define DAGB2_FATAL_ERROR_STATUS0__VALID__SHIFT 0x0
+#define DAGB2_FATAL_ERROR_STATUS0__CID__SHIFT 0x1
+#define DAGB2_FATAL_ERROR_STATUS0__ADDR_LO__SHIFT 0x6
+#define DAGB2_FATAL_ERROR_STATUS0__VALID_MASK 0x00000001L
+#define DAGB2_FATAL_ERROR_STATUS0__CID_MASK 0x0000003EL
+#define DAGB2_FATAL_ERROR_STATUS0__ADDR_LO_MASK 0xFFFFFFC0L
+//DAGB2_FATAL_ERROR_STATUS1
+#define DAGB2_FATAL_ERROR_STATUS1__ADDR_HI__SHIFT 0x0
+#define DAGB2_FATAL_ERROR_STATUS1__ADDR_HI_MASK 0x0001FFFFL
+//DAGB2_FATAL_ERROR_STATUS2
+#define DAGB2_FATAL_ERROR_STATUS2__TAG__SHIFT 0x0
+#define DAGB2_FATAL_ERROR_STATUS2__VFID__SHIFT 0x10
+#define DAGB2_FATAL_ERROR_STATUS2__VF__SHIFT 0x14
+#define DAGB2_FATAL_ERROR_STATUS2__SPACE__SHIFT 0x15
+#define DAGB2_FATAL_ERROR_STATUS2__IO__SHIFT 0x16
+#define DAGB2_FATAL_ERROR_STATUS2__SIZE__SHIFT 0x17
+#define DAGB2_FATAL_ERROR_STATUS2__DBGMSK__SHIFT 0x18
+#define DAGB2_FATAL_ERROR_STATUS2__FED__SHIFT 0x19
+#define DAGB2_FATAL_ERROR_STATUS2__TAG_MASK 0x0000FFFFL
+#define DAGB2_FATAL_ERROR_STATUS2__VFID_MASK 0x000F0000L
+#define DAGB2_FATAL_ERROR_STATUS2__VF_MASK 0x00100000L
+#define DAGB2_FATAL_ERROR_STATUS2__SPACE_MASK 0x00200000L
+#define DAGB2_FATAL_ERROR_STATUS2__IO_MASK 0x00400000L
+#define DAGB2_FATAL_ERROR_STATUS2__SIZE_MASK 0x00800000L
+#define DAGB2_FATAL_ERROR_STATUS2__DBGMSK_MASK 0x01000000L
+#define DAGB2_FATAL_ERROR_STATUS2__FED_MASK 0x02000000L
+//DAGB2_FATAL_ERROR_STATUS3
+#define DAGB2_FATAL_ERROR_STATUS3__NOALLOC__SHIFT 0x0
+#define DAGB2_FATAL_ERROR_STATUS3__UNITID__SHIFT 0x1
+#define DAGB2_FATAL_ERROR_STATUS3__OP__SHIFT 0x7
+#define DAGB2_FATAL_ERROR_STATUS3__SECLEVEL__SHIFT 0xe
+#define DAGB2_FATAL_ERROR_STATUS3__WRTMZ__SHIFT 0x11
+#define DAGB2_FATAL_ERROR_STATUS3__RDTMZ__SHIFT 0x12
+#define DAGB2_FATAL_ERROR_STATUS3__SNOOP__SHIFT 0x13
+#define DAGB2_FATAL_ERROR_STATUS3__INVAL__SHIFT 0x14
+#define DAGB2_FATAL_ERROR_STATUS3__NACK__SHIFT 0x15
+#define DAGB2_FATAL_ERROR_STATUS3__RO__SHIFT 0x17
+#define DAGB2_FATAL_ERROR_STATUS3__MEMLOG__SHIFT 0x18
+#define DAGB2_FATAL_ERROR_STATUS3__EOP__SHIFT 0x19
+#define DAGB2_FATAL_ERROR_STATUS3__NOALLOC_MASK 0x00000001L
+#define DAGB2_FATAL_ERROR_STATUS3__UNITID_MASK 0x0000007EL
+#define DAGB2_FATAL_ERROR_STATUS3__OP_MASK 0x00003F80L
+#define DAGB2_FATAL_ERROR_STATUS3__SECLEVEL_MASK 0x0001C000L
+#define DAGB2_FATAL_ERROR_STATUS3__WRTMZ_MASK 0x00020000L
+#define DAGB2_FATAL_ERROR_STATUS3__RDTMZ_MASK 0x00040000L
+#define DAGB2_FATAL_ERROR_STATUS3__SNOOP_MASK 0x00080000L
+#define DAGB2_FATAL_ERROR_STATUS3__INVAL_MASK 0x00100000L
+#define DAGB2_FATAL_ERROR_STATUS3__NACK_MASK 0x00600000L
+#define DAGB2_FATAL_ERROR_STATUS3__RO_MASK 0x00800000L
+#define DAGB2_FATAL_ERROR_STATUS3__MEMLOG_MASK 0x01000000L
+#define DAGB2_FATAL_ERROR_STATUS3__EOP_MASK 0x02000000L
+//DAGB2_FIFO_EMPTY
+#define DAGB2_FIFO_EMPTY__EMPTY__SHIFT 0x0
+#define DAGB2_FIFO_EMPTY__EMPTY_MASK 0x00FFFFFFL
+//DAGB2_FIFO_FULL
+#define DAGB2_FIFO_FULL__FULL__SHIFT 0x0
+#define DAGB2_FIFO_FULL__FULL_MASK 0x007FFFFFL
+//DAGB2_WR_CREDITS_FULL
+#define DAGB2_WR_CREDITS_FULL__FULL__SHIFT 0x0
+#define DAGB2_WR_CREDITS_FULL__FULL_MASK 0x1FFFFFFFL
+//DAGB2_RD_CREDITS_FULL
+#define DAGB2_RD_CREDITS_FULL__FULL__SHIFT 0x0
+#define DAGB2_RD_CREDITS_FULL__FULL_MASK 0x0003FFFFL
+//DAGB2_PERFCOUNTER_LO
+#define DAGB2_PERFCOUNTER_LO__COUNTER_LO__SHIFT 0x0
+#define DAGB2_PERFCOUNTER_LO__COUNTER_LO_MASK 0xFFFFFFFFL
+//DAGB2_PERFCOUNTER_HI
+#define DAGB2_PERFCOUNTER_HI__COUNTER_HI__SHIFT 0x0
+#define DAGB2_PERFCOUNTER_HI__COMPARE_VALUE__SHIFT 0x10
+#define DAGB2_PERFCOUNTER_HI__COUNTER_HI_MASK 0x0000FFFFL
+#define DAGB2_PERFCOUNTER_HI__COMPARE_VALUE_MASK 0xFFFF0000L
+//DAGB2_PERFCOUNTER0_CFG
+#define DAGB2_PERFCOUNTER0_CFG__PERF_SEL__SHIFT 0x0
+#define DAGB2_PERFCOUNTER0_CFG__PERF_SEL_END__SHIFT 0x8
+#define DAGB2_PERFCOUNTER0_CFG__PERF_MODE__SHIFT 0x18
+#define DAGB2_PERFCOUNTER0_CFG__ENABLE__SHIFT 0x1c
+#define DAGB2_PERFCOUNTER0_CFG__CLEAR__SHIFT 0x1d
+#define DAGB2_PERFCOUNTER0_CFG__PERF_SEL_MASK 0x000000FFL
+#define DAGB2_PERFCOUNTER0_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define DAGB2_PERFCOUNTER0_CFG__PERF_MODE_MASK 0x0F000000L
+#define DAGB2_PERFCOUNTER0_CFG__ENABLE_MASK 0x10000000L
+#define DAGB2_PERFCOUNTER0_CFG__CLEAR_MASK 0x20000000L
+//DAGB2_PERFCOUNTER1_CFG
+#define DAGB2_PERFCOUNTER1_CFG__PERF_SEL__SHIFT 0x0
+#define DAGB2_PERFCOUNTER1_CFG__PERF_SEL_END__SHIFT 0x8
+#define DAGB2_PERFCOUNTER1_CFG__PERF_MODE__SHIFT 0x18
+#define DAGB2_PERFCOUNTER1_CFG__ENABLE__SHIFT 0x1c
+#define DAGB2_PERFCOUNTER1_CFG__CLEAR__SHIFT 0x1d
+#define DAGB2_PERFCOUNTER1_CFG__PERF_SEL_MASK 0x000000FFL
+#define DAGB2_PERFCOUNTER1_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define DAGB2_PERFCOUNTER1_CFG__PERF_MODE_MASK 0x0F000000L
+#define DAGB2_PERFCOUNTER1_CFG__ENABLE_MASK 0x10000000L
+#define DAGB2_PERFCOUNTER1_CFG__CLEAR_MASK 0x20000000L
+//DAGB2_PERFCOUNTER2_CFG
+#define DAGB2_PERFCOUNTER2_CFG__PERF_SEL__SHIFT 0x0
+#define DAGB2_PERFCOUNTER2_CFG__PERF_SEL_END__SHIFT 0x8
+#define DAGB2_PERFCOUNTER2_CFG__PERF_MODE__SHIFT 0x18
+#define DAGB2_PERFCOUNTER2_CFG__ENABLE__SHIFT 0x1c
+#define DAGB2_PERFCOUNTER2_CFG__CLEAR__SHIFT 0x1d
+#define DAGB2_PERFCOUNTER2_CFG__PERF_SEL_MASK 0x000000FFL
+#define DAGB2_PERFCOUNTER2_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define DAGB2_PERFCOUNTER2_CFG__PERF_MODE_MASK 0x0F000000L
+#define DAGB2_PERFCOUNTER2_CFG__ENABLE_MASK 0x10000000L
+#define DAGB2_PERFCOUNTER2_CFG__CLEAR_MASK 0x20000000L
+//DAGB2_PERFCOUNTER_RSLT_CNTL
+#define DAGB2_PERFCOUNTER_RSLT_CNTL__PERF_COUNTER_SELECT__SHIFT 0x0
+#define DAGB2_PERFCOUNTER_RSLT_CNTL__START_TRIGGER__SHIFT 0x8
+#define DAGB2_PERFCOUNTER_RSLT_CNTL__STOP_TRIGGER__SHIFT 0x10
+#define DAGB2_PERFCOUNTER_RSLT_CNTL__ENABLE_ANY__SHIFT 0x18
+#define DAGB2_PERFCOUNTER_RSLT_CNTL__CLEAR_ALL__SHIFT 0x19
+#define DAGB2_PERFCOUNTER_RSLT_CNTL__STOP_ALL_ON_SATURATE__SHIFT 0x1a
+#define DAGB2_PERFCOUNTER_RSLT_CNTL__PERF_COUNTER_SELECT_MASK 0x0000000FL
+#define DAGB2_PERFCOUNTER_RSLT_CNTL__START_TRIGGER_MASK 0x0000FF00L
+#define DAGB2_PERFCOUNTER_RSLT_CNTL__STOP_TRIGGER_MASK 0x00FF0000L
+#define DAGB2_PERFCOUNTER_RSLT_CNTL__ENABLE_ANY_MASK 0x01000000L
+#define DAGB2_PERFCOUNTER_RSLT_CNTL__CLEAR_ALL_MASK 0x02000000L
+#define DAGB2_PERFCOUNTER_RSLT_CNTL__STOP_ALL_ON_SATURATE_MASK 0x04000000L
+//DAGB2_L1TLB_REG_RW
+#define DAGB2_L1TLB_REG_RW__REG_WRITE_L1TLB_CTRL__SHIFT 0x0
+#define DAGB2_L1TLB_REG_RW__REG_READ_L1TLB_CTRL__SHIFT 0x1
+#define DAGB2_L1TLB_REG_RW__VMID_EXCEP_INT_CTRL__SHIFT 0x2
+#define DAGB2_L1TLB_REG_RW__WDAT_PARITY_CHECK__SHIFT 0x4
+#define DAGB2_L1TLB_REG_RW__DISABLE_RDRET_CHECK__SHIFT 0x5
+#define DAGB2_L1TLB_REG_RW__RESERVE__SHIFT 0x6
+#define DAGB2_L1TLB_REG_RW__REG_WRITE_L1TLB_CTRL_MASK 0x00000001L
+#define DAGB2_L1TLB_REG_RW__REG_READ_L1TLB_CTRL_MASK 0x00000002L
+#define DAGB2_L1TLB_REG_RW__VMID_EXCEP_INT_CTRL_MASK 0x00000004L
+#define DAGB2_L1TLB_REG_RW__WDAT_PARITY_CHECK_MASK 0x00000010L
+#define DAGB2_L1TLB_REG_RW__DISABLE_RDRET_CHECK_MASK 0x00000020L
+#define DAGB2_L1TLB_REG_RW__RESERVE_MASK 0xFFFFFFC0L
+
+
+// addressBlock: aid_mmhub_dagb_dagbdec3
+//DAGB3_RDCLI0
+#define DAGB3_RDCLI0__VIRT_CHAN__SHIFT 0x0
+#define DAGB3_RDCLI0__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB3_RDCLI0__URG_HIGH__SHIFT 0x4
+#define DAGB3_RDCLI0__URG_LOW__SHIFT 0x8
+#define DAGB3_RDCLI0__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB3_RDCLI0__MAX_BW__SHIFT 0xd
+#define DAGB3_RDCLI0__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB3_RDCLI0__MIN_BW__SHIFT 0x16
+#define DAGB3_RDCLI0__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB3_RDCLI0__MAX_OSD__SHIFT 0x1a
+#define DAGB3_RDCLI0__VIRT_CHAN_MASK 0x00000007L
+#define DAGB3_RDCLI0__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB3_RDCLI0__URG_HIGH_MASK 0x000000F0L
+#define DAGB3_RDCLI0__URG_LOW_MASK 0x00000F00L
+#define DAGB3_RDCLI0__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB3_RDCLI0__MAX_BW_MASK 0x001FE000L
+#define DAGB3_RDCLI0__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB3_RDCLI0__MIN_BW_MASK 0x01C00000L
+#define DAGB3_RDCLI0__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB3_RDCLI0__MAX_OSD_MASK 0xFC000000L
+//DAGB3_RDCLI1
+#define DAGB3_RDCLI1__VIRT_CHAN__SHIFT 0x0
+#define DAGB3_RDCLI1__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB3_RDCLI1__URG_HIGH__SHIFT 0x4
+#define DAGB3_RDCLI1__URG_LOW__SHIFT 0x8
+#define DAGB3_RDCLI1__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB3_RDCLI1__MAX_BW__SHIFT 0xd
+#define DAGB3_RDCLI1__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB3_RDCLI1__MIN_BW__SHIFT 0x16
+#define DAGB3_RDCLI1__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB3_RDCLI1__MAX_OSD__SHIFT 0x1a
+#define DAGB3_RDCLI1__VIRT_CHAN_MASK 0x00000007L
+#define DAGB3_RDCLI1__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB3_RDCLI1__URG_HIGH_MASK 0x000000F0L
+#define DAGB3_RDCLI1__URG_LOW_MASK 0x00000F00L
+#define DAGB3_RDCLI1__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB3_RDCLI1__MAX_BW_MASK 0x001FE000L
+#define DAGB3_RDCLI1__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB3_RDCLI1__MIN_BW_MASK 0x01C00000L
+#define DAGB3_RDCLI1__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB3_RDCLI1__MAX_OSD_MASK 0xFC000000L
+//DAGB3_RDCLI2
+#define DAGB3_RDCLI2__VIRT_CHAN__SHIFT 0x0
+#define DAGB3_RDCLI2__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB3_RDCLI2__URG_HIGH__SHIFT 0x4
+#define DAGB3_RDCLI2__URG_LOW__SHIFT 0x8
+#define DAGB3_RDCLI2__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB3_RDCLI2__MAX_BW__SHIFT 0xd
+#define DAGB3_RDCLI2__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB3_RDCLI2__MIN_BW__SHIFT 0x16
+#define DAGB3_RDCLI2__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB3_RDCLI2__MAX_OSD__SHIFT 0x1a
+#define DAGB3_RDCLI2__VIRT_CHAN_MASK 0x00000007L
+#define DAGB3_RDCLI2__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB3_RDCLI2__URG_HIGH_MASK 0x000000F0L
+#define DAGB3_RDCLI2__URG_LOW_MASK 0x00000F00L
+#define DAGB3_RDCLI2__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB3_RDCLI2__MAX_BW_MASK 0x001FE000L
+#define DAGB3_RDCLI2__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB3_RDCLI2__MIN_BW_MASK 0x01C00000L
+#define DAGB3_RDCLI2__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB3_RDCLI2__MAX_OSD_MASK 0xFC000000L
+//DAGB3_RDCLI3
+#define DAGB3_RDCLI3__VIRT_CHAN__SHIFT 0x0
+#define DAGB3_RDCLI3__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB3_RDCLI3__URG_HIGH__SHIFT 0x4
+#define DAGB3_RDCLI3__URG_LOW__SHIFT 0x8
+#define DAGB3_RDCLI3__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB3_RDCLI3__MAX_BW__SHIFT 0xd
+#define DAGB3_RDCLI3__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB3_RDCLI3__MIN_BW__SHIFT 0x16
+#define DAGB3_RDCLI3__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB3_RDCLI3__MAX_OSD__SHIFT 0x1a
+#define DAGB3_RDCLI3__VIRT_CHAN_MASK 0x00000007L
+#define DAGB3_RDCLI3__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB3_RDCLI3__URG_HIGH_MASK 0x000000F0L
+#define DAGB3_RDCLI3__URG_LOW_MASK 0x00000F00L
+#define DAGB3_RDCLI3__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB3_RDCLI3__MAX_BW_MASK 0x001FE000L
+#define DAGB3_RDCLI3__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB3_RDCLI3__MIN_BW_MASK 0x01C00000L
+#define DAGB3_RDCLI3__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB3_RDCLI3__MAX_OSD_MASK 0xFC000000L
+//DAGB3_RDCLI4
+#define DAGB3_RDCLI4__VIRT_CHAN__SHIFT 0x0
+#define DAGB3_RDCLI4__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB3_RDCLI4__URG_HIGH__SHIFT 0x4
+#define DAGB3_RDCLI4__URG_LOW__SHIFT 0x8
+#define DAGB3_RDCLI4__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB3_RDCLI4__MAX_BW__SHIFT 0xd
+#define DAGB3_RDCLI4__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB3_RDCLI4__MIN_BW__SHIFT 0x16
+#define DAGB3_RDCLI4__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB3_RDCLI4__MAX_OSD__SHIFT 0x1a
+#define DAGB3_RDCLI4__VIRT_CHAN_MASK 0x00000007L
+#define DAGB3_RDCLI4__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB3_RDCLI4__URG_HIGH_MASK 0x000000F0L
+#define DAGB3_RDCLI4__URG_LOW_MASK 0x00000F00L
+#define DAGB3_RDCLI4__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB3_RDCLI4__MAX_BW_MASK 0x001FE000L
+#define DAGB3_RDCLI4__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB3_RDCLI4__MIN_BW_MASK 0x01C00000L
+#define DAGB3_RDCLI4__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB3_RDCLI4__MAX_OSD_MASK 0xFC000000L
+//DAGB3_RDCLI5
+#define DAGB3_RDCLI5__VIRT_CHAN__SHIFT 0x0
+#define DAGB3_RDCLI5__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB3_RDCLI5__URG_HIGH__SHIFT 0x4
+#define DAGB3_RDCLI5__URG_LOW__SHIFT 0x8
+#define DAGB3_RDCLI5__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB3_RDCLI5__MAX_BW__SHIFT 0xd
+#define DAGB3_RDCLI5__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB3_RDCLI5__MIN_BW__SHIFT 0x16
+#define DAGB3_RDCLI5__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB3_RDCLI5__MAX_OSD__SHIFT 0x1a
+#define DAGB3_RDCLI5__VIRT_CHAN_MASK 0x00000007L
+#define DAGB3_RDCLI5__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB3_RDCLI5__URG_HIGH_MASK 0x000000F0L
+#define DAGB3_RDCLI5__URG_LOW_MASK 0x00000F00L
+#define DAGB3_RDCLI5__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB3_RDCLI5__MAX_BW_MASK 0x001FE000L
+#define DAGB3_RDCLI5__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB3_RDCLI5__MIN_BW_MASK 0x01C00000L
+#define DAGB3_RDCLI5__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB3_RDCLI5__MAX_OSD_MASK 0xFC000000L
+//DAGB3_RDCLI6
+#define DAGB3_RDCLI6__VIRT_CHAN__SHIFT 0x0
+#define DAGB3_RDCLI6__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB3_RDCLI6__URG_HIGH__SHIFT 0x4
+#define DAGB3_RDCLI6__URG_LOW__SHIFT 0x8
+#define DAGB3_RDCLI6__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB3_RDCLI6__MAX_BW__SHIFT 0xd
+#define DAGB3_RDCLI6__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB3_RDCLI6__MIN_BW__SHIFT 0x16
+#define DAGB3_RDCLI6__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB3_RDCLI6__MAX_OSD__SHIFT 0x1a
+#define DAGB3_RDCLI6__VIRT_CHAN_MASK 0x00000007L
+#define DAGB3_RDCLI6__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB3_RDCLI6__URG_HIGH_MASK 0x000000F0L
+#define DAGB3_RDCLI6__URG_LOW_MASK 0x00000F00L
+#define DAGB3_RDCLI6__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB3_RDCLI6__MAX_BW_MASK 0x001FE000L
+#define DAGB3_RDCLI6__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB3_RDCLI6__MIN_BW_MASK 0x01C00000L
+#define DAGB3_RDCLI6__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB3_RDCLI6__MAX_OSD_MASK 0xFC000000L
+//DAGB3_RDCLI7
+#define DAGB3_RDCLI7__VIRT_CHAN__SHIFT 0x0
+#define DAGB3_RDCLI7__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB3_RDCLI7__URG_HIGH__SHIFT 0x4
+#define DAGB3_RDCLI7__URG_LOW__SHIFT 0x8
+#define DAGB3_RDCLI7__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB3_RDCLI7__MAX_BW__SHIFT 0xd
+#define DAGB3_RDCLI7__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB3_RDCLI7__MIN_BW__SHIFT 0x16
+#define DAGB3_RDCLI7__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB3_RDCLI7__MAX_OSD__SHIFT 0x1a
+#define DAGB3_RDCLI7__VIRT_CHAN_MASK 0x00000007L
+#define DAGB3_RDCLI7__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB3_RDCLI7__URG_HIGH_MASK 0x000000F0L
+#define DAGB3_RDCLI7__URG_LOW_MASK 0x00000F00L
+#define DAGB3_RDCLI7__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB3_RDCLI7__MAX_BW_MASK 0x001FE000L
+#define DAGB3_RDCLI7__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB3_RDCLI7__MIN_BW_MASK 0x01C00000L
+#define DAGB3_RDCLI7__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB3_RDCLI7__MAX_OSD_MASK 0xFC000000L
+//DAGB3_RDCLI8
+#define DAGB3_RDCLI8__VIRT_CHAN__SHIFT 0x0
+#define DAGB3_RDCLI8__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB3_RDCLI8__URG_HIGH__SHIFT 0x4
+#define DAGB3_RDCLI8__URG_LOW__SHIFT 0x8
+#define DAGB3_RDCLI8__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB3_RDCLI8__MAX_BW__SHIFT 0xd
+#define DAGB3_RDCLI8__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB3_RDCLI8__MIN_BW__SHIFT 0x16
+#define DAGB3_RDCLI8__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB3_RDCLI8__MAX_OSD__SHIFT 0x1a
+#define DAGB3_RDCLI8__VIRT_CHAN_MASK 0x00000007L
+#define DAGB3_RDCLI8__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB3_RDCLI8__URG_HIGH_MASK 0x000000F0L
+#define DAGB3_RDCLI8__URG_LOW_MASK 0x00000F00L
+#define DAGB3_RDCLI8__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB3_RDCLI8__MAX_BW_MASK 0x001FE000L
+#define DAGB3_RDCLI8__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB3_RDCLI8__MIN_BW_MASK 0x01C00000L
+#define DAGB3_RDCLI8__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB3_RDCLI8__MAX_OSD_MASK 0xFC000000L
+//DAGB3_RDCLI9
+#define DAGB3_RDCLI9__VIRT_CHAN__SHIFT 0x0
+#define DAGB3_RDCLI9__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB3_RDCLI9__URG_HIGH__SHIFT 0x4
+#define DAGB3_RDCLI9__URG_LOW__SHIFT 0x8
+#define DAGB3_RDCLI9__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB3_RDCLI9__MAX_BW__SHIFT 0xd
+#define DAGB3_RDCLI9__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB3_RDCLI9__MIN_BW__SHIFT 0x16
+#define DAGB3_RDCLI9__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB3_RDCLI9__MAX_OSD__SHIFT 0x1a
+#define DAGB3_RDCLI9__VIRT_CHAN_MASK 0x00000007L
+#define DAGB3_RDCLI9__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB3_RDCLI9__URG_HIGH_MASK 0x000000F0L
+#define DAGB3_RDCLI9__URG_LOW_MASK 0x00000F00L
+#define DAGB3_RDCLI9__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB3_RDCLI9__MAX_BW_MASK 0x001FE000L
+#define DAGB3_RDCLI9__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB3_RDCLI9__MIN_BW_MASK 0x01C00000L
+#define DAGB3_RDCLI9__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB3_RDCLI9__MAX_OSD_MASK 0xFC000000L
+//DAGB3_RDCLI10
+#define DAGB3_RDCLI10__VIRT_CHAN__SHIFT 0x0
+#define DAGB3_RDCLI10__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB3_RDCLI10__URG_HIGH__SHIFT 0x4
+#define DAGB3_RDCLI10__URG_LOW__SHIFT 0x8
+#define DAGB3_RDCLI10__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB3_RDCLI10__MAX_BW__SHIFT 0xd
+#define DAGB3_RDCLI10__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB3_RDCLI10__MIN_BW__SHIFT 0x16
+#define DAGB3_RDCLI10__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB3_RDCLI10__MAX_OSD__SHIFT 0x1a
+#define DAGB3_RDCLI10__VIRT_CHAN_MASK 0x00000007L
+#define DAGB3_RDCLI10__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB3_RDCLI10__URG_HIGH_MASK 0x000000F0L
+#define DAGB3_RDCLI10__URG_LOW_MASK 0x00000F00L
+#define DAGB3_RDCLI10__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB3_RDCLI10__MAX_BW_MASK 0x001FE000L
+#define DAGB3_RDCLI10__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB3_RDCLI10__MIN_BW_MASK 0x01C00000L
+#define DAGB3_RDCLI10__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB3_RDCLI10__MAX_OSD_MASK 0xFC000000L
+//DAGB3_RDCLI11
+#define DAGB3_RDCLI11__VIRT_CHAN__SHIFT 0x0
+#define DAGB3_RDCLI11__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB3_RDCLI11__URG_HIGH__SHIFT 0x4
+#define DAGB3_RDCLI11__URG_LOW__SHIFT 0x8
+#define DAGB3_RDCLI11__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB3_RDCLI11__MAX_BW__SHIFT 0xd
+#define DAGB3_RDCLI11__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB3_RDCLI11__MIN_BW__SHIFT 0x16
+#define DAGB3_RDCLI11__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB3_RDCLI11__MAX_OSD__SHIFT 0x1a
+#define DAGB3_RDCLI11__VIRT_CHAN_MASK 0x00000007L
+#define DAGB3_RDCLI11__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB3_RDCLI11__URG_HIGH_MASK 0x000000F0L
+#define DAGB3_RDCLI11__URG_LOW_MASK 0x00000F00L
+#define DAGB3_RDCLI11__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB3_RDCLI11__MAX_BW_MASK 0x001FE000L
+#define DAGB3_RDCLI11__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB3_RDCLI11__MIN_BW_MASK 0x01C00000L
+#define DAGB3_RDCLI11__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB3_RDCLI11__MAX_OSD_MASK 0xFC000000L
+//DAGB3_RDCLI12
+#define DAGB3_RDCLI12__VIRT_CHAN__SHIFT 0x0
+#define DAGB3_RDCLI12__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB3_RDCLI12__URG_HIGH__SHIFT 0x4
+#define DAGB3_RDCLI12__URG_LOW__SHIFT 0x8
+#define DAGB3_RDCLI12__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB3_RDCLI12__MAX_BW__SHIFT 0xd
+#define DAGB3_RDCLI12__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB3_RDCLI12__MIN_BW__SHIFT 0x16
+#define DAGB3_RDCLI12__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB3_RDCLI12__MAX_OSD__SHIFT 0x1a
+#define DAGB3_RDCLI12__VIRT_CHAN_MASK 0x00000007L
+#define DAGB3_RDCLI12__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB3_RDCLI12__URG_HIGH_MASK 0x000000F0L
+#define DAGB3_RDCLI12__URG_LOW_MASK 0x00000F00L
+#define DAGB3_RDCLI12__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB3_RDCLI12__MAX_BW_MASK 0x001FE000L
+#define DAGB3_RDCLI12__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB3_RDCLI12__MIN_BW_MASK 0x01C00000L
+#define DAGB3_RDCLI12__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB3_RDCLI12__MAX_OSD_MASK 0xFC000000L
+//DAGB3_RDCLI13
+#define DAGB3_RDCLI13__VIRT_CHAN__SHIFT 0x0
+#define DAGB3_RDCLI13__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB3_RDCLI13__URG_HIGH__SHIFT 0x4
+#define DAGB3_RDCLI13__URG_LOW__SHIFT 0x8
+#define DAGB3_RDCLI13__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB3_RDCLI13__MAX_BW__SHIFT 0xd
+#define DAGB3_RDCLI13__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB3_RDCLI13__MIN_BW__SHIFT 0x16
+#define DAGB3_RDCLI13__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB3_RDCLI13__MAX_OSD__SHIFT 0x1a
+#define DAGB3_RDCLI13__VIRT_CHAN_MASK 0x00000007L
+#define DAGB3_RDCLI13__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB3_RDCLI13__URG_HIGH_MASK 0x000000F0L
+#define DAGB3_RDCLI13__URG_LOW_MASK 0x00000F00L
+#define DAGB3_RDCLI13__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB3_RDCLI13__MAX_BW_MASK 0x001FE000L
+#define DAGB3_RDCLI13__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB3_RDCLI13__MIN_BW_MASK 0x01C00000L
+#define DAGB3_RDCLI13__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB3_RDCLI13__MAX_OSD_MASK 0xFC000000L
+//DAGB3_RDCLI14
+#define DAGB3_RDCLI14__VIRT_CHAN__SHIFT 0x0
+#define DAGB3_RDCLI14__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB3_RDCLI14__URG_HIGH__SHIFT 0x4
+#define DAGB3_RDCLI14__URG_LOW__SHIFT 0x8
+#define DAGB3_RDCLI14__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB3_RDCLI14__MAX_BW__SHIFT 0xd
+#define DAGB3_RDCLI14__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB3_RDCLI14__MIN_BW__SHIFT 0x16
+#define DAGB3_RDCLI14__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB3_RDCLI14__MAX_OSD__SHIFT 0x1a
+#define DAGB3_RDCLI14__VIRT_CHAN_MASK 0x00000007L
+#define DAGB3_RDCLI14__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB3_RDCLI14__URG_HIGH_MASK 0x000000F0L
+#define DAGB3_RDCLI14__URG_LOW_MASK 0x00000F00L
+#define DAGB3_RDCLI14__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB3_RDCLI14__MAX_BW_MASK 0x001FE000L
+#define DAGB3_RDCLI14__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB3_RDCLI14__MIN_BW_MASK 0x01C00000L
+#define DAGB3_RDCLI14__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB3_RDCLI14__MAX_OSD_MASK 0xFC000000L
+//DAGB3_RDCLI15
+#define DAGB3_RDCLI15__VIRT_CHAN__SHIFT 0x0
+#define DAGB3_RDCLI15__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB3_RDCLI15__URG_HIGH__SHIFT 0x4
+#define DAGB3_RDCLI15__URG_LOW__SHIFT 0x8
+#define DAGB3_RDCLI15__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB3_RDCLI15__MAX_BW__SHIFT 0xd
+#define DAGB3_RDCLI15__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB3_RDCLI15__MIN_BW__SHIFT 0x16
+#define DAGB3_RDCLI15__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB3_RDCLI15__MAX_OSD__SHIFT 0x1a
+#define DAGB3_RDCLI15__VIRT_CHAN_MASK 0x00000007L
+#define DAGB3_RDCLI15__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB3_RDCLI15__URG_HIGH_MASK 0x000000F0L
+#define DAGB3_RDCLI15__URG_LOW_MASK 0x00000F00L
+#define DAGB3_RDCLI15__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB3_RDCLI15__MAX_BW_MASK 0x001FE000L
+#define DAGB3_RDCLI15__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB3_RDCLI15__MIN_BW_MASK 0x01C00000L
+#define DAGB3_RDCLI15__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB3_RDCLI15__MAX_OSD_MASK 0xFC000000L
+//DAGB3_RD_CNTL
+#define DAGB3_RD_CNTL__SCLK_FREQ__SHIFT 0x0
+#define DAGB3_RD_CNTL__CLI_MAX_BW_WINDOW__SHIFT 0x4
+#define DAGB3_RD_CNTL__VC_MAX_BW_WINDOW__SHIFT 0xa
+#define DAGB3_RD_CNTL__IO_LEVEL_OVERRIDE_ENABLE__SHIFT 0x10
+#define DAGB3_RD_CNTL__IO_LEVEL__SHIFT 0x11
+#define DAGB3_RD_CNTL__IO_LEVEL_COMPLY_VC__SHIFT 0x14
+#define DAGB3_RD_CNTL__SHARE_VC_NUM__SHIFT 0x17
+#define DAGB3_RD_CNTL__FIX_JUMP__SHIFT 0x1a
+#define DAGB3_RD_CNTL__SCLK_FREQ_MASK 0x0000000FL
+#define DAGB3_RD_CNTL__CLI_MAX_BW_WINDOW_MASK 0x000003F0L
+#define DAGB3_RD_CNTL__VC_MAX_BW_WINDOW_MASK 0x0000FC00L
+#define DAGB3_RD_CNTL__IO_LEVEL_OVERRIDE_ENABLE_MASK 0x00010000L
+#define DAGB3_RD_CNTL__IO_LEVEL_MASK 0x000E0000L
+#define DAGB3_RD_CNTL__IO_LEVEL_COMPLY_VC_MASK 0x00700000L
+#define DAGB3_RD_CNTL__SHARE_VC_NUM_MASK 0x03800000L
+#define DAGB3_RD_CNTL__FIX_JUMP_MASK 0x04000000L
+//DAGB3_RD_GMI_CNTL
+#define DAGB3_RD_GMI_CNTL__EA_CREDIT__SHIFT 0x0
+#define DAGB3_RD_GMI_CNTL__LEVEL__SHIFT 0x6
+#define DAGB3_RD_GMI_CNTL__MAX_BURST__SHIFT 0x9
+#define DAGB3_RD_GMI_CNTL__LAZY_TIMER__SHIFT 0xd
+#define DAGB3_RD_GMI_CNTL__EA_CREDIT_MASK 0x0000003FL
+#define DAGB3_RD_GMI_CNTL__LEVEL_MASK 0x000001C0L
+#define DAGB3_RD_GMI_CNTL__MAX_BURST_MASK 0x00001E00L
+#define DAGB3_RD_GMI_CNTL__LAZY_TIMER_MASK 0x0001E000L
+//DAGB3_RD_ADDR_DAGB
+#define DAGB3_RD_ADDR_DAGB__DAGB_ENABLE__SHIFT 0x0
+#define DAGB3_RD_ADDR_DAGB__ENABLE_JUMP_AHEAD__SHIFT 0x3
+#define DAGB3_RD_ADDR_DAGB__DISABLE_SELF_INIT__SHIFT 0x6
+#define DAGB3_RD_ADDR_DAGB__WHOAMI__SHIFT 0x7
+#define DAGB3_RD_ADDR_DAGB__JUMP_MODE__SHIFT 0xd
+#define DAGB3_RD_ADDR_DAGB__DAGB_ENABLE_MASK 0x00000007L
+#define DAGB3_RD_ADDR_DAGB__ENABLE_JUMP_AHEAD_MASK 0x00000038L
+#define DAGB3_RD_ADDR_DAGB__DISABLE_SELF_INIT_MASK 0x00000040L
+#define DAGB3_RD_ADDR_DAGB__WHOAMI_MASK 0x00001F80L
+#define DAGB3_RD_ADDR_DAGB__JUMP_MODE_MASK 0x00002000L
+//DAGB3_RD_OUTPUT_DAGB_MAX_BURST
+#define DAGB3_RD_OUTPUT_DAGB_MAX_BURST__VC0__SHIFT 0x0
+#define DAGB3_RD_OUTPUT_DAGB_MAX_BURST__VC1__SHIFT 0x4
+#define DAGB3_RD_OUTPUT_DAGB_MAX_BURST__VC2__SHIFT 0x8
+#define DAGB3_RD_OUTPUT_DAGB_MAX_BURST__VC3__SHIFT 0xc
+#define DAGB3_RD_OUTPUT_DAGB_MAX_BURST__VC4__SHIFT 0x10
+#define DAGB3_RD_OUTPUT_DAGB_MAX_BURST__VC5__SHIFT 0x14
+#define DAGB3_RD_OUTPUT_DAGB_MAX_BURST__VC6__SHIFT 0x18
+#define DAGB3_RD_OUTPUT_DAGB_MAX_BURST__VC7__SHIFT 0x1c
+#define DAGB3_RD_OUTPUT_DAGB_MAX_BURST__VC0_MASK 0x0000000FL
+#define DAGB3_RD_OUTPUT_DAGB_MAX_BURST__VC1_MASK 0x000000F0L
+#define DAGB3_RD_OUTPUT_DAGB_MAX_BURST__VC2_MASK 0x00000F00L
+#define DAGB3_RD_OUTPUT_DAGB_MAX_BURST__VC3_MASK 0x0000F000L
+#define DAGB3_RD_OUTPUT_DAGB_MAX_BURST__VC4_MASK 0x000F0000L
+#define DAGB3_RD_OUTPUT_DAGB_MAX_BURST__VC5_MASK 0x00F00000L
+#define DAGB3_RD_OUTPUT_DAGB_MAX_BURST__VC6_MASK 0x0F000000L
+#define DAGB3_RD_OUTPUT_DAGB_MAX_BURST__VC7_MASK 0xF0000000L
+//DAGB3_RD_OUTPUT_DAGB_LAZY_TIMER
+#define DAGB3_RD_OUTPUT_DAGB_LAZY_TIMER__VC0__SHIFT 0x0
+#define DAGB3_RD_OUTPUT_DAGB_LAZY_TIMER__VC1__SHIFT 0x4
+#define DAGB3_RD_OUTPUT_DAGB_LAZY_TIMER__VC2__SHIFT 0x8
+#define DAGB3_RD_OUTPUT_DAGB_LAZY_TIMER__VC3__SHIFT 0xc
+#define DAGB3_RD_OUTPUT_DAGB_LAZY_TIMER__VC4__SHIFT 0x10
+#define DAGB3_RD_OUTPUT_DAGB_LAZY_TIMER__VC5__SHIFT 0x14
+#define DAGB3_RD_OUTPUT_DAGB_LAZY_TIMER__VC6__SHIFT 0x18
+#define DAGB3_RD_OUTPUT_DAGB_LAZY_TIMER__VC7__SHIFT 0x1c
+#define DAGB3_RD_OUTPUT_DAGB_LAZY_TIMER__VC0_MASK 0x0000000FL
+#define DAGB3_RD_OUTPUT_DAGB_LAZY_TIMER__VC1_MASK 0x000000F0L
+#define DAGB3_RD_OUTPUT_DAGB_LAZY_TIMER__VC2_MASK 0x00000F00L
+#define DAGB3_RD_OUTPUT_DAGB_LAZY_TIMER__VC3_MASK 0x0000F000L
+#define DAGB3_RD_OUTPUT_DAGB_LAZY_TIMER__VC4_MASK 0x000F0000L
+#define DAGB3_RD_OUTPUT_DAGB_LAZY_TIMER__VC5_MASK 0x00F00000L
+#define DAGB3_RD_OUTPUT_DAGB_LAZY_TIMER__VC6_MASK 0x0F000000L
+#define DAGB3_RD_OUTPUT_DAGB_LAZY_TIMER__VC7_MASK 0xF0000000L
+//DAGB3_RD_CGTT_CLK_CTRL
+#define DAGB3_RD_CGTT_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define DAGB3_RD_CGTT_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define DAGB3_RD_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS__SHIFT 0xc
+#define DAGB3_RD_CGTT_CLK_CTRL__LS_OVERRIDE__SHIFT 0x1e
+#define DAGB3_RD_CGTT_CLK_CTRL__SOFT_OVERRIDE__SHIFT 0x1f
+#define DAGB3_RD_CGTT_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define DAGB3_RD_CGTT_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define DAGB3_RD_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS_MASK 0x0FFFF000L
+#define DAGB3_RD_CGTT_CLK_CTRL__LS_OVERRIDE_MASK 0x40000000L
+#define DAGB3_RD_CGTT_CLK_CTRL__SOFT_OVERRIDE_MASK 0x80000000L
+//DAGB3_L1TLB_RD_CGTT_CLK_CTRL
+#define DAGB3_L1TLB_RD_CGTT_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define DAGB3_L1TLB_RD_CGTT_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define DAGB3_L1TLB_RD_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS__SHIFT 0xc
+#define DAGB3_L1TLB_RD_CGTT_CLK_CTRL__LS_OVERRIDE__SHIFT 0x1e
+#define DAGB3_L1TLB_RD_CGTT_CLK_CTRL__SOFT_OVERRIDE__SHIFT 0x1f
+#define DAGB3_L1TLB_RD_CGTT_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define DAGB3_L1TLB_RD_CGTT_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define DAGB3_L1TLB_RD_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS_MASK 0x0FFFF000L
+#define DAGB3_L1TLB_RD_CGTT_CLK_CTRL__LS_OVERRIDE_MASK 0x40000000L
+#define DAGB3_L1TLB_RD_CGTT_CLK_CTRL__SOFT_OVERRIDE_MASK 0x80000000L
+//DAGB3_ATCVM_RD_CGTT_CLK_CTRL
+#define DAGB3_ATCVM_RD_CGTT_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define DAGB3_ATCVM_RD_CGTT_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define DAGB3_ATCVM_RD_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS__SHIFT 0xc
+#define DAGB3_ATCVM_RD_CGTT_CLK_CTRL__LS_OVERRIDE__SHIFT 0x1e
+#define DAGB3_ATCVM_RD_CGTT_CLK_CTRL__SOFT_OVERRIDE__SHIFT 0x1f
+#define DAGB3_ATCVM_RD_CGTT_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define DAGB3_ATCVM_RD_CGTT_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define DAGB3_ATCVM_RD_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS_MASK 0x0FFFF000L
+#define DAGB3_ATCVM_RD_CGTT_CLK_CTRL__LS_OVERRIDE_MASK 0x40000000L
+#define DAGB3_ATCVM_RD_CGTT_CLK_CTRL__SOFT_OVERRIDE_MASK 0x80000000L
+//DAGB3_RD_ADDR_DAGB_MAX_BURST0
+#define DAGB3_RD_ADDR_DAGB_MAX_BURST0__CLIENT0__SHIFT 0x0
+#define DAGB3_RD_ADDR_DAGB_MAX_BURST0__CLIENT1__SHIFT 0x4
+#define DAGB3_RD_ADDR_DAGB_MAX_BURST0__CLIENT2__SHIFT 0x8
+#define DAGB3_RD_ADDR_DAGB_MAX_BURST0__CLIENT3__SHIFT 0xc
+#define DAGB3_RD_ADDR_DAGB_MAX_BURST0__CLIENT4__SHIFT 0x10
+#define DAGB3_RD_ADDR_DAGB_MAX_BURST0__CLIENT5__SHIFT 0x14
+#define DAGB3_RD_ADDR_DAGB_MAX_BURST0__CLIENT6__SHIFT 0x18
+#define DAGB3_RD_ADDR_DAGB_MAX_BURST0__CLIENT7__SHIFT 0x1c
+#define DAGB3_RD_ADDR_DAGB_MAX_BURST0__CLIENT0_MASK 0x0000000FL
+#define DAGB3_RD_ADDR_DAGB_MAX_BURST0__CLIENT1_MASK 0x000000F0L
+#define DAGB3_RD_ADDR_DAGB_MAX_BURST0__CLIENT2_MASK 0x00000F00L
+#define DAGB3_RD_ADDR_DAGB_MAX_BURST0__CLIENT3_MASK 0x0000F000L
+#define DAGB3_RD_ADDR_DAGB_MAX_BURST0__CLIENT4_MASK 0x000F0000L
+#define DAGB3_RD_ADDR_DAGB_MAX_BURST0__CLIENT5_MASK 0x00F00000L
+#define DAGB3_RD_ADDR_DAGB_MAX_BURST0__CLIENT6_MASK 0x0F000000L
+#define DAGB3_RD_ADDR_DAGB_MAX_BURST0__CLIENT7_MASK 0xF0000000L
+//DAGB3_RD_ADDR_DAGB_LAZY_TIMER0
+#define DAGB3_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT0__SHIFT 0x0
+#define DAGB3_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT1__SHIFT 0x4
+#define DAGB3_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT2__SHIFT 0x8
+#define DAGB3_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT3__SHIFT 0xc
+#define DAGB3_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT4__SHIFT 0x10
+#define DAGB3_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT5__SHIFT 0x14
+#define DAGB3_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT6__SHIFT 0x18
+#define DAGB3_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT7__SHIFT 0x1c
+#define DAGB3_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT0_MASK 0x0000000FL
+#define DAGB3_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT1_MASK 0x000000F0L
+#define DAGB3_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT2_MASK 0x00000F00L
+#define DAGB3_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT3_MASK 0x0000F000L
+#define DAGB3_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT4_MASK 0x000F0000L
+#define DAGB3_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT5_MASK 0x00F00000L
+#define DAGB3_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT6_MASK 0x0F000000L
+#define DAGB3_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT7_MASK 0xF0000000L
+//DAGB3_RD_ADDR_DAGB_MAX_BURST1
+#define DAGB3_RD_ADDR_DAGB_MAX_BURST1__CLIENT8__SHIFT 0x0
+#define DAGB3_RD_ADDR_DAGB_MAX_BURST1__CLIENT9__SHIFT 0x4
+#define DAGB3_RD_ADDR_DAGB_MAX_BURST1__CLIENT10__SHIFT 0x8
+#define DAGB3_RD_ADDR_DAGB_MAX_BURST1__CLIENT11__SHIFT 0xc
+#define DAGB3_RD_ADDR_DAGB_MAX_BURST1__CLIENT12__SHIFT 0x10
+#define DAGB3_RD_ADDR_DAGB_MAX_BURST1__CLIENT13__SHIFT 0x14
+#define DAGB3_RD_ADDR_DAGB_MAX_BURST1__CLIENT14__SHIFT 0x18
+#define DAGB3_RD_ADDR_DAGB_MAX_BURST1__CLIENT15__SHIFT 0x1c
+#define DAGB3_RD_ADDR_DAGB_MAX_BURST1__CLIENT8_MASK 0x0000000FL
+#define DAGB3_RD_ADDR_DAGB_MAX_BURST1__CLIENT9_MASK 0x000000F0L
+#define DAGB3_RD_ADDR_DAGB_MAX_BURST1__CLIENT10_MASK 0x00000F00L
+#define DAGB3_RD_ADDR_DAGB_MAX_BURST1__CLIENT11_MASK 0x0000F000L
+#define DAGB3_RD_ADDR_DAGB_MAX_BURST1__CLIENT12_MASK 0x000F0000L
+#define DAGB3_RD_ADDR_DAGB_MAX_BURST1__CLIENT13_MASK 0x00F00000L
+#define DAGB3_RD_ADDR_DAGB_MAX_BURST1__CLIENT14_MASK 0x0F000000L
+#define DAGB3_RD_ADDR_DAGB_MAX_BURST1__CLIENT15_MASK 0xF0000000L
+//DAGB3_RD_ADDR_DAGB_LAZY_TIMER1
+#define DAGB3_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT8__SHIFT 0x0
+#define DAGB3_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT9__SHIFT 0x4
+#define DAGB3_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT10__SHIFT 0x8
+#define DAGB3_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT11__SHIFT 0xc
+#define DAGB3_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT12__SHIFT 0x10
+#define DAGB3_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT13__SHIFT 0x14
+#define DAGB3_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT14__SHIFT 0x18
+#define DAGB3_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT15__SHIFT 0x1c
+#define DAGB3_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT8_MASK 0x0000000FL
+#define DAGB3_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT9_MASK 0x000000F0L
+#define DAGB3_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT10_MASK 0x00000F00L
+#define DAGB3_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT11_MASK 0x0000F000L
+#define DAGB3_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT12_MASK 0x000F0000L
+#define DAGB3_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT13_MASK 0x00F00000L
+#define DAGB3_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT14_MASK 0x0F000000L
+#define DAGB3_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT15_MASK 0xF0000000L
+//DAGB3_RD_VC0_CNTL
+#define DAGB3_RD_VC0_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB3_RD_VC0_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB3_RD_VC0_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB3_RD_VC0_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB3_RD_VC0_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB3_RD_VC0_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB3_RD_VC0_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB3_RD_VC0_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB3_RD_VC0_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB3_RD_VC0_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB3_RD_VC0_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB3_RD_VC0_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB3_RD_VC0_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB3_RD_VC0_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB3_RD_VC0_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB3_RD_VC0_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB3_RD_VC1_CNTL
+#define DAGB3_RD_VC1_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB3_RD_VC1_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB3_RD_VC1_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB3_RD_VC1_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB3_RD_VC1_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB3_RD_VC1_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB3_RD_VC1_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB3_RD_VC1_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB3_RD_VC1_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB3_RD_VC1_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB3_RD_VC1_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB3_RD_VC1_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB3_RD_VC1_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB3_RD_VC1_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB3_RD_VC1_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB3_RD_VC1_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB3_RD_VC2_CNTL
+#define DAGB3_RD_VC2_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB3_RD_VC2_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB3_RD_VC2_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB3_RD_VC2_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB3_RD_VC2_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB3_RD_VC2_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB3_RD_VC2_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB3_RD_VC2_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB3_RD_VC2_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB3_RD_VC2_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB3_RD_VC2_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB3_RD_VC2_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB3_RD_VC2_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB3_RD_VC2_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB3_RD_VC2_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB3_RD_VC2_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB3_RD_VC3_CNTL
+#define DAGB3_RD_VC3_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB3_RD_VC3_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB3_RD_VC3_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB3_RD_VC3_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB3_RD_VC3_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB3_RD_VC3_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB3_RD_VC3_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB3_RD_VC3_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB3_RD_VC3_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB3_RD_VC3_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB3_RD_VC3_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB3_RD_VC3_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB3_RD_VC3_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB3_RD_VC3_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB3_RD_VC3_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB3_RD_VC3_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB3_RD_VC4_CNTL
+#define DAGB3_RD_VC4_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB3_RD_VC4_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB3_RD_VC4_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB3_RD_VC4_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB3_RD_VC4_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB3_RD_VC4_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB3_RD_VC4_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB3_RD_VC4_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB3_RD_VC4_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB3_RD_VC4_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB3_RD_VC4_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB3_RD_VC4_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB3_RD_VC4_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB3_RD_VC4_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB3_RD_VC4_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB3_RD_VC4_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB3_RD_VC5_CNTL
+#define DAGB3_RD_VC5_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB3_RD_VC5_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB3_RD_VC5_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB3_RD_VC5_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB3_RD_VC5_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB3_RD_VC5_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB3_RD_VC5_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB3_RD_VC5_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB3_RD_VC5_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB3_RD_VC5_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB3_RD_VC5_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB3_RD_VC5_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB3_RD_VC5_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB3_RD_VC5_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB3_RD_VC5_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB3_RD_VC5_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB3_RD_VC6_CNTL
+#define DAGB3_RD_VC6_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB3_RD_VC6_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB3_RD_VC6_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB3_RD_VC6_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB3_RD_VC6_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB3_RD_VC6_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB3_RD_VC6_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB3_RD_VC6_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB3_RD_VC6_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB3_RD_VC6_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB3_RD_VC6_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB3_RD_VC6_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB3_RD_VC6_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB3_RD_VC6_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB3_RD_VC6_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB3_RD_VC6_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB3_RD_VC7_CNTL
+#define DAGB3_RD_VC7_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB3_RD_VC7_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB3_RD_VC7_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB3_RD_VC7_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB3_RD_VC7_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB3_RD_VC7_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB3_RD_VC7_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB3_RD_VC7_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB3_RD_VC7_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB3_RD_VC7_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB3_RD_VC7_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB3_RD_VC7_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB3_RD_VC7_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB3_RD_VC7_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB3_RD_VC7_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB3_RD_VC7_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB3_RD_CNTL_MISC
+#define DAGB3_RD_CNTL_MISC__STOR_POOL_CREDIT__SHIFT 0x0
+#define DAGB3_RD_CNTL_MISC__EA_POOL_CREDIT__SHIFT 0x6
+#define DAGB3_RD_CNTL_MISC__IO_EA_CREDIT__SHIFT 0xd
+#define DAGB3_RD_CNTL_MISC__STOR_CC_NEW_MODE__SHIFT 0x13
+#define DAGB3_RD_CNTL_MISC__EA_CC_LEGACY_MODE__SHIFT 0x14
+#define DAGB3_RD_CNTL_MISC__UTCL2_CID__SHIFT 0x15
+#define DAGB3_RD_CNTL_MISC__RDRET_FIFO_CREDITS__SHIFT 0x1a
+#define DAGB3_RD_CNTL_MISC__STOR_POOL_CREDIT_MASK 0x0000003FL
+#define DAGB3_RD_CNTL_MISC__EA_POOL_CREDIT_MASK 0x00001FC0L
+#define DAGB3_RD_CNTL_MISC__IO_EA_CREDIT_MASK 0x0007E000L
+#define DAGB3_RD_CNTL_MISC__STOR_CC_NEW_MODE_MASK 0x00080000L
+#define DAGB3_RD_CNTL_MISC__EA_CC_LEGACY_MODE_MASK 0x00100000L
+#define DAGB3_RD_CNTL_MISC__UTCL2_CID_MASK 0x03E00000L
+#define DAGB3_RD_CNTL_MISC__RDRET_FIFO_CREDITS_MASK 0xFC000000L
+//DAGB3_RD_TLB_CREDIT
+#define DAGB3_RD_TLB_CREDIT__TLB0__SHIFT 0x0
+#define DAGB3_RD_TLB_CREDIT__TLB1__SHIFT 0x5
+#define DAGB3_RD_TLB_CREDIT__TLB2__SHIFT 0xa
+#define DAGB3_RD_TLB_CREDIT__TLB3__SHIFT 0xf
+#define DAGB3_RD_TLB_CREDIT__TLB4__SHIFT 0x14
+#define DAGB3_RD_TLB_CREDIT__TLB5__SHIFT 0x19
+#define DAGB3_RD_TLB_CREDIT__TLB0_MASK 0x0000001FL
+#define DAGB3_RD_TLB_CREDIT__TLB1_MASK 0x000003E0L
+#define DAGB3_RD_TLB_CREDIT__TLB2_MASK 0x00007C00L
+#define DAGB3_RD_TLB_CREDIT__TLB3_MASK 0x000F8000L
+#define DAGB3_RD_TLB_CREDIT__TLB4_MASK 0x01F00000L
+#define DAGB3_RD_TLB_CREDIT__TLB5_MASK 0x3E000000L
+//DAGB3_RD_RDRET_CREDIT_CNTL
+#define DAGB3_RD_RDRET_CREDIT_CNTL__VC0_CREDIT__SHIFT 0x0
+#define DAGB3_RD_RDRET_CREDIT_CNTL__VC1_CREDIT__SHIFT 0x6
+#define DAGB3_RD_RDRET_CREDIT_CNTL__VC2_CREDIT__SHIFT 0xc
+#define DAGB3_RD_RDRET_CREDIT_CNTL__VC3_CREDIT__SHIFT 0x12
+#define DAGB3_RD_RDRET_CREDIT_CNTL__VC4_CREDIT__SHIFT 0x18
+#define DAGB3_RD_RDRET_CREDIT_CNTL__VC_MODE__SHIFT 0x1e
+#define DAGB3_RD_RDRET_CREDIT_CNTL__FIX_EQ__SHIFT 0x1f
+#define DAGB3_RD_RDRET_CREDIT_CNTL__VC0_CREDIT_MASK 0x0000003FL
+#define DAGB3_RD_RDRET_CREDIT_CNTL__VC1_CREDIT_MASK 0x00000FC0L
+#define DAGB3_RD_RDRET_CREDIT_CNTL__VC2_CREDIT_MASK 0x0003F000L
+#define DAGB3_RD_RDRET_CREDIT_CNTL__VC3_CREDIT_MASK 0x00FC0000L
+#define DAGB3_RD_RDRET_CREDIT_CNTL__VC4_CREDIT_MASK 0x3F000000L
+#define DAGB3_RD_RDRET_CREDIT_CNTL__VC_MODE_MASK 0x40000000L
+#define DAGB3_RD_RDRET_CREDIT_CNTL__FIX_EQ_MASK 0x80000000L
+//DAGB3_RD_RDRET_CREDIT_CNTL2
+#define DAGB3_RD_RDRET_CREDIT_CNTL2__IO_CREDIT__SHIFT 0x0
+#define DAGB3_RD_RDRET_CREDIT_CNTL2__GMI_CREDIT__SHIFT 0x6
+#define DAGB3_RD_RDRET_CREDIT_CNTL2__POOL_CREDIT__SHIFT 0xc
+#define DAGB3_RD_RDRET_CREDIT_CNTL2__IO_CREDIT_MASK 0x0000003FL
+#define DAGB3_RD_RDRET_CREDIT_CNTL2__GMI_CREDIT_MASK 0x00000FC0L
+#define DAGB3_RD_RDRET_CREDIT_CNTL2__POOL_CREDIT_MASK 0x0007F000L
+//DAGB3_RDCLI_ASK_PENDING
+#define DAGB3_RDCLI_ASK_PENDING__BUSY__SHIFT 0x0
+#define DAGB3_RDCLI_ASK_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB3_RDCLI_GO_PENDING
+#define DAGB3_RDCLI_GO_PENDING__BUSY__SHIFT 0x0
+#define DAGB3_RDCLI_GO_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB3_RDCLI_GBLSEND_PENDING
+#define DAGB3_RDCLI_GBLSEND_PENDING__BUSY__SHIFT 0x0
+#define DAGB3_RDCLI_GBLSEND_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB3_RDCLI_TLB_PENDING
+#define DAGB3_RDCLI_TLB_PENDING__BUSY__SHIFT 0x0
+#define DAGB3_RDCLI_TLB_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB3_RDCLI_OARB_PENDING
+#define DAGB3_RDCLI_OARB_PENDING__BUSY__SHIFT 0x0
+#define DAGB3_RDCLI_OARB_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB3_RDCLI_OSD_PENDING
+#define DAGB3_RDCLI_OSD_PENDING__BUSY__SHIFT 0x0
+#define DAGB3_RDCLI_OSD_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB3_WRCLI0
+#define DAGB3_WRCLI0__VIRT_CHAN__SHIFT 0x0
+#define DAGB3_WRCLI0__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB3_WRCLI0__URG_HIGH__SHIFT 0x4
+#define DAGB3_WRCLI0__URG_LOW__SHIFT 0x8
+#define DAGB3_WRCLI0__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB3_WRCLI0__MAX_BW__SHIFT 0xd
+#define DAGB3_WRCLI0__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB3_WRCLI0__MIN_BW__SHIFT 0x16
+#define DAGB3_WRCLI0__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB3_WRCLI0__MAX_OSD__SHIFT 0x1a
+#define DAGB3_WRCLI0__VIRT_CHAN_MASK 0x00000007L
+#define DAGB3_WRCLI0__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB3_WRCLI0__URG_HIGH_MASK 0x000000F0L
+#define DAGB3_WRCLI0__URG_LOW_MASK 0x00000F00L
+#define DAGB3_WRCLI0__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB3_WRCLI0__MAX_BW_MASK 0x001FE000L
+#define DAGB3_WRCLI0__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB3_WRCLI0__MIN_BW_MASK 0x01C00000L
+#define DAGB3_WRCLI0__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB3_WRCLI0__MAX_OSD_MASK 0xFC000000L
+//DAGB3_WRCLI1
+#define DAGB3_WRCLI1__VIRT_CHAN__SHIFT 0x0
+#define DAGB3_WRCLI1__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB3_WRCLI1__URG_HIGH__SHIFT 0x4
+#define DAGB3_WRCLI1__URG_LOW__SHIFT 0x8
+#define DAGB3_WRCLI1__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB3_WRCLI1__MAX_BW__SHIFT 0xd
+#define DAGB3_WRCLI1__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB3_WRCLI1__MIN_BW__SHIFT 0x16
+#define DAGB3_WRCLI1__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB3_WRCLI1__MAX_OSD__SHIFT 0x1a
+#define DAGB3_WRCLI1__VIRT_CHAN_MASK 0x00000007L
+#define DAGB3_WRCLI1__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB3_WRCLI1__URG_HIGH_MASK 0x000000F0L
+#define DAGB3_WRCLI1__URG_LOW_MASK 0x00000F00L
+#define DAGB3_WRCLI1__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB3_WRCLI1__MAX_BW_MASK 0x001FE000L
+#define DAGB3_WRCLI1__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB3_WRCLI1__MIN_BW_MASK 0x01C00000L
+#define DAGB3_WRCLI1__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB3_WRCLI1__MAX_OSD_MASK 0xFC000000L
+//DAGB3_WRCLI2
+#define DAGB3_WRCLI2__VIRT_CHAN__SHIFT 0x0
+#define DAGB3_WRCLI2__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB3_WRCLI2__URG_HIGH__SHIFT 0x4
+#define DAGB3_WRCLI2__URG_LOW__SHIFT 0x8
+#define DAGB3_WRCLI2__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB3_WRCLI2__MAX_BW__SHIFT 0xd
+#define DAGB3_WRCLI2__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB3_WRCLI2__MIN_BW__SHIFT 0x16
+#define DAGB3_WRCLI2__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB3_WRCLI2__MAX_OSD__SHIFT 0x1a
+#define DAGB3_WRCLI2__VIRT_CHAN_MASK 0x00000007L
+#define DAGB3_WRCLI2__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB3_WRCLI2__URG_HIGH_MASK 0x000000F0L
+#define DAGB3_WRCLI2__URG_LOW_MASK 0x00000F00L
+#define DAGB3_WRCLI2__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB3_WRCLI2__MAX_BW_MASK 0x001FE000L
+#define DAGB3_WRCLI2__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB3_WRCLI2__MIN_BW_MASK 0x01C00000L
+#define DAGB3_WRCLI2__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB3_WRCLI2__MAX_OSD_MASK 0xFC000000L
+//DAGB3_WRCLI3
+#define DAGB3_WRCLI3__VIRT_CHAN__SHIFT 0x0
+#define DAGB3_WRCLI3__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB3_WRCLI3__URG_HIGH__SHIFT 0x4
+#define DAGB3_WRCLI3__URG_LOW__SHIFT 0x8
+#define DAGB3_WRCLI3__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB3_WRCLI3__MAX_BW__SHIFT 0xd
+#define DAGB3_WRCLI3__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB3_WRCLI3__MIN_BW__SHIFT 0x16
+#define DAGB3_WRCLI3__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB3_WRCLI3__MAX_OSD__SHIFT 0x1a
+#define DAGB3_WRCLI3__VIRT_CHAN_MASK 0x00000007L
+#define DAGB3_WRCLI3__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB3_WRCLI3__URG_HIGH_MASK 0x000000F0L
+#define DAGB3_WRCLI3__URG_LOW_MASK 0x00000F00L
+#define DAGB3_WRCLI3__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB3_WRCLI3__MAX_BW_MASK 0x001FE000L
+#define DAGB3_WRCLI3__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB3_WRCLI3__MIN_BW_MASK 0x01C00000L
+#define DAGB3_WRCLI3__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB3_WRCLI3__MAX_OSD_MASK 0xFC000000L
+//DAGB3_WRCLI4
+#define DAGB3_WRCLI4__VIRT_CHAN__SHIFT 0x0
+#define DAGB3_WRCLI4__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB3_WRCLI4__URG_HIGH__SHIFT 0x4
+#define DAGB3_WRCLI4__URG_LOW__SHIFT 0x8
+#define DAGB3_WRCLI4__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB3_WRCLI4__MAX_BW__SHIFT 0xd
+#define DAGB3_WRCLI4__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB3_WRCLI4__MIN_BW__SHIFT 0x16
+#define DAGB3_WRCLI4__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB3_WRCLI4__MAX_OSD__SHIFT 0x1a
+#define DAGB3_WRCLI4__VIRT_CHAN_MASK 0x00000007L
+#define DAGB3_WRCLI4__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB3_WRCLI4__URG_HIGH_MASK 0x000000F0L
+#define DAGB3_WRCLI4__URG_LOW_MASK 0x00000F00L
+#define DAGB3_WRCLI4__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB3_WRCLI4__MAX_BW_MASK 0x001FE000L
+#define DAGB3_WRCLI4__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB3_WRCLI4__MIN_BW_MASK 0x01C00000L
+#define DAGB3_WRCLI4__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB3_WRCLI4__MAX_OSD_MASK 0xFC000000L
+//DAGB3_WRCLI5
+#define DAGB3_WRCLI5__VIRT_CHAN__SHIFT 0x0
+#define DAGB3_WRCLI5__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB3_WRCLI5__URG_HIGH__SHIFT 0x4
+#define DAGB3_WRCLI5__URG_LOW__SHIFT 0x8
+#define DAGB3_WRCLI5__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB3_WRCLI5__MAX_BW__SHIFT 0xd
+#define DAGB3_WRCLI5__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB3_WRCLI5__MIN_BW__SHIFT 0x16
+#define DAGB3_WRCLI5__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB3_WRCLI5__MAX_OSD__SHIFT 0x1a
+#define DAGB3_WRCLI5__VIRT_CHAN_MASK 0x00000007L
+#define DAGB3_WRCLI5__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB3_WRCLI5__URG_HIGH_MASK 0x000000F0L
+#define DAGB3_WRCLI5__URG_LOW_MASK 0x00000F00L
+#define DAGB3_WRCLI5__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB3_WRCLI5__MAX_BW_MASK 0x001FE000L
+#define DAGB3_WRCLI5__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB3_WRCLI5__MIN_BW_MASK 0x01C00000L
+#define DAGB3_WRCLI5__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB3_WRCLI5__MAX_OSD_MASK 0xFC000000L
+//DAGB3_WRCLI6
+#define DAGB3_WRCLI6__VIRT_CHAN__SHIFT 0x0
+#define DAGB3_WRCLI6__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB3_WRCLI6__URG_HIGH__SHIFT 0x4
+#define DAGB3_WRCLI6__URG_LOW__SHIFT 0x8
+#define DAGB3_WRCLI6__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB3_WRCLI6__MAX_BW__SHIFT 0xd
+#define DAGB3_WRCLI6__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB3_WRCLI6__MIN_BW__SHIFT 0x16
+#define DAGB3_WRCLI6__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB3_WRCLI6__MAX_OSD__SHIFT 0x1a
+#define DAGB3_WRCLI6__VIRT_CHAN_MASK 0x00000007L
+#define DAGB3_WRCLI6__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB3_WRCLI6__URG_HIGH_MASK 0x000000F0L
+#define DAGB3_WRCLI6__URG_LOW_MASK 0x00000F00L
+#define DAGB3_WRCLI6__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB3_WRCLI6__MAX_BW_MASK 0x001FE000L
+#define DAGB3_WRCLI6__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB3_WRCLI6__MIN_BW_MASK 0x01C00000L
+#define DAGB3_WRCLI6__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB3_WRCLI6__MAX_OSD_MASK 0xFC000000L
+//DAGB3_WRCLI7
+#define DAGB3_WRCLI7__VIRT_CHAN__SHIFT 0x0
+#define DAGB3_WRCLI7__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB3_WRCLI7__URG_HIGH__SHIFT 0x4
+#define DAGB3_WRCLI7__URG_LOW__SHIFT 0x8
+#define DAGB3_WRCLI7__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB3_WRCLI7__MAX_BW__SHIFT 0xd
+#define DAGB3_WRCLI7__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB3_WRCLI7__MIN_BW__SHIFT 0x16
+#define DAGB3_WRCLI7__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB3_WRCLI7__MAX_OSD__SHIFT 0x1a
+#define DAGB3_WRCLI7__VIRT_CHAN_MASK 0x00000007L
+#define DAGB3_WRCLI7__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB3_WRCLI7__URG_HIGH_MASK 0x000000F0L
+#define DAGB3_WRCLI7__URG_LOW_MASK 0x00000F00L
+#define DAGB3_WRCLI7__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB3_WRCLI7__MAX_BW_MASK 0x001FE000L
+#define DAGB3_WRCLI7__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB3_WRCLI7__MIN_BW_MASK 0x01C00000L
+#define DAGB3_WRCLI7__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB3_WRCLI7__MAX_OSD_MASK 0xFC000000L
+//DAGB3_WRCLI8
+#define DAGB3_WRCLI8__VIRT_CHAN__SHIFT 0x0
+#define DAGB3_WRCLI8__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB3_WRCLI8__URG_HIGH__SHIFT 0x4
+#define DAGB3_WRCLI8__URG_LOW__SHIFT 0x8
+#define DAGB3_WRCLI8__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB3_WRCLI8__MAX_BW__SHIFT 0xd
+#define DAGB3_WRCLI8__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB3_WRCLI8__MIN_BW__SHIFT 0x16
+#define DAGB3_WRCLI8__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB3_WRCLI8__MAX_OSD__SHIFT 0x1a
+#define DAGB3_WRCLI8__VIRT_CHAN_MASK 0x00000007L
+#define DAGB3_WRCLI8__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB3_WRCLI8__URG_HIGH_MASK 0x000000F0L
+#define DAGB3_WRCLI8__URG_LOW_MASK 0x00000F00L
+#define DAGB3_WRCLI8__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB3_WRCLI8__MAX_BW_MASK 0x001FE000L
+#define DAGB3_WRCLI8__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB3_WRCLI8__MIN_BW_MASK 0x01C00000L
+#define DAGB3_WRCLI8__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB3_WRCLI8__MAX_OSD_MASK 0xFC000000L
+//DAGB3_WRCLI9
+#define DAGB3_WRCLI9__VIRT_CHAN__SHIFT 0x0
+#define DAGB3_WRCLI9__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB3_WRCLI9__URG_HIGH__SHIFT 0x4
+#define DAGB3_WRCLI9__URG_LOW__SHIFT 0x8
+#define DAGB3_WRCLI9__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB3_WRCLI9__MAX_BW__SHIFT 0xd
+#define DAGB3_WRCLI9__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB3_WRCLI9__MIN_BW__SHIFT 0x16
+#define DAGB3_WRCLI9__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB3_WRCLI9__MAX_OSD__SHIFT 0x1a
+#define DAGB3_WRCLI9__VIRT_CHAN_MASK 0x00000007L
+#define DAGB3_WRCLI9__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB3_WRCLI9__URG_HIGH_MASK 0x000000F0L
+#define DAGB3_WRCLI9__URG_LOW_MASK 0x00000F00L
+#define DAGB3_WRCLI9__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB3_WRCLI9__MAX_BW_MASK 0x001FE000L
+#define DAGB3_WRCLI9__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB3_WRCLI9__MIN_BW_MASK 0x01C00000L
+#define DAGB3_WRCLI9__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB3_WRCLI9__MAX_OSD_MASK 0xFC000000L
+//DAGB3_WRCLI10
+#define DAGB3_WRCLI10__VIRT_CHAN__SHIFT 0x0
+#define DAGB3_WRCLI10__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB3_WRCLI10__URG_HIGH__SHIFT 0x4
+#define DAGB3_WRCLI10__URG_LOW__SHIFT 0x8
+#define DAGB3_WRCLI10__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB3_WRCLI10__MAX_BW__SHIFT 0xd
+#define DAGB3_WRCLI10__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB3_WRCLI10__MIN_BW__SHIFT 0x16
+#define DAGB3_WRCLI10__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB3_WRCLI10__MAX_OSD__SHIFT 0x1a
+#define DAGB3_WRCLI10__VIRT_CHAN_MASK 0x00000007L
+#define DAGB3_WRCLI10__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB3_WRCLI10__URG_HIGH_MASK 0x000000F0L
+#define DAGB3_WRCLI10__URG_LOW_MASK 0x00000F00L
+#define DAGB3_WRCLI10__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB3_WRCLI10__MAX_BW_MASK 0x001FE000L
+#define DAGB3_WRCLI10__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB3_WRCLI10__MIN_BW_MASK 0x01C00000L
+#define DAGB3_WRCLI10__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB3_WRCLI10__MAX_OSD_MASK 0xFC000000L
+//DAGB3_WRCLI11
+#define DAGB3_WRCLI11__VIRT_CHAN__SHIFT 0x0
+#define DAGB3_WRCLI11__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB3_WRCLI11__URG_HIGH__SHIFT 0x4
+#define DAGB3_WRCLI11__URG_LOW__SHIFT 0x8
+#define DAGB3_WRCLI11__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB3_WRCLI11__MAX_BW__SHIFT 0xd
+#define DAGB3_WRCLI11__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB3_WRCLI11__MIN_BW__SHIFT 0x16
+#define DAGB3_WRCLI11__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB3_WRCLI11__MAX_OSD__SHIFT 0x1a
+#define DAGB3_WRCLI11__VIRT_CHAN_MASK 0x00000007L
+#define DAGB3_WRCLI11__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB3_WRCLI11__URG_HIGH_MASK 0x000000F0L
+#define DAGB3_WRCLI11__URG_LOW_MASK 0x00000F00L
+#define DAGB3_WRCLI11__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB3_WRCLI11__MAX_BW_MASK 0x001FE000L
+#define DAGB3_WRCLI11__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB3_WRCLI11__MIN_BW_MASK 0x01C00000L
+#define DAGB3_WRCLI11__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB3_WRCLI11__MAX_OSD_MASK 0xFC000000L
+//DAGB3_WRCLI12
+#define DAGB3_WRCLI12__VIRT_CHAN__SHIFT 0x0
+#define DAGB3_WRCLI12__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB3_WRCLI12__URG_HIGH__SHIFT 0x4
+#define DAGB3_WRCLI12__URG_LOW__SHIFT 0x8
+#define DAGB3_WRCLI12__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB3_WRCLI12__MAX_BW__SHIFT 0xd
+#define DAGB3_WRCLI12__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB3_WRCLI12__MIN_BW__SHIFT 0x16
+#define DAGB3_WRCLI12__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB3_WRCLI12__MAX_OSD__SHIFT 0x1a
+#define DAGB3_WRCLI12__VIRT_CHAN_MASK 0x00000007L
+#define DAGB3_WRCLI12__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB3_WRCLI12__URG_HIGH_MASK 0x000000F0L
+#define DAGB3_WRCLI12__URG_LOW_MASK 0x00000F00L
+#define DAGB3_WRCLI12__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB3_WRCLI12__MAX_BW_MASK 0x001FE000L
+#define DAGB3_WRCLI12__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB3_WRCLI12__MIN_BW_MASK 0x01C00000L
+#define DAGB3_WRCLI12__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB3_WRCLI12__MAX_OSD_MASK 0xFC000000L
+//DAGB3_WRCLI13
+#define DAGB3_WRCLI13__VIRT_CHAN__SHIFT 0x0
+#define DAGB3_WRCLI13__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB3_WRCLI13__URG_HIGH__SHIFT 0x4
+#define DAGB3_WRCLI13__URG_LOW__SHIFT 0x8
+#define DAGB3_WRCLI13__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB3_WRCLI13__MAX_BW__SHIFT 0xd
+#define DAGB3_WRCLI13__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB3_WRCLI13__MIN_BW__SHIFT 0x16
+#define DAGB3_WRCLI13__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB3_WRCLI13__MAX_OSD__SHIFT 0x1a
+#define DAGB3_WRCLI13__VIRT_CHAN_MASK 0x00000007L
+#define DAGB3_WRCLI13__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB3_WRCLI13__URG_HIGH_MASK 0x000000F0L
+#define DAGB3_WRCLI13__URG_LOW_MASK 0x00000F00L
+#define DAGB3_WRCLI13__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB3_WRCLI13__MAX_BW_MASK 0x001FE000L
+#define DAGB3_WRCLI13__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB3_WRCLI13__MIN_BW_MASK 0x01C00000L
+#define DAGB3_WRCLI13__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB3_WRCLI13__MAX_OSD_MASK 0xFC000000L
+//DAGB3_WRCLI14
+#define DAGB3_WRCLI14__VIRT_CHAN__SHIFT 0x0
+#define DAGB3_WRCLI14__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB3_WRCLI14__URG_HIGH__SHIFT 0x4
+#define DAGB3_WRCLI14__URG_LOW__SHIFT 0x8
+#define DAGB3_WRCLI14__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB3_WRCLI14__MAX_BW__SHIFT 0xd
+#define DAGB3_WRCLI14__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB3_WRCLI14__MIN_BW__SHIFT 0x16
+#define DAGB3_WRCLI14__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB3_WRCLI14__MAX_OSD__SHIFT 0x1a
+#define DAGB3_WRCLI14__VIRT_CHAN_MASK 0x00000007L
+#define DAGB3_WRCLI14__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB3_WRCLI14__URG_HIGH_MASK 0x000000F0L
+#define DAGB3_WRCLI14__URG_LOW_MASK 0x00000F00L
+#define DAGB3_WRCLI14__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB3_WRCLI14__MAX_BW_MASK 0x001FE000L
+#define DAGB3_WRCLI14__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB3_WRCLI14__MIN_BW_MASK 0x01C00000L
+#define DAGB3_WRCLI14__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB3_WRCLI14__MAX_OSD_MASK 0xFC000000L
+//DAGB3_WRCLI15
+#define DAGB3_WRCLI15__VIRT_CHAN__SHIFT 0x0
+#define DAGB3_WRCLI15__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB3_WRCLI15__URG_HIGH__SHIFT 0x4
+#define DAGB3_WRCLI15__URG_LOW__SHIFT 0x8
+#define DAGB3_WRCLI15__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB3_WRCLI15__MAX_BW__SHIFT 0xd
+#define DAGB3_WRCLI15__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB3_WRCLI15__MIN_BW__SHIFT 0x16
+#define DAGB3_WRCLI15__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB3_WRCLI15__MAX_OSD__SHIFT 0x1a
+#define DAGB3_WRCLI15__VIRT_CHAN_MASK 0x00000007L
+#define DAGB3_WRCLI15__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB3_WRCLI15__URG_HIGH_MASK 0x000000F0L
+#define DAGB3_WRCLI15__URG_LOW_MASK 0x00000F00L
+#define DAGB3_WRCLI15__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB3_WRCLI15__MAX_BW_MASK 0x001FE000L
+#define DAGB3_WRCLI15__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB3_WRCLI15__MIN_BW_MASK 0x01C00000L
+#define DAGB3_WRCLI15__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB3_WRCLI15__MAX_OSD_MASK 0xFC000000L
+//DAGB3_WR_CNTL
+#define DAGB3_WR_CNTL__SCLK_FREQ__SHIFT 0x0
+#define DAGB3_WR_CNTL__CLI_MAX_BW_WINDOW__SHIFT 0x4
+#define DAGB3_WR_CNTL__VC_MAX_BW_WINDOW__SHIFT 0xa
+#define DAGB3_WR_CNTL__IO_LEVEL_OVERRIDE_ENABLE__SHIFT 0x10
+#define DAGB3_WR_CNTL__IO_LEVEL__SHIFT 0x11
+#define DAGB3_WR_CNTL__IO_LEVEL_COMPLY_VC__SHIFT 0x14
+#define DAGB3_WR_CNTL__SHARE_VC_NUM__SHIFT 0x17
+#define DAGB3_WR_CNTL__FIX_JUMP__SHIFT 0x1a
+#define DAGB3_WR_CNTL__SCLK_FREQ_MASK 0x0000000FL
+#define DAGB3_WR_CNTL__CLI_MAX_BW_WINDOW_MASK 0x000003F0L
+#define DAGB3_WR_CNTL__VC_MAX_BW_WINDOW_MASK 0x0000FC00L
+#define DAGB3_WR_CNTL__IO_LEVEL_OVERRIDE_ENABLE_MASK 0x00010000L
+#define DAGB3_WR_CNTL__IO_LEVEL_MASK 0x000E0000L
+#define DAGB3_WR_CNTL__IO_LEVEL_COMPLY_VC_MASK 0x00700000L
+#define DAGB3_WR_CNTL__SHARE_VC_NUM_MASK 0x03800000L
+#define DAGB3_WR_CNTL__FIX_JUMP_MASK 0x04000000L
+//DAGB3_WR_GMI_CNTL
+#define DAGB3_WR_GMI_CNTL__EA_CREDIT__SHIFT 0x0
+#define DAGB3_WR_GMI_CNTL__LEVEL__SHIFT 0x6
+#define DAGB3_WR_GMI_CNTL__MAX_BURST__SHIFT 0x9
+#define DAGB3_WR_GMI_CNTL__LAZY_TIMER__SHIFT 0xd
+#define DAGB3_WR_GMI_CNTL__EA_CREDIT_MASK 0x0000003FL
+#define DAGB3_WR_GMI_CNTL__LEVEL_MASK 0x000001C0L
+#define DAGB3_WR_GMI_CNTL__MAX_BURST_MASK 0x00001E00L
+#define DAGB3_WR_GMI_CNTL__LAZY_TIMER_MASK 0x0001E000L
+//DAGB3_WR_ADDR_DAGB
+#define DAGB3_WR_ADDR_DAGB__DAGB_ENABLE__SHIFT 0x0
+#define DAGB3_WR_ADDR_DAGB__ENABLE_JUMP_AHEAD__SHIFT 0x3
+#define DAGB3_WR_ADDR_DAGB__DISABLE_SELF_INIT__SHIFT 0x6
+#define DAGB3_WR_ADDR_DAGB__WHOAMI__SHIFT 0x7
+#define DAGB3_WR_ADDR_DAGB__JUMP_MODE__SHIFT 0xd
+#define DAGB3_WR_ADDR_DAGB__DAGB_ENABLE_MASK 0x00000007L
+#define DAGB3_WR_ADDR_DAGB__ENABLE_JUMP_AHEAD_MASK 0x00000038L
+#define DAGB3_WR_ADDR_DAGB__DISABLE_SELF_INIT_MASK 0x00000040L
+#define DAGB3_WR_ADDR_DAGB__WHOAMI_MASK 0x00001F80L
+#define DAGB3_WR_ADDR_DAGB__JUMP_MODE_MASK 0x00002000L
+//DAGB3_WR_OUTPUT_DAGB_MAX_BURST
+#define DAGB3_WR_OUTPUT_DAGB_MAX_BURST__VC0__SHIFT 0x0
+#define DAGB3_WR_OUTPUT_DAGB_MAX_BURST__VC1__SHIFT 0x4
+#define DAGB3_WR_OUTPUT_DAGB_MAX_BURST__VC2__SHIFT 0x8
+#define DAGB3_WR_OUTPUT_DAGB_MAX_BURST__VC3__SHIFT 0xc
+#define DAGB3_WR_OUTPUT_DAGB_MAX_BURST__VC4__SHIFT 0x10
+#define DAGB3_WR_OUTPUT_DAGB_MAX_BURST__VC5__SHIFT 0x14
+#define DAGB3_WR_OUTPUT_DAGB_MAX_BURST__VC6__SHIFT 0x18
+#define DAGB3_WR_OUTPUT_DAGB_MAX_BURST__VC7__SHIFT 0x1c
+#define DAGB3_WR_OUTPUT_DAGB_MAX_BURST__VC0_MASK 0x0000000FL
+#define DAGB3_WR_OUTPUT_DAGB_MAX_BURST__VC1_MASK 0x000000F0L
+#define DAGB3_WR_OUTPUT_DAGB_MAX_BURST__VC2_MASK 0x00000F00L
+#define DAGB3_WR_OUTPUT_DAGB_MAX_BURST__VC3_MASK 0x0000F000L
+#define DAGB3_WR_OUTPUT_DAGB_MAX_BURST__VC4_MASK 0x000F0000L
+#define DAGB3_WR_OUTPUT_DAGB_MAX_BURST__VC5_MASK 0x00F00000L
+#define DAGB3_WR_OUTPUT_DAGB_MAX_BURST__VC6_MASK 0x0F000000L
+#define DAGB3_WR_OUTPUT_DAGB_MAX_BURST__VC7_MASK 0xF0000000L
+//DAGB3_WR_OUTPUT_DAGB_LAZY_TIMER
+#define DAGB3_WR_OUTPUT_DAGB_LAZY_TIMER__VC0__SHIFT 0x0
+#define DAGB3_WR_OUTPUT_DAGB_LAZY_TIMER__VC1__SHIFT 0x4
+#define DAGB3_WR_OUTPUT_DAGB_LAZY_TIMER__VC2__SHIFT 0x8
+#define DAGB3_WR_OUTPUT_DAGB_LAZY_TIMER__VC3__SHIFT 0xc
+#define DAGB3_WR_OUTPUT_DAGB_LAZY_TIMER__VC4__SHIFT 0x10
+#define DAGB3_WR_OUTPUT_DAGB_LAZY_TIMER__VC5__SHIFT 0x14
+#define DAGB3_WR_OUTPUT_DAGB_LAZY_TIMER__VC6__SHIFT 0x18
+#define DAGB3_WR_OUTPUT_DAGB_LAZY_TIMER__VC7__SHIFT 0x1c
+#define DAGB3_WR_OUTPUT_DAGB_LAZY_TIMER__VC0_MASK 0x0000000FL
+#define DAGB3_WR_OUTPUT_DAGB_LAZY_TIMER__VC1_MASK 0x000000F0L
+#define DAGB3_WR_OUTPUT_DAGB_LAZY_TIMER__VC2_MASK 0x00000F00L
+#define DAGB3_WR_OUTPUT_DAGB_LAZY_TIMER__VC3_MASK 0x0000F000L
+#define DAGB3_WR_OUTPUT_DAGB_LAZY_TIMER__VC4_MASK 0x000F0000L
+#define DAGB3_WR_OUTPUT_DAGB_LAZY_TIMER__VC5_MASK 0x00F00000L
+#define DAGB3_WR_OUTPUT_DAGB_LAZY_TIMER__VC6_MASK 0x0F000000L
+#define DAGB3_WR_OUTPUT_DAGB_LAZY_TIMER__VC7_MASK 0xF0000000L
+//DAGB3_WR_CGTT_CLK_CTRL
+#define DAGB3_WR_CGTT_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define DAGB3_WR_CGTT_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define DAGB3_WR_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS__SHIFT 0xc
+#define DAGB3_WR_CGTT_CLK_CTRL__LS_OVERRIDE__SHIFT 0x1e
+#define DAGB3_WR_CGTT_CLK_CTRL__SOFT_OVERRIDE__SHIFT 0x1f
+#define DAGB3_WR_CGTT_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define DAGB3_WR_CGTT_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define DAGB3_WR_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS_MASK 0x0FFFF000L
+#define DAGB3_WR_CGTT_CLK_CTRL__LS_OVERRIDE_MASK 0x40000000L
+#define DAGB3_WR_CGTT_CLK_CTRL__SOFT_OVERRIDE_MASK 0x80000000L
+//DAGB3_L1TLB_WR_CGTT_CLK_CTRL
+#define DAGB3_L1TLB_WR_CGTT_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define DAGB3_L1TLB_WR_CGTT_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define DAGB3_L1TLB_WR_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS__SHIFT 0xc
+#define DAGB3_L1TLB_WR_CGTT_CLK_CTRL__LS_OVERRIDE__SHIFT 0x1e
+#define DAGB3_L1TLB_WR_CGTT_CLK_CTRL__SOFT_OVERRIDE__SHIFT 0x1f
+#define DAGB3_L1TLB_WR_CGTT_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define DAGB3_L1TLB_WR_CGTT_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define DAGB3_L1TLB_WR_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS_MASK 0x0FFFF000L
+#define DAGB3_L1TLB_WR_CGTT_CLK_CTRL__LS_OVERRIDE_MASK 0x40000000L
+#define DAGB3_L1TLB_WR_CGTT_CLK_CTRL__SOFT_OVERRIDE_MASK 0x80000000L
+//DAGB3_ATCVM_WR_CGTT_CLK_CTRL
+#define DAGB3_ATCVM_WR_CGTT_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define DAGB3_ATCVM_WR_CGTT_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define DAGB3_ATCVM_WR_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS__SHIFT 0xc
+#define DAGB3_ATCVM_WR_CGTT_CLK_CTRL__LS_OVERRIDE__SHIFT 0x1e
+#define DAGB3_ATCVM_WR_CGTT_CLK_CTRL__SOFT_OVERRIDE__SHIFT 0x1f
+#define DAGB3_ATCVM_WR_CGTT_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define DAGB3_ATCVM_WR_CGTT_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define DAGB3_ATCVM_WR_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS_MASK 0x0FFFF000L
+#define DAGB3_ATCVM_WR_CGTT_CLK_CTRL__LS_OVERRIDE_MASK 0x40000000L
+#define DAGB3_ATCVM_WR_CGTT_CLK_CTRL__SOFT_OVERRIDE_MASK 0x80000000L
+//DAGB3_WR_ADDR_DAGB_MAX_BURST0
+#define DAGB3_WR_ADDR_DAGB_MAX_BURST0__CLIENT0__SHIFT 0x0
+#define DAGB3_WR_ADDR_DAGB_MAX_BURST0__CLIENT1__SHIFT 0x4
+#define DAGB3_WR_ADDR_DAGB_MAX_BURST0__CLIENT2__SHIFT 0x8
+#define DAGB3_WR_ADDR_DAGB_MAX_BURST0__CLIENT3__SHIFT 0xc
+#define DAGB3_WR_ADDR_DAGB_MAX_BURST0__CLIENT4__SHIFT 0x10
+#define DAGB3_WR_ADDR_DAGB_MAX_BURST0__CLIENT5__SHIFT 0x14
+#define DAGB3_WR_ADDR_DAGB_MAX_BURST0__CLIENT6__SHIFT 0x18
+#define DAGB3_WR_ADDR_DAGB_MAX_BURST0__CLIENT7__SHIFT 0x1c
+#define DAGB3_WR_ADDR_DAGB_MAX_BURST0__CLIENT0_MASK 0x0000000FL
+#define DAGB3_WR_ADDR_DAGB_MAX_BURST0__CLIENT1_MASK 0x000000F0L
+#define DAGB3_WR_ADDR_DAGB_MAX_BURST0__CLIENT2_MASK 0x00000F00L
+#define DAGB3_WR_ADDR_DAGB_MAX_BURST0__CLIENT3_MASK 0x0000F000L
+#define DAGB3_WR_ADDR_DAGB_MAX_BURST0__CLIENT4_MASK 0x000F0000L
+#define DAGB3_WR_ADDR_DAGB_MAX_BURST0__CLIENT5_MASK 0x00F00000L
+#define DAGB3_WR_ADDR_DAGB_MAX_BURST0__CLIENT6_MASK 0x0F000000L
+#define DAGB3_WR_ADDR_DAGB_MAX_BURST0__CLIENT7_MASK 0xF0000000L
+//DAGB3_WR_ADDR_DAGB_LAZY_TIMER0
+#define DAGB3_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT0__SHIFT 0x0
+#define DAGB3_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT1__SHIFT 0x4
+#define DAGB3_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT2__SHIFT 0x8
+#define DAGB3_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT3__SHIFT 0xc
+#define DAGB3_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT4__SHIFT 0x10
+#define DAGB3_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT5__SHIFT 0x14
+#define DAGB3_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT6__SHIFT 0x18
+#define DAGB3_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT7__SHIFT 0x1c
+#define DAGB3_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT0_MASK 0x0000000FL
+#define DAGB3_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT1_MASK 0x000000F0L
+#define DAGB3_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT2_MASK 0x00000F00L
+#define DAGB3_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT3_MASK 0x0000F000L
+#define DAGB3_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT4_MASK 0x000F0000L
+#define DAGB3_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT5_MASK 0x00F00000L
+#define DAGB3_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT6_MASK 0x0F000000L
+#define DAGB3_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT7_MASK 0xF0000000L
+//DAGB3_WR_ADDR_DAGB_MAX_BURST1
+#define DAGB3_WR_ADDR_DAGB_MAX_BURST1__CLIENT8__SHIFT 0x0
+#define DAGB3_WR_ADDR_DAGB_MAX_BURST1__CLIENT9__SHIFT 0x4
+#define DAGB3_WR_ADDR_DAGB_MAX_BURST1__CLIENT10__SHIFT 0x8
+#define DAGB3_WR_ADDR_DAGB_MAX_BURST1__CLIENT11__SHIFT 0xc
+#define DAGB3_WR_ADDR_DAGB_MAX_BURST1__CLIENT12__SHIFT 0x10
+#define DAGB3_WR_ADDR_DAGB_MAX_BURST1__CLIENT13__SHIFT 0x14
+#define DAGB3_WR_ADDR_DAGB_MAX_BURST1__CLIENT14__SHIFT 0x18
+#define DAGB3_WR_ADDR_DAGB_MAX_BURST1__CLIENT15__SHIFT 0x1c
+#define DAGB3_WR_ADDR_DAGB_MAX_BURST1__CLIENT8_MASK 0x0000000FL
+#define DAGB3_WR_ADDR_DAGB_MAX_BURST1__CLIENT9_MASK 0x000000F0L
+#define DAGB3_WR_ADDR_DAGB_MAX_BURST1__CLIENT10_MASK 0x00000F00L
+#define DAGB3_WR_ADDR_DAGB_MAX_BURST1__CLIENT11_MASK 0x0000F000L
+#define DAGB3_WR_ADDR_DAGB_MAX_BURST1__CLIENT12_MASK 0x000F0000L
+#define DAGB3_WR_ADDR_DAGB_MAX_BURST1__CLIENT13_MASK 0x00F00000L
+#define DAGB3_WR_ADDR_DAGB_MAX_BURST1__CLIENT14_MASK 0x0F000000L
+#define DAGB3_WR_ADDR_DAGB_MAX_BURST1__CLIENT15_MASK 0xF0000000L
+//DAGB3_WR_ADDR_DAGB_LAZY_TIMER1
+#define DAGB3_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT8__SHIFT 0x0
+#define DAGB3_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT9__SHIFT 0x4
+#define DAGB3_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT10__SHIFT 0x8
+#define DAGB3_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT11__SHIFT 0xc
+#define DAGB3_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT12__SHIFT 0x10
+#define DAGB3_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT13__SHIFT 0x14
+#define DAGB3_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT14__SHIFT 0x18
+#define DAGB3_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT15__SHIFT 0x1c
+#define DAGB3_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT8_MASK 0x0000000FL
+#define DAGB3_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT9_MASK 0x000000F0L
+#define DAGB3_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT10_MASK 0x00000F00L
+#define DAGB3_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT11_MASK 0x0000F000L
+#define DAGB3_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT12_MASK 0x000F0000L
+#define DAGB3_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT13_MASK 0x00F00000L
+#define DAGB3_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT14_MASK 0x0F000000L
+#define DAGB3_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT15_MASK 0xF0000000L
+//DAGB3_WR_DATA_DAGB
+#define DAGB3_WR_DATA_DAGB__DAGB_ENABLE__SHIFT 0x0
+#define DAGB3_WR_DATA_DAGB__ENABLE_JUMP_AHEAD__SHIFT 0x3
+#define DAGB3_WR_DATA_DAGB__DISABLE_SELF_INIT__SHIFT 0x6
+#define DAGB3_WR_DATA_DAGB__WHOAMI__SHIFT 0x7
+#define DAGB3_WR_DATA_DAGB__DAGB_ENABLE_MASK 0x00000007L
+#define DAGB3_WR_DATA_DAGB__ENABLE_JUMP_AHEAD_MASK 0x00000038L
+#define DAGB3_WR_DATA_DAGB__DISABLE_SELF_INIT_MASK 0x00000040L
+#define DAGB3_WR_DATA_DAGB__WHOAMI_MASK 0x00001F80L
+//DAGB3_WR_DATA_DAGB_MAX_BURST0
+#define DAGB3_WR_DATA_DAGB_MAX_BURST0__CLIENT0__SHIFT 0x0
+#define DAGB3_WR_DATA_DAGB_MAX_BURST0__CLIENT1__SHIFT 0x4
+#define DAGB3_WR_DATA_DAGB_MAX_BURST0__CLIENT2__SHIFT 0x8
+#define DAGB3_WR_DATA_DAGB_MAX_BURST0__CLIENT3__SHIFT 0xc
+#define DAGB3_WR_DATA_DAGB_MAX_BURST0__CLIENT4__SHIFT 0x10
+#define DAGB3_WR_DATA_DAGB_MAX_BURST0__CLIENT5__SHIFT 0x14
+#define DAGB3_WR_DATA_DAGB_MAX_BURST0__CLIENT6__SHIFT 0x18
+#define DAGB3_WR_DATA_DAGB_MAX_BURST0__CLIENT7__SHIFT 0x1c
+#define DAGB3_WR_DATA_DAGB_MAX_BURST0__CLIENT0_MASK 0x0000000FL
+#define DAGB3_WR_DATA_DAGB_MAX_BURST0__CLIENT1_MASK 0x000000F0L
+#define DAGB3_WR_DATA_DAGB_MAX_BURST0__CLIENT2_MASK 0x00000F00L
+#define DAGB3_WR_DATA_DAGB_MAX_BURST0__CLIENT3_MASK 0x0000F000L
+#define DAGB3_WR_DATA_DAGB_MAX_BURST0__CLIENT4_MASK 0x000F0000L
+#define DAGB3_WR_DATA_DAGB_MAX_BURST0__CLIENT5_MASK 0x00F00000L
+#define DAGB3_WR_DATA_DAGB_MAX_BURST0__CLIENT6_MASK 0x0F000000L
+#define DAGB3_WR_DATA_DAGB_MAX_BURST0__CLIENT7_MASK 0xF0000000L
+//DAGB3_WR_DATA_DAGB_LAZY_TIMER0
+#define DAGB3_WR_DATA_DAGB_LAZY_TIMER0__CLIENT0__SHIFT 0x0
+#define DAGB3_WR_DATA_DAGB_LAZY_TIMER0__CLIENT1__SHIFT 0x4
+#define DAGB3_WR_DATA_DAGB_LAZY_TIMER0__CLIENT2__SHIFT 0x8
+#define DAGB3_WR_DATA_DAGB_LAZY_TIMER0__CLIENT3__SHIFT 0xc
+#define DAGB3_WR_DATA_DAGB_LAZY_TIMER0__CLIENT4__SHIFT 0x10
+#define DAGB3_WR_DATA_DAGB_LAZY_TIMER0__CLIENT5__SHIFT 0x14
+#define DAGB3_WR_DATA_DAGB_LAZY_TIMER0__CLIENT6__SHIFT 0x18
+#define DAGB3_WR_DATA_DAGB_LAZY_TIMER0__CLIENT7__SHIFT 0x1c
+#define DAGB3_WR_DATA_DAGB_LAZY_TIMER0__CLIENT0_MASK 0x0000000FL
+#define DAGB3_WR_DATA_DAGB_LAZY_TIMER0__CLIENT1_MASK 0x000000F0L
+#define DAGB3_WR_DATA_DAGB_LAZY_TIMER0__CLIENT2_MASK 0x00000F00L
+#define DAGB3_WR_DATA_DAGB_LAZY_TIMER0__CLIENT3_MASK 0x0000F000L
+#define DAGB3_WR_DATA_DAGB_LAZY_TIMER0__CLIENT4_MASK 0x000F0000L
+#define DAGB3_WR_DATA_DAGB_LAZY_TIMER0__CLIENT5_MASK 0x00F00000L
+#define DAGB3_WR_DATA_DAGB_LAZY_TIMER0__CLIENT6_MASK 0x0F000000L
+#define DAGB3_WR_DATA_DAGB_LAZY_TIMER0__CLIENT7_MASK 0xF0000000L
+//DAGB3_WR_DATA_DAGB_MAX_BURST1
+#define DAGB3_WR_DATA_DAGB_MAX_BURST1__CLIENT8__SHIFT 0x0
+#define DAGB3_WR_DATA_DAGB_MAX_BURST1__CLIENT9__SHIFT 0x4
+#define DAGB3_WR_DATA_DAGB_MAX_BURST1__CLIENT10__SHIFT 0x8
+#define DAGB3_WR_DATA_DAGB_MAX_BURST1__CLIENT11__SHIFT 0xc
+#define DAGB3_WR_DATA_DAGB_MAX_BURST1__CLIENT12__SHIFT 0x10
+#define DAGB3_WR_DATA_DAGB_MAX_BURST1__CLIENT13__SHIFT 0x14
+#define DAGB3_WR_DATA_DAGB_MAX_BURST1__CLIENT14__SHIFT 0x18
+#define DAGB3_WR_DATA_DAGB_MAX_BURST1__CLIENT15__SHIFT 0x1c
+#define DAGB3_WR_DATA_DAGB_MAX_BURST1__CLIENT8_MASK 0x0000000FL
+#define DAGB3_WR_DATA_DAGB_MAX_BURST1__CLIENT9_MASK 0x000000F0L
+#define DAGB3_WR_DATA_DAGB_MAX_BURST1__CLIENT10_MASK 0x00000F00L
+#define DAGB3_WR_DATA_DAGB_MAX_BURST1__CLIENT11_MASK 0x0000F000L
+#define DAGB3_WR_DATA_DAGB_MAX_BURST1__CLIENT12_MASK 0x000F0000L
+#define DAGB3_WR_DATA_DAGB_MAX_BURST1__CLIENT13_MASK 0x00F00000L
+#define DAGB3_WR_DATA_DAGB_MAX_BURST1__CLIENT14_MASK 0x0F000000L
+#define DAGB3_WR_DATA_DAGB_MAX_BURST1__CLIENT15_MASK 0xF0000000L
+//DAGB3_WR_DATA_DAGB_LAZY_TIMER1
+#define DAGB3_WR_DATA_DAGB_LAZY_TIMER1__CLIENT8__SHIFT 0x0
+#define DAGB3_WR_DATA_DAGB_LAZY_TIMER1__CLIENT9__SHIFT 0x4
+#define DAGB3_WR_DATA_DAGB_LAZY_TIMER1__CLIENT10__SHIFT 0x8
+#define DAGB3_WR_DATA_DAGB_LAZY_TIMER1__CLIENT11__SHIFT 0xc
+#define DAGB3_WR_DATA_DAGB_LAZY_TIMER1__CLIENT12__SHIFT 0x10
+#define DAGB3_WR_DATA_DAGB_LAZY_TIMER1__CLIENT13__SHIFT 0x14
+#define DAGB3_WR_DATA_DAGB_LAZY_TIMER1__CLIENT14__SHIFT 0x18
+#define DAGB3_WR_DATA_DAGB_LAZY_TIMER1__CLIENT15__SHIFT 0x1c
+#define DAGB3_WR_DATA_DAGB_LAZY_TIMER1__CLIENT8_MASK 0x0000000FL
+#define DAGB3_WR_DATA_DAGB_LAZY_TIMER1__CLIENT9_MASK 0x000000F0L
+#define DAGB3_WR_DATA_DAGB_LAZY_TIMER1__CLIENT10_MASK 0x00000F00L
+#define DAGB3_WR_DATA_DAGB_LAZY_TIMER1__CLIENT11_MASK 0x0000F000L
+#define DAGB3_WR_DATA_DAGB_LAZY_TIMER1__CLIENT12_MASK 0x000F0000L
+#define DAGB3_WR_DATA_DAGB_LAZY_TIMER1__CLIENT13_MASK 0x00F00000L
+#define DAGB3_WR_DATA_DAGB_LAZY_TIMER1__CLIENT14_MASK 0x0F000000L
+#define DAGB3_WR_DATA_DAGB_LAZY_TIMER1__CLIENT15_MASK 0xF0000000L
+//DAGB3_WR_VC0_CNTL
+#define DAGB3_WR_VC0_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB3_WR_VC0_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB3_WR_VC0_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB3_WR_VC0_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB3_WR_VC0_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB3_WR_VC0_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB3_WR_VC0_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB3_WR_VC0_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB3_WR_VC0_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB3_WR_VC0_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB3_WR_VC0_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB3_WR_VC0_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB3_WR_VC0_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB3_WR_VC0_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB3_WR_VC0_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB3_WR_VC0_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB3_WR_VC1_CNTL
+#define DAGB3_WR_VC1_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB3_WR_VC1_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB3_WR_VC1_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB3_WR_VC1_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB3_WR_VC1_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB3_WR_VC1_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB3_WR_VC1_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB3_WR_VC1_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB3_WR_VC1_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB3_WR_VC1_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB3_WR_VC1_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB3_WR_VC1_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB3_WR_VC1_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB3_WR_VC1_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB3_WR_VC1_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB3_WR_VC1_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB3_WR_VC2_CNTL
+#define DAGB3_WR_VC2_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB3_WR_VC2_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB3_WR_VC2_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB3_WR_VC2_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB3_WR_VC2_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB3_WR_VC2_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB3_WR_VC2_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB3_WR_VC2_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB3_WR_VC2_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB3_WR_VC2_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB3_WR_VC2_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB3_WR_VC2_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB3_WR_VC2_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB3_WR_VC2_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB3_WR_VC2_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB3_WR_VC2_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB3_WR_VC3_CNTL
+#define DAGB3_WR_VC3_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB3_WR_VC3_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB3_WR_VC3_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB3_WR_VC3_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB3_WR_VC3_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB3_WR_VC3_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB3_WR_VC3_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB3_WR_VC3_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB3_WR_VC3_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB3_WR_VC3_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB3_WR_VC3_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB3_WR_VC3_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB3_WR_VC3_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB3_WR_VC3_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB3_WR_VC3_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB3_WR_VC3_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB3_WR_VC4_CNTL
+#define DAGB3_WR_VC4_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB3_WR_VC4_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB3_WR_VC4_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB3_WR_VC4_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB3_WR_VC4_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB3_WR_VC4_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB3_WR_VC4_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB3_WR_VC4_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB3_WR_VC4_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB3_WR_VC4_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB3_WR_VC4_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB3_WR_VC4_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB3_WR_VC4_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB3_WR_VC4_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB3_WR_VC4_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB3_WR_VC4_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB3_WR_VC5_CNTL
+#define DAGB3_WR_VC5_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB3_WR_VC5_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB3_WR_VC5_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB3_WR_VC5_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB3_WR_VC5_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB3_WR_VC5_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB3_WR_VC5_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB3_WR_VC5_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB3_WR_VC5_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB3_WR_VC5_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB3_WR_VC5_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB3_WR_VC5_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB3_WR_VC5_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB3_WR_VC5_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB3_WR_VC5_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB3_WR_VC5_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB3_WR_VC6_CNTL
+#define DAGB3_WR_VC6_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB3_WR_VC6_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB3_WR_VC6_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB3_WR_VC6_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB3_WR_VC6_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB3_WR_VC6_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB3_WR_VC6_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB3_WR_VC6_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB3_WR_VC6_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB3_WR_VC6_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB3_WR_VC6_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB3_WR_VC6_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB3_WR_VC6_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB3_WR_VC6_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB3_WR_VC6_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB3_WR_VC6_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB3_WR_VC7_CNTL
+#define DAGB3_WR_VC7_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB3_WR_VC7_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB3_WR_VC7_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB3_WR_VC7_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB3_WR_VC7_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB3_WR_VC7_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB3_WR_VC7_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB3_WR_VC7_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB3_WR_VC7_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB3_WR_VC7_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB3_WR_VC7_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB3_WR_VC7_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB3_WR_VC7_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB3_WR_VC7_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB3_WR_VC7_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB3_WR_VC7_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB3_WR_CNTL_MISC
+#define DAGB3_WR_CNTL_MISC__STOR_POOL_CREDIT__SHIFT 0x0
+#define DAGB3_WR_CNTL_MISC__EA_POOL_CREDIT__SHIFT 0x6
+#define DAGB3_WR_CNTL_MISC__IO_EA_CREDIT__SHIFT 0xd
+#define DAGB3_WR_CNTL_MISC__STOR_CC_NEW_MODE__SHIFT 0x13
+#define DAGB3_WR_CNTL_MISC__EA_CC_LEGACY_MODE__SHIFT 0x14
+#define DAGB3_WR_CNTL_MISC__UTCL2_CID__SHIFT 0x15
+#define DAGB3_WR_CNTL_MISC__RDRET_FIFO_CREDITS__SHIFT 0x1a
+#define DAGB3_WR_CNTL_MISC__STOR_POOL_CREDIT_MASK 0x0000003FL
+#define DAGB3_WR_CNTL_MISC__EA_POOL_CREDIT_MASK 0x00001FC0L
+#define DAGB3_WR_CNTL_MISC__IO_EA_CREDIT_MASK 0x0007E000L
+#define DAGB3_WR_CNTL_MISC__STOR_CC_NEW_MODE_MASK 0x00080000L
+#define DAGB3_WR_CNTL_MISC__EA_CC_LEGACY_MODE_MASK 0x00100000L
+#define DAGB3_WR_CNTL_MISC__UTCL2_CID_MASK 0x03E00000L
+#define DAGB3_WR_CNTL_MISC__RDRET_FIFO_CREDITS_MASK 0xFC000000L
+//DAGB3_WR_TLB_CREDIT
+#define DAGB3_WR_TLB_CREDIT__TLB0__SHIFT 0x0
+#define DAGB3_WR_TLB_CREDIT__TLB1__SHIFT 0x5
+#define DAGB3_WR_TLB_CREDIT__TLB2__SHIFT 0xa
+#define DAGB3_WR_TLB_CREDIT__TLB3__SHIFT 0xf
+#define DAGB3_WR_TLB_CREDIT__TLB4__SHIFT 0x14
+#define DAGB3_WR_TLB_CREDIT__TLB5__SHIFT 0x19
+#define DAGB3_WR_TLB_CREDIT__TLB0_MASK 0x0000001FL
+#define DAGB3_WR_TLB_CREDIT__TLB1_MASK 0x000003E0L
+#define DAGB3_WR_TLB_CREDIT__TLB2_MASK 0x00007C00L
+#define DAGB3_WR_TLB_CREDIT__TLB3_MASK 0x000F8000L
+#define DAGB3_WR_TLB_CREDIT__TLB4_MASK 0x01F00000L
+#define DAGB3_WR_TLB_CREDIT__TLB5_MASK 0x3E000000L
+//DAGB3_WR_DATA_CREDIT
+#define DAGB3_WR_DATA_CREDIT__DLOCK_VC_CREDITS__SHIFT 0x0
+#define DAGB3_WR_DATA_CREDIT__LARGE_BURST_CREDITS__SHIFT 0x8
+#define DAGB3_WR_DATA_CREDIT__MIDDLE_BURST_CREDITS__SHIFT 0x10
+#define DAGB3_WR_DATA_CREDIT__SMALL_BURST_CREDITS__SHIFT 0x18
+#define DAGB3_WR_DATA_CREDIT__DLOCK_VC_CREDITS_MASK 0x000000FFL
+#define DAGB3_WR_DATA_CREDIT__LARGE_BURST_CREDITS_MASK 0x0000FF00L
+#define DAGB3_WR_DATA_CREDIT__MIDDLE_BURST_CREDITS_MASK 0x00FF0000L
+#define DAGB3_WR_DATA_CREDIT__SMALL_BURST_CREDITS_MASK 0xFF000000L
+//DAGB3_WR_MISC_CREDIT
+#define DAGB3_WR_MISC_CREDIT__ATOMIC_CREDIT__SHIFT 0x0
+#define DAGB3_WR_MISC_CREDIT__DLOCK_VC_NUM__SHIFT 0x6
+#define DAGB3_WR_MISC_CREDIT__OSD_CREDIT__SHIFT 0x9
+#define DAGB3_WR_MISC_CREDIT__OSD_DLOCK_CREDIT__SHIFT 0x10
+#define DAGB3_WR_MISC_CREDIT__ATOMIC_CREDIT_MASK 0x0000003FL
+#define DAGB3_WR_MISC_CREDIT__DLOCK_VC_NUM_MASK 0x000001C0L
+#define DAGB3_WR_MISC_CREDIT__OSD_CREDIT_MASK 0x0000FE00L
+#define DAGB3_WR_MISC_CREDIT__OSD_DLOCK_CREDIT_MASK 0x007F0000L
+//DAGB3_WR_OSD_CREDIT_CNTL1
+#define DAGB3_WR_OSD_CREDIT_CNTL1__VC0_CREDIT__SHIFT 0x0
+#define DAGB3_WR_OSD_CREDIT_CNTL1__VC1_CREDIT__SHIFT 0x4
+#define DAGB3_WR_OSD_CREDIT_CNTL1__VC2_CREDIT__SHIFT 0x8
+#define DAGB3_WR_OSD_CREDIT_CNTL1__VC3_CREDIT__SHIFT 0xc
+#define DAGB3_WR_OSD_CREDIT_CNTL1__IO_CREDIT__SHIFT 0x10
+#define DAGB3_WR_OSD_CREDIT_CNTL1__GMI_CREDIT__SHIFT 0x14
+#define DAGB3_WR_OSD_CREDIT_CNTL1__POOL_CREDIT__SHIFT 0x18
+#define DAGB3_WR_OSD_CREDIT_CNTL1__VC0_CREDIT_MASK 0x0000000FL
+#define DAGB3_WR_OSD_CREDIT_CNTL1__VC1_CREDIT_MASK 0x000000F0L
+#define DAGB3_WR_OSD_CREDIT_CNTL1__VC2_CREDIT_MASK 0x00000F00L
+#define DAGB3_WR_OSD_CREDIT_CNTL1__VC3_CREDIT_MASK 0x0000F000L
+#define DAGB3_WR_OSD_CREDIT_CNTL1__IO_CREDIT_MASK 0x000F0000L
+#define DAGB3_WR_OSD_CREDIT_CNTL1__GMI_CREDIT_MASK 0x00F00000L
+#define DAGB3_WR_OSD_CREDIT_CNTL1__POOL_CREDIT_MASK 0x3F000000L
+//DAGB3_WR_OSD_CREDIT_CNTL2
+#define DAGB3_WR_OSD_CREDIT_CNTL2__CREDIT_MARGIN__SHIFT 0x0
+#define DAGB3_WR_OSD_CREDIT_CNTL2__ENABLE_LEGACY__SHIFT 0x4
+#define DAGB3_WR_OSD_CREDIT_CNTL2__CREDIT_MARGIN_MASK 0x0000000FL
+#define DAGB3_WR_OSD_CREDIT_CNTL2__ENABLE_LEGACY_MASK 0x00000010L
+//DAGB3_WR_ATOMIC_FIFO_CREDIT_CNTL1
+#define DAGB3_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC0_CREDIT__SHIFT 0x0
+#define DAGB3_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC1_CREDIT__SHIFT 0x5
+#define DAGB3_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC2_CREDIT__SHIFT 0xa
+#define DAGB3_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC3_CREDIT__SHIFT 0xf
+#define DAGB3_WR_ATOMIC_FIFO_CREDIT_CNTL1__POOL_CREDIT__SHIFT 0x14
+#define DAGB3_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC_MODE__SHIFT 0x19
+#define DAGB3_WR_ATOMIC_FIFO_CREDIT_CNTL1__FIX_EQ__SHIFT 0x1a
+#define DAGB3_WR_ATOMIC_FIFO_CREDIT_CNTL1__FIX0__SHIFT 0x1b
+#define DAGB3_WR_ATOMIC_FIFO_CREDIT_CNTL1__FIX1__SHIFT 0x1c
+#define DAGB3_WR_ATOMIC_FIFO_CREDIT_CNTL1__FIX2__SHIFT 0x1d
+#define DAGB3_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC0_CREDIT_MASK 0x0000001FL
+#define DAGB3_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC1_CREDIT_MASK 0x000003E0L
+#define DAGB3_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC2_CREDIT_MASK 0x00007C00L
+#define DAGB3_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC3_CREDIT_MASK 0x000F8000L
+#define DAGB3_WR_ATOMIC_FIFO_CREDIT_CNTL1__POOL_CREDIT_MASK 0x01F00000L
+#define DAGB3_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC_MODE_MASK 0x02000000L
+#define DAGB3_WR_ATOMIC_FIFO_CREDIT_CNTL1__FIX_EQ_MASK 0x04000000L
+#define DAGB3_WR_ATOMIC_FIFO_CREDIT_CNTL1__FIX0_MASK 0x08000000L
+#define DAGB3_WR_ATOMIC_FIFO_CREDIT_CNTL1__FIX1_MASK 0x10000000L
+#define DAGB3_WR_ATOMIC_FIFO_CREDIT_CNTL1__FIX2_MASK 0x20000000L
+//DAGB3_WRCLI_GPU_SNOOP_OVERRIDE
+#define DAGB3_WRCLI_GPU_SNOOP_OVERRIDE__ENABLE__SHIFT 0x0
+#define DAGB3_WRCLI_GPU_SNOOP_OVERRIDE__ENABLE_MASK 0x0000FFFFL
+//DAGB3_WRCLI_GPU_SNOOP_OVERRIDE_VALUE
+#define DAGB3_WRCLI_GPU_SNOOP_OVERRIDE_VALUE__ENABLE__SHIFT 0x0
+#define DAGB3_WRCLI_GPU_SNOOP_OVERRIDE_VALUE__ENABLE_MASK 0x0000FFFFL
+//DAGB3_WRCLI_ASK_PENDING
+#define DAGB3_WRCLI_ASK_PENDING__BUSY__SHIFT 0x0
+#define DAGB3_WRCLI_ASK_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB3_WRCLI_GO_PENDING
+#define DAGB3_WRCLI_GO_PENDING__BUSY__SHIFT 0x0
+#define DAGB3_WRCLI_GO_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB3_WRCLI_GBLSEND_PENDING
+#define DAGB3_WRCLI_GBLSEND_PENDING__BUSY__SHIFT 0x0
+#define DAGB3_WRCLI_GBLSEND_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB3_WRCLI_TLB_PENDING
+#define DAGB3_WRCLI_TLB_PENDING__BUSY__SHIFT 0x0
+#define DAGB3_WRCLI_TLB_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB3_WRCLI_OARB_PENDING
+#define DAGB3_WRCLI_OARB_PENDING__BUSY__SHIFT 0x0
+#define DAGB3_WRCLI_OARB_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB3_WRCLI_OSD_PENDING
+#define DAGB3_WRCLI_OSD_PENDING__BUSY__SHIFT 0x0
+#define DAGB3_WRCLI_OSD_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB3_WRCLI_DBUS_ASK_PENDING
+#define DAGB3_WRCLI_DBUS_ASK_PENDING__BUSY__SHIFT 0x0
+#define DAGB3_WRCLI_DBUS_ASK_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB3_WRCLI_DBUS_GO_PENDING
+#define DAGB3_WRCLI_DBUS_GO_PENDING__BUSY__SHIFT 0x0
+#define DAGB3_WRCLI_DBUS_GO_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB3_DAGB_DLY
+#define DAGB3_DAGB_DLY__DLY__SHIFT 0x0
+#define DAGB3_DAGB_DLY__CLI__SHIFT 0x8
+#define DAGB3_DAGB_DLY__POS__SHIFT 0x10
+#define DAGB3_DAGB_DLY__DLY_MASK 0x000000FFL
+#define DAGB3_DAGB_DLY__CLI_MASK 0x0000FF00L
+#define DAGB3_DAGB_DLY__POS_MASK 0x000F0000L
+//DAGB3_CNTL_MISC
+#define DAGB3_CNTL_MISC__EA_VC0_REMAP__SHIFT 0x0
+#define DAGB3_CNTL_MISC__EA_VC1_REMAP__SHIFT 0x3
+#define DAGB3_CNTL_MISC__EA_VC2_REMAP__SHIFT 0x6
+#define DAGB3_CNTL_MISC__EA_VC3_REMAP__SHIFT 0x9
+#define DAGB3_CNTL_MISC__EA_VC4_REMAP__SHIFT 0xc
+#define DAGB3_CNTL_MISC__EA_VC5_REMAP__SHIFT 0xf
+#define DAGB3_CNTL_MISC__EA_VC6_REMAP__SHIFT 0x12
+#define DAGB3_CNTL_MISC__EA_VC7_REMAP__SHIFT 0x15
+#define DAGB3_CNTL_MISC__BW_INIT_CYCLE__SHIFT 0x18
+#define DAGB3_CNTL_MISC__BW_RW_GAP_CYCLE__SHIFT 0x1e
+#define DAGB3_CNTL_MISC__EA_VC0_REMAP_MASK 0x00000007L
+#define DAGB3_CNTL_MISC__EA_VC1_REMAP_MASK 0x00000038L
+#define DAGB3_CNTL_MISC__EA_VC2_REMAP_MASK 0x000001C0L
+#define DAGB3_CNTL_MISC__EA_VC3_REMAP_MASK 0x00000E00L
+#define DAGB3_CNTL_MISC__EA_VC4_REMAP_MASK 0x00007000L
+#define DAGB3_CNTL_MISC__EA_VC5_REMAP_MASK 0x00038000L
+#define DAGB3_CNTL_MISC__EA_VC6_REMAP_MASK 0x001C0000L
+#define DAGB3_CNTL_MISC__EA_VC7_REMAP_MASK 0x00E00000L
+#define DAGB3_CNTL_MISC__BW_INIT_CYCLE_MASK 0x3F000000L
+#define DAGB3_CNTL_MISC__BW_RW_GAP_CYCLE_MASK 0xC0000000L
+//DAGB3_CNTL_MISC2
+#define DAGB3_CNTL_MISC2__URG_BOOST_ENABLE__SHIFT 0x0
+#define DAGB3_CNTL_MISC2__URG_HALT_ENABLE__SHIFT 0x1
+#define DAGB3_CNTL_MISC2__DISABLE_WRREQ_CG__SHIFT 0x2
+#define DAGB3_CNTL_MISC2__DISABLE_WRRET_CG__SHIFT 0x3
+#define DAGB3_CNTL_MISC2__DISABLE_RDREQ_CG__SHIFT 0x4
+#define DAGB3_CNTL_MISC2__DISABLE_RDRET_CG__SHIFT 0x5
+#define DAGB3_CNTL_MISC2__DISABLE_TLBWR_CG__SHIFT 0x6
+#define DAGB3_CNTL_MISC2__DISABLE_TLBRD_CG__SHIFT 0x7
+#define DAGB3_CNTL_MISC2__DISABLE_EAWRREQ_BUSY__SHIFT 0x8
+#define DAGB3_CNTL_MISC2__DISABLE_EARDREQ_BUSY__SHIFT 0x9
+#define DAGB3_CNTL_MISC2__SWAP_CTL__SHIFT 0xa
+#define DAGB3_CNTL_MISC2__RDRET_FIFO_PERF__SHIFT 0xb
+#define DAGB3_CNTL_MISC2__HDP_CID__SHIFT 0xc
+#define DAGB3_CNTL_MISC2__RDRET_FIFO_DLOCK_CREDITS__SHIFT 0x10
+#define DAGB3_CNTL_MISC2__URG_BOOST_ENABLE_MASK 0x00000001L
+#define DAGB3_CNTL_MISC2__URG_HALT_ENABLE_MASK 0x00000002L
+#define DAGB3_CNTL_MISC2__DISABLE_WRREQ_CG_MASK 0x00000004L
+#define DAGB3_CNTL_MISC2__DISABLE_WRRET_CG_MASK 0x00000008L
+#define DAGB3_CNTL_MISC2__DISABLE_RDREQ_CG_MASK 0x00000010L
+#define DAGB3_CNTL_MISC2__DISABLE_RDRET_CG_MASK 0x00000020L
+#define DAGB3_CNTL_MISC2__DISABLE_TLBWR_CG_MASK 0x00000040L
+#define DAGB3_CNTL_MISC2__DISABLE_TLBRD_CG_MASK 0x00000080L
+#define DAGB3_CNTL_MISC2__DISABLE_EAWRREQ_BUSY_MASK 0x00000100L
+#define DAGB3_CNTL_MISC2__DISABLE_EARDREQ_BUSY_MASK 0x00000200L
+#define DAGB3_CNTL_MISC2__SWAP_CTL_MASK 0x00000400L
+#define DAGB3_CNTL_MISC2__RDRET_FIFO_PERF_MASK 0x00000800L
+#define DAGB3_CNTL_MISC2__HDP_CID_MASK 0x0000F000L
+#define DAGB3_CNTL_MISC2__RDRET_FIFO_DLOCK_CREDITS_MASK 0x003F0000L
+//DAGB3_FATAL_ERROR_CNTL
+#define DAGB3_FATAL_ERROR_CNTL__FILTER_NUM__SHIFT 0x0
+#define DAGB3_FATAL_ERROR_CNTL__FILTER_NUM_MASK 0x000003FFL
+//DAGB3_FATAL_ERROR_CLEAR
+#define DAGB3_FATAL_ERROR_CLEAR__CLEAR__SHIFT 0x0
+#define DAGB3_FATAL_ERROR_CLEAR__CLEAR_MASK 0x00000001L
+//DAGB3_FATAL_ERROR_STATUS0
+#define DAGB3_FATAL_ERROR_STATUS0__VALID__SHIFT 0x0
+#define DAGB3_FATAL_ERROR_STATUS0__CID__SHIFT 0x1
+#define DAGB3_FATAL_ERROR_STATUS0__ADDR_LO__SHIFT 0x6
+#define DAGB3_FATAL_ERROR_STATUS0__VALID_MASK 0x00000001L
+#define DAGB3_FATAL_ERROR_STATUS0__CID_MASK 0x0000003EL
+#define DAGB3_FATAL_ERROR_STATUS0__ADDR_LO_MASK 0xFFFFFFC0L
+//DAGB3_FATAL_ERROR_STATUS1
+#define DAGB3_FATAL_ERROR_STATUS1__ADDR_HI__SHIFT 0x0
+#define DAGB3_FATAL_ERROR_STATUS1__ADDR_HI_MASK 0x0001FFFFL
+//DAGB3_FATAL_ERROR_STATUS2
+#define DAGB3_FATAL_ERROR_STATUS2__TAG__SHIFT 0x0
+#define DAGB3_FATAL_ERROR_STATUS2__VFID__SHIFT 0x10
+#define DAGB3_FATAL_ERROR_STATUS2__VF__SHIFT 0x14
+#define DAGB3_FATAL_ERROR_STATUS2__SPACE__SHIFT 0x15
+#define DAGB3_FATAL_ERROR_STATUS2__IO__SHIFT 0x16
+#define DAGB3_FATAL_ERROR_STATUS2__SIZE__SHIFT 0x17
+#define DAGB3_FATAL_ERROR_STATUS2__DBGMSK__SHIFT 0x18
+#define DAGB3_FATAL_ERROR_STATUS2__FED__SHIFT 0x19
+#define DAGB3_FATAL_ERROR_STATUS2__TAG_MASK 0x0000FFFFL
+#define DAGB3_FATAL_ERROR_STATUS2__VFID_MASK 0x000F0000L
+#define DAGB3_FATAL_ERROR_STATUS2__VF_MASK 0x00100000L
+#define DAGB3_FATAL_ERROR_STATUS2__SPACE_MASK 0x00200000L
+#define DAGB3_FATAL_ERROR_STATUS2__IO_MASK 0x00400000L
+#define DAGB3_FATAL_ERROR_STATUS2__SIZE_MASK 0x00800000L
+#define DAGB3_FATAL_ERROR_STATUS2__DBGMSK_MASK 0x01000000L
+#define DAGB3_FATAL_ERROR_STATUS2__FED_MASK 0x02000000L
+//DAGB3_FATAL_ERROR_STATUS3
+#define DAGB3_FATAL_ERROR_STATUS3__NOALLOC__SHIFT 0x0
+#define DAGB3_FATAL_ERROR_STATUS3__UNITID__SHIFT 0x1
+#define DAGB3_FATAL_ERROR_STATUS3__OP__SHIFT 0x7
+#define DAGB3_FATAL_ERROR_STATUS3__SECLEVEL__SHIFT 0xe
+#define DAGB3_FATAL_ERROR_STATUS3__WRTMZ__SHIFT 0x11
+#define DAGB3_FATAL_ERROR_STATUS3__RDTMZ__SHIFT 0x12
+#define DAGB3_FATAL_ERROR_STATUS3__SNOOP__SHIFT 0x13
+#define DAGB3_FATAL_ERROR_STATUS3__INVAL__SHIFT 0x14
+#define DAGB3_FATAL_ERROR_STATUS3__NACK__SHIFT 0x15
+#define DAGB3_FATAL_ERROR_STATUS3__RO__SHIFT 0x17
+#define DAGB3_FATAL_ERROR_STATUS3__MEMLOG__SHIFT 0x18
+#define DAGB3_FATAL_ERROR_STATUS3__EOP__SHIFT 0x19
+#define DAGB3_FATAL_ERROR_STATUS3__NOALLOC_MASK 0x00000001L
+#define DAGB3_FATAL_ERROR_STATUS3__UNITID_MASK 0x0000007EL
+#define DAGB3_FATAL_ERROR_STATUS3__OP_MASK 0x00003F80L
+#define DAGB3_FATAL_ERROR_STATUS3__SECLEVEL_MASK 0x0001C000L
+#define DAGB3_FATAL_ERROR_STATUS3__WRTMZ_MASK 0x00020000L
+#define DAGB3_FATAL_ERROR_STATUS3__RDTMZ_MASK 0x00040000L
+#define DAGB3_FATAL_ERROR_STATUS3__SNOOP_MASK 0x00080000L
+#define DAGB3_FATAL_ERROR_STATUS3__INVAL_MASK 0x00100000L
+#define DAGB3_FATAL_ERROR_STATUS3__NACK_MASK 0x00600000L
+#define DAGB3_FATAL_ERROR_STATUS3__RO_MASK 0x00800000L
+#define DAGB3_FATAL_ERROR_STATUS3__MEMLOG_MASK 0x01000000L
+#define DAGB3_FATAL_ERROR_STATUS3__EOP_MASK 0x02000000L
+//DAGB3_FIFO_EMPTY
+#define DAGB3_FIFO_EMPTY__EMPTY__SHIFT 0x0
+#define DAGB3_FIFO_EMPTY__EMPTY_MASK 0x00FFFFFFL
+//DAGB3_FIFO_FULL
+#define DAGB3_FIFO_FULL__FULL__SHIFT 0x0
+#define DAGB3_FIFO_FULL__FULL_MASK 0x007FFFFFL
+//DAGB3_WR_CREDITS_FULL
+#define DAGB3_WR_CREDITS_FULL__FULL__SHIFT 0x0
+#define DAGB3_WR_CREDITS_FULL__FULL_MASK 0x1FFFFFFFL
+//DAGB3_RD_CREDITS_FULL
+#define DAGB3_RD_CREDITS_FULL__FULL__SHIFT 0x0
+#define DAGB3_RD_CREDITS_FULL__FULL_MASK 0x0003FFFFL
+//DAGB3_PERFCOUNTER_LO
+#define DAGB3_PERFCOUNTER_LO__COUNTER_LO__SHIFT 0x0
+#define DAGB3_PERFCOUNTER_LO__COUNTER_LO_MASK 0xFFFFFFFFL
+//DAGB3_PERFCOUNTER_HI
+#define DAGB3_PERFCOUNTER_HI__COUNTER_HI__SHIFT 0x0
+#define DAGB3_PERFCOUNTER_HI__COMPARE_VALUE__SHIFT 0x10
+#define DAGB3_PERFCOUNTER_HI__COUNTER_HI_MASK 0x0000FFFFL
+#define DAGB3_PERFCOUNTER_HI__COMPARE_VALUE_MASK 0xFFFF0000L
+//DAGB3_PERFCOUNTER0_CFG
+#define DAGB3_PERFCOUNTER0_CFG__PERF_SEL__SHIFT 0x0
+#define DAGB3_PERFCOUNTER0_CFG__PERF_SEL_END__SHIFT 0x8
+#define DAGB3_PERFCOUNTER0_CFG__PERF_MODE__SHIFT 0x18
+#define DAGB3_PERFCOUNTER0_CFG__ENABLE__SHIFT 0x1c
+#define DAGB3_PERFCOUNTER0_CFG__CLEAR__SHIFT 0x1d
+#define DAGB3_PERFCOUNTER0_CFG__PERF_SEL_MASK 0x000000FFL
+#define DAGB3_PERFCOUNTER0_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define DAGB3_PERFCOUNTER0_CFG__PERF_MODE_MASK 0x0F000000L
+#define DAGB3_PERFCOUNTER0_CFG__ENABLE_MASK 0x10000000L
+#define DAGB3_PERFCOUNTER0_CFG__CLEAR_MASK 0x20000000L
+//DAGB3_PERFCOUNTER1_CFG
+#define DAGB3_PERFCOUNTER1_CFG__PERF_SEL__SHIFT 0x0
+#define DAGB3_PERFCOUNTER1_CFG__PERF_SEL_END__SHIFT 0x8
+#define DAGB3_PERFCOUNTER1_CFG__PERF_MODE__SHIFT 0x18
+#define DAGB3_PERFCOUNTER1_CFG__ENABLE__SHIFT 0x1c
+#define DAGB3_PERFCOUNTER1_CFG__CLEAR__SHIFT 0x1d
+#define DAGB3_PERFCOUNTER1_CFG__PERF_SEL_MASK 0x000000FFL
+#define DAGB3_PERFCOUNTER1_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define DAGB3_PERFCOUNTER1_CFG__PERF_MODE_MASK 0x0F000000L
+#define DAGB3_PERFCOUNTER1_CFG__ENABLE_MASK 0x10000000L
+#define DAGB3_PERFCOUNTER1_CFG__CLEAR_MASK 0x20000000L
+//DAGB3_PERFCOUNTER2_CFG
+#define DAGB3_PERFCOUNTER2_CFG__PERF_SEL__SHIFT 0x0
+#define DAGB3_PERFCOUNTER2_CFG__PERF_SEL_END__SHIFT 0x8
+#define DAGB3_PERFCOUNTER2_CFG__PERF_MODE__SHIFT 0x18
+#define DAGB3_PERFCOUNTER2_CFG__ENABLE__SHIFT 0x1c
+#define DAGB3_PERFCOUNTER2_CFG__CLEAR__SHIFT 0x1d
+#define DAGB3_PERFCOUNTER2_CFG__PERF_SEL_MASK 0x000000FFL
+#define DAGB3_PERFCOUNTER2_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define DAGB3_PERFCOUNTER2_CFG__PERF_MODE_MASK 0x0F000000L
+#define DAGB3_PERFCOUNTER2_CFG__ENABLE_MASK 0x10000000L
+#define DAGB3_PERFCOUNTER2_CFG__CLEAR_MASK 0x20000000L
+//DAGB3_PERFCOUNTER_RSLT_CNTL
+#define DAGB3_PERFCOUNTER_RSLT_CNTL__PERF_COUNTER_SELECT__SHIFT 0x0
+#define DAGB3_PERFCOUNTER_RSLT_CNTL__START_TRIGGER__SHIFT 0x8
+#define DAGB3_PERFCOUNTER_RSLT_CNTL__STOP_TRIGGER__SHIFT 0x10
+#define DAGB3_PERFCOUNTER_RSLT_CNTL__ENABLE_ANY__SHIFT 0x18
+#define DAGB3_PERFCOUNTER_RSLT_CNTL__CLEAR_ALL__SHIFT 0x19
+#define DAGB3_PERFCOUNTER_RSLT_CNTL__STOP_ALL_ON_SATURATE__SHIFT 0x1a
+#define DAGB3_PERFCOUNTER_RSLT_CNTL__PERF_COUNTER_SELECT_MASK 0x0000000FL
+#define DAGB3_PERFCOUNTER_RSLT_CNTL__START_TRIGGER_MASK 0x0000FF00L
+#define DAGB3_PERFCOUNTER_RSLT_CNTL__STOP_TRIGGER_MASK 0x00FF0000L
+#define DAGB3_PERFCOUNTER_RSLT_CNTL__ENABLE_ANY_MASK 0x01000000L
+#define DAGB3_PERFCOUNTER_RSLT_CNTL__CLEAR_ALL_MASK 0x02000000L
+#define DAGB3_PERFCOUNTER_RSLT_CNTL__STOP_ALL_ON_SATURATE_MASK 0x04000000L
+//DAGB3_L1TLB_REG_RW
+#define DAGB3_L1TLB_REG_RW__REG_WRITE_L1TLB_CTRL__SHIFT 0x0
+#define DAGB3_L1TLB_REG_RW__REG_READ_L1TLB_CTRL__SHIFT 0x1
+#define DAGB3_L1TLB_REG_RW__VMID_EXCEP_INT_CTRL__SHIFT 0x2
+#define DAGB3_L1TLB_REG_RW__WDAT_PARITY_CHECK__SHIFT 0x4
+#define DAGB3_L1TLB_REG_RW__DISABLE_RDRET_CHECK__SHIFT 0x5
+#define DAGB3_L1TLB_REG_RW__RESERVE__SHIFT 0x6
+#define DAGB3_L1TLB_REG_RW__REG_WRITE_L1TLB_CTRL_MASK 0x00000001L
+#define DAGB3_L1TLB_REG_RW__REG_READ_L1TLB_CTRL_MASK 0x00000002L
+#define DAGB3_L1TLB_REG_RW__VMID_EXCEP_INT_CTRL_MASK 0x00000004L
+#define DAGB3_L1TLB_REG_RW__WDAT_PARITY_CHECK_MASK 0x00000010L
+#define DAGB3_L1TLB_REG_RW__DISABLE_RDRET_CHECK_MASK 0x00000020L
+#define DAGB3_L1TLB_REG_RW__RESERVE_MASK 0xFFFFFFC0L
+
+
+// addressBlock: aid_mmhub_dagb_dagbdec4
+//DAGB4_RDCLI0
+#define DAGB4_RDCLI0__VIRT_CHAN__SHIFT 0x0
+#define DAGB4_RDCLI0__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB4_RDCLI0__URG_HIGH__SHIFT 0x4
+#define DAGB4_RDCLI0__URG_LOW__SHIFT 0x8
+#define DAGB4_RDCLI0__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB4_RDCLI0__MAX_BW__SHIFT 0xd
+#define DAGB4_RDCLI0__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB4_RDCLI0__MIN_BW__SHIFT 0x16
+#define DAGB4_RDCLI0__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB4_RDCLI0__MAX_OSD__SHIFT 0x1a
+#define DAGB4_RDCLI0__VIRT_CHAN_MASK 0x00000007L
+#define DAGB4_RDCLI0__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB4_RDCLI0__URG_HIGH_MASK 0x000000F0L
+#define DAGB4_RDCLI0__URG_LOW_MASK 0x00000F00L
+#define DAGB4_RDCLI0__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB4_RDCLI0__MAX_BW_MASK 0x001FE000L
+#define DAGB4_RDCLI0__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB4_RDCLI0__MIN_BW_MASK 0x01C00000L
+#define DAGB4_RDCLI0__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB4_RDCLI0__MAX_OSD_MASK 0xFC000000L
+//DAGB4_RDCLI1
+#define DAGB4_RDCLI1__VIRT_CHAN__SHIFT 0x0
+#define DAGB4_RDCLI1__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB4_RDCLI1__URG_HIGH__SHIFT 0x4
+#define DAGB4_RDCLI1__URG_LOW__SHIFT 0x8
+#define DAGB4_RDCLI1__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB4_RDCLI1__MAX_BW__SHIFT 0xd
+#define DAGB4_RDCLI1__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB4_RDCLI1__MIN_BW__SHIFT 0x16
+#define DAGB4_RDCLI1__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB4_RDCLI1__MAX_OSD__SHIFT 0x1a
+#define DAGB4_RDCLI1__VIRT_CHAN_MASK 0x00000007L
+#define DAGB4_RDCLI1__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB4_RDCLI1__URG_HIGH_MASK 0x000000F0L
+#define DAGB4_RDCLI1__URG_LOW_MASK 0x00000F00L
+#define DAGB4_RDCLI1__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB4_RDCLI1__MAX_BW_MASK 0x001FE000L
+#define DAGB4_RDCLI1__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB4_RDCLI1__MIN_BW_MASK 0x01C00000L
+#define DAGB4_RDCLI1__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB4_RDCLI1__MAX_OSD_MASK 0xFC000000L
+//DAGB4_RDCLI2
+#define DAGB4_RDCLI2__VIRT_CHAN__SHIFT 0x0
+#define DAGB4_RDCLI2__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB4_RDCLI2__URG_HIGH__SHIFT 0x4
+#define DAGB4_RDCLI2__URG_LOW__SHIFT 0x8
+#define DAGB4_RDCLI2__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB4_RDCLI2__MAX_BW__SHIFT 0xd
+#define DAGB4_RDCLI2__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB4_RDCLI2__MIN_BW__SHIFT 0x16
+#define DAGB4_RDCLI2__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB4_RDCLI2__MAX_OSD__SHIFT 0x1a
+#define DAGB4_RDCLI2__VIRT_CHAN_MASK 0x00000007L
+#define DAGB4_RDCLI2__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB4_RDCLI2__URG_HIGH_MASK 0x000000F0L
+#define DAGB4_RDCLI2__URG_LOW_MASK 0x00000F00L
+#define DAGB4_RDCLI2__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB4_RDCLI2__MAX_BW_MASK 0x001FE000L
+#define DAGB4_RDCLI2__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB4_RDCLI2__MIN_BW_MASK 0x01C00000L
+#define DAGB4_RDCLI2__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB4_RDCLI2__MAX_OSD_MASK 0xFC000000L
+//DAGB4_RDCLI3
+#define DAGB4_RDCLI3__VIRT_CHAN__SHIFT 0x0
+#define DAGB4_RDCLI3__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB4_RDCLI3__URG_HIGH__SHIFT 0x4
+#define DAGB4_RDCLI3__URG_LOW__SHIFT 0x8
+#define DAGB4_RDCLI3__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB4_RDCLI3__MAX_BW__SHIFT 0xd
+#define DAGB4_RDCLI3__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB4_RDCLI3__MIN_BW__SHIFT 0x16
+#define DAGB4_RDCLI3__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB4_RDCLI3__MAX_OSD__SHIFT 0x1a
+#define DAGB4_RDCLI3__VIRT_CHAN_MASK 0x00000007L
+#define DAGB4_RDCLI3__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB4_RDCLI3__URG_HIGH_MASK 0x000000F0L
+#define DAGB4_RDCLI3__URG_LOW_MASK 0x00000F00L
+#define DAGB4_RDCLI3__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB4_RDCLI3__MAX_BW_MASK 0x001FE000L
+#define DAGB4_RDCLI3__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB4_RDCLI3__MIN_BW_MASK 0x01C00000L
+#define DAGB4_RDCLI3__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB4_RDCLI3__MAX_OSD_MASK 0xFC000000L
+//DAGB4_RDCLI4
+#define DAGB4_RDCLI4__VIRT_CHAN__SHIFT 0x0
+#define DAGB4_RDCLI4__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB4_RDCLI4__URG_HIGH__SHIFT 0x4
+#define DAGB4_RDCLI4__URG_LOW__SHIFT 0x8
+#define DAGB4_RDCLI4__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB4_RDCLI4__MAX_BW__SHIFT 0xd
+#define DAGB4_RDCLI4__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB4_RDCLI4__MIN_BW__SHIFT 0x16
+#define DAGB4_RDCLI4__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB4_RDCLI4__MAX_OSD__SHIFT 0x1a
+#define DAGB4_RDCLI4__VIRT_CHAN_MASK 0x00000007L
+#define DAGB4_RDCLI4__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB4_RDCLI4__URG_HIGH_MASK 0x000000F0L
+#define DAGB4_RDCLI4__URG_LOW_MASK 0x00000F00L
+#define DAGB4_RDCLI4__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB4_RDCLI4__MAX_BW_MASK 0x001FE000L
+#define DAGB4_RDCLI4__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB4_RDCLI4__MIN_BW_MASK 0x01C00000L
+#define DAGB4_RDCLI4__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB4_RDCLI4__MAX_OSD_MASK 0xFC000000L
+//DAGB4_RDCLI5
+#define DAGB4_RDCLI5__VIRT_CHAN__SHIFT 0x0
+#define DAGB4_RDCLI5__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB4_RDCLI5__URG_HIGH__SHIFT 0x4
+#define DAGB4_RDCLI5__URG_LOW__SHIFT 0x8
+#define DAGB4_RDCLI5__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB4_RDCLI5__MAX_BW__SHIFT 0xd
+#define DAGB4_RDCLI5__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB4_RDCLI5__MIN_BW__SHIFT 0x16
+#define DAGB4_RDCLI5__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB4_RDCLI5__MAX_OSD__SHIFT 0x1a
+#define DAGB4_RDCLI5__VIRT_CHAN_MASK 0x00000007L
+#define DAGB4_RDCLI5__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB4_RDCLI5__URG_HIGH_MASK 0x000000F0L
+#define DAGB4_RDCLI5__URG_LOW_MASK 0x00000F00L
+#define DAGB4_RDCLI5__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB4_RDCLI5__MAX_BW_MASK 0x001FE000L
+#define DAGB4_RDCLI5__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB4_RDCLI5__MIN_BW_MASK 0x01C00000L
+#define DAGB4_RDCLI5__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB4_RDCLI5__MAX_OSD_MASK 0xFC000000L
+//DAGB4_RDCLI6
+#define DAGB4_RDCLI6__VIRT_CHAN__SHIFT 0x0
+#define DAGB4_RDCLI6__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB4_RDCLI6__URG_HIGH__SHIFT 0x4
+#define DAGB4_RDCLI6__URG_LOW__SHIFT 0x8
+#define DAGB4_RDCLI6__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB4_RDCLI6__MAX_BW__SHIFT 0xd
+#define DAGB4_RDCLI6__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB4_RDCLI6__MIN_BW__SHIFT 0x16
+#define DAGB4_RDCLI6__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB4_RDCLI6__MAX_OSD__SHIFT 0x1a
+#define DAGB4_RDCLI6__VIRT_CHAN_MASK 0x00000007L
+#define DAGB4_RDCLI6__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB4_RDCLI6__URG_HIGH_MASK 0x000000F0L
+#define DAGB4_RDCLI6__URG_LOW_MASK 0x00000F00L
+#define DAGB4_RDCLI6__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB4_RDCLI6__MAX_BW_MASK 0x001FE000L
+#define DAGB4_RDCLI6__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB4_RDCLI6__MIN_BW_MASK 0x01C00000L
+#define DAGB4_RDCLI6__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB4_RDCLI6__MAX_OSD_MASK 0xFC000000L
+//DAGB4_RDCLI7
+#define DAGB4_RDCLI7__VIRT_CHAN__SHIFT 0x0
+#define DAGB4_RDCLI7__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB4_RDCLI7__URG_HIGH__SHIFT 0x4
+#define DAGB4_RDCLI7__URG_LOW__SHIFT 0x8
+#define DAGB4_RDCLI7__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB4_RDCLI7__MAX_BW__SHIFT 0xd
+#define DAGB4_RDCLI7__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB4_RDCLI7__MIN_BW__SHIFT 0x16
+#define DAGB4_RDCLI7__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB4_RDCLI7__MAX_OSD__SHIFT 0x1a
+#define DAGB4_RDCLI7__VIRT_CHAN_MASK 0x00000007L
+#define DAGB4_RDCLI7__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB4_RDCLI7__URG_HIGH_MASK 0x000000F0L
+#define DAGB4_RDCLI7__URG_LOW_MASK 0x00000F00L
+#define DAGB4_RDCLI7__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB4_RDCLI7__MAX_BW_MASK 0x001FE000L
+#define DAGB4_RDCLI7__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB4_RDCLI7__MIN_BW_MASK 0x01C00000L
+#define DAGB4_RDCLI7__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB4_RDCLI7__MAX_OSD_MASK 0xFC000000L
+//DAGB4_RDCLI8
+#define DAGB4_RDCLI8__VIRT_CHAN__SHIFT 0x0
+#define DAGB4_RDCLI8__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB4_RDCLI8__URG_HIGH__SHIFT 0x4
+#define DAGB4_RDCLI8__URG_LOW__SHIFT 0x8
+#define DAGB4_RDCLI8__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB4_RDCLI8__MAX_BW__SHIFT 0xd
+#define DAGB4_RDCLI8__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB4_RDCLI8__MIN_BW__SHIFT 0x16
+#define DAGB4_RDCLI8__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB4_RDCLI8__MAX_OSD__SHIFT 0x1a
+#define DAGB4_RDCLI8__VIRT_CHAN_MASK 0x00000007L
+#define DAGB4_RDCLI8__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB4_RDCLI8__URG_HIGH_MASK 0x000000F0L
+#define DAGB4_RDCLI8__URG_LOW_MASK 0x00000F00L
+#define DAGB4_RDCLI8__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB4_RDCLI8__MAX_BW_MASK 0x001FE000L
+#define DAGB4_RDCLI8__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB4_RDCLI8__MIN_BW_MASK 0x01C00000L
+#define DAGB4_RDCLI8__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB4_RDCLI8__MAX_OSD_MASK 0xFC000000L
+//DAGB4_RDCLI9
+#define DAGB4_RDCLI9__VIRT_CHAN__SHIFT 0x0
+#define DAGB4_RDCLI9__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB4_RDCLI9__URG_HIGH__SHIFT 0x4
+#define DAGB4_RDCLI9__URG_LOW__SHIFT 0x8
+#define DAGB4_RDCLI9__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB4_RDCLI9__MAX_BW__SHIFT 0xd
+#define DAGB4_RDCLI9__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB4_RDCLI9__MIN_BW__SHIFT 0x16
+#define DAGB4_RDCLI9__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB4_RDCLI9__MAX_OSD__SHIFT 0x1a
+#define DAGB4_RDCLI9__VIRT_CHAN_MASK 0x00000007L
+#define DAGB4_RDCLI9__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB4_RDCLI9__URG_HIGH_MASK 0x000000F0L
+#define DAGB4_RDCLI9__URG_LOW_MASK 0x00000F00L
+#define DAGB4_RDCLI9__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB4_RDCLI9__MAX_BW_MASK 0x001FE000L
+#define DAGB4_RDCLI9__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB4_RDCLI9__MIN_BW_MASK 0x01C00000L
+#define DAGB4_RDCLI9__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB4_RDCLI9__MAX_OSD_MASK 0xFC000000L
+//DAGB4_RDCLI10
+#define DAGB4_RDCLI10__VIRT_CHAN__SHIFT 0x0
+#define DAGB4_RDCLI10__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB4_RDCLI10__URG_HIGH__SHIFT 0x4
+#define DAGB4_RDCLI10__URG_LOW__SHIFT 0x8
+#define DAGB4_RDCLI10__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB4_RDCLI10__MAX_BW__SHIFT 0xd
+#define DAGB4_RDCLI10__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB4_RDCLI10__MIN_BW__SHIFT 0x16
+#define DAGB4_RDCLI10__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB4_RDCLI10__MAX_OSD__SHIFT 0x1a
+#define DAGB4_RDCLI10__VIRT_CHAN_MASK 0x00000007L
+#define DAGB4_RDCLI10__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB4_RDCLI10__URG_HIGH_MASK 0x000000F0L
+#define DAGB4_RDCLI10__URG_LOW_MASK 0x00000F00L
+#define DAGB4_RDCLI10__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB4_RDCLI10__MAX_BW_MASK 0x001FE000L
+#define DAGB4_RDCLI10__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB4_RDCLI10__MIN_BW_MASK 0x01C00000L
+#define DAGB4_RDCLI10__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB4_RDCLI10__MAX_OSD_MASK 0xFC000000L
+//DAGB4_RDCLI11
+#define DAGB4_RDCLI11__VIRT_CHAN__SHIFT 0x0
+#define DAGB4_RDCLI11__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB4_RDCLI11__URG_HIGH__SHIFT 0x4
+#define DAGB4_RDCLI11__URG_LOW__SHIFT 0x8
+#define DAGB4_RDCLI11__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB4_RDCLI11__MAX_BW__SHIFT 0xd
+#define DAGB4_RDCLI11__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB4_RDCLI11__MIN_BW__SHIFT 0x16
+#define DAGB4_RDCLI11__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB4_RDCLI11__MAX_OSD__SHIFT 0x1a
+#define DAGB4_RDCLI11__VIRT_CHAN_MASK 0x00000007L
+#define DAGB4_RDCLI11__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB4_RDCLI11__URG_HIGH_MASK 0x000000F0L
+#define DAGB4_RDCLI11__URG_LOW_MASK 0x00000F00L
+#define DAGB4_RDCLI11__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB4_RDCLI11__MAX_BW_MASK 0x001FE000L
+#define DAGB4_RDCLI11__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB4_RDCLI11__MIN_BW_MASK 0x01C00000L
+#define DAGB4_RDCLI11__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB4_RDCLI11__MAX_OSD_MASK 0xFC000000L
+//DAGB4_RDCLI12
+#define DAGB4_RDCLI12__VIRT_CHAN__SHIFT 0x0
+#define DAGB4_RDCLI12__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB4_RDCLI12__URG_HIGH__SHIFT 0x4
+#define DAGB4_RDCLI12__URG_LOW__SHIFT 0x8
+#define DAGB4_RDCLI12__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB4_RDCLI12__MAX_BW__SHIFT 0xd
+#define DAGB4_RDCLI12__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB4_RDCLI12__MIN_BW__SHIFT 0x16
+#define DAGB4_RDCLI12__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB4_RDCLI12__MAX_OSD__SHIFT 0x1a
+#define DAGB4_RDCLI12__VIRT_CHAN_MASK 0x00000007L
+#define DAGB4_RDCLI12__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB4_RDCLI12__URG_HIGH_MASK 0x000000F0L
+#define DAGB4_RDCLI12__URG_LOW_MASK 0x00000F00L
+#define DAGB4_RDCLI12__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB4_RDCLI12__MAX_BW_MASK 0x001FE000L
+#define DAGB4_RDCLI12__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB4_RDCLI12__MIN_BW_MASK 0x01C00000L
+#define DAGB4_RDCLI12__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB4_RDCLI12__MAX_OSD_MASK 0xFC000000L
+//DAGB4_RDCLI13
+#define DAGB4_RDCLI13__VIRT_CHAN__SHIFT 0x0
+#define DAGB4_RDCLI13__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB4_RDCLI13__URG_HIGH__SHIFT 0x4
+#define DAGB4_RDCLI13__URG_LOW__SHIFT 0x8
+#define DAGB4_RDCLI13__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB4_RDCLI13__MAX_BW__SHIFT 0xd
+#define DAGB4_RDCLI13__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB4_RDCLI13__MIN_BW__SHIFT 0x16
+#define DAGB4_RDCLI13__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB4_RDCLI13__MAX_OSD__SHIFT 0x1a
+#define DAGB4_RDCLI13__VIRT_CHAN_MASK 0x00000007L
+#define DAGB4_RDCLI13__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB4_RDCLI13__URG_HIGH_MASK 0x000000F0L
+#define DAGB4_RDCLI13__URG_LOW_MASK 0x00000F00L
+#define DAGB4_RDCLI13__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB4_RDCLI13__MAX_BW_MASK 0x001FE000L
+#define DAGB4_RDCLI13__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB4_RDCLI13__MIN_BW_MASK 0x01C00000L
+#define DAGB4_RDCLI13__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB4_RDCLI13__MAX_OSD_MASK 0xFC000000L
+//DAGB4_RDCLI14
+#define DAGB4_RDCLI14__VIRT_CHAN__SHIFT 0x0
+#define DAGB4_RDCLI14__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB4_RDCLI14__URG_HIGH__SHIFT 0x4
+#define DAGB4_RDCLI14__URG_LOW__SHIFT 0x8
+#define DAGB4_RDCLI14__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB4_RDCLI14__MAX_BW__SHIFT 0xd
+#define DAGB4_RDCLI14__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB4_RDCLI14__MIN_BW__SHIFT 0x16
+#define DAGB4_RDCLI14__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB4_RDCLI14__MAX_OSD__SHIFT 0x1a
+#define DAGB4_RDCLI14__VIRT_CHAN_MASK 0x00000007L
+#define DAGB4_RDCLI14__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB4_RDCLI14__URG_HIGH_MASK 0x000000F0L
+#define DAGB4_RDCLI14__URG_LOW_MASK 0x00000F00L
+#define DAGB4_RDCLI14__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB4_RDCLI14__MAX_BW_MASK 0x001FE000L
+#define DAGB4_RDCLI14__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB4_RDCLI14__MIN_BW_MASK 0x01C00000L
+#define DAGB4_RDCLI14__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB4_RDCLI14__MAX_OSD_MASK 0xFC000000L
+//DAGB4_RDCLI15
+#define DAGB4_RDCLI15__VIRT_CHAN__SHIFT 0x0
+#define DAGB4_RDCLI15__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB4_RDCLI15__URG_HIGH__SHIFT 0x4
+#define DAGB4_RDCLI15__URG_LOW__SHIFT 0x8
+#define DAGB4_RDCLI15__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB4_RDCLI15__MAX_BW__SHIFT 0xd
+#define DAGB4_RDCLI15__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB4_RDCLI15__MIN_BW__SHIFT 0x16
+#define DAGB4_RDCLI15__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB4_RDCLI15__MAX_OSD__SHIFT 0x1a
+#define DAGB4_RDCLI15__VIRT_CHAN_MASK 0x00000007L
+#define DAGB4_RDCLI15__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB4_RDCLI15__URG_HIGH_MASK 0x000000F0L
+#define DAGB4_RDCLI15__URG_LOW_MASK 0x00000F00L
+#define DAGB4_RDCLI15__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB4_RDCLI15__MAX_BW_MASK 0x001FE000L
+#define DAGB4_RDCLI15__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB4_RDCLI15__MIN_BW_MASK 0x01C00000L
+#define DAGB4_RDCLI15__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB4_RDCLI15__MAX_OSD_MASK 0xFC000000L
+//DAGB4_RD_CNTL
+#define DAGB4_RD_CNTL__SCLK_FREQ__SHIFT 0x0
+#define DAGB4_RD_CNTL__CLI_MAX_BW_WINDOW__SHIFT 0x4
+#define DAGB4_RD_CNTL__VC_MAX_BW_WINDOW__SHIFT 0xa
+#define DAGB4_RD_CNTL__IO_LEVEL_OVERRIDE_ENABLE__SHIFT 0x10
+#define DAGB4_RD_CNTL__IO_LEVEL__SHIFT 0x11
+#define DAGB4_RD_CNTL__IO_LEVEL_COMPLY_VC__SHIFT 0x14
+#define DAGB4_RD_CNTL__SHARE_VC_NUM__SHIFT 0x17
+#define DAGB4_RD_CNTL__FIX_JUMP__SHIFT 0x1a
+#define DAGB4_RD_CNTL__SCLK_FREQ_MASK 0x0000000FL
+#define DAGB4_RD_CNTL__CLI_MAX_BW_WINDOW_MASK 0x000003F0L
+#define DAGB4_RD_CNTL__VC_MAX_BW_WINDOW_MASK 0x0000FC00L
+#define DAGB4_RD_CNTL__IO_LEVEL_OVERRIDE_ENABLE_MASK 0x00010000L
+#define DAGB4_RD_CNTL__IO_LEVEL_MASK 0x000E0000L
+#define DAGB4_RD_CNTL__IO_LEVEL_COMPLY_VC_MASK 0x00700000L
+#define DAGB4_RD_CNTL__SHARE_VC_NUM_MASK 0x03800000L
+#define DAGB4_RD_CNTL__FIX_JUMP_MASK 0x04000000L
+//DAGB4_RD_GMI_CNTL
+#define DAGB4_RD_GMI_CNTL__EA_CREDIT__SHIFT 0x0
+#define DAGB4_RD_GMI_CNTL__LEVEL__SHIFT 0x6
+#define DAGB4_RD_GMI_CNTL__MAX_BURST__SHIFT 0x9
+#define DAGB4_RD_GMI_CNTL__LAZY_TIMER__SHIFT 0xd
+#define DAGB4_RD_GMI_CNTL__EA_CREDIT_MASK 0x0000003FL
+#define DAGB4_RD_GMI_CNTL__LEVEL_MASK 0x000001C0L
+#define DAGB4_RD_GMI_CNTL__MAX_BURST_MASK 0x00001E00L
+#define DAGB4_RD_GMI_CNTL__LAZY_TIMER_MASK 0x0001E000L
+//DAGB4_RD_ADDR_DAGB
+#define DAGB4_RD_ADDR_DAGB__DAGB_ENABLE__SHIFT 0x0
+#define DAGB4_RD_ADDR_DAGB__ENABLE_JUMP_AHEAD__SHIFT 0x3
+#define DAGB4_RD_ADDR_DAGB__DISABLE_SELF_INIT__SHIFT 0x6
+#define DAGB4_RD_ADDR_DAGB__WHOAMI__SHIFT 0x7
+#define DAGB4_RD_ADDR_DAGB__JUMP_MODE__SHIFT 0xd
+#define DAGB4_RD_ADDR_DAGB__DAGB_ENABLE_MASK 0x00000007L
+#define DAGB4_RD_ADDR_DAGB__ENABLE_JUMP_AHEAD_MASK 0x00000038L
+#define DAGB4_RD_ADDR_DAGB__DISABLE_SELF_INIT_MASK 0x00000040L
+#define DAGB4_RD_ADDR_DAGB__WHOAMI_MASK 0x00001F80L
+#define DAGB4_RD_ADDR_DAGB__JUMP_MODE_MASK 0x00002000L
+//DAGB4_RD_OUTPUT_DAGB_MAX_BURST
+#define DAGB4_RD_OUTPUT_DAGB_MAX_BURST__VC0__SHIFT 0x0
+#define DAGB4_RD_OUTPUT_DAGB_MAX_BURST__VC1__SHIFT 0x4
+#define DAGB4_RD_OUTPUT_DAGB_MAX_BURST__VC2__SHIFT 0x8
+#define DAGB4_RD_OUTPUT_DAGB_MAX_BURST__VC3__SHIFT 0xc
+#define DAGB4_RD_OUTPUT_DAGB_MAX_BURST__VC4__SHIFT 0x10
+#define DAGB4_RD_OUTPUT_DAGB_MAX_BURST__VC5__SHIFT 0x14
+#define DAGB4_RD_OUTPUT_DAGB_MAX_BURST__VC6__SHIFT 0x18
+#define DAGB4_RD_OUTPUT_DAGB_MAX_BURST__VC7__SHIFT 0x1c
+#define DAGB4_RD_OUTPUT_DAGB_MAX_BURST__VC0_MASK 0x0000000FL
+#define DAGB4_RD_OUTPUT_DAGB_MAX_BURST__VC1_MASK 0x000000F0L
+#define DAGB4_RD_OUTPUT_DAGB_MAX_BURST__VC2_MASK 0x00000F00L
+#define DAGB4_RD_OUTPUT_DAGB_MAX_BURST__VC3_MASK 0x0000F000L
+#define DAGB4_RD_OUTPUT_DAGB_MAX_BURST__VC4_MASK 0x000F0000L
+#define DAGB4_RD_OUTPUT_DAGB_MAX_BURST__VC5_MASK 0x00F00000L
+#define DAGB4_RD_OUTPUT_DAGB_MAX_BURST__VC6_MASK 0x0F000000L
+#define DAGB4_RD_OUTPUT_DAGB_MAX_BURST__VC7_MASK 0xF0000000L
+//DAGB4_RD_OUTPUT_DAGB_LAZY_TIMER
+#define DAGB4_RD_OUTPUT_DAGB_LAZY_TIMER__VC0__SHIFT 0x0
+#define DAGB4_RD_OUTPUT_DAGB_LAZY_TIMER__VC1__SHIFT 0x4
+#define DAGB4_RD_OUTPUT_DAGB_LAZY_TIMER__VC2__SHIFT 0x8
+#define DAGB4_RD_OUTPUT_DAGB_LAZY_TIMER__VC3__SHIFT 0xc
+#define DAGB4_RD_OUTPUT_DAGB_LAZY_TIMER__VC4__SHIFT 0x10
+#define DAGB4_RD_OUTPUT_DAGB_LAZY_TIMER__VC5__SHIFT 0x14
+#define DAGB4_RD_OUTPUT_DAGB_LAZY_TIMER__VC6__SHIFT 0x18
+#define DAGB4_RD_OUTPUT_DAGB_LAZY_TIMER__VC7__SHIFT 0x1c
+#define DAGB4_RD_OUTPUT_DAGB_LAZY_TIMER__VC0_MASK 0x0000000FL
+#define DAGB4_RD_OUTPUT_DAGB_LAZY_TIMER__VC1_MASK 0x000000F0L
+#define DAGB4_RD_OUTPUT_DAGB_LAZY_TIMER__VC2_MASK 0x00000F00L
+#define DAGB4_RD_OUTPUT_DAGB_LAZY_TIMER__VC3_MASK 0x0000F000L
+#define DAGB4_RD_OUTPUT_DAGB_LAZY_TIMER__VC4_MASK 0x000F0000L
+#define DAGB4_RD_OUTPUT_DAGB_LAZY_TIMER__VC5_MASK 0x00F00000L
+#define DAGB4_RD_OUTPUT_DAGB_LAZY_TIMER__VC6_MASK 0x0F000000L
+#define DAGB4_RD_OUTPUT_DAGB_LAZY_TIMER__VC7_MASK 0xF0000000L
+//DAGB4_RD_CGTT_CLK_CTRL
+#define DAGB4_RD_CGTT_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define DAGB4_RD_CGTT_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define DAGB4_RD_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS__SHIFT 0xc
+#define DAGB4_RD_CGTT_CLK_CTRL__LS_OVERRIDE__SHIFT 0x1e
+#define DAGB4_RD_CGTT_CLK_CTRL__SOFT_OVERRIDE__SHIFT 0x1f
+#define DAGB4_RD_CGTT_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define DAGB4_RD_CGTT_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define DAGB4_RD_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS_MASK 0x0FFFF000L
+#define DAGB4_RD_CGTT_CLK_CTRL__LS_OVERRIDE_MASK 0x40000000L
+#define DAGB4_RD_CGTT_CLK_CTRL__SOFT_OVERRIDE_MASK 0x80000000L
+//DAGB4_L1TLB_RD_CGTT_CLK_CTRL
+#define DAGB4_L1TLB_RD_CGTT_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define DAGB4_L1TLB_RD_CGTT_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define DAGB4_L1TLB_RD_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS__SHIFT 0xc
+#define DAGB4_L1TLB_RD_CGTT_CLK_CTRL__LS_OVERRIDE__SHIFT 0x1e
+#define DAGB4_L1TLB_RD_CGTT_CLK_CTRL__SOFT_OVERRIDE__SHIFT 0x1f
+#define DAGB4_L1TLB_RD_CGTT_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define DAGB4_L1TLB_RD_CGTT_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define DAGB4_L1TLB_RD_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS_MASK 0x0FFFF000L
+#define DAGB4_L1TLB_RD_CGTT_CLK_CTRL__LS_OVERRIDE_MASK 0x40000000L
+#define DAGB4_L1TLB_RD_CGTT_CLK_CTRL__SOFT_OVERRIDE_MASK 0x80000000L
+//DAGB4_ATCVM_RD_CGTT_CLK_CTRL
+#define DAGB4_ATCVM_RD_CGTT_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define DAGB4_ATCVM_RD_CGTT_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define DAGB4_ATCVM_RD_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS__SHIFT 0xc
+#define DAGB4_ATCVM_RD_CGTT_CLK_CTRL__LS_OVERRIDE__SHIFT 0x1e
+#define DAGB4_ATCVM_RD_CGTT_CLK_CTRL__SOFT_OVERRIDE__SHIFT 0x1f
+#define DAGB4_ATCVM_RD_CGTT_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define DAGB4_ATCVM_RD_CGTT_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define DAGB4_ATCVM_RD_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS_MASK 0x0FFFF000L
+#define DAGB4_ATCVM_RD_CGTT_CLK_CTRL__LS_OVERRIDE_MASK 0x40000000L
+#define DAGB4_ATCVM_RD_CGTT_CLK_CTRL__SOFT_OVERRIDE_MASK 0x80000000L
+//DAGB4_RD_ADDR_DAGB_MAX_BURST0
+#define DAGB4_RD_ADDR_DAGB_MAX_BURST0__CLIENT0__SHIFT 0x0
+#define DAGB4_RD_ADDR_DAGB_MAX_BURST0__CLIENT1__SHIFT 0x4
+#define DAGB4_RD_ADDR_DAGB_MAX_BURST0__CLIENT2__SHIFT 0x8
+#define DAGB4_RD_ADDR_DAGB_MAX_BURST0__CLIENT3__SHIFT 0xc
+#define DAGB4_RD_ADDR_DAGB_MAX_BURST0__CLIENT4__SHIFT 0x10
+#define DAGB4_RD_ADDR_DAGB_MAX_BURST0__CLIENT5__SHIFT 0x14
+#define DAGB4_RD_ADDR_DAGB_MAX_BURST0__CLIENT6__SHIFT 0x18
+#define DAGB4_RD_ADDR_DAGB_MAX_BURST0__CLIENT7__SHIFT 0x1c
+#define DAGB4_RD_ADDR_DAGB_MAX_BURST0__CLIENT0_MASK 0x0000000FL
+#define DAGB4_RD_ADDR_DAGB_MAX_BURST0__CLIENT1_MASK 0x000000F0L
+#define DAGB4_RD_ADDR_DAGB_MAX_BURST0__CLIENT2_MASK 0x00000F00L
+#define DAGB4_RD_ADDR_DAGB_MAX_BURST0__CLIENT3_MASK 0x0000F000L
+#define DAGB4_RD_ADDR_DAGB_MAX_BURST0__CLIENT4_MASK 0x000F0000L
+#define DAGB4_RD_ADDR_DAGB_MAX_BURST0__CLIENT5_MASK 0x00F00000L
+#define DAGB4_RD_ADDR_DAGB_MAX_BURST0__CLIENT6_MASK 0x0F000000L
+#define DAGB4_RD_ADDR_DAGB_MAX_BURST0__CLIENT7_MASK 0xF0000000L
+//DAGB4_RD_ADDR_DAGB_LAZY_TIMER0
+#define DAGB4_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT0__SHIFT 0x0
+#define DAGB4_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT1__SHIFT 0x4
+#define DAGB4_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT2__SHIFT 0x8
+#define DAGB4_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT3__SHIFT 0xc
+#define DAGB4_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT4__SHIFT 0x10
+#define DAGB4_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT5__SHIFT 0x14
+#define DAGB4_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT6__SHIFT 0x18
+#define DAGB4_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT7__SHIFT 0x1c
+#define DAGB4_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT0_MASK 0x0000000FL
+#define DAGB4_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT1_MASK 0x000000F0L
+#define DAGB4_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT2_MASK 0x00000F00L
+#define DAGB4_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT3_MASK 0x0000F000L
+#define DAGB4_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT4_MASK 0x000F0000L
+#define DAGB4_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT5_MASK 0x00F00000L
+#define DAGB4_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT6_MASK 0x0F000000L
+#define DAGB4_RD_ADDR_DAGB_LAZY_TIMER0__CLIENT7_MASK 0xF0000000L
+//DAGB4_RD_ADDR_DAGB_MAX_BURST1
+#define DAGB4_RD_ADDR_DAGB_MAX_BURST1__CLIENT8__SHIFT 0x0
+#define DAGB4_RD_ADDR_DAGB_MAX_BURST1__CLIENT9__SHIFT 0x4
+#define DAGB4_RD_ADDR_DAGB_MAX_BURST1__CLIENT10__SHIFT 0x8
+#define DAGB4_RD_ADDR_DAGB_MAX_BURST1__CLIENT11__SHIFT 0xc
+#define DAGB4_RD_ADDR_DAGB_MAX_BURST1__CLIENT12__SHIFT 0x10
+#define DAGB4_RD_ADDR_DAGB_MAX_BURST1__CLIENT13__SHIFT 0x14
+#define DAGB4_RD_ADDR_DAGB_MAX_BURST1__CLIENT14__SHIFT 0x18
+#define DAGB4_RD_ADDR_DAGB_MAX_BURST1__CLIENT15__SHIFT 0x1c
+#define DAGB4_RD_ADDR_DAGB_MAX_BURST1__CLIENT8_MASK 0x0000000FL
+#define DAGB4_RD_ADDR_DAGB_MAX_BURST1__CLIENT9_MASK 0x000000F0L
+#define DAGB4_RD_ADDR_DAGB_MAX_BURST1__CLIENT10_MASK 0x00000F00L
+#define DAGB4_RD_ADDR_DAGB_MAX_BURST1__CLIENT11_MASK 0x0000F000L
+#define DAGB4_RD_ADDR_DAGB_MAX_BURST1__CLIENT12_MASK 0x000F0000L
+#define DAGB4_RD_ADDR_DAGB_MAX_BURST1__CLIENT13_MASK 0x00F00000L
+#define DAGB4_RD_ADDR_DAGB_MAX_BURST1__CLIENT14_MASK 0x0F000000L
+#define DAGB4_RD_ADDR_DAGB_MAX_BURST1__CLIENT15_MASK 0xF0000000L
+//DAGB4_RD_ADDR_DAGB_LAZY_TIMER1
+#define DAGB4_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT8__SHIFT 0x0
+#define DAGB4_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT9__SHIFT 0x4
+#define DAGB4_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT10__SHIFT 0x8
+#define DAGB4_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT11__SHIFT 0xc
+#define DAGB4_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT12__SHIFT 0x10
+#define DAGB4_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT13__SHIFT 0x14
+#define DAGB4_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT14__SHIFT 0x18
+#define DAGB4_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT15__SHIFT 0x1c
+#define DAGB4_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT8_MASK 0x0000000FL
+#define DAGB4_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT9_MASK 0x000000F0L
+#define DAGB4_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT10_MASK 0x00000F00L
+#define DAGB4_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT11_MASK 0x0000F000L
+#define DAGB4_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT12_MASK 0x000F0000L
+#define DAGB4_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT13_MASK 0x00F00000L
+#define DAGB4_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT14_MASK 0x0F000000L
+#define DAGB4_RD_ADDR_DAGB_LAZY_TIMER1__CLIENT15_MASK 0xF0000000L
+//DAGB4_RD_VC0_CNTL
+#define DAGB4_RD_VC0_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB4_RD_VC0_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB4_RD_VC0_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB4_RD_VC0_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB4_RD_VC0_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB4_RD_VC0_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB4_RD_VC0_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB4_RD_VC0_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB4_RD_VC0_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB4_RD_VC0_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB4_RD_VC0_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB4_RD_VC0_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB4_RD_VC0_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB4_RD_VC0_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB4_RD_VC0_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB4_RD_VC0_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB4_RD_VC1_CNTL
+#define DAGB4_RD_VC1_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB4_RD_VC1_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB4_RD_VC1_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB4_RD_VC1_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB4_RD_VC1_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB4_RD_VC1_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB4_RD_VC1_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB4_RD_VC1_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB4_RD_VC1_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB4_RD_VC1_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB4_RD_VC1_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB4_RD_VC1_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB4_RD_VC1_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB4_RD_VC1_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB4_RD_VC1_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB4_RD_VC1_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB4_RD_VC2_CNTL
+#define DAGB4_RD_VC2_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB4_RD_VC2_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB4_RD_VC2_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB4_RD_VC2_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB4_RD_VC2_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB4_RD_VC2_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB4_RD_VC2_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB4_RD_VC2_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB4_RD_VC2_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB4_RD_VC2_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB4_RD_VC2_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB4_RD_VC2_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB4_RD_VC2_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB4_RD_VC2_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB4_RD_VC2_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB4_RD_VC2_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB4_RD_VC3_CNTL
+#define DAGB4_RD_VC3_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB4_RD_VC3_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB4_RD_VC3_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB4_RD_VC3_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB4_RD_VC3_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB4_RD_VC3_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB4_RD_VC3_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB4_RD_VC3_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB4_RD_VC3_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB4_RD_VC3_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB4_RD_VC3_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB4_RD_VC3_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB4_RD_VC3_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB4_RD_VC3_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB4_RD_VC3_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB4_RD_VC3_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB4_RD_VC4_CNTL
+#define DAGB4_RD_VC4_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB4_RD_VC4_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB4_RD_VC4_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB4_RD_VC4_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB4_RD_VC4_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB4_RD_VC4_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB4_RD_VC4_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB4_RD_VC4_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB4_RD_VC4_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB4_RD_VC4_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB4_RD_VC4_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB4_RD_VC4_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB4_RD_VC4_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB4_RD_VC4_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB4_RD_VC4_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB4_RD_VC4_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB4_RD_VC5_CNTL
+#define DAGB4_RD_VC5_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB4_RD_VC5_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB4_RD_VC5_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB4_RD_VC5_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB4_RD_VC5_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB4_RD_VC5_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB4_RD_VC5_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB4_RD_VC5_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB4_RD_VC5_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB4_RD_VC5_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB4_RD_VC5_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB4_RD_VC5_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB4_RD_VC5_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB4_RD_VC5_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB4_RD_VC5_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB4_RD_VC5_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB4_RD_VC6_CNTL
+#define DAGB4_RD_VC6_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB4_RD_VC6_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB4_RD_VC6_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB4_RD_VC6_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB4_RD_VC6_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB4_RD_VC6_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB4_RD_VC6_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB4_RD_VC6_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB4_RD_VC6_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB4_RD_VC6_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB4_RD_VC6_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB4_RD_VC6_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB4_RD_VC6_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB4_RD_VC6_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB4_RD_VC6_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB4_RD_VC6_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB4_RD_VC7_CNTL
+#define DAGB4_RD_VC7_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB4_RD_VC7_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB4_RD_VC7_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB4_RD_VC7_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB4_RD_VC7_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB4_RD_VC7_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB4_RD_VC7_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB4_RD_VC7_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB4_RD_VC7_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB4_RD_VC7_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB4_RD_VC7_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB4_RD_VC7_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB4_RD_VC7_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB4_RD_VC7_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB4_RD_VC7_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB4_RD_VC7_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB4_RD_CNTL_MISC
+#define DAGB4_RD_CNTL_MISC__STOR_POOL_CREDIT__SHIFT 0x0
+#define DAGB4_RD_CNTL_MISC__EA_POOL_CREDIT__SHIFT 0x6
+#define DAGB4_RD_CNTL_MISC__IO_EA_CREDIT__SHIFT 0xd
+#define DAGB4_RD_CNTL_MISC__STOR_CC_NEW_MODE__SHIFT 0x13
+#define DAGB4_RD_CNTL_MISC__EA_CC_LEGACY_MODE__SHIFT 0x14
+#define DAGB4_RD_CNTL_MISC__UTCL2_CID__SHIFT 0x15
+#define DAGB4_RD_CNTL_MISC__RDRET_FIFO_CREDITS__SHIFT 0x1a
+#define DAGB4_RD_CNTL_MISC__STOR_POOL_CREDIT_MASK 0x0000003FL
+#define DAGB4_RD_CNTL_MISC__EA_POOL_CREDIT_MASK 0x00001FC0L
+#define DAGB4_RD_CNTL_MISC__IO_EA_CREDIT_MASK 0x0007E000L
+#define DAGB4_RD_CNTL_MISC__STOR_CC_NEW_MODE_MASK 0x00080000L
+#define DAGB4_RD_CNTL_MISC__EA_CC_LEGACY_MODE_MASK 0x00100000L
+#define DAGB4_RD_CNTL_MISC__UTCL2_CID_MASK 0x03E00000L
+#define DAGB4_RD_CNTL_MISC__RDRET_FIFO_CREDITS_MASK 0xFC000000L
+//DAGB4_RD_TLB_CREDIT
+#define DAGB4_RD_TLB_CREDIT__TLB0__SHIFT 0x0
+#define DAGB4_RD_TLB_CREDIT__TLB1__SHIFT 0x5
+#define DAGB4_RD_TLB_CREDIT__TLB2__SHIFT 0xa
+#define DAGB4_RD_TLB_CREDIT__TLB3__SHIFT 0xf
+#define DAGB4_RD_TLB_CREDIT__TLB4__SHIFT 0x14
+#define DAGB4_RD_TLB_CREDIT__TLB5__SHIFT 0x19
+#define DAGB4_RD_TLB_CREDIT__TLB0_MASK 0x0000001FL
+#define DAGB4_RD_TLB_CREDIT__TLB1_MASK 0x000003E0L
+#define DAGB4_RD_TLB_CREDIT__TLB2_MASK 0x00007C00L
+#define DAGB4_RD_TLB_CREDIT__TLB3_MASK 0x000F8000L
+#define DAGB4_RD_TLB_CREDIT__TLB4_MASK 0x01F00000L
+#define DAGB4_RD_TLB_CREDIT__TLB5_MASK 0x3E000000L
+//DAGB4_RD_RDRET_CREDIT_CNTL
+#define DAGB4_RD_RDRET_CREDIT_CNTL__VC0_CREDIT__SHIFT 0x0
+#define DAGB4_RD_RDRET_CREDIT_CNTL__VC1_CREDIT__SHIFT 0x6
+#define DAGB4_RD_RDRET_CREDIT_CNTL__VC2_CREDIT__SHIFT 0xc
+#define DAGB4_RD_RDRET_CREDIT_CNTL__VC3_CREDIT__SHIFT 0x12
+#define DAGB4_RD_RDRET_CREDIT_CNTL__VC4_CREDIT__SHIFT 0x18
+#define DAGB4_RD_RDRET_CREDIT_CNTL__VC_MODE__SHIFT 0x1e
+#define DAGB4_RD_RDRET_CREDIT_CNTL__FIX_EQ__SHIFT 0x1f
+#define DAGB4_RD_RDRET_CREDIT_CNTL__VC0_CREDIT_MASK 0x0000003FL
+#define DAGB4_RD_RDRET_CREDIT_CNTL__VC1_CREDIT_MASK 0x00000FC0L
+#define DAGB4_RD_RDRET_CREDIT_CNTL__VC2_CREDIT_MASK 0x0003F000L
+#define DAGB4_RD_RDRET_CREDIT_CNTL__VC3_CREDIT_MASK 0x00FC0000L
+#define DAGB4_RD_RDRET_CREDIT_CNTL__VC4_CREDIT_MASK 0x3F000000L
+#define DAGB4_RD_RDRET_CREDIT_CNTL__VC_MODE_MASK 0x40000000L
+#define DAGB4_RD_RDRET_CREDIT_CNTL__FIX_EQ_MASK 0x80000000L
+//DAGB4_RD_RDRET_CREDIT_CNTL2
+#define DAGB4_RD_RDRET_CREDIT_CNTL2__IO_CREDIT__SHIFT 0x0
+#define DAGB4_RD_RDRET_CREDIT_CNTL2__GMI_CREDIT__SHIFT 0x6
+#define DAGB4_RD_RDRET_CREDIT_CNTL2__POOL_CREDIT__SHIFT 0xc
+#define DAGB4_RD_RDRET_CREDIT_CNTL2__IO_CREDIT_MASK 0x0000003FL
+#define DAGB4_RD_RDRET_CREDIT_CNTL2__GMI_CREDIT_MASK 0x00000FC0L
+#define DAGB4_RD_RDRET_CREDIT_CNTL2__POOL_CREDIT_MASK 0x0007F000L
+//DAGB4_RDCLI_ASK_PENDING
+#define DAGB4_RDCLI_ASK_PENDING__BUSY__SHIFT 0x0
+#define DAGB4_RDCLI_ASK_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB4_RDCLI_GO_PENDING
+#define DAGB4_RDCLI_GO_PENDING__BUSY__SHIFT 0x0
+#define DAGB4_RDCLI_GO_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB4_RDCLI_GBLSEND_PENDING
+#define DAGB4_RDCLI_GBLSEND_PENDING__BUSY__SHIFT 0x0
+#define DAGB4_RDCLI_GBLSEND_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB4_RDCLI_TLB_PENDING
+#define DAGB4_RDCLI_TLB_PENDING__BUSY__SHIFT 0x0
+#define DAGB4_RDCLI_TLB_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB4_RDCLI_OARB_PENDING
+#define DAGB4_RDCLI_OARB_PENDING__BUSY__SHIFT 0x0
+#define DAGB4_RDCLI_OARB_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB4_RDCLI_OSD_PENDING
+#define DAGB4_RDCLI_OSD_PENDING__BUSY__SHIFT 0x0
+#define DAGB4_RDCLI_OSD_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB4_WRCLI0
+#define DAGB4_WRCLI0__VIRT_CHAN__SHIFT 0x0
+#define DAGB4_WRCLI0__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB4_WRCLI0__URG_HIGH__SHIFT 0x4
+#define DAGB4_WRCLI0__URG_LOW__SHIFT 0x8
+#define DAGB4_WRCLI0__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB4_WRCLI0__MAX_BW__SHIFT 0xd
+#define DAGB4_WRCLI0__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB4_WRCLI0__MIN_BW__SHIFT 0x16
+#define DAGB4_WRCLI0__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB4_WRCLI0__MAX_OSD__SHIFT 0x1a
+#define DAGB4_WRCLI0__VIRT_CHAN_MASK 0x00000007L
+#define DAGB4_WRCLI0__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB4_WRCLI0__URG_HIGH_MASK 0x000000F0L
+#define DAGB4_WRCLI0__URG_LOW_MASK 0x00000F00L
+#define DAGB4_WRCLI0__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB4_WRCLI0__MAX_BW_MASK 0x001FE000L
+#define DAGB4_WRCLI0__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB4_WRCLI0__MIN_BW_MASK 0x01C00000L
+#define DAGB4_WRCLI0__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB4_WRCLI0__MAX_OSD_MASK 0xFC000000L
+//DAGB4_WRCLI1
+#define DAGB4_WRCLI1__VIRT_CHAN__SHIFT 0x0
+#define DAGB4_WRCLI1__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB4_WRCLI1__URG_HIGH__SHIFT 0x4
+#define DAGB4_WRCLI1__URG_LOW__SHIFT 0x8
+#define DAGB4_WRCLI1__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB4_WRCLI1__MAX_BW__SHIFT 0xd
+#define DAGB4_WRCLI1__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB4_WRCLI1__MIN_BW__SHIFT 0x16
+#define DAGB4_WRCLI1__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB4_WRCLI1__MAX_OSD__SHIFT 0x1a
+#define DAGB4_WRCLI1__VIRT_CHAN_MASK 0x00000007L
+#define DAGB4_WRCLI1__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB4_WRCLI1__URG_HIGH_MASK 0x000000F0L
+#define DAGB4_WRCLI1__URG_LOW_MASK 0x00000F00L
+#define DAGB4_WRCLI1__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB4_WRCLI1__MAX_BW_MASK 0x001FE000L
+#define DAGB4_WRCLI1__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB4_WRCLI1__MIN_BW_MASK 0x01C00000L
+#define DAGB4_WRCLI1__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB4_WRCLI1__MAX_OSD_MASK 0xFC000000L
+//DAGB4_WRCLI2
+#define DAGB4_WRCLI2__VIRT_CHAN__SHIFT 0x0
+#define DAGB4_WRCLI2__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB4_WRCLI2__URG_HIGH__SHIFT 0x4
+#define DAGB4_WRCLI2__URG_LOW__SHIFT 0x8
+#define DAGB4_WRCLI2__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB4_WRCLI2__MAX_BW__SHIFT 0xd
+#define DAGB4_WRCLI2__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB4_WRCLI2__MIN_BW__SHIFT 0x16
+#define DAGB4_WRCLI2__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB4_WRCLI2__MAX_OSD__SHIFT 0x1a
+#define DAGB4_WRCLI2__VIRT_CHAN_MASK 0x00000007L
+#define DAGB4_WRCLI2__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB4_WRCLI2__URG_HIGH_MASK 0x000000F0L
+#define DAGB4_WRCLI2__URG_LOW_MASK 0x00000F00L
+#define DAGB4_WRCLI2__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB4_WRCLI2__MAX_BW_MASK 0x001FE000L
+#define DAGB4_WRCLI2__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB4_WRCLI2__MIN_BW_MASK 0x01C00000L
+#define DAGB4_WRCLI2__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB4_WRCLI2__MAX_OSD_MASK 0xFC000000L
+//DAGB4_WRCLI3
+#define DAGB4_WRCLI3__VIRT_CHAN__SHIFT 0x0
+#define DAGB4_WRCLI3__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB4_WRCLI3__URG_HIGH__SHIFT 0x4
+#define DAGB4_WRCLI3__URG_LOW__SHIFT 0x8
+#define DAGB4_WRCLI3__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB4_WRCLI3__MAX_BW__SHIFT 0xd
+#define DAGB4_WRCLI3__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB4_WRCLI3__MIN_BW__SHIFT 0x16
+#define DAGB4_WRCLI3__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB4_WRCLI3__MAX_OSD__SHIFT 0x1a
+#define DAGB4_WRCLI3__VIRT_CHAN_MASK 0x00000007L
+#define DAGB4_WRCLI3__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB4_WRCLI3__URG_HIGH_MASK 0x000000F0L
+#define DAGB4_WRCLI3__URG_LOW_MASK 0x00000F00L
+#define DAGB4_WRCLI3__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB4_WRCLI3__MAX_BW_MASK 0x001FE000L
+#define DAGB4_WRCLI3__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB4_WRCLI3__MIN_BW_MASK 0x01C00000L
+#define DAGB4_WRCLI3__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB4_WRCLI3__MAX_OSD_MASK 0xFC000000L
+//DAGB4_WRCLI4
+#define DAGB4_WRCLI4__VIRT_CHAN__SHIFT 0x0
+#define DAGB4_WRCLI4__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB4_WRCLI4__URG_HIGH__SHIFT 0x4
+#define DAGB4_WRCLI4__URG_LOW__SHIFT 0x8
+#define DAGB4_WRCLI4__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB4_WRCLI4__MAX_BW__SHIFT 0xd
+#define DAGB4_WRCLI4__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB4_WRCLI4__MIN_BW__SHIFT 0x16
+#define DAGB4_WRCLI4__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB4_WRCLI4__MAX_OSD__SHIFT 0x1a
+#define DAGB4_WRCLI4__VIRT_CHAN_MASK 0x00000007L
+#define DAGB4_WRCLI4__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB4_WRCLI4__URG_HIGH_MASK 0x000000F0L
+#define DAGB4_WRCLI4__URG_LOW_MASK 0x00000F00L
+#define DAGB4_WRCLI4__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB4_WRCLI4__MAX_BW_MASK 0x001FE000L
+#define DAGB4_WRCLI4__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB4_WRCLI4__MIN_BW_MASK 0x01C00000L
+#define DAGB4_WRCLI4__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB4_WRCLI4__MAX_OSD_MASK 0xFC000000L
+//DAGB4_WRCLI5
+#define DAGB4_WRCLI5__VIRT_CHAN__SHIFT 0x0
+#define DAGB4_WRCLI5__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB4_WRCLI5__URG_HIGH__SHIFT 0x4
+#define DAGB4_WRCLI5__URG_LOW__SHIFT 0x8
+#define DAGB4_WRCLI5__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB4_WRCLI5__MAX_BW__SHIFT 0xd
+#define DAGB4_WRCLI5__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB4_WRCLI5__MIN_BW__SHIFT 0x16
+#define DAGB4_WRCLI5__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB4_WRCLI5__MAX_OSD__SHIFT 0x1a
+#define DAGB4_WRCLI5__VIRT_CHAN_MASK 0x00000007L
+#define DAGB4_WRCLI5__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB4_WRCLI5__URG_HIGH_MASK 0x000000F0L
+#define DAGB4_WRCLI5__URG_LOW_MASK 0x00000F00L
+#define DAGB4_WRCLI5__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB4_WRCLI5__MAX_BW_MASK 0x001FE000L
+#define DAGB4_WRCLI5__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB4_WRCLI5__MIN_BW_MASK 0x01C00000L
+#define DAGB4_WRCLI5__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB4_WRCLI5__MAX_OSD_MASK 0xFC000000L
+//DAGB4_WRCLI6
+#define DAGB4_WRCLI6__VIRT_CHAN__SHIFT 0x0
+#define DAGB4_WRCLI6__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB4_WRCLI6__URG_HIGH__SHIFT 0x4
+#define DAGB4_WRCLI6__URG_LOW__SHIFT 0x8
+#define DAGB4_WRCLI6__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB4_WRCLI6__MAX_BW__SHIFT 0xd
+#define DAGB4_WRCLI6__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB4_WRCLI6__MIN_BW__SHIFT 0x16
+#define DAGB4_WRCLI6__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB4_WRCLI6__MAX_OSD__SHIFT 0x1a
+#define DAGB4_WRCLI6__VIRT_CHAN_MASK 0x00000007L
+#define DAGB4_WRCLI6__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB4_WRCLI6__URG_HIGH_MASK 0x000000F0L
+#define DAGB4_WRCLI6__URG_LOW_MASK 0x00000F00L
+#define DAGB4_WRCLI6__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB4_WRCLI6__MAX_BW_MASK 0x001FE000L
+#define DAGB4_WRCLI6__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB4_WRCLI6__MIN_BW_MASK 0x01C00000L
+#define DAGB4_WRCLI6__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB4_WRCLI6__MAX_OSD_MASK 0xFC000000L
+//DAGB4_WRCLI7
+#define DAGB4_WRCLI7__VIRT_CHAN__SHIFT 0x0
+#define DAGB4_WRCLI7__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB4_WRCLI7__URG_HIGH__SHIFT 0x4
+#define DAGB4_WRCLI7__URG_LOW__SHIFT 0x8
+#define DAGB4_WRCLI7__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB4_WRCLI7__MAX_BW__SHIFT 0xd
+#define DAGB4_WRCLI7__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB4_WRCLI7__MIN_BW__SHIFT 0x16
+#define DAGB4_WRCLI7__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB4_WRCLI7__MAX_OSD__SHIFT 0x1a
+#define DAGB4_WRCLI7__VIRT_CHAN_MASK 0x00000007L
+#define DAGB4_WRCLI7__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB4_WRCLI7__URG_HIGH_MASK 0x000000F0L
+#define DAGB4_WRCLI7__URG_LOW_MASK 0x00000F00L
+#define DAGB4_WRCLI7__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB4_WRCLI7__MAX_BW_MASK 0x001FE000L
+#define DAGB4_WRCLI7__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB4_WRCLI7__MIN_BW_MASK 0x01C00000L
+#define DAGB4_WRCLI7__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB4_WRCLI7__MAX_OSD_MASK 0xFC000000L
+//DAGB4_WRCLI8
+#define DAGB4_WRCLI8__VIRT_CHAN__SHIFT 0x0
+#define DAGB4_WRCLI8__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB4_WRCLI8__URG_HIGH__SHIFT 0x4
+#define DAGB4_WRCLI8__URG_LOW__SHIFT 0x8
+#define DAGB4_WRCLI8__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB4_WRCLI8__MAX_BW__SHIFT 0xd
+#define DAGB4_WRCLI8__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB4_WRCLI8__MIN_BW__SHIFT 0x16
+#define DAGB4_WRCLI8__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB4_WRCLI8__MAX_OSD__SHIFT 0x1a
+#define DAGB4_WRCLI8__VIRT_CHAN_MASK 0x00000007L
+#define DAGB4_WRCLI8__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB4_WRCLI8__URG_HIGH_MASK 0x000000F0L
+#define DAGB4_WRCLI8__URG_LOW_MASK 0x00000F00L
+#define DAGB4_WRCLI8__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB4_WRCLI8__MAX_BW_MASK 0x001FE000L
+#define DAGB4_WRCLI8__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB4_WRCLI8__MIN_BW_MASK 0x01C00000L
+#define DAGB4_WRCLI8__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB4_WRCLI8__MAX_OSD_MASK 0xFC000000L
+//DAGB4_WRCLI9
+#define DAGB4_WRCLI9__VIRT_CHAN__SHIFT 0x0
+#define DAGB4_WRCLI9__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB4_WRCLI9__URG_HIGH__SHIFT 0x4
+#define DAGB4_WRCLI9__URG_LOW__SHIFT 0x8
+#define DAGB4_WRCLI9__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB4_WRCLI9__MAX_BW__SHIFT 0xd
+#define DAGB4_WRCLI9__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB4_WRCLI9__MIN_BW__SHIFT 0x16
+#define DAGB4_WRCLI9__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB4_WRCLI9__MAX_OSD__SHIFT 0x1a
+#define DAGB4_WRCLI9__VIRT_CHAN_MASK 0x00000007L
+#define DAGB4_WRCLI9__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB4_WRCLI9__URG_HIGH_MASK 0x000000F0L
+#define DAGB4_WRCLI9__URG_LOW_MASK 0x00000F00L
+#define DAGB4_WRCLI9__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB4_WRCLI9__MAX_BW_MASK 0x001FE000L
+#define DAGB4_WRCLI9__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB4_WRCLI9__MIN_BW_MASK 0x01C00000L
+#define DAGB4_WRCLI9__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB4_WRCLI9__MAX_OSD_MASK 0xFC000000L
+//DAGB4_WRCLI10
+#define DAGB4_WRCLI10__VIRT_CHAN__SHIFT 0x0
+#define DAGB4_WRCLI10__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB4_WRCLI10__URG_HIGH__SHIFT 0x4
+#define DAGB4_WRCLI10__URG_LOW__SHIFT 0x8
+#define DAGB4_WRCLI10__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB4_WRCLI10__MAX_BW__SHIFT 0xd
+#define DAGB4_WRCLI10__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB4_WRCLI10__MIN_BW__SHIFT 0x16
+#define DAGB4_WRCLI10__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB4_WRCLI10__MAX_OSD__SHIFT 0x1a
+#define DAGB4_WRCLI10__VIRT_CHAN_MASK 0x00000007L
+#define DAGB4_WRCLI10__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB4_WRCLI10__URG_HIGH_MASK 0x000000F0L
+#define DAGB4_WRCLI10__URG_LOW_MASK 0x00000F00L
+#define DAGB4_WRCLI10__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB4_WRCLI10__MAX_BW_MASK 0x001FE000L
+#define DAGB4_WRCLI10__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB4_WRCLI10__MIN_BW_MASK 0x01C00000L
+#define DAGB4_WRCLI10__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB4_WRCLI10__MAX_OSD_MASK 0xFC000000L
+//DAGB4_WRCLI11
+#define DAGB4_WRCLI11__VIRT_CHAN__SHIFT 0x0
+#define DAGB4_WRCLI11__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB4_WRCLI11__URG_HIGH__SHIFT 0x4
+#define DAGB4_WRCLI11__URG_LOW__SHIFT 0x8
+#define DAGB4_WRCLI11__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB4_WRCLI11__MAX_BW__SHIFT 0xd
+#define DAGB4_WRCLI11__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB4_WRCLI11__MIN_BW__SHIFT 0x16
+#define DAGB4_WRCLI11__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB4_WRCLI11__MAX_OSD__SHIFT 0x1a
+#define DAGB4_WRCLI11__VIRT_CHAN_MASK 0x00000007L
+#define DAGB4_WRCLI11__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB4_WRCLI11__URG_HIGH_MASK 0x000000F0L
+#define DAGB4_WRCLI11__URG_LOW_MASK 0x00000F00L
+#define DAGB4_WRCLI11__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB4_WRCLI11__MAX_BW_MASK 0x001FE000L
+#define DAGB4_WRCLI11__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB4_WRCLI11__MIN_BW_MASK 0x01C00000L
+#define DAGB4_WRCLI11__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB4_WRCLI11__MAX_OSD_MASK 0xFC000000L
+//DAGB4_WRCLI12
+#define DAGB4_WRCLI12__VIRT_CHAN__SHIFT 0x0
+#define DAGB4_WRCLI12__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB4_WRCLI12__URG_HIGH__SHIFT 0x4
+#define DAGB4_WRCLI12__URG_LOW__SHIFT 0x8
+#define DAGB4_WRCLI12__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB4_WRCLI12__MAX_BW__SHIFT 0xd
+#define DAGB4_WRCLI12__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB4_WRCLI12__MIN_BW__SHIFT 0x16
+#define DAGB4_WRCLI12__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB4_WRCLI12__MAX_OSD__SHIFT 0x1a
+#define DAGB4_WRCLI12__VIRT_CHAN_MASK 0x00000007L
+#define DAGB4_WRCLI12__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB4_WRCLI12__URG_HIGH_MASK 0x000000F0L
+#define DAGB4_WRCLI12__URG_LOW_MASK 0x00000F00L
+#define DAGB4_WRCLI12__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB4_WRCLI12__MAX_BW_MASK 0x001FE000L
+#define DAGB4_WRCLI12__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB4_WRCLI12__MIN_BW_MASK 0x01C00000L
+#define DAGB4_WRCLI12__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB4_WRCLI12__MAX_OSD_MASK 0xFC000000L
+//DAGB4_WRCLI13
+#define DAGB4_WRCLI13__VIRT_CHAN__SHIFT 0x0
+#define DAGB4_WRCLI13__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB4_WRCLI13__URG_HIGH__SHIFT 0x4
+#define DAGB4_WRCLI13__URG_LOW__SHIFT 0x8
+#define DAGB4_WRCLI13__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB4_WRCLI13__MAX_BW__SHIFT 0xd
+#define DAGB4_WRCLI13__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB4_WRCLI13__MIN_BW__SHIFT 0x16
+#define DAGB4_WRCLI13__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB4_WRCLI13__MAX_OSD__SHIFT 0x1a
+#define DAGB4_WRCLI13__VIRT_CHAN_MASK 0x00000007L
+#define DAGB4_WRCLI13__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB4_WRCLI13__URG_HIGH_MASK 0x000000F0L
+#define DAGB4_WRCLI13__URG_LOW_MASK 0x00000F00L
+#define DAGB4_WRCLI13__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB4_WRCLI13__MAX_BW_MASK 0x001FE000L
+#define DAGB4_WRCLI13__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB4_WRCLI13__MIN_BW_MASK 0x01C00000L
+#define DAGB4_WRCLI13__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB4_WRCLI13__MAX_OSD_MASK 0xFC000000L
+//DAGB4_WRCLI14
+#define DAGB4_WRCLI14__VIRT_CHAN__SHIFT 0x0
+#define DAGB4_WRCLI14__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB4_WRCLI14__URG_HIGH__SHIFT 0x4
+#define DAGB4_WRCLI14__URG_LOW__SHIFT 0x8
+#define DAGB4_WRCLI14__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB4_WRCLI14__MAX_BW__SHIFT 0xd
+#define DAGB4_WRCLI14__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB4_WRCLI14__MIN_BW__SHIFT 0x16
+#define DAGB4_WRCLI14__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB4_WRCLI14__MAX_OSD__SHIFT 0x1a
+#define DAGB4_WRCLI14__VIRT_CHAN_MASK 0x00000007L
+#define DAGB4_WRCLI14__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB4_WRCLI14__URG_HIGH_MASK 0x000000F0L
+#define DAGB4_WRCLI14__URG_LOW_MASK 0x00000F00L
+#define DAGB4_WRCLI14__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB4_WRCLI14__MAX_BW_MASK 0x001FE000L
+#define DAGB4_WRCLI14__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB4_WRCLI14__MIN_BW_MASK 0x01C00000L
+#define DAGB4_WRCLI14__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB4_WRCLI14__MAX_OSD_MASK 0xFC000000L
+//DAGB4_WRCLI15
+#define DAGB4_WRCLI15__VIRT_CHAN__SHIFT 0x0
+#define DAGB4_WRCLI15__CHECK_TLB_CREDIT__SHIFT 0x3
+#define DAGB4_WRCLI15__URG_HIGH__SHIFT 0x4
+#define DAGB4_WRCLI15__URG_LOW__SHIFT 0x8
+#define DAGB4_WRCLI15__MAX_BW_ENABLE__SHIFT 0xc
+#define DAGB4_WRCLI15__MAX_BW__SHIFT 0xd
+#define DAGB4_WRCLI15__MIN_BW_ENABLE__SHIFT 0x15
+#define DAGB4_WRCLI15__MIN_BW__SHIFT 0x16
+#define DAGB4_WRCLI15__OSD_LIMITER_ENABLE__SHIFT 0x19
+#define DAGB4_WRCLI15__MAX_OSD__SHIFT 0x1a
+#define DAGB4_WRCLI15__VIRT_CHAN_MASK 0x00000007L
+#define DAGB4_WRCLI15__CHECK_TLB_CREDIT_MASK 0x00000008L
+#define DAGB4_WRCLI15__URG_HIGH_MASK 0x000000F0L
+#define DAGB4_WRCLI15__URG_LOW_MASK 0x00000F00L
+#define DAGB4_WRCLI15__MAX_BW_ENABLE_MASK 0x00001000L
+#define DAGB4_WRCLI15__MAX_BW_MASK 0x001FE000L
+#define DAGB4_WRCLI15__MIN_BW_ENABLE_MASK 0x00200000L
+#define DAGB4_WRCLI15__MIN_BW_MASK 0x01C00000L
+#define DAGB4_WRCLI15__OSD_LIMITER_ENABLE_MASK 0x02000000L
+#define DAGB4_WRCLI15__MAX_OSD_MASK 0xFC000000L
+//DAGB4_WR_CNTL
+#define DAGB4_WR_CNTL__SCLK_FREQ__SHIFT 0x0
+#define DAGB4_WR_CNTL__CLI_MAX_BW_WINDOW__SHIFT 0x4
+#define DAGB4_WR_CNTL__VC_MAX_BW_WINDOW__SHIFT 0xa
+#define DAGB4_WR_CNTL__IO_LEVEL_OVERRIDE_ENABLE__SHIFT 0x10
+#define DAGB4_WR_CNTL__IO_LEVEL__SHIFT 0x11
+#define DAGB4_WR_CNTL__IO_LEVEL_COMPLY_VC__SHIFT 0x14
+#define DAGB4_WR_CNTL__SHARE_VC_NUM__SHIFT 0x17
+#define DAGB4_WR_CNTL__FIX_JUMP__SHIFT 0x1a
+#define DAGB4_WR_CNTL__SCLK_FREQ_MASK 0x0000000FL
+#define DAGB4_WR_CNTL__CLI_MAX_BW_WINDOW_MASK 0x000003F0L
+#define DAGB4_WR_CNTL__VC_MAX_BW_WINDOW_MASK 0x0000FC00L
+#define DAGB4_WR_CNTL__IO_LEVEL_OVERRIDE_ENABLE_MASK 0x00010000L
+#define DAGB4_WR_CNTL__IO_LEVEL_MASK 0x000E0000L
+#define DAGB4_WR_CNTL__IO_LEVEL_COMPLY_VC_MASK 0x00700000L
+#define DAGB4_WR_CNTL__SHARE_VC_NUM_MASK 0x03800000L
+#define DAGB4_WR_CNTL__FIX_JUMP_MASK 0x04000000L
+//DAGB4_WR_GMI_CNTL
+#define DAGB4_WR_GMI_CNTL__EA_CREDIT__SHIFT 0x0
+#define DAGB4_WR_GMI_CNTL__LEVEL__SHIFT 0x6
+#define DAGB4_WR_GMI_CNTL__MAX_BURST__SHIFT 0x9
+#define DAGB4_WR_GMI_CNTL__LAZY_TIMER__SHIFT 0xd
+#define DAGB4_WR_GMI_CNTL__EA_CREDIT_MASK 0x0000003FL
+#define DAGB4_WR_GMI_CNTL__LEVEL_MASK 0x000001C0L
+#define DAGB4_WR_GMI_CNTL__MAX_BURST_MASK 0x00001E00L
+#define DAGB4_WR_GMI_CNTL__LAZY_TIMER_MASK 0x0001E000L
+//DAGB4_WR_ADDR_DAGB
+#define DAGB4_WR_ADDR_DAGB__DAGB_ENABLE__SHIFT 0x0
+#define DAGB4_WR_ADDR_DAGB__ENABLE_JUMP_AHEAD__SHIFT 0x3
+#define DAGB4_WR_ADDR_DAGB__DISABLE_SELF_INIT__SHIFT 0x6
+#define DAGB4_WR_ADDR_DAGB__WHOAMI__SHIFT 0x7
+#define DAGB4_WR_ADDR_DAGB__JUMP_MODE__SHIFT 0xd
+#define DAGB4_WR_ADDR_DAGB__DAGB_ENABLE_MASK 0x00000007L
+#define DAGB4_WR_ADDR_DAGB__ENABLE_JUMP_AHEAD_MASK 0x00000038L
+#define DAGB4_WR_ADDR_DAGB__DISABLE_SELF_INIT_MASK 0x00000040L
+#define DAGB4_WR_ADDR_DAGB__WHOAMI_MASK 0x00001F80L
+#define DAGB4_WR_ADDR_DAGB__JUMP_MODE_MASK 0x00002000L
+//DAGB4_WR_OUTPUT_DAGB_MAX_BURST
+#define DAGB4_WR_OUTPUT_DAGB_MAX_BURST__VC0__SHIFT 0x0
+#define DAGB4_WR_OUTPUT_DAGB_MAX_BURST__VC1__SHIFT 0x4
+#define DAGB4_WR_OUTPUT_DAGB_MAX_BURST__VC2__SHIFT 0x8
+#define DAGB4_WR_OUTPUT_DAGB_MAX_BURST__VC3__SHIFT 0xc
+#define DAGB4_WR_OUTPUT_DAGB_MAX_BURST__VC4__SHIFT 0x10
+#define DAGB4_WR_OUTPUT_DAGB_MAX_BURST__VC5__SHIFT 0x14
+#define DAGB4_WR_OUTPUT_DAGB_MAX_BURST__VC6__SHIFT 0x18
+#define DAGB4_WR_OUTPUT_DAGB_MAX_BURST__VC7__SHIFT 0x1c
+#define DAGB4_WR_OUTPUT_DAGB_MAX_BURST__VC0_MASK 0x0000000FL
+#define DAGB4_WR_OUTPUT_DAGB_MAX_BURST__VC1_MASK 0x000000F0L
+#define DAGB4_WR_OUTPUT_DAGB_MAX_BURST__VC2_MASK 0x00000F00L
+#define DAGB4_WR_OUTPUT_DAGB_MAX_BURST__VC3_MASK 0x0000F000L
+#define DAGB4_WR_OUTPUT_DAGB_MAX_BURST__VC4_MASK 0x000F0000L
+#define DAGB4_WR_OUTPUT_DAGB_MAX_BURST__VC5_MASK 0x00F00000L
+#define DAGB4_WR_OUTPUT_DAGB_MAX_BURST__VC6_MASK 0x0F000000L
+#define DAGB4_WR_OUTPUT_DAGB_MAX_BURST__VC7_MASK 0xF0000000L
+//DAGB4_WR_OUTPUT_DAGB_LAZY_TIMER
+#define DAGB4_WR_OUTPUT_DAGB_LAZY_TIMER__VC0__SHIFT 0x0
+#define DAGB4_WR_OUTPUT_DAGB_LAZY_TIMER__VC1__SHIFT 0x4
+#define DAGB4_WR_OUTPUT_DAGB_LAZY_TIMER__VC2__SHIFT 0x8
+#define DAGB4_WR_OUTPUT_DAGB_LAZY_TIMER__VC3__SHIFT 0xc
+#define DAGB4_WR_OUTPUT_DAGB_LAZY_TIMER__VC4__SHIFT 0x10
+#define DAGB4_WR_OUTPUT_DAGB_LAZY_TIMER__VC5__SHIFT 0x14
+#define DAGB4_WR_OUTPUT_DAGB_LAZY_TIMER__VC6__SHIFT 0x18
+#define DAGB4_WR_OUTPUT_DAGB_LAZY_TIMER__VC7__SHIFT 0x1c
+#define DAGB4_WR_OUTPUT_DAGB_LAZY_TIMER__VC0_MASK 0x0000000FL
+#define DAGB4_WR_OUTPUT_DAGB_LAZY_TIMER__VC1_MASK 0x000000F0L
+#define DAGB4_WR_OUTPUT_DAGB_LAZY_TIMER__VC2_MASK 0x00000F00L
+#define DAGB4_WR_OUTPUT_DAGB_LAZY_TIMER__VC3_MASK 0x0000F000L
+#define DAGB4_WR_OUTPUT_DAGB_LAZY_TIMER__VC4_MASK 0x000F0000L
+#define DAGB4_WR_OUTPUT_DAGB_LAZY_TIMER__VC5_MASK 0x00F00000L
+#define DAGB4_WR_OUTPUT_DAGB_LAZY_TIMER__VC6_MASK 0x0F000000L
+#define DAGB4_WR_OUTPUT_DAGB_LAZY_TIMER__VC7_MASK 0xF0000000L
+//DAGB4_WR_CGTT_CLK_CTRL
+#define DAGB4_WR_CGTT_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define DAGB4_WR_CGTT_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define DAGB4_WR_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS__SHIFT 0xc
+#define DAGB4_WR_CGTT_CLK_CTRL__LS_OVERRIDE__SHIFT 0x1e
+#define DAGB4_WR_CGTT_CLK_CTRL__SOFT_OVERRIDE__SHIFT 0x1f
+#define DAGB4_WR_CGTT_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define DAGB4_WR_CGTT_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define DAGB4_WR_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS_MASK 0x0FFFF000L
+#define DAGB4_WR_CGTT_CLK_CTRL__LS_OVERRIDE_MASK 0x40000000L
+#define DAGB4_WR_CGTT_CLK_CTRL__SOFT_OVERRIDE_MASK 0x80000000L
+//DAGB4_L1TLB_WR_CGTT_CLK_CTRL
+#define DAGB4_L1TLB_WR_CGTT_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define DAGB4_L1TLB_WR_CGTT_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define DAGB4_L1TLB_WR_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS__SHIFT 0xc
+#define DAGB4_L1TLB_WR_CGTT_CLK_CTRL__LS_OVERRIDE__SHIFT 0x1e
+#define DAGB4_L1TLB_WR_CGTT_CLK_CTRL__SOFT_OVERRIDE__SHIFT 0x1f
+#define DAGB4_L1TLB_WR_CGTT_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define DAGB4_L1TLB_WR_CGTT_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define DAGB4_L1TLB_WR_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS_MASK 0x0FFFF000L
+#define DAGB4_L1TLB_WR_CGTT_CLK_CTRL__LS_OVERRIDE_MASK 0x40000000L
+#define DAGB4_L1TLB_WR_CGTT_CLK_CTRL__SOFT_OVERRIDE_MASK 0x80000000L
+//DAGB4_ATCVM_WR_CGTT_CLK_CTRL
+#define DAGB4_ATCVM_WR_CGTT_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define DAGB4_ATCVM_WR_CGTT_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define DAGB4_ATCVM_WR_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS__SHIFT 0xc
+#define DAGB4_ATCVM_WR_CGTT_CLK_CTRL__LS_OVERRIDE__SHIFT 0x1e
+#define DAGB4_ATCVM_WR_CGTT_CLK_CTRL__SOFT_OVERRIDE__SHIFT 0x1f
+#define DAGB4_ATCVM_WR_CGTT_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define DAGB4_ATCVM_WR_CGTT_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define DAGB4_ATCVM_WR_CGTT_CLK_CTRL__LS_ASSERT_HYSTERESIS_MASK 0x0FFFF000L
+#define DAGB4_ATCVM_WR_CGTT_CLK_CTRL__LS_OVERRIDE_MASK 0x40000000L
+#define DAGB4_ATCVM_WR_CGTT_CLK_CTRL__SOFT_OVERRIDE_MASK 0x80000000L
+//DAGB4_WR_ADDR_DAGB_MAX_BURST0
+#define DAGB4_WR_ADDR_DAGB_MAX_BURST0__CLIENT0__SHIFT 0x0
+#define DAGB4_WR_ADDR_DAGB_MAX_BURST0__CLIENT1__SHIFT 0x4
+#define DAGB4_WR_ADDR_DAGB_MAX_BURST0__CLIENT2__SHIFT 0x8
+#define DAGB4_WR_ADDR_DAGB_MAX_BURST0__CLIENT3__SHIFT 0xc
+#define DAGB4_WR_ADDR_DAGB_MAX_BURST0__CLIENT4__SHIFT 0x10
+#define DAGB4_WR_ADDR_DAGB_MAX_BURST0__CLIENT5__SHIFT 0x14
+#define DAGB4_WR_ADDR_DAGB_MAX_BURST0__CLIENT6__SHIFT 0x18
+#define DAGB4_WR_ADDR_DAGB_MAX_BURST0__CLIENT7__SHIFT 0x1c
+#define DAGB4_WR_ADDR_DAGB_MAX_BURST0__CLIENT0_MASK 0x0000000FL
+#define DAGB4_WR_ADDR_DAGB_MAX_BURST0__CLIENT1_MASK 0x000000F0L
+#define DAGB4_WR_ADDR_DAGB_MAX_BURST0__CLIENT2_MASK 0x00000F00L
+#define DAGB4_WR_ADDR_DAGB_MAX_BURST0__CLIENT3_MASK 0x0000F000L
+#define DAGB4_WR_ADDR_DAGB_MAX_BURST0__CLIENT4_MASK 0x000F0000L
+#define DAGB4_WR_ADDR_DAGB_MAX_BURST0__CLIENT5_MASK 0x00F00000L
+#define DAGB4_WR_ADDR_DAGB_MAX_BURST0__CLIENT6_MASK 0x0F000000L
+#define DAGB4_WR_ADDR_DAGB_MAX_BURST0__CLIENT7_MASK 0xF0000000L
+//DAGB4_WR_ADDR_DAGB_LAZY_TIMER0
+#define DAGB4_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT0__SHIFT 0x0
+#define DAGB4_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT1__SHIFT 0x4
+#define DAGB4_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT2__SHIFT 0x8
+#define DAGB4_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT3__SHIFT 0xc
+#define DAGB4_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT4__SHIFT 0x10
+#define DAGB4_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT5__SHIFT 0x14
+#define DAGB4_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT6__SHIFT 0x18
+#define DAGB4_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT7__SHIFT 0x1c
+#define DAGB4_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT0_MASK 0x0000000FL
+#define DAGB4_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT1_MASK 0x000000F0L
+#define DAGB4_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT2_MASK 0x00000F00L
+#define DAGB4_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT3_MASK 0x0000F000L
+#define DAGB4_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT4_MASK 0x000F0000L
+#define DAGB4_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT5_MASK 0x00F00000L
+#define DAGB4_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT6_MASK 0x0F000000L
+#define DAGB4_WR_ADDR_DAGB_LAZY_TIMER0__CLIENT7_MASK 0xF0000000L
+//DAGB4_WR_ADDR_DAGB_MAX_BURST1
+#define DAGB4_WR_ADDR_DAGB_MAX_BURST1__CLIENT8__SHIFT 0x0
+#define DAGB4_WR_ADDR_DAGB_MAX_BURST1__CLIENT9__SHIFT 0x4
+#define DAGB4_WR_ADDR_DAGB_MAX_BURST1__CLIENT10__SHIFT 0x8
+#define DAGB4_WR_ADDR_DAGB_MAX_BURST1__CLIENT11__SHIFT 0xc
+#define DAGB4_WR_ADDR_DAGB_MAX_BURST1__CLIENT12__SHIFT 0x10
+#define DAGB4_WR_ADDR_DAGB_MAX_BURST1__CLIENT13__SHIFT 0x14
+#define DAGB4_WR_ADDR_DAGB_MAX_BURST1__CLIENT14__SHIFT 0x18
+#define DAGB4_WR_ADDR_DAGB_MAX_BURST1__CLIENT15__SHIFT 0x1c
+#define DAGB4_WR_ADDR_DAGB_MAX_BURST1__CLIENT8_MASK 0x0000000FL
+#define DAGB4_WR_ADDR_DAGB_MAX_BURST1__CLIENT9_MASK 0x000000F0L
+#define DAGB4_WR_ADDR_DAGB_MAX_BURST1__CLIENT10_MASK 0x00000F00L
+#define DAGB4_WR_ADDR_DAGB_MAX_BURST1__CLIENT11_MASK 0x0000F000L
+#define DAGB4_WR_ADDR_DAGB_MAX_BURST1__CLIENT12_MASK 0x000F0000L
+#define DAGB4_WR_ADDR_DAGB_MAX_BURST1__CLIENT13_MASK 0x00F00000L
+#define DAGB4_WR_ADDR_DAGB_MAX_BURST1__CLIENT14_MASK 0x0F000000L
+#define DAGB4_WR_ADDR_DAGB_MAX_BURST1__CLIENT15_MASK 0xF0000000L
+//DAGB4_WR_ADDR_DAGB_LAZY_TIMER1
+#define DAGB4_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT8__SHIFT 0x0
+#define DAGB4_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT9__SHIFT 0x4
+#define DAGB4_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT10__SHIFT 0x8
+#define DAGB4_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT11__SHIFT 0xc
+#define DAGB4_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT12__SHIFT 0x10
+#define DAGB4_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT13__SHIFT 0x14
+#define DAGB4_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT14__SHIFT 0x18
+#define DAGB4_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT15__SHIFT 0x1c
+#define DAGB4_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT8_MASK 0x0000000FL
+#define DAGB4_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT9_MASK 0x000000F0L
+#define DAGB4_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT10_MASK 0x00000F00L
+#define DAGB4_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT11_MASK 0x0000F000L
+#define DAGB4_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT12_MASK 0x000F0000L
+#define DAGB4_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT13_MASK 0x00F00000L
+#define DAGB4_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT14_MASK 0x0F000000L
+#define DAGB4_WR_ADDR_DAGB_LAZY_TIMER1__CLIENT15_MASK 0xF0000000L
+//DAGB4_WR_DATA_DAGB
+#define DAGB4_WR_DATA_DAGB__DAGB_ENABLE__SHIFT 0x0
+#define DAGB4_WR_DATA_DAGB__ENABLE_JUMP_AHEAD__SHIFT 0x3
+#define DAGB4_WR_DATA_DAGB__DISABLE_SELF_INIT__SHIFT 0x6
+#define DAGB4_WR_DATA_DAGB__WHOAMI__SHIFT 0x7
+#define DAGB4_WR_DATA_DAGB__DAGB_ENABLE_MASK 0x00000007L
+#define DAGB4_WR_DATA_DAGB__ENABLE_JUMP_AHEAD_MASK 0x00000038L
+#define DAGB4_WR_DATA_DAGB__DISABLE_SELF_INIT_MASK 0x00000040L
+#define DAGB4_WR_DATA_DAGB__WHOAMI_MASK 0x00001F80L
+//DAGB4_WR_DATA_DAGB_MAX_BURST0
+#define DAGB4_WR_DATA_DAGB_MAX_BURST0__CLIENT0__SHIFT 0x0
+#define DAGB4_WR_DATA_DAGB_MAX_BURST0__CLIENT1__SHIFT 0x4
+#define DAGB4_WR_DATA_DAGB_MAX_BURST0__CLIENT2__SHIFT 0x8
+#define DAGB4_WR_DATA_DAGB_MAX_BURST0__CLIENT3__SHIFT 0xc
+#define DAGB4_WR_DATA_DAGB_MAX_BURST0__CLIENT4__SHIFT 0x10
+#define DAGB4_WR_DATA_DAGB_MAX_BURST0__CLIENT5__SHIFT 0x14
+#define DAGB4_WR_DATA_DAGB_MAX_BURST0__CLIENT6__SHIFT 0x18
+#define DAGB4_WR_DATA_DAGB_MAX_BURST0__CLIENT7__SHIFT 0x1c
+#define DAGB4_WR_DATA_DAGB_MAX_BURST0__CLIENT0_MASK 0x0000000FL
+#define DAGB4_WR_DATA_DAGB_MAX_BURST0__CLIENT1_MASK 0x000000F0L
+#define DAGB4_WR_DATA_DAGB_MAX_BURST0__CLIENT2_MASK 0x00000F00L
+#define DAGB4_WR_DATA_DAGB_MAX_BURST0__CLIENT3_MASK 0x0000F000L
+#define DAGB4_WR_DATA_DAGB_MAX_BURST0__CLIENT4_MASK 0x000F0000L
+#define DAGB4_WR_DATA_DAGB_MAX_BURST0__CLIENT5_MASK 0x00F00000L
+#define DAGB4_WR_DATA_DAGB_MAX_BURST0__CLIENT6_MASK 0x0F000000L
+#define DAGB4_WR_DATA_DAGB_MAX_BURST0__CLIENT7_MASK 0xF0000000L
+//DAGB4_WR_DATA_DAGB_LAZY_TIMER0
+#define DAGB4_WR_DATA_DAGB_LAZY_TIMER0__CLIENT0__SHIFT 0x0
+#define DAGB4_WR_DATA_DAGB_LAZY_TIMER0__CLIENT1__SHIFT 0x4
+#define DAGB4_WR_DATA_DAGB_LAZY_TIMER0__CLIENT2__SHIFT 0x8
+#define DAGB4_WR_DATA_DAGB_LAZY_TIMER0__CLIENT3__SHIFT 0xc
+#define DAGB4_WR_DATA_DAGB_LAZY_TIMER0__CLIENT4__SHIFT 0x10
+#define DAGB4_WR_DATA_DAGB_LAZY_TIMER0__CLIENT5__SHIFT 0x14
+#define DAGB4_WR_DATA_DAGB_LAZY_TIMER0__CLIENT6__SHIFT 0x18
+#define DAGB4_WR_DATA_DAGB_LAZY_TIMER0__CLIENT7__SHIFT 0x1c
+#define DAGB4_WR_DATA_DAGB_LAZY_TIMER0__CLIENT0_MASK 0x0000000FL
+#define DAGB4_WR_DATA_DAGB_LAZY_TIMER0__CLIENT1_MASK 0x000000F0L
+#define DAGB4_WR_DATA_DAGB_LAZY_TIMER0__CLIENT2_MASK 0x00000F00L
+#define DAGB4_WR_DATA_DAGB_LAZY_TIMER0__CLIENT3_MASK 0x0000F000L
+#define DAGB4_WR_DATA_DAGB_LAZY_TIMER0__CLIENT4_MASK 0x000F0000L
+#define DAGB4_WR_DATA_DAGB_LAZY_TIMER0__CLIENT5_MASK 0x00F00000L
+#define DAGB4_WR_DATA_DAGB_LAZY_TIMER0__CLIENT6_MASK 0x0F000000L
+#define DAGB4_WR_DATA_DAGB_LAZY_TIMER0__CLIENT7_MASK 0xF0000000L
+//DAGB4_WR_DATA_DAGB_MAX_BURST1
+#define DAGB4_WR_DATA_DAGB_MAX_BURST1__CLIENT8__SHIFT 0x0
+#define DAGB4_WR_DATA_DAGB_MAX_BURST1__CLIENT9__SHIFT 0x4
+#define DAGB4_WR_DATA_DAGB_MAX_BURST1__CLIENT10__SHIFT 0x8
+#define DAGB4_WR_DATA_DAGB_MAX_BURST1__CLIENT11__SHIFT 0xc
+#define DAGB4_WR_DATA_DAGB_MAX_BURST1__CLIENT12__SHIFT 0x10
+#define DAGB4_WR_DATA_DAGB_MAX_BURST1__CLIENT13__SHIFT 0x14
+#define DAGB4_WR_DATA_DAGB_MAX_BURST1__CLIENT14__SHIFT 0x18
+#define DAGB4_WR_DATA_DAGB_MAX_BURST1__CLIENT15__SHIFT 0x1c
+#define DAGB4_WR_DATA_DAGB_MAX_BURST1__CLIENT8_MASK 0x0000000FL
+#define DAGB4_WR_DATA_DAGB_MAX_BURST1__CLIENT9_MASK 0x000000F0L
+#define DAGB4_WR_DATA_DAGB_MAX_BURST1__CLIENT10_MASK 0x00000F00L
+#define DAGB4_WR_DATA_DAGB_MAX_BURST1__CLIENT11_MASK 0x0000F000L
+#define DAGB4_WR_DATA_DAGB_MAX_BURST1__CLIENT12_MASK 0x000F0000L
+#define DAGB4_WR_DATA_DAGB_MAX_BURST1__CLIENT13_MASK 0x00F00000L
+#define DAGB4_WR_DATA_DAGB_MAX_BURST1__CLIENT14_MASK 0x0F000000L
+#define DAGB4_WR_DATA_DAGB_MAX_BURST1__CLIENT15_MASK 0xF0000000L
+//DAGB4_WR_DATA_DAGB_LAZY_TIMER1
+#define DAGB4_WR_DATA_DAGB_LAZY_TIMER1__CLIENT8__SHIFT 0x0
+#define DAGB4_WR_DATA_DAGB_LAZY_TIMER1__CLIENT9__SHIFT 0x4
+#define DAGB4_WR_DATA_DAGB_LAZY_TIMER1__CLIENT10__SHIFT 0x8
+#define DAGB4_WR_DATA_DAGB_LAZY_TIMER1__CLIENT11__SHIFT 0xc
+#define DAGB4_WR_DATA_DAGB_LAZY_TIMER1__CLIENT12__SHIFT 0x10
+#define DAGB4_WR_DATA_DAGB_LAZY_TIMER1__CLIENT13__SHIFT 0x14
+#define DAGB4_WR_DATA_DAGB_LAZY_TIMER1__CLIENT14__SHIFT 0x18
+#define DAGB4_WR_DATA_DAGB_LAZY_TIMER1__CLIENT15__SHIFT 0x1c
+#define DAGB4_WR_DATA_DAGB_LAZY_TIMER1__CLIENT8_MASK 0x0000000FL
+#define DAGB4_WR_DATA_DAGB_LAZY_TIMER1__CLIENT9_MASK 0x000000F0L
+#define DAGB4_WR_DATA_DAGB_LAZY_TIMER1__CLIENT10_MASK 0x00000F00L
+#define DAGB4_WR_DATA_DAGB_LAZY_TIMER1__CLIENT11_MASK 0x0000F000L
+#define DAGB4_WR_DATA_DAGB_LAZY_TIMER1__CLIENT12_MASK 0x000F0000L
+#define DAGB4_WR_DATA_DAGB_LAZY_TIMER1__CLIENT13_MASK 0x00F00000L
+#define DAGB4_WR_DATA_DAGB_LAZY_TIMER1__CLIENT14_MASK 0x0F000000L
+#define DAGB4_WR_DATA_DAGB_LAZY_TIMER1__CLIENT15_MASK 0xF0000000L
+//DAGB4_WR_VC0_CNTL
+#define DAGB4_WR_VC0_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB4_WR_VC0_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB4_WR_VC0_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB4_WR_VC0_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB4_WR_VC0_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB4_WR_VC0_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB4_WR_VC0_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB4_WR_VC0_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB4_WR_VC0_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB4_WR_VC0_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB4_WR_VC0_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB4_WR_VC0_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB4_WR_VC0_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB4_WR_VC0_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB4_WR_VC0_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB4_WR_VC0_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB4_WR_VC1_CNTL
+#define DAGB4_WR_VC1_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB4_WR_VC1_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB4_WR_VC1_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB4_WR_VC1_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB4_WR_VC1_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB4_WR_VC1_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB4_WR_VC1_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB4_WR_VC1_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB4_WR_VC1_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB4_WR_VC1_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB4_WR_VC1_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB4_WR_VC1_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB4_WR_VC1_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB4_WR_VC1_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB4_WR_VC1_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB4_WR_VC1_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB4_WR_VC2_CNTL
+#define DAGB4_WR_VC2_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB4_WR_VC2_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB4_WR_VC2_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB4_WR_VC2_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB4_WR_VC2_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB4_WR_VC2_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB4_WR_VC2_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB4_WR_VC2_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB4_WR_VC2_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB4_WR_VC2_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB4_WR_VC2_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB4_WR_VC2_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB4_WR_VC2_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB4_WR_VC2_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB4_WR_VC2_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB4_WR_VC2_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB4_WR_VC3_CNTL
+#define DAGB4_WR_VC3_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB4_WR_VC3_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB4_WR_VC3_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB4_WR_VC3_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB4_WR_VC3_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB4_WR_VC3_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB4_WR_VC3_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB4_WR_VC3_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB4_WR_VC3_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB4_WR_VC3_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB4_WR_VC3_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB4_WR_VC3_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB4_WR_VC3_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB4_WR_VC3_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB4_WR_VC3_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB4_WR_VC3_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB4_WR_VC4_CNTL
+#define DAGB4_WR_VC4_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB4_WR_VC4_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB4_WR_VC4_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB4_WR_VC4_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB4_WR_VC4_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB4_WR_VC4_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB4_WR_VC4_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB4_WR_VC4_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB4_WR_VC4_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB4_WR_VC4_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB4_WR_VC4_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB4_WR_VC4_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB4_WR_VC4_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB4_WR_VC4_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB4_WR_VC4_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB4_WR_VC4_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB4_WR_VC5_CNTL
+#define DAGB4_WR_VC5_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB4_WR_VC5_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB4_WR_VC5_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB4_WR_VC5_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB4_WR_VC5_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB4_WR_VC5_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB4_WR_VC5_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB4_WR_VC5_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB4_WR_VC5_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB4_WR_VC5_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB4_WR_VC5_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB4_WR_VC5_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB4_WR_VC5_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB4_WR_VC5_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB4_WR_VC5_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB4_WR_VC5_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB4_WR_VC6_CNTL
+#define DAGB4_WR_VC6_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB4_WR_VC6_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB4_WR_VC6_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB4_WR_VC6_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB4_WR_VC6_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB4_WR_VC6_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB4_WR_VC6_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB4_WR_VC6_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB4_WR_VC6_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB4_WR_VC6_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB4_WR_VC6_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB4_WR_VC6_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB4_WR_VC6_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB4_WR_VC6_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB4_WR_VC6_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB4_WR_VC6_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB4_WR_VC7_CNTL
+#define DAGB4_WR_VC7_CNTL__STOR_CREDIT__SHIFT 0x0
+#define DAGB4_WR_VC7_CNTL__EA_CREDIT__SHIFT 0x5
+#define DAGB4_WR_VC7_CNTL__MAX_BW_ENABLE__SHIFT 0xb
+#define DAGB4_WR_VC7_CNTL__MAX_BW__SHIFT 0xc
+#define DAGB4_WR_VC7_CNTL__MIN_BW_ENABLE__SHIFT 0x14
+#define DAGB4_WR_VC7_CNTL__MIN_BW__SHIFT 0x15
+#define DAGB4_WR_VC7_CNTL__OSD_LIMITER_ENABLE__SHIFT 0x18
+#define DAGB4_WR_VC7_CNTL__MAX_OSD__SHIFT 0x19
+#define DAGB4_WR_VC7_CNTL__STOR_CREDIT_MASK 0x0000001FL
+#define DAGB4_WR_VC7_CNTL__EA_CREDIT_MASK 0x000007E0L
+#define DAGB4_WR_VC7_CNTL__MAX_BW_ENABLE_MASK 0x00000800L
+#define DAGB4_WR_VC7_CNTL__MAX_BW_MASK 0x000FF000L
+#define DAGB4_WR_VC7_CNTL__MIN_BW_ENABLE_MASK 0x00100000L
+#define DAGB4_WR_VC7_CNTL__MIN_BW_MASK 0x00E00000L
+#define DAGB4_WR_VC7_CNTL__OSD_LIMITER_ENABLE_MASK 0x01000000L
+#define DAGB4_WR_VC7_CNTL__MAX_OSD_MASK 0xFE000000L
+//DAGB4_WR_CNTL_MISC
+#define DAGB4_WR_CNTL_MISC__STOR_POOL_CREDIT__SHIFT 0x0
+#define DAGB4_WR_CNTL_MISC__EA_POOL_CREDIT__SHIFT 0x6
+#define DAGB4_WR_CNTL_MISC__IO_EA_CREDIT__SHIFT 0xd
+#define DAGB4_WR_CNTL_MISC__STOR_CC_NEW_MODE__SHIFT 0x13
+#define DAGB4_WR_CNTL_MISC__EA_CC_LEGACY_MODE__SHIFT 0x14
+#define DAGB4_WR_CNTL_MISC__UTCL2_CID__SHIFT 0x15
+#define DAGB4_WR_CNTL_MISC__RDRET_FIFO_CREDITS__SHIFT 0x1a
+#define DAGB4_WR_CNTL_MISC__STOR_POOL_CREDIT_MASK 0x0000003FL
+#define DAGB4_WR_CNTL_MISC__EA_POOL_CREDIT_MASK 0x00001FC0L
+#define DAGB4_WR_CNTL_MISC__IO_EA_CREDIT_MASK 0x0007E000L
+#define DAGB4_WR_CNTL_MISC__STOR_CC_NEW_MODE_MASK 0x00080000L
+#define DAGB4_WR_CNTL_MISC__EA_CC_LEGACY_MODE_MASK 0x00100000L
+#define DAGB4_WR_CNTL_MISC__UTCL2_CID_MASK 0x03E00000L
+#define DAGB4_WR_CNTL_MISC__RDRET_FIFO_CREDITS_MASK 0xFC000000L
+//DAGB4_WR_TLB_CREDIT
+#define DAGB4_WR_TLB_CREDIT__TLB0__SHIFT 0x0
+#define DAGB4_WR_TLB_CREDIT__TLB1__SHIFT 0x5
+#define DAGB4_WR_TLB_CREDIT__TLB2__SHIFT 0xa
+#define DAGB4_WR_TLB_CREDIT__TLB3__SHIFT 0xf
+#define DAGB4_WR_TLB_CREDIT__TLB4__SHIFT 0x14
+#define DAGB4_WR_TLB_CREDIT__TLB5__SHIFT 0x19
+#define DAGB4_WR_TLB_CREDIT__TLB0_MASK 0x0000001FL
+#define DAGB4_WR_TLB_CREDIT__TLB1_MASK 0x000003E0L
+#define DAGB4_WR_TLB_CREDIT__TLB2_MASK 0x00007C00L
+#define DAGB4_WR_TLB_CREDIT__TLB3_MASK 0x000F8000L
+#define DAGB4_WR_TLB_CREDIT__TLB4_MASK 0x01F00000L
+#define DAGB4_WR_TLB_CREDIT__TLB5_MASK 0x3E000000L
+//DAGB4_WR_DATA_CREDIT
+#define DAGB4_WR_DATA_CREDIT__DLOCK_VC_CREDITS__SHIFT 0x0
+#define DAGB4_WR_DATA_CREDIT__LARGE_BURST_CREDITS__SHIFT 0x8
+#define DAGB4_WR_DATA_CREDIT__MIDDLE_BURST_CREDITS__SHIFT 0x10
+#define DAGB4_WR_DATA_CREDIT__SMALL_BURST_CREDITS__SHIFT 0x18
+#define DAGB4_WR_DATA_CREDIT__DLOCK_VC_CREDITS_MASK 0x000000FFL
+#define DAGB4_WR_DATA_CREDIT__LARGE_BURST_CREDITS_MASK 0x0000FF00L
+#define DAGB4_WR_DATA_CREDIT__MIDDLE_BURST_CREDITS_MASK 0x00FF0000L
+#define DAGB4_WR_DATA_CREDIT__SMALL_BURST_CREDITS_MASK 0xFF000000L
+//DAGB4_WR_MISC_CREDIT
+#define DAGB4_WR_MISC_CREDIT__ATOMIC_CREDIT__SHIFT 0x0
+#define DAGB4_WR_MISC_CREDIT__DLOCK_VC_NUM__SHIFT 0x6
+#define DAGB4_WR_MISC_CREDIT__OSD_CREDIT__SHIFT 0x9
+#define DAGB4_WR_MISC_CREDIT__OSD_DLOCK_CREDIT__SHIFT 0x10
+#define DAGB4_WR_MISC_CREDIT__ATOMIC_CREDIT_MASK 0x0000003FL
+#define DAGB4_WR_MISC_CREDIT__DLOCK_VC_NUM_MASK 0x000001C0L
+#define DAGB4_WR_MISC_CREDIT__OSD_CREDIT_MASK 0x0000FE00L
+#define DAGB4_WR_MISC_CREDIT__OSD_DLOCK_CREDIT_MASK 0x007F0000L
+//DAGB4_WR_OSD_CREDIT_CNTL1
+#define DAGB4_WR_OSD_CREDIT_CNTL1__VC0_CREDIT__SHIFT 0x0
+#define DAGB4_WR_OSD_CREDIT_CNTL1__VC1_CREDIT__SHIFT 0x4
+#define DAGB4_WR_OSD_CREDIT_CNTL1__VC2_CREDIT__SHIFT 0x8
+#define DAGB4_WR_OSD_CREDIT_CNTL1__VC3_CREDIT__SHIFT 0xc
+#define DAGB4_WR_OSD_CREDIT_CNTL1__IO_CREDIT__SHIFT 0x10
+#define DAGB4_WR_OSD_CREDIT_CNTL1__GMI_CREDIT__SHIFT 0x14
+#define DAGB4_WR_OSD_CREDIT_CNTL1__POOL_CREDIT__SHIFT 0x18
+#define DAGB4_WR_OSD_CREDIT_CNTL1__VC0_CREDIT_MASK 0x0000000FL
+#define DAGB4_WR_OSD_CREDIT_CNTL1__VC1_CREDIT_MASK 0x000000F0L
+#define DAGB4_WR_OSD_CREDIT_CNTL1__VC2_CREDIT_MASK 0x00000F00L
+#define DAGB4_WR_OSD_CREDIT_CNTL1__VC3_CREDIT_MASK 0x0000F000L
+#define DAGB4_WR_OSD_CREDIT_CNTL1__IO_CREDIT_MASK 0x000F0000L
+#define DAGB4_WR_OSD_CREDIT_CNTL1__GMI_CREDIT_MASK 0x00F00000L
+#define DAGB4_WR_OSD_CREDIT_CNTL1__POOL_CREDIT_MASK 0x3F000000L
+//DAGB4_WR_OSD_CREDIT_CNTL2
+#define DAGB4_WR_OSD_CREDIT_CNTL2__CREDIT_MARGIN__SHIFT 0x0
+#define DAGB4_WR_OSD_CREDIT_CNTL2__ENABLE_LEGACY__SHIFT 0x4
+#define DAGB4_WR_OSD_CREDIT_CNTL2__CREDIT_MARGIN_MASK 0x0000000FL
+#define DAGB4_WR_OSD_CREDIT_CNTL2__ENABLE_LEGACY_MASK 0x00000010L
+//DAGB4_WR_ATOMIC_FIFO_CREDIT_CNTL1
+#define DAGB4_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC0_CREDIT__SHIFT 0x0
+#define DAGB4_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC1_CREDIT__SHIFT 0x5
+#define DAGB4_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC2_CREDIT__SHIFT 0xa
+#define DAGB4_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC3_CREDIT__SHIFT 0xf
+#define DAGB4_WR_ATOMIC_FIFO_CREDIT_CNTL1__POOL_CREDIT__SHIFT 0x14
+#define DAGB4_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC_MODE__SHIFT 0x19
+#define DAGB4_WR_ATOMIC_FIFO_CREDIT_CNTL1__FIX_EQ__SHIFT 0x1a
+#define DAGB4_WR_ATOMIC_FIFO_CREDIT_CNTL1__FIX0__SHIFT 0x1b
+#define DAGB4_WR_ATOMIC_FIFO_CREDIT_CNTL1__FIX1__SHIFT 0x1c
+#define DAGB4_WR_ATOMIC_FIFO_CREDIT_CNTL1__FIX2__SHIFT 0x1d
+#define DAGB4_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC0_CREDIT_MASK 0x0000001FL
+#define DAGB4_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC1_CREDIT_MASK 0x000003E0L
+#define DAGB4_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC2_CREDIT_MASK 0x00007C00L
+#define DAGB4_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC3_CREDIT_MASK 0x000F8000L
+#define DAGB4_WR_ATOMIC_FIFO_CREDIT_CNTL1__POOL_CREDIT_MASK 0x01F00000L
+#define DAGB4_WR_ATOMIC_FIFO_CREDIT_CNTL1__VC_MODE_MASK 0x02000000L
+#define DAGB4_WR_ATOMIC_FIFO_CREDIT_CNTL1__FIX_EQ_MASK 0x04000000L
+#define DAGB4_WR_ATOMIC_FIFO_CREDIT_CNTL1__FIX0_MASK 0x08000000L
+#define DAGB4_WR_ATOMIC_FIFO_CREDIT_CNTL1__FIX1_MASK 0x10000000L
+#define DAGB4_WR_ATOMIC_FIFO_CREDIT_CNTL1__FIX2_MASK 0x20000000L
+//DAGB4_WRCLI_GPU_SNOOP_OVERRIDE
+#define DAGB4_WRCLI_GPU_SNOOP_OVERRIDE__ENABLE__SHIFT 0x0
+#define DAGB4_WRCLI_GPU_SNOOP_OVERRIDE__ENABLE_MASK 0x0000FFFFL
+//DAGB4_WRCLI_GPU_SNOOP_OVERRIDE_VALUE
+#define DAGB4_WRCLI_GPU_SNOOP_OVERRIDE_VALUE__ENABLE__SHIFT 0x0
+#define DAGB4_WRCLI_GPU_SNOOP_OVERRIDE_VALUE__ENABLE_MASK 0x0000FFFFL
+//DAGB4_WRCLI_ASK_PENDING
+#define DAGB4_WRCLI_ASK_PENDING__BUSY__SHIFT 0x0
+#define DAGB4_WRCLI_ASK_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB4_WRCLI_GO_PENDING
+#define DAGB4_WRCLI_GO_PENDING__BUSY__SHIFT 0x0
+#define DAGB4_WRCLI_GO_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB4_WRCLI_GBLSEND_PENDING
+#define DAGB4_WRCLI_GBLSEND_PENDING__BUSY__SHIFT 0x0
+#define DAGB4_WRCLI_GBLSEND_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB4_WRCLI_TLB_PENDING
+#define DAGB4_WRCLI_TLB_PENDING__BUSY__SHIFT 0x0
+#define DAGB4_WRCLI_TLB_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB4_WRCLI_OARB_PENDING
+#define DAGB4_WRCLI_OARB_PENDING__BUSY__SHIFT 0x0
+#define DAGB4_WRCLI_OARB_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB4_WRCLI_OSD_PENDING
+#define DAGB4_WRCLI_OSD_PENDING__BUSY__SHIFT 0x0
+#define DAGB4_WRCLI_OSD_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB4_WRCLI_DBUS_ASK_PENDING
+#define DAGB4_WRCLI_DBUS_ASK_PENDING__BUSY__SHIFT 0x0
+#define DAGB4_WRCLI_DBUS_ASK_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB4_WRCLI_DBUS_GO_PENDING
+#define DAGB4_WRCLI_DBUS_GO_PENDING__BUSY__SHIFT 0x0
+#define DAGB4_WRCLI_DBUS_GO_PENDING__BUSY_MASK 0xFFFFFFFFL
+//DAGB4_DAGB_DLY
+#define DAGB4_DAGB_DLY__DLY__SHIFT 0x0
+#define DAGB4_DAGB_DLY__CLI__SHIFT 0x8
+#define DAGB4_DAGB_DLY__POS__SHIFT 0x10
+#define DAGB4_DAGB_DLY__DLY_MASK 0x000000FFL
+#define DAGB4_DAGB_DLY__CLI_MASK 0x0000FF00L
+#define DAGB4_DAGB_DLY__POS_MASK 0x000F0000L
+//DAGB4_CNTL_MISC
+#define DAGB4_CNTL_MISC__EA_VC0_REMAP__SHIFT 0x0
+#define DAGB4_CNTL_MISC__EA_VC1_REMAP__SHIFT 0x3
+#define DAGB4_CNTL_MISC__EA_VC2_REMAP__SHIFT 0x6
+#define DAGB4_CNTL_MISC__EA_VC3_REMAP__SHIFT 0x9
+#define DAGB4_CNTL_MISC__EA_VC4_REMAP__SHIFT 0xc
+#define DAGB4_CNTL_MISC__EA_VC5_REMAP__SHIFT 0xf
+#define DAGB4_CNTL_MISC__EA_VC6_REMAP__SHIFT 0x12
+#define DAGB4_CNTL_MISC__EA_VC7_REMAP__SHIFT 0x15
+#define DAGB4_CNTL_MISC__BW_INIT_CYCLE__SHIFT 0x18
+#define DAGB4_CNTL_MISC__BW_RW_GAP_CYCLE__SHIFT 0x1e
+#define DAGB4_CNTL_MISC__EA_VC0_REMAP_MASK 0x00000007L
+#define DAGB4_CNTL_MISC__EA_VC1_REMAP_MASK 0x00000038L
+#define DAGB4_CNTL_MISC__EA_VC2_REMAP_MASK 0x000001C0L
+#define DAGB4_CNTL_MISC__EA_VC3_REMAP_MASK 0x00000E00L
+#define DAGB4_CNTL_MISC__EA_VC4_REMAP_MASK 0x00007000L
+#define DAGB4_CNTL_MISC__EA_VC5_REMAP_MASK 0x00038000L
+#define DAGB4_CNTL_MISC__EA_VC6_REMAP_MASK 0x001C0000L
+#define DAGB4_CNTL_MISC__EA_VC7_REMAP_MASK 0x00E00000L
+#define DAGB4_CNTL_MISC__BW_INIT_CYCLE_MASK 0x3F000000L
+#define DAGB4_CNTL_MISC__BW_RW_GAP_CYCLE_MASK 0xC0000000L
+//DAGB4_CNTL_MISC2
+#define DAGB4_CNTL_MISC2__URG_BOOST_ENABLE__SHIFT 0x0
+#define DAGB4_CNTL_MISC2__URG_HALT_ENABLE__SHIFT 0x1
+#define DAGB4_CNTL_MISC2__DISABLE_WRREQ_CG__SHIFT 0x2
+#define DAGB4_CNTL_MISC2__DISABLE_WRRET_CG__SHIFT 0x3
+#define DAGB4_CNTL_MISC2__DISABLE_RDREQ_CG__SHIFT 0x4
+#define DAGB4_CNTL_MISC2__DISABLE_RDRET_CG__SHIFT 0x5
+#define DAGB4_CNTL_MISC2__DISABLE_TLBWR_CG__SHIFT 0x6
+#define DAGB4_CNTL_MISC2__DISABLE_TLBRD_CG__SHIFT 0x7
+#define DAGB4_CNTL_MISC2__DISABLE_EAWRREQ_BUSY__SHIFT 0x8
+#define DAGB4_CNTL_MISC2__DISABLE_EARDREQ_BUSY__SHIFT 0x9
+#define DAGB4_CNTL_MISC2__SWAP_CTL__SHIFT 0xa
+#define DAGB4_CNTL_MISC2__RDRET_FIFO_PERF__SHIFT 0xb
+#define DAGB4_CNTL_MISC2__HDP_CID__SHIFT 0xc
+#define DAGB4_CNTL_MISC2__RDRET_FIFO_DLOCK_CREDITS__SHIFT 0x10
+#define DAGB4_CNTL_MISC2__URG_BOOST_ENABLE_MASK 0x00000001L
+#define DAGB4_CNTL_MISC2__URG_HALT_ENABLE_MASK 0x00000002L
+#define DAGB4_CNTL_MISC2__DISABLE_WRREQ_CG_MASK 0x00000004L
+#define DAGB4_CNTL_MISC2__DISABLE_WRRET_CG_MASK 0x00000008L
+#define DAGB4_CNTL_MISC2__DISABLE_RDREQ_CG_MASK 0x00000010L
+#define DAGB4_CNTL_MISC2__DISABLE_RDRET_CG_MASK 0x00000020L
+#define DAGB4_CNTL_MISC2__DISABLE_TLBWR_CG_MASK 0x00000040L
+#define DAGB4_CNTL_MISC2__DISABLE_TLBRD_CG_MASK 0x00000080L
+#define DAGB4_CNTL_MISC2__DISABLE_EAWRREQ_BUSY_MASK 0x00000100L
+#define DAGB4_CNTL_MISC2__DISABLE_EARDREQ_BUSY_MASK 0x00000200L
+#define DAGB4_CNTL_MISC2__SWAP_CTL_MASK 0x00000400L
+#define DAGB4_CNTL_MISC2__RDRET_FIFO_PERF_MASK 0x00000800L
+#define DAGB4_CNTL_MISC2__HDP_CID_MASK 0x0000F000L
+#define DAGB4_CNTL_MISC2__RDRET_FIFO_DLOCK_CREDITS_MASK 0x003F0000L
+//DAGB4_FATAL_ERROR_CNTL
+#define DAGB4_FATAL_ERROR_CNTL__FILTER_NUM__SHIFT 0x0
+#define DAGB4_FATAL_ERROR_CNTL__FILTER_NUM_MASK 0x000003FFL
+//DAGB4_FATAL_ERROR_CLEAR
+#define DAGB4_FATAL_ERROR_CLEAR__CLEAR__SHIFT 0x0
+#define DAGB4_FATAL_ERROR_CLEAR__CLEAR_MASK 0x00000001L
+//DAGB4_FATAL_ERROR_STATUS0
+#define DAGB4_FATAL_ERROR_STATUS0__VALID__SHIFT 0x0
+#define DAGB4_FATAL_ERROR_STATUS0__CID__SHIFT 0x1
+#define DAGB4_FATAL_ERROR_STATUS0__ADDR_LO__SHIFT 0x6
+#define DAGB4_FATAL_ERROR_STATUS0__VALID_MASK 0x00000001L
+#define DAGB4_FATAL_ERROR_STATUS0__CID_MASK 0x0000003EL
+#define DAGB4_FATAL_ERROR_STATUS0__ADDR_LO_MASK 0xFFFFFFC0L
+//DAGB4_FATAL_ERROR_STATUS1
+#define DAGB4_FATAL_ERROR_STATUS1__ADDR_HI__SHIFT 0x0
+#define DAGB4_FATAL_ERROR_STATUS1__ADDR_HI_MASK 0x0001FFFFL
+//DAGB4_FATAL_ERROR_STATUS2
+#define DAGB4_FATAL_ERROR_STATUS2__TAG__SHIFT 0x0
+#define DAGB4_FATAL_ERROR_STATUS2__VFID__SHIFT 0x10
+#define DAGB4_FATAL_ERROR_STATUS2__VF__SHIFT 0x14
+#define DAGB4_FATAL_ERROR_STATUS2__SPACE__SHIFT 0x15
+#define DAGB4_FATAL_ERROR_STATUS2__IO__SHIFT 0x16
+#define DAGB4_FATAL_ERROR_STATUS2__SIZE__SHIFT 0x17
+#define DAGB4_FATAL_ERROR_STATUS2__DBGMSK__SHIFT 0x18
+#define DAGB4_FATAL_ERROR_STATUS2__FED__SHIFT 0x19
+#define DAGB4_FATAL_ERROR_STATUS2__TAG_MASK 0x0000FFFFL
+#define DAGB4_FATAL_ERROR_STATUS2__VFID_MASK 0x000F0000L
+#define DAGB4_FATAL_ERROR_STATUS2__VF_MASK 0x00100000L
+#define DAGB4_FATAL_ERROR_STATUS2__SPACE_MASK 0x00200000L
+#define DAGB4_FATAL_ERROR_STATUS2__IO_MASK 0x00400000L
+#define DAGB4_FATAL_ERROR_STATUS2__SIZE_MASK 0x00800000L
+#define DAGB4_FATAL_ERROR_STATUS2__DBGMSK_MASK 0x01000000L
+#define DAGB4_FATAL_ERROR_STATUS2__FED_MASK 0x02000000L
+//DAGB4_FATAL_ERROR_STATUS3
+#define DAGB4_FATAL_ERROR_STATUS3__NOALLOC__SHIFT 0x0
+#define DAGB4_FATAL_ERROR_STATUS3__UNITID__SHIFT 0x1
+#define DAGB4_FATAL_ERROR_STATUS3__OP__SHIFT 0x7
+#define DAGB4_FATAL_ERROR_STATUS3__SECLEVEL__SHIFT 0xe
+#define DAGB4_FATAL_ERROR_STATUS3__WRTMZ__SHIFT 0x11
+#define DAGB4_FATAL_ERROR_STATUS3__RDTMZ__SHIFT 0x12
+#define DAGB4_FATAL_ERROR_STATUS3__SNOOP__SHIFT 0x13
+#define DAGB4_FATAL_ERROR_STATUS3__INVAL__SHIFT 0x14
+#define DAGB4_FATAL_ERROR_STATUS3__NACK__SHIFT 0x15
+#define DAGB4_FATAL_ERROR_STATUS3__RO__SHIFT 0x17
+#define DAGB4_FATAL_ERROR_STATUS3__MEMLOG__SHIFT 0x18
+#define DAGB4_FATAL_ERROR_STATUS3__EOP__SHIFT 0x19
+#define DAGB4_FATAL_ERROR_STATUS3__NOALLOC_MASK 0x00000001L
+#define DAGB4_FATAL_ERROR_STATUS3__UNITID_MASK 0x0000007EL
+#define DAGB4_FATAL_ERROR_STATUS3__OP_MASK 0x00003F80L
+#define DAGB4_FATAL_ERROR_STATUS3__SECLEVEL_MASK 0x0001C000L
+#define DAGB4_FATAL_ERROR_STATUS3__WRTMZ_MASK 0x00020000L
+#define DAGB4_FATAL_ERROR_STATUS3__RDTMZ_MASK 0x00040000L
+#define DAGB4_FATAL_ERROR_STATUS3__SNOOP_MASK 0x00080000L
+#define DAGB4_FATAL_ERROR_STATUS3__INVAL_MASK 0x00100000L
+#define DAGB4_FATAL_ERROR_STATUS3__NACK_MASK 0x00600000L
+#define DAGB4_FATAL_ERROR_STATUS3__RO_MASK 0x00800000L
+#define DAGB4_FATAL_ERROR_STATUS3__MEMLOG_MASK 0x01000000L
+#define DAGB4_FATAL_ERROR_STATUS3__EOP_MASK 0x02000000L
+//DAGB4_FIFO_EMPTY
+#define DAGB4_FIFO_EMPTY__EMPTY__SHIFT 0x0
+#define DAGB4_FIFO_EMPTY__EMPTY_MASK 0x00FFFFFFL
+//DAGB4_FIFO_FULL
+#define DAGB4_FIFO_FULL__FULL__SHIFT 0x0
+#define DAGB4_FIFO_FULL__FULL_MASK 0x007FFFFFL
+//DAGB4_WR_CREDITS_FULL
+#define DAGB4_WR_CREDITS_FULL__FULL__SHIFT 0x0
+#define DAGB4_WR_CREDITS_FULL__FULL_MASK 0x1FFFFFFFL
+//DAGB4_RD_CREDITS_FULL
+#define DAGB4_RD_CREDITS_FULL__FULL__SHIFT 0x0
+#define DAGB4_RD_CREDITS_FULL__FULL_MASK 0x0003FFFFL
+//DAGB4_PERFCOUNTER_LO
+#define DAGB4_PERFCOUNTER_LO__COUNTER_LO__SHIFT 0x0
+#define DAGB4_PERFCOUNTER_LO__COUNTER_LO_MASK 0xFFFFFFFFL
+//DAGB4_PERFCOUNTER_HI
+#define DAGB4_PERFCOUNTER_HI__COUNTER_HI__SHIFT 0x0
+#define DAGB4_PERFCOUNTER_HI__COMPARE_VALUE__SHIFT 0x10
+#define DAGB4_PERFCOUNTER_HI__COUNTER_HI_MASK 0x0000FFFFL
+#define DAGB4_PERFCOUNTER_HI__COMPARE_VALUE_MASK 0xFFFF0000L
+//DAGB4_PERFCOUNTER0_CFG
+#define DAGB4_PERFCOUNTER0_CFG__PERF_SEL__SHIFT 0x0
+#define DAGB4_PERFCOUNTER0_CFG__PERF_SEL_END__SHIFT 0x8
+#define DAGB4_PERFCOUNTER0_CFG__PERF_MODE__SHIFT 0x18
+#define DAGB4_PERFCOUNTER0_CFG__ENABLE__SHIFT 0x1c
+#define DAGB4_PERFCOUNTER0_CFG__CLEAR__SHIFT 0x1d
+#define DAGB4_PERFCOUNTER0_CFG__PERF_SEL_MASK 0x000000FFL
+#define DAGB4_PERFCOUNTER0_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define DAGB4_PERFCOUNTER0_CFG__PERF_MODE_MASK 0x0F000000L
+#define DAGB4_PERFCOUNTER0_CFG__ENABLE_MASK 0x10000000L
+#define DAGB4_PERFCOUNTER0_CFG__CLEAR_MASK 0x20000000L
+//DAGB4_PERFCOUNTER1_CFG
+#define DAGB4_PERFCOUNTER1_CFG__PERF_SEL__SHIFT 0x0
+#define DAGB4_PERFCOUNTER1_CFG__PERF_SEL_END__SHIFT 0x8
+#define DAGB4_PERFCOUNTER1_CFG__PERF_MODE__SHIFT 0x18
+#define DAGB4_PERFCOUNTER1_CFG__ENABLE__SHIFT 0x1c
+#define DAGB4_PERFCOUNTER1_CFG__CLEAR__SHIFT 0x1d
+#define DAGB4_PERFCOUNTER1_CFG__PERF_SEL_MASK 0x000000FFL
+#define DAGB4_PERFCOUNTER1_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define DAGB4_PERFCOUNTER1_CFG__PERF_MODE_MASK 0x0F000000L
+#define DAGB4_PERFCOUNTER1_CFG__ENABLE_MASK 0x10000000L
+#define DAGB4_PERFCOUNTER1_CFG__CLEAR_MASK 0x20000000L
+//DAGB4_PERFCOUNTER2_CFG
+#define DAGB4_PERFCOUNTER2_CFG__PERF_SEL__SHIFT 0x0
+#define DAGB4_PERFCOUNTER2_CFG__PERF_SEL_END__SHIFT 0x8
+#define DAGB4_PERFCOUNTER2_CFG__PERF_MODE__SHIFT 0x18
+#define DAGB4_PERFCOUNTER2_CFG__ENABLE__SHIFT 0x1c
+#define DAGB4_PERFCOUNTER2_CFG__CLEAR__SHIFT 0x1d
+#define DAGB4_PERFCOUNTER2_CFG__PERF_SEL_MASK 0x000000FFL
+#define DAGB4_PERFCOUNTER2_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define DAGB4_PERFCOUNTER2_CFG__PERF_MODE_MASK 0x0F000000L
+#define DAGB4_PERFCOUNTER2_CFG__ENABLE_MASK 0x10000000L
+#define DAGB4_PERFCOUNTER2_CFG__CLEAR_MASK 0x20000000L
+//DAGB4_PERFCOUNTER_RSLT_CNTL
+#define DAGB4_PERFCOUNTER_RSLT_CNTL__PERF_COUNTER_SELECT__SHIFT 0x0
+#define DAGB4_PERFCOUNTER_RSLT_CNTL__START_TRIGGER__SHIFT 0x8
+#define DAGB4_PERFCOUNTER_RSLT_CNTL__STOP_TRIGGER__SHIFT 0x10
+#define DAGB4_PERFCOUNTER_RSLT_CNTL__ENABLE_ANY__SHIFT 0x18
+#define DAGB4_PERFCOUNTER_RSLT_CNTL__CLEAR_ALL__SHIFT 0x19
+#define DAGB4_PERFCOUNTER_RSLT_CNTL__STOP_ALL_ON_SATURATE__SHIFT 0x1a
+#define DAGB4_PERFCOUNTER_RSLT_CNTL__PERF_COUNTER_SELECT_MASK 0x0000000FL
+#define DAGB4_PERFCOUNTER_RSLT_CNTL__START_TRIGGER_MASK 0x0000FF00L
+#define DAGB4_PERFCOUNTER_RSLT_CNTL__STOP_TRIGGER_MASK 0x00FF0000L
+#define DAGB4_PERFCOUNTER_RSLT_CNTL__ENABLE_ANY_MASK 0x01000000L
+#define DAGB4_PERFCOUNTER_RSLT_CNTL__CLEAR_ALL_MASK 0x02000000L
+#define DAGB4_PERFCOUNTER_RSLT_CNTL__STOP_ALL_ON_SATURATE_MASK 0x04000000L
+//DAGB4_L1TLB_REG_RW
+#define DAGB4_L1TLB_REG_RW__REG_WRITE_L1TLB_CTRL__SHIFT 0x0
+#define DAGB4_L1TLB_REG_RW__REG_READ_L1TLB_CTRL__SHIFT 0x1
+#define DAGB4_L1TLB_REG_RW__VMID_EXCEP_INT_CTRL__SHIFT 0x2
+#define DAGB4_L1TLB_REG_RW__WDAT_PARITY_CHECK__SHIFT 0x4
+#define DAGB4_L1TLB_REG_RW__DISABLE_RDRET_CHECK__SHIFT 0x5
+#define DAGB4_L1TLB_REG_RW__RESERVE__SHIFT 0x6
+#define DAGB4_L1TLB_REG_RW__REG_WRITE_L1TLB_CTRL_MASK 0x00000001L
+#define DAGB4_L1TLB_REG_RW__REG_READ_L1TLB_CTRL_MASK 0x00000002L
+#define DAGB4_L1TLB_REG_RW__VMID_EXCEP_INT_CTRL_MASK 0x00000004L
+#define DAGB4_L1TLB_REG_RW__WDAT_PARITY_CHECK_MASK 0x00000010L
+#define DAGB4_L1TLB_REG_RW__DISABLE_RDRET_CHECK_MASK 0x00000020L
+#define DAGB4_L1TLB_REG_RW__RESERVE_MASK 0xFFFFFFC0L
+
+
+// addressBlock: aid_mmhub_ea_mmeadec0
+//MMEA0_DRAM_RD_CLI2GRP_MAP0
+#define MMEA0_DRAM_RD_CLI2GRP_MAP0__CID0_GROUP__SHIFT 0x0
+#define MMEA0_DRAM_RD_CLI2GRP_MAP0__CID1_GROUP__SHIFT 0x2
+#define MMEA0_DRAM_RD_CLI2GRP_MAP0__CID2_GROUP__SHIFT 0x4
+#define MMEA0_DRAM_RD_CLI2GRP_MAP0__CID3_GROUP__SHIFT 0x6
+#define MMEA0_DRAM_RD_CLI2GRP_MAP0__CID4_GROUP__SHIFT 0x8
+#define MMEA0_DRAM_RD_CLI2GRP_MAP0__CID5_GROUP__SHIFT 0xa
+#define MMEA0_DRAM_RD_CLI2GRP_MAP0__CID6_GROUP__SHIFT 0xc
+#define MMEA0_DRAM_RD_CLI2GRP_MAP0__CID7_GROUP__SHIFT 0xe
+#define MMEA0_DRAM_RD_CLI2GRP_MAP0__CID8_GROUP__SHIFT 0x10
+#define MMEA0_DRAM_RD_CLI2GRP_MAP0__CID9_GROUP__SHIFT 0x12
+#define MMEA0_DRAM_RD_CLI2GRP_MAP0__CID10_GROUP__SHIFT 0x14
+#define MMEA0_DRAM_RD_CLI2GRP_MAP0__CID11_GROUP__SHIFT 0x16
+#define MMEA0_DRAM_RD_CLI2GRP_MAP0__CID12_GROUP__SHIFT 0x18
+#define MMEA0_DRAM_RD_CLI2GRP_MAP0__CID13_GROUP__SHIFT 0x1a
+#define MMEA0_DRAM_RD_CLI2GRP_MAP0__CID14_GROUP__SHIFT 0x1c
+#define MMEA0_DRAM_RD_CLI2GRP_MAP0__CID15_GROUP__SHIFT 0x1e
+#define MMEA0_DRAM_RD_CLI2GRP_MAP0__CID0_GROUP_MASK 0x00000003L
+#define MMEA0_DRAM_RD_CLI2GRP_MAP0__CID1_GROUP_MASK 0x0000000CL
+#define MMEA0_DRAM_RD_CLI2GRP_MAP0__CID2_GROUP_MASK 0x00000030L
+#define MMEA0_DRAM_RD_CLI2GRP_MAP0__CID3_GROUP_MASK 0x000000C0L
+#define MMEA0_DRAM_RD_CLI2GRP_MAP0__CID4_GROUP_MASK 0x00000300L
+#define MMEA0_DRAM_RD_CLI2GRP_MAP0__CID5_GROUP_MASK 0x00000C00L
+#define MMEA0_DRAM_RD_CLI2GRP_MAP0__CID6_GROUP_MASK 0x00003000L
+#define MMEA0_DRAM_RD_CLI2GRP_MAP0__CID7_GROUP_MASK 0x0000C000L
+#define MMEA0_DRAM_RD_CLI2GRP_MAP0__CID8_GROUP_MASK 0x00030000L
+#define MMEA0_DRAM_RD_CLI2GRP_MAP0__CID9_GROUP_MASK 0x000C0000L
+#define MMEA0_DRAM_RD_CLI2GRP_MAP0__CID10_GROUP_MASK 0x00300000L
+#define MMEA0_DRAM_RD_CLI2GRP_MAP0__CID11_GROUP_MASK 0x00C00000L
+#define MMEA0_DRAM_RD_CLI2GRP_MAP0__CID12_GROUP_MASK 0x03000000L
+#define MMEA0_DRAM_RD_CLI2GRP_MAP0__CID13_GROUP_MASK 0x0C000000L
+#define MMEA0_DRAM_RD_CLI2GRP_MAP0__CID14_GROUP_MASK 0x30000000L
+#define MMEA0_DRAM_RD_CLI2GRP_MAP0__CID15_GROUP_MASK 0xC0000000L
+//MMEA0_DRAM_RD_CLI2GRP_MAP1
+#define MMEA0_DRAM_RD_CLI2GRP_MAP1__CID16_GROUP__SHIFT 0x0
+#define MMEA0_DRAM_RD_CLI2GRP_MAP1__CID17_GROUP__SHIFT 0x2
+#define MMEA0_DRAM_RD_CLI2GRP_MAP1__CID18_GROUP__SHIFT 0x4
+#define MMEA0_DRAM_RD_CLI2GRP_MAP1__CID19_GROUP__SHIFT 0x6
+#define MMEA0_DRAM_RD_CLI2GRP_MAP1__CID20_GROUP__SHIFT 0x8
+#define MMEA0_DRAM_RD_CLI2GRP_MAP1__CID21_GROUP__SHIFT 0xa
+#define MMEA0_DRAM_RD_CLI2GRP_MAP1__CID22_GROUP__SHIFT 0xc
+#define MMEA0_DRAM_RD_CLI2GRP_MAP1__CID23_GROUP__SHIFT 0xe
+#define MMEA0_DRAM_RD_CLI2GRP_MAP1__CID24_GROUP__SHIFT 0x10
+#define MMEA0_DRAM_RD_CLI2GRP_MAP1__CID25_GROUP__SHIFT 0x12
+#define MMEA0_DRAM_RD_CLI2GRP_MAP1__CID26_GROUP__SHIFT 0x14
+#define MMEA0_DRAM_RD_CLI2GRP_MAP1__CID27_GROUP__SHIFT 0x16
+#define MMEA0_DRAM_RD_CLI2GRP_MAP1__CID28_GROUP__SHIFT 0x18
+#define MMEA0_DRAM_RD_CLI2GRP_MAP1__CID29_GROUP__SHIFT 0x1a
+#define MMEA0_DRAM_RD_CLI2GRP_MAP1__CID30_GROUP__SHIFT 0x1c
+#define MMEA0_DRAM_RD_CLI2GRP_MAP1__CID31_GROUP__SHIFT 0x1e
+#define MMEA0_DRAM_RD_CLI2GRP_MAP1__CID16_GROUP_MASK 0x00000003L
+#define MMEA0_DRAM_RD_CLI2GRP_MAP1__CID17_GROUP_MASK 0x0000000CL
+#define MMEA0_DRAM_RD_CLI2GRP_MAP1__CID18_GROUP_MASK 0x00000030L
+#define MMEA0_DRAM_RD_CLI2GRP_MAP1__CID19_GROUP_MASK 0x000000C0L
+#define MMEA0_DRAM_RD_CLI2GRP_MAP1__CID20_GROUP_MASK 0x00000300L
+#define MMEA0_DRAM_RD_CLI2GRP_MAP1__CID21_GROUP_MASK 0x00000C00L
+#define MMEA0_DRAM_RD_CLI2GRP_MAP1__CID22_GROUP_MASK 0x00003000L
+#define MMEA0_DRAM_RD_CLI2GRP_MAP1__CID23_GROUP_MASK 0x0000C000L
+#define MMEA0_DRAM_RD_CLI2GRP_MAP1__CID24_GROUP_MASK 0x00030000L
+#define MMEA0_DRAM_RD_CLI2GRP_MAP1__CID25_GROUP_MASK 0x000C0000L
+#define MMEA0_DRAM_RD_CLI2GRP_MAP1__CID26_GROUP_MASK 0x00300000L
+#define MMEA0_DRAM_RD_CLI2GRP_MAP1__CID27_GROUP_MASK 0x00C00000L
+#define MMEA0_DRAM_RD_CLI2GRP_MAP1__CID28_GROUP_MASK 0x03000000L
+#define MMEA0_DRAM_RD_CLI2GRP_MAP1__CID29_GROUP_MASK 0x0C000000L
+#define MMEA0_DRAM_RD_CLI2GRP_MAP1__CID30_GROUP_MASK 0x30000000L
+#define MMEA0_DRAM_RD_CLI2GRP_MAP1__CID31_GROUP_MASK 0xC0000000L
+//MMEA0_DRAM_WR_CLI2GRP_MAP0
+#define MMEA0_DRAM_WR_CLI2GRP_MAP0__CID0_GROUP__SHIFT 0x0
+#define MMEA0_DRAM_WR_CLI2GRP_MAP0__CID1_GROUP__SHIFT 0x2
+#define MMEA0_DRAM_WR_CLI2GRP_MAP0__CID2_GROUP__SHIFT 0x4
+#define MMEA0_DRAM_WR_CLI2GRP_MAP0__CID3_GROUP__SHIFT 0x6
+#define MMEA0_DRAM_WR_CLI2GRP_MAP0__CID4_GROUP__SHIFT 0x8
+#define MMEA0_DRAM_WR_CLI2GRP_MAP0__CID5_GROUP__SHIFT 0xa
+#define MMEA0_DRAM_WR_CLI2GRP_MAP0__CID6_GROUP__SHIFT 0xc
+#define MMEA0_DRAM_WR_CLI2GRP_MAP0__CID7_GROUP__SHIFT 0xe
+#define MMEA0_DRAM_WR_CLI2GRP_MAP0__CID8_GROUP__SHIFT 0x10
+#define MMEA0_DRAM_WR_CLI2GRP_MAP0__CID9_GROUP__SHIFT 0x12
+#define MMEA0_DRAM_WR_CLI2GRP_MAP0__CID10_GROUP__SHIFT 0x14
+#define MMEA0_DRAM_WR_CLI2GRP_MAP0__CID11_GROUP__SHIFT 0x16
+#define MMEA0_DRAM_WR_CLI2GRP_MAP0__CID12_GROUP__SHIFT 0x18
+#define MMEA0_DRAM_WR_CLI2GRP_MAP0__CID13_GROUP__SHIFT 0x1a
+#define MMEA0_DRAM_WR_CLI2GRP_MAP0__CID14_GROUP__SHIFT 0x1c
+#define MMEA0_DRAM_WR_CLI2GRP_MAP0__CID15_GROUP__SHIFT 0x1e
+#define MMEA0_DRAM_WR_CLI2GRP_MAP0__CID0_GROUP_MASK 0x00000003L
+#define MMEA0_DRAM_WR_CLI2GRP_MAP0__CID1_GROUP_MASK 0x0000000CL
+#define MMEA0_DRAM_WR_CLI2GRP_MAP0__CID2_GROUP_MASK 0x00000030L
+#define MMEA0_DRAM_WR_CLI2GRP_MAP0__CID3_GROUP_MASK 0x000000C0L
+#define MMEA0_DRAM_WR_CLI2GRP_MAP0__CID4_GROUP_MASK 0x00000300L
+#define MMEA0_DRAM_WR_CLI2GRP_MAP0__CID5_GROUP_MASK 0x00000C00L
+#define MMEA0_DRAM_WR_CLI2GRP_MAP0__CID6_GROUP_MASK 0x00003000L
+#define MMEA0_DRAM_WR_CLI2GRP_MAP0__CID7_GROUP_MASK 0x0000C000L
+#define MMEA0_DRAM_WR_CLI2GRP_MAP0__CID8_GROUP_MASK 0x00030000L
+#define MMEA0_DRAM_WR_CLI2GRP_MAP0__CID9_GROUP_MASK 0x000C0000L
+#define MMEA0_DRAM_WR_CLI2GRP_MAP0__CID10_GROUP_MASK 0x00300000L
+#define MMEA0_DRAM_WR_CLI2GRP_MAP0__CID11_GROUP_MASK 0x00C00000L
+#define MMEA0_DRAM_WR_CLI2GRP_MAP0__CID12_GROUP_MASK 0x03000000L
+#define MMEA0_DRAM_WR_CLI2GRP_MAP0__CID13_GROUP_MASK 0x0C000000L
+#define MMEA0_DRAM_WR_CLI2GRP_MAP0__CID14_GROUP_MASK 0x30000000L
+#define MMEA0_DRAM_WR_CLI2GRP_MAP0__CID15_GROUP_MASK 0xC0000000L
+//MMEA0_DRAM_WR_CLI2GRP_MAP1
+#define MMEA0_DRAM_WR_CLI2GRP_MAP1__CID16_GROUP__SHIFT 0x0
+#define MMEA0_DRAM_WR_CLI2GRP_MAP1__CID17_GROUP__SHIFT 0x2
+#define MMEA0_DRAM_WR_CLI2GRP_MAP1__CID18_GROUP__SHIFT 0x4
+#define MMEA0_DRAM_WR_CLI2GRP_MAP1__CID19_GROUP__SHIFT 0x6
+#define MMEA0_DRAM_WR_CLI2GRP_MAP1__CID20_GROUP__SHIFT 0x8
+#define MMEA0_DRAM_WR_CLI2GRP_MAP1__CID21_GROUP__SHIFT 0xa
+#define MMEA0_DRAM_WR_CLI2GRP_MAP1__CID22_GROUP__SHIFT 0xc
+#define MMEA0_DRAM_WR_CLI2GRP_MAP1__CID23_GROUP__SHIFT 0xe
+#define MMEA0_DRAM_WR_CLI2GRP_MAP1__CID24_GROUP__SHIFT 0x10
+#define MMEA0_DRAM_WR_CLI2GRP_MAP1__CID25_GROUP__SHIFT 0x12
+#define MMEA0_DRAM_WR_CLI2GRP_MAP1__CID26_GROUP__SHIFT 0x14
+#define MMEA0_DRAM_WR_CLI2GRP_MAP1__CID27_GROUP__SHIFT 0x16
+#define MMEA0_DRAM_WR_CLI2GRP_MAP1__CID28_GROUP__SHIFT 0x18
+#define MMEA0_DRAM_WR_CLI2GRP_MAP1__CID29_GROUP__SHIFT 0x1a
+#define MMEA0_DRAM_WR_CLI2GRP_MAP1__CID30_GROUP__SHIFT 0x1c
+#define MMEA0_DRAM_WR_CLI2GRP_MAP1__CID31_GROUP__SHIFT 0x1e
+#define MMEA0_DRAM_WR_CLI2GRP_MAP1__CID16_GROUP_MASK 0x00000003L
+#define MMEA0_DRAM_WR_CLI2GRP_MAP1__CID17_GROUP_MASK 0x0000000CL
+#define MMEA0_DRAM_WR_CLI2GRP_MAP1__CID18_GROUP_MASK 0x00000030L
+#define MMEA0_DRAM_WR_CLI2GRP_MAP1__CID19_GROUP_MASK 0x000000C0L
+#define MMEA0_DRAM_WR_CLI2GRP_MAP1__CID20_GROUP_MASK 0x00000300L
+#define MMEA0_DRAM_WR_CLI2GRP_MAP1__CID21_GROUP_MASK 0x00000C00L
+#define MMEA0_DRAM_WR_CLI2GRP_MAP1__CID22_GROUP_MASK 0x00003000L
+#define MMEA0_DRAM_WR_CLI2GRP_MAP1__CID23_GROUP_MASK 0x0000C000L
+#define MMEA0_DRAM_WR_CLI2GRP_MAP1__CID24_GROUP_MASK 0x00030000L
+#define MMEA0_DRAM_WR_CLI2GRP_MAP1__CID25_GROUP_MASK 0x000C0000L
+#define MMEA0_DRAM_WR_CLI2GRP_MAP1__CID26_GROUP_MASK 0x00300000L
+#define MMEA0_DRAM_WR_CLI2GRP_MAP1__CID27_GROUP_MASK 0x00C00000L
+#define MMEA0_DRAM_WR_CLI2GRP_MAP1__CID28_GROUP_MASK 0x03000000L
+#define MMEA0_DRAM_WR_CLI2GRP_MAP1__CID29_GROUP_MASK 0x0C000000L
+#define MMEA0_DRAM_WR_CLI2GRP_MAP1__CID30_GROUP_MASK 0x30000000L
+#define MMEA0_DRAM_WR_CLI2GRP_MAP1__CID31_GROUP_MASK 0xC0000000L
+//MMEA0_DRAM_RD_GRP2VC_MAP
+#define MMEA0_DRAM_RD_GRP2VC_MAP__GROUP0_VC__SHIFT 0x0
+#define MMEA0_DRAM_RD_GRP2VC_MAP__GROUP1_VC__SHIFT 0x3
+#define MMEA0_DRAM_RD_GRP2VC_MAP__GROUP2_VC__SHIFT 0x6
+#define MMEA0_DRAM_RD_GRP2VC_MAP__GROUP3_VC__SHIFT 0x9
+#define MMEA0_DRAM_RD_GRP2VC_MAP__GROUP0_VC_MASK 0x00000007L
+#define MMEA0_DRAM_RD_GRP2VC_MAP__GROUP1_VC_MASK 0x00000038L
+#define MMEA0_DRAM_RD_GRP2VC_MAP__GROUP2_VC_MASK 0x000001C0L
+#define MMEA0_DRAM_RD_GRP2VC_MAP__GROUP3_VC_MASK 0x00000E00L
+//MMEA0_DRAM_WR_GRP2VC_MAP
+#define MMEA0_DRAM_WR_GRP2VC_MAP__GROUP0_VC__SHIFT 0x0
+#define MMEA0_DRAM_WR_GRP2VC_MAP__GROUP1_VC__SHIFT 0x3
+#define MMEA0_DRAM_WR_GRP2VC_MAP__GROUP2_VC__SHIFT 0x6
+#define MMEA0_DRAM_WR_GRP2VC_MAP__GROUP3_VC__SHIFT 0x9
+#define MMEA0_DRAM_WR_GRP2VC_MAP__GROUP0_VC_MASK 0x00000007L
+#define MMEA0_DRAM_WR_GRP2VC_MAP__GROUP1_VC_MASK 0x00000038L
+#define MMEA0_DRAM_WR_GRP2VC_MAP__GROUP2_VC_MASK 0x000001C0L
+#define MMEA0_DRAM_WR_GRP2VC_MAP__GROUP3_VC_MASK 0x00000E00L
+//MMEA0_DRAM_RD_LAZY
+#define MMEA0_DRAM_RD_LAZY__GROUP0_DELAY__SHIFT 0x0
+#define MMEA0_DRAM_RD_LAZY__GROUP1_DELAY__SHIFT 0x3
+#define MMEA0_DRAM_RD_LAZY__GROUP2_DELAY__SHIFT 0x6
+#define MMEA0_DRAM_RD_LAZY__GROUP3_DELAY__SHIFT 0x9
+#define MMEA0_DRAM_RD_LAZY__REQ_ACCUM_THRESH__SHIFT 0xc
+#define MMEA0_DRAM_RD_LAZY__REQ_ACCUM_TIMEOUT__SHIFT 0x14
+#define MMEA0_DRAM_RD_LAZY__REQ_ACCUM_IDLEMAX__SHIFT 0x1b
+#define MMEA0_DRAM_RD_LAZY__GROUP0_DELAY_MASK 0x00000007L
+#define MMEA0_DRAM_RD_LAZY__GROUP1_DELAY_MASK 0x00000038L
+#define MMEA0_DRAM_RD_LAZY__GROUP2_DELAY_MASK 0x000001C0L
+#define MMEA0_DRAM_RD_LAZY__GROUP3_DELAY_MASK 0x00000E00L
+#define MMEA0_DRAM_RD_LAZY__REQ_ACCUM_THRESH_MASK 0x0003F000L
+#define MMEA0_DRAM_RD_LAZY__REQ_ACCUM_TIMEOUT_MASK 0x07F00000L
+#define MMEA0_DRAM_RD_LAZY__REQ_ACCUM_IDLEMAX_MASK 0x78000000L
+//MMEA0_DRAM_WR_LAZY
+#define MMEA0_DRAM_WR_LAZY__GROUP0_DELAY__SHIFT 0x0
+#define MMEA0_DRAM_WR_LAZY__GROUP1_DELAY__SHIFT 0x3
+#define MMEA0_DRAM_WR_LAZY__GROUP2_DELAY__SHIFT 0x6
+#define MMEA0_DRAM_WR_LAZY__GROUP3_DELAY__SHIFT 0x9
+#define MMEA0_DRAM_WR_LAZY__REQ_ACCUM_THRESH__SHIFT 0xc
+#define MMEA0_DRAM_WR_LAZY__REQ_ACCUM_TIMEOUT__SHIFT 0x14
+#define MMEA0_DRAM_WR_LAZY__REQ_ACCUM_IDLEMAX__SHIFT 0x1b
+#define MMEA0_DRAM_WR_LAZY__GROUP0_DELAY_MASK 0x00000007L
+#define MMEA0_DRAM_WR_LAZY__GROUP1_DELAY_MASK 0x00000038L
+#define MMEA0_DRAM_WR_LAZY__GROUP2_DELAY_MASK 0x000001C0L
+#define MMEA0_DRAM_WR_LAZY__GROUP3_DELAY_MASK 0x00000E00L
+#define MMEA0_DRAM_WR_LAZY__REQ_ACCUM_THRESH_MASK 0x0003F000L
+#define MMEA0_DRAM_WR_LAZY__REQ_ACCUM_TIMEOUT_MASK 0x07F00000L
+#define MMEA0_DRAM_WR_LAZY__REQ_ACCUM_IDLEMAX_MASK 0x78000000L
+//MMEA0_DRAM_RD_CAM_CNTL
+#define MMEA0_DRAM_RD_CAM_CNTL__DEPTH_GROUP0__SHIFT 0x0
+#define MMEA0_DRAM_RD_CAM_CNTL__DEPTH_GROUP1__SHIFT 0x4
+#define MMEA0_DRAM_RD_CAM_CNTL__DEPTH_GROUP2__SHIFT 0x8
+#define MMEA0_DRAM_RD_CAM_CNTL__DEPTH_GROUP3__SHIFT 0xc
+#define MMEA0_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP0__SHIFT 0x10
+#define MMEA0_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP1__SHIFT 0x13
+#define MMEA0_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP2__SHIFT 0x16
+#define MMEA0_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP3__SHIFT 0x19
+#define MMEA0_DRAM_RD_CAM_CNTL__REFILL_CHAIN__SHIFT 0x1c
+#define MMEA0_DRAM_RD_CAM_CNTL__PAGEBASED_CHAINING__SHIFT 0x1d
+#define MMEA0_DRAM_RD_CAM_CNTL__DEPTH_GROUP0_MASK 0x0000000FL
+#define MMEA0_DRAM_RD_CAM_CNTL__DEPTH_GROUP1_MASK 0x000000F0L
+#define MMEA0_DRAM_RD_CAM_CNTL__DEPTH_GROUP2_MASK 0x00000F00L
+#define MMEA0_DRAM_RD_CAM_CNTL__DEPTH_GROUP3_MASK 0x0000F000L
+#define MMEA0_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP0_MASK 0x00070000L
+#define MMEA0_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP1_MASK 0x00380000L
+#define MMEA0_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP2_MASK 0x01C00000L
+#define MMEA0_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP3_MASK 0x0E000000L
+#define MMEA0_DRAM_RD_CAM_CNTL__REFILL_CHAIN_MASK 0x10000000L
+#define MMEA0_DRAM_RD_CAM_CNTL__PAGEBASED_CHAINING_MASK 0x20000000L
+//MMEA0_DRAM_WR_CAM_CNTL
+#define MMEA0_DRAM_WR_CAM_CNTL__DEPTH_GROUP0__SHIFT 0x0
+#define MMEA0_DRAM_WR_CAM_CNTL__DEPTH_GROUP1__SHIFT 0x4
+#define MMEA0_DRAM_WR_CAM_CNTL__DEPTH_GROUP2__SHIFT 0x8
+#define MMEA0_DRAM_WR_CAM_CNTL__DEPTH_GROUP3__SHIFT 0xc
+#define MMEA0_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP0__SHIFT 0x10
+#define MMEA0_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP1__SHIFT 0x13
+#define MMEA0_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP2__SHIFT 0x16
+#define MMEA0_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP3__SHIFT 0x19
+#define MMEA0_DRAM_WR_CAM_CNTL__REFILL_CHAIN__SHIFT 0x1c
+#define MMEA0_DRAM_WR_CAM_CNTL__PAGEBASED_CHAINING__SHIFT 0x1d
+#define MMEA0_DRAM_WR_CAM_CNTL__DEPTH_GROUP0_MASK 0x0000000FL
+#define MMEA0_DRAM_WR_CAM_CNTL__DEPTH_GROUP1_MASK 0x000000F0L
+#define MMEA0_DRAM_WR_CAM_CNTL__DEPTH_GROUP2_MASK 0x00000F00L
+#define MMEA0_DRAM_WR_CAM_CNTL__DEPTH_GROUP3_MASK 0x0000F000L
+#define MMEA0_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP0_MASK 0x00070000L
+#define MMEA0_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP1_MASK 0x00380000L
+#define MMEA0_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP2_MASK 0x01C00000L
+#define MMEA0_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP3_MASK 0x0E000000L
+#define MMEA0_DRAM_WR_CAM_CNTL__REFILL_CHAIN_MASK 0x10000000L
+#define MMEA0_DRAM_WR_CAM_CNTL__PAGEBASED_CHAINING_MASK 0x20000000L
+//MMEA0_DRAM_PAGE_BURST
+#define MMEA0_DRAM_PAGE_BURST__RD_LIMIT_LO__SHIFT 0x0
+#define MMEA0_DRAM_PAGE_BURST__RD_LIMIT_HI__SHIFT 0x8
+#define MMEA0_DRAM_PAGE_BURST__WR_LIMIT_LO__SHIFT 0x10
+#define MMEA0_DRAM_PAGE_BURST__WR_LIMIT_HI__SHIFT 0x18
+#define MMEA0_DRAM_PAGE_BURST__RD_LIMIT_LO_MASK 0x000000FFL
+#define MMEA0_DRAM_PAGE_BURST__RD_LIMIT_HI_MASK 0x0000FF00L
+#define MMEA0_DRAM_PAGE_BURST__WR_LIMIT_LO_MASK 0x00FF0000L
+#define MMEA0_DRAM_PAGE_BURST__WR_LIMIT_HI_MASK 0xFF000000L
+//MMEA0_DRAM_RD_PRI_AGE
+#define MMEA0_DRAM_RD_PRI_AGE__GROUP0_AGING_RATE__SHIFT 0x0
+#define MMEA0_DRAM_RD_PRI_AGE__GROUP1_AGING_RATE__SHIFT 0x3
+#define MMEA0_DRAM_RD_PRI_AGE__GROUP2_AGING_RATE__SHIFT 0x6
+#define MMEA0_DRAM_RD_PRI_AGE__GROUP3_AGING_RATE__SHIFT 0x9
+#define MMEA0_DRAM_RD_PRI_AGE__GROUP0_AGE_COEFFICIENT__SHIFT 0xc
+#define MMEA0_DRAM_RD_PRI_AGE__GROUP1_AGE_COEFFICIENT__SHIFT 0xf
+#define MMEA0_DRAM_RD_PRI_AGE__GROUP2_AGE_COEFFICIENT__SHIFT 0x12
+#define MMEA0_DRAM_RD_PRI_AGE__GROUP3_AGE_COEFFICIENT__SHIFT 0x15
+#define MMEA0_DRAM_RD_PRI_AGE__GROUP0_AGING_RATE_MASK 0x00000007L
+#define MMEA0_DRAM_RD_PRI_AGE__GROUP1_AGING_RATE_MASK 0x00000038L
+#define MMEA0_DRAM_RD_PRI_AGE__GROUP2_AGING_RATE_MASK 0x000001C0L
+#define MMEA0_DRAM_RD_PRI_AGE__GROUP3_AGING_RATE_MASK 0x00000E00L
+#define MMEA0_DRAM_RD_PRI_AGE__GROUP0_AGE_COEFFICIENT_MASK 0x00007000L
+#define MMEA0_DRAM_RD_PRI_AGE__GROUP1_AGE_COEFFICIENT_MASK 0x00038000L
+#define MMEA0_DRAM_RD_PRI_AGE__GROUP2_AGE_COEFFICIENT_MASK 0x001C0000L
+#define MMEA0_DRAM_RD_PRI_AGE__GROUP3_AGE_COEFFICIENT_MASK 0x00E00000L
+//MMEA0_DRAM_WR_PRI_AGE
+#define MMEA0_DRAM_WR_PRI_AGE__GROUP0_AGING_RATE__SHIFT 0x0
+#define MMEA0_DRAM_WR_PRI_AGE__GROUP1_AGING_RATE__SHIFT 0x3
+#define MMEA0_DRAM_WR_PRI_AGE__GROUP2_AGING_RATE__SHIFT 0x6
+#define MMEA0_DRAM_WR_PRI_AGE__GROUP3_AGING_RATE__SHIFT 0x9
+#define MMEA0_DRAM_WR_PRI_AGE__GROUP0_AGE_COEFFICIENT__SHIFT 0xc
+#define MMEA0_DRAM_WR_PRI_AGE__GROUP1_AGE_COEFFICIENT__SHIFT 0xf
+#define MMEA0_DRAM_WR_PRI_AGE__GROUP2_AGE_COEFFICIENT__SHIFT 0x12
+#define MMEA0_DRAM_WR_PRI_AGE__GROUP3_AGE_COEFFICIENT__SHIFT 0x15
+#define MMEA0_DRAM_WR_PRI_AGE__GROUP0_AGING_RATE_MASK 0x00000007L
+#define MMEA0_DRAM_WR_PRI_AGE__GROUP1_AGING_RATE_MASK 0x00000038L
+#define MMEA0_DRAM_WR_PRI_AGE__GROUP2_AGING_RATE_MASK 0x000001C0L
+#define MMEA0_DRAM_WR_PRI_AGE__GROUP3_AGING_RATE_MASK 0x00000E00L
+#define MMEA0_DRAM_WR_PRI_AGE__GROUP0_AGE_COEFFICIENT_MASK 0x00007000L
+#define MMEA0_DRAM_WR_PRI_AGE__GROUP1_AGE_COEFFICIENT_MASK 0x00038000L
+#define MMEA0_DRAM_WR_PRI_AGE__GROUP2_AGE_COEFFICIENT_MASK 0x001C0000L
+#define MMEA0_DRAM_WR_PRI_AGE__GROUP3_AGE_COEFFICIENT_MASK 0x00E00000L
+//MMEA0_DRAM_RD_PRI_QUEUING
+#define MMEA0_DRAM_RD_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT__SHIFT 0x0
+#define MMEA0_DRAM_RD_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT__SHIFT 0x3
+#define MMEA0_DRAM_RD_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT__SHIFT 0x6
+#define MMEA0_DRAM_RD_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT__SHIFT 0x9
+#define MMEA0_DRAM_RD_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT_MASK 0x00000007L
+#define MMEA0_DRAM_RD_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT_MASK 0x00000038L
+#define MMEA0_DRAM_RD_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT_MASK 0x000001C0L
+#define MMEA0_DRAM_RD_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT_MASK 0x00000E00L
+//MMEA0_DRAM_WR_PRI_QUEUING
+#define MMEA0_DRAM_WR_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT__SHIFT 0x0
+#define MMEA0_DRAM_WR_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT__SHIFT 0x3
+#define MMEA0_DRAM_WR_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT__SHIFT 0x6
+#define MMEA0_DRAM_WR_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT__SHIFT 0x9
+#define MMEA0_DRAM_WR_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT_MASK 0x00000007L
+#define MMEA0_DRAM_WR_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT_MASK 0x00000038L
+#define MMEA0_DRAM_WR_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT_MASK 0x000001C0L
+#define MMEA0_DRAM_WR_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT_MASK 0x00000E00L
+//MMEA0_DRAM_RD_PRI_FIXED
+#define MMEA0_DRAM_RD_PRI_FIXED__GROUP0_FIXED_COEFFICIENT__SHIFT 0x0
+#define MMEA0_DRAM_RD_PRI_FIXED__GROUP1_FIXED_COEFFICIENT__SHIFT 0x3
+#define MMEA0_DRAM_RD_PRI_FIXED__GROUP2_FIXED_COEFFICIENT__SHIFT 0x6
+#define MMEA0_DRAM_RD_PRI_FIXED__GROUP3_FIXED_COEFFICIENT__SHIFT 0x9
+#define MMEA0_DRAM_RD_PRI_FIXED__GROUP0_FIXED_COEFFICIENT_MASK 0x00000007L
+#define MMEA0_DRAM_RD_PRI_FIXED__GROUP1_FIXED_COEFFICIENT_MASK 0x00000038L
+#define MMEA0_DRAM_RD_PRI_FIXED__GROUP2_FIXED_COEFFICIENT_MASK 0x000001C0L
+#define MMEA0_DRAM_RD_PRI_FIXED__GROUP3_FIXED_COEFFICIENT_MASK 0x00000E00L
+//MMEA0_DRAM_WR_PRI_FIXED
+#define MMEA0_DRAM_WR_PRI_FIXED__GROUP0_FIXED_COEFFICIENT__SHIFT 0x0
+#define MMEA0_DRAM_WR_PRI_FIXED__GROUP1_FIXED_COEFFICIENT__SHIFT 0x3
+#define MMEA0_DRAM_WR_PRI_FIXED__GROUP2_FIXED_COEFFICIENT__SHIFT 0x6
+#define MMEA0_DRAM_WR_PRI_FIXED__GROUP3_FIXED_COEFFICIENT__SHIFT 0x9
+#define MMEA0_DRAM_WR_PRI_FIXED__GROUP0_FIXED_COEFFICIENT_MASK 0x00000007L
+#define MMEA0_DRAM_WR_PRI_FIXED__GROUP1_FIXED_COEFFICIENT_MASK 0x00000038L
+#define MMEA0_DRAM_WR_PRI_FIXED__GROUP2_FIXED_COEFFICIENT_MASK 0x000001C0L
+#define MMEA0_DRAM_WR_PRI_FIXED__GROUP3_FIXED_COEFFICIENT_MASK 0x00000E00L
+//MMEA0_DRAM_RD_PRI_URGENCY
+#define MMEA0_DRAM_RD_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT__SHIFT 0x0
+#define MMEA0_DRAM_RD_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT__SHIFT 0x3
+#define MMEA0_DRAM_RD_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT__SHIFT 0x6
+#define MMEA0_DRAM_RD_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT__SHIFT 0x9
+#define MMEA0_DRAM_RD_PRI_URGENCY__GROUP0_URGENCY_MODE__SHIFT 0xc
+#define MMEA0_DRAM_RD_PRI_URGENCY__GROUP1_URGENCY_MODE__SHIFT 0xd
+#define MMEA0_DRAM_RD_PRI_URGENCY__GROUP2_URGENCY_MODE__SHIFT 0xe
+#define MMEA0_DRAM_RD_PRI_URGENCY__GROUP3_URGENCY_MODE__SHIFT 0xf
+#define MMEA0_DRAM_RD_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT_MASK 0x00000007L
+#define MMEA0_DRAM_RD_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT_MASK 0x00000038L
+#define MMEA0_DRAM_RD_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT_MASK 0x000001C0L
+#define MMEA0_DRAM_RD_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT_MASK 0x00000E00L
+#define MMEA0_DRAM_RD_PRI_URGENCY__GROUP0_URGENCY_MODE_MASK 0x00001000L
+#define MMEA0_DRAM_RD_PRI_URGENCY__GROUP1_URGENCY_MODE_MASK 0x00002000L
+#define MMEA0_DRAM_RD_PRI_URGENCY__GROUP2_URGENCY_MODE_MASK 0x00004000L
+#define MMEA0_DRAM_RD_PRI_URGENCY__GROUP3_URGENCY_MODE_MASK 0x00008000L
+//MMEA0_DRAM_WR_PRI_URGENCY
+#define MMEA0_DRAM_WR_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT__SHIFT 0x0
+#define MMEA0_DRAM_WR_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT__SHIFT 0x3
+#define MMEA0_DRAM_WR_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT__SHIFT 0x6
+#define MMEA0_DRAM_WR_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT__SHIFT 0x9
+#define MMEA0_DRAM_WR_PRI_URGENCY__GROUP0_URGENCY_MODE__SHIFT 0xc
+#define MMEA0_DRAM_WR_PRI_URGENCY__GROUP1_URGENCY_MODE__SHIFT 0xd
+#define MMEA0_DRAM_WR_PRI_URGENCY__GROUP2_URGENCY_MODE__SHIFT 0xe
+#define MMEA0_DRAM_WR_PRI_URGENCY__GROUP3_URGENCY_MODE__SHIFT 0xf
+#define MMEA0_DRAM_WR_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT_MASK 0x00000007L
+#define MMEA0_DRAM_WR_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT_MASK 0x00000038L
+#define MMEA0_DRAM_WR_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT_MASK 0x000001C0L
+#define MMEA0_DRAM_WR_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT_MASK 0x00000E00L
+#define MMEA0_DRAM_WR_PRI_URGENCY__GROUP0_URGENCY_MODE_MASK 0x00001000L
+#define MMEA0_DRAM_WR_PRI_URGENCY__GROUP1_URGENCY_MODE_MASK 0x00002000L
+#define MMEA0_DRAM_WR_PRI_URGENCY__GROUP2_URGENCY_MODE_MASK 0x00004000L
+#define MMEA0_DRAM_WR_PRI_URGENCY__GROUP3_URGENCY_MODE_MASK 0x00008000L
+//MMEA0_DRAM_RD_PRI_QUANT_PRI1
+#define MMEA0_DRAM_RD_PRI_QUANT_PRI1__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA0_DRAM_RD_PRI_QUANT_PRI1__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA0_DRAM_RD_PRI_QUANT_PRI1__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA0_DRAM_RD_PRI_QUANT_PRI1__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA0_DRAM_RD_PRI_QUANT_PRI1__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA0_DRAM_RD_PRI_QUANT_PRI1__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA0_DRAM_RD_PRI_QUANT_PRI1__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA0_DRAM_RD_PRI_QUANT_PRI1__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA0_DRAM_RD_PRI_QUANT_PRI2
+#define MMEA0_DRAM_RD_PRI_QUANT_PRI2__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA0_DRAM_RD_PRI_QUANT_PRI2__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA0_DRAM_RD_PRI_QUANT_PRI2__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA0_DRAM_RD_PRI_QUANT_PRI2__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA0_DRAM_RD_PRI_QUANT_PRI2__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA0_DRAM_RD_PRI_QUANT_PRI2__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA0_DRAM_RD_PRI_QUANT_PRI2__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA0_DRAM_RD_PRI_QUANT_PRI2__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA0_DRAM_RD_PRI_QUANT_PRI3
+#define MMEA0_DRAM_RD_PRI_QUANT_PRI3__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA0_DRAM_RD_PRI_QUANT_PRI3__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA0_DRAM_RD_PRI_QUANT_PRI3__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA0_DRAM_RD_PRI_QUANT_PRI3__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA0_DRAM_RD_PRI_QUANT_PRI3__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA0_DRAM_RD_PRI_QUANT_PRI3__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA0_DRAM_RD_PRI_QUANT_PRI3__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA0_DRAM_RD_PRI_QUANT_PRI3__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA0_DRAM_WR_PRI_QUANT_PRI1
+#define MMEA0_DRAM_WR_PRI_QUANT_PRI1__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA0_DRAM_WR_PRI_QUANT_PRI1__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA0_DRAM_WR_PRI_QUANT_PRI1__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA0_DRAM_WR_PRI_QUANT_PRI1__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA0_DRAM_WR_PRI_QUANT_PRI1__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA0_DRAM_WR_PRI_QUANT_PRI1__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA0_DRAM_WR_PRI_QUANT_PRI1__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA0_DRAM_WR_PRI_QUANT_PRI1__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA0_DRAM_WR_PRI_QUANT_PRI2
+#define MMEA0_DRAM_WR_PRI_QUANT_PRI2__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA0_DRAM_WR_PRI_QUANT_PRI2__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA0_DRAM_WR_PRI_QUANT_PRI2__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA0_DRAM_WR_PRI_QUANT_PRI2__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA0_DRAM_WR_PRI_QUANT_PRI2__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA0_DRAM_WR_PRI_QUANT_PRI2__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA0_DRAM_WR_PRI_QUANT_PRI2__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA0_DRAM_WR_PRI_QUANT_PRI2__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA0_DRAM_WR_PRI_QUANT_PRI3
+#define MMEA0_DRAM_WR_PRI_QUANT_PRI3__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA0_DRAM_WR_PRI_QUANT_PRI3__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA0_DRAM_WR_PRI_QUANT_PRI3__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA0_DRAM_WR_PRI_QUANT_PRI3__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA0_DRAM_WR_PRI_QUANT_PRI3__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA0_DRAM_WR_PRI_QUANT_PRI3__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA0_DRAM_WR_PRI_QUANT_PRI3__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA0_DRAM_WR_PRI_QUANT_PRI3__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA0_GMI_RD_CLI2GRP_MAP0
+#define MMEA0_GMI_RD_CLI2GRP_MAP0__CID0_GROUP__SHIFT 0x0
+#define MMEA0_GMI_RD_CLI2GRP_MAP0__CID1_GROUP__SHIFT 0x2
+#define MMEA0_GMI_RD_CLI2GRP_MAP0__CID2_GROUP__SHIFT 0x4
+#define MMEA0_GMI_RD_CLI2GRP_MAP0__CID3_GROUP__SHIFT 0x6
+#define MMEA0_GMI_RD_CLI2GRP_MAP0__CID4_GROUP__SHIFT 0x8
+#define MMEA0_GMI_RD_CLI2GRP_MAP0__CID5_GROUP__SHIFT 0xa
+#define MMEA0_GMI_RD_CLI2GRP_MAP0__CID6_GROUP__SHIFT 0xc
+#define MMEA0_GMI_RD_CLI2GRP_MAP0__CID7_GROUP__SHIFT 0xe
+#define MMEA0_GMI_RD_CLI2GRP_MAP0__CID8_GROUP__SHIFT 0x10
+#define MMEA0_GMI_RD_CLI2GRP_MAP0__CID9_GROUP__SHIFT 0x12
+#define MMEA0_GMI_RD_CLI2GRP_MAP0__CID10_GROUP__SHIFT 0x14
+#define MMEA0_GMI_RD_CLI2GRP_MAP0__CID11_GROUP__SHIFT 0x16
+#define MMEA0_GMI_RD_CLI2GRP_MAP0__CID12_GROUP__SHIFT 0x18
+#define MMEA0_GMI_RD_CLI2GRP_MAP0__CID13_GROUP__SHIFT 0x1a
+#define MMEA0_GMI_RD_CLI2GRP_MAP0__CID14_GROUP__SHIFT 0x1c
+#define MMEA0_GMI_RD_CLI2GRP_MAP0__CID15_GROUP__SHIFT 0x1e
+#define MMEA0_GMI_RD_CLI2GRP_MAP0__CID0_GROUP_MASK 0x00000003L
+#define MMEA0_GMI_RD_CLI2GRP_MAP0__CID1_GROUP_MASK 0x0000000CL
+#define MMEA0_GMI_RD_CLI2GRP_MAP0__CID2_GROUP_MASK 0x00000030L
+#define MMEA0_GMI_RD_CLI2GRP_MAP0__CID3_GROUP_MASK 0x000000C0L
+#define MMEA0_GMI_RD_CLI2GRP_MAP0__CID4_GROUP_MASK 0x00000300L
+#define MMEA0_GMI_RD_CLI2GRP_MAP0__CID5_GROUP_MASK 0x00000C00L
+#define MMEA0_GMI_RD_CLI2GRP_MAP0__CID6_GROUP_MASK 0x00003000L
+#define MMEA0_GMI_RD_CLI2GRP_MAP0__CID7_GROUP_MASK 0x0000C000L
+#define MMEA0_GMI_RD_CLI2GRP_MAP0__CID8_GROUP_MASK 0x00030000L
+#define MMEA0_GMI_RD_CLI2GRP_MAP0__CID9_GROUP_MASK 0x000C0000L
+#define MMEA0_GMI_RD_CLI2GRP_MAP0__CID10_GROUP_MASK 0x00300000L
+#define MMEA0_GMI_RD_CLI2GRP_MAP0__CID11_GROUP_MASK 0x00C00000L
+#define MMEA0_GMI_RD_CLI2GRP_MAP0__CID12_GROUP_MASK 0x03000000L
+#define MMEA0_GMI_RD_CLI2GRP_MAP0__CID13_GROUP_MASK 0x0C000000L
+#define MMEA0_GMI_RD_CLI2GRP_MAP0__CID14_GROUP_MASK 0x30000000L
+#define MMEA0_GMI_RD_CLI2GRP_MAP0__CID15_GROUP_MASK 0xC0000000L
+//MMEA0_GMI_RD_CLI2GRP_MAP1
+#define MMEA0_GMI_RD_CLI2GRP_MAP1__CID16_GROUP__SHIFT 0x0
+#define MMEA0_GMI_RD_CLI2GRP_MAP1__CID17_GROUP__SHIFT 0x2
+#define MMEA0_GMI_RD_CLI2GRP_MAP1__CID18_GROUP__SHIFT 0x4
+#define MMEA0_GMI_RD_CLI2GRP_MAP1__CID19_GROUP__SHIFT 0x6
+#define MMEA0_GMI_RD_CLI2GRP_MAP1__CID20_GROUP__SHIFT 0x8
+#define MMEA0_GMI_RD_CLI2GRP_MAP1__CID21_GROUP__SHIFT 0xa
+#define MMEA0_GMI_RD_CLI2GRP_MAP1__CID22_GROUP__SHIFT 0xc
+#define MMEA0_GMI_RD_CLI2GRP_MAP1__CID23_GROUP__SHIFT 0xe
+#define MMEA0_GMI_RD_CLI2GRP_MAP1__CID24_GROUP__SHIFT 0x10
+#define MMEA0_GMI_RD_CLI2GRP_MAP1__CID25_GROUP__SHIFT 0x12
+#define MMEA0_GMI_RD_CLI2GRP_MAP1__CID26_GROUP__SHIFT 0x14
+#define MMEA0_GMI_RD_CLI2GRP_MAP1__CID27_GROUP__SHIFT 0x16
+#define MMEA0_GMI_RD_CLI2GRP_MAP1__CID28_GROUP__SHIFT 0x18
+#define MMEA0_GMI_RD_CLI2GRP_MAP1__CID29_GROUP__SHIFT 0x1a
+#define MMEA0_GMI_RD_CLI2GRP_MAP1__CID30_GROUP__SHIFT 0x1c
+#define MMEA0_GMI_RD_CLI2GRP_MAP1__CID31_GROUP__SHIFT 0x1e
+#define MMEA0_GMI_RD_CLI2GRP_MAP1__CID16_GROUP_MASK 0x00000003L
+#define MMEA0_GMI_RD_CLI2GRP_MAP1__CID17_GROUP_MASK 0x0000000CL
+#define MMEA0_GMI_RD_CLI2GRP_MAP1__CID18_GROUP_MASK 0x00000030L
+#define MMEA0_GMI_RD_CLI2GRP_MAP1__CID19_GROUP_MASK 0x000000C0L
+#define MMEA0_GMI_RD_CLI2GRP_MAP1__CID20_GROUP_MASK 0x00000300L
+#define MMEA0_GMI_RD_CLI2GRP_MAP1__CID21_GROUP_MASK 0x00000C00L
+#define MMEA0_GMI_RD_CLI2GRP_MAP1__CID22_GROUP_MASK 0x00003000L
+#define MMEA0_GMI_RD_CLI2GRP_MAP1__CID23_GROUP_MASK 0x0000C000L
+#define MMEA0_GMI_RD_CLI2GRP_MAP1__CID24_GROUP_MASK 0x00030000L
+#define MMEA0_GMI_RD_CLI2GRP_MAP1__CID25_GROUP_MASK 0x000C0000L
+#define MMEA0_GMI_RD_CLI2GRP_MAP1__CID26_GROUP_MASK 0x00300000L
+#define MMEA0_GMI_RD_CLI2GRP_MAP1__CID27_GROUP_MASK 0x00C00000L
+#define MMEA0_GMI_RD_CLI2GRP_MAP1__CID28_GROUP_MASK 0x03000000L
+#define MMEA0_GMI_RD_CLI2GRP_MAP1__CID29_GROUP_MASK 0x0C000000L
+#define MMEA0_GMI_RD_CLI2GRP_MAP1__CID30_GROUP_MASK 0x30000000L
+#define MMEA0_GMI_RD_CLI2GRP_MAP1__CID31_GROUP_MASK 0xC0000000L
+//MMEA0_GMI_WR_CLI2GRP_MAP0
+#define MMEA0_GMI_WR_CLI2GRP_MAP0__CID0_GROUP__SHIFT 0x0
+#define MMEA0_GMI_WR_CLI2GRP_MAP0__CID1_GROUP__SHIFT 0x2
+#define MMEA0_GMI_WR_CLI2GRP_MAP0__CID2_GROUP__SHIFT 0x4
+#define MMEA0_GMI_WR_CLI2GRP_MAP0__CID3_GROUP__SHIFT 0x6
+#define MMEA0_GMI_WR_CLI2GRP_MAP0__CID4_GROUP__SHIFT 0x8
+#define MMEA0_GMI_WR_CLI2GRP_MAP0__CID5_GROUP__SHIFT 0xa
+#define MMEA0_GMI_WR_CLI2GRP_MAP0__CID6_GROUP__SHIFT 0xc
+#define MMEA0_GMI_WR_CLI2GRP_MAP0__CID7_GROUP__SHIFT 0xe
+#define MMEA0_GMI_WR_CLI2GRP_MAP0__CID8_GROUP__SHIFT 0x10
+#define MMEA0_GMI_WR_CLI2GRP_MAP0__CID9_GROUP__SHIFT 0x12
+#define MMEA0_GMI_WR_CLI2GRP_MAP0__CID10_GROUP__SHIFT 0x14
+#define MMEA0_GMI_WR_CLI2GRP_MAP0__CID11_GROUP__SHIFT 0x16
+#define MMEA0_GMI_WR_CLI2GRP_MAP0__CID12_GROUP__SHIFT 0x18
+#define MMEA0_GMI_WR_CLI2GRP_MAP0__CID13_GROUP__SHIFT 0x1a
+#define MMEA0_GMI_WR_CLI2GRP_MAP0__CID14_GROUP__SHIFT 0x1c
+#define MMEA0_GMI_WR_CLI2GRP_MAP0__CID15_GROUP__SHIFT 0x1e
+#define MMEA0_GMI_WR_CLI2GRP_MAP0__CID0_GROUP_MASK 0x00000003L
+#define MMEA0_GMI_WR_CLI2GRP_MAP0__CID1_GROUP_MASK 0x0000000CL
+#define MMEA0_GMI_WR_CLI2GRP_MAP0__CID2_GROUP_MASK 0x00000030L
+#define MMEA0_GMI_WR_CLI2GRP_MAP0__CID3_GROUP_MASK 0x000000C0L
+#define MMEA0_GMI_WR_CLI2GRP_MAP0__CID4_GROUP_MASK 0x00000300L
+#define MMEA0_GMI_WR_CLI2GRP_MAP0__CID5_GROUP_MASK 0x00000C00L
+#define MMEA0_GMI_WR_CLI2GRP_MAP0__CID6_GROUP_MASK 0x00003000L
+#define MMEA0_GMI_WR_CLI2GRP_MAP0__CID7_GROUP_MASK 0x0000C000L
+#define MMEA0_GMI_WR_CLI2GRP_MAP0__CID8_GROUP_MASK 0x00030000L
+#define MMEA0_GMI_WR_CLI2GRP_MAP0__CID9_GROUP_MASK 0x000C0000L
+#define MMEA0_GMI_WR_CLI2GRP_MAP0__CID10_GROUP_MASK 0x00300000L
+#define MMEA0_GMI_WR_CLI2GRP_MAP0__CID11_GROUP_MASK 0x00C00000L
+#define MMEA0_GMI_WR_CLI2GRP_MAP0__CID12_GROUP_MASK 0x03000000L
+#define MMEA0_GMI_WR_CLI2GRP_MAP0__CID13_GROUP_MASK 0x0C000000L
+#define MMEA0_GMI_WR_CLI2GRP_MAP0__CID14_GROUP_MASK 0x30000000L
+#define MMEA0_GMI_WR_CLI2GRP_MAP0__CID15_GROUP_MASK 0xC0000000L
+//MMEA0_GMI_WR_CLI2GRP_MAP1
+#define MMEA0_GMI_WR_CLI2GRP_MAP1__CID16_GROUP__SHIFT 0x0
+#define MMEA0_GMI_WR_CLI2GRP_MAP1__CID17_GROUP__SHIFT 0x2
+#define MMEA0_GMI_WR_CLI2GRP_MAP1__CID18_GROUP__SHIFT 0x4
+#define MMEA0_GMI_WR_CLI2GRP_MAP1__CID19_GROUP__SHIFT 0x6
+#define MMEA0_GMI_WR_CLI2GRP_MAP1__CID20_GROUP__SHIFT 0x8
+#define MMEA0_GMI_WR_CLI2GRP_MAP1__CID21_GROUP__SHIFT 0xa
+#define MMEA0_GMI_WR_CLI2GRP_MAP1__CID22_GROUP__SHIFT 0xc
+#define MMEA0_GMI_WR_CLI2GRP_MAP1__CID23_GROUP__SHIFT 0xe
+#define MMEA0_GMI_WR_CLI2GRP_MAP1__CID24_GROUP__SHIFT 0x10
+#define MMEA0_GMI_WR_CLI2GRP_MAP1__CID25_GROUP__SHIFT 0x12
+#define MMEA0_GMI_WR_CLI2GRP_MAP1__CID26_GROUP__SHIFT 0x14
+#define MMEA0_GMI_WR_CLI2GRP_MAP1__CID27_GROUP__SHIFT 0x16
+#define MMEA0_GMI_WR_CLI2GRP_MAP1__CID28_GROUP__SHIFT 0x18
+#define MMEA0_GMI_WR_CLI2GRP_MAP1__CID29_GROUP__SHIFT 0x1a
+#define MMEA0_GMI_WR_CLI2GRP_MAP1__CID30_GROUP__SHIFT 0x1c
+#define MMEA0_GMI_WR_CLI2GRP_MAP1__CID31_GROUP__SHIFT 0x1e
+#define MMEA0_GMI_WR_CLI2GRP_MAP1__CID16_GROUP_MASK 0x00000003L
+#define MMEA0_GMI_WR_CLI2GRP_MAP1__CID17_GROUP_MASK 0x0000000CL
+#define MMEA0_GMI_WR_CLI2GRP_MAP1__CID18_GROUP_MASK 0x00000030L
+#define MMEA0_GMI_WR_CLI2GRP_MAP1__CID19_GROUP_MASK 0x000000C0L
+#define MMEA0_GMI_WR_CLI2GRP_MAP1__CID20_GROUP_MASK 0x00000300L
+#define MMEA0_GMI_WR_CLI2GRP_MAP1__CID21_GROUP_MASK 0x00000C00L
+#define MMEA0_GMI_WR_CLI2GRP_MAP1__CID22_GROUP_MASK 0x00003000L
+#define MMEA0_GMI_WR_CLI2GRP_MAP1__CID23_GROUP_MASK 0x0000C000L
+#define MMEA0_GMI_WR_CLI2GRP_MAP1__CID24_GROUP_MASK 0x00030000L
+#define MMEA0_GMI_WR_CLI2GRP_MAP1__CID25_GROUP_MASK 0x000C0000L
+#define MMEA0_GMI_WR_CLI2GRP_MAP1__CID26_GROUP_MASK 0x00300000L
+#define MMEA0_GMI_WR_CLI2GRP_MAP1__CID27_GROUP_MASK 0x00C00000L
+#define MMEA0_GMI_WR_CLI2GRP_MAP1__CID28_GROUP_MASK 0x03000000L
+#define MMEA0_GMI_WR_CLI2GRP_MAP1__CID29_GROUP_MASK 0x0C000000L
+#define MMEA0_GMI_WR_CLI2GRP_MAP1__CID30_GROUP_MASK 0x30000000L
+#define MMEA0_GMI_WR_CLI2GRP_MAP1__CID31_GROUP_MASK 0xC0000000L
+//MMEA0_GMI_RD_GRP2VC_MAP
+#define MMEA0_GMI_RD_GRP2VC_MAP__GROUP0_VC__SHIFT 0x0
+#define MMEA0_GMI_RD_GRP2VC_MAP__GROUP1_VC__SHIFT 0x3
+#define MMEA0_GMI_RD_GRP2VC_MAP__GROUP2_VC__SHIFT 0x6
+#define MMEA0_GMI_RD_GRP2VC_MAP__GROUP3_VC__SHIFT 0x9
+#define MMEA0_GMI_RD_GRP2VC_MAP__GROUP0_VC_MASK 0x00000007L
+#define MMEA0_GMI_RD_GRP2VC_MAP__GROUP1_VC_MASK 0x00000038L
+#define MMEA0_GMI_RD_GRP2VC_MAP__GROUP2_VC_MASK 0x000001C0L
+#define MMEA0_GMI_RD_GRP2VC_MAP__GROUP3_VC_MASK 0x00000E00L
+//MMEA0_GMI_WR_GRP2VC_MAP
+#define MMEA0_GMI_WR_GRP2VC_MAP__GROUP0_VC__SHIFT 0x0
+#define MMEA0_GMI_WR_GRP2VC_MAP__GROUP1_VC__SHIFT 0x3
+#define MMEA0_GMI_WR_GRP2VC_MAP__GROUP2_VC__SHIFT 0x6
+#define MMEA0_GMI_WR_GRP2VC_MAP__GROUP3_VC__SHIFT 0x9
+#define MMEA0_GMI_WR_GRP2VC_MAP__GROUP0_VC_MASK 0x00000007L
+#define MMEA0_GMI_WR_GRP2VC_MAP__GROUP1_VC_MASK 0x00000038L
+#define MMEA0_GMI_WR_GRP2VC_MAP__GROUP2_VC_MASK 0x000001C0L
+#define MMEA0_GMI_WR_GRP2VC_MAP__GROUP3_VC_MASK 0x00000E00L
+//MMEA0_GMI_RD_LAZY
+#define MMEA0_GMI_RD_LAZY__GROUP0_DELAY__SHIFT 0x0
+#define MMEA0_GMI_RD_LAZY__GROUP1_DELAY__SHIFT 0x3
+#define MMEA0_GMI_RD_LAZY__GROUP2_DELAY__SHIFT 0x6
+#define MMEA0_GMI_RD_LAZY__GROUP3_DELAY__SHIFT 0x9
+#define MMEA0_GMI_RD_LAZY__REQ_ACCUM_THRESH__SHIFT 0xc
+#define MMEA0_GMI_RD_LAZY__REQ_ACCUM_TIMEOUT__SHIFT 0x14
+#define MMEA0_GMI_RD_LAZY__REQ_ACCUM_IDLEMAX__SHIFT 0x1b
+#define MMEA0_GMI_RD_LAZY__GROUP0_DELAY_MASK 0x00000007L
+#define MMEA0_GMI_RD_LAZY__GROUP1_DELAY_MASK 0x00000038L
+#define MMEA0_GMI_RD_LAZY__GROUP2_DELAY_MASK 0x000001C0L
+#define MMEA0_GMI_RD_LAZY__GROUP3_DELAY_MASK 0x00000E00L
+#define MMEA0_GMI_RD_LAZY__REQ_ACCUM_THRESH_MASK 0x0003F000L
+#define MMEA0_GMI_RD_LAZY__REQ_ACCUM_TIMEOUT_MASK 0x07F00000L
+#define MMEA0_GMI_RD_LAZY__REQ_ACCUM_IDLEMAX_MASK 0x78000000L
+//MMEA0_GMI_WR_LAZY
+#define MMEA0_GMI_WR_LAZY__GROUP0_DELAY__SHIFT 0x0
+#define MMEA0_GMI_WR_LAZY__GROUP1_DELAY__SHIFT 0x3
+#define MMEA0_GMI_WR_LAZY__GROUP2_DELAY__SHIFT 0x6
+#define MMEA0_GMI_WR_LAZY__GROUP3_DELAY__SHIFT 0x9
+#define MMEA0_GMI_WR_LAZY__REQ_ACCUM_THRESH__SHIFT 0xc
+#define MMEA0_GMI_WR_LAZY__REQ_ACCUM_TIMEOUT__SHIFT 0x14
+#define MMEA0_GMI_WR_LAZY__REQ_ACCUM_IDLEMAX__SHIFT 0x1b
+#define MMEA0_GMI_WR_LAZY__GROUP0_DELAY_MASK 0x00000007L
+#define MMEA0_GMI_WR_LAZY__GROUP1_DELAY_MASK 0x00000038L
+#define MMEA0_GMI_WR_LAZY__GROUP2_DELAY_MASK 0x000001C0L
+#define MMEA0_GMI_WR_LAZY__GROUP3_DELAY_MASK 0x00000E00L
+#define MMEA0_GMI_WR_LAZY__REQ_ACCUM_THRESH_MASK 0x0003F000L
+#define MMEA0_GMI_WR_LAZY__REQ_ACCUM_TIMEOUT_MASK 0x07F00000L
+#define MMEA0_GMI_WR_LAZY__REQ_ACCUM_IDLEMAX_MASK 0x78000000L
+//MMEA0_GMI_RD_CAM_CNTL
+#define MMEA0_GMI_RD_CAM_CNTL__DEPTH_GROUP0__SHIFT 0x0
+#define MMEA0_GMI_RD_CAM_CNTL__DEPTH_GROUP1__SHIFT 0x4
+#define MMEA0_GMI_RD_CAM_CNTL__DEPTH_GROUP2__SHIFT 0x8
+#define MMEA0_GMI_RD_CAM_CNTL__DEPTH_GROUP3__SHIFT 0xc
+#define MMEA0_GMI_RD_CAM_CNTL__REORDER_LIMIT_GROUP0__SHIFT 0x10
+#define MMEA0_GMI_RD_CAM_CNTL__REORDER_LIMIT_GROUP1__SHIFT 0x13
+#define MMEA0_GMI_RD_CAM_CNTL__REORDER_LIMIT_GROUP2__SHIFT 0x16
+#define MMEA0_GMI_RD_CAM_CNTL__REORDER_LIMIT_GROUP3__SHIFT 0x19
+#define MMEA0_GMI_RD_CAM_CNTL__REFILL_CHAIN__SHIFT 0x1c
+#define MMEA0_GMI_RD_CAM_CNTL__PAGEBASED_CHAINING__SHIFT 0x1d
+#define MMEA0_GMI_RD_CAM_CNTL__DEPTH_GROUP0_MASK 0x0000000FL
+#define MMEA0_GMI_RD_CAM_CNTL__DEPTH_GROUP1_MASK 0x000000F0L
+#define MMEA0_GMI_RD_CAM_CNTL__DEPTH_GROUP2_MASK 0x00000F00L
+#define MMEA0_GMI_RD_CAM_CNTL__DEPTH_GROUP3_MASK 0x0000F000L
+#define MMEA0_GMI_RD_CAM_CNTL__REORDER_LIMIT_GROUP0_MASK 0x00070000L
+#define MMEA0_GMI_RD_CAM_CNTL__REORDER_LIMIT_GROUP1_MASK 0x00380000L
+#define MMEA0_GMI_RD_CAM_CNTL__REORDER_LIMIT_GROUP2_MASK 0x01C00000L
+#define MMEA0_GMI_RD_CAM_CNTL__REORDER_LIMIT_GROUP3_MASK 0x0E000000L
+#define MMEA0_GMI_RD_CAM_CNTL__REFILL_CHAIN_MASK 0x10000000L
+#define MMEA0_GMI_RD_CAM_CNTL__PAGEBASED_CHAINING_MASK 0x20000000L
+//MMEA0_GMI_WR_CAM_CNTL
+#define MMEA0_GMI_WR_CAM_CNTL__DEPTH_GROUP0__SHIFT 0x0
+#define MMEA0_GMI_WR_CAM_CNTL__DEPTH_GROUP1__SHIFT 0x4
+#define MMEA0_GMI_WR_CAM_CNTL__DEPTH_GROUP2__SHIFT 0x8
+#define MMEA0_GMI_WR_CAM_CNTL__DEPTH_GROUP3__SHIFT 0xc
+#define MMEA0_GMI_WR_CAM_CNTL__REORDER_LIMIT_GROUP0__SHIFT 0x10
+#define MMEA0_GMI_WR_CAM_CNTL__REORDER_LIMIT_GROUP1__SHIFT 0x13
+#define MMEA0_GMI_WR_CAM_CNTL__REORDER_LIMIT_GROUP2__SHIFT 0x16
+#define MMEA0_GMI_WR_CAM_CNTL__REORDER_LIMIT_GROUP3__SHIFT 0x19
+#define MMEA0_GMI_WR_CAM_CNTL__REFILL_CHAIN__SHIFT 0x1c
+#define MMEA0_GMI_WR_CAM_CNTL__PAGEBASED_CHAINING__SHIFT 0x1d
+#define MMEA0_GMI_WR_CAM_CNTL__DEPTH_GROUP0_MASK 0x0000000FL
+#define MMEA0_GMI_WR_CAM_CNTL__DEPTH_GROUP1_MASK 0x000000F0L
+#define MMEA0_GMI_WR_CAM_CNTL__DEPTH_GROUP2_MASK 0x00000F00L
+#define MMEA0_GMI_WR_CAM_CNTL__DEPTH_GROUP3_MASK 0x0000F000L
+#define MMEA0_GMI_WR_CAM_CNTL__REORDER_LIMIT_GROUP0_MASK 0x00070000L
+#define MMEA0_GMI_WR_CAM_CNTL__REORDER_LIMIT_GROUP1_MASK 0x00380000L
+#define MMEA0_GMI_WR_CAM_CNTL__REORDER_LIMIT_GROUP2_MASK 0x01C00000L
+#define MMEA0_GMI_WR_CAM_CNTL__REORDER_LIMIT_GROUP3_MASK 0x0E000000L
+#define MMEA0_GMI_WR_CAM_CNTL__REFILL_CHAIN_MASK 0x10000000L
+#define MMEA0_GMI_WR_CAM_CNTL__PAGEBASED_CHAINING_MASK 0x20000000L
+//MMEA0_GMI_PAGE_BURST
+#define MMEA0_GMI_PAGE_BURST__RD_LIMIT_LO__SHIFT 0x0
+#define MMEA0_GMI_PAGE_BURST__RD_LIMIT_HI__SHIFT 0x8
+#define MMEA0_GMI_PAGE_BURST__WR_LIMIT_LO__SHIFT 0x10
+#define MMEA0_GMI_PAGE_BURST__WR_LIMIT_HI__SHIFT 0x18
+#define MMEA0_GMI_PAGE_BURST__RD_LIMIT_LO_MASK 0x000000FFL
+#define MMEA0_GMI_PAGE_BURST__RD_LIMIT_HI_MASK 0x0000FF00L
+#define MMEA0_GMI_PAGE_BURST__WR_LIMIT_LO_MASK 0x00FF0000L
+#define MMEA0_GMI_PAGE_BURST__WR_LIMIT_HI_MASK 0xFF000000L
+//MMEA0_GMI_RD_PRI_AGE
+#define MMEA0_GMI_RD_PRI_AGE__GROUP0_AGING_RATE__SHIFT 0x0
+#define MMEA0_GMI_RD_PRI_AGE__GROUP1_AGING_RATE__SHIFT 0x3
+#define MMEA0_GMI_RD_PRI_AGE__GROUP2_AGING_RATE__SHIFT 0x6
+#define MMEA0_GMI_RD_PRI_AGE__GROUP3_AGING_RATE__SHIFT 0x9
+#define MMEA0_GMI_RD_PRI_AGE__GROUP0_AGE_COEFFICIENT__SHIFT 0xc
+#define MMEA0_GMI_RD_PRI_AGE__GROUP1_AGE_COEFFICIENT__SHIFT 0xf
+#define MMEA0_GMI_RD_PRI_AGE__GROUP2_AGE_COEFFICIENT__SHIFT 0x12
+#define MMEA0_GMI_RD_PRI_AGE__GROUP3_AGE_COEFFICIENT__SHIFT 0x15
+#define MMEA0_GMI_RD_PRI_AGE__GROUP0_AGING_RATE_MASK 0x00000007L
+#define MMEA0_GMI_RD_PRI_AGE__GROUP1_AGING_RATE_MASK 0x00000038L
+#define MMEA0_GMI_RD_PRI_AGE__GROUP2_AGING_RATE_MASK 0x000001C0L
+#define MMEA0_GMI_RD_PRI_AGE__GROUP3_AGING_RATE_MASK 0x00000E00L
+#define MMEA0_GMI_RD_PRI_AGE__GROUP0_AGE_COEFFICIENT_MASK 0x00007000L
+#define MMEA0_GMI_RD_PRI_AGE__GROUP1_AGE_COEFFICIENT_MASK 0x00038000L
+#define MMEA0_GMI_RD_PRI_AGE__GROUP2_AGE_COEFFICIENT_MASK 0x001C0000L
+#define MMEA0_GMI_RD_PRI_AGE__GROUP3_AGE_COEFFICIENT_MASK 0x00E00000L
+//MMEA0_GMI_WR_PRI_AGE
+#define MMEA0_GMI_WR_PRI_AGE__GROUP0_AGING_RATE__SHIFT 0x0
+#define MMEA0_GMI_WR_PRI_AGE__GROUP1_AGING_RATE__SHIFT 0x3
+#define MMEA0_GMI_WR_PRI_AGE__GROUP2_AGING_RATE__SHIFT 0x6
+#define MMEA0_GMI_WR_PRI_AGE__GROUP3_AGING_RATE__SHIFT 0x9
+#define MMEA0_GMI_WR_PRI_AGE__GROUP0_AGE_COEFFICIENT__SHIFT 0xc
+#define MMEA0_GMI_WR_PRI_AGE__GROUP1_AGE_COEFFICIENT__SHIFT 0xf
+#define MMEA0_GMI_WR_PRI_AGE__GROUP2_AGE_COEFFICIENT__SHIFT 0x12
+#define MMEA0_GMI_WR_PRI_AGE__GROUP3_AGE_COEFFICIENT__SHIFT 0x15
+#define MMEA0_GMI_WR_PRI_AGE__GROUP0_AGING_RATE_MASK 0x00000007L
+#define MMEA0_GMI_WR_PRI_AGE__GROUP1_AGING_RATE_MASK 0x00000038L
+#define MMEA0_GMI_WR_PRI_AGE__GROUP2_AGING_RATE_MASK 0x000001C0L
+#define MMEA0_GMI_WR_PRI_AGE__GROUP3_AGING_RATE_MASK 0x00000E00L
+#define MMEA0_GMI_WR_PRI_AGE__GROUP0_AGE_COEFFICIENT_MASK 0x00007000L
+#define MMEA0_GMI_WR_PRI_AGE__GROUP1_AGE_COEFFICIENT_MASK 0x00038000L
+#define MMEA0_GMI_WR_PRI_AGE__GROUP2_AGE_COEFFICIENT_MASK 0x001C0000L
+#define MMEA0_GMI_WR_PRI_AGE__GROUP3_AGE_COEFFICIENT_MASK 0x00E00000L
+//MMEA0_GMI_RD_PRI_QUEUING
+#define MMEA0_GMI_RD_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT__SHIFT 0x0
+#define MMEA0_GMI_RD_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT__SHIFT 0x3
+#define MMEA0_GMI_RD_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT__SHIFT 0x6
+#define MMEA0_GMI_RD_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT__SHIFT 0x9
+#define MMEA0_GMI_RD_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT_MASK 0x00000007L
+#define MMEA0_GMI_RD_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT_MASK 0x00000038L
+#define MMEA0_GMI_RD_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT_MASK 0x000001C0L
+#define MMEA0_GMI_RD_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT_MASK 0x00000E00L
+//MMEA0_GMI_WR_PRI_QUEUING
+#define MMEA0_GMI_WR_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT__SHIFT 0x0
+#define MMEA0_GMI_WR_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT__SHIFT 0x3
+#define MMEA0_GMI_WR_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT__SHIFT 0x6
+#define MMEA0_GMI_WR_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT__SHIFT 0x9
+#define MMEA0_GMI_WR_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT_MASK 0x00000007L
+#define MMEA0_GMI_WR_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT_MASK 0x00000038L
+#define MMEA0_GMI_WR_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT_MASK 0x000001C0L
+#define MMEA0_GMI_WR_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT_MASK 0x00000E00L
+//MMEA0_GMI_RD_PRI_FIXED
+#define MMEA0_GMI_RD_PRI_FIXED__GROUP0_FIXED_COEFFICIENT__SHIFT 0x0
+#define MMEA0_GMI_RD_PRI_FIXED__GROUP1_FIXED_COEFFICIENT__SHIFT 0x3
+#define MMEA0_GMI_RD_PRI_FIXED__GROUP2_FIXED_COEFFICIENT__SHIFT 0x6
+#define MMEA0_GMI_RD_PRI_FIXED__GROUP3_FIXED_COEFFICIENT__SHIFT 0x9
+#define MMEA0_GMI_RD_PRI_FIXED__GROUP0_FIXED_COEFFICIENT_MASK 0x00000007L
+#define MMEA0_GMI_RD_PRI_FIXED__GROUP1_FIXED_COEFFICIENT_MASK 0x00000038L
+#define MMEA0_GMI_RD_PRI_FIXED__GROUP2_FIXED_COEFFICIENT_MASK 0x000001C0L
+#define MMEA0_GMI_RD_PRI_FIXED__GROUP3_FIXED_COEFFICIENT_MASK 0x00000E00L
+//MMEA0_GMI_WR_PRI_FIXED
+#define MMEA0_GMI_WR_PRI_FIXED__GROUP0_FIXED_COEFFICIENT__SHIFT 0x0
+#define MMEA0_GMI_WR_PRI_FIXED__GROUP1_FIXED_COEFFICIENT__SHIFT 0x3
+#define MMEA0_GMI_WR_PRI_FIXED__GROUP2_FIXED_COEFFICIENT__SHIFT 0x6
+#define MMEA0_GMI_WR_PRI_FIXED__GROUP3_FIXED_COEFFICIENT__SHIFT 0x9
+#define MMEA0_GMI_WR_PRI_FIXED__GROUP0_FIXED_COEFFICIENT_MASK 0x00000007L
+#define MMEA0_GMI_WR_PRI_FIXED__GROUP1_FIXED_COEFFICIENT_MASK 0x00000038L
+#define MMEA0_GMI_WR_PRI_FIXED__GROUP2_FIXED_COEFFICIENT_MASK 0x000001C0L
+#define MMEA0_GMI_WR_PRI_FIXED__GROUP3_FIXED_COEFFICIENT_MASK 0x00000E00L
+//MMEA0_GMI_RD_PRI_URGENCY
+#define MMEA0_GMI_RD_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT__SHIFT 0x0
+#define MMEA0_GMI_RD_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT__SHIFT 0x3
+#define MMEA0_GMI_RD_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT__SHIFT 0x6
+#define MMEA0_GMI_RD_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT__SHIFT 0x9
+#define MMEA0_GMI_RD_PRI_URGENCY__GROUP0_URGENCY_MODE__SHIFT 0xc
+#define MMEA0_GMI_RD_PRI_URGENCY__GROUP1_URGENCY_MODE__SHIFT 0xd
+#define MMEA0_GMI_RD_PRI_URGENCY__GROUP2_URGENCY_MODE__SHIFT 0xe
+#define MMEA0_GMI_RD_PRI_URGENCY__GROUP3_URGENCY_MODE__SHIFT 0xf
+#define MMEA0_GMI_RD_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT_MASK 0x00000007L
+#define MMEA0_GMI_RD_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT_MASK 0x00000038L
+#define MMEA0_GMI_RD_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT_MASK 0x000001C0L
+#define MMEA0_GMI_RD_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT_MASK 0x00000E00L
+#define MMEA0_GMI_RD_PRI_URGENCY__GROUP0_URGENCY_MODE_MASK 0x00001000L
+#define MMEA0_GMI_RD_PRI_URGENCY__GROUP1_URGENCY_MODE_MASK 0x00002000L
+#define MMEA0_GMI_RD_PRI_URGENCY__GROUP2_URGENCY_MODE_MASK 0x00004000L
+#define MMEA0_GMI_RD_PRI_URGENCY__GROUP3_URGENCY_MODE_MASK 0x00008000L
+//MMEA0_GMI_WR_PRI_URGENCY
+#define MMEA0_GMI_WR_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT__SHIFT 0x0
+#define MMEA0_GMI_WR_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT__SHIFT 0x3
+#define MMEA0_GMI_WR_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT__SHIFT 0x6
+#define MMEA0_GMI_WR_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT__SHIFT 0x9
+#define MMEA0_GMI_WR_PRI_URGENCY__GROUP0_URGENCY_MODE__SHIFT 0xc
+#define MMEA0_GMI_WR_PRI_URGENCY__GROUP1_URGENCY_MODE__SHIFT 0xd
+#define MMEA0_GMI_WR_PRI_URGENCY__GROUP2_URGENCY_MODE__SHIFT 0xe
+#define MMEA0_GMI_WR_PRI_URGENCY__GROUP3_URGENCY_MODE__SHIFT 0xf
+#define MMEA0_GMI_WR_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT_MASK 0x00000007L
+#define MMEA0_GMI_WR_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT_MASK 0x00000038L
+#define MMEA0_GMI_WR_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT_MASK 0x000001C0L
+#define MMEA0_GMI_WR_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT_MASK 0x00000E00L
+#define MMEA0_GMI_WR_PRI_URGENCY__GROUP0_URGENCY_MODE_MASK 0x00001000L
+#define MMEA0_GMI_WR_PRI_URGENCY__GROUP1_URGENCY_MODE_MASK 0x00002000L
+#define MMEA0_GMI_WR_PRI_URGENCY__GROUP2_URGENCY_MODE_MASK 0x00004000L
+#define MMEA0_GMI_WR_PRI_URGENCY__GROUP3_URGENCY_MODE_MASK 0x00008000L
+//MMEA0_GMI_RD_PRI_URGENCY_MASKING
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID0_MASK__SHIFT 0x0
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID1_MASK__SHIFT 0x1
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID2_MASK__SHIFT 0x2
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID3_MASK__SHIFT 0x3
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID4_MASK__SHIFT 0x4
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID5_MASK__SHIFT 0x5
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID6_MASK__SHIFT 0x6
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID7_MASK__SHIFT 0x7
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID8_MASK__SHIFT 0x8
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID9_MASK__SHIFT 0x9
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID10_MASK__SHIFT 0xa
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID11_MASK__SHIFT 0xb
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID12_MASK__SHIFT 0xc
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID13_MASK__SHIFT 0xd
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID14_MASK__SHIFT 0xe
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID15_MASK__SHIFT 0xf
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID16_MASK__SHIFT 0x10
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID17_MASK__SHIFT 0x11
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID18_MASK__SHIFT 0x12
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID19_MASK__SHIFT 0x13
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID20_MASK__SHIFT 0x14
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID21_MASK__SHIFT 0x15
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID22_MASK__SHIFT 0x16
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID23_MASK__SHIFT 0x17
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID24_MASK__SHIFT 0x18
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID25_MASK__SHIFT 0x19
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID26_MASK__SHIFT 0x1a
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID27_MASK__SHIFT 0x1b
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID28_MASK__SHIFT 0x1c
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID29_MASK__SHIFT 0x1d
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID30_MASK__SHIFT 0x1e
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID31_MASK__SHIFT 0x1f
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID0_MASK_MASK 0x00000001L
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID1_MASK_MASK 0x00000002L
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID2_MASK_MASK 0x00000004L
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID3_MASK_MASK 0x00000008L
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID4_MASK_MASK 0x00000010L
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID5_MASK_MASK 0x00000020L
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID6_MASK_MASK 0x00000040L
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID7_MASK_MASK 0x00000080L
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID8_MASK_MASK 0x00000100L
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID9_MASK_MASK 0x00000200L
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID10_MASK_MASK 0x00000400L
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID11_MASK_MASK 0x00000800L
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID12_MASK_MASK 0x00001000L
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID13_MASK_MASK 0x00002000L
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID14_MASK_MASK 0x00004000L
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID15_MASK_MASK 0x00008000L
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID16_MASK_MASK 0x00010000L
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID17_MASK_MASK 0x00020000L
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID18_MASK_MASK 0x00040000L
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID19_MASK_MASK 0x00080000L
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID20_MASK_MASK 0x00100000L
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID21_MASK_MASK 0x00200000L
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID22_MASK_MASK 0x00400000L
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID23_MASK_MASK 0x00800000L
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID24_MASK_MASK 0x01000000L
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID25_MASK_MASK 0x02000000L
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID26_MASK_MASK 0x04000000L
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID27_MASK_MASK 0x08000000L
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID28_MASK_MASK 0x10000000L
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID29_MASK_MASK 0x20000000L
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID30_MASK_MASK 0x40000000L
+#define MMEA0_GMI_RD_PRI_URGENCY_MASKING__CID31_MASK_MASK 0x80000000L
+//MMEA0_GMI_WR_PRI_URGENCY_MASKING
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID0_MASK__SHIFT 0x0
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID1_MASK__SHIFT 0x1
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID2_MASK__SHIFT 0x2
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID3_MASK__SHIFT 0x3
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID4_MASK__SHIFT 0x4
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID5_MASK__SHIFT 0x5
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID6_MASK__SHIFT 0x6
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID7_MASK__SHIFT 0x7
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID8_MASK__SHIFT 0x8
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID9_MASK__SHIFT 0x9
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID10_MASK__SHIFT 0xa
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID11_MASK__SHIFT 0xb
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID12_MASK__SHIFT 0xc
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID13_MASK__SHIFT 0xd
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID14_MASK__SHIFT 0xe
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID15_MASK__SHIFT 0xf
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID16_MASK__SHIFT 0x10
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID17_MASK__SHIFT 0x11
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID18_MASK__SHIFT 0x12
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID19_MASK__SHIFT 0x13
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID20_MASK__SHIFT 0x14
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID21_MASK__SHIFT 0x15
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID22_MASK__SHIFT 0x16
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID23_MASK__SHIFT 0x17
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID24_MASK__SHIFT 0x18
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID25_MASK__SHIFT 0x19
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID26_MASK__SHIFT 0x1a
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID27_MASK__SHIFT 0x1b
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID28_MASK__SHIFT 0x1c
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID29_MASK__SHIFT 0x1d
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID30_MASK__SHIFT 0x1e
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID31_MASK__SHIFT 0x1f
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID0_MASK_MASK 0x00000001L
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID1_MASK_MASK 0x00000002L
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID2_MASK_MASK 0x00000004L
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID3_MASK_MASK 0x00000008L
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID4_MASK_MASK 0x00000010L
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID5_MASK_MASK 0x00000020L
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID6_MASK_MASK 0x00000040L
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID7_MASK_MASK 0x00000080L
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID8_MASK_MASK 0x00000100L
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID9_MASK_MASK 0x00000200L
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID10_MASK_MASK 0x00000400L
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID11_MASK_MASK 0x00000800L
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID12_MASK_MASK 0x00001000L
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID13_MASK_MASK 0x00002000L
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID14_MASK_MASK 0x00004000L
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID15_MASK_MASK 0x00008000L
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID16_MASK_MASK 0x00010000L
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID17_MASK_MASK 0x00020000L
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID18_MASK_MASK 0x00040000L
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID19_MASK_MASK 0x00080000L
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID20_MASK_MASK 0x00100000L
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID21_MASK_MASK 0x00200000L
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID22_MASK_MASK 0x00400000L
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID23_MASK_MASK 0x00800000L
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID24_MASK_MASK 0x01000000L
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID25_MASK_MASK 0x02000000L
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID26_MASK_MASK 0x04000000L
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID27_MASK_MASK 0x08000000L
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID28_MASK_MASK 0x10000000L
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID29_MASK_MASK 0x20000000L
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID30_MASK_MASK 0x40000000L
+#define MMEA0_GMI_WR_PRI_URGENCY_MASKING__CID31_MASK_MASK 0x80000000L
+//MMEA0_GMI_RD_PRI_QUANT_PRI1
+#define MMEA0_GMI_RD_PRI_QUANT_PRI1__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA0_GMI_RD_PRI_QUANT_PRI1__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA0_GMI_RD_PRI_QUANT_PRI1__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA0_GMI_RD_PRI_QUANT_PRI1__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA0_GMI_RD_PRI_QUANT_PRI1__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA0_GMI_RD_PRI_QUANT_PRI1__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA0_GMI_RD_PRI_QUANT_PRI1__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA0_GMI_RD_PRI_QUANT_PRI1__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA0_GMI_RD_PRI_QUANT_PRI2
+#define MMEA0_GMI_RD_PRI_QUANT_PRI2__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA0_GMI_RD_PRI_QUANT_PRI2__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA0_GMI_RD_PRI_QUANT_PRI2__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA0_GMI_RD_PRI_QUANT_PRI2__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA0_GMI_RD_PRI_QUANT_PRI2__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA0_GMI_RD_PRI_QUANT_PRI2__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA0_GMI_RD_PRI_QUANT_PRI2__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA0_GMI_RD_PRI_QUANT_PRI2__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA0_GMI_RD_PRI_QUANT_PRI3
+#define MMEA0_GMI_RD_PRI_QUANT_PRI3__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA0_GMI_RD_PRI_QUANT_PRI3__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA0_GMI_RD_PRI_QUANT_PRI3__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA0_GMI_RD_PRI_QUANT_PRI3__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA0_GMI_RD_PRI_QUANT_PRI3__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA0_GMI_RD_PRI_QUANT_PRI3__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA0_GMI_RD_PRI_QUANT_PRI3__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA0_GMI_RD_PRI_QUANT_PRI3__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA0_GMI_WR_PRI_QUANT_PRI1
+#define MMEA0_GMI_WR_PRI_QUANT_PRI1__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA0_GMI_WR_PRI_QUANT_PRI1__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA0_GMI_WR_PRI_QUANT_PRI1__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA0_GMI_WR_PRI_QUANT_PRI1__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA0_GMI_WR_PRI_QUANT_PRI1__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA0_GMI_WR_PRI_QUANT_PRI1__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA0_GMI_WR_PRI_QUANT_PRI1__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA0_GMI_WR_PRI_QUANT_PRI1__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA0_GMI_WR_PRI_QUANT_PRI2
+#define MMEA0_GMI_WR_PRI_QUANT_PRI2__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA0_GMI_WR_PRI_QUANT_PRI2__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA0_GMI_WR_PRI_QUANT_PRI2__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA0_GMI_WR_PRI_QUANT_PRI2__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA0_GMI_WR_PRI_QUANT_PRI2__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA0_GMI_WR_PRI_QUANT_PRI2__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA0_GMI_WR_PRI_QUANT_PRI2__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA0_GMI_WR_PRI_QUANT_PRI2__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA0_GMI_WR_PRI_QUANT_PRI3
+#define MMEA0_GMI_WR_PRI_QUANT_PRI3__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA0_GMI_WR_PRI_QUANT_PRI3__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA0_GMI_WR_PRI_QUANT_PRI3__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA0_GMI_WR_PRI_QUANT_PRI3__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA0_GMI_WR_PRI_QUANT_PRI3__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA0_GMI_WR_PRI_QUANT_PRI3__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA0_GMI_WR_PRI_QUANT_PRI3__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA0_GMI_WR_PRI_QUANT_PRI3__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA0_IO_RD_CLI2GRP_MAP0
+#define MMEA0_IO_RD_CLI2GRP_MAP0__CID0_GROUP__SHIFT 0x0
+#define MMEA0_IO_RD_CLI2GRP_MAP0__CID1_GROUP__SHIFT 0x2
+#define MMEA0_IO_RD_CLI2GRP_MAP0__CID2_GROUP__SHIFT 0x4
+#define MMEA0_IO_RD_CLI2GRP_MAP0__CID3_GROUP__SHIFT 0x6
+#define MMEA0_IO_RD_CLI2GRP_MAP0__CID4_GROUP__SHIFT 0x8
+#define MMEA0_IO_RD_CLI2GRP_MAP0__CID5_GROUP__SHIFT 0xa
+#define MMEA0_IO_RD_CLI2GRP_MAP0__CID6_GROUP__SHIFT 0xc
+#define MMEA0_IO_RD_CLI2GRP_MAP0__CID7_GROUP__SHIFT 0xe
+#define MMEA0_IO_RD_CLI2GRP_MAP0__CID8_GROUP__SHIFT 0x10
+#define MMEA0_IO_RD_CLI2GRP_MAP0__CID9_GROUP__SHIFT 0x12
+#define MMEA0_IO_RD_CLI2GRP_MAP0__CID10_GROUP__SHIFT 0x14
+#define MMEA0_IO_RD_CLI2GRP_MAP0__CID11_GROUP__SHIFT 0x16
+#define MMEA0_IO_RD_CLI2GRP_MAP0__CID12_GROUP__SHIFT 0x18
+#define MMEA0_IO_RD_CLI2GRP_MAP0__CID13_GROUP__SHIFT 0x1a
+#define MMEA0_IO_RD_CLI2GRP_MAP0__CID14_GROUP__SHIFT 0x1c
+#define MMEA0_IO_RD_CLI2GRP_MAP0__CID15_GROUP__SHIFT 0x1e
+#define MMEA0_IO_RD_CLI2GRP_MAP0__CID0_GROUP_MASK 0x00000003L
+#define MMEA0_IO_RD_CLI2GRP_MAP0__CID1_GROUP_MASK 0x0000000CL
+#define MMEA0_IO_RD_CLI2GRP_MAP0__CID2_GROUP_MASK 0x00000030L
+#define MMEA0_IO_RD_CLI2GRP_MAP0__CID3_GROUP_MASK 0x000000C0L
+#define MMEA0_IO_RD_CLI2GRP_MAP0__CID4_GROUP_MASK 0x00000300L
+#define MMEA0_IO_RD_CLI2GRP_MAP0__CID5_GROUP_MASK 0x00000C00L
+#define MMEA0_IO_RD_CLI2GRP_MAP0__CID6_GROUP_MASK 0x00003000L
+#define MMEA0_IO_RD_CLI2GRP_MAP0__CID7_GROUP_MASK 0x0000C000L
+#define MMEA0_IO_RD_CLI2GRP_MAP0__CID8_GROUP_MASK 0x00030000L
+#define MMEA0_IO_RD_CLI2GRP_MAP0__CID9_GROUP_MASK 0x000C0000L
+#define MMEA0_IO_RD_CLI2GRP_MAP0__CID10_GROUP_MASK 0x00300000L
+#define MMEA0_IO_RD_CLI2GRP_MAP0__CID11_GROUP_MASK 0x00C00000L
+#define MMEA0_IO_RD_CLI2GRP_MAP0__CID12_GROUP_MASK 0x03000000L
+#define MMEA0_IO_RD_CLI2GRP_MAP0__CID13_GROUP_MASK 0x0C000000L
+#define MMEA0_IO_RD_CLI2GRP_MAP0__CID14_GROUP_MASK 0x30000000L
+#define MMEA0_IO_RD_CLI2GRP_MAP0__CID15_GROUP_MASK 0xC0000000L
+//MMEA0_IO_RD_CLI2GRP_MAP1
+#define MMEA0_IO_RD_CLI2GRP_MAP1__CID16_GROUP__SHIFT 0x0
+#define MMEA0_IO_RD_CLI2GRP_MAP1__CID17_GROUP__SHIFT 0x2
+#define MMEA0_IO_RD_CLI2GRP_MAP1__CID18_GROUP__SHIFT 0x4
+#define MMEA0_IO_RD_CLI2GRP_MAP1__CID19_GROUP__SHIFT 0x6
+#define MMEA0_IO_RD_CLI2GRP_MAP1__CID20_GROUP__SHIFT 0x8
+#define MMEA0_IO_RD_CLI2GRP_MAP1__CID21_GROUP__SHIFT 0xa
+#define MMEA0_IO_RD_CLI2GRP_MAP1__CID22_GROUP__SHIFT 0xc
+#define MMEA0_IO_RD_CLI2GRP_MAP1__CID23_GROUP__SHIFT 0xe
+#define MMEA0_IO_RD_CLI2GRP_MAP1__CID24_GROUP__SHIFT 0x10
+#define MMEA0_IO_RD_CLI2GRP_MAP1__CID25_GROUP__SHIFT 0x12
+#define MMEA0_IO_RD_CLI2GRP_MAP1__CID26_GROUP__SHIFT 0x14
+#define MMEA0_IO_RD_CLI2GRP_MAP1__CID27_GROUP__SHIFT 0x16
+#define MMEA0_IO_RD_CLI2GRP_MAP1__CID28_GROUP__SHIFT 0x18
+#define MMEA0_IO_RD_CLI2GRP_MAP1__CID29_GROUP__SHIFT 0x1a
+#define MMEA0_IO_RD_CLI2GRP_MAP1__CID30_GROUP__SHIFT 0x1c
+#define MMEA0_IO_RD_CLI2GRP_MAP1__CID31_GROUP__SHIFT 0x1e
+#define MMEA0_IO_RD_CLI2GRP_MAP1__CID16_GROUP_MASK 0x00000003L
+#define MMEA0_IO_RD_CLI2GRP_MAP1__CID17_GROUP_MASK 0x0000000CL
+#define MMEA0_IO_RD_CLI2GRP_MAP1__CID18_GROUP_MASK 0x00000030L
+#define MMEA0_IO_RD_CLI2GRP_MAP1__CID19_GROUP_MASK 0x000000C0L
+#define MMEA0_IO_RD_CLI2GRP_MAP1__CID20_GROUP_MASK 0x00000300L
+#define MMEA0_IO_RD_CLI2GRP_MAP1__CID21_GROUP_MASK 0x00000C00L
+#define MMEA0_IO_RD_CLI2GRP_MAP1__CID22_GROUP_MASK 0x00003000L
+#define MMEA0_IO_RD_CLI2GRP_MAP1__CID23_GROUP_MASK 0x0000C000L
+#define MMEA0_IO_RD_CLI2GRP_MAP1__CID24_GROUP_MASK 0x00030000L
+#define MMEA0_IO_RD_CLI2GRP_MAP1__CID25_GROUP_MASK 0x000C0000L
+#define MMEA0_IO_RD_CLI2GRP_MAP1__CID26_GROUP_MASK 0x00300000L
+#define MMEA0_IO_RD_CLI2GRP_MAP1__CID27_GROUP_MASK 0x00C00000L
+#define MMEA0_IO_RD_CLI2GRP_MAP1__CID28_GROUP_MASK 0x03000000L
+#define MMEA0_IO_RD_CLI2GRP_MAP1__CID29_GROUP_MASK 0x0C000000L
+#define MMEA0_IO_RD_CLI2GRP_MAP1__CID30_GROUP_MASK 0x30000000L
+#define MMEA0_IO_RD_CLI2GRP_MAP1__CID31_GROUP_MASK 0xC0000000L
+//MMEA0_IO_WR_CLI2GRP_MAP0
+#define MMEA0_IO_WR_CLI2GRP_MAP0__CID0_GROUP__SHIFT 0x0
+#define MMEA0_IO_WR_CLI2GRP_MAP0__CID1_GROUP__SHIFT 0x2
+#define MMEA0_IO_WR_CLI2GRP_MAP0__CID2_GROUP__SHIFT 0x4
+#define MMEA0_IO_WR_CLI2GRP_MAP0__CID3_GROUP__SHIFT 0x6
+#define MMEA0_IO_WR_CLI2GRP_MAP0__CID4_GROUP__SHIFT 0x8
+#define MMEA0_IO_WR_CLI2GRP_MAP0__CID5_GROUP__SHIFT 0xa
+#define MMEA0_IO_WR_CLI2GRP_MAP0__CID6_GROUP__SHIFT 0xc
+#define MMEA0_IO_WR_CLI2GRP_MAP0__CID7_GROUP__SHIFT 0xe
+#define MMEA0_IO_WR_CLI2GRP_MAP0__CID8_GROUP__SHIFT 0x10
+#define MMEA0_IO_WR_CLI2GRP_MAP0__CID9_GROUP__SHIFT 0x12
+#define MMEA0_IO_WR_CLI2GRP_MAP0__CID10_GROUP__SHIFT 0x14
+#define MMEA0_IO_WR_CLI2GRP_MAP0__CID11_GROUP__SHIFT 0x16
+#define MMEA0_IO_WR_CLI2GRP_MAP0__CID12_GROUP__SHIFT 0x18
+#define MMEA0_IO_WR_CLI2GRP_MAP0__CID13_GROUP__SHIFT 0x1a
+#define MMEA0_IO_WR_CLI2GRP_MAP0__CID14_GROUP__SHIFT 0x1c
+#define MMEA0_IO_WR_CLI2GRP_MAP0__CID15_GROUP__SHIFT 0x1e
+#define MMEA0_IO_WR_CLI2GRP_MAP0__CID0_GROUP_MASK 0x00000003L
+#define MMEA0_IO_WR_CLI2GRP_MAP0__CID1_GROUP_MASK 0x0000000CL
+#define MMEA0_IO_WR_CLI2GRP_MAP0__CID2_GROUP_MASK 0x00000030L
+#define MMEA0_IO_WR_CLI2GRP_MAP0__CID3_GROUP_MASK 0x000000C0L
+#define MMEA0_IO_WR_CLI2GRP_MAP0__CID4_GROUP_MASK 0x00000300L
+#define MMEA0_IO_WR_CLI2GRP_MAP0__CID5_GROUP_MASK 0x00000C00L
+#define MMEA0_IO_WR_CLI2GRP_MAP0__CID6_GROUP_MASK 0x00003000L
+#define MMEA0_IO_WR_CLI2GRP_MAP0__CID7_GROUP_MASK 0x0000C000L
+#define MMEA0_IO_WR_CLI2GRP_MAP0__CID8_GROUP_MASK 0x00030000L
+#define MMEA0_IO_WR_CLI2GRP_MAP0__CID9_GROUP_MASK 0x000C0000L
+#define MMEA0_IO_WR_CLI2GRP_MAP0__CID10_GROUP_MASK 0x00300000L
+#define MMEA0_IO_WR_CLI2GRP_MAP0__CID11_GROUP_MASK 0x00C00000L
+#define MMEA0_IO_WR_CLI2GRP_MAP0__CID12_GROUP_MASK 0x03000000L
+#define MMEA0_IO_WR_CLI2GRP_MAP0__CID13_GROUP_MASK 0x0C000000L
+#define MMEA0_IO_WR_CLI2GRP_MAP0__CID14_GROUP_MASK 0x30000000L
+#define MMEA0_IO_WR_CLI2GRP_MAP0__CID15_GROUP_MASK 0xC0000000L
+//MMEA0_IO_WR_CLI2GRP_MAP1
+#define MMEA0_IO_WR_CLI2GRP_MAP1__CID16_GROUP__SHIFT 0x0
+#define MMEA0_IO_WR_CLI2GRP_MAP1__CID17_GROUP__SHIFT 0x2
+#define MMEA0_IO_WR_CLI2GRP_MAP1__CID18_GROUP__SHIFT 0x4
+#define MMEA0_IO_WR_CLI2GRP_MAP1__CID19_GROUP__SHIFT 0x6
+#define MMEA0_IO_WR_CLI2GRP_MAP1__CID20_GROUP__SHIFT 0x8
+#define MMEA0_IO_WR_CLI2GRP_MAP1__CID21_GROUP__SHIFT 0xa
+#define MMEA0_IO_WR_CLI2GRP_MAP1__CID22_GROUP__SHIFT 0xc
+#define MMEA0_IO_WR_CLI2GRP_MAP1__CID23_GROUP__SHIFT 0xe
+#define MMEA0_IO_WR_CLI2GRP_MAP1__CID24_GROUP__SHIFT 0x10
+#define MMEA0_IO_WR_CLI2GRP_MAP1__CID25_GROUP__SHIFT 0x12
+#define MMEA0_IO_WR_CLI2GRP_MAP1__CID26_GROUP__SHIFT 0x14
+#define MMEA0_IO_WR_CLI2GRP_MAP1__CID27_GROUP__SHIFT 0x16
+#define MMEA0_IO_WR_CLI2GRP_MAP1__CID28_GROUP__SHIFT 0x18
+#define MMEA0_IO_WR_CLI2GRP_MAP1__CID29_GROUP__SHIFT 0x1a
+#define MMEA0_IO_WR_CLI2GRP_MAP1__CID30_GROUP__SHIFT 0x1c
+#define MMEA0_IO_WR_CLI2GRP_MAP1__CID31_GROUP__SHIFT 0x1e
+#define MMEA0_IO_WR_CLI2GRP_MAP1__CID16_GROUP_MASK 0x00000003L
+#define MMEA0_IO_WR_CLI2GRP_MAP1__CID17_GROUP_MASK 0x0000000CL
+#define MMEA0_IO_WR_CLI2GRP_MAP1__CID18_GROUP_MASK 0x00000030L
+#define MMEA0_IO_WR_CLI2GRP_MAP1__CID19_GROUP_MASK 0x000000C0L
+#define MMEA0_IO_WR_CLI2GRP_MAP1__CID20_GROUP_MASK 0x00000300L
+#define MMEA0_IO_WR_CLI2GRP_MAP1__CID21_GROUP_MASK 0x00000C00L
+#define MMEA0_IO_WR_CLI2GRP_MAP1__CID22_GROUP_MASK 0x00003000L
+#define MMEA0_IO_WR_CLI2GRP_MAP1__CID23_GROUP_MASK 0x0000C000L
+#define MMEA0_IO_WR_CLI2GRP_MAP1__CID24_GROUP_MASK 0x00030000L
+#define MMEA0_IO_WR_CLI2GRP_MAP1__CID25_GROUP_MASK 0x000C0000L
+#define MMEA0_IO_WR_CLI2GRP_MAP1__CID26_GROUP_MASK 0x00300000L
+#define MMEA0_IO_WR_CLI2GRP_MAP1__CID27_GROUP_MASK 0x00C00000L
+#define MMEA0_IO_WR_CLI2GRP_MAP1__CID28_GROUP_MASK 0x03000000L
+#define MMEA0_IO_WR_CLI2GRP_MAP1__CID29_GROUP_MASK 0x0C000000L
+#define MMEA0_IO_WR_CLI2GRP_MAP1__CID30_GROUP_MASK 0x30000000L
+#define MMEA0_IO_WR_CLI2GRP_MAP1__CID31_GROUP_MASK 0xC0000000L
+//MMEA0_IO_RD_COMBINE_FLUSH
+#define MMEA0_IO_RD_COMBINE_FLUSH__GROUP0_TIMER__SHIFT 0x0
+#define MMEA0_IO_RD_COMBINE_FLUSH__GROUP1_TIMER__SHIFT 0x4
+#define MMEA0_IO_RD_COMBINE_FLUSH__GROUP2_TIMER__SHIFT 0x8
+#define MMEA0_IO_RD_COMBINE_FLUSH__GROUP3_TIMER__SHIFT 0xc
+#define MMEA0_IO_RD_COMBINE_FLUSH__COMB_MODE__SHIFT 0x10
+#define MMEA0_IO_RD_COMBINE_FLUSH__GROUP0_TIMER_MASK 0x0000000FL
+#define MMEA0_IO_RD_COMBINE_FLUSH__GROUP1_TIMER_MASK 0x000000F0L
+#define MMEA0_IO_RD_COMBINE_FLUSH__GROUP2_TIMER_MASK 0x00000F00L
+#define MMEA0_IO_RD_COMBINE_FLUSH__GROUP3_TIMER_MASK 0x0000F000L
+#define MMEA0_IO_RD_COMBINE_FLUSH__COMB_MODE_MASK 0x00030000L
+//MMEA0_IO_WR_COMBINE_FLUSH
+#define MMEA0_IO_WR_COMBINE_FLUSH__GROUP0_TIMER__SHIFT 0x0
+#define MMEA0_IO_WR_COMBINE_FLUSH__GROUP1_TIMER__SHIFT 0x4
+#define MMEA0_IO_WR_COMBINE_FLUSH__GROUP2_TIMER__SHIFT 0x8
+#define MMEA0_IO_WR_COMBINE_FLUSH__GROUP3_TIMER__SHIFT 0xc
+#define MMEA0_IO_WR_COMBINE_FLUSH__COMB_MODE__SHIFT 0x10
+#define MMEA0_IO_WR_COMBINE_FLUSH__GROUP0_TIMER_MASK 0x0000000FL
+#define MMEA0_IO_WR_COMBINE_FLUSH__GROUP1_TIMER_MASK 0x000000F0L
+#define MMEA0_IO_WR_COMBINE_FLUSH__GROUP2_TIMER_MASK 0x00000F00L
+#define MMEA0_IO_WR_COMBINE_FLUSH__GROUP3_TIMER_MASK 0x0000F000L
+#define MMEA0_IO_WR_COMBINE_FLUSH__COMB_MODE_MASK 0x00030000L
+//MMEA0_IO_GROUP_BURST
+#define MMEA0_IO_GROUP_BURST__RD_LIMIT_LO__SHIFT 0x0
+#define MMEA0_IO_GROUP_BURST__RD_LIMIT_HI__SHIFT 0x8
+#define MMEA0_IO_GROUP_BURST__WR_LIMIT_LO__SHIFT 0x10
+#define MMEA0_IO_GROUP_BURST__WR_LIMIT_HI__SHIFT 0x18
+#define MMEA0_IO_GROUP_BURST__RD_LIMIT_LO_MASK 0x000000FFL
+#define MMEA0_IO_GROUP_BURST__RD_LIMIT_HI_MASK 0x0000FF00L
+#define MMEA0_IO_GROUP_BURST__WR_LIMIT_LO_MASK 0x00FF0000L
+#define MMEA0_IO_GROUP_BURST__WR_LIMIT_HI_MASK 0xFF000000L
+//MMEA0_IO_RD_PRI_AGE
+#define MMEA0_IO_RD_PRI_AGE__GROUP0_AGING_RATE__SHIFT 0x0
+#define MMEA0_IO_RD_PRI_AGE__GROUP1_AGING_RATE__SHIFT 0x3
+#define MMEA0_IO_RD_PRI_AGE__GROUP2_AGING_RATE__SHIFT 0x6
+#define MMEA0_IO_RD_PRI_AGE__GROUP3_AGING_RATE__SHIFT 0x9
+#define MMEA0_IO_RD_PRI_AGE__GROUP0_AGE_COEFFICIENT__SHIFT 0xc
+#define MMEA0_IO_RD_PRI_AGE__GROUP1_AGE_COEFFICIENT__SHIFT 0xf
+#define MMEA0_IO_RD_PRI_AGE__GROUP2_AGE_COEFFICIENT__SHIFT 0x12
+#define MMEA0_IO_RD_PRI_AGE__GROUP3_AGE_COEFFICIENT__SHIFT 0x15
+#define MMEA0_IO_RD_PRI_AGE__GROUP0_AGING_RATE_MASK 0x00000007L
+#define MMEA0_IO_RD_PRI_AGE__GROUP1_AGING_RATE_MASK 0x00000038L
+#define MMEA0_IO_RD_PRI_AGE__GROUP2_AGING_RATE_MASK 0x000001C0L
+#define MMEA0_IO_RD_PRI_AGE__GROUP3_AGING_RATE_MASK 0x00000E00L
+#define MMEA0_IO_RD_PRI_AGE__GROUP0_AGE_COEFFICIENT_MASK 0x00007000L
+#define MMEA0_IO_RD_PRI_AGE__GROUP1_AGE_COEFFICIENT_MASK 0x00038000L
+#define MMEA0_IO_RD_PRI_AGE__GROUP2_AGE_COEFFICIENT_MASK 0x001C0000L
+#define MMEA0_IO_RD_PRI_AGE__GROUP3_AGE_COEFFICIENT_MASK 0x00E00000L
+//MMEA0_IO_WR_PRI_AGE
+#define MMEA0_IO_WR_PRI_AGE__GROUP0_AGING_RATE__SHIFT 0x0
+#define MMEA0_IO_WR_PRI_AGE__GROUP1_AGING_RATE__SHIFT 0x3
+#define MMEA0_IO_WR_PRI_AGE__GROUP2_AGING_RATE__SHIFT 0x6
+#define MMEA0_IO_WR_PRI_AGE__GROUP3_AGING_RATE__SHIFT 0x9
+#define MMEA0_IO_WR_PRI_AGE__GROUP0_AGE_COEFFICIENT__SHIFT 0xc
+#define MMEA0_IO_WR_PRI_AGE__GROUP1_AGE_COEFFICIENT__SHIFT 0xf
+#define MMEA0_IO_WR_PRI_AGE__GROUP2_AGE_COEFFICIENT__SHIFT 0x12
+#define MMEA0_IO_WR_PRI_AGE__GROUP3_AGE_COEFFICIENT__SHIFT 0x15
+#define MMEA0_IO_WR_PRI_AGE__GROUP0_AGING_RATE_MASK 0x00000007L
+#define MMEA0_IO_WR_PRI_AGE__GROUP1_AGING_RATE_MASK 0x00000038L
+#define MMEA0_IO_WR_PRI_AGE__GROUP2_AGING_RATE_MASK 0x000001C0L
+#define MMEA0_IO_WR_PRI_AGE__GROUP3_AGING_RATE_MASK 0x00000E00L
+#define MMEA0_IO_WR_PRI_AGE__GROUP0_AGE_COEFFICIENT_MASK 0x00007000L
+#define MMEA0_IO_WR_PRI_AGE__GROUP1_AGE_COEFFICIENT_MASK 0x00038000L
+#define MMEA0_IO_WR_PRI_AGE__GROUP2_AGE_COEFFICIENT_MASK 0x001C0000L
+#define MMEA0_IO_WR_PRI_AGE__GROUP3_AGE_COEFFICIENT_MASK 0x00E00000L
+//MMEA0_IO_RD_PRI_QUEUING
+#define MMEA0_IO_RD_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT__SHIFT 0x0
+#define MMEA0_IO_RD_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT__SHIFT 0x3
+#define MMEA0_IO_RD_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT__SHIFT 0x6
+#define MMEA0_IO_RD_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT__SHIFT 0x9
+#define MMEA0_IO_RD_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT_MASK 0x00000007L
+#define MMEA0_IO_RD_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT_MASK 0x00000038L
+#define MMEA0_IO_RD_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT_MASK 0x000001C0L
+#define MMEA0_IO_RD_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT_MASK 0x00000E00L
+//MMEA0_IO_WR_PRI_QUEUING
+#define MMEA0_IO_WR_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT__SHIFT 0x0
+#define MMEA0_IO_WR_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT__SHIFT 0x3
+#define MMEA0_IO_WR_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT__SHIFT 0x6
+#define MMEA0_IO_WR_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT__SHIFT 0x9
+#define MMEA0_IO_WR_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT_MASK 0x00000007L
+#define MMEA0_IO_WR_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT_MASK 0x00000038L
+#define MMEA0_IO_WR_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT_MASK 0x000001C0L
+#define MMEA0_IO_WR_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT_MASK 0x00000E00L
+//MMEA0_IO_RD_PRI_FIXED
+#define MMEA0_IO_RD_PRI_FIXED__GROUP0_FIXED_COEFFICIENT__SHIFT 0x0
+#define MMEA0_IO_RD_PRI_FIXED__GROUP1_FIXED_COEFFICIENT__SHIFT 0x3
+#define MMEA0_IO_RD_PRI_FIXED__GROUP2_FIXED_COEFFICIENT__SHIFT 0x6
+#define MMEA0_IO_RD_PRI_FIXED__GROUP3_FIXED_COEFFICIENT__SHIFT 0x9
+#define MMEA0_IO_RD_PRI_FIXED__GROUP0_FIXED_COEFFICIENT_MASK 0x00000007L
+#define MMEA0_IO_RD_PRI_FIXED__GROUP1_FIXED_COEFFICIENT_MASK 0x00000038L
+#define MMEA0_IO_RD_PRI_FIXED__GROUP2_FIXED_COEFFICIENT_MASK 0x000001C0L
+#define MMEA0_IO_RD_PRI_FIXED__GROUP3_FIXED_COEFFICIENT_MASK 0x00000E00L
+//MMEA0_IO_WR_PRI_FIXED
+#define MMEA0_IO_WR_PRI_FIXED__GROUP0_FIXED_COEFFICIENT__SHIFT 0x0
+#define MMEA0_IO_WR_PRI_FIXED__GROUP1_FIXED_COEFFICIENT__SHIFT 0x3
+#define MMEA0_IO_WR_PRI_FIXED__GROUP2_FIXED_COEFFICIENT__SHIFT 0x6
+#define MMEA0_IO_WR_PRI_FIXED__GROUP3_FIXED_COEFFICIENT__SHIFT 0x9
+#define MMEA0_IO_WR_PRI_FIXED__GROUP0_FIXED_COEFFICIENT_MASK 0x00000007L
+#define MMEA0_IO_WR_PRI_FIXED__GROUP1_FIXED_COEFFICIENT_MASK 0x00000038L
+#define MMEA0_IO_WR_PRI_FIXED__GROUP2_FIXED_COEFFICIENT_MASK 0x000001C0L
+#define MMEA0_IO_WR_PRI_FIXED__GROUP3_FIXED_COEFFICIENT_MASK 0x00000E00L
+//MMEA0_IO_RD_PRI_URGENCY
+#define MMEA0_IO_RD_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT__SHIFT 0x0
+#define MMEA0_IO_RD_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT__SHIFT 0x3
+#define MMEA0_IO_RD_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT__SHIFT 0x6
+#define MMEA0_IO_RD_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT__SHIFT 0x9
+#define MMEA0_IO_RD_PRI_URGENCY__GROUP0_URGENCY_MODE__SHIFT 0xc
+#define MMEA0_IO_RD_PRI_URGENCY__GROUP1_URGENCY_MODE__SHIFT 0xd
+#define MMEA0_IO_RD_PRI_URGENCY__GROUP2_URGENCY_MODE__SHIFT 0xe
+#define MMEA0_IO_RD_PRI_URGENCY__GROUP3_URGENCY_MODE__SHIFT 0xf
+#define MMEA0_IO_RD_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT_MASK 0x00000007L
+#define MMEA0_IO_RD_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT_MASK 0x00000038L
+#define MMEA0_IO_RD_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT_MASK 0x000001C0L
+#define MMEA0_IO_RD_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT_MASK 0x00000E00L
+#define MMEA0_IO_RD_PRI_URGENCY__GROUP0_URGENCY_MODE_MASK 0x00001000L
+#define MMEA0_IO_RD_PRI_URGENCY__GROUP1_URGENCY_MODE_MASK 0x00002000L
+#define MMEA0_IO_RD_PRI_URGENCY__GROUP2_URGENCY_MODE_MASK 0x00004000L
+#define MMEA0_IO_RD_PRI_URGENCY__GROUP3_URGENCY_MODE_MASK 0x00008000L
+//MMEA0_IO_WR_PRI_URGENCY
+#define MMEA0_IO_WR_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT__SHIFT 0x0
+#define MMEA0_IO_WR_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT__SHIFT 0x3
+#define MMEA0_IO_WR_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT__SHIFT 0x6
+#define MMEA0_IO_WR_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT__SHIFT 0x9
+#define MMEA0_IO_WR_PRI_URGENCY__GROUP0_URGENCY_MODE__SHIFT 0xc
+#define MMEA0_IO_WR_PRI_URGENCY__GROUP1_URGENCY_MODE__SHIFT 0xd
+#define MMEA0_IO_WR_PRI_URGENCY__GROUP2_URGENCY_MODE__SHIFT 0xe
+#define MMEA0_IO_WR_PRI_URGENCY__GROUP3_URGENCY_MODE__SHIFT 0xf
+#define MMEA0_IO_WR_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT_MASK 0x00000007L
+#define MMEA0_IO_WR_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT_MASK 0x00000038L
+#define MMEA0_IO_WR_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT_MASK 0x000001C0L
+#define MMEA0_IO_WR_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT_MASK 0x00000E00L
+#define MMEA0_IO_WR_PRI_URGENCY__GROUP0_URGENCY_MODE_MASK 0x00001000L
+#define MMEA0_IO_WR_PRI_URGENCY__GROUP1_URGENCY_MODE_MASK 0x00002000L
+#define MMEA0_IO_WR_PRI_URGENCY__GROUP2_URGENCY_MODE_MASK 0x00004000L
+#define MMEA0_IO_WR_PRI_URGENCY__GROUP3_URGENCY_MODE_MASK 0x00008000L
+//MMEA0_IO_RD_PRI_URGENCY_MASKING
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID0_MASK__SHIFT 0x0
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID1_MASK__SHIFT 0x1
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID2_MASK__SHIFT 0x2
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID3_MASK__SHIFT 0x3
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID4_MASK__SHIFT 0x4
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID5_MASK__SHIFT 0x5
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID6_MASK__SHIFT 0x6
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID7_MASK__SHIFT 0x7
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID8_MASK__SHIFT 0x8
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID9_MASK__SHIFT 0x9
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID10_MASK__SHIFT 0xa
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID11_MASK__SHIFT 0xb
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID12_MASK__SHIFT 0xc
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID13_MASK__SHIFT 0xd
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID14_MASK__SHIFT 0xe
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID15_MASK__SHIFT 0xf
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID16_MASK__SHIFT 0x10
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID17_MASK__SHIFT 0x11
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID18_MASK__SHIFT 0x12
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID19_MASK__SHIFT 0x13
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID20_MASK__SHIFT 0x14
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID21_MASK__SHIFT 0x15
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID22_MASK__SHIFT 0x16
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID23_MASK__SHIFT 0x17
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID24_MASK__SHIFT 0x18
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID25_MASK__SHIFT 0x19
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID26_MASK__SHIFT 0x1a
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID27_MASK__SHIFT 0x1b
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID28_MASK__SHIFT 0x1c
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID29_MASK__SHIFT 0x1d
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID30_MASK__SHIFT 0x1e
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID31_MASK__SHIFT 0x1f
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID0_MASK_MASK 0x00000001L
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID1_MASK_MASK 0x00000002L
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID2_MASK_MASK 0x00000004L
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID3_MASK_MASK 0x00000008L
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID4_MASK_MASK 0x00000010L
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID5_MASK_MASK 0x00000020L
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID6_MASK_MASK 0x00000040L
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID7_MASK_MASK 0x00000080L
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID8_MASK_MASK 0x00000100L
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID9_MASK_MASK 0x00000200L
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID10_MASK_MASK 0x00000400L
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID11_MASK_MASK 0x00000800L
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID12_MASK_MASK 0x00001000L
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID13_MASK_MASK 0x00002000L
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID14_MASK_MASK 0x00004000L
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID15_MASK_MASK 0x00008000L
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID16_MASK_MASK 0x00010000L
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID17_MASK_MASK 0x00020000L
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID18_MASK_MASK 0x00040000L
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID19_MASK_MASK 0x00080000L
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID20_MASK_MASK 0x00100000L
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID21_MASK_MASK 0x00200000L
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID22_MASK_MASK 0x00400000L
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID23_MASK_MASK 0x00800000L
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID24_MASK_MASK 0x01000000L
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID25_MASK_MASK 0x02000000L
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID26_MASK_MASK 0x04000000L
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID27_MASK_MASK 0x08000000L
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID28_MASK_MASK 0x10000000L
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID29_MASK_MASK 0x20000000L
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID30_MASK_MASK 0x40000000L
+#define MMEA0_IO_RD_PRI_URGENCY_MASKING__CID31_MASK_MASK 0x80000000L
+//MMEA0_IO_WR_PRI_URGENCY_MASKING
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID0_MASK__SHIFT 0x0
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID1_MASK__SHIFT 0x1
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID2_MASK__SHIFT 0x2
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID3_MASK__SHIFT 0x3
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID4_MASK__SHIFT 0x4
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID5_MASK__SHIFT 0x5
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID6_MASK__SHIFT 0x6
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID7_MASK__SHIFT 0x7
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID8_MASK__SHIFT 0x8
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID9_MASK__SHIFT 0x9
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID10_MASK__SHIFT 0xa
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID11_MASK__SHIFT 0xb
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID12_MASK__SHIFT 0xc
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID13_MASK__SHIFT 0xd
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID14_MASK__SHIFT 0xe
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID15_MASK__SHIFT 0xf
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID16_MASK__SHIFT 0x10
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID17_MASK__SHIFT 0x11
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID18_MASK__SHIFT 0x12
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID19_MASK__SHIFT 0x13
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID20_MASK__SHIFT 0x14
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID21_MASK__SHIFT 0x15
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID22_MASK__SHIFT 0x16
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID23_MASK__SHIFT 0x17
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID24_MASK__SHIFT 0x18
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID25_MASK__SHIFT 0x19
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID26_MASK__SHIFT 0x1a
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID27_MASK__SHIFT 0x1b
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID28_MASK__SHIFT 0x1c
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID29_MASK__SHIFT 0x1d
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID30_MASK__SHIFT 0x1e
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID31_MASK__SHIFT 0x1f
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID0_MASK_MASK 0x00000001L
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID1_MASK_MASK 0x00000002L
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID2_MASK_MASK 0x00000004L
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID3_MASK_MASK 0x00000008L
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID4_MASK_MASK 0x00000010L
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID5_MASK_MASK 0x00000020L
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID6_MASK_MASK 0x00000040L
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID7_MASK_MASK 0x00000080L
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID8_MASK_MASK 0x00000100L
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID9_MASK_MASK 0x00000200L
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID10_MASK_MASK 0x00000400L
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID11_MASK_MASK 0x00000800L
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID12_MASK_MASK 0x00001000L
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID13_MASK_MASK 0x00002000L
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID14_MASK_MASK 0x00004000L
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID15_MASK_MASK 0x00008000L
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID16_MASK_MASK 0x00010000L
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID17_MASK_MASK 0x00020000L
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID18_MASK_MASK 0x00040000L
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID19_MASK_MASK 0x00080000L
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID20_MASK_MASK 0x00100000L
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID21_MASK_MASK 0x00200000L
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID22_MASK_MASK 0x00400000L
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID23_MASK_MASK 0x00800000L
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID24_MASK_MASK 0x01000000L
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID25_MASK_MASK 0x02000000L
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID26_MASK_MASK 0x04000000L
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID27_MASK_MASK 0x08000000L
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID28_MASK_MASK 0x10000000L
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID29_MASK_MASK 0x20000000L
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID30_MASK_MASK 0x40000000L
+#define MMEA0_IO_WR_PRI_URGENCY_MASKING__CID31_MASK_MASK 0x80000000L
+//MMEA0_IO_RD_PRI_QUANT_PRI1
+#define MMEA0_IO_RD_PRI_QUANT_PRI1__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA0_IO_RD_PRI_QUANT_PRI1__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA0_IO_RD_PRI_QUANT_PRI1__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA0_IO_RD_PRI_QUANT_PRI1__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA0_IO_RD_PRI_QUANT_PRI1__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA0_IO_RD_PRI_QUANT_PRI1__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA0_IO_RD_PRI_QUANT_PRI1__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA0_IO_RD_PRI_QUANT_PRI1__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA0_IO_RD_PRI_QUANT_PRI2
+#define MMEA0_IO_RD_PRI_QUANT_PRI2__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA0_IO_RD_PRI_QUANT_PRI2__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA0_IO_RD_PRI_QUANT_PRI2__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA0_IO_RD_PRI_QUANT_PRI2__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA0_IO_RD_PRI_QUANT_PRI2__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA0_IO_RD_PRI_QUANT_PRI2__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA0_IO_RD_PRI_QUANT_PRI2__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA0_IO_RD_PRI_QUANT_PRI2__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA0_IO_RD_PRI_QUANT_PRI3
+#define MMEA0_IO_RD_PRI_QUANT_PRI3__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA0_IO_RD_PRI_QUANT_PRI3__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA0_IO_RD_PRI_QUANT_PRI3__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA0_IO_RD_PRI_QUANT_PRI3__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA0_IO_RD_PRI_QUANT_PRI3__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA0_IO_RD_PRI_QUANT_PRI3__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA0_IO_RD_PRI_QUANT_PRI3__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA0_IO_RD_PRI_QUANT_PRI3__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA0_IO_WR_PRI_QUANT_PRI1
+#define MMEA0_IO_WR_PRI_QUANT_PRI1__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA0_IO_WR_PRI_QUANT_PRI1__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA0_IO_WR_PRI_QUANT_PRI1__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA0_IO_WR_PRI_QUANT_PRI1__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA0_IO_WR_PRI_QUANT_PRI1__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA0_IO_WR_PRI_QUANT_PRI1__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA0_IO_WR_PRI_QUANT_PRI1__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA0_IO_WR_PRI_QUANT_PRI1__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA0_IO_WR_PRI_QUANT_PRI2
+#define MMEA0_IO_WR_PRI_QUANT_PRI2__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA0_IO_WR_PRI_QUANT_PRI2__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA0_IO_WR_PRI_QUANT_PRI2__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA0_IO_WR_PRI_QUANT_PRI2__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA0_IO_WR_PRI_QUANT_PRI2__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA0_IO_WR_PRI_QUANT_PRI2__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA0_IO_WR_PRI_QUANT_PRI2__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA0_IO_WR_PRI_QUANT_PRI2__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA0_IO_WR_PRI_QUANT_PRI3
+#define MMEA0_IO_WR_PRI_QUANT_PRI3__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA0_IO_WR_PRI_QUANT_PRI3__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA0_IO_WR_PRI_QUANT_PRI3__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA0_IO_WR_PRI_QUANT_PRI3__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA0_IO_WR_PRI_QUANT_PRI3__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA0_IO_WR_PRI_QUANT_PRI3__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA0_IO_WR_PRI_QUANT_PRI3__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA0_IO_WR_PRI_QUANT_PRI3__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA0_SDP_ARB_DRAM
+#define MMEA0_SDP_ARB_DRAM__RDWR_BURST_LIMIT_CYCL__SHIFT 0x0
+#define MMEA0_SDP_ARB_DRAM__RDWR_BURST_LIMIT_DATA__SHIFT 0x8
+#define MMEA0_SDP_ARB_DRAM__EARLY_SW2RD_ON_PRI__SHIFT 0x10
+#define MMEA0_SDP_ARB_DRAM__EARLY_SW2WR_ON_PRI__SHIFT 0x11
+#define MMEA0_SDP_ARB_DRAM__EARLY_SW2RD_ON_RES__SHIFT 0x12
+#define MMEA0_SDP_ARB_DRAM__EARLY_SW2WR_ON_RES__SHIFT 0x13
+#define MMEA0_SDP_ARB_DRAM__EOB_ON_EXPIRE__SHIFT 0x14
+#define MMEA0_SDP_ARB_DRAM__DECOUPLE_RDWR_BNKSTATE__SHIFT 0x15
+#define MMEA0_SDP_ARB_DRAM__ALLOW_CHAIN_BREAKING__SHIFT 0x16
+#define MMEA0_SDP_ARB_DRAM__RDWR_BURST_LIMIT_CYCL_MASK 0x0000007FL
+#define MMEA0_SDP_ARB_DRAM__RDWR_BURST_LIMIT_DATA_MASK 0x00007F00L
+#define MMEA0_SDP_ARB_DRAM__EARLY_SW2RD_ON_PRI_MASK 0x00010000L
+#define MMEA0_SDP_ARB_DRAM__EARLY_SW2WR_ON_PRI_MASK 0x00020000L
+#define MMEA0_SDP_ARB_DRAM__EARLY_SW2RD_ON_RES_MASK 0x00040000L
+#define MMEA0_SDP_ARB_DRAM__EARLY_SW2WR_ON_RES_MASK 0x00080000L
+#define MMEA0_SDP_ARB_DRAM__EOB_ON_EXPIRE_MASK 0x00100000L
+#define MMEA0_SDP_ARB_DRAM__DECOUPLE_RDWR_BNKSTATE_MASK 0x00200000L
+#define MMEA0_SDP_ARB_DRAM__ALLOW_CHAIN_BREAKING_MASK 0x00400000L
+//MMEA0_SDP_ARB_GMI
+#define MMEA0_SDP_ARB_GMI__RDWR_BURST_LIMIT_CYCL__SHIFT 0x0
+#define MMEA0_SDP_ARB_GMI__RDWR_BURST_LIMIT_DATA__SHIFT 0x8
+#define MMEA0_SDP_ARB_GMI__EARLY_SW2RD_ON_PRI__SHIFT 0x10
+#define MMEA0_SDP_ARB_GMI__EARLY_SW2WR_ON_PRI__SHIFT 0x11
+#define MMEA0_SDP_ARB_GMI__EARLY_SW2RD_ON_RES__SHIFT 0x12
+#define MMEA0_SDP_ARB_GMI__EARLY_SW2WR_ON_RES__SHIFT 0x13
+#define MMEA0_SDP_ARB_GMI__EOB_ON_EXPIRE__SHIFT 0x14
+#define MMEA0_SDP_ARB_GMI__DECOUPLE_RDWR_BNKSTATE__SHIFT 0x15
+#define MMEA0_SDP_ARB_GMI__ALLOW_CHAIN_BREAKING__SHIFT 0x16
+#define MMEA0_SDP_ARB_GMI__RDWR_BURST_LIMIT_CYCL_MASK 0x0000007FL
+#define MMEA0_SDP_ARB_GMI__RDWR_BURST_LIMIT_DATA_MASK 0x00007F00L
+#define MMEA0_SDP_ARB_GMI__EARLY_SW2RD_ON_PRI_MASK 0x00010000L
+#define MMEA0_SDP_ARB_GMI__EARLY_SW2WR_ON_PRI_MASK 0x00020000L
+#define MMEA0_SDP_ARB_GMI__EARLY_SW2RD_ON_RES_MASK 0x00040000L
+#define MMEA0_SDP_ARB_GMI__EARLY_SW2WR_ON_RES_MASK 0x00080000L
+#define MMEA0_SDP_ARB_GMI__EOB_ON_EXPIRE_MASK 0x00100000L
+#define MMEA0_SDP_ARB_GMI__DECOUPLE_RDWR_BNKSTATE_MASK 0x00200000L
+#define MMEA0_SDP_ARB_GMI__ALLOW_CHAIN_BREAKING_MASK 0x00400000L
+//MMEA0_SDP_ARB_FINAL
+#define MMEA0_SDP_ARB_FINAL__DRAM_BURST_LIMIT__SHIFT 0x0
+#define MMEA0_SDP_ARB_FINAL__GMI_BURST_LIMIT__SHIFT 0x5
+#define MMEA0_SDP_ARB_FINAL__IO_BURST_LIMIT__SHIFT 0xa
+#define MMEA0_SDP_ARB_FINAL__BURST_LIMIT_MULTIPLIER__SHIFT 0xf
+#define MMEA0_SDP_ARB_FINAL__RDONLY_VC0__SHIFT 0x11
+#define MMEA0_SDP_ARB_FINAL__RDONLY_VC1__SHIFT 0x12
+#define MMEA0_SDP_ARB_FINAL__RDONLY_VC2__SHIFT 0x13
+#define MMEA0_SDP_ARB_FINAL__RDONLY_VC3__SHIFT 0x14
+#define MMEA0_SDP_ARB_FINAL__RDONLY_VC4__SHIFT 0x15
+#define MMEA0_SDP_ARB_FINAL__RDONLY_VC5__SHIFT 0x16
+#define MMEA0_SDP_ARB_FINAL__RDONLY_VC6__SHIFT 0x17
+#define MMEA0_SDP_ARB_FINAL__RDONLY_VC7__SHIFT 0x18
+#define MMEA0_SDP_ARB_FINAL__ERREVENT_ON_ERROR__SHIFT 0x19
+#define MMEA0_SDP_ARB_FINAL__HALTREQ_ON_ERROR__SHIFT 0x1a
+#define MMEA0_SDP_ARB_FINAL__DRAM_BURST_STRETCH__SHIFT 0x1b
+#define MMEA0_SDP_ARB_FINAL__GMI_BURST_STRETCH__SHIFT 0x1c
+#define MMEA0_SDP_ARB_FINAL__DRAM_BURST_LIMIT_MASK 0x0000001FL
+#define MMEA0_SDP_ARB_FINAL__GMI_BURST_LIMIT_MASK 0x000003E0L
+#define MMEA0_SDP_ARB_FINAL__IO_BURST_LIMIT_MASK 0x00007C00L
+#define MMEA0_SDP_ARB_FINAL__BURST_LIMIT_MULTIPLIER_MASK 0x00018000L
+#define MMEA0_SDP_ARB_FINAL__RDONLY_VC0_MASK 0x00020000L
+#define MMEA0_SDP_ARB_FINAL__RDONLY_VC1_MASK 0x00040000L
+#define MMEA0_SDP_ARB_FINAL__RDONLY_VC2_MASK 0x00080000L
+#define MMEA0_SDP_ARB_FINAL__RDONLY_VC3_MASK 0x00100000L
+#define MMEA0_SDP_ARB_FINAL__RDONLY_VC4_MASK 0x00200000L
+#define MMEA0_SDP_ARB_FINAL__RDONLY_VC5_MASK 0x00400000L
+#define MMEA0_SDP_ARB_FINAL__RDONLY_VC6_MASK 0x00800000L
+#define MMEA0_SDP_ARB_FINAL__RDONLY_VC7_MASK 0x01000000L
+#define MMEA0_SDP_ARB_FINAL__ERREVENT_ON_ERROR_MASK 0x02000000L
+#define MMEA0_SDP_ARB_FINAL__HALTREQ_ON_ERROR_MASK 0x04000000L
+#define MMEA0_SDP_ARB_FINAL__DRAM_BURST_STRETCH_MASK 0x08000000L
+#define MMEA0_SDP_ARB_FINAL__GMI_BURST_STRETCH_MASK 0x10000000L
+//MMEA0_SDP_DRAM_PRIORITY
+#define MMEA0_SDP_DRAM_PRIORITY__RD_GROUP0_PRIORITY__SHIFT 0x0
+#define MMEA0_SDP_DRAM_PRIORITY__RD_GROUP1_PRIORITY__SHIFT 0x4
+#define MMEA0_SDP_DRAM_PRIORITY__RD_GROUP2_PRIORITY__SHIFT 0x8
+#define MMEA0_SDP_DRAM_PRIORITY__RD_GROUP3_PRIORITY__SHIFT 0xc
+#define MMEA0_SDP_DRAM_PRIORITY__WR_GROUP0_PRIORITY__SHIFT 0x10
+#define MMEA0_SDP_DRAM_PRIORITY__WR_GROUP1_PRIORITY__SHIFT 0x14
+#define MMEA0_SDP_DRAM_PRIORITY__WR_GROUP2_PRIORITY__SHIFT 0x18
+#define MMEA0_SDP_DRAM_PRIORITY__WR_GROUP3_PRIORITY__SHIFT 0x1c
+#define MMEA0_SDP_DRAM_PRIORITY__RD_GROUP0_PRIORITY_MASK 0x0000000FL
+#define MMEA0_SDP_DRAM_PRIORITY__RD_GROUP1_PRIORITY_MASK 0x000000F0L
+#define MMEA0_SDP_DRAM_PRIORITY__RD_GROUP2_PRIORITY_MASK 0x00000F00L
+#define MMEA0_SDP_DRAM_PRIORITY__RD_GROUP3_PRIORITY_MASK 0x0000F000L
+#define MMEA0_SDP_DRAM_PRIORITY__WR_GROUP0_PRIORITY_MASK 0x000F0000L
+#define MMEA0_SDP_DRAM_PRIORITY__WR_GROUP1_PRIORITY_MASK 0x00F00000L
+#define MMEA0_SDP_DRAM_PRIORITY__WR_GROUP2_PRIORITY_MASK 0x0F000000L
+#define MMEA0_SDP_DRAM_PRIORITY__WR_GROUP3_PRIORITY_MASK 0xF0000000L
+//MMEA0_SDP_GMI_PRIORITY
+#define MMEA0_SDP_GMI_PRIORITY__RD_GROUP0_PRIORITY__SHIFT 0x0
+#define MMEA0_SDP_GMI_PRIORITY__RD_GROUP1_PRIORITY__SHIFT 0x4
+#define MMEA0_SDP_GMI_PRIORITY__RD_GROUP2_PRIORITY__SHIFT 0x8
+#define MMEA0_SDP_GMI_PRIORITY__RD_GROUP3_PRIORITY__SHIFT 0xc
+#define MMEA0_SDP_GMI_PRIORITY__WR_GROUP0_PRIORITY__SHIFT 0x10
+#define MMEA0_SDP_GMI_PRIORITY__WR_GROUP1_PRIORITY__SHIFT 0x14
+#define MMEA0_SDP_GMI_PRIORITY__WR_GROUP2_PRIORITY__SHIFT 0x18
+#define MMEA0_SDP_GMI_PRIORITY__WR_GROUP3_PRIORITY__SHIFT 0x1c
+#define MMEA0_SDP_GMI_PRIORITY__RD_GROUP0_PRIORITY_MASK 0x0000000FL
+#define MMEA0_SDP_GMI_PRIORITY__RD_GROUP1_PRIORITY_MASK 0x000000F0L
+#define MMEA0_SDP_GMI_PRIORITY__RD_GROUP2_PRIORITY_MASK 0x00000F00L
+#define MMEA0_SDP_GMI_PRIORITY__RD_GROUP3_PRIORITY_MASK 0x0000F000L
+#define MMEA0_SDP_GMI_PRIORITY__WR_GROUP0_PRIORITY_MASK 0x000F0000L
+#define MMEA0_SDP_GMI_PRIORITY__WR_GROUP1_PRIORITY_MASK 0x00F00000L
+#define MMEA0_SDP_GMI_PRIORITY__WR_GROUP2_PRIORITY_MASK 0x0F000000L
+#define MMEA0_SDP_GMI_PRIORITY__WR_GROUP3_PRIORITY_MASK 0xF0000000L
+//MMEA0_SDP_IO_PRIORITY
+#define MMEA0_SDP_IO_PRIORITY__RD_GROUP0_PRIORITY__SHIFT 0x0
+#define MMEA0_SDP_IO_PRIORITY__RD_GROUP1_PRIORITY__SHIFT 0x4
+#define MMEA0_SDP_IO_PRIORITY__RD_GROUP2_PRIORITY__SHIFT 0x8
+#define MMEA0_SDP_IO_PRIORITY__RD_GROUP3_PRIORITY__SHIFT 0xc
+#define MMEA0_SDP_IO_PRIORITY__WR_GROUP0_PRIORITY__SHIFT 0x10
+#define MMEA0_SDP_IO_PRIORITY__WR_GROUP1_PRIORITY__SHIFT 0x14
+#define MMEA0_SDP_IO_PRIORITY__WR_GROUP2_PRIORITY__SHIFT 0x18
+#define MMEA0_SDP_IO_PRIORITY__WR_GROUP3_PRIORITY__SHIFT 0x1c
+#define MMEA0_SDP_IO_PRIORITY__RD_GROUP0_PRIORITY_MASK 0x0000000FL
+#define MMEA0_SDP_IO_PRIORITY__RD_GROUP1_PRIORITY_MASK 0x000000F0L
+#define MMEA0_SDP_IO_PRIORITY__RD_GROUP2_PRIORITY_MASK 0x00000F00L
+#define MMEA0_SDP_IO_PRIORITY__RD_GROUP3_PRIORITY_MASK 0x0000F000L
+#define MMEA0_SDP_IO_PRIORITY__WR_GROUP0_PRIORITY_MASK 0x000F0000L
+#define MMEA0_SDP_IO_PRIORITY__WR_GROUP1_PRIORITY_MASK 0x00F00000L
+#define MMEA0_SDP_IO_PRIORITY__WR_GROUP2_PRIORITY_MASK 0x0F000000L
+#define MMEA0_SDP_IO_PRIORITY__WR_GROUP3_PRIORITY_MASK 0xF0000000L
+//MMEA0_SDP_CREDITS
+#define MMEA0_SDP_CREDITS__TAG_LIMIT__SHIFT 0x0
+#define MMEA0_SDP_CREDITS__WR_RESP_CREDITS__SHIFT 0x8
+#define MMEA0_SDP_CREDITS__RD_RESP_CREDITS__SHIFT 0x10
+#define MMEA0_SDP_CREDITS__TAG_LIMIT_MASK 0x000000FFL
+#define MMEA0_SDP_CREDITS__WR_RESP_CREDITS_MASK 0x00007F00L
+#define MMEA0_SDP_CREDITS__RD_RESP_CREDITS_MASK 0x007F0000L
+//MMEA0_SDP_TAG_RESERVE0
+#define MMEA0_SDP_TAG_RESERVE0__VC0__SHIFT 0x0
+#define MMEA0_SDP_TAG_RESERVE0__VC1__SHIFT 0x8
+#define MMEA0_SDP_TAG_RESERVE0__VC2__SHIFT 0x10
+#define MMEA0_SDP_TAG_RESERVE0__VC3__SHIFT 0x18
+#define MMEA0_SDP_TAG_RESERVE0__VC0_MASK 0x000000FFL
+#define MMEA0_SDP_TAG_RESERVE0__VC1_MASK 0x0000FF00L
+#define MMEA0_SDP_TAG_RESERVE0__VC2_MASK 0x00FF0000L
+#define MMEA0_SDP_TAG_RESERVE0__VC3_MASK 0xFF000000L
+//MMEA0_SDP_TAG_RESERVE1
+#define MMEA0_SDP_TAG_RESERVE1__VC4__SHIFT 0x0
+#define MMEA0_SDP_TAG_RESERVE1__VC5__SHIFT 0x8
+#define MMEA0_SDP_TAG_RESERVE1__VC6__SHIFT 0x10
+#define MMEA0_SDP_TAG_RESERVE1__VC7__SHIFT 0x18
+#define MMEA0_SDP_TAG_RESERVE1__VC4_MASK 0x000000FFL
+#define MMEA0_SDP_TAG_RESERVE1__VC5_MASK 0x0000FF00L
+#define MMEA0_SDP_TAG_RESERVE1__VC6_MASK 0x00FF0000L
+#define MMEA0_SDP_TAG_RESERVE1__VC7_MASK 0xFF000000L
+//MMEA0_SDP_VCC_RESERVE0
+#define MMEA0_SDP_VCC_RESERVE0__VC0_CREDITS__SHIFT 0x0
+#define MMEA0_SDP_VCC_RESERVE0__VC1_CREDITS__SHIFT 0x6
+#define MMEA0_SDP_VCC_RESERVE0__VC2_CREDITS__SHIFT 0xc
+#define MMEA0_SDP_VCC_RESERVE0__VC3_CREDITS__SHIFT 0x12
+#define MMEA0_SDP_VCC_RESERVE0__VC4_CREDITS__SHIFT 0x18
+#define MMEA0_SDP_VCC_RESERVE0__VC0_CREDITS_MASK 0x0000003FL
+#define MMEA0_SDP_VCC_RESERVE0__VC1_CREDITS_MASK 0x00000FC0L
+#define MMEA0_SDP_VCC_RESERVE0__VC2_CREDITS_MASK 0x0003F000L
+#define MMEA0_SDP_VCC_RESERVE0__VC3_CREDITS_MASK 0x00FC0000L
+#define MMEA0_SDP_VCC_RESERVE0__VC4_CREDITS_MASK 0x3F000000L
+//MMEA0_SDP_VCC_RESERVE1
+#define MMEA0_SDP_VCC_RESERVE1__VC5_CREDITS__SHIFT 0x0
+#define MMEA0_SDP_VCC_RESERVE1__VC6_CREDITS__SHIFT 0x6
+#define MMEA0_SDP_VCC_RESERVE1__VC7_CREDITS__SHIFT 0xc
+#define MMEA0_SDP_VCC_RESERVE1__DISTRIBUTE_POOL__SHIFT 0x1f
+#define MMEA0_SDP_VCC_RESERVE1__VC5_CREDITS_MASK 0x0000003FL
+#define MMEA0_SDP_VCC_RESERVE1__VC6_CREDITS_MASK 0x00000FC0L
+#define MMEA0_SDP_VCC_RESERVE1__VC7_CREDITS_MASK 0x0003F000L
+#define MMEA0_SDP_VCC_RESERVE1__DISTRIBUTE_POOL_MASK 0x80000000L
+//MMEA0_SDP_VCD_RESERVE0
+#define MMEA0_SDP_VCD_RESERVE0__VC0_CREDITS__SHIFT 0x0
+#define MMEA0_SDP_VCD_RESERVE0__VC1_CREDITS__SHIFT 0x6
+#define MMEA0_SDP_VCD_RESERVE0__VC2_CREDITS__SHIFT 0xc
+#define MMEA0_SDP_VCD_RESERVE0__VC3_CREDITS__SHIFT 0x12
+#define MMEA0_SDP_VCD_RESERVE0__VC4_CREDITS__SHIFT 0x18
+#define MMEA0_SDP_VCD_RESERVE0__VC0_CREDITS_MASK 0x0000003FL
+#define MMEA0_SDP_VCD_RESERVE0__VC1_CREDITS_MASK 0x00000FC0L
+#define MMEA0_SDP_VCD_RESERVE0__VC2_CREDITS_MASK 0x0003F000L
+#define MMEA0_SDP_VCD_RESERVE0__VC3_CREDITS_MASK 0x00FC0000L
+#define MMEA0_SDP_VCD_RESERVE0__VC4_CREDITS_MASK 0x3F000000L
+//MMEA0_SDP_VCD_RESERVE1
+#define MMEA0_SDP_VCD_RESERVE1__VC5_CREDITS__SHIFT 0x0
+#define MMEA0_SDP_VCD_RESERVE1__VC6_CREDITS__SHIFT 0x6
+#define MMEA0_SDP_VCD_RESERVE1__VC7_CREDITS__SHIFT 0xc
+#define MMEA0_SDP_VCD_RESERVE1__DISTRIBUTE_POOL__SHIFT 0x1f
+#define MMEA0_SDP_VCD_RESERVE1__VC5_CREDITS_MASK 0x0000003FL
+#define MMEA0_SDP_VCD_RESERVE1__VC6_CREDITS_MASK 0x00000FC0L
+#define MMEA0_SDP_VCD_RESERVE1__VC7_CREDITS_MASK 0x0003F000L
+#define MMEA0_SDP_VCD_RESERVE1__DISTRIBUTE_POOL_MASK 0x80000000L
+//MMEA0_SDP_REQ_CNTL
+#define MMEA0_SDP_REQ_CNTL__REQ_PASS_PW_OVERRIDE_READ__SHIFT 0x0
+#define MMEA0_SDP_REQ_CNTL__REQ_PASS_PW_OVERRIDE_WRITE__SHIFT 0x1
+#define MMEA0_SDP_REQ_CNTL__REQ_PASS_PW_OVERRIDE_ATOMIC__SHIFT 0x2
+#define MMEA0_SDP_REQ_CNTL__REQ_CHAIN_OVERRIDE_DRAM__SHIFT 0x3
+#define MMEA0_SDP_REQ_CNTL__REQ_CHAIN_OVERRIDE_GMI__SHIFT 0x4
+#define MMEA0_SDP_REQ_CNTL__INNER_DOMAIN_MODE__SHIFT 0x5
+#define MMEA0_SDP_REQ_CNTL__REQ_BLOCK_LEVEL_READ__SHIFT 0x6
+#define MMEA0_SDP_REQ_CNTL__REQ_BLOCK_LEVEL_WRITE__SHIFT 0x8
+#define MMEA0_SDP_REQ_CNTL__REQ_BLOCK_LEVEL_ATOMIC__SHIFT 0xa
+#define MMEA0_SDP_REQ_CNTL__REQ_PASS_PW_OVERRIDE_READ_MASK 0x00000001L
+#define MMEA0_SDP_REQ_CNTL__REQ_PASS_PW_OVERRIDE_WRITE_MASK 0x00000002L
+#define MMEA0_SDP_REQ_CNTL__REQ_PASS_PW_OVERRIDE_ATOMIC_MASK 0x00000004L
+#define MMEA0_SDP_REQ_CNTL__REQ_CHAIN_OVERRIDE_DRAM_MASK 0x00000008L
+#define MMEA0_SDP_REQ_CNTL__REQ_CHAIN_OVERRIDE_GMI_MASK 0x00000010L
+#define MMEA0_SDP_REQ_CNTL__INNER_DOMAIN_MODE_MASK 0x00000020L
+#define MMEA0_SDP_REQ_CNTL__REQ_BLOCK_LEVEL_READ_MASK 0x000000C0L
+#define MMEA0_SDP_REQ_CNTL__REQ_BLOCK_LEVEL_WRITE_MASK 0x00000300L
+#define MMEA0_SDP_REQ_CNTL__REQ_BLOCK_LEVEL_ATOMIC_MASK 0x00000C00L
+//MMEA0_MISC
+#define MMEA0_MISC__RELATIVE_PRI_IN_DRAM_RD_ARB__SHIFT 0x0
+#define MMEA0_MISC__RELATIVE_PRI_IN_DRAM_WR_ARB__SHIFT 0x1
+#define MMEA0_MISC__RELATIVE_PRI_IN_GMI_RD_ARB__SHIFT 0x2
+#define MMEA0_MISC__RELATIVE_PRI_IN_GMI_WR_ARB__SHIFT 0x3
+#define MMEA0_MISC__RELATIVE_PRI_IN_IO_RD_ARB__SHIFT 0x4
+#define MMEA0_MISC__RELATIVE_PRI_IN_IO_WR_ARB__SHIFT 0x5
+#define MMEA0_MISC__EARLYWRRET_ENABLE_VC0__SHIFT 0x6
+#define MMEA0_MISC__EARLYWRRET_ENABLE_VC1__SHIFT 0x7
+#define MMEA0_MISC__EARLYWRRET_ENABLE_VC2__SHIFT 0x8
+#define MMEA0_MISC__EARLYWRRET_ENABLE_VC3__SHIFT 0x9
+#define MMEA0_MISC__EARLYWRRET_ENABLE_VC4__SHIFT 0xa
+#define MMEA0_MISC__EARLYWRRET_ENABLE_VC5__SHIFT 0xb
+#define MMEA0_MISC__EARLYWRRET_ENABLE_VC6__SHIFT 0xc
+#define MMEA0_MISC__EARLYWRRET_ENABLE_VC7__SHIFT 0xd
+#define MMEA0_MISC__EARLY_SDP_ORIGDATA__SHIFT 0xe
+#define MMEA0_MISC__LINKMGR_DYNAMIC_MODE__SHIFT 0xf
+#define MMEA0_MISC__LINKMGR_HALT_THRESHOLD__SHIFT 0x11
+#define MMEA0_MISC__LINKMGR_RECONNECT_DELAY__SHIFT 0x13
+#define MMEA0_MISC__LINKMGR_IDLE_THRESHOLD__SHIFT 0x15
+#define MMEA0_MISC__FAVOUR_MIDCHAIN_CS_IN_DRAM_ARB__SHIFT 0x1a
+#define MMEA0_MISC__FAVOUR_MIDCHAIN_CS_IN_GMI_ARB__SHIFT 0x1b
+#define MMEA0_MISC__FAVOUR_LAST_CS_IN_DRAM_ARB__SHIFT 0x1c
+#define MMEA0_MISC__FAVOUR_LAST_CS_IN_GMI_ARB__SHIFT 0x1d
+#define MMEA0_MISC__SWITCH_CS_ON_W2R_IN_DRAM_ARB__SHIFT 0x1e
+#define MMEA0_MISC__SWITCH_CS_ON_W2R_IN_GMI_ARB__SHIFT 0x1f
+#define MMEA0_MISC__RELATIVE_PRI_IN_DRAM_RD_ARB_MASK 0x00000001L
+#define MMEA0_MISC__RELATIVE_PRI_IN_DRAM_WR_ARB_MASK 0x00000002L
+#define MMEA0_MISC__RELATIVE_PRI_IN_GMI_RD_ARB_MASK 0x00000004L
+#define MMEA0_MISC__RELATIVE_PRI_IN_GMI_WR_ARB_MASK 0x00000008L
+#define MMEA0_MISC__RELATIVE_PRI_IN_IO_RD_ARB_MASK 0x00000010L
+#define MMEA0_MISC__RELATIVE_PRI_IN_IO_WR_ARB_MASK 0x00000020L
+#define MMEA0_MISC__EARLYWRRET_ENABLE_VC0_MASK 0x00000040L
+#define MMEA0_MISC__EARLYWRRET_ENABLE_VC1_MASK 0x00000080L
+#define MMEA0_MISC__EARLYWRRET_ENABLE_VC2_MASK 0x00000100L
+#define MMEA0_MISC__EARLYWRRET_ENABLE_VC3_MASK 0x00000200L
+#define MMEA0_MISC__EARLYWRRET_ENABLE_VC4_MASK 0x00000400L
+#define MMEA0_MISC__EARLYWRRET_ENABLE_VC5_MASK 0x00000800L
+#define MMEA0_MISC__EARLYWRRET_ENABLE_VC6_MASK 0x00001000L
+#define MMEA0_MISC__EARLYWRRET_ENABLE_VC7_MASK 0x00002000L
+#define MMEA0_MISC__EARLY_SDP_ORIGDATA_MASK 0x00004000L
+#define MMEA0_MISC__LINKMGR_DYNAMIC_MODE_MASK 0x00018000L
+#define MMEA0_MISC__LINKMGR_HALT_THRESHOLD_MASK 0x00060000L
+#define MMEA0_MISC__LINKMGR_RECONNECT_DELAY_MASK 0x00180000L
+#define MMEA0_MISC__LINKMGR_IDLE_THRESHOLD_MASK 0x03E00000L
+#define MMEA0_MISC__FAVOUR_MIDCHAIN_CS_IN_DRAM_ARB_MASK 0x04000000L
+#define MMEA0_MISC__FAVOUR_MIDCHAIN_CS_IN_GMI_ARB_MASK 0x08000000L
+#define MMEA0_MISC__FAVOUR_LAST_CS_IN_DRAM_ARB_MASK 0x10000000L
+#define MMEA0_MISC__FAVOUR_LAST_CS_IN_GMI_ARB_MASK 0x20000000L
+#define MMEA0_MISC__SWITCH_CS_ON_W2R_IN_DRAM_ARB_MASK 0x40000000L
+#define MMEA0_MISC__SWITCH_CS_ON_W2R_IN_GMI_ARB_MASK 0x80000000L
+//MMEA0_LATENCY_SAMPLING
+#define MMEA0_LATENCY_SAMPLING__SAMPLER0_DRAM__SHIFT 0x0
+#define MMEA0_LATENCY_SAMPLING__SAMPLER1_DRAM__SHIFT 0x1
+#define MMEA0_LATENCY_SAMPLING__SAMPLER0_GMI__SHIFT 0x2
+#define MMEA0_LATENCY_SAMPLING__SAMPLER1_GMI__SHIFT 0x3
+#define MMEA0_LATENCY_SAMPLING__SAMPLER0_IO__SHIFT 0x4
+#define MMEA0_LATENCY_SAMPLING__SAMPLER1_IO__SHIFT 0x5
+#define MMEA0_LATENCY_SAMPLING__SAMPLER0_READ__SHIFT 0x6
+#define MMEA0_LATENCY_SAMPLING__SAMPLER1_READ__SHIFT 0x7
+#define MMEA0_LATENCY_SAMPLING__SAMPLER0_WRITE__SHIFT 0x8
+#define MMEA0_LATENCY_SAMPLING__SAMPLER1_WRITE__SHIFT 0x9
+#define MMEA0_LATENCY_SAMPLING__SAMPLER0_ATOMIC_RET__SHIFT 0xa
+#define MMEA0_LATENCY_SAMPLING__SAMPLER1_ATOMIC_RET__SHIFT 0xb
+#define MMEA0_LATENCY_SAMPLING__SAMPLER0_ATOMIC_NORET__SHIFT 0xc
+#define MMEA0_LATENCY_SAMPLING__SAMPLER1_ATOMIC_NORET__SHIFT 0xd
+#define MMEA0_LATENCY_SAMPLING__SAMPLER0_VC__SHIFT 0xe
+#define MMEA0_LATENCY_SAMPLING__SAMPLER1_VC__SHIFT 0x16
+#define MMEA0_LATENCY_SAMPLING__SAMPLER0_DRAM_MASK 0x00000001L
+#define MMEA0_LATENCY_SAMPLING__SAMPLER1_DRAM_MASK 0x00000002L
+#define MMEA0_LATENCY_SAMPLING__SAMPLER0_GMI_MASK 0x00000004L
+#define MMEA0_LATENCY_SAMPLING__SAMPLER1_GMI_MASK 0x00000008L
+#define MMEA0_LATENCY_SAMPLING__SAMPLER0_IO_MASK 0x00000010L
+#define MMEA0_LATENCY_SAMPLING__SAMPLER1_IO_MASK 0x00000020L
+#define MMEA0_LATENCY_SAMPLING__SAMPLER0_READ_MASK 0x00000040L
+#define MMEA0_LATENCY_SAMPLING__SAMPLER1_READ_MASK 0x00000080L
+#define MMEA0_LATENCY_SAMPLING__SAMPLER0_WRITE_MASK 0x00000100L
+#define MMEA0_LATENCY_SAMPLING__SAMPLER1_WRITE_MASK 0x00000200L
+#define MMEA0_LATENCY_SAMPLING__SAMPLER0_ATOMIC_RET_MASK 0x00000400L
+#define MMEA0_LATENCY_SAMPLING__SAMPLER1_ATOMIC_RET_MASK 0x00000800L
+#define MMEA0_LATENCY_SAMPLING__SAMPLER0_ATOMIC_NORET_MASK 0x00001000L
+#define MMEA0_LATENCY_SAMPLING__SAMPLER1_ATOMIC_NORET_MASK 0x00002000L
+#define MMEA0_LATENCY_SAMPLING__SAMPLER0_VC_MASK 0x003FC000L
+#define MMEA0_LATENCY_SAMPLING__SAMPLER1_VC_MASK 0x3FC00000L
+//MMEA0_PERFCOUNTER_LO
+#define MMEA0_PERFCOUNTER_LO__COUNTER_LO__SHIFT 0x0
+#define MMEA0_PERFCOUNTER_LO__COUNTER_LO_MASK 0xFFFFFFFFL
+//MMEA0_PERFCOUNTER_HI
+#define MMEA0_PERFCOUNTER_HI__COUNTER_HI__SHIFT 0x0
+#define MMEA0_PERFCOUNTER_HI__COMPARE_VALUE__SHIFT 0x10
+#define MMEA0_PERFCOUNTER_HI__COUNTER_HI_MASK 0x0000FFFFL
+#define MMEA0_PERFCOUNTER_HI__COMPARE_VALUE_MASK 0xFFFF0000L
+//MMEA0_PERFCOUNTER0_CFG
+#define MMEA0_PERFCOUNTER0_CFG__PERF_SEL__SHIFT 0x0
+#define MMEA0_PERFCOUNTER0_CFG__PERF_SEL_END__SHIFT 0x8
+#define MMEA0_PERFCOUNTER0_CFG__PERF_MODE__SHIFT 0x18
+#define MMEA0_PERFCOUNTER0_CFG__ENABLE__SHIFT 0x1c
+#define MMEA0_PERFCOUNTER0_CFG__CLEAR__SHIFT 0x1d
+#define MMEA0_PERFCOUNTER0_CFG__PERF_SEL_MASK 0x000000FFL
+#define MMEA0_PERFCOUNTER0_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define MMEA0_PERFCOUNTER0_CFG__PERF_MODE_MASK 0x0F000000L
+#define MMEA0_PERFCOUNTER0_CFG__ENABLE_MASK 0x10000000L
+#define MMEA0_PERFCOUNTER0_CFG__CLEAR_MASK 0x20000000L
+//MMEA0_PERFCOUNTER1_CFG
+#define MMEA0_PERFCOUNTER1_CFG__PERF_SEL__SHIFT 0x0
+#define MMEA0_PERFCOUNTER1_CFG__PERF_SEL_END__SHIFT 0x8
+#define MMEA0_PERFCOUNTER1_CFG__PERF_MODE__SHIFT 0x18
+#define MMEA0_PERFCOUNTER1_CFG__ENABLE__SHIFT 0x1c
+#define MMEA0_PERFCOUNTER1_CFG__CLEAR__SHIFT 0x1d
+#define MMEA0_PERFCOUNTER1_CFG__PERF_SEL_MASK 0x000000FFL
+#define MMEA0_PERFCOUNTER1_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define MMEA0_PERFCOUNTER1_CFG__PERF_MODE_MASK 0x0F000000L
+#define MMEA0_PERFCOUNTER1_CFG__ENABLE_MASK 0x10000000L
+#define MMEA0_PERFCOUNTER1_CFG__CLEAR_MASK 0x20000000L
+//MMEA0_PERFCOUNTER_RSLT_CNTL
+#define MMEA0_PERFCOUNTER_RSLT_CNTL__PERF_COUNTER_SELECT__SHIFT 0x0
+#define MMEA0_PERFCOUNTER_RSLT_CNTL__START_TRIGGER__SHIFT 0x8
+#define MMEA0_PERFCOUNTER_RSLT_CNTL__STOP_TRIGGER__SHIFT 0x10
+#define MMEA0_PERFCOUNTER_RSLT_CNTL__ENABLE_ANY__SHIFT 0x18
+#define MMEA0_PERFCOUNTER_RSLT_CNTL__CLEAR_ALL__SHIFT 0x19
+#define MMEA0_PERFCOUNTER_RSLT_CNTL__STOP_ALL_ON_SATURATE__SHIFT 0x1a
+#define MMEA0_PERFCOUNTER_RSLT_CNTL__PERF_COUNTER_SELECT_MASK 0x0000000FL
+#define MMEA0_PERFCOUNTER_RSLT_CNTL__START_TRIGGER_MASK 0x0000FF00L
+#define MMEA0_PERFCOUNTER_RSLT_CNTL__STOP_TRIGGER_MASK 0x00FF0000L
+#define MMEA0_PERFCOUNTER_RSLT_CNTL__ENABLE_ANY_MASK 0x01000000L
+#define MMEA0_PERFCOUNTER_RSLT_CNTL__CLEAR_ALL_MASK 0x02000000L
+#define MMEA0_PERFCOUNTER_RSLT_CNTL__STOP_ALL_ON_SATURATE_MASK 0x04000000L
+//MMEA0_DSM_CNTL
+#define MMEA0_DSM_CNTL__DRAMRD_CMDMEM_DSM_IRRITATOR_DATA__SHIFT 0x0
+#define MMEA0_DSM_CNTL__DRAMRD_CMDMEM_ENABLE_SINGLE_WRITE__SHIFT 0x2
+#define MMEA0_DSM_CNTL__DRAMWR_CMDMEM_DSM_IRRITATOR_DATA__SHIFT 0x3
+#define MMEA0_DSM_CNTL__DRAMWR_CMDMEM_ENABLE_SINGLE_WRITE__SHIFT 0x5
+#define MMEA0_DSM_CNTL__DRAMWR_DATAMEM_DSM_IRRITATOR_DATA__SHIFT 0x6
+#define MMEA0_DSM_CNTL__DRAMWR_DATAMEM_ENABLE_SINGLE_WRITE__SHIFT 0x8
+#define MMEA0_DSM_CNTL__RRET_TAGMEM_DSM_IRRITATOR_DATA__SHIFT 0x9
+#define MMEA0_DSM_CNTL__RRET_TAGMEM_ENABLE_SINGLE_WRITE__SHIFT 0xb
+#define MMEA0_DSM_CNTL__WRET_TAGMEM_DSM_IRRITATOR_DATA__SHIFT 0xc
+#define MMEA0_DSM_CNTL__WRET_TAGMEM_ENABLE_SINGLE_WRITE__SHIFT 0xe
+#define MMEA0_DSM_CNTL__GMIRD_CMDMEM_DSM_IRRITATOR_DATA__SHIFT 0xf
+#define MMEA0_DSM_CNTL__GMIRD_CMDMEM_ENABLE_SINGLE_WRITE__SHIFT 0x11
+#define MMEA0_DSM_CNTL__GMIWR_CMDMEM_DSM_IRRITATOR_DATA__SHIFT 0x12
+#define MMEA0_DSM_CNTL__GMIWR_CMDMEM_ENABLE_SINGLE_WRITE__SHIFT 0x14
+#define MMEA0_DSM_CNTL__GMIWR_DATAMEM_DSM_IRRITATOR_DATA__SHIFT 0x15
+#define MMEA0_DSM_CNTL__GMIWR_DATAMEM_ENABLE_SINGLE_WRITE__SHIFT 0x17
+#define MMEA0_DSM_CNTL__DRAMRD_CMDMEM_DSM_IRRITATOR_DATA_MASK 0x00000003L
+#define MMEA0_DSM_CNTL__DRAMRD_CMDMEM_ENABLE_SINGLE_WRITE_MASK 0x00000004L
+#define MMEA0_DSM_CNTL__DRAMWR_CMDMEM_DSM_IRRITATOR_DATA_MASK 0x00000018L
+#define MMEA0_DSM_CNTL__DRAMWR_CMDMEM_ENABLE_SINGLE_WRITE_MASK 0x00000020L
+#define MMEA0_DSM_CNTL__DRAMWR_DATAMEM_DSM_IRRITATOR_DATA_MASK 0x000000C0L
+#define MMEA0_DSM_CNTL__DRAMWR_DATAMEM_ENABLE_SINGLE_WRITE_MASK 0x00000100L
+#define MMEA0_DSM_CNTL__RRET_TAGMEM_DSM_IRRITATOR_DATA_MASK 0x00000600L
+#define MMEA0_DSM_CNTL__RRET_TAGMEM_ENABLE_SINGLE_WRITE_MASK 0x00000800L
+#define MMEA0_DSM_CNTL__WRET_TAGMEM_DSM_IRRITATOR_DATA_MASK 0x00003000L
+#define MMEA0_DSM_CNTL__WRET_TAGMEM_ENABLE_SINGLE_WRITE_MASK 0x00004000L
+#define MMEA0_DSM_CNTL__GMIRD_CMDMEM_DSM_IRRITATOR_DATA_MASK 0x00018000L
+#define MMEA0_DSM_CNTL__GMIRD_CMDMEM_ENABLE_SINGLE_WRITE_MASK 0x00020000L
+#define MMEA0_DSM_CNTL__GMIWR_CMDMEM_DSM_IRRITATOR_DATA_MASK 0x000C0000L
+#define MMEA0_DSM_CNTL__GMIWR_CMDMEM_ENABLE_SINGLE_WRITE_MASK 0x00100000L
+#define MMEA0_DSM_CNTL__GMIWR_DATAMEM_DSM_IRRITATOR_DATA_MASK 0x00600000L
+#define MMEA0_DSM_CNTL__GMIWR_DATAMEM_ENABLE_SINGLE_WRITE_MASK 0x00800000L
+//MMEA0_DSM_CNTLA
+#define MMEA0_DSM_CNTLA__DRAMRD_PAGEMEM_DSM_IRRITATOR_DATA__SHIFT 0x0
+#define MMEA0_DSM_CNTLA__DRAMRD_PAGEMEM_ENABLE_SINGLE_WRITE__SHIFT 0x2
+#define MMEA0_DSM_CNTLA__DRAMWR_PAGEMEM_DSM_IRRITATOR_DATA__SHIFT 0x3
+#define MMEA0_DSM_CNTLA__DRAMWR_PAGEMEM_ENABLE_SINGLE_WRITE__SHIFT 0x5
+#define MMEA0_DSM_CNTLA__IORD_CMDMEM_DSM_IRRITATOR_DATA__SHIFT 0x6
+#define MMEA0_DSM_CNTLA__IORD_CMDMEM_ENABLE_SINGLE_WRITE__SHIFT 0x8
+#define MMEA0_DSM_CNTLA__IOWR_CMDMEM_DSM_IRRITATOR_DATA__SHIFT 0x9
+#define MMEA0_DSM_CNTLA__IOWR_CMDMEM_ENABLE_SINGLE_WRITE__SHIFT 0xb
+#define MMEA0_DSM_CNTLA__IOWR_DATAMEM_DSM_IRRITATOR_DATA__SHIFT 0xc
+#define MMEA0_DSM_CNTLA__IOWR_DATAMEM_ENABLE_SINGLE_WRITE__SHIFT 0xe
+#define MMEA0_DSM_CNTLA__GMIRD_PAGEMEM_DSM_IRRITATOR_DATA__SHIFT 0xf
+#define MMEA0_DSM_CNTLA__GMIRD_PAGEMEM_ENABLE_SINGLE_WRITE__SHIFT 0x11
+#define MMEA0_DSM_CNTLA__GMIWR_PAGEMEM_DSM_IRRITATOR_DATA__SHIFT 0x12
+#define MMEA0_DSM_CNTLA__GMIWR_PAGEMEM_ENABLE_SINGLE_WRITE__SHIFT 0x14
+#define MMEA0_DSM_CNTLA__DRAMRD_PAGEMEM_DSM_IRRITATOR_DATA_MASK 0x00000003L
+#define MMEA0_DSM_CNTLA__DRAMRD_PAGEMEM_ENABLE_SINGLE_WRITE_MASK 0x00000004L
+#define MMEA0_DSM_CNTLA__DRAMWR_PAGEMEM_DSM_IRRITATOR_DATA_MASK 0x00000018L
+#define MMEA0_DSM_CNTLA__DRAMWR_PAGEMEM_ENABLE_SINGLE_WRITE_MASK 0x00000020L
+#define MMEA0_DSM_CNTLA__IORD_CMDMEM_DSM_IRRITATOR_DATA_MASK 0x000000C0L
+#define MMEA0_DSM_CNTLA__IORD_CMDMEM_ENABLE_SINGLE_WRITE_MASK 0x00000100L
+#define MMEA0_DSM_CNTLA__IOWR_CMDMEM_DSM_IRRITATOR_DATA_MASK 0x00000600L
+#define MMEA0_DSM_CNTLA__IOWR_CMDMEM_ENABLE_SINGLE_WRITE_MASK 0x00000800L
+#define MMEA0_DSM_CNTLA__IOWR_DATAMEM_DSM_IRRITATOR_DATA_MASK 0x00003000L
+#define MMEA0_DSM_CNTLA__IOWR_DATAMEM_ENABLE_SINGLE_WRITE_MASK 0x00004000L
+#define MMEA0_DSM_CNTLA__GMIRD_PAGEMEM_DSM_IRRITATOR_DATA_MASK 0x00018000L
+#define MMEA0_DSM_CNTLA__GMIRD_PAGEMEM_ENABLE_SINGLE_WRITE_MASK 0x00020000L
+#define MMEA0_DSM_CNTLA__GMIWR_PAGEMEM_DSM_IRRITATOR_DATA_MASK 0x000C0000L
+#define MMEA0_DSM_CNTLA__GMIWR_PAGEMEM_ENABLE_SINGLE_WRITE_MASK 0x00100000L
+//MMEA0_DSM_CNTLB
+#define MMEA0_DSM_CNTLB__MAM_D0MEM_DSM_IRRITATOR_DATA__SHIFT 0x0
+#define MMEA0_DSM_CNTLB__MAM_D0MEM_ENABLE_SINGLE_WRITE__SHIFT 0x2
+#define MMEA0_DSM_CNTLB__MAM_D1MEM_DSM_IRRITATOR_DATA__SHIFT 0x3
+#define MMEA0_DSM_CNTLB__MAM_D1MEM_ENABLE_SINGLE_WRITE__SHIFT 0x5
+#define MMEA0_DSM_CNTLB__MAM_D2MEM_DSM_IRRITATOR_DATA__SHIFT 0x6
+#define MMEA0_DSM_CNTLB__MAM_D2MEM_ENABLE_SINGLE_WRITE__SHIFT 0x8
+#define MMEA0_DSM_CNTLB__MAM_D3MEM_DSM_IRRITATOR_DATA__SHIFT 0x9
+#define MMEA0_DSM_CNTLB__MAM_D3MEM_ENABLE_SINGLE_WRITE__SHIFT 0xb
+#define MMEA0_DSM_CNTLB__MAM_D0MEM_DSM_IRRITATOR_DATA_MASK 0x00000003L
+#define MMEA0_DSM_CNTLB__MAM_D0MEM_ENABLE_SINGLE_WRITE_MASK 0x00000004L
+#define MMEA0_DSM_CNTLB__MAM_D1MEM_DSM_IRRITATOR_DATA_MASK 0x00000018L
+#define MMEA0_DSM_CNTLB__MAM_D1MEM_ENABLE_SINGLE_WRITE_MASK 0x00000020L
+#define MMEA0_DSM_CNTLB__MAM_D2MEM_DSM_IRRITATOR_DATA_MASK 0x000000C0L
+#define MMEA0_DSM_CNTLB__MAM_D2MEM_ENABLE_SINGLE_WRITE_MASK 0x00000100L
+#define MMEA0_DSM_CNTLB__MAM_D3MEM_DSM_IRRITATOR_DATA_MASK 0x00000600L
+#define MMEA0_DSM_CNTLB__MAM_D3MEM_ENABLE_SINGLE_WRITE_MASK 0x00000800L
+//MMEA0_DSM_CNTL2
+#define MMEA0_DSM_CNTL2__DRAMRD_CMDMEM_ENABLE_ERROR_INJECT__SHIFT 0x0
+#define MMEA0_DSM_CNTL2__DRAMRD_CMDMEM_SELECT_INJECT_DELAY__SHIFT 0x2
+#define MMEA0_DSM_CNTL2__DRAMWR_CMDMEM_ENABLE_ERROR_INJECT__SHIFT 0x3
+#define MMEA0_DSM_CNTL2__DRAMWR_CMDMEM_SELECT_INJECT_DELAY__SHIFT 0x5
+#define MMEA0_DSM_CNTL2__DRAMWR_DATAMEM_ENABLE_ERROR_INJECT__SHIFT 0x6
+#define MMEA0_DSM_CNTL2__DRAMWR_DATAMEM_SELECT_INJECT_DELAY__SHIFT 0x8
+#define MMEA0_DSM_CNTL2__RRET_TAGMEM_ENABLE_ERROR_INJECT__SHIFT 0x9
+#define MMEA0_DSM_CNTL2__RRET_TAGMEM_SELECT_INJECT_DELAY__SHIFT 0xb
+#define MMEA0_DSM_CNTL2__WRET_TAGMEM_ENABLE_ERROR_INJECT__SHIFT 0xc
+#define MMEA0_DSM_CNTL2__WRET_TAGMEM_SELECT_INJECT_DELAY__SHIFT 0xe
+#define MMEA0_DSM_CNTL2__GMIRD_CMDMEM_ENABLE_ERROR_INJECT__SHIFT 0xf
+#define MMEA0_DSM_CNTL2__GMIRD_CMDMEM_SELECT_INJECT_DELAY__SHIFT 0x11
+#define MMEA0_DSM_CNTL2__GMIWR_CMDMEM_ENABLE_ERROR_INJECT__SHIFT 0x12
+#define MMEA0_DSM_CNTL2__GMIWR_CMDMEM_SELECT_INJECT_DELAY__SHIFT 0x14
+#define MMEA0_DSM_CNTL2__GMIWR_DATAMEM_ENABLE_ERROR_INJECT__SHIFT 0x15
+#define MMEA0_DSM_CNTL2__GMIWR_DATAMEM_SELECT_INJECT_DELAY__SHIFT 0x17
+#define MMEA0_DSM_CNTL2__INJECT_DELAY__SHIFT 0x1a
+#define MMEA0_DSM_CNTL2__DRAMRD_CMDMEM_ENABLE_ERROR_INJECT_MASK 0x00000003L
+#define MMEA0_DSM_CNTL2__DRAMRD_CMDMEM_SELECT_INJECT_DELAY_MASK 0x00000004L
+#define MMEA0_DSM_CNTL2__DRAMWR_CMDMEM_ENABLE_ERROR_INJECT_MASK 0x00000018L
+#define MMEA0_DSM_CNTL2__DRAMWR_CMDMEM_SELECT_INJECT_DELAY_MASK 0x00000020L
+#define MMEA0_DSM_CNTL2__DRAMWR_DATAMEM_ENABLE_ERROR_INJECT_MASK 0x000000C0L
+#define MMEA0_DSM_CNTL2__DRAMWR_DATAMEM_SELECT_INJECT_DELAY_MASK 0x00000100L
+#define MMEA0_DSM_CNTL2__RRET_TAGMEM_ENABLE_ERROR_INJECT_MASK 0x00000600L
+#define MMEA0_DSM_CNTL2__RRET_TAGMEM_SELECT_INJECT_DELAY_MASK 0x00000800L
+#define MMEA0_DSM_CNTL2__WRET_TAGMEM_ENABLE_ERROR_INJECT_MASK 0x00003000L
+#define MMEA0_DSM_CNTL2__WRET_TAGMEM_SELECT_INJECT_DELAY_MASK 0x00004000L
+#define MMEA0_DSM_CNTL2__GMIRD_CMDMEM_ENABLE_ERROR_INJECT_MASK 0x00018000L
+#define MMEA0_DSM_CNTL2__GMIRD_CMDMEM_SELECT_INJECT_DELAY_MASK 0x00020000L
+#define MMEA0_DSM_CNTL2__GMIWR_CMDMEM_ENABLE_ERROR_INJECT_MASK 0x000C0000L
+#define MMEA0_DSM_CNTL2__GMIWR_CMDMEM_SELECT_INJECT_DELAY_MASK 0x00100000L
+#define MMEA0_DSM_CNTL2__GMIWR_DATAMEM_ENABLE_ERROR_INJECT_MASK 0x00600000L
+#define MMEA0_DSM_CNTL2__GMIWR_DATAMEM_SELECT_INJECT_DELAY_MASK 0x00800000L
+#define MMEA0_DSM_CNTL2__INJECT_DELAY_MASK 0xFC000000L
+//MMEA0_DSM_CNTL2A
+#define MMEA0_DSM_CNTL2A__DRAMRD_PAGEMEM_ENABLE_ERROR_INJECT__SHIFT 0x0
+#define MMEA0_DSM_CNTL2A__DRAMRD_PAGEMEM_SELECT_INJECT_DELAY__SHIFT 0x2
+#define MMEA0_DSM_CNTL2A__DRAMWR_PAGEMEM_ENABLE_ERROR_INJECT__SHIFT 0x3
+#define MMEA0_DSM_CNTL2A__DRAMWR_PAGEMEM_SELECT_INJECT_DELAY__SHIFT 0x5
+#define MMEA0_DSM_CNTL2A__IORD_CMDMEM_ENABLE_ERROR_INJECT__SHIFT 0x6
+#define MMEA0_DSM_CNTL2A__IORD_CMDMEM_SELECT_INJECT_DELAY__SHIFT 0x8
+#define MMEA0_DSM_CNTL2A__IOWR_CMDMEM_ENABLE_ERROR_INJECT__SHIFT 0x9
+#define MMEA0_DSM_CNTL2A__IOWR_CMDMEM_SELECT_INJECT_DELAY__SHIFT 0xb
+#define MMEA0_DSM_CNTL2A__IOWR_DATAMEM_ENABLE_ERROR_INJECT__SHIFT 0xc
+#define MMEA0_DSM_CNTL2A__IOWR_DATAMEM_SELECT_INJECT_DELAY__SHIFT 0xe
+#define MMEA0_DSM_CNTL2A__GMIRD_PAGEMEM_ENABLE_ERROR_INJECT__SHIFT 0xf
+#define MMEA0_DSM_CNTL2A__GMIRD_PAGEMEM_SELECT_INJECT_DELAY__SHIFT 0x11
+#define MMEA0_DSM_CNTL2A__GMIWR_PAGEMEM_ENABLE_ERROR_INJECT__SHIFT 0x12
+#define MMEA0_DSM_CNTL2A__GMIWR_PAGEMEM_SELECT_INJECT_DELAY__SHIFT 0x14
+#define MMEA0_DSM_CNTL2A__DRAMRD_PAGEMEM_ENABLE_ERROR_INJECT_MASK 0x00000003L
+#define MMEA0_DSM_CNTL2A__DRAMRD_PAGEMEM_SELECT_INJECT_DELAY_MASK 0x00000004L
+#define MMEA0_DSM_CNTL2A__DRAMWR_PAGEMEM_ENABLE_ERROR_INJECT_MASK 0x00000018L
+#define MMEA0_DSM_CNTL2A__DRAMWR_PAGEMEM_SELECT_INJECT_DELAY_MASK 0x00000020L
+#define MMEA0_DSM_CNTL2A__IORD_CMDMEM_ENABLE_ERROR_INJECT_MASK 0x000000C0L
+#define MMEA0_DSM_CNTL2A__IORD_CMDMEM_SELECT_INJECT_DELAY_MASK 0x00000100L
+#define MMEA0_DSM_CNTL2A__IOWR_CMDMEM_ENABLE_ERROR_INJECT_MASK 0x00000600L
+#define MMEA0_DSM_CNTL2A__IOWR_CMDMEM_SELECT_INJECT_DELAY_MASK 0x00000800L
+#define MMEA0_DSM_CNTL2A__IOWR_DATAMEM_ENABLE_ERROR_INJECT_MASK 0x00003000L
+#define MMEA0_DSM_CNTL2A__IOWR_DATAMEM_SELECT_INJECT_DELAY_MASK 0x00004000L
+#define MMEA0_DSM_CNTL2A__GMIRD_PAGEMEM_ENABLE_ERROR_INJECT_MASK 0x00018000L
+#define MMEA0_DSM_CNTL2A__GMIRD_PAGEMEM_SELECT_INJECT_DELAY_MASK 0x00020000L
+#define MMEA0_DSM_CNTL2A__GMIWR_PAGEMEM_ENABLE_ERROR_INJECT_MASK 0x000C0000L
+#define MMEA0_DSM_CNTL2A__GMIWR_PAGEMEM_SELECT_INJECT_DELAY_MASK 0x00100000L
+//MMEA0_DSM_CNTL2B
+#define MMEA0_DSM_CNTL2B__MAM_D0MEM_ENABLE_ERROR_INJECT__SHIFT 0x0
+#define MMEA0_DSM_CNTL2B__MAM_D0MEM_SELECT_INJECT_DELAY__SHIFT 0x2
+#define MMEA0_DSM_CNTL2B__MAM_D1MEM_ENABLE_ERROR_INJECT__SHIFT 0x3
+#define MMEA0_DSM_CNTL2B__MAM_D1MEM_SELECT_INJECT_DELAY__SHIFT 0x5
+#define MMEA0_DSM_CNTL2B__MAM_D2MEM_ENABLE_ERROR_INJECT__SHIFT 0x6
+#define MMEA0_DSM_CNTL2B__MAM_D2MEM_SELECT_INJECT_DELAY__SHIFT 0x8
+#define MMEA0_DSM_CNTL2B__MAM_D3MEM_ENABLE_ERROR_INJECT__SHIFT 0x9
+#define MMEA0_DSM_CNTL2B__MAM_D3MEM_SELECT_INJECT_DELAY__SHIFT 0xb
+#define MMEA0_DSM_CNTL2B__MAM_D0MEM_ENABLE_ERROR_INJECT_MASK 0x00000003L
+#define MMEA0_DSM_CNTL2B__MAM_D0MEM_SELECT_INJECT_DELAY_MASK 0x00000004L
+#define MMEA0_DSM_CNTL2B__MAM_D1MEM_ENABLE_ERROR_INJECT_MASK 0x00000018L
+#define MMEA0_DSM_CNTL2B__MAM_D1MEM_SELECT_INJECT_DELAY_MASK 0x00000020L
+#define MMEA0_DSM_CNTL2B__MAM_D2MEM_ENABLE_ERROR_INJECT_MASK 0x000000C0L
+#define MMEA0_DSM_CNTL2B__MAM_D2MEM_SELECT_INJECT_DELAY_MASK 0x00000100L
+#define MMEA0_DSM_CNTL2B__MAM_D3MEM_ENABLE_ERROR_INJECT_MASK 0x00000600L
+#define MMEA0_DSM_CNTL2B__MAM_D3MEM_SELECT_INJECT_DELAY_MASK 0x00000800L
+//MMEA0_CGTT_CLK_CTRL
+#define MMEA0_CGTT_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define MMEA0_CGTT_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define MMEA0_CGTT_CLK_CTRL__SPARE0__SHIFT 0xc
+#define MMEA0_CGTT_CLK_CTRL__SOFT_STALL_OVERRIDE_WRITE__SHIFT 0x14
+#define MMEA0_CGTT_CLK_CTRL__SOFT_STALL_OVERRIDE_READ__SHIFT 0x15
+#define MMEA0_CGTT_CLK_CTRL__SOFT_STALL_OVERRIDE_RETURN__SHIFT 0x16
+#define MMEA0_CGTT_CLK_CTRL__SPARE1__SHIFT 0x17
+#define MMEA0_CGTT_CLK_CTRL__LS_OVERRIDE__SHIFT 0x1b
+#define MMEA0_CGTT_CLK_CTRL__SOFT_OVERRIDE_WRITE__SHIFT 0x1c
+#define MMEA0_CGTT_CLK_CTRL__SOFT_OVERRIDE_READ__SHIFT 0x1d
+#define MMEA0_CGTT_CLK_CTRL__SOFT_OVERRIDE_RETURN__SHIFT 0x1e
+#define MMEA0_CGTT_CLK_CTRL__SOFT_OVERRIDE_REGISTER__SHIFT 0x1f
+#define MMEA0_CGTT_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define MMEA0_CGTT_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define MMEA0_CGTT_CLK_CTRL__SPARE0_MASK 0x000FF000L
+#define MMEA0_CGTT_CLK_CTRL__SOFT_STALL_OVERRIDE_WRITE_MASK 0x00100000L
+#define MMEA0_CGTT_CLK_CTRL__SOFT_STALL_OVERRIDE_READ_MASK 0x00200000L
+#define MMEA0_CGTT_CLK_CTRL__SOFT_STALL_OVERRIDE_RETURN_MASK 0x00400000L
+#define MMEA0_CGTT_CLK_CTRL__SPARE1_MASK 0x07800000L
+#define MMEA0_CGTT_CLK_CTRL__LS_OVERRIDE_MASK 0x08000000L
+#define MMEA0_CGTT_CLK_CTRL__SOFT_OVERRIDE_WRITE_MASK 0x10000000L
+#define MMEA0_CGTT_CLK_CTRL__SOFT_OVERRIDE_READ_MASK 0x20000000L
+#define MMEA0_CGTT_CLK_CTRL__SOFT_OVERRIDE_RETURN_MASK 0x40000000L
+#define MMEA0_CGTT_CLK_CTRL__SOFT_OVERRIDE_REGISTER_MASK 0x80000000L
+//MMEA0_EDC_MODE
+#define MMEA0_EDC_MODE__COUNT_FED_OUT__SHIFT 0x10
+#define MMEA0_EDC_MODE__GATE_FUE__SHIFT 0x11
+#define MMEA0_EDC_MODE__DED_MODE__SHIFT 0x14
+#define MMEA0_EDC_MODE__PROP_FED__SHIFT 0x1d
+#define MMEA0_EDC_MODE__BYPASS__SHIFT 0x1f
+#define MMEA0_EDC_MODE__COUNT_FED_OUT_MASK 0x00010000L
+#define MMEA0_EDC_MODE__GATE_FUE_MASK 0x00020000L
+#define MMEA0_EDC_MODE__DED_MODE_MASK 0x00300000L
+#define MMEA0_EDC_MODE__PROP_FED_MASK 0x20000000L
+#define MMEA0_EDC_MODE__BYPASS_MASK 0x80000000L
+//MMEA0_ERR_STATUS
+#define MMEA0_ERR_STATUS__SDP_RDRSP_STATUS__SHIFT 0x0
+#define MMEA0_ERR_STATUS__SDP_WRRSP_STATUS__SHIFT 0x4
+#define MMEA0_ERR_STATUS__SDP_RDRSP_DATASTATUS__SHIFT 0x8
+#define MMEA0_ERR_STATUS__SDP_RDRSP_DATAPARITY_ERROR__SHIFT 0xa
+#define MMEA0_ERR_STATUS__CLEAR_ERROR_STATUS__SHIFT 0xb
+#define MMEA0_ERR_STATUS__BUSY_ON_ERROR__SHIFT 0xc
+#define MMEA0_ERR_STATUS__FUE_FLAG__SHIFT 0xd
+#define MMEA0_ERR_STATUS__IGNORE_RDRSP_FED__SHIFT 0xe
+#define MMEA0_ERR_STATUS__INTERRUPT_ON_FATAL__SHIFT 0xf
+#define MMEA0_ERR_STATUS__INTERRUPT_IGNORE_CLI_FATAL__SHIFT 0x10
+#define MMEA0_ERR_STATUS__LEVEL_INTERRUPT__SHIFT 0x11
+#define MMEA0_ERR_STATUS__BUSY_ON_CMPL_FATAL_ERROR__SHIFT 0x12
+#define MMEA0_ERR_STATUS__FUE_FLAG_CLIENT__SHIFT 0x13
+#define MMEA0_ERR_STATUS__SDP_RDRSP_STATUS_MASK 0x0000000FL
+#define MMEA0_ERR_STATUS__SDP_WRRSP_STATUS_MASK 0x000000F0L
+#define MMEA0_ERR_STATUS__SDP_RDRSP_DATASTATUS_MASK 0x00000300L
+#define MMEA0_ERR_STATUS__SDP_RDRSP_DATAPARITY_ERROR_MASK 0x00000400L
+#define MMEA0_ERR_STATUS__CLEAR_ERROR_STATUS_MASK 0x00000800L
+#define MMEA0_ERR_STATUS__BUSY_ON_ERROR_MASK 0x00001000L
+#define MMEA0_ERR_STATUS__FUE_FLAG_MASK 0x00002000L
+#define MMEA0_ERR_STATUS__IGNORE_RDRSP_FED_MASK 0x00004000L
+#define MMEA0_ERR_STATUS__INTERRUPT_ON_FATAL_MASK 0x00008000L
+#define MMEA0_ERR_STATUS__INTERRUPT_IGNORE_CLI_FATAL_MASK 0x00010000L
+#define MMEA0_ERR_STATUS__LEVEL_INTERRUPT_MASK 0x00020000L
+#define MMEA0_ERR_STATUS__BUSY_ON_CMPL_FATAL_ERROR_MASK 0x00040000L
+#define MMEA0_ERR_STATUS__FUE_FLAG_CLIENT_MASK 0x00080000L
+//MMEA0_MISC2
+#define MMEA0_MISC2__CSGROUP_SWAP_IN_DRAM_ARB__SHIFT 0x0
+#define MMEA0_MISC2__CSGROUP_SWAP_IN_GMI_ARB__SHIFT 0x1
+#define MMEA0_MISC2__CSGRP_BURST_LIMIT_DATA_DRAM__SHIFT 0x2
+#define MMEA0_MISC2__CSGRP_BURST_LIMIT_DATA_GMI__SHIFT 0x7
+#define MMEA0_MISC2__IO_RDWR_PRIORITY_ENABLE__SHIFT 0xc
+#define MMEA0_MISC2__RRET_SWAP_MODE__SHIFT 0xd
+#define MMEA0_MISC2__BLOCK_REQUESTS__SHIFT 0xe
+#define MMEA0_MISC2__REQUESTS_BLOCKED__SHIFT 0xf
+#define MMEA0_MISC2__DRAM_RD_THROTTLE__SHIFT 0x10
+#define MMEA0_MISC2__DRAM_WR_THROTTLE__SHIFT 0x11
+#define MMEA0_MISC2__GMI_RD_THROTTLE__SHIFT 0x12
+#define MMEA0_MISC2__GMI_WR_THROTTLE__SHIFT 0x13
+#define MMEA0_MISC2__CSGROUP_SWAP_IN_DRAM_ARB_MASK 0x00000001L
+#define MMEA0_MISC2__CSGROUP_SWAP_IN_GMI_ARB_MASK 0x00000002L
+#define MMEA0_MISC2__CSGRP_BURST_LIMIT_DATA_DRAM_MASK 0x0000007CL
+#define MMEA0_MISC2__CSGRP_BURST_LIMIT_DATA_GMI_MASK 0x00000F80L
+#define MMEA0_MISC2__IO_RDWR_PRIORITY_ENABLE_MASK 0x00001000L
+#define MMEA0_MISC2__RRET_SWAP_MODE_MASK 0x00002000L
+#define MMEA0_MISC2__BLOCK_REQUESTS_MASK 0x00004000L
+#define MMEA0_MISC2__REQUESTS_BLOCKED_MASK 0x00008000L
+#define MMEA0_MISC2__DRAM_RD_THROTTLE_MASK 0x00010000L
+#define MMEA0_MISC2__DRAM_WR_THROTTLE_MASK 0x00020000L
+#define MMEA0_MISC2__GMI_RD_THROTTLE_MASK 0x00040000L
+#define MMEA0_MISC2__GMI_WR_THROTTLE_MASK 0x00080000L
+//MMEA0_MISC_AON
+#define MMEA0_MISC_AON__LINKMGR_PARTACK_HYSTERESIS__SHIFT 0x0
+#define MMEA0_MISC_AON__LINKMGR_PARTACK_DEASSERT_MODE__SHIFT 0x2
+#define MMEA0_MISC_AON__LINKMGR_PARTACK_HYSTERESIS_MASK 0x00000003L
+#define MMEA0_MISC_AON__LINKMGR_PARTACK_DEASSERT_MODE_MASK 0x00000004L
+
+
+// addressBlock: aid_mmhub_ea_mmeadec1
+//MMEA1_DRAM_RD_CLI2GRP_MAP0
+#define MMEA1_DRAM_RD_CLI2GRP_MAP0__CID0_GROUP__SHIFT 0x0
+#define MMEA1_DRAM_RD_CLI2GRP_MAP0__CID1_GROUP__SHIFT 0x2
+#define MMEA1_DRAM_RD_CLI2GRP_MAP0__CID2_GROUP__SHIFT 0x4
+#define MMEA1_DRAM_RD_CLI2GRP_MAP0__CID3_GROUP__SHIFT 0x6
+#define MMEA1_DRAM_RD_CLI2GRP_MAP0__CID4_GROUP__SHIFT 0x8
+#define MMEA1_DRAM_RD_CLI2GRP_MAP0__CID5_GROUP__SHIFT 0xa
+#define MMEA1_DRAM_RD_CLI2GRP_MAP0__CID6_GROUP__SHIFT 0xc
+#define MMEA1_DRAM_RD_CLI2GRP_MAP0__CID7_GROUP__SHIFT 0xe
+#define MMEA1_DRAM_RD_CLI2GRP_MAP0__CID8_GROUP__SHIFT 0x10
+#define MMEA1_DRAM_RD_CLI2GRP_MAP0__CID9_GROUP__SHIFT 0x12
+#define MMEA1_DRAM_RD_CLI2GRP_MAP0__CID10_GROUP__SHIFT 0x14
+#define MMEA1_DRAM_RD_CLI2GRP_MAP0__CID11_GROUP__SHIFT 0x16
+#define MMEA1_DRAM_RD_CLI2GRP_MAP0__CID12_GROUP__SHIFT 0x18
+#define MMEA1_DRAM_RD_CLI2GRP_MAP0__CID13_GROUP__SHIFT 0x1a
+#define MMEA1_DRAM_RD_CLI2GRP_MAP0__CID14_GROUP__SHIFT 0x1c
+#define MMEA1_DRAM_RD_CLI2GRP_MAP0__CID15_GROUP__SHIFT 0x1e
+#define MMEA1_DRAM_RD_CLI2GRP_MAP0__CID0_GROUP_MASK 0x00000003L
+#define MMEA1_DRAM_RD_CLI2GRP_MAP0__CID1_GROUP_MASK 0x0000000CL
+#define MMEA1_DRAM_RD_CLI2GRP_MAP0__CID2_GROUP_MASK 0x00000030L
+#define MMEA1_DRAM_RD_CLI2GRP_MAP0__CID3_GROUP_MASK 0x000000C0L
+#define MMEA1_DRAM_RD_CLI2GRP_MAP0__CID4_GROUP_MASK 0x00000300L
+#define MMEA1_DRAM_RD_CLI2GRP_MAP0__CID5_GROUP_MASK 0x00000C00L
+#define MMEA1_DRAM_RD_CLI2GRP_MAP0__CID6_GROUP_MASK 0x00003000L
+#define MMEA1_DRAM_RD_CLI2GRP_MAP0__CID7_GROUP_MASK 0x0000C000L
+#define MMEA1_DRAM_RD_CLI2GRP_MAP0__CID8_GROUP_MASK 0x00030000L
+#define MMEA1_DRAM_RD_CLI2GRP_MAP0__CID9_GROUP_MASK 0x000C0000L
+#define MMEA1_DRAM_RD_CLI2GRP_MAP0__CID10_GROUP_MASK 0x00300000L
+#define MMEA1_DRAM_RD_CLI2GRP_MAP0__CID11_GROUP_MASK 0x00C00000L
+#define MMEA1_DRAM_RD_CLI2GRP_MAP0__CID12_GROUP_MASK 0x03000000L
+#define MMEA1_DRAM_RD_CLI2GRP_MAP0__CID13_GROUP_MASK 0x0C000000L
+#define MMEA1_DRAM_RD_CLI2GRP_MAP0__CID14_GROUP_MASK 0x30000000L
+#define MMEA1_DRAM_RD_CLI2GRP_MAP0__CID15_GROUP_MASK 0xC0000000L
+//MMEA1_DRAM_RD_CLI2GRP_MAP1
+#define MMEA1_DRAM_RD_CLI2GRP_MAP1__CID16_GROUP__SHIFT 0x0
+#define MMEA1_DRAM_RD_CLI2GRP_MAP1__CID17_GROUP__SHIFT 0x2
+#define MMEA1_DRAM_RD_CLI2GRP_MAP1__CID18_GROUP__SHIFT 0x4
+#define MMEA1_DRAM_RD_CLI2GRP_MAP1__CID19_GROUP__SHIFT 0x6
+#define MMEA1_DRAM_RD_CLI2GRP_MAP1__CID20_GROUP__SHIFT 0x8
+#define MMEA1_DRAM_RD_CLI2GRP_MAP1__CID21_GROUP__SHIFT 0xa
+#define MMEA1_DRAM_RD_CLI2GRP_MAP1__CID22_GROUP__SHIFT 0xc
+#define MMEA1_DRAM_RD_CLI2GRP_MAP1__CID23_GROUP__SHIFT 0xe
+#define MMEA1_DRAM_RD_CLI2GRP_MAP1__CID24_GROUP__SHIFT 0x10
+#define MMEA1_DRAM_RD_CLI2GRP_MAP1__CID25_GROUP__SHIFT 0x12
+#define MMEA1_DRAM_RD_CLI2GRP_MAP1__CID26_GROUP__SHIFT 0x14
+#define MMEA1_DRAM_RD_CLI2GRP_MAP1__CID27_GROUP__SHIFT 0x16
+#define MMEA1_DRAM_RD_CLI2GRP_MAP1__CID28_GROUP__SHIFT 0x18
+#define MMEA1_DRAM_RD_CLI2GRP_MAP1__CID29_GROUP__SHIFT 0x1a
+#define MMEA1_DRAM_RD_CLI2GRP_MAP1__CID30_GROUP__SHIFT 0x1c
+#define MMEA1_DRAM_RD_CLI2GRP_MAP1__CID31_GROUP__SHIFT 0x1e
+#define MMEA1_DRAM_RD_CLI2GRP_MAP1__CID16_GROUP_MASK 0x00000003L
+#define MMEA1_DRAM_RD_CLI2GRP_MAP1__CID17_GROUP_MASK 0x0000000CL
+#define MMEA1_DRAM_RD_CLI2GRP_MAP1__CID18_GROUP_MASK 0x00000030L
+#define MMEA1_DRAM_RD_CLI2GRP_MAP1__CID19_GROUP_MASK 0x000000C0L
+#define MMEA1_DRAM_RD_CLI2GRP_MAP1__CID20_GROUP_MASK 0x00000300L
+#define MMEA1_DRAM_RD_CLI2GRP_MAP1__CID21_GROUP_MASK 0x00000C00L
+#define MMEA1_DRAM_RD_CLI2GRP_MAP1__CID22_GROUP_MASK 0x00003000L
+#define MMEA1_DRAM_RD_CLI2GRP_MAP1__CID23_GROUP_MASK 0x0000C000L
+#define MMEA1_DRAM_RD_CLI2GRP_MAP1__CID24_GROUP_MASK 0x00030000L
+#define MMEA1_DRAM_RD_CLI2GRP_MAP1__CID25_GROUP_MASK 0x000C0000L
+#define MMEA1_DRAM_RD_CLI2GRP_MAP1__CID26_GROUP_MASK 0x00300000L
+#define MMEA1_DRAM_RD_CLI2GRP_MAP1__CID27_GROUP_MASK 0x00C00000L
+#define MMEA1_DRAM_RD_CLI2GRP_MAP1__CID28_GROUP_MASK 0x03000000L
+#define MMEA1_DRAM_RD_CLI2GRP_MAP1__CID29_GROUP_MASK 0x0C000000L
+#define MMEA1_DRAM_RD_CLI2GRP_MAP1__CID30_GROUP_MASK 0x30000000L
+#define MMEA1_DRAM_RD_CLI2GRP_MAP1__CID31_GROUP_MASK 0xC0000000L
+//MMEA1_DRAM_WR_CLI2GRP_MAP0
+#define MMEA1_DRAM_WR_CLI2GRP_MAP0__CID0_GROUP__SHIFT 0x0
+#define MMEA1_DRAM_WR_CLI2GRP_MAP0__CID1_GROUP__SHIFT 0x2
+#define MMEA1_DRAM_WR_CLI2GRP_MAP0__CID2_GROUP__SHIFT 0x4
+#define MMEA1_DRAM_WR_CLI2GRP_MAP0__CID3_GROUP__SHIFT 0x6
+#define MMEA1_DRAM_WR_CLI2GRP_MAP0__CID4_GROUP__SHIFT 0x8
+#define MMEA1_DRAM_WR_CLI2GRP_MAP0__CID5_GROUP__SHIFT 0xa
+#define MMEA1_DRAM_WR_CLI2GRP_MAP0__CID6_GROUP__SHIFT 0xc
+#define MMEA1_DRAM_WR_CLI2GRP_MAP0__CID7_GROUP__SHIFT 0xe
+#define MMEA1_DRAM_WR_CLI2GRP_MAP0__CID8_GROUP__SHIFT 0x10
+#define MMEA1_DRAM_WR_CLI2GRP_MAP0__CID9_GROUP__SHIFT 0x12
+#define MMEA1_DRAM_WR_CLI2GRP_MAP0__CID10_GROUP__SHIFT 0x14
+#define MMEA1_DRAM_WR_CLI2GRP_MAP0__CID11_GROUP__SHIFT 0x16
+#define MMEA1_DRAM_WR_CLI2GRP_MAP0__CID12_GROUP__SHIFT 0x18
+#define MMEA1_DRAM_WR_CLI2GRP_MAP0__CID13_GROUP__SHIFT 0x1a
+#define MMEA1_DRAM_WR_CLI2GRP_MAP0__CID14_GROUP__SHIFT 0x1c
+#define MMEA1_DRAM_WR_CLI2GRP_MAP0__CID15_GROUP__SHIFT 0x1e
+#define MMEA1_DRAM_WR_CLI2GRP_MAP0__CID0_GROUP_MASK 0x00000003L
+#define MMEA1_DRAM_WR_CLI2GRP_MAP0__CID1_GROUP_MASK 0x0000000CL
+#define MMEA1_DRAM_WR_CLI2GRP_MAP0__CID2_GROUP_MASK 0x00000030L
+#define MMEA1_DRAM_WR_CLI2GRP_MAP0__CID3_GROUP_MASK 0x000000C0L
+#define MMEA1_DRAM_WR_CLI2GRP_MAP0__CID4_GROUP_MASK 0x00000300L
+#define MMEA1_DRAM_WR_CLI2GRP_MAP0__CID5_GROUP_MASK 0x00000C00L
+#define MMEA1_DRAM_WR_CLI2GRP_MAP0__CID6_GROUP_MASK 0x00003000L
+#define MMEA1_DRAM_WR_CLI2GRP_MAP0__CID7_GROUP_MASK 0x0000C000L
+#define MMEA1_DRAM_WR_CLI2GRP_MAP0__CID8_GROUP_MASK 0x00030000L
+#define MMEA1_DRAM_WR_CLI2GRP_MAP0__CID9_GROUP_MASK 0x000C0000L
+#define MMEA1_DRAM_WR_CLI2GRP_MAP0__CID10_GROUP_MASK 0x00300000L
+#define MMEA1_DRAM_WR_CLI2GRP_MAP0__CID11_GROUP_MASK 0x00C00000L
+#define MMEA1_DRAM_WR_CLI2GRP_MAP0__CID12_GROUP_MASK 0x03000000L
+#define MMEA1_DRAM_WR_CLI2GRP_MAP0__CID13_GROUP_MASK 0x0C000000L
+#define MMEA1_DRAM_WR_CLI2GRP_MAP0__CID14_GROUP_MASK 0x30000000L
+#define MMEA1_DRAM_WR_CLI2GRP_MAP0__CID15_GROUP_MASK 0xC0000000L
+//MMEA1_DRAM_WR_CLI2GRP_MAP1
+#define MMEA1_DRAM_WR_CLI2GRP_MAP1__CID16_GROUP__SHIFT 0x0
+#define MMEA1_DRAM_WR_CLI2GRP_MAP1__CID17_GROUP__SHIFT 0x2
+#define MMEA1_DRAM_WR_CLI2GRP_MAP1__CID18_GROUP__SHIFT 0x4
+#define MMEA1_DRAM_WR_CLI2GRP_MAP1__CID19_GROUP__SHIFT 0x6
+#define MMEA1_DRAM_WR_CLI2GRP_MAP1__CID20_GROUP__SHIFT 0x8
+#define MMEA1_DRAM_WR_CLI2GRP_MAP1__CID21_GROUP__SHIFT 0xa
+#define MMEA1_DRAM_WR_CLI2GRP_MAP1__CID22_GROUP__SHIFT 0xc
+#define MMEA1_DRAM_WR_CLI2GRP_MAP1__CID23_GROUP__SHIFT 0xe
+#define MMEA1_DRAM_WR_CLI2GRP_MAP1__CID24_GROUP__SHIFT 0x10
+#define MMEA1_DRAM_WR_CLI2GRP_MAP1__CID25_GROUP__SHIFT 0x12
+#define MMEA1_DRAM_WR_CLI2GRP_MAP1__CID26_GROUP__SHIFT 0x14
+#define MMEA1_DRAM_WR_CLI2GRP_MAP1__CID27_GROUP__SHIFT 0x16
+#define MMEA1_DRAM_WR_CLI2GRP_MAP1__CID28_GROUP__SHIFT 0x18
+#define MMEA1_DRAM_WR_CLI2GRP_MAP1__CID29_GROUP__SHIFT 0x1a
+#define MMEA1_DRAM_WR_CLI2GRP_MAP1__CID30_GROUP__SHIFT 0x1c
+#define MMEA1_DRAM_WR_CLI2GRP_MAP1__CID31_GROUP__SHIFT 0x1e
+#define MMEA1_DRAM_WR_CLI2GRP_MAP1__CID16_GROUP_MASK 0x00000003L
+#define MMEA1_DRAM_WR_CLI2GRP_MAP1__CID17_GROUP_MASK 0x0000000CL
+#define MMEA1_DRAM_WR_CLI2GRP_MAP1__CID18_GROUP_MASK 0x00000030L
+#define MMEA1_DRAM_WR_CLI2GRP_MAP1__CID19_GROUP_MASK 0x000000C0L
+#define MMEA1_DRAM_WR_CLI2GRP_MAP1__CID20_GROUP_MASK 0x00000300L
+#define MMEA1_DRAM_WR_CLI2GRP_MAP1__CID21_GROUP_MASK 0x00000C00L
+#define MMEA1_DRAM_WR_CLI2GRP_MAP1__CID22_GROUP_MASK 0x00003000L
+#define MMEA1_DRAM_WR_CLI2GRP_MAP1__CID23_GROUP_MASK 0x0000C000L
+#define MMEA1_DRAM_WR_CLI2GRP_MAP1__CID24_GROUP_MASK 0x00030000L
+#define MMEA1_DRAM_WR_CLI2GRP_MAP1__CID25_GROUP_MASK 0x000C0000L
+#define MMEA1_DRAM_WR_CLI2GRP_MAP1__CID26_GROUP_MASK 0x00300000L
+#define MMEA1_DRAM_WR_CLI2GRP_MAP1__CID27_GROUP_MASK 0x00C00000L
+#define MMEA1_DRAM_WR_CLI2GRP_MAP1__CID28_GROUP_MASK 0x03000000L
+#define MMEA1_DRAM_WR_CLI2GRP_MAP1__CID29_GROUP_MASK 0x0C000000L
+#define MMEA1_DRAM_WR_CLI2GRP_MAP1__CID30_GROUP_MASK 0x30000000L
+#define MMEA1_DRAM_WR_CLI2GRP_MAP1__CID31_GROUP_MASK 0xC0000000L
+//MMEA1_DRAM_RD_GRP2VC_MAP
+#define MMEA1_DRAM_RD_GRP2VC_MAP__GROUP0_VC__SHIFT 0x0
+#define MMEA1_DRAM_RD_GRP2VC_MAP__GROUP1_VC__SHIFT 0x3
+#define MMEA1_DRAM_RD_GRP2VC_MAP__GROUP2_VC__SHIFT 0x6
+#define MMEA1_DRAM_RD_GRP2VC_MAP__GROUP3_VC__SHIFT 0x9
+#define MMEA1_DRAM_RD_GRP2VC_MAP__GROUP0_VC_MASK 0x00000007L
+#define MMEA1_DRAM_RD_GRP2VC_MAP__GROUP1_VC_MASK 0x00000038L
+#define MMEA1_DRAM_RD_GRP2VC_MAP__GROUP2_VC_MASK 0x000001C0L
+#define MMEA1_DRAM_RD_GRP2VC_MAP__GROUP3_VC_MASK 0x00000E00L
+//MMEA1_DRAM_WR_GRP2VC_MAP
+#define MMEA1_DRAM_WR_GRP2VC_MAP__GROUP0_VC__SHIFT 0x0
+#define MMEA1_DRAM_WR_GRP2VC_MAP__GROUP1_VC__SHIFT 0x3
+#define MMEA1_DRAM_WR_GRP2VC_MAP__GROUP2_VC__SHIFT 0x6
+#define MMEA1_DRAM_WR_GRP2VC_MAP__GROUP3_VC__SHIFT 0x9
+#define MMEA1_DRAM_WR_GRP2VC_MAP__GROUP0_VC_MASK 0x00000007L
+#define MMEA1_DRAM_WR_GRP2VC_MAP__GROUP1_VC_MASK 0x00000038L
+#define MMEA1_DRAM_WR_GRP2VC_MAP__GROUP2_VC_MASK 0x000001C0L
+#define MMEA1_DRAM_WR_GRP2VC_MAP__GROUP3_VC_MASK 0x00000E00L
+//MMEA1_DRAM_RD_LAZY
+#define MMEA1_DRAM_RD_LAZY__GROUP0_DELAY__SHIFT 0x0
+#define MMEA1_DRAM_RD_LAZY__GROUP1_DELAY__SHIFT 0x3
+#define MMEA1_DRAM_RD_LAZY__GROUP2_DELAY__SHIFT 0x6
+#define MMEA1_DRAM_RD_LAZY__GROUP3_DELAY__SHIFT 0x9
+#define MMEA1_DRAM_RD_LAZY__REQ_ACCUM_THRESH__SHIFT 0xc
+#define MMEA1_DRAM_RD_LAZY__REQ_ACCUM_TIMEOUT__SHIFT 0x14
+#define MMEA1_DRAM_RD_LAZY__REQ_ACCUM_IDLEMAX__SHIFT 0x1b
+#define MMEA1_DRAM_RD_LAZY__GROUP0_DELAY_MASK 0x00000007L
+#define MMEA1_DRAM_RD_LAZY__GROUP1_DELAY_MASK 0x00000038L
+#define MMEA1_DRAM_RD_LAZY__GROUP2_DELAY_MASK 0x000001C0L
+#define MMEA1_DRAM_RD_LAZY__GROUP3_DELAY_MASK 0x00000E00L
+#define MMEA1_DRAM_RD_LAZY__REQ_ACCUM_THRESH_MASK 0x0003F000L
+#define MMEA1_DRAM_RD_LAZY__REQ_ACCUM_TIMEOUT_MASK 0x07F00000L
+#define MMEA1_DRAM_RD_LAZY__REQ_ACCUM_IDLEMAX_MASK 0x78000000L
+//MMEA1_DRAM_WR_LAZY
+#define MMEA1_DRAM_WR_LAZY__GROUP0_DELAY__SHIFT 0x0
+#define MMEA1_DRAM_WR_LAZY__GROUP1_DELAY__SHIFT 0x3
+#define MMEA1_DRAM_WR_LAZY__GROUP2_DELAY__SHIFT 0x6
+#define MMEA1_DRAM_WR_LAZY__GROUP3_DELAY__SHIFT 0x9
+#define MMEA1_DRAM_WR_LAZY__REQ_ACCUM_THRESH__SHIFT 0xc
+#define MMEA1_DRAM_WR_LAZY__REQ_ACCUM_TIMEOUT__SHIFT 0x14
+#define MMEA1_DRAM_WR_LAZY__REQ_ACCUM_IDLEMAX__SHIFT 0x1b
+#define MMEA1_DRAM_WR_LAZY__GROUP0_DELAY_MASK 0x00000007L
+#define MMEA1_DRAM_WR_LAZY__GROUP1_DELAY_MASK 0x00000038L
+#define MMEA1_DRAM_WR_LAZY__GROUP2_DELAY_MASK 0x000001C0L
+#define MMEA1_DRAM_WR_LAZY__GROUP3_DELAY_MASK 0x00000E00L
+#define MMEA1_DRAM_WR_LAZY__REQ_ACCUM_THRESH_MASK 0x0003F000L
+#define MMEA1_DRAM_WR_LAZY__REQ_ACCUM_TIMEOUT_MASK 0x07F00000L
+#define MMEA1_DRAM_WR_LAZY__REQ_ACCUM_IDLEMAX_MASK 0x78000000L
+//MMEA1_DRAM_RD_CAM_CNTL
+#define MMEA1_DRAM_RD_CAM_CNTL__DEPTH_GROUP0__SHIFT 0x0
+#define MMEA1_DRAM_RD_CAM_CNTL__DEPTH_GROUP1__SHIFT 0x4
+#define MMEA1_DRAM_RD_CAM_CNTL__DEPTH_GROUP2__SHIFT 0x8
+#define MMEA1_DRAM_RD_CAM_CNTL__DEPTH_GROUP3__SHIFT 0xc
+#define MMEA1_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP0__SHIFT 0x10
+#define MMEA1_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP1__SHIFT 0x13
+#define MMEA1_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP2__SHIFT 0x16
+#define MMEA1_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP3__SHIFT 0x19
+#define MMEA1_DRAM_RD_CAM_CNTL__REFILL_CHAIN__SHIFT 0x1c
+#define MMEA1_DRAM_RD_CAM_CNTL__PAGEBASED_CHAINING__SHIFT 0x1d
+#define MMEA1_DRAM_RD_CAM_CNTL__DEPTH_GROUP0_MASK 0x0000000FL
+#define MMEA1_DRAM_RD_CAM_CNTL__DEPTH_GROUP1_MASK 0x000000F0L
+#define MMEA1_DRAM_RD_CAM_CNTL__DEPTH_GROUP2_MASK 0x00000F00L
+#define MMEA1_DRAM_RD_CAM_CNTL__DEPTH_GROUP3_MASK 0x0000F000L
+#define MMEA1_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP0_MASK 0x00070000L
+#define MMEA1_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP1_MASK 0x00380000L
+#define MMEA1_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP2_MASK 0x01C00000L
+#define MMEA1_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP3_MASK 0x0E000000L
+#define MMEA1_DRAM_RD_CAM_CNTL__REFILL_CHAIN_MASK 0x10000000L
+#define MMEA1_DRAM_RD_CAM_CNTL__PAGEBASED_CHAINING_MASK 0x20000000L
+//MMEA1_DRAM_WR_CAM_CNTL
+#define MMEA1_DRAM_WR_CAM_CNTL__DEPTH_GROUP0__SHIFT 0x0
+#define MMEA1_DRAM_WR_CAM_CNTL__DEPTH_GROUP1__SHIFT 0x4
+#define MMEA1_DRAM_WR_CAM_CNTL__DEPTH_GROUP2__SHIFT 0x8
+#define MMEA1_DRAM_WR_CAM_CNTL__DEPTH_GROUP3__SHIFT 0xc
+#define MMEA1_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP0__SHIFT 0x10
+#define MMEA1_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP1__SHIFT 0x13
+#define MMEA1_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP2__SHIFT 0x16
+#define MMEA1_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP3__SHIFT 0x19
+#define MMEA1_DRAM_WR_CAM_CNTL__REFILL_CHAIN__SHIFT 0x1c
+#define MMEA1_DRAM_WR_CAM_CNTL__PAGEBASED_CHAINING__SHIFT 0x1d
+#define MMEA1_DRAM_WR_CAM_CNTL__DEPTH_GROUP0_MASK 0x0000000FL
+#define MMEA1_DRAM_WR_CAM_CNTL__DEPTH_GROUP1_MASK 0x000000F0L
+#define MMEA1_DRAM_WR_CAM_CNTL__DEPTH_GROUP2_MASK 0x00000F00L
+#define MMEA1_DRAM_WR_CAM_CNTL__DEPTH_GROUP3_MASK 0x0000F000L
+#define MMEA1_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP0_MASK 0x00070000L
+#define MMEA1_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP1_MASK 0x00380000L
+#define MMEA1_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP2_MASK 0x01C00000L
+#define MMEA1_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP3_MASK 0x0E000000L
+#define MMEA1_DRAM_WR_CAM_CNTL__REFILL_CHAIN_MASK 0x10000000L
+#define MMEA1_DRAM_WR_CAM_CNTL__PAGEBASED_CHAINING_MASK 0x20000000L
+//MMEA1_DRAM_PAGE_BURST
+#define MMEA1_DRAM_PAGE_BURST__RD_LIMIT_LO__SHIFT 0x0
+#define MMEA1_DRAM_PAGE_BURST__RD_LIMIT_HI__SHIFT 0x8
+#define MMEA1_DRAM_PAGE_BURST__WR_LIMIT_LO__SHIFT 0x10
+#define MMEA1_DRAM_PAGE_BURST__WR_LIMIT_HI__SHIFT 0x18
+#define MMEA1_DRAM_PAGE_BURST__RD_LIMIT_LO_MASK 0x000000FFL
+#define MMEA1_DRAM_PAGE_BURST__RD_LIMIT_HI_MASK 0x0000FF00L
+#define MMEA1_DRAM_PAGE_BURST__WR_LIMIT_LO_MASK 0x00FF0000L
+#define MMEA1_DRAM_PAGE_BURST__WR_LIMIT_HI_MASK 0xFF000000L
+//MMEA1_DRAM_RD_PRI_AGE
+#define MMEA1_DRAM_RD_PRI_AGE__GROUP0_AGING_RATE__SHIFT 0x0
+#define MMEA1_DRAM_RD_PRI_AGE__GROUP1_AGING_RATE__SHIFT 0x3
+#define MMEA1_DRAM_RD_PRI_AGE__GROUP2_AGING_RATE__SHIFT 0x6
+#define MMEA1_DRAM_RD_PRI_AGE__GROUP3_AGING_RATE__SHIFT 0x9
+#define MMEA1_DRAM_RD_PRI_AGE__GROUP0_AGE_COEFFICIENT__SHIFT 0xc
+#define MMEA1_DRAM_RD_PRI_AGE__GROUP1_AGE_COEFFICIENT__SHIFT 0xf
+#define MMEA1_DRAM_RD_PRI_AGE__GROUP2_AGE_COEFFICIENT__SHIFT 0x12
+#define MMEA1_DRAM_RD_PRI_AGE__GROUP3_AGE_COEFFICIENT__SHIFT 0x15
+#define MMEA1_DRAM_RD_PRI_AGE__GROUP0_AGING_RATE_MASK 0x00000007L
+#define MMEA1_DRAM_RD_PRI_AGE__GROUP1_AGING_RATE_MASK 0x00000038L
+#define MMEA1_DRAM_RD_PRI_AGE__GROUP2_AGING_RATE_MASK 0x000001C0L
+#define MMEA1_DRAM_RD_PRI_AGE__GROUP3_AGING_RATE_MASK 0x00000E00L
+#define MMEA1_DRAM_RD_PRI_AGE__GROUP0_AGE_COEFFICIENT_MASK 0x00007000L
+#define MMEA1_DRAM_RD_PRI_AGE__GROUP1_AGE_COEFFICIENT_MASK 0x00038000L
+#define MMEA1_DRAM_RD_PRI_AGE__GROUP2_AGE_COEFFICIENT_MASK 0x001C0000L
+#define MMEA1_DRAM_RD_PRI_AGE__GROUP3_AGE_COEFFICIENT_MASK 0x00E00000L
+//MMEA1_DRAM_WR_PRI_AGE
+#define MMEA1_DRAM_WR_PRI_AGE__GROUP0_AGING_RATE__SHIFT 0x0
+#define MMEA1_DRAM_WR_PRI_AGE__GROUP1_AGING_RATE__SHIFT 0x3
+#define MMEA1_DRAM_WR_PRI_AGE__GROUP2_AGING_RATE__SHIFT 0x6
+#define MMEA1_DRAM_WR_PRI_AGE__GROUP3_AGING_RATE__SHIFT 0x9
+#define MMEA1_DRAM_WR_PRI_AGE__GROUP0_AGE_COEFFICIENT__SHIFT 0xc
+#define MMEA1_DRAM_WR_PRI_AGE__GROUP1_AGE_COEFFICIENT__SHIFT 0xf
+#define MMEA1_DRAM_WR_PRI_AGE__GROUP2_AGE_COEFFICIENT__SHIFT 0x12
+#define MMEA1_DRAM_WR_PRI_AGE__GROUP3_AGE_COEFFICIENT__SHIFT 0x15
+#define MMEA1_DRAM_WR_PRI_AGE__GROUP0_AGING_RATE_MASK 0x00000007L
+#define MMEA1_DRAM_WR_PRI_AGE__GROUP1_AGING_RATE_MASK 0x00000038L
+#define MMEA1_DRAM_WR_PRI_AGE__GROUP2_AGING_RATE_MASK 0x000001C0L
+#define MMEA1_DRAM_WR_PRI_AGE__GROUP3_AGING_RATE_MASK 0x00000E00L
+#define MMEA1_DRAM_WR_PRI_AGE__GROUP0_AGE_COEFFICIENT_MASK 0x00007000L
+#define MMEA1_DRAM_WR_PRI_AGE__GROUP1_AGE_COEFFICIENT_MASK 0x00038000L
+#define MMEA1_DRAM_WR_PRI_AGE__GROUP2_AGE_COEFFICIENT_MASK 0x001C0000L
+#define MMEA1_DRAM_WR_PRI_AGE__GROUP3_AGE_COEFFICIENT_MASK 0x00E00000L
+//MMEA1_DRAM_RD_PRI_QUEUING
+#define MMEA1_DRAM_RD_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT__SHIFT 0x0
+#define MMEA1_DRAM_RD_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT__SHIFT 0x3
+#define MMEA1_DRAM_RD_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT__SHIFT 0x6
+#define MMEA1_DRAM_RD_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT__SHIFT 0x9
+#define MMEA1_DRAM_RD_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT_MASK 0x00000007L
+#define MMEA1_DRAM_RD_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT_MASK 0x00000038L
+#define MMEA1_DRAM_RD_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT_MASK 0x000001C0L
+#define MMEA1_DRAM_RD_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT_MASK 0x00000E00L
+//MMEA1_DRAM_WR_PRI_QUEUING
+#define MMEA1_DRAM_WR_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT__SHIFT 0x0
+#define MMEA1_DRAM_WR_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT__SHIFT 0x3
+#define MMEA1_DRAM_WR_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT__SHIFT 0x6
+#define MMEA1_DRAM_WR_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT__SHIFT 0x9
+#define MMEA1_DRAM_WR_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT_MASK 0x00000007L
+#define MMEA1_DRAM_WR_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT_MASK 0x00000038L
+#define MMEA1_DRAM_WR_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT_MASK 0x000001C0L
+#define MMEA1_DRAM_WR_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT_MASK 0x00000E00L
+//MMEA1_DRAM_RD_PRI_FIXED
+#define MMEA1_DRAM_RD_PRI_FIXED__GROUP0_FIXED_COEFFICIENT__SHIFT 0x0
+#define MMEA1_DRAM_RD_PRI_FIXED__GROUP1_FIXED_COEFFICIENT__SHIFT 0x3
+#define MMEA1_DRAM_RD_PRI_FIXED__GROUP2_FIXED_COEFFICIENT__SHIFT 0x6
+#define MMEA1_DRAM_RD_PRI_FIXED__GROUP3_FIXED_COEFFICIENT__SHIFT 0x9
+#define MMEA1_DRAM_RD_PRI_FIXED__GROUP0_FIXED_COEFFICIENT_MASK 0x00000007L
+#define MMEA1_DRAM_RD_PRI_FIXED__GROUP1_FIXED_COEFFICIENT_MASK 0x00000038L
+#define MMEA1_DRAM_RD_PRI_FIXED__GROUP2_FIXED_COEFFICIENT_MASK 0x000001C0L
+#define MMEA1_DRAM_RD_PRI_FIXED__GROUP3_FIXED_COEFFICIENT_MASK 0x00000E00L
+//MMEA1_DRAM_WR_PRI_FIXED
+#define MMEA1_DRAM_WR_PRI_FIXED__GROUP0_FIXED_COEFFICIENT__SHIFT 0x0
+#define MMEA1_DRAM_WR_PRI_FIXED__GROUP1_FIXED_COEFFICIENT__SHIFT 0x3
+#define MMEA1_DRAM_WR_PRI_FIXED__GROUP2_FIXED_COEFFICIENT__SHIFT 0x6
+#define MMEA1_DRAM_WR_PRI_FIXED__GROUP3_FIXED_COEFFICIENT__SHIFT 0x9
+#define MMEA1_DRAM_WR_PRI_FIXED__GROUP0_FIXED_COEFFICIENT_MASK 0x00000007L
+#define MMEA1_DRAM_WR_PRI_FIXED__GROUP1_FIXED_COEFFICIENT_MASK 0x00000038L
+#define MMEA1_DRAM_WR_PRI_FIXED__GROUP2_FIXED_COEFFICIENT_MASK 0x000001C0L
+#define MMEA1_DRAM_WR_PRI_FIXED__GROUP3_FIXED_COEFFICIENT_MASK 0x00000E00L
+//MMEA1_DRAM_RD_PRI_URGENCY
+#define MMEA1_DRAM_RD_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT__SHIFT 0x0
+#define MMEA1_DRAM_RD_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT__SHIFT 0x3
+#define MMEA1_DRAM_RD_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT__SHIFT 0x6
+#define MMEA1_DRAM_RD_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT__SHIFT 0x9
+#define MMEA1_DRAM_RD_PRI_URGENCY__GROUP0_URGENCY_MODE__SHIFT 0xc
+#define MMEA1_DRAM_RD_PRI_URGENCY__GROUP1_URGENCY_MODE__SHIFT 0xd
+#define MMEA1_DRAM_RD_PRI_URGENCY__GROUP2_URGENCY_MODE__SHIFT 0xe
+#define MMEA1_DRAM_RD_PRI_URGENCY__GROUP3_URGENCY_MODE__SHIFT 0xf
+#define MMEA1_DRAM_RD_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT_MASK 0x00000007L
+#define MMEA1_DRAM_RD_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT_MASK 0x00000038L
+#define MMEA1_DRAM_RD_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT_MASK 0x000001C0L
+#define MMEA1_DRAM_RD_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT_MASK 0x00000E00L
+#define MMEA1_DRAM_RD_PRI_URGENCY__GROUP0_URGENCY_MODE_MASK 0x00001000L
+#define MMEA1_DRAM_RD_PRI_URGENCY__GROUP1_URGENCY_MODE_MASK 0x00002000L
+#define MMEA1_DRAM_RD_PRI_URGENCY__GROUP2_URGENCY_MODE_MASK 0x00004000L
+#define MMEA1_DRAM_RD_PRI_URGENCY__GROUP3_URGENCY_MODE_MASK 0x00008000L
+//MMEA1_DRAM_WR_PRI_URGENCY
+#define MMEA1_DRAM_WR_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT__SHIFT 0x0
+#define MMEA1_DRAM_WR_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT__SHIFT 0x3
+#define MMEA1_DRAM_WR_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT__SHIFT 0x6
+#define MMEA1_DRAM_WR_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT__SHIFT 0x9
+#define MMEA1_DRAM_WR_PRI_URGENCY__GROUP0_URGENCY_MODE__SHIFT 0xc
+#define MMEA1_DRAM_WR_PRI_URGENCY__GROUP1_URGENCY_MODE__SHIFT 0xd
+#define MMEA1_DRAM_WR_PRI_URGENCY__GROUP2_URGENCY_MODE__SHIFT 0xe
+#define MMEA1_DRAM_WR_PRI_URGENCY__GROUP3_URGENCY_MODE__SHIFT 0xf
+#define MMEA1_DRAM_WR_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT_MASK 0x00000007L
+#define MMEA1_DRAM_WR_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT_MASK 0x00000038L
+#define MMEA1_DRAM_WR_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT_MASK 0x000001C0L
+#define MMEA1_DRAM_WR_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT_MASK 0x00000E00L
+#define MMEA1_DRAM_WR_PRI_URGENCY__GROUP0_URGENCY_MODE_MASK 0x00001000L
+#define MMEA1_DRAM_WR_PRI_URGENCY__GROUP1_URGENCY_MODE_MASK 0x00002000L
+#define MMEA1_DRAM_WR_PRI_URGENCY__GROUP2_URGENCY_MODE_MASK 0x00004000L
+#define MMEA1_DRAM_WR_PRI_URGENCY__GROUP3_URGENCY_MODE_MASK 0x00008000L
+//MMEA1_DRAM_RD_PRI_QUANT_PRI1
+#define MMEA1_DRAM_RD_PRI_QUANT_PRI1__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA1_DRAM_RD_PRI_QUANT_PRI1__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA1_DRAM_RD_PRI_QUANT_PRI1__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA1_DRAM_RD_PRI_QUANT_PRI1__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA1_DRAM_RD_PRI_QUANT_PRI1__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA1_DRAM_RD_PRI_QUANT_PRI1__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA1_DRAM_RD_PRI_QUANT_PRI1__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA1_DRAM_RD_PRI_QUANT_PRI1__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA1_DRAM_RD_PRI_QUANT_PRI2
+#define MMEA1_DRAM_RD_PRI_QUANT_PRI2__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA1_DRAM_RD_PRI_QUANT_PRI2__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA1_DRAM_RD_PRI_QUANT_PRI2__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA1_DRAM_RD_PRI_QUANT_PRI2__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA1_DRAM_RD_PRI_QUANT_PRI2__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA1_DRAM_RD_PRI_QUANT_PRI2__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA1_DRAM_RD_PRI_QUANT_PRI2__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA1_DRAM_RD_PRI_QUANT_PRI2__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA1_DRAM_RD_PRI_QUANT_PRI3
+#define MMEA1_DRAM_RD_PRI_QUANT_PRI3__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA1_DRAM_RD_PRI_QUANT_PRI3__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA1_DRAM_RD_PRI_QUANT_PRI3__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA1_DRAM_RD_PRI_QUANT_PRI3__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA1_DRAM_RD_PRI_QUANT_PRI3__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA1_DRAM_RD_PRI_QUANT_PRI3__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA1_DRAM_RD_PRI_QUANT_PRI3__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA1_DRAM_RD_PRI_QUANT_PRI3__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA1_DRAM_WR_PRI_QUANT_PRI1
+#define MMEA1_DRAM_WR_PRI_QUANT_PRI1__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA1_DRAM_WR_PRI_QUANT_PRI1__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA1_DRAM_WR_PRI_QUANT_PRI1__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA1_DRAM_WR_PRI_QUANT_PRI1__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA1_DRAM_WR_PRI_QUANT_PRI1__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA1_DRAM_WR_PRI_QUANT_PRI1__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA1_DRAM_WR_PRI_QUANT_PRI1__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA1_DRAM_WR_PRI_QUANT_PRI1__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA1_DRAM_WR_PRI_QUANT_PRI2
+#define MMEA1_DRAM_WR_PRI_QUANT_PRI2__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA1_DRAM_WR_PRI_QUANT_PRI2__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA1_DRAM_WR_PRI_QUANT_PRI2__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA1_DRAM_WR_PRI_QUANT_PRI2__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA1_DRAM_WR_PRI_QUANT_PRI2__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA1_DRAM_WR_PRI_QUANT_PRI2__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA1_DRAM_WR_PRI_QUANT_PRI2__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA1_DRAM_WR_PRI_QUANT_PRI2__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA1_DRAM_WR_PRI_QUANT_PRI3
+#define MMEA1_DRAM_WR_PRI_QUANT_PRI3__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA1_DRAM_WR_PRI_QUANT_PRI3__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA1_DRAM_WR_PRI_QUANT_PRI3__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA1_DRAM_WR_PRI_QUANT_PRI3__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA1_DRAM_WR_PRI_QUANT_PRI3__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA1_DRAM_WR_PRI_QUANT_PRI3__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA1_DRAM_WR_PRI_QUANT_PRI3__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA1_DRAM_WR_PRI_QUANT_PRI3__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA1_GMI_RD_CLI2GRP_MAP0
+#define MMEA1_GMI_RD_CLI2GRP_MAP0__CID0_GROUP__SHIFT 0x0
+#define MMEA1_GMI_RD_CLI2GRP_MAP0__CID1_GROUP__SHIFT 0x2
+#define MMEA1_GMI_RD_CLI2GRP_MAP0__CID2_GROUP__SHIFT 0x4
+#define MMEA1_GMI_RD_CLI2GRP_MAP0__CID3_GROUP__SHIFT 0x6
+#define MMEA1_GMI_RD_CLI2GRP_MAP0__CID4_GROUP__SHIFT 0x8
+#define MMEA1_GMI_RD_CLI2GRP_MAP0__CID5_GROUP__SHIFT 0xa
+#define MMEA1_GMI_RD_CLI2GRP_MAP0__CID6_GROUP__SHIFT 0xc
+#define MMEA1_GMI_RD_CLI2GRP_MAP0__CID7_GROUP__SHIFT 0xe
+#define MMEA1_GMI_RD_CLI2GRP_MAP0__CID8_GROUP__SHIFT 0x10
+#define MMEA1_GMI_RD_CLI2GRP_MAP0__CID9_GROUP__SHIFT 0x12
+#define MMEA1_GMI_RD_CLI2GRP_MAP0__CID10_GROUP__SHIFT 0x14
+#define MMEA1_GMI_RD_CLI2GRP_MAP0__CID11_GROUP__SHIFT 0x16
+#define MMEA1_GMI_RD_CLI2GRP_MAP0__CID12_GROUP__SHIFT 0x18
+#define MMEA1_GMI_RD_CLI2GRP_MAP0__CID13_GROUP__SHIFT 0x1a
+#define MMEA1_GMI_RD_CLI2GRP_MAP0__CID14_GROUP__SHIFT 0x1c
+#define MMEA1_GMI_RD_CLI2GRP_MAP0__CID15_GROUP__SHIFT 0x1e
+#define MMEA1_GMI_RD_CLI2GRP_MAP0__CID0_GROUP_MASK 0x00000003L
+#define MMEA1_GMI_RD_CLI2GRP_MAP0__CID1_GROUP_MASK 0x0000000CL
+#define MMEA1_GMI_RD_CLI2GRP_MAP0__CID2_GROUP_MASK 0x00000030L
+#define MMEA1_GMI_RD_CLI2GRP_MAP0__CID3_GROUP_MASK 0x000000C0L
+#define MMEA1_GMI_RD_CLI2GRP_MAP0__CID4_GROUP_MASK 0x00000300L
+#define MMEA1_GMI_RD_CLI2GRP_MAP0__CID5_GROUP_MASK 0x00000C00L
+#define MMEA1_GMI_RD_CLI2GRP_MAP0__CID6_GROUP_MASK 0x00003000L
+#define MMEA1_GMI_RD_CLI2GRP_MAP0__CID7_GROUP_MASK 0x0000C000L
+#define MMEA1_GMI_RD_CLI2GRP_MAP0__CID8_GROUP_MASK 0x00030000L
+#define MMEA1_GMI_RD_CLI2GRP_MAP0__CID9_GROUP_MASK 0x000C0000L
+#define MMEA1_GMI_RD_CLI2GRP_MAP0__CID10_GROUP_MASK 0x00300000L
+#define MMEA1_GMI_RD_CLI2GRP_MAP0__CID11_GROUP_MASK 0x00C00000L
+#define MMEA1_GMI_RD_CLI2GRP_MAP0__CID12_GROUP_MASK 0x03000000L
+#define MMEA1_GMI_RD_CLI2GRP_MAP0__CID13_GROUP_MASK 0x0C000000L
+#define MMEA1_GMI_RD_CLI2GRP_MAP0__CID14_GROUP_MASK 0x30000000L
+#define MMEA1_GMI_RD_CLI2GRP_MAP0__CID15_GROUP_MASK 0xC0000000L
+//MMEA1_GMI_RD_CLI2GRP_MAP1
+#define MMEA1_GMI_RD_CLI2GRP_MAP1__CID16_GROUP__SHIFT 0x0
+#define MMEA1_GMI_RD_CLI2GRP_MAP1__CID17_GROUP__SHIFT 0x2
+#define MMEA1_GMI_RD_CLI2GRP_MAP1__CID18_GROUP__SHIFT 0x4
+#define MMEA1_GMI_RD_CLI2GRP_MAP1__CID19_GROUP__SHIFT 0x6
+#define MMEA1_GMI_RD_CLI2GRP_MAP1__CID20_GROUP__SHIFT 0x8
+#define MMEA1_GMI_RD_CLI2GRP_MAP1__CID21_GROUP__SHIFT 0xa
+#define MMEA1_GMI_RD_CLI2GRP_MAP1__CID22_GROUP__SHIFT 0xc
+#define MMEA1_GMI_RD_CLI2GRP_MAP1__CID23_GROUP__SHIFT 0xe
+#define MMEA1_GMI_RD_CLI2GRP_MAP1__CID24_GROUP__SHIFT 0x10
+#define MMEA1_GMI_RD_CLI2GRP_MAP1__CID25_GROUP__SHIFT 0x12
+#define MMEA1_GMI_RD_CLI2GRP_MAP1__CID26_GROUP__SHIFT 0x14
+#define MMEA1_GMI_RD_CLI2GRP_MAP1__CID27_GROUP__SHIFT 0x16
+#define MMEA1_GMI_RD_CLI2GRP_MAP1__CID28_GROUP__SHIFT 0x18
+#define MMEA1_GMI_RD_CLI2GRP_MAP1__CID29_GROUP__SHIFT 0x1a
+#define MMEA1_GMI_RD_CLI2GRP_MAP1__CID30_GROUP__SHIFT 0x1c
+#define MMEA1_GMI_RD_CLI2GRP_MAP1__CID31_GROUP__SHIFT 0x1e
+#define MMEA1_GMI_RD_CLI2GRP_MAP1__CID16_GROUP_MASK 0x00000003L
+#define MMEA1_GMI_RD_CLI2GRP_MAP1__CID17_GROUP_MASK 0x0000000CL
+#define MMEA1_GMI_RD_CLI2GRP_MAP1__CID18_GROUP_MASK 0x00000030L
+#define MMEA1_GMI_RD_CLI2GRP_MAP1__CID19_GROUP_MASK 0x000000C0L
+#define MMEA1_GMI_RD_CLI2GRP_MAP1__CID20_GROUP_MASK 0x00000300L
+#define MMEA1_GMI_RD_CLI2GRP_MAP1__CID21_GROUP_MASK 0x00000C00L
+#define MMEA1_GMI_RD_CLI2GRP_MAP1__CID22_GROUP_MASK 0x00003000L
+#define MMEA1_GMI_RD_CLI2GRP_MAP1__CID23_GROUP_MASK 0x0000C000L
+#define MMEA1_GMI_RD_CLI2GRP_MAP1__CID24_GROUP_MASK 0x00030000L
+#define MMEA1_GMI_RD_CLI2GRP_MAP1__CID25_GROUP_MASK 0x000C0000L
+#define MMEA1_GMI_RD_CLI2GRP_MAP1__CID26_GROUP_MASK 0x00300000L
+#define MMEA1_GMI_RD_CLI2GRP_MAP1__CID27_GROUP_MASK 0x00C00000L
+#define MMEA1_GMI_RD_CLI2GRP_MAP1__CID28_GROUP_MASK 0x03000000L
+#define MMEA1_GMI_RD_CLI2GRP_MAP1__CID29_GROUP_MASK 0x0C000000L
+#define MMEA1_GMI_RD_CLI2GRP_MAP1__CID30_GROUP_MASK 0x30000000L
+#define MMEA1_GMI_RD_CLI2GRP_MAP1__CID31_GROUP_MASK 0xC0000000L
+//MMEA1_GMI_WR_CLI2GRP_MAP0
+#define MMEA1_GMI_WR_CLI2GRP_MAP0__CID0_GROUP__SHIFT 0x0
+#define MMEA1_GMI_WR_CLI2GRP_MAP0__CID1_GROUP__SHIFT 0x2
+#define MMEA1_GMI_WR_CLI2GRP_MAP0__CID2_GROUP__SHIFT 0x4
+#define MMEA1_GMI_WR_CLI2GRP_MAP0__CID3_GROUP__SHIFT 0x6
+#define MMEA1_GMI_WR_CLI2GRP_MAP0__CID4_GROUP__SHIFT 0x8
+#define MMEA1_GMI_WR_CLI2GRP_MAP0__CID5_GROUP__SHIFT 0xa
+#define MMEA1_GMI_WR_CLI2GRP_MAP0__CID6_GROUP__SHIFT 0xc
+#define MMEA1_GMI_WR_CLI2GRP_MAP0__CID7_GROUP__SHIFT 0xe
+#define MMEA1_GMI_WR_CLI2GRP_MAP0__CID8_GROUP__SHIFT 0x10
+#define MMEA1_GMI_WR_CLI2GRP_MAP0__CID9_GROUP__SHIFT 0x12
+#define MMEA1_GMI_WR_CLI2GRP_MAP0__CID10_GROUP__SHIFT 0x14
+#define MMEA1_GMI_WR_CLI2GRP_MAP0__CID11_GROUP__SHIFT 0x16
+#define MMEA1_GMI_WR_CLI2GRP_MAP0__CID12_GROUP__SHIFT 0x18
+#define MMEA1_GMI_WR_CLI2GRP_MAP0__CID13_GROUP__SHIFT 0x1a
+#define MMEA1_GMI_WR_CLI2GRP_MAP0__CID14_GROUP__SHIFT 0x1c
+#define MMEA1_GMI_WR_CLI2GRP_MAP0__CID15_GROUP__SHIFT 0x1e
+#define MMEA1_GMI_WR_CLI2GRP_MAP0__CID0_GROUP_MASK 0x00000003L
+#define MMEA1_GMI_WR_CLI2GRP_MAP0__CID1_GROUP_MASK 0x0000000CL
+#define MMEA1_GMI_WR_CLI2GRP_MAP0__CID2_GROUP_MASK 0x00000030L
+#define MMEA1_GMI_WR_CLI2GRP_MAP0__CID3_GROUP_MASK 0x000000C0L
+#define MMEA1_GMI_WR_CLI2GRP_MAP0__CID4_GROUP_MASK 0x00000300L
+#define MMEA1_GMI_WR_CLI2GRP_MAP0__CID5_GROUP_MASK 0x00000C00L
+#define MMEA1_GMI_WR_CLI2GRP_MAP0__CID6_GROUP_MASK 0x00003000L
+#define MMEA1_GMI_WR_CLI2GRP_MAP0__CID7_GROUP_MASK 0x0000C000L
+#define MMEA1_GMI_WR_CLI2GRP_MAP0__CID8_GROUP_MASK 0x00030000L
+#define MMEA1_GMI_WR_CLI2GRP_MAP0__CID9_GROUP_MASK 0x000C0000L
+#define MMEA1_GMI_WR_CLI2GRP_MAP0__CID10_GROUP_MASK 0x00300000L
+#define MMEA1_GMI_WR_CLI2GRP_MAP0__CID11_GROUP_MASK 0x00C00000L
+#define MMEA1_GMI_WR_CLI2GRP_MAP0__CID12_GROUP_MASK 0x03000000L
+#define MMEA1_GMI_WR_CLI2GRP_MAP0__CID13_GROUP_MASK 0x0C000000L
+#define MMEA1_GMI_WR_CLI2GRP_MAP0__CID14_GROUP_MASK 0x30000000L
+#define MMEA1_GMI_WR_CLI2GRP_MAP0__CID15_GROUP_MASK 0xC0000000L
+//MMEA1_GMI_WR_CLI2GRP_MAP1
+#define MMEA1_GMI_WR_CLI2GRP_MAP1__CID16_GROUP__SHIFT 0x0
+#define MMEA1_GMI_WR_CLI2GRP_MAP1__CID17_GROUP__SHIFT 0x2
+#define MMEA1_GMI_WR_CLI2GRP_MAP1__CID18_GROUP__SHIFT 0x4
+#define MMEA1_GMI_WR_CLI2GRP_MAP1__CID19_GROUP__SHIFT 0x6
+#define MMEA1_GMI_WR_CLI2GRP_MAP1__CID20_GROUP__SHIFT 0x8
+#define MMEA1_GMI_WR_CLI2GRP_MAP1__CID21_GROUP__SHIFT 0xa
+#define MMEA1_GMI_WR_CLI2GRP_MAP1__CID22_GROUP__SHIFT 0xc
+#define MMEA1_GMI_WR_CLI2GRP_MAP1__CID23_GROUP__SHIFT 0xe
+#define MMEA1_GMI_WR_CLI2GRP_MAP1__CID24_GROUP__SHIFT 0x10
+#define MMEA1_GMI_WR_CLI2GRP_MAP1__CID25_GROUP__SHIFT 0x12
+#define MMEA1_GMI_WR_CLI2GRP_MAP1__CID26_GROUP__SHIFT 0x14
+#define MMEA1_GMI_WR_CLI2GRP_MAP1__CID27_GROUP__SHIFT 0x16
+#define MMEA1_GMI_WR_CLI2GRP_MAP1__CID28_GROUP__SHIFT 0x18
+#define MMEA1_GMI_WR_CLI2GRP_MAP1__CID29_GROUP__SHIFT 0x1a
+#define MMEA1_GMI_WR_CLI2GRP_MAP1__CID30_GROUP__SHIFT 0x1c
+#define MMEA1_GMI_WR_CLI2GRP_MAP1__CID31_GROUP__SHIFT 0x1e
+#define MMEA1_GMI_WR_CLI2GRP_MAP1__CID16_GROUP_MASK 0x00000003L
+#define MMEA1_GMI_WR_CLI2GRP_MAP1__CID17_GROUP_MASK 0x0000000CL
+#define MMEA1_GMI_WR_CLI2GRP_MAP1__CID18_GROUP_MASK 0x00000030L
+#define MMEA1_GMI_WR_CLI2GRP_MAP1__CID19_GROUP_MASK 0x000000C0L
+#define MMEA1_GMI_WR_CLI2GRP_MAP1__CID20_GROUP_MASK 0x00000300L
+#define MMEA1_GMI_WR_CLI2GRP_MAP1__CID21_GROUP_MASK 0x00000C00L
+#define MMEA1_GMI_WR_CLI2GRP_MAP1__CID22_GROUP_MASK 0x00003000L
+#define MMEA1_GMI_WR_CLI2GRP_MAP1__CID23_GROUP_MASK 0x0000C000L
+#define MMEA1_GMI_WR_CLI2GRP_MAP1__CID24_GROUP_MASK 0x00030000L
+#define MMEA1_GMI_WR_CLI2GRP_MAP1__CID25_GROUP_MASK 0x000C0000L
+#define MMEA1_GMI_WR_CLI2GRP_MAP1__CID26_GROUP_MASK 0x00300000L
+#define MMEA1_GMI_WR_CLI2GRP_MAP1__CID27_GROUP_MASK 0x00C00000L
+#define MMEA1_GMI_WR_CLI2GRP_MAP1__CID28_GROUP_MASK 0x03000000L
+#define MMEA1_GMI_WR_CLI2GRP_MAP1__CID29_GROUP_MASK 0x0C000000L
+#define MMEA1_GMI_WR_CLI2GRP_MAP1__CID30_GROUP_MASK 0x30000000L
+#define MMEA1_GMI_WR_CLI2GRP_MAP1__CID31_GROUP_MASK 0xC0000000L
+//MMEA1_GMI_RD_GRP2VC_MAP
+#define MMEA1_GMI_RD_GRP2VC_MAP__GROUP0_VC__SHIFT 0x0
+#define MMEA1_GMI_RD_GRP2VC_MAP__GROUP1_VC__SHIFT 0x3
+#define MMEA1_GMI_RD_GRP2VC_MAP__GROUP2_VC__SHIFT 0x6
+#define MMEA1_GMI_RD_GRP2VC_MAP__GROUP3_VC__SHIFT 0x9
+#define MMEA1_GMI_RD_GRP2VC_MAP__GROUP0_VC_MASK 0x00000007L
+#define MMEA1_GMI_RD_GRP2VC_MAP__GROUP1_VC_MASK 0x00000038L
+#define MMEA1_GMI_RD_GRP2VC_MAP__GROUP2_VC_MASK 0x000001C0L
+#define MMEA1_GMI_RD_GRP2VC_MAP__GROUP3_VC_MASK 0x00000E00L
+//MMEA1_GMI_WR_GRP2VC_MAP
+#define MMEA1_GMI_WR_GRP2VC_MAP__GROUP0_VC__SHIFT 0x0
+#define MMEA1_GMI_WR_GRP2VC_MAP__GROUP1_VC__SHIFT 0x3
+#define MMEA1_GMI_WR_GRP2VC_MAP__GROUP2_VC__SHIFT 0x6
+#define MMEA1_GMI_WR_GRP2VC_MAP__GROUP3_VC__SHIFT 0x9
+#define MMEA1_GMI_WR_GRP2VC_MAP__GROUP0_VC_MASK 0x00000007L
+#define MMEA1_GMI_WR_GRP2VC_MAP__GROUP1_VC_MASK 0x00000038L
+#define MMEA1_GMI_WR_GRP2VC_MAP__GROUP2_VC_MASK 0x000001C0L
+#define MMEA1_GMI_WR_GRP2VC_MAP__GROUP3_VC_MASK 0x00000E00L
+//MMEA1_GMI_RD_LAZY
+#define MMEA1_GMI_RD_LAZY__GROUP0_DELAY__SHIFT 0x0
+#define MMEA1_GMI_RD_LAZY__GROUP1_DELAY__SHIFT 0x3
+#define MMEA1_GMI_RD_LAZY__GROUP2_DELAY__SHIFT 0x6
+#define MMEA1_GMI_RD_LAZY__GROUP3_DELAY__SHIFT 0x9
+#define MMEA1_GMI_RD_LAZY__REQ_ACCUM_THRESH__SHIFT 0xc
+#define MMEA1_GMI_RD_LAZY__REQ_ACCUM_TIMEOUT__SHIFT 0x14
+#define MMEA1_GMI_RD_LAZY__REQ_ACCUM_IDLEMAX__SHIFT 0x1b
+#define MMEA1_GMI_RD_LAZY__GROUP0_DELAY_MASK 0x00000007L
+#define MMEA1_GMI_RD_LAZY__GROUP1_DELAY_MASK 0x00000038L
+#define MMEA1_GMI_RD_LAZY__GROUP2_DELAY_MASK 0x000001C0L
+#define MMEA1_GMI_RD_LAZY__GROUP3_DELAY_MASK 0x00000E00L
+#define MMEA1_GMI_RD_LAZY__REQ_ACCUM_THRESH_MASK 0x0003F000L
+#define MMEA1_GMI_RD_LAZY__REQ_ACCUM_TIMEOUT_MASK 0x07F00000L
+#define MMEA1_GMI_RD_LAZY__REQ_ACCUM_IDLEMAX_MASK 0x78000000L
+//MMEA1_GMI_WR_LAZY
+#define MMEA1_GMI_WR_LAZY__GROUP0_DELAY__SHIFT 0x0
+#define MMEA1_GMI_WR_LAZY__GROUP1_DELAY__SHIFT 0x3
+#define MMEA1_GMI_WR_LAZY__GROUP2_DELAY__SHIFT 0x6
+#define MMEA1_GMI_WR_LAZY__GROUP3_DELAY__SHIFT 0x9
+#define MMEA1_GMI_WR_LAZY__REQ_ACCUM_THRESH__SHIFT 0xc
+#define MMEA1_GMI_WR_LAZY__REQ_ACCUM_TIMEOUT__SHIFT 0x14
+#define MMEA1_GMI_WR_LAZY__REQ_ACCUM_IDLEMAX__SHIFT 0x1b
+#define MMEA1_GMI_WR_LAZY__GROUP0_DELAY_MASK 0x00000007L
+#define MMEA1_GMI_WR_LAZY__GROUP1_DELAY_MASK 0x00000038L
+#define MMEA1_GMI_WR_LAZY__GROUP2_DELAY_MASK 0x000001C0L
+#define MMEA1_GMI_WR_LAZY__GROUP3_DELAY_MASK 0x00000E00L
+#define MMEA1_GMI_WR_LAZY__REQ_ACCUM_THRESH_MASK 0x0003F000L
+#define MMEA1_GMI_WR_LAZY__REQ_ACCUM_TIMEOUT_MASK 0x07F00000L
+#define MMEA1_GMI_WR_LAZY__REQ_ACCUM_IDLEMAX_MASK 0x78000000L
+//MMEA1_GMI_RD_CAM_CNTL
+#define MMEA1_GMI_RD_CAM_CNTL__DEPTH_GROUP0__SHIFT 0x0
+#define MMEA1_GMI_RD_CAM_CNTL__DEPTH_GROUP1__SHIFT 0x4
+#define MMEA1_GMI_RD_CAM_CNTL__DEPTH_GROUP2__SHIFT 0x8
+#define MMEA1_GMI_RD_CAM_CNTL__DEPTH_GROUP3__SHIFT 0xc
+#define MMEA1_GMI_RD_CAM_CNTL__REORDER_LIMIT_GROUP0__SHIFT 0x10
+#define MMEA1_GMI_RD_CAM_CNTL__REORDER_LIMIT_GROUP1__SHIFT 0x13
+#define MMEA1_GMI_RD_CAM_CNTL__REORDER_LIMIT_GROUP2__SHIFT 0x16
+#define MMEA1_GMI_RD_CAM_CNTL__REORDER_LIMIT_GROUP3__SHIFT 0x19
+#define MMEA1_GMI_RD_CAM_CNTL__REFILL_CHAIN__SHIFT 0x1c
+#define MMEA1_GMI_RD_CAM_CNTL__PAGEBASED_CHAINING__SHIFT 0x1d
+#define MMEA1_GMI_RD_CAM_CNTL__DEPTH_GROUP0_MASK 0x0000000FL
+#define MMEA1_GMI_RD_CAM_CNTL__DEPTH_GROUP1_MASK 0x000000F0L
+#define MMEA1_GMI_RD_CAM_CNTL__DEPTH_GROUP2_MASK 0x00000F00L
+#define MMEA1_GMI_RD_CAM_CNTL__DEPTH_GROUP3_MASK 0x0000F000L
+#define MMEA1_GMI_RD_CAM_CNTL__REORDER_LIMIT_GROUP0_MASK 0x00070000L
+#define MMEA1_GMI_RD_CAM_CNTL__REORDER_LIMIT_GROUP1_MASK 0x00380000L
+#define MMEA1_GMI_RD_CAM_CNTL__REORDER_LIMIT_GROUP2_MASK 0x01C00000L
+#define MMEA1_GMI_RD_CAM_CNTL__REORDER_LIMIT_GROUP3_MASK 0x0E000000L
+#define MMEA1_GMI_RD_CAM_CNTL__REFILL_CHAIN_MASK 0x10000000L
+#define MMEA1_GMI_RD_CAM_CNTL__PAGEBASED_CHAINING_MASK 0x20000000L
+//MMEA1_GMI_WR_CAM_CNTL
+#define MMEA1_GMI_WR_CAM_CNTL__DEPTH_GROUP0__SHIFT 0x0
+#define MMEA1_GMI_WR_CAM_CNTL__DEPTH_GROUP1__SHIFT 0x4
+#define MMEA1_GMI_WR_CAM_CNTL__DEPTH_GROUP2__SHIFT 0x8
+#define MMEA1_GMI_WR_CAM_CNTL__DEPTH_GROUP3__SHIFT 0xc
+#define MMEA1_GMI_WR_CAM_CNTL__REORDER_LIMIT_GROUP0__SHIFT 0x10
+#define MMEA1_GMI_WR_CAM_CNTL__REORDER_LIMIT_GROUP1__SHIFT 0x13
+#define MMEA1_GMI_WR_CAM_CNTL__REORDER_LIMIT_GROUP2__SHIFT 0x16
+#define MMEA1_GMI_WR_CAM_CNTL__REORDER_LIMIT_GROUP3__SHIFT 0x19
+#define MMEA1_GMI_WR_CAM_CNTL__REFILL_CHAIN__SHIFT 0x1c
+#define MMEA1_GMI_WR_CAM_CNTL__PAGEBASED_CHAINING__SHIFT 0x1d
+#define MMEA1_GMI_WR_CAM_CNTL__DEPTH_GROUP0_MASK 0x0000000FL
+#define MMEA1_GMI_WR_CAM_CNTL__DEPTH_GROUP1_MASK 0x000000F0L
+#define MMEA1_GMI_WR_CAM_CNTL__DEPTH_GROUP2_MASK 0x00000F00L
+#define MMEA1_GMI_WR_CAM_CNTL__DEPTH_GROUP3_MASK 0x0000F000L
+#define MMEA1_GMI_WR_CAM_CNTL__REORDER_LIMIT_GROUP0_MASK 0x00070000L
+#define MMEA1_GMI_WR_CAM_CNTL__REORDER_LIMIT_GROUP1_MASK 0x00380000L
+#define MMEA1_GMI_WR_CAM_CNTL__REORDER_LIMIT_GROUP2_MASK 0x01C00000L
+#define MMEA1_GMI_WR_CAM_CNTL__REORDER_LIMIT_GROUP3_MASK 0x0E000000L
+#define MMEA1_GMI_WR_CAM_CNTL__REFILL_CHAIN_MASK 0x10000000L
+#define MMEA1_GMI_WR_CAM_CNTL__PAGEBASED_CHAINING_MASK 0x20000000L
+//MMEA1_GMI_PAGE_BURST
+#define MMEA1_GMI_PAGE_BURST__RD_LIMIT_LO__SHIFT 0x0
+#define MMEA1_GMI_PAGE_BURST__RD_LIMIT_HI__SHIFT 0x8
+#define MMEA1_GMI_PAGE_BURST__WR_LIMIT_LO__SHIFT 0x10
+#define MMEA1_GMI_PAGE_BURST__WR_LIMIT_HI__SHIFT 0x18
+#define MMEA1_GMI_PAGE_BURST__RD_LIMIT_LO_MASK 0x000000FFL
+#define MMEA1_GMI_PAGE_BURST__RD_LIMIT_HI_MASK 0x0000FF00L
+#define MMEA1_GMI_PAGE_BURST__WR_LIMIT_LO_MASK 0x00FF0000L
+#define MMEA1_GMI_PAGE_BURST__WR_LIMIT_HI_MASK 0xFF000000L
+//MMEA1_GMI_RD_PRI_AGE
+#define MMEA1_GMI_RD_PRI_AGE__GROUP0_AGING_RATE__SHIFT 0x0
+#define MMEA1_GMI_RD_PRI_AGE__GROUP1_AGING_RATE__SHIFT 0x3
+#define MMEA1_GMI_RD_PRI_AGE__GROUP2_AGING_RATE__SHIFT 0x6
+#define MMEA1_GMI_RD_PRI_AGE__GROUP3_AGING_RATE__SHIFT 0x9
+#define MMEA1_GMI_RD_PRI_AGE__GROUP0_AGE_COEFFICIENT__SHIFT 0xc
+#define MMEA1_GMI_RD_PRI_AGE__GROUP1_AGE_COEFFICIENT__SHIFT 0xf
+#define MMEA1_GMI_RD_PRI_AGE__GROUP2_AGE_COEFFICIENT__SHIFT 0x12
+#define MMEA1_GMI_RD_PRI_AGE__GROUP3_AGE_COEFFICIENT__SHIFT 0x15
+#define MMEA1_GMI_RD_PRI_AGE__GROUP0_AGING_RATE_MASK 0x00000007L
+#define MMEA1_GMI_RD_PRI_AGE__GROUP1_AGING_RATE_MASK 0x00000038L
+#define MMEA1_GMI_RD_PRI_AGE__GROUP2_AGING_RATE_MASK 0x000001C0L
+#define MMEA1_GMI_RD_PRI_AGE__GROUP3_AGING_RATE_MASK 0x00000E00L
+#define MMEA1_GMI_RD_PRI_AGE__GROUP0_AGE_COEFFICIENT_MASK 0x00007000L
+#define MMEA1_GMI_RD_PRI_AGE__GROUP1_AGE_COEFFICIENT_MASK 0x00038000L
+#define MMEA1_GMI_RD_PRI_AGE__GROUP2_AGE_COEFFICIENT_MASK 0x001C0000L
+#define MMEA1_GMI_RD_PRI_AGE__GROUP3_AGE_COEFFICIENT_MASK 0x00E00000L
+//MMEA1_GMI_WR_PRI_AGE
+#define MMEA1_GMI_WR_PRI_AGE__GROUP0_AGING_RATE__SHIFT 0x0
+#define MMEA1_GMI_WR_PRI_AGE__GROUP1_AGING_RATE__SHIFT 0x3
+#define MMEA1_GMI_WR_PRI_AGE__GROUP2_AGING_RATE__SHIFT 0x6
+#define MMEA1_GMI_WR_PRI_AGE__GROUP3_AGING_RATE__SHIFT 0x9
+#define MMEA1_GMI_WR_PRI_AGE__GROUP0_AGE_COEFFICIENT__SHIFT 0xc
+#define MMEA1_GMI_WR_PRI_AGE__GROUP1_AGE_COEFFICIENT__SHIFT 0xf
+#define MMEA1_GMI_WR_PRI_AGE__GROUP2_AGE_COEFFICIENT__SHIFT 0x12
+#define MMEA1_GMI_WR_PRI_AGE__GROUP3_AGE_COEFFICIENT__SHIFT 0x15
+#define MMEA1_GMI_WR_PRI_AGE__GROUP0_AGING_RATE_MASK 0x00000007L
+#define MMEA1_GMI_WR_PRI_AGE__GROUP1_AGING_RATE_MASK 0x00000038L
+#define MMEA1_GMI_WR_PRI_AGE__GROUP2_AGING_RATE_MASK 0x000001C0L
+#define MMEA1_GMI_WR_PRI_AGE__GROUP3_AGING_RATE_MASK 0x00000E00L
+#define MMEA1_GMI_WR_PRI_AGE__GROUP0_AGE_COEFFICIENT_MASK 0x00007000L
+#define MMEA1_GMI_WR_PRI_AGE__GROUP1_AGE_COEFFICIENT_MASK 0x00038000L
+#define MMEA1_GMI_WR_PRI_AGE__GROUP2_AGE_COEFFICIENT_MASK 0x001C0000L
+#define MMEA1_GMI_WR_PRI_AGE__GROUP3_AGE_COEFFICIENT_MASK 0x00E00000L
+//MMEA1_GMI_RD_PRI_QUEUING
+#define MMEA1_GMI_RD_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT__SHIFT 0x0
+#define MMEA1_GMI_RD_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT__SHIFT 0x3
+#define MMEA1_GMI_RD_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT__SHIFT 0x6
+#define MMEA1_GMI_RD_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT__SHIFT 0x9
+#define MMEA1_GMI_RD_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT_MASK 0x00000007L
+#define MMEA1_GMI_RD_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT_MASK 0x00000038L
+#define MMEA1_GMI_RD_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT_MASK 0x000001C0L
+#define MMEA1_GMI_RD_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT_MASK 0x00000E00L
+//MMEA1_GMI_WR_PRI_QUEUING
+#define MMEA1_GMI_WR_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT__SHIFT 0x0
+#define MMEA1_GMI_WR_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT__SHIFT 0x3
+#define MMEA1_GMI_WR_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT__SHIFT 0x6
+#define MMEA1_GMI_WR_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT__SHIFT 0x9
+#define MMEA1_GMI_WR_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT_MASK 0x00000007L
+#define MMEA1_GMI_WR_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT_MASK 0x00000038L
+#define MMEA1_GMI_WR_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT_MASK 0x000001C0L
+#define MMEA1_GMI_WR_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT_MASK 0x00000E00L
+//MMEA1_GMI_RD_PRI_FIXED
+#define MMEA1_GMI_RD_PRI_FIXED__GROUP0_FIXED_COEFFICIENT__SHIFT 0x0
+#define MMEA1_GMI_RD_PRI_FIXED__GROUP1_FIXED_COEFFICIENT__SHIFT 0x3
+#define MMEA1_GMI_RD_PRI_FIXED__GROUP2_FIXED_COEFFICIENT__SHIFT 0x6
+#define MMEA1_GMI_RD_PRI_FIXED__GROUP3_FIXED_COEFFICIENT__SHIFT 0x9
+#define MMEA1_GMI_RD_PRI_FIXED__GROUP0_FIXED_COEFFICIENT_MASK 0x00000007L
+#define MMEA1_GMI_RD_PRI_FIXED__GROUP1_FIXED_COEFFICIENT_MASK 0x00000038L
+#define MMEA1_GMI_RD_PRI_FIXED__GROUP2_FIXED_COEFFICIENT_MASK 0x000001C0L
+#define MMEA1_GMI_RD_PRI_FIXED__GROUP3_FIXED_COEFFICIENT_MASK 0x00000E00L
+//MMEA1_GMI_WR_PRI_FIXED
+#define MMEA1_GMI_WR_PRI_FIXED__GROUP0_FIXED_COEFFICIENT__SHIFT 0x0
+#define MMEA1_GMI_WR_PRI_FIXED__GROUP1_FIXED_COEFFICIENT__SHIFT 0x3
+#define MMEA1_GMI_WR_PRI_FIXED__GROUP2_FIXED_COEFFICIENT__SHIFT 0x6
+#define MMEA1_GMI_WR_PRI_FIXED__GROUP3_FIXED_COEFFICIENT__SHIFT 0x9
+#define MMEA1_GMI_WR_PRI_FIXED__GROUP0_FIXED_COEFFICIENT_MASK 0x00000007L
+#define MMEA1_GMI_WR_PRI_FIXED__GROUP1_FIXED_COEFFICIENT_MASK 0x00000038L
+#define MMEA1_GMI_WR_PRI_FIXED__GROUP2_FIXED_COEFFICIENT_MASK 0x000001C0L
+#define MMEA1_GMI_WR_PRI_FIXED__GROUP3_FIXED_COEFFICIENT_MASK 0x00000E00L
+//MMEA1_GMI_RD_PRI_URGENCY
+#define MMEA1_GMI_RD_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT__SHIFT 0x0
+#define MMEA1_GMI_RD_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT__SHIFT 0x3
+#define MMEA1_GMI_RD_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT__SHIFT 0x6
+#define MMEA1_GMI_RD_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT__SHIFT 0x9
+#define MMEA1_GMI_RD_PRI_URGENCY__GROUP0_URGENCY_MODE__SHIFT 0xc
+#define MMEA1_GMI_RD_PRI_URGENCY__GROUP1_URGENCY_MODE__SHIFT 0xd
+#define MMEA1_GMI_RD_PRI_URGENCY__GROUP2_URGENCY_MODE__SHIFT 0xe
+#define MMEA1_GMI_RD_PRI_URGENCY__GROUP3_URGENCY_MODE__SHIFT 0xf
+#define MMEA1_GMI_RD_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT_MASK 0x00000007L
+#define MMEA1_GMI_RD_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT_MASK 0x00000038L
+#define MMEA1_GMI_RD_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT_MASK 0x000001C0L
+#define MMEA1_GMI_RD_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT_MASK 0x00000E00L
+#define MMEA1_GMI_RD_PRI_URGENCY__GROUP0_URGENCY_MODE_MASK 0x00001000L
+#define MMEA1_GMI_RD_PRI_URGENCY__GROUP1_URGENCY_MODE_MASK 0x00002000L
+#define MMEA1_GMI_RD_PRI_URGENCY__GROUP2_URGENCY_MODE_MASK 0x00004000L
+#define MMEA1_GMI_RD_PRI_URGENCY__GROUP3_URGENCY_MODE_MASK 0x00008000L
+//MMEA1_GMI_WR_PRI_URGENCY
+#define MMEA1_GMI_WR_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT__SHIFT 0x0
+#define MMEA1_GMI_WR_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT__SHIFT 0x3
+#define MMEA1_GMI_WR_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT__SHIFT 0x6
+#define MMEA1_GMI_WR_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT__SHIFT 0x9
+#define MMEA1_GMI_WR_PRI_URGENCY__GROUP0_URGENCY_MODE__SHIFT 0xc
+#define MMEA1_GMI_WR_PRI_URGENCY__GROUP1_URGENCY_MODE__SHIFT 0xd
+#define MMEA1_GMI_WR_PRI_URGENCY__GROUP2_URGENCY_MODE__SHIFT 0xe
+#define MMEA1_GMI_WR_PRI_URGENCY__GROUP3_URGENCY_MODE__SHIFT 0xf
+#define MMEA1_GMI_WR_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT_MASK 0x00000007L
+#define MMEA1_GMI_WR_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT_MASK 0x00000038L
+#define MMEA1_GMI_WR_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT_MASK 0x000001C0L
+#define MMEA1_GMI_WR_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT_MASK 0x00000E00L
+#define MMEA1_GMI_WR_PRI_URGENCY__GROUP0_URGENCY_MODE_MASK 0x00001000L
+#define MMEA1_GMI_WR_PRI_URGENCY__GROUP1_URGENCY_MODE_MASK 0x00002000L
+#define MMEA1_GMI_WR_PRI_URGENCY__GROUP2_URGENCY_MODE_MASK 0x00004000L
+#define MMEA1_GMI_WR_PRI_URGENCY__GROUP3_URGENCY_MODE_MASK 0x00008000L
+//MMEA1_GMI_RD_PRI_URGENCY_MASKING
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID0_MASK__SHIFT 0x0
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID1_MASK__SHIFT 0x1
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID2_MASK__SHIFT 0x2
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID3_MASK__SHIFT 0x3
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID4_MASK__SHIFT 0x4
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID5_MASK__SHIFT 0x5
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID6_MASK__SHIFT 0x6
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID7_MASK__SHIFT 0x7
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID8_MASK__SHIFT 0x8
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID9_MASK__SHIFT 0x9
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID10_MASK__SHIFT 0xa
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID11_MASK__SHIFT 0xb
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID12_MASK__SHIFT 0xc
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID13_MASK__SHIFT 0xd
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID14_MASK__SHIFT 0xe
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID15_MASK__SHIFT 0xf
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID16_MASK__SHIFT 0x10
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID17_MASK__SHIFT 0x11
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID18_MASK__SHIFT 0x12
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID19_MASK__SHIFT 0x13
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID20_MASK__SHIFT 0x14
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID21_MASK__SHIFT 0x15
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID22_MASK__SHIFT 0x16
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID23_MASK__SHIFT 0x17
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID24_MASK__SHIFT 0x18
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID25_MASK__SHIFT 0x19
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID26_MASK__SHIFT 0x1a
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID27_MASK__SHIFT 0x1b
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID28_MASK__SHIFT 0x1c
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID29_MASK__SHIFT 0x1d
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID30_MASK__SHIFT 0x1e
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID31_MASK__SHIFT 0x1f
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID0_MASK_MASK 0x00000001L
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID1_MASK_MASK 0x00000002L
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID2_MASK_MASK 0x00000004L
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID3_MASK_MASK 0x00000008L
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID4_MASK_MASK 0x00000010L
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID5_MASK_MASK 0x00000020L
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID6_MASK_MASK 0x00000040L
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID7_MASK_MASK 0x00000080L
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID8_MASK_MASK 0x00000100L
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID9_MASK_MASK 0x00000200L
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID10_MASK_MASK 0x00000400L
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID11_MASK_MASK 0x00000800L
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID12_MASK_MASK 0x00001000L
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID13_MASK_MASK 0x00002000L
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID14_MASK_MASK 0x00004000L
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID15_MASK_MASK 0x00008000L
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID16_MASK_MASK 0x00010000L
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID17_MASK_MASK 0x00020000L
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID18_MASK_MASK 0x00040000L
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID19_MASK_MASK 0x00080000L
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID20_MASK_MASK 0x00100000L
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID21_MASK_MASK 0x00200000L
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID22_MASK_MASK 0x00400000L
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID23_MASK_MASK 0x00800000L
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID24_MASK_MASK 0x01000000L
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID25_MASK_MASK 0x02000000L
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID26_MASK_MASK 0x04000000L
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID27_MASK_MASK 0x08000000L
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID28_MASK_MASK 0x10000000L
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID29_MASK_MASK 0x20000000L
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID30_MASK_MASK 0x40000000L
+#define MMEA1_GMI_RD_PRI_URGENCY_MASKING__CID31_MASK_MASK 0x80000000L
+//MMEA1_GMI_WR_PRI_URGENCY_MASKING
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID0_MASK__SHIFT 0x0
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID1_MASK__SHIFT 0x1
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID2_MASK__SHIFT 0x2
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID3_MASK__SHIFT 0x3
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID4_MASK__SHIFT 0x4
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID5_MASK__SHIFT 0x5
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID6_MASK__SHIFT 0x6
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID7_MASK__SHIFT 0x7
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID8_MASK__SHIFT 0x8
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID9_MASK__SHIFT 0x9
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID10_MASK__SHIFT 0xa
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID11_MASK__SHIFT 0xb
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID12_MASK__SHIFT 0xc
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID13_MASK__SHIFT 0xd
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID14_MASK__SHIFT 0xe
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID15_MASK__SHIFT 0xf
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID16_MASK__SHIFT 0x10
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID17_MASK__SHIFT 0x11
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID18_MASK__SHIFT 0x12
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID19_MASK__SHIFT 0x13
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID20_MASK__SHIFT 0x14
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID21_MASK__SHIFT 0x15
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID22_MASK__SHIFT 0x16
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID23_MASK__SHIFT 0x17
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID24_MASK__SHIFT 0x18
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID25_MASK__SHIFT 0x19
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID26_MASK__SHIFT 0x1a
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID27_MASK__SHIFT 0x1b
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID28_MASK__SHIFT 0x1c
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID29_MASK__SHIFT 0x1d
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID30_MASK__SHIFT 0x1e
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID31_MASK__SHIFT 0x1f
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID0_MASK_MASK 0x00000001L
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID1_MASK_MASK 0x00000002L
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID2_MASK_MASK 0x00000004L
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID3_MASK_MASK 0x00000008L
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID4_MASK_MASK 0x00000010L
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID5_MASK_MASK 0x00000020L
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID6_MASK_MASK 0x00000040L
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID7_MASK_MASK 0x00000080L
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID8_MASK_MASK 0x00000100L
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID9_MASK_MASK 0x00000200L
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID10_MASK_MASK 0x00000400L
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID11_MASK_MASK 0x00000800L
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID12_MASK_MASK 0x00001000L
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID13_MASK_MASK 0x00002000L
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID14_MASK_MASK 0x00004000L
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID15_MASK_MASK 0x00008000L
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID16_MASK_MASK 0x00010000L
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID17_MASK_MASK 0x00020000L
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID18_MASK_MASK 0x00040000L
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID19_MASK_MASK 0x00080000L
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID20_MASK_MASK 0x00100000L
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID21_MASK_MASK 0x00200000L
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID22_MASK_MASK 0x00400000L
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID23_MASK_MASK 0x00800000L
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID24_MASK_MASK 0x01000000L
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID25_MASK_MASK 0x02000000L
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID26_MASK_MASK 0x04000000L
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID27_MASK_MASK 0x08000000L
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID28_MASK_MASK 0x10000000L
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID29_MASK_MASK 0x20000000L
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID30_MASK_MASK 0x40000000L
+#define MMEA1_GMI_WR_PRI_URGENCY_MASKING__CID31_MASK_MASK 0x80000000L
+//MMEA1_GMI_RD_PRI_QUANT_PRI1
+#define MMEA1_GMI_RD_PRI_QUANT_PRI1__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA1_GMI_RD_PRI_QUANT_PRI1__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA1_GMI_RD_PRI_QUANT_PRI1__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA1_GMI_RD_PRI_QUANT_PRI1__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA1_GMI_RD_PRI_QUANT_PRI1__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA1_GMI_RD_PRI_QUANT_PRI1__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA1_GMI_RD_PRI_QUANT_PRI1__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA1_GMI_RD_PRI_QUANT_PRI1__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA1_GMI_RD_PRI_QUANT_PRI2
+#define MMEA1_GMI_RD_PRI_QUANT_PRI2__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA1_GMI_RD_PRI_QUANT_PRI2__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA1_GMI_RD_PRI_QUANT_PRI2__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA1_GMI_RD_PRI_QUANT_PRI2__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA1_GMI_RD_PRI_QUANT_PRI2__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA1_GMI_RD_PRI_QUANT_PRI2__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA1_GMI_RD_PRI_QUANT_PRI2__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA1_GMI_RD_PRI_QUANT_PRI2__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA1_GMI_RD_PRI_QUANT_PRI3
+#define MMEA1_GMI_RD_PRI_QUANT_PRI3__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA1_GMI_RD_PRI_QUANT_PRI3__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA1_GMI_RD_PRI_QUANT_PRI3__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA1_GMI_RD_PRI_QUANT_PRI3__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA1_GMI_RD_PRI_QUANT_PRI3__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA1_GMI_RD_PRI_QUANT_PRI3__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA1_GMI_RD_PRI_QUANT_PRI3__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA1_GMI_RD_PRI_QUANT_PRI3__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA1_GMI_WR_PRI_QUANT_PRI1
+#define MMEA1_GMI_WR_PRI_QUANT_PRI1__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA1_GMI_WR_PRI_QUANT_PRI1__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA1_GMI_WR_PRI_QUANT_PRI1__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA1_GMI_WR_PRI_QUANT_PRI1__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA1_GMI_WR_PRI_QUANT_PRI1__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA1_GMI_WR_PRI_QUANT_PRI1__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA1_GMI_WR_PRI_QUANT_PRI1__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA1_GMI_WR_PRI_QUANT_PRI1__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA1_GMI_WR_PRI_QUANT_PRI2
+#define MMEA1_GMI_WR_PRI_QUANT_PRI2__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA1_GMI_WR_PRI_QUANT_PRI2__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA1_GMI_WR_PRI_QUANT_PRI2__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA1_GMI_WR_PRI_QUANT_PRI2__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA1_GMI_WR_PRI_QUANT_PRI2__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA1_GMI_WR_PRI_QUANT_PRI2__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA1_GMI_WR_PRI_QUANT_PRI2__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA1_GMI_WR_PRI_QUANT_PRI2__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA1_GMI_WR_PRI_QUANT_PRI3
+#define MMEA1_GMI_WR_PRI_QUANT_PRI3__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA1_GMI_WR_PRI_QUANT_PRI3__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA1_GMI_WR_PRI_QUANT_PRI3__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA1_GMI_WR_PRI_QUANT_PRI3__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA1_GMI_WR_PRI_QUANT_PRI3__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA1_GMI_WR_PRI_QUANT_PRI3__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA1_GMI_WR_PRI_QUANT_PRI3__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA1_GMI_WR_PRI_QUANT_PRI3__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA1_IO_RD_CLI2GRP_MAP0
+#define MMEA1_IO_RD_CLI2GRP_MAP0__CID0_GROUP__SHIFT 0x0
+#define MMEA1_IO_RD_CLI2GRP_MAP0__CID1_GROUP__SHIFT 0x2
+#define MMEA1_IO_RD_CLI2GRP_MAP0__CID2_GROUP__SHIFT 0x4
+#define MMEA1_IO_RD_CLI2GRP_MAP0__CID3_GROUP__SHIFT 0x6
+#define MMEA1_IO_RD_CLI2GRP_MAP0__CID4_GROUP__SHIFT 0x8
+#define MMEA1_IO_RD_CLI2GRP_MAP0__CID5_GROUP__SHIFT 0xa
+#define MMEA1_IO_RD_CLI2GRP_MAP0__CID6_GROUP__SHIFT 0xc
+#define MMEA1_IO_RD_CLI2GRP_MAP0__CID7_GROUP__SHIFT 0xe
+#define MMEA1_IO_RD_CLI2GRP_MAP0__CID8_GROUP__SHIFT 0x10
+#define MMEA1_IO_RD_CLI2GRP_MAP0__CID9_GROUP__SHIFT 0x12
+#define MMEA1_IO_RD_CLI2GRP_MAP0__CID10_GROUP__SHIFT 0x14
+#define MMEA1_IO_RD_CLI2GRP_MAP0__CID11_GROUP__SHIFT 0x16
+#define MMEA1_IO_RD_CLI2GRP_MAP0__CID12_GROUP__SHIFT 0x18
+#define MMEA1_IO_RD_CLI2GRP_MAP0__CID13_GROUP__SHIFT 0x1a
+#define MMEA1_IO_RD_CLI2GRP_MAP0__CID14_GROUP__SHIFT 0x1c
+#define MMEA1_IO_RD_CLI2GRP_MAP0__CID15_GROUP__SHIFT 0x1e
+#define MMEA1_IO_RD_CLI2GRP_MAP0__CID0_GROUP_MASK 0x00000003L
+#define MMEA1_IO_RD_CLI2GRP_MAP0__CID1_GROUP_MASK 0x0000000CL
+#define MMEA1_IO_RD_CLI2GRP_MAP0__CID2_GROUP_MASK 0x00000030L
+#define MMEA1_IO_RD_CLI2GRP_MAP0__CID3_GROUP_MASK 0x000000C0L
+#define MMEA1_IO_RD_CLI2GRP_MAP0__CID4_GROUP_MASK 0x00000300L
+#define MMEA1_IO_RD_CLI2GRP_MAP0__CID5_GROUP_MASK 0x00000C00L
+#define MMEA1_IO_RD_CLI2GRP_MAP0__CID6_GROUP_MASK 0x00003000L
+#define MMEA1_IO_RD_CLI2GRP_MAP0__CID7_GROUP_MASK 0x0000C000L
+#define MMEA1_IO_RD_CLI2GRP_MAP0__CID8_GROUP_MASK 0x00030000L
+#define MMEA1_IO_RD_CLI2GRP_MAP0__CID9_GROUP_MASK 0x000C0000L
+#define MMEA1_IO_RD_CLI2GRP_MAP0__CID10_GROUP_MASK 0x00300000L
+#define MMEA1_IO_RD_CLI2GRP_MAP0__CID11_GROUP_MASK 0x00C00000L
+#define MMEA1_IO_RD_CLI2GRP_MAP0__CID12_GROUP_MASK 0x03000000L
+#define MMEA1_IO_RD_CLI2GRP_MAP0__CID13_GROUP_MASK 0x0C000000L
+#define MMEA1_IO_RD_CLI2GRP_MAP0__CID14_GROUP_MASK 0x30000000L
+#define MMEA1_IO_RD_CLI2GRP_MAP0__CID15_GROUP_MASK 0xC0000000L
+//MMEA1_IO_RD_CLI2GRP_MAP1
+#define MMEA1_IO_RD_CLI2GRP_MAP1__CID16_GROUP__SHIFT 0x0
+#define MMEA1_IO_RD_CLI2GRP_MAP1__CID17_GROUP__SHIFT 0x2
+#define MMEA1_IO_RD_CLI2GRP_MAP1__CID18_GROUP__SHIFT 0x4
+#define MMEA1_IO_RD_CLI2GRP_MAP1__CID19_GROUP__SHIFT 0x6
+#define MMEA1_IO_RD_CLI2GRP_MAP1__CID20_GROUP__SHIFT 0x8
+#define MMEA1_IO_RD_CLI2GRP_MAP1__CID21_GROUP__SHIFT 0xa
+#define MMEA1_IO_RD_CLI2GRP_MAP1__CID22_GROUP__SHIFT 0xc
+#define MMEA1_IO_RD_CLI2GRP_MAP1__CID23_GROUP__SHIFT 0xe
+#define MMEA1_IO_RD_CLI2GRP_MAP1__CID24_GROUP__SHIFT 0x10
+#define MMEA1_IO_RD_CLI2GRP_MAP1__CID25_GROUP__SHIFT 0x12
+#define MMEA1_IO_RD_CLI2GRP_MAP1__CID26_GROUP__SHIFT 0x14
+#define MMEA1_IO_RD_CLI2GRP_MAP1__CID27_GROUP__SHIFT 0x16
+#define MMEA1_IO_RD_CLI2GRP_MAP1__CID28_GROUP__SHIFT 0x18
+#define MMEA1_IO_RD_CLI2GRP_MAP1__CID29_GROUP__SHIFT 0x1a
+#define MMEA1_IO_RD_CLI2GRP_MAP1__CID30_GROUP__SHIFT 0x1c
+#define MMEA1_IO_RD_CLI2GRP_MAP1__CID31_GROUP__SHIFT 0x1e
+#define MMEA1_IO_RD_CLI2GRP_MAP1__CID16_GROUP_MASK 0x00000003L
+#define MMEA1_IO_RD_CLI2GRP_MAP1__CID17_GROUP_MASK 0x0000000CL
+#define MMEA1_IO_RD_CLI2GRP_MAP1__CID18_GROUP_MASK 0x00000030L
+#define MMEA1_IO_RD_CLI2GRP_MAP1__CID19_GROUP_MASK 0x000000C0L
+#define MMEA1_IO_RD_CLI2GRP_MAP1__CID20_GROUP_MASK 0x00000300L
+#define MMEA1_IO_RD_CLI2GRP_MAP1__CID21_GROUP_MASK 0x00000C00L
+#define MMEA1_IO_RD_CLI2GRP_MAP1__CID22_GROUP_MASK 0x00003000L
+#define MMEA1_IO_RD_CLI2GRP_MAP1__CID23_GROUP_MASK 0x0000C000L
+#define MMEA1_IO_RD_CLI2GRP_MAP1__CID24_GROUP_MASK 0x00030000L
+#define MMEA1_IO_RD_CLI2GRP_MAP1__CID25_GROUP_MASK 0x000C0000L
+#define MMEA1_IO_RD_CLI2GRP_MAP1__CID26_GROUP_MASK 0x00300000L
+#define MMEA1_IO_RD_CLI2GRP_MAP1__CID27_GROUP_MASK 0x00C00000L
+#define MMEA1_IO_RD_CLI2GRP_MAP1__CID28_GROUP_MASK 0x03000000L
+#define MMEA1_IO_RD_CLI2GRP_MAP1__CID29_GROUP_MASK 0x0C000000L
+#define MMEA1_IO_RD_CLI2GRP_MAP1__CID30_GROUP_MASK 0x30000000L
+#define MMEA1_IO_RD_CLI2GRP_MAP1__CID31_GROUP_MASK 0xC0000000L
+//MMEA1_IO_WR_CLI2GRP_MAP0
+#define MMEA1_IO_WR_CLI2GRP_MAP0__CID0_GROUP__SHIFT 0x0
+#define MMEA1_IO_WR_CLI2GRP_MAP0__CID1_GROUP__SHIFT 0x2
+#define MMEA1_IO_WR_CLI2GRP_MAP0__CID2_GROUP__SHIFT 0x4
+#define MMEA1_IO_WR_CLI2GRP_MAP0__CID3_GROUP__SHIFT 0x6
+#define MMEA1_IO_WR_CLI2GRP_MAP0__CID4_GROUP__SHIFT 0x8
+#define MMEA1_IO_WR_CLI2GRP_MAP0__CID5_GROUP__SHIFT 0xa
+#define MMEA1_IO_WR_CLI2GRP_MAP0__CID6_GROUP__SHIFT 0xc
+#define MMEA1_IO_WR_CLI2GRP_MAP0__CID7_GROUP__SHIFT 0xe
+#define MMEA1_IO_WR_CLI2GRP_MAP0__CID8_GROUP__SHIFT 0x10
+#define MMEA1_IO_WR_CLI2GRP_MAP0__CID9_GROUP__SHIFT 0x12
+#define MMEA1_IO_WR_CLI2GRP_MAP0__CID10_GROUP__SHIFT 0x14
+#define MMEA1_IO_WR_CLI2GRP_MAP0__CID11_GROUP__SHIFT 0x16
+#define MMEA1_IO_WR_CLI2GRP_MAP0__CID12_GROUP__SHIFT 0x18
+#define MMEA1_IO_WR_CLI2GRP_MAP0__CID13_GROUP__SHIFT 0x1a
+#define MMEA1_IO_WR_CLI2GRP_MAP0__CID14_GROUP__SHIFT 0x1c
+#define MMEA1_IO_WR_CLI2GRP_MAP0__CID15_GROUP__SHIFT 0x1e
+#define MMEA1_IO_WR_CLI2GRP_MAP0__CID0_GROUP_MASK 0x00000003L
+#define MMEA1_IO_WR_CLI2GRP_MAP0__CID1_GROUP_MASK 0x0000000CL
+#define MMEA1_IO_WR_CLI2GRP_MAP0__CID2_GROUP_MASK 0x00000030L
+#define MMEA1_IO_WR_CLI2GRP_MAP0__CID3_GROUP_MASK 0x000000C0L
+#define MMEA1_IO_WR_CLI2GRP_MAP0__CID4_GROUP_MASK 0x00000300L
+#define MMEA1_IO_WR_CLI2GRP_MAP0__CID5_GROUP_MASK 0x00000C00L
+#define MMEA1_IO_WR_CLI2GRP_MAP0__CID6_GROUP_MASK 0x00003000L
+#define MMEA1_IO_WR_CLI2GRP_MAP0__CID7_GROUP_MASK 0x0000C000L
+#define MMEA1_IO_WR_CLI2GRP_MAP0__CID8_GROUP_MASK 0x00030000L
+#define MMEA1_IO_WR_CLI2GRP_MAP0__CID9_GROUP_MASK 0x000C0000L
+#define MMEA1_IO_WR_CLI2GRP_MAP0__CID10_GROUP_MASK 0x00300000L
+#define MMEA1_IO_WR_CLI2GRP_MAP0__CID11_GROUP_MASK 0x00C00000L
+#define MMEA1_IO_WR_CLI2GRP_MAP0__CID12_GROUP_MASK 0x03000000L
+#define MMEA1_IO_WR_CLI2GRP_MAP0__CID13_GROUP_MASK 0x0C000000L
+#define MMEA1_IO_WR_CLI2GRP_MAP0__CID14_GROUP_MASK 0x30000000L
+#define MMEA1_IO_WR_CLI2GRP_MAP0__CID15_GROUP_MASK 0xC0000000L
+//MMEA1_IO_WR_CLI2GRP_MAP1
+#define MMEA1_IO_WR_CLI2GRP_MAP1__CID16_GROUP__SHIFT 0x0
+#define MMEA1_IO_WR_CLI2GRP_MAP1__CID17_GROUP__SHIFT 0x2
+#define MMEA1_IO_WR_CLI2GRP_MAP1__CID18_GROUP__SHIFT 0x4
+#define MMEA1_IO_WR_CLI2GRP_MAP1__CID19_GROUP__SHIFT 0x6
+#define MMEA1_IO_WR_CLI2GRP_MAP1__CID20_GROUP__SHIFT 0x8
+#define MMEA1_IO_WR_CLI2GRP_MAP1__CID21_GROUP__SHIFT 0xa
+#define MMEA1_IO_WR_CLI2GRP_MAP1__CID22_GROUP__SHIFT 0xc
+#define MMEA1_IO_WR_CLI2GRP_MAP1__CID23_GROUP__SHIFT 0xe
+#define MMEA1_IO_WR_CLI2GRP_MAP1__CID24_GROUP__SHIFT 0x10
+#define MMEA1_IO_WR_CLI2GRP_MAP1__CID25_GROUP__SHIFT 0x12
+#define MMEA1_IO_WR_CLI2GRP_MAP1__CID26_GROUP__SHIFT 0x14
+#define MMEA1_IO_WR_CLI2GRP_MAP1__CID27_GROUP__SHIFT 0x16
+#define MMEA1_IO_WR_CLI2GRP_MAP1__CID28_GROUP__SHIFT 0x18
+#define MMEA1_IO_WR_CLI2GRP_MAP1__CID29_GROUP__SHIFT 0x1a
+#define MMEA1_IO_WR_CLI2GRP_MAP1__CID30_GROUP__SHIFT 0x1c
+#define MMEA1_IO_WR_CLI2GRP_MAP1__CID31_GROUP__SHIFT 0x1e
+#define MMEA1_IO_WR_CLI2GRP_MAP1__CID16_GROUP_MASK 0x00000003L
+#define MMEA1_IO_WR_CLI2GRP_MAP1__CID17_GROUP_MASK 0x0000000CL
+#define MMEA1_IO_WR_CLI2GRP_MAP1__CID18_GROUP_MASK 0x00000030L
+#define MMEA1_IO_WR_CLI2GRP_MAP1__CID19_GROUP_MASK 0x000000C0L
+#define MMEA1_IO_WR_CLI2GRP_MAP1__CID20_GROUP_MASK 0x00000300L
+#define MMEA1_IO_WR_CLI2GRP_MAP1__CID21_GROUP_MASK 0x00000C00L
+#define MMEA1_IO_WR_CLI2GRP_MAP1__CID22_GROUP_MASK 0x00003000L
+#define MMEA1_IO_WR_CLI2GRP_MAP1__CID23_GROUP_MASK 0x0000C000L
+#define MMEA1_IO_WR_CLI2GRP_MAP1__CID24_GROUP_MASK 0x00030000L
+#define MMEA1_IO_WR_CLI2GRP_MAP1__CID25_GROUP_MASK 0x000C0000L
+#define MMEA1_IO_WR_CLI2GRP_MAP1__CID26_GROUP_MASK 0x00300000L
+#define MMEA1_IO_WR_CLI2GRP_MAP1__CID27_GROUP_MASK 0x00C00000L
+#define MMEA1_IO_WR_CLI2GRP_MAP1__CID28_GROUP_MASK 0x03000000L
+#define MMEA1_IO_WR_CLI2GRP_MAP1__CID29_GROUP_MASK 0x0C000000L
+#define MMEA1_IO_WR_CLI2GRP_MAP1__CID30_GROUP_MASK 0x30000000L
+#define MMEA1_IO_WR_CLI2GRP_MAP1__CID31_GROUP_MASK 0xC0000000L
+//MMEA1_IO_RD_COMBINE_FLUSH
+#define MMEA1_IO_RD_COMBINE_FLUSH__GROUP0_TIMER__SHIFT 0x0
+#define MMEA1_IO_RD_COMBINE_FLUSH__GROUP1_TIMER__SHIFT 0x4
+#define MMEA1_IO_RD_COMBINE_FLUSH__GROUP2_TIMER__SHIFT 0x8
+#define MMEA1_IO_RD_COMBINE_FLUSH__GROUP3_TIMER__SHIFT 0xc
+#define MMEA1_IO_RD_COMBINE_FLUSH__COMB_MODE__SHIFT 0x10
+#define MMEA1_IO_RD_COMBINE_FLUSH__GROUP0_TIMER_MASK 0x0000000FL
+#define MMEA1_IO_RD_COMBINE_FLUSH__GROUP1_TIMER_MASK 0x000000F0L
+#define MMEA1_IO_RD_COMBINE_FLUSH__GROUP2_TIMER_MASK 0x00000F00L
+#define MMEA1_IO_RD_COMBINE_FLUSH__GROUP3_TIMER_MASK 0x0000F000L
+#define MMEA1_IO_RD_COMBINE_FLUSH__COMB_MODE_MASK 0x00030000L
+//MMEA1_IO_WR_COMBINE_FLUSH
+#define MMEA1_IO_WR_COMBINE_FLUSH__GROUP0_TIMER__SHIFT 0x0
+#define MMEA1_IO_WR_COMBINE_FLUSH__GROUP1_TIMER__SHIFT 0x4
+#define MMEA1_IO_WR_COMBINE_FLUSH__GROUP2_TIMER__SHIFT 0x8
+#define MMEA1_IO_WR_COMBINE_FLUSH__GROUP3_TIMER__SHIFT 0xc
+#define MMEA1_IO_WR_COMBINE_FLUSH__COMB_MODE__SHIFT 0x10
+#define MMEA1_IO_WR_COMBINE_FLUSH__GROUP0_TIMER_MASK 0x0000000FL
+#define MMEA1_IO_WR_COMBINE_FLUSH__GROUP1_TIMER_MASK 0x000000F0L
+#define MMEA1_IO_WR_COMBINE_FLUSH__GROUP2_TIMER_MASK 0x00000F00L
+#define MMEA1_IO_WR_COMBINE_FLUSH__GROUP3_TIMER_MASK 0x0000F000L
+#define MMEA1_IO_WR_COMBINE_FLUSH__COMB_MODE_MASK 0x00030000L
+//MMEA1_IO_GROUP_BURST
+#define MMEA1_IO_GROUP_BURST__RD_LIMIT_LO__SHIFT 0x0
+#define MMEA1_IO_GROUP_BURST__RD_LIMIT_HI__SHIFT 0x8
+#define MMEA1_IO_GROUP_BURST__WR_LIMIT_LO__SHIFT 0x10
+#define MMEA1_IO_GROUP_BURST__WR_LIMIT_HI__SHIFT 0x18
+#define MMEA1_IO_GROUP_BURST__RD_LIMIT_LO_MASK 0x000000FFL
+#define MMEA1_IO_GROUP_BURST__RD_LIMIT_HI_MASK 0x0000FF00L
+#define MMEA1_IO_GROUP_BURST__WR_LIMIT_LO_MASK 0x00FF0000L
+#define MMEA1_IO_GROUP_BURST__WR_LIMIT_HI_MASK 0xFF000000L
+//MMEA1_IO_RD_PRI_AGE
+#define MMEA1_IO_RD_PRI_AGE__GROUP0_AGING_RATE__SHIFT 0x0
+#define MMEA1_IO_RD_PRI_AGE__GROUP1_AGING_RATE__SHIFT 0x3
+#define MMEA1_IO_RD_PRI_AGE__GROUP2_AGING_RATE__SHIFT 0x6
+#define MMEA1_IO_RD_PRI_AGE__GROUP3_AGING_RATE__SHIFT 0x9
+#define MMEA1_IO_RD_PRI_AGE__GROUP0_AGE_COEFFICIENT__SHIFT 0xc
+#define MMEA1_IO_RD_PRI_AGE__GROUP1_AGE_COEFFICIENT__SHIFT 0xf
+#define MMEA1_IO_RD_PRI_AGE__GROUP2_AGE_COEFFICIENT__SHIFT 0x12
+#define MMEA1_IO_RD_PRI_AGE__GROUP3_AGE_COEFFICIENT__SHIFT 0x15
+#define MMEA1_IO_RD_PRI_AGE__GROUP0_AGING_RATE_MASK 0x00000007L
+#define MMEA1_IO_RD_PRI_AGE__GROUP1_AGING_RATE_MASK 0x00000038L
+#define MMEA1_IO_RD_PRI_AGE__GROUP2_AGING_RATE_MASK 0x000001C0L
+#define MMEA1_IO_RD_PRI_AGE__GROUP3_AGING_RATE_MASK 0x00000E00L
+#define MMEA1_IO_RD_PRI_AGE__GROUP0_AGE_COEFFICIENT_MASK 0x00007000L
+#define MMEA1_IO_RD_PRI_AGE__GROUP1_AGE_COEFFICIENT_MASK 0x00038000L
+#define MMEA1_IO_RD_PRI_AGE__GROUP2_AGE_COEFFICIENT_MASK 0x001C0000L
+#define MMEA1_IO_RD_PRI_AGE__GROUP3_AGE_COEFFICIENT_MASK 0x00E00000L
+//MMEA1_IO_WR_PRI_AGE
+#define MMEA1_IO_WR_PRI_AGE__GROUP0_AGING_RATE__SHIFT 0x0
+#define MMEA1_IO_WR_PRI_AGE__GROUP1_AGING_RATE__SHIFT 0x3
+#define MMEA1_IO_WR_PRI_AGE__GROUP2_AGING_RATE__SHIFT 0x6
+#define MMEA1_IO_WR_PRI_AGE__GROUP3_AGING_RATE__SHIFT 0x9
+#define MMEA1_IO_WR_PRI_AGE__GROUP0_AGE_COEFFICIENT__SHIFT 0xc
+#define MMEA1_IO_WR_PRI_AGE__GROUP1_AGE_COEFFICIENT__SHIFT 0xf
+#define MMEA1_IO_WR_PRI_AGE__GROUP2_AGE_COEFFICIENT__SHIFT 0x12
+#define MMEA1_IO_WR_PRI_AGE__GROUP3_AGE_COEFFICIENT__SHIFT 0x15
+#define MMEA1_IO_WR_PRI_AGE__GROUP0_AGING_RATE_MASK 0x00000007L
+#define MMEA1_IO_WR_PRI_AGE__GROUP1_AGING_RATE_MASK 0x00000038L
+#define MMEA1_IO_WR_PRI_AGE__GROUP2_AGING_RATE_MASK 0x000001C0L
+#define MMEA1_IO_WR_PRI_AGE__GROUP3_AGING_RATE_MASK 0x00000E00L
+#define MMEA1_IO_WR_PRI_AGE__GROUP0_AGE_COEFFICIENT_MASK 0x00007000L
+#define MMEA1_IO_WR_PRI_AGE__GROUP1_AGE_COEFFICIENT_MASK 0x00038000L
+#define MMEA1_IO_WR_PRI_AGE__GROUP2_AGE_COEFFICIENT_MASK 0x001C0000L
+#define MMEA1_IO_WR_PRI_AGE__GROUP3_AGE_COEFFICIENT_MASK 0x00E00000L
+//MMEA1_IO_RD_PRI_QUEUING
+#define MMEA1_IO_RD_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT__SHIFT 0x0
+#define MMEA1_IO_RD_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT__SHIFT 0x3
+#define MMEA1_IO_RD_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT__SHIFT 0x6
+#define MMEA1_IO_RD_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT__SHIFT 0x9
+#define MMEA1_IO_RD_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT_MASK 0x00000007L
+#define MMEA1_IO_RD_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT_MASK 0x00000038L
+#define MMEA1_IO_RD_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT_MASK 0x000001C0L
+#define MMEA1_IO_RD_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT_MASK 0x00000E00L
+//MMEA1_IO_WR_PRI_QUEUING
+#define MMEA1_IO_WR_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT__SHIFT 0x0
+#define MMEA1_IO_WR_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT__SHIFT 0x3
+#define MMEA1_IO_WR_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT__SHIFT 0x6
+#define MMEA1_IO_WR_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT__SHIFT 0x9
+#define MMEA1_IO_WR_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT_MASK 0x00000007L
+#define MMEA1_IO_WR_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT_MASK 0x00000038L
+#define MMEA1_IO_WR_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT_MASK 0x000001C0L
+#define MMEA1_IO_WR_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT_MASK 0x00000E00L
+//MMEA1_IO_RD_PRI_FIXED
+#define MMEA1_IO_RD_PRI_FIXED__GROUP0_FIXED_COEFFICIENT__SHIFT 0x0
+#define MMEA1_IO_RD_PRI_FIXED__GROUP1_FIXED_COEFFICIENT__SHIFT 0x3
+#define MMEA1_IO_RD_PRI_FIXED__GROUP2_FIXED_COEFFICIENT__SHIFT 0x6
+#define MMEA1_IO_RD_PRI_FIXED__GROUP3_FIXED_COEFFICIENT__SHIFT 0x9
+#define MMEA1_IO_RD_PRI_FIXED__GROUP0_FIXED_COEFFICIENT_MASK 0x00000007L
+#define MMEA1_IO_RD_PRI_FIXED__GROUP1_FIXED_COEFFICIENT_MASK 0x00000038L
+#define MMEA1_IO_RD_PRI_FIXED__GROUP2_FIXED_COEFFICIENT_MASK 0x000001C0L
+#define MMEA1_IO_RD_PRI_FIXED__GROUP3_FIXED_COEFFICIENT_MASK 0x00000E00L
+//MMEA1_IO_WR_PRI_FIXED
+#define MMEA1_IO_WR_PRI_FIXED__GROUP0_FIXED_COEFFICIENT__SHIFT 0x0
+#define MMEA1_IO_WR_PRI_FIXED__GROUP1_FIXED_COEFFICIENT__SHIFT 0x3
+#define MMEA1_IO_WR_PRI_FIXED__GROUP2_FIXED_COEFFICIENT__SHIFT 0x6
+#define MMEA1_IO_WR_PRI_FIXED__GROUP3_FIXED_COEFFICIENT__SHIFT 0x9
+#define MMEA1_IO_WR_PRI_FIXED__GROUP0_FIXED_COEFFICIENT_MASK 0x00000007L
+#define MMEA1_IO_WR_PRI_FIXED__GROUP1_FIXED_COEFFICIENT_MASK 0x00000038L
+#define MMEA1_IO_WR_PRI_FIXED__GROUP2_FIXED_COEFFICIENT_MASK 0x000001C0L
+#define MMEA1_IO_WR_PRI_FIXED__GROUP3_FIXED_COEFFICIENT_MASK 0x00000E00L
+//MMEA1_IO_RD_PRI_URGENCY
+#define MMEA1_IO_RD_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT__SHIFT 0x0
+#define MMEA1_IO_RD_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT__SHIFT 0x3
+#define MMEA1_IO_RD_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT__SHIFT 0x6
+#define MMEA1_IO_RD_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT__SHIFT 0x9
+#define MMEA1_IO_RD_PRI_URGENCY__GROUP0_URGENCY_MODE__SHIFT 0xc
+#define MMEA1_IO_RD_PRI_URGENCY__GROUP1_URGENCY_MODE__SHIFT 0xd
+#define MMEA1_IO_RD_PRI_URGENCY__GROUP2_URGENCY_MODE__SHIFT 0xe
+#define MMEA1_IO_RD_PRI_URGENCY__GROUP3_URGENCY_MODE__SHIFT 0xf
+#define MMEA1_IO_RD_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT_MASK 0x00000007L
+#define MMEA1_IO_RD_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT_MASK 0x00000038L
+#define MMEA1_IO_RD_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT_MASK 0x000001C0L
+#define MMEA1_IO_RD_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT_MASK 0x00000E00L
+#define MMEA1_IO_RD_PRI_URGENCY__GROUP0_URGENCY_MODE_MASK 0x00001000L
+#define MMEA1_IO_RD_PRI_URGENCY__GROUP1_URGENCY_MODE_MASK 0x00002000L
+#define MMEA1_IO_RD_PRI_URGENCY__GROUP2_URGENCY_MODE_MASK 0x00004000L
+#define MMEA1_IO_RD_PRI_URGENCY__GROUP3_URGENCY_MODE_MASK 0x00008000L
+//MMEA1_IO_WR_PRI_URGENCY
+#define MMEA1_IO_WR_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT__SHIFT 0x0
+#define MMEA1_IO_WR_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT__SHIFT 0x3
+#define MMEA1_IO_WR_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT__SHIFT 0x6
+#define MMEA1_IO_WR_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT__SHIFT 0x9
+#define MMEA1_IO_WR_PRI_URGENCY__GROUP0_URGENCY_MODE__SHIFT 0xc
+#define MMEA1_IO_WR_PRI_URGENCY__GROUP1_URGENCY_MODE__SHIFT 0xd
+#define MMEA1_IO_WR_PRI_URGENCY__GROUP2_URGENCY_MODE__SHIFT 0xe
+#define MMEA1_IO_WR_PRI_URGENCY__GROUP3_URGENCY_MODE__SHIFT 0xf
+#define MMEA1_IO_WR_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT_MASK 0x00000007L
+#define MMEA1_IO_WR_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT_MASK 0x00000038L
+#define MMEA1_IO_WR_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT_MASK 0x000001C0L
+#define MMEA1_IO_WR_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT_MASK 0x00000E00L
+#define MMEA1_IO_WR_PRI_URGENCY__GROUP0_URGENCY_MODE_MASK 0x00001000L
+#define MMEA1_IO_WR_PRI_URGENCY__GROUP1_URGENCY_MODE_MASK 0x00002000L
+#define MMEA1_IO_WR_PRI_URGENCY__GROUP2_URGENCY_MODE_MASK 0x00004000L
+#define MMEA1_IO_WR_PRI_URGENCY__GROUP3_URGENCY_MODE_MASK 0x00008000L
+//MMEA1_IO_RD_PRI_URGENCY_MASKING
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID0_MASK__SHIFT 0x0
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID1_MASK__SHIFT 0x1
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID2_MASK__SHIFT 0x2
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID3_MASK__SHIFT 0x3
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID4_MASK__SHIFT 0x4
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID5_MASK__SHIFT 0x5
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID6_MASK__SHIFT 0x6
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID7_MASK__SHIFT 0x7
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID8_MASK__SHIFT 0x8
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID9_MASK__SHIFT 0x9
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID10_MASK__SHIFT 0xa
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID11_MASK__SHIFT 0xb
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID12_MASK__SHIFT 0xc
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID13_MASK__SHIFT 0xd
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID14_MASK__SHIFT 0xe
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID15_MASK__SHIFT 0xf
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID16_MASK__SHIFT 0x10
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID17_MASK__SHIFT 0x11
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID18_MASK__SHIFT 0x12
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID19_MASK__SHIFT 0x13
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID20_MASK__SHIFT 0x14
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID21_MASK__SHIFT 0x15
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID22_MASK__SHIFT 0x16
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID23_MASK__SHIFT 0x17
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID24_MASK__SHIFT 0x18
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID25_MASK__SHIFT 0x19
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID26_MASK__SHIFT 0x1a
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID27_MASK__SHIFT 0x1b
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID28_MASK__SHIFT 0x1c
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID29_MASK__SHIFT 0x1d
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID30_MASK__SHIFT 0x1e
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID31_MASK__SHIFT 0x1f
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID0_MASK_MASK 0x00000001L
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID1_MASK_MASK 0x00000002L
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID2_MASK_MASK 0x00000004L
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID3_MASK_MASK 0x00000008L
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID4_MASK_MASK 0x00000010L
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID5_MASK_MASK 0x00000020L
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID6_MASK_MASK 0x00000040L
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID7_MASK_MASK 0x00000080L
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID8_MASK_MASK 0x00000100L
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID9_MASK_MASK 0x00000200L
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID10_MASK_MASK 0x00000400L
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID11_MASK_MASK 0x00000800L
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID12_MASK_MASK 0x00001000L
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID13_MASK_MASK 0x00002000L
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID14_MASK_MASK 0x00004000L
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID15_MASK_MASK 0x00008000L
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID16_MASK_MASK 0x00010000L
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID17_MASK_MASK 0x00020000L
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID18_MASK_MASK 0x00040000L
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID19_MASK_MASK 0x00080000L
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID20_MASK_MASK 0x00100000L
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID21_MASK_MASK 0x00200000L
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID22_MASK_MASK 0x00400000L
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID23_MASK_MASK 0x00800000L
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID24_MASK_MASK 0x01000000L
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID25_MASK_MASK 0x02000000L
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID26_MASK_MASK 0x04000000L
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID27_MASK_MASK 0x08000000L
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID28_MASK_MASK 0x10000000L
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID29_MASK_MASK 0x20000000L
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID30_MASK_MASK 0x40000000L
+#define MMEA1_IO_RD_PRI_URGENCY_MASKING__CID31_MASK_MASK 0x80000000L
+//MMEA1_IO_WR_PRI_URGENCY_MASKING
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID0_MASK__SHIFT 0x0
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID1_MASK__SHIFT 0x1
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID2_MASK__SHIFT 0x2
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID3_MASK__SHIFT 0x3
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID4_MASK__SHIFT 0x4
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID5_MASK__SHIFT 0x5
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID6_MASK__SHIFT 0x6
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID7_MASK__SHIFT 0x7
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID8_MASK__SHIFT 0x8
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID9_MASK__SHIFT 0x9
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID10_MASK__SHIFT 0xa
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID11_MASK__SHIFT 0xb
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID12_MASK__SHIFT 0xc
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID13_MASK__SHIFT 0xd
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID14_MASK__SHIFT 0xe
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID15_MASK__SHIFT 0xf
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID16_MASK__SHIFT 0x10
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID17_MASK__SHIFT 0x11
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID18_MASK__SHIFT 0x12
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID19_MASK__SHIFT 0x13
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID20_MASK__SHIFT 0x14
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID21_MASK__SHIFT 0x15
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID22_MASK__SHIFT 0x16
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID23_MASK__SHIFT 0x17
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID24_MASK__SHIFT 0x18
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID25_MASK__SHIFT 0x19
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID26_MASK__SHIFT 0x1a
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID27_MASK__SHIFT 0x1b
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID28_MASK__SHIFT 0x1c
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID29_MASK__SHIFT 0x1d
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID30_MASK__SHIFT 0x1e
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID31_MASK__SHIFT 0x1f
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID0_MASK_MASK 0x00000001L
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID1_MASK_MASK 0x00000002L
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID2_MASK_MASK 0x00000004L
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID3_MASK_MASK 0x00000008L
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID4_MASK_MASK 0x00000010L
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID5_MASK_MASK 0x00000020L
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID6_MASK_MASK 0x00000040L
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID7_MASK_MASK 0x00000080L
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID8_MASK_MASK 0x00000100L
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID9_MASK_MASK 0x00000200L
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID10_MASK_MASK 0x00000400L
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID11_MASK_MASK 0x00000800L
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID12_MASK_MASK 0x00001000L
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID13_MASK_MASK 0x00002000L
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID14_MASK_MASK 0x00004000L
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID15_MASK_MASK 0x00008000L
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID16_MASK_MASK 0x00010000L
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID17_MASK_MASK 0x00020000L
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID18_MASK_MASK 0x00040000L
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID19_MASK_MASK 0x00080000L
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID20_MASK_MASK 0x00100000L
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID21_MASK_MASK 0x00200000L
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID22_MASK_MASK 0x00400000L
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID23_MASK_MASK 0x00800000L
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID24_MASK_MASK 0x01000000L
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID25_MASK_MASK 0x02000000L
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID26_MASK_MASK 0x04000000L
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID27_MASK_MASK 0x08000000L
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID28_MASK_MASK 0x10000000L
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID29_MASK_MASK 0x20000000L
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID30_MASK_MASK 0x40000000L
+#define MMEA1_IO_WR_PRI_URGENCY_MASKING__CID31_MASK_MASK 0x80000000L
+//MMEA1_IO_RD_PRI_QUANT_PRI1
+#define MMEA1_IO_RD_PRI_QUANT_PRI1__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA1_IO_RD_PRI_QUANT_PRI1__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA1_IO_RD_PRI_QUANT_PRI1__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA1_IO_RD_PRI_QUANT_PRI1__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA1_IO_RD_PRI_QUANT_PRI1__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA1_IO_RD_PRI_QUANT_PRI1__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA1_IO_RD_PRI_QUANT_PRI1__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA1_IO_RD_PRI_QUANT_PRI1__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA1_IO_RD_PRI_QUANT_PRI2
+#define MMEA1_IO_RD_PRI_QUANT_PRI2__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA1_IO_RD_PRI_QUANT_PRI2__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA1_IO_RD_PRI_QUANT_PRI2__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA1_IO_RD_PRI_QUANT_PRI2__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA1_IO_RD_PRI_QUANT_PRI2__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA1_IO_RD_PRI_QUANT_PRI2__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA1_IO_RD_PRI_QUANT_PRI2__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA1_IO_RD_PRI_QUANT_PRI2__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA1_IO_RD_PRI_QUANT_PRI3
+#define MMEA1_IO_RD_PRI_QUANT_PRI3__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA1_IO_RD_PRI_QUANT_PRI3__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA1_IO_RD_PRI_QUANT_PRI3__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA1_IO_RD_PRI_QUANT_PRI3__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA1_IO_RD_PRI_QUANT_PRI3__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA1_IO_RD_PRI_QUANT_PRI3__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA1_IO_RD_PRI_QUANT_PRI3__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA1_IO_RD_PRI_QUANT_PRI3__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA1_IO_WR_PRI_QUANT_PRI1
+#define MMEA1_IO_WR_PRI_QUANT_PRI1__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA1_IO_WR_PRI_QUANT_PRI1__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA1_IO_WR_PRI_QUANT_PRI1__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA1_IO_WR_PRI_QUANT_PRI1__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA1_IO_WR_PRI_QUANT_PRI1__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA1_IO_WR_PRI_QUANT_PRI1__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA1_IO_WR_PRI_QUANT_PRI1__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA1_IO_WR_PRI_QUANT_PRI1__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA1_IO_WR_PRI_QUANT_PRI2
+#define MMEA1_IO_WR_PRI_QUANT_PRI2__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA1_IO_WR_PRI_QUANT_PRI2__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA1_IO_WR_PRI_QUANT_PRI2__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA1_IO_WR_PRI_QUANT_PRI2__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA1_IO_WR_PRI_QUANT_PRI2__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA1_IO_WR_PRI_QUANT_PRI2__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA1_IO_WR_PRI_QUANT_PRI2__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA1_IO_WR_PRI_QUANT_PRI2__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA1_IO_WR_PRI_QUANT_PRI3
+#define MMEA1_IO_WR_PRI_QUANT_PRI3__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA1_IO_WR_PRI_QUANT_PRI3__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA1_IO_WR_PRI_QUANT_PRI3__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA1_IO_WR_PRI_QUANT_PRI3__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA1_IO_WR_PRI_QUANT_PRI3__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA1_IO_WR_PRI_QUANT_PRI3__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA1_IO_WR_PRI_QUANT_PRI3__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA1_IO_WR_PRI_QUANT_PRI3__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA1_SDP_ARB_DRAM
+#define MMEA1_SDP_ARB_DRAM__RDWR_BURST_LIMIT_CYCL__SHIFT 0x0
+#define MMEA1_SDP_ARB_DRAM__RDWR_BURST_LIMIT_DATA__SHIFT 0x8
+#define MMEA1_SDP_ARB_DRAM__EARLY_SW2RD_ON_PRI__SHIFT 0x10
+#define MMEA1_SDP_ARB_DRAM__EARLY_SW2WR_ON_PRI__SHIFT 0x11
+#define MMEA1_SDP_ARB_DRAM__EARLY_SW2RD_ON_RES__SHIFT 0x12
+#define MMEA1_SDP_ARB_DRAM__EARLY_SW2WR_ON_RES__SHIFT 0x13
+#define MMEA1_SDP_ARB_DRAM__EOB_ON_EXPIRE__SHIFT 0x14
+#define MMEA1_SDP_ARB_DRAM__DECOUPLE_RDWR_BNKSTATE__SHIFT 0x15
+#define MMEA1_SDP_ARB_DRAM__ALLOW_CHAIN_BREAKING__SHIFT 0x16
+#define MMEA1_SDP_ARB_DRAM__RDWR_BURST_LIMIT_CYCL_MASK 0x0000007FL
+#define MMEA1_SDP_ARB_DRAM__RDWR_BURST_LIMIT_DATA_MASK 0x00007F00L
+#define MMEA1_SDP_ARB_DRAM__EARLY_SW2RD_ON_PRI_MASK 0x00010000L
+#define MMEA1_SDP_ARB_DRAM__EARLY_SW2WR_ON_PRI_MASK 0x00020000L
+#define MMEA1_SDP_ARB_DRAM__EARLY_SW2RD_ON_RES_MASK 0x00040000L
+#define MMEA1_SDP_ARB_DRAM__EARLY_SW2WR_ON_RES_MASK 0x00080000L
+#define MMEA1_SDP_ARB_DRAM__EOB_ON_EXPIRE_MASK 0x00100000L
+#define MMEA1_SDP_ARB_DRAM__DECOUPLE_RDWR_BNKSTATE_MASK 0x00200000L
+#define MMEA1_SDP_ARB_DRAM__ALLOW_CHAIN_BREAKING_MASK 0x00400000L
+//MMEA1_SDP_ARB_GMI
+#define MMEA1_SDP_ARB_GMI__RDWR_BURST_LIMIT_CYCL__SHIFT 0x0
+#define MMEA1_SDP_ARB_GMI__RDWR_BURST_LIMIT_DATA__SHIFT 0x8
+#define MMEA1_SDP_ARB_GMI__EARLY_SW2RD_ON_PRI__SHIFT 0x10
+#define MMEA1_SDP_ARB_GMI__EARLY_SW2WR_ON_PRI__SHIFT 0x11
+#define MMEA1_SDP_ARB_GMI__EARLY_SW2RD_ON_RES__SHIFT 0x12
+#define MMEA1_SDP_ARB_GMI__EARLY_SW2WR_ON_RES__SHIFT 0x13
+#define MMEA1_SDP_ARB_GMI__EOB_ON_EXPIRE__SHIFT 0x14
+#define MMEA1_SDP_ARB_GMI__DECOUPLE_RDWR_BNKSTATE__SHIFT 0x15
+#define MMEA1_SDP_ARB_GMI__ALLOW_CHAIN_BREAKING__SHIFT 0x16
+#define MMEA1_SDP_ARB_GMI__RDWR_BURST_LIMIT_CYCL_MASK 0x0000007FL
+#define MMEA1_SDP_ARB_GMI__RDWR_BURST_LIMIT_DATA_MASK 0x00007F00L
+#define MMEA1_SDP_ARB_GMI__EARLY_SW2RD_ON_PRI_MASK 0x00010000L
+#define MMEA1_SDP_ARB_GMI__EARLY_SW2WR_ON_PRI_MASK 0x00020000L
+#define MMEA1_SDP_ARB_GMI__EARLY_SW2RD_ON_RES_MASK 0x00040000L
+#define MMEA1_SDP_ARB_GMI__EARLY_SW2WR_ON_RES_MASK 0x00080000L
+#define MMEA1_SDP_ARB_GMI__EOB_ON_EXPIRE_MASK 0x00100000L
+#define MMEA1_SDP_ARB_GMI__DECOUPLE_RDWR_BNKSTATE_MASK 0x00200000L
+#define MMEA1_SDP_ARB_GMI__ALLOW_CHAIN_BREAKING_MASK 0x00400000L
+//MMEA1_SDP_ARB_FINAL
+#define MMEA1_SDP_ARB_FINAL__DRAM_BURST_LIMIT__SHIFT 0x0
+#define MMEA1_SDP_ARB_FINAL__GMI_BURST_LIMIT__SHIFT 0x5
+#define MMEA1_SDP_ARB_FINAL__IO_BURST_LIMIT__SHIFT 0xa
+#define MMEA1_SDP_ARB_FINAL__BURST_LIMIT_MULTIPLIER__SHIFT 0xf
+#define MMEA1_SDP_ARB_FINAL__RDONLY_VC0__SHIFT 0x11
+#define MMEA1_SDP_ARB_FINAL__RDONLY_VC1__SHIFT 0x12
+#define MMEA1_SDP_ARB_FINAL__RDONLY_VC2__SHIFT 0x13
+#define MMEA1_SDP_ARB_FINAL__RDONLY_VC3__SHIFT 0x14
+#define MMEA1_SDP_ARB_FINAL__RDONLY_VC4__SHIFT 0x15
+#define MMEA1_SDP_ARB_FINAL__RDONLY_VC5__SHIFT 0x16
+#define MMEA1_SDP_ARB_FINAL__RDONLY_VC6__SHIFT 0x17
+#define MMEA1_SDP_ARB_FINAL__RDONLY_VC7__SHIFT 0x18
+#define MMEA1_SDP_ARB_FINAL__ERREVENT_ON_ERROR__SHIFT 0x19
+#define MMEA1_SDP_ARB_FINAL__HALTREQ_ON_ERROR__SHIFT 0x1a
+#define MMEA1_SDP_ARB_FINAL__DRAM_BURST_STRETCH__SHIFT 0x1b
+#define MMEA1_SDP_ARB_FINAL__GMI_BURST_STRETCH__SHIFT 0x1c
+#define MMEA1_SDP_ARB_FINAL__DRAM_BURST_LIMIT_MASK 0x0000001FL
+#define MMEA1_SDP_ARB_FINAL__GMI_BURST_LIMIT_MASK 0x000003E0L
+#define MMEA1_SDP_ARB_FINAL__IO_BURST_LIMIT_MASK 0x00007C00L
+#define MMEA1_SDP_ARB_FINAL__BURST_LIMIT_MULTIPLIER_MASK 0x00018000L
+#define MMEA1_SDP_ARB_FINAL__RDONLY_VC0_MASK 0x00020000L
+#define MMEA1_SDP_ARB_FINAL__RDONLY_VC1_MASK 0x00040000L
+#define MMEA1_SDP_ARB_FINAL__RDONLY_VC2_MASK 0x00080000L
+#define MMEA1_SDP_ARB_FINAL__RDONLY_VC3_MASK 0x00100000L
+#define MMEA1_SDP_ARB_FINAL__RDONLY_VC4_MASK 0x00200000L
+#define MMEA1_SDP_ARB_FINAL__RDONLY_VC5_MASK 0x00400000L
+#define MMEA1_SDP_ARB_FINAL__RDONLY_VC6_MASK 0x00800000L
+#define MMEA1_SDP_ARB_FINAL__RDONLY_VC7_MASK 0x01000000L
+#define MMEA1_SDP_ARB_FINAL__ERREVENT_ON_ERROR_MASK 0x02000000L
+#define MMEA1_SDP_ARB_FINAL__HALTREQ_ON_ERROR_MASK 0x04000000L
+#define MMEA1_SDP_ARB_FINAL__DRAM_BURST_STRETCH_MASK 0x08000000L
+#define MMEA1_SDP_ARB_FINAL__GMI_BURST_STRETCH_MASK 0x10000000L
+//MMEA1_SDP_DRAM_PRIORITY
+#define MMEA1_SDP_DRAM_PRIORITY__RD_GROUP0_PRIORITY__SHIFT 0x0
+#define MMEA1_SDP_DRAM_PRIORITY__RD_GROUP1_PRIORITY__SHIFT 0x4
+#define MMEA1_SDP_DRAM_PRIORITY__RD_GROUP2_PRIORITY__SHIFT 0x8
+#define MMEA1_SDP_DRAM_PRIORITY__RD_GROUP3_PRIORITY__SHIFT 0xc
+#define MMEA1_SDP_DRAM_PRIORITY__WR_GROUP0_PRIORITY__SHIFT 0x10
+#define MMEA1_SDP_DRAM_PRIORITY__WR_GROUP1_PRIORITY__SHIFT 0x14
+#define MMEA1_SDP_DRAM_PRIORITY__WR_GROUP2_PRIORITY__SHIFT 0x18
+#define MMEA1_SDP_DRAM_PRIORITY__WR_GROUP3_PRIORITY__SHIFT 0x1c
+#define MMEA1_SDP_DRAM_PRIORITY__RD_GROUP0_PRIORITY_MASK 0x0000000FL
+#define MMEA1_SDP_DRAM_PRIORITY__RD_GROUP1_PRIORITY_MASK 0x000000F0L
+#define MMEA1_SDP_DRAM_PRIORITY__RD_GROUP2_PRIORITY_MASK 0x00000F00L
+#define MMEA1_SDP_DRAM_PRIORITY__RD_GROUP3_PRIORITY_MASK 0x0000F000L
+#define MMEA1_SDP_DRAM_PRIORITY__WR_GROUP0_PRIORITY_MASK 0x000F0000L
+#define MMEA1_SDP_DRAM_PRIORITY__WR_GROUP1_PRIORITY_MASK 0x00F00000L
+#define MMEA1_SDP_DRAM_PRIORITY__WR_GROUP2_PRIORITY_MASK 0x0F000000L
+#define MMEA1_SDP_DRAM_PRIORITY__WR_GROUP3_PRIORITY_MASK 0xF0000000L
+//MMEA1_SDP_GMI_PRIORITY
+#define MMEA1_SDP_GMI_PRIORITY__RD_GROUP0_PRIORITY__SHIFT 0x0
+#define MMEA1_SDP_GMI_PRIORITY__RD_GROUP1_PRIORITY__SHIFT 0x4
+#define MMEA1_SDP_GMI_PRIORITY__RD_GROUP2_PRIORITY__SHIFT 0x8
+#define MMEA1_SDP_GMI_PRIORITY__RD_GROUP3_PRIORITY__SHIFT 0xc
+#define MMEA1_SDP_GMI_PRIORITY__WR_GROUP0_PRIORITY__SHIFT 0x10
+#define MMEA1_SDP_GMI_PRIORITY__WR_GROUP1_PRIORITY__SHIFT 0x14
+#define MMEA1_SDP_GMI_PRIORITY__WR_GROUP2_PRIORITY__SHIFT 0x18
+#define MMEA1_SDP_GMI_PRIORITY__WR_GROUP3_PRIORITY__SHIFT 0x1c
+#define MMEA1_SDP_GMI_PRIORITY__RD_GROUP0_PRIORITY_MASK 0x0000000FL
+#define MMEA1_SDP_GMI_PRIORITY__RD_GROUP1_PRIORITY_MASK 0x000000F0L
+#define MMEA1_SDP_GMI_PRIORITY__RD_GROUP2_PRIORITY_MASK 0x00000F00L
+#define MMEA1_SDP_GMI_PRIORITY__RD_GROUP3_PRIORITY_MASK 0x0000F000L
+#define MMEA1_SDP_GMI_PRIORITY__WR_GROUP0_PRIORITY_MASK 0x000F0000L
+#define MMEA1_SDP_GMI_PRIORITY__WR_GROUP1_PRIORITY_MASK 0x00F00000L
+#define MMEA1_SDP_GMI_PRIORITY__WR_GROUP2_PRIORITY_MASK 0x0F000000L
+#define MMEA1_SDP_GMI_PRIORITY__WR_GROUP3_PRIORITY_MASK 0xF0000000L
+//MMEA1_SDP_IO_PRIORITY
+#define MMEA1_SDP_IO_PRIORITY__RD_GROUP0_PRIORITY__SHIFT 0x0
+#define MMEA1_SDP_IO_PRIORITY__RD_GROUP1_PRIORITY__SHIFT 0x4
+#define MMEA1_SDP_IO_PRIORITY__RD_GROUP2_PRIORITY__SHIFT 0x8
+#define MMEA1_SDP_IO_PRIORITY__RD_GROUP3_PRIORITY__SHIFT 0xc
+#define MMEA1_SDP_IO_PRIORITY__WR_GROUP0_PRIORITY__SHIFT 0x10
+#define MMEA1_SDP_IO_PRIORITY__WR_GROUP1_PRIORITY__SHIFT 0x14
+#define MMEA1_SDP_IO_PRIORITY__WR_GROUP2_PRIORITY__SHIFT 0x18
+#define MMEA1_SDP_IO_PRIORITY__WR_GROUP3_PRIORITY__SHIFT 0x1c
+#define MMEA1_SDP_IO_PRIORITY__RD_GROUP0_PRIORITY_MASK 0x0000000FL
+#define MMEA1_SDP_IO_PRIORITY__RD_GROUP1_PRIORITY_MASK 0x000000F0L
+#define MMEA1_SDP_IO_PRIORITY__RD_GROUP2_PRIORITY_MASK 0x00000F00L
+#define MMEA1_SDP_IO_PRIORITY__RD_GROUP3_PRIORITY_MASK 0x0000F000L
+#define MMEA1_SDP_IO_PRIORITY__WR_GROUP0_PRIORITY_MASK 0x000F0000L
+#define MMEA1_SDP_IO_PRIORITY__WR_GROUP1_PRIORITY_MASK 0x00F00000L
+#define MMEA1_SDP_IO_PRIORITY__WR_GROUP2_PRIORITY_MASK 0x0F000000L
+#define MMEA1_SDP_IO_PRIORITY__WR_GROUP3_PRIORITY_MASK 0xF0000000L
+//MMEA1_SDP_CREDITS
+#define MMEA1_SDP_CREDITS__TAG_LIMIT__SHIFT 0x0
+#define MMEA1_SDP_CREDITS__WR_RESP_CREDITS__SHIFT 0x8
+#define MMEA1_SDP_CREDITS__RD_RESP_CREDITS__SHIFT 0x10
+#define MMEA1_SDP_CREDITS__TAG_LIMIT_MASK 0x000000FFL
+#define MMEA1_SDP_CREDITS__WR_RESP_CREDITS_MASK 0x00007F00L
+#define MMEA1_SDP_CREDITS__RD_RESP_CREDITS_MASK 0x007F0000L
+//MMEA1_SDP_TAG_RESERVE0
+#define MMEA1_SDP_TAG_RESERVE0__VC0__SHIFT 0x0
+#define MMEA1_SDP_TAG_RESERVE0__VC1__SHIFT 0x8
+#define MMEA1_SDP_TAG_RESERVE0__VC2__SHIFT 0x10
+#define MMEA1_SDP_TAG_RESERVE0__VC3__SHIFT 0x18
+#define MMEA1_SDP_TAG_RESERVE0__VC0_MASK 0x000000FFL
+#define MMEA1_SDP_TAG_RESERVE0__VC1_MASK 0x0000FF00L
+#define MMEA1_SDP_TAG_RESERVE0__VC2_MASK 0x00FF0000L
+#define MMEA1_SDP_TAG_RESERVE0__VC3_MASK 0xFF000000L
+//MMEA1_SDP_TAG_RESERVE1
+#define MMEA1_SDP_TAG_RESERVE1__VC4__SHIFT 0x0
+#define MMEA1_SDP_TAG_RESERVE1__VC5__SHIFT 0x8
+#define MMEA1_SDP_TAG_RESERVE1__VC6__SHIFT 0x10
+#define MMEA1_SDP_TAG_RESERVE1__VC7__SHIFT 0x18
+#define MMEA1_SDP_TAG_RESERVE1__VC4_MASK 0x000000FFL
+#define MMEA1_SDP_TAG_RESERVE1__VC5_MASK 0x0000FF00L
+#define MMEA1_SDP_TAG_RESERVE1__VC6_MASK 0x00FF0000L
+#define MMEA1_SDP_TAG_RESERVE1__VC7_MASK 0xFF000000L
+//MMEA1_SDP_VCC_RESERVE0
+#define MMEA1_SDP_VCC_RESERVE0__VC0_CREDITS__SHIFT 0x0
+#define MMEA1_SDP_VCC_RESERVE0__VC1_CREDITS__SHIFT 0x6
+#define MMEA1_SDP_VCC_RESERVE0__VC2_CREDITS__SHIFT 0xc
+#define MMEA1_SDP_VCC_RESERVE0__VC3_CREDITS__SHIFT 0x12
+#define MMEA1_SDP_VCC_RESERVE0__VC4_CREDITS__SHIFT 0x18
+#define MMEA1_SDP_VCC_RESERVE0__VC0_CREDITS_MASK 0x0000003FL
+#define MMEA1_SDP_VCC_RESERVE0__VC1_CREDITS_MASK 0x00000FC0L
+#define MMEA1_SDP_VCC_RESERVE0__VC2_CREDITS_MASK 0x0003F000L
+#define MMEA1_SDP_VCC_RESERVE0__VC3_CREDITS_MASK 0x00FC0000L
+#define MMEA1_SDP_VCC_RESERVE0__VC4_CREDITS_MASK 0x3F000000L
+//MMEA1_SDP_VCC_RESERVE1
+#define MMEA1_SDP_VCC_RESERVE1__VC5_CREDITS__SHIFT 0x0
+#define MMEA1_SDP_VCC_RESERVE1__VC6_CREDITS__SHIFT 0x6
+#define MMEA1_SDP_VCC_RESERVE1__VC7_CREDITS__SHIFT 0xc
+#define MMEA1_SDP_VCC_RESERVE1__DISTRIBUTE_POOL__SHIFT 0x1f
+#define MMEA1_SDP_VCC_RESERVE1__VC5_CREDITS_MASK 0x0000003FL
+#define MMEA1_SDP_VCC_RESERVE1__VC6_CREDITS_MASK 0x00000FC0L
+#define MMEA1_SDP_VCC_RESERVE1__VC7_CREDITS_MASK 0x0003F000L
+#define MMEA1_SDP_VCC_RESERVE1__DISTRIBUTE_POOL_MASK 0x80000000L
+//MMEA1_SDP_VCD_RESERVE0
+#define MMEA1_SDP_VCD_RESERVE0__VC0_CREDITS__SHIFT 0x0
+#define MMEA1_SDP_VCD_RESERVE0__VC1_CREDITS__SHIFT 0x6
+#define MMEA1_SDP_VCD_RESERVE0__VC2_CREDITS__SHIFT 0xc
+#define MMEA1_SDP_VCD_RESERVE0__VC3_CREDITS__SHIFT 0x12
+#define MMEA1_SDP_VCD_RESERVE0__VC4_CREDITS__SHIFT 0x18
+#define MMEA1_SDP_VCD_RESERVE0__VC0_CREDITS_MASK 0x0000003FL
+#define MMEA1_SDP_VCD_RESERVE0__VC1_CREDITS_MASK 0x00000FC0L
+#define MMEA1_SDP_VCD_RESERVE0__VC2_CREDITS_MASK 0x0003F000L
+#define MMEA1_SDP_VCD_RESERVE0__VC3_CREDITS_MASK 0x00FC0000L
+#define MMEA1_SDP_VCD_RESERVE0__VC4_CREDITS_MASK 0x3F000000L
+//MMEA1_SDP_VCD_RESERVE1
+#define MMEA1_SDP_VCD_RESERVE1__VC5_CREDITS__SHIFT 0x0
+#define MMEA1_SDP_VCD_RESERVE1__VC6_CREDITS__SHIFT 0x6
+#define MMEA1_SDP_VCD_RESERVE1__VC7_CREDITS__SHIFT 0xc
+#define MMEA1_SDP_VCD_RESERVE1__DISTRIBUTE_POOL__SHIFT 0x1f
+#define MMEA1_SDP_VCD_RESERVE1__VC5_CREDITS_MASK 0x0000003FL
+#define MMEA1_SDP_VCD_RESERVE1__VC6_CREDITS_MASK 0x00000FC0L
+#define MMEA1_SDP_VCD_RESERVE1__VC7_CREDITS_MASK 0x0003F000L
+#define MMEA1_SDP_VCD_RESERVE1__DISTRIBUTE_POOL_MASK 0x80000000L
+//MMEA1_SDP_REQ_CNTL
+#define MMEA1_SDP_REQ_CNTL__REQ_PASS_PW_OVERRIDE_READ__SHIFT 0x0
+#define MMEA1_SDP_REQ_CNTL__REQ_PASS_PW_OVERRIDE_WRITE__SHIFT 0x1
+#define MMEA1_SDP_REQ_CNTL__REQ_PASS_PW_OVERRIDE_ATOMIC__SHIFT 0x2
+#define MMEA1_SDP_REQ_CNTL__REQ_CHAIN_OVERRIDE_DRAM__SHIFT 0x3
+#define MMEA1_SDP_REQ_CNTL__REQ_CHAIN_OVERRIDE_GMI__SHIFT 0x4
+#define MMEA1_SDP_REQ_CNTL__INNER_DOMAIN_MODE__SHIFT 0x5
+#define MMEA1_SDP_REQ_CNTL__REQ_BLOCK_LEVEL_READ__SHIFT 0x6
+#define MMEA1_SDP_REQ_CNTL__REQ_BLOCK_LEVEL_WRITE__SHIFT 0x8
+#define MMEA1_SDP_REQ_CNTL__REQ_BLOCK_LEVEL_ATOMIC__SHIFT 0xa
+#define MMEA1_SDP_REQ_CNTL__REQ_PASS_PW_OVERRIDE_READ_MASK 0x00000001L
+#define MMEA1_SDP_REQ_CNTL__REQ_PASS_PW_OVERRIDE_WRITE_MASK 0x00000002L
+#define MMEA1_SDP_REQ_CNTL__REQ_PASS_PW_OVERRIDE_ATOMIC_MASK 0x00000004L
+#define MMEA1_SDP_REQ_CNTL__REQ_CHAIN_OVERRIDE_DRAM_MASK 0x00000008L
+#define MMEA1_SDP_REQ_CNTL__REQ_CHAIN_OVERRIDE_GMI_MASK 0x00000010L
+#define MMEA1_SDP_REQ_CNTL__INNER_DOMAIN_MODE_MASK 0x00000020L
+#define MMEA1_SDP_REQ_CNTL__REQ_BLOCK_LEVEL_READ_MASK 0x000000C0L
+#define MMEA1_SDP_REQ_CNTL__REQ_BLOCK_LEVEL_WRITE_MASK 0x00000300L
+#define MMEA1_SDP_REQ_CNTL__REQ_BLOCK_LEVEL_ATOMIC_MASK 0x00000C00L
+//MMEA1_MISC
+#define MMEA1_MISC__RELATIVE_PRI_IN_DRAM_RD_ARB__SHIFT 0x0
+#define MMEA1_MISC__RELATIVE_PRI_IN_DRAM_WR_ARB__SHIFT 0x1
+#define MMEA1_MISC__RELATIVE_PRI_IN_GMI_RD_ARB__SHIFT 0x2
+#define MMEA1_MISC__RELATIVE_PRI_IN_GMI_WR_ARB__SHIFT 0x3
+#define MMEA1_MISC__RELATIVE_PRI_IN_IO_RD_ARB__SHIFT 0x4
+#define MMEA1_MISC__RELATIVE_PRI_IN_IO_WR_ARB__SHIFT 0x5
+#define MMEA1_MISC__EARLYWRRET_ENABLE_VC0__SHIFT 0x6
+#define MMEA1_MISC__EARLYWRRET_ENABLE_VC1__SHIFT 0x7
+#define MMEA1_MISC__EARLYWRRET_ENABLE_VC2__SHIFT 0x8
+#define MMEA1_MISC__EARLYWRRET_ENABLE_VC3__SHIFT 0x9
+#define MMEA1_MISC__EARLYWRRET_ENABLE_VC4__SHIFT 0xa
+#define MMEA1_MISC__EARLYWRRET_ENABLE_VC5__SHIFT 0xb
+#define MMEA1_MISC__EARLYWRRET_ENABLE_VC6__SHIFT 0xc
+#define MMEA1_MISC__EARLYWRRET_ENABLE_VC7__SHIFT 0xd
+#define MMEA1_MISC__EARLY_SDP_ORIGDATA__SHIFT 0xe
+#define MMEA1_MISC__LINKMGR_DYNAMIC_MODE__SHIFT 0xf
+#define MMEA1_MISC__LINKMGR_HALT_THRESHOLD__SHIFT 0x11
+#define MMEA1_MISC__LINKMGR_RECONNECT_DELAY__SHIFT 0x13
+#define MMEA1_MISC__LINKMGR_IDLE_THRESHOLD__SHIFT 0x15
+#define MMEA1_MISC__FAVOUR_MIDCHAIN_CS_IN_DRAM_ARB__SHIFT 0x1a
+#define MMEA1_MISC__FAVOUR_MIDCHAIN_CS_IN_GMI_ARB__SHIFT 0x1b
+#define MMEA1_MISC__FAVOUR_LAST_CS_IN_DRAM_ARB__SHIFT 0x1c
+#define MMEA1_MISC__FAVOUR_LAST_CS_IN_GMI_ARB__SHIFT 0x1d
+#define MMEA1_MISC__SWITCH_CS_ON_W2R_IN_DRAM_ARB__SHIFT 0x1e
+#define MMEA1_MISC__SWITCH_CS_ON_W2R_IN_GMI_ARB__SHIFT 0x1f
+#define MMEA1_MISC__RELATIVE_PRI_IN_DRAM_RD_ARB_MASK 0x00000001L
+#define MMEA1_MISC__RELATIVE_PRI_IN_DRAM_WR_ARB_MASK 0x00000002L
+#define MMEA1_MISC__RELATIVE_PRI_IN_GMI_RD_ARB_MASK 0x00000004L
+#define MMEA1_MISC__RELATIVE_PRI_IN_GMI_WR_ARB_MASK 0x00000008L
+#define MMEA1_MISC__RELATIVE_PRI_IN_IO_RD_ARB_MASK 0x00000010L
+#define MMEA1_MISC__RELATIVE_PRI_IN_IO_WR_ARB_MASK 0x00000020L
+#define MMEA1_MISC__EARLYWRRET_ENABLE_VC0_MASK 0x00000040L
+#define MMEA1_MISC__EARLYWRRET_ENABLE_VC1_MASK 0x00000080L
+#define MMEA1_MISC__EARLYWRRET_ENABLE_VC2_MASK 0x00000100L
+#define MMEA1_MISC__EARLYWRRET_ENABLE_VC3_MASK 0x00000200L
+#define MMEA1_MISC__EARLYWRRET_ENABLE_VC4_MASK 0x00000400L
+#define MMEA1_MISC__EARLYWRRET_ENABLE_VC5_MASK 0x00000800L
+#define MMEA1_MISC__EARLYWRRET_ENABLE_VC6_MASK 0x00001000L
+#define MMEA1_MISC__EARLYWRRET_ENABLE_VC7_MASK 0x00002000L
+#define MMEA1_MISC__EARLY_SDP_ORIGDATA_MASK 0x00004000L
+#define MMEA1_MISC__LINKMGR_DYNAMIC_MODE_MASK 0x00018000L
+#define MMEA1_MISC__LINKMGR_HALT_THRESHOLD_MASK 0x00060000L
+#define MMEA1_MISC__LINKMGR_RECONNECT_DELAY_MASK 0x00180000L
+#define MMEA1_MISC__LINKMGR_IDLE_THRESHOLD_MASK 0x03E00000L
+#define MMEA1_MISC__FAVOUR_MIDCHAIN_CS_IN_DRAM_ARB_MASK 0x04000000L
+#define MMEA1_MISC__FAVOUR_MIDCHAIN_CS_IN_GMI_ARB_MASK 0x08000000L
+#define MMEA1_MISC__FAVOUR_LAST_CS_IN_DRAM_ARB_MASK 0x10000000L
+#define MMEA1_MISC__FAVOUR_LAST_CS_IN_GMI_ARB_MASK 0x20000000L
+#define MMEA1_MISC__SWITCH_CS_ON_W2R_IN_DRAM_ARB_MASK 0x40000000L
+#define MMEA1_MISC__SWITCH_CS_ON_W2R_IN_GMI_ARB_MASK 0x80000000L
+//MMEA1_LATENCY_SAMPLING
+#define MMEA1_LATENCY_SAMPLING__SAMPLER0_DRAM__SHIFT 0x0
+#define MMEA1_LATENCY_SAMPLING__SAMPLER1_DRAM__SHIFT 0x1
+#define MMEA1_LATENCY_SAMPLING__SAMPLER0_GMI__SHIFT 0x2
+#define MMEA1_LATENCY_SAMPLING__SAMPLER1_GMI__SHIFT 0x3
+#define MMEA1_LATENCY_SAMPLING__SAMPLER0_IO__SHIFT 0x4
+#define MMEA1_LATENCY_SAMPLING__SAMPLER1_IO__SHIFT 0x5
+#define MMEA1_LATENCY_SAMPLING__SAMPLER0_READ__SHIFT 0x6
+#define MMEA1_LATENCY_SAMPLING__SAMPLER1_READ__SHIFT 0x7
+#define MMEA1_LATENCY_SAMPLING__SAMPLER0_WRITE__SHIFT 0x8
+#define MMEA1_LATENCY_SAMPLING__SAMPLER1_WRITE__SHIFT 0x9
+#define MMEA1_LATENCY_SAMPLING__SAMPLER0_ATOMIC_RET__SHIFT 0xa
+#define MMEA1_LATENCY_SAMPLING__SAMPLER1_ATOMIC_RET__SHIFT 0xb
+#define MMEA1_LATENCY_SAMPLING__SAMPLER0_ATOMIC_NORET__SHIFT 0xc
+#define MMEA1_LATENCY_SAMPLING__SAMPLER1_ATOMIC_NORET__SHIFT 0xd
+#define MMEA1_LATENCY_SAMPLING__SAMPLER0_VC__SHIFT 0xe
+#define MMEA1_LATENCY_SAMPLING__SAMPLER1_VC__SHIFT 0x16
+#define MMEA1_LATENCY_SAMPLING__SAMPLER0_DRAM_MASK 0x00000001L
+#define MMEA1_LATENCY_SAMPLING__SAMPLER1_DRAM_MASK 0x00000002L
+#define MMEA1_LATENCY_SAMPLING__SAMPLER0_GMI_MASK 0x00000004L
+#define MMEA1_LATENCY_SAMPLING__SAMPLER1_GMI_MASK 0x00000008L
+#define MMEA1_LATENCY_SAMPLING__SAMPLER0_IO_MASK 0x00000010L
+#define MMEA1_LATENCY_SAMPLING__SAMPLER1_IO_MASK 0x00000020L
+#define MMEA1_LATENCY_SAMPLING__SAMPLER0_READ_MASK 0x00000040L
+#define MMEA1_LATENCY_SAMPLING__SAMPLER1_READ_MASK 0x00000080L
+#define MMEA1_LATENCY_SAMPLING__SAMPLER0_WRITE_MASK 0x00000100L
+#define MMEA1_LATENCY_SAMPLING__SAMPLER1_WRITE_MASK 0x00000200L
+#define MMEA1_LATENCY_SAMPLING__SAMPLER0_ATOMIC_RET_MASK 0x00000400L
+#define MMEA1_LATENCY_SAMPLING__SAMPLER1_ATOMIC_RET_MASK 0x00000800L
+#define MMEA1_LATENCY_SAMPLING__SAMPLER0_ATOMIC_NORET_MASK 0x00001000L
+#define MMEA1_LATENCY_SAMPLING__SAMPLER1_ATOMIC_NORET_MASK 0x00002000L
+#define MMEA1_LATENCY_SAMPLING__SAMPLER0_VC_MASK 0x003FC000L
+#define MMEA1_LATENCY_SAMPLING__SAMPLER1_VC_MASK 0x3FC00000L
+//MMEA1_PERFCOUNTER_LO
+#define MMEA1_PERFCOUNTER_LO__COUNTER_LO__SHIFT 0x0
+#define MMEA1_PERFCOUNTER_LO__COUNTER_LO_MASK 0xFFFFFFFFL
+//MMEA1_PERFCOUNTER_HI
+#define MMEA1_PERFCOUNTER_HI__COUNTER_HI__SHIFT 0x0
+#define MMEA1_PERFCOUNTER_HI__COMPARE_VALUE__SHIFT 0x10
+#define MMEA1_PERFCOUNTER_HI__COUNTER_HI_MASK 0x0000FFFFL
+#define MMEA1_PERFCOUNTER_HI__COMPARE_VALUE_MASK 0xFFFF0000L
+//MMEA1_PERFCOUNTER0_CFG
+#define MMEA1_PERFCOUNTER0_CFG__PERF_SEL__SHIFT 0x0
+#define MMEA1_PERFCOUNTER0_CFG__PERF_SEL_END__SHIFT 0x8
+#define MMEA1_PERFCOUNTER0_CFG__PERF_MODE__SHIFT 0x18
+#define MMEA1_PERFCOUNTER0_CFG__ENABLE__SHIFT 0x1c
+#define MMEA1_PERFCOUNTER0_CFG__CLEAR__SHIFT 0x1d
+#define MMEA1_PERFCOUNTER0_CFG__PERF_SEL_MASK 0x000000FFL
+#define MMEA1_PERFCOUNTER0_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define MMEA1_PERFCOUNTER0_CFG__PERF_MODE_MASK 0x0F000000L
+#define MMEA1_PERFCOUNTER0_CFG__ENABLE_MASK 0x10000000L
+#define MMEA1_PERFCOUNTER0_CFG__CLEAR_MASK 0x20000000L
+//MMEA1_PERFCOUNTER1_CFG
+#define MMEA1_PERFCOUNTER1_CFG__PERF_SEL__SHIFT 0x0
+#define MMEA1_PERFCOUNTER1_CFG__PERF_SEL_END__SHIFT 0x8
+#define MMEA1_PERFCOUNTER1_CFG__PERF_MODE__SHIFT 0x18
+#define MMEA1_PERFCOUNTER1_CFG__ENABLE__SHIFT 0x1c
+#define MMEA1_PERFCOUNTER1_CFG__CLEAR__SHIFT 0x1d
+#define MMEA1_PERFCOUNTER1_CFG__PERF_SEL_MASK 0x000000FFL
+#define MMEA1_PERFCOUNTER1_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define MMEA1_PERFCOUNTER1_CFG__PERF_MODE_MASK 0x0F000000L
+#define MMEA1_PERFCOUNTER1_CFG__ENABLE_MASK 0x10000000L
+#define MMEA1_PERFCOUNTER1_CFG__CLEAR_MASK 0x20000000L
+//MMEA1_PERFCOUNTER_RSLT_CNTL
+#define MMEA1_PERFCOUNTER_RSLT_CNTL__PERF_COUNTER_SELECT__SHIFT 0x0
+#define MMEA1_PERFCOUNTER_RSLT_CNTL__START_TRIGGER__SHIFT 0x8
+#define MMEA1_PERFCOUNTER_RSLT_CNTL__STOP_TRIGGER__SHIFT 0x10
+#define MMEA1_PERFCOUNTER_RSLT_CNTL__ENABLE_ANY__SHIFT 0x18
+#define MMEA1_PERFCOUNTER_RSLT_CNTL__CLEAR_ALL__SHIFT 0x19
+#define MMEA1_PERFCOUNTER_RSLT_CNTL__STOP_ALL_ON_SATURATE__SHIFT 0x1a
+#define MMEA1_PERFCOUNTER_RSLT_CNTL__PERF_COUNTER_SELECT_MASK 0x0000000FL
+#define MMEA1_PERFCOUNTER_RSLT_CNTL__START_TRIGGER_MASK 0x0000FF00L
+#define MMEA1_PERFCOUNTER_RSLT_CNTL__STOP_TRIGGER_MASK 0x00FF0000L
+#define MMEA1_PERFCOUNTER_RSLT_CNTL__ENABLE_ANY_MASK 0x01000000L
+#define MMEA1_PERFCOUNTER_RSLT_CNTL__CLEAR_ALL_MASK 0x02000000L
+#define MMEA1_PERFCOUNTER_RSLT_CNTL__STOP_ALL_ON_SATURATE_MASK 0x04000000L
+//MMEA1_DSM_CNTL
+#define MMEA1_DSM_CNTL__DRAMRD_CMDMEM_DSM_IRRITATOR_DATA__SHIFT 0x0
+#define MMEA1_DSM_CNTL__DRAMRD_CMDMEM_ENABLE_SINGLE_WRITE__SHIFT 0x2
+#define MMEA1_DSM_CNTL__DRAMWR_CMDMEM_DSM_IRRITATOR_DATA__SHIFT 0x3
+#define MMEA1_DSM_CNTL__DRAMWR_CMDMEM_ENABLE_SINGLE_WRITE__SHIFT 0x5
+#define MMEA1_DSM_CNTL__DRAMWR_DATAMEM_DSM_IRRITATOR_DATA__SHIFT 0x6
+#define MMEA1_DSM_CNTL__DRAMWR_DATAMEM_ENABLE_SINGLE_WRITE__SHIFT 0x8
+#define MMEA1_DSM_CNTL__RRET_TAGMEM_DSM_IRRITATOR_DATA__SHIFT 0x9
+#define MMEA1_DSM_CNTL__RRET_TAGMEM_ENABLE_SINGLE_WRITE__SHIFT 0xb
+#define MMEA1_DSM_CNTL__WRET_TAGMEM_DSM_IRRITATOR_DATA__SHIFT 0xc
+#define MMEA1_DSM_CNTL__WRET_TAGMEM_ENABLE_SINGLE_WRITE__SHIFT 0xe
+#define MMEA1_DSM_CNTL__GMIRD_CMDMEM_DSM_IRRITATOR_DATA__SHIFT 0xf
+#define MMEA1_DSM_CNTL__GMIRD_CMDMEM_ENABLE_SINGLE_WRITE__SHIFT 0x11
+#define MMEA1_DSM_CNTL__GMIWR_CMDMEM_DSM_IRRITATOR_DATA__SHIFT 0x12
+#define MMEA1_DSM_CNTL__GMIWR_CMDMEM_ENABLE_SINGLE_WRITE__SHIFT 0x14
+#define MMEA1_DSM_CNTL__GMIWR_DATAMEM_DSM_IRRITATOR_DATA__SHIFT 0x15
+#define MMEA1_DSM_CNTL__GMIWR_DATAMEM_ENABLE_SINGLE_WRITE__SHIFT 0x17
+#define MMEA1_DSM_CNTL__DRAMRD_CMDMEM_DSM_IRRITATOR_DATA_MASK 0x00000003L
+#define MMEA1_DSM_CNTL__DRAMRD_CMDMEM_ENABLE_SINGLE_WRITE_MASK 0x00000004L
+#define MMEA1_DSM_CNTL__DRAMWR_CMDMEM_DSM_IRRITATOR_DATA_MASK 0x00000018L
+#define MMEA1_DSM_CNTL__DRAMWR_CMDMEM_ENABLE_SINGLE_WRITE_MASK 0x00000020L
+#define MMEA1_DSM_CNTL__DRAMWR_DATAMEM_DSM_IRRITATOR_DATA_MASK 0x000000C0L
+#define MMEA1_DSM_CNTL__DRAMWR_DATAMEM_ENABLE_SINGLE_WRITE_MASK 0x00000100L
+#define MMEA1_DSM_CNTL__RRET_TAGMEM_DSM_IRRITATOR_DATA_MASK 0x00000600L
+#define MMEA1_DSM_CNTL__RRET_TAGMEM_ENABLE_SINGLE_WRITE_MASK 0x00000800L
+#define MMEA1_DSM_CNTL__WRET_TAGMEM_DSM_IRRITATOR_DATA_MASK 0x00003000L
+#define MMEA1_DSM_CNTL__WRET_TAGMEM_ENABLE_SINGLE_WRITE_MASK 0x00004000L
+#define MMEA1_DSM_CNTL__GMIRD_CMDMEM_DSM_IRRITATOR_DATA_MASK 0x00018000L
+#define MMEA1_DSM_CNTL__GMIRD_CMDMEM_ENABLE_SINGLE_WRITE_MASK 0x00020000L
+#define MMEA1_DSM_CNTL__GMIWR_CMDMEM_DSM_IRRITATOR_DATA_MASK 0x000C0000L
+#define MMEA1_DSM_CNTL__GMIWR_CMDMEM_ENABLE_SINGLE_WRITE_MASK 0x00100000L
+#define MMEA1_DSM_CNTL__GMIWR_DATAMEM_DSM_IRRITATOR_DATA_MASK 0x00600000L
+#define MMEA1_DSM_CNTL__GMIWR_DATAMEM_ENABLE_SINGLE_WRITE_MASK 0x00800000L
+//MMEA1_DSM_CNTLA
+#define MMEA1_DSM_CNTLA__DRAMRD_PAGEMEM_DSM_IRRITATOR_DATA__SHIFT 0x0
+#define MMEA1_DSM_CNTLA__DRAMRD_PAGEMEM_ENABLE_SINGLE_WRITE__SHIFT 0x2
+#define MMEA1_DSM_CNTLA__DRAMWR_PAGEMEM_DSM_IRRITATOR_DATA__SHIFT 0x3
+#define MMEA1_DSM_CNTLA__DRAMWR_PAGEMEM_ENABLE_SINGLE_WRITE__SHIFT 0x5
+#define MMEA1_DSM_CNTLA__IORD_CMDMEM_DSM_IRRITATOR_DATA__SHIFT 0x6
+#define MMEA1_DSM_CNTLA__IORD_CMDMEM_ENABLE_SINGLE_WRITE__SHIFT 0x8
+#define MMEA1_DSM_CNTLA__IOWR_CMDMEM_DSM_IRRITATOR_DATA__SHIFT 0x9
+#define MMEA1_DSM_CNTLA__IOWR_CMDMEM_ENABLE_SINGLE_WRITE__SHIFT 0xb
+#define MMEA1_DSM_CNTLA__IOWR_DATAMEM_DSM_IRRITATOR_DATA__SHIFT 0xc
+#define MMEA1_DSM_CNTLA__IOWR_DATAMEM_ENABLE_SINGLE_WRITE__SHIFT 0xe
+#define MMEA1_DSM_CNTLA__GMIRD_PAGEMEM_DSM_IRRITATOR_DATA__SHIFT 0xf
+#define MMEA1_DSM_CNTLA__GMIRD_PAGEMEM_ENABLE_SINGLE_WRITE__SHIFT 0x11
+#define MMEA1_DSM_CNTLA__GMIWR_PAGEMEM_DSM_IRRITATOR_DATA__SHIFT 0x12
+#define MMEA1_DSM_CNTLA__GMIWR_PAGEMEM_ENABLE_SINGLE_WRITE__SHIFT 0x14
+#define MMEA1_DSM_CNTLA__DRAMRD_PAGEMEM_DSM_IRRITATOR_DATA_MASK 0x00000003L
+#define MMEA1_DSM_CNTLA__DRAMRD_PAGEMEM_ENABLE_SINGLE_WRITE_MASK 0x00000004L
+#define MMEA1_DSM_CNTLA__DRAMWR_PAGEMEM_DSM_IRRITATOR_DATA_MASK 0x00000018L
+#define MMEA1_DSM_CNTLA__DRAMWR_PAGEMEM_ENABLE_SINGLE_WRITE_MASK 0x00000020L
+#define MMEA1_DSM_CNTLA__IORD_CMDMEM_DSM_IRRITATOR_DATA_MASK 0x000000C0L
+#define MMEA1_DSM_CNTLA__IORD_CMDMEM_ENABLE_SINGLE_WRITE_MASK 0x00000100L
+#define MMEA1_DSM_CNTLA__IOWR_CMDMEM_DSM_IRRITATOR_DATA_MASK 0x00000600L
+#define MMEA1_DSM_CNTLA__IOWR_CMDMEM_ENABLE_SINGLE_WRITE_MASK 0x00000800L
+#define MMEA1_DSM_CNTLA__IOWR_DATAMEM_DSM_IRRITATOR_DATA_MASK 0x00003000L
+#define MMEA1_DSM_CNTLA__IOWR_DATAMEM_ENABLE_SINGLE_WRITE_MASK 0x00004000L
+#define MMEA1_DSM_CNTLA__GMIRD_PAGEMEM_DSM_IRRITATOR_DATA_MASK 0x00018000L
+#define MMEA1_DSM_CNTLA__GMIRD_PAGEMEM_ENABLE_SINGLE_WRITE_MASK 0x00020000L
+#define MMEA1_DSM_CNTLA__GMIWR_PAGEMEM_DSM_IRRITATOR_DATA_MASK 0x000C0000L
+#define MMEA1_DSM_CNTLA__GMIWR_PAGEMEM_ENABLE_SINGLE_WRITE_MASK 0x00100000L
+//MMEA1_DSM_CNTLB
+#define MMEA1_DSM_CNTLB__MAM_D0MEM_DSM_IRRITATOR_DATA__SHIFT 0x0
+#define MMEA1_DSM_CNTLB__MAM_D0MEM_ENABLE_SINGLE_WRITE__SHIFT 0x2
+#define MMEA1_DSM_CNTLB__MAM_D1MEM_DSM_IRRITATOR_DATA__SHIFT 0x3
+#define MMEA1_DSM_CNTLB__MAM_D1MEM_ENABLE_SINGLE_WRITE__SHIFT 0x5
+#define MMEA1_DSM_CNTLB__MAM_D2MEM_DSM_IRRITATOR_DATA__SHIFT 0x6
+#define MMEA1_DSM_CNTLB__MAM_D2MEM_ENABLE_SINGLE_WRITE__SHIFT 0x8
+#define MMEA1_DSM_CNTLB__MAM_D3MEM_DSM_IRRITATOR_DATA__SHIFT 0x9
+#define MMEA1_DSM_CNTLB__MAM_D3MEM_ENABLE_SINGLE_WRITE__SHIFT 0xb
+#define MMEA1_DSM_CNTLB__MAM_D0MEM_DSM_IRRITATOR_DATA_MASK 0x00000003L
+#define MMEA1_DSM_CNTLB__MAM_D0MEM_ENABLE_SINGLE_WRITE_MASK 0x00000004L
+#define MMEA1_DSM_CNTLB__MAM_D1MEM_DSM_IRRITATOR_DATA_MASK 0x00000018L
+#define MMEA1_DSM_CNTLB__MAM_D1MEM_ENABLE_SINGLE_WRITE_MASK 0x00000020L
+#define MMEA1_DSM_CNTLB__MAM_D2MEM_DSM_IRRITATOR_DATA_MASK 0x000000C0L
+#define MMEA1_DSM_CNTLB__MAM_D2MEM_ENABLE_SINGLE_WRITE_MASK 0x00000100L
+#define MMEA1_DSM_CNTLB__MAM_D3MEM_DSM_IRRITATOR_DATA_MASK 0x00000600L
+#define MMEA1_DSM_CNTLB__MAM_D3MEM_ENABLE_SINGLE_WRITE_MASK 0x00000800L
+//MMEA1_DSM_CNTL2
+#define MMEA1_DSM_CNTL2__DRAMRD_CMDMEM_ENABLE_ERROR_INJECT__SHIFT 0x0
+#define MMEA1_DSM_CNTL2__DRAMRD_CMDMEM_SELECT_INJECT_DELAY__SHIFT 0x2
+#define MMEA1_DSM_CNTL2__DRAMWR_CMDMEM_ENABLE_ERROR_INJECT__SHIFT 0x3
+#define MMEA1_DSM_CNTL2__DRAMWR_CMDMEM_SELECT_INJECT_DELAY__SHIFT 0x5
+#define MMEA1_DSM_CNTL2__DRAMWR_DATAMEM_ENABLE_ERROR_INJECT__SHIFT 0x6
+#define MMEA1_DSM_CNTL2__DRAMWR_DATAMEM_SELECT_INJECT_DELAY__SHIFT 0x8
+#define MMEA1_DSM_CNTL2__RRET_TAGMEM_ENABLE_ERROR_INJECT__SHIFT 0x9
+#define MMEA1_DSM_CNTL2__RRET_TAGMEM_SELECT_INJECT_DELAY__SHIFT 0xb
+#define MMEA1_DSM_CNTL2__WRET_TAGMEM_ENABLE_ERROR_INJECT__SHIFT 0xc
+#define MMEA1_DSM_CNTL2__WRET_TAGMEM_SELECT_INJECT_DELAY__SHIFT 0xe
+#define MMEA1_DSM_CNTL2__GMIRD_CMDMEM_ENABLE_ERROR_INJECT__SHIFT 0xf
+#define MMEA1_DSM_CNTL2__GMIRD_CMDMEM_SELECT_INJECT_DELAY__SHIFT 0x11
+#define MMEA1_DSM_CNTL2__GMIWR_CMDMEM_ENABLE_ERROR_INJECT__SHIFT 0x12
+#define MMEA1_DSM_CNTL2__GMIWR_CMDMEM_SELECT_INJECT_DELAY__SHIFT 0x14
+#define MMEA1_DSM_CNTL2__GMIWR_DATAMEM_ENABLE_ERROR_INJECT__SHIFT 0x15
+#define MMEA1_DSM_CNTL2__GMIWR_DATAMEM_SELECT_INJECT_DELAY__SHIFT 0x17
+#define MMEA1_DSM_CNTL2__INJECT_DELAY__SHIFT 0x1a
+#define MMEA1_DSM_CNTL2__DRAMRD_CMDMEM_ENABLE_ERROR_INJECT_MASK 0x00000003L
+#define MMEA1_DSM_CNTL2__DRAMRD_CMDMEM_SELECT_INJECT_DELAY_MASK 0x00000004L
+#define MMEA1_DSM_CNTL2__DRAMWR_CMDMEM_ENABLE_ERROR_INJECT_MASK 0x00000018L
+#define MMEA1_DSM_CNTL2__DRAMWR_CMDMEM_SELECT_INJECT_DELAY_MASK 0x00000020L
+#define MMEA1_DSM_CNTL2__DRAMWR_DATAMEM_ENABLE_ERROR_INJECT_MASK 0x000000C0L
+#define MMEA1_DSM_CNTL2__DRAMWR_DATAMEM_SELECT_INJECT_DELAY_MASK 0x00000100L
+#define MMEA1_DSM_CNTL2__RRET_TAGMEM_ENABLE_ERROR_INJECT_MASK 0x00000600L
+#define MMEA1_DSM_CNTL2__RRET_TAGMEM_SELECT_INJECT_DELAY_MASK 0x00000800L
+#define MMEA1_DSM_CNTL2__WRET_TAGMEM_ENABLE_ERROR_INJECT_MASK 0x00003000L
+#define MMEA1_DSM_CNTL2__WRET_TAGMEM_SELECT_INJECT_DELAY_MASK 0x00004000L
+#define MMEA1_DSM_CNTL2__GMIRD_CMDMEM_ENABLE_ERROR_INJECT_MASK 0x00018000L
+#define MMEA1_DSM_CNTL2__GMIRD_CMDMEM_SELECT_INJECT_DELAY_MASK 0x00020000L
+#define MMEA1_DSM_CNTL2__GMIWR_CMDMEM_ENABLE_ERROR_INJECT_MASK 0x000C0000L
+#define MMEA1_DSM_CNTL2__GMIWR_CMDMEM_SELECT_INJECT_DELAY_MASK 0x00100000L
+#define MMEA1_DSM_CNTL2__GMIWR_DATAMEM_ENABLE_ERROR_INJECT_MASK 0x00600000L
+#define MMEA1_DSM_CNTL2__GMIWR_DATAMEM_SELECT_INJECT_DELAY_MASK 0x00800000L
+#define MMEA1_DSM_CNTL2__INJECT_DELAY_MASK 0xFC000000L
+//MMEA1_DSM_CNTL2A
+#define MMEA1_DSM_CNTL2A__DRAMRD_PAGEMEM_ENABLE_ERROR_INJECT__SHIFT 0x0
+#define MMEA1_DSM_CNTL2A__DRAMRD_PAGEMEM_SELECT_INJECT_DELAY__SHIFT 0x2
+#define MMEA1_DSM_CNTL2A__DRAMWR_PAGEMEM_ENABLE_ERROR_INJECT__SHIFT 0x3
+#define MMEA1_DSM_CNTL2A__DRAMWR_PAGEMEM_SELECT_INJECT_DELAY__SHIFT 0x5
+#define MMEA1_DSM_CNTL2A__IORD_CMDMEM_ENABLE_ERROR_INJECT__SHIFT 0x6
+#define MMEA1_DSM_CNTL2A__IORD_CMDMEM_SELECT_INJECT_DELAY__SHIFT 0x8
+#define MMEA1_DSM_CNTL2A__IOWR_CMDMEM_ENABLE_ERROR_INJECT__SHIFT 0x9
+#define MMEA1_DSM_CNTL2A__IOWR_CMDMEM_SELECT_INJECT_DELAY__SHIFT 0xb
+#define MMEA1_DSM_CNTL2A__IOWR_DATAMEM_ENABLE_ERROR_INJECT__SHIFT 0xc
+#define MMEA1_DSM_CNTL2A__IOWR_DATAMEM_SELECT_INJECT_DELAY__SHIFT 0xe
+#define MMEA1_DSM_CNTL2A__GMIRD_PAGEMEM_ENABLE_ERROR_INJECT__SHIFT 0xf
+#define MMEA1_DSM_CNTL2A__GMIRD_PAGEMEM_SELECT_INJECT_DELAY__SHIFT 0x11
+#define MMEA1_DSM_CNTL2A__GMIWR_PAGEMEM_ENABLE_ERROR_INJECT__SHIFT 0x12
+#define MMEA1_DSM_CNTL2A__GMIWR_PAGEMEM_SELECT_INJECT_DELAY__SHIFT 0x14
+#define MMEA1_DSM_CNTL2A__DRAMRD_PAGEMEM_ENABLE_ERROR_INJECT_MASK 0x00000003L
+#define MMEA1_DSM_CNTL2A__DRAMRD_PAGEMEM_SELECT_INJECT_DELAY_MASK 0x00000004L
+#define MMEA1_DSM_CNTL2A__DRAMWR_PAGEMEM_ENABLE_ERROR_INJECT_MASK 0x00000018L
+#define MMEA1_DSM_CNTL2A__DRAMWR_PAGEMEM_SELECT_INJECT_DELAY_MASK 0x00000020L
+#define MMEA1_DSM_CNTL2A__IORD_CMDMEM_ENABLE_ERROR_INJECT_MASK 0x000000C0L
+#define MMEA1_DSM_CNTL2A__IORD_CMDMEM_SELECT_INJECT_DELAY_MASK 0x00000100L
+#define MMEA1_DSM_CNTL2A__IOWR_CMDMEM_ENABLE_ERROR_INJECT_MASK 0x00000600L
+#define MMEA1_DSM_CNTL2A__IOWR_CMDMEM_SELECT_INJECT_DELAY_MASK 0x00000800L
+#define MMEA1_DSM_CNTL2A__IOWR_DATAMEM_ENABLE_ERROR_INJECT_MASK 0x00003000L
+#define MMEA1_DSM_CNTL2A__IOWR_DATAMEM_SELECT_INJECT_DELAY_MASK 0x00004000L
+#define MMEA1_DSM_CNTL2A__GMIRD_PAGEMEM_ENABLE_ERROR_INJECT_MASK 0x00018000L
+#define MMEA1_DSM_CNTL2A__GMIRD_PAGEMEM_SELECT_INJECT_DELAY_MASK 0x00020000L
+#define MMEA1_DSM_CNTL2A__GMIWR_PAGEMEM_ENABLE_ERROR_INJECT_MASK 0x000C0000L
+#define MMEA1_DSM_CNTL2A__GMIWR_PAGEMEM_SELECT_INJECT_DELAY_MASK 0x00100000L
+//MMEA1_DSM_CNTL2B
+#define MMEA1_DSM_CNTL2B__MAM_D0MEM_ENABLE_ERROR_INJECT__SHIFT 0x0
+#define MMEA1_DSM_CNTL2B__MAM_D0MEM_SELECT_INJECT_DELAY__SHIFT 0x2
+#define MMEA1_DSM_CNTL2B__MAM_D1MEM_ENABLE_ERROR_INJECT__SHIFT 0x3
+#define MMEA1_DSM_CNTL2B__MAM_D1MEM_SELECT_INJECT_DELAY__SHIFT 0x5
+#define MMEA1_DSM_CNTL2B__MAM_D2MEM_ENABLE_ERROR_INJECT__SHIFT 0x6
+#define MMEA1_DSM_CNTL2B__MAM_D2MEM_SELECT_INJECT_DELAY__SHIFT 0x8
+#define MMEA1_DSM_CNTL2B__MAM_D3MEM_ENABLE_ERROR_INJECT__SHIFT 0x9
+#define MMEA1_DSM_CNTL2B__MAM_D3MEM_SELECT_INJECT_DELAY__SHIFT 0xb
+#define MMEA1_DSM_CNTL2B__MAM_D0MEM_ENABLE_ERROR_INJECT_MASK 0x00000003L
+#define MMEA1_DSM_CNTL2B__MAM_D0MEM_SELECT_INJECT_DELAY_MASK 0x00000004L
+#define MMEA1_DSM_CNTL2B__MAM_D1MEM_ENABLE_ERROR_INJECT_MASK 0x00000018L
+#define MMEA1_DSM_CNTL2B__MAM_D1MEM_SELECT_INJECT_DELAY_MASK 0x00000020L
+#define MMEA1_DSM_CNTL2B__MAM_D2MEM_ENABLE_ERROR_INJECT_MASK 0x000000C0L
+#define MMEA1_DSM_CNTL2B__MAM_D2MEM_SELECT_INJECT_DELAY_MASK 0x00000100L
+#define MMEA1_DSM_CNTL2B__MAM_D3MEM_ENABLE_ERROR_INJECT_MASK 0x00000600L
+#define MMEA1_DSM_CNTL2B__MAM_D3MEM_SELECT_INJECT_DELAY_MASK 0x00000800L
+//MMEA1_CGTT_CLK_CTRL
+#define MMEA1_CGTT_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define MMEA1_CGTT_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define MMEA1_CGTT_CLK_CTRL__SPARE0__SHIFT 0xc
+#define MMEA1_CGTT_CLK_CTRL__SOFT_STALL_OVERRIDE_WRITE__SHIFT 0x14
+#define MMEA1_CGTT_CLK_CTRL__SOFT_STALL_OVERRIDE_READ__SHIFT 0x15
+#define MMEA1_CGTT_CLK_CTRL__SOFT_STALL_OVERRIDE_RETURN__SHIFT 0x16
+#define MMEA1_CGTT_CLK_CTRL__SPARE1__SHIFT 0x17
+#define MMEA1_CGTT_CLK_CTRL__LS_OVERRIDE__SHIFT 0x1b
+#define MMEA1_CGTT_CLK_CTRL__SOFT_OVERRIDE_WRITE__SHIFT 0x1c
+#define MMEA1_CGTT_CLK_CTRL__SOFT_OVERRIDE_READ__SHIFT 0x1d
+#define MMEA1_CGTT_CLK_CTRL__SOFT_OVERRIDE_RETURN__SHIFT 0x1e
+#define MMEA1_CGTT_CLK_CTRL__SOFT_OVERRIDE_REGISTER__SHIFT 0x1f
+#define MMEA1_CGTT_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define MMEA1_CGTT_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define MMEA1_CGTT_CLK_CTRL__SPARE0_MASK 0x000FF000L
+#define MMEA1_CGTT_CLK_CTRL__SOFT_STALL_OVERRIDE_WRITE_MASK 0x00100000L
+#define MMEA1_CGTT_CLK_CTRL__SOFT_STALL_OVERRIDE_READ_MASK 0x00200000L
+#define MMEA1_CGTT_CLK_CTRL__SOFT_STALL_OVERRIDE_RETURN_MASK 0x00400000L
+#define MMEA1_CGTT_CLK_CTRL__SPARE1_MASK 0x07800000L
+#define MMEA1_CGTT_CLK_CTRL__LS_OVERRIDE_MASK 0x08000000L
+#define MMEA1_CGTT_CLK_CTRL__SOFT_OVERRIDE_WRITE_MASK 0x10000000L
+#define MMEA1_CGTT_CLK_CTRL__SOFT_OVERRIDE_READ_MASK 0x20000000L
+#define MMEA1_CGTT_CLK_CTRL__SOFT_OVERRIDE_RETURN_MASK 0x40000000L
+#define MMEA1_CGTT_CLK_CTRL__SOFT_OVERRIDE_REGISTER_MASK 0x80000000L
+//MMEA1_EDC_MODE
+#define MMEA1_EDC_MODE__COUNT_FED_OUT__SHIFT 0x10
+#define MMEA1_EDC_MODE__GATE_FUE__SHIFT 0x11
+#define MMEA1_EDC_MODE__DED_MODE__SHIFT 0x14
+#define MMEA1_EDC_MODE__PROP_FED__SHIFT 0x1d
+#define MMEA1_EDC_MODE__BYPASS__SHIFT 0x1f
+#define MMEA1_EDC_MODE__COUNT_FED_OUT_MASK 0x00010000L
+#define MMEA1_EDC_MODE__GATE_FUE_MASK 0x00020000L
+#define MMEA1_EDC_MODE__DED_MODE_MASK 0x00300000L
+#define MMEA1_EDC_MODE__PROP_FED_MASK 0x20000000L
+#define MMEA1_EDC_MODE__BYPASS_MASK 0x80000000L
+//MMEA1_ERR_STATUS
+#define MMEA1_ERR_STATUS__SDP_RDRSP_STATUS__SHIFT 0x0
+#define MMEA1_ERR_STATUS__SDP_WRRSP_STATUS__SHIFT 0x4
+#define MMEA1_ERR_STATUS__SDP_RDRSP_DATASTATUS__SHIFT 0x8
+#define MMEA1_ERR_STATUS__SDP_RDRSP_DATAPARITY_ERROR__SHIFT 0xa
+#define MMEA1_ERR_STATUS__CLEAR_ERROR_STATUS__SHIFT 0xb
+#define MMEA1_ERR_STATUS__BUSY_ON_ERROR__SHIFT 0xc
+#define MMEA1_ERR_STATUS__FUE_FLAG__SHIFT 0xd
+#define MMEA1_ERR_STATUS__IGNORE_RDRSP_FED__SHIFT 0xe
+#define MMEA1_ERR_STATUS__INTERRUPT_ON_FATAL__SHIFT 0xf
+#define MMEA1_ERR_STATUS__INTERRUPT_IGNORE_CLI_FATAL__SHIFT 0x10
+#define MMEA1_ERR_STATUS__LEVEL_INTERRUPT__SHIFT 0x11
+#define MMEA1_ERR_STATUS__BUSY_ON_CMPL_FATAL_ERROR__SHIFT 0x12
+#define MMEA1_ERR_STATUS__FUE_FLAG_CLIENT__SHIFT 0x13
+#define MMEA1_ERR_STATUS__SDP_RDRSP_STATUS_MASK 0x0000000FL
+#define MMEA1_ERR_STATUS__SDP_WRRSP_STATUS_MASK 0x000000F0L
+#define MMEA1_ERR_STATUS__SDP_RDRSP_DATASTATUS_MASK 0x00000300L
+#define MMEA1_ERR_STATUS__SDP_RDRSP_DATAPARITY_ERROR_MASK 0x00000400L
+#define MMEA1_ERR_STATUS__CLEAR_ERROR_STATUS_MASK 0x00000800L
+#define MMEA1_ERR_STATUS__BUSY_ON_ERROR_MASK 0x00001000L
+#define MMEA1_ERR_STATUS__FUE_FLAG_MASK 0x00002000L
+#define MMEA1_ERR_STATUS__IGNORE_RDRSP_FED_MASK 0x00004000L
+#define MMEA1_ERR_STATUS__INTERRUPT_ON_FATAL_MASK 0x00008000L
+#define MMEA1_ERR_STATUS__INTERRUPT_IGNORE_CLI_FATAL_MASK 0x00010000L
+#define MMEA1_ERR_STATUS__LEVEL_INTERRUPT_MASK 0x00020000L
+#define MMEA1_ERR_STATUS__BUSY_ON_CMPL_FATAL_ERROR_MASK 0x00040000L
+#define MMEA1_ERR_STATUS__FUE_FLAG_CLIENT_MASK 0x00080000L
+//MMEA1_MISC2
+#define MMEA1_MISC2__CSGROUP_SWAP_IN_DRAM_ARB__SHIFT 0x0
+#define MMEA1_MISC2__CSGROUP_SWAP_IN_GMI_ARB__SHIFT 0x1
+#define MMEA1_MISC2__CSGRP_BURST_LIMIT_DATA_DRAM__SHIFT 0x2
+#define MMEA1_MISC2__CSGRP_BURST_LIMIT_DATA_GMI__SHIFT 0x7
+#define MMEA1_MISC2__IO_RDWR_PRIORITY_ENABLE__SHIFT 0xc
+#define MMEA1_MISC2__RRET_SWAP_MODE__SHIFT 0xd
+#define MMEA1_MISC2__BLOCK_REQUESTS__SHIFT 0xe
+#define MMEA1_MISC2__REQUESTS_BLOCKED__SHIFT 0xf
+#define MMEA1_MISC2__DRAM_RD_THROTTLE__SHIFT 0x10
+#define MMEA1_MISC2__DRAM_WR_THROTTLE__SHIFT 0x11
+#define MMEA1_MISC2__GMI_RD_THROTTLE__SHIFT 0x12
+#define MMEA1_MISC2__GMI_WR_THROTTLE__SHIFT 0x13
+#define MMEA1_MISC2__CSGROUP_SWAP_IN_DRAM_ARB_MASK 0x00000001L
+#define MMEA1_MISC2__CSGROUP_SWAP_IN_GMI_ARB_MASK 0x00000002L
+#define MMEA1_MISC2__CSGRP_BURST_LIMIT_DATA_DRAM_MASK 0x0000007CL
+#define MMEA1_MISC2__CSGRP_BURST_LIMIT_DATA_GMI_MASK 0x00000F80L
+#define MMEA1_MISC2__IO_RDWR_PRIORITY_ENABLE_MASK 0x00001000L
+#define MMEA1_MISC2__RRET_SWAP_MODE_MASK 0x00002000L
+#define MMEA1_MISC2__BLOCK_REQUESTS_MASK 0x00004000L
+#define MMEA1_MISC2__REQUESTS_BLOCKED_MASK 0x00008000L
+#define MMEA1_MISC2__DRAM_RD_THROTTLE_MASK 0x00010000L
+#define MMEA1_MISC2__DRAM_WR_THROTTLE_MASK 0x00020000L
+#define MMEA1_MISC2__GMI_RD_THROTTLE_MASK 0x00040000L
+#define MMEA1_MISC2__GMI_WR_THROTTLE_MASK 0x00080000L
+//MMEA1_MISC_AON
+#define MMEA1_MISC_AON__LINKMGR_PARTACK_HYSTERESIS__SHIFT 0x0
+#define MMEA1_MISC_AON__LINKMGR_PARTACK_DEASSERT_MODE__SHIFT 0x2
+#define MMEA1_MISC_AON__LINKMGR_PARTACK_HYSTERESIS_MASK 0x00000003L
+#define MMEA1_MISC_AON__LINKMGR_PARTACK_DEASSERT_MODE_MASK 0x00000004L
+
+
+// addressBlock: aid_mmhub_ea_mmeadec2
+//MMEA2_DRAM_RD_CLI2GRP_MAP0
+#define MMEA2_DRAM_RD_CLI2GRP_MAP0__CID0_GROUP__SHIFT 0x0
+#define MMEA2_DRAM_RD_CLI2GRP_MAP0__CID1_GROUP__SHIFT 0x2
+#define MMEA2_DRAM_RD_CLI2GRP_MAP0__CID2_GROUP__SHIFT 0x4
+#define MMEA2_DRAM_RD_CLI2GRP_MAP0__CID3_GROUP__SHIFT 0x6
+#define MMEA2_DRAM_RD_CLI2GRP_MAP0__CID4_GROUP__SHIFT 0x8
+#define MMEA2_DRAM_RD_CLI2GRP_MAP0__CID5_GROUP__SHIFT 0xa
+#define MMEA2_DRAM_RD_CLI2GRP_MAP0__CID6_GROUP__SHIFT 0xc
+#define MMEA2_DRAM_RD_CLI2GRP_MAP0__CID7_GROUP__SHIFT 0xe
+#define MMEA2_DRAM_RD_CLI2GRP_MAP0__CID8_GROUP__SHIFT 0x10
+#define MMEA2_DRAM_RD_CLI2GRP_MAP0__CID9_GROUP__SHIFT 0x12
+#define MMEA2_DRAM_RD_CLI2GRP_MAP0__CID10_GROUP__SHIFT 0x14
+#define MMEA2_DRAM_RD_CLI2GRP_MAP0__CID11_GROUP__SHIFT 0x16
+#define MMEA2_DRAM_RD_CLI2GRP_MAP0__CID12_GROUP__SHIFT 0x18
+#define MMEA2_DRAM_RD_CLI2GRP_MAP0__CID13_GROUP__SHIFT 0x1a
+#define MMEA2_DRAM_RD_CLI2GRP_MAP0__CID14_GROUP__SHIFT 0x1c
+#define MMEA2_DRAM_RD_CLI2GRP_MAP0__CID15_GROUP__SHIFT 0x1e
+#define MMEA2_DRAM_RD_CLI2GRP_MAP0__CID0_GROUP_MASK 0x00000003L
+#define MMEA2_DRAM_RD_CLI2GRP_MAP0__CID1_GROUP_MASK 0x0000000CL
+#define MMEA2_DRAM_RD_CLI2GRP_MAP0__CID2_GROUP_MASK 0x00000030L
+#define MMEA2_DRAM_RD_CLI2GRP_MAP0__CID3_GROUP_MASK 0x000000C0L
+#define MMEA2_DRAM_RD_CLI2GRP_MAP0__CID4_GROUP_MASK 0x00000300L
+#define MMEA2_DRAM_RD_CLI2GRP_MAP0__CID5_GROUP_MASK 0x00000C00L
+#define MMEA2_DRAM_RD_CLI2GRP_MAP0__CID6_GROUP_MASK 0x00003000L
+#define MMEA2_DRAM_RD_CLI2GRP_MAP0__CID7_GROUP_MASK 0x0000C000L
+#define MMEA2_DRAM_RD_CLI2GRP_MAP0__CID8_GROUP_MASK 0x00030000L
+#define MMEA2_DRAM_RD_CLI2GRP_MAP0__CID9_GROUP_MASK 0x000C0000L
+#define MMEA2_DRAM_RD_CLI2GRP_MAP0__CID10_GROUP_MASK 0x00300000L
+#define MMEA2_DRAM_RD_CLI2GRP_MAP0__CID11_GROUP_MASK 0x00C00000L
+#define MMEA2_DRAM_RD_CLI2GRP_MAP0__CID12_GROUP_MASK 0x03000000L
+#define MMEA2_DRAM_RD_CLI2GRP_MAP0__CID13_GROUP_MASK 0x0C000000L
+#define MMEA2_DRAM_RD_CLI2GRP_MAP0__CID14_GROUP_MASK 0x30000000L
+#define MMEA2_DRAM_RD_CLI2GRP_MAP0__CID15_GROUP_MASK 0xC0000000L
+//MMEA2_DRAM_RD_CLI2GRP_MAP1
+#define MMEA2_DRAM_RD_CLI2GRP_MAP1__CID16_GROUP__SHIFT 0x0
+#define MMEA2_DRAM_RD_CLI2GRP_MAP1__CID17_GROUP__SHIFT 0x2
+#define MMEA2_DRAM_RD_CLI2GRP_MAP1__CID18_GROUP__SHIFT 0x4
+#define MMEA2_DRAM_RD_CLI2GRP_MAP1__CID19_GROUP__SHIFT 0x6
+#define MMEA2_DRAM_RD_CLI2GRP_MAP1__CID20_GROUP__SHIFT 0x8
+#define MMEA2_DRAM_RD_CLI2GRP_MAP1__CID21_GROUP__SHIFT 0xa
+#define MMEA2_DRAM_RD_CLI2GRP_MAP1__CID22_GROUP__SHIFT 0xc
+#define MMEA2_DRAM_RD_CLI2GRP_MAP1__CID23_GROUP__SHIFT 0xe
+#define MMEA2_DRAM_RD_CLI2GRP_MAP1__CID24_GROUP__SHIFT 0x10
+#define MMEA2_DRAM_RD_CLI2GRP_MAP1__CID25_GROUP__SHIFT 0x12
+#define MMEA2_DRAM_RD_CLI2GRP_MAP1__CID26_GROUP__SHIFT 0x14
+#define MMEA2_DRAM_RD_CLI2GRP_MAP1__CID27_GROUP__SHIFT 0x16
+#define MMEA2_DRAM_RD_CLI2GRP_MAP1__CID28_GROUP__SHIFT 0x18
+#define MMEA2_DRAM_RD_CLI2GRP_MAP1__CID29_GROUP__SHIFT 0x1a
+#define MMEA2_DRAM_RD_CLI2GRP_MAP1__CID30_GROUP__SHIFT 0x1c
+#define MMEA2_DRAM_RD_CLI2GRP_MAP1__CID31_GROUP__SHIFT 0x1e
+#define MMEA2_DRAM_RD_CLI2GRP_MAP1__CID16_GROUP_MASK 0x00000003L
+#define MMEA2_DRAM_RD_CLI2GRP_MAP1__CID17_GROUP_MASK 0x0000000CL
+#define MMEA2_DRAM_RD_CLI2GRP_MAP1__CID18_GROUP_MASK 0x00000030L
+#define MMEA2_DRAM_RD_CLI2GRP_MAP1__CID19_GROUP_MASK 0x000000C0L
+#define MMEA2_DRAM_RD_CLI2GRP_MAP1__CID20_GROUP_MASK 0x00000300L
+#define MMEA2_DRAM_RD_CLI2GRP_MAP1__CID21_GROUP_MASK 0x00000C00L
+#define MMEA2_DRAM_RD_CLI2GRP_MAP1__CID22_GROUP_MASK 0x00003000L
+#define MMEA2_DRAM_RD_CLI2GRP_MAP1__CID23_GROUP_MASK 0x0000C000L
+#define MMEA2_DRAM_RD_CLI2GRP_MAP1__CID24_GROUP_MASK 0x00030000L
+#define MMEA2_DRAM_RD_CLI2GRP_MAP1__CID25_GROUP_MASK 0x000C0000L
+#define MMEA2_DRAM_RD_CLI2GRP_MAP1__CID26_GROUP_MASK 0x00300000L
+#define MMEA2_DRAM_RD_CLI2GRP_MAP1__CID27_GROUP_MASK 0x00C00000L
+#define MMEA2_DRAM_RD_CLI2GRP_MAP1__CID28_GROUP_MASK 0x03000000L
+#define MMEA2_DRAM_RD_CLI2GRP_MAP1__CID29_GROUP_MASK 0x0C000000L
+#define MMEA2_DRAM_RD_CLI2GRP_MAP1__CID30_GROUP_MASK 0x30000000L
+#define MMEA2_DRAM_RD_CLI2GRP_MAP1__CID31_GROUP_MASK 0xC0000000L
+//MMEA2_DRAM_WR_CLI2GRP_MAP0
+#define MMEA2_DRAM_WR_CLI2GRP_MAP0__CID0_GROUP__SHIFT 0x0
+#define MMEA2_DRAM_WR_CLI2GRP_MAP0__CID1_GROUP__SHIFT 0x2
+#define MMEA2_DRAM_WR_CLI2GRP_MAP0__CID2_GROUP__SHIFT 0x4
+#define MMEA2_DRAM_WR_CLI2GRP_MAP0__CID3_GROUP__SHIFT 0x6
+#define MMEA2_DRAM_WR_CLI2GRP_MAP0__CID4_GROUP__SHIFT 0x8
+#define MMEA2_DRAM_WR_CLI2GRP_MAP0__CID5_GROUP__SHIFT 0xa
+#define MMEA2_DRAM_WR_CLI2GRP_MAP0__CID6_GROUP__SHIFT 0xc
+#define MMEA2_DRAM_WR_CLI2GRP_MAP0__CID7_GROUP__SHIFT 0xe
+#define MMEA2_DRAM_WR_CLI2GRP_MAP0__CID8_GROUP__SHIFT 0x10
+#define MMEA2_DRAM_WR_CLI2GRP_MAP0__CID9_GROUP__SHIFT 0x12
+#define MMEA2_DRAM_WR_CLI2GRP_MAP0__CID10_GROUP__SHIFT 0x14
+#define MMEA2_DRAM_WR_CLI2GRP_MAP0__CID11_GROUP__SHIFT 0x16
+#define MMEA2_DRAM_WR_CLI2GRP_MAP0__CID12_GROUP__SHIFT 0x18
+#define MMEA2_DRAM_WR_CLI2GRP_MAP0__CID13_GROUP__SHIFT 0x1a
+#define MMEA2_DRAM_WR_CLI2GRP_MAP0__CID14_GROUP__SHIFT 0x1c
+#define MMEA2_DRAM_WR_CLI2GRP_MAP0__CID15_GROUP__SHIFT 0x1e
+#define MMEA2_DRAM_WR_CLI2GRP_MAP0__CID0_GROUP_MASK 0x00000003L
+#define MMEA2_DRAM_WR_CLI2GRP_MAP0__CID1_GROUP_MASK 0x0000000CL
+#define MMEA2_DRAM_WR_CLI2GRP_MAP0__CID2_GROUP_MASK 0x00000030L
+#define MMEA2_DRAM_WR_CLI2GRP_MAP0__CID3_GROUP_MASK 0x000000C0L
+#define MMEA2_DRAM_WR_CLI2GRP_MAP0__CID4_GROUP_MASK 0x00000300L
+#define MMEA2_DRAM_WR_CLI2GRP_MAP0__CID5_GROUP_MASK 0x00000C00L
+#define MMEA2_DRAM_WR_CLI2GRP_MAP0__CID6_GROUP_MASK 0x00003000L
+#define MMEA2_DRAM_WR_CLI2GRP_MAP0__CID7_GROUP_MASK 0x0000C000L
+#define MMEA2_DRAM_WR_CLI2GRP_MAP0__CID8_GROUP_MASK 0x00030000L
+#define MMEA2_DRAM_WR_CLI2GRP_MAP0__CID9_GROUP_MASK 0x000C0000L
+#define MMEA2_DRAM_WR_CLI2GRP_MAP0__CID10_GROUP_MASK 0x00300000L
+#define MMEA2_DRAM_WR_CLI2GRP_MAP0__CID11_GROUP_MASK 0x00C00000L
+#define MMEA2_DRAM_WR_CLI2GRP_MAP0__CID12_GROUP_MASK 0x03000000L
+#define MMEA2_DRAM_WR_CLI2GRP_MAP0__CID13_GROUP_MASK 0x0C000000L
+#define MMEA2_DRAM_WR_CLI2GRP_MAP0__CID14_GROUP_MASK 0x30000000L
+#define MMEA2_DRAM_WR_CLI2GRP_MAP0__CID15_GROUP_MASK 0xC0000000L
+//MMEA2_DRAM_WR_CLI2GRP_MAP1
+#define MMEA2_DRAM_WR_CLI2GRP_MAP1__CID16_GROUP__SHIFT 0x0
+#define MMEA2_DRAM_WR_CLI2GRP_MAP1__CID17_GROUP__SHIFT 0x2
+#define MMEA2_DRAM_WR_CLI2GRP_MAP1__CID18_GROUP__SHIFT 0x4
+#define MMEA2_DRAM_WR_CLI2GRP_MAP1__CID19_GROUP__SHIFT 0x6
+#define MMEA2_DRAM_WR_CLI2GRP_MAP1__CID20_GROUP__SHIFT 0x8
+#define MMEA2_DRAM_WR_CLI2GRP_MAP1__CID21_GROUP__SHIFT 0xa
+#define MMEA2_DRAM_WR_CLI2GRP_MAP1__CID22_GROUP__SHIFT 0xc
+#define MMEA2_DRAM_WR_CLI2GRP_MAP1__CID23_GROUP__SHIFT 0xe
+#define MMEA2_DRAM_WR_CLI2GRP_MAP1__CID24_GROUP__SHIFT 0x10
+#define MMEA2_DRAM_WR_CLI2GRP_MAP1__CID25_GROUP__SHIFT 0x12
+#define MMEA2_DRAM_WR_CLI2GRP_MAP1__CID26_GROUP__SHIFT 0x14
+#define MMEA2_DRAM_WR_CLI2GRP_MAP1__CID27_GROUP__SHIFT 0x16
+#define MMEA2_DRAM_WR_CLI2GRP_MAP1__CID28_GROUP__SHIFT 0x18
+#define MMEA2_DRAM_WR_CLI2GRP_MAP1__CID29_GROUP__SHIFT 0x1a
+#define MMEA2_DRAM_WR_CLI2GRP_MAP1__CID30_GROUP__SHIFT 0x1c
+#define MMEA2_DRAM_WR_CLI2GRP_MAP1__CID31_GROUP__SHIFT 0x1e
+#define MMEA2_DRAM_WR_CLI2GRP_MAP1__CID16_GROUP_MASK 0x00000003L
+#define MMEA2_DRAM_WR_CLI2GRP_MAP1__CID17_GROUP_MASK 0x0000000CL
+#define MMEA2_DRAM_WR_CLI2GRP_MAP1__CID18_GROUP_MASK 0x00000030L
+#define MMEA2_DRAM_WR_CLI2GRP_MAP1__CID19_GROUP_MASK 0x000000C0L
+#define MMEA2_DRAM_WR_CLI2GRP_MAP1__CID20_GROUP_MASK 0x00000300L
+#define MMEA2_DRAM_WR_CLI2GRP_MAP1__CID21_GROUP_MASK 0x00000C00L
+#define MMEA2_DRAM_WR_CLI2GRP_MAP1__CID22_GROUP_MASK 0x00003000L
+#define MMEA2_DRAM_WR_CLI2GRP_MAP1__CID23_GROUP_MASK 0x0000C000L
+#define MMEA2_DRAM_WR_CLI2GRP_MAP1__CID24_GROUP_MASK 0x00030000L
+#define MMEA2_DRAM_WR_CLI2GRP_MAP1__CID25_GROUP_MASK 0x000C0000L
+#define MMEA2_DRAM_WR_CLI2GRP_MAP1__CID26_GROUP_MASK 0x00300000L
+#define MMEA2_DRAM_WR_CLI2GRP_MAP1__CID27_GROUP_MASK 0x00C00000L
+#define MMEA2_DRAM_WR_CLI2GRP_MAP1__CID28_GROUP_MASK 0x03000000L
+#define MMEA2_DRAM_WR_CLI2GRP_MAP1__CID29_GROUP_MASK 0x0C000000L
+#define MMEA2_DRAM_WR_CLI2GRP_MAP1__CID30_GROUP_MASK 0x30000000L
+#define MMEA2_DRAM_WR_CLI2GRP_MAP1__CID31_GROUP_MASK 0xC0000000L
+//MMEA2_DRAM_RD_GRP2VC_MAP
+#define MMEA2_DRAM_RD_GRP2VC_MAP__GROUP0_VC__SHIFT 0x0
+#define MMEA2_DRAM_RD_GRP2VC_MAP__GROUP1_VC__SHIFT 0x3
+#define MMEA2_DRAM_RD_GRP2VC_MAP__GROUP2_VC__SHIFT 0x6
+#define MMEA2_DRAM_RD_GRP2VC_MAP__GROUP3_VC__SHIFT 0x9
+#define MMEA2_DRAM_RD_GRP2VC_MAP__GROUP0_VC_MASK 0x00000007L
+#define MMEA2_DRAM_RD_GRP2VC_MAP__GROUP1_VC_MASK 0x00000038L
+#define MMEA2_DRAM_RD_GRP2VC_MAP__GROUP2_VC_MASK 0x000001C0L
+#define MMEA2_DRAM_RD_GRP2VC_MAP__GROUP3_VC_MASK 0x00000E00L
+//MMEA2_DRAM_WR_GRP2VC_MAP
+#define MMEA2_DRAM_WR_GRP2VC_MAP__GROUP0_VC__SHIFT 0x0
+#define MMEA2_DRAM_WR_GRP2VC_MAP__GROUP1_VC__SHIFT 0x3
+#define MMEA2_DRAM_WR_GRP2VC_MAP__GROUP2_VC__SHIFT 0x6
+#define MMEA2_DRAM_WR_GRP2VC_MAP__GROUP3_VC__SHIFT 0x9
+#define MMEA2_DRAM_WR_GRP2VC_MAP__GROUP0_VC_MASK 0x00000007L
+#define MMEA2_DRAM_WR_GRP2VC_MAP__GROUP1_VC_MASK 0x00000038L
+#define MMEA2_DRAM_WR_GRP2VC_MAP__GROUP2_VC_MASK 0x000001C0L
+#define MMEA2_DRAM_WR_GRP2VC_MAP__GROUP3_VC_MASK 0x00000E00L
+//MMEA2_DRAM_RD_LAZY
+#define MMEA2_DRAM_RD_LAZY__GROUP0_DELAY__SHIFT 0x0
+#define MMEA2_DRAM_RD_LAZY__GROUP1_DELAY__SHIFT 0x3
+#define MMEA2_DRAM_RD_LAZY__GROUP2_DELAY__SHIFT 0x6
+#define MMEA2_DRAM_RD_LAZY__GROUP3_DELAY__SHIFT 0x9
+#define MMEA2_DRAM_RD_LAZY__REQ_ACCUM_THRESH__SHIFT 0xc
+#define MMEA2_DRAM_RD_LAZY__REQ_ACCUM_TIMEOUT__SHIFT 0x14
+#define MMEA2_DRAM_RD_LAZY__REQ_ACCUM_IDLEMAX__SHIFT 0x1b
+#define MMEA2_DRAM_RD_LAZY__GROUP0_DELAY_MASK 0x00000007L
+#define MMEA2_DRAM_RD_LAZY__GROUP1_DELAY_MASK 0x00000038L
+#define MMEA2_DRAM_RD_LAZY__GROUP2_DELAY_MASK 0x000001C0L
+#define MMEA2_DRAM_RD_LAZY__GROUP3_DELAY_MASK 0x00000E00L
+#define MMEA2_DRAM_RD_LAZY__REQ_ACCUM_THRESH_MASK 0x0003F000L
+#define MMEA2_DRAM_RD_LAZY__REQ_ACCUM_TIMEOUT_MASK 0x07F00000L
+#define MMEA2_DRAM_RD_LAZY__REQ_ACCUM_IDLEMAX_MASK 0x78000000L
+//MMEA2_DRAM_WR_LAZY
+#define MMEA2_DRAM_WR_LAZY__GROUP0_DELAY__SHIFT 0x0
+#define MMEA2_DRAM_WR_LAZY__GROUP1_DELAY__SHIFT 0x3
+#define MMEA2_DRAM_WR_LAZY__GROUP2_DELAY__SHIFT 0x6
+#define MMEA2_DRAM_WR_LAZY__GROUP3_DELAY__SHIFT 0x9
+#define MMEA2_DRAM_WR_LAZY__REQ_ACCUM_THRESH__SHIFT 0xc
+#define MMEA2_DRAM_WR_LAZY__REQ_ACCUM_TIMEOUT__SHIFT 0x14
+#define MMEA2_DRAM_WR_LAZY__REQ_ACCUM_IDLEMAX__SHIFT 0x1b
+#define MMEA2_DRAM_WR_LAZY__GROUP0_DELAY_MASK 0x00000007L
+#define MMEA2_DRAM_WR_LAZY__GROUP1_DELAY_MASK 0x00000038L
+#define MMEA2_DRAM_WR_LAZY__GROUP2_DELAY_MASK 0x000001C0L
+#define MMEA2_DRAM_WR_LAZY__GROUP3_DELAY_MASK 0x00000E00L
+#define MMEA2_DRAM_WR_LAZY__REQ_ACCUM_THRESH_MASK 0x0003F000L
+#define MMEA2_DRAM_WR_LAZY__REQ_ACCUM_TIMEOUT_MASK 0x07F00000L
+#define MMEA2_DRAM_WR_LAZY__REQ_ACCUM_IDLEMAX_MASK 0x78000000L
+//MMEA2_DRAM_RD_CAM_CNTL
+#define MMEA2_DRAM_RD_CAM_CNTL__DEPTH_GROUP0__SHIFT 0x0
+#define MMEA2_DRAM_RD_CAM_CNTL__DEPTH_GROUP1__SHIFT 0x4
+#define MMEA2_DRAM_RD_CAM_CNTL__DEPTH_GROUP2__SHIFT 0x8
+#define MMEA2_DRAM_RD_CAM_CNTL__DEPTH_GROUP3__SHIFT 0xc
+#define MMEA2_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP0__SHIFT 0x10
+#define MMEA2_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP1__SHIFT 0x13
+#define MMEA2_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP2__SHIFT 0x16
+#define MMEA2_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP3__SHIFT 0x19
+#define MMEA2_DRAM_RD_CAM_CNTL__REFILL_CHAIN__SHIFT 0x1c
+#define MMEA2_DRAM_RD_CAM_CNTL__PAGEBASED_CHAINING__SHIFT 0x1d
+#define MMEA2_DRAM_RD_CAM_CNTL__DEPTH_GROUP0_MASK 0x0000000FL
+#define MMEA2_DRAM_RD_CAM_CNTL__DEPTH_GROUP1_MASK 0x000000F0L
+#define MMEA2_DRAM_RD_CAM_CNTL__DEPTH_GROUP2_MASK 0x00000F00L
+#define MMEA2_DRAM_RD_CAM_CNTL__DEPTH_GROUP3_MASK 0x0000F000L
+#define MMEA2_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP0_MASK 0x00070000L
+#define MMEA2_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP1_MASK 0x00380000L
+#define MMEA2_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP2_MASK 0x01C00000L
+#define MMEA2_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP3_MASK 0x0E000000L
+#define MMEA2_DRAM_RD_CAM_CNTL__REFILL_CHAIN_MASK 0x10000000L
+#define MMEA2_DRAM_RD_CAM_CNTL__PAGEBASED_CHAINING_MASK 0x20000000L
+//MMEA2_DRAM_WR_CAM_CNTL
+#define MMEA2_DRAM_WR_CAM_CNTL__DEPTH_GROUP0__SHIFT 0x0
+#define MMEA2_DRAM_WR_CAM_CNTL__DEPTH_GROUP1__SHIFT 0x4
+#define MMEA2_DRAM_WR_CAM_CNTL__DEPTH_GROUP2__SHIFT 0x8
+#define MMEA2_DRAM_WR_CAM_CNTL__DEPTH_GROUP3__SHIFT 0xc
+#define MMEA2_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP0__SHIFT 0x10
+#define MMEA2_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP1__SHIFT 0x13
+#define MMEA2_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP2__SHIFT 0x16
+#define MMEA2_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP3__SHIFT 0x19
+#define MMEA2_DRAM_WR_CAM_CNTL__REFILL_CHAIN__SHIFT 0x1c
+#define MMEA2_DRAM_WR_CAM_CNTL__PAGEBASED_CHAINING__SHIFT 0x1d
+#define MMEA2_DRAM_WR_CAM_CNTL__DEPTH_GROUP0_MASK 0x0000000FL
+#define MMEA2_DRAM_WR_CAM_CNTL__DEPTH_GROUP1_MASK 0x000000F0L
+#define MMEA2_DRAM_WR_CAM_CNTL__DEPTH_GROUP2_MASK 0x00000F00L
+#define MMEA2_DRAM_WR_CAM_CNTL__DEPTH_GROUP3_MASK 0x0000F000L
+#define MMEA2_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP0_MASK 0x00070000L
+#define MMEA2_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP1_MASK 0x00380000L
+#define MMEA2_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP2_MASK 0x01C00000L
+#define MMEA2_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP3_MASK 0x0E000000L
+#define MMEA2_DRAM_WR_CAM_CNTL__REFILL_CHAIN_MASK 0x10000000L
+#define MMEA2_DRAM_WR_CAM_CNTL__PAGEBASED_CHAINING_MASK 0x20000000L
+//MMEA2_DRAM_PAGE_BURST
+#define MMEA2_DRAM_PAGE_BURST__RD_LIMIT_LO__SHIFT 0x0
+#define MMEA2_DRAM_PAGE_BURST__RD_LIMIT_HI__SHIFT 0x8
+#define MMEA2_DRAM_PAGE_BURST__WR_LIMIT_LO__SHIFT 0x10
+#define MMEA2_DRAM_PAGE_BURST__WR_LIMIT_HI__SHIFT 0x18
+#define MMEA2_DRAM_PAGE_BURST__RD_LIMIT_LO_MASK 0x000000FFL
+#define MMEA2_DRAM_PAGE_BURST__RD_LIMIT_HI_MASK 0x0000FF00L
+#define MMEA2_DRAM_PAGE_BURST__WR_LIMIT_LO_MASK 0x00FF0000L
+#define MMEA2_DRAM_PAGE_BURST__WR_LIMIT_HI_MASK 0xFF000000L
+//MMEA2_DRAM_RD_PRI_AGE
+#define MMEA2_DRAM_RD_PRI_AGE__GROUP0_AGING_RATE__SHIFT 0x0
+#define MMEA2_DRAM_RD_PRI_AGE__GROUP1_AGING_RATE__SHIFT 0x3
+#define MMEA2_DRAM_RD_PRI_AGE__GROUP2_AGING_RATE__SHIFT 0x6
+#define MMEA2_DRAM_RD_PRI_AGE__GROUP3_AGING_RATE__SHIFT 0x9
+#define MMEA2_DRAM_RD_PRI_AGE__GROUP0_AGE_COEFFICIENT__SHIFT 0xc
+#define MMEA2_DRAM_RD_PRI_AGE__GROUP1_AGE_COEFFICIENT__SHIFT 0xf
+#define MMEA2_DRAM_RD_PRI_AGE__GROUP2_AGE_COEFFICIENT__SHIFT 0x12
+#define MMEA2_DRAM_RD_PRI_AGE__GROUP3_AGE_COEFFICIENT__SHIFT 0x15
+#define MMEA2_DRAM_RD_PRI_AGE__GROUP0_AGING_RATE_MASK 0x00000007L
+#define MMEA2_DRAM_RD_PRI_AGE__GROUP1_AGING_RATE_MASK 0x00000038L
+#define MMEA2_DRAM_RD_PRI_AGE__GROUP2_AGING_RATE_MASK 0x000001C0L
+#define MMEA2_DRAM_RD_PRI_AGE__GROUP3_AGING_RATE_MASK 0x00000E00L
+#define MMEA2_DRAM_RD_PRI_AGE__GROUP0_AGE_COEFFICIENT_MASK 0x00007000L
+#define MMEA2_DRAM_RD_PRI_AGE__GROUP1_AGE_COEFFICIENT_MASK 0x00038000L
+#define MMEA2_DRAM_RD_PRI_AGE__GROUP2_AGE_COEFFICIENT_MASK 0x001C0000L
+#define MMEA2_DRAM_RD_PRI_AGE__GROUP3_AGE_COEFFICIENT_MASK 0x00E00000L
+//MMEA2_DRAM_WR_PRI_AGE
+#define MMEA2_DRAM_WR_PRI_AGE__GROUP0_AGING_RATE__SHIFT 0x0
+#define MMEA2_DRAM_WR_PRI_AGE__GROUP1_AGING_RATE__SHIFT 0x3
+#define MMEA2_DRAM_WR_PRI_AGE__GROUP2_AGING_RATE__SHIFT 0x6
+#define MMEA2_DRAM_WR_PRI_AGE__GROUP3_AGING_RATE__SHIFT 0x9
+#define MMEA2_DRAM_WR_PRI_AGE__GROUP0_AGE_COEFFICIENT__SHIFT 0xc
+#define MMEA2_DRAM_WR_PRI_AGE__GROUP1_AGE_COEFFICIENT__SHIFT 0xf
+#define MMEA2_DRAM_WR_PRI_AGE__GROUP2_AGE_COEFFICIENT__SHIFT 0x12
+#define MMEA2_DRAM_WR_PRI_AGE__GROUP3_AGE_COEFFICIENT__SHIFT 0x15
+#define MMEA2_DRAM_WR_PRI_AGE__GROUP0_AGING_RATE_MASK 0x00000007L
+#define MMEA2_DRAM_WR_PRI_AGE__GROUP1_AGING_RATE_MASK 0x00000038L
+#define MMEA2_DRAM_WR_PRI_AGE__GROUP2_AGING_RATE_MASK 0x000001C0L
+#define MMEA2_DRAM_WR_PRI_AGE__GROUP3_AGING_RATE_MASK 0x00000E00L
+#define MMEA2_DRAM_WR_PRI_AGE__GROUP0_AGE_COEFFICIENT_MASK 0x00007000L
+#define MMEA2_DRAM_WR_PRI_AGE__GROUP1_AGE_COEFFICIENT_MASK 0x00038000L
+#define MMEA2_DRAM_WR_PRI_AGE__GROUP2_AGE_COEFFICIENT_MASK 0x001C0000L
+#define MMEA2_DRAM_WR_PRI_AGE__GROUP3_AGE_COEFFICIENT_MASK 0x00E00000L
+//MMEA2_DRAM_RD_PRI_QUEUING
+#define MMEA2_DRAM_RD_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT__SHIFT 0x0
+#define MMEA2_DRAM_RD_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT__SHIFT 0x3
+#define MMEA2_DRAM_RD_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT__SHIFT 0x6
+#define MMEA2_DRAM_RD_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT__SHIFT 0x9
+#define MMEA2_DRAM_RD_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT_MASK 0x00000007L
+#define MMEA2_DRAM_RD_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT_MASK 0x00000038L
+#define MMEA2_DRAM_RD_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT_MASK 0x000001C0L
+#define MMEA2_DRAM_RD_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT_MASK 0x00000E00L
+//MMEA2_DRAM_WR_PRI_QUEUING
+#define MMEA2_DRAM_WR_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT__SHIFT 0x0
+#define MMEA2_DRAM_WR_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT__SHIFT 0x3
+#define MMEA2_DRAM_WR_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT__SHIFT 0x6
+#define MMEA2_DRAM_WR_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT__SHIFT 0x9
+#define MMEA2_DRAM_WR_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT_MASK 0x00000007L
+#define MMEA2_DRAM_WR_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT_MASK 0x00000038L
+#define MMEA2_DRAM_WR_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT_MASK 0x000001C0L
+#define MMEA2_DRAM_WR_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT_MASK 0x00000E00L
+//MMEA2_DRAM_RD_PRI_FIXED
+#define MMEA2_DRAM_RD_PRI_FIXED__GROUP0_FIXED_COEFFICIENT__SHIFT 0x0
+#define MMEA2_DRAM_RD_PRI_FIXED__GROUP1_FIXED_COEFFICIENT__SHIFT 0x3
+#define MMEA2_DRAM_RD_PRI_FIXED__GROUP2_FIXED_COEFFICIENT__SHIFT 0x6
+#define MMEA2_DRAM_RD_PRI_FIXED__GROUP3_FIXED_COEFFICIENT__SHIFT 0x9
+#define MMEA2_DRAM_RD_PRI_FIXED__GROUP0_FIXED_COEFFICIENT_MASK 0x00000007L
+#define MMEA2_DRAM_RD_PRI_FIXED__GROUP1_FIXED_COEFFICIENT_MASK 0x00000038L
+#define MMEA2_DRAM_RD_PRI_FIXED__GROUP2_FIXED_COEFFICIENT_MASK 0x000001C0L
+#define MMEA2_DRAM_RD_PRI_FIXED__GROUP3_FIXED_COEFFICIENT_MASK 0x00000E00L
+//MMEA2_DRAM_WR_PRI_FIXED
+#define MMEA2_DRAM_WR_PRI_FIXED__GROUP0_FIXED_COEFFICIENT__SHIFT 0x0
+#define MMEA2_DRAM_WR_PRI_FIXED__GROUP1_FIXED_COEFFICIENT__SHIFT 0x3
+#define MMEA2_DRAM_WR_PRI_FIXED__GROUP2_FIXED_COEFFICIENT__SHIFT 0x6
+#define MMEA2_DRAM_WR_PRI_FIXED__GROUP3_FIXED_COEFFICIENT__SHIFT 0x9
+#define MMEA2_DRAM_WR_PRI_FIXED__GROUP0_FIXED_COEFFICIENT_MASK 0x00000007L
+#define MMEA2_DRAM_WR_PRI_FIXED__GROUP1_FIXED_COEFFICIENT_MASK 0x00000038L
+#define MMEA2_DRAM_WR_PRI_FIXED__GROUP2_FIXED_COEFFICIENT_MASK 0x000001C0L
+#define MMEA2_DRAM_WR_PRI_FIXED__GROUP3_FIXED_COEFFICIENT_MASK 0x00000E00L
+//MMEA2_DRAM_RD_PRI_URGENCY
+#define MMEA2_DRAM_RD_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT__SHIFT 0x0
+#define MMEA2_DRAM_RD_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT__SHIFT 0x3
+#define MMEA2_DRAM_RD_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT__SHIFT 0x6
+#define MMEA2_DRAM_RD_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT__SHIFT 0x9
+#define MMEA2_DRAM_RD_PRI_URGENCY__GROUP0_URGENCY_MODE__SHIFT 0xc
+#define MMEA2_DRAM_RD_PRI_URGENCY__GROUP1_URGENCY_MODE__SHIFT 0xd
+#define MMEA2_DRAM_RD_PRI_URGENCY__GROUP2_URGENCY_MODE__SHIFT 0xe
+#define MMEA2_DRAM_RD_PRI_URGENCY__GROUP3_URGENCY_MODE__SHIFT 0xf
+#define MMEA2_DRAM_RD_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT_MASK 0x00000007L
+#define MMEA2_DRAM_RD_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT_MASK 0x00000038L
+#define MMEA2_DRAM_RD_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT_MASK 0x000001C0L
+#define MMEA2_DRAM_RD_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT_MASK 0x00000E00L
+#define MMEA2_DRAM_RD_PRI_URGENCY__GROUP0_URGENCY_MODE_MASK 0x00001000L
+#define MMEA2_DRAM_RD_PRI_URGENCY__GROUP1_URGENCY_MODE_MASK 0x00002000L
+#define MMEA2_DRAM_RD_PRI_URGENCY__GROUP2_URGENCY_MODE_MASK 0x00004000L
+#define MMEA2_DRAM_RD_PRI_URGENCY__GROUP3_URGENCY_MODE_MASK 0x00008000L
+//MMEA2_DRAM_WR_PRI_URGENCY
+#define MMEA2_DRAM_WR_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT__SHIFT 0x0
+#define MMEA2_DRAM_WR_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT__SHIFT 0x3
+#define MMEA2_DRAM_WR_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT__SHIFT 0x6
+#define MMEA2_DRAM_WR_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT__SHIFT 0x9
+#define MMEA2_DRAM_WR_PRI_URGENCY__GROUP0_URGENCY_MODE__SHIFT 0xc
+#define MMEA2_DRAM_WR_PRI_URGENCY__GROUP1_URGENCY_MODE__SHIFT 0xd
+#define MMEA2_DRAM_WR_PRI_URGENCY__GROUP2_URGENCY_MODE__SHIFT 0xe
+#define MMEA2_DRAM_WR_PRI_URGENCY__GROUP3_URGENCY_MODE__SHIFT 0xf
+#define MMEA2_DRAM_WR_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT_MASK 0x00000007L
+#define MMEA2_DRAM_WR_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT_MASK 0x00000038L
+#define MMEA2_DRAM_WR_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT_MASK 0x000001C0L
+#define MMEA2_DRAM_WR_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT_MASK 0x00000E00L
+#define MMEA2_DRAM_WR_PRI_URGENCY__GROUP0_URGENCY_MODE_MASK 0x00001000L
+#define MMEA2_DRAM_WR_PRI_URGENCY__GROUP1_URGENCY_MODE_MASK 0x00002000L
+#define MMEA2_DRAM_WR_PRI_URGENCY__GROUP2_URGENCY_MODE_MASK 0x00004000L
+#define MMEA2_DRAM_WR_PRI_URGENCY__GROUP3_URGENCY_MODE_MASK 0x00008000L
+//MMEA2_DRAM_RD_PRI_QUANT_PRI1
+#define MMEA2_DRAM_RD_PRI_QUANT_PRI1__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA2_DRAM_RD_PRI_QUANT_PRI1__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA2_DRAM_RD_PRI_QUANT_PRI1__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA2_DRAM_RD_PRI_QUANT_PRI1__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA2_DRAM_RD_PRI_QUANT_PRI1__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA2_DRAM_RD_PRI_QUANT_PRI1__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA2_DRAM_RD_PRI_QUANT_PRI1__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA2_DRAM_RD_PRI_QUANT_PRI1__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA2_DRAM_RD_PRI_QUANT_PRI2
+#define MMEA2_DRAM_RD_PRI_QUANT_PRI2__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA2_DRAM_RD_PRI_QUANT_PRI2__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA2_DRAM_RD_PRI_QUANT_PRI2__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA2_DRAM_RD_PRI_QUANT_PRI2__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA2_DRAM_RD_PRI_QUANT_PRI2__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA2_DRAM_RD_PRI_QUANT_PRI2__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA2_DRAM_RD_PRI_QUANT_PRI2__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA2_DRAM_RD_PRI_QUANT_PRI2__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA2_DRAM_RD_PRI_QUANT_PRI3
+#define MMEA2_DRAM_RD_PRI_QUANT_PRI3__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA2_DRAM_RD_PRI_QUANT_PRI3__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA2_DRAM_RD_PRI_QUANT_PRI3__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA2_DRAM_RD_PRI_QUANT_PRI3__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA2_DRAM_RD_PRI_QUANT_PRI3__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA2_DRAM_RD_PRI_QUANT_PRI3__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA2_DRAM_RD_PRI_QUANT_PRI3__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA2_DRAM_RD_PRI_QUANT_PRI3__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA2_DRAM_WR_PRI_QUANT_PRI1
+#define MMEA2_DRAM_WR_PRI_QUANT_PRI1__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA2_DRAM_WR_PRI_QUANT_PRI1__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA2_DRAM_WR_PRI_QUANT_PRI1__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA2_DRAM_WR_PRI_QUANT_PRI1__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA2_DRAM_WR_PRI_QUANT_PRI1__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA2_DRAM_WR_PRI_QUANT_PRI1__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA2_DRAM_WR_PRI_QUANT_PRI1__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA2_DRAM_WR_PRI_QUANT_PRI1__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA2_DRAM_WR_PRI_QUANT_PRI2
+#define MMEA2_DRAM_WR_PRI_QUANT_PRI2__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA2_DRAM_WR_PRI_QUANT_PRI2__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA2_DRAM_WR_PRI_QUANT_PRI2__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA2_DRAM_WR_PRI_QUANT_PRI2__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA2_DRAM_WR_PRI_QUANT_PRI2__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA2_DRAM_WR_PRI_QUANT_PRI2__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA2_DRAM_WR_PRI_QUANT_PRI2__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA2_DRAM_WR_PRI_QUANT_PRI2__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA2_DRAM_WR_PRI_QUANT_PRI3
+#define MMEA2_DRAM_WR_PRI_QUANT_PRI3__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA2_DRAM_WR_PRI_QUANT_PRI3__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA2_DRAM_WR_PRI_QUANT_PRI3__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA2_DRAM_WR_PRI_QUANT_PRI3__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA2_DRAM_WR_PRI_QUANT_PRI3__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA2_DRAM_WR_PRI_QUANT_PRI3__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA2_DRAM_WR_PRI_QUANT_PRI3__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA2_DRAM_WR_PRI_QUANT_PRI3__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA2_GMI_RD_CLI2GRP_MAP0
+#define MMEA2_GMI_RD_CLI2GRP_MAP0__CID0_GROUP__SHIFT 0x0
+#define MMEA2_GMI_RD_CLI2GRP_MAP0__CID1_GROUP__SHIFT 0x2
+#define MMEA2_GMI_RD_CLI2GRP_MAP0__CID2_GROUP__SHIFT 0x4
+#define MMEA2_GMI_RD_CLI2GRP_MAP0__CID3_GROUP__SHIFT 0x6
+#define MMEA2_GMI_RD_CLI2GRP_MAP0__CID4_GROUP__SHIFT 0x8
+#define MMEA2_GMI_RD_CLI2GRP_MAP0__CID5_GROUP__SHIFT 0xa
+#define MMEA2_GMI_RD_CLI2GRP_MAP0__CID6_GROUP__SHIFT 0xc
+#define MMEA2_GMI_RD_CLI2GRP_MAP0__CID7_GROUP__SHIFT 0xe
+#define MMEA2_GMI_RD_CLI2GRP_MAP0__CID8_GROUP__SHIFT 0x10
+#define MMEA2_GMI_RD_CLI2GRP_MAP0__CID9_GROUP__SHIFT 0x12
+#define MMEA2_GMI_RD_CLI2GRP_MAP0__CID10_GROUP__SHIFT 0x14
+#define MMEA2_GMI_RD_CLI2GRP_MAP0__CID11_GROUP__SHIFT 0x16
+#define MMEA2_GMI_RD_CLI2GRP_MAP0__CID12_GROUP__SHIFT 0x18
+#define MMEA2_GMI_RD_CLI2GRP_MAP0__CID13_GROUP__SHIFT 0x1a
+#define MMEA2_GMI_RD_CLI2GRP_MAP0__CID14_GROUP__SHIFT 0x1c
+#define MMEA2_GMI_RD_CLI2GRP_MAP0__CID15_GROUP__SHIFT 0x1e
+#define MMEA2_GMI_RD_CLI2GRP_MAP0__CID0_GROUP_MASK 0x00000003L
+#define MMEA2_GMI_RD_CLI2GRP_MAP0__CID1_GROUP_MASK 0x0000000CL
+#define MMEA2_GMI_RD_CLI2GRP_MAP0__CID2_GROUP_MASK 0x00000030L
+#define MMEA2_GMI_RD_CLI2GRP_MAP0__CID3_GROUP_MASK 0x000000C0L
+#define MMEA2_GMI_RD_CLI2GRP_MAP0__CID4_GROUP_MASK 0x00000300L
+#define MMEA2_GMI_RD_CLI2GRP_MAP0__CID5_GROUP_MASK 0x00000C00L
+#define MMEA2_GMI_RD_CLI2GRP_MAP0__CID6_GROUP_MASK 0x00003000L
+#define MMEA2_GMI_RD_CLI2GRP_MAP0__CID7_GROUP_MASK 0x0000C000L
+#define MMEA2_GMI_RD_CLI2GRP_MAP0__CID8_GROUP_MASK 0x00030000L
+#define MMEA2_GMI_RD_CLI2GRP_MAP0__CID9_GROUP_MASK 0x000C0000L
+#define MMEA2_GMI_RD_CLI2GRP_MAP0__CID10_GROUP_MASK 0x00300000L
+#define MMEA2_GMI_RD_CLI2GRP_MAP0__CID11_GROUP_MASK 0x00C00000L
+#define MMEA2_GMI_RD_CLI2GRP_MAP0__CID12_GROUP_MASK 0x03000000L
+#define MMEA2_GMI_RD_CLI2GRP_MAP0__CID13_GROUP_MASK 0x0C000000L
+#define MMEA2_GMI_RD_CLI2GRP_MAP0__CID14_GROUP_MASK 0x30000000L
+#define MMEA2_GMI_RD_CLI2GRP_MAP0__CID15_GROUP_MASK 0xC0000000L
+//MMEA2_GMI_RD_CLI2GRP_MAP1
+#define MMEA2_GMI_RD_CLI2GRP_MAP1__CID16_GROUP__SHIFT 0x0
+#define MMEA2_GMI_RD_CLI2GRP_MAP1__CID17_GROUP__SHIFT 0x2
+#define MMEA2_GMI_RD_CLI2GRP_MAP1__CID18_GROUP__SHIFT 0x4
+#define MMEA2_GMI_RD_CLI2GRP_MAP1__CID19_GROUP__SHIFT 0x6
+#define MMEA2_GMI_RD_CLI2GRP_MAP1__CID20_GROUP__SHIFT 0x8
+#define MMEA2_GMI_RD_CLI2GRP_MAP1__CID21_GROUP__SHIFT 0xa
+#define MMEA2_GMI_RD_CLI2GRP_MAP1__CID22_GROUP__SHIFT 0xc
+#define MMEA2_GMI_RD_CLI2GRP_MAP1__CID23_GROUP__SHIFT 0xe
+#define MMEA2_GMI_RD_CLI2GRP_MAP1__CID24_GROUP__SHIFT 0x10
+#define MMEA2_GMI_RD_CLI2GRP_MAP1__CID25_GROUP__SHIFT 0x12
+#define MMEA2_GMI_RD_CLI2GRP_MAP1__CID26_GROUP__SHIFT 0x14
+#define MMEA2_GMI_RD_CLI2GRP_MAP1__CID27_GROUP__SHIFT 0x16
+#define MMEA2_GMI_RD_CLI2GRP_MAP1__CID28_GROUP__SHIFT 0x18
+#define MMEA2_GMI_RD_CLI2GRP_MAP1__CID29_GROUP__SHIFT 0x1a
+#define MMEA2_GMI_RD_CLI2GRP_MAP1__CID30_GROUP__SHIFT 0x1c
+#define MMEA2_GMI_RD_CLI2GRP_MAP1__CID31_GROUP__SHIFT 0x1e
+#define MMEA2_GMI_RD_CLI2GRP_MAP1__CID16_GROUP_MASK 0x00000003L
+#define MMEA2_GMI_RD_CLI2GRP_MAP1__CID17_GROUP_MASK 0x0000000CL
+#define MMEA2_GMI_RD_CLI2GRP_MAP1__CID18_GROUP_MASK 0x00000030L
+#define MMEA2_GMI_RD_CLI2GRP_MAP1__CID19_GROUP_MASK 0x000000C0L
+#define MMEA2_GMI_RD_CLI2GRP_MAP1__CID20_GROUP_MASK 0x00000300L
+#define MMEA2_GMI_RD_CLI2GRP_MAP1__CID21_GROUP_MASK 0x00000C00L
+#define MMEA2_GMI_RD_CLI2GRP_MAP1__CID22_GROUP_MASK 0x00003000L
+#define MMEA2_GMI_RD_CLI2GRP_MAP1__CID23_GROUP_MASK 0x0000C000L
+#define MMEA2_GMI_RD_CLI2GRP_MAP1__CID24_GROUP_MASK 0x00030000L
+#define MMEA2_GMI_RD_CLI2GRP_MAP1__CID25_GROUP_MASK 0x000C0000L
+#define MMEA2_GMI_RD_CLI2GRP_MAP1__CID26_GROUP_MASK 0x00300000L
+#define MMEA2_GMI_RD_CLI2GRP_MAP1__CID27_GROUP_MASK 0x00C00000L
+#define MMEA2_GMI_RD_CLI2GRP_MAP1__CID28_GROUP_MASK 0x03000000L
+#define MMEA2_GMI_RD_CLI2GRP_MAP1__CID29_GROUP_MASK 0x0C000000L
+#define MMEA2_GMI_RD_CLI2GRP_MAP1__CID30_GROUP_MASK 0x30000000L
+#define MMEA2_GMI_RD_CLI2GRP_MAP1__CID31_GROUP_MASK 0xC0000000L
+//MMEA2_GMI_WR_CLI2GRP_MAP0
+#define MMEA2_GMI_WR_CLI2GRP_MAP0__CID0_GROUP__SHIFT 0x0
+#define MMEA2_GMI_WR_CLI2GRP_MAP0__CID1_GROUP__SHIFT 0x2
+#define MMEA2_GMI_WR_CLI2GRP_MAP0__CID2_GROUP__SHIFT 0x4
+#define MMEA2_GMI_WR_CLI2GRP_MAP0__CID3_GROUP__SHIFT 0x6
+#define MMEA2_GMI_WR_CLI2GRP_MAP0__CID4_GROUP__SHIFT 0x8
+#define MMEA2_GMI_WR_CLI2GRP_MAP0__CID5_GROUP__SHIFT 0xa
+#define MMEA2_GMI_WR_CLI2GRP_MAP0__CID6_GROUP__SHIFT 0xc
+#define MMEA2_GMI_WR_CLI2GRP_MAP0__CID7_GROUP__SHIFT 0xe
+#define MMEA2_GMI_WR_CLI2GRP_MAP0__CID8_GROUP__SHIFT 0x10
+#define MMEA2_GMI_WR_CLI2GRP_MAP0__CID9_GROUP__SHIFT 0x12
+#define MMEA2_GMI_WR_CLI2GRP_MAP0__CID10_GROUP__SHIFT 0x14
+#define MMEA2_GMI_WR_CLI2GRP_MAP0__CID11_GROUP__SHIFT 0x16
+#define MMEA2_GMI_WR_CLI2GRP_MAP0__CID12_GROUP__SHIFT 0x18
+#define MMEA2_GMI_WR_CLI2GRP_MAP0__CID13_GROUP__SHIFT 0x1a
+#define MMEA2_GMI_WR_CLI2GRP_MAP0__CID14_GROUP__SHIFT 0x1c
+#define MMEA2_GMI_WR_CLI2GRP_MAP0__CID15_GROUP__SHIFT 0x1e
+#define MMEA2_GMI_WR_CLI2GRP_MAP0__CID0_GROUP_MASK 0x00000003L
+#define MMEA2_GMI_WR_CLI2GRP_MAP0__CID1_GROUP_MASK 0x0000000CL
+#define MMEA2_GMI_WR_CLI2GRP_MAP0__CID2_GROUP_MASK 0x00000030L
+#define MMEA2_GMI_WR_CLI2GRP_MAP0__CID3_GROUP_MASK 0x000000C0L
+#define MMEA2_GMI_WR_CLI2GRP_MAP0__CID4_GROUP_MASK 0x00000300L
+#define MMEA2_GMI_WR_CLI2GRP_MAP0__CID5_GROUP_MASK 0x00000C00L
+#define MMEA2_GMI_WR_CLI2GRP_MAP0__CID6_GROUP_MASK 0x00003000L
+#define MMEA2_GMI_WR_CLI2GRP_MAP0__CID7_GROUP_MASK 0x0000C000L
+#define MMEA2_GMI_WR_CLI2GRP_MAP0__CID8_GROUP_MASK 0x00030000L
+#define MMEA2_GMI_WR_CLI2GRP_MAP0__CID9_GROUP_MASK 0x000C0000L
+#define MMEA2_GMI_WR_CLI2GRP_MAP0__CID10_GROUP_MASK 0x00300000L
+#define MMEA2_GMI_WR_CLI2GRP_MAP0__CID11_GROUP_MASK 0x00C00000L
+#define MMEA2_GMI_WR_CLI2GRP_MAP0__CID12_GROUP_MASK 0x03000000L
+#define MMEA2_GMI_WR_CLI2GRP_MAP0__CID13_GROUP_MASK 0x0C000000L
+#define MMEA2_GMI_WR_CLI2GRP_MAP0__CID14_GROUP_MASK 0x30000000L
+#define MMEA2_GMI_WR_CLI2GRP_MAP0__CID15_GROUP_MASK 0xC0000000L
+//MMEA2_GMI_WR_CLI2GRP_MAP1
+#define MMEA2_GMI_WR_CLI2GRP_MAP1__CID16_GROUP__SHIFT 0x0
+#define MMEA2_GMI_WR_CLI2GRP_MAP1__CID17_GROUP__SHIFT 0x2
+#define MMEA2_GMI_WR_CLI2GRP_MAP1__CID18_GROUP__SHIFT 0x4
+#define MMEA2_GMI_WR_CLI2GRP_MAP1__CID19_GROUP__SHIFT 0x6
+#define MMEA2_GMI_WR_CLI2GRP_MAP1__CID20_GROUP__SHIFT 0x8
+#define MMEA2_GMI_WR_CLI2GRP_MAP1__CID21_GROUP__SHIFT 0xa
+#define MMEA2_GMI_WR_CLI2GRP_MAP1__CID22_GROUP__SHIFT 0xc
+#define MMEA2_GMI_WR_CLI2GRP_MAP1__CID23_GROUP__SHIFT 0xe
+#define MMEA2_GMI_WR_CLI2GRP_MAP1__CID24_GROUP__SHIFT 0x10
+#define MMEA2_GMI_WR_CLI2GRP_MAP1__CID25_GROUP__SHIFT 0x12
+#define MMEA2_GMI_WR_CLI2GRP_MAP1__CID26_GROUP__SHIFT 0x14
+#define MMEA2_GMI_WR_CLI2GRP_MAP1__CID27_GROUP__SHIFT 0x16
+#define MMEA2_GMI_WR_CLI2GRP_MAP1__CID28_GROUP__SHIFT 0x18
+#define MMEA2_GMI_WR_CLI2GRP_MAP1__CID29_GROUP__SHIFT 0x1a
+#define MMEA2_GMI_WR_CLI2GRP_MAP1__CID30_GROUP__SHIFT 0x1c
+#define MMEA2_GMI_WR_CLI2GRP_MAP1__CID31_GROUP__SHIFT 0x1e
+#define MMEA2_GMI_WR_CLI2GRP_MAP1__CID16_GROUP_MASK 0x00000003L
+#define MMEA2_GMI_WR_CLI2GRP_MAP1__CID17_GROUP_MASK 0x0000000CL
+#define MMEA2_GMI_WR_CLI2GRP_MAP1__CID18_GROUP_MASK 0x00000030L
+#define MMEA2_GMI_WR_CLI2GRP_MAP1__CID19_GROUP_MASK 0x000000C0L
+#define MMEA2_GMI_WR_CLI2GRP_MAP1__CID20_GROUP_MASK 0x00000300L
+#define MMEA2_GMI_WR_CLI2GRP_MAP1__CID21_GROUP_MASK 0x00000C00L
+#define MMEA2_GMI_WR_CLI2GRP_MAP1__CID22_GROUP_MASK 0x00003000L
+#define MMEA2_GMI_WR_CLI2GRP_MAP1__CID23_GROUP_MASK 0x0000C000L
+#define MMEA2_GMI_WR_CLI2GRP_MAP1__CID24_GROUP_MASK 0x00030000L
+#define MMEA2_GMI_WR_CLI2GRP_MAP1__CID25_GROUP_MASK 0x000C0000L
+#define MMEA2_GMI_WR_CLI2GRP_MAP1__CID26_GROUP_MASK 0x00300000L
+#define MMEA2_GMI_WR_CLI2GRP_MAP1__CID27_GROUP_MASK 0x00C00000L
+#define MMEA2_GMI_WR_CLI2GRP_MAP1__CID28_GROUP_MASK 0x03000000L
+#define MMEA2_GMI_WR_CLI2GRP_MAP1__CID29_GROUP_MASK 0x0C000000L
+#define MMEA2_GMI_WR_CLI2GRP_MAP1__CID30_GROUP_MASK 0x30000000L
+#define MMEA2_GMI_WR_CLI2GRP_MAP1__CID31_GROUP_MASK 0xC0000000L
+//MMEA2_GMI_RD_GRP2VC_MAP
+#define MMEA2_GMI_RD_GRP2VC_MAP__GROUP0_VC__SHIFT 0x0
+#define MMEA2_GMI_RD_GRP2VC_MAP__GROUP1_VC__SHIFT 0x3
+#define MMEA2_GMI_RD_GRP2VC_MAP__GROUP2_VC__SHIFT 0x6
+#define MMEA2_GMI_RD_GRP2VC_MAP__GROUP3_VC__SHIFT 0x9
+#define MMEA2_GMI_RD_GRP2VC_MAP__GROUP0_VC_MASK 0x00000007L
+#define MMEA2_GMI_RD_GRP2VC_MAP__GROUP1_VC_MASK 0x00000038L
+#define MMEA2_GMI_RD_GRP2VC_MAP__GROUP2_VC_MASK 0x000001C0L
+#define MMEA2_GMI_RD_GRP2VC_MAP__GROUP3_VC_MASK 0x00000E00L
+//MMEA2_GMI_WR_GRP2VC_MAP
+#define MMEA2_GMI_WR_GRP2VC_MAP__GROUP0_VC__SHIFT 0x0
+#define MMEA2_GMI_WR_GRP2VC_MAP__GROUP1_VC__SHIFT 0x3
+#define MMEA2_GMI_WR_GRP2VC_MAP__GROUP2_VC__SHIFT 0x6
+#define MMEA2_GMI_WR_GRP2VC_MAP__GROUP3_VC__SHIFT 0x9
+#define MMEA2_GMI_WR_GRP2VC_MAP__GROUP0_VC_MASK 0x00000007L
+#define MMEA2_GMI_WR_GRP2VC_MAP__GROUP1_VC_MASK 0x00000038L
+#define MMEA2_GMI_WR_GRP2VC_MAP__GROUP2_VC_MASK 0x000001C0L
+#define MMEA2_GMI_WR_GRP2VC_MAP__GROUP3_VC_MASK 0x00000E00L
+//MMEA2_GMI_RD_LAZY
+#define MMEA2_GMI_RD_LAZY__GROUP0_DELAY__SHIFT 0x0
+#define MMEA2_GMI_RD_LAZY__GROUP1_DELAY__SHIFT 0x3
+#define MMEA2_GMI_RD_LAZY__GROUP2_DELAY__SHIFT 0x6
+#define MMEA2_GMI_RD_LAZY__GROUP3_DELAY__SHIFT 0x9
+#define MMEA2_GMI_RD_LAZY__REQ_ACCUM_THRESH__SHIFT 0xc
+#define MMEA2_GMI_RD_LAZY__REQ_ACCUM_TIMEOUT__SHIFT 0x14
+#define MMEA2_GMI_RD_LAZY__REQ_ACCUM_IDLEMAX__SHIFT 0x1b
+#define MMEA2_GMI_RD_LAZY__GROUP0_DELAY_MASK 0x00000007L
+#define MMEA2_GMI_RD_LAZY__GROUP1_DELAY_MASK 0x00000038L
+#define MMEA2_GMI_RD_LAZY__GROUP2_DELAY_MASK 0x000001C0L
+#define MMEA2_GMI_RD_LAZY__GROUP3_DELAY_MASK 0x00000E00L
+#define MMEA2_GMI_RD_LAZY__REQ_ACCUM_THRESH_MASK 0x0003F000L
+#define MMEA2_GMI_RD_LAZY__REQ_ACCUM_TIMEOUT_MASK 0x07F00000L
+#define MMEA2_GMI_RD_LAZY__REQ_ACCUM_IDLEMAX_MASK 0x78000000L
+//MMEA2_GMI_WR_LAZY
+#define MMEA2_GMI_WR_LAZY__GROUP0_DELAY__SHIFT 0x0
+#define MMEA2_GMI_WR_LAZY__GROUP1_DELAY__SHIFT 0x3
+#define MMEA2_GMI_WR_LAZY__GROUP2_DELAY__SHIFT 0x6
+#define MMEA2_GMI_WR_LAZY__GROUP3_DELAY__SHIFT 0x9
+#define MMEA2_GMI_WR_LAZY__REQ_ACCUM_THRESH__SHIFT 0xc
+#define MMEA2_GMI_WR_LAZY__REQ_ACCUM_TIMEOUT__SHIFT 0x14
+#define MMEA2_GMI_WR_LAZY__REQ_ACCUM_IDLEMAX__SHIFT 0x1b
+#define MMEA2_GMI_WR_LAZY__GROUP0_DELAY_MASK 0x00000007L
+#define MMEA2_GMI_WR_LAZY__GROUP1_DELAY_MASK 0x00000038L
+#define MMEA2_GMI_WR_LAZY__GROUP2_DELAY_MASK 0x000001C0L
+#define MMEA2_GMI_WR_LAZY__GROUP3_DELAY_MASK 0x00000E00L
+#define MMEA2_GMI_WR_LAZY__REQ_ACCUM_THRESH_MASK 0x0003F000L
+#define MMEA2_GMI_WR_LAZY__REQ_ACCUM_TIMEOUT_MASK 0x07F00000L
+#define MMEA2_GMI_WR_LAZY__REQ_ACCUM_IDLEMAX_MASK 0x78000000L
+//MMEA2_GMI_RD_CAM_CNTL
+#define MMEA2_GMI_RD_CAM_CNTL__DEPTH_GROUP0__SHIFT 0x0
+#define MMEA2_GMI_RD_CAM_CNTL__DEPTH_GROUP1__SHIFT 0x4
+#define MMEA2_GMI_RD_CAM_CNTL__DEPTH_GROUP2__SHIFT 0x8
+#define MMEA2_GMI_RD_CAM_CNTL__DEPTH_GROUP3__SHIFT 0xc
+#define MMEA2_GMI_RD_CAM_CNTL__REORDER_LIMIT_GROUP0__SHIFT 0x10
+#define MMEA2_GMI_RD_CAM_CNTL__REORDER_LIMIT_GROUP1__SHIFT 0x13
+#define MMEA2_GMI_RD_CAM_CNTL__REORDER_LIMIT_GROUP2__SHIFT 0x16
+#define MMEA2_GMI_RD_CAM_CNTL__REORDER_LIMIT_GROUP3__SHIFT 0x19
+#define MMEA2_GMI_RD_CAM_CNTL__REFILL_CHAIN__SHIFT 0x1c
+#define MMEA2_GMI_RD_CAM_CNTL__PAGEBASED_CHAINING__SHIFT 0x1d
+#define MMEA2_GMI_RD_CAM_CNTL__DEPTH_GROUP0_MASK 0x0000000FL
+#define MMEA2_GMI_RD_CAM_CNTL__DEPTH_GROUP1_MASK 0x000000F0L
+#define MMEA2_GMI_RD_CAM_CNTL__DEPTH_GROUP2_MASK 0x00000F00L
+#define MMEA2_GMI_RD_CAM_CNTL__DEPTH_GROUP3_MASK 0x0000F000L
+#define MMEA2_GMI_RD_CAM_CNTL__REORDER_LIMIT_GROUP0_MASK 0x00070000L
+#define MMEA2_GMI_RD_CAM_CNTL__REORDER_LIMIT_GROUP1_MASK 0x00380000L
+#define MMEA2_GMI_RD_CAM_CNTL__REORDER_LIMIT_GROUP2_MASK 0x01C00000L
+#define MMEA2_GMI_RD_CAM_CNTL__REORDER_LIMIT_GROUP3_MASK 0x0E000000L
+#define MMEA2_GMI_RD_CAM_CNTL__REFILL_CHAIN_MASK 0x10000000L
+#define MMEA2_GMI_RD_CAM_CNTL__PAGEBASED_CHAINING_MASK 0x20000000L
+//MMEA2_GMI_WR_CAM_CNTL
+#define MMEA2_GMI_WR_CAM_CNTL__DEPTH_GROUP0__SHIFT 0x0
+#define MMEA2_GMI_WR_CAM_CNTL__DEPTH_GROUP1__SHIFT 0x4
+#define MMEA2_GMI_WR_CAM_CNTL__DEPTH_GROUP2__SHIFT 0x8
+#define MMEA2_GMI_WR_CAM_CNTL__DEPTH_GROUP3__SHIFT 0xc
+#define MMEA2_GMI_WR_CAM_CNTL__REORDER_LIMIT_GROUP0__SHIFT 0x10
+#define MMEA2_GMI_WR_CAM_CNTL__REORDER_LIMIT_GROUP1__SHIFT 0x13
+#define MMEA2_GMI_WR_CAM_CNTL__REORDER_LIMIT_GROUP2__SHIFT 0x16
+#define MMEA2_GMI_WR_CAM_CNTL__REORDER_LIMIT_GROUP3__SHIFT 0x19
+#define MMEA2_GMI_WR_CAM_CNTL__REFILL_CHAIN__SHIFT 0x1c
+#define MMEA2_GMI_WR_CAM_CNTL__PAGEBASED_CHAINING__SHIFT 0x1d
+#define MMEA2_GMI_WR_CAM_CNTL__DEPTH_GROUP0_MASK 0x0000000FL
+#define MMEA2_GMI_WR_CAM_CNTL__DEPTH_GROUP1_MASK 0x000000F0L
+#define MMEA2_GMI_WR_CAM_CNTL__DEPTH_GROUP2_MASK 0x00000F00L
+#define MMEA2_GMI_WR_CAM_CNTL__DEPTH_GROUP3_MASK 0x0000F000L
+#define MMEA2_GMI_WR_CAM_CNTL__REORDER_LIMIT_GROUP0_MASK 0x00070000L
+#define MMEA2_GMI_WR_CAM_CNTL__REORDER_LIMIT_GROUP1_MASK 0x00380000L
+#define MMEA2_GMI_WR_CAM_CNTL__REORDER_LIMIT_GROUP2_MASK 0x01C00000L
+#define MMEA2_GMI_WR_CAM_CNTL__REORDER_LIMIT_GROUP3_MASK 0x0E000000L
+#define MMEA2_GMI_WR_CAM_CNTL__REFILL_CHAIN_MASK 0x10000000L
+#define MMEA2_GMI_WR_CAM_CNTL__PAGEBASED_CHAINING_MASK 0x20000000L
+//MMEA2_GMI_PAGE_BURST
+#define MMEA2_GMI_PAGE_BURST__RD_LIMIT_LO__SHIFT 0x0
+#define MMEA2_GMI_PAGE_BURST__RD_LIMIT_HI__SHIFT 0x8
+#define MMEA2_GMI_PAGE_BURST__WR_LIMIT_LO__SHIFT 0x10
+#define MMEA2_GMI_PAGE_BURST__WR_LIMIT_HI__SHIFT 0x18
+#define MMEA2_GMI_PAGE_BURST__RD_LIMIT_LO_MASK 0x000000FFL
+#define MMEA2_GMI_PAGE_BURST__RD_LIMIT_HI_MASK 0x0000FF00L
+#define MMEA2_GMI_PAGE_BURST__WR_LIMIT_LO_MASK 0x00FF0000L
+#define MMEA2_GMI_PAGE_BURST__WR_LIMIT_HI_MASK 0xFF000000L
+//MMEA2_GMI_RD_PRI_AGE
+#define MMEA2_GMI_RD_PRI_AGE__GROUP0_AGING_RATE__SHIFT 0x0
+#define MMEA2_GMI_RD_PRI_AGE__GROUP1_AGING_RATE__SHIFT 0x3
+#define MMEA2_GMI_RD_PRI_AGE__GROUP2_AGING_RATE__SHIFT 0x6
+#define MMEA2_GMI_RD_PRI_AGE__GROUP3_AGING_RATE__SHIFT 0x9
+#define MMEA2_GMI_RD_PRI_AGE__GROUP0_AGE_COEFFICIENT__SHIFT 0xc
+#define MMEA2_GMI_RD_PRI_AGE__GROUP1_AGE_COEFFICIENT__SHIFT 0xf
+#define MMEA2_GMI_RD_PRI_AGE__GROUP2_AGE_COEFFICIENT__SHIFT 0x12
+#define MMEA2_GMI_RD_PRI_AGE__GROUP3_AGE_COEFFICIENT__SHIFT 0x15
+#define MMEA2_GMI_RD_PRI_AGE__GROUP0_AGING_RATE_MASK 0x00000007L
+#define MMEA2_GMI_RD_PRI_AGE__GROUP1_AGING_RATE_MASK 0x00000038L
+#define MMEA2_GMI_RD_PRI_AGE__GROUP2_AGING_RATE_MASK 0x000001C0L
+#define MMEA2_GMI_RD_PRI_AGE__GROUP3_AGING_RATE_MASK 0x00000E00L
+#define MMEA2_GMI_RD_PRI_AGE__GROUP0_AGE_COEFFICIENT_MASK 0x00007000L
+#define MMEA2_GMI_RD_PRI_AGE__GROUP1_AGE_COEFFICIENT_MASK 0x00038000L
+#define MMEA2_GMI_RD_PRI_AGE__GROUP2_AGE_COEFFICIENT_MASK 0x001C0000L
+#define MMEA2_GMI_RD_PRI_AGE__GROUP3_AGE_COEFFICIENT_MASK 0x00E00000L
+//MMEA2_GMI_WR_PRI_AGE
+#define MMEA2_GMI_WR_PRI_AGE__GROUP0_AGING_RATE__SHIFT 0x0
+#define MMEA2_GMI_WR_PRI_AGE__GROUP1_AGING_RATE__SHIFT 0x3
+#define MMEA2_GMI_WR_PRI_AGE__GROUP2_AGING_RATE__SHIFT 0x6
+#define MMEA2_GMI_WR_PRI_AGE__GROUP3_AGING_RATE__SHIFT 0x9
+#define MMEA2_GMI_WR_PRI_AGE__GROUP0_AGE_COEFFICIENT__SHIFT 0xc
+#define MMEA2_GMI_WR_PRI_AGE__GROUP1_AGE_COEFFICIENT__SHIFT 0xf
+#define MMEA2_GMI_WR_PRI_AGE__GROUP2_AGE_COEFFICIENT__SHIFT 0x12
+#define MMEA2_GMI_WR_PRI_AGE__GROUP3_AGE_COEFFICIENT__SHIFT 0x15
+#define MMEA2_GMI_WR_PRI_AGE__GROUP0_AGING_RATE_MASK 0x00000007L
+#define MMEA2_GMI_WR_PRI_AGE__GROUP1_AGING_RATE_MASK 0x00000038L
+#define MMEA2_GMI_WR_PRI_AGE__GROUP2_AGING_RATE_MASK 0x000001C0L
+#define MMEA2_GMI_WR_PRI_AGE__GROUP3_AGING_RATE_MASK 0x00000E00L
+#define MMEA2_GMI_WR_PRI_AGE__GROUP0_AGE_COEFFICIENT_MASK 0x00007000L
+#define MMEA2_GMI_WR_PRI_AGE__GROUP1_AGE_COEFFICIENT_MASK 0x00038000L
+#define MMEA2_GMI_WR_PRI_AGE__GROUP2_AGE_COEFFICIENT_MASK 0x001C0000L
+#define MMEA2_GMI_WR_PRI_AGE__GROUP3_AGE_COEFFICIENT_MASK 0x00E00000L
+//MMEA2_GMI_RD_PRI_QUEUING
+#define MMEA2_GMI_RD_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT__SHIFT 0x0
+#define MMEA2_GMI_RD_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT__SHIFT 0x3
+#define MMEA2_GMI_RD_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT__SHIFT 0x6
+#define MMEA2_GMI_RD_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT__SHIFT 0x9
+#define MMEA2_GMI_RD_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT_MASK 0x00000007L
+#define MMEA2_GMI_RD_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT_MASK 0x00000038L
+#define MMEA2_GMI_RD_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT_MASK 0x000001C0L
+#define MMEA2_GMI_RD_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT_MASK 0x00000E00L
+//MMEA2_GMI_WR_PRI_QUEUING
+#define MMEA2_GMI_WR_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT__SHIFT 0x0
+#define MMEA2_GMI_WR_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT__SHIFT 0x3
+#define MMEA2_GMI_WR_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT__SHIFT 0x6
+#define MMEA2_GMI_WR_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT__SHIFT 0x9
+#define MMEA2_GMI_WR_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT_MASK 0x00000007L
+#define MMEA2_GMI_WR_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT_MASK 0x00000038L
+#define MMEA2_GMI_WR_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT_MASK 0x000001C0L
+#define MMEA2_GMI_WR_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT_MASK 0x00000E00L
+//MMEA2_GMI_RD_PRI_FIXED
+#define MMEA2_GMI_RD_PRI_FIXED__GROUP0_FIXED_COEFFICIENT__SHIFT 0x0
+#define MMEA2_GMI_RD_PRI_FIXED__GROUP1_FIXED_COEFFICIENT__SHIFT 0x3
+#define MMEA2_GMI_RD_PRI_FIXED__GROUP2_FIXED_COEFFICIENT__SHIFT 0x6
+#define MMEA2_GMI_RD_PRI_FIXED__GROUP3_FIXED_COEFFICIENT__SHIFT 0x9
+#define MMEA2_GMI_RD_PRI_FIXED__GROUP0_FIXED_COEFFICIENT_MASK 0x00000007L
+#define MMEA2_GMI_RD_PRI_FIXED__GROUP1_FIXED_COEFFICIENT_MASK 0x00000038L
+#define MMEA2_GMI_RD_PRI_FIXED__GROUP2_FIXED_COEFFICIENT_MASK 0x000001C0L
+#define MMEA2_GMI_RD_PRI_FIXED__GROUP3_FIXED_COEFFICIENT_MASK 0x00000E00L
+//MMEA2_GMI_WR_PRI_FIXED
+#define MMEA2_GMI_WR_PRI_FIXED__GROUP0_FIXED_COEFFICIENT__SHIFT 0x0
+#define MMEA2_GMI_WR_PRI_FIXED__GROUP1_FIXED_COEFFICIENT__SHIFT 0x3
+#define MMEA2_GMI_WR_PRI_FIXED__GROUP2_FIXED_COEFFICIENT__SHIFT 0x6
+#define MMEA2_GMI_WR_PRI_FIXED__GROUP3_FIXED_COEFFICIENT__SHIFT 0x9
+#define MMEA2_GMI_WR_PRI_FIXED__GROUP0_FIXED_COEFFICIENT_MASK 0x00000007L
+#define MMEA2_GMI_WR_PRI_FIXED__GROUP1_FIXED_COEFFICIENT_MASK 0x00000038L
+#define MMEA2_GMI_WR_PRI_FIXED__GROUP2_FIXED_COEFFICIENT_MASK 0x000001C0L
+#define MMEA2_GMI_WR_PRI_FIXED__GROUP3_FIXED_COEFFICIENT_MASK 0x00000E00L
+//MMEA2_GMI_RD_PRI_URGENCY
+#define MMEA2_GMI_RD_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT__SHIFT 0x0
+#define MMEA2_GMI_RD_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT__SHIFT 0x3
+#define MMEA2_GMI_RD_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT__SHIFT 0x6
+#define MMEA2_GMI_RD_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT__SHIFT 0x9
+#define MMEA2_GMI_RD_PRI_URGENCY__GROUP0_URGENCY_MODE__SHIFT 0xc
+#define MMEA2_GMI_RD_PRI_URGENCY__GROUP1_URGENCY_MODE__SHIFT 0xd
+#define MMEA2_GMI_RD_PRI_URGENCY__GROUP2_URGENCY_MODE__SHIFT 0xe
+#define MMEA2_GMI_RD_PRI_URGENCY__GROUP3_URGENCY_MODE__SHIFT 0xf
+#define MMEA2_GMI_RD_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT_MASK 0x00000007L
+#define MMEA2_GMI_RD_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT_MASK 0x00000038L
+#define MMEA2_GMI_RD_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT_MASK 0x000001C0L
+#define MMEA2_GMI_RD_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT_MASK 0x00000E00L
+#define MMEA2_GMI_RD_PRI_URGENCY__GROUP0_URGENCY_MODE_MASK 0x00001000L
+#define MMEA2_GMI_RD_PRI_URGENCY__GROUP1_URGENCY_MODE_MASK 0x00002000L
+#define MMEA2_GMI_RD_PRI_URGENCY__GROUP2_URGENCY_MODE_MASK 0x00004000L
+#define MMEA2_GMI_RD_PRI_URGENCY__GROUP3_URGENCY_MODE_MASK 0x00008000L
+//MMEA2_GMI_WR_PRI_URGENCY
+#define MMEA2_GMI_WR_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT__SHIFT 0x0
+#define MMEA2_GMI_WR_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT__SHIFT 0x3
+#define MMEA2_GMI_WR_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT__SHIFT 0x6
+#define MMEA2_GMI_WR_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT__SHIFT 0x9
+#define MMEA2_GMI_WR_PRI_URGENCY__GROUP0_URGENCY_MODE__SHIFT 0xc
+#define MMEA2_GMI_WR_PRI_URGENCY__GROUP1_URGENCY_MODE__SHIFT 0xd
+#define MMEA2_GMI_WR_PRI_URGENCY__GROUP2_URGENCY_MODE__SHIFT 0xe
+#define MMEA2_GMI_WR_PRI_URGENCY__GROUP3_URGENCY_MODE__SHIFT 0xf
+#define MMEA2_GMI_WR_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT_MASK 0x00000007L
+#define MMEA2_GMI_WR_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT_MASK 0x00000038L
+#define MMEA2_GMI_WR_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT_MASK 0x000001C0L
+#define MMEA2_GMI_WR_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT_MASK 0x00000E00L
+#define MMEA2_GMI_WR_PRI_URGENCY__GROUP0_URGENCY_MODE_MASK 0x00001000L
+#define MMEA2_GMI_WR_PRI_URGENCY__GROUP1_URGENCY_MODE_MASK 0x00002000L
+#define MMEA2_GMI_WR_PRI_URGENCY__GROUP2_URGENCY_MODE_MASK 0x00004000L
+#define MMEA2_GMI_WR_PRI_URGENCY__GROUP3_URGENCY_MODE_MASK 0x00008000L
+//MMEA2_GMI_RD_PRI_URGENCY_MASKING
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID0_MASK__SHIFT 0x0
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID1_MASK__SHIFT 0x1
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID2_MASK__SHIFT 0x2
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID3_MASK__SHIFT 0x3
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID4_MASK__SHIFT 0x4
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID5_MASK__SHIFT 0x5
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID6_MASK__SHIFT 0x6
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID7_MASK__SHIFT 0x7
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID8_MASK__SHIFT 0x8
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID9_MASK__SHIFT 0x9
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID10_MASK__SHIFT 0xa
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID11_MASK__SHIFT 0xb
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID12_MASK__SHIFT 0xc
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID13_MASK__SHIFT 0xd
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID14_MASK__SHIFT 0xe
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID15_MASK__SHIFT 0xf
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID16_MASK__SHIFT 0x10
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID17_MASK__SHIFT 0x11
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID18_MASK__SHIFT 0x12
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID19_MASK__SHIFT 0x13
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID20_MASK__SHIFT 0x14
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID21_MASK__SHIFT 0x15
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID22_MASK__SHIFT 0x16
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID23_MASK__SHIFT 0x17
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID24_MASK__SHIFT 0x18
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID25_MASK__SHIFT 0x19
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID26_MASK__SHIFT 0x1a
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID27_MASK__SHIFT 0x1b
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID28_MASK__SHIFT 0x1c
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID29_MASK__SHIFT 0x1d
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID30_MASK__SHIFT 0x1e
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID31_MASK__SHIFT 0x1f
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID0_MASK_MASK 0x00000001L
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID1_MASK_MASK 0x00000002L
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID2_MASK_MASK 0x00000004L
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID3_MASK_MASK 0x00000008L
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID4_MASK_MASK 0x00000010L
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID5_MASK_MASK 0x00000020L
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID6_MASK_MASK 0x00000040L
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID7_MASK_MASK 0x00000080L
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID8_MASK_MASK 0x00000100L
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID9_MASK_MASK 0x00000200L
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID10_MASK_MASK 0x00000400L
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID11_MASK_MASK 0x00000800L
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID12_MASK_MASK 0x00001000L
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID13_MASK_MASK 0x00002000L
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID14_MASK_MASK 0x00004000L
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID15_MASK_MASK 0x00008000L
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID16_MASK_MASK 0x00010000L
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID17_MASK_MASK 0x00020000L
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID18_MASK_MASK 0x00040000L
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID19_MASK_MASK 0x00080000L
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID20_MASK_MASK 0x00100000L
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID21_MASK_MASK 0x00200000L
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID22_MASK_MASK 0x00400000L
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID23_MASK_MASK 0x00800000L
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID24_MASK_MASK 0x01000000L
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID25_MASK_MASK 0x02000000L
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID26_MASK_MASK 0x04000000L
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID27_MASK_MASK 0x08000000L
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID28_MASK_MASK 0x10000000L
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID29_MASK_MASK 0x20000000L
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID30_MASK_MASK 0x40000000L
+#define MMEA2_GMI_RD_PRI_URGENCY_MASKING__CID31_MASK_MASK 0x80000000L
+//MMEA2_GMI_WR_PRI_URGENCY_MASKING
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID0_MASK__SHIFT 0x0
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID1_MASK__SHIFT 0x1
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID2_MASK__SHIFT 0x2
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID3_MASK__SHIFT 0x3
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID4_MASK__SHIFT 0x4
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID5_MASK__SHIFT 0x5
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID6_MASK__SHIFT 0x6
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID7_MASK__SHIFT 0x7
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID8_MASK__SHIFT 0x8
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID9_MASK__SHIFT 0x9
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID10_MASK__SHIFT 0xa
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID11_MASK__SHIFT 0xb
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID12_MASK__SHIFT 0xc
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID13_MASK__SHIFT 0xd
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID14_MASK__SHIFT 0xe
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID15_MASK__SHIFT 0xf
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID16_MASK__SHIFT 0x10
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID17_MASK__SHIFT 0x11
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID18_MASK__SHIFT 0x12
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID19_MASK__SHIFT 0x13
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID20_MASK__SHIFT 0x14
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID21_MASK__SHIFT 0x15
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID22_MASK__SHIFT 0x16
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID23_MASK__SHIFT 0x17
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID24_MASK__SHIFT 0x18
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID25_MASK__SHIFT 0x19
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID26_MASK__SHIFT 0x1a
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID27_MASK__SHIFT 0x1b
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID28_MASK__SHIFT 0x1c
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID29_MASK__SHIFT 0x1d
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID30_MASK__SHIFT 0x1e
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID31_MASK__SHIFT 0x1f
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID0_MASK_MASK 0x00000001L
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID1_MASK_MASK 0x00000002L
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID2_MASK_MASK 0x00000004L
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID3_MASK_MASK 0x00000008L
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID4_MASK_MASK 0x00000010L
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID5_MASK_MASK 0x00000020L
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID6_MASK_MASK 0x00000040L
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID7_MASK_MASK 0x00000080L
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID8_MASK_MASK 0x00000100L
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID9_MASK_MASK 0x00000200L
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID10_MASK_MASK 0x00000400L
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID11_MASK_MASK 0x00000800L
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID12_MASK_MASK 0x00001000L
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID13_MASK_MASK 0x00002000L
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID14_MASK_MASK 0x00004000L
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID15_MASK_MASK 0x00008000L
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID16_MASK_MASK 0x00010000L
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID17_MASK_MASK 0x00020000L
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID18_MASK_MASK 0x00040000L
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID19_MASK_MASK 0x00080000L
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID20_MASK_MASK 0x00100000L
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID21_MASK_MASK 0x00200000L
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID22_MASK_MASK 0x00400000L
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID23_MASK_MASK 0x00800000L
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID24_MASK_MASK 0x01000000L
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID25_MASK_MASK 0x02000000L
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID26_MASK_MASK 0x04000000L
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID27_MASK_MASK 0x08000000L
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID28_MASK_MASK 0x10000000L
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID29_MASK_MASK 0x20000000L
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID30_MASK_MASK 0x40000000L
+#define MMEA2_GMI_WR_PRI_URGENCY_MASKING__CID31_MASK_MASK 0x80000000L
+//MMEA2_GMI_RD_PRI_QUANT_PRI1
+#define MMEA2_GMI_RD_PRI_QUANT_PRI1__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA2_GMI_RD_PRI_QUANT_PRI1__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA2_GMI_RD_PRI_QUANT_PRI1__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA2_GMI_RD_PRI_QUANT_PRI1__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA2_GMI_RD_PRI_QUANT_PRI1__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA2_GMI_RD_PRI_QUANT_PRI1__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA2_GMI_RD_PRI_QUANT_PRI1__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA2_GMI_RD_PRI_QUANT_PRI1__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA2_GMI_RD_PRI_QUANT_PRI2
+#define MMEA2_GMI_RD_PRI_QUANT_PRI2__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA2_GMI_RD_PRI_QUANT_PRI2__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA2_GMI_RD_PRI_QUANT_PRI2__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA2_GMI_RD_PRI_QUANT_PRI2__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA2_GMI_RD_PRI_QUANT_PRI2__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA2_GMI_RD_PRI_QUANT_PRI2__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA2_GMI_RD_PRI_QUANT_PRI2__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA2_GMI_RD_PRI_QUANT_PRI2__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA2_GMI_RD_PRI_QUANT_PRI3
+#define MMEA2_GMI_RD_PRI_QUANT_PRI3__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA2_GMI_RD_PRI_QUANT_PRI3__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA2_GMI_RD_PRI_QUANT_PRI3__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA2_GMI_RD_PRI_QUANT_PRI3__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA2_GMI_RD_PRI_QUANT_PRI3__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA2_GMI_RD_PRI_QUANT_PRI3__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA2_GMI_RD_PRI_QUANT_PRI3__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA2_GMI_RD_PRI_QUANT_PRI3__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA2_GMI_WR_PRI_QUANT_PRI1
+#define MMEA2_GMI_WR_PRI_QUANT_PRI1__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA2_GMI_WR_PRI_QUANT_PRI1__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA2_GMI_WR_PRI_QUANT_PRI1__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA2_GMI_WR_PRI_QUANT_PRI1__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA2_GMI_WR_PRI_QUANT_PRI1__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA2_GMI_WR_PRI_QUANT_PRI1__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA2_GMI_WR_PRI_QUANT_PRI1__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA2_GMI_WR_PRI_QUANT_PRI1__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA2_GMI_WR_PRI_QUANT_PRI2
+#define MMEA2_GMI_WR_PRI_QUANT_PRI2__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA2_GMI_WR_PRI_QUANT_PRI2__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA2_GMI_WR_PRI_QUANT_PRI2__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA2_GMI_WR_PRI_QUANT_PRI2__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA2_GMI_WR_PRI_QUANT_PRI2__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA2_GMI_WR_PRI_QUANT_PRI2__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA2_GMI_WR_PRI_QUANT_PRI2__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA2_GMI_WR_PRI_QUANT_PRI2__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA2_GMI_WR_PRI_QUANT_PRI3
+#define MMEA2_GMI_WR_PRI_QUANT_PRI3__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA2_GMI_WR_PRI_QUANT_PRI3__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA2_GMI_WR_PRI_QUANT_PRI3__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA2_GMI_WR_PRI_QUANT_PRI3__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA2_GMI_WR_PRI_QUANT_PRI3__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA2_GMI_WR_PRI_QUANT_PRI3__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA2_GMI_WR_PRI_QUANT_PRI3__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA2_GMI_WR_PRI_QUANT_PRI3__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA2_IO_RD_CLI2GRP_MAP0
+#define MMEA2_IO_RD_CLI2GRP_MAP0__CID0_GROUP__SHIFT 0x0
+#define MMEA2_IO_RD_CLI2GRP_MAP0__CID1_GROUP__SHIFT 0x2
+#define MMEA2_IO_RD_CLI2GRP_MAP0__CID2_GROUP__SHIFT 0x4
+#define MMEA2_IO_RD_CLI2GRP_MAP0__CID3_GROUP__SHIFT 0x6
+#define MMEA2_IO_RD_CLI2GRP_MAP0__CID4_GROUP__SHIFT 0x8
+#define MMEA2_IO_RD_CLI2GRP_MAP0__CID5_GROUP__SHIFT 0xa
+#define MMEA2_IO_RD_CLI2GRP_MAP0__CID6_GROUP__SHIFT 0xc
+#define MMEA2_IO_RD_CLI2GRP_MAP0__CID7_GROUP__SHIFT 0xe
+#define MMEA2_IO_RD_CLI2GRP_MAP0__CID8_GROUP__SHIFT 0x10
+#define MMEA2_IO_RD_CLI2GRP_MAP0__CID9_GROUP__SHIFT 0x12
+#define MMEA2_IO_RD_CLI2GRP_MAP0__CID10_GROUP__SHIFT 0x14
+#define MMEA2_IO_RD_CLI2GRP_MAP0__CID11_GROUP__SHIFT 0x16
+#define MMEA2_IO_RD_CLI2GRP_MAP0__CID12_GROUP__SHIFT 0x18
+#define MMEA2_IO_RD_CLI2GRP_MAP0__CID13_GROUP__SHIFT 0x1a
+#define MMEA2_IO_RD_CLI2GRP_MAP0__CID14_GROUP__SHIFT 0x1c
+#define MMEA2_IO_RD_CLI2GRP_MAP0__CID15_GROUP__SHIFT 0x1e
+#define MMEA2_IO_RD_CLI2GRP_MAP0__CID0_GROUP_MASK 0x00000003L
+#define MMEA2_IO_RD_CLI2GRP_MAP0__CID1_GROUP_MASK 0x0000000CL
+#define MMEA2_IO_RD_CLI2GRP_MAP0__CID2_GROUP_MASK 0x00000030L
+#define MMEA2_IO_RD_CLI2GRP_MAP0__CID3_GROUP_MASK 0x000000C0L
+#define MMEA2_IO_RD_CLI2GRP_MAP0__CID4_GROUP_MASK 0x00000300L
+#define MMEA2_IO_RD_CLI2GRP_MAP0__CID5_GROUP_MASK 0x00000C00L
+#define MMEA2_IO_RD_CLI2GRP_MAP0__CID6_GROUP_MASK 0x00003000L
+#define MMEA2_IO_RD_CLI2GRP_MAP0__CID7_GROUP_MASK 0x0000C000L
+#define MMEA2_IO_RD_CLI2GRP_MAP0__CID8_GROUP_MASK 0x00030000L
+#define MMEA2_IO_RD_CLI2GRP_MAP0__CID9_GROUP_MASK 0x000C0000L
+#define MMEA2_IO_RD_CLI2GRP_MAP0__CID10_GROUP_MASK 0x00300000L
+#define MMEA2_IO_RD_CLI2GRP_MAP0__CID11_GROUP_MASK 0x00C00000L
+#define MMEA2_IO_RD_CLI2GRP_MAP0__CID12_GROUP_MASK 0x03000000L
+#define MMEA2_IO_RD_CLI2GRP_MAP0__CID13_GROUP_MASK 0x0C000000L
+#define MMEA2_IO_RD_CLI2GRP_MAP0__CID14_GROUP_MASK 0x30000000L
+#define MMEA2_IO_RD_CLI2GRP_MAP0__CID15_GROUP_MASK 0xC0000000L
+//MMEA2_IO_RD_CLI2GRP_MAP1
+#define MMEA2_IO_RD_CLI2GRP_MAP1__CID16_GROUP__SHIFT 0x0
+#define MMEA2_IO_RD_CLI2GRP_MAP1__CID17_GROUP__SHIFT 0x2
+#define MMEA2_IO_RD_CLI2GRP_MAP1__CID18_GROUP__SHIFT 0x4
+#define MMEA2_IO_RD_CLI2GRP_MAP1__CID19_GROUP__SHIFT 0x6
+#define MMEA2_IO_RD_CLI2GRP_MAP1__CID20_GROUP__SHIFT 0x8
+#define MMEA2_IO_RD_CLI2GRP_MAP1__CID21_GROUP__SHIFT 0xa
+#define MMEA2_IO_RD_CLI2GRP_MAP1__CID22_GROUP__SHIFT 0xc
+#define MMEA2_IO_RD_CLI2GRP_MAP1__CID23_GROUP__SHIFT 0xe
+#define MMEA2_IO_RD_CLI2GRP_MAP1__CID24_GROUP__SHIFT 0x10
+#define MMEA2_IO_RD_CLI2GRP_MAP1__CID25_GROUP__SHIFT 0x12
+#define MMEA2_IO_RD_CLI2GRP_MAP1__CID26_GROUP__SHIFT 0x14
+#define MMEA2_IO_RD_CLI2GRP_MAP1__CID27_GROUP__SHIFT 0x16
+#define MMEA2_IO_RD_CLI2GRP_MAP1__CID28_GROUP__SHIFT 0x18
+#define MMEA2_IO_RD_CLI2GRP_MAP1__CID29_GROUP__SHIFT 0x1a
+#define MMEA2_IO_RD_CLI2GRP_MAP1__CID30_GROUP__SHIFT 0x1c
+#define MMEA2_IO_RD_CLI2GRP_MAP1__CID31_GROUP__SHIFT 0x1e
+#define MMEA2_IO_RD_CLI2GRP_MAP1__CID16_GROUP_MASK 0x00000003L
+#define MMEA2_IO_RD_CLI2GRP_MAP1__CID17_GROUP_MASK 0x0000000CL
+#define MMEA2_IO_RD_CLI2GRP_MAP1__CID18_GROUP_MASK 0x00000030L
+#define MMEA2_IO_RD_CLI2GRP_MAP1__CID19_GROUP_MASK 0x000000C0L
+#define MMEA2_IO_RD_CLI2GRP_MAP1__CID20_GROUP_MASK 0x00000300L
+#define MMEA2_IO_RD_CLI2GRP_MAP1__CID21_GROUP_MASK 0x00000C00L
+#define MMEA2_IO_RD_CLI2GRP_MAP1__CID22_GROUP_MASK 0x00003000L
+#define MMEA2_IO_RD_CLI2GRP_MAP1__CID23_GROUP_MASK 0x0000C000L
+#define MMEA2_IO_RD_CLI2GRP_MAP1__CID24_GROUP_MASK 0x00030000L
+#define MMEA2_IO_RD_CLI2GRP_MAP1__CID25_GROUP_MASK 0x000C0000L
+#define MMEA2_IO_RD_CLI2GRP_MAP1__CID26_GROUP_MASK 0x00300000L
+#define MMEA2_IO_RD_CLI2GRP_MAP1__CID27_GROUP_MASK 0x00C00000L
+#define MMEA2_IO_RD_CLI2GRP_MAP1__CID28_GROUP_MASK 0x03000000L
+#define MMEA2_IO_RD_CLI2GRP_MAP1__CID29_GROUP_MASK 0x0C000000L
+#define MMEA2_IO_RD_CLI2GRP_MAP1__CID30_GROUP_MASK 0x30000000L
+#define MMEA2_IO_RD_CLI2GRP_MAP1__CID31_GROUP_MASK 0xC0000000L
+//MMEA2_IO_WR_CLI2GRP_MAP0
+#define MMEA2_IO_WR_CLI2GRP_MAP0__CID0_GROUP__SHIFT 0x0
+#define MMEA2_IO_WR_CLI2GRP_MAP0__CID1_GROUP__SHIFT 0x2
+#define MMEA2_IO_WR_CLI2GRP_MAP0__CID2_GROUP__SHIFT 0x4
+#define MMEA2_IO_WR_CLI2GRP_MAP0__CID3_GROUP__SHIFT 0x6
+#define MMEA2_IO_WR_CLI2GRP_MAP0__CID4_GROUP__SHIFT 0x8
+#define MMEA2_IO_WR_CLI2GRP_MAP0__CID5_GROUP__SHIFT 0xa
+#define MMEA2_IO_WR_CLI2GRP_MAP0__CID6_GROUP__SHIFT 0xc
+#define MMEA2_IO_WR_CLI2GRP_MAP0__CID7_GROUP__SHIFT 0xe
+#define MMEA2_IO_WR_CLI2GRP_MAP0__CID8_GROUP__SHIFT 0x10
+#define MMEA2_IO_WR_CLI2GRP_MAP0__CID9_GROUP__SHIFT 0x12
+#define MMEA2_IO_WR_CLI2GRP_MAP0__CID10_GROUP__SHIFT 0x14
+#define MMEA2_IO_WR_CLI2GRP_MAP0__CID11_GROUP__SHIFT 0x16
+#define MMEA2_IO_WR_CLI2GRP_MAP0__CID12_GROUP__SHIFT 0x18
+#define MMEA2_IO_WR_CLI2GRP_MAP0__CID13_GROUP__SHIFT 0x1a
+#define MMEA2_IO_WR_CLI2GRP_MAP0__CID14_GROUP__SHIFT 0x1c
+#define MMEA2_IO_WR_CLI2GRP_MAP0__CID15_GROUP__SHIFT 0x1e
+#define MMEA2_IO_WR_CLI2GRP_MAP0__CID0_GROUP_MASK 0x00000003L
+#define MMEA2_IO_WR_CLI2GRP_MAP0__CID1_GROUP_MASK 0x0000000CL
+#define MMEA2_IO_WR_CLI2GRP_MAP0__CID2_GROUP_MASK 0x00000030L
+#define MMEA2_IO_WR_CLI2GRP_MAP0__CID3_GROUP_MASK 0x000000C0L
+#define MMEA2_IO_WR_CLI2GRP_MAP0__CID4_GROUP_MASK 0x00000300L
+#define MMEA2_IO_WR_CLI2GRP_MAP0__CID5_GROUP_MASK 0x00000C00L
+#define MMEA2_IO_WR_CLI2GRP_MAP0__CID6_GROUP_MASK 0x00003000L
+#define MMEA2_IO_WR_CLI2GRP_MAP0__CID7_GROUP_MASK 0x0000C000L
+#define MMEA2_IO_WR_CLI2GRP_MAP0__CID8_GROUP_MASK 0x00030000L
+#define MMEA2_IO_WR_CLI2GRP_MAP0__CID9_GROUP_MASK 0x000C0000L
+#define MMEA2_IO_WR_CLI2GRP_MAP0__CID10_GROUP_MASK 0x00300000L
+#define MMEA2_IO_WR_CLI2GRP_MAP0__CID11_GROUP_MASK 0x00C00000L
+#define MMEA2_IO_WR_CLI2GRP_MAP0__CID12_GROUP_MASK 0x03000000L
+#define MMEA2_IO_WR_CLI2GRP_MAP0__CID13_GROUP_MASK 0x0C000000L
+#define MMEA2_IO_WR_CLI2GRP_MAP0__CID14_GROUP_MASK 0x30000000L
+#define MMEA2_IO_WR_CLI2GRP_MAP0__CID15_GROUP_MASK 0xC0000000L
+//MMEA2_IO_WR_CLI2GRP_MAP1
+#define MMEA2_IO_WR_CLI2GRP_MAP1__CID16_GROUP__SHIFT 0x0
+#define MMEA2_IO_WR_CLI2GRP_MAP1__CID17_GROUP__SHIFT 0x2
+#define MMEA2_IO_WR_CLI2GRP_MAP1__CID18_GROUP__SHIFT 0x4
+#define MMEA2_IO_WR_CLI2GRP_MAP1__CID19_GROUP__SHIFT 0x6
+#define MMEA2_IO_WR_CLI2GRP_MAP1__CID20_GROUP__SHIFT 0x8
+#define MMEA2_IO_WR_CLI2GRP_MAP1__CID21_GROUP__SHIFT 0xa
+#define MMEA2_IO_WR_CLI2GRP_MAP1__CID22_GROUP__SHIFT 0xc
+#define MMEA2_IO_WR_CLI2GRP_MAP1__CID23_GROUP__SHIFT 0xe
+#define MMEA2_IO_WR_CLI2GRP_MAP1__CID24_GROUP__SHIFT 0x10
+#define MMEA2_IO_WR_CLI2GRP_MAP1__CID25_GROUP__SHIFT 0x12
+#define MMEA2_IO_WR_CLI2GRP_MAP1__CID26_GROUP__SHIFT 0x14
+#define MMEA2_IO_WR_CLI2GRP_MAP1__CID27_GROUP__SHIFT 0x16
+#define MMEA2_IO_WR_CLI2GRP_MAP1__CID28_GROUP__SHIFT 0x18
+#define MMEA2_IO_WR_CLI2GRP_MAP1__CID29_GROUP__SHIFT 0x1a
+#define MMEA2_IO_WR_CLI2GRP_MAP1__CID30_GROUP__SHIFT 0x1c
+#define MMEA2_IO_WR_CLI2GRP_MAP1__CID31_GROUP__SHIFT 0x1e
+#define MMEA2_IO_WR_CLI2GRP_MAP1__CID16_GROUP_MASK 0x00000003L
+#define MMEA2_IO_WR_CLI2GRP_MAP1__CID17_GROUP_MASK 0x0000000CL
+#define MMEA2_IO_WR_CLI2GRP_MAP1__CID18_GROUP_MASK 0x00000030L
+#define MMEA2_IO_WR_CLI2GRP_MAP1__CID19_GROUP_MASK 0x000000C0L
+#define MMEA2_IO_WR_CLI2GRP_MAP1__CID20_GROUP_MASK 0x00000300L
+#define MMEA2_IO_WR_CLI2GRP_MAP1__CID21_GROUP_MASK 0x00000C00L
+#define MMEA2_IO_WR_CLI2GRP_MAP1__CID22_GROUP_MASK 0x00003000L
+#define MMEA2_IO_WR_CLI2GRP_MAP1__CID23_GROUP_MASK 0x0000C000L
+#define MMEA2_IO_WR_CLI2GRP_MAP1__CID24_GROUP_MASK 0x00030000L
+#define MMEA2_IO_WR_CLI2GRP_MAP1__CID25_GROUP_MASK 0x000C0000L
+#define MMEA2_IO_WR_CLI2GRP_MAP1__CID26_GROUP_MASK 0x00300000L
+#define MMEA2_IO_WR_CLI2GRP_MAP1__CID27_GROUP_MASK 0x00C00000L
+#define MMEA2_IO_WR_CLI2GRP_MAP1__CID28_GROUP_MASK 0x03000000L
+#define MMEA2_IO_WR_CLI2GRP_MAP1__CID29_GROUP_MASK 0x0C000000L
+#define MMEA2_IO_WR_CLI2GRP_MAP1__CID30_GROUP_MASK 0x30000000L
+#define MMEA2_IO_WR_CLI2GRP_MAP1__CID31_GROUP_MASK 0xC0000000L
+//MMEA2_IO_RD_COMBINE_FLUSH
+#define MMEA2_IO_RD_COMBINE_FLUSH__GROUP0_TIMER__SHIFT 0x0
+#define MMEA2_IO_RD_COMBINE_FLUSH__GROUP1_TIMER__SHIFT 0x4
+#define MMEA2_IO_RD_COMBINE_FLUSH__GROUP2_TIMER__SHIFT 0x8
+#define MMEA2_IO_RD_COMBINE_FLUSH__GROUP3_TIMER__SHIFT 0xc
+#define MMEA2_IO_RD_COMBINE_FLUSH__COMB_MODE__SHIFT 0x10
+#define MMEA2_IO_RD_COMBINE_FLUSH__GROUP0_TIMER_MASK 0x0000000FL
+#define MMEA2_IO_RD_COMBINE_FLUSH__GROUP1_TIMER_MASK 0x000000F0L
+#define MMEA2_IO_RD_COMBINE_FLUSH__GROUP2_TIMER_MASK 0x00000F00L
+#define MMEA2_IO_RD_COMBINE_FLUSH__GROUP3_TIMER_MASK 0x0000F000L
+#define MMEA2_IO_RD_COMBINE_FLUSH__COMB_MODE_MASK 0x00030000L
+//MMEA2_IO_WR_COMBINE_FLUSH
+#define MMEA2_IO_WR_COMBINE_FLUSH__GROUP0_TIMER__SHIFT 0x0
+#define MMEA2_IO_WR_COMBINE_FLUSH__GROUP1_TIMER__SHIFT 0x4
+#define MMEA2_IO_WR_COMBINE_FLUSH__GROUP2_TIMER__SHIFT 0x8
+#define MMEA2_IO_WR_COMBINE_FLUSH__GROUP3_TIMER__SHIFT 0xc
+#define MMEA2_IO_WR_COMBINE_FLUSH__COMB_MODE__SHIFT 0x10
+#define MMEA2_IO_WR_COMBINE_FLUSH__GROUP0_TIMER_MASK 0x0000000FL
+#define MMEA2_IO_WR_COMBINE_FLUSH__GROUP1_TIMER_MASK 0x000000F0L
+#define MMEA2_IO_WR_COMBINE_FLUSH__GROUP2_TIMER_MASK 0x00000F00L
+#define MMEA2_IO_WR_COMBINE_FLUSH__GROUP3_TIMER_MASK 0x0000F000L
+#define MMEA2_IO_WR_COMBINE_FLUSH__COMB_MODE_MASK 0x00030000L
+//MMEA2_IO_GROUP_BURST
+#define MMEA2_IO_GROUP_BURST__RD_LIMIT_LO__SHIFT 0x0
+#define MMEA2_IO_GROUP_BURST__RD_LIMIT_HI__SHIFT 0x8
+#define MMEA2_IO_GROUP_BURST__WR_LIMIT_LO__SHIFT 0x10
+#define MMEA2_IO_GROUP_BURST__WR_LIMIT_HI__SHIFT 0x18
+#define MMEA2_IO_GROUP_BURST__RD_LIMIT_LO_MASK 0x000000FFL
+#define MMEA2_IO_GROUP_BURST__RD_LIMIT_HI_MASK 0x0000FF00L
+#define MMEA2_IO_GROUP_BURST__WR_LIMIT_LO_MASK 0x00FF0000L
+#define MMEA2_IO_GROUP_BURST__WR_LIMIT_HI_MASK 0xFF000000L
+//MMEA2_IO_RD_PRI_AGE
+#define MMEA2_IO_RD_PRI_AGE__GROUP0_AGING_RATE__SHIFT 0x0
+#define MMEA2_IO_RD_PRI_AGE__GROUP1_AGING_RATE__SHIFT 0x3
+#define MMEA2_IO_RD_PRI_AGE__GROUP2_AGING_RATE__SHIFT 0x6
+#define MMEA2_IO_RD_PRI_AGE__GROUP3_AGING_RATE__SHIFT 0x9
+#define MMEA2_IO_RD_PRI_AGE__GROUP0_AGE_COEFFICIENT__SHIFT 0xc
+#define MMEA2_IO_RD_PRI_AGE__GROUP1_AGE_COEFFICIENT__SHIFT 0xf
+#define MMEA2_IO_RD_PRI_AGE__GROUP2_AGE_COEFFICIENT__SHIFT 0x12
+#define MMEA2_IO_RD_PRI_AGE__GROUP3_AGE_COEFFICIENT__SHIFT 0x15
+#define MMEA2_IO_RD_PRI_AGE__GROUP0_AGING_RATE_MASK 0x00000007L
+#define MMEA2_IO_RD_PRI_AGE__GROUP1_AGING_RATE_MASK 0x00000038L
+#define MMEA2_IO_RD_PRI_AGE__GROUP2_AGING_RATE_MASK 0x000001C0L
+#define MMEA2_IO_RD_PRI_AGE__GROUP3_AGING_RATE_MASK 0x00000E00L
+#define MMEA2_IO_RD_PRI_AGE__GROUP0_AGE_COEFFICIENT_MASK 0x00007000L
+#define MMEA2_IO_RD_PRI_AGE__GROUP1_AGE_COEFFICIENT_MASK 0x00038000L
+#define MMEA2_IO_RD_PRI_AGE__GROUP2_AGE_COEFFICIENT_MASK 0x001C0000L
+#define MMEA2_IO_RD_PRI_AGE__GROUP3_AGE_COEFFICIENT_MASK 0x00E00000L
+//MMEA2_IO_WR_PRI_AGE
+#define MMEA2_IO_WR_PRI_AGE__GROUP0_AGING_RATE__SHIFT 0x0
+#define MMEA2_IO_WR_PRI_AGE__GROUP1_AGING_RATE__SHIFT 0x3
+#define MMEA2_IO_WR_PRI_AGE__GROUP2_AGING_RATE__SHIFT 0x6
+#define MMEA2_IO_WR_PRI_AGE__GROUP3_AGING_RATE__SHIFT 0x9
+#define MMEA2_IO_WR_PRI_AGE__GROUP0_AGE_COEFFICIENT__SHIFT 0xc
+#define MMEA2_IO_WR_PRI_AGE__GROUP1_AGE_COEFFICIENT__SHIFT 0xf
+#define MMEA2_IO_WR_PRI_AGE__GROUP2_AGE_COEFFICIENT__SHIFT 0x12
+#define MMEA2_IO_WR_PRI_AGE__GROUP3_AGE_COEFFICIENT__SHIFT 0x15
+#define MMEA2_IO_WR_PRI_AGE__GROUP0_AGING_RATE_MASK 0x00000007L
+#define MMEA2_IO_WR_PRI_AGE__GROUP1_AGING_RATE_MASK 0x00000038L
+#define MMEA2_IO_WR_PRI_AGE__GROUP2_AGING_RATE_MASK 0x000001C0L
+#define MMEA2_IO_WR_PRI_AGE__GROUP3_AGING_RATE_MASK 0x00000E00L
+#define MMEA2_IO_WR_PRI_AGE__GROUP0_AGE_COEFFICIENT_MASK 0x00007000L
+#define MMEA2_IO_WR_PRI_AGE__GROUP1_AGE_COEFFICIENT_MASK 0x00038000L
+#define MMEA2_IO_WR_PRI_AGE__GROUP2_AGE_COEFFICIENT_MASK 0x001C0000L
+#define MMEA2_IO_WR_PRI_AGE__GROUP3_AGE_COEFFICIENT_MASK 0x00E00000L
+//MMEA2_IO_RD_PRI_QUEUING
+#define MMEA2_IO_RD_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT__SHIFT 0x0
+#define MMEA2_IO_RD_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT__SHIFT 0x3
+#define MMEA2_IO_RD_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT__SHIFT 0x6
+#define MMEA2_IO_RD_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT__SHIFT 0x9
+#define MMEA2_IO_RD_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT_MASK 0x00000007L
+#define MMEA2_IO_RD_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT_MASK 0x00000038L
+#define MMEA2_IO_RD_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT_MASK 0x000001C0L
+#define MMEA2_IO_RD_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT_MASK 0x00000E00L
+//MMEA2_IO_WR_PRI_QUEUING
+#define MMEA2_IO_WR_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT__SHIFT 0x0
+#define MMEA2_IO_WR_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT__SHIFT 0x3
+#define MMEA2_IO_WR_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT__SHIFT 0x6
+#define MMEA2_IO_WR_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT__SHIFT 0x9
+#define MMEA2_IO_WR_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT_MASK 0x00000007L
+#define MMEA2_IO_WR_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT_MASK 0x00000038L
+#define MMEA2_IO_WR_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT_MASK 0x000001C0L
+#define MMEA2_IO_WR_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT_MASK 0x00000E00L
+//MMEA2_IO_RD_PRI_FIXED
+#define MMEA2_IO_RD_PRI_FIXED__GROUP0_FIXED_COEFFICIENT__SHIFT 0x0
+#define MMEA2_IO_RD_PRI_FIXED__GROUP1_FIXED_COEFFICIENT__SHIFT 0x3
+#define MMEA2_IO_RD_PRI_FIXED__GROUP2_FIXED_COEFFICIENT__SHIFT 0x6
+#define MMEA2_IO_RD_PRI_FIXED__GROUP3_FIXED_COEFFICIENT__SHIFT 0x9
+#define MMEA2_IO_RD_PRI_FIXED__GROUP0_FIXED_COEFFICIENT_MASK 0x00000007L
+#define MMEA2_IO_RD_PRI_FIXED__GROUP1_FIXED_COEFFICIENT_MASK 0x00000038L
+#define MMEA2_IO_RD_PRI_FIXED__GROUP2_FIXED_COEFFICIENT_MASK 0x000001C0L
+#define MMEA2_IO_RD_PRI_FIXED__GROUP3_FIXED_COEFFICIENT_MASK 0x00000E00L
+//MMEA2_IO_WR_PRI_FIXED
+#define MMEA2_IO_WR_PRI_FIXED__GROUP0_FIXED_COEFFICIENT__SHIFT 0x0
+#define MMEA2_IO_WR_PRI_FIXED__GROUP1_FIXED_COEFFICIENT__SHIFT 0x3
+#define MMEA2_IO_WR_PRI_FIXED__GROUP2_FIXED_COEFFICIENT__SHIFT 0x6
+#define MMEA2_IO_WR_PRI_FIXED__GROUP3_FIXED_COEFFICIENT__SHIFT 0x9
+#define MMEA2_IO_WR_PRI_FIXED__GROUP0_FIXED_COEFFICIENT_MASK 0x00000007L
+#define MMEA2_IO_WR_PRI_FIXED__GROUP1_FIXED_COEFFICIENT_MASK 0x00000038L
+#define MMEA2_IO_WR_PRI_FIXED__GROUP2_FIXED_COEFFICIENT_MASK 0x000001C0L
+#define MMEA2_IO_WR_PRI_FIXED__GROUP3_FIXED_COEFFICIENT_MASK 0x00000E00L
+//MMEA2_IO_RD_PRI_URGENCY
+#define MMEA2_IO_RD_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT__SHIFT 0x0
+#define MMEA2_IO_RD_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT__SHIFT 0x3
+#define MMEA2_IO_RD_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT__SHIFT 0x6
+#define MMEA2_IO_RD_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT__SHIFT 0x9
+#define MMEA2_IO_RD_PRI_URGENCY__GROUP0_URGENCY_MODE__SHIFT 0xc
+#define MMEA2_IO_RD_PRI_URGENCY__GROUP1_URGENCY_MODE__SHIFT 0xd
+#define MMEA2_IO_RD_PRI_URGENCY__GROUP2_URGENCY_MODE__SHIFT 0xe
+#define MMEA2_IO_RD_PRI_URGENCY__GROUP3_URGENCY_MODE__SHIFT 0xf
+#define MMEA2_IO_RD_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT_MASK 0x00000007L
+#define MMEA2_IO_RD_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT_MASK 0x00000038L
+#define MMEA2_IO_RD_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT_MASK 0x000001C0L
+#define MMEA2_IO_RD_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT_MASK 0x00000E00L
+#define MMEA2_IO_RD_PRI_URGENCY__GROUP0_URGENCY_MODE_MASK 0x00001000L
+#define MMEA2_IO_RD_PRI_URGENCY__GROUP1_URGENCY_MODE_MASK 0x00002000L
+#define MMEA2_IO_RD_PRI_URGENCY__GROUP2_URGENCY_MODE_MASK 0x00004000L
+#define MMEA2_IO_RD_PRI_URGENCY__GROUP3_URGENCY_MODE_MASK 0x00008000L
+//MMEA2_IO_WR_PRI_URGENCY
+#define MMEA2_IO_WR_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT__SHIFT 0x0
+#define MMEA2_IO_WR_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT__SHIFT 0x3
+#define MMEA2_IO_WR_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT__SHIFT 0x6
+#define MMEA2_IO_WR_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT__SHIFT 0x9
+#define MMEA2_IO_WR_PRI_URGENCY__GROUP0_URGENCY_MODE__SHIFT 0xc
+#define MMEA2_IO_WR_PRI_URGENCY__GROUP1_URGENCY_MODE__SHIFT 0xd
+#define MMEA2_IO_WR_PRI_URGENCY__GROUP2_URGENCY_MODE__SHIFT 0xe
+#define MMEA2_IO_WR_PRI_URGENCY__GROUP3_URGENCY_MODE__SHIFT 0xf
+#define MMEA2_IO_WR_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT_MASK 0x00000007L
+#define MMEA2_IO_WR_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT_MASK 0x00000038L
+#define MMEA2_IO_WR_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT_MASK 0x000001C0L
+#define MMEA2_IO_WR_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT_MASK 0x00000E00L
+#define MMEA2_IO_WR_PRI_URGENCY__GROUP0_URGENCY_MODE_MASK 0x00001000L
+#define MMEA2_IO_WR_PRI_URGENCY__GROUP1_URGENCY_MODE_MASK 0x00002000L
+#define MMEA2_IO_WR_PRI_URGENCY__GROUP2_URGENCY_MODE_MASK 0x00004000L
+#define MMEA2_IO_WR_PRI_URGENCY__GROUP3_URGENCY_MODE_MASK 0x00008000L
+//MMEA2_IO_RD_PRI_URGENCY_MASKING
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID0_MASK__SHIFT 0x0
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID1_MASK__SHIFT 0x1
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID2_MASK__SHIFT 0x2
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID3_MASK__SHIFT 0x3
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID4_MASK__SHIFT 0x4
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID5_MASK__SHIFT 0x5
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID6_MASK__SHIFT 0x6
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID7_MASK__SHIFT 0x7
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID8_MASK__SHIFT 0x8
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID9_MASK__SHIFT 0x9
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID10_MASK__SHIFT 0xa
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID11_MASK__SHIFT 0xb
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID12_MASK__SHIFT 0xc
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID13_MASK__SHIFT 0xd
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID14_MASK__SHIFT 0xe
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID15_MASK__SHIFT 0xf
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID16_MASK__SHIFT 0x10
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID17_MASK__SHIFT 0x11
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID18_MASK__SHIFT 0x12
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID19_MASK__SHIFT 0x13
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID20_MASK__SHIFT 0x14
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID21_MASK__SHIFT 0x15
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID22_MASK__SHIFT 0x16
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID23_MASK__SHIFT 0x17
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID24_MASK__SHIFT 0x18
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID25_MASK__SHIFT 0x19
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID26_MASK__SHIFT 0x1a
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID27_MASK__SHIFT 0x1b
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID28_MASK__SHIFT 0x1c
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID29_MASK__SHIFT 0x1d
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID30_MASK__SHIFT 0x1e
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID31_MASK__SHIFT 0x1f
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID0_MASK_MASK 0x00000001L
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID1_MASK_MASK 0x00000002L
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID2_MASK_MASK 0x00000004L
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID3_MASK_MASK 0x00000008L
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID4_MASK_MASK 0x00000010L
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID5_MASK_MASK 0x00000020L
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID6_MASK_MASK 0x00000040L
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID7_MASK_MASK 0x00000080L
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID8_MASK_MASK 0x00000100L
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID9_MASK_MASK 0x00000200L
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID10_MASK_MASK 0x00000400L
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID11_MASK_MASK 0x00000800L
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID12_MASK_MASK 0x00001000L
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID13_MASK_MASK 0x00002000L
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID14_MASK_MASK 0x00004000L
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID15_MASK_MASK 0x00008000L
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID16_MASK_MASK 0x00010000L
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID17_MASK_MASK 0x00020000L
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID18_MASK_MASK 0x00040000L
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID19_MASK_MASK 0x00080000L
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID20_MASK_MASK 0x00100000L
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID21_MASK_MASK 0x00200000L
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID22_MASK_MASK 0x00400000L
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID23_MASK_MASK 0x00800000L
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID24_MASK_MASK 0x01000000L
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID25_MASK_MASK 0x02000000L
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID26_MASK_MASK 0x04000000L
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID27_MASK_MASK 0x08000000L
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID28_MASK_MASK 0x10000000L
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID29_MASK_MASK 0x20000000L
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID30_MASK_MASK 0x40000000L
+#define MMEA2_IO_RD_PRI_URGENCY_MASKING__CID31_MASK_MASK 0x80000000L
+//MMEA2_IO_WR_PRI_URGENCY_MASKING
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID0_MASK__SHIFT 0x0
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID1_MASK__SHIFT 0x1
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID2_MASK__SHIFT 0x2
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID3_MASK__SHIFT 0x3
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID4_MASK__SHIFT 0x4
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID5_MASK__SHIFT 0x5
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID6_MASK__SHIFT 0x6
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID7_MASK__SHIFT 0x7
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID8_MASK__SHIFT 0x8
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID9_MASK__SHIFT 0x9
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID10_MASK__SHIFT 0xa
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID11_MASK__SHIFT 0xb
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID12_MASK__SHIFT 0xc
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID13_MASK__SHIFT 0xd
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID14_MASK__SHIFT 0xe
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID15_MASK__SHIFT 0xf
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID16_MASK__SHIFT 0x10
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID17_MASK__SHIFT 0x11
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID18_MASK__SHIFT 0x12
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID19_MASK__SHIFT 0x13
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID20_MASK__SHIFT 0x14
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID21_MASK__SHIFT 0x15
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID22_MASK__SHIFT 0x16
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID23_MASK__SHIFT 0x17
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID24_MASK__SHIFT 0x18
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID25_MASK__SHIFT 0x19
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID26_MASK__SHIFT 0x1a
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID27_MASK__SHIFT 0x1b
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID28_MASK__SHIFT 0x1c
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID29_MASK__SHIFT 0x1d
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID30_MASK__SHIFT 0x1e
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID31_MASK__SHIFT 0x1f
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID0_MASK_MASK 0x00000001L
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID1_MASK_MASK 0x00000002L
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID2_MASK_MASK 0x00000004L
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID3_MASK_MASK 0x00000008L
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID4_MASK_MASK 0x00000010L
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID5_MASK_MASK 0x00000020L
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID6_MASK_MASK 0x00000040L
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID7_MASK_MASK 0x00000080L
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID8_MASK_MASK 0x00000100L
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID9_MASK_MASK 0x00000200L
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID10_MASK_MASK 0x00000400L
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID11_MASK_MASK 0x00000800L
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID12_MASK_MASK 0x00001000L
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID13_MASK_MASK 0x00002000L
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID14_MASK_MASK 0x00004000L
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID15_MASK_MASK 0x00008000L
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID16_MASK_MASK 0x00010000L
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID17_MASK_MASK 0x00020000L
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID18_MASK_MASK 0x00040000L
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID19_MASK_MASK 0x00080000L
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID20_MASK_MASK 0x00100000L
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID21_MASK_MASK 0x00200000L
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID22_MASK_MASK 0x00400000L
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID23_MASK_MASK 0x00800000L
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID24_MASK_MASK 0x01000000L
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID25_MASK_MASK 0x02000000L
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID26_MASK_MASK 0x04000000L
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID27_MASK_MASK 0x08000000L
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID28_MASK_MASK 0x10000000L
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID29_MASK_MASK 0x20000000L
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID30_MASK_MASK 0x40000000L
+#define MMEA2_IO_WR_PRI_URGENCY_MASKING__CID31_MASK_MASK 0x80000000L
+//MMEA2_IO_RD_PRI_QUANT_PRI1
+#define MMEA2_IO_RD_PRI_QUANT_PRI1__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA2_IO_RD_PRI_QUANT_PRI1__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA2_IO_RD_PRI_QUANT_PRI1__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA2_IO_RD_PRI_QUANT_PRI1__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA2_IO_RD_PRI_QUANT_PRI1__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA2_IO_RD_PRI_QUANT_PRI1__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA2_IO_RD_PRI_QUANT_PRI1__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA2_IO_RD_PRI_QUANT_PRI1__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA2_IO_RD_PRI_QUANT_PRI2
+#define MMEA2_IO_RD_PRI_QUANT_PRI2__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA2_IO_RD_PRI_QUANT_PRI2__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA2_IO_RD_PRI_QUANT_PRI2__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA2_IO_RD_PRI_QUANT_PRI2__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA2_IO_RD_PRI_QUANT_PRI2__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA2_IO_RD_PRI_QUANT_PRI2__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA2_IO_RD_PRI_QUANT_PRI2__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA2_IO_RD_PRI_QUANT_PRI2__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA2_IO_RD_PRI_QUANT_PRI3
+#define MMEA2_IO_RD_PRI_QUANT_PRI3__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA2_IO_RD_PRI_QUANT_PRI3__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA2_IO_RD_PRI_QUANT_PRI3__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA2_IO_RD_PRI_QUANT_PRI3__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA2_IO_RD_PRI_QUANT_PRI3__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA2_IO_RD_PRI_QUANT_PRI3__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA2_IO_RD_PRI_QUANT_PRI3__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA2_IO_RD_PRI_QUANT_PRI3__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA2_IO_WR_PRI_QUANT_PRI1
+#define MMEA2_IO_WR_PRI_QUANT_PRI1__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA2_IO_WR_PRI_QUANT_PRI1__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA2_IO_WR_PRI_QUANT_PRI1__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA2_IO_WR_PRI_QUANT_PRI1__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA2_IO_WR_PRI_QUANT_PRI1__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA2_IO_WR_PRI_QUANT_PRI1__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA2_IO_WR_PRI_QUANT_PRI1__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA2_IO_WR_PRI_QUANT_PRI1__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA2_IO_WR_PRI_QUANT_PRI2
+#define MMEA2_IO_WR_PRI_QUANT_PRI2__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA2_IO_WR_PRI_QUANT_PRI2__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA2_IO_WR_PRI_QUANT_PRI2__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA2_IO_WR_PRI_QUANT_PRI2__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA2_IO_WR_PRI_QUANT_PRI2__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA2_IO_WR_PRI_QUANT_PRI2__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA2_IO_WR_PRI_QUANT_PRI2__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA2_IO_WR_PRI_QUANT_PRI2__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA2_IO_WR_PRI_QUANT_PRI3
+#define MMEA2_IO_WR_PRI_QUANT_PRI3__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA2_IO_WR_PRI_QUANT_PRI3__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA2_IO_WR_PRI_QUANT_PRI3__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA2_IO_WR_PRI_QUANT_PRI3__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA2_IO_WR_PRI_QUANT_PRI3__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA2_IO_WR_PRI_QUANT_PRI3__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA2_IO_WR_PRI_QUANT_PRI3__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA2_IO_WR_PRI_QUANT_PRI3__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA2_SDP_ARB_DRAM
+#define MMEA2_SDP_ARB_DRAM__RDWR_BURST_LIMIT_CYCL__SHIFT 0x0
+#define MMEA2_SDP_ARB_DRAM__RDWR_BURST_LIMIT_DATA__SHIFT 0x8
+#define MMEA2_SDP_ARB_DRAM__EARLY_SW2RD_ON_PRI__SHIFT 0x10
+#define MMEA2_SDP_ARB_DRAM__EARLY_SW2WR_ON_PRI__SHIFT 0x11
+#define MMEA2_SDP_ARB_DRAM__EARLY_SW2RD_ON_RES__SHIFT 0x12
+#define MMEA2_SDP_ARB_DRAM__EARLY_SW2WR_ON_RES__SHIFT 0x13
+#define MMEA2_SDP_ARB_DRAM__EOB_ON_EXPIRE__SHIFT 0x14
+#define MMEA2_SDP_ARB_DRAM__DECOUPLE_RDWR_BNKSTATE__SHIFT 0x15
+#define MMEA2_SDP_ARB_DRAM__ALLOW_CHAIN_BREAKING__SHIFT 0x16
+#define MMEA2_SDP_ARB_DRAM__RDWR_BURST_LIMIT_CYCL_MASK 0x0000007FL
+#define MMEA2_SDP_ARB_DRAM__RDWR_BURST_LIMIT_DATA_MASK 0x00007F00L
+#define MMEA2_SDP_ARB_DRAM__EARLY_SW2RD_ON_PRI_MASK 0x00010000L
+#define MMEA2_SDP_ARB_DRAM__EARLY_SW2WR_ON_PRI_MASK 0x00020000L
+#define MMEA2_SDP_ARB_DRAM__EARLY_SW2RD_ON_RES_MASK 0x00040000L
+#define MMEA2_SDP_ARB_DRAM__EARLY_SW2WR_ON_RES_MASK 0x00080000L
+#define MMEA2_SDP_ARB_DRAM__EOB_ON_EXPIRE_MASK 0x00100000L
+#define MMEA2_SDP_ARB_DRAM__DECOUPLE_RDWR_BNKSTATE_MASK 0x00200000L
+#define MMEA2_SDP_ARB_DRAM__ALLOW_CHAIN_BREAKING_MASK 0x00400000L
+//MMEA2_SDP_ARB_GMI
+#define MMEA2_SDP_ARB_GMI__RDWR_BURST_LIMIT_CYCL__SHIFT 0x0
+#define MMEA2_SDP_ARB_GMI__RDWR_BURST_LIMIT_DATA__SHIFT 0x8
+#define MMEA2_SDP_ARB_GMI__EARLY_SW2RD_ON_PRI__SHIFT 0x10
+#define MMEA2_SDP_ARB_GMI__EARLY_SW2WR_ON_PRI__SHIFT 0x11
+#define MMEA2_SDP_ARB_GMI__EARLY_SW2RD_ON_RES__SHIFT 0x12
+#define MMEA2_SDP_ARB_GMI__EARLY_SW2WR_ON_RES__SHIFT 0x13
+#define MMEA2_SDP_ARB_GMI__EOB_ON_EXPIRE__SHIFT 0x14
+#define MMEA2_SDP_ARB_GMI__DECOUPLE_RDWR_BNKSTATE__SHIFT 0x15
+#define MMEA2_SDP_ARB_GMI__ALLOW_CHAIN_BREAKING__SHIFT 0x16
+#define MMEA2_SDP_ARB_GMI__RDWR_BURST_LIMIT_CYCL_MASK 0x0000007FL
+#define MMEA2_SDP_ARB_GMI__RDWR_BURST_LIMIT_DATA_MASK 0x00007F00L
+#define MMEA2_SDP_ARB_GMI__EARLY_SW2RD_ON_PRI_MASK 0x00010000L
+#define MMEA2_SDP_ARB_GMI__EARLY_SW2WR_ON_PRI_MASK 0x00020000L
+#define MMEA2_SDP_ARB_GMI__EARLY_SW2RD_ON_RES_MASK 0x00040000L
+#define MMEA2_SDP_ARB_GMI__EARLY_SW2WR_ON_RES_MASK 0x00080000L
+#define MMEA2_SDP_ARB_GMI__EOB_ON_EXPIRE_MASK 0x00100000L
+#define MMEA2_SDP_ARB_GMI__DECOUPLE_RDWR_BNKSTATE_MASK 0x00200000L
+#define MMEA2_SDP_ARB_GMI__ALLOW_CHAIN_BREAKING_MASK 0x00400000L
+//MMEA2_SDP_ARB_FINAL
+#define MMEA2_SDP_ARB_FINAL__DRAM_BURST_LIMIT__SHIFT 0x0
+#define MMEA2_SDP_ARB_FINAL__GMI_BURST_LIMIT__SHIFT 0x5
+#define MMEA2_SDP_ARB_FINAL__IO_BURST_LIMIT__SHIFT 0xa
+#define MMEA2_SDP_ARB_FINAL__BURST_LIMIT_MULTIPLIER__SHIFT 0xf
+#define MMEA2_SDP_ARB_FINAL__RDONLY_VC0__SHIFT 0x11
+#define MMEA2_SDP_ARB_FINAL__RDONLY_VC1__SHIFT 0x12
+#define MMEA2_SDP_ARB_FINAL__RDONLY_VC2__SHIFT 0x13
+#define MMEA2_SDP_ARB_FINAL__RDONLY_VC3__SHIFT 0x14
+#define MMEA2_SDP_ARB_FINAL__RDONLY_VC4__SHIFT 0x15
+#define MMEA2_SDP_ARB_FINAL__RDONLY_VC5__SHIFT 0x16
+#define MMEA2_SDP_ARB_FINAL__RDONLY_VC6__SHIFT 0x17
+#define MMEA2_SDP_ARB_FINAL__RDONLY_VC7__SHIFT 0x18
+#define MMEA2_SDP_ARB_FINAL__ERREVENT_ON_ERROR__SHIFT 0x19
+#define MMEA2_SDP_ARB_FINAL__HALTREQ_ON_ERROR__SHIFT 0x1a
+#define MMEA2_SDP_ARB_FINAL__DRAM_BURST_STRETCH__SHIFT 0x1b
+#define MMEA2_SDP_ARB_FINAL__GMI_BURST_STRETCH__SHIFT 0x1c
+#define MMEA2_SDP_ARB_FINAL__DRAM_BURST_LIMIT_MASK 0x0000001FL
+#define MMEA2_SDP_ARB_FINAL__GMI_BURST_LIMIT_MASK 0x000003E0L
+#define MMEA2_SDP_ARB_FINAL__IO_BURST_LIMIT_MASK 0x00007C00L
+#define MMEA2_SDP_ARB_FINAL__BURST_LIMIT_MULTIPLIER_MASK 0x00018000L
+#define MMEA2_SDP_ARB_FINAL__RDONLY_VC0_MASK 0x00020000L
+#define MMEA2_SDP_ARB_FINAL__RDONLY_VC1_MASK 0x00040000L
+#define MMEA2_SDP_ARB_FINAL__RDONLY_VC2_MASK 0x00080000L
+#define MMEA2_SDP_ARB_FINAL__RDONLY_VC3_MASK 0x00100000L
+#define MMEA2_SDP_ARB_FINAL__RDONLY_VC4_MASK 0x00200000L
+#define MMEA2_SDP_ARB_FINAL__RDONLY_VC5_MASK 0x00400000L
+#define MMEA2_SDP_ARB_FINAL__RDONLY_VC6_MASK 0x00800000L
+#define MMEA2_SDP_ARB_FINAL__RDONLY_VC7_MASK 0x01000000L
+#define MMEA2_SDP_ARB_FINAL__ERREVENT_ON_ERROR_MASK 0x02000000L
+#define MMEA2_SDP_ARB_FINAL__HALTREQ_ON_ERROR_MASK 0x04000000L
+#define MMEA2_SDP_ARB_FINAL__DRAM_BURST_STRETCH_MASK 0x08000000L
+#define MMEA2_SDP_ARB_FINAL__GMI_BURST_STRETCH_MASK 0x10000000L
+//MMEA2_SDP_DRAM_PRIORITY
+#define MMEA2_SDP_DRAM_PRIORITY__RD_GROUP0_PRIORITY__SHIFT 0x0
+#define MMEA2_SDP_DRAM_PRIORITY__RD_GROUP1_PRIORITY__SHIFT 0x4
+#define MMEA2_SDP_DRAM_PRIORITY__RD_GROUP2_PRIORITY__SHIFT 0x8
+#define MMEA2_SDP_DRAM_PRIORITY__RD_GROUP3_PRIORITY__SHIFT 0xc
+#define MMEA2_SDP_DRAM_PRIORITY__WR_GROUP0_PRIORITY__SHIFT 0x10
+#define MMEA2_SDP_DRAM_PRIORITY__WR_GROUP1_PRIORITY__SHIFT 0x14
+#define MMEA2_SDP_DRAM_PRIORITY__WR_GROUP2_PRIORITY__SHIFT 0x18
+#define MMEA2_SDP_DRAM_PRIORITY__WR_GROUP3_PRIORITY__SHIFT 0x1c
+#define MMEA2_SDP_DRAM_PRIORITY__RD_GROUP0_PRIORITY_MASK 0x0000000FL
+#define MMEA2_SDP_DRAM_PRIORITY__RD_GROUP1_PRIORITY_MASK 0x000000F0L
+#define MMEA2_SDP_DRAM_PRIORITY__RD_GROUP2_PRIORITY_MASK 0x00000F00L
+#define MMEA2_SDP_DRAM_PRIORITY__RD_GROUP3_PRIORITY_MASK 0x0000F000L
+#define MMEA2_SDP_DRAM_PRIORITY__WR_GROUP0_PRIORITY_MASK 0x000F0000L
+#define MMEA2_SDP_DRAM_PRIORITY__WR_GROUP1_PRIORITY_MASK 0x00F00000L
+#define MMEA2_SDP_DRAM_PRIORITY__WR_GROUP2_PRIORITY_MASK 0x0F000000L
+#define MMEA2_SDP_DRAM_PRIORITY__WR_GROUP3_PRIORITY_MASK 0xF0000000L
+//MMEA2_SDP_GMI_PRIORITY
+#define MMEA2_SDP_GMI_PRIORITY__RD_GROUP0_PRIORITY__SHIFT 0x0
+#define MMEA2_SDP_GMI_PRIORITY__RD_GROUP1_PRIORITY__SHIFT 0x4
+#define MMEA2_SDP_GMI_PRIORITY__RD_GROUP2_PRIORITY__SHIFT 0x8
+#define MMEA2_SDP_GMI_PRIORITY__RD_GROUP3_PRIORITY__SHIFT 0xc
+#define MMEA2_SDP_GMI_PRIORITY__WR_GROUP0_PRIORITY__SHIFT 0x10
+#define MMEA2_SDP_GMI_PRIORITY__WR_GROUP1_PRIORITY__SHIFT 0x14
+#define MMEA2_SDP_GMI_PRIORITY__WR_GROUP2_PRIORITY__SHIFT 0x18
+#define MMEA2_SDP_GMI_PRIORITY__WR_GROUP3_PRIORITY__SHIFT 0x1c
+#define MMEA2_SDP_GMI_PRIORITY__RD_GROUP0_PRIORITY_MASK 0x0000000FL
+#define MMEA2_SDP_GMI_PRIORITY__RD_GROUP1_PRIORITY_MASK 0x000000F0L
+#define MMEA2_SDP_GMI_PRIORITY__RD_GROUP2_PRIORITY_MASK 0x00000F00L
+#define MMEA2_SDP_GMI_PRIORITY__RD_GROUP3_PRIORITY_MASK 0x0000F000L
+#define MMEA2_SDP_GMI_PRIORITY__WR_GROUP0_PRIORITY_MASK 0x000F0000L
+#define MMEA2_SDP_GMI_PRIORITY__WR_GROUP1_PRIORITY_MASK 0x00F00000L
+#define MMEA2_SDP_GMI_PRIORITY__WR_GROUP2_PRIORITY_MASK 0x0F000000L
+#define MMEA2_SDP_GMI_PRIORITY__WR_GROUP3_PRIORITY_MASK 0xF0000000L
+//MMEA2_SDP_IO_PRIORITY
+#define MMEA2_SDP_IO_PRIORITY__RD_GROUP0_PRIORITY__SHIFT 0x0
+#define MMEA2_SDP_IO_PRIORITY__RD_GROUP1_PRIORITY__SHIFT 0x4
+#define MMEA2_SDP_IO_PRIORITY__RD_GROUP2_PRIORITY__SHIFT 0x8
+#define MMEA2_SDP_IO_PRIORITY__RD_GROUP3_PRIORITY__SHIFT 0xc
+#define MMEA2_SDP_IO_PRIORITY__WR_GROUP0_PRIORITY__SHIFT 0x10
+#define MMEA2_SDP_IO_PRIORITY__WR_GROUP1_PRIORITY__SHIFT 0x14
+#define MMEA2_SDP_IO_PRIORITY__WR_GROUP2_PRIORITY__SHIFT 0x18
+#define MMEA2_SDP_IO_PRIORITY__WR_GROUP3_PRIORITY__SHIFT 0x1c
+#define MMEA2_SDP_IO_PRIORITY__RD_GROUP0_PRIORITY_MASK 0x0000000FL
+#define MMEA2_SDP_IO_PRIORITY__RD_GROUP1_PRIORITY_MASK 0x000000F0L
+#define MMEA2_SDP_IO_PRIORITY__RD_GROUP2_PRIORITY_MASK 0x00000F00L
+#define MMEA2_SDP_IO_PRIORITY__RD_GROUP3_PRIORITY_MASK 0x0000F000L
+#define MMEA2_SDP_IO_PRIORITY__WR_GROUP0_PRIORITY_MASK 0x000F0000L
+#define MMEA2_SDP_IO_PRIORITY__WR_GROUP1_PRIORITY_MASK 0x00F00000L
+#define MMEA2_SDP_IO_PRIORITY__WR_GROUP2_PRIORITY_MASK 0x0F000000L
+#define MMEA2_SDP_IO_PRIORITY__WR_GROUP3_PRIORITY_MASK 0xF0000000L
+//MMEA2_SDP_CREDITS
+#define MMEA2_SDP_CREDITS__TAG_LIMIT__SHIFT 0x0
+#define MMEA2_SDP_CREDITS__WR_RESP_CREDITS__SHIFT 0x8
+#define MMEA2_SDP_CREDITS__RD_RESP_CREDITS__SHIFT 0x10
+#define MMEA2_SDP_CREDITS__TAG_LIMIT_MASK 0x000000FFL
+#define MMEA2_SDP_CREDITS__WR_RESP_CREDITS_MASK 0x00007F00L
+#define MMEA2_SDP_CREDITS__RD_RESP_CREDITS_MASK 0x007F0000L
+//MMEA2_SDP_TAG_RESERVE0
+#define MMEA2_SDP_TAG_RESERVE0__VC0__SHIFT 0x0
+#define MMEA2_SDP_TAG_RESERVE0__VC1__SHIFT 0x8
+#define MMEA2_SDP_TAG_RESERVE0__VC2__SHIFT 0x10
+#define MMEA2_SDP_TAG_RESERVE0__VC3__SHIFT 0x18
+#define MMEA2_SDP_TAG_RESERVE0__VC0_MASK 0x000000FFL
+#define MMEA2_SDP_TAG_RESERVE0__VC1_MASK 0x0000FF00L
+#define MMEA2_SDP_TAG_RESERVE0__VC2_MASK 0x00FF0000L
+#define MMEA2_SDP_TAG_RESERVE0__VC3_MASK 0xFF000000L
+//MMEA2_SDP_TAG_RESERVE1
+#define MMEA2_SDP_TAG_RESERVE1__VC4__SHIFT 0x0
+#define MMEA2_SDP_TAG_RESERVE1__VC5__SHIFT 0x8
+#define MMEA2_SDP_TAG_RESERVE1__VC6__SHIFT 0x10
+#define MMEA2_SDP_TAG_RESERVE1__VC7__SHIFT 0x18
+#define MMEA2_SDP_TAG_RESERVE1__VC4_MASK 0x000000FFL
+#define MMEA2_SDP_TAG_RESERVE1__VC5_MASK 0x0000FF00L
+#define MMEA2_SDP_TAG_RESERVE1__VC6_MASK 0x00FF0000L
+#define MMEA2_SDP_TAG_RESERVE1__VC7_MASK 0xFF000000L
+//MMEA2_SDP_VCC_RESERVE0
+#define MMEA2_SDP_VCC_RESERVE0__VC0_CREDITS__SHIFT 0x0
+#define MMEA2_SDP_VCC_RESERVE0__VC1_CREDITS__SHIFT 0x6
+#define MMEA2_SDP_VCC_RESERVE0__VC2_CREDITS__SHIFT 0xc
+#define MMEA2_SDP_VCC_RESERVE0__VC3_CREDITS__SHIFT 0x12
+#define MMEA2_SDP_VCC_RESERVE0__VC4_CREDITS__SHIFT 0x18
+#define MMEA2_SDP_VCC_RESERVE0__VC0_CREDITS_MASK 0x0000003FL
+#define MMEA2_SDP_VCC_RESERVE0__VC1_CREDITS_MASK 0x00000FC0L
+#define MMEA2_SDP_VCC_RESERVE0__VC2_CREDITS_MASK 0x0003F000L
+#define MMEA2_SDP_VCC_RESERVE0__VC3_CREDITS_MASK 0x00FC0000L
+#define MMEA2_SDP_VCC_RESERVE0__VC4_CREDITS_MASK 0x3F000000L
+//MMEA2_SDP_VCC_RESERVE1
+#define MMEA2_SDP_VCC_RESERVE1__VC5_CREDITS__SHIFT 0x0
+#define MMEA2_SDP_VCC_RESERVE1__VC6_CREDITS__SHIFT 0x6
+#define MMEA2_SDP_VCC_RESERVE1__VC7_CREDITS__SHIFT 0xc
+#define MMEA2_SDP_VCC_RESERVE1__DISTRIBUTE_POOL__SHIFT 0x1f
+#define MMEA2_SDP_VCC_RESERVE1__VC5_CREDITS_MASK 0x0000003FL
+#define MMEA2_SDP_VCC_RESERVE1__VC6_CREDITS_MASK 0x00000FC0L
+#define MMEA2_SDP_VCC_RESERVE1__VC7_CREDITS_MASK 0x0003F000L
+#define MMEA2_SDP_VCC_RESERVE1__DISTRIBUTE_POOL_MASK 0x80000000L
+//MMEA2_SDP_VCD_RESERVE0
+#define MMEA2_SDP_VCD_RESERVE0__VC0_CREDITS__SHIFT 0x0
+#define MMEA2_SDP_VCD_RESERVE0__VC1_CREDITS__SHIFT 0x6
+#define MMEA2_SDP_VCD_RESERVE0__VC2_CREDITS__SHIFT 0xc
+#define MMEA2_SDP_VCD_RESERVE0__VC3_CREDITS__SHIFT 0x12
+#define MMEA2_SDP_VCD_RESERVE0__VC4_CREDITS__SHIFT 0x18
+#define MMEA2_SDP_VCD_RESERVE0__VC0_CREDITS_MASK 0x0000003FL
+#define MMEA2_SDP_VCD_RESERVE0__VC1_CREDITS_MASK 0x00000FC0L
+#define MMEA2_SDP_VCD_RESERVE0__VC2_CREDITS_MASK 0x0003F000L
+#define MMEA2_SDP_VCD_RESERVE0__VC3_CREDITS_MASK 0x00FC0000L
+#define MMEA2_SDP_VCD_RESERVE0__VC4_CREDITS_MASK 0x3F000000L
+//MMEA2_SDP_VCD_RESERVE1
+#define MMEA2_SDP_VCD_RESERVE1__VC5_CREDITS__SHIFT 0x0
+#define MMEA2_SDP_VCD_RESERVE1__VC6_CREDITS__SHIFT 0x6
+#define MMEA2_SDP_VCD_RESERVE1__VC7_CREDITS__SHIFT 0xc
+#define MMEA2_SDP_VCD_RESERVE1__DISTRIBUTE_POOL__SHIFT 0x1f
+#define MMEA2_SDP_VCD_RESERVE1__VC5_CREDITS_MASK 0x0000003FL
+#define MMEA2_SDP_VCD_RESERVE1__VC6_CREDITS_MASK 0x00000FC0L
+#define MMEA2_SDP_VCD_RESERVE1__VC7_CREDITS_MASK 0x0003F000L
+#define MMEA2_SDP_VCD_RESERVE1__DISTRIBUTE_POOL_MASK 0x80000000L
+//MMEA2_SDP_REQ_CNTL
+#define MMEA2_SDP_REQ_CNTL__REQ_PASS_PW_OVERRIDE_READ__SHIFT 0x0
+#define MMEA2_SDP_REQ_CNTL__REQ_PASS_PW_OVERRIDE_WRITE__SHIFT 0x1
+#define MMEA2_SDP_REQ_CNTL__REQ_PASS_PW_OVERRIDE_ATOMIC__SHIFT 0x2
+#define MMEA2_SDP_REQ_CNTL__REQ_CHAIN_OVERRIDE_DRAM__SHIFT 0x3
+#define MMEA2_SDP_REQ_CNTL__REQ_CHAIN_OVERRIDE_GMI__SHIFT 0x4
+#define MMEA2_SDP_REQ_CNTL__INNER_DOMAIN_MODE__SHIFT 0x5
+#define MMEA2_SDP_REQ_CNTL__REQ_BLOCK_LEVEL_READ__SHIFT 0x6
+#define MMEA2_SDP_REQ_CNTL__REQ_BLOCK_LEVEL_WRITE__SHIFT 0x8
+#define MMEA2_SDP_REQ_CNTL__REQ_BLOCK_LEVEL_ATOMIC__SHIFT 0xa
+#define MMEA2_SDP_REQ_CNTL__REQ_PASS_PW_OVERRIDE_READ_MASK 0x00000001L
+#define MMEA2_SDP_REQ_CNTL__REQ_PASS_PW_OVERRIDE_WRITE_MASK 0x00000002L
+#define MMEA2_SDP_REQ_CNTL__REQ_PASS_PW_OVERRIDE_ATOMIC_MASK 0x00000004L
+#define MMEA2_SDP_REQ_CNTL__REQ_CHAIN_OVERRIDE_DRAM_MASK 0x00000008L
+#define MMEA2_SDP_REQ_CNTL__REQ_CHAIN_OVERRIDE_GMI_MASK 0x00000010L
+#define MMEA2_SDP_REQ_CNTL__INNER_DOMAIN_MODE_MASK 0x00000020L
+#define MMEA2_SDP_REQ_CNTL__REQ_BLOCK_LEVEL_READ_MASK 0x000000C0L
+#define MMEA2_SDP_REQ_CNTL__REQ_BLOCK_LEVEL_WRITE_MASK 0x00000300L
+#define MMEA2_SDP_REQ_CNTL__REQ_BLOCK_LEVEL_ATOMIC_MASK 0x00000C00L
+//MMEA2_MISC
+#define MMEA2_MISC__RELATIVE_PRI_IN_DRAM_RD_ARB__SHIFT 0x0
+#define MMEA2_MISC__RELATIVE_PRI_IN_DRAM_WR_ARB__SHIFT 0x1
+#define MMEA2_MISC__RELATIVE_PRI_IN_GMI_RD_ARB__SHIFT 0x2
+#define MMEA2_MISC__RELATIVE_PRI_IN_GMI_WR_ARB__SHIFT 0x3
+#define MMEA2_MISC__RELATIVE_PRI_IN_IO_RD_ARB__SHIFT 0x4
+#define MMEA2_MISC__RELATIVE_PRI_IN_IO_WR_ARB__SHIFT 0x5
+#define MMEA2_MISC__EARLYWRRET_ENABLE_VC0__SHIFT 0x6
+#define MMEA2_MISC__EARLYWRRET_ENABLE_VC1__SHIFT 0x7
+#define MMEA2_MISC__EARLYWRRET_ENABLE_VC2__SHIFT 0x8
+#define MMEA2_MISC__EARLYWRRET_ENABLE_VC3__SHIFT 0x9
+#define MMEA2_MISC__EARLYWRRET_ENABLE_VC4__SHIFT 0xa
+#define MMEA2_MISC__EARLYWRRET_ENABLE_VC5__SHIFT 0xb
+#define MMEA2_MISC__EARLYWRRET_ENABLE_VC6__SHIFT 0xc
+#define MMEA2_MISC__EARLYWRRET_ENABLE_VC7__SHIFT 0xd
+#define MMEA2_MISC__EARLY_SDP_ORIGDATA__SHIFT 0xe
+#define MMEA2_MISC__LINKMGR_DYNAMIC_MODE__SHIFT 0xf
+#define MMEA2_MISC__LINKMGR_HALT_THRESHOLD__SHIFT 0x11
+#define MMEA2_MISC__LINKMGR_RECONNECT_DELAY__SHIFT 0x13
+#define MMEA2_MISC__LINKMGR_IDLE_THRESHOLD__SHIFT 0x15
+#define MMEA2_MISC__FAVOUR_MIDCHAIN_CS_IN_DRAM_ARB__SHIFT 0x1a
+#define MMEA2_MISC__FAVOUR_MIDCHAIN_CS_IN_GMI_ARB__SHIFT 0x1b
+#define MMEA2_MISC__FAVOUR_LAST_CS_IN_DRAM_ARB__SHIFT 0x1c
+#define MMEA2_MISC__FAVOUR_LAST_CS_IN_GMI_ARB__SHIFT 0x1d
+#define MMEA2_MISC__SWITCH_CS_ON_W2R_IN_DRAM_ARB__SHIFT 0x1e
+#define MMEA2_MISC__SWITCH_CS_ON_W2R_IN_GMI_ARB__SHIFT 0x1f
+#define MMEA2_MISC__RELATIVE_PRI_IN_DRAM_RD_ARB_MASK 0x00000001L
+#define MMEA2_MISC__RELATIVE_PRI_IN_DRAM_WR_ARB_MASK 0x00000002L
+#define MMEA2_MISC__RELATIVE_PRI_IN_GMI_RD_ARB_MASK 0x00000004L
+#define MMEA2_MISC__RELATIVE_PRI_IN_GMI_WR_ARB_MASK 0x00000008L
+#define MMEA2_MISC__RELATIVE_PRI_IN_IO_RD_ARB_MASK 0x00000010L
+#define MMEA2_MISC__RELATIVE_PRI_IN_IO_WR_ARB_MASK 0x00000020L
+#define MMEA2_MISC__EARLYWRRET_ENABLE_VC0_MASK 0x00000040L
+#define MMEA2_MISC__EARLYWRRET_ENABLE_VC1_MASK 0x00000080L
+#define MMEA2_MISC__EARLYWRRET_ENABLE_VC2_MASK 0x00000100L
+#define MMEA2_MISC__EARLYWRRET_ENABLE_VC3_MASK 0x00000200L
+#define MMEA2_MISC__EARLYWRRET_ENABLE_VC4_MASK 0x00000400L
+#define MMEA2_MISC__EARLYWRRET_ENABLE_VC5_MASK 0x00000800L
+#define MMEA2_MISC__EARLYWRRET_ENABLE_VC6_MASK 0x00001000L
+#define MMEA2_MISC__EARLYWRRET_ENABLE_VC7_MASK 0x00002000L
+#define MMEA2_MISC__EARLY_SDP_ORIGDATA_MASK 0x00004000L
+#define MMEA2_MISC__LINKMGR_DYNAMIC_MODE_MASK 0x00018000L
+#define MMEA2_MISC__LINKMGR_HALT_THRESHOLD_MASK 0x00060000L
+#define MMEA2_MISC__LINKMGR_RECONNECT_DELAY_MASK 0x00180000L
+#define MMEA2_MISC__LINKMGR_IDLE_THRESHOLD_MASK 0x03E00000L
+#define MMEA2_MISC__FAVOUR_MIDCHAIN_CS_IN_DRAM_ARB_MASK 0x04000000L
+#define MMEA2_MISC__FAVOUR_MIDCHAIN_CS_IN_GMI_ARB_MASK 0x08000000L
+#define MMEA2_MISC__FAVOUR_LAST_CS_IN_DRAM_ARB_MASK 0x10000000L
+#define MMEA2_MISC__FAVOUR_LAST_CS_IN_GMI_ARB_MASK 0x20000000L
+#define MMEA2_MISC__SWITCH_CS_ON_W2R_IN_DRAM_ARB_MASK 0x40000000L
+#define MMEA2_MISC__SWITCH_CS_ON_W2R_IN_GMI_ARB_MASK 0x80000000L
+//MMEA2_LATENCY_SAMPLING
+#define MMEA2_LATENCY_SAMPLING__SAMPLER0_DRAM__SHIFT 0x0
+#define MMEA2_LATENCY_SAMPLING__SAMPLER1_DRAM__SHIFT 0x1
+#define MMEA2_LATENCY_SAMPLING__SAMPLER0_GMI__SHIFT 0x2
+#define MMEA2_LATENCY_SAMPLING__SAMPLER1_GMI__SHIFT 0x3
+#define MMEA2_LATENCY_SAMPLING__SAMPLER0_IO__SHIFT 0x4
+#define MMEA2_LATENCY_SAMPLING__SAMPLER1_IO__SHIFT 0x5
+#define MMEA2_LATENCY_SAMPLING__SAMPLER0_READ__SHIFT 0x6
+#define MMEA2_LATENCY_SAMPLING__SAMPLER1_READ__SHIFT 0x7
+#define MMEA2_LATENCY_SAMPLING__SAMPLER0_WRITE__SHIFT 0x8
+#define MMEA2_LATENCY_SAMPLING__SAMPLER1_WRITE__SHIFT 0x9
+#define MMEA2_LATENCY_SAMPLING__SAMPLER0_ATOMIC_RET__SHIFT 0xa
+#define MMEA2_LATENCY_SAMPLING__SAMPLER1_ATOMIC_RET__SHIFT 0xb
+#define MMEA2_LATENCY_SAMPLING__SAMPLER0_ATOMIC_NORET__SHIFT 0xc
+#define MMEA2_LATENCY_SAMPLING__SAMPLER1_ATOMIC_NORET__SHIFT 0xd
+#define MMEA2_LATENCY_SAMPLING__SAMPLER0_VC__SHIFT 0xe
+#define MMEA2_LATENCY_SAMPLING__SAMPLER1_VC__SHIFT 0x16
+#define MMEA2_LATENCY_SAMPLING__SAMPLER0_DRAM_MASK 0x00000001L
+#define MMEA2_LATENCY_SAMPLING__SAMPLER1_DRAM_MASK 0x00000002L
+#define MMEA2_LATENCY_SAMPLING__SAMPLER0_GMI_MASK 0x00000004L
+#define MMEA2_LATENCY_SAMPLING__SAMPLER1_GMI_MASK 0x00000008L
+#define MMEA2_LATENCY_SAMPLING__SAMPLER0_IO_MASK 0x00000010L
+#define MMEA2_LATENCY_SAMPLING__SAMPLER1_IO_MASK 0x00000020L
+#define MMEA2_LATENCY_SAMPLING__SAMPLER0_READ_MASK 0x00000040L
+#define MMEA2_LATENCY_SAMPLING__SAMPLER1_READ_MASK 0x00000080L
+#define MMEA2_LATENCY_SAMPLING__SAMPLER0_WRITE_MASK 0x00000100L
+#define MMEA2_LATENCY_SAMPLING__SAMPLER1_WRITE_MASK 0x00000200L
+#define MMEA2_LATENCY_SAMPLING__SAMPLER0_ATOMIC_RET_MASK 0x00000400L
+#define MMEA2_LATENCY_SAMPLING__SAMPLER1_ATOMIC_RET_MASK 0x00000800L
+#define MMEA2_LATENCY_SAMPLING__SAMPLER0_ATOMIC_NORET_MASK 0x00001000L
+#define MMEA2_LATENCY_SAMPLING__SAMPLER1_ATOMIC_NORET_MASK 0x00002000L
+#define MMEA2_LATENCY_SAMPLING__SAMPLER0_VC_MASK 0x003FC000L
+#define MMEA2_LATENCY_SAMPLING__SAMPLER1_VC_MASK 0x3FC00000L
+//MMEA2_PERFCOUNTER_LO
+#define MMEA2_PERFCOUNTER_LO__COUNTER_LO__SHIFT 0x0
+#define MMEA2_PERFCOUNTER_LO__COUNTER_LO_MASK 0xFFFFFFFFL
+//MMEA2_PERFCOUNTER_HI
+#define MMEA2_PERFCOUNTER_HI__COUNTER_HI__SHIFT 0x0
+#define MMEA2_PERFCOUNTER_HI__COMPARE_VALUE__SHIFT 0x10
+#define MMEA2_PERFCOUNTER_HI__COUNTER_HI_MASK 0x0000FFFFL
+#define MMEA2_PERFCOUNTER_HI__COMPARE_VALUE_MASK 0xFFFF0000L
+//MMEA2_PERFCOUNTER0_CFG
+#define MMEA2_PERFCOUNTER0_CFG__PERF_SEL__SHIFT 0x0
+#define MMEA2_PERFCOUNTER0_CFG__PERF_SEL_END__SHIFT 0x8
+#define MMEA2_PERFCOUNTER0_CFG__PERF_MODE__SHIFT 0x18
+#define MMEA2_PERFCOUNTER0_CFG__ENABLE__SHIFT 0x1c
+#define MMEA2_PERFCOUNTER0_CFG__CLEAR__SHIFT 0x1d
+#define MMEA2_PERFCOUNTER0_CFG__PERF_SEL_MASK 0x000000FFL
+#define MMEA2_PERFCOUNTER0_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define MMEA2_PERFCOUNTER0_CFG__PERF_MODE_MASK 0x0F000000L
+#define MMEA2_PERFCOUNTER0_CFG__ENABLE_MASK 0x10000000L
+#define MMEA2_PERFCOUNTER0_CFG__CLEAR_MASK 0x20000000L
+//MMEA2_PERFCOUNTER1_CFG
+#define MMEA2_PERFCOUNTER1_CFG__PERF_SEL__SHIFT 0x0
+#define MMEA2_PERFCOUNTER1_CFG__PERF_SEL_END__SHIFT 0x8
+#define MMEA2_PERFCOUNTER1_CFG__PERF_MODE__SHIFT 0x18
+#define MMEA2_PERFCOUNTER1_CFG__ENABLE__SHIFT 0x1c
+#define MMEA2_PERFCOUNTER1_CFG__CLEAR__SHIFT 0x1d
+#define MMEA2_PERFCOUNTER1_CFG__PERF_SEL_MASK 0x000000FFL
+#define MMEA2_PERFCOUNTER1_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define MMEA2_PERFCOUNTER1_CFG__PERF_MODE_MASK 0x0F000000L
+#define MMEA2_PERFCOUNTER1_CFG__ENABLE_MASK 0x10000000L
+#define MMEA2_PERFCOUNTER1_CFG__CLEAR_MASK 0x20000000L
+//MMEA2_PERFCOUNTER_RSLT_CNTL
+#define MMEA2_PERFCOUNTER_RSLT_CNTL__PERF_COUNTER_SELECT__SHIFT 0x0
+#define MMEA2_PERFCOUNTER_RSLT_CNTL__START_TRIGGER__SHIFT 0x8
+#define MMEA2_PERFCOUNTER_RSLT_CNTL__STOP_TRIGGER__SHIFT 0x10
+#define MMEA2_PERFCOUNTER_RSLT_CNTL__ENABLE_ANY__SHIFT 0x18
+#define MMEA2_PERFCOUNTER_RSLT_CNTL__CLEAR_ALL__SHIFT 0x19
+#define MMEA2_PERFCOUNTER_RSLT_CNTL__STOP_ALL_ON_SATURATE__SHIFT 0x1a
+#define MMEA2_PERFCOUNTER_RSLT_CNTL__PERF_COUNTER_SELECT_MASK 0x0000000FL
+#define MMEA2_PERFCOUNTER_RSLT_CNTL__START_TRIGGER_MASK 0x0000FF00L
+#define MMEA2_PERFCOUNTER_RSLT_CNTL__STOP_TRIGGER_MASK 0x00FF0000L
+#define MMEA2_PERFCOUNTER_RSLT_CNTL__ENABLE_ANY_MASK 0x01000000L
+#define MMEA2_PERFCOUNTER_RSLT_CNTL__CLEAR_ALL_MASK 0x02000000L
+#define MMEA2_PERFCOUNTER_RSLT_CNTL__STOP_ALL_ON_SATURATE_MASK 0x04000000L
+//MMEA2_DSM_CNTL
+#define MMEA2_DSM_CNTL__DRAMRD_CMDMEM_DSM_IRRITATOR_DATA__SHIFT 0x0
+#define MMEA2_DSM_CNTL__DRAMRD_CMDMEM_ENABLE_SINGLE_WRITE__SHIFT 0x2
+#define MMEA2_DSM_CNTL__DRAMWR_CMDMEM_DSM_IRRITATOR_DATA__SHIFT 0x3
+#define MMEA2_DSM_CNTL__DRAMWR_CMDMEM_ENABLE_SINGLE_WRITE__SHIFT 0x5
+#define MMEA2_DSM_CNTL__DRAMWR_DATAMEM_DSM_IRRITATOR_DATA__SHIFT 0x6
+#define MMEA2_DSM_CNTL__DRAMWR_DATAMEM_ENABLE_SINGLE_WRITE__SHIFT 0x8
+#define MMEA2_DSM_CNTL__RRET_TAGMEM_DSM_IRRITATOR_DATA__SHIFT 0x9
+#define MMEA2_DSM_CNTL__RRET_TAGMEM_ENABLE_SINGLE_WRITE__SHIFT 0xb
+#define MMEA2_DSM_CNTL__WRET_TAGMEM_DSM_IRRITATOR_DATA__SHIFT 0xc
+#define MMEA2_DSM_CNTL__WRET_TAGMEM_ENABLE_SINGLE_WRITE__SHIFT 0xe
+#define MMEA2_DSM_CNTL__GMIRD_CMDMEM_DSM_IRRITATOR_DATA__SHIFT 0xf
+#define MMEA2_DSM_CNTL__GMIRD_CMDMEM_ENABLE_SINGLE_WRITE__SHIFT 0x11
+#define MMEA2_DSM_CNTL__GMIWR_CMDMEM_DSM_IRRITATOR_DATA__SHIFT 0x12
+#define MMEA2_DSM_CNTL__GMIWR_CMDMEM_ENABLE_SINGLE_WRITE__SHIFT 0x14
+#define MMEA2_DSM_CNTL__GMIWR_DATAMEM_DSM_IRRITATOR_DATA__SHIFT 0x15
+#define MMEA2_DSM_CNTL__GMIWR_DATAMEM_ENABLE_SINGLE_WRITE__SHIFT 0x17
+#define MMEA2_DSM_CNTL__DRAMRD_CMDMEM_DSM_IRRITATOR_DATA_MASK 0x00000003L
+#define MMEA2_DSM_CNTL__DRAMRD_CMDMEM_ENABLE_SINGLE_WRITE_MASK 0x00000004L
+#define MMEA2_DSM_CNTL__DRAMWR_CMDMEM_DSM_IRRITATOR_DATA_MASK 0x00000018L
+#define MMEA2_DSM_CNTL__DRAMWR_CMDMEM_ENABLE_SINGLE_WRITE_MASK 0x00000020L
+#define MMEA2_DSM_CNTL__DRAMWR_DATAMEM_DSM_IRRITATOR_DATA_MASK 0x000000C0L
+#define MMEA2_DSM_CNTL__DRAMWR_DATAMEM_ENABLE_SINGLE_WRITE_MASK 0x00000100L
+#define MMEA2_DSM_CNTL__RRET_TAGMEM_DSM_IRRITATOR_DATA_MASK 0x00000600L
+#define MMEA2_DSM_CNTL__RRET_TAGMEM_ENABLE_SINGLE_WRITE_MASK 0x00000800L
+#define MMEA2_DSM_CNTL__WRET_TAGMEM_DSM_IRRITATOR_DATA_MASK 0x00003000L
+#define MMEA2_DSM_CNTL__WRET_TAGMEM_ENABLE_SINGLE_WRITE_MASK 0x00004000L
+#define MMEA2_DSM_CNTL__GMIRD_CMDMEM_DSM_IRRITATOR_DATA_MASK 0x00018000L
+#define MMEA2_DSM_CNTL__GMIRD_CMDMEM_ENABLE_SINGLE_WRITE_MASK 0x00020000L
+#define MMEA2_DSM_CNTL__GMIWR_CMDMEM_DSM_IRRITATOR_DATA_MASK 0x000C0000L
+#define MMEA2_DSM_CNTL__GMIWR_CMDMEM_ENABLE_SINGLE_WRITE_MASK 0x00100000L
+#define MMEA2_DSM_CNTL__GMIWR_DATAMEM_DSM_IRRITATOR_DATA_MASK 0x00600000L
+#define MMEA2_DSM_CNTL__GMIWR_DATAMEM_ENABLE_SINGLE_WRITE_MASK 0x00800000L
+//MMEA2_DSM_CNTLA
+#define MMEA2_DSM_CNTLA__DRAMRD_PAGEMEM_DSM_IRRITATOR_DATA__SHIFT 0x0
+#define MMEA2_DSM_CNTLA__DRAMRD_PAGEMEM_ENABLE_SINGLE_WRITE__SHIFT 0x2
+#define MMEA2_DSM_CNTLA__DRAMWR_PAGEMEM_DSM_IRRITATOR_DATA__SHIFT 0x3
+#define MMEA2_DSM_CNTLA__DRAMWR_PAGEMEM_ENABLE_SINGLE_WRITE__SHIFT 0x5
+#define MMEA2_DSM_CNTLA__IORD_CMDMEM_DSM_IRRITATOR_DATA__SHIFT 0x6
+#define MMEA2_DSM_CNTLA__IORD_CMDMEM_ENABLE_SINGLE_WRITE__SHIFT 0x8
+#define MMEA2_DSM_CNTLA__IOWR_CMDMEM_DSM_IRRITATOR_DATA__SHIFT 0x9
+#define MMEA2_DSM_CNTLA__IOWR_CMDMEM_ENABLE_SINGLE_WRITE__SHIFT 0xb
+#define MMEA2_DSM_CNTLA__IOWR_DATAMEM_DSM_IRRITATOR_DATA__SHIFT 0xc
+#define MMEA2_DSM_CNTLA__IOWR_DATAMEM_ENABLE_SINGLE_WRITE__SHIFT 0xe
+#define MMEA2_DSM_CNTLA__GMIRD_PAGEMEM_DSM_IRRITATOR_DATA__SHIFT 0xf
+#define MMEA2_DSM_CNTLA__GMIRD_PAGEMEM_ENABLE_SINGLE_WRITE__SHIFT 0x11
+#define MMEA2_DSM_CNTLA__GMIWR_PAGEMEM_DSM_IRRITATOR_DATA__SHIFT 0x12
+#define MMEA2_DSM_CNTLA__GMIWR_PAGEMEM_ENABLE_SINGLE_WRITE__SHIFT 0x14
+#define MMEA2_DSM_CNTLA__DRAMRD_PAGEMEM_DSM_IRRITATOR_DATA_MASK 0x00000003L
+#define MMEA2_DSM_CNTLA__DRAMRD_PAGEMEM_ENABLE_SINGLE_WRITE_MASK 0x00000004L
+#define MMEA2_DSM_CNTLA__DRAMWR_PAGEMEM_DSM_IRRITATOR_DATA_MASK 0x00000018L
+#define MMEA2_DSM_CNTLA__DRAMWR_PAGEMEM_ENABLE_SINGLE_WRITE_MASK 0x00000020L
+#define MMEA2_DSM_CNTLA__IORD_CMDMEM_DSM_IRRITATOR_DATA_MASK 0x000000C0L
+#define MMEA2_DSM_CNTLA__IORD_CMDMEM_ENABLE_SINGLE_WRITE_MASK 0x00000100L
+#define MMEA2_DSM_CNTLA__IOWR_CMDMEM_DSM_IRRITATOR_DATA_MASK 0x00000600L
+#define MMEA2_DSM_CNTLA__IOWR_CMDMEM_ENABLE_SINGLE_WRITE_MASK 0x00000800L
+#define MMEA2_DSM_CNTLA__IOWR_DATAMEM_DSM_IRRITATOR_DATA_MASK 0x00003000L
+#define MMEA2_DSM_CNTLA__IOWR_DATAMEM_ENABLE_SINGLE_WRITE_MASK 0x00004000L
+#define MMEA2_DSM_CNTLA__GMIRD_PAGEMEM_DSM_IRRITATOR_DATA_MASK 0x00018000L
+#define MMEA2_DSM_CNTLA__GMIRD_PAGEMEM_ENABLE_SINGLE_WRITE_MASK 0x00020000L
+#define MMEA2_DSM_CNTLA__GMIWR_PAGEMEM_DSM_IRRITATOR_DATA_MASK 0x000C0000L
+#define MMEA2_DSM_CNTLA__GMIWR_PAGEMEM_ENABLE_SINGLE_WRITE_MASK 0x00100000L
+//MMEA2_DSM_CNTLB
+#define MMEA2_DSM_CNTLB__MAM_D0MEM_DSM_IRRITATOR_DATA__SHIFT 0x0
+#define MMEA2_DSM_CNTLB__MAM_D0MEM_ENABLE_SINGLE_WRITE__SHIFT 0x2
+#define MMEA2_DSM_CNTLB__MAM_D1MEM_DSM_IRRITATOR_DATA__SHIFT 0x3
+#define MMEA2_DSM_CNTLB__MAM_D1MEM_ENABLE_SINGLE_WRITE__SHIFT 0x5
+#define MMEA2_DSM_CNTLB__MAM_D2MEM_DSM_IRRITATOR_DATA__SHIFT 0x6
+#define MMEA2_DSM_CNTLB__MAM_D2MEM_ENABLE_SINGLE_WRITE__SHIFT 0x8
+#define MMEA2_DSM_CNTLB__MAM_D3MEM_DSM_IRRITATOR_DATA__SHIFT 0x9
+#define MMEA2_DSM_CNTLB__MAM_D3MEM_ENABLE_SINGLE_WRITE__SHIFT 0xb
+#define MMEA2_DSM_CNTLB__MAM_D0MEM_DSM_IRRITATOR_DATA_MASK 0x00000003L
+#define MMEA2_DSM_CNTLB__MAM_D0MEM_ENABLE_SINGLE_WRITE_MASK 0x00000004L
+#define MMEA2_DSM_CNTLB__MAM_D1MEM_DSM_IRRITATOR_DATA_MASK 0x00000018L
+#define MMEA2_DSM_CNTLB__MAM_D1MEM_ENABLE_SINGLE_WRITE_MASK 0x00000020L
+#define MMEA2_DSM_CNTLB__MAM_D2MEM_DSM_IRRITATOR_DATA_MASK 0x000000C0L
+#define MMEA2_DSM_CNTLB__MAM_D2MEM_ENABLE_SINGLE_WRITE_MASK 0x00000100L
+#define MMEA2_DSM_CNTLB__MAM_D3MEM_DSM_IRRITATOR_DATA_MASK 0x00000600L
+#define MMEA2_DSM_CNTLB__MAM_D3MEM_ENABLE_SINGLE_WRITE_MASK 0x00000800L
+//MMEA2_DSM_CNTL2
+#define MMEA2_DSM_CNTL2__DRAMRD_CMDMEM_ENABLE_ERROR_INJECT__SHIFT 0x0
+#define MMEA2_DSM_CNTL2__DRAMRD_CMDMEM_SELECT_INJECT_DELAY__SHIFT 0x2
+#define MMEA2_DSM_CNTL2__DRAMWR_CMDMEM_ENABLE_ERROR_INJECT__SHIFT 0x3
+#define MMEA2_DSM_CNTL2__DRAMWR_CMDMEM_SELECT_INJECT_DELAY__SHIFT 0x5
+#define MMEA2_DSM_CNTL2__DRAMWR_DATAMEM_ENABLE_ERROR_INJECT__SHIFT 0x6
+#define MMEA2_DSM_CNTL2__DRAMWR_DATAMEM_SELECT_INJECT_DELAY__SHIFT 0x8
+#define MMEA2_DSM_CNTL2__RRET_TAGMEM_ENABLE_ERROR_INJECT__SHIFT 0x9
+#define MMEA2_DSM_CNTL2__RRET_TAGMEM_SELECT_INJECT_DELAY__SHIFT 0xb
+#define MMEA2_DSM_CNTL2__WRET_TAGMEM_ENABLE_ERROR_INJECT__SHIFT 0xc
+#define MMEA2_DSM_CNTL2__WRET_TAGMEM_SELECT_INJECT_DELAY__SHIFT 0xe
+#define MMEA2_DSM_CNTL2__GMIRD_CMDMEM_ENABLE_ERROR_INJECT__SHIFT 0xf
+#define MMEA2_DSM_CNTL2__GMIRD_CMDMEM_SELECT_INJECT_DELAY__SHIFT 0x11
+#define MMEA2_DSM_CNTL2__GMIWR_CMDMEM_ENABLE_ERROR_INJECT__SHIFT 0x12
+#define MMEA2_DSM_CNTL2__GMIWR_CMDMEM_SELECT_INJECT_DELAY__SHIFT 0x14
+#define MMEA2_DSM_CNTL2__GMIWR_DATAMEM_ENABLE_ERROR_INJECT__SHIFT 0x15
+#define MMEA2_DSM_CNTL2__GMIWR_DATAMEM_SELECT_INJECT_DELAY__SHIFT 0x17
+#define MMEA2_DSM_CNTL2__INJECT_DELAY__SHIFT 0x1a
+#define MMEA2_DSM_CNTL2__DRAMRD_CMDMEM_ENABLE_ERROR_INJECT_MASK 0x00000003L
+#define MMEA2_DSM_CNTL2__DRAMRD_CMDMEM_SELECT_INJECT_DELAY_MASK 0x00000004L
+#define MMEA2_DSM_CNTL2__DRAMWR_CMDMEM_ENABLE_ERROR_INJECT_MASK 0x00000018L
+#define MMEA2_DSM_CNTL2__DRAMWR_CMDMEM_SELECT_INJECT_DELAY_MASK 0x00000020L
+#define MMEA2_DSM_CNTL2__DRAMWR_DATAMEM_ENABLE_ERROR_INJECT_MASK 0x000000C0L
+#define MMEA2_DSM_CNTL2__DRAMWR_DATAMEM_SELECT_INJECT_DELAY_MASK 0x00000100L
+#define MMEA2_DSM_CNTL2__RRET_TAGMEM_ENABLE_ERROR_INJECT_MASK 0x00000600L
+#define MMEA2_DSM_CNTL2__RRET_TAGMEM_SELECT_INJECT_DELAY_MASK 0x00000800L
+#define MMEA2_DSM_CNTL2__WRET_TAGMEM_ENABLE_ERROR_INJECT_MASK 0x00003000L
+#define MMEA2_DSM_CNTL2__WRET_TAGMEM_SELECT_INJECT_DELAY_MASK 0x00004000L
+#define MMEA2_DSM_CNTL2__GMIRD_CMDMEM_ENABLE_ERROR_INJECT_MASK 0x00018000L
+#define MMEA2_DSM_CNTL2__GMIRD_CMDMEM_SELECT_INJECT_DELAY_MASK 0x00020000L
+#define MMEA2_DSM_CNTL2__GMIWR_CMDMEM_ENABLE_ERROR_INJECT_MASK 0x000C0000L
+#define MMEA2_DSM_CNTL2__GMIWR_CMDMEM_SELECT_INJECT_DELAY_MASK 0x00100000L
+#define MMEA2_DSM_CNTL2__GMIWR_DATAMEM_ENABLE_ERROR_INJECT_MASK 0x00600000L
+#define MMEA2_DSM_CNTL2__GMIWR_DATAMEM_SELECT_INJECT_DELAY_MASK 0x00800000L
+#define MMEA2_DSM_CNTL2__INJECT_DELAY_MASK 0xFC000000L
+//MMEA2_DSM_CNTL2A
+#define MMEA2_DSM_CNTL2A__DRAMRD_PAGEMEM_ENABLE_ERROR_INJECT__SHIFT 0x0
+#define MMEA2_DSM_CNTL2A__DRAMRD_PAGEMEM_SELECT_INJECT_DELAY__SHIFT 0x2
+#define MMEA2_DSM_CNTL2A__DRAMWR_PAGEMEM_ENABLE_ERROR_INJECT__SHIFT 0x3
+#define MMEA2_DSM_CNTL2A__DRAMWR_PAGEMEM_SELECT_INJECT_DELAY__SHIFT 0x5
+#define MMEA2_DSM_CNTL2A__IORD_CMDMEM_ENABLE_ERROR_INJECT__SHIFT 0x6
+#define MMEA2_DSM_CNTL2A__IORD_CMDMEM_SELECT_INJECT_DELAY__SHIFT 0x8
+#define MMEA2_DSM_CNTL2A__IOWR_CMDMEM_ENABLE_ERROR_INJECT__SHIFT 0x9
+#define MMEA2_DSM_CNTL2A__IOWR_CMDMEM_SELECT_INJECT_DELAY__SHIFT 0xb
+#define MMEA2_DSM_CNTL2A__IOWR_DATAMEM_ENABLE_ERROR_INJECT__SHIFT 0xc
+#define MMEA2_DSM_CNTL2A__IOWR_DATAMEM_SELECT_INJECT_DELAY__SHIFT 0xe
+#define MMEA2_DSM_CNTL2A__GMIRD_PAGEMEM_ENABLE_ERROR_INJECT__SHIFT 0xf
+#define MMEA2_DSM_CNTL2A__GMIRD_PAGEMEM_SELECT_INJECT_DELAY__SHIFT 0x11
+#define MMEA2_DSM_CNTL2A__GMIWR_PAGEMEM_ENABLE_ERROR_INJECT__SHIFT 0x12
+#define MMEA2_DSM_CNTL2A__GMIWR_PAGEMEM_SELECT_INJECT_DELAY__SHIFT 0x14
+#define MMEA2_DSM_CNTL2A__DRAMRD_PAGEMEM_ENABLE_ERROR_INJECT_MASK 0x00000003L
+#define MMEA2_DSM_CNTL2A__DRAMRD_PAGEMEM_SELECT_INJECT_DELAY_MASK 0x00000004L
+#define MMEA2_DSM_CNTL2A__DRAMWR_PAGEMEM_ENABLE_ERROR_INJECT_MASK 0x00000018L
+#define MMEA2_DSM_CNTL2A__DRAMWR_PAGEMEM_SELECT_INJECT_DELAY_MASK 0x00000020L
+#define MMEA2_DSM_CNTL2A__IORD_CMDMEM_ENABLE_ERROR_INJECT_MASK 0x000000C0L
+#define MMEA2_DSM_CNTL2A__IORD_CMDMEM_SELECT_INJECT_DELAY_MASK 0x00000100L
+#define MMEA2_DSM_CNTL2A__IOWR_CMDMEM_ENABLE_ERROR_INJECT_MASK 0x00000600L
+#define MMEA2_DSM_CNTL2A__IOWR_CMDMEM_SELECT_INJECT_DELAY_MASK 0x00000800L
+#define MMEA2_DSM_CNTL2A__IOWR_DATAMEM_ENABLE_ERROR_INJECT_MASK 0x00003000L
+#define MMEA2_DSM_CNTL2A__IOWR_DATAMEM_SELECT_INJECT_DELAY_MASK 0x00004000L
+#define MMEA2_DSM_CNTL2A__GMIRD_PAGEMEM_ENABLE_ERROR_INJECT_MASK 0x00018000L
+#define MMEA2_DSM_CNTL2A__GMIRD_PAGEMEM_SELECT_INJECT_DELAY_MASK 0x00020000L
+#define MMEA2_DSM_CNTL2A__GMIWR_PAGEMEM_ENABLE_ERROR_INJECT_MASK 0x000C0000L
+#define MMEA2_DSM_CNTL2A__GMIWR_PAGEMEM_SELECT_INJECT_DELAY_MASK 0x00100000L
+//MMEA2_DSM_CNTL2B
+#define MMEA2_DSM_CNTL2B__MAM_D0MEM_ENABLE_ERROR_INJECT__SHIFT 0x0
+#define MMEA2_DSM_CNTL2B__MAM_D0MEM_SELECT_INJECT_DELAY__SHIFT 0x2
+#define MMEA2_DSM_CNTL2B__MAM_D1MEM_ENABLE_ERROR_INJECT__SHIFT 0x3
+#define MMEA2_DSM_CNTL2B__MAM_D1MEM_SELECT_INJECT_DELAY__SHIFT 0x5
+#define MMEA2_DSM_CNTL2B__MAM_D2MEM_ENABLE_ERROR_INJECT__SHIFT 0x6
+#define MMEA2_DSM_CNTL2B__MAM_D2MEM_SELECT_INJECT_DELAY__SHIFT 0x8
+#define MMEA2_DSM_CNTL2B__MAM_D3MEM_ENABLE_ERROR_INJECT__SHIFT 0x9
+#define MMEA2_DSM_CNTL2B__MAM_D3MEM_SELECT_INJECT_DELAY__SHIFT 0xb
+#define MMEA2_DSM_CNTL2B__MAM_D0MEM_ENABLE_ERROR_INJECT_MASK 0x00000003L
+#define MMEA2_DSM_CNTL2B__MAM_D0MEM_SELECT_INJECT_DELAY_MASK 0x00000004L
+#define MMEA2_DSM_CNTL2B__MAM_D1MEM_ENABLE_ERROR_INJECT_MASK 0x00000018L
+#define MMEA2_DSM_CNTL2B__MAM_D1MEM_SELECT_INJECT_DELAY_MASK 0x00000020L
+#define MMEA2_DSM_CNTL2B__MAM_D2MEM_ENABLE_ERROR_INJECT_MASK 0x000000C0L
+#define MMEA2_DSM_CNTL2B__MAM_D2MEM_SELECT_INJECT_DELAY_MASK 0x00000100L
+#define MMEA2_DSM_CNTL2B__MAM_D3MEM_ENABLE_ERROR_INJECT_MASK 0x00000600L
+#define MMEA2_DSM_CNTL2B__MAM_D3MEM_SELECT_INJECT_DELAY_MASK 0x00000800L
+//MMEA2_CGTT_CLK_CTRL
+#define MMEA2_CGTT_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define MMEA2_CGTT_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define MMEA2_CGTT_CLK_CTRL__SPARE0__SHIFT 0xc
+#define MMEA2_CGTT_CLK_CTRL__SOFT_STALL_OVERRIDE_WRITE__SHIFT 0x14
+#define MMEA2_CGTT_CLK_CTRL__SOFT_STALL_OVERRIDE_READ__SHIFT 0x15
+#define MMEA2_CGTT_CLK_CTRL__SOFT_STALL_OVERRIDE_RETURN__SHIFT 0x16
+#define MMEA2_CGTT_CLK_CTRL__SPARE1__SHIFT 0x17
+#define MMEA2_CGTT_CLK_CTRL__LS_OVERRIDE__SHIFT 0x1b
+#define MMEA2_CGTT_CLK_CTRL__SOFT_OVERRIDE_WRITE__SHIFT 0x1c
+#define MMEA2_CGTT_CLK_CTRL__SOFT_OVERRIDE_READ__SHIFT 0x1d
+#define MMEA2_CGTT_CLK_CTRL__SOFT_OVERRIDE_RETURN__SHIFT 0x1e
+#define MMEA2_CGTT_CLK_CTRL__SOFT_OVERRIDE_REGISTER__SHIFT 0x1f
+#define MMEA2_CGTT_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define MMEA2_CGTT_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define MMEA2_CGTT_CLK_CTRL__SPARE0_MASK 0x000FF000L
+#define MMEA2_CGTT_CLK_CTRL__SOFT_STALL_OVERRIDE_WRITE_MASK 0x00100000L
+#define MMEA2_CGTT_CLK_CTRL__SOFT_STALL_OVERRIDE_READ_MASK 0x00200000L
+#define MMEA2_CGTT_CLK_CTRL__SOFT_STALL_OVERRIDE_RETURN_MASK 0x00400000L
+#define MMEA2_CGTT_CLK_CTRL__SPARE1_MASK 0x07800000L
+#define MMEA2_CGTT_CLK_CTRL__LS_OVERRIDE_MASK 0x08000000L
+#define MMEA2_CGTT_CLK_CTRL__SOFT_OVERRIDE_WRITE_MASK 0x10000000L
+#define MMEA2_CGTT_CLK_CTRL__SOFT_OVERRIDE_READ_MASK 0x20000000L
+#define MMEA2_CGTT_CLK_CTRL__SOFT_OVERRIDE_RETURN_MASK 0x40000000L
+#define MMEA2_CGTT_CLK_CTRL__SOFT_OVERRIDE_REGISTER_MASK 0x80000000L
+//MMEA2_EDC_MODE
+#define MMEA2_EDC_MODE__COUNT_FED_OUT__SHIFT 0x10
+#define MMEA2_EDC_MODE__GATE_FUE__SHIFT 0x11
+#define MMEA2_EDC_MODE__DED_MODE__SHIFT 0x14
+#define MMEA2_EDC_MODE__PROP_FED__SHIFT 0x1d
+#define MMEA2_EDC_MODE__BYPASS__SHIFT 0x1f
+#define MMEA2_EDC_MODE__COUNT_FED_OUT_MASK 0x00010000L
+#define MMEA2_EDC_MODE__GATE_FUE_MASK 0x00020000L
+#define MMEA2_EDC_MODE__DED_MODE_MASK 0x00300000L
+#define MMEA2_EDC_MODE__PROP_FED_MASK 0x20000000L
+#define MMEA2_EDC_MODE__BYPASS_MASK 0x80000000L
+//MMEA2_ERR_STATUS
+#define MMEA2_ERR_STATUS__SDP_RDRSP_STATUS__SHIFT 0x0
+#define MMEA2_ERR_STATUS__SDP_WRRSP_STATUS__SHIFT 0x4
+#define MMEA2_ERR_STATUS__SDP_RDRSP_DATASTATUS__SHIFT 0x8
+#define MMEA2_ERR_STATUS__SDP_RDRSP_DATAPARITY_ERROR__SHIFT 0xa
+#define MMEA2_ERR_STATUS__CLEAR_ERROR_STATUS__SHIFT 0xb
+#define MMEA2_ERR_STATUS__BUSY_ON_ERROR__SHIFT 0xc
+#define MMEA2_ERR_STATUS__FUE_FLAG__SHIFT 0xd
+#define MMEA2_ERR_STATUS__IGNORE_RDRSP_FED__SHIFT 0xe
+#define MMEA2_ERR_STATUS__INTERRUPT_ON_FATAL__SHIFT 0xf
+#define MMEA2_ERR_STATUS__INTERRUPT_IGNORE_CLI_FATAL__SHIFT 0x10
+#define MMEA2_ERR_STATUS__LEVEL_INTERRUPT__SHIFT 0x11
+#define MMEA2_ERR_STATUS__BUSY_ON_CMPL_FATAL_ERROR__SHIFT 0x12
+#define MMEA2_ERR_STATUS__FUE_FLAG_CLIENT__SHIFT 0x13
+#define MMEA2_ERR_STATUS__SDP_RDRSP_STATUS_MASK 0x0000000FL
+#define MMEA2_ERR_STATUS__SDP_WRRSP_STATUS_MASK 0x000000F0L
+#define MMEA2_ERR_STATUS__SDP_RDRSP_DATASTATUS_MASK 0x00000300L
+#define MMEA2_ERR_STATUS__SDP_RDRSP_DATAPARITY_ERROR_MASK 0x00000400L
+#define MMEA2_ERR_STATUS__CLEAR_ERROR_STATUS_MASK 0x00000800L
+#define MMEA2_ERR_STATUS__BUSY_ON_ERROR_MASK 0x00001000L
+#define MMEA2_ERR_STATUS__FUE_FLAG_MASK 0x00002000L
+#define MMEA2_ERR_STATUS__IGNORE_RDRSP_FED_MASK 0x00004000L
+#define MMEA2_ERR_STATUS__INTERRUPT_ON_FATAL_MASK 0x00008000L
+#define MMEA2_ERR_STATUS__INTERRUPT_IGNORE_CLI_FATAL_MASK 0x00010000L
+#define MMEA2_ERR_STATUS__LEVEL_INTERRUPT_MASK 0x00020000L
+#define MMEA2_ERR_STATUS__BUSY_ON_CMPL_FATAL_ERROR_MASK 0x00040000L
+#define MMEA2_ERR_STATUS__FUE_FLAG_CLIENT_MASK 0x00080000L
+//MMEA2_MISC2
+#define MMEA2_MISC2__CSGROUP_SWAP_IN_DRAM_ARB__SHIFT 0x0
+#define MMEA2_MISC2__CSGROUP_SWAP_IN_GMI_ARB__SHIFT 0x1
+#define MMEA2_MISC2__CSGRP_BURST_LIMIT_DATA_DRAM__SHIFT 0x2
+#define MMEA2_MISC2__CSGRP_BURST_LIMIT_DATA_GMI__SHIFT 0x7
+#define MMEA2_MISC2__IO_RDWR_PRIORITY_ENABLE__SHIFT 0xc
+#define MMEA2_MISC2__RRET_SWAP_MODE__SHIFT 0xd
+#define MMEA2_MISC2__BLOCK_REQUESTS__SHIFT 0xe
+#define MMEA2_MISC2__REQUESTS_BLOCKED__SHIFT 0xf
+#define MMEA2_MISC2__DRAM_RD_THROTTLE__SHIFT 0x10
+#define MMEA2_MISC2__DRAM_WR_THROTTLE__SHIFT 0x11
+#define MMEA2_MISC2__GMI_RD_THROTTLE__SHIFT 0x12
+#define MMEA2_MISC2__GMI_WR_THROTTLE__SHIFT 0x13
+#define MMEA2_MISC2__CSGROUP_SWAP_IN_DRAM_ARB_MASK 0x00000001L
+#define MMEA2_MISC2__CSGROUP_SWAP_IN_GMI_ARB_MASK 0x00000002L
+#define MMEA2_MISC2__CSGRP_BURST_LIMIT_DATA_DRAM_MASK 0x0000007CL
+#define MMEA2_MISC2__CSGRP_BURST_LIMIT_DATA_GMI_MASK 0x00000F80L
+#define MMEA2_MISC2__IO_RDWR_PRIORITY_ENABLE_MASK 0x00001000L
+#define MMEA2_MISC2__RRET_SWAP_MODE_MASK 0x00002000L
+#define MMEA2_MISC2__BLOCK_REQUESTS_MASK 0x00004000L
+#define MMEA2_MISC2__REQUESTS_BLOCKED_MASK 0x00008000L
+#define MMEA2_MISC2__DRAM_RD_THROTTLE_MASK 0x00010000L
+#define MMEA2_MISC2__DRAM_WR_THROTTLE_MASK 0x00020000L
+#define MMEA2_MISC2__GMI_RD_THROTTLE_MASK 0x00040000L
+#define MMEA2_MISC2__GMI_WR_THROTTLE_MASK 0x00080000L
+//MMEA2_MISC_AON
+#define MMEA2_MISC_AON__LINKMGR_PARTACK_HYSTERESIS__SHIFT 0x0
+#define MMEA2_MISC_AON__LINKMGR_PARTACK_DEASSERT_MODE__SHIFT 0x2
+#define MMEA2_MISC_AON__LINKMGR_PARTACK_HYSTERESIS_MASK 0x00000003L
+#define MMEA2_MISC_AON__LINKMGR_PARTACK_DEASSERT_MODE_MASK 0x00000004L
+
+
+// addressBlock: aid_mmhub_ea_mmeadec3
+//MMEA3_DRAM_RD_CLI2GRP_MAP0
+#define MMEA3_DRAM_RD_CLI2GRP_MAP0__CID0_GROUP__SHIFT 0x0
+#define MMEA3_DRAM_RD_CLI2GRP_MAP0__CID1_GROUP__SHIFT 0x2
+#define MMEA3_DRAM_RD_CLI2GRP_MAP0__CID2_GROUP__SHIFT 0x4
+#define MMEA3_DRAM_RD_CLI2GRP_MAP0__CID3_GROUP__SHIFT 0x6
+#define MMEA3_DRAM_RD_CLI2GRP_MAP0__CID4_GROUP__SHIFT 0x8
+#define MMEA3_DRAM_RD_CLI2GRP_MAP0__CID5_GROUP__SHIFT 0xa
+#define MMEA3_DRAM_RD_CLI2GRP_MAP0__CID6_GROUP__SHIFT 0xc
+#define MMEA3_DRAM_RD_CLI2GRP_MAP0__CID7_GROUP__SHIFT 0xe
+#define MMEA3_DRAM_RD_CLI2GRP_MAP0__CID8_GROUP__SHIFT 0x10
+#define MMEA3_DRAM_RD_CLI2GRP_MAP0__CID9_GROUP__SHIFT 0x12
+#define MMEA3_DRAM_RD_CLI2GRP_MAP0__CID10_GROUP__SHIFT 0x14
+#define MMEA3_DRAM_RD_CLI2GRP_MAP0__CID11_GROUP__SHIFT 0x16
+#define MMEA3_DRAM_RD_CLI2GRP_MAP0__CID12_GROUP__SHIFT 0x18
+#define MMEA3_DRAM_RD_CLI2GRP_MAP0__CID13_GROUP__SHIFT 0x1a
+#define MMEA3_DRAM_RD_CLI2GRP_MAP0__CID14_GROUP__SHIFT 0x1c
+#define MMEA3_DRAM_RD_CLI2GRP_MAP0__CID15_GROUP__SHIFT 0x1e
+#define MMEA3_DRAM_RD_CLI2GRP_MAP0__CID0_GROUP_MASK 0x00000003L
+#define MMEA3_DRAM_RD_CLI2GRP_MAP0__CID1_GROUP_MASK 0x0000000CL
+#define MMEA3_DRAM_RD_CLI2GRP_MAP0__CID2_GROUP_MASK 0x00000030L
+#define MMEA3_DRAM_RD_CLI2GRP_MAP0__CID3_GROUP_MASK 0x000000C0L
+#define MMEA3_DRAM_RD_CLI2GRP_MAP0__CID4_GROUP_MASK 0x00000300L
+#define MMEA3_DRAM_RD_CLI2GRP_MAP0__CID5_GROUP_MASK 0x00000C00L
+#define MMEA3_DRAM_RD_CLI2GRP_MAP0__CID6_GROUP_MASK 0x00003000L
+#define MMEA3_DRAM_RD_CLI2GRP_MAP0__CID7_GROUP_MASK 0x0000C000L
+#define MMEA3_DRAM_RD_CLI2GRP_MAP0__CID8_GROUP_MASK 0x00030000L
+#define MMEA3_DRAM_RD_CLI2GRP_MAP0__CID9_GROUP_MASK 0x000C0000L
+#define MMEA3_DRAM_RD_CLI2GRP_MAP0__CID10_GROUP_MASK 0x00300000L
+#define MMEA3_DRAM_RD_CLI2GRP_MAP0__CID11_GROUP_MASK 0x00C00000L
+#define MMEA3_DRAM_RD_CLI2GRP_MAP0__CID12_GROUP_MASK 0x03000000L
+#define MMEA3_DRAM_RD_CLI2GRP_MAP0__CID13_GROUP_MASK 0x0C000000L
+#define MMEA3_DRAM_RD_CLI2GRP_MAP0__CID14_GROUP_MASK 0x30000000L
+#define MMEA3_DRAM_RD_CLI2GRP_MAP0__CID15_GROUP_MASK 0xC0000000L
+//MMEA3_DRAM_RD_CLI2GRP_MAP1
+#define MMEA3_DRAM_RD_CLI2GRP_MAP1__CID16_GROUP__SHIFT 0x0
+#define MMEA3_DRAM_RD_CLI2GRP_MAP1__CID17_GROUP__SHIFT 0x2
+#define MMEA3_DRAM_RD_CLI2GRP_MAP1__CID18_GROUP__SHIFT 0x4
+#define MMEA3_DRAM_RD_CLI2GRP_MAP1__CID19_GROUP__SHIFT 0x6
+#define MMEA3_DRAM_RD_CLI2GRP_MAP1__CID20_GROUP__SHIFT 0x8
+#define MMEA3_DRAM_RD_CLI2GRP_MAP1__CID21_GROUP__SHIFT 0xa
+#define MMEA3_DRAM_RD_CLI2GRP_MAP1__CID22_GROUP__SHIFT 0xc
+#define MMEA3_DRAM_RD_CLI2GRP_MAP1__CID23_GROUP__SHIFT 0xe
+#define MMEA3_DRAM_RD_CLI2GRP_MAP1__CID24_GROUP__SHIFT 0x10
+#define MMEA3_DRAM_RD_CLI2GRP_MAP1__CID25_GROUP__SHIFT 0x12
+#define MMEA3_DRAM_RD_CLI2GRP_MAP1__CID26_GROUP__SHIFT 0x14
+#define MMEA3_DRAM_RD_CLI2GRP_MAP1__CID27_GROUP__SHIFT 0x16
+#define MMEA3_DRAM_RD_CLI2GRP_MAP1__CID28_GROUP__SHIFT 0x18
+#define MMEA3_DRAM_RD_CLI2GRP_MAP1__CID29_GROUP__SHIFT 0x1a
+#define MMEA3_DRAM_RD_CLI2GRP_MAP1__CID30_GROUP__SHIFT 0x1c
+#define MMEA3_DRAM_RD_CLI2GRP_MAP1__CID31_GROUP__SHIFT 0x1e
+#define MMEA3_DRAM_RD_CLI2GRP_MAP1__CID16_GROUP_MASK 0x00000003L
+#define MMEA3_DRAM_RD_CLI2GRP_MAP1__CID17_GROUP_MASK 0x0000000CL
+#define MMEA3_DRAM_RD_CLI2GRP_MAP1__CID18_GROUP_MASK 0x00000030L
+#define MMEA3_DRAM_RD_CLI2GRP_MAP1__CID19_GROUP_MASK 0x000000C0L
+#define MMEA3_DRAM_RD_CLI2GRP_MAP1__CID20_GROUP_MASK 0x00000300L
+#define MMEA3_DRAM_RD_CLI2GRP_MAP1__CID21_GROUP_MASK 0x00000C00L
+#define MMEA3_DRAM_RD_CLI2GRP_MAP1__CID22_GROUP_MASK 0x00003000L
+#define MMEA3_DRAM_RD_CLI2GRP_MAP1__CID23_GROUP_MASK 0x0000C000L
+#define MMEA3_DRAM_RD_CLI2GRP_MAP1__CID24_GROUP_MASK 0x00030000L
+#define MMEA3_DRAM_RD_CLI2GRP_MAP1__CID25_GROUP_MASK 0x000C0000L
+#define MMEA3_DRAM_RD_CLI2GRP_MAP1__CID26_GROUP_MASK 0x00300000L
+#define MMEA3_DRAM_RD_CLI2GRP_MAP1__CID27_GROUP_MASK 0x00C00000L
+#define MMEA3_DRAM_RD_CLI2GRP_MAP1__CID28_GROUP_MASK 0x03000000L
+#define MMEA3_DRAM_RD_CLI2GRP_MAP1__CID29_GROUP_MASK 0x0C000000L
+#define MMEA3_DRAM_RD_CLI2GRP_MAP1__CID30_GROUP_MASK 0x30000000L
+#define MMEA3_DRAM_RD_CLI2GRP_MAP1__CID31_GROUP_MASK 0xC0000000L
+//MMEA3_DRAM_WR_CLI2GRP_MAP0
+#define MMEA3_DRAM_WR_CLI2GRP_MAP0__CID0_GROUP__SHIFT 0x0
+#define MMEA3_DRAM_WR_CLI2GRP_MAP0__CID1_GROUP__SHIFT 0x2
+#define MMEA3_DRAM_WR_CLI2GRP_MAP0__CID2_GROUP__SHIFT 0x4
+#define MMEA3_DRAM_WR_CLI2GRP_MAP0__CID3_GROUP__SHIFT 0x6
+#define MMEA3_DRAM_WR_CLI2GRP_MAP0__CID4_GROUP__SHIFT 0x8
+#define MMEA3_DRAM_WR_CLI2GRP_MAP0__CID5_GROUP__SHIFT 0xa
+#define MMEA3_DRAM_WR_CLI2GRP_MAP0__CID6_GROUP__SHIFT 0xc
+#define MMEA3_DRAM_WR_CLI2GRP_MAP0__CID7_GROUP__SHIFT 0xe
+#define MMEA3_DRAM_WR_CLI2GRP_MAP0__CID8_GROUP__SHIFT 0x10
+#define MMEA3_DRAM_WR_CLI2GRP_MAP0__CID9_GROUP__SHIFT 0x12
+#define MMEA3_DRAM_WR_CLI2GRP_MAP0__CID10_GROUP__SHIFT 0x14
+#define MMEA3_DRAM_WR_CLI2GRP_MAP0__CID11_GROUP__SHIFT 0x16
+#define MMEA3_DRAM_WR_CLI2GRP_MAP0__CID12_GROUP__SHIFT 0x18
+#define MMEA3_DRAM_WR_CLI2GRP_MAP0__CID13_GROUP__SHIFT 0x1a
+#define MMEA3_DRAM_WR_CLI2GRP_MAP0__CID14_GROUP__SHIFT 0x1c
+#define MMEA3_DRAM_WR_CLI2GRP_MAP0__CID15_GROUP__SHIFT 0x1e
+#define MMEA3_DRAM_WR_CLI2GRP_MAP0__CID0_GROUP_MASK 0x00000003L
+#define MMEA3_DRAM_WR_CLI2GRP_MAP0__CID1_GROUP_MASK 0x0000000CL
+#define MMEA3_DRAM_WR_CLI2GRP_MAP0__CID2_GROUP_MASK 0x00000030L
+#define MMEA3_DRAM_WR_CLI2GRP_MAP0__CID3_GROUP_MASK 0x000000C0L
+#define MMEA3_DRAM_WR_CLI2GRP_MAP0__CID4_GROUP_MASK 0x00000300L
+#define MMEA3_DRAM_WR_CLI2GRP_MAP0__CID5_GROUP_MASK 0x00000C00L
+#define MMEA3_DRAM_WR_CLI2GRP_MAP0__CID6_GROUP_MASK 0x00003000L
+#define MMEA3_DRAM_WR_CLI2GRP_MAP0__CID7_GROUP_MASK 0x0000C000L
+#define MMEA3_DRAM_WR_CLI2GRP_MAP0__CID8_GROUP_MASK 0x00030000L
+#define MMEA3_DRAM_WR_CLI2GRP_MAP0__CID9_GROUP_MASK 0x000C0000L
+#define MMEA3_DRAM_WR_CLI2GRP_MAP0__CID10_GROUP_MASK 0x00300000L
+#define MMEA3_DRAM_WR_CLI2GRP_MAP0__CID11_GROUP_MASK 0x00C00000L
+#define MMEA3_DRAM_WR_CLI2GRP_MAP0__CID12_GROUP_MASK 0x03000000L
+#define MMEA3_DRAM_WR_CLI2GRP_MAP0__CID13_GROUP_MASK 0x0C000000L
+#define MMEA3_DRAM_WR_CLI2GRP_MAP0__CID14_GROUP_MASK 0x30000000L
+#define MMEA3_DRAM_WR_CLI2GRP_MAP0__CID15_GROUP_MASK 0xC0000000L
+//MMEA3_DRAM_WR_CLI2GRP_MAP1
+#define MMEA3_DRAM_WR_CLI2GRP_MAP1__CID16_GROUP__SHIFT 0x0
+#define MMEA3_DRAM_WR_CLI2GRP_MAP1__CID17_GROUP__SHIFT 0x2
+#define MMEA3_DRAM_WR_CLI2GRP_MAP1__CID18_GROUP__SHIFT 0x4
+#define MMEA3_DRAM_WR_CLI2GRP_MAP1__CID19_GROUP__SHIFT 0x6
+#define MMEA3_DRAM_WR_CLI2GRP_MAP1__CID20_GROUP__SHIFT 0x8
+#define MMEA3_DRAM_WR_CLI2GRP_MAP1__CID21_GROUP__SHIFT 0xa
+#define MMEA3_DRAM_WR_CLI2GRP_MAP1__CID22_GROUP__SHIFT 0xc
+#define MMEA3_DRAM_WR_CLI2GRP_MAP1__CID23_GROUP__SHIFT 0xe
+#define MMEA3_DRAM_WR_CLI2GRP_MAP1__CID24_GROUP__SHIFT 0x10
+#define MMEA3_DRAM_WR_CLI2GRP_MAP1__CID25_GROUP__SHIFT 0x12
+#define MMEA3_DRAM_WR_CLI2GRP_MAP1__CID26_GROUP__SHIFT 0x14
+#define MMEA3_DRAM_WR_CLI2GRP_MAP1__CID27_GROUP__SHIFT 0x16
+#define MMEA3_DRAM_WR_CLI2GRP_MAP1__CID28_GROUP__SHIFT 0x18
+#define MMEA3_DRAM_WR_CLI2GRP_MAP1__CID29_GROUP__SHIFT 0x1a
+#define MMEA3_DRAM_WR_CLI2GRP_MAP1__CID30_GROUP__SHIFT 0x1c
+#define MMEA3_DRAM_WR_CLI2GRP_MAP1__CID31_GROUP__SHIFT 0x1e
+#define MMEA3_DRAM_WR_CLI2GRP_MAP1__CID16_GROUP_MASK 0x00000003L
+#define MMEA3_DRAM_WR_CLI2GRP_MAP1__CID17_GROUP_MASK 0x0000000CL
+#define MMEA3_DRAM_WR_CLI2GRP_MAP1__CID18_GROUP_MASK 0x00000030L
+#define MMEA3_DRAM_WR_CLI2GRP_MAP1__CID19_GROUP_MASK 0x000000C0L
+#define MMEA3_DRAM_WR_CLI2GRP_MAP1__CID20_GROUP_MASK 0x00000300L
+#define MMEA3_DRAM_WR_CLI2GRP_MAP1__CID21_GROUP_MASK 0x00000C00L
+#define MMEA3_DRAM_WR_CLI2GRP_MAP1__CID22_GROUP_MASK 0x00003000L
+#define MMEA3_DRAM_WR_CLI2GRP_MAP1__CID23_GROUP_MASK 0x0000C000L
+#define MMEA3_DRAM_WR_CLI2GRP_MAP1__CID24_GROUP_MASK 0x00030000L
+#define MMEA3_DRAM_WR_CLI2GRP_MAP1__CID25_GROUP_MASK 0x000C0000L
+#define MMEA3_DRAM_WR_CLI2GRP_MAP1__CID26_GROUP_MASK 0x00300000L
+#define MMEA3_DRAM_WR_CLI2GRP_MAP1__CID27_GROUP_MASK 0x00C00000L
+#define MMEA3_DRAM_WR_CLI2GRP_MAP1__CID28_GROUP_MASK 0x03000000L
+#define MMEA3_DRAM_WR_CLI2GRP_MAP1__CID29_GROUP_MASK 0x0C000000L
+#define MMEA3_DRAM_WR_CLI2GRP_MAP1__CID30_GROUP_MASK 0x30000000L
+#define MMEA3_DRAM_WR_CLI2GRP_MAP1__CID31_GROUP_MASK 0xC0000000L
+//MMEA3_DRAM_RD_GRP2VC_MAP
+#define MMEA3_DRAM_RD_GRP2VC_MAP__GROUP0_VC__SHIFT 0x0
+#define MMEA3_DRAM_RD_GRP2VC_MAP__GROUP1_VC__SHIFT 0x3
+#define MMEA3_DRAM_RD_GRP2VC_MAP__GROUP2_VC__SHIFT 0x6
+#define MMEA3_DRAM_RD_GRP2VC_MAP__GROUP3_VC__SHIFT 0x9
+#define MMEA3_DRAM_RD_GRP2VC_MAP__GROUP0_VC_MASK 0x00000007L
+#define MMEA3_DRAM_RD_GRP2VC_MAP__GROUP1_VC_MASK 0x00000038L
+#define MMEA3_DRAM_RD_GRP2VC_MAP__GROUP2_VC_MASK 0x000001C0L
+#define MMEA3_DRAM_RD_GRP2VC_MAP__GROUP3_VC_MASK 0x00000E00L
+//MMEA3_DRAM_WR_GRP2VC_MAP
+#define MMEA3_DRAM_WR_GRP2VC_MAP__GROUP0_VC__SHIFT 0x0
+#define MMEA3_DRAM_WR_GRP2VC_MAP__GROUP1_VC__SHIFT 0x3
+#define MMEA3_DRAM_WR_GRP2VC_MAP__GROUP2_VC__SHIFT 0x6
+#define MMEA3_DRAM_WR_GRP2VC_MAP__GROUP3_VC__SHIFT 0x9
+#define MMEA3_DRAM_WR_GRP2VC_MAP__GROUP0_VC_MASK 0x00000007L
+#define MMEA3_DRAM_WR_GRP2VC_MAP__GROUP1_VC_MASK 0x00000038L
+#define MMEA3_DRAM_WR_GRP2VC_MAP__GROUP2_VC_MASK 0x000001C0L
+#define MMEA3_DRAM_WR_GRP2VC_MAP__GROUP3_VC_MASK 0x00000E00L
+//MMEA3_DRAM_RD_LAZY
+#define MMEA3_DRAM_RD_LAZY__GROUP0_DELAY__SHIFT 0x0
+#define MMEA3_DRAM_RD_LAZY__GROUP1_DELAY__SHIFT 0x3
+#define MMEA3_DRAM_RD_LAZY__GROUP2_DELAY__SHIFT 0x6
+#define MMEA3_DRAM_RD_LAZY__GROUP3_DELAY__SHIFT 0x9
+#define MMEA3_DRAM_RD_LAZY__REQ_ACCUM_THRESH__SHIFT 0xc
+#define MMEA3_DRAM_RD_LAZY__REQ_ACCUM_TIMEOUT__SHIFT 0x14
+#define MMEA3_DRAM_RD_LAZY__REQ_ACCUM_IDLEMAX__SHIFT 0x1b
+#define MMEA3_DRAM_RD_LAZY__GROUP0_DELAY_MASK 0x00000007L
+#define MMEA3_DRAM_RD_LAZY__GROUP1_DELAY_MASK 0x00000038L
+#define MMEA3_DRAM_RD_LAZY__GROUP2_DELAY_MASK 0x000001C0L
+#define MMEA3_DRAM_RD_LAZY__GROUP3_DELAY_MASK 0x00000E00L
+#define MMEA3_DRAM_RD_LAZY__REQ_ACCUM_THRESH_MASK 0x0003F000L
+#define MMEA3_DRAM_RD_LAZY__REQ_ACCUM_TIMEOUT_MASK 0x07F00000L
+#define MMEA3_DRAM_RD_LAZY__REQ_ACCUM_IDLEMAX_MASK 0x78000000L
+//MMEA3_DRAM_WR_LAZY
+#define MMEA3_DRAM_WR_LAZY__GROUP0_DELAY__SHIFT 0x0
+#define MMEA3_DRAM_WR_LAZY__GROUP1_DELAY__SHIFT 0x3
+#define MMEA3_DRAM_WR_LAZY__GROUP2_DELAY__SHIFT 0x6
+#define MMEA3_DRAM_WR_LAZY__GROUP3_DELAY__SHIFT 0x9
+#define MMEA3_DRAM_WR_LAZY__REQ_ACCUM_THRESH__SHIFT 0xc
+#define MMEA3_DRAM_WR_LAZY__REQ_ACCUM_TIMEOUT__SHIFT 0x14
+#define MMEA3_DRAM_WR_LAZY__REQ_ACCUM_IDLEMAX__SHIFT 0x1b
+#define MMEA3_DRAM_WR_LAZY__GROUP0_DELAY_MASK 0x00000007L
+#define MMEA3_DRAM_WR_LAZY__GROUP1_DELAY_MASK 0x00000038L
+#define MMEA3_DRAM_WR_LAZY__GROUP2_DELAY_MASK 0x000001C0L
+#define MMEA3_DRAM_WR_LAZY__GROUP3_DELAY_MASK 0x00000E00L
+#define MMEA3_DRAM_WR_LAZY__REQ_ACCUM_THRESH_MASK 0x0003F000L
+#define MMEA3_DRAM_WR_LAZY__REQ_ACCUM_TIMEOUT_MASK 0x07F00000L
+#define MMEA3_DRAM_WR_LAZY__REQ_ACCUM_IDLEMAX_MASK 0x78000000L
+//MMEA3_DRAM_RD_CAM_CNTL
+#define MMEA3_DRAM_RD_CAM_CNTL__DEPTH_GROUP0__SHIFT 0x0
+#define MMEA3_DRAM_RD_CAM_CNTL__DEPTH_GROUP1__SHIFT 0x4
+#define MMEA3_DRAM_RD_CAM_CNTL__DEPTH_GROUP2__SHIFT 0x8
+#define MMEA3_DRAM_RD_CAM_CNTL__DEPTH_GROUP3__SHIFT 0xc
+#define MMEA3_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP0__SHIFT 0x10
+#define MMEA3_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP1__SHIFT 0x13
+#define MMEA3_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP2__SHIFT 0x16
+#define MMEA3_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP3__SHIFT 0x19
+#define MMEA3_DRAM_RD_CAM_CNTL__REFILL_CHAIN__SHIFT 0x1c
+#define MMEA3_DRAM_RD_CAM_CNTL__PAGEBASED_CHAINING__SHIFT 0x1d
+#define MMEA3_DRAM_RD_CAM_CNTL__DEPTH_GROUP0_MASK 0x0000000FL
+#define MMEA3_DRAM_RD_CAM_CNTL__DEPTH_GROUP1_MASK 0x000000F0L
+#define MMEA3_DRAM_RD_CAM_CNTL__DEPTH_GROUP2_MASK 0x00000F00L
+#define MMEA3_DRAM_RD_CAM_CNTL__DEPTH_GROUP3_MASK 0x0000F000L
+#define MMEA3_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP0_MASK 0x00070000L
+#define MMEA3_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP1_MASK 0x00380000L
+#define MMEA3_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP2_MASK 0x01C00000L
+#define MMEA3_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP3_MASK 0x0E000000L
+#define MMEA3_DRAM_RD_CAM_CNTL__REFILL_CHAIN_MASK 0x10000000L
+#define MMEA3_DRAM_RD_CAM_CNTL__PAGEBASED_CHAINING_MASK 0x20000000L
+//MMEA3_DRAM_WR_CAM_CNTL
+#define MMEA3_DRAM_WR_CAM_CNTL__DEPTH_GROUP0__SHIFT 0x0
+#define MMEA3_DRAM_WR_CAM_CNTL__DEPTH_GROUP1__SHIFT 0x4
+#define MMEA3_DRAM_WR_CAM_CNTL__DEPTH_GROUP2__SHIFT 0x8
+#define MMEA3_DRAM_WR_CAM_CNTL__DEPTH_GROUP3__SHIFT 0xc
+#define MMEA3_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP0__SHIFT 0x10
+#define MMEA3_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP1__SHIFT 0x13
+#define MMEA3_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP2__SHIFT 0x16
+#define MMEA3_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP3__SHIFT 0x19
+#define MMEA3_DRAM_WR_CAM_CNTL__REFILL_CHAIN__SHIFT 0x1c
+#define MMEA3_DRAM_WR_CAM_CNTL__PAGEBASED_CHAINING__SHIFT 0x1d
+#define MMEA3_DRAM_WR_CAM_CNTL__DEPTH_GROUP0_MASK 0x0000000FL
+#define MMEA3_DRAM_WR_CAM_CNTL__DEPTH_GROUP1_MASK 0x000000F0L
+#define MMEA3_DRAM_WR_CAM_CNTL__DEPTH_GROUP2_MASK 0x00000F00L
+#define MMEA3_DRAM_WR_CAM_CNTL__DEPTH_GROUP3_MASK 0x0000F000L
+#define MMEA3_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP0_MASK 0x00070000L
+#define MMEA3_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP1_MASK 0x00380000L
+#define MMEA3_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP2_MASK 0x01C00000L
+#define MMEA3_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP3_MASK 0x0E000000L
+#define MMEA3_DRAM_WR_CAM_CNTL__REFILL_CHAIN_MASK 0x10000000L
+#define MMEA3_DRAM_WR_CAM_CNTL__PAGEBASED_CHAINING_MASK 0x20000000L
+//MMEA3_DRAM_PAGE_BURST
+#define MMEA3_DRAM_PAGE_BURST__RD_LIMIT_LO__SHIFT 0x0
+#define MMEA3_DRAM_PAGE_BURST__RD_LIMIT_HI__SHIFT 0x8
+#define MMEA3_DRAM_PAGE_BURST__WR_LIMIT_LO__SHIFT 0x10
+#define MMEA3_DRAM_PAGE_BURST__WR_LIMIT_HI__SHIFT 0x18
+#define MMEA3_DRAM_PAGE_BURST__RD_LIMIT_LO_MASK 0x000000FFL
+#define MMEA3_DRAM_PAGE_BURST__RD_LIMIT_HI_MASK 0x0000FF00L
+#define MMEA3_DRAM_PAGE_BURST__WR_LIMIT_LO_MASK 0x00FF0000L
+#define MMEA3_DRAM_PAGE_BURST__WR_LIMIT_HI_MASK 0xFF000000L
+//MMEA3_DRAM_RD_PRI_AGE
+#define MMEA3_DRAM_RD_PRI_AGE__GROUP0_AGING_RATE__SHIFT 0x0
+#define MMEA3_DRAM_RD_PRI_AGE__GROUP1_AGING_RATE__SHIFT 0x3
+#define MMEA3_DRAM_RD_PRI_AGE__GROUP2_AGING_RATE__SHIFT 0x6
+#define MMEA3_DRAM_RD_PRI_AGE__GROUP3_AGING_RATE__SHIFT 0x9
+#define MMEA3_DRAM_RD_PRI_AGE__GROUP0_AGE_COEFFICIENT__SHIFT 0xc
+#define MMEA3_DRAM_RD_PRI_AGE__GROUP1_AGE_COEFFICIENT__SHIFT 0xf
+#define MMEA3_DRAM_RD_PRI_AGE__GROUP2_AGE_COEFFICIENT__SHIFT 0x12
+#define MMEA3_DRAM_RD_PRI_AGE__GROUP3_AGE_COEFFICIENT__SHIFT 0x15
+#define MMEA3_DRAM_RD_PRI_AGE__GROUP0_AGING_RATE_MASK 0x00000007L
+#define MMEA3_DRAM_RD_PRI_AGE__GROUP1_AGING_RATE_MASK 0x00000038L
+#define MMEA3_DRAM_RD_PRI_AGE__GROUP2_AGING_RATE_MASK 0x000001C0L
+#define MMEA3_DRAM_RD_PRI_AGE__GROUP3_AGING_RATE_MASK 0x00000E00L
+#define MMEA3_DRAM_RD_PRI_AGE__GROUP0_AGE_COEFFICIENT_MASK 0x00007000L
+#define MMEA3_DRAM_RD_PRI_AGE__GROUP1_AGE_COEFFICIENT_MASK 0x00038000L
+#define MMEA3_DRAM_RD_PRI_AGE__GROUP2_AGE_COEFFICIENT_MASK 0x001C0000L
+#define MMEA3_DRAM_RD_PRI_AGE__GROUP3_AGE_COEFFICIENT_MASK 0x00E00000L
+//MMEA3_DRAM_WR_PRI_AGE
+#define MMEA3_DRAM_WR_PRI_AGE__GROUP0_AGING_RATE__SHIFT 0x0
+#define MMEA3_DRAM_WR_PRI_AGE__GROUP1_AGING_RATE__SHIFT 0x3
+#define MMEA3_DRAM_WR_PRI_AGE__GROUP2_AGING_RATE__SHIFT 0x6
+#define MMEA3_DRAM_WR_PRI_AGE__GROUP3_AGING_RATE__SHIFT 0x9
+#define MMEA3_DRAM_WR_PRI_AGE__GROUP0_AGE_COEFFICIENT__SHIFT 0xc
+#define MMEA3_DRAM_WR_PRI_AGE__GROUP1_AGE_COEFFICIENT__SHIFT 0xf
+#define MMEA3_DRAM_WR_PRI_AGE__GROUP2_AGE_COEFFICIENT__SHIFT 0x12
+#define MMEA3_DRAM_WR_PRI_AGE__GROUP3_AGE_COEFFICIENT__SHIFT 0x15
+#define MMEA3_DRAM_WR_PRI_AGE__GROUP0_AGING_RATE_MASK 0x00000007L
+#define MMEA3_DRAM_WR_PRI_AGE__GROUP1_AGING_RATE_MASK 0x00000038L
+#define MMEA3_DRAM_WR_PRI_AGE__GROUP2_AGING_RATE_MASK 0x000001C0L
+#define MMEA3_DRAM_WR_PRI_AGE__GROUP3_AGING_RATE_MASK 0x00000E00L
+#define MMEA3_DRAM_WR_PRI_AGE__GROUP0_AGE_COEFFICIENT_MASK 0x00007000L
+#define MMEA3_DRAM_WR_PRI_AGE__GROUP1_AGE_COEFFICIENT_MASK 0x00038000L
+#define MMEA3_DRAM_WR_PRI_AGE__GROUP2_AGE_COEFFICIENT_MASK 0x001C0000L
+#define MMEA3_DRAM_WR_PRI_AGE__GROUP3_AGE_COEFFICIENT_MASK 0x00E00000L
+//MMEA3_DRAM_RD_PRI_QUEUING
+#define MMEA3_DRAM_RD_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT__SHIFT 0x0
+#define MMEA3_DRAM_RD_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT__SHIFT 0x3
+#define MMEA3_DRAM_RD_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT__SHIFT 0x6
+#define MMEA3_DRAM_RD_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT__SHIFT 0x9
+#define MMEA3_DRAM_RD_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT_MASK 0x00000007L
+#define MMEA3_DRAM_RD_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT_MASK 0x00000038L
+#define MMEA3_DRAM_RD_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT_MASK 0x000001C0L
+#define MMEA3_DRAM_RD_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT_MASK 0x00000E00L
+//MMEA3_DRAM_WR_PRI_QUEUING
+#define MMEA3_DRAM_WR_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT__SHIFT 0x0
+#define MMEA3_DRAM_WR_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT__SHIFT 0x3
+#define MMEA3_DRAM_WR_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT__SHIFT 0x6
+#define MMEA3_DRAM_WR_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT__SHIFT 0x9
+#define MMEA3_DRAM_WR_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT_MASK 0x00000007L
+#define MMEA3_DRAM_WR_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT_MASK 0x00000038L
+#define MMEA3_DRAM_WR_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT_MASK 0x000001C0L
+#define MMEA3_DRAM_WR_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT_MASK 0x00000E00L
+//MMEA3_DRAM_RD_PRI_FIXED
+#define MMEA3_DRAM_RD_PRI_FIXED__GROUP0_FIXED_COEFFICIENT__SHIFT 0x0
+#define MMEA3_DRAM_RD_PRI_FIXED__GROUP1_FIXED_COEFFICIENT__SHIFT 0x3
+#define MMEA3_DRAM_RD_PRI_FIXED__GROUP2_FIXED_COEFFICIENT__SHIFT 0x6
+#define MMEA3_DRAM_RD_PRI_FIXED__GROUP3_FIXED_COEFFICIENT__SHIFT 0x9
+#define MMEA3_DRAM_RD_PRI_FIXED__GROUP0_FIXED_COEFFICIENT_MASK 0x00000007L
+#define MMEA3_DRAM_RD_PRI_FIXED__GROUP1_FIXED_COEFFICIENT_MASK 0x00000038L
+#define MMEA3_DRAM_RD_PRI_FIXED__GROUP2_FIXED_COEFFICIENT_MASK 0x000001C0L
+#define MMEA3_DRAM_RD_PRI_FIXED__GROUP3_FIXED_COEFFICIENT_MASK 0x00000E00L
+//MMEA3_DRAM_WR_PRI_FIXED
+#define MMEA3_DRAM_WR_PRI_FIXED__GROUP0_FIXED_COEFFICIENT__SHIFT 0x0
+#define MMEA3_DRAM_WR_PRI_FIXED__GROUP1_FIXED_COEFFICIENT__SHIFT 0x3
+#define MMEA3_DRAM_WR_PRI_FIXED__GROUP2_FIXED_COEFFICIENT__SHIFT 0x6
+#define MMEA3_DRAM_WR_PRI_FIXED__GROUP3_FIXED_COEFFICIENT__SHIFT 0x9
+#define MMEA3_DRAM_WR_PRI_FIXED__GROUP0_FIXED_COEFFICIENT_MASK 0x00000007L
+#define MMEA3_DRAM_WR_PRI_FIXED__GROUP1_FIXED_COEFFICIENT_MASK 0x00000038L
+#define MMEA3_DRAM_WR_PRI_FIXED__GROUP2_FIXED_COEFFICIENT_MASK 0x000001C0L
+#define MMEA3_DRAM_WR_PRI_FIXED__GROUP3_FIXED_COEFFICIENT_MASK 0x00000E00L
+//MMEA3_DRAM_RD_PRI_URGENCY
+#define MMEA3_DRAM_RD_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT__SHIFT 0x0
+#define MMEA3_DRAM_RD_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT__SHIFT 0x3
+#define MMEA3_DRAM_RD_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT__SHIFT 0x6
+#define MMEA3_DRAM_RD_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT__SHIFT 0x9
+#define MMEA3_DRAM_RD_PRI_URGENCY__GROUP0_URGENCY_MODE__SHIFT 0xc
+#define MMEA3_DRAM_RD_PRI_URGENCY__GROUP1_URGENCY_MODE__SHIFT 0xd
+#define MMEA3_DRAM_RD_PRI_URGENCY__GROUP2_URGENCY_MODE__SHIFT 0xe
+#define MMEA3_DRAM_RD_PRI_URGENCY__GROUP3_URGENCY_MODE__SHIFT 0xf
+#define MMEA3_DRAM_RD_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT_MASK 0x00000007L
+#define MMEA3_DRAM_RD_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT_MASK 0x00000038L
+#define MMEA3_DRAM_RD_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT_MASK 0x000001C0L
+#define MMEA3_DRAM_RD_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT_MASK 0x00000E00L
+#define MMEA3_DRAM_RD_PRI_URGENCY__GROUP0_URGENCY_MODE_MASK 0x00001000L
+#define MMEA3_DRAM_RD_PRI_URGENCY__GROUP1_URGENCY_MODE_MASK 0x00002000L
+#define MMEA3_DRAM_RD_PRI_URGENCY__GROUP2_URGENCY_MODE_MASK 0x00004000L
+#define MMEA3_DRAM_RD_PRI_URGENCY__GROUP3_URGENCY_MODE_MASK 0x00008000L
+//MMEA3_DRAM_WR_PRI_URGENCY
+#define MMEA3_DRAM_WR_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT__SHIFT 0x0
+#define MMEA3_DRAM_WR_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT__SHIFT 0x3
+#define MMEA3_DRAM_WR_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT__SHIFT 0x6
+#define MMEA3_DRAM_WR_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT__SHIFT 0x9
+#define MMEA3_DRAM_WR_PRI_URGENCY__GROUP0_URGENCY_MODE__SHIFT 0xc
+#define MMEA3_DRAM_WR_PRI_URGENCY__GROUP1_URGENCY_MODE__SHIFT 0xd
+#define MMEA3_DRAM_WR_PRI_URGENCY__GROUP2_URGENCY_MODE__SHIFT 0xe
+#define MMEA3_DRAM_WR_PRI_URGENCY__GROUP3_URGENCY_MODE__SHIFT 0xf
+#define MMEA3_DRAM_WR_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT_MASK 0x00000007L
+#define MMEA3_DRAM_WR_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT_MASK 0x00000038L
+#define MMEA3_DRAM_WR_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT_MASK 0x000001C0L
+#define MMEA3_DRAM_WR_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT_MASK 0x00000E00L
+#define MMEA3_DRAM_WR_PRI_URGENCY__GROUP0_URGENCY_MODE_MASK 0x00001000L
+#define MMEA3_DRAM_WR_PRI_URGENCY__GROUP1_URGENCY_MODE_MASK 0x00002000L
+#define MMEA3_DRAM_WR_PRI_URGENCY__GROUP2_URGENCY_MODE_MASK 0x00004000L
+#define MMEA3_DRAM_WR_PRI_URGENCY__GROUP3_URGENCY_MODE_MASK 0x00008000L
+//MMEA3_DRAM_RD_PRI_QUANT_PRI1
+#define MMEA3_DRAM_RD_PRI_QUANT_PRI1__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA3_DRAM_RD_PRI_QUANT_PRI1__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA3_DRAM_RD_PRI_QUANT_PRI1__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA3_DRAM_RD_PRI_QUANT_PRI1__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA3_DRAM_RD_PRI_QUANT_PRI1__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA3_DRAM_RD_PRI_QUANT_PRI1__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA3_DRAM_RD_PRI_QUANT_PRI1__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA3_DRAM_RD_PRI_QUANT_PRI1__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA3_DRAM_RD_PRI_QUANT_PRI2
+#define MMEA3_DRAM_RD_PRI_QUANT_PRI2__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA3_DRAM_RD_PRI_QUANT_PRI2__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA3_DRAM_RD_PRI_QUANT_PRI2__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA3_DRAM_RD_PRI_QUANT_PRI2__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA3_DRAM_RD_PRI_QUANT_PRI2__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA3_DRAM_RD_PRI_QUANT_PRI2__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA3_DRAM_RD_PRI_QUANT_PRI2__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA3_DRAM_RD_PRI_QUANT_PRI2__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA3_DRAM_RD_PRI_QUANT_PRI3
+#define MMEA3_DRAM_RD_PRI_QUANT_PRI3__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA3_DRAM_RD_PRI_QUANT_PRI3__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA3_DRAM_RD_PRI_QUANT_PRI3__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA3_DRAM_RD_PRI_QUANT_PRI3__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA3_DRAM_RD_PRI_QUANT_PRI3__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA3_DRAM_RD_PRI_QUANT_PRI3__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA3_DRAM_RD_PRI_QUANT_PRI3__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA3_DRAM_RD_PRI_QUANT_PRI3__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA3_DRAM_WR_PRI_QUANT_PRI1
+#define MMEA3_DRAM_WR_PRI_QUANT_PRI1__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA3_DRAM_WR_PRI_QUANT_PRI1__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA3_DRAM_WR_PRI_QUANT_PRI1__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA3_DRAM_WR_PRI_QUANT_PRI1__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA3_DRAM_WR_PRI_QUANT_PRI1__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA3_DRAM_WR_PRI_QUANT_PRI1__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA3_DRAM_WR_PRI_QUANT_PRI1__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA3_DRAM_WR_PRI_QUANT_PRI1__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA3_DRAM_WR_PRI_QUANT_PRI2
+#define MMEA3_DRAM_WR_PRI_QUANT_PRI2__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA3_DRAM_WR_PRI_QUANT_PRI2__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA3_DRAM_WR_PRI_QUANT_PRI2__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA3_DRAM_WR_PRI_QUANT_PRI2__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA3_DRAM_WR_PRI_QUANT_PRI2__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA3_DRAM_WR_PRI_QUANT_PRI2__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA3_DRAM_WR_PRI_QUANT_PRI2__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA3_DRAM_WR_PRI_QUANT_PRI2__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA3_DRAM_WR_PRI_QUANT_PRI3
+#define MMEA3_DRAM_WR_PRI_QUANT_PRI3__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA3_DRAM_WR_PRI_QUANT_PRI3__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA3_DRAM_WR_PRI_QUANT_PRI3__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA3_DRAM_WR_PRI_QUANT_PRI3__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA3_DRAM_WR_PRI_QUANT_PRI3__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA3_DRAM_WR_PRI_QUANT_PRI3__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA3_DRAM_WR_PRI_QUANT_PRI3__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA3_DRAM_WR_PRI_QUANT_PRI3__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA3_GMI_RD_CLI2GRP_MAP0
+#define MMEA3_GMI_RD_CLI2GRP_MAP0__CID0_GROUP__SHIFT 0x0
+#define MMEA3_GMI_RD_CLI2GRP_MAP0__CID1_GROUP__SHIFT 0x2
+#define MMEA3_GMI_RD_CLI2GRP_MAP0__CID2_GROUP__SHIFT 0x4
+#define MMEA3_GMI_RD_CLI2GRP_MAP0__CID3_GROUP__SHIFT 0x6
+#define MMEA3_GMI_RD_CLI2GRP_MAP0__CID4_GROUP__SHIFT 0x8
+#define MMEA3_GMI_RD_CLI2GRP_MAP0__CID5_GROUP__SHIFT 0xa
+#define MMEA3_GMI_RD_CLI2GRP_MAP0__CID6_GROUP__SHIFT 0xc
+#define MMEA3_GMI_RD_CLI2GRP_MAP0__CID7_GROUP__SHIFT 0xe
+#define MMEA3_GMI_RD_CLI2GRP_MAP0__CID8_GROUP__SHIFT 0x10
+#define MMEA3_GMI_RD_CLI2GRP_MAP0__CID9_GROUP__SHIFT 0x12
+#define MMEA3_GMI_RD_CLI2GRP_MAP0__CID10_GROUP__SHIFT 0x14
+#define MMEA3_GMI_RD_CLI2GRP_MAP0__CID11_GROUP__SHIFT 0x16
+#define MMEA3_GMI_RD_CLI2GRP_MAP0__CID12_GROUP__SHIFT 0x18
+#define MMEA3_GMI_RD_CLI2GRP_MAP0__CID13_GROUP__SHIFT 0x1a
+#define MMEA3_GMI_RD_CLI2GRP_MAP0__CID14_GROUP__SHIFT 0x1c
+#define MMEA3_GMI_RD_CLI2GRP_MAP0__CID15_GROUP__SHIFT 0x1e
+#define MMEA3_GMI_RD_CLI2GRP_MAP0__CID0_GROUP_MASK 0x00000003L
+#define MMEA3_GMI_RD_CLI2GRP_MAP0__CID1_GROUP_MASK 0x0000000CL
+#define MMEA3_GMI_RD_CLI2GRP_MAP0__CID2_GROUP_MASK 0x00000030L
+#define MMEA3_GMI_RD_CLI2GRP_MAP0__CID3_GROUP_MASK 0x000000C0L
+#define MMEA3_GMI_RD_CLI2GRP_MAP0__CID4_GROUP_MASK 0x00000300L
+#define MMEA3_GMI_RD_CLI2GRP_MAP0__CID5_GROUP_MASK 0x00000C00L
+#define MMEA3_GMI_RD_CLI2GRP_MAP0__CID6_GROUP_MASK 0x00003000L
+#define MMEA3_GMI_RD_CLI2GRP_MAP0__CID7_GROUP_MASK 0x0000C000L
+#define MMEA3_GMI_RD_CLI2GRP_MAP0__CID8_GROUP_MASK 0x00030000L
+#define MMEA3_GMI_RD_CLI2GRP_MAP0__CID9_GROUP_MASK 0x000C0000L
+#define MMEA3_GMI_RD_CLI2GRP_MAP0__CID10_GROUP_MASK 0x00300000L
+#define MMEA3_GMI_RD_CLI2GRP_MAP0__CID11_GROUP_MASK 0x00C00000L
+#define MMEA3_GMI_RD_CLI2GRP_MAP0__CID12_GROUP_MASK 0x03000000L
+#define MMEA3_GMI_RD_CLI2GRP_MAP0__CID13_GROUP_MASK 0x0C000000L
+#define MMEA3_GMI_RD_CLI2GRP_MAP0__CID14_GROUP_MASK 0x30000000L
+#define MMEA3_GMI_RD_CLI2GRP_MAP0__CID15_GROUP_MASK 0xC0000000L
+//MMEA3_GMI_RD_CLI2GRP_MAP1
+#define MMEA3_GMI_RD_CLI2GRP_MAP1__CID16_GROUP__SHIFT 0x0
+#define MMEA3_GMI_RD_CLI2GRP_MAP1__CID17_GROUP__SHIFT 0x2
+#define MMEA3_GMI_RD_CLI2GRP_MAP1__CID18_GROUP__SHIFT 0x4
+#define MMEA3_GMI_RD_CLI2GRP_MAP1__CID19_GROUP__SHIFT 0x6
+#define MMEA3_GMI_RD_CLI2GRP_MAP1__CID20_GROUP__SHIFT 0x8
+#define MMEA3_GMI_RD_CLI2GRP_MAP1__CID21_GROUP__SHIFT 0xa
+#define MMEA3_GMI_RD_CLI2GRP_MAP1__CID22_GROUP__SHIFT 0xc
+#define MMEA3_GMI_RD_CLI2GRP_MAP1__CID23_GROUP__SHIFT 0xe
+#define MMEA3_GMI_RD_CLI2GRP_MAP1__CID24_GROUP__SHIFT 0x10
+#define MMEA3_GMI_RD_CLI2GRP_MAP1__CID25_GROUP__SHIFT 0x12
+#define MMEA3_GMI_RD_CLI2GRP_MAP1__CID26_GROUP__SHIFT 0x14
+#define MMEA3_GMI_RD_CLI2GRP_MAP1__CID27_GROUP__SHIFT 0x16
+#define MMEA3_GMI_RD_CLI2GRP_MAP1__CID28_GROUP__SHIFT 0x18
+#define MMEA3_GMI_RD_CLI2GRP_MAP1__CID29_GROUP__SHIFT 0x1a
+#define MMEA3_GMI_RD_CLI2GRP_MAP1__CID30_GROUP__SHIFT 0x1c
+#define MMEA3_GMI_RD_CLI2GRP_MAP1__CID31_GROUP__SHIFT 0x1e
+#define MMEA3_GMI_RD_CLI2GRP_MAP1__CID16_GROUP_MASK 0x00000003L
+#define MMEA3_GMI_RD_CLI2GRP_MAP1__CID17_GROUP_MASK 0x0000000CL
+#define MMEA3_GMI_RD_CLI2GRP_MAP1__CID18_GROUP_MASK 0x00000030L
+#define MMEA3_GMI_RD_CLI2GRP_MAP1__CID19_GROUP_MASK 0x000000C0L
+#define MMEA3_GMI_RD_CLI2GRP_MAP1__CID20_GROUP_MASK 0x00000300L
+#define MMEA3_GMI_RD_CLI2GRP_MAP1__CID21_GROUP_MASK 0x00000C00L
+#define MMEA3_GMI_RD_CLI2GRP_MAP1__CID22_GROUP_MASK 0x00003000L
+#define MMEA3_GMI_RD_CLI2GRP_MAP1__CID23_GROUP_MASK 0x0000C000L
+#define MMEA3_GMI_RD_CLI2GRP_MAP1__CID24_GROUP_MASK 0x00030000L
+#define MMEA3_GMI_RD_CLI2GRP_MAP1__CID25_GROUP_MASK 0x000C0000L
+#define MMEA3_GMI_RD_CLI2GRP_MAP1__CID26_GROUP_MASK 0x00300000L
+#define MMEA3_GMI_RD_CLI2GRP_MAP1__CID27_GROUP_MASK 0x00C00000L
+#define MMEA3_GMI_RD_CLI2GRP_MAP1__CID28_GROUP_MASK 0x03000000L
+#define MMEA3_GMI_RD_CLI2GRP_MAP1__CID29_GROUP_MASK 0x0C000000L
+#define MMEA3_GMI_RD_CLI2GRP_MAP1__CID30_GROUP_MASK 0x30000000L
+#define MMEA3_GMI_RD_CLI2GRP_MAP1__CID31_GROUP_MASK 0xC0000000L
+//MMEA3_GMI_WR_CLI2GRP_MAP0
+#define MMEA3_GMI_WR_CLI2GRP_MAP0__CID0_GROUP__SHIFT 0x0
+#define MMEA3_GMI_WR_CLI2GRP_MAP0__CID1_GROUP__SHIFT 0x2
+#define MMEA3_GMI_WR_CLI2GRP_MAP0__CID2_GROUP__SHIFT 0x4
+#define MMEA3_GMI_WR_CLI2GRP_MAP0__CID3_GROUP__SHIFT 0x6
+#define MMEA3_GMI_WR_CLI2GRP_MAP0__CID4_GROUP__SHIFT 0x8
+#define MMEA3_GMI_WR_CLI2GRP_MAP0__CID5_GROUP__SHIFT 0xa
+#define MMEA3_GMI_WR_CLI2GRP_MAP0__CID6_GROUP__SHIFT 0xc
+#define MMEA3_GMI_WR_CLI2GRP_MAP0__CID7_GROUP__SHIFT 0xe
+#define MMEA3_GMI_WR_CLI2GRP_MAP0__CID8_GROUP__SHIFT 0x10
+#define MMEA3_GMI_WR_CLI2GRP_MAP0__CID9_GROUP__SHIFT 0x12
+#define MMEA3_GMI_WR_CLI2GRP_MAP0__CID10_GROUP__SHIFT 0x14
+#define MMEA3_GMI_WR_CLI2GRP_MAP0__CID11_GROUP__SHIFT 0x16
+#define MMEA3_GMI_WR_CLI2GRP_MAP0__CID12_GROUP__SHIFT 0x18
+#define MMEA3_GMI_WR_CLI2GRP_MAP0__CID13_GROUP__SHIFT 0x1a
+#define MMEA3_GMI_WR_CLI2GRP_MAP0__CID14_GROUP__SHIFT 0x1c
+#define MMEA3_GMI_WR_CLI2GRP_MAP0__CID15_GROUP__SHIFT 0x1e
+#define MMEA3_GMI_WR_CLI2GRP_MAP0__CID0_GROUP_MASK 0x00000003L
+#define MMEA3_GMI_WR_CLI2GRP_MAP0__CID1_GROUP_MASK 0x0000000CL
+#define MMEA3_GMI_WR_CLI2GRP_MAP0__CID2_GROUP_MASK 0x00000030L
+#define MMEA3_GMI_WR_CLI2GRP_MAP0__CID3_GROUP_MASK 0x000000C0L
+#define MMEA3_GMI_WR_CLI2GRP_MAP0__CID4_GROUP_MASK 0x00000300L
+#define MMEA3_GMI_WR_CLI2GRP_MAP0__CID5_GROUP_MASK 0x00000C00L
+#define MMEA3_GMI_WR_CLI2GRP_MAP0__CID6_GROUP_MASK 0x00003000L
+#define MMEA3_GMI_WR_CLI2GRP_MAP0__CID7_GROUP_MASK 0x0000C000L
+#define MMEA3_GMI_WR_CLI2GRP_MAP0__CID8_GROUP_MASK 0x00030000L
+#define MMEA3_GMI_WR_CLI2GRP_MAP0__CID9_GROUP_MASK 0x000C0000L
+#define MMEA3_GMI_WR_CLI2GRP_MAP0__CID10_GROUP_MASK 0x00300000L
+#define MMEA3_GMI_WR_CLI2GRP_MAP0__CID11_GROUP_MASK 0x00C00000L
+#define MMEA3_GMI_WR_CLI2GRP_MAP0__CID12_GROUP_MASK 0x03000000L
+#define MMEA3_GMI_WR_CLI2GRP_MAP0__CID13_GROUP_MASK 0x0C000000L
+#define MMEA3_GMI_WR_CLI2GRP_MAP0__CID14_GROUP_MASK 0x30000000L
+#define MMEA3_GMI_WR_CLI2GRP_MAP0__CID15_GROUP_MASK 0xC0000000L
+//MMEA3_GMI_WR_CLI2GRP_MAP1
+#define MMEA3_GMI_WR_CLI2GRP_MAP1__CID16_GROUP__SHIFT 0x0
+#define MMEA3_GMI_WR_CLI2GRP_MAP1__CID17_GROUP__SHIFT 0x2
+#define MMEA3_GMI_WR_CLI2GRP_MAP1__CID18_GROUP__SHIFT 0x4
+#define MMEA3_GMI_WR_CLI2GRP_MAP1__CID19_GROUP__SHIFT 0x6
+#define MMEA3_GMI_WR_CLI2GRP_MAP1__CID20_GROUP__SHIFT 0x8
+#define MMEA3_GMI_WR_CLI2GRP_MAP1__CID21_GROUP__SHIFT 0xa
+#define MMEA3_GMI_WR_CLI2GRP_MAP1__CID22_GROUP__SHIFT 0xc
+#define MMEA3_GMI_WR_CLI2GRP_MAP1__CID23_GROUP__SHIFT 0xe
+#define MMEA3_GMI_WR_CLI2GRP_MAP1__CID24_GROUP__SHIFT 0x10
+#define MMEA3_GMI_WR_CLI2GRP_MAP1__CID25_GROUP__SHIFT 0x12
+#define MMEA3_GMI_WR_CLI2GRP_MAP1__CID26_GROUP__SHIFT 0x14
+#define MMEA3_GMI_WR_CLI2GRP_MAP1__CID27_GROUP__SHIFT 0x16
+#define MMEA3_GMI_WR_CLI2GRP_MAP1__CID28_GROUP__SHIFT 0x18
+#define MMEA3_GMI_WR_CLI2GRP_MAP1__CID29_GROUP__SHIFT 0x1a
+#define MMEA3_GMI_WR_CLI2GRP_MAP1__CID30_GROUP__SHIFT 0x1c
+#define MMEA3_GMI_WR_CLI2GRP_MAP1__CID31_GROUP__SHIFT 0x1e
+#define MMEA3_GMI_WR_CLI2GRP_MAP1__CID16_GROUP_MASK 0x00000003L
+#define MMEA3_GMI_WR_CLI2GRP_MAP1__CID17_GROUP_MASK 0x0000000CL
+#define MMEA3_GMI_WR_CLI2GRP_MAP1__CID18_GROUP_MASK 0x00000030L
+#define MMEA3_GMI_WR_CLI2GRP_MAP1__CID19_GROUP_MASK 0x000000C0L
+#define MMEA3_GMI_WR_CLI2GRP_MAP1__CID20_GROUP_MASK 0x00000300L
+#define MMEA3_GMI_WR_CLI2GRP_MAP1__CID21_GROUP_MASK 0x00000C00L
+#define MMEA3_GMI_WR_CLI2GRP_MAP1__CID22_GROUP_MASK 0x00003000L
+#define MMEA3_GMI_WR_CLI2GRP_MAP1__CID23_GROUP_MASK 0x0000C000L
+#define MMEA3_GMI_WR_CLI2GRP_MAP1__CID24_GROUP_MASK 0x00030000L
+#define MMEA3_GMI_WR_CLI2GRP_MAP1__CID25_GROUP_MASK 0x000C0000L
+#define MMEA3_GMI_WR_CLI2GRP_MAP1__CID26_GROUP_MASK 0x00300000L
+#define MMEA3_GMI_WR_CLI2GRP_MAP1__CID27_GROUP_MASK 0x00C00000L
+#define MMEA3_GMI_WR_CLI2GRP_MAP1__CID28_GROUP_MASK 0x03000000L
+#define MMEA3_GMI_WR_CLI2GRP_MAP1__CID29_GROUP_MASK 0x0C000000L
+#define MMEA3_GMI_WR_CLI2GRP_MAP1__CID30_GROUP_MASK 0x30000000L
+#define MMEA3_GMI_WR_CLI2GRP_MAP1__CID31_GROUP_MASK 0xC0000000L
+//MMEA3_GMI_RD_GRP2VC_MAP
+#define MMEA3_GMI_RD_GRP2VC_MAP__GROUP0_VC__SHIFT 0x0
+#define MMEA3_GMI_RD_GRP2VC_MAP__GROUP1_VC__SHIFT 0x3
+#define MMEA3_GMI_RD_GRP2VC_MAP__GROUP2_VC__SHIFT 0x6
+#define MMEA3_GMI_RD_GRP2VC_MAP__GROUP3_VC__SHIFT 0x9
+#define MMEA3_GMI_RD_GRP2VC_MAP__GROUP0_VC_MASK 0x00000007L
+#define MMEA3_GMI_RD_GRP2VC_MAP__GROUP1_VC_MASK 0x00000038L
+#define MMEA3_GMI_RD_GRP2VC_MAP__GROUP2_VC_MASK 0x000001C0L
+#define MMEA3_GMI_RD_GRP2VC_MAP__GROUP3_VC_MASK 0x00000E00L
+//MMEA3_GMI_WR_GRP2VC_MAP
+#define MMEA3_GMI_WR_GRP2VC_MAP__GROUP0_VC__SHIFT 0x0
+#define MMEA3_GMI_WR_GRP2VC_MAP__GROUP1_VC__SHIFT 0x3
+#define MMEA3_GMI_WR_GRP2VC_MAP__GROUP2_VC__SHIFT 0x6
+#define MMEA3_GMI_WR_GRP2VC_MAP__GROUP3_VC__SHIFT 0x9
+#define MMEA3_GMI_WR_GRP2VC_MAP__GROUP0_VC_MASK 0x00000007L
+#define MMEA3_GMI_WR_GRP2VC_MAP__GROUP1_VC_MASK 0x00000038L
+#define MMEA3_GMI_WR_GRP2VC_MAP__GROUP2_VC_MASK 0x000001C0L
+#define MMEA3_GMI_WR_GRP2VC_MAP__GROUP3_VC_MASK 0x00000E00L
+//MMEA3_GMI_RD_LAZY
+#define MMEA3_GMI_RD_LAZY__GROUP0_DELAY__SHIFT 0x0
+#define MMEA3_GMI_RD_LAZY__GROUP1_DELAY__SHIFT 0x3
+#define MMEA3_GMI_RD_LAZY__GROUP2_DELAY__SHIFT 0x6
+#define MMEA3_GMI_RD_LAZY__GROUP3_DELAY__SHIFT 0x9
+#define MMEA3_GMI_RD_LAZY__REQ_ACCUM_THRESH__SHIFT 0xc
+#define MMEA3_GMI_RD_LAZY__REQ_ACCUM_TIMEOUT__SHIFT 0x14
+#define MMEA3_GMI_RD_LAZY__REQ_ACCUM_IDLEMAX__SHIFT 0x1b
+#define MMEA3_GMI_RD_LAZY__GROUP0_DELAY_MASK 0x00000007L
+#define MMEA3_GMI_RD_LAZY__GROUP1_DELAY_MASK 0x00000038L
+#define MMEA3_GMI_RD_LAZY__GROUP2_DELAY_MASK 0x000001C0L
+#define MMEA3_GMI_RD_LAZY__GROUP3_DELAY_MASK 0x00000E00L
+#define MMEA3_GMI_RD_LAZY__REQ_ACCUM_THRESH_MASK 0x0003F000L
+#define MMEA3_GMI_RD_LAZY__REQ_ACCUM_TIMEOUT_MASK 0x07F00000L
+#define MMEA3_GMI_RD_LAZY__REQ_ACCUM_IDLEMAX_MASK 0x78000000L
+//MMEA3_GMI_WR_LAZY
+#define MMEA3_GMI_WR_LAZY__GROUP0_DELAY__SHIFT 0x0
+#define MMEA3_GMI_WR_LAZY__GROUP1_DELAY__SHIFT 0x3
+#define MMEA3_GMI_WR_LAZY__GROUP2_DELAY__SHIFT 0x6
+#define MMEA3_GMI_WR_LAZY__GROUP3_DELAY__SHIFT 0x9
+#define MMEA3_GMI_WR_LAZY__REQ_ACCUM_THRESH__SHIFT 0xc
+#define MMEA3_GMI_WR_LAZY__REQ_ACCUM_TIMEOUT__SHIFT 0x14
+#define MMEA3_GMI_WR_LAZY__REQ_ACCUM_IDLEMAX__SHIFT 0x1b
+#define MMEA3_GMI_WR_LAZY__GROUP0_DELAY_MASK 0x00000007L
+#define MMEA3_GMI_WR_LAZY__GROUP1_DELAY_MASK 0x00000038L
+#define MMEA3_GMI_WR_LAZY__GROUP2_DELAY_MASK 0x000001C0L
+#define MMEA3_GMI_WR_LAZY__GROUP3_DELAY_MASK 0x00000E00L
+#define MMEA3_GMI_WR_LAZY__REQ_ACCUM_THRESH_MASK 0x0003F000L
+#define MMEA3_GMI_WR_LAZY__REQ_ACCUM_TIMEOUT_MASK 0x07F00000L
+#define MMEA3_GMI_WR_LAZY__REQ_ACCUM_IDLEMAX_MASK 0x78000000L
+//MMEA3_GMI_RD_CAM_CNTL
+#define MMEA3_GMI_RD_CAM_CNTL__DEPTH_GROUP0__SHIFT 0x0
+#define MMEA3_GMI_RD_CAM_CNTL__DEPTH_GROUP1__SHIFT 0x4
+#define MMEA3_GMI_RD_CAM_CNTL__DEPTH_GROUP2__SHIFT 0x8
+#define MMEA3_GMI_RD_CAM_CNTL__DEPTH_GROUP3__SHIFT 0xc
+#define MMEA3_GMI_RD_CAM_CNTL__REORDER_LIMIT_GROUP0__SHIFT 0x10
+#define MMEA3_GMI_RD_CAM_CNTL__REORDER_LIMIT_GROUP1__SHIFT 0x13
+#define MMEA3_GMI_RD_CAM_CNTL__REORDER_LIMIT_GROUP2__SHIFT 0x16
+#define MMEA3_GMI_RD_CAM_CNTL__REORDER_LIMIT_GROUP3__SHIFT 0x19
+#define MMEA3_GMI_RD_CAM_CNTL__REFILL_CHAIN__SHIFT 0x1c
+#define MMEA3_GMI_RD_CAM_CNTL__PAGEBASED_CHAINING__SHIFT 0x1d
+#define MMEA3_GMI_RD_CAM_CNTL__DEPTH_GROUP0_MASK 0x0000000FL
+#define MMEA3_GMI_RD_CAM_CNTL__DEPTH_GROUP1_MASK 0x000000F0L
+#define MMEA3_GMI_RD_CAM_CNTL__DEPTH_GROUP2_MASK 0x00000F00L
+#define MMEA3_GMI_RD_CAM_CNTL__DEPTH_GROUP3_MASK 0x0000F000L
+#define MMEA3_GMI_RD_CAM_CNTL__REORDER_LIMIT_GROUP0_MASK 0x00070000L
+#define MMEA3_GMI_RD_CAM_CNTL__REORDER_LIMIT_GROUP1_MASK 0x00380000L
+#define MMEA3_GMI_RD_CAM_CNTL__REORDER_LIMIT_GROUP2_MASK 0x01C00000L
+#define MMEA3_GMI_RD_CAM_CNTL__REORDER_LIMIT_GROUP3_MASK 0x0E000000L
+#define MMEA3_GMI_RD_CAM_CNTL__REFILL_CHAIN_MASK 0x10000000L
+#define MMEA3_GMI_RD_CAM_CNTL__PAGEBASED_CHAINING_MASK 0x20000000L
+//MMEA3_GMI_WR_CAM_CNTL
+#define MMEA3_GMI_WR_CAM_CNTL__DEPTH_GROUP0__SHIFT 0x0
+#define MMEA3_GMI_WR_CAM_CNTL__DEPTH_GROUP1__SHIFT 0x4
+#define MMEA3_GMI_WR_CAM_CNTL__DEPTH_GROUP2__SHIFT 0x8
+#define MMEA3_GMI_WR_CAM_CNTL__DEPTH_GROUP3__SHIFT 0xc
+#define MMEA3_GMI_WR_CAM_CNTL__REORDER_LIMIT_GROUP0__SHIFT 0x10
+#define MMEA3_GMI_WR_CAM_CNTL__REORDER_LIMIT_GROUP1__SHIFT 0x13
+#define MMEA3_GMI_WR_CAM_CNTL__REORDER_LIMIT_GROUP2__SHIFT 0x16
+#define MMEA3_GMI_WR_CAM_CNTL__REORDER_LIMIT_GROUP3__SHIFT 0x19
+#define MMEA3_GMI_WR_CAM_CNTL__REFILL_CHAIN__SHIFT 0x1c
+#define MMEA3_GMI_WR_CAM_CNTL__PAGEBASED_CHAINING__SHIFT 0x1d
+#define MMEA3_GMI_WR_CAM_CNTL__DEPTH_GROUP0_MASK 0x0000000FL
+#define MMEA3_GMI_WR_CAM_CNTL__DEPTH_GROUP1_MASK 0x000000F0L
+#define MMEA3_GMI_WR_CAM_CNTL__DEPTH_GROUP2_MASK 0x00000F00L
+#define MMEA3_GMI_WR_CAM_CNTL__DEPTH_GROUP3_MASK 0x0000F000L
+#define MMEA3_GMI_WR_CAM_CNTL__REORDER_LIMIT_GROUP0_MASK 0x00070000L
+#define MMEA3_GMI_WR_CAM_CNTL__REORDER_LIMIT_GROUP1_MASK 0x00380000L
+#define MMEA3_GMI_WR_CAM_CNTL__REORDER_LIMIT_GROUP2_MASK 0x01C00000L
+#define MMEA3_GMI_WR_CAM_CNTL__REORDER_LIMIT_GROUP3_MASK 0x0E000000L
+#define MMEA3_GMI_WR_CAM_CNTL__REFILL_CHAIN_MASK 0x10000000L
+#define MMEA3_GMI_WR_CAM_CNTL__PAGEBASED_CHAINING_MASK 0x20000000L
+//MMEA3_GMI_PAGE_BURST
+#define MMEA3_GMI_PAGE_BURST__RD_LIMIT_LO__SHIFT 0x0
+#define MMEA3_GMI_PAGE_BURST__RD_LIMIT_HI__SHIFT 0x8
+#define MMEA3_GMI_PAGE_BURST__WR_LIMIT_LO__SHIFT 0x10
+#define MMEA3_GMI_PAGE_BURST__WR_LIMIT_HI__SHIFT 0x18
+#define MMEA3_GMI_PAGE_BURST__RD_LIMIT_LO_MASK 0x000000FFL
+#define MMEA3_GMI_PAGE_BURST__RD_LIMIT_HI_MASK 0x0000FF00L
+#define MMEA3_GMI_PAGE_BURST__WR_LIMIT_LO_MASK 0x00FF0000L
+#define MMEA3_GMI_PAGE_BURST__WR_LIMIT_HI_MASK 0xFF000000L
+//MMEA3_GMI_RD_PRI_AGE
+#define MMEA3_GMI_RD_PRI_AGE__GROUP0_AGING_RATE__SHIFT 0x0
+#define MMEA3_GMI_RD_PRI_AGE__GROUP1_AGING_RATE__SHIFT 0x3
+#define MMEA3_GMI_RD_PRI_AGE__GROUP2_AGING_RATE__SHIFT 0x6
+#define MMEA3_GMI_RD_PRI_AGE__GROUP3_AGING_RATE__SHIFT 0x9
+#define MMEA3_GMI_RD_PRI_AGE__GROUP0_AGE_COEFFICIENT__SHIFT 0xc
+#define MMEA3_GMI_RD_PRI_AGE__GROUP1_AGE_COEFFICIENT__SHIFT 0xf
+#define MMEA3_GMI_RD_PRI_AGE__GROUP2_AGE_COEFFICIENT__SHIFT 0x12
+#define MMEA3_GMI_RD_PRI_AGE__GROUP3_AGE_COEFFICIENT__SHIFT 0x15
+#define MMEA3_GMI_RD_PRI_AGE__GROUP0_AGING_RATE_MASK 0x00000007L
+#define MMEA3_GMI_RD_PRI_AGE__GROUP1_AGING_RATE_MASK 0x00000038L
+#define MMEA3_GMI_RD_PRI_AGE__GROUP2_AGING_RATE_MASK 0x000001C0L
+#define MMEA3_GMI_RD_PRI_AGE__GROUP3_AGING_RATE_MASK 0x00000E00L
+#define MMEA3_GMI_RD_PRI_AGE__GROUP0_AGE_COEFFICIENT_MASK 0x00007000L
+#define MMEA3_GMI_RD_PRI_AGE__GROUP1_AGE_COEFFICIENT_MASK 0x00038000L
+#define MMEA3_GMI_RD_PRI_AGE__GROUP2_AGE_COEFFICIENT_MASK 0x001C0000L
+#define MMEA3_GMI_RD_PRI_AGE__GROUP3_AGE_COEFFICIENT_MASK 0x00E00000L
+//MMEA3_GMI_WR_PRI_AGE
+#define MMEA3_GMI_WR_PRI_AGE__GROUP0_AGING_RATE__SHIFT 0x0
+#define MMEA3_GMI_WR_PRI_AGE__GROUP1_AGING_RATE__SHIFT 0x3
+#define MMEA3_GMI_WR_PRI_AGE__GROUP2_AGING_RATE__SHIFT 0x6
+#define MMEA3_GMI_WR_PRI_AGE__GROUP3_AGING_RATE__SHIFT 0x9
+#define MMEA3_GMI_WR_PRI_AGE__GROUP0_AGE_COEFFICIENT__SHIFT 0xc
+#define MMEA3_GMI_WR_PRI_AGE__GROUP1_AGE_COEFFICIENT__SHIFT 0xf
+#define MMEA3_GMI_WR_PRI_AGE__GROUP2_AGE_COEFFICIENT__SHIFT 0x12
+#define MMEA3_GMI_WR_PRI_AGE__GROUP3_AGE_COEFFICIENT__SHIFT 0x15
+#define MMEA3_GMI_WR_PRI_AGE__GROUP0_AGING_RATE_MASK 0x00000007L
+#define MMEA3_GMI_WR_PRI_AGE__GROUP1_AGING_RATE_MASK 0x00000038L
+#define MMEA3_GMI_WR_PRI_AGE__GROUP2_AGING_RATE_MASK 0x000001C0L
+#define MMEA3_GMI_WR_PRI_AGE__GROUP3_AGING_RATE_MASK 0x00000E00L
+#define MMEA3_GMI_WR_PRI_AGE__GROUP0_AGE_COEFFICIENT_MASK 0x00007000L
+#define MMEA3_GMI_WR_PRI_AGE__GROUP1_AGE_COEFFICIENT_MASK 0x00038000L
+#define MMEA3_GMI_WR_PRI_AGE__GROUP2_AGE_COEFFICIENT_MASK 0x001C0000L
+#define MMEA3_GMI_WR_PRI_AGE__GROUP3_AGE_COEFFICIENT_MASK 0x00E00000L
+//MMEA3_GMI_RD_PRI_QUEUING
+#define MMEA3_GMI_RD_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT__SHIFT 0x0
+#define MMEA3_GMI_RD_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT__SHIFT 0x3
+#define MMEA3_GMI_RD_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT__SHIFT 0x6
+#define MMEA3_GMI_RD_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT__SHIFT 0x9
+#define MMEA3_GMI_RD_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT_MASK 0x00000007L
+#define MMEA3_GMI_RD_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT_MASK 0x00000038L
+#define MMEA3_GMI_RD_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT_MASK 0x000001C0L
+#define MMEA3_GMI_RD_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT_MASK 0x00000E00L
+//MMEA3_GMI_WR_PRI_QUEUING
+#define MMEA3_GMI_WR_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT__SHIFT 0x0
+#define MMEA3_GMI_WR_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT__SHIFT 0x3
+#define MMEA3_GMI_WR_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT__SHIFT 0x6
+#define MMEA3_GMI_WR_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT__SHIFT 0x9
+#define MMEA3_GMI_WR_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT_MASK 0x00000007L
+#define MMEA3_GMI_WR_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT_MASK 0x00000038L
+#define MMEA3_GMI_WR_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT_MASK 0x000001C0L
+#define MMEA3_GMI_WR_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT_MASK 0x00000E00L
+//MMEA3_GMI_RD_PRI_FIXED
+#define MMEA3_GMI_RD_PRI_FIXED__GROUP0_FIXED_COEFFICIENT__SHIFT 0x0
+#define MMEA3_GMI_RD_PRI_FIXED__GROUP1_FIXED_COEFFICIENT__SHIFT 0x3
+#define MMEA3_GMI_RD_PRI_FIXED__GROUP2_FIXED_COEFFICIENT__SHIFT 0x6
+#define MMEA3_GMI_RD_PRI_FIXED__GROUP3_FIXED_COEFFICIENT__SHIFT 0x9
+#define MMEA3_GMI_RD_PRI_FIXED__GROUP0_FIXED_COEFFICIENT_MASK 0x00000007L
+#define MMEA3_GMI_RD_PRI_FIXED__GROUP1_FIXED_COEFFICIENT_MASK 0x00000038L
+#define MMEA3_GMI_RD_PRI_FIXED__GROUP2_FIXED_COEFFICIENT_MASK 0x000001C0L
+#define MMEA3_GMI_RD_PRI_FIXED__GROUP3_FIXED_COEFFICIENT_MASK 0x00000E00L
+//MMEA3_GMI_WR_PRI_FIXED
+#define MMEA3_GMI_WR_PRI_FIXED__GROUP0_FIXED_COEFFICIENT__SHIFT 0x0
+#define MMEA3_GMI_WR_PRI_FIXED__GROUP1_FIXED_COEFFICIENT__SHIFT 0x3
+#define MMEA3_GMI_WR_PRI_FIXED__GROUP2_FIXED_COEFFICIENT__SHIFT 0x6
+#define MMEA3_GMI_WR_PRI_FIXED__GROUP3_FIXED_COEFFICIENT__SHIFT 0x9
+#define MMEA3_GMI_WR_PRI_FIXED__GROUP0_FIXED_COEFFICIENT_MASK 0x00000007L
+#define MMEA3_GMI_WR_PRI_FIXED__GROUP1_FIXED_COEFFICIENT_MASK 0x00000038L
+#define MMEA3_GMI_WR_PRI_FIXED__GROUP2_FIXED_COEFFICIENT_MASK 0x000001C0L
+#define MMEA3_GMI_WR_PRI_FIXED__GROUP3_FIXED_COEFFICIENT_MASK 0x00000E00L
+//MMEA3_GMI_RD_PRI_URGENCY
+#define MMEA3_GMI_RD_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT__SHIFT 0x0
+#define MMEA3_GMI_RD_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT__SHIFT 0x3
+#define MMEA3_GMI_RD_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT__SHIFT 0x6
+#define MMEA3_GMI_RD_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT__SHIFT 0x9
+#define MMEA3_GMI_RD_PRI_URGENCY__GROUP0_URGENCY_MODE__SHIFT 0xc
+#define MMEA3_GMI_RD_PRI_URGENCY__GROUP1_URGENCY_MODE__SHIFT 0xd
+#define MMEA3_GMI_RD_PRI_URGENCY__GROUP2_URGENCY_MODE__SHIFT 0xe
+#define MMEA3_GMI_RD_PRI_URGENCY__GROUP3_URGENCY_MODE__SHIFT 0xf
+#define MMEA3_GMI_RD_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT_MASK 0x00000007L
+#define MMEA3_GMI_RD_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT_MASK 0x00000038L
+#define MMEA3_GMI_RD_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT_MASK 0x000001C0L
+#define MMEA3_GMI_RD_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT_MASK 0x00000E00L
+#define MMEA3_GMI_RD_PRI_URGENCY__GROUP0_URGENCY_MODE_MASK 0x00001000L
+#define MMEA3_GMI_RD_PRI_URGENCY__GROUP1_URGENCY_MODE_MASK 0x00002000L
+#define MMEA3_GMI_RD_PRI_URGENCY__GROUP2_URGENCY_MODE_MASK 0x00004000L
+#define MMEA3_GMI_RD_PRI_URGENCY__GROUP3_URGENCY_MODE_MASK 0x00008000L
+//MMEA3_GMI_WR_PRI_URGENCY
+#define MMEA3_GMI_WR_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT__SHIFT 0x0
+#define MMEA3_GMI_WR_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT__SHIFT 0x3
+#define MMEA3_GMI_WR_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT__SHIFT 0x6
+#define MMEA3_GMI_WR_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT__SHIFT 0x9
+#define MMEA3_GMI_WR_PRI_URGENCY__GROUP0_URGENCY_MODE__SHIFT 0xc
+#define MMEA3_GMI_WR_PRI_URGENCY__GROUP1_URGENCY_MODE__SHIFT 0xd
+#define MMEA3_GMI_WR_PRI_URGENCY__GROUP2_URGENCY_MODE__SHIFT 0xe
+#define MMEA3_GMI_WR_PRI_URGENCY__GROUP3_URGENCY_MODE__SHIFT 0xf
+#define MMEA3_GMI_WR_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT_MASK 0x00000007L
+#define MMEA3_GMI_WR_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT_MASK 0x00000038L
+#define MMEA3_GMI_WR_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT_MASK 0x000001C0L
+#define MMEA3_GMI_WR_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT_MASK 0x00000E00L
+#define MMEA3_GMI_WR_PRI_URGENCY__GROUP0_URGENCY_MODE_MASK 0x00001000L
+#define MMEA3_GMI_WR_PRI_URGENCY__GROUP1_URGENCY_MODE_MASK 0x00002000L
+#define MMEA3_GMI_WR_PRI_URGENCY__GROUP2_URGENCY_MODE_MASK 0x00004000L
+#define MMEA3_GMI_WR_PRI_URGENCY__GROUP3_URGENCY_MODE_MASK 0x00008000L
+//MMEA3_GMI_RD_PRI_URGENCY_MASKING
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID0_MASK__SHIFT 0x0
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID1_MASK__SHIFT 0x1
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID2_MASK__SHIFT 0x2
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID3_MASK__SHIFT 0x3
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID4_MASK__SHIFT 0x4
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID5_MASK__SHIFT 0x5
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID6_MASK__SHIFT 0x6
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID7_MASK__SHIFT 0x7
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID8_MASK__SHIFT 0x8
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID9_MASK__SHIFT 0x9
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID10_MASK__SHIFT 0xa
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID11_MASK__SHIFT 0xb
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID12_MASK__SHIFT 0xc
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID13_MASK__SHIFT 0xd
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID14_MASK__SHIFT 0xe
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID15_MASK__SHIFT 0xf
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID16_MASK__SHIFT 0x10
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID17_MASK__SHIFT 0x11
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID18_MASK__SHIFT 0x12
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID19_MASK__SHIFT 0x13
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID20_MASK__SHIFT 0x14
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID21_MASK__SHIFT 0x15
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID22_MASK__SHIFT 0x16
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID23_MASK__SHIFT 0x17
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID24_MASK__SHIFT 0x18
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID25_MASK__SHIFT 0x19
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID26_MASK__SHIFT 0x1a
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID27_MASK__SHIFT 0x1b
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID28_MASK__SHIFT 0x1c
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID29_MASK__SHIFT 0x1d
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID30_MASK__SHIFT 0x1e
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID31_MASK__SHIFT 0x1f
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID0_MASK_MASK 0x00000001L
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID1_MASK_MASK 0x00000002L
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID2_MASK_MASK 0x00000004L
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID3_MASK_MASK 0x00000008L
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID4_MASK_MASK 0x00000010L
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID5_MASK_MASK 0x00000020L
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID6_MASK_MASK 0x00000040L
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID7_MASK_MASK 0x00000080L
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID8_MASK_MASK 0x00000100L
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID9_MASK_MASK 0x00000200L
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID10_MASK_MASK 0x00000400L
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID11_MASK_MASK 0x00000800L
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID12_MASK_MASK 0x00001000L
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID13_MASK_MASK 0x00002000L
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID14_MASK_MASK 0x00004000L
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID15_MASK_MASK 0x00008000L
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID16_MASK_MASK 0x00010000L
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID17_MASK_MASK 0x00020000L
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID18_MASK_MASK 0x00040000L
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID19_MASK_MASK 0x00080000L
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID20_MASK_MASK 0x00100000L
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID21_MASK_MASK 0x00200000L
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID22_MASK_MASK 0x00400000L
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID23_MASK_MASK 0x00800000L
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID24_MASK_MASK 0x01000000L
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID25_MASK_MASK 0x02000000L
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID26_MASK_MASK 0x04000000L
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID27_MASK_MASK 0x08000000L
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID28_MASK_MASK 0x10000000L
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID29_MASK_MASK 0x20000000L
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID30_MASK_MASK 0x40000000L
+#define MMEA3_GMI_RD_PRI_URGENCY_MASKING__CID31_MASK_MASK 0x80000000L
+//MMEA3_GMI_WR_PRI_URGENCY_MASKING
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID0_MASK__SHIFT 0x0
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID1_MASK__SHIFT 0x1
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID2_MASK__SHIFT 0x2
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID3_MASK__SHIFT 0x3
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID4_MASK__SHIFT 0x4
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID5_MASK__SHIFT 0x5
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID6_MASK__SHIFT 0x6
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID7_MASK__SHIFT 0x7
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID8_MASK__SHIFT 0x8
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID9_MASK__SHIFT 0x9
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID10_MASK__SHIFT 0xa
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID11_MASK__SHIFT 0xb
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID12_MASK__SHIFT 0xc
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID13_MASK__SHIFT 0xd
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID14_MASK__SHIFT 0xe
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID15_MASK__SHIFT 0xf
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID16_MASK__SHIFT 0x10
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID17_MASK__SHIFT 0x11
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID18_MASK__SHIFT 0x12
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID19_MASK__SHIFT 0x13
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID20_MASK__SHIFT 0x14
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID21_MASK__SHIFT 0x15
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID22_MASK__SHIFT 0x16
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID23_MASK__SHIFT 0x17
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID24_MASK__SHIFT 0x18
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID25_MASK__SHIFT 0x19
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID26_MASK__SHIFT 0x1a
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID27_MASK__SHIFT 0x1b
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID28_MASK__SHIFT 0x1c
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID29_MASK__SHIFT 0x1d
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID30_MASK__SHIFT 0x1e
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID31_MASK__SHIFT 0x1f
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID0_MASK_MASK 0x00000001L
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID1_MASK_MASK 0x00000002L
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID2_MASK_MASK 0x00000004L
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID3_MASK_MASK 0x00000008L
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID4_MASK_MASK 0x00000010L
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID5_MASK_MASK 0x00000020L
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID6_MASK_MASK 0x00000040L
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID7_MASK_MASK 0x00000080L
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID8_MASK_MASK 0x00000100L
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID9_MASK_MASK 0x00000200L
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID10_MASK_MASK 0x00000400L
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID11_MASK_MASK 0x00000800L
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID12_MASK_MASK 0x00001000L
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID13_MASK_MASK 0x00002000L
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID14_MASK_MASK 0x00004000L
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID15_MASK_MASK 0x00008000L
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID16_MASK_MASK 0x00010000L
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID17_MASK_MASK 0x00020000L
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID18_MASK_MASK 0x00040000L
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID19_MASK_MASK 0x00080000L
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID20_MASK_MASK 0x00100000L
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID21_MASK_MASK 0x00200000L
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID22_MASK_MASK 0x00400000L
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID23_MASK_MASK 0x00800000L
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID24_MASK_MASK 0x01000000L
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID25_MASK_MASK 0x02000000L
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID26_MASK_MASK 0x04000000L
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID27_MASK_MASK 0x08000000L
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID28_MASK_MASK 0x10000000L
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID29_MASK_MASK 0x20000000L
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID30_MASK_MASK 0x40000000L
+#define MMEA3_GMI_WR_PRI_URGENCY_MASKING__CID31_MASK_MASK 0x80000000L
+//MMEA3_GMI_RD_PRI_QUANT_PRI1
+#define MMEA3_GMI_RD_PRI_QUANT_PRI1__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA3_GMI_RD_PRI_QUANT_PRI1__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA3_GMI_RD_PRI_QUANT_PRI1__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA3_GMI_RD_PRI_QUANT_PRI1__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA3_GMI_RD_PRI_QUANT_PRI1__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA3_GMI_RD_PRI_QUANT_PRI1__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA3_GMI_RD_PRI_QUANT_PRI1__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA3_GMI_RD_PRI_QUANT_PRI1__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA3_GMI_RD_PRI_QUANT_PRI2
+#define MMEA3_GMI_RD_PRI_QUANT_PRI2__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA3_GMI_RD_PRI_QUANT_PRI2__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA3_GMI_RD_PRI_QUANT_PRI2__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA3_GMI_RD_PRI_QUANT_PRI2__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA3_GMI_RD_PRI_QUANT_PRI2__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA3_GMI_RD_PRI_QUANT_PRI2__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA3_GMI_RD_PRI_QUANT_PRI2__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA3_GMI_RD_PRI_QUANT_PRI2__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA3_GMI_RD_PRI_QUANT_PRI3
+#define MMEA3_GMI_RD_PRI_QUANT_PRI3__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA3_GMI_RD_PRI_QUANT_PRI3__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA3_GMI_RD_PRI_QUANT_PRI3__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA3_GMI_RD_PRI_QUANT_PRI3__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA3_GMI_RD_PRI_QUANT_PRI3__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA3_GMI_RD_PRI_QUANT_PRI3__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA3_GMI_RD_PRI_QUANT_PRI3__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA3_GMI_RD_PRI_QUANT_PRI3__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA3_GMI_WR_PRI_QUANT_PRI1
+#define MMEA3_GMI_WR_PRI_QUANT_PRI1__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA3_GMI_WR_PRI_QUANT_PRI1__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA3_GMI_WR_PRI_QUANT_PRI1__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA3_GMI_WR_PRI_QUANT_PRI1__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA3_GMI_WR_PRI_QUANT_PRI1__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA3_GMI_WR_PRI_QUANT_PRI1__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA3_GMI_WR_PRI_QUANT_PRI1__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA3_GMI_WR_PRI_QUANT_PRI1__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA3_GMI_WR_PRI_QUANT_PRI2
+#define MMEA3_GMI_WR_PRI_QUANT_PRI2__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA3_GMI_WR_PRI_QUANT_PRI2__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA3_GMI_WR_PRI_QUANT_PRI2__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA3_GMI_WR_PRI_QUANT_PRI2__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA3_GMI_WR_PRI_QUANT_PRI2__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA3_GMI_WR_PRI_QUANT_PRI2__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA3_GMI_WR_PRI_QUANT_PRI2__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA3_GMI_WR_PRI_QUANT_PRI2__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA3_GMI_WR_PRI_QUANT_PRI3
+#define MMEA3_GMI_WR_PRI_QUANT_PRI3__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA3_GMI_WR_PRI_QUANT_PRI3__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA3_GMI_WR_PRI_QUANT_PRI3__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA3_GMI_WR_PRI_QUANT_PRI3__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA3_GMI_WR_PRI_QUANT_PRI3__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA3_GMI_WR_PRI_QUANT_PRI3__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA3_GMI_WR_PRI_QUANT_PRI3__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA3_GMI_WR_PRI_QUANT_PRI3__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA3_IO_RD_CLI2GRP_MAP0
+#define MMEA3_IO_RD_CLI2GRP_MAP0__CID0_GROUP__SHIFT 0x0
+#define MMEA3_IO_RD_CLI2GRP_MAP0__CID1_GROUP__SHIFT 0x2
+#define MMEA3_IO_RD_CLI2GRP_MAP0__CID2_GROUP__SHIFT 0x4
+#define MMEA3_IO_RD_CLI2GRP_MAP0__CID3_GROUP__SHIFT 0x6
+#define MMEA3_IO_RD_CLI2GRP_MAP0__CID4_GROUP__SHIFT 0x8
+#define MMEA3_IO_RD_CLI2GRP_MAP0__CID5_GROUP__SHIFT 0xa
+#define MMEA3_IO_RD_CLI2GRP_MAP0__CID6_GROUP__SHIFT 0xc
+#define MMEA3_IO_RD_CLI2GRP_MAP0__CID7_GROUP__SHIFT 0xe
+#define MMEA3_IO_RD_CLI2GRP_MAP0__CID8_GROUP__SHIFT 0x10
+#define MMEA3_IO_RD_CLI2GRP_MAP0__CID9_GROUP__SHIFT 0x12
+#define MMEA3_IO_RD_CLI2GRP_MAP0__CID10_GROUP__SHIFT 0x14
+#define MMEA3_IO_RD_CLI2GRP_MAP0__CID11_GROUP__SHIFT 0x16
+#define MMEA3_IO_RD_CLI2GRP_MAP0__CID12_GROUP__SHIFT 0x18
+#define MMEA3_IO_RD_CLI2GRP_MAP0__CID13_GROUP__SHIFT 0x1a
+#define MMEA3_IO_RD_CLI2GRP_MAP0__CID14_GROUP__SHIFT 0x1c
+#define MMEA3_IO_RD_CLI2GRP_MAP0__CID15_GROUP__SHIFT 0x1e
+#define MMEA3_IO_RD_CLI2GRP_MAP0__CID0_GROUP_MASK 0x00000003L
+#define MMEA3_IO_RD_CLI2GRP_MAP0__CID1_GROUP_MASK 0x0000000CL
+#define MMEA3_IO_RD_CLI2GRP_MAP0__CID2_GROUP_MASK 0x00000030L
+#define MMEA3_IO_RD_CLI2GRP_MAP0__CID3_GROUP_MASK 0x000000C0L
+#define MMEA3_IO_RD_CLI2GRP_MAP0__CID4_GROUP_MASK 0x00000300L
+#define MMEA3_IO_RD_CLI2GRP_MAP0__CID5_GROUP_MASK 0x00000C00L
+#define MMEA3_IO_RD_CLI2GRP_MAP0__CID6_GROUP_MASK 0x00003000L
+#define MMEA3_IO_RD_CLI2GRP_MAP0__CID7_GROUP_MASK 0x0000C000L
+#define MMEA3_IO_RD_CLI2GRP_MAP0__CID8_GROUP_MASK 0x00030000L
+#define MMEA3_IO_RD_CLI2GRP_MAP0__CID9_GROUP_MASK 0x000C0000L
+#define MMEA3_IO_RD_CLI2GRP_MAP0__CID10_GROUP_MASK 0x00300000L
+#define MMEA3_IO_RD_CLI2GRP_MAP0__CID11_GROUP_MASK 0x00C00000L
+#define MMEA3_IO_RD_CLI2GRP_MAP0__CID12_GROUP_MASK 0x03000000L
+#define MMEA3_IO_RD_CLI2GRP_MAP0__CID13_GROUP_MASK 0x0C000000L
+#define MMEA3_IO_RD_CLI2GRP_MAP0__CID14_GROUP_MASK 0x30000000L
+#define MMEA3_IO_RD_CLI2GRP_MAP0__CID15_GROUP_MASK 0xC0000000L
+//MMEA3_IO_RD_CLI2GRP_MAP1
+#define MMEA3_IO_RD_CLI2GRP_MAP1__CID16_GROUP__SHIFT 0x0
+#define MMEA3_IO_RD_CLI2GRP_MAP1__CID17_GROUP__SHIFT 0x2
+#define MMEA3_IO_RD_CLI2GRP_MAP1__CID18_GROUP__SHIFT 0x4
+#define MMEA3_IO_RD_CLI2GRP_MAP1__CID19_GROUP__SHIFT 0x6
+#define MMEA3_IO_RD_CLI2GRP_MAP1__CID20_GROUP__SHIFT 0x8
+#define MMEA3_IO_RD_CLI2GRP_MAP1__CID21_GROUP__SHIFT 0xa
+#define MMEA3_IO_RD_CLI2GRP_MAP1__CID22_GROUP__SHIFT 0xc
+#define MMEA3_IO_RD_CLI2GRP_MAP1__CID23_GROUP__SHIFT 0xe
+#define MMEA3_IO_RD_CLI2GRP_MAP1__CID24_GROUP__SHIFT 0x10
+#define MMEA3_IO_RD_CLI2GRP_MAP1__CID25_GROUP__SHIFT 0x12
+#define MMEA3_IO_RD_CLI2GRP_MAP1__CID26_GROUP__SHIFT 0x14
+#define MMEA3_IO_RD_CLI2GRP_MAP1__CID27_GROUP__SHIFT 0x16
+#define MMEA3_IO_RD_CLI2GRP_MAP1__CID28_GROUP__SHIFT 0x18
+#define MMEA3_IO_RD_CLI2GRP_MAP1__CID29_GROUP__SHIFT 0x1a
+#define MMEA3_IO_RD_CLI2GRP_MAP1__CID30_GROUP__SHIFT 0x1c
+#define MMEA3_IO_RD_CLI2GRP_MAP1__CID31_GROUP__SHIFT 0x1e
+#define MMEA3_IO_RD_CLI2GRP_MAP1__CID16_GROUP_MASK 0x00000003L
+#define MMEA3_IO_RD_CLI2GRP_MAP1__CID17_GROUP_MASK 0x0000000CL
+#define MMEA3_IO_RD_CLI2GRP_MAP1__CID18_GROUP_MASK 0x00000030L
+#define MMEA3_IO_RD_CLI2GRP_MAP1__CID19_GROUP_MASK 0x000000C0L
+#define MMEA3_IO_RD_CLI2GRP_MAP1__CID20_GROUP_MASK 0x00000300L
+#define MMEA3_IO_RD_CLI2GRP_MAP1__CID21_GROUP_MASK 0x00000C00L
+#define MMEA3_IO_RD_CLI2GRP_MAP1__CID22_GROUP_MASK 0x00003000L
+#define MMEA3_IO_RD_CLI2GRP_MAP1__CID23_GROUP_MASK 0x0000C000L
+#define MMEA3_IO_RD_CLI2GRP_MAP1__CID24_GROUP_MASK 0x00030000L
+#define MMEA3_IO_RD_CLI2GRP_MAP1__CID25_GROUP_MASK 0x000C0000L
+#define MMEA3_IO_RD_CLI2GRP_MAP1__CID26_GROUP_MASK 0x00300000L
+#define MMEA3_IO_RD_CLI2GRP_MAP1__CID27_GROUP_MASK 0x00C00000L
+#define MMEA3_IO_RD_CLI2GRP_MAP1__CID28_GROUP_MASK 0x03000000L
+#define MMEA3_IO_RD_CLI2GRP_MAP1__CID29_GROUP_MASK 0x0C000000L
+#define MMEA3_IO_RD_CLI2GRP_MAP1__CID30_GROUP_MASK 0x30000000L
+#define MMEA3_IO_RD_CLI2GRP_MAP1__CID31_GROUP_MASK 0xC0000000L
+//MMEA3_IO_WR_CLI2GRP_MAP0
+#define MMEA3_IO_WR_CLI2GRP_MAP0__CID0_GROUP__SHIFT 0x0
+#define MMEA3_IO_WR_CLI2GRP_MAP0__CID1_GROUP__SHIFT 0x2
+#define MMEA3_IO_WR_CLI2GRP_MAP0__CID2_GROUP__SHIFT 0x4
+#define MMEA3_IO_WR_CLI2GRP_MAP0__CID3_GROUP__SHIFT 0x6
+#define MMEA3_IO_WR_CLI2GRP_MAP0__CID4_GROUP__SHIFT 0x8
+#define MMEA3_IO_WR_CLI2GRP_MAP0__CID5_GROUP__SHIFT 0xa
+#define MMEA3_IO_WR_CLI2GRP_MAP0__CID6_GROUP__SHIFT 0xc
+#define MMEA3_IO_WR_CLI2GRP_MAP0__CID7_GROUP__SHIFT 0xe
+#define MMEA3_IO_WR_CLI2GRP_MAP0__CID8_GROUP__SHIFT 0x10
+#define MMEA3_IO_WR_CLI2GRP_MAP0__CID9_GROUP__SHIFT 0x12
+#define MMEA3_IO_WR_CLI2GRP_MAP0__CID10_GROUP__SHIFT 0x14
+#define MMEA3_IO_WR_CLI2GRP_MAP0__CID11_GROUP__SHIFT 0x16
+#define MMEA3_IO_WR_CLI2GRP_MAP0__CID12_GROUP__SHIFT 0x18
+#define MMEA3_IO_WR_CLI2GRP_MAP0__CID13_GROUP__SHIFT 0x1a
+#define MMEA3_IO_WR_CLI2GRP_MAP0__CID14_GROUP__SHIFT 0x1c
+#define MMEA3_IO_WR_CLI2GRP_MAP0__CID15_GROUP__SHIFT 0x1e
+#define MMEA3_IO_WR_CLI2GRP_MAP0__CID0_GROUP_MASK 0x00000003L
+#define MMEA3_IO_WR_CLI2GRP_MAP0__CID1_GROUP_MASK 0x0000000CL
+#define MMEA3_IO_WR_CLI2GRP_MAP0__CID2_GROUP_MASK 0x00000030L
+#define MMEA3_IO_WR_CLI2GRP_MAP0__CID3_GROUP_MASK 0x000000C0L
+#define MMEA3_IO_WR_CLI2GRP_MAP0__CID4_GROUP_MASK 0x00000300L
+#define MMEA3_IO_WR_CLI2GRP_MAP0__CID5_GROUP_MASK 0x00000C00L
+#define MMEA3_IO_WR_CLI2GRP_MAP0__CID6_GROUP_MASK 0x00003000L
+#define MMEA3_IO_WR_CLI2GRP_MAP0__CID7_GROUP_MASK 0x0000C000L
+#define MMEA3_IO_WR_CLI2GRP_MAP0__CID8_GROUP_MASK 0x00030000L
+#define MMEA3_IO_WR_CLI2GRP_MAP0__CID9_GROUP_MASK 0x000C0000L
+#define MMEA3_IO_WR_CLI2GRP_MAP0__CID10_GROUP_MASK 0x00300000L
+#define MMEA3_IO_WR_CLI2GRP_MAP0__CID11_GROUP_MASK 0x00C00000L
+#define MMEA3_IO_WR_CLI2GRP_MAP0__CID12_GROUP_MASK 0x03000000L
+#define MMEA3_IO_WR_CLI2GRP_MAP0__CID13_GROUP_MASK 0x0C000000L
+#define MMEA3_IO_WR_CLI2GRP_MAP0__CID14_GROUP_MASK 0x30000000L
+#define MMEA3_IO_WR_CLI2GRP_MAP0__CID15_GROUP_MASK 0xC0000000L
+//MMEA3_IO_WR_CLI2GRP_MAP1
+#define MMEA3_IO_WR_CLI2GRP_MAP1__CID16_GROUP__SHIFT 0x0
+#define MMEA3_IO_WR_CLI2GRP_MAP1__CID17_GROUP__SHIFT 0x2
+#define MMEA3_IO_WR_CLI2GRP_MAP1__CID18_GROUP__SHIFT 0x4
+#define MMEA3_IO_WR_CLI2GRP_MAP1__CID19_GROUP__SHIFT 0x6
+#define MMEA3_IO_WR_CLI2GRP_MAP1__CID20_GROUP__SHIFT 0x8
+#define MMEA3_IO_WR_CLI2GRP_MAP1__CID21_GROUP__SHIFT 0xa
+#define MMEA3_IO_WR_CLI2GRP_MAP1__CID22_GROUP__SHIFT 0xc
+#define MMEA3_IO_WR_CLI2GRP_MAP1__CID23_GROUP__SHIFT 0xe
+#define MMEA3_IO_WR_CLI2GRP_MAP1__CID24_GROUP__SHIFT 0x10
+#define MMEA3_IO_WR_CLI2GRP_MAP1__CID25_GROUP__SHIFT 0x12
+#define MMEA3_IO_WR_CLI2GRP_MAP1__CID26_GROUP__SHIFT 0x14
+#define MMEA3_IO_WR_CLI2GRP_MAP1__CID27_GROUP__SHIFT 0x16
+#define MMEA3_IO_WR_CLI2GRP_MAP1__CID28_GROUP__SHIFT 0x18
+#define MMEA3_IO_WR_CLI2GRP_MAP1__CID29_GROUP__SHIFT 0x1a
+#define MMEA3_IO_WR_CLI2GRP_MAP1__CID30_GROUP__SHIFT 0x1c
+#define MMEA3_IO_WR_CLI2GRP_MAP1__CID31_GROUP__SHIFT 0x1e
+#define MMEA3_IO_WR_CLI2GRP_MAP1__CID16_GROUP_MASK 0x00000003L
+#define MMEA3_IO_WR_CLI2GRP_MAP1__CID17_GROUP_MASK 0x0000000CL
+#define MMEA3_IO_WR_CLI2GRP_MAP1__CID18_GROUP_MASK 0x00000030L
+#define MMEA3_IO_WR_CLI2GRP_MAP1__CID19_GROUP_MASK 0x000000C0L
+#define MMEA3_IO_WR_CLI2GRP_MAP1__CID20_GROUP_MASK 0x00000300L
+#define MMEA3_IO_WR_CLI2GRP_MAP1__CID21_GROUP_MASK 0x00000C00L
+#define MMEA3_IO_WR_CLI2GRP_MAP1__CID22_GROUP_MASK 0x00003000L
+#define MMEA3_IO_WR_CLI2GRP_MAP1__CID23_GROUP_MASK 0x0000C000L
+#define MMEA3_IO_WR_CLI2GRP_MAP1__CID24_GROUP_MASK 0x00030000L
+#define MMEA3_IO_WR_CLI2GRP_MAP1__CID25_GROUP_MASK 0x000C0000L
+#define MMEA3_IO_WR_CLI2GRP_MAP1__CID26_GROUP_MASK 0x00300000L
+#define MMEA3_IO_WR_CLI2GRP_MAP1__CID27_GROUP_MASK 0x00C00000L
+#define MMEA3_IO_WR_CLI2GRP_MAP1__CID28_GROUP_MASK 0x03000000L
+#define MMEA3_IO_WR_CLI2GRP_MAP1__CID29_GROUP_MASK 0x0C000000L
+#define MMEA3_IO_WR_CLI2GRP_MAP1__CID30_GROUP_MASK 0x30000000L
+#define MMEA3_IO_WR_CLI2GRP_MAP1__CID31_GROUP_MASK 0xC0000000L
+//MMEA3_IO_RD_COMBINE_FLUSH
+#define MMEA3_IO_RD_COMBINE_FLUSH__GROUP0_TIMER__SHIFT 0x0
+#define MMEA3_IO_RD_COMBINE_FLUSH__GROUP1_TIMER__SHIFT 0x4
+#define MMEA3_IO_RD_COMBINE_FLUSH__GROUP2_TIMER__SHIFT 0x8
+#define MMEA3_IO_RD_COMBINE_FLUSH__GROUP3_TIMER__SHIFT 0xc
+#define MMEA3_IO_RD_COMBINE_FLUSH__COMB_MODE__SHIFT 0x10
+#define MMEA3_IO_RD_COMBINE_FLUSH__GROUP0_TIMER_MASK 0x0000000FL
+#define MMEA3_IO_RD_COMBINE_FLUSH__GROUP1_TIMER_MASK 0x000000F0L
+#define MMEA3_IO_RD_COMBINE_FLUSH__GROUP2_TIMER_MASK 0x00000F00L
+#define MMEA3_IO_RD_COMBINE_FLUSH__GROUP3_TIMER_MASK 0x0000F000L
+#define MMEA3_IO_RD_COMBINE_FLUSH__COMB_MODE_MASK 0x00030000L
+//MMEA3_IO_WR_COMBINE_FLUSH
+#define MMEA3_IO_WR_COMBINE_FLUSH__GROUP0_TIMER__SHIFT 0x0
+#define MMEA3_IO_WR_COMBINE_FLUSH__GROUP1_TIMER__SHIFT 0x4
+#define MMEA3_IO_WR_COMBINE_FLUSH__GROUP2_TIMER__SHIFT 0x8
+#define MMEA3_IO_WR_COMBINE_FLUSH__GROUP3_TIMER__SHIFT 0xc
+#define MMEA3_IO_WR_COMBINE_FLUSH__COMB_MODE__SHIFT 0x10
+#define MMEA3_IO_WR_COMBINE_FLUSH__GROUP0_TIMER_MASK 0x0000000FL
+#define MMEA3_IO_WR_COMBINE_FLUSH__GROUP1_TIMER_MASK 0x000000F0L
+#define MMEA3_IO_WR_COMBINE_FLUSH__GROUP2_TIMER_MASK 0x00000F00L
+#define MMEA3_IO_WR_COMBINE_FLUSH__GROUP3_TIMER_MASK 0x0000F000L
+#define MMEA3_IO_WR_COMBINE_FLUSH__COMB_MODE_MASK 0x00030000L
+//MMEA3_IO_GROUP_BURST
+#define MMEA3_IO_GROUP_BURST__RD_LIMIT_LO__SHIFT 0x0
+#define MMEA3_IO_GROUP_BURST__RD_LIMIT_HI__SHIFT 0x8
+#define MMEA3_IO_GROUP_BURST__WR_LIMIT_LO__SHIFT 0x10
+#define MMEA3_IO_GROUP_BURST__WR_LIMIT_HI__SHIFT 0x18
+#define MMEA3_IO_GROUP_BURST__RD_LIMIT_LO_MASK 0x000000FFL
+#define MMEA3_IO_GROUP_BURST__RD_LIMIT_HI_MASK 0x0000FF00L
+#define MMEA3_IO_GROUP_BURST__WR_LIMIT_LO_MASK 0x00FF0000L
+#define MMEA3_IO_GROUP_BURST__WR_LIMIT_HI_MASK 0xFF000000L
+//MMEA3_IO_RD_PRI_AGE
+#define MMEA3_IO_RD_PRI_AGE__GROUP0_AGING_RATE__SHIFT 0x0
+#define MMEA3_IO_RD_PRI_AGE__GROUP1_AGING_RATE__SHIFT 0x3
+#define MMEA3_IO_RD_PRI_AGE__GROUP2_AGING_RATE__SHIFT 0x6
+#define MMEA3_IO_RD_PRI_AGE__GROUP3_AGING_RATE__SHIFT 0x9
+#define MMEA3_IO_RD_PRI_AGE__GROUP0_AGE_COEFFICIENT__SHIFT 0xc
+#define MMEA3_IO_RD_PRI_AGE__GROUP1_AGE_COEFFICIENT__SHIFT 0xf
+#define MMEA3_IO_RD_PRI_AGE__GROUP2_AGE_COEFFICIENT__SHIFT 0x12
+#define MMEA3_IO_RD_PRI_AGE__GROUP3_AGE_COEFFICIENT__SHIFT 0x15
+#define MMEA3_IO_RD_PRI_AGE__GROUP0_AGING_RATE_MASK 0x00000007L
+#define MMEA3_IO_RD_PRI_AGE__GROUP1_AGING_RATE_MASK 0x00000038L
+#define MMEA3_IO_RD_PRI_AGE__GROUP2_AGING_RATE_MASK 0x000001C0L
+#define MMEA3_IO_RD_PRI_AGE__GROUP3_AGING_RATE_MASK 0x00000E00L
+#define MMEA3_IO_RD_PRI_AGE__GROUP0_AGE_COEFFICIENT_MASK 0x00007000L
+#define MMEA3_IO_RD_PRI_AGE__GROUP1_AGE_COEFFICIENT_MASK 0x00038000L
+#define MMEA3_IO_RD_PRI_AGE__GROUP2_AGE_COEFFICIENT_MASK 0x001C0000L
+#define MMEA3_IO_RD_PRI_AGE__GROUP3_AGE_COEFFICIENT_MASK 0x00E00000L
+//MMEA3_IO_WR_PRI_AGE
+#define MMEA3_IO_WR_PRI_AGE__GROUP0_AGING_RATE__SHIFT 0x0
+#define MMEA3_IO_WR_PRI_AGE__GROUP1_AGING_RATE__SHIFT 0x3
+#define MMEA3_IO_WR_PRI_AGE__GROUP2_AGING_RATE__SHIFT 0x6
+#define MMEA3_IO_WR_PRI_AGE__GROUP3_AGING_RATE__SHIFT 0x9
+#define MMEA3_IO_WR_PRI_AGE__GROUP0_AGE_COEFFICIENT__SHIFT 0xc
+#define MMEA3_IO_WR_PRI_AGE__GROUP1_AGE_COEFFICIENT__SHIFT 0xf
+#define MMEA3_IO_WR_PRI_AGE__GROUP2_AGE_COEFFICIENT__SHIFT 0x12
+#define MMEA3_IO_WR_PRI_AGE__GROUP3_AGE_COEFFICIENT__SHIFT 0x15
+#define MMEA3_IO_WR_PRI_AGE__GROUP0_AGING_RATE_MASK 0x00000007L
+#define MMEA3_IO_WR_PRI_AGE__GROUP1_AGING_RATE_MASK 0x00000038L
+#define MMEA3_IO_WR_PRI_AGE__GROUP2_AGING_RATE_MASK 0x000001C0L
+#define MMEA3_IO_WR_PRI_AGE__GROUP3_AGING_RATE_MASK 0x00000E00L
+#define MMEA3_IO_WR_PRI_AGE__GROUP0_AGE_COEFFICIENT_MASK 0x00007000L
+#define MMEA3_IO_WR_PRI_AGE__GROUP1_AGE_COEFFICIENT_MASK 0x00038000L
+#define MMEA3_IO_WR_PRI_AGE__GROUP2_AGE_COEFFICIENT_MASK 0x001C0000L
+#define MMEA3_IO_WR_PRI_AGE__GROUP3_AGE_COEFFICIENT_MASK 0x00E00000L
+//MMEA3_IO_RD_PRI_QUEUING
+#define MMEA3_IO_RD_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT__SHIFT 0x0
+#define MMEA3_IO_RD_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT__SHIFT 0x3
+#define MMEA3_IO_RD_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT__SHIFT 0x6
+#define MMEA3_IO_RD_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT__SHIFT 0x9
+#define MMEA3_IO_RD_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT_MASK 0x00000007L
+#define MMEA3_IO_RD_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT_MASK 0x00000038L
+#define MMEA3_IO_RD_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT_MASK 0x000001C0L
+#define MMEA3_IO_RD_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT_MASK 0x00000E00L
+//MMEA3_IO_WR_PRI_QUEUING
+#define MMEA3_IO_WR_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT__SHIFT 0x0
+#define MMEA3_IO_WR_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT__SHIFT 0x3
+#define MMEA3_IO_WR_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT__SHIFT 0x6
+#define MMEA3_IO_WR_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT__SHIFT 0x9
+#define MMEA3_IO_WR_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT_MASK 0x00000007L
+#define MMEA3_IO_WR_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT_MASK 0x00000038L
+#define MMEA3_IO_WR_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT_MASK 0x000001C0L
+#define MMEA3_IO_WR_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT_MASK 0x00000E00L
+//MMEA3_IO_RD_PRI_FIXED
+#define MMEA3_IO_RD_PRI_FIXED__GROUP0_FIXED_COEFFICIENT__SHIFT 0x0
+#define MMEA3_IO_RD_PRI_FIXED__GROUP1_FIXED_COEFFICIENT__SHIFT 0x3
+#define MMEA3_IO_RD_PRI_FIXED__GROUP2_FIXED_COEFFICIENT__SHIFT 0x6
+#define MMEA3_IO_RD_PRI_FIXED__GROUP3_FIXED_COEFFICIENT__SHIFT 0x9
+#define MMEA3_IO_RD_PRI_FIXED__GROUP0_FIXED_COEFFICIENT_MASK 0x00000007L
+#define MMEA3_IO_RD_PRI_FIXED__GROUP1_FIXED_COEFFICIENT_MASK 0x00000038L
+#define MMEA3_IO_RD_PRI_FIXED__GROUP2_FIXED_COEFFICIENT_MASK 0x000001C0L
+#define MMEA3_IO_RD_PRI_FIXED__GROUP3_FIXED_COEFFICIENT_MASK 0x00000E00L
+//MMEA3_IO_WR_PRI_FIXED
+#define MMEA3_IO_WR_PRI_FIXED__GROUP0_FIXED_COEFFICIENT__SHIFT 0x0
+#define MMEA3_IO_WR_PRI_FIXED__GROUP1_FIXED_COEFFICIENT__SHIFT 0x3
+#define MMEA3_IO_WR_PRI_FIXED__GROUP2_FIXED_COEFFICIENT__SHIFT 0x6
+#define MMEA3_IO_WR_PRI_FIXED__GROUP3_FIXED_COEFFICIENT__SHIFT 0x9
+#define MMEA3_IO_WR_PRI_FIXED__GROUP0_FIXED_COEFFICIENT_MASK 0x00000007L
+#define MMEA3_IO_WR_PRI_FIXED__GROUP1_FIXED_COEFFICIENT_MASK 0x00000038L
+#define MMEA3_IO_WR_PRI_FIXED__GROUP2_FIXED_COEFFICIENT_MASK 0x000001C0L
+#define MMEA3_IO_WR_PRI_FIXED__GROUP3_FIXED_COEFFICIENT_MASK 0x00000E00L
+//MMEA3_IO_RD_PRI_URGENCY
+#define MMEA3_IO_RD_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT__SHIFT 0x0
+#define MMEA3_IO_RD_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT__SHIFT 0x3
+#define MMEA3_IO_RD_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT__SHIFT 0x6
+#define MMEA3_IO_RD_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT__SHIFT 0x9
+#define MMEA3_IO_RD_PRI_URGENCY__GROUP0_URGENCY_MODE__SHIFT 0xc
+#define MMEA3_IO_RD_PRI_URGENCY__GROUP1_URGENCY_MODE__SHIFT 0xd
+#define MMEA3_IO_RD_PRI_URGENCY__GROUP2_URGENCY_MODE__SHIFT 0xe
+#define MMEA3_IO_RD_PRI_URGENCY__GROUP3_URGENCY_MODE__SHIFT 0xf
+#define MMEA3_IO_RD_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT_MASK 0x00000007L
+#define MMEA3_IO_RD_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT_MASK 0x00000038L
+#define MMEA3_IO_RD_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT_MASK 0x000001C0L
+#define MMEA3_IO_RD_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT_MASK 0x00000E00L
+#define MMEA3_IO_RD_PRI_URGENCY__GROUP0_URGENCY_MODE_MASK 0x00001000L
+#define MMEA3_IO_RD_PRI_URGENCY__GROUP1_URGENCY_MODE_MASK 0x00002000L
+#define MMEA3_IO_RD_PRI_URGENCY__GROUP2_URGENCY_MODE_MASK 0x00004000L
+#define MMEA3_IO_RD_PRI_URGENCY__GROUP3_URGENCY_MODE_MASK 0x00008000L
+//MMEA3_IO_WR_PRI_URGENCY
+#define MMEA3_IO_WR_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT__SHIFT 0x0
+#define MMEA3_IO_WR_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT__SHIFT 0x3
+#define MMEA3_IO_WR_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT__SHIFT 0x6
+#define MMEA3_IO_WR_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT__SHIFT 0x9
+#define MMEA3_IO_WR_PRI_URGENCY__GROUP0_URGENCY_MODE__SHIFT 0xc
+#define MMEA3_IO_WR_PRI_URGENCY__GROUP1_URGENCY_MODE__SHIFT 0xd
+#define MMEA3_IO_WR_PRI_URGENCY__GROUP2_URGENCY_MODE__SHIFT 0xe
+#define MMEA3_IO_WR_PRI_URGENCY__GROUP3_URGENCY_MODE__SHIFT 0xf
+#define MMEA3_IO_WR_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT_MASK 0x00000007L
+#define MMEA3_IO_WR_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT_MASK 0x00000038L
+#define MMEA3_IO_WR_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT_MASK 0x000001C0L
+#define MMEA3_IO_WR_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT_MASK 0x00000E00L
+#define MMEA3_IO_WR_PRI_URGENCY__GROUP0_URGENCY_MODE_MASK 0x00001000L
+#define MMEA3_IO_WR_PRI_URGENCY__GROUP1_URGENCY_MODE_MASK 0x00002000L
+#define MMEA3_IO_WR_PRI_URGENCY__GROUP2_URGENCY_MODE_MASK 0x00004000L
+#define MMEA3_IO_WR_PRI_URGENCY__GROUP3_URGENCY_MODE_MASK 0x00008000L
+//MMEA3_IO_RD_PRI_URGENCY_MASKING
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID0_MASK__SHIFT 0x0
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID1_MASK__SHIFT 0x1
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID2_MASK__SHIFT 0x2
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID3_MASK__SHIFT 0x3
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID4_MASK__SHIFT 0x4
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID5_MASK__SHIFT 0x5
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID6_MASK__SHIFT 0x6
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID7_MASK__SHIFT 0x7
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID8_MASK__SHIFT 0x8
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID9_MASK__SHIFT 0x9
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID10_MASK__SHIFT 0xa
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID11_MASK__SHIFT 0xb
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID12_MASK__SHIFT 0xc
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID13_MASK__SHIFT 0xd
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID14_MASK__SHIFT 0xe
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID15_MASK__SHIFT 0xf
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID16_MASK__SHIFT 0x10
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID17_MASK__SHIFT 0x11
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID18_MASK__SHIFT 0x12
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID19_MASK__SHIFT 0x13
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID20_MASK__SHIFT 0x14
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID21_MASK__SHIFT 0x15
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID22_MASK__SHIFT 0x16
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID23_MASK__SHIFT 0x17
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID24_MASK__SHIFT 0x18
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID25_MASK__SHIFT 0x19
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID26_MASK__SHIFT 0x1a
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID27_MASK__SHIFT 0x1b
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID28_MASK__SHIFT 0x1c
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID29_MASK__SHIFT 0x1d
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID30_MASK__SHIFT 0x1e
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID31_MASK__SHIFT 0x1f
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID0_MASK_MASK 0x00000001L
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID1_MASK_MASK 0x00000002L
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID2_MASK_MASK 0x00000004L
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID3_MASK_MASK 0x00000008L
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID4_MASK_MASK 0x00000010L
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID5_MASK_MASK 0x00000020L
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID6_MASK_MASK 0x00000040L
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID7_MASK_MASK 0x00000080L
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID8_MASK_MASK 0x00000100L
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID9_MASK_MASK 0x00000200L
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID10_MASK_MASK 0x00000400L
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID11_MASK_MASK 0x00000800L
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID12_MASK_MASK 0x00001000L
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID13_MASK_MASK 0x00002000L
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID14_MASK_MASK 0x00004000L
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID15_MASK_MASK 0x00008000L
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID16_MASK_MASK 0x00010000L
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID17_MASK_MASK 0x00020000L
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID18_MASK_MASK 0x00040000L
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID19_MASK_MASK 0x00080000L
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID20_MASK_MASK 0x00100000L
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID21_MASK_MASK 0x00200000L
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID22_MASK_MASK 0x00400000L
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID23_MASK_MASK 0x00800000L
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID24_MASK_MASK 0x01000000L
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID25_MASK_MASK 0x02000000L
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID26_MASK_MASK 0x04000000L
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID27_MASK_MASK 0x08000000L
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID28_MASK_MASK 0x10000000L
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID29_MASK_MASK 0x20000000L
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID30_MASK_MASK 0x40000000L
+#define MMEA3_IO_RD_PRI_URGENCY_MASKING__CID31_MASK_MASK 0x80000000L
+//MMEA3_IO_WR_PRI_URGENCY_MASKING
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID0_MASK__SHIFT 0x0
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID1_MASK__SHIFT 0x1
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID2_MASK__SHIFT 0x2
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID3_MASK__SHIFT 0x3
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID4_MASK__SHIFT 0x4
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID5_MASK__SHIFT 0x5
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID6_MASK__SHIFT 0x6
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID7_MASK__SHIFT 0x7
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID8_MASK__SHIFT 0x8
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID9_MASK__SHIFT 0x9
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID10_MASK__SHIFT 0xa
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID11_MASK__SHIFT 0xb
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID12_MASK__SHIFT 0xc
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID13_MASK__SHIFT 0xd
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID14_MASK__SHIFT 0xe
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID15_MASK__SHIFT 0xf
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID16_MASK__SHIFT 0x10
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID17_MASK__SHIFT 0x11
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID18_MASK__SHIFT 0x12
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID19_MASK__SHIFT 0x13
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID20_MASK__SHIFT 0x14
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID21_MASK__SHIFT 0x15
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID22_MASK__SHIFT 0x16
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID23_MASK__SHIFT 0x17
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID24_MASK__SHIFT 0x18
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID25_MASK__SHIFT 0x19
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID26_MASK__SHIFT 0x1a
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID27_MASK__SHIFT 0x1b
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID28_MASK__SHIFT 0x1c
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID29_MASK__SHIFT 0x1d
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID30_MASK__SHIFT 0x1e
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID31_MASK__SHIFT 0x1f
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID0_MASK_MASK 0x00000001L
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID1_MASK_MASK 0x00000002L
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID2_MASK_MASK 0x00000004L
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID3_MASK_MASK 0x00000008L
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID4_MASK_MASK 0x00000010L
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID5_MASK_MASK 0x00000020L
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID6_MASK_MASK 0x00000040L
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID7_MASK_MASK 0x00000080L
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID8_MASK_MASK 0x00000100L
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID9_MASK_MASK 0x00000200L
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID10_MASK_MASK 0x00000400L
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID11_MASK_MASK 0x00000800L
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID12_MASK_MASK 0x00001000L
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID13_MASK_MASK 0x00002000L
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID14_MASK_MASK 0x00004000L
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID15_MASK_MASK 0x00008000L
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID16_MASK_MASK 0x00010000L
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID17_MASK_MASK 0x00020000L
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID18_MASK_MASK 0x00040000L
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID19_MASK_MASK 0x00080000L
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID20_MASK_MASK 0x00100000L
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID21_MASK_MASK 0x00200000L
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID22_MASK_MASK 0x00400000L
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID23_MASK_MASK 0x00800000L
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID24_MASK_MASK 0x01000000L
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID25_MASK_MASK 0x02000000L
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID26_MASK_MASK 0x04000000L
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID27_MASK_MASK 0x08000000L
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID28_MASK_MASK 0x10000000L
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID29_MASK_MASK 0x20000000L
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID30_MASK_MASK 0x40000000L
+#define MMEA3_IO_WR_PRI_URGENCY_MASKING__CID31_MASK_MASK 0x80000000L
+//MMEA3_IO_RD_PRI_QUANT_PRI1
+#define MMEA3_IO_RD_PRI_QUANT_PRI1__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA3_IO_RD_PRI_QUANT_PRI1__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA3_IO_RD_PRI_QUANT_PRI1__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA3_IO_RD_PRI_QUANT_PRI1__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA3_IO_RD_PRI_QUANT_PRI1__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA3_IO_RD_PRI_QUANT_PRI1__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA3_IO_RD_PRI_QUANT_PRI1__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA3_IO_RD_PRI_QUANT_PRI1__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA3_IO_RD_PRI_QUANT_PRI2
+#define MMEA3_IO_RD_PRI_QUANT_PRI2__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA3_IO_RD_PRI_QUANT_PRI2__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA3_IO_RD_PRI_QUANT_PRI2__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA3_IO_RD_PRI_QUANT_PRI2__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA3_IO_RD_PRI_QUANT_PRI2__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA3_IO_RD_PRI_QUANT_PRI2__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA3_IO_RD_PRI_QUANT_PRI2__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA3_IO_RD_PRI_QUANT_PRI2__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA3_IO_RD_PRI_QUANT_PRI3
+#define MMEA3_IO_RD_PRI_QUANT_PRI3__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA3_IO_RD_PRI_QUANT_PRI3__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA3_IO_RD_PRI_QUANT_PRI3__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA3_IO_RD_PRI_QUANT_PRI3__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA3_IO_RD_PRI_QUANT_PRI3__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA3_IO_RD_PRI_QUANT_PRI3__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA3_IO_RD_PRI_QUANT_PRI3__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA3_IO_RD_PRI_QUANT_PRI3__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA3_IO_WR_PRI_QUANT_PRI1
+#define MMEA3_IO_WR_PRI_QUANT_PRI1__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA3_IO_WR_PRI_QUANT_PRI1__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA3_IO_WR_PRI_QUANT_PRI1__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA3_IO_WR_PRI_QUANT_PRI1__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA3_IO_WR_PRI_QUANT_PRI1__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA3_IO_WR_PRI_QUANT_PRI1__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA3_IO_WR_PRI_QUANT_PRI1__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA3_IO_WR_PRI_QUANT_PRI1__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA3_IO_WR_PRI_QUANT_PRI2
+#define MMEA3_IO_WR_PRI_QUANT_PRI2__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA3_IO_WR_PRI_QUANT_PRI2__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA3_IO_WR_PRI_QUANT_PRI2__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA3_IO_WR_PRI_QUANT_PRI2__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA3_IO_WR_PRI_QUANT_PRI2__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA3_IO_WR_PRI_QUANT_PRI2__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA3_IO_WR_PRI_QUANT_PRI2__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA3_IO_WR_PRI_QUANT_PRI2__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA3_IO_WR_PRI_QUANT_PRI3
+#define MMEA3_IO_WR_PRI_QUANT_PRI3__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA3_IO_WR_PRI_QUANT_PRI3__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA3_IO_WR_PRI_QUANT_PRI3__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA3_IO_WR_PRI_QUANT_PRI3__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA3_IO_WR_PRI_QUANT_PRI3__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA3_IO_WR_PRI_QUANT_PRI3__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA3_IO_WR_PRI_QUANT_PRI3__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA3_IO_WR_PRI_QUANT_PRI3__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA3_SDP_ARB_DRAM
+#define MMEA3_SDP_ARB_DRAM__RDWR_BURST_LIMIT_CYCL__SHIFT 0x0
+#define MMEA3_SDP_ARB_DRAM__RDWR_BURST_LIMIT_DATA__SHIFT 0x8
+#define MMEA3_SDP_ARB_DRAM__EARLY_SW2RD_ON_PRI__SHIFT 0x10
+#define MMEA3_SDP_ARB_DRAM__EARLY_SW2WR_ON_PRI__SHIFT 0x11
+#define MMEA3_SDP_ARB_DRAM__EARLY_SW2RD_ON_RES__SHIFT 0x12
+#define MMEA3_SDP_ARB_DRAM__EARLY_SW2WR_ON_RES__SHIFT 0x13
+#define MMEA3_SDP_ARB_DRAM__EOB_ON_EXPIRE__SHIFT 0x14
+#define MMEA3_SDP_ARB_DRAM__DECOUPLE_RDWR_BNKSTATE__SHIFT 0x15
+#define MMEA3_SDP_ARB_DRAM__ALLOW_CHAIN_BREAKING__SHIFT 0x16
+#define MMEA3_SDP_ARB_DRAM__RDWR_BURST_LIMIT_CYCL_MASK 0x0000007FL
+#define MMEA3_SDP_ARB_DRAM__RDWR_BURST_LIMIT_DATA_MASK 0x00007F00L
+#define MMEA3_SDP_ARB_DRAM__EARLY_SW2RD_ON_PRI_MASK 0x00010000L
+#define MMEA3_SDP_ARB_DRAM__EARLY_SW2WR_ON_PRI_MASK 0x00020000L
+#define MMEA3_SDP_ARB_DRAM__EARLY_SW2RD_ON_RES_MASK 0x00040000L
+#define MMEA3_SDP_ARB_DRAM__EARLY_SW2WR_ON_RES_MASK 0x00080000L
+#define MMEA3_SDP_ARB_DRAM__EOB_ON_EXPIRE_MASK 0x00100000L
+#define MMEA3_SDP_ARB_DRAM__DECOUPLE_RDWR_BNKSTATE_MASK 0x00200000L
+#define MMEA3_SDP_ARB_DRAM__ALLOW_CHAIN_BREAKING_MASK 0x00400000L
+//MMEA3_SDP_ARB_GMI
+#define MMEA3_SDP_ARB_GMI__RDWR_BURST_LIMIT_CYCL__SHIFT 0x0
+#define MMEA3_SDP_ARB_GMI__RDWR_BURST_LIMIT_DATA__SHIFT 0x8
+#define MMEA3_SDP_ARB_GMI__EARLY_SW2RD_ON_PRI__SHIFT 0x10
+#define MMEA3_SDP_ARB_GMI__EARLY_SW2WR_ON_PRI__SHIFT 0x11
+#define MMEA3_SDP_ARB_GMI__EARLY_SW2RD_ON_RES__SHIFT 0x12
+#define MMEA3_SDP_ARB_GMI__EARLY_SW2WR_ON_RES__SHIFT 0x13
+#define MMEA3_SDP_ARB_GMI__EOB_ON_EXPIRE__SHIFT 0x14
+#define MMEA3_SDP_ARB_GMI__DECOUPLE_RDWR_BNKSTATE__SHIFT 0x15
+#define MMEA3_SDP_ARB_GMI__ALLOW_CHAIN_BREAKING__SHIFT 0x16
+#define MMEA3_SDP_ARB_GMI__RDWR_BURST_LIMIT_CYCL_MASK 0x0000007FL
+#define MMEA3_SDP_ARB_GMI__RDWR_BURST_LIMIT_DATA_MASK 0x00007F00L
+#define MMEA3_SDP_ARB_GMI__EARLY_SW2RD_ON_PRI_MASK 0x00010000L
+#define MMEA3_SDP_ARB_GMI__EARLY_SW2WR_ON_PRI_MASK 0x00020000L
+#define MMEA3_SDP_ARB_GMI__EARLY_SW2RD_ON_RES_MASK 0x00040000L
+#define MMEA3_SDP_ARB_GMI__EARLY_SW2WR_ON_RES_MASK 0x00080000L
+#define MMEA3_SDP_ARB_GMI__EOB_ON_EXPIRE_MASK 0x00100000L
+#define MMEA3_SDP_ARB_GMI__DECOUPLE_RDWR_BNKSTATE_MASK 0x00200000L
+#define MMEA3_SDP_ARB_GMI__ALLOW_CHAIN_BREAKING_MASK 0x00400000L
+//MMEA3_SDP_ARB_FINAL
+#define MMEA3_SDP_ARB_FINAL__DRAM_BURST_LIMIT__SHIFT 0x0
+#define MMEA3_SDP_ARB_FINAL__GMI_BURST_LIMIT__SHIFT 0x5
+#define MMEA3_SDP_ARB_FINAL__IO_BURST_LIMIT__SHIFT 0xa
+#define MMEA3_SDP_ARB_FINAL__BURST_LIMIT_MULTIPLIER__SHIFT 0xf
+#define MMEA3_SDP_ARB_FINAL__RDONLY_VC0__SHIFT 0x11
+#define MMEA3_SDP_ARB_FINAL__RDONLY_VC1__SHIFT 0x12
+#define MMEA3_SDP_ARB_FINAL__RDONLY_VC2__SHIFT 0x13
+#define MMEA3_SDP_ARB_FINAL__RDONLY_VC3__SHIFT 0x14
+#define MMEA3_SDP_ARB_FINAL__RDONLY_VC4__SHIFT 0x15
+#define MMEA3_SDP_ARB_FINAL__RDONLY_VC5__SHIFT 0x16
+#define MMEA3_SDP_ARB_FINAL__RDONLY_VC6__SHIFT 0x17
+#define MMEA3_SDP_ARB_FINAL__RDONLY_VC7__SHIFT 0x18
+#define MMEA3_SDP_ARB_FINAL__ERREVENT_ON_ERROR__SHIFT 0x19
+#define MMEA3_SDP_ARB_FINAL__HALTREQ_ON_ERROR__SHIFT 0x1a
+#define MMEA3_SDP_ARB_FINAL__DRAM_BURST_STRETCH__SHIFT 0x1b
+#define MMEA3_SDP_ARB_FINAL__GMI_BURST_STRETCH__SHIFT 0x1c
+#define MMEA3_SDP_ARB_FINAL__DRAM_BURST_LIMIT_MASK 0x0000001FL
+#define MMEA3_SDP_ARB_FINAL__GMI_BURST_LIMIT_MASK 0x000003E0L
+#define MMEA3_SDP_ARB_FINAL__IO_BURST_LIMIT_MASK 0x00007C00L
+#define MMEA3_SDP_ARB_FINAL__BURST_LIMIT_MULTIPLIER_MASK 0x00018000L
+#define MMEA3_SDP_ARB_FINAL__RDONLY_VC0_MASK 0x00020000L
+#define MMEA3_SDP_ARB_FINAL__RDONLY_VC1_MASK 0x00040000L
+#define MMEA3_SDP_ARB_FINAL__RDONLY_VC2_MASK 0x00080000L
+#define MMEA3_SDP_ARB_FINAL__RDONLY_VC3_MASK 0x00100000L
+#define MMEA3_SDP_ARB_FINAL__RDONLY_VC4_MASK 0x00200000L
+#define MMEA3_SDP_ARB_FINAL__RDONLY_VC5_MASK 0x00400000L
+#define MMEA3_SDP_ARB_FINAL__RDONLY_VC6_MASK 0x00800000L
+#define MMEA3_SDP_ARB_FINAL__RDONLY_VC7_MASK 0x01000000L
+#define MMEA3_SDP_ARB_FINAL__ERREVENT_ON_ERROR_MASK 0x02000000L
+#define MMEA3_SDP_ARB_FINAL__HALTREQ_ON_ERROR_MASK 0x04000000L
+#define MMEA3_SDP_ARB_FINAL__DRAM_BURST_STRETCH_MASK 0x08000000L
+#define MMEA3_SDP_ARB_FINAL__GMI_BURST_STRETCH_MASK 0x10000000L
+//MMEA3_SDP_DRAM_PRIORITY
+#define MMEA3_SDP_DRAM_PRIORITY__RD_GROUP0_PRIORITY__SHIFT 0x0
+#define MMEA3_SDP_DRAM_PRIORITY__RD_GROUP1_PRIORITY__SHIFT 0x4
+#define MMEA3_SDP_DRAM_PRIORITY__RD_GROUP2_PRIORITY__SHIFT 0x8
+#define MMEA3_SDP_DRAM_PRIORITY__RD_GROUP3_PRIORITY__SHIFT 0xc
+#define MMEA3_SDP_DRAM_PRIORITY__WR_GROUP0_PRIORITY__SHIFT 0x10
+#define MMEA3_SDP_DRAM_PRIORITY__WR_GROUP1_PRIORITY__SHIFT 0x14
+#define MMEA3_SDP_DRAM_PRIORITY__WR_GROUP2_PRIORITY__SHIFT 0x18
+#define MMEA3_SDP_DRAM_PRIORITY__WR_GROUP3_PRIORITY__SHIFT 0x1c
+#define MMEA3_SDP_DRAM_PRIORITY__RD_GROUP0_PRIORITY_MASK 0x0000000FL
+#define MMEA3_SDP_DRAM_PRIORITY__RD_GROUP1_PRIORITY_MASK 0x000000F0L
+#define MMEA3_SDP_DRAM_PRIORITY__RD_GROUP2_PRIORITY_MASK 0x00000F00L
+#define MMEA3_SDP_DRAM_PRIORITY__RD_GROUP3_PRIORITY_MASK 0x0000F000L
+#define MMEA3_SDP_DRAM_PRIORITY__WR_GROUP0_PRIORITY_MASK 0x000F0000L
+#define MMEA3_SDP_DRAM_PRIORITY__WR_GROUP1_PRIORITY_MASK 0x00F00000L
+#define MMEA3_SDP_DRAM_PRIORITY__WR_GROUP2_PRIORITY_MASK 0x0F000000L
+#define MMEA3_SDP_DRAM_PRIORITY__WR_GROUP3_PRIORITY_MASK 0xF0000000L
+//MMEA3_SDP_GMI_PRIORITY
+#define MMEA3_SDP_GMI_PRIORITY__RD_GROUP0_PRIORITY__SHIFT 0x0
+#define MMEA3_SDP_GMI_PRIORITY__RD_GROUP1_PRIORITY__SHIFT 0x4
+#define MMEA3_SDP_GMI_PRIORITY__RD_GROUP2_PRIORITY__SHIFT 0x8
+#define MMEA3_SDP_GMI_PRIORITY__RD_GROUP3_PRIORITY__SHIFT 0xc
+#define MMEA3_SDP_GMI_PRIORITY__WR_GROUP0_PRIORITY__SHIFT 0x10
+#define MMEA3_SDP_GMI_PRIORITY__WR_GROUP1_PRIORITY__SHIFT 0x14
+#define MMEA3_SDP_GMI_PRIORITY__WR_GROUP2_PRIORITY__SHIFT 0x18
+#define MMEA3_SDP_GMI_PRIORITY__WR_GROUP3_PRIORITY__SHIFT 0x1c
+#define MMEA3_SDP_GMI_PRIORITY__RD_GROUP0_PRIORITY_MASK 0x0000000FL
+#define MMEA3_SDP_GMI_PRIORITY__RD_GROUP1_PRIORITY_MASK 0x000000F0L
+#define MMEA3_SDP_GMI_PRIORITY__RD_GROUP2_PRIORITY_MASK 0x00000F00L
+#define MMEA3_SDP_GMI_PRIORITY__RD_GROUP3_PRIORITY_MASK 0x0000F000L
+#define MMEA3_SDP_GMI_PRIORITY__WR_GROUP0_PRIORITY_MASK 0x000F0000L
+#define MMEA3_SDP_GMI_PRIORITY__WR_GROUP1_PRIORITY_MASK 0x00F00000L
+#define MMEA3_SDP_GMI_PRIORITY__WR_GROUP2_PRIORITY_MASK 0x0F000000L
+#define MMEA3_SDP_GMI_PRIORITY__WR_GROUP3_PRIORITY_MASK 0xF0000000L
+//MMEA3_SDP_IO_PRIORITY
+#define MMEA3_SDP_IO_PRIORITY__RD_GROUP0_PRIORITY__SHIFT 0x0
+#define MMEA3_SDP_IO_PRIORITY__RD_GROUP1_PRIORITY__SHIFT 0x4
+#define MMEA3_SDP_IO_PRIORITY__RD_GROUP2_PRIORITY__SHIFT 0x8
+#define MMEA3_SDP_IO_PRIORITY__RD_GROUP3_PRIORITY__SHIFT 0xc
+#define MMEA3_SDP_IO_PRIORITY__WR_GROUP0_PRIORITY__SHIFT 0x10
+#define MMEA3_SDP_IO_PRIORITY__WR_GROUP1_PRIORITY__SHIFT 0x14
+#define MMEA3_SDP_IO_PRIORITY__WR_GROUP2_PRIORITY__SHIFT 0x18
+#define MMEA3_SDP_IO_PRIORITY__WR_GROUP3_PRIORITY__SHIFT 0x1c
+#define MMEA3_SDP_IO_PRIORITY__RD_GROUP0_PRIORITY_MASK 0x0000000FL
+#define MMEA3_SDP_IO_PRIORITY__RD_GROUP1_PRIORITY_MASK 0x000000F0L
+#define MMEA3_SDP_IO_PRIORITY__RD_GROUP2_PRIORITY_MASK 0x00000F00L
+#define MMEA3_SDP_IO_PRIORITY__RD_GROUP3_PRIORITY_MASK 0x0000F000L
+#define MMEA3_SDP_IO_PRIORITY__WR_GROUP0_PRIORITY_MASK 0x000F0000L
+#define MMEA3_SDP_IO_PRIORITY__WR_GROUP1_PRIORITY_MASK 0x00F00000L
+#define MMEA3_SDP_IO_PRIORITY__WR_GROUP2_PRIORITY_MASK 0x0F000000L
+#define MMEA3_SDP_IO_PRIORITY__WR_GROUP3_PRIORITY_MASK 0xF0000000L
+//MMEA3_SDP_CREDITS
+#define MMEA3_SDP_CREDITS__TAG_LIMIT__SHIFT 0x0
+#define MMEA3_SDP_CREDITS__WR_RESP_CREDITS__SHIFT 0x8
+#define MMEA3_SDP_CREDITS__RD_RESP_CREDITS__SHIFT 0x10
+#define MMEA3_SDP_CREDITS__TAG_LIMIT_MASK 0x000000FFL
+#define MMEA3_SDP_CREDITS__WR_RESP_CREDITS_MASK 0x00007F00L
+#define MMEA3_SDP_CREDITS__RD_RESP_CREDITS_MASK 0x007F0000L
+//MMEA3_SDP_TAG_RESERVE0
+#define MMEA3_SDP_TAG_RESERVE0__VC0__SHIFT 0x0
+#define MMEA3_SDP_TAG_RESERVE0__VC1__SHIFT 0x8
+#define MMEA3_SDP_TAG_RESERVE0__VC2__SHIFT 0x10
+#define MMEA3_SDP_TAG_RESERVE0__VC3__SHIFT 0x18
+#define MMEA3_SDP_TAG_RESERVE0__VC0_MASK 0x000000FFL
+#define MMEA3_SDP_TAG_RESERVE0__VC1_MASK 0x0000FF00L
+#define MMEA3_SDP_TAG_RESERVE0__VC2_MASK 0x00FF0000L
+#define MMEA3_SDP_TAG_RESERVE0__VC3_MASK 0xFF000000L
+//MMEA3_SDP_TAG_RESERVE1
+#define MMEA3_SDP_TAG_RESERVE1__VC4__SHIFT 0x0
+#define MMEA3_SDP_TAG_RESERVE1__VC5__SHIFT 0x8
+#define MMEA3_SDP_TAG_RESERVE1__VC6__SHIFT 0x10
+#define MMEA3_SDP_TAG_RESERVE1__VC7__SHIFT 0x18
+#define MMEA3_SDP_TAG_RESERVE1__VC4_MASK 0x000000FFL
+#define MMEA3_SDP_TAG_RESERVE1__VC5_MASK 0x0000FF00L
+#define MMEA3_SDP_TAG_RESERVE1__VC6_MASK 0x00FF0000L
+#define MMEA3_SDP_TAG_RESERVE1__VC7_MASK 0xFF000000L
+//MMEA3_SDP_VCC_RESERVE0
+#define MMEA3_SDP_VCC_RESERVE0__VC0_CREDITS__SHIFT 0x0
+#define MMEA3_SDP_VCC_RESERVE0__VC1_CREDITS__SHIFT 0x6
+#define MMEA3_SDP_VCC_RESERVE0__VC2_CREDITS__SHIFT 0xc
+#define MMEA3_SDP_VCC_RESERVE0__VC3_CREDITS__SHIFT 0x12
+#define MMEA3_SDP_VCC_RESERVE0__VC4_CREDITS__SHIFT 0x18
+#define MMEA3_SDP_VCC_RESERVE0__VC0_CREDITS_MASK 0x0000003FL
+#define MMEA3_SDP_VCC_RESERVE0__VC1_CREDITS_MASK 0x00000FC0L
+#define MMEA3_SDP_VCC_RESERVE0__VC2_CREDITS_MASK 0x0003F000L
+#define MMEA3_SDP_VCC_RESERVE0__VC3_CREDITS_MASK 0x00FC0000L
+#define MMEA3_SDP_VCC_RESERVE0__VC4_CREDITS_MASK 0x3F000000L
+//MMEA3_SDP_VCC_RESERVE1
+#define MMEA3_SDP_VCC_RESERVE1__VC5_CREDITS__SHIFT 0x0
+#define MMEA3_SDP_VCC_RESERVE1__VC6_CREDITS__SHIFT 0x6
+#define MMEA3_SDP_VCC_RESERVE1__VC7_CREDITS__SHIFT 0xc
+#define MMEA3_SDP_VCC_RESERVE1__DISTRIBUTE_POOL__SHIFT 0x1f
+#define MMEA3_SDP_VCC_RESERVE1__VC5_CREDITS_MASK 0x0000003FL
+#define MMEA3_SDP_VCC_RESERVE1__VC6_CREDITS_MASK 0x00000FC0L
+#define MMEA3_SDP_VCC_RESERVE1__VC7_CREDITS_MASK 0x0003F000L
+#define MMEA3_SDP_VCC_RESERVE1__DISTRIBUTE_POOL_MASK 0x80000000L
+//MMEA3_SDP_VCD_RESERVE0
+#define MMEA3_SDP_VCD_RESERVE0__VC0_CREDITS__SHIFT 0x0
+#define MMEA3_SDP_VCD_RESERVE0__VC1_CREDITS__SHIFT 0x6
+#define MMEA3_SDP_VCD_RESERVE0__VC2_CREDITS__SHIFT 0xc
+#define MMEA3_SDP_VCD_RESERVE0__VC3_CREDITS__SHIFT 0x12
+#define MMEA3_SDP_VCD_RESERVE0__VC4_CREDITS__SHIFT 0x18
+#define MMEA3_SDP_VCD_RESERVE0__VC0_CREDITS_MASK 0x0000003FL
+#define MMEA3_SDP_VCD_RESERVE0__VC1_CREDITS_MASK 0x00000FC0L
+#define MMEA3_SDP_VCD_RESERVE0__VC2_CREDITS_MASK 0x0003F000L
+#define MMEA3_SDP_VCD_RESERVE0__VC3_CREDITS_MASK 0x00FC0000L
+#define MMEA3_SDP_VCD_RESERVE0__VC4_CREDITS_MASK 0x3F000000L
+//MMEA3_SDP_VCD_RESERVE1
+#define MMEA3_SDP_VCD_RESERVE1__VC5_CREDITS__SHIFT 0x0
+#define MMEA3_SDP_VCD_RESERVE1__VC6_CREDITS__SHIFT 0x6
+#define MMEA3_SDP_VCD_RESERVE1__VC7_CREDITS__SHIFT 0xc
+#define MMEA3_SDP_VCD_RESERVE1__DISTRIBUTE_POOL__SHIFT 0x1f
+#define MMEA3_SDP_VCD_RESERVE1__VC5_CREDITS_MASK 0x0000003FL
+#define MMEA3_SDP_VCD_RESERVE1__VC6_CREDITS_MASK 0x00000FC0L
+#define MMEA3_SDP_VCD_RESERVE1__VC7_CREDITS_MASK 0x0003F000L
+#define MMEA3_SDP_VCD_RESERVE1__DISTRIBUTE_POOL_MASK 0x80000000L
+//MMEA3_SDP_REQ_CNTL
+#define MMEA3_SDP_REQ_CNTL__REQ_PASS_PW_OVERRIDE_READ__SHIFT 0x0
+#define MMEA3_SDP_REQ_CNTL__REQ_PASS_PW_OVERRIDE_WRITE__SHIFT 0x1
+#define MMEA3_SDP_REQ_CNTL__REQ_PASS_PW_OVERRIDE_ATOMIC__SHIFT 0x2
+#define MMEA3_SDP_REQ_CNTL__REQ_CHAIN_OVERRIDE_DRAM__SHIFT 0x3
+#define MMEA3_SDP_REQ_CNTL__REQ_CHAIN_OVERRIDE_GMI__SHIFT 0x4
+#define MMEA3_SDP_REQ_CNTL__INNER_DOMAIN_MODE__SHIFT 0x5
+#define MMEA3_SDP_REQ_CNTL__REQ_BLOCK_LEVEL_READ__SHIFT 0x6
+#define MMEA3_SDP_REQ_CNTL__REQ_BLOCK_LEVEL_WRITE__SHIFT 0x8
+#define MMEA3_SDP_REQ_CNTL__REQ_BLOCK_LEVEL_ATOMIC__SHIFT 0xa
+#define MMEA3_SDP_REQ_CNTL__REQ_PASS_PW_OVERRIDE_READ_MASK 0x00000001L
+#define MMEA3_SDP_REQ_CNTL__REQ_PASS_PW_OVERRIDE_WRITE_MASK 0x00000002L
+#define MMEA3_SDP_REQ_CNTL__REQ_PASS_PW_OVERRIDE_ATOMIC_MASK 0x00000004L
+#define MMEA3_SDP_REQ_CNTL__REQ_CHAIN_OVERRIDE_DRAM_MASK 0x00000008L
+#define MMEA3_SDP_REQ_CNTL__REQ_CHAIN_OVERRIDE_GMI_MASK 0x00000010L
+#define MMEA3_SDP_REQ_CNTL__INNER_DOMAIN_MODE_MASK 0x00000020L
+#define MMEA3_SDP_REQ_CNTL__REQ_BLOCK_LEVEL_READ_MASK 0x000000C0L
+#define MMEA3_SDP_REQ_CNTL__REQ_BLOCK_LEVEL_WRITE_MASK 0x00000300L
+#define MMEA3_SDP_REQ_CNTL__REQ_BLOCK_LEVEL_ATOMIC_MASK 0x00000C00L
+//MMEA3_MISC
+#define MMEA3_MISC__RELATIVE_PRI_IN_DRAM_RD_ARB__SHIFT 0x0
+#define MMEA3_MISC__RELATIVE_PRI_IN_DRAM_WR_ARB__SHIFT 0x1
+#define MMEA3_MISC__RELATIVE_PRI_IN_GMI_RD_ARB__SHIFT 0x2
+#define MMEA3_MISC__RELATIVE_PRI_IN_GMI_WR_ARB__SHIFT 0x3
+#define MMEA3_MISC__RELATIVE_PRI_IN_IO_RD_ARB__SHIFT 0x4
+#define MMEA3_MISC__RELATIVE_PRI_IN_IO_WR_ARB__SHIFT 0x5
+#define MMEA3_MISC__EARLYWRRET_ENABLE_VC0__SHIFT 0x6
+#define MMEA3_MISC__EARLYWRRET_ENABLE_VC1__SHIFT 0x7
+#define MMEA3_MISC__EARLYWRRET_ENABLE_VC2__SHIFT 0x8
+#define MMEA3_MISC__EARLYWRRET_ENABLE_VC3__SHIFT 0x9
+#define MMEA3_MISC__EARLYWRRET_ENABLE_VC4__SHIFT 0xa
+#define MMEA3_MISC__EARLYWRRET_ENABLE_VC5__SHIFT 0xb
+#define MMEA3_MISC__EARLYWRRET_ENABLE_VC6__SHIFT 0xc
+#define MMEA3_MISC__EARLYWRRET_ENABLE_VC7__SHIFT 0xd
+#define MMEA3_MISC__EARLY_SDP_ORIGDATA__SHIFT 0xe
+#define MMEA3_MISC__LINKMGR_DYNAMIC_MODE__SHIFT 0xf
+#define MMEA3_MISC__LINKMGR_HALT_THRESHOLD__SHIFT 0x11
+#define MMEA3_MISC__LINKMGR_RECONNECT_DELAY__SHIFT 0x13
+#define MMEA3_MISC__LINKMGR_IDLE_THRESHOLD__SHIFT 0x15
+#define MMEA3_MISC__FAVOUR_MIDCHAIN_CS_IN_DRAM_ARB__SHIFT 0x1a
+#define MMEA3_MISC__FAVOUR_MIDCHAIN_CS_IN_GMI_ARB__SHIFT 0x1b
+#define MMEA3_MISC__FAVOUR_LAST_CS_IN_DRAM_ARB__SHIFT 0x1c
+#define MMEA3_MISC__FAVOUR_LAST_CS_IN_GMI_ARB__SHIFT 0x1d
+#define MMEA3_MISC__SWITCH_CS_ON_W2R_IN_DRAM_ARB__SHIFT 0x1e
+#define MMEA3_MISC__SWITCH_CS_ON_W2R_IN_GMI_ARB__SHIFT 0x1f
+#define MMEA3_MISC__RELATIVE_PRI_IN_DRAM_RD_ARB_MASK 0x00000001L
+#define MMEA3_MISC__RELATIVE_PRI_IN_DRAM_WR_ARB_MASK 0x00000002L
+#define MMEA3_MISC__RELATIVE_PRI_IN_GMI_RD_ARB_MASK 0x00000004L
+#define MMEA3_MISC__RELATIVE_PRI_IN_GMI_WR_ARB_MASK 0x00000008L
+#define MMEA3_MISC__RELATIVE_PRI_IN_IO_RD_ARB_MASK 0x00000010L
+#define MMEA3_MISC__RELATIVE_PRI_IN_IO_WR_ARB_MASK 0x00000020L
+#define MMEA3_MISC__EARLYWRRET_ENABLE_VC0_MASK 0x00000040L
+#define MMEA3_MISC__EARLYWRRET_ENABLE_VC1_MASK 0x00000080L
+#define MMEA3_MISC__EARLYWRRET_ENABLE_VC2_MASK 0x00000100L
+#define MMEA3_MISC__EARLYWRRET_ENABLE_VC3_MASK 0x00000200L
+#define MMEA3_MISC__EARLYWRRET_ENABLE_VC4_MASK 0x00000400L
+#define MMEA3_MISC__EARLYWRRET_ENABLE_VC5_MASK 0x00000800L
+#define MMEA3_MISC__EARLYWRRET_ENABLE_VC6_MASK 0x00001000L
+#define MMEA3_MISC__EARLYWRRET_ENABLE_VC7_MASK 0x00002000L
+#define MMEA3_MISC__EARLY_SDP_ORIGDATA_MASK 0x00004000L
+#define MMEA3_MISC__LINKMGR_DYNAMIC_MODE_MASK 0x00018000L
+#define MMEA3_MISC__LINKMGR_HALT_THRESHOLD_MASK 0x00060000L
+#define MMEA3_MISC__LINKMGR_RECONNECT_DELAY_MASK 0x00180000L
+#define MMEA3_MISC__LINKMGR_IDLE_THRESHOLD_MASK 0x03E00000L
+#define MMEA3_MISC__FAVOUR_MIDCHAIN_CS_IN_DRAM_ARB_MASK 0x04000000L
+#define MMEA3_MISC__FAVOUR_MIDCHAIN_CS_IN_GMI_ARB_MASK 0x08000000L
+#define MMEA3_MISC__FAVOUR_LAST_CS_IN_DRAM_ARB_MASK 0x10000000L
+#define MMEA3_MISC__FAVOUR_LAST_CS_IN_GMI_ARB_MASK 0x20000000L
+#define MMEA3_MISC__SWITCH_CS_ON_W2R_IN_DRAM_ARB_MASK 0x40000000L
+#define MMEA3_MISC__SWITCH_CS_ON_W2R_IN_GMI_ARB_MASK 0x80000000L
+//MMEA3_LATENCY_SAMPLING
+#define MMEA3_LATENCY_SAMPLING__SAMPLER0_DRAM__SHIFT 0x0
+#define MMEA3_LATENCY_SAMPLING__SAMPLER1_DRAM__SHIFT 0x1
+#define MMEA3_LATENCY_SAMPLING__SAMPLER0_GMI__SHIFT 0x2
+#define MMEA3_LATENCY_SAMPLING__SAMPLER1_GMI__SHIFT 0x3
+#define MMEA3_LATENCY_SAMPLING__SAMPLER0_IO__SHIFT 0x4
+#define MMEA3_LATENCY_SAMPLING__SAMPLER1_IO__SHIFT 0x5
+#define MMEA3_LATENCY_SAMPLING__SAMPLER0_READ__SHIFT 0x6
+#define MMEA3_LATENCY_SAMPLING__SAMPLER1_READ__SHIFT 0x7
+#define MMEA3_LATENCY_SAMPLING__SAMPLER0_WRITE__SHIFT 0x8
+#define MMEA3_LATENCY_SAMPLING__SAMPLER1_WRITE__SHIFT 0x9
+#define MMEA3_LATENCY_SAMPLING__SAMPLER0_ATOMIC_RET__SHIFT 0xa
+#define MMEA3_LATENCY_SAMPLING__SAMPLER1_ATOMIC_RET__SHIFT 0xb
+#define MMEA3_LATENCY_SAMPLING__SAMPLER0_ATOMIC_NORET__SHIFT 0xc
+#define MMEA3_LATENCY_SAMPLING__SAMPLER1_ATOMIC_NORET__SHIFT 0xd
+#define MMEA3_LATENCY_SAMPLING__SAMPLER0_VC__SHIFT 0xe
+#define MMEA3_LATENCY_SAMPLING__SAMPLER1_VC__SHIFT 0x16
+#define MMEA3_LATENCY_SAMPLING__SAMPLER0_DRAM_MASK 0x00000001L
+#define MMEA3_LATENCY_SAMPLING__SAMPLER1_DRAM_MASK 0x00000002L
+#define MMEA3_LATENCY_SAMPLING__SAMPLER0_GMI_MASK 0x00000004L
+#define MMEA3_LATENCY_SAMPLING__SAMPLER1_GMI_MASK 0x00000008L
+#define MMEA3_LATENCY_SAMPLING__SAMPLER0_IO_MASK 0x00000010L
+#define MMEA3_LATENCY_SAMPLING__SAMPLER1_IO_MASK 0x00000020L
+#define MMEA3_LATENCY_SAMPLING__SAMPLER0_READ_MASK 0x00000040L
+#define MMEA3_LATENCY_SAMPLING__SAMPLER1_READ_MASK 0x00000080L
+#define MMEA3_LATENCY_SAMPLING__SAMPLER0_WRITE_MASK 0x00000100L
+#define MMEA3_LATENCY_SAMPLING__SAMPLER1_WRITE_MASK 0x00000200L
+#define MMEA3_LATENCY_SAMPLING__SAMPLER0_ATOMIC_RET_MASK 0x00000400L
+#define MMEA3_LATENCY_SAMPLING__SAMPLER1_ATOMIC_RET_MASK 0x00000800L
+#define MMEA3_LATENCY_SAMPLING__SAMPLER0_ATOMIC_NORET_MASK 0x00001000L
+#define MMEA3_LATENCY_SAMPLING__SAMPLER1_ATOMIC_NORET_MASK 0x00002000L
+#define MMEA3_LATENCY_SAMPLING__SAMPLER0_VC_MASK 0x003FC000L
+#define MMEA3_LATENCY_SAMPLING__SAMPLER1_VC_MASK 0x3FC00000L
+//MMEA3_PERFCOUNTER_LO
+#define MMEA3_PERFCOUNTER_LO__COUNTER_LO__SHIFT 0x0
+#define MMEA3_PERFCOUNTER_LO__COUNTER_LO_MASK 0xFFFFFFFFL
+//MMEA3_PERFCOUNTER_HI
+#define MMEA3_PERFCOUNTER_HI__COUNTER_HI__SHIFT 0x0
+#define MMEA3_PERFCOUNTER_HI__COMPARE_VALUE__SHIFT 0x10
+#define MMEA3_PERFCOUNTER_HI__COUNTER_HI_MASK 0x0000FFFFL
+#define MMEA3_PERFCOUNTER_HI__COMPARE_VALUE_MASK 0xFFFF0000L
+//MMEA3_PERFCOUNTER0_CFG
+#define MMEA3_PERFCOUNTER0_CFG__PERF_SEL__SHIFT 0x0
+#define MMEA3_PERFCOUNTER0_CFG__PERF_SEL_END__SHIFT 0x8
+#define MMEA3_PERFCOUNTER0_CFG__PERF_MODE__SHIFT 0x18
+#define MMEA3_PERFCOUNTER0_CFG__ENABLE__SHIFT 0x1c
+#define MMEA3_PERFCOUNTER0_CFG__CLEAR__SHIFT 0x1d
+#define MMEA3_PERFCOUNTER0_CFG__PERF_SEL_MASK 0x000000FFL
+#define MMEA3_PERFCOUNTER0_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define MMEA3_PERFCOUNTER0_CFG__PERF_MODE_MASK 0x0F000000L
+#define MMEA3_PERFCOUNTER0_CFG__ENABLE_MASK 0x10000000L
+#define MMEA3_PERFCOUNTER0_CFG__CLEAR_MASK 0x20000000L
+//MMEA3_PERFCOUNTER1_CFG
+#define MMEA3_PERFCOUNTER1_CFG__PERF_SEL__SHIFT 0x0
+#define MMEA3_PERFCOUNTER1_CFG__PERF_SEL_END__SHIFT 0x8
+#define MMEA3_PERFCOUNTER1_CFG__PERF_MODE__SHIFT 0x18
+#define MMEA3_PERFCOUNTER1_CFG__ENABLE__SHIFT 0x1c
+#define MMEA3_PERFCOUNTER1_CFG__CLEAR__SHIFT 0x1d
+#define MMEA3_PERFCOUNTER1_CFG__PERF_SEL_MASK 0x000000FFL
+#define MMEA3_PERFCOUNTER1_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define MMEA3_PERFCOUNTER1_CFG__PERF_MODE_MASK 0x0F000000L
+#define MMEA3_PERFCOUNTER1_CFG__ENABLE_MASK 0x10000000L
+#define MMEA3_PERFCOUNTER1_CFG__CLEAR_MASK 0x20000000L
+//MMEA3_PERFCOUNTER_RSLT_CNTL
+#define MMEA3_PERFCOUNTER_RSLT_CNTL__PERF_COUNTER_SELECT__SHIFT 0x0
+#define MMEA3_PERFCOUNTER_RSLT_CNTL__START_TRIGGER__SHIFT 0x8
+#define MMEA3_PERFCOUNTER_RSLT_CNTL__STOP_TRIGGER__SHIFT 0x10
+#define MMEA3_PERFCOUNTER_RSLT_CNTL__ENABLE_ANY__SHIFT 0x18
+#define MMEA3_PERFCOUNTER_RSLT_CNTL__CLEAR_ALL__SHIFT 0x19
+#define MMEA3_PERFCOUNTER_RSLT_CNTL__STOP_ALL_ON_SATURATE__SHIFT 0x1a
+#define MMEA3_PERFCOUNTER_RSLT_CNTL__PERF_COUNTER_SELECT_MASK 0x0000000FL
+#define MMEA3_PERFCOUNTER_RSLT_CNTL__START_TRIGGER_MASK 0x0000FF00L
+#define MMEA3_PERFCOUNTER_RSLT_CNTL__STOP_TRIGGER_MASK 0x00FF0000L
+#define MMEA3_PERFCOUNTER_RSLT_CNTL__ENABLE_ANY_MASK 0x01000000L
+#define MMEA3_PERFCOUNTER_RSLT_CNTL__CLEAR_ALL_MASK 0x02000000L
+#define MMEA3_PERFCOUNTER_RSLT_CNTL__STOP_ALL_ON_SATURATE_MASK 0x04000000L
+//MMEA3_DSM_CNTL
+#define MMEA3_DSM_CNTL__DRAMRD_CMDMEM_DSM_IRRITATOR_DATA__SHIFT 0x0
+#define MMEA3_DSM_CNTL__DRAMRD_CMDMEM_ENABLE_SINGLE_WRITE__SHIFT 0x2
+#define MMEA3_DSM_CNTL__DRAMWR_CMDMEM_DSM_IRRITATOR_DATA__SHIFT 0x3
+#define MMEA3_DSM_CNTL__DRAMWR_CMDMEM_ENABLE_SINGLE_WRITE__SHIFT 0x5
+#define MMEA3_DSM_CNTL__DRAMWR_DATAMEM_DSM_IRRITATOR_DATA__SHIFT 0x6
+#define MMEA3_DSM_CNTL__DRAMWR_DATAMEM_ENABLE_SINGLE_WRITE__SHIFT 0x8
+#define MMEA3_DSM_CNTL__RRET_TAGMEM_DSM_IRRITATOR_DATA__SHIFT 0x9
+#define MMEA3_DSM_CNTL__RRET_TAGMEM_ENABLE_SINGLE_WRITE__SHIFT 0xb
+#define MMEA3_DSM_CNTL__WRET_TAGMEM_DSM_IRRITATOR_DATA__SHIFT 0xc
+#define MMEA3_DSM_CNTL__WRET_TAGMEM_ENABLE_SINGLE_WRITE__SHIFT 0xe
+#define MMEA3_DSM_CNTL__GMIRD_CMDMEM_DSM_IRRITATOR_DATA__SHIFT 0xf
+#define MMEA3_DSM_CNTL__GMIRD_CMDMEM_ENABLE_SINGLE_WRITE__SHIFT 0x11
+#define MMEA3_DSM_CNTL__GMIWR_CMDMEM_DSM_IRRITATOR_DATA__SHIFT 0x12
+#define MMEA3_DSM_CNTL__GMIWR_CMDMEM_ENABLE_SINGLE_WRITE__SHIFT 0x14
+#define MMEA3_DSM_CNTL__GMIWR_DATAMEM_DSM_IRRITATOR_DATA__SHIFT 0x15
+#define MMEA3_DSM_CNTL__GMIWR_DATAMEM_ENABLE_SINGLE_WRITE__SHIFT 0x17
+#define MMEA3_DSM_CNTL__DRAMRD_CMDMEM_DSM_IRRITATOR_DATA_MASK 0x00000003L
+#define MMEA3_DSM_CNTL__DRAMRD_CMDMEM_ENABLE_SINGLE_WRITE_MASK 0x00000004L
+#define MMEA3_DSM_CNTL__DRAMWR_CMDMEM_DSM_IRRITATOR_DATA_MASK 0x00000018L
+#define MMEA3_DSM_CNTL__DRAMWR_CMDMEM_ENABLE_SINGLE_WRITE_MASK 0x00000020L
+#define MMEA3_DSM_CNTL__DRAMWR_DATAMEM_DSM_IRRITATOR_DATA_MASK 0x000000C0L
+#define MMEA3_DSM_CNTL__DRAMWR_DATAMEM_ENABLE_SINGLE_WRITE_MASK 0x00000100L
+#define MMEA3_DSM_CNTL__RRET_TAGMEM_DSM_IRRITATOR_DATA_MASK 0x00000600L
+#define MMEA3_DSM_CNTL__RRET_TAGMEM_ENABLE_SINGLE_WRITE_MASK 0x00000800L
+#define MMEA3_DSM_CNTL__WRET_TAGMEM_DSM_IRRITATOR_DATA_MASK 0x00003000L
+#define MMEA3_DSM_CNTL__WRET_TAGMEM_ENABLE_SINGLE_WRITE_MASK 0x00004000L
+#define MMEA3_DSM_CNTL__GMIRD_CMDMEM_DSM_IRRITATOR_DATA_MASK 0x00018000L
+#define MMEA3_DSM_CNTL__GMIRD_CMDMEM_ENABLE_SINGLE_WRITE_MASK 0x00020000L
+#define MMEA3_DSM_CNTL__GMIWR_CMDMEM_DSM_IRRITATOR_DATA_MASK 0x000C0000L
+#define MMEA3_DSM_CNTL__GMIWR_CMDMEM_ENABLE_SINGLE_WRITE_MASK 0x00100000L
+#define MMEA3_DSM_CNTL__GMIWR_DATAMEM_DSM_IRRITATOR_DATA_MASK 0x00600000L
+#define MMEA3_DSM_CNTL__GMIWR_DATAMEM_ENABLE_SINGLE_WRITE_MASK 0x00800000L
+//MMEA3_DSM_CNTLA
+#define MMEA3_DSM_CNTLA__DRAMRD_PAGEMEM_DSM_IRRITATOR_DATA__SHIFT 0x0
+#define MMEA3_DSM_CNTLA__DRAMRD_PAGEMEM_ENABLE_SINGLE_WRITE__SHIFT 0x2
+#define MMEA3_DSM_CNTLA__DRAMWR_PAGEMEM_DSM_IRRITATOR_DATA__SHIFT 0x3
+#define MMEA3_DSM_CNTLA__DRAMWR_PAGEMEM_ENABLE_SINGLE_WRITE__SHIFT 0x5
+#define MMEA3_DSM_CNTLA__IORD_CMDMEM_DSM_IRRITATOR_DATA__SHIFT 0x6
+#define MMEA3_DSM_CNTLA__IORD_CMDMEM_ENABLE_SINGLE_WRITE__SHIFT 0x8
+#define MMEA3_DSM_CNTLA__IOWR_CMDMEM_DSM_IRRITATOR_DATA__SHIFT 0x9
+#define MMEA3_DSM_CNTLA__IOWR_CMDMEM_ENABLE_SINGLE_WRITE__SHIFT 0xb
+#define MMEA3_DSM_CNTLA__IOWR_DATAMEM_DSM_IRRITATOR_DATA__SHIFT 0xc
+#define MMEA3_DSM_CNTLA__IOWR_DATAMEM_ENABLE_SINGLE_WRITE__SHIFT 0xe
+#define MMEA3_DSM_CNTLA__GMIRD_PAGEMEM_DSM_IRRITATOR_DATA__SHIFT 0xf
+#define MMEA3_DSM_CNTLA__GMIRD_PAGEMEM_ENABLE_SINGLE_WRITE__SHIFT 0x11
+#define MMEA3_DSM_CNTLA__GMIWR_PAGEMEM_DSM_IRRITATOR_DATA__SHIFT 0x12
+#define MMEA3_DSM_CNTLA__GMIWR_PAGEMEM_ENABLE_SINGLE_WRITE__SHIFT 0x14
+#define MMEA3_DSM_CNTLA__DRAMRD_PAGEMEM_DSM_IRRITATOR_DATA_MASK 0x00000003L
+#define MMEA3_DSM_CNTLA__DRAMRD_PAGEMEM_ENABLE_SINGLE_WRITE_MASK 0x00000004L
+#define MMEA3_DSM_CNTLA__DRAMWR_PAGEMEM_DSM_IRRITATOR_DATA_MASK 0x00000018L
+#define MMEA3_DSM_CNTLA__DRAMWR_PAGEMEM_ENABLE_SINGLE_WRITE_MASK 0x00000020L
+#define MMEA3_DSM_CNTLA__IORD_CMDMEM_DSM_IRRITATOR_DATA_MASK 0x000000C0L
+#define MMEA3_DSM_CNTLA__IORD_CMDMEM_ENABLE_SINGLE_WRITE_MASK 0x00000100L
+#define MMEA3_DSM_CNTLA__IOWR_CMDMEM_DSM_IRRITATOR_DATA_MASK 0x00000600L
+#define MMEA3_DSM_CNTLA__IOWR_CMDMEM_ENABLE_SINGLE_WRITE_MASK 0x00000800L
+#define MMEA3_DSM_CNTLA__IOWR_DATAMEM_DSM_IRRITATOR_DATA_MASK 0x00003000L
+#define MMEA3_DSM_CNTLA__IOWR_DATAMEM_ENABLE_SINGLE_WRITE_MASK 0x00004000L
+#define MMEA3_DSM_CNTLA__GMIRD_PAGEMEM_DSM_IRRITATOR_DATA_MASK 0x00018000L
+#define MMEA3_DSM_CNTLA__GMIRD_PAGEMEM_ENABLE_SINGLE_WRITE_MASK 0x00020000L
+#define MMEA3_DSM_CNTLA__GMIWR_PAGEMEM_DSM_IRRITATOR_DATA_MASK 0x000C0000L
+#define MMEA3_DSM_CNTLA__GMIWR_PAGEMEM_ENABLE_SINGLE_WRITE_MASK 0x00100000L
+//MMEA3_DSM_CNTLB
+#define MMEA3_DSM_CNTLB__MAM_D0MEM_DSM_IRRITATOR_DATA__SHIFT 0x0
+#define MMEA3_DSM_CNTLB__MAM_D0MEM_ENABLE_SINGLE_WRITE__SHIFT 0x2
+#define MMEA3_DSM_CNTLB__MAM_D1MEM_DSM_IRRITATOR_DATA__SHIFT 0x3
+#define MMEA3_DSM_CNTLB__MAM_D1MEM_ENABLE_SINGLE_WRITE__SHIFT 0x5
+#define MMEA3_DSM_CNTLB__MAM_D2MEM_DSM_IRRITATOR_DATA__SHIFT 0x6
+#define MMEA3_DSM_CNTLB__MAM_D2MEM_ENABLE_SINGLE_WRITE__SHIFT 0x8
+#define MMEA3_DSM_CNTLB__MAM_D3MEM_DSM_IRRITATOR_DATA__SHIFT 0x9
+#define MMEA3_DSM_CNTLB__MAM_D3MEM_ENABLE_SINGLE_WRITE__SHIFT 0xb
+#define MMEA3_DSM_CNTLB__MAM_D0MEM_DSM_IRRITATOR_DATA_MASK 0x00000003L
+#define MMEA3_DSM_CNTLB__MAM_D0MEM_ENABLE_SINGLE_WRITE_MASK 0x00000004L
+#define MMEA3_DSM_CNTLB__MAM_D1MEM_DSM_IRRITATOR_DATA_MASK 0x00000018L
+#define MMEA3_DSM_CNTLB__MAM_D1MEM_ENABLE_SINGLE_WRITE_MASK 0x00000020L
+#define MMEA3_DSM_CNTLB__MAM_D2MEM_DSM_IRRITATOR_DATA_MASK 0x000000C0L
+#define MMEA3_DSM_CNTLB__MAM_D2MEM_ENABLE_SINGLE_WRITE_MASK 0x00000100L
+#define MMEA3_DSM_CNTLB__MAM_D3MEM_DSM_IRRITATOR_DATA_MASK 0x00000600L
+#define MMEA3_DSM_CNTLB__MAM_D3MEM_ENABLE_SINGLE_WRITE_MASK 0x00000800L
+//MMEA3_DSM_CNTL2
+#define MMEA3_DSM_CNTL2__DRAMRD_CMDMEM_ENABLE_ERROR_INJECT__SHIFT 0x0
+#define MMEA3_DSM_CNTL2__DRAMRD_CMDMEM_SELECT_INJECT_DELAY__SHIFT 0x2
+#define MMEA3_DSM_CNTL2__DRAMWR_CMDMEM_ENABLE_ERROR_INJECT__SHIFT 0x3
+#define MMEA3_DSM_CNTL2__DRAMWR_CMDMEM_SELECT_INJECT_DELAY__SHIFT 0x5
+#define MMEA3_DSM_CNTL2__DRAMWR_DATAMEM_ENABLE_ERROR_INJECT__SHIFT 0x6
+#define MMEA3_DSM_CNTL2__DRAMWR_DATAMEM_SELECT_INJECT_DELAY__SHIFT 0x8
+#define MMEA3_DSM_CNTL2__RRET_TAGMEM_ENABLE_ERROR_INJECT__SHIFT 0x9
+#define MMEA3_DSM_CNTL2__RRET_TAGMEM_SELECT_INJECT_DELAY__SHIFT 0xb
+#define MMEA3_DSM_CNTL2__WRET_TAGMEM_ENABLE_ERROR_INJECT__SHIFT 0xc
+#define MMEA3_DSM_CNTL2__WRET_TAGMEM_SELECT_INJECT_DELAY__SHIFT 0xe
+#define MMEA3_DSM_CNTL2__GMIRD_CMDMEM_ENABLE_ERROR_INJECT__SHIFT 0xf
+#define MMEA3_DSM_CNTL2__GMIRD_CMDMEM_SELECT_INJECT_DELAY__SHIFT 0x11
+#define MMEA3_DSM_CNTL2__GMIWR_CMDMEM_ENABLE_ERROR_INJECT__SHIFT 0x12
+#define MMEA3_DSM_CNTL2__GMIWR_CMDMEM_SELECT_INJECT_DELAY__SHIFT 0x14
+#define MMEA3_DSM_CNTL2__GMIWR_DATAMEM_ENABLE_ERROR_INJECT__SHIFT 0x15
+#define MMEA3_DSM_CNTL2__GMIWR_DATAMEM_SELECT_INJECT_DELAY__SHIFT 0x17
+#define MMEA3_DSM_CNTL2__INJECT_DELAY__SHIFT 0x1a
+#define MMEA3_DSM_CNTL2__DRAMRD_CMDMEM_ENABLE_ERROR_INJECT_MASK 0x00000003L
+#define MMEA3_DSM_CNTL2__DRAMRD_CMDMEM_SELECT_INJECT_DELAY_MASK 0x00000004L
+#define MMEA3_DSM_CNTL2__DRAMWR_CMDMEM_ENABLE_ERROR_INJECT_MASK 0x00000018L
+#define MMEA3_DSM_CNTL2__DRAMWR_CMDMEM_SELECT_INJECT_DELAY_MASK 0x00000020L
+#define MMEA3_DSM_CNTL2__DRAMWR_DATAMEM_ENABLE_ERROR_INJECT_MASK 0x000000C0L
+#define MMEA3_DSM_CNTL2__DRAMWR_DATAMEM_SELECT_INJECT_DELAY_MASK 0x00000100L
+#define MMEA3_DSM_CNTL2__RRET_TAGMEM_ENABLE_ERROR_INJECT_MASK 0x00000600L
+#define MMEA3_DSM_CNTL2__RRET_TAGMEM_SELECT_INJECT_DELAY_MASK 0x00000800L
+#define MMEA3_DSM_CNTL2__WRET_TAGMEM_ENABLE_ERROR_INJECT_MASK 0x00003000L
+#define MMEA3_DSM_CNTL2__WRET_TAGMEM_SELECT_INJECT_DELAY_MASK 0x00004000L
+#define MMEA3_DSM_CNTL2__GMIRD_CMDMEM_ENABLE_ERROR_INJECT_MASK 0x00018000L
+#define MMEA3_DSM_CNTL2__GMIRD_CMDMEM_SELECT_INJECT_DELAY_MASK 0x00020000L
+#define MMEA3_DSM_CNTL2__GMIWR_CMDMEM_ENABLE_ERROR_INJECT_MASK 0x000C0000L
+#define MMEA3_DSM_CNTL2__GMIWR_CMDMEM_SELECT_INJECT_DELAY_MASK 0x00100000L
+#define MMEA3_DSM_CNTL2__GMIWR_DATAMEM_ENABLE_ERROR_INJECT_MASK 0x00600000L
+#define MMEA3_DSM_CNTL2__GMIWR_DATAMEM_SELECT_INJECT_DELAY_MASK 0x00800000L
+#define MMEA3_DSM_CNTL2__INJECT_DELAY_MASK 0xFC000000L
+//MMEA3_DSM_CNTL2A
+#define MMEA3_DSM_CNTL2A__DRAMRD_PAGEMEM_ENABLE_ERROR_INJECT__SHIFT 0x0
+#define MMEA3_DSM_CNTL2A__DRAMRD_PAGEMEM_SELECT_INJECT_DELAY__SHIFT 0x2
+#define MMEA3_DSM_CNTL2A__DRAMWR_PAGEMEM_ENABLE_ERROR_INJECT__SHIFT 0x3
+#define MMEA3_DSM_CNTL2A__DRAMWR_PAGEMEM_SELECT_INJECT_DELAY__SHIFT 0x5
+#define MMEA3_DSM_CNTL2A__IORD_CMDMEM_ENABLE_ERROR_INJECT__SHIFT 0x6
+#define MMEA3_DSM_CNTL2A__IORD_CMDMEM_SELECT_INJECT_DELAY__SHIFT 0x8
+#define MMEA3_DSM_CNTL2A__IOWR_CMDMEM_ENABLE_ERROR_INJECT__SHIFT 0x9
+#define MMEA3_DSM_CNTL2A__IOWR_CMDMEM_SELECT_INJECT_DELAY__SHIFT 0xb
+#define MMEA3_DSM_CNTL2A__IOWR_DATAMEM_ENABLE_ERROR_INJECT__SHIFT 0xc
+#define MMEA3_DSM_CNTL2A__IOWR_DATAMEM_SELECT_INJECT_DELAY__SHIFT 0xe
+#define MMEA3_DSM_CNTL2A__GMIRD_PAGEMEM_ENABLE_ERROR_INJECT__SHIFT 0xf
+#define MMEA3_DSM_CNTL2A__GMIRD_PAGEMEM_SELECT_INJECT_DELAY__SHIFT 0x11
+#define MMEA3_DSM_CNTL2A__GMIWR_PAGEMEM_ENABLE_ERROR_INJECT__SHIFT 0x12
+#define MMEA3_DSM_CNTL2A__GMIWR_PAGEMEM_SELECT_INJECT_DELAY__SHIFT 0x14
+#define MMEA3_DSM_CNTL2A__DRAMRD_PAGEMEM_ENABLE_ERROR_INJECT_MASK 0x00000003L
+#define MMEA3_DSM_CNTL2A__DRAMRD_PAGEMEM_SELECT_INJECT_DELAY_MASK 0x00000004L
+#define MMEA3_DSM_CNTL2A__DRAMWR_PAGEMEM_ENABLE_ERROR_INJECT_MASK 0x00000018L
+#define MMEA3_DSM_CNTL2A__DRAMWR_PAGEMEM_SELECT_INJECT_DELAY_MASK 0x00000020L
+#define MMEA3_DSM_CNTL2A__IORD_CMDMEM_ENABLE_ERROR_INJECT_MASK 0x000000C0L
+#define MMEA3_DSM_CNTL2A__IORD_CMDMEM_SELECT_INJECT_DELAY_MASK 0x00000100L
+#define MMEA3_DSM_CNTL2A__IOWR_CMDMEM_ENABLE_ERROR_INJECT_MASK 0x00000600L
+#define MMEA3_DSM_CNTL2A__IOWR_CMDMEM_SELECT_INJECT_DELAY_MASK 0x00000800L
+#define MMEA3_DSM_CNTL2A__IOWR_DATAMEM_ENABLE_ERROR_INJECT_MASK 0x00003000L
+#define MMEA3_DSM_CNTL2A__IOWR_DATAMEM_SELECT_INJECT_DELAY_MASK 0x00004000L
+#define MMEA3_DSM_CNTL2A__GMIRD_PAGEMEM_ENABLE_ERROR_INJECT_MASK 0x00018000L
+#define MMEA3_DSM_CNTL2A__GMIRD_PAGEMEM_SELECT_INJECT_DELAY_MASK 0x00020000L
+#define MMEA3_DSM_CNTL2A__GMIWR_PAGEMEM_ENABLE_ERROR_INJECT_MASK 0x000C0000L
+#define MMEA3_DSM_CNTL2A__GMIWR_PAGEMEM_SELECT_INJECT_DELAY_MASK 0x00100000L
+//MMEA3_DSM_CNTL2B
+#define MMEA3_DSM_CNTL2B__MAM_D0MEM_ENABLE_ERROR_INJECT__SHIFT 0x0
+#define MMEA3_DSM_CNTL2B__MAM_D0MEM_SELECT_INJECT_DELAY__SHIFT 0x2
+#define MMEA3_DSM_CNTL2B__MAM_D1MEM_ENABLE_ERROR_INJECT__SHIFT 0x3
+#define MMEA3_DSM_CNTL2B__MAM_D1MEM_SELECT_INJECT_DELAY__SHIFT 0x5
+#define MMEA3_DSM_CNTL2B__MAM_D2MEM_ENABLE_ERROR_INJECT__SHIFT 0x6
+#define MMEA3_DSM_CNTL2B__MAM_D2MEM_SELECT_INJECT_DELAY__SHIFT 0x8
+#define MMEA3_DSM_CNTL2B__MAM_D3MEM_ENABLE_ERROR_INJECT__SHIFT 0x9
+#define MMEA3_DSM_CNTL2B__MAM_D3MEM_SELECT_INJECT_DELAY__SHIFT 0xb
+#define MMEA3_DSM_CNTL2B__MAM_D0MEM_ENABLE_ERROR_INJECT_MASK 0x00000003L
+#define MMEA3_DSM_CNTL2B__MAM_D0MEM_SELECT_INJECT_DELAY_MASK 0x00000004L
+#define MMEA3_DSM_CNTL2B__MAM_D1MEM_ENABLE_ERROR_INJECT_MASK 0x00000018L
+#define MMEA3_DSM_CNTL2B__MAM_D1MEM_SELECT_INJECT_DELAY_MASK 0x00000020L
+#define MMEA3_DSM_CNTL2B__MAM_D2MEM_ENABLE_ERROR_INJECT_MASK 0x000000C0L
+#define MMEA3_DSM_CNTL2B__MAM_D2MEM_SELECT_INJECT_DELAY_MASK 0x00000100L
+#define MMEA3_DSM_CNTL2B__MAM_D3MEM_ENABLE_ERROR_INJECT_MASK 0x00000600L
+#define MMEA3_DSM_CNTL2B__MAM_D3MEM_SELECT_INJECT_DELAY_MASK 0x00000800L
+//MMEA3_CGTT_CLK_CTRL
+#define MMEA3_CGTT_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define MMEA3_CGTT_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define MMEA3_CGTT_CLK_CTRL__SPARE0__SHIFT 0xc
+#define MMEA3_CGTT_CLK_CTRL__SOFT_STALL_OVERRIDE_WRITE__SHIFT 0x14
+#define MMEA3_CGTT_CLK_CTRL__SOFT_STALL_OVERRIDE_READ__SHIFT 0x15
+#define MMEA3_CGTT_CLK_CTRL__SOFT_STALL_OVERRIDE_RETURN__SHIFT 0x16
+#define MMEA3_CGTT_CLK_CTRL__SPARE1__SHIFT 0x17
+#define MMEA3_CGTT_CLK_CTRL__LS_OVERRIDE__SHIFT 0x1b
+#define MMEA3_CGTT_CLK_CTRL__SOFT_OVERRIDE_WRITE__SHIFT 0x1c
+#define MMEA3_CGTT_CLK_CTRL__SOFT_OVERRIDE_READ__SHIFT 0x1d
+#define MMEA3_CGTT_CLK_CTRL__SOFT_OVERRIDE_RETURN__SHIFT 0x1e
+#define MMEA3_CGTT_CLK_CTRL__SOFT_OVERRIDE_REGISTER__SHIFT 0x1f
+#define MMEA3_CGTT_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define MMEA3_CGTT_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define MMEA3_CGTT_CLK_CTRL__SPARE0_MASK 0x000FF000L
+#define MMEA3_CGTT_CLK_CTRL__SOFT_STALL_OVERRIDE_WRITE_MASK 0x00100000L
+#define MMEA3_CGTT_CLK_CTRL__SOFT_STALL_OVERRIDE_READ_MASK 0x00200000L
+#define MMEA3_CGTT_CLK_CTRL__SOFT_STALL_OVERRIDE_RETURN_MASK 0x00400000L
+#define MMEA3_CGTT_CLK_CTRL__SPARE1_MASK 0x07800000L
+#define MMEA3_CGTT_CLK_CTRL__LS_OVERRIDE_MASK 0x08000000L
+#define MMEA3_CGTT_CLK_CTRL__SOFT_OVERRIDE_WRITE_MASK 0x10000000L
+#define MMEA3_CGTT_CLK_CTRL__SOFT_OVERRIDE_READ_MASK 0x20000000L
+#define MMEA3_CGTT_CLK_CTRL__SOFT_OVERRIDE_RETURN_MASK 0x40000000L
+#define MMEA3_CGTT_CLK_CTRL__SOFT_OVERRIDE_REGISTER_MASK 0x80000000L
+//MMEA3_EDC_MODE
+#define MMEA3_EDC_MODE__COUNT_FED_OUT__SHIFT 0x10
+#define MMEA3_EDC_MODE__GATE_FUE__SHIFT 0x11
+#define MMEA3_EDC_MODE__DED_MODE__SHIFT 0x14
+#define MMEA3_EDC_MODE__PROP_FED__SHIFT 0x1d
+#define MMEA3_EDC_MODE__BYPASS__SHIFT 0x1f
+#define MMEA3_EDC_MODE__COUNT_FED_OUT_MASK 0x00010000L
+#define MMEA3_EDC_MODE__GATE_FUE_MASK 0x00020000L
+#define MMEA3_EDC_MODE__DED_MODE_MASK 0x00300000L
+#define MMEA3_EDC_MODE__PROP_FED_MASK 0x20000000L
+#define MMEA3_EDC_MODE__BYPASS_MASK 0x80000000L
+//MMEA3_ERR_STATUS
+#define MMEA3_ERR_STATUS__SDP_RDRSP_STATUS__SHIFT 0x0
+#define MMEA3_ERR_STATUS__SDP_WRRSP_STATUS__SHIFT 0x4
+#define MMEA3_ERR_STATUS__SDP_RDRSP_DATASTATUS__SHIFT 0x8
+#define MMEA3_ERR_STATUS__SDP_RDRSP_DATAPARITY_ERROR__SHIFT 0xa
+#define MMEA3_ERR_STATUS__CLEAR_ERROR_STATUS__SHIFT 0xb
+#define MMEA3_ERR_STATUS__BUSY_ON_ERROR__SHIFT 0xc
+#define MMEA3_ERR_STATUS__FUE_FLAG__SHIFT 0xd
+#define MMEA3_ERR_STATUS__IGNORE_RDRSP_FED__SHIFT 0xe
+#define MMEA3_ERR_STATUS__INTERRUPT_ON_FATAL__SHIFT 0xf
+#define MMEA3_ERR_STATUS__INTERRUPT_IGNORE_CLI_FATAL__SHIFT 0x10
+#define MMEA3_ERR_STATUS__LEVEL_INTERRUPT__SHIFT 0x11
+#define MMEA3_ERR_STATUS__BUSY_ON_CMPL_FATAL_ERROR__SHIFT 0x12
+#define MMEA3_ERR_STATUS__FUE_FLAG_CLIENT__SHIFT 0x13
+#define MMEA3_ERR_STATUS__SDP_RDRSP_STATUS_MASK 0x0000000FL
+#define MMEA3_ERR_STATUS__SDP_WRRSP_STATUS_MASK 0x000000F0L
+#define MMEA3_ERR_STATUS__SDP_RDRSP_DATASTATUS_MASK 0x00000300L
+#define MMEA3_ERR_STATUS__SDP_RDRSP_DATAPARITY_ERROR_MASK 0x00000400L
+#define MMEA3_ERR_STATUS__CLEAR_ERROR_STATUS_MASK 0x00000800L
+#define MMEA3_ERR_STATUS__BUSY_ON_ERROR_MASK 0x00001000L
+#define MMEA3_ERR_STATUS__FUE_FLAG_MASK 0x00002000L
+#define MMEA3_ERR_STATUS__IGNORE_RDRSP_FED_MASK 0x00004000L
+#define MMEA3_ERR_STATUS__INTERRUPT_ON_FATAL_MASK 0x00008000L
+#define MMEA3_ERR_STATUS__INTERRUPT_IGNORE_CLI_FATAL_MASK 0x00010000L
+#define MMEA3_ERR_STATUS__LEVEL_INTERRUPT_MASK 0x00020000L
+#define MMEA3_ERR_STATUS__BUSY_ON_CMPL_FATAL_ERROR_MASK 0x00040000L
+#define MMEA3_ERR_STATUS__FUE_FLAG_CLIENT_MASK 0x00080000L
+//MMEA3_MISC2
+#define MMEA3_MISC2__CSGROUP_SWAP_IN_DRAM_ARB__SHIFT 0x0
+#define MMEA3_MISC2__CSGROUP_SWAP_IN_GMI_ARB__SHIFT 0x1
+#define MMEA3_MISC2__CSGRP_BURST_LIMIT_DATA_DRAM__SHIFT 0x2
+#define MMEA3_MISC2__CSGRP_BURST_LIMIT_DATA_GMI__SHIFT 0x7
+#define MMEA3_MISC2__IO_RDWR_PRIORITY_ENABLE__SHIFT 0xc
+#define MMEA3_MISC2__RRET_SWAP_MODE__SHIFT 0xd
+#define MMEA3_MISC2__BLOCK_REQUESTS__SHIFT 0xe
+#define MMEA3_MISC2__REQUESTS_BLOCKED__SHIFT 0xf
+#define MMEA3_MISC2__DRAM_RD_THROTTLE__SHIFT 0x10
+#define MMEA3_MISC2__DRAM_WR_THROTTLE__SHIFT 0x11
+#define MMEA3_MISC2__GMI_RD_THROTTLE__SHIFT 0x12
+#define MMEA3_MISC2__GMI_WR_THROTTLE__SHIFT 0x13
+#define MMEA3_MISC2__CSGROUP_SWAP_IN_DRAM_ARB_MASK 0x00000001L
+#define MMEA3_MISC2__CSGROUP_SWAP_IN_GMI_ARB_MASK 0x00000002L
+#define MMEA3_MISC2__CSGRP_BURST_LIMIT_DATA_DRAM_MASK 0x0000007CL
+#define MMEA3_MISC2__CSGRP_BURST_LIMIT_DATA_GMI_MASK 0x00000F80L
+#define MMEA3_MISC2__IO_RDWR_PRIORITY_ENABLE_MASK 0x00001000L
+#define MMEA3_MISC2__RRET_SWAP_MODE_MASK 0x00002000L
+#define MMEA3_MISC2__BLOCK_REQUESTS_MASK 0x00004000L
+#define MMEA3_MISC2__REQUESTS_BLOCKED_MASK 0x00008000L
+#define MMEA3_MISC2__DRAM_RD_THROTTLE_MASK 0x00010000L
+#define MMEA3_MISC2__DRAM_WR_THROTTLE_MASK 0x00020000L
+#define MMEA3_MISC2__GMI_RD_THROTTLE_MASK 0x00040000L
+#define MMEA3_MISC2__GMI_WR_THROTTLE_MASK 0x00080000L
+//MMEA3_MISC_AON
+#define MMEA3_MISC_AON__LINKMGR_PARTACK_HYSTERESIS__SHIFT 0x0
+#define MMEA3_MISC_AON__LINKMGR_PARTACK_DEASSERT_MODE__SHIFT 0x2
+#define MMEA3_MISC_AON__LINKMGR_PARTACK_HYSTERESIS_MASK 0x00000003L
+#define MMEA3_MISC_AON__LINKMGR_PARTACK_DEASSERT_MODE_MASK 0x00000004L
+
+
+// addressBlock: aid_mmhub_ea_mmeadec4
+//MMEA4_DRAM_RD_CLI2GRP_MAP0
+#define MMEA4_DRAM_RD_CLI2GRP_MAP0__CID0_GROUP__SHIFT 0x0
+#define MMEA4_DRAM_RD_CLI2GRP_MAP0__CID1_GROUP__SHIFT 0x2
+#define MMEA4_DRAM_RD_CLI2GRP_MAP0__CID2_GROUP__SHIFT 0x4
+#define MMEA4_DRAM_RD_CLI2GRP_MAP0__CID3_GROUP__SHIFT 0x6
+#define MMEA4_DRAM_RD_CLI2GRP_MAP0__CID4_GROUP__SHIFT 0x8
+#define MMEA4_DRAM_RD_CLI2GRP_MAP0__CID5_GROUP__SHIFT 0xa
+#define MMEA4_DRAM_RD_CLI2GRP_MAP0__CID6_GROUP__SHIFT 0xc
+#define MMEA4_DRAM_RD_CLI2GRP_MAP0__CID7_GROUP__SHIFT 0xe
+#define MMEA4_DRAM_RD_CLI2GRP_MAP0__CID8_GROUP__SHIFT 0x10
+#define MMEA4_DRAM_RD_CLI2GRP_MAP0__CID9_GROUP__SHIFT 0x12
+#define MMEA4_DRAM_RD_CLI2GRP_MAP0__CID10_GROUP__SHIFT 0x14
+#define MMEA4_DRAM_RD_CLI2GRP_MAP0__CID11_GROUP__SHIFT 0x16
+#define MMEA4_DRAM_RD_CLI2GRP_MAP0__CID12_GROUP__SHIFT 0x18
+#define MMEA4_DRAM_RD_CLI2GRP_MAP0__CID13_GROUP__SHIFT 0x1a
+#define MMEA4_DRAM_RD_CLI2GRP_MAP0__CID14_GROUP__SHIFT 0x1c
+#define MMEA4_DRAM_RD_CLI2GRP_MAP0__CID15_GROUP__SHIFT 0x1e
+#define MMEA4_DRAM_RD_CLI2GRP_MAP0__CID0_GROUP_MASK 0x00000003L
+#define MMEA4_DRAM_RD_CLI2GRP_MAP0__CID1_GROUP_MASK 0x0000000CL
+#define MMEA4_DRAM_RD_CLI2GRP_MAP0__CID2_GROUP_MASK 0x00000030L
+#define MMEA4_DRAM_RD_CLI2GRP_MAP0__CID3_GROUP_MASK 0x000000C0L
+#define MMEA4_DRAM_RD_CLI2GRP_MAP0__CID4_GROUP_MASK 0x00000300L
+#define MMEA4_DRAM_RD_CLI2GRP_MAP0__CID5_GROUP_MASK 0x00000C00L
+#define MMEA4_DRAM_RD_CLI2GRP_MAP0__CID6_GROUP_MASK 0x00003000L
+#define MMEA4_DRAM_RD_CLI2GRP_MAP0__CID7_GROUP_MASK 0x0000C000L
+#define MMEA4_DRAM_RD_CLI2GRP_MAP0__CID8_GROUP_MASK 0x00030000L
+#define MMEA4_DRAM_RD_CLI2GRP_MAP0__CID9_GROUP_MASK 0x000C0000L
+#define MMEA4_DRAM_RD_CLI2GRP_MAP0__CID10_GROUP_MASK 0x00300000L
+#define MMEA4_DRAM_RD_CLI2GRP_MAP0__CID11_GROUP_MASK 0x00C00000L
+#define MMEA4_DRAM_RD_CLI2GRP_MAP0__CID12_GROUP_MASK 0x03000000L
+#define MMEA4_DRAM_RD_CLI2GRP_MAP0__CID13_GROUP_MASK 0x0C000000L
+#define MMEA4_DRAM_RD_CLI2GRP_MAP0__CID14_GROUP_MASK 0x30000000L
+#define MMEA4_DRAM_RD_CLI2GRP_MAP0__CID15_GROUP_MASK 0xC0000000L
+//MMEA4_DRAM_RD_CLI2GRP_MAP1
+#define MMEA4_DRAM_RD_CLI2GRP_MAP1__CID16_GROUP__SHIFT 0x0
+#define MMEA4_DRAM_RD_CLI2GRP_MAP1__CID17_GROUP__SHIFT 0x2
+#define MMEA4_DRAM_RD_CLI2GRP_MAP1__CID18_GROUP__SHIFT 0x4
+#define MMEA4_DRAM_RD_CLI2GRP_MAP1__CID19_GROUP__SHIFT 0x6
+#define MMEA4_DRAM_RD_CLI2GRP_MAP1__CID20_GROUP__SHIFT 0x8
+#define MMEA4_DRAM_RD_CLI2GRP_MAP1__CID21_GROUP__SHIFT 0xa
+#define MMEA4_DRAM_RD_CLI2GRP_MAP1__CID22_GROUP__SHIFT 0xc
+#define MMEA4_DRAM_RD_CLI2GRP_MAP1__CID23_GROUP__SHIFT 0xe
+#define MMEA4_DRAM_RD_CLI2GRP_MAP1__CID24_GROUP__SHIFT 0x10
+#define MMEA4_DRAM_RD_CLI2GRP_MAP1__CID25_GROUP__SHIFT 0x12
+#define MMEA4_DRAM_RD_CLI2GRP_MAP1__CID26_GROUP__SHIFT 0x14
+#define MMEA4_DRAM_RD_CLI2GRP_MAP1__CID27_GROUP__SHIFT 0x16
+#define MMEA4_DRAM_RD_CLI2GRP_MAP1__CID28_GROUP__SHIFT 0x18
+#define MMEA4_DRAM_RD_CLI2GRP_MAP1__CID29_GROUP__SHIFT 0x1a
+#define MMEA4_DRAM_RD_CLI2GRP_MAP1__CID30_GROUP__SHIFT 0x1c
+#define MMEA4_DRAM_RD_CLI2GRP_MAP1__CID31_GROUP__SHIFT 0x1e
+#define MMEA4_DRAM_RD_CLI2GRP_MAP1__CID16_GROUP_MASK 0x00000003L
+#define MMEA4_DRAM_RD_CLI2GRP_MAP1__CID17_GROUP_MASK 0x0000000CL
+#define MMEA4_DRAM_RD_CLI2GRP_MAP1__CID18_GROUP_MASK 0x00000030L
+#define MMEA4_DRAM_RD_CLI2GRP_MAP1__CID19_GROUP_MASK 0x000000C0L
+#define MMEA4_DRAM_RD_CLI2GRP_MAP1__CID20_GROUP_MASK 0x00000300L
+#define MMEA4_DRAM_RD_CLI2GRP_MAP1__CID21_GROUP_MASK 0x00000C00L
+#define MMEA4_DRAM_RD_CLI2GRP_MAP1__CID22_GROUP_MASK 0x00003000L
+#define MMEA4_DRAM_RD_CLI2GRP_MAP1__CID23_GROUP_MASK 0x0000C000L
+#define MMEA4_DRAM_RD_CLI2GRP_MAP1__CID24_GROUP_MASK 0x00030000L
+#define MMEA4_DRAM_RD_CLI2GRP_MAP1__CID25_GROUP_MASK 0x000C0000L
+#define MMEA4_DRAM_RD_CLI2GRP_MAP1__CID26_GROUP_MASK 0x00300000L
+#define MMEA4_DRAM_RD_CLI2GRP_MAP1__CID27_GROUP_MASK 0x00C00000L
+#define MMEA4_DRAM_RD_CLI2GRP_MAP1__CID28_GROUP_MASK 0x03000000L
+#define MMEA4_DRAM_RD_CLI2GRP_MAP1__CID29_GROUP_MASK 0x0C000000L
+#define MMEA4_DRAM_RD_CLI2GRP_MAP1__CID30_GROUP_MASK 0x30000000L
+#define MMEA4_DRAM_RD_CLI2GRP_MAP1__CID31_GROUP_MASK 0xC0000000L
+//MMEA4_DRAM_WR_CLI2GRP_MAP0
+#define MMEA4_DRAM_WR_CLI2GRP_MAP0__CID0_GROUP__SHIFT 0x0
+#define MMEA4_DRAM_WR_CLI2GRP_MAP0__CID1_GROUP__SHIFT 0x2
+#define MMEA4_DRAM_WR_CLI2GRP_MAP0__CID2_GROUP__SHIFT 0x4
+#define MMEA4_DRAM_WR_CLI2GRP_MAP0__CID3_GROUP__SHIFT 0x6
+#define MMEA4_DRAM_WR_CLI2GRP_MAP0__CID4_GROUP__SHIFT 0x8
+#define MMEA4_DRAM_WR_CLI2GRP_MAP0__CID5_GROUP__SHIFT 0xa
+#define MMEA4_DRAM_WR_CLI2GRP_MAP0__CID6_GROUP__SHIFT 0xc
+#define MMEA4_DRAM_WR_CLI2GRP_MAP0__CID7_GROUP__SHIFT 0xe
+#define MMEA4_DRAM_WR_CLI2GRP_MAP0__CID8_GROUP__SHIFT 0x10
+#define MMEA4_DRAM_WR_CLI2GRP_MAP0__CID9_GROUP__SHIFT 0x12
+#define MMEA4_DRAM_WR_CLI2GRP_MAP0__CID10_GROUP__SHIFT 0x14
+#define MMEA4_DRAM_WR_CLI2GRP_MAP0__CID11_GROUP__SHIFT 0x16
+#define MMEA4_DRAM_WR_CLI2GRP_MAP0__CID12_GROUP__SHIFT 0x18
+#define MMEA4_DRAM_WR_CLI2GRP_MAP0__CID13_GROUP__SHIFT 0x1a
+#define MMEA4_DRAM_WR_CLI2GRP_MAP0__CID14_GROUP__SHIFT 0x1c
+#define MMEA4_DRAM_WR_CLI2GRP_MAP0__CID15_GROUP__SHIFT 0x1e
+#define MMEA4_DRAM_WR_CLI2GRP_MAP0__CID0_GROUP_MASK 0x00000003L
+#define MMEA4_DRAM_WR_CLI2GRP_MAP0__CID1_GROUP_MASK 0x0000000CL
+#define MMEA4_DRAM_WR_CLI2GRP_MAP0__CID2_GROUP_MASK 0x00000030L
+#define MMEA4_DRAM_WR_CLI2GRP_MAP0__CID3_GROUP_MASK 0x000000C0L
+#define MMEA4_DRAM_WR_CLI2GRP_MAP0__CID4_GROUP_MASK 0x00000300L
+#define MMEA4_DRAM_WR_CLI2GRP_MAP0__CID5_GROUP_MASK 0x00000C00L
+#define MMEA4_DRAM_WR_CLI2GRP_MAP0__CID6_GROUP_MASK 0x00003000L
+#define MMEA4_DRAM_WR_CLI2GRP_MAP0__CID7_GROUP_MASK 0x0000C000L
+#define MMEA4_DRAM_WR_CLI2GRP_MAP0__CID8_GROUP_MASK 0x00030000L
+#define MMEA4_DRAM_WR_CLI2GRP_MAP0__CID9_GROUP_MASK 0x000C0000L
+#define MMEA4_DRAM_WR_CLI2GRP_MAP0__CID10_GROUP_MASK 0x00300000L
+#define MMEA4_DRAM_WR_CLI2GRP_MAP0__CID11_GROUP_MASK 0x00C00000L
+#define MMEA4_DRAM_WR_CLI2GRP_MAP0__CID12_GROUP_MASK 0x03000000L
+#define MMEA4_DRAM_WR_CLI2GRP_MAP0__CID13_GROUP_MASK 0x0C000000L
+#define MMEA4_DRAM_WR_CLI2GRP_MAP0__CID14_GROUP_MASK 0x30000000L
+#define MMEA4_DRAM_WR_CLI2GRP_MAP0__CID15_GROUP_MASK 0xC0000000L
+//MMEA4_DRAM_WR_CLI2GRP_MAP1
+#define MMEA4_DRAM_WR_CLI2GRP_MAP1__CID16_GROUP__SHIFT 0x0
+#define MMEA4_DRAM_WR_CLI2GRP_MAP1__CID17_GROUP__SHIFT 0x2
+#define MMEA4_DRAM_WR_CLI2GRP_MAP1__CID18_GROUP__SHIFT 0x4
+#define MMEA4_DRAM_WR_CLI2GRP_MAP1__CID19_GROUP__SHIFT 0x6
+#define MMEA4_DRAM_WR_CLI2GRP_MAP1__CID20_GROUP__SHIFT 0x8
+#define MMEA4_DRAM_WR_CLI2GRP_MAP1__CID21_GROUP__SHIFT 0xa
+#define MMEA4_DRAM_WR_CLI2GRP_MAP1__CID22_GROUP__SHIFT 0xc
+#define MMEA4_DRAM_WR_CLI2GRP_MAP1__CID23_GROUP__SHIFT 0xe
+#define MMEA4_DRAM_WR_CLI2GRP_MAP1__CID24_GROUP__SHIFT 0x10
+#define MMEA4_DRAM_WR_CLI2GRP_MAP1__CID25_GROUP__SHIFT 0x12
+#define MMEA4_DRAM_WR_CLI2GRP_MAP1__CID26_GROUP__SHIFT 0x14
+#define MMEA4_DRAM_WR_CLI2GRP_MAP1__CID27_GROUP__SHIFT 0x16
+#define MMEA4_DRAM_WR_CLI2GRP_MAP1__CID28_GROUP__SHIFT 0x18
+#define MMEA4_DRAM_WR_CLI2GRP_MAP1__CID29_GROUP__SHIFT 0x1a
+#define MMEA4_DRAM_WR_CLI2GRP_MAP1__CID30_GROUP__SHIFT 0x1c
+#define MMEA4_DRAM_WR_CLI2GRP_MAP1__CID31_GROUP__SHIFT 0x1e
+#define MMEA4_DRAM_WR_CLI2GRP_MAP1__CID16_GROUP_MASK 0x00000003L
+#define MMEA4_DRAM_WR_CLI2GRP_MAP1__CID17_GROUP_MASK 0x0000000CL
+#define MMEA4_DRAM_WR_CLI2GRP_MAP1__CID18_GROUP_MASK 0x00000030L
+#define MMEA4_DRAM_WR_CLI2GRP_MAP1__CID19_GROUP_MASK 0x000000C0L
+#define MMEA4_DRAM_WR_CLI2GRP_MAP1__CID20_GROUP_MASK 0x00000300L
+#define MMEA4_DRAM_WR_CLI2GRP_MAP1__CID21_GROUP_MASK 0x00000C00L
+#define MMEA4_DRAM_WR_CLI2GRP_MAP1__CID22_GROUP_MASK 0x00003000L
+#define MMEA4_DRAM_WR_CLI2GRP_MAP1__CID23_GROUP_MASK 0x0000C000L
+#define MMEA4_DRAM_WR_CLI2GRP_MAP1__CID24_GROUP_MASK 0x00030000L
+#define MMEA4_DRAM_WR_CLI2GRP_MAP1__CID25_GROUP_MASK 0x000C0000L
+#define MMEA4_DRAM_WR_CLI2GRP_MAP1__CID26_GROUP_MASK 0x00300000L
+#define MMEA4_DRAM_WR_CLI2GRP_MAP1__CID27_GROUP_MASK 0x00C00000L
+#define MMEA4_DRAM_WR_CLI2GRP_MAP1__CID28_GROUP_MASK 0x03000000L
+#define MMEA4_DRAM_WR_CLI2GRP_MAP1__CID29_GROUP_MASK 0x0C000000L
+#define MMEA4_DRAM_WR_CLI2GRP_MAP1__CID30_GROUP_MASK 0x30000000L
+#define MMEA4_DRAM_WR_CLI2GRP_MAP1__CID31_GROUP_MASK 0xC0000000L
+//MMEA4_DRAM_RD_GRP2VC_MAP
+#define MMEA4_DRAM_RD_GRP2VC_MAP__GROUP0_VC__SHIFT 0x0
+#define MMEA4_DRAM_RD_GRP2VC_MAP__GROUP1_VC__SHIFT 0x3
+#define MMEA4_DRAM_RD_GRP2VC_MAP__GROUP2_VC__SHIFT 0x6
+#define MMEA4_DRAM_RD_GRP2VC_MAP__GROUP3_VC__SHIFT 0x9
+#define MMEA4_DRAM_RD_GRP2VC_MAP__GROUP0_VC_MASK 0x00000007L
+#define MMEA4_DRAM_RD_GRP2VC_MAP__GROUP1_VC_MASK 0x00000038L
+#define MMEA4_DRAM_RD_GRP2VC_MAP__GROUP2_VC_MASK 0x000001C0L
+#define MMEA4_DRAM_RD_GRP2VC_MAP__GROUP3_VC_MASK 0x00000E00L
+//MMEA4_DRAM_WR_GRP2VC_MAP
+#define MMEA4_DRAM_WR_GRP2VC_MAP__GROUP0_VC__SHIFT 0x0
+#define MMEA4_DRAM_WR_GRP2VC_MAP__GROUP1_VC__SHIFT 0x3
+#define MMEA4_DRAM_WR_GRP2VC_MAP__GROUP2_VC__SHIFT 0x6
+#define MMEA4_DRAM_WR_GRP2VC_MAP__GROUP3_VC__SHIFT 0x9
+#define MMEA4_DRAM_WR_GRP2VC_MAP__GROUP0_VC_MASK 0x00000007L
+#define MMEA4_DRAM_WR_GRP2VC_MAP__GROUP1_VC_MASK 0x00000038L
+#define MMEA4_DRAM_WR_GRP2VC_MAP__GROUP2_VC_MASK 0x000001C0L
+#define MMEA4_DRAM_WR_GRP2VC_MAP__GROUP3_VC_MASK 0x00000E00L
+//MMEA4_DRAM_RD_LAZY
+#define MMEA4_DRAM_RD_LAZY__GROUP0_DELAY__SHIFT 0x0
+#define MMEA4_DRAM_RD_LAZY__GROUP1_DELAY__SHIFT 0x3
+#define MMEA4_DRAM_RD_LAZY__GROUP2_DELAY__SHIFT 0x6
+#define MMEA4_DRAM_RD_LAZY__GROUP3_DELAY__SHIFT 0x9
+#define MMEA4_DRAM_RD_LAZY__REQ_ACCUM_THRESH__SHIFT 0xc
+#define MMEA4_DRAM_RD_LAZY__REQ_ACCUM_TIMEOUT__SHIFT 0x14
+#define MMEA4_DRAM_RD_LAZY__REQ_ACCUM_IDLEMAX__SHIFT 0x1b
+#define MMEA4_DRAM_RD_LAZY__GROUP0_DELAY_MASK 0x00000007L
+#define MMEA4_DRAM_RD_LAZY__GROUP1_DELAY_MASK 0x00000038L
+#define MMEA4_DRAM_RD_LAZY__GROUP2_DELAY_MASK 0x000001C0L
+#define MMEA4_DRAM_RD_LAZY__GROUP3_DELAY_MASK 0x00000E00L
+#define MMEA4_DRAM_RD_LAZY__REQ_ACCUM_THRESH_MASK 0x0003F000L
+#define MMEA4_DRAM_RD_LAZY__REQ_ACCUM_TIMEOUT_MASK 0x07F00000L
+#define MMEA4_DRAM_RD_LAZY__REQ_ACCUM_IDLEMAX_MASK 0x78000000L
+//MMEA4_DRAM_WR_LAZY
+#define MMEA4_DRAM_WR_LAZY__GROUP0_DELAY__SHIFT 0x0
+#define MMEA4_DRAM_WR_LAZY__GROUP1_DELAY__SHIFT 0x3
+#define MMEA4_DRAM_WR_LAZY__GROUP2_DELAY__SHIFT 0x6
+#define MMEA4_DRAM_WR_LAZY__GROUP3_DELAY__SHIFT 0x9
+#define MMEA4_DRAM_WR_LAZY__REQ_ACCUM_THRESH__SHIFT 0xc
+#define MMEA4_DRAM_WR_LAZY__REQ_ACCUM_TIMEOUT__SHIFT 0x14
+#define MMEA4_DRAM_WR_LAZY__REQ_ACCUM_IDLEMAX__SHIFT 0x1b
+#define MMEA4_DRAM_WR_LAZY__GROUP0_DELAY_MASK 0x00000007L
+#define MMEA4_DRAM_WR_LAZY__GROUP1_DELAY_MASK 0x00000038L
+#define MMEA4_DRAM_WR_LAZY__GROUP2_DELAY_MASK 0x000001C0L
+#define MMEA4_DRAM_WR_LAZY__GROUP3_DELAY_MASK 0x00000E00L
+#define MMEA4_DRAM_WR_LAZY__REQ_ACCUM_THRESH_MASK 0x0003F000L
+#define MMEA4_DRAM_WR_LAZY__REQ_ACCUM_TIMEOUT_MASK 0x07F00000L
+#define MMEA4_DRAM_WR_LAZY__REQ_ACCUM_IDLEMAX_MASK 0x78000000L
+//MMEA4_DRAM_RD_CAM_CNTL
+#define MMEA4_DRAM_RD_CAM_CNTL__DEPTH_GROUP0__SHIFT 0x0
+#define MMEA4_DRAM_RD_CAM_CNTL__DEPTH_GROUP1__SHIFT 0x4
+#define MMEA4_DRAM_RD_CAM_CNTL__DEPTH_GROUP2__SHIFT 0x8
+#define MMEA4_DRAM_RD_CAM_CNTL__DEPTH_GROUP3__SHIFT 0xc
+#define MMEA4_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP0__SHIFT 0x10
+#define MMEA4_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP1__SHIFT 0x13
+#define MMEA4_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP2__SHIFT 0x16
+#define MMEA4_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP3__SHIFT 0x19
+#define MMEA4_DRAM_RD_CAM_CNTL__REFILL_CHAIN__SHIFT 0x1c
+#define MMEA4_DRAM_RD_CAM_CNTL__PAGEBASED_CHAINING__SHIFT 0x1d
+#define MMEA4_DRAM_RD_CAM_CNTL__DEPTH_GROUP0_MASK 0x0000000FL
+#define MMEA4_DRAM_RD_CAM_CNTL__DEPTH_GROUP1_MASK 0x000000F0L
+#define MMEA4_DRAM_RD_CAM_CNTL__DEPTH_GROUP2_MASK 0x00000F00L
+#define MMEA4_DRAM_RD_CAM_CNTL__DEPTH_GROUP3_MASK 0x0000F000L
+#define MMEA4_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP0_MASK 0x00070000L
+#define MMEA4_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP1_MASK 0x00380000L
+#define MMEA4_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP2_MASK 0x01C00000L
+#define MMEA4_DRAM_RD_CAM_CNTL__REORDER_LIMIT_GROUP3_MASK 0x0E000000L
+#define MMEA4_DRAM_RD_CAM_CNTL__REFILL_CHAIN_MASK 0x10000000L
+#define MMEA4_DRAM_RD_CAM_CNTL__PAGEBASED_CHAINING_MASK 0x20000000L
+//MMEA4_DRAM_WR_CAM_CNTL
+#define MMEA4_DRAM_WR_CAM_CNTL__DEPTH_GROUP0__SHIFT 0x0
+#define MMEA4_DRAM_WR_CAM_CNTL__DEPTH_GROUP1__SHIFT 0x4
+#define MMEA4_DRAM_WR_CAM_CNTL__DEPTH_GROUP2__SHIFT 0x8
+#define MMEA4_DRAM_WR_CAM_CNTL__DEPTH_GROUP3__SHIFT 0xc
+#define MMEA4_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP0__SHIFT 0x10
+#define MMEA4_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP1__SHIFT 0x13
+#define MMEA4_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP2__SHIFT 0x16
+#define MMEA4_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP3__SHIFT 0x19
+#define MMEA4_DRAM_WR_CAM_CNTL__REFILL_CHAIN__SHIFT 0x1c
+#define MMEA4_DRAM_WR_CAM_CNTL__PAGEBASED_CHAINING__SHIFT 0x1d
+#define MMEA4_DRAM_WR_CAM_CNTL__DEPTH_GROUP0_MASK 0x0000000FL
+#define MMEA4_DRAM_WR_CAM_CNTL__DEPTH_GROUP1_MASK 0x000000F0L
+#define MMEA4_DRAM_WR_CAM_CNTL__DEPTH_GROUP2_MASK 0x00000F00L
+#define MMEA4_DRAM_WR_CAM_CNTL__DEPTH_GROUP3_MASK 0x0000F000L
+#define MMEA4_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP0_MASK 0x00070000L
+#define MMEA4_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP1_MASK 0x00380000L
+#define MMEA4_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP2_MASK 0x01C00000L
+#define MMEA4_DRAM_WR_CAM_CNTL__REORDER_LIMIT_GROUP3_MASK 0x0E000000L
+#define MMEA4_DRAM_WR_CAM_CNTL__REFILL_CHAIN_MASK 0x10000000L
+#define MMEA4_DRAM_WR_CAM_CNTL__PAGEBASED_CHAINING_MASK 0x20000000L
+//MMEA4_DRAM_PAGE_BURST
+#define MMEA4_DRAM_PAGE_BURST__RD_LIMIT_LO__SHIFT 0x0
+#define MMEA4_DRAM_PAGE_BURST__RD_LIMIT_HI__SHIFT 0x8
+#define MMEA4_DRAM_PAGE_BURST__WR_LIMIT_LO__SHIFT 0x10
+#define MMEA4_DRAM_PAGE_BURST__WR_LIMIT_HI__SHIFT 0x18
+#define MMEA4_DRAM_PAGE_BURST__RD_LIMIT_LO_MASK 0x000000FFL
+#define MMEA4_DRAM_PAGE_BURST__RD_LIMIT_HI_MASK 0x0000FF00L
+#define MMEA4_DRAM_PAGE_BURST__WR_LIMIT_LO_MASK 0x00FF0000L
+#define MMEA4_DRAM_PAGE_BURST__WR_LIMIT_HI_MASK 0xFF000000L
+//MMEA4_DRAM_RD_PRI_AGE
+#define MMEA4_DRAM_RD_PRI_AGE__GROUP0_AGING_RATE__SHIFT 0x0
+#define MMEA4_DRAM_RD_PRI_AGE__GROUP1_AGING_RATE__SHIFT 0x3
+#define MMEA4_DRAM_RD_PRI_AGE__GROUP2_AGING_RATE__SHIFT 0x6
+#define MMEA4_DRAM_RD_PRI_AGE__GROUP3_AGING_RATE__SHIFT 0x9
+#define MMEA4_DRAM_RD_PRI_AGE__GROUP0_AGE_COEFFICIENT__SHIFT 0xc
+#define MMEA4_DRAM_RD_PRI_AGE__GROUP1_AGE_COEFFICIENT__SHIFT 0xf
+#define MMEA4_DRAM_RD_PRI_AGE__GROUP2_AGE_COEFFICIENT__SHIFT 0x12
+#define MMEA4_DRAM_RD_PRI_AGE__GROUP3_AGE_COEFFICIENT__SHIFT 0x15
+#define MMEA4_DRAM_RD_PRI_AGE__GROUP0_AGING_RATE_MASK 0x00000007L
+#define MMEA4_DRAM_RD_PRI_AGE__GROUP1_AGING_RATE_MASK 0x00000038L
+#define MMEA4_DRAM_RD_PRI_AGE__GROUP2_AGING_RATE_MASK 0x000001C0L
+#define MMEA4_DRAM_RD_PRI_AGE__GROUP3_AGING_RATE_MASK 0x00000E00L
+#define MMEA4_DRAM_RD_PRI_AGE__GROUP0_AGE_COEFFICIENT_MASK 0x00007000L
+#define MMEA4_DRAM_RD_PRI_AGE__GROUP1_AGE_COEFFICIENT_MASK 0x00038000L
+#define MMEA4_DRAM_RD_PRI_AGE__GROUP2_AGE_COEFFICIENT_MASK 0x001C0000L
+#define MMEA4_DRAM_RD_PRI_AGE__GROUP3_AGE_COEFFICIENT_MASK 0x00E00000L
+//MMEA4_DRAM_WR_PRI_AGE
+#define MMEA4_DRAM_WR_PRI_AGE__GROUP0_AGING_RATE__SHIFT 0x0
+#define MMEA4_DRAM_WR_PRI_AGE__GROUP1_AGING_RATE__SHIFT 0x3
+#define MMEA4_DRAM_WR_PRI_AGE__GROUP2_AGING_RATE__SHIFT 0x6
+#define MMEA4_DRAM_WR_PRI_AGE__GROUP3_AGING_RATE__SHIFT 0x9
+#define MMEA4_DRAM_WR_PRI_AGE__GROUP0_AGE_COEFFICIENT__SHIFT 0xc
+#define MMEA4_DRAM_WR_PRI_AGE__GROUP1_AGE_COEFFICIENT__SHIFT 0xf
+#define MMEA4_DRAM_WR_PRI_AGE__GROUP2_AGE_COEFFICIENT__SHIFT 0x12
+#define MMEA4_DRAM_WR_PRI_AGE__GROUP3_AGE_COEFFICIENT__SHIFT 0x15
+#define MMEA4_DRAM_WR_PRI_AGE__GROUP0_AGING_RATE_MASK 0x00000007L
+#define MMEA4_DRAM_WR_PRI_AGE__GROUP1_AGING_RATE_MASK 0x00000038L
+#define MMEA4_DRAM_WR_PRI_AGE__GROUP2_AGING_RATE_MASK 0x000001C0L
+#define MMEA4_DRAM_WR_PRI_AGE__GROUP3_AGING_RATE_MASK 0x00000E00L
+#define MMEA4_DRAM_WR_PRI_AGE__GROUP0_AGE_COEFFICIENT_MASK 0x00007000L
+#define MMEA4_DRAM_WR_PRI_AGE__GROUP1_AGE_COEFFICIENT_MASK 0x00038000L
+#define MMEA4_DRAM_WR_PRI_AGE__GROUP2_AGE_COEFFICIENT_MASK 0x001C0000L
+#define MMEA4_DRAM_WR_PRI_AGE__GROUP3_AGE_COEFFICIENT_MASK 0x00E00000L
+//MMEA4_DRAM_RD_PRI_QUEUING
+#define MMEA4_DRAM_RD_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT__SHIFT 0x0
+#define MMEA4_DRAM_RD_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT__SHIFT 0x3
+#define MMEA4_DRAM_RD_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT__SHIFT 0x6
+#define MMEA4_DRAM_RD_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT__SHIFT 0x9
+#define MMEA4_DRAM_RD_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT_MASK 0x00000007L
+#define MMEA4_DRAM_RD_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT_MASK 0x00000038L
+#define MMEA4_DRAM_RD_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT_MASK 0x000001C0L
+#define MMEA4_DRAM_RD_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT_MASK 0x00000E00L
+//MMEA4_DRAM_WR_PRI_QUEUING
+#define MMEA4_DRAM_WR_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT__SHIFT 0x0
+#define MMEA4_DRAM_WR_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT__SHIFT 0x3
+#define MMEA4_DRAM_WR_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT__SHIFT 0x6
+#define MMEA4_DRAM_WR_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT__SHIFT 0x9
+#define MMEA4_DRAM_WR_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT_MASK 0x00000007L
+#define MMEA4_DRAM_WR_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT_MASK 0x00000038L
+#define MMEA4_DRAM_WR_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT_MASK 0x000001C0L
+#define MMEA4_DRAM_WR_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT_MASK 0x00000E00L
+//MMEA4_DRAM_RD_PRI_FIXED
+#define MMEA4_DRAM_RD_PRI_FIXED__GROUP0_FIXED_COEFFICIENT__SHIFT 0x0
+#define MMEA4_DRAM_RD_PRI_FIXED__GROUP1_FIXED_COEFFICIENT__SHIFT 0x3
+#define MMEA4_DRAM_RD_PRI_FIXED__GROUP2_FIXED_COEFFICIENT__SHIFT 0x6
+#define MMEA4_DRAM_RD_PRI_FIXED__GROUP3_FIXED_COEFFICIENT__SHIFT 0x9
+#define MMEA4_DRAM_RD_PRI_FIXED__GROUP0_FIXED_COEFFICIENT_MASK 0x00000007L
+#define MMEA4_DRAM_RD_PRI_FIXED__GROUP1_FIXED_COEFFICIENT_MASK 0x00000038L
+#define MMEA4_DRAM_RD_PRI_FIXED__GROUP2_FIXED_COEFFICIENT_MASK 0x000001C0L
+#define MMEA4_DRAM_RD_PRI_FIXED__GROUP3_FIXED_COEFFICIENT_MASK 0x00000E00L
+//MMEA4_DRAM_WR_PRI_FIXED
+#define MMEA4_DRAM_WR_PRI_FIXED__GROUP0_FIXED_COEFFICIENT__SHIFT 0x0
+#define MMEA4_DRAM_WR_PRI_FIXED__GROUP1_FIXED_COEFFICIENT__SHIFT 0x3
+#define MMEA4_DRAM_WR_PRI_FIXED__GROUP2_FIXED_COEFFICIENT__SHIFT 0x6
+#define MMEA4_DRAM_WR_PRI_FIXED__GROUP3_FIXED_COEFFICIENT__SHIFT 0x9
+#define MMEA4_DRAM_WR_PRI_FIXED__GROUP0_FIXED_COEFFICIENT_MASK 0x00000007L
+#define MMEA4_DRAM_WR_PRI_FIXED__GROUP1_FIXED_COEFFICIENT_MASK 0x00000038L
+#define MMEA4_DRAM_WR_PRI_FIXED__GROUP2_FIXED_COEFFICIENT_MASK 0x000001C0L
+#define MMEA4_DRAM_WR_PRI_FIXED__GROUP3_FIXED_COEFFICIENT_MASK 0x00000E00L
+//MMEA4_DRAM_RD_PRI_URGENCY
+#define MMEA4_DRAM_RD_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT__SHIFT 0x0
+#define MMEA4_DRAM_RD_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT__SHIFT 0x3
+#define MMEA4_DRAM_RD_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT__SHIFT 0x6
+#define MMEA4_DRAM_RD_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT__SHIFT 0x9
+#define MMEA4_DRAM_RD_PRI_URGENCY__GROUP0_URGENCY_MODE__SHIFT 0xc
+#define MMEA4_DRAM_RD_PRI_URGENCY__GROUP1_URGENCY_MODE__SHIFT 0xd
+#define MMEA4_DRAM_RD_PRI_URGENCY__GROUP2_URGENCY_MODE__SHIFT 0xe
+#define MMEA4_DRAM_RD_PRI_URGENCY__GROUP3_URGENCY_MODE__SHIFT 0xf
+#define MMEA4_DRAM_RD_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT_MASK 0x00000007L
+#define MMEA4_DRAM_RD_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT_MASK 0x00000038L
+#define MMEA4_DRAM_RD_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT_MASK 0x000001C0L
+#define MMEA4_DRAM_RD_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT_MASK 0x00000E00L
+#define MMEA4_DRAM_RD_PRI_URGENCY__GROUP0_URGENCY_MODE_MASK 0x00001000L
+#define MMEA4_DRAM_RD_PRI_URGENCY__GROUP1_URGENCY_MODE_MASK 0x00002000L
+#define MMEA4_DRAM_RD_PRI_URGENCY__GROUP2_URGENCY_MODE_MASK 0x00004000L
+#define MMEA4_DRAM_RD_PRI_URGENCY__GROUP3_URGENCY_MODE_MASK 0x00008000L
+//MMEA4_DRAM_WR_PRI_URGENCY
+#define MMEA4_DRAM_WR_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT__SHIFT 0x0
+#define MMEA4_DRAM_WR_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT__SHIFT 0x3
+#define MMEA4_DRAM_WR_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT__SHIFT 0x6
+#define MMEA4_DRAM_WR_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT__SHIFT 0x9
+#define MMEA4_DRAM_WR_PRI_URGENCY__GROUP0_URGENCY_MODE__SHIFT 0xc
+#define MMEA4_DRAM_WR_PRI_URGENCY__GROUP1_URGENCY_MODE__SHIFT 0xd
+#define MMEA4_DRAM_WR_PRI_URGENCY__GROUP2_URGENCY_MODE__SHIFT 0xe
+#define MMEA4_DRAM_WR_PRI_URGENCY__GROUP3_URGENCY_MODE__SHIFT 0xf
+#define MMEA4_DRAM_WR_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT_MASK 0x00000007L
+#define MMEA4_DRAM_WR_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT_MASK 0x00000038L
+#define MMEA4_DRAM_WR_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT_MASK 0x000001C0L
+#define MMEA4_DRAM_WR_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT_MASK 0x00000E00L
+#define MMEA4_DRAM_WR_PRI_URGENCY__GROUP0_URGENCY_MODE_MASK 0x00001000L
+#define MMEA4_DRAM_WR_PRI_URGENCY__GROUP1_URGENCY_MODE_MASK 0x00002000L
+#define MMEA4_DRAM_WR_PRI_URGENCY__GROUP2_URGENCY_MODE_MASK 0x00004000L
+#define MMEA4_DRAM_WR_PRI_URGENCY__GROUP3_URGENCY_MODE_MASK 0x00008000L
+//MMEA4_DRAM_RD_PRI_QUANT_PRI1
+#define MMEA4_DRAM_RD_PRI_QUANT_PRI1__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA4_DRAM_RD_PRI_QUANT_PRI1__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA4_DRAM_RD_PRI_QUANT_PRI1__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA4_DRAM_RD_PRI_QUANT_PRI1__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA4_DRAM_RD_PRI_QUANT_PRI1__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA4_DRAM_RD_PRI_QUANT_PRI1__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA4_DRAM_RD_PRI_QUANT_PRI1__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA4_DRAM_RD_PRI_QUANT_PRI1__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA4_DRAM_RD_PRI_QUANT_PRI2
+#define MMEA4_DRAM_RD_PRI_QUANT_PRI2__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA4_DRAM_RD_PRI_QUANT_PRI2__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA4_DRAM_RD_PRI_QUANT_PRI2__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA4_DRAM_RD_PRI_QUANT_PRI2__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA4_DRAM_RD_PRI_QUANT_PRI2__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA4_DRAM_RD_PRI_QUANT_PRI2__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA4_DRAM_RD_PRI_QUANT_PRI2__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA4_DRAM_RD_PRI_QUANT_PRI2__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA4_DRAM_RD_PRI_QUANT_PRI3
+#define MMEA4_DRAM_RD_PRI_QUANT_PRI3__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA4_DRAM_RD_PRI_QUANT_PRI3__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA4_DRAM_RD_PRI_QUANT_PRI3__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA4_DRAM_RD_PRI_QUANT_PRI3__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA4_DRAM_RD_PRI_QUANT_PRI3__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA4_DRAM_RD_PRI_QUANT_PRI3__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA4_DRAM_RD_PRI_QUANT_PRI3__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA4_DRAM_RD_PRI_QUANT_PRI3__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA4_DRAM_WR_PRI_QUANT_PRI1
+#define MMEA4_DRAM_WR_PRI_QUANT_PRI1__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA4_DRAM_WR_PRI_QUANT_PRI1__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA4_DRAM_WR_PRI_QUANT_PRI1__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA4_DRAM_WR_PRI_QUANT_PRI1__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA4_DRAM_WR_PRI_QUANT_PRI1__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA4_DRAM_WR_PRI_QUANT_PRI1__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA4_DRAM_WR_PRI_QUANT_PRI1__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA4_DRAM_WR_PRI_QUANT_PRI1__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA4_DRAM_WR_PRI_QUANT_PRI2
+#define MMEA4_DRAM_WR_PRI_QUANT_PRI2__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA4_DRAM_WR_PRI_QUANT_PRI2__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA4_DRAM_WR_PRI_QUANT_PRI2__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA4_DRAM_WR_PRI_QUANT_PRI2__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA4_DRAM_WR_PRI_QUANT_PRI2__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA4_DRAM_WR_PRI_QUANT_PRI2__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA4_DRAM_WR_PRI_QUANT_PRI2__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA4_DRAM_WR_PRI_QUANT_PRI2__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA4_DRAM_WR_PRI_QUANT_PRI3
+#define MMEA4_DRAM_WR_PRI_QUANT_PRI3__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA4_DRAM_WR_PRI_QUANT_PRI3__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA4_DRAM_WR_PRI_QUANT_PRI3__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA4_DRAM_WR_PRI_QUANT_PRI3__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA4_DRAM_WR_PRI_QUANT_PRI3__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA4_DRAM_WR_PRI_QUANT_PRI3__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA4_DRAM_WR_PRI_QUANT_PRI3__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA4_DRAM_WR_PRI_QUANT_PRI3__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA4_GMI_RD_CLI2GRP_MAP0
+#define MMEA4_GMI_RD_CLI2GRP_MAP0__CID0_GROUP__SHIFT 0x0
+#define MMEA4_GMI_RD_CLI2GRP_MAP0__CID1_GROUP__SHIFT 0x2
+#define MMEA4_GMI_RD_CLI2GRP_MAP0__CID2_GROUP__SHIFT 0x4
+#define MMEA4_GMI_RD_CLI2GRP_MAP0__CID3_GROUP__SHIFT 0x6
+#define MMEA4_GMI_RD_CLI2GRP_MAP0__CID4_GROUP__SHIFT 0x8
+#define MMEA4_GMI_RD_CLI2GRP_MAP0__CID5_GROUP__SHIFT 0xa
+#define MMEA4_GMI_RD_CLI2GRP_MAP0__CID6_GROUP__SHIFT 0xc
+#define MMEA4_GMI_RD_CLI2GRP_MAP0__CID7_GROUP__SHIFT 0xe
+#define MMEA4_GMI_RD_CLI2GRP_MAP0__CID8_GROUP__SHIFT 0x10
+#define MMEA4_GMI_RD_CLI2GRP_MAP0__CID9_GROUP__SHIFT 0x12
+#define MMEA4_GMI_RD_CLI2GRP_MAP0__CID10_GROUP__SHIFT 0x14
+#define MMEA4_GMI_RD_CLI2GRP_MAP0__CID11_GROUP__SHIFT 0x16
+#define MMEA4_GMI_RD_CLI2GRP_MAP0__CID12_GROUP__SHIFT 0x18
+#define MMEA4_GMI_RD_CLI2GRP_MAP0__CID13_GROUP__SHIFT 0x1a
+#define MMEA4_GMI_RD_CLI2GRP_MAP0__CID14_GROUP__SHIFT 0x1c
+#define MMEA4_GMI_RD_CLI2GRP_MAP0__CID15_GROUP__SHIFT 0x1e
+#define MMEA4_GMI_RD_CLI2GRP_MAP0__CID0_GROUP_MASK 0x00000003L
+#define MMEA4_GMI_RD_CLI2GRP_MAP0__CID1_GROUP_MASK 0x0000000CL
+#define MMEA4_GMI_RD_CLI2GRP_MAP0__CID2_GROUP_MASK 0x00000030L
+#define MMEA4_GMI_RD_CLI2GRP_MAP0__CID3_GROUP_MASK 0x000000C0L
+#define MMEA4_GMI_RD_CLI2GRP_MAP0__CID4_GROUP_MASK 0x00000300L
+#define MMEA4_GMI_RD_CLI2GRP_MAP0__CID5_GROUP_MASK 0x00000C00L
+#define MMEA4_GMI_RD_CLI2GRP_MAP0__CID6_GROUP_MASK 0x00003000L
+#define MMEA4_GMI_RD_CLI2GRP_MAP0__CID7_GROUP_MASK 0x0000C000L
+#define MMEA4_GMI_RD_CLI2GRP_MAP0__CID8_GROUP_MASK 0x00030000L
+#define MMEA4_GMI_RD_CLI2GRP_MAP0__CID9_GROUP_MASK 0x000C0000L
+#define MMEA4_GMI_RD_CLI2GRP_MAP0__CID10_GROUP_MASK 0x00300000L
+#define MMEA4_GMI_RD_CLI2GRP_MAP0__CID11_GROUP_MASK 0x00C00000L
+#define MMEA4_GMI_RD_CLI2GRP_MAP0__CID12_GROUP_MASK 0x03000000L
+#define MMEA4_GMI_RD_CLI2GRP_MAP0__CID13_GROUP_MASK 0x0C000000L
+#define MMEA4_GMI_RD_CLI2GRP_MAP0__CID14_GROUP_MASK 0x30000000L
+#define MMEA4_GMI_RD_CLI2GRP_MAP0__CID15_GROUP_MASK 0xC0000000L
+//MMEA4_GMI_RD_CLI2GRP_MAP1
+#define MMEA4_GMI_RD_CLI2GRP_MAP1__CID16_GROUP__SHIFT 0x0
+#define MMEA4_GMI_RD_CLI2GRP_MAP1__CID17_GROUP__SHIFT 0x2
+#define MMEA4_GMI_RD_CLI2GRP_MAP1__CID18_GROUP__SHIFT 0x4
+#define MMEA4_GMI_RD_CLI2GRP_MAP1__CID19_GROUP__SHIFT 0x6
+#define MMEA4_GMI_RD_CLI2GRP_MAP1__CID20_GROUP__SHIFT 0x8
+#define MMEA4_GMI_RD_CLI2GRP_MAP1__CID21_GROUP__SHIFT 0xa
+#define MMEA4_GMI_RD_CLI2GRP_MAP1__CID22_GROUP__SHIFT 0xc
+#define MMEA4_GMI_RD_CLI2GRP_MAP1__CID23_GROUP__SHIFT 0xe
+#define MMEA4_GMI_RD_CLI2GRP_MAP1__CID24_GROUP__SHIFT 0x10
+#define MMEA4_GMI_RD_CLI2GRP_MAP1__CID25_GROUP__SHIFT 0x12
+#define MMEA4_GMI_RD_CLI2GRP_MAP1__CID26_GROUP__SHIFT 0x14
+#define MMEA4_GMI_RD_CLI2GRP_MAP1__CID27_GROUP__SHIFT 0x16
+#define MMEA4_GMI_RD_CLI2GRP_MAP1__CID28_GROUP__SHIFT 0x18
+#define MMEA4_GMI_RD_CLI2GRP_MAP1__CID29_GROUP__SHIFT 0x1a
+#define MMEA4_GMI_RD_CLI2GRP_MAP1__CID30_GROUP__SHIFT 0x1c
+#define MMEA4_GMI_RD_CLI2GRP_MAP1__CID31_GROUP__SHIFT 0x1e
+#define MMEA4_GMI_RD_CLI2GRP_MAP1__CID16_GROUP_MASK 0x00000003L
+#define MMEA4_GMI_RD_CLI2GRP_MAP1__CID17_GROUP_MASK 0x0000000CL
+#define MMEA4_GMI_RD_CLI2GRP_MAP1__CID18_GROUP_MASK 0x00000030L
+#define MMEA4_GMI_RD_CLI2GRP_MAP1__CID19_GROUP_MASK 0x000000C0L
+#define MMEA4_GMI_RD_CLI2GRP_MAP1__CID20_GROUP_MASK 0x00000300L
+#define MMEA4_GMI_RD_CLI2GRP_MAP1__CID21_GROUP_MASK 0x00000C00L
+#define MMEA4_GMI_RD_CLI2GRP_MAP1__CID22_GROUP_MASK 0x00003000L
+#define MMEA4_GMI_RD_CLI2GRP_MAP1__CID23_GROUP_MASK 0x0000C000L
+#define MMEA4_GMI_RD_CLI2GRP_MAP1__CID24_GROUP_MASK 0x00030000L
+#define MMEA4_GMI_RD_CLI2GRP_MAP1__CID25_GROUP_MASK 0x000C0000L
+#define MMEA4_GMI_RD_CLI2GRP_MAP1__CID26_GROUP_MASK 0x00300000L
+#define MMEA4_GMI_RD_CLI2GRP_MAP1__CID27_GROUP_MASK 0x00C00000L
+#define MMEA4_GMI_RD_CLI2GRP_MAP1__CID28_GROUP_MASK 0x03000000L
+#define MMEA4_GMI_RD_CLI2GRP_MAP1__CID29_GROUP_MASK 0x0C000000L
+#define MMEA4_GMI_RD_CLI2GRP_MAP1__CID30_GROUP_MASK 0x30000000L
+#define MMEA4_GMI_RD_CLI2GRP_MAP1__CID31_GROUP_MASK 0xC0000000L
+//MMEA4_GMI_WR_CLI2GRP_MAP0
+#define MMEA4_GMI_WR_CLI2GRP_MAP0__CID0_GROUP__SHIFT 0x0
+#define MMEA4_GMI_WR_CLI2GRP_MAP0__CID1_GROUP__SHIFT 0x2
+#define MMEA4_GMI_WR_CLI2GRP_MAP0__CID2_GROUP__SHIFT 0x4
+#define MMEA4_GMI_WR_CLI2GRP_MAP0__CID3_GROUP__SHIFT 0x6
+#define MMEA4_GMI_WR_CLI2GRP_MAP0__CID4_GROUP__SHIFT 0x8
+#define MMEA4_GMI_WR_CLI2GRP_MAP0__CID5_GROUP__SHIFT 0xa
+#define MMEA4_GMI_WR_CLI2GRP_MAP0__CID6_GROUP__SHIFT 0xc
+#define MMEA4_GMI_WR_CLI2GRP_MAP0__CID7_GROUP__SHIFT 0xe
+#define MMEA4_GMI_WR_CLI2GRP_MAP0__CID8_GROUP__SHIFT 0x10
+#define MMEA4_GMI_WR_CLI2GRP_MAP0__CID9_GROUP__SHIFT 0x12
+#define MMEA4_GMI_WR_CLI2GRP_MAP0__CID10_GROUP__SHIFT 0x14
+#define MMEA4_GMI_WR_CLI2GRP_MAP0__CID11_GROUP__SHIFT 0x16
+#define MMEA4_GMI_WR_CLI2GRP_MAP0__CID12_GROUP__SHIFT 0x18
+#define MMEA4_GMI_WR_CLI2GRP_MAP0__CID13_GROUP__SHIFT 0x1a
+#define MMEA4_GMI_WR_CLI2GRP_MAP0__CID14_GROUP__SHIFT 0x1c
+#define MMEA4_GMI_WR_CLI2GRP_MAP0__CID15_GROUP__SHIFT 0x1e
+#define MMEA4_GMI_WR_CLI2GRP_MAP0__CID0_GROUP_MASK 0x00000003L
+#define MMEA4_GMI_WR_CLI2GRP_MAP0__CID1_GROUP_MASK 0x0000000CL
+#define MMEA4_GMI_WR_CLI2GRP_MAP0__CID2_GROUP_MASK 0x00000030L
+#define MMEA4_GMI_WR_CLI2GRP_MAP0__CID3_GROUP_MASK 0x000000C0L
+#define MMEA4_GMI_WR_CLI2GRP_MAP0__CID4_GROUP_MASK 0x00000300L
+#define MMEA4_GMI_WR_CLI2GRP_MAP0__CID5_GROUP_MASK 0x00000C00L
+#define MMEA4_GMI_WR_CLI2GRP_MAP0__CID6_GROUP_MASK 0x00003000L
+#define MMEA4_GMI_WR_CLI2GRP_MAP0__CID7_GROUP_MASK 0x0000C000L
+#define MMEA4_GMI_WR_CLI2GRP_MAP0__CID8_GROUP_MASK 0x00030000L
+#define MMEA4_GMI_WR_CLI2GRP_MAP0__CID9_GROUP_MASK 0x000C0000L
+#define MMEA4_GMI_WR_CLI2GRP_MAP0__CID10_GROUP_MASK 0x00300000L
+#define MMEA4_GMI_WR_CLI2GRP_MAP0__CID11_GROUP_MASK 0x00C00000L
+#define MMEA4_GMI_WR_CLI2GRP_MAP0__CID12_GROUP_MASK 0x03000000L
+#define MMEA4_GMI_WR_CLI2GRP_MAP0__CID13_GROUP_MASK 0x0C000000L
+#define MMEA4_GMI_WR_CLI2GRP_MAP0__CID14_GROUP_MASK 0x30000000L
+#define MMEA4_GMI_WR_CLI2GRP_MAP0__CID15_GROUP_MASK 0xC0000000L
+//MMEA4_GMI_WR_CLI2GRP_MAP1
+#define MMEA4_GMI_WR_CLI2GRP_MAP1__CID16_GROUP__SHIFT 0x0
+#define MMEA4_GMI_WR_CLI2GRP_MAP1__CID17_GROUP__SHIFT 0x2
+#define MMEA4_GMI_WR_CLI2GRP_MAP1__CID18_GROUP__SHIFT 0x4
+#define MMEA4_GMI_WR_CLI2GRP_MAP1__CID19_GROUP__SHIFT 0x6
+#define MMEA4_GMI_WR_CLI2GRP_MAP1__CID20_GROUP__SHIFT 0x8
+#define MMEA4_GMI_WR_CLI2GRP_MAP1__CID21_GROUP__SHIFT 0xa
+#define MMEA4_GMI_WR_CLI2GRP_MAP1__CID22_GROUP__SHIFT 0xc
+#define MMEA4_GMI_WR_CLI2GRP_MAP1__CID23_GROUP__SHIFT 0xe
+#define MMEA4_GMI_WR_CLI2GRP_MAP1__CID24_GROUP__SHIFT 0x10
+#define MMEA4_GMI_WR_CLI2GRP_MAP1__CID25_GROUP__SHIFT 0x12
+#define MMEA4_GMI_WR_CLI2GRP_MAP1__CID26_GROUP__SHIFT 0x14
+#define MMEA4_GMI_WR_CLI2GRP_MAP1__CID27_GROUP__SHIFT 0x16
+#define MMEA4_GMI_WR_CLI2GRP_MAP1__CID28_GROUP__SHIFT 0x18
+#define MMEA4_GMI_WR_CLI2GRP_MAP1__CID29_GROUP__SHIFT 0x1a
+#define MMEA4_GMI_WR_CLI2GRP_MAP1__CID30_GROUP__SHIFT 0x1c
+#define MMEA4_GMI_WR_CLI2GRP_MAP1__CID31_GROUP__SHIFT 0x1e
+#define MMEA4_GMI_WR_CLI2GRP_MAP1__CID16_GROUP_MASK 0x00000003L
+#define MMEA4_GMI_WR_CLI2GRP_MAP1__CID17_GROUP_MASK 0x0000000CL
+#define MMEA4_GMI_WR_CLI2GRP_MAP1__CID18_GROUP_MASK 0x00000030L
+#define MMEA4_GMI_WR_CLI2GRP_MAP1__CID19_GROUP_MASK 0x000000C0L
+#define MMEA4_GMI_WR_CLI2GRP_MAP1__CID20_GROUP_MASK 0x00000300L
+#define MMEA4_GMI_WR_CLI2GRP_MAP1__CID21_GROUP_MASK 0x00000C00L
+#define MMEA4_GMI_WR_CLI2GRP_MAP1__CID22_GROUP_MASK 0x00003000L
+#define MMEA4_GMI_WR_CLI2GRP_MAP1__CID23_GROUP_MASK 0x0000C000L
+#define MMEA4_GMI_WR_CLI2GRP_MAP1__CID24_GROUP_MASK 0x00030000L
+#define MMEA4_GMI_WR_CLI2GRP_MAP1__CID25_GROUP_MASK 0x000C0000L
+#define MMEA4_GMI_WR_CLI2GRP_MAP1__CID26_GROUP_MASK 0x00300000L
+#define MMEA4_GMI_WR_CLI2GRP_MAP1__CID27_GROUP_MASK 0x00C00000L
+#define MMEA4_GMI_WR_CLI2GRP_MAP1__CID28_GROUP_MASK 0x03000000L
+#define MMEA4_GMI_WR_CLI2GRP_MAP1__CID29_GROUP_MASK 0x0C000000L
+#define MMEA4_GMI_WR_CLI2GRP_MAP1__CID30_GROUP_MASK 0x30000000L
+#define MMEA4_GMI_WR_CLI2GRP_MAP1__CID31_GROUP_MASK 0xC0000000L
+//MMEA4_GMI_RD_GRP2VC_MAP
+#define MMEA4_GMI_RD_GRP2VC_MAP__GROUP0_VC__SHIFT 0x0
+#define MMEA4_GMI_RD_GRP2VC_MAP__GROUP1_VC__SHIFT 0x3
+#define MMEA4_GMI_RD_GRP2VC_MAP__GROUP2_VC__SHIFT 0x6
+#define MMEA4_GMI_RD_GRP2VC_MAP__GROUP3_VC__SHIFT 0x9
+#define MMEA4_GMI_RD_GRP2VC_MAP__GROUP0_VC_MASK 0x00000007L
+#define MMEA4_GMI_RD_GRP2VC_MAP__GROUP1_VC_MASK 0x00000038L
+#define MMEA4_GMI_RD_GRP2VC_MAP__GROUP2_VC_MASK 0x000001C0L
+#define MMEA4_GMI_RD_GRP2VC_MAP__GROUP3_VC_MASK 0x00000E00L
+//MMEA4_GMI_WR_GRP2VC_MAP
+#define MMEA4_GMI_WR_GRP2VC_MAP__GROUP0_VC__SHIFT 0x0
+#define MMEA4_GMI_WR_GRP2VC_MAP__GROUP1_VC__SHIFT 0x3
+#define MMEA4_GMI_WR_GRP2VC_MAP__GROUP2_VC__SHIFT 0x6
+#define MMEA4_GMI_WR_GRP2VC_MAP__GROUP3_VC__SHIFT 0x9
+#define MMEA4_GMI_WR_GRP2VC_MAP__GROUP0_VC_MASK 0x00000007L
+#define MMEA4_GMI_WR_GRP2VC_MAP__GROUP1_VC_MASK 0x00000038L
+#define MMEA4_GMI_WR_GRP2VC_MAP__GROUP2_VC_MASK 0x000001C0L
+#define MMEA4_GMI_WR_GRP2VC_MAP__GROUP3_VC_MASK 0x00000E00L
+//MMEA4_GMI_RD_LAZY
+#define MMEA4_GMI_RD_LAZY__GROUP0_DELAY__SHIFT 0x0
+#define MMEA4_GMI_RD_LAZY__GROUP1_DELAY__SHIFT 0x3
+#define MMEA4_GMI_RD_LAZY__GROUP2_DELAY__SHIFT 0x6
+#define MMEA4_GMI_RD_LAZY__GROUP3_DELAY__SHIFT 0x9
+#define MMEA4_GMI_RD_LAZY__REQ_ACCUM_THRESH__SHIFT 0xc
+#define MMEA4_GMI_RD_LAZY__REQ_ACCUM_TIMEOUT__SHIFT 0x14
+#define MMEA4_GMI_RD_LAZY__REQ_ACCUM_IDLEMAX__SHIFT 0x1b
+#define MMEA4_GMI_RD_LAZY__GROUP0_DELAY_MASK 0x00000007L
+#define MMEA4_GMI_RD_LAZY__GROUP1_DELAY_MASK 0x00000038L
+#define MMEA4_GMI_RD_LAZY__GROUP2_DELAY_MASK 0x000001C0L
+#define MMEA4_GMI_RD_LAZY__GROUP3_DELAY_MASK 0x00000E00L
+#define MMEA4_GMI_RD_LAZY__REQ_ACCUM_THRESH_MASK 0x0003F000L
+#define MMEA4_GMI_RD_LAZY__REQ_ACCUM_TIMEOUT_MASK 0x07F00000L
+#define MMEA4_GMI_RD_LAZY__REQ_ACCUM_IDLEMAX_MASK 0x78000000L
+//MMEA4_GMI_WR_LAZY
+#define MMEA4_GMI_WR_LAZY__GROUP0_DELAY__SHIFT 0x0
+#define MMEA4_GMI_WR_LAZY__GROUP1_DELAY__SHIFT 0x3
+#define MMEA4_GMI_WR_LAZY__GROUP2_DELAY__SHIFT 0x6
+#define MMEA4_GMI_WR_LAZY__GROUP3_DELAY__SHIFT 0x9
+#define MMEA4_GMI_WR_LAZY__REQ_ACCUM_THRESH__SHIFT 0xc
+#define MMEA4_GMI_WR_LAZY__REQ_ACCUM_TIMEOUT__SHIFT 0x14
+#define MMEA4_GMI_WR_LAZY__REQ_ACCUM_IDLEMAX__SHIFT 0x1b
+#define MMEA4_GMI_WR_LAZY__GROUP0_DELAY_MASK 0x00000007L
+#define MMEA4_GMI_WR_LAZY__GROUP1_DELAY_MASK 0x00000038L
+#define MMEA4_GMI_WR_LAZY__GROUP2_DELAY_MASK 0x000001C0L
+#define MMEA4_GMI_WR_LAZY__GROUP3_DELAY_MASK 0x00000E00L
+#define MMEA4_GMI_WR_LAZY__REQ_ACCUM_THRESH_MASK 0x0003F000L
+#define MMEA4_GMI_WR_LAZY__REQ_ACCUM_TIMEOUT_MASK 0x07F00000L
+#define MMEA4_GMI_WR_LAZY__REQ_ACCUM_IDLEMAX_MASK 0x78000000L
+//MMEA4_GMI_RD_CAM_CNTL
+#define MMEA4_GMI_RD_CAM_CNTL__DEPTH_GROUP0__SHIFT 0x0
+#define MMEA4_GMI_RD_CAM_CNTL__DEPTH_GROUP1__SHIFT 0x4
+#define MMEA4_GMI_RD_CAM_CNTL__DEPTH_GROUP2__SHIFT 0x8
+#define MMEA4_GMI_RD_CAM_CNTL__DEPTH_GROUP3__SHIFT 0xc
+#define MMEA4_GMI_RD_CAM_CNTL__REORDER_LIMIT_GROUP0__SHIFT 0x10
+#define MMEA4_GMI_RD_CAM_CNTL__REORDER_LIMIT_GROUP1__SHIFT 0x13
+#define MMEA4_GMI_RD_CAM_CNTL__REORDER_LIMIT_GROUP2__SHIFT 0x16
+#define MMEA4_GMI_RD_CAM_CNTL__REORDER_LIMIT_GROUP3__SHIFT 0x19
+#define MMEA4_GMI_RD_CAM_CNTL__REFILL_CHAIN__SHIFT 0x1c
+#define MMEA4_GMI_RD_CAM_CNTL__PAGEBASED_CHAINING__SHIFT 0x1d
+#define MMEA4_GMI_RD_CAM_CNTL__DEPTH_GROUP0_MASK 0x0000000FL
+#define MMEA4_GMI_RD_CAM_CNTL__DEPTH_GROUP1_MASK 0x000000F0L
+#define MMEA4_GMI_RD_CAM_CNTL__DEPTH_GROUP2_MASK 0x00000F00L
+#define MMEA4_GMI_RD_CAM_CNTL__DEPTH_GROUP3_MASK 0x0000F000L
+#define MMEA4_GMI_RD_CAM_CNTL__REORDER_LIMIT_GROUP0_MASK 0x00070000L
+#define MMEA4_GMI_RD_CAM_CNTL__REORDER_LIMIT_GROUP1_MASK 0x00380000L
+#define MMEA4_GMI_RD_CAM_CNTL__REORDER_LIMIT_GROUP2_MASK 0x01C00000L
+#define MMEA4_GMI_RD_CAM_CNTL__REORDER_LIMIT_GROUP3_MASK 0x0E000000L
+#define MMEA4_GMI_RD_CAM_CNTL__REFILL_CHAIN_MASK 0x10000000L
+#define MMEA4_GMI_RD_CAM_CNTL__PAGEBASED_CHAINING_MASK 0x20000000L
+//MMEA4_GMI_WR_CAM_CNTL
+#define MMEA4_GMI_WR_CAM_CNTL__DEPTH_GROUP0__SHIFT 0x0
+#define MMEA4_GMI_WR_CAM_CNTL__DEPTH_GROUP1__SHIFT 0x4
+#define MMEA4_GMI_WR_CAM_CNTL__DEPTH_GROUP2__SHIFT 0x8
+#define MMEA4_GMI_WR_CAM_CNTL__DEPTH_GROUP3__SHIFT 0xc
+#define MMEA4_GMI_WR_CAM_CNTL__REORDER_LIMIT_GROUP0__SHIFT 0x10
+#define MMEA4_GMI_WR_CAM_CNTL__REORDER_LIMIT_GROUP1__SHIFT 0x13
+#define MMEA4_GMI_WR_CAM_CNTL__REORDER_LIMIT_GROUP2__SHIFT 0x16
+#define MMEA4_GMI_WR_CAM_CNTL__REORDER_LIMIT_GROUP3__SHIFT 0x19
+#define MMEA4_GMI_WR_CAM_CNTL__REFILL_CHAIN__SHIFT 0x1c
+#define MMEA4_GMI_WR_CAM_CNTL__PAGEBASED_CHAINING__SHIFT 0x1d
+#define MMEA4_GMI_WR_CAM_CNTL__DEPTH_GROUP0_MASK 0x0000000FL
+#define MMEA4_GMI_WR_CAM_CNTL__DEPTH_GROUP1_MASK 0x000000F0L
+#define MMEA4_GMI_WR_CAM_CNTL__DEPTH_GROUP2_MASK 0x00000F00L
+#define MMEA4_GMI_WR_CAM_CNTL__DEPTH_GROUP3_MASK 0x0000F000L
+#define MMEA4_GMI_WR_CAM_CNTL__REORDER_LIMIT_GROUP0_MASK 0x00070000L
+#define MMEA4_GMI_WR_CAM_CNTL__REORDER_LIMIT_GROUP1_MASK 0x00380000L
+#define MMEA4_GMI_WR_CAM_CNTL__REORDER_LIMIT_GROUP2_MASK 0x01C00000L
+#define MMEA4_GMI_WR_CAM_CNTL__REORDER_LIMIT_GROUP3_MASK 0x0E000000L
+#define MMEA4_GMI_WR_CAM_CNTL__REFILL_CHAIN_MASK 0x10000000L
+#define MMEA4_GMI_WR_CAM_CNTL__PAGEBASED_CHAINING_MASK 0x20000000L
+//MMEA4_GMI_PAGE_BURST
+#define MMEA4_GMI_PAGE_BURST__RD_LIMIT_LO__SHIFT 0x0
+#define MMEA4_GMI_PAGE_BURST__RD_LIMIT_HI__SHIFT 0x8
+#define MMEA4_GMI_PAGE_BURST__WR_LIMIT_LO__SHIFT 0x10
+#define MMEA4_GMI_PAGE_BURST__WR_LIMIT_HI__SHIFT 0x18
+#define MMEA4_GMI_PAGE_BURST__RD_LIMIT_LO_MASK 0x000000FFL
+#define MMEA4_GMI_PAGE_BURST__RD_LIMIT_HI_MASK 0x0000FF00L
+#define MMEA4_GMI_PAGE_BURST__WR_LIMIT_LO_MASK 0x00FF0000L
+#define MMEA4_GMI_PAGE_BURST__WR_LIMIT_HI_MASK 0xFF000000L
+//MMEA4_GMI_RD_PRI_AGE
+#define MMEA4_GMI_RD_PRI_AGE__GROUP0_AGING_RATE__SHIFT 0x0
+#define MMEA4_GMI_RD_PRI_AGE__GROUP1_AGING_RATE__SHIFT 0x3
+#define MMEA4_GMI_RD_PRI_AGE__GROUP2_AGING_RATE__SHIFT 0x6
+#define MMEA4_GMI_RD_PRI_AGE__GROUP3_AGING_RATE__SHIFT 0x9
+#define MMEA4_GMI_RD_PRI_AGE__GROUP0_AGE_COEFFICIENT__SHIFT 0xc
+#define MMEA4_GMI_RD_PRI_AGE__GROUP1_AGE_COEFFICIENT__SHIFT 0xf
+#define MMEA4_GMI_RD_PRI_AGE__GROUP2_AGE_COEFFICIENT__SHIFT 0x12
+#define MMEA4_GMI_RD_PRI_AGE__GROUP3_AGE_COEFFICIENT__SHIFT 0x15
+#define MMEA4_GMI_RD_PRI_AGE__GROUP0_AGING_RATE_MASK 0x00000007L
+#define MMEA4_GMI_RD_PRI_AGE__GROUP1_AGING_RATE_MASK 0x00000038L
+#define MMEA4_GMI_RD_PRI_AGE__GROUP2_AGING_RATE_MASK 0x000001C0L
+#define MMEA4_GMI_RD_PRI_AGE__GROUP3_AGING_RATE_MASK 0x00000E00L
+#define MMEA4_GMI_RD_PRI_AGE__GROUP0_AGE_COEFFICIENT_MASK 0x00007000L
+#define MMEA4_GMI_RD_PRI_AGE__GROUP1_AGE_COEFFICIENT_MASK 0x00038000L
+#define MMEA4_GMI_RD_PRI_AGE__GROUP2_AGE_COEFFICIENT_MASK 0x001C0000L
+#define MMEA4_GMI_RD_PRI_AGE__GROUP3_AGE_COEFFICIENT_MASK 0x00E00000L
+//MMEA4_GMI_WR_PRI_AGE
+#define MMEA4_GMI_WR_PRI_AGE__GROUP0_AGING_RATE__SHIFT 0x0
+#define MMEA4_GMI_WR_PRI_AGE__GROUP1_AGING_RATE__SHIFT 0x3
+#define MMEA4_GMI_WR_PRI_AGE__GROUP2_AGING_RATE__SHIFT 0x6
+#define MMEA4_GMI_WR_PRI_AGE__GROUP3_AGING_RATE__SHIFT 0x9
+#define MMEA4_GMI_WR_PRI_AGE__GROUP0_AGE_COEFFICIENT__SHIFT 0xc
+#define MMEA4_GMI_WR_PRI_AGE__GROUP1_AGE_COEFFICIENT__SHIFT 0xf
+#define MMEA4_GMI_WR_PRI_AGE__GROUP2_AGE_COEFFICIENT__SHIFT 0x12
+#define MMEA4_GMI_WR_PRI_AGE__GROUP3_AGE_COEFFICIENT__SHIFT 0x15
+#define MMEA4_GMI_WR_PRI_AGE__GROUP0_AGING_RATE_MASK 0x00000007L
+#define MMEA4_GMI_WR_PRI_AGE__GROUP1_AGING_RATE_MASK 0x00000038L
+#define MMEA4_GMI_WR_PRI_AGE__GROUP2_AGING_RATE_MASK 0x000001C0L
+#define MMEA4_GMI_WR_PRI_AGE__GROUP3_AGING_RATE_MASK 0x00000E00L
+#define MMEA4_GMI_WR_PRI_AGE__GROUP0_AGE_COEFFICIENT_MASK 0x00007000L
+#define MMEA4_GMI_WR_PRI_AGE__GROUP1_AGE_COEFFICIENT_MASK 0x00038000L
+#define MMEA4_GMI_WR_PRI_AGE__GROUP2_AGE_COEFFICIENT_MASK 0x001C0000L
+#define MMEA4_GMI_WR_PRI_AGE__GROUP3_AGE_COEFFICIENT_MASK 0x00E00000L
+//MMEA4_GMI_RD_PRI_QUEUING
+#define MMEA4_GMI_RD_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT__SHIFT 0x0
+#define MMEA4_GMI_RD_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT__SHIFT 0x3
+#define MMEA4_GMI_RD_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT__SHIFT 0x6
+#define MMEA4_GMI_RD_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT__SHIFT 0x9
+#define MMEA4_GMI_RD_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT_MASK 0x00000007L
+#define MMEA4_GMI_RD_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT_MASK 0x00000038L
+#define MMEA4_GMI_RD_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT_MASK 0x000001C0L
+#define MMEA4_GMI_RD_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT_MASK 0x00000E00L
+//MMEA4_GMI_WR_PRI_QUEUING
+#define MMEA4_GMI_WR_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT__SHIFT 0x0
+#define MMEA4_GMI_WR_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT__SHIFT 0x3
+#define MMEA4_GMI_WR_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT__SHIFT 0x6
+#define MMEA4_GMI_WR_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT__SHIFT 0x9
+#define MMEA4_GMI_WR_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT_MASK 0x00000007L
+#define MMEA4_GMI_WR_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT_MASK 0x00000038L
+#define MMEA4_GMI_WR_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT_MASK 0x000001C0L
+#define MMEA4_GMI_WR_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT_MASK 0x00000E00L
+//MMEA4_GMI_RD_PRI_FIXED
+#define MMEA4_GMI_RD_PRI_FIXED__GROUP0_FIXED_COEFFICIENT__SHIFT 0x0
+#define MMEA4_GMI_RD_PRI_FIXED__GROUP1_FIXED_COEFFICIENT__SHIFT 0x3
+#define MMEA4_GMI_RD_PRI_FIXED__GROUP2_FIXED_COEFFICIENT__SHIFT 0x6
+#define MMEA4_GMI_RD_PRI_FIXED__GROUP3_FIXED_COEFFICIENT__SHIFT 0x9
+#define MMEA4_GMI_RD_PRI_FIXED__GROUP0_FIXED_COEFFICIENT_MASK 0x00000007L
+#define MMEA4_GMI_RD_PRI_FIXED__GROUP1_FIXED_COEFFICIENT_MASK 0x00000038L
+#define MMEA4_GMI_RD_PRI_FIXED__GROUP2_FIXED_COEFFICIENT_MASK 0x000001C0L
+#define MMEA4_GMI_RD_PRI_FIXED__GROUP3_FIXED_COEFFICIENT_MASK 0x00000E00L
+//MMEA4_GMI_WR_PRI_FIXED
+#define MMEA4_GMI_WR_PRI_FIXED__GROUP0_FIXED_COEFFICIENT__SHIFT 0x0
+#define MMEA4_GMI_WR_PRI_FIXED__GROUP1_FIXED_COEFFICIENT__SHIFT 0x3
+#define MMEA4_GMI_WR_PRI_FIXED__GROUP2_FIXED_COEFFICIENT__SHIFT 0x6
+#define MMEA4_GMI_WR_PRI_FIXED__GROUP3_FIXED_COEFFICIENT__SHIFT 0x9
+#define MMEA4_GMI_WR_PRI_FIXED__GROUP0_FIXED_COEFFICIENT_MASK 0x00000007L
+#define MMEA4_GMI_WR_PRI_FIXED__GROUP1_FIXED_COEFFICIENT_MASK 0x00000038L
+#define MMEA4_GMI_WR_PRI_FIXED__GROUP2_FIXED_COEFFICIENT_MASK 0x000001C0L
+#define MMEA4_GMI_WR_PRI_FIXED__GROUP3_FIXED_COEFFICIENT_MASK 0x00000E00L
+//MMEA4_GMI_RD_PRI_URGENCY
+#define MMEA4_GMI_RD_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT__SHIFT 0x0
+#define MMEA4_GMI_RD_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT__SHIFT 0x3
+#define MMEA4_GMI_RD_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT__SHIFT 0x6
+#define MMEA4_GMI_RD_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT__SHIFT 0x9
+#define MMEA4_GMI_RD_PRI_URGENCY__GROUP0_URGENCY_MODE__SHIFT 0xc
+#define MMEA4_GMI_RD_PRI_URGENCY__GROUP1_URGENCY_MODE__SHIFT 0xd
+#define MMEA4_GMI_RD_PRI_URGENCY__GROUP2_URGENCY_MODE__SHIFT 0xe
+#define MMEA4_GMI_RD_PRI_URGENCY__GROUP3_URGENCY_MODE__SHIFT 0xf
+#define MMEA4_GMI_RD_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT_MASK 0x00000007L
+#define MMEA4_GMI_RD_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT_MASK 0x00000038L
+#define MMEA4_GMI_RD_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT_MASK 0x000001C0L
+#define MMEA4_GMI_RD_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT_MASK 0x00000E00L
+#define MMEA4_GMI_RD_PRI_URGENCY__GROUP0_URGENCY_MODE_MASK 0x00001000L
+#define MMEA4_GMI_RD_PRI_URGENCY__GROUP1_URGENCY_MODE_MASK 0x00002000L
+#define MMEA4_GMI_RD_PRI_URGENCY__GROUP2_URGENCY_MODE_MASK 0x00004000L
+#define MMEA4_GMI_RD_PRI_URGENCY__GROUP3_URGENCY_MODE_MASK 0x00008000L
+//MMEA4_GMI_WR_PRI_URGENCY
+#define MMEA4_GMI_WR_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT__SHIFT 0x0
+#define MMEA4_GMI_WR_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT__SHIFT 0x3
+#define MMEA4_GMI_WR_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT__SHIFT 0x6
+#define MMEA4_GMI_WR_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT__SHIFT 0x9
+#define MMEA4_GMI_WR_PRI_URGENCY__GROUP0_URGENCY_MODE__SHIFT 0xc
+#define MMEA4_GMI_WR_PRI_URGENCY__GROUP1_URGENCY_MODE__SHIFT 0xd
+#define MMEA4_GMI_WR_PRI_URGENCY__GROUP2_URGENCY_MODE__SHIFT 0xe
+#define MMEA4_GMI_WR_PRI_URGENCY__GROUP3_URGENCY_MODE__SHIFT 0xf
+#define MMEA4_GMI_WR_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT_MASK 0x00000007L
+#define MMEA4_GMI_WR_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT_MASK 0x00000038L
+#define MMEA4_GMI_WR_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT_MASK 0x000001C0L
+#define MMEA4_GMI_WR_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT_MASK 0x00000E00L
+#define MMEA4_GMI_WR_PRI_URGENCY__GROUP0_URGENCY_MODE_MASK 0x00001000L
+#define MMEA4_GMI_WR_PRI_URGENCY__GROUP1_URGENCY_MODE_MASK 0x00002000L
+#define MMEA4_GMI_WR_PRI_URGENCY__GROUP2_URGENCY_MODE_MASK 0x00004000L
+#define MMEA4_GMI_WR_PRI_URGENCY__GROUP3_URGENCY_MODE_MASK 0x00008000L
+//MMEA4_GMI_RD_PRI_URGENCY_MASKING
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID0_MASK__SHIFT 0x0
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID1_MASK__SHIFT 0x1
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID2_MASK__SHIFT 0x2
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID3_MASK__SHIFT 0x3
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID4_MASK__SHIFT 0x4
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID5_MASK__SHIFT 0x5
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID6_MASK__SHIFT 0x6
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID7_MASK__SHIFT 0x7
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID8_MASK__SHIFT 0x8
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID9_MASK__SHIFT 0x9
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID10_MASK__SHIFT 0xa
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID11_MASK__SHIFT 0xb
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID12_MASK__SHIFT 0xc
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID13_MASK__SHIFT 0xd
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID14_MASK__SHIFT 0xe
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID15_MASK__SHIFT 0xf
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID16_MASK__SHIFT 0x10
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID17_MASK__SHIFT 0x11
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID18_MASK__SHIFT 0x12
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID19_MASK__SHIFT 0x13
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID20_MASK__SHIFT 0x14
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID21_MASK__SHIFT 0x15
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID22_MASK__SHIFT 0x16
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID23_MASK__SHIFT 0x17
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID24_MASK__SHIFT 0x18
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID25_MASK__SHIFT 0x19
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID26_MASK__SHIFT 0x1a
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID27_MASK__SHIFT 0x1b
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID28_MASK__SHIFT 0x1c
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID29_MASK__SHIFT 0x1d
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID30_MASK__SHIFT 0x1e
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID31_MASK__SHIFT 0x1f
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID0_MASK_MASK 0x00000001L
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID1_MASK_MASK 0x00000002L
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID2_MASK_MASK 0x00000004L
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID3_MASK_MASK 0x00000008L
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID4_MASK_MASK 0x00000010L
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID5_MASK_MASK 0x00000020L
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID6_MASK_MASK 0x00000040L
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID7_MASK_MASK 0x00000080L
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID8_MASK_MASK 0x00000100L
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID9_MASK_MASK 0x00000200L
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID10_MASK_MASK 0x00000400L
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID11_MASK_MASK 0x00000800L
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID12_MASK_MASK 0x00001000L
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID13_MASK_MASK 0x00002000L
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID14_MASK_MASK 0x00004000L
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID15_MASK_MASK 0x00008000L
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID16_MASK_MASK 0x00010000L
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID17_MASK_MASK 0x00020000L
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID18_MASK_MASK 0x00040000L
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID19_MASK_MASK 0x00080000L
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID20_MASK_MASK 0x00100000L
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID21_MASK_MASK 0x00200000L
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID22_MASK_MASK 0x00400000L
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID23_MASK_MASK 0x00800000L
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID24_MASK_MASK 0x01000000L
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID25_MASK_MASK 0x02000000L
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID26_MASK_MASK 0x04000000L
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID27_MASK_MASK 0x08000000L
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID28_MASK_MASK 0x10000000L
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID29_MASK_MASK 0x20000000L
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID30_MASK_MASK 0x40000000L
+#define MMEA4_GMI_RD_PRI_URGENCY_MASKING__CID31_MASK_MASK 0x80000000L
+//MMEA4_GMI_WR_PRI_URGENCY_MASKING
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID0_MASK__SHIFT 0x0
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID1_MASK__SHIFT 0x1
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID2_MASK__SHIFT 0x2
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID3_MASK__SHIFT 0x3
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID4_MASK__SHIFT 0x4
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID5_MASK__SHIFT 0x5
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID6_MASK__SHIFT 0x6
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID7_MASK__SHIFT 0x7
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID8_MASK__SHIFT 0x8
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID9_MASK__SHIFT 0x9
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID10_MASK__SHIFT 0xa
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID11_MASK__SHIFT 0xb
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID12_MASK__SHIFT 0xc
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID13_MASK__SHIFT 0xd
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID14_MASK__SHIFT 0xe
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID15_MASK__SHIFT 0xf
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID16_MASK__SHIFT 0x10
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID17_MASK__SHIFT 0x11
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID18_MASK__SHIFT 0x12
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID19_MASK__SHIFT 0x13
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID20_MASK__SHIFT 0x14
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID21_MASK__SHIFT 0x15
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID22_MASK__SHIFT 0x16
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID23_MASK__SHIFT 0x17
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID24_MASK__SHIFT 0x18
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID25_MASK__SHIFT 0x19
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID26_MASK__SHIFT 0x1a
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID27_MASK__SHIFT 0x1b
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID28_MASK__SHIFT 0x1c
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID29_MASK__SHIFT 0x1d
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID30_MASK__SHIFT 0x1e
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID31_MASK__SHIFT 0x1f
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID0_MASK_MASK 0x00000001L
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID1_MASK_MASK 0x00000002L
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID2_MASK_MASK 0x00000004L
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID3_MASK_MASK 0x00000008L
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID4_MASK_MASK 0x00000010L
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID5_MASK_MASK 0x00000020L
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID6_MASK_MASK 0x00000040L
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID7_MASK_MASK 0x00000080L
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID8_MASK_MASK 0x00000100L
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID9_MASK_MASK 0x00000200L
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID10_MASK_MASK 0x00000400L
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID11_MASK_MASK 0x00000800L
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID12_MASK_MASK 0x00001000L
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID13_MASK_MASK 0x00002000L
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID14_MASK_MASK 0x00004000L
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID15_MASK_MASK 0x00008000L
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID16_MASK_MASK 0x00010000L
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID17_MASK_MASK 0x00020000L
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID18_MASK_MASK 0x00040000L
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID19_MASK_MASK 0x00080000L
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID20_MASK_MASK 0x00100000L
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID21_MASK_MASK 0x00200000L
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID22_MASK_MASK 0x00400000L
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID23_MASK_MASK 0x00800000L
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID24_MASK_MASK 0x01000000L
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID25_MASK_MASK 0x02000000L
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID26_MASK_MASK 0x04000000L
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID27_MASK_MASK 0x08000000L
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID28_MASK_MASK 0x10000000L
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID29_MASK_MASK 0x20000000L
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID30_MASK_MASK 0x40000000L
+#define MMEA4_GMI_WR_PRI_URGENCY_MASKING__CID31_MASK_MASK 0x80000000L
+//MMEA4_GMI_RD_PRI_QUANT_PRI1
+#define MMEA4_GMI_RD_PRI_QUANT_PRI1__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA4_GMI_RD_PRI_QUANT_PRI1__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA4_GMI_RD_PRI_QUANT_PRI1__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA4_GMI_RD_PRI_QUANT_PRI1__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA4_GMI_RD_PRI_QUANT_PRI1__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA4_GMI_RD_PRI_QUANT_PRI1__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA4_GMI_RD_PRI_QUANT_PRI1__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA4_GMI_RD_PRI_QUANT_PRI1__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA4_GMI_RD_PRI_QUANT_PRI2
+#define MMEA4_GMI_RD_PRI_QUANT_PRI2__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA4_GMI_RD_PRI_QUANT_PRI2__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA4_GMI_RD_PRI_QUANT_PRI2__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA4_GMI_RD_PRI_QUANT_PRI2__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA4_GMI_RD_PRI_QUANT_PRI2__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA4_GMI_RD_PRI_QUANT_PRI2__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA4_GMI_RD_PRI_QUANT_PRI2__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA4_GMI_RD_PRI_QUANT_PRI2__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA4_GMI_RD_PRI_QUANT_PRI3
+#define MMEA4_GMI_RD_PRI_QUANT_PRI3__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA4_GMI_RD_PRI_QUANT_PRI3__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA4_GMI_RD_PRI_QUANT_PRI3__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA4_GMI_RD_PRI_QUANT_PRI3__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA4_GMI_RD_PRI_QUANT_PRI3__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA4_GMI_RD_PRI_QUANT_PRI3__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA4_GMI_RD_PRI_QUANT_PRI3__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA4_GMI_RD_PRI_QUANT_PRI3__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA4_GMI_WR_PRI_QUANT_PRI1
+#define MMEA4_GMI_WR_PRI_QUANT_PRI1__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA4_GMI_WR_PRI_QUANT_PRI1__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA4_GMI_WR_PRI_QUANT_PRI1__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA4_GMI_WR_PRI_QUANT_PRI1__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA4_GMI_WR_PRI_QUANT_PRI1__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA4_GMI_WR_PRI_QUANT_PRI1__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA4_GMI_WR_PRI_QUANT_PRI1__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA4_GMI_WR_PRI_QUANT_PRI1__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA4_GMI_WR_PRI_QUANT_PRI2
+#define MMEA4_GMI_WR_PRI_QUANT_PRI2__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA4_GMI_WR_PRI_QUANT_PRI2__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA4_GMI_WR_PRI_QUANT_PRI2__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA4_GMI_WR_PRI_QUANT_PRI2__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA4_GMI_WR_PRI_QUANT_PRI2__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA4_GMI_WR_PRI_QUANT_PRI2__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA4_GMI_WR_PRI_QUANT_PRI2__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA4_GMI_WR_PRI_QUANT_PRI2__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA4_GMI_WR_PRI_QUANT_PRI3
+#define MMEA4_GMI_WR_PRI_QUANT_PRI3__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA4_GMI_WR_PRI_QUANT_PRI3__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA4_GMI_WR_PRI_QUANT_PRI3__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA4_GMI_WR_PRI_QUANT_PRI3__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA4_GMI_WR_PRI_QUANT_PRI3__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA4_GMI_WR_PRI_QUANT_PRI3__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA4_GMI_WR_PRI_QUANT_PRI3__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA4_GMI_WR_PRI_QUANT_PRI3__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA4_IO_RD_CLI2GRP_MAP0
+#define MMEA4_IO_RD_CLI2GRP_MAP0__CID0_GROUP__SHIFT 0x0
+#define MMEA4_IO_RD_CLI2GRP_MAP0__CID1_GROUP__SHIFT 0x2
+#define MMEA4_IO_RD_CLI2GRP_MAP0__CID2_GROUP__SHIFT 0x4
+#define MMEA4_IO_RD_CLI2GRP_MAP0__CID3_GROUP__SHIFT 0x6
+#define MMEA4_IO_RD_CLI2GRP_MAP0__CID4_GROUP__SHIFT 0x8
+#define MMEA4_IO_RD_CLI2GRP_MAP0__CID5_GROUP__SHIFT 0xa
+#define MMEA4_IO_RD_CLI2GRP_MAP0__CID6_GROUP__SHIFT 0xc
+#define MMEA4_IO_RD_CLI2GRP_MAP0__CID7_GROUP__SHIFT 0xe
+#define MMEA4_IO_RD_CLI2GRP_MAP0__CID8_GROUP__SHIFT 0x10
+#define MMEA4_IO_RD_CLI2GRP_MAP0__CID9_GROUP__SHIFT 0x12
+#define MMEA4_IO_RD_CLI2GRP_MAP0__CID10_GROUP__SHIFT 0x14
+#define MMEA4_IO_RD_CLI2GRP_MAP0__CID11_GROUP__SHIFT 0x16
+#define MMEA4_IO_RD_CLI2GRP_MAP0__CID12_GROUP__SHIFT 0x18
+#define MMEA4_IO_RD_CLI2GRP_MAP0__CID13_GROUP__SHIFT 0x1a
+#define MMEA4_IO_RD_CLI2GRP_MAP0__CID14_GROUP__SHIFT 0x1c
+#define MMEA4_IO_RD_CLI2GRP_MAP0__CID15_GROUP__SHIFT 0x1e
+#define MMEA4_IO_RD_CLI2GRP_MAP0__CID0_GROUP_MASK 0x00000003L
+#define MMEA4_IO_RD_CLI2GRP_MAP0__CID1_GROUP_MASK 0x0000000CL
+#define MMEA4_IO_RD_CLI2GRP_MAP0__CID2_GROUP_MASK 0x00000030L
+#define MMEA4_IO_RD_CLI2GRP_MAP0__CID3_GROUP_MASK 0x000000C0L
+#define MMEA4_IO_RD_CLI2GRP_MAP0__CID4_GROUP_MASK 0x00000300L
+#define MMEA4_IO_RD_CLI2GRP_MAP0__CID5_GROUP_MASK 0x00000C00L
+#define MMEA4_IO_RD_CLI2GRP_MAP0__CID6_GROUP_MASK 0x00003000L
+#define MMEA4_IO_RD_CLI2GRP_MAP0__CID7_GROUP_MASK 0x0000C000L
+#define MMEA4_IO_RD_CLI2GRP_MAP0__CID8_GROUP_MASK 0x00030000L
+#define MMEA4_IO_RD_CLI2GRP_MAP0__CID9_GROUP_MASK 0x000C0000L
+#define MMEA4_IO_RD_CLI2GRP_MAP0__CID10_GROUP_MASK 0x00300000L
+#define MMEA4_IO_RD_CLI2GRP_MAP0__CID11_GROUP_MASK 0x00C00000L
+#define MMEA4_IO_RD_CLI2GRP_MAP0__CID12_GROUP_MASK 0x03000000L
+#define MMEA4_IO_RD_CLI2GRP_MAP0__CID13_GROUP_MASK 0x0C000000L
+#define MMEA4_IO_RD_CLI2GRP_MAP0__CID14_GROUP_MASK 0x30000000L
+#define MMEA4_IO_RD_CLI2GRP_MAP0__CID15_GROUP_MASK 0xC0000000L
+//MMEA4_IO_RD_CLI2GRP_MAP1
+#define MMEA4_IO_RD_CLI2GRP_MAP1__CID16_GROUP__SHIFT 0x0
+#define MMEA4_IO_RD_CLI2GRP_MAP1__CID17_GROUP__SHIFT 0x2
+#define MMEA4_IO_RD_CLI2GRP_MAP1__CID18_GROUP__SHIFT 0x4
+#define MMEA4_IO_RD_CLI2GRP_MAP1__CID19_GROUP__SHIFT 0x6
+#define MMEA4_IO_RD_CLI2GRP_MAP1__CID20_GROUP__SHIFT 0x8
+#define MMEA4_IO_RD_CLI2GRP_MAP1__CID21_GROUP__SHIFT 0xa
+#define MMEA4_IO_RD_CLI2GRP_MAP1__CID22_GROUP__SHIFT 0xc
+#define MMEA4_IO_RD_CLI2GRP_MAP1__CID23_GROUP__SHIFT 0xe
+#define MMEA4_IO_RD_CLI2GRP_MAP1__CID24_GROUP__SHIFT 0x10
+#define MMEA4_IO_RD_CLI2GRP_MAP1__CID25_GROUP__SHIFT 0x12
+#define MMEA4_IO_RD_CLI2GRP_MAP1__CID26_GROUP__SHIFT 0x14
+#define MMEA4_IO_RD_CLI2GRP_MAP1__CID27_GROUP__SHIFT 0x16
+#define MMEA4_IO_RD_CLI2GRP_MAP1__CID28_GROUP__SHIFT 0x18
+#define MMEA4_IO_RD_CLI2GRP_MAP1__CID29_GROUP__SHIFT 0x1a
+#define MMEA4_IO_RD_CLI2GRP_MAP1__CID30_GROUP__SHIFT 0x1c
+#define MMEA4_IO_RD_CLI2GRP_MAP1__CID31_GROUP__SHIFT 0x1e
+#define MMEA4_IO_RD_CLI2GRP_MAP1__CID16_GROUP_MASK 0x00000003L
+#define MMEA4_IO_RD_CLI2GRP_MAP1__CID17_GROUP_MASK 0x0000000CL
+#define MMEA4_IO_RD_CLI2GRP_MAP1__CID18_GROUP_MASK 0x00000030L
+#define MMEA4_IO_RD_CLI2GRP_MAP1__CID19_GROUP_MASK 0x000000C0L
+#define MMEA4_IO_RD_CLI2GRP_MAP1__CID20_GROUP_MASK 0x00000300L
+#define MMEA4_IO_RD_CLI2GRP_MAP1__CID21_GROUP_MASK 0x00000C00L
+#define MMEA4_IO_RD_CLI2GRP_MAP1__CID22_GROUP_MASK 0x00003000L
+#define MMEA4_IO_RD_CLI2GRP_MAP1__CID23_GROUP_MASK 0x0000C000L
+#define MMEA4_IO_RD_CLI2GRP_MAP1__CID24_GROUP_MASK 0x00030000L
+#define MMEA4_IO_RD_CLI2GRP_MAP1__CID25_GROUP_MASK 0x000C0000L
+#define MMEA4_IO_RD_CLI2GRP_MAP1__CID26_GROUP_MASK 0x00300000L
+#define MMEA4_IO_RD_CLI2GRP_MAP1__CID27_GROUP_MASK 0x00C00000L
+#define MMEA4_IO_RD_CLI2GRP_MAP1__CID28_GROUP_MASK 0x03000000L
+#define MMEA4_IO_RD_CLI2GRP_MAP1__CID29_GROUP_MASK 0x0C000000L
+#define MMEA4_IO_RD_CLI2GRP_MAP1__CID30_GROUP_MASK 0x30000000L
+#define MMEA4_IO_RD_CLI2GRP_MAP1__CID31_GROUP_MASK 0xC0000000L
+//MMEA4_IO_WR_CLI2GRP_MAP0
+#define MMEA4_IO_WR_CLI2GRP_MAP0__CID0_GROUP__SHIFT 0x0
+#define MMEA4_IO_WR_CLI2GRP_MAP0__CID1_GROUP__SHIFT 0x2
+#define MMEA4_IO_WR_CLI2GRP_MAP0__CID2_GROUP__SHIFT 0x4
+#define MMEA4_IO_WR_CLI2GRP_MAP0__CID3_GROUP__SHIFT 0x6
+#define MMEA4_IO_WR_CLI2GRP_MAP0__CID4_GROUP__SHIFT 0x8
+#define MMEA4_IO_WR_CLI2GRP_MAP0__CID5_GROUP__SHIFT 0xa
+#define MMEA4_IO_WR_CLI2GRP_MAP0__CID6_GROUP__SHIFT 0xc
+#define MMEA4_IO_WR_CLI2GRP_MAP0__CID7_GROUP__SHIFT 0xe
+#define MMEA4_IO_WR_CLI2GRP_MAP0__CID8_GROUP__SHIFT 0x10
+#define MMEA4_IO_WR_CLI2GRP_MAP0__CID9_GROUP__SHIFT 0x12
+#define MMEA4_IO_WR_CLI2GRP_MAP0__CID10_GROUP__SHIFT 0x14
+#define MMEA4_IO_WR_CLI2GRP_MAP0__CID11_GROUP__SHIFT 0x16
+#define MMEA4_IO_WR_CLI2GRP_MAP0__CID12_GROUP__SHIFT 0x18
+#define MMEA4_IO_WR_CLI2GRP_MAP0__CID13_GROUP__SHIFT 0x1a
+#define MMEA4_IO_WR_CLI2GRP_MAP0__CID14_GROUP__SHIFT 0x1c
+#define MMEA4_IO_WR_CLI2GRP_MAP0__CID15_GROUP__SHIFT 0x1e
+#define MMEA4_IO_WR_CLI2GRP_MAP0__CID0_GROUP_MASK 0x00000003L
+#define MMEA4_IO_WR_CLI2GRP_MAP0__CID1_GROUP_MASK 0x0000000CL
+#define MMEA4_IO_WR_CLI2GRP_MAP0__CID2_GROUP_MASK 0x00000030L
+#define MMEA4_IO_WR_CLI2GRP_MAP0__CID3_GROUP_MASK 0x000000C0L
+#define MMEA4_IO_WR_CLI2GRP_MAP0__CID4_GROUP_MASK 0x00000300L
+#define MMEA4_IO_WR_CLI2GRP_MAP0__CID5_GROUP_MASK 0x00000C00L
+#define MMEA4_IO_WR_CLI2GRP_MAP0__CID6_GROUP_MASK 0x00003000L
+#define MMEA4_IO_WR_CLI2GRP_MAP0__CID7_GROUP_MASK 0x0000C000L
+#define MMEA4_IO_WR_CLI2GRP_MAP0__CID8_GROUP_MASK 0x00030000L
+#define MMEA4_IO_WR_CLI2GRP_MAP0__CID9_GROUP_MASK 0x000C0000L
+#define MMEA4_IO_WR_CLI2GRP_MAP0__CID10_GROUP_MASK 0x00300000L
+#define MMEA4_IO_WR_CLI2GRP_MAP0__CID11_GROUP_MASK 0x00C00000L
+#define MMEA4_IO_WR_CLI2GRP_MAP0__CID12_GROUP_MASK 0x03000000L
+#define MMEA4_IO_WR_CLI2GRP_MAP0__CID13_GROUP_MASK 0x0C000000L
+#define MMEA4_IO_WR_CLI2GRP_MAP0__CID14_GROUP_MASK 0x30000000L
+#define MMEA4_IO_WR_CLI2GRP_MAP0__CID15_GROUP_MASK 0xC0000000L
+//MMEA4_IO_WR_CLI2GRP_MAP1
+#define MMEA4_IO_WR_CLI2GRP_MAP1__CID16_GROUP__SHIFT 0x0
+#define MMEA4_IO_WR_CLI2GRP_MAP1__CID17_GROUP__SHIFT 0x2
+#define MMEA4_IO_WR_CLI2GRP_MAP1__CID18_GROUP__SHIFT 0x4
+#define MMEA4_IO_WR_CLI2GRP_MAP1__CID19_GROUP__SHIFT 0x6
+#define MMEA4_IO_WR_CLI2GRP_MAP1__CID20_GROUP__SHIFT 0x8
+#define MMEA4_IO_WR_CLI2GRP_MAP1__CID21_GROUP__SHIFT 0xa
+#define MMEA4_IO_WR_CLI2GRP_MAP1__CID22_GROUP__SHIFT 0xc
+#define MMEA4_IO_WR_CLI2GRP_MAP1__CID23_GROUP__SHIFT 0xe
+#define MMEA4_IO_WR_CLI2GRP_MAP1__CID24_GROUP__SHIFT 0x10
+#define MMEA4_IO_WR_CLI2GRP_MAP1__CID25_GROUP__SHIFT 0x12
+#define MMEA4_IO_WR_CLI2GRP_MAP1__CID26_GROUP__SHIFT 0x14
+#define MMEA4_IO_WR_CLI2GRP_MAP1__CID27_GROUP__SHIFT 0x16
+#define MMEA4_IO_WR_CLI2GRP_MAP1__CID28_GROUP__SHIFT 0x18
+#define MMEA4_IO_WR_CLI2GRP_MAP1__CID29_GROUP__SHIFT 0x1a
+#define MMEA4_IO_WR_CLI2GRP_MAP1__CID30_GROUP__SHIFT 0x1c
+#define MMEA4_IO_WR_CLI2GRP_MAP1__CID31_GROUP__SHIFT 0x1e
+#define MMEA4_IO_WR_CLI2GRP_MAP1__CID16_GROUP_MASK 0x00000003L
+#define MMEA4_IO_WR_CLI2GRP_MAP1__CID17_GROUP_MASK 0x0000000CL
+#define MMEA4_IO_WR_CLI2GRP_MAP1__CID18_GROUP_MASK 0x00000030L
+#define MMEA4_IO_WR_CLI2GRP_MAP1__CID19_GROUP_MASK 0x000000C0L
+#define MMEA4_IO_WR_CLI2GRP_MAP1__CID20_GROUP_MASK 0x00000300L
+#define MMEA4_IO_WR_CLI2GRP_MAP1__CID21_GROUP_MASK 0x00000C00L
+#define MMEA4_IO_WR_CLI2GRP_MAP1__CID22_GROUP_MASK 0x00003000L
+#define MMEA4_IO_WR_CLI2GRP_MAP1__CID23_GROUP_MASK 0x0000C000L
+#define MMEA4_IO_WR_CLI2GRP_MAP1__CID24_GROUP_MASK 0x00030000L
+#define MMEA4_IO_WR_CLI2GRP_MAP1__CID25_GROUP_MASK 0x000C0000L
+#define MMEA4_IO_WR_CLI2GRP_MAP1__CID26_GROUP_MASK 0x00300000L
+#define MMEA4_IO_WR_CLI2GRP_MAP1__CID27_GROUP_MASK 0x00C00000L
+#define MMEA4_IO_WR_CLI2GRP_MAP1__CID28_GROUP_MASK 0x03000000L
+#define MMEA4_IO_WR_CLI2GRP_MAP1__CID29_GROUP_MASK 0x0C000000L
+#define MMEA4_IO_WR_CLI2GRP_MAP1__CID30_GROUP_MASK 0x30000000L
+#define MMEA4_IO_WR_CLI2GRP_MAP1__CID31_GROUP_MASK 0xC0000000L
+//MMEA4_IO_RD_COMBINE_FLUSH
+#define MMEA4_IO_RD_COMBINE_FLUSH__GROUP0_TIMER__SHIFT 0x0
+#define MMEA4_IO_RD_COMBINE_FLUSH__GROUP1_TIMER__SHIFT 0x4
+#define MMEA4_IO_RD_COMBINE_FLUSH__GROUP2_TIMER__SHIFT 0x8
+#define MMEA4_IO_RD_COMBINE_FLUSH__GROUP3_TIMER__SHIFT 0xc
+#define MMEA4_IO_RD_COMBINE_FLUSH__COMB_MODE__SHIFT 0x10
+#define MMEA4_IO_RD_COMBINE_FLUSH__GROUP0_TIMER_MASK 0x0000000FL
+#define MMEA4_IO_RD_COMBINE_FLUSH__GROUP1_TIMER_MASK 0x000000F0L
+#define MMEA4_IO_RD_COMBINE_FLUSH__GROUP2_TIMER_MASK 0x00000F00L
+#define MMEA4_IO_RD_COMBINE_FLUSH__GROUP3_TIMER_MASK 0x0000F000L
+#define MMEA4_IO_RD_COMBINE_FLUSH__COMB_MODE_MASK 0x00030000L
+//MMEA4_IO_WR_COMBINE_FLUSH
+#define MMEA4_IO_WR_COMBINE_FLUSH__GROUP0_TIMER__SHIFT 0x0
+#define MMEA4_IO_WR_COMBINE_FLUSH__GROUP1_TIMER__SHIFT 0x4
+#define MMEA4_IO_WR_COMBINE_FLUSH__GROUP2_TIMER__SHIFT 0x8
+#define MMEA4_IO_WR_COMBINE_FLUSH__GROUP3_TIMER__SHIFT 0xc
+#define MMEA4_IO_WR_COMBINE_FLUSH__COMB_MODE__SHIFT 0x10
+#define MMEA4_IO_WR_COMBINE_FLUSH__GROUP0_TIMER_MASK 0x0000000FL
+#define MMEA4_IO_WR_COMBINE_FLUSH__GROUP1_TIMER_MASK 0x000000F0L
+#define MMEA4_IO_WR_COMBINE_FLUSH__GROUP2_TIMER_MASK 0x00000F00L
+#define MMEA4_IO_WR_COMBINE_FLUSH__GROUP3_TIMER_MASK 0x0000F000L
+#define MMEA4_IO_WR_COMBINE_FLUSH__COMB_MODE_MASK 0x00030000L
+//MMEA4_IO_GROUP_BURST
+#define MMEA4_IO_GROUP_BURST__RD_LIMIT_LO__SHIFT 0x0
+#define MMEA4_IO_GROUP_BURST__RD_LIMIT_HI__SHIFT 0x8
+#define MMEA4_IO_GROUP_BURST__WR_LIMIT_LO__SHIFT 0x10
+#define MMEA4_IO_GROUP_BURST__WR_LIMIT_HI__SHIFT 0x18
+#define MMEA4_IO_GROUP_BURST__RD_LIMIT_LO_MASK 0x000000FFL
+#define MMEA4_IO_GROUP_BURST__RD_LIMIT_HI_MASK 0x0000FF00L
+#define MMEA4_IO_GROUP_BURST__WR_LIMIT_LO_MASK 0x00FF0000L
+#define MMEA4_IO_GROUP_BURST__WR_LIMIT_HI_MASK 0xFF000000L
+//MMEA4_IO_RD_PRI_AGE
+#define MMEA4_IO_RD_PRI_AGE__GROUP0_AGING_RATE__SHIFT 0x0
+#define MMEA4_IO_RD_PRI_AGE__GROUP1_AGING_RATE__SHIFT 0x3
+#define MMEA4_IO_RD_PRI_AGE__GROUP2_AGING_RATE__SHIFT 0x6
+#define MMEA4_IO_RD_PRI_AGE__GROUP3_AGING_RATE__SHIFT 0x9
+#define MMEA4_IO_RD_PRI_AGE__GROUP0_AGE_COEFFICIENT__SHIFT 0xc
+#define MMEA4_IO_RD_PRI_AGE__GROUP1_AGE_COEFFICIENT__SHIFT 0xf
+#define MMEA4_IO_RD_PRI_AGE__GROUP2_AGE_COEFFICIENT__SHIFT 0x12
+#define MMEA4_IO_RD_PRI_AGE__GROUP3_AGE_COEFFICIENT__SHIFT 0x15
+#define MMEA4_IO_RD_PRI_AGE__GROUP0_AGING_RATE_MASK 0x00000007L
+#define MMEA4_IO_RD_PRI_AGE__GROUP1_AGING_RATE_MASK 0x00000038L
+#define MMEA4_IO_RD_PRI_AGE__GROUP2_AGING_RATE_MASK 0x000001C0L
+#define MMEA4_IO_RD_PRI_AGE__GROUP3_AGING_RATE_MASK 0x00000E00L
+#define MMEA4_IO_RD_PRI_AGE__GROUP0_AGE_COEFFICIENT_MASK 0x00007000L
+#define MMEA4_IO_RD_PRI_AGE__GROUP1_AGE_COEFFICIENT_MASK 0x00038000L
+#define MMEA4_IO_RD_PRI_AGE__GROUP2_AGE_COEFFICIENT_MASK 0x001C0000L
+#define MMEA4_IO_RD_PRI_AGE__GROUP3_AGE_COEFFICIENT_MASK 0x00E00000L
+//MMEA4_IO_WR_PRI_AGE
+#define MMEA4_IO_WR_PRI_AGE__GROUP0_AGING_RATE__SHIFT 0x0
+#define MMEA4_IO_WR_PRI_AGE__GROUP1_AGING_RATE__SHIFT 0x3
+#define MMEA4_IO_WR_PRI_AGE__GROUP2_AGING_RATE__SHIFT 0x6
+#define MMEA4_IO_WR_PRI_AGE__GROUP3_AGING_RATE__SHIFT 0x9
+#define MMEA4_IO_WR_PRI_AGE__GROUP0_AGE_COEFFICIENT__SHIFT 0xc
+#define MMEA4_IO_WR_PRI_AGE__GROUP1_AGE_COEFFICIENT__SHIFT 0xf
+#define MMEA4_IO_WR_PRI_AGE__GROUP2_AGE_COEFFICIENT__SHIFT 0x12
+#define MMEA4_IO_WR_PRI_AGE__GROUP3_AGE_COEFFICIENT__SHIFT 0x15
+#define MMEA4_IO_WR_PRI_AGE__GROUP0_AGING_RATE_MASK 0x00000007L
+#define MMEA4_IO_WR_PRI_AGE__GROUP1_AGING_RATE_MASK 0x00000038L
+#define MMEA4_IO_WR_PRI_AGE__GROUP2_AGING_RATE_MASK 0x000001C0L
+#define MMEA4_IO_WR_PRI_AGE__GROUP3_AGING_RATE_MASK 0x00000E00L
+#define MMEA4_IO_WR_PRI_AGE__GROUP0_AGE_COEFFICIENT_MASK 0x00007000L
+#define MMEA4_IO_WR_PRI_AGE__GROUP1_AGE_COEFFICIENT_MASK 0x00038000L
+#define MMEA4_IO_WR_PRI_AGE__GROUP2_AGE_COEFFICIENT_MASK 0x001C0000L
+#define MMEA4_IO_WR_PRI_AGE__GROUP3_AGE_COEFFICIENT_MASK 0x00E00000L
+//MMEA4_IO_RD_PRI_QUEUING
+#define MMEA4_IO_RD_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT__SHIFT 0x0
+#define MMEA4_IO_RD_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT__SHIFT 0x3
+#define MMEA4_IO_RD_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT__SHIFT 0x6
+#define MMEA4_IO_RD_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT__SHIFT 0x9
+#define MMEA4_IO_RD_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT_MASK 0x00000007L
+#define MMEA4_IO_RD_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT_MASK 0x00000038L
+#define MMEA4_IO_RD_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT_MASK 0x000001C0L
+#define MMEA4_IO_RD_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT_MASK 0x00000E00L
+//MMEA4_IO_WR_PRI_QUEUING
+#define MMEA4_IO_WR_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT__SHIFT 0x0
+#define MMEA4_IO_WR_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT__SHIFT 0x3
+#define MMEA4_IO_WR_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT__SHIFT 0x6
+#define MMEA4_IO_WR_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT__SHIFT 0x9
+#define MMEA4_IO_WR_PRI_QUEUING__GROUP0_QUEUING_COEFFICIENT_MASK 0x00000007L
+#define MMEA4_IO_WR_PRI_QUEUING__GROUP1_QUEUING_COEFFICIENT_MASK 0x00000038L
+#define MMEA4_IO_WR_PRI_QUEUING__GROUP2_QUEUING_COEFFICIENT_MASK 0x000001C0L
+#define MMEA4_IO_WR_PRI_QUEUING__GROUP3_QUEUING_COEFFICIENT_MASK 0x00000E00L
+//MMEA4_IO_RD_PRI_FIXED
+#define MMEA4_IO_RD_PRI_FIXED__GROUP0_FIXED_COEFFICIENT__SHIFT 0x0
+#define MMEA4_IO_RD_PRI_FIXED__GROUP1_FIXED_COEFFICIENT__SHIFT 0x3
+#define MMEA4_IO_RD_PRI_FIXED__GROUP2_FIXED_COEFFICIENT__SHIFT 0x6
+#define MMEA4_IO_RD_PRI_FIXED__GROUP3_FIXED_COEFFICIENT__SHIFT 0x9
+#define MMEA4_IO_RD_PRI_FIXED__GROUP0_FIXED_COEFFICIENT_MASK 0x00000007L
+#define MMEA4_IO_RD_PRI_FIXED__GROUP1_FIXED_COEFFICIENT_MASK 0x00000038L
+#define MMEA4_IO_RD_PRI_FIXED__GROUP2_FIXED_COEFFICIENT_MASK 0x000001C0L
+#define MMEA4_IO_RD_PRI_FIXED__GROUP3_FIXED_COEFFICIENT_MASK 0x00000E00L
+//MMEA4_IO_WR_PRI_FIXED
+#define MMEA4_IO_WR_PRI_FIXED__GROUP0_FIXED_COEFFICIENT__SHIFT 0x0
+#define MMEA4_IO_WR_PRI_FIXED__GROUP1_FIXED_COEFFICIENT__SHIFT 0x3
+#define MMEA4_IO_WR_PRI_FIXED__GROUP2_FIXED_COEFFICIENT__SHIFT 0x6
+#define MMEA4_IO_WR_PRI_FIXED__GROUP3_FIXED_COEFFICIENT__SHIFT 0x9
+#define MMEA4_IO_WR_PRI_FIXED__GROUP0_FIXED_COEFFICIENT_MASK 0x00000007L
+#define MMEA4_IO_WR_PRI_FIXED__GROUP1_FIXED_COEFFICIENT_MASK 0x00000038L
+#define MMEA4_IO_WR_PRI_FIXED__GROUP2_FIXED_COEFFICIENT_MASK 0x000001C0L
+#define MMEA4_IO_WR_PRI_FIXED__GROUP3_FIXED_COEFFICIENT_MASK 0x00000E00L
+//MMEA4_IO_RD_PRI_URGENCY
+#define MMEA4_IO_RD_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT__SHIFT 0x0
+#define MMEA4_IO_RD_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT__SHIFT 0x3
+#define MMEA4_IO_RD_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT__SHIFT 0x6
+#define MMEA4_IO_RD_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT__SHIFT 0x9
+#define MMEA4_IO_RD_PRI_URGENCY__GROUP0_URGENCY_MODE__SHIFT 0xc
+#define MMEA4_IO_RD_PRI_URGENCY__GROUP1_URGENCY_MODE__SHIFT 0xd
+#define MMEA4_IO_RD_PRI_URGENCY__GROUP2_URGENCY_MODE__SHIFT 0xe
+#define MMEA4_IO_RD_PRI_URGENCY__GROUP3_URGENCY_MODE__SHIFT 0xf
+#define MMEA4_IO_RD_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT_MASK 0x00000007L
+#define MMEA4_IO_RD_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT_MASK 0x00000038L
+#define MMEA4_IO_RD_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT_MASK 0x000001C0L
+#define MMEA4_IO_RD_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT_MASK 0x00000E00L
+#define MMEA4_IO_RD_PRI_URGENCY__GROUP0_URGENCY_MODE_MASK 0x00001000L
+#define MMEA4_IO_RD_PRI_URGENCY__GROUP1_URGENCY_MODE_MASK 0x00002000L
+#define MMEA4_IO_RD_PRI_URGENCY__GROUP2_URGENCY_MODE_MASK 0x00004000L
+#define MMEA4_IO_RD_PRI_URGENCY__GROUP3_URGENCY_MODE_MASK 0x00008000L
+//MMEA4_IO_WR_PRI_URGENCY
+#define MMEA4_IO_WR_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT__SHIFT 0x0
+#define MMEA4_IO_WR_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT__SHIFT 0x3
+#define MMEA4_IO_WR_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT__SHIFT 0x6
+#define MMEA4_IO_WR_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT__SHIFT 0x9
+#define MMEA4_IO_WR_PRI_URGENCY__GROUP0_URGENCY_MODE__SHIFT 0xc
+#define MMEA4_IO_WR_PRI_URGENCY__GROUP1_URGENCY_MODE__SHIFT 0xd
+#define MMEA4_IO_WR_PRI_URGENCY__GROUP2_URGENCY_MODE__SHIFT 0xe
+#define MMEA4_IO_WR_PRI_URGENCY__GROUP3_URGENCY_MODE__SHIFT 0xf
+#define MMEA4_IO_WR_PRI_URGENCY__GROUP0_URGENCY_COEFFICIENT_MASK 0x00000007L
+#define MMEA4_IO_WR_PRI_URGENCY__GROUP1_URGENCY_COEFFICIENT_MASK 0x00000038L
+#define MMEA4_IO_WR_PRI_URGENCY__GROUP2_URGENCY_COEFFICIENT_MASK 0x000001C0L
+#define MMEA4_IO_WR_PRI_URGENCY__GROUP3_URGENCY_COEFFICIENT_MASK 0x00000E00L
+#define MMEA4_IO_WR_PRI_URGENCY__GROUP0_URGENCY_MODE_MASK 0x00001000L
+#define MMEA4_IO_WR_PRI_URGENCY__GROUP1_URGENCY_MODE_MASK 0x00002000L
+#define MMEA4_IO_WR_PRI_URGENCY__GROUP2_URGENCY_MODE_MASK 0x00004000L
+#define MMEA4_IO_WR_PRI_URGENCY__GROUP3_URGENCY_MODE_MASK 0x00008000L
+//MMEA4_IO_RD_PRI_URGENCY_MASKING
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID0_MASK__SHIFT 0x0
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID1_MASK__SHIFT 0x1
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID2_MASK__SHIFT 0x2
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID3_MASK__SHIFT 0x3
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID4_MASK__SHIFT 0x4
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID5_MASK__SHIFT 0x5
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID6_MASK__SHIFT 0x6
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID7_MASK__SHIFT 0x7
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID8_MASK__SHIFT 0x8
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID9_MASK__SHIFT 0x9
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID10_MASK__SHIFT 0xa
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID11_MASK__SHIFT 0xb
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID12_MASK__SHIFT 0xc
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID13_MASK__SHIFT 0xd
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID14_MASK__SHIFT 0xe
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID15_MASK__SHIFT 0xf
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID16_MASK__SHIFT 0x10
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID17_MASK__SHIFT 0x11
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID18_MASK__SHIFT 0x12
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID19_MASK__SHIFT 0x13
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID20_MASK__SHIFT 0x14
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID21_MASK__SHIFT 0x15
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID22_MASK__SHIFT 0x16
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID23_MASK__SHIFT 0x17
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID24_MASK__SHIFT 0x18
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID25_MASK__SHIFT 0x19
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID26_MASK__SHIFT 0x1a
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID27_MASK__SHIFT 0x1b
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID28_MASK__SHIFT 0x1c
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID29_MASK__SHIFT 0x1d
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID30_MASK__SHIFT 0x1e
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID31_MASK__SHIFT 0x1f
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID0_MASK_MASK 0x00000001L
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID1_MASK_MASK 0x00000002L
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID2_MASK_MASK 0x00000004L
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID3_MASK_MASK 0x00000008L
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID4_MASK_MASK 0x00000010L
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID5_MASK_MASK 0x00000020L
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID6_MASK_MASK 0x00000040L
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID7_MASK_MASK 0x00000080L
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID8_MASK_MASK 0x00000100L
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID9_MASK_MASK 0x00000200L
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID10_MASK_MASK 0x00000400L
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID11_MASK_MASK 0x00000800L
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID12_MASK_MASK 0x00001000L
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID13_MASK_MASK 0x00002000L
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID14_MASK_MASK 0x00004000L
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID15_MASK_MASK 0x00008000L
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID16_MASK_MASK 0x00010000L
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID17_MASK_MASK 0x00020000L
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID18_MASK_MASK 0x00040000L
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID19_MASK_MASK 0x00080000L
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID20_MASK_MASK 0x00100000L
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID21_MASK_MASK 0x00200000L
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID22_MASK_MASK 0x00400000L
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID23_MASK_MASK 0x00800000L
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID24_MASK_MASK 0x01000000L
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID25_MASK_MASK 0x02000000L
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID26_MASK_MASK 0x04000000L
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID27_MASK_MASK 0x08000000L
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID28_MASK_MASK 0x10000000L
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID29_MASK_MASK 0x20000000L
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID30_MASK_MASK 0x40000000L
+#define MMEA4_IO_RD_PRI_URGENCY_MASKING__CID31_MASK_MASK 0x80000000L
+//MMEA4_IO_WR_PRI_URGENCY_MASKING
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID0_MASK__SHIFT 0x0
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID1_MASK__SHIFT 0x1
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID2_MASK__SHIFT 0x2
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID3_MASK__SHIFT 0x3
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID4_MASK__SHIFT 0x4
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID5_MASK__SHIFT 0x5
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID6_MASK__SHIFT 0x6
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID7_MASK__SHIFT 0x7
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID8_MASK__SHIFT 0x8
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID9_MASK__SHIFT 0x9
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID10_MASK__SHIFT 0xa
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID11_MASK__SHIFT 0xb
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID12_MASK__SHIFT 0xc
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID13_MASK__SHIFT 0xd
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID14_MASK__SHIFT 0xe
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID15_MASK__SHIFT 0xf
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID16_MASK__SHIFT 0x10
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID17_MASK__SHIFT 0x11
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID18_MASK__SHIFT 0x12
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID19_MASK__SHIFT 0x13
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID20_MASK__SHIFT 0x14
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID21_MASK__SHIFT 0x15
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID22_MASK__SHIFT 0x16
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID23_MASK__SHIFT 0x17
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID24_MASK__SHIFT 0x18
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID25_MASK__SHIFT 0x19
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID26_MASK__SHIFT 0x1a
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID27_MASK__SHIFT 0x1b
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID28_MASK__SHIFT 0x1c
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID29_MASK__SHIFT 0x1d
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID30_MASK__SHIFT 0x1e
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID31_MASK__SHIFT 0x1f
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID0_MASK_MASK 0x00000001L
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID1_MASK_MASK 0x00000002L
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID2_MASK_MASK 0x00000004L
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID3_MASK_MASK 0x00000008L
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID4_MASK_MASK 0x00000010L
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID5_MASK_MASK 0x00000020L
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID6_MASK_MASK 0x00000040L
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID7_MASK_MASK 0x00000080L
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID8_MASK_MASK 0x00000100L
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID9_MASK_MASK 0x00000200L
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID10_MASK_MASK 0x00000400L
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID11_MASK_MASK 0x00000800L
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID12_MASK_MASK 0x00001000L
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID13_MASK_MASK 0x00002000L
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID14_MASK_MASK 0x00004000L
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID15_MASK_MASK 0x00008000L
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID16_MASK_MASK 0x00010000L
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID17_MASK_MASK 0x00020000L
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID18_MASK_MASK 0x00040000L
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID19_MASK_MASK 0x00080000L
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID20_MASK_MASK 0x00100000L
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID21_MASK_MASK 0x00200000L
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID22_MASK_MASK 0x00400000L
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID23_MASK_MASK 0x00800000L
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID24_MASK_MASK 0x01000000L
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID25_MASK_MASK 0x02000000L
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID26_MASK_MASK 0x04000000L
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID27_MASK_MASK 0x08000000L
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID28_MASK_MASK 0x10000000L
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID29_MASK_MASK 0x20000000L
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID30_MASK_MASK 0x40000000L
+#define MMEA4_IO_WR_PRI_URGENCY_MASKING__CID31_MASK_MASK 0x80000000L
+//MMEA4_IO_RD_PRI_QUANT_PRI1
+#define MMEA4_IO_RD_PRI_QUANT_PRI1__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA4_IO_RD_PRI_QUANT_PRI1__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA4_IO_RD_PRI_QUANT_PRI1__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA4_IO_RD_PRI_QUANT_PRI1__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA4_IO_RD_PRI_QUANT_PRI1__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA4_IO_RD_PRI_QUANT_PRI1__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA4_IO_RD_PRI_QUANT_PRI1__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA4_IO_RD_PRI_QUANT_PRI1__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA4_IO_RD_PRI_QUANT_PRI2
+#define MMEA4_IO_RD_PRI_QUANT_PRI2__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA4_IO_RD_PRI_QUANT_PRI2__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA4_IO_RD_PRI_QUANT_PRI2__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA4_IO_RD_PRI_QUANT_PRI2__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA4_IO_RD_PRI_QUANT_PRI2__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA4_IO_RD_PRI_QUANT_PRI2__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA4_IO_RD_PRI_QUANT_PRI2__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA4_IO_RD_PRI_QUANT_PRI2__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA4_IO_RD_PRI_QUANT_PRI3
+#define MMEA4_IO_RD_PRI_QUANT_PRI3__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA4_IO_RD_PRI_QUANT_PRI3__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA4_IO_RD_PRI_QUANT_PRI3__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA4_IO_RD_PRI_QUANT_PRI3__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA4_IO_RD_PRI_QUANT_PRI3__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA4_IO_RD_PRI_QUANT_PRI3__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA4_IO_RD_PRI_QUANT_PRI3__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA4_IO_RD_PRI_QUANT_PRI3__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA4_IO_WR_PRI_QUANT_PRI1
+#define MMEA4_IO_WR_PRI_QUANT_PRI1__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA4_IO_WR_PRI_QUANT_PRI1__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA4_IO_WR_PRI_QUANT_PRI1__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA4_IO_WR_PRI_QUANT_PRI1__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA4_IO_WR_PRI_QUANT_PRI1__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA4_IO_WR_PRI_QUANT_PRI1__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA4_IO_WR_PRI_QUANT_PRI1__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA4_IO_WR_PRI_QUANT_PRI1__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA4_IO_WR_PRI_QUANT_PRI2
+#define MMEA4_IO_WR_PRI_QUANT_PRI2__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA4_IO_WR_PRI_QUANT_PRI2__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA4_IO_WR_PRI_QUANT_PRI2__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA4_IO_WR_PRI_QUANT_PRI2__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA4_IO_WR_PRI_QUANT_PRI2__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA4_IO_WR_PRI_QUANT_PRI2__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA4_IO_WR_PRI_QUANT_PRI2__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA4_IO_WR_PRI_QUANT_PRI2__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA4_IO_WR_PRI_QUANT_PRI3
+#define MMEA4_IO_WR_PRI_QUANT_PRI3__GROUP0_THRESHOLD__SHIFT 0x0
+#define MMEA4_IO_WR_PRI_QUANT_PRI3__GROUP1_THRESHOLD__SHIFT 0x8
+#define MMEA4_IO_WR_PRI_QUANT_PRI3__GROUP2_THRESHOLD__SHIFT 0x10
+#define MMEA4_IO_WR_PRI_QUANT_PRI3__GROUP3_THRESHOLD__SHIFT 0x18
+#define MMEA4_IO_WR_PRI_QUANT_PRI3__GROUP0_THRESHOLD_MASK 0x000000FFL
+#define MMEA4_IO_WR_PRI_QUANT_PRI3__GROUP1_THRESHOLD_MASK 0x0000FF00L
+#define MMEA4_IO_WR_PRI_QUANT_PRI3__GROUP2_THRESHOLD_MASK 0x00FF0000L
+#define MMEA4_IO_WR_PRI_QUANT_PRI3__GROUP3_THRESHOLD_MASK 0xFF000000L
+//MMEA4_SDP_ARB_DRAM
+#define MMEA4_SDP_ARB_DRAM__RDWR_BURST_LIMIT_CYCL__SHIFT 0x0
+#define MMEA4_SDP_ARB_DRAM__RDWR_BURST_LIMIT_DATA__SHIFT 0x8
+#define MMEA4_SDP_ARB_DRAM__EARLY_SW2RD_ON_PRI__SHIFT 0x10
+#define MMEA4_SDP_ARB_DRAM__EARLY_SW2WR_ON_PRI__SHIFT 0x11
+#define MMEA4_SDP_ARB_DRAM__EARLY_SW2RD_ON_RES__SHIFT 0x12
+#define MMEA4_SDP_ARB_DRAM__EARLY_SW2WR_ON_RES__SHIFT 0x13
+#define MMEA4_SDP_ARB_DRAM__EOB_ON_EXPIRE__SHIFT 0x14
+#define MMEA4_SDP_ARB_DRAM__DECOUPLE_RDWR_BNKSTATE__SHIFT 0x15
+#define MMEA4_SDP_ARB_DRAM__ALLOW_CHAIN_BREAKING__SHIFT 0x16
+#define MMEA4_SDP_ARB_DRAM__RDWR_BURST_LIMIT_CYCL_MASK 0x0000007FL
+#define MMEA4_SDP_ARB_DRAM__RDWR_BURST_LIMIT_DATA_MASK 0x00007F00L
+#define MMEA4_SDP_ARB_DRAM__EARLY_SW2RD_ON_PRI_MASK 0x00010000L
+#define MMEA4_SDP_ARB_DRAM__EARLY_SW2WR_ON_PRI_MASK 0x00020000L
+#define MMEA4_SDP_ARB_DRAM__EARLY_SW2RD_ON_RES_MASK 0x00040000L
+#define MMEA4_SDP_ARB_DRAM__EARLY_SW2WR_ON_RES_MASK 0x00080000L
+#define MMEA4_SDP_ARB_DRAM__EOB_ON_EXPIRE_MASK 0x00100000L
+#define MMEA4_SDP_ARB_DRAM__DECOUPLE_RDWR_BNKSTATE_MASK 0x00200000L
+#define MMEA4_SDP_ARB_DRAM__ALLOW_CHAIN_BREAKING_MASK 0x00400000L
+//MMEA4_SDP_ARB_GMI
+#define MMEA4_SDP_ARB_GMI__RDWR_BURST_LIMIT_CYCL__SHIFT 0x0
+#define MMEA4_SDP_ARB_GMI__RDWR_BURST_LIMIT_DATA__SHIFT 0x8
+#define MMEA4_SDP_ARB_GMI__EARLY_SW2RD_ON_PRI__SHIFT 0x10
+#define MMEA4_SDP_ARB_GMI__EARLY_SW2WR_ON_PRI__SHIFT 0x11
+#define MMEA4_SDP_ARB_GMI__EARLY_SW2RD_ON_RES__SHIFT 0x12
+#define MMEA4_SDP_ARB_GMI__EARLY_SW2WR_ON_RES__SHIFT 0x13
+#define MMEA4_SDP_ARB_GMI__EOB_ON_EXPIRE__SHIFT 0x14
+#define MMEA4_SDP_ARB_GMI__DECOUPLE_RDWR_BNKSTATE__SHIFT 0x15
+#define MMEA4_SDP_ARB_GMI__ALLOW_CHAIN_BREAKING__SHIFT 0x16
+#define MMEA4_SDP_ARB_GMI__RDWR_BURST_LIMIT_CYCL_MASK 0x0000007FL
+#define MMEA4_SDP_ARB_GMI__RDWR_BURST_LIMIT_DATA_MASK 0x00007F00L
+#define MMEA4_SDP_ARB_GMI__EARLY_SW2RD_ON_PRI_MASK 0x00010000L
+#define MMEA4_SDP_ARB_GMI__EARLY_SW2WR_ON_PRI_MASK 0x00020000L
+#define MMEA4_SDP_ARB_GMI__EARLY_SW2RD_ON_RES_MASK 0x00040000L
+#define MMEA4_SDP_ARB_GMI__EARLY_SW2WR_ON_RES_MASK 0x00080000L
+#define MMEA4_SDP_ARB_GMI__EOB_ON_EXPIRE_MASK 0x00100000L
+#define MMEA4_SDP_ARB_GMI__DECOUPLE_RDWR_BNKSTATE_MASK 0x00200000L
+#define MMEA4_SDP_ARB_GMI__ALLOW_CHAIN_BREAKING_MASK 0x00400000L
+//MMEA4_SDP_ARB_FINAL
+#define MMEA4_SDP_ARB_FINAL__DRAM_BURST_LIMIT__SHIFT 0x0
+#define MMEA4_SDP_ARB_FINAL__GMI_BURST_LIMIT__SHIFT 0x5
+#define MMEA4_SDP_ARB_FINAL__IO_BURST_LIMIT__SHIFT 0xa
+#define MMEA4_SDP_ARB_FINAL__BURST_LIMIT_MULTIPLIER__SHIFT 0xf
+#define MMEA4_SDP_ARB_FINAL__RDONLY_VC0__SHIFT 0x11
+#define MMEA4_SDP_ARB_FINAL__RDONLY_VC1__SHIFT 0x12
+#define MMEA4_SDP_ARB_FINAL__RDONLY_VC2__SHIFT 0x13
+#define MMEA4_SDP_ARB_FINAL__RDONLY_VC3__SHIFT 0x14
+#define MMEA4_SDP_ARB_FINAL__RDONLY_VC4__SHIFT 0x15
+#define MMEA4_SDP_ARB_FINAL__RDONLY_VC5__SHIFT 0x16
+#define MMEA4_SDP_ARB_FINAL__RDONLY_VC6__SHIFT 0x17
+#define MMEA4_SDP_ARB_FINAL__RDONLY_VC7__SHIFT 0x18
+#define MMEA4_SDP_ARB_FINAL__ERREVENT_ON_ERROR__SHIFT 0x19
+#define MMEA4_SDP_ARB_FINAL__HALTREQ_ON_ERROR__SHIFT 0x1a
+#define MMEA4_SDP_ARB_FINAL__DRAM_BURST_STRETCH__SHIFT 0x1b
+#define MMEA4_SDP_ARB_FINAL__GMI_BURST_STRETCH__SHIFT 0x1c
+#define MMEA4_SDP_ARB_FINAL__DRAM_BURST_LIMIT_MASK 0x0000001FL
+#define MMEA4_SDP_ARB_FINAL__GMI_BURST_LIMIT_MASK 0x000003E0L
+#define MMEA4_SDP_ARB_FINAL__IO_BURST_LIMIT_MASK 0x00007C00L
+#define MMEA4_SDP_ARB_FINAL__BURST_LIMIT_MULTIPLIER_MASK 0x00018000L
+#define MMEA4_SDP_ARB_FINAL__RDONLY_VC0_MASK 0x00020000L
+#define MMEA4_SDP_ARB_FINAL__RDONLY_VC1_MASK 0x00040000L
+#define MMEA4_SDP_ARB_FINAL__RDONLY_VC2_MASK 0x00080000L
+#define MMEA4_SDP_ARB_FINAL__RDONLY_VC3_MASK 0x00100000L
+#define MMEA4_SDP_ARB_FINAL__RDONLY_VC4_MASK 0x00200000L
+#define MMEA4_SDP_ARB_FINAL__RDONLY_VC5_MASK 0x00400000L
+#define MMEA4_SDP_ARB_FINAL__RDONLY_VC6_MASK 0x00800000L
+#define MMEA4_SDP_ARB_FINAL__RDONLY_VC7_MASK 0x01000000L
+#define MMEA4_SDP_ARB_FINAL__ERREVENT_ON_ERROR_MASK 0x02000000L
+#define MMEA4_SDP_ARB_FINAL__HALTREQ_ON_ERROR_MASK 0x04000000L
+#define MMEA4_SDP_ARB_FINAL__DRAM_BURST_STRETCH_MASK 0x08000000L
+#define MMEA4_SDP_ARB_FINAL__GMI_BURST_STRETCH_MASK 0x10000000L
+//MMEA4_SDP_DRAM_PRIORITY
+#define MMEA4_SDP_DRAM_PRIORITY__RD_GROUP0_PRIORITY__SHIFT 0x0
+#define MMEA4_SDP_DRAM_PRIORITY__RD_GROUP1_PRIORITY__SHIFT 0x4
+#define MMEA4_SDP_DRAM_PRIORITY__RD_GROUP2_PRIORITY__SHIFT 0x8
+#define MMEA4_SDP_DRAM_PRIORITY__RD_GROUP3_PRIORITY__SHIFT 0xc
+#define MMEA4_SDP_DRAM_PRIORITY__WR_GROUP0_PRIORITY__SHIFT 0x10
+#define MMEA4_SDP_DRAM_PRIORITY__WR_GROUP1_PRIORITY__SHIFT 0x14
+#define MMEA4_SDP_DRAM_PRIORITY__WR_GROUP2_PRIORITY__SHIFT 0x18
+#define MMEA4_SDP_DRAM_PRIORITY__WR_GROUP3_PRIORITY__SHIFT 0x1c
+#define MMEA4_SDP_DRAM_PRIORITY__RD_GROUP0_PRIORITY_MASK 0x0000000FL
+#define MMEA4_SDP_DRAM_PRIORITY__RD_GROUP1_PRIORITY_MASK 0x000000F0L
+#define MMEA4_SDP_DRAM_PRIORITY__RD_GROUP2_PRIORITY_MASK 0x00000F00L
+#define MMEA4_SDP_DRAM_PRIORITY__RD_GROUP3_PRIORITY_MASK 0x0000F000L
+#define MMEA4_SDP_DRAM_PRIORITY__WR_GROUP0_PRIORITY_MASK 0x000F0000L
+#define MMEA4_SDP_DRAM_PRIORITY__WR_GROUP1_PRIORITY_MASK 0x00F00000L
+#define MMEA4_SDP_DRAM_PRIORITY__WR_GROUP2_PRIORITY_MASK 0x0F000000L
+#define MMEA4_SDP_DRAM_PRIORITY__WR_GROUP3_PRIORITY_MASK 0xF0000000L
+//MMEA4_SDP_GMI_PRIORITY
+#define MMEA4_SDP_GMI_PRIORITY__RD_GROUP0_PRIORITY__SHIFT 0x0
+#define MMEA4_SDP_GMI_PRIORITY__RD_GROUP1_PRIORITY__SHIFT 0x4
+#define MMEA4_SDP_GMI_PRIORITY__RD_GROUP2_PRIORITY__SHIFT 0x8
+#define MMEA4_SDP_GMI_PRIORITY__RD_GROUP3_PRIORITY__SHIFT 0xc
+#define MMEA4_SDP_GMI_PRIORITY__WR_GROUP0_PRIORITY__SHIFT 0x10
+#define MMEA4_SDP_GMI_PRIORITY__WR_GROUP1_PRIORITY__SHIFT 0x14
+#define MMEA4_SDP_GMI_PRIORITY__WR_GROUP2_PRIORITY__SHIFT 0x18
+#define MMEA4_SDP_GMI_PRIORITY__WR_GROUP3_PRIORITY__SHIFT 0x1c
+#define MMEA4_SDP_GMI_PRIORITY__RD_GROUP0_PRIORITY_MASK 0x0000000FL
+#define MMEA4_SDP_GMI_PRIORITY__RD_GROUP1_PRIORITY_MASK 0x000000F0L
+#define MMEA4_SDP_GMI_PRIORITY__RD_GROUP2_PRIORITY_MASK 0x00000F00L
+#define MMEA4_SDP_GMI_PRIORITY__RD_GROUP3_PRIORITY_MASK 0x0000F000L
+#define MMEA4_SDP_GMI_PRIORITY__WR_GROUP0_PRIORITY_MASK 0x000F0000L
+#define MMEA4_SDP_GMI_PRIORITY__WR_GROUP1_PRIORITY_MASK 0x00F00000L
+#define MMEA4_SDP_GMI_PRIORITY__WR_GROUP2_PRIORITY_MASK 0x0F000000L
+#define MMEA4_SDP_GMI_PRIORITY__WR_GROUP3_PRIORITY_MASK 0xF0000000L
+//MMEA4_SDP_IO_PRIORITY
+#define MMEA4_SDP_IO_PRIORITY__RD_GROUP0_PRIORITY__SHIFT 0x0
+#define MMEA4_SDP_IO_PRIORITY__RD_GROUP1_PRIORITY__SHIFT 0x4
+#define MMEA4_SDP_IO_PRIORITY__RD_GROUP2_PRIORITY__SHIFT 0x8
+#define MMEA4_SDP_IO_PRIORITY__RD_GROUP3_PRIORITY__SHIFT 0xc
+#define MMEA4_SDP_IO_PRIORITY__WR_GROUP0_PRIORITY__SHIFT 0x10
+#define MMEA4_SDP_IO_PRIORITY__WR_GROUP1_PRIORITY__SHIFT 0x14
+#define MMEA4_SDP_IO_PRIORITY__WR_GROUP2_PRIORITY__SHIFT 0x18
+#define MMEA4_SDP_IO_PRIORITY__WR_GROUP3_PRIORITY__SHIFT 0x1c
+#define MMEA4_SDP_IO_PRIORITY__RD_GROUP0_PRIORITY_MASK 0x0000000FL
+#define MMEA4_SDP_IO_PRIORITY__RD_GROUP1_PRIORITY_MASK 0x000000F0L
+#define MMEA4_SDP_IO_PRIORITY__RD_GROUP2_PRIORITY_MASK 0x00000F00L
+#define MMEA4_SDP_IO_PRIORITY__RD_GROUP3_PRIORITY_MASK 0x0000F000L
+#define MMEA4_SDP_IO_PRIORITY__WR_GROUP0_PRIORITY_MASK 0x000F0000L
+#define MMEA4_SDP_IO_PRIORITY__WR_GROUP1_PRIORITY_MASK 0x00F00000L
+#define MMEA4_SDP_IO_PRIORITY__WR_GROUP2_PRIORITY_MASK 0x0F000000L
+#define MMEA4_SDP_IO_PRIORITY__WR_GROUP3_PRIORITY_MASK 0xF0000000L
+//MMEA4_SDP_CREDITS
+#define MMEA4_SDP_CREDITS__TAG_LIMIT__SHIFT 0x0
+#define MMEA4_SDP_CREDITS__WR_RESP_CREDITS__SHIFT 0x8
+#define MMEA4_SDP_CREDITS__RD_RESP_CREDITS__SHIFT 0x10
+#define MMEA4_SDP_CREDITS__TAG_LIMIT_MASK 0x000000FFL
+#define MMEA4_SDP_CREDITS__WR_RESP_CREDITS_MASK 0x00007F00L
+#define MMEA4_SDP_CREDITS__RD_RESP_CREDITS_MASK 0x007F0000L
+//MMEA4_SDP_TAG_RESERVE0
+#define MMEA4_SDP_TAG_RESERVE0__VC0__SHIFT 0x0
+#define MMEA4_SDP_TAG_RESERVE0__VC1__SHIFT 0x8
+#define MMEA4_SDP_TAG_RESERVE0__VC2__SHIFT 0x10
+#define MMEA4_SDP_TAG_RESERVE0__VC3__SHIFT 0x18
+#define MMEA4_SDP_TAG_RESERVE0__VC0_MASK 0x000000FFL
+#define MMEA4_SDP_TAG_RESERVE0__VC1_MASK 0x0000FF00L
+#define MMEA4_SDP_TAG_RESERVE0__VC2_MASK 0x00FF0000L
+#define MMEA4_SDP_TAG_RESERVE0__VC3_MASK 0xFF000000L
+//MMEA4_SDP_TAG_RESERVE1
+#define MMEA4_SDP_TAG_RESERVE1__VC4__SHIFT 0x0
+#define MMEA4_SDP_TAG_RESERVE1__VC5__SHIFT 0x8
+#define MMEA4_SDP_TAG_RESERVE1__VC6__SHIFT 0x10
+#define MMEA4_SDP_TAG_RESERVE1__VC7__SHIFT 0x18
+#define MMEA4_SDP_TAG_RESERVE1__VC4_MASK 0x000000FFL
+#define MMEA4_SDP_TAG_RESERVE1__VC5_MASK 0x0000FF00L
+#define MMEA4_SDP_TAG_RESERVE1__VC6_MASK 0x00FF0000L
+#define MMEA4_SDP_TAG_RESERVE1__VC7_MASK 0xFF000000L
+//MMEA4_SDP_VCC_RESERVE0
+#define MMEA4_SDP_VCC_RESERVE0__VC0_CREDITS__SHIFT 0x0
+#define MMEA4_SDP_VCC_RESERVE0__VC1_CREDITS__SHIFT 0x6
+#define MMEA4_SDP_VCC_RESERVE0__VC2_CREDITS__SHIFT 0xc
+#define MMEA4_SDP_VCC_RESERVE0__VC3_CREDITS__SHIFT 0x12
+#define MMEA4_SDP_VCC_RESERVE0__VC4_CREDITS__SHIFT 0x18
+#define MMEA4_SDP_VCC_RESERVE0__VC0_CREDITS_MASK 0x0000003FL
+#define MMEA4_SDP_VCC_RESERVE0__VC1_CREDITS_MASK 0x00000FC0L
+#define MMEA4_SDP_VCC_RESERVE0__VC2_CREDITS_MASK 0x0003F000L
+#define MMEA4_SDP_VCC_RESERVE0__VC3_CREDITS_MASK 0x00FC0000L
+#define MMEA4_SDP_VCC_RESERVE0__VC4_CREDITS_MASK 0x3F000000L
+//MMEA4_SDP_VCC_RESERVE1
+#define MMEA4_SDP_VCC_RESERVE1__VC5_CREDITS__SHIFT 0x0
+#define MMEA4_SDP_VCC_RESERVE1__VC6_CREDITS__SHIFT 0x6
+#define MMEA4_SDP_VCC_RESERVE1__VC7_CREDITS__SHIFT 0xc
+#define MMEA4_SDP_VCC_RESERVE1__DISTRIBUTE_POOL__SHIFT 0x1f
+#define MMEA4_SDP_VCC_RESERVE1__VC5_CREDITS_MASK 0x0000003FL
+#define MMEA4_SDP_VCC_RESERVE1__VC6_CREDITS_MASK 0x00000FC0L
+#define MMEA4_SDP_VCC_RESERVE1__VC7_CREDITS_MASK 0x0003F000L
+#define MMEA4_SDP_VCC_RESERVE1__DISTRIBUTE_POOL_MASK 0x80000000L
+//MMEA4_SDP_VCD_RESERVE0
+#define MMEA4_SDP_VCD_RESERVE0__VC0_CREDITS__SHIFT 0x0
+#define MMEA4_SDP_VCD_RESERVE0__VC1_CREDITS__SHIFT 0x6
+#define MMEA4_SDP_VCD_RESERVE0__VC2_CREDITS__SHIFT 0xc
+#define MMEA4_SDP_VCD_RESERVE0__VC3_CREDITS__SHIFT 0x12
+#define MMEA4_SDP_VCD_RESERVE0__VC4_CREDITS__SHIFT 0x18
+#define MMEA4_SDP_VCD_RESERVE0__VC0_CREDITS_MASK 0x0000003FL
+#define MMEA4_SDP_VCD_RESERVE0__VC1_CREDITS_MASK 0x00000FC0L
+#define MMEA4_SDP_VCD_RESERVE0__VC2_CREDITS_MASK 0x0003F000L
+#define MMEA4_SDP_VCD_RESERVE0__VC3_CREDITS_MASK 0x00FC0000L
+#define MMEA4_SDP_VCD_RESERVE0__VC4_CREDITS_MASK 0x3F000000L
+//MMEA4_SDP_VCD_RESERVE1
+#define MMEA4_SDP_VCD_RESERVE1__VC5_CREDITS__SHIFT 0x0
+#define MMEA4_SDP_VCD_RESERVE1__VC6_CREDITS__SHIFT 0x6
+#define MMEA4_SDP_VCD_RESERVE1__VC7_CREDITS__SHIFT 0xc
+#define MMEA4_SDP_VCD_RESERVE1__DISTRIBUTE_POOL__SHIFT 0x1f
+#define MMEA4_SDP_VCD_RESERVE1__VC5_CREDITS_MASK 0x0000003FL
+#define MMEA4_SDP_VCD_RESERVE1__VC6_CREDITS_MASK 0x00000FC0L
+#define MMEA4_SDP_VCD_RESERVE1__VC7_CREDITS_MASK 0x0003F000L
+#define MMEA4_SDP_VCD_RESERVE1__DISTRIBUTE_POOL_MASK 0x80000000L
+//MMEA4_SDP_REQ_CNTL
+#define MMEA4_SDP_REQ_CNTL__REQ_PASS_PW_OVERRIDE_READ__SHIFT 0x0
+#define MMEA4_SDP_REQ_CNTL__REQ_PASS_PW_OVERRIDE_WRITE__SHIFT 0x1
+#define MMEA4_SDP_REQ_CNTL__REQ_PASS_PW_OVERRIDE_ATOMIC__SHIFT 0x2
+#define MMEA4_SDP_REQ_CNTL__REQ_CHAIN_OVERRIDE_DRAM__SHIFT 0x3
+#define MMEA4_SDP_REQ_CNTL__REQ_CHAIN_OVERRIDE_GMI__SHIFT 0x4
+#define MMEA4_SDP_REQ_CNTL__INNER_DOMAIN_MODE__SHIFT 0x5
+#define MMEA4_SDP_REQ_CNTL__REQ_BLOCK_LEVEL_READ__SHIFT 0x6
+#define MMEA4_SDP_REQ_CNTL__REQ_BLOCK_LEVEL_WRITE__SHIFT 0x8
+#define MMEA4_SDP_REQ_CNTL__REQ_BLOCK_LEVEL_ATOMIC__SHIFT 0xa
+#define MMEA4_SDP_REQ_CNTL__REQ_PASS_PW_OVERRIDE_READ_MASK 0x00000001L
+#define MMEA4_SDP_REQ_CNTL__REQ_PASS_PW_OVERRIDE_WRITE_MASK 0x00000002L
+#define MMEA4_SDP_REQ_CNTL__REQ_PASS_PW_OVERRIDE_ATOMIC_MASK 0x00000004L
+#define MMEA4_SDP_REQ_CNTL__REQ_CHAIN_OVERRIDE_DRAM_MASK 0x00000008L
+#define MMEA4_SDP_REQ_CNTL__REQ_CHAIN_OVERRIDE_GMI_MASK 0x00000010L
+#define MMEA4_SDP_REQ_CNTL__INNER_DOMAIN_MODE_MASK 0x00000020L
+#define MMEA4_SDP_REQ_CNTL__REQ_BLOCK_LEVEL_READ_MASK 0x000000C0L
+#define MMEA4_SDP_REQ_CNTL__REQ_BLOCK_LEVEL_WRITE_MASK 0x00000300L
+#define MMEA4_SDP_REQ_CNTL__REQ_BLOCK_LEVEL_ATOMIC_MASK 0x00000C00L
+//MMEA4_MISC
+#define MMEA4_MISC__RELATIVE_PRI_IN_DRAM_RD_ARB__SHIFT 0x0
+#define MMEA4_MISC__RELATIVE_PRI_IN_DRAM_WR_ARB__SHIFT 0x1
+#define MMEA4_MISC__RELATIVE_PRI_IN_GMI_RD_ARB__SHIFT 0x2
+#define MMEA4_MISC__RELATIVE_PRI_IN_GMI_WR_ARB__SHIFT 0x3
+#define MMEA4_MISC__RELATIVE_PRI_IN_IO_RD_ARB__SHIFT 0x4
+#define MMEA4_MISC__RELATIVE_PRI_IN_IO_WR_ARB__SHIFT 0x5
+#define MMEA4_MISC__EARLYWRRET_ENABLE_VC0__SHIFT 0x6
+#define MMEA4_MISC__EARLYWRRET_ENABLE_VC1__SHIFT 0x7
+#define MMEA4_MISC__EARLYWRRET_ENABLE_VC2__SHIFT 0x8
+#define MMEA4_MISC__EARLYWRRET_ENABLE_VC3__SHIFT 0x9
+#define MMEA4_MISC__EARLYWRRET_ENABLE_VC4__SHIFT 0xa
+#define MMEA4_MISC__EARLYWRRET_ENABLE_VC5__SHIFT 0xb
+#define MMEA4_MISC__EARLYWRRET_ENABLE_VC6__SHIFT 0xc
+#define MMEA4_MISC__EARLYWRRET_ENABLE_VC7__SHIFT 0xd
+#define MMEA4_MISC__EARLY_SDP_ORIGDATA__SHIFT 0xe
+#define MMEA4_MISC__LINKMGR_DYNAMIC_MODE__SHIFT 0xf
+#define MMEA4_MISC__LINKMGR_HALT_THRESHOLD__SHIFT 0x11
+#define MMEA4_MISC__LINKMGR_RECONNECT_DELAY__SHIFT 0x13
+#define MMEA4_MISC__LINKMGR_IDLE_THRESHOLD__SHIFT 0x15
+#define MMEA4_MISC__FAVOUR_MIDCHAIN_CS_IN_DRAM_ARB__SHIFT 0x1a
+#define MMEA4_MISC__FAVOUR_MIDCHAIN_CS_IN_GMI_ARB__SHIFT 0x1b
+#define MMEA4_MISC__FAVOUR_LAST_CS_IN_DRAM_ARB__SHIFT 0x1c
+#define MMEA4_MISC__FAVOUR_LAST_CS_IN_GMI_ARB__SHIFT 0x1d
+#define MMEA4_MISC__SWITCH_CS_ON_W2R_IN_DRAM_ARB__SHIFT 0x1e
+#define MMEA4_MISC__SWITCH_CS_ON_W2R_IN_GMI_ARB__SHIFT 0x1f
+#define MMEA4_MISC__RELATIVE_PRI_IN_DRAM_RD_ARB_MASK 0x00000001L
+#define MMEA4_MISC__RELATIVE_PRI_IN_DRAM_WR_ARB_MASK 0x00000002L
+#define MMEA4_MISC__RELATIVE_PRI_IN_GMI_RD_ARB_MASK 0x00000004L
+#define MMEA4_MISC__RELATIVE_PRI_IN_GMI_WR_ARB_MASK 0x00000008L
+#define MMEA4_MISC__RELATIVE_PRI_IN_IO_RD_ARB_MASK 0x00000010L
+#define MMEA4_MISC__RELATIVE_PRI_IN_IO_WR_ARB_MASK 0x00000020L
+#define MMEA4_MISC__EARLYWRRET_ENABLE_VC0_MASK 0x00000040L
+#define MMEA4_MISC__EARLYWRRET_ENABLE_VC1_MASK 0x00000080L
+#define MMEA4_MISC__EARLYWRRET_ENABLE_VC2_MASK 0x00000100L
+#define MMEA4_MISC__EARLYWRRET_ENABLE_VC3_MASK 0x00000200L
+#define MMEA4_MISC__EARLYWRRET_ENABLE_VC4_MASK 0x00000400L
+#define MMEA4_MISC__EARLYWRRET_ENABLE_VC5_MASK 0x00000800L
+#define MMEA4_MISC__EARLYWRRET_ENABLE_VC6_MASK 0x00001000L
+#define MMEA4_MISC__EARLYWRRET_ENABLE_VC7_MASK 0x00002000L
+#define MMEA4_MISC__EARLY_SDP_ORIGDATA_MASK 0x00004000L
+#define MMEA4_MISC__LINKMGR_DYNAMIC_MODE_MASK 0x00018000L
+#define MMEA4_MISC__LINKMGR_HALT_THRESHOLD_MASK 0x00060000L
+#define MMEA4_MISC__LINKMGR_RECONNECT_DELAY_MASK 0x00180000L
+#define MMEA4_MISC__LINKMGR_IDLE_THRESHOLD_MASK 0x03E00000L
+#define MMEA4_MISC__FAVOUR_MIDCHAIN_CS_IN_DRAM_ARB_MASK 0x04000000L
+#define MMEA4_MISC__FAVOUR_MIDCHAIN_CS_IN_GMI_ARB_MASK 0x08000000L
+#define MMEA4_MISC__FAVOUR_LAST_CS_IN_DRAM_ARB_MASK 0x10000000L
+#define MMEA4_MISC__FAVOUR_LAST_CS_IN_GMI_ARB_MASK 0x20000000L
+#define MMEA4_MISC__SWITCH_CS_ON_W2R_IN_DRAM_ARB_MASK 0x40000000L
+#define MMEA4_MISC__SWITCH_CS_ON_W2R_IN_GMI_ARB_MASK 0x80000000L
+//MMEA4_LATENCY_SAMPLING
+#define MMEA4_LATENCY_SAMPLING__SAMPLER0_DRAM__SHIFT 0x0
+#define MMEA4_LATENCY_SAMPLING__SAMPLER1_DRAM__SHIFT 0x1
+#define MMEA4_LATENCY_SAMPLING__SAMPLER0_GMI__SHIFT 0x2
+#define MMEA4_LATENCY_SAMPLING__SAMPLER1_GMI__SHIFT 0x3
+#define MMEA4_LATENCY_SAMPLING__SAMPLER0_IO__SHIFT 0x4
+#define MMEA4_LATENCY_SAMPLING__SAMPLER1_IO__SHIFT 0x5
+#define MMEA4_LATENCY_SAMPLING__SAMPLER0_READ__SHIFT 0x6
+#define MMEA4_LATENCY_SAMPLING__SAMPLER1_READ__SHIFT 0x7
+#define MMEA4_LATENCY_SAMPLING__SAMPLER0_WRITE__SHIFT 0x8
+#define MMEA4_LATENCY_SAMPLING__SAMPLER1_WRITE__SHIFT 0x9
+#define MMEA4_LATENCY_SAMPLING__SAMPLER0_ATOMIC_RET__SHIFT 0xa
+#define MMEA4_LATENCY_SAMPLING__SAMPLER1_ATOMIC_RET__SHIFT 0xb
+#define MMEA4_LATENCY_SAMPLING__SAMPLER0_ATOMIC_NORET__SHIFT 0xc
+#define MMEA4_LATENCY_SAMPLING__SAMPLER1_ATOMIC_NORET__SHIFT 0xd
+#define MMEA4_LATENCY_SAMPLING__SAMPLER0_VC__SHIFT 0xe
+#define MMEA4_LATENCY_SAMPLING__SAMPLER1_VC__SHIFT 0x16
+#define MMEA4_LATENCY_SAMPLING__SAMPLER0_DRAM_MASK 0x00000001L
+#define MMEA4_LATENCY_SAMPLING__SAMPLER1_DRAM_MASK 0x00000002L
+#define MMEA4_LATENCY_SAMPLING__SAMPLER0_GMI_MASK 0x00000004L
+#define MMEA4_LATENCY_SAMPLING__SAMPLER1_GMI_MASK 0x00000008L
+#define MMEA4_LATENCY_SAMPLING__SAMPLER0_IO_MASK 0x00000010L
+#define MMEA4_LATENCY_SAMPLING__SAMPLER1_IO_MASK 0x00000020L
+#define MMEA4_LATENCY_SAMPLING__SAMPLER0_READ_MASK 0x00000040L
+#define MMEA4_LATENCY_SAMPLING__SAMPLER1_READ_MASK 0x00000080L
+#define MMEA4_LATENCY_SAMPLING__SAMPLER0_WRITE_MASK 0x00000100L
+#define MMEA4_LATENCY_SAMPLING__SAMPLER1_WRITE_MASK 0x00000200L
+#define MMEA4_LATENCY_SAMPLING__SAMPLER0_ATOMIC_RET_MASK 0x00000400L
+#define MMEA4_LATENCY_SAMPLING__SAMPLER1_ATOMIC_RET_MASK 0x00000800L
+#define MMEA4_LATENCY_SAMPLING__SAMPLER0_ATOMIC_NORET_MASK 0x00001000L
+#define MMEA4_LATENCY_SAMPLING__SAMPLER1_ATOMIC_NORET_MASK 0x00002000L
+#define MMEA4_LATENCY_SAMPLING__SAMPLER0_VC_MASK 0x003FC000L
+#define MMEA4_LATENCY_SAMPLING__SAMPLER1_VC_MASK 0x3FC00000L
+//MMEA4_PERFCOUNTER_LO
+#define MMEA4_PERFCOUNTER_LO__COUNTER_LO__SHIFT 0x0
+#define MMEA4_PERFCOUNTER_LO__COUNTER_LO_MASK 0xFFFFFFFFL
+//MMEA4_PERFCOUNTER_HI
+#define MMEA4_PERFCOUNTER_HI__COUNTER_HI__SHIFT 0x0
+#define MMEA4_PERFCOUNTER_HI__COMPARE_VALUE__SHIFT 0x10
+#define MMEA4_PERFCOUNTER_HI__COUNTER_HI_MASK 0x0000FFFFL
+#define MMEA4_PERFCOUNTER_HI__COMPARE_VALUE_MASK 0xFFFF0000L
+//MMEA4_PERFCOUNTER0_CFG
+#define MMEA4_PERFCOUNTER0_CFG__PERF_SEL__SHIFT 0x0
+#define MMEA4_PERFCOUNTER0_CFG__PERF_SEL_END__SHIFT 0x8
+#define MMEA4_PERFCOUNTER0_CFG__PERF_MODE__SHIFT 0x18
+#define MMEA4_PERFCOUNTER0_CFG__ENABLE__SHIFT 0x1c
+#define MMEA4_PERFCOUNTER0_CFG__CLEAR__SHIFT 0x1d
+#define MMEA4_PERFCOUNTER0_CFG__PERF_SEL_MASK 0x000000FFL
+#define MMEA4_PERFCOUNTER0_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define MMEA4_PERFCOUNTER0_CFG__PERF_MODE_MASK 0x0F000000L
+#define MMEA4_PERFCOUNTER0_CFG__ENABLE_MASK 0x10000000L
+#define MMEA4_PERFCOUNTER0_CFG__CLEAR_MASK 0x20000000L
+//MMEA4_PERFCOUNTER1_CFG
+#define MMEA4_PERFCOUNTER1_CFG__PERF_SEL__SHIFT 0x0
+#define MMEA4_PERFCOUNTER1_CFG__PERF_SEL_END__SHIFT 0x8
+#define MMEA4_PERFCOUNTER1_CFG__PERF_MODE__SHIFT 0x18
+#define MMEA4_PERFCOUNTER1_CFG__ENABLE__SHIFT 0x1c
+#define MMEA4_PERFCOUNTER1_CFG__CLEAR__SHIFT 0x1d
+#define MMEA4_PERFCOUNTER1_CFG__PERF_SEL_MASK 0x000000FFL
+#define MMEA4_PERFCOUNTER1_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define MMEA4_PERFCOUNTER1_CFG__PERF_MODE_MASK 0x0F000000L
+#define MMEA4_PERFCOUNTER1_CFG__ENABLE_MASK 0x10000000L
+#define MMEA4_PERFCOUNTER1_CFG__CLEAR_MASK 0x20000000L
+//MMEA4_PERFCOUNTER_RSLT_CNTL
+#define MMEA4_PERFCOUNTER_RSLT_CNTL__PERF_COUNTER_SELECT__SHIFT 0x0
+#define MMEA4_PERFCOUNTER_RSLT_CNTL__START_TRIGGER__SHIFT 0x8
+#define MMEA4_PERFCOUNTER_RSLT_CNTL__STOP_TRIGGER__SHIFT 0x10
+#define MMEA4_PERFCOUNTER_RSLT_CNTL__ENABLE_ANY__SHIFT 0x18
+#define MMEA4_PERFCOUNTER_RSLT_CNTL__CLEAR_ALL__SHIFT 0x19
+#define MMEA4_PERFCOUNTER_RSLT_CNTL__STOP_ALL_ON_SATURATE__SHIFT 0x1a
+#define MMEA4_PERFCOUNTER_RSLT_CNTL__PERF_COUNTER_SELECT_MASK 0x0000000FL
+#define MMEA4_PERFCOUNTER_RSLT_CNTL__START_TRIGGER_MASK 0x0000FF00L
+#define MMEA4_PERFCOUNTER_RSLT_CNTL__STOP_TRIGGER_MASK 0x00FF0000L
+#define MMEA4_PERFCOUNTER_RSLT_CNTL__ENABLE_ANY_MASK 0x01000000L
+#define MMEA4_PERFCOUNTER_RSLT_CNTL__CLEAR_ALL_MASK 0x02000000L
+#define MMEA4_PERFCOUNTER_RSLT_CNTL__STOP_ALL_ON_SATURATE_MASK 0x04000000L
+//MMEA4_DSM_CNTL
+#define MMEA4_DSM_CNTL__DRAMRD_CMDMEM_DSM_IRRITATOR_DATA__SHIFT 0x0
+#define MMEA4_DSM_CNTL__DRAMRD_CMDMEM_ENABLE_SINGLE_WRITE__SHIFT 0x2
+#define MMEA4_DSM_CNTL__DRAMWR_CMDMEM_DSM_IRRITATOR_DATA__SHIFT 0x3
+#define MMEA4_DSM_CNTL__DRAMWR_CMDMEM_ENABLE_SINGLE_WRITE__SHIFT 0x5
+#define MMEA4_DSM_CNTL__DRAMWR_DATAMEM_DSM_IRRITATOR_DATA__SHIFT 0x6
+#define MMEA4_DSM_CNTL__DRAMWR_DATAMEM_ENABLE_SINGLE_WRITE__SHIFT 0x8
+#define MMEA4_DSM_CNTL__RRET_TAGMEM_DSM_IRRITATOR_DATA__SHIFT 0x9
+#define MMEA4_DSM_CNTL__RRET_TAGMEM_ENABLE_SINGLE_WRITE__SHIFT 0xb
+#define MMEA4_DSM_CNTL__WRET_TAGMEM_DSM_IRRITATOR_DATA__SHIFT 0xc
+#define MMEA4_DSM_CNTL__WRET_TAGMEM_ENABLE_SINGLE_WRITE__SHIFT 0xe
+#define MMEA4_DSM_CNTL__GMIRD_CMDMEM_DSM_IRRITATOR_DATA__SHIFT 0xf
+#define MMEA4_DSM_CNTL__GMIRD_CMDMEM_ENABLE_SINGLE_WRITE__SHIFT 0x11
+#define MMEA4_DSM_CNTL__GMIWR_CMDMEM_DSM_IRRITATOR_DATA__SHIFT 0x12
+#define MMEA4_DSM_CNTL__GMIWR_CMDMEM_ENABLE_SINGLE_WRITE__SHIFT 0x14
+#define MMEA4_DSM_CNTL__GMIWR_DATAMEM_DSM_IRRITATOR_DATA__SHIFT 0x15
+#define MMEA4_DSM_CNTL__GMIWR_DATAMEM_ENABLE_SINGLE_WRITE__SHIFT 0x17
+#define MMEA4_DSM_CNTL__DRAMRD_CMDMEM_DSM_IRRITATOR_DATA_MASK 0x00000003L
+#define MMEA4_DSM_CNTL__DRAMRD_CMDMEM_ENABLE_SINGLE_WRITE_MASK 0x00000004L
+#define MMEA4_DSM_CNTL__DRAMWR_CMDMEM_DSM_IRRITATOR_DATA_MASK 0x00000018L
+#define MMEA4_DSM_CNTL__DRAMWR_CMDMEM_ENABLE_SINGLE_WRITE_MASK 0x00000020L
+#define MMEA4_DSM_CNTL__DRAMWR_DATAMEM_DSM_IRRITATOR_DATA_MASK 0x000000C0L
+#define MMEA4_DSM_CNTL__DRAMWR_DATAMEM_ENABLE_SINGLE_WRITE_MASK 0x00000100L
+#define MMEA4_DSM_CNTL__RRET_TAGMEM_DSM_IRRITATOR_DATA_MASK 0x00000600L
+#define MMEA4_DSM_CNTL__RRET_TAGMEM_ENABLE_SINGLE_WRITE_MASK 0x00000800L
+#define MMEA4_DSM_CNTL__WRET_TAGMEM_DSM_IRRITATOR_DATA_MASK 0x00003000L
+#define MMEA4_DSM_CNTL__WRET_TAGMEM_ENABLE_SINGLE_WRITE_MASK 0x00004000L
+#define MMEA4_DSM_CNTL__GMIRD_CMDMEM_DSM_IRRITATOR_DATA_MASK 0x00018000L
+#define MMEA4_DSM_CNTL__GMIRD_CMDMEM_ENABLE_SINGLE_WRITE_MASK 0x00020000L
+#define MMEA4_DSM_CNTL__GMIWR_CMDMEM_DSM_IRRITATOR_DATA_MASK 0x000C0000L
+#define MMEA4_DSM_CNTL__GMIWR_CMDMEM_ENABLE_SINGLE_WRITE_MASK 0x00100000L
+#define MMEA4_DSM_CNTL__GMIWR_DATAMEM_DSM_IRRITATOR_DATA_MASK 0x00600000L
+#define MMEA4_DSM_CNTL__GMIWR_DATAMEM_ENABLE_SINGLE_WRITE_MASK 0x00800000L
+//MMEA4_DSM_CNTLA
+#define MMEA4_DSM_CNTLA__DRAMRD_PAGEMEM_DSM_IRRITATOR_DATA__SHIFT 0x0
+#define MMEA4_DSM_CNTLA__DRAMRD_PAGEMEM_ENABLE_SINGLE_WRITE__SHIFT 0x2
+#define MMEA4_DSM_CNTLA__DRAMWR_PAGEMEM_DSM_IRRITATOR_DATA__SHIFT 0x3
+#define MMEA4_DSM_CNTLA__DRAMWR_PAGEMEM_ENABLE_SINGLE_WRITE__SHIFT 0x5
+#define MMEA4_DSM_CNTLA__IORD_CMDMEM_DSM_IRRITATOR_DATA__SHIFT 0x6
+#define MMEA4_DSM_CNTLA__IORD_CMDMEM_ENABLE_SINGLE_WRITE__SHIFT 0x8
+#define MMEA4_DSM_CNTLA__IOWR_CMDMEM_DSM_IRRITATOR_DATA__SHIFT 0x9
+#define MMEA4_DSM_CNTLA__IOWR_CMDMEM_ENABLE_SINGLE_WRITE__SHIFT 0xb
+#define MMEA4_DSM_CNTLA__IOWR_DATAMEM_DSM_IRRITATOR_DATA__SHIFT 0xc
+#define MMEA4_DSM_CNTLA__IOWR_DATAMEM_ENABLE_SINGLE_WRITE__SHIFT 0xe
+#define MMEA4_DSM_CNTLA__GMIRD_PAGEMEM_DSM_IRRITATOR_DATA__SHIFT 0xf
+#define MMEA4_DSM_CNTLA__GMIRD_PAGEMEM_ENABLE_SINGLE_WRITE__SHIFT 0x11
+#define MMEA4_DSM_CNTLA__GMIWR_PAGEMEM_DSM_IRRITATOR_DATA__SHIFT 0x12
+#define MMEA4_DSM_CNTLA__GMIWR_PAGEMEM_ENABLE_SINGLE_WRITE__SHIFT 0x14
+#define MMEA4_DSM_CNTLA__DRAMRD_PAGEMEM_DSM_IRRITATOR_DATA_MASK 0x00000003L
+#define MMEA4_DSM_CNTLA__DRAMRD_PAGEMEM_ENABLE_SINGLE_WRITE_MASK 0x00000004L
+#define MMEA4_DSM_CNTLA__DRAMWR_PAGEMEM_DSM_IRRITATOR_DATA_MASK 0x00000018L
+#define MMEA4_DSM_CNTLA__DRAMWR_PAGEMEM_ENABLE_SINGLE_WRITE_MASK 0x00000020L
+#define MMEA4_DSM_CNTLA__IORD_CMDMEM_DSM_IRRITATOR_DATA_MASK 0x000000C0L
+#define MMEA4_DSM_CNTLA__IORD_CMDMEM_ENABLE_SINGLE_WRITE_MASK 0x00000100L
+#define MMEA4_DSM_CNTLA__IOWR_CMDMEM_DSM_IRRITATOR_DATA_MASK 0x00000600L
+#define MMEA4_DSM_CNTLA__IOWR_CMDMEM_ENABLE_SINGLE_WRITE_MASK 0x00000800L
+#define MMEA4_DSM_CNTLA__IOWR_DATAMEM_DSM_IRRITATOR_DATA_MASK 0x00003000L
+#define MMEA4_DSM_CNTLA__IOWR_DATAMEM_ENABLE_SINGLE_WRITE_MASK 0x00004000L
+#define MMEA4_DSM_CNTLA__GMIRD_PAGEMEM_DSM_IRRITATOR_DATA_MASK 0x00018000L
+#define MMEA4_DSM_CNTLA__GMIRD_PAGEMEM_ENABLE_SINGLE_WRITE_MASK 0x00020000L
+#define MMEA4_DSM_CNTLA__GMIWR_PAGEMEM_DSM_IRRITATOR_DATA_MASK 0x000C0000L
+#define MMEA4_DSM_CNTLA__GMIWR_PAGEMEM_ENABLE_SINGLE_WRITE_MASK 0x00100000L
+//MMEA4_DSM_CNTLB
+#define MMEA4_DSM_CNTLB__MAM_D0MEM_DSM_IRRITATOR_DATA__SHIFT 0x0
+#define MMEA4_DSM_CNTLB__MAM_D0MEM_ENABLE_SINGLE_WRITE__SHIFT 0x2
+#define MMEA4_DSM_CNTLB__MAM_D1MEM_DSM_IRRITATOR_DATA__SHIFT 0x3
+#define MMEA4_DSM_CNTLB__MAM_D1MEM_ENABLE_SINGLE_WRITE__SHIFT 0x5
+#define MMEA4_DSM_CNTLB__MAM_D2MEM_DSM_IRRITATOR_DATA__SHIFT 0x6
+#define MMEA4_DSM_CNTLB__MAM_D2MEM_ENABLE_SINGLE_WRITE__SHIFT 0x8
+#define MMEA4_DSM_CNTLB__MAM_D3MEM_DSM_IRRITATOR_DATA__SHIFT 0x9
+#define MMEA4_DSM_CNTLB__MAM_D3MEM_ENABLE_SINGLE_WRITE__SHIFT 0xb
+#define MMEA4_DSM_CNTLB__MAM_D0MEM_DSM_IRRITATOR_DATA_MASK 0x00000003L
+#define MMEA4_DSM_CNTLB__MAM_D0MEM_ENABLE_SINGLE_WRITE_MASK 0x00000004L
+#define MMEA4_DSM_CNTLB__MAM_D1MEM_DSM_IRRITATOR_DATA_MASK 0x00000018L
+#define MMEA4_DSM_CNTLB__MAM_D1MEM_ENABLE_SINGLE_WRITE_MASK 0x00000020L
+#define MMEA4_DSM_CNTLB__MAM_D2MEM_DSM_IRRITATOR_DATA_MASK 0x000000C0L
+#define MMEA4_DSM_CNTLB__MAM_D2MEM_ENABLE_SINGLE_WRITE_MASK 0x00000100L
+#define MMEA4_DSM_CNTLB__MAM_D3MEM_DSM_IRRITATOR_DATA_MASK 0x00000600L
+#define MMEA4_DSM_CNTLB__MAM_D3MEM_ENABLE_SINGLE_WRITE_MASK 0x00000800L
+//MMEA4_DSM_CNTL2
+#define MMEA4_DSM_CNTL2__DRAMRD_CMDMEM_ENABLE_ERROR_INJECT__SHIFT 0x0
+#define MMEA4_DSM_CNTL2__DRAMRD_CMDMEM_SELECT_INJECT_DELAY__SHIFT 0x2
+#define MMEA4_DSM_CNTL2__DRAMWR_CMDMEM_ENABLE_ERROR_INJECT__SHIFT 0x3
+#define MMEA4_DSM_CNTL2__DRAMWR_CMDMEM_SELECT_INJECT_DELAY__SHIFT 0x5
+#define MMEA4_DSM_CNTL2__DRAMWR_DATAMEM_ENABLE_ERROR_INJECT__SHIFT 0x6
+#define MMEA4_DSM_CNTL2__DRAMWR_DATAMEM_SELECT_INJECT_DELAY__SHIFT 0x8
+#define MMEA4_DSM_CNTL2__RRET_TAGMEM_ENABLE_ERROR_INJECT__SHIFT 0x9
+#define MMEA4_DSM_CNTL2__RRET_TAGMEM_SELECT_INJECT_DELAY__SHIFT 0xb
+#define MMEA4_DSM_CNTL2__WRET_TAGMEM_ENABLE_ERROR_INJECT__SHIFT 0xc
+#define MMEA4_DSM_CNTL2__WRET_TAGMEM_SELECT_INJECT_DELAY__SHIFT 0xe
+#define MMEA4_DSM_CNTL2__GMIRD_CMDMEM_ENABLE_ERROR_INJECT__SHIFT 0xf
+#define MMEA4_DSM_CNTL2__GMIRD_CMDMEM_SELECT_INJECT_DELAY__SHIFT 0x11
+#define MMEA4_DSM_CNTL2__GMIWR_CMDMEM_ENABLE_ERROR_INJECT__SHIFT 0x12
+#define MMEA4_DSM_CNTL2__GMIWR_CMDMEM_SELECT_INJECT_DELAY__SHIFT 0x14
+#define MMEA4_DSM_CNTL2__GMIWR_DATAMEM_ENABLE_ERROR_INJECT__SHIFT 0x15
+#define MMEA4_DSM_CNTL2__GMIWR_DATAMEM_SELECT_INJECT_DELAY__SHIFT 0x17
+#define MMEA4_DSM_CNTL2__INJECT_DELAY__SHIFT 0x1a
+#define MMEA4_DSM_CNTL2__DRAMRD_CMDMEM_ENABLE_ERROR_INJECT_MASK 0x00000003L
+#define MMEA4_DSM_CNTL2__DRAMRD_CMDMEM_SELECT_INJECT_DELAY_MASK 0x00000004L
+#define MMEA4_DSM_CNTL2__DRAMWR_CMDMEM_ENABLE_ERROR_INJECT_MASK 0x00000018L
+#define MMEA4_DSM_CNTL2__DRAMWR_CMDMEM_SELECT_INJECT_DELAY_MASK 0x00000020L
+#define MMEA4_DSM_CNTL2__DRAMWR_DATAMEM_ENABLE_ERROR_INJECT_MASK 0x000000C0L
+#define MMEA4_DSM_CNTL2__DRAMWR_DATAMEM_SELECT_INJECT_DELAY_MASK 0x00000100L
+#define MMEA4_DSM_CNTL2__RRET_TAGMEM_ENABLE_ERROR_INJECT_MASK 0x00000600L
+#define MMEA4_DSM_CNTL2__RRET_TAGMEM_SELECT_INJECT_DELAY_MASK 0x00000800L
+#define MMEA4_DSM_CNTL2__WRET_TAGMEM_ENABLE_ERROR_INJECT_MASK 0x00003000L
+#define MMEA4_DSM_CNTL2__WRET_TAGMEM_SELECT_INJECT_DELAY_MASK 0x00004000L
+#define MMEA4_DSM_CNTL2__GMIRD_CMDMEM_ENABLE_ERROR_INJECT_MASK 0x00018000L
+#define MMEA4_DSM_CNTL2__GMIRD_CMDMEM_SELECT_INJECT_DELAY_MASK 0x00020000L
+#define MMEA4_DSM_CNTL2__GMIWR_CMDMEM_ENABLE_ERROR_INJECT_MASK 0x000C0000L
+#define MMEA4_DSM_CNTL2__GMIWR_CMDMEM_SELECT_INJECT_DELAY_MASK 0x00100000L
+#define MMEA4_DSM_CNTL2__GMIWR_DATAMEM_ENABLE_ERROR_INJECT_MASK 0x00600000L
+#define MMEA4_DSM_CNTL2__GMIWR_DATAMEM_SELECT_INJECT_DELAY_MASK 0x00800000L
+#define MMEA4_DSM_CNTL2__INJECT_DELAY_MASK 0xFC000000L
+//MMEA4_DSM_CNTL2A
+#define MMEA4_DSM_CNTL2A__DRAMRD_PAGEMEM_ENABLE_ERROR_INJECT__SHIFT 0x0
+#define MMEA4_DSM_CNTL2A__DRAMRD_PAGEMEM_SELECT_INJECT_DELAY__SHIFT 0x2
+#define MMEA4_DSM_CNTL2A__DRAMWR_PAGEMEM_ENABLE_ERROR_INJECT__SHIFT 0x3
+#define MMEA4_DSM_CNTL2A__DRAMWR_PAGEMEM_SELECT_INJECT_DELAY__SHIFT 0x5
+#define MMEA4_DSM_CNTL2A__IORD_CMDMEM_ENABLE_ERROR_INJECT__SHIFT 0x6
+#define MMEA4_DSM_CNTL2A__IORD_CMDMEM_SELECT_INJECT_DELAY__SHIFT 0x8
+#define MMEA4_DSM_CNTL2A__IOWR_CMDMEM_ENABLE_ERROR_INJECT__SHIFT 0x9
+#define MMEA4_DSM_CNTL2A__IOWR_CMDMEM_SELECT_INJECT_DELAY__SHIFT 0xb
+#define MMEA4_DSM_CNTL2A__IOWR_DATAMEM_ENABLE_ERROR_INJECT__SHIFT 0xc
+#define MMEA4_DSM_CNTL2A__IOWR_DATAMEM_SELECT_INJECT_DELAY__SHIFT 0xe
+#define MMEA4_DSM_CNTL2A__GMIRD_PAGEMEM_ENABLE_ERROR_INJECT__SHIFT 0xf
+#define MMEA4_DSM_CNTL2A__GMIRD_PAGEMEM_SELECT_INJECT_DELAY__SHIFT 0x11
+#define MMEA4_DSM_CNTL2A__GMIWR_PAGEMEM_ENABLE_ERROR_INJECT__SHIFT 0x12
+#define MMEA4_DSM_CNTL2A__GMIWR_PAGEMEM_SELECT_INJECT_DELAY__SHIFT 0x14
+#define MMEA4_DSM_CNTL2A__DRAMRD_PAGEMEM_ENABLE_ERROR_INJECT_MASK 0x00000003L
+#define MMEA4_DSM_CNTL2A__DRAMRD_PAGEMEM_SELECT_INJECT_DELAY_MASK 0x00000004L
+#define MMEA4_DSM_CNTL2A__DRAMWR_PAGEMEM_ENABLE_ERROR_INJECT_MASK 0x00000018L
+#define MMEA4_DSM_CNTL2A__DRAMWR_PAGEMEM_SELECT_INJECT_DELAY_MASK 0x00000020L
+#define MMEA4_DSM_CNTL2A__IORD_CMDMEM_ENABLE_ERROR_INJECT_MASK 0x000000C0L
+#define MMEA4_DSM_CNTL2A__IORD_CMDMEM_SELECT_INJECT_DELAY_MASK 0x00000100L
+#define MMEA4_DSM_CNTL2A__IOWR_CMDMEM_ENABLE_ERROR_INJECT_MASK 0x00000600L
+#define MMEA4_DSM_CNTL2A__IOWR_CMDMEM_SELECT_INJECT_DELAY_MASK 0x00000800L
+#define MMEA4_DSM_CNTL2A__IOWR_DATAMEM_ENABLE_ERROR_INJECT_MASK 0x00003000L
+#define MMEA4_DSM_CNTL2A__IOWR_DATAMEM_SELECT_INJECT_DELAY_MASK 0x00004000L
+#define MMEA4_DSM_CNTL2A__GMIRD_PAGEMEM_ENABLE_ERROR_INJECT_MASK 0x00018000L
+#define MMEA4_DSM_CNTL2A__GMIRD_PAGEMEM_SELECT_INJECT_DELAY_MASK 0x00020000L
+#define MMEA4_DSM_CNTL2A__GMIWR_PAGEMEM_ENABLE_ERROR_INJECT_MASK 0x000C0000L
+#define MMEA4_DSM_CNTL2A__GMIWR_PAGEMEM_SELECT_INJECT_DELAY_MASK 0x00100000L
+//MMEA4_DSM_CNTL2B
+#define MMEA4_DSM_CNTL2B__MAM_D0MEM_ENABLE_ERROR_INJECT__SHIFT 0x0
+#define MMEA4_DSM_CNTL2B__MAM_D0MEM_SELECT_INJECT_DELAY__SHIFT 0x2
+#define MMEA4_DSM_CNTL2B__MAM_D1MEM_ENABLE_ERROR_INJECT__SHIFT 0x3
+#define MMEA4_DSM_CNTL2B__MAM_D1MEM_SELECT_INJECT_DELAY__SHIFT 0x5
+#define MMEA4_DSM_CNTL2B__MAM_D2MEM_ENABLE_ERROR_INJECT__SHIFT 0x6
+#define MMEA4_DSM_CNTL2B__MAM_D2MEM_SELECT_INJECT_DELAY__SHIFT 0x8
+#define MMEA4_DSM_CNTL2B__MAM_D3MEM_ENABLE_ERROR_INJECT__SHIFT 0x9
+#define MMEA4_DSM_CNTL2B__MAM_D3MEM_SELECT_INJECT_DELAY__SHIFT 0xb
+#define MMEA4_DSM_CNTL2B__MAM_D0MEM_ENABLE_ERROR_INJECT_MASK 0x00000003L
+#define MMEA4_DSM_CNTL2B__MAM_D0MEM_SELECT_INJECT_DELAY_MASK 0x00000004L
+#define MMEA4_DSM_CNTL2B__MAM_D1MEM_ENABLE_ERROR_INJECT_MASK 0x00000018L
+#define MMEA4_DSM_CNTL2B__MAM_D1MEM_SELECT_INJECT_DELAY_MASK 0x00000020L
+#define MMEA4_DSM_CNTL2B__MAM_D2MEM_ENABLE_ERROR_INJECT_MASK 0x000000C0L
+#define MMEA4_DSM_CNTL2B__MAM_D2MEM_SELECT_INJECT_DELAY_MASK 0x00000100L
+#define MMEA4_DSM_CNTL2B__MAM_D3MEM_ENABLE_ERROR_INJECT_MASK 0x00000600L
+#define MMEA4_DSM_CNTL2B__MAM_D3MEM_SELECT_INJECT_DELAY_MASK 0x00000800L
+//MMEA4_CGTT_CLK_CTRL
+#define MMEA4_CGTT_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define MMEA4_CGTT_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define MMEA4_CGTT_CLK_CTRL__SPARE0__SHIFT 0xc
+#define MMEA4_CGTT_CLK_CTRL__SOFT_STALL_OVERRIDE_WRITE__SHIFT 0x14
+#define MMEA4_CGTT_CLK_CTRL__SOFT_STALL_OVERRIDE_READ__SHIFT 0x15
+#define MMEA4_CGTT_CLK_CTRL__SOFT_STALL_OVERRIDE_RETURN__SHIFT 0x16
+#define MMEA4_CGTT_CLK_CTRL__SPARE1__SHIFT 0x17
+#define MMEA4_CGTT_CLK_CTRL__LS_OVERRIDE__SHIFT 0x1b
+#define MMEA4_CGTT_CLK_CTRL__SOFT_OVERRIDE_WRITE__SHIFT 0x1c
+#define MMEA4_CGTT_CLK_CTRL__SOFT_OVERRIDE_READ__SHIFT 0x1d
+#define MMEA4_CGTT_CLK_CTRL__SOFT_OVERRIDE_RETURN__SHIFT 0x1e
+#define MMEA4_CGTT_CLK_CTRL__SOFT_OVERRIDE_REGISTER__SHIFT 0x1f
+#define MMEA4_CGTT_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define MMEA4_CGTT_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define MMEA4_CGTT_CLK_CTRL__SPARE0_MASK 0x000FF000L
+#define MMEA4_CGTT_CLK_CTRL__SOFT_STALL_OVERRIDE_WRITE_MASK 0x00100000L
+#define MMEA4_CGTT_CLK_CTRL__SOFT_STALL_OVERRIDE_READ_MASK 0x00200000L
+#define MMEA4_CGTT_CLK_CTRL__SOFT_STALL_OVERRIDE_RETURN_MASK 0x00400000L
+#define MMEA4_CGTT_CLK_CTRL__SPARE1_MASK 0x07800000L
+#define MMEA4_CGTT_CLK_CTRL__LS_OVERRIDE_MASK 0x08000000L
+#define MMEA4_CGTT_CLK_CTRL__SOFT_OVERRIDE_WRITE_MASK 0x10000000L
+#define MMEA4_CGTT_CLK_CTRL__SOFT_OVERRIDE_READ_MASK 0x20000000L
+#define MMEA4_CGTT_CLK_CTRL__SOFT_OVERRIDE_RETURN_MASK 0x40000000L
+#define MMEA4_CGTT_CLK_CTRL__SOFT_OVERRIDE_REGISTER_MASK 0x80000000L
+//MMEA4_EDC_MODE
+#define MMEA4_EDC_MODE__COUNT_FED_OUT__SHIFT 0x10
+#define MMEA4_EDC_MODE__GATE_FUE__SHIFT 0x11
+#define MMEA4_EDC_MODE__DED_MODE__SHIFT 0x14
+#define MMEA4_EDC_MODE__PROP_FED__SHIFT 0x1d
+#define MMEA4_EDC_MODE__BYPASS__SHIFT 0x1f
+#define MMEA4_EDC_MODE__COUNT_FED_OUT_MASK 0x00010000L
+#define MMEA4_EDC_MODE__GATE_FUE_MASK 0x00020000L
+#define MMEA4_EDC_MODE__DED_MODE_MASK 0x00300000L
+#define MMEA4_EDC_MODE__PROP_FED_MASK 0x20000000L
+#define MMEA4_EDC_MODE__BYPASS_MASK 0x80000000L
+//MMEA4_ERR_STATUS
+#define MMEA4_ERR_STATUS__SDP_RDRSP_STATUS__SHIFT 0x0
+#define MMEA4_ERR_STATUS__SDP_WRRSP_STATUS__SHIFT 0x4
+#define MMEA4_ERR_STATUS__SDP_RDRSP_DATASTATUS__SHIFT 0x8
+#define MMEA4_ERR_STATUS__SDP_RDRSP_DATAPARITY_ERROR__SHIFT 0xa
+#define MMEA4_ERR_STATUS__CLEAR_ERROR_STATUS__SHIFT 0xb
+#define MMEA4_ERR_STATUS__BUSY_ON_ERROR__SHIFT 0xc
+#define MMEA4_ERR_STATUS__FUE_FLAG__SHIFT 0xd
+#define MMEA4_ERR_STATUS__IGNORE_RDRSP_FED__SHIFT 0xe
+#define MMEA4_ERR_STATUS__INTERRUPT_ON_FATAL__SHIFT 0xf
+#define MMEA4_ERR_STATUS__INTERRUPT_IGNORE_CLI_FATAL__SHIFT 0x10
+#define MMEA4_ERR_STATUS__LEVEL_INTERRUPT__SHIFT 0x11
+#define MMEA4_ERR_STATUS__BUSY_ON_CMPL_FATAL_ERROR__SHIFT 0x12
+#define MMEA4_ERR_STATUS__FUE_FLAG_CLIENT__SHIFT 0x13
+#define MMEA4_ERR_STATUS__SDP_RDRSP_STATUS_MASK 0x0000000FL
+#define MMEA4_ERR_STATUS__SDP_WRRSP_STATUS_MASK 0x000000F0L
+#define MMEA4_ERR_STATUS__SDP_RDRSP_DATASTATUS_MASK 0x00000300L
+#define MMEA4_ERR_STATUS__SDP_RDRSP_DATAPARITY_ERROR_MASK 0x00000400L
+#define MMEA4_ERR_STATUS__CLEAR_ERROR_STATUS_MASK 0x00000800L
+#define MMEA4_ERR_STATUS__BUSY_ON_ERROR_MASK 0x00001000L
+#define MMEA4_ERR_STATUS__FUE_FLAG_MASK 0x00002000L
+#define MMEA4_ERR_STATUS__IGNORE_RDRSP_FED_MASK 0x00004000L
+#define MMEA4_ERR_STATUS__INTERRUPT_ON_FATAL_MASK 0x00008000L
+#define MMEA4_ERR_STATUS__INTERRUPT_IGNORE_CLI_FATAL_MASK 0x00010000L
+#define MMEA4_ERR_STATUS__LEVEL_INTERRUPT_MASK 0x00020000L
+#define MMEA4_ERR_STATUS__BUSY_ON_CMPL_FATAL_ERROR_MASK 0x00040000L
+#define MMEA4_ERR_STATUS__FUE_FLAG_CLIENT_MASK 0x00080000L
+//MMEA4_MISC2
+#define MMEA4_MISC2__CSGROUP_SWAP_IN_DRAM_ARB__SHIFT 0x0
+#define MMEA4_MISC2__CSGROUP_SWAP_IN_GMI_ARB__SHIFT 0x1
+#define MMEA4_MISC2__CSGRP_BURST_LIMIT_DATA_DRAM__SHIFT 0x2
+#define MMEA4_MISC2__CSGRP_BURST_LIMIT_DATA_GMI__SHIFT 0x7
+#define MMEA4_MISC2__IO_RDWR_PRIORITY_ENABLE__SHIFT 0xc
+#define MMEA4_MISC2__RRET_SWAP_MODE__SHIFT 0xd
+#define MMEA4_MISC2__BLOCK_REQUESTS__SHIFT 0xe
+#define MMEA4_MISC2__REQUESTS_BLOCKED__SHIFT 0xf
+#define MMEA4_MISC2__DRAM_RD_THROTTLE__SHIFT 0x10
+#define MMEA4_MISC2__DRAM_WR_THROTTLE__SHIFT 0x11
+#define MMEA4_MISC2__GMI_RD_THROTTLE__SHIFT 0x12
+#define MMEA4_MISC2__GMI_WR_THROTTLE__SHIFT 0x13
+#define MMEA4_MISC2__CSGROUP_SWAP_IN_DRAM_ARB_MASK 0x00000001L
+#define MMEA4_MISC2__CSGROUP_SWAP_IN_GMI_ARB_MASK 0x00000002L
+#define MMEA4_MISC2__CSGRP_BURST_LIMIT_DATA_DRAM_MASK 0x0000007CL
+#define MMEA4_MISC2__CSGRP_BURST_LIMIT_DATA_GMI_MASK 0x00000F80L
+#define MMEA4_MISC2__IO_RDWR_PRIORITY_ENABLE_MASK 0x00001000L
+#define MMEA4_MISC2__RRET_SWAP_MODE_MASK 0x00002000L
+#define MMEA4_MISC2__BLOCK_REQUESTS_MASK 0x00004000L
+#define MMEA4_MISC2__REQUESTS_BLOCKED_MASK 0x00008000L
+#define MMEA4_MISC2__DRAM_RD_THROTTLE_MASK 0x00010000L
+#define MMEA4_MISC2__DRAM_WR_THROTTLE_MASK 0x00020000L
+#define MMEA4_MISC2__GMI_RD_THROTTLE_MASK 0x00040000L
+#define MMEA4_MISC2__GMI_WR_THROTTLE_MASK 0x00080000L
+//MMEA4_MISC_AON
+#define MMEA4_MISC_AON__LINKMGR_PARTACK_HYSTERESIS__SHIFT 0x0
+#define MMEA4_MISC_AON__LINKMGR_PARTACK_DEASSERT_MODE__SHIFT 0x2
+#define MMEA4_MISC_AON__LINKMGR_PARTACK_HYSTERESIS_MASK 0x00000003L
+#define MMEA4_MISC_AON__LINKMGR_PARTACK_DEASSERT_MODE_MASK 0x00000004L
+
+
+// addressBlock: aid_mmhub_pctldec0
+//PCTL0_CTRL
+#define PCTL0_CTRL__PG_ENABLE__SHIFT 0x0
+#define PCTL0_CTRL__ALLOW_DEEP_SLEEP_MODE__SHIFT 0x1
+#define PCTL0_CTRL__STCTRL_RSMU_IDLE_THRESHOLD__SHIFT 0x4
+#define PCTL0_CTRL__STCTRL_DAGB_IDLE_THRESHOLD__SHIFT 0xb
+#define PCTL0_CTRL__STCTRL_IGNORE_PROTECTION_FAULT__SHIFT 0x10
+#define PCTL0_CTRL__OVR_EA0_SDP_PARTACK__SHIFT 0x11
+#define PCTL0_CTRL__OVR_EA1_SDP_PARTACK__SHIFT 0x12
+#define PCTL0_CTRL__OVR_EA2_SDP_PARTACK__SHIFT 0x13
+#define PCTL0_CTRL__OVR_EA3_SDP_PARTACK__SHIFT 0x14
+#define PCTL0_CTRL__OVR_EA4_SDP_PARTACK__SHIFT 0x15
+#define PCTL0_CTRL__OVR_EA5_SDP_PARTACK__SHIFT 0x16
+#define PCTL0_CTRL__OVR_EA0_SDP_FULLACK__SHIFT 0x17
+#define PCTL0_CTRL__OVR_EA1_SDP_FULLACK__SHIFT 0x18
+#define PCTL0_CTRL__OVR_EA2_SDP_FULLACK__SHIFT 0x19
+#define PCTL0_CTRL__OVR_EA3_SDP_FULLACK__SHIFT 0x1a
+#define PCTL0_CTRL__OVR_EA4_SDP_FULLACK__SHIFT 0x1b
+#define PCTL0_CTRL__OVR_EA5_SDP_FULLACK__SHIFT 0x1c
+#define PCTL0_CTRL__RSMU_RDTIMER_ENABLE__SHIFT 0x1d
+#define PCTL0_CTRL__RSMU_RDTIMER_THRESHOLD__SHIFT 0x1e
+#define PCTL0_CTRL__PG_ENABLE_MASK 0x00000001L
+#define PCTL0_CTRL__ALLOW_DEEP_SLEEP_MODE_MASK 0x0000000EL
+#define PCTL0_CTRL__STCTRL_RSMU_IDLE_THRESHOLD_MASK 0x000007F0L
+#define PCTL0_CTRL__STCTRL_DAGB_IDLE_THRESHOLD_MASK 0x0000F800L
+#define PCTL0_CTRL__STCTRL_IGNORE_PROTECTION_FAULT_MASK 0x00010000L
+#define PCTL0_CTRL__OVR_EA0_SDP_PARTACK_MASK 0x00020000L
+#define PCTL0_CTRL__OVR_EA1_SDP_PARTACK_MASK 0x00040000L
+#define PCTL0_CTRL__OVR_EA2_SDP_PARTACK_MASK 0x00080000L
+#define PCTL0_CTRL__OVR_EA3_SDP_PARTACK_MASK 0x00100000L
+#define PCTL0_CTRL__OVR_EA4_SDP_PARTACK_MASK 0x00200000L
+#define PCTL0_CTRL__OVR_EA5_SDP_PARTACK_MASK 0x00400000L
+#define PCTL0_CTRL__OVR_EA0_SDP_FULLACK_MASK 0x00800000L
+#define PCTL0_CTRL__OVR_EA1_SDP_FULLACK_MASK 0x01000000L
+#define PCTL0_CTRL__OVR_EA2_SDP_FULLACK_MASK 0x02000000L
+#define PCTL0_CTRL__OVR_EA3_SDP_FULLACK_MASK 0x04000000L
+#define PCTL0_CTRL__OVR_EA4_SDP_FULLACK_MASK 0x08000000L
+#define PCTL0_CTRL__OVR_EA5_SDP_FULLACK_MASK 0x10000000L
+#define PCTL0_CTRL__RSMU_RDTIMER_ENABLE_MASK 0x20000000L
+#define PCTL0_CTRL__RSMU_RDTIMER_THRESHOLD_MASK 0xC0000000L
+//PCTL0_MMHUB_DEEPSLEEP_IB
+#define PCTL0_MMHUB_DEEPSLEEP_IB__DS0__SHIFT 0x0
+#define PCTL0_MMHUB_DEEPSLEEP_IB__DS1__SHIFT 0x1
+#define PCTL0_MMHUB_DEEPSLEEP_IB__DS2__SHIFT 0x2
+#define PCTL0_MMHUB_DEEPSLEEP_IB__DS3__SHIFT 0x3
+#define PCTL0_MMHUB_DEEPSLEEP_IB__DS4__SHIFT 0x4
+#define PCTL0_MMHUB_DEEPSLEEP_IB__DS5__SHIFT 0x5
+#define PCTL0_MMHUB_DEEPSLEEP_IB__DS6__SHIFT 0x6
+#define PCTL0_MMHUB_DEEPSLEEP_IB__DS7__SHIFT 0x7
+#define PCTL0_MMHUB_DEEPSLEEP_IB__DS8__SHIFT 0x8
+#define PCTL0_MMHUB_DEEPSLEEP_IB__DS9__SHIFT 0x9
+#define PCTL0_MMHUB_DEEPSLEEP_IB__DS10__SHIFT 0xa
+#define PCTL0_MMHUB_DEEPSLEEP_IB__DS11__SHIFT 0xb
+#define PCTL0_MMHUB_DEEPSLEEP_IB__DS12__SHIFT 0xc
+#define PCTL0_MMHUB_DEEPSLEEP_IB__DS13__SHIFT 0xd
+#define PCTL0_MMHUB_DEEPSLEEP_IB__DS14__SHIFT 0xe
+#define PCTL0_MMHUB_DEEPSLEEP_IB__DS15__SHIFT 0xf
+#define PCTL0_MMHUB_DEEPSLEEP_IB__DS16__SHIFT 0x10
+#define PCTL0_MMHUB_DEEPSLEEP_IB__SETCLEAR__SHIFT 0x1f
+#define PCTL0_MMHUB_DEEPSLEEP_IB__DS0_MASK 0x00000001L
+#define PCTL0_MMHUB_DEEPSLEEP_IB__DS1_MASK 0x00000002L
+#define PCTL0_MMHUB_DEEPSLEEP_IB__DS2_MASK 0x00000004L
+#define PCTL0_MMHUB_DEEPSLEEP_IB__DS3_MASK 0x00000008L
+#define PCTL0_MMHUB_DEEPSLEEP_IB__DS4_MASK 0x00000010L
+#define PCTL0_MMHUB_DEEPSLEEP_IB__DS5_MASK 0x00000020L
+#define PCTL0_MMHUB_DEEPSLEEP_IB__DS6_MASK 0x00000040L
+#define PCTL0_MMHUB_DEEPSLEEP_IB__DS7_MASK 0x00000080L
+#define PCTL0_MMHUB_DEEPSLEEP_IB__DS8_MASK 0x00000100L
+#define PCTL0_MMHUB_DEEPSLEEP_IB__DS9_MASK 0x00000200L
+#define PCTL0_MMHUB_DEEPSLEEP_IB__DS10_MASK 0x00000400L
+#define PCTL0_MMHUB_DEEPSLEEP_IB__DS11_MASK 0x00000800L
+#define PCTL0_MMHUB_DEEPSLEEP_IB__DS12_MASK 0x00001000L
+#define PCTL0_MMHUB_DEEPSLEEP_IB__DS13_MASK 0x00002000L
+#define PCTL0_MMHUB_DEEPSLEEP_IB__DS14_MASK 0x00004000L
+#define PCTL0_MMHUB_DEEPSLEEP_IB__DS15_MASK 0x00008000L
+#define PCTL0_MMHUB_DEEPSLEEP_IB__DS16_MASK 0x00010000L
+#define PCTL0_MMHUB_DEEPSLEEP_IB__SETCLEAR_MASK 0x80000000L
+//PCTL0_MMHUB_DEEPSLEEP_OVERRIDE
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE__DS0__SHIFT 0x0
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE__DS1__SHIFT 0x1
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE__DS2__SHIFT 0x2
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE__DS3__SHIFT 0x3
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE__DS4__SHIFT 0x4
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE__DS5__SHIFT 0x5
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE__DS6__SHIFT 0x6
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE__DS7__SHIFT 0x7
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE__DS8__SHIFT 0x8
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE__DS9__SHIFT 0x9
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE__DS10__SHIFT 0xa
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE__DS11__SHIFT 0xb
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE__DS12__SHIFT 0xc
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE__DS13__SHIFT 0xd
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE__DS14__SHIFT 0xe
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE__DS15__SHIFT 0xf
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE__DS16__SHIFT 0x10
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE__DS_ATHUB__SHIFT 0x11
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE__DS_CANE__SHIFT 0x12
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE__DS0_MASK 0x00000001L
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE__DS1_MASK 0x00000002L
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE__DS2_MASK 0x00000004L
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE__DS3_MASK 0x00000008L
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE__DS4_MASK 0x00000010L
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE__DS5_MASK 0x00000020L
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE__DS6_MASK 0x00000040L
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE__DS7_MASK 0x00000080L
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE__DS8_MASK 0x00000100L
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE__DS9_MASK 0x00000200L
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE__DS10_MASK 0x00000400L
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE__DS11_MASK 0x00000800L
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE__DS12_MASK 0x00001000L
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE__DS13_MASK 0x00002000L
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE__DS14_MASK 0x00004000L
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE__DS15_MASK 0x00008000L
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE__DS16_MASK 0x00010000L
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE__DS_ATHUB_MASK 0x00020000L
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE__DS_CANE_MASK 0x00040000L
+//PCTL0_MMHUB_DEEPSLEEP_OVERRIDE_IB
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE_IB__DS0__SHIFT 0x0
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE_IB__DS1__SHIFT 0x1
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE_IB__DS2__SHIFT 0x2
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE_IB__DS3__SHIFT 0x3
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE_IB__DS4__SHIFT 0x4
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE_IB__DS5__SHIFT 0x5
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE_IB__DS6__SHIFT 0x6
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE_IB__DS7__SHIFT 0x7
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE_IB__DS8__SHIFT 0x8
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE_IB__DS9__SHIFT 0x9
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE_IB__DS10__SHIFT 0xa
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE_IB__DS11__SHIFT 0xb
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE_IB__DS12__SHIFT 0xc
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE_IB__DS13__SHIFT 0xd
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE_IB__DS14__SHIFT 0xe
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE_IB__DS15__SHIFT 0xf
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE_IB__DS16__SHIFT 0x10
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE_IB__DS0_MASK 0x00000001L
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE_IB__DS1_MASK 0x00000002L
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE_IB__DS2_MASK 0x00000004L
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE_IB__DS3_MASK 0x00000008L
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE_IB__DS4_MASK 0x00000010L
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE_IB__DS5_MASK 0x00000020L
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE_IB__DS6_MASK 0x00000040L
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE_IB__DS7_MASK 0x00000080L
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE_IB__DS8_MASK 0x00000100L
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE_IB__DS9_MASK 0x00000200L
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE_IB__DS10_MASK 0x00000400L
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE_IB__DS11_MASK 0x00000800L
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE_IB__DS12_MASK 0x00001000L
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE_IB__DS13_MASK 0x00002000L
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE_IB__DS14_MASK 0x00004000L
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE_IB__DS15_MASK 0x00008000L
+#define PCTL0_MMHUB_DEEPSLEEP_OVERRIDE_IB__DS16_MASK 0x00010000L
+//PCTL0_PG_IGNORE_DEEPSLEEP
+#define PCTL0_PG_IGNORE_DEEPSLEEP__DS0__SHIFT 0x0
+#define PCTL0_PG_IGNORE_DEEPSLEEP__DS1__SHIFT 0x1
+#define PCTL0_PG_IGNORE_DEEPSLEEP__DS2__SHIFT 0x2
+#define PCTL0_PG_IGNORE_DEEPSLEEP__DS3__SHIFT 0x3
+#define PCTL0_PG_IGNORE_DEEPSLEEP__DS4__SHIFT 0x4
+#define PCTL0_PG_IGNORE_DEEPSLEEP__DS5__SHIFT 0x5
+#define PCTL0_PG_IGNORE_DEEPSLEEP__DS6__SHIFT 0x6
+#define PCTL0_PG_IGNORE_DEEPSLEEP__DS7__SHIFT 0x7
+#define PCTL0_PG_IGNORE_DEEPSLEEP__DS8__SHIFT 0x8
+#define PCTL0_PG_IGNORE_DEEPSLEEP__DS9__SHIFT 0x9
+#define PCTL0_PG_IGNORE_DEEPSLEEP__DS10__SHIFT 0xa
+#define PCTL0_PG_IGNORE_DEEPSLEEP__DS11__SHIFT 0xb
+#define PCTL0_PG_IGNORE_DEEPSLEEP__DS12__SHIFT 0xc
+#define PCTL0_PG_IGNORE_DEEPSLEEP__DS13__SHIFT 0xd
+#define PCTL0_PG_IGNORE_DEEPSLEEP__DS14__SHIFT 0xe
+#define PCTL0_PG_IGNORE_DEEPSLEEP__DS15__SHIFT 0xf
+#define PCTL0_PG_IGNORE_DEEPSLEEP__DS16__SHIFT 0x10
+#define PCTL0_PG_IGNORE_DEEPSLEEP__DS_ATHUB__SHIFT 0x11
+#define PCTL0_PG_IGNORE_DEEPSLEEP__ALLIPS__SHIFT 0x12
+#define PCTL0_PG_IGNORE_DEEPSLEEP__DS0_MASK 0x00000001L
+#define PCTL0_PG_IGNORE_DEEPSLEEP__DS1_MASK 0x00000002L
+#define PCTL0_PG_IGNORE_DEEPSLEEP__DS2_MASK 0x00000004L
+#define PCTL0_PG_IGNORE_DEEPSLEEP__DS3_MASK 0x00000008L
+#define PCTL0_PG_IGNORE_DEEPSLEEP__DS4_MASK 0x00000010L
+#define PCTL0_PG_IGNORE_DEEPSLEEP__DS5_MASK 0x00000020L
+#define PCTL0_PG_IGNORE_DEEPSLEEP__DS6_MASK 0x00000040L
+#define PCTL0_PG_IGNORE_DEEPSLEEP__DS7_MASK 0x00000080L
+#define PCTL0_PG_IGNORE_DEEPSLEEP__DS8_MASK 0x00000100L
+#define PCTL0_PG_IGNORE_DEEPSLEEP__DS9_MASK 0x00000200L
+#define PCTL0_PG_IGNORE_DEEPSLEEP__DS10_MASK 0x00000400L
+#define PCTL0_PG_IGNORE_DEEPSLEEP__DS11_MASK 0x00000800L
+#define PCTL0_PG_IGNORE_DEEPSLEEP__DS12_MASK 0x00001000L
+#define PCTL0_PG_IGNORE_DEEPSLEEP__DS13_MASK 0x00002000L
+#define PCTL0_PG_IGNORE_DEEPSLEEP__DS14_MASK 0x00004000L
+#define PCTL0_PG_IGNORE_DEEPSLEEP__DS15_MASK 0x00008000L
+#define PCTL0_PG_IGNORE_DEEPSLEEP__DS16_MASK 0x00010000L
+#define PCTL0_PG_IGNORE_DEEPSLEEP__DS_ATHUB_MASK 0x00020000L
+#define PCTL0_PG_IGNORE_DEEPSLEEP__ALLIPS_MASK 0x00040000L
+//PCTL0_PG_IGNORE_DEEPSLEEP_IB
+#define PCTL0_PG_IGNORE_DEEPSLEEP_IB__DS0__SHIFT 0x0
+#define PCTL0_PG_IGNORE_DEEPSLEEP_IB__DS1__SHIFT 0x1
+#define PCTL0_PG_IGNORE_DEEPSLEEP_IB__DS2__SHIFT 0x2
+#define PCTL0_PG_IGNORE_DEEPSLEEP_IB__DS3__SHIFT 0x3
+#define PCTL0_PG_IGNORE_DEEPSLEEP_IB__DS4__SHIFT 0x4
+#define PCTL0_PG_IGNORE_DEEPSLEEP_IB__DS5__SHIFT 0x5
+#define PCTL0_PG_IGNORE_DEEPSLEEP_IB__DS6__SHIFT 0x6
+#define PCTL0_PG_IGNORE_DEEPSLEEP_IB__DS7__SHIFT 0x7
+#define PCTL0_PG_IGNORE_DEEPSLEEP_IB__DS8__SHIFT 0x8
+#define PCTL0_PG_IGNORE_DEEPSLEEP_IB__DS9__SHIFT 0x9
+#define PCTL0_PG_IGNORE_DEEPSLEEP_IB__DS10__SHIFT 0xa
+#define PCTL0_PG_IGNORE_DEEPSLEEP_IB__DS11__SHIFT 0xb
+#define PCTL0_PG_IGNORE_DEEPSLEEP_IB__DS12__SHIFT 0xc
+#define PCTL0_PG_IGNORE_DEEPSLEEP_IB__DS13__SHIFT 0xd
+#define PCTL0_PG_IGNORE_DEEPSLEEP_IB__DS14__SHIFT 0xe
+#define PCTL0_PG_IGNORE_DEEPSLEEP_IB__DS15__SHIFT 0xf
+#define PCTL0_PG_IGNORE_DEEPSLEEP_IB__DS16__SHIFT 0x10
+#define PCTL0_PG_IGNORE_DEEPSLEEP_IB__ALLIPS__SHIFT 0x11
+#define PCTL0_PG_IGNORE_DEEPSLEEP_IB__DS0_MASK 0x00000001L
+#define PCTL0_PG_IGNORE_DEEPSLEEP_IB__DS1_MASK 0x00000002L
+#define PCTL0_PG_IGNORE_DEEPSLEEP_IB__DS2_MASK 0x00000004L
+#define PCTL0_PG_IGNORE_DEEPSLEEP_IB__DS3_MASK 0x00000008L
+#define PCTL0_PG_IGNORE_DEEPSLEEP_IB__DS4_MASK 0x00000010L
+#define PCTL0_PG_IGNORE_DEEPSLEEP_IB__DS5_MASK 0x00000020L
+#define PCTL0_PG_IGNORE_DEEPSLEEP_IB__DS6_MASK 0x00000040L
+#define PCTL0_PG_IGNORE_DEEPSLEEP_IB__DS7_MASK 0x00000080L
+#define PCTL0_PG_IGNORE_DEEPSLEEP_IB__DS8_MASK 0x00000100L
+#define PCTL0_PG_IGNORE_DEEPSLEEP_IB__DS9_MASK 0x00000200L
+#define PCTL0_PG_IGNORE_DEEPSLEEP_IB__DS10_MASK 0x00000400L
+#define PCTL0_PG_IGNORE_DEEPSLEEP_IB__DS11_MASK 0x00000800L
+#define PCTL0_PG_IGNORE_DEEPSLEEP_IB__DS12_MASK 0x00001000L
+#define PCTL0_PG_IGNORE_DEEPSLEEP_IB__DS13_MASK 0x00002000L
+#define PCTL0_PG_IGNORE_DEEPSLEEP_IB__DS14_MASK 0x00004000L
+#define PCTL0_PG_IGNORE_DEEPSLEEP_IB__DS15_MASK 0x00008000L
+#define PCTL0_PG_IGNORE_DEEPSLEEP_IB__DS16_MASK 0x00010000L
+#define PCTL0_PG_IGNORE_DEEPSLEEP_IB__ALLIPS_MASK 0x00020000L
+//PCTL0_SLICE0_CFG_DAGB_BUSY
+#define PCTL0_SLICE0_CFG_DAGB_BUSY__DB_LNCFG__SHIFT 0x0
+#define PCTL0_SLICE0_CFG_DAGB_BUSY__DB_LNCFG_MASK 0xFFFFFFFFL
+//PCTL0_SLICE0_CFG_DS_ALLOW
+#define PCTL0_SLICE0_CFG_DS_ALLOW__DS0__SHIFT 0x0
+#define PCTL0_SLICE0_CFG_DS_ALLOW__DS1__SHIFT 0x1
+#define PCTL0_SLICE0_CFG_DS_ALLOW__DS2__SHIFT 0x2
+#define PCTL0_SLICE0_CFG_DS_ALLOW__DS3__SHIFT 0x3
+#define PCTL0_SLICE0_CFG_DS_ALLOW__DS4__SHIFT 0x4
+#define PCTL0_SLICE0_CFG_DS_ALLOW__DS5__SHIFT 0x5
+#define PCTL0_SLICE0_CFG_DS_ALLOW__DS6__SHIFT 0x6
+#define PCTL0_SLICE0_CFG_DS_ALLOW__DS7__SHIFT 0x7
+#define PCTL0_SLICE0_CFG_DS_ALLOW__DS8__SHIFT 0x8
+#define PCTL0_SLICE0_CFG_DS_ALLOW__DS9__SHIFT 0x9
+#define PCTL0_SLICE0_CFG_DS_ALLOW__DS10__SHIFT 0xa
+#define PCTL0_SLICE0_CFG_DS_ALLOW__DS11__SHIFT 0xb
+#define PCTL0_SLICE0_CFG_DS_ALLOW__DS12__SHIFT 0xc
+#define PCTL0_SLICE0_CFG_DS_ALLOW__DS13__SHIFT 0xd
+#define PCTL0_SLICE0_CFG_DS_ALLOW__DS14__SHIFT 0xe
+#define PCTL0_SLICE0_CFG_DS_ALLOW__DS15__SHIFT 0xf
+#define PCTL0_SLICE0_CFG_DS_ALLOW__DS16__SHIFT 0x10
+#define PCTL0_SLICE0_CFG_DS_ALLOW__DS0_MASK 0x00000001L
+#define PCTL0_SLICE0_CFG_DS_ALLOW__DS1_MASK 0x00000002L
+#define PCTL0_SLICE0_CFG_DS_ALLOW__DS2_MASK 0x00000004L
+#define PCTL0_SLICE0_CFG_DS_ALLOW__DS3_MASK 0x00000008L
+#define PCTL0_SLICE0_CFG_DS_ALLOW__DS4_MASK 0x00000010L
+#define PCTL0_SLICE0_CFG_DS_ALLOW__DS5_MASK 0x00000020L
+#define PCTL0_SLICE0_CFG_DS_ALLOW__DS6_MASK 0x00000040L
+#define PCTL0_SLICE0_CFG_DS_ALLOW__DS7_MASK 0x00000080L
+#define PCTL0_SLICE0_CFG_DS_ALLOW__DS8_MASK 0x00000100L
+#define PCTL0_SLICE0_CFG_DS_ALLOW__DS9_MASK 0x00000200L
+#define PCTL0_SLICE0_CFG_DS_ALLOW__DS10_MASK 0x00000400L
+#define PCTL0_SLICE0_CFG_DS_ALLOW__DS11_MASK 0x00000800L
+#define PCTL0_SLICE0_CFG_DS_ALLOW__DS12_MASK 0x00001000L
+#define PCTL0_SLICE0_CFG_DS_ALLOW__DS13_MASK 0x00002000L
+#define PCTL0_SLICE0_CFG_DS_ALLOW__DS14_MASK 0x00004000L
+#define PCTL0_SLICE0_CFG_DS_ALLOW__DS15_MASK 0x00008000L
+#define PCTL0_SLICE0_CFG_DS_ALLOW__DS16_MASK 0x00010000L
+//PCTL0_SLICE0_CFG_DS_ALLOW_IB
+#define PCTL0_SLICE0_CFG_DS_ALLOW_IB__DS0__SHIFT 0x0
+#define PCTL0_SLICE0_CFG_DS_ALLOW_IB__DS1__SHIFT 0x1
+#define PCTL0_SLICE0_CFG_DS_ALLOW_IB__DS2__SHIFT 0x2
+#define PCTL0_SLICE0_CFG_DS_ALLOW_IB__DS3__SHIFT 0x3
+#define PCTL0_SLICE0_CFG_DS_ALLOW_IB__DS4__SHIFT 0x4
+#define PCTL0_SLICE0_CFG_DS_ALLOW_IB__DS5__SHIFT 0x5
+#define PCTL0_SLICE0_CFG_DS_ALLOW_IB__DS6__SHIFT 0x6
+#define PCTL0_SLICE0_CFG_DS_ALLOW_IB__DS7__SHIFT 0x7
+#define PCTL0_SLICE0_CFG_DS_ALLOW_IB__DS8__SHIFT 0x8
+#define PCTL0_SLICE0_CFG_DS_ALLOW_IB__DS9__SHIFT 0x9
+#define PCTL0_SLICE0_CFG_DS_ALLOW_IB__DS10__SHIFT 0xa
+#define PCTL0_SLICE0_CFG_DS_ALLOW_IB__DS11__SHIFT 0xb
+#define PCTL0_SLICE0_CFG_DS_ALLOW_IB__DS12__SHIFT 0xc
+#define PCTL0_SLICE0_CFG_DS_ALLOW_IB__DS13__SHIFT 0xd
+#define PCTL0_SLICE0_CFG_DS_ALLOW_IB__DS14__SHIFT 0xe
+#define PCTL0_SLICE0_CFG_DS_ALLOW_IB__DS15__SHIFT 0xf
+#define PCTL0_SLICE0_CFG_DS_ALLOW_IB__DS16__SHIFT 0x10
+#define PCTL0_SLICE0_CFG_DS_ALLOW_IB__DS0_MASK 0x00000001L
+#define PCTL0_SLICE0_CFG_DS_ALLOW_IB__DS1_MASK 0x00000002L
+#define PCTL0_SLICE0_CFG_DS_ALLOW_IB__DS2_MASK 0x00000004L
+#define PCTL0_SLICE0_CFG_DS_ALLOW_IB__DS3_MASK 0x00000008L
+#define PCTL0_SLICE0_CFG_DS_ALLOW_IB__DS4_MASK 0x00000010L
+#define PCTL0_SLICE0_CFG_DS_ALLOW_IB__DS5_MASK 0x00000020L
+#define PCTL0_SLICE0_CFG_DS_ALLOW_IB__DS6_MASK 0x00000040L
+#define PCTL0_SLICE0_CFG_DS_ALLOW_IB__DS7_MASK 0x00000080L
+#define PCTL0_SLICE0_CFG_DS_ALLOW_IB__DS8_MASK 0x00000100L
+#define PCTL0_SLICE0_CFG_DS_ALLOW_IB__DS9_MASK 0x00000200L
+#define PCTL0_SLICE0_CFG_DS_ALLOW_IB__DS10_MASK 0x00000400L
+#define PCTL0_SLICE0_CFG_DS_ALLOW_IB__DS11_MASK 0x00000800L
+#define PCTL0_SLICE0_CFG_DS_ALLOW_IB__DS12_MASK 0x00001000L
+#define PCTL0_SLICE0_CFG_DS_ALLOW_IB__DS13_MASK 0x00002000L
+#define PCTL0_SLICE0_CFG_DS_ALLOW_IB__DS14_MASK 0x00004000L
+#define PCTL0_SLICE0_CFG_DS_ALLOW_IB__DS15_MASK 0x00008000L
+#define PCTL0_SLICE0_CFG_DS_ALLOW_IB__DS16_MASK 0x00010000L
+//PCTL0_SLICE1_CFG_DAGB_BUSY
+#define PCTL0_SLICE1_CFG_DAGB_BUSY__DB_LNCFG__SHIFT 0x0
+#define PCTL0_SLICE1_CFG_DAGB_BUSY__DB_LNCFG_MASK 0xFFFFFFFFL
+//PCTL0_SLICE1_CFG_DS_ALLOW
+#define PCTL0_SLICE1_CFG_DS_ALLOW__DS0__SHIFT 0x0
+#define PCTL0_SLICE1_CFG_DS_ALLOW__DS1__SHIFT 0x1
+#define PCTL0_SLICE1_CFG_DS_ALLOW__DS2__SHIFT 0x2
+#define PCTL0_SLICE1_CFG_DS_ALLOW__DS3__SHIFT 0x3
+#define PCTL0_SLICE1_CFG_DS_ALLOW__DS4__SHIFT 0x4
+#define PCTL0_SLICE1_CFG_DS_ALLOW__DS5__SHIFT 0x5
+#define PCTL0_SLICE1_CFG_DS_ALLOW__DS6__SHIFT 0x6
+#define PCTL0_SLICE1_CFG_DS_ALLOW__DS7__SHIFT 0x7
+#define PCTL0_SLICE1_CFG_DS_ALLOW__DS8__SHIFT 0x8
+#define PCTL0_SLICE1_CFG_DS_ALLOW__DS9__SHIFT 0x9
+#define PCTL0_SLICE1_CFG_DS_ALLOW__DS10__SHIFT 0xa
+#define PCTL0_SLICE1_CFG_DS_ALLOW__DS11__SHIFT 0xb
+#define PCTL0_SLICE1_CFG_DS_ALLOW__DS12__SHIFT 0xc
+#define PCTL0_SLICE1_CFG_DS_ALLOW__DS13__SHIFT 0xd
+#define PCTL0_SLICE1_CFG_DS_ALLOW__DS14__SHIFT 0xe
+#define PCTL0_SLICE1_CFG_DS_ALLOW__DS15__SHIFT 0xf
+#define PCTL0_SLICE1_CFG_DS_ALLOW__DS16__SHIFT 0x10
+#define PCTL0_SLICE1_CFG_DS_ALLOW__DS0_MASK 0x00000001L
+#define PCTL0_SLICE1_CFG_DS_ALLOW__DS1_MASK 0x00000002L
+#define PCTL0_SLICE1_CFG_DS_ALLOW__DS2_MASK 0x00000004L
+#define PCTL0_SLICE1_CFG_DS_ALLOW__DS3_MASK 0x00000008L
+#define PCTL0_SLICE1_CFG_DS_ALLOW__DS4_MASK 0x00000010L
+#define PCTL0_SLICE1_CFG_DS_ALLOW__DS5_MASK 0x00000020L
+#define PCTL0_SLICE1_CFG_DS_ALLOW__DS6_MASK 0x00000040L
+#define PCTL0_SLICE1_CFG_DS_ALLOW__DS7_MASK 0x00000080L
+#define PCTL0_SLICE1_CFG_DS_ALLOW__DS8_MASK 0x00000100L
+#define PCTL0_SLICE1_CFG_DS_ALLOW__DS9_MASK 0x00000200L
+#define PCTL0_SLICE1_CFG_DS_ALLOW__DS10_MASK 0x00000400L
+#define PCTL0_SLICE1_CFG_DS_ALLOW__DS11_MASK 0x00000800L
+#define PCTL0_SLICE1_CFG_DS_ALLOW__DS12_MASK 0x00001000L
+#define PCTL0_SLICE1_CFG_DS_ALLOW__DS13_MASK 0x00002000L
+#define PCTL0_SLICE1_CFG_DS_ALLOW__DS14_MASK 0x00004000L
+#define PCTL0_SLICE1_CFG_DS_ALLOW__DS15_MASK 0x00008000L
+#define PCTL0_SLICE1_CFG_DS_ALLOW__DS16_MASK 0x00010000L
+//PCTL0_SLICE1_CFG_DS_ALLOW_IB
+#define PCTL0_SLICE1_CFG_DS_ALLOW_IB__DS0__SHIFT 0x0
+#define PCTL0_SLICE1_CFG_DS_ALLOW_IB__DS1__SHIFT 0x1
+#define PCTL0_SLICE1_CFG_DS_ALLOW_IB__DS2__SHIFT 0x2
+#define PCTL0_SLICE1_CFG_DS_ALLOW_IB__DS3__SHIFT 0x3
+#define PCTL0_SLICE1_CFG_DS_ALLOW_IB__DS4__SHIFT 0x4
+#define PCTL0_SLICE1_CFG_DS_ALLOW_IB__DS5__SHIFT 0x5
+#define PCTL0_SLICE1_CFG_DS_ALLOW_IB__DS6__SHIFT 0x6
+#define PCTL0_SLICE1_CFG_DS_ALLOW_IB__DS7__SHIFT 0x7
+#define PCTL0_SLICE1_CFG_DS_ALLOW_IB__DS8__SHIFT 0x8
+#define PCTL0_SLICE1_CFG_DS_ALLOW_IB__DS9__SHIFT 0x9
+#define PCTL0_SLICE1_CFG_DS_ALLOW_IB__DS10__SHIFT 0xa
+#define PCTL0_SLICE1_CFG_DS_ALLOW_IB__DS11__SHIFT 0xb
+#define PCTL0_SLICE1_CFG_DS_ALLOW_IB__DS12__SHIFT 0xc
+#define PCTL0_SLICE1_CFG_DS_ALLOW_IB__DS13__SHIFT 0xd
+#define PCTL0_SLICE1_CFG_DS_ALLOW_IB__DS14__SHIFT 0xe
+#define PCTL0_SLICE1_CFG_DS_ALLOW_IB__DS15__SHIFT 0xf
+#define PCTL0_SLICE1_CFG_DS_ALLOW_IB__DS16__SHIFT 0x10
+#define PCTL0_SLICE1_CFG_DS_ALLOW_IB__DS0_MASK 0x00000001L
+#define PCTL0_SLICE1_CFG_DS_ALLOW_IB__DS1_MASK 0x00000002L
+#define PCTL0_SLICE1_CFG_DS_ALLOW_IB__DS2_MASK 0x00000004L
+#define PCTL0_SLICE1_CFG_DS_ALLOW_IB__DS3_MASK 0x00000008L
+#define PCTL0_SLICE1_CFG_DS_ALLOW_IB__DS4_MASK 0x00000010L
+#define PCTL0_SLICE1_CFG_DS_ALLOW_IB__DS5_MASK 0x00000020L
+#define PCTL0_SLICE1_CFG_DS_ALLOW_IB__DS6_MASK 0x00000040L
+#define PCTL0_SLICE1_CFG_DS_ALLOW_IB__DS7_MASK 0x00000080L
+#define PCTL0_SLICE1_CFG_DS_ALLOW_IB__DS8_MASK 0x00000100L
+#define PCTL0_SLICE1_CFG_DS_ALLOW_IB__DS9_MASK 0x00000200L
+#define PCTL0_SLICE1_CFG_DS_ALLOW_IB__DS10_MASK 0x00000400L
+#define PCTL0_SLICE1_CFG_DS_ALLOW_IB__DS11_MASK 0x00000800L
+#define PCTL0_SLICE1_CFG_DS_ALLOW_IB__DS12_MASK 0x00001000L
+#define PCTL0_SLICE1_CFG_DS_ALLOW_IB__DS13_MASK 0x00002000L
+#define PCTL0_SLICE1_CFG_DS_ALLOW_IB__DS14_MASK 0x00004000L
+#define PCTL0_SLICE1_CFG_DS_ALLOW_IB__DS15_MASK 0x00008000L
+#define PCTL0_SLICE1_CFG_DS_ALLOW_IB__DS16_MASK 0x00010000L
+//PCTL0_SLICE2_CFG_DAGB_BUSY
+#define PCTL0_SLICE2_CFG_DAGB_BUSY__DB_LNCFG__SHIFT 0x0
+#define PCTL0_SLICE2_CFG_DAGB_BUSY__DB_LNCFG_MASK 0xFFFFFFFFL
+//PCTL0_SLICE2_CFG_DS_ALLOW
+#define PCTL0_SLICE2_CFG_DS_ALLOW__DS0__SHIFT 0x0
+#define PCTL0_SLICE2_CFG_DS_ALLOW__DS1__SHIFT 0x1
+#define PCTL0_SLICE2_CFG_DS_ALLOW__DS2__SHIFT 0x2
+#define PCTL0_SLICE2_CFG_DS_ALLOW__DS3__SHIFT 0x3
+#define PCTL0_SLICE2_CFG_DS_ALLOW__DS4__SHIFT 0x4
+#define PCTL0_SLICE2_CFG_DS_ALLOW__DS5__SHIFT 0x5
+#define PCTL0_SLICE2_CFG_DS_ALLOW__DS6__SHIFT 0x6
+#define PCTL0_SLICE2_CFG_DS_ALLOW__DS7__SHIFT 0x7
+#define PCTL0_SLICE2_CFG_DS_ALLOW__DS8__SHIFT 0x8
+#define PCTL0_SLICE2_CFG_DS_ALLOW__DS9__SHIFT 0x9
+#define PCTL0_SLICE2_CFG_DS_ALLOW__DS10__SHIFT 0xa
+#define PCTL0_SLICE2_CFG_DS_ALLOW__DS11__SHIFT 0xb
+#define PCTL0_SLICE2_CFG_DS_ALLOW__DS12__SHIFT 0xc
+#define PCTL0_SLICE2_CFG_DS_ALLOW__DS13__SHIFT 0xd
+#define PCTL0_SLICE2_CFG_DS_ALLOW__DS14__SHIFT 0xe
+#define PCTL0_SLICE2_CFG_DS_ALLOW__DS15__SHIFT 0xf
+#define PCTL0_SLICE2_CFG_DS_ALLOW__DS16__SHIFT 0x10
+#define PCTL0_SLICE2_CFG_DS_ALLOW__DS0_MASK 0x00000001L
+#define PCTL0_SLICE2_CFG_DS_ALLOW__DS1_MASK 0x00000002L
+#define PCTL0_SLICE2_CFG_DS_ALLOW__DS2_MASK 0x00000004L
+#define PCTL0_SLICE2_CFG_DS_ALLOW__DS3_MASK 0x00000008L
+#define PCTL0_SLICE2_CFG_DS_ALLOW__DS4_MASK 0x00000010L
+#define PCTL0_SLICE2_CFG_DS_ALLOW__DS5_MASK 0x00000020L
+#define PCTL0_SLICE2_CFG_DS_ALLOW__DS6_MASK 0x00000040L
+#define PCTL0_SLICE2_CFG_DS_ALLOW__DS7_MASK 0x00000080L
+#define PCTL0_SLICE2_CFG_DS_ALLOW__DS8_MASK 0x00000100L
+#define PCTL0_SLICE2_CFG_DS_ALLOW__DS9_MASK 0x00000200L
+#define PCTL0_SLICE2_CFG_DS_ALLOW__DS10_MASK 0x00000400L
+#define PCTL0_SLICE2_CFG_DS_ALLOW__DS11_MASK 0x00000800L
+#define PCTL0_SLICE2_CFG_DS_ALLOW__DS12_MASK 0x00001000L
+#define PCTL0_SLICE2_CFG_DS_ALLOW__DS13_MASK 0x00002000L
+#define PCTL0_SLICE2_CFG_DS_ALLOW__DS14_MASK 0x00004000L
+#define PCTL0_SLICE2_CFG_DS_ALLOW__DS15_MASK 0x00008000L
+#define PCTL0_SLICE2_CFG_DS_ALLOW__DS16_MASK 0x00010000L
+//PCTL0_SLICE2_CFG_DS_ALLOW_IB
+#define PCTL0_SLICE2_CFG_DS_ALLOW_IB__DS0__SHIFT 0x0
+#define PCTL0_SLICE2_CFG_DS_ALLOW_IB__DS1__SHIFT 0x1
+#define PCTL0_SLICE2_CFG_DS_ALLOW_IB__DS2__SHIFT 0x2
+#define PCTL0_SLICE2_CFG_DS_ALLOW_IB__DS3__SHIFT 0x3
+#define PCTL0_SLICE2_CFG_DS_ALLOW_IB__DS4__SHIFT 0x4
+#define PCTL0_SLICE2_CFG_DS_ALLOW_IB__DS5__SHIFT 0x5
+#define PCTL0_SLICE2_CFG_DS_ALLOW_IB__DS6__SHIFT 0x6
+#define PCTL0_SLICE2_CFG_DS_ALLOW_IB__DS7__SHIFT 0x7
+#define PCTL0_SLICE2_CFG_DS_ALLOW_IB__DS8__SHIFT 0x8
+#define PCTL0_SLICE2_CFG_DS_ALLOW_IB__DS9__SHIFT 0x9
+#define PCTL0_SLICE2_CFG_DS_ALLOW_IB__DS10__SHIFT 0xa
+#define PCTL0_SLICE2_CFG_DS_ALLOW_IB__DS11__SHIFT 0xb
+#define PCTL0_SLICE2_CFG_DS_ALLOW_IB__DS12__SHIFT 0xc
+#define PCTL0_SLICE2_CFG_DS_ALLOW_IB__DS13__SHIFT 0xd
+#define PCTL0_SLICE2_CFG_DS_ALLOW_IB__DS14__SHIFT 0xe
+#define PCTL0_SLICE2_CFG_DS_ALLOW_IB__DS15__SHIFT 0xf
+#define PCTL0_SLICE2_CFG_DS_ALLOW_IB__DS16__SHIFT 0x10
+#define PCTL0_SLICE2_CFG_DS_ALLOW_IB__DS0_MASK 0x00000001L
+#define PCTL0_SLICE2_CFG_DS_ALLOW_IB__DS1_MASK 0x00000002L
+#define PCTL0_SLICE2_CFG_DS_ALLOW_IB__DS2_MASK 0x00000004L
+#define PCTL0_SLICE2_CFG_DS_ALLOW_IB__DS3_MASK 0x00000008L
+#define PCTL0_SLICE2_CFG_DS_ALLOW_IB__DS4_MASK 0x00000010L
+#define PCTL0_SLICE2_CFG_DS_ALLOW_IB__DS5_MASK 0x00000020L
+#define PCTL0_SLICE2_CFG_DS_ALLOW_IB__DS6_MASK 0x00000040L
+#define PCTL0_SLICE2_CFG_DS_ALLOW_IB__DS7_MASK 0x00000080L
+#define PCTL0_SLICE2_CFG_DS_ALLOW_IB__DS8_MASK 0x00000100L
+#define PCTL0_SLICE2_CFG_DS_ALLOW_IB__DS9_MASK 0x00000200L
+#define PCTL0_SLICE2_CFG_DS_ALLOW_IB__DS10_MASK 0x00000400L
+#define PCTL0_SLICE2_CFG_DS_ALLOW_IB__DS11_MASK 0x00000800L
+#define PCTL0_SLICE2_CFG_DS_ALLOW_IB__DS12_MASK 0x00001000L
+#define PCTL0_SLICE2_CFG_DS_ALLOW_IB__DS13_MASK 0x00002000L
+#define PCTL0_SLICE2_CFG_DS_ALLOW_IB__DS14_MASK 0x00004000L
+#define PCTL0_SLICE2_CFG_DS_ALLOW_IB__DS15_MASK 0x00008000L
+#define PCTL0_SLICE2_CFG_DS_ALLOW_IB__DS16_MASK 0x00010000L
+//PCTL0_SLICE3_CFG_DAGB_BUSY
+#define PCTL0_SLICE3_CFG_DAGB_BUSY__DB_LNCFG__SHIFT 0x0
+#define PCTL0_SLICE3_CFG_DAGB_BUSY__DB_LNCFG_MASK 0xFFFFFFFFL
+//PCTL0_SLICE3_CFG_DS_ALLOW
+#define PCTL0_SLICE3_CFG_DS_ALLOW__DS0__SHIFT 0x0
+#define PCTL0_SLICE3_CFG_DS_ALLOW__DS1__SHIFT 0x1
+#define PCTL0_SLICE3_CFG_DS_ALLOW__DS2__SHIFT 0x2
+#define PCTL0_SLICE3_CFG_DS_ALLOW__DS3__SHIFT 0x3
+#define PCTL0_SLICE3_CFG_DS_ALLOW__DS4__SHIFT 0x4
+#define PCTL0_SLICE3_CFG_DS_ALLOW__DS5__SHIFT 0x5
+#define PCTL0_SLICE3_CFG_DS_ALLOW__DS6__SHIFT 0x6
+#define PCTL0_SLICE3_CFG_DS_ALLOW__DS7__SHIFT 0x7
+#define PCTL0_SLICE3_CFG_DS_ALLOW__DS8__SHIFT 0x8
+#define PCTL0_SLICE3_CFG_DS_ALLOW__DS9__SHIFT 0x9
+#define PCTL0_SLICE3_CFG_DS_ALLOW__DS10__SHIFT 0xa
+#define PCTL0_SLICE3_CFG_DS_ALLOW__DS11__SHIFT 0xb
+#define PCTL0_SLICE3_CFG_DS_ALLOW__DS12__SHIFT 0xc
+#define PCTL0_SLICE3_CFG_DS_ALLOW__DS13__SHIFT 0xd
+#define PCTL0_SLICE3_CFG_DS_ALLOW__DS14__SHIFT 0xe
+#define PCTL0_SLICE3_CFG_DS_ALLOW__DS15__SHIFT 0xf
+#define PCTL0_SLICE3_CFG_DS_ALLOW__DS16__SHIFT 0x10
+#define PCTL0_SLICE3_CFG_DS_ALLOW__DS0_MASK 0x00000001L
+#define PCTL0_SLICE3_CFG_DS_ALLOW__DS1_MASK 0x00000002L
+#define PCTL0_SLICE3_CFG_DS_ALLOW__DS2_MASK 0x00000004L
+#define PCTL0_SLICE3_CFG_DS_ALLOW__DS3_MASK 0x00000008L
+#define PCTL0_SLICE3_CFG_DS_ALLOW__DS4_MASK 0x00000010L
+#define PCTL0_SLICE3_CFG_DS_ALLOW__DS5_MASK 0x00000020L
+#define PCTL0_SLICE3_CFG_DS_ALLOW__DS6_MASK 0x00000040L
+#define PCTL0_SLICE3_CFG_DS_ALLOW__DS7_MASK 0x00000080L
+#define PCTL0_SLICE3_CFG_DS_ALLOW__DS8_MASK 0x00000100L
+#define PCTL0_SLICE3_CFG_DS_ALLOW__DS9_MASK 0x00000200L
+#define PCTL0_SLICE3_CFG_DS_ALLOW__DS10_MASK 0x00000400L
+#define PCTL0_SLICE3_CFG_DS_ALLOW__DS11_MASK 0x00000800L
+#define PCTL0_SLICE3_CFG_DS_ALLOW__DS12_MASK 0x00001000L
+#define PCTL0_SLICE3_CFG_DS_ALLOW__DS13_MASK 0x00002000L
+#define PCTL0_SLICE3_CFG_DS_ALLOW__DS14_MASK 0x00004000L
+#define PCTL0_SLICE3_CFG_DS_ALLOW__DS15_MASK 0x00008000L
+#define PCTL0_SLICE3_CFG_DS_ALLOW__DS16_MASK 0x00010000L
+//PCTL0_SLICE3_CFG_DS_ALLOW_IB
+#define PCTL0_SLICE3_CFG_DS_ALLOW_IB__DS0__SHIFT 0x0
+#define PCTL0_SLICE3_CFG_DS_ALLOW_IB__DS1__SHIFT 0x1
+#define PCTL0_SLICE3_CFG_DS_ALLOW_IB__DS2__SHIFT 0x2
+#define PCTL0_SLICE3_CFG_DS_ALLOW_IB__DS3__SHIFT 0x3
+#define PCTL0_SLICE3_CFG_DS_ALLOW_IB__DS4__SHIFT 0x4
+#define PCTL0_SLICE3_CFG_DS_ALLOW_IB__DS5__SHIFT 0x5
+#define PCTL0_SLICE3_CFG_DS_ALLOW_IB__DS6__SHIFT 0x6
+#define PCTL0_SLICE3_CFG_DS_ALLOW_IB__DS7__SHIFT 0x7
+#define PCTL0_SLICE3_CFG_DS_ALLOW_IB__DS8__SHIFT 0x8
+#define PCTL0_SLICE3_CFG_DS_ALLOW_IB__DS9__SHIFT 0x9
+#define PCTL0_SLICE3_CFG_DS_ALLOW_IB__DS10__SHIFT 0xa
+#define PCTL0_SLICE3_CFG_DS_ALLOW_IB__DS11__SHIFT 0xb
+#define PCTL0_SLICE3_CFG_DS_ALLOW_IB__DS12__SHIFT 0xc
+#define PCTL0_SLICE3_CFG_DS_ALLOW_IB__DS13__SHIFT 0xd
+#define PCTL0_SLICE3_CFG_DS_ALLOW_IB__DS14__SHIFT 0xe
+#define PCTL0_SLICE3_CFG_DS_ALLOW_IB__DS15__SHIFT 0xf
+#define PCTL0_SLICE3_CFG_DS_ALLOW_IB__DS16__SHIFT 0x10
+#define PCTL0_SLICE3_CFG_DS_ALLOW_IB__DS0_MASK 0x00000001L
+#define PCTL0_SLICE3_CFG_DS_ALLOW_IB__DS1_MASK 0x00000002L
+#define PCTL0_SLICE3_CFG_DS_ALLOW_IB__DS2_MASK 0x00000004L
+#define PCTL0_SLICE3_CFG_DS_ALLOW_IB__DS3_MASK 0x00000008L
+#define PCTL0_SLICE3_CFG_DS_ALLOW_IB__DS4_MASK 0x00000010L
+#define PCTL0_SLICE3_CFG_DS_ALLOW_IB__DS5_MASK 0x00000020L
+#define PCTL0_SLICE3_CFG_DS_ALLOW_IB__DS6_MASK 0x00000040L
+#define PCTL0_SLICE3_CFG_DS_ALLOW_IB__DS7_MASK 0x00000080L
+#define PCTL0_SLICE3_CFG_DS_ALLOW_IB__DS8_MASK 0x00000100L
+#define PCTL0_SLICE3_CFG_DS_ALLOW_IB__DS9_MASK 0x00000200L
+#define PCTL0_SLICE3_CFG_DS_ALLOW_IB__DS10_MASK 0x00000400L
+#define PCTL0_SLICE3_CFG_DS_ALLOW_IB__DS11_MASK 0x00000800L
+#define PCTL0_SLICE3_CFG_DS_ALLOW_IB__DS12_MASK 0x00001000L
+#define PCTL0_SLICE3_CFG_DS_ALLOW_IB__DS13_MASK 0x00002000L
+#define PCTL0_SLICE3_CFG_DS_ALLOW_IB__DS14_MASK 0x00004000L
+#define PCTL0_SLICE3_CFG_DS_ALLOW_IB__DS15_MASK 0x00008000L
+#define PCTL0_SLICE3_CFG_DS_ALLOW_IB__DS16_MASK 0x00010000L
+//PCTL0_SLICE4_CFG_DAGB_BUSY
+#define PCTL0_SLICE4_CFG_DAGB_BUSY__DB_LNCFG__SHIFT 0x0
+#define PCTL0_SLICE4_CFG_DAGB_BUSY__DB_LNCFG_MASK 0xFFFFFFFFL
+//PCTL0_SLICE4_CFG_DS_ALLOW
+#define PCTL0_SLICE4_CFG_DS_ALLOW__DS0__SHIFT 0x0
+#define PCTL0_SLICE4_CFG_DS_ALLOW__DS1__SHIFT 0x1
+#define PCTL0_SLICE4_CFG_DS_ALLOW__DS2__SHIFT 0x2
+#define PCTL0_SLICE4_CFG_DS_ALLOW__DS3__SHIFT 0x3
+#define PCTL0_SLICE4_CFG_DS_ALLOW__DS4__SHIFT 0x4
+#define PCTL0_SLICE4_CFG_DS_ALLOW__DS5__SHIFT 0x5
+#define PCTL0_SLICE4_CFG_DS_ALLOW__DS6__SHIFT 0x6
+#define PCTL0_SLICE4_CFG_DS_ALLOW__DS7__SHIFT 0x7
+#define PCTL0_SLICE4_CFG_DS_ALLOW__DS8__SHIFT 0x8
+#define PCTL0_SLICE4_CFG_DS_ALLOW__DS9__SHIFT 0x9
+#define PCTL0_SLICE4_CFG_DS_ALLOW__DS10__SHIFT 0xa
+#define PCTL0_SLICE4_CFG_DS_ALLOW__DS11__SHIFT 0xb
+#define PCTL0_SLICE4_CFG_DS_ALLOW__DS12__SHIFT 0xc
+#define PCTL0_SLICE4_CFG_DS_ALLOW__DS13__SHIFT 0xd
+#define PCTL0_SLICE4_CFG_DS_ALLOW__DS14__SHIFT 0xe
+#define PCTL0_SLICE4_CFG_DS_ALLOW__DS15__SHIFT 0xf
+#define PCTL0_SLICE4_CFG_DS_ALLOW__DS16__SHIFT 0x10
+#define PCTL0_SLICE4_CFG_DS_ALLOW__DS0_MASK 0x00000001L
+#define PCTL0_SLICE4_CFG_DS_ALLOW__DS1_MASK 0x00000002L
+#define PCTL0_SLICE4_CFG_DS_ALLOW__DS2_MASK 0x00000004L
+#define PCTL0_SLICE4_CFG_DS_ALLOW__DS3_MASK 0x00000008L
+#define PCTL0_SLICE4_CFG_DS_ALLOW__DS4_MASK 0x00000010L
+#define PCTL0_SLICE4_CFG_DS_ALLOW__DS5_MASK 0x00000020L
+#define PCTL0_SLICE4_CFG_DS_ALLOW__DS6_MASK 0x00000040L
+#define PCTL0_SLICE4_CFG_DS_ALLOW__DS7_MASK 0x00000080L
+#define PCTL0_SLICE4_CFG_DS_ALLOW__DS8_MASK 0x00000100L
+#define PCTL0_SLICE4_CFG_DS_ALLOW__DS9_MASK 0x00000200L
+#define PCTL0_SLICE4_CFG_DS_ALLOW__DS10_MASK 0x00000400L
+#define PCTL0_SLICE4_CFG_DS_ALLOW__DS11_MASK 0x00000800L
+#define PCTL0_SLICE4_CFG_DS_ALLOW__DS12_MASK 0x00001000L
+#define PCTL0_SLICE4_CFG_DS_ALLOW__DS13_MASK 0x00002000L
+#define PCTL0_SLICE4_CFG_DS_ALLOW__DS14_MASK 0x00004000L
+#define PCTL0_SLICE4_CFG_DS_ALLOW__DS15_MASK 0x00008000L
+#define PCTL0_SLICE4_CFG_DS_ALLOW__DS16_MASK 0x00010000L
+//PCTL0_SLICE4_CFG_DS_ALLOW_IB
+#define PCTL0_SLICE4_CFG_DS_ALLOW_IB__DS0__SHIFT 0x0
+#define PCTL0_SLICE4_CFG_DS_ALLOW_IB__DS1__SHIFT 0x1
+#define PCTL0_SLICE4_CFG_DS_ALLOW_IB__DS2__SHIFT 0x2
+#define PCTL0_SLICE4_CFG_DS_ALLOW_IB__DS3__SHIFT 0x3
+#define PCTL0_SLICE4_CFG_DS_ALLOW_IB__DS4__SHIFT 0x4
+#define PCTL0_SLICE4_CFG_DS_ALLOW_IB__DS5__SHIFT 0x5
+#define PCTL0_SLICE4_CFG_DS_ALLOW_IB__DS6__SHIFT 0x6
+#define PCTL0_SLICE4_CFG_DS_ALLOW_IB__DS7__SHIFT 0x7
+#define PCTL0_SLICE4_CFG_DS_ALLOW_IB__DS8__SHIFT 0x8
+#define PCTL0_SLICE4_CFG_DS_ALLOW_IB__DS9__SHIFT 0x9
+#define PCTL0_SLICE4_CFG_DS_ALLOW_IB__DS10__SHIFT 0xa
+#define PCTL0_SLICE4_CFG_DS_ALLOW_IB__DS11__SHIFT 0xb
+#define PCTL0_SLICE4_CFG_DS_ALLOW_IB__DS12__SHIFT 0xc
+#define PCTL0_SLICE4_CFG_DS_ALLOW_IB__DS13__SHIFT 0xd
+#define PCTL0_SLICE4_CFG_DS_ALLOW_IB__DS14__SHIFT 0xe
+#define PCTL0_SLICE4_CFG_DS_ALLOW_IB__DS15__SHIFT 0xf
+#define PCTL0_SLICE4_CFG_DS_ALLOW_IB__DS16__SHIFT 0x10
+#define PCTL0_SLICE4_CFG_DS_ALLOW_IB__DS0_MASK 0x00000001L
+#define PCTL0_SLICE4_CFG_DS_ALLOW_IB__DS1_MASK 0x00000002L
+#define PCTL0_SLICE4_CFG_DS_ALLOW_IB__DS2_MASK 0x00000004L
+#define PCTL0_SLICE4_CFG_DS_ALLOW_IB__DS3_MASK 0x00000008L
+#define PCTL0_SLICE4_CFG_DS_ALLOW_IB__DS4_MASK 0x00000010L
+#define PCTL0_SLICE4_CFG_DS_ALLOW_IB__DS5_MASK 0x00000020L
+#define PCTL0_SLICE4_CFG_DS_ALLOW_IB__DS6_MASK 0x00000040L
+#define PCTL0_SLICE4_CFG_DS_ALLOW_IB__DS7_MASK 0x00000080L
+#define PCTL0_SLICE4_CFG_DS_ALLOW_IB__DS8_MASK 0x00000100L
+#define PCTL0_SLICE4_CFG_DS_ALLOW_IB__DS9_MASK 0x00000200L
+#define PCTL0_SLICE4_CFG_DS_ALLOW_IB__DS10_MASK 0x00000400L
+#define PCTL0_SLICE4_CFG_DS_ALLOW_IB__DS11_MASK 0x00000800L
+#define PCTL0_SLICE4_CFG_DS_ALLOW_IB__DS12_MASK 0x00001000L
+#define PCTL0_SLICE4_CFG_DS_ALLOW_IB__DS13_MASK 0x00002000L
+#define PCTL0_SLICE4_CFG_DS_ALLOW_IB__DS14_MASK 0x00004000L
+#define PCTL0_SLICE4_CFG_DS_ALLOW_IB__DS15_MASK 0x00008000L
+#define PCTL0_SLICE4_CFG_DS_ALLOW_IB__DS16_MASK 0x00010000L
+//PCTL0_UTCL2_MISC
+#define PCTL0_UTCL2_MISC__RENG_EXECUTE_NONSECURE_START_PTR__SHIFT 0x0
+#define PCTL0_UTCL2_MISC__CRITICAL_REGS_LOCK__SHIFT 0xb
+#define PCTL0_UTCL2_MISC__TILE_IDLE_THRESHOLD__SHIFT 0xc
+#define PCTL0_UTCL2_MISC__RENG_MEM_LS_ENABLE__SHIFT 0xf
+#define PCTL0_UTCL2_MISC__STCTRL_FORCE_PGFSM_CMD_DONE__SHIFT 0x10
+#define PCTL0_UTCL2_MISC__RENG_EXECUTE_ON_REG_UPDATE__SHIFT 0x11
+#define PCTL0_UTCL2_MISC__RD_TIMER_ENABLE__SHIFT 0x12
+#define PCTL0_UTCL2_MISC__RENG_EXECUTE_NONSECURE_START_PTR_MASK 0x000007FFL
+#define PCTL0_UTCL2_MISC__CRITICAL_REGS_LOCK_MASK 0x00000800L
+#define PCTL0_UTCL2_MISC__TILE_IDLE_THRESHOLD_MASK 0x00007000L
+#define PCTL0_UTCL2_MISC__RENG_MEM_LS_ENABLE_MASK 0x00008000L
+#define PCTL0_UTCL2_MISC__STCTRL_FORCE_PGFSM_CMD_DONE_MASK 0x00010000L
+#define PCTL0_UTCL2_MISC__RENG_EXECUTE_ON_REG_UPDATE_MASK 0x00020000L
+#define PCTL0_UTCL2_MISC__RD_TIMER_ENABLE_MASK 0x00040000L
+//PCTL0_SLICE0_MISC
+#define PCTL0_SLICE0_MISC__RENG_EXECUTE_NONSECURE_START_PTR__SHIFT 0x0
+#define PCTL0_SLICE0_MISC__CRITICAL_REGS_LOCK__SHIFT 0xa
+#define PCTL0_SLICE0_MISC__TILE_IDLE_THRESHOLD__SHIFT 0xb
+#define PCTL0_SLICE0_MISC__RENG_MEM_LS_ENABLE__SHIFT 0xe
+#define PCTL0_SLICE0_MISC__STCTRL_FORCE_PGFSM_CMD_DONE__SHIFT 0xf
+#define PCTL0_SLICE0_MISC__DEEPSLEEP_DISCSDP__SHIFT 0x10
+#define PCTL0_SLICE0_MISC__RENG_EXECUTE_ON_REG_UPDATE__SHIFT 0x11
+#define PCTL0_SLICE0_MISC__RD_TIMER_ENABLE__SHIFT 0x12
+#define PCTL0_SLICE0_MISC__RENG_EXECUTE_NONSECURE_START_PTR_MASK 0x000003FFL
+#define PCTL0_SLICE0_MISC__CRITICAL_REGS_LOCK_MASK 0x00000400L
+#define PCTL0_SLICE0_MISC__TILE_IDLE_THRESHOLD_MASK 0x00003800L
+#define PCTL0_SLICE0_MISC__RENG_MEM_LS_ENABLE_MASK 0x00004000L
+#define PCTL0_SLICE0_MISC__STCTRL_FORCE_PGFSM_CMD_DONE_MASK 0x00008000L
+#define PCTL0_SLICE0_MISC__DEEPSLEEP_DISCSDP_MASK 0x00010000L
+#define PCTL0_SLICE0_MISC__RENG_EXECUTE_ON_REG_UPDATE_MASK 0x00020000L
+#define PCTL0_SLICE0_MISC__RD_TIMER_ENABLE_MASK 0x00040000L
+//PCTL0_SLICE1_MISC
+#define PCTL0_SLICE1_MISC__RENG_EXECUTE_NONSECURE_START_PTR__SHIFT 0x0
+#define PCTL0_SLICE1_MISC__CRITICAL_REGS_LOCK__SHIFT 0xa
+#define PCTL0_SLICE1_MISC__TILE_IDLE_THRESHOLD__SHIFT 0xb
+#define PCTL0_SLICE1_MISC__RENG_MEM_LS_ENABLE__SHIFT 0xe
+#define PCTL0_SLICE1_MISC__STCTRL_FORCE_PGFSM_CMD_DONE__SHIFT 0xf
+#define PCTL0_SLICE1_MISC__DEEPSLEEP_DISCSDP__SHIFT 0x10
+#define PCTL0_SLICE1_MISC__RENG_EXECUTE_ON_REG_UPDATE__SHIFT 0x11
+#define PCTL0_SLICE1_MISC__RD_TIMER_ENABLE__SHIFT 0x12
+#define PCTL0_SLICE1_MISC__RENG_EXECUTE_NONSECURE_START_PTR_MASK 0x000003FFL
+#define PCTL0_SLICE1_MISC__CRITICAL_REGS_LOCK_MASK 0x00000400L
+#define PCTL0_SLICE1_MISC__TILE_IDLE_THRESHOLD_MASK 0x00003800L
+#define PCTL0_SLICE1_MISC__RENG_MEM_LS_ENABLE_MASK 0x00004000L
+#define PCTL0_SLICE1_MISC__STCTRL_FORCE_PGFSM_CMD_DONE_MASK 0x00008000L
+#define PCTL0_SLICE1_MISC__DEEPSLEEP_DISCSDP_MASK 0x00010000L
+#define PCTL0_SLICE1_MISC__RENG_EXECUTE_ON_REG_UPDATE_MASK 0x00020000L
+#define PCTL0_SLICE1_MISC__RD_TIMER_ENABLE_MASK 0x00040000L
+//PCTL0_SLICE2_MISC
+#define PCTL0_SLICE2_MISC__RENG_EXECUTE_NONSECURE_START_PTR__SHIFT 0x0
+#define PCTL0_SLICE2_MISC__CRITICAL_REGS_LOCK__SHIFT 0xa
+#define PCTL0_SLICE2_MISC__TILE_IDLE_THRESHOLD__SHIFT 0xb
+#define PCTL0_SLICE2_MISC__RENG_MEM_LS_ENABLE__SHIFT 0xe
+#define PCTL0_SLICE2_MISC__STCTRL_FORCE_PGFSM_CMD_DONE__SHIFT 0xf
+#define PCTL0_SLICE2_MISC__DEEPSLEEP_DISCSDP__SHIFT 0x10
+#define PCTL0_SLICE2_MISC__RENG_EXECUTE_ON_REG_UPDATE__SHIFT 0x11
+#define PCTL0_SLICE2_MISC__RD_TIMER_ENABLE__SHIFT 0x12
+#define PCTL0_SLICE2_MISC__RENG_EXECUTE_NONSECURE_START_PTR_MASK 0x000003FFL
+#define PCTL0_SLICE2_MISC__CRITICAL_REGS_LOCK_MASK 0x00000400L
+#define PCTL0_SLICE2_MISC__TILE_IDLE_THRESHOLD_MASK 0x00003800L
+#define PCTL0_SLICE2_MISC__RENG_MEM_LS_ENABLE_MASK 0x00004000L
+#define PCTL0_SLICE2_MISC__STCTRL_FORCE_PGFSM_CMD_DONE_MASK 0x00008000L
+#define PCTL0_SLICE2_MISC__DEEPSLEEP_DISCSDP_MASK 0x00010000L
+#define PCTL0_SLICE2_MISC__RENG_EXECUTE_ON_REG_UPDATE_MASK 0x00020000L
+#define PCTL0_SLICE2_MISC__RD_TIMER_ENABLE_MASK 0x00040000L
+//PCTL0_SLICE3_MISC
+#define PCTL0_SLICE3_MISC__RENG_EXECUTE_NONSECURE_START_PTR__SHIFT 0x0
+#define PCTL0_SLICE3_MISC__CRITICAL_REGS_LOCK__SHIFT 0xa
+#define PCTL0_SLICE3_MISC__TILE_IDLE_THRESHOLD__SHIFT 0xb
+#define PCTL0_SLICE3_MISC__RENG_MEM_LS_ENABLE__SHIFT 0xe
+#define PCTL0_SLICE3_MISC__STCTRL_FORCE_PGFSM_CMD_DONE__SHIFT 0xf
+#define PCTL0_SLICE3_MISC__DEEPSLEEP_DISCSDP__SHIFT 0x10
+#define PCTL0_SLICE3_MISC__RENG_EXECUTE_ON_REG_UPDATE__SHIFT 0x11
+#define PCTL0_SLICE3_MISC__RD_TIMER_ENABLE__SHIFT 0x12
+#define PCTL0_SLICE3_MISC__RENG_EXECUTE_NONSECURE_START_PTR_MASK 0x000003FFL
+#define PCTL0_SLICE3_MISC__CRITICAL_REGS_LOCK_MASK 0x00000400L
+#define PCTL0_SLICE3_MISC__TILE_IDLE_THRESHOLD_MASK 0x00003800L
+#define PCTL0_SLICE3_MISC__RENG_MEM_LS_ENABLE_MASK 0x00004000L
+#define PCTL0_SLICE3_MISC__STCTRL_FORCE_PGFSM_CMD_DONE_MASK 0x00008000L
+#define PCTL0_SLICE3_MISC__DEEPSLEEP_DISCSDP_MASK 0x00010000L
+#define PCTL0_SLICE3_MISC__RENG_EXECUTE_ON_REG_UPDATE_MASK 0x00020000L
+#define PCTL0_SLICE3_MISC__RD_TIMER_ENABLE_MASK 0x00040000L
+//PCTL0_SLICE4_MISC
+#define PCTL0_SLICE4_MISC__RENG_EXECUTE_NONSECURE_START_PTR__SHIFT 0x0
+#define PCTL0_SLICE4_MISC__CRITICAL_REGS_LOCK__SHIFT 0xa
+#define PCTL0_SLICE4_MISC__TILE_IDLE_THRESHOLD__SHIFT 0xb
+#define PCTL0_SLICE4_MISC__RENG_MEM_LS_ENABLE__SHIFT 0xe
+#define PCTL0_SLICE4_MISC__STCTRL_FORCE_PGFSM_CMD_DONE__SHIFT 0xf
+#define PCTL0_SLICE4_MISC__DEEPSLEEP_DISCSDP__SHIFT 0x10
+#define PCTL0_SLICE4_MISC__RENG_EXECUTE_ON_REG_UPDATE__SHIFT 0x11
+#define PCTL0_SLICE4_MISC__RD_TIMER_ENABLE__SHIFT 0x12
+#define PCTL0_SLICE4_MISC__RENG_EXECUTE_NONSECURE_START_PTR_MASK 0x000003FFL
+#define PCTL0_SLICE4_MISC__CRITICAL_REGS_LOCK_MASK 0x00000400L
+#define PCTL0_SLICE4_MISC__TILE_IDLE_THRESHOLD_MASK 0x00003800L
+#define PCTL0_SLICE4_MISC__RENG_MEM_LS_ENABLE_MASK 0x00004000L
+#define PCTL0_SLICE4_MISC__STCTRL_FORCE_PGFSM_CMD_DONE_MASK 0x00008000L
+#define PCTL0_SLICE4_MISC__DEEPSLEEP_DISCSDP_MASK 0x00010000L
+#define PCTL0_SLICE4_MISC__RENG_EXECUTE_ON_REG_UPDATE_MASK 0x00020000L
+#define PCTL0_SLICE4_MISC__RD_TIMER_ENABLE_MASK 0x00040000L
+
+
+// addressBlock: aid_mmhub_l1tlb_vml1dec
+//MC_VM_MX_L1_TLB0_STATUS
+#define MC_VM_MX_L1_TLB0_STATUS__BUSY__SHIFT 0x0
+#define MC_VM_MX_L1_TLB0_STATUS__FOUND_PARITY_ERRORS__SHIFT 0x1
+#define MC_VM_MX_L1_TLB0_STATUS__BUSY_MASK 0x00000001L
+#define MC_VM_MX_L1_TLB0_STATUS__FOUND_PARITY_ERRORS_MASK 0x00000002L
+//MC_VM_MX_L1_TLB1_STATUS
+#define MC_VM_MX_L1_TLB1_STATUS__BUSY__SHIFT 0x0
+#define MC_VM_MX_L1_TLB1_STATUS__FOUND_PARITY_ERRORS__SHIFT 0x1
+#define MC_VM_MX_L1_TLB1_STATUS__BUSY_MASK 0x00000001L
+#define MC_VM_MX_L1_TLB1_STATUS__FOUND_PARITY_ERRORS_MASK 0x00000002L
+//MC_VM_MX_L1_TLB2_STATUS
+#define MC_VM_MX_L1_TLB2_STATUS__BUSY__SHIFT 0x0
+#define MC_VM_MX_L1_TLB2_STATUS__FOUND_PARITY_ERRORS__SHIFT 0x1
+#define MC_VM_MX_L1_TLB2_STATUS__BUSY_MASK 0x00000001L
+#define MC_VM_MX_L1_TLB2_STATUS__FOUND_PARITY_ERRORS_MASK 0x00000002L
+//MC_VM_MX_L1_TLB3_STATUS
+#define MC_VM_MX_L1_TLB3_STATUS__BUSY__SHIFT 0x0
+#define MC_VM_MX_L1_TLB3_STATUS__FOUND_PARITY_ERRORS__SHIFT 0x1
+#define MC_VM_MX_L1_TLB3_STATUS__BUSY_MASK 0x00000001L
+#define MC_VM_MX_L1_TLB3_STATUS__FOUND_PARITY_ERRORS_MASK 0x00000002L
+//MC_VM_MX_L1_TLB4_STATUS
+#define MC_VM_MX_L1_TLB4_STATUS__BUSY__SHIFT 0x0
+#define MC_VM_MX_L1_TLB4_STATUS__FOUND_PARITY_ERRORS__SHIFT 0x1
+#define MC_VM_MX_L1_TLB4_STATUS__BUSY_MASK 0x00000001L
+#define MC_VM_MX_L1_TLB4_STATUS__FOUND_PARITY_ERRORS_MASK 0x00000002L
+//MC_VM_MX_L1_TLB5_STATUS
+#define MC_VM_MX_L1_TLB5_STATUS__BUSY__SHIFT 0x0
+#define MC_VM_MX_L1_TLB5_STATUS__FOUND_PARITY_ERRORS__SHIFT 0x1
+#define MC_VM_MX_L1_TLB5_STATUS__BUSY_MASK 0x00000001L
+#define MC_VM_MX_L1_TLB5_STATUS__FOUND_PARITY_ERRORS_MASK 0x00000002L
+//MC_VM_MX_L1_TLB6_STATUS
+#define MC_VM_MX_L1_TLB6_STATUS__BUSY__SHIFT 0x0
+#define MC_VM_MX_L1_TLB6_STATUS__FOUND_PARITY_ERRORS__SHIFT 0x1
+#define MC_VM_MX_L1_TLB6_STATUS__BUSY_MASK 0x00000001L
+#define MC_VM_MX_L1_TLB6_STATUS__FOUND_PARITY_ERRORS_MASK 0x00000002L
+//MC_VM_MX_L1_TLB7_STATUS
+#define MC_VM_MX_L1_TLB7_STATUS__BUSY__SHIFT 0x0
+#define MC_VM_MX_L1_TLB7_STATUS__FOUND_PARITY_ERRORS__SHIFT 0x1
+#define MC_VM_MX_L1_TLB7_STATUS__BUSY_MASK 0x00000001L
+#define MC_VM_MX_L1_TLB7_STATUS__FOUND_PARITY_ERRORS_MASK 0x00000002L
+
+
+// addressBlock: aid_mmhub_l1tlb_vml1pldec
+//MC_VM_MX_L1_PERFCOUNTER0_CFG
+#define MC_VM_MX_L1_PERFCOUNTER0_CFG__PERF_SEL__SHIFT 0x0
+#define MC_VM_MX_L1_PERFCOUNTER0_CFG__PERF_SEL_END__SHIFT 0x8
+#define MC_VM_MX_L1_PERFCOUNTER0_CFG__PERF_MODE__SHIFT 0x18
+#define MC_VM_MX_L1_PERFCOUNTER0_CFG__ENABLE__SHIFT 0x1c
+#define MC_VM_MX_L1_PERFCOUNTER0_CFG__CLEAR__SHIFT 0x1d
+#define MC_VM_MX_L1_PERFCOUNTER0_CFG__PERF_SEL_MASK 0x000000FFL
+#define MC_VM_MX_L1_PERFCOUNTER0_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define MC_VM_MX_L1_PERFCOUNTER0_CFG__PERF_MODE_MASK 0x0F000000L
+#define MC_VM_MX_L1_PERFCOUNTER0_CFG__ENABLE_MASK 0x10000000L
+#define MC_VM_MX_L1_PERFCOUNTER0_CFG__CLEAR_MASK 0x20000000L
+//MC_VM_MX_L1_PERFCOUNTER1_CFG
+#define MC_VM_MX_L1_PERFCOUNTER1_CFG__PERF_SEL__SHIFT 0x0
+#define MC_VM_MX_L1_PERFCOUNTER1_CFG__PERF_SEL_END__SHIFT 0x8
+#define MC_VM_MX_L1_PERFCOUNTER1_CFG__PERF_MODE__SHIFT 0x18
+#define MC_VM_MX_L1_PERFCOUNTER1_CFG__ENABLE__SHIFT 0x1c
+#define MC_VM_MX_L1_PERFCOUNTER1_CFG__CLEAR__SHIFT 0x1d
+#define MC_VM_MX_L1_PERFCOUNTER1_CFG__PERF_SEL_MASK 0x000000FFL
+#define MC_VM_MX_L1_PERFCOUNTER1_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define MC_VM_MX_L1_PERFCOUNTER1_CFG__PERF_MODE_MASK 0x0F000000L
+#define MC_VM_MX_L1_PERFCOUNTER1_CFG__ENABLE_MASK 0x10000000L
+#define MC_VM_MX_L1_PERFCOUNTER1_CFG__CLEAR_MASK 0x20000000L
+//MC_VM_MX_L1_PERFCOUNTER2_CFG
+#define MC_VM_MX_L1_PERFCOUNTER2_CFG__PERF_SEL__SHIFT 0x0
+#define MC_VM_MX_L1_PERFCOUNTER2_CFG__PERF_SEL_END__SHIFT 0x8
+#define MC_VM_MX_L1_PERFCOUNTER2_CFG__PERF_MODE__SHIFT 0x18
+#define MC_VM_MX_L1_PERFCOUNTER2_CFG__ENABLE__SHIFT 0x1c
+#define MC_VM_MX_L1_PERFCOUNTER2_CFG__CLEAR__SHIFT 0x1d
+#define MC_VM_MX_L1_PERFCOUNTER2_CFG__PERF_SEL_MASK 0x000000FFL
+#define MC_VM_MX_L1_PERFCOUNTER2_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define MC_VM_MX_L1_PERFCOUNTER2_CFG__PERF_MODE_MASK 0x0F000000L
+#define MC_VM_MX_L1_PERFCOUNTER2_CFG__ENABLE_MASK 0x10000000L
+#define MC_VM_MX_L1_PERFCOUNTER2_CFG__CLEAR_MASK 0x20000000L
+//MC_VM_MX_L1_PERFCOUNTER3_CFG
+#define MC_VM_MX_L1_PERFCOUNTER3_CFG__PERF_SEL__SHIFT 0x0
+#define MC_VM_MX_L1_PERFCOUNTER3_CFG__PERF_SEL_END__SHIFT 0x8
+#define MC_VM_MX_L1_PERFCOUNTER3_CFG__PERF_MODE__SHIFT 0x18
+#define MC_VM_MX_L1_PERFCOUNTER3_CFG__ENABLE__SHIFT 0x1c
+#define MC_VM_MX_L1_PERFCOUNTER3_CFG__CLEAR__SHIFT 0x1d
+#define MC_VM_MX_L1_PERFCOUNTER3_CFG__PERF_SEL_MASK 0x000000FFL
+#define MC_VM_MX_L1_PERFCOUNTER3_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define MC_VM_MX_L1_PERFCOUNTER3_CFG__PERF_MODE_MASK 0x0F000000L
+#define MC_VM_MX_L1_PERFCOUNTER3_CFG__ENABLE_MASK 0x10000000L
+#define MC_VM_MX_L1_PERFCOUNTER3_CFG__CLEAR_MASK 0x20000000L
+//MC_VM_MX_L1_PERFCOUNTER_RSLT_CNTL
+#define MC_VM_MX_L1_PERFCOUNTER_RSLT_CNTL__PERF_COUNTER_SELECT__SHIFT 0x0
+#define MC_VM_MX_L1_PERFCOUNTER_RSLT_CNTL__START_TRIGGER__SHIFT 0x8
+#define MC_VM_MX_L1_PERFCOUNTER_RSLT_CNTL__STOP_TRIGGER__SHIFT 0x10
+#define MC_VM_MX_L1_PERFCOUNTER_RSLT_CNTL__ENABLE_ANY__SHIFT 0x18
+#define MC_VM_MX_L1_PERFCOUNTER_RSLT_CNTL__CLEAR_ALL__SHIFT 0x19
+#define MC_VM_MX_L1_PERFCOUNTER_RSLT_CNTL__STOP_ALL_ON_SATURATE__SHIFT 0x1a
+#define MC_VM_MX_L1_PERFCOUNTER_RSLT_CNTL__PERF_COUNTER_SELECT_MASK 0x0000000FL
+#define MC_VM_MX_L1_PERFCOUNTER_RSLT_CNTL__START_TRIGGER_MASK 0x0000FF00L
+#define MC_VM_MX_L1_PERFCOUNTER_RSLT_CNTL__STOP_TRIGGER_MASK 0x00FF0000L
+#define MC_VM_MX_L1_PERFCOUNTER_RSLT_CNTL__ENABLE_ANY_MASK 0x01000000L
+#define MC_VM_MX_L1_PERFCOUNTER_RSLT_CNTL__CLEAR_ALL_MASK 0x02000000L
+#define MC_VM_MX_L1_PERFCOUNTER_RSLT_CNTL__STOP_ALL_ON_SATURATE_MASK 0x04000000L
+
+
+// addressBlock: aid_mmhub_l1tlb_vml1prdec
+//MC_VM_MX_L1_PERFCOUNTER_LO
+#define MC_VM_MX_L1_PERFCOUNTER_LO__COUNTER_LO__SHIFT 0x0
+#define MC_VM_MX_L1_PERFCOUNTER_LO__COUNTER_LO_MASK 0xFFFFFFFFL
+//MC_VM_MX_L1_PERFCOUNTER_HI
+#define MC_VM_MX_L1_PERFCOUNTER_HI__COUNTER_HI__SHIFT 0x0
+#define MC_VM_MX_L1_PERFCOUNTER_HI__COMPARE_VALUE__SHIFT 0x10
+#define MC_VM_MX_L1_PERFCOUNTER_HI__COUNTER_HI_MASK 0x0000FFFFL
+#define MC_VM_MX_L1_PERFCOUNTER_HI__COMPARE_VALUE_MASK 0xFFFF0000L
+
+
+// addressBlock: aid_mmhub_utcl2_atcl2dec
+//ATC_L2_CNTL
+#define ATC_L2_CNTL__NUMBER_OF_TRANSLATION_READ_REQUESTS__SHIFT 0x0
+#define ATC_L2_CNTL__NUMBER_OF_TRANSLATION_WRITE_REQUESTS__SHIFT 0x3
+#define ATC_L2_CNTL__NUMBER_OF_TRANSLATION_READS_DEPENDS_ON_ADDR_MOD__SHIFT 0x6
+#define ATC_L2_CNTL__NUMBER_OF_TRANSLATION_WRITES_DEPENDS_ON_ADDR_MOD__SHIFT 0x7
+#define ATC_L2_CNTL__NUMBER_OF_HOST_TRANSLATION_READ_REQUESTS__SHIFT 0x8
+#define ATC_L2_CNTL__NUMBER_OF_HOST_TRANSLATION_WRITE_REQUESTS__SHIFT 0xb
+#define ATC_L2_CNTL__NUMBER_OF_HOST_TRANSLATION_READS_DEPENDS_ON_ADDR_MOD__SHIFT 0xe
+#define ATC_L2_CNTL__NUMBER_OF_HOST_TRANSLATION_WRITES_DEPENDS_ON_ADDR_MOD__SHIFT 0xf
+#define ATC_L2_CNTL__CACHE_INVALIDATE_MODE__SHIFT 0x10
+#define ATC_L2_CNTL__ENABLE_DEFAULT_PAGE_OUT_TO_SYSTEM_MEMORY__SHIFT 0x13
+#define ATC_L2_CNTL__FRAG_APT_INTXN_MODE__SHIFT 0x14
+#define ATC_L2_CNTL__CLI_GPA_REQ_FRAG_SIZE__SHIFT 0x16
+#define ATC_L2_CNTL__NUMBER_OF_TRANSLATION_READ_REQUESTS_MASK 0x00000003L
+#define ATC_L2_CNTL__NUMBER_OF_TRANSLATION_WRITE_REQUESTS_MASK 0x00000018L
+#define ATC_L2_CNTL__NUMBER_OF_TRANSLATION_READS_DEPENDS_ON_ADDR_MOD_MASK 0x00000040L
+#define ATC_L2_CNTL__NUMBER_OF_TRANSLATION_WRITES_DEPENDS_ON_ADDR_MOD_MASK 0x00000080L
+#define ATC_L2_CNTL__NUMBER_OF_HOST_TRANSLATION_READ_REQUESTS_MASK 0x00000300L
+#define ATC_L2_CNTL__NUMBER_OF_HOST_TRANSLATION_WRITE_REQUESTS_MASK 0x00001800L
+#define ATC_L2_CNTL__NUMBER_OF_HOST_TRANSLATION_READS_DEPENDS_ON_ADDR_MOD_MASK 0x00004000L
+#define ATC_L2_CNTL__NUMBER_OF_HOST_TRANSLATION_WRITES_DEPENDS_ON_ADDR_MOD_MASK 0x00008000L
+#define ATC_L2_CNTL__CACHE_INVALIDATE_MODE_MASK 0x00070000L
+#define ATC_L2_CNTL__ENABLE_DEFAULT_PAGE_OUT_TO_SYSTEM_MEMORY_MASK 0x00080000L
+#define ATC_L2_CNTL__FRAG_APT_INTXN_MODE_MASK 0x00300000L
+#define ATC_L2_CNTL__CLI_GPA_REQ_FRAG_SIZE_MASK 0x0FC00000L
+//ATC_L2_CNTL2
+#define ATC_L2_CNTL2__BANK_SELECT__SHIFT 0x0
+#define ATC_L2_CNTL2__NUM_BANKS_LOG2__SHIFT 0x6
+#define ATC_L2_CNTL2__L2_CACHE_UPDATE_MODE__SHIFT 0x9
+#define ATC_L2_CNTL2__ENABLE_L2_CACHE_LRU_UPDATE_BY_WRITE__SHIFT 0xb
+#define ATC_L2_CNTL2__L2_CACHE_SWAP_TAG_INDEX_LSBS__SHIFT 0xc
+#define ATC_L2_CNTL2__L2_CACHE_VMID_MODE__SHIFT 0xf
+#define ATC_L2_CNTL2__L2_CACHE_UPDATE_WILDCARD_REFERENCE_VALUE__SHIFT 0x12
+#define ATC_L2_CNTL2__BANK_SELECT_MASK 0x0000003FL
+#define ATC_L2_CNTL2__NUM_BANKS_LOG2_MASK 0x000001C0L
+#define ATC_L2_CNTL2__L2_CACHE_UPDATE_MODE_MASK 0x00000600L
+#define ATC_L2_CNTL2__ENABLE_L2_CACHE_LRU_UPDATE_BY_WRITE_MASK 0x00000800L
+#define ATC_L2_CNTL2__L2_CACHE_SWAP_TAG_INDEX_LSBS_MASK 0x00007000L
+#define ATC_L2_CNTL2__L2_CACHE_VMID_MODE_MASK 0x00038000L
+#define ATC_L2_CNTL2__L2_CACHE_UPDATE_WILDCARD_REFERENCE_VALUE_MASK 0x00FC0000L
+//ATC_L2_CACHE_DATA0
+#define ATC_L2_CACHE_DATA0__DATA_REGISTER_VALID__SHIFT 0x0
+#define ATC_L2_CACHE_DATA0__CACHE_ENTRY_VALID__SHIFT 0x1
+#define ATC_L2_CACHE_DATA0__CACHED_ATTRIBUTES__SHIFT 0x2
+#define ATC_L2_CACHE_DATA0__VIRTUAL_PAGE_ADDRESS_HIGH__SHIFT 0x17
+#define ATC_L2_CACHE_DATA0__DATA_REGISTER_VALID_MASK 0x00000001L
+#define ATC_L2_CACHE_DATA0__CACHE_ENTRY_VALID_MASK 0x00000002L
+#define ATC_L2_CACHE_DATA0__CACHED_ATTRIBUTES_MASK 0x007FFFFCL
+#define ATC_L2_CACHE_DATA0__VIRTUAL_PAGE_ADDRESS_HIGH_MASK 0x07800000L
+//ATC_L2_CACHE_DATA1
+#define ATC_L2_CACHE_DATA1__VIRTUAL_PAGE_ADDRESS_LOW__SHIFT 0x0
+#define ATC_L2_CACHE_DATA1__VIRTUAL_PAGE_ADDRESS_LOW_MASK 0xFFFFFFFFL
+//ATC_L2_CACHE_DATA2
+#define ATC_L2_CACHE_DATA2__PHYSICAL_PAGE_ADDRESS__SHIFT 0x0
+#define ATC_L2_CACHE_DATA2__PHYSICAL_PAGE_ADDRESS_MASK 0xFFFFFFFFL
+//ATC_L2_CACHE_DATA3
+#define ATC_L2_CACHE_DATA3__PHYSICAL_PAGE_ADDRESS__SHIFT 0x0
+#define ATC_L2_CACHE_DATA3__PHYSICAL_PAGE_ADDRESS_MASK 0xFFFFFFFFL
+//ATC_L2_CNTL3
+#define ATC_L2_CNTL3__L2_SMALLK_FRAGMENT_SIZE__SHIFT 0x0
+#define ATC_L2_CNTL3__L2_MIDK_FRAGMENT_SIZE__SHIFT 0x6
+#define ATC_L2_CNTL3__L2_BIGK_FRAGMENT_SIZE__SHIFT 0xc
+#define ATC_L2_CNTL3__DELAY_SEND_INVALIDATION_REQUEST__SHIFT 0x12
+#define ATC_L2_CNTL3__ATS_REQUEST_CREDIT_MINUS1__SHIFT 0x15
+#define ATC_L2_CNTL3__COMPCLKREQ_OFF_HYSTERESIS__SHIFT 0x1b
+#define ATC_L2_CNTL3__REPEATER_FGCG_OFF__SHIFT 0x1e
+#define ATC_L2_CNTL3__L2_SMALLK_FRAGMENT_SIZE_MASK 0x0000003FL
+#define ATC_L2_CNTL3__L2_MIDK_FRAGMENT_SIZE_MASK 0x00000FC0L
+#define ATC_L2_CNTL3__L2_BIGK_FRAGMENT_SIZE_MASK 0x0003F000L
+#define ATC_L2_CNTL3__DELAY_SEND_INVALIDATION_REQUEST_MASK 0x001C0000L
+#define ATC_L2_CNTL3__ATS_REQUEST_CREDIT_MINUS1_MASK 0x07E00000L
+#define ATC_L2_CNTL3__COMPCLKREQ_OFF_HYSTERESIS_MASK 0x38000000L
+#define ATC_L2_CNTL3__REPEATER_FGCG_OFF_MASK 0x40000000L
+//ATC_L2_STATUS
+#define ATC_L2_STATUS__BUSY__SHIFT 0x0
+#define ATC_L2_STATUS__NO_OUTSTANDING_AT_REQUESTS__SHIFT 0x1
+#define ATC_L2_STATUS__BUSY_MASK 0x00000001L
+#define ATC_L2_STATUS__NO_OUTSTANDING_AT_REQUESTS_MASK 0x00000002L
+//ATC_L2_STATUS2
+#define ATC_L2_STATUS2__UCE_MEM_ADDR__SHIFT 0x0
+#define ATC_L2_STATUS2__UCE_MEM_INST__SHIFT 0xc
+#define ATC_L2_STATUS2__UCE_SRT_CACHE__SHIFT 0x14
+#define ATC_L2_STATUS2__UCE__SHIFT 0x15
+#define ATC_L2_STATUS2__UCE_MEM_ADDR_MASK 0x00000FFFL
+#define ATC_L2_STATUS2__UCE_MEM_INST_MASK 0x000FF000L
+#define ATC_L2_STATUS2__UCE_SRT_CACHE_MASK 0x00100000L
+#define ATC_L2_STATUS2__UCE_MASK 0x00200000L
+//ATC_L2_MISC_CG
+#define ATC_L2_MISC_CG__OFFDLY__SHIFT 0x6
+#define ATC_L2_MISC_CG__ENABLE__SHIFT 0x12
+#define ATC_L2_MISC_CG__MEM_LS_ENABLE__SHIFT 0x13
+#define ATC_L2_MISC_CG__OFFDLY_MASK 0x00000FC0L
+#define ATC_L2_MISC_CG__ENABLE_MASK 0x00040000L
+#define ATC_L2_MISC_CG__MEM_LS_ENABLE_MASK 0x00080000L
+//ATC_L2_MEM_POWER_LS
+#define ATC_L2_MEM_POWER_LS__LS_SETUP__SHIFT 0x0
+#define ATC_L2_MEM_POWER_LS__LS_HOLD__SHIFT 0x6
+#define ATC_L2_MEM_POWER_LS__LS_SETUP_MASK 0x0000003FL
+#define ATC_L2_MEM_POWER_LS__LS_HOLD_MASK 0x00000FC0L
+//ATC_L2_CGTT_CLK_CTRL
+#define ATC_L2_CGTT_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define ATC_L2_CGTT_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define ATC_L2_CGTT_CLK_CTRL__MGLS_OVERRIDE__SHIFT 0xf
+#define ATC_L2_CGTT_CLK_CTRL__SOFT_STALL_OVERRIDE__SHIFT 0x10
+#define ATC_L2_CGTT_CLK_CTRL__SOFT_OVERRIDE__SHIFT 0x18
+#define ATC_L2_CGTT_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define ATC_L2_CGTT_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define ATC_L2_CGTT_CLK_CTRL__MGLS_OVERRIDE_MASK 0x00008000L
+#define ATC_L2_CGTT_CLK_CTRL__SOFT_STALL_OVERRIDE_MASK 0x00FF0000L
+#define ATC_L2_CGTT_CLK_CTRL__SOFT_OVERRIDE_MASK 0xFF000000L
+//ATC_L2_CACHE_4K_DSM_INDEX
+#define ATC_L2_CACHE_4K_DSM_INDEX__INDEX__SHIFT 0x0
+#define ATC_L2_CACHE_4K_DSM_INDEX__INDEX_MASK 0x000000FFL
+//ATC_L2_CACHE_32K_DSM_INDEX
+#define ATC_L2_CACHE_32K_DSM_INDEX__INDEX__SHIFT 0x0
+#define ATC_L2_CACHE_32K_DSM_INDEX__INDEX_MASK 0x000000FFL
+//ATC_L2_CACHE_2M_DSM_INDEX
+#define ATC_L2_CACHE_2M_DSM_INDEX__INDEX__SHIFT 0x0
+#define ATC_L2_CACHE_2M_DSM_INDEX__INDEX_MASK 0x000000FFL
+//ATC_L2_CACHE_4K_DSM_CNTL
+#define ATC_L2_CACHE_4K_DSM_CNTL__INJECT_DELAY__SHIFT 0x0
+#define ATC_L2_CACHE_4K_DSM_CNTL__DSM_IRRITATOR_DATA__SHIFT 0x6
+#define ATC_L2_CACHE_4K_DSM_CNTL__ENABLE_SINGLE_WRITE__SHIFT 0x8
+#define ATC_L2_CACHE_4K_DSM_CNTL__ENABLE_ERROR_INJECT__SHIFT 0x9
+#define ATC_L2_CACHE_4K_DSM_CNTL__SELECT_INJECT_DELAY__SHIFT 0xb
+#define ATC_L2_CACHE_4K_DSM_CNTL__WRITE_COUNTERS__SHIFT 0xc
+#define ATC_L2_CACHE_4K_DSM_CNTL__SEC_COUNT__SHIFT 0xd
+#define ATC_L2_CACHE_4K_DSM_CNTL__DED_COUNT__SHIFT 0xf
+#define ATC_L2_CACHE_4K_DSM_CNTL__TEST_FUE__SHIFT 0x11
+#define ATC_L2_CACHE_4K_DSM_CNTL__INJECT_DELAY_MASK 0x0000003FL
+#define ATC_L2_CACHE_4K_DSM_CNTL__DSM_IRRITATOR_DATA_MASK 0x000000C0L
+#define ATC_L2_CACHE_4K_DSM_CNTL__ENABLE_SINGLE_WRITE_MASK 0x00000100L
+#define ATC_L2_CACHE_4K_DSM_CNTL__ENABLE_ERROR_INJECT_MASK 0x00000600L
+#define ATC_L2_CACHE_4K_DSM_CNTL__SELECT_INJECT_DELAY_MASK 0x00000800L
+#define ATC_L2_CACHE_4K_DSM_CNTL__WRITE_COUNTERS_MASK 0x00001000L
+#define ATC_L2_CACHE_4K_DSM_CNTL__SEC_COUNT_MASK 0x00006000L
+#define ATC_L2_CACHE_4K_DSM_CNTL__DED_COUNT_MASK 0x00018000L
+#define ATC_L2_CACHE_4K_DSM_CNTL__TEST_FUE_MASK 0x00020000L
+//ATC_L2_CACHE_32K_DSM_CNTL
+#define ATC_L2_CACHE_32K_DSM_CNTL__INJECT_DELAY__SHIFT 0x0
+#define ATC_L2_CACHE_32K_DSM_CNTL__DSM_IRRITATOR_DATA__SHIFT 0x6
+#define ATC_L2_CACHE_32K_DSM_CNTL__ENABLE_SINGLE_WRITE__SHIFT 0x8
+#define ATC_L2_CACHE_32K_DSM_CNTL__ENABLE_ERROR_INJECT__SHIFT 0x9
+#define ATC_L2_CACHE_32K_DSM_CNTL__SELECT_INJECT_DELAY__SHIFT 0xb
+#define ATC_L2_CACHE_32K_DSM_CNTL__WRITE_COUNTERS__SHIFT 0xc
+#define ATC_L2_CACHE_32K_DSM_CNTL__SEC_COUNT__SHIFT 0xd
+#define ATC_L2_CACHE_32K_DSM_CNTL__DED_COUNT__SHIFT 0xf
+#define ATC_L2_CACHE_32K_DSM_CNTL__TEST_FUE__SHIFT 0x11
+#define ATC_L2_CACHE_32K_DSM_CNTL__INJECT_DELAY_MASK 0x0000003FL
+#define ATC_L2_CACHE_32K_DSM_CNTL__DSM_IRRITATOR_DATA_MASK 0x000000C0L
+#define ATC_L2_CACHE_32K_DSM_CNTL__ENABLE_SINGLE_WRITE_MASK 0x00000100L
+#define ATC_L2_CACHE_32K_DSM_CNTL__ENABLE_ERROR_INJECT_MASK 0x00000600L
+#define ATC_L2_CACHE_32K_DSM_CNTL__SELECT_INJECT_DELAY_MASK 0x00000800L
+#define ATC_L2_CACHE_32K_DSM_CNTL__WRITE_COUNTERS_MASK 0x00001000L
+#define ATC_L2_CACHE_32K_DSM_CNTL__SEC_COUNT_MASK 0x00006000L
+#define ATC_L2_CACHE_32K_DSM_CNTL__DED_COUNT_MASK 0x00018000L
+#define ATC_L2_CACHE_32K_DSM_CNTL__TEST_FUE_MASK 0x00020000L
+//ATC_L2_CACHE_2M_DSM_CNTL
+#define ATC_L2_CACHE_2M_DSM_CNTL__INJECT_DELAY__SHIFT 0x0
+#define ATC_L2_CACHE_2M_DSM_CNTL__DSM_IRRITATOR_DATA__SHIFT 0x6
+#define ATC_L2_CACHE_2M_DSM_CNTL__ENABLE_SINGLE_WRITE__SHIFT 0x8
+#define ATC_L2_CACHE_2M_DSM_CNTL__ENABLE_ERROR_INJECT__SHIFT 0x9
+#define ATC_L2_CACHE_2M_DSM_CNTL__SELECT_INJECT_DELAY__SHIFT 0xb
+#define ATC_L2_CACHE_2M_DSM_CNTL__WRITE_COUNTERS__SHIFT 0xc
+#define ATC_L2_CACHE_2M_DSM_CNTL__SEC_COUNT__SHIFT 0xd
+#define ATC_L2_CACHE_2M_DSM_CNTL__DED_COUNT__SHIFT 0xf
+#define ATC_L2_CACHE_2M_DSM_CNTL__TEST_FUE__SHIFT 0x11
+#define ATC_L2_CACHE_2M_DSM_CNTL__INJECT_DELAY_MASK 0x0000003FL
+#define ATC_L2_CACHE_2M_DSM_CNTL__DSM_IRRITATOR_DATA_MASK 0x000000C0L
+#define ATC_L2_CACHE_2M_DSM_CNTL__ENABLE_SINGLE_WRITE_MASK 0x00000100L
+#define ATC_L2_CACHE_2M_DSM_CNTL__ENABLE_ERROR_INJECT_MASK 0x00000600L
+#define ATC_L2_CACHE_2M_DSM_CNTL__SELECT_INJECT_DELAY_MASK 0x00000800L
+#define ATC_L2_CACHE_2M_DSM_CNTL__WRITE_COUNTERS_MASK 0x00001000L
+#define ATC_L2_CACHE_2M_DSM_CNTL__SEC_COUNT_MASK 0x00006000L
+#define ATC_L2_CACHE_2M_DSM_CNTL__DED_COUNT_MASK 0x00018000L
+#define ATC_L2_CACHE_2M_DSM_CNTL__TEST_FUE_MASK 0x00020000L
+//ATC_L2_CNTL4
+#define ATC_L2_CNTL4__MM_NONRT_IFIFO_ACTIVE_TRANSACTION_LIMIT__SHIFT 0x0
+#define ATC_L2_CNTL4__MM_SOFTRT_IFIFO_ACTIVE_TRANSACTION_LIMIT__SHIFT 0xa
+#define ATC_L2_CNTL4__MM_NONRT_IFIFO_ACTIVE_TRANSACTION_LIMIT_MASK 0x000003FFL
+#define ATC_L2_CNTL4__MM_SOFTRT_IFIFO_ACTIVE_TRANSACTION_LIMIT_MASK 0x000FFC00L
+//ATC_L2_MM_GROUP_RT_CLASSES
+#define ATC_L2_MM_GROUP_RT_CLASSES__GROUP_RT_CLASS__SHIFT 0x0
+#define ATC_L2_MM_GROUP_RT_CLASSES__GROUP_RT_CLASS_MASK 0xFFFFFFFFL
+
+
+// addressBlock: aid_mmhub_utcl2_vml2pfdec
+//VM_L2_CNTL
+#define VM_L2_CNTL__ENABLE_L2_CACHE__SHIFT 0x0
+#define VM_L2_CNTL__ENABLE_L2_FRAGMENT_PROCESSING__SHIFT 0x1
+#define VM_L2_CNTL__L2_CACHE_PTE_ENDIAN_SWAP_MODE__SHIFT 0x2
+#define VM_L2_CNTL__L2_CACHE_PDE_ENDIAN_SWAP_MODE__SHIFT 0x4
+#define VM_L2_CNTL__L2_PDE0_CACHE_TAG_GENERATION_MODE__SHIFT 0x8
+#define VM_L2_CNTL__ENABLE_L2_PTE_CACHE_LRU_UPDATE_BY_WRITE__SHIFT 0x9
+#define VM_L2_CNTL__ENABLE_L2_PDE0_CACHE_LRU_UPDATE_BY_WRITE__SHIFT 0xa
+#define VM_L2_CNTL__ENABLE_DEFAULT_PAGE_OUT_TO_SYSTEM_MEMORY__SHIFT 0xb
+#define VM_L2_CNTL__L2_PDE0_CACHE_SPLIT_MODE__SHIFT 0xc
+#define VM_L2_CNTL__EFFECTIVE_L2_QUEUE_SIZE__SHIFT 0xf
+#define VM_L2_CNTL__PDE_FAULT_CLASSIFICATION__SHIFT 0x12
+#define VM_L2_CNTL__CONTEXT1_IDENTITY_ACCESS_MODE__SHIFT 0x13
+#define VM_L2_CNTL__IDENTITY_MODE_FRAGMENT_SIZE__SHIFT 0x15
+#define VM_L2_CNTL__L2_PTE_CACHE_ADDR_MODE__SHIFT 0x1a
+#define VM_L2_CNTL__ENABLE_L2_CACHE_MASK 0x00000001L
+#define VM_L2_CNTL__ENABLE_L2_FRAGMENT_PROCESSING_MASK 0x00000002L
+#define VM_L2_CNTL__L2_CACHE_PTE_ENDIAN_SWAP_MODE_MASK 0x0000000CL
+#define VM_L2_CNTL__L2_CACHE_PDE_ENDIAN_SWAP_MODE_MASK 0x00000030L
+#define VM_L2_CNTL__L2_PDE0_CACHE_TAG_GENERATION_MODE_MASK 0x00000100L
+#define VM_L2_CNTL__ENABLE_L2_PTE_CACHE_LRU_UPDATE_BY_WRITE_MASK 0x00000200L
+#define VM_L2_CNTL__ENABLE_L2_PDE0_CACHE_LRU_UPDATE_BY_WRITE_MASK 0x00000400L
+#define VM_L2_CNTL__ENABLE_DEFAULT_PAGE_OUT_TO_SYSTEM_MEMORY_MASK 0x00000800L
+#define VM_L2_CNTL__L2_PDE0_CACHE_SPLIT_MODE_MASK 0x00007000L
+#define VM_L2_CNTL__EFFECTIVE_L2_QUEUE_SIZE_MASK 0x00038000L
+#define VM_L2_CNTL__PDE_FAULT_CLASSIFICATION_MASK 0x00040000L
+#define VM_L2_CNTL__CONTEXT1_IDENTITY_ACCESS_MODE_MASK 0x00180000L
+#define VM_L2_CNTL__IDENTITY_MODE_FRAGMENT_SIZE_MASK 0x03E00000L
+#define VM_L2_CNTL__L2_PTE_CACHE_ADDR_MODE_MASK 0x0C000000L
+//VM_L2_CNTL2
+#define VM_L2_CNTL2__INVALIDATE_ALL_L1_TLBS__SHIFT 0x0
+#define VM_L2_CNTL2__INVALIDATE_L2_CACHE__SHIFT 0x1
+#define VM_L2_CNTL2__DISABLE_INVALIDATE_PER_DOMAIN__SHIFT 0x15
+#define VM_L2_CNTL2__DISABLE_BIGK_CACHE_OPTIMIZATION__SHIFT 0x16
+#define VM_L2_CNTL2__L2_PTE_CACHE_VMID_MODE__SHIFT 0x17
+#define VM_L2_CNTL2__INVALIDATE_CACHE_MODE__SHIFT 0x1a
+#define VM_L2_CNTL2__PDE_CACHE_EFFECTIVE_SIZE__SHIFT 0x1c
+#define VM_L2_CNTL2__INVALIDATE_ALL_L1_TLBS_MASK 0x00000001L
+#define VM_L2_CNTL2__INVALIDATE_L2_CACHE_MASK 0x00000002L
+#define VM_L2_CNTL2__DISABLE_INVALIDATE_PER_DOMAIN_MASK 0x00200000L
+#define VM_L2_CNTL2__DISABLE_BIGK_CACHE_OPTIMIZATION_MASK 0x00400000L
+#define VM_L2_CNTL2__L2_PTE_CACHE_VMID_MODE_MASK 0x03800000L
+#define VM_L2_CNTL2__INVALIDATE_CACHE_MODE_MASK 0x0C000000L
+#define VM_L2_CNTL2__PDE_CACHE_EFFECTIVE_SIZE_MASK 0x70000000L
+//VM_L2_CNTL3
+#define VM_L2_CNTL3__BANK_SELECT__SHIFT 0x0
+#define VM_L2_CNTL3__L2_CACHE_UPDATE_MODE__SHIFT 0x6
+#define VM_L2_CNTL3__L2_CACHE_UPDATE_WILDCARD_REFERENCE_VALUE__SHIFT 0x8
+#define VM_L2_CNTL3__L2_CACHE_BIGK_FRAGMENT_SIZE__SHIFT 0xf
+#define VM_L2_CNTL3__L2_CACHE_BIGK_ASSOCIATIVITY__SHIFT 0x14
+#define VM_L2_CNTL3__L2_CACHE_4K_EFFECTIVE_SIZE__SHIFT 0x15
+#define VM_L2_CNTL3__L2_CACHE_BIGK_EFFECTIVE_SIZE__SHIFT 0x18
+#define VM_L2_CNTL3__L2_CACHE_4K_FORCE_MISS__SHIFT 0x1c
+#define VM_L2_CNTL3__L2_CACHE_BIGK_FORCE_MISS__SHIFT 0x1d
+#define VM_L2_CNTL3__PDE_CACHE_FORCE_MISS__SHIFT 0x1e
+#define VM_L2_CNTL3__L2_CACHE_4K_ASSOCIATIVITY__SHIFT 0x1f
+#define VM_L2_CNTL3__BANK_SELECT_MASK 0x0000003FL
+#define VM_L2_CNTL3__L2_CACHE_UPDATE_MODE_MASK 0x000000C0L
+#define VM_L2_CNTL3__L2_CACHE_UPDATE_WILDCARD_REFERENCE_VALUE_MASK 0x00001F00L
+#define VM_L2_CNTL3__L2_CACHE_BIGK_FRAGMENT_SIZE_MASK 0x000F8000L
+#define VM_L2_CNTL3__L2_CACHE_BIGK_ASSOCIATIVITY_MASK 0x00100000L
+#define VM_L2_CNTL3__L2_CACHE_4K_EFFECTIVE_SIZE_MASK 0x00E00000L
+#define VM_L2_CNTL3__L2_CACHE_BIGK_EFFECTIVE_SIZE_MASK 0x0F000000L
+#define VM_L2_CNTL3__L2_CACHE_4K_FORCE_MISS_MASK 0x10000000L
+#define VM_L2_CNTL3__L2_CACHE_BIGK_FORCE_MISS_MASK 0x20000000L
+#define VM_L2_CNTL3__PDE_CACHE_FORCE_MISS_MASK 0x40000000L
+#define VM_L2_CNTL3__L2_CACHE_4K_ASSOCIATIVITY_MASK 0x80000000L
+//VM_L2_STATUS
+#define VM_L2_STATUS__L2_BUSY__SHIFT 0x0
+#define VM_L2_STATUS__CONTEXT_DOMAIN_BUSY__SHIFT 0x1
+#define VM_L2_STATUS__FOUND_4K_PTE_CACHE_PARITY_ERRORS__SHIFT 0x11
+#define VM_L2_STATUS__FOUND_BIGK_PTE_CACHE_PARITY_ERRORS__SHIFT 0x12
+#define VM_L2_STATUS__FOUND_PDE0_CACHE_PARITY_ERRORS__SHIFT 0x13
+#define VM_L2_STATUS__FOUND_PDE1_CACHE_PARITY_ERRORS__SHIFT 0x14
+#define VM_L2_STATUS__FOUND_PDE2_CACHE_PARITY_ERRORS__SHIFT 0x15
+#define VM_L2_STATUS__L2_BUSY_MASK 0x00000001L
+#define VM_L2_STATUS__CONTEXT_DOMAIN_BUSY_MASK 0x0001FFFEL
+#define VM_L2_STATUS__FOUND_4K_PTE_CACHE_PARITY_ERRORS_MASK 0x00020000L
+#define VM_L2_STATUS__FOUND_BIGK_PTE_CACHE_PARITY_ERRORS_MASK 0x00040000L
+#define VM_L2_STATUS__FOUND_PDE0_CACHE_PARITY_ERRORS_MASK 0x00080000L
+#define VM_L2_STATUS__FOUND_PDE1_CACHE_PARITY_ERRORS_MASK 0x00100000L
+#define VM_L2_STATUS__FOUND_PDE2_CACHE_PARITY_ERRORS_MASK 0x00200000L
+//VM_DUMMY_PAGE_FAULT_CNTL
+#define VM_DUMMY_PAGE_FAULT_CNTL__DUMMY_PAGE_FAULT_ENABLE__SHIFT 0x0
+#define VM_DUMMY_PAGE_FAULT_CNTL__DUMMY_PAGE_ADDRESS_LOGICAL__SHIFT 0x1
+#define VM_DUMMY_PAGE_FAULT_CNTL__DUMMY_PAGE_COMPARE_MSBS__SHIFT 0x2
+#define VM_DUMMY_PAGE_FAULT_CNTL__DUMMY_PAGE_FAULT_ENABLE_MASK 0x00000001L
+#define VM_DUMMY_PAGE_FAULT_CNTL__DUMMY_PAGE_ADDRESS_LOGICAL_MASK 0x00000002L
+#define VM_DUMMY_PAGE_FAULT_CNTL__DUMMY_PAGE_COMPARE_MSBS_MASK 0x000000FCL
+//VM_DUMMY_PAGE_FAULT_ADDR_LO32
+#define VM_DUMMY_PAGE_FAULT_ADDR_LO32__DUMMY_PAGE_ADDR_LO32__SHIFT 0x0
+#define VM_DUMMY_PAGE_FAULT_ADDR_LO32__DUMMY_PAGE_ADDR_LO32_MASK 0xFFFFFFFFL
+//VM_DUMMY_PAGE_FAULT_ADDR_HI32
+#define VM_DUMMY_PAGE_FAULT_ADDR_HI32__DUMMY_PAGE_ADDR_HI4__SHIFT 0x0
+#define VM_DUMMY_PAGE_FAULT_ADDR_HI32__DUMMY_PAGE_ADDR_HI4_MASK 0x0000000FL
+//VM_L2_PROTECTION_FAULT_CNTL
+#define VM_L2_PROTECTION_FAULT_CNTL__CLEAR_PROTECTION_FAULT_STATUS_ADDR__SHIFT 0x0
+#define VM_L2_PROTECTION_FAULT_CNTL__ALLOW_SUBSEQUENT_PROTECTION_FAULT_STATUS_ADDR_UPDATES__SHIFT 0x1
+#define VM_L2_PROTECTION_FAULT_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x2
+#define VM_L2_PROTECTION_FAULT_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x3
+#define VM_L2_PROTECTION_FAULT_CNTL__PDE1_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x4
+#define VM_L2_PROTECTION_FAULT_CNTL__PDE2_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x5
+#define VM_L2_PROTECTION_FAULT_CNTL__TRANSLATE_FURTHER_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x6
+#define VM_L2_PROTECTION_FAULT_CNTL__NACK_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x7
+#define VM_L2_PROTECTION_FAULT_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x8
+#define VM_L2_PROTECTION_FAULT_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x9
+#define VM_L2_PROTECTION_FAULT_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xa
+#define VM_L2_PROTECTION_FAULT_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xb
+#define VM_L2_PROTECTION_FAULT_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xc
+#define VM_L2_PROTECTION_FAULT_CNTL__CLIENT_ID_NO_RETRY_FAULT_INTERRUPT__SHIFT 0xd
+#define VM_L2_PROTECTION_FAULT_CNTL__OTHER_CLIENT_ID_NO_RETRY_FAULT_INTERRUPT__SHIFT 0x1d
+#define VM_L2_PROTECTION_FAULT_CNTL__CRASH_ON_NO_RETRY_FAULT__SHIFT 0x1e
+#define VM_L2_PROTECTION_FAULT_CNTL__CRASH_ON_RETRY_FAULT__SHIFT 0x1f
+#define VM_L2_PROTECTION_FAULT_CNTL__CLEAR_PROTECTION_FAULT_STATUS_ADDR_MASK 0x00000001L
+#define VM_L2_PROTECTION_FAULT_CNTL__ALLOW_SUBSEQUENT_PROTECTION_FAULT_STATUS_ADDR_UPDATES_MASK 0x00000002L
+#define VM_L2_PROTECTION_FAULT_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000004L
+#define VM_L2_PROTECTION_FAULT_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000008L
+#define VM_L2_PROTECTION_FAULT_CNTL__PDE1_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000010L
+#define VM_L2_PROTECTION_FAULT_CNTL__PDE2_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000020L
+#define VM_L2_PROTECTION_FAULT_CNTL__TRANSLATE_FURTHER_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000040L
+#define VM_L2_PROTECTION_FAULT_CNTL__NACK_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000080L
+#define VM_L2_PROTECTION_FAULT_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000100L
+#define VM_L2_PROTECTION_FAULT_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000200L
+#define VM_L2_PROTECTION_FAULT_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000400L
+#define VM_L2_PROTECTION_FAULT_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000800L
+#define VM_L2_PROTECTION_FAULT_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00001000L
+#define VM_L2_PROTECTION_FAULT_CNTL__CLIENT_ID_NO_RETRY_FAULT_INTERRUPT_MASK 0x1FFFE000L
+#define VM_L2_PROTECTION_FAULT_CNTL__OTHER_CLIENT_ID_NO_RETRY_FAULT_INTERRUPT_MASK 0x20000000L
+#define VM_L2_PROTECTION_FAULT_CNTL__CRASH_ON_NO_RETRY_FAULT_MASK 0x40000000L
+#define VM_L2_PROTECTION_FAULT_CNTL__CRASH_ON_RETRY_FAULT_MASK 0x80000000L
+//VM_L2_PROTECTION_FAULT_CNTL2
+#define VM_L2_PROTECTION_FAULT_CNTL2__CLIENT_ID_PRT_FAULT_INTERRUPT__SHIFT 0x0
+#define VM_L2_PROTECTION_FAULT_CNTL2__OTHER_CLIENT_ID_PRT_FAULT_INTERRUPT__SHIFT 0x10
+#define VM_L2_PROTECTION_FAULT_CNTL2__ACTIVE_PAGE_MIGRATION_PTE__SHIFT 0x11
+#define VM_L2_PROTECTION_FAULT_CNTL2__ACTIVE_PAGE_MIGRATION_PTE_READ_RETRY__SHIFT 0x12
+#define VM_L2_PROTECTION_FAULT_CNTL2__ENABLE_RETRY_FAULT_INTERRUPT__SHIFT 0x13
+#define VM_L2_PROTECTION_FAULT_CNTL2__CLIENT_ID_PRT_FAULT_INTERRUPT_MASK 0x0000FFFFL
+#define VM_L2_PROTECTION_FAULT_CNTL2__OTHER_CLIENT_ID_PRT_FAULT_INTERRUPT_MASK 0x00010000L
+#define VM_L2_PROTECTION_FAULT_CNTL2__ACTIVE_PAGE_MIGRATION_PTE_MASK 0x00020000L
+#define VM_L2_PROTECTION_FAULT_CNTL2__ACTIVE_PAGE_MIGRATION_PTE_READ_RETRY_MASK 0x00040000L
+#define VM_L2_PROTECTION_FAULT_CNTL2__ENABLE_RETRY_FAULT_INTERRUPT_MASK 0x00080000L
+//VM_L2_PROTECTION_FAULT_MM_CNTL3
+#define VM_L2_PROTECTION_FAULT_MM_CNTL3__VML1_READ_CLIENT_ID_NO_RETRY_FAULT_INTERRUPT__SHIFT 0x0
+#define VM_L2_PROTECTION_FAULT_MM_CNTL3__VML1_READ_CLIENT_ID_NO_RETRY_FAULT_INTERRUPT_MASK 0xFFFFFFFFL
+//VM_L2_PROTECTION_FAULT_MM_CNTL4
+#define VM_L2_PROTECTION_FAULT_MM_CNTL4__VML1_WRITE_CLIENT_ID_NO_RETRY_FAULT_INTERRUPT__SHIFT 0x0
+#define VM_L2_PROTECTION_FAULT_MM_CNTL4__VML1_WRITE_CLIENT_ID_NO_RETRY_FAULT_INTERRUPT_MASK 0xFFFFFFFFL
+//VM_L2_PROTECTION_FAULT_STATUS
+#define VM_L2_PROTECTION_FAULT_STATUS__MORE_FAULTS__SHIFT 0x0
+#define VM_L2_PROTECTION_FAULT_STATUS__WALKER_ERROR__SHIFT 0x1
+#define VM_L2_PROTECTION_FAULT_STATUS__PERMISSION_FAULTS__SHIFT 0x4
+#define VM_L2_PROTECTION_FAULT_STATUS__MAPPING_ERROR__SHIFT 0x8
+#define VM_L2_PROTECTION_FAULT_STATUS__CID__SHIFT 0x9
+#define VM_L2_PROTECTION_FAULT_STATUS__RW__SHIFT 0x12
+#define VM_L2_PROTECTION_FAULT_STATUS__ATOMIC__SHIFT 0x13
+#define VM_L2_PROTECTION_FAULT_STATUS__VMID__SHIFT 0x14
+#define VM_L2_PROTECTION_FAULT_STATUS__VF__SHIFT 0x18
+#define VM_L2_PROTECTION_FAULT_STATUS__VFID__SHIFT 0x19
+#define VM_L2_PROTECTION_FAULT_STATUS__UCE__SHIFT 0x1d
+#define VM_L2_PROTECTION_FAULT_STATUS__FED__SHIFT 0x1e
+#define VM_L2_PROTECTION_FAULT_STATUS__MORE_FAULTS_MASK 0x00000001L
+#define VM_L2_PROTECTION_FAULT_STATUS__WALKER_ERROR_MASK 0x0000000EL
+#define VM_L2_PROTECTION_FAULT_STATUS__PERMISSION_FAULTS_MASK 0x000000F0L
+#define VM_L2_PROTECTION_FAULT_STATUS__MAPPING_ERROR_MASK 0x00000100L
+#define VM_L2_PROTECTION_FAULT_STATUS__CID_MASK 0x0003FE00L
+#define VM_L2_PROTECTION_FAULT_STATUS__RW_MASK 0x00040000L
+#define VM_L2_PROTECTION_FAULT_STATUS__ATOMIC_MASK 0x00080000L
+#define VM_L2_PROTECTION_FAULT_STATUS__VMID_MASK 0x00F00000L
+#define VM_L2_PROTECTION_FAULT_STATUS__VF_MASK 0x01000000L
+#define VM_L2_PROTECTION_FAULT_STATUS__VFID_MASK 0x1E000000L
+#define VM_L2_PROTECTION_FAULT_STATUS__UCE_MASK 0x20000000L
+#define VM_L2_PROTECTION_FAULT_STATUS__FED_MASK 0x40000000L
+//VM_L2_PROTECTION_FAULT_ADDR_LO32
+#define VM_L2_PROTECTION_FAULT_ADDR_LO32__LOGICAL_PAGE_ADDR_LO32__SHIFT 0x0
+#define VM_L2_PROTECTION_FAULT_ADDR_LO32__LOGICAL_PAGE_ADDR_LO32_MASK 0xFFFFFFFFL
+//VM_L2_PROTECTION_FAULT_ADDR_HI32
+#define VM_L2_PROTECTION_FAULT_ADDR_HI32__LOGICAL_PAGE_ADDR_HI4__SHIFT 0x0
+#define VM_L2_PROTECTION_FAULT_ADDR_HI32__LOGICAL_PAGE_ADDR_HI4_MASK 0x0000000FL
+//VM_L2_PROTECTION_FAULT_DEFAULT_ADDR_LO32
+#define VM_L2_PROTECTION_FAULT_DEFAULT_ADDR_LO32__PHYSICAL_PAGE_ADDR_LO32__SHIFT 0x0
+#define VM_L2_PROTECTION_FAULT_DEFAULT_ADDR_LO32__PHYSICAL_PAGE_ADDR_LO32_MASK 0xFFFFFFFFL
+//VM_L2_PROTECTION_FAULT_DEFAULT_ADDR_HI32
+#define VM_L2_PROTECTION_FAULT_DEFAULT_ADDR_HI32__PHYSICAL_PAGE_ADDR_HI4__SHIFT 0x0
+#define VM_L2_PROTECTION_FAULT_DEFAULT_ADDR_HI32__PHYSICAL_PAGE_ADDR_HI4_MASK 0x0000000FL
+//VM_L2_CONTEXT1_IDENTITY_APERTURE_LOW_ADDR_LO32
+#define VM_L2_CONTEXT1_IDENTITY_APERTURE_LOW_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_L2_CONTEXT1_IDENTITY_APERTURE_LOW_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_L2_CONTEXT1_IDENTITY_APERTURE_LOW_ADDR_HI32
+#define VM_L2_CONTEXT1_IDENTITY_APERTURE_LOW_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_L2_CONTEXT1_IDENTITY_APERTURE_LOW_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_L2_CONTEXT1_IDENTITY_APERTURE_HIGH_ADDR_LO32
+#define VM_L2_CONTEXT1_IDENTITY_APERTURE_HIGH_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_L2_CONTEXT1_IDENTITY_APERTURE_HIGH_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_L2_CONTEXT1_IDENTITY_APERTURE_HIGH_ADDR_HI32
+#define VM_L2_CONTEXT1_IDENTITY_APERTURE_HIGH_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_L2_CONTEXT1_IDENTITY_APERTURE_HIGH_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_L2_CONTEXT_IDENTITY_PHYSICAL_OFFSET_LO32
+#define VM_L2_CONTEXT_IDENTITY_PHYSICAL_OFFSET_LO32__PHYSICAL_PAGE_OFFSET_LO32__SHIFT 0x0
+#define VM_L2_CONTEXT_IDENTITY_PHYSICAL_OFFSET_LO32__PHYSICAL_PAGE_OFFSET_LO32_MASK 0xFFFFFFFFL
+//VM_L2_CONTEXT_IDENTITY_PHYSICAL_OFFSET_HI32
+#define VM_L2_CONTEXT_IDENTITY_PHYSICAL_OFFSET_HI32__PHYSICAL_PAGE_OFFSET_HI4__SHIFT 0x0
+#define VM_L2_CONTEXT_IDENTITY_PHYSICAL_OFFSET_HI32__PHYSICAL_PAGE_OFFSET_HI4_MASK 0x0000000FL
+//VM_L2_CNTL4
+#define VM_L2_CNTL4__L2_CACHE_4K_PARTITION_COUNT__SHIFT 0x0
+#define VM_L2_CNTL4__VMC_TAP_PDE_REQUEST_PHYSICAL__SHIFT 0x6
+#define VM_L2_CNTL4__VMC_TAP_PTE_REQUEST_PHYSICAL__SHIFT 0x7
+#define VM_L2_CNTL4__MM_NONRT_IFIFO_ACTIVE_TRANSACTION_LIMIT__SHIFT 0x8
+#define VM_L2_CNTL4__MM_SOFTRT_IFIFO_ACTIVE_TRANSACTION_LIMIT__SHIFT 0x12
+#define VM_L2_CNTL4__BPM_CGCGLS_OVERRIDE__SHIFT 0x1c
+#define VM_L2_CNTL4__GC_CH_FGCG_OFF__SHIFT 0x1d
+#define VM_L2_CNTL4__VFIFO_HEAD_OF_QUEUE__SHIFT 0x1e
+#define VM_L2_CNTL4__L2_CACHE_4K_PARTITION_COUNT_MASK 0x0000003FL
+#define VM_L2_CNTL4__VMC_TAP_PDE_REQUEST_PHYSICAL_MASK 0x00000040L
+#define VM_L2_CNTL4__VMC_TAP_PTE_REQUEST_PHYSICAL_MASK 0x00000080L
+#define VM_L2_CNTL4__MM_NONRT_IFIFO_ACTIVE_TRANSACTION_LIMIT_MASK 0x0003FF00L
+#define VM_L2_CNTL4__MM_SOFTRT_IFIFO_ACTIVE_TRANSACTION_LIMIT_MASK 0x0FFC0000L
+#define VM_L2_CNTL4__BPM_CGCGLS_OVERRIDE_MASK 0x10000000L
+#define VM_L2_CNTL4__GC_CH_FGCG_OFF_MASK 0x20000000L
+#define VM_L2_CNTL4__VFIFO_HEAD_OF_QUEUE_MASK 0x40000000L
+//VM_L2_CNTL5
+#define VM_L2_CNTL5__WALKER_FETCH_PDE_MTYPE_ENABLE__SHIFT 0x0
+#define VM_L2_CNTL5__WALKER_FETCH_PDE_NOALLOC_ENABLE__SHIFT 0x1
+#define VM_L2_CNTL5__WALKER_FETCH_PDE_MTYPE_ENABLE_MASK 0x00000001L
+#define VM_L2_CNTL5__WALKER_FETCH_PDE_NOALLOC_ENABLE_MASK 0x00000002L
+//VM_L2_MM_GROUP_RT_CLASSES
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_0_RT_CLASS__SHIFT 0x0
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_1_RT_CLASS__SHIFT 0x1
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_2_RT_CLASS__SHIFT 0x2
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_3_RT_CLASS__SHIFT 0x3
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_4_RT_CLASS__SHIFT 0x4
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_5_RT_CLASS__SHIFT 0x5
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_6_RT_CLASS__SHIFT 0x6
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_7_RT_CLASS__SHIFT 0x7
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_8_RT_CLASS__SHIFT 0x8
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_9_RT_CLASS__SHIFT 0x9
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_10_RT_CLASS__SHIFT 0xa
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_11_RT_CLASS__SHIFT 0xb
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_12_RT_CLASS__SHIFT 0xc
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_13_RT_CLASS__SHIFT 0xd
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_14_RT_CLASS__SHIFT 0xe
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_15_RT_CLASS__SHIFT 0xf
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_16_RT_CLASS__SHIFT 0x10
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_17_RT_CLASS__SHIFT 0x11
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_18_RT_CLASS__SHIFT 0x12
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_19_RT_CLASS__SHIFT 0x13
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_20_RT_CLASS__SHIFT 0x14
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_21_RT_CLASS__SHIFT 0x15
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_22_RT_CLASS__SHIFT 0x16
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_23_RT_CLASS__SHIFT 0x17
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_24_RT_CLASS__SHIFT 0x18
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_25_RT_CLASS__SHIFT 0x19
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_26_RT_CLASS__SHIFT 0x1a
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_27_RT_CLASS__SHIFT 0x1b
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_28_RT_CLASS__SHIFT 0x1c
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_29_RT_CLASS__SHIFT 0x1d
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_30_RT_CLASS__SHIFT 0x1e
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_31_RT_CLASS__SHIFT 0x1f
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_0_RT_CLASS_MASK 0x00000001L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_1_RT_CLASS_MASK 0x00000002L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_2_RT_CLASS_MASK 0x00000004L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_3_RT_CLASS_MASK 0x00000008L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_4_RT_CLASS_MASK 0x00000010L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_5_RT_CLASS_MASK 0x00000020L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_6_RT_CLASS_MASK 0x00000040L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_7_RT_CLASS_MASK 0x00000080L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_8_RT_CLASS_MASK 0x00000100L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_9_RT_CLASS_MASK 0x00000200L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_10_RT_CLASS_MASK 0x00000400L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_11_RT_CLASS_MASK 0x00000800L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_12_RT_CLASS_MASK 0x00001000L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_13_RT_CLASS_MASK 0x00002000L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_14_RT_CLASS_MASK 0x00004000L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_15_RT_CLASS_MASK 0x00008000L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_16_RT_CLASS_MASK 0x00010000L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_17_RT_CLASS_MASK 0x00020000L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_18_RT_CLASS_MASK 0x00040000L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_19_RT_CLASS_MASK 0x00080000L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_20_RT_CLASS_MASK 0x00100000L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_21_RT_CLASS_MASK 0x00200000L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_22_RT_CLASS_MASK 0x00400000L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_23_RT_CLASS_MASK 0x00800000L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_24_RT_CLASS_MASK 0x01000000L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_25_RT_CLASS_MASK 0x02000000L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_26_RT_CLASS_MASK 0x04000000L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_27_RT_CLASS_MASK 0x08000000L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_28_RT_CLASS_MASK 0x10000000L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_29_RT_CLASS_MASK 0x20000000L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_30_RT_CLASS_MASK 0x40000000L
+#define VM_L2_MM_GROUP_RT_CLASSES__GROUP_31_RT_CLASS_MASK 0x80000000L
+//VM_L2_BANK_SELECT_RESERVED_CID
+#define VM_L2_BANK_SELECT_RESERVED_CID__RESERVED_READ_CLIENT_ID__SHIFT 0x0
+#define VM_L2_BANK_SELECT_RESERVED_CID__RESERVED_WRITE_CLIENT_ID__SHIFT 0xa
+#define VM_L2_BANK_SELECT_RESERVED_CID__ENABLE__SHIFT 0x14
+#define VM_L2_BANK_SELECT_RESERVED_CID__RESERVED_CACHE_INVALIDATION_MODE__SHIFT 0x18
+#define VM_L2_BANK_SELECT_RESERVED_CID__RESERVED_CACHE_PRIVATE_INVALIDATION__SHIFT 0x19
+#define VM_L2_BANK_SELECT_RESERVED_CID__RESERVED_READ_CLIENT_ID_MASK 0x000001FFL
+#define VM_L2_BANK_SELECT_RESERVED_CID__RESERVED_WRITE_CLIENT_ID_MASK 0x0007FC00L
+#define VM_L2_BANK_SELECT_RESERVED_CID__ENABLE_MASK 0x00100000L
+#define VM_L2_BANK_SELECT_RESERVED_CID__RESERVED_CACHE_INVALIDATION_MODE_MASK 0x01000000L
+#define VM_L2_BANK_SELECT_RESERVED_CID__RESERVED_CACHE_PRIVATE_INVALIDATION_MASK 0x02000000L
+//VM_L2_BANK_SELECT_RESERVED_CID2
+#define VM_L2_BANK_SELECT_RESERVED_CID2__RESERVED_READ_CLIENT_ID__SHIFT 0x0
+#define VM_L2_BANK_SELECT_RESERVED_CID2__RESERVED_WRITE_CLIENT_ID__SHIFT 0xa
+#define VM_L2_BANK_SELECT_RESERVED_CID2__ENABLE__SHIFT 0x14
+#define VM_L2_BANK_SELECT_RESERVED_CID2__RESERVED_CACHE_INVALIDATION_MODE__SHIFT 0x18
+#define VM_L2_BANK_SELECT_RESERVED_CID2__RESERVED_CACHE_PRIVATE_INVALIDATION__SHIFT 0x19
+#define VM_L2_BANK_SELECT_RESERVED_CID2__RESERVED_READ_CLIENT_ID_MASK 0x000001FFL
+#define VM_L2_BANK_SELECT_RESERVED_CID2__RESERVED_WRITE_CLIENT_ID_MASK 0x0007FC00L
+#define VM_L2_BANK_SELECT_RESERVED_CID2__ENABLE_MASK 0x00100000L
+#define VM_L2_BANK_SELECT_RESERVED_CID2__RESERVED_CACHE_INVALIDATION_MODE_MASK 0x01000000L
+#define VM_L2_BANK_SELECT_RESERVED_CID2__RESERVED_CACHE_PRIVATE_INVALIDATION_MASK 0x02000000L
+//VM_L2_CACHE_PARITY_CNTL
+#define VM_L2_CACHE_PARITY_CNTL__ENABLE_PARITY_CHECKS_IN_4K_PTE_CACHES__SHIFT 0x0
+#define VM_L2_CACHE_PARITY_CNTL__ENABLE_PARITY_CHECKS_IN_BIGK_PTE_CACHES__SHIFT 0x1
+#define VM_L2_CACHE_PARITY_CNTL__ENABLE_PARITY_CHECKS_IN_PDE_CACHES__SHIFT 0x2
+#define VM_L2_CACHE_PARITY_CNTL__FORCE_PARITY_MISMATCH_IN_4K_PTE_CACHE__SHIFT 0x3
+#define VM_L2_CACHE_PARITY_CNTL__FORCE_PARITY_MISMATCH_IN_BIGK_PTE_CACHE__SHIFT 0x4
+#define VM_L2_CACHE_PARITY_CNTL__FORCE_PARITY_MISMATCH_IN_PDE_CACHE__SHIFT 0x5
+#define VM_L2_CACHE_PARITY_CNTL__FORCE_CACHE_BANK__SHIFT 0x6
+#define VM_L2_CACHE_PARITY_CNTL__FORCE_CACHE_NUMBER__SHIFT 0x9
+#define VM_L2_CACHE_PARITY_CNTL__FORCE_CACHE_ASSOC__SHIFT 0xc
+#define VM_L2_CACHE_PARITY_CNTL__ENABLE_PARITY_CHECKS_IN_4K_PTE_CACHES_MASK 0x00000001L
+#define VM_L2_CACHE_PARITY_CNTL__ENABLE_PARITY_CHECKS_IN_BIGK_PTE_CACHES_MASK 0x00000002L
+#define VM_L2_CACHE_PARITY_CNTL__ENABLE_PARITY_CHECKS_IN_PDE_CACHES_MASK 0x00000004L
+#define VM_L2_CACHE_PARITY_CNTL__FORCE_PARITY_MISMATCH_IN_4K_PTE_CACHE_MASK 0x00000008L
+#define VM_L2_CACHE_PARITY_CNTL__FORCE_PARITY_MISMATCH_IN_BIGK_PTE_CACHE_MASK 0x00000010L
+#define VM_L2_CACHE_PARITY_CNTL__FORCE_PARITY_MISMATCH_IN_PDE_CACHE_MASK 0x00000020L
+#define VM_L2_CACHE_PARITY_CNTL__FORCE_CACHE_BANK_MASK 0x000001C0L
+#define VM_L2_CACHE_PARITY_CNTL__FORCE_CACHE_NUMBER_MASK 0x00000E00L
+#define VM_L2_CACHE_PARITY_CNTL__FORCE_CACHE_ASSOC_MASK 0x0000F000L
+//VM_L2_CGTT_CLK_CTRL
+#define VM_L2_CGTT_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define VM_L2_CGTT_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define VM_L2_CGTT_CLK_CTRL__MGLS_OVERRIDE__SHIFT 0xf
+#define VM_L2_CGTT_CLK_CTRL__SOFT_STALL_OVERRIDE__SHIFT 0x10
+#define VM_L2_CGTT_CLK_CTRL__SOFT_OVERRIDE__SHIFT 0x18
+#define VM_L2_CGTT_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define VM_L2_CGTT_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define VM_L2_CGTT_CLK_CTRL__MGLS_OVERRIDE_MASK 0x00008000L
+#define VM_L2_CGTT_CLK_CTRL__SOFT_STALL_OVERRIDE_MASK 0x00FF0000L
+#define VM_L2_CGTT_CLK_CTRL__SOFT_OVERRIDE_MASK 0xFF000000L
+//VM_L2_CGTT_BUSY_CTRL
+#define VM_L2_CGTT_BUSY_CTRL__READ_DELAY__SHIFT 0x0
+#define VM_L2_CGTT_BUSY_CTRL__ALWAYS_BUSY__SHIFT 0x4
+#define VM_L2_CGTT_BUSY_CTRL__READ_DELAY_MASK 0x0000000FL
+#define VM_L2_CGTT_BUSY_CTRL__ALWAYS_BUSY_MASK 0x00000010L
+//VML2_MEM_ECC_INDEX
+#define VML2_MEM_ECC_INDEX__INDEX__SHIFT 0x0
+#define VML2_MEM_ECC_INDEX__INDEX_MASK 0x000000FFL
+//VML2_WALKER_MEM_ECC_INDEX
+#define VML2_WALKER_MEM_ECC_INDEX__INDEX__SHIFT 0x0
+#define VML2_WALKER_MEM_ECC_INDEX__INDEX_MASK 0x000000FFL
+//UTCL2_MEM_ECC_INDEX
+#define UTCL2_MEM_ECC_INDEX__INDEX__SHIFT 0x0
+#define UTCL2_MEM_ECC_INDEX__INDEX_MASK 0x000000FFL
+//VML2_MEM_ECC_CNTL
+#define VML2_MEM_ECC_CNTL__INJECT_DELAY__SHIFT 0x0
+#define VML2_MEM_ECC_CNTL__DSM_IRRITATOR_DATA__SHIFT 0x6
+#define VML2_MEM_ECC_CNTL__ENABLE_SINGLE_WRITE__SHIFT 0x8
+#define VML2_MEM_ECC_CNTL__ENABLE_ERROR_INJECT__SHIFT 0x9
+#define VML2_MEM_ECC_CNTL__SELECT_INJECT_DELAY__SHIFT 0xb
+#define VML2_MEM_ECC_CNTL__SEC_COUNT__SHIFT 0xc
+#define VML2_MEM_ECC_CNTL__DED_COUNT__SHIFT 0xe
+#define VML2_MEM_ECC_CNTL__WRITE_COUNTERS__SHIFT 0x10
+#define VML2_MEM_ECC_CNTL__TEST_FUE__SHIFT 0x11
+#define VML2_MEM_ECC_CNTL__INJECT_DELAY_MASK 0x0000003FL
+#define VML2_MEM_ECC_CNTL__DSM_IRRITATOR_DATA_MASK 0x000000C0L
+#define VML2_MEM_ECC_CNTL__ENABLE_SINGLE_WRITE_MASK 0x00000100L
+#define VML2_MEM_ECC_CNTL__ENABLE_ERROR_INJECT_MASK 0x00000600L
+#define VML2_MEM_ECC_CNTL__SELECT_INJECT_DELAY_MASK 0x00000800L
+#define VML2_MEM_ECC_CNTL__SEC_COUNT_MASK 0x00003000L
+#define VML2_MEM_ECC_CNTL__DED_COUNT_MASK 0x0000C000L
+#define VML2_MEM_ECC_CNTL__WRITE_COUNTERS_MASK 0x00010000L
+#define VML2_MEM_ECC_CNTL__TEST_FUE_MASK 0x00020000L
+//VML2_WALKER_MEM_ECC_CNTL
+#define VML2_WALKER_MEM_ECC_CNTL__INJECT_DELAY__SHIFT 0x0
+#define VML2_WALKER_MEM_ECC_CNTL__DSM_IRRITATOR_DATA__SHIFT 0x6
+#define VML2_WALKER_MEM_ECC_CNTL__ENABLE_SINGLE_WRITE__SHIFT 0x8
+#define VML2_WALKER_MEM_ECC_CNTL__ENABLE_ERROR_INJECT__SHIFT 0x9
+#define VML2_WALKER_MEM_ECC_CNTL__SELECT_INJECT_DELAY__SHIFT 0xb
+#define VML2_WALKER_MEM_ECC_CNTL__SEC_COUNT__SHIFT 0xc
+#define VML2_WALKER_MEM_ECC_CNTL__DED_COUNT__SHIFT 0xe
+#define VML2_WALKER_MEM_ECC_CNTL__WRITE_COUNTERS__SHIFT 0x10
+#define VML2_WALKER_MEM_ECC_CNTL__TEST_FUE__SHIFT 0x11
+#define VML2_WALKER_MEM_ECC_CNTL__INJECT_DELAY_MASK 0x0000003FL
+#define VML2_WALKER_MEM_ECC_CNTL__DSM_IRRITATOR_DATA_MASK 0x000000C0L
+#define VML2_WALKER_MEM_ECC_CNTL__ENABLE_SINGLE_WRITE_MASK 0x00000100L
+#define VML2_WALKER_MEM_ECC_CNTL__ENABLE_ERROR_INJECT_MASK 0x00000600L
+#define VML2_WALKER_MEM_ECC_CNTL__SELECT_INJECT_DELAY_MASK 0x00000800L
+#define VML2_WALKER_MEM_ECC_CNTL__SEC_COUNT_MASK 0x00003000L
+#define VML2_WALKER_MEM_ECC_CNTL__DED_COUNT_MASK 0x0000C000L
+#define VML2_WALKER_MEM_ECC_CNTL__WRITE_COUNTERS_MASK 0x00010000L
+#define VML2_WALKER_MEM_ECC_CNTL__TEST_FUE_MASK 0x00020000L
+//UTCL2_MEM_ECC_CNTL
+#define UTCL2_MEM_ECC_CNTL__INJECT_DELAY__SHIFT 0x0
+#define UTCL2_MEM_ECC_CNTL__DSM_IRRITATOR_DATA__SHIFT 0x6
+#define UTCL2_MEM_ECC_CNTL__ENABLE_SINGLE_WRITE__SHIFT 0x8
+#define UTCL2_MEM_ECC_CNTL__ENABLE_ERROR_INJECT__SHIFT 0x9
+#define UTCL2_MEM_ECC_CNTL__SELECT_INJECT_DELAY__SHIFT 0xb
+#define UTCL2_MEM_ECC_CNTL__SEC_COUNT__SHIFT 0xc
+#define UTCL2_MEM_ECC_CNTL__DED_COUNT__SHIFT 0xe
+#define UTCL2_MEM_ECC_CNTL__WRITE_COUNTERS__SHIFT 0x10
+#define UTCL2_MEM_ECC_CNTL__TEST_FUE__SHIFT 0x11
+#define UTCL2_MEM_ECC_CNTL__INJECT_DELAY_MASK 0x0000003FL
+#define UTCL2_MEM_ECC_CNTL__DSM_IRRITATOR_DATA_MASK 0x000000C0L
+#define UTCL2_MEM_ECC_CNTL__ENABLE_SINGLE_WRITE_MASK 0x00000100L
+#define UTCL2_MEM_ECC_CNTL__ENABLE_ERROR_INJECT_MASK 0x00000600L
+#define UTCL2_MEM_ECC_CNTL__SELECT_INJECT_DELAY_MASK 0x00000800L
+#define UTCL2_MEM_ECC_CNTL__SEC_COUNT_MASK 0x00003000L
+#define UTCL2_MEM_ECC_CNTL__DED_COUNT_MASK 0x0000C000L
+#define UTCL2_MEM_ECC_CNTL__WRITE_COUNTERS_MASK 0x00010000L
+#define UTCL2_MEM_ECC_CNTL__TEST_FUE_MASK 0x00020000L
+//VML2_MEM_ECC_STATUS
+#define VML2_MEM_ECC_STATUS__UCE__SHIFT 0x0
+#define VML2_MEM_ECC_STATUS__FED__SHIFT 0x1
+#define VML2_MEM_ECC_STATUS__UCE_MASK 0x00000001L
+#define VML2_MEM_ECC_STATUS__FED_MASK 0x00000002L
+//VML2_WALKER_MEM_ECC_STATUS
+#define VML2_WALKER_MEM_ECC_STATUS__UCE__SHIFT 0x0
+#define VML2_WALKER_MEM_ECC_STATUS__FED__SHIFT 0x1
+#define VML2_WALKER_MEM_ECC_STATUS__UCE_MASK 0x00000001L
+#define VML2_WALKER_MEM_ECC_STATUS__FED_MASK 0x00000002L
+//UTCL2_MEM_ECC_STATUS
+#define UTCL2_MEM_ECC_STATUS__UCE__SHIFT 0x0
+#define UTCL2_MEM_ECC_STATUS__FED__SHIFT 0x1
+#define UTCL2_MEM_ECC_STATUS__UCE_MASK 0x00000001L
+#define UTCL2_MEM_ECC_STATUS__FED_MASK 0x00000002L
+//UTCL2_EDC_MODE
+#define UTCL2_EDC_MODE__FORCE_SEC_ON_DED__SHIFT 0xf
+#define UTCL2_EDC_MODE__COUNT_FED_OUT__SHIFT 0x10
+#define UTCL2_EDC_MODE__GATE_FUE__SHIFT 0x11
+#define UTCL2_EDC_MODE__DED_MODE__SHIFT 0x14
+#define UTCL2_EDC_MODE__PROP_FED__SHIFT 0x1d
+#define UTCL2_EDC_MODE__BYPASS__SHIFT 0x1f
+#define UTCL2_EDC_MODE__FORCE_SEC_ON_DED_MASK 0x00008000L
+#define UTCL2_EDC_MODE__COUNT_FED_OUT_MASK 0x00010000L
+#define UTCL2_EDC_MODE__GATE_FUE_MASK 0x00020000L
+#define UTCL2_EDC_MODE__DED_MODE_MASK 0x00300000L
+#define UTCL2_EDC_MODE__PROP_FED_MASK 0x20000000L
+#define UTCL2_EDC_MODE__BYPASS_MASK 0x80000000L
+//UTCL2_EDC_CONFIG
+#define UTCL2_EDC_CONFIG__WRITE_DIS__SHIFT 0x0
+#define UTCL2_EDC_CONFIG__DIS_EDC__SHIFT 0x1
+#define UTCL2_EDC_CONFIG__WRITE_DIS_MASK 0x00000001L
+#define UTCL2_EDC_CONFIG__DIS_EDC_MASK 0x00000002L
+
+
+// addressBlock: aid_mmhub_utcl2_vml2vcdec
+//VM_CONTEXT0_CNTL
+#define VM_CONTEXT0_CNTL__ENABLE_CONTEXT__SHIFT 0x0
+#define VM_CONTEXT0_CNTL__PAGE_TABLE_DEPTH__SHIFT 0x1
+#define VM_CONTEXT0_CNTL__PAGE_TABLE_BLOCK_SIZE__SHIFT 0x3
+#define VM_CONTEXT0_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT__SHIFT 0x7
+#define VM_CONTEXT0_CNTL__RETRY_OTHER_FAULT__SHIFT 0x8
+#define VM_CONTEXT0_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x9
+#define VM_CONTEXT0_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xa
+#define VM_CONTEXT0_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xb
+#define VM_CONTEXT0_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xc
+#define VM_CONTEXT0_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xd
+#define VM_CONTEXT0_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xe
+#define VM_CONTEXT0_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xf
+#define VM_CONTEXT0_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x10
+#define VM_CONTEXT0_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x11
+#define VM_CONTEXT0_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x12
+#define VM_CONTEXT0_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x13
+#define VM_CONTEXT0_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x14
+#define VM_CONTEXT0_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x15
+#define VM_CONTEXT0_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x16
+#define VM_CONTEXT0_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x17
+#define VM_CONTEXT0_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x18
+#define VM_CONTEXT0_CNTL__ENABLE_CONTEXT_MASK 0x00000001L
+#define VM_CONTEXT0_CNTL__PAGE_TABLE_DEPTH_MASK 0x00000006L
+#define VM_CONTEXT0_CNTL__PAGE_TABLE_BLOCK_SIZE_MASK 0x00000078L
+#define VM_CONTEXT0_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT_MASK 0x00000080L
+#define VM_CONTEXT0_CNTL__RETRY_OTHER_FAULT_MASK 0x00000100L
+#define VM_CONTEXT0_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000200L
+#define VM_CONTEXT0_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000400L
+#define VM_CONTEXT0_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000800L
+#define VM_CONTEXT0_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00001000L
+#define VM_CONTEXT0_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00002000L
+#define VM_CONTEXT0_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00004000L
+#define VM_CONTEXT0_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00008000L
+#define VM_CONTEXT0_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00010000L
+#define VM_CONTEXT0_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00020000L
+#define VM_CONTEXT0_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00040000L
+#define VM_CONTEXT0_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00080000L
+#define VM_CONTEXT0_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00100000L
+#define VM_CONTEXT0_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00200000L
+#define VM_CONTEXT0_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00400000L
+#define VM_CONTEXT0_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00800000L
+#define VM_CONTEXT0_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x01000000L
+//VM_CONTEXT1_CNTL
+#define VM_CONTEXT1_CNTL__ENABLE_CONTEXT__SHIFT 0x0
+#define VM_CONTEXT1_CNTL__PAGE_TABLE_DEPTH__SHIFT 0x1
+#define VM_CONTEXT1_CNTL__PAGE_TABLE_BLOCK_SIZE__SHIFT 0x3
+#define VM_CONTEXT1_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT__SHIFT 0x7
+#define VM_CONTEXT1_CNTL__RETRY_OTHER_FAULT__SHIFT 0x8
+#define VM_CONTEXT1_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x9
+#define VM_CONTEXT1_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xa
+#define VM_CONTEXT1_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xb
+#define VM_CONTEXT1_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xc
+#define VM_CONTEXT1_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xd
+#define VM_CONTEXT1_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xe
+#define VM_CONTEXT1_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xf
+#define VM_CONTEXT1_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x10
+#define VM_CONTEXT1_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x11
+#define VM_CONTEXT1_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x12
+#define VM_CONTEXT1_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x13
+#define VM_CONTEXT1_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x14
+#define VM_CONTEXT1_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x15
+#define VM_CONTEXT1_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x16
+#define VM_CONTEXT1_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x17
+#define VM_CONTEXT1_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x18
+#define VM_CONTEXT1_CNTL__ENABLE_CONTEXT_MASK 0x00000001L
+#define VM_CONTEXT1_CNTL__PAGE_TABLE_DEPTH_MASK 0x00000006L
+#define VM_CONTEXT1_CNTL__PAGE_TABLE_BLOCK_SIZE_MASK 0x00000078L
+#define VM_CONTEXT1_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT_MASK 0x00000080L
+#define VM_CONTEXT1_CNTL__RETRY_OTHER_FAULT_MASK 0x00000100L
+#define VM_CONTEXT1_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000200L
+#define VM_CONTEXT1_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000400L
+#define VM_CONTEXT1_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000800L
+#define VM_CONTEXT1_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00001000L
+#define VM_CONTEXT1_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00002000L
+#define VM_CONTEXT1_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00004000L
+#define VM_CONTEXT1_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00008000L
+#define VM_CONTEXT1_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00010000L
+#define VM_CONTEXT1_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00020000L
+#define VM_CONTEXT1_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00040000L
+#define VM_CONTEXT1_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00080000L
+#define VM_CONTEXT1_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00100000L
+#define VM_CONTEXT1_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00200000L
+#define VM_CONTEXT1_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00400000L
+#define VM_CONTEXT1_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00800000L
+#define VM_CONTEXT1_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x01000000L
+//VM_CONTEXT2_CNTL
+#define VM_CONTEXT2_CNTL__ENABLE_CONTEXT__SHIFT 0x0
+#define VM_CONTEXT2_CNTL__PAGE_TABLE_DEPTH__SHIFT 0x1
+#define VM_CONTEXT2_CNTL__PAGE_TABLE_BLOCK_SIZE__SHIFT 0x3
+#define VM_CONTEXT2_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT__SHIFT 0x7
+#define VM_CONTEXT2_CNTL__RETRY_OTHER_FAULT__SHIFT 0x8
+#define VM_CONTEXT2_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x9
+#define VM_CONTEXT2_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xa
+#define VM_CONTEXT2_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xb
+#define VM_CONTEXT2_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xc
+#define VM_CONTEXT2_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xd
+#define VM_CONTEXT2_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xe
+#define VM_CONTEXT2_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xf
+#define VM_CONTEXT2_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x10
+#define VM_CONTEXT2_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x11
+#define VM_CONTEXT2_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x12
+#define VM_CONTEXT2_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x13
+#define VM_CONTEXT2_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x14
+#define VM_CONTEXT2_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x15
+#define VM_CONTEXT2_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x16
+#define VM_CONTEXT2_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x17
+#define VM_CONTEXT2_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x18
+#define VM_CONTEXT2_CNTL__ENABLE_CONTEXT_MASK 0x00000001L
+#define VM_CONTEXT2_CNTL__PAGE_TABLE_DEPTH_MASK 0x00000006L
+#define VM_CONTEXT2_CNTL__PAGE_TABLE_BLOCK_SIZE_MASK 0x00000078L
+#define VM_CONTEXT2_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT_MASK 0x00000080L
+#define VM_CONTEXT2_CNTL__RETRY_OTHER_FAULT_MASK 0x00000100L
+#define VM_CONTEXT2_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000200L
+#define VM_CONTEXT2_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000400L
+#define VM_CONTEXT2_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000800L
+#define VM_CONTEXT2_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00001000L
+#define VM_CONTEXT2_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00002000L
+#define VM_CONTEXT2_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00004000L
+#define VM_CONTEXT2_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00008000L
+#define VM_CONTEXT2_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00010000L
+#define VM_CONTEXT2_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00020000L
+#define VM_CONTEXT2_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00040000L
+#define VM_CONTEXT2_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00080000L
+#define VM_CONTEXT2_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00100000L
+#define VM_CONTEXT2_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00200000L
+#define VM_CONTEXT2_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00400000L
+#define VM_CONTEXT2_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00800000L
+#define VM_CONTEXT2_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x01000000L
+//VM_CONTEXT3_CNTL
+#define VM_CONTEXT3_CNTL__ENABLE_CONTEXT__SHIFT 0x0
+#define VM_CONTEXT3_CNTL__PAGE_TABLE_DEPTH__SHIFT 0x1
+#define VM_CONTEXT3_CNTL__PAGE_TABLE_BLOCK_SIZE__SHIFT 0x3
+#define VM_CONTEXT3_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT__SHIFT 0x7
+#define VM_CONTEXT3_CNTL__RETRY_OTHER_FAULT__SHIFT 0x8
+#define VM_CONTEXT3_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x9
+#define VM_CONTEXT3_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xa
+#define VM_CONTEXT3_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xb
+#define VM_CONTEXT3_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xc
+#define VM_CONTEXT3_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xd
+#define VM_CONTEXT3_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xe
+#define VM_CONTEXT3_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xf
+#define VM_CONTEXT3_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x10
+#define VM_CONTEXT3_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x11
+#define VM_CONTEXT3_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x12
+#define VM_CONTEXT3_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x13
+#define VM_CONTEXT3_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x14
+#define VM_CONTEXT3_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x15
+#define VM_CONTEXT3_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x16
+#define VM_CONTEXT3_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x17
+#define VM_CONTEXT3_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x18
+#define VM_CONTEXT3_CNTL__ENABLE_CONTEXT_MASK 0x00000001L
+#define VM_CONTEXT3_CNTL__PAGE_TABLE_DEPTH_MASK 0x00000006L
+#define VM_CONTEXT3_CNTL__PAGE_TABLE_BLOCK_SIZE_MASK 0x00000078L
+#define VM_CONTEXT3_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT_MASK 0x00000080L
+#define VM_CONTEXT3_CNTL__RETRY_OTHER_FAULT_MASK 0x00000100L
+#define VM_CONTEXT3_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000200L
+#define VM_CONTEXT3_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000400L
+#define VM_CONTEXT3_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000800L
+#define VM_CONTEXT3_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00001000L
+#define VM_CONTEXT3_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00002000L
+#define VM_CONTEXT3_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00004000L
+#define VM_CONTEXT3_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00008000L
+#define VM_CONTEXT3_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00010000L
+#define VM_CONTEXT3_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00020000L
+#define VM_CONTEXT3_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00040000L
+#define VM_CONTEXT3_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00080000L
+#define VM_CONTEXT3_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00100000L
+#define VM_CONTEXT3_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00200000L
+#define VM_CONTEXT3_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00400000L
+#define VM_CONTEXT3_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00800000L
+#define VM_CONTEXT3_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x01000000L
+//VM_CONTEXT4_CNTL
+#define VM_CONTEXT4_CNTL__ENABLE_CONTEXT__SHIFT 0x0
+#define VM_CONTEXT4_CNTL__PAGE_TABLE_DEPTH__SHIFT 0x1
+#define VM_CONTEXT4_CNTL__PAGE_TABLE_BLOCK_SIZE__SHIFT 0x3
+#define VM_CONTEXT4_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT__SHIFT 0x7
+#define VM_CONTEXT4_CNTL__RETRY_OTHER_FAULT__SHIFT 0x8
+#define VM_CONTEXT4_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x9
+#define VM_CONTEXT4_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xa
+#define VM_CONTEXT4_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xb
+#define VM_CONTEXT4_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xc
+#define VM_CONTEXT4_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xd
+#define VM_CONTEXT4_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xe
+#define VM_CONTEXT4_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xf
+#define VM_CONTEXT4_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x10
+#define VM_CONTEXT4_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x11
+#define VM_CONTEXT4_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x12
+#define VM_CONTEXT4_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x13
+#define VM_CONTEXT4_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x14
+#define VM_CONTEXT4_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x15
+#define VM_CONTEXT4_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x16
+#define VM_CONTEXT4_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x17
+#define VM_CONTEXT4_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x18
+#define VM_CONTEXT4_CNTL__ENABLE_CONTEXT_MASK 0x00000001L
+#define VM_CONTEXT4_CNTL__PAGE_TABLE_DEPTH_MASK 0x00000006L
+#define VM_CONTEXT4_CNTL__PAGE_TABLE_BLOCK_SIZE_MASK 0x00000078L
+#define VM_CONTEXT4_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT_MASK 0x00000080L
+#define VM_CONTEXT4_CNTL__RETRY_OTHER_FAULT_MASK 0x00000100L
+#define VM_CONTEXT4_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000200L
+#define VM_CONTEXT4_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000400L
+#define VM_CONTEXT4_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000800L
+#define VM_CONTEXT4_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00001000L
+#define VM_CONTEXT4_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00002000L
+#define VM_CONTEXT4_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00004000L
+#define VM_CONTEXT4_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00008000L
+#define VM_CONTEXT4_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00010000L
+#define VM_CONTEXT4_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00020000L
+#define VM_CONTEXT4_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00040000L
+#define VM_CONTEXT4_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00080000L
+#define VM_CONTEXT4_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00100000L
+#define VM_CONTEXT4_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00200000L
+#define VM_CONTEXT4_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00400000L
+#define VM_CONTEXT4_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00800000L
+#define VM_CONTEXT4_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x01000000L
+//VM_CONTEXT5_CNTL
+#define VM_CONTEXT5_CNTL__ENABLE_CONTEXT__SHIFT 0x0
+#define VM_CONTEXT5_CNTL__PAGE_TABLE_DEPTH__SHIFT 0x1
+#define VM_CONTEXT5_CNTL__PAGE_TABLE_BLOCK_SIZE__SHIFT 0x3
+#define VM_CONTEXT5_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT__SHIFT 0x7
+#define VM_CONTEXT5_CNTL__RETRY_OTHER_FAULT__SHIFT 0x8
+#define VM_CONTEXT5_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x9
+#define VM_CONTEXT5_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xa
+#define VM_CONTEXT5_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xb
+#define VM_CONTEXT5_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xc
+#define VM_CONTEXT5_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xd
+#define VM_CONTEXT5_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xe
+#define VM_CONTEXT5_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xf
+#define VM_CONTEXT5_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x10
+#define VM_CONTEXT5_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x11
+#define VM_CONTEXT5_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x12
+#define VM_CONTEXT5_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x13
+#define VM_CONTEXT5_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x14
+#define VM_CONTEXT5_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x15
+#define VM_CONTEXT5_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x16
+#define VM_CONTEXT5_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x17
+#define VM_CONTEXT5_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x18
+#define VM_CONTEXT5_CNTL__ENABLE_CONTEXT_MASK 0x00000001L
+#define VM_CONTEXT5_CNTL__PAGE_TABLE_DEPTH_MASK 0x00000006L
+#define VM_CONTEXT5_CNTL__PAGE_TABLE_BLOCK_SIZE_MASK 0x00000078L
+#define VM_CONTEXT5_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT_MASK 0x00000080L
+#define VM_CONTEXT5_CNTL__RETRY_OTHER_FAULT_MASK 0x00000100L
+#define VM_CONTEXT5_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000200L
+#define VM_CONTEXT5_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000400L
+#define VM_CONTEXT5_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000800L
+#define VM_CONTEXT5_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00001000L
+#define VM_CONTEXT5_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00002000L
+#define VM_CONTEXT5_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00004000L
+#define VM_CONTEXT5_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00008000L
+#define VM_CONTEXT5_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00010000L
+#define VM_CONTEXT5_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00020000L
+#define VM_CONTEXT5_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00040000L
+#define VM_CONTEXT5_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00080000L
+#define VM_CONTEXT5_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00100000L
+#define VM_CONTEXT5_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00200000L
+#define VM_CONTEXT5_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00400000L
+#define VM_CONTEXT5_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00800000L
+#define VM_CONTEXT5_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x01000000L
+//VM_CONTEXT6_CNTL
+#define VM_CONTEXT6_CNTL__ENABLE_CONTEXT__SHIFT 0x0
+#define VM_CONTEXT6_CNTL__PAGE_TABLE_DEPTH__SHIFT 0x1
+#define VM_CONTEXT6_CNTL__PAGE_TABLE_BLOCK_SIZE__SHIFT 0x3
+#define VM_CONTEXT6_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT__SHIFT 0x7
+#define VM_CONTEXT6_CNTL__RETRY_OTHER_FAULT__SHIFT 0x8
+#define VM_CONTEXT6_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x9
+#define VM_CONTEXT6_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xa
+#define VM_CONTEXT6_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xb
+#define VM_CONTEXT6_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xc
+#define VM_CONTEXT6_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xd
+#define VM_CONTEXT6_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xe
+#define VM_CONTEXT6_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xf
+#define VM_CONTEXT6_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x10
+#define VM_CONTEXT6_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x11
+#define VM_CONTEXT6_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x12
+#define VM_CONTEXT6_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x13
+#define VM_CONTEXT6_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x14
+#define VM_CONTEXT6_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x15
+#define VM_CONTEXT6_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x16
+#define VM_CONTEXT6_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x17
+#define VM_CONTEXT6_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x18
+#define VM_CONTEXT6_CNTL__ENABLE_CONTEXT_MASK 0x00000001L
+#define VM_CONTEXT6_CNTL__PAGE_TABLE_DEPTH_MASK 0x00000006L
+#define VM_CONTEXT6_CNTL__PAGE_TABLE_BLOCK_SIZE_MASK 0x00000078L
+#define VM_CONTEXT6_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT_MASK 0x00000080L
+#define VM_CONTEXT6_CNTL__RETRY_OTHER_FAULT_MASK 0x00000100L
+#define VM_CONTEXT6_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000200L
+#define VM_CONTEXT6_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000400L
+#define VM_CONTEXT6_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000800L
+#define VM_CONTEXT6_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00001000L
+#define VM_CONTEXT6_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00002000L
+#define VM_CONTEXT6_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00004000L
+#define VM_CONTEXT6_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00008000L
+#define VM_CONTEXT6_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00010000L
+#define VM_CONTEXT6_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00020000L
+#define VM_CONTEXT6_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00040000L
+#define VM_CONTEXT6_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00080000L
+#define VM_CONTEXT6_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00100000L
+#define VM_CONTEXT6_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00200000L
+#define VM_CONTEXT6_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00400000L
+#define VM_CONTEXT6_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00800000L
+#define VM_CONTEXT6_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x01000000L
+//VM_CONTEXT7_CNTL
+#define VM_CONTEXT7_CNTL__ENABLE_CONTEXT__SHIFT 0x0
+#define VM_CONTEXT7_CNTL__PAGE_TABLE_DEPTH__SHIFT 0x1
+#define VM_CONTEXT7_CNTL__PAGE_TABLE_BLOCK_SIZE__SHIFT 0x3
+#define VM_CONTEXT7_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT__SHIFT 0x7
+#define VM_CONTEXT7_CNTL__RETRY_OTHER_FAULT__SHIFT 0x8
+#define VM_CONTEXT7_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x9
+#define VM_CONTEXT7_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xa
+#define VM_CONTEXT7_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xb
+#define VM_CONTEXT7_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xc
+#define VM_CONTEXT7_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xd
+#define VM_CONTEXT7_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xe
+#define VM_CONTEXT7_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xf
+#define VM_CONTEXT7_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x10
+#define VM_CONTEXT7_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x11
+#define VM_CONTEXT7_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x12
+#define VM_CONTEXT7_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x13
+#define VM_CONTEXT7_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x14
+#define VM_CONTEXT7_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x15
+#define VM_CONTEXT7_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x16
+#define VM_CONTEXT7_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x17
+#define VM_CONTEXT7_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x18
+#define VM_CONTEXT7_CNTL__ENABLE_CONTEXT_MASK 0x00000001L
+#define VM_CONTEXT7_CNTL__PAGE_TABLE_DEPTH_MASK 0x00000006L
+#define VM_CONTEXT7_CNTL__PAGE_TABLE_BLOCK_SIZE_MASK 0x00000078L
+#define VM_CONTEXT7_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT_MASK 0x00000080L
+#define VM_CONTEXT7_CNTL__RETRY_OTHER_FAULT_MASK 0x00000100L
+#define VM_CONTEXT7_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000200L
+#define VM_CONTEXT7_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000400L
+#define VM_CONTEXT7_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000800L
+#define VM_CONTEXT7_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00001000L
+#define VM_CONTEXT7_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00002000L
+#define VM_CONTEXT7_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00004000L
+#define VM_CONTEXT7_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00008000L
+#define VM_CONTEXT7_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00010000L
+#define VM_CONTEXT7_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00020000L
+#define VM_CONTEXT7_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00040000L
+#define VM_CONTEXT7_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00080000L
+#define VM_CONTEXT7_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00100000L
+#define VM_CONTEXT7_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00200000L
+#define VM_CONTEXT7_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00400000L
+#define VM_CONTEXT7_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00800000L
+#define VM_CONTEXT7_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x01000000L
+//VM_CONTEXT8_CNTL
+#define VM_CONTEXT8_CNTL__ENABLE_CONTEXT__SHIFT 0x0
+#define VM_CONTEXT8_CNTL__PAGE_TABLE_DEPTH__SHIFT 0x1
+#define VM_CONTEXT8_CNTL__PAGE_TABLE_BLOCK_SIZE__SHIFT 0x3
+#define VM_CONTEXT8_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT__SHIFT 0x7
+#define VM_CONTEXT8_CNTL__RETRY_OTHER_FAULT__SHIFT 0x8
+#define VM_CONTEXT8_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x9
+#define VM_CONTEXT8_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xa
+#define VM_CONTEXT8_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xb
+#define VM_CONTEXT8_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xc
+#define VM_CONTEXT8_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xd
+#define VM_CONTEXT8_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xe
+#define VM_CONTEXT8_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xf
+#define VM_CONTEXT8_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x10
+#define VM_CONTEXT8_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x11
+#define VM_CONTEXT8_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x12
+#define VM_CONTEXT8_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x13
+#define VM_CONTEXT8_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x14
+#define VM_CONTEXT8_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x15
+#define VM_CONTEXT8_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x16
+#define VM_CONTEXT8_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x17
+#define VM_CONTEXT8_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x18
+#define VM_CONTEXT8_CNTL__ENABLE_CONTEXT_MASK 0x00000001L
+#define VM_CONTEXT8_CNTL__PAGE_TABLE_DEPTH_MASK 0x00000006L
+#define VM_CONTEXT8_CNTL__PAGE_TABLE_BLOCK_SIZE_MASK 0x00000078L
+#define VM_CONTEXT8_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT_MASK 0x00000080L
+#define VM_CONTEXT8_CNTL__RETRY_OTHER_FAULT_MASK 0x00000100L
+#define VM_CONTEXT8_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000200L
+#define VM_CONTEXT8_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000400L
+#define VM_CONTEXT8_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000800L
+#define VM_CONTEXT8_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00001000L
+#define VM_CONTEXT8_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00002000L
+#define VM_CONTEXT8_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00004000L
+#define VM_CONTEXT8_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00008000L
+#define VM_CONTEXT8_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00010000L
+#define VM_CONTEXT8_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00020000L
+#define VM_CONTEXT8_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00040000L
+#define VM_CONTEXT8_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00080000L
+#define VM_CONTEXT8_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00100000L
+#define VM_CONTEXT8_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00200000L
+#define VM_CONTEXT8_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00400000L
+#define VM_CONTEXT8_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00800000L
+#define VM_CONTEXT8_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x01000000L
+//VM_CONTEXT9_CNTL
+#define VM_CONTEXT9_CNTL__ENABLE_CONTEXT__SHIFT 0x0
+#define VM_CONTEXT9_CNTL__PAGE_TABLE_DEPTH__SHIFT 0x1
+#define VM_CONTEXT9_CNTL__PAGE_TABLE_BLOCK_SIZE__SHIFT 0x3
+#define VM_CONTEXT9_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT__SHIFT 0x7
+#define VM_CONTEXT9_CNTL__RETRY_OTHER_FAULT__SHIFT 0x8
+#define VM_CONTEXT9_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x9
+#define VM_CONTEXT9_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xa
+#define VM_CONTEXT9_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xb
+#define VM_CONTEXT9_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xc
+#define VM_CONTEXT9_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xd
+#define VM_CONTEXT9_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xe
+#define VM_CONTEXT9_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xf
+#define VM_CONTEXT9_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x10
+#define VM_CONTEXT9_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x11
+#define VM_CONTEXT9_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x12
+#define VM_CONTEXT9_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x13
+#define VM_CONTEXT9_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x14
+#define VM_CONTEXT9_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x15
+#define VM_CONTEXT9_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x16
+#define VM_CONTEXT9_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x17
+#define VM_CONTEXT9_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x18
+#define VM_CONTEXT9_CNTL__ENABLE_CONTEXT_MASK 0x00000001L
+#define VM_CONTEXT9_CNTL__PAGE_TABLE_DEPTH_MASK 0x00000006L
+#define VM_CONTEXT9_CNTL__PAGE_TABLE_BLOCK_SIZE_MASK 0x00000078L
+#define VM_CONTEXT9_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT_MASK 0x00000080L
+#define VM_CONTEXT9_CNTL__RETRY_OTHER_FAULT_MASK 0x00000100L
+#define VM_CONTEXT9_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000200L
+#define VM_CONTEXT9_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000400L
+#define VM_CONTEXT9_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000800L
+#define VM_CONTEXT9_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00001000L
+#define VM_CONTEXT9_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00002000L
+#define VM_CONTEXT9_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00004000L
+#define VM_CONTEXT9_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00008000L
+#define VM_CONTEXT9_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00010000L
+#define VM_CONTEXT9_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00020000L
+#define VM_CONTEXT9_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00040000L
+#define VM_CONTEXT9_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00080000L
+#define VM_CONTEXT9_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00100000L
+#define VM_CONTEXT9_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00200000L
+#define VM_CONTEXT9_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00400000L
+#define VM_CONTEXT9_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00800000L
+#define VM_CONTEXT9_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x01000000L
+//VM_CONTEXT10_CNTL
+#define VM_CONTEXT10_CNTL__ENABLE_CONTEXT__SHIFT 0x0
+#define VM_CONTEXT10_CNTL__PAGE_TABLE_DEPTH__SHIFT 0x1
+#define VM_CONTEXT10_CNTL__PAGE_TABLE_BLOCK_SIZE__SHIFT 0x3
+#define VM_CONTEXT10_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT__SHIFT 0x7
+#define VM_CONTEXT10_CNTL__RETRY_OTHER_FAULT__SHIFT 0x8
+#define VM_CONTEXT10_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x9
+#define VM_CONTEXT10_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xa
+#define VM_CONTEXT10_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xb
+#define VM_CONTEXT10_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xc
+#define VM_CONTEXT10_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xd
+#define VM_CONTEXT10_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xe
+#define VM_CONTEXT10_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xf
+#define VM_CONTEXT10_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x10
+#define VM_CONTEXT10_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x11
+#define VM_CONTEXT10_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x12
+#define VM_CONTEXT10_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x13
+#define VM_CONTEXT10_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x14
+#define VM_CONTEXT10_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x15
+#define VM_CONTEXT10_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x16
+#define VM_CONTEXT10_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x17
+#define VM_CONTEXT10_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x18
+#define VM_CONTEXT10_CNTL__ENABLE_CONTEXT_MASK 0x00000001L
+#define VM_CONTEXT10_CNTL__PAGE_TABLE_DEPTH_MASK 0x00000006L
+#define VM_CONTEXT10_CNTL__PAGE_TABLE_BLOCK_SIZE_MASK 0x00000078L
+#define VM_CONTEXT10_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT_MASK 0x00000080L
+#define VM_CONTEXT10_CNTL__RETRY_OTHER_FAULT_MASK 0x00000100L
+#define VM_CONTEXT10_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000200L
+#define VM_CONTEXT10_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000400L
+#define VM_CONTEXT10_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000800L
+#define VM_CONTEXT10_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00001000L
+#define VM_CONTEXT10_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00002000L
+#define VM_CONTEXT10_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00004000L
+#define VM_CONTEXT10_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00008000L
+#define VM_CONTEXT10_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00010000L
+#define VM_CONTEXT10_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00020000L
+#define VM_CONTEXT10_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00040000L
+#define VM_CONTEXT10_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00080000L
+#define VM_CONTEXT10_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00100000L
+#define VM_CONTEXT10_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00200000L
+#define VM_CONTEXT10_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00400000L
+#define VM_CONTEXT10_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00800000L
+#define VM_CONTEXT10_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x01000000L
+//VM_CONTEXT11_CNTL
+#define VM_CONTEXT11_CNTL__ENABLE_CONTEXT__SHIFT 0x0
+#define VM_CONTEXT11_CNTL__PAGE_TABLE_DEPTH__SHIFT 0x1
+#define VM_CONTEXT11_CNTL__PAGE_TABLE_BLOCK_SIZE__SHIFT 0x3
+#define VM_CONTEXT11_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT__SHIFT 0x7
+#define VM_CONTEXT11_CNTL__RETRY_OTHER_FAULT__SHIFT 0x8
+#define VM_CONTEXT11_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x9
+#define VM_CONTEXT11_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xa
+#define VM_CONTEXT11_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xb
+#define VM_CONTEXT11_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xc
+#define VM_CONTEXT11_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xd
+#define VM_CONTEXT11_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xe
+#define VM_CONTEXT11_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xf
+#define VM_CONTEXT11_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x10
+#define VM_CONTEXT11_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x11
+#define VM_CONTEXT11_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x12
+#define VM_CONTEXT11_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x13
+#define VM_CONTEXT11_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x14
+#define VM_CONTEXT11_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x15
+#define VM_CONTEXT11_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x16
+#define VM_CONTEXT11_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x17
+#define VM_CONTEXT11_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x18
+#define VM_CONTEXT11_CNTL__ENABLE_CONTEXT_MASK 0x00000001L
+#define VM_CONTEXT11_CNTL__PAGE_TABLE_DEPTH_MASK 0x00000006L
+#define VM_CONTEXT11_CNTL__PAGE_TABLE_BLOCK_SIZE_MASK 0x00000078L
+#define VM_CONTEXT11_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT_MASK 0x00000080L
+#define VM_CONTEXT11_CNTL__RETRY_OTHER_FAULT_MASK 0x00000100L
+#define VM_CONTEXT11_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000200L
+#define VM_CONTEXT11_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000400L
+#define VM_CONTEXT11_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000800L
+#define VM_CONTEXT11_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00001000L
+#define VM_CONTEXT11_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00002000L
+#define VM_CONTEXT11_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00004000L
+#define VM_CONTEXT11_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00008000L
+#define VM_CONTEXT11_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00010000L
+#define VM_CONTEXT11_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00020000L
+#define VM_CONTEXT11_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00040000L
+#define VM_CONTEXT11_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00080000L
+#define VM_CONTEXT11_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00100000L
+#define VM_CONTEXT11_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00200000L
+#define VM_CONTEXT11_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00400000L
+#define VM_CONTEXT11_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00800000L
+#define VM_CONTEXT11_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x01000000L
+//VM_CONTEXT12_CNTL
+#define VM_CONTEXT12_CNTL__ENABLE_CONTEXT__SHIFT 0x0
+#define VM_CONTEXT12_CNTL__PAGE_TABLE_DEPTH__SHIFT 0x1
+#define VM_CONTEXT12_CNTL__PAGE_TABLE_BLOCK_SIZE__SHIFT 0x3
+#define VM_CONTEXT12_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT__SHIFT 0x7
+#define VM_CONTEXT12_CNTL__RETRY_OTHER_FAULT__SHIFT 0x8
+#define VM_CONTEXT12_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x9
+#define VM_CONTEXT12_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xa
+#define VM_CONTEXT12_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xb
+#define VM_CONTEXT12_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xc
+#define VM_CONTEXT12_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xd
+#define VM_CONTEXT12_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xe
+#define VM_CONTEXT12_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xf
+#define VM_CONTEXT12_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x10
+#define VM_CONTEXT12_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x11
+#define VM_CONTEXT12_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x12
+#define VM_CONTEXT12_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x13
+#define VM_CONTEXT12_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x14
+#define VM_CONTEXT12_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x15
+#define VM_CONTEXT12_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x16
+#define VM_CONTEXT12_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x17
+#define VM_CONTEXT12_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x18
+#define VM_CONTEXT12_CNTL__ENABLE_CONTEXT_MASK 0x00000001L
+#define VM_CONTEXT12_CNTL__PAGE_TABLE_DEPTH_MASK 0x00000006L
+#define VM_CONTEXT12_CNTL__PAGE_TABLE_BLOCK_SIZE_MASK 0x00000078L
+#define VM_CONTEXT12_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT_MASK 0x00000080L
+#define VM_CONTEXT12_CNTL__RETRY_OTHER_FAULT_MASK 0x00000100L
+#define VM_CONTEXT12_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000200L
+#define VM_CONTEXT12_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000400L
+#define VM_CONTEXT12_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000800L
+#define VM_CONTEXT12_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00001000L
+#define VM_CONTEXT12_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00002000L
+#define VM_CONTEXT12_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00004000L
+#define VM_CONTEXT12_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00008000L
+#define VM_CONTEXT12_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00010000L
+#define VM_CONTEXT12_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00020000L
+#define VM_CONTEXT12_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00040000L
+#define VM_CONTEXT12_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00080000L
+#define VM_CONTEXT12_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00100000L
+#define VM_CONTEXT12_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00200000L
+#define VM_CONTEXT12_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00400000L
+#define VM_CONTEXT12_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00800000L
+#define VM_CONTEXT12_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x01000000L
+//VM_CONTEXT13_CNTL
+#define VM_CONTEXT13_CNTL__ENABLE_CONTEXT__SHIFT 0x0
+#define VM_CONTEXT13_CNTL__PAGE_TABLE_DEPTH__SHIFT 0x1
+#define VM_CONTEXT13_CNTL__PAGE_TABLE_BLOCK_SIZE__SHIFT 0x3
+#define VM_CONTEXT13_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT__SHIFT 0x7
+#define VM_CONTEXT13_CNTL__RETRY_OTHER_FAULT__SHIFT 0x8
+#define VM_CONTEXT13_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x9
+#define VM_CONTEXT13_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xa
+#define VM_CONTEXT13_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xb
+#define VM_CONTEXT13_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xc
+#define VM_CONTEXT13_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xd
+#define VM_CONTEXT13_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xe
+#define VM_CONTEXT13_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xf
+#define VM_CONTEXT13_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x10
+#define VM_CONTEXT13_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x11
+#define VM_CONTEXT13_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x12
+#define VM_CONTEXT13_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x13
+#define VM_CONTEXT13_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x14
+#define VM_CONTEXT13_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x15
+#define VM_CONTEXT13_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x16
+#define VM_CONTEXT13_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x17
+#define VM_CONTEXT13_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x18
+#define VM_CONTEXT13_CNTL__ENABLE_CONTEXT_MASK 0x00000001L
+#define VM_CONTEXT13_CNTL__PAGE_TABLE_DEPTH_MASK 0x00000006L
+#define VM_CONTEXT13_CNTL__PAGE_TABLE_BLOCK_SIZE_MASK 0x00000078L
+#define VM_CONTEXT13_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT_MASK 0x00000080L
+#define VM_CONTEXT13_CNTL__RETRY_OTHER_FAULT_MASK 0x00000100L
+#define VM_CONTEXT13_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000200L
+#define VM_CONTEXT13_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000400L
+#define VM_CONTEXT13_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000800L
+#define VM_CONTEXT13_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00001000L
+#define VM_CONTEXT13_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00002000L
+#define VM_CONTEXT13_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00004000L
+#define VM_CONTEXT13_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00008000L
+#define VM_CONTEXT13_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00010000L
+#define VM_CONTEXT13_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00020000L
+#define VM_CONTEXT13_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00040000L
+#define VM_CONTEXT13_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00080000L
+#define VM_CONTEXT13_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00100000L
+#define VM_CONTEXT13_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00200000L
+#define VM_CONTEXT13_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00400000L
+#define VM_CONTEXT13_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00800000L
+#define VM_CONTEXT13_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x01000000L
+//VM_CONTEXT14_CNTL
+#define VM_CONTEXT14_CNTL__ENABLE_CONTEXT__SHIFT 0x0
+#define VM_CONTEXT14_CNTL__PAGE_TABLE_DEPTH__SHIFT 0x1
+#define VM_CONTEXT14_CNTL__PAGE_TABLE_BLOCK_SIZE__SHIFT 0x3
+#define VM_CONTEXT14_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT__SHIFT 0x7
+#define VM_CONTEXT14_CNTL__RETRY_OTHER_FAULT__SHIFT 0x8
+#define VM_CONTEXT14_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x9
+#define VM_CONTEXT14_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xa
+#define VM_CONTEXT14_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xb
+#define VM_CONTEXT14_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xc
+#define VM_CONTEXT14_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xd
+#define VM_CONTEXT14_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xe
+#define VM_CONTEXT14_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xf
+#define VM_CONTEXT14_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x10
+#define VM_CONTEXT14_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x11
+#define VM_CONTEXT14_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x12
+#define VM_CONTEXT14_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x13
+#define VM_CONTEXT14_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x14
+#define VM_CONTEXT14_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x15
+#define VM_CONTEXT14_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x16
+#define VM_CONTEXT14_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x17
+#define VM_CONTEXT14_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x18
+#define VM_CONTEXT14_CNTL__ENABLE_CONTEXT_MASK 0x00000001L
+#define VM_CONTEXT14_CNTL__PAGE_TABLE_DEPTH_MASK 0x00000006L
+#define VM_CONTEXT14_CNTL__PAGE_TABLE_BLOCK_SIZE_MASK 0x00000078L
+#define VM_CONTEXT14_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT_MASK 0x00000080L
+#define VM_CONTEXT14_CNTL__RETRY_OTHER_FAULT_MASK 0x00000100L
+#define VM_CONTEXT14_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000200L
+#define VM_CONTEXT14_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000400L
+#define VM_CONTEXT14_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000800L
+#define VM_CONTEXT14_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00001000L
+#define VM_CONTEXT14_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00002000L
+#define VM_CONTEXT14_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00004000L
+#define VM_CONTEXT14_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00008000L
+#define VM_CONTEXT14_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00010000L
+#define VM_CONTEXT14_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00020000L
+#define VM_CONTEXT14_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00040000L
+#define VM_CONTEXT14_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00080000L
+#define VM_CONTEXT14_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00100000L
+#define VM_CONTEXT14_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00200000L
+#define VM_CONTEXT14_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00400000L
+#define VM_CONTEXT14_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00800000L
+#define VM_CONTEXT14_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x01000000L
+//VM_CONTEXT15_CNTL
+#define VM_CONTEXT15_CNTL__ENABLE_CONTEXT__SHIFT 0x0
+#define VM_CONTEXT15_CNTL__PAGE_TABLE_DEPTH__SHIFT 0x1
+#define VM_CONTEXT15_CNTL__PAGE_TABLE_BLOCK_SIZE__SHIFT 0x3
+#define VM_CONTEXT15_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT__SHIFT 0x7
+#define VM_CONTEXT15_CNTL__RETRY_OTHER_FAULT__SHIFT 0x8
+#define VM_CONTEXT15_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x9
+#define VM_CONTEXT15_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xa
+#define VM_CONTEXT15_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xb
+#define VM_CONTEXT15_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xc
+#define VM_CONTEXT15_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xd
+#define VM_CONTEXT15_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0xe
+#define VM_CONTEXT15_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0xf
+#define VM_CONTEXT15_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x10
+#define VM_CONTEXT15_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x11
+#define VM_CONTEXT15_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x12
+#define VM_CONTEXT15_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x13
+#define VM_CONTEXT15_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x14
+#define VM_CONTEXT15_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x15
+#define VM_CONTEXT15_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x16
+#define VM_CONTEXT15_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT__SHIFT 0x17
+#define VM_CONTEXT15_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT__SHIFT 0x18
+#define VM_CONTEXT15_CNTL__ENABLE_CONTEXT_MASK 0x00000001L
+#define VM_CONTEXT15_CNTL__PAGE_TABLE_DEPTH_MASK 0x00000006L
+#define VM_CONTEXT15_CNTL__PAGE_TABLE_BLOCK_SIZE_MASK 0x00000078L
+#define VM_CONTEXT15_CNTL__RETRY_PERMISSION_OR_INVALID_PAGE_FAULT_MASK 0x00000080L
+#define VM_CONTEXT15_CNTL__RETRY_OTHER_FAULT_MASK 0x00000100L
+#define VM_CONTEXT15_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000200L
+#define VM_CONTEXT15_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00000400L
+#define VM_CONTEXT15_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00000800L
+#define VM_CONTEXT15_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00001000L
+#define VM_CONTEXT15_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00002000L
+#define VM_CONTEXT15_CNTL__PDE0_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00004000L
+#define VM_CONTEXT15_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00008000L
+#define VM_CONTEXT15_CNTL__VALID_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00010000L
+#define VM_CONTEXT15_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00020000L
+#define VM_CONTEXT15_CNTL__READ_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00040000L
+#define VM_CONTEXT15_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00080000L
+#define VM_CONTEXT15_CNTL__WRITE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00100000L
+#define VM_CONTEXT15_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00200000L
+#define VM_CONTEXT15_CNTL__EXECUTE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x00400000L
+#define VM_CONTEXT15_CNTL__SECURE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK 0x00800000L
+#define VM_CONTEXT15_CNTL__SECURE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK 0x01000000L
+//VM_CONTEXTS_DISABLE
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_0__SHIFT 0x0
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_1__SHIFT 0x1
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_2__SHIFT 0x2
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_3__SHIFT 0x3
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_4__SHIFT 0x4
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_5__SHIFT 0x5
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_6__SHIFT 0x6
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_7__SHIFT 0x7
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_8__SHIFT 0x8
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_9__SHIFT 0x9
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_10__SHIFT 0xa
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_11__SHIFT 0xb
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_12__SHIFT 0xc
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_13__SHIFT 0xd
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_14__SHIFT 0xe
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_15__SHIFT 0xf
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_0_MASK 0x00000001L
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_1_MASK 0x00000002L
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_2_MASK 0x00000004L
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_3_MASK 0x00000008L
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_4_MASK 0x00000010L
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_5_MASK 0x00000020L
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_6_MASK 0x00000040L
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_7_MASK 0x00000080L
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_8_MASK 0x00000100L
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_9_MASK 0x00000200L
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_10_MASK 0x00000400L
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_11_MASK 0x00000800L
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_12_MASK 0x00001000L
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_13_MASK 0x00002000L
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_14_MASK 0x00004000L
+#define VM_CONTEXTS_DISABLE__DISABLE_CONTEXT_15_MASK 0x00008000L
+//VM_INVALIDATE_ENG0_SEM
+#define VM_INVALIDATE_ENG0_SEM__SEMAPHORE__SHIFT 0x0
+#define VM_INVALIDATE_ENG0_SEM__SEMAPHORE_MASK 0x00000001L
+//VM_INVALIDATE_ENG1_SEM
+#define VM_INVALIDATE_ENG1_SEM__SEMAPHORE__SHIFT 0x0
+#define VM_INVALIDATE_ENG1_SEM__SEMAPHORE_MASK 0x00000001L
+//VM_INVALIDATE_ENG2_SEM
+#define VM_INVALIDATE_ENG2_SEM__SEMAPHORE__SHIFT 0x0
+#define VM_INVALIDATE_ENG2_SEM__SEMAPHORE_MASK 0x00000001L
+//VM_INVALIDATE_ENG3_SEM
+#define VM_INVALIDATE_ENG3_SEM__SEMAPHORE__SHIFT 0x0
+#define VM_INVALIDATE_ENG3_SEM__SEMAPHORE_MASK 0x00000001L
+//VM_INVALIDATE_ENG4_SEM
+#define VM_INVALIDATE_ENG4_SEM__SEMAPHORE__SHIFT 0x0
+#define VM_INVALIDATE_ENG4_SEM__SEMAPHORE_MASK 0x00000001L
+//VM_INVALIDATE_ENG5_SEM
+#define VM_INVALIDATE_ENG5_SEM__SEMAPHORE__SHIFT 0x0
+#define VM_INVALIDATE_ENG5_SEM__SEMAPHORE_MASK 0x00000001L
+//VM_INVALIDATE_ENG6_SEM
+#define VM_INVALIDATE_ENG6_SEM__SEMAPHORE__SHIFT 0x0
+#define VM_INVALIDATE_ENG6_SEM__SEMAPHORE_MASK 0x00000001L
+//VM_INVALIDATE_ENG7_SEM
+#define VM_INVALIDATE_ENG7_SEM__SEMAPHORE__SHIFT 0x0
+#define VM_INVALIDATE_ENG7_SEM__SEMAPHORE_MASK 0x00000001L
+//VM_INVALIDATE_ENG8_SEM
+#define VM_INVALIDATE_ENG8_SEM__SEMAPHORE__SHIFT 0x0
+#define VM_INVALIDATE_ENG8_SEM__SEMAPHORE_MASK 0x00000001L
+//VM_INVALIDATE_ENG9_SEM
+#define VM_INVALIDATE_ENG9_SEM__SEMAPHORE__SHIFT 0x0
+#define VM_INVALIDATE_ENG9_SEM__SEMAPHORE_MASK 0x00000001L
+//VM_INVALIDATE_ENG10_SEM
+#define VM_INVALIDATE_ENG10_SEM__SEMAPHORE__SHIFT 0x0
+#define VM_INVALIDATE_ENG10_SEM__SEMAPHORE_MASK 0x00000001L
+//VM_INVALIDATE_ENG11_SEM
+#define VM_INVALIDATE_ENG11_SEM__SEMAPHORE__SHIFT 0x0
+#define VM_INVALIDATE_ENG11_SEM__SEMAPHORE_MASK 0x00000001L
+//VM_INVALIDATE_ENG12_SEM
+#define VM_INVALIDATE_ENG12_SEM__SEMAPHORE__SHIFT 0x0
+#define VM_INVALIDATE_ENG12_SEM__SEMAPHORE_MASK 0x00000001L
+//VM_INVALIDATE_ENG13_SEM
+#define VM_INVALIDATE_ENG13_SEM__SEMAPHORE__SHIFT 0x0
+#define VM_INVALIDATE_ENG13_SEM__SEMAPHORE_MASK 0x00000001L
+//VM_INVALIDATE_ENG14_SEM
+#define VM_INVALIDATE_ENG14_SEM__SEMAPHORE__SHIFT 0x0
+#define VM_INVALIDATE_ENG14_SEM__SEMAPHORE_MASK 0x00000001L
+//VM_INVALIDATE_ENG15_SEM
+#define VM_INVALIDATE_ENG15_SEM__SEMAPHORE__SHIFT 0x0
+#define VM_INVALIDATE_ENG15_SEM__SEMAPHORE_MASK 0x00000001L
+//VM_INVALIDATE_ENG16_SEM
+#define VM_INVALIDATE_ENG16_SEM__SEMAPHORE__SHIFT 0x0
+#define VM_INVALIDATE_ENG16_SEM__SEMAPHORE_MASK 0x00000001L
+//VM_INVALIDATE_ENG17_SEM
+#define VM_INVALIDATE_ENG17_SEM__SEMAPHORE__SHIFT 0x0
+#define VM_INVALIDATE_ENG17_SEM__SEMAPHORE_MASK 0x00000001L
+//VM_INVALIDATE_ENG0_REQ
+#define VM_INVALIDATE_ENG0_REQ__PER_VMID_INVALIDATE_REQ__SHIFT 0x0
+#define VM_INVALIDATE_ENG0_REQ__FLUSH_TYPE__SHIFT 0x10
+#define VM_INVALIDATE_ENG0_REQ__INVALIDATE_L2_PTES__SHIFT 0x12
+#define VM_INVALIDATE_ENG0_REQ__INVALIDATE_L2_PDE0__SHIFT 0x13
+#define VM_INVALIDATE_ENG0_REQ__INVALIDATE_L2_PDE1__SHIFT 0x14
+#define VM_INVALIDATE_ENG0_REQ__INVALIDATE_L2_PDE2__SHIFT 0x15
+#define VM_INVALIDATE_ENG0_REQ__INVALIDATE_L1_PTES__SHIFT 0x16
+#define VM_INVALIDATE_ENG0_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR__SHIFT 0x17
+#define VM_INVALIDATE_ENG0_REQ__LOG_REQUEST__SHIFT 0x18
+#define VM_INVALIDATE_ENG0_REQ__PER_VMID_INVALIDATE_REQ_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG0_REQ__FLUSH_TYPE_MASK 0x00030000L
+#define VM_INVALIDATE_ENG0_REQ__INVALIDATE_L2_PTES_MASK 0x00040000L
+#define VM_INVALIDATE_ENG0_REQ__INVALIDATE_L2_PDE0_MASK 0x00080000L
+#define VM_INVALIDATE_ENG0_REQ__INVALIDATE_L2_PDE1_MASK 0x00100000L
+#define VM_INVALIDATE_ENG0_REQ__INVALIDATE_L2_PDE2_MASK 0x00200000L
+#define VM_INVALIDATE_ENG0_REQ__INVALIDATE_L1_PTES_MASK 0x00400000L
+#define VM_INVALIDATE_ENG0_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR_MASK 0x00800000L
+#define VM_INVALIDATE_ENG0_REQ__LOG_REQUEST_MASK 0x01000000L
+//VM_INVALIDATE_ENG1_REQ
+#define VM_INVALIDATE_ENG1_REQ__PER_VMID_INVALIDATE_REQ__SHIFT 0x0
+#define VM_INVALIDATE_ENG1_REQ__FLUSH_TYPE__SHIFT 0x10
+#define VM_INVALIDATE_ENG1_REQ__INVALIDATE_L2_PTES__SHIFT 0x12
+#define VM_INVALIDATE_ENG1_REQ__INVALIDATE_L2_PDE0__SHIFT 0x13
+#define VM_INVALIDATE_ENG1_REQ__INVALIDATE_L2_PDE1__SHIFT 0x14
+#define VM_INVALIDATE_ENG1_REQ__INVALIDATE_L2_PDE2__SHIFT 0x15
+#define VM_INVALIDATE_ENG1_REQ__INVALIDATE_L1_PTES__SHIFT 0x16
+#define VM_INVALIDATE_ENG1_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR__SHIFT 0x17
+#define VM_INVALIDATE_ENG1_REQ__LOG_REQUEST__SHIFT 0x18
+#define VM_INVALIDATE_ENG1_REQ__PER_VMID_INVALIDATE_REQ_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG1_REQ__FLUSH_TYPE_MASK 0x00030000L
+#define VM_INVALIDATE_ENG1_REQ__INVALIDATE_L2_PTES_MASK 0x00040000L
+#define VM_INVALIDATE_ENG1_REQ__INVALIDATE_L2_PDE0_MASK 0x00080000L
+#define VM_INVALIDATE_ENG1_REQ__INVALIDATE_L2_PDE1_MASK 0x00100000L
+#define VM_INVALIDATE_ENG1_REQ__INVALIDATE_L2_PDE2_MASK 0x00200000L
+#define VM_INVALIDATE_ENG1_REQ__INVALIDATE_L1_PTES_MASK 0x00400000L
+#define VM_INVALIDATE_ENG1_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR_MASK 0x00800000L
+#define VM_INVALIDATE_ENG1_REQ__LOG_REQUEST_MASK 0x01000000L
+//VM_INVALIDATE_ENG2_REQ
+#define VM_INVALIDATE_ENG2_REQ__PER_VMID_INVALIDATE_REQ__SHIFT 0x0
+#define VM_INVALIDATE_ENG2_REQ__FLUSH_TYPE__SHIFT 0x10
+#define VM_INVALIDATE_ENG2_REQ__INVALIDATE_L2_PTES__SHIFT 0x12
+#define VM_INVALIDATE_ENG2_REQ__INVALIDATE_L2_PDE0__SHIFT 0x13
+#define VM_INVALIDATE_ENG2_REQ__INVALIDATE_L2_PDE1__SHIFT 0x14
+#define VM_INVALIDATE_ENG2_REQ__INVALIDATE_L2_PDE2__SHIFT 0x15
+#define VM_INVALIDATE_ENG2_REQ__INVALIDATE_L1_PTES__SHIFT 0x16
+#define VM_INVALIDATE_ENG2_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR__SHIFT 0x17
+#define VM_INVALIDATE_ENG2_REQ__LOG_REQUEST__SHIFT 0x18
+#define VM_INVALIDATE_ENG2_REQ__PER_VMID_INVALIDATE_REQ_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG2_REQ__FLUSH_TYPE_MASK 0x00030000L
+#define VM_INVALIDATE_ENG2_REQ__INVALIDATE_L2_PTES_MASK 0x00040000L
+#define VM_INVALIDATE_ENG2_REQ__INVALIDATE_L2_PDE0_MASK 0x00080000L
+#define VM_INVALIDATE_ENG2_REQ__INVALIDATE_L2_PDE1_MASK 0x00100000L
+#define VM_INVALIDATE_ENG2_REQ__INVALIDATE_L2_PDE2_MASK 0x00200000L
+#define VM_INVALIDATE_ENG2_REQ__INVALIDATE_L1_PTES_MASK 0x00400000L
+#define VM_INVALIDATE_ENG2_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR_MASK 0x00800000L
+#define VM_INVALIDATE_ENG2_REQ__LOG_REQUEST_MASK 0x01000000L
+//VM_INVALIDATE_ENG3_REQ
+#define VM_INVALIDATE_ENG3_REQ__PER_VMID_INVALIDATE_REQ__SHIFT 0x0
+#define VM_INVALIDATE_ENG3_REQ__FLUSH_TYPE__SHIFT 0x10
+#define VM_INVALIDATE_ENG3_REQ__INVALIDATE_L2_PTES__SHIFT 0x12
+#define VM_INVALIDATE_ENG3_REQ__INVALIDATE_L2_PDE0__SHIFT 0x13
+#define VM_INVALIDATE_ENG3_REQ__INVALIDATE_L2_PDE1__SHIFT 0x14
+#define VM_INVALIDATE_ENG3_REQ__INVALIDATE_L2_PDE2__SHIFT 0x15
+#define VM_INVALIDATE_ENG3_REQ__INVALIDATE_L1_PTES__SHIFT 0x16
+#define VM_INVALIDATE_ENG3_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR__SHIFT 0x17
+#define VM_INVALIDATE_ENG3_REQ__LOG_REQUEST__SHIFT 0x18
+#define VM_INVALIDATE_ENG3_REQ__PER_VMID_INVALIDATE_REQ_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG3_REQ__FLUSH_TYPE_MASK 0x00030000L
+#define VM_INVALIDATE_ENG3_REQ__INVALIDATE_L2_PTES_MASK 0x00040000L
+#define VM_INVALIDATE_ENG3_REQ__INVALIDATE_L2_PDE0_MASK 0x00080000L
+#define VM_INVALIDATE_ENG3_REQ__INVALIDATE_L2_PDE1_MASK 0x00100000L
+#define VM_INVALIDATE_ENG3_REQ__INVALIDATE_L2_PDE2_MASK 0x00200000L
+#define VM_INVALIDATE_ENG3_REQ__INVALIDATE_L1_PTES_MASK 0x00400000L
+#define VM_INVALIDATE_ENG3_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR_MASK 0x00800000L
+#define VM_INVALIDATE_ENG3_REQ__LOG_REQUEST_MASK 0x01000000L
+//VM_INVALIDATE_ENG4_REQ
+#define VM_INVALIDATE_ENG4_REQ__PER_VMID_INVALIDATE_REQ__SHIFT 0x0
+#define VM_INVALIDATE_ENG4_REQ__FLUSH_TYPE__SHIFT 0x10
+#define VM_INVALIDATE_ENG4_REQ__INVALIDATE_L2_PTES__SHIFT 0x12
+#define VM_INVALIDATE_ENG4_REQ__INVALIDATE_L2_PDE0__SHIFT 0x13
+#define VM_INVALIDATE_ENG4_REQ__INVALIDATE_L2_PDE1__SHIFT 0x14
+#define VM_INVALIDATE_ENG4_REQ__INVALIDATE_L2_PDE2__SHIFT 0x15
+#define VM_INVALIDATE_ENG4_REQ__INVALIDATE_L1_PTES__SHIFT 0x16
+#define VM_INVALIDATE_ENG4_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR__SHIFT 0x17
+#define VM_INVALIDATE_ENG4_REQ__LOG_REQUEST__SHIFT 0x18
+#define VM_INVALIDATE_ENG4_REQ__PER_VMID_INVALIDATE_REQ_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG4_REQ__FLUSH_TYPE_MASK 0x00030000L
+#define VM_INVALIDATE_ENG4_REQ__INVALIDATE_L2_PTES_MASK 0x00040000L
+#define VM_INVALIDATE_ENG4_REQ__INVALIDATE_L2_PDE0_MASK 0x00080000L
+#define VM_INVALIDATE_ENG4_REQ__INVALIDATE_L2_PDE1_MASK 0x00100000L
+#define VM_INVALIDATE_ENG4_REQ__INVALIDATE_L2_PDE2_MASK 0x00200000L
+#define VM_INVALIDATE_ENG4_REQ__INVALIDATE_L1_PTES_MASK 0x00400000L
+#define VM_INVALIDATE_ENG4_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR_MASK 0x00800000L
+#define VM_INVALIDATE_ENG4_REQ__LOG_REQUEST_MASK 0x01000000L
+//VM_INVALIDATE_ENG5_REQ
+#define VM_INVALIDATE_ENG5_REQ__PER_VMID_INVALIDATE_REQ__SHIFT 0x0
+#define VM_INVALIDATE_ENG5_REQ__FLUSH_TYPE__SHIFT 0x10
+#define VM_INVALIDATE_ENG5_REQ__INVALIDATE_L2_PTES__SHIFT 0x12
+#define VM_INVALIDATE_ENG5_REQ__INVALIDATE_L2_PDE0__SHIFT 0x13
+#define VM_INVALIDATE_ENG5_REQ__INVALIDATE_L2_PDE1__SHIFT 0x14
+#define VM_INVALIDATE_ENG5_REQ__INVALIDATE_L2_PDE2__SHIFT 0x15
+#define VM_INVALIDATE_ENG5_REQ__INVALIDATE_L1_PTES__SHIFT 0x16
+#define VM_INVALIDATE_ENG5_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR__SHIFT 0x17
+#define VM_INVALIDATE_ENG5_REQ__LOG_REQUEST__SHIFT 0x18
+#define VM_INVALIDATE_ENG5_REQ__PER_VMID_INVALIDATE_REQ_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG5_REQ__FLUSH_TYPE_MASK 0x00030000L
+#define VM_INVALIDATE_ENG5_REQ__INVALIDATE_L2_PTES_MASK 0x00040000L
+#define VM_INVALIDATE_ENG5_REQ__INVALIDATE_L2_PDE0_MASK 0x00080000L
+#define VM_INVALIDATE_ENG5_REQ__INVALIDATE_L2_PDE1_MASK 0x00100000L
+#define VM_INVALIDATE_ENG5_REQ__INVALIDATE_L2_PDE2_MASK 0x00200000L
+#define VM_INVALIDATE_ENG5_REQ__INVALIDATE_L1_PTES_MASK 0x00400000L
+#define VM_INVALIDATE_ENG5_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR_MASK 0x00800000L
+#define VM_INVALIDATE_ENG5_REQ__LOG_REQUEST_MASK 0x01000000L
+//VM_INVALIDATE_ENG6_REQ
+#define VM_INVALIDATE_ENG6_REQ__PER_VMID_INVALIDATE_REQ__SHIFT 0x0
+#define VM_INVALIDATE_ENG6_REQ__FLUSH_TYPE__SHIFT 0x10
+#define VM_INVALIDATE_ENG6_REQ__INVALIDATE_L2_PTES__SHIFT 0x12
+#define VM_INVALIDATE_ENG6_REQ__INVALIDATE_L2_PDE0__SHIFT 0x13
+#define VM_INVALIDATE_ENG6_REQ__INVALIDATE_L2_PDE1__SHIFT 0x14
+#define VM_INVALIDATE_ENG6_REQ__INVALIDATE_L2_PDE2__SHIFT 0x15
+#define VM_INVALIDATE_ENG6_REQ__INVALIDATE_L1_PTES__SHIFT 0x16
+#define VM_INVALIDATE_ENG6_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR__SHIFT 0x17
+#define VM_INVALIDATE_ENG6_REQ__LOG_REQUEST__SHIFT 0x18
+#define VM_INVALIDATE_ENG6_REQ__PER_VMID_INVALIDATE_REQ_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG6_REQ__FLUSH_TYPE_MASK 0x00030000L
+#define VM_INVALIDATE_ENG6_REQ__INVALIDATE_L2_PTES_MASK 0x00040000L
+#define VM_INVALIDATE_ENG6_REQ__INVALIDATE_L2_PDE0_MASK 0x00080000L
+#define VM_INVALIDATE_ENG6_REQ__INVALIDATE_L2_PDE1_MASK 0x00100000L
+#define VM_INVALIDATE_ENG6_REQ__INVALIDATE_L2_PDE2_MASK 0x00200000L
+#define VM_INVALIDATE_ENG6_REQ__INVALIDATE_L1_PTES_MASK 0x00400000L
+#define VM_INVALIDATE_ENG6_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR_MASK 0x00800000L
+#define VM_INVALIDATE_ENG6_REQ__LOG_REQUEST_MASK 0x01000000L
+//VM_INVALIDATE_ENG7_REQ
+#define VM_INVALIDATE_ENG7_REQ__PER_VMID_INVALIDATE_REQ__SHIFT 0x0
+#define VM_INVALIDATE_ENG7_REQ__FLUSH_TYPE__SHIFT 0x10
+#define VM_INVALIDATE_ENG7_REQ__INVALIDATE_L2_PTES__SHIFT 0x12
+#define VM_INVALIDATE_ENG7_REQ__INVALIDATE_L2_PDE0__SHIFT 0x13
+#define VM_INVALIDATE_ENG7_REQ__INVALIDATE_L2_PDE1__SHIFT 0x14
+#define VM_INVALIDATE_ENG7_REQ__INVALIDATE_L2_PDE2__SHIFT 0x15
+#define VM_INVALIDATE_ENG7_REQ__INVALIDATE_L1_PTES__SHIFT 0x16
+#define VM_INVALIDATE_ENG7_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR__SHIFT 0x17
+#define VM_INVALIDATE_ENG7_REQ__LOG_REQUEST__SHIFT 0x18
+#define VM_INVALIDATE_ENG7_REQ__PER_VMID_INVALIDATE_REQ_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG7_REQ__FLUSH_TYPE_MASK 0x00030000L
+#define VM_INVALIDATE_ENG7_REQ__INVALIDATE_L2_PTES_MASK 0x00040000L
+#define VM_INVALIDATE_ENG7_REQ__INVALIDATE_L2_PDE0_MASK 0x00080000L
+#define VM_INVALIDATE_ENG7_REQ__INVALIDATE_L2_PDE1_MASK 0x00100000L
+#define VM_INVALIDATE_ENG7_REQ__INVALIDATE_L2_PDE2_MASK 0x00200000L
+#define VM_INVALIDATE_ENG7_REQ__INVALIDATE_L1_PTES_MASK 0x00400000L
+#define VM_INVALIDATE_ENG7_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR_MASK 0x00800000L
+#define VM_INVALIDATE_ENG7_REQ__LOG_REQUEST_MASK 0x01000000L
+//VM_INVALIDATE_ENG8_REQ
+#define VM_INVALIDATE_ENG8_REQ__PER_VMID_INVALIDATE_REQ__SHIFT 0x0
+#define VM_INVALIDATE_ENG8_REQ__FLUSH_TYPE__SHIFT 0x10
+#define VM_INVALIDATE_ENG8_REQ__INVALIDATE_L2_PTES__SHIFT 0x12
+#define VM_INVALIDATE_ENG8_REQ__INVALIDATE_L2_PDE0__SHIFT 0x13
+#define VM_INVALIDATE_ENG8_REQ__INVALIDATE_L2_PDE1__SHIFT 0x14
+#define VM_INVALIDATE_ENG8_REQ__INVALIDATE_L2_PDE2__SHIFT 0x15
+#define VM_INVALIDATE_ENG8_REQ__INVALIDATE_L1_PTES__SHIFT 0x16
+#define VM_INVALIDATE_ENG8_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR__SHIFT 0x17
+#define VM_INVALIDATE_ENG8_REQ__LOG_REQUEST__SHIFT 0x18
+#define VM_INVALIDATE_ENG8_REQ__PER_VMID_INVALIDATE_REQ_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG8_REQ__FLUSH_TYPE_MASK 0x00030000L
+#define VM_INVALIDATE_ENG8_REQ__INVALIDATE_L2_PTES_MASK 0x00040000L
+#define VM_INVALIDATE_ENG8_REQ__INVALIDATE_L2_PDE0_MASK 0x00080000L
+#define VM_INVALIDATE_ENG8_REQ__INVALIDATE_L2_PDE1_MASK 0x00100000L
+#define VM_INVALIDATE_ENG8_REQ__INVALIDATE_L2_PDE2_MASK 0x00200000L
+#define VM_INVALIDATE_ENG8_REQ__INVALIDATE_L1_PTES_MASK 0x00400000L
+#define VM_INVALIDATE_ENG8_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR_MASK 0x00800000L
+#define VM_INVALIDATE_ENG8_REQ__LOG_REQUEST_MASK 0x01000000L
+//VM_INVALIDATE_ENG9_REQ
+#define VM_INVALIDATE_ENG9_REQ__PER_VMID_INVALIDATE_REQ__SHIFT 0x0
+#define VM_INVALIDATE_ENG9_REQ__FLUSH_TYPE__SHIFT 0x10
+#define VM_INVALIDATE_ENG9_REQ__INVALIDATE_L2_PTES__SHIFT 0x12
+#define VM_INVALIDATE_ENG9_REQ__INVALIDATE_L2_PDE0__SHIFT 0x13
+#define VM_INVALIDATE_ENG9_REQ__INVALIDATE_L2_PDE1__SHIFT 0x14
+#define VM_INVALIDATE_ENG9_REQ__INVALIDATE_L2_PDE2__SHIFT 0x15
+#define VM_INVALIDATE_ENG9_REQ__INVALIDATE_L1_PTES__SHIFT 0x16
+#define VM_INVALIDATE_ENG9_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR__SHIFT 0x17
+#define VM_INVALIDATE_ENG9_REQ__LOG_REQUEST__SHIFT 0x18
+#define VM_INVALIDATE_ENG9_REQ__PER_VMID_INVALIDATE_REQ_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG9_REQ__FLUSH_TYPE_MASK 0x00030000L
+#define VM_INVALIDATE_ENG9_REQ__INVALIDATE_L2_PTES_MASK 0x00040000L
+#define VM_INVALIDATE_ENG9_REQ__INVALIDATE_L2_PDE0_MASK 0x00080000L
+#define VM_INVALIDATE_ENG9_REQ__INVALIDATE_L2_PDE1_MASK 0x00100000L
+#define VM_INVALIDATE_ENG9_REQ__INVALIDATE_L2_PDE2_MASK 0x00200000L
+#define VM_INVALIDATE_ENG9_REQ__INVALIDATE_L1_PTES_MASK 0x00400000L
+#define VM_INVALIDATE_ENG9_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR_MASK 0x00800000L
+#define VM_INVALIDATE_ENG9_REQ__LOG_REQUEST_MASK 0x01000000L
+//VM_INVALIDATE_ENG10_REQ
+#define VM_INVALIDATE_ENG10_REQ__PER_VMID_INVALIDATE_REQ__SHIFT 0x0
+#define VM_INVALIDATE_ENG10_REQ__FLUSH_TYPE__SHIFT 0x10
+#define VM_INVALIDATE_ENG10_REQ__INVALIDATE_L2_PTES__SHIFT 0x12
+#define VM_INVALIDATE_ENG10_REQ__INVALIDATE_L2_PDE0__SHIFT 0x13
+#define VM_INVALIDATE_ENG10_REQ__INVALIDATE_L2_PDE1__SHIFT 0x14
+#define VM_INVALIDATE_ENG10_REQ__INVALIDATE_L2_PDE2__SHIFT 0x15
+#define VM_INVALIDATE_ENG10_REQ__INVALIDATE_L1_PTES__SHIFT 0x16
+#define VM_INVALIDATE_ENG10_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR__SHIFT 0x17
+#define VM_INVALIDATE_ENG10_REQ__LOG_REQUEST__SHIFT 0x18
+#define VM_INVALIDATE_ENG10_REQ__PER_VMID_INVALIDATE_REQ_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG10_REQ__FLUSH_TYPE_MASK 0x00030000L
+#define VM_INVALIDATE_ENG10_REQ__INVALIDATE_L2_PTES_MASK 0x00040000L
+#define VM_INVALIDATE_ENG10_REQ__INVALIDATE_L2_PDE0_MASK 0x00080000L
+#define VM_INVALIDATE_ENG10_REQ__INVALIDATE_L2_PDE1_MASK 0x00100000L
+#define VM_INVALIDATE_ENG10_REQ__INVALIDATE_L2_PDE2_MASK 0x00200000L
+#define VM_INVALIDATE_ENG10_REQ__INVALIDATE_L1_PTES_MASK 0x00400000L
+#define VM_INVALIDATE_ENG10_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR_MASK 0x00800000L
+#define VM_INVALIDATE_ENG10_REQ__LOG_REQUEST_MASK 0x01000000L
+//VM_INVALIDATE_ENG11_REQ
+#define VM_INVALIDATE_ENG11_REQ__PER_VMID_INVALIDATE_REQ__SHIFT 0x0
+#define VM_INVALIDATE_ENG11_REQ__FLUSH_TYPE__SHIFT 0x10
+#define VM_INVALIDATE_ENG11_REQ__INVALIDATE_L2_PTES__SHIFT 0x12
+#define VM_INVALIDATE_ENG11_REQ__INVALIDATE_L2_PDE0__SHIFT 0x13
+#define VM_INVALIDATE_ENG11_REQ__INVALIDATE_L2_PDE1__SHIFT 0x14
+#define VM_INVALIDATE_ENG11_REQ__INVALIDATE_L2_PDE2__SHIFT 0x15
+#define VM_INVALIDATE_ENG11_REQ__INVALIDATE_L1_PTES__SHIFT 0x16
+#define VM_INVALIDATE_ENG11_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR__SHIFT 0x17
+#define VM_INVALIDATE_ENG11_REQ__LOG_REQUEST__SHIFT 0x18
+#define VM_INVALIDATE_ENG11_REQ__PER_VMID_INVALIDATE_REQ_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG11_REQ__FLUSH_TYPE_MASK 0x00030000L
+#define VM_INVALIDATE_ENG11_REQ__INVALIDATE_L2_PTES_MASK 0x00040000L
+#define VM_INVALIDATE_ENG11_REQ__INVALIDATE_L2_PDE0_MASK 0x00080000L
+#define VM_INVALIDATE_ENG11_REQ__INVALIDATE_L2_PDE1_MASK 0x00100000L
+#define VM_INVALIDATE_ENG11_REQ__INVALIDATE_L2_PDE2_MASK 0x00200000L
+#define VM_INVALIDATE_ENG11_REQ__INVALIDATE_L1_PTES_MASK 0x00400000L
+#define VM_INVALIDATE_ENG11_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR_MASK 0x00800000L
+#define VM_INVALIDATE_ENG11_REQ__LOG_REQUEST_MASK 0x01000000L
+//VM_INVALIDATE_ENG12_REQ
+#define VM_INVALIDATE_ENG12_REQ__PER_VMID_INVALIDATE_REQ__SHIFT 0x0
+#define VM_INVALIDATE_ENG12_REQ__FLUSH_TYPE__SHIFT 0x10
+#define VM_INVALIDATE_ENG12_REQ__INVALIDATE_L2_PTES__SHIFT 0x12
+#define VM_INVALIDATE_ENG12_REQ__INVALIDATE_L2_PDE0__SHIFT 0x13
+#define VM_INVALIDATE_ENG12_REQ__INVALIDATE_L2_PDE1__SHIFT 0x14
+#define VM_INVALIDATE_ENG12_REQ__INVALIDATE_L2_PDE2__SHIFT 0x15
+#define VM_INVALIDATE_ENG12_REQ__INVALIDATE_L1_PTES__SHIFT 0x16
+#define VM_INVALIDATE_ENG12_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR__SHIFT 0x17
+#define VM_INVALIDATE_ENG12_REQ__LOG_REQUEST__SHIFT 0x18
+#define VM_INVALIDATE_ENG12_REQ__PER_VMID_INVALIDATE_REQ_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG12_REQ__FLUSH_TYPE_MASK 0x00030000L
+#define VM_INVALIDATE_ENG12_REQ__INVALIDATE_L2_PTES_MASK 0x00040000L
+#define VM_INVALIDATE_ENG12_REQ__INVALIDATE_L2_PDE0_MASK 0x00080000L
+#define VM_INVALIDATE_ENG12_REQ__INVALIDATE_L2_PDE1_MASK 0x00100000L
+#define VM_INVALIDATE_ENG12_REQ__INVALIDATE_L2_PDE2_MASK 0x00200000L
+#define VM_INVALIDATE_ENG12_REQ__INVALIDATE_L1_PTES_MASK 0x00400000L
+#define VM_INVALIDATE_ENG12_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR_MASK 0x00800000L
+#define VM_INVALIDATE_ENG12_REQ__LOG_REQUEST_MASK 0x01000000L
+//VM_INVALIDATE_ENG13_REQ
+#define VM_INVALIDATE_ENG13_REQ__PER_VMID_INVALIDATE_REQ__SHIFT 0x0
+#define VM_INVALIDATE_ENG13_REQ__FLUSH_TYPE__SHIFT 0x10
+#define VM_INVALIDATE_ENG13_REQ__INVALIDATE_L2_PTES__SHIFT 0x12
+#define VM_INVALIDATE_ENG13_REQ__INVALIDATE_L2_PDE0__SHIFT 0x13
+#define VM_INVALIDATE_ENG13_REQ__INVALIDATE_L2_PDE1__SHIFT 0x14
+#define VM_INVALIDATE_ENG13_REQ__INVALIDATE_L2_PDE2__SHIFT 0x15
+#define VM_INVALIDATE_ENG13_REQ__INVALIDATE_L1_PTES__SHIFT 0x16
+#define VM_INVALIDATE_ENG13_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR__SHIFT 0x17
+#define VM_INVALIDATE_ENG13_REQ__LOG_REQUEST__SHIFT 0x18
+#define VM_INVALIDATE_ENG13_REQ__PER_VMID_INVALIDATE_REQ_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG13_REQ__FLUSH_TYPE_MASK 0x00030000L
+#define VM_INVALIDATE_ENG13_REQ__INVALIDATE_L2_PTES_MASK 0x00040000L
+#define VM_INVALIDATE_ENG13_REQ__INVALIDATE_L2_PDE0_MASK 0x00080000L
+#define VM_INVALIDATE_ENG13_REQ__INVALIDATE_L2_PDE1_MASK 0x00100000L
+#define VM_INVALIDATE_ENG13_REQ__INVALIDATE_L2_PDE2_MASK 0x00200000L
+#define VM_INVALIDATE_ENG13_REQ__INVALIDATE_L1_PTES_MASK 0x00400000L
+#define VM_INVALIDATE_ENG13_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR_MASK 0x00800000L
+#define VM_INVALIDATE_ENG13_REQ__LOG_REQUEST_MASK 0x01000000L
+//VM_INVALIDATE_ENG14_REQ
+#define VM_INVALIDATE_ENG14_REQ__PER_VMID_INVALIDATE_REQ__SHIFT 0x0
+#define VM_INVALIDATE_ENG14_REQ__FLUSH_TYPE__SHIFT 0x10
+#define VM_INVALIDATE_ENG14_REQ__INVALIDATE_L2_PTES__SHIFT 0x12
+#define VM_INVALIDATE_ENG14_REQ__INVALIDATE_L2_PDE0__SHIFT 0x13
+#define VM_INVALIDATE_ENG14_REQ__INVALIDATE_L2_PDE1__SHIFT 0x14
+#define VM_INVALIDATE_ENG14_REQ__INVALIDATE_L2_PDE2__SHIFT 0x15
+#define VM_INVALIDATE_ENG14_REQ__INVALIDATE_L1_PTES__SHIFT 0x16
+#define VM_INVALIDATE_ENG14_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR__SHIFT 0x17
+#define VM_INVALIDATE_ENG14_REQ__LOG_REQUEST__SHIFT 0x18
+#define VM_INVALIDATE_ENG14_REQ__PER_VMID_INVALIDATE_REQ_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG14_REQ__FLUSH_TYPE_MASK 0x00030000L
+#define VM_INVALIDATE_ENG14_REQ__INVALIDATE_L2_PTES_MASK 0x00040000L
+#define VM_INVALIDATE_ENG14_REQ__INVALIDATE_L2_PDE0_MASK 0x00080000L
+#define VM_INVALIDATE_ENG14_REQ__INVALIDATE_L2_PDE1_MASK 0x00100000L
+#define VM_INVALIDATE_ENG14_REQ__INVALIDATE_L2_PDE2_MASK 0x00200000L
+#define VM_INVALIDATE_ENG14_REQ__INVALIDATE_L1_PTES_MASK 0x00400000L
+#define VM_INVALIDATE_ENG14_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR_MASK 0x00800000L
+#define VM_INVALIDATE_ENG14_REQ__LOG_REQUEST_MASK 0x01000000L
+//VM_INVALIDATE_ENG15_REQ
+#define VM_INVALIDATE_ENG15_REQ__PER_VMID_INVALIDATE_REQ__SHIFT 0x0
+#define VM_INVALIDATE_ENG15_REQ__FLUSH_TYPE__SHIFT 0x10
+#define VM_INVALIDATE_ENG15_REQ__INVALIDATE_L2_PTES__SHIFT 0x12
+#define VM_INVALIDATE_ENG15_REQ__INVALIDATE_L2_PDE0__SHIFT 0x13
+#define VM_INVALIDATE_ENG15_REQ__INVALIDATE_L2_PDE1__SHIFT 0x14
+#define VM_INVALIDATE_ENG15_REQ__INVALIDATE_L2_PDE2__SHIFT 0x15
+#define VM_INVALIDATE_ENG15_REQ__INVALIDATE_L1_PTES__SHIFT 0x16
+#define VM_INVALIDATE_ENG15_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR__SHIFT 0x17
+#define VM_INVALIDATE_ENG15_REQ__LOG_REQUEST__SHIFT 0x18
+#define VM_INVALIDATE_ENG15_REQ__PER_VMID_INVALIDATE_REQ_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG15_REQ__FLUSH_TYPE_MASK 0x00030000L
+#define VM_INVALIDATE_ENG15_REQ__INVALIDATE_L2_PTES_MASK 0x00040000L
+#define VM_INVALIDATE_ENG15_REQ__INVALIDATE_L2_PDE0_MASK 0x00080000L
+#define VM_INVALIDATE_ENG15_REQ__INVALIDATE_L2_PDE1_MASK 0x00100000L
+#define VM_INVALIDATE_ENG15_REQ__INVALIDATE_L2_PDE2_MASK 0x00200000L
+#define VM_INVALIDATE_ENG15_REQ__INVALIDATE_L1_PTES_MASK 0x00400000L
+#define VM_INVALIDATE_ENG15_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR_MASK 0x00800000L
+#define VM_INVALIDATE_ENG15_REQ__LOG_REQUEST_MASK 0x01000000L
+//VM_INVALIDATE_ENG16_REQ
+#define VM_INVALIDATE_ENG16_REQ__PER_VMID_INVALIDATE_REQ__SHIFT 0x0
+#define VM_INVALIDATE_ENG16_REQ__FLUSH_TYPE__SHIFT 0x10
+#define VM_INVALIDATE_ENG16_REQ__INVALIDATE_L2_PTES__SHIFT 0x12
+#define VM_INVALIDATE_ENG16_REQ__INVALIDATE_L2_PDE0__SHIFT 0x13
+#define VM_INVALIDATE_ENG16_REQ__INVALIDATE_L2_PDE1__SHIFT 0x14
+#define VM_INVALIDATE_ENG16_REQ__INVALIDATE_L2_PDE2__SHIFT 0x15
+#define VM_INVALIDATE_ENG16_REQ__INVALIDATE_L1_PTES__SHIFT 0x16
+#define VM_INVALIDATE_ENG16_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR__SHIFT 0x17
+#define VM_INVALIDATE_ENG16_REQ__LOG_REQUEST__SHIFT 0x18
+#define VM_INVALIDATE_ENG16_REQ__PER_VMID_INVALIDATE_REQ_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG16_REQ__FLUSH_TYPE_MASK 0x00030000L
+#define VM_INVALIDATE_ENG16_REQ__INVALIDATE_L2_PTES_MASK 0x00040000L
+#define VM_INVALIDATE_ENG16_REQ__INVALIDATE_L2_PDE0_MASK 0x00080000L
+#define VM_INVALIDATE_ENG16_REQ__INVALIDATE_L2_PDE1_MASK 0x00100000L
+#define VM_INVALIDATE_ENG16_REQ__INVALIDATE_L2_PDE2_MASK 0x00200000L
+#define VM_INVALIDATE_ENG16_REQ__INVALIDATE_L1_PTES_MASK 0x00400000L
+#define VM_INVALIDATE_ENG16_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR_MASK 0x00800000L
+#define VM_INVALIDATE_ENG16_REQ__LOG_REQUEST_MASK 0x01000000L
+//VM_INVALIDATE_ENG17_REQ
+#define VM_INVALIDATE_ENG17_REQ__PER_VMID_INVALIDATE_REQ__SHIFT 0x0
+#define VM_INVALIDATE_ENG17_REQ__FLUSH_TYPE__SHIFT 0x10
+#define VM_INVALIDATE_ENG17_REQ__INVALIDATE_L2_PTES__SHIFT 0x12
+#define VM_INVALIDATE_ENG17_REQ__INVALIDATE_L2_PDE0__SHIFT 0x13
+#define VM_INVALIDATE_ENG17_REQ__INVALIDATE_L2_PDE1__SHIFT 0x14
+#define VM_INVALIDATE_ENG17_REQ__INVALIDATE_L2_PDE2__SHIFT 0x15
+#define VM_INVALIDATE_ENG17_REQ__INVALIDATE_L1_PTES__SHIFT 0x16
+#define VM_INVALIDATE_ENG17_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR__SHIFT 0x17
+#define VM_INVALIDATE_ENG17_REQ__LOG_REQUEST__SHIFT 0x18
+#define VM_INVALIDATE_ENG17_REQ__PER_VMID_INVALIDATE_REQ_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG17_REQ__FLUSH_TYPE_MASK 0x00030000L
+#define VM_INVALIDATE_ENG17_REQ__INVALIDATE_L2_PTES_MASK 0x00040000L
+#define VM_INVALIDATE_ENG17_REQ__INVALIDATE_L2_PDE0_MASK 0x00080000L
+#define VM_INVALIDATE_ENG17_REQ__INVALIDATE_L2_PDE1_MASK 0x00100000L
+#define VM_INVALIDATE_ENG17_REQ__INVALIDATE_L2_PDE2_MASK 0x00200000L
+#define VM_INVALIDATE_ENG17_REQ__INVALIDATE_L1_PTES_MASK 0x00400000L
+#define VM_INVALIDATE_ENG17_REQ__CLEAR_PROTECTION_FAULT_STATUS_ADDR_MASK 0x00800000L
+#define VM_INVALIDATE_ENG17_REQ__LOG_REQUEST_MASK 0x01000000L
+//VM_INVALIDATE_ENG0_ACK
+#define VM_INVALIDATE_ENG0_ACK__PER_VMID_INVALIDATE_ACK__SHIFT 0x0
+#define VM_INVALIDATE_ENG0_ACK__SEMAPHORE__SHIFT 0x10
+#define VM_INVALIDATE_ENG0_ACK__PER_VMID_INVALIDATE_ACK_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG0_ACK__SEMAPHORE_MASK 0x00010000L
+//VM_INVALIDATE_ENG1_ACK
+#define VM_INVALIDATE_ENG1_ACK__PER_VMID_INVALIDATE_ACK__SHIFT 0x0
+#define VM_INVALIDATE_ENG1_ACK__SEMAPHORE__SHIFT 0x10
+#define VM_INVALIDATE_ENG1_ACK__PER_VMID_INVALIDATE_ACK_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG1_ACK__SEMAPHORE_MASK 0x00010000L
+//VM_INVALIDATE_ENG2_ACK
+#define VM_INVALIDATE_ENG2_ACK__PER_VMID_INVALIDATE_ACK__SHIFT 0x0
+#define VM_INVALIDATE_ENG2_ACK__SEMAPHORE__SHIFT 0x10
+#define VM_INVALIDATE_ENG2_ACK__PER_VMID_INVALIDATE_ACK_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG2_ACK__SEMAPHORE_MASK 0x00010000L
+//VM_INVALIDATE_ENG3_ACK
+#define VM_INVALIDATE_ENG3_ACK__PER_VMID_INVALIDATE_ACK__SHIFT 0x0
+#define VM_INVALIDATE_ENG3_ACK__SEMAPHORE__SHIFT 0x10
+#define VM_INVALIDATE_ENG3_ACK__PER_VMID_INVALIDATE_ACK_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG3_ACK__SEMAPHORE_MASK 0x00010000L
+//VM_INVALIDATE_ENG4_ACK
+#define VM_INVALIDATE_ENG4_ACK__PER_VMID_INVALIDATE_ACK__SHIFT 0x0
+#define VM_INVALIDATE_ENG4_ACK__SEMAPHORE__SHIFT 0x10
+#define VM_INVALIDATE_ENG4_ACK__PER_VMID_INVALIDATE_ACK_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG4_ACK__SEMAPHORE_MASK 0x00010000L
+//VM_INVALIDATE_ENG5_ACK
+#define VM_INVALIDATE_ENG5_ACK__PER_VMID_INVALIDATE_ACK__SHIFT 0x0
+#define VM_INVALIDATE_ENG5_ACK__SEMAPHORE__SHIFT 0x10
+#define VM_INVALIDATE_ENG5_ACK__PER_VMID_INVALIDATE_ACK_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG5_ACK__SEMAPHORE_MASK 0x00010000L
+//VM_INVALIDATE_ENG6_ACK
+#define VM_INVALIDATE_ENG6_ACK__PER_VMID_INVALIDATE_ACK__SHIFT 0x0
+#define VM_INVALIDATE_ENG6_ACK__SEMAPHORE__SHIFT 0x10
+#define VM_INVALIDATE_ENG6_ACK__PER_VMID_INVALIDATE_ACK_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG6_ACK__SEMAPHORE_MASK 0x00010000L
+//VM_INVALIDATE_ENG7_ACK
+#define VM_INVALIDATE_ENG7_ACK__PER_VMID_INVALIDATE_ACK__SHIFT 0x0
+#define VM_INVALIDATE_ENG7_ACK__SEMAPHORE__SHIFT 0x10
+#define VM_INVALIDATE_ENG7_ACK__PER_VMID_INVALIDATE_ACK_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG7_ACK__SEMAPHORE_MASK 0x00010000L
+//VM_INVALIDATE_ENG8_ACK
+#define VM_INVALIDATE_ENG8_ACK__PER_VMID_INVALIDATE_ACK__SHIFT 0x0
+#define VM_INVALIDATE_ENG8_ACK__SEMAPHORE__SHIFT 0x10
+#define VM_INVALIDATE_ENG8_ACK__PER_VMID_INVALIDATE_ACK_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG8_ACK__SEMAPHORE_MASK 0x00010000L
+//VM_INVALIDATE_ENG9_ACK
+#define VM_INVALIDATE_ENG9_ACK__PER_VMID_INVALIDATE_ACK__SHIFT 0x0
+#define VM_INVALIDATE_ENG9_ACK__SEMAPHORE__SHIFT 0x10
+#define VM_INVALIDATE_ENG9_ACK__PER_VMID_INVALIDATE_ACK_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG9_ACK__SEMAPHORE_MASK 0x00010000L
+//VM_INVALIDATE_ENG10_ACK
+#define VM_INVALIDATE_ENG10_ACK__PER_VMID_INVALIDATE_ACK__SHIFT 0x0
+#define VM_INVALIDATE_ENG10_ACK__SEMAPHORE__SHIFT 0x10
+#define VM_INVALIDATE_ENG10_ACK__PER_VMID_INVALIDATE_ACK_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG10_ACK__SEMAPHORE_MASK 0x00010000L
+//VM_INVALIDATE_ENG11_ACK
+#define VM_INVALIDATE_ENG11_ACK__PER_VMID_INVALIDATE_ACK__SHIFT 0x0
+#define VM_INVALIDATE_ENG11_ACK__SEMAPHORE__SHIFT 0x10
+#define VM_INVALIDATE_ENG11_ACK__PER_VMID_INVALIDATE_ACK_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG11_ACK__SEMAPHORE_MASK 0x00010000L
+//VM_INVALIDATE_ENG12_ACK
+#define VM_INVALIDATE_ENG12_ACK__PER_VMID_INVALIDATE_ACK__SHIFT 0x0
+#define VM_INVALIDATE_ENG12_ACK__SEMAPHORE__SHIFT 0x10
+#define VM_INVALIDATE_ENG12_ACK__PER_VMID_INVALIDATE_ACK_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG12_ACK__SEMAPHORE_MASK 0x00010000L
+//VM_INVALIDATE_ENG13_ACK
+#define VM_INVALIDATE_ENG13_ACK__PER_VMID_INVALIDATE_ACK__SHIFT 0x0
+#define VM_INVALIDATE_ENG13_ACK__SEMAPHORE__SHIFT 0x10
+#define VM_INVALIDATE_ENG13_ACK__PER_VMID_INVALIDATE_ACK_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG13_ACK__SEMAPHORE_MASK 0x00010000L
+//VM_INVALIDATE_ENG14_ACK
+#define VM_INVALIDATE_ENG14_ACK__PER_VMID_INVALIDATE_ACK__SHIFT 0x0
+#define VM_INVALIDATE_ENG14_ACK__SEMAPHORE__SHIFT 0x10
+#define VM_INVALIDATE_ENG14_ACK__PER_VMID_INVALIDATE_ACK_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG14_ACK__SEMAPHORE_MASK 0x00010000L
+//VM_INVALIDATE_ENG15_ACK
+#define VM_INVALIDATE_ENG15_ACK__PER_VMID_INVALIDATE_ACK__SHIFT 0x0
+#define VM_INVALIDATE_ENG15_ACK__SEMAPHORE__SHIFT 0x10
+#define VM_INVALIDATE_ENG15_ACK__PER_VMID_INVALIDATE_ACK_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG15_ACK__SEMAPHORE_MASK 0x00010000L
+//VM_INVALIDATE_ENG16_ACK
+#define VM_INVALIDATE_ENG16_ACK__PER_VMID_INVALIDATE_ACK__SHIFT 0x0
+#define VM_INVALIDATE_ENG16_ACK__SEMAPHORE__SHIFT 0x10
+#define VM_INVALIDATE_ENG16_ACK__PER_VMID_INVALIDATE_ACK_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG16_ACK__SEMAPHORE_MASK 0x00010000L
+//VM_INVALIDATE_ENG17_ACK
+#define VM_INVALIDATE_ENG17_ACK__PER_VMID_INVALIDATE_ACK__SHIFT 0x0
+#define VM_INVALIDATE_ENG17_ACK__SEMAPHORE__SHIFT 0x10
+#define VM_INVALIDATE_ENG17_ACK__PER_VMID_INVALIDATE_ACK_MASK 0x0000FFFFL
+#define VM_INVALIDATE_ENG17_ACK__SEMAPHORE_MASK 0x00010000L
+//VM_INVALIDATE_ENG0_ADDR_RANGE_LO32
+#define VM_INVALIDATE_ENG0_ADDR_RANGE_LO32__S_BIT__SHIFT 0x0
+#define VM_INVALIDATE_ENG0_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31__SHIFT 0x1
+#define VM_INVALIDATE_ENG0_ADDR_RANGE_LO32__S_BIT_MASK 0x00000001L
+#define VM_INVALIDATE_ENG0_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31_MASK 0xFFFFFFFEL
+//VM_INVALIDATE_ENG0_ADDR_RANGE_HI32
+#define VM_INVALIDATE_ENG0_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5__SHIFT 0x0
+#define VM_INVALIDATE_ENG0_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5_MASK 0x0000001FL
+//VM_INVALIDATE_ENG1_ADDR_RANGE_LO32
+#define VM_INVALIDATE_ENG1_ADDR_RANGE_LO32__S_BIT__SHIFT 0x0
+#define VM_INVALIDATE_ENG1_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31__SHIFT 0x1
+#define VM_INVALIDATE_ENG1_ADDR_RANGE_LO32__S_BIT_MASK 0x00000001L
+#define VM_INVALIDATE_ENG1_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31_MASK 0xFFFFFFFEL
+//VM_INVALIDATE_ENG1_ADDR_RANGE_HI32
+#define VM_INVALIDATE_ENG1_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5__SHIFT 0x0
+#define VM_INVALIDATE_ENG1_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5_MASK 0x0000001FL
+//VM_INVALIDATE_ENG2_ADDR_RANGE_LO32
+#define VM_INVALIDATE_ENG2_ADDR_RANGE_LO32__S_BIT__SHIFT 0x0
+#define VM_INVALIDATE_ENG2_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31__SHIFT 0x1
+#define VM_INVALIDATE_ENG2_ADDR_RANGE_LO32__S_BIT_MASK 0x00000001L
+#define VM_INVALIDATE_ENG2_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31_MASK 0xFFFFFFFEL
+//VM_INVALIDATE_ENG2_ADDR_RANGE_HI32
+#define VM_INVALIDATE_ENG2_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5__SHIFT 0x0
+#define VM_INVALIDATE_ENG2_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5_MASK 0x0000001FL
+//VM_INVALIDATE_ENG3_ADDR_RANGE_LO32
+#define VM_INVALIDATE_ENG3_ADDR_RANGE_LO32__S_BIT__SHIFT 0x0
+#define VM_INVALIDATE_ENG3_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31__SHIFT 0x1
+#define VM_INVALIDATE_ENG3_ADDR_RANGE_LO32__S_BIT_MASK 0x00000001L
+#define VM_INVALIDATE_ENG3_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31_MASK 0xFFFFFFFEL
+//VM_INVALIDATE_ENG3_ADDR_RANGE_HI32
+#define VM_INVALIDATE_ENG3_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5__SHIFT 0x0
+#define VM_INVALIDATE_ENG3_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5_MASK 0x0000001FL
+//VM_INVALIDATE_ENG4_ADDR_RANGE_LO32
+#define VM_INVALIDATE_ENG4_ADDR_RANGE_LO32__S_BIT__SHIFT 0x0
+#define VM_INVALIDATE_ENG4_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31__SHIFT 0x1
+#define VM_INVALIDATE_ENG4_ADDR_RANGE_LO32__S_BIT_MASK 0x00000001L
+#define VM_INVALIDATE_ENG4_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31_MASK 0xFFFFFFFEL
+//VM_INVALIDATE_ENG4_ADDR_RANGE_HI32
+#define VM_INVALIDATE_ENG4_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5__SHIFT 0x0
+#define VM_INVALIDATE_ENG4_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5_MASK 0x0000001FL
+//VM_INVALIDATE_ENG5_ADDR_RANGE_LO32
+#define VM_INVALIDATE_ENG5_ADDR_RANGE_LO32__S_BIT__SHIFT 0x0
+#define VM_INVALIDATE_ENG5_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31__SHIFT 0x1
+#define VM_INVALIDATE_ENG5_ADDR_RANGE_LO32__S_BIT_MASK 0x00000001L
+#define VM_INVALIDATE_ENG5_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31_MASK 0xFFFFFFFEL
+//VM_INVALIDATE_ENG5_ADDR_RANGE_HI32
+#define VM_INVALIDATE_ENG5_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5__SHIFT 0x0
+#define VM_INVALIDATE_ENG5_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5_MASK 0x0000001FL
+//VM_INVALIDATE_ENG6_ADDR_RANGE_LO32
+#define VM_INVALIDATE_ENG6_ADDR_RANGE_LO32__S_BIT__SHIFT 0x0
+#define VM_INVALIDATE_ENG6_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31__SHIFT 0x1
+#define VM_INVALIDATE_ENG6_ADDR_RANGE_LO32__S_BIT_MASK 0x00000001L
+#define VM_INVALIDATE_ENG6_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31_MASK 0xFFFFFFFEL
+//VM_INVALIDATE_ENG6_ADDR_RANGE_HI32
+#define VM_INVALIDATE_ENG6_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5__SHIFT 0x0
+#define VM_INVALIDATE_ENG6_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5_MASK 0x0000001FL
+//VM_INVALIDATE_ENG7_ADDR_RANGE_LO32
+#define VM_INVALIDATE_ENG7_ADDR_RANGE_LO32__S_BIT__SHIFT 0x0
+#define VM_INVALIDATE_ENG7_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31__SHIFT 0x1
+#define VM_INVALIDATE_ENG7_ADDR_RANGE_LO32__S_BIT_MASK 0x00000001L
+#define VM_INVALIDATE_ENG7_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31_MASK 0xFFFFFFFEL
+//VM_INVALIDATE_ENG7_ADDR_RANGE_HI32
+#define VM_INVALIDATE_ENG7_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5__SHIFT 0x0
+#define VM_INVALIDATE_ENG7_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5_MASK 0x0000001FL
+//VM_INVALIDATE_ENG8_ADDR_RANGE_LO32
+#define VM_INVALIDATE_ENG8_ADDR_RANGE_LO32__S_BIT__SHIFT 0x0
+#define VM_INVALIDATE_ENG8_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31__SHIFT 0x1
+#define VM_INVALIDATE_ENG8_ADDR_RANGE_LO32__S_BIT_MASK 0x00000001L
+#define VM_INVALIDATE_ENG8_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31_MASK 0xFFFFFFFEL
+//VM_INVALIDATE_ENG8_ADDR_RANGE_HI32
+#define VM_INVALIDATE_ENG8_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5__SHIFT 0x0
+#define VM_INVALIDATE_ENG8_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5_MASK 0x0000001FL
+//VM_INVALIDATE_ENG9_ADDR_RANGE_LO32
+#define VM_INVALIDATE_ENG9_ADDR_RANGE_LO32__S_BIT__SHIFT 0x0
+#define VM_INVALIDATE_ENG9_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31__SHIFT 0x1
+#define VM_INVALIDATE_ENG9_ADDR_RANGE_LO32__S_BIT_MASK 0x00000001L
+#define VM_INVALIDATE_ENG9_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31_MASK 0xFFFFFFFEL
+//VM_INVALIDATE_ENG9_ADDR_RANGE_HI32
+#define VM_INVALIDATE_ENG9_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5__SHIFT 0x0
+#define VM_INVALIDATE_ENG9_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5_MASK 0x0000001FL
+//VM_INVALIDATE_ENG10_ADDR_RANGE_LO32
+#define VM_INVALIDATE_ENG10_ADDR_RANGE_LO32__S_BIT__SHIFT 0x0
+#define VM_INVALIDATE_ENG10_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31__SHIFT 0x1
+#define VM_INVALIDATE_ENG10_ADDR_RANGE_LO32__S_BIT_MASK 0x00000001L
+#define VM_INVALIDATE_ENG10_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31_MASK 0xFFFFFFFEL
+//VM_INVALIDATE_ENG10_ADDR_RANGE_HI32
+#define VM_INVALIDATE_ENG10_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5__SHIFT 0x0
+#define VM_INVALIDATE_ENG10_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5_MASK 0x0000001FL
+//VM_INVALIDATE_ENG11_ADDR_RANGE_LO32
+#define VM_INVALIDATE_ENG11_ADDR_RANGE_LO32__S_BIT__SHIFT 0x0
+#define VM_INVALIDATE_ENG11_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31__SHIFT 0x1
+#define VM_INVALIDATE_ENG11_ADDR_RANGE_LO32__S_BIT_MASK 0x00000001L
+#define VM_INVALIDATE_ENG11_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31_MASK 0xFFFFFFFEL
+//VM_INVALIDATE_ENG11_ADDR_RANGE_HI32
+#define VM_INVALIDATE_ENG11_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5__SHIFT 0x0
+#define VM_INVALIDATE_ENG11_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5_MASK 0x0000001FL
+//VM_INVALIDATE_ENG12_ADDR_RANGE_LO32
+#define VM_INVALIDATE_ENG12_ADDR_RANGE_LO32__S_BIT__SHIFT 0x0
+#define VM_INVALIDATE_ENG12_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31__SHIFT 0x1
+#define VM_INVALIDATE_ENG12_ADDR_RANGE_LO32__S_BIT_MASK 0x00000001L
+#define VM_INVALIDATE_ENG12_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31_MASK 0xFFFFFFFEL
+//VM_INVALIDATE_ENG12_ADDR_RANGE_HI32
+#define VM_INVALIDATE_ENG12_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5__SHIFT 0x0
+#define VM_INVALIDATE_ENG12_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5_MASK 0x0000001FL
+//VM_INVALIDATE_ENG13_ADDR_RANGE_LO32
+#define VM_INVALIDATE_ENG13_ADDR_RANGE_LO32__S_BIT__SHIFT 0x0
+#define VM_INVALIDATE_ENG13_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31__SHIFT 0x1
+#define VM_INVALIDATE_ENG13_ADDR_RANGE_LO32__S_BIT_MASK 0x00000001L
+#define VM_INVALIDATE_ENG13_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31_MASK 0xFFFFFFFEL
+//VM_INVALIDATE_ENG13_ADDR_RANGE_HI32
+#define VM_INVALIDATE_ENG13_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5__SHIFT 0x0
+#define VM_INVALIDATE_ENG13_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5_MASK 0x0000001FL
+//VM_INVALIDATE_ENG14_ADDR_RANGE_LO32
+#define VM_INVALIDATE_ENG14_ADDR_RANGE_LO32__S_BIT__SHIFT 0x0
+#define VM_INVALIDATE_ENG14_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31__SHIFT 0x1
+#define VM_INVALIDATE_ENG14_ADDR_RANGE_LO32__S_BIT_MASK 0x00000001L
+#define VM_INVALIDATE_ENG14_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31_MASK 0xFFFFFFFEL
+//VM_INVALIDATE_ENG14_ADDR_RANGE_HI32
+#define VM_INVALIDATE_ENG14_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5__SHIFT 0x0
+#define VM_INVALIDATE_ENG14_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5_MASK 0x0000001FL
+//VM_INVALIDATE_ENG15_ADDR_RANGE_LO32
+#define VM_INVALIDATE_ENG15_ADDR_RANGE_LO32__S_BIT__SHIFT 0x0
+#define VM_INVALIDATE_ENG15_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31__SHIFT 0x1
+#define VM_INVALIDATE_ENG15_ADDR_RANGE_LO32__S_BIT_MASK 0x00000001L
+#define VM_INVALIDATE_ENG15_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31_MASK 0xFFFFFFFEL
+//VM_INVALIDATE_ENG15_ADDR_RANGE_HI32
+#define VM_INVALIDATE_ENG15_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5__SHIFT 0x0
+#define VM_INVALIDATE_ENG15_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5_MASK 0x0000001FL
+//VM_INVALIDATE_ENG16_ADDR_RANGE_LO32
+#define VM_INVALIDATE_ENG16_ADDR_RANGE_LO32__S_BIT__SHIFT 0x0
+#define VM_INVALIDATE_ENG16_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31__SHIFT 0x1
+#define VM_INVALIDATE_ENG16_ADDR_RANGE_LO32__S_BIT_MASK 0x00000001L
+#define VM_INVALIDATE_ENG16_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31_MASK 0xFFFFFFFEL
+//VM_INVALIDATE_ENG16_ADDR_RANGE_HI32
+#define VM_INVALIDATE_ENG16_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5__SHIFT 0x0
+#define VM_INVALIDATE_ENG16_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5_MASK 0x0000001FL
+//VM_INVALIDATE_ENG17_ADDR_RANGE_LO32
+#define VM_INVALIDATE_ENG17_ADDR_RANGE_LO32__S_BIT__SHIFT 0x0
+#define VM_INVALIDATE_ENG17_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31__SHIFT 0x1
+#define VM_INVALIDATE_ENG17_ADDR_RANGE_LO32__S_BIT_MASK 0x00000001L
+#define VM_INVALIDATE_ENG17_ADDR_RANGE_LO32__LOGI_PAGE_ADDR_RANGE_LO31_MASK 0xFFFFFFFEL
+//VM_INVALIDATE_ENG17_ADDR_RANGE_HI32
+#define VM_INVALIDATE_ENG17_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5__SHIFT 0x0
+#define VM_INVALIDATE_ENG17_ADDR_RANGE_HI32__LOGI_PAGE_ADDR_RANGE_HI5_MASK 0x0000001FL
+//VM_CONTEXT0_PAGE_TABLE_BASE_ADDR_LO32
+#define VM_CONTEXT0_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32__SHIFT 0x0
+#define VM_CONTEXT0_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT0_PAGE_TABLE_BASE_ADDR_HI32
+#define VM_CONTEXT0_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32__SHIFT 0x0
+#define VM_CONTEXT0_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32_MASK 0xFFFFFFFFL
+//VM_CONTEXT1_PAGE_TABLE_BASE_ADDR_LO32
+#define VM_CONTEXT1_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32__SHIFT 0x0
+#define VM_CONTEXT1_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT1_PAGE_TABLE_BASE_ADDR_HI32
+#define VM_CONTEXT1_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32__SHIFT 0x0
+#define VM_CONTEXT1_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32_MASK 0xFFFFFFFFL
+//VM_CONTEXT2_PAGE_TABLE_BASE_ADDR_LO32
+#define VM_CONTEXT2_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32__SHIFT 0x0
+#define VM_CONTEXT2_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT2_PAGE_TABLE_BASE_ADDR_HI32
+#define VM_CONTEXT2_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32__SHIFT 0x0
+#define VM_CONTEXT2_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32_MASK 0xFFFFFFFFL
+//VM_CONTEXT3_PAGE_TABLE_BASE_ADDR_LO32
+#define VM_CONTEXT3_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32__SHIFT 0x0
+#define VM_CONTEXT3_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT3_PAGE_TABLE_BASE_ADDR_HI32
+#define VM_CONTEXT3_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32__SHIFT 0x0
+#define VM_CONTEXT3_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32_MASK 0xFFFFFFFFL
+//VM_CONTEXT4_PAGE_TABLE_BASE_ADDR_LO32
+#define VM_CONTEXT4_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32__SHIFT 0x0
+#define VM_CONTEXT4_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT4_PAGE_TABLE_BASE_ADDR_HI32
+#define VM_CONTEXT4_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32__SHIFT 0x0
+#define VM_CONTEXT4_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32_MASK 0xFFFFFFFFL
+//VM_CONTEXT5_PAGE_TABLE_BASE_ADDR_LO32
+#define VM_CONTEXT5_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32__SHIFT 0x0
+#define VM_CONTEXT5_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT5_PAGE_TABLE_BASE_ADDR_HI32
+#define VM_CONTEXT5_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32__SHIFT 0x0
+#define VM_CONTEXT5_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32_MASK 0xFFFFFFFFL
+//VM_CONTEXT6_PAGE_TABLE_BASE_ADDR_LO32
+#define VM_CONTEXT6_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32__SHIFT 0x0
+#define VM_CONTEXT6_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT6_PAGE_TABLE_BASE_ADDR_HI32
+#define VM_CONTEXT6_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32__SHIFT 0x0
+#define VM_CONTEXT6_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32_MASK 0xFFFFFFFFL
+//VM_CONTEXT7_PAGE_TABLE_BASE_ADDR_LO32
+#define VM_CONTEXT7_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32__SHIFT 0x0
+#define VM_CONTEXT7_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT7_PAGE_TABLE_BASE_ADDR_HI32
+#define VM_CONTEXT7_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32__SHIFT 0x0
+#define VM_CONTEXT7_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32_MASK 0xFFFFFFFFL
+//VM_CONTEXT8_PAGE_TABLE_BASE_ADDR_LO32
+#define VM_CONTEXT8_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32__SHIFT 0x0
+#define VM_CONTEXT8_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT8_PAGE_TABLE_BASE_ADDR_HI32
+#define VM_CONTEXT8_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32__SHIFT 0x0
+#define VM_CONTEXT8_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32_MASK 0xFFFFFFFFL
+//VM_CONTEXT9_PAGE_TABLE_BASE_ADDR_LO32
+#define VM_CONTEXT9_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32__SHIFT 0x0
+#define VM_CONTEXT9_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT9_PAGE_TABLE_BASE_ADDR_HI32
+#define VM_CONTEXT9_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32__SHIFT 0x0
+#define VM_CONTEXT9_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32_MASK 0xFFFFFFFFL
+//VM_CONTEXT10_PAGE_TABLE_BASE_ADDR_LO32
+#define VM_CONTEXT10_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32__SHIFT 0x0
+#define VM_CONTEXT10_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT10_PAGE_TABLE_BASE_ADDR_HI32
+#define VM_CONTEXT10_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32__SHIFT 0x0
+#define VM_CONTEXT10_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32_MASK 0xFFFFFFFFL
+//VM_CONTEXT11_PAGE_TABLE_BASE_ADDR_LO32
+#define VM_CONTEXT11_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32__SHIFT 0x0
+#define VM_CONTEXT11_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT11_PAGE_TABLE_BASE_ADDR_HI32
+#define VM_CONTEXT11_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32__SHIFT 0x0
+#define VM_CONTEXT11_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32_MASK 0xFFFFFFFFL
+//VM_CONTEXT12_PAGE_TABLE_BASE_ADDR_LO32
+#define VM_CONTEXT12_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32__SHIFT 0x0
+#define VM_CONTEXT12_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT12_PAGE_TABLE_BASE_ADDR_HI32
+#define VM_CONTEXT12_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32__SHIFT 0x0
+#define VM_CONTEXT12_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32_MASK 0xFFFFFFFFL
+//VM_CONTEXT13_PAGE_TABLE_BASE_ADDR_LO32
+#define VM_CONTEXT13_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32__SHIFT 0x0
+#define VM_CONTEXT13_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT13_PAGE_TABLE_BASE_ADDR_HI32
+#define VM_CONTEXT13_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32__SHIFT 0x0
+#define VM_CONTEXT13_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32_MASK 0xFFFFFFFFL
+//VM_CONTEXT14_PAGE_TABLE_BASE_ADDR_LO32
+#define VM_CONTEXT14_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32__SHIFT 0x0
+#define VM_CONTEXT14_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT14_PAGE_TABLE_BASE_ADDR_HI32
+#define VM_CONTEXT14_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32__SHIFT 0x0
+#define VM_CONTEXT14_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32_MASK 0xFFFFFFFFL
+//VM_CONTEXT15_PAGE_TABLE_BASE_ADDR_LO32
+#define VM_CONTEXT15_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32__SHIFT 0x0
+#define VM_CONTEXT15_PAGE_TABLE_BASE_ADDR_LO32__PAGE_DIRECTORY_ENTRY_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT15_PAGE_TABLE_BASE_ADDR_HI32
+#define VM_CONTEXT15_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32__SHIFT 0x0
+#define VM_CONTEXT15_PAGE_TABLE_BASE_ADDR_HI32__PAGE_DIRECTORY_ENTRY_HI32_MASK 0xFFFFFFFFL
+//VM_CONTEXT0_PAGE_TABLE_START_ADDR_LO32
+#define VM_CONTEXT0_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT0_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT0_PAGE_TABLE_START_ADDR_HI32
+#define VM_CONTEXT0_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT0_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT1_PAGE_TABLE_START_ADDR_LO32
+#define VM_CONTEXT1_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT1_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT1_PAGE_TABLE_START_ADDR_HI32
+#define VM_CONTEXT1_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT1_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT2_PAGE_TABLE_START_ADDR_LO32
+#define VM_CONTEXT2_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT2_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT2_PAGE_TABLE_START_ADDR_HI32
+#define VM_CONTEXT2_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT2_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT3_PAGE_TABLE_START_ADDR_LO32
+#define VM_CONTEXT3_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT3_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT3_PAGE_TABLE_START_ADDR_HI32
+#define VM_CONTEXT3_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT3_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT4_PAGE_TABLE_START_ADDR_LO32
+#define VM_CONTEXT4_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT4_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT4_PAGE_TABLE_START_ADDR_HI32
+#define VM_CONTEXT4_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT4_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT5_PAGE_TABLE_START_ADDR_LO32
+#define VM_CONTEXT5_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT5_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT5_PAGE_TABLE_START_ADDR_HI32
+#define VM_CONTEXT5_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT5_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT6_PAGE_TABLE_START_ADDR_LO32
+#define VM_CONTEXT6_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT6_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT6_PAGE_TABLE_START_ADDR_HI32
+#define VM_CONTEXT6_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT6_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT7_PAGE_TABLE_START_ADDR_LO32
+#define VM_CONTEXT7_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT7_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT7_PAGE_TABLE_START_ADDR_HI32
+#define VM_CONTEXT7_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT7_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT8_PAGE_TABLE_START_ADDR_LO32
+#define VM_CONTEXT8_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT8_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT8_PAGE_TABLE_START_ADDR_HI32
+#define VM_CONTEXT8_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT8_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT9_PAGE_TABLE_START_ADDR_LO32
+#define VM_CONTEXT9_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT9_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT9_PAGE_TABLE_START_ADDR_HI32
+#define VM_CONTEXT9_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT9_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT10_PAGE_TABLE_START_ADDR_LO32
+#define VM_CONTEXT10_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT10_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT10_PAGE_TABLE_START_ADDR_HI32
+#define VM_CONTEXT10_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT10_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT11_PAGE_TABLE_START_ADDR_LO32
+#define VM_CONTEXT11_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT11_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT11_PAGE_TABLE_START_ADDR_HI32
+#define VM_CONTEXT11_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT11_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT12_PAGE_TABLE_START_ADDR_LO32
+#define VM_CONTEXT12_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT12_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT12_PAGE_TABLE_START_ADDR_HI32
+#define VM_CONTEXT12_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT12_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT13_PAGE_TABLE_START_ADDR_LO32
+#define VM_CONTEXT13_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT13_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT13_PAGE_TABLE_START_ADDR_HI32
+#define VM_CONTEXT13_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT13_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT14_PAGE_TABLE_START_ADDR_LO32
+#define VM_CONTEXT14_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT14_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT14_PAGE_TABLE_START_ADDR_HI32
+#define VM_CONTEXT14_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT14_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT15_PAGE_TABLE_START_ADDR_LO32
+#define VM_CONTEXT15_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT15_PAGE_TABLE_START_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT15_PAGE_TABLE_START_ADDR_HI32
+#define VM_CONTEXT15_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT15_PAGE_TABLE_START_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT0_PAGE_TABLE_END_ADDR_LO32
+#define VM_CONTEXT0_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT0_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT0_PAGE_TABLE_END_ADDR_HI32
+#define VM_CONTEXT0_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT0_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT1_PAGE_TABLE_END_ADDR_LO32
+#define VM_CONTEXT1_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT1_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT1_PAGE_TABLE_END_ADDR_HI32
+#define VM_CONTEXT1_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT1_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT2_PAGE_TABLE_END_ADDR_LO32
+#define VM_CONTEXT2_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT2_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT2_PAGE_TABLE_END_ADDR_HI32
+#define VM_CONTEXT2_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT2_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT3_PAGE_TABLE_END_ADDR_LO32
+#define VM_CONTEXT3_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT3_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT3_PAGE_TABLE_END_ADDR_HI32
+#define VM_CONTEXT3_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT3_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT4_PAGE_TABLE_END_ADDR_LO32
+#define VM_CONTEXT4_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT4_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT4_PAGE_TABLE_END_ADDR_HI32
+#define VM_CONTEXT4_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT4_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT5_PAGE_TABLE_END_ADDR_LO32
+#define VM_CONTEXT5_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT5_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT5_PAGE_TABLE_END_ADDR_HI32
+#define VM_CONTEXT5_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT5_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT6_PAGE_TABLE_END_ADDR_LO32
+#define VM_CONTEXT6_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT6_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT6_PAGE_TABLE_END_ADDR_HI32
+#define VM_CONTEXT6_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT6_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT7_PAGE_TABLE_END_ADDR_LO32
+#define VM_CONTEXT7_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT7_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT7_PAGE_TABLE_END_ADDR_HI32
+#define VM_CONTEXT7_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT7_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT8_PAGE_TABLE_END_ADDR_LO32
+#define VM_CONTEXT8_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT8_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT8_PAGE_TABLE_END_ADDR_HI32
+#define VM_CONTEXT8_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT8_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT9_PAGE_TABLE_END_ADDR_LO32
+#define VM_CONTEXT9_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT9_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT9_PAGE_TABLE_END_ADDR_HI32
+#define VM_CONTEXT9_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT9_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT10_PAGE_TABLE_END_ADDR_LO32
+#define VM_CONTEXT10_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT10_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT10_PAGE_TABLE_END_ADDR_HI32
+#define VM_CONTEXT10_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT10_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT11_PAGE_TABLE_END_ADDR_LO32
+#define VM_CONTEXT11_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT11_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT11_PAGE_TABLE_END_ADDR_HI32
+#define VM_CONTEXT11_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT11_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT12_PAGE_TABLE_END_ADDR_LO32
+#define VM_CONTEXT12_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT12_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT12_PAGE_TABLE_END_ADDR_HI32
+#define VM_CONTEXT12_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT12_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT13_PAGE_TABLE_END_ADDR_LO32
+#define VM_CONTEXT13_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT13_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT13_PAGE_TABLE_END_ADDR_HI32
+#define VM_CONTEXT13_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT13_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT14_PAGE_TABLE_END_ADDR_LO32
+#define VM_CONTEXT14_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT14_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT14_PAGE_TABLE_END_ADDR_HI32
+#define VM_CONTEXT14_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT14_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+//VM_CONTEXT15_PAGE_TABLE_END_ADDR_LO32
+#define VM_CONTEXT15_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32__SHIFT 0x0
+#define VM_CONTEXT15_PAGE_TABLE_END_ADDR_LO32__LOGICAL_PAGE_NUMBER_LO32_MASK 0xFFFFFFFFL
+//VM_CONTEXT15_PAGE_TABLE_END_ADDR_HI32
+#define VM_CONTEXT15_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4__SHIFT 0x0
+#define VM_CONTEXT15_PAGE_TABLE_END_ADDR_HI32__LOGICAL_PAGE_NUMBER_HI4_MASK 0x0000000FL
+
+
+// addressBlock: aid_mmhub_utcl2_vmsharedpfdec
+//MC_VM_NB_MMIOBASE
+#define MC_VM_NB_MMIOBASE__MMIOBASE__SHIFT 0x0
+#define MC_VM_NB_MMIOBASE__MMIOBASE_MASK 0xFFFFFFFFL
+//MC_VM_NB_MMIOLIMIT
+#define MC_VM_NB_MMIOLIMIT__MMIOLIMIT__SHIFT 0x0
+#define MC_VM_NB_MMIOLIMIT__MMIOLIMIT_MASK 0xFFFFFFFFL
+//MC_VM_NB_PCI_CTRL
+#define MC_VM_NB_PCI_CTRL__MMIOENABLE__SHIFT 0x17
+#define MC_VM_NB_PCI_CTRL__MMIOENABLE_MASK 0x00800000L
+//MC_VM_NB_PCI_ARB
+#define MC_VM_NB_PCI_ARB__VGA_HOLE__SHIFT 0x3
+#define MC_VM_NB_PCI_ARB__VGA_HOLE_MASK 0x00000008L
+//MC_VM_NB_TOP_OF_DRAM_SLOT1
+#define MC_VM_NB_TOP_OF_DRAM_SLOT1__TOP_OF_DRAM__SHIFT 0x17
+#define MC_VM_NB_TOP_OF_DRAM_SLOT1__TOP_OF_DRAM_MASK 0xFF800000L
+//MC_VM_NB_LOWER_TOP_OF_DRAM2
+#define MC_VM_NB_LOWER_TOP_OF_DRAM2__ENABLE__SHIFT 0x0
+#define MC_VM_NB_LOWER_TOP_OF_DRAM2__LOWER_TOM2__SHIFT 0x17
+#define MC_VM_NB_LOWER_TOP_OF_DRAM2__ENABLE_MASK 0x00000001L
+#define MC_VM_NB_LOWER_TOP_OF_DRAM2__LOWER_TOM2_MASK 0xFF800000L
+//MC_VM_NB_UPPER_TOP_OF_DRAM2
+#define MC_VM_NB_UPPER_TOP_OF_DRAM2__UPPER_TOM2__SHIFT 0x0
+#define MC_VM_NB_UPPER_TOP_OF_DRAM2__UPPER_TOM2_MASK 0x0000FFFFL
+//MC_VM_FB_OFFSET
+#define MC_VM_FB_OFFSET__FB_OFFSET__SHIFT 0x0
+#define MC_VM_FB_OFFSET__FB_OFFSET_MASK 0x00FFFFFFL
+//MC_VM_SYSTEM_APERTURE_DEFAULT_ADDR_LSB
+#define MC_VM_SYSTEM_APERTURE_DEFAULT_ADDR_LSB__PHYSICAL_PAGE_NUMBER_LSB__SHIFT 0x0
+#define MC_VM_SYSTEM_APERTURE_DEFAULT_ADDR_LSB__PHYSICAL_PAGE_NUMBER_LSB_MASK 0xFFFFFFFFL
+//MC_VM_SYSTEM_APERTURE_DEFAULT_ADDR_MSB
+#define MC_VM_SYSTEM_APERTURE_DEFAULT_ADDR_MSB__PHYSICAL_PAGE_NUMBER_MSB__SHIFT 0x0
+#define MC_VM_SYSTEM_APERTURE_DEFAULT_ADDR_MSB__PHYSICAL_PAGE_NUMBER_MSB_MASK 0x0000000FL
+//MC_VM_STEERING
+#define MC_VM_STEERING__DEFAULT_STEERING__SHIFT 0x0
+#define MC_VM_STEERING__DEFAULT_STEERING_MASK 0x00000003L
+//MC_SHARED_VIRT_RESET_REQ
+#define MC_SHARED_VIRT_RESET_REQ__VF__SHIFT 0x0
+#define MC_SHARED_VIRT_RESET_REQ__PF__SHIFT 0x1f
+#define MC_SHARED_VIRT_RESET_REQ__VF_MASK 0x0000FFFFL
+#define MC_SHARED_VIRT_RESET_REQ__PF_MASK 0x80000000L
+//MC_MEM_POWER_LS
+#define MC_MEM_POWER_LS__LS_SETUP__SHIFT 0x0
+#define MC_MEM_POWER_LS__LS_HOLD__SHIFT 0x6
+#define MC_MEM_POWER_LS__LS_SETUP_MASK 0x0000003FL
+#define MC_MEM_POWER_LS__LS_HOLD_MASK 0x00000FC0L
+//MC_VM_CACHEABLE_DRAM_ADDRESS_START
+#define MC_VM_CACHEABLE_DRAM_ADDRESS_START__ADDRESS__SHIFT 0x0
+#define MC_VM_CACHEABLE_DRAM_ADDRESS_START__ADDRESS_MASK 0x00FFFFFFL
+//MC_VM_CACHEABLE_DRAM_ADDRESS_END
+#define MC_VM_CACHEABLE_DRAM_ADDRESS_END__ADDRESS__SHIFT 0x0
+#define MC_VM_CACHEABLE_DRAM_ADDRESS_END__ADDRESS_MASK 0x00FFFFFFL
+//MC_VM_APT_CNTL
+#define MC_VM_APT_CNTL__FORCE_MTYPE_UC__SHIFT 0x0
+#define MC_VM_APT_CNTL__DIRECT_SYSTEM_EN__SHIFT 0x1
+#define MC_VM_APT_CNTL__CHECK_IS_LOCAL__SHIFT 0x2
+#define MC_VM_APT_CNTL__PERMS_GRANTED__SHIFT 0x3
+#define MC_VM_APT_CNTL__LOCAL_SYSMEM_APERTURE_CNTL__SHIFT 0x4
+#define MC_VM_APT_CNTL__FORCE_MTYPE_UC_MASK 0x00000001L
+#define MC_VM_APT_CNTL__DIRECT_SYSTEM_EN_MASK 0x00000002L
+#define MC_VM_APT_CNTL__CHECK_IS_LOCAL_MASK 0x00000004L
+#define MC_VM_APT_CNTL__PERMS_GRANTED_MASK 0x00000008L
+#define MC_VM_APT_CNTL__LOCAL_SYSMEM_APERTURE_CNTL_MASK 0x00000030L
+//MC_VM_LOCAL_HBM_ADDRESS_START
+#define MC_VM_LOCAL_HBM_ADDRESS_START__ADDRESS__SHIFT 0x0
+#define MC_VM_LOCAL_HBM_ADDRESS_START__ADDRESS_MASK 0x00FFFFFFL
+//MC_VM_LOCAL_HBM_ADDRESS_END
+#define MC_VM_LOCAL_HBM_ADDRESS_END__ADDRESS__SHIFT 0x0
+#define MC_VM_LOCAL_HBM_ADDRESS_END__ADDRESS_MASK 0x00FFFFFFL
+//MC_VM_LOCAL_HBM_ADDRESS_LOCK_CNTL
+#define MC_VM_LOCAL_HBM_ADDRESS_LOCK_CNTL__LOCK__SHIFT 0x0
+#define MC_VM_LOCAL_HBM_ADDRESS_LOCK_CNTL__LOCK_MASK 0x00000001L
+//UTCL2_CGTT_CLK_CTRL
+#define UTCL2_CGTT_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define UTCL2_CGTT_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define UTCL2_CGTT_CLK_CTRL__SOFT_OVERRIDE_EXTRA__SHIFT 0xc
+#define UTCL2_CGTT_CLK_CTRL__MGLS_OVERRIDE__SHIFT 0xf
+#define UTCL2_CGTT_CLK_CTRL__SOFT_STALL_OVERRIDE__SHIFT 0x10
+#define UTCL2_CGTT_CLK_CTRL__SOFT_OVERRIDE__SHIFT 0x18
+#define UTCL2_CGTT_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define UTCL2_CGTT_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define UTCL2_CGTT_CLK_CTRL__SOFT_OVERRIDE_EXTRA_MASK 0x00007000L
+#define UTCL2_CGTT_CLK_CTRL__MGLS_OVERRIDE_MASK 0x00008000L
+#define UTCL2_CGTT_CLK_CTRL__SOFT_STALL_OVERRIDE_MASK 0x00FF0000L
+#define UTCL2_CGTT_CLK_CTRL__SOFT_OVERRIDE_MASK 0xFF000000L
+//MC_VM_XGMI_LFB_CNTL
+#define MC_VM_XGMI_LFB_CNTL__PF_LFB_REGION__SHIFT 0x0
+#define MC_VM_XGMI_LFB_CNTL__PF_MAX_REGION__SHIFT 0x4
+#define MC_VM_XGMI_LFB_CNTL__PF_LFB_REGION_MASK 0x0000000FL
+#define MC_VM_XGMI_LFB_CNTL__PF_MAX_REGION_MASK 0x000000F0L
+//MC_VM_XGMI_LFB_SIZE
+#define MC_VM_XGMI_LFB_SIZE__PF_LFB_SIZE__SHIFT 0x0
+#define MC_VM_XGMI_LFB_SIZE__PF_LFB_SIZE_MASK 0x0001FFFFL
+//MC_VM_CACHEABLE_DRAM_CNTL
+#define MC_VM_CACHEABLE_DRAM_CNTL__ENABLE_CACHEABLE_DRAM_ADDRESS_APERTURE__SHIFT 0x0
+#define MC_VM_CACHEABLE_DRAM_CNTL__ENABLE_CACHEABLE_DRAM_ADDRESS_APERTURE_MASK 0x00000001L
+//MC_VM_HOST_MAPPING
+#define MC_VM_HOST_MAPPING__MODE__SHIFT 0x0
+#define MC_VM_HOST_MAPPING__MODE_MASK 0x00000001L
+
+
+// addressBlock: aid_mmhub_utcl2_vmsharedvcdec
+//MC_VM_FB_LOCATION_BASE
+#define MC_VM_FB_LOCATION_BASE__FB_BASE__SHIFT 0x0
+#define MC_VM_FB_LOCATION_BASE__FB_BASE_MASK 0x00FFFFFFL
+//MC_VM_FB_LOCATION_TOP
+#define MC_VM_FB_LOCATION_TOP__FB_TOP__SHIFT 0x0
+#define MC_VM_FB_LOCATION_TOP__FB_TOP_MASK 0x00FFFFFFL
+//MC_VM_AGP_TOP
+#define MC_VM_AGP_TOP__AGP_TOP__SHIFT 0x0
+#define MC_VM_AGP_TOP__AGP_TOP_MASK 0x00FFFFFFL
+//MC_VM_AGP_BOT
+#define MC_VM_AGP_BOT__AGP_BOT__SHIFT 0x0
+#define MC_VM_AGP_BOT__AGP_BOT_MASK 0x00FFFFFFL
+//MC_VM_AGP_BASE
+#define MC_VM_AGP_BASE__AGP_BASE__SHIFT 0x0
+#define MC_VM_AGP_BASE__AGP_BASE_MASK 0x00FFFFFFL
+//MC_VM_SYSTEM_APERTURE_LOW_ADDR
+#define MC_VM_SYSTEM_APERTURE_LOW_ADDR__LOGICAL_ADDR__SHIFT 0x0
+#define MC_VM_SYSTEM_APERTURE_LOW_ADDR__LOGICAL_ADDR_MASK 0x3FFFFFFFL
+//MC_VM_SYSTEM_APERTURE_HIGH_ADDR
+#define MC_VM_SYSTEM_APERTURE_HIGH_ADDR__LOGICAL_ADDR__SHIFT 0x0
+#define MC_VM_SYSTEM_APERTURE_HIGH_ADDR__LOGICAL_ADDR_MASK 0x3FFFFFFFL
+//MC_VM_MX_L1_TLB_CNTL
+#define MC_VM_MX_L1_TLB_CNTL__ENABLE_L1_TLB__SHIFT 0x0
+#define MC_VM_MX_L1_TLB_CNTL__SYSTEM_ACCESS_MODE__SHIFT 0x3
+#define MC_VM_MX_L1_TLB_CNTL__SYSTEM_APERTURE_UNMAPPED_ACCESS__SHIFT 0x5
+#define MC_VM_MX_L1_TLB_CNTL__ENABLE_ADVANCED_DRIVER_MODEL__SHIFT 0x6
+#define MC_VM_MX_L1_TLB_CNTL__ECO_BITS__SHIFT 0x7
+#define MC_VM_MX_L1_TLB_CNTL__MTYPE__SHIFT 0xb
+#define MC_VM_MX_L1_TLB_CNTL__ATC_EN__SHIFT 0xd
+#define MC_VM_MX_L1_TLB_CNTL__ENABLE_L1_TLB_MASK 0x00000001L
+#define MC_VM_MX_L1_TLB_CNTL__SYSTEM_ACCESS_MODE_MASK 0x00000018L
+#define MC_VM_MX_L1_TLB_CNTL__SYSTEM_APERTURE_UNMAPPED_ACCESS_MASK 0x00000020L
+#define MC_VM_MX_L1_TLB_CNTL__ENABLE_ADVANCED_DRIVER_MODEL_MASK 0x00000040L
+#define MC_VM_MX_L1_TLB_CNTL__ECO_BITS_MASK 0x00000780L
+#define MC_VM_MX_L1_TLB_CNTL__MTYPE_MASK 0x00001800L
+#define MC_VM_MX_L1_TLB_CNTL__ATC_EN_MASK 0x00002000L
+
+
+// addressBlock: aid_mmhub_utcl2_vmsharedhvdec
+//MC_VM_FB_SIZE_OFFSET_VF0
+#define MC_VM_FB_SIZE_OFFSET_VF0__VF_FB_SIZE__SHIFT 0x0
+#define MC_VM_FB_SIZE_OFFSET_VF0__VF_FB_OFFSET__SHIFT 0x10
+#define MC_VM_FB_SIZE_OFFSET_VF0__VF_FB_SIZE_MASK 0x0000FFFFL
+#define MC_VM_FB_SIZE_OFFSET_VF0__VF_FB_OFFSET_MASK 0xFFFF0000L
+//MC_VM_FB_SIZE_OFFSET_VF1
+#define MC_VM_FB_SIZE_OFFSET_VF1__VF_FB_SIZE__SHIFT 0x0
+#define MC_VM_FB_SIZE_OFFSET_VF1__VF_FB_OFFSET__SHIFT 0x10
+#define MC_VM_FB_SIZE_OFFSET_VF1__VF_FB_SIZE_MASK 0x0000FFFFL
+#define MC_VM_FB_SIZE_OFFSET_VF1__VF_FB_OFFSET_MASK 0xFFFF0000L
+//MC_VM_FB_SIZE_OFFSET_VF2
+#define MC_VM_FB_SIZE_OFFSET_VF2__VF_FB_SIZE__SHIFT 0x0
+#define MC_VM_FB_SIZE_OFFSET_VF2__VF_FB_OFFSET__SHIFT 0x10
+#define MC_VM_FB_SIZE_OFFSET_VF2__VF_FB_SIZE_MASK 0x0000FFFFL
+#define MC_VM_FB_SIZE_OFFSET_VF2__VF_FB_OFFSET_MASK 0xFFFF0000L
+//MC_VM_FB_SIZE_OFFSET_VF3
+#define MC_VM_FB_SIZE_OFFSET_VF3__VF_FB_SIZE__SHIFT 0x0
+#define MC_VM_FB_SIZE_OFFSET_VF3__VF_FB_OFFSET__SHIFT 0x10
+#define MC_VM_FB_SIZE_OFFSET_VF3__VF_FB_SIZE_MASK 0x0000FFFFL
+#define MC_VM_FB_SIZE_OFFSET_VF3__VF_FB_OFFSET_MASK 0xFFFF0000L
+//MC_VM_FB_SIZE_OFFSET_VF4
+#define MC_VM_FB_SIZE_OFFSET_VF4__VF_FB_SIZE__SHIFT 0x0
+#define MC_VM_FB_SIZE_OFFSET_VF4__VF_FB_OFFSET__SHIFT 0x10
+#define MC_VM_FB_SIZE_OFFSET_VF4__VF_FB_SIZE_MASK 0x0000FFFFL
+#define MC_VM_FB_SIZE_OFFSET_VF4__VF_FB_OFFSET_MASK 0xFFFF0000L
+//MC_VM_FB_SIZE_OFFSET_VF5
+#define MC_VM_FB_SIZE_OFFSET_VF5__VF_FB_SIZE__SHIFT 0x0
+#define MC_VM_FB_SIZE_OFFSET_VF5__VF_FB_OFFSET__SHIFT 0x10
+#define MC_VM_FB_SIZE_OFFSET_VF5__VF_FB_SIZE_MASK 0x0000FFFFL
+#define MC_VM_FB_SIZE_OFFSET_VF5__VF_FB_OFFSET_MASK 0xFFFF0000L
+//MC_VM_FB_SIZE_OFFSET_VF6
+#define MC_VM_FB_SIZE_OFFSET_VF6__VF_FB_SIZE__SHIFT 0x0
+#define MC_VM_FB_SIZE_OFFSET_VF6__VF_FB_OFFSET__SHIFT 0x10
+#define MC_VM_FB_SIZE_OFFSET_VF6__VF_FB_SIZE_MASK 0x0000FFFFL
+#define MC_VM_FB_SIZE_OFFSET_VF6__VF_FB_OFFSET_MASK 0xFFFF0000L
+//MC_VM_FB_SIZE_OFFSET_VF7
+#define MC_VM_FB_SIZE_OFFSET_VF7__VF_FB_SIZE__SHIFT 0x0
+#define MC_VM_FB_SIZE_OFFSET_VF7__VF_FB_OFFSET__SHIFT 0x10
+#define MC_VM_FB_SIZE_OFFSET_VF7__VF_FB_SIZE_MASK 0x0000FFFFL
+#define MC_VM_FB_SIZE_OFFSET_VF7__VF_FB_OFFSET_MASK 0xFFFF0000L
+//MC_VM_FB_SIZE_OFFSET_VF8
+#define MC_VM_FB_SIZE_OFFSET_VF8__VF_FB_SIZE__SHIFT 0x0
+#define MC_VM_FB_SIZE_OFFSET_VF8__VF_FB_OFFSET__SHIFT 0x10
+#define MC_VM_FB_SIZE_OFFSET_VF8__VF_FB_SIZE_MASK 0x0000FFFFL
+#define MC_VM_FB_SIZE_OFFSET_VF8__VF_FB_OFFSET_MASK 0xFFFF0000L
+//MC_VM_FB_SIZE_OFFSET_VF9
+#define MC_VM_FB_SIZE_OFFSET_VF9__VF_FB_SIZE__SHIFT 0x0
+#define MC_VM_FB_SIZE_OFFSET_VF9__VF_FB_OFFSET__SHIFT 0x10
+#define MC_VM_FB_SIZE_OFFSET_VF9__VF_FB_SIZE_MASK 0x0000FFFFL
+#define MC_VM_FB_SIZE_OFFSET_VF9__VF_FB_OFFSET_MASK 0xFFFF0000L
+//MC_VM_FB_SIZE_OFFSET_VF10
+#define MC_VM_FB_SIZE_OFFSET_VF10__VF_FB_SIZE__SHIFT 0x0
+#define MC_VM_FB_SIZE_OFFSET_VF10__VF_FB_OFFSET__SHIFT 0x10
+#define MC_VM_FB_SIZE_OFFSET_VF10__VF_FB_SIZE_MASK 0x0000FFFFL
+#define MC_VM_FB_SIZE_OFFSET_VF10__VF_FB_OFFSET_MASK 0xFFFF0000L
+//MC_VM_FB_SIZE_OFFSET_VF11
+#define MC_VM_FB_SIZE_OFFSET_VF11__VF_FB_SIZE__SHIFT 0x0
+#define MC_VM_FB_SIZE_OFFSET_VF11__VF_FB_OFFSET__SHIFT 0x10
+#define MC_VM_FB_SIZE_OFFSET_VF11__VF_FB_SIZE_MASK 0x0000FFFFL
+#define MC_VM_FB_SIZE_OFFSET_VF11__VF_FB_OFFSET_MASK 0xFFFF0000L
+//MC_VM_FB_SIZE_OFFSET_VF12
+#define MC_VM_FB_SIZE_OFFSET_VF12__VF_FB_SIZE__SHIFT 0x0
+#define MC_VM_FB_SIZE_OFFSET_VF12__VF_FB_OFFSET__SHIFT 0x10
+#define MC_VM_FB_SIZE_OFFSET_VF12__VF_FB_SIZE_MASK 0x0000FFFFL
+#define MC_VM_FB_SIZE_OFFSET_VF12__VF_FB_OFFSET_MASK 0xFFFF0000L
+//MC_VM_FB_SIZE_OFFSET_VF13
+#define MC_VM_FB_SIZE_OFFSET_VF13__VF_FB_SIZE__SHIFT 0x0
+#define MC_VM_FB_SIZE_OFFSET_VF13__VF_FB_OFFSET__SHIFT 0x10
+#define MC_VM_FB_SIZE_OFFSET_VF13__VF_FB_SIZE_MASK 0x0000FFFFL
+#define MC_VM_FB_SIZE_OFFSET_VF13__VF_FB_OFFSET_MASK 0xFFFF0000L
+//MC_VM_FB_SIZE_OFFSET_VF14
+#define MC_VM_FB_SIZE_OFFSET_VF14__VF_FB_SIZE__SHIFT 0x0
+#define MC_VM_FB_SIZE_OFFSET_VF14__VF_FB_OFFSET__SHIFT 0x10
+#define MC_VM_FB_SIZE_OFFSET_VF14__VF_FB_SIZE_MASK 0x0000FFFFL
+#define MC_VM_FB_SIZE_OFFSET_VF14__VF_FB_OFFSET_MASK 0xFFFF0000L
+//MC_VM_FB_SIZE_OFFSET_VF15
+#define MC_VM_FB_SIZE_OFFSET_VF15__VF_FB_SIZE__SHIFT 0x0
+#define MC_VM_FB_SIZE_OFFSET_VF15__VF_FB_OFFSET__SHIFT 0x10
+#define MC_VM_FB_SIZE_OFFSET_VF15__VF_FB_SIZE_MASK 0x0000FFFFL
+#define MC_VM_FB_SIZE_OFFSET_VF15__VF_FB_OFFSET_MASK 0xFFFF0000L
+//VM_IOMMU_MMIO_CNTRL_1
+#define VM_IOMMU_MMIO_CNTRL_1__MARC_EN__SHIFT 0x8
+#define VM_IOMMU_MMIO_CNTRL_1__MARC_EN_MASK 0x00000100L
+//MC_VM_MARC_BASE_LO_0
+#define MC_VM_MARC_BASE_LO_0__MARC_BASE_LO_0__SHIFT 0xc
+#define MC_VM_MARC_BASE_LO_0__MARC_BASE_LO_0_MASK 0xFFFFF000L
+//MC_VM_MARC_BASE_LO_1
+#define MC_VM_MARC_BASE_LO_1__MARC_BASE_LO_1__SHIFT 0xc
+#define MC_VM_MARC_BASE_LO_1__MARC_BASE_LO_1_MASK 0xFFFFF000L
+//MC_VM_MARC_BASE_LO_2
+#define MC_VM_MARC_BASE_LO_2__MARC_BASE_LO_2__SHIFT 0xc
+#define MC_VM_MARC_BASE_LO_2__MARC_BASE_LO_2_MASK 0xFFFFF000L
+//MC_VM_MARC_BASE_LO_3
+#define MC_VM_MARC_BASE_LO_3__MARC_BASE_LO_3__SHIFT 0xc
+#define MC_VM_MARC_BASE_LO_3__MARC_BASE_LO_3_MASK 0xFFFFF000L
+//MC_VM_MARC_BASE_HI_0
+#define MC_VM_MARC_BASE_HI_0__MARC_BASE_HI_0__SHIFT 0x0
+#define MC_VM_MARC_BASE_HI_0__MARC_BASE_HI_0_MASK 0x000FFFFFL
+//MC_VM_MARC_BASE_HI_1
+#define MC_VM_MARC_BASE_HI_1__MARC_BASE_HI_1__SHIFT 0x0
+#define MC_VM_MARC_BASE_HI_1__MARC_BASE_HI_1_MASK 0x000FFFFFL
+//MC_VM_MARC_BASE_HI_2
+#define MC_VM_MARC_BASE_HI_2__MARC_BASE_HI_2__SHIFT 0x0
+#define MC_VM_MARC_BASE_HI_2__MARC_BASE_HI_2_MASK 0x000FFFFFL
+//MC_VM_MARC_BASE_HI_3
+#define MC_VM_MARC_BASE_HI_3__MARC_BASE_HI_3__SHIFT 0x0
+#define MC_VM_MARC_BASE_HI_3__MARC_BASE_HI_3_MASK 0x000FFFFFL
+//MC_VM_MARC_RELOC_LO_0
+#define MC_VM_MARC_RELOC_LO_0__MARC_ENABLE_0__SHIFT 0x0
+#define MC_VM_MARC_RELOC_LO_0__MARC_READONLY_0__SHIFT 0x1
+#define MC_VM_MARC_RELOC_LO_0__MARC_RELOC_LO_0__SHIFT 0xc
+#define MC_VM_MARC_RELOC_LO_0__MARC_ENABLE_0_MASK 0x00000001L
+#define MC_VM_MARC_RELOC_LO_0__MARC_READONLY_0_MASK 0x00000002L
+#define MC_VM_MARC_RELOC_LO_0__MARC_RELOC_LO_0_MASK 0xFFFFF000L
+//MC_VM_MARC_RELOC_LO_1
+#define MC_VM_MARC_RELOC_LO_1__MARC_ENABLE_1__SHIFT 0x0
+#define MC_VM_MARC_RELOC_LO_1__MARC_READONLY_1__SHIFT 0x1
+#define MC_VM_MARC_RELOC_LO_1__MARC_RELOC_LO_1__SHIFT 0xc
+#define MC_VM_MARC_RELOC_LO_1__MARC_ENABLE_1_MASK 0x00000001L
+#define MC_VM_MARC_RELOC_LO_1__MARC_READONLY_1_MASK 0x00000002L
+#define MC_VM_MARC_RELOC_LO_1__MARC_RELOC_LO_1_MASK 0xFFFFF000L
+//MC_VM_MARC_RELOC_LO_2
+#define MC_VM_MARC_RELOC_LO_2__MARC_ENABLE_2__SHIFT 0x0
+#define MC_VM_MARC_RELOC_LO_2__MARC_READONLY_2__SHIFT 0x1
+#define MC_VM_MARC_RELOC_LO_2__MARC_RELOC_LO_2__SHIFT 0xc
+#define MC_VM_MARC_RELOC_LO_2__MARC_ENABLE_2_MASK 0x00000001L
+#define MC_VM_MARC_RELOC_LO_2__MARC_READONLY_2_MASK 0x00000002L
+#define MC_VM_MARC_RELOC_LO_2__MARC_RELOC_LO_2_MASK 0xFFFFF000L
+//MC_VM_MARC_RELOC_LO_3
+#define MC_VM_MARC_RELOC_LO_3__MARC_ENABLE_3__SHIFT 0x0
+#define MC_VM_MARC_RELOC_LO_3__MARC_READONLY_3__SHIFT 0x1
+#define MC_VM_MARC_RELOC_LO_3__MARC_RELOC_LO_3__SHIFT 0xc
+#define MC_VM_MARC_RELOC_LO_3__MARC_ENABLE_3_MASK 0x00000001L
+#define MC_VM_MARC_RELOC_LO_3__MARC_READONLY_3_MASK 0x00000002L
+#define MC_VM_MARC_RELOC_LO_3__MARC_RELOC_LO_3_MASK 0xFFFFF000L
+//MC_VM_MARC_RELOC_HI_0
+#define MC_VM_MARC_RELOC_HI_0__MARC_RELOC_HI_0__SHIFT 0x0
+#define MC_VM_MARC_RELOC_HI_0__MARC_RELOC_HI_0_MASK 0x000FFFFFL
+//MC_VM_MARC_RELOC_HI_1
+#define MC_VM_MARC_RELOC_HI_1__MARC_RELOC_HI_1__SHIFT 0x0
+#define MC_VM_MARC_RELOC_HI_1__MARC_RELOC_HI_1_MASK 0x000FFFFFL
+//MC_VM_MARC_RELOC_HI_2
+#define MC_VM_MARC_RELOC_HI_2__MARC_RELOC_HI_2__SHIFT 0x0
+#define MC_VM_MARC_RELOC_HI_2__MARC_RELOC_HI_2_MASK 0x000FFFFFL
+//MC_VM_MARC_RELOC_HI_3
+#define MC_VM_MARC_RELOC_HI_3__MARC_RELOC_HI_3__SHIFT 0x0
+#define MC_VM_MARC_RELOC_HI_3__MARC_RELOC_HI_3_MASK 0x000FFFFFL
+//MC_VM_MARC_LEN_LO_0
+#define MC_VM_MARC_LEN_LO_0__MARC_LEN_LO_0__SHIFT 0xc
+#define MC_VM_MARC_LEN_LO_0__MARC_LEN_LO_0_MASK 0xFFFFF000L
+//MC_VM_MARC_LEN_LO_1
+#define MC_VM_MARC_LEN_LO_1__MARC_LEN_LO_1__SHIFT 0xc
+#define MC_VM_MARC_LEN_LO_1__MARC_LEN_LO_1_MASK 0xFFFFF000L
+//MC_VM_MARC_LEN_LO_2
+#define MC_VM_MARC_LEN_LO_2__MARC_LEN_LO_2__SHIFT 0xc
+#define MC_VM_MARC_LEN_LO_2__MARC_LEN_LO_2_MASK 0xFFFFF000L
+//MC_VM_MARC_LEN_LO_3
+#define MC_VM_MARC_LEN_LO_3__MARC_LEN_LO_3__SHIFT 0xc
+#define MC_VM_MARC_LEN_LO_3__MARC_LEN_LO_3_MASK 0xFFFFF000L
+//MC_VM_MARC_LEN_HI_0
+#define MC_VM_MARC_LEN_HI_0__MARC_LEN_HI_0__SHIFT 0x0
+#define MC_VM_MARC_LEN_HI_0__MARC_LEN_HI_0_MASK 0x000FFFFFL
+//MC_VM_MARC_LEN_HI_1
+#define MC_VM_MARC_LEN_HI_1__MARC_LEN_HI_1__SHIFT 0x0
+#define MC_VM_MARC_LEN_HI_1__MARC_LEN_HI_1_MASK 0x000FFFFFL
+//MC_VM_MARC_LEN_HI_2
+#define MC_VM_MARC_LEN_HI_2__MARC_LEN_HI_2__SHIFT 0x0
+#define MC_VM_MARC_LEN_HI_2__MARC_LEN_HI_2_MASK 0x000FFFFFL
+//MC_VM_MARC_LEN_HI_3
+#define MC_VM_MARC_LEN_HI_3__MARC_LEN_HI_3__SHIFT 0x0
+#define MC_VM_MARC_LEN_HI_3__MARC_LEN_HI_3_MASK 0x000FFFFFL
+//VM_IOMMU_CONTROL_REGISTER
+#define VM_IOMMU_CONTROL_REGISTER__IOMMUEN__SHIFT 0x0
+#define VM_IOMMU_CONTROL_REGISTER__IOMMUEN_MASK 0x00000001L
+//VM_IOMMU_PERFORMANCE_OPTIMIZATION_CONTROL_REGISTER
+#define VM_IOMMU_PERFORMANCE_OPTIMIZATION_CONTROL_REGISTER__PERFOPTEN__SHIFT 0xd
+#define VM_IOMMU_PERFORMANCE_OPTIMIZATION_CONTROL_REGISTER__PERFOPTEN_MASK 0x00002000L
+//VM_PCIE_ATS_CNTL
+#define VM_PCIE_ATS_CNTL__STU__SHIFT 0x10
+#define VM_PCIE_ATS_CNTL__ATC_ENABLE__SHIFT 0x1f
+#define VM_PCIE_ATS_CNTL__STU_MASK 0x001F0000L
+#define VM_PCIE_ATS_CNTL__ATC_ENABLE_MASK 0x80000000L
+//VM_PCIE_ATS_CNTL_VF_0
+#define VM_PCIE_ATS_CNTL_VF_0__ATC_ENABLE__SHIFT 0x1f
+#define VM_PCIE_ATS_CNTL_VF_0__ATC_ENABLE_MASK 0x80000000L
+//VM_PCIE_ATS_CNTL_VF_1
+#define VM_PCIE_ATS_CNTL_VF_1__ATC_ENABLE__SHIFT 0x1f
+#define VM_PCIE_ATS_CNTL_VF_1__ATC_ENABLE_MASK 0x80000000L
+//VM_PCIE_ATS_CNTL_VF_2
+#define VM_PCIE_ATS_CNTL_VF_2__ATC_ENABLE__SHIFT 0x1f
+#define VM_PCIE_ATS_CNTL_VF_2__ATC_ENABLE_MASK 0x80000000L
+//VM_PCIE_ATS_CNTL_VF_3
+#define VM_PCIE_ATS_CNTL_VF_3__ATC_ENABLE__SHIFT 0x1f
+#define VM_PCIE_ATS_CNTL_VF_3__ATC_ENABLE_MASK 0x80000000L
+//VM_PCIE_ATS_CNTL_VF_4
+#define VM_PCIE_ATS_CNTL_VF_4__ATC_ENABLE__SHIFT 0x1f
+#define VM_PCIE_ATS_CNTL_VF_4__ATC_ENABLE_MASK 0x80000000L
+//VM_PCIE_ATS_CNTL_VF_5
+#define VM_PCIE_ATS_CNTL_VF_5__ATC_ENABLE__SHIFT 0x1f
+#define VM_PCIE_ATS_CNTL_VF_5__ATC_ENABLE_MASK 0x80000000L
+//VM_PCIE_ATS_CNTL_VF_6
+#define VM_PCIE_ATS_CNTL_VF_6__ATC_ENABLE__SHIFT 0x1f
+#define VM_PCIE_ATS_CNTL_VF_6__ATC_ENABLE_MASK 0x80000000L
+//VM_PCIE_ATS_CNTL_VF_7
+#define VM_PCIE_ATS_CNTL_VF_7__ATC_ENABLE__SHIFT 0x1f
+#define VM_PCIE_ATS_CNTL_VF_7__ATC_ENABLE_MASK 0x80000000L
+//VM_PCIE_ATS_CNTL_VF_8
+#define VM_PCIE_ATS_CNTL_VF_8__ATC_ENABLE__SHIFT 0x1f
+#define VM_PCIE_ATS_CNTL_VF_8__ATC_ENABLE_MASK 0x80000000L
+//VM_PCIE_ATS_CNTL_VF_9
+#define VM_PCIE_ATS_CNTL_VF_9__ATC_ENABLE__SHIFT 0x1f
+#define VM_PCIE_ATS_CNTL_VF_9__ATC_ENABLE_MASK 0x80000000L
+//VM_PCIE_ATS_CNTL_VF_10
+#define VM_PCIE_ATS_CNTL_VF_10__ATC_ENABLE__SHIFT 0x1f
+#define VM_PCIE_ATS_CNTL_VF_10__ATC_ENABLE_MASK 0x80000000L
+//VM_PCIE_ATS_CNTL_VF_11
+#define VM_PCIE_ATS_CNTL_VF_11__ATC_ENABLE__SHIFT 0x1f
+#define VM_PCIE_ATS_CNTL_VF_11__ATC_ENABLE_MASK 0x80000000L
+//VM_PCIE_ATS_CNTL_VF_12
+#define VM_PCIE_ATS_CNTL_VF_12__ATC_ENABLE__SHIFT 0x1f
+#define VM_PCIE_ATS_CNTL_VF_12__ATC_ENABLE_MASK 0x80000000L
+//VM_PCIE_ATS_CNTL_VF_13
+#define VM_PCIE_ATS_CNTL_VF_13__ATC_ENABLE__SHIFT 0x1f
+#define VM_PCIE_ATS_CNTL_VF_13__ATC_ENABLE_MASK 0x80000000L
+//VM_PCIE_ATS_CNTL_VF_14
+#define VM_PCIE_ATS_CNTL_VF_14__ATC_ENABLE__SHIFT 0x1f
+#define VM_PCIE_ATS_CNTL_VF_14__ATC_ENABLE_MASK 0x80000000L
+//VM_PCIE_ATS_CNTL_VF_15
+#define VM_PCIE_ATS_CNTL_VF_15__ATC_ENABLE__SHIFT 0x1f
+#define VM_PCIE_ATS_CNTL_VF_15__ATC_ENABLE_MASK 0x80000000L
+//MC_SHARED_ACTIVE_FCN_ID
+#define MC_SHARED_ACTIVE_FCN_ID__VFID__SHIFT 0x0
+#define MC_SHARED_ACTIVE_FCN_ID__VF__SHIFT 0x1f
+#define MC_SHARED_ACTIVE_FCN_ID__VFID_MASK 0x0000000FL
+#define MC_SHARED_ACTIVE_FCN_ID__VF_MASK 0x80000000L
+//MC_VM_XGMI_GPUIOV_ENABLE
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF0__SHIFT 0x0
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF1__SHIFT 0x1
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF2__SHIFT 0x2
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF3__SHIFT 0x3
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF4__SHIFT 0x4
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF5__SHIFT 0x5
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF6__SHIFT 0x6
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF7__SHIFT 0x7
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF8__SHIFT 0x8
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF9__SHIFT 0x9
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF10__SHIFT 0xa
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF11__SHIFT 0xb
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF12__SHIFT 0xc
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF13__SHIFT 0xd
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF14__SHIFT 0xe
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF15__SHIFT 0xf
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_PF__SHIFT 0x1f
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF0_MASK 0x00000001L
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF1_MASK 0x00000002L
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF2_MASK 0x00000004L
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF3_MASK 0x00000008L
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF4_MASK 0x00000010L
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF5_MASK 0x00000020L
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF6_MASK 0x00000040L
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF7_MASK 0x00000080L
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF8_MASK 0x00000100L
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF9_MASK 0x00000200L
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF10_MASK 0x00000400L
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF11_MASK 0x00000800L
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF12_MASK 0x00001000L
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF13_MASK 0x00002000L
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF14_MASK 0x00004000L
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_VF15_MASK 0x00008000L
+#define MC_VM_XGMI_GPUIOV_ENABLE__ENABLE_PF_MASK 0x80000000L
+
+
+// addressBlock: aid_mmhub_utcl2_atcl2pfcntrdec
+//ATC_L2_PERFCOUNTER_LO
+#define ATC_L2_PERFCOUNTER_LO__COUNTER_LO__SHIFT 0x0
+#define ATC_L2_PERFCOUNTER_LO__COUNTER_LO_MASK 0xFFFFFFFFL
+//ATC_L2_PERFCOUNTER_HI
+#define ATC_L2_PERFCOUNTER_HI__COUNTER_HI__SHIFT 0x0
+#define ATC_L2_PERFCOUNTER_HI__COMPARE_VALUE__SHIFT 0x10
+#define ATC_L2_PERFCOUNTER_HI__COUNTER_HI_MASK 0x0000FFFFL
+#define ATC_L2_PERFCOUNTER_HI__COMPARE_VALUE_MASK 0xFFFF0000L
+
+
+// addressBlock: aid_mmhub_utcl2_atcl2pfcntldec
+//ATC_L2_PERFCOUNTER0_CFG
+#define ATC_L2_PERFCOUNTER0_CFG__PERF_SEL__SHIFT 0x0
+#define ATC_L2_PERFCOUNTER0_CFG__PERF_SEL_END__SHIFT 0x8
+#define ATC_L2_PERFCOUNTER0_CFG__PERF_MODE__SHIFT 0x18
+#define ATC_L2_PERFCOUNTER0_CFG__ENABLE__SHIFT 0x1c
+#define ATC_L2_PERFCOUNTER0_CFG__CLEAR__SHIFT 0x1d
+#define ATC_L2_PERFCOUNTER0_CFG__PERF_SEL_MASK 0x000000FFL
+#define ATC_L2_PERFCOUNTER0_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define ATC_L2_PERFCOUNTER0_CFG__PERF_MODE_MASK 0x0F000000L
+#define ATC_L2_PERFCOUNTER0_CFG__ENABLE_MASK 0x10000000L
+#define ATC_L2_PERFCOUNTER0_CFG__CLEAR_MASK 0x20000000L
+//ATC_L2_PERFCOUNTER1_CFG
+#define ATC_L2_PERFCOUNTER1_CFG__PERF_SEL__SHIFT 0x0
+#define ATC_L2_PERFCOUNTER1_CFG__PERF_SEL_END__SHIFT 0x8
+#define ATC_L2_PERFCOUNTER1_CFG__PERF_MODE__SHIFT 0x18
+#define ATC_L2_PERFCOUNTER1_CFG__ENABLE__SHIFT 0x1c
+#define ATC_L2_PERFCOUNTER1_CFG__CLEAR__SHIFT 0x1d
+#define ATC_L2_PERFCOUNTER1_CFG__PERF_SEL_MASK 0x000000FFL
+#define ATC_L2_PERFCOUNTER1_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define ATC_L2_PERFCOUNTER1_CFG__PERF_MODE_MASK 0x0F000000L
+#define ATC_L2_PERFCOUNTER1_CFG__ENABLE_MASK 0x10000000L
+#define ATC_L2_PERFCOUNTER1_CFG__CLEAR_MASK 0x20000000L
+//ATC_L2_PERFCOUNTER_RSLT_CNTL
+#define ATC_L2_PERFCOUNTER_RSLT_CNTL__PERF_COUNTER_SELECT__SHIFT 0x0
+#define ATC_L2_PERFCOUNTER_RSLT_CNTL__START_TRIGGER__SHIFT 0x8
+#define ATC_L2_PERFCOUNTER_RSLT_CNTL__STOP_TRIGGER__SHIFT 0x10
+#define ATC_L2_PERFCOUNTER_RSLT_CNTL__ENABLE_ANY__SHIFT 0x18
+#define ATC_L2_PERFCOUNTER_RSLT_CNTL__CLEAR_ALL__SHIFT 0x19
+#define ATC_L2_PERFCOUNTER_RSLT_CNTL__STOP_ALL_ON_SATURATE__SHIFT 0x1a
+#define ATC_L2_PERFCOUNTER_RSLT_CNTL__PERF_COUNTER_SELECT_MASK 0x0000000FL
+#define ATC_L2_PERFCOUNTER_RSLT_CNTL__START_TRIGGER_MASK 0x0000FF00L
+#define ATC_L2_PERFCOUNTER_RSLT_CNTL__STOP_TRIGGER_MASK 0x00FF0000L
+#define ATC_L2_PERFCOUNTER_RSLT_CNTL__ENABLE_ANY_MASK 0x01000000L
+#define ATC_L2_PERFCOUNTER_RSLT_CNTL__CLEAR_ALL_MASK 0x02000000L
+#define ATC_L2_PERFCOUNTER_RSLT_CNTL__STOP_ALL_ON_SATURATE_MASK 0x04000000L
+
+
+// addressBlock: aid_mmhub_utcl2_vml2pldec
+//MC_VM_L2_PERFCOUNTER0_CFG
+#define MC_VM_L2_PERFCOUNTER0_CFG__PERF_SEL__SHIFT 0x0
+#define MC_VM_L2_PERFCOUNTER0_CFG__PERF_SEL_END__SHIFT 0x8
+#define MC_VM_L2_PERFCOUNTER0_CFG__PERF_MODE__SHIFT 0x18
+#define MC_VM_L2_PERFCOUNTER0_CFG__ENABLE__SHIFT 0x1c
+#define MC_VM_L2_PERFCOUNTER0_CFG__CLEAR__SHIFT 0x1d
+#define MC_VM_L2_PERFCOUNTER0_CFG__PERF_SEL_MASK 0x000000FFL
+#define MC_VM_L2_PERFCOUNTER0_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define MC_VM_L2_PERFCOUNTER0_CFG__PERF_MODE_MASK 0x0F000000L
+#define MC_VM_L2_PERFCOUNTER0_CFG__ENABLE_MASK 0x10000000L
+#define MC_VM_L2_PERFCOUNTER0_CFG__CLEAR_MASK 0x20000000L
+//MC_VM_L2_PERFCOUNTER1_CFG
+#define MC_VM_L2_PERFCOUNTER1_CFG__PERF_SEL__SHIFT 0x0
+#define MC_VM_L2_PERFCOUNTER1_CFG__PERF_SEL_END__SHIFT 0x8
+#define MC_VM_L2_PERFCOUNTER1_CFG__PERF_MODE__SHIFT 0x18
+#define MC_VM_L2_PERFCOUNTER1_CFG__ENABLE__SHIFT 0x1c
+#define MC_VM_L2_PERFCOUNTER1_CFG__CLEAR__SHIFT 0x1d
+#define MC_VM_L2_PERFCOUNTER1_CFG__PERF_SEL_MASK 0x000000FFL
+#define MC_VM_L2_PERFCOUNTER1_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define MC_VM_L2_PERFCOUNTER1_CFG__PERF_MODE_MASK 0x0F000000L
+#define MC_VM_L2_PERFCOUNTER1_CFG__ENABLE_MASK 0x10000000L
+#define MC_VM_L2_PERFCOUNTER1_CFG__CLEAR_MASK 0x20000000L
+//MC_VM_L2_PERFCOUNTER2_CFG
+#define MC_VM_L2_PERFCOUNTER2_CFG__PERF_SEL__SHIFT 0x0
+#define MC_VM_L2_PERFCOUNTER2_CFG__PERF_SEL_END__SHIFT 0x8
+#define MC_VM_L2_PERFCOUNTER2_CFG__PERF_MODE__SHIFT 0x18
+#define MC_VM_L2_PERFCOUNTER2_CFG__ENABLE__SHIFT 0x1c
+#define MC_VM_L2_PERFCOUNTER2_CFG__CLEAR__SHIFT 0x1d
+#define MC_VM_L2_PERFCOUNTER2_CFG__PERF_SEL_MASK 0x000000FFL
+#define MC_VM_L2_PERFCOUNTER2_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define MC_VM_L2_PERFCOUNTER2_CFG__PERF_MODE_MASK 0x0F000000L
+#define MC_VM_L2_PERFCOUNTER2_CFG__ENABLE_MASK 0x10000000L
+#define MC_VM_L2_PERFCOUNTER2_CFG__CLEAR_MASK 0x20000000L
+//MC_VM_L2_PERFCOUNTER3_CFG
+#define MC_VM_L2_PERFCOUNTER3_CFG__PERF_SEL__SHIFT 0x0
+#define MC_VM_L2_PERFCOUNTER3_CFG__PERF_SEL_END__SHIFT 0x8
+#define MC_VM_L2_PERFCOUNTER3_CFG__PERF_MODE__SHIFT 0x18
+#define MC_VM_L2_PERFCOUNTER3_CFG__ENABLE__SHIFT 0x1c
+#define MC_VM_L2_PERFCOUNTER3_CFG__CLEAR__SHIFT 0x1d
+#define MC_VM_L2_PERFCOUNTER3_CFG__PERF_SEL_MASK 0x000000FFL
+#define MC_VM_L2_PERFCOUNTER3_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define MC_VM_L2_PERFCOUNTER3_CFG__PERF_MODE_MASK 0x0F000000L
+#define MC_VM_L2_PERFCOUNTER3_CFG__ENABLE_MASK 0x10000000L
+#define MC_VM_L2_PERFCOUNTER3_CFG__CLEAR_MASK 0x20000000L
+//MC_VM_L2_PERFCOUNTER4_CFG
+#define MC_VM_L2_PERFCOUNTER4_CFG__PERF_SEL__SHIFT 0x0
+#define MC_VM_L2_PERFCOUNTER4_CFG__PERF_SEL_END__SHIFT 0x8
+#define MC_VM_L2_PERFCOUNTER4_CFG__PERF_MODE__SHIFT 0x18
+#define MC_VM_L2_PERFCOUNTER4_CFG__ENABLE__SHIFT 0x1c
+#define MC_VM_L2_PERFCOUNTER4_CFG__CLEAR__SHIFT 0x1d
+#define MC_VM_L2_PERFCOUNTER4_CFG__PERF_SEL_MASK 0x000000FFL
+#define MC_VM_L2_PERFCOUNTER4_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define MC_VM_L2_PERFCOUNTER4_CFG__PERF_MODE_MASK 0x0F000000L
+#define MC_VM_L2_PERFCOUNTER4_CFG__ENABLE_MASK 0x10000000L
+#define MC_VM_L2_PERFCOUNTER4_CFG__CLEAR_MASK 0x20000000L
+//MC_VM_L2_PERFCOUNTER5_CFG
+#define MC_VM_L2_PERFCOUNTER5_CFG__PERF_SEL__SHIFT 0x0
+#define MC_VM_L2_PERFCOUNTER5_CFG__PERF_SEL_END__SHIFT 0x8
+#define MC_VM_L2_PERFCOUNTER5_CFG__PERF_MODE__SHIFT 0x18
+#define MC_VM_L2_PERFCOUNTER5_CFG__ENABLE__SHIFT 0x1c
+#define MC_VM_L2_PERFCOUNTER5_CFG__CLEAR__SHIFT 0x1d
+#define MC_VM_L2_PERFCOUNTER5_CFG__PERF_SEL_MASK 0x000000FFL
+#define MC_VM_L2_PERFCOUNTER5_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define MC_VM_L2_PERFCOUNTER5_CFG__PERF_MODE_MASK 0x0F000000L
+#define MC_VM_L2_PERFCOUNTER5_CFG__ENABLE_MASK 0x10000000L
+#define MC_VM_L2_PERFCOUNTER5_CFG__CLEAR_MASK 0x20000000L
+//MC_VM_L2_PERFCOUNTER6_CFG
+#define MC_VM_L2_PERFCOUNTER6_CFG__PERF_SEL__SHIFT 0x0
+#define MC_VM_L2_PERFCOUNTER6_CFG__PERF_SEL_END__SHIFT 0x8
+#define MC_VM_L2_PERFCOUNTER6_CFG__PERF_MODE__SHIFT 0x18
+#define MC_VM_L2_PERFCOUNTER6_CFG__ENABLE__SHIFT 0x1c
+#define MC_VM_L2_PERFCOUNTER6_CFG__CLEAR__SHIFT 0x1d
+#define MC_VM_L2_PERFCOUNTER6_CFG__PERF_SEL_MASK 0x000000FFL
+#define MC_VM_L2_PERFCOUNTER6_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define MC_VM_L2_PERFCOUNTER6_CFG__PERF_MODE_MASK 0x0F000000L
+#define MC_VM_L2_PERFCOUNTER6_CFG__ENABLE_MASK 0x10000000L
+#define MC_VM_L2_PERFCOUNTER6_CFG__CLEAR_MASK 0x20000000L
+//MC_VM_L2_PERFCOUNTER7_CFG
+#define MC_VM_L2_PERFCOUNTER7_CFG__PERF_SEL__SHIFT 0x0
+#define MC_VM_L2_PERFCOUNTER7_CFG__PERF_SEL_END__SHIFT 0x8
+#define MC_VM_L2_PERFCOUNTER7_CFG__PERF_MODE__SHIFT 0x18
+#define MC_VM_L2_PERFCOUNTER7_CFG__ENABLE__SHIFT 0x1c
+#define MC_VM_L2_PERFCOUNTER7_CFG__CLEAR__SHIFT 0x1d
+#define MC_VM_L2_PERFCOUNTER7_CFG__PERF_SEL_MASK 0x000000FFL
+#define MC_VM_L2_PERFCOUNTER7_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define MC_VM_L2_PERFCOUNTER7_CFG__PERF_MODE_MASK 0x0F000000L
+#define MC_VM_L2_PERFCOUNTER7_CFG__ENABLE_MASK 0x10000000L
+#define MC_VM_L2_PERFCOUNTER7_CFG__CLEAR_MASK 0x20000000L
+//MC_VM_L2_PERFCOUNTER_RSLT_CNTL
+#define MC_VM_L2_PERFCOUNTER_RSLT_CNTL__PERF_COUNTER_SELECT__SHIFT 0x0
+#define MC_VM_L2_PERFCOUNTER_RSLT_CNTL__START_TRIGGER__SHIFT 0x8
+#define MC_VM_L2_PERFCOUNTER_RSLT_CNTL__STOP_TRIGGER__SHIFT 0x10
+#define MC_VM_L2_PERFCOUNTER_RSLT_CNTL__ENABLE_ANY__SHIFT 0x18
+#define MC_VM_L2_PERFCOUNTER_RSLT_CNTL__CLEAR_ALL__SHIFT 0x19
+#define MC_VM_L2_PERFCOUNTER_RSLT_CNTL__STOP_ALL_ON_SATURATE__SHIFT 0x1a
+#define MC_VM_L2_PERFCOUNTER_RSLT_CNTL__PERF_COUNTER_SELECT_MASK 0x0000000FL
+#define MC_VM_L2_PERFCOUNTER_RSLT_CNTL__START_TRIGGER_MASK 0x0000FF00L
+#define MC_VM_L2_PERFCOUNTER_RSLT_CNTL__STOP_TRIGGER_MASK 0x00FF0000L
+#define MC_VM_L2_PERFCOUNTER_RSLT_CNTL__ENABLE_ANY_MASK 0x01000000L
+#define MC_VM_L2_PERFCOUNTER_RSLT_CNTL__CLEAR_ALL_MASK 0x02000000L
+#define MC_VM_L2_PERFCOUNTER_RSLT_CNTL__STOP_ALL_ON_SATURATE_MASK 0x04000000L
+
+
+// addressBlock: aid_mmhub_utcl2_vml2prdec
+//MC_VM_L2_PERFCOUNTER_LO
+#define MC_VM_L2_PERFCOUNTER_LO__COUNTER_LO__SHIFT 0x0
+#define MC_VM_L2_PERFCOUNTER_LO__COUNTER_LO_MASK 0xFFFFFFFFL
+//MC_VM_L2_PERFCOUNTER_HI
+#define MC_VM_L2_PERFCOUNTER_HI__COUNTER_HI__SHIFT 0x0
+#define MC_VM_L2_PERFCOUNTER_HI__COMPARE_VALUE__SHIFT 0x10
+#define MC_VM_L2_PERFCOUNTER_HI__COUNTER_HI_MASK 0x0000FFFFL
+#define MC_VM_L2_PERFCOUNTER_HI__COMPARE_VALUE_MASK 0xFFFF0000L
+
+
+// addressBlock: aid_mmhub_utcl2_l2tlbdec
+//L2TLB_TLB0_STATUS
+#define L2TLB_TLB0_STATUS__BUSY__SHIFT 0x0
+#define L2TLB_TLB0_STATUS__FOUND_PARITY_ERRORS__SHIFT 0x1
+#define L2TLB_TLB0_STATUS__BUSY_MASK 0x00000001L
+#define L2TLB_TLB0_STATUS__FOUND_PARITY_ERRORS_MASK 0x00000002L
+//UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_LO
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_LO__ADDR__SHIFT 0x0
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_LO__ADDR_MASK 0xFFFFFFFFL
+//UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_HI
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_HI__ADDR__SHIFT 0x0
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_HI__VMID__SHIFT 0x4
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_HI__VFID__SHIFT 0x9
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_HI__VF__SHIFT 0xd
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_HI__GPA__SHIFT 0xe
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_HI__RD_PERM__SHIFT 0x10
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_HI__WR_PERM__SHIFT 0x11
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_HI__EX_PERM__SHIFT 0x12
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_HI__CLIENT_ID__SHIFT 0x13
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_HI__REQ__SHIFT 0x1f
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_HI__ADDR_MASK 0x0000000FL
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_HI__VMID_MASK 0x000000F0L
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_HI__VFID_MASK 0x00001E00L
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_HI__VF_MASK 0x00002000L
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_HI__GPA_MASK 0x0000C000L
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_HI__RD_PERM_MASK 0x00010000L
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_HI__WR_PERM_MASK 0x00020000L
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_HI__EX_PERM_MASK 0x00040000L
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_HI__CLIENT_ID_MASK 0x0FF80000L
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_REQUEST_HI__REQ_MASK 0x80000000L
+//UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_LO
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_LO__ADDR__SHIFT 0x0
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_LO__ADDR_MASK 0xFFFFFFFFL
+//UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__ADDR__SHIFT 0x0
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__PERMS__SHIFT 0x4
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__FRAGMENT_SIZE__SHIFT 0x7
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__SNOOP__SHIFT 0xd
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__SPA__SHIFT 0xe
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__IO__SHIFT 0xf
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__PTE_TMZ__SHIFT 0x10
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__NO_PTE__SHIFT 0x11
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__MTYPE__SHIFT 0x12
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__MEMLOG__SHIFT 0x14
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__LLC_NOALLOC__SHIFT 0x15
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__NACK__SHIFT 0x16
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__ACK__SHIFT 0x1f
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__ADDR_MASK 0x0000000FL
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__PERMS_MASK 0x00000070L
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__FRAGMENT_SIZE_MASK 0x00001F80L
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__SNOOP_MASK 0x00002000L
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__SPA_MASK 0x00004000L
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__IO_MASK 0x00008000L
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__PTE_TMZ_MASK 0x00010000L
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__NO_PTE_MASK 0x00020000L
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__MTYPE_MASK 0x000C0000L
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__MEMLOG_MASK 0x00100000L
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__LLC_NOALLOC_MASK 0x00200000L
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__NACK_MASK 0x00C00000L
+#define UTC_GPUVA_VMID_TRANSLATION_ASSIST_RESPONSE_HI__ACK_MASK 0x80000000L
+
+
+// addressBlock: aid_mmhub_utcl2_l2tlbpldec
+//L2TLB_PERFCOUNTER0_CFG
+#define L2TLB_PERFCOUNTER0_CFG__PERF_SEL__SHIFT 0x0
+#define L2TLB_PERFCOUNTER0_CFG__PERF_SEL_END__SHIFT 0x8
+#define L2TLB_PERFCOUNTER0_CFG__PERF_MODE__SHIFT 0x18
+#define L2TLB_PERFCOUNTER0_CFG__ENABLE__SHIFT 0x1c
+#define L2TLB_PERFCOUNTER0_CFG__CLEAR__SHIFT 0x1d
+#define L2TLB_PERFCOUNTER0_CFG__PERF_SEL_MASK 0x000000FFL
+#define L2TLB_PERFCOUNTER0_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define L2TLB_PERFCOUNTER0_CFG__PERF_MODE_MASK 0x0F000000L
+#define L2TLB_PERFCOUNTER0_CFG__ENABLE_MASK 0x10000000L
+#define L2TLB_PERFCOUNTER0_CFG__CLEAR_MASK 0x20000000L
+//L2TLB_PERFCOUNTER1_CFG
+#define L2TLB_PERFCOUNTER1_CFG__PERF_SEL__SHIFT 0x0
+#define L2TLB_PERFCOUNTER1_CFG__PERF_SEL_END__SHIFT 0x8
+#define L2TLB_PERFCOUNTER1_CFG__PERF_MODE__SHIFT 0x18
+#define L2TLB_PERFCOUNTER1_CFG__ENABLE__SHIFT 0x1c
+#define L2TLB_PERFCOUNTER1_CFG__CLEAR__SHIFT 0x1d
+#define L2TLB_PERFCOUNTER1_CFG__PERF_SEL_MASK 0x000000FFL
+#define L2TLB_PERFCOUNTER1_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define L2TLB_PERFCOUNTER1_CFG__PERF_MODE_MASK 0x0F000000L
+#define L2TLB_PERFCOUNTER1_CFG__ENABLE_MASK 0x10000000L
+#define L2TLB_PERFCOUNTER1_CFG__CLEAR_MASK 0x20000000L
+//L2TLB_PERFCOUNTER2_CFG
+#define L2TLB_PERFCOUNTER2_CFG__PERF_SEL__SHIFT 0x0
+#define L2TLB_PERFCOUNTER2_CFG__PERF_SEL_END__SHIFT 0x8
+#define L2TLB_PERFCOUNTER2_CFG__PERF_MODE__SHIFT 0x18
+#define L2TLB_PERFCOUNTER2_CFG__ENABLE__SHIFT 0x1c
+#define L2TLB_PERFCOUNTER2_CFG__CLEAR__SHIFT 0x1d
+#define L2TLB_PERFCOUNTER2_CFG__PERF_SEL_MASK 0x000000FFL
+#define L2TLB_PERFCOUNTER2_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define L2TLB_PERFCOUNTER2_CFG__PERF_MODE_MASK 0x0F000000L
+#define L2TLB_PERFCOUNTER2_CFG__ENABLE_MASK 0x10000000L
+#define L2TLB_PERFCOUNTER2_CFG__CLEAR_MASK 0x20000000L
+//L2TLB_PERFCOUNTER3_CFG
+#define L2TLB_PERFCOUNTER3_CFG__PERF_SEL__SHIFT 0x0
+#define L2TLB_PERFCOUNTER3_CFG__PERF_SEL_END__SHIFT 0x8
+#define L2TLB_PERFCOUNTER3_CFG__PERF_MODE__SHIFT 0x18
+#define L2TLB_PERFCOUNTER3_CFG__ENABLE__SHIFT 0x1c
+#define L2TLB_PERFCOUNTER3_CFG__CLEAR__SHIFT 0x1d
+#define L2TLB_PERFCOUNTER3_CFG__PERF_SEL_MASK 0x000000FFL
+#define L2TLB_PERFCOUNTER3_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define L2TLB_PERFCOUNTER3_CFG__PERF_MODE_MASK 0x0F000000L
+#define L2TLB_PERFCOUNTER3_CFG__ENABLE_MASK 0x10000000L
+#define L2TLB_PERFCOUNTER3_CFG__CLEAR_MASK 0x20000000L
+//L2TLB_PERFCOUNTER_RSLT_CNTL
+#define L2TLB_PERFCOUNTER_RSLT_CNTL__PERF_COUNTER_SELECT__SHIFT 0x0
+#define L2TLB_PERFCOUNTER_RSLT_CNTL__START_TRIGGER__SHIFT 0x8
+#define L2TLB_PERFCOUNTER_RSLT_CNTL__STOP_TRIGGER__SHIFT 0x10
+#define L2TLB_PERFCOUNTER_RSLT_CNTL__ENABLE_ANY__SHIFT 0x18
+#define L2TLB_PERFCOUNTER_RSLT_CNTL__CLEAR_ALL__SHIFT 0x19
+#define L2TLB_PERFCOUNTER_RSLT_CNTL__STOP_ALL_ON_SATURATE__SHIFT 0x1a
+#define L2TLB_PERFCOUNTER_RSLT_CNTL__PERF_COUNTER_SELECT_MASK 0x0000000FL
+#define L2TLB_PERFCOUNTER_RSLT_CNTL__START_TRIGGER_MASK 0x0000FF00L
+#define L2TLB_PERFCOUNTER_RSLT_CNTL__STOP_TRIGGER_MASK 0x00FF0000L
+#define L2TLB_PERFCOUNTER_RSLT_CNTL__ENABLE_ANY_MASK 0x01000000L
+#define L2TLB_PERFCOUNTER_RSLT_CNTL__CLEAR_ALL_MASK 0x02000000L
+#define L2TLB_PERFCOUNTER_RSLT_CNTL__STOP_ALL_ON_SATURATE_MASK 0x04000000L
+
+
+// addressBlock: aid_mmhub_utcl2_l2tlbprdec
+//L2TLB_PERFCOUNTER_LO
+#define L2TLB_PERFCOUNTER_LO__COUNTER_LO__SHIFT 0x0
+#define L2TLB_PERFCOUNTER_LO__COUNTER_LO_MASK 0xFFFFFFFFL
+//L2TLB_PERFCOUNTER_HI
+#define L2TLB_PERFCOUNTER_HI__COUNTER_HI__SHIFT 0x0
+#define L2TLB_PERFCOUNTER_HI__COMPARE_VALUE__SHIFT 0x10
+#define L2TLB_PERFCOUNTER_HI__COUNTER_HI_MASK 0x0000FFFFL
+#define L2TLB_PERFCOUNTER_HI__COMPARE_VALUE_MASK 0xFFFF0000L
+
+
+#endif
diff --git a/drivers/gpu/drm/amd/include/asic_reg/mp/mp_13_0_6_offset.h b/drivers/gpu/drm/amd/include/asic_reg/mp/mp_13_0_6_offset.h
new file mode 100644
index 000000000000..f04fa95a770c
--- /dev/null
+++ b/drivers/gpu/drm/amd/include/asic_reg/mp/mp_13_0_6_offset.h
@@ -0,0 +1,456 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ */
+#ifndef _mp_13_0_6_OFFSET_HEADER
+#define _mp_13_0_6_OFFSET_HEADER
+
+
+
+// addressBlock: aid_mp_SmuMp0_SmnDec
+// base address: 0x0
+#define regMP0_SMN_C2PMSG_32 0x0060
+#define regMP0_SMN_C2PMSG_32_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_33 0x0061
+#define regMP0_SMN_C2PMSG_33_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_34 0x0062
+#define regMP0_SMN_C2PMSG_34_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_35 0x0063
+#define regMP0_SMN_C2PMSG_35_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_36 0x0064
+#define regMP0_SMN_C2PMSG_36_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_37 0x0065
+#define regMP0_SMN_C2PMSG_37_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_38 0x0066
+#define regMP0_SMN_C2PMSG_38_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_39 0x0067
+#define regMP0_SMN_C2PMSG_39_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_40 0x0068
+#define regMP0_SMN_C2PMSG_40_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_41 0x0069
+#define regMP0_SMN_C2PMSG_41_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_42 0x006a
+#define regMP0_SMN_C2PMSG_42_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_43 0x006b
+#define regMP0_SMN_C2PMSG_43_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_44 0x006c
+#define regMP0_SMN_C2PMSG_44_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_45 0x006d
+#define regMP0_SMN_C2PMSG_45_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_46 0x006e
+#define regMP0_SMN_C2PMSG_46_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_47 0x006f
+#define regMP0_SMN_C2PMSG_47_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_48 0x0070
+#define regMP0_SMN_C2PMSG_48_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_49 0x0071
+#define regMP0_SMN_C2PMSG_49_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_50 0x0072
+#define regMP0_SMN_C2PMSG_50_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_51 0x0073
+#define regMP0_SMN_C2PMSG_51_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_52 0x0074
+#define regMP0_SMN_C2PMSG_52_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_53 0x0075
+#define regMP0_SMN_C2PMSG_53_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_54 0x0076
+#define regMP0_SMN_C2PMSG_54_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_55 0x0077
+#define regMP0_SMN_C2PMSG_55_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_56 0x0078
+#define regMP0_SMN_C2PMSG_56_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_57 0x0079
+#define regMP0_SMN_C2PMSG_57_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_58 0x007a
+#define regMP0_SMN_C2PMSG_58_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_59 0x007b
+#define regMP0_SMN_C2PMSG_59_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_60 0x007c
+#define regMP0_SMN_C2PMSG_60_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_61 0x007d
+#define regMP0_SMN_C2PMSG_61_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_62 0x007e
+#define regMP0_SMN_C2PMSG_62_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_63 0x007f
+#define regMP0_SMN_C2PMSG_63_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_64 0x0080
+#define regMP0_SMN_C2PMSG_64_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_65 0x0081
+#define regMP0_SMN_C2PMSG_65_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_66 0x0082
+#define regMP0_SMN_C2PMSG_66_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_67 0x0083
+#define regMP0_SMN_C2PMSG_67_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_68 0x0084
+#define regMP0_SMN_C2PMSG_68_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_69 0x0085
+#define regMP0_SMN_C2PMSG_69_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_70 0x0086
+#define regMP0_SMN_C2PMSG_70_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_71 0x0087
+#define regMP0_SMN_C2PMSG_71_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_72 0x0088
+#define regMP0_SMN_C2PMSG_72_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_73 0x0089
+#define regMP0_SMN_C2PMSG_73_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_74 0x008a
+#define regMP0_SMN_C2PMSG_74_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_75 0x008b
+#define regMP0_SMN_C2PMSG_75_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_76 0x008c
+#define regMP0_SMN_C2PMSG_76_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_77 0x008d
+#define regMP0_SMN_C2PMSG_77_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_78 0x008e
+#define regMP0_SMN_C2PMSG_78_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_79 0x008f
+#define regMP0_SMN_C2PMSG_79_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_80 0x0090
+#define regMP0_SMN_C2PMSG_80_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_81 0x0091
+#define regMP0_SMN_C2PMSG_81_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_82 0x0092
+#define regMP0_SMN_C2PMSG_82_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_83 0x0093
+#define regMP0_SMN_C2PMSG_83_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_84 0x0094
+#define regMP0_SMN_C2PMSG_84_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_85 0x0095
+#define regMP0_SMN_C2PMSG_85_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_86 0x0096
+#define regMP0_SMN_C2PMSG_86_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_87 0x0097
+#define regMP0_SMN_C2PMSG_87_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_88 0x0098
+#define regMP0_SMN_C2PMSG_88_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_89 0x0099
+#define regMP0_SMN_C2PMSG_89_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_90 0x009a
+#define regMP0_SMN_C2PMSG_90_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_91 0x009b
+#define regMP0_SMN_C2PMSG_91_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_92 0x009c
+#define regMP0_SMN_C2PMSG_92_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_93 0x009d
+#define regMP0_SMN_C2PMSG_93_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_94 0x009e
+#define regMP0_SMN_C2PMSG_94_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_95 0x009f
+#define regMP0_SMN_C2PMSG_95_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_96 0x00a0
+#define regMP0_SMN_C2PMSG_96_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_97 0x00a1
+#define regMP0_SMN_C2PMSG_97_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_98 0x00a2
+#define regMP0_SMN_C2PMSG_98_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_99 0x00a3
+#define regMP0_SMN_C2PMSG_99_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_100 0x00a4
+#define regMP0_SMN_C2PMSG_100_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_101 0x00a5
+#define regMP0_SMN_C2PMSG_101_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_102 0x00a6
+#define regMP0_SMN_C2PMSG_102_BASE_IDX 0
+#define regMP0_SMN_C2PMSG_103 0x00a7
+#define regMP0_SMN_C2PMSG_103_BASE_IDX 0
+#define regMP0_SMN_IH_CREDIT 0x00c1
+#define regMP0_SMN_IH_CREDIT_BASE_IDX 0
+#define regMP0_SMN_IH_SW_INT 0x00c2
+#define regMP0_SMN_IH_SW_INT_BASE_IDX 0
+#define regMP0_SMN_IH_SW_INT_CTRL 0x00c3
+#define regMP0_SMN_IH_SW_INT_CTRL_BASE_IDX 0
+
+
+// addressBlock: aid_mp_SmuMp1_SmnDec
+// base address: 0x0
+#define regMP1_SMN_C2PMSG_32 0x0260
+#define regMP1_SMN_C2PMSG_32_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_33 0x0261
+#define regMP1_SMN_C2PMSG_33_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_34 0x0262
+#define regMP1_SMN_C2PMSG_34_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_35 0x0263
+#define regMP1_SMN_C2PMSG_35_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_36 0x0264
+#define regMP1_SMN_C2PMSG_36_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_37 0x0265
+#define regMP1_SMN_C2PMSG_37_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_38 0x0266
+#define regMP1_SMN_C2PMSG_38_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_39 0x0267
+#define regMP1_SMN_C2PMSG_39_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_40 0x0268
+#define regMP1_SMN_C2PMSG_40_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_41 0x0269
+#define regMP1_SMN_C2PMSG_41_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_42 0x026a
+#define regMP1_SMN_C2PMSG_42_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_43 0x026b
+#define regMP1_SMN_C2PMSG_43_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_44 0x026c
+#define regMP1_SMN_C2PMSG_44_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_45 0x026d
+#define regMP1_SMN_C2PMSG_45_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_46 0x026e
+#define regMP1_SMN_C2PMSG_46_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_47 0x026f
+#define regMP1_SMN_C2PMSG_47_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_48 0x0270
+#define regMP1_SMN_C2PMSG_48_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_49 0x0271
+#define regMP1_SMN_C2PMSG_49_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_50 0x0272
+#define regMP1_SMN_C2PMSG_50_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_51 0x0273
+#define regMP1_SMN_C2PMSG_51_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_52 0x0274
+#define regMP1_SMN_C2PMSG_52_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_53 0x0275
+#define regMP1_SMN_C2PMSG_53_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_54 0x0276
+#define regMP1_SMN_C2PMSG_54_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_55 0x0277
+#define regMP1_SMN_C2PMSG_55_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_56 0x0278
+#define regMP1_SMN_C2PMSG_56_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_57 0x0279
+#define regMP1_SMN_C2PMSG_57_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_58 0x027a
+#define regMP1_SMN_C2PMSG_58_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_59 0x027b
+#define regMP1_SMN_C2PMSG_59_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_60 0x027c
+#define regMP1_SMN_C2PMSG_60_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_61 0x027d
+#define regMP1_SMN_C2PMSG_61_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_62 0x027e
+#define regMP1_SMN_C2PMSG_62_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_63 0x027f
+#define regMP1_SMN_C2PMSG_63_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_64 0x0280
+#define regMP1_SMN_C2PMSG_64_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_65 0x0281
+#define regMP1_SMN_C2PMSG_65_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_66 0x0282
+#define regMP1_SMN_C2PMSG_66_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_67 0x0283
+#define regMP1_SMN_C2PMSG_67_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_68 0x0284
+#define regMP1_SMN_C2PMSG_68_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_69 0x0285
+#define regMP1_SMN_C2PMSG_69_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_70 0x0286
+#define regMP1_SMN_C2PMSG_70_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_71 0x0287
+#define regMP1_SMN_C2PMSG_71_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_72 0x0288
+#define regMP1_SMN_C2PMSG_72_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_73 0x0289
+#define regMP1_SMN_C2PMSG_73_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_74 0x028a
+#define regMP1_SMN_C2PMSG_74_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_75 0x028b
+#define regMP1_SMN_C2PMSG_75_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_76 0x028c
+#define regMP1_SMN_C2PMSG_76_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_77 0x028d
+#define regMP1_SMN_C2PMSG_77_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_78 0x028e
+#define regMP1_SMN_C2PMSG_78_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_79 0x028f
+#define regMP1_SMN_C2PMSG_79_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_80 0x0290
+#define regMP1_SMN_C2PMSG_80_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_81 0x0291
+#define regMP1_SMN_C2PMSG_81_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_82 0x0292
+#define regMP1_SMN_C2PMSG_82_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_83 0x0293
+#define regMP1_SMN_C2PMSG_83_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_84 0x0294
+#define regMP1_SMN_C2PMSG_84_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_85 0x0295
+#define regMP1_SMN_C2PMSG_85_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_86 0x0296
+#define regMP1_SMN_C2PMSG_86_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_87 0x0297
+#define regMP1_SMN_C2PMSG_87_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_88 0x0298
+#define regMP1_SMN_C2PMSG_88_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_89 0x0299
+#define regMP1_SMN_C2PMSG_89_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_90 0x029a
+#define regMP1_SMN_C2PMSG_90_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_91 0x029b
+#define regMP1_SMN_C2PMSG_91_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_92 0x029c
+#define regMP1_SMN_C2PMSG_92_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_93 0x029d
+#define regMP1_SMN_C2PMSG_93_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_94 0x029e
+#define regMP1_SMN_C2PMSG_94_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_95 0x029f
+#define regMP1_SMN_C2PMSG_95_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_96 0x02a0
+#define regMP1_SMN_C2PMSG_96_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_97 0x02a1
+#define regMP1_SMN_C2PMSG_97_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_98 0x02a2
+#define regMP1_SMN_C2PMSG_98_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_99 0x02a3
+#define regMP1_SMN_C2PMSG_99_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_100 0x02a4
+#define regMP1_SMN_C2PMSG_100_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_101 0x02a5
+#define regMP1_SMN_C2PMSG_101_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_102 0x02a6
+#define regMP1_SMN_C2PMSG_102_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_103 0x02a7
+#define regMP1_SMN_C2PMSG_103_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_104 0x02a8
+#define regMP1_SMN_C2PMSG_104_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_105 0x02a9
+#define regMP1_SMN_C2PMSG_105_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_106 0x02aa
+#define regMP1_SMN_C2PMSG_106_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_107 0x02ab
+#define regMP1_SMN_C2PMSG_107_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_108 0x02ac
+#define regMP1_SMN_C2PMSG_108_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_109 0x02ad
+#define regMP1_SMN_C2PMSG_109_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_110 0x02ae
+#define regMP1_SMN_C2PMSG_110_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_111 0x02af
+#define regMP1_SMN_C2PMSG_111_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_112 0x02b0
+#define regMP1_SMN_C2PMSG_112_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_113 0x02b1
+#define regMP1_SMN_C2PMSG_113_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_114 0x02b2
+#define regMP1_SMN_C2PMSG_114_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_115 0x02b3
+#define regMP1_SMN_C2PMSG_115_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_116 0x02b4
+#define regMP1_SMN_C2PMSG_116_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_117 0x02b5
+#define regMP1_SMN_C2PMSG_117_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_118 0x02b6
+#define regMP1_SMN_C2PMSG_118_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_119 0x02b7
+#define regMP1_SMN_C2PMSG_119_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_120 0x02b8
+#define regMP1_SMN_C2PMSG_120_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_121 0x02b9
+#define regMP1_SMN_C2PMSG_121_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_122 0x02ba
+#define regMP1_SMN_C2PMSG_122_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_123 0x02bb
+#define regMP1_SMN_C2PMSG_123_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_124 0x02bc
+#define regMP1_SMN_C2PMSG_124_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_125 0x02bd
+#define regMP1_SMN_C2PMSG_125_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_126 0x02be
+#define regMP1_SMN_C2PMSG_126_BASE_IDX 0
+#define regMP1_SMN_C2PMSG_127 0x02bf
+#define regMP1_SMN_C2PMSG_127_BASE_IDX 0
+#define regMP1_SMN_IH_CREDIT 0x02c1
+#define regMP1_SMN_IH_CREDIT_BASE_IDX 0
+#define regMP1_SMN_IH_SW_INT 0x02c2
+#define regMP1_SMN_IH_SW_INT_BASE_IDX 0
+#define regMP1_SMN_IH_SW_INT_CTRL 0x02c3
+#define regMP1_SMN_IH_SW_INT_CTRL_BASE_IDX 0
+#define regMP1_SMN_FPS_CNT 0x02c4
+#define regMP1_SMN_FPS_CNT_BASE_IDX 0
+#define regMP1_SMN_PUB_CTRL 0x02c5
+#define regMP1_SMN_PUB_CTRL_BASE_IDX 0
+#define regMP1_SMN_EXT_SCRATCH0 0x0340
+#define regMP1_SMN_EXT_SCRATCH0_BASE_IDX 0
+#define regMP1_SMN_EXT_SCRATCH1 0x0341
+#define regMP1_SMN_EXT_SCRATCH1_BASE_IDX 0
+#define regMP1_SMN_EXT_SCRATCH2 0x0342
+#define regMP1_SMN_EXT_SCRATCH2_BASE_IDX 0
+#define regMP1_SMN_EXT_SCRATCH3 0x0343
+#define regMP1_SMN_EXT_SCRATCH3_BASE_IDX 0
+#define regMP1_SMN_EXT_SCRATCH4 0x0344
+#define regMP1_SMN_EXT_SCRATCH4_BASE_IDX 0
+#define regMP1_SMN_EXT_SCRATCH5 0x0345
+#define regMP1_SMN_EXT_SCRATCH5_BASE_IDX 0
+#define regMP1_SMN_EXT_SCRATCH6 0x0346
+#define regMP1_SMN_EXT_SCRATCH6_BASE_IDX 0
+#define regMP1_SMN_EXT_SCRATCH7 0x0347
+#define regMP1_SMN_EXT_SCRATCH7_BASE_IDX 0
+#define regMP1_SMN_EXT_SCRATCH8 0x0348
+#define regMP1_SMN_EXT_SCRATCH8_BASE_IDX 0
+#define regMP1_SMN_EXT_SCRATCH10 0x034a
+#define regMP1_SMN_EXT_SCRATCH10_BASE_IDX 0
+#define regMP1_SMN_EXT_SCRATCH11 0x034b
+#define regMP1_SMN_EXT_SCRATCH11_BASE_IDX 0
+#define regMP1_SMN_EXT_SCRATCH12 0x034c
+#define regMP1_SMN_EXT_SCRATCH12_BASE_IDX 0
+#define regMP1_SMN_EXT_SCRATCH13 0x034d
+#define regMP1_SMN_EXT_SCRATCH13_BASE_IDX 0
+#define regMP1_SMN_EXT_SCRATCH14 0x034e
+#define regMP1_SMN_EXT_SCRATCH14_BASE_IDX 0
+#define regMP1_SMN_EXT_SCRATCH15 0x034f
+#define regMP1_SMN_EXT_SCRATCH15_BASE_IDX 0
+#define regMP1_SMN_EXT_SCRATCH16 0x0350
+#define regMP1_SMN_EXT_SCRATCH16_BASE_IDX 0
+#define regMP1_SMN_EXT_SCRATCH17 0x0351
+#define regMP1_SMN_EXT_SCRATCH17_BASE_IDX 0
+#define regMP1_SMN_EXT_SCRATCH18 0x0352
+#define regMP1_SMN_EXT_SCRATCH18_BASE_IDX 0
+#define regMP1_SMN_EXT_SCRATCH19 0x0353
+#define regMP1_SMN_EXT_SCRATCH19_BASE_IDX 0
+#define regMP1_SMN_EXT_SCRATCH20 0x0354
+#define regMP1_SMN_EXT_SCRATCH20_BASE_IDX 0
+#define regMP1_SMN_EXT_SCRATCH21 0x0355
+#define regMP1_SMN_EXT_SCRATCH21_BASE_IDX 0
+#define regMP1_SMN_EXT_SCRATCH22 0x0356
+#define regMP1_SMN_EXT_SCRATCH22_BASE_IDX 0
+#define regMP1_SMN_EXT_SCRATCH23 0x0357
+#define regMP1_SMN_EXT_SCRATCH23_BASE_IDX 0
+#define regMP1_SMN_EXT_SCRATCH24 0x0358
+#define regMP1_SMN_EXT_SCRATCH24_BASE_IDX 0
+#define regMP1_SMN_EXT_SCRATCH25 0x0359
+#define regMP1_SMN_EXT_SCRATCH25_BASE_IDX 0
+#define regMP1_SMN_EXT_SCRATCH26 0x035a
+#define regMP1_SMN_EXT_SCRATCH26_BASE_IDX 0
+#define regMP1_SMN_EXT_SCRATCH27 0x035b
+#define regMP1_SMN_EXT_SCRATCH27_BASE_IDX 0
+#define regMP1_SMN_EXT_SCRATCH28 0x035c
+#define regMP1_SMN_EXT_SCRATCH28_BASE_IDX 0
+#define regMP1_SMN_EXT_SCRATCH29 0x035d
+#define regMP1_SMN_EXT_SCRATCH29_BASE_IDX 0
+#define regMP1_SMN_EXT_SCRATCH30 0x035e
+#define regMP1_SMN_EXT_SCRATCH30_BASE_IDX 0
+#define regMP1_SMN_EXT_SCRATCH31 0x035f
+#define regMP1_SMN_EXT_SCRATCH31_BASE_IDX 0
+
+
+// addressBlock: aid_mp_SmuMp1Pub_CruDec
+// base address: 0x0
+#define regMP1_FIRMWARE_FLAGS 0xbee00a
+#define regMP1_FIRMWARE_FLAGS_BASE_IDX 0
+
+
+#endif
diff --git a/drivers/gpu/drm/amd/include/asic_reg/mp/mp_13_0_6_sh_mask.h b/drivers/gpu/drm/amd/include/asic_reg/mp/mp_13_0_6_sh_mask.h
new file mode 100644
index 000000000000..780d9824d5ed
--- /dev/null
+++ b/drivers/gpu/drm/amd/include/asic_reg/mp/mp_13_0_6_sh_mask.h
@@ -0,0 +1,674 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ */
+#ifndef _mp_13_0_6_SH_MASK_HEADER
+#define _mp_13_0_6_SH_MASK_HEADER
+
+
+// addressBlock: aid_mp_SmuMp0_SmnDec
+//MP0_SMN_C2PMSG_32
+#define MP0_SMN_C2PMSG_32__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_32__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_33
+#define MP0_SMN_C2PMSG_33__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_33__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_34
+#define MP0_SMN_C2PMSG_34__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_34__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_35
+#define MP0_SMN_C2PMSG_35__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_35__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_36
+#define MP0_SMN_C2PMSG_36__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_36__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_37
+#define MP0_SMN_C2PMSG_37__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_37__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_38
+#define MP0_SMN_C2PMSG_38__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_38__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_39
+#define MP0_SMN_C2PMSG_39__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_39__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_40
+#define MP0_SMN_C2PMSG_40__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_40__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_41
+#define MP0_SMN_C2PMSG_41__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_41__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_42
+#define MP0_SMN_C2PMSG_42__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_42__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_43
+#define MP0_SMN_C2PMSG_43__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_43__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_44
+#define MP0_SMN_C2PMSG_44__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_44__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_45
+#define MP0_SMN_C2PMSG_45__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_45__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_46
+#define MP0_SMN_C2PMSG_46__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_46__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_47
+#define MP0_SMN_C2PMSG_47__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_47__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_48
+#define MP0_SMN_C2PMSG_48__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_48__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_49
+#define MP0_SMN_C2PMSG_49__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_49__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_50
+#define MP0_SMN_C2PMSG_50__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_50__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_51
+#define MP0_SMN_C2PMSG_51__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_51__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_52
+#define MP0_SMN_C2PMSG_52__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_52__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_53
+#define MP0_SMN_C2PMSG_53__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_53__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_54
+#define MP0_SMN_C2PMSG_54__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_54__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_55
+#define MP0_SMN_C2PMSG_55__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_55__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_56
+#define MP0_SMN_C2PMSG_56__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_56__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_57
+#define MP0_SMN_C2PMSG_57__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_57__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_58
+#define MP0_SMN_C2PMSG_58__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_58__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_59
+#define MP0_SMN_C2PMSG_59__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_59__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_60
+#define MP0_SMN_C2PMSG_60__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_60__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_61
+#define MP0_SMN_C2PMSG_61__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_61__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_62
+#define MP0_SMN_C2PMSG_62__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_62__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_63
+#define MP0_SMN_C2PMSG_63__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_63__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_64
+#define MP0_SMN_C2PMSG_64__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_64__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_65
+#define MP0_SMN_C2PMSG_65__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_65__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_66
+#define MP0_SMN_C2PMSG_66__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_66__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_67
+#define MP0_SMN_C2PMSG_67__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_67__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_68
+#define MP0_SMN_C2PMSG_68__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_68__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_69
+#define MP0_SMN_C2PMSG_69__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_69__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_70
+#define MP0_SMN_C2PMSG_70__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_70__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_71
+#define MP0_SMN_C2PMSG_71__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_71__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_72
+#define MP0_SMN_C2PMSG_72__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_72__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_73
+#define MP0_SMN_C2PMSG_73__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_73__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_74
+#define MP0_SMN_C2PMSG_74__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_74__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_75
+#define MP0_SMN_C2PMSG_75__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_75__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_76
+#define MP0_SMN_C2PMSG_76__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_76__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_77
+#define MP0_SMN_C2PMSG_77__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_77__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_78
+#define MP0_SMN_C2PMSG_78__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_78__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_79
+#define MP0_SMN_C2PMSG_79__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_79__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_80
+#define MP0_SMN_C2PMSG_80__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_80__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_81
+#define MP0_SMN_C2PMSG_81__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_81__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_82
+#define MP0_SMN_C2PMSG_82__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_82__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_83
+#define MP0_SMN_C2PMSG_83__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_83__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_84
+#define MP0_SMN_C2PMSG_84__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_84__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_85
+#define MP0_SMN_C2PMSG_85__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_85__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_86
+#define MP0_SMN_C2PMSG_86__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_86__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_87
+#define MP0_SMN_C2PMSG_87__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_87__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_88
+#define MP0_SMN_C2PMSG_88__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_88__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_89
+#define MP0_SMN_C2PMSG_89__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_89__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_90
+#define MP0_SMN_C2PMSG_90__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_90__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_91
+#define MP0_SMN_C2PMSG_91__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_91__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_92
+#define MP0_SMN_C2PMSG_92__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_92__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_93
+#define MP0_SMN_C2PMSG_93__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_93__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_94
+#define MP0_SMN_C2PMSG_94__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_94__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_95
+#define MP0_SMN_C2PMSG_95__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_95__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_96
+#define MP0_SMN_C2PMSG_96__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_96__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_97
+#define MP0_SMN_C2PMSG_97__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_97__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_98
+#define MP0_SMN_C2PMSG_98__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_98__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_99
+#define MP0_SMN_C2PMSG_99__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_99__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_100
+#define MP0_SMN_C2PMSG_100__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_100__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_101
+#define MP0_SMN_C2PMSG_101__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_101__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_102
+#define MP0_SMN_C2PMSG_102__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_102__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_C2PMSG_103
+#define MP0_SMN_C2PMSG_103__CONTENT__SHIFT 0x0
+#define MP0_SMN_C2PMSG_103__CONTENT_MASK 0xFFFFFFFFL
+//MP0_SMN_IH_CREDIT
+#define MP0_SMN_IH_CREDIT__CREDIT_VALUE__SHIFT 0x0
+#define MP0_SMN_IH_CREDIT__CLIENT_ID__SHIFT 0x10
+#define MP0_SMN_IH_CREDIT__CREDIT_VALUE_MASK 0x00000003L
+#define MP0_SMN_IH_CREDIT__CLIENT_ID_MASK 0x00FF0000L
+//MP0_SMN_IH_SW_INT
+#define MP0_SMN_IH_SW_INT__ID__SHIFT 0x0
+#define MP0_SMN_IH_SW_INT__VALID__SHIFT 0x8
+#define MP0_SMN_IH_SW_INT__ID_MASK 0x000000FFL
+#define MP0_SMN_IH_SW_INT__VALID_MASK 0x00000100L
+//MP0_SMN_IH_SW_INT_CTRL
+#define MP0_SMN_IH_SW_INT_CTRL__INT_MASK__SHIFT 0x0
+#define MP0_SMN_IH_SW_INT_CTRL__INT_ACK__SHIFT 0x8
+#define MP0_SMN_IH_SW_INT_CTRL__INT_MASK_MASK 0x00000001L
+#define MP0_SMN_IH_SW_INT_CTRL__INT_ACK_MASK 0x00000100L
+
+
+// addressBlock: aid_mp_SmuMp1_SmnDec
+//MP1_SMN_C2PMSG_32
+#define MP1_SMN_C2PMSG_32__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_32__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_33
+#define MP1_SMN_C2PMSG_33__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_33__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_34
+#define MP1_SMN_C2PMSG_34__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_34__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_35
+#define MP1_SMN_C2PMSG_35__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_35__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_36
+#define MP1_SMN_C2PMSG_36__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_36__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_37
+#define MP1_SMN_C2PMSG_37__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_37__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_38
+#define MP1_SMN_C2PMSG_38__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_38__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_39
+#define MP1_SMN_C2PMSG_39__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_39__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_40
+#define MP1_SMN_C2PMSG_40__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_40__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_41
+#define MP1_SMN_C2PMSG_41__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_41__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_42
+#define MP1_SMN_C2PMSG_42__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_42__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_43
+#define MP1_SMN_C2PMSG_43__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_43__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_44
+#define MP1_SMN_C2PMSG_44__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_44__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_45
+#define MP1_SMN_C2PMSG_45__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_45__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_46
+#define MP1_SMN_C2PMSG_46__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_46__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_47
+#define MP1_SMN_C2PMSG_47__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_47__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_48
+#define MP1_SMN_C2PMSG_48__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_48__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_49
+#define MP1_SMN_C2PMSG_49__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_49__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_50
+#define MP1_SMN_C2PMSG_50__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_50__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_51
+#define MP1_SMN_C2PMSG_51__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_51__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_52
+#define MP1_SMN_C2PMSG_52__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_52__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_53
+#define MP1_SMN_C2PMSG_53__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_53__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_54
+#define MP1_SMN_C2PMSG_54__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_54__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_55
+#define MP1_SMN_C2PMSG_55__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_55__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_56
+#define MP1_SMN_C2PMSG_56__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_56__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_57
+#define MP1_SMN_C2PMSG_57__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_57__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_58
+#define MP1_SMN_C2PMSG_58__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_58__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_59
+#define MP1_SMN_C2PMSG_59__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_59__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_60
+#define MP1_SMN_C2PMSG_60__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_60__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_61
+#define MP1_SMN_C2PMSG_61__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_61__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_62
+#define MP1_SMN_C2PMSG_62__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_62__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_63
+#define MP1_SMN_C2PMSG_63__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_63__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_64
+#define MP1_SMN_C2PMSG_64__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_64__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_65
+#define MP1_SMN_C2PMSG_65__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_65__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_66
+#define MP1_SMN_C2PMSG_66__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_66__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_67
+#define MP1_SMN_C2PMSG_67__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_67__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_68
+#define MP1_SMN_C2PMSG_68__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_68__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_69
+#define MP1_SMN_C2PMSG_69__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_69__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_70
+#define MP1_SMN_C2PMSG_70__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_70__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_71
+#define MP1_SMN_C2PMSG_71__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_71__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_72
+#define MP1_SMN_C2PMSG_72__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_72__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_73
+#define MP1_SMN_C2PMSG_73__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_73__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_74
+#define MP1_SMN_C2PMSG_74__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_74__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_75
+#define MP1_SMN_C2PMSG_75__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_75__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_76
+#define MP1_SMN_C2PMSG_76__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_76__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_77
+#define MP1_SMN_C2PMSG_77__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_77__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_78
+#define MP1_SMN_C2PMSG_78__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_78__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_79
+#define MP1_SMN_C2PMSG_79__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_79__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_80
+#define MP1_SMN_C2PMSG_80__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_80__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_81
+#define MP1_SMN_C2PMSG_81__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_81__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_82
+#define MP1_SMN_C2PMSG_82__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_82__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_83
+#define MP1_SMN_C2PMSG_83__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_83__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_84
+#define MP1_SMN_C2PMSG_84__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_84__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_85
+#define MP1_SMN_C2PMSG_85__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_85__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_86
+#define MP1_SMN_C2PMSG_86__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_86__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_87
+#define MP1_SMN_C2PMSG_87__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_87__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_88
+#define MP1_SMN_C2PMSG_88__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_88__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_89
+#define MP1_SMN_C2PMSG_89__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_89__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_90
+#define MP1_SMN_C2PMSG_90__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_90__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_91
+#define MP1_SMN_C2PMSG_91__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_91__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_92
+#define MP1_SMN_C2PMSG_92__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_92__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_93
+#define MP1_SMN_C2PMSG_93__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_93__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_94
+#define MP1_SMN_C2PMSG_94__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_94__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_95
+#define MP1_SMN_C2PMSG_95__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_95__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_96
+#define MP1_SMN_C2PMSG_96__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_96__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_97
+#define MP1_SMN_C2PMSG_97__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_97__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_98
+#define MP1_SMN_C2PMSG_98__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_98__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_99
+#define MP1_SMN_C2PMSG_99__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_99__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_100
+#define MP1_SMN_C2PMSG_100__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_100__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_101
+#define MP1_SMN_C2PMSG_101__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_101__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_102
+#define MP1_SMN_C2PMSG_102__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_102__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_103
+#define MP1_SMN_C2PMSG_103__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_103__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_104
+#define MP1_SMN_C2PMSG_104__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_104__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_105
+#define MP1_SMN_C2PMSG_105__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_105__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_106
+#define MP1_SMN_C2PMSG_106__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_106__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_107
+#define MP1_SMN_C2PMSG_107__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_107__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_108
+#define MP1_SMN_C2PMSG_108__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_108__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_109
+#define MP1_SMN_C2PMSG_109__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_109__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_110
+#define MP1_SMN_C2PMSG_110__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_110__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_111
+#define MP1_SMN_C2PMSG_111__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_111__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_112
+#define MP1_SMN_C2PMSG_112__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_112__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_113
+#define MP1_SMN_C2PMSG_113__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_113__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_114
+#define MP1_SMN_C2PMSG_114__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_114__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_115
+#define MP1_SMN_C2PMSG_115__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_115__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_116
+#define MP1_SMN_C2PMSG_116__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_116__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_117
+#define MP1_SMN_C2PMSG_117__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_117__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_118
+#define MP1_SMN_C2PMSG_118__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_118__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_119
+#define MP1_SMN_C2PMSG_119__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_119__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_120
+#define MP1_SMN_C2PMSG_120__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_120__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_121
+#define MP1_SMN_C2PMSG_121__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_121__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_122
+#define MP1_SMN_C2PMSG_122__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_122__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_123
+#define MP1_SMN_C2PMSG_123__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_123__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_124
+#define MP1_SMN_C2PMSG_124__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_124__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_125
+#define MP1_SMN_C2PMSG_125__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_125__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_126
+#define MP1_SMN_C2PMSG_126__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_126__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_C2PMSG_127
+#define MP1_SMN_C2PMSG_127__CONTENT__SHIFT 0x0
+#define MP1_SMN_C2PMSG_127__CONTENT_MASK 0xFFFFFFFFL
+//MP1_SMN_IH_CREDIT
+#define MP1_SMN_IH_CREDIT__CREDIT_VALUE__SHIFT 0x0
+#define MP1_SMN_IH_CREDIT__CLIENT_ID__SHIFT 0x10
+#define MP1_SMN_IH_CREDIT__CREDIT_VALUE_MASK 0x00000003L
+#define MP1_SMN_IH_CREDIT__CLIENT_ID_MASK 0x00FF0000L
+//MP1_SMN_IH_SW_INT
+#define MP1_SMN_IH_SW_INT__ID__SHIFT 0x0
+#define MP1_SMN_IH_SW_INT__VALID__SHIFT 0x8
+#define MP1_SMN_IH_SW_INT__ID_MASK 0x000000FFL
+#define MP1_SMN_IH_SW_INT__VALID_MASK 0x00000100L
+//MP1_SMN_IH_SW_INT_CTRL
+#define MP1_SMN_IH_SW_INT_CTRL__INT_MASK__SHIFT 0x0
+#define MP1_SMN_IH_SW_INT_CTRL__INT_ACK__SHIFT 0x8
+#define MP1_SMN_IH_SW_INT_CTRL__INT_MASK_MASK 0x00000001L
+#define MP1_SMN_IH_SW_INT_CTRL__INT_ACK_MASK 0x00000100L
+//MP1_SMN_FPS_CNT
+#define MP1_SMN_FPS_CNT__COUNT__SHIFT 0x0
+#define MP1_SMN_FPS_CNT__COUNT_MASK 0xFFFFFFFFL
+//MP1_SMN_PUB_CTRL
+#define MP1_SMN_PUB_CTRL__LX3_RESET__SHIFT 0x0
+#define MP1_SMN_PUB_CTRL__LX3_RESET_MASK 0x00000001L
+//MP1_SMN_EXT_SCRATCH0
+#define MP1_SMN_EXT_SCRATCH0__DATA__SHIFT 0x0
+#define MP1_SMN_EXT_SCRATCH0__DATA_MASK 0xFFFFFFFFL
+//MP1_SMN_EXT_SCRATCH1
+#define MP1_SMN_EXT_SCRATCH1__DATA__SHIFT 0x0
+#define MP1_SMN_EXT_SCRATCH1__DATA_MASK 0xFFFFFFFFL
+//MP1_SMN_EXT_SCRATCH2
+#define MP1_SMN_EXT_SCRATCH2__DATA__SHIFT 0x0
+#define MP1_SMN_EXT_SCRATCH2__DATA_MASK 0xFFFFFFFFL
+//MP1_SMN_EXT_SCRATCH3
+#define MP1_SMN_EXT_SCRATCH3__DATA__SHIFT 0x0
+#define MP1_SMN_EXT_SCRATCH3__DATA_MASK 0xFFFFFFFFL
+//MP1_SMN_EXT_SCRATCH4
+#define MP1_SMN_EXT_SCRATCH4__DATA__SHIFT 0x0
+#define MP1_SMN_EXT_SCRATCH4__DATA_MASK 0xFFFFFFFFL
+//MP1_SMN_EXT_SCRATCH5
+#define MP1_SMN_EXT_SCRATCH5__DATA__SHIFT 0x0
+#define MP1_SMN_EXT_SCRATCH5__DATA_MASK 0xFFFFFFFFL
+//MP1_SMN_EXT_SCRATCH6
+#define MP1_SMN_EXT_SCRATCH6__DATA__SHIFT 0x0
+#define MP1_SMN_EXT_SCRATCH6__DATA_MASK 0xFFFFFFFFL
+//MP1_SMN_EXT_SCRATCH7
+#define MP1_SMN_EXT_SCRATCH7__DATA__SHIFT 0x0
+#define MP1_SMN_EXT_SCRATCH7__DATA_MASK 0xFFFFFFFFL
+//MP1_SMN_EXT_SCRATCH8
+#define MP1_SMN_EXT_SCRATCH8__DATA__SHIFT 0x0
+#define MP1_SMN_EXT_SCRATCH8__DATA_MASK 0xFFFFFFFFL
+//MP1_SMN_EXT_SCRATCH10
+#define MP1_SMN_EXT_SCRATCH10__DATA__SHIFT 0x0
+#define MP1_SMN_EXT_SCRATCH10__DATA_MASK 0xFFFFFFFFL
+//MP1_SMN_EXT_SCRATCH11
+#define MP1_SMN_EXT_SCRATCH11__DATA__SHIFT 0x0
+#define MP1_SMN_EXT_SCRATCH11__DATA_MASK 0xFFFFFFFFL
+//MP1_SMN_EXT_SCRATCH12
+#define MP1_SMN_EXT_SCRATCH12__DATA__SHIFT 0x0
+#define MP1_SMN_EXT_SCRATCH12__DATA_MASK 0xFFFFFFFFL
+//MP1_SMN_EXT_SCRATCH13
+#define MP1_SMN_EXT_SCRATCH13__DATA__SHIFT 0x0
+#define MP1_SMN_EXT_SCRATCH13__DATA_MASK 0xFFFFFFFFL
+//MP1_SMN_EXT_SCRATCH14
+#define MP1_SMN_EXT_SCRATCH14__DATA__SHIFT 0x0
+#define MP1_SMN_EXT_SCRATCH14__DATA_MASK 0xFFFFFFFFL
+//MP1_SMN_EXT_SCRATCH15
+#define MP1_SMN_EXT_SCRATCH15__DATA__SHIFT 0x0
+#define MP1_SMN_EXT_SCRATCH15__DATA_MASK 0xFFFFFFFFL
+//MP1_SMN_EXT_SCRATCH16
+#define MP1_SMN_EXT_SCRATCH16__DATA__SHIFT 0x0
+#define MP1_SMN_EXT_SCRATCH16__DATA_MASK 0xFFFFFFFFL
+//MP1_SMN_EXT_SCRATCH17
+#define MP1_SMN_EXT_SCRATCH17__DATA__SHIFT 0x0
+#define MP1_SMN_EXT_SCRATCH17__DATA_MASK 0xFFFFFFFFL
+//MP1_SMN_EXT_SCRATCH18
+#define MP1_SMN_EXT_SCRATCH18__DATA__SHIFT 0x0
+#define MP1_SMN_EXT_SCRATCH18__DATA_MASK 0xFFFFFFFFL
+//MP1_SMN_EXT_SCRATCH19
+#define MP1_SMN_EXT_SCRATCH19__DATA__SHIFT 0x0
+#define MP1_SMN_EXT_SCRATCH19__DATA_MASK 0xFFFFFFFFL
+//MP1_SMN_EXT_SCRATCH20
+#define MP1_SMN_EXT_SCRATCH20__DATA__SHIFT 0x0
+#define MP1_SMN_EXT_SCRATCH20__DATA_MASK 0xFFFFFFFFL
+//MP1_SMN_EXT_SCRATCH21
+#define MP1_SMN_EXT_SCRATCH21__DATA__SHIFT 0x0
+#define MP1_SMN_EXT_SCRATCH21__DATA_MASK 0xFFFFFFFFL
+//MP1_SMN_EXT_SCRATCH22
+#define MP1_SMN_EXT_SCRATCH22__DATA__SHIFT 0x0
+#define MP1_SMN_EXT_SCRATCH22__DATA_MASK 0xFFFFFFFFL
+//MP1_SMN_EXT_SCRATCH23
+#define MP1_SMN_EXT_SCRATCH23__DATA__SHIFT 0x0
+#define MP1_SMN_EXT_SCRATCH23__DATA_MASK 0xFFFFFFFFL
+//MP1_SMN_EXT_SCRATCH24
+#define MP1_SMN_EXT_SCRATCH24__DATA__SHIFT 0x0
+#define MP1_SMN_EXT_SCRATCH24__DATA_MASK 0xFFFFFFFFL
+//MP1_SMN_EXT_SCRATCH25
+#define MP1_SMN_EXT_SCRATCH25__DATA__SHIFT 0x0
+#define MP1_SMN_EXT_SCRATCH25__DATA_MASK 0xFFFFFFFFL
+//MP1_SMN_EXT_SCRATCH26
+#define MP1_SMN_EXT_SCRATCH26__DATA__SHIFT 0x0
+#define MP1_SMN_EXT_SCRATCH26__DATA_MASK 0xFFFFFFFFL
+//MP1_SMN_EXT_SCRATCH27
+#define MP1_SMN_EXT_SCRATCH27__DATA__SHIFT 0x0
+#define MP1_SMN_EXT_SCRATCH27__DATA_MASK 0xFFFFFFFFL
+//MP1_SMN_EXT_SCRATCH28
+#define MP1_SMN_EXT_SCRATCH28__DATA__SHIFT 0x0
+#define MP1_SMN_EXT_SCRATCH28__DATA_MASK 0xFFFFFFFFL
+//MP1_SMN_EXT_SCRATCH29
+#define MP1_SMN_EXT_SCRATCH29__DATA__SHIFT 0x0
+#define MP1_SMN_EXT_SCRATCH29__DATA_MASK 0xFFFFFFFFL
+//MP1_SMN_EXT_SCRATCH30
+#define MP1_SMN_EXT_SCRATCH30__DATA__SHIFT 0x0
+#define MP1_SMN_EXT_SCRATCH30__DATA_MASK 0xFFFFFFFFL
+//MP1_SMN_EXT_SCRATCH31
+#define MP1_SMN_EXT_SCRATCH31__DATA__SHIFT 0x0
+#define MP1_SMN_EXT_SCRATCH31__DATA_MASK 0xFFFFFFFFL
+
+
+// addressBlock: aid_mp_SmuMp1Pub_CruDec
+//MP1_FIRMWARE_FLAGS
+#define MP1_FIRMWARE_FLAGS__INTERRUPTS_ENABLED__SHIFT 0x0
+#define MP1_FIRMWARE_FLAGS__RESERVED__SHIFT 0x1
+#define MP1_FIRMWARE_FLAGS__INTERRUPTS_ENABLED_MASK 0x00000001L
+#define MP1_FIRMWARE_FLAGS__RESERVED_MASK 0xFFFFFFFEL
+
+
+#endif
diff --git a/drivers/gpu/drm/amd/include/asic_reg/nbio/nbio_7_9_0_offset.h b/drivers/gpu/drm/amd/include/asic_reg/nbio/nbio_7_9_0_offset.h
new file mode 100644
index 000000000000..033f2796c1e3
--- /dev/null
+++ b/drivers/gpu/drm/amd/include/asic_reg/nbio/nbio_7_9_0_offset.h
@@ -0,0 +1,10002 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ */
+#ifndef _nbio_7_9_0_OFFSET_HEADER
+#define _nbio_7_9_0_OFFSET_HEADER
+
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_SYSDEC
+// base address: 0x0
+#define regBIF_BX0_PCIE_INDEX 0x000c
+#define regBIF_BX0_PCIE_INDEX_BASE_IDX 0
+#define regBIF_BX0_PCIE_DATA 0x000d
+#define regBIF_BX0_PCIE_DATA_BASE_IDX 0
+#define regBIF_BX0_PCIE_INDEX2 0x000e
+#define regBIF_BX0_PCIE_INDEX2_BASE_IDX 0
+#define regBIF_BX0_PCIE_DATA2 0x000f
+#define regBIF_BX0_PCIE_DATA2_BASE_IDX 0
+#define regBIF_BX0_PCIE_INDEX_HI 0x0010
+#define regBIF_BX0_PCIE_INDEX_HI_BASE_IDX 0
+#define regBIF_BX0_PCIE_INDEX2_HI 0x0011
+#define regBIF_BX0_PCIE_INDEX2_HI_BASE_IDX 0
+#define regBIF_BX0_SBIOS_SCRATCH_0 0x0034
+#define regBIF_BX0_SBIOS_SCRATCH_0_BASE_IDX 1
+#define regBIF_BX0_SBIOS_SCRATCH_1 0x0035
+#define regBIF_BX0_SBIOS_SCRATCH_1_BASE_IDX 1
+#define regBIF_BX0_SBIOS_SCRATCH_2 0x0036
+#define regBIF_BX0_SBIOS_SCRATCH_2_BASE_IDX 1
+#define regBIF_BX0_SBIOS_SCRATCH_3 0x0037
+#define regBIF_BX0_SBIOS_SCRATCH_3_BASE_IDX 1
+#define regBIF_BX0_BIOS_SCRATCH_0 0x0038
+#define regBIF_BX0_BIOS_SCRATCH_0_BASE_IDX 1
+#define regBIF_BX0_BIOS_SCRATCH_1 0x0039
+#define regBIF_BX0_BIOS_SCRATCH_1_BASE_IDX 1
+#define regBIF_BX0_BIOS_SCRATCH_2 0x003a
+#define regBIF_BX0_BIOS_SCRATCH_2_BASE_IDX 1
+#define regBIF_BX0_BIOS_SCRATCH_3 0x003b
+#define regBIF_BX0_BIOS_SCRATCH_3_BASE_IDX 1
+#define regBIF_BX0_BIOS_SCRATCH_4 0x003c
+#define regBIF_BX0_BIOS_SCRATCH_4_BASE_IDX 1
+#define regBIF_BX0_BIOS_SCRATCH_5 0x003d
+#define regBIF_BX0_BIOS_SCRATCH_5_BASE_IDX 1
+#define regBIF_BX0_BIOS_SCRATCH_6 0x003e
+#define regBIF_BX0_BIOS_SCRATCH_6_BASE_IDX 1
+#define regBIF_BX0_BIOS_SCRATCH_7 0x003f
+#define regBIF_BX0_BIOS_SCRATCH_7_BASE_IDX 1
+#define regBIF_BX0_BIOS_SCRATCH_8 0x0040
+#define regBIF_BX0_BIOS_SCRATCH_8_BASE_IDX 1
+#define regBIF_BX0_BIOS_SCRATCH_9 0x0041
+#define regBIF_BX0_BIOS_SCRATCH_9_BASE_IDX 1
+#define regBIF_BX0_BIOS_SCRATCH_10 0x0042
+#define regBIF_BX0_BIOS_SCRATCH_10_BASE_IDX 1
+#define regBIF_BX0_BIOS_SCRATCH_11 0x0043
+#define regBIF_BX0_BIOS_SCRATCH_11_BASE_IDX 1
+#define regBIF_BX0_BIOS_SCRATCH_12 0x0044
+#define regBIF_BX0_BIOS_SCRATCH_12_BASE_IDX 1
+#define regBIF_BX0_BIOS_SCRATCH_13 0x0045
+#define regBIF_BX0_BIOS_SCRATCH_13_BASE_IDX 1
+#define regBIF_BX0_BIOS_SCRATCH_14 0x0046
+#define regBIF_BX0_BIOS_SCRATCH_14_BASE_IDX 1
+#define regBIF_BX0_BIOS_SCRATCH_15 0x0047
+#define regBIF_BX0_BIOS_SCRATCH_15_BASE_IDX 1
+#define regBIF_BX0_BIF_RLC_INTR_CNTL 0x004c
+#define regBIF_BX0_BIF_RLC_INTR_CNTL_BASE_IDX 1
+#define regBIF_BX0_BIF_VCE_INTR_CNTL 0x004d
+#define regBIF_BX0_BIF_VCE_INTR_CNTL_BASE_IDX 1
+#define regBIF_BX0_BIF_UVD_INTR_CNTL 0x004e
+#define regBIF_BX0_BIF_UVD_INTR_CNTL_BASE_IDX 1
+#define regBIF_BX0_GFX_MMIOREG_CAM_ADDR0 0x006c
+#define regBIF_BX0_GFX_MMIOREG_CAM_ADDR0_BASE_IDX 1
+#define regBIF_BX0_GFX_MMIOREG_CAM_REMAP_ADDR0 0x006d
+#define regBIF_BX0_GFX_MMIOREG_CAM_REMAP_ADDR0_BASE_IDX 1
+#define regBIF_BX0_GFX_MMIOREG_CAM_ADDR1 0x006e
+#define regBIF_BX0_GFX_MMIOREG_CAM_ADDR1_BASE_IDX 1
+#define regBIF_BX0_GFX_MMIOREG_CAM_REMAP_ADDR1 0x006f
+#define regBIF_BX0_GFX_MMIOREG_CAM_REMAP_ADDR1_BASE_IDX 1
+#define regBIF_BX0_GFX_MMIOREG_CAM_ADDR2 0x0070
+#define regBIF_BX0_GFX_MMIOREG_CAM_ADDR2_BASE_IDX 1
+#define regBIF_BX0_GFX_MMIOREG_CAM_REMAP_ADDR2 0x0071
+#define regBIF_BX0_GFX_MMIOREG_CAM_REMAP_ADDR2_BASE_IDX 1
+#define regBIF_BX0_GFX_MMIOREG_CAM_ADDR3 0x0072
+#define regBIF_BX0_GFX_MMIOREG_CAM_ADDR3_BASE_IDX 1
+#define regBIF_BX0_GFX_MMIOREG_CAM_REMAP_ADDR3 0x0073
+#define regBIF_BX0_GFX_MMIOREG_CAM_REMAP_ADDR3_BASE_IDX 1
+#define regBIF_BX0_GFX_MMIOREG_CAM_ADDR4 0x0074
+#define regBIF_BX0_GFX_MMIOREG_CAM_ADDR4_BASE_IDX 1
+#define regBIF_BX0_GFX_MMIOREG_CAM_REMAP_ADDR4 0x0075
+#define regBIF_BX0_GFX_MMIOREG_CAM_REMAP_ADDR4_BASE_IDX 1
+#define regBIF_BX0_GFX_MMIOREG_CAM_ADDR5 0x0076
+#define regBIF_BX0_GFX_MMIOREG_CAM_ADDR5_BASE_IDX 1
+#define regBIF_BX0_GFX_MMIOREG_CAM_REMAP_ADDR5 0x0077
+#define regBIF_BX0_GFX_MMIOREG_CAM_REMAP_ADDR5_BASE_IDX 1
+#define regBIF_BX0_GFX_MMIOREG_CAM_ADDR6 0x0078
+#define regBIF_BX0_GFX_MMIOREG_CAM_ADDR6_BASE_IDX 1
+#define regBIF_BX0_GFX_MMIOREG_CAM_REMAP_ADDR6 0x0079
+#define regBIF_BX0_GFX_MMIOREG_CAM_REMAP_ADDR6_BASE_IDX 1
+#define regBIF_BX0_GFX_MMIOREG_CAM_ADDR7 0x007a
+#define regBIF_BX0_GFX_MMIOREG_CAM_ADDR7_BASE_IDX 1
+#define regBIF_BX0_GFX_MMIOREG_CAM_REMAP_ADDR7 0x007b
+#define regBIF_BX0_GFX_MMIOREG_CAM_REMAP_ADDR7_BASE_IDX 1
+#define regBIF_BX0_GFX_MMIOREG_CAM_CNTL 0x007c
+#define regBIF_BX0_GFX_MMIOREG_CAM_CNTL_BASE_IDX 1
+#define regBIF_BX0_GFX_MMIOREG_CAM_ZERO_CPL 0x007d
+#define regBIF_BX0_GFX_MMIOREG_CAM_ZERO_CPL_BASE_IDX 1
+#define regBIF_BX0_GFX_MMIOREG_CAM_ONE_CPL 0x007e
+#define regBIF_BX0_GFX_MMIOREG_CAM_ONE_CPL_BASE_IDX 1
+#define regBIF_BX0_GFX_MMIOREG_CAM_PROGRAMMABLE_CPL 0x007f
+#define regBIF_BX0_GFX_MMIOREG_CAM_PROGRAMMABLE_CPL_BASE_IDX 1
+#define regBIF_BX0_DRIVER_SCRATCH_0 0x0080
+#define regBIF_BX0_DRIVER_SCRATCH_0_BASE_IDX 1
+#define regBIF_BX0_DRIVER_SCRATCH_1 0x0081
+#define regBIF_BX0_DRIVER_SCRATCH_1_BASE_IDX 1
+#define regBIF_BX0_DRIVER_SCRATCH_2 0x0082
+#define regBIF_BX0_DRIVER_SCRATCH_2_BASE_IDX 1
+#define regBIF_BX0_DRIVER_SCRATCH_3 0x0083
+#define regBIF_BX0_DRIVER_SCRATCH_3_BASE_IDX 1
+#define regBIF_BX0_DRIVER_SCRATCH_4 0x0084
+#define regBIF_BX0_DRIVER_SCRATCH_4_BASE_IDX 1
+#define regBIF_BX0_DRIVER_SCRATCH_5 0x0085
+#define regBIF_BX0_DRIVER_SCRATCH_5_BASE_IDX 1
+#define regBIF_BX0_DRIVER_SCRATCH_6 0x0086
+#define regBIF_BX0_DRIVER_SCRATCH_6_BASE_IDX 1
+#define regBIF_BX0_DRIVER_SCRATCH_7 0x0087
+#define regBIF_BX0_DRIVER_SCRATCH_7_BASE_IDX 1
+#define regBIF_BX0_DRIVER_SCRATCH_8 0x0088
+#define regBIF_BX0_DRIVER_SCRATCH_8_BASE_IDX 1
+#define regBIF_BX0_DRIVER_SCRATCH_9 0x0089
+#define regBIF_BX0_DRIVER_SCRATCH_9_BASE_IDX 1
+#define regBIF_BX0_DRIVER_SCRATCH_10 0x008a
+#define regBIF_BX0_DRIVER_SCRATCH_10_BASE_IDX 1
+#define regBIF_BX0_DRIVER_SCRATCH_11 0x008b
+#define regBIF_BX0_DRIVER_SCRATCH_11_BASE_IDX 1
+#define regBIF_BX0_DRIVER_SCRATCH_12 0x008c
+#define regBIF_BX0_DRIVER_SCRATCH_12_BASE_IDX 1
+#define regBIF_BX0_DRIVER_SCRATCH_13 0x008d
+#define regBIF_BX0_DRIVER_SCRATCH_13_BASE_IDX 1
+#define regBIF_BX0_DRIVER_SCRATCH_14 0x008e
+#define regBIF_BX0_DRIVER_SCRATCH_14_BASE_IDX 1
+#define regBIF_BX0_DRIVER_SCRATCH_15 0x008f
+#define regBIF_BX0_DRIVER_SCRATCH_15_BASE_IDX 1
+#define regBIF_BX0_FW_SCRATCH_0 0x0090
+#define regBIF_BX0_FW_SCRATCH_0_BASE_IDX 1
+#define regBIF_BX0_FW_SCRATCH_1 0x0091
+#define regBIF_BX0_FW_SCRATCH_1_BASE_IDX 1
+#define regBIF_BX0_FW_SCRATCH_2 0x0092
+#define regBIF_BX0_FW_SCRATCH_2_BASE_IDX 1
+#define regBIF_BX0_FW_SCRATCH_3 0x0093
+#define regBIF_BX0_FW_SCRATCH_3_BASE_IDX 1
+#define regBIF_BX0_FW_SCRATCH_4 0x0094
+#define regBIF_BX0_FW_SCRATCH_4_BASE_IDX 1
+#define regBIF_BX0_FW_SCRATCH_5 0x0095
+#define regBIF_BX0_FW_SCRATCH_5_BASE_IDX 1
+#define regBIF_BX0_FW_SCRATCH_6 0x0096
+#define regBIF_BX0_FW_SCRATCH_6_BASE_IDX 1
+#define regBIF_BX0_FW_SCRATCH_7 0x0097
+#define regBIF_BX0_FW_SCRATCH_7_BASE_IDX 1
+#define regBIF_BX0_FW_SCRATCH_8 0x0098
+#define regBIF_BX0_FW_SCRATCH_8_BASE_IDX 1
+#define regBIF_BX0_FW_SCRATCH_9 0x0099
+#define regBIF_BX0_FW_SCRATCH_9_BASE_IDX 1
+#define regBIF_BX0_FW_SCRATCH_10 0x009a
+#define regBIF_BX0_FW_SCRATCH_10_BASE_IDX 1
+#define regBIF_BX0_FW_SCRATCH_11 0x009b
+#define regBIF_BX0_FW_SCRATCH_11_BASE_IDX 1
+#define regBIF_BX0_FW_SCRATCH_12 0x009c
+#define regBIF_BX0_FW_SCRATCH_12_BASE_IDX 1
+#define regBIF_BX0_FW_SCRATCH_13 0x009d
+#define regBIF_BX0_FW_SCRATCH_13_BASE_IDX 1
+#define regBIF_BX0_FW_SCRATCH_14 0x009e
+#define regBIF_BX0_FW_SCRATCH_14_BASE_IDX 1
+#define regBIF_BX0_FW_SCRATCH_15 0x009f
+#define regBIF_BX0_FW_SCRATCH_15_BASE_IDX 1
+#define regBIF_BX0_SBIOS_SCRATCH_4 0x00a0
+#define regBIF_BX0_SBIOS_SCRATCH_4_BASE_IDX 1
+#define regBIF_BX0_SBIOS_SCRATCH_5 0x00a1
+#define regBIF_BX0_SBIOS_SCRATCH_5_BASE_IDX 1
+#define regBIF_BX0_SBIOS_SCRATCH_6 0x00a2
+#define regBIF_BX0_SBIOS_SCRATCH_6_BASE_IDX 1
+#define regBIF_BX0_SBIOS_SCRATCH_7 0x00a3
+#define regBIF_BX0_SBIOS_SCRATCH_7_BASE_IDX 1
+#define regBIF_BX0_SBIOS_SCRATCH_8 0x00a4
+#define regBIF_BX0_SBIOS_SCRATCH_8_BASE_IDX 1
+#define regBIF_BX0_SBIOS_SCRATCH_9 0x00a5
+#define regBIF_BX0_SBIOS_SCRATCH_9_BASE_IDX 1
+#define regBIF_BX0_SBIOS_SCRATCH_10 0x00a6
+#define regBIF_BX0_SBIOS_SCRATCH_10_BASE_IDX 1
+#define regBIF_BX0_SBIOS_SCRATCH_11 0x00a7
+#define regBIF_BX0_SBIOS_SCRATCH_11_BASE_IDX 1
+#define regBIF_BX0_SBIOS_SCRATCH_12 0x00a8
+#define regBIF_BX0_SBIOS_SCRATCH_12_BASE_IDX 1
+#define regBIF_BX0_SBIOS_SCRATCH_13 0x00a9
+#define regBIF_BX0_SBIOS_SCRATCH_13_BASE_IDX 1
+#define regBIF_BX0_SBIOS_SCRATCH_14 0x00aa
+#define regBIF_BX0_SBIOS_SCRATCH_14_BASE_IDX 1
+#define regBIF_BX0_SBIOS_SCRATCH_15 0x00ab
+#define regBIF_BX0_SBIOS_SCRATCH_15_BASE_IDX 1
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dwn_dev0_BIFDEC1
+// base address: 0x0
+#define regRCC_DWN_DEV0_0_DN_PCIE_RESERVED 0x0060
+#define regRCC_DWN_DEV0_0_DN_PCIE_RESERVED_BASE_IDX 2
+#define regRCC_DWN_DEV0_0_DN_PCIE_SCRATCH 0x0061
+#define regRCC_DWN_DEV0_0_DN_PCIE_SCRATCH_BASE_IDX 2
+#define regRCC_DWN_DEV0_0_DN_PCIE_CNTL 0x0063
+#define regRCC_DWN_DEV0_0_DN_PCIE_CNTL_BASE_IDX 2
+#define regRCC_DWN_DEV0_0_DN_PCIE_CONFIG_CNTL 0x0064
+#define regRCC_DWN_DEV0_0_DN_PCIE_CONFIG_CNTL_BASE_IDX 2
+#define regRCC_DWN_DEV0_0_DN_PCIE_RX_CNTL2 0x0065
+#define regRCC_DWN_DEV0_0_DN_PCIE_RX_CNTL2_BASE_IDX 2
+#define regRCC_DWN_DEV0_0_DN_PCIE_BUS_CNTL 0x0066
+#define regRCC_DWN_DEV0_0_DN_PCIE_BUS_CNTL_BASE_IDX 2
+#define regRCC_DWN_DEV0_0_DN_PCIE_CFG_CNTL 0x0067
+#define regRCC_DWN_DEV0_0_DN_PCIE_CFG_CNTL_BASE_IDX 2
+#define regRCC_DWN_DEV0_0_DN_PCIE_STRAP_F0 0x0068
+#define regRCC_DWN_DEV0_0_DN_PCIE_STRAP_F0_BASE_IDX 2
+#define regRCC_DWN_DEV0_0_DN_PCIE_STRAP_MISC 0x0069
+#define regRCC_DWN_DEV0_0_DN_PCIE_STRAP_MISC_BASE_IDX 2
+#define regRCC_DWN_DEV0_0_DN_PCIE_STRAP_MISC2 0x006a
+#define regRCC_DWN_DEV0_0_DN_PCIE_STRAP_MISC2_BASE_IDX 2
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dwnp_dev0_BIFDEC1
+// base address: 0x0
+#define regRCC_DWNP_DEV0_0_PCIE_ERR_CNTL 0x006c
+#define regRCC_DWNP_DEV0_0_PCIE_ERR_CNTL_BASE_IDX 2
+#define regRCC_DWNP_DEV0_0_PCIE_RX_CNTL 0x006d
+#define regRCC_DWNP_DEV0_0_PCIE_RX_CNTL_BASE_IDX 2
+#define regRCC_DWNP_DEV0_0_PCIE_LC_SPEED_CNTL 0x006e
+#define regRCC_DWNP_DEV0_0_PCIE_LC_SPEED_CNTL_BASE_IDX 2
+#define regRCC_DWNP_DEV0_0_PCIE_LC_CNTL2 0x006f
+#define regRCC_DWNP_DEV0_0_PCIE_LC_CNTL2_BASE_IDX 2
+#define regRCC_DWNP_DEV0_0_PCIEP_STRAP_MISC 0x0070
+#define regRCC_DWNP_DEV0_0_PCIEP_STRAP_MISC_BASE_IDX 2
+#define regRCC_DWNP_DEV0_0_LTR_MSG_INFO_FROM_EP 0x0071
+#define regRCC_DWNP_DEV0_0_LTR_MSG_INFO_FROM_EP_BASE_IDX 2
+
+
+// addressBlock: aid_nbio_nbif0_rcc_ep_dev0_BIFDEC1
+// base address: 0x0
+#define regRCC_EP_DEV0_0_EP_PCIE_SCRATCH 0x0040
+#define regRCC_EP_DEV0_0_EP_PCIE_SCRATCH_BASE_IDX 2
+#define regRCC_EP_DEV0_0_EP_PCIE_CNTL 0x0042
+#define regRCC_EP_DEV0_0_EP_PCIE_CNTL_BASE_IDX 2
+#define regRCC_EP_DEV0_0_EP_PCIE_INT_CNTL 0x0043
+#define regRCC_EP_DEV0_0_EP_PCIE_INT_CNTL_BASE_IDX 2
+#define regRCC_EP_DEV0_0_EP_PCIE_INT_STATUS 0x0044
+#define regRCC_EP_DEV0_0_EP_PCIE_INT_STATUS_BASE_IDX 2
+#define regRCC_EP_DEV0_0_EP_PCIE_RX_CNTL2 0x0045
+#define regRCC_EP_DEV0_0_EP_PCIE_RX_CNTL2_BASE_IDX 2
+#define regRCC_EP_DEV0_0_EP_PCIE_BUS_CNTL 0x0046
+#define regRCC_EP_DEV0_0_EP_PCIE_BUS_CNTL_BASE_IDX 2
+#define regRCC_EP_DEV0_0_EP_PCIE_CFG_CNTL 0x0047
+#define regRCC_EP_DEV0_0_EP_PCIE_CFG_CNTL_BASE_IDX 2
+#define regRCC_EP_DEV0_0_EP_PCIE_TX_LTR_CNTL 0x0049
+#define regRCC_EP_DEV0_0_EP_PCIE_TX_LTR_CNTL_BASE_IDX 2
+#define regRCC_EP_DEV0_0_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_0 0x004a
+#define regRCC_EP_DEV0_0_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_0_BASE_IDX 2
+#define regRCC_EP_DEV0_0_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_1 0x004a
+#define regRCC_EP_DEV0_0_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_1_BASE_IDX 2
+#define regRCC_EP_DEV0_0_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_2 0x004a
+#define regRCC_EP_DEV0_0_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_2_BASE_IDX 2
+#define regRCC_EP_DEV0_0_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_3 0x004a
+#define regRCC_EP_DEV0_0_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_3_BASE_IDX 2
+#define regRCC_EP_DEV0_0_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_4 0x004b
+#define regRCC_EP_DEV0_0_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_4_BASE_IDX 2
+#define regRCC_EP_DEV0_0_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_5 0x004b
+#define regRCC_EP_DEV0_0_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_5_BASE_IDX 2
+#define regRCC_EP_DEV0_0_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_6 0x004b
+#define regRCC_EP_DEV0_0_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_6_BASE_IDX 2
+#define regRCC_EP_DEV0_0_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_7 0x004b
+#define regRCC_EP_DEV0_0_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_7_BASE_IDX 2
+#define regRCC_EP_DEV0_0_EP_PCIE_STRAP_MISC 0x004c
+#define regRCC_EP_DEV0_0_EP_PCIE_STRAP_MISC_BASE_IDX 2
+#define regRCC_EP_DEV0_0_EP_PCIE_STRAP_MISC2 0x004d
+#define regRCC_EP_DEV0_0_EP_PCIE_STRAP_MISC2_BASE_IDX 2
+#define regRCC_EP_DEV0_0_EP_PCIE_F0_DPA_CAP 0x004f
+#define regRCC_EP_DEV0_0_EP_PCIE_F0_DPA_CAP_BASE_IDX 2
+#define regRCC_EP_DEV0_0_EP_PCIE_F0_DPA_LATENCY_INDICATOR 0x0050
+#define regRCC_EP_DEV0_0_EP_PCIE_F0_DPA_LATENCY_INDICATOR_BASE_IDX 2
+#define regRCC_EP_DEV0_0_EP_PCIE_F0_DPA_CNTL 0x0050
+#define regRCC_EP_DEV0_0_EP_PCIE_F0_DPA_CNTL_BASE_IDX 2
+#define regRCC_EP_DEV0_0_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_0 0x0050
+#define regRCC_EP_DEV0_0_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_0_BASE_IDX 2
+#define regRCC_EP_DEV0_0_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_1 0x0051
+#define regRCC_EP_DEV0_0_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_1_BASE_IDX 2
+#define regRCC_EP_DEV0_0_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_2 0x0051
+#define regRCC_EP_DEV0_0_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_2_BASE_IDX 2
+#define regRCC_EP_DEV0_0_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_3 0x0051
+#define regRCC_EP_DEV0_0_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_3_BASE_IDX 2
+#define regRCC_EP_DEV0_0_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_4 0x0051
+#define regRCC_EP_DEV0_0_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_4_BASE_IDX 2
+#define regRCC_EP_DEV0_0_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_5 0x0052
+#define regRCC_EP_DEV0_0_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_5_BASE_IDX 2
+#define regRCC_EP_DEV0_0_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_6 0x0052
+#define regRCC_EP_DEV0_0_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_6_BASE_IDX 2
+#define regRCC_EP_DEV0_0_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_7 0x0052
+#define regRCC_EP_DEV0_0_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_7_BASE_IDX 2
+#define regRCC_EP_DEV0_0_EP_PCIE_PME_CONTROL 0x0052
+#define regRCC_EP_DEV0_0_EP_PCIE_PME_CONTROL_BASE_IDX 2
+#define regRCC_EP_DEV0_0_EP_PCIEP_RESERVED 0x0053
+#define regRCC_EP_DEV0_0_EP_PCIEP_RESERVED_BASE_IDX 2
+#define regRCC_EP_DEV0_0_EP_PCIE_TX_CNTL 0x0055
+#define regRCC_EP_DEV0_0_EP_PCIE_TX_CNTL_BASE_IDX 2
+#define regRCC_EP_DEV0_0_EP_PCIE_TX_REQUESTER_ID 0x0056
+#define regRCC_EP_DEV0_0_EP_PCIE_TX_REQUESTER_ID_BASE_IDX 2
+#define regRCC_EP_DEV0_0_EP_PCIE_ERR_CNTL 0x0057
+#define regRCC_EP_DEV0_0_EP_PCIE_ERR_CNTL_BASE_IDX 2
+#define regRCC_EP_DEV0_0_EP_PCIE_RX_CNTL 0x0058
+#define regRCC_EP_DEV0_0_EP_PCIE_RX_CNTL_BASE_IDX 2
+#define regRCC_EP_DEV0_0_EP_PCIE_LC_SPEED_CNTL 0x0059
+#define regRCC_EP_DEV0_0_EP_PCIE_LC_SPEED_CNTL_BASE_IDX 2
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_pf_SYSPFVFDEC
+// base address: 0x0
+#define regBIF_BX_PF0_MM_INDEX 0x0000
+#define regBIF_BX_PF0_MM_INDEX_BASE_IDX 0
+#define regBIF_BX_PF0_MM_DATA 0x0001
+#define regBIF_BX_PF0_MM_DATA_BASE_IDX 0
+#define regBIF_BX_PF0_MM_INDEX_HI 0x0006
+#define regBIF_BX_PF0_MM_INDEX_HI_BASE_IDX 0
+#define regBIF_BX_PF0_RSMU_INDEX 0x0000
+#define regBIF_BX_PF0_RSMU_INDEX_BASE_IDX 1
+#define regBIF_BX_PF0_RSMU_DATA 0x0001
+#define regBIF_BX_PF0_RSMU_DATA_BASE_IDX 1
+#define regBIF_BX_PF0_RSMU_INDEX_HI 0x0002
+#define regBIF_BX_PF0_RSMU_INDEX_HI_BASE_IDX 1
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_BIFDEC1
+// base address: 0x0
+#define regBIF_BX0_CC_BIF_BX_STRAP0 0x00e2
+#define regBIF_BX0_CC_BIF_BX_STRAP0_BASE_IDX 2
+#define regBIF_BX0_CC_BIF_BX_PINSTRAP0 0x00e4
+#define regBIF_BX0_CC_BIF_BX_PINSTRAP0_BASE_IDX 2
+#define regBIF_BX0_BIF_MM_INDACCESS_CNTL 0x00e6
+#define regBIF_BX0_BIF_MM_INDACCESS_CNTL_BASE_IDX 2
+#define regBIF_BX0_BUS_CNTL 0x00e7
+#define regBIF_BX0_BUS_CNTL_BASE_IDX 2
+#define regBIF_BX0_BIF_SCRATCH0 0x00e8
+#define regBIF_BX0_BIF_SCRATCH0_BASE_IDX 2
+#define regBIF_BX0_BIF_SCRATCH1 0x00e9
+#define regBIF_BX0_BIF_SCRATCH1_BASE_IDX 2
+#define regBIF_BX0_BX_RESET_EN 0x00ed
+#define regBIF_BX0_BX_RESET_EN_BASE_IDX 2
+#define regBIF_BX0_MM_CFGREGS_CNTL 0x00ee
+#define regBIF_BX0_MM_CFGREGS_CNTL_BASE_IDX 2
+#define regBIF_BX0_BX_RESET_CNTL 0x00f0
+#define regBIF_BX0_BX_RESET_CNTL_BASE_IDX 2
+#define regBIF_BX0_INTERRUPT_CNTL 0x00f1
+#define regBIF_BX0_INTERRUPT_CNTL_BASE_IDX 2
+#define regBIF_BX0_INTERRUPT_CNTL2 0x00f2
+#define regBIF_BX0_INTERRUPT_CNTL2_BASE_IDX 2
+#define regBIF_BX0_CLKREQB_PAD_CNTL 0x00f8
+#define regBIF_BX0_CLKREQB_PAD_CNTL_BASE_IDX 2
+#define regBIF_BX0_BIF_FEATURES_CONTROL_MISC 0x00fb
+#define regBIF_BX0_BIF_FEATURES_CONTROL_MISC_BASE_IDX 2
+#define regBIF_BX0_HDP_ATOMIC_CONTROL_MISC 0x00fc
+#define regBIF_BX0_HDP_ATOMIC_CONTROL_MISC_BASE_IDX 2
+#define regBIF_BX0_BIF_DOORBELL_CNTL 0x00fd
+#define regBIF_BX0_BIF_DOORBELL_CNTL_BASE_IDX 2
+#define regBIF_BX0_BIF_DOORBELL_INT_CNTL 0x00fe
+#define regBIF_BX0_BIF_DOORBELL_INT_CNTL_BASE_IDX 2
+#define regBIF_BX0_BIF_FB_EN 0x0100
+#define regBIF_BX0_BIF_FB_EN_BASE_IDX 2
+#define regBIF_BX0_BIF_INTR_CNTL 0x0101
+#define regBIF_BX0_BIF_INTR_CNTL_BASE_IDX 2
+#define regBIF_BX0_BIF_MST_TRANS_PENDING_VF 0x0109
+#define regBIF_BX0_BIF_MST_TRANS_PENDING_VF_BASE_IDX 2
+#define regBIF_BX0_BIF_SLV_TRANS_PENDING_VF 0x010a
+#define regBIF_BX0_BIF_SLV_TRANS_PENDING_VF_BASE_IDX 2
+#define regBIF_BX0_BACO_CNTL 0x010b
+#define regBIF_BX0_BACO_CNTL_BASE_IDX 2
+#define regBIF_BX0_BIF_BACO_EXIT_TIME0 0x010c
+#define regBIF_BX0_BIF_BACO_EXIT_TIME0_BASE_IDX 2
+#define regBIF_BX0_BIF_BACO_EXIT_TIMER1 0x010d
+#define regBIF_BX0_BIF_BACO_EXIT_TIMER1_BASE_IDX 2
+#define regBIF_BX0_BIF_BACO_EXIT_TIMER2 0x010e
+#define regBIF_BX0_BIF_BACO_EXIT_TIMER2_BASE_IDX 2
+#define regBIF_BX0_BIF_BACO_EXIT_TIMER3 0x010f
+#define regBIF_BX0_BIF_BACO_EXIT_TIMER3_BASE_IDX 2
+#define regBIF_BX0_BIF_BACO_EXIT_TIMER4 0x0110
+#define regBIF_BX0_BIF_BACO_EXIT_TIMER4_BASE_IDX 2
+#define regBIF_BX0_MEM_TYPE_CNTL 0x0111
+#define regBIF_BX0_MEM_TYPE_CNTL_BASE_IDX 2
+#define regBIF_BX0_NBIF_GFX_ADDR_LUT_CNTL 0x0113
+#define regBIF_BX0_NBIF_GFX_ADDR_LUT_CNTL_BASE_IDX 2
+#define regBIF_BX0_NBIF_GFX_ADDR_LUT_0 0x0114
+#define regBIF_BX0_NBIF_GFX_ADDR_LUT_0_BASE_IDX 2
+#define regBIF_BX0_NBIF_GFX_ADDR_LUT_1 0x0115
+#define regBIF_BX0_NBIF_GFX_ADDR_LUT_1_BASE_IDX 2
+#define regBIF_BX0_NBIF_GFX_ADDR_LUT_2 0x0116
+#define regBIF_BX0_NBIF_GFX_ADDR_LUT_2_BASE_IDX 2
+#define regBIF_BX0_NBIF_GFX_ADDR_LUT_3 0x0117
+#define regBIF_BX0_NBIF_GFX_ADDR_LUT_3_BASE_IDX 2
+#define regBIF_BX0_NBIF_GFX_ADDR_LUT_4 0x0118
+#define regBIF_BX0_NBIF_GFX_ADDR_LUT_4_BASE_IDX 2
+#define regBIF_BX0_NBIF_GFX_ADDR_LUT_5 0x0119
+#define regBIF_BX0_NBIF_GFX_ADDR_LUT_5_BASE_IDX 2
+#define regBIF_BX0_NBIF_GFX_ADDR_LUT_6 0x011a
+#define regBIF_BX0_NBIF_GFX_ADDR_LUT_6_BASE_IDX 2
+#define regBIF_BX0_NBIF_GFX_ADDR_LUT_7 0x011b
+#define regBIF_BX0_NBIF_GFX_ADDR_LUT_7_BASE_IDX 2
+#define regBIF_BX0_NBIF_GFX_ADDR_LUT_8 0x011c
+#define regBIF_BX0_NBIF_GFX_ADDR_LUT_8_BASE_IDX 2
+#define regBIF_BX0_NBIF_GFX_ADDR_LUT_9 0x011d
+#define regBIF_BX0_NBIF_GFX_ADDR_LUT_9_BASE_IDX 2
+#define regBIF_BX0_NBIF_GFX_ADDR_LUT_10 0x011e
+#define regBIF_BX0_NBIF_GFX_ADDR_LUT_10_BASE_IDX 2
+#define regBIF_BX0_NBIF_GFX_ADDR_LUT_11 0x011f
+#define regBIF_BX0_NBIF_GFX_ADDR_LUT_11_BASE_IDX 2
+#define regBIF_BX0_NBIF_GFX_ADDR_LUT_12 0x0120
+#define regBIF_BX0_NBIF_GFX_ADDR_LUT_12_BASE_IDX 2
+#define regBIF_BX0_NBIF_GFX_ADDR_LUT_13 0x0121
+#define regBIF_BX0_NBIF_GFX_ADDR_LUT_13_BASE_IDX 2
+#define regBIF_BX0_NBIF_GFX_ADDR_LUT_14 0x0122
+#define regBIF_BX0_NBIF_GFX_ADDR_LUT_14_BASE_IDX 2
+#define regBIF_BX0_NBIF_GFX_ADDR_LUT_15 0x0123
+#define regBIF_BX0_NBIF_GFX_ADDR_LUT_15_BASE_IDX 2
+#define regBIF_BX0_REMAP_HDP_MEM_FLUSH_CNTL 0x012d
+#define regBIF_BX0_REMAP_HDP_MEM_FLUSH_CNTL_BASE_IDX 2
+#define regBIF_BX0_REMAP_HDP_REG_FLUSH_CNTL 0x012e
+#define regBIF_BX0_REMAP_HDP_REG_FLUSH_CNTL_BASE_IDX 2
+#define regBIF_BX0_BIF_RB_CNTL 0x012f
+#define regBIF_BX0_BIF_RB_CNTL_BASE_IDX 2
+#define regBIF_BX0_BIF_RB_BASE 0x0130
+#define regBIF_BX0_BIF_RB_BASE_BASE_IDX 2
+#define regBIF_BX0_BIF_RB_RPTR 0x0131
+#define regBIF_BX0_BIF_RB_RPTR_BASE_IDX 2
+#define regBIF_BX0_BIF_RB_WPTR 0x0132
+#define regBIF_BX0_BIF_RB_WPTR_BASE_IDX 2
+#define regBIF_BX0_BIF_RB_WPTR_ADDR_HI 0x0133
+#define regBIF_BX0_BIF_RB_WPTR_ADDR_HI_BASE_IDX 2
+#define regBIF_BX0_BIF_RB_WPTR_ADDR_LO 0x0134
+#define regBIF_BX0_BIF_RB_WPTR_ADDR_LO_BASE_IDX 2
+#define regBIF_BX0_MAILBOX_INDEX 0x0135
+#define regBIF_BX0_MAILBOX_INDEX_BASE_IDX 2
+#define regBIF_BX0_BIF_MP1_INTR_CTRL 0x0142
+#define regBIF_BX0_BIF_MP1_INTR_CTRL_BASE_IDX 2
+#define regBIF_BX0_BIF_PERSTB_PAD_CNTL 0x0146
+#define regBIF_BX0_BIF_PERSTB_PAD_CNTL_BASE_IDX 2
+#define regBIF_BX0_BIF_PX_EN_PAD_CNTL 0x0147
+#define regBIF_BX0_BIF_PX_EN_PAD_CNTL_BASE_IDX 2
+#define regBIF_BX0_BIF_REFPADKIN_PAD_CNTL 0x0148
+#define regBIF_BX0_BIF_REFPADKIN_PAD_CNTL_BASE_IDX 2
+#define regBIF_BX0_BIF_CLKREQB_PAD_CNTL 0x0149
+#define regBIF_BX0_BIF_CLKREQB_PAD_CNTL_BASE_IDX 2
+#define regBIF_BX0_BIF_PWRBRK_PAD_CNTL 0x014a
+#define regBIF_BX0_BIF_PWRBRK_PAD_CNTL_BASE_IDX 2
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dev0_BIFDEC1
+// base address: 0x0
+#define regRCC_DEV0_0_RCC_ERR_INT_CNTL 0x0086
+#define regRCC_DEV0_0_RCC_ERR_INT_CNTL_BASE_IDX 2
+#define regRCC_DEV0_0_RCC_BACO_CNTL_MISC 0x0087
+#define regRCC_DEV0_0_RCC_BACO_CNTL_MISC_BASE_IDX 2
+#define regRCC_DEV0_0_RCC_RESET_EN 0x0088
+#define regRCC_DEV0_0_RCC_RESET_EN_BASE_IDX 2
+#define regRCC_DEV0_0_RCC_VDM_SUPPORT 0x0089
+#define regRCC_DEV0_0_RCC_VDM_SUPPORT_BASE_IDX 2
+#define regRCC_DEV0_0_RCC_MARGIN_PARAM_CNTL0 0x008a
+#define regRCC_DEV0_0_RCC_MARGIN_PARAM_CNTL0_BASE_IDX 2
+#define regRCC_DEV0_0_RCC_MARGIN_PARAM_CNTL1 0x008b
+#define regRCC_DEV0_0_RCC_MARGIN_PARAM_CNTL1_BASE_IDX 2
+#define regRCC_DEV0_0_RCC_GPUIOV_REGION 0x008c
+#define regRCC_DEV0_0_RCC_GPUIOV_REGION_BASE_IDX 2
+#define regRCC_DEV0_0_RCC_GPU_HOSTVM_EN 0x008d
+#define regRCC_DEV0_0_RCC_GPU_HOSTVM_EN_BASE_IDX 2
+#define regRCC_DEV0_0_RCC_CONSOLE_IOV_MODE_CNTL 0x008e
+#define regRCC_DEV0_0_RCC_CONSOLE_IOV_MODE_CNTL_BASE_IDX 2
+#define regRCC_DEV0_0_RCC_CONSOLE_IOV_FIRST_VF_OFFSET 0x008f
+#define regRCC_DEV0_0_RCC_CONSOLE_IOV_FIRST_VF_OFFSET_BASE_IDX 2
+#define regRCC_DEV0_0_RCC_CONSOLE_IOV_VF_STRIDE 0x008f
+#define regRCC_DEV0_0_RCC_CONSOLE_IOV_VF_STRIDE_BASE_IDX 2
+#define regRCC_DEV0_0_RCC_PEER_REG_RANGE0 0x00be
+#define regRCC_DEV0_0_RCC_PEER_REG_RANGE0_BASE_IDX 2
+#define regRCC_DEV0_0_RCC_PEER_REG_RANGE1 0x00bf
+#define regRCC_DEV0_0_RCC_PEER_REG_RANGE1_BASE_IDX 2
+#define regRCC_DEV0_0_RCC_BUS_CNTL 0x00c1
+#define regRCC_DEV0_0_RCC_BUS_CNTL_BASE_IDX 2
+#define regRCC_DEV0_0_RCC_CONFIG_CNTL 0x00c2
+#define regRCC_DEV0_0_RCC_CONFIG_CNTL_BASE_IDX 2
+#define regRCC_DEV0_0_RCC_CONFIG_F0_BASE 0x00c6
+#define regRCC_DEV0_0_RCC_CONFIG_F0_BASE_BASE_IDX 2
+#define regRCC_DEV0_0_RCC_CONFIG_APER_SIZE 0x00c7
+#define regRCC_DEV0_0_RCC_CONFIG_APER_SIZE_BASE_IDX 2
+#define regRCC_DEV0_0_RCC_CONFIG_REG_APER_SIZE 0x00c8
+#define regRCC_DEV0_0_RCC_CONFIG_REG_APER_SIZE_BASE_IDX 2
+#define regRCC_DEV0_0_RCC_XDMA_LO 0x00c9
+#define regRCC_DEV0_0_RCC_XDMA_LO_BASE_IDX 2
+#define regRCC_DEV0_0_RCC_XDMA_HI 0x00ca
+#define regRCC_DEV0_0_RCC_XDMA_HI_BASE_IDX 2
+#define regRCC_DEV0_0_RCC_FEATURES_CONTROL_MISC 0x00cb
+#define regRCC_DEV0_0_RCC_FEATURES_CONTROL_MISC_BASE_IDX 2
+#define regRCC_DEV0_0_RCC_BUSNUM_CNTL1 0x00cc
+#define regRCC_DEV0_0_RCC_BUSNUM_CNTL1_BASE_IDX 2
+#define regRCC_DEV0_0_RCC_BUSNUM_LIST0 0x00cd
+#define regRCC_DEV0_0_RCC_BUSNUM_LIST0_BASE_IDX 2
+#define regRCC_DEV0_0_RCC_BUSNUM_LIST1 0x00ce
+#define regRCC_DEV0_0_RCC_BUSNUM_LIST1_BASE_IDX 2
+#define regRCC_DEV0_0_RCC_BUSNUM_CNTL2 0x00cf
+#define regRCC_DEV0_0_RCC_BUSNUM_CNTL2_BASE_IDX 2
+#define regRCC_DEV0_0_RCC_CAPTURE_HOST_BUSNUM 0x00d0
+#define regRCC_DEV0_0_RCC_CAPTURE_HOST_BUSNUM_BASE_IDX 2
+#define regRCC_DEV0_0_RCC_HOST_BUSNUM 0x00d1
+#define regRCC_DEV0_0_RCC_HOST_BUSNUM_BASE_IDX 2
+#define regRCC_DEV0_0_RCC_PEER0_FB_OFFSET_HI 0x00d2
+#define regRCC_DEV0_0_RCC_PEER0_FB_OFFSET_HI_BASE_IDX 2
+#define regRCC_DEV0_0_RCC_PEER0_FB_OFFSET_LO 0x00d3
+#define regRCC_DEV0_0_RCC_PEER0_FB_OFFSET_LO_BASE_IDX 2
+#define regRCC_DEV0_0_RCC_PEER1_FB_OFFSET_HI 0x00d4
+#define regRCC_DEV0_0_RCC_PEER1_FB_OFFSET_HI_BASE_IDX 2
+#define regRCC_DEV0_0_RCC_PEER1_FB_OFFSET_LO 0x00d5
+#define regRCC_DEV0_0_RCC_PEER1_FB_OFFSET_LO_BASE_IDX 2
+#define regRCC_DEV0_0_RCC_PEER2_FB_OFFSET_HI 0x00d6
+#define regRCC_DEV0_0_RCC_PEER2_FB_OFFSET_HI_BASE_IDX 2
+#define regRCC_DEV0_0_RCC_PEER2_FB_OFFSET_LO 0x00d7
+#define regRCC_DEV0_0_RCC_PEER2_FB_OFFSET_LO_BASE_IDX 2
+#define regRCC_DEV0_0_RCC_PEER3_FB_OFFSET_HI 0x00d8
+#define regRCC_DEV0_0_RCC_PEER3_FB_OFFSET_HI_BASE_IDX 2
+#define regRCC_DEV0_0_RCC_PEER3_FB_OFFSET_LO 0x00d9
+#define regRCC_DEV0_0_RCC_PEER3_FB_OFFSET_LO_BASE_IDX 2
+#define regRCC_DEV0_0_RCC_DEVFUNCNUM_LIST0 0x00da
+#define regRCC_DEV0_0_RCC_DEVFUNCNUM_LIST0_BASE_IDX 2
+#define regRCC_DEV0_0_RCC_DEVFUNCNUM_LIST1 0x00db
+#define regRCC_DEV0_0_RCC_DEVFUNCNUM_LIST1_BASE_IDX 2
+#define regRCC_DEV0_0_RCC_DEV0_LINK_CNTL 0x00dd
+#define regRCC_DEV0_0_RCC_DEV0_LINK_CNTL_BASE_IDX 2
+#define regRCC_DEV0_0_RCC_CMN_LINK_CNTL 0x00de
+#define regRCC_DEV0_0_RCC_CMN_LINK_CNTL_BASE_IDX 2
+#define regRCC_DEV0_0_RCC_EP_REQUESTERID_RESTORE 0x00df
+#define regRCC_DEV0_0_RCC_EP_REQUESTERID_RESTORE_BASE_IDX 2
+#define regRCC_DEV0_0_RCC_LTR_LSWITCH_CNTL 0x00e0
+#define regRCC_DEV0_0_RCC_LTR_LSWITCH_CNTL_BASE_IDX 2
+#define regRCC_DEV0_0_RCC_MH_ARB_CNTL 0x00e1
+#define regRCC_DEV0_0_RCC_MH_ARB_CNTL_BASE_IDX 2
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dev0_epf0_BIFDEC2
+// base address: 0x0
+#define regRCC_DEV0_EPF0_GFXMSIX_VECT0_ADDR_LO 0x0400
+#define regRCC_DEV0_EPF0_GFXMSIX_VECT0_ADDR_LO_BASE_IDX 4
+#define regRCC_DEV0_EPF0_GFXMSIX_VECT0_ADDR_HI 0x0401
+#define regRCC_DEV0_EPF0_GFXMSIX_VECT0_ADDR_HI_BASE_IDX 4
+#define regRCC_DEV0_EPF0_GFXMSIX_VECT0_MSG_DATA 0x0402
+#define regRCC_DEV0_EPF0_GFXMSIX_VECT0_MSG_DATA_BASE_IDX 4
+#define regRCC_DEV0_EPF0_GFXMSIX_VECT0_CONTROL 0x0403
+#define regRCC_DEV0_EPF0_GFXMSIX_VECT0_CONTROL_BASE_IDX 4
+#define regRCC_DEV0_EPF0_GFXMSIX_VECT1_ADDR_LO 0x0404
+#define regRCC_DEV0_EPF0_GFXMSIX_VECT1_ADDR_LO_BASE_IDX 4
+#define regRCC_DEV0_EPF0_GFXMSIX_VECT1_ADDR_HI 0x0405
+#define regRCC_DEV0_EPF0_GFXMSIX_VECT1_ADDR_HI_BASE_IDX 4
+#define regRCC_DEV0_EPF0_GFXMSIX_VECT1_MSG_DATA 0x0406
+#define regRCC_DEV0_EPF0_GFXMSIX_VECT1_MSG_DATA_BASE_IDX 4
+#define regRCC_DEV0_EPF0_GFXMSIX_VECT1_CONTROL 0x0407
+#define regRCC_DEV0_EPF0_GFXMSIX_VECT1_CONTROL_BASE_IDX 4
+#define regRCC_DEV0_EPF0_GFXMSIX_VECT2_ADDR_LO 0x0408
+#define regRCC_DEV0_EPF0_GFXMSIX_VECT2_ADDR_LO_BASE_IDX 4
+#define regRCC_DEV0_EPF0_GFXMSIX_VECT2_ADDR_HI 0x0409
+#define regRCC_DEV0_EPF0_GFXMSIX_VECT2_ADDR_HI_BASE_IDX 4
+#define regRCC_DEV0_EPF0_GFXMSIX_VECT2_MSG_DATA 0x040a
+#define regRCC_DEV0_EPF0_GFXMSIX_VECT2_MSG_DATA_BASE_IDX 4
+#define regRCC_DEV0_EPF0_GFXMSIX_VECT2_CONTROL 0x040b
+#define regRCC_DEV0_EPF0_GFXMSIX_VECT2_CONTROL_BASE_IDX 4
+#define regRCC_DEV0_EPF0_GFXMSIX_VECT3_ADDR_LO 0x040c
+#define regRCC_DEV0_EPF0_GFXMSIX_VECT3_ADDR_LO_BASE_IDX 4
+#define regRCC_DEV0_EPF0_GFXMSIX_VECT3_ADDR_HI 0x040d
+#define regRCC_DEV0_EPF0_GFXMSIX_VECT3_ADDR_HI_BASE_IDX 4
+#define regRCC_DEV0_EPF0_GFXMSIX_VECT3_MSG_DATA 0x040e
+#define regRCC_DEV0_EPF0_GFXMSIX_VECT3_MSG_DATA_BASE_IDX 4
+#define regRCC_DEV0_EPF0_GFXMSIX_VECT3_CONTROL 0x040f
+#define regRCC_DEV0_EPF0_GFXMSIX_VECT3_CONTROL_BASE_IDX 4
+#define regRCC_DEV0_EPF0_GFXMSIX_PBA 0x0800
+#define regRCC_DEV0_EPF0_GFXMSIX_PBA_BASE_IDX 4
+
+
+// addressBlock: aid_nbio_nbif0_rcc_strap_BIFDEC1
+// base address: 0x0
+#define regRCC_STRAP0_RCC_BIF_STRAP0 0x0000
+#define regRCC_STRAP0_RCC_BIF_STRAP0_BASE_IDX 2
+#define regRCC_STRAP0_RCC_BIF_STRAP1 0x0001
+#define regRCC_STRAP0_RCC_BIF_STRAP1_BASE_IDX 2
+#define regRCC_STRAP0_RCC_BIF_STRAP2 0x0002
+#define regRCC_STRAP0_RCC_BIF_STRAP2_BASE_IDX 2
+#define regRCC_STRAP0_RCC_BIF_STRAP3 0x0003
+#define regRCC_STRAP0_RCC_BIF_STRAP3_BASE_IDX 2
+#define regRCC_STRAP0_RCC_BIF_STRAP4 0x0004
+#define regRCC_STRAP0_RCC_BIF_STRAP4_BASE_IDX 2
+#define regRCC_STRAP0_RCC_BIF_STRAP5 0x0005
+#define regRCC_STRAP0_RCC_BIF_STRAP5_BASE_IDX 2
+#define regRCC_STRAP0_RCC_BIF_STRAP6 0x0006
+#define regRCC_STRAP0_RCC_BIF_STRAP6_BASE_IDX 2
+#define regRCC_STRAP0_RCC_DEV0_PORT_STRAP0 0x0007
+#define regRCC_STRAP0_RCC_DEV0_PORT_STRAP0_BASE_IDX 2
+#define regRCC_STRAP0_RCC_DEV0_PORT_STRAP1 0x0008
+#define regRCC_STRAP0_RCC_DEV0_PORT_STRAP1_BASE_IDX 2
+#define regRCC_STRAP0_RCC_DEV0_PORT_STRAP10 0x0009
+#define regRCC_STRAP0_RCC_DEV0_PORT_STRAP10_BASE_IDX 2
+#define regRCC_STRAP0_RCC_DEV0_PORT_STRAP11 0x000a
+#define regRCC_STRAP0_RCC_DEV0_PORT_STRAP11_BASE_IDX 2
+#define regRCC_STRAP0_RCC_DEV0_PORT_STRAP12 0x000b
+#define regRCC_STRAP0_RCC_DEV0_PORT_STRAP12_BASE_IDX 2
+#define regRCC_STRAP0_RCC_DEV0_PORT_STRAP13 0x000c
+#define regRCC_STRAP0_RCC_DEV0_PORT_STRAP13_BASE_IDX 2
+#define regRCC_STRAP0_RCC_DEV0_PORT_STRAP14 0x000d
+#define regRCC_STRAP0_RCC_DEV0_PORT_STRAP14_BASE_IDX 2
+#define regRCC_STRAP0_RCC_DEV0_PORT_STRAP2 0x000e
+#define regRCC_STRAP0_RCC_DEV0_PORT_STRAP2_BASE_IDX 2
+#define regRCC_STRAP0_RCC_DEV0_PORT_STRAP3 0x000f
+#define regRCC_STRAP0_RCC_DEV0_PORT_STRAP3_BASE_IDX 2
+#define regRCC_STRAP0_RCC_DEV0_PORT_STRAP4 0x0010
+#define regRCC_STRAP0_RCC_DEV0_PORT_STRAP4_BASE_IDX 2
+#define regRCC_STRAP0_RCC_DEV0_PORT_STRAP5 0x0011
+#define regRCC_STRAP0_RCC_DEV0_PORT_STRAP5_BASE_IDX 2
+#define regRCC_STRAP0_RCC_DEV0_PORT_STRAP6 0x0012
+#define regRCC_STRAP0_RCC_DEV0_PORT_STRAP6_BASE_IDX 2
+#define regRCC_STRAP0_RCC_DEV0_PORT_STRAP7 0x0013
+#define regRCC_STRAP0_RCC_DEV0_PORT_STRAP7_BASE_IDX 2
+#define regRCC_STRAP0_RCC_DEV0_PORT_STRAP8 0x0014
+#define regRCC_STRAP0_RCC_DEV0_PORT_STRAP8_BASE_IDX 2
+#define regRCC_STRAP0_RCC_DEV0_PORT_STRAP9 0x0015
+#define regRCC_STRAP0_RCC_DEV0_PORT_STRAP9_BASE_IDX 2
+#define regRCC_STRAP0_RCC_DEV0_EPF0_STRAP0 0x0016
+#define regRCC_STRAP0_RCC_DEV0_EPF0_STRAP0_BASE_IDX 2
+#define regRCC_STRAP0_RCC_DEV0_EPF0_STRAP1 0x0017
+#define regRCC_STRAP0_RCC_DEV0_EPF0_STRAP1_BASE_IDX 2
+#define regRCC_STRAP0_RCC_DEV0_EPF0_STRAP13 0x0018
+#define regRCC_STRAP0_RCC_DEV0_EPF0_STRAP13_BASE_IDX 2
+#define regRCC_STRAP0_RCC_DEV0_EPF0_STRAP14 0x0019
+#define regRCC_STRAP0_RCC_DEV0_EPF0_STRAP14_BASE_IDX 2
+#define regRCC_STRAP0_RCC_DEV0_EPF0_STRAP15 0x001a
+#define regRCC_STRAP0_RCC_DEV0_EPF0_STRAP15_BASE_IDX 2
+#define regRCC_STRAP0_RCC_DEV0_EPF0_STRAP16 0x001b
+#define regRCC_STRAP0_RCC_DEV0_EPF0_STRAP16_BASE_IDX 2
+#define regRCC_STRAP0_RCC_DEV0_EPF0_STRAP17 0x001c
+#define regRCC_STRAP0_RCC_DEV0_EPF0_STRAP17_BASE_IDX 2
+#define regRCC_STRAP0_RCC_DEV0_EPF0_STRAP18 0x001d
+#define regRCC_STRAP0_RCC_DEV0_EPF0_STRAP18_BASE_IDX 2
+#define regRCC_STRAP0_RCC_DEV0_EPF0_STRAP2 0x001e
+#define regRCC_STRAP0_RCC_DEV0_EPF0_STRAP2_BASE_IDX 2
+#define regRCC_STRAP0_RCC_DEV0_EPF0_STRAP26 0x001f
+#define regRCC_STRAP0_RCC_DEV0_EPF0_STRAP26_BASE_IDX 2
+#define regRCC_STRAP0_RCC_DEV0_EPF0_STRAP3 0x0020
+#define regRCC_STRAP0_RCC_DEV0_EPF0_STRAP3_BASE_IDX 2
+#define regRCC_STRAP0_RCC_DEV0_EPF0_STRAP4 0x0021
+#define regRCC_STRAP0_RCC_DEV0_EPF0_STRAP4_BASE_IDX 2
+#define regRCC_STRAP0_RCC_DEV0_EPF0_STRAP5 0x0022
+#define regRCC_STRAP0_RCC_DEV0_EPF0_STRAP5_BASE_IDX 2
+#define regRCC_STRAP0_RCC_DEV0_EPF0_STRAP8 0x0024
+#define regRCC_STRAP0_RCC_DEV0_EPF0_STRAP8_BASE_IDX 2
+#define regRCC_STRAP0_RCC_DEV0_EPF0_STRAP9 0x0025
+#define regRCC_STRAP0_RCC_DEV0_EPF0_STRAP9_BASE_IDX 2
+#define regRCC_STRAP0_RCC_DEV0_EPF1_STRAP0 0x0026
+#define regRCC_STRAP0_RCC_DEV0_EPF1_STRAP0_BASE_IDX 2
+#define regRCC_STRAP0_RCC_DEV0_EPF1_STRAP2 0x0032
+#define regRCC_STRAP0_RCC_DEV0_EPF1_STRAP2_BASE_IDX 2
+#define regRCC_STRAP0_RCC_DEV0_EPF1_STRAP20 0x0033
+#define regRCC_STRAP0_RCC_DEV0_EPF1_STRAP20_BASE_IDX 2
+#define regRCC_STRAP0_RCC_DEV0_EPF1_STRAP21 0x0034
+#define regRCC_STRAP0_RCC_DEV0_EPF1_STRAP21_BASE_IDX 2
+#define regRCC_STRAP0_RCC_DEV0_EPF1_STRAP22 0x0035
+#define regRCC_STRAP0_RCC_DEV0_EPF1_STRAP22_BASE_IDX 2
+#define regRCC_STRAP0_RCC_DEV0_EPF1_STRAP23 0x0036
+#define regRCC_STRAP0_RCC_DEV0_EPF1_STRAP23_BASE_IDX 2
+#define regRCC_STRAP0_RCC_DEV0_EPF1_STRAP24 0x0037
+#define regRCC_STRAP0_RCC_DEV0_EPF1_STRAP24_BASE_IDX 2
+#define regRCC_STRAP0_RCC_DEV0_EPF1_STRAP25 0x0038
+#define regRCC_STRAP0_RCC_DEV0_EPF1_STRAP25_BASE_IDX 2
+#define regRCC_STRAP0_RCC_DEV0_EPF1_STRAP3 0x0039
+#define regRCC_STRAP0_RCC_DEV0_EPF1_STRAP3_BASE_IDX 2
+#define regRCC_STRAP0_RCC_DEV0_EPF1_STRAP4 0x003a
+#define regRCC_STRAP0_RCC_DEV0_EPF1_STRAP4_BASE_IDX 2
+#define regRCC_STRAP0_RCC_DEV0_EPF1_STRAP5 0x003b
+#define regRCC_STRAP0_RCC_DEV0_EPF1_STRAP5_BASE_IDX 2
+#define regRCC_STRAP0_RCC_DEV0_EPF1_STRAP6 0x003c
+#define regRCC_STRAP0_RCC_DEV0_EPF1_STRAP6_BASE_IDX 2
+#define regRCC_STRAP0_RCC_DEV0_EPF1_STRAP7 0x003d
+#define regRCC_STRAP0_RCC_DEV0_EPF1_STRAP7_BASE_IDX 2
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_pf_BIFPFVFDEC1
+// base address: 0x0
+#define regBIF_BX_PF0_BIF_BME_STATUS 0x00eb
+#define regBIF_BX_PF0_BIF_BME_STATUS_BASE_IDX 2
+#define regBIF_BX_PF0_BIF_ATOMIC_ERR_LOG 0x00ec
+#define regBIF_BX_PF0_BIF_ATOMIC_ERR_LOG_BASE_IDX 2
+#define regBIF_BX_PF0_DOORBELL_SELFRING_GPA_APER_BASE_HIGH 0x00f3
+#define regBIF_BX_PF0_DOORBELL_SELFRING_GPA_APER_BASE_HIGH_BASE_IDX 2
+#define regBIF_BX_PF0_DOORBELL_SELFRING_GPA_APER_BASE_LOW 0x00f4
+#define regBIF_BX_PF0_DOORBELL_SELFRING_GPA_APER_BASE_LOW_BASE_IDX 2
+#define regBIF_BX_PF0_DOORBELL_SELFRING_GPA_APER_CNTL 0x00f5
+#define regBIF_BX_PF0_DOORBELL_SELFRING_GPA_APER_CNTL_BASE_IDX 2
+#define regBIF_BX_PF0_HDP_REG_COHERENCY_FLUSH_CNTL 0x00f6
+#define regBIF_BX_PF0_HDP_REG_COHERENCY_FLUSH_CNTL_BASE_IDX 2
+#define regBIF_BX_PF0_HDP_MEM_COHERENCY_FLUSH_CNTL 0x00f7
+#define regBIF_BX_PF0_HDP_MEM_COHERENCY_FLUSH_CNTL_BASE_IDX 2
+#define regBIF_BX_PF0_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL 0x00f9
+#define regBIF_BX_PF0_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL_BASE_IDX 2
+#define regBIF_BX_PF0_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL 0x00fa
+#define regBIF_BX_PF0_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL_BASE_IDX 2
+#define regBIF_BX_PF0_GPU_HDP_FLUSH_REQ 0x0106
+#define regBIF_BX_PF0_GPU_HDP_FLUSH_REQ_BASE_IDX 2
+#define regBIF_BX_PF0_GPU_HDP_FLUSH_DONE 0x0107
+#define regBIF_BX_PF0_GPU_HDP_FLUSH_DONE_BASE_IDX 2
+#define regBIF_BX_PF0_BIF_TRANS_PENDING 0x0108
+#define regBIF_BX_PF0_BIF_TRANS_PENDING_BASE_IDX 2
+#define regBIF_BX_PF0_NBIF_GFX_ADDR_LUT_BYPASS 0x0112
+#define regBIF_BX_PF0_NBIF_GFX_ADDR_LUT_BYPASS_BASE_IDX 2
+#define regBIF_BX_PF0_MAILBOX_MSGBUF_TRN_DW0 0x0136
+#define regBIF_BX_PF0_MAILBOX_MSGBUF_TRN_DW0_BASE_IDX 2
+#define regBIF_BX_PF0_MAILBOX_MSGBUF_TRN_DW1 0x0137
+#define regBIF_BX_PF0_MAILBOX_MSGBUF_TRN_DW1_BASE_IDX 2
+#define regBIF_BX_PF0_MAILBOX_MSGBUF_TRN_DW2 0x0138
+#define regBIF_BX_PF0_MAILBOX_MSGBUF_TRN_DW2_BASE_IDX 2
+#define regBIF_BX_PF0_MAILBOX_MSGBUF_TRN_DW3 0x0139
+#define regBIF_BX_PF0_MAILBOX_MSGBUF_TRN_DW3_BASE_IDX 2
+#define regBIF_BX_PF0_MAILBOX_MSGBUF_RCV_DW0 0x013a
+#define regBIF_BX_PF0_MAILBOX_MSGBUF_RCV_DW0_BASE_IDX 2
+#define regBIF_BX_PF0_MAILBOX_MSGBUF_RCV_DW1 0x013b
+#define regBIF_BX_PF0_MAILBOX_MSGBUF_RCV_DW1_BASE_IDX 2
+#define regBIF_BX_PF0_MAILBOX_MSGBUF_RCV_DW2 0x013c
+#define regBIF_BX_PF0_MAILBOX_MSGBUF_RCV_DW2_BASE_IDX 2
+#define regBIF_BX_PF0_MAILBOX_MSGBUF_RCV_DW3 0x013d
+#define regBIF_BX_PF0_MAILBOX_MSGBUF_RCV_DW3_BASE_IDX 2
+#define regBIF_BX_PF0_MAILBOX_CONTROL 0x013e
+#define regBIF_BX_PF0_MAILBOX_CONTROL_BASE_IDX 2
+#define regBIF_BX_PF0_MAILBOX_INT_CNTL 0x013f
+#define regBIF_BX_PF0_MAILBOX_INT_CNTL_BASE_IDX 2
+#define regBIF_BX_PF0_BIF_VMHV_MAILBOX 0x0140
+#define regBIF_BX_PF0_BIF_VMHV_MAILBOX_BASE_IDX 2
+#define regBIF_BX_PF0_PARTITION_COMPUTE_CAP 0x0161
+#define regBIF_BX_PF0_PARTITION_COMPUTE_CAP_BASE_IDX 2
+#define regBIF_BX_PF0_PARTITION_MEM_CAP 0x0162
+#define regBIF_BX_PF0_PARTITION_MEM_CAP_BASE_IDX 2
+#define regBIF_BX_PF0_PARTITION_COMPUTE_STATUS 0x0163
+#define regBIF_BX_PF0_PARTITION_COMPUTE_STATUS_BASE_IDX 2
+#define regBIF_BX_PF0_PARTITION_MEM_STATUS 0x0164
+#define regBIF_BX_PF0_PARTITION_MEM_STATUS_BASE_IDX 2
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dev0_epf0_BIFPFVFDEC1[13440..14975]
+// base address: 0x3480
+#define regRCC_DEV0_EPF0_RCC_ERR_LOG 0x0085
+#define regRCC_DEV0_EPF0_RCC_ERR_LOG_BASE_IDX 2
+#define regRCC_DEV0_EPF0_RCC_DOORBELL_APER_EN 0x00c0
+#define regRCC_DEV0_EPF0_RCC_DOORBELL_APER_EN_BASE_IDX 2
+#define regRCC_DEV0_EPF0_RCC_CONFIG_MEMSIZE 0x00c3
+#define regRCC_DEV0_EPF0_RCC_CONFIG_MEMSIZE_BASE_IDX 2
+#define regRCC_DEV0_EPF0_RCC_CONFIG_RESERVED 0x00c4
+#define regRCC_DEV0_EPF0_RCC_CONFIG_RESERVED_BASE_IDX 2
+#define regRCC_DEV0_EPF0_RCC_IOV_FUNC_IDENTIFIER 0x00c5
+#define regRCC_DEV0_EPF0_RCC_IOV_FUNC_IDENTIFIER_BASE_IDX 2
+
+
+// addressBlock: aid_nbio_nbif0_gdc_GDCDEC
+// base address: 0x0
+#define regGDC0_A2S_CNTL_CL0 0x0000
+#define regGDC0_A2S_CNTL_CL0_BASE_IDX 3
+#define regGDC0_A2S_CNTL_CL1 0x0001
+#define regGDC0_A2S_CNTL_CL1_BASE_IDX 3
+#define regGDC0_A2S_CNTL3_CL0 0x0018
+#define regGDC0_A2S_CNTL3_CL0_BASE_IDX 3
+#define regGDC0_A2S_CNTL3_CL1 0x0019
+#define regGDC0_A2S_CNTL3_CL1_BASE_IDX 3
+#define regGDC0_A2S_CNTL_SW0 0x0030
+#define regGDC0_A2S_CNTL_SW0_BASE_IDX 3
+#define regGDC0_A2S_CNTL_SW1 0x0031
+#define regGDC0_A2S_CNTL_SW1_BASE_IDX 3
+#define regGDC0_A2S_CNTL_SW2 0x0032
+#define regGDC0_A2S_CNTL_SW2_BASE_IDX 3
+#define regGDC0_A2S_TAG_ALLOC_0 0x003d
+#define regGDC0_A2S_TAG_ALLOC_0_BASE_IDX 3
+#define regGDC0_A2S_TAG_ALLOC_1 0x003e
+#define regGDC0_A2S_TAG_ALLOC_1_BASE_IDX 3
+#define regGDC0_A2S_MISC_CNTL 0x0041
+#define regGDC0_A2S_MISC_CNTL_BASE_IDX 3
+#define regGDC0_SHUB_REGS_IF_CTL 0x0043
+#define regGDC0_SHUB_REGS_IF_CTL_BASE_IDX 3
+#define regGDC0_NGDC_MGCG_CTRL 0x004a
+#define regGDC0_NGDC_MGCG_CTRL_BASE_IDX 3
+#define regGDC0_NGDC_RESERVED_0 0x004b
+#define regGDC0_NGDC_RESERVED_0_BASE_IDX 3
+#define regGDC0_NGDC_RESERVED_1 0x004c
+#define regGDC0_NGDC_RESERVED_1_BASE_IDX 3
+#define regGDC0_NBIF_GFX_DOORBELL_STATUS 0x004f
+#define regGDC0_NBIF_GFX_DOORBELL_STATUS_BASE_IDX 3
+#define regGDC0_ATDMA_MISC_CNTL 0x005d
+#define regGDC0_ATDMA_MISC_CNTL_BASE_IDX 3
+#define regGDC0_S2A_MISC_CNTL 0x005f
+#define regGDC0_S2A_MISC_CNTL_BASE_IDX 3
+#define regGDC0_NGDC_PG_MISC_CTRL 0x0078
+#define regGDC0_NGDC_PG_MISC_CTRL_BASE_IDX 3
+#define regGDC0_NGDC_PGMST_CTRL 0x0079
+#define regGDC0_NGDC_PGMST_CTRL_BASE_IDX 3
+#define regGDC0_NGDC_PGSLV_CTRL 0x007a
+#define regGDC0_NGDC_PGSLV_CTRL_BASE_IDX 3
+
+
+// addressBlock: aid_nbio_nbif0_bif_cfg_dev0_epf0_bifcfgdecp
+// base address: 0x0
+#define cfgBIF_CFG_DEV0_EPF0_VENDOR_ID 0x0000
+#define cfgBIF_CFG_DEV0_EPF0_DEVICE_ID 0x0002
+#define cfgBIF_CFG_DEV0_EPF0_COMMAND 0x0004
+#define cfgBIF_CFG_DEV0_EPF0_STATUS 0x0006
+#define cfgBIF_CFG_DEV0_EPF0_REVISION_ID 0x0008
+#define cfgBIF_CFG_DEV0_EPF0_PROG_INTERFACE 0x0009
+#define cfgBIF_CFG_DEV0_EPF0_SUB_CLASS 0x000a
+#define cfgBIF_CFG_DEV0_EPF0_BASE_CLASS 0x000b
+#define cfgBIF_CFG_DEV0_EPF0_CACHE_LINE 0x000c
+#define cfgBIF_CFG_DEV0_EPF0_LATENCY 0x000d
+#define cfgBIF_CFG_DEV0_EPF0_HEADER 0x000e
+#define cfgBIF_CFG_DEV0_EPF0_BIST 0x000f
+#define cfgBIF_CFG_DEV0_EPF0_BASE_ADDR_1 0x0010
+#define cfgBIF_CFG_DEV0_EPF0_BASE_ADDR_2 0x0014
+#define cfgBIF_CFG_DEV0_EPF0_BASE_ADDR_3 0x0018
+#define cfgBIF_CFG_DEV0_EPF0_BASE_ADDR_4 0x001c
+#define cfgBIF_CFG_DEV0_EPF0_BASE_ADDR_5 0x0020
+#define cfgBIF_CFG_DEV0_EPF0_BASE_ADDR_6 0x0024
+#define cfgBIF_CFG_DEV0_EPF0_CARDBUS_CIS_PTR 0x0028
+#define cfgBIF_CFG_DEV0_EPF0_ADAPTER_ID 0x002c
+#define cfgBIF_CFG_DEV0_EPF0_ROM_BASE_ADDR 0x0030
+#define cfgBIF_CFG_DEV0_EPF0_CAP_PTR 0x0034
+#define cfgBIF_CFG_DEV0_EPF0_INTERRUPT_LINE 0x003c
+#define cfgBIF_CFG_DEV0_EPF0_INTERRUPT_PIN 0x003d
+#define cfgBIF_CFG_DEV0_EPF0_MIN_GRANT 0x003e
+#define cfgBIF_CFG_DEV0_EPF0_MAX_LATENCY 0x003f
+#define cfgBIF_CFG_DEV0_EPF0_VENDOR_CAP_LIST 0x0048
+#define cfgBIF_CFG_DEV0_EPF0_ADAPTER_ID_W 0x004c
+#define cfgBIF_CFG_DEV0_EPF0_PMI_CAP_LIST 0x0050
+#define cfgBIF_CFG_DEV0_EPF0_PMI_CAP 0x0052
+#define cfgBIF_CFG_DEV0_EPF0_PMI_STATUS_CNTL 0x0054
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_CAP_LIST 0x0064
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_CAP 0x0066
+#define cfgBIF_CFG_DEV0_EPF0_DEVICE_CAP 0x0068
+#define cfgBIF_CFG_DEV0_EPF0_DEVICE_CNTL 0x006c
+#define cfgBIF_CFG_DEV0_EPF0_DEVICE_STATUS 0x006e
+#define cfgBIF_CFG_DEV0_EPF0_LINK_CAP 0x0070
+#define cfgBIF_CFG_DEV0_EPF0_LINK_CNTL 0x0074
+#define cfgBIF_CFG_DEV0_EPF0_LINK_STATUS 0x0076
+#define cfgBIF_CFG_DEV0_EPF0_DEVICE_CAP2 0x0088
+#define cfgBIF_CFG_DEV0_EPF0_DEVICE_CNTL2 0x008c
+#define cfgBIF_CFG_DEV0_EPF0_DEVICE_STATUS2 0x008e
+#define cfgBIF_CFG_DEV0_EPF0_LINK_CAP2 0x0090
+#define cfgBIF_CFG_DEV0_EPF0_LINK_CNTL2 0x0094
+#define cfgBIF_CFG_DEV0_EPF0_LINK_STATUS2 0x0096
+#define cfgBIF_CFG_DEV0_EPF0_MSI_CAP_LIST 0x00a0
+#define cfgBIF_CFG_DEV0_EPF0_MSI_MSG_CNTL 0x00a2
+#define cfgBIF_CFG_DEV0_EPF0_MSI_MSG_ADDR_LO 0x00a4
+#define cfgBIF_CFG_DEV0_EPF0_MSI_MSG_ADDR_HI 0x00a8
+#define cfgBIF_CFG_DEV0_EPF0_MSI_MSG_DATA 0x00a8
+#define cfgBIF_CFG_DEV0_EPF0_MSI_EXT_MSG_DATA 0x00aa
+#define cfgBIF_CFG_DEV0_EPF0_MSI_MASK 0x00ac
+#define cfgBIF_CFG_DEV0_EPF0_MSI_MSG_DATA_64 0x00ac
+#define cfgBIF_CFG_DEV0_EPF0_MSI_EXT_MSG_DATA_64 0x00ae
+#define cfgBIF_CFG_DEV0_EPF0_MSI_MASK_64 0x00b0
+#define cfgBIF_CFG_DEV0_EPF0_MSI_PENDING 0x00b0
+#define cfgBIF_CFG_DEV0_EPF0_MSI_PENDING_64 0x00b4
+#define cfgBIF_CFG_DEV0_EPF0_MSIX_CAP_LIST 0x00c0
+#define cfgBIF_CFG_DEV0_EPF0_MSIX_MSG_CNTL 0x00c2
+#define cfgBIF_CFG_DEV0_EPF0_MSIX_TABLE 0x00c4
+#define cfgBIF_CFG_DEV0_EPF0_MSIX_PBA 0x00c8
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST 0x0100
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_VENDOR_SPECIFIC_HDR 0x0104
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_VENDOR_SPECIFIC1 0x0108
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_VENDOR_SPECIFIC2 0x010c
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_VC_ENH_CAP_LIST 0x0110
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_PORT_VC_CAP_REG1 0x0114
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_PORT_VC_CAP_REG2 0x0118
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_PORT_VC_CNTL 0x011c
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_PORT_VC_STATUS 0x011e
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_VC0_RESOURCE_CAP 0x0120
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_VC0_RESOURCE_CNTL 0x0124
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_VC0_RESOURCE_STATUS 0x012a
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_VC1_RESOURCE_CAP 0x012c
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_VC1_RESOURCE_CNTL 0x0130
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_VC1_RESOURCE_STATUS 0x0136
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_DEV_SERIAL_NUM_ENH_CAP_LIST 0x0140
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_DEV_SERIAL_NUM_DW1 0x0144
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_DEV_SERIAL_NUM_DW2 0x0148
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_ADV_ERR_RPT_ENH_CAP_LIST 0x0150
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_STATUS 0x0154
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_MASK 0x0158
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_SEVERITY 0x015c
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_CORR_ERR_STATUS 0x0160
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_CORR_ERR_MASK 0x0164
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_ADV_ERR_CAP_CNTL 0x0168
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_HDR_LOG0 0x016c
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_HDR_LOG1 0x0170
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_HDR_LOG2 0x0174
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_HDR_LOG3 0x0178
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_TLP_PREFIX_LOG0 0x0188
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_TLP_PREFIX_LOG1 0x018c
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_TLP_PREFIX_LOG2 0x0190
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_TLP_PREFIX_LOG3 0x0194
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_BAR_ENH_CAP_LIST 0x0200
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_BAR1_CAP 0x0204
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_BAR1_CNTL 0x0208
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_BAR2_CAP 0x020c
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_BAR2_CNTL 0x0210
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_BAR3_CAP 0x0214
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_BAR3_CNTL 0x0218
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_BAR4_CAP 0x021c
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_BAR4_CNTL 0x0220
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_BAR5_CAP 0x0224
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_BAR5_CNTL 0x0228
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_BAR6_CAP 0x022c
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_BAR6_CNTL 0x0230
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_PWR_BUDGET_ENH_CAP_LIST 0x0240
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_PWR_BUDGET_DATA_SELECT 0x0244
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_PWR_BUDGET_DATA 0x0248
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_PWR_BUDGET_CAP 0x024c
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_DPA_ENH_CAP_LIST 0x0250
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_DPA_CAP 0x0254
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_DPA_LATENCY_INDICATOR 0x0258
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_DPA_STATUS 0x025c
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_DPA_CNTL 0x025e
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_DPA_SUBSTATE_PWR_ALLOC_0 0x0260
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_DPA_SUBSTATE_PWR_ALLOC_1 0x0261
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_DPA_SUBSTATE_PWR_ALLOC_2 0x0262
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_DPA_SUBSTATE_PWR_ALLOC_3 0x0263
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_DPA_SUBSTATE_PWR_ALLOC_4 0x0264
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_DPA_SUBSTATE_PWR_ALLOC_5 0x0265
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_DPA_SUBSTATE_PWR_ALLOC_6 0x0266
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_DPA_SUBSTATE_PWR_ALLOC_7 0x0267
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_SECONDARY_ENH_CAP_LIST 0x0270
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_LINK_CNTL3 0x0274
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_LANE_ERROR_STATUS 0x0278
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_LANE_0_EQUALIZATION_CNTL 0x027c
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_LANE_1_EQUALIZATION_CNTL 0x027e
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_LANE_2_EQUALIZATION_CNTL 0x0280
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_LANE_3_EQUALIZATION_CNTL 0x0282
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_LANE_4_EQUALIZATION_CNTL 0x0284
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_LANE_5_EQUALIZATION_CNTL 0x0286
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_LANE_6_EQUALIZATION_CNTL 0x0288
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_LANE_7_EQUALIZATION_CNTL 0x028a
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_LANE_8_EQUALIZATION_CNTL 0x028c
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_LANE_9_EQUALIZATION_CNTL 0x028e
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_LANE_10_EQUALIZATION_CNTL 0x0290
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_LANE_11_EQUALIZATION_CNTL 0x0292
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_LANE_12_EQUALIZATION_CNTL 0x0294
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_LANE_13_EQUALIZATION_CNTL 0x0296
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_LANE_14_EQUALIZATION_CNTL 0x0298
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_LANE_15_EQUALIZATION_CNTL 0x029a
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_ACS_ENH_CAP_LIST 0x02a0
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_ACS_CAP 0x02a4
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_ACS_CNTL 0x02a6
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_ATS_ENH_CAP_LIST 0x02b0
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_ATS_CAP 0x02b4
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_ATS_CNTL 0x02b6
+#define cfgPCIE_PAGE_REQ_ENH_CAP_LIST 0x02c0
+#define cfgPCIE_PAGE_REQ_CNTL 0x02c4
+#define cfgPCIE_PAGE_REQ_STATUS 0x02c6
+#define cfgPCIE_OUTSTAND_PAGE_REQ_CAPACITY 0x02c8
+#define cfgPCIE_OUTSTAND_PAGE_REQ_ALLOC 0x02cc
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_PASID_ENH_CAP_LIST 0x02d0
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_PASID_CAP 0x02d4
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_PASID_CNTL 0x02d6
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_MC_ENH_CAP_LIST 0x02f0
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_MC_CAP 0x02f4
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_MC_CNTL 0x02f6
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_MC_ADDR0 0x02f8
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_MC_ADDR1 0x02fc
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_MC_RCV0 0x0300
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_MC_RCV1 0x0304
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_MC_BLOCK_ALL0 0x0308
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_MC_BLOCK_ALL1 0x030c
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_MC_BLOCK_UNTRANSLATED_0 0x0310
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_MC_BLOCK_UNTRANSLATED_1 0x0314
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_LTR_ENH_CAP_LIST 0x0320
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_LTR_CAP 0x0324
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_ARI_ENH_CAP_LIST 0x0328
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_ARI_CAP 0x032c
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_ARI_CNTL 0x032e
+#define cfgPCIE_SRIOV_ENH_CAP_LIST 0x0330
+#define cfgPCIE_SRIOV_CAP 0x0334
+#define cfgPCIE_SRIOV_CONTROL 0x0338
+#define cfgPCIE_SRIOV_STATUS 0x033a
+#define cfgPCIE_SRIOV_INITIAL_VFS 0x033c
+#define cfgPCIE_SRIOV_TOTAL_VFS 0x033e
+#define cfgPCIE_SRIOV_NUM_VFS 0x0340
+#define cfgPCIE_SRIOV_FUNC_DEP_LINK 0x0342
+#define cfgPCIE_SRIOV_FIRST_VF_OFFSET 0x0344
+#define cfgPCIE_SRIOV_VF_STRIDE 0x0346
+#define cfgPCIE_SRIOV_VF_DEVICE_ID 0x034a
+#define cfgPCIE_SRIOV_SUPPORTED_PAGE_SIZE 0x034c
+#define cfgPCIE_SRIOV_SYSTEM_PAGE_SIZE 0x0350
+#define cfgPCIE_SRIOV_VF_BASE_ADDR_0 0x0354
+#define cfgPCIE_SRIOV_VF_BASE_ADDR_1 0x0358
+#define cfgPCIE_SRIOV_VF_BASE_ADDR_2 0x035c
+#define cfgPCIE_SRIOV_VF_BASE_ADDR_3 0x0360
+#define cfgPCIE_SRIOV_VF_BASE_ADDR_4 0x0364
+#define cfgPCIE_SRIOV_VF_BASE_ADDR_5 0x0368
+#define cfgPCIE_SRIOV_VF_MIGRATION_STATE_ARRAY_OFFSET 0x036c
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_DLF_ENH_CAP_LIST 0x0400
+#define cfgBIF_CFG_DEV0_EPF0_DATA_LINK_FEATURE_CAP 0x0404
+#define cfgBIF_CFG_DEV0_EPF0_DATA_LINK_FEATURE_STATUS 0x0408
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_PHY_16GT_ENH_CAP_LIST 0x0410
+#define cfgBIF_CFG_DEV0_EPF0_LINK_CAP_16GT 0x0414
+#define cfgBIF_CFG_DEV0_EPF0_LINK_CNTL_16GT 0x0418
+#define cfgBIF_CFG_DEV0_EPF0_LINK_STATUS_16GT 0x041c
+#define cfgBIF_CFG_DEV0_EPF0_LOCAL_PARITY_MISMATCH_STATUS_16GT 0x0420
+#define cfgBIF_CFG_DEV0_EPF0_RTM1_PARITY_MISMATCH_STATUS_16GT 0x0424
+#define cfgBIF_CFG_DEV0_EPF0_RTM2_PARITY_MISMATCH_STATUS_16GT 0x0428
+#define cfgBIF_CFG_DEV0_EPF0_LANE_0_EQUALIZATION_CNTL_16GT 0x0430
+#define cfgBIF_CFG_DEV0_EPF0_LANE_1_EQUALIZATION_CNTL_16GT 0x0431
+#define cfgBIF_CFG_DEV0_EPF0_LANE_2_EQUALIZATION_CNTL_16GT 0x0432
+#define cfgBIF_CFG_DEV0_EPF0_LANE_3_EQUALIZATION_CNTL_16GT 0x0433
+#define cfgBIF_CFG_DEV0_EPF0_LANE_4_EQUALIZATION_CNTL_16GT 0x0434
+#define cfgBIF_CFG_DEV0_EPF0_LANE_5_EQUALIZATION_CNTL_16GT 0x0435
+#define cfgBIF_CFG_DEV0_EPF0_LANE_6_EQUALIZATION_CNTL_16GT 0x0436
+#define cfgBIF_CFG_DEV0_EPF0_LANE_7_EQUALIZATION_CNTL_16GT 0x0437
+#define cfgBIF_CFG_DEV0_EPF0_LANE_8_EQUALIZATION_CNTL_16GT 0x0438
+#define cfgBIF_CFG_DEV0_EPF0_LANE_9_EQUALIZATION_CNTL_16GT 0x0439
+#define cfgBIF_CFG_DEV0_EPF0_LANE_10_EQUALIZATION_CNTL_16GT 0x043a
+#define cfgBIF_CFG_DEV0_EPF0_LANE_11_EQUALIZATION_CNTL_16GT 0x043b
+#define cfgBIF_CFG_DEV0_EPF0_LANE_12_EQUALIZATION_CNTL_16GT 0x043c
+#define cfgBIF_CFG_DEV0_EPF0_LANE_13_EQUALIZATION_CNTL_16GT 0x043d
+#define cfgBIF_CFG_DEV0_EPF0_LANE_14_EQUALIZATION_CNTL_16GT 0x043e
+#define cfgBIF_CFG_DEV0_EPF0_LANE_15_EQUALIZATION_CNTL_16GT 0x043f
+#define cfgBIF_CFG_DEV0_EPF0_PCIE_MARGINING_ENH_CAP_LIST 0x0450
+#define cfgBIF_CFG_DEV0_EPF0_MARGINING_PORT_CAP 0x0454
+#define cfgBIF_CFG_DEV0_EPF0_MARGINING_PORT_STATUS 0x0456
+#define cfgBIF_CFG_DEV0_EPF0_LANE_0_MARGINING_LANE_CNTL 0x0458
+#define cfgBIF_CFG_DEV0_EPF0_LANE_0_MARGINING_LANE_STATUS 0x045a
+#define cfgBIF_CFG_DEV0_EPF0_LANE_1_MARGINING_LANE_CNTL 0x045c
+#define cfgBIF_CFG_DEV0_EPF0_LANE_1_MARGINING_LANE_STATUS 0x045e
+#define cfgBIF_CFG_DEV0_EPF0_LANE_2_MARGINING_LANE_CNTL 0x0460
+#define cfgBIF_CFG_DEV0_EPF0_LANE_2_MARGINING_LANE_STATUS 0x0462
+#define cfgBIF_CFG_DEV0_EPF0_LANE_3_MARGINING_LANE_CNTL 0x0464
+#define cfgBIF_CFG_DEV0_EPF0_LANE_3_MARGINING_LANE_STATUS 0x0466
+#define cfgBIF_CFG_DEV0_EPF0_LANE_4_MARGINING_LANE_CNTL 0x0468
+#define cfgBIF_CFG_DEV0_EPF0_LANE_4_MARGINING_LANE_STATUS 0x046a
+#define cfgBIF_CFG_DEV0_EPF0_LANE_5_MARGINING_LANE_CNTL 0x046c
+#define cfgBIF_CFG_DEV0_EPF0_LANE_5_MARGINING_LANE_STATUS 0x046e
+#define cfgBIF_CFG_DEV0_EPF0_LANE_6_MARGINING_LANE_CNTL 0x0470
+#define cfgBIF_CFG_DEV0_EPF0_LANE_6_MARGINING_LANE_STATUS 0x0472
+#define cfgBIF_CFG_DEV0_EPF0_LANE_7_MARGINING_LANE_CNTL 0x0474
+#define cfgBIF_CFG_DEV0_EPF0_LANE_7_MARGINING_LANE_STATUS 0x0476
+#define cfgBIF_CFG_DEV0_EPF0_LANE_8_MARGINING_LANE_CNTL 0x0478
+#define cfgBIF_CFG_DEV0_EPF0_LANE_8_MARGINING_LANE_STATUS 0x047a
+#define cfgBIF_CFG_DEV0_EPF0_LANE_9_MARGINING_LANE_CNTL 0x047c
+#define cfgBIF_CFG_DEV0_EPF0_LANE_9_MARGINING_LANE_STATUS 0x047e
+#define cfgBIF_CFG_DEV0_EPF0_LANE_10_MARGINING_LANE_CNTL 0x0480
+#define cfgBIF_CFG_DEV0_EPF0_LANE_10_MARGINING_LANE_STATUS 0x0482
+#define cfgBIF_CFG_DEV0_EPF0_LANE_11_MARGINING_LANE_CNTL 0x0484
+#define cfgBIF_CFG_DEV0_EPF0_LANE_11_MARGINING_LANE_STATUS 0x0486
+#define cfgBIF_CFG_DEV0_EPF0_LANE_12_MARGINING_LANE_CNTL 0x0488
+#define cfgBIF_CFG_DEV0_EPF0_LANE_12_MARGINING_LANE_STATUS 0x048a
+#define cfgBIF_CFG_DEV0_EPF0_LANE_13_MARGINING_LANE_CNTL 0x048c
+#define cfgBIF_CFG_DEV0_EPF0_LANE_13_MARGINING_LANE_STATUS 0x048e
+#define cfgBIF_CFG_DEV0_EPF0_LANE_14_MARGINING_LANE_CNTL 0x0490
+#define cfgBIF_CFG_DEV0_EPF0_LANE_14_MARGINING_LANE_STATUS 0x0492
+#define cfgBIF_CFG_DEV0_EPF0_LANE_15_MARGINING_LANE_CNTL 0x0494
+#define cfgBIF_CFG_DEV0_EPF0_LANE_15_MARGINING_LANE_STATUS 0x0496
+#define cfgBIF_CFG_DEV0_EPF0_LINK_CAP_32GT 0x0504
+#define cfgBIF_CFG_DEV0_EPF0_LINK_CNTL_32GT 0x0508
+#define cfgBIF_CFG_DEV0_EPF0_LINK_STATUS_32GT 0x050c
+#define cfgPCIE_VENDOR_SPECIFIC_ENH_CAP_LIST_GPUIOV 0x0700
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV 0x0704
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_SRIOV_SHADOW 0x0708
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_INTR_ENABLE 0x070c
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_INTR_STATUS 0x0710
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_RESET_CONTROL 0x0714
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW0 0x0718
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1 0x071c
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2 0x0720
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_CONTEXT 0x0724
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_TOTAL_FB 0x0728
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_REGION 0x0730
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_P2P_OVER_XGMI_ENABLE 0x0734
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF0_FB 0x0738
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF1_FB 0x073c
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF2_FB 0x0740
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF3_FB 0x0744
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF4_FB 0x0748
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF5_FB 0x074c
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF6_FB 0x0750
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF7_FB 0x0754
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF8_FB 0x0758
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF9_FB 0x075c
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF10_FB 0x0760
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF11_FB 0x0764
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF12_FB 0x0768
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF13_FB 0x076c
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF14_FB 0x0770
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF15_FB 0x0774
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF16_FB 0x0778
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF17_FB 0x077c
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF18_FB 0x0780
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF19_FB 0x0784
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF20_FB 0x0788
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF21_FB 0x078c
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF22_FB 0x0790
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF23_FB 0x0794
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF24_FB 0x0798
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF25_FB 0x079c
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF26_FB 0x07a0
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF27_FB 0x07a4
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF28_FB 0x07a8
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF29_FB 0x07ac
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF30_FB 0x07b0
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS 0x07c0
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS1 0x07c4
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS2 0x07c8
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS3 0x07cc
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS4 0x07d0
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW0 0x07f0
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW1 0x07f4
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW2 0x07f8
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW3 0x07fc
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW4 0x0800
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW5 0x0804
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW6 0x0808
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW7 0x080c
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW8 0x0810
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW0 0x0820
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW1 0x0824
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW2 0x0828
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW3 0x082c
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW4 0x0830
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW5 0x0834
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW6 0x0838
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW7 0x083c
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW8 0x0840
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW0 0x0850
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW1 0x0854
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW2 0x0858
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW3 0x085c
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW4 0x0860
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW5 0x0864
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW6 0x0868
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW7 0x086c
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW8 0x0870
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW0 0x0880
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW1 0x0884
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW2 0x0888
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW3 0x088c
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW4 0x0890
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW5 0x0894
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW6 0x0898
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW7 0x089c
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW8 0x08a0
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW0 0x08b0
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW1 0x08b4
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW2 0x08b8
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW3 0x08bc
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW4 0x08c0
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW5 0x08c4
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW6 0x08c8
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW7 0x08cc
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW8 0x08d0
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW0 0x08e0
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW1 0x08e4
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW2 0x08e8
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW3 0x08ec
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW4 0x08f0
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW5 0x08f4
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW6 0x08f8
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW7 0x08fc
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW8 0x0900
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW0 0x0910
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW1 0x0914
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW2 0x0918
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW3 0x091c
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW4 0x0920
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW5 0x0924
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW6 0x0928
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW7 0x092c
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW8 0x0930
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW0 0x0940
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW1 0x0944
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW2 0x0948
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW3 0x094c
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW4 0x0950
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW5 0x0954
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW6 0x0958
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW7 0x095c
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW8 0x0960
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW0 0x0970
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW1 0x0974
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW2 0x0978
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW3 0x097c
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW4 0x0980
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW5 0x0984
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW6 0x0988
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW7 0x098c
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW8 0x0990
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW0 0x09a0
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW1 0x09a4
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW2 0x09a8
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW3 0x09ac
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW4 0x09b0
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW5 0x09b4
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW6 0x09b8
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW7 0x09bc
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW8 0x09c0
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW0 0x09d0
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW1 0x09d4
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW2 0x09d8
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW3 0x09dc
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW4 0x09e0
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW5 0x09e4
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW6 0x09e8
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW7 0x09ec
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW8 0x09f0
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW0 0x0a00
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW1 0x0a04
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW2 0x0a08
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW3 0x0a0c
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW4 0x0a10
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW5 0x0a14
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW6 0x0a18
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW7 0x0a1c
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW8 0x0a20
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW0 0x0a30
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW1 0x0a34
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW2 0x0a38
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW3 0x0a3c
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW4 0x0a40
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW5 0x0a44
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW6 0x0a48
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW7 0x0a4c
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW8 0x0a50
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW0 0x0a60
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW1 0x0a64
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW2 0x0a68
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW3 0x0a6c
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW4 0x0a70
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW5 0x0a74
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW6 0x0a78
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW7 0x0a7c
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW8 0x0a80
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW0 0x0a90
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW1 0x0a94
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW2 0x0a98
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW3 0x0a9c
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW4 0x0aa0
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW5 0x0aa4
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW6 0x0aa8
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW7 0x0aac
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW8 0x0ab0
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW0 0x0ac0
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW1 0x0ac4
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW2 0x0ac8
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW3 0x0acc
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW4 0x0ad0
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW5 0x0ad4
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW6 0x0ad8
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW7 0x0adc
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW8 0x0ae0
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW0 0x0af0
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW1 0x0af4
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW2 0x0af8
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW3 0x0afc
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW4 0x0b00
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW5 0x0b04
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW6 0x0b08
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW7 0x0b0c
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW8 0x0b10
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW0 0x0b20
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW1 0x0b24
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW2 0x0b28
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW3 0x0b2c
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW4 0x0b30
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW5 0x0b34
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW6 0x0b38
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW7 0x0b3c
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW8 0x0b40
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW0 0x0b50
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW1 0x0b54
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW2 0x0b58
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW3 0x0b5c
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW4 0x0b60
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW5 0x0b64
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW6 0x0b68
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW7 0x0b6c
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW8 0x0b70
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW0 0x0b80
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW1 0x0b84
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW2 0x0b88
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW3 0x0b8c
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW4 0x0b90
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW5 0x0b94
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW6 0x0b98
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW7 0x0b9c
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW8 0x0ba0
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE 0x0c00
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A8_15_INTR_ENABLE 0x0c04
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE 0x0c08
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE 0x0c0c
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS 0x0c10
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A8_15_INTR_STATUS 0x0c14
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS 0x0c18
+#define cfgPCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS 0x0c1c
+
+
+// addressBlock: aid_nbio_nbif0_bif_cfg_dev0_epf1_bifcfgdecp
+// base address: 0x0
+#define cfgBIF_CFG_DEV0_EPF1_VENDOR_ID 0x0000
+#define cfgBIF_CFG_DEV0_EPF1_DEVICE_ID 0x0002
+#define cfgBIF_CFG_DEV0_EPF1_COMMAND 0x0004
+#define cfgBIF_CFG_DEV0_EPF1_STATUS 0x0006
+#define cfgBIF_CFG_DEV0_EPF1_REVISION_ID 0x0008
+#define cfgBIF_CFG_DEV0_EPF1_PROG_INTERFACE 0x0009
+#define cfgBIF_CFG_DEV0_EPF1_SUB_CLASS 0x000a
+#define cfgBIF_CFG_DEV0_EPF1_BASE_CLASS 0x000b
+#define cfgBIF_CFG_DEV0_EPF1_CACHE_LINE 0x000c
+#define cfgBIF_CFG_DEV0_EPF1_LATENCY 0x000d
+#define cfgBIF_CFG_DEV0_EPF1_HEADER 0x000e
+#define cfgBIF_CFG_DEV0_EPF1_BIST 0x000f
+#define cfgBIF_CFG_DEV0_EPF1_BASE_ADDR_1 0x0010
+#define cfgBIF_CFG_DEV0_EPF1_BASE_ADDR_2 0x0014
+#define cfgBIF_CFG_DEV0_EPF1_BASE_ADDR_3 0x0018
+#define cfgBIF_CFG_DEV0_EPF1_BASE_ADDR_4 0x001c
+#define cfgBIF_CFG_DEV0_EPF1_BASE_ADDR_5 0x0020
+#define cfgBIF_CFG_DEV0_EPF1_BASE_ADDR_6 0x0024
+#define cfgBIF_CFG_DEV0_EPF1_CARDBUS_CIS_PTR 0x0028
+#define cfgBIF_CFG_DEV0_EPF1_ADAPTER_ID 0x002c
+#define cfgBIF_CFG_DEV0_EPF1_ROM_BASE_ADDR 0x0030
+#define cfgBIF_CFG_DEV0_EPF1_CAP_PTR 0x0034
+#define cfgBIF_CFG_DEV0_EPF1_INTERRUPT_LINE 0x003c
+#define cfgBIF_CFG_DEV0_EPF1_INTERRUPT_PIN 0x003d
+#define cfgBIF_CFG_DEV0_EPF1_MIN_GRANT 0x003e
+#define cfgBIF_CFG_DEV0_EPF1_MAX_LATENCY 0x003f
+#define cfgBIF_CFG_DEV0_EPF1_VENDOR_CAP_LIST 0x0048
+#define cfgBIF_CFG_DEV0_EPF1_ADAPTER_ID_W 0x004c
+#define cfgBIF_CFG_DEV0_EPF1_PMI_CAP_LIST 0x0050
+#define cfgBIF_CFG_DEV0_EPF1_PMI_CAP 0x0052
+#define cfgBIF_CFG_DEV0_EPF1_PMI_STATUS_CNTL 0x0054
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_CAP_LIST 0x0064
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_CAP 0x0066
+#define cfgBIF_CFG_DEV0_EPF1_DEVICE_CAP 0x0068
+#define cfgBIF_CFG_DEV0_EPF1_DEVICE_CNTL 0x006c
+#define cfgBIF_CFG_DEV0_EPF1_DEVICE_STATUS 0x006e
+#define cfgBIF_CFG_DEV0_EPF1_LINK_CAP 0x0070
+#define cfgBIF_CFG_DEV0_EPF1_LINK_CNTL 0x0074
+#define cfgBIF_CFG_DEV0_EPF1_LINK_STATUS 0x0076
+#define cfgBIF_CFG_DEV0_EPF1_DEVICE_CAP2 0x0088
+#define cfgBIF_CFG_DEV0_EPF1_DEVICE_CNTL2 0x008c
+#define cfgBIF_CFG_DEV0_EPF1_DEVICE_STATUS2 0x008e
+#define cfgBIF_CFG_DEV0_EPF1_LINK_CAP2 0x0090
+#define cfgBIF_CFG_DEV0_EPF1_LINK_CNTL2 0x0094
+#define cfgBIF_CFG_DEV0_EPF1_LINK_STATUS2 0x0096
+#define cfgBIF_CFG_DEV0_EPF1_MSI_CAP_LIST 0x00a0
+#define cfgBIF_CFG_DEV0_EPF1_MSI_MSG_CNTL 0x00a2
+#define cfgBIF_CFG_DEV0_EPF1_MSI_MSG_ADDR_LO 0x00a4
+#define cfgBIF_CFG_DEV0_EPF1_MSI_MSG_ADDR_HI 0x00a8
+#define cfgBIF_CFG_DEV0_EPF1_MSI_MSG_DATA 0x00a8
+#define cfgBIF_CFG_DEV0_EPF1_MSI_EXT_MSG_DATA 0x00aa
+#define cfgBIF_CFG_DEV0_EPF1_MSI_MASK 0x00ac
+#define cfgBIF_CFG_DEV0_EPF1_MSI_MSG_DATA_64 0x00ac
+#define cfgBIF_CFG_DEV0_EPF1_MSI_EXT_MSG_DATA_64 0x00ae
+#define cfgBIF_CFG_DEV0_EPF1_MSI_MASK_64 0x00b0
+#define cfgBIF_CFG_DEV0_EPF1_MSI_PENDING 0x00b0
+#define cfgBIF_CFG_DEV0_EPF1_MSI_PENDING_64 0x00b4
+#define cfgBIF_CFG_DEV0_EPF1_MSIX_CAP_LIST 0x00c0
+#define cfgBIF_CFG_DEV0_EPF1_MSIX_MSG_CNTL 0x00c2
+#define cfgBIF_CFG_DEV0_EPF1_MSIX_TABLE 0x00c4
+#define cfgBIF_CFG_DEV0_EPF1_MSIX_PBA 0x00c8
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST 0x0100
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_VENDOR_SPECIFIC_HDR 0x0104
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_VENDOR_SPECIFIC1 0x0108
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_VENDOR_SPECIFIC2 0x010c
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_ADV_ERR_RPT_ENH_CAP_LIST 0x0150
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_STATUS 0x0154
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_MASK 0x0158
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_SEVERITY 0x015c
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_CORR_ERR_STATUS 0x0160
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_CORR_ERR_MASK 0x0164
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_ADV_ERR_CAP_CNTL 0x0168
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_HDR_LOG0 0x016c
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_HDR_LOG1 0x0170
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_HDR_LOG2 0x0174
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_HDR_LOG3 0x0178
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_TLP_PREFIX_LOG0 0x0188
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_TLP_PREFIX_LOG1 0x018c
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_TLP_PREFIX_LOG2 0x0190
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_TLP_PREFIX_LOG3 0x0194
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_BAR_ENH_CAP_LIST 0x0200
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_BAR1_CAP 0x0204
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_BAR1_CNTL 0x0208
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_BAR2_CAP 0x020c
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_BAR2_CNTL 0x0210
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_BAR3_CAP 0x0214
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_BAR3_CNTL 0x0218
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_BAR4_CAP 0x021c
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_BAR4_CNTL 0x0220
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_BAR5_CAP 0x0224
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_BAR5_CNTL 0x0228
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_BAR6_CAP 0x022c
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_BAR6_CNTL 0x0230
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_PWR_BUDGET_ENH_CAP_LIST 0x0240
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_PWR_BUDGET_DATA_SELECT 0x0244
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_PWR_BUDGET_DATA 0x0248
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_PWR_BUDGET_CAP 0x024c
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_DPA_ENH_CAP_LIST 0x0250
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_DPA_CAP 0x0254
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_DPA_LATENCY_INDICATOR 0x0258
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_DPA_STATUS 0x025c
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_DPA_CNTL 0x025e
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_DPA_SUBSTATE_PWR_ALLOC_0 0x0260
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_DPA_SUBSTATE_PWR_ALLOC_1 0x0261
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_DPA_SUBSTATE_PWR_ALLOC_2 0x0262
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_DPA_SUBSTATE_PWR_ALLOC_3 0x0263
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_DPA_SUBSTATE_PWR_ALLOC_4 0x0264
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_DPA_SUBSTATE_PWR_ALLOC_5 0x0265
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_DPA_SUBSTATE_PWR_ALLOC_6 0x0266
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_DPA_SUBSTATE_PWR_ALLOC_7 0x0267
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_ACS_ENH_CAP_LIST 0x02a0
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_ACS_CAP 0x02a4
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_ACS_CNTL 0x02a6
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_PASID_ENH_CAP_LIST 0x02d0
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_PASID_CAP 0x02d4
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_PASID_CNTL 0x02d6
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_ARI_ENH_CAP_LIST 0x0328
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_ARI_CAP 0x032c
+#define cfgBIF_CFG_DEV0_EPF1_PCIE_ARI_CNTL 0x032e
+
+
+// addressBlock: aid_nbio_nbif0_bif_cfg_dev0_rc_bifcfgdecp
+// base address: 0x10100000
+#define regBIF_CFG_DEV0_RC0_VENDOR_ID 0x0000
+#define regBIF_CFG_DEV0_RC0_VENDOR_ID_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_DEVICE_ID 0x0000
+#define regBIF_CFG_DEV0_RC0_DEVICE_ID_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_COMMAND 0x0001
+#define regBIF_CFG_DEV0_RC0_COMMAND_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_STATUS 0x0001
+#define regBIF_CFG_DEV0_RC0_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_REVISION_ID 0x0002
+#define regBIF_CFG_DEV0_RC0_REVISION_ID_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PROG_INTERFACE 0x0002
+#define regBIF_CFG_DEV0_RC0_PROG_INTERFACE_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_SUB_CLASS 0x0002
+#define regBIF_CFG_DEV0_RC0_SUB_CLASS_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_BASE_CLASS 0x0002
+#define regBIF_CFG_DEV0_RC0_BASE_CLASS_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_CACHE_LINE 0x0003
+#define regBIF_CFG_DEV0_RC0_CACHE_LINE_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LATENCY 0x0003
+#define regBIF_CFG_DEV0_RC0_LATENCY_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_HEADER 0x0003
+#define regBIF_CFG_DEV0_RC0_HEADER_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_BIST 0x0003
+#define regBIF_CFG_DEV0_RC0_BIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_BASE_ADDR_1 0x0004
+#define regBIF_CFG_DEV0_RC0_BASE_ADDR_1_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_BASE_ADDR_2 0x0005
+#define regBIF_CFG_DEV0_RC0_BASE_ADDR_2_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_SUB_BUS_NUMBER_LATENCY 0x0006
+#define regBIF_CFG_DEV0_RC0_SUB_BUS_NUMBER_LATENCY_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_IO_BASE_LIMIT 0x0007
+#define regBIF_CFG_DEV0_RC0_IO_BASE_LIMIT_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_SECONDARY_STATUS 0x0007
+#define regBIF_CFG_DEV0_RC0_SECONDARY_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_MEM_BASE_LIMIT 0x0008
+#define regBIF_CFG_DEV0_RC0_MEM_BASE_LIMIT_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PREF_BASE_LIMIT 0x0009
+#define regBIF_CFG_DEV0_RC0_PREF_BASE_LIMIT_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PREF_BASE_UPPER 0x000a
+#define regBIF_CFG_DEV0_RC0_PREF_BASE_UPPER_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PREF_LIMIT_UPPER 0x000b
+#define regBIF_CFG_DEV0_RC0_PREF_LIMIT_UPPER_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_IO_BASE_LIMIT_HI 0x000c
+#define regBIF_CFG_DEV0_RC0_IO_BASE_LIMIT_HI_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_CAP_PTR 0x000d
+#define regBIF_CFG_DEV0_RC0_CAP_PTR_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_ROM_BASE_ADDR 0x000e
+#define regBIF_CFG_DEV0_RC0_ROM_BASE_ADDR_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_INTERRUPT_LINE 0x000f
+#define regBIF_CFG_DEV0_RC0_INTERRUPT_LINE_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_INTERRUPT_PIN 0x000f
+#define regBIF_CFG_DEV0_RC0_INTERRUPT_PIN_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_IRQ_BRIDGE_CNTL 0x000f
+#define regBIF_CFG_DEV0_RC0_IRQ_BRIDGE_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_EXT_BRIDGE_CNTL 0x0010
+#define regBIF_CFG_DEV0_RC0_EXT_BRIDGE_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PMI_CAP_LIST 0x0014
+#define regBIF_CFG_DEV0_RC0_PMI_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PMI_CAP 0x0014
+#define regBIF_CFG_DEV0_RC0_PMI_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PMI_STATUS_CNTL 0x0015
+#define regBIF_CFG_DEV0_RC0_PMI_STATUS_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_CAP_LIST 0x0016
+#define regBIF_CFG_DEV0_RC0_PCIE_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_CAP 0x0016
+#define regBIF_CFG_DEV0_RC0_PCIE_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_DEVICE_CAP 0x0017
+#define regBIF_CFG_DEV0_RC0_DEVICE_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_DEVICE_CNTL 0x0018
+#define regBIF_CFG_DEV0_RC0_DEVICE_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_DEVICE_STATUS 0x0018
+#define regBIF_CFG_DEV0_RC0_DEVICE_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LINK_CAP 0x0019
+#define regBIF_CFG_DEV0_RC0_LINK_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LINK_CNTL 0x001a
+#define regBIF_CFG_DEV0_RC0_LINK_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LINK_STATUS 0x001a
+#define regBIF_CFG_DEV0_RC0_LINK_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_SLOT_CAP 0x001b
+#define regBIF_CFG_DEV0_RC0_SLOT_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_SLOT_CNTL 0x001c
+#define regBIF_CFG_DEV0_RC0_SLOT_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_SLOT_STATUS 0x001c
+#define regBIF_CFG_DEV0_RC0_SLOT_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_ROOT_CNTL 0x001d
+#define regBIF_CFG_DEV0_RC0_ROOT_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_ROOT_CAP 0x001d
+#define regBIF_CFG_DEV0_RC0_ROOT_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_ROOT_STATUS 0x001e
+#define regBIF_CFG_DEV0_RC0_ROOT_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_DEVICE_CAP2 0x001f
+#define regBIF_CFG_DEV0_RC0_DEVICE_CAP2_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_DEVICE_CNTL2 0x0020
+#define regBIF_CFG_DEV0_RC0_DEVICE_CNTL2_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_DEVICE_STATUS2 0x0020
+#define regBIF_CFG_DEV0_RC0_DEVICE_STATUS2_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LINK_CAP2 0x0021
+#define regBIF_CFG_DEV0_RC0_LINK_CAP2_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LINK_CNTL2 0x0022
+#define regBIF_CFG_DEV0_RC0_LINK_CNTL2_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LINK_STATUS2 0x0022
+#define regBIF_CFG_DEV0_RC0_LINK_STATUS2_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_SLOT_CAP2 0x0023
+#define regBIF_CFG_DEV0_RC0_SLOT_CAP2_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_SLOT_CNTL2 0x0024
+#define regBIF_CFG_DEV0_RC0_SLOT_CNTL2_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_SLOT_STATUS2 0x0024
+#define regBIF_CFG_DEV0_RC0_SLOT_STATUS2_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_MSI_CAP_LIST 0x0028
+#define regBIF_CFG_DEV0_RC0_MSI_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_MSI_MSG_CNTL 0x0028
+#define regBIF_CFG_DEV0_RC0_MSI_MSG_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_MSI_MSG_ADDR_LO 0x0029
+#define regBIF_CFG_DEV0_RC0_MSI_MSG_ADDR_LO_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_MSI_MSG_ADDR_HI 0x002a
+#define regBIF_CFG_DEV0_RC0_MSI_MSG_ADDR_HI_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_MSI_MSG_DATA 0x002a
+#define regBIF_CFG_DEV0_RC0_MSI_MSG_DATA_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_MSI_EXT_MSG_DATA 0x002a
+#define regBIF_CFG_DEV0_RC0_MSI_EXT_MSG_DATA_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_MSI_MSG_DATA_64 0x002b
+#define regBIF_CFG_DEV0_RC0_MSI_MSG_DATA_64_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_MSI_EXT_MSG_DATA_64 0x002b
+#define regBIF_CFG_DEV0_RC0_MSI_EXT_MSG_DATA_64_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_SSID_CAP_LIST 0x0030
+#define regBIF_CFG_DEV0_RC0_SSID_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_SSID_CAP 0x0031
+#define regBIF_CFG_DEV0_RC0_SSID_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST 0x0040
+#define regBIF_CFG_DEV0_RC0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_VENDOR_SPECIFIC_HDR 0x0041
+#define regBIF_CFG_DEV0_RC0_PCIE_VENDOR_SPECIFIC_HDR_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_VENDOR_SPECIFIC1 0x0042
+#define regBIF_CFG_DEV0_RC0_PCIE_VENDOR_SPECIFIC1_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_VENDOR_SPECIFIC2 0x0043
+#define regBIF_CFG_DEV0_RC0_PCIE_VENDOR_SPECIFIC2_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_VC_ENH_CAP_LIST 0x0044
+#define regBIF_CFG_DEV0_RC0_PCIE_VC_ENH_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_PORT_VC_CAP_REG1 0x0045
+#define regBIF_CFG_DEV0_RC0_PCIE_PORT_VC_CAP_REG1_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_PORT_VC_CAP_REG2 0x0046
+#define regBIF_CFG_DEV0_RC0_PCIE_PORT_VC_CAP_REG2_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_PORT_VC_CNTL 0x0047
+#define regBIF_CFG_DEV0_RC0_PCIE_PORT_VC_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_PORT_VC_STATUS 0x0047
+#define regBIF_CFG_DEV0_RC0_PCIE_PORT_VC_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_VC0_RESOURCE_CAP 0x0048
+#define regBIF_CFG_DEV0_RC0_PCIE_VC0_RESOURCE_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_VC0_RESOURCE_CNTL 0x0049
+#define regBIF_CFG_DEV0_RC0_PCIE_VC0_RESOURCE_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_VC0_RESOURCE_STATUS 0x004a
+#define regBIF_CFG_DEV0_RC0_PCIE_VC0_RESOURCE_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_VC1_RESOURCE_CAP 0x004b
+#define regBIF_CFG_DEV0_RC0_PCIE_VC1_RESOURCE_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_VC1_RESOURCE_CNTL 0x004c
+#define regBIF_CFG_DEV0_RC0_PCIE_VC1_RESOURCE_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_VC1_RESOURCE_STATUS 0x004d
+#define regBIF_CFG_DEV0_RC0_PCIE_VC1_RESOURCE_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_DEV_SERIAL_NUM_ENH_CAP_LIST 0x0050
+#define regBIF_CFG_DEV0_RC0_PCIE_DEV_SERIAL_NUM_ENH_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_DEV_SERIAL_NUM_DW1 0x0051
+#define regBIF_CFG_DEV0_RC0_PCIE_DEV_SERIAL_NUM_DW1_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_DEV_SERIAL_NUM_DW2 0x0052
+#define regBIF_CFG_DEV0_RC0_PCIE_DEV_SERIAL_NUM_DW2_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_ADV_ERR_RPT_ENH_CAP_LIST 0x0054
+#define regBIF_CFG_DEV0_RC0_PCIE_ADV_ERR_RPT_ENH_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_STATUS 0x0055
+#define regBIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_MASK 0x0056
+#define regBIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_MASK_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_SEVERITY 0x0057
+#define regBIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_SEVERITY_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_CORR_ERR_STATUS 0x0058
+#define regBIF_CFG_DEV0_RC0_PCIE_CORR_ERR_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_CORR_ERR_MASK 0x0059
+#define regBIF_CFG_DEV0_RC0_PCIE_CORR_ERR_MASK_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_ADV_ERR_CAP_CNTL 0x005a
+#define regBIF_CFG_DEV0_RC0_PCIE_ADV_ERR_CAP_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_HDR_LOG0 0x005b
+#define regBIF_CFG_DEV0_RC0_PCIE_HDR_LOG0_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_HDR_LOG1 0x005c
+#define regBIF_CFG_DEV0_RC0_PCIE_HDR_LOG1_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_HDR_LOG2 0x005d
+#define regBIF_CFG_DEV0_RC0_PCIE_HDR_LOG2_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_HDR_LOG3 0x005e
+#define regBIF_CFG_DEV0_RC0_PCIE_HDR_LOG3_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_ROOT_ERR_CMD 0x005f
+#define regBIF_CFG_DEV0_RC0_PCIE_ROOT_ERR_CMD_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_ROOT_ERR_STATUS 0x0060
+#define regBIF_CFG_DEV0_RC0_PCIE_ROOT_ERR_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_ERR_SRC_ID 0x0061
+#define regBIF_CFG_DEV0_RC0_PCIE_ERR_SRC_ID_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_TLP_PREFIX_LOG0 0x0062
+#define regBIF_CFG_DEV0_RC0_PCIE_TLP_PREFIX_LOG0_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_TLP_PREFIX_LOG1 0x0063
+#define regBIF_CFG_DEV0_RC0_PCIE_TLP_PREFIX_LOG1_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_TLP_PREFIX_LOG2 0x0064
+#define regBIF_CFG_DEV0_RC0_PCIE_TLP_PREFIX_LOG2_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_TLP_PREFIX_LOG3 0x0065
+#define regBIF_CFG_DEV0_RC0_PCIE_TLP_PREFIX_LOG3_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_SECONDARY_ENH_CAP_LIST 0x009c
+#define regBIF_CFG_DEV0_RC0_PCIE_SECONDARY_ENH_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_LINK_CNTL3 0x009d
+#define regBIF_CFG_DEV0_RC0_PCIE_LINK_CNTL3_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_LANE_ERROR_STATUS 0x009e
+#define regBIF_CFG_DEV0_RC0_PCIE_LANE_ERROR_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_LANE_0_EQUALIZATION_CNTL 0x009f
+#define regBIF_CFG_DEV0_RC0_PCIE_LANE_0_EQUALIZATION_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_LANE_1_EQUALIZATION_CNTL 0x009f
+#define regBIF_CFG_DEV0_RC0_PCIE_LANE_1_EQUALIZATION_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_LANE_2_EQUALIZATION_CNTL 0x00a0
+#define regBIF_CFG_DEV0_RC0_PCIE_LANE_2_EQUALIZATION_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_LANE_3_EQUALIZATION_CNTL 0x00a0
+#define regBIF_CFG_DEV0_RC0_PCIE_LANE_3_EQUALIZATION_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_LANE_4_EQUALIZATION_CNTL 0x00a1
+#define regBIF_CFG_DEV0_RC0_PCIE_LANE_4_EQUALIZATION_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_LANE_5_EQUALIZATION_CNTL 0x00a1
+#define regBIF_CFG_DEV0_RC0_PCIE_LANE_5_EQUALIZATION_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_LANE_6_EQUALIZATION_CNTL 0x00a2
+#define regBIF_CFG_DEV0_RC0_PCIE_LANE_6_EQUALIZATION_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_LANE_7_EQUALIZATION_CNTL 0x00a2
+#define regBIF_CFG_DEV0_RC0_PCIE_LANE_7_EQUALIZATION_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_LANE_8_EQUALIZATION_CNTL 0x00a3
+#define regBIF_CFG_DEV0_RC0_PCIE_LANE_8_EQUALIZATION_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_LANE_9_EQUALIZATION_CNTL 0x00a3
+#define regBIF_CFG_DEV0_RC0_PCIE_LANE_9_EQUALIZATION_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_LANE_10_EQUALIZATION_CNTL 0x00a4
+#define regBIF_CFG_DEV0_RC0_PCIE_LANE_10_EQUALIZATION_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_LANE_11_EQUALIZATION_CNTL 0x00a4
+#define regBIF_CFG_DEV0_RC0_PCIE_LANE_11_EQUALIZATION_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_LANE_12_EQUALIZATION_CNTL 0x00a5
+#define regBIF_CFG_DEV0_RC0_PCIE_LANE_12_EQUALIZATION_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_LANE_13_EQUALIZATION_CNTL 0x00a5
+#define regBIF_CFG_DEV0_RC0_PCIE_LANE_13_EQUALIZATION_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_LANE_14_EQUALIZATION_CNTL 0x00a6
+#define regBIF_CFG_DEV0_RC0_PCIE_LANE_14_EQUALIZATION_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_LANE_15_EQUALIZATION_CNTL 0x00a6
+#define regBIF_CFG_DEV0_RC0_PCIE_LANE_15_EQUALIZATION_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_ACS_ENH_CAP_LIST 0x00a8
+#define regBIF_CFG_DEV0_RC0_PCIE_ACS_ENH_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_ACS_CAP 0x00a9
+#define regBIF_CFG_DEV0_RC0_PCIE_ACS_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_ACS_CNTL 0x00a9
+#define regBIF_CFG_DEV0_RC0_PCIE_ACS_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_DLF_ENH_CAP_LIST 0x0100
+#define regBIF_CFG_DEV0_RC0_PCIE_DLF_ENH_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_DATA_LINK_FEATURE_CAP 0x0101
+#define regBIF_CFG_DEV0_RC0_DATA_LINK_FEATURE_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_DATA_LINK_FEATURE_STATUS 0x0102
+#define regBIF_CFG_DEV0_RC0_DATA_LINK_FEATURE_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_PHY_16GT_ENH_CAP_LIST 0x0104
+#define regBIF_CFG_DEV0_RC0_PCIE_PHY_16GT_ENH_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LINK_CAP_16GT 0x0105
+#define regBIF_CFG_DEV0_RC0_LINK_CAP_16GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LINK_CNTL_16GT 0x0106
+#define regBIF_CFG_DEV0_RC0_LINK_CNTL_16GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LINK_STATUS_16GT 0x0107
+#define regBIF_CFG_DEV0_RC0_LINK_STATUS_16GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LOCAL_PARITY_MISMATCH_STATUS_16GT 0x0108
+#define regBIF_CFG_DEV0_RC0_LOCAL_PARITY_MISMATCH_STATUS_16GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_RTM1_PARITY_MISMATCH_STATUS_16GT 0x0109
+#define regBIF_CFG_DEV0_RC0_RTM1_PARITY_MISMATCH_STATUS_16GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_RTM2_PARITY_MISMATCH_STATUS_16GT 0x010a
+#define regBIF_CFG_DEV0_RC0_RTM2_PARITY_MISMATCH_STATUS_16GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_0_EQUALIZATION_CNTL_16GT 0x010c
+#define regBIF_CFG_DEV0_RC0_LANE_0_EQUALIZATION_CNTL_16GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_1_EQUALIZATION_CNTL_16GT 0x010c
+#define regBIF_CFG_DEV0_RC0_LANE_1_EQUALIZATION_CNTL_16GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_2_EQUALIZATION_CNTL_16GT 0x010c
+#define regBIF_CFG_DEV0_RC0_LANE_2_EQUALIZATION_CNTL_16GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_3_EQUALIZATION_CNTL_16GT 0x010c
+#define regBIF_CFG_DEV0_RC0_LANE_3_EQUALIZATION_CNTL_16GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_4_EQUALIZATION_CNTL_16GT 0x010d
+#define regBIF_CFG_DEV0_RC0_LANE_4_EQUALIZATION_CNTL_16GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_5_EQUALIZATION_CNTL_16GT 0x010d
+#define regBIF_CFG_DEV0_RC0_LANE_5_EQUALIZATION_CNTL_16GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_6_EQUALIZATION_CNTL_16GT 0x010d
+#define regBIF_CFG_DEV0_RC0_LANE_6_EQUALIZATION_CNTL_16GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_7_EQUALIZATION_CNTL_16GT 0x010d
+#define regBIF_CFG_DEV0_RC0_LANE_7_EQUALIZATION_CNTL_16GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_8_EQUALIZATION_CNTL_16GT 0x010e
+#define regBIF_CFG_DEV0_RC0_LANE_8_EQUALIZATION_CNTL_16GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_9_EQUALIZATION_CNTL_16GT 0x010e
+#define regBIF_CFG_DEV0_RC0_LANE_9_EQUALIZATION_CNTL_16GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_10_EQUALIZATION_CNTL_16GT 0x010e
+#define regBIF_CFG_DEV0_RC0_LANE_10_EQUALIZATION_CNTL_16GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_11_EQUALIZATION_CNTL_16GT 0x010e
+#define regBIF_CFG_DEV0_RC0_LANE_11_EQUALIZATION_CNTL_16GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_12_EQUALIZATION_CNTL_16GT 0x010f
+#define regBIF_CFG_DEV0_RC0_LANE_12_EQUALIZATION_CNTL_16GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_13_EQUALIZATION_CNTL_16GT 0x010f
+#define regBIF_CFG_DEV0_RC0_LANE_13_EQUALIZATION_CNTL_16GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_14_EQUALIZATION_CNTL_16GT 0x010f
+#define regBIF_CFG_DEV0_RC0_LANE_14_EQUALIZATION_CNTL_16GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_15_EQUALIZATION_CNTL_16GT 0x010f
+#define regBIF_CFG_DEV0_RC0_LANE_15_EQUALIZATION_CNTL_16GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_PCIE_MARGINING_ENH_CAP_LIST 0x0114
+#define regBIF_CFG_DEV0_RC0_PCIE_MARGINING_ENH_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_MARGINING_PORT_CAP 0x0115
+#define regBIF_CFG_DEV0_RC0_MARGINING_PORT_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_MARGINING_PORT_STATUS 0x0115
+#define regBIF_CFG_DEV0_RC0_MARGINING_PORT_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_0_MARGINING_LANE_CNTL 0x0116
+#define regBIF_CFG_DEV0_RC0_LANE_0_MARGINING_LANE_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_0_MARGINING_LANE_STATUS 0x0116
+#define regBIF_CFG_DEV0_RC0_LANE_0_MARGINING_LANE_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_1_MARGINING_LANE_CNTL 0x0117
+#define regBIF_CFG_DEV0_RC0_LANE_1_MARGINING_LANE_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_1_MARGINING_LANE_STATUS 0x0117
+#define regBIF_CFG_DEV0_RC0_LANE_1_MARGINING_LANE_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_2_MARGINING_LANE_CNTL 0x0118
+#define regBIF_CFG_DEV0_RC0_LANE_2_MARGINING_LANE_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_2_MARGINING_LANE_STATUS 0x0118
+#define regBIF_CFG_DEV0_RC0_LANE_2_MARGINING_LANE_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_3_MARGINING_LANE_CNTL 0x0119
+#define regBIF_CFG_DEV0_RC0_LANE_3_MARGINING_LANE_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_3_MARGINING_LANE_STATUS 0x0119
+#define regBIF_CFG_DEV0_RC0_LANE_3_MARGINING_LANE_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_4_MARGINING_LANE_CNTL 0x011a
+#define regBIF_CFG_DEV0_RC0_LANE_4_MARGINING_LANE_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_4_MARGINING_LANE_STATUS 0x011a
+#define regBIF_CFG_DEV0_RC0_LANE_4_MARGINING_LANE_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_5_MARGINING_LANE_CNTL 0x011b
+#define regBIF_CFG_DEV0_RC0_LANE_5_MARGINING_LANE_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_5_MARGINING_LANE_STATUS 0x011b
+#define regBIF_CFG_DEV0_RC0_LANE_5_MARGINING_LANE_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_6_MARGINING_LANE_CNTL 0x011c
+#define regBIF_CFG_DEV0_RC0_LANE_6_MARGINING_LANE_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_6_MARGINING_LANE_STATUS 0x011c
+#define regBIF_CFG_DEV0_RC0_LANE_6_MARGINING_LANE_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_7_MARGINING_LANE_CNTL 0x011d
+#define regBIF_CFG_DEV0_RC0_LANE_7_MARGINING_LANE_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_7_MARGINING_LANE_STATUS 0x011d
+#define regBIF_CFG_DEV0_RC0_LANE_7_MARGINING_LANE_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_8_MARGINING_LANE_CNTL 0x011e
+#define regBIF_CFG_DEV0_RC0_LANE_8_MARGINING_LANE_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_8_MARGINING_LANE_STATUS 0x011e
+#define regBIF_CFG_DEV0_RC0_LANE_8_MARGINING_LANE_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_9_MARGINING_LANE_CNTL 0x011f
+#define regBIF_CFG_DEV0_RC0_LANE_9_MARGINING_LANE_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_9_MARGINING_LANE_STATUS 0x011f
+#define regBIF_CFG_DEV0_RC0_LANE_9_MARGINING_LANE_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_10_MARGINING_LANE_CNTL 0x0120
+#define regBIF_CFG_DEV0_RC0_LANE_10_MARGINING_LANE_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_10_MARGINING_LANE_STATUS 0x0120
+#define regBIF_CFG_DEV0_RC0_LANE_10_MARGINING_LANE_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_11_MARGINING_LANE_CNTL 0x0121
+#define regBIF_CFG_DEV0_RC0_LANE_11_MARGINING_LANE_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_11_MARGINING_LANE_STATUS 0x0121
+#define regBIF_CFG_DEV0_RC0_LANE_11_MARGINING_LANE_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_12_MARGINING_LANE_CNTL 0x0122
+#define regBIF_CFG_DEV0_RC0_LANE_12_MARGINING_LANE_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_12_MARGINING_LANE_STATUS 0x0122
+#define regBIF_CFG_DEV0_RC0_LANE_12_MARGINING_LANE_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_13_MARGINING_LANE_CNTL 0x0123
+#define regBIF_CFG_DEV0_RC0_LANE_13_MARGINING_LANE_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_13_MARGINING_LANE_STATUS 0x0123
+#define regBIF_CFG_DEV0_RC0_LANE_13_MARGINING_LANE_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_14_MARGINING_LANE_CNTL 0x0124
+#define regBIF_CFG_DEV0_RC0_LANE_14_MARGINING_LANE_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_14_MARGINING_LANE_STATUS 0x0124
+#define regBIF_CFG_DEV0_RC0_LANE_14_MARGINING_LANE_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_15_MARGINING_LANE_CNTL 0x0125
+#define regBIF_CFG_DEV0_RC0_LANE_15_MARGINING_LANE_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LANE_15_MARGINING_LANE_STATUS 0x0125
+#define regBIF_CFG_DEV0_RC0_LANE_15_MARGINING_LANE_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LINK_CAP_32GT 0x0141
+#define regBIF_CFG_DEV0_RC0_LINK_CAP_32GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LINK_CNTL_32GT 0x0142
+#define regBIF_CFG_DEV0_RC0_LINK_CNTL_32GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_RC0_LINK_STATUS_32GT 0x0143
+#define regBIF_CFG_DEV0_RC0_LINK_STATUS_32GT_BASE_IDX 8
+
+
+// addressBlock: aid_nbio_nbif0_bif_cfg_dev0_epf0_bifcfgdecp
+// base address: 0x10140000
+#define regBIF_CFG_DEV0_EPF0_0_VENDOR_ID 0x10000
+#define regBIF_CFG_DEV0_EPF0_0_VENDOR_ID_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_DEVICE_ID 0x10000
+#define regBIF_CFG_DEV0_EPF0_0_DEVICE_ID_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_COMMAND 0x10001
+#define regBIF_CFG_DEV0_EPF0_0_COMMAND_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_STATUS 0x10001
+#define regBIF_CFG_DEV0_EPF0_0_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_REVISION_ID 0x10002
+#define regBIF_CFG_DEV0_EPF0_0_REVISION_ID_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PROG_INTERFACE 0x10002
+#define regBIF_CFG_DEV0_EPF0_0_PROG_INTERFACE_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_SUB_CLASS 0x10002
+#define regBIF_CFG_DEV0_EPF0_0_SUB_CLASS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_BASE_CLASS 0x10002
+#define regBIF_CFG_DEV0_EPF0_0_BASE_CLASS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_CACHE_LINE 0x10003
+#define regBIF_CFG_DEV0_EPF0_0_CACHE_LINE_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LATENCY 0x10003
+#define regBIF_CFG_DEV0_EPF0_0_LATENCY_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_HEADER 0x10003
+#define regBIF_CFG_DEV0_EPF0_0_HEADER_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_BIST 0x10003
+#define regBIF_CFG_DEV0_EPF0_0_BIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_BASE_ADDR_1 0x10004
+#define regBIF_CFG_DEV0_EPF0_0_BASE_ADDR_1_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_BASE_ADDR_2 0x10005
+#define regBIF_CFG_DEV0_EPF0_0_BASE_ADDR_2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_BASE_ADDR_3 0x10006
+#define regBIF_CFG_DEV0_EPF0_0_BASE_ADDR_3_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_BASE_ADDR_4 0x10007
+#define regBIF_CFG_DEV0_EPF0_0_BASE_ADDR_4_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_BASE_ADDR_5 0x10008
+#define regBIF_CFG_DEV0_EPF0_0_BASE_ADDR_5_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_BASE_ADDR_6 0x10009
+#define regBIF_CFG_DEV0_EPF0_0_BASE_ADDR_6_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_CARDBUS_CIS_PTR 0x1000a
+#define regBIF_CFG_DEV0_EPF0_0_CARDBUS_CIS_PTR_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_ADAPTER_ID 0x1000b
+#define regBIF_CFG_DEV0_EPF0_0_ADAPTER_ID_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_ROM_BASE_ADDR 0x1000c
+#define regBIF_CFG_DEV0_EPF0_0_ROM_BASE_ADDR_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_CAP_PTR 0x1000d
+#define regBIF_CFG_DEV0_EPF0_0_CAP_PTR_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_INTERRUPT_LINE 0x1000f
+#define regBIF_CFG_DEV0_EPF0_0_INTERRUPT_LINE_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_INTERRUPT_PIN 0x1000f
+#define regBIF_CFG_DEV0_EPF0_0_INTERRUPT_PIN_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_MIN_GRANT 0x1000f
+#define regBIF_CFG_DEV0_EPF0_0_MIN_GRANT_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_MAX_LATENCY 0x1000f
+#define regBIF_CFG_DEV0_EPF0_0_MAX_LATENCY_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_VENDOR_CAP_LIST 0x10012
+#define regBIF_CFG_DEV0_EPF0_0_VENDOR_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_ADAPTER_ID_W 0x10013
+#define regBIF_CFG_DEV0_EPF0_0_ADAPTER_ID_W_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PMI_CAP_LIST 0x10014
+#define regBIF_CFG_DEV0_EPF0_0_PMI_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PMI_CAP 0x10014
+#define regBIF_CFG_DEV0_EPF0_0_PMI_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PMI_STATUS_CNTL 0x10015
+#define regBIF_CFG_DEV0_EPF0_0_PMI_STATUS_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_CAP_LIST 0x10019
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_CAP 0x10019
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_DEVICE_CAP 0x1001a
+#define regBIF_CFG_DEV0_EPF0_0_DEVICE_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_DEVICE_CNTL 0x1001b
+#define regBIF_CFG_DEV0_EPF0_0_DEVICE_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_DEVICE_STATUS 0x1001b
+#define regBIF_CFG_DEV0_EPF0_0_DEVICE_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LINK_CAP 0x1001c
+#define regBIF_CFG_DEV0_EPF0_0_LINK_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LINK_CNTL 0x1001d
+#define regBIF_CFG_DEV0_EPF0_0_LINK_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LINK_STATUS 0x1001d
+#define regBIF_CFG_DEV0_EPF0_0_LINK_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_DEVICE_CAP2 0x10022
+#define regBIF_CFG_DEV0_EPF0_0_DEVICE_CAP2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_DEVICE_CNTL2 0x10023
+#define regBIF_CFG_DEV0_EPF0_0_DEVICE_CNTL2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_DEVICE_STATUS2 0x10023
+#define regBIF_CFG_DEV0_EPF0_0_DEVICE_STATUS2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LINK_CAP2 0x10024
+#define regBIF_CFG_DEV0_EPF0_0_LINK_CAP2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LINK_CNTL2 0x10025
+#define regBIF_CFG_DEV0_EPF0_0_LINK_CNTL2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LINK_STATUS2 0x10025
+#define regBIF_CFG_DEV0_EPF0_0_LINK_STATUS2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_MSI_CAP_LIST 0x10028
+#define regBIF_CFG_DEV0_EPF0_0_MSI_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_MSI_MSG_CNTL 0x10028
+#define regBIF_CFG_DEV0_EPF0_0_MSI_MSG_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_MSI_MSG_ADDR_LO 0x10029
+#define regBIF_CFG_DEV0_EPF0_0_MSI_MSG_ADDR_LO_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_MSI_MSG_ADDR_HI 0x1002a
+#define regBIF_CFG_DEV0_EPF0_0_MSI_MSG_ADDR_HI_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_MSI_MSG_DATA 0x1002a
+#define regBIF_CFG_DEV0_EPF0_0_MSI_MSG_DATA_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_MSI_EXT_MSG_DATA 0x1002a
+#define regBIF_CFG_DEV0_EPF0_0_MSI_EXT_MSG_DATA_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_MSI_MASK 0x1002b
+#define regBIF_CFG_DEV0_EPF0_0_MSI_MASK_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_MSI_MSG_DATA_64 0x1002b
+#define regBIF_CFG_DEV0_EPF0_0_MSI_MSG_DATA_64_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_MSI_EXT_MSG_DATA_64 0x1002b
+#define regBIF_CFG_DEV0_EPF0_0_MSI_EXT_MSG_DATA_64_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_MSI_MASK_64 0x1002c
+#define regBIF_CFG_DEV0_EPF0_0_MSI_MASK_64_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_MSI_PENDING 0x1002c
+#define regBIF_CFG_DEV0_EPF0_0_MSI_PENDING_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_MSI_PENDING_64 0x1002d
+#define regBIF_CFG_DEV0_EPF0_0_MSI_PENDING_64_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_MSIX_CAP_LIST 0x10030
+#define regBIF_CFG_DEV0_EPF0_0_MSIX_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_MSIX_MSG_CNTL 0x10030
+#define regBIF_CFG_DEV0_EPF0_0_MSIX_MSG_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_MSIX_TABLE 0x10031
+#define regBIF_CFG_DEV0_EPF0_0_MSIX_TABLE_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_MSIX_PBA 0x10032
+#define regBIF_CFG_DEV0_EPF0_0_MSIX_PBA_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST 0x10040
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR 0x10041
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC1 0x10042
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC1_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC2 0x10043
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VC_ENH_CAP_LIST 0x10044
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VC_ENH_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_PORT_VC_CAP_REG1 0x10045
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_PORT_VC_CAP_REG1_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_PORT_VC_CAP_REG2 0x10046
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_PORT_VC_CAP_REG2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_PORT_VC_CNTL 0x10047
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_PORT_VC_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_PORT_VC_STATUS 0x10047
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_PORT_VC_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VC0_RESOURCE_CAP 0x10048
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VC0_RESOURCE_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VC0_RESOURCE_CNTL 0x10049
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VC0_RESOURCE_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VC0_RESOURCE_STATUS 0x1004a
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VC0_RESOURCE_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VC1_RESOURCE_CAP 0x1004b
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VC1_RESOURCE_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VC1_RESOURCE_CNTL 0x1004c
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VC1_RESOURCE_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VC1_RESOURCE_STATUS 0x1004d
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VC1_RESOURCE_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_DEV_SERIAL_NUM_ENH_CAP_LIST 0x10050
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_DEV_SERIAL_NUM_ENH_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_DEV_SERIAL_NUM_DW1 0x10051
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_DEV_SERIAL_NUM_DW1_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_DEV_SERIAL_NUM_DW2 0x10052
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_DEV_SERIAL_NUM_DW2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_ADV_ERR_RPT_ENH_CAP_LIST 0x10054
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_ADV_ERR_RPT_ENH_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_STATUS 0x10055
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_MASK 0x10056
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_MASK_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_SEVERITY 0x10057
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_SEVERITY_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_CORR_ERR_STATUS 0x10058
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_CORR_ERR_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_CORR_ERR_MASK 0x10059
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_CORR_ERR_MASK_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_ADV_ERR_CAP_CNTL 0x1005a
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_ADV_ERR_CAP_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_HDR_LOG0 0x1005b
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_HDR_LOG0_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_HDR_LOG1 0x1005c
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_HDR_LOG1_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_HDR_LOG2 0x1005d
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_HDR_LOG2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_HDR_LOG3 0x1005e
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_HDR_LOG3_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_TLP_PREFIX_LOG0 0x10062
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_TLP_PREFIX_LOG0_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_TLP_PREFIX_LOG1 0x10063
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_TLP_PREFIX_LOG1_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_TLP_PREFIX_LOG2 0x10064
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_TLP_PREFIX_LOG2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_TLP_PREFIX_LOG3 0x10065
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_TLP_PREFIX_LOG3_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_BAR_ENH_CAP_LIST 0x10080
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_BAR_ENH_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_BAR1_CAP 0x10081
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_BAR1_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_BAR1_CNTL 0x10082
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_BAR1_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_BAR2_CAP 0x10083
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_BAR2_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_BAR2_CNTL 0x10084
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_BAR2_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_BAR3_CAP 0x10085
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_BAR3_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_BAR3_CNTL 0x10086
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_BAR3_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_BAR4_CAP 0x10087
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_BAR4_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_BAR4_CNTL 0x10088
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_BAR4_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_BAR5_CAP 0x10089
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_BAR5_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_BAR5_CNTL 0x1008a
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_BAR5_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_BAR6_CAP 0x1008b
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_BAR6_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_BAR6_CNTL 0x1008c
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_BAR6_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_PWR_BUDGET_ENH_CAP_LIST 0x10090
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_PWR_BUDGET_ENH_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_PWR_BUDGET_DATA_SELECT 0x10091
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_PWR_BUDGET_DATA_SELECT_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_PWR_BUDGET_DATA 0x10092
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_PWR_BUDGET_DATA_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_PWR_BUDGET_CAP 0x10093
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_PWR_BUDGET_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_DPA_ENH_CAP_LIST 0x10094
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_DPA_ENH_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_DPA_CAP 0x10095
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_DPA_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_DPA_LATENCY_INDICATOR 0x10096
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_DPA_LATENCY_INDICATOR_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_DPA_STATUS 0x10097
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_DPA_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_DPA_CNTL 0x10097
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_DPA_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_0 0x10098
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_0_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_1 0x10098
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_1_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_2 0x10098
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_3 0x10098
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_3_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_4 0x10099
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_4_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_5 0x10099
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_5_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_6 0x10099
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_6_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_7 0x10099
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_7_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_SECONDARY_ENH_CAP_LIST 0x1009c
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_SECONDARY_ENH_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_LINK_CNTL3 0x1009d
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_LINK_CNTL3_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_LANE_ERROR_STATUS 0x1009e
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_LANE_ERROR_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_LANE_0_EQUALIZATION_CNTL 0x1009f
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_LANE_0_EQUALIZATION_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_LANE_1_EQUALIZATION_CNTL 0x1009f
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_LANE_1_EQUALIZATION_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_LANE_2_EQUALIZATION_CNTL 0x100a0
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_LANE_2_EQUALIZATION_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_LANE_3_EQUALIZATION_CNTL 0x100a0
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_LANE_3_EQUALIZATION_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_LANE_4_EQUALIZATION_CNTL 0x100a1
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_LANE_4_EQUALIZATION_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_LANE_5_EQUALIZATION_CNTL 0x100a1
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_LANE_5_EQUALIZATION_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_LANE_6_EQUALIZATION_CNTL 0x100a2
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_LANE_6_EQUALIZATION_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_LANE_7_EQUALIZATION_CNTL 0x100a2
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_LANE_7_EQUALIZATION_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_LANE_8_EQUALIZATION_CNTL 0x100a3
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_LANE_8_EQUALIZATION_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_LANE_9_EQUALIZATION_CNTL 0x100a3
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_LANE_9_EQUALIZATION_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_LANE_10_EQUALIZATION_CNTL 0x100a4
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_LANE_10_EQUALIZATION_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_LANE_11_EQUALIZATION_CNTL 0x100a4
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_LANE_11_EQUALIZATION_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_LANE_12_EQUALIZATION_CNTL 0x100a5
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_LANE_12_EQUALIZATION_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_LANE_13_EQUALIZATION_CNTL 0x100a5
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_LANE_13_EQUALIZATION_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_LANE_14_EQUALIZATION_CNTL 0x100a6
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_LANE_14_EQUALIZATION_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_LANE_15_EQUALIZATION_CNTL 0x100a6
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_LANE_15_EQUALIZATION_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_ACS_ENH_CAP_LIST 0x100a8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_ACS_ENH_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_ACS_CAP 0x100a9
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_ACS_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_ACS_CNTL 0x100a9
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_ACS_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_ATS_ENH_CAP_LIST 0x100ac
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_ATS_ENH_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_ATS_CAP 0x100ad
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_ATS_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_ATS_CNTL 0x100ad
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_ATS_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_PAGE_REQ_ENH_CAP_LIST 0x100b0
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_PAGE_REQ_ENH_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_PAGE_REQ_CNTL 0x100b1
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_PAGE_REQ_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_PAGE_REQ_STATUS 0x100b1
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_PAGE_REQ_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_OUTSTAND_PAGE_REQ_CAPACITY 0x100b2
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_OUTSTAND_PAGE_REQ_CAPACITY_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_OUTSTAND_PAGE_REQ_ALLOC 0x100b3
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_OUTSTAND_PAGE_REQ_ALLOC_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_PASID_ENH_CAP_LIST 0x100b4
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_PASID_ENH_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_PASID_CAP 0x100b5
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_PASID_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_PASID_CNTL 0x100b5
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_PASID_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_MC_ENH_CAP_LIST 0x100bc
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_MC_ENH_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_MC_CAP 0x100bd
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_MC_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_MC_CNTL 0x100bd
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_MC_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_MC_ADDR0 0x100be
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_MC_ADDR0_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_MC_ADDR1 0x100bf
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_MC_ADDR1_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_MC_RCV0 0x100c0
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_MC_RCV0_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_MC_RCV1 0x100c1
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_MC_RCV1_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_MC_BLOCK_ALL0 0x100c2
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_MC_BLOCK_ALL0_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_MC_BLOCK_ALL1 0x100c3
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_MC_BLOCK_ALL1_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_MC_BLOCK_UNTRANSLATED_0 0x100c4
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_MC_BLOCK_UNTRANSLATED_0_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_MC_BLOCK_UNTRANSLATED_1 0x100c5
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_MC_BLOCK_UNTRANSLATED_1_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_LTR_ENH_CAP_LIST 0x100c8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_LTR_ENH_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_LTR_CAP 0x100c9
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_LTR_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_ARI_ENH_CAP_LIST 0x100ca
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_ARI_ENH_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_ARI_CAP 0x100cb
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_ARI_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_ARI_CNTL 0x100cb
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_ARI_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_ENH_CAP_LIST 0x100cc
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_ENH_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_CAP 0x100cd
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_CONTROL 0x100ce
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_CONTROL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_STATUS 0x100ce
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_INITIAL_VFS 0x100cf
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_INITIAL_VFS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_TOTAL_VFS 0x100cf
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_TOTAL_VFS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_NUM_VFS 0x100d0
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_NUM_VFS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_FUNC_DEP_LINK 0x100d0
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_FUNC_DEP_LINK_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_FIRST_VF_OFFSET 0x100d1
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_FIRST_VF_OFFSET_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_STRIDE 0x100d1
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_STRIDE_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_DEVICE_ID 0x100d2
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_DEVICE_ID_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_SUPPORTED_PAGE_SIZE 0x100d3
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_SUPPORTED_PAGE_SIZE_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_SYSTEM_PAGE_SIZE 0x100d4
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_SYSTEM_PAGE_SIZE_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_BASE_ADDR_0 0x100d5
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_BASE_ADDR_0_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_BASE_ADDR_1 0x100d6
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_BASE_ADDR_1_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_BASE_ADDR_2 0x100d7
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_BASE_ADDR_2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_BASE_ADDR_3 0x100d8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_BASE_ADDR_3_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_BASE_ADDR_4 0x100d9
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_BASE_ADDR_4_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_BASE_ADDR_5 0x100da
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_BASE_ADDR_5_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_MIGRATION_STATE_ARRAY_OFFSET 0x100db
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_MIGRATION_STATE_ARRAY_OFFSET_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_DLF_ENH_CAP_LIST 0x10100
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_DLF_ENH_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_DATA_LINK_FEATURE_CAP 0x10101
+#define regBIF_CFG_DEV0_EPF0_0_DATA_LINK_FEATURE_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_DATA_LINK_FEATURE_STATUS 0x10102
+#define regBIF_CFG_DEV0_EPF0_0_DATA_LINK_FEATURE_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_PHY_16GT_ENH_CAP_LIST 0x10104
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_PHY_16GT_ENH_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LINK_CAP_16GT 0x10105
+#define regBIF_CFG_DEV0_EPF0_0_LINK_CAP_16GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LINK_CNTL_16GT 0x10106
+#define regBIF_CFG_DEV0_EPF0_0_LINK_CNTL_16GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LINK_STATUS_16GT 0x10107
+#define regBIF_CFG_DEV0_EPF0_0_LINK_STATUS_16GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LOCAL_PARITY_MISMATCH_STATUS_16GT 0x10108
+#define regBIF_CFG_DEV0_EPF0_0_LOCAL_PARITY_MISMATCH_STATUS_16GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_RTM1_PARITY_MISMATCH_STATUS_16GT 0x10109
+#define regBIF_CFG_DEV0_EPF0_0_RTM1_PARITY_MISMATCH_STATUS_16GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_RTM2_PARITY_MISMATCH_STATUS_16GT 0x1010a
+#define regBIF_CFG_DEV0_EPF0_0_RTM2_PARITY_MISMATCH_STATUS_16GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_0_EQUALIZATION_CNTL_16GT 0x1010c
+#define regBIF_CFG_DEV0_EPF0_0_LANE_0_EQUALIZATION_CNTL_16GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_1_EQUALIZATION_CNTL_16GT 0x1010c
+#define regBIF_CFG_DEV0_EPF0_0_LANE_1_EQUALIZATION_CNTL_16GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_2_EQUALIZATION_CNTL_16GT 0x1010c
+#define regBIF_CFG_DEV0_EPF0_0_LANE_2_EQUALIZATION_CNTL_16GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_3_EQUALIZATION_CNTL_16GT 0x1010c
+#define regBIF_CFG_DEV0_EPF0_0_LANE_3_EQUALIZATION_CNTL_16GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_4_EQUALIZATION_CNTL_16GT 0x1010d
+#define regBIF_CFG_DEV0_EPF0_0_LANE_4_EQUALIZATION_CNTL_16GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_5_EQUALIZATION_CNTL_16GT 0x1010d
+#define regBIF_CFG_DEV0_EPF0_0_LANE_5_EQUALIZATION_CNTL_16GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_6_EQUALIZATION_CNTL_16GT 0x1010d
+#define regBIF_CFG_DEV0_EPF0_0_LANE_6_EQUALIZATION_CNTL_16GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_7_EQUALIZATION_CNTL_16GT 0x1010d
+#define regBIF_CFG_DEV0_EPF0_0_LANE_7_EQUALIZATION_CNTL_16GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_8_EQUALIZATION_CNTL_16GT 0x1010e
+#define regBIF_CFG_DEV0_EPF0_0_LANE_8_EQUALIZATION_CNTL_16GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_9_EQUALIZATION_CNTL_16GT 0x1010e
+#define regBIF_CFG_DEV0_EPF0_0_LANE_9_EQUALIZATION_CNTL_16GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_10_EQUALIZATION_CNTL_16GT 0x1010e
+#define regBIF_CFG_DEV0_EPF0_0_LANE_10_EQUALIZATION_CNTL_16GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_11_EQUALIZATION_CNTL_16GT 0x1010e
+#define regBIF_CFG_DEV0_EPF0_0_LANE_11_EQUALIZATION_CNTL_16GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_12_EQUALIZATION_CNTL_16GT 0x1010f
+#define regBIF_CFG_DEV0_EPF0_0_LANE_12_EQUALIZATION_CNTL_16GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_13_EQUALIZATION_CNTL_16GT 0x1010f
+#define regBIF_CFG_DEV0_EPF0_0_LANE_13_EQUALIZATION_CNTL_16GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_14_EQUALIZATION_CNTL_16GT 0x1010f
+#define regBIF_CFG_DEV0_EPF0_0_LANE_14_EQUALIZATION_CNTL_16GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_15_EQUALIZATION_CNTL_16GT 0x1010f
+#define regBIF_CFG_DEV0_EPF0_0_LANE_15_EQUALIZATION_CNTL_16GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_MARGINING_ENH_CAP_LIST 0x10114
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_MARGINING_ENH_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_MARGINING_PORT_CAP 0x10115
+#define regBIF_CFG_DEV0_EPF0_0_MARGINING_PORT_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_MARGINING_PORT_STATUS 0x10115
+#define regBIF_CFG_DEV0_EPF0_0_MARGINING_PORT_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_0_MARGINING_LANE_CNTL 0x10116
+#define regBIF_CFG_DEV0_EPF0_0_LANE_0_MARGINING_LANE_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_0_MARGINING_LANE_STATUS 0x10116
+#define regBIF_CFG_DEV0_EPF0_0_LANE_0_MARGINING_LANE_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_1_MARGINING_LANE_CNTL 0x10117
+#define regBIF_CFG_DEV0_EPF0_0_LANE_1_MARGINING_LANE_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_1_MARGINING_LANE_STATUS 0x10117
+#define regBIF_CFG_DEV0_EPF0_0_LANE_1_MARGINING_LANE_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_2_MARGINING_LANE_CNTL 0x10118
+#define regBIF_CFG_DEV0_EPF0_0_LANE_2_MARGINING_LANE_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_2_MARGINING_LANE_STATUS 0x10118
+#define regBIF_CFG_DEV0_EPF0_0_LANE_2_MARGINING_LANE_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_3_MARGINING_LANE_CNTL 0x10119
+#define regBIF_CFG_DEV0_EPF0_0_LANE_3_MARGINING_LANE_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_3_MARGINING_LANE_STATUS 0x10119
+#define regBIF_CFG_DEV0_EPF0_0_LANE_3_MARGINING_LANE_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_4_MARGINING_LANE_CNTL 0x1011a
+#define regBIF_CFG_DEV0_EPF0_0_LANE_4_MARGINING_LANE_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_4_MARGINING_LANE_STATUS 0x1011a
+#define regBIF_CFG_DEV0_EPF0_0_LANE_4_MARGINING_LANE_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_5_MARGINING_LANE_CNTL 0x1011b
+#define regBIF_CFG_DEV0_EPF0_0_LANE_5_MARGINING_LANE_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_5_MARGINING_LANE_STATUS 0x1011b
+#define regBIF_CFG_DEV0_EPF0_0_LANE_5_MARGINING_LANE_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_6_MARGINING_LANE_CNTL 0x1011c
+#define regBIF_CFG_DEV0_EPF0_0_LANE_6_MARGINING_LANE_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_6_MARGINING_LANE_STATUS 0x1011c
+#define regBIF_CFG_DEV0_EPF0_0_LANE_6_MARGINING_LANE_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_7_MARGINING_LANE_CNTL 0x1011d
+#define regBIF_CFG_DEV0_EPF0_0_LANE_7_MARGINING_LANE_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_7_MARGINING_LANE_STATUS 0x1011d
+#define regBIF_CFG_DEV0_EPF0_0_LANE_7_MARGINING_LANE_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_8_MARGINING_LANE_CNTL 0x1011e
+#define regBIF_CFG_DEV0_EPF0_0_LANE_8_MARGINING_LANE_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_8_MARGINING_LANE_STATUS 0x1011e
+#define regBIF_CFG_DEV0_EPF0_0_LANE_8_MARGINING_LANE_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_9_MARGINING_LANE_CNTL 0x1011f
+#define regBIF_CFG_DEV0_EPF0_0_LANE_9_MARGINING_LANE_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_9_MARGINING_LANE_STATUS 0x1011f
+#define regBIF_CFG_DEV0_EPF0_0_LANE_9_MARGINING_LANE_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_10_MARGINING_LANE_CNTL 0x10120
+#define regBIF_CFG_DEV0_EPF0_0_LANE_10_MARGINING_LANE_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_10_MARGINING_LANE_STATUS 0x10120
+#define regBIF_CFG_DEV0_EPF0_0_LANE_10_MARGINING_LANE_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_11_MARGINING_LANE_CNTL 0x10121
+#define regBIF_CFG_DEV0_EPF0_0_LANE_11_MARGINING_LANE_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_11_MARGINING_LANE_STATUS 0x10121
+#define regBIF_CFG_DEV0_EPF0_0_LANE_11_MARGINING_LANE_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_12_MARGINING_LANE_CNTL 0x10122
+#define regBIF_CFG_DEV0_EPF0_0_LANE_12_MARGINING_LANE_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_12_MARGINING_LANE_STATUS 0x10122
+#define regBIF_CFG_DEV0_EPF0_0_LANE_12_MARGINING_LANE_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_13_MARGINING_LANE_CNTL 0x10123
+#define regBIF_CFG_DEV0_EPF0_0_LANE_13_MARGINING_LANE_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_13_MARGINING_LANE_STATUS 0x10123
+#define regBIF_CFG_DEV0_EPF0_0_LANE_13_MARGINING_LANE_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_14_MARGINING_LANE_CNTL 0x10124
+#define regBIF_CFG_DEV0_EPF0_0_LANE_14_MARGINING_LANE_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_14_MARGINING_LANE_STATUS 0x10124
+#define regBIF_CFG_DEV0_EPF0_0_LANE_14_MARGINING_LANE_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_15_MARGINING_LANE_CNTL 0x10125
+#define regBIF_CFG_DEV0_EPF0_0_LANE_15_MARGINING_LANE_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LANE_15_MARGINING_LANE_STATUS 0x10125
+#define regBIF_CFG_DEV0_EPF0_0_LANE_15_MARGINING_LANE_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LINK_CAP_32GT 0x10141
+#define regBIF_CFG_DEV0_EPF0_0_LINK_CAP_32GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LINK_CNTL_32GT 0x10142
+#define regBIF_CFG_DEV0_EPF0_0_LINK_CNTL_32GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_LINK_STATUS_32GT 0x10143
+#define regBIF_CFG_DEV0_EPF0_0_LINK_STATUS_32GT_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST_GPUIOV 0x101c0
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST_GPUIOV_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV 0x101c1
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_SRIOV_SHADOW 0x101c2
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_INTR_ENABLE 0x101c3
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_INTR_ENABLE_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_INTR_STATUS 0x101c4
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_INTR_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_RESET_CONTROL 0x101c5
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_RESET_CONTROL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW0 0x101c6
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW0_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1 0x101c7
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2 0x101c8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_CONTEXT 0x101c9
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_CONTEXT_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_TOTAL_FB 0x101ca
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_TOTAL_FB_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_REGION 0x101cc
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_REGION_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_P2P_OVER_XGMI_ENABLE 0x101cd
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_P2P_OVER_XGMI_ENABLE_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF0_FB 0x101ce
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF0_FB_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF1_FB 0x101cf
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF1_FB_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF2_FB 0x101d0
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF2_FB_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF3_FB 0x101d1
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF3_FB_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF4_FB 0x101d2
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF4_FB_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF5_FB 0x101d3
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF5_FB_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF6_FB 0x101d4
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF6_FB_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF7_FB 0x101d5
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF7_FB_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF8_FB 0x101d6
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF8_FB_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF9_FB 0x101d7
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF9_FB_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF10_FB 0x101d8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF10_FB_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF11_FB 0x101d9
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF11_FB_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF12_FB 0x101da
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF12_FB_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF13_FB 0x101db
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF13_FB_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF14_FB 0x101dc
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF14_FB_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF15_FB 0x101dd
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF15_FB_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF16_FB 0x101de
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF16_FB_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF17_FB 0x101df
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF17_FB_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF18_FB 0x101e0
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF18_FB_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF19_FB 0x101e1
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF19_FB_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF20_FB 0x101e2
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF20_FB_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF21_FB 0x101e3
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF21_FB_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF22_FB 0x101e4
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF22_FB_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF23_FB 0x101e5
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF23_FB_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF24_FB 0x101e6
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF24_FB_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF25_FB 0x101e7
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF25_FB_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF26_FB 0x101e8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF26_FB_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF27_FB 0x101e9
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF27_FB_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF28_FB 0x101ea
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF28_FB_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF29_FB 0x101eb
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF29_FB_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF30_FB 0x101ec
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF30_FB_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS 0x101f0
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS1 0x101f1
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS1_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS2 0x101f2
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS3 0x101f3
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS3_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS4 0x101f4
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS4_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW0 0x101fc
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW0_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW1 0x101fd
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW1_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW2 0x101fe
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW3 0x101ff
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW3_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW4 0x10200
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW4_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW5 0x10201
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW5_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW6 0x10202
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW6_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW7 0x10203
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW7_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW8 0x10204
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW8_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW0 0x10208
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW0_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW1 0x10209
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW1_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW2 0x1020a
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW3 0x1020b
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW3_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW4 0x1020c
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW4_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW5 0x1020d
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW5_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW6 0x1020e
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW6_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW7 0x1020f
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW7_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW8 0x10210
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW8_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW0 0x10214
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW0_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW1 0x10215
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW1_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW2 0x10216
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW3 0x10217
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW3_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW4 0x10218
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW4_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW5 0x10219
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW5_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW6 0x1021a
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW6_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW7 0x1021b
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW7_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW8 0x1021c
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW8_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW0 0x10220
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW0_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW1 0x10221
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW1_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW2 0x10222
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW3 0x10223
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW3_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW4 0x10224
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW4_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW5 0x10225
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW5_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW6 0x10226
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW6_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW7 0x10227
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW7_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW8 0x10228
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW8_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW0 0x1022c
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW0_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW1 0x1022d
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW1_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW2 0x1022e
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW3 0x1022f
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW3_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW4 0x10230
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW4_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW5 0x10231
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW5_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW6 0x10232
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW6_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW7 0x10233
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW7_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW8 0x10234
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW8_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW0 0x10238
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW0_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW1 0x10239
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW1_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW2 0x1023a
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW3 0x1023b
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW3_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW4 0x1023c
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW4_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW5 0x1023d
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW5_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW6 0x1023e
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW6_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW7 0x1023f
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW7_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW8 0x10240
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW8_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW0 0x10244
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW0_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW1 0x10245
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW1_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW2 0x10246
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW3 0x10247
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW3_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW4 0x10248
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW4_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW5 0x10249
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW5_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW6 0x1024a
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW6_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW7 0x1024b
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW7_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW8 0x1024c
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW8_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW0 0x10250
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW0_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW1 0x10251
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW1_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW2 0x10252
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW3 0x10253
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW3_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW4 0x10254
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW4_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW5 0x10255
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW5_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW6 0x10256
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW6_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW7 0x10257
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW7_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW8 0x10258
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW8_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW0 0x1025c
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW0_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW1 0x1025d
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW1_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW2 0x1025e
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW3 0x1025f
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW3_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW4 0x10260
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW4_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW5 0x10261
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW5_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW6 0x10262
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW6_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW7 0x10263
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW7_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW8 0x10264
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW8_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW0 0x10268
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW0_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW1 0x10269
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW1_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW2 0x1026a
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW3 0x1026b
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW3_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW4 0x1026c
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW4_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW5 0x1026d
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW5_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW6 0x1026e
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW6_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW7 0x1026f
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW7_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW8 0x10270
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW8_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW0 0x10274
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW0_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW1 0x10275
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW1_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW2 0x10276
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW3 0x10277
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW3_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW4 0x10278
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW4_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW5 0x10279
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW5_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW6 0x1027a
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW6_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW7 0x1027b
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW7_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW8 0x1027c
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW8_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW0 0x10280
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW0_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW1 0x10281
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW1_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW2 0x10282
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW3 0x10283
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW3_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW4 0x10284
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW4_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW5 0x10285
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW5_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW6 0x10286
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW6_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW7 0x10287
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW7_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW8 0x10288
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW8_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW0 0x1028c
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW0_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW1 0x1028d
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW1_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW2 0x1028e
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW3 0x1028f
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW3_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW4 0x10290
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW4_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW5 0x10291
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW5_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW6 0x10292
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW6_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW7 0x10293
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW7_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW8 0x10294
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW8_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW0 0x10298
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW0_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW1 0x10299
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW1_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW2 0x1029a
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW3 0x1029b
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW3_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW4 0x1029c
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW4_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW5 0x1029d
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW5_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW6 0x1029e
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW6_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW7 0x1029f
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW7_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW8 0x102a0
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW8_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW0 0x102a4
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW0_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW1 0x102a5
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW1_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW2 0x102a6
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW3 0x102a7
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW3_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW4 0x102a8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW4_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW5 0x102a9
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW5_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW6 0x102aa
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW6_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW7 0x102ab
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW7_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW8 0x102ac
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW8_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW0 0x102b0
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW0_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW1 0x102b1
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW1_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW2 0x102b2
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW3 0x102b3
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW3_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW4 0x102b4
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW4_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW5 0x102b5
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW5_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW6 0x102b6
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW6_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW7 0x102b7
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW7_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW8 0x102b8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW8_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW0 0x102bc
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW0_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW1 0x102bd
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW1_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW2 0x102be
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW3 0x102bf
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW3_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW4 0x102c0
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW4_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW5 0x102c1
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW5_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW6 0x102c2
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW6_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW7 0x102c3
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW7_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW8 0x102c4
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW8_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW0 0x102c8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW0_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW1 0x102c9
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW1_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW2 0x102ca
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW3 0x102cb
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW3_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW4 0x102cc
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW4_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW5 0x102cd
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW5_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW6 0x102ce
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW6_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW7 0x102cf
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW7_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW8 0x102d0
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW8_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW0 0x102d4
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW0_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW1 0x102d5
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW1_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW2 0x102d6
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW3 0x102d7
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW3_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW4 0x102d8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW4_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW5 0x102d9
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW5_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW6 0x102da
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW6_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW7 0x102db
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW7_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW8 0x102dc
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW8_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW0 0x102e0
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW0_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW1 0x102e1
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW1_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW2 0x102e2
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW3 0x102e3
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW3_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW4 0x102e4
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW4_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW5 0x102e5
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW5_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW6 0x102e6
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW6_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW7 0x102e7
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW7_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW8 0x102e8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW8_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE 0x10300
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A8_15_INTR_ENABLE 0x10301
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A8_15_INTR_ENABLE_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE 0x10302
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE 0x10303
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS 0x10304
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A8_15_INTR_STATUS 0x10305
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A8_15_INTR_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS 0x10306
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS 0x10307
+#define regBIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS_BASE_IDX 8
+
+
+// addressBlock: aid_nbio_nbif0_bif_cfg_dev0_epf1_bifcfgdecp
+// base address: 0x10141000
+#define regBIF_CFG_DEV0_EPF1_0_VENDOR_ID 0x10400
+#define regBIF_CFG_DEV0_EPF1_0_VENDOR_ID_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_DEVICE_ID 0x10400
+#define regBIF_CFG_DEV0_EPF1_0_DEVICE_ID_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_COMMAND 0x10401
+#define regBIF_CFG_DEV0_EPF1_0_COMMAND_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_STATUS 0x10401
+#define regBIF_CFG_DEV0_EPF1_0_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_REVISION_ID 0x10402
+#define regBIF_CFG_DEV0_EPF1_0_REVISION_ID_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PROG_INTERFACE 0x10402
+#define regBIF_CFG_DEV0_EPF1_0_PROG_INTERFACE_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_SUB_CLASS 0x10402
+#define regBIF_CFG_DEV0_EPF1_0_SUB_CLASS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_BASE_CLASS 0x10402
+#define regBIF_CFG_DEV0_EPF1_0_BASE_CLASS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_CACHE_LINE 0x10403
+#define regBIF_CFG_DEV0_EPF1_0_CACHE_LINE_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_LATENCY 0x10403
+#define regBIF_CFG_DEV0_EPF1_0_LATENCY_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_HEADER 0x10403
+#define regBIF_CFG_DEV0_EPF1_0_HEADER_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_BIST 0x10403
+#define regBIF_CFG_DEV0_EPF1_0_BIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_BASE_ADDR_1 0x10404
+#define regBIF_CFG_DEV0_EPF1_0_BASE_ADDR_1_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_BASE_ADDR_2 0x10405
+#define regBIF_CFG_DEV0_EPF1_0_BASE_ADDR_2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_BASE_ADDR_3 0x10406
+#define regBIF_CFG_DEV0_EPF1_0_BASE_ADDR_3_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_BASE_ADDR_4 0x10407
+#define regBIF_CFG_DEV0_EPF1_0_BASE_ADDR_4_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_BASE_ADDR_5 0x10408
+#define regBIF_CFG_DEV0_EPF1_0_BASE_ADDR_5_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_BASE_ADDR_6 0x10409
+#define regBIF_CFG_DEV0_EPF1_0_BASE_ADDR_6_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_CARDBUS_CIS_PTR 0x1040a
+#define regBIF_CFG_DEV0_EPF1_0_CARDBUS_CIS_PTR_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_ADAPTER_ID 0x1040b
+#define regBIF_CFG_DEV0_EPF1_0_ADAPTER_ID_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_ROM_BASE_ADDR 0x1040c
+#define regBIF_CFG_DEV0_EPF1_0_ROM_BASE_ADDR_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_CAP_PTR 0x1040d
+#define regBIF_CFG_DEV0_EPF1_0_CAP_PTR_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_INTERRUPT_LINE 0x1040f
+#define regBIF_CFG_DEV0_EPF1_0_INTERRUPT_LINE_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_INTERRUPT_PIN 0x1040f
+#define regBIF_CFG_DEV0_EPF1_0_INTERRUPT_PIN_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_MIN_GRANT 0x1040f
+#define regBIF_CFG_DEV0_EPF1_0_MIN_GRANT_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_MAX_LATENCY 0x1040f
+#define regBIF_CFG_DEV0_EPF1_0_MAX_LATENCY_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_VENDOR_CAP_LIST 0x10412
+#define regBIF_CFG_DEV0_EPF1_0_VENDOR_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_ADAPTER_ID_W 0x10413
+#define regBIF_CFG_DEV0_EPF1_0_ADAPTER_ID_W_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PMI_CAP_LIST 0x10414
+#define regBIF_CFG_DEV0_EPF1_0_PMI_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PMI_CAP 0x10414
+#define regBIF_CFG_DEV0_EPF1_0_PMI_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PMI_STATUS_CNTL 0x10415
+#define regBIF_CFG_DEV0_EPF1_0_PMI_STATUS_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_CAP_LIST 0x10419
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_CAP 0x10419
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_DEVICE_CAP 0x1041a
+#define regBIF_CFG_DEV0_EPF1_0_DEVICE_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_DEVICE_CNTL 0x1041b
+#define regBIF_CFG_DEV0_EPF1_0_DEVICE_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_DEVICE_STATUS 0x1041b
+#define regBIF_CFG_DEV0_EPF1_0_DEVICE_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_LINK_CAP 0x1041c
+#define regBIF_CFG_DEV0_EPF1_0_LINK_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_LINK_CNTL 0x1041d
+#define regBIF_CFG_DEV0_EPF1_0_LINK_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_LINK_STATUS 0x1041d
+#define regBIF_CFG_DEV0_EPF1_0_LINK_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_DEVICE_CAP2 0x10422
+#define regBIF_CFG_DEV0_EPF1_0_DEVICE_CAP2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_DEVICE_CNTL2 0x10423
+#define regBIF_CFG_DEV0_EPF1_0_DEVICE_CNTL2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_DEVICE_STATUS2 0x10423
+#define regBIF_CFG_DEV0_EPF1_0_DEVICE_STATUS2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_LINK_CAP2 0x10424
+#define regBIF_CFG_DEV0_EPF1_0_LINK_CAP2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_LINK_CNTL2 0x10425
+#define regBIF_CFG_DEV0_EPF1_0_LINK_CNTL2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_LINK_STATUS2 0x10425
+#define regBIF_CFG_DEV0_EPF1_0_LINK_STATUS2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_MSI_CAP_LIST 0x10428
+#define regBIF_CFG_DEV0_EPF1_0_MSI_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_MSI_MSG_CNTL 0x10428
+#define regBIF_CFG_DEV0_EPF1_0_MSI_MSG_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_MSI_MSG_ADDR_LO 0x10429
+#define regBIF_CFG_DEV0_EPF1_0_MSI_MSG_ADDR_LO_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_MSI_MSG_ADDR_HI 0x1042a
+#define regBIF_CFG_DEV0_EPF1_0_MSI_MSG_ADDR_HI_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_MSI_MSG_DATA 0x1042a
+#define regBIF_CFG_DEV0_EPF1_0_MSI_MSG_DATA_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_MSI_EXT_MSG_DATA 0x1042a
+#define regBIF_CFG_DEV0_EPF1_0_MSI_EXT_MSG_DATA_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_MSI_MASK 0x1042b
+#define regBIF_CFG_DEV0_EPF1_0_MSI_MASK_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_MSI_MSG_DATA_64 0x1042b
+#define regBIF_CFG_DEV0_EPF1_0_MSI_MSG_DATA_64_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_MSI_EXT_MSG_DATA_64 0x1042b
+#define regBIF_CFG_DEV0_EPF1_0_MSI_EXT_MSG_DATA_64_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_MSI_MASK_64 0x1042c
+#define regBIF_CFG_DEV0_EPF1_0_MSI_MASK_64_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_MSI_PENDING 0x1042c
+#define regBIF_CFG_DEV0_EPF1_0_MSI_PENDING_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_MSI_PENDING_64 0x1042d
+#define regBIF_CFG_DEV0_EPF1_0_MSI_PENDING_64_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_MSIX_CAP_LIST 0x10430
+#define regBIF_CFG_DEV0_EPF1_0_MSIX_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_MSIX_MSG_CNTL 0x10430
+#define regBIF_CFG_DEV0_EPF1_0_MSIX_MSG_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_MSIX_TABLE 0x10431
+#define regBIF_CFG_DEV0_EPF1_0_MSIX_TABLE_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_MSIX_PBA 0x10432
+#define regBIF_CFG_DEV0_EPF1_0_MSIX_PBA_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST 0x10440
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_VENDOR_SPECIFIC_HDR 0x10441
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_VENDOR_SPECIFIC_HDR_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_VENDOR_SPECIFIC1 0x10442
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_VENDOR_SPECIFIC1_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_VENDOR_SPECIFIC2 0x10443
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_VENDOR_SPECIFIC2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_ADV_ERR_RPT_ENH_CAP_LIST 0x10454
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_ADV_ERR_RPT_ENH_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_STATUS 0x10455
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_MASK 0x10456
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_MASK_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_SEVERITY 0x10457
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_SEVERITY_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_CORR_ERR_STATUS 0x10458
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_CORR_ERR_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_CORR_ERR_MASK 0x10459
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_CORR_ERR_MASK_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_ADV_ERR_CAP_CNTL 0x1045a
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_ADV_ERR_CAP_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_HDR_LOG0 0x1045b
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_HDR_LOG0_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_HDR_LOG1 0x1045c
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_HDR_LOG1_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_HDR_LOG2 0x1045d
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_HDR_LOG2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_HDR_LOG3 0x1045e
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_HDR_LOG3_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_TLP_PREFIX_LOG0 0x10462
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_TLP_PREFIX_LOG0_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_TLP_PREFIX_LOG1 0x10463
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_TLP_PREFIX_LOG1_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_TLP_PREFIX_LOG2 0x10464
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_TLP_PREFIX_LOG2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_TLP_PREFIX_LOG3 0x10465
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_TLP_PREFIX_LOG3_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_BAR_ENH_CAP_LIST 0x10480
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_BAR_ENH_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_BAR1_CAP 0x10481
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_BAR1_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_BAR1_CNTL 0x10482
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_BAR1_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_BAR2_CAP 0x10483
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_BAR2_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_BAR2_CNTL 0x10484
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_BAR2_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_BAR3_CAP 0x10485
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_BAR3_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_BAR3_CNTL 0x10486
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_BAR3_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_BAR4_CAP 0x10487
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_BAR4_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_BAR4_CNTL 0x10488
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_BAR4_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_BAR5_CAP 0x10489
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_BAR5_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_BAR5_CNTL 0x1048a
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_BAR5_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_BAR6_CAP 0x1048b
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_BAR6_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_BAR6_CNTL 0x1048c
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_BAR6_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_PWR_BUDGET_ENH_CAP_LIST 0x10490
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_PWR_BUDGET_ENH_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_PWR_BUDGET_DATA_SELECT 0x10491
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_PWR_BUDGET_DATA_SELECT_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_PWR_BUDGET_DATA 0x10492
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_PWR_BUDGET_DATA_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_PWR_BUDGET_CAP 0x10493
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_PWR_BUDGET_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_DPA_ENH_CAP_LIST 0x10494
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_DPA_ENH_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_DPA_CAP 0x10495
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_DPA_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_DPA_LATENCY_INDICATOR 0x10496
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_DPA_LATENCY_INDICATOR_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_DPA_STATUS 0x10497
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_DPA_STATUS_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_DPA_CNTL 0x10497
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_DPA_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_0 0x10498
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_0_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_1 0x10498
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_1_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_2 0x10498
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_2_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_3 0x10498
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_3_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_4 0x10499
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_4_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_5 0x10499
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_5_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_6 0x10499
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_6_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_7 0x10499
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_7_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_ACS_ENH_CAP_LIST 0x104a8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_ACS_ENH_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_ACS_CAP 0x104a9
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_ACS_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_ACS_CNTL 0x104a9
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_ACS_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_PASID_ENH_CAP_LIST 0x104b4
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_PASID_ENH_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_PASID_CAP 0x104b5
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_PASID_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_PASID_CNTL 0x104b5
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_PASID_CNTL_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_ARI_ENH_CAP_LIST 0x104ca
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_ARI_ENH_CAP_LIST_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_ARI_CAP 0x104cb
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_ARI_CAP_BASE_IDX 8
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_ARI_CNTL 0x104cb
+#define regBIF_CFG_DEV0_EPF1_0_PCIE_ARI_CNTL_BASE_IDX 8
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dev0_RCCPORTDEC
+// base address: 0x10131000
+#define regRCC_DEV0_1_RCC_VDM_SUPPORT 0xc440
+#define regRCC_DEV0_1_RCC_VDM_SUPPORT_BASE_IDX 8
+#define regRCC_DEV0_1_RCC_BUS_CNTL 0xc441
+#define regRCC_DEV0_1_RCC_BUS_CNTL_BASE_IDX 8
+#define regRCC_DEV0_1_RCC_FEATURES_CONTROL_MISC 0xc442
+#define regRCC_DEV0_1_RCC_FEATURES_CONTROL_MISC_BASE_IDX 8
+#define regRCC_DEV0_1_RCC_DEV0_LINK_CNTL 0xc443
+#define regRCC_DEV0_1_RCC_DEV0_LINK_CNTL_BASE_IDX 8
+#define regRCC_DEV0_1_RCC_CMN_LINK_CNTL 0xc444
+#define regRCC_DEV0_1_RCC_CMN_LINK_CNTL_BASE_IDX 8
+#define regRCC_DEV0_1_RCC_EP_REQUESTERID_RESTORE 0xc445
+#define regRCC_DEV0_1_RCC_EP_REQUESTERID_RESTORE_BASE_IDX 8
+#define regRCC_DEV0_1_RCC_LTR_LSWITCH_CNTL 0xc446
+#define regRCC_DEV0_1_RCC_LTR_LSWITCH_CNTL_BASE_IDX 8
+#define regRCC_DEV0_1_RCC_MH_ARB_CNTL 0xc447
+#define regRCC_DEV0_1_RCC_MH_ARB_CNTL_BASE_IDX 8
+#define regRCC_DEV0_1_RCC_MARGIN_PARAM_CNTL0 0xc448
+#define regRCC_DEV0_1_RCC_MARGIN_PARAM_CNTL0_BASE_IDX 8
+#define regRCC_DEV0_1_RCC_MARGIN_PARAM_CNTL1 0xc449
+#define regRCC_DEV0_1_RCC_MARGIN_PARAM_CNTL1_BASE_IDX 8
+
+
+// addressBlock: aid_nbio_nbif0_rcc_ep_dev0_RCCPORTDEC
+// base address: 0x10131000
+#define regRCC_EP_DEV0_1_EP_PCIE_SCRATCH 0xc44c
+#define regRCC_EP_DEV0_1_EP_PCIE_SCRATCH_BASE_IDX 8
+#define regRCC_EP_DEV0_1_EP_PCIE_CNTL 0xc44e
+#define regRCC_EP_DEV0_1_EP_PCIE_CNTL_BASE_IDX 8
+#define regRCC_EP_DEV0_1_EP_PCIE_INT_CNTL 0xc44f
+#define regRCC_EP_DEV0_1_EP_PCIE_INT_CNTL_BASE_IDX 8
+#define regRCC_EP_DEV0_1_EP_PCIE_INT_STATUS 0xc450
+#define regRCC_EP_DEV0_1_EP_PCIE_INT_STATUS_BASE_IDX 8
+#define regRCC_EP_DEV0_1_EP_PCIE_RX_CNTL2 0xc451
+#define regRCC_EP_DEV0_1_EP_PCIE_RX_CNTL2_BASE_IDX 8
+#define regRCC_EP_DEV0_1_EP_PCIE_BUS_CNTL 0xc452
+#define regRCC_EP_DEV0_1_EP_PCIE_BUS_CNTL_BASE_IDX 8
+#define regRCC_EP_DEV0_1_EP_PCIE_CFG_CNTL 0xc453
+#define regRCC_EP_DEV0_1_EP_PCIE_CFG_CNTL_BASE_IDX 8
+#define regRCC_EP_DEV0_1_EP_PCIE_TX_LTR_CNTL 0xc454
+#define regRCC_EP_DEV0_1_EP_PCIE_TX_LTR_CNTL_BASE_IDX 8
+#define regRCC_EP_DEV0_1_EP_PCIE_STRAP_MISC 0xc455
+#define regRCC_EP_DEV0_1_EP_PCIE_STRAP_MISC_BASE_IDX 8
+#define regRCC_EP_DEV0_1_EP_PCIE_STRAP_MISC2 0xc456
+#define regRCC_EP_DEV0_1_EP_PCIE_STRAP_MISC2_BASE_IDX 8
+#define regRCC_EP_DEV0_1_EP_PCIE_F0_DPA_CAP 0xc457
+#define regRCC_EP_DEV0_1_EP_PCIE_F0_DPA_CAP_BASE_IDX 8
+#define regRCC_EP_DEV0_1_EP_PCIE_F0_DPA_LATENCY_INDICATOR 0xc458
+#define regRCC_EP_DEV0_1_EP_PCIE_F0_DPA_LATENCY_INDICATOR_BASE_IDX 8
+#define regRCC_EP_DEV0_1_EP_PCIE_F0_DPA_CNTL 0xc458
+#define regRCC_EP_DEV0_1_EP_PCIE_F0_DPA_CNTL_BASE_IDX 8
+#define regRCC_EP_DEV0_1_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_0 0xc458
+#define regRCC_EP_DEV0_1_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_0_BASE_IDX 8
+#define regRCC_EP_DEV0_1_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_1 0xc459
+#define regRCC_EP_DEV0_1_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_1_BASE_IDX 8
+#define regRCC_EP_DEV0_1_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_2 0xc459
+#define regRCC_EP_DEV0_1_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_2_BASE_IDX 8
+#define regRCC_EP_DEV0_1_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_3 0xc459
+#define regRCC_EP_DEV0_1_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_3_BASE_IDX 8
+#define regRCC_EP_DEV0_1_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_4 0xc459
+#define regRCC_EP_DEV0_1_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_4_BASE_IDX 8
+#define regRCC_EP_DEV0_1_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_5 0xc45a
+#define regRCC_EP_DEV0_1_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_5_BASE_IDX 8
+#define regRCC_EP_DEV0_1_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_6 0xc45a
+#define regRCC_EP_DEV0_1_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_6_BASE_IDX 8
+#define regRCC_EP_DEV0_1_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_7 0xc45a
+#define regRCC_EP_DEV0_1_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_7_BASE_IDX 8
+#define regRCC_EP_DEV0_1_EP_PCIE_PME_CONTROL 0xc45c
+#define regRCC_EP_DEV0_1_EP_PCIE_PME_CONTROL_BASE_IDX 8
+#define regRCC_EP_DEV0_1_EP_PCIEP_RESERVED 0xc45d
+#define regRCC_EP_DEV0_1_EP_PCIEP_RESERVED_BASE_IDX 8
+#define regRCC_EP_DEV0_1_EP_PCIE_TX_CNTL 0xc45f
+#define regRCC_EP_DEV0_1_EP_PCIE_TX_CNTL_BASE_IDX 8
+#define regRCC_EP_DEV0_1_EP_PCIE_TX_REQUESTER_ID 0xc460
+#define regRCC_EP_DEV0_1_EP_PCIE_TX_REQUESTER_ID_BASE_IDX 8
+#define regRCC_EP_DEV0_1_EP_PCIE_ERR_CNTL 0xc461
+#define regRCC_EP_DEV0_1_EP_PCIE_ERR_CNTL_BASE_IDX 8
+#define regRCC_EP_DEV0_1_EP_PCIE_RX_CNTL 0xc462
+#define regRCC_EP_DEV0_1_EP_PCIE_RX_CNTL_BASE_IDX 8
+#define regRCC_EP_DEV0_1_EP_PCIE_LC_SPEED_CNTL 0xc463
+#define regRCC_EP_DEV0_1_EP_PCIE_LC_SPEED_CNTL_BASE_IDX 8
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dwn_dev0_RCCPORTDEC
+// base address: 0x10131000
+#define regRCC_DWN_DEV0_1_DN_PCIE_RESERVED 0xc468
+#define regRCC_DWN_DEV0_1_DN_PCIE_RESERVED_BASE_IDX 8
+#define regRCC_DWN_DEV0_1_DN_PCIE_SCRATCH 0xc469
+#define regRCC_DWN_DEV0_1_DN_PCIE_SCRATCH_BASE_IDX 8
+#define regRCC_DWN_DEV0_1_DN_PCIE_CNTL 0xc46b
+#define regRCC_DWN_DEV0_1_DN_PCIE_CNTL_BASE_IDX 8
+#define regRCC_DWN_DEV0_1_DN_PCIE_CONFIG_CNTL 0xc46c
+#define regRCC_DWN_DEV0_1_DN_PCIE_CONFIG_CNTL_BASE_IDX 8
+#define regRCC_DWN_DEV0_1_DN_PCIE_RX_CNTL2 0xc46d
+#define regRCC_DWN_DEV0_1_DN_PCIE_RX_CNTL2_BASE_IDX 8
+#define regRCC_DWN_DEV0_1_DN_PCIE_BUS_CNTL 0xc46e
+#define regRCC_DWN_DEV0_1_DN_PCIE_BUS_CNTL_BASE_IDX 8
+#define regRCC_DWN_DEV0_1_DN_PCIE_CFG_CNTL 0xc46f
+#define regRCC_DWN_DEV0_1_DN_PCIE_CFG_CNTL_BASE_IDX 8
+#define regRCC_DWN_DEV0_1_DN_PCIE_STRAP_F0 0xc470
+#define regRCC_DWN_DEV0_1_DN_PCIE_STRAP_F0_BASE_IDX 8
+#define regRCC_DWN_DEV0_1_DN_PCIE_STRAP_MISC 0xc471
+#define regRCC_DWN_DEV0_1_DN_PCIE_STRAP_MISC_BASE_IDX 8
+#define regRCC_DWN_DEV0_1_DN_PCIE_STRAP_MISC2 0xc472
+#define regRCC_DWN_DEV0_1_DN_PCIE_STRAP_MISC2_BASE_IDX 8
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dwnp_dev0_RCCPORTDEC
+// base address: 0x10131000
+#define regRCC_DWNP_DEV0_1_PCIE_ERR_CNTL 0xc475
+#define regRCC_DWNP_DEV0_1_PCIE_ERR_CNTL_BASE_IDX 8
+#define regRCC_DWNP_DEV0_1_PCIE_RX_CNTL 0xc476
+#define regRCC_DWNP_DEV0_1_PCIE_RX_CNTL_BASE_IDX 8
+#define regRCC_DWNP_DEV0_1_PCIE_LC_SPEED_CNTL 0xc477
+#define regRCC_DWNP_DEV0_1_PCIE_LC_SPEED_CNTL_BASE_IDX 8
+#define regRCC_DWNP_DEV0_1_PCIE_LC_CNTL2 0xc478
+#define regRCC_DWNP_DEV0_1_PCIE_LC_CNTL2_BASE_IDX 8
+#define regRCC_DWNP_DEV0_1_PCIEP_STRAP_MISC 0xc479
+#define regRCC_DWNP_DEV0_1_PCIEP_STRAP_MISC_BASE_IDX 8
+#define regRCC_DWNP_DEV0_1_LTR_MSG_INFO_FROM_EP 0xc47a
+#define regRCC_DWNP_DEV0_1_LTR_MSG_INFO_FROM_EP_BASE_IDX 8
+
+
+// addressBlock: aid_nbio_nbif0_rcc_pfc_amdgfx_RCCPFCDEC
+// base address: 0x10134000
+#define regRCC_PFC_AMDGFX_RCC_PFC_LTR_CNTL 0xd040
+#define regRCC_PFC_AMDGFX_RCC_PFC_LTR_CNTL_BASE_IDX 8
+#define regRCC_PFC_AMDGFX_RCC_PFC_PME_RESTORE 0xd041
+#define regRCC_PFC_AMDGFX_RCC_PFC_PME_RESTORE_BASE_IDX 8
+#define regRCC_PFC_AMDGFX_RCC_PFC_STICKY_RESTORE_0 0xd042
+#define regRCC_PFC_AMDGFX_RCC_PFC_STICKY_RESTORE_0_BASE_IDX 8
+#define regRCC_PFC_AMDGFX_RCC_PFC_STICKY_RESTORE_1 0xd043
+#define regRCC_PFC_AMDGFX_RCC_PFC_STICKY_RESTORE_1_BASE_IDX 8
+#define regRCC_PFC_AMDGFX_RCC_PFC_STICKY_RESTORE_2 0xd044
+#define regRCC_PFC_AMDGFX_RCC_PFC_STICKY_RESTORE_2_BASE_IDX 8
+#define regRCC_PFC_AMDGFX_RCC_PFC_STICKY_RESTORE_3 0xd045
+#define regRCC_PFC_AMDGFX_RCC_PFC_STICKY_RESTORE_3_BASE_IDX 8
+#define regRCC_PFC_AMDGFX_RCC_PFC_STICKY_RESTORE_4 0xd046
+#define regRCC_PFC_AMDGFX_RCC_PFC_STICKY_RESTORE_4_BASE_IDX 8
+#define regRCC_PFC_AMDGFX_RCC_PFC_STICKY_RESTORE_5 0xd047
+#define regRCC_PFC_AMDGFX_RCC_PFC_STICKY_RESTORE_5_BASE_IDX 8
+#define regRCC_PFC_AMDGFX_RCC_PFC_AUXPWR_CNTL 0xd048
+#define regRCC_PFC_AMDGFX_RCC_PFC_AUXPWR_CNTL_BASE_IDX 8
+
+
+// addressBlock: aid_nbio_nbif0_pciemsix_0_usb_MSIXTDEC
+// base address: 0x10168000
+#define regPCIEMSIX_VECT0_ADDR_LO 0x1a000
+#define regPCIEMSIX_VECT0_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT0_ADDR_HI 0x1a001
+#define regPCIEMSIX_VECT0_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT0_MSG_DATA 0x1a002
+#define regPCIEMSIX_VECT0_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT0_CONTROL 0x1a003
+#define regPCIEMSIX_VECT0_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT1_ADDR_LO 0x1a004
+#define regPCIEMSIX_VECT1_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT1_ADDR_HI 0x1a005
+#define regPCIEMSIX_VECT1_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT1_MSG_DATA 0x1a006
+#define regPCIEMSIX_VECT1_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT1_CONTROL 0x1a007
+#define regPCIEMSIX_VECT1_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT2_ADDR_LO 0x1a008
+#define regPCIEMSIX_VECT2_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT2_ADDR_HI 0x1a009
+#define regPCIEMSIX_VECT2_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT2_MSG_DATA 0x1a00a
+#define regPCIEMSIX_VECT2_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT2_CONTROL 0x1a00b
+#define regPCIEMSIX_VECT2_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT3_ADDR_LO 0x1a00c
+#define regPCIEMSIX_VECT3_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT3_ADDR_HI 0x1a00d
+#define regPCIEMSIX_VECT3_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT3_MSG_DATA 0x1a00e
+#define regPCIEMSIX_VECT3_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT3_CONTROL 0x1a00f
+#define regPCIEMSIX_VECT3_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT4_ADDR_LO 0x1a010
+#define regPCIEMSIX_VECT4_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT4_ADDR_HI 0x1a011
+#define regPCIEMSIX_VECT4_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT4_MSG_DATA 0x1a012
+#define regPCIEMSIX_VECT4_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT4_CONTROL 0x1a013
+#define regPCIEMSIX_VECT4_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT5_ADDR_LO 0x1a014
+#define regPCIEMSIX_VECT5_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT5_ADDR_HI 0x1a015
+#define regPCIEMSIX_VECT5_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT5_MSG_DATA 0x1a016
+#define regPCIEMSIX_VECT5_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT5_CONTROL 0x1a017
+#define regPCIEMSIX_VECT5_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT6_ADDR_LO 0x1a018
+#define regPCIEMSIX_VECT6_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT6_ADDR_HI 0x1a019
+#define regPCIEMSIX_VECT6_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT6_MSG_DATA 0x1a01a
+#define regPCIEMSIX_VECT6_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT6_CONTROL 0x1a01b
+#define regPCIEMSIX_VECT6_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT7_ADDR_LO 0x1a01c
+#define regPCIEMSIX_VECT7_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT7_ADDR_HI 0x1a01d
+#define regPCIEMSIX_VECT7_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT7_MSG_DATA 0x1a01e
+#define regPCIEMSIX_VECT7_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT7_CONTROL 0x1a01f
+#define regPCIEMSIX_VECT7_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT8_ADDR_LO 0x1a020
+#define regPCIEMSIX_VECT8_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT8_ADDR_HI 0x1a021
+#define regPCIEMSIX_VECT8_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT8_MSG_DATA 0x1a022
+#define regPCIEMSIX_VECT8_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT8_CONTROL 0x1a023
+#define regPCIEMSIX_VECT8_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT9_ADDR_LO 0x1a024
+#define regPCIEMSIX_VECT9_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT9_ADDR_HI 0x1a025
+#define regPCIEMSIX_VECT9_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT9_MSG_DATA 0x1a026
+#define regPCIEMSIX_VECT9_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT9_CONTROL 0x1a027
+#define regPCIEMSIX_VECT9_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT10_ADDR_LO 0x1a028
+#define regPCIEMSIX_VECT10_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT10_ADDR_HI 0x1a029
+#define regPCIEMSIX_VECT10_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT10_MSG_DATA 0x1a02a
+#define regPCIEMSIX_VECT10_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT10_CONTROL 0x1a02b
+#define regPCIEMSIX_VECT10_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT11_ADDR_LO 0x1a02c
+#define regPCIEMSIX_VECT11_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT11_ADDR_HI 0x1a02d
+#define regPCIEMSIX_VECT11_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT11_MSG_DATA 0x1a02e
+#define regPCIEMSIX_VECT11_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT11_CONTROL 0x1a02f
+#define regPCIEMSIX_VECT11_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT12_ADDR_LO 0x1a030
+#define regPCIEMSIX_VECT12_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT12_ADDR_HI 0x1a031
+#define regPCIEMSIX_VECT12_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT12_MSG_DATA 0x1a032
+#define regPCIEMSIX_VECT12_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT12_CONTROL 0x1a033
+#define regPCIEMSIX_VECT12_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT13_ADDR_LO 0x1a034
+#define regPCIEMSIX_VECT13_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT13_ADDR_HI 0x1a035
+#define regPCIEMSIX_VECT13_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT13_MSG_DATA 0x1a036
+#define regPCIEMSIX_VECT13_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT13_CONTROL 0x1a037
+#define regPCIEMSIX_VECT13_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT14_ADDR_LO 0x1a038
+#define regPCIEMSIX_VECT14_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT14_ADDR_HI 0x1a039
+#define regPCIEMSIX_VECT14_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT14_MSG_DATA 0x1a03a
+#define regPCIEMSIX_VECT14_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT14_CONTROL 0x1a03b
+#define regPCIEMSIX_VECT14_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT15_ADDR_LO 0x1a03c
+#define regPCIEMSIX_VECT15_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT15_ADDR_HI 0x1a03d
+#define regPCIEMSIX_VECT15_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT15_MSG_DATA 0x1a03e
+#define regPCIEMSIX_VECT15_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT15_CONTROL 0x1a03f
+#define regPCIEMSIX_VECT15_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT16_ADDR_LO 0x1a040
+#define regPCIEMSIX_VECT16_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT16_ADDR_HI 0x1a041
+#define regPCIEMSIX_VECT16_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT16_MSG_DATA 0x1a042
+#define regPCIEMSIX_VECT16_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT16_CONTROL 0x1a043
+#define regPCIEMSIX_VECT16_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT17_ADDR_LO 0x1a044
+#define regPCIEMSIX_VECT17_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT17_ADDR_HI 0x1a045
+#define regPCIEMSIX_VECT17_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT17_MSG_DATA 0x1a046
+#define regPCIEMSIX_VECT17_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT17_CONTROL 0x1a047
+#define regPCIEMSIX_VECT17_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT18_ADDR_LO 0x1a048
+#define regPCIEMSIX_VECT18_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT18_ADDR_HI 0x1a049
+#define regPCIEMSIX_VECT18_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT18_MSG_DATA 0x1a04a
+#define regPCIEMSIX_VECT18_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT18_CONTROL 0x1a04b
+#define regPCIEMSIX_VECT18_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT19_ADDR_LO 0x1a04c
+#define regPCIEMSIX_VECT19_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT19_ADDR_HI 0x1a04d
+#define regPCIEMSIX_VECT19_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT19_MSG_DATA 0x1a04e
+#define regPCIEMSIX_VECT19_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT19_CONTROL 0x1a04f
+#define regPCIEMSIX_VECT19_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT20_ADDR_LO 0x1a050
+#define regPCIEMSIX_VECT20_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT20_ADDR_HI 0x1a051
+#define regPCIEMSIX_VECT20_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT20_MSG_DATA 0x1a052
+#define regPCIEMSIX_VECT20_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT20_CONTROL 0x1a053
+#define regPCIEMSIX_VECT20_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT21_ADDR_LO 0x1a054
+#define regPCIEMSIX_VECT21_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT21_ADDR_HI 0x1a055
+#define regPCIEMSIX_VECT21_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT21_MSG_DATA 0x1a056
+#define regPCIEMSIX_VECT21_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT21_CONTROL 0x1a057
+#define regPCIEMSIX_VECT21_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT22_ADDR_LO 0x1a058
+#define regPCIEMSIX_VECT22_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT22_ADDR_HI 0x1a059
+#define regPCIEMSIX_VECT22_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT22_MSG_DATA 0x1a05a
+#define regPCIEMSIX_VECT22_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT22_CONTROL 0x1a05b
+#define regPCIEMSIX_VECT22_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT23_ADDR_LO 0x1a05c
+#define regPCIEMSIX_VECT23_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT23_ADDR_HI 0x1a05d
+#define regPCIEMSIX_VECT23_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT23_MSG_DATA 0x1a05e
+#define regPCIEMSIX_VECT23_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT23_CONTROL 0x1a05f
+#define regPCIEMSIX_VECT23_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT24_ADDR_LO 0x1a060
+#define regPCIEMSIX_VECT24_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT24_ADDR_HI 0x1a061
+#define regPCIEMSIX_VECT24_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT24_MSG_DATA 0x1a062
+#define regPCIEMSIX_VECT24_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT24_CONTROL 0x1a063
+#define regPCIEMSIX_VECT24_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT25_ADDR_LO 0x1a064
+#define regPCIEMSIX_VECT25_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT25_ADDR_HI 0x1a065
+#define regPCIEMSIX_VECT25_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT25_MSG_DATA 0x1a066
+#define regPCIEMSIX_VECT25_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT25_CONTROL 0x1a067
+#define regPCIEMSIX_VECT25_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT26_ADDR_LO 0x1a068
+#define regPCIEMSIX_VECT26_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT26_ADDR_HI 0x1a069
+#define regPCIEMSIX_VECT26_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT26_MSG_DATA 0x1a06a
+#define regPCIEMSIX_VECT26_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT26_CONTROL 0x1a06b
+#define regPCIEMSIX_VECT26_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT27_ADDR_LO 0x1a06c
+#define regPCIEMSIX_VECT27_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT27_ADDR_HI 0x1a06d
+#define regPCIEMSIX_VECT27_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT27_MSG_DATA 0x1a06e
+#define regPCIEMSIX_VECT27_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT27_CONTROL 0x1a06f
+#define regPCIEMSIX_VECT27_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT28_ADDR_LO 0x1a070
+#define regPCIEMSIX_VECT28_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT28_ADDR_HI 0x1a071
+#define regPCIEMSIX_VECT28_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT28_MSG_DATA 0x1a072
+#define regPCIEMSIX_VECT28_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT28_CONTROL 0x1a073
+#define regPCIEMSIX_VECT28_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT29_ADDR_LO 0x1a074
+#define regPCIEMSIX_VECT29_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT29_ADDR_HI 0x1a075
+#define regPCIEMSIX_VECT29_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT29_MSG_DATA 0x1a076
+#define regPCIEMSIX_VECT29_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT29_CONTROL 0x1a077
+#define regPCIEMSIX_VECT29_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT30_ADDR_LO 0x1a078
+#define regPCIEMSIX_VECT30_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT30_ADDR_HI 0x1a079
+#define regPCIEMSIX_VECT30_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT30_MSG_DATA 0x1a07a
+#define regPCIEMSIX_VECT30_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT30_CONTROL 0x1a07b
+#define regPCIEMSIX_VECT30_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT31_ADDR_LO 0x1a07c
+#define regPCIEMSIX_VECT31_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT31_ADDR_HI 0x1a07d
+#define regPCIEMSIX_VECT31_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT31_MSG_DATA 0x1a07e
+#define regPCIEMSIX_VECT31_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT31_CONTROL 0x1a07f
+#define regPCIEMSIX_VECT31_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT32_ADDR_LO 0x1a080
+#define regPCIEMSIX_VECT32_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT32_ADDR_HI 0x1a081
+#define regPCIEMSIX_VECT32_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT32_MSG_DATA 0x1a082
+#define regPCIEMSIX_VECT32_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT32_CONTROL 0x1a083
+#define regPCIEMSIX_VECT32_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT33_ADDR_LO 0x1a084
+#define regPCIEMSIX_VECT33_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT33_ADDR_HI 0x1a085
+#define regPCIEMSIX_VECT33_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT33_MSG_DATA 0x1a086
+#define regPCIEMSIX_VECT33_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT33_CONTROL 0x1a087
+#define regPCIEMSIX_VECT33_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT34_ADDR_LO 0x1a088
+#define regPCIEMSIX_VECT34_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT34_ADDR_HI 0x1a089
+#define regPCIEMSIX_VECT34_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT34_MSG_DATA 0x1a08a
+#define regPCIEMSIX_VECT34_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT34_CONTROL 0x1a08b
+#define regPCIEMSIX_VECT34_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT35_ADDR_LO 0x1a08c
+#define regPCIEMSIX_VECT35_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT35_ADDR_HI 0x1a08d
+#define regPCIEMSIX_VECT35_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT35_MSG_DATA 0x1a08e
+#define regPCIEMSIX_VECT35_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT35_CONTROL 0x1a08f
+#define regPCIEMSIX_VECT35_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT36_ADDR_LO 0x1a090
+#define regPCIEMSIX_VECT36_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT36_ADDR_HI 0x1a091
+#define regPCIEMSIX_VECT36_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT36_MSG_DATA 0x1a092
+#define regPCIEMSIX_VECT36_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT36_CONTROL 0x1a093
+#define regPCIEMSIX_VECT36_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT37_ADDR_LO 0x1a094
+#define regPCIEMSIX_VECT37_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT37_ADDR_HI 0x1a095
+#define regPCIEMSIX_VECT37_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT37_MSG_DATA 0x1a096
+#define regPCIEMSIX_VECT37_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT37_CONTROL 0x1a097
+#define regPCIEMSIX_VECT37_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT38_ADDR_LO 0x1a098
+#define regPCIEMSIX_VECT38_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT38_ADDR_HI 0x1a099
+#define regPCIEMSIX_VECT38_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT38_MSG_DATA 0x1a09a
+#define regPCIEMSIX_VECT38_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT38_CONTROL 0x1a09b
+#define regPCIEMSIX_VECT38_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT39_ADDR_LO 0x1a09c
+#define regPCIEMSIX_VECT39_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT39_ADDR_HI 0x1a09d
+#define regPCIEMSIX_VECT39_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT39_MSG_DATA 0x1a09e
+#define regPCIEMSIX_VECT39_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT39_CONTROL 0x1a09f
+#define regPCIEMSIX_VECT39_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT40_ADDR_LO 0x1a0a0
+#define regPCIEMSIX_VECT40_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT40_ADDR_HI 0x1a0a1
+#define regPCIEMSIX_VECT40_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT40_MSG_DATA 0x1a0a2
+#define regPCIEMSIX_VECT40_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT40_CONTROL 0x1a0a3
+#define regPCIEMSIX_VECT40_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT41_ADDR_LO 0x1a0a4
+#define regPCIEMSIX_VECT41_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT41_ADDR_HI 0x1a0a5
+#define regPCIEMSIX_VECT41_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT41_MSG_DATA 0x1a0a6
+#define regPCIEMSIX_VECT41_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT41_CONTROL 0x1a0a7
+#define regPCIEMSIX_VECT41_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT42_ADDR_LO 0x1a0a8
+#define regPCIEMSIX_VECT42_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT42_ADDR_HI 0x1a0a9
+#define regPCIEMSIX_VECT42_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT42_MSG_DATA 0x1a0aa
+#define regPCIEMSIX_VECT42_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT42_CONTROL 0x1a0ab
+#define regPCIEMSIX_VECT42_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT43_ADDR_LO 0x1a0ac
+#define regPCIEMSIX_VECT43_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT43_ADDR_HI 0x1a0ad
+#define regPCIEMSIX_VECT43_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT43_MSG_DATA 0x1a0ae
+#define regPCIEMSIX_VECT43_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT43_CONTROL 0x1a0af
+#define regPCIEMSIX_VECT43_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT44_ADDR_LO 0x1a0b0
+#define regPCIEMSIX_VECT44_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT44_ADDR_HI 0x1a0b1
+#define regPCIEMSIX_VECT44_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT44_MSG_DATA 0x1a0b2
+#define regPCIEMSIX_VECT44_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT44_CONTROL 0x1a0b3
+#define regPCIEMSIX_VECT44_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT45_ADDR_LO 0x1a0b4
+#define regPCIEMSIX_VECT45_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT45_ADDR_HI 0x1a0b5
+#define regPCIEMSIX_VECT45_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT45_MSG_DATA 0x1a0b6
+#define regPCIEMSIX_VECT45_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT45_CONTROL 0x1a0b7
+#define regPCIEMSIX_VECT45_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT46_ADDR_LO 0x1a0b8
+#define regPCIEMSIX_VECT46_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT46_ADDR_HI 0x1a0b9
+#define regPCIEMSIX_VECT46_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT46_MSG_DATA 0x1a0ba
+#define regPCIEMSIX_VECT46_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT46_CONTROL 0x1a0bb
+#define regPCIEMSIX_VECT46_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT47_ADDR_LO 0x1a0bc
+#define regPCIEMSIX_VECT47_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT47_ADDR_HI 0x1a0bd
+#define regPCIEMSIX_VECT47_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT47_MSG_DATA 0x1a0be
+#define regPCIEMSIX_VECT47_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT47_CONTROL 0x1a0bf
+#define regPCIEMSIX_VECT47_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT48_ADDR_LO 0x1a0c0
+#define regPCIEMSIX_VECT48_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT48_ADDR_HI 0x1a0c1
+#define regPCIEMSIX_VECT48_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT48_MSG_DATA 0x1a0c2
+#define regPCIEMSIX_VECT48_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT48_CONTROL 0x1a0c3
+#define regPCIEMSIX_VECT48_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT49_ADDR_LO 0x1a0c4
+#define regPCIEMSIX_VECT49_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT49_ADDR_HI 0x1a0c5
+#define regPCIEMSIX_VECT49_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT49_MSG_DATA 0x1a0c6
+#define regPCIEMSIX_VECT49_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT49_CONTROL 0x1a0c7
+#define regPCIEMSIX_VECT49_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT50_ADDR_LO 0x1a0c8
+#define regPCIEMSIX_VECT50_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT50_ADDR_HI 0x1a0c9
+#define regPCIEMSIX_VECT50_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT50_MSG_DATA 0x1a0ca
+#define regPCIEMSIX_VECT50_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT50_CONTROL 0x1a0cb
+#define regPCIEMSIX_VECT50_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT51_ADDR_LO 0x1a0cc
+#define regPCIEMSIX_VECT51_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT51_ADDR_HI 0x1a0cd
+#define regPCIEMSIX_VECT51_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT51_MSG_DATA 0x1a0ce
+#define regPCIEMSIX_VECT51_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT51_CONTROL 0x1a0cf
+#define regPCIEMSIX_VECT51_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT52_ADDR_LO 0x1a0d0
+#define regPCIEMSIX_VECT52_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT52_ADDR_HI 0x1a0d1
+#define regPCIEMSIX_VECT52_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT52_MSG_DATA 0x1a0d2
+#define regPCIEMSIX_VECT52_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT52_CONTROL 0x1a0d3
+#define regPCIEMSIX_VECT52_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT53_ADDR_LO 0x1a0d4
+#define regPCIEMSIX_VECT53_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT53_ADDR_HI 0x1a0d5
+#define regPCIEMSIX_VECT53_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT53_MSG_DATA 0x1a0d6
+#define regPCIEMSIX_VECT53_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT53_CONTROL 0x1a0d7
+#define regPCIEMSIX_VECT53_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT54_ADDR_LO 0x1a0d8
+#define regPCIEMSIX_VECT54_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT54_ADDR_HI 0x1a0d9
+#define regPCIEMSIX_VECT54_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT54_MSG_DATA 0x1a0da
+#define regPCIEMSIX_VECT54_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT54_CONTROL 0x1a0db
+#define regPCIEMSIX_VECT54_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT55_ADDR_LO 0x1a0dc
+#define regPCIEMSIX_VECT55_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT55_ADDR_HI 0x1a0dd
+#define regPCIEMSIX_VECT55_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT55_MSG_DATA 0x1a0de
+#define regPCIEMSIX_VECT55_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT55_CONTROL 0x1a0df
+#define regPCIEMSIX_VECT55_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT56_ADDR_LO 0x1a0e0
+#define regPCIEMSIX_VECT56_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT56_ADDR_HI 0x1a0e1
+#define regPCIEMSIX_VECT56_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT56_MSG_DATA 0x1a0e2
+#define regPCIEMSIX_VECT56_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT56_CONTROL 0x1a0e3
+#define regPCIEMSIX_VECT56_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT57_ADDR_LO 0x1a0e4
+#define regPCIEMSIX_VECT57_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT57_ADDR_HI 0x1a0e5
+#define regPCIEMSIX_VECT57_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT57_MSG_DATA 0x1a0e6
+#define regPCIEMSIX_VECT57_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT57_CONTROL 0x1a0e7
+#define regPCIEMSIX_VECT57_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT58_ADDR_LO 0x1a0e8
+#define regPCIEMSIX_VECT58_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT58_ADDR_HI 0x1a0e9
+#define regPCIEMSIX_VECT58_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT58_MSG_DATA 0x1a0ea
+#define regPCIEMSIX_VECT58_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT58_CONTROL 0x1a0eb
+#define regPCIEMSIX_VECT58_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT59_ADDR_LO 0x1a0ec
+#define regPCIEMSIX_VECT59_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT59_ADDR_HI 0x1a0ed
+#define regPCIEMSIX_VECT59_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT59_MSG_DATA 0x1a0ee
+#define regPCIEMSIX_VECT59_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT59_CONTROL 0x1a0ef
+#define regPCIEMSIX_VECT59_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT60_ADDR_LO 0x1a0f0
+#define regPCIEMSIX_VECT60_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT60_ADDR_HI 0x1a0f1
+#define regPCIEMSIX_VECT60_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT60_MSG_DATA 0x1a0f2
+#define regPCIEMSIX_VECT60_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT60_CONTROL 0x1a0f3
+#define regPCIEMSIX_VECT60_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT61_ADDR_LO 0x1a0f4
+#define regPCIEMSIX_VECT61_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT61_ADDR_HI 0x1a0f5
+#define regPCIEMSIX_VECT61_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT61_MSG_DATA 0x1a0f6
+#define regPCIEMSIX_VECT61_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT61_CONTROL 0x1a0f7
+#define regPCIEMSIX_VECT61_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT62_ADDR_LO 0x1a0f8
+#define regPCIEMSIX_VECT62_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT62_ADDR_HI 0x1a0f9
+#define regPCIEMSIX_VECT62_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT62_MSG_DATA 0x1a0fa
+#define regPCIEMSIX_VECT62_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT62_CONTROL 0x1a0fb
+#define regPCIEMSIX_VECT62_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT63_ADDR_LO 0x1a0fc
+#define regPCIEMSIX_VECT63_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT63_ADDR_HI 0x1a0fd
+#define regPCIEMSIX_VECT63_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT63_MSG_DATA 0x1a0fe
+#define regPCIEMSIX_VECT63_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT63_CONTROL 0x1a0ff
+#define regPCIEMSIX_VECT63_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT64_ADDR_LO 0x1a100
+#define regPCIEMSIX_VECT64_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT64_ADDR_HI 0x1a101
+#define regPCIEMSIX_VECT64_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT64_MSG_DATA 0x1a102
+#define regPCIEMSIX_VECT64_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT64_CONTROL 0x1a103
+#define regPCIEMSIX_VECT64_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT65_ADDR_LO 0x1a104
+#define regPCIEMSIX_VECT65_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT65_ADDR_HI 0x1a105
+#define regPCIEMSIX_VECT65_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT65_MSG_DATA 0x1a106
+#define regPCIEMSIX_VECT65_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT65_CONTROL 0x1a107
+#define regPCIEMSIX_VECT65_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT66_ADDR_LO 0x1a108
+#define regPCIEMSIX_VECT66_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT66_ADDR_HI 0x1a109
+#define regPCIEMSIX_VECT66_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT66_MSG_DATA 0x1a10a
+#define regPCIEMSIX_VECT66_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT66_CONTROL 0x1a10b
+#define regPCIEMSIX_VECT66_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT67_ADDR_LO 0x1a10c
+#define regPCIEMSIX_VECT67_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT67_ADDR_HI 0x1a10d
+#define regPCIEMSIX_VECT67_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT67_MSG_DATA 0x1a10e
+#define regPCIEMSIX_VECT67_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT67_CONTROL 0x1a10f
+#define regPCIEMSIX_VECT67_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT68_ADDR_LO 0x1a110
+#define regPCIEMSIX_VECT68_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT68_ADDR_HI 0x1a111
+#define regPCIEMSIX_VECT68_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT68_MSG_DATA 0x1a112
+#define regPCIEMSIX_VECT68_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT68_CONTROL 0x1a113
+#define regPCIEMSIX_VECT68_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT69_ADDR_LO 0x1a114
+#define regPCIEMSIX_VECT69_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT69_ADDR_HI 0x1a115
+#define regPCIEMSIX_VECT69_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT69_MSG_DATA 0x1a116
+#define regPCIEMSIX_VECT69_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT69_CONTROL 0x1a117
+#define regPCIEMSIX_VECT69_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT70_ADDR_LO 0x1a118
+#define regPCIEMSIX_VECT70_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT70_ADDR_HI 0x1a119
+#define regPCIEMSIX_VECT70_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT70_MSG_DATA 0x1a11a
+#define regPCIEMSIX_VECT70_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT70_CONTROL 0x1a11b
+#define regPCIEMSIX_VECT70_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT71_ADDR_LO 0x1a11c
+#define regPCIEMSIX_VECT71_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT71_ADDR_HI 0x1a11d
+#define regPCIEMSIX_VECT71_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT71_MSG_DATA 0x1a11e
+#define regPCIEMSIX_VECT71_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT71_CONTROL 0x1a11f
+#define regPCIEMSIX_VECT71_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT72_ADDR_LO 0x1a120
+#define regPCIEMSIX_VECT72_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT72_ADDR_HI 0x1a121
+#define regPCIEMSIX_VECT72_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT72_MSG_DATA 0x1a122
+#define regPCIEMSIX_VECT72_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT72_CONTROL 0x1a123
+#define regPCIEMSIX_VECT72_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT73_ADDR_LO 0x1a124
+#define regPCIEMSIX_VECT73_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT73_ADDR_HI 0x1a125
+#define regPCIEMSIX_VECT73_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT73_MSG_DATA 0x1a126
+#define regPCIEMSIX_VECT73_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT73_CONTROL 0x1a127
+#define regPCIEMSIX_VECT73_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT74_ADDR_LO 0x1a128
+#define regPCIEMSIX_VECT74_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT74_ADDR_HI 0x1a129
+#define regPCIEMSIX_VECT74_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT74_MSG_DATA 0x1a12a
+#define regPCIEMSIX_VECT74_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT74_CONTROL 0x1a12b
+#define regPCIEMSIX_VECT74_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT75_ADDR_LO 0x1a12c
+#define regPCIEMSIX_VECT75_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT75_ADDR_HI 0x1a12d
+#define regPCIEMSIX_VECT75_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT75_MSG_DATA 0x1a12e
+#define regPCIEMSIX_VECT75_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT75_CONTROL 0x1a12f
+#define regPCIEMSIX_VECT75_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT76_ADDR_LO 0x1a130
+#define regPCIEMSIX_VECT76_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT76_ADDR_HI 0x1a131
+#define regPCIEMSIX_VECT76_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT76_MSG_DATA 0x1a132
+#define regPCIEMSIX_VECT76_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT76_CONTROL 0x1a133
+#define regPCIEMSIX_VECT76_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT77_ADDR_LO 0x1a134
+#define regPCIEMSIX_VECT77_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT77_ADDR_HI 0x1a135
+#define regPCIEMSIX_VECT77_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT77_MSG_DATA 0x1a136
+#define regPCIEMSIX_VECT77_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT77_CONTROL 0x1a137
+#define regPCIEMSIX_VECT77_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT78_ADDR_LO 0x1a138
+#define regPCIEMSIX_VECT78_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT78_ADDR_HI 0x1a139
+#define regPCIEMSIX_VECT78_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT78_MSG_DATA 0x1a13a
+#define regPCIEMSIX_VECT78_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT78_CONTROL 0x1a13b
+#define regPCIEMSIX_VECT78_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT79_ADDR_LO 0x1a13c
+#define regPCIEMSIX_VECT79_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT79_ADDR_HI 0x1a13d
+#define regPCIEMSIX_VECT79_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT79_MSG_DATA 0x1a13e
+#define regPCIEMSIX_VECT79_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT79_CONTROL 0x1a13f
+#define regPCIEMSIX_VECT79_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT80_ADDR_LO 0x1a140
+#define regPCIEMSIX_VECT80_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT80_ADDR_HI 0x1a141
+#define regPCIEMSIX_VECT80_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT80_MSG_DATA 0x1a142
+#define regPCIEMSIX_VECT80_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT80_CONTROL 0x1a143
+#define regPCIEMSIX_VECT80_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT81_ADDR_LO 0x1a144
+#define regPCIEMSIX_VECT81_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT81_ADDR_HI 0x1a145
+#define regPCIEMSIX_VECT81_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT81_MSG_DATA 0x1a146
+#define regPCIEMSIX_VECT81_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT81_CONTROL 0x1a147
+#define regPCIEMSIX_VECT81_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT82_ADDR_LO 0x1a148
+#define regPCIEMSIX_VECT82_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT82_ADDR_HI 0x1a149
+#define regPCIEMSIX_VECT82_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT82_MSG_DATA 0x1a14a
+#define regPCIEMSIX_VECT82_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT82_CONTROL 0x1a14b
+#define regPCIEMSIX_VECT82_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT83_ADDR_LO 0x1a14c
+#define regPCIEMSIX_VECT83_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT83_ADDR_HI 0x1a14d
+#define regPCIEMSIX_VECT83_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT83_MSG_DATA 0x1a14e
+#define regPCIEMSIX_VECT83_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT83_CONTROL 0x1a14f
+#define regPCIEMSIX_VECT83_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT84_ADDR_LO 0x1a150
+#define regPCIEMSIX_VECT84_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT84_ADDR_HI 0x1a151
+#define regPCIEMSIX_VECT84_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT84_MSG_DATA 0x1a152
+#define regPCIEMSIX_VECT84_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT84_CONTROL 0x1a153
+#define regPCIEMSIX_VECT84_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT85_ADDR_LO 0x1a154
+#define regPCIEMSIX_VECT85_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT85_ADDR_HI 0x1a155
+#define regPCIEMSIX_VECT85_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT85_MSG_DATA 0x1a156
+#define regPCIEMSIX_VECT85_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT85_CONTROL 0x1a157
+#define regPCIEMSIX_VECT85_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT86_ADDR_LO 0x1a158
+#define regPCIEMSIX_VECT86_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT86_ADDR_HI 0x1a159
+#define regPCIEMSIX_VECT86_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT86_MSG_DATA 0x1a15a
+#define regPCIEMSIX_VECT86_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT86_CONTROL 0x1a15b
+#define regPCIEMSIX_VECT86_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT87_ADDR_LO 0x1a15c
+#define regPCIEMSIX_VECT87_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT87_ADDR_HI 0x1a15d
+#define regPCIEMSIX_VECT87_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT87_MSG_DATA 0x1a15e
+#define regPCIEMSIX_VECT87_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT87_CONTROL 0x1a15f
+#define regPCIEMSIX_VECT87_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT88_ADDR_LO 0x1a160
+#define regPCIEMSIX_VECT88_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT88_ADDR_HI 0x1a161
+#define regPCIEMSIX_VECT88_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT88_MSG_DATA 0x1a162
+#define regPCIEMSIX_VECT88_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT88_CONTROL 0x1a163
+#define regPCIEMSIX_VECT88_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT89_ADDR_LO 0x1a164
+#define regPCIEMSIX_VECT89_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT89_ADDR_HI 0x1a165
+#define regPCIEMSIX_VECT89_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT89_MSG_DATA 0x1a166
+#define regPCIEMSIX_VECT89_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT89_CONTROL 0x1a167
+#define regPCIEMSIX_VECT89_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT90_ADDR_LO 0x1a168
+#define regPCIEMSIX_VECT90_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT90_ADDR_HI 0x1a169
+#define regPCIEMSIX_VECT90_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT90_MSG_DATA 0x1a16a
+#define regPCIEMSIX_VECT90_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT90_CONTROL 0x1a16b
+#define regPCIEMSIX_VECT90_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT91_ADDR_LO 0x1a16c
+#define regPCIEMSIX_VECT91_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT91_ADDR_HI 0x1a16d
+#define regPCIEMSIX_VECT91_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT91_MSG_DATA 0x1a16e
+#define regPCIEMSIX_VECT91_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT91_CONTROL 0x1a16f
+#define regPCIEMSIX_VECT91_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT92_ADDR_LO 0x1a170
+#define regPCIEMSIX_VECT92_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT92_ADDR_HI 0x1a171
+#define regPCIEMSIX_VECT92_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT92_MSG_DATA 0x1a172
+#define regPCIEMSIX_VECT92_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT92_CONTROL 0x1a173
+#define regPCIEMSIX_VECT92_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT93_ADDR_LO 0x1a174
+#define regPCIEMSIX_VECT93_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT93_ADDR_HI 0x1a175
+#define regPCIEMSIX_VECT93_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT93_MSG_DATA 0x1a176
+#define regPCIEMSIX_VECT93_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT93_CONTROL 0x1a177
+#define regPCIEMSIX_VECT93_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT94_ADDR_LO 0x1a178
+#define regPCIEMSIX_VECT94_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT94_ADDR_HI 0x1a179
+#define regPCIEMSIX_VECT94_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT94_MSG_DATA 0x1a17a
+#define regPCIEMSIX_VECT94_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT94_CONTROL 0x1a17b
+#define regPCIEMSIX_VECT94_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT95_ADDR_LO 0x1a17c
+#define regPCIEMSIX_VECT95_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT95_ADDR_HI 0x1a17d
+#define regPCIEMSIX_VECT95_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT95_MSG_DATA 0x1a17e
+#define regPCIEMSIX_VECT95_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT95_CONTROL 0x1a17f
+#define regPCIEMSIX_VECT95_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT96_ADDR_LO 0x1a180
+#define regPCIEMSIX_VECT96_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT96_ADDR_HI 0x1a181
+#define regPCIEMSIX_VECT96_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT96_MSG_DATA 0x1a182
+#define regPCIEMSIX_VECT96_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT96_CONTROL 0x1a183
+#define regPCIEMSIX_VECT96_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT97_ADDR_LO 0x1a184
+#define regPCIEMSIX_VECT97_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT97_ADDR_HI 0x1a185
+#define regPCIEMSIX_VECT97_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT97_MSG_DATA 0x1a186
+#define regPCIEMSIX_VECT97_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT97_CONTROL 0x1a187
+#define regPCIEMSIX_VECT97_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT98_ADDR_LO 0x1a188
+#define regPCIEMSIX_VECT98_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT98_ADDR_HI 0x1a189
+#define regPCIEMSIX_VECT98_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT98_MSG_DATA 0x1a18a
+#define regPCIEMSIX_VECT98_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT98_CONTROL 0x1a18b
+#define regPCIEMSIX_VECT98_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT99_ADDR_LO 0x1a18c
+#define regPCIEMSIX_VECT99_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT99_ADDR_HI 0x1a18d
+#define regPCIEMSIX_VECT99_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT99_MSG_DATA 0x1a18e
+#define regPCIEMSIX_VECT99_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT99_CONTROL 0x1a18f
+#define regPCIEMSIX_VECT99_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT100_ADDR_LO 0x1a190
+#define regPCIEMSIX_VECT100_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT100_ADDR_HI 0x1a191
+#define regPCIEMSIX_VECT100_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT100_MSG_DATA 0x1a192
+#define regPCIEMSIX_VECT100_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT100_CONTROL 0x1a193
+#define regPCIEMSIX_VECT100_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT101_ADDR_LO 0x1a194
+#define regPCIEMSIX_VECT101_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT101_ADDR_HI 0x1a195
+#define regPCIEMSIX_VECT101_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT101_MSG_DATA 0x1a196
+#define regPCIEMSIX_VECT101_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT101_CONTROL 0x1a197
+#define regPCIEMSIX_VECT101_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT102_ADDR_LO 0x1a198
+#define regPCIEMSIX_VECT102_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT102_ADDR_HI 0x1a199
+#define regPCIEMSIX_VECT102_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT102_MSG_DATA 0x1a19a
+#define regPCIEMSIX_VECT102_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT102_CONTROL 0x1a19b
+#define regPCIEMSIX_VECT102_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT103_ADDR_LO 0x1a19c
+#define regPCIEMSIX_VECT103_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT103_ADDR_HI 0x1a19d
+#define regPCIEMSIX_VECT103_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT103_MSG_DATA 0x1a19e
+#define regPCIEMSIX_VECT103_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT103_CONTROL 0x1a19f
+#define regPCIEMSIX_VECT103_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT104_ADDR_LO 0x1a1a0
+#define regPCIEMSIX_VECT104_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT104_ADDR_HI 0x1a1a1
+#define regPCIEMSIX_VECT104_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT104_MSG_DATA 0x1a1a2
+#define regPCIEMSIX_VECT104_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT104_CONTROL 0x1a1a3
+#define regPCIEMSIX_VECT104_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT105_ADDR_LO 0x1a1a4
+#define regPCIEMSIX_VECT105_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT105_ADDR_HI 0x1a1a5
+#define regPCIEMSIX_VECT105_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT105_MSG_DATA 0x1a1a6
+#define regPCIEMSIX_VECT105_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT105_CONTROL 0x1a1a7
+#define regPCIEMSIX_VECT105_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT106_ADDR_LO 0x1a1a8
+#define regPCIEMSIX_VECT106_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT106_ADDR_HI 0x1a1a9
+#define regPCIEMSIX_VECT106_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT106_MSG_DATA 0x1a1aa
+#define regPCIEMSIX_VECT106_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT106_CONTROL 0x1a1ab
+#define regPCIEMSIX_VECT106_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT107_ADDR_LO 0x1a1ac
+#define regPCIEMSIX_VECT107_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT107_ADDR_HI 0x1a1ad
+#define regPCIEMSIX_VECT107_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT107_MSG_DATA 0x1a1ae
+#define regPCIEMSIX_VECT107_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT107_CONTROL 0x1a1af
+#define regPCIEMSIX_VECT107_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT108_ADDR_LO 0x1a1b0
+#define regPCIEMSIX_VECT108_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT108_ADDR_HI 0x1a1b1
+#define regPCIEMSIX_VECT108_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT108_MSG_DATA 0x1a1b2
+#define regPCIEMSIX_VECT108_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT108_CONTROL 0x1a1b3
+#define regPCIEMSIX_VECT108_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT109_ADDR_LO 0x1a1b4
+#define regPCIEMSIX_VECT109_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT109_ADDR_HI 0x1a1b5
+#define regPCIEMSIX_VECT109_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT109_MSG_DATA 0x1a1b6
+#define regPCIEMSIX_VECT109_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT109_CONTROL 0x1a1b7
+#define regPCIEMSIX_VECT109_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT110_ADDR_LO 0x1a1b8
+#define regPCIEMSIX_VECT110_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT110_ADDR_HI 0x1a1b9
+#define regPCIEMSIX_VECT110_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT110_MSG_DATA 0x1a1ba
+#define regPCIEMSIX_VECT110_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT110_CONTROL 0x1a1bb
+#define regPCIEMSIX_VECT110_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT111_ADDR_LO 0x1a1bc
+#define regPCIEMSIX_VECT111_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT111_ADDR_HI 0x1a1bd
+#define regPCIEMSIX_VECT111_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT111_MSG_DATA 0x1a1be
+#define regPCIEMSIX_VECT111_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT111_CONTROL 0x1a1bf
+#define regPCIEMSIX_VECT111_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT112_ADDR_LO 0x1a1c0
+#define regPCIEMSIX_VECT112_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT112_ADDR_HI 0x1a1c1
+#define regPCIEMSIX_VECT112_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT112_MSG_DATA 0x1a1c2
+#define regPCIEMSIX_VECT112_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT112_CONTROL 0x1a1c3
+#define regPCIEMSIX_VECT112_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT113_ADDR_LO 0x1a1c4
+#define regPCIEMSIX_VECT113_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT113_ADDR_HI 0x1a1c5
+#define regPCIEMSIX_VECT113_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT113_MSG_DATA 0x1a1c6
+#define regPCIEMSIX_VECT113_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT113_CONTROL 0x1a1c7
+#define regPCIEMSIX_VECT113_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT114_ADDR_LO 0x1a1c8
+#define regPCIEMSIX_VECT114_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT114_ADDR_HI 0x1a1c9
+#define regPCIEMSIX_VECT114_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT114_MSG_DATA 0x1a1ca
+#define regPCIEMSIX_VECT114_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT114_CONTROL 0x1a1cb
+#define regPCIEMSIX_VECT114_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT115_ADDR_LO 0x1a1cc
+#define regPCIEMSIX_VECT115_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT115_ADDR_HI 0x1a1cd
+#define regPCIEMSIX_VECT115_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT115_MSG_DATA 0x1a1ce
+#define regPCIEMSIX_VECT115_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT115_CONTROL 0x1a1cf
+#define regPCIEMSIX_VECT115_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT116_ADDR_LO 0x1a1d0
+#define regPCIEMSIX_VECT116_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT116_ADDR_HI 0x1a1d1
+#define regPCIEMSIX_VECT116_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT116_MSG_DATA 0x1a1d2
+#define regPCIEMSIX_VECT116_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT116_CONTROL 0x1a1d3
+#define regPCIEMSIX_VECT116_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT117_ADDR_LO 0x1a1d4
+#define regPCIEMSIX_VECT117_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT117_ADDR_HI 0x1a1d5
+#define regPCIEMSIX_VECT117_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT117_MSG_DATA 0x1a1d6
+#define regPCIEMSIX_VECT117_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT117_CONTROL 0x1a1d7
+#define regPCIEMSIX_VECT117_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT118_ADDR_LO 0x1a1d8
+#define regPCIEMSIX_VECT118_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT118_ADDR_HI 0x1a1d9
+#define regPCIEMSIX_VECT118_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT118_MSG_DATA 0x1a1da
+#define regPCIEMSIX_VECT118_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT118_CONTROL 0x1a1db
+#define regPCIEMSIX_VECT118_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT119_ADDR_LO 0x1a1dc
+#define regPCIEMSIX_VECT119_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT119_ADDR_HI 0x1a1dd
+#define regPCIEMSIX_VECT119_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT119_MSG_DATA 0x1a1de
+#define regPCIEMSIX_VECT119_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT119_CONTROL 0x1a1df
+#define regPCIEMSIX_VECT119_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT120_ADDR_LO 0x1a1e0
+#define regPCIEMSIX_VECT120_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT120_ADDR_HI 0x1a1e1
+#define regPCIEMSIX_VECT120_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT120_MSG_DATA 0x1a1e2
+#define regPCIEMSIX_VECT120_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT120_CONTROL 0x1a1e3
+#define regPCIEMSIX_VECT120_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT121_ADDR_LO 0x1a1e4
+#define regPCIEMSIX_VECT121_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT121_ADDR_HI 0x1a1e5
+#define regPCIEMSIX_VECT121_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT121_MSG_DATA 0x1a1e6
+#define regPCIEMSIX_VECT121_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT121_CONTROL 0x1a1e7
+#define regPCIEMSIX_VECT121_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT122_ADDR_LO 0x1a1e8
+#define regPCIEMSIX_VECT122_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT122_ADDR_HI 0x1a1e9
+#define regPCIEMSIX_VECT122_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT122_MSG_DATA 0x1a1ea
+#define regPCIEMSIX_VECT122_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT122_CONTROL 0x1a1eb
+#define regPCIEMSIX_VECT122_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT123_ADDR_LO 0x1a1ec
+#define regPCIEMSIX_VECT123_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT123_ADDR_HI 0x1a1ed
+#define regPCIEMSIX_VECT123_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT123_MSG_DATA 0x1a1ee
+#define regPCIEMSIX_VECT123_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT123_CONTROL 0x1a1ef
+#define regPCIEMSIX_VECT123_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT124_ADDR_LO 0x1a1f0
+#define regPCIEMSIX_VECT124_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT124_ADDR_HI 0x1a1f1
+#define regPCIEMSIX_VECT124_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT124_MSG_DATA 0x1a1f2
+#define regPCIEMSIX_VECT124_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT124_CONTROL 0x1a1f3
+#define regPCIEMSIX_VECT124_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT125_ADDR_LO 0x1a1f4
+#define regPCIEMSIX_VECT125_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT125_ADDR_HI 0x1a1f5
+#define regPCIEMSIX_VECT125_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT125_MSG_DATA 0x1a1f6
+#define regPCIEMSIX_VECT125_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT125_CONTROL 0x1a1f7
+#define regPCIEMSIX_VECT125_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT126_ADDR_LO 0x1a1f8
+#define regPCIEMSIX_VECT126_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT126_ADDR_HI 0x1a1f9
+#define regPCIEMSIX_VECT126_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT126_MSG_DATA 0x1a1fa
+#define regPCIEMSIX_VECT126_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT126_CONTROL 0x1a1fb
+#define regPCIEMSIX_VECT126_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT127_ADDR_LO 0x1a1fc
+#define regPCIEMSIX_VECT127_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT127_ADDR_HI 0x1a1fd
+#define regPCIEMSIX_VECT127_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT127_MSG_DATA 0x1a1fe
+#define regPCIEMSIX_VECT127_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT127_CONTROL 0x1a1ff
+#define regPCIEMSIX_VECT127_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT128_ADDR_LO 0x1a200
+#define regPCIEMSIX_VECT128_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT128_ADDR_HI 0x1a201
+#define regPCIEMSIX_VECT128_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT128_MSG_DATA 0x1a202
+#define regPCIEMSIX_VECT128_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT128_CONTROL 0x1a203
+#define regPCIEMSIX_VECT128_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT129_ADDR_LO 0x1a204
+#define regPCIEMSIX_VECT129_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT129_ADDR_HI 0x1a205
+#define regPCIEMSIX_VECT129_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT129_MSG_DATA 0x1a206
+#define regPCIEMSIX_VECT129_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT129_CONTROL 0x1a207
+#define regPCIEMSIX_VECT129_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT130_ADDR_LO 0x1a208
+#define regPCIEMSIX_VECT130_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT130_ADDR_HI 0x1a209
+#define regPCIEMSIX_VECT130_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT130_MSG_DATA 0x1a20a
+#define regPCIEMSIX_VECT130_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT130_CONTROL 0x1a20b
+#define regPCIEMSIX_VECT130_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT131_ADDR_LO 0x1a20c
+#define regPCIEMSIX_VECT131_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT131_ADDR_HI 0x1a20d
+#define regPCIEMSIX_VECT131_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT131_MSG_DATA 0x1a20e
+#define regPCIEMSIX_VECT131_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT131_CONTROL 0x1a20f
+#define regPCIEMSIX_VECT131_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT132_ADDR_LO 0x1a210
+#define regPCIEMSIX_VECT132_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT132_ADDR_HI 0x1a211
+#define regPCIEMSIX_VECT132_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT132_MSG_DATA 0x1a212
+#define regPCIEMSIX_VECT132_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT132_CONTROL 0x1a213
+#define regPCIEMSIX_VECT132_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT133_ADDR_LO 0x1a214
+#define regPCIEMSIX_VECT133_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT133_ADDR_HI 0x1a215
+#define regPCIEMSIX_VECT133_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT133_MSG_DATA 0x1a216
+#define regPCIEMSIX_VECT133_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT133_CONTROL 0x1a217
+#define regPCIEMSIX_VECT133_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT134_ADDR_LO 0x1a218
+#define regPCIEMSIX_VECT134_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT134_ADDR_HI 0x1a219
+#define regPCIEMSIX_VECT134_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT134_MSG_DATA 0x1a21a
+#define regPCIEMSIX_VECT134_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT134_CONTROL 0x1a21b
+#define regPCIEMSIX_VECT134_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT135_ADDR_LO 0x1a21c
+#define regPCIEMSIX_VECT135_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT135_ADDR_HI 0x1a21d
+#define regPCIEMSIX_VECT135_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT135_MSG_DATA 0x1a21e
+#define regPCIEMSIX_VECT135_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT135_CONTROL 0x1a21f
+#define regPCIEMSIX_VECT135_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT136_ADDR_LO 0x1a220
+#define regPCIEMSIX_VECT136_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT136_ADDR_HI 0x1a221
+#define regPCIEMSIX_VECT136_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT136_MSG_DATA 0x1a222
+#define regPCIEMSIX_VECT136_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT136_CONTROL 0x1a223
+#define regPCIEMSIX_VECT136_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT137_ADDR_LO 0x1a224
+#define regPCIEMSIX_VECT137_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT137_ADDR_HI 0x1a225
+#define regPCIEMSIX_VECT137_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT137_MSG_DATA 0x1a226
+#define regPCIEMSIX_VECT137_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT137_CONTROL 0x1a227
+#define regPCIEMSIX_VECT137_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT138_ADDR_LO 0x1a228
+#define regPCIEMSIX_VECT138_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT138_ADDR_HI 0x1a229
+#define regPCIEMSIX_VECT138_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT138_MSG_DATA 0x1a22a
+#define regPCIEMSIX_VECT138_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT138_CONTROL 0x1a22b
+#define regPCIEMSIX_VECT138_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT139_ADDR_LO 0x1a22c
+#define regPCIEMSIX_VECT139_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT139_ADDR_HI 0x1a22d
+#define regPCIEMSIX_VECT139_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT139_MSG_DATA 0x1a22e
+#define regPCIEMSIX_VECT139_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT139_CONTROL 0x1a22f
+#define regPCIEMSIX_VECT139_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT140_ADDR_LO 0x1a230
+#define regPCIEMSIX_VECT140_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT140_ADDR_HI 0x1a231
+#define regPCIEMSIX_VECT140_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT140_MSG_DATA 0x1a232
+#define regPCIEMSIX_VECT140_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT140_CONTROL 0x1a233
+#define regPCIEMSIX_VECT140_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT141_ADDR_LO 0x1a234
+#define regPCIEMSIX_VECT141_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT141_ADDR_HI 0x1a235
+#define regPCIEMSIX_VECT141_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT141_MSG_DATA 0x1a236
+#define regPCIEMSIX_VECT141_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT141_CONTROL 0x1a237
+#define regPCIEMSIX_VECT141_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT142_ADDR_LO 0x1a238
+#define regPCIEMSIX_VECT142_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT142_ADDR_HI 0x1a239
+#define regPCIEMSIX_VECT142_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT142_MSG_DATA 0x1a23a
+#define regPCIEMSIX_VECT142_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT142_CONTROL 0x1a23b
+#define regPCIEMSIX_VECT142_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT143_ADDR_LO 0x1a23c
+#define regPCIEMSIX_VECT143_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT143_ADDR_HI 0x1a23d
+#define regPCIEMSIX_VECT143_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT143_MSG_DATA 0x1a23e
+#define regPCIEMSIX_VECT143_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT143_CONTROL 0x1a23f
+#define regPCIEMSIX_VECT143_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT144_ADDR_LO 0x1a240
+#define regPCIEMSIX_VECT144_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT144_ADDR_HI 0x1a241
+#define regPCIEMSIX_VECT144_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT144_MSG_DATA 0x1a242
+#define regPCIEMSIX_VECT144_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT144_CONTROL 0x1a243
+#define regPCIEMSIX_VECT144_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT145_ADDR_LO 0x1a244
+#define regPCIEMSIX_VECT145_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT145_ADDR_HI 0x1a245
+#define regPCIEMSIX_VECT145_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT145_MSG_DATA 0x1a246
+#define regPCIEMSIX_VECT145_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT145_CONTROL 0x1a247
+#define regPCIEMSIX_VECT145_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT146_ADDR_LO 0x1a248
+#define regPCIEMSIX_VECT146_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT146_ADDR_HI 0x1a249
+#define regPCIEMSIX_VECT146_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT146_MSG_DATA 0x1a24a
+#define regPCIEMSIX_VECT146_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT146_CONTROL 0x1a24b
+#define regPCIEMSIX_VECT146_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT147_ADDR_LO 0x1a24c
+#define regPCIEMSIX_VECT147_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT147_ADDR_HI 0x1a24d
+#define regPCIEMSIX_VECT147_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT147_MSG_DATA 0x1a24e
+#define regPCIEMSIX_VECT147_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT147_CONTROL 0x1a24f
+#define regPCIEMSIX_VECT147_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT148_ADDR_LO 0x1a250
+#define regPCIEMSIX_VECT148_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT148_ADDR_HI 0x1a251
+#define regPCIEMSIX_VECT148_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT148_MSG_DATA 0x1a252
+#define regPCIEMSIX_VECT148_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT148_CONTROL 0x1a253
+#define regPCIEMSIX_VECT148_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT149_ADDR_LO 0x1a254
+#define regPCIEMSIX_VECT149_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT149_ADDR_HI 0x1a255
+#define regPCIEMSIX_VECT149_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT149_MSG_DATA 0x1a256
+#define regPCIEMSIX_VECT149_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT149_CONTROL 0x1a257
+#define regPCIEMSIX_VECT149_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT150_ADDR_LO 0x1a258
+#define regPCIEMSIX_VECT150_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT150_ADDR_HI 0x1a259
+#define regPCIEMSIX_VECT150_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT150_MSG_DATA 0x1a25a
+#define regPCIEMSIX_VECT150_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT150_CONTROL 0x1a25b
+#define regPCIEMSIX_VECT150_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT151_ADDR_LO 0x1a25c
+#define regPCIEMSIX_VECT151_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT151_ADDR_HI 0x1a25d
+#define regPCIEMSIX_VECT151_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT151_MSG_DATA 0x1a25e
+#define regPCIEMSIX_VECT151_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT151_CONTROL 0x1a25f
+#define regPCIEMSIX_VECT151_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT152_ADDR_LO 0x1a260
+#define regPCIEMSIX_VECT152_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT152_ADDR_HI 0x1a261
+#define regPCIEMSIX_VECT152_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT152_MSG_DATA 0x1a262
+#define regPCIEMSIX_VECT152_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT152_CONTROL 0x1a263
+#define regPCIEMSIX_VECT152_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT153_ADDR_LO 0x1a264
+#define regPCIEMSIX_VECT153_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT153_ADDR_HI 0x1a265
+#define regPCIEMSIX_VECT153_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT153_MSG_DATA 0x1a266
+#define regPCIEMSIX_VECT153_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT153_CONTROL 0x1a267
+#define regPCIEMSIX_VECT153_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT154_ADDR_LO 0x1a268
+#define regPCIEMSIX_VECT154_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT154_ADDR_HI 0x1a269
+#define regPCIEMSIX_VECT154_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT154_MSG_DATA 0x1a26a
+#define regPCIEMSIX_VECT154_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT154_CONTROL 0x1a26b
+#define regPCIEMSIX_VECT154_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT155_ADDR_LO 0x1a26c
+#define regPCIEMSIX_VECT155_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT155_ADDR_HI 0x1a26d
+#define regPCIEMSIX_VECT155_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT155_MSG_DATA 0x1a26e
+#define regPCIEMSIX_VECT155_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT155_CONTROL 0x1a26f
+#define regPCIEMSIX_VECT155_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT156_ADDR_LO 0x1a270
+#define regPCIEMSIX_VECT156_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT156_ADDR_HI 0x1a271
+#define regPCIEMSIX_VECT156_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT156_MSG_DATA 0x1a272
+#define regPCIEMSIX_VECT156_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT156_CONTROL 0x1a273
+#define regPCIEMSIX_VECT156_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT157_ADDR_LO 0x1a274
+#define regPCIEMSIX_VECT157_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT157_ADDR_HI 0x1a275
+#define regPCIEMSIX_VECT157_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT157_MSG_DATA 0x1a276
+#define regPCIEMSIX_VECT157_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT157_CONTROL 0x1a277
+#define regPCIEMSIX_VECT157_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT158_ADDR_LO 0x1a278
+#define regPCIEMSIX_VECT158_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT158_ADDR_HI 0x1a279
+#define regPCIEMSIX_VECT158_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT158_MSG_DATA 0x1a27a
+#define regPCIEMSIX_VECT158_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT158_CONTROL 0x1a27b
+#define regPCIEMSIX_VECT158_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT159_ADDR_LO 0x1a27c
+#define regPCIEMSIX_VECT159_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT159_ADDR_HI 0x1a27d
+#define regPCIEMSIX_VECT159_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT159_MSG_DATA 0x1a27e
+#define regPCIEMSIX_VECT159_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT159_CONTROL 0x1a27f
+#define regPCIEMSIX_VECT159_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT160_ADDR_LO 0x1a280
+#define regPCIEMSIX_VECT160_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT160_ADDR_HI 0x1a281
+#define regPCIEMSIX_VECT160_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT160_MSG_DATA 0x1a282
+#define regPCIEMSIX_VECT160_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT160_CONTROL 0x1a283
+#define regPCIEMSIX_VECT160_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT161_ADDR_LO 0x1a284
+#define regPCIEMSIX_VECT161_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT161_ADDR_HI 0x1a285
+#define regPCIEMSIX_VECT161_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT161_MSG_DATA 0x1a286
+#define regPCIEMSIX_VECT161_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT161_CONTROL 0x1a287
+#define regPCIEMSIX_VECT161_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT162_ADDR_LO 0x1a288
+#define regPCIEMSIX_VECT162_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT162_ADDR_HI 0x1a289
+#define regPCIEMSIX_VECT162_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT162_MSG_DATA 0x1a28a
+#define regPCIEMSIX_VECT162_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT162_CONTROL 0x1a28b
+#define regPCIEMSIX_VECT162_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT163_ADDR_LO 0x1a28c
+#define regPCIEMSIX_VECT163_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT163_ADDR_HI 0x1a28d
+#define regPCIEMSIX_VECT163_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT163_MSG_DATA 0x1a28e
+#define regPCIEMSIX_VECT163_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT163_CONTROL 0x1a28f
+#define regPCIEMSIX_VECT163_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT164_ADDR_LO 0x1a290
+#define regPCIEMSIX_VECT164_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT164_ADDR_HI 0x1a291
+#define regPCIEMSIX_VECT164_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT164_MSG_DATA 0x1a292
+#define regPCIEMSIX_VECT164_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT164_CONTROL 0x1a293
+#define regPCIEMSIX_VECT164_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT165_ADDR_LO 0x1a294
+#define regPCIEMSIX_VECT165_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT165_ADDR_HI 0x1a295
+#define regPCIEMSIX_VECT165_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT165_MSG_DATA 0x1a296
+#define regPCIEMSIX_VECT165_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT165_CONTROL 0x1a297
+#define regPCIEMSIX_VECT165_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT166_ADDR_LO 0x1a298
+#define regPCIEMSIX_VECT166_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT166_ADDR_HI 0x1a299
+#define regPCIEMSIX_VECT166_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT166_MSG_DATA 0x1a29a
+#define regPCIEMSIX_VECT166_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT166_CONTROL 0x1a29b
+#define regPCIEMSIX_VECT166_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT167_ADDR_LO 0x1a29c
+#define regPCIEMSIX_VECT167_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT167_ADDR_HI 0x1a29d
+#define regPCIEMSIX_VECT167_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT167_MSG_DATA 0x1a29e
+#define regPCIEMSIX_VECT167_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT167_CONTROL 0x1a29f
+#define regPCIEMSIX_VECT167_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT168_ADDR_LO 0x1a2a0
+#define regPCIEMSIX_VECT168_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT168_ADDR_HI 0x1a2a1
+#define regPCIEMSIX_VECT168_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT168_MSG_DATA 0x1a2a2
+#define regPCIEMSIX_VECT168_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT168_CONTROL 0x1a2a3
+#define regPCIEMSIX_VECT168_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT169_ADDR_LO 0x1a2a4
+#define regPCIEMSIX_VECT169_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT169_ADDR_HI 0x1a2a5
+#define regPCIEMSIX_VECT169_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT169_MSG_DATA 0x1a2a6
+#define regPCIEMSIX_VECT169_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT169_CONTROL 0x1a2a7
+#define regPCIEMSIX_VECT169_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT170_ADDR_LO 0x1a2a8
+#define regPCIEMSIX_VECT170_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT170_ADDR_HI 0x1a2a9
+#define regPCIEMSIX_VECT170_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT170_MSG_DATA 0x1a2aa
+#define regPCIEMSIX_VECT170_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT170_CONTROL 0x1a2ab
+#define regPCIEMSIX_VECT170_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT171_ADDR_LO 0x1a2ac
+#define regPCIEMSIX_VECT171_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT171_ADDR_HI 0x1a2ad
+#define regPCIEMSIX_VECT171_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT171_MSG_DATA 0x1a2ae
+#define regPCIEMSIX_VECT171_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT171_CONTROL 0x1a2af
+#define regPCIEMSIX_VECT171_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT172_ADDR_LO 0x1a2b0
+#define regPCIEMSIX_VECT172_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT172_ADDR_HI 0x1a2b1
+#define regPCIEMSIX_VECT172_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT172_MSG_DATA 0x1a2b2
+#define regPCIEMSIX_VECT172_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT172_CONTROL 0x1a2b3
+#define regPCIEMSIX_VECT172_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT173_ADDR_LO 0x1a2b4
+#define regPCIEMSIX_VECT173_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT173_ADDR_HI 0x1a2b5
+#define regPCIEMSIX_VECT173_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT173_MSG_DATA 0x1a2b6
+#define regPCIEMSIX_VECT173_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT173_CONTROL 0x1a2b7
+#define regPCIEMSIX_VECT173_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT174_ADDR_LO 0x1a2b8
+#define regPCIEMSIX_VECT174_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT174_ADDR_HI 0x1a2b9
+#define regPCIEMSIX_VECT174_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT174_MSG_DATA 0x1a2ba
+#define regPCIEMSIX_VECT174_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT174_CONTROL 0x1a2bb
+#define regPCIEMSIX_VECT174_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT175_ADDR_LO 0x1a2bc
+#define regPCIEMSIX_VECT175_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT175_ADDR_HI 0x1a2bd
+#define regPCIEMSIX_VECT175_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT175_MSG_DATA 0x1a2be
+#define regPCIEMSIX_VECT175_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT175_CONTROL 0x1a2bf
+#define regPCIEMSIX_VECT175_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT176_ADDR_LO 0x1a2c0
+#define regPCIEMSIX_VECT176_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT176_ADDR_HI 0x1a2c1
+#define regPCIEMSIX_VECT176_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT176_MSG_DATA 0x1a2c2
+#define regPCIEMSIX_VECT176_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT176_CONTROL 0x1a2c3
+#define regPCIEMSIX_VECT176_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT177_ADDR_LO 0x1a2c4
+#define regPCIEMSIX_VECT177_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT177_ADDR_HI 0x1a2c5
+#define regPCIEMSIX_VECT177_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT177_MSG_DATA 0x1a2c6
+#define regPCIEMSIX_VECT177_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT177_CONTROL 0x1a2c7
+#define regPCIEMSIX_VECT177_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT178_ADDR_LO 0x1a2c8
+#define regPCIEMSIX_VECT178_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT178_ADDR_HI 0x1a2c9
+#define regPCIEMSIX_VECT178_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT178_MSG_DATA 0x1a2ca
+#define regPCIEMSIX_VECT178_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT178_CONTROL 0x1a2cb
+#define regPCIEMSIX_VECT178_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT179_ADDR_LO 0x1a2cc
+#define regPCIEMSIX_VECT179_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT179_ADDR_HI 0x1a2cd
+#define regPCIEMSIX_VECT179_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT179_MSG_DATA 0x1a2ce
+#define regPCIEMSIX_VECT179_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT179_CONTROL 0x1a2cf
+#define regPCIEMSIX_VECT179_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT180_ADDR_LO 0x1a2d0
+#define regPCIEMSIX_VECT180_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT180_ADDR_HI 0x1a2d1
+#define regPCIEMSIX_VECT180_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT180_MSG_DATA 0x1a2d2
+#define regPCIEMSIX_VECT180_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT180_CONTROL 0x1a2d3
+#define regPCIEMSIX_VECT180_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT181_ADDR_LO 0x1a2d4
+#define regPCIEMSIX_VECT181_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT181_ADDR_HI 0x1a2d5
+#define regPCIEMSIX_VECT181_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT181_MSG_DATA 0x1a2d6
+#define regPCIEMSIX_VECT181_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT181_CONTROL 0x1a2d7
+#define regPCIEMSIX_VECT181_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT182_ADDR_LO 0x1a2d8
+#define regPCIEMSIX_VECT182_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT182_ADDR_HI 0x1a2d9
+#define regPCIEMSIX_VECT182_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT182_MSG_DATA 0x1a2da
+#define regPCIEMSIX_VECT182_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT182_CONTROL 0x1a2db
+#define regPCIEMSIX_VECT182_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT183_ADDR_LO 0x1a2dc
+#define regPCIEMSIX_VECT183_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT183_ADDR_HI 0x1a2dd
+#define regPCIEMSIX_VECT183_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT183_MSG_DATA 0x1a2de
+#define regPCIEMSIX_VECT183_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT183_CONTROL 0x1a2df
+#define regPCIEMSIX_VECT183_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT184_ADDR_LO 0x1a2e0
+#define regPCIEMSIX_VECT184_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT184_ADDR_HI 0x1a2e1
+#define regPCIEMSIX_VECT184_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT184_MSG_DATA 0x1a2e2
+#define regPCIEMSIX_VECT184_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT184_CONTROL 0x1a2e3
+#define regPCIEMSIX_VECT184_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT185_ADDR_LO 0x1a2e4
+#define regPCIEMSIX_VECT185_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT185_ADDR_HI 0x1a2e5
+#define regPCIEMSIX_VECT185_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT185_MSG_DATA 0x1a2e6
+#define regPCIEMSIX_VECT185_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT185_CONTROL 0x1a2e7
+#define regPCIEMSIX_VECT185_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT186_ADDR_LO 0x1a2e8
+#define regPCIEMSIX_VECT186_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT186_ADDR_HI 0x1a2e9
+#define regPCIEMSIX_VECT186_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT186_MSG_DATA 0x1a2ea
+#define regPCIEMSIX_VECT186_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT186_CONTROL 0x1a2eb
+#define regPCIEMSIX_VECT186_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT187_ADDR_LO 0x1a2ec
+#define regPCIEMSIX_VECT187_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT187_ADDR_HI 0x1a2ed
+#define regPCIEMSIX_VECT187_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT187_MSG_DATA 0x1a2ee
+#define regPCIEMSIX_VECT187_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT187_CONTROL 0x1a2ef
+#define regPCIEMSIX_VECT187_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT188_ADDR_LO 0x1a2f0
+#define regPCIEMSIX_VECT188_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT188_ADDR_HI 0x1a2f1
+#define regPCIEMSIX_VECT188_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT188_MSG_DATA 0x1a2f2
+#define regPCIEMSIX_VECT188_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT188_CONTROL 0x1a2f3
+#define regPCIEMSIX_VECT188_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT189_ADDR_LO 0x1a2f4
+#define regPCIEMSIX_VECT189_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT189_ADDR_HI 0x1a2f5
+#define regPCIEMSIX_VECT189_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT189_MSG_DATA 0x1a2f6
+#define regPCIEMSIX_VECT189_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT189_CONTROL 0x1a2f7
+#define regPCIEMSIX_VECT189_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT190_ADDR_LO 0x1a2f8
+#define regPCIEMSIX_VECT190_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT190_ADDR_HI 0x1a2f9
+#define regPCIEMSIX_VECT190_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT190_MSG_DATA 0x1a2fa
+#define regPCIEMSIX_VECT190_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT190_CONTROL 0x1a2fb
+#define regPCIEMSIX_VECT190_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT191_ADDR_LO 0x1a2fc
+#define regPCIEMSIX_VECT191_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT191_ADDR_HI 0x1a2fd
+#define regPCIEMSIX_VECT191_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT191_MSG_DATA 0x1a2fe
+#define regPCIEMSIX_VECT191_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT191_CONTROL 0x1a2ff
+#define regPCIEMSIX_VECT191_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT192_ADDR_LO 0x1a300
+#define regPCIEMSIX_VECT192_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT192_ADDR_HI 0x1a301
+#define regPCIEMSIX_VECT192_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT192_MSG_DATA 0x1a302
+#define regPCIEMSIX_VECT192_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT192_CONTROL 0x1a303
+#define regPCIEMSIX_VECT192_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT193_ADDR_LO 0x1a304
+#define regPCIEMSIX_VECT193_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT193_ADDR_HI 0x1a305
+#define regPCIEMSIX_VECT193_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT193_MSG_DATA 0x1a306
+#define regPCIEMSIX_VECT193_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT193_CONTROL 0x1a307
+#define regPCIEMSIX_VECT193_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT194_ADDR_LO 0x1a308
+#define regPCIEMSIX_VECT194_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT194_ADDR_HI 0x1a309
+#define regPCIEMSIX_VECT194_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT194_MSG_DATA 0x1a30a
+#define regPCIEMSIX_VECT194_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT194_CONTROL 0x1a30b
+#define regPCIEMSIX_VECT194_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT195_ADDR_LO 0x1a30c
+#define regPCIEMSIX_VECT195_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT195_ADDR_HI 0x1a30d
+#define regPCIEMSIX_VECT195_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT195_MSG_DATA 0x1a30e
+#define regPCIEMSIX_VECT195_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT195_CONTROL 0x1a30f
+#define regPCIEMSIX_VECT195_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT196_ADDR_LO 0x1a310
+#define regPCIEMSIX_VECT196_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT196_ADDR_HI 0x1a311
+#define regPCIEMSIX_VECT196_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT196_MSG_DATA 0x1a312
+#define regPCIEMSIX_VECT196_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT196_CONTROL 0x1a313
+#define regPCIEMSIX_VECT196_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT197_ADDR_LO 0x1a314
+#define regPCIEMSIX_VECT197_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT197_ADDR_HI 0x1a315
+#define regPCIEMSIX_VECT197_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT197_MSG_DATA 0x1a316
+#define regPCIEMSIX_VECT197_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT197_CONTROL 0x1a317
+#define regPCIEMSIX_VECT197_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT198_ADDR_LO 0x1a318
+#define regPCIEMSIX_VECT198_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT198_ADDR_HI 0x1a319
+#define regPCIEMSIX_VECT198_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT198_MSG_DATA 0x1a31a
+#define regPCIEMSIX_VECT198_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT198_CONTROL 0x1a31b
+#define regPCIEMSIX_VECT198_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT199_ADDR_LO 0x1a31c
+#define regPCIEMSIX_VECT199_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT199_ADDR_HI 0x1a31d
+#define regPCIEMSIX_VECT199_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT199_MSG_DATA 0x1a31e
+#define regPCIEMSIX_VECT199_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT199_CONTROL 0x1a31f
+#define regPCIEMSIX_VECT199_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT200_ADDR_LO 0x1a320
+#define regPCIEMSIX_VECT200_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT200_ADDR_HI 0x1a321
+#define regPCIEMSIX_VECT200_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT200_MSG_DATA 0x1a322
+#define regPCIEMSIX_VECT200_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT200_CONTROL 0x1a323
+#define regPCIEMSIX_VECT200_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT201_ADDR_LO 0x1a324
+#define regPCIEMSIX_VECT201_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT201_ADDR_HI 0x1a325
+#define regPCIEMSIX_VECT201_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT201_MSG_DATA 0x1a326
+#define regPCIEMSIX_VECT201_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT201_CONTROL 0x1a327
+#define regPCIEMSIX_VECT201_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT202_ADDR_LO 0x1a328
+#define regPCIEMSIX_VECT202_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT202_ADDR_HI 0x1a329
+#define regPCIEMSIX_VECT202_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT202_MSG_DATA 0x1a32a
+#define regPCIEMSIX_VECT202_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT202_CONTROL 0x1a32b
+#define regPCIEMSIX_VECT202_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT203_ADDR_LO 0x1a32c
+#define regPCIEMSIX_VECT203_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT203_ADDR_HI 0x1a32d
+#define regPCIEMSIX_VECT203_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT203_MSG_DATA 0x1a32e
+#define regPCIEMSIX_VECT203_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT203_CONTROL 0x1a32f
+#define regPCIEMSIX_VECT203_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT204_ADDR_LO 0x1a330
+#define regPCIEMSIX_VECT204_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT204_ADDR_HI 0x1a331
+#define regPCIEMSIX_VECT204_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT204_MSG_DATA 0x1a332
+#define regPCIEMSIX_VECT204_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT204_CONTROL 0x1a333
+#define regPCIEMSIX_VECT204_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT205_ADDR_LO 0x1a334
+#define regPCIEMSIX_VECT205_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT205_ADDR_HI 0x1a335
+#define regPCIEMSIX_VECT205_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT205_MSG_DATA 0x1a336
+#define regPCIEMSIX_VECT205_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT205_CONTROL 0x1a337
+#define regPCIEMSIX_VECT205_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT206_ADDR_LO 0x1a338
+#define regPCIEMSIX_VECT206_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT206_ADDR_HI 0x1a339
+#define regPCIEMSIX_VECT206_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT206_MSG_DATA 0x1a33a
+#define regPCIEMSIX_VECT206_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT206_CONTROL 0x1a33b
+#define regPCIEMSIX_VECT206_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT207_ADDR_LO 0x1a33c
+#define regPCIEMSIX_VECT207_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT207_ADDR_HI 0x1a33d
+#define regPCIEMSIX_VECT207_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT207_MSG_DATA 0x1a33e
+#define regPCIEMSIX_VECT207_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT207_CONTROL 0x1a33f
+#define regPCIEMSIX_VECT207_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT208_ADDR_LO 0x1a340
+#define regPCIEMSIX_VECT208_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT208_ADDR_HI 0x1a341
+#define regPCIEMSIX_VECT208_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT208_MSG_DATA 0x1a342
+#define regPCIEMSIX_VECT208_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT208_CONTROL 0x1a343
+#define regPCIEMSIX_VECT208_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT209_ADDR_LO 0x1a344
+#define regPCIEMSIX_VECT209_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT209_ADDR_HI 0x1a345
+#define regPCIEMSIX_VECT209_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT209_MSG_DATA 0x1a346
+#define regPCIEMSIX_VECT209_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT209_CONTROL 0x1a347
+#define regPCIEMSIX_VECT209_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT210_ADDR_LO 0x1a348
+#define regPCIEMSIX_VECT210_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT210_ADDR_HI 0x1a349
+#define regPCIEMSIX_VECT210_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT210_MSG_DATA 0x1a34a
+#define regPCIEMSIX_VECT210_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT210_CONTROL 0x1a34b
+#define regPCIEMSIX_VECT210_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT211_ADDR_LO 0x1a34c
+#define regPCIEMSIX_VECT211_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT211_ADDR_HI 0x1a34d
+#define regPCIEMSIX_VECT211_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT211_MSG_DATA 0x1a34e
+#define regPCIEMSIX_VECT211_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT211_CONTROL 0x1a34f
+#define regPCIEMSIX_VECT211_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT212_ADDR_LO 0x1a350
+#define regPCIEMSIX_VECT212_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT212_ADDR_HI 0x1a351
+#define regPCIEMSIX_VECT212_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT212_MSG_DATA 0x1a352
+#define regPCIEMSIX_VECT212_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT212_CONTROL 0x1a353
+#define regPCIEMSIX_VECT212_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT213_ADDR_LO 0x1a354
+#define regPCIEMSIX_VECT213_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT213_ADDR_HI 0x1a355
+#define regPCIEMSIX_VECT213_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT213_MSG_DATA 0x1a356
+#define regPCIEMSIX_VECT213_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT213_CONTROL 0x1a357
+#define regPCIEMSIX_VECT213_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT214_ADDR_LO 0x1a358
+#define regPCIEMSIX_VECT214_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT214_ADDR_HI 0x1a359
+#define regPCIEMSIX_VECT214_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT214_MSG_DATA 0x1a35a
+#define regPCIEMSIX_VECT214_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT214_CONTROL 0x1a35b
+#define regPCIEMSIX_VECT214_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT215_ADDR_LO 0x1a35c
+#define regPCIEMSIX_VECT215_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT215_ADDR_HI 0x1a35d
+#define regPCIEMSIX_VECT215_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT215_MSG_DATA 0x1a35e
+#define regPCIEMSIX_VECT215_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT215_CONTROL 0x1a35f
+#define regPCIEMSIX_VECT215_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT216_ADDR_LO 0x1a360
+#define regPCIEMSIX_VECT216_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT216_ADDR_HI 0x1a361
+#define regPCIEMSIX_VECT216_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT216_MSG_DATA 0x1a362
+#define regPCIEMSIX_VECT216_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT216_CONTROL 0x1a363
+#define regPCIEMSIX_VECT216_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT217_ADDR_LO 0x1a364
+#define regPCIEMSIX_VECT217_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT217_ADDR_HI 0x1a365
+#define regPCIEMSIX_VECT217_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT217_MSG_DATA 0x1a366
+#define regPCIEMSIX_VECT217_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT217_CONTROL 0x1a367
+#define regPCIEMSIX_VECT217_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT218_ADDR_LO 0x1a368
+#define regPCIEMSIX_VECT218_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT218_ADDR_HI 0x1a369
+#define regPCIEMSIX_VECT218_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT218_MSG_DATA 0x1a36a
+#define regPCIEMSIX_VECT218_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT218_CONTROL 0x1a36b
+#define regPCIEMSIX_VECT218_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT219_ADDR_LO 0x1a36c
+#define regPCIEMSIX_VECT219_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT219_ADDR_HI 0x1a36d
+#define regPCIEMSIX_VECT219_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT219_MSG_DATA 0x1a36e
+#define regPCIEMSIX_VECT219_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT219_CONTROL 0x1a36f
+#define regPCIEMSIX_VECT219_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT220_ADDR_LO 0x1a370
+#define regPCIEMSIX_VECT220_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT220_ADDR_HI 0x1a371
+#define regPCIEMSIX_VECT220_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT220_MSG_DATA 0x1a372
+#define regPCIEMSIX_VECT220_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT220_CONTROL 0x1a373
+#define regPCIEMSIX_VECT220_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT221_ADDR_LO 0x1a374
+#define regPCIEMSIX_VECT221_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT221_ADDR_HI 0x1a375
+#define regPCIEMSIX_VECT221_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT221_MSG_DATA 0x1a376
+#define regPCIEMSIX_VECT221_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT221_CONTROL 0x1a377
+#define regPCIEMSIX_VECT221_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT222_ADDR_LO 0x1a378
+#define regPCIEMSIX_VECT222_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT222_ADDR_HI 0x1a379
+#define regPCIEMSIX_VECT222_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT222_MSG_DATA 0x1a37a
+#define regPCIEMSIX_VECT222_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT222_CONTROL 0x1a37b
+#define regPCIEMSIX_VECT222_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT223_ADDR_LO 0x1a37c
+#define regPCIEMSIX_VECT223_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT223_ADDR_HI 0x1a37d
+#define regPCIEMSIX_VECT223_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT223_MSG_DATA 0x1a37e
+#define regPCIEMSIX_VECT223_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT223_CONTROL 0x1a37f
+#define regPCIEMSIX_VECT223_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT224_ADDR_LO 0x1a380
+#define regPCIEMSIX_VECT224_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT224_ADDR_HI 0x1a381
+#define regPCIEMSIX_VECT224_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT224_MSG_DATA 0x1a382
+#define regPCIEMSIX_VECT224_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT224_CONTROL 0x1a383
+#define regPCIEMSIX_VECT224_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT225_ADDR_LO 0x1a384
+#define regPCIEMSIX_VECT225_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT225_ADDR_HI 0x1a385
+#define regPCIEMSIX_VECT225_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT225_MSG_DATA 0x1a386
+#define regPCIEMSIX_VECT225_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT225_CONTROL 0x1a387
+#define regPCIEMSIX_VECT225_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT226_ADDR_LO 0x1a388
+#define regPCIEMSIX_VECT226_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT226_ADDR_HI 0x1a389
+#define regPCIEMSIX_VECT226_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT226_MSG_DATA 0x1a38a
+#define regPCIEMSIX_VECT226_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT226_CONTROL 0x1a38b
+#define regPCIEMSIX_VECT226_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT227_ADDR_LO 0x1a38c
+#define regPCIEMSIX_VECT227_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT227_ADDR_HI 0x1a38d
+#define regPCIEMSIX_VECT227_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT227_MSG_DATA 0x1a38e
+#define regPCIEMSIX_VECT227_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT227_CONTROL 0x1a38f
+#define regPCIEMSIX_VECT227_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT228_ADDR_LO 0x1a390
+#define regPCIEMSIX_VECT228_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT228_ADDR_HI 0x1a391
+#define regPCIEMSIX_VECT228_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT228_MSG_DATA 0x1a392
+#define regPCIEMSIX_VECT228_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT228_CONTROL 0x1a393
+#define regPCIEMSIX_VECT228_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT229_ADDR_LO 0x1a394
+#define regPCIEMSIX_VECT229_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT229_ADDR_HI 0x1a395
+#define regPCIEMSIX_VECT229_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT229_MSG_DATA 0x1a396
+#define regPCIEMSIX_VECT229_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT229_CONTROL 0x1a397
+#define regPCIEMSIX_VECT229_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT230_ADDR_LO 0x1a398
+#define regPCIEMSIX_VECT230_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT230_ADDR_HI 0x1a399
+#define regPCIEMSIX_VECT230_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT230_MSG_DATA 0x1a39a
+#define regPCIEMSIX_VECT230_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT230_CONTROL 0x1a39b
+#define regPCIEMSIX_VECT230_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT231_ADDR_LO 0x1a39c
+#define regPCIEMSIX_VECT231_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT231_ADDR_HI 0x1a39d
+#define regPCIEMSIX_VECT231_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT231_MSG_DATA 0x1a39e
+#define regPCIEMSIX_VECT231_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT231_CONTROL 0x1a39f
+#define regPCIEMSIX_VECT231_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT232_ADDR_LO 0x1a3a0
+#define regPCIEMSIX_VECT232_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT232_ADDR_HI 0x1a3a1
+#define regPCIEMSIX_VECT232_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT232_MSG_DATA 0x1a3a2
+#define regPCIEMSIX_VECT232_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT232_CONTROL 0x1a3a3
+#define regPCIEMSIX_VECT232_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT233_ADDR_LO 0x1a3a4
+#define regPCIEMSIX_VECT233_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT233_ADDR_HI 0x1a3a5
+#define regPCIEMSIX_VECT233_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT233_MSG_DATA 0x1a3a6
+#define regPCIEMSIX_VECT233_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT233_CONTROL 0x1a3a7
+#define regPCIEMSIX_VECT233_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT234_ADDR_LO 0x1a3a8
+#define regPCIEMSIX_VECT234_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT234_ADDR_HI 0x1a3a9
+#define regPCIEMSIX_VECT234_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT234_MSG_DATA 0x1a3aa
+#define regPCIEMSIX_VECT234_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT234_CONTROL 0x1a3ab
+#define regPCIEMSIX_VECT234_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT235_ADDR_LO 0x1a3ac
+#define regPCIEMSIX_VECT235_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT235_ADDR_HI 0x1a3ad
+#define regPCIEMSIX_VECT235_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT235_MSG_DATA 0x1a3ae
+#define regPCIEMSIX_VECT235_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT235_CONTROL 0x1a3af
+#define regPCIEMSIX_VECT235_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT236_ADDR_LO 0x1a3b0
+#define regPCIEMSIX_VECT236_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT236_ADDR_HI 0x1a3b1
+#define regPCIEMSIX_VECT236_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT236_MSG_DATA 0x1a3b2
+#define regPCIEMSIX_VECT236_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT236_CONTROL 0x1a3b3
+#define regPCIEMSIX_VECT236_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT237_ADDR_LO 0x1a3b4
+#define regPCIEMSIX_VECT237_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT237_ADDR_HI 0x1a3b5
+#define regPCIEMSIX_VECT237_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT237_MSG_DATA 0x1a3b6
+#define regPCIEMSIX_VECT237_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT237_CONTROL 0x1a3b7
+#define regPCIEMSIX_VECT237_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT238_ADDR_LO 0x1a3b8
+#define regPCIEMSIX_VECT238_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT238_ADDR_HI 0x1a3b9
+#define regPCIEMSIX_VECT238_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT238_MSG_DATA 0x1a3ba
+#define regPCIEMSIX_VECT238_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT238_CONTROL 0x1a3bb
+#define regPCIEMSIX_VECT238_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT239_ADDR_LO 0x1a3bc
+#define regPCIEMSIX_VECT239_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT239_ADDR_HI 0x1a3bd
+#define regPCIEMSIX_VECT239_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT239_MSG_DATA 0x1a3be
+#define regPCIEMSIX_VECT239_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT239_CONTROL 0x1a3bf
+#define regPCIEMSIX_VECT239_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT240_ADDR_LO 0x1a3c0
+#define regPCIEMSIX_VECT240_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT240_ADDR_HI 0x1a3c1
+#define regPCIEMSIX_VECT240_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT240_MSG_DATA 0x1a3c2
+#define regPCIEMSIX_VECT240_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT240_CONTROL 0x1a3c3
+#define regPCIEMSIX_VECT240_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT241_ADDR_LO 0x1a3c4
+#define regPCIEMSIX_VECT241_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT241_ADDR_HI 0x1a3c5
+#define regPCIEMSIX_VECT241_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT241_MSG_DATA 0x1a3c6
+#define regPCIEMSIX_VECT241_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT241_CONTROL 0x1a3c7
+#define regPCIEMSIX_VECT241_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT242_ADDR_LO 0x1a3c8
+#define regPCIEMSIX_VECT242_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT242_ADDR_HI 0x1a3c9
+#define regPCIEMSIX_VECT242_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT242_MSG_DATA 0x1a3ca
+#define regPCIEMSIX_VECT242_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT242_CONTROL 0x1a3cb
+#define regPCIEMSIX_VECT242_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT243_ADDR_LO 0x1a3cc
+#define regPCIEMSIX_VECT243_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT243_ADDR_HI 0x1a3cd
+#define regPCIEMSIX_VECT243_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT243_MSG_DATA 0x1a3ce
+#define regPCIEMSIX_VECT243_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT243_CONTROL 0x1a3cf
+#define regPCIEMSIX_VECT243_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT244_ADDR_LO 0x1a3d0
+#define regPCIEMSIX_VECT244_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT244_ADDR_HI 0x1a3d1
+#define regPCIEMSIX_VECT244_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT244_MSG_DATA 0x1a3d2
+#define regPCIEMSIX_VECT244_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT244_CONTROL 0x1a3d3
+#define regPCIEMSIX_VECT244_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT245_ADDR_LO 0x1a3d4
+#define regPCIEMSIX_VECT245_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT245_ADDR_HI 0x1a3d5
+#define regPCIEMSIX_VECT245_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT245_MSG_DATA 0x1a3d6
+#define regPCIEMSIX_VECT245_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT245_CONTROL 0x1a3d7
+#define regPCIEMSIX_VECT245_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT246_ADDR_LO 0x1a3d8
+#define regPCIEMSIX_VECT246_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT246_ADDR_HI 0x1a3d9
+#define regPCIEMSIX_VECT246_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT246_MSG_DATA 0x1a3da
+#define regPCIEMSIX_VECT246_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT246_CONTROL 0x1a3db
+#define regPCIEMSIX_VECT246_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT247_ADDR_LO 0x1a3dc
+#define regPCIEMSIX_VECT247_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT247_ADDR_HI 0x1a3dd
+#define regPCIEMSIX_VECT247_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT247_MSG_DATA 0x1a3de
+#define regPCIEMSIX_VECT247_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT247_CONTROL 0x1a3df
+#define regPCIEMSIX_VECT247_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT248_ADDR_LO 0x1a3e0
+#define regPCIEMSIX_VECT248_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT248_ADDR_HI 0x1a3e1
+#define regPCIEMSIX_VECT248_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT248_MSG_DATA 0x1a3e2
+#define regPCIEMSIX_VECT248_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT248_CONTROL 0x1a3e3
+#define regPCIEMSIX_VECT248_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT249_ADDR_LO 0x1a3e4
+#define regPCIEMSIX_VECT249_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT249_ADDR_HI 0x1a3e5
+#define regPCIEMSIX_VECT249_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT249_MSG_DATA 0x1a3e6
+#define regPCIEMSIX_VECT249_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT249_CONTROL 0x1a3e7
+#define regPCIEMSIX_VECT249_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT250_ADDR_LO 0x1a3e8
+#define regPCIEMSIX_VECT250_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT250_ADDR_HI 0x1a3e9
+#define regPCIEMSIX_VECT250_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT250_MSG_DATA 0x1a3ea
+#define regPCIEMSIX_VECT250_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT250_CONTROL 0x1a3eb
+#define regPCIEMSIX_VECT250_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT251_ADDR_LO 0x1a3ec
+#define regPCIEMSIX_VECT251_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT251_ADDR_HI 0x1a3ed
+#define regPCIEMSIX_VECT251_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT251_MSG_DATA 0x1a3ee
+#define regPCIEMSIX_VECT251_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT251_CONTROL 0x1a3ef
+#define regPCIEMSIX_VECT251_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT252_ADDR_LO 0x1a3f0
+#define regPCIEMSIX_VECT252_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT252_ADDR_HI 0x1a3f1
+#define regPCIEMSIX_VECT252_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT252_MSG_DATA 0x1a3f2
+#define regPCIEMSIX_VECT252_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT252_CONTROL 0x1a3f3
+#define regPCIEMSIX_VECT252_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT253_ADDR_LO 0x1a3f4
+#define regPCIEMSIX_VECT253_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT253_ADDR_HI 0x1a3f5
+#define regPCIEMSIX_VECT253_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT253_MSG_DATA 0x1a3f6
+#define regPCIEMSIX_VECT253_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT253_CONTROL 0x1a3f7
+#define regPCIEMSIX_VECT253_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT254_ADDR_LO 0x1a3f8
+#define regPCIEMSIX_VECT254_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT254_ADDR_HI 0x1a3f9
+#define regPCIEMSIX_VECT254_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT254_MSG_DATA 0x1a3fa
+#define regPCIEMSIX_VECT254_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT254_CONTROL 0x1a3fb
+#define regPCIEMSIX_VECT254_CONTROL_BASE_IDX 8
+#define regPCIEMSIX_VECT255_ADDR_LO 0x1a3fc
+#define regPCIEMSIX_VECT255_ADDR_LO_BASE_IDX 8
+#define regPCIEMSIX_VECT255_ADDR_HI 0x1a3fd
+#define regPCIEMSIX_VECT255_ADDR_HI_BASE_IDX 8
+#define regPCIEMSIX_VECT255_MSG_DATA 0x1a3fe
+#define regPCIEMSIX_VECT255_MSG_DATA_BASE_IDX 8
+#define regPCIEMSIX_VECT255_CONTROL 0x1a3ff
+#define regPCIEMSIX_VECT255_CONTROL_BASE_IDX 8
+
+
+// addressBlock: aid_nbio_nbif0_pciemsix_0_usb_MSIXPDEC
+// base address: 0x10169000
+#define regPCIEMSIX_PBA_0 0x1a400
+#define regPCIEMSIX_PBA_0_BASE_IDX 8
+#define regPCIEMSIX_PBA_1 0x1a401
+#define regPCIEMSIX_PBA_1_BASE_IDX 8
+#define regPCIEMSIX_PBA_2 0x1a402
+#define regPCIEMSIX_PBA_2_BASE_IDX 8
+#define regPCIEMSIX_PBA_3 0x1a403
+#define regPCIEMSIX_PBA_3_BASE_IDX 8
+#define regPCIEMSIX_PBA_4 0x1a404
+#define regPCIEMSIX_PBA_4_BASE_IDX 8
+#define regPCIEMSIX_PBA_5 0x1a405
+#define regPCIEMSIX_PBA_5_BASE_IDX 8
+#define regPCIEMSIX_PBA_6 0x1a406
+#define regPCIEMSIX_PBA_6_BASE_IDX 8
+#define regPCIEMSIX_PBA_7 0x1a407
+#define regPCIEMSIX_PBA_7_BASE_IDX 8
+
+
+// addressBlock: aid_nbio_nbif0_bif_swus_SUMDEC
+// base address: 0x1013b000
+#define regSUM_INDEX 0xec38
+#define regSUM_INDEX_BASE_IDX 8
+#define regSUM_DATA 0xec39
+#define regSUM_DATA_BASE_IDX 8
+#define regSUM_INDEX_HI 0xec3b
+#define regSUM_INDEX_HI_BASE_IDX 8
+
+
+// addressBlock: aid_nbio_nbif0_rcc_strap_rcc_strap_internal
+// base address: 0x10100000
+#define regRCC_STRAP1_RCC_DEV0_PORT_STRAP0 0xc400
+#define regRCC_STRAP1_RCC_DEV0_PORT_STRAP0_BASE_IDX 8
+#define regRCC_STRAP1_RCC_DEV0_PORT_STRAP1 0xc401
+#define regRCC_STRAP1_RCC_DEV0_PORT_STRAP1_BASE_IDX 8
+#define regRCC_STRAP1_RCC_DEV0_PORT_STRAP2 0xc402
+#define regRCC_STRAP1_RCC_DEV0_PORT_STRAP2_BASE_IDX 8
+#define regRCC_STRAP1_RCC_DEV0_PORT_STRAP3 0xc403
+#define regRCC_STRAP1_RCC_DEV0_PORT_STRAP3_BASE_IDX 8
+#define regRCC_STRAP1_RCC_DEV0_PORT_STRAP4 0xc404
+#define regRCC_STRAP1_RCC_DEV0_PORT_STRAP4_BASE_IDX 8
+#define regRCC_STRAP1_RCC_DEV0_PORT_STRAP5 0xc405
+#define regRCC_STRAP1_RCC_DEV0_PORT_STRAP5_BASE_IDX 8
+#define regRCC_STRAP1_RCC_DEV0_PORT_STRAP6 0xc406
+#define regRCC_STRAP1_RCC_DEV0_PORT_STRAP6_BASE_IDX 8
+#define regRCC_STRAP1_RCC_DEV0_PORT_STRAP7 0xc407
+#define regRCC_STRAP1_RCC_DEV0_PORT_STRAP7_BASE_IDX 8
+#define regRCC_STRAP1_RCC_DEV0_PORT_STRAP8 0xc408
+#define regRCC_STRAP1_RCC_DEV0_PORT_STRAP8_BASE_IDX 8
+#define regRCC_STRAP1_RCC_DEV0_PORT_STRAP9 0xc409
+#define regRCC_STRAP1_RCC_DEV0_PORT_STRAP9_BASE_IDX 8
+#define regRCC_STRAP1_RCC_DEV0_PORT_STRAP10 0xc40a
+#define regRCC_STRAP1_RCC_DEV0_PORT_STRAP10_BASE_IDX 8
+#define regRCC_STRAP1_RCC_DEV0_PORT_STRAP11 0xc40b
+#define regRCC_STRAP1_RCC_DEV0_PORT_STRAP11_BASE_IDX 8
+#define regRCC_STRAP1_RCC_DEV0_PORT_STRAP12 0xc40c
+#define regRCC_STRAP1_RCC_DEV0_PORT_STRAP12_BASE_IDX 8
+#define regRCC_STRAP1_RCC_DEV0_PORT_STRAP13 0xc40d
+#define regRCC_STRAP1_RCC_DEV0_PORT_STRAP13_BASE_IDX 8
+#define regRCC_STRAP1_RCC_DEV0_PORT_STRAP14 0xc40e
+#define regRCC_STRAP1_RCC_DEV0_PORT_STRAP14_BASE_IDX 8
+#define regRCC_DEV1_PORT_STRAP0 0xc480
+#define regRCC_DEV1_PORT_STRAP0_BASE_IDX 8
+#define regRCC_DEV1_PORT_STRAP1 0xc481
+#define regRCC_DEV1_PORT_STRAP1_BASE_IDX 8
+#define regRCC_DEV1_PORT_STRAP2 0xc482
+#define regRCC_DEV1_PORT_STRAP2_BASE_IDX 8
+#define regRCC_DEV1_PORT_STRAP3 0xc483
+#define regRCC_DEV1_PORT_STRAP3_BASE_IDX 8
+#define regRCC_DEV1_PORT_STRAP4 0xc484
+#define regRCC_DEV1_PORT_STRAP4_BASE_IDX 8
+#define regRCC_DEV1_PORT_STRAP5 0xc485
+#define regRCC_DEV1_PORT_STRAP5_BASE_IDX 8
+#define regRCC_DEV1_PORT_STRAP6 0xc486
+#define regRCC_DEV1_PORT_STRAP6_BASE_IDX 8
+#define regRCC_DEV1_PORT_STRAP7 0xc487
+#define regRCC_DEV1_PORT_STRAP7_BASE_IDX 8
+#define regRCC_DEV1_PORT_STRAP8 0xc488
+#define regRCC_DEV1_PORT_STRAP8_BASE_IDX 8
+#define regRCC_DEV1_PORT_STRAP9 0xc489
+#define regRCC_DEV1_PORT_STRAP9_BASE_IDX 8
+#define regRCC_DEV1_PORT_STRAP10 0xc48a
+#define regRCC_DEV1_PORT_STRAP10_BASE_IDX 8
+#define regRCC_DEV1_PORT_STRAP11 0xc48b
+#define regRCC_DEV1_PORT_STRAP11_BASE_IDX 8
+#define regRCC_DEV1_PORT_STRAP12 0xc48c
+#define regRCC_DEV1_PORT_STRAP12_BASE_IDX 8
+#define regRCC_DEV1_PORT_STRAP13 0xc48d
+#define regRCC_DEV1_PORT_STRAP13_BASE_IDX 8
+#define regRCC_DEV1_PORT_STRAP14 0xc48e
+#define regRCC_DEV1_PORT_STRAP14_BASE_IDX 8
+#define regRCC_DEV2_PORT_STRAP0 0xc500
+#define regRCC_DEV2_PORT_STRAP0_BASE_IDX 8
+#define regRCC_DEV2_PORT_STRAP1 0xc501
+#define regRCC_DEV2_PORT_STRAP1_BASE_IDX 8
+#define regRCC_DEV2_PORT_STRAP2 0xc502
+#define regRCC_DEV2_PORT_STRAP2_BASE_IDX 8
+#define regRCC_DEV2_PORT_STRAP3 0xc503
+#define regRCC_DEV2_PORT_STRAP3_BASE_IDX 8
+#define regRCC_DEV2_PORT_STRAP4 0xc504
+#define regRCC_DEV2_PORT_STRAP4_BASE_IDX 8
+#define regRCC_DEV2_PORT_STRAP5 0xc505
+#define regRCC_DEV2_PORT_STRAP5_BASE_IDX 8
+#define regRCC_DEV2_PORT_STRAP6 0xc506
+#define regRCC_DEV2_PORT_STRAP6_BASE_IDX 8
+#define regRCC_DEV2_PORT_STRAP7 0xc507
+#define regRCC_DEV2_PORT_STRAP7_BASE_IDX 8
+#define regRCC_DEV2_PORT_STRAP8 0xc508
+#define regRCC_DEV2_PORT_STRAP8_BASE_IDX 8
+#define regRCC_DEV2_PORT_STRAP9 0xc509
+#define regRCC_DEV2_PORT_STRAP9_BASE_IDX 8
+#define regRCC_DEV2_PORT_STRAP10 0xc50a
+#define regRCC_DEV2_PORT_STRAP10_BASE_IDX 8
+#define regRCC_DEV2_PORT_STRAP11 0xc50b
+#define regRCC_DEV2_PORT_STRAP11_BASE_IDX 8
+#define regRCC_DEV2_PORT_STRAP12 0xc50c
+#define regRCC_DEV2_PORT_STRAP12_BASE_IDX 8
+#define regRCC_DEV2_PORT_STRAP13 0xc50d
+#define regRCC_DEV2_PORT_STRAP13_BASE_IDX 8
+#define regRCC_DEV2_PORT_STRAP14 0xc50e
+#define regRCC_DEV2_PORT_STRAP14_BASE_IDX 8
+#define regRCC_STRAP1_RCC_BIF_STRAP0 0xc600
+#define regRCC_STRAP1_RCC_BIF_STRAP0_BASE_IDX 8
+#define regRCC_STRAP1_RCC_BIF_STRAP1 0xc601
+#define regRCC_STRAP1_RCC_BIF_STRAP1_BASE_IDX 8
+#define regRCC_STRAP1_RCC_BIF_STRAP2 0xc602
+#define regRCC_STRAP1_RCC_BIF_STRAP2_BASE_IDX 8
+#define regRCC_STRAP1_RCC_BIF_STRAP3 0xc603
+#define regRCC_STRAP1_RCC_BIF_STRAP3_BASE_IDX 8
+#define regRCC_STRAP1_RCC_BIF_STRAP4 0xc604
+#define regRCC_STRAP1_RCC_BIF_STRAP4_BASE_IDX 8
+#define regRCC_STRAP1_RCC_BIF_STRAP5 0xc605
+#define regRCC_STRAP1_RCC_BIF_STRAP5_BASE_IDX 8
+#define regRCC_STRAP1_RCC_BIF_STRAP6 0xc606
+#define regRCC_STRAP1_RCC_BIF_STRAP6_BASE_IDX 8
+#define regRCC_STRAP1_RCC_DEV0_EPF0_STRAP0 0xd000
+#define regRCC_STRAP1_RCC_DEV0_EPF0_STRAP0_BASE_IDX 8
+#define regRCC_STRAP1_RCC_DEV0_EPF0_STRAP1 0xd001
+#define regRCC_STRAP1_RCC_DEV0_EPF0_STRAP1_BASE_IDX 8
+#define regRCC_STRAP1_RCC_DEV0_EPF0_STRAP2 0xd002
+#define regRCC_STRAP1_RCC_DEV0_EPF0_STRAP2_BASE_IDX 8
+#define regRCC_STRAP1_RCC_DEV0_EPF0_STRAP3 0xd003
+#define regRCC_STRAP1_RCC_DEV0_EPF0_STRAP3_BASE_IDX 8
+#define regRCC_STRAP1_RCC_DEV0_EPF0_STRAP4 0xd004
+#define regRCC_STRAP1_RCC_DEV0_EPF0_STRAP4_BASE_IDX 8
+#define regRCC_STRAP1_RCC_DEV0_EPF0_STRAP5 0xd005
+#define regRCC_STRAP1_RCC_DEV0_EPF0_STRAP5_BASE_IDX 8
+#define regRCC_STRAP1_RCC_DEV0_EPF0_STRAP8 0xd008
+#define regRCC_STRAP1_RCC_DEV0_EPF0_STRAP8_BASE_IDX 8
+#define regRCC_STRAP1_RCC_DEV0_EPF0_STRAP9 0xd009
+#define regRCC_STRAP1_RCC_DEV0_EPF0_STRAP9_BASE_IDX 8
+#define regRCC_STRAP1_RCC_DEV0_EPF0_STRAP13 0xd00d
+#define regRCC_STRAP1_RCC_DEV0_EPF0_STRAP13_BASE_IDX 8
+#define regRCC_STRAP1_RCC_DEV0_EPF0_STRAP14 0xd00e
+#define regRCC_STRAP1_RCC_DEV0_EPF0_STRAP14_BASE_IDX 8
+#define regRCC_STRAP1_RCC_DEV0_EPF0_STRAP15 0xd00f
+#define regRCC_STRAP1_RCC_DEV0_EPF0_STRAP15_BASE_IDX 8
+#define regRCC_STRAP1_RCC_DEV0_EPF0_STRAP16 0xd010
+#define regRCC_STRAP1_RCC_DEV0_EPF0_STRAP16_BASE_IDX 8
+#define regRCC_STRAP1_RCC_DEV0_EPF0_STRAP17 0xd011
+#define regRCC_STRAP1_RCC_DEV0_EPF0_STRAP17_BASE_IDX 8
+#define regRCC_STRAP1_RCC_DEV0_EPF0_STRAP18 0xd012
+#define regRCC_STRAP1_RCC_DEV0_EPF0_STRAP18_BASE_IDX 8
+#define regRCC_STRAP1_RCC_DEV0_EPF0_STRAP26 0xd01a
+#define regRCC_STRAP1_RCC_DEV0_EPF0_STRAP26_BASE_IDX 8
+#define regRCC_STRAP1_RCC_DEV0_EPF1_STRAP0 0xd080
+#define regRCC_STRAP1_RCC_DEV0_EPF1_STRAP0_BASE_IDX 8
+#define regRCC_STRAP1_RCC_DEV0_EPF1_STRAP2 0xd082
+#define regRCC_STRAP1_RCC_DEV0_EPF1_STRAP2_BASE_IDX 8
+#define regRCC_STRAP1_RCC_DEV0_EPF1_STRAP3 0xd083
+#define regRCC_STRAP1_RCC_DEV0_EPF1_STRAP3_BASE_IDX 8
+#define regRCC_STRAP1_RCC_DEV0_EPF1_STRAP4 0xd084
+#define regRCC_STRAP1_RCC_DEV0_EPF1_STRAP4_BASE_IDX 8
+#define regRCC_STRAP1_RCC_DEV0_EPF1_STRAP5 0xd085
+#define regRCC_STRAP1_RCC_DEV0_EPF1_STRAP5_BASE_IDX 8
+#define regRCC_STRAP1_RCC_DEV0_EPF1_STRAP6 0xd086
+#define regRCC_STRAP1_RCC_DEV0_EPF1_STRAP6_BASE_IDX 8
+#define regRCC_STRAP1_RCC_DEV0_EPF1_STRAP7 0xd087
+#define regRCC_STRAP1_RCC_DEV0_EPF1_STRAP7_BASE_IDX 8
+#define regRCC_STRAP1_RCC_DEV0_EPF1_STRAP20 0xd094
+#define regRCC_STRAP1_RCC_DEV0_EPF1_STRAP20_BASE_IDX 8
+#define regRCC_STRAP1_RCC_DEV0_EPF1_STRAP21 0xd095
+#define regRCC_STRAP1_RCC_DEV0_EPF1_STRAP21_BASE_IDX 8
+#define regRCC_STRAP1_RCC_DEV0_EPF1_STRAP22 0xd096
+#define regRCC_STRAP1_RCC_DEV0_EPF1_STRAP22_BASE_IDX 8
+#define regRCC_STRAP1_RCC_DEV0_EPF1_STRAP23 0xd097
+#define regRCC_STRAP1_RCC_DEV0_EPF1_STRAP23_BASE_IDX 8
+#define regRCC_STRAP1_RCC_DEV0_EPF1_STRAP24 0xd098
+#define regRCC_STRAP1_RCC_DEV0_EPF1_STRAP24_BASE_IDX 8
+#define regRCC_STRAP1_RCC_DEV0_EPF1_STRAP25 0xd099
+#define regRCC_STRAP1_RCC_DEV0_EPF1_STRAP25_BASE_IDX 8
+#define regRCC_DEV0_EPF2_STRAP0 0xd100
+#define regRCC_DEV0_EPF2_STRAP0_BASE_IDX 8
+#define regRCC_DEV0_EPF2_STRAP2 0xd102
+#define regRCC_DEV0_EPF2_STRAP2_BASE_IDX 8
+#define regRCC_DEV0_EPF2_STRAP3 0xd103
+#define regRCC_DEV0_EPF2_STRAP3_BASE_IDX 8
+#define regRCC_DEV0_EPF2_STRAP4 0xd104
+#define regRCC_DEV0_EPF2_STRAP4_BASE_IDX 8
+#define regRCC_DEV0_EPF2_STRAP5 0xd105
+#define regRCC_DEV0_EPF2_STRAP5_BASE_IDX 8
+#define regRCC_DEV0_EPF2_STRAP6 0xd106
+#define regRCC_DEV0_EPF2_STRAP6_BASE_IDX 8
+#define regRCC_DEV0_EPF2_STRAP7 0xd107
+#define regRCC_DEV0_EPF2_STRAP7_BASE_IDX 8
+#define regRCC_DEV0_EPF2_STRAP10 0xd10a
+#define regRCC_DEV0_EPF2_STRAP10_BASE_IDX 8
+#define regRCC_DEV0_EPF2_STRAP11 0xd10b
+#define regRCC_DEV0_EPF2_STRAP11_BASE_IDX 8
+#define regRCC_DEV0_EPF2_STRAP12 0xd10c
+#define regRCC_DEV0_EPF2_STRAP12_BASE_IDX 8
+#define regRCC_DEV0_EPF2_STRAP13 0xd10d
+#define regRCC_DEV0_EPF2_STRAP13_BASE_IDX 8
+#define regRCC_DEV0_EPF2_STRAP14 0xd10e
+#define regRCC_DEV0_EPF2_STRAP14_BASE_IDX 8
+#define regRCC_DEV0_EPF2_STRAP20 0xd114
+#define regRCC_DEV0_EPF2_STRAP20_BASE_IDX 8
+#define regRCC_DEV0_EPF3_STRAP0 0xd180
+#define regRCC_DEV0_EPF3_STRAP0_BASE_IDX 8
+#define regRCC_DEV0_EPF3_STRAP2 0xd182
+#define regRCC_DEV0_EPF3_STRAP2_BASE_IDX 8
+#define regRCC_DEV0_EPF3_STRAP3 0xd183
+#define regRCC_DEV0_EPF3_STRAP3_BASE_IDX 8
+#define regRCC_DEV0_EPF3_STRAP4 0xd184
+#define regRCC_DEV0_EPF3_STRAP4_BASE_IDX 8
+#define regRCC_DEV0_EPF3_STRAP5 0xd185
+#define regRCC_DEV0_EPF3_STRAP5_BASE_IDX 8
+#define regRCC_DEV0_EPF3_STRAP6 0xd186
+#define regRCC_DEV0_EPF3_STRAP6_BASE_IDX 8
+#define regRCC_DEV0_EPF3_STRAP7 0xd187
+#define regRCC_DEV0_EPF3_STRAP7_BASE_IDX 8
+#define regRCC_DEV0_EPF3_STRAP10 0xd18a
+#define regRCC_DEV0_EPF3_STRAP10_BASE_IDX 8
+#define regRCC_DEV0_EPF3_STRAP11 0xd18b
+#define regRCC_DEV0_EPF3_STRAP11_BASE_IDX 8
+#define regRCC_DEV0_EPF3_STRAP12 0xd18c
+#define regRCC_DEV0_EPF3_STRAP12_BASE_IDX 8
+#define regRCC_DEV0_EPF3_STRAP13 0xd18d
+#define regRCC_DEV0_EPF3_STRAP13_BASE_IDX 8
+#define regRCC_DEV0_EPF3_STRAP14 0xd18e
+#define regRCC_DEV0_EPF3_STRAP14_BASE_IDX 8
+#define regRCC_DEV0_EPF3_STRAP20 0xd194
+#define regRCC_DEV0_EPF3_STRAP20_BASE_IDX 8
+#define regRCC_DEV0_EPF4_STRAP0 0xd200
+#define regRCC_DEV0_EPF4_STRAP0_BASE_IDX 8
+#define regRCC_DEV0_EPF4_STRAP2 0xd202
+#define regRCC_DEV0_EPF4_STRAP2_BASE_IDX 8
+#define regRCC_DEV0_EPF4_STRAP3 0xd203
+#define regRCC_DEV0_EPF4_STRAP3_BASE_IDX 8
+#define regRCC_DEV0_EPF4_STRAP4 0xd204
+#define regRCC_DEV0_EPF4_STRAP4_BASE_IDX 8
+#define regRCC_DEV0_EPF4_STRAP5 0xd205
+#define regRCC_DEV0_EPF4_STRAP5_BASE_IDX 8
+#define regRCC_DEV0_EPF4_STRAP6 0xd206
+#define regRCC_DEV0_EPF4_STRAP6_BASE_IDX 8
+#define regRCC_DEV0_EPF4_STRAP7 0xd207
+#define regRCC_DEV0_EPF4_STRAP7_BASE_IDX 8
+#define regRCC_DEV0_EPF4_STRAP13 0xd20d
+#define regRCC_DEV0_EPF4_STRAP13_BASE_IDX 8
+#define regRCC_DEV0_EPF4_STRAP14 0xd20e
+#define regRCC_DEV0_EPF4_STRAP14_BASE_IDX 8
+#define regRCC_DEV0_EPF5_STRAP0 0xd280
+#define regRCC_DEV0_EPF5_STRAP0_BASE_IDX 8
+#define regRCC_DEV0_EPF5_STRAP2 0xd282
+#define regRCC_DEV0_EPF5_STRAP2_BASE_IDX 8
+#define regRCC_DEV0_EPF5_STRAP3 0xd283
+#define regRCC_DEV0_EPF5_STRAP3_BASE_IDX 8
+#define regRCC_DEV0_EPF5_STRAP4 0xd284
+#define regRCC_DEV0_EPF5_STRAP4_BASE_IDX 8
+#define regRCC_DEV0_EPF5_STRAP5 0xd285
+#define regRCC_DEV0_EPF5_STRAP5_BASE_IDX 8
+#define regRCC_DEV0_EPF5_STRAP6 0xd286
+#define regRCC_DEV0_EPF5_STRAP6_BASE_IDX 8
+#define regRCC_DEV0_EPF5_STRAP7 0xd287
+#define regRCC_DEV0_EPF5_STRAP7_BASE_IDX 8
+#define regRCC_DEV0_EPF5_STRAP13 0xd28d
+#define regRCC_DEV0_EPF5_STRAP13_BASE_IDX 8
+#define regRCC_DEV0_EPF5_STRAP14 0xd28e
+#define regRCC_DEV0_EPF5_STRAP14_BASE_IDX 8
+#define regRCC_DEV0_EPF6_STRAP0 0xd300
+#define regRCC_DEV0_EPF6_STRAP0_BASE_IDX 8
+#define regRCC_DEV0_EPF6_STRAP2 0xd302
+#define regRCC_DEV0_EPF6_STRAP2_BASE_IDX 8
+#define regRCC_DEV0_EPF6_STRAP3 0xd303
+#define regRCC_DEV0_EPF6_STRAP3_BASE_IDX 8
+#define regRCC_DEV0_EPF6_STRAP4 0xd304
+#define regRCC_DEV0_EPF6_STRAP4_BASE_IDX 8
+#define regRCC_DEV0_EPF6_STRAP5 0xd305
+#define regRCC_DEV0_EPF6_STRAP5_BASE_IDX 8
+#define regRCC_DEV0_EPF6_STRAP6 0xd306
+#define regRCC_DEV0_EPF6_STRAP6_BASE_IDX 8
+#define regRCC_DEV0_EPF6_STRAP13 0xd30d
+#define regRCC_DEV0_EPF6_STRAP13_BASE_IDX 8
+#define regRCC_DEV0_EPF6_STRAP14 0xd30e
+#define regRCC_DEV0_EPF6_STRAP14_BASE_IDX 8
+#define regRCC_DEV0_EPF7_STRAP0 0xd380
+#define regRCC_DEV0_EPF7_STRAP0_BASE_IDX 8
+#define regRCC_DEV0_EPF7_STRAP2 0xd382
+#define regRCC_DEV0_EPF7_STRAP2_BASE_IDX 8
+#define regRCC_DEV0_EPF7_STRAP3 0xd383
+#define regRCC_DEV0_EPF7_STRAP3_BASE_IDX 8
+#define regRCC_DEV0_EPF7_STRAP4 0xd384
+#define regRCC_DEV0_EPF7_STRAP4_BASE_IDX 8
+#define regRCC_DEV0_EPF7_STRAP5 0xd385
+#define regRCC_DEV0_EPF7_STRAP5_BASE_IDX 8
+#define regRCC_DEV0_EPF7_STRAP6 0xd386
+#define regRCC_DEV0_EPF7_STRAP6_BASE_IDX 8
+#define regRCC_DEV0_EPF7_STRAP7 0xd387
+#define regRCC_DEV0_EPF7_STRAP7_BASE_IDX 8
+#define regRCC_DEV0_EPF7_STRAP13 0xd38d
+#define regRCC_DEV0_EPF7_STRAP13_BASE_IDX 8
+#define regRCC_DEV0_EPF7_STRAP14 0xd38e
+#define regRCC_DEV0_EPF7_STRAP14_BASE_IDX 8
+#define regRCC_DEV1_EPF0_STRAP0 0xd400
+#define regRCC_DEV1_EPF0_STRAP0_BASE_IDX 8
+#define regRCC_DEV1_EPF0_STRAP2 0xd402
+#define regRCC_DEV1_EPF0_STRAP2_BASE_IDX 8
+#define regRCC_DEV1_EPF0_STRAP3 0xd403
+#define regRCC_DEV1_EPF0_STRAP3_BASE_IDX 8
+#define regRCC_DEV1_EPF0_STRAP4 0xd404
+#define regRCC_DEV1_EPF0_STRAP4_BASE_IDX 8
+#define regRCC_DEV1_EPF0_STRAP5 0xd405
+#define regRCC_DEV1_EPF0_STRAP5_BASE_IDX 8
+#define regRCC_DEV1_EPF0_STRAP6 0xd406
+#define regRCC_DEV1_EPF0_STRAP6_BASE_IDX 8
+#define regRCC_DEV1_EPF0_STRAP7 0xd407
+#define regRCC_DEV1_EPF0_STRAP7_BASE_IDX 8
+#define regRCC_DEV1_EPF0_STRAP13 0xd40d
+#define regRCC_DEV1_EPF0_STRAP13_BASE_IDX 8
+#define regRCC_DEV1_EPF0_STRAP14 0xd40e
+#define regRCC_DEV1_EPF0_STRAP14_BASE_IDX 8
+#define regRCC_DEV1_EPF1_STRAP0 0xd480
+#define regRCC_DEV1_EPF1_STRAP0_BASE_IDX 8
+#define regRCC_DEV1_EPF1_STRAP2 0xd482
+#define regRCC_DEV1_EPF1_STRAP2_BASE_IDX 8
+#define regRCC_DEV1_EPF1_STRAP3 0xd483
+#define regRCC_DEV1_EPF1_STRAP3_BASE_IDX 8
+#define regRCC_DEV1_EPF1_STRAP4 0xd484
+#define regRCC_DEV1_EPF1_STRAP4_BASE_IDX 8
+#define regRCC_DEV1_EPF1_STRAP5 0xd485
+#define regRCC_DEV1_EPF1_STRAP5_BASE_IDX 8
+#define regRCC_DEV1_EPF1_STRAP6 0xd486
+#define regRCC_DEV1_EPF1_STRAP6_BASE_IDX 8
+#define regRCC_DEV1_EPF1_STRAP7 0xd487
+#define regRCC_DEV1_EPF1_STRAP7_BASE_IDX 8
+#define regRCC_DEV1_EPF1_STRAP13 0xd48d
+#define regRCC_DEV1_EPF1_STRAP13_BASE_IDX 8
+#define regRCC_DEV1_EPF1_STRAP14 0xd48e
+#define regRCC_DEV1_EPF1_STRAP14_BASE_IDX 8
+#define regRCC_DEV2_EPF0_STRAP0 0xd800
+#define regRCC_DEV2_EPF0_STRAP0_BASE_IDX 8
+#define regRCC_DEV2_EPF0_STRAP2 0xd802
+#define regRCC_DEV2_EPF0_STRAP2_BASE_IDX 8
+#define regRCC_DEV2_EPF0_STRAP3 0xd803
+#define regRCC_DEV2_EPF0_STRAP3_BASE_IDX 8
+#define regRCC_DEV2_EPF0_STRAP4 0xd804
+#define regRCC_DEV2_EPF0_STRAP4_BASE_IDX 8
+#define regRCC_DEV2_EPF0_STRAP5 0xd805
+#define regRCC_DEV2_EPF0_STRAP5_BASE_IDX 8
+#define regRCC_DEV2_EPF0_STRAP6 0xd806
+#define regRCC_DEV2_EPF0_STRAP6_BASE_IDX 8
+#define regRCC_DEV2_EPF0_STRAP7 0xd807
+#define regRCC_DEV2_EPF0_STRAP7_BASE_IDX 8
+#define regRCC_DEV2_EPF0_STRAP13 0xd80d
+#define regRCC_DEV2_EPF0_STRAP13_BASE_IDX 8
+#define regRCC_DEV2_EPF0_STRAP14 0xd80e
+#define regRCC_DEV2_EPF0_STRAP14_BASE_IDX 8
+#define regRCC_DEV2_EPF1_STRAP0 0xd880
+#define regRCC_DEV2_EPF1_STRAP0_BASE_IDX 8
+#define regRCC_DEV2_EPF1_STRAP2 0xd882
+#define regRCC_DEV2_EPF1_STRAP2_BASE_IDX 8
+#define regRCC_DEV2_EPF1_STRAP3 0xd883
+#define regRCC_DEV2_EPF1_STRAP3_BASE_IDX 8
+#define regRCC_DEV2_EPF1_STRAP4 0xd884
+#define regRCC_DEV2_EPF1_STRAP4_BASE_IDX 8
+#define regRCC_DEV2_EPF1_STRAP5 0xd885
+#define regRCC_DEV2_EPF1_STRAP5_BASE_IDX 8
+#define regRCC_DEV2_EPF1_STRAP6 0xd886
+#define regRCC_DEV2_EPF1_STRAP6_BASE_IDX 8
+#define regRCC_DEV2_EPF1_STRAP13 0xd88d
+#define regRCC_DEV2_EPF1_STRAP13_BASE_IDX 8
+#define regRCC_DEV2_EPF1_STRAP14 0xd88e
+#define regRCC_DEV2_EPF1_STRAP14_BASE_IDX 8
+#define regRCC_DEV2_EPF2_STRAP0 0xd900
+#define regRCC_DEV2_EPF2_STRAP0_BASE_IDX 8
+#define regRCC_DEV2_EPF2_STRAP2 0xd902
+#define regRCC_DEV2_EPF2_STRAP2_BASE_IDX 8
+#define regRCC_DEV2_EPF2_STRAP3 0xd903
+#define regRCC_DEV2_EPF2_STRAP3_BASE_IDX 8
+#define regRCC_DEV2_EPF2_STRAP4 0xd904
+#define regRCC_DEV2_EPF2_STRAP4_BASE_IDX 8
+#define regRCC_DEV2_EPF2_STRAP5 0xd905
+#define regRCC_DEV2_EPF2_STRAP5_BASE_IDX 8
+#define regRCC_DEV2_EPF2_STRAP6 0xd906
+#define regRCC_DEV2_EPF2_STRAP6_BASE_IDX 8
+#define regRCC_DEV2_EPF2_STRAP13 0xd90d
+#define regRCC_DEV2_EPF2_STRAP13_BASE_IDX 8
+#define regRCC_DEV2_EPF2_STRAP14 0xd90e
+#define regRCC_DEV2_EPF2_STRAP14_BASE_IDX 8
+
+
+// addressBlock: aid_nbio_nbif0_bif_rst_bif_rst_regblk
+// base address: 0x10100000
+#define regHARD_RST_CTRL 0xe000
+#define regHARD_RST_CTRL_BASE_IDX 8
+#define regSELF_SOFT_RST 0xe002
+#define regSELF_SOFT_RST_BASE_IDX 8
+#define regBIF_GFX_DRV_VPU_RST 0xe003
+#define regBIF_GFX_DRV_VPU_RST_BASE_IDX 8
+#define regBIF_RST_MISC_CTRL 0xe004
+#define regBIF_RST_MISC_CTRL_BASE_IDX 8
+#define regBIF_RST_MISC_CTRL2 0xe005
+#define regBIF_RST_MISC_CTRL2_BASE_IDX 8
+#define regBIF_RST_MISC_CTRL3 0xe006
+#define regBIF_RST_MISC_CTRL3_BASE_IDX 8
+#define regDEV0_PF0_FLR_RST_CTRL 0xe008
+#define regDEV0_PF0_FLR_RST_CTRL_BASE_IDX 8
+#define regDEV0_PF1_FLR_RST_CTRL 0xe009
+#define regDEV0_PF1_FLR_RST_CTRL_BASE_IDX 8
+#define regBIF_INST_RESET_INTR_STS 0xe010
+#define regBIF_INST_RESET_INTR_STS_BASE_IDX 8
+#define regBIF_PF_FLR_INTR_STS 0xe011
+#define regBIF_PF_FLR_INTR_STS_BASE_IDX 8
+#define regBIF_D3HOTD0_INTR_STS 0xe012
+#define regBIF_D3HOTD0_INTR_STS_BASE_IDX 8
+#define regBIF_POWER_INTR_STS 0xe014
+#define regBIF_POWER_INTR_STS_BASE_IDX 8
+#define regBIF_PF_DSTATE_INTR_STS 0xe015
+#define regBIF_PF_DSTATE_INTR_STS_BASE_IDX 8
+#define regSELF_SOFT_RST_2 0xe016
+#define regSELF_SOFT_RST_2_BASE_IDX 8
+#define regBIF_INST_RESET_INTR_MASK 0xe020
+#define regBIF_INST_RESET_INTR_MASK_BASE_IDX 8
+#define regBIF_PF_FLR_INTR_MASK 0xe021
+#define regBIF_PF_FLR_INTR_MASK_BASE_IDX 8
+#define regBIF_D3HOTD0_INTR_MASK 0xe022
+#define regBIF_D3HOTD0_INTR_MASK_BASE_IDX 8
+#define regBIF_POWER_INTR_MASK 0xe024
+#define regBIF_POWER_INTR_MASK_BASE_IDX 8
+#define regBIF_PF_DSTATE_INTR_MASK 0xe025
+#define regBIF_PF_DSTATE_INTR_MASK_BASE_IDX 8
+#define regBIF_PF_FLR_RST 0xe040
+#define regBIF_PF_FLR_RST_BASE_IDX 8
+#define regBIF_DEV0_PF0_DSTATE_VALUE 0xe050
+#define regBIF_DEV0_PF0_DSTATE_VALUE_BASE_IDX 8
+#define regBIF_DEV0_PF1_DSTATE_VALUE 0xe051
+#define regBIF_DEV0_PF1_DSTATE_VALUE_BASE_IDX 8
+#define regDEV0_PF0_D3HOTD0_RST_CTRL 0xe078
+#define regDEV0_PF0_D3HOTD0_RST_CTRL_BASE_IDX 8
+#define regDEV0_PF1_D3HOTD0_RST_CTRL 0xe079
+#define regDEV0_PF1_D3HOTD0_RST_CTRL_BASE_IDX 8
+#define regBIF_PORT0_DSTATE_VALUE 0xe230
+#define regBIF_PORT0_DSTATE_VALUE_BASE_IDX 8
+
+
+// addressBlock: aid_nbio_nbif0_bif_misc_bif_misc_regblk
+// base address: 0x10100000
+#define regREGS_ROM_OFFSET_CTRL 0xcc23
+#define regREGS_ROM_OFFSET_CTRL_BASE_IDX 8
+#define regNBIF_STRAP_BIOS_CNTL 0xcc81
+#define regNBIF_STRAP_BIOS_CNTL_BASE_IDX 8
+#define regDOORBELL0_CTRL_ENTRY_0 0xcd00
+#define regDOORBELL0_CTRL_ENTRY_0_BASE_IDX 8
+#define regDOORBELL0_CTRL_ENTRY_1 0xcd01
+#define regDOORBELL0_CTRL_ENTRY_1_BASE_IDX 8
+#define regDOORBELL0_CTRL_ENTRY_2 0xcd02
+#define regDOORBELL0_CTRL_ENTRY_2_BASE_IDX 8
+#define regDOORBELL0_CTRL_ENTRY_3 0xcd03
+#define regDOORBELL0_CTRL_ENTRY_3_BASE_IDX 8
+#define regDOORBELL0_CTRL_ENTRY_4 0xcd04
+#define regDOORBELL0_CTRL_ENTRY_4_BASE_IDX 8
+#define regDOORBELL0_CTRL_ENTRY_5 0xcd05
+#define regDOORBELL0_CTRL_ENTRY_5_BASE_IDX 8
+#define regDOORBELL0_CTRL_ENTRY_6 0xcd06
+#define regDOORBELL0_CTRL_ENTRY_6_BASE_IDX 8
+#define regDOORBELL0_CTRL_ENTRY_7 0xcd07
+#define regDOORBELL0_CTRL_ENTRY_7_BASE_IDX 8
+#define regDOORBELL0_CTRL_ENTRY_8 0xcd08
+#define regDOORBELL0_CTRL_ENTRY_8_BASE_IDX 8
+#define regDOORBELL0_CTRL_ENTRY_9 0xcd09
+#define regDOORBELL0_CTRL_ENTRY_9_BASE_IDX 8
+#define regDOORBELL0_CTRL_ENTRY_10 0xcd0a
+#define regDOORBELL0_CTRL_ENTRY_10_BASE_IDX 8
+#define regDOORBELL0_CTRL_ENTRY_11 0xcd0b
+#define regDOORBELL0_CTRL_ENTRY_11_BASE_IDX 8
+#define regDOORBELL0_CTRL_ENTRY_12 0xcd0c
+#define regDOORBELL0_CTRL_ENTRY_12_BASE_IDX 8
+#define regDOORBELL0_CTRL_ENTRY_13 0xcd0d
+#define regDOORBELL0_CTRL_ENTRY_13_BASE_IDX 8
+#define regDOORBELL0_CTRL_ENTRY_14 0xcd0e
+#define regDOORBELL0_CTRL_ENTRY_14_BASE_IDX 8
+#define regDOORBELL0_CTRL_ENTRY_15 0xcd0f
+#define regDOORBELL0_CTRL_ENTRY_15_BASE_IDX 8
+#define regDOORBELL0_CTRL_ENTRY_16 0xcd10
+#define regDOORBELL0_CTRL_ENTRY_16_BASE_IDX 8
+#define regDOORBELL0_CTRL_ENTRY_17 0xcd11
+#define regDOORBELL0_CTRL_ENTRY_17_BASE_IDX 8
+#define regDOORBELL0_CTRL_ENTRY_18 0xcd12
+#define regDOORBELL0_CTRL_ENTRY_18_BASE_IDX 8
+#define regDOORBELL0_CTRL_ENTRY_19 0xcd13
+#define regDOORBELL0_CTRL_ENTRY_19_BASE_IDX 8
+#define regDOORBELL0_CTRL_ENTRY_20 0xcd14
+#define regDOORBELL0_CTRL_ENTRY_20_BASE_IDX 8
+#define regAID0_VF0_BASE_ADDR 0xcd40
+#define regAID0_VF0_BASE_ADDR_BASE_IDX 8
+#define regAID1_VF0_BASE_ADDR 0xcd41
+#define regAID1_VF0_BASE_ADDR_BASE_IDX 8
+#define regAID2_VF0_BASE_ADDR 0xcd42
+#define regAID2_VF0_BASE_ADDR_BASE_IDX 8
+#define regAID3_VF0_BASE_ADDR 0xcd43
+#define regAID3_VF0_BASE_ADDR_BASE_IDX 8
+#define regAID0_XCC0_VF0_BASE_ADDR 0xcd44
+#define regAID0_XCC0_VF0_BASE_ADDR_BASE_IDX 8
+#define regAID0_XCC1_VF0_BASE_ADDR 0xcd45
+#define regAID0_XCC1_VF0_BASE_ADDR_BASE_IDX 8
+#define regAID1_XCC0_VF0_BASE_ADDR 0xcd46
+#define regAID1_XCC0_VF0_BASE_ADDR_BASE_IDX 8
+#define regAID1_XCC1_VF0_BASE_ADDR 0xcd47
+#define regAID1_XCC1_VF0_BASE_ADDR_BASE_IDX 8
+#define regAID2_XCC0_VF0_BASE_ADDR 0xcd48
+#define regAID2_XCC0_VF0_BASE_ADDR_BASE_IDX 8
+#define regAID2_XCC1_VF0_BASE_ADDR 0xcd49
+#define regAID2_XCC1_VF0_BASE_ADDR_BASE_IDX 8
+#define regAID3_XCC0_VF0_BASE_ADDR 0xcd4a
+#define regAID3_XCC0_VF0_BASE_ADDR_BASE_IDX 8
+#define regAID3_XCC1_VF0_BASE_ADDR 0xcd4b
+#define regAID3_XCC1_VF0_BASE_ADDR_BASE_IDX 8
+#define regAID0_NBIF_VF0_BASE_ADDR 0xcd4c
+#define regAID0_NBIF_VF0_BASE_ADDR_BASE_IDX 8
+#define regAID0_ATHUB_VF0_BASE_ADDR 0xcd4d
+#define regAID0_ATHUB_VF0_BASE_ADDR_BASE_IDX 8
+#define regAID0_IH_VF0_BASE_ADDR 0xcd4e
+#define regAID0_IH_VF0_BASE_ADDR_BASE_IDX 8
+#define regAID0_HDP_VF0_BASE_ADDR 0xcd4f
+#define regAID0_HDP_VF0_BASE_ADDR_BASE_IDX 8
+#define regAID0_VF1_BASE_ADDR 0xcd50
+#define regAID0_VF1_BASE_ADDR_BASE_IDX 8
+#define regAID1_VF1_BASE_ADDR 0xcd51
+#define regAID1_VF1_BASE_ADDR_BASE_IDX 8
+#define regAID2_VF1_BASE_ADDR 0xcd52
+#define regAID2_VF1_BASE_ADDR_BASE_IDX 8
+#define regAID3_VF1_BASE_ADDR 0xcd53
+#define regAID3_VF1_BASE_ADDR_BASE_IDX 8
+#define regAID0_XCC0_VF1_BASE_ADDR 0xcd54
+#define regAID0_XCC0_VF1_BASE_ADDR_BASE_IDX 8
+#define regAID0_XCC1_VF1_BASE_ADDR 0xcd55
+#define regAID0_XCC1_VF1_BASE_ADDR_BASE_IDX 8
+#define regAID1_XCC0_VF1_BASE_ADDR 0xcd56
+#define regAID1_XCC0_VF1_BASE_ADDR_BASE_IDX 8
+#define regAID1_XCC1_VF1_BASE_ADDR 0xcd57
+#define regAID1_XCC1_VF1_BASE_ADDR_BASE_IDX 8
+#define regAID2_XCC0_VF1_BASE_ADDR 0xcd58
+#define regAID2_XCC0_VF1_BASE_ADDR_BASE_IDX 8
+#define regAID2_XCC1_VF1_BASE_ADDR 0xcd59
+#define regAID2_XCC1_VF1_BASE_ADDR_BASE_IDX 8
+#define regAID3_XCC0_VF1_BASE_ADDR 0xcd5a
+#define regAID3_XCC0_VF1_BASE_ADDR_BASE_IDX 8
+#define regAID3_XCC1_VF1_BASE_ADDR 0xcd5b
+#define regAID3_XCC1_VF1_BASE_ADDR_BASE_IDX 8
+#define regAID0_NBIF_VF1_BASE_ADDR 0xcd5c
+#define regAID0_NBIF_VF1_BASE_ADDR_BASE_IDX 8
+#define regAID0_ATHUB_VF1_BASE_ADDR 0xcd5d
+#define regAID0_ATHUB_VF1_BASE_ADDR_BASE_IDX 8
+#define regAID0_IH_VF1_BASE_ADDR 0xcd5e
+#define regAID0_IH_VF1_BASE_ADDR_BASE_IDX 8
+#define regAID0_HDP_VF1_BASE_ADDR 0xcd5f
+#define regAID0_HDP_VF1_BASE_ADDR_BASE_IDX 8
+#define regAID0_VF2_BASE_ADDR 0xcd60
+#define regAID0_VF2_BASE_ADDR_BASE_IDX 8
+#define regAID1_VF2_BASE_ADDR 0xcd61
+#define regAID1_VF2_BASE_ADDR_BASE_IDX 8
+#define regAID2_VF2_BASE_ADDR 0xcd62
+#define regAID2_VF2_BASE_ADDR_BASE_IDX 8
+#define regAID3_VF2_BASE_ADDR 0xcd63
+#define regAID3_VF2_BASE_ADDR_BASE_IDX 8
+#define regAID0_XCC0_VF2_BASE_ADDR 0xcd64
+#define regAID0_XCC0_VF2_BASE_ADDR_BASE_IDX 8
+#define regAID0_XCC1_VF2_BASE_ADDR 0xcd65
+#define regAID0_XCC1_VF2_BASE_ADDR_BASE_IDX 8
+#define regAID1_XCC0_VF2_BASE_ADDR 0xcd66
+#define regAID1_XCC0_VF2_BASE_ADDR_BASE_IDX 8
+#define regAID1_XCC1_VF2_BASE_ADDR 0xcd67
+#define regAID1_XCC1_VF2_BASE_ADDR_BASE_IDX 8
+#define regAID2_XCC0_VF2_BASE_ADDR 0xcd68
+#define regAID2_XCC0_VF2_BASE_ADDR_BASE_IDX 8
+#define regAID2_XCC1_VF2_BASE_ADDR 0xcd69
+#define regAID2_XCC1_VF2_BASE_ADDR_BASE_IDX 8
+#define regAID3_XCC0_VF2_BASE_ADDR 0xcd6a
+#define regAID3_XCC0_VF2_BASE_ADDR_BASE_IDX 8
+#define regAID3_XCC1_VF2_BASE_ADDR 0xcd6b
+#define regAID3_XCC1_VF2_BASE_ADDR_BASE_IDX 8
+#define regAID0_NBIF_VF2_BASE_ADDR 0xcd6c
+#define regAID0_NBIF_VF2_BASE_ADDR_BASE_IDX 8
+#define regAID0_ATHUB_VF2_BASE_ADDR 0xcd6d
+#define regAID0_ATHUB_VF2_BASE_ADDR_BASE_IDX 8
+#define regAID0_IH_VF2_BASE_ADDR 0xcd6e
+#define regAID0_IH_VF2_BASE_ADDR_BASE_IDX 8
+#define regAID0_HDP_VF2_BASE_ADDR 0xcd6f
+#define regAID0_HDP_VF2_BASE_ADDR_BASE_IDX 8
+#define regAID0_VF3_BASE_ADDR 0xcd70
+#define regAID0_VF3_BASE_ADDR_BASE_IDX 8
+#define regAID1_VF3_BASE_ADDR 0xcd71
+#define regAID1_VF3_BASE_ADDR_BASE_IDX 8
+#define regAID2_VF3_BASE_ADDR 0xcd72
+#define regAID2_VF3_BASE_ADDR_BASE_IDX 8
+#define regAID3_VF3_BASE_ADDR 0xcd73
+#define regAID3_VF3_BASE_ADDR_BASE_IDX 8
+#define regAID0_XCC0_VF3_BASE_ADDR 0xcd74
+#define regAID0_XCC0_VF3_BASE_ADDR_BASE_IDX 8
+#define regAID0_XCC1_VF3_BASE_ADDR 0xcd75
+#define regAID0_XCC1_VF3_BASE_ADDR_BASE_IDX 8
+#define regAID1_XCC0_VF3_BASE_ADDR 0xcd76
+#define regAID1_XCC0_VF3_BASE_ADDR_BASE_IDX 8
+#define regAID1_XCC1_VF3_BASE_ADDR 0xcd77
+#define regAID1_XCC1_VF3_BASE_ADDR_BASE_IDX 8
+#define regAID2_XCC0_VF3_BASE_ADDR 0xcd78
+#define regAID2_XCC0_VF3_BASE_ADDR_BASE_IDX 8
+#define regAID2_XCC1_VF3_BASE_ADDR 0xcd79
+#define regAID2_XCC1_VF3_BASE_ADDR_BASE_IDX 8
+#define regAID3_XCC0_VF3_BASE_ADDR 0xcd7a
+#define regAID3_XCC0_VF3_BASE_ADDR_BASE_IDX 8
+#define regAID3_XCC1_VF3_BASE_ADDR 0xcd7b
+#define regAID3_XCC1_VF3_BASE_ADDR_BASE_IDX 8
+#define regAID0_NBIF_VF3_BASE_ADDR 0xcd7c
+#define regAID0_NBIF_VF3_BASE_ADDR_BASE_IDX 8
+#define regAID0_ATHUB_VF3_BASE_ADDR 0xcd7d
+#define regAID0_ATHUB_VF3_BASE_ADDR_BASE_IDX 8
+#define regAID0_IH_VF3_BASE_ADDR 0xcd7e
+#define regAID0_IH_VF3_BASE_ADDR_BASE_IDX 8
+#define regAID0_HDP_VF3_BASE_ADDR 0xcd7f
+#define regAID0_HDP_VF3_BASE_ADDR_BASE_IDX 8
+#define regAID0_VF4_BASE_ADDR 0xcd80
+#define regAID0_VF4_BASE_ADDR_BASE_IDX 8
+#define regAID1_VF4_BASE_ADDR 0xcd81
+#define regAID1_VF4_BASE_ADDR_BASE_IDX 8
+#define regAID2_VF4_BASE_ADDR 0xcd82
+#define regAID2_VF4_BASE_ADDR_BASE_IDX 8
+#define regAID3_VF4_BASE_ADDR 0xcd83
+#define regAID3_VF4_BASE_ADDR_BASE_IDX 8
+#define regAID0_XCC0_VF4_BASE_ADDR 0xcd84
+#define regAID0_XCC0_VF4_BASE_ADDR_BASE_IDX 8
+#define regAID0_XCC1_VF4_BASE_ADDR 0xcd85
+#define regAID0_XCC1_VF4_BASE_ADDR_BASE_IDX 8
+#define regAID1_XCC0_VF4_BASE_ADDR 0xcd86
+#define regAID1_XCC0_VF4_BASE_ADDR_BASE_IDX 8
+#define regAID1_XCC1_VF4_BASE_ADDR 0xcd87
+#define regAID1_XCC1_VF4_BASE_ADDR_BASE_IDX 8
+#define regAID2_XCC0_VF4_BASE_ADDR 0xcd88
+#define regAID2_XCC0_VF4_BASE_ADDR_BASE_IDX 8
+#define regAID2_XCC1_VF4_BASE_ADDR 0xcd89
+#define regAID2_XCC1_VF4_BASE_ADDR_BASE_IDX 8
+#define regAID3_XCC0_VF4_BASE_ADDR 0xcd8a
+#define regAID3_XCC0_VF4_BASE_ADDR_BASE_IDX 8
+#define regAID3_XCC1_VF4_BASE_ADDR 0xcd8b
+#define regAID3_XCC1_VF4_BASE_ADDR_BASE_IDX 8
+#define regAID0_NBIF_VF4_BASE_ADDR 0xcd8c
+#define regAID0_NBIF_VF4_BASE_ADDR_BASE_IDX 8
+#define regAID0_ATHUB_VF4_BASE_ADDR 0xcd8d
+#define regAID0_ATHUB_VF4_BASE_ADDR_BASE_IDX 8
+#define regAID0_IH_VF4_BASE_ADDR 0xcd8e
+#define regAID0_IH_VF4_BASE_ADDR_BASE_IDX 8
+#define regAID0_HDP_VF4_BASE_ADDR 0xcd8f
+#define regAID0_HDP_VF4_BASE_ADDR_BASE_IDX 8
+#define regAID0_VF5_BASE_ADDR 0xcd90
+#define regAID0_VF5_BASE_ADDR_BASE_IDX 8
+#define regAID1_VF5_BASE_ADDR 0xcd91
+#define regAID1_VF5_BASE_ADDR_BASE_IDX 8
+#define regAID2_VF5_BASE_ADDR 0xcd92
+#define regAID2_VF5_BASE_ADDR_BASE_IDX 8
+#define regAID3_VF5_BASE_ADDR 0xcd93
+#define regAID3_VF5_BASE_ADDR_BASE_IDX 8
+#define regAID0_XCC0_VF5_BASE_ADDR 0xcd94
+#define regAID0_XCC0_VF5_BASE_ADDR_BASE_IDX 8
+#define regAID0_XCC1_VF5_BASE_ADDR 0xcd95
+#define regAID0_XCC1_VF5_BASE_ADDR_BASE_IDX 8
+#define regAID1_XCC0_VF5_BASE_ADDR 0xcd96
+#define regAID1_XCC0_VF5_BASE_ADDR_BASE_IDX 8
+#define regAID1_XCC1_VF5_BASE_ADDR 0xcd97
+#define regAID1_XCC1_VF5_BASE_ADDR_BASE_IDX 8
+#define regAID2_XCC0_VF5_BASE_ADDR 0xcd98
+#define regAID2_XCC0_VF5_BASE_ADDR_BASE_IDX 8
+#define regAID2_XCC1_VF5_BASE_ADDR 0xcd99
+#define regAID2_XCC1_VF5_BASE_ADDR_BASE_IDX 8
+#define regAID3_XCC0_VF5_BASE_ADDR 0xcd9a
+#define regAID3_XCC0_VF5_BASE_ADDR_BASE_IDX 8
+#define regAID3_XCC1_VF5_BASE_ADDR 0xcd9b
+#define regAID3_XCC1_VF5_BASE_ADDR_BASE_IDX 8
+#define regAID0_NBIF_VF5_BASE_ADDR 0xcd9c
+#define regAID0_NBIF_VF5_BASE_ADDR_BASE_IDX 8
+#define regAID0_ATHUB_VF5_BASE_ADDR 0xcd9d
+#define regAID0_ATHUB_VF5_BASE_ADDR_BASE_IDX 8
+#define regAID0_IH_VF5_BASE_ADDR 0xcd9e
+#define regAID0_IH_VF5_BASE_ADDR_BASE_IDX 8
+#define regAID0_HDP_VF5_BASE_ADDR 0xcd9f
+#define regAID0_HDP_VF5_BASE_ADDR_BASE_IDX 8
+#define regAID0_VF6_BASE_ADDR 0xcda0
+#define regAID0_VF6_BASE_ADDR_BASE_IDX 8
+#define regAID1_VF6_BASE_ADDR 0xcda1
+#define regAID1_VF6_BASE_ADDR_BASE_IDX 8
+#define regAID2_VF6_BASE_ADDR 0xcda2
+#define regAID2_VF6_BASE_ADDR_BASE_IDX 8
+#define regAID3_VF6_BASE_ADDR 0xcda3
+#define regAID3_VF6_BASE_ADDR_BASE_IDX 8
+#define regAID0_XCC0_VF6_BASE_ADDR 0xcda4
+#define regAID0_XCC0_VF6_BASE_ADDR_BASE_IDX 8
+#define regAID0_XCC1_VF6_BASE_ADDR 0xcda5
+#define regAID0_XCC1_VF6_BASE_ADDR_BASE_IDX 8
+#define regAID1_XCC0_VF6_BASE_ADDR 0xcda6
+#define regAID1_XCC0_VF6_BASE_ADDR_BASE_IDX 8
+#define regAID1_XCC1_VF6_BASE_ADDR 0xcda7
+#define regAID1_XCC1_VF6_BASE_ADDR_BASE_IDX 8
+#define regAID2_XCC0_VF6_BASE_ADDR 0xcda8
+#define regAID2_XCC0_VF6_BASE_ADDR_BASE_IDX 8
+#define regAID2_XCC1_VF6_BASE_ADDR 0xcda9
+#define regAID2_XCC1_VF6_BASE_ADDR_BASE_IDX 8
+#define regAID3_XCC0_VF6_BASE_ADDR 0xcdaa
+#define regAID3_XCC0_VF6_BASE_ADDR_BASE_IDX 8
+#define regAID3_XCC1_VF6_BASE_ADDR 0xcdab
+#define regAID3_XCC1_VF6_BASE_ADDR_BASE_IDX 8
+#define regAID0_NBIF_VF6_BASE_ADDR 0xcdac
+#define regAID0_NBIF_VF6_BASE_ADDR_BASE_IDX 8
+#define regAID0_ATHUB_VF6_BASE_ADDR 0xcdad
+#define regAID0_ATHUB_VF6_BASE_ADDR_BASE_IDX 8
+#define regAID0_IH_VF6_BASE_ADDR 0xcdae
+#define regAID0_IH_VF6_BASE_ADDR_BASE_IDX 8
+#define regAID0_HDP_VF6_BASE_ADDR 0xcdaf
+#define regAID0_HDP_VF6_BASE_ADDR_BASE_IDX 8
+#define regAID0_VF7_BASE_ADDR 0xcdb0
+#define regAID0_VF7_BASE_ADDR_BASE_IDX 8
+#define regAID1_VF7_BASE_ADDR 0xcdb1
+#define regAID1_VF7_BASE_ADDR_BASE_IDX 8
+#define regAID2_VF7_BASE_ADDR 0xcdb2
+#define regAID2_VF7_BASE_ADDR_BASE_IDX 8
+#define regAID3_VF7_BASE_ADDR 0xcdb3
+#define regAID3_VF7_BASE_ADDR_BASE_IDX 8
+#define regAID0_XCC0_VF7_BASE_ADDR 0xcdb4
+#define regAID0_XCC0_VF7_BASE_ADDR_BASE_IDX 8
+#define regAID0_XCC1_VF7_BASE_ADDR 0xcdb5
+#define regAID0_XCC1_VF7_BASE_ADDR_BASE_IDX 8
+#define regAID1_XCC0_VF7_BASE_ADDR 0xcdb6
+#define regAID1_XCC0_VF7_BASE_ADDR_BASE_IDX 8
+#define regAID1_XCC1_VF7_BASE_ADDR 0xcdb7
+#define regAID1_XCC1_VF7_BASE_ADDR_BASE_IDX 8
+#define regAID2_XCC0_VF7_BASE_ADDR 0xcdb8
+#define regAID2_XCC0_VF7_BASE_ADDR_BASE_IDX 8
+#define regAID2_XCC1_VF7_BASE_ADDR 0xcdb9
+#define regAID2_XCC1_VF7_BASE_ADDR_BASE_IDX 8
+#define regAID3_XCC0_VF7_BASE_ADDR 0xcdba
+#define regAID3_XCC0_VF7_BASE_ADDR_BASE_IDX 8
+#define regAID3_XCC1_VF7_BASE_ADDR 0xcdbb
+#define regAID3_XCC1_VF7_BASE_ADDR_BASE_IDX 8
+#define regAID0_NBIF_VF7_BASE_ADDR 0xcdbc
+#define regAID0_NBIF_VF7_BASE_ADDR_BASE_IDX 8
+#define regAID0_ATHUB_VF7_BASE_ADDR 0xcdbd
+#define regAID0_ATHUB_VF7_BASE_ADDR_BASE_IDX 8
+#define regAID0_IH_VF7_BASE_ADDR 0xcdbe
+#define regAID0_IH_VF7_BASE_ADDR_BASE_IDX 8
+#define regAID0_HDP_VF7_BASE_ADDR 0xcdbf
+#define regAID0_HDP_VF7_BASE_ADDR_BASE_IDX 8
+#define regAID0_PF_BASE_ADDR 0xcdc0
+#define regAID0_PF_BASE_ADDR_BASE_IDX 8
+#define regAID0_XCC0_PF_BASE_ADDR 0xcdc1
+#define regAID0_XCC0_PF_BASE_ADDR_BASE_IDX 8
+#define regAID0_XCC1_PF_BASE_ADDR 0xcdc2
+#define regAID0_XCC1_PF_BASE_ADDR_BASE_IDX 8
+#define regAID1_PF_BASE_ADDR 0xcdc3
+#define regAID1_PF_BASE_ADDR_BASE_IDX 8
+#define regAID1_XCC0_PF_BASE_ADDR 0xcdc4
+#define regAID1_XCC0_PF_BASE_ADDR_BASE_IDX 8
+#define regAID1_XCC1_PF_BASE_ADDR 0xcdc5
+#define regAID1_XCC1_PF_BASE_ADDR_BASE_IDX 8
+#define regAID2_PF_BASE_ADDR 0xcdc6
+#define regAID2_PF_BASE_ADDR_BASE_IDX 8
+#define regAID2_XCC0_PF_BASE_ADDR 0xcdc7
+#define regAID2_XCC0_PF_BASE_ADDR_BASE_IDX 8
+#define regAID2_XCC1_PF_BASE_ADDR 0xcdc8
+#define regAID2_XCC1_PF_BASE_ADDR_BASE_IDX 8
+#define regAID3_PF_BASE_ADDR 0xcdc9
+#define regAID3_PF_BASE_ADDR_BASE_IDX 8
+#define regAID3_XCC0_PF_BASE_ADDR 0xcdca
+#define regAID3_XCC0_PF_BASE_ADDR_BASE_IDX 8
+#define regAID3_XCC1_PF_BASE_ADDR 0xcdcb
+#define regAID3_XCC1_PF_BASE_ADDR_BASE_IDX 8
+#define regNBIF_RRMT_CNTL 0xcddc
+#define regNBIF_RRMT_CNTL_BASE_IDX 8
+#define regBIFC_DOORBELL_ACCESS_EN_PF 0xcf6e
+#define regBIFC_DOORBELL_ACCESS_EN_PF_BASE_IDX 8
+#define regBIFC_DOORBELL_ACCESS_EN_VF0 0xcf6f
+#define regBIFC_DOORBELL_ACCESS_EN_VF0_BASE_IDX 8
+#define regBIFC_DOORBELL_ACCESS_EN_VF1 0xcf70
+#define regBIFC_DOORBELL_ACCESS_EN_VF1_BASE_IDX 8
+#define regBIFC_DOORBELL_ACCESS_EN_VF2 0xcf71
+#define regBIFC_DOORBELL_ACCESS_EN_VF2_BASE_IDX 8
+#define regBIFC_DOORBELL_ACCESS_EN_VF3 0xcf72
+#define regBIFC_DOORBELL_ACCESS_EN_VF3_BASE_IDX 8
+#define regBIFC_DOORBELL_ACCESS_EN_VF4 0xcf73
+#define regBIFC_DOORBELL_ACCESS_EN_VF4_BASE_IDX 8
+#define regBIFC_DOORBELL_ACCESS_EN_VF5 0xcf74
+#define regBIFC_DOORBELL_ACCESS_EN_VF5_BASE_IDX 8
+#define regBIFC_DOORBELL_ACCESS_EN_VF6 0xcf75
+#define regBIFC_DOORBELL_ACCESS_EN_VF6_BASE_IDX 8
+#define regBIFC_DOORBELL_ACCESS_EN_VF7 0xcf76
+#define regBIFC_DOORBELL_ACCESS_EN_VF7_BASE_IDX 8
+#define regMISC_SCRATCH 0xe800
+#define regMISC_SCRATCH_BASE_IDX 8
+#define regINTR_LINE_POLARITY 0xe801
+#define regINTR_LINE_POLARITY_BASE_IDX 8
+#define regINTR_LINE_ENABLE 0xe802
+#define regINTR_LINE_ENABLE_BASE_IDX 8
+#define regOUTSTANDING_VC_ALLOC 0xe803
+#define regOUTSTANDING_VC_ALLOC_BASE_IDX 8
+#define regBIFC_MISC_CTRL0 0xe804
+#define regBIFC_MISC_CTRL0_BASE_IDX 8
+#define regBIFC_MISC_CTRL1 0xe805
+#define regBIFC_MISC_CTRL1_BASE_IDX 8
+#define regBIFC_BME_ERR_LOG_LB 0xe806
+#define regBIFC_BME_ERR_LOG_LB_BASE_IDX 8
+#define regBIFC_LC_TIMER_CTRL 0xe807
+#define regBIFC_LC_TIMER_CTRL_BASE_IDX 8
+#define regBIFC_RCCBIH_BME_ERR_LOG0 0xe808
+#define regBIFC_RCCBIH_BME_ERR_LOG0_BASE_IDX 8
+#define regBIFC_DMA_ATTR_OVERRIDE_DEV0_F0_F1 0xe80a
+#define regBIFC_DMA_ATTR_OVERRIDE_DEV0_F0_F1_BASE_IDX 8
+#define regBIFC_DMA_ATTR_OVERRIDE_DEV0_F2_F3 0xe80b
+#define regBIFC_DMA_ATTR_OVERRIDE_DEV0_F2_F3_BASE_IDX 8
+#define regBIFC_DMA_ATTR_OVERRIDE_DEV0_F4_F5 0xe80c
+#define regBIFC_DMA_ATTR_OVERRIDE_DEV0_F4_F5_BASE_IDX 8
+#define regBIFC_DMA_ATTR_OVERRIDE_DEV0_F6_F7 0xe80d
+#define regBIFC_DMA_ATTR_OVERRIDE_DEV0_F6_F7_BASE_IDX 8
+#define regBIFC_DMA_ATTR_CNTL2_DEV0 0xe81a
+#define regBIFC_DMA_ATTR_CNTL2_DEV0_BASE_IDX 8
+#define regBME_DUMMY_CNTL_0 0xe825
+#define regBME_DUMMY_CNTL_0_BASE_IDX 8
+#define regBIFC_THT_CNTL 0xe827
+#define regBIFC_THT_CNTL_BASE_IDX 8
+#define regBIFC_HSTARB_CNTL 0xe828
+#define regBIFC_HSTARB_CNTL_BASE_IDX 8
+#define regBIFC_GSI_CNTL 0xe829
+#define regBIFC_GSI_CNTL_BASE_IDX 8
+#define regBIFC_PCIEFUNC_CNTL 0xe82a
+#define regBIFC_PCIEFUNC_CNTL_BASE_IDX 8
+#define regBIFC_PASID_CHECK_DIS 0xe82b
+#define regBIFC_PASID_CHECK_DIS_BASE_IDX 8
+#define regBIFC_SDP_CNTL_0 0xe82c
+#define regBIFC_SDP_CNTL_0_BASE_IDX 8
+#define regBIFC_SDP_CNTL_1 0xe82d
+#define regBIFC_SDP_CNTL_1_BASE_IDX 8
+#define regBIFC_PASID_STS 0xe82e
+#define regBIFC_PASID_STS_BASE_IDX 8
+#define regBIFC_ATHUB_ACT_CNTL 0xe82f
+#define regBIFC_ATHUB_ACT_CNTL_BASE_IDX 8
+#define regBIFC_PERF_CNTL_0 0xe830
+#define regBIFC_PERF_CNTL_0_BASE_IDX 8
+#define regBIFC_PERF_CNTL_1 0xe831
+#define regBIFC_PERF_CNTL_1_BASE_IDX 8
+#define regBIFC_PERF_CNT_MMIO_RD_L32BIT 0xe832
+#define regBIFC_PERF_CNT_MMIO_RD_L32BIT_BASE_IDX 8
+#define regBIFC_PERF_CNT_MMIO_WR_L32BIT 0xe833
+#define regBIFC_PERF_CNT_MMIO_WR_L32BIT_BASE_IDX 8
+#define regBIFC_PERF_CNT_DMA_RD_L32BIT 0xe834
+#define regBIFC_PERF_CNT_DMA_RD_L32BIT_BASE_IDX 8
+#define regBIFC_PERF_CNT_DMA_WR_L32BIT 0xe835
+#define regBIFC_PERF_CNT_DMA_WR_L32BIT_BASE_IDX 8
+#define regNBIF_REGIF_ERRSET_CTRL 0xe836
+#define regNBIF_REGIF_ERRSET_CTRL_BASE_IDX 8
+#define regBIFC_SDP_CNTL_2 0xe837
+#define regBIFC_SDP_CNTL_2_BASE_IDX 8
+#define regNBIF_PGMST_CTRL 0xe838
+#define regNBIF_PGMST_CTRL_BASE_IDX 8
+#define regNBIF_PGSLV_CTRL 0xe839
+#define regNBIF_PGSLV_CTRL_BASE_IDX 8
+#define regNBIF_PG_MISC_CTRL 0xe83a
+#define regNBIF_PG_MISC_CTRL_BASE_IDX 8
+#define regSMN_MST_EP_CNTL3 0xe83c
+#define regSMN_MST_EP_CNTL3_BASE_IDX 8
+#define regSMN_MST_EP_CNTL4 0xe83d
+#define regSMN_MST_EP_CNTL4_BASE_IDX 8
+#define regSMN_MST_CNTL1 0xe83e
+#define regSMN_MST_CNTL1_BASE_IDX 8
+#define regSMN_MST_EP_CNTL5 0xe83f
+#define regSMN_MST_EP_CNTL5_BASE_IDX 8
+#define regBIF_SELFRING_BUFFER_VID 0xe840
+#define regBIF_SELFRING_BUFFER_VID_BASE_IDX 8
+#define regBIF_SELFRING_VECTOR_CNTL 0xe841
+#define regBIF_SELFRING_VECTOR_CNTL_BASE_IDX 8
+#define regNBIF_STRAP_WRITE_CTRL 0xe845
+#define regNBIF_STRAP_WRITE_CTRL_BASE_IDX 8
+#define regNBIF_INTX_DSTATE_MISC_CNTL 0xe846
+#define regNBIF_INTX_DSTATE_MISC_CNTL_BASE_IDX 8
+#define regNBIF_PENDING_MISC_CNTL 0xe847
+#define regNBIF_PENDING_MISC_CNTL_BASE_IDX 8
+#define regBIF_GMI_WRR_WEIGHT 0xe848
+#define regBIF_GMI_WRR_WEIGHT_BASE_IDX 8
+#define regBIF_GMI_WRR_WEIGHT2 0xe849
+#define regBIF_GMI_WRR_WEIGHT2_BASE_IDX 8
+#define regBIF_GMI_WRR_WEIGHT3 0xe84a
+#define regBIF_GMI_WRR_WEIGHT3_BASE_IDX 8
+#define regNBIF_PWRBRK_REQUEST 0xe84c
+#define regNBIF_PWRBRK_REQUEST_BASE_IDX 8
+#define regBIF_ATOMIC_ERR_LOG_DEV0_F0 0xe850
+#define regBIF_ATOMIC_ERR_LOG_DEV0_F0_BASE_IDX 8
+#define regBIF_ATOMIC_ERR_LOG_DEV0_F1 0xe851
+#define regBIF_ATOMIC_ERR_LOG_DEV0_F1_BASE_IDX 8
+#define regBIF_DMA_MP4_ERR_LOG 0xe870
+#define regBIF_DMA_MP4_ERR_LOG_BASE_IDX 8
+#define regBIF_PASID_ERR_LOG 0xe871
+#define regBIF_PASID_ERR_LOG_BASE_IDX 8
+#define regBIF_PASID_ERR_CLR 0xe872
+#define regBIF_PASID_ERR_CLR_BASE_IDX 8
+#define regNBIF_VWIRE_CTRL 0xe880
+#define regNBIF_VWIRE_CTRL_BASE_IDX 8
+#define regNBIF_SMN_VWR_VCHG_DIS_CTRL 0xe881
+#define regNBIF_SMN_VWR_VCHG_DIS_CTRL_BASE_IDX 8
+#define regNBIF_SMN_VWR_VCHG_RST_CTRL0 0xe882
+#define regNBIF_SMN_VWR_VCHG_RST_CTRL0_BASE_IDX 8
+#define regNBIF_SMN_VWR_VCHG_TRIG 0xe884
+#define regNBIF_SMN_VWR_VCHG_TRIG_BASE_IDX 8
+#define regNBIF_SMN_VWR_WTRIG_CNTL 0xe885
+#define regNBIF_SMN_VWR_WTRIG_CNTL_BASE_IDX 8
+#define regNBIF_SMN_VWR_VCHG_DIS_CTRL_1 0xe886
+#define regNBIF_SMN_VWR_VCHG_DIS_CTRL_1_BASE_IDX 8
+#define regNBIF_MGCG_CTRL_LCLK 0xe887
+#define regNBIF_MGCG_CTRL_LCLK_BASE_IDX 8
+#define regNBIF_DS_CTRL_LCLK 0xe888
+#define regNBIF_DS_CTRL_LCLK_BASE_IDX 8
+#define regSMN_MST_CNTL0 0xe889
+#define regSMN_MST_CNTL0_BASE_IDX 8
+#define regSMN_MST_EP_CNTL1 0xe88a
+#define regSMN_MST_EP_CNTL1_BASE_IDX 8
+#define regSMN_MST_EP_CNTL2 0xe88b
+#define regSMN_MST_EP_CNTL2_BASE_IDX 8
+#define regNBIF_SDP_VWR_VCHG_DIS_CTRL 0xe88c
+#define regNBIF_SDP_VWR_VCHG_DIS_CTRL_BASE_IDX 8
+#define regNBIF_SDP_VWR_VCHG_RST_CTRL0 0xe88d
+#define regNBIF_SDP_VWR_VCHG_RST_CTRL0_BASE_IDX 8
+#define regNBIF_SDP_VWR_VCHG_RST_CTRL1 0xe88e
+#define regNBIF_SDP_VWR_VCHG_RST_CTRL1_BASE_IDX 8
+#define regNBIF_SDP_VWR_VCHG_TRIG 0xe88f
+#define regNBIF_SDP_VWR_VCHG_TRIG_BASE_IDX 8
+#define regNBIF_SHUB_TODET_CTRL 0xe898
+#define regNBIF_SHUB_TODET_CTRL_BASE_IDX 8
+#define regNBIF_SHUB_TODET_CLIENT_CTRL 0xe899
+#define regNBIF_SHUB_TODET_CLIENT_CTRL_BASE_IDX 8
+#define regNBIF_SHUB_TODET_CLIENT_STATUS 0xe89a
+#define regNBIF_SHUB_TODET_CLIENT_STATUS_BASE_IDX 8
+#define regNBIF_SHUB_TODET_SYNCFLOOD_CTRL 0xe89b
+#define regNBIF_SHUB_TODET_SYNCFLOOD_CTRL_BASE_IDX 8
+#define regNBIF_SHUB_TODET_CLIENT_CTRL2 0xe89c
+#define regNBIF_SHUB_TODET_CLIENT_CTRL2_BASE_IDX 8
+#define regNBIF_SHUB_TODET_CLIENT_STATUS2 0xe89d
+#define regNBIF_SHUB_TODET_CLIENT_STATUS2_BASE_IDX 8
+#define regNBIF_SHUB_TODET_SYNCFLOOD_CTRL2 0xe89e
+#define regNBIF_SHUB_TODET_SYNCFLOOD_CTRL2_BASE_IDX 8
+#define regBIFC_BME_ERR_LOG_HB 0xe8ab
+#define regBIFC_BME_ERR_LOG_HB_BASE_IDX 8
+#define regBIFC_HRP_SDP_WRRSP_POOLCRED_ALLOC 0xe8c0
+#define regBIFC_HRP_SDP_WRRSP_POOLCRED_ALLOC_BASE_IDX 8
+#define regBIFC_HRP_SDP_RDRSP_POOLCRED_ALLOC 0xe8c1
+#define regBIFC_HRP_SDP_RDRSP_POOLCRED_ALLOC_BASE_IDX 8
+#define regBIFC_GMI_SDP_REQ_POOLCRED_ALLOC 0xe8c2
+#define regBIFC_GMI_SDP_REQ_POOLCRED_ALLOC_BASE_IDX 8
+#define regBIFC_GMI_SDP_DAT_POOLCRED_ALLOC 0xe8c3
+#define regBIFC_GMI_SDP_DAT_POOLCRED_ALLOC_BASE_IDX 8
+#define regDISCON_HYSTERESIS_HEAD_CTRL 0xe8c6
+#define regDISCON_HYSTERESIS_HEAD_CTRL_BASE_IDX 8
+#define regBIFC_EARLY_WAKEUP_CNTL 0xe8d2
+#define regBIFC_EARLY_WAKEUP_CNTL_BASE_IDX 8
+#define regBIFC_PERF_CNT_MMIO_RD_H16BIT 0xe8f0
+#define regBIFC_PERF_CNT_MMIO_RD_H16BIT_BASE_IDX 8
+#define regBIFC_PERF_CNT_MMIO_WR_H16BIT 0xe8f1
+#define regBIFC_PERF_CNT_MMIO_WR_H16BIT_BASE_IDX 8
+#define regBIFC_PERF_CNT_DMA_RD_H16BIT 0xe8f2
+#define regBIFC_PERF_CNT_DMA_RD_H16BIT_BASE_IDX 8
+#define regBIFC_PERF_CNT_DMA_WR_H16BIT 0xe8f3
+#define regBIFC_PERF_CNT_DMA_WR_H16BIT_BASE_IDX 8
+#define regBIFC_A2S_SDP_PORT_CTRL 0xeb00
+#define regBIFC_A2S_SDP_PORT_CTRL_BASE_IDX 8
+#define regBIFC_A2S_CNTL_SW0 0xeb01
+#define regBIFC_A2S_CNTL_SW0_BASE_IDX 8
+#define regBIFC_A2S_MISC_CNTL 0xeb02
+#define regBIFC_A2S_MISC_CNTL_BASE_IDX 8
+#define regBIFC_A2S_TAG_ALLOC_0 0xeb03
+#define regBIFC_A2S_TAG_ALLOC_0_BASE_IDX 8
+#define regBIFC_A2S_TAG_ALLOC_1 0xeb04
+#define regBIFC_A2S_TAG_ALLOC_1_BASE_IDX 8
+#define regBIFC_A2S_CNTL_CL0 0xeb05
+#define regBIFC_A2S_CNTL_CL0_BASE_IDX 8
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dwn_dev0_BIFDEC1
+// base address: 0x10120000
+#define regRCC_DWN_DEV0_2_DN_PCIE_RESERVED 0x8d80
+#define regRCC_DWN_DEV0_2_DN_PCIE_RESERVED_BASE_IDX 8
+#define regRCC_DWN_DEV0_2_DN_PCIE_SCRATCH 0x8d81
+#define regRCC_DWN_DEV0_2_DN_PCIE_SCRATCH_BASE_IDX 8
+#define regRCC_DWN_DEV0_2_DN_PCIE_CNTL 0x8d83
+#define regRCC_DWN_DEV0_2_DN_PCIE_CNTL_BASE_IDX 8
+#define regRCC_DWN_DEV0_2_DN_PCIE_CONFIG_CNTL 0x8d84
+#define regRCC_DWN_DEV0_2_DN_PCIE_CONFIG_CNTL_BASE_IDX 8
+#define regRCC_DWN_DEV0_2_DN_PCIE_RX_CNTL2 0x8d85
+#define regRCC_DWN_DEV0_2_DN_PCIE_RX_CNTL2_BASE_IDX 8
+#define regRCC_DWN_DEV0_2_DN_PCIE_BUS_CNTL 0x8d86
+#define regRCC_DWN_DEV0_2_DN_PCIE_BUS_CNTL_BASE_IDX 8
+#define regRCC_DWN_DEV0_2_DN_PCIE_CFG_CNTL 0x8d87
+#define regRCC_DWN_DEV0_2_DN_PCIE_CFG_CNTL_BASE_IDX 8
+#define regRCC_DWN_DEV0_2_DN_PCIE_STRAP_F0 0x8d88
+#define regRCC_DWN_DEV0_2_DN_PCIE_STRAP_F0_BASE_IDX 8
+#define regRCC_DWN_DEV0_2_DN_PCIE_STRAP_MISC 0x8d89
+#define regRCC_DWN_DEV0_2_DN_PCIE_STRAP_MISC_BASE_IDX 8
+#define regRCC_DWN_DEV0_2_DN_PCIE_STRAP_MISC2 0x8d8a
+#define regRCC_DWN_DEV0_2_DN_PCIE_STRAP_MISC2_BASE_IDX 8
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dwnp_dev0_BIFDEC1
+// base address: 0x10120000
+#define regRCC_DWNP_DEV0_2_PCIE_ERR_CNTL 0x8d8c
+#define regRCC_DWNP_DEV0_2_PCIE_ERR_CNTL_BASE_IDX 8
+#define regRCC_DWNP_DEV0_2_PCIE_RX_CNTL 0x8d8d
+#define regRCC_DWNP_DEV0_2_PCIE_RX_CNTL_BASE_IDX 8
+#define regRCC_DWNP_DEV0_2_PCIE_LC_SPEED_CNTL 0x8d8e
+#define regRCC_DWNP_DEV0_2_PCIE_LC_SPEED_CNTL_BASE_IDX 8
+#define regRCC_DWNP_DEV0_2_PCIE_LC_CNTL2 0x8d8f
+#define regRCC_DWNP_DEV0_2_PCIE_LC_CNTL2_BASE_IDX 8
+#define regRCC_DWNP_DEV0_2_PCIEP_STRAP_MISC 0x8d90
+#define regRCC_DWNP_DEV0_2_PCIEP_STRAP_MISC_BASE_IDX 8
+#define regRCC_DWNP_DEV0_2_LTR_MSG_INFO_FROM_EP 0x8d91
+#define regRCC_DWNP_DEV0_2_LTR_MSG_INFO_FROM_EP_BASE_IDX 8
+
+
+// addressBlock: aid_nbio_nbif0_rcc_ep_dev0_BIFDEC1
+// base address: 0x10120000
+#define regRCC_EP_DEV0_2_EP_PCIE_SCRATCH 0x8d60
+#define regRCC_EP_DEV0_2_EP_PCIE_SCRATCH_BASE_IDX 8
+#define regRCC_EP_DEV0_2_EP_PCIE_CNTL 0x8d62
+#define regRCC_EP_DEV0_2_EP_PCIE_CNTL_BASE_IDX 8
+#define regRCC_EP_DEV0_2_EP_PCIE_INT_CNTL 0x8d63
+#define regRCC_EP_DEV0_2_EP_PCIE_INT_CNTL_BASE_IDX 8
+#define regRCC_EP_DEV0_2_EP_PCIE_INT_STATUS 0x8d64
+#define regRCC_EP_DEV0_2_EP_PCIE_INT_STATUS_BASE_IDX 8
+#define regRCC_EP_DEV0_2_EP_PCIE_RX_CNTL2 0x8d65
+#define regRCC_EP_DEV0_2_EP_PCIE_RX_CNTL2_BASE_IDX 8
+#define regRCC_EP_DEV0_2_EP_PCIE_BUS_CNTL 0x8d66
+#define regRCC_EP_DEV0_2_EP_PCIE_BUS_CNTL_BASE_IDX 8
+#define regRCC_EP_DEV0_2_EP_PCIE_CFG_CNTL 0x8d67
+#define regRCC_EP_DEV0_2_EP_PCIE_CFG_CNTL_BASE_IDX 8
+#define regRCC_EP_DEV0_2_EP_PCIE_TX_LTR_CNTL 0x8d69
+#define regRCC_EP_DEV0_2_EP_PCIE_TX_LTR_CNTL_BASE_IDX 8
+#define regRCC_EP_DEV0_1_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_0 0x8d6a
+#define regRCC_EP_DEV0_1_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_0_BASE_IDX 8
+#define regRCC_EP_DEV0_1_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_1 0x8d6a
+#define regRCC_EP_DEV0_1_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_1_BASE_IDX 8
+#define regRCC_EP_DEV0_1_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_2 0x8d6a
+#define regRCC_EP_DEV0_1_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_2_BASE_IDX 8
+#define regRCC_EP_DEV0_1_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_3 0x8d6a
+#define regRCC_EP_DEV0_1_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_3_BASE_IDX 8
+#define regRCC_EP_DEV0_1_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_4 0x8d6b
+#define regRCC_EP_DEV0_1_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_4_BASE_IDX 8
+#define regRCC_EP_DEV0_1_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_5 0x8d6b
+#define regRCC_EP_DEV0_1_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_5_BASE_IDX 8
+#define regRCC_EP_DEV0_1_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_6 0x8d6b
+#define regRCC_EP_DEV0_1_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_6_BASE_IDX 8
+#define regRCC_EP_DEV0_1_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_7 0x8d6b
+#define regRCC_EP_DEV0_1_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_7_BASE_IDX 8
+#define regRCC_EP_DEV0_2_EP_PCIE_STRAP_MISC 0x8d6c
+#define regRCC_EP_DEV0_2_EP_PCIE_STRAP_MISC_BASE_IDX 8
+#define regRCC_EP_DEV0_2_EP_PCIE_STRAP_MISC2 0x8d6d
+#define regRCC_EP_DEV0_2_EP_PCIE_STRAP_MISC2_BASE_IDX 8
+#define regRCC_EP_DEV0_2_EP_PCIE_F0_DPA_CAP 0x8d6f
+#define regRCC_EP_DEV0_2_EP_PCIE_F0_DPA_CAP_BASE_IDX 8
+#define regRCC_EP_DEV0_2_EP_PCIE_F0_DPA_LATENCY_INDICATOR 0x8d70
+#define regRCC_EP_DEV0_2_EP_PCIE_F0_DPA_LATENCY_INDICATOR_BASE_IDX 8
+#define regRCC_EP_DEV0_2_EP_PCIE_F0_DPA_CNTL 0x8d70
+#define regRCC_EP_DEV0_2_EP_PCIE_F0_DPA_CNTL_BASE_IDX 8
+#define regRCC_EP_DEV0_2_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_0 0x8d70
+#define regRCC_EP_DEV0_2_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_0_BASE_IDX 8
+#define regRCC_EP_DEV0_2_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_1 0x8d71
+#define regRCC_EP_DEV0_2_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_1_BASE_IDX 8
+#define regRCC_EP_DEV0_2_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_2 0x8d71
+#define regRCC_EP_DEV0_2_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_2_BASE_IDX 8
+#define regRCC_EP_DEV0_2_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_3 0x8d71
+#define regRCC_EP_DEV0_2_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_3_BASE_IDX 8
+#define regRCC_EP_DEV0_2_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_4 0x8d71
+#define regRCC_EP_DEV0_2_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_4_BASE_IDX 8
+#define regRCC_EP_DEV0_2_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_5 0x8d72
+#define regRCC_EP_DEV0_2_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_5_BASE_IDX 8
+#define regRCC_EP_DEV0_2_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_6 0x8d72
+#define regRCC_EP_DEV0_2_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_6_BASE_IDX 8
+#define regRCC_EP_DEV0_2_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_7 0x8d72
+#define regRCC_EP_DEV0_2_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_7_BASE_IDX 8
+#define regRCC_EP_DEV0_2_EP_PCIE_PME_CONTROL 0x8d72
+#define regRCC_EP_DEV0_2_EP_PCIE_PME_CONTROL_BASE_IDX 8
+#define regRCC_EP_DEV0_2_EP_PCIEP_RESERVED 0x8d73
+#define regRCC_EP_DEV0_2_EP_PCIEP_RESERVED_BASE_IDX 8
+#define regRCC_EP_DEV0_2_EP_PCIE_TX_CNTL 0x8d75
+#define regRCC_EP_DEV0_2_EP_PCIE_TX_CNTL_BASE_IDX 8
+#define regRCC_EP_DEV0_2_EP_PCIE_TX_REQUESTER_ID 0x8d76
+#define regRCC_EP_DEV0_2_EP_PCIE_TX_REQUESTER_ID_BASE_IDX 8
+#define regRCC_EP_DEV0_2_EP_PCIE_ERR_CNTL 0x8d77
+#define regRCC_EP_DEV0_2_EP_PCIE_ERR_CNTL_BASE_IDX 8
+#define regRCC_EP_DEV0_2_EP_PCIE_RX_CNTL 0x8d78
+#define regRCC_EP_DEV0_2_EP_PCIE_RX_CNTL_BASE_IDX 8
+#define regRCC_EP_DEV0_2_EP_PCIE_LC_SPEED_CNTL 0x8d79
+#define regRCC_EP_DEV0_2_EP_PCIE_LC_SPEED_CNTL_BASE_IDX 8
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dev0_BIFDEC1
+// base address: 0x10120000
+#define regRCC_DEV0_1_RCC_ERR_INT_CNTL 0x8da6
+#define regRCC_DEV0_1_RCC_ERR_INT_CNTL_BASE_IDX 8
+#define regRCC_DEV0_1_RCC_BACO_CNTL_MISC 0x8da7
+#define regRCC_DEV0_1_RCC_BACO_CNTL_MISC_BASE_IDX 8
+#define regRCC_DEV0_1_RCC_RESET_EN 0x8da8
+#define regRCC_DEV0_1_RCC_RESET_EN_BASE_IDX 8
+#define regRCC_DEV0_2_RCC_VDM_SUPPORT 0x8da9
+#define regRCC_DEV0_2_RCC_VDM_SUPPORT_BASE_IDX 8
+#define regRCC_DEV0_2_RCC_MARGIN_PARAM_CNTL0 0x8daa
+#define regRCC_DEV0_2_RCC_MARGIN_PARAM_CNTL0_BASE_IDX 8
+#define regRCC_DEV0_2_RCC_MARGIN_PARAM_CNTL1 0x8dab
+#define regRCC_DEV0_2_RCC_MARGIN_PARAM_CNTL1_BASE_IDX 8
+#define regRCC_DEV0_1_RCC_GPUIOV_REGION 0x8dac
+#define regRCC_DEV0_1_RCC_GPUIOV_REGION_BASE_IDX 8
+#define regRCC_DEV0_1_RCC_GPU_HOSTVM_EN 0x8dad
+#define regRCC_DEV0_1_RCC_GPU_HOSTVM_EN_BASE_IDX 8
+#define regRCC_DEV0_1_RCC_CONSOLE_IOV_MODE_CNTL 0x8dae
+#define regRCC_DEV0_1_RCC_CONSOLE_IOV_MODE_CNTL_BASE_IDX 8
+#define regRCC_DEV0_1_RCC_CONSOLE_IOV_FIRST_VF_OFFSET 0x8daf
+#define regRCC_DEV0_1_RCC_CONSOLE_IOV_FIRST_VF_OFFSET_BASE_IDX 8
+#define regRCC_DEV0_1_RCC_CONSOLE_IOV_VF_STRIDE 0x8daf
+#define regRCC_DEV0_1_RCC_CONSOLE_IOV_VF_STRIDE_BASE_IDX 8
+#define regRCC_DEV0_1_RCC_PEER_REG_RANGE0 0x8dde
+#define regRCC_DEV0_1_RCC_PEER_REG_RANGE0_BASE_IDX 8
+#define regRCC_DEV0_1_RCC_PEER_REG_RANGE1 0x8ddf
+#define regRCC_DEV0_1_RCC_PEER_REG_RANGE1_BASE_IDX 8
+#define regRCC_DEV0_2_RCC_BUS_CNTL 0x8de1
+#define regRCC_DEV0_2_RCC_BUS_CNTL_BASE_IDX 8
+#define regRCC_DEV0_1_RCC_CONFIG_CNTL 0x8de2
+#define regRCC_DEV0_1_RCC_CONFIG_CNTL_BASE_IDX 8
+#define regRCC_DEV0_1_RCC_CONFIG_F0_BASE 0x8de6
+#define regRCC_DEV0_1_RCC_CONFIG_F0_BASE_BASE_IDX 8
+#define regRCC_DEV0_1_RCC_CONFIG_APER_SIZE 0x8de7
+#define regRCC_DEV0_1_RCC_CONFIG_APER_SIZE_BASE_IDX 8
+#define regRCC_DEV0_1_RCC_CONFIG_REG_APER_SIZE 0x8de8
+#define regRCC_DEV0_1_RCC_CONFIG_REG_APER_SIZE_BASE_IDX 8
+#define regRCC_DEV0_1_RCC_XDMA_LO 0x8de9
+#define regRCC_DEV0_1_RCC_XDMA_LO_BASE_IDX 8
+#define regRCC_DEV0_1_RCC_XDMA_HI 0x8dea
+#define regRCC_DEV0_1_RCC_XDMA_HI_BASE_IDX 8
+#define regRCC_DEV0_2_RCC_FEATURES_CONTROL_MISC 0x8deb
+#define regRCC_DEV0_2_RCC_FEATURES_CONTROL_MISC_BASE_IDX 8
+#define regRCC_DEV0_1_RCC_BUSNUM_CNTL1 0x8dec
+#define regRCC_DEV0_1_RCC_BUSNUM_CNTL1_BASE_IDX 8
+#define regRCC_DEV0_1_RCC_BUSNUM_LIST0 0x8ded
+#define regRCC_DEV0_1_RCC_BUSNUM_LIST0_BASE_IDX 8
+#define regRCC_DEV0_1_RCC_BUSNUM_LIST1 0x8dee
+#define regRCC_DEV0_1_RCC_BUSNUM_LIST1_BASE_IDX 8
+#define regRCC_DEV0_1_RCC_BUSNUM_CNTL2 0x8def
+#define regRCC_DEV0_1_RCC_BUSNUM_CNTL2_BASE_IDX 8
+#define regRCC_DEV0_1_RCC_CAPTURE_HOST_BUSNUM 0x8df0
+#define regRCC_DEV0_1_RCC_CAPTURE_HOST_BUSNUM_BASE_IDX 8
+#define regRCC_DEV0_1_RCC_HOST_BUSNUM 0x8df1
+#define regRCC_DEV0_1_RCC_HOST_BUSNUM_BASE_IDX 8
+#define regRCC_DEV0_1_RCC_PEER0_FB_OFFSET_HI 0x8df2
+#define regRCC_DEV0_1_RCC_PEER0_FB_OFFSET_HI_BASE_IDX 8
+#define regRCC_DEV0_1_RCC_PEER0_FB_OFFSET_LO 0x8df3
+#define regRCC_DEV0_1_RCC_PEER0_FB_OFFSET_LO_BASE_IDX 8
+#define regRCC_DEV0_1_RCC_PEER1_FB_OFFSET_HI 0x8df4
+#define regRCC_DEV0_1_RCC_PEER1_FB_OFFSET_HI_BASE_IDX 8
+#define regRCC_DEV0_1_RCC_PEER1_FB_OFFSET_LO 0x8df5
+#define regRCC_DEV0_1_RCC_PEER1_FB_OFFSET_LO_BASE_IDX 8
+#define regRCC_DEV0_1_RCC_PEER2_FB_OFFSET_HI 0x8df6
+#define regRCC_DEV0_1_RCC_PEER2_FB_OFFSET_HI_BASE_IDX 8
+#define regRCC_DEV0_1_RCC_PEER2_FB_OFFSET_LO 0x8df7
+#define regRCC_DEV0_1_RCC_PEER2_FB_OFFSET_LO_BASE_IDX 8
+#define regRCC_DEV0_1_RCC_PEER3_FB_OFFSET_HI 0x8df8
+#define regRCC_DEV0_1_RCC_PEER3_FB_OFFSET_HI_BASE_IDX 8
+#define regRCC_DEV0_1_RCC_PEER3_FB_OFFSET_LO 0x8df9
+#define regRCC_DEV0_1_RCC_PEER3_FB_OFFSET_LO_BASE_IDX 8
+#define regRCC_DEV0_1_RCC_DEVFUNCNUM_LIST0 0x8dfa
+#define regRCC_DEV0_1_RCC_DEVFUNCNUM_LIST0_BASE_IDX 8
+#define regRCC_DEV0_1_RCC_DEVFUNCNUM_LIST1 0x8dfb
+#define regRCC_DEV0_1_RCC_DEVFUNCNUM_LIST1_BASE_IDX 8
+#define regRCC_DEV0_2_RCC_DEV0_LINK_CNTL 0x8dfd
+#define regRCC_DEV0_2_RCC_DEV0_LINK_CNTL_BASE_IDX 8
+#define regRCC_DEV0_2_RCC_CMN_LINK_CNTL 0x8dfe
+#define regRCC_DEV0_2_RCC_CMN_LINK_CNTL_BASE_IDX 8
+#define regRCC_DEV0_2_RCC_EP_REQUESTERID_RESTORE 0x8dff
+#define regRCC_DEV0_2_RCC_EP_REQUESTERID_RESTORE_BASE_IDX 8
+#define regRCC_DEV0_2_RCC_LTR_LSWITCH_CNTL 0x8e00
+#define regRCC_DEV0_2_RCC_LTR_LSWITCH_CNTL_BASE_IDX 8
+#define regRCC_DEV0_2_RCC_MH_ARB_CNTL 0x8e01
+#define regRCC_DEV0_2_RCC_MH_ARB_CNTL_BASE_IDX 8
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_SYSDEC
+// base address: 0x10120000
+#define regBIF_BX1_PCIE_INDEX 0x800c
+#define regBIF_BX1_PCIE_INDEX_BASE_IDX 8
+#define regBIF_BX1_PCIE_DATA 0x800d
+#define regBIF_BX1_PCIE_DATA_BASE_IDX 8
+#define regBIF_BX1_PCIE_INDEX2 0x800e
+#define regBIF_BX1_PCIE_INDEX2_BASE_IDX 8
+#define regBIF_BX1_PCIE_DATA2 0x800f
+#define regBIF_BX1_PCIE_DATA2_BASE_IDX 8
+#define regBIF_BX1_PCIE_INDEX_HI 0x8010
+#define regBIF_BX1_PCIE_INDEX_HI_BASE_IDX 8
+#define regBIF_BX1_PCIE_INDEX2_HI 0x8011
+#define regBIF_BX1_PCIE_INDEX2_HI_BASE_IDX 8
+#define regBIF_BX1_SBIOS_SCRATCH_0 0x8048
+#define regBIF_BX1_SBIOS_SCRATCH_0_BASE_IDX 8
+#define regBIF_BX1_SBIOS_SCRATCH_1 0x8049
+#define regBIF_BX1_SBIOS_SCRATCH_1_BASE_IDX 8
+#define regBIF_BX1_SBIOS_SCRATCH_2 0x804a
+#define regBIF_BX1_SBIOS_SCRATCH_2_BASE_IDX 8
+#define regBIF_BX1_SBIOS_SCRATCH_3 0x804b
+#define regBIF_BX1_SBIOS_SCRATCH_3_BASE_IDX 8
+#define regBIF_BX1_BIOS_SCRATCH_0 0x804c
+#define regBIF_BX1_BIOS_SCRATCH_0_BASE_IDX 8
+#define regBIF_BX1_BIOS_SCRATCH_1 0x804d
+#define regBIF_BX1_BIOS_SCRATCH_1_BASE_IDX 8
+#define regBIF_BX1_BIOS_SCRATCH_2 0x804e
+#define regBIF_BX1_BIOS_SCRATCH_2_BASE_IDX 8
+#define regBIF_BX1_BIOS_SCRATCH_3 0x804f
+#define regBIF_BX1_BIOS_SCRATCH_3_BASE_IDX 8
+#define regBIF_BX1_BIOS_SCRATCH_4 0x8050
+#define regBIF_BX1_BIOS_SCRATCH_4_BASE_IDX 8
+#define regBIF_BX1_BIOS_SCRATCH_5 0x8051
+#define regBIF_BX1_BIOS_SCRATCH_5_BASE_IDX 8
+#define regBIF_BX1_BIOS_SCRATCH_6 0x8052
+#define regBIF_BX1_BIOS_SCRATCH_6_BASE_IDX 8
+#define regBIF_BX1_BIOS_SCRATCH_7 0x8053
+#define regBIF_BX1_BIOS_SCRATCH_7_BASE_IDX 8
+#define regBIF_BX1_BIOS_SCRATCH_8 0x8054
+#define regBIF_BX1_BIOS_SCRATCH_8_BASE_IDX 8
+#define regBIF_BX1_BIOS_SCRATCH_9 0x8055
+#define regBIF_BX1_BIOS_SCRATCH_9_BASE_IDX 8
+#define regBIF_BX1_BIOS_SCRATCH_10 0x8056
+#define regBIF_BX1_BIOS_SCRATCH_10_BASE_IDX 8
+#define regBIF_BX1_BIOS_SCRATCH_11 0x8057
+#define regBIF_BX1_BIOS_SCRATCH_11_BASE_IDX 8
+#define regBIF_BX1_BIOS_SCRATCH_12 0x8058
+#define regBIF_BX1_BIOS_SCRATCH_12_BASE_IDX 8
+#define regBIF_BX1_BIOS_SCRATCH_13 0x8059
+#define regBIF_BX1_BIOS_SCRATCH_13_BASE_IDX 8
+#define regBIF_BX1_BIOS_SCRATCH_14 0x805a
+#define regBIF_BX1_BIOS_SCRATCH_14_BASE_IDX 8
+#define regBIF_BX1_BIOS_SCRATCH_15 0x805b
+#define regBIF_BX1_BIOS_SCRATCH_15_BASE_IDX 8
+#define regBIF_BX1_BIF_RLC_INTR_CNTL 0x8060
+#define regBIF_BX1_BIF_RLC_INTR_CNTL_BASE_IDX 8
+#define regBIF_BX1_BIF_VCE_INTR_CNTL 0x8061
+#define regBIF_BX1_BIF_VCE_INTR_CNTL_BASE_IDX 8
+#define regBIF_BX1_BIF_UVD_INTR_CNTL 0x8062
+#define regBIF_BX1_BIF_UVD_INTR_CNTL_BASE_IDX 8
+#define regBIF_BX1_GFX_MMIOREG_CAM_ADDR0 0x8080
+#define regBIF_BX1_GFX_MMIOREG_CAM_ADDR0_BASE_IDX 8
+#define regBIF_BX1_GFX_MMIOREG_CAM_REMAP_ADDR0 0x8081
+#define regBIF_BX1_GFX_MMIOREG_CAM_REMAP_ADDR0_BASE_IDX 8
+#define regBIF_BX1_GFX_MMIOREG_CAM_ADDR1 0x8082
+#define regBIF_BX1_GFX_MMIOREG_CAM_ADDR1_BASE_IDX 8
+#define regBIF_BX1_GFX_MMIOREG_CAM_REMAP_ADDR1 0x8083
+#define regBIF_BX1_GFX_MMIOREG_CAM_REMAP_ADDR1_BASE_IDX 8
+#define regBIF_BX1_GFX_MMIOREG_CAM_ADDR2 0x8084
+#define regBIF_BX1_GFX_MMIOREG_CAM_ADDR2_BASE_IDX 8
+#define regBIF_BX1_GFX_MMIOREG_CAM_REMAP_ADDR2 0x8085
+#define regBIF_BX1_GFX_MMIOREG_CAM_REMAP_ADDR2_BASE_IDX 8
+#define regBIF_BX1_GFX_MMIOREG_CAM_ADDR3 0x8086
+#define regBIF_BX1_GFX_MMIOREG_CAM_ADDR3_BASE_IDX 8
+#define regBIF_BX1_GFX_MMIOREG_CAM_REMAP_ADDR3 0x8087
+#define regBIF_BX1_GFX_MMIOREG_CAM_REMAP_ADDR3_BASE_IDX 8
+#define regBIF_BX1_GFX_MMIOREG_CAM_ADDR4 0x8088
+#define regBIF_BX1_GFX_MMIOREG_CAM_ADDR4_BASE_IDX 8
+#define regBIF_BX1_GFX_MMIOREG_CAM_REMAP_ADDR4 0x8089
+#define regBIF_BX1_GFX_MMIOREG_CAM_REMAP_ADDR4_BASE_IDX 8
+#define regBIF_BX1_GFX_MMIOREG_CAM_ADDR5 0x808a
+#define regBIF_BX1_GFX_MMIOREG_CAM_ADDR5_BASE_IDX 8
+#define regBIF_BX1_GFX_MMIOREG_CAM_REMAP_ADDR5 0x808b
+#define regBIF_BX1_GFX_MMIOREG_CAM_REMAP_ADDR5_BASE_IDX 8
+#define regBIF_BX1_GFX_MMIOREG_CAM_ADDR6 0x808c
+#define regBIF_BX1_GFX_MMIOREG_CAM_ADDR6_BASE_IDX 8
+#define regBIF_BX1_GFX_MMIOREG_CAM_REMAP_ADDR6 0x808d
+#define regBIF_BX1_GFX_MMIOREG_CAM_REMAP_ADDR6_BASE_IDX 8
+#define regBIF_BX1_GFX_MMIOREG_CAM_ADDR7 0x808e
+#define regBIF_BX1_GFX_MMIOREG_CAM_ADDR7_BASE_IDX 8
+#define regBIF_BX1_GFX_MMIOREG_CAM_REMAP_ADDR7 0x808f
+#define regBIF_BX1_GFX_MMIOREG_CAM_REMAP_ADDR7_BASE_IDX 8
+#define regBIF_BX1_GFX_MMIOREG_CAM_CNTL 0x8090
+#define regBIF_BX1_GFX_MMIOREG_CAM_CNTL_BASE_IDX 8
+#define regBIF_BX1_GFX_MMIOREG_CAM_ZERO_CPL 0x8091
+#define regBIF_BX1_GFX_MMIOREG_CAM_ZERO_CPL_BASE_IDX 8
+#define regBIF_BX1_GFX_MMIOREG_CAM_ONE_CPL 0x8092
+#define regBIF_BX1_GFX_MMIOREG_CAM_ONE_CPL_BASE_IDX 8
+#define regBIF_BX1_GFX_MMIOREG_CAM_PROGRAMMABLE_CPL 0x8093
+#define regBIF_BX1_GFX_MMIOREG_CAM_PROGRAMMABLE_CPL_BASE_IDX 8
+#define regBIF_BX1_DRIVER_SCRATCH_0 0x8094
+#define regBIF_BX1_DRIVER_SCRATCH_0_BASE_IDX 8
+#define regBIF_BX1_DRIVER_SCRATCH_1 0x8095
+#define regBIF_BX1_DRIVER_SCRATCH_1_BASE_IDX 8
+#define regBIF_BX1_DRIVER_SCRATCH_2 0x8096
+#define regBIF_BX1_DRIVER_SCRATCH_2_BASE_IDX 8
+#define regBIF_BX1_DRIVER_SCRATCH_3 0x8097
+#define regBIF_BX1_DRIVER_SCRATCH_3_BASE_IDX 8
+#define regBIF_BX1_DRIVER_SCRATCH_4 0x8098
+#define regBIF_BX1_DRIVER_SCRATCH_4_BASE_IDX 8
+#define regBIF_BX1_DRIVER_SCRATCH_5 0x8099
+#define regBIF_BX1_DRIVER_SCRATCH_5_BASE_IDX 8
+#define regBIF_BX1_DRIVER_SCRATCH_6 0x809a
+#define regBIF_BX1_DRIVER_SCRATCH_6_BASE_IDX 8
+#define regBIF_BX1_DRIVER_SCRATCH_7 0x809b
+#define regBIF_BX1_DRIVER_SCRATCH_7_BASE_IDX 8
+#define regBIF_BX1_DRIVER_SCRATCH_8 0x809c
+#define regBIF_BX1_DRIVER_SCRATCH_8_BASE_IDX 8
+#define regBIF_BX1_DRIVER_SCRATCH_9 0x809d
+#define regBIF_BX1_DRIVER_SCRATCH_9_BASE_IDX 8
+#define regBIF_BX1_DRIVER_SCRATCH_10 0x809e
+#define regBIF_BX1_DRIVER_SCRATCH_10_BASE_IDX 8
+#define regBIF_BX1_DRIVER_SCRATCH_11 0x809f
+#define regBIF_BX1_DRIVER_SCRATCH_11_BASE_IDX 8
+#define regBIF_BX1_DRIVER_SCRATCH_12 0x80a0
+#define regBIF_BX1_DRIVER_SCRATCH_12_BASE_IDX 8
+#define regBIF_BX1_DRIVER_SCRATCH_13 0x80a1
+#define regBIF_BX1_DRIVER_SCRATCH_13_BASE_IDX 8
+#define regBIF_BX1_DRIVER_SCRATCH_14 0x80a2
+#define regBIF_BX1_DRIVER_SCRATCH_14_BASE_IDX 8
+#define regBIF_BX1_DRIVER_SCRATCH_15 0x80a3
+#define regBIF_BX1_DRIVER_SCRATCH_15_BASE_IDX 8
+#define regBIF_BX1_FW_SCRATCH_0 0x80a4
+#define regBIF_BX1_FW_SCRATCH_0_BASE_IDX 8
+#define regBIF_BX1_FW_SCRATCH_1 0x80a5
+#define regBIF_BX1_FW_SCRATCH_1_BASE_IDX 8
+#define regBIF_BX1_FW_SCRATCH_2 0x80a6
+#define regBIF_BX1_FW_SCRATCH_2_BASE_IDX 8
+#define regBIF_BX1_FW_SCRATCH_3 0x80a7
+#define regBIF_BX1_FW_SCRATCH_3_BASE_IDX 8
+#define regBIF_BX1_FW_SCRATCH_4 0x80a8
+#define regBIF_BX1_FW_SCRATCH_4_BASE_IDX 8
+#define regBIF_BX1_FW_SCRATCH_5 0x80a9
+#define regBIF_BX1_FW_SCRATCH_5_BASE_IDX 8
+#define regBIF_BX1_FW_SCRATCH_6 0x80aa
+#define regBIF_BX1_FW_SCRATCH_6_BASE_IDX 8
+#define regBIF_BX1_FW_SCRATCH_7 0x80ab
+#define regBIF_BX1_FW_SCRATCH_7_BASE_IDX 8
+#define regBIF_BX1_FW_SCRATCH_8 0x80ac
+#define regBIF_BX1_FW_SCRATCH_8_BASE_IDX 8
+#define regBIF_BX1_FW_SCRATCH_9 0x80ad
+#define regBIF_BX1_FW_SCRATCH_9_BASE_IDX 8
+#define regBIF_BX1_FW_SCRATCH_10 0x80ae
+#define regBIF_BX1_FW_SCRATCH_10_BASE_IDX 8
+#define regBIF_BX1_FW_SCRATCH_11 0x80af
+#define regBIF_BX1_FW_SCRATCH_11_BASE_IDX 8
+#define regBIF_BX1_FW_SCRATCH_12 0x80b0
+#define regBIF_BX1_FW_SCRATCH_12_BASE_IDX 8
+#define regBIF_BX1_FW_SCRATCH_13 0x80b1
+#define regBIF_BX1_FW_SCRATCH_13_BASE_IDX 8
+#define regBIF_BX1_FW_SCRATCH_14 0x80b2
+#define regBIF_BX1_FW_SCRATCH_14_BASE_IDX 8
+#define regBIF_BX1_FW_SCRATCH_15 0x80b3
+#define regBIF_BX1_FW_SCRATCH_15_BASE_IDX 8
+#define regBIF_BX1_SBIOS_SCRATCH_4 0x80b4
+#define regBIF_BX1_SBIOS_SCRATCH_4_BASE_IDX 8
+#define regBIF_BX1_SBIOS_SCRATCH_5 0x80b5
+#define regBIF_BX1_SBIOS_SCRATCH_5_BASE_IDX 8
+#define regBIF_BX1_SBIOS_SCRATCH_6 0x80b6
+#define regBIF_BX1_SBIOS_SCRATCH_6_BASE_IDX 8
+#define regBIF_BX1_SBIOS_SCRATCH_7 0x80b7
+#define regBIF_BX1_SBIOS_SCRATCH_7_BASE_IDX 8
+#define regBIF_BX1_SBIOS_SCRATCH_8 0x80b8
+#define regBIF_BX1_SBIOS_SCRATCH_8_BASE_IDX 8
+#define regBIF_BX1_SBIOS_SCRATCH_9 0x80b9
+#define regBIF_BX1_SBIOS_SCRATCH_9_BASE_IDX 8
+#define regBIF_BX1_SBIOS_SCRATCH_10 0x80ba
+#define regBIF_BX1_SBIOS_SCRATCH_10_BASE_IDX 8
+#define regBIF_BX1_SBIOS_SCRATCH_11 0x80bb
+#define regBIF_BX1_SBIOS_SCRATCH_11_BASE_IDX 8
+#define regBIF_BX1_SBIOS_SCRATCH_12 0x80bc
+#define regBIF_BX1_SBIOS_SCRATCH_12_BASE_IDX 8
+#define regBIF_BX1_SBIOS_SCRATCH_13 0x80bd
+#define regBIF_BX1_SBIOS_SCRATCH_13_BASE_IDX 8
+#define regBIF_BX1_SBIOS_SCRATCH_14 0x80be
+#define regBIF_BX1_SBIOS_SCRATCH_14_BASE_IDX 8
+#define regBIF_BX1_SBIOS_SCRATCH_15 0x80bf
+#define regBIF_BX1_SBIOS_SCRATCH_15_BASE_IDX 8
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_pf_SYSPFVFDEC
+// base address: 0x10120000
+#define regBIF_BX_PF1_MM_INDEX 0x8000
+#define regBIF_BX_PF1_MM_INDEX_BASE_IDX 8
+#define regBIF_BX_PF1_MM_DATA 0x8001
+#define regBIF_BX_PF1_MM_DATA_BASE_IDX 8
+#define regBIF_BX_PF1_MM_INDEX_HI 0x8006
+#define regBIF_BX_PF1_MM_INDEX_HI_BASE_IDX 8
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_BIFDEC1
+// base address: 0x10120000
+#define regBIF_BX1_CC_BIF_BX_STRAP0 0x8e02
+#define regBIF_BX1_CC_BIF_BX_STRAP0_BASE_IDX 8
+#define regBIF_BX1_CC_BIF_BX_PINSTRAP0 0x8e04
+#define regBIF_BX1_CC_BIF_BX_PINSTRAP0_BASE_IDX 8
+#define regBIF_BX1_BIF_MM_INDACCESS_CNTL 0x8e06
+#define regBIF_BX1_BIF_MM_INDACCESS_CNTL_BASE_IDX 8
+#define regBIF_BX1_BUS_CNTL 0x8e07
+#define regBIF_BX1_BUS_CNTL_BASE_IDX 8
+#define regBIF_BX1_BIF_SCRATCH0 0x8e08
+#define regBIF_BX1_BIF_SCRATCH0_BASE_IDX 8
+#define regBIF_BX1_BIF_SCRATCH1 0x8e09
+#define regBIF_BX1_BIF_SCRATCH1_BASE_IDX 8
+#define regBIF_BX1_BX_RESET_EN 0x8e0d
+#define regBIF_BX1_BX_RESET_EN_BASE_IDX 8
+#define regBIF_BX1_MM_CFGREGS_CNTL 0x8e0e
+#define regBIF_BX1_MM_CFGREGS_CNTL_BASE_IDX 8
+#define regBIF_BX1_BX_RESET_CNTL 0x8e10
+#define regBIF_BX1_BX_RESET_CNTL_BASE_IDX 8
+#define regBIF_BX1_INTERRUPT_CNTL 0x8e11
+#define regBIF_BX1_INTERRUPT_CNTL_BASE_IDX 8
+#define regBIF_BX1_INTERRUPT_CNTL2 0x8e12
+#define regBIF_BX1_INTERRUPT_CNTL2_BASE_IDX 8
+#define regBIF_BX1_CLKREQB_PAD_CNTL 0x8e18
+#define regBIF_BX1_CLKREQB_PAD_CNTL_BASE_IDX 8
+#define regBIF_BX1_BIF_FEATURES_CONTROL_MISC 0x8e1b
+#define regBIF_BX1_BIF_FEATURES_CONTROL_MISC_BASE_IDX 8
+#define regBIF_BX1_HDP_ATOMIC_CONTROL_MISC 0x8e1c
+#define regBIF_BX1_HDP_ATOMIC_CONTROL_MISC_BASE_IDX 8
+#define regBIF_BX1_BIF_DOORBELL_CNTL 0x8e1d
+#define regBIF_BX1_BIF_DOORBELL_CNTL_BASE_IDX 8
+#define regBIF_BX1_BIF_DOORBELL_INT_CNTL 0x8e1e
+#define regBIF_BX1_BIF_DOORBELL_INT_CNTL_BASE_IDX 8
+#define regBIF_BX1_BIF_FB_EN 0x8e20
+#define regBIF_BX1_BIF_FB_EN_BASE_IDX 8
+#define regBIF_BX1_BIF_INTR_CNTL 0x8e21
+#define regBIF_BX1_BIF_INTR_CNTL_BASE_IDX 8
+#define regBIF_BX1_BIF_MST_TRANS_PENDING_VF 0x8e29
+#define regBIF_BX1_BIF_MST_TRANS_PENDING_VF_BASE_IDX 8
+#define regBIF_BX1_BIF_SLV_TRANS_PENDING_VF 0x8e2a
+#define regBIF_BX1_BIF_SLV_TRANS_PENDING_VF_BASE_IDX 8
+#define regBIF_BX1_BACO_CNTL 0x8e2b
+#define regBIF_BX1_BACO_CNTL_BASE_IDX 8
+#define regBIF_BX1_BIF_BACO_EXIT_TIME0 0x8e2c
+#define regBIF_BX1_BIF_BACO_EXIT_TIME0_BASE_IDX 8
+#define regBIF_BX1_BIF_BACO_EXIT_TIMER1 0x8e2d
+#define regBIF_BX1_BIF_BACO_EXIT_TIMER1_BASE_IDX 8
+#define regBIF_BX1_BIF_BACO_EXIT_TIMER2 0x8e2e
+#define regBIF_BX1_BIF_BACO_EXIT_TIMER2_BASE_IDX 8
+#define regBIF_BX1_BIF_BACO_EXIT_TIMER3 0x8e2f
+#define regBIF_BX1_BIF_BACO_EXIT_TIMER3_BASE_IDX 8
+#define regBIF_BX1_BIF_BACO_EXIT_TIMER4 0x8e30
+#define regBIF_BX1_BIF_BACO_EXIT_TIMER4_BASE_IDX 8
+#define regBIF_BX1_MEM_TYPE_CNTL 0x8e31
+#define regBIF_BX1_MEM_TYPE_CNTL_BASE_IDX 8
+#define regBIF_BX1_NBIF_GFX_ADDR_LUT_CNTL 0x8e33
+#define regBIF_BX1_NBIF_GFX_ADDR_LUT_CNTL_BASE_IDX 8
+#define regBIF_BX1_NBIF_GFX_ADDR_LUT_0 0x8e34
+#define regBIF_BX1_NBIF_GFX_ADDR_LUT_0_BASE_IDX 8
+#define regBIF_BX1_NBIF_GFX_ADDR_LUT_1 0x8e35
+#define regBIF_BX1_NBIF_GFX_ADDR_LUT_1_BASE_IDX 8
+#define regBIF_BX1_NBIF_GFX_ADDR_LUT_2 0x8e36
+#define regBIF_BX1_NBIF_GFX_ADDR_LUT_2_BASE_IDX 8
+#define regBIF_BX1_NBIF_GFX_ADDR_LUT_3 0x8e37
+#define regBIF_BX1_NBIF_GFX_ADDR_LUT_3_BASE_IDX 8
+#define regBIF_BX1_NBIF_GFX_ADDR_LUT_4 0x8e38
+#define regBIF_BX1_NBIF_GFX_ADDR_LUT_4_BASE_IDX 8
+#define regBIF_BX1_NBIF_GFX_ADDR_LUT_5 0x8e39
+#define regBIF_BX1_NBIF_GFX_ADDR_LUT_5_BASE_IDX 8
+#define regBIF_BX1_NBIF_GFX_ADDR_LUT_6 0x8e3a
+#define regBIF_BX1_NBIF_GFX_ADDR_LUT_6_BASE_IDX 8
+#define regBIF_BX1_NBIF_GFX_ADDR_LUT_7 0x8e3b
+#define regBIF_BX1_NBIF_GFX_ADDR_LUT_7_BASE_IDX 8
+#define regBIF_BX1_NBIF_GFX_ADDR_LUT_8 0x8e3c
+#define regBIF_BX1_NBIF_GFX_ADDR_LUT_8_BASE_IDX 8
+#define regBIF_BX1_NBIF_GFX_ADDR_LUT_9 0x8e3d
+#define regBIF_BX1_NBIF_GFX_ADDR_LUT_9_BASE_IDX 8
+#define regBIF_BX1_NBIF_GFX_ADDR_LUT_10 0x8e3e
+#define regBIF_BX1_NBIF_GFX_ADDR_LUT_10_BASE_IDX 8
+#define regBIF_BX1_NBIF_GFX_ADDR_LUT_11 0x8e3f
+#define regBIF_BX1_NBIF_GFX_ADDR_LUT_11_BASE_IDX 8
+#define regBIF_BX1_NBIF_GFX_ADDR_LUT_12 0x8e40
+#define regBIF_BX1_NBIF_GFX_ADDR_LUT_12_BASE_IDX 8
+#define regBIF_BX1_NBIF_GFX_ADDR_LUT_13 0x8e41
+#define regBIF_BX1_NBIF_GFX_ADDR_LUT_13_BASE_IDX 8
+#define regBIF_BX1_NBIF_GFX_ADDR_LUT_14 0x8e42
+#define regBIF_BX1_NBIF_GFX_ADDR_LUT_14_BASE_IDX 8
+#define regBIF_BX1_NBIF_GFX_ADDR_LUT_15 0x8e43
+#define regBIF_BX1_NBIF_GFX_ADDR_LUT_15_BASE_IDX 8
+#define regBIF_BX1_VF_REGWR_EN 0x8e44
+#define regBIF_BX1_VF_REGWR_EN_BASE_IDX 8
+#define regBIF_BX1_VF_DOORBELL_EN 0x8e45
+#define regBIF_BX1_VF_DOORBELL_EN_BASE_IDX 8
+#define regBIF_BX1_VF_FB_EN 0x8e46
+#define regBIF_BX1_VF_FB_EN_BASE_IDX 8
+#define regBIF_BX1_VF_REGWR_STATUS 0x8e47
+#define regBIF_BX1_VF_REGWR_STATUS_BASE_IDX 8
+#define regBIF_BX1_VF_DOORBELL_STATUS 0x8e48
+#define regBIF_BX1_VF_DOORBELL_STATUS_BASE_IDX 8
+#define regBIF_BX1_VF_FB_STATUS 0x8e49
+#define regBIF_BX1_VF_FB_STATUS_BASE_IDX 8
+#define regBIF_BX1_REMAP_HDP_MEM_FLUSH_CNTL 0x8e4d
+#define regBIF_BX1_REMAP_HDP_MEM_FLUSH_CNTL_BASE_IDX 8
+#define regBIF_BX1_REMAP_HDP_REG_FLUSH_CNTL 0x8e4e
+#define regBIF_BX1_REMAP_HDP_REG_FLUSH_CNTL_BASE_IDX 8
+#define regBIF_BX1_BIF_RB_CNTL 0x8e4f
+#define regBIF_BX1_BIF_RB_CNTL_BASE_IDX 8
+#define regBIF_BX1_BIF_RB_BASE 0x8e50
+#define regBIF_BX1_BIF_RB_BASE_BASE_IDX 8
+#define regBIF_BX1_BIF_RB_RPTR 0x8e51
+#define regBIF_BX1_BIF_RB_RPTR_BASE_IDX 8
+#define regBIF_BX1_BIF_RB_WPTR 0x8e52
+#define regBIF_BX1_BIF_RB_WPTR_BASE_IDX 8
+#define regBIF_BX1_BIF_RB_WPTR_ADDR_HI 0x8e53
+#define regBIF_BX1_BIF_RB_WPTR_ADDR_HI_BASE_IDX 8
+#define regBIF_BX1_BIF_RB_WPTR_ADDR_LO 0x8e54
+#define regBIF_BX1_BIF_RB_WPTR_ADDR_LO_BASE_IDX 8
+#define regBIF_BX1_MAILBOX_INDEX 0x8e55
+#define regBIF_BX1_MAILBOX_INDEX_BASE_IDX 8
+#define regBIF_BX1_BIF_MP1_INTR_CTRL 0x8e62
+#define regBIF_BX1_BIF_MP1_INTR_CTRL_BASE_IDX 8
+#define regBIF_BX1_BIF_PERSTB_PAD_CNTL 0x8e66
+#define regBIF_BX1_BIF_PERSTB_PAD_CNTL_BASE_IDX 8
+#define regBIF_BX1_BIF_PX_EN_PAD_CNTL 0x8e67
+#define regBIF_BX1_BIF_PX_EN_PAD_CNTL_BASE_IDX 8
+#define regBIF_BX1_BIF_REFPADKIN_PAD_CNTL 0x8e68
+#define regBIF_BX1_BIF_REFPADKIN_PAD_CNTL_BASE_IDX 8
+#define regBIF_BX1_BIF_CLKREQB_PAD_CNTL 0x8e69
+#define regBIF_BX1_BIF_CLKREQB_PAD_CNTL_BASE_IDX 8
+#define regBIF_BX1_BIF_PWRBRK_PAD_CNTL 0x8e6a
+#define regBIF_BX1_BIF_PWRBRK_PAD_CNTL_BASE_IDX 8
+#define regBIF_BX1_BIF_VCN0_GPUIOV_CFG_SIZE 0x8e6b
+#define regBIF_BX1_BIF_VCN0_GPUIOV_CFG_SIZE_BASE_IDX 8
+#define regBIF_BX1_BIF_VCN1_GPUIOV_CFG_SIZE 0x8e6c
+#define regBIF_BX1_BIF_VCN1_GPUIOV_CFG_SIZE_BASE_IDX 8
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_pf_BIFPFVFDEC1
+// base address: 0x10120000
+#define regBIF_BX_PF1_BIF_BME_STATUS 0x8e0b
+#define regBIF_BX_PF1_BIF_BME_STATUS_BASE_IDX 8
+#define regBIF_BX_PF1_BIF_ATOMIC_ERR_LOG 0x8e0c
+#define regBIF_BX_PF1_BIF_ATOMIC_ERR_LOG_BASE_IDX 8
+#define regBIF_BX_PF1_DOORBELL_SELFRING_GPA_APER_BASE_HIGH 0x8e13
+#define regBIF_BX_PF1_DOORBELL_SELFRING_GPA_APER_BASE_HIGH_BASE_IDX 8
+#define regBIF_BX_PF1_DOORBELL_SELFRING_GPA_APER_BASE_LOW 0x8e14
+#define regBIF_BX_PF1_DOORBELL_SELFRING_GPA_APER_BASE_LOW_BASE_IDX 8
+#define regBIF_BX_PF1_DOORBELL_SELFRING_GPA_APER_CNTL 0x8e15
+#define regBIF_BX_PF1_DOORBELL_SELFRING_GPA_APER_CNTL_BASE_IDX 8
+#define regBIF_BX_PF1_HDP_REG_COHERENCY_FLUSH_CNTL 0x8e16
+#define regBIF_BX_PF1_HDP_REG_COHERENCY_FLUSH_CNTL_BASE_IDX 8
+#define regBIF_BX_PF1_HDP_MEM_COHERENCY_FLUSH_CNTL 0x8e17
+#define regBIF_BX_PF1_HDP_MEM_COHERENCY_FLUSH_CNTL_BASE_IDX 8
+#define regBIF_BX_PF1_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL 0x8e19
+#define regBIF_BX_PF1_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL_BASE_IDX 8
+#define regBIF_BX_PF1_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL 0x8e1a
+#define regBIF_BX_PF1_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL_BASE_IDX 8
+#define regBIF_BX_PF1_GPU_HDP_FLUSH_REQ 0x8e26
+#define regBIF_BX_PF1_GPU_HDP_FLUSH_REQ_BASE_IDX 8
+#define regBIF_BX_PF1_GPU_HDP_FLUSH_DONE 0x8e27
+#define regBIF_BX_PF1_GPU_HDP_FLUSH_DONE_BASE_IDX 8
+#define regBIF_BX_PF1_BIF_TRANS_PENDING 0x8e28
+#define regBIF_BX_PF1_BIF_TRANS_PENDING_BASE_IDX 8
+#define regBIF_BX_PF1_NBIF_GFX_ADDR_LUT_BYPASS 0x8e32
+#define regBIF_BX_PF1_NBIF_GFX_ADDR_LUT_BYPASS_BASE_IDX 8
+#define regBIF_BX_PF1_MAILBOX_MSGBUF_TRN_DW0 0x8e56
+#define regBIF_BX_PF1_MAILBOX_MSGBUF_TRN_DW0_BASE_IDX 8
+#define regBIF_BX_PF1_MAILBOX_MSGBUF_TRN_DW1 0x8e57
+#define regBIF_BX_PF1_MAILBOX_MSGBUF_TRN_DW1_BASE_IDX 8
+#define regBIF_BX_PF1_MAILBOX_MSGBUF_TRN_DW2 0x8e58
+#define regBIF_BX_PF1_MAILBOX_MSGBUF_TRN_DW2_BASE_IDX 8
+#define regBIF_BX_PF1_MAILBOX_MSGBUF_TRN_DW3 0x8e59
+#define regBIF_BX_PF1_MAILBOX_MSGBUF_TRN_DW3_BASE_IDX 8
+#define regBIF_BX_PF1_MAILBOX_MSGBUF_RCV_DW0 0x8e5a
+#define regBIF_BX_PF1_MAILBOX_MSGBUF_RCV_DW0_BASE_IDX 8
+#define regBIF_BX_PF1_MAILBOX_MSGBUF_RCV_DW1 0x8e5b
+#define regBIF_BX_PF1_MAILBOX_MSGBUF_RCV_DW1_BASE_IDX 8
+#define regBIF_BX_PF1_MAILBOX_MSGBUF_RCV_DW2 0x8e5c
+#define regBIF_BX_PF1_MAILBOX_MSGBUF_RCV_DW2_BASE_IDX 8
+#define regBIF_BX_PF1_MAILBOX_MSGBUF_RCV_DW3 0x8e5d
+#define regBIF_BX_PF1_MAILBOX_MSGBUF_RCV_DW3_BASE_IDX 8
+#define regBIF_BX_PF1_MAILBOX_CONTROL 0x8e5e
+#define regBIF_BX_PF1_MAILBOX_CONTROL_BASE_IDX 8
+#define regBIF_BX_PF1_MAILBOX_INT_CNTL 0x8e5f
+#define regBIF_BX_PF1_MAILBOX_INT_CNTL_BASE_IDX 8
+#define regBIF_BX_PF1_BIF_VMHV_MAILBOX 0x8e60
+#define regBIF_BX_PF1_BIF_VMHV_MAILBOX_BASE_IDX 8
+#define regBIF_BX_PF1_PARTITION_COMPUTE_CAP 0x8e81
+#define regBIF_BX_PF1_PARTITION_COMPUTE_CAP_BASE_IDX 8
+#define regBIF_BX_PF1_PARTITION_MEM_CAP 0x8e82
+#define regBIF_BX_PF1_PARTITION_MEM_CAP_BASE_IDX 8
+#define regBIF_BX_PF1_PARTITION_COMPUTE_STATUS 0x8e83
+#define regBIF_BX_PF1_PARTITION_COMPUTE_STATUS_BASE_IDX 8
+#define regBIF_BX_PF1_PARTITION_MEM_STATUS 0x8e84
+#define regBIF_BX_PF1_PARTITION_MEM_STATUS_BASE_IDX 8
+
+
+// addressBlock: aid_nbio_nbif0_rcc_strap_BIFDEC1:1
+// base address: 0x10120000
+#define regRCC_STRAP2_RCC_BIF_STRAP0 0x8d20
+#define regRCC_STRAP2_RCC_BIF_STRAP0_BASE_IDX 8
+#define regRCC_STRAP2_RCC_BIF_STRAP1 0x8d21
+#define regRCC_STRAP2_RCC_BIF_STRAP1_BASE_IDX 8
+#define regRCC_STRAP2_RCC_BIF_STRAP2 0x8d22
+#define regRCC_STRAP2_RCC_BIF_STRAP2_BASE_IDX 8
+#define regRCC_STRAP2_RCC_BIF_STRAP3 0x8d23
+#define regRCC_STRAP2_RCC_BIF_STRAP3_BASE_IDX 8
+#define regRCC_STRAP2_RCC_BIF_STRAP4 0x8d24
+#define regRCC_STRAP2_RCC_BIF_STRAP4_BASE_IDX 8
+#define regRCC_STRAP2_RCC_BIF_STRAP5 0x8d25
+#define regRCC_STRAP2_RCC_BIF_STRAP5_BASE_IDX 8
+#define regRCC_STRAP2_RCC_BIF_STRAP6 0x8d26
+#define regRCC_STRAP2_RCC_BIF_STRAP6_BASE_IDX 8
+#define regRCC_STRAP2_RCC_DEV0_PORT_STRAP0 0x8d27
+#define regRCC_STRAP2_RCC_DEV0_PORT_STRAP0_BASE_IDX 8
+#define regRCC_STRAP2_RCC_DEV0_PORT_STRAP1 0x8d28
+#define regRCC_STRAP2_RCC_DEV0_PORT_STRAP1_BASE_IDX 8
+#define regRCC_STRAP2_RCC_DEV0_PORT_STRAP10 0x8d29
+#define regRCC_STRAP2_RCC_DEV0_PORT_STRAP10_BASE_IDX 8
+#define regRCC_STRAP2_RCC_DEV0_PORT_STRAP11 0x8d2a
+#define regRCC_STRAP2_RCC_DEV0_PORT_STRAP11_BASE_IDX 8
+#define regRCC_STRAP2_RCC_DEV0_PORT_STRAP12 0x8d2b
+#define regRCC_STRAP2_RCC_DEV0_PORT_STRAP12_BASE_IDX 8
+#define regRCC_STRAP2_RCC_DEV0_PORT_STRAP13 0x8d2c
+#define regRCC_STRAP2_RCC_DEV0_PORT_STRAP13_BASE_IDX 8
+#define regRCC_STRAP2_RCC_DEV0_PORT_STRAP14 0x8d2d
+#define regRCC_STRAP2_RCC_DEV0_PORT_STRAP14_BASE_IDX 8
+#define regRCC_STRAP2_RCC_DEV0_PORT_STRAP2 0x8d2e
+#define regRCC_STRAP2_RCC_DEV0_PORT_STRAP2_BASE_IDX 8
+#define regRCC_STRAP2_RCC_DEV0_PORT_STRAP3 0x8d2f
+#define regRCC_STRAP2_RCC_DEV0_PORT_STRAP3_BASE_IDX 8
+#define regRCC_STRAP2_RCC_DEV0_PORT_STRAP4 0x8d30
+#define regRCC_STRAP2_RCC_DEV0_PORT_STRAP4_BASE_IDX 8
+#define regRCC_STRAP2_RCC_DEV0_PORT_STRAP5 0x8d31
+#define regRCC_STRAP2_RCC_DEV0_PORT_STRAP5_BASE_IDX 8
+#define regRCC_STRAP2_RCC_DEV0_PORT_STRAP6 0x8d32
+#define regRCC_STRAP2_RCC_DEV0_PORT_STRAP6_BASE_IDX 8
+#define regRCC_STRAP2_RCC_DEV0_PORT_STRAP7 0x8d33
+#define regRCC_STRAP2_RCC_DEV0_PORT_STRAP7_BASE_IDX 8
+#define regRCC_STRAP2_RCC_DEV0_PORT_STRAP8 0x8d34
+#define regRCC_STRAP2_RCC_DEV0_PORT_STRAP8_BASE_IDX 8
+#define regRCC_STRAP2_RCC_DEV0_PORT_STRAP9 0x8d35
+#define regRCC_STRAP2_RCC_DEV0_PORT_STRAP9_BASE_IDX 8
+#define regRCC_STRAP2_RCC_DEV0_EPF0_STRAP0 0x8d36
+#define regRCC_STRAP2_RCC_DEV0_EPF0_STRAP0_BASE_IDX 8
+#define regRCC_STRAP2_RCC_DEV0_EPF0_STRAP1 0x8d37
+#define regRCC_STRAP2_RCC_DEV0_EPF0_STRAP1_BASE_IDX 8
+#define regRCC_STRAP2_RCC_DEV0_EPF0_STRAP13 0x8d38
+#define regRCC_STRAP2_RCC_DEV0_EPF0_STRAP13_BASE_IDX 8
+#define regRCC_STRAP2_RCC_DEV0_EPF0_STRAP14 0x8d39
+#define regRCC_STRAP2_RCC_DEV0_EPF0_STRAP14_BASE_IDX 8
+#define regRCC_STRAP2_RCC_DEV0_EPF0_STRAP15 0x8d3a
+#define regRCC_STRAP2_RCC_DEV0_EPF0_STRAP15_BASE_IDX 8
+#define regRCC_STRAP2_RCC_DEV0_EPF0_STRAP16 0x8d3b
+#define regRCC_STRAP2_RCC_DEV0_EPF0_STRAP16_BASE_IDX 8
+#define regRCC_STRAP2_RCC_DEV0_EPF0_STRAP17 0x8d3c
+#define regRCC_STRAP2_RCC_DEV0_EPF0_STRAP17_BASE_IDX 8
+#define regRCC_STRAP2_RCC_DEV0_EPF0_STRAP18 0x8d3d
+#define regRCC_STRAP2_RCC_DEV0_EPF0_STRAP18_BASE_IDX 8
+#define regRCC_STRAP2_RCC_DEV0_EPF0_STRAP2 0x8d3e
+#define regRCC_STRAP2_RCC_DEV0_EPF0_STRAP2_BASE_IDX 8
+#define regRCC_STRAP2_RCC_DEV0_EPF0_STRAP26 0x8d3f
+#define regRCC_STRAP2_RCC_DEV0_EPF0_STRAP26_BASE_IDX 8
+#define regRCC_STRAP2_RCC_DEV0_EPF0_STRAP3 0x8d40
+#define regRCC_STRAP2_RCC_DEV0_EPF0_STRAP3_BASE_IDX 8
+#define regRCC_STRAP2_RCC_DEV0_EPF0_STRAP4 0x8d41
+#define regRCC_STRAP2_RCC_DEV0_EPF0_STRAP4_BASE_IDX 8
+#define regRCC_STRAP2_RCC_DEV0_EPF0_STRAP5 0x8d42
+#define regRCC_STRAP2_RCC_DEV0_EPF0_STRAP5_BASE_IDX 8
+#define regRCC_STRAP2_RCC_DEV0_EPF0_STRAP8 0x8d44
+#define regRCC_STRAP2_RCC_DEV0_EPF0_STRAP8_BASE_IDX 8
+#define regRCC_STRAP2_RCC_DEV0_EPF0_STRAP9 0x8d45
+#define regRCC_STRAP2_RCC_DEV0_EPF0_STRAP9_BASE_IDX 8
+#define regRCC_STRAP2_RCC_DEV0_EPF1_STRAP0 0x8d46
+#define regRCC_STRAP2_RCC_DEV0_EPF1_STRAP0_BASE_IDX 8
+#define regRCC_STRAP2_RCC_DEV0_EPF1_STRAP2 0x8d52
+#define regRCC_STRAP2_RCC_DEV0_EPF1_STRAP2_BASE_IDX 8
+#define regRCC_STRAP2_RCC_DEV0_EPF1_STRAP20 0x8d53
+#define regRCC_STRAP2_RCC_DEV0_EPF1_STRAP20_BASE_IDX 8
+#define regRCC_STRAP2_RCC_DEV0_EPF1_STRAP21 0x8d54
+#define regRCC_STRAP2_RCC_DEV0_EPF1_STRAP21_BASE_IDX 8
+#define regRCC_STRAP2_RCC_DEV0_EPF1_STRAP22 0x8d55
+#define regRCC_STRAP2_RCC_DEV0_EPF1_STRAP22_BASE_IDX 8
+#define regRCC_STRAP2_RCC_DEV0_EPF1_STRAP23 0x8d56
+#define regRCC_STRAP2_RCC_DEV0_EPF1_STRAP23_BASE_IDX 8
+#define regRCC_STRAP2_RCC_DEV0_EPF1_STRAP24 0x8d57
+#define regRCC_STRAP2_RCC_DEV0_EPF1_STRAP24_BASE_IDX 8
+#define regRCC_STRAP2_RCC_DEV0_EPF1_STRAP25 0x8d58
+#define regRCC_STRAP2_RCC_DEV0_EPF1_STRAP25_BASE_IDX 8
+#define regRCC_STRAP2_RCC_DEV0_EPF1_STRAP3 0x8d59
+#define regRCC_STRAP2_RCC_DEV0_EPF1_STRAP3_BASE_IDX 8
+#define regRCC_STRAP2_RCC_DEV0_EPF1_STRAP4 0x8d5a
+#define regRCC_STRAP2_RCC_DEV0_EPF1_STRAP4_BASE_IDX 8
+#define regRCC_STRAP2_RCC_DEV0_EPF1_STRAP5 0x8d5b
+#define regRCC_STRAP2_RCC_DEV0_EPF1_STRAP5_BASE_IDX 8
+#define regRCC_STRAP2_RCC_DEV0_EPF1_STRAP6 0x8d5c
+#define regRCC_STRAP2_RCC_DEV0_EPF1_STRAP6_BASE_IDX 8
+#define regRCC_STRAP2_RCC_DEV0_EPF1_STRAP7 0x8d5d
+#define regRCC_STRAP2_RCC_DEV0_EPF1_STRAP7_BASE_IDX 8
+
+
+// addressBlock: aid_nbio_nbif0_gdc_hst_sion_SIONDEC
+// base address: 0x1400000
+#define regS2A_DOORBELL_ENTRY_0_CTRL 0x7a80
+#define regS2A_DOORBELL_ENTRY_0_CTRL_BASE_IDX 5
+#define regS2A_DOORBELL_ENTRY_1_CTRL 0x7a81
+#define regS2A_DOORBELL_ENTRY_1_CTRL_BASE_IDX 5
+#define regS2A_DOORBELL_ENTRY_2_CTRL 0x7a82
+#define regS2A_DOORBELL_ENTRY_2_CTRL_BASE_IDX 5
+#define regS2A_DOORBELL_ENTRY_3_CTRL 0x7a83
+#define regS2A_DOORBELL_ENTRY_3_CTRL_BASE_IDX 5
+#define regS2A_DOORBELL_ENTRY_4_CTRL 0x7a84
+#define regS2A_DOORBELL_ENTRY_4_CTRL_BASE_IDX 5
+#define regS2A_DOORBELL_ENTRY_5_CTRL 0x7a85
+#define regS2A_DOORBELL_ENTRY_5_CTRL_BASE_IDX 5
+#define regS2A_DOORBELL_ENTRY_6_CTRL 0x7a86
+#define regS2A_DOORBELL_ENTRY_6_CTRL_BASE_IDX 5
+#define regS2A_DOORBELL_ENTRY_7_CTRL 0x7a87
+#define regS2A_DOORBELL_ENTRY_7_CTRL_BASE_IDX 5
+#define regS2A_DOORBELL_ENTRY_8_CTRL 0x7a88
+#define regS2A_DOORBELL_ENTRY_8_CTRL_BASE_IDX 5
+#define regS2A_DOORBELL_ENTRY_9_CTRL 0x7a89
+#define regS2A_DOORBELL_ENTRY_9_CTRL_BASE_IDX 5
+#define regS2A_DOORBELL_ENTRY_10_CTRL 0x7a8a
+#define regS2A_DOORBELL_ENTRY_10_CTRL_BASE_IDX 5
+#define regS2A_DOORBELL_ENTRY_11_CTRL 0x7a8b
+#define regS2A_DOORBELL_ENTRY_11_CTRL_BASE_IDX 5
+#define regS2A_DOORBELL_ENTRY_12_CTRL 0x7a8c
+#define regS2A_DOORBELL_ENTRY_12_CTRL_BASE_IDX 5
+#define regS2A_DOORBELL_ENTRY_13_CTRL 0x7a8d
+#define regS2A_DOORBELL_ENTRY_13_CTRL_BASE_IDX 5
+#define regS2A_DOORBELL_ENTRY_14_CTRL 0x7a8e
+#define regS2A_DOORBELL_ENTRY_14_CTRL_BASE_IDX 5
+#define regS2A_DOORBELL_ENTRY_15_CTRL 0x7a8f
+#define regS2A_DOORBELL_ENTRY_15_CTRL_BASE_IDX 5
+#define regS2A_DOORBELL_COMMON_CTRL_REG 0x7a90
+#define regS2A_DOORBELL_COMMON_CTRL_REG_BASE_IDX 5
+
+
+// addressBlock: aid_nbio_nbif0_gdc_GDCDEC
+// base address: 0x1400000
+#define regGDC1_A2S_CNTL_CL0 0x0ea0
+#define regGDC1_A2S_CNTL_CL0_BASE_IDX 5
+#define regGDC1_A2S_CNTL_CL1 0x0ea1
+#define regGDC1_A2S_CNTL_CL1_BASE_IDX 5
+#define regGDC1_A2S_CNTL3_CL0 0x0eb8
+#define regGDC1_A2S_CNTL3_CL0_BASE_IDX 5
+#define regGDC1_A2S_CNTL3_CL1 0x0eb9
+#define regGDC1_A2S_CNTL3_CL1_BASE_IDX 5
+#define regGDC1_A2S_CNTL_SW0 0x0ed0
+#define regGDC1_A2S_CNTL_SW0_BASE_IDX 5
+#define regGDC1_A2S_CNTL_SW1 0x0ed1
+#define regGDC1_A2S_CNTL_SW1_BASE_IDX 5
+#define regGDC1_A2S_CNTL_SW2 0x0ed2
+#define regGDC1_A2S_CNTL_SW2_BASE_IDX 5
+#define regGDC1_A2S_TAG_ALLOC_0 0x0edd
+#define regGDC1_A2S_TAG_ALLOC_0_BASE_IDX 5
+#define regGDC1_A2S_TAG_ALLOC_1 0x0ede
+#define regGDC1_A2S_TAG_ALLOC_1_BASE_IDX 5
+#define regGDC1_A2S_MISC_CNTL 0x0ee1
+#define regGDC1_A2S_MISC_CNTL_BASE_IDX 5
+#define regGDC1_SHUB_REGS_IF_CTL 0x0ee3
+#define regGDC1_SHUB_REGS_IF_CTL_BASE_IDX 5
+#define regGDC1_NGDC_MGCG_CTRL 0x0eea
+#define regGDC1_NGDC_MGCG_CTRL_BASE_IDX 5
+#define regGDC1_NGDC_RESERVED_0 0x0eeb
+#define regGDC1_NGDC_RESERVED_0_BASE_IDX 5
+#define regGDC1_NGDC_RESERVED_1 0x0eec
+#define regGDC1_NGDC_RESERVED_1_BASE_IDX 5
+#define regGDC1_NBIF_GFX_DOORBELL_STATUS 0x0eef
+#define regGDC1_NBIF_GFX_DOORBELL_STATUS_BASE_IDX 5
+#define regGDC1_ATDMA_MISC_CNTL 0x0efd
+#define regGDC1_ATDMA_MISC_CNTL_BASE_IDX 5
+#define regGDC1_S2A_MISC_CNTL 0x0eff
+#define regGDC1_S2A_MISC_CNTL_BASE_IDX 5
+#define regGDC1_NGDC_EARLY_WAKEUP_CTRL 0x0f01
+#define regGDC1_NGDC_EARLY_WAKEUP_CTRL_BASE_IDX 5
+#define regGDC1_NGDC_PG_MISC_CTRL 0x0f18
+#define regGDC1_NGDC_PG_MISC_CTRL_BASE_IDX 5
+#define regGDC1_NGDC_PGMST_CTRL 0x0f19
+#define regGDC1_NGDC_PGMST_CTRL_BASE_IDX 5
+#define regGDC1_NGDC_PGSLV_CTRL 0x0f1a
+#define regGDC1_NGDC_PGSLV_CTRL_BASE_IDX 5
+
+
+// addressBlock: aid_nbio_nbif0_gdc_sec_GDCSEC_DEC
+// base address: 0x1400000
+#define regXCC_DOORBELL_FENCE 0x740c
+#define regXCC_DOORBELL_FENCE_BASE_IDX 5
+
+
+// addressBlock: aid_nbio_nbif0_gdc_rst_GDCRST_DEC
+// base address: 0x1400000
+#define regSHUB_PF_FLR_RST 0x7c00
+#define regSHUB_PF_FLR_RST_BASE_IDX 5
+#define regSHUB_GFX_DRV_VPU_RST 0x7c01
+#define regSHUB_GFX_DRV_VPU_RST_BASE_IDX 5
+#define regSHUB_LINK_RESET 0x7c02
+#define regSHUB_LINK_RESET_BASE_IDX 5
+#define regSHUB_HARD_RST_CTRL 0x7c10
+#define regSHUB_HARD_RST_CTRL_BASE_IDX 5
+#define regSHUB_SOFT_RST_CTRL 0x7c11
+#define regSHUB_SOFT_RST_CTRL_BASE_IDX 5
+#define regSHUB_SDP_PORT_RST 0x7c12
+#define regSHUB_SDP_PORT_RST_BASE_IDX 5
+#define regSHUB_RST_MISC_TRL 0x7c13
+#define regSHUB_RST_MISC_TRL_BASE_IDX 5
+
+
+// addressBlock: aid_nbio_nbif0_syshub_mmreg_syshubdirect
+// base address: 0x1400000
+#define regHST_CLK0_SW0_CL0_CNTL 0x4140
+#define regHST_CLK0_SW0_CL0_CNTL_BASE_IDX 5
+#define regHST_CLK0_SW1_CL0_CNTL 0x4160
+#define regHST_CLK0_SW1_CL0_CNTL_BASE_IDX 5
+#define regHST_CLK0_SW1_CL1_CNTL 0x4161
+#define regHST_CLK0_SW1_CL1_CNTL_BASE_IDX 5
+#define regHST_CLK0_SW1_CL2_CNTL 0x4162
+#define regHST_CLK0_SW1_CL2_CNTL_BASE_IDX 5
+#define regDMA_CLK0_SW0_CL0_CNTL 0x4240
+#define regDMA_CLK0_SW0_CL0_CNTL_BASE_IDX 5
+#define regDMA_CLK0_SW0_CL1_CNTL 0x4241
+#define regDMA_CLK0_SW0_CL1_CNTL_BASE_IDX 5
+#define regNIC400_1_ASIB_0_FN_MOD 0xc042
+#define regNIC400_1_ASIB_0_FN_MOD_BASE_IDX 5
+#define regNIC400_1_IB_0_FN_MOD 0xfc42
+#define regNIC400_1_IB_0_FN_MOD_BASE_IDX 5
+#define regNIC400_2_ASIB_0_FN_MOD 0x10c42
+#define regNIC400_2_ASIB_0_FN_MOD_BASE_IDX 5
+#define regNIC400_2_ASIB_0_QOS_CNTL 0x10c43
+#define regNIC400_2_ASIB_0_QOS_CNTL_BASE_IDX 5
+#define regNIC400_2_ASIB_0_MAX_OT 0x10c44
+#define regNIC400_2_ASIB_0_MAX_OT_BASE_IDX 5
+#define regNIC400_2_ASIB_0_MAX_COMB_OT 0x10c45
+#define regNIC400_2_ASIB_0_MAX_COMB_OT_BASE_IDX 5
+#define regNIC400_2_ASIB_0_AW_P 0x10c46
+#define regNIC400_2_ASIB_0_AW_P_BASE_IDX 5
+#define regNIC400_2_ASIB_0_AW_B 0x10c47
+#define regNIC400_2_ASIB_0_AW_B_BASE_IDX 5
+#define regNIC400_2_ASIB_0_AW_R 0x10c48
+#define regNIC400_2_ASIB_0_AW_R_BASE_IDX 5
+#define regNIC400_2_ASIB_0_AR_P 0x10c49
+#define regNIC400_2_ASIB_0_AR_P_BASE_IDX 5
+#define regNIC400_2_ASIB_0_AR_B 0x10c4a
+#define regNIC400_2_ASIB_0_AR_B_BASE_IDX 5
+#define regNIC400_2_ASIB_0_AR_R 0x10c4b
+#define regNIC400_2_ASIB_0_AR_R_BASE_IDX 5
+#define regNIC400_2_ASIB_0_TARGET_FC 0x10c4c
+#define regNIC400_2_ASIB_0_TARGET_FC_BASE_IDX 5
+#define regNIC400_2_ASIB_0_KI_FC 0x10c4d
+#define regNIC400_2_ASIB_0_KI_FC_BASE_IDX 5
+#define regNIC400_2_ASIB_0_QOS_RANGE 0x10c4e
+#define regNIC400_2_ASIB_0_QOS_RANGE_BASE_IDX 5
+#define regNIC400_2_ASIB_1_FN_MOD 0x11042
+#define regNIC400_2_ASIB_1_FN_MOD_BASE_IDX 5
+#define regNIC400_2_ASIB_1_QOS_CNTL 0x11043
+#define regNIC400_2_ASIB_1_QOS_CNTL_BASE_IDX 5
+#define regNIC400_2_ASIB_1_MAX_OT 0x11044
+#define regNIC400_2_ASIB_1_MAX_OT_BASE_IDX 5
+#define regNIC400_2_ASIB_1_MAX_COMB_OT 0x11045
+#define regNIC400_2_ASIB_1_MAX_COMB_OT_BASE_IDX 5
+#define regNIC400_2_ASIB_1_AW_P 0x11046
+#define regNIC400_2_ASIB_1_AW_P_BASE_IDX 5
+#define regNIC400_2_ASIB_1_AW_B 0x11047
+#define regNIC400_2_ASIB_1_AW_B_BASE_IDX 5
+#define regNIC400_2_ASIB_1_AW_R 0x11048
+#define regNIC400_2_ASIB_1_AW_R_BASE_IDX 5
+#define regNIC400_2_ASIB_1_AR_P 0x11049
+#define regNIC400_2_ASIB_1_AR_P_BASE_IDX 5
+#define regNIC400_2_ASIB_1_AR_B 0x1104a
+#define regNIC400_2_ASIB_1_AR_B_BASE_IDX 5
+#define regNIC400_2_ASIB_1_AR_R 0x1104b
+#define regNIC400_2_ASIB_1_AR_R_BASE_IDX 5
+#define regNIC400_2_ASIB_1_TARGET_FC 0x1104c
+#define regNIC400_2_ASIB_1_TARGET_FC_BASE_IDX 5
+#define regNIC400_2_ASIB_1_KI_FC 0x1104d
+#define regNIC400_2_ASIB_1_KI_FC_BASE_IDX 5
+#define regNIC400_2_ASIB_1_QOS_RANGE 0x1104e
+#define regNIC400_2_ASIB_1_QOS_RANGE_BASE_IDX 5
+#define regNIC400_2_IB_0_FN_MOD 0x13c42
+#define regNIC400_2_IB_0_FN_MOD_BASE_IDX 5
+
+
+// addressBlock: aid_nbio_iohub_nb_nbcfg_nb_cfgdec
+// base address: 0x13b00000
+#define regNB_NBCFG0_NBCFG_SCRATCH_4 0xe8001e
+#define regNB_NBCFG0_NBCFG_SCRATCH_4_BASE_IDX 8
+
+
+// addressBlock: aid_nbio_iohub_nb_misc_misc_cfgdec
+// base address: 0x13b10000
+#define regNB_CNTL 0xe84000
+#define regNB_CNTL_BASE_IDX 8
+#define regNB_SPARE1 0xe84003
+#define regNB_SPARE1_BASE_IDX 8
+#define regNB_SPARE2 0xe84004
+#define regNB_SPARE2_BASE_IDX 8
+#define regNB_REVID 0xe84005
+#define regNB_REVID_BASE_IDX 8
+#define regNBIO_LCLK_DS_MASK 0xe84009
+#define regNBIO_LCLK_DS_MASK_BASE_IDX 8
+#define regNB_BUS_NUM_CNTL 0xe84011
+#define regNB_BUS_NUM_CNTL_BASE_IDX 8
+#define regNB_MMIOBASE 0xe84017
+#define regNB_MMIOBASE_BASE_IDX 8
+#define regNB_MMIOLIMIT 0xe84018
+#define regNB_MMIOLIMIT_BASE_IDX 8
+#define regNB_LOWER_TOP_OF_DRAM2 0xe84019
+#define regNB_LOWER_TOP_OF_DRAM2_BASE_IDX 8
+#define regNB_UPPER_TOP_OF_DRAM2 0xe8401a
+#define regNB_UPPER_TOP_OF_DRAM2_BASE_IDX 8
+#define regNB_LOWER_DRAM2_BASE 0xe8401b
+#define regNB_LOWER_DRAM2_BASE_BASE_IDX 8
+#define regNB_UPPER_DRAM2_BASE 0xe8401c
+#define regNB_UPPER_DRAM2_BASE_BASE_IDX 8
+#define regSB_LOCATION 0xe8401f
+#define regSB_LOCATION_BASE_IDX 8
+#define regSW_US_LOCATION 0xe84020
+#define regSW_US_LOCATION_BASE_IDX 8
+#define regNB_PROG_DEVICE_REMAP_PBr0 0xe8402e
+#define regNB_PROG_DEVICE_REMAP_PBr0_BASE_IDX 8
+#define regNB_PROG_DEVICE_REMAP_PBr1 0xe8402f
+#define regNB_PROG_DEVICE_REMAP_PBr1_BASE_IDX 8
+#define regNB_PROG_DEVICE_REMAP_PBr2 0xe84030
+#define regNB_PROG_DEVICE_REMAP_PBr2_BASE_IDX 8
+#define regNB_PROG_DEVICE_REMAP_PBr3 0xe84031
+#define regNB_PROG_DEVICE_REMAP_PBr3_BASE_IDX 8
+#define regNB_PROG_DEVICE_REMAP_PBr4 0xe84032
+#define regNB_PROG_DEVICE_REMAP_PBr4_BASE_IDX 8
+#define regNB_PROG_DEVICE_REMAP_PBr5 0xe84033
+#define regNB_PROG_DEVICE_REMAP_PBr5_BASE_IDX 8
+#define regNB_PROG_DEVICE_REMAP_PBr6 0xe84034
+#define regNB_PROG_DEVICE_REMAP_PBr6_BASE_IDX 8
+#define regNB_PROG_DEVICE_REMAP_PBr7 0xe84035
+#define regNB_PROG_DEVICE_REMAP_PBr7_BASE_IDX 8
+#define regNB_PROG_DEVICE_REMAP_PBr8 0xe84036
+#define regNB_PROG_DEVICE_REMAP_PBr8_BASE_IDX 8
+#define regNB_PROG_DEVICE_REMAP_PBr10 0xe84038
+#define regNB_PROG_DEVICE_REMAP_PBr10_BASE_IDX 8
+#define regNB_PROG_DEVICE_REMAP_PBr11 0xe84039
+#define regNB_PROG_DEVICE_REMAP_PBr11_BASE_IDX 8
+#define regNB_PROG_DEVICE_REMAP_PBr12 0xe8403a
+#define regNB_PROG_DEVICE_REMAP_PBr12_BASE_IDX 8
+#define regNB_PROG_DEVICE_REMAP_PBr13 0xe8403b
+#define regNB_PROG_DEVICE_REMAP_PBr13_BASE_IDX 8
+#define regSW_NMI_CNTL 0xe84042
+#define regSW_NMI_CNTL_BASE_IDX 8
+#define regSW_SMI_CNTL 0xe84043
+#define regSW_SMI_CNTL_BASE_IDX 8
+#define regSW_SCI_CNTL 0xe84044
+#define regSW_SCI_CNTL_BASE_IDX 8
+#define regAPML_SW_STATUS 0xe84045
+#define regAPML_SW_STATUS_BASE_IDX 8
+#define regSW_GIC_SPI_CNTL 0xe84047
+#define regSW_GIC_SPI_CNTL_BASE_IDX 8
+#define regSW_SYNCFLOOD_CNTL 0xe84049
+#define regSW_SYNCFLOOD_CNTL_BASE_IDX 8
+#define regNB_TOP_OF_DRAM3 0xe8404e
+#define regNB_TOP_OF_DRAM3_BASE_IDX 8
+#define regCAM_CONTROL 0xe84052
+#define regCAM_CONTROL_BASE_IDX 8
+#define regCAM_TARGET_INDEX_ADDR_BOTTOM 0xe84053
+#define regCAM_TARGET_INDEX_ADDR_BOTTOM_BASE_IDX 8
+#define regCAM_TARGET_INDEX_ADDR_TOP 0xe84054
+#define regCAM_TARGET_INDEX_ADDR_TOP_BASE_IDX 8
+#define regCAM_TARGET_INDEX_DATA 0xe84055
+#define regCAM_TARGET_INDEX_DATA_BASE_IDX 8
+#define regCAM_TARGET_INDEX_DATA_MASK 0xe84056
+#define regCAM_TARGET_INDEX_DATA_MASK_BASE_IDX 8
+#define regCAM_TARGET_DATA_ADDR_BOTTOM 0xe84057
+#define regCAM_TARGET_DATA_ADDR_BOTTOM_BASE_IDX 8
+#define regCAM_TARGET_DATA_ADDR_TOP 0xe84059
+#define regCAM_TARGET_DATA_ADDR_TOP_BASE_IDX 8
+#define regCAM_TARGET_DATA 0xe8405a
+#define regCAM_TARGET_DATA_BASE_IDX 8
+#define regCAM_TARGET_DATA_MASK 0xe8405b
+#define regCAM_TARGET_DATA_MASK_BASE_IDX 8
+#define regP_DMA_DROPPED_LOG_LOWER 0xe84060
+#define regP_DMA_DROPPED_LOG_LOWER_BASE_IDX 8
+#define regP_DMA_DROPPED_LOG_UPPER 0xe84061
+#define regP_DMA_DROPPED_LOG_UPPER_BASE_IDX 8
+#define regNP_DMA_DROPPED_LOG_LOWER 0xe84062
+#define regNP_DMA_DROPPED_LOG_LOWER_BASE_IDX 8
+#define regNP_DMA_DROPPED_LOG_UPPER 0xe84063
+#define regNP_DMA_DROPPED_LOG_UPPER_BASE_IDX 8
+#define regPCIE_VDM_NODE0_CTRL4 0xe84064
+#define regPCIE_VDM_NODE0_CTRL4_BASE_IDX 8
+#define regPCIE_VDM_CNTL2 0xe8408c
+#define regPCIE_VDM_CNTL2_BASE_IDX 8
+#define regPCIE_VDM_CNTL3 0xe8408d
+#define regPCIE_VDM_CNTL3_BASE_IDX 8
+#define regSTALL_CONTROL_XBARPORT0_0 0xe84090
+#define regSTALL_CONTROL_XBARPORT0_0_BASE_IDX 8
+#define regSTALL_CONTROL_XBARPORT0_1 0xe84091
+#define regSTALL_CONTROL_XBARPORT0_1_BASE_IDX 8
+#define regSTALL_CONTROL_XBARPORT1_0 0xe84093
+#define regSTALL_CONTROL_XBARPORT1_0_BASE_IDX 8
+#define regSTALL_CONTROL_XBARPORT1_1 0xe84094
+#define regSTALL_CONTROL_XBARPORT1_1_BASE_IDX 8
+#define regSTALL_CONTROL_XBARPORT2_0 0xe84096
+#define regSTALL_CONTROL_XBARPORT2_0_BASE_IDX 8
+#define regSTALL_CONTROL_XBARPORT2_1 0xe84097
+#define regSTALL_CONTROL_XBARPORT2_1_BASE_IDX 8
+#define regSTALL_CONTROL_XBARPORT3_0 0xe84099
+#define regSTALL_CONTROL_XBARPORT3_0_BASE_IDX 8
+#define regSTALL_CONTROL_XBARPORT3_1 0xe8409a
+#define regSTALL_CONTROL_XBARPORT3_1_BASE_IDX 8
+#define regSTALL_CONTROL_XBARPORT4_0 0xe8409c
+#define regSTALL_CONTROL_XBARPORT4_0_BASE_IDX 8
+#define regSTALL_CONTROL_XBARPORT4_1 0xe8409d
+#define regSTALL_CONTROL_XBARPORT4_1_BASE_IDX 8
+#define regSTALL_CONTROL_XBARPORT5_0 0xe8409f
+#define regSTALL_CONTROL_XBARPORT5_0_BASE_IDX 8
+#define regSTALL_CONTROL_XBARPORT5_1 0xe840a0
+#define regSTALL_CONTROL_XBARPORT5_1_BASE_IDX 8
+#define regNB_DRAM3_BASE 0xe840b1
+#define regNB_DRAM3_BASE_BASE_IDX 8
+#define regPSP_BASE_ADDR_LO 0xe840b8
+#define regPSP_BASE_ADDR_LO_BASE_IDX 8
+#define regPSP_BASE_ADDR_HI 0xe840b9
+#define regPSP_BASE_ADDR_HI_BASE_IDX 8
+#define regSMU_BASE_ADDR_LO 0xe840ba
+#define regSMU_BASE_ADDR_LO_BASE_IDX 8
+#define regSMU_BASE_ADDR_HI 0xe840bb
+#define regSMU_BASE_ADDR_HI_BASE_IDX 8
+#define regSCRATCH_4 0xe840fc
+#define regSCRATCH_4_BASE_IDX 8
+#define regSCRATCH_5 0xe840fd
+#define regSCRATCH_5_BASE_IDX 8
+#define regSMU_BLOCK_CPU 0xe840fe
+#define regSMU_BLOCK_CPU_BASE_IDX 8
+#define regSMU_BLOCK_CPU_STATUS 0xe840ff
+#define regSMU_BLOCK_CPU_STATUS_BASE_IDX 8
+#define regTRAP_STATUS 0xe84100
+#define regTRAP_STATUS_BASE_IDX 8
+#define regTRAP_REQUEST0 0xe84101
+#define regTRAP_REQUEST0_BASE_IDX 8
+#define regTRAP_REQUEST1 0xe84102
+#define regTRAP_REQUEST1_BASE_IDX 8
+#define regTRAP_REQUEST2 0xe84103
+#define regTRAP_REQUEST2_BASE_IDX 8
+#define regTRAP_REQUEST3 0xe84104
+#define regTRAP_REQUEST3_BASE_IDX 8
+#define regTRAP_REQUEST4 0xe84105
+#define regTRAP_REQUEST4_BASE_IDX 8
+#define regTRAP_REQUEST5 0xe84106
+#define regTRAP_REQUEST5_BASE_IDX 8
+#define regTRAP_REQUEST_DATASTRB0 0xe84108
+#define regTRAP_REQUEST_DATASTRB0_BASE_IDX 8
+#define regTRAP_REQUEST_DATASTRB1 0xe84109
+#define regTRAP_REQUEST_DATASTRB1_BASE_IDX 8
+#define regTRAP_REQUEST_DATA0 0xe84110
+#define regTRAP_REQUEST_DATA0_BASE_IDX 8
+#define regTRAP_REQUEST_DATA1 0xe84111
+#define regTRAP_REQUEST_DATA1_BASE_IDX 8
+#define regTRAP_REQUEST_DATA2 0xe84112
+#define regTRAP_REQUEST_DATA2_BASE_IDX 8
+#define regTRAP_REQUEST_DATA3 0xe84113
+#define regTRAP_REQUEST_DATA3_BASE_IDX 8
+#define regTRAP_REQUEST_DATA4 0xe84114
+#define regTRAP_REQUEST_DATA4_BASE_IDX 8
+#define regTRAP_REQUEST_DATA5 0xe84115
+#define regTRAP_REQUEST_DATA5_BASE_IDX 8
+#define regTRAP_REQUEST_DATA6 0xe84116
+#define regTRAP_REQUEST_DATA6_BASE_IDX 8
+#define regTRAP_REQUEST_DATA7 0xe84117
+#define regTRAP_REQUEST_DATA7_BASE_IDX 8
+#define regTRAP_REQUEST_DATA8 0xe84118
+#define regTRAP_REQUEST_DATA8_BASE_IDX 8
+#define regTRAP_REQUEST_DATA9 0xe84119
+#define regTRAP_REQUEST_DATA9_BASE_IDX 8
+#define regTRAP_REQUEST_DATA10 0xe8411a
+#define regTRAP_REQUEST_DATA10_BASE_IDX 8
+#define regTRAP_REQUEST_DATA11 0xe8411b
+#define regTRAP_REQUEST_DATA11_BASE_IDX 8
+#define regTRAP_REQUEST_DATA12 0xe8411c
+#define regTRAP_REQUEST_DATA12_BASE_IDX 8
+#define regTRAP_REQUEST_DATA13 0xe8411d
+#define regTRAP_REQUEST_DATA13_BASE_IDX 8
+#define regTRAP_REQUEST_DATA14 0xe8411e
+#define regTRAP_REQUEST_DATA14_BASE_IDX 8
+#define regTRAP_REQUEST_DATA15 0xe8411f
+#define regTRAP_REQUEST_DATA15_BASE_IDX 8
+#define regTRAP_RESPONSE_CONTROL 0xe84130
+#define regTRAP_RESPONSE_CONTROL_BASE_IDX 8
+#define regTRAP_RESPONSE0 0xe84131
+#define regTRAP_RESPONSE0_BASE_IDX 8
+#define regTRAP_RESPONSE_DATA0 0xe84140
+#define regTRAP_RESPONSE_DATA0_BASE_IDX 8
+#define regTRAP_RESPONSE_DATA1 0xe84141
+#define regTRAP_RESPONSE_DATA1_BASE_IDX 8
+#define regTRAP_RESPONSE_DATA2 0xe84142
+#define regTRAP_RESPONSE_DATA2_BASE_IDX 8
+#define regTRAP_RESPONSE_DATA3 0xe84143
+#define regTRAP_RESPONSE_DATA3_BASE_IDX 8
+#define regTRAP_RESPONSE_DATA4 0xe84144
+#define regTRAP_RESPONSE_DATA4_BASE_IDX 8
+#define regTRAP_RESPONSE_DATA5 0xe84145
+#define regTRAP_RESPONSE_DATA5_BASE_IDX 8
+#define regTRAP_RESPONSE_DATA6 0xe84146
+#define regTRAP_RESPONSE_DATA6_BASE_IDX 8
+#define regTRAP_RESPONSE_DATA7 0xe84147
+#define regTRAP_RESPONSE_DATA7_BASE_IDX 8
+#define regTRAP_RESPONSE_DATA8 0xe84148
+#define regTRAP_RESPONSE_DATA8_BASE_IDX 8
+#define regTRAP_RESPONSE_DATA9 0xe84149
+#define regTRAP_RESPONSE_DATA9_BASE_IDX 8
+#define regTRAP_RESPONSE_DATA10 0xe8414a
+#define regTRAP_RESPONSE_DATA10_BASE_IDX 8
+#define regTRAP_RESPONSE_DATA11 0xe8414b
+#define regTRAP_RESPONSE_DATA11_BASE_IDX 8
+#define regTRAP_RESPONSE_DATA12 0xe8414c
+#define regTRAP_RESPONSE_DATA12_BASE_IDX 8
+#define regTRAP_RESPONSE_DATA13 0xe8414d
+#define regTRAP_RESPONSE_DATA13_BASE_IDX 8
+#define regTRAP_RESPONSE_DATA14 0xe8414e
+#define regTRAP_RESPONSE_DATA14_BASE_IDX 8
+#define regTRAP_RESPONSE_DATA15 0xe8414f
+#define regTRAP_RESPONSE_DATA15_BASE_IDX 8
+#define regTRAP0_CONTROL0 0xe84200
+#define regTRAP0_CONTROL0_BASE_IDX 8
+#define regTRAP0_ADDRESS_LO 0xe84202
+#define regTRAP0_ADDRESS_LO_BASE_IDX 8
+#define regTRAP0_ADDRESS_HI 0xe84203
+#define regTRAP0_ADDRESS_HI_BASE_IDX 8
+#define regTRAP0_COMMAND 0xe84204
+#define regTRAP0_COMMAND_BASE_IDX 8
+#define regTRAP0_ADDRESS_LO_MASK 0xe84206
+#define regTRAP0_ADDRESS_LO_MASK_BASE_IDX 8
+#define regTRAP0_ADDRESS_HI_MASK 0xe84207
+#define regTRAP0_ADDRESS_HI_MASK_BASE_IDX 8
+#define regTRAP0_COMMAND_MASK 0xe84208
+#define regTRAP0_COMMAND_MASK_BASE_IDX 8
+#define regTRAP1_CONTROL0 0xe84210
+#define regTRAP1_CONTROL0_BASE_IDX 8
+#define regTRAP1_ADDRESS_LO 0xe84212
+#define regTRAP1_ADDRESS_LO_BASE_IDX 8
+#define regTRAP1_ADDRESS_HI 0xe84213
+#define regTRAP1_ADDRESS_HI_BASE_IDX 8
+#define regTRAP1_COMMAND 0xe84214
+#define regTRAP1_COMMAND_BASE_IDX 8
+#define regTRAP1_ADDRESS_LO_MASK 0xe84216
+#define regTRAP1_ADDRESS_LO_MASK_BASE_IDX 8
+#define regTRAP1_ADDRESS_HI_MASK 0xe84217
+#define regTRAP1_ADDRESS_HI_MASK_BASE_IDX 8
+#define regTRAP1_COMMAND_MASK 0xe84218
+#define regTRAP1_COMMAND_MASK_BASE_IDX 8
+#define regTRAP2_CONTROL0 0xe84220
+#define regTRAP2_CONTROL0_BASE_IDX 8
+#define regTRAP2_ADDRESS_LO 0xe84222
+#define regTRAP2_ADDRESS_LO_BASE_IDX 8
+#define regTRAP2_ADDRESS_HI 0xe84223
+#define regTRAP2_ADDRESS_HI_BASE_IDX 8
+#define regTRAP2_COMMAND 0xe84224
+#define regTRAP2_COMMAND_BASE_IDX 8
+#define regTRAP2_ADDRESS_LO_MASK 0xe84226
+#define regTRAP2_ADDRESS_LO_MASK_BASE_IDX 8
+#define regTRAP2_ADDRESS_HI_MASK 0xe84227
+#define regTRAP2_ADDRESS_HI_MASK_BASE_IDX 8
+#define regTRAP2_COMMAND_MASK 0xe84228
+#define regTRAP2_COMMAND_MASK_BASE_IDX 8
+#define regTRAP3_CONTROL0 0xe84230
+#define regTRAP3_CONTROL0_BASE_IDX 8
+#define regTRAP3_ADDRESS_LO 0xe84232
+#define regTRAP3_ADDRESS_LO_BASE_IDX 8
+#define regTRAP3_ADDRESS_HI 0xe84233
+#define regTRAP3_ADDRESS_HI_BASE_IDX 8
+#define regTRAP3_COMMAND 0xe84234
+#define regTRAP3_COMMAND_BASE_IDX 8
+#define regTRAP3_ADDRESS_LO_MASK 0xe84236
+#define regTRAP3_ADDRESS_LO_MASK_BASE_IDX 8
+#define regTRAP3_ADDRESS_HI_MASK 0xe84237
+#define regTRAP3_ADDRESS_HI_MASK_BASE_IDX 8
+#define regTRAP3_COMMAND_MASK 0xe84238
+#define regTRAP3_COMMAND_MASK_BASE_IDX 8
+#define regTRAP4_CONTROL0 0xe84240
+#define regTRAP4_CONTROL0_BASE_IDX 8
+#define regTRAP4_ADDRESS_LO 0xe84242
+#define regTRAP4_ADDRESS_LO_BASE_IDX 8
+#define regTRAP4_ADDRESS_HI 0xe84243
+#define regTRAP4_ADDRESS_HI_BASE_IDX 8
+#define regTRAP4_COMMAND 0xe84244
+#define regTRAP4_COMMAND_BASE_IDX 8
+#define regTRAP4_ADDRESS_LO_MASK 0xe84246
+#define regTRAP4_ADDRESS_LO_MASK_BASE_IDX 8
+#define regTRAP4_ADDRESS_HI_MASK 0xe84247
+#define regTRAP4_ADDRESS_HI_MASK_BASE_IDX 8
+#define regTRAP4_COMMAND_MASK 0xe84248
+#define regTRAP4_COMMAND_MASK_BASE_IDX 8
+#define regTRAP5_CONTROL0 0xe84250
+#define regTRAP5_CONTROL0_BASE_IDX 8
+#define regTRAP5_ADDRESS_LO 0xe84252
+#define regTRAP5_ADDRESS_LO_BASE_IDX 8
+#define regTRAP5_ADDRESS_HI 0xe84253
+#define regTRAP5_ADDRESS_HI_BASE_IDX 8
+#define regTRAP5_COMMAND 0xe84254
+#define regTRAP5_COMMAND_BASE_IDX 8
+#define regTRAP5_ADDRESS_LO_MASK 0xe84256
+#define regTRAP5_ADDRESS_LO_MASK_BASE_IDX 8
+#define regTRAP5_ADDRESS_HI_MASK 0xe84257
+#define regTRAP5_ADDRESS_HI_MASK_BASE_IDX 8
+#define regTRAP5_COMMAND_MASK 0xe84258
+#define regTRAP5_COMMAND_MASK_BASE_IDX 8
+#define regTRAP6_CONTROL0 0xe84260
+#define regTRAP6_CONTROL0_BASE_IDX 8
+#define regTRAP6_ADDRESS_LO 0xe84262
+#define regTRAP6_ADDRESS_LO_BASE_IDX 8
+#define regTRAP6_ADDRESS_HI 0xe84263
+#define regTRAP6_ADDRESS_HI_BASE_IDX 8
+#define regTRAP6_COMMAND 0xe84264
+#define regTRAP6_COMMAND_BASE_IDX 8
+#define regTRAP6_ADDRESS_LO_MASK 0xe84266
+#define regTRAP6_ADDRESS_LO_MASK_BASE_IDX 8
+#define regTRAP6_ADDRESS_HI_MASK 0xe84267
+#define regTRAP6_ADDRESS_HI_MASK_BASE_IDX 8
+#define regTRAP6_COMMAND_MASK 0xe84268
+#define regTRAP6_COMMAND_MASK_BASE_IDX 8
+#define regTRAP7_CONTROL0 0xe84270
+#define regTRAP7_CONTROL0_BASE_IDX 8
+#define regTRAP7_ADDRESS_LO 0xe84272
+#define regTRAP7_ADDRESS_LO_BASE_IDX 8
+#define regTRAP7_ADDRESS_HI 0xe84273
+#define regTRAP7_ADDRESS_HI_BASE_IDX 8
+#define regTRAP7_COMMAND 0xe84274
+#define regTRAP7_COMMAND_BASE_IDX 8
+#define regTRAP7_ADDRESS_LO_MASK 0xe84276
+#define regTRAP7_ADDRESS_LO_MASK_BASE_IDX 8
+#define regTRAP7_ADDRESS_HI_MASK 0xe84277
+#define regTRAP7_ADDRESS_HI_MASK_BASE_IDX 8
+#define regTRAP7_COMMAND_MASK 0xe84278
+#define regTRAP7_COMMAND_MASK_BASE_IDX 8
+#define regTRAP8_CONTROL0 0xe84280
+#define regTRAP8_CONTROL0_BASE_IDX 8
+#define regTRAP8_ADDRESS_LO 0xe84282
+#define regTRAP8_ADDRESS_LO_BASE_IDX 8
+#define regTRAP8_ADDRESS_HI 0xe84283
+#define regTRAP8_ADDRESS_HI_BASE_IDX 8
+#define regTRAP8_COMMAND 0xe84284
+#define regTRAP8_COMMAND_BASE_IDX 8
+#define regTRAP8_ADDRESS_LO_MASK 0xe84286
+#define regTRAP8_ADDRESS_LO_MASK_BASE_IDX 8
+#define regTRAP8_ADDRESS_HI_MASK 0xe84287
+#define regTRAP8_ADDRESS_HI_MASK_BASE_IDX 8
+#define regTRAP8_COMMAND_MASK 0xe84288
+#define regTRAP8_COMMAND_MASK_BASE_IDX 8
+#define regTRAP9_CONTROL0 0xe84290
+#define regTRAP9_CONTROL0_BASE_IDX 8
+#define regTRAP9_ADDRESS_LO 0xe84292
+#define regTRAP9_ADDRESS_LO_BASE_IDX 8
+#define regTRAP9_ADDRESS_HI 0xe84293
+#define regTRAP9_ADDRESS_HI_BASE_IDX 8
+#define regTRAP9_COMMAND 0xe84294
+#define regTRAP9_COMMAND_BASE_IDX 8
+#define regTRAP9_ADDRESS_LO_MASK 0xe84296
+#define regTRAP9_ADDRESS_LO_MASK_BASE_IDX 8
+#define regTRAP9_ADDRESS_HI_MASK 0xe84297
+#define regTRAP9_ADDRESS_HI_MASK_BASE_IDX 8
+#define regTRAP9_COMMAND_MASK 0xe84298
+#define regTRAP9_COMMAND_MASK_BASE_IDX 8
+#define regTRAP10_CONTROL0 0xe842a0
+#define regTRAP10_CONTROL0_BASE_IDX 8
+#define regTRAP10_ADDRESS_LO 0xe842a2
+#define regTRAP10_ADDRESS_LO_BASE_IDX 8
+#define regTRAP10_ADDRESS_HI 0xe842a3
+#define regTRAP10_ADDRESS_HI_BASE_IDX 8
+#define regTRAP10_COMMAND 0xe842a4
+#define regTRAP10_COMMAND_BASE_IDX 8
+#define regTRAP10_ADDRESS_LO_MASK 0xe842a6
+#define regTRAP10_ADDRESS_LO_MASK_BASE_IDX 8
+#define regTRAP10_ADDRESS_HI_MASK 0xe842a7
+#define regTRAP10_ADDRESS_HI_MASK_BASE_IDX 8
+#define regTRAP10_COMMAND_MASK 0xe842a8
+#define regTRAP10_COMMAND_MASK_BASE_IDX 8
+#define regTRAP11_CONTROL0 0xe842b0
+#define regTRAP11_CONTROL0_BASE_IDX 8
+#define regTRAP11_ADDRESS_LO 0xe842b2
+#define regTRAP11_ADDRESS_LO_BASE_IDX 8
+#define regTRAP11_ADDRESS_HI 0xe842b3
+#define regTRAP11_ADDRESS_HI_BASE_IDX 8
+#define regTRAP11_COMMAND 0xe842b4
+#define regTRAP11_COMMAND_BASE_IDX 8
+#define regTRAP11_ADDRESS_LO_MASK 0xe842b6
+#define regTRAP11_ADDRESS_LO_MASK_BASE_IDX 8
+#define regTRAP11_ADDRESS_HI_MASK 0xe842b7
+#define regTRAP11_ADDRESS_HI_MASK_BASE_IDX 8
+#define regTRAP11_COMMAND_MASK 0xe842b8
+#define regTRAP11_COMMAND_MASK_BASE_IDX 8
+#define regTRAP12_CONTROL0 0xe842c0
+#define regTRAP12_CONTROL0_BASE_IDX 8
+#define regTRAP12_ADDRESS_LO 0xe842c2
+#define regTRAP12_ADDRESS_LO_BASE_IDX 8
+#define regTRAP12_ADDRESS_HI 0xe842c3
+#define regTRAP12_ADDRESS_HI_BASE_IDX 8
+#define regTRAP12_COMMAND 0xe842c4
+#define regTRAP12_COMMAND_BASE_IDX 8
+#define regTRAP12_ADDRESS_LO_MASK 0xe842c6
+#define regTRAP12_ADDRESS_LO_MASK_BASE_IDX 8
+#define regTRAP12_ADDRESS_HI_MASK 0xe842c7
+#define regTRAP12_ADDRESS_HI_MASK_BASE_IDX 8
+#define regTRAP12_COMMAND_MASK 0xe842c8
+#define regTRAP12_COMMAND_MASK_BASE_IDX 8
+#define regTRAP13_CONTROL0 0xe842d0
+#define regTRAP13_CONTROL0_BASE_IDX 8
+#define regTRAP13_ADDRESS_LO 0xe842d2
+#define regTRAP13_ADDRESS_LO_BASE_IDX 8
+#define regTRAP13_ADDRESS_HI 0xe842d3
+#define regTRAP13_ADDRESS_HI_BASE_IDX 8
+#define regTRAP13_COMMAND 0xe842d4
+#define regTRAP13_COMMAND_BASE_IDX 8
+#define regTRAP13_ADDRESS_LO_MASK 0xe842d6
+#define regTRAP13_ADDRESS_LO_MASK_BASE_IDX 8
+#define regTRAP13_ADDRESS_HI_MASK 0xe842d7
+#define regTRAP13_ADDRESS_HI_MASK_BASE_IDX 8
+#define regTRAP13_COMMAND_MASK 0xe842d8
+#define regTRAP13_COMMAND_MASK_BASE_IDX 8
+#define regTRAP14_CONTROL0 0xe842e0
+#define regTRAP14_CONTROL0_BASE_IDX 8
+#define regTRAP14_ADDRESS_LO 0xe842e2
+#define regTRAP14_ADDRESS_LO_BASE_IDX 8
+#define regTRAP14_ADDRESS_HI 0xe842e3
+#define regTRAP14_ADDRESS_HI_BASE_IDX 8
+#define regTRAP14_COMMAND 0xe842e4
+#define regTRAP14_COMMAND_BASE_IDX 8
+#define regTRAP14_ADDRESS_LO_MASK 0xe842e6
+#define regTRAP14_ADDRESS_LO_MASK_BASE_IDX 8
+#define regTRAP14_ADDRESS_HI_MASK 0xe842e7
+#define regTRAP14_ADDRESS_HI_MASK_BASE_IDX 8
+#define regTRAP14_COMMAND_MASK 0xe842e8
+#define regTRAP14_COMMAND_MASK_BASE_IDX 8
+#define regTRAP15_CONTROL0 0xe842f0
+#define regTRAP15_CONTROL0_BASE_IDX 8
+#define regTRAP15_ADDRESS_LO 0xe842f2
+#define regTRAP15_ADDRESS_LO_BASE_IDX 8
+#define regTRAP15_ADDRESS_HI 0xe842f3
+#define regTRAP15_ADDRESS_HI_BASE_IDX 8
+#define regTRAP15_COMMAND 0xe842f4
+#define regTRAP15_COMMAND_BASE_IDX 8
+#define regTRAP15_ADDRESS_LO_MASK 0xe842f6
+#define regTRAP15_ADDRESS_LO_MASK_BASE_IDX 8
+#define regTRAP15_ADDRESS_HI_MASK 0xe842f7
+#define regTRAP15_ADDRESS_HI_MASK_BASE_IDX 8
+#define regTRAP15_COMMAND_MASK 0xe842f8
+#define regTRAP15_COMMAND_MASK_BASE_IDX 8
+#define regSB_COMMAND 0xe85000
+#define regSB_COMMAND_BASE_IDX 8
+#define regSB_SUB_BUS_NUMBER_LATENCY 0xe85001
+#define regSB_SUB_BUS_NUMBER_LATENCY_BASE_IDX 8
+#define regSB_IO_BASE_LIMIT 0xe85002
+#define regSB_IO_BASE_LIMIT_BASE_IDX 8
+#define regSB_MEM_BASE_LIMIT 0xe85003
+#define regSB_MEM_BASE_LIMIT_BASE_IDX 8
+#define regSB_PREF_BASE_LIMIT 0xe85004
+#define regSB_PREF_BASE_LIMIT_BASE_IDX 8
+#define regSB_PREF_BASE_UPPER 0xe85005
+#define regSB_PREF_BASE_UPPER_BASE_IDX 8
+#define regSB_PREF_LIMIT_UPPER 0xe85006
+#define regSB_PREF_LIMIT_UPPER_BASE_IDX 8
+#define regSB_IO_BASE_LIMIT_HI 0xe85007
+#define regSB_IO_BASE_LIMIT_HI_BASE_IDX 8
+#define regSB_IRQ_BRIDGE_CNTL 0xe85008
+#define regSB_IRQ_BRIDGE_CNTL_BASE_IDX 8
+#define regSB_EXT_BRIDGE_CNTL 0xe85009
+#define regSB_EXT_BRIDGE_CNTL_BASE_IDX 8
+#define regSB_PMI_STATUS_CNTL 0xe8500a
+#define regSB_PMI_STATUS_CNTL_BASE_IDX 8
+#define regSB_SLOT_CAP 0xe8500b
+#define regSB_SLOT_CAP_BASE_IDX 8
+#define regSB_ROOT_CNTL 0xe8500c
+#define regSB_ROOT_CNTL_BASE_IDX 8
+#define regSB_DEVICE_CNTL2 0xe8500d
+#define regSB_DEVICE_CNTL2_BASE_IDX 8
+#define regMCA_SMN_INT_REQ_ADDR 0xe85020
+#define regMCA_SMN_INT_REQ_ADDR_BASE_IDX 8
+#define regMCA_SMN_INT_MCM_ADDR 0xe85021
+#define regMCA_SMN_INT_MCM_ADDR_BASE_IDX 8
+#define regMCA_SMN_INT_APERTUREID 0xe85022
+#define regMCA_SMN_INT_APERTUREID_BASE_IDX 8
+#define regMCA_SMN_INT_CONTROL 0xe85023
+#define regMCA_SMN_INT_CONTROL_BASE_IDX 8
+
+
+// addressBlock: aid_nbio_iohub_nb_rascfg_ras_cfgdec
+// base address: 0x13b20000
+#define regPARITY_CONTROL_0 0xe88000
+#define regPARITY_CONTROL_0_BASE_IDX 8
+#define regPARITY_CONTROL_1 0xe88001
+#define regPARITY_CONTROL_1_BASE_IDX 8
+#define regPARITY_SEVERITY_CONTROL_UNCORR_0 0xe88002
+#define regPARITY_SEVERITY_CONTROL_UNCORR_0_BASE_IDX 8
+#define regPARITY_SEVERITY_CONTROL_CORR_0 0xe88004
+#define regPARITY_SEVERITY_CONTROL_CORR_0_BASE_IDX 8
+#define regPARITY_SEVERITY_CONTROL_UCP_0 0xe88006
+#define regPARITY_SEVERITY_CONTROL_UCP_0_BASE_IDX 8
+#define regRAS_GLOBAL_STATUS_LO 0xe88008
+#define regRAS_GLOBAL_STATUS_LO_BASE_IDX 8
+#define regRAS_GLOBAL_STATUS_HI 0xe88009
+#define regRAS_GLOBAL_STATUS_HI_BASE_IDX 8
+#define regPARITY_ERROR_STATUS_UNCORR_GRP0 0xe8800a
+#define regPARITY_ERROR_STATUS_UNCORR_GRP0_BASE_IDX 8
+#define regPARITY_ERROR_STATUS_UNCORR_GRP1 0xe8800b
+#define regPARITY_ERROR_STATUS_UNCORR_GRP1_BASE_IDX 8
+#define regPARITY_ERROR_STATUS_UNCORR_GRP2 0xe8800c
+#define regPARITY_ERROR_STATUS_UNCORR_GRP2_BASE_IDX 8
+#define regPARITY_ERROR_STATUS_UNCORR_GRP3 0xe8800d
+#define regPARITY_ERROR_STATUS_UNCORR_GRP3_BASE_IDX 8
+#define regPARITY_ERROR_STATUS_UNCORR_GRP4 0xe8800e
+#define regPARITY_ERROR_STATUS_UNCORR_GRP4_BASE_IDX 8
+#define regPARITY_ERROR_STATUS_UNCORR_GRP5 0xe8800f
+#define regPARITY_ERROR_STATUS_UNCORR_GRP5_BASE_IDX 8
+#define regPARITY_ERROR_STATUS_UNCORR_GRP6 0xe88010
+#define regPARITY_ERROR_STATUS_UNCORR_GRP6_BASE_IDX 8
+#define regPARITY_ERROR_STATUS_UNCORR_GRP7 0xe88011
+#define regPARITY_ERROR_STATUS_UNCORR_GRP7_BASE_IDX 8
+#define regPARITY_ERROR_STATUS_UNCORR_GRP10 0xe88014
+#define regPARITY_ERROR_STATUS_UNCORR_GRP10_BASE_IDX 8
+#define regPARITY_ERROR_STATUS_UNCORR_GRP11 0xe88015
+#define regPARITY_ERROR_STATUS_UNCORR_GRP11_BASE_IDX 8
+#define regPARITY_ERROR_STATUS_UNCORR_GRP12 0xe88016
+#define regPARITY_ERROR_STATUS_UNCORR_GRP12_BASE_IDX 8
+#define regPARITY_ERROR_STATUS_UNCORR_GRP13 0xe88017
+#define regPARITY_ERROR_STATUS_UNCORR_GRP13_BASE_IDX 8
+#define regPARITY_ERROR_STATUS_UNCORR_GRP14 0xe88018
+#define regPARITY_ERROR_STATUS_UNCORR_GRP14_BASE_IDX 8
+#define regPARITY_ERROR_STATUS_UNCORR_GRP15 0xe88019
+#define regPARITY_ERROR_STATUS_UNCORR_GRP15_BASE_IDX 8
+#define regPARITY_ERROR_STATUS_UNCORR_GRP16 0xe8801a
+#define regPARITY_ERROR_STATUS_UNCORR_GRP16_BASE_IDX 8
+#define regPARITY_ERROR_STATUS_CORR_GRP0 0xe8801b
+#define regPARITY_ERROR_STATUS_CORR_GRP0_BASE_IDX 8
+#define regPARITY_ERROR_STATUS_CORR_GRP1 0xe8801c
+#define regPARITY_ERROR_STATUS_CORR_GRP1_BASE_IDX 8
+#define regPARITY_ERROR_STATUS_CORR_GRP2 0xe8801d
+#define regPARITY_ERROR_STATUS_CORR_GRP2_BASE_IDX 8
+#define regPARITY_ERROR_STATUS_CORR_GRP3 0xe8801e
+#define regPARITY_ERROR_STATUS_CORR_GRP3_BASE_IDX 8
+#define regPARITY_ERROR_STATUS_CORR_GRP4 0xe8801f
+#define regPARITY_ERROR_STATUS_CORR_GRP4_BASE_IDX 8
+#define regPARITY_ERROR_STATUS_CORR_GRP5 0xe88020
+#define regPARITY_ERROR_STATUS_CORR_GRP5_BASE_IDX 8
+#define regPARITY_ERROR_STATUS_CORR_GRP6 0xe88021
+#define regPARITY_ERROR_STATUS_CORR_GRP6_BASE_IDX 8
+#define regPARITY_ERROR_STATUS_CORR_GRP7 0xe88022
+#define regPARITY_ERROR_STATUS_CORR_GRP7_BASE_IDX 8
+#define regPARITY_ERROR_STATUS_CORR_GRP10 0xe88025
+#define regPARITY_ERROR_STATUS_CORR_GRP10_BASE_IDX 8
+#define regPARITY_ERROR_STATUS_CORR_GRP11 0xe88026
+#define regPARITY_ERROR_STATUS_CORR_GRP11_BASE_IDX 8
+#define regPARITY_ERROR_STATUS_CORR_GRP12 0xe88027
+#define regPARITY_ERROR_STATUS_CORR_GRP12_BASE_IDX 8
+#define regPARITY_ERROR_STATUS_CORR_GRP13 0xe88028
+#define regPARITY_ERROR_STATUS_CORR_GRP13_BASE_IDX 8
+#define regPARITY_ERROR_STATUS_CORR_GRP14 0xe88029
+#define regPARITY_ERROR_STATUS_CORR_GRP14_BASE_IDX 8
+#define regPARITY_ERROR_STATUS_CORR_GRP15 0xe8802a
+#define regPARITY_ERROR_STATUS_CORR_GRP15_BASE_IDX 8
+#define regPARITY_ERROR_STATUS_CORR_GRP16 0xe8802b
+#define regPARITY_ERROR_STATUS_CORR_GRP16_BASE_IDX 8
+#define regPARITY_ERROR_STATUS_CORR_GRP17 0xe8802c
+#define regPARITY_ERROR_STATUS_CORR_GRP17_BASE_IDX 8
+#define regPARITY_COUNTER_CORR_GRP0 0xe8802d
+#define regPARITY_COUNTER_CORR_GRP0_BASE_IDX 8
+#define regPARITY_COUNTER_CORR_GRP1 0xe8802e
+#define regPARITY_COUNTER_CORR_GRP1_BASE_IDX 8
+#define regPARITY_COUNTER_CORR_GRP2 0xe8802f
+#define regPARITY_COUNTER_CORR_GRP2_BASE_IDX 8
+#define regPARITY_COUNTER_CORR_GRP3 0xe88030
+#define regPARITY_COUNTER_CORR_GRP3_BASE_IDX 8
+#define regPARITY_COUNTER_CORR_GRP4 0xe88031
+#define regPARITY_COUNTER_CORR_GRP4_BASE_IDX 8
+#define regPARITY_COUNTER_CORR_GRP5 0xe88032
+#define regPARITY_COUNTER_CORR_GRP5_BASE_IDX 8
+#define regPARITY_COUNTER_CORR_GRP6 0xe88033
+#define regPARITY_COUNTER_CORR_GRP6_BASE_IDX 8
+#define regPARITY_COUNTER_CORR_GRP7 0xe88034
+#define regPARITY_COUNTER_CORR_GRP7_BASE_IDX 8
+#define regPARITY_COUNTER_CORR_GRP10 0xe88037
+#define regPARITY_COUNTER_CORR_GRP10_BASE_IDX 8
+#define regPARITY_COUNTER_CORR_GRP11 0xe88038
+#define regPARITY_COUNTER_CORR_GRP11_BASE_IDX 8
+#define regPARITY_COUNTER_CORR_GRP12 0xe88039
+#define regPARITY_COUNTER_CORR_GRP12_BASE_IDX 8
+#define regPARITY_COUNTER_CORR_GRP13 0xe8803a
+#define regPARITY_COUNTER_CORR_GRP13_BASE_IDX 8
+#define regPARITY_COUNTER_CORR_GRP14 0xe8803b
+#define regPARITY_COUNTER_CORR_GRP14_BASE_IDX 8
+#define regPARITY_COUNTER_CORR_GRP15 0xe8803c
+#define regPARITY_COUNTER_CORR_GRP15_BASE_IDX 8
+#define regPARITY_COUNTER_CORR_GRP16 0xe8803d
+#define regPARITY_COUNTER_CORR_GRP16_BASE_IDX 8
+#define regPARITY_COUNTER_CORR_GRP17 0xe8803e
+#define regPARITY_COUNTER_CORR_GRP17_BASE_IDX 8
+#define regPARITY_ERROR_STATUS_UCP_GRP0 0xe8803f
+#define regPARITY_ERROR_STATUS_UCP_GRP0_BASE_IDX 8
+#define regPARITY_ERROR_STATUS_UCP_GRP1 0xe88040
+#define regPARITY_ERROR_STATUS_UCP_GRP1_BASE_IDX 8
+#define regPARITY_ERROR_STATUS_UCP_GRP2 0xe88041
+#define regPARITY_ERROR_STATUS_UCP_GRP2_BASE_IDX 8
+#define regPARITY_ERROR_STATUS_UCP_GRP3 0xe88042
+#define regPARITY_ERROR_STATUS_UCP_GRP3_BASE_IDX 8
+#define regPARITY_ERROR_STATUS_UCP_GRP4 0xe88043
+#define regPARITY_ERROR_STATUS_UCP_GRP4_BASE_IDX 8
+#define regPARITY_ERROR_STATUS_UCP_GRP5 0xe88044
+#define regPARITY_ERROR_STATUS_UCP_GRP5_BASE_IDX 8
+#define regPARITY_ERROR_STATUS_UCP_GRP6 0xe88045
+#define regPARITY_ERROR_STATUS_UCP_GRP6_BASE_IDX 8
+#define regPARITY_ERROR_STATUS_UCP_GRP7 0xe88046
+#define regPARITY_ERROR_STATUS_UCP_GRP7_BASE_IDX 8
+#define regPARITY_ERROR_STATUS_UCP_GRP10 0xe88049
+#define regPARITY_ERROR_STATUS_UCP_GRP10_BASE_IDX 8
+#define regPARITY_ERROR_STATUS_UCP_GRP11 0xe8804a
+#define regPARITY_ERROR_STATUS_UCP_GRP11_BASE_IDX 8
+#define regPARITY_ERROR_STATUS_UCP_GRP12 0xe8804b
+#define regPARITY_ERROR_STATUS_UCP_GRP12_BASE_IDX 8
+#define regPARITY_COUNTER_UCP_GRP0 0xe8804c
+#define regPARITY_COUNTER_UCP_GRP0_BASE_IDX 8
+#define regPARITY_COUNTER_UCP_GRP1 0xe8804d
+#define regPARITY_COUNTER_UCP_GRP1_BASE_IDX 8
+#define regPARITY_COUNTER_UCP_GRP2 0xe8804e
+#define regPARITY_COUNTER_UCP_GRP2_BASE_IDX 8
+#define regPARITY_COUNTER_UCP_GRP3 0xe8804f
+#define regPARITY_COUNTER_UCP_GRP3_BASE_IDX 8
+#define regPARITY_COUNTER_UCP_GRP4 0xe88050
+#define regPARITY_COUNTER_UCP_GRP4_BASE_IDX 8
+#define regPARITY_COUNTER_UCP_GRP5 0xe88051
+#define regPARITY_COUNTER_UCP_GRP5_BASE_IDX 8
+#define regPARITY_COUNTER_UCP_GRP6 0xe88052
+#define regPARITY_COUNTER_UCP_GRP6_BASE_IDX 8
+#define regPARITY_COUNTER_UCP_GRP7 0xe88053
+#define regPARITY_COUNTER_UCP_GRP7_BASE_IDX 8
+#define regPARITY_COUNTER_UCP_GRP10 0xe88056
+#define regPARITY_COUNTER_UCP_GRP10_BASE_IDX 8
+#define regPARITY_COUNTER_UCP_GRP11 0xe88057
+#define regPARITY_COUNTER_UCP_GRP11_BASE_IDX 8
+#define regPARITY_COUNTER_UCP_GRP12 0xe88058
+#define regPARITY_COUNTER_UCP_GRP12_BASE_IDX 8
+#define regMISC_SEVERITY_CONTROL 0xe88059
+#define regMISC_SEVERITY_CONTROL_BASE_IDX 8
+#define regMISC_RAS_CONTROL 0xe8805a
+#define regMISC_RAS_CONTROL_BASE_IDX 8
+#define regRAS_SCRATCH_0 0xe8805b
+#define regRAS_SCRATCH_0_BASE_IDX 8
+#define regRAS_SCRATCH_1 0xe8805c
+#define regRAS_SCRATCH_1_BASE_IDX 8
+#define regErrEvent_ACTION_CONTROL 0xe8805d
+#define regErrEvent_ACTION_CONTROL_BASE_IDX 8
+#define regParitySerr_ACTION_CONTROL 0xe8805e
+#define regParitySerr_ACTION_CONTROL_BASE_IDX 8
+#define regParityFatal_ACTION_CONTROL 0xe8805f
+#define regParityFatal_ACTION_CONTROL_BASE_IDX 8
+#define regParityNonFatal_ACTION_CONTROL 0xe88060
+#define regParityNonFatal_ACTION_CONTROL_BASE_IDX 8
+#define regParityCorr_ACTION_CONTROL 0xe88061
+#define regParityCorr_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortASerr_ACTION_CONTROL 0xe88062
+#define regPCIE0PortASerr_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortAIntFatal_ACTION_CONTROL 0xe88063
+#define regPCIE0PortAIntFatal_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortAIntNonFatal_ACTION_CONTROL 0xe88064
+#define regPCIE0PortAIntNonFatal_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortAIntCorr_ACTION_CONTROL 0xe88065
+#define regPCIE0PortAIntCorr_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortAExtFatal_ACTION_CONTROL 0xe88066
+#define regPCIE0PortAExtFatal_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortAExtNonFatal_ACTION_CONTROL 0xe88067
+#define regPCIE0PortAExtNonFatal_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortAExtCorr_ACTION_CONTROL 0xe88068
+#define regPCIE0PortAExtCorr_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortAParityErr_ACTION_CONTROL 0xe88069
+#define regPCIE0PortAParityErr_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortBSerr_ACTION_CONTROL 0xe8806a
+#define regPCIE0PortBSerr_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortBIntFatal_ACTION_CONTROL 0xe8806b
+#define regPCIE0PortBIntFatal_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortBIntNonFatal_ACTION_CONTROL 0xe8806c
+#define regPCIE0PortBIntNonFatal_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortBIntCorr_ACTION_CONTROL 0xe8806d
+#define regPCIE0PortBIntCorr_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortBExtFatal_ACTION_CONTROL 0xe8806e
+#define regPCIE0PortBExtFatal_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortBExtNonFatal_ACTION_CONTROL 0xe8806f
+#define regPCIE0PortBExtNonFatal_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortBExtCorr_ACTION_CONTROL 0xe88070
+#define regPCIE0PortBExtCorr_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortBParityErr_ACTION_CONTROL 0xe88071
+#define regPCIE0PortBParityErr_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortCSerr_ACTION_CONTROL 0xe88072
+#define regPCIE0PortCSerr_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortCIntFatal_ACTION_CONTROL 0xe88073
+#define regPCIE0PortCIntFatal_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortCIntNonFatal_ACTION_CONTROL 0xe88074
+#define regPCIE0PortCIntNonFatal_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortCIntCorr_ACTION_CONTROL 0xe88075
+#define regPCIE0PortCIntCorr_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortCExtFatal_ACTION_CONTROL 0xe88076
+#define regPCIE0PortCExtFatal_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortCExtNonFatal_ACTION_CONTROL 0xe88077
+#define regPCIE0PortCExtNonFatal_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortCExtCorr_ACTION_CONTROL 0xe88078
+#define regPCIE0PortCExtCorr_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortCParityErr_ACTION_CONTROL 0xe88079
+#define regPCIE0PortCParityErr_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortDSerr_ACTION_CONTROL 0xe8807a
+#define regPCIE0PortDSerr_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortDIntFatal_ACTION_CONTROL 0xe8807b
+#define regPCIE0PortDIntFatal_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortDIntNonFatal_ACTION_CONTROL 0xe8807c
+#define regPCIE0PortDIntNonFatal_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortDIntCorr_ACTION_CONTROL 0xe8807d
+#define regPCIE0PortDIntCorr_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortDExtFatal_ACTION_CONTROL 0xe8807e
+#define regPCIE0PortDExtFatal_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortDExtNonFatal_ACTION_CONTROL 0xe8807f
+#define regPCIE0PortDExtNonFatal_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortDExtCorr_ACTION_CONTROL 0xe88080
+#define regPCIE0PortDExtCorr_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortDParityErr_ACTION_CONTROL 0xe88081
+#define regPCIE0PortDParityErr_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortESerr_ACTION_CONTROL 0xe88082
+#define regPCIE0PortESerr_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortEIntFatal_ACTION_CONTROL 0xe88083
+#define regPCIE0PortEIntFatal_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortEIntNonFatal_ACTION_CONTROL 0xe88084
+#define regPCIE0PortEIntNonFatal_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortEIntCorr_ACTION_CONTROL 0xe88085
+#define regPCIE0PortEIntCorr_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortEExtFatal_ACTION_CONTROL 0xe88086
+#define regPCIE0PortEExtFatal_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortEExtNonFatal_ACTION_CONTROL 0xe88087
+#define regPCIE0PortEExtNonFatal_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortEExtCorr_ACTION_CONTROL 0xe88088
+#define regPCIE0PortEExtCorr_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortEParityErr_ACTION_CONTROL 0xe88089
+#define regPCIE0PortEParityErr_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortFSerr_ACTION_CONTROL 0xe8808a
+#define regPCIE0PortFSerr_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortFIntFatal_ACTION_CONTROL 0xe8808b
+#define regPCIE0PortFIntFatal_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortFIntNonFatal_ACTION_CONTROL 0xe8808c
+#define regPCIE0PortFIntNonFatal_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortFIntCorr_ACTION_CONTROL 0xe8808d
+#define regPCIE0PortFIntCorr_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortFExtFatal_ACTION_CONTROL 0xe8808e
+#define regPCIE0PortFExtFatal_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortFExtNonFatal_ACTION_CONTROL 0xe8808f
+#define regPCIE0PortFExtNonFatal_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortFExtCorr_ACTION_CONTROL 0xe88090
+#define regPCIE0PortFExtCorr_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortFParityErr_ACTION_CONTROL 0xe88091
+#define regPCIE0PortFParityErr_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortGSerr_ACTION_CONTROL 0xe88092
+#define regPCIE0PortGSerr_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortGIntFatal_ACTION_CONTROL 0xe88093
+#define regPCIE0PortGIntFatal_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortGIntNonFatal_ACTION_CONTROL 0xe88094
+#define regPCIE0PortGIntNonFatal_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortGIntCorr_ACTION_CONTROL 0xe88095
+#define regPCIE0PortGIntCorr_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortGExtFatal_ACTION_CONTROL 0xe88096
+#define regPCIE0PortGExtFatal_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortGExtNonFatal_ACTION_CONTROL 0xe88097
+#define regPCIE0PortGExtNonFatal_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortGExtCorr_ACTION_CONTROL 0xe88098
+#define regPCIE0PortGExtCorr_ACTION_CONTROL_BASE_IDX 8
+#define regPCIE0PortGParityErr_ACTION_CONTROL 0xe88099
+#define regPCIE0PortGParityErr_ACTION_CONTROL_BASE_IDX 8
+#define regNBIF1PortASerr_ACTION_CONTROL 0xe880ca
+#define regNBIF1PortASerr_ACTION_CONTROL_BASE_IDX 8
+#define regNBIF1PortAIntFatal_ACTION_CONTROL 0xe880cb
+#define regNBIF1PortAIntFatal_ACTION_CONTROL_BASE_IDX 8
+#define regNBIF1PortAIntNonFatal_ACTION_CONTROL 0xe880cc
+#define regNBIF1PortAIntNonFatal_ACTION_CONTROL_BASE_IDX 8
+#define regNBIF1PortAIntCorr_ACTION_CONTROL 0xe880cd
+#define regNBIF1PortAIntCorr_ACTION_CONTROL_BASE_IDX 8
+#define regNBIF1PortAExtFatal_ACTION_CONTROL 0xe880ce
+#define regNBIF1PortAExtFatal_ACTION_CONTROL_BASE_IDX 8
+#define regNBIF1PortAExtNonFatal_ACTION_CONTROL 0xe880cf
+#define regNBIF1PortAExtNonFatal_ACTION_CONTROL_BASE_IDX 8
+#define regNBIF1PortAExtCorr_ACTION_CONTROL 0xe880d0
+#define regNBIF1PortAExtCorr_ACTION_CONTROL_BASE_IDX 8
+#define regNBIF1PortAParityErr_ACTION_CONTROL 0xe880d1
+#define regNBIF1PortAParityErr_ACTION_CONTROL_BASE_IDX 8
+#define regSYNCFLOOD_STATUS 0xe88200
+#define regSYNCFLOOD_STATUS_BASE_IDX 8
+#define regNMI_STATUS 0xe88201
+#define regNMI_STATUS_BASE_IDX 8
+#define regPOISON_ACTION_CONTROL 0xe88205
+#define regPOISON_ACTION_CONTROL_BASE_IDX 8
+#define regINTERNAL_POISON_STATUS 0xe88206
+#define regINTERNAL_POISON_STATUS_BASE_IDX 8
+#define regINTERNAL_POISON_MASK 0xe88207
+#define regINTERNAL_POISON_MASK_BASE_IDX 8
+#define regEGRESS_POISON_STATUS_LO 0xe88208
+#define regEGRESS_POISON_STATUS_LO_BASE_IDX 8
+#define regEGRESS_POISON_STATUS_HI 0xe88209
+#define regEGRESS_POISON_STATUS_HI_BASE_IDX 8
+#define regEGRESS_POISON_MASK_LO 0xe8820a
+#define regEGRESS_POISON_MASK_LO_BASE_IDX 8
+#define regEGRESS_POISON_MASK_HI 0xe8820b
+#define regEGRESS_POISON_MASK_HI_BASE_IDX 8
+#define regEGRESS_POISON_SEVERITY_DOWN 0xe8820c
+#define regEGRESS_POISON_SEVERITY_DOWN_BASE_IDX 8
+#define regEGRESS_POISON_SEVERITY_UPPER 0xe8820d
+#define regEGRESS_POISON_SEVERITY_UPPER_BASE_IDX 8
+#define regAPML_STATUS 0xe88370
+#define regAPML_STATUS_BASE_IDX 8
+#define regAPML_CONTROL 0xe88371
+#define regAPML_CONTROL_BASE_IDX 8
+#define regAPML_TRIGGER 0xe88372
+#define regAPML_TRIGGER_BASE_IDX 8
+
+
+// addressBlock: aid_nbio_iohub_nb_PCIE0devindcfg0_devind_cfgdecp
+// base address: 0x13b31000
+#define regNB_PCIE0DEVINDCFG0_STEERING_CNTL 0xe8c403
+#define regNB_PCIE0DEVINDCFG0_STEERING_CNTL_BASE_IDX 8
+
+
+// addressBlock: aid_nbio_iohub_nb_PCIE0devindcfg1_devind_cfgdecp
+// base address: 0x13b31400
+#define regNB_PCIE0DEVINDCFG1_STEERING_CNTL 0xe8c503
+#define regNB_PCIE0DEVINDCFG1_STEERING_CNTL_BASE_IDX 8
+
+
+// addressBlock: aid_nbio_iohub_nb_PCIE0devindcfg2_devind_cfgdecp
+// base address: 0x13b31800
+#define regNB_PCIE0DEVINDCFG2_STEERING_CNTL 0xe8c603
+#define regNB_PCIE0DEVINDCFG2_STEERING_CNTL_BASE_IDX 8
+
+
+// addressBlock: aid_nbio_iohub_nb_PCIE0devindcfg3_devind_cfgdecp
+// base address: 0x13b31c00
+#define regNB_PCIE0DEVINDCFG3_STEERING_CNTL 0xe8c703
+#define regNB_PCIE0DEVINDCFG3_STEERING_CNTL_BASE_IDX 8
+
+
+// addressBlock: aid_nbio_iohub_nb_PCIE0devindcfg4_devind_cfgdecp
+// base address: 0x13b32000
+#define regNB_PCIE0DEVINDCFG4_STEERING_CNTL 0xe8c803
+#define regNB_PCIE0DEVINDCFG4_STEERING_CNTL_BASE_IDX 8
+
+
+// addressBlock: aid_nbio_iohub_nb_PCIE0devindcfg5_devind_cfgdecp
+// base address: 0x13b32400
+#define regNB_PCIE0DEVINDCFG5_STEERING_CNTL 0xe8c903
+#define regNB_PCIE0DEVINDCFG5_STEERING_CNTL_BASE_IDX 8
+
+
+// addressBlock: aid_nbio_iohub_nb_PCIE0devindcfg6_devind_cfgdecp
+// base address: 0x13b32800
+#define regNB_PCIE0DEVINDCFG6_STEERING_CNTL 0xe8ca03
+#define regNB_PCIE0DEVINDCFG6_STEERING_CNTL_BASE_IDX 8
+
+
+// addressBlock: aid_nbio_iohub_nb_NBIF1devindcfg0_devind_cfgdecp
+// base address: 0x13b38000
+#define regNB_NBIF1DEVINDCFG0_STEERING_CNTL 0xe8e003
+#define regNB_NBIF1DEVINDCFG0_STEERING_CNTL_BASE_IDX 8
+
+
+// addressBlock: aid_nbio_iohub_nb_intSBdevindcfg0_devind_cfgdecp
+// base address: 0x13b3c000
+#define regNB_INTSBDEVINDCFG0_STEERING_CNTL 0xe8f003
+#define regNB_INTSBDEVINDCFG0_STEERING_CNTL_BASE_IDX 8
+
+
+// addressBlock: aid_nbio_iohub_nb_PCIE0rcbdg_indcfg0_pciercbdgind_cfgdec
+// base address: 0x13b7d600
+#define regNB_PCIE0RCBDG_INDCFG0_RC_SMN_INDEX_EXTENSION 0xe9f5b7
+#define regNB_PCIE0RCBDG_INDCFG0_RC_SMN_INDEX_EXTENSION_BASE_IDX 8
+#define regNB_PCIE0RCBDG_INDCFG0_RC_SMN_INDEX 0xe9f5b8
+#define regNB_PCIE0RCBDG_INDCFG0_RC_SMN_INDEX_BASE_IDX 8
+#define regNB_PCIE0RCBDG_INDCFG0_RC_SMN_DATA 0xe9f5b9
+#define regNB_PCIE0RCBDG_INDCFG0_RC_SMN_DATA_BASE_IDX 8
+
+
+// addressBlock: aid_nbio_iohub_nb_PCIE0rcbdg_indcfg1_pciercbdgind_cfgdec
+// base address: 0x13b7d700
+#define regNB_PCIE0RCBDG_INDCFG1_RC_SMN_INDEX_EXTENSION 0xe9f5f7
+#define regNB_PCIE0RCBDG_INDCFG1_RC_SMN_INDEX_EXTENSION_BASE_IDX 8
+#define regNB_PCIE0RCBDG_INDCFG1_RC_SMN_INDEX 0xe9f5f8
+#define regNB_PCIE0RCBDG_INDCFG1_RC_SMN_INDEX_BASE_IDX 8
+#define regNB_PCIE0RCBDG_INDCFG1_RC_SMN_DATA 0xe9f5f9
+#define regNB_PCIE0RCBDG_INDCFG1_RC_SMN_DATA_BASE_IDX 8
+
+
+// addressBlock: aid_nbio_iohub_nb_PCIE0rcbdg_indcfg2_pciercbdgind_cfgdec
+// base address: 0x13b7d800
+#define regNB_PCIE0RCBDG_INDCFG2_RC_SMN_INDEX_EXTENSION 0xe9f637
+#define regNB_PCIE0RCBDG_INDCFG2_RC_SMN_INDEX_EXTENSION_BASE_IDX 8
+#define regNB_PCIE0RCBDG_INDCFG2_RC_SMN_INDEX 0xe9f638
+#define regNB_PCIE0RCBDG_INDCFG2_RC_SMN_INDEX_BASE_IDX 8
+#define regNB_PCIE0RCBDG_INDCFG2_RC_SMN_DATA 0xe9f639
+#define regNB_PCIE0RCBDG_INDCFG2_RC_SMN_DATA_BASE_IDX 8
+
+
+// addressBlock: aid_nbio_iohub_nb_PCIE0rcbdg_indcfg3_pciercbdgind_cfgdec
+// base address: 0x13b7d900
+#define regNB_PCIE0RCBDG_INDCFG3_RC_SMN_INDEX_EXTENSION 0xe9f677
+#define regNB_PCIE0RCBDG_INDCFG3_RC_SMN_INDEX_EXTENSION_BASE_IDX 8
+#define regNB_PCIE0RCBDG_INDCFG3_RC_SMN_INDEX 0xe9f678
+#define regNB_PCIE0RCBDG_INDCFG3_RC_SMN_INDEX_BASE_IDX 8
+#define regNB_PCIE0RCBDG_INDCFG3_RC_SMN_DATA 0xe9f679
+#define regNB_PCIE0RCBDG_INDCFG3_RC_SMN_DATA_BASE_IDX 8
+
+
+// addressBlock: aid_nbio_iohub_nb_PCIE0rcbdg_indcfg4_pciercbdgind_cfgdec
+// base address: 0x13b7da00
+#define regNB_PCIE0RCBDG_INDCFG4_RC_SMN_INDEX_EXTENSION 0xe9f6b7
+#define regNB_PCIE0RCBDG_INDCFG4_RC_SMN_INDEX_EXTENSION_BASE_IDX 8
+#define regNB_PCIE0RCBDG_INDCFG4_RC_SMN_INDEX 0xe9f6b8
+#define regNB_PCIE0RCBDG_INDCFG4_RC_SMN_INDEX_BASE_IDX 8
+#define regNB_PCIE0RCBDG_INDCFG4_RC_SMN_DATA 0xe9f6b9
+#define regNB_PCIE0RCBDG_INDCFG4_RC_SMN_DATA_BASE_IDX 8
+
+
+// addressBlock: aid_nbio_iohub_nb_PCIE0rcbdg_indcfg5_pciercbdgind_cfgdec
+// base address: 0x13b7db00
+#define regNB_PCIE0RCBDG_INDCFG5_RC_SMN_INDEX_EXTENSION 0xe9f6f7
+#define regNB_PCIE0RCBDG_INDCFG5_RC_SMN_INDEX_EXTENSION_BASE_IDX 8
+#define regNB_PCIE0RCBDG_INDCFG5_RC_SMN_INDEX 0xe9f6f8
+#define regNB_PCIE0RCBDG_INDCFG5_RC_SMN_INDEX_BASE_IDX 8
+#define regNB_PCIE0RCBDG_INDCFG5_RC_SMN_DATA 0xe9f6f9
+#define regNB_PCIE0RCBDG_INDCFG5_RC_SMN_DATA_BASE_IDX 8
+
+
+// addressBlock: aid_nbio_iohub_nb_PCIE0rcbdg_indcfg6_pciercbdgind_cfgdec
+// base address: 0x13b7dc00
+#define regNB_PCIE0RCBDG_INDCFG6_RC_SMN_INDEX_EXTENSION 0xe9f737
+#define regNB_PCIE0RCBDG_INDCFG6_RC_SMN_INDEX_EXTENSION_BASE_IDX 8
+#define regNB_PCIE0RCBDG_INDCFG6_RC_SMN_INDEX 0xe9f738
+#define regNB_PCIE0RCBDG_INDCFG6_RC_SMN_INDEX_BASE_IDX 8
+#define regNB_PCIE0RCBDG_INDCFG6_RC_SMN_DATA 0xe9f739
+#define regNB_PCIE0RCBDG_INDCFG6_RC_SMN_DATA_BASE_IDX 8
+
+
+// addressBlock: aid_nbio_iohub_nb_NBIF1rcbdg_indcfg0_pciercbdgind_cfgdec
+// base address: 0x13b7f200
+#define regNB_NBIF1RCBDG_INDCFG0_RC_SMN_INDEX_EXTENSION 0xe9fcb7
+#define regNB_NBIF1RCBDG_INDCFG0_RC_SMN_INDEX_EXTENSION_BASE_IDX 8
+#define regNB_NBIF1RCBDG_INDCFG0_RC_SMN_INDEX 0xe9fcb8
+#define regNB_NBIF1RCBDG_INDCFG0_RC_SMN_INDEX_BASE_IDX 8
+#define regNB_NBIF1RCBDG_INDCFG0_RC_SMN_DATA 0xe9fcb9
+#define regNB_NBIF1RCBDG_INDCFG0_RC_SMN_DATA_BASE_IDX 8
+
+
+// addressBlock: aid_nbio_iohub_iommu_l2a_l2acfg
+// base address: 0x15700000
+#define regL2_PERF_CNTL_0 0x1580000
+#define regL2_PERF_CNTL_0_BASE_IDX 8
+#define regL2_PERF_COUNT_0 0x1580001
+#define regL2_PERF_COUNT_0_BASE_IDX 8
+#define regL2_PERF_COUNT_1 0x1580002
+#define regL2_PERF_COUNT_1_BASE_IDX 8
+#define regL2_PERF_CNTL_1 0x1580003
+#define regL2_PERF_CNTL_1_BASE_IDX 8
+#define regL2_PERF_COUNT_2 0x1580004
+#define regL2_PERF_COUNT_2_BASE_IDX 8
+#define regL2_PERF_COUNT_3 0x1580005
+#define regL2_PERF_COUNT_3_BASE_IDX 8
+#define regL2_STATUS_0 0x1580008
+#define regL2_STATUS_0_BASE_IDX 8
+#define regL2_CONTROL_0 0x158000c
+#define regL2_CONTROL_0_BASE_IDX 8
+#define regL2_CONTROL_1 0x158000d
+#define regL2_CONTROL_1_BASE_IDX 8
+#define regL2_DTC_CONTROL 0x1580010
+#define regL2_DTC_CONTROL_BASE_IDX 8
+#define regL2_DTC_HASH_CONTROL 0x1580011
+#define regL2_DTC_HASH_CONTROL_BASE_IDX 8
+#define regL2_DTC_WAY_CONTROL 0x1580012
+#define regL2_DTC_WAY_CONTROL_BASE_IDX 8
+#define regL2_ITC_CONTROL 0x1580014
+#define regL2_ITC_CONTROL_BASE_IDX 8
+#define regL2_ITC_HASH_CONTROL 0x1580015
+#define regL2_ITC_HASH_CONTROL_BASE_IDX 8
+#define regL2_ITC_WAY_CONTROL 0x1580016
+#define regL2_ITC_WAY_CONTROL_BASE_IDX 8
+#define regL2_PTC_A_CONTROL 0x1580018
+#define regL2_PTC_A_CONTROL_BASE_IDX 8
+#define regL2_PTC_A_HASH_CONTROL 0x1580019
+#define regL2_PTC_A_HASH_CONTROL_BASE_IDX 8
+#define regL2_PTC_A_WAY_CONTROL 0x158001a
+#define regL2_PTC_A_WAY_CONTROL_BASE_IDX 8
+#define regL2A_UPDATE_FILTER_CNTL 0x1580022
+#define regL2A_UPDATE_FILTER_CNTL_BASE_IDX 8
+#define regL2_ERR_RULE_CONTROL_3 0x1580030
+#define regL2_ERR_RULE_CONTROL_3_BASE_IDX 8
+#define regL2_ERR_RULE_CONTROL_4 0x1580031
+#define regL2_ERR_RULE_CONTROL_4_BASE_IDX 8
+#define regL2_ERR_RULE_CONTROL_5 0x1580032
+#define regL2_ERR_RULE_CONTROL_5_BASE_IDX 8
+#define regL2_L2A_CK_GATE_CONTROL 0x1580033
+#define regL2_L2A_CK_GATE_CONTROL_BASE_IDX 8
+#define regL2_L2A_PGSIZE_CONTROL 0x1580034
+#define regL2_L2A_PGSIZE_CONTROL_BASE_IDX 8
+#define regL2_PWRGATE_CNTRL_REG_0 0x158003e
+#define regL2_PWRGATE_CNTRL_REG_0_BASE_IDX 8
+#define regL2_PWRGATE_CNTRL_REG_3 0x1580041
+#define regL2_PWRGATE_CNTRL_REG_3_BASE_IDX 8
+#define regL2_ECO_CNTRL_0 0x1580042
+#define regL2_ECO_CNTRL_0_BASE_IDX 8
+
+
+// addressBlock: aid_nbio_iohub_iommu_l2indx_l2indxcfg
+// base address: 0x13f01000
+#define regL2_STATUS_1 0xf80448
+#define regL2_STATUS_1_BASE_IDX 8
+#define regL2_SB_LOCATION 0xf8044b
+#define regL2_SB_LOCATION_BASE_IDX 8
+#define regL2_CONTROL_5 0xf8044c
+#define regL2_CONTROL_5_BASE_IDX 8
+#define regL2_CONTROL_6 0xf8044f
+#define regL2_CONTROL_6_BASE_IDX 8
+#define regL2_PDC_CONTROL 0xf80450
+#define regL2_PDC_CONTROL_BASE_IDX 8
+#define regL2_PDC_HASH_CONTROL 0xf80451
+#define regL2_PDC_HASH_CONTROL_BASE_IDX 8
+#define regL2_PDC_WAY_CONTROL 0xf80452
+#define regL2_PDC_WAY_CONTROL_BASE_IDX 8
+#define regL2B_UPDATE_FILTER_CNTL 0xf80453
+#define regL2B_UPDATE_FILTER_CNTL_BASE_IDX 8
+#define regL2_TW_CONTROL 0xf80454
+#define regL2_TW_CONTROL_BASE_IDX 8
+#define regL2_CP_CONTROL 0xf80456
+#define regL2_CP_CONTROL_BASE_IDX 8
+#define regL2_CP_CONTROL_1 0xf80457
+#define regL2_CP_CONTROL_1_BASE_IDX 8
+#define regL2_TW_CONTROL_1 0xf8045a
+#define regL2_TW_CONTROL_1_BASE_IDX 8
+#define regL2_TW_CONTROL_2 0xf80461
+#define regL2_TW_CONTROL_2_BASE_IDX 8
+#define regL2_TW_CONTROL_3 0xf80462
+#define regL2_TW_CONTROL_3_BASE_IDX 8
+#define regL2_CREDIT_CONTROL_0 0xf80470
+#define regL2_CREDIT_CONTROL_0_BASE_IDX 8
+#define regL2_CREDIT_CONTROL_1 0xf80471
+#define regL2_CREDIT_CONTROL_1_BASE_IDX 8
+#define regL2_ERR_RULE_CONTROL_0 0xf80480
+#define regL2_ERR_RULE_CONTROL_0_BASE_IDX 8
+#define regL2_ERR_RULE_CONTROL_1 0xf80481
+#define regL2_ERR_RULE_CONTROL_1_BASE_IDX 8
+#define regL2_ERR_RULE_CONTROL_2 0xf80482
+#define regL2_ERR_RULE_CONTROL_2_BASE_IDX 8
+#define regL2_L2B_CK_GATE_CONTROL 0xf80490
+#define regL2_L2B_CK_GATE_CONTROL_BASE_IDX 8
+#define regPPR_CONTROL 0xf80492
+#define regPPR_CONTROL_BASE_IDX 8
+#define regL2_L2B_PGSIZE_CONTROL 0xf80494
+#define regL2_L2B_PGSIZE_CONTROL_BASE_IDX 8
+#define regL2_PERF_CNTL_2 0xf80499
+#define regL2_PERF_CNTL_2_BASE_IDX 8
+#define regL2_PERF_COUNT_4 0xf8049a
+#define regL2_PERF_COUNT_4_BASE_IDX 8
+#define regL2_PERF_COUNT_5 0xf8049b
+#define regL2_PERF_COUNT_5_BASE_IDX 8
+#define regL2_PERF_CNTL_3 0xf8049c
+#define regL2_PERF_CNTL_3_BASE_IDX 8
+#define regL2_PERF_COUNT_6 0xf8049d
+#define regL2_PERF_COUNT_6_BASE_IDX 8
+#define regL2_PERF_COUNT_7 0xf8049e
+#define regL2_PERF_COUNT_7_BASE_IDX 8
+#define regL2B_SDP_PARITY_ERROR_EN 0xf804a2
+#define regL2B_SDP_PARITY_ERROR_EN_BASE_IDX 8
+#define regL2_ECO_CNTRL_1 0xf804a3
+#define regL2_ECO_CNTRL_1_BASE_IDX 8
+#define regL2_CP_CONTROL_2 0xf804bf
+#define regL2_CP_CONTROL_2_BASE_IDX 8
+#define regL2_CP_CONTROL_3 0xf804c0
+#define regL2_CP_CONTROL_3_BASE_IDX 8
+
+
+// addressBlock: aid_nbio_iohub_nb_ioapiccfg_ioapic_cfgdec
+// base address: 0x14300000
+#define regFEATURES_ENABLE 0x1080000
+#define regFEATURES_ENABLE_BASE_IDX 8
+
+
+// addressBlock: aid_nbio_nbif0_bif_cfg_dev0_rc_bifcfgdecp
+// base address: 0x0
+#define cfgBIF_CFG_DEV0_RC_VENDOR_ID 0x0000
+#define cfgBIF_CFG_DEV0_RC_DEVICE_ID 0x0002
+#define cfgBIF_CFG_DEV0_RC_COMMAND 0x0004
+#define cfgBIF_CFG_DEV0_RC_STATUS 0x0006
+#define cfgBIF_CFG_DEV0_RC_REVISION_ID 0x0008
+#define cfgBIF_CFG_DEV0_RC_PROG_INTERFACE 0x0009
+#define cfgBIF_CFG_DEV0_RC_SUB_CLASS 0x000a
+#define cfgBIF_CFG_DEV0_RC_BASE_CLASS 0x000b
+#define cfgBIF_CFG_DEV0_RC_CACHE_LINE 0x000c
+#define cfgBIF_CFG_DEV0_RC_LATENCY 0x000d
+#define cfgBIF_CFG_DEV0_RC_HEADER 0x000e
+#define cfgBIF_CFG_DEV0_RC_BIST 0x000f
+#define cfgBIF_CFG_DEV0_RC_BASE_ADDR_1 0x0010
+#define cfgBIF_CFG_DEV0_RC_BASE_ADDR_2 0x0014
+#define cfgBIF_CFG_DEV0_RC_SUB_BUS_NUMBER_LATENCY 0x0018
+#define cfgBIF_CFG_DEV0_RC_IO_BASE_LIMIT 0x001c
+#define cfgBIF_CFG_DEV0_RC_SECONDARY_STATUS 0x001e
+#define cfgBIF_CFG_DEV0_RC_MEM_BASE_LIMIT 0x0020
+#define cfgBIF_CFG_DEV0_RC_PREF_BASE_LIMIT 0x0024
+#define cfgBIF_CFG_DEV0_RC_PREF_BASE_UPPER 0x0028
+#define cfgBIF_CFG_DEV0_RC_PREF_LIMIT_UPPER 0x002c
+#define cfgBIF_CFG_DEV0_RC_IO_BASE_LIMIT_HI 0x0030
+#define cfgBIF_CFG_DEV0_RC_CAP_PTR 0x0034
+#define cfgBIF_CFG_DEV0_RC_ROM_BASE_ADDR 0x0038
+#define cfgBIF_CFG_DEV0_RC_INTERRUPT_LINE 0x003c
+#define cfgBIF_CFG_DEV0_RC_INTERRUPT_PIN 0x003d
+#define cfgIRQ_BRIDGE_CNTL 0x003e
+#define cfgBIF_CFG_DEV0_RC_EXT_BRIDGE_CNTL 0x0040
+#define cfgBIF_CFG_DEV0_RC_PMI_CAP_LIST 0x0050
+#define cfgBIF_CFG_DEV0_RC_PMI_CAP 0x0052
+#define cfgBIF_CFG_DEV0_RC_PMI_STATUS_CNTL 0x0054
+#define cfgBIF_CFG_DEV0_RC_PCIE_CAP_LIST 0x0058
+#define cfgBIF_CFG_DEV0_RC_PCIE_CAP 0x005a
+#define cfgBIF_CFG_DEV0_RC_DEVICE_CAP 0x005c
+#define cfgBIF_CFG_DEV0_RC_DEVICE_CNTL 0x0060
+#define cfgBIF_CFG_DEV0_RC_DEVICE_STATUS 0x0062
+#define cfgBIF_CFG_DEV0_RC_LINK_CAP 0x0064
+#define cfgBIF_CFG_DEV0_RC_LINK_CNTL 0x0068
+#define cfgBIF_CFG_DEV0_RC_LINK_STATUS 0x006a
+#define cfgBIF_CFG_DEV0_RC_SLOT_CAP 0x006c
+#define cfgBIF_CFG_DEV0_RC_SLOT_CNTL 0x0070
+#define cfgBIF_CFG_DEV0_RC_SLOT_STATUS 0x0072
+#define cfgBIF_CFG_DEV0_RC_ROOT_CNTL 0x0074
+#define cfgBIF_CFG_DEV0_RC_ROOT_CAP 0x0076
+#define cfgBIF_CFG_DEV0_RC_ROOT_STATUS 0x0078
+#define cfgBIF_CFG_DEV0_RC_DEVICE_CAP2 0x007c
+#define cfgBIF_CFG_DEV0_RC_DEVICE_CNTL2 0x0080
+#define cfgBIF_CFG_DEV0_RC_DEVICE_STATUS2 0x0082
+#define cfgBIF_CFG_DEV0_RC_LINK_CAP2 0x0084
+#define cfgBIF_CFG_DEV0_RC_LINK_CNTL2 0x0088
+#define cfgBIF_CFG_DEV0_RC_LINK_STATUS2 0x008a
+#define cfgBIF_CFG_DEV0_RC_SLOT_CAP2 0x008c
+#define cfgBIF_CFG_DEV0_RC_SLOT_CNTL2 0x0090
+#define cfgBIF_CFG_DEV0_RC_SLOT_STATUS2 0x0092
+#define cfgBIF_CFG_DEV0_RC_MSI_CAP_LIST 0x00a0
+#define cfgBIF_CFG_DEV0_RC_MSI_MSG_CNTL 0x00a2
+#define cfgBIF_CFG_DEV0_RC_MSI_MSG_ADDR_LO 0x00a4
+#define cfgBIF_CFG_DEV0_RC_MSI_MSG_ADDR_HI 0x00a8
+#define cfgBIF_CFG_DEV0_RC_MSI_MSG_DATA 0x00a8
+#define cfgBIF_CFG_DEV0_RC_MSI_EXT_MSG_DATA 0x00aa
+#define cfgBIF_CFG_DEV0_RC_MSI_MSG_DATA_64 0x00ac
+#define cfgBIF_CFG_DEV0_RC_MSI_EXT_MSG_DATA_64 0x00ae
+#define cfgBIF_CFG_DEV0_RC_SSID_CAP_LIST 0x00c0
+#define cfgBIF_CFG_DEV0_RC_SSID_CAP 0x00c4
+#define cfgBIF_CFG_DEV0_RC_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST 0x0100
+#define cfgBIF_CFG_DEV0_RC_PCIE_VENDOR_SPECIFIC_HDR 0x0104
+#define cfgBIF_CFG_DEV0_RC_PCIE_VENDOR_SPECIFIC1 0x0108
+#define cfgBIF_CFG_DEV0_RC_PCIE_VENDOR_SPECIFIC2 0x010c
+#define cfgBIF_CFG_DEV0_RC_PCIE_VC_ENH_CAP_LIST 0x0110
+#define cfgBIF_CFG_DEV0_RC_PCIE_PORT_VC_CAP_REG1 0x0114
+#define cfgBIF_CFG_DEV0_RC_PCIE_PORT_VC_CAP_REG2 0x0118
+#define cfgBIF_CFG_DEV0_RC_PCIE_PORT_VC_CNTL 0x011c
+#define cfgBIF_CFG_DEV0_RC_PCIE_PORT_VC_STATUS 0x011e
+#define cfgBIF_CFG_DEV0_RC_PCIE_VC0_RESOURCE_CAP 0x0120
+#define cfgBIF_CFG_DEV0_RC_PCIE_VC0_RESOURCE_CNTL 0x0124
+#define cfgBIF_CFG_DEV0_RC_PCIE_VC0_RESOURCE_STATUS 0x012a
+#define cfgBIF_CFG_DEV0_RC_PCIE_VC1_RESOURCE_CAP 0x012c
+#define cfgBIF_CFG_DEV0_RC_PCIE_VC1_RESOURCE_CNTL 0x0130
+#define cfgBIF_CFG_DEV0_RC_PCIE_VC1_RESOURCE_STATUS 0x0136
+#define cfgBIF_CFG_DEV0_RC_PCIE_DEV_SERIAL_NUM_ENH_CAP_LIST 0x0140
+#define cfgBIF_CFG_DEV0_RC_PCIE_DEV_SERIAL_NUM_DW1 0x0144
+#define cfgBIF_CFG_DEV0_RC_PCIE_DEV_SERIAL_NUM_DW2 0x0148
+#define cfgBIF_CFG_DEV0_RC_PCIE_ADV_ERR_RPT_ENH_CAP_LIST 0x0150
+#define cfgBIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_STATUS 0x0154
+#define cfgBIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_MASK 0x0158
+#define cfgBIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_SEVERITY 0x015c
+#define cfgBIF_CFG_DEV0_RC_PCIE_CORR_ERR_STATUS 0x0160
+#define cfgBIF_CFG_DEV0_RC_PCIE_CORR_ERR_MASK 0x0164
+#define cfgBIF_CFG_DEV0_RC_PCIE_ADV_ERR_CAP_CNTL 0x0168
+#define cfgBIF_CFG_DEV0_RC_PCIE_HDR_LOG0 0x016c
+#define cfgBIF_CFG_DEV0_RC_PCIE_HDR_LOG1 0x0170
+#define cfgBIF_CFG_DEV0_RC_PCIE_HDR_LOG2 0x0174
+#define cfgBIF_CFG_DEV0_RC_PCIE_HDR_LOG3 0x0178
+#define cfgBIF_CFG_DEV0_RC_PCIE_ROOT_ERR_CMD 0x017c
+#define cfgBIF_CFG_DEV0_RC_PCIE_ROOT_ERR_STATUS 0x0180
+#define cfgBIF_CFG_DEV0_RC_PCIE_ERR_SRC_ID 0x0184
+#define cfgBIF_CFG_DEV0_RC_PCIE_TLP_PREFIX_LOG0 0x0188
+#define cfgBIF_CFG_DEV0_RC_PCIE_TLP_PREFIX_LOG1 0x018c
+#define cfgBIF_CFG_DEV0_RC_PCIE_TLP_PREFIX_LOG2 0x0190
+#define cfgBIF_CFG_DEV0_RC_PCIE_TLP_PREFIX_LOG3 0x0194
+#define cfgBIF_CFG_DEV0_RC_PCIE_SECONDARY_ENH_CAP_LIST 0x0270
+#define cfgBIF_CFG_DEV0_RC_PCIE_LINK_CNTL3 0x0274
+#define cfgBIF_CFG_DEV0_RC_PCIE_LANE_ERROR_STATUS 0x0278
+#define cfgBIF_CFG_DEV0_RC_PCIE_LANE_0_EQUALIZATION_CNTL 0x027c
+#define cfgBIF_CFG_DEV0_RC_PCIE_LANE_1_EQUALIZATION_CNTL 0x027e
+#define cfgBIF_CFG_DEV0_RC_PCIE_LANE_2_EQUALIZATION_CNTL 0x0280
+#define cfgBIF_CFG_DEV0_RC_PCIE_LANE_3_EQUALIZATION_CNTL 0x0282
+#define cfgBIF_CFG_DEV0_RC_PCIE_LANE_4_EQUALIZATION_CNTL 0x0284
+#define cfgBIF_CFG_DEV0_RC_PCIE_LANE_5_EQUALIZATION_CNTL 0x0286
+#define cfgBIF_CFG_DEV0_RC_PCIE_LANE_6_EQUALIZATION_CNTL 0x0288
+#define cfgBIF_CFG_DEV0_RC_PCIE_LANE_7_EQUALIZATION_CNTL 0x028a
+#define cfgBIF_CFG_DEV0_RC_PCIE_LANE_8_EQUALIZATION_CNTL 0x028c
+#define cfgBIF_CFG_DEV0_RC_PCIE_LANE_9_EQUALIZATION_CNTL 0x028e
+#define cfgBIF_CFG_DEV0_RC_PCIE_LANE_10_EQUALIZATION_CNTL 0x0290
+#define cfgBIF_CFG_DEV0_RC_PCIE_LANE_11_EQUALIZATION_CNTL 0x0292
+#define cfgBIF_CFG_DEV0_RC_PCIE_LANE_12_EQUALIZATION_CNTL 0x0294
+#define cfgBIF_CFG_DEV0_RC_PCIE_LANE_13_EQUALIZATION_CNTL 0x0296
+#define cfgBIF_CFG_DEV0_RC_PCIE_LANE_14_EQUALIZATION_CNTL 0x0298
+#define cfgBIF_CFG_DEV0_RC_PCIE_LANE_15_EQUALIZATION_CNTL 0x029a
+#define cfgBIF_CFG_DEV0_RC_PCIE_ACS_ENH_CAP_LIST 0x02a0
+#define cfgBIF_CFG_DEV0_RC_PCIE_ACS_CAP 0x02a4
+#define cfgBIF_CFG_DEV0_RC_PCIE_ACS_CNTL 0x02a6
+#define cfgBIF_CFG_DEV0_RC_PCIE_DLF_ENH_CAP_LIST 0x0400
+#define cfgBIF_CFG_DEV0_RC_DATA_LINK_FEATURE_CAP 0x0404
+#define cfgBIF_CFG_DEV0_RC_DATA_LINK_FEATURE_STATUS 0x0408
+#define cfgBIF_CFG_DEV0_RC_PCIE_PHY_16GT_ENH_CAP_LIST 0x0410
+#define cfgBIF_CFG_DEV0_RC_LINK_CAP_16GT 0x0414
+#define cfgBIF_CFG_DEV0_RC_LINK_CNTL_16GT 0x0418
+#define cfgBIF_CFG_DEV0_RC_LINK_STATUS_16GT 0x041c
+#define cfgBIF_CFG_DEV0_RC_LOCAL_PARITY_MISMATCH_STATUS_16GT 0x0420
+#define cfgBIF_CFG_DEV0_RC_RTM1_PARITY_MISMATCH_STATUS_16GT 0x0424
+#define cfgBIF_CFG_DEV0_RC_RTM2_PARITY_MISMATCH_STATUS_16GT 0x0428
+#define cfgBIF_CFG_DEV0_RC_LANE_0_EQUALIZATION_CNTL_16GT 0x0430
+#define cfgBIF_CFG_DEV0_RC_LANE_1_EQUALIZATION_CNTL_16GT 0x0431
+#define cfgBIF_CFG_DEV0_RC_LANE_2_EQUALIZATION_CNTL_16GT 0x0432
+#define cfgBIF_CFG_DEV0_RC_LANE_3_EQUALIZATION_CNTL_16GT 0x0433
+#define cfgBIF_CFG_DEV0_RC_LANE_4_EQUALIZATION_CNTL_16GT 0x0434
+#define cfgBIF_CFG_DEV0_RC_LANE_5_EQUALIZATION_CNTL_16GT 0x0435
+#define cfgBIF_CFG_DEV0_RC_LANE_6_EQUALIZATION_CNTL_16GT 0x0436
+#define cfgBIF_CFG_DEV0_RC_LANE_7_EQUALIZATION_CNTL_16GT 0x0437
+#define cfgBIF_CFG_DEV0_RC_LANE_8_EQUALIZATION_CNTL_16GT 0x0438
+#define cfgBIF_CFG_DEV0_RC_LANE_9_EQUALIZATION_CNTL_16GT 0x0439
+#define cfgBIF_CFG_DEV0_RC_LANE_10_EQUALIZATION_CNTL_16GT 0x043a
+#define cfgBIF_CFG_DEV0_RC_LANE_11_EQUALIZATION_CNTL_16GT 0x043b
+#define cfgBIF_CFG_DEV0_RC_LANE_12_EQUALIZATION_CNTL_16GT 0x043c
+#define cfgBIF_CFG_DEV0_RC_LANE_13_EQUALIZATION_CNTL_16GT 0x043d
+#define cfgBIF_CFG_DEV0_RC_LANE_14_EQUALIZATION_CNTL_16GT 0x043e
+#define cfgBIF_CFG_DEV0_RC_LANE_15_EQUALIZATION_CNTL_16GT 0x043f
+#define cfgBIF_CFG_DEV0_RC_PCIE_MARGINING_ENH_CAP_LIST 0x0450
+#define cfgBIF_CFG_DEV0_RC_MARGINING_PORT_CAP 0x0454
+#define cfgBIF_CFG_DEV0_RC_MARGINING_PORT_STATUS 0x0456
+#define cfgBIF_CFG_DEV0_RC_LANE_0_MARGINING_LANE_CNTL 0x0458
+#define cfgBIF_CFG_DEV0_RC_LANE_0_MARGINING_LANE_STATUS 0x045a
+#define cfgBIF_CFG_DEV0_RC_LANE_1_MARGINING_LANE_CNTL 0x045c
+#define cfgBIF_CFG_DEV0_RC_LANE_1_MARGINING_LANE_STATUS 0x045e
+#define cfgBIF_CFG_DEV0_RC_LANE_2_MARGINING_LANE_CNTL 0x0460
+#define cfgBIF_CFG_DEV0_RC_LANE_2_MARGINING_LANE_STATUS 0x0462
+#define cfgBIF_CFG_DEV0_RC_LANE_3_MARGINING_LANE_CNTL 0x0464
+#define cfgBIF_CFG_DEV0_RC_LANE_3_MARGINING_LANE_STATUS 0x0466
+#define cfgBIF_CFG_DEV0_RC_LANE_4_MARGINING_LANE_CNTL 0x0468
+#define cfgBIF_CFG_DEV0_RC_LANE_4_MARGINING_LANE_STATUS 0x046a
+#define cfgBIF_CFG_DEV0_RC_LANE_5_MARGINING_LANE_CNTL 0x046c
+#define cfgBIF_CFG_DEV0_RC_LANE_5_MARGINING_LANE_STATUS 0x046e
+#define cfgBIF_CFG_DEV0_RC_LANE_6_MARGINING_LANE_CNTL 0x0470
+#define cfgBIF_CFG_DEV0_RC_LANE_6_MARGINING_LANE_STATUS 0x0472
+#define cfgBIF_CFG_DEV0_RC_LANE_7_MARGINING_LANE_CNTL 0x0474
+#define cfgBIF_CFG_DEV0_RC_LANE_7_MARGINING_LANE_STATUS 0x0476
+#define cfgBIF_CFG_DEV0_RC_LANE_8_MARGINING_LANE_CNTL 0x0478
+#define cfgBIF_CFG_DEV0_RC_LANE_8_MARGINING_LANE_STATUS 0x047a
+#define cfgBIF_CFG_DEV0_RC_LANE_9_MARGINING_LANE_CNTL 0x047c
+#define cfgBIF_CFG_DEV0_RC_LANE_9_MARGINING_LANE_STATUS 0x047e
+#define cfgBIF_CFG_DEV0_RC_LANE_10_MARGINING_LANE_CNTL 0x0480
+#define cfgBIF_CFG_DEV0_RC_LANE_10_MARGINING_LANE_STATUS 0x0482
+#define cfgBIF_CFG_DEV0_RC_LANE_11_MARGINING_LANE_CNTL 0x0484
+#define cfgBIF_CFG_DEV0_RC_LANE_11_MARGINING_LANE_STATUS 0x0486
+#define cfgBIF_CFG_DEV0_RC_LANE_12_MARGINING_LANE_CNTL 0x0488
+#define cfgBIF_CFG_DEV0_RC_LANE_12_MARGINING_LANE_STATUS 0x048a
+#define cfgBIF_CFG_DEV0_RC_LANE_13_MARGINING_LANE_CNTL 0x048c
+#define cfgBIF_CFG_DEV0_RC_LANE_13_MARGINING_LANE_STATUS 0x048e
+#define cfgBIF_CFG_DEV0_RC_LANE_14_MARGINING_LANE_CNTL 0x0490
+#define cfgBIF_CFG_DEV0_RC_LANE_14_MARGINING_LANE_STATUS 0x0492
+#define cfgBIF_CFG_DEV0_RC_LANE_15_MARGINING_LANE_CNTL 0x0494
+#define cfgBIF_CFG_DEV0_RC_LANE_15_MARGINING_LANE_STATUS 0x0496
+#define cfgBIF_CFG_DEV0_RC_LINK_CAP_32GT 0x0504
+#define cfgBIF_CFG_DEV0_RC_LINK_CNTL_32GT 0x0508
+#define cfgBIF_CFG_DEV0_RC_LINK_STATUS_32GT 0x050c
+
+
+// addressBlock: aid_nbio_nbif0_bif_cfg_dev0_epf0_vf0_bifcfgdecp
+// base address: 0x0
+#define cfgBIF_CFG_DEV0_EPF0_VF0_VENDOR_ID 0x0000
+#define cfgBIF_CFG_DEV0_EPF0_VF0_DEVICE_ID 0x0002
+#define cfgBIF_CFG_DEV0_EPF0_VF0_COMMAND 0x0004
+#define cfgBIF_CFG_DEV0_EPF0_VF0_STATUS 0x0006
+#define cfgBIF_CFG_DEV0_EPF0_VF0_REVISION_ID 0x0008
+#define cfgBIF_CFG_DEV0_EPF0_VF0_PROG_INTERFACE 0x0009
+#define cfgBIF_CFG_DEV0_EPF0_VF0_SUB_CLASS 0x000a
+#define cfgBIF_CFG_DEV0_EPF0_VF0_BASE_CLASS 0x000b
+#define cfgBIF_CFG_DEV0_EPF0_VF0_CACHE_LINE 0x000c
+#define cfgBIF_CFG_DEV0_EPF0_VF0_LATENCY 0x000d
+#define cfgBIF_CFG_DEV0_EPF0_VF0_HEADER 0x000e
+#define cfgBIF_CFG_DEV0_EPF0_VF0_BIST 0x000f
+#define cfgBIF_CFG_DEV0_EPF0_VF0_BASE_ADDR_1 0x0010
+#define cfgBIF_CFG_DEV0_EPF0_VF0_BASE_ADDR_2 0x0014
+#define cfgBIF_CFG_DEV0_EPF0_VF0_BASE_ADDR_3 0x0018
+#define cfgBIF_CFG_DEV0_EPF0_VF0_BASE_ADDR_4 0x001c
+#define cfgBIF_CFG_DEV0_EPF0_VF0_BASE_ADDR_5 0x0020
+#define cfgBIF_CFG_DEV0_EPF0_VF0_BASE_ADDR_6 0x0024
+#define cfgBIF_CFG_DEV0_EPF0_VF0_CARDBUS_CIS_PTR 0x0028
+#define cfgBIF_CFG_DEV0_EPF0_VF0_ADAPTER_ID 0x002c
+#define cfgBIF_CFG_DEV0_EPF0_VF0_ROM_BASE_ADDR 0x0030
+#define cfgBIF_CFG_DEV0_EPF0_VF0_CAP_PTR 0x0034
+#define cfgBIF_CFG_DEV0_EPF0_VF0_INTERRUPT_LINE 0x003c
+#define cfgBIF_CFG_DEV0_EPF0_VF0_INTERRUPT_PIN 0x003d
+#define cfgBIF_CFG_DEV0_EPF0_VF0_MIN_GRANT 0x003e
+#define cfgBIF_CFG_DEV0_EPF0_VF0_MAX_LATENCY 0x003f
+#define cfgBIF_CFG_DEV0_EPF0_VF0_PCIE_CAP_LIST 0x0064
+#define cfgBIF_CFG_DEV0_EPF0_VF0_PCIE_CAP 0x0066
+#define cfgBIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP 0x0068
+#define cfgBIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL 0x006c
+#define cfgBIF_CFG_DEV0_EPF0_VF0_DEVICE_STATUS 0x006e
+#define cfgBIF_CFG_DEV0_EPF0_VF0_LINK_CAP 0x0070
+#define cfgBIF_CFG_DEV0_EPF0_VF0_LINK_CNTL 0x0074
+#define cfgBIF_CFG_DEV0_EPF0_VF0_LINK_STATUS 0x0076
+#define cfgBIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP2 0x0088
+#define cfgBIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL2 0x008c
+#define cfgBIF_CFG_DEV0_EPF0_VF0_DEVICE_STATUS2 0x008e
+#define cfgBIF_CFG_DEV0_EPF0_VF0_LINK_CAP2 0x0090
+#define cfgBIF_CFG_DEV0_EPF0_VF0_LINK_CNTL2 0x0094
+#define cfgBIF_CFG_DEV0_EPF0_VF0_LINK_STATUS2 0x0096
+#define cfgBIF_CFG_DEV0_EPF0_VF0_MSI_CAP_LIST 0x00a0
+#define cfgBIF_CFG_DEV0_EPF0_VF0_MSI_MSG_CNTL 0x00a2
+#define cfgBIF_CFG_DEV0_EPF0_VF0_MSI_MSG_ADDR_LO 0x00a4
+#define cfgBIF_CFG_DEV0_EPF0_VF0_MSI_MSG_ADDR_HI 0x00a8
+#define cfgBIF_CFG_DEV0_EPF0_VF0_MSI_MSG_DATA 0x00a8
+#define cfgBIF_CFG_DEV0_EPF0_VF0_MSI_EXT_MSG_DATA 0x00aa
+#define cfgBIF_CFG_DEV0_EPF0_VF0_MSI_MASK 0x00ac
+#define cfgBIF_CFG_DEV0_EPF0_VF0_MSI_MSG_DATA_64 0x00ac
+#define cfgBIF_CFG_DEV0_EPF0_VF0_MSI_EXT_MSG_DATA_64 0x00ae
+#define cfgBIF_CFG_DEV0_EPF0_VF0_MSI_MASK_64 0x00b0
+#define cfgBIF_CFG_DEV0_EPF0_VF0_MSI_PENDING 0x00b0
+#define cfgBIF_CFG_DEV0_EPF0_VF0_MSI_PENDING_64 0x00b4
+#define cfgBIF_CFG_DEV0_EPF0_VF0_MSIX_CAP_LIST 0x00c0
+#define cfgBIF_CFG_DEV0_EPF0_VF0_MSIX_MSG_CNTL 0x00c2
+#define cfgBIF_CFG_DEV0_EPF0_VF0_MSIX_TABLE 0x00c4
+#define cfgBIF_CFG_DEV0_EPF0_VF0_MSIX_PBA 0x00c8
+#define cfgBIF_CFG_DEV0_EPF0_VF0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST 0x0100
+#define cfgBIF_CFG_DEV0_EPF0_VF0_PCIE_VENDOR_SPECIFIC_HDR 0x0104
+#define cfgBIF_CFG_DEV0_EPF0_VF0_PCIE_VENDOR_SPECIFIC1 0x0108
+#define cfgBIF_CFG_DEV0_EPF0_VF0_PCIE_VENDOR_SPECIFIC2 0x010c
+#define cfgBIF_CFG_DEV0_EPF0_VF0_PCIE_ADV_ERR_RPT_ENH_CAP_LIST 0x0150
+#define cfgBIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_STATUS 0x0154
+#define cfgBIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_MASK 0x0158
+#define cfgBIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_SEVERITY 0x015c
+#define cfgBIF_CFG_DEV0_EPF0_VF0_PCIE_CORR_ERR_STATUS 0x0160
+#define cfgBIF_CFG_DEV0_EPF0_VF0_PCIE_CORR_ERR_MASK 0x0164
+#define cfgBIF_CFG_DEV0_EPF0_VF0_PCIE_ADV_ERR_CAP_CNTL 0x0168
+#define cfgBIF_CFG_DEV0_EPF0_VF0_PCIE_HDR_LOG0 0x016c
+#define cfgBIF_CFG_DEV0_EPF0_VF0_PCIE_HDR_LOG1 0x0170
+#define cfgBIF_CFG_DEV0_EPF0_VF0_PCIE_HDR_LOG2 0x0174
+#define cfgBIF_CFG_DEV0_EPF0_VF0_PCIE_HDR_LOG3 0x0178
+#define cfgBIF_CFG_DEV0_EPF0_VF0_PCIE_TLP_PREFIX_LOG0 0x0188
+#define cfgBIF_CFG_DEV0_EPF0_VF0_PCIE_TLP_PREFIX_LOG1 0x018c
+#define cfgBIF_CFG_DEV0_EPF0_VF0_PCIE_TLP_PREFIX_LOG2 0x0190
+#define cfgBIF_CFG_DEV0_EPF0_VF0_PCIE_TLP_PREFIX_LOG3 0x0194
+#define cfgBIF_CFG_DEV0_EPF0_VF0_PCIE_ATS_ENH_CAP_LIST 0x02b0
+#define cfgBIF_CFG_DEV0_EPF0_VF0_PCIE_ATS_CAP 0x02b4
+#define cfgBIF_CFG_DEV0_EPF0_VF0_PCIE_ATS_CNTL 0x02b6
+#define cfgBIF_CFG_DEV0_EPF0_VF0_PCIE_ARI_ENH_CAP_LIST 0x0328
+#define cfgBIF_CFG_DEV0_EPF0_VF0_PCIE_ARI_CAP 0x032c
+#define cfgBIF_CFG_DEV0_EPF0_VF0_PCIE_ARI_CNTL 0x032e
+
+
+// addressBlock: aid_nbio_nbif0_bif_cfg_dev0_epf0_vf1_bifcfgdecp
+// base address: 0x0
+#define cfgBIF_CFG_DEV0_EPF0_VF1_VENDOR_ID 0x0000
+#define cfgBIF_CFG_DEV0_EPF0_VF1_DEVICE_ID 0x0002
+#define cfgBIF_CFG_DEV0_EPF0_VF1_COMMAND 0x0004
+#define cfgBIF_CFG_DEV0_EPF0_VF1_STATUS 0x0006
+#define cfgBIF_CFG_DEV0_EPF0_VF1_REVISION_ID 0x0008
+#define cfgBIF_CFG_DEV0_EPF0_VF1_PROG_INTERFACE 0x0009
+#define cfgBIF_CFG_DEV0_EPF0_VF1_SUB_CLASS 0x000a
+#define cfgBIF_CFG_DEV0_EPF0_VF1_BASE_CLASS 0x000b
+#define cfgBIF_CFG_DEV0_EPF0_VF1_CACHE_LINE 0x000c
+#define cfgBIF_CFG_DEV0_EPF0_VF1_LATENCY 0x000d
+#define cfgBIF_CFG_DEV0_EPF0_VF1_HEADER 0x000e
+#define cfgBIF_CFG_DEV0_EPF0_VF1_BIST 0x000f
+#define cfgBIF_CFG_DEV0_EPF0_VF1_BASE_ADDR_1 0x0010
+#define cfgBIF_CFG_DEV0_EPF0_VF1_BASE_ADDR_2 0x0014
+#define cfgBIF_CFG_DEV0_EPF0_VF1_BASE_ADDR_3 0x0018
+#define cfgBIF_CFG_DEV0_EPF0_VF1_BASE_ADDR_4 0x001c
+#define cfgBIF_CFG_DEV0_EPF0_VF1_BASE_ADDR_5 0x0020
+#define cfgBIF_CFG_DEV0_EPF0_VF1_BASE_ADDR_6 0x0024
+#define cfgBIF_CFG_DEV0_EPF0_VF1_CARDBUS_CIS_PTR 0x0028
+#define cfgBIF_CFG_DEV0_EPF0_VF1_ADAPTER_ID 0x002c
+#define cfgBIF_CFG_DEV0_EPF0_VF1_ROM_BASE_ADDR 0x0030
+#define cfgBIF_CFG_DEV0_EPF0_VF1_CAP_PTR 0x0034
+#define cfgBIF_CFG_DEV0_EPF0_VF1_INTERRUPT_LINE 0x003c
+#define cfgBIF_CFG_DEV0_EPF0_VF1_INTERRUPT_PIN 0x003d
+#define cfgBIF_CFG_DEV0_EPF0_VF1_MIN_GRANT 0x003e
+#define cfgBIF_CFG_DEV0_EPF0_VF1_MAX_LATENCY 0x003f
+#define cfgBIF_CFG_DEV0_EPF0_VF1_PCIE_CAP_LIST 0x0064
+#define cfgBIF_CFG_DEV0_EPF0_VF1_PCIE_CAP 0x0066
+#define cfgBIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP 0x0068
+#define cfgBIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL 0x006c
+#define cfgBIF_CFG_DEV0_EPF0_VF1_DEVICE_STATUS 0x006e
+#define cfgBIF_CFG_DEV0_EPF0_VF1_LINK_CAP 0x0070
+#define cfgBIF_CFG_DEV0_EPF0_VF1_LINK_CNTL 0x0074
+#define cfgBIF_CFG_DEV0_EPF0_VF1_LINK_STATUS 0x0076
+#define cfgBIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP2 0x0088
+#define cfgBIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL2 0x008c
+#define cfgBIF_CFG_DEV0_EPF0_VF1_DEVICE_STATUS2 0x008e
+#define cfgBIF_CFG_DEV0_EPF0_VF1_LINK_CAP2 0x0090
+#define cfgBIF_CFG_DEV0_EPF0_VF1_LINK_CNTL2 0x0094
+#define cfgBIF_CFG_DEV0_EPF0_VF1_LINK_STATUS2 0x0096
+#define cfgBIF_CFG_DEV0_EPF0_VF1_MSI_CAP_LIST 0x00a0
+#define cfgBIF_CFG_DEV0_EPF0_VF1_MSI_MSG_CNTL 0x00a2
+#define cfgBIF_CFG_DEV0_EPF0_VF1_MSI_MSG_ADDR_LO 0x00a4
+#define cfgBIF_CFG_DEV0_EPF0_VF1_MSI_MSG_ADDR_HI 0x00a8
+#define cfgBIF_CFG_DEV0_EPF0_VF1_MSI_MSG_DATA 0x00a8
+#define cfgBIF_CFG_DEV0_EPF0_VF1_MSI_EXT_MSG_DATA 0x00aa
+#define cfgBIF_CFG_DEV0_EPF0_VF1_MSI_MASK 0x00ac
+#define cfgBIF_CFG_DEV0_EPF0_VF1_MSI_MSG_DATA_64 0x00ac
+#define cfgBIF_CFG_DEV0_EPF0_VF1_MSI_EXT_MSG_DATA_64 0x00ae
+#define cfgBIF_CFG_DEV0_EPF0_VF1_MSI_MASK_64 0x00b0
+#define cfgBIF_CFG_DEV0_EPF0_VF1_MSI_PENDING 0x00b0
+#define cfgBIF_CFG_DEV0_EPF0_VF1_MSI_PENDING_64 0x00b4
+#define cfgBIF_CFG_DEV0_EPF0_VF1_MSIX_CAP_LIST 0x00c0
+#define cfgBIF_CFG_DEV0_EPF0_VF1_MSIX_MSG_CNTL 0x00c2
+#define cfgBIF_CFG_DEV0_EPF0_VF1_MSIX_TABLE 0x00c4
+#define cfgBIF_CFG_DEV0_EPF0_VF1_MSIX_PBA 0x00c8
+#define cfgBIF_CFG_DEV0_EPF0_VF1_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST 0x0100
+#define cfgBIF_CFG_DEV0_EPF0_VF1_PCIE_VENDOR_SPECIFIC_HDR 0x0104
+#define cfgBIF_CFG_DEV0_EPF0_VF1_PCIE_VENDOR_SPECIFIC1 0x0108
+#define cfgBIF_CFG_DEV0_EPF0_VF1_PCIE_VENDOR_SPECIFIC2 0x010c
+#define cfgBIF_CFG_DEV0_EPF0_VF1_PCIE_ADV_ERR_RPT_ENH_CAP_LIST 0x0150
+#define cfgBIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_STATUS 0x0154
+#define cfgBIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_MASK 0x0158
+#define cfgBIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_SEVERITY 0x015c
+#define cfgBIF_CFG_DEV0_EPF0_VF1_PCIE_CORR_ERR_STATUS 0x0160
+#define cfgBIF_CFG_DEV0_EPF0_VF1_PCIE_CORR_ERR_MASK 0x0164
+#define cfgBIF_CFG_DEV0_EPF0_VF1_PCIE_ADV_ERR_CAP_CNTL 0x0168
+#define cfgBIF_CFG_DEV0_EPF0_VF1_PCIE_HDR_LOG0 0x016c
+#define cfgBIF_CFG_DEV0_EPF0_VF1_PCIE_HDR_LOG1 0x0170
+#define cfgBIF_CFG_DEV0_EPF0_VF1_PCIE_HDR_LOG2 0x0174
+#define cfgBIF_CFG_DEV0_EPF0_VF1_PCIE_HDR_LOG3 0x0178
+#define cfgBIF_CFG_DEV0_EPF0_VF1_PCIE_TLP_PREFIX_LOG0 0x0188
+#define cfgBIF_CFG_DEV0_EPF0_VF1_PCIE_TLP_PREFIX_LOG1 0x018c
+#define cfgBIF_CFG_DEV0_EPF0_VF1_PCIE_TLP_PREFIX_LOG2 0x0190
+#define cfgBIF_CFG_DEV0_EPF0_VF1_PCIE_TLP_PREFIX_LOG3 0x0194
+#define cfgBIF_CFG_DEV0_EPF0_VF1_PCIE_ATS_ENH_CAP_LIST 0x02b0
+#define cfgBIF_CFG_DEV0_EPF0_VF1_PCIE_ATS_CAP 0x02b4
+#define cfgBIF_CFG_DEV0_EPF0_VF1_PCIE_ATS_CNTL 0x02b6
+#define cfgBIF_CFG_DEV0_EPF0_VF1_PCIE_ARI_ENH_CAP_LIST 0x0328
+#define cfgBIF_CFG_DEV0_EPF0_VF1_PCIE_ARI_CAP 0x032c
+#define cfgBIF_CFG_DEV0_EPF0_VF1_PCIE_ARI_CNTL 0x032e
+
+
+// addressBlock: aid_nbio_nbif0_bif_cfg_dev0_epf0_vf2_bifcfgdecp
+// base address: 0x0
+#define cfgBIF_CFG_DEV0_EPF0_VF2_VENDOR_ID 0x0000
+#define cfgBIF_CFG_DEV0_EPF0_VF2_DEVICE_ID 0x0002
+#define cfgBIF_CFG_DEV0_EPF0_VF2_COMMAND 0x0004
+#define cfgBIF_CFG_DEV0_EPF0_VF2_STATUS 0x0006
+#define cfgBIF_CFG_DEV0_EPF0_VF2_REVISION_ID 0x0008
+#define cfgBIF_CFG_DEV0_EPF0_VF2_PROG_INTERFACE 0x0009
+#define cfgBIF_CFG_DEV0_EPF0_VF2_SUB_CLASS 0x000a
+#define cfgBIF_CFG_DEV0_EPF0_VF2_BASE_CLASS 0x000b
+#define cfgBIF_CFG_DEV0_EPF0_VF2_CACHE_LINE 0x000c
+#define cfgBIF_CFG_DEV0_EPF0_VF2_LATENCY 0x000d
+#define cfgBIF_CFG_DEV0_EPF0_VF2_HEADER 0x000e
+#define cfgBIF_CFG_DEV0_EPF0_VF2_BIST 0x000f
+#define cfgBIF_CFG_DEV0_EPF0_VF2_BASE_ADDR_1 0x0010
+#define cfgBIF_CFG_DEV0_EPF0_VF2_BASE_ADDR_2 0x0014
+#define cfgBIF_CFG_DEV0_EPF0_VF2_BASE_ADDR_3 0x0018
+#define cfgBIF_CFG_DEV0_EPF0_VF2_BASE_ADDR_4 0x001c
+#define cfgBIF_CFG_DEV0_EPF0_VF2_BASE_ADDR_5 0x0020
+#define cfgBIF_CFG_DEV0_EPF0_VF2_BASE_ADDR_6 0x0024
+#define cfgBIF_CFG_DEV0_EPF0_VF2_CARDBUS_CIS_PTR 0x0028
+#define cfgBIF_CFG_DEV0_EPF0_VF2_ADAPTER_ID 0x002c
+#define cfgBIF_CFG_DEV0_EPF0_VF2_ROM_BASE_ADDR 0x0030
+#define cfgBIF_CFG_DEV0_EPF0_VF2_CAP_PTR 0x0034
+#define cfgBIF_CFG_DEV0_EPF0_VF2_INTERRUPT_LINE 0x003c
+#define cfgBIF_CFG_DEV0_EPF0_VF2_INTERRUPT_PIN 0x003d
+#define cfgBIF_CFG_DEV0_EPF0_VF2_MIN_GRANT 0x003e
+#define cfgBIF_CFG_DEV0_EPF0_VF2_MAX_LATENCY 0x003f
+#define cfgBIF_CFG_DEV0_EPF0_VF2_PCIE_CAP_LIST 0x0064
+#define cfgBIF_CFG_DEV0_EPF0_VF2_PCIE_CAP 0x0066
+#define cfgBIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP 0x0068
+#define cfgBIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL 0x006c
+#define cfgBIF_CFG_DEV0_EPF0_VF2_DEVICE_STATUS 0x006e
+#define cfgBIF_CFG_DEV0_EPF0_VF2_LINK_CAP 0x0070
+#define cfgBIF_CFG_DEV0_EPF0_VF2_LINK_CNTL 0x0074
+#define cfgBIF_CFG_DEV0_EPF0_VF2_LINK_STATUS 0x0076
+#define cfgBIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP2 0x0088
+#define cfgBIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL2 0x008c
+#define cfgBIF_CFG_DEV0_EPF0_VF2_DEVICE_STATUS2 0x008e
+#define cfgBIF_CFG_DEV0_EPF0_VF2_LINK_CAP2 0x0090
+#define cfgBIF_CFG_DEV0_EPF0_VF2_LINK_CNTL2 0x0094
+#define cfgBIF_CFG_DEV0_EPF0_VF2_LINK_STATUS2 0x0096
+#define cfgBIF_CFG_DEV0_EPF0_VF2_MSI_CAP_LIST 0x00a0
+#define cfgBIF_CFG_DEV0_EPF0_VF2_MSI_MSG_CNTL 0x00a2
+#define cfgBIF_CFG_DEV0_EPF0_VF2_MSI_MSG_ADDR_LO 0x00a4
+#define cfgBIF_CFG_DEV0_EPF0_VF2_MSI_MSG_ADDR_HI 0x00a8
+#define cfgBIF_CFG_DEV0_EPF0_VF2_MSI_MSG_DATA 0x00a8
+#define cfgBIF_CFG_DEV0_EPF0_VF2_MSI_EXT_MSG_DATA 0x00aa
+#define cfgBIF_CFG_DEV0_EPF0_VF2_MSI_MASK 0x00ac
+#define cfgBIF_CFG_DEV0_EPF0_VF2_MSI_MSG_DATA_64 0x00ac
+#define cfgBIF_CFG_DEV0_EPF0_VF2_MSI_EXT_MSG_DATA_64 0x00ae
+#define cfgBIF_CFG_DEV0_EPF0_VF2_MSI_MASK_64 0x00b0
+#define cfgBIF_CFG_DEV0_EPF0_VF2_MSI_PENDING 0x00b0
+#define cfgBIF_CFG_DEV0_EPF0_VF2_MSI_PENDING_64 0x00b4
+#define cfgBIF_CFG_DEV0_EPF0_VF2_MSIX_CAP_LIST 0x00c0
+#define cfgBIF_CFG_DEV0_EPF0_VF2_MSIX_MSG_CNTL 0x00c2
+#define cfgBIF_CFG_DEV0_EPF0_VF2_MSIX_TABLE 0x00c4
+#define cfgBIF_CFG_DEV0_EPF0_VF2_MSIX_PBA 0x00c8
+#define cfgBIF_CFG_DEV0_EPF0_VF2_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST 0x0100
+#define cfgBIF_CFG_DEV0_EPF0_VF2_PCIE_VENDOR_SPECIFIC_HDR 0x0104
+#define cfgBIF_CFG_DEV0_EPF0_VF2_PCIE_VENDOR_SPECIFIC1 0x0108
+#define cfgBIF_CFG_DEV0_EPF0_VF2_PCIE_VENDOR_SPECIFIC2 0x010c
+#define cfgBIF_CFG_DEV0_EPF0_VF2_PCIE_ADV_ERR_RPT_ENH_CAP_LIST 0x0150
+#define cfgBIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_STATUS 0x0154
+#define cfgBIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_MASK 0x0158
+#define cfgBIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_SEVERITY 0x015c
+#define cfgBIF_CFG_DEV0_EPF0_VF2_PCIE_CORR_ERR_STATUS 0x0160
+#define cfgBIF_CFG_DEV0_EPF0_VF2_PCIE_CORR_ERR_MASK 0x0164
+#define cfgBIF_CFG_DEV0_EPF0_VF2_PCIE_ADV_ERR_CAP_CNTL 0x0168
+#define cfgBIF_CFG_DEV0_EPF0_VF2_PCIE_HDR_LOG0 0x016c
+#define cfgBIF_CFG_DEV0_EPF0_VF2_PCIE_HDR_LOG1 0x0170
+#define cfgBIF_CFG_DEV0_EPF0_VF2_PCIE_HDR_LOG2 0x0174
+#define cfgBIF_CFG_DEV0_EPF0_VF2_PCIE_HDR_LOG3 0x0178
+#define cfgBIF_CFG_DEV0_EPF0_VF2_PCIE_TLP_PREFIX_LOG0 0x0188
+#define cfgBIF_CFG_DEV0_EPF0_VF2_PCIE_TLP_PREFIX_LOG1 0x018c
+#define cfgBIF_CFG_DEV0_EPF0_VF2_PCIE_TLP_PREFIX_LOG2 0x0190
+#define cfgBIF_CFG_DEV0_EPF0_VF2_PCIE_TLP_PREFIX_LOG3 0x0194
+#define cfgBIF_CFG_DEV0_EPF0_VF2_PCIE_ATS_ENH_CAP_LIST 0x02b0
+#define cfgBIF_CFG_DEV0_EPF0_VF2_PCIE_ATS_CAP 0x02b4
+#define cfgBIF_CFG_DEV0_EPF0_VF2_PCIE_ATS_CNTL 0x02b6
+#define cfgBIF_CFG_DEV0_EPF0_VF2_PCIE_ARI_ENH_CAP_LIST 0x0328
+#define cfgBIF_CFG_DEV0_EPF0_VF2_PCIE_ARI_CAP 0x032c
+#define cfgBIF_CFG_DEV0_EPF0_VF2_PCIE_ARI_CNTL 0x032e
+
+
+// addressBlock: aid_nbio_nbif0_bif_cfg_dev0_epf0_vf3_bifcfgdecp
+// base address: 0x0
+#define cfgBIF_CFG_DEV0_EPF0_VF3_VENDOR_ID 0x0000
+#define cfgBIF_CFG_DEV0_EPF0_VF3_DEVICE_ID 0x0002
+#define cfgBIF_CFG_DEV0_EPF0_VF3_COMMAND 0x0004
+#define cfgBIF_CFG_DEV0_EPF0_VF3_STATUS 0x0006
+#define cfgBIF_CFG_DEV0_EPF0_VF3_REVISION_ID 0x0008
+#define cfgBIF_CFG_DEV0_EPF0_VF3_PROG_INTERFACE 0x0009
+#define cfgBIF_CFG_DEV0_EPF0_VF3_SUB_CLASS 0x000a
+#define cfgBIF_CFG_DEV0_EPF0_VF3_BASE_CLASS 0x000b
+#define cfgBIF_CFG_DEV0_EPF0_VF3_CACHE_LINE 0x000c
+#define cfgBIF_CFG_DEV0_EPF0_VF3_LATENCY 0x000d
+#define cfgBIF_CFG_DEV0_EPF0_VF3_HEADER 0x000e
+#define cfgBIF_CFG_DEV0_EPF0_VF3_BIST 0x000f
+#define cfgBIF_CFG_DEV0_EPF0_VF3_BASE_ADDR_1 0x0010
+#define cfgBIF_CFG_DEV0_EPF0_VF3_BASE_ADDR_2 0x0014
+#define cfgBIF_CFG_DEV0_EPF0_VF3_BASE_ADDR_3 0x0018
+#define cfgBIF_CFG_DEV0_EPF0_VF3_BASE_ADDR_4 0x001c
+#define cfgBIF_CFG_DEV0_EPF0_VF3_BASE_ADDR_5 0x0020
+#define cfgBIF_CFG_DEV0_EPF0_VF3_BASE_ADDR_6 0x0024
+#define cfgBIF_CFG_DEV0_EPF0_VF3_CARDBUS_CIS_PTR 0x0028
+#define cfgBIF_CFG_DEV0_EPF0_VF3_ADAPTER_ID 0x002c
+#define cfgBIF_CFG_DEV0_EPF0_VF3_ROM_BASE_ADDR 0x0030
+#define cfgBIF_CFG_DEV0_EPF0_VF3_CAP_PTR 0x0034
+#define cfgBIF_CFG_DEV0_EPF0_VF3_INTERRUPT_LINE 0x003c
+#define cfgBIF_CFG_DEV0_EPF0_VF3_INTERRUPT_PIN 0x003d
+#define cfgBIF_CFG_DEV0_EPF0_VF3_MIN_GRANT 0x003e
+#define cfgBIF_CFG_DEV0_EPF0_VF3_MAX_LATENCY 0x003f
+#define cfgBIF_CFG_DEV0_EPF0_VF3_PCIE_CAP_LIST 0x0064
+#define cfgBIF_CFG_DEV0_EPF0_VF3_PCIE_CAP 0x0066
+#define cfgBIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP 0x0068
+#define cfgBIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL 0x006c
+#define cfgBIF_CFG_DEV0_EPF0_VF3_DEVICE_STATUS 0x006e
+#define cfgBIF_CFG_DEV0_EPF0_VF3_LINK_CAP 0x0070
+#define cfgBIF_CFG_DEV0_EPF0_VF3_LINK_CNTL 0x0074
+#define cfgBIF_CFG_DEV0_EPF0_VF3_LINK_STATUS 0x0076
+#define cfgBIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP2 0x0088
+#define cfgBIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL2 0x008c
+#define cfgBIF_CFG_DEV0_EPF0_VF3_DEVICE_STATUS2 0x008e
+#define cfgBIF_CFG_DEV0_EPF0_VF3_LINK_CAP2 0x0090
+#define cfgBIF_CFG_DEV0_EPF0_VF3_LINK_CNTL2 0x0094
+#define cfgBIF_CFG_DEV0_EPF0_VF3_LINK_STATUS2 0x0096
+#define cfgBIF_CFG_DEV0_EPF0_VF3_MSI_CAP_LIST 0x00a0
+#define cfgBIF_CFG_DEV0_EPF0_VF3_MSI_MSG_CNTL 0x00a2
+#define cfgBIF_CFG_DEV0_EPF0_VF3_MSI_MSG_ADDR_LO 0x00a4
+#define cfgBIF_CFG_DEV0_EPF0_VF3_MSI_MSG_ADDR_HI 0x00a8
+#define cfgBIF_CFG_DEV0_EPF0_VF3_MSI_MSG_DATA 0x00a8
+#define cfgBIF_CFG_DEV0_EPF0_VF3_MSI_EXT_MSG_DATA 0x00aa
+#define cfgBIF_CFG_DEV0_EPF0_VF3_MSI_MASK 0x00ac
+#define cfgBIF_CFG_DEV0_EPF0_VF3_MSI_MSG_DATA_64 0x00ac
+#define cfgBIF_CFG_DEV0_EPF0_VF3_MSI_EXT_MSG_DATA_64 0x00ae
+#define cfgBIF_CFG_DEV0_EPF0_VF3_MSI_MASK_64 0x00b0
+#define cfgBIF_CFG_DEV0_EPF0_VF3_MSI_PENDING 0x00b0
+#define cfgBIF_CFG_DEV0_EPF0_VF3_MSI_PENDING_64 0x00b4
+#define cfgBIF_CFG_DEV0_EPF0_VF3_MSIX_CAP_LIST 0x00c0
+#define cfgBIF_CFG_DEV0_EPF0_VF3_MSIX_MSG_CNTL 0x00c2
+#define cfgBIF_CFG_DEV0_EPF0_VF3_MSIX_TABLE 0x00c4
+#define cfgBIF_CFG_DEV0_EPF0_VF3_MSIX_PBA 0x00c8
+#define cfgBIF_CFG_DEV0_EPF0_VF3_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST 0x0100
+#define cfgBIF_CFG_DEV0_EPF0_VF3_PCIE_VENDOR_SPECIFIC_HDR 0x0104
+#define cfgBIF_CFG_DEV0_EPF0_VF3_PCIE_VENDOR_SPECIFIC1 0x0108
+#define cfgBIF_CFG_DEV0_EPF0_VF3_PCIE_VENDOR_SPECIFIC2 0x010c
+#define cfgBIF_CFG_DEV0_EPF0_VF3_PCIE_ADV_ERR_RPT_ENH_CAP_LIST 0x0150
+#define cfgBIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_STATUS 0x0154
+#define cfgBIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_MASK 0x0158
+#define cfgBIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_SEVERITY 0x015c
+#define cfgBIF_CFG_DEV0_EPF0_VF3_PCIE_CORR_ERR_STATUS 0x0160
+#define cfgBIF_CFG_DEV0_EPF0_VF3_PCIE_CORR_ERR_MASK 0x0164
+#define cfgBIF_CFG_DEV0_EPF0_VF3_PCIE_ADV_ERR_CAP_CNTL 0x0168
+#define cfgBIF_CFG_DEV0_EPF0_VF3_PCIE_HDR_LOG0 0x016c
+#define cfgBIF_CFG_DEV0_EPF0_VF3_PCIE_HDR_LOG1 0x0170
+#define cfgBIF_CFG_DEV0_EPF0_VF3_PCIE_HDR_LOG2 0x0174
+#define cfgBIF_CFG_DEV0_EPF0_VF3_PCIE_HDR_LOG3 0x0178
+#define cfgBIF_CFG_DEV0_EPF0_VF3_PCIE_TLP_PREFIX_LOG0 0x0188
+#define cfgBIF_CFG_DEV0_EPF0_VF3_PCIE_TLP_PREFIX_LOG1 0x018c
+#define cfgBIF_CFG_DEV0_EPF0_VF3_PCIE_TLP_PREFIX_LOG2 0x0190
+#define cfgBIF_CFG_DEV0_EPF0_VF3_PCIE_TLP_PREFIX_LOG3 0x0194
+#define cfgBIF_CFG_DEV0_EPF0_VF3_PCIE_ATS_ENH_CAP_LIST 0x02b0
+#define cfgBIF_CFG_DEV0_EPF0_VF3_PCIE_ATS_CAP 0x02b4
+#define cfgBIF_CFG_DEV0_EPF0_VF3_PCIE_ATS_CNTL 0x02b6
+#define cfgBIF_CFG_DEV0_EPF0_VF3_PCIE_ARI_ENH_CAP_LIST 0x0328
+#define cfgBIF_CFG_DEV0_EPF0_VF3_PCIE_ARI_CAP 0x032c
+#define cfgBIF_CFG_DEV0_EPF0_VF3_PCIE_ARI_CNTL 0x032e
+
+
+// addressBlock: aid_nbio_nbif0_bif_cfg_dev0_epf0_vf4_bifcfgdecp
+// base address: 0x0
+#define cfgBIF_CFG_DEV0_EPF0_VF4_VENDOR_ID 0x0000
+#define cfgBIF_CFG_DEV0_EPF0_VF4_DEVICE_ID 0x0002
+#define cfgBIF_CFG_DEV0_EPF0_VF4_COMMAND 0x0004
+#define cfgBIF_CFG_DEV0_EPF0_VF4_STATUS 0x0006
+#define cfgBIF_CFG_DEV0_EPF0_VF4_REVISION_ID 0x0008
+#define cfgBIF_CFG_DEV0_EPF0_VF4_PROG_INTERFACE 0x0009
+#define cfgBIF_CFG_DEV0_EPF0_VF4_SUB_CLASS 0x000a
+#define cfgBIF_CFG_DEV0_EPF0_VF4_BASE_CLASS 0x000b
+#define cfgBIF_CFG_DEV0_EPF0_VF4_CACHE_LINE 0x000c
+#define cfgBIF_CFG_DEV0_EPF0_VF4_LATENCY 0x000d
+#define cfgBIF_CFG_DEV0_EPF0_VF4_HEADER 0x000e
+#define cfgBIF_CFG_DEV0_EPF0_VF4_BIST 0x000f
+#define cfgBIF_CFG_DEV0_EPF0_VF4_BASE_ADDR_1 0x0010
+#define cfgBIF_CFG_DEV0_EPF0_VF4_BASE_ADDR_2 0x0014
+#define cfgBIF_CFG_DEV0_EPF0_VF4_BASE_ADDR_3 0x0018
+#define cfgBIF_CFG_DEV0_EPF0_VF4_BASE_ADDR_4 0x001c
+#define cfgBIF_CFG_DEV0_EPF0_VF4_BASE_ADDR_5 0x0020
+#define cfgBIF_CFG_DEV0_EPF0_VF4_BASE_ADDR_6 0x0024
+#define cfgBIF_CFG_DEV0_EPF0_VF4_CARDBUS_CIS_PTR 0x0028
+#define cfgBIF_CFG_DEV0_EPF0_VF4_ADAPTER_ID 0x002c
+#define cfgBIF_CFG_DEV0_EPF0_VF4_ROM_BASE_ADDR 0x0030
+#define cfgBIF_CFG_DEV0_EPF0_VF4_CAP_PTR 0x0034
+#define cfgBIF_CFG_DEV0_EPF0_VF4_INTERRUPT_LINE 0x003c
+#define cfgBIF_CFG_DEV0_EPF0_VF4_INTERRUPT_PIN 0x003d
+#define cfgBIF_CFG_DEV0_EPF0_VF4_MIN_GRANT 0x003e
+#define cfgBIF_CFG_DEV0_EPF0_VF4_MAX_LATENCY 0x003f
+#define cfgBIF_CFG_DEV0_EPF0_VF4_PCIE_CAP_LIST 0x0064
+#define cfgBIF_CFG_DEV0_EPF0_VF4_PCIE_CAP 0x0066
+#define cfgBIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP 0x0068
+#define cfgBIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL 0x006c
+#define cfgBIF_CFG_DEV0_EPF0_VF4_DEVICE_STATUS 0x006e
+#define cfgBIF_CFG_DEV0_EPF0_VF4_LINK_CAP 0x0070
+#define cfgBIF_CFG_DEV0_EPF0_VF4_LINK_CNTL 0x0074
+#define cfgBIF_CFG_DEV0_EPF0_VF4_LINK_STATUS 0x0076
+#define cfgBIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP2 0x0088
+#define cfgBIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL2 0x008c
+#define cfgBIF_CFG_DEV0_EPF0_VF4_DEVICE_STATUS2 0x008e
+#define cfgBIF_CFG_DEV0_EPF0_VF4_LINK_CAP2 0x0090
+#define cfgBIF_CFG_DEV0_EPF0_VF4_LINK_CNTL2 0x0094
+#define cfgBIF_CFG_DEV0_EPF0_VF4_LINK_STATUS2 0x0096
+#define cfgBIF_CFG_DEV0_EPF0_VF4_MSI_CAP_LIST 0x00a0
+#define cfgBIF_CFG_DEV0_EPF0_VF4_MSI_MSG_CNTL 0x00a2
+#define cfgBIF_CFG_DEV0_EPF0_VF4_MSI_MSG_ADDR_LO 0x00a4
+#define cfgBIF_CFG_DEV0_EPF0_VF4_MSI_MSG_ADDR_HI 0x00a8
+#define cfgBIF_CFG_DEV0_EPF0_VF4_MSI_MSG_DATA 0x00a8
+#define cfgBIF_CFG_DEV0_EPF0_VF4_MSI_EXT_MSG_DATA 0x00aa
+#define cfgBIF_CFG_DEV0_EPF0_VF4_MSI_MASK 0x00ac
+#define cfgBIF_CFG_DEV0_EPF0_VF4_MSI_MSG_DATA_64 0x00ac
+#define cfgBIF_CFG_DEV0_EPF0_VF4_MSI_EXT_MSG_DATA_64 0x00ae
+#define cfgBIF_CFG_DEV0_EPF0_VF4_MSI_MASK_64 0x00b0
+#define cfgBIF_CFG_DEV0_EPF0_VF4_MSI_PENDING 0x00b0
+#define cfgBIF_CFG_DEV0_EPF0_VF4_MSI_PENDING_64 0x00b4
+#define cfgBIF_CFG_DEV0_EPF0_VF4_MSIX_CAP_LIST 0x00c0
+#define cfgBIF_CFG_DEV0_EPF0_VF4_MSIX_MSG_CNTL 0x00c2
+#define cfgBIF_CFG_DEV0_EPF0_VF4_MSIX_TABLE 0x00c4
+#define cfgBIF_CFG_DEV0_EPF0_VF4_MSIX_PBA 0x00c8
+#define cfgBIF_CFG_DEV0_EPF0_VF4_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST 0x0100
+#define cfgBIF_CFG_DEV0_EPF0_VF4_PCIE_VENDOR_SPECIFIC_HDR 0x0104
+#define cfgBIF_CFG_DEV0_EPF0_VF4_PCIE_VENDOR_SPECIFIC1 0x0108
+#define cfgBIF_CFG_DEV0_EPF0_VF4_PCIE_VENDOR_SPECIFIC2 0x010c
+#define cfgBIF_CFG_DEV0_EPF0_VF4_PCIE_ADV_ERR_RPT_ENH_CAP_LIST 0x0150
+#define cfgBIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_STATUS 0x0154
+#define cfgBIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_MASK 0x0158
+#define cfgBIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_SEVERITY 0x015c
+#define cfgBIF_CFG_DEV0_EPF0_VF4_PCIE_CORR_ERR_STATUS 0x0160
+#define cfgBIF_CFG_DEV0_EPF0_VF4_PCIE_CORR_ERR_MASK 0x0164
+#define cfgBIF_CFG_DEV0_EPF0_VF4_PCIE_ADV_ERR_CAP_CNTL 0x0168
+#define cfgBIF_CFG_DEV0_EPF0_VF4_PCIE_HDR_LOG0 0x016c
+#define cfgBIF_CFG_DEV0_EPF0_VF4_PCIE_HDR_LOG1 0x0170
+#define cfgBIF_CFG_DEV0_EPF0_VF4_PCIE_HDR_LOG2 0x0174
+#define cfgBIF_CFG_DEV0_EPF0_VF4_PCIE_HDR_LOG3 0x0178
+#define cfgBIF_CFG_DEV0_EPF0_VF4_PCIE_TLP_PREFIX_LOG0 0x0188
+#define cfgBIF_CFG_DEV0_EPF0_VF4_PCIE_TLP_PREFIX_LOG1 0x018c
+#define cfgBIF_CFG_DEV0_EPF0_VF4_PCIE_TLP_PREFIX_LOG2 0x0190
+#define cfgBIF_CFG_DEV0_EPF0_VF4_PCIE_TLP_PREFIX_LOG3 0x0194
+#define cfgBIF_CFG_DEV0_EPF0_VF4_PCIE_ATS_ENH_CAP_LIST 0x02b0
+#define cfgBIF_CFG_DEV0_EPF0_VF4_PCIE_ATS_CAP 0x02b4
+#define cfgBIF_CFG_DEV0_EPF0_VF4_PCIE_ATS_CNTL 0x02b6
+#define cfgBIF_CFG_DEV0_EPF0_VF4_PCIE_ARI_ENH_CAP_LIST 0x0328
+#define cfgBIF_CFG_DEV0_EPF0_VF4_PCIE_ARI_CAP 0x032c
+#define cfgBIF_CFG_DEV0_EPF0_VF4_PCIE_ARI_CNTL 0x032e
+
+
+// addressBlock: aid_nbio_nbif0_bif_cfg_dev0_epf0_vf5_bifcfgdecp
+// base address: 0x0
+#define cfgBIF_CFG_DEV0_EPF0_VF5_VENDOR_ID 0x0000
+#define cfgBIF_CFG_DEV0_EPF0_VF5_DEVICE_ID 0x0002
+#define cfgBIF_CFG_DEV0_EPF0_VF5_COMMAND 0x0004
+#define cfgBIF_CFG_DEV0_EPF0_VF5_STATUS 0x0006
+#define cfgBIF_CFG_DEV0_EPF0_VF5_REVISION_ID 0x0008
+#define cfgBIF_CFG_DEV0_EPF0_VF5_PROG_INTERFACE 0x0009
+#define cfgBIF_CFG_DEV0_EPF0_VF5_SUB_CLASS 0x000a
+#define cfgBIF_CFG_DEV0_EPF0_VF5_BASE_CLASS 0x000b
+#define cfgBIF_CFG_DEV0_EPF0_VF5_CACHE_LINE 0x000c
+#define cfgBIF_CFG_DEV0_EPF0_VF5_LATENCY 0x000d
+#define cfgBIF_CFG_DEV0_EPF0_VF5_HEADER 0x000e
+#define cfgBIF_CFG_DEV0_EPF0_VF5_BIST 0x000f
+#define cfgBIF_CFG_DEV0_EPF0_VF5_BASE_ADDR_1 0x0010
+#define cfgBIF_CFG_DEV0_EPF0_VF5_BASE_ADDR_2 0x0014
+#define cfgBIF_CFG_DEV0_EPF0_VF5_BASE_ADDR_3 0x0018
+#define cfgBIF_CFG_DEV0_EPF0_VF5_BASE_ADDR_4 0x001c
+#define cfgBIF_CFG_DEV0_EPF0_VF5_BASE_ADDR_5 0x0020
+#define cfgBIF_CFG_DEV0_EPF0_VF5_BASE_ADDR_6 0x0024
+#define cfgBIF_CFG_DEV0_EPF0_VF5_CARDBUS_CIS_PTR 0x0028
+#define cfgBIF_CFG_DEV0_EPF0_VF5_ADAPTER_ID 0x002c
+#define cfgBIF_CFG_DEV0_EPF0_VF5_ROM_BASE_ADDR 0x0030
+#define cfgBIF_CFG_DEV0_EPF0_VF5_CAP_PTR 0x0034
+#define cfgBIF_CFG_DEV0_EPF0_VF5_INTERRUPT_LINE 0x003c
+#define cfgBIF_CFG_DEV0_EPF0_VF5_INTERRUPT_PIN 0x003d
+#define cfgBIF_CFG_DEV0_EPF0_VF5_MIN_GRANT 0x003e
+#define cfgBIF_CFG_DEV0_EPF0_VF5_MAX_LATENCY 0x003f
+#define cfgBIF_CFG_DEV0_EPF0_VF5_PCIE_CAP_LIST 0x0064
+#define cfgBIF_CFG_DEV0_EPF0_VF5_PCIE_CAP 0x0066
+#define cfgBIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP 0x0068
+#define cfgBIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL 0x006c
+#define cfgBIF_CFG_DEV0_EPF0_VF5_DEVICE_STATUS 0x006e
+#define cfgBIF_CFG_DEV0_EPF0_VF5_LINK_CAP 0x0070
+#define cfgBIF_CFG_DEV0_EPF0_VF5_LINK_CNTL 0x0074
+#define cfgBIF_CFG_DEV0_EPF0_VF5_LINK_STATUS 0x0076
+#define cfgBIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP2 0x0088
+#define cfgBIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL2 0x008c
+#define cfgBIF_CFG_DEV0_EPF0_VF5_DEVICE_STATUS2 0x008e
+#define cfgBIF_CFG_DEV0_EPF0_VF5_LINK_CAP2 0x0090
+#define cfgBIF_CFG_DEV0_EPF0_VF5_LINK_CNTL2 0x0094
+#define cfgBIF_CFG_DEV0_EPF0_VF5_LINK_STATUS2 0x0096
+#define cfgBIF_CFG_DEV0_EPF0_VF5_MSI_CAP_LIST 0x00a0
+#define cfgBIF_CFG_DEV0_EPF0_VF5_MSI_MSG_CNTL 0x00a2
+#define cfgBIF_CFG_DEV0_EPF0_VF5_MSI_MSG_ADDR_LO 0x00a4
+#define cfgBIF_CFG_DEV0_EPF0_VF5_MSI_MSG_ADDR_HI 0x00a8
+#define cfgBIF_CFG_DEV0_EPF0_VF5_MSI_MSG_DATA 0x00a8
+#define cfgBIF_CFG_DEV0_EPF0_VF5_MSI_EXT_MSG_DATA 0x00aa
+#define cfgBIF_CFG_DEV0_EPF0_VF5_MSI_MASK 0x00ac
+#define cfgBIF_CFG_DEV0_EPF0_VF5_MSI_MSG_DATA_64 0x00ac
+#define cfgBIF_CFG_DEV0_EPF0_VF5_MSI_EXT_MSG_DATA_64 0x00ae
+#define cfgBIF_CFG_DEV0_EPF0_VF5_MSI_MASK_64 0x00b0
+#define cfgBIF_CFG_DEV0_EPF0_VF5_MSI_PENDING 0x00b0
+#define cfgBIF_CFG_DEV0_EPF0_VF5_MSI_PENDING_64 0x00b4
+#define cfgBIF_CFG_DEV0_EPF0_VF5_MSIX_CAP_LIST 0x00c0
+#define cfgBIF_CFG_DEV0_EPF0_VF5_MSIX_MSG_CNTL 0x00c2
+#define cfgBIF_CFG_DEV0_EPF0_VF5_MSIX_TABLE 0x00c4
+#define cfgBIF_CFG_DEV0_EPF0_VF5_MSIX_PBA 0x00c8
+#define cfgBIF_CFG_DEV0_EPF0_VF5_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST 0x0100
+#define cfgBIF_CFG_DEV0_EPF0_VF5_PCIE_VENDOR_SPECIFIC_HDR 0x0104
+#define cfgBIF_CFG_DEV0_EPF0_VF5_PCIE_VENDOR_SPECIFIC1 0x0108
+#define cfgBIF_CFG_DEV0_EPF0_VF5_PCIE_VENDOR_SPECIFIC2 0x010c
+#define cfgBIF_CFG_DEV0_EPF0_VF5_PCIE_ADV_ERR_RPT_ENH_CAP_LIST 0x0150
+#define cfgBIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_STATUS 0x0154
+#define cfgBIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_MASK 0x0158
+#define cfgBIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_SEVERITY 0x015c
+#define cfgBIF_CFG_DEV0_EPF0_VF5_PCIE_CORR_ERR_STATUS 0x0160
+#define cfgBIF_CFG_DEV0_EPF0_VF5_PCIE_CORR_ERR_MASK 0x0164
+#define cfgBIF_CFG_DEV0_EPF0_VF5_PCIE_ADV_ERR_CAP_CNTL 0x0168
+#define cfgBIF_CFG_DEV0_EPF0_VF5_PCIE_HDR_LOG0 0x016c
+#define cfgBIF_CFG_DEV0_EPF0_VF5_PCIE_HDR_LOG1 0x0170
+#define cfgBIF_CFG_DEV0_EPF0_VF5_PCIE_HDR_LOG2 0x0174
+#define cfgBIF_CFG_DEV0_EPF0_VF5_PCIE_HDR_LOG3 0x0178
+#define cfgBIF_CFG_DEV0_EPF0_VF5_PCIE_TLP_PREFIX_LOG0 0x0188
+#define cfgBIF_CFG_DEV0_EPF0_VF5_PCIE_TLP_PREFIX_LOG1 0x018c
+#define cfgBIF_CFG_DEV0_EPF0_VF5_PCIE_TLP_PREFIX_LOG2 0x0190
+#define cfgBIF_CFG_DEV0_EPF0_VF5_PCIE_TLP_PREFIX_LOG3 0x0194
+#define cfgBIF_CFG_DEV0_EPF0_VF5_PCIE_ATS_ENH_CAP_LIST 0x02b0
+#define cfgBIF_CFG_DEV0_EPF0_VF5_PCIE_ATS_CAP 0x02b4
+#define cfgBIF_CFG_DEV0_EPF0_VF5_PCIE_ATS_CNTL 0x02b6
+#define cfgBIF_CFG_DEV0_EPF0_VF5_PCIE_ARI_ENH_CAP_LIST 0x0328
+#define cfgBIF_CFG_DEV0_EPF0_VF5_PCIE_ARI_CAP 0x032c
+#define cfgBIF_CFG_DEV0_EPF0_VF5_PCIE_ARI_CNTL 0x032e
+
+
+// addressBlock: aid_nbio_nbif0_bif_cfg_dev0_epf0_vf6_bifcfgdecp
+// base address: 0x0
+#define cfgBIF_CFG_DEV0_EPF0_VF6_VENDOR_ID 0x0000
+#define cfgBIF_CFG_DEV0_EPF0_VF6_DEVICE_ID 0x0002
+#define cfgBIF_CFG_DEV0_EPF0_VF6_COMMAND 0x0004
+#define cfgBIF_CFG_DEV0_EPF0_VF6_STATUS 0x0006
+#define cfgBIF_CFG_DEV0_EPF0_VF6_REVISION_ID 0x0008
+#define cfgBIF_CFG_DEV0_EPF0_VF6_PROG_INTERFACE 0x0009
+#define cfgBIF_CFG_DEV0_EPF0_VF6_SUB_CLASS 0x000a
+#define cfgBIF_CFG_DEV0_EPF0_VF6_BASE_CLASS 0x000b
+#define cfgBIF_CFG_DEV0_EPF0_VF6_CACHE_LINE 0x000c
+#define cfgBIF_CFG_DEV0_EPF0_VF6_LATENCY 0x000d
+#define cfgBIF_CFG_DEV0_EPF0_VF6_HEADER 0x000e
+#define cfgBIF_CFG_DEV0_EPF0_VF6_BIST 0x000f
+#define cfgBIF_CFG_DEV0_EPF0_VF6_BASE_ADDR_1 0x0010
+#define cfgBIF_CFG_DEV0_EPF0_VF6_BASE_ADDR_2 0x0014
+#define cfgBIF_CFG_DEV0_EPF0_VF6_BASE_ADDR_3 0x0018
+#define cfgBIF_CFG_DEV0_EPF0_VF6_BASE_ADDR_4 0x001c
+#define cfgBIF_CFG_DEV0_EPF0_VF6_BASE_ADDR_5 0x0020
+#define cfgBIF_CFG_DEV0_EPF0_VF6_BASE_ADDR_6 0x0024
+#define cfgBIF_CFG_DEV0_EPF0_VF6_CARDBUS_CIS_PTR 0x0028
+#define cfgBIF_CFG_DEV0_EPF0_VF6_ADAPTER_ID 0x002c
+#define cfgBIF_CFG_DEV0_EPF0_VF6_ROM_BASE_ADDR 0x0030
+#define cfgBIF_CFG_DEV0_EPF0_VF6_CAP_PTR 0x0034
+#define cfgBIF_CFG_DEV0_EPF0_VF6_INTERRUPT_LINE 0x003c
+#define cfgBIF_CFG_DEV0_EPF0_VF6_INTERRUPT_PIN 0x003d
+#define cfgBIF_CFG_DEV0_EPF0_VF6_MIN_GRANT 0x003e
+#define cfgBIF_CFG_DEV0_EPF0_VF6_MAX_LATENCY 0x003f
+#define cfgBIF_CFG_DEV0_EPF0_VF6_PCIE_CAP_LIST 0x0064
+#define cfgBIF_CFG_DEV0_EPF0_VF6_PCIE_CAP 0x0066
+#define cfgBIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP 0x0068
+#define cfgBIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL 0x006c
+#define cfgBIF_CFG_DEV0_EPF0_VF6_DEVICE_STATUS 0x006e
+#define cfgBIF_CFG_DEV0_EPF0_VF6_LINK_CAP 0x0070
+#define cfgBIF_CFG_DEV0_EPF0_VF6_LINK_CNTL 0x0074
+#define cfgBIF_CFG_DEV0_EPF0_VF6_LINK_STATUS 0x0076
+#define cfgBIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP2 0x0088
+#define cfgBIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL2 0x008c
+#define cfgBIF_CFG_DEV0_EPF0_VF6_DEVICE_STATUS2 0x008e
+#define cfgBIF_CFG_DEV0_EPF0_VF6_LINK_CAP2 0x0090
+#define cfgBIF_CFG_DEV0_EPF0_VF6_LINK_CNTL2 0x0094
+#define cfgBIF_CFG_DEV0_EPF0_VF6_LINK_STATUS2 0x0096
+#define cfgBIF_CFG_DEV0_EPF0_VF6_MSI_CAP_LIST 0x00a0
+#define cfgBIF_CFG_DEV0_EPF0_VF6_MSI_MSG_CNTL 0x00a2
+#define cfgBIF_CFG_DEV0_EPF0_VF6_MSI_MSG_ADDR_LO 0x00a4
+#define cfgBIF_CFG_DEV0_EPF0_VF6_MSI_MSG_ADDR_HI 0x00a8
+#define cfgBIF_CFG_DEV0_EPF0_VF6_MSI_MSG_DATA 0x00a8
+#define cfgBIF_CFG_DEV0_EPF0_VF6_MSI_EXT_MSG_DATA 0x00aa
+#define cfgBIF_CFG_DEV0_EPF0_VF6_MSI_MASK 0x00ac
+#define cfgBIF_CFG_DEV0_EPF0_VF6_MSI_MSG_DATA_64 0x00ac
+#define cfgBIF_CFG_DEV0_EPF0_VF6_MSI_EXT_MSG_DATA_64 0x00ae
+#define cfgBIF_CFG_DEV0_EPF0_VF6_MSI_MASK_64 0x00b0
+#define cfgBIF_CFG_DEV0_EPF0_VF6_MSI_PENDING 0x00b0
+#define cfgBIF_CFG_DEV0_EPF0_VF6_MSI_PENDING_64 0x00b4
+#define cfgBIF_CFG_DEV0_EPF0_VF6_MSIX_CAP_LIST 0x00c0
+#define cfgBIF_CFG_DEV0_EPF0_VF6_MSIX_MSG_CNTL 0x00c2
+#define cfgBIF_CFG_DEV0_EPF0_VF6_MSIX_TABLE 0x00c4
+#define cfgBIF_CFG_DEV0_EPF0_VF6_MSIX_PBA 0x00c8
+#define cfgBIF_CFG_DEV0_EPF0_VF6_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST 0x0100
+#define cfgBIF_CFG_DEV0_EPF0_VF6_PCIE_VENDOR_SPECIFIC_HDR 0x0104
+#define cfgBIF_CFG_DEV0_EPF0_VF6_PCIE_VENDOR_SPECIFIC1 0x0108
+#define cfgBIF_CFG_DEV0_EPF0_VF6_PCIE_VENDOR_SPECIFIC2 0x010c
+#define cfgBIF_CFG_DEV0_EPF0_VF6_PCIE_ADV_ERR_RPT_ENH_CAP_LIST 0x0150
+#define cfgBIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_STATUS 0x0154
+#define cfgBIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_MASK 0x0158
+#define cfgBIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_SEVERITY 0x015c
+#define cfgBIF_CFG_DEV0_EPF0_VF6_PCIE_CORR_ERR_STATUS 0x0160
+#define cfgBIF_CFG_DEV0_EPF0_VF6_PCIE_CORR_ERR_MASK 0x0164
+#define cfgBIF_CFG_DEV0_EPF0_VF6_PCIE_ADV_ERR_CAP_CNTL 0x0168
+#define cfgBIF_CFG_DEV0_EPF0_VF6_PCIE_HDR_LOG0 0x016c
+#define cfgBIF_CFG_DEV0_EPF0_VF6_PCIE_HDR_LOG1 0x0170
+#define cfgBIF_CFG_DEV0_EPF0_VF6_PCIE_HDR_LOG2 0x0174
+#define cfgBIF_CFG_DEV0_EPF0_VF6_PCIE_HDR_LOG3 0x0178
+#define cfgBIF_CFG_DEV0_EPF0_VF6_PCIE_TLP_PREFIX_LOG0 0x0188
+#define cfgBIF_CFG_DEV0_EPF0_VF6_PCIE_TLP_PREFIX_LOG1 0x018c
+#define cfgBIF_CFG_DEV0_EPF0_VF6_PCIE_TLP_PREFIX_LOG2 0x0190
+#define cfgBIF_CFG_DEV0_EPF0_VF6_PCIE_TLP_PREFIX_LOG3 0x0194
+#define cfgBIF_CFG_DEV0_EPF0_VF6_PCIE_ATS_ENH_CAP_LIST 0x02b0
+#define cfgBIF_CFG_DEV0_EPF0_VF6_PCIE_ATS_CAP 0x02b4
+#define cfgBIF_CFG_DEV0_EPF0_VF6_PCIE_ATS_CNTL 0x02b6
+#define cfgBIF_CFG_DEV0_EPF0_VF6_PCIE_ARI_ENH_CAP_LIST 0x0328
+#define cfgBIF_CFG_DEV0_EPF0_VF6_PCIE_ARI_CAP 0x032c
+#define cfgBIF_CFG_DEV0_EPF0_VF6_PCIE_ARI_CNTL 0x032e
+
+
+// addressBlock: aid_nbio_nbif0_bif_cfg_dev0_epf0_vf7_bifcfgdecp
+// base address: 0x0
+#define cfgBIF_CFG_DEV0_EPF0_VF7_VENDOR_ID 0x0000
+#define cfgBIF_CFG_DEV0_EPF0_VF7_DEVICE_ID 0x0002
+#define cfgBIF_CFG_DEV0_EPF0_VF7_COMMAND 0x0004
+#define cfgBIF_CFG_DEV0_EPF0_VF7_STATUS 0x0006
+#define cfgBIF_CFG_DEV0_EPF0_VF7_REVISION_ID 0x0008
+#define cfgBIF_CFG_DEV0_EPF0_VF7_PROG_INTERFACE 0x0009
+#define cfgBIF_CFG_DEV0_EPF0_VF7_SUB_CLASS 0x000a
+#define cfgBIF_CFG_DEV0_EPF0_VF7_BASE_CLASS 0x000b
+#define cfgBIF_CFG_DEV0_EPF0_VF7_CACHE_LINE 0x000c
+#define cfgBIF_CFG_DEV0_EPF0_VF7_LATENCY 0x000d
+#define cfgBIF_CFG_DEV0_EPF0_VF7_HEADER 0x000e
+#define cfgBIF_CFG_DEV0_EPF0_VF7_BIST 0x000f
+#define cfgBIF_CFG_DEV0_EPF0_VF7_BASE_ADDR_1 0x0010
+#define cfgBIF_CFG_DEV0_EPF0_VF7_BASE_ADDR_2 0x0014
+#define cfgBIF_CFG_DEV0_EPF0_VF7_BASE_ADDR_3 0x0018
+#define cfgBIF_CFG_DEV0_EPF0_VF7_BASE_ADDR_4 0x001c
+#define cfgBIF_CFG_DEV0_EPF0_VF7_BASE_ADDR_5 0x0020
+#define cfgBIF_CFG_DEV0_EPF0_VF7_BASE_ADDR_6 0x0024
+#define cfgBIF_CFG_DEV0_EPF0_VF7_CARDBUS_CIS_PTR 0x0028
+#define cfgBIF_CFG_DEV0_EPF0_VF7_ADAPTER_ID 0x002c
+#define cfgBIF_CFG_DEV0_EPF0_VF7_ROM_BASE_ADDR 0x0030
+#define cfgBIF_CFG_DEV0_EPF0_VF7_CAP_PTR 0x0034
+#define cfgBIF_CFG_DEV0_EPF0_VF7_INTERRUPT_LINE 0x003c
+#define cfgBIF_CFG_DEV0_EPF0_VF7_INTERRUPT_PIN 0x003d
+#define cfgBIF_CFG_DEV0_EPF0_VF7_MIN_GRANT 0x003e
+#define cfgBIF_CFG_DEV0_EPF0_VF7_MAX_LATENCY 0x003f
+#define cfgBIF_CFG_DEV0_EPF0_VF7_PCIE_CAP_LIST 0x0064
+#define cfgBIF_CFG_DEV0_EPF0_VF7_PCIE_CAP 0x0066
+#define cfgBIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP 0x0068
+#define cfgBIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL 0x006c
+#define cfgBIF_CFG_DEV0_EPF0_VF7_DEVICE_STATUS 0x006e
+#define cfgBIF_CFG_DEV0_EPF0_VF7_LINK_CAP 0x0070
+#define cfgBIF_CFG_DEV0_EPF0_VF7_LINK_CNTL 0x0074
+#define cfgBIF_CFG_DEV0_EPF0_VF7_LINK_STATUS 0x0076
+#define cfgBIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP2 0x0088
+#define cfgBIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL2 0x008c
+#define cfgBIF_CFG_DEV0_EPF0_VF7_DEVICE_STATUS2 0x008e
+#define cfgBIF_CFG_DEV0_EPF0_VF7_LINK_CAP2 0x0090
+#define cfgBIF_CFG_DEV0_EPF0_VF7_LINK_CNTL2 0x0094
+#define cfgBIF_CFG_DEV0_EPF0_VF7_LINK_STATUS2 0x0096
+#define cfgBIF_CFG_DEV0_EPF0_VF7_MSI_CAP_LIST 0x00a0
+#define cfgBIF_CFG_DEV0_EPF0_VF7_MSI_MSG_CNTL 0x00a2
+#define cfgBIF_CFG_DEV0_EPF0_VF7_MSI_MSG_ADDR_LO 0x00a4
+#define cfgBIF_CFG_DEV0_EPF0_VF7_MSI_MSG_ADDR_HI 0x00a8
+#define cfgBIF_CFG_DEV0_EPF0_VF7_MSI_MSG_DATA 0x00a8
+#define cfgBIF_CFG_DEV0_EPF0_VF7_MSI_EXT_MSG_DATA 0x00aa
+#define cfgBIF_CFG_DEV0_EPF0_VF7_MSI_MASK 0x00ac
+#define cfgBIF_CFG_DEV0_EPF0_VF7_MSI_MSG_DATA_64 0x00ac
+#define cfgBIF_CFG_DEV0_EPF0_VF7_MSI_EXT_MSG_DATA_64 0x00ae
+#define cfgBIF_CFG_DEV0_EPF0_VF7_MSI_MASK_64 0x00b0
+#define cfgBIF_CFG_DEV0_EPF0_VF7_MSI_PENDING 0x00b0
+#define cfgBIF_CFG_DEV0_EPF0_VF7_MSI_PENDING_64 0x00b4
+#define cfgBIF_CFG_DEV0_EPF0_VF7_MSIX_CAP_LIST 0x00c0
+#define cfgBIF_CFG_DEV0_EPF0_VF7_MSIX_MSG_CNTL 0x00c2
+#define cfgBIF_CFG_DEV0_EPF0_VF7_MSIX_TABLE 0x00c4
+#define cfgBIF_CFG_DEV0_EPF0_VF7_MSIX_PBA 0x00c8
+#define cfgBIF_CFG_DEV0_EPF0_VF7_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST 0x0100
+#define cfgBIF_CFG_DEV0_EPF0_VF7_PCIE_VENDOR_SPECIFIC_HDR 0x0104
+#define cfgBIF_CFG_DEV0_EPF0_VF7_PCIE_VENDOR_SPECIFIC1 0x0108
+#define cfgBIF_CFG_DEV0_EPF0_VF7_PCIE_VENDOR_SPECIFIC2 0x010c
+#define cfgBIF_CFG_DEV0_EPF0_VF7_PCIE_ADV_ERR_RPT_ENH_CAP_LIST 0x0150
+#define cfgBIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_STATUS 0x0154
+#define cfgBIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_MASK 0x0158
+#define cfgBIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_SEVERITY 0x015c
+#define cfgBIF_CFG_DEV0_EPF0_VF7_PCIE_CORR_ERR_STATUS 0x0160
+#define cfgBIF_CFG_DEV0_EPF0_VF7_PCIE_CORR_ERR_MASK 0x0164
+#define cfgBIF_CFG_DEV0_EPF0_VF7_PCIE_ADV_ERR_CAP_CNTL 0x0168
+#define cfgBIF_CFG_DEV0_EPF0_VF7_PCIE_HDR_LOG0 0x016c
+#define cfgBIF_CFG_DEV0_EPF0_VF7_PCIE_HDR_LOG1 0x0170
+#define cfgBIF_CFG_DEV0_EPF0_VF7_PCIE_HDR_LOG2 0x0174
+#define cfgBIF_CFG_DEV0_EPF0_VF7_PCIE_HDR_LOG3 0x0178
+#define cfgBIF_CFG_DEV0_EPF0_VF7_PCIE_TLP_PREFIX_LOG0 0x0188
+#define cfgBIF_CFG_DEV0_EPF0_VF7_PCIE_TLP_PREFIX_LOG1 0x018c
+#define cfgBIF_CFG_DEV0_EPF0_VF7_PCIE_TLP_PREFIX_LOG2 0x0190
+#define cfgBIF_CFG_DEV0_EPF0_VF7_PCIE_TLP_PREFIX_LOG3 0x0194
+#define cfgBIF_CFG_DEV0_EPF0_VF7_PCIE_ATS_ENH_CAP_LIST 0x02b0
+#define cfgBIF_CFG_DEV0_EPF0_VF7_PCIE_ATS_CAP 0x02b4
+#define cfgBIF_CFG_DEV0_EPF0_VF7_PCIE_ATS_CNTL 0x02b6
+#define cfgBIF_CFG_DEV0_EPF0_VF7_PCIE_ARI_ENH_CAP_LIST 0x0328
+#define cfgBIF_CFG_DEV0_EPF0_VF7_PCIE_ARI_CAP 0x032c
+#define cfgBIF_CFG_DEV0_EPF0_VF7_PCIE_ARI_CNTL 0x032e
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_dev0_epf0_vf0_BIFPFVFDEC1
+// base address: 0x0
+#define regBIF_BX_DEV0_EPF0_VF0_BIF_BME_STATUS 0x00eb
+#define regBIF_BX_DEV0_EPF0_VF0_BIF_BME_STATUS_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF0_BIF_ATOMIC_ERR_LOG 0x00ec
+#define regBIF_BX_DEV0_EPF0_VF0_BIF_ATOMIC_ERR_LOG_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF0_DOORBELL_SELFRING_GPA_APER_BASE_HIGH 0x00f3
+#define regBIF_BX_DEV0_EPF0_VF0_DOORBELL_SELFRING_GPA_APER_BASE_HIGH_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF0_DOORBELL_SELFRING_GPA_APER_BASE_LOW 0x00f4
+#define regBIF_BX_DEV0_EPF0_VF0_DOORBELL_SELFRING_GPA_APER_BASE_LOW_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF0_DOORBELL_SELFRING_GPA_APER_CNTL 0x00f5
+#define regBIF_BX_DEV0_EPF0_VF0_DOORBELL_SELFRING_GPA_APER_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF0_HDP_REG_COHERENCY_FLUSH_CNTL 0x00f6
+#define regBIF_BX_DEV0_EPF0_VF0_HDP_REG_COHERENCY_FLUSH_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF0_HDP_MEM_COHERENCY_FLUSH_CNTL 0x00f7
+#define regBIF_BX_DEV0_EPF0_VF0_HDP_MEM_COHERENCY_FLUSH_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF0_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL 0x00f9
+#define regBIF_BX_DEV0_EPF0_VF0_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF0_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL 0x00fa
+#define regBIF_BX_DEV0_EPF0_VF0_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ 0x0106
+#define regBIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE 0x0107
+#define regBIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF0_BIF_TRANS_PENDING 0x0108
+#define regBIF_BX_DEV0_EPF0_VF0_BIF_TRANS_PENDING_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF0_NBIF_GFX_ADDR_LUT_BYPASS 0x0112
+#define regBIF_BX_DEV0_EPF0_VF0_NBIF_GFX_ADDR_LUT_BYPASS_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF0_MAILBOX_MSGBUF_TRN_DW0 0x0136
+#define regBIF_BX_DEV0_EPF0_VF0_MAILBOX_MSGBUF_TRN_DW0_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF0_MAILBOX_MSGBUF_TRN_DW1 0x0137
+#define regBIF_BX_DEV0_EPF0_VF0_MAILBOX_MSGBUF_TRN_DW1_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF0_MAILBOX_MSGBUF_TRN_DW2 0x0138
+#define regBIF_BX_DEV0_EPF0_VF0_MAILBOX_MSGBUF_TRN_DW2_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF0_MAILBOX_MSGBUF_TRN_DW3 0x0139
+#define regBIF_BX_DEV0_EPF0_VF0_MAILBOX_MSGBUF_TRN_DW3_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF0_MAILBOX_MSGBUF_RCV_DW0 0x013a
+#define regBIF_BX_DEV0_EPF0_VF0_MAILBOX_MSGBUF_RCV_DW0_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF0_MAILBOX_MSGBUF_RCV_DW1 0x013b
+#define regBIF_BX_DEV0_EPF0_VF0_MAILBOX_MSGBUF_RCV_DW1_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF0_MAILBOX_MSGBUF_RCV_DW2 0x013c
+#define regBIF_BX_DEV0_EPF0_VF0_MAILBOX_MSGBUF_RCV_DW2_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF0_MAILBOX_MSGBUF_RCV_DW3 0x013d
+#define regBIF_BX_DEV0_EPF0_VF0_MAILBOX_MSGBUF_RCV_DW3_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF0_MAILBOX_CONTROL 0x013e
+#define regBIF_BX_DEV0_EPF0_VF0_MAILBOX_CONTROL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF0_MAILBOX_INT_CNTL 0x013f
+#define regBIF_BX_DEV0_EPF0_VF0_MAILBOX_INT_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF0_BIF_VMHV_MAILBOX 0x0140
+#define regBIF_BX_DEV0_EPF0_VF0_BIF_VMHV_MAILBOX_BASE_IDX 2
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_dev0_epf0_vf0_SYSPFVFDEC
+// base address: 0x0
+#define regBIF_BX_DEV0_EPF0_VF0_MM_INDEX 0x0000
+#define regBIF_BX_DEV0_EPF0_VF0_MM_INDEX_BASE_IDX 0
+#define regBIF_BX_DEV0_EPF0_VF0_MM_DATA 0x0001
+#define regBIF_BX_DEV0_EPF0_VF0_MM_DATA_BASE_IDX 0
+#define regBIF_BX_DEV0_EPF0_VF0_MM_INDEX_HI 0x0006
+#define regBIF_BX_DEV0_EPF0_VF0_MM_INDEX_HI_BASE_IDX 0
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dev0_epf0_vf0_BIFPFVFDEC1
+// base address: 0x0
+#define regRCC_DEV0_EPF0_VF0_RCC_ERR_LOG 0x0085
+#define regRCC_DEV0_EPF0_VF0_RCC_ERR_LOG_BASE_IDX 2
+#define regRCC_DEV0_EPF0_VF0_RCC_DOORBELL_APER_EN 0x00c0
+#define regRCC_DEV0_EPF0_VF0_RCC_DOORBELL_APER_EN_BASE_IDX 2
+#define regRCC_DEV0_EPF0_VF0_RCC_CONFIG_MEMSIZE 0x00c3
+#define regRCC_DEV0_EPF0_VF0_RCC_CONFIG_MEMSIZE_BASE_IDX 2
+#define regRCC_DEV0_EPF0_VF0_RCC_CONFIG_RESERVED 0x00c4
+#define regRCC_DEV0_EPF0_VF0_RCC_CONFIG_RESERVED_BASE_IDX 2
+#define regRCC_DEV0_EPF0_VF0_RCC_IOV_FUNC_IDENTIFIER 0x00c5
+#define regRCC_DEV0_EPF0_VF0_RCC_IOV_FUNC_IDENTIFIER_BASE_IDX 2
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dev0_epf0_vf0_BIFDEC2
+// base address: 0x0
+#define regRCC_DEV0_EPF0_VF0_GFXMSIX_VECT0_ADDR_LO 0x0400
+#define regRCC_DEV0_EPF0_VF0_GFXMSIX_VECT0_ADDR_LO_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF0_GFXMSIX_VECT0_ADDR_HI 0x0401
+#define regRCC_DEV0_EPF0_VF0_GFXMSIX_VECT0_ADDR_HI_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF0_GFXMSIX_VECT0_MSG_DATA 0x0402
+#define regRCC_DEV0_EPF0_VF0_GFXMSIX_VECT0_MSG_DATA_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF0_GFXMSIX_VECT0_CONTROL 0x0403
+#define regRCC_DEV0_EPF0_VF0_GFXMSIX_VECT0_CONTROL_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF0_GFXMSIX_VECT1_ADDR_LO 0x0404
+#define regRCC_DEV0_EPF0_VF0_GFXMSIX_VECT1_ADDR_LO_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF0_GFXMSIX_VECT1_ADDR_HI 0x0405
+#define regRCC_DEV0_EPF0_VF0_GFXMSIX_VECT1_ADDR_HI_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF0_GFXMSIX_VECT1_MSG_DATA 0x0406
+#define regRCC_DEV0_EPF0_VF0_GFXMSIX_VECT1_MSG_DATA_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF0_GFXMSIX_VECT1_CONTROL 0x0407
+#define regRCC_DEV0_EPF0_VF0_GFXMSIX_VECT1_CONTROL_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF0_GFXMSIX_VECT2_ADDR_LO 0x0408
+#define regRCC_DEV0_EPF0_VF0_GFXMSIX_VECT2_ADDR_LO_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF0_GFXMSIX_VECT2_ADDR_HI 0x0409
+#define regRCC_DEV0_EPF0_VF0_GFXMSIX_VECT2_ADDR_HI_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF0_GFXMSIX_VECT2_MSG_DATA 0x040a
+#define regRCC_DEV0_EPF0_VF0_GFXMSIX_VECT2_MSG_DATA_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF0_GFXMSIX_VECT2_CONTROL 0x040b
+#define regRCC_DEV0_EPF0_VF0_GFXMSIX_VECT2_CONTROL_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF0_GFXMSIX_VECT3_ADDR_LO 0x040c
+#define regRCC_DEV0_EPF0_VF0_GFXMSIX_VECT3_ADDR_LO_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF0_GFXMSIX_VECT3_ADDR_HI 0x040d
+#define regRCC_DEV0_EPF0_VF0_GFXMSIX_VECT3_ADDR_HI_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF0_GFXMSIX_VECT3_MSG_DATA 0x040e
+#define regRCC_DEV0_EPF0_VF0_GFXMSIX_VECT3_MSG_DATA_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF0_GFXMSIX_VECT3_CONTROL 0x040f
+#define regRCC_DEV0_EPF0_VF0_GFXMSIX_VECT3_CONTROL_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF0_GFXMSIX_PBA 0x0800
+#define regRCC_DEV0_EPF0_VF0_GFXMSIX_PBA_BASE_IDX 4
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_dev0_epf0_vf1_BIFPFVFDEC1
+// base address: 0x0
+#define regBIF_BX_DEV0_EPF0_VF1_BIF_BME_STATUS 0x00eb
+#define regBIF_BX_DEV0_EPF0_VF1_BIF_BME_STATUS_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF1_BIF_ATOMIC_ERR_LOG 0x00ec
+#define regBIF_BX_DEV0_EPF0_VF1_BIF_ATOMIC_ERR_LOG_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF1_DOORBELL_SELFRING_GPA_APER_BASE_HIGH 0x00f3
+#define regBIF_BX_DEV0_EPF0_VF1_DOORBELL_SELFRING_GPA_APER_BASE_HIGH_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF1_DOORBELL_SELFRING_GPA_APER_BASE_LOW 0x00f4
+#define regBIF_BX_DEV0_EPF0_VF1_DOORBELL_SELFRING_GPA_APER_BASE_LOW_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF1_DOORBELL_SELFRING_GPA_APER_CNTL 0x00f5
+#define regBIF_BX_DEV0_EPF0_VF1_DOORBELL_SELFRING_GPA_APER_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF1_HDP_REG_COHERENCY_FLUSH_CNTL 0x00f6
+#define regBIF_BX_DEV0_EPF0_VF1_HDP_REG_COHERENCY_FLUSH_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF1_HDP_MEM_COHERENCY_FLUSH_CNTL 0x00f7
+#define regBIF_BX_DEV0_EPF0_VF1_HDP_MEM_COHERENCY_FLUSH_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF1_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL 0x00f9
+#define regBIF_BX_DEV0_EPF0_VF1_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF1_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL 0x00fa
+#define regBIF_BX_DEV0_EPF0_VF1_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ 0x0106
+#define regBIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE 0x0107
+#define regBIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF1_BIF_TRANS_PENDING 0x0108
+#define regBIF_BX_DEV0_EPF0_VF1_BIF_TRANS_PENDING_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF1_NBIF_GFX_ADDR_LUT_BYPASS 0x0112
+#define regBIF_BX_DEV0_EPF0_VF1_NBIF_GFX_ADDR_LUT_BYPASS_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF1_MAILBOX_MSGBUF_TRN_DW0 0x0136
+#define regBIF_BX_DEV0_EPF0_VF1_MAILBOX_MSGBUF_TRN_DW0_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF1_MAILBOX_MSGBUF_TRN_DW1 0x0137
+#define regBIF_BX_DEV0_EPF0_VF1_MAILBOX_MSGBUF_TRN_DW1_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF1_MAILBOX_MSGBUF_TRN_DW2 0x0138
+#define regBIF_BX_DEV0_EPF0_VF1_MAILBOX_MSGBUF_TRN_DW2_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF1_MAILBOX_MSGBUF_TRN_DW3 0x0139
+#define regBIF_BX_DEV0_EPF0_VF1_MAILBOX_MSGBUF_TRN_DW3_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF1_MAILBOX_MSGBUF_RCV_DW0 0x013a
+#define regBIF_BX_DEV0_EPF0_VF1_MAILBOX_MSGBUF_RCV_DW0_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF1_MAILBOX_MSGBUF_RCV_DW1 0x013b
+#define regBIF_BX_DEV0_EPF0_VF1_MAILBOX_MSGBUF_RCV_DW1_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF1_MAILBOX_MSGBUF_RCV_DW2 0x013c
+#define regBIF_BX_DEV0_EPF0_VF1_MAILBOX_MSGBUF_RCV_DW2_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF1_MAILBOX_MSGBUF_RCV_DW3 0x013d
+#define regBIF_BX_DEV0_EPF0_VF1_MAILBOX_MSGBUF_RCV_DW3_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF1_MAILBOX_CONTROL 0x013e
+#define regBIF_BX_DEV0_EPF0_VF1_MAILBOX_CONTROL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF1_MAILBOX_INT_CNTL 0x013f
+#define regBIF_BX_DEV0_EPF0_VF1_MAILBOX_INT_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF1_BIF_VMHV_MAILBOX 0x0140
+#define regBIF_BX_DEV0_EPF0_VF1_BIF_VMHV_MAILBOX_BASE_IDX 2
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_dev0_epf0_vf1_SYSPFVFDEC
+// base address: 0x0
+#define regBIF_BX_DEV0_EPF0_VF1_MM_INDEX 0x0000
+#define regBIF_BX_DEV0_EPF0_VF1_MM_INDEX_BASE_IDX 0
+#define regBIF_BX_DEV0_EPF0_VF1_MM_DATA 0x0001
+#define regBIF_BX_DEV0_EPF0_VF1_MM_DATA_BASE_IDX 0
+#define regBIF_BX_DEV0_EPF0_VF1_MM_INDEX_HI 0x0006
+#define regBIF_BX_DEV0_EPF0_VF1_MM_INDEX_HI_BASE_IDX 0
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dev0_epf0_vf1_BIFPFVFDEC1
+// base address: 0x0
+#define regRCC_DEV0_EPF0_VF1_RCC_ERR_LOG 0x0085
+#define regRCC_DEV0_EPF0_VF1_RCC_ERR_LOG_BASE_IDX 2
+#define regRCC_DEV0_EPF0_VF1_RCC_DOORBELL_APER_EN 0x00c0
+#define regRCC_DEV0_EPF0_VF1_RCC_DOORBELL_APER_EN_BASE_IDX 2
+#define regRCC_DEV0_EPF0_VF1_RCC_CONFIG_MEMSIZE 0x00c3
+#define regRCC_DEV0_EPF0_VF1_RCC_CONFIG_MEMSIZE_BASE_IDX 2
+#define regRCC_DEV0_EPF0_VF1_RCC_CONFIG_RESERVED 0x00c4
+#define regRCC_DEV0_EPF0_VF1_RCC_CONFIG_RESERVED_BASE_IDX 2
+#define regRCC_DEV0_EPF0_VF1_RCC_IOV_FUNC_IDENTIFIER 0x00c5
+#define regRCC_DEV0_EPF0_VF1_RCC_IOV_FUNC_IDENTIFIER_BASE_IDX 2
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dev0_epf0_vf1_BIFDEC2
+// base address: 0x0
+#define regRCC_DEV0_EPF0_VF1_GFXMSIX_VECT0_ADDR_LO 0x0400
+#define regRCC_DEV0_EPF0_VF1_GFXMSIX_VECT0_ADDR_LO_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF1_GFXMSIX_VECT0_ADDR_HI 0x0401
+#define regRCC_DEV0_EPF0_VF1_GFXMSIX_VECT0_ADDR_HI_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF1_GFXMSIX_VECT0_MSG_DATA 0x0402
+#define regRCC_DEV0_EPF0_VF1_GFXMSIX_VECT0_MSG_DATA_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF1_GFXMSIX_VECT0_CONTROL 0x0403
+#define regRCC_DEV0_EPF0_VF1_GFXMSIX_VECT0_CONTROL_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF1_GFXMSIX_VECT1_ADDR_LO 0x0404
+#define regRCC_DEV0_EPF0_VF1_GFXMSIX_VECT1_ADDR_LO_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF1_GFXMSIX_VECT1_ADDR_HI 0x0405
+#define regRCC_DEV0_EPF0_VF1_GFXMSIX_VECT1_ADDR_HI_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF1_GFXMSIX_VECT1_MSG_DATA 0x0406
+#define regRCC_DEV0_EPF0_VF1_GFXMSIX_VECT1_MSG_DATA_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF1_GFXMSIX_VECT1_CONTROL 0x0407
+#define regRCC_DEV0_EPF0_VF1_GFXMSIX_VECT1_CONTROL_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF1_GFXMSIX_VECT2_ADDR_LO 0x0408
+#define regRCC_DEV0_EPF0_VF1_GFXMSIX_VECT2_ADDR_LO_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF1_GFXMSIX_VECT2_ADDR_HI 0x0409
+#define regRCC_DEV0_EPF0_VF1_GFXMSIX_VECT2_ADDR_HI_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF1_GFXMSIX_VECT2_MSG_DATA 0x040a
+#define regRCC_DEV0_EPF0_VF1_GFXMSIX_VECT2_MSG_DATA_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF1_GFXMSIX_VECT2_CONTROL 0x040b
+#define regRCC_DEV0_EPF0_VF1_GFXMSIX_VECT2_CONTROL_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF1_GFXMSIX_VECT3_ADDR_LO 0x040c
+#define regRCC_DEV0_EPF0_VF1_GFXMSIX_VECT3_ADDR_LO_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF1_GFXMSIX_VECT3_ADDR_HI 0x040d
+#define regRCC_DEV0_EPF0_VF1_GFXMSIX_VECT3_ADDR_HI_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF1_GFXMSIX_VECT3_MSG_DATA 0x040e
+#define regRCC_DEV0_EPF0_VF1_GFXMSIX_VECT3_MSG_DATA_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF1_GFXMSIX_VECT3_CONTROL 0x040f
+#define regRCC_DEV0_EPF0_VF1_GFXMSIX_VECT3_CONTROL_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF1_GFXMSIX_PBA 0x0800
+#define regRCC_DEV0_EPF0_VF1_GFXMSIX_PBA_BASE_IDX 4
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_dev0_epf0_vf2_BIFPFVFDEC1
+// base address: 0x0
+#define regBIF_BX_DEV0_EPF0_VF2_BIF_BME_STATUS 0x00eb
+#define regBIF_BX_DEV0_EPF0_VF2_BIF_BME_STATUS_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF2_BIF_ATOMIC_ERR_LOG 0x00ec
+#define regBIF_BX_DEV0_EPF0_VF2_BIF_ATOMIC_ERR_LOG_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF2_DOORBELL_SELFRING_GPA_APER_BASE_HIGH 0x00f3
+#define regBIF_BX_DEV0_EPF0_VF2_DOORBELL_SELFRING_GPA_APER_BASE_HIGH_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF2_DOORBELL_SELFRING_GPA_APER_BASE_LOW 0x00f4
+#define regBIF_BX_DEV0_EPF0_VF2_DOORBELL_SELFRING_GPA_APER_BASE_LOW_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF2_DOORBELL_SELFRING_GPA_APER_CNTL 0x00f5
+#define regBIF_BX_DEV0_EPF0_VF2_DOORBELL_SELFRING_GPA_APER_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF2_HDP_REG_COHERENCY_FLUSH_CNTL 0x00f6
+#define regBIF_BX_DEV0_EPF0_VF2_HDP_REG_COHERENCY_FLUSH_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF2_HDP_MEM_COHERENCY_FLUSH_CNTL 0x00f7
+#define regBIF_BX_DEV0_EPF0_VF2_HDP_MEM_COHERENCY_FLUSH_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF2_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL 0x00f9
+#define regBIF_BX_DEV0_EPF0_VF2_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF2_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL 0x00fa
+#define regBIF_BX_DEV0_EPF0_VF2_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ 0x0106
+#define regBIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE 0x0107
+#define regBIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF2_BIF_TRANS_PENDING 0x0108
+#define regBIF_BX_DEV0_EPF0_VF2_BIF_TRANS_PENDING_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF2_NBIF_GFX_ADDR_LUT_BYPASS 0x0112
+#define regBIF_BX_DEV0_EPF0_VF2_NBIF_GFX_ADDR_LUT_BYPASS_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF2_MAILBOX_MSGBUF_TRN_DW0 0x0136
+#define regBIF_BX_DEV0_EPF0_VF2_MAILBOX_MSGBUF_TRN_DW0_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF2_MAILBOX_MSGBUF_TRN_DW1 0x0137
+#define regBIF_BX_DEV0_EPF0_VF2_MAILBOX_MSGBUF_TRN_DW1_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF2_MAILBOX_MSGBUF_TRN_DW2 0x0138
+#define regBIF_BX_DEV0_EPF0_VF2_MAILBOX_MSGBUF_TRN_DW2_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF2_MAILBOX_MSGBUF_TRN_DW3 0x0139
+#define regBIF_BX_DEV0_EPF0_VF2_MAILBOX_MSGBUF_TRN_DW3_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF2_MAILBOX_MSGBUF_RCV_DW0 0x013a
+#define regBIF_BX_DEV0_EPF0_VF2_MAILBOX_MSGBUF_RCV_DW0_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF2_MAILBOX_MSGBUF_RCV_DW1 0x013b
+#define regBIF_BX_DEV0_EPF0_VF2_MAILBOX_MSGBUF_RCV_DW1_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF2_MAILBOX_MSGBUF_RCV_DW2 0x013c
+#define regBIF_BX_DEV0_EPF0_VF2_MAILBOX_MSGBUF_RCV_DW2_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF2_MAILBOX_MSGBUF_RCV_DW3 0x013d
+#define regBIF_BX_DEV0_EPF0_VF2_MAILBOX_MSGBUF_RCV_DW3_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF2_MAILBOX_CONTROL 0x013e
+#define regBIF_BX_DEV0_EPF0_VF2_MAILBOX_CONTROL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF2_MAILBOX_INT_CNTL 0x013f
+#define regBIF_BX_DEV0_EPF0_VF2_MAILBOX_INT_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF2_BIF_VMHV_MAILBOX 0x0140
+#define regBIF_BX_DEV0_EPF0_VF2_BIF_VMHV_MAILBOX_BASE_IDX 2
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_dev0_epf0_vf2_SYSPFVFDEC
+// base address: 0x0
+#define regBIF_BX_DEV0_EPF0_VF2_MM_INDEX 0x0000
+#define regBIF_BX_DEV0_EPF0_VF2_MM_INDEX_BASE_IDX 0
+#define regBIF_BX_DEV0_EPF0_VF2_MM_DATA 0x0001
+#define regBIF_BX_DEV0_EPF0_VF2_MM_DATA_BASE_IDX 0
+#define regBIF_BX_DEV0_EPF0_VF2_MM_INDEX_HI 0x0006
+#define regBIF_BX_DEV0_EPF0_VF2_MM_INDEX_HI_BASE_IDX 0
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dev0_epf0_vf2_BIFPFVFDEC1
+// base address: 0x0
+#define regRCC_DEV0_EPF0_VF2_RCC_ERR_LOG 0x0085
+#define regRCC_DEV0_EPF0_VF2_RCC_ERR_LOG_BASE_IDX 2
+#define regRCC_DEV0_EPF0_VF2_RCC_DOORBELL_APER_EN 0x00c0
+#define regRCC_DEV0_EPF0_VF2_RCC_DOORBELL_APER_EN_BASE_IDX 2
+#define regRCC_DEV0_EPF0_VF2_RCC_CONFIG_MEMSIZE 0x00c3
+#define regRCC_DEV0_EPF0_VF2_RCC_CONFIG_MEMSIZE_BASE_IDX 2
+#define regRCC_DEV0_EPF0_VF2_RCC_CONFIG_RESERVED 0x00c4
+#define regRCC_DEV0_EPF0_VF2_RCC_CONFIG_RESERVED_BASE_IDX 2
+#define regRCC_DEV0_EPF0_VF2_RCC_IOV_FUNC_IDENTIFIER 0x00c5
+#define regRCC_DEV0_EPF0_VF2_RCC_IOV_FUNC_IDENTIFIER_BASE_IDX 2
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dev0_epf0_vf2_BIFDEC2
+// base address: 0x0
+#define regRCC_DEV0_EPF0_VF2_GFXMSIX_VECT0_ADDR_LO 0x0400
+#define regRCC_DEV0_EPF0_VF2_GFXMSIX_VECT0_ADDR_LO_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF2_GFXMSIX_VECT0_ADDR_HI 0x0401
+#define regRCC_DEV0_EPF0_VF2_GFXMSIX_VECT0_ADDR_HI_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF2_GFXMSIX_VECT0_MSG_DATA 0x0402
+#define regRCC_DEV0_EPF0_VF2_GFXMSIX_VECT0_MSG_DATA_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF2_GFXMSIX_VECT0_CONTROL 0x0403
+#define regRCC_DEV0_EPF0_VF2_GFXMSIX_VECT0_CONTROL_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF2_GFXMSIX_VECT1_ADDR_LO 0x0404
+#define regRCC_DEV0_EPF0_VF2_GFXMSIX_VECT1_ADDR_LO_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF2_GFXMSIX_VECT1_ADDR_HI 0x0405
+#define regRCC_DEV0_EPF0_VF2_GFXMSIX_VECT1_ADDR_HI_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF2_GFXMSIX_VECT1_MSG_DATA 0x0406
+#define regRCC_DEV0_EPF0_VF2_GFXMSIX_VECT1_MSG_DATA_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF2_GFXMSIX_VECT1_CONTROL 0x0407
+#define regRCC_DEV0_EPF0_VF2_GFXMSIX_VECT1_CONTROL_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF2_GFXMSIX_VECT2_ADDR_LO 0x0408
+#define regRCC_DEV0_EPF0_VF2_GFXMSIX_VECT2_ADDR_LO_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF2_GFXMSIX_VECT2_ADDR_HI 0x0409
+#define regRCC_DEV0_EPF0_VF2_GFXMSIX_VECT2_ADDR_HI_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF2_GFXMSIX_VECT2_MSG_DATA 0x040a
+#define regRCC_DEV0_EPF0_VF2_GFXMSIX_VECT2_MSG_DATA_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF2_GFXMSIX_VECT2_CONTROL 0x040b
+#define regRCC_DEV0_EPF0_VF2_GFXMSIX_VECT2_CONTROL_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF2_GFXMSIX_VECT3_ADDR_LO 0x040c
+#define regRCC_DEV0_EPF0_VF2_GFXMSIX_VECT3_ADDR_LO_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF2_GFXMSIX_VECT3_ADDR_HI 0x040d
+#define regRCC_DEV0_EPF0_VF2_GFXMSIX_VECT3_ADDR_HI_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF2_GFXMSIX_VECT3_MSG_DATA 0x040e
+#define regRCC_DEV0_EPF0_VF2_GFXMSIX_VECT3_MSG_DATA_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF2_GFXMSIX_VECT3_CONTROL 0x040f
+#define regRCC_DEV0_EPF0_VF2_GFXMSIX_VECT3_CONTROL_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF2_GFXMSIX_PBA 0x0800
+#define regRCC_DEV0_EPF0_VF2_GFXMSIX_PBA_BASE_IDX 4
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_dev0_epf0_vf3_BIFPFVFDEC1
+// base address: 0x0
+#define regBIF_BX_DEV0_EPF0_VF3_BIF_BME_STATUS 0x00eb
+#define regBIF_BX_DEV0_EPF0_VF3_BIF_BME_STATUS_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF3_BIF_ATOMIC_ERR_LOG 0x00ec
+#define regBIF_BX_DEV0_EPF0_VF3_BIF_ATOMIC_ERR_LOG_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF3_DOORBELL_SELFRING_GPA_APER_BASE_HIGH 0x00f3
+#define regBIF_BX_DEV0_EPF0_VF3_DOORBELL_SELFRING_GPA_APER_BASE_HIGH_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF3_DOORBELL_SELFRING_GPA_APER_BASE_LOW 0x00f4
+#define regBIF_BX_DEV0_EPF0_VF3_DOORBELL_SELFRING_GPA_APER_BASE_LOW_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF3_DOORBELL_SELFRING_GPA_APER_CNTL 0x00f5
+#define regBIF_BX_DEV0_EPF0_VF3_DOORBELL_SELFRING_GPA_APER_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF3_HDP_REG_COHERENCY_FLUSH_CNTL 0x00f6
+#define regBIF_BX_DEV0_EPF0_VF3_HDP_REG_COHERENCY_FLUSH_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF3_HDP_MEM_COHERENCY_FLUSH_CNTL 0x00f7
+#define regBIF_BX_DEV0_EPF0_VF3_HDP_MEM_COHERENCY_FLUSH_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF3_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL 0x00f9
+#define regBIF_BX_DEV0_EPF0_VF3_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF3_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL 0x00fa
+#define regBIF_BX_DEV0_EPF0_VF3_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ 0x0106
+#define regBIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE 0x0107
+#define regBIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF3_BIF_TRANS_PENDING 0x0108
+#define regBIF_BX_DEV0_EPF0_VF3_BIF_TRANS_PENDING_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF3_NBIF_GFX_ADDR_LUT_BYPASS 0x0112
+#define regBIF_BX_DEV0_EPF0_VF3_NBIF_GFX_ADDR_LUT_BYPASS_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF3_MAILBOX_MSGBUF_TRN_DW0 0x0136
+#define regBIF_BX_DEV0_EPF0_VF3_MAILBOX_MSGBUF_TRN_DW0_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF3_MAILBOX_MSGBUF_TRN_DW1 0x0137
+#define regBIF_BX_DEV0_EPF0_VF3_MAILBOX_MSGBUF_TRN_DW1_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF3_MAILBOX_MSGBUF_TRN_DW2 0x0138
+#define regBIF_BX_DEV0_EPF0_VF3_MAILBOX_MSGBUF_TRN_DW2_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF3_MAILBOX_MSGBUF_TRN_DW3 0x0139
+#define regBIF_BX_DEV0_EPF0_VF3_MAILBOX_MSGBUF_TRN_DW3_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF3_MAILBOX_MSGBUF_RCV_DW0 0x013a
+#define regBIF_BX_DEV0_EPF0_VF3_MAILBOX_MSGBUF_RCV_DW0_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF3_MAILBOX_MSGBUF_RCV_DW1 0x013b
+#define regBIF_BX_DEV0_EPF0_VF3_MAILBOX_MSGBUF_RCV_DW1_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF3_MAILBOX_MSGBUF_RCV_DW2 0x013c
+#define regBIF_BX_DEV0_EPF0_VF3_MAILBOX_MSGBUF_RCV_DW2_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF3_MAILBOX_MSGBUF_RCV_DW3 0x013d
+#define regBIF_BX_DEV0_EPF0_VF3_MAILBOX_MSGBUF_RCV_DW3_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF3_MAILBOX_CONTROL 0x013e
+#define regBIF_BX_DEV0_EPF0_VF3_MAILBOX_CONTROL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF3_MAILBOX_INT_CNTL 0x013f
+#define regBIF_BX_DEV0_EPF0_VF3_MAILBOX_INT_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF3_BIF_VMHV_MAILBOX 0x0140
+#define regBIF_BX_DEV0_EPF0_VF3_BIF_VMHV_MAILBOX_BASE_IDX 2
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_dev0_epf0_vf3_SYSPFVFDEC
+// base address: 0x0
+#define regBIF_BX_DEV0_EPF0_VF3_MM_INDEX 0x0000
+#define regBIF_BX_DEV0_EPF0_VF3_MM_INDEX_BASE_IDX 0
+#define regBIF_BX_DEV0_EPF0_VF3_MM_DATA 0x0001
+#define regBIF_BX_DEV0_EPF0_VF3_MM_DATA_BASE_IDX 0
+#define regBIF_BX_DEV0_EPF0_VF3_MM_INDEX_HI 0x0006
+#define regBIF_BX_DEV0_EPF0_VF3_MM_INDEX_HI_BASE_IDX 0
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dev0_epf0_vf3_BIFPFVFDEC1
+// base address: 0x0
+#define regRCC_DEV0_EPF0_VF3_RCC_ERR_LOG 0x0085
+#define regRCC_DEV0_EPF0_VF3_RCC_ERR_LOG_BASE_IDX 2
+#define regRCC_DEV0_EPF0_VF3_RCC_DOORBELL_APER_EN 0x00c0
+#define regRCC_DEV0_EPF0_VF3_RCC_DOORBELL_APER_EN_BASE_IDX 2
+#define regRCC_DEV0_EPF0_VF3_RCC_CONFIG_MEMSIZE 0x00c3
+#define regRCC_DEV0_EPF0_VF3_RCC_CONFIG_MEMSIZE_BASE_IDX 2
+#define regRCC_DEV0_EPF0_VF3_RCC_CONFIG_RESERVED 0x00c4
+#define regRCC_DEV0_EPF0_VF3_RCC_CONFIG_RESERVED_BASE_IDX 2
+#define regRCC_DEV0_EPF0_VF3_RCC_IOV_FUNC_IDENTIFIER 0x00c5
+#define regRCC_DEV0_EPF0_VF3_RCC_IOV_FUNC_IDENTIFIER_BASE_IDX 2
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dev0_epf0_vf3_BIFDEC2
+// base address: 0x0
+#define regRCC_DEV0_EPF0_VF3_GFXMSIX_VECT0_ADDR_LO 0x0400
+#define regRCC_DEV0_EPF0_VF3_GFXMSIX_VECT0_ADDR_LO_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF3_GFXMSIX_VECT0_ADDR_HI 0x0401
+#define regRCC_DEV0_EPF0_VF3_GFXMSIX_VECT0_ADDR_HI_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF3_GFXMSIX_VECT0_MSG_DATA 0x0402
+#define regRCC_DEV0_EPF0_VF3_GFXMSIX_VECT0_MSG_DATA_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF3_GFXMSIX_VECT0_CONTROL 0x0403
+#define regRCC_DEV0_EPF0_VF3_GFXMSIX_VECT0_CONTROL_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF3_GFXMSIX_VECT1_ADDR_LO 0x0404
+#define regRCC_DEV0_EPF0_VF3_GFXMSIX_VECT1_ADDR_LO_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF3_GFXMSIX_VECT1_ADDR_HI 0x0405
+#define regRCC_DEV0_EPF0_VF3_GFXMSIX_VECT1_ADDR_HI_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF3_GFXMSIX_VECT1_MSG_DATA 0x0406
+#define regRCC_DEV0_EPF0_VF3_GFXMSIX_VECT1_MSG_DATA_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF3_GFXMSIX_VECT1_CONTROL 0x0407
+#define regRCC_DEV0_EPF0_VF3_GFXMSIX_VECT1_CONTROL_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF3_GFXMSIX_VECT2_ADDR_LO 0x0408
+#define regRCC_DEV0_EPF0_VF3_GFXMSIX_VECT2_ADDR_LO_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF3_GFXMSIX_VECT2_ADDR_HI 0x0409
+#define regRCC_DEV0_EPF0_VF3_GFXMSIX_VECT2_ADDR_HI_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF3_GFXMSIX_VECT2_MSG_DATA 0x040a
+#define regRCC_DEV0_EPF0_VF3_GFXMSIX_VECT2_MSG_DATA_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF3_GFXMSIX_VECT2_CONTROL 0x040b
+#define regRCC_DEV0_EPF0_VF3_GFXMSIX_VECT2_CONTROL_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF3_GFXMSIX_VECT3_ADDR_LO 0x040c
+#define regRCC_DEV0_EPF0_VF3_GFXMSIX_VECT3_ADDR_LO_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF3_GFXMSIX_VECT3_ADDR_HI 0x040d
+#define regRCC_DEV0_EPF0_VF3_GFXMSIX_VECT3_ADDR_HI_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF3_GFXMSIX_VECT3_MSG_DATA 0x040e
+#define regRCC_DEV0_EPF0_VF3_GFXMSIX_VECT3_MSG_DATA_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF3_GFXMSIX_VECT3_CONTROL 0x040f
+#define regRCC_DEV0_EPF0_VF3_GFXMSIX_VECT3_CONTROL_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF3_GFXMSIX_PBA 0x0800
+#define regRCC_DEV0_EPF0_VF3_GFXMSIX_PBA_BASE_IDX 4
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_dev0_epf0_vf4_BIFPFVFDEC1
+// base address: 0x0
+#define regBIF_BX_DEV0_EPF0_VF4_BIF_BME_STATUS 0x00eb
+#define regBIF_BX_DEV0_EPF0_VF4_BIF_BME_STATUS_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF4_BIF_ATOMIC_ERR_LOG 0x00ec
+#define regBIF_BX_DEV0_EPF0_VF4_BIF_ATOMIC_ERR_LOG_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF4_DOORBELL_SELFRING_GPA_APER_BASE_HIGH 0x00f3
+#define regBIF_BX_DEV0_EPF0_VF4_DOORBELL_SELFRING_GPA_APER_BASE_HIGH_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF4_DOORBELL_SELFRING_GPA_APER_BASE_LOW 0x00f4
+#define regBIF_BX_DEV0_EPF0_VF4_DOORBELL_SELFRING_GPA_APER_BASE_LOW_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF4_DOORBELL_SELFRING_GPA_APER_CNTL 0x00f5
+#define regBIF_BX_DEV0_EPF0_VF4_DOORBELL_SELFRING_GPA_APER_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF4_HDP_REG_COHERENCY_FLUSH_CNTL 0x00f6
+#define regBIF_BX_DEV0_EPF0_VF4_HDP_REG_COHERENCY_FLUSH_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF4_HDP_MEM_COHERENCY_FLUSH_CNTL 0x00f7
+#define regBIF_BX_DEV0_EPF0_VF4_HDP_MEM_COHERENCY_FLUSH_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF4_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL 0x00f9
+#define regBIF_BX_DEV0_EPF0_VF4_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF4_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL 0x00fa
+#define regBIF_BX_DEV0_EPF0_VF4_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ 0x0106
+#define regBIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE 0x0107
+#define regBIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF4_BIF_TRANS_PENDING 0x0108
+#define regBIF_BX_DEV0_EPF0_VF4_BIF_TRANS_PENDING_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF4_NBIF_GFX_ADDR_LUT_BYPASS 0x0112
+#define regBIF_BX_DEV0_EPF0_VF4_NBIF_GFX_ADDR_LUT_BYPASS_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF4_MAILBOX_MSGBUF_TRN_DW0 0x0136
+#define regBIF_BX_DEV0_EPF0_VF4_MAILBOX_MSGBUF_TRN_DW0_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF4_MAILBOX_MSGBUF_TRN_DW1 0x0137
+#define regBIF_BX_DEV0_EPF0_VF4_MAILBOX_MSGBUF_TRN_DW1_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF4_MAILBOX_MSGBUF_TRN_DW2 0x0138
+#define regBIF_BX_DEV0_EPF0_VF4_MAILBOX_MSGBUF_TRN_DW2_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF4_MAILBOX_MSGBUF_TRN_DW3 0x0139
+#define regBIF_BX_DEV0_EPF0_VF4_MAILBOX_MSGBUF_TRN_DW3_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF4_MAILBOX_MSGBUF_RCV_DW0 0x013a
+#define regBIF_BX_DEV0_EPF0_VF4_MAILBOX_MSGBUF_RCV_DW0_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF4_MAILBOX_MSGBUF_RCV_DW1 0x013b
+#define regBIF_BX_DEV0_EPF0_VF4_MAILBOX_MSGBUF_RCV_DW1_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF4_MAILBOX_MSGBUF_RCV_DW2 0x013c
+#define regBIF_BX_DEV0_EPF0_VF4_MAILBOX_MSGBUF_RCV_DW2_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF4_MAILBOX_MSGBUF_RCV_DW3 0x013d
+#define regBIF_BX_DEV0_EPF0_VF4_MAILBOX_MSGBUF_RCV_DW3_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF4_MAILBOX_CONTROL 0x013e
+#define regBIF_BX_DEV0_EPF0_VF4_MAILBOX_CONTROL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF4_MAILBOX_INT_CNTL 0x013f
+#define regBIF_BX_DEV0_EPF0_VF4_MAILBOX_INT_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF4_BIF_VMHV_MAILBOX 0x0140
+#define regBIF_BX_DEV0_EPF0_VF4_BIF_VMHV_MAILBOX_BASE_IDX 2
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_dev0_epf0_vf4_SYSPFVFDEC
+// base address: 0x0
+#define regBIF_BX_DEV0_EPF0_VF4_MM_INDEX 0x0000
+#define regBIF_BX_DEV0_EPF0_VF4_MM_INDEX_BASE_IDX 0
+#define regBIF_BX_DEV0_EPF0_VF4_MM_DATA 0x0001
+#define regBIF_BX_DEV0_EPF0_VF4_MM_DATA_BASE_IDX 0
+#define regBIF_BX_DEV0_EPF0_VF4_MM_INDEX_HI 0x0006
+#define regBIF_BX_DEV0_EPF0_VF4_MM_INDEX_HI_BASE_IDX 0
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dev0_epf0_vf4_BIFPFVFDEC1
+// base address: 0x0
+#define regRCC_DEV0_EPF0_VF4_RCC_ERR_LOG 0x0085
+#define regRCC_DEV0_EPF0_VF4_RCC_ERR_LOG_BASE_IDX 2
+#define regRCC_DEV0_EPF0_VF4_RCC_DOORBELL_APER_EN 0x00c0
+#define regRCC_DEV0_EPF0_VF4_RCC_DOORBELL_APER_EN_BASE_IDX 2
+#define regRCC_DEV0_EPF0_VF4_RCC_CONFIG_MEMSIZE 0x00c3
+#define regRCC_DEV0_EPF0_VF4_RCC_CONFIG_MEMSIZE_BASE_IDX 2
+#define regRCC_DEV0_EPF0_VF4_RCC_CONFIG_RESERVED 0x00c4
+#define regRCC_DEV0_EPF0_VF4_RCC_CONFIG_RESERVED_BASE_IDX 2
+#define regRCC_DEV0_EPF0_VF4_RCC_IOV_FUNC_IDENTIFIER 0x00c5
+#define regRCC_DEV0_EPF0_VF4_RCC_IOV_FUNC_IDENTIFIER_BASE_IDX 2
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dev0_epf0_vf4_BIFDEC2
+// base address: 0x0
+#define regRCC_DEV0_EPF0_VF4_GFXMSIX_VECT0_ADDR_LO 0x0400
+#define regRCC_DEV0_EPF0_VF4_GFXMSIX_VECT0_ADDR_LO_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF4_GFXMSIX_VECT0_ADDR_HI 0x0401
+#define regRCC_DEV0_EPF0_VF4_GFXMSIX_VECT0_ADDR_HI_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF4_GFXMSIX_VECT0_MSG_DATA 0x0402
+#define regRCC_DEV0_EPF0_VF4_GFXMSIX_VECT0_MSG_DATA_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF4_GFXMSIX_VECT0_CONTROL 0x0403
+#define regRCC_DEV0_EPF0_VF4_GFXMSIX_VECT0_CONTROL_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF4_GFXMSIX_VECT1_ADDR_LO 0x0404
+#define regRCC_DEV0_EPF0_VF4_GFXMSIX_VECT1_ADDR_LO_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF4_GFXMSIX_VECT1_ADDR_HI 0x0405
+#define regRCC_DEV0_EPF0_VF4_GFXMSIX_VECT1_ADDR_HI_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF4_GFXMSIX_VECT1_MSG_DATA 0x0406
+#define regRCC_DEV0_EPF0_VF4_GFXMSIX_VECT1_MSG_DATA_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF4_GFXMSIX_VECT1_CONTROL 0x0407
+#define regRCC_DEV0_EPF0_VF4_GFXMSIX_VECT1_CONTROL_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF4_GFXMSIX_VECT2_ADDR_LO 0x0408
+#define regRCC_DEV0_EPF0_VF4_GFXMSIX_VECT2_ADDR_LO_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF4_GFXMSIX_VECT2_ADDR_HI 0x0409
+#define regRCC_DEV0_EPF0_VF4_GFXMSIX_VECT2_ADDR_HI_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF4_GFXMSIX_VECT2_MSG_DATA 0x040a
+#define regRCC_DEV0_EPF0_VF4_GFXMSIX_VECT2_MSG_DATA_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF4_GFXMSIX_VECT2_CONTROL 0x040b
+#define regRCC_DEV0_EPF0_VF4_GFXMSIX_VECT2_CONTROL_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF4_GFXMSIX_VECT3_ADDR_LO 0x040c
+#define regRCC_DEV0_EPF0_VF4_GFXMSIX_VECT3_ADDR_LO_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF4_GFXMSIX_VECT3_ADDR_HI 0x040d
+#define regRCC_DEV0_EPF0_VF4_GFXMSIX_VECT3_ADDR_HI_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF4_GFXMSIX_VECT3_MSG_DATA 0x040e
+#define regRCC_DEV0_EPF0_VF4_GFXMSIX_VECT3_MSG_DATA_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF4_GFXMSIX_VECT3_CONTROL 0x040f
+#define regRCC_DEV0_EPF0_VF4_GFXMSIX_VECT3_CONTROL_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF4_GFXMSIX_PBA 0x0800
+#define regRCC_DEV0_EPF0_VF4_GFXMSIX_PBA_BASE_IDX 4
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_dev0_epf0_vf5_BIFPFVFDEC1
+// base address: 0x0
+#define regBIF_BX_DEV0_EPF0_VF5_BIF_BME_STATUS 0x00eb
+#define regBIF_BX_DEV0_EPF0_VF5_BIF_BME_STATUS_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF5_BIF_ATOMIC_ERR_LOG 0x00ec
+#define regBIF_BX_DEV0_EPF0_VF5_BIF_ATOMIC_ERR_LOG_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF5_DOORBELL_SELFRING_GPA_APER_BASE_HIGH 0x00f3
+#define regBIF_BX_DEV0_EPF0_VF5_DOORBELL_SELFRING_GPA_APER_BASE_HIGH_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF5_DOORBELL_SELFRING_GPA_APER_BASE_LOW 0x00f4
+#define regBIF_BX_DEV0_EPF0_VF5_DOORBELL_SELFRING_GPA_APER_BASE_LOW_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF5_DOORBELL_SELFRING_GPA_APER_CNTL 0x00f5
+#define regBIF_BX_DEV0_EPF0_VF5_DOORBELL_SELFRING_GPA_APER_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF5_HDP_REG_COHERENCY_FLUSH_CNTL 0x00f6
+#define regBIF_BX_DEV0_EPF0_VF5_HDP_REG_COHERENCY_FLUSH_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF5_HDP_MEM_COHERENCY_FLUSH_CNTL 0x00f7
+#define regBIF_BX_DEV0_EPF0_VF5_HDP_MEM_COHERENCY_FLUSH_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF5_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL 0x00f9
+#define regBIF_BX_DEV0_EPF0_VF5_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF5_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL 0x00fa
+#define regBIF_BX_DEV0_EPF0_VF5_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ 0x0106
+#define regBIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE 0x0107
+#define regBIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF5_BIF_TRANS_PENDING 0x0108
+#define regBIF_BX_DEV0_EPF0_VF5_BIF_TRANS_PENDING_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF5_NBIF_GFX_ADDR_LUT_BYPASS 0x0112
+#define regBIF_BX_DEV0_EPF0_VF5_NBIF_GFX_ADDR_LUT_BYPASS_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF5_MAILBOX_MSGBUF_TRN_DW0 0x0136
+#define regBIF_BX_DEV0_EPF0_VF5_MAILBOX_MSGBUF_TRN_DW0_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF5_MAILBOX_MSGBUF_TRN_DW1 0x0137
+#define regBIF_BX_DEV0_EPF0_VF5_MAILBOX_MSGBUF_TRN_DW1_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF5_MAILBOX_MSGBUF_TRN_DW2 0x0138
+#define regBIF_BX_DEV0_EPF0_VF5_MAILBOX_MSGBUF_TRN_DW2_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF5_MAILBOX_MSGBUF_TRN_DW3 0x0139
+#define regBIF_BX_DEV0_EPF0_VF5_MAILBOX_MSGBUF_TRN_DW3_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF5_MAILBOX_MSGBUF_RCV_DW0 0x013a
+#define regBIF_BX_DEV0_EPF0_VF5_MAILBOX_MSGBUF_RCV_DW0_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF5_MAILBOX_MSGBUF_RCV_DW1 0x013b
+#define regBIF_BX_DEV0_EPF0_VF5_MAILBOX_MSGBUF_RCV_DW1_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF5_MAILBOX_MSGBUF_RCV_DW2 0x013c
+#define regBIF_BX_DEV0_EPF0_VF5_MAILBOX_MSGBUF_RCV_DW2_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF5_MAILBOX_MSGBUF_RCV_DW3 0x013d
+#define regBIF_BX_DEV0_EPF0_VF5_MAILBOX_MSGBUF_RCV_DW3_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF5_MAILBOX_CONTROL 0x013e
+#define regBIF_BX_DEV0_EPF0_VF5_MAILBOX_CONTROL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF5_MAILBOX_INT_CNTL 0x013f
+#define regBIF_BX_DEV0_EPF0_VF5_MAILBOX_INT_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF5_BIF_VMHV_MAILBOX 0x0140
+#define regBIF_BX_DEV0_EPF0_VF5_BIF_VMHV_MAILBOX_BASE_IDX 2
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_dev0_epf0_vf5_SYSPFVFDEC
+// base address: 0x0
+#define regBIF_BX_DEV0_EPF0_VF5_MM_INDEX 0x0000
+#define regBIF_BX_DEV0_EPF0_VF5_MM_INDEX_BASE_IDX 0
+#define regBIF_BX_DEV0_EPF0_VF5_MM_DATA 0x0001
+#define regBIF_BX_DEV0_EPF0_VF5_MM_DATA_BASE_IDX 0
+#define regBIF_BX_DEV0_EPF0_VF5_MM_INDEX_HI 0x0006
+#define regBIF_BX_DEV0_EPF0_VF5_MM_INDEX_HI_BASE_IDX 0
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dev0_epf0_vf5_BIFPFVFDEC1
+// base address: 0x0
+#define regRCC_DEV0_EPF0_VF5_RCC_ERR_LOG 0x0085
+#define regRCC_DEV0_EPF0_VF5_RCC_ERR_LOG_BASE_IDX 2
+#define regRCC_DEV0_EPF0_VF5_RCC_DOORBELL_APER_EN 0x00c0
+#define regRCC_DEV0_EPF0_VF5_RCC_DOORBELL_APER_EN_BASE_IDX 2
+#define regRCC_DEV0_EPF0_VF5_RCC_CONFIG_MEMSIZE 0x00c3
+#define regRCC_DEV0_EPF0_VF5_RCC_CONFIG_MEMSIZE_BASE_IDX 2
+#define regRCC_DEV0_EPF0_VF5_RCC_CONFIG_RESERVED 0x00c4
+#define regRCC_DEV0_EPF0_VF5_RCC_CONFIG_RESERVED_BASE_IDX 2
+#define regRCC_DEV0_EPF0_VF5_RCC_IOV_FUNC_IDENTIFIER 0x00c5
+#define regRCC_DEV0_EPF0_VF5_RCC_IOV_FUNC_IDENTIFIER_BASE_IDX 2
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dev0_epf0_vf5_BIFDEC2
+// base address: 0x0
+#define regRCC_DEV0_EPF0_VF5_GFXMSIX_VECT0_ADDR_LO 0x0400
+#define regRCC_DEV0_EPF0_VF5_GFXMSIX_VECT0_ADDR_LO_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF5_GFXMSIX_VECT0_ADDR_HI 0x0401
+#define regRCC_DEV0_EPF0_VF5_GFXMSIX_VECT0_ADDR_HI_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF5_GFXMSIX_VECT0_MSG_DATA 0x0402
+#define regRCC_DEV0_EPF0_VF5_GFXMSIX_VECT0_MSG_DATA_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF5_GFXMSIX_VECT0_CONTROL 0x0403
+#define regRCC_DEV0_EPF0_VF5_GFXMSIX_VECT0_CONTROL_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF5_GFXMSIX_VECT1_ADDR_LO 0x0404
+#define regRCC_DEV0_EPF0_VF5_GFXMSIX_VECT1_ADDR_LO_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF5_GFXMSIX_VECT1_ADDR_HI 0x0405
+#define regRCC_DEV0_EPF0_VF5_GFXMSIX_VECT1_ADDR_HI_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF5_GFXMSIX_VECT1_MSG_DATA 0x0406
+#define regRCC_DEV0_EPF0_VF5_GFXMSIX_VECT1_MSG_DATA_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF5_GFXMSIX_VECT1_CONTROL 0x0407
+#define regRCC_DEV0_EPF0_VF5_GFXMSIX_VECT1_CONTROL_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF5_GFXMSIX_VECT2_ADDR_LO 0x0408
+#define regRCC_DEV0_EPF0_VF5_GFXMSIX_VECT2_ADDR_LO_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF5_GFXMSIX_VECT2_ADDR_HI 0x0409
+#define regRCC_DEV0_EPF0_VF5_GFXMSIX_VECT2_ADDR_HI_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF5_GFXMSIX_VECT2_MSG_DATA 0x040a
+#define regRCC_DEV0_EPF0_VF5_GFXMSIX_VECT2_MSG_DATA_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF5_GFXMSIX_VECT2_CONTROL 0x040b
+#define regRCC_DEV0_EPF0_VF5_GFXMSIX_VECT2_CONTROL_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF5_GFXMSIX_VECT3_ADDR_LO 0x040c
+#define regRCC_DEV0_EPF0_VF5_GFXMSIX_VECT3_ADDR_LO_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF5_GFXMSIX_VECT3_ADDR_HI 0x040d
+#define regRCC_DEV0_EPF0_VF5_GFXMSIX_VECT3_ADDR_HI_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF5_GFXMSIX_VECT3_MSG_DATA 0x040e
+#define regRCC_DEV0_EPF0_VF5_GFXMSIX_VECT3_MSG_DATA_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF5_GFXMSIX_VECT3_CONTROL 0x040f
+#define regRCC_DEV0_EPF0_VF5_GFXMSIX_VECT3_CONTROL_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF5_GFXMSIX_PBA 0x0800
+#define regRCC_DEV0_EPF0_VF5_GFXMSIX_PBA_BASE_IDX 4
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_dev0_epf0_vf6_BIFPFVFDEC1
+// base address: 0x0
+#define regBIF_BX_DEV0_EPF0_VF6_BIF_BME_STATUS 0x00eb
+#define regBIF_BX_DEV0_EPF0_VF6_BIF_BME_STATUS_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF6_BIF_ATOMIC_ERR_LOG 0x00ec
+#define regBIF_BX_DEV0_EPF0_VF6_BIF_ATOMIC_ERR_LOG_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF6_DOORBELL_SELFRING_GPA_APER_BASE_HIGH 0x00f3
+#define regBIF_BX_DEV0_EPF0_VF6_DOORBELL_SELFRING_GPA_APER_BASE_HIGH_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF6_DOORBELL_SELFRING_GPA_APER_BASE_LOW 0x00f4
+#define regBIF_BX_DEV0_EPF0_VF6_DOORBELL_SELFRING_GPA_APER_BASE_LOW_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF6_DOORBELL_SELFRING_GPA_APER_CNTL 0x00f5
+#define regBIF_BX_DEV0_EPF0_VF6_DOORBELL_SELFRING_GPA_APER_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF6_HDP_REG_COHERENCY_FLUSH_CNTL 0x00f6
+#define regBIF_BX_DEV0_EPF0_VF6_HDP_REG_COHERENCY_FLUSH_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF6_HDP_MEM_COHERENCY_FLUSH_CNTL 0x00f7
+#define regBIF_BX_DEV0_EPF0_VF6_HDP_MEM_COHERENCY_FLUSH_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF6_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL 0x00f9
+#define regBIF_BX_DEV0_EPF0_VF6_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF6_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL 0x00fa
+#define regBIF_BX_DEV0_EPF0_VF6_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ 0x0106
+#define regBIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE 0x0107
+#define regBIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF6_BIF_TRANS_PENDING 0x0108
+#define regBIF_BX_DEV0_EPF0_VF6_BIF_TRANS_PENDING_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF6_NBIF_GFX_ADDR_LUT_BYPASS 0x0112
+#define regBIF_BX_DEV0_EPF0_VF6_NBIF_GFX_ADDR_LUT_BYPASS_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF6_MAILBOX_MSGBUF_TRN_DW0 0x0136
+#define regBIF_BX_DEV0_EPF0_VF6_MAILBOX_MSGBUF_TRN_DW0_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF6_MAILBOX_MSGBUF_TRN_DW1 0x0137
+#define regBIF_BX_DEV0_EPF0_VF6_MAILBOX_MSGBUF_TRN_DW1_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF6_MAILBOX_MSGBUF_TRN_DW2 0x0138
+#define regBIF_BX_DEV0_EPF0_VF6_MAILBOX_MSGBUF_TRN_DW2_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF6_MAILBOX_MSGBUF_TRN_DW3 0x0139
+#define regBIF_BX_DEV0_EPF0_VF6_MAILBOX_MSGBUF_TRN_DW3_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF6_MAILBOX_MSGBUF_RCV_DW0 0x013a
+#define regBIF_BX_DEV0_EPF0_VF6_MAILBOX_MSGBUF_RCV_DW0_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF6_MAILBOX_MSGBUF_RCV_DW1 0x013b
+#define regBIF_BX_DEV0_EPF0_VF6_MAILBOX_MSGBUF_RCV_DW1_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF6_MAILBOX_MSGBUF_RCV_DW2 0x013c
+#define regBIF_BX_DEV0_EPF0_VF6_MAILBOX_MSGBUF_RCV_DW2_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF6_MAILBOX_MSGBUF_RCV_DW3 0x013d
+#define regBIF_BX_DEV0_EPF0_VF6_MAILBOX_MSGBUF_RCV_DW3_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF6_MAILBOX_CONTROL 0x013e
+#define regBIF_BX_DEV0_EPF0_VF6_MAILBOX_CONTROL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF6_MAILBOX_INT_CNTL 0x013f
+#define regBIF_BX_DEV0_EPF0_VF6_MAILBOX_INT_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF6_BIF_VMHV_MAILBOX 0x0140
+#define regBIF_BX_DEV0_EPF0_VF6_BIF_VMHV_MAILBOX_BASE_IDX 2
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_dev0_epf0_vf6_SYSPFVFDEC
+// base address: 0x0
+#define regBIF_BX_DEV0_EPF0_VF6_MM_INDEX 0x0000
+#define regBIF_BX_DEV0_EPF0_VF6_MM_INDEX_BASE_IDX 0
+#define regBIF_BX_DEV0_EPF0_VF6_MM_DATA 0x0001
+#define regBIF_BX_DEV0_EPF0_VF6_MM_DATA_BASE_IDX 0
+#define regBIF_BX_DEV0_EPF0_VF6_MM_INDEX_HI 0x0006
+#define regBIF_BX_DEV0_EPF0_VF6_MM_INDEX_HI_BASE_IDX 0
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dev0_epf0_vf6_BIFPFVFDEC1
+// base address: 0x0
+#define regRCC_DEV0_EPF0_VF6_RCC_ERR_LOG 0x0085
+#define regRCC_DEV0_EPF0_VF6_RCC_ERR_LOG_BASE_IDX 2
+#define regRCC_DEV0_EPF0_VF6_RCC_DOORBELL_APER_EN 0x00c0
+#define regRCC_DEV0_EPF0_VF6_RCC_DOORBELL_APER_EN_BASE_IDX 2
+#define regRCC_DEV0_EPF0_VF6_RCC_CONFIG_MEMSIZE 0x00c3
+#define regRCC_DEV0_EPF0_VF6_RCC_CONFIG_MEMSIZE_BASE_IDX 2
+#define regRCC_DEV0_EPF0_VF6_RCC_CONFIG_RESERVED 0x00c4
+#define regRCC_DEV0_EPF0_VF6_RCC_CONFIG_RESERVED_BASE_IDX 2
+#define regRCC_DEV0_EPF0_VF6_RCC_IOV_FUNC_IDENTIFIER 0x00c5
+#define regRCC_DEV0_EPF0_VF6_RCC_IOV_FUNC_IDENTIFIER_BASE_IDX 2
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dev0_epf0_vf6_BIFDEC2
+// base address: 0x0
+#define regRCC_DEV0_EPF0_VF6_GFXMSIX_VECT0_ADDR_LO 0x0400
+#define regRCC_DEV0_EPF0_VF6_GFXMSIX_VECT0_ADDR_LO_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF6_GFXMSIX_VECT0_ADDR_HI 0x0401
+#define regRCC_DEV0_EPF0_VF6_GFXMSIX_VECT0_ADDR_HI_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF6_GFXMSIX_VECT0_MSG_DATA 0x0402
+#define regRCC_DEV0_EPF0_VF6_GFXMSIX_VECT0_MSG_DATA_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF6_GFXMSIX_VECT0_CONTROL 0x0403
+#define regRCC_DEV0_EPF0_VF6_GFXMSIX_VECT0_CONTROL_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF6_GFXMSIX_VECT1_ADDR_LO 0x0404
+#define regRCC_DEV0_EPF0_VF6_GFXMSIX_VECT1_ADDR_LO_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF6_GFXMSIX_VECT1_ADDR_HI 0x0405
+#define regRCC_DEV0_EPF0_VF6_GFXMSIX_VECT1_ADDR_HI_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF6_GFXMSIX_VECT1_MSG_DATA 0x0406
+#define regRCC_DEV0_EPF0_VF6_GFXMSIX_VECT1_MSG_DATA_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF6_GFXMSIX_VECT1_CONTROL 0x0407
+#define regRCC_DEV0_EPF0_VF6_GFXMSIX_VECT1_CONTROL_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF6_GFXMSIX_VECT2_ADDR_LO 0x0408
+#define regRCC_DEV0_EPF0_VF6_GFXMSIX_VECT2_ADDR_LO_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF6_GFXMSIX_VECT2_ADDR_HI 0x0409
+#define regRCC_DEV0_EPF0_VF6_GFXMSIX_VECT2_ADDR_HI_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF6_GFXMSIX_VECT2_MSG_DATA 0x040a
+#define regRCC_DEV0_EPF0_VF6_GFXMSIX_VECT2_MSG_DATA_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF6_GFXMSIX_VECT2_CONTROL 0x040b
+#define regRCC_DEV0_EPF0_VF6_GFXMSIX_VECT2_CONTROL_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF6_GFXMSIX_VECT3_ADDR_LO 0x040c
+#define regRCC_DEV0_EPF0_VF6_GFXMSIX_VECT3_ADDR_LO_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF6_GFXMSIX_VECT3_ADDR_HI 0x040d
+#define regRCC_DEV0_EPF0_VF6_GFXMSIX_VECT3_ADDR_HI_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF6_GFXMSIX_VECT3_MSG_DATA 0x040e
+#define regRCC_DEV0_EPF0_VF6_GFXMSIX_VECT3_MSG_DATA_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF6_GFXMSIX_VECT3_CONTROL 0x040f
+#define regRCC_DEV0_EPF0_VF6_GFXMSIX_VECT3_CONTROL_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF6_GFXMSIX_PBA 0x0800
+#define regRCC_DEV0_EPF0_VF6_GFXMSIX_PBA_BASE_IDX 4
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_dev0_epf0_vf7_BIFPFVFDEC1
+// base address: 0x0
+#define regBIF_BX_DEV0_EPF0_VF7_BIF_BME_STATUS 0x00eb
+#define regBIF_BX_DEV0_EPF0_VF7_BIF_BME_STATUS_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF7_BIF_ATOMIC_ERR_LOG 0x00ec
+#define regBIF_BX_DEV0_EPF0_VF7_BIF_ATOMIC_ERR_LOG_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF7_DOORBELL_SELFRING_GPA_APER_BASE_HIGH 0x00f3
+#define regBIF_BX_DEV0_EPF0_VF7_DOORBELL_SELFRING_GPA_APER_BASE_HIGH_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF7_DOORBELL_SELFRING_GPA_APER_BASE_LOW 0x00f4
+#define regBIF_BX_DEV0_EPF0_VF7_DOORBELL_SELFRING_GPA_APER_BASE_LOW_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF7_DOORBELL_SELFRING_GPA_APER_CNTL 0x00f5
+#define regBIF_BX_DEV0_EPF0_VF7_DOORBELL_SELFRING_GPA_APER_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF7_HDP_REG_COHERENCY_FLUSH_CNTL 0x00f6
+#define regBIF_BX_DEV0_EPF0_VF7_HDP_REG_COHERENCY_FLUSH_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF7_HDP_MEM_COHERENCY_FLUSH_CNTL 0x00f7
+#define regBIF_BX_DEV0_EPF0_VF7_HDP_MEM_COHERENCY_FLUSH_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF7_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL 0x00f9
+#define regBIF_BX_DEV0_EPF0_VF7_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF7_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL 0x00fa
+#define regBIF_BX_DEV0_EPF0_VF7_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ 0x0106
+#define regBIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE 0x0107
+#define regBIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF7_BIF_TRANS_PENDING 0x0108
+#define regBIF_BX_DEV0_EPF0_VF7_BIF_TRANS_PENDING_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF7_NBIF_GFX_ADDR_LUT_BYPASS 0x0112
+#define regBIF_BX_DEV0_EPF0_VF7_NBIF_GFX_ADDR_LUT_BYPASS_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF7_MAILBOX_MSGBUF_TRN_DW0 0x0136
+#define regBIF_BX_DEV0_EPF0_VF7_MAILBOX_MSGBUF_TRN_DW0_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF7_MAILBOX_MSGBUF_TRN_DW1 0x0137
+#define regBIF_BX_DEV0_EPF0_VF7_MAILBOX_MSGBUF_TRN_DW1_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF7_MAILBOX_MSGBUF_TRN_DW2 0x0138
+#define regBIF_BX_DEV0_EPF0_VF7_MAILBOX_MSGBUF_TRN_DW2_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF7_MAILBOX_MSGBUF_TRN_DW3 0x0139
+#define regBIF_BX_DEV0_EPF0_VF7_MAILBOX_MSGBUF_TRN_DW3_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF7_MAILBOX_MSGBUF_RCV_DW0 0x013a
+#define regBIF_BX_DEV0_EPF0_VF7_MAILBOX_MSGBUF_RCV_DW0_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF7_MAILBOX_MSGBUF_RCV_DW1 0x013b
+#define regBIF_BX_DEV0_EPF0_VF7_MAILBOX_MSGBUF_RCV_DW1_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF7_MAILBOX_MSGBUF_RCV_DW2 0x013c
+#define regBIF_BX_DEV0_EPF0_VF7_MAILBOX_MSGBUF_RCV_DW2_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF7_MAILBOX_MSGBUF_RCV_DW3 0x013d
+#define regBIF_BX_DEV0_EPF0_VF7_MAILBOX_MSGBUF_RCV_DW3_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF7_MAILBOX_CONTROL 0x013e
+#define regBIF_BX_DEV0_EPF0_VF7_MAILBOX_CONTROL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF7_MAILBOX_INT_CNTL 0x013f
+#define regBIF_BX_DEV0_EPF0_VF7_MAILBOX_INT_CNTL_BASE_IDX 2
+#define regBIF_BX_DEV0_EPF0_VF7_BIF_VMHV_MAILBOX 0x0140
+#define regBIF_BX_DEV0_EPF0_VF7_BIF_VMHV_MAILBOX_BASE_IDX 2
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_dev0_epf0_vf7_SYSPFVFDEC
+// base address: 0x0
+#define regBIF_BX_DEV0_EPF0_VF7_MM_INDEX 0x0000
+#define regBIF_BX_DEV0_EPF0_VF7_MM_INDEX_BASE_IDX 0
+#define regBIF_BX_DEV0_EPF0_VF7_MM_DATA 0x0001
+#define regBIF_BX_DEV0_EPF0_VF7_MM_DATA_BASE_IDX 0
+#define regBIF_BX_DEV0_EPF0_VF7_MM_INDEX_HI 0x0006
+#define regBIF_BX_DEV0_EPF0_VF7_MM_INDEX_HI_BASE_IDX 0
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dev0_epf0_vf7_BIFPFVFDEC1
+// base address: 0x0
+#define regRCC_DEV0_EPF0_VF7_RCC_ERR_LOG 0x0085
+#define regRCC_DEV0_EPF0_VF7_RCC_ERR_LOG_BASE_IDX 2
+#define regRCC_DEV0_EPF0_VF7_RCC_DOORBELL_APER_EN 0x00c0
+#define regRCC_DEV0_EPF0_VF7_RCC_DOORBELL_APER_EN_BASE_IDX 2
+#define regRCC_DEV0_EPF0_VF7_RCC_CONFIG_MEMSIZE 0x00c3
+#define regRCC_DEV0_EPF0_VF7_RCC_CONFIG_MEMSIZE_BASE_IDX 2
+#define regRCC_DEV0_EPF0_VF7_RCC_CONFIG_RESERVED 0x00c4
+#define regRCC_DEV0_EPF0_VF7_RCC_CONFIG_RESERVED_BASE_IDX 2
+#define regRCC_DEV0_EPF0_VF7_RCC_IOV_FUNC_IDENTIFIER 0x00c5
+#define regRCC_DEV0_EPF0_VF7_RCC_IOV_FUNC_IDENTIFIER_BASE_IDX 2
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dev0_epf0_vf7_BIFDEC2
+// base address: 0x0
+#define regRCC_DEV0_EPF0_VF7_GFXMSIX_VECT0_ADDR_LO 0x0400
+#define regRCC_DEV0_EPF0_VF7_GFXMSIX_VECT0_ADDR_LO_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF7_GFXMSIX_VECT0_ADDR_HI 0x0401
+#define regRCC_DEV0_EPF0_VF7_GFXMSIX_VECT0_ADDR_HI_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF7_GFXMSIX_VECT0_MSG_DATA 0x0402
+#define regRCC_DEV0_EPF0_VF7_GFXMSIX_VECT0_MSG_DATA_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF7_GFXMSIX_VECT0_CONTROL 0x0403
+#define regRCC_DEV0_EPF0_VF7_GFXMSIX_VECT0_CONTROL_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF7_GFXMSIX_VECT1_ADDR_LO 0x0404
+#define regRCC_DEV0_EPF0_VF7_GFXMSIX_VECT1_ADDR_LO_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF7_GFXMSIX_VECT1_ADDR_HI 0x0405
+#define regRCC_DEV0_EPF0_VF7_GFXMSIX_VECT1_ADDR_HI_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF7_GFXMSIX_VECT1_MSG_DATA 0x0406
+#define regRCC_DEV0_EPF0_VF7_GFXMSIX_VECT1_MSG_DATA_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF7_GFXMSIX_VECT1_CONTROL 0x0407
+#define regRCC_DEV0_EPF0_VF7_GFXMSIX_VECT1_CONTROL_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF7_GFXMSIX_VECT2_ADDR_LO 0x0408
+#define regRCC_DEV0_EPF0_VF7_GFXMSIX_VECT2_ADDR_LO_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF7_GFXMSIX_VECT2_ADDR_HI 0x0409
+#define regRCC_DEV0_EPF0_VF7_GFXMSIX_VECT2_ADDR_HI_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF7_GFXMSIX_VECT2_MSG_DATA 0x040a
+#define regRCC_DEV0_EPF0_VF7_GFXMSIX_VECT2_MSG_DATA_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF7_GFXMSIX_VECT2_CONTROL 0x040b
+#define regRCC_DEV0_EPF0_VF7_GFXMSIX_VECT2_CONTROL_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF7_GFXMSIX_VECT3_ADDR_LO 0x040c
+#define regRCC_DEV0_EPF0_VF7_GFXMSIX_VECT3_ADDR_LO_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF7_GFXMSIX_VECT3_ADDR_HI 0x040d
+#define regRCC_DEV0_EPF0_VF7_GFXMSIX_VECT3_ADDR_HI_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF7_GFXMSIX_VECT3_MSG_DATA 0x040e
+#define regRCC_DEV0_EPF0_VF7_GFXMSIX_VECT3_MSG_DATA_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF7_GFXMSIX_VECT3_CONTROL 0x040f
+#define regRCC_DEV0_EPF0_VF7_GFXMSIX_VECT3_CONTROL_BASE_IDX 4
+#define regRCC_DEV0_EPF0_VF7_GFXMSIX_PBA 0x0800
+#define regRCC_DEV0_EPF0_VF7_GFXMSIX_PBA_BASE_IDX 4
+
+
+#endif
diff --git a/drivers/gpu/drm/amd/include/asic_reg/nbio/nbio_7_9_0_sh_mask.h b/drivers/gpu/drm/amd/include/asic_reg/nbio/nbio_7_9_0_sh_mask.h
new file mode 100644
index 000000000000..a22481e7bcdb
--- /dev/null
+++ b/drivers/gpu/drm/amd/include/asic_reg/nbio/nbio_7_9_0_sh_mask.h
@@ -0,0 +1,38900 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ */
+#ifndef _nbio_7_9_0_SH_MASK_HEADER
+#define _nbio_7_9_0_SH_MASK_HEADER
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_SYSDEC
+//BIF_BX0_PCIE_INDEX
+#define BIF_BX0_PCIE_INDEX__PCIE_INDEX__SHIFT 0x0
+#define BIF_BX0_PCIE_INDEX__PCIE_INDEX_MASK 0xFFFFFFFFL
+//BIF_BX0_PCIE_DATA
+#define BIF_BX0_PCIE_DATA__PCIE_DATA__SHIFT 0x0
+#define BIF_BX0_PCIE_DATA__PCIE_DATA_MASK 0xFFFFFFFFL
+//BIF_BX0_PCIE_INDEX2
+#define BIF_BX0_PCIE_INDEX2__PCIE_INDEX2__SHIFT 0x0
+#define BIF_BX0_PCIE_INDEX2__PCIE_INDEX2_MASK 0xFFFFFFFFL
+//BIF_BX0_PCIE_DATA2
+#define BIF_BX0_PCIE_DATA2__PCIE_DATA2__SHIFT 0x0
+#define BIF_BX0_PCIE_DATA2__PCIE_DATA2_MASK 0xFFFFFFFFL
+//BIF_BX0_PCIE_INDEX_HI
+#define BIF_BX0_PCIE_INDEX_HI__PCIE_INDEX_HI__SHIFT 0x0
+#define BIF_BX0_PCIE_INDEX_HI__PCIE_INDEX_HI_MASK 0x000000FFL
+//BIF_BX0_PCIE_INDEX2_HI
+#define BIF_BX0_PCIE_INDEX2_HI__PCIE_INDEX2_HI__SHIFT 0x0
+#define BIF_BX0_PCIE_INDEX2_HI__PCIE_INDEX2_HI_MASK 0x000000FFL
+//BIF_BX0_SBIOS_SCRATCH_0
+#define BIF_BX0_SBIOS_SCRATCH_0__SBIOS_SCRATCH_0__SHIFT 0x0
+#define BIF_BX0_SBIOS_SCRATCH_0__SBIOS_SCRATCH_0_MASK 0xFFFFFFFFL
+//BIF_BX0_SBIOS_SCRATCH_1
+#define BIF_BX0_SBIOS_SCRATCH_1__SBIOS_SCRATCH_1__SHIFT 0x0
+#define BIF_BX0_SBIOS_SCRATCH_1__SBIOS_SCRATCH_1_MASK 0xFFFFFFFFL
+//BIF_BX0_SBIOS_SCRATCH_2
+#define BIF_BX0_SBIOS_SCRATCH_2__SBIOS_SCRATCH_2__SHIFT 0x0
+#define BIF_BX0_SBIOS_SCRATCH_2__SBIOS_SCRATCH_2_MASK 0xFFFFFFFFL
+//BIF_BX0_SBIOS_SCRATCH_3
+#define BIF_BX0_SBIOS_SCRATCH_3__SBIOS_SCRATCH_3__SHIFT 0x0
+#define BIF_BX0_SBIOS_SCRATCH_3__SBIOS_SCRATCH_3_MASK 0xFFFFFFFFL
+//BIF_BX0_BIOS_SCRATCH_0
+#define BIF_BX0_BIOS_SCRATCH_0__BIOS_SCRATCH_0__SHIFT 0x0
+#define BIF_BX0_BIOS_SCRATCH_0__BIOS_SCRATCH_0_MASK 0xFFFFFFFFL
+//BIF_BX0_BIOS_SCRATCH_1
+#define BIF_BX0_BIOS_SCRATCH_1__BIOS_SCRATCH_1__SHIFT 0x0
+#define BIF_BX0_BIOS_SCRATCH_1__BIOS_SCRATCH_1_MASK 0xFFFFFFFFL
+//BIF_BX0_BIOS_SCRATCH_2
+#define BIF_BX0_BIOS_SCRATCH_2__BIOS_SCRATCH_2__SHIFT 0x0
+#define BIF_BX0_BIOS_SCRATCH_2__BIOS_SCRATCH_2_MASK 0xFFFFFFFFL
+//BIF_BX0_BIOS_SCRATCH_3
+#define BIF_BX0_BIOS_SCRATCH_3__BIOS_SCRATCH_3__SHIFT 0x0
+#define BIF_BX0_BIOS_SCRATCH_3__BIOS_SCRATCH_3_MASK 0xFFFFFFFFL
+//BIF_BX0_BIOS_SCRATCH_4
+#define BIF_BX0_BIOS_SCRATCH_4__BIOS_SCRATCH_4__SHIFT 0x0
+#define BIF_BX0_BIOS_SCRATCH_4__BIOS_SCRATCH_4_MASK 0xFFFFFFFFL
+//BIF_BX0_BIOS_SCRATCH_5
+#define BIF_BX0_BIOS_SCRATCH_5__BIOS_SCRATCH_5__SHIFT 0x0
+#define BIF_BX0_BIOS_SCRATCH_5__BIOS_SCRATCH_5_MASK 0xFFFFFFFFL
+//BIF_BX0_BIOS_SCRATCH_6
+#define BIF_BX0_BIOS_SCRATCH_6__BIOS_SCRATCH_6__SHIFT 0x0
+#define BIF_BX0_BIOS_SCRATCH_6__BIOS_SCRATCH_6_MASK 0xFFFFFFFFL
+//BIF_BX0_BIOS_SCRATCH_7
+#define BIF_BX0_BIOS_SCRATCH_7__BIOS_SCRATCH_7__SHIFT 0x0
+#define BIF_BX0_BIOS_SCRATCH_7__BIOS_SCRATCH_7_MASK 0xFFFFFFFFL
+//BIF_BX0_BIOS_SCRATCH_8
+#define BIF_BX0_BIOS_SCRATCH_8__BIOS_SCRATCH_8__SHIFT 0x0
+#define BIF_BX0_BIOS_SCRATCH_8__BIOS_SCRATCH_8_MASK 0xFFFFFFFFL
+//BIF_BX0_BIOS_SCRATCH_9
+#define BIF_BX0_BIOS_SCRATCH_9__BIOS_SCRATCH_9__SHIFT 0x0
+#define BIF_BX0_BIOS_SCRATCH_9__BIOS_SCRATCH_9_MASK 0xFFFFFFFFL
+//BIF_BX0_BIOS_SCRATCH_10
+#define BIF_BX0_BIOS_SCRATCH_10__BIOS_SCRATCH_10__SHIFT 0x0
+#define BIF_BX0_BIOS_SCRATCH_10__BIOS_SCRATCH_10_MASK 0xFFFFFFFFL
+//BIF_BX0_BIOS_SCRATCH_11
+#define BIF_BX0_BIOS_SCRATCH_11__BIOS_SCRATCH_11__SHIFT 0x0
+#define BIF_BX0_BIOS_SCRATCH_11__BIOS_SCRATCH_11_MASK 0xFFFFFFFFL
+//BIF_BX0_BIOS_SCRATCH_12
+#define BIF_BX0_BIOS_SCRATCH_12__BIOS_SCRATCH_12__SHIFT 0x0
+#define BIF_BX0_BIOS_SCRATCH_12__BIOS_SCRATCH_12_MASK 0xFFFFFFFFL
+//BIF_BX0_BIOS_SCRATCH_13
+#define BIF_BX0_BIOS_SCRATCH_13__BIOS_SCRATCH_13__SHIFT 0x0
+#define BIF_BX0_BIOS_SCRATCH_13__BIOS_SCRATCH_13_MASK 0xFFFFFFFFL
+//BIF_BX0_BIOS_SCRATCH_14
+#define BIF_BX0_BIOS_SCRATCH_14__BIOS_SCRATCH_14__SHIFT 0x0
+#define BIF_BX0_BIOS_SCRATCH_14__BIOS_SCRATCH_14_MASK 0xFFFFFFFFL
+//BIF_BX0_BIOS_SCRATCH_15
+#define BIF_BX0_BIOS_SCRATCH_15__BIOS_SCRATCH_15__SHIFT 0x0
+#define BIF_BX0_BIOS_SCRATCH_15__BIOS_SCRATCH_15_MASK 0xFFFFFFFFL
+//BIF_BX0_BIF_RLC_INTR_CNTL
+//BIF_BX0_BIF_VCE_INTR_CNTL
+//BIF_BX0_BIF_UVD_INTR_CNTL
+//BIF_BX0_GFX_MMIOREG_CAM_ADDR0
+#define BIF_BX0_GFX_MMIOREG_CAM_ADDR0__CAM_ADDR0__SHIFT 0x0
+#define BIF_BX0_GFX_MMIOREG_CAM_ADDR0__CAM_ADDR0_MASK 0x000FFFFFL
+//BIF_BX0_GFX_MMIOREG_CAM_REMAP_ADDR0
+#define BIF_BX0_GFX_MMIOREG_CAM_REMAP_ADDR0__CAM_REMAP_ADDR0__SHIFT 0x0
+#define BIF_BX0_GFX_MMIOREG_CAM_REMAP_ADDR0__CAM_REMAP_ADDR0_MASK 0x000FFFFFL
+//BIF_BX0_GFX_MMIOREG_CAM_ADDR1
+#define BIF_BX0_GFX_MMIOREG_CAM_ADDR1__CAM_ADDR1__SHIFT 0x0
+#define BIF_BX0_GFX_MMIOREG_CAM_ADDR1__CAM_ADDR1_MASK 0x000FFFFFL
+//BIF_BX0_GFX_MMIOREG_CAM_REMAP_ADDR1
+#define BIF_BX0_GFX_MMIOREG_CAM_REMAP_ADDR1__CAM_REMAP_ADDR1__SHIFT 0x0
+#define BIF_BX0_GFX_MMIOREG_CAM_REMAP_ADDR1__CAM_REMAP_ADDR1_MASK 0x000FFFFFL
+//BIF_BX0_GFX_MMIOREG_CAM_ADDR2
+#define BIF_BX0_GFX_MMIOREG_CAM_ADDR2__CAM_ADDR2__SHIFT 0x0
+#define BIF_BX0_GFX_MMIOREG_CAM_ADDR2__CAM_ADDR2_MASK 0x000FFFFFL
+//BIF_BX0_GFX_MMIOREG_CAM_REMAP_ADDR2
+#define BIF_BX0_GFX_MMIOREG_CAM_REMAP_ADDR2__CAM_REMAP_ADDR2__SHIFT 0x0
+#define BIF_BX0_GFX_MMIOREG_CAM_REMAP_ADDR2__CAM_REMAP_ADDR2_MASK 0x000FFFFFL
+//BIF_BX0_GFX_MMIOREG_CAM_ADDR3
+#define BIF_BX0_GFX_MMIOREG_CAM_ADDR3__CAM_ADDR3__SHIFT 0x0
+#define BIF_BX0_GFX_MMIOREG_CAM_ADDR3__CAM_ADDR3_MASK 0x000FFFFFL
+//BIF_BX0_GFX_MMIOREG_CAM_REMAP_ADDR3
+#define BIF_BX0_GFX_MMIOREG_CAM_REMAP_ADDR3__CAM_REMAP_ADDR3__SHIFT 0x0
+#define BIF_BX0_GFX_MMIOREG_CAM_REMAP_ADDR3__CAM_REMAP_ADDR3_MASK 0x000FFFFFL
+//BIF_BX0_GFX_MMIOREG_CAM_ADDR4
+#define BIF_BX0_GFX_MMIOREG_CAM_ADDR4__CAM_ADDR4__SHIFT 0x0
+#define BIF_BX0_GFX_MMIOREG_CAM_ADDR4__CAM_ADDR4_MASK 0x000FFFFFL
+//BIF_BX0_GFX_MMIOREG_CAM_REMAP_ADDR4
+#define BIF_BX0_GFX_MMIOREG_CAM_REMAP_ADDR4__CAM_REMAP_ADDR4__SHIFT 0x0
+#define BIF_BX0_GFX_MMIOREG_CAM_REMAP_ADDR4__CAM_REMAP_ADDR4_MASK 0x000FFFFFL
+//BIF_BX0_GFX_MMIOREG_CAM_ADDR5
+#define BIF_BX0_GFX_MMIOREG_CAM_ADDR5__CAM_ADDR5__SHIFT 0x0
+#define BIF_BX0_GFX_MMIOREG_CAM_ADDR5__CAM_ADDR5_MASK 0x000FFFFFL
+//BIF_BX0_GFX_MMIOREG_CAM_REMAP_ADDR5
+#define BIF_BX0_GFX_MMIOREG_CAM_REMAP_ADDR5__CAM_REMAP_ADDR5__SHIFT 0x0
+#define BIF_BX0_GFX_MMIOREG_CAM_REMAP_ADDR5__CAM_REMAP_ADDR5_MASK 0x000FFFFFL
+//BIF_BX0_GFX_MMIOREG_CAM_ADDR6
+#define BIF_BX0_GFX_MMIOREG_CAM_ADDR6__CAM_ADDR6__SHIFT 0x0
+#define BIF_BX0_GFX_MMIOREG_CAM_ADDR6__CAM_ADDR6_MASK 0x000FFFFFL
+//BIF_BX0_GFX_MMIOREG_CAM_REMAP_ADDR6
+#define BIF_BX0_GFX_MMIOREG_CAM_REMAP_ADDR6__CAM_REMAP_ADDR6__SHIFT 0x0
+#define BIF_BX0_GFX_MMIOREG_CAM_REMAP_ADDR6__CAM_REMAP_ADDR6_MASK 0x000FFFFFL
+//BIF_BX0_GFX_MMIOREG_CAM_ADDR7
+#define BIF_BX0_GFX_MMIOREG_CAM_ADDR7__CAM_ADDR7__SHIFT 0x0
+#define BIF_BX0_GFX_MMIOREG_CAM_ADDR7__CAM_ADDR7_MASK 0x000FFFFFL
+//BIF_BX0_GFX_MMIOREG_CAM_REMAP_ADDR7
+#define BIF_BX0_GFX_MMIOREG_CAM_REMAP_ADDR7__CAM_REMAP_ADDR7__SHIFT 0x0
+#define BIF_BX0_GFX_MMIOREG_CAM_REMAP_ADDR7__CAM_REMAP_ADDR7_MASK 0x000FFFFFL
+//BIF_BX0_GFX_MMIOREG_CAM_CNTL
+#define BIF_BX0_GFX_MMIOREG_CAM_CNTL__CAM_ENABLE__SHIFT 0x0
+#define BIF_BX0_GFX_MMIOREG_CAM_CNTL__CAM_ENABLE_MASK 0x000000FFL
+//BIF_BX0_GFX_MMIOREG_CAM_ZERO_CPL
+#define BIF_BX0_GFX_MMIOREG_CAM_ZERO_CPL__CAM_ZERO_CPL__SHIFT 0x0
+#define BIF_BX0_GFX_MMIOREG_CAM_ZERO_CPL__CAM_ZERO_CPL_MASK 0xFFFFFFFFL
+//BIF_BX0_GFX_MMIOREG_CAM_ONE_CPL
+#define BIF_BX0_GFX_MMIOREG_CAM_ONE_CPL__CAM_ONE_CPL__SHIFT 0x0
+#define BIF_BX0_GFX_MMIOREG_CAM_ONE_CPL__CAM_ONE_CPL_MASK 0xFFFFFFFFL
+//BIF_BX0_GFX_MMIOREG_CAM_PROGRAMMABLE_CPL
+#define BIF_BX0_GFX_MMIOREG_CAM_PROGRAMMABLE_CPL__CAM_PROGRAMMABLE_CPL__SHIFT 0x0
+#define BIF_BX0_GFX_MMIOREG_CAM_PROGRAMMABLE_CPL__CAM_PROGRAMMABLE_CPL_MASK 0xFFFFFFFFL
+//BIF_BX0_DRIVER_SCRATCH_0
+#define BIF_BX0_DRIVER_SCRATCH_0__DRIVER_SCRATCH_0__SHIFT 0x0
+#define BIF_BX0_DRIVER_SCRATCH_0__DRIVER_SCRATCH_0_MASK 0xFFFFFFFFL
+//BIF_BX0_DRIVER_SCRATCH_1
+#define BIF_BX0_DRIVER_SCRATCH_1__DRIVER_SCRATCH_1__SHIFT 0x0
+#define BIF_BX0_DRIVER_SCRATCH_1__DRIVER_SCRATCH_1_MASK 0xFFFFFFFFL
+//BIF_BX0_DRIVER_SCRATCH_2
+#define BIF_BX0_DRIVER_SCRATCH_2__DRIVER_SCRATCH_2__SHIFT 0x0
+#define BIF_BX0_DRIVER_SCRATCH_2__DRIVER_SCRATCH_2_MASK 0xFFFFFFFFL
+//BIF_BX0_DRIVER_SCRATCH_3
+#define BIF_BX0_DRIVER_SCRATCH_3__DRIVER_SCRATCH_3__SHIFT 0x0
+#define BIF_BX0_DRIVER_SCRATCH_3__DRIVER_SCRATCH_3_MASK 0xFFFFFFFFL
+//BIF_BX0_DRIVER_SCRATCH_4
+#define BIF_BX0_DRIVER_SCRATCH_4__DRIVER_SCRATCH_4__SHIFT 0x0
+#define BIF_BX0_DRIVER_SCRATCH_4__DRIVER_SCRATCH_4_MASK 0xFFFFFFFFL
+//BIF_BX0_DRIVER_SCRATCH_5
+#define BIF_BX0_DRIVER_SCRATCH_5__DRIVER_SCRATCH_5__SHIFT 0x0
+#define BIF_BX0_DRIVER_SCRATCH_5__DRIVER_SCRATCH_5_MASK 0xFFFFFFFFL
+//BIF_BX0_DRIVER_SCRATCH_6
+#define BIF_BX0_DRIVER_SCRATCH_6__DRIVER_SCRATCH_6__SHIFT 0x0
+#define BIF_BX0_DRIVER_SCRATCH_6__DRIVER_SCRATCH_6_MASK 0xFFFFFFFFL
+//BIF_BX0_DRIVER_SCRATCH_7
+#define BIF_BX0_DRIVER_SCRATCH_7__DRIVER_SCRATCH_7__SHIFT 0x0
+#define BIF_BX0_DRIVER_SCRATCH_7__DRIVER_SCRATCH_7_MASK 0xFFFFFFFFL
+//BIF_BX0_DRIVER_SCRATCH_8
+#define BIF_BX0_DRIVER_SCRATCH_8__DRIVER_SCRATCH_8__SHIFT 0x0
+#define BIF_BX0_DRIVER_SCRATCH_8__DRIVER_SCRATCH_8_MASK 0xFFFFFFFFL
+//BIF_BX0_DRIVER_SCRATCH_9
+#define BIF_BX0_DRIVER_SCRATCH_9__DRIVER_SCRATCH_9__SHIFT 0x0
+#define BIF_BX0_DRIVER_SCRATCH_9__DRIVER_SCRATCH_9_MASK 0xFFFFFFFFL
+//BIF_BX0_DRIVER_SCRATCH_10
+#define BIF_BX0_DRIVER_SCRATCH_10__DRIVER_SCRATCH_10__SHIFT 0x0
+#define BIF_BX0_DRIVER_SCRATCH_10__DRIVER_SCRATCH_10_MASK 0xFFFFFFFFL
+//BIF_BX0_DRIVER_SCRATCH_11
+#define BIF_BX0_DRIVER_SCRATCH_11__DRIVER_SCRATCH_11__SHIFT 0x0
+#define BIF_BX0_DRIVER_SCRATCH_11__DRIVER_SCRATCH_11_MASK 0xFFFFFFFFL
+//BIF_BX0_DRIVER_SCRATCH_12
+#define BIF_BX0_DRIVER_SCRATCH_12__DRIVER_SCRATCH_12__SHIFT 0x0
+#define BIF_BX0_DRIVER_SCRATCH_12__DRIVER_SCRATCH_12_MASK 0xFFFFFFFFL
+//BIF_BX0_DRIVER_SCRATCH_13
+#define BIF_BX0_DRIVER_SCRATCH_13__DRIVER_SCRATCH_13__SHIFT 0x0
+#define BIF_BX0_DRIVER_SCRATCH_13__DRIVER_SCRATCH_13_MASK 0xFFFFFFFFL
+//BIF_BX0_DRIVER_SCRATCH_14
+#define BIF_BX0_DRIVER_SCRATCH_14__DRIVER_SCRATCH_14__SHIFT 0x0
+#define BIF_BX0_DRIVER_SCRATCH_14__DRIVER_SCRATCH_14_MASK 0xFFFFFFFFL
+//BIF_BX0_DRIVER_SCRATCH_15
+#define BIF_BX0_DRIVER_SCRATCH_15__DRIVER_SCRATCH_15__SHIFT 0x0
+#define BIF_BX0_DRIVER_SCRATCH_15__DRIVER_SCRATCH_15_MASK 0xFFFFFFFFL
+//BIF_BX0_FW_SCRATCH_0
+#define BIF_BX0_FW_SCRATCH_0__FW_SCRATCH_0__SHIFT 0x0
+#define BIF_BX0_FW_SCRATCH_0__FW_SCRATCH_0_MASK 0xFFFFFFFFL
+//BIF_BX0_FW_SCRATCH_1
+#define BIF_BX0_FW_SCRATCH_1__FW_SCRATCH_1__SHIFT 0x0
+#define BIF_BX0_FW_SCRATCH_1__FW_SCRATCH_1_MASK 0xFFFFFFFFL
+//BIF_BX0_FW_SCRATCH_2
+#define BIF_BX0_FW_SCRATCH_2__FW_SCRATCH_2__SHIFT 0x0
+#define BIF_BX0_FW_SCRATCH_2__FW_SCRATCH_2_MASK 0xFFFFFFFFL
+//BIF_BX0_FW_SCRATCH_3
+#define BIF_BX0_FW_SCRATCH_3__FW_SCRATCH_3__SHIFT 0x0
+#define BIF_BX0_FW_SCRATCH_3__FW_SCRATCH_3_MASK 0xFFFFFFFFL
+//BIF_BX0_FW_SCRATCH_4
+#define BIF_BX0_FW_SCRATCH_4__FW_SCRATCH_4__SHIFT 0x0
+#define BIF_BX0_FW_SCRATCH_4__FW_SCRATCH_4_MASK 0xFFFFFFFFL
+//BIF_BX0_FW_SCRATCH_5
+#define BIF_BX0_FW_SCRATCH_5__FW_SCRATCH_5__SHIFT 0x0
+#define BIF_BX0_FW_SCRATCH_5__FW_SCRATCH_5_MASK 0xFFFFFFFFL
+//BIF_BX0_FW_SCRATCH_6
+#define BIF_BX0_FW_SCRATCH_6__FW_SCRATCH_6__SHIFT 0x0
+#define BIF_BX0_FW_SCRATCH_6__FW_SCRATCH_6_MASK 0xFFFFFFFFL
+//BIF_BX0_FW_SCRATCH_7
+#define BIF_BX0_FW_SCRATCH_7__FW_SCRATCH_7__SHIFT 0x0
+#define BIF_BX0_FW_SCRATCH_7__FW_SCRATCH_7_MASK 0xFFFFFFFFL
+//BIF_BX0_FW_SCRATCH_8
+#define BIF_BX0_FW_SCRATCH_8__FW_SCRATCH_8__SHIFT 0x0
+#define BIF_BX0_FW_SCRATCH_8__FW_SCRATCH_8_MASK 0xFFFFFFFFL
+//BIF_BX0_FW_SCRATCH_9
+#define BIF_BX0_FW_SCRATCH_9__FW_SCRATCH_9__SHIFT 0x0
+#define BIF_BX0_FW_SCRATCH_9__FW_SCRATCH_9_MASK 0xFFFFFFFFL
+//BIF_BX0_FW_SCRATCH_10
+#define BIF_BX0_FW_SCRATCH_10__FW_SCRATCH_10__SHIFT 0x0
+#define BIF_BX0_FW_SCRATCH_10__FW_SCRATCH_10_MASK 0xFFFFFFFFL
+//BIF_BX0_FW_SCRATCH_11
+#define BIF_BX0_FW_SCRATCH_11__FW_SCRATCH_11__SHIFT 0x0
+#define BIF_BX0_FW_SCRATCH_11__FW_SCRATCH_11_MASK 0xFFFFFFFFL
+//BIF_BX0_FW_SCRATCH_12
+#define BIF_BX0_FW_SCRATCH_12__FW_SCRATCH_12__SHIFT 0x0
+#define BIF_BX0_FW_SCRATCH_12__FW_SCRATCH_12_MASK 0xFFFFFFFFL
+//BIF_BX0_FW_SCRATCH_13
+#define BIF_BX0_FW_SCRATCH_13__FW_SCRATCH_13__SHIFT 0x0
+#define BIF_BX0_FW_SCRATCH_13__FW_SCRATCH_13_MASK 0xFFFFFFFFL
+//BIF_BX0_FW_SCRATCH_14
+#define BIF_BX0_FW_SCRATCH_14__FW_SCRATCH_14__SHIFT 0x0
+#define BIF_BX0_FW_SCRATCH_14__FW_SCRATCH_14_MASK 0xFFFFFFFFL
+//BIF_BX0_FW_SCRATCH_15
+#define BIF_BX0_FW_SCRATCH_15__FW_SCRATCH_15__SHIFT 0x0
+#define BIF_BX0_FW_SCRATCH_15__FW_SCRATCH_15_MASK 0xFFFFFFFFL
+//BIF_BX0_SBIOS_SCRATCH_4
+#define BIF_BX0_SBIOS_SCRATCH_4__SBIOS_SCRATCH_4__SHIFT 0x0
+#define BIF_BX0_SBIOS_SCRATCH_4__SBIOS_SCRATCH_4_MASK 0xFFFFFFFFL
+//BIF_BX0_SBIOS_SCRATCH_5
+#define BIF_BX0_SBIOS_SCRATCH_5__SBIOS_SCRATCH_5__SHIFT 0x0
+#define BIF_BX0_SBIOS_SCRATCH_5__SBIOS_SCRATCH_5_MASK 0xFFFFFFFFL
+//BIF_BX0_SBIOS_SCRATCH_6
+#define BIF_BX0_SBIOS_SCRATCH_6__SBIOS_SCRATCH_6__SHIFT 0x0
+#define BIF_BX0_SBIOS_SCRATCH_6__SBIOS_SCRATCH_6_MASK 0xFFFFFFFFL
+//BIF_BX0_SBIOS_SCRATCH_7
+#define BIF_BX0_SBIOS_SCRATCH_7__SBIOS_SCRATCH_7__SHIFT 0x0
+#define BIF_BX0_SBIOS_SCRATCH_7__SBIOS_SCRATCH_7_MASK 0xFFFFFFFFL
+//BIF_BX0_SBIOS_SCRATCH_8
+#define BIF_BX0_SBIOS_SCRATCH_8__SBIOS_SCRATCH_8__SHIFT 0x0
+#define BIF_BX0_SBIOS_SCRATCH_8__SBIOS_SCRATCH_8_MASK 0xFFFFFFFFL
+//BIF_BX0_SBIOS_SCRATCH_9
+#define BIF_BX0_SBIOS_SCRATCH_9__SBIOS_SCRATCH_9__SHIFT 0x0
+#define BIF_BX0_SBIOS_SCRATCH_9__SBIOS_SCRATCH_9_MASK 0xFFFFFFFFL
+//BIF_BX0_SBIOS_SCRATCH_10
+#define BIF_BX0_SBIOS_SCRATCH_10__SBIOS_SCRATCH_10__SHIFT 0x0
+#define BIF_BX0_SBIOS_SCRATCH_10__SBIOS_SCRATCH_10_MASK 0xFFFFFFFFL
+//BIF_BX0_SBIOS_SCRATCH_11
+#define BIF_BX0_SBIOS_SCRATCH_11__SBIOS_SCRATCH_11__SHIFT 0x0
+#define BIF_BX0_SBIOS_SCRATCH_11__SBIOS_SCRATCH_11_MASK 0xFFFFFFFFL
+//BIF_BX0_SBIOS_SCRATCH_12
+#define BIF_BX0_SBIOS_SCRATCH_12__SBIOS_SCRATCH_12__SHIFT 0x0
+#define BIF_BX0_SBIOS_SCRATCH_12__SBIOS_SCRATCH_12_MASK 0xFFFFFFFFL
+//BIF_BX0_SBIOS_SCRATCH_13
+#define BIF_BX0_SBIOS_SCRATCH_13__SBIOS_SCRATCH_13__SHIFT 0x0
+#define BIF_BX0_SBIOS_SCRATCH_13__SBIOS_SCRATCH_13_MASK 0xFFFFFFFFL
+//BIF_BX0_SBIOS_SCRATCH_14
+#define BIF_BX0_SBIOS_SCRATCH_14__SBIOS_SCRATCH_14__SHIFT 0x0
+#define BIF_BX0_SBIOS_SCRATCH_14__SBIOS_SCRATCH_14_MASK 0xFFFFFFFFL
+//BIF_BX0_SBIOS_SCRATCH_15
+#define BIF_BX0_SBIOS_SCRATCH_15__SBIOS_SCRATCH_15__SHIFT 0x0
+#define BIF_BX0_SBIOS_SCRATCH_15__SBIOS_SCRATCH_15_MASK 0xFFFFFFFFL
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dwn_dev0_BIFDEC1
+//RCC_DWN_DEV0_0_DN_PCIE_RESERVED
+#define RCC_DWN_DEV0_0_DN_PCIE_RESERVED__PCIE_RESERVED__SHIFT 0x0
+#define RCC_DWN_DEV0_0_DN_PCIE_RESERVED__PCIE_RESERVED_MASK 0xFFFFFFFFL
+//RCC_DWN_DEV0_0_DN_PCIE_SCRATCH
+#define RCC_DWN_DEV0_0_DN_PCIE_SCRATCH__PCIE_SCRATCH__SHIFT 0x0
+#define RCC_DWN_DEV0_0_DN_PCIE_SCRATCH__PCIE_SCRATCH_MASK 0xFFFFFFFFL
+//RCC_DWN_DEV0_0_DN_PCIE_CNTL
+#define RCC_DWN_DEV0_0_DN_PCIE_CNTL__HWINIT_WR_LOCK__SHIFT 0x0
+#define RCC_DWN_DEV0_0_DN_PCIE_CNTL__UR_ERR_REPORT_DIS_DN__SHIFT 0x7
+#define RCC_DWN_DEV0_0_DN_PCIE_CNTL__RX_IGNORE_LTR_MSG_UR__SHIFT 0x1e
+#define RCC_DWN_DEV0_0_DN_PCIE_CNTL__HWINIT_WR_LOCK_MASK 0x00000001L
+#define RCC_DWN_DEV0_0_DN_PCIE_CNTL__UR_ERR_REPORT_DIS_DN_MASK 0x00000080L
+#define RCC_DWN_DEV0_0_DN_PCIE_CNTL__RX_IGNORE_LTR_MSG_UR_MASK 0x40000000L
+//RCC_DWN_DEV0_0_DN_PCIE_CONFIG_CNTL
+#define RCC_DWN_DEV0_0_DN_PCIE_CONFIG_CNTL__CI_EXTENDED_TAG_EN_OVERRIDE__SHIFT 0x19
+#define RCC_DWN_DEV0_0_DN_PCIE_CONFIG_CNTL__CI_EXTENDED_TAG_EN_OVERRIDE_MASK 0x06000000L
+//RCC_DWN_DEV0_0_DN_PCIE_RX_CNTL2
+#define RCC_DWN_DEV0_0_DN_PCIE_RX_CNTL2__FLR_EXTEND_MODE__SHIFT 0x1c
+#define RCC_DWN_DEV0_0_DN_PCIE_RX_CNTL2__FLR_EXTEND_MODE_MASK 0x70000000L
+//RCC_DWN_DEV0_0_DN_PCIE_BUS_CNTL
+#define RCC_DWN_DEV0_0_DN_PCIE_BUS_CNTL__IMMEDIATE_PMI_DIS__SHIFT 0x7
+#define RCC_DWN_DEV0_0_DN_PCIE_BUS_CNTL__AER_CPL_TIMEOUT_RO_DIS_SWDN__SHIFT 0x8
+#define RCC_DWN_DEV0_0_DN_PCIE_BUS_CNTL__IMMEDIATE_PMI_DIS_MASK 0x00000080L
+#define RCC_DWN_DEV0_0_DN_PCIE_BUS_CNTL__AER_CPL_TIMEOUT_RO_DIS_SWDN_MASK 0x00000100L
+//RCC_DWN_DEV0_0_DN_PCIE_CFG_CNTL
+#define RCC_DWN_DEV0_0_DN_PCIE_CFG_CNTL__CFG_EN_DEC_TO_HIDDEN_REG__SHIFT 0x0
+#define RCC_DWN_DEV0_0_DN_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN2_HIDDEN_REG__SHIFT 0x1
+#define RCC_DWN_DEV0_0_DN_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN3_HIDDEN_REG__SHIFT 0x2
+#define RCC_DWN_DEV0_0_DN_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN4_HIDDEN_REG__SHIFT 0x3
+#define RCC_DWN_DEV0_0_DN_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN5_HIDDEN_REG__SHIFT 0x4
+#define RCC_DWN_DEV0_0_DN_PCIE_CFG_CNTL__CFG_EN_DEC_TO_HIDDEN_REG_MASK 0x00000001L
+#define RCC_DWN_DEV0_0_DN_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN2_HIDDEN_REG_MASK 0x00000002L
+#define RCC_DWN_DEV0_0_DN_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN3_HIDDEN_REG_MASK 0x00000004L
+#define RCC_DWN_DEV0_0_DN_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN4_HIDDEN_REG_MASK 0x00000008L
+#define RCC_DWN_DEV0_0_DN_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN5_HIDDEN_REG_MASK 0x00000010L
+//RCC_DWN_DEV0_0_DN_PCIE_STRAP_F0
+#define RCC_DWN_DEV0_0_DN_PCIE_STRAP_F0__STRAP_F0_EN__SHIFT 0x0
+#define RCC_DWN_DEV0_0_DN_PCIE_STRAP_F0__STRAP_F0_MC_EN__SHIFT 0x11
+#define RCC_DWN_DEV0_0_DN_PCIE_STRAP_F0__STRAP_F0_MSI_MULTI_CAP__SHIFT 0x15
+#define RCC_DWN_DEV0_0_DN_PCIE_STRAP_F0__STRAP_F0_EN_MASK 0x00000001L
+#define RCC_DWN_DEV0_0_DN_PCIE_STRAP_F0__STRAP_F0_MC_EN_MASK 0x00020000L
+#define RCC_DWN_DEV0_0_DN_PCIE_STRAP_F0__STRAP_F0_MSI_MULTI_CAP_MASK 0x00E00000L
+//RCC_DWN_DEV0_0_DN_PCIE_STRAP_MISC
+#define RCC_DWN_DEV0_0_DN_PCIE_STRAP_MISC__STRAP_CLK_PM_EN__SHIFT 0x18
+#define RCC_DWN_DEV0_0_DN_PCIE_STRAP_MISC__STRAP_MST_ADR64_EN__SHIFT 0x1d
+#define RCC_DWN_DEV0_0_DN_PCIE_STRAP_MISC__STRAP_CLK_PM_EN_MASK 0x01000000L
+#define RCC_DWN_DEV0_0_DN_PCIE_STRAP_MISC__STRAP_MST_ADR64_EN_MASK 0x20000000L
+//RCC_DWN_DEV0_0_DN_PCIE_STRAP_MISC2
+#define RCC_DWN_DEV0_0_DN_PCIE_STRAP_MISC2__STRAP_MSTCPL_TIMEOUT_EN__SHIFT 0x2
+#define RCC_DWN_DEV0_0_DN_PCIE_STRAP_MISC2__STRAP_MSTCPL_TIMEOUT_EN_MASK 0x00000004L
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dwnp_dev0_BIFDEC1
+//RCC_DWNP_DEV0_0_PCIE_ERR_CNTL
+#define RCC_DWNP_DEV0_0_PCIE_ERR_CNTL__ERR_REPORTING_DIS__SHIFT 0x0
+#define RCC_DWNP_DEV0_0_PCIE_ERR_CNTL__AER_HDR_LOG_TIMEOUT__SHIFT 0x8
+#define RCC_DWNP_DEV0_0_PCIE_ERR_CNTL__AER_HDR_LOG_F0_TIMER_EXPIRED__SHIFT 0xb
+#define RCC_DWNP_DEV0_0_PCIE_ERR_CNTL__SEND_ERR_MSG_IMMEDIATELY__SHIFT 0x11
+#define RCC_DWNP_DEV0_0_PCIE_ERR_CNTL__ERR_CORR_RCVD_CLR__SHIFT 0x12
+#define RCC_DWNP_DEV0_0_PCIE_ERR_CNTL__NONFATAL_ERR_RCVD_CLR__SHIFT 0x13
+#define RCC_DWNP_DEV0_0_PCIE_ERR_CNTL__FATAL_ERR_RCVD_CLR__SHIFT 0x14
+#define RCC_DWNP_DEV0_0_PCIE_ERR_CNTL__ERR_REPORTING_DIS_MASK 0x00000001L
+#define RCC_DWNP_DEV0_0_PCIE_ERR_CNTL__AER_HDR_LOG_TIMEOUT_MASK 0x00000700L
+#define RCC_DWNP_DEV0_0_PCIE_ERR_CNTL__AER_HDR_LOG_F0_TIMER_EXPIRED_MASK 0x00000800L
+#define RCC_DWNP_DEV0_0_PCIE_ERR_CNTL__SEND_ERR_MSG_IMMEDIATELY_MASK 0x00020000L
+#define RCC_DWNP_DEV0_0_PCIE_ERR_CNTL__ERR_CORR_RCVD_CLR_MASK 0x00040000L
+#define RCC_DWNP_DEV0_0_PCIE_ERR_CNTL__NONFATAL_ERR_RCVD_CLR_MASK 0x00080000L
+#define RCC_DWNP_DEV0_0_PCIE_ERR_CNTL__FATAL_ERR_RCVD_CLR_MASK 0x00100000L
+//RCC_DWNP_DEV0_0_PCIE_RX_CNTL
+#define RCC_DWNP_DEV0_0_PCIE_RX_CNTL__RX_IGNORE_MAX_PAYLOAD_ERR__SHIFT 0x8
+#define RCC_DWNP_DEV0_0_PCIE_RX_CNTL__RX_IGNORE_TC_ERR_DN__SHIFT 0x9
+#define RCC_DWNP_DEV0_0_PCIE_RX_CNTL__RX_PCIE_CPL_TIMEOUT_DIS__SHIFT 0x14
+#define RCC_DWNP_DEV0_0_PCIE_RX_CNTL__RX_IGNORE_SHORTPREFIX_ERR_DN__SHIFT 0x15
+#define RCC_DWNP_DEV0_0_PCIE_RX_CNTL__RX_RCB_FLR_TIMEOUT_DIS__SHIFT 0x1b
+#define RCC_DWNP_DEV0_0_PCIE_RX_CNTL__RX_IGNORE_MAX_PAYLOAD_ERR_MASK 0x00000100L
+#define RCC_DWNP_DEV0_0_PCIE_RX_CNTL__RX_IGNORE_TC_ERR_DN_MASK 0x00000200L
+#define RCC_DWNP_DEV0_0_PCIE_RX_CNTL__RX_PCIE_CPL_TIMEOUT_DIS_MASK 0x00100000L
+#define RCC_DWNP_DEV0_0_PCIE_RX_CNTL__RX_IGNORE_SHORTPREFIX_ERR_DN_MASK 0x00200000L
+#define RCC_DWNP_DEV0_0_PCIE_RX_CNTL__RX_RCB_FLR_TIMEOUT_DIS_MASK 0x08000000L
+//RCC_DWNP_DEV0_0_PCIE_LC_SPEED_CNTL
+#define RCC_DWNP_DEV0_0_PCIE_LC_SPEED_CNTL__LC_GEN2_EN_STRAP__SHIFT 0x0
+#define RCC_DWNP_DEV0_0_PCIE_LC_SPEED_CNTL__LC_GEN3_EN_STRAP__SHIFT 0x1
+#define RCC_DWNP_DEV0_0_PCIE_LC_SPEED_CNTL__LC_GEN4_EN_STRAP__SHIFT 0x2
+#define RCC_DWNP_DEV0_0_PCIE_LC_SPEED_CNTL__LC_GEN5_EN_STRAP__SHIFT 0x3
+#define RCC_DWNP_DEV0_0_PCIE_LC_SPEED_CNTL__LC_GEN2_EN_STRAP_MASK 0x00000001L
+#define RCC_DWNP_DEV0_0_PCIE_LC_SPEED_CNTL__LC_GEN3_EN_STRAP_MASK 0x00000002L
+#define RCC_DWNP_DEV0_0_PCIE_LC_SPEED_CNTL__LC_GEN4_EN_STRAP_MASK 0x00000004L
+#define RCC_DWNP_DEV0_0_PCIE_LC_SPEED_CNTL__LC_GEN5_EN_STRAP_MASK 0x00000008L
+//RCC_DWNP_DEV0_0_PCIE_LC_CNTL2
+#define RCC_DWNP_DEV0_0_PCIE_LC_CNTL2__DL_STATE_CHANGED_NOTIFICATION_DIS__SHIFT 0x0
+#define RCC_DWNP_DEV0_0_PCIE_LC_CNTL2__LC_LINK_BW_NOTIFICATION_DIS__SHIFT 0x1b
+#define RCC_DWNP_DEV0_0_PCIE_LC_CNTL2__DL_STATE_CHANGED_NOTIFICATION_DIS_MASK 0x00000001L
+#define RCC_DWNP_DEV0_0_PCIE_LC_CNTL2__LC_LINK_BW_NOTIFICATION_DIS_MASK 0x08000000L
+//RCC_DWNP_DEV0_0_PCIEP_STRAP_MISC
+#define RCC_DWNP_DEV0_0_PCIEP_STRAP_MISC__STRAP_MULTI_FUNC_EN__SHIFT 0xa
+#define RCC_DWNP_DEV0_0_PCIEP_STRAP_MISC__STRAP_MULTI_FUNC_EN_MASK 0x00000400L
+//RCC_DWNP_DEV0_0_LTR_MSG_INFO_FROM_EP
+#define RCC_DWNP_DEV0_0_LTR_MSG_INFO_FROM_EP__LTR_MSG_INFO_FROM_EP__SHIFT 0x0
+#define RCC_DWNP_DEV0_0_LTR_MSG_INFO_FROM_EP__LTR_MSG_INFO_FROM_EP_MASK 0xFFFFFFFFL
+
+
+// addressBlock: aid_nbio_nbif0_rcc_ep_dev0_BIFDEC1
+//RCC_EP_DEV0_0_EP_PCIE_SCRATCH
+#define RCC_EP_DEV0_0_EP_PCIE_SCRATCH__PCIE_SCRATCH__SHIFT 0x0
+#define RCC_EP_DEV0_0_EP_PCIE_SCRATCH__PCIE_SCRATCH_MASK 0xFFFFFFFFL
+//RCC_EP_DEV0_0_EP_PCIE_CNTL
+#define RCC_EP_DEV0_0_EP_PCIE_CNTL__UR_ERR_REPORT_DIS__SHIFT 0x7
+#define RCC_EP_DEV0_0_EP_PCIE_CNTL__PCIE_MALFORM_ATOMIC_OPS__SHIFT 0x8
+#define RCC_EP_DEV0_0_EP_PCIE_CNTL__RX_IGNORE_LTR_MSG_UR__SHIFT 0x1e
+#define RCC_EP_DEV0_0_EP_PCIE_CNTL__UR_ERR_REPORT_DIS_MASK 0x00000080L
+#define RCC_EP_DEV0_0_EP_PCIE_CNTL__PCIE_MALFORM_ATOMIC_OPS_MASK 0x00000100L
+#define RCC_EP_DEV0_0_EP_PCIE_CNTL__RX_IGNORE_LTR_MSG_UR_MASK 0x40000000L
+//RCC_EP_DEV0_0_EP_PCIE_INT_CNTL
+#define RCC_EP_DEV0_0_EP_PCIE_INT_CNTL__CORR_ERR_INT_EN__SHIFT 0x0
+#define RCC_EP_DEV0_0_EP_PCIE_INT_CNTL__NON_FATAL_ERR_INT_EN__SHIFT 0x1
+#define RCC_EP_DEV0_0_EP_PCIE_INT_CNTL__FATAL_ERR_INT_EN__SHIFT 0x2
+#define RCC_EP_DEV0_0_EP_PCIE_INT_CNTL__USR_DETECTED_INT_EN__SHIFT 0x3
+#define RCC_EP_DEV0_0_EP_PCIE_INT_CNTL__MISC_ERR_INT_EN__SHIFT 0x4
+#define RCC_EP_DEV0_0_EP_PCIE_INT_CNTL__POWER_STATE_CHG_INT_EN__SHIFT 0x6
+#define RCC_EP_DEV0_0_EP_PCIE_INT_CNTL__CORR_ERR_INT_EN_MASK 0x00000001L
+#define RCC_EP_DEV0_0_EP_PCIE_INT_CNTL__NON_FATAL_ERR_INT_EN_MASK 0x00000002L
+#define RCC_EP_DEV0_0_EP_PCIE_INT_CNTL__FATAL_ERR_INT_EN_MASK 0x00000004L
+#define RCC_EP_DEV0_0_EP_PCIE_INT_CNTL__USR_DETECTED_INT_EN_MASK 0x00000008L
+#define RCC_EP_DEV0_0_EP_PCIE_INT_CNTL__MISC_ERR_INT_EN_MASK 0x00000010L
+#define RCC_EP_DEV0_0_EP_PCIE_INT_CNTL__POWER_STATE_CHG_INT_EN_MASK 0x00000040L
+//RCC_EP_DEV0_0_EP_PCIE_INT_STATUS
+#define RCC_EP_DEV0_0_EP_PCIE_INT_STATUS__CORR_ERR_INT_STATUS__SHIFT 0x0
+#define RCC_EP_DEV0_0_EP_PCIE_INT_STATUS__NON_FATAL_ERR_INT_STATUS__SHIFT 0x1
+#define RCC_EP_DEV0_0_EP_PCIE_INT_STATUS__FATAL_ERR_INT_STATUS__SHIFT 0x2
+#define RCC_EP_DEV0_0_EP_PCIE_INT_STATUS__USR_DETECTED_INT_STATUS__SHIFT 0x3
+#define RCC_EP_DEV0_0_EP_PCIE_INT_STATUS__MISC_ERR_INT_STATUS__SHIFT 0x4
+#define RCC_EP_DEV0_0_EP_PCIE_INT_STATUS__POWER_STATE_CHG_INT_STATUS__SHIFT 0x6
+#define RCC_EP_DEV0_0_EP_PCIE_INT_STATUS__POWER_STATE_CHG_INT_STATUS_F0__SHIFT 0x7
+#define RCC_EP_DEV0_0_EP_PCIE_INT_STATUS__CORR_ERR_INT_STATUS_MASK 0x00000001L
+#define RCC_EP_DEV0_0_EP_PCIE_INT_STATUS__NON_FATAL_ERR_INT_STATUS_MASK 0x00000002L
+#define RCC_EP_DEV0_0_EP_PCIE_INT_STATUS__FATAL_ERR_INT_STATUS_MASK 0x00000004L
+#define RCC_EP_DEV0_0_EP_PCIE_INT_STATUS__USR_DETECTED_INT_STATUS_MASK 0x00000008L
+#define RCC_EP_DEV0_0_EP_PCIE_INT_STATUS__MISC_ERR_INT_STATUS_MASK 0x00000010L
+#define RCC_EP_DEV0_0_EP_PCIE_INT_STATUS__POWER_STATE_CHG_INT_STATUS_MASK 0x00000040L
+#define RCC_EP_DEV0_0_EP_PCIE_INT_STATUS__POWER_STATE_CHG_INT_STATUS_F0_MASK 0x00000080L
+//RCC_EP_DEV0_0_EP_PCIE_RX_CNTL2
+#define RCC_EP_DEV0_0_EP_PCIE_RX_CNTL2__RX_IGNORE_EP_INVALIDPASID_UR__SHIFT 0x0
+#define RCC_EP_DEV0_0_EP_PCIE_RX_CNTL2__RX_IGNORE_EP_INVALIDPASID_UR_MASK 0x00000001L
+//RCC_EP_DEV0_0_EP_PCIE_BUS_CNTL
+#define RCC_EP_DEV0_0_EP_PCIE_BUS_CNTL__IMMEDIATE_PMI_DIS__SHIFT 0x7
+#define RCC_EP_DEV0_0_EP_PCIE_BUS_CNTL__IMMEDIATE_PMI_DIS_MASK 0x00000080L
+//RCC_EP_DEV0_0_EP_PCIE_CFG_CNTL
+#define RCC_EP_DEV0_0_EP_PCIE_CFG_CNTL__CFG_EN_DEC_TO_HIDDEN_REG__SHIFT 0x0
+#define RCC_EP_DEV0_0_EP_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN2_HIDDEN_REG__SHIFT 0x1
+#define RCC_EP_DEV0_0_EP_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN3_HIDDEN_REG__SHIFT 0x2
+#define RCC_EP_DEV0_0_EP_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN4_HIDDEN_REG__SHIFT 0x3
+#define RCC_EP_DEV0_0_EP_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN5_HIDDEN_REG__SHIFT 0x4
+#define RCC_EP_DEV0_0_EP_PCIE_CFG_CNTL__CFG_EN_DEC_TO_HIDDEN_REG_MASK 0x00000001L
+#define RCC_EP_DEV0_0_EP_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN2_HIDDEN_REG_MASK 0x00000002L
+#define RCC_EP_DEV0_0_EP_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN3_HIDDEN_REG_MASK 0x00000004L
+#define RCC_EP_DEV0_0_EP_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN4_HIDDEN_REG_MASK 0x00000008L
+#define RCC_EP_DEV0_0_EP_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN5_HIDDEN_REG_MASK 0x00000010L
+//RCC_EP_DEV0_0_EP_PCIE_TX_LTR_CNTL
+#define RCC_EP_DEV0_0_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_S_SHORT_VALUE__SHIFT 0x0
+#define RCC_EP_DEV0_0_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_S_LONG_VALUE__SHIFT 0x3
+#define RCC_EP_DEV0_0_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_S_REQUIREMENT__SHIFT 0x6
+#define RCC_EP_DEV0_0_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_NS_SHORT_VALUE__SHIFT 0x7
+#define RCC_EP_DEV0_0_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_NS_LONG_VALUE__SHIFT 0xa
+#define RCC_EP_DEV0_0_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_NS_REQUIREMENT__SHIFT 0xd
+#define RCC_EP_DEV0_0_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_MSG_DIS_IN_PM_NON_D0__SHIFT 0xe
+#define RCC_EP_DEV0_0_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_RST_LTR_IN_DL_DOWN__SHIFT 0xf
+#define RCC_EP_DEV0_0_EP_PCIE_TX_LTR_CNTL__TX_CHK_FC_FOR_L1__SHIFT 0x10
+#define RCC_EP_DEV0_0_EP_PCIE_TX_LTR_CNTL__LTR_DSTATE_USING_WDATA_EN__SHIFT 0x11
+#define RCC_EP_DEV0_0_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_S_SHORT_VALUE_MASK 0x00000007L
+#define RCC_EP_DEV0_0_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_S_LONG_VALUE_MASK 0x00000038L
+#define RCC_EP_DEV0_0_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_S_REQUIREMENT_MASK 0x00000040L
+#define RCC_EP_DEV0_0_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_NS_SHORT_VALUE_MASK 0x00000380L
+#define RCC_EP_DEV0_0_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_NS_LONG_VALUE_MASK 0x00001C00L
+#define RCC_EP_DEV0_0_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_NS_REQUIREMENT_MASK 0x00002000L
+#define RCC_EP_DEV0_0_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_MSG_DIS_IN_PM_NON_D0_MASK 0x00004000L
+#define RCC_EP_DEV0_0_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_RST_LTR_IN_DL_DOWN_MASK 0x00008000L
+#define RCC_EP_DEV0_0_EP_PCIE_TX_LTR_CNTL__TX_CHK_FC_FOR_L1_MASK 0x00010000L
+#define RCC_EP_DEV0_0_EP_PCIE_TX_LTR_CNTL__LTR_DSTATE_USING_WDATA_EN_MASK 0x00020000L
+//RCC_EP_DEV0_0_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_0
+#define RCC_EP_DEV0_0_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_0__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define RCC_EP_DEV0_0_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_0__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//RCC_EP_DEV0_0_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_1
+#define RCC_EP_DEV0_0_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_1__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define RCC_EP_DEV0_0_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_1__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//RCC_EP_DEV0_0_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_2
+#define RCC_EP_DEV0_0_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_2__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define RCC_EP_DEV0_0_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_2__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//RCC_EP_DEV0_0_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_3
+#define RCC_EP_DEV0_0_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_3__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define RCC_EP_DEV0_0_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_3__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//RCC_EP_DEV0_0_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_4
+#define RCC_EP_DEV0_0_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_4__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define RCC_EP_DEV0_0_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_4__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//RCC_EP_DEV0_0_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_5
+#define RCC_EP_DEV0_0_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_5__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define RCC_EP_DEV0_0_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_5__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//RCC_EP_DEV0_0_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_6
+#define RCC_EP_DEV0_0_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_6__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define RCC_EP_DEV0_0_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_6__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//RCC_EP_DEV0_0_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_7
+#define RCC_EP_DEV0_0_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_7__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define RCC_EP_DEV0_0_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_7__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//RCC_EP_DEV0_0_EP_PCIE_STRAP_MISC
+#define RCC_EP_DEV0_0_EP_PCIE_STRAP_MISC__STRAP_MST_ADR64_EN__SHIFT 0x1d
+#define RCC_EP_DEV0_0_EP_PCIE_STRAP_MISC__STRAP_MST_ADR64_EN_MASK 0x20000000L
+//RCC_EP_DEV0_0_EP_PCIE_STRAP_MISC2
+#define RCC_EP_DEV0_0_EP_PCIE_STRAP_MISC2__STRAP_TPH_SUPPORTED__SHIFT 0x4
+#define RCC_EP_DEV0_0_EP_PCIE_STRAP_MISC2__STRAP_TPH_SUPPORTED_MASK 0x00000010L
+//RCC_EP_DEV0_0_EP_PCIE_F0_DPA_CAP
+#define RCC_EP_DEV0_0_EP_PCIE_F0_DPA_CAP__TRANS_LAT_UNIT__SHIFT 0x8
+#define RCC_EP_DEV0_0_EP_PCIE_F0_DPA_CAP__PWR_ALLOC_SCALE__SHIFT 0xc
+#define RCC_EP_DEV0_0_EP_PCIE_F0_DPA_CAP__TRANS_LAT_VAL_0__SHIFT 0x10
+#define RCC_EP_DEV0_0_EP_PCIE_F0_DPA_CAP__TRANS_LAT_VAL_1__SHIFT 0x18
+#define RCC_EP_DEV0_0_EP_PCIE_F0_DPA_CAP__TRANS_LAT_UNIT_MASK 0x00000300L
+#define RCC_EP_DEV0_0_EP_PCIE_F0_DPA_CAP__PWR_ALLOC_SCALE_MASK 0x00003000L
+#define RCC_EP_DEV0_0_EP_PCIE_F0_DPA_CAP__TRANS_LAT_VAL_0_MASK 0x00FF0000L
+#define RCC_EP_DEV0_0_EP_PCIE_F0_DPA_CAP__TRANS_LAT_VAL_1_MASK 0xFF000000L
+//RCC_EP_DEV0_0_EP_PCIE_F0_DPA_LATENCY_INDICATOR
+#define RCC_EP_DEV0_0_EP_PCIE_F0_DPA_LATENCY_INDICATOR__TRANS_LAT_INDICATOR_BITS__SHIFT 0x0
+#define RCC_EP_DEV0_0_EP_PCIE_F0_DPA_LATENCY_INDICATOR__TRANS_LAT_INDICATOR_BITS_MASK 0xFFL
+//RCC_EP_DEV0_0_EP_PCIE_F0_DPA_CNTL
+#define RCC_EP_DEV0_0_EP_PCIE_F0_DPA_CNTL__SUBSTATE_STATUS__SHIFT 0x0
+#define RCC_EP_DEV0_0_EP_PCIE_F0_DPA_CNTL__DPA_COMPLIANCE_MODE__SHIFT 0x8
+#define RCC_EP_DEV0_0_EP_PCIE_F0_DPA_CNTL__SUBSTATE_STATUS_MASK 0x001FL
+#define RCC_EP_DEV0_0_EP_PCIE_F0_DPA_CNTL__DPA_COMPLIANCE_MODE_MASK 0x0100L
+//RCC_EP_DEV0_0_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_0
+#define RCC_EP_DEV0_0_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_0__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define RCC_EP_DEV0_0_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_0__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//RCC_EP_DEV0_0_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_1
+#define RCC_EP_DEV0_0_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_1__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define RCC_EP_DEV0_0_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_1__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//RCC_EP_DEV0_0_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_2
+#define RCC_EP_DEV0_0_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_2__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define RCC_EP_DEV0_0_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_2__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//RCC_EP_DEV0_0_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_3
+#define RCC_EP_DEV0_0_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_3__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define RCC_EP_DEV0_0_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_3__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//RCC_EP_DEV0_0_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_4
+#define RCC_EP_DEV0_0_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_4__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define RCC_EP_DEV0_0_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_4__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//RCC_EP_DEV0_0_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_5
+#define RCC_EP_DEV0_0_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_5__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define RCC_EP_DEV0_0_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_5__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//RCC_EP_DEV0_0_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_6
+#define RCC_EP_DEV0_0_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_6__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define RCC_EP_DEV0_0_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_6__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//RCC_EP_DEV0_0_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_7
+#define RCC_EP_DEV0_0_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_7__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define RCC_EP_DEV0_0_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_7__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//RCC_EP_DEV0_0_EP_PCIE_PME_CONTROL
+#define RCC_EP_DEV0_0_EP_PCIE_PME_CONTROL__PME_SERVICE_TIMER__SHIFT 0x0
+#define RCC_EP_DEV0_0_EP_PCIE_PME_CONTROL__PME_SERVICE_TIMER_MASK 0x1FL
+//RCC_EP_DEV0_0_EP_PCIEP_RESERVED
+#define RCC_EP_DEV0_0_EP_PCIEP_RESERVED__PCIEP_RESERVED__SHIFT 0x0
+#define RCC_EP_DEV0_0_EP_PCIEP_RESERVED__PCIEP_RESERVED_MASK 0xFFFFFFFFL
+//RCC_EP_DEV0_0_EP_PCIE_TX_CNTL
+#define RCC_EP_DEV0_0_EP_PCIE_TX_CNTL__TX_SNR_OVERRIDE__SHIFT 0xa
+#define RCC_EP_DEV0_0_EP_PCIE_TX_CNTL__TX_RO_OVERRIDE__SHIFT 0xc
+#define RCC_EP_DEV0_0_EP_PCIE_TX_CNTL__TX_F0_TPH_DIS__SHIFT 0x18
+#define RCC_EP_DEV0_0_EP_PCIE_TX_CNTL__TX_F1_TPH_DIS__SHIFT 0x19
+#define RCC_EP_DEV0_0_EP_PCIE_TX_CNTL__TX_F2_TPH_DIS__SHIFT 0x1a
+#define RCC_EP_DEV0_0_EP_PCIE_TX_CNTL__TX_SNR_OVERRIDE_MASK 0x00000C00L
+#define RCC_EP_DEV0_0_EP_PCIE_TX_CNTL__TX_RO_OVERRIDE_MASK 0x00003000L
+#define RCC_EP_DEV0_0_EP_PCIE_TX_CNTL__TX_F0_TPH_DIS_MASK 0x01000000L
+#define RCC_EP_DEV0_0_EP_PCIE_TX_CNTL__TX_F1_TPH_DIS_MASK 0x02000000L
+#define RCC_EP_DEV0_0_EP_PCIE_TX_CNTL__TX_F2_TPH_DIS_MASK 0x04000000L
+//RCC_EP_DEV0_0_EP_PCIE_TX_REQUESTER_ID
+#define RCC_EP_DEV0_0_EP_PCIE_TX_REQUESTER_ID__TX_REQUESTER_ID_FUNCTION__SHIFT 0x0
+#define RCC_EP_DEV0_0_EP_PCIE_TX_REQUESTER_ID__TX_REQUESTER_ID_DEVICE__SHIFT 0x3
+#define RCC_EP_DEV0_0_EP_PCIE_TX_REQUESTER_ID__TX_REQUESTER_ID_BUS__SHIFT 0x8
+#define RCC_EP_DEV0_0_EP_PCIE_TX_REQUESTER_ID__TX_REQUESTER_ID_FUNCTION_MASK 0x00000007L
+#define RCC_EP_DEV0_0_EP_PCIE_TX_REQUESTER_ID__TX_REQUESTER_ID_DEVICE_MASK 0x000000F8L
+#define RCC_EP_DEV0_0_EP_PCIE_TX_REQUESTER_ID__TX_REQUESTER_ID_BUS_MASK 0x0000FF00L
+//RCC_EP_DEV0_0_EP_PCIE_ERR_CNTL
+#define RCC_EP_DEV0_0_EP_PCIE_ERR_CNTL__ERR_REPORTING_DIS__SHIFT 0x0
+#define RCC_EP_DEV0_0_EP_PCIE_ERR_CNTL__AER_HDR_LOG_TIMEOUT__SHIFT 0x8
+#define RCC_EP_DEV0_0_EP_PCIE_ERR_CNTL__SEND_ERR_MSG_IMMEDIATELY__SHIFT 0x11
+#define RCC_EP_DEV0_0_EP_PCIE_ERR_CNTL__STRAP_POISONED_ADVISORY_NONFATAL__SHIFT 0x12
+#define RCC_EP_DEV0_0_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F0_TIMER_EXPIRED__SHIFT 0x18
+#define RCC_EP_DEV0_0_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F1_TIMER_EXPIRED__SHIFT 0x19
+#define RCC_EP_DEV0_0_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F2_TIMER_EXPIRED__SHIFT 0x1a
+#define RCC_EP_DEV0_0_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F3_TIMER_EXPIRED__SHIFT 0x1b
+#define RCC_EP_DEV0_0_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F4_TIMER_EXPIRED__SHIFT 0x1c
+#define RCC_EP_DEV0_0_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F5_TIMER_EXPIRED__SHIFT 0x1d
+#define RCC_EP_DEV0_0_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F6_TIMER_EXPIRED__SHIFT 0x1e
+#define RCC_EP_DEV0_0_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F7_TIMER_EXPIRED__SHIFT 0x1f
+#define RCC_EP_DEV0_0_EP_PCIE_ERR_CNTL__ERR_REPORTING_DIS_MASK 0x00000001L
+#define RCC_EP_DEV0_0_EP_PCIE_ERR_CNTL__AER_HDR_LOG_TIMEOUT_MASK 0x00000700L
+#define RCC_EP_DEV0_0_EP_PCIE_ERR_CNTL__SEND_ERR_MSG_IMMEDIATELY_MASK 0x00020000L
+#define RCC_EP_DEV0_0_EP_PCIE_ERR_CNTL__STRAP_POISONED_ADVISORY_NONFATAL_MASK 0x00040000L
+#define RCC_EP_DEV0_0_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F0_TIMER_EXPIRED_MASK 0x01000000L
+#define RCC_EP_DEV0_0_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F1_TIMER_EXPIRED_MASK 0x02000000L
+#define RCC_EP_DEV0_0_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F2_TIMER_EXPIRED_MASK 0x04000000L
+#define RCC_EP_DEV0_0_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F3_TIMER_EXPIRED_MASK 0x08000000L
+#define RCC_EP_DEV0_0_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F4_TIMER_EXPIRED_MASK 0x10000000L
+#define RCC_EP_DEV0_0_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F5_TIMER_EXPIRED_MASK 0x20000000L
+#define RCC_EP_DEV0_0_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F6_TIMER_EXPIRED_MASK 0x40000000L
+#define RCC_EP_DEV0_0_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F7_TIMER_EXPIRED_MASK 0x80000000L
+//RCC_EP_DEV0_0_EP_PCIE_RX_CNTL
+#define RCC_EP_DEV0_0_EP_PCIE_RX_CNTL__RX_IGNORE_MAX_PAYLOAD_ERR__SHIFT 0x8
+#define RCC_EP_DEV0_0_EP_PCIE_RX_CNTL__RX_IGNORE_TC_ERR__SHIFT 0x9
+#define RCC_EP_DEV0_0_EP_PCIE_RX_CNTL__RX_PCIE_CPL_TIMEOUT_DIS__SHIFT 0x14
+#define RCC_EP_DEV0_0_EP_PCIE_RX_CNTL__RX_IGNORE_SHORTPREFIX_ERR__SHIFT 0x15
+#define RCC_EP_DEV0_0_EP_PCIE_RX_CNTL__RX_IGNORE_MAXPREFIX_ERR__SHIFT 0x16
+#define RCC_EP_DEV0_0_EP_PCIE_RX_CNTL__RX_IGNORE_INVALIDPASID_ERR__SHIFT 0x18
+#define RCC_EP_DEV0_0_EP_PCIE_RX_CNTL__RX_IGNORE_NOT_PASID_UR__SHIFT 0x19
+#define RCC_EP_DEV0_0_EP_PCIE_RX_CNTL__RX_TPH_DIS__SHIFT 0x1a
+#define RCC_EP_DEV0_0_EP_PCIE_RX_CNTL__RX_IGNORE_MAX_PAYLOAD_ERR_MASK 0x00000100L
+#define RCC_EP_DEV0_0_EP_PCIE_RX_CNTL__RX_IGNORE_TC_ERR_MASK 0x00000200L
+#define RCC_EP_DEV0_0_EP_PCIE_RX_CNTL__RX_PCIE_CPL_TIMEOUT_DIS_MASK 0x00100000L
+#define RCC_EP_DEV0_0_EP_PCIE_RX_CNTL__RX_IGNORE_SHORTPREFIX_ERR_MASK 0x00200000L
+#define RCC_EP_DEV0_0_EP_PCIE_RX_CNTL__RX_IGNORE_MAXPREFIX_ERR_MASK 0x00400000L
+#define RCC_EP_DEV0_0_EP_PCIE_RX_CNTL__RX_IGNORE_INVALIDPASID_ERR_MASK 0x01000000L
+#define RCC_EP_DEV0_0_EP_PCIE_RX_CNTL__RX_IGNORE_NOT_PASID_UR_MASK 0x02000000L
+#define RCC_EP_DEV0_0_EP_PCIE_RX_CNTL__RX_TPH_DIS_MASK 0x04000000L
+//RCC_EP_DEV0_0_EP_PCIE_LC_SPEED_CNTL
+#define RCC_EP_DEV0_0_EP_PCIE_LC_SPEED_CNTL__LC_GEN2_EN_STRAP__SHIFT 0x0
+#define RCC_EP_DEV0_0_EP_PCIE_LC_SPEED_CNTL__LC_GEN3_EN_STRAP__SHIFT 0x1
+#define RCC_EP_DEV0_0_EP_PCIE_LC_SPEED_CNTL__LC_GEN4_EN_STRAP__SHIFT 0x2
+#define RCC_EP_DEV0_0_EP_PCIE_LC_SPEED_CNTL__LC_GEN5_EN_STRAP__SHIFT 0x3
+#define RCC_EP_DEV0_0_EP_PCIE_LC_SPEED_CNTL__LC_GEN2_EN_STRAP_MASK 0x00000001L
+#define RCC_EP_DEV0_0_EP_PCIE_LC_SPEED_CNTL__LC_GEN3_EN_STRAP_MASK 0x00000002L
+#define RCC_EP_DEV0_0_EP_PCIE_LC_SPEED_CNTL__LC_GEN4_EN_STRAP_MASK 0x00000004L
+#define RCC_EP_DEV0_0_EP_PCIE_LC_SPEED_CNTL__LC_GEN5_EN_STRAP_MASK 0x00000008L
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_pf_SYSPFVFDEC
+//BIF_BX_PF0_MM_INDEX
+#define BIF_BX_PF0_MM_INDEX__MM_OFFSET__SHIFT 0x0
+#define BIF_BX_PF0_MM_INDEX__MM_APER__SHIFT 0x1f
+#define BIF_BX_PF0_MM_INDEX__MM_OFFSET_MASK 0x7FFFFFFFL
+#define BIF_BX_PF0_MM_INDEX__MM_APER_MASK 0x80000000L
+//BIF_BX_PF0_MM_DATA
+#define BIF_BX_PF0_MM_DATA__MM_DATA__SHIFT 0x0
+#define BIF_BX_PF0_MM_DATA__MM_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_PF0_MM_INDEX_HI
+#define BIF_BX_PF0_MM_INDEX_HI__MM_OFFSET_HI__SHIFT 0x0
+#define BIF_BX_PF0_MM_INDEX_HI__MM_OFFSET_HI_MASK 0xFFFFFFFFL
+//BIF_BX_PF0_RSMU_INDEX
+#define BIF_BX_PF0_RSMU_INDEX__RSMU_INDEX__SHIFT 0x0
+#define BIF_BX_PF0_RSMU_INDEX__RSMU_INDEX_MASK 0xFFFFFFFFL
+//BIF_BX_PF0_RSMU_DATA
+#define BIF_BX_PF0_RSMU_DATA__RSMU_DATA__SHIFT 0x0
+#define BIF_BX_PF0_RSMU_DATA__RSMU_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_PF0_RSMU_INDEX_HI
+#define BIF_BX_PF0_RSMU_INDEX_HI__RSMU_INDEX_HI__SHIFT 0x0
+#define BIF_BX_PF0_RSMU_INDEX_HI__RSMU_INDEX_HI_MASK 0x000000FFL
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_BIFDEC1
+//BIF_BX0_CC_BIF_BX_STRAP0
+#define BIF_BX0_CC_BIF_BX_STRAP0__STRAP_RESERVED__SHIFT 0x19
+#define BIF_BX0_CC_BIF_BX_STRAP0__STRAP_RESERVED_MASK 0xFE000000L
+//BIF_BX0_CC_BIF_BX_PINSTRAP0
+//BIF_BX0_BIF_MM_INDACCESS_CNTL
+#define BIF_BX0_BIF_MM_INDACCESS_CNTL__WRITE_DIS__SHIFT 0x0
+#define BIF_BX0_BIF_MM_INDACCESS_CNTL__MM_INDACCESS_DIS__SHIFT 0x1
+#define BIF_BX0_BIF_MM_INDACCESS_CNTL__WRITE_DIS_MASK 0x00000001L
+#define BIF_BX0_BIF_MM_INDACCESS_CNTL__MM_INDACCESS_DIS_MASK 0x00000002L
+//BIF_BX0_BUS_CNTL
+#define BIF_BX0_BUS_CNTL__VGA_REG_COHERENCY_DIS__SHIFT 0x6
+#define BIF_BX0_BUS_CNTL__VGA_MEM_COHERENCY_DIS__SHIFT 0x7
+#define BIF_BX0_BUS_CNTL__SET_AZ_TC__SHIFT 0xa
+#define BIF_BX0_BUS_CNTL__SET_MC_TC__SHIFT 0xd
+#define BIF_BX0_BUS_CNTL__ZERO_BE_WR_EN__SHIFT 0x10
+#define BIF_BX0_BUS_CNTL__ZERO_BE_RD_EN__SHIFT 0x11
+#define BIF_BX0_BUS_CNTL__RD_STALL_IO_WR__SHIFT 0x12
+#define BIF_BX0_BUS_CNTL__HDP_FB_FLUSH_STALL_DOORBELL_DIS__SHIFT 0x18
+#define BIF_BX0_BUS_CNTL__PRECEEDINGWR_STALL_VGA_FB_FLUSH_DIS__SHIFT 0x19
+#define BIF_BX0_BUS_CNTL__PRECEEDINGWR_STALL_VGA_REG_FLUSH_DIS__SHIFT 0x1a
+#define BIF_BX0_BUS_CNTL__MMDAT_RD_HDP_TRIGGER_HDP_FB_FLUSH_DIS__SHIFT 0x1b
+#define BIF_BX0_BUS_CNTL__HDP_FB_FLUSH_STALL_MMDAT_RD_HDP_DIS__SHIFT 0x1c
+#define BIF_BX0_BUS_CNTL__HDP_REG_FLUSH_VF_MASK_EN__SHIFT 0x1d
+#define BIF_BX0_BUS_CNTL__VGAFB_ZERO_BE_WR_EN__SHIFT 0x1e
+#define BIF_BX0_BUS_CNTL__VGAFB_ZERO_BE_RD_EN__SHIFT 0x1f
+#define BIF_BX0_BUS_CNTL__VGA_REG_COHERENCY_DIS_MASK 0x00000040L
+#define BIF_BX0_BUS_CNTL__VGA_MEM_COHERENCY_DIS_MASK 0x00000080L
+#define BIF_BX0_BUS_CNTL__SET_AZ_TC_MASK 0x00001C00L
+#define BIF_BX0_BUS_CNTL__SET_MC_TC_MASK 0x0000E000L
+#define BIF_BX0_BUS_CNTL__ZERO_BE_WR_EN_MASK 0x00010000L
+#define BIF_BX0_BUS_CNTL__ZERO_BE_RD_EN_MASK 0x00020000L
+#define BIF_BX0_BUS_CNTL__RD_STALL_IO_WR_MASK 0x00040000L
+#define BIF_BX0_BUS_CNTL__HDP_FB_FLUSH_STALL_DOORBELL_DIS_MASK 0x01000000L
+#define BIF_BX0_BUS_CNTL__PRECEEDINGWR_STALL_VGA_FB_FLUSH_DIS_MASK 0x02000000L
+#define BIF_BX0_BUS_CNTL__PRECEEDINGWR_STALL_VGA_REG_FLUSH_DIS_MASK 0x04000000L
+#define BIF_BX0_BUS_CNTL__MMDAT_RD_HDP_TRIGGER_HDP_FB_FLUSH_DIS_MASK 0x08000000L
+#define BIF_BX0_BUS_CNTL__HDP_FB_FLUSH_STALL_MMDAT_RD_HDP_DIS_MASK 0x10000000L
+#define BIF_BX0_BUS_CNTL__HDP_REG_FLUSH_VF_MASK_EN_MASK 0x20000000L
+#define BIF_BX0_BUS_CNTL__VGAFB_ZERO_BE_WR_EN_MASK 0x40000000L
+#define BIF_BX0_BUS_CNTL__VGAFB_ZERO_BE_RD_EN_MASK 0x80000000L
+//BIF_BX0_BIF_SCRATCH0
+#define BIF_BX0_BIF_SCRATCH0__BIF_SCRATCH0__SHIFT 0x0
+#define BIF_BX0_BIF_SCRATCH0__BIF_SCRATCH0_MASK 0xFFFFFFFFL
+//BIF_BX0_BIF_SCRATCH1
+#define BIF_BX0_BIF_SCRATCH1__BIF_SCRATCH1__SHIFT 0x0
+#define BIF_BX0_BIF_SCRATCH1__BIF_SCRATCH1_MASK 0xFFFFFFFFL
+//BIF_BX0_BX_RESET_EN
+#define BIF_BX0_BX_RESET_EN__RESET_ON_VFENABLE_LOW_EN__SHIFT 0x10
+#define BIF_BX0_BX_RESET_EN__RESET_ON_VFENABLE_LOW_EN_MASK 0x00010000L
+//BIF_BX0_MM_CFGREGS_CNTL
+#define BIF_BX0_MM_CFGREGS_CNTL__MM_CFG_FUNC_SEL__SHIFT 0x0
+#define BIF_BX0_MM_CFGREGS_CNTL__MM_CFG_DEV_SEL__SHIFT 0x6
+#define BIF_BX0_MM_CFGREGS_CNTL__MM_WR_TO_CFG_EN__SHIFT 0x1f
+#define BIF_BX0_MM_CFGREGS_CNTL__MM_CFG_FUNC_SEL_MASK 0x00000007L
+#define BIF_BX0_MM_CFGREGS_CNTL__MM_CFG_DEV_SEL_MASK 0x000000C0L
+#define BIF_BX0_MM_CFGREGS_CNTL__MM_WR_TO_CFG_EN_MASK 0x80000000L
+//BIF_BX0_BX_RESET_CNTL
+#define BIF_BX0_BX_RESET_CNTL__LINK_TRAIN_EN__SHIFT 0x0
+#define BIF_BX0_BX_RESET_CNTL__LINK_TRAIN_EN_MASK 0x00000001L
+//BIF_BX0_INTERRUPT_CNTL
+#define BIF_BX0_INTERRUPT_CNTL__IH_DUMMY_RD_OVERRIDE__SHIFT 0x0
+#define BIF_BX0_INTERRUPT_CNTL__IH_DUMMY_RD_EN__SHIFT 0x1
+#define BIF_BX0_INTERRUPT_CNTL__IH_REQ_NONSNOOP_EN__SHIFT 0x3
+#define BIF_BX0_INTERRUPT_CNTL__IH_INTR_DLY_CNTR__SHIFT 0x4
+#define BIF_BX0_INTERRUPT_CNTL__GEN_IH_INT_EN__SHIFT 0x8
+#define BIF_BX0_INTERRUPT_CNTL__BIF_RB_REQ_NONSNOOP_EN__SHIFT 0xf
+#define BIF_BX0_INTERRUPT_CNTL__DUMMYRD_BYPASS_IN_MSI_EN__SHIFT 0x10
+#define BIF_BX0_INTERRUPT_CNTL__ALWAYS_SEND_INTPKT_AFTER_DUMMYRD_DIS__SHIFT 0x11
+#define BIF_BX0_INTERRUPT_CNTL__BIF_RB_REQ_RELAX_ORDER_EN__SHIFT 0x12
+#define BIF_BX0_INTERRUPT_CNTL__IH_DUMMY_RD_OVERRIDE_MASK 0x00000001L
+#define BIF_BX0_INTERRUPT_CNTL__IH_DUMMY_RD_EN_MASK 0x00000002L
+#define BIF_BX0_INTERRUPT_CNTL__IH_REQ_NONSNOOP_EN_MASK 0x00000008L
+#define BIF_BX0_INTERRUPT_CNTL__IH_INTR_DLY_CNTR_MASK 0x000000F0L
+#define BIF_BX0_INTERRUPT_CNTL__GEN_IH_INT_EN_MASK 0x00000100L
+#define BIF_BX0_INTERRUPT_CNTL__BIF_RB_REQ_NONSNOOP_EN_MASK 0x00008000L
+#define BIF_BX0_INTERRUPT_CNTL__DUMMYRD_BYPASS_IN_MSI_EN_MASK 0x00010000L
+#define BIF_BX0_INTERRUPT_CNTL__ALWAYS_SEND_INTPKT_AFTER_DUMMYRD_DIS_MASK 0x00020000L
+#define BIF_BX0_INTERRUPT_CNTL__BIF_RB_REQ_RELAX_ORDER_EN_MASK 0x00040000L
+//BIF_BX0_INTERRUPT_CNTL2
+#define BIF_BX0_INTERRUPT_CNTL2__IH_DUMMY_RD_ADDR__SHIFT 0x0
+#define BIF_BX0_INTERRUPT_CNTL2__IH_DUMMY_RD_ADDR_MASK 0xFFFFFFFFL
+//BIF_BX0_CLKREQB_PAD_CNTL
+#define BIF_BX0_CLKREQB_PAD_CNTL__CLKREQB_PAD_A__SHIFT 0x0
+#define BIF_BX0_CLKREQB_PAD_CNTL__CLKREQB_PAD_SEL__SHIFT 0x1
+#define BIF_BX0_CLKREQB_PAD_CNTL__CLKREQB_PAD_MODE__SHIFT 0x2
+#define BIF_BX0_CLKREQB_PAD_CNTL__CLKREQB_PAD_SPARE__SHIFT 0x3
+#define BIF_BX0_CLKREQB_PAD_CNTL__CLKREQB_PAD_SN0__SHIFT 0x5
+#define BIF_BX0_CLKREQB_PAD_CNTL__CLKREQB_PAD_SN1__SHIFT 0x6
+#define BIF_BX0_CLKREQB_PAD_CNTL__CLKREQB_PAD_SN2__SHIFT 0x7
+#define BIF_BX0_CLKREQB_PAD_CNTL__CLKREQB_PAD_SN3__SHIFT 0x8
+#define BIF_BX0_CLKREQB_PAD_CNTL__CLKREQB_PAD_SLEWN__SHIFT 0x9
+#define BIF_BX0_CLKREQB_PAD_CNTL__CLKREQB_PAD_WAKE__SHIFT 0xa
+#define BIF_BX0_CLKREQB_PAD_CNTL__CLKREQB_PAD_SCHMEN__SHIFT 0xb
+#define BIF_BX0_CLKREQB_PAD_CNTL__CLKREQB_PAD_CNTL_EN__SHIFT 0xc
+#define BIF_BX0_CLKREQB_PAD_CNTL__CLKREQB_PAD_Y__SHIFT 0xd
+#define BIF_BX0_CLKREQB_PAD_CNTL__CLKREQB_PAD_A_MASK 0x00000001L
+#define BIF_BX0_CLKREQB_PAD_CNTL__CLKREQB_PAD_SEL_MASK 0x00000002L
+#define BIF_BX0_CLKREQB_PAD_CNTL__CLKREQB_PAD_MODE_MASK 0x00000004L
+#define BIF_BX0_CLKREQB_PAD_CNTL__CLKREQB_PAD_SPARE_MASK 0x00000018L
+#define BIF_BX0_CLKREQB_PAD_CNTL__CLKREQB_PAD_SN0_MASK 0x00000020L
+#define BIF_BX0_CLKREQB_PAD_CNTL__CLKREQB_PAD_SN1_MASK 0x00000040L
+#define BIF_BX0_CLKREQB_PAD_CNTL__CLKREQB_PAD_SN2_MASK 0x00000080L
+#define BIF_BX0_CLKREQB_PAD_CNTL__CLKREQB_PAD_SN3_MASK 0x00000100L
+#define BIF_BX0_CLKREQB_PAD_CNTL__CLKREQB_PAD_SLEWN_MASK 0x00000200L
+#define BIF_BX0_CLKREQB_PAD_CNTL__CLKREQB_PAD_WAKE_MASK 0x00000400L
+#define BIF_BX0_CLKREQB_PAD_CNTL__CLKREQB_PAD_SCHMEN_MASK 0x00000800L
+#define BIF_BX0_CLKREQB_PAD_CNTL__CLKREQB_PAD_CNTL_EN_MASK 0x00001000L
+#define BIF_BX0_CLKREQB_PAD_CNTL__CLKREQB_PAD_Y_MASK 0x00002000L
+//BIF_BX0_BIF_FEATURES_CONTROL_MISC
+#define BIF_BX0_BIF_FEATURES_CONTROL_MISC__MST_BIF_REQ_EP_DIS__SHIFT 0x0
+#define BIF_BX0_BIF_FEATURES_CONTROL_MISC__SLV_BIF_CPL_EP_DIS__SHIFT 0x1
+#define BIF_BX0_BIF_FEATURES_CONTROL_MISC__BIF_SLV_REQ_EP_DIS__SHIFT 0x2
+#define BIF_BX0_BIF_FEATURES_CONTROL_MISC__BIF_MST_CPL_EP_DIS__SHIFT 0x3
+#define BIF_BX0_BIF_FEATURES_CONTROL_MISC__BIF_RB_MSI_VEC_NOT_ENABLED_MODE__SHIFT 0xb
+#define BIF_BX0_BIF_FEATURES_CONTROL_MISC__BIF_RB_SET_OVERFLOW_EN__SHIFT 0xc
+#define BIF_BX0_BIF_FEATURES_CONTROL_MISC__ATOMIC_ERR_INT_DIS__SHIFT 0xd
+#define BIF_BX0_BIF_FEATURES_CONTROL_MISC__ATOMIC_ONLY_WRITE_DIS__SHIFT 0xe
+#define BIF_BX0_BIF_FEATURES_CONTROL_MISC__BME_HDL_NONVIR_EN__SHIFT 0xf
+#define BIF_BX0_BIF_FEATURES_CONTROL_MISC__HDP_NP_OSTD_LIMIT__SHIFT 0x10
+#define BIF_BX0_BIF_FEATURES_CONTROL_MISC__DOORBELL_SELFRING_GPA_APER_CHK_48BIT_ADDR__SHIFT 0x19
+#define BIF_BX0_BIF_FEATURES_CONTROL_MISC__MST_BIF_REQ_EP_DIS_MASK 0x00000001L
+#define BIF_BX0_BIF_FEATURES_CONTROL_MISC__SLV_BIF_CPL_EP_DIS_MASK 0x00000002L
+#define BIF_BX0_BIF_FEATURES_CONTROL_MISC__BIF_SLV_REQ_EP_DIS_MASK 0x00000004L
+#define BIF_BX0_BIF_FEATURES_CONTROL_MISC__BIF_MST_CPL_EP_DIS_MASK 0x00000008L
+#define BIF_BX0_BIF_FEATURES_CONTROL_MISC__BIF_RB_MSI_VEC_NOT_ENABLED_MODE_MASK 0x00000800L
+#define BIF_BX0_BIF_FEATURES_CONTROL_MISC__BIF_RB_SET_OVERFLOW_EN_MASK 0x00001000L
+#define BIF_BX0_BIF_FEATURES_CONTROL_MISC__ATOMIC_ERR_INT_DIS_MASK 0x00002000L
+#define BIF_BX0_BIF_FEATURES_CONTROL_MISC__ATOMIC_ONLY_WRITE_DIS_MASK 0x00004000L
+#define BIF_BX0_BIF_FEATURES_CONTROL_MISC__BME_HDL_NONVIR_EN_MASK 0x00008000L
+#define BIF_BX0_BIF_FEATURES_CONTROL_MISC__HDP_NP_OSTD_LIMIT_MASK 0x01FF0000L
+#define BIF_BX0_BIF_FEATURES_CONTROL_MISC__DOORBELL_SELFRING_GPA_APER_CHK_48BIT_ADDR_MASK 0x02000000L
+//BIF_BX0_HDP_ATOMIC_CONTROL_MISC
+#define BIF_BX0_HDP_ATOMIC_CONTROL_MISC__HDP_NP_ATOMIC_OSTD_LIMIT__SHIFT 0x0
+#define BIF_BX0_HDP_ATOMIC_CONTROL_MISC__HDP_NP_ATOMIC_OSTD_LIMIT_MASK 0x000000FFL
+//BIF_BX0_BIF_DOORBELL_CNTL
+#define BIF_BX0_BIF_DOORBELL_CNTL__SELF_RING_DIS__SHIFT 0x0
+#define BIF_BX0_BIF_DOORBELL_CNTL__TRANS_CHECK_DIS__SHIFT 0x1
+#define BIF_BX0_BIF_DOORBELL_CNTL__UNTRANS_LBACK_EN__SHIFT 0x2
+#define BIF_BX0_BIF_DOORBELL_CNTL__NON_CONSECUTIVE_BE_ZERO_DIS__SHIFT 0x3
+#define BIF_BX0_BIF_DOORBELL_CNTL__DOORBELL_MONITOR_EN__SHIFT 0x4
+#define BIF_BX0_BIF_DOORBELL_CNTL__DB_MNTR_INTGEN_DIS__SHIFT 0x18
+#define BIF_BX0_BIF_DOORBELL_CNTL__DB_MNTR_INTGEN_MODE_0__SHIFT 0x19
+#define BIF_BX0_BIF_DOORBELL_CNTL__DB_MNTR_INTGEN_MODE_1__SHIFT 0x1a
+#define BIF_BX0_BIF_DOORBELL_CNTL__DB_MNTR_INTGEN_MODE_2__SHIFT 0x1b
+#define BIF_BX0_BIF_DOORBELL_CNTL__SELF_RING_DIS_MASK 0x00000001L
+#define BIF_BX0_BIF_DOORBELL_CNTL__TRANS_CHECK_DIS_MASK 0x00000002L
+#define BIF_BX0_BIF_DOORBELL_CNTL__UNTRANS_LBACK_EN_MASK 0x00000004L
+#define BIF_BX0_BIF_DOORBELL_CNTL__NON_CONSECUTIVE_BE_ZERO_DIS_MASK 0x00000008L
+#define BIF_BX0_BIF_DOORBELL_CNTL__DOORBELL_MONITOR_EN_MASK 0x00000010L
+#define BIF_BX0_BIF_DOORBELL_CNTL__DB_MNTR_INTGEN_DIS_MASK 0x01000000L
+#define BIF_BX0_BIF_DOORBELL_CNTL__DB_MNTR_INTGEN_MODE_0_MASK 0x02000000L
+#define BIF_BX0_BIF_DOORBELL_CNTL__DB_MNTR_INTGEN_MODE_1_MASK 0x04000000L
+#define BIF_BX0_BIF_DOORBELL_CNTL__DB_MNTR_INTGEN_MODE_2_MASK 0x08000000L
+//BIF_BX0_BIF_DOORBELL_INT_CNTL
+#define BIF_BX0_BIF_DOORBELL_INT_CNTL__DOORBELL_INTERRUPT_STATUS__SHIFT 0x0
+#define BIF_BX0_BIF_DOORBELL_INT_CNTL__RAS_CNTLR_INTERRUPT_STATUS__SHIFT 0x1
+#define BIF_BX0_BIF_DOORBELL_INT_CNTL__RAS_ATHUB_ERR_EVENT_INTERRUPT_STATUS__SHIFT 0x2
+#define BIF_BX0_BIF_DOORBELL_INT_CNTL__DOORBELL_INTERRUPT_CLEAR__SHIFT 0x10
+#define BIF_BX0_BIF_DOORBELL_INT_CNTL__RAS_CNTLR_INTERRUPT_CLEAR__SHIFT 0x11
+#define BIF_BX0_BIF_DOORBELL_INT_CNTL__RAS_ATHUB_ERR_EVENT_INTERRUPT_CLEAR__SHIFT 0x12
+#define BIF_BX0_BIF_DOORBELL_INT_CNTL__RAS_CNTLR_ERR_EVENT_INTERRUPT_ENABLE__SHIFT 0x17
+#define BIF_BX0_BIF_DOORBELL_INT_CNTL__DOORBELL_INTERRUPT_DISABLE__SHIFT 0x18
+#define BIF_BX0_BIF_DOORBELL_INT_CNTL__RAS_CNTLR_INTERRUPT_DISABLE__SHIFT 0x19
+#define BIF_BX0_BIF_DOORBELL_INT_CNTL__RAS_ATHUB_ERR_EVENT_INTERRUPT_DISABLE__SHIFT 0x1a
+#define BIF_BX0_BIF_DOORBELL_INT_CNTL__SET_DB_INTR_STATUS_WHEN_RB_ENABLE__SHIFT 0x1c
+#define BIF_BX0_BIF_DOORBELL_INT_CNTL__SET_IOH_RAS_INTR_STATUS_WHEN_RB_ENABLE__SHIFT 0x1d
+#define BIF_BX0_BIF_DOORBELL_INT_CNTL__SET_ATH_RAS_INTR_STATUS_WHEN_RB_ENABLE__SHIFT 0x1e
+#define BIF_BX0_BIF_DOORBELL_INT_CNTL__TIMEOUT_ERR_EVENT_INTERRUPT_ENABLE__SHIFT 0x1f
+#define BIF_BX0_BIF_DOORBELL_INT_CNTL__DOORBELL_INTERRUPT_STATUS_MASK 0x00000001L
+#define BIF_BX0_BIF_DOORBELL_INT_CNTL__RAS_CNTLR_INTERRUPT_STATUS_MASK 0x00000002L
+#define BIF_BX0_BIF_DOORBELL_INT_CNTL__RAS_ATHUB_ERR_EVENT_INTERRUPT_STATUS_MASK 0x00000004L
+#define BIF_BX0_BIF_DOORBELL_INT_CNTL__DOORBELL_INTERRUPT_CLEAR_MASK 0x00010000L
+#define BIF_BX0_BIF_DOORBELL_INT_CNTL__RAS_CNTLR_INTERRUPT_CLEAR_MASK 0x00020000L
+#define BIF_BX0_BIF_DOORBELL_INT_CNTL__RAS_ATHUB_ERR_EVENT_INTERRUPT_CLEAR_MASK 0x00040000L
+#define BIF_BX0_BIF_DOORBELL_INT_CNTL__RAS_CNTLR_ERR_EVENT_INTERRUPT_ENABLE_MASK 0x00800000L
+#define BIF_BX0_BIF_DOORBELL_INT_CNTL__DOORBELL_INTERRUPT_DISABLE_MASK 0x01000000L
+#define BIF_BX0_BIF_DOORBELL_INT_CNTL__RAS_CNTLR_INTERRUPT_DISABLE_MASK 0x02000000L
+#define BIF_BX0_BIF_DOORBELL_INT_CNTL__RAS_ATHUB_ERR_EVENT_INTERRUPT_DISABLE_MASK 0x04000000L
+#define BIF_BX0_BIF_DOORBELL_INT_CNTL__SET_DB_INTR_STATUS_WHEN_RB_ENABLE_MASK 0x10000000L
+#define BIF_BX0_BIF_DOORBELL_INT_CNTL__SET_IOH_RAS_INTR_STATUS_WHEN_RB_ENABLE_MASK 0x20000000L
+#define BIF_BX0_BIF_DOORBELL_INT_CNTL__SET_ATH_RAS_INTR_STATUS_WHEN_RB_ENABLE_MASK 0x40000000L
+#define BIF_BX0_BIF_DOORBELL_INT_CNTL__TIMEOUT_ERR_EVENT_INTERRUPT_ENABLE_MASK 0x80000000L
+//BIF_BX0_BIF_FB_EN
+#define BIF_BX0_BIF_FB_EN__FB_READ_EN__SHIFT 0x0
+#define BIF_BX0_BIF_FB_EN__FB_WRITE_EN__SHIFT 0x1
+#define BIF_BX0_BIF_FB_EN__FB_READ_EN_MASK 0x00000001L
+#define BIF_BX0_BIF_FB_EN__FB_WRITE_EN_MASK 0x00000002L
+//BIF_BX0_BIF_INTR_CNTL
+#define BIF_BX0_BIF_INTR_CNTL__RAS_INTR_VEC_SEL__SHIFT 0x0
+#define BIF_BX0_BIF_INTR_CNTL__RAS_INTR_VEC_SEL_MASK 0x00000001L
+//BIF_BX0_BIF_MST_TRANS_PENDING_VF
+#define BIF_BX0_BIF_MST_TRANS_PENDING_VF__BIF_MST_TRANS_PENDING__SHIFT 0x0
+#define BIF_BX0_BIF_MST_TRANS_PENDING_VF__BIF_MST_TRANS_PENDING_MASK 0x7FFFFFFFL
+//BIF_BX0_BIF_SLV_TRANS_PENDING_VF
+#define BIF_BX0_BIF_SLV_TRANS_PENDING_VF__BIF_SLV_TRANS_PENDING__SHIFT 0x0
+#define BIF_BX0_BIF_SLV_TRANS_PENDING_VF__BIF_SLV_TRANS_PENDING_MASK 0x7FFFFFFFL
+//BIF_BX0_BACO_CNTL
+#define BIF_BX0_BACO_CNTL__BACO_EN__SHIFT 0x0
+#define BIF_BX0_BACO_CNTL__BACO_DUMMY_EN__SHIFT 0x2
+#define BIF_BX0_BACO_CNTL__BACO_POWER_OFF__SHIFT 0x3
+#define BIF_BX0_BACO_CNTL__BACO_DSTATE_BYPASS__SHIFT 0x5
+#define BIF_BX0_BACO_CNTL__BACO_RST_INTR_MASK__SHIFT 0x6
+#define BIF_BX0_BACO_CNTL__BACO_MODE__SHIFT 0x8
+#define BIF_BX0_BACO_CNTL__RCU_BIF_CONFIG_DONE__SHIFT 0x9
+#define BIF_BX0_BACO_CNTL__PWRGOOD_VDDSOC__SHIFT 0x10
+#define BIF_BX0_BACO_CNTL__BACO_AUTO_EXIT__SHIFT 0x1f
+#define BIF_BX0_BACO_CNTL__BACO_EN_MASK 0x00000001L
+#define BIF_BX0_BACO_CNTL__BACO_DUMMY_EN_MASK 0x00000004L
+#define BIF_BX0_BACO_CNTL__BACO_POWER_OFF_MASK 0x00000008L
+#define BIF_BX0_BACO_CNTL__BACO_DSTATE_BYPASS_MASK 0x00000020L
+#define BIF_BX0_BACO_CNTL__BACO_RST_INTR_MASK_MASK 0x00000040L
+#define BIF_BX0_BACO_CNTL__BACO_MODE_MASK 0x00000100L
+#define BIF_BX0_BACO_CNTL__RCU_BIF_CONFIG_DONE_MASK 0x00000200L
+#define BIF_BX0_BACO_CNTL__PWRGOOD_VDDSOC_MASK 0x00010000L
+#define BIF_BX0_BACO_CNTL__BACO_AUTO_EXIT_MASK 0x80000000L
+//BIF_BX0_BIF_BACO_EXIT_TIME0
+#define BIF_BX0_BIF_BACO_EXIT_TIME0__BACO_EXIT_PXEN_CLR_TIMER__SHIFT 0x0
+#define BIF_BX0_BIF_BACO_EXIT_TIME0__BACO_EXIT_PXEN_CLR_TIMER_MASK 0x000FFFFFL
+//BIF_BX0_BIF_BACO_EXIT_TIMER1
+#define BIF_BX0_BIF_BACO_EXIT_TIMER1__BACO_EXIT_SIDEBAND_TIMER__SHIFT 0x0
+#define BIF_BX0_BIF_BACO_EXIT_TIMER1__BACO_HW_AUTO_FLUSH_EN__SHIFT 0x18
+#define BIF_BX0_BIF_BACO_EXIT_TIMER1__BACO_HW_EXIT_DIS__SHIFT 0x1a
+#define BIF_BX0_BIF_BACO_EXIT_TIMER1__PX_EN_OE_IN_PX_EN_HIGH__SHIFT 0x1b
+#define BIF_BX0_BIF_BACO_EXIT_TIMER1__PX_EN_OE_IN_PX_EN_LOW__SHIFT 0x1c
+#define BIF_BX0_BIF_BACO_EXIT_TIMER1__BACO_MODE_SEL__SHIFT 0x1d
+#define BIF_BX0_BIF_BACO_EXIT_TIMER1__AUTO_BACO_EXIT_CLR_BY_HW_DIS__SHIFT 0x1f
+#define BIF_BX0_BIF_BACO_EXIT_TIMER1__BACO_EXIT_SIDEBAND_TIMER_MASK 0x000FFFFFL
+#define BIF_BX0_BIF_BACO_EXIT_TIMER1__BACO_HW_AUTO_FLUSH_EN_MASK 0x01000000L
+#define BIF_BX0_BIF_BACO_EXIT_TIMER1__BACO_HW_EXIT_DIS_MASK 0x04000000L
+#define BIF_BX0_BIF_BACO_EXIT_TIMER1__PX_EN_OE_IN_PX_EN_HIGH_MASK 0x08000000L
+#define BIF_BX0_BIF_BACO_EXIT_TIMER1__PX_EN_OE_IN_PX_EN_LOW_MASK 0x10000000L
+#define BIF_BX0_BIF_BACO_EXIT_TIMER1__BACO_MODE_SEL_MASK 0x60000000L
+#define BIF_BX0_BIF_BACO_EXIT_TIMER1__AUTO_BACO_EXIT_CLR_BY_HW_DIS_MASK 0x80000000L
+//BIF_BX0_BIF_BACO_EXIT_TIMER2
+#define BIF_BX0_BIF_BACO_EXIT_TIMER2__BACO_EXIT_LCLK_BAK_TIMER__SHIFT 0x0
+#define BIF_BX0_BIF_BACO_EXIT_TIMER2__BACO_EXIT_LCLK_BAK_TIMER_MASK 0x000FFFFFL
+//BIF_BX0_BIF_BACO_EXIT_TIMER3
+#define BIF_BX0_BIF_BACO_EXIT_TIMER3__BACO_EXIT_DUMMY_EN_CLR_TIMER__SHIFT 0x0
+#define BIF_BX0_BIF_BACO_EXIT_TIMER3__BACO_EXIT_DUMMY_EN_CLR_TIMER_MASK 0x000FFFFFL
+//BIF_BX0_BIF_BACO_EXIT_TIMER4
+#define BIF_BX0_BIF_BACO_EXIT_TIMER4__BACO_EXIT_BACO_EN_CLR_TIMER__SHIFT 0x0
+#define BIF_BX0_BIF_BACO_EXIT_TIMER4__BACO_EXIT_BACO_EN_CLR_TIMER_MASK 0x000FFFFFL
+//BIF_BX0_MEM_TYPE_CNTL
+#define BIF_BX0_MEM_TYPE_CNTL__BF_MEM_PHY_G5_G3__SHIFT 0x0
+#define BIF_BX0_MEM_TYPE_CNTL__BF_MEM_PHY_G5_G3_MASK 0x00000001L
+//BIF_BX0_NBIF_GFX_ADDR_LUT_CNTL
+#define BIF_BX0_NBIF_GFX_ADDR_LUT_CNTL__LUT_ENABLE__SHIFT 0x0
+#define BIF_BX0_NBIF_GFX_ADDR_LUT_CNTL__MSI_ADDR_MODE__SHIFT 0x1
+#define BIF_BX0_NBIF_GFX_ADDR_LUT_CNTL__LUT_BC_MODE__SHIFT 0x8
+#define BIF_BX0_NBIF_GFX_ADDR_LUT_CNTL__LUT_ENABLE_MASK 0x00000001L
+#define BIF_BX0_NBIF_GFX_ADDR_LUT_CNTL__MSI_ADDR_MODE_MASK 0x00000002L
+#define BIF_BX0_NBIF_GFX_ADDR_LUT_CNTL__LUT_BC_MODE_MASK 0x00000100L
+//BIF_BX0_NBIF_GFX_ADDR_LUT_0
+#define BIF_BX0_NBIF_GFX_ADDR_LUT_0__ADDR__SHIFT 0x0
+#define BIF_BX0_NBIF_GFX_ADDR_LUT_0__ADDR_MASK 0x00FFFFFFL
+//BIF_BX0_NBIF_GFX_ADDR_LUT_1
+#define BIF_BX0_NBIF_GFX_ADDR_LUT_1__ADDR__SHIFT 0x0
+#define BIF_BX0_NBIF_GFX_ADDR_LUT_1__ADDR_MASK 0x00FFFFFFL
+//BIF_BX0_NBIF_GFX_ADDR_LUT_2
+#define BIF_BX0_NBIF_GFX_ADDR_LUT_2__ADDR__SHIFT 0x0
+#define BIF_BX0_NBIF_GFX_ADDR_LUT_2__ADDR_MASK 0x00FFFFFFL
+//BIF_BX0_NBIF_GFX_ADDR_LUT_3
+#define BIF_BX0_NBIF_GFX_ADDR_LUT_3__ADDR__SHIFT 0x0
+#define BIF_BX0_NBIF_GFX_ADDR_LUT_3__ADDR_MASK 0x00FFFFFFL
+//BIF_BX0_NBIF_GFX_ADDR_LUT_4
+#define BIF_BX0_NBIF_GFX_ADDR_LUT_4__ADDR__SHIFT 0x0
+#define BIF_BX0_NBIF_GFX_ADDR_LUT_4__ADDR_MASK 0x00FFFFFFL
+//BIF_BX0_NBIF_GFX_ADDR_LUT_5
+#define BIF_BX0_NBIF_GFX_ADDR_LUT_5__ADDR__SHIFT 0x0
+#define BIF_BX0_NBIF_GFX_ADDR_LUT_5__ADDR_MASK 0x00FFFFFFL
+//BIF_BX0_NBIF_GFX_ADDR_LUT_6
+#define BIF_BX0_NBIF_GFX_ADDR_LUT_6__ADDR__SHIFT 0x0
+#define BIF_BX0_NBIF_GFX_ADDR_LUT_6__ADDR_MASK 0x00FFFFFFL
+//BIF_BX0_NBIF_GFX_ADDR_LUT_7
+#define BIF_BX0_NBIF_GFX_ADDR_LUT_7__ADDR__SHIFT 0x0
+#define BIF_BX0_NBIF_GFX_ADDR_LUT_7__ADDR_MASK 0x00FFFFFFL
+//BIF_BX0_NBIF_GFX_ADDR_LUT_8
+#define BIF_BX0_NBIF_GFX_ADDR_LUT_8__ADDR__SHIFT 0x0
+#define BIF_BX0_NBIF_GFX_ADDR_LUT_8__ADDR_MASK 0x00FFFFFFL
+//BIF_BX0_NBIF_GFX_ADDR_LUT_9
+#define BIF_BX0_NBIF_GFX_ADDR_LUT_9__ADDR__SHIFT 0x0
+#define BIF_BX0_NBIF_GFX_ADDR_LUT_9__ADDR_MASK 0x00FFFFFFL
+//BIF_BX0_NBIF_GFX_ADDR_LUT_10
+#define BIF_BX0_NBIF_GFX_ADDR_LUT_10__ADDR__SHIFT 0x0
+#define BIF_BX0_NBIF_GFX_ADDR_LUT_10__ADDR_MASK 0x00FFFFFFL
+//BIF_BX0_NBIF_GFX_ADDR_LUT_11
+#define BIF_BX0_NBIF_GFX_ADDR_LUT_11__ADDR__SHIFT 0x0
+#define BIF_BX0_NBIF_GFX_ADDR_LUT_11__ADDR_MASK 0x00FFFFFFL
+//BIF_BX0_NBIF_GFX_ADDR_LUT_12
+#define BIF_BX0_NBIF_GFX_ADDR_LUT_12__ADDR__SHIFT 0x0
+#define BIF_BX0_NBIF_GFX_ADDR_LUT_12__ADDR_MASK 0x00FFFFFFL
+//BIF_BX0_NBIF_GFX_ADDR_LUT_13
+#define BIF_BX0_NBIF_GFX_ADDR_LUT_13__ADDR__SHIFT 0x0
+#define BIF_BX0_NBIF_GFX_ADDR_LUT_13__ADDR_MASK 0x00FFFFFFL
+//BIF_BX0_NBIF_GFX_ADDR_LUT_14
+#define BIF_BX0_NBIF_GFX_ADDR_LUT_14__ADDR__SHIFT 0x0
+#define BIF_BX0_NBIF_GFX_ADDR_LUT_14__ADDR_MASK 0x00FFFFFFL
+//BIF_BX0_NBIF_GFX_ADDR_LUT_15
+#define BIF_BX0_NBIF_GFX_ADDR_LUT_15__ADDR__SHIFT 0x0
+#define BIF_BX0_NBIF_GFX_ADDR_LUT_15__ADDR_MASK 0x00FFFFFFL
+//BIF_BX0_REMAP_HDP_MEM_FLUSH_CNTL
+#define BIF_BX0_REMAP_HDP_MEM_FLUSH_CNTL__ADDRESS__SHIFT 0x2
+#define BIF_BX0_REMAP_HDP_MEM_FLUSH_CNTL__ADDRESS_MASK 0x0007FFFCL
+//BIF_BX0_REMAP_HDP_REG_FLUSH_CNTL
+#define BIF_BX0_REMAP_HDP_REG_FLUSH_CNTL__ADDRESS__SHIFT 0x2
+#define BIF_BX0_REMAP_HDP_REG_FLUSH_CNTL__ADDRESS_MASK 0x0007FFFCL
+//BIF_BX0_BIF_RB_CNTL
+#define BIF_BX0_BIF_RB_CNTL__RB_ENABLE__SHIFT 0x0
+#define BIF_BX0_BIF_RB_CNTL__RB_SIZE__SHIFT 0x1
+#define BIF_BX0_BIF_RB_CNTL__WPTR_WRITEBACK_ENABLE__SHIFT 0x8
+#define BIF_BX0_BIF_RB_CNTL__WPTR_WRITEBACK_TIMER__SHIFT 0x9
+#define BIF_BX0_BIF_RB_CNTL__BIF_RB_TRAN__SHIFT 0x11
+#define BIF_BX0_BIF_RB_CNTL__DIS_PROTECT_WHEN_RB_FULL__SHIFT 0x19
+#define BIF_BX0_BIF_RB_CNTL__RB_INTR_FIX_PRIORITY__SHIFT 0x1a
+#define BIF_BX0_BIF_RB_CNTL__RB_INTR_ARB_MODE__SHIFT 0x1d
+#define BIF_BX0_BIF_RB_CNTL__RB_RST_BY_FLR_DISABLE__SHIFT 0x1e
+#define BIF_BX0_BIF_RB_CNTL__WPTR_OVERFLOW_CLEAR__SHIFT 0x1f
+#define BIF_BX0_BIF_RB_CNTL__RB_ENABLE_MASK 0x00000001L
+#define BIF_BX0_BIF_RB_CNTL__RB_SIZE_MASK 0x0000003EL
+#define BIF_BX0_BIF_RB_CNTL__WPTR_WRITEBACK_ENABLE_MASK 0x00000100L
+#define BIF_BX0_BIF_RB_CNTL__WPTR_WRITEBACK_TIMER_MASK 0x00003E00L
+#define BIF_BX0_BIF_RB_CNTL__BIF_RB_TRAN_MASK 0x00020000L
+#define BIF_BX0_BIF_RB_CNTL__DIS_PROTECT_WHEN_RB_FULL_MASK 0x02000000L
+#define BIF_BX0_BIF_RB_CNTL__RB_INTR_FIX_PRIORITY_MASK 0x1C000000L
+#define BIF_BX0_BIF_RB_CNTL__RB_INTR_ARB_MODE_MASK 0x20000000L
+#define BIF_BX0_BIF_RB_CNTL__RB_RST_BY_FLR_DISABLE_MASK 0x40000000L
+#define BIF_BX0_BIF_RB_CNTL__WPTR_OVERFLOW_CLEAR_MASK 0x80000000L
+//BIF_BX0_BIF_RB_BASE
+#define BIF_BX0_BIF_RB_BASE__ADDR__SHIFT 0x0
+#define BIF_BX0_BIF_RB_BASE__ADDR_MASK 0xFFFFFFFFL
+//BIF_BX0_BIF_RB_RPTR
+#define BIF_BX0_BIF_RB_RPTR__OFFSET__SHIFT 0x2
+#define BIF_BX0_BIF_RB_RPTR__OFFSET_MASK 0x0003FFFCL
+//BIF_BX0_BIF_RB_WPTR
+#define BIF_BX0_BIF_RB_WPTR__BIF_RB_OVERFLOW__SHIFT 0x0
+#define BIF_BX0_BIF_RB_WPTR__OFFSET__SHIFT 0x2
+#define BIF_BX0_BIF_RB_WPTR__BIF_RB_OVERFLOW_MASK 0x00000001L
+#define BIF_BX0_BIF_RB_WPTR__OFFSET_MASK 0x0003FFFCL
+//BIF_BX0_BIF_RB_WPTR_ADDR_HI
+#define BIF_BX0_BIF_RB_WPTR_ADDR_HI__ADDR__SHIFT 0x0
+#define BIF_BX0_BIF_RB_WPTR_ADDR_HI__ADDR_MASK 0x000000FFL
+//BIF_BX0_BIF_RB_WPTR_ADDR_LO
+#define BIF_BX0_BIF_RB_WPTR_ADDR_LO__ADDR__SHIFT 0x2
+#define BIF_BX0_BIF_RB_WPTR_ADDR_LO__ADDR_MASK 0xFFFFFFFCL
+//BIF_BX0_MAILBOX_INDEX
+#define BIF_BX0_MAILBOX_INDEX__MAILBOX_INDEX__SHIFT 0x0
+#define BIF_BX0_MAILBOX_INDEX__MAILBOX_INDEX_MASK 0x0000001FL
+//BIF_BX0_BIF_MP1_INTR_CTRL
+#define BIF_BX0_BIF_MP1_INTR_CTRL__BACO_EXIT_DONE__SHIFT 0x0
+#define BIF_BX0_BIF_MP1_INTR_CTRL__BACO_EXIT_DONE_MASK 0x00000001L
+//BIF_BX0_BIF_PERSTB_PAD_CNTL
+#define BIF_BX0_BIF_PERSTB_PAD_CNTL__PERSTB_PAD_CNTL__SHIFT 0x0
+#define BIF_BX0_BIF_PERSTB_PAD_CNTL__PERSTB_PAD_CNTL_MASK 0x0000FFFFL
+//BIF_BX0_BIF_PX_EN_PAD_CNTL
+#define BIF_BX0_BIF_PX_EN_PAD_CNTL__PX_EN_PAD_CNTL__SHIFT 0x0
+#define BIF_BX0_BIF_PX_EN_PAD_CNTL__PX_EN_PAD_CNTL_MASK 0x00000FFFL
+//BIF_BX0_BIF_REFPADKIN_PAD_CNTL
+#define BIF_BX0_BIF_REFPADKIN_PAD_CNTL__REFPADKIN_PAD_CNTL__SHIFT 0x0
+#define BIF_BX0_BIF_REFPADKIN_PAD_CNTL__REFPADKIN_PAD_CNTL_MASK 0x000000FFL
+//BIF_BX0_BIF_CLKREQB_PAD_CNTL
+#define BIF_BX0_BIF_CLKREQB_PAD_CNTL__CLKREQB_PAD_CNTL__SHIFT 0x0
+#define BIF_BX0_BIF_CLKREQB_PAD_CNTL__CLKREQB_PAD_CNTL_MASK 0x7FFFFFFFL
+//BIF_BX0_BIF_PWRBRK_PAD_CNTL
+#define BIF_BX0_BIF_PWRBRK_PAD_CNTL__PWRBRK_PAD_CNTL__SHIFT 0x0
+#define BIF_BX0_BIF_PWRBRK_PAD_CNTL__PWRBRK_PAD_CNTL_MASK 0x000000FFL
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dev0_BIFDEC1
+//RCC_DEV0_0_RCC_ERR_INT_CNTL
+#define RCC_DEV0_0_RCC_ERR_INT_CNTL__INVALID_REG_ACCESS_IN_SRIOV_INT_EN__SHIFT 0x0
+#define RCC_DEV0_0_RCC_ERR_INT_CNTL__INVALID_REG_ACCESS_IN_SRIOV_INT_EN_MASK 0x00000001L
+//RCC_DEV0_0_RCC_BACO_CNTL_MISC
+#define RCC_DEV0_0_RCC_BACO_CNTL_MISC__BIF_ROM_REQ_DIS__SHIFT 0x0
+#define RCC_DEV0_0_RCC_BACO_CNTL_MISC__BIF_AZ_REQ_DIS__SHIFT 0x1
+#define RCC_DEV0_0_RCC_BACO_CNTL_MISC__BIF_ROM_REQ_DIS_MASK 0x00000001L
+#define RCC_DEV0_0_RCC_BACO_CNTL_MISC__BIF_AZ_REQ_DIS_MASK 0x00000002L
+//RCC_DEV0_0_RCC_RESET_EN
+#define RCC_DEV0_0_RCC_RESET_EN__DB_APER_RESET_EN__SHIFT 0xf
+#define RCC_DEV0_0_RCC_RESET_EN__DB_APER_RESET_EN_MASK 0x00008000L
+//RCC_DEV0_0_RCC_VDM_SUPPORT
+#define RCC_DEV0_0_RCC_VDM_SUPPORT__MCTP_SUPPORT__SHIFT 0x0
+#define RCC_DEV0_0_RCC_VDM_SUPPORT__AMPTP_SUPPORT__SHIFT 0x1
+#define RCC_DEV0_0_RCC_VDM_SUPPORT__OTHER_VDM_SUPPORT__SHIFT 0x2
+#define RCC_DEV0_0_RCC_VDM_SUPPORT__ROUTE_TO_RC_CHECK_IN_RCMODE__SHIFT 0x3
+#define RCC_DEV0_0_RCC_VDM_SUPPORT__ROUTE_BROADCAST_CHECK_IN_RCMODE__SHIFT 0x4
+#define RCC_DEV0_0_RCC_VDM_SUPPORT__MCTP_SUPPORT_MASK 0x00000001L
+#define RCC_DEV0_0_RCC_VDM_SUPPORT__AMPTP_SUPPORT_MASK 0x00000002L
+#define RCC_DEV0_0_RCC_VDM_SUPPORT__OTHER_VDM_SUPPORT_MASK 0x00000004L
+#define RCC_DEV0_0_RCC_VDM_SUPPORT__ROUTE_TO_RC_CHECK_IN_RCMODE_MASK 0x00000008L
+#define RCC_DEV0_0_RCC_VDM_SUPPORT__ROUTE_BROADCAST_CHECK_IN_RCMODE_MASK 0x00000010L
+//RCC_DEV0_0_RCC_MARGIN_PARAM_CNTL0
+#define RCC_DEV0_0_RCC_MARGIN_PARAM_CNTL0__MARGINING_VOLTAGE_SUPPORTED__SHIFT 0x0
+#define RCC_DEV0_0_RCC_MARGIN_PARAM_CNTL0__MARGINING_IND_LEFTRIGHT_TIMING__SHIFT 0x1
+#define RCC_DEV0_0_RCC_MARGIN_PARAM_CNTL0__MARGINING_IND_UPDOWN_VOLTAGE__SHIFT 0x2
+#define RCC_DEV0_0_RCC_MARGIN_PARAM_CNTL0__MARGINING_IND_ERROR_SAMPLER__SHIFT 0x3
+#define RCC_DEV0_0_RCC_MARGIN_PARAM_CNTL0__MARGINING_SAMPLE_REPORTING_METHOD__SHIFT 0x4
+#define RCC_DEV0_0_RCC_MARGIN_PARAM_CNTL0__MARGINING_NUM_TIMING_STEPS__SHIFT 0x5
+#define RCC_DEV0_0_RCC_MARGIN_PARAM_CNTL0__MARGINING_MAX_TIMING_OFFSET__SHIFT 0xb
+#define RCC_DEV0_0_RCC_MARGIN_PARAM_CNTL0__MARGINING_NUM_VOLTAGE_STEPS__SHIFT 0x12
+#define RCC_DEV0_0_RCC_MARGIN_PARAM_CNTL0__MARGINING_MAX_VOLTAGE_OFFSET__SHIFT 0x19
+#define RCC_DEV0_0_RCC_MARGIN_PARAM_CNTL0__MARGINING_VOLTAGE_SUPPORTED_MASK 0x00000001L
+#define RCC_DEV0_0_RCC_MARGIN_PARAM_CNTL0__MARGINING_IND_LEFTRIGHT_TIMING_MASK 0x00000002L
+#define RCC_DEV0_0_RCC_MARGIN_PARAM_CNTL0__MARGINING_IND_UPDOWN_VOLTAGE_MASK 0x00000004L
+#define RCC_DEV0_0_RCC_MARGIN_PARAM_CNTL0__MARGINING_IND_ERROR_SAMPLER_MASK 0x00000008L
+#define RCC_DEV0_0_RCC_MARGIN_PARAM_CNTL0__MARGINING_SAMPLE_REPORTING_METHOD_MASK 0x00000010L
+#define RCC_DEV0_0_RCC_MARGIN_PARAM_CNTL0__MARGINING_NUM_TIMING_STEPS_MASK 0x000007E0L
+#define RCC_DEV0_0_RCC_MARGIN_PARAM_CNTL0__MARGINING_MAX_TIMING_OFFSET_MASK 0x0003F800L
+#define RCC_DEV0_0_RCC_MARGIN_PARAM_CNTL0__MARGINING_NUM_VOLTAGE_STEPS_MASK 0x01FC0000L
+#define RCC_DEV0_0_RCC_MARGIN_PARAM_CNTL0__MARGINING_MAX_VOLTAGE_OFFSET_MASK 0xFE000000L
+//RCC_DEV0_0_RCC_MARGIN_PARAM_CNTL1
+#define RCC_DEV0_0_RCC_MARGIN_PARAM_CNTL1__MARGINING_SAMPLING_RATE_VOLTAGE__SHIFT 0x0
+#define RCC_DEV0_0_RCC_MARGIN_PARAM_CNTL1__MARGINING_SAMPLING_RATE_TIMING__SHIFT 0x6
+#define RCC_DEV0_0_RCC_MARGIN_PARAM_CNTL1__MARGINING_MAX_LANES__SHIFT 0xc
+#define RCC_DEV0_0_RCC_MARGIN_PARAM_CNTL1__MARGINING_SAMPLE_COUNT__SHIFT 0x11
+#define RCC_DEV0_0_RCC_MARGIN_PARAM_CNTL1__MARGINING_SAMPLING_RATE_VOLTAGE_MASK 0x0000003FL
+#define RCC_DEV0_0_RCC_MARGIN_PARAM_CNTL1__MARGINING_SAMPLING_RATE_TIMING_MASK 0x00000FC0L
+#define RCC_DEV0_0_RCC_MARGIN_PARAM_CNTL1__MARGINING_MAX_LANES_MASK 0x0001F000L
+#define RCC_DEV0_0_RCC_MARGIN_PARAM_CNTL1__MARGINING_SAMPLE_COUNT_MASK 0x00FE0000L
+//RCC_DEV0_0_RCC_GPUIOV_REGION
+#define RCC_DEV0_0_RCC_GPUIOV_REGION__LFB_REGION__SHIFT 0x0
+#define RCC_DEV0_0_RCC_GPUIOV_REGION__MAX_REGION__SHIFT 0x4
+#define RCC_DEV0_0_RCC_GPUIOV_REGION__LFB_REGION_MASK 0x0000000FL
+#define RCC_DEV0_0_RCC_GPUIOV_REGION__MAX_REGION_MASK 0x000000F0L
+//RCC_DEV0_0_RCC_GPU_HOSTVM_EN
+#define RCC_DEV0_0_RCC_GPU_HOSTVM_EN__GPU_HOSTVM_EN__SHIFT 0x0
+#define RCC_DEV0_0_RCC_GPU_HOSTVM_EN__GPU_HOSTVM_EN_MASK 0x00000001L
+//RCC_DEV0_0_RCC_CONSOLE_IOV_MODE_CNTL
+#define RCC_DEV0_0_RCC_CONSOLE_IOV_MODE_CNTL__RCC_CONSOLE_IOV_MODE_ENABLE__SHIFT 0x0
+#define RCC_DEV0_0_RCC_CONSOLE_IOV_MODE_CNTL__MULTIOS_IH_SUPPORT_EN__SHIFT 0x1
+#define RCC_DEV0_0_RCC_CONSOLE_IOV_MODE_CNTL__RCC_CONSOLE_IOV_MODE_ENABLE_MASK 0x00000001L
+#define RCC_DEV0_0_RCC_CONSOLE_IOV_MODE_CNTL__MULTIOS_IH_SUPPORT_EN_MASK 0x00000002L
+//RCC_DEV0_0_RCC_CONSOLE_IOV_FIRST_VF_OFFSET
+#define RCC_DEV0_0_RCC_CONSOLE_IOV_FIRST_VF_OFFSET__CONSOLE_IOV_FIRST_VF_OFFSET__SHIFT 0x0
+#define RCC_DEV0_0_RCC_CONSOLE_IOV_FIRST_VF_OFFSET__CONSOLE_IOV_FIRST_VF_OFFSET_MASK 0xFFFFL
+//RCC_DEV0_0_RCC_CONSOLE_IOV_VF_STRIDE
+#define RCC_DEV0_0_RCC_CONSOLE_IOV_VF_STRIDE__CONSOLE_IOV_VF_STRIDE__SHIFT 0x0
+#define RCC_DEV0_0_RCC_CONSOLE_IOV_VF_STRIDE__CONSOLE_IOV_VF_STRIDE_MASK 0xFFFFL
+//RCC_DEV0_0_RCC_PEER_REG_RANGE0
+#define RCC_DEV0_0_RCC_PEER_REG_RANGE0__START_ADDR__SHIFT 0x0
+#define RCC_DEV0_0_RCC_PEER_REG_RANGE0__END_ADDR__SHIFT 0x10
+#define RCC_DEV0_0_RCC_PEER_REG_RANGE0__START_ADDR_MASK 0x0000FFFFL
+#define RCC_DEV0_0_RCC_PEER_REG_RANGE0__END_ADDR_MASK 0xFFFF0000L
+//RCC_DEV0_0_RCC_PEER_REG_RANGE1
+#define RCC_DEV0_0_RCC_PEER_REG_RANGE1__START_ADDR__SHIFT 0x0
+#define RCC_DEV0_0_RCC_PEER_REG_RANGE1__END_ADDR__SHIFT 0x10
+#define RCC_DEV0_0_RCC_PEER_REG_RANGE1__START_ADDR_MASK 0x0000FFFFL
+#define RCC_DEV0_0_RCC_PEER_REG_RANGE1__END_ADDR_MASK 0xFFFF0000L
+//RCC_DEV0_0_RCC_BUS_CNTL
+#define RCC_DEV0_0_RCC_BUS_CNTL__PMI_IO_DIS__SHIFT 0x2
+#define RCC_DEV0_0_RCC_BUS_CNTL__PMI_MEM_DIS__SHIFT 0x3
+#define RCC_DEV0_0_RCC_BUS_CNTL__PMI_BM_DIS__SHIFT 0x4
+#define RCC_DEV0_0_RCC_BUS_CNTL__PMI_IO_DIS_DN__SHIFT 0x5
+#define RCC_DEV0_0_RCC_BUS_CNTL__PMI_MEM_DIS_DN__SHIFT 0x6
+#define RCC_DEV0_0_RCC_BUS_CNTL__PMI_IO_DIS_UP__SHIFT 0x7
+#define RCC_DEV0_0_RCC_BUS_CNTL__PMI_MEM_DIS_UP__SHIFT 0x8
+#define RCC_DEV0_0_RCC_BUS_CNTL__ROOT_ERR_LOG_ON_EVENT__SHIFT 0xc
+#define RCC_DEV0_0_RCC_BUS_CNTL__HOST_CPL_POISONED_LOG_IN_RC__SHIFT 0xd
+#define RCC_DEV0_0_RCC_BUS_CNTL__DN_SEC_SIG_CPLCA_WITH_EP_ERR__SHIFT 0x10
+#define RCC_DEV0_0_RCC_BUS_CNTL__DN_SEC_RCV_CPLCA_WITH_EP_ERR__SHIFT 0x11
+#define RCC_DEV0_0_RCC_BUS_CNTL__DN_SEC_RCV_CPLUR_WITH_EP_ERR__SHIFT 0x12
+#define RCC_DEV0_0_RCC_BUS_CNTL__DN_PRI_SIG_CPLCA_WITH_EP_ERR__SHIFT 0x13
+#define RCC_DEV0_0_RCC_BUS_CNTL__DN_PRI_RCV_CPLCA_WITH_EP_ERR__SHIFT 0x14
+#define RCC_DEV0_0_RCC_BUS_CNTL__DN_PRI_RCV_CPLUR_WITH_EP_ERR__SHIFT 0x15
+#define RCC_DEV0_0_RCC_BUS_CNTL__MAX_PAYLOAD_SIZE_MODE__SHIFT 0x18
+#define RCC_DEV0_0_RCC_BUS_CNTL__PRIV_MAX_PAYLOAD_SIZE__SHIFT 0x19
+#define RCC_DEV0_0_RCC_BUS_CNTL__MAX_READ_REQUEST_SIZE_MODE__SHIFT 0x1c
+#define RCC_DEV0_0_RCC_BUS_CNTL__PRIV_MAX_READ_REQUEST_SIZE__SHIFT 0x1d
+#define RCC_DEV0_0_RCC_BUS_CNTL__PMI_IO_DIS_MASK 0x00000004L
+#define RCC_DEV0_0_RCC_BUS_CNTL__PMI_MEM_DIS_MASK 0x00000008L
+#define RCC_DEV0_0_RCC_BUS_CNTL__PMI_BM_DIS_MASK 0x00000010L
+#define RCC_DEV0_0_RCC_BUS_CNTL__PMI_IO_DIS_DN_MASK 0x00000020L
+#define RCC_DEV0_0_RCC_BUS_CNTL__PMI_MEM_DIS_DN_MASK 0x00000040L
+#define RCC_DEV0_0_RCC_BUS_CNTL__PMI_IO_DIS_UP_MASK 0x00000080L
+#define RCC_DEV0_0_RCC_BUS_CNTL__PMI_MEM_DIS_UP_MASK 0x00000100L
+#define RCC_DEV0_0_RCC_BUS_CNTL__ROOT_ERR_LOG_ON_EVENT_MASK 0x00001000L
+#define RCC_DEV0_0_RCC_BUS_CNTL__HOST_CPL_POISONED_LOG_IN_RC_MASK 0x00002000L
+#define RCC_DEV0_0_RCC_BUS_CNTL__DN_SEC_SIG_CPLCA_WITH_EP_ERR_MASK 0x00010000L
+#define RCC_DEV0_0_RCC_BUS_CNTL__DN_SEC_RCV_CPLCA_WITH_EP_ERR_MASK 0x00020000L
+#define RCC_DEV0_0_RCC_BUS_CNTL__DN_SEC_RCV_CPLUR_WITH_EP_ERR_MASK 0x00040000L
+#define RCC_DEV0_0_RCC_BUS_CNTL__DN_PRI_SIG_CPLCA_WITH_EP_ERR_MASK 0x00080000L
+#define RCC_DEV0_0_RCC_BUS_CNTL__DN_PRI_RCV_CPLCA_WITH_EP_ERR_MASK 0x00100000L
+#define RCC_DEV0_0_RCC_BUS_CNTL__DN_PRI_RCV_CPLUR_WITH_EP_ERR_MASK 0x00200000L
+#define RCC_DEV0_0_RCC_BUS_CNTL__MAX_PAYLOAD_SIZE_MODE_MASK 0x01000000L
+#define RCC_DEV0_0_RCC_BUS_CNTL__PRIV_MAX_PAYLOAD_SIZE_MASK 0x0E000000L
+#define RCC_DEV0_0_RCC_BUS_CNTL__MAX_READ_REQUEST_SIZE_MODE_MASK 0x10000000L
+#define RCC_DEV0_0_RCC_BUS_CNTL__PRIV_MAX_READ_REQUEST_SIZE_MASK 0xE0000000L
+//RCC_DEV0_0_RCC_CONFIG_CNTL
+#define RCC_DEV0_0_RCC_CONFIG_CNTL__CFG_VGA_RAM_EN__SHIFT 0x0
+#define RCC_DEV0_0_RCC_CONFIG_CNTL__GENMO_MONO_ADDRESS_B__SHIFT 0x2
+#define RCC_DEV0_0_RCC_CONFIG_CNTL__GRPH_ADRSEL__SHIFT 0x3
+#define RCC_DEV0_0_RCC_CONFIG_CNTL__CFG_VGA_RAM_EN_MASK 0x00000001L
+#define RCC_DEV0_0_RCC_CONFIG_CNTL__GENMO_MONO_ADDRESS_B_MASK 0x00000004L
+#define RCC_DEV0_0_RCC_CONFIG_CNTL__GRPH_ADRSEL_MASK 0x00000018L
+//RCC_DEV0_0_RCC_CONFIG_F0_BASE
+#define RCC_DEV0_0_RCC_CONFIG_F0_BASE__F0_BASE__SHIFT 0x0
+#define RCC_DEV0_0_RCC_CONFIG_F0_BASE__F0_BASE_MASK 0xFFFFFFFFL
+//RCC_DEV0_0_RCC_CONFIG_APER_SIZE
+#define RCC_DEV0_0_RCC_CONFIG_APER_SIZE__APER_SIZE__SHIFT 0x0
+#define RCC_DEV0_0_RCC_CONFIG_APER_SIZE__APER_SIZE_MASK 0xFFFFFFFFL
+//RCC_DEV0_0_RCC_CONFIG_REG_APER_SIZE
+#define RCC_DEV0_0_RCC_CONFIG_REG_APER_SIZE__REG_APER_SIZE__SHIFT 0x0
+#define RCC_DEV0_0_RCC_CONFIG_REG_APER_SIZE__REG_APER_SIZE_MASK 0x07FFFFFFL
+//RCC_DEV0_0_RCC_XDMA_LO
+#define RCC_DEV0_0_RCC_XDMA_LO__BIF_XDMA_LOWER_BOUND__SHIFT 0x0
+#define RCC_DEV0_0_RCC_XDMA_LO__BIF_XDMA_APER_EN__SHIFT 0x1f
+#define RCC_DEV0_0_RCC_XDMA_LO__BIF_XDMA_LOWER_BOUND_MASK 0x7FFFFFFFL
+#define RCC_DEV0_0_RCC_XDMA_LO__BIF_XDMA_APER_EN_MASK 0x80000000L
+//RCC_DEV0_0_RCC_XDMA_HI
+#define RCC_DEV0_0_RCC_XDMA_HI__BIF_XDMA_UPPER_BOUND__SHIFT 0x0
+#define RCC_DEV0_0_RCC_XDMA_HI__BIF_XDMA_UPPER_BOUND_MASK 0x7FFFFFFFL
+//RCC_DEV0_0_RCC_FEATURES_CONTROL_MISC
+#define RCC_DEV0_0_RCC_FEATURES_CONTROL_MISC__INIT_PFFLR_CRS_RET_DIS__SHIFT 0x7
+#define RCC_DEV0_0_RCC_FEATURES_CONTROL_MISC__ATC_PRG_RESP_PASID_UR_EN__SHIFT 0x8
+#define RCC_DEV0_0_RCC_FEATURES_CONTROL_MISC__RX_IGNORE_TRANSMRD_UR__SHIFT 0x9
+#define RCC_DEV0_0_RCC_FEATURES_CONTROL_MISC__RX_IGNORE_TRANSMWR_UR__SHIFT 0xa
+#define RCC_DEV0_0_RCC_FEATURES_CONTROL_MISC__RX_IGNORE_ATSTRANSREQ_UR__SHIFT 0xb
+#define RCC_DEV0_0_RCC_FEATURES_CONTROL_MISC__RX_IGNORE_PAGEREQMSG_UR__SHIFT 0xc
+#define RCC_DEV0_0_RCC_FEATURES_CONTROL_MISC__RX_IGNORE_INVCPL_UR__SHIFT 0xd
+#define RCC_DEV0_0_RCC_FEATURES_CONTROL_MISC__CLR_MSI_X_PENDING_WHEN_DISABLED_DIS__SHIFT 0xe
+#define RCC_DEV0_0_RCC_FEATURES_CONTROL_MISC__CHECK_BME_ON_PENDING_PKT_GEN_DIS__SHIFT 0xf
+#define RCC_DEV0_0_RCC_FEATURES_CONTROL_MISC__PSN_CHECK_ON_PAYLOAD_DIS__SHIFT 0x10
+#define RCC_DEV0_0_RCC_FEATURES_CONTROL_MISC__CLR_MSI_PENDING_ON_MULTIEN_DIS__SHIFT 0x11
+#define RCC_DEV0_0_RCC_FEATURES_CONTROL_MISC__SET_DEVICE_ERR_FOR_ECRC_EN__SHIFT 0x12
+#define RCC_DEV0_0_RCC_FEATURES_CONTROL_MISC__HOST_POISON_FLAG_CHECK_FOR_CHAIN_DIS__SHIFT 0x13
+#define RCC_DEV0_0_RCC_FEATURES_CONTROL_MISC__INIT_PFFLR_CRS_RET_DIS_MASK 0x00000080L
+#define RCC_DEV0_0_RCC_FEATURES_CONTROL_MISC__ATC_PRG_RESP_PASID_UR_EN_MASK 0x00000100L
+#define RCC_DEV0_0_RCC_FEATURES_CONTROL_MISC__RX_IGNORE_TRANSMRD_UR_MASK 0x00000200L
+#define RCC_DEV0_0_RCC_FEATURES_CONTROL_MISC__RX_IGNORE_TRANSMWR_UR_MASK 0x00000400L
+#define RCC_DEV0_0_RCC_FEATURES_CONTROL_MISC__RX_IGNORE_ATSTRANSREQ_UR_MASK 0x00000800L
+#define RCC_DEV0_0_RCC_FEATURES_CONTROL_MISC__RX_IGNORE_PAGEREQMSG_UR_MASK 0x00001000L
+#define RCC_DEV0_0_RCC_FEATURES_CONTROL_MISC__RX_IGNORE_INVCPL_UR_MASK 0x00002000L
+#define RCC_DEV0_0_RCC_FEATURES_CONTROL_MISC__CLR_MSI_X_PENDING_WHEN_DISABLED_DIS_MASK 0x00004000L
+#define RCC_DEV0_0_RCC_FEATURES_CONTROL_MISC__CHECK_BME_ON_PENDING_PKT_GEN_DIS_MASK 0x00008000L
+#define RCC_DEV0_0_RCC_FEATURES_CONTROL_MISC__PSN_CHECK_ON_PAYLOAD_DIS_MASK 0x00010000L
+#define RCC_DEV0_0_RCC_FEATURES_CONTROL_MISC__CLR_MSI_PENDING_ON_MULTIEN_DIS_MASK 0x00020000L
+#define RCC_DEV0_0_RCC_FEATURES_CONTROL_MISC__SET_DEVICE_ERR_FOR_ECRC_EN_MASK 0x00040000L
+#define RCC_DEV0_0_RCC_FEATURES_CONTROL_MISC__HOST_POISON_FLAG_CHECK_FOR_CHAIN_DIS_MASK 0x00080000L
+//RCC_DEV0_0_RCC_BUSNUM_CNTL1
+#define RCC_DEV0_0_RCC_BUSNUM_CNTL1__ID_MASK__SHIFT 0x0
+#define RCC_DEV0_0_RCC_BUSNUM_CNTL1__ID_MASK_MASK 0x000000FFL
+//RCC_DEV0_0_RCC_BUSNUM_LIST0
+#define RCC_DEV0_0_RCC_BUSNUM_LIST0__ID0__SHIFT 0x0
+#define RCC_DEV0_0_RCC_BUSNUM_LIST0__ID1__SHIFT 0x8
+#define RCC_DEV0_0_RCC_BUSNUM_LIST0__ID2__SHIFT 0x10
+#define RCC_DEV0_0_RCC_BUSNUM_LIST0__ID3__SHIFT 0x18
+#define RCC_DEV0_0_RCC_BUSNUM_LIST0__ID0_MASK 0x000000FFL
+#define RCC_DEV0_0_RCC_BUSNUM_LIST0__ID1_MASK 0x0000FF00L
+#define RCC_DEV0_0_RCC_BUSNUM_LIST0__ID2_MASK 0x00FF0000L
+#define RCC_DEV0_0_RCC_BUSNUM_LIST0__ID3_MASK 0xFF000000L
+//RCC_DEV0_0_RCC_BUSNUM_LIST1
+#define RCC_DEV0_0_RCC_BUSNUM_LIST1__ID4__SHIFT 0x0
+#define RCC_DEV0_0_RCC_BUSNUM_LIST1__ID5__SHIFT 0x8
+#define RCC_DEV0_0_RCC_BUSNUM_LIST1__ID6__SHIFT 0x10
+#define RCC_DEV0_0_RCC_BUSNUM_LIST1__ID7__SHIFT 0x18
+#define RCC_DEV0_0_RCC_BUSNUM_LIST1__ID4_MASK 0x000000FFL
+#define RCC_DEV0_0_RCC_BUSNUM_LIST1__ID5_MASK 0x0000FF00L
+#define RCC_DEV0_0_RCC_BUSNUM_LIST1__ID6_MASK 0x00FF0000L
+#define RCC_DEV0_0_RCC_BUSNUM_LIST1__ID7_MASK 0xFF000000L
+//RCC_DEV0_0_RCC_BUSNUM_CNTL2
+#define RCC_DEV0_0_RCC_BUSNUM_CNTL2__AUTOUPDATE_SEL__SHIFT 0x0
+#define RCC_DEV0_0_RCC_BUSNUM_CNTL2__AUTOUPDATE_EN__SHIFT 0x8
+#define RCC_DEV0_0_RCC_BUSNUM_CNTL2__HDPREG_CNTL__SHIFT 0x10
+#define RCC_DEV0_0_RCC_BUSNUM_CNTL2__ERROR_MULTIPLE_ID_MATCH__SHIFT 0x11
+#define RCC_DEV0_0_RCC_BUSNUM_CNTL2__AUTOUPDATE_SEL_MASK 0x000000FFL
+#define RCC_DEV0_0_RCC_BUSNUM_CNTL2__AUTOUPDATE_EN_MASK 0x00000100L
+#define RCC_DEV0_0_RCC_BUSNUM_CNTL2__HDPREG_CNTL_MASK 0x00010000L
+#define RCC_DEV0_0_RCC_BUSNUM_CNTL2__ERROR_MULTIPLE_ID_MATCH_MASK 0x00020000L
+//RCC_DEV0_0_RCC_CAPTURE_HOST_BUSNUM
+#define RCC_DEV0_0_RCC_CAPTURE_HOST_BUSNUM__CHECK_EN__SHIFT 0x0
+#define RCC_DEV0_0_RCC_CAPTURE_HOST_BUSNUM__CHECK_EN_MASK 0x00000001L
+//RCC_DEV0_0_RCC_HOST_BUSNUM
+#define RCC_DEV0_0_RCC_HOST_BUSNUM__HOST_ID__SHIFT 0x0
+#define RCC_DEV0_0_RCC_HOST_BUSNUM__HOST_ID_MASK 0x0000FFFFL
+//RCC_DEV0_0_RCC_PEER0_FB_OFFSET_HI
+#define RCC_DEV0_0_RCC_PEER0_FB_OFFSET_HI__PEER0_FB_OFFSET_HI__SHIFT 0x0
+#define RCC_DEV0_0_RCC_PEER0_FB_OFFSET_HI__PEER0_FB_OFFSET_HI_MASK 0x000FFFFFL
+//RCC_DEV0_0_RCC_PEER0_FB_OFFSET_LO
+#define RCC_DEV0_0_RCC_PEER0_FB_OFFSET_LO__PEER0_FB_OFFSET_LO__SHIFT 0x0
+#define RCC_DEV0_0_RCC_PEER0_FB_OFFSET_LO__PEER0_FB_EN__SHIFT 0x1f
+#define RCC_DEV0_0_RCC_PEER0_FB_OFFSET_LO__PEER0_FB_OFFSET_LO_MASK 0x000FFFFFL
+#define RCC_DEV0_0_RCC_PEER0_FB_OFFSET_LO__PEER0_FB_EN_MASK 0x80000000L
+//RCC_DEV0_0_RCC_PEER1_FB_OFFSET_HI
+#define RCC_DEV0_0_RCC_PEER1_FB_OFFSET_HI__PEER1_FB_OFFSET_HI__SHIFT 0x0
+#define RCC_DEV0_0_RCC_PEER1_FB_OFFSET_HI__PEER1_FB_OFFSET_HI_MASK 0x000FFFFFL
+//RCC_DEV0_0_RCC_PEER1_FB_OFFSET_LO
+#define RCC_DEV0_0_RCC_PEER1_FB_OFFSET_LO__PEER1_FB_OFFSET_LO__SHIFT 0x0
+#define RCC_DEV0_0_RCC_PEER1_FB_OFFSET_LO__PEER1_FB_EN__SHIFT 0x1f
+#define RCC_DEV0_0_RCC_PEER1_FB_OFFSET_LO__PEER1_FB_OFFSET_LO_MASK 0x000FFFFFL
+#define RCC_DEV0_0_RCC_PEER1_FB_OFFSET_LO__PEER1_FB_EN_MASK 0x80000000L
+//RCC_DEV0_0_RCC_PEER2_FB_OFFSET_HI
+#define RCC_DEV0_0_RCC_PEER2_FB_OFFSET_HI__PEER2_FB_OFFSET_HI__SHIFT 0x0
+#define RCC_DEV0_0_RCC_PEER2_FB_OFFSET_HI__PEER2_FB_OFFSET_HI_MASK 0x000FFFFFL
+//RCC_DEV0_0_RCC_PEER2_FB_OFFSET_LO
+#define RCC_DEV0_0_RCC_PEER2_FB_OFFSET_LO__PEER2_FB_OFFSET_LO__SHIFT 0x0
+#define RCC_DEV0_0_RCC_PEER2_FB_OFFSET_LO__PEER2_FB_EN__SHIFT 0x1f
+#define RCC_DEV0_0_RCC_PEER2_FB_OFFSET_LO__PEER2_FB_OFFSET_LO_MASK 0x000FFFFFL
+#define RCC_DEV0_0_RCC_PEER2_FB_OFFSET_LO__PEER2_FB_EN_MASK 0x80000000L
+//RCC_DEV0_0_RCC_PEER3_FB_OFFSET_HI
+#define RCC_DEV0_0_RCC_PEER3_FB_OFFSET_HI__PEER3_FB_OFFSET_HI__SHIFT 0x0
+#define RCC_DEV0_0_RCC_PEER3_FB_OFFSET_HI__PEER3_FB_OFFSET_HI_MASK 0x000FFFFFL
+//RCC_DEV0_0_RCC_PEER3_FB_OFFSET_LO
+#define RCC_DEV0_0_RCC_PEER3_FB_OFFSET_LO__PEER3_FB_OFFSET_LO__SHIFT 0x0
+#define RCC_DEV0_0_RCC_PEER3_FB_OFFSET_LO__PEER3_FB_EN__SHIFT 0x1f
+#define RCC_DEV0_0_RCC_PEER3_FB_OFFSET_LO__PEER3_FB_OFFSET_LO_MASK 0x000FFFFFL
+#define RCC_DEV0_0_RCC_PEER3_FB_OFFSET_LO__PEER3_FB_EN_MASK 0x80000000L
+//RCC_DEV0_0_RCC_DEVFUNCNUM_LIST0
+#define RCC_DEV0_0_RCC_DEVFUNCNUM_LIST0__DEVFUNC_ID0__SHIFT 0x0
+#define RCC_DEV0_0_RCC_DEVFUNCNUM_LIST0__DEVFUNC_ID1__SHIFT 0x8
+#define RCC_DEV0_0_RCC_DEVFUNCNUM_LIST0__DEVFUNC_ID2__SHIFT 0x10
+#define RCC_DEV0_0_RCC_DEVFUNCNUM_LIST0__DEVFUNC_ID3__SHIFT 0x18
+#define RCC_DEV0_0_RCC_DEVFUNCNUM_LIST0__DEVFUNC_ID0_MASK 0x000000FFL
+#define RCC_DEV0_0_RCC_DEVFUNCNUM_LIST0__DEVFUNC_ID1_MASK 0x0000FF00L
+#define RCC_DEV0_0_RCC_DEVFUNCNUM_LIST0__DEVFUNC_ID2_MASK 0x00FF0000L
+#define RCC_DEV0_0_RCC_DEVFUNCNUM_LIST0__DEVFUNC_ID3_MASK 0xFF000000L
+//RCC_DEV0_0_RCC_DEVFUNCNUM_LIST1
+#define RCC_DEV0_0_RCC_DEVFUNCNUM_LIST1__DEVFUNC_ID4__SHIFT 0x0
+#define RCC_DEV0_0_RCC_DEVFUNCNUM_LIST1__DEVFUNC_ID5__SHIFT 0x8
+#define RCC_DEV0_0_RCC_DEVFUNCNUM_LIST1__DEVFUNC_ID6__SHIFT 0x10
+#define RCC_DEV0_0_RCC_DEVFUNCNUM_LIST1__DEVFUNC_ID7__SHIFT 0x18
+#define RCC_DEV0_0_RCC_DEVFUNCNUM_LIST1__DEVFUNC_ID4_MASK 0x000000FFL
+#define RCC_DEV0_0_RCC_DEVFUNCNUM_LIST1__DEVFUNC_ID5_MASK 0x0000FF00L
+#define RCC_DEV0_0_RCC_DEVFUNCNUM_LIST1__DEVFUNC_ID6_MASK 0x00FF0000L
+#define RCC_DEV0_0_RCC_DEVFUNCNUM_LIST1__DEVFUNC_ID7_MASK 0xFF000000L
+//RCC_DEV0_0_RCC_DEV0_LINK_CNTL
+#define RCC_DEV0_0_RCC_DEV0_LINK_CNTL__LINK_DOWN_EXIT__SHIFT 0x0
+#define RCC_DEV0_0_RCC_DEV0_LINK_CNTL__LINK_DOWN_ENTRY__SHIFT 0x8
+#define RCC_DEV0_0_RCC_DEV0_LINK_CNTL__SWUS_SRB_RST_TLS_DIS__SHIFT 0x10
+#define RCC_DEV0_0_RCC_DEV0_LINK_CNTL__SWUS_LDN_RST_TLS_DIS__SHIFT 0x11
+#define RCC_DEV0_0_RCC_DEV0_LINK_CNTL__LINK_DOWN_EXIT_MASK 0x00000001L
+#define RCC_DEV0_0_RCC_DEV0_LINK_CNTL__LINK_DOWN_ENTRY_MASK 0x00000100L
+#define RCC_DEV0_0_RCC_DEV0_LINK_CNTL__SWUS_SRB_RST_TLS_DIS_MASK 0x00010000L
+#define RCC_DEV0_0_RCC_DEV0_LINK_CNTL__SWUS_LDN_RST_TLS_DIS_MASK 0x00020000L
+//RCC_DEV0_0_RCC_CMN_LINK_CNTL
+#define RCC_DEV0_0_RCC_CMN_LINK_CNTL__BLOCK_PME_ON_L0S_DIS__SHIFT 0x0
+#define RCC_DEV0_0_RCC_CMN_LINK_CNTL__BLOCK_PME_ON_L1_DIS__SHIFT 0x1
+#define RCC_DEV0_0_RCC_CMN_LINK_CNTL__BLOCK_PME_ON_LDN_DIS__SHIFT 0x2
+#define RCC_DEV0_0_RCC_CMN_LINK_CNTL__PM_L1_IDLE_CHECK_DMA_EN__SHIFT 0x3
+#define RCC_DEV0_0_RCC_CMN_LINK_CNTL__VLINK_IN_L1LTR_TIMER__SHIFT 0x10
+#define RCC_DEV0_0_RCC_CMN_LINK_CNTL__BLOCK_PME_ON_L0S_DIS_MASK 0x00000001L
+#define RCC_DEV0_0_RCC_CMN_LINK_CNTL__BLOCK_PME_ON_L1_DIS_MASK 0x00000002L
+#define RCC_DEV0_0_RCC_CMN_LINK_CNTL__BLOCK_PME_ON_LDN_DIS_MASK 0x00000004L
+#define RCC_DEV0_0_RCC_CMN_LINK_CNTL__PM_L1_IDLE_CHECK_DMA_EN_MASK 0x00000008L
+#define RCC_DEV0_0_RCC_CMN_LINK_CNTL__VLINK_IN_L1LTR_TIMER_MASK 0xFFFF0000L
+//RCC_DEV0_0_RCC_EP_REQUESTERID_RESTORE
+#define RCC_DEV0_0_RCC_EP_REQUESTERID_RESTORE__EP_REQID_BUS__SHIFT 0x0
+#define RCC_DEV0_0_RCC_EP_REQUESTERID_RESTORE__EP_REQID_DEV__SHIFT 0x8
+#define RCC_DEV0_0_RCC_EP_REQUESTERID_RESTORE__EP_REQID_BUS_MASK 0x000000FFL
+#define RCC_DEV0_0_RCC_EP_REQUESTERID_RESTORE__EP_REQID_DEV_MASK 0x00001F00L
+//RCC_DEV0_0_RCC_LTR_LSWITCH_CNTL
+#define RCC_DEV0_0_RCC_LTR_LSWITCH_CNTL__LSWITCH_LATENCY_VALUE__SHIFT 0x0
+#define RCC_DEV0_0_RCC_LTR_LSWITCH_CNTL__LSWITCH_LATENCY_VALUE_MASK 0x000003FFL
+//RCC_DEV0_0_RCC_MH_ARB_CNTL
+#define RCC_DEV0_0_RCC_MH_ARB_CNTL__MH_ARB_MODE__SHIFT 0x0
+#define RCC_DEV0_0_RCC_MH_ARB_CNTL__MH_ARB_FIX_PRIORITY__SHIFT 0x1
+#define RCC_DEV0_0_RCC_MH_ARB_CNTL__MH_ARB_MODE_MASK 0x00000001L
+#define RCC_DEV0_0_RCC_MH_ARB_CNTL__MH_ARB_FIX_PRIORITY_MASK 0x00007FFEL
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dev0_epf0_BIFDEC2
+//RCC_DEV0_EPF0_GFXMSIX_VECT0_ADDR_LO
+#define RCC_DEV0_EPF0_GFXMSIX_VECT0_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define RCC_DEV0_EPF0_GFXMSIX_VECT0_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//RCC_DEV0_EPF0_GFXMSIX_VECT0_ADDR_HI
+#define RCC_DEV0_EPF0_GFXMSIX_VECT0_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define RCC_DEV0_EPF0_GFXMSIX_VECT0_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_GFXMSIX_VECT0_MSG_DATA
+#define RCC_DEV0_EPF0_GFXMSIX_VECT0_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define RCC_DEV0_EPF0_GFXMSIX_VECT0_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_GFXMSIX_VECT0_CONTROL
+#define RCC_DEV0_EPF0_GFXMSIX_VECT0_CONTROL__MASK_BIT__SHIFT 0x0
+#define RCC_DEV0_EPF0_GFXMSIX_VECT0_CONTROL__MASK_BIT_MASK 0x00000001L
+//RCC_DEV0_EPF0_GFXMSIX_VECT1_ADDR_LO
+#define RCC_DEV0_EPF0_GFXMSIX_VECT1_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define RCC_DEV0_EPF0_GFXMSIX_VECT1_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//RCC_DEV0_EPF0_GFXMSIX_VECT1_ADDR_HI
+#define RCC_DEV0_EPF0_GFXMSIX_VECT1_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define RCC_DEV0_EPF0_GFXMSIX_VECT1_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_GFXMSIX_VECT1_MSG_DATA
+#define RCC_DEV0_EPF0_GFXMSIX_VECT1_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define RCC_DEV0_EPF0_GFXMSIX_VECT1_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_GFXMSIX_VECT1_CONTROL
+#define RCC_DEV0_EPF0_GFXMSIX_VECT1_CONTROL__MASK_BIT__SHIFT 0x0
+#define RCC_DEV0_EPF0_GFXMSIX_VECT1_CONTROL__MASK_BIT_MASK 0x00000001L
+//RCC_DEV0_EPF0_GFXMSIX_VECT2_ADDR_LO
+#define RCC_DEV0_EPF0_GFXMSIX_VECT2_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define RCC_DEV0_EPF0_GFXMSIX_VECT2_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//RCC_DEV0_EPF0_GFXMSIX_VECT2_ADDR_HI
+#define RCC_DEV0_EPF0_GFXMSIX_VECT2_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define RCC_DEV0_EPF0_GFXMSIX_VECT2_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_GFXMSIX_VECT2_MSG_DATA
+#define RCC_DEV0_EPF0_GFXMSIX_VECT2_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define RCC_DEV0_EPF0_GFXMSIX_VECT2_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_GFXMSIX_VECT2_CONTROL
+#define RCC_DEV0_EPF0_GFXMSIX_VECT2_CONTROL__MASK_BIT__SHIFT 0x0
+#define RCC_DEV0_EPF0_GFXMSIX_VECT2_CONTROL__MASK_BIT_MASK 0x00000001L
+//RCC_DEV0_EPF0_GFXMSIX_VECT3_ADDR_LO
+#define RCC_DEV0_EPF0_GFXMSIX_VECT3_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define RCC_DEV0_EPF0_GFXMSIX_VECT3_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//RCC_DEV0_EPF0_GFXMSIX_VECT3_ADDR_HI
+#define RCC_DEV0_EPF0_GFXMSIX_VECT3_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define RCC_DEV0_EPF0_GFXMSIX_VECT3_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_GFXMSIX_VECT3_MSG_DATA
+#define RCC_DEV0_EPF0_GFXMSIX_VECT3_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define RCC_DEV0_EPF0_GFXMSIX_VECT3_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_GFXMSIX_VECT3_CONTROL
+#define RCC_DEV0_EPF0_GFXMSIX_VECT3_CONTROL__MASK_BIT__SHIFT 0x0
+#define RCC_DEV0_EPF0_GFXMSIX_VECT3_CONTROL__MASK_BIT_MASK 0x00000001L
+//RCC_DEV0_EPF0_GFXMSIX_PBA
+#define RCC_DEV0_EPF0_GFXMSIX_PBA__MSIX_PENDING_BITS_0__SHIFT 0x0
+#define RCC_DEV0_EPF0_GFXMSIX_PBA__MSIX_PENDING_BITS_1__SHIFT 0x1
+#define RCC_DEV0_EPF0_GFXMSIX_PBA__MSIX_PENDING_BITS_2__SHIFT 0x2
+#define RCC_DEV0_EPF0_GFXMSIX_PBA__MSIX_PENDING_BITS_3__SHIFT 0x3
+#define RCC_DEV0_EPF0_GFXMSIX_PBA__MSIX_PENDING_BITS_0_MASK 0x00000001L
+#define RCC_DEV0_EPF0_GFXMSIX_PBA__MSIX_PENDING_BITS_1_MASK 0x00000002L
+#define RCC_DEV0_EPF0_GFXMSIX_PBA__MSIX_PENDING_BITS_2_MASK 0x00000004L
+#define RCC_DEV0_EPF0_GFXMSIX_PBA__MSIX_PENDING_BITS_3_MASK 0x00000008L
+
+
+// addressBlock: aid_nbio_nbif0_rcc_strap_BIFDEC1
+//RCC_STRAP0_RCC_BIF_STRAP0
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_GEN4_DIS__SHIFT 0x0
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_EXPANSION_ROM_VALIDATION_SUPPORT__SHIFT 0x1
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_VGA_DIS_PIN__SHIFT 0x2
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_MEM_AP_SIZE_PIN__SHIFT 0x3
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_BIOS_ROM_EN_PIN__SHIFT 0x6
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_PX_CAPABLE__SHIFT 0x7
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_BIF_KILL_GEN3__SHIFT 0x8
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_MSI_FIRST_BE_FULL_PAYLOAD_EN__SHIFT 0x9
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_NBIF_IGNORE_ERR_INFLR__SHIFT 0xa
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_PME_SUPPORT_COMPLIANCE_EN__SHIFT 0xb
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_RX_IGNORE_EP_ERR__SHIFT 0xc
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_RX_IGNORE_MSG_ERR__SHIFT 0xd
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_RX_IGNORE_MAX_PAYLOAD_ERR__SHIFT 0xe
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_RX_IGNORE_SHORTPREFIX_ERR_DN__SHIFT 0xf
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_RX_IGNORE_TC_ERR__SHIFT 0x10
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_RX_IGNORE_TC_ERR_DN__SHIFT 0x11
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_AUD_PIN__SHIFT 0x12
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_GEN3_DIS__SHIFT 0x18
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_BIF_KILL_GEN4__SHIFT 0x19
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_QUICKSIM_START__SHIFT 0x1a
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_NO_RO_ENABLED_P2P_PASSING__SHIFT 0x1b
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_IGNORE_LOCAL_PREFIX_UR_SWUS__SHIFT 0x1c
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_CFG0_RD_VF_BUSNUM_CHK_EN__SHIFT 0x1d
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_BIGAPU_MODE__SHIFT 0x1e
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_LINK_DOWN_RESET_EN__SHIFT 0x1f
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_GEN4_DIS_MASK 0x00000001L
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_EXPANSION_ROM_VALIDATION_SUPPORT_MASK 0x00000002L
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_VGA_DIS_PIN_MASK 0x00000004L
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_MEM_AP_SIZE_PIN_MASK 0x00000038L
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_BIOS_ROM_EN_PIN_MASK 0x00000040L
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_PX_CAPABLE_MASK 0x00000080L
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_BIF_KILL_GEN3_MASK 0x00000100L
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_MSI_FIRST_BE_FULL_PAYLOAD_EN_MASK 0x00000200L
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_NBIF_IGNORE_ERR_INFLR_MASK 0x00000400L
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_PME_SUPPORT_COMPLIANCE_EN_MASK 0x00000800L
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_RX_IGNORE_EP_ERR_MASK 0x00001000L
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_RX_IGNORE_MSG_ERR_MASK 0x00002000L
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_RX_IGNORE_MAX_PAYLOAD_ERR_MASK 0x00004000L
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_RX_IGNORE_SHORTPREFIX_ERR_DN_MASK 0x00008000L
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_RX_IGNORE_TC_ERR_MASK 0x00010000L
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_RX_IGNORE_TC_ERR_DN_MASK 0x00020000L
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_AUD_PIN_MASK 0x000C0000L
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_GEN3_DIS_MASK 0x01000000L
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_BIF_KILL_GEN4_MASK 0x02000000L
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_QUICKSIM_START_MASK 0x04000000L
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_NO_RO_ENABLED_P2P_PASSING_MASK 0x08000000L
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_IGNORE_LOCAL_PREFIX_UR_SWUS_MASK 0x10000000L
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_CFG0_RD_VF_BUSNUM_CHK_EN_MASK 0x20000000L
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_BIGAPU_MODE_MASK 0x40000000L
+#define RCC_STRAP0_RCC_BIF_STRAP0__STRAP_LINK_DOWN_RESET_EN_MASK 0x80000000L
+//RCC_STRAP0_RCC_BIF_STRAP1
+#define RCC_STRAP0_RCC_BIF_STRAP1__FUSESTRAP_VALID__SHIFT 0x0
+#define RCC_STRAP0_RCC_BIF_STRAP1__ROMSTRAP_VALID__SHIFT 0x1
+#define RCC_STRAP0_RCC_BIF_STRAP1__WRITE_DISABLE__SHIFT 0x2
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_ECRC_INTERMEDIATE_CHK_EN__SHIFT 0x3
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_IGNORE_E2E_PREFIX_UR_SWUS__SHIFT 0x5
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_MARGINING_USES_SOFTWARE__SHIFT 0x6
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_MARGINING_READY__SHIFT 0x7
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_SWUS_APER_EN__SHIFT 0x8
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_SWUS_64BAR_EN__SHIFT 0x9
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_SWUS_AP_SIZE__SHIFT 0xa
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_SWUS_APER_PREFETCHABLE__SHIFT 0xc
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_HWREV_LSB2__SHIFT 0xd
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_SWREV_LSB2__SHIFT 0xf
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_LINK_RST_CFG_ONLY__SHIFT 0x11
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_BIF_IOV_LKRST_DIS__SHIFT 0x12
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_DLF_EN__SHIFT 0x13
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_PHY_16GT_EN__SHIFT 0x14
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_MARGIN_EN__SHIFT 0x15
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_BIF_PSN_UR_RPT_EN__SHIFT 0x16
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_BIF_SLOT_POWER_SUPPORT_EN__SHIFT 0x17
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_S5_REGS_ACCESS_DIS__SHIFT 0x18
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_S5_MMREG_WR_POSTED_EN__SHIFT 0x19
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_GFX_FUNC_LTR_MODE__SHIFT 0x1a
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_GSI_SMN_POSTWR_MULTI_EN__SHIFT 0x1b
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_DLF_EN_EP__SHIFT 0x1d
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_AP_EN__SHIFT 0x1e
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_AP_EN_DN__SHIFT 0x1f
+#define RCC_STRAP0_RCC_BIF_STRAP1__FUSESTRAP_VALID_MASK 0x00000001L
+#define RCC_STRAP0_RCC_BIF_STRAP1__ROMSTRAP_VALID_MASK 0x00000002L
+#define RCC_STRAP0_RCC_BIF_STRAP1__WRITE_DISABLE_MASK 0x00000004L
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_ECRC_INTERMEDIATE_CHK_EN_MASK 0x00000008L
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_IGNORE_E2E_PREFIX_UR_SWUS_MASK 0x00000020L
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_MARGINING_USES_SOFTWARE_MASK 0x00000040L
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_MARGINING_READY_MASK 0x00000080L
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_SWUS_APER_EN_MASK 0x00000100L
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_SWUS_64BAR_EN_MASK 0x00000200L
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_SWUS_AP_SIZE_MASK 0x00000C00L
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_SWUS_APER_PREFETCHABLE_MASK 0x00001000L
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_HWREV_LSB2_MASK 0x00006000L
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_SWREV_LSB2_MASK 0x00018000L
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_LINK_RST_CFG_ONLY_MASK 0x00020000L
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_BIF_IOV_LKRST_DIS_MASK 0x00040000L
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_DLF_EN_MASK 0x00080000L
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_PHY_16GT_EN_MASK 0x00100000L
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_MARGIN_EN_MASK 0x00200000L
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_BIF_PSN_UR_RPT_EN_MASK 0x00400000L
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_BIF_SLOT_POWER_SUPPORT_EN_MASK 0x00800000L
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_S5_REGS_ACCESS_DIS_MASK 0x01000000L
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_S5_MMREG_WR_POSTED_EN_MASK 0x02000000L
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_GFX_FUNC_LTR_MODE_MASK 0x04000000L
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_GSI_SMN_POSTWR_MULTI_EN_MASK 0x18000000L
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_DLF_EN_EP_MASK 0x20000000L
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_AP_EN_MASK 0x40000000L
+#define RCC_STRAP0_RCC_BIF_STRAP1__STRAP_AP_EN_DN_MASK 0x80000000L
+//RCC_STRAP0_RCC_BIF_STRAP2
+#define RCC_STRAP0_RCC_BIF_STRAP2__STRAP_PCIESWUS_INDEX_APER_RANGE__SHIFT 0x0
+#define RCC_STRAP0_RCC_BIF_STRAP2__STRAP_SUC_IND_ACCESS_DIS__SHIFT 0x3
+#define RCC_STRAP0_RCC_BIF_STRAP2__STRAP_SUM_IND_ACCESS_DIS__SHIFT 0x4
+#define RCC_STRAP0_RCC_BIF_STRAP2__STRAP_ENDP_LINKDOWN_DROP_DMA__SHIFT 0x5
+#define RCC_STRAP0_RCC_BIF_STRAP2__STRAP_SWITCH_LINKDOWN_DROP_DMA__SHIFT 0x6
+#define RCC_STRAP0_RCC_BIF_STRAP2__STRAP_SWUS_SEC_LVL_OVRD_EN__SHIFT 0x7
+#define RCC_STRAP0_RCC_BIF_STRAP2__STRAP_GMI_DNS_SDP_CLKREQ_TOGGLE_DIS__SHIFT 0x8
+#define RCC_STRAP0_RCC_BIF_STRAP2__STRAP_ACS_MSKSEV_EP_HIDE_DIS__SHIFT 0x9
+#define RCC_STRAP0_RCC_BIF_STRAP2__STRAP_CFG_PG_FW_INTERLOCK_EXIT_EN__SHIFT 0xa
+#define RCC_STRAP0_RCC_BIF_STRAP2__RESERVED_BIF_STRAP2__SHIFT 0xd
+#define RCC_STRAP0_RCC_BIF_STRAP2__STRAP_LTR_IN_ASPML1_DIS__SHIFT 0xe
+#define RCC_STRAP0_RCC_BIF_STRAP2__STRAP_GFXAZ_POWERSTATE_INTERLOCK_EN__SHIFT 0xf
+#define RCC_STRAP0_RCC_BIF_STRAP2__STRAP_PWRBRK_DEGLITCH_CYCLE__SHIFT 0x10
+#define RCC_STRAP0_RCC_BIF_STRAP2__STRAP_PWRBRK_DEGLITCH_BYPASS__SHIFT 0x18
+#define RCC_STRAP0_RCC_BIF_STRAP2__STRAP_VLINK_PMETO_LDN_EXIT_BY_LNKRST_DIS__SHIFT 0x1f
+#define RCC_STRAP0_RCC_BIF_STRAP2__STRAP_PCIESWUS_INDEX_APER_RANGE_MASK 0x00000001L
+#define RCC_STRAP0_RCC_BIF_STRAP2__STRAP_SUC_IND_ACCESS_DIS_MASK 0x00000008L
+#define RCC_STRAP0_RCC_BIF_STRAP2__STRAP_SUM_IND_ACCESS_DIS_MASK 0x00000010L
+#define RCC_STRAP0_RCC_BIF_STRAP2__STRAP_ENDP_LINKDOWN_DROP_DMA_MASK 0x00000020L
+#define RCC_STRAP0_RCC_BIF_STRAP2__STRAP_SWITCH_LINKDOWN_DROP_DMA_MASK 0x00000040L
+#define RCC_STRAP0_RCC_BIF_STRAP2__STRAP_SWUS_SEC_LVL_OVRD_EN_MASK 0x00000080L
+#define RCC_STRAP0_RCC_BIF_STRAP2__STRAP_GMI_DNS_SDP_CLKREQ_TOGGLE_DIS_MASK 0x00000100L
+#define RCC_STRAP0_RCC_BIF_STRAP2__STRAP_ACS_MSKSEV_EP_HIDE_DIS_MASK 0x00000200L
+#define RCC_STRAP0_RCC_BIF_STRAP2__STRAP_CFG_PG_FW_INTERLOCK_EXIT_EN_MASK 0x00000C00L
+#define RCC_STRAP0_RCC_BIF_STRAP2__RESERVED_BIF_STRAP2_MASK 0x00002000L
+#define RCC_STRAP0_RCC_BIF_STRAP2__STRAP_LTR_IN_ASPML1_DIS_MASK 0x00004000L
+#define RCC_STRAP0_RCC_BIF_STRAP2__STRAP_GFXAZ_POWERSTATE_INTERLOCK_EN_MASK 0x00008000L
+#define RCC_STRAP0_RCC_BIF_STRAP2__STRAP_PWRBRK_DEGLITCH_CYCLE_MASK 0x00FF0000L
+#define RCC_STRAP0_RCC_BIF_STRAP2__STRAP_PWRBRK_DEGLITCH_BYPASS_MASK 0x01000000L
+#define RCC_STRAP0_RCC_BIF_STRAP2__STRAP_VLINK_PMETO_LDN_EXIT_BY_LNKRST_DIS_MASK 0x80000000L
+//RCC_STRAP0_RCC_BIF_STRAP3
+#define RCC_STRAP0_RCC_BIF_STRAP3__STRAP_VLINK_ASPM_IDLE_TIMER__SHIFT 0x0
+#define RCC_STRAP0_RCC_BIF_STRAP3__STRAP_VLINK_PM_L1_ENTRY_TIMER__SHIFT 0x10
+#define RCC_STRAP0_RCC_BIF_STRAP3__STRAP_VLINK_ASPM_IDLE_TIMER_MASK 0x0000FFFFL
+#define RCC_STRAP0_RCC_BIF_STRAP3__STRAP_VLINK_PM_L1_ENTRY_TIMER_MASK 0xFFFF0000L
+//RCC_STRAP0_RCC_BIF_STRAP4
+#define RCC_STRAP0_RCC_BIF_STRAP4__STRAP_VLINK_L0S_EXIT_TIMER__SHIFT 0x0
+#define RCC_STRAP0_RCC_BIF_STRAP4__STRAP_VLINK_L1_EXIT_TIMER__SHIFT 0x10
+#define RCC_STRAP0_RCC_BIF_STRAP4__STRAP_VLINK_L0S_EXIT_TIMER_MASK 0x0000FFFFL
+#define RCC_STRAP0_RCC_BIF_STRAP4__STRAP_VLINK_L1_EXIT_TIMER_MASK 0xFFFF0000L
+//RCC_STRAP0_RCC_BIF_STRAP5
+#define RCC_STRAP0_RCC_BIF_STRAP5__STRAP_VLINK_LDN_ENTRY_TIMER__SHIFT 0x0
+#define RCC_STRAP0_RCC_BIF_STRAP5__STRAP_VLINK_LDN_ON_SWUS_LDN_EN__SHIFT 0x10
+#define RCC_STRAP0_RCC_BIF_STRAP5__STRAP_VLINK_LDN_ON_SWUS_SECRST_EN__SHIFT 0x11
+#define RCC_STRAP0_RCC_BIF_STRAP5__STRAP_VLINK_ENTER_COMPLIANCE_DIS__SHIFT 0x12
+#define RCC_STRAP0_RCC_BIF_STRAP5__STRAP_IGNORE_PSN_ON_VDM1_DIS__SHIFT 0x13
+#define RCC_STRAP0_RCC_BIF_STRAP5__STRAP_SMN_ERR_STATUS_MASK_EN_UPS__SHIFT 0x14
+#define RCC_STRAP0_RCC_BIF_STRAP5__STRAP_REG_PROTECTION_DIS__SHIFT 0x15
+#define RCC_STRAP0_RCC_BIF_STRAP5__STRAP_SMN_ERRRSP_DATA_FORCE__SHIFT 0x16
+#define RCC_STRAP0_RCC_BIF_STRAP5__STRAP_INTERMEDIATERSP_DATA_ALLF_DATA_FORCE__SHIFT 0x18
+#define RCC_STRAP0_RCC_BIF_STRAP5__STRAP_EMER_POWER_REDUCTION_SUPPORTED__SHIFT 0x19
+#define RCC_STRAP0_RCC_BIF_STRAP5__STRAP_EMER_POWER_REDUCTION_INIT_REQ__SHIFT 0x1b
+#define RCC_STRAP0_RCC_BIF_STRAP5__STRAP_PWRBRK_STATUS_TIMER__SHIFT 0x1c
+#define RCC_STRAP0_RCC_BIF_STRAP5__STRAP_VLINK_LDN_ENTRY_TIMER_MASK 0x0000FFFFL
+#define RCC_STRAP0_RCC_BIF_STRAP5__STRAP_VLINK_LDN_ON_SWUS_LDN_EN_MASK 0x00010000L
+#define RCC_STRAP0_RCC_BIF_STRAP5__STRAP_VLINK_LDN_ON_SWUS_SECRST_EN_MASK 0x00020000L
+#define RCC_STRAP0_RCC_BIF_STRAP5__STRAP_VLINK_ENTER_COMPLIANCE_DIS_MASK 0x00040000L
+#define RCC_STRAP0_RCC_BIF_STRAP5__STRAP_IGNORE_PSN_ON_VDM1_DIS_MASK 0x00080000L
+#define RCC_STRAP0_RCC_BIF_STRAP5__STRAP_SMN_ERR_STATUS_MASK_EN_UPS_MASK 0x00100000L
+#define RCC_STRAP0_RCC_BIF_STRAP5__STRAP_REG_PROTECTION_DIS_MASK 0x00200000L
+#define RCC_STRAP0_RCC_BIF_STRAP5__STRAP_SMN_ERRRSP_DATA_FORCE_MASK 0x00C00000L
+#define RCC_STRAP0_RCC_BIF_STRAP5__STRAP_INTERMEDIATERSP_DATA_ALLF_DATA_FORCE_MASK 0x01000000L
+#define RCC_STRAP0_RCC_BIF_STRAP5__STRAP_EMER_POWER_REDUCTION_SUPPORTED_MASK 0x06000000L
+#define RCC_STRAP0_RCC_BIF_STRAP5__STRAP_EMER_POWER_REDUCTION_INIT_REQ_MASK 0x08000000L
+#define RCC_STRAP0_RCC_BIF_STRAP5__STRAP_PWRBRK_STATUS_TIMER_MASK 0x70000000L
+//RCC_STRAP0_RCC_BIF_STRAP6
+#define RCC_STRAP0_RCC_BIF_STRAP6__STRAP_GEN5_DIS__SHIFT 0x0
+#define RCC_STRAP0_RCC_BIF_STRAP6__STRAP_BIF_KILL_GEN5__SHIFT 0x1
+#define RCC_STRAP0_RCC_BIF_STRAP6__STRAP_PHY_32GT_EN__SHIFT 0x2
+#define RCC_STRAP0_RCC_BIF_STRAP6__STRAP_GEN5_DIS_MASK 0x00000001L
+#define RCC_STRAP0_RCC_BIF_STRAP6__STRAP_BIF_KILL_GEN5_MASK 0x00000002L
+#define RCC_STRAP0_RCC_BIF_STRAP6__STRAP_PHY_32GT_EN_MASK 0x00000004L
+//RCC_STRAP0_RCC_DEV0_PORT_STRAP0
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP0__STRAP_DEVICE_ID_DN_DEV0__SHIFT 0x0
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP0__STRAP_ARI_EN_DN_DEV0__SHIFT 0x10
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP0__STRAP_ACS_EN_DN_DEV0__SHIFT 0x11
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP0__STRAP_AER_EN_DN_DEV0__SHIFT 0x12
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP0__STRAP_CPL_ABORT_ERR_EN_DN_DEV0__SHIFT 0x13
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP0__STRAP_INTERRUPT_PIN_DN_DEV0__SHIFT 0x15
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP0__STRAP_IGNORE_E2E_PREFIX_UR_DN_DEV0__SHIFT 0x18
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP0__STRAP_MAX_PAYLOAD_SUPPORT_DN_DEV0__SHIFT 0x19
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP0__STRAP_MAX_LINK_WIDTH_SUPPORT_DEV0__SHIFT 0x1c
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP0__STRAP_EPF0_DUMMY_EN_DEV0__SHIFT 0x1f
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP0__STRAP_DEVICE_ID_DN_DEV0_MASK 0x0000FFFFL
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP0__STRAP_ARI_EN_DN_DEV0_MASK 0x00010000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP0__STRAP_ACS_EN_DN_DEV0_MASK 0x00020000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP0__STRAP_AER_EN_DN_DEV0_MASK 0x00040000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP0__STRAP_CPL_ABORT_ERR_EN_DN_DEV0_MASK 0x00080000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP0__STRAP_INTERRUPT_PIN_DN_DEV0_MASK 0x00E00000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP0__STRAP_IGNORE_E2E_PREFIX_UR_DN_DEV0_MASK 0x01000000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP0__STRAP_MAX_PAYLOAD_SUPPORT_DN_DEV0_MASK 0x0E000000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP0__STRAP_MAX_LINK_WIDTH_SUPPORT_DEV0_MASK 0x70000000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP0__STRAP_EPF0_DUMMY_EN_DEV0_MASK 0x80000000L
+//RCC_STRAP0_RCC_DEV0_PORT_STRAP1
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP1__STRAP_SUBSYS_ID_DN_DEV0__SHIFT 0x0
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP1__STRAP_SUBSYS_VEN_ID_DN_DEV0__SHIFT 0x10
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP1__STRAP_SUBSYS_ID_DN_DEV0_MASK 0x0000FFFFL
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP1__STRAP_SUBSYS_VEN_ID_DN_DEV0_MASK 0xFFFF0000L
+//RCC_STRAP0_RCC_DEV0_PORT_STRAP10
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP10__STRAP_NO_EQ_NEED_SUPPORTED_DEV0__SHIFT 0x0
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP10__STRAP_NO_EQ_NEED_SUPPORTED_DN_DEV0__SHIFT 0x1
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP10__STRAP_MODIFID_TS_USAGE_MODE1_SUPPORTED_DEV0__SHIFT 0x2
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP10__STRAP_MODIFID_TS_USAGE_MODE2_SUPPORTED_DEV0__SHIFT 0x3
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP10__STRAP_TRANSMITTER_PRECODEING_ON_DEV0__SHIFT 0x4
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP10__STRAP_TRANSMITTER_PRECODE_REQUEST_DEV0__SHIFT 0x5
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP10__STRAP_MODIFIED_TS_INFOR1_DEV0__SHIFT 0x6
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP10__STRAP_NO_EQ_NEED_SUPPORTED_DEV0_MASK 0x00000001L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP10__STRAP_NO_EQ_NEED_SUPPORTED_DN_DEV0_MASK 0x00000002L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP10__STRAP_MODIFID_TS_USAGE_MODE1_SUPPORTED_DEV0_MASK 0x00000004L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP10__STRAP_MODIFID_TS_USAGE_MODE2_SUPPORTED_DEV0_MASK 0x00000008L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP10__STRAP_TRANSMITTER_PRECODEING_ON_DEV0_MASK 0x00000010L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP10__STRAP_TRANSMITTER_PRECODE_REQUEST_DEV0_MASK 0x00000020L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP10__STRAP_MODIFIED_TS_INFOR1_DEV0_MASK 0x0007FFC0L
+//RCC_STRAP0_RCC_DEV0_PORT_STRAP11
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP11__STRAP_MODIFIED_TS_VENDOR_ID_DEV0__SHIFT 0x0
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP11__STRAP_RTR_RESET_TIME_DN_DEV0__SHIFT 0x10
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP11__STRAP_RTR_VALID_DN_DEV0__SHIFT 0x1c
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP11__STRAP_RTR_EN_DN_DEV0__SHIFT 0x1d
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP11__STRAP_SDPVW_REG_UPDATE_EN_DEV0__SHIFT 0x1e
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP11__STRAP_MODIFIED_TS_VENDOR_ID_DEV0_MASK 0x0000FFFFL
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP11__STRAP_RTR_RESET_TIME_DN_DEV0_MASK 0x0FFF0000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP11__STRAP_RTR_VALID_DN_DEV0_MASK 0x10000000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP11__STRAP_RTR_EN_DN_DEV0_MASK 0x20000000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP11__STRAP_SDPVW_REG_UPDATE_EN_DEV0_MASK 0x40000000L
+//RCC_STRAP0_RCC_DEV0_PORT_STRAP12
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP12__STRAP_MODIFIED_TS_INFOR2_DEV0__SHIFT 0x0
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP12__STRAP_MODIFIED_TS_INFOR2_DEV0_MASK 0x00FFFFFFL
+//RCC_STRAP0_RCC_DEV0_PORT_STRAP13
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP13__STRAP_ALTERNATE_PROTOCOL_COUNT_DEV0__SHIFT 0x0
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP13__STRAP_ALTERNATE_PROTOCOL_SELECTIVE_ENABLE_SUPPORTED_DEV0__SHIFT 0x8
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP13__STRAP_ALTERNATE_PROTOCOL_DETAILS_DEV0__SHIFT 0x9
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP13__STRAP_RTR_D3HOTD0_TIME_DN_DEV0__SHIFT 0x14
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP13__STRAP_ALTERNATE_PROTOCOL_COUNT_DEV0_MASK 0x000000FFL
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP13__STRAP_ALTERNATE_PROTOCOL_SELECTIVE_ENABLE_SUPPORTED_DEV0_MASK 0x00000100L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP13__STRAP_ALTERNATE_PROTOCOL_DETAILS_DEV0_MASK 0x000FFE00L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP13__STRAP_RTR_D3HOTD0_TIME_DN_DEV0_MASK 0xFFF00000L
+//RCC_STRAP0_RCC_DEV0_PORT_STRAP14
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP14__STRAP_CTO_LOGGING_SUPPORT_DEV0__SHIFT 0x0
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP14__STRAP_ACS_ENH_CAPABILITY_DN_DEV0__SHIFT 0x1
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP14__STRAP_COMMAND_COMPLETED_DEV0__SHIFT 0x2
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP14__STRAP_ERR_COR_SUBCLASS_CAPABLE_DEV0__SHIFT 0x3
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP14__STRAP_DOE_EN_UP_DEV0__SHIFT 0x4
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP14__STRAP_CTO_LOGGING_SUPPORT_DEV0_MASK 0x00000001L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP14__STRAP_ACS_ENH_CAPABILITY_DN_DEV0_MASK 0x00000002L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP14__STRAP_COMMAND_COMPLETED_DEV0_MASK 0x00000004L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP14__STRAP_ERR_COR_SUBCLASS_CAPABLE_DEV0_MASK 0x00000008L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP14__STRAP_DOE_EN_UP_DEV0_MASK 0x00000010L
+//RCC_STRAP0_RCC_DEV0_PORT_STRAP2
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP2__STRAP_DE_EMPHASIS_SEL_DN_DEV0__SHIFT 0x0
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP2__STRAP_DSN_EN_DN_DEV0__SHIFT 0x1
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP2__STRAP_E2E_PREFIX_EN_DEV0__SHIFT 0x2
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP2__STRAP_ECN1P1_EN_DEV0__SHIFT 0x3
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP2__STRAP_ECRC_CHECK_EN_DEV0__SHIFT 0x4
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP2__STRAP_ECRC_GEN_EN_DEV0__SHIFT 0x5
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP2__STRAP_ERR_REPORTING_DIS_DEV0__SHIFT 0x6
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP2__STRAP_EXTENDED_FMT_SUPPORTED_DEV0__SHIFT 0x7
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP2__STRAP_EXTENDED_TAG_ECN_EN_DEV0__SHIFT 0x8
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP2__STRAP_EXT_VC_COUNT_DN_DEV0__SHIFT 0x9
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP2__STRAP_FIRST_RCVD_ERR_LOG_DN_DEV0__SHIFT 0xc
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP2__STRAP_POISONED_ADVISORY_NONFATAL_DN_DEV0__SHIFT 0xd
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP2__STRAP_GEN2_COMPLIANCE_DEV0__SHIFT 0xe
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP2__STRAP_GEN2_EN_DEV0__SHIFT 0xf
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP2__STRAP_GEN3_COMPLIANCE_DEV0__SHIFT 0x10
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP2__STRAP_GEN4_COMPLIANCE_DEV0__SHIFT 0x11
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP2__STRAP_L0S_ACCEPTABLE_LATENCY_DEV0__SHIFT 0x14
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP2__STRAP_L0S_EXIT_LATENCY_DEV0__SHIFT 0x17
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP2__STRAP_L1_ACCEPTABLE_LATENCY_DEV0__SHIFT 0x1a
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP2__STRAP_L1_EXIT_LATENCY_DEV0__SHIFT 0x1d
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP2__STRAP_DE_EMPHASIS_SEL_DN_DEV0_MASK 0x00000001L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP2__STRAP_DSN_EN_DN_DEV0_MASK 0x00000002L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP2__STRAP_E2E_PREFIX_EN_DEV0_MASK 0x00000004L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP2__STRAP_ECN1P1_EN_DEV0_MASK 0x00000008L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP2__STRAP_ECRC_CHECK_EN_DEV0_MASK 0x00000010L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP2__STRAP_ECRC_GEN_EN_DEV0_MASK 0x00000020L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP2__STRAP_ERR_REPORTING_DIS_DEV0_MASK 0x00000040L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP2__STRAP_EXTENDED_FMT_SUPPORTED_DEV0_MASK 0x00000080L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP2__STRAP_EXTENDED_TAG_ECN_EN_DEV0_MASK 0x00000100L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP2__STRAP_EXT_VC_COUNT_DN_DEV0_MASK 0x00000E00L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP2__STRAP_FIRST_RCVD_ERR_LOG_DN_DEV0_MASK 0x00001000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP2__STRAP_POISONED_ADVISORY_NONFATAL_DN_DEV0_MASK 0x00002000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP2__STRAP_GEN2_COMPLIANCE_DEV0_MASK 0x00004000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP2__STRAP_GEN2_EN_DEV0_MASK 0x00008000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP2__STRAP_GEN3_COMPLIANCE_DEV0_MASK 0x00010000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP2__STRAP_GEN4_COMPLIANCE_DEV0_MASK 0x00020000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP2__STRAP_L0S_ACCEPTABLE_LATENCY_DEV0_MASK 0x00700000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP2__STRAP_L0S_EXIT_LATENCY_DEV0_MASK 0x03800000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP2__STRAP_L1_ACCEPTABLE_LATENCY_DEV0_MASK 0x1C000000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP2__STRAP_L1_EXIT_LATENCY_DEV0_MASK 0xE0000000L
+//RCC_STRAP0_RCC_DEV0_PORT_STRAP3
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP3__STRAP_LINK_BW_NOTIFICATION_CAP_DN_EN_DEV0__SHIFT 0x0
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP3__STRAP_LTR_EN_DEV0__SHIFT 0x1
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP3__STRAP_LTR_EN_DN_DEV0__SHIFT 0x2
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP3__STRAP_MAX_PAYLOAD_SUPPORT_DEV0__SHIFT 0x3
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP3__STRAP_MSI_EN_DN_DEV0__SHIFT 0x6
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP3__STRAP_MSTCPL_TIMEOUT_EN_DEV0__SHIFT 0x7
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP3__STRAP_NO_SOFT_RESET_DN_DEV0__SHIFT 0x8
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP3__STRAP_OBFF_SUPPORTED_DEV0__SHIFT 0x9
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP3__STRAP_PCIE_LANE_EQUALIZATION_CNTL_DOWNSTREAM_PORT_RX_PRESET_HINT_DEV0__SHIFT 0xb
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP3__STRAP_PCIE_LANE_EQUALIZATION_CNTL_DOWNSTREAM_PORT_TX_PRESET_DEV0__SHIFT 0xe
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP3__STRAP_PCIE_LANE_EQUALIZATION_CNTL_UPSTREAM_PORT_RX_PRESET_HINT_DEV0__SHIFT 0x12
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP3__STRAP_PCIE_LANE_EQUALIZATION_CNTL_UPSTREAM_PORT_TX_PRESET_DEV0__SHIFT 0x15
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP3__STRAP_PM_SUPPORT_DEV0__SHIFT 0x19
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP3__STRAP_PM_SUPPORT_DN_DEV0__SHIFT 0x1b
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP3__STRAP_ATOMIC_EN_DN_DEV0__SHIFT 0x1d
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP3__STRAP_PMC_DSI_DN_DEV0__SHIFT 0x1f
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP3__STRAP_LINK_BW_NOTIFICATION_CAP_DN_EN_DEV0_MASK 0x00000001L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP3__STRAP_LTR_EN_DEV0_MASK 0x00000002L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP3__STRAP_LTR_EN_DN_DEV0_MASK 0x00000004L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP3__STRAP_MAX_PAYLOAD_SUPPORT_DEV0_MASK 0x00000038L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP3__STRAP_MSI_EN_DN_DEV0_MASK 0x00000040L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP3__STRAP_MSTCPL_TIMEOUT_EN_DEV0_MASK 0x00000080L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP3__STRAP_NO_SOFT_RESET_DN_DEV0_MASK 0x00000100L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP3__STRAP_OBFF_SUPPORTED_DEV0_MASK 0x00000600L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP3__STRAP_PCIE_LANE_EQUALIZATION_CNTL_DOWNSTREAM_PORT_RX_PRESET_HINT_DEV0_MASK 0x00003800L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP3__STRAP_PCIE_LANE_EQUALIZATION_CNTL_DOWNSTREAM_PORT_TX_PRESET_DEV0_MASK 0x0003C000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP3__STRAP_PCIE_LANE_EQUALIZATION_CNTL_UPSTREAM_PORT_RX_PRESET_HINT_DEV0_MASK 0x001C0000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP3__STRAP_PCIE_LANE_EQUALIZATION_CNTL_UPSTREAM_PORT_TX_PRESET_DEV0_MASK 0x01E00000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP3__STRAP_PM_SUPPORT_DEV0_MASK 0x06000000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP3__STRAP_PM_SUPPORT_DN_DEV0_MASK 0x18000000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP3__STRAP_ATOMIC_EN_DN_DEV0_MASK 0x20000000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP3__STRAP_PMC_DSI_DN_DEV0_MASK 0x80000000L
+//RCC_STRAP0_RCC_DEV0_PORT_STRAP4
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP4__STRAP_PWR_BUDGET_DATA_8T0_0_DEV0__SHIFT 0x0
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP4__STRAP_PWR_BUDGET_DATA_8T0_1_DEV0__SHIFT 0x8
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP4__STRAP_PWR_BUDGET_DATA_8T0_2_DEV0__SHIFT 0x10
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP4__STRAP_PWR_BUDGET_DATA_8T0_3_DEV0__SHIFT 0x18
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP4__STRAP_PWR_BUDGET_DATA_8T0_0_DEV0_MASK 0x000000FFL
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP4__STRAP_PWR_BUDGET_DATA_8T0_1_DEV0_MASK 0x0000FF00L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP4__STRAP_PWR_BUDGET_DATA_8T0_2_DEV0_MASK 0x00FF0000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP4__STRAP_PWR_BUDGET_DATA_8T0_3_DEV0_MASK 0xFF000000L
+//RCC_STRAP0_RCC_DEV0_PORT_STRAP5
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP5__STRAP_PWR_BUDGET_DATA_8T0_4_DEV0__SHIFT 0x0
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP5__STRAP_PWR_BUDGET_DATA_8T0_5_DEV0__SHIFT 0x8
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP5__STRAP_PWR_BUDGET_SYSTEM_ALLOCATED_DEV0__SHIFT 0x10
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP5__STRAP_ATOMIC_64BIT_EN_DN_DEV0__SHIFT 0x11
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP5__STRAP_ATOMIC_ROUTING_EN_DEV0__SHIFT 0x12
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP5__STRAP_VC_EN_DN_DEV0__SHIFT 0x13
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP5__STRAP_TwoVC_EN_DEV0__SHIFT 0x14
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP5__STRAP_TwoVC_EN_DN_DEV0__SHIFT 0x15
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP5__STRAP_LOCAL_DLF_SUPPORTED_DEV0__SHIFT 0x16
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP5__STRAP_ACS_SOURCE_VALIDATION_DN_DEV0__SHIFT 0x17
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP5__STRAP_ACS_TRANSLATION_BLOCKING_DN_DEV0__SHIFT 0x18
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP5__STRAP_ACS_P2P_REQUEST_REDIRECT_DN_DEV0__SHIFT 0x19
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP5__STRAP_ACS_P2P_COMPLETION_REDIRECT_DN_DEV0__SHIFT 0x1a
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP5__STRAP_ACS_UPSTREAM_FORWARDING_DN_DEV0__SHIFT 0x1b
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP5__STRAP_ACS_P2P_EGRESS_CONTROL_DN_DEV0__SHIFT 0x1c
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP5__STRAP_ACS_DIRECT_TRANSLATED_P2P_DN_DEV0__SHIFT 0x1d
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP5__STRAP_SSID_EN_DEV0__SHIFT 0x1f
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP5__STRAP_PWR_BUDGET_DATA_8T0_4_DEV0_MASK 0x000000FFL
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP5__STRAP_PWR_BUDGET_DATA_8T0_5_DEV0_MASK 0x0000FF00L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP5__STRAP_PWR_BUDGET_SYSTEM_ALLOCATED_DEV0_MASK 0x00010000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP5__STRAP_ATOMIC_64BIT_EN_DN_DEV0_MASK 0x00020000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP5__STRAP_ATOMIC_ROUTING_EN_DEV0_MASK 0x00040000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP5__STRAP_VC_EN_DN_DEV0_MASK 0x00080000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP5__STRAP_TwoVC_EN_DEV0_MASK 0x00100000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP5__STRAP_TwoVC_EN_DN_DEV0_MASK 0x00200000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP5__STRAP_LOCAL_DLF_SUPPORTED_DEV0_MASK 0x00400000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP5__STRAP_ACS_SOURCE_VALIDATION_DN_DEV0_MASK 0x00800000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP5__STRAP_ACS_TRANSLATION_BLOCKING_DN_DEV0_MASK 0x01000000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP5__STRAP_ACS_P2P_REQUEST_REDIRECT_DN_DEV0_MASK 0x02000000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP5__STRAP_ACS_P2P_COMPLETION_REDIRECT_DN_DEV0_MASK 0x04000000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP5__STRAP_ACS_UPSTREAM_FORWARDING_DN_DEV0_MASK 0x08000000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP5__STRAP_ACS_P2P_EGRESS_CONTROL_DN_DEV0_MASK 0x10000000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP5__STRAP_ACS_DIRECT_TRANSLATED_P2P_DN_DEV0_MASK 0x20000000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP5__STRAP_SSID_EN_DEV0_MASK 0x80000000L
+//RCC_STRAP0_RCC_DEV0_PORT_STRAP6
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP6__STRAP_CFG_CRS_EN_DEV0__SHIFT 0x0
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP6__STRAP_SMN_ERR_STATUS_MASK_EN_DNS_DEV0__SHIFT 0x1
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP6__STRAP_INTERNAL_ERR_EN_DEV0__SHIFT 0x2
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP6__STRAP_RTM1_PRESENCE_DET_SUPPORT_DEV0__SHIFT 0x3
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP6__STRAP_RTM2_PRESENCE_DET_SUPPORT_DEV0__SHIFT 0x4
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP6__STRAP_10BIT_TAG_COMPLETER_SUPPORTED_DEV0__SHIFT 0x5
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP6__STRAP_10BIT_TAG_REQUESTER_SUPPORTED_DEV0__SHIFT 0x6
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP6__STRAP_VF_10BIT_TAG_REQUESTER_SUPPORTED_DEV0__SHIFT 0x7
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP6__STRAP_PCIE_16GT_LANE_EQUALIZATION_CNTL_DSP_TX_PRESET_DEV0__SHIFT 0x8
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP6__STRAP_PCIE_16GT_LANE_EQUALIZATION_CNTL_USP_TX_PRESET_DEV0__SHIFT 0xc
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP6__STRAP_TPH_CPLR_SUPPORTED_DN_DEV0__SHIFT 0x10
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP6__STRAP_MSI_EXT_MSG_DATA_CAP_DN_DEV0__SHIFT 0x12
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP6__STRAP_NO_COMMAND_COMPLETED_SUPPORTED_DEV0__SHIFT 0x13
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP6__STRAP_GEN5_COMPLIANCE_DEV0__SHIFT 0x14
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP6__STRAP_TARGET_LINK_SPEED_DEV0__SHIFT 0x15
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP6__STRAP_PCIE_32GT_LANE_EQUALIZATION_CNTL_DSP_TX_PRESET_DEV0__SHIFT 0x18
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP6__STRAP_PCIE_32GT_LANE_EQUALIZATION_CNTL_USP_TX_PRESET_DEV0__SHIFT 0x1c
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP6__STRAP_CFG_CRS_EN_DEV0_MASK 0x00000001L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP6__STRAP_SMN_ERR_STATUS_MASK_EN_DNS_DEV0_MASK 0x00000002L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP6__STRAP_INTERNAL_ERR_EN_DEV0_MASK 0x00000004L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP6__STRAP_RTM1_PRESENCE_DET_SUPPORT_DEV0_MASK 0x00000008L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP6__STRAP_RTM2_PRESENCE_DET_SUPPORT_DEV0_MASK 0x00000010L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP6__STRAP_10BIT_TAG_COMPLETER_SUPPORTED_DEV0_MASK 0x00000020L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP6__STRAP_10BIT_TAG_REQUESTER_SUPPORTED_DEV0_MASK 0x00000040L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP6__STRAP_VF_10BIT_TAG_REQUESTER_SUPPORTED_DEV0_MASK 0x00000080L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP6__STRAP_PCIE_16GT_LANE_EQUALIZATION_CNTL_DSP_TX_PRESET_DEV0_MASK 0x00000F00L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP6__STRAP_PCIE_16GT_LANE_EQUALIZATION_CNTL_USP_TX_PRESET_DEV0_MASK 0x0000F000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP6__STRAP_TPH_CPLR_SUPPORTED_DN_DEV0_MASK 0x00030000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP6__STRAP_MSI_EXT_MSG_DATA_CAP_DN_DEV0_MASK 0x00040000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP6__STRAP_NO_COMMAND_COMPLETED_SUPPORTED_DEV0_MASK 0x00080000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP6__STRAP_GEN5_COMPLIANCE_DEV0_MASK 0x00100000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP6__STRAP_TARGET_LINK_SPEED_DEV0_MASK 0x00E00000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP6__STRAP_PCIE_32GT_LANE_EQUALIZATION_CNTL_DSP_TX_PRESET_DEV0_MASK 0x0F000000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP6__STRAP_PCIE_32GT_LANE_EQUALIZATION_CNTL_USP_TX_PRESET_DEV0_MASK 0xF0000000L
+//RCC_STRAP0_RCC_DEV0_PORT_STRAP7
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP7__STRAP_PORT_NUMBER_DEV0__SHIFT 0x0
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP7__STRAP_MAJOR_REV_ID_DN_DEV0__SHIFT 0x8
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP7__STRAP_MINOR_REV_ID_DN_DEV0__SHIFT 0xc
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP7__STRAP_RP_BUSNUM_DEV0__SHIFT 0x10
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP7__STRAP_DN_DEVNUM_DEV0__SHIFT 0x18
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP7__STRAP_DN_FUNCID_DEV0__SHIFT 0x1d
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP7__STRAP_PORT_NUMBER_DEV0_MASK 0x000000FFL
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP7__STRAP_MAJOR_REV_ID_DN_DEV0_MASK 0x00000F00L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP7__STRAP_MINOR_REV_ID_DN_DEV0_MASK 0x0000F000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP7__STRAP_RP_BUSNUM_DEV0_MASK 0x00FF0000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP7__STRAP_DN_DEVNUM_DEV0_MASK 0x1F000000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP7__STRAP_DN_FUNCID_DEV0_MASK 0xE0000000L
+//RCC_STRAP0_RCC_DEV0_PORT_STRAP8
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP8__STRAP_PWR_BUDGET_DATA_8T0_6_DEV0__SHIFT 0x0
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP8__STRAP_PWR_BUDGET_DATA_8T0_7_DEV0__SHIFT 0x8
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP8__STRAP_PWR_BUDGET_DATA_8T0_8_DEV0__SHIFT 0x10
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP8__STRAP_PWR_BUDGET_DATA_8T0_9_DEV0__SHIFT 0x18
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP8__STRAP_PWR_BUDGET_DATA_8T0_6_DEV0_MASK 0x000000FFL
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP8__STRAP_PWR_BUDGET_DATA_8T0_7_DEV0_MASK 0x0000FF00L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP8__STRAP_PWR_BUDGET_DATA_8T0_8_DEV0_MASK 0x00FF0000L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP8__STRAP_PWR_BUDGET_DATA_8T0_9_DEV0_MASK 0xFF000000L
+//RCC_STRAP0_RCC_DEV0_PORT_STRAP9
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP9__STRAP_PWR_BUDGET_DATA_8T0_a_DEV0__SHIFT 0x0
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP9__STRAP_PWR_BUDGET_DATA_8T0_b_DEV0__SHIFT 0x8
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP9__STRAP_VENDOR_ID_DN_DEV0__SHIFT 0x10
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP9__STRAP_PWR_BUDGET_DATA_8T0_a_DEV0_MASK 0x000000FFL
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP9__STRAP_PWR_BUDGET_DATA_8T0_b_DEV0_MASK 0x0000FF00L
+#define RCC_STRAP0_RCC_DEV0_PORT_STRAP9__STRAP_VENDOR_ID_DN_DEV0_MASK 0xFFFF0000L
+//RCC_STRAP0_RCC_DEV0_EPF0_STRAP0
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP0__STRAP_DEVICE_ID_DEV0_F0__SHIFT 0x0
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP0__STRAP_MAJOR_REV_ID_DEV0_F0__SHIFT 0x10
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP0__STRAP_MINOR_REV_ID_DEV0_F0__SHIFT 0x14
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP0__STRAP_ATI_REV_ID_DEV0_F0__SHIFT 0x18
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP0__STRAP_FUNC_EN_DEV0_F0__SHIFT 0x1c
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP0__STRAP_LEGACY_DEVICE_TYPE_EN_DEV0_F0__SHIFT 0x1d
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP0__STRAP_D1_SUPPORT_DEV0_F0__SHIFT 0x1e
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP0__STRAP_D2_SUPPORT_DEV0_F0__SHIFT 0x1f
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP0__STRAP_DEVICE_ID_DEV0_F0_MASK 0x0000FFFFL
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP0__STRAP_MAJOR_REV_ID_DEV0_F0_MASK 0x000F0000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP0__STRAP_MINOR_REV_ID_DEV0_F0_MASK 0x00F00000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP0__STRAP_ATI_REV_ID_DEV0_F0_MASK 0x0F000000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP0__STRAP_FUNC_EN_DEV0_F0_MASK 0x10000000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP0__STRAP_LEGACY_DEVICE_TYPE_EN_DEV0_F0_MASK 0x20000000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP0__STRAP_D1_SUPPORT_DEV0_F0_MASK 0x40000000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP0__STRAP_D2_SUPPORT_DEV0_F0_MASK 0x80000000L
+//RCC_STRAP0_RCC_DEV0_EPF0_STRAP1
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP1__STRAP_SRIOV_VF_DEVICE_ID_DEV0_F0__SHIFT 0x0
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP1__STRAP_SRIOV_SUPPORTED_PAGE_SIZE_DEV0_F0__SHIFT 0x10
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP1__STRAP_SRIOV_VF_DEVICE_ID_DEV0_F0_MASK 0x0000FFFFL
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP1__STRAP_SRIOV_SUPPORTED_PAGE_SIZE_DEV0_F0_MASK 0xFFFF0000L
+//RCC_STRAP0_RCC_DEV0_EPF0_STRAP13
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP13__STRAP_CLASS_CODE_PIF_DEV0_F0__SHIFT 0x0
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP13__STRAP_CLASS_CODE_SUB_DEV0_F0__SHIFT 0x8
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP13__STRAP_CLASS_CODE_BASE_DEV0_F0__SHIFT 0x10
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP13__STRAP_SRIOV_TOTAL_VFS_DEV0_F0__SHIFT 0x18
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP13__STRAP_CLASS_CODE_PIF_DEV0_F0_MASK 0x000000FFL
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP13__STRAP_CLASS_CODE_SUB_DEV0_F0_MASK 0x0000FF00L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP13__STRAP_CLASS_CODE_BASE_DEV0_F0_MASK 0x00FF0000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP13__STRAP_SRIOV_TOTAL_VFS_DEV0_F0_MASK 0xFF000000L
+//RCC_STRAP0_RCC_DEV0_EPF0_STRAP14
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP14__STRAP_VENDOR_ID_DEV0_F0__SHIFT 0x0
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP14__STRAP_VENDOR_ID_DEV0_F0_MASK 0x0000FFFFL
+//RCC_STRAP0_RCC_DEV0_EPF0_STRAP15
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP15__STRAP_RTR_RESET_TIME_DEV0_F0__SHIFT 0x0
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP15__STRAP_RTR_DLUP_TIME_DEV0_F0__SHIFT 0xc
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP15__STRAP_RTR_VALID_DEV0_F0__SHIFT 0x18
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP15__STRAP_ATS_INVALIDATE_QUEUE_DEPTH_DEV0_F0__SHIFT 0x19
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP15__STRAP_ATS_PAGE_ALIGNED_REQUEST_DEV0_F0__SHIFT 0x1e
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP15__STRAP_RTR_RESET_TIME_DEV0_F0_MASK 0x00000FFFL
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP15__STRAP_RTR_DLUP_TIME_DEV0_F0_MASK 0x00FFF000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP15__STRAP_RTR_VALID_DEV0_F0_MASK 0x01000000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP15__STRAP_ATS_INVALIDATE_QUEUE_DEPTH_DEV0_F0_MASK 0x3E000000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP15__STRAP_ATS_PAGE_ALIGNED_REQUEST_DEV0_F0_MASK 0x40000000L
+//RCC_STRAP0_RCC_DEV0_EPF0_STRAP16
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP16__STRAP_RTR_FLR_TIME_DEV0_F0__SHIFT 0x0
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP16__STRAP_RTR_D3HOTD0_TIME_DEV0_F0__SHIFT 0xc
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP16__STRAP_RTR_FLR_TIME_DEV0_F0_MASK 0x00000FFFL
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP16__STRAP_RTR_D3HOTD0_TIME_DEV0_F0_MASK 0x00FFF000L
+//RCC_STRAP0_RCC_DEV0_EPF0_STRAP17
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP17__STRAP_RTR_VF_RESET_TIME_DEV0_F0__SHIFT 0x0
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP17__STRAP_RTR_VF_VALID_DEV0_F0__SHIFT 0xc
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP17__STRAP_RTR_VF_FLR_TIME_DEV0_F0__SHIFT 0xd
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP17__STRAP_RTR_VF_RESET_TIME_DEV0_F0_MASK 0x00000FFFL
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP17__STRAP_RTR_VF_VALID_DEV0_F0_MASK 0x00001000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP17__STRAP_RTR_VF_FLR_TIME_DEV0_F0_MASK 0x01FFE000L
+//RCC_STRAP0_RCC_DEV0_EPF0_STRAP18
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP18__STRAP_RTR_VF_D3HOTD0_TIME_DEV0_F0__SHIFT 0x0
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP18__STRAP_RTR_VF_D3HOTD0_TIME_DEV0_F0_MASK 0x00000FFFL
+//RCC_STRAP0_RCC_DEV0_EPF0_STRAP2
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP2__STRAP_SRIOV_EN_DEV0_F0__SHIFT 0x0
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP2__STRAP_64BAR_DIS_DEV0_F0__SHIFT 0x6
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP2__STRAP_NO_SOFT_RESET_DEV0_F0__SHIFT 0x7
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP2__STRAP_RESIZE_BAR_EN_DEV0_F0__SHIFT 0x8
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP2__STRAP_MAX_PASID_WIDTH_DEV0_F0__SHIFT 0x9
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP2__STRAP_MSI_PERVECTOR_MASK_CAP_DEV0_F0__SHIFT 0xe
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP2__STRAP_ARI_EN_DEV0_F0__SHIFT 0xf
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP2__STRAP_AER_EN_DEV0_F0__SHIFT 0x10
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP2__STRAP_ACS_EN_DEV0_F0__SHIFT 0x11
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP2__STRAP_ATS_EN_DEV0_F0__SHIFT 0x12
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP2__STRAP_CPL_ABORT_ERR_EN_DEV0_F0__SHIFT 0x14
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP2__STRAP_DPA_EN_DEV0_F0__SHIFT 0x15
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP2__STRAP_DSN_EN_DEV0_F0__SHIFT 0x16
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP2__STRAP_VC_EN_DEV0_F0__SHIFT 0x17
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP2__STRAP_MSI_MULTI_CAP_DEV0_F0__SHIFT 0x18
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP2__STRAP_PAGE_REQ_EN_DEV0_F0__SHIFT 0x1b
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP2__STRAP_PASID_EN_DEV0_F0__SHIFT 0x1c
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP2__STRAP_PASID_EXE_PERMISSION_SUPPORTED_DEV0_F0__SHIFT 0x1d
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP2__STRAP_PASID_GLOBAL_INVALIDATE_SUPPORTED_DEV0_F0__SHIFT 0x1e
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP2__STRAP_PASID_PRIV_MODE_SUPPORTED_DEV0_F0__SHIFT 0x1f
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP2__STRAP_SRIOV_EN_DEV0_F0_MASK 0x00000001L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP2__STRAP_64BAR_DIS_DEV0_F0_MASK 0x00000040L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP2__STRAP_NO_SOFT_RESET_DEV0_F0_MASK 0x00000080L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP2__STRAP_RESIZE_BAR_EN_DEV0_F0_MASK 0x00000100L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP2__STRAP_MAX_PASID_WIDTH_DEV0_F0_MASK 0x00003E00L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP2__STRAP_MSI_PERVECTOR_MASK_CAP_DEV0_F0_MASK 0x00004000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP2__STRAP_ARI_EN_DEV0_F0_MASK 0x00008000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP2__STRAP_AER_EN_DEV0_F0_MASK 0x00010000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP2__STRAP_ACS_EN_DEV0_F0_MASK 0x00020000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP2__STRAP_ATS_EN_DEV0_F0_MASK 0x00040000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP2__STRAP_CPL_ABORT_ERR_EN_DEV0_F0_MASK 0x00100000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP2__STRAP_DPA_EN_DEV0_F0_MASK 0x00200000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP2__STRAP_DSN_EN_DEV0_F0_MASK 0x00400000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP2__STRAP_VC_EN_DEV0_F0_MASK 0x00800000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP2__STRAP_MSI_MULTI_CAP_DEV0_F0_MASK 0x07000000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP2__STRAP_PAGE_REQ_EN_DEV0_F0_MASK 0x08000000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP2__STRAP_PASID_EN_DEV0_F0_MASK 0x10000000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP2__STRAP_PASID_EXE_PERMISSION_SUPPORTED_DEV0_F0_MASK 0x20000000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP2__STRAP_PASID_GLOBAL_INVALIDATE_SUPPORTED_DEV0_F0_MASK 0x40000000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP2__STRAP_PASID_PRIV_MODE_SUPPORTED_DEV0_F0_MASK 0x80000000L
+//RCC_STRAP0_RCC_DEV0_EPF0_STRAP26
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP26__STRAP_GPUIOV_VSEC_LENGTH_DEV0_F0__SHIFT 0x0
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP26__STRAP_GPUIOV_VSEC_LENGTH_DEV0_F0_MASK 0x00000FFFL
+//RCC_STRAP0_RCC_DEV0_EPF0_STRAP3
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP3__STRAP_SUBSYS_ID_DEV0_F0__SHIFT 0x0
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP3__STRAP_POISONED_ADVISORY_NONFATAL_DEV0_F0__SHIFT 0x10
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP3__STRAP_PWR_EN_DEV0_F0__SHIFT 0x11
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP3__STRAP_MSI_EN_DEV0_F0__SHIFT 0x12
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP3__STRAP_MSI_CLR_PENDING_EN_DEV0_F0__SHIFT 0x13
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP3__STRAP_MSIX_EN_DEV0_F0__SHIFT 0x14
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP3__STRAP_MSIX_TABLE_BIR_DEV0_F0__SHIFT 0x15
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP3__STRAP_PMC_DSI_DEV0_F0__SHIFT 0x18
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP3__STRAP_ALL_MSI_EVENT_SUPPORT_EN_DEV0_F0__SHIFT 0x1a
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP3__STRAP_SMN_ERR_STATUS_MASK_EN_EP_DEV0_F0__SHIFT 0x1b
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP3__STRAP_VF_RESIZE_BAR_EN_DEV0_F0__SHIFT 0x1c
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP3__STRAP_CLK_PM_EN_DEV0_F0__SHIFT 0x1d
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP3__STRAP_TRUE_PM_STATUS_EN_DEV0_F0__SHIFT 0x1e
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP3__STRAP_RTR_EN_DEV0_F0__SHIFT 0x1f
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP3__STRAP_SUBSYS_ID_DEV0_F0_MASK 0x0000FFFFL
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP3__STRAP_POISONED_ADVISORY_NONFATAL_DEV0_F0_MASK 0x00010000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP3__STRAP_PWR_EN_DEV0_F0_MASK 0x00020000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP3__STRAP_MSI_EN_DEV0_F0_MASK 0x00040000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP3__STRAP_MSI_CLR_PENDING_EN_DEV0_F0_MASK 0x00080000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP3__STRAP_MSIX_EN_DEV0_F0_MASK 0x00100000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP3__STRAP_MSIX_TABLE_BIR_DEV0_F0_MASK 0x00E00000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP3__STRAP_PMC_DSI_DEV0_F0_MASK 0x01000000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP3__STRAP_ALL_MSI_EVENT_SUPPORT_EN_DEV0_F0_MASK 0x04000000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP3__STRAP_SMN_ERR_STATUS_MASK_EN_EP_DEV0_F0_MASK 0x08000000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP3__STRAP_VF_RESIZE_BAR_EN_DEV0_F0_MASK 0x10000000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP3__STRAP_CLK_PM_EN_DEV0_F0_MASK 0x20000000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP3__STRAP_TRUE_PM_STATUS_EN_DEV0_F0_MASK 0x40000000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP3__STRAP_RTR_EN_DEV0_F0_MASK 0x80000000L
+//RCC_STRAP0_RCC_DEV0_EPF0_STRAP4
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP4__STRAP_RESERVED_STRAP4_DEV0_F0__SHIFT 0x0
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP4__STRAP_DOE_EN_DEV0_F0__SHIFT 0xa
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP4__STRAP_ATOMIC_64BIT_EN_DEV0_F0__SHIFT 0x14
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP4__STRAP_ATOMIC_EN_DEV0_F0__SHIFT 0x15
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP4__STRAP_FLR_EN_DEV0_F0__SHIFT 0x16
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP4__STRAP_PME_SUPPORT_DEV0_F0__SHIFT 0x17
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP4__STRAP_INTERRUPT_PIN_DEV0_F0__SHIFT 0x1c
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP4__STRAP_RESERVED_STRAP4_DEV0_F0_MASK 0x000003FFL
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP4__STRAP_DOE_EN_DEV0_F0_MASK 0x00000400L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP4__STRAP_ATOMIC_64BIT_EN_DEV0_F0_MASK 0x00100000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP4__STRAP_ATOMIC_EN_DEV0_F0_MASK 0x00200000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP4__STRAP_FLR_EN_DEV0_F0_MASK 0x00400000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP4__STRAP_PME_SUPPORT_DEV0_F0_MASK 0x0F800000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP4__STRAP_INTERRUPT_PIN_DEV0_F0_MASK 0x70000000L
+//RCC_STRAP0_RCC_DEV0_EPF0_STRAP5
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP5__STRAP_SUBSYS_VEN_ID_DEV0_F0__SHIFT 0x0
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP5__STRAP_MSI_EXT_MSG_DATA_CAP_DEV0_F0__SHIFT 0x1e
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP5__STRAP_SUBSYS_VEN_ID_DEV0_F0_MASK 0x0000FFFFL
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP5__STRAP_MSI_EXT_MSG_DATA_CAP_DEV0_F0_MASK 0x40000000L
+//RCC_STRAP0_RCC_DEV0_EPF0_STRAP8
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP8__STRAP_DOORBELL_APER_SIZE_DEV0_F0__SHIFT 0x0
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP8__STRAP_DOORBELL_BAR_DIS_DEV0_F0__SHIFT 0x3
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP8__STRAP_ROM_AP_SIZE_DEV0_F0__SHIFT 0x4
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP8__STRAP_IO_BAR_DIS_DEV0_F0__SHIFT 0x7
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP8__STRAP_LFB_ERRMSG_EN_DEV0_F0__SHIFT 0x8
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP8__STRAP_MEM_AP_SIZE_DEV0_F0__SHIFT 0x9
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP8__STRAP_REG_AP_SIZE_DEV0_F0__SHIFT 0xd
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP8__STRAP_VF_DOORBELL_APER_SIZE_DEV0_F0__SHIFT 0x10
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP8__STRAP_VF_MEM_AP_SIZE_DEV0_F0__SHIFT 0x13
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP8__STRAP_VF_REG_AP_SIZE_DEV0_F0__SHIFT 0x17
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP8__STRAP_VGA_DIS_DEV0_F0__SHIFT 0x1a
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP8__STRAP_VF_MSI_MULTI_CAP_DEV0_F0__SHIFT 0x1b
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP8__STRAP_SRIOV_VF_MAPPING_MODE_DEV0_F0__SHIFT 0x1e
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP8__STRAP_DOORBELL_APER_SIZE_DEV0_F0_MASK 0x00000007L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP8__STRAP_DOORBELL_BAR_DIS_DEV0_F0_MASK 0x00000008L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP8__STRAP_ROM_AP_SIZE_DEV0_F0_MASK 0x00000070L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP8__STRAP_IO_BAR_DIS_DEV0_F0_MASK 0x00000080L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP8__STRAP_LFB_ERRMSG_EN_DEV0_F0_MASK 0x00000100L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP8__STRAP_MEM_AP_SIZE_DEV0_F0_MASK 0x00001E00L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP8__STRAP_REG_AP_SIZE_DEV0_F0_MASK 0x0000E000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP8__STRAP_VF_DOORBELL_APER_SIZE_DEV0_F0_MASK 0x00070000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP8__STRAP_VF_MEM_AP_SIZE_DEV0_F0_MASK 0x00780000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP8__STRAP_VF_REG_AP_SIZE_DEV0_F0_MASK 0x03800000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP8__STRAP_VGA_DIS_DEV0_F0_MASK 0x04000000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP8__STRAP_VF_MSI_MULTI_CAP_DEV0_F0_MASK 0x38000000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP8__STRAP_SRIOV_VF_MAPPING_MODE_DEV0_F0_MASK 0xC0000000L
+//RCC_STRAP0_RCC_DEV0_EPF0_STRAP9
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP9__STRAP_OUTSTAND_PAGE_REQ_CAP_DEV0_F0__SHIFT 0x0
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP9__STRAP_BAR_COMPLIANCE_EN_DEV0_F0__SHIFT 0x12
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP9__STRAP_NBIF_ROM_BAR_DIS_CHICKEN_DEV0_F0__SHIFT 0x13
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP9__STRAP_VF_REG_PROT_DIS_DEV0_F0__SHIFT 0x14
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP9__STRAP_FB_ALWAYS_ON_DEV0_F0__SHIFT 0x15
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP9__STRAP_FB_CPL_TYPE_SEL_DEV0_F0__SHIFT 0x16
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP9__STRAP_GPUIOV_VSEC_REV_DEV0_F0__SHIFT 0x18
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP9__STRAP_OUTSTAND_PAGE_REQ_CAP_DEV0_F0_MASK 0x0000FFFFL
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP9__STRAP_BAR_COMPLIANCE_EN_DEV0_F0_MASK 0x00040000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP9__STRAP_NBIF_ROM_BAR_DIS_CHICKEN_DEV0_F0_MASK 0x00080000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP9__STRAP_VF_REG_PROT_DIS_DEV0_F0_MASK 0x00100000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP9__STRAP_FB_ALWAYS_ON_DEV0_F0_MASK 0x00200000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP9__STRAP_FB_CPL_TYPE_SEL_DEV0_F0_MASK 0x00C00000L
+#define RCC_STRAP0_RCC_DEV0_EPF0_STRAP9__STRAP_GPUIOV_VSEC_REV_DEV0_F0_MASK 0x0F000000L
+//RCC_STRAP0_RCC_DEV0_EPF1_STRAP0
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP0__STRAP_DEVICE_ID_DEV0_F1__SHIFT 0x0
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP0__STRAP_MAJOR_REV_ID_DEV0_F1__SHIFT 0x10
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP0__STRAP_MINOR_REV_ID_DEV0_F1__SHIFT 0x14
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP0__STRAP_FUNC_EN_DEV0_F1__SHIFT 0x1c
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP0__STRAP_LEGACY_DEVICE_TYPE_EN_DEV0_F1__SHIFT 0x1d
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP0__STRAP_D1_SUPPORT_DEV0_F1__SHIFT 0x1e
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP0__STRAP_D2_SUPPORT_DEV0_F1__SHIFT 0x1f
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP0__STRAP_DEVICE_ID_DEV0_F1_MASK 0x0000FFFFL
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP0__STRAP_MAJOR_REV_ID_DEV0_F1_MASK 0x000F0000L
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP0__STRAP_MINOR_REV_ID_DEV0_F1_MASK 0x00F00000L
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP0__STRAP_FUNC_EN_DEV0_F1_MASK 0x10000000L
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP0__STRAP_LEGACY_DEVICE_TYPE_EN_DEV0_F1_MASK 0x20000000L
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP0__STRAP_D1_SUPPORT_DEV0_F1_MASK 0x40000000L
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP0__STRAP_D2_SUPPORT_DEV0_F1_MASK 0x80000000L
+//RCC_STRAP0_RCC_DEV0_EPF1_STRAP2
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP2__STRAP_NO_SOFT_RESET_DEV0_F1__SHIFT 0x7
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP2__STRAP_RESIZE_BAR_EN_DEV0_F1__SHIFT 0x8
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP2__STRAP_MAX_PASID_WIDTH_DEV0_F1__SHIFT 0x9
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP2__STRAP_MSI_PERVECTOR_MASK_CAP_DEV0_F1__SHIFT 0xe
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP2__STRAP_AER_EN_DEV0_F1__SHIFT 0x10
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP2__STRAP_ACS_EN_DEV0_F1__SHIFT 0x11
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP2__STRAP_CPL_ABORT_ERR_EN_DEV0_F1__SHIFT 0x14
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP2__STRAP_DPA_EN_DEV0_F1__SHIFT 0x15
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP2__STRAP_VC_EN_DEV0_F1__SHIFT 0x17
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP2__STRAP_MSI_MULTI_CAP_DEV0_F1__SHIFT 0x18
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP2__STRAP_PASID_EN_DEV0_F1__SHIFT 0x1c
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP2__STRAP_PASID_EXE_PERMISSION_SUPPORTED_DEV0_F1__SHIFT 0x1d
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP2__STRAP_PASID_GLOBAL_INVALIDATE_SUPPORTED_DEV0_F1__SHIFT 0x1e
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP2__STRAP_PASID_PRIV_MODE_SUPPORTED_DEV0_F1__SHIFT 0x1f
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP2__STRAP_NO_SOFT_RESET_DEV0_F1_MASK 0x00000080L
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP2__STRAP_RESIZE_BAR_EN_DEV0_F1_MASK 0x00000100L
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP2__STRAP_MAX_PASID_WIDTH_DEV0_F1_MASK 0x00003E00L
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP2__STRAP_MSI_PERVECTOR_MASK_CAP_DEV0_F1_MASK 0x00004000L
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP2__STRAP_AER_EN_DEV0_F1_MASK 0x00010000L
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP2__STRAP_ACS_EN_DEV0_F1_MASK 0x00020000L
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP2__STRAP_CPL_ABORT_ERR_EN_DEV0_F1_MASK 0x00100000L
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP2__STRAP_DPA_EN_DEV0_F1_MASK 0x00200000L
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP2__STRAP_VC_EN_DEV0_F1_MASK 0x00800000L
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP2__STRAP_MSI_MULTI_CAP_DEV0_F1_MASK 0x07000000L
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP2__STRAP_PASID_EN_DEV0_F1_MASK 0x10000000L
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP2__STRAP_PASID_EXE_PERMISSION_SUPPORTED_DEV0_F1_MASK 0x20000000L
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP2__STRAP_PASID_GLOBAL_INVALIDATE_SUPPORTED_DEV0_F1_MASK 0x40000000L
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP2__STRAP_PASID_PRIV_MODE_SUPPORTED_DEV0_F1_MASK 0x80000000L
+//RCC_STRAP0_RCC_DEV0_EPF1_STRAP20
+//RCC_STRAP0_RCC_DEV0_EPF1_STRAP21
+//RCC_STRAP0_RCC_DEV0_EPF1_STRAP22
+//RCC_STRAP0_RCC_DEV0_EPF1_STRAP23
+//RCC_STRAP0_RCC_DEV0_EPF1_STRAP24
+//RCC_STRAP0_RCC_DEV0_EPF1_STRAP25
+//RCC_STRAP0_RCC_DEV0_EPF1_STRAP3
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP3__STRAP_SUBSYS_ID_DEV0_F1__SHIFT 0x0
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP3__STRAP_POISONED_ADVISORY_NONFATAL_DEV0_F1__SHIFT 0x10
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP3__STRAP_PWR_EN_DEV0_F1__SHIFT 0x11
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP3__STRAP_MSI_EN_DEV0_F1__SHIFT 0x12
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP3__STRAP_MSI_CLR_PENDING_EN_DEV0_F1__SHIFT 0x13
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP3__STRAP_MSIX_EN_DEV0_F1__SHIFT 0x14
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP3__STRAP_PMC_DSI_DEV0_F1__SHIFT 0x18
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP3__STRAP_ALL_MSI_EVENT_SUPPORT_EN_DEV0_F1__SHIFT 0x1a
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP3__STRAP_SMN_ERR_STATUS_MASK_EN_EP_DEV0_F1__SHIFT 0x1b
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP3__STRAP_CLK_PM_EN_DEV0_F1__SHIFT 0x1d
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP3__STRAP_TRUE_PM_STATUS_EN_DEV0_F1__SHIFT 0x1e
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP3__STRAP_RTR_EN_DEV0_F1__SHIFT 0x1f
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP3__STRAP_SUBSYS_ID_DEV0_F1_MASK 0x0000FFFFL
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP3__STRAP_POISONED_ADVISORY_NONFATAL_DEV0_F1_MASK 0x00010000L
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP3__STRAP_PWR_EN_DEV0_F1_MASK 0x00020000L
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP3__STRAP_MSI_EN_DEV0_F1_MASK 0x00040000L
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP3__STRAP_MSI_CLR_PENDING_EN_DEV0_F1_MASK 0x00080000L
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP3__STRAP_MSIX_EN_DEV0_F1_MASK 0x00100000L
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP3__STRAP_PMC_DSI_DEV0_F1_MASK 0x01000000L
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP3__STRAP_ALL_MSI_EVENT_SUPPORT_EN_DEV0_F1_MASK 0x04000000L
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP3__STRAP_SMN_ERR_STATUS_MASK_EN_EP_DEV0_F1_MASK 0x08000000L
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP3__STRAP_CLK_PM_EN_DEV0_F1_MASK 0x20000000L
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP3__STRAP_TRUE_PM_STATUS_EN_DEV0_F1_MASK 0x40000000L
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP3__STRAP_RTR_EN_DEV0_F1_MASK 0x80000000L
+//RCC_STRAP0_RCC_DEV0_EPF1_STRAP4
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP4__STRAP_ATOMIC_64BIT_EN_DEV0_F1__SHIFT 0x14
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP4__STRAP_ATOMIC_EN_DEV0_F1__SHIFT 0x15
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP4__STRAP_FLR_EN_DEV0_F1__SHIFT 0x16
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP4__STRAP_PME_SUPPORT_DEV0_F1__SHIFT 0x17
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP4__STRAP_INTERRUPT_PIN_DEV0_F1__SHIFT 0x1c
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP4__STRAP_AUXPWR_SUPPORT_DEV0_F1__SHIFT 0x1f
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP4__STRAP_ATOMIC_64BIT_EN_DEV0_F1_MASK 0x00100000L
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP4__STRAP_ATOMIC_EN_DEV0_F1_MASK 0x00200000L
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP4__STRAP_FLR_EN_DEV0_F1_MASK 0x00400000L
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP4__STRAP_PME_SUPPORT_DEV0_F1_MASK 0x0F800000L
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP4__STRAP_INTERRUPT_PIN_DEV0_F1_MASK 0x70000000L
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP4__STRAP_AUXPWR_SUPPORT_DEV0_F1_MASK 0x80000000L
+//RCC_STRAP0_RCC_DEV0_EPF1_STRAP5
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP5__STRAP_SUBSYS_VEN_ID_DEV0_F1__SHIFT 0x0
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP5__STRAP_AUX_CURRENT_DEV0_F1__SHIFT 0x1b
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP5__STRAP_MSI_EXT_MSG_DATA_CAP_DEV0_F1__SHIFT 0x1e
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP5__STRAP_SUBSYS_VEN_ID_DEV0_F1_MASK 0x0000FFFFL
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP5__STRAP_AUX_CURRENT_DEV0_F1_MASK 0x38000000L
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP5__STRAP_MSI_EXT_MSG_DATA_CAP_DEV0_F1_MASK 0x40000000L
+//RCC_STRAP0_RCC_DEV0_EPF1_STRAP6
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP6__STRAP_APER0_EN_DEV0_F1__SHIFT 0x0
+#define RCC_STRAP0_RCC_DEV0_EPF1_STRAP6__STRAP_APER0_EN_DEV0_F1_MASK 0x00000001L
+//RCC_STRAP0_RCC_DEV0_EPF1_STRAP7
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_pf_BIFPFVFDEC1
+//BIF_BX_PF0_BIF_BME_STATUS
+#define BIF_BX_PF0_BIF_BME_STATUS__DMA_ON_BME_LOW__SHIFT 0x0
+#define BIF_BX_PF0_BIF_BME_STATUS__CLEAR_DMA_ON_BME_LOW__SHIFT 0x10
+#define BIF_BX_PF0_BIF_BME_STATUS__DMA_ON_BME_LOW_MASK 0x00000001L
+#define BIF_BX_PF0_BIF_BME_STATUS__CLEAR_DMA_ON_BME_LOW_MASK 0x00010000L
+//BIF_BX_PF0_BIF_ATOMIC_ERR_LOG
+#define BIF_BX_PF0_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_OPCODE__SHIFT 0x0
+#define BIF_BX_PF0_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_REQEN_LOW__SHIFT 0x1
+#define BIF_BX_PF0_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_LENGTH__SHIFT 0x2
+#define BIF_BX_PF0_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_NR__SHIFT 0x3
+#define BIF_BX_PF0_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_OPCODE__SHIFT 0x10
+#define BIF_BX_PF0_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_REQEN_LOW__SHIFT 0x11
+#define BIF_BX_PF0_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_LENGTH__SHIFT 0x12
+#define BIF_BX_PF0_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_NR__SHIFT 0x13
+#define BIF_BX_PF0_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_OPCODE_MASK 0x00000001L
+#define BIF_BX_PF0_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_REQEN_LOW_MASK 0x00000002L
+#define BIF_BX_PF0_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_LENGTH_MASK 0x00000004L
+#define BIF_BX_PF0_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_NR_MASK 0x00000008L
+#define BIF_BX_PF0_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_OPCODE_MASK 0x00010000L
+#define BIF_BX_PF0_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_REQEN_LOW_MASK 0x00020000L
+#define BIF_BX_PF0_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_LENGTH_MASK 0x00040000L
+#define BIF_BX_PF0_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_NR_MASK 0x00080000L
+//BIF_BX_PF0_DOORBELL_SELFRING_GPA_APER_BASE_HIGH
+#define BIF_BX_PF0_DOORBELL_SELFRING_GPA_APER_BASE_HIGH__DOORBELL_SELFRING_GPA_APER_BASE_HIGH__SHIFT 0x0
+#define BIF_BX_PF0_DOORBELL_SELFRING_GPA_APER_BASE_HIGH__DOORBELL_SELFRING_GPA_APER_BASE_HIGH_MASK 0xFFFFFFFFL
+//BIF_BX_PF0_DOORBELL_SELFRING_GPA_APER_BASE_LOW
+#define BIF_BX_PF0_DOORBELL_SELFRING_GPA_APER_BASE_LOW__DOORBELL_SELFRING_GPA_APER_BASE_LOW__SHIFT 0x0
+#define BIF_BX_PF0_DOORBELL_SELFRING_GPA_APER_BASE_LOW__DOORBELL_SELFRING_GPA_APER_BASE_LOW_MASK 0xFFFFFFFFL
+//BIF_BX_PF0_DOORBELL_SELFRING_GPA_APER_CNTL
+#define BIF_BX_PF0_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_EN__SHIFT 0x0
+#define BIF_BX_PF0_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_MODE__SHIFT 0x1
+#define BIF_BX_PF0_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_SIZE__SHIFT 0x8
+#define BIF_BX_PF0_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_EN_MASK 0x00000001L
+#define BIF_BX_PF0_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_MODE_MASK 0x00000002L
+#define BIF_BX_PF0_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_SIZE_MASK 0x000FFF00L
+//BIF_BX_PF0_HDP_REG_COHERENCY_FLUSH_CNTL
+#define BIF_BX_PF0_HDP_REG_COHERENCY_FLUSH_CNTL__HDP_REG_FLUSH_ADDR__SHIFT 0x0
+#define BIF_BX_PF0_HDP_REG_COHERENCY_FLUSH_CNTL__HDP_REG_FLUSH_ADDR_MASK 0x00000001L
+//BIF_BX_PF0_HDP_MEM_COHERENCY_FLUSH_CNTL
+#define BIF_BX_PF0_HDP_MEM_COHERENCY_FLUSH_CNTL__HDP_MEM_FLUSH_ADDR__SHIFT 0x0
+#define BIF_BX_PF0_HDP_MEM_COHERENCY_FLUSH_CNTL__HDP_MEM_FLUSH_ADDR_MASK 0x00000001L
+//BIF_BX_PF0_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL
+#define BIF_BX_PF0_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL__HDP_MEM_FLUSH_ONLY_ADDR__SHIFT 0x0
+#define BIF_BX_PF0_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL__HDP_MEM_FLUSH_ONLY_ADDR_MASK 0x00000001L
+//BIF_BX_PF0_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL
+#define BIF_BX_PF0_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL__HDP_MEM_INVALIDATE_ONLY_ADDR__SHIFT 0x0
+#define BIF_BX_PF0_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL__HDP_MEM_INVALIDATE_ONLY_ADDR_MASK 0x00000001L
+//BIF_BX_PF0_GPU_HDP_FLUSH_REQ
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__CP0__SHIFT 0x0
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__CP1__SHIFT 0x1
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__CP2__SHIFT 0x2
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__CP3__SHIFT 0x3
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__CP4__SHIFT 0x4
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__CP5__SHIFT 0x5
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__CP6__SHIFT 0x6
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__CP7__SHIFT 0x7
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__CP8__SHIFT 0x8
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__CP9__SHIFT 0x9
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__SDMA0__SHIFT 0xa
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__SDMA1__SHIFT 0xb
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__RSVD_ENG0__SHIFT 0xc
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__RSVD_ENG1__SHIFT 0xd
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__RSVD_ENG2__SHIFT 0xe
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__RSVD_ENG3__SHIFT 0xf
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__RSVD_ENG4__SHIFT 0x10
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__RSVD_ENG5__SHIFT 0x11
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__RSVD_ENG6__SHIFT 0x12
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__RSVD_ENG7__SHIFT 0x13
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__RSVD_ENG8__SHIFT 0x14
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__RSVD_ENG9__SHIFT 0x15
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__RSVD_ENG10__SHIFT 0x16
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__RSVD_ENG11__SHIFT 0x17
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__RSVD_ENG12__SHIFT 0x18
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__RSVD_ENG13__SHIFT 0x19
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__RSVD_ENG14__SHIFT 0x1a
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__RSVD_ENG15__SHIFT 0x1b
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__RSVD_ENG16__SHIFT 0x1c
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__RSVD_ENG17__SHIFT 0x1d
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__RSVD_ENG18__SHIFT 0x1e
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__RSVD_ENG19__SHIFT 0x1f
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__CP0_MASK 0x00000001L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__CP1_MASK 0x00000002L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__CP2_MASK 0x00000004L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__CP3_MASK 0x00000008L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__CP4_MASK 0x00000010L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__CP5_MASK 0x00000020L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__CP6_MASK 0x00000040L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__CP7_MASK 0x00000080L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__CP8_MASK 0x00000100L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__CP9_MASK 0x00000200L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__SDMA0_MASK 0x00000400L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__SDMA1_MASK 0x00000800L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__RSVD_ENG0_MASK 0x00001000L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__RSVD_ENG1_MASK 0x00002000L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__RSVD_ENG2_MASK 0x00004000L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__RSVD_ENG3_MASK 0x00008000L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__RSVD_ENG4_MASK 0x00010000L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__RSVD_ENG5_MASK 0x00020000L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__RSVD_ENG6_MASK 0x00040000L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__RSVD_ENG7_MASK 0x00080000L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__RSVD_ENG8_MASK 0x00100000L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__RSVD_ENG9_MASK 0x00200000L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__RSVD_ENG10_MASK 0x00400000L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__RSVD_ENG11_MASK 0x00800000L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__RSVD_ENG12_MASK 0x01000000L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__RSVD_ENG13_MASK 0x02000000L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__RSVD_ENG14_MASK 0x04000000L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__RSVD_ENG15_MASK 0x08000000L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__RSVD_ENG16_MASK 0x10000000L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__RSVD_ENG17_MASK 0x20000000L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__RSVD_ENG18_MASK 0x40000000L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_REQ__RSVD_ENG19_MASK 0x80000000L
+//BIF_BX_PF0_GPU_HDP_FLUSH_DONE
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__CP0__SHIFT 0x0
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__CP1__SHIFT 0x1
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__CP2__SHIFT 0x2
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__CP3__SHIFT 0x3
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__CP4__SHIFT 0x4
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__CP5__SHIFT 0x5
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__CP6__SHIFT 0x6
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__CP7__SHIFT 0x7
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__CP8__SHIFT 0x8
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__CP9__SHIFT 0x9
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__SDMA0__SHIFT 0xa
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__SDMA1__SHIFT 0xb
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__RSVD_ENG0__SHIFT 0xc
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__RSVD_ENG1__SHIFT 0xd
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__RSVD_ENG2__SHIFT 0xe
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__RSVD_ENG3__SHIFT 0xf
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__RSVD_ENG4__SHIFT 0x10
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__RSVD_ENG5__SHIFT 0x11
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__RSVD_ENG6__SHIFT 0x12
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__RSVD_ENG7__SHIFT 0x13
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__RSVD_ENG8__SHIFT 0x14
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__RSVD_ENG9__SHIFT 0x15
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__RSVD_ENG10__SHIFT 0x16
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__RSVD_ENG11__SHIFT 0x17
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__RSVD_ENG12__SHIFT 0x18
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__RSVD_ENG13__SHIFT 0x19
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__RSVD_ENG14__SHIFT 0x1a
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__RSVD_ENG15__SHIFT 0x1b
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__RSVD_ENG16__SHIFT 0x1c
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__RSVD_ENG17__SHIFT 0x1d
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__RSVD_ENG18__SHIFT 0x1e
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__RSVD_ENG19__SHIFT 0x1f
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__CP0_MASK 0x00000001L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__CP1_MASK 0x00000002L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__CP2_MASK 0x00000004L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__CP3_MASK 0x00000008L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__CP4_MASK 0x00000010L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__CP5_MASK 0x00000020L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__CP6_MASK 0x00000040L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__CP7_MASK 0x00000080L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__CP8_MASK 0x00000100L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__CP9_MASK 0x00000200L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__SDMA0_MASK 0x00000400L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__SDMA1_MASK 0x00000800L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__RSVD_ENG0_MASK 0x00001000L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__RSVD_ENG1_MASK 0x00002000L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__RSVD_ENG2_MASK 0x00004000L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__RSVD_ENG3_MASK 0x00008000L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__RSVD_ENG4_MASK 0x00010000L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__RSVD_ENG5_MASK 0x00020000L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__RSVD_ENG6_MASK 0x00040000L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__RSVD_ENG7_MASK 0x00080000L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__RSVD_ENG8_MASK 0x00100000L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__RSVD_ENG9_MASK 0x00200000L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__RSVD_ENG10_MASK 0x00400000L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__RSVD_ENG11_MASK 0x00800000L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__RSVD_ENG12_MASK 0x01000000L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__RSVD_ENG13_MASK 0x02000000L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__RSVD_ENG14_MASK 0x04000000L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__RSVD_ENG15_MASK 0x08000000L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__RSVD_ENG16_MASK 0x10000000L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__RSVD_ENG17_MASK 0x20000000L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__RSVD_ENG18_MASK 0x40000000L
+#define BIF_BX_PF0_GPU_HDP_FLUSH_DONE__RSVD_ENG19_MASK 0x80000000L
+//BIF_BX_PF0_BIF_TRANS_PENDING
+#define BIF_BX_PF0_BIF_TRANS_PENDING__BIF_MST_TRANS_PENDING__SHIFT 0x0
+#define BIF_BX_PF0_BIF_TRANS_PENDING__BIF_SLV_TRANS_PENDING__SHIFT 0x1
+#define BIF_BX_PF0_BIF_TRANS_PENDING__BIF_MST_TRANS_PENDING_MASK 0x00000001L
+#define BIF_BX_PF0_BIF_TRANS_PENDING__BIF_SLV_TRANS_PENDING_MASK 0x00000002L
+//BIF_BX_PF0_NBIF_GFX_ADDR_LUT_BYPASS
+#define BIF_BX_PF0_NBIF_GFX_ADDR_LUT_BYPASS__LUT_BYPASS__SHIFT 0x0
+#define BIF_BX_PF0_NBIF_GFX_ADDR_LUT_BYPASS__LUT_BYPASS_MASK 0x00000001L
+//BIF_BX_PF0_MAILBOX_MSGBUF_TRN_DW0
+#define BIF_BX_PF0_MAILBOX_MSGBUF_TRN_DW0__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_PF0_MAILBOX_MSGBUF_TRN_DW0__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_PF0_MAILBOX_MSGBUF_TRN_DW1
+#define BIF_BX_PF0_MAILBOX_MSGBUF_TRN_DW1__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_PF0_MAILBOX_MSGBUF_TRN_DW1__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_PF0_MAILBOX_MSGBUF_TRN_DW2
+#define BIF_BX_PF0_MAILBOX_MSGBUF_TRN_DW2__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_PF0_MAILBOX_MSGBUF_TRN_DW2__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_PF0_MAILBOX_MSGBUF_TRN_DW3
+#define BIF_BX_PF0_MAILBOX_MSGBUF_TRN_DW3__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_PF0_MAILBOX_MSGBUF_TRN_DW3__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_PF0_MAILBOX_MSGBUF_RCV_DW0
+#define BIF_BX_PF0_MAILBOX_MSGBUF_RCV_DW0__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_PF0_MAILBOX_MSGBUF_RCV_DW0__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_PF0_MAILBOX_MSGBUF_RCV_DW1
+#define BIF_BX_PF0_MAILBOX_MSGBUF_RCV_DW1__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_PF0_MAILBOX_MSGBUF_RCV_DW1__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_PF0_MAILBOX_MSGBUF_RCV_DW2
+#define BIF_BX_PF0_MAILBOX_MSGBUF_RCV_DW2__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_PF0_MAILBOX_MSGBUF_RCV_DW2__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_PF0_MAILBOX_MSGBUF_RCV_DW3
+#define BIF_BX_PF0_MAILBOX_MSGBUF_RCV_DW3__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_PF0_MAILBOX_MSGBUF_RCV_DW3__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_PF0_MAILBOX_CONTROL
+#define BIF_BX_PF0_MAILBOX_CONTROL__TRN_MSG_VALID__SHIFT 0x0
+#define BIF_BX_PF0_MAILBOX_CONTROL__TRN_MSG_ACK__SHIFT 0x1
+#define BIF_BX_PF0_MAILBOX_CONTROL__RCV_MSG_VALID__SHIFT 0x8
+#define BIF_BX_PF0_MAILBOX_CONTROL__RCV_MSG_ACK__SHIFT 0x9
+#define BIF_BX_PF0_MAILBOX_CONTROL__TRN_MSG_VALID_MASK 0x00000001L
+#define BIF_BX_PF0_MAILBOX_CONTROL__TRN_MSG_ACK_MASK 0x00000002L
+#define BIF_BX_PF0_MAILBOX_CONTROL__RCV_MSG_VALID_MASK 0x00000100L
+#define BIF_BX_PF0_MAILBOX_CONTROL__RCV_MSG_ACK_MASK 0x00000200L
+//BIF_BX_PF0_MAILBOX_INT_CNTL
+#define BIF_BX_PF0_MAILBOX_INT_CNTL__VALID_INT_EN__SHIFT 0x0
+#define BIF_BX_PF0_MAILBOX_INT_CNTL__ACK_INT_EN__SHIFT 0x1
+#define BIF_BX_PF0_MAILBOX_INT_CNTL__VALID_INT_EN_MASK 0x00000001L
+#define BIF_BX_PF0_MAILBOX_INT_CNTL__ACK_INT_EN_MASK 0x00000002L
+//BIF_BX_PF0_BIF_VMHV_MAILBOX
+#define BIF_BX_PF0_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_ACK_INTR_EN__SHIFT 0x0
+#define BIF_BX_PF0_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_VALID_INTR_EN__SHIFT 0x1
+#define BIF_BX_PF0_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_DATA__SHIFT 0x8
+#define BIF_BX_PF0_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_VALID__SHIFT 0xf
+#define BIF_BX_PF0_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_DATA__SHIFT 0x10
+#define BIF_BX_PF0_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_VALID__SHIFT 0x17
+#define BIF_BX_PF0_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_ACK__SHIFT 0x18
+#define BIF_BX_PF0_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_ACK__SHIFT 0x19
+#define BIF_BX_PF0_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_ACK_INTR_EN_MASK 0x00000001L
+#define BIF_BX_PF0_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_VALID_INTR_EN_MASK 0x00000002L
+#define BIF_BX_PF0_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_DATA_MASK 0x00000F00L
+#define BIF_BX_PF0_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_VALID_MASK 0x00008000L
+#define BIF_BX_PF0_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_DATA_MASK 0x000F0000L
+#define BIF_BX_PF0_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_VALID_MASK 0x00800000L
+#define BIF_BX_PF0_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_ACK_MASK 0x01000000L
+#define BIF_BX_PF0_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_ACK_MASK 0x02000000L
+//BIF_BX_PF0_PARTITION_COMPUTE_CAP
+#define BIF_BX_PF0_PARTITION_COMPUTE_CAP__SPX_SUPPORT__SHIFT 0x0
+#define BIF_BX_PF0_PARTITION_COMPUTE_CAP__DPX_SUPPORT__SHIFT 0x1
+#define BIF_BX_PF0_PARTITION_COMPUTE_CAP__TPX_SUPPORT__SHIFT 0x2
+#define BIF_BX_PF0_PARTITION_COMPUTE_CAP__QPX_SUPPORT__SHIFT 0x3
+#define BIF_BX_PF0_PARTITION_COMPUTE_CAP__CPX_SUPPORT__SHIFT 0x4
+#define BIF_BX_PF0_PARTITION_COMPUTE_CAP__CPX_AVAILABILITY__SHIFT 0xa
+#define BIF_BX_PF0_PARTITION_COMPUTE_CAP__SPX_SUPPORT_MASK 0x00000001L
+#define BIF_BX_PF0_PARTITION_COMPUTE_CAP__DPX_SUPPORT_MASK 0x00000002L
+#define BIF_BX_PF0_PARTITION_COMPUTE_CAP__TPX_SUPPORT_MASK 0x00000004L
+#define BIF_BX_PF0_PARTITION_COMPUTE_CAP__QPX_SUPPORT_MASK 0x00000008L
+#define BIF_BX_PF0_PARTITION_COMPUTE_CAP__CPX_SUPPORT_MASK 0x00000010L
+#define BIF_BX_PF0_PARTITION_COMPUTE_CAP__CPX_AVAILABILITY_MASK 0x0003FC00L
+//BIF_BX_PF0_PARTITION_MEM_CAP
+#define BIF_BX_PF0_PARTITION_MEM_CAP__NPS1_SUPPORT__SHIFT 0x0
+#define BIF_BX_PF0_PARTITION_MEM_CAP__NPS2_SUPPORT__SHIFT 0x1
+#define BIF_BX_PF0_PARTITION_MEM_CAP__NPS3_SUPPORT__SHIFT 0x2
+#define BIF_BX_PF0_PARTITION_MEM_CAP__NPS4_SUPPORT__SHIFT 0x3
+#define BIF_BX_PF0_PARTITION_MEM_CAP__NPS6_SUPPORT__SHIFT 0x5
+#define BIF_BX_PF0_PARTITION_MEM_CAP__NPS8_SUPPORT__SHIFT 0x7
+#define BIF_BX_PF0_PARTITION_MEM_CAP__NPS1_SUPPORT_MASK 0x00000001L
+#define BIF_BX_PF0_PARTITION_MEM_CAP__NPS2_SUPPORT_MASK 0x00000002L
+#define BIF_BX_PF0_PARTITION_MEM_CAP__NPS3_SUPPORT_MASK 0x00000004L
+#define BIF_BX_PF0_PARTITION_MEM_CAP__NPS4_SUPPORT_MASK 0x00000008L
+#define BIF_BX_PF0_PARTITION_MEM_CAP__NPS6_SUPPORT_MASK 0x00000020L
+#define BIF_BX_PF0_PARTITION_MEM_CAP__NPS8_SUPPORT_MASK 0x00000080L
+//BIF_BX_PF0_PARTITION_COMPUTE_STATUS
+#define BIF_BX_PF0_PARTITION_COMPUTE_STATUS__PARTITION_MODE__SHIFT 0x4
+#define BIF_BX_PF0_PARTITION_COMPUTE_STATUS__PARTITION_MODE_MASK 0x000000F0L
+//BIF_BX_PF0_PARTITION_MEM_STATUS
+#define BIF_BX_PF0_PARTITION_MEM_STATUS__CHANGE_STATUE__SHIFT 0x0
+#define BIF_BX_PF0_PARTITION_MEM_STATUS__NPS_MODE__SHIFT 0x4
+#define BIF_BX_PF0_PARTITION_MEM_STATUS__CHANGE_STATUE_MASK 0x0000000FL
+#define BIF_BX_PF0_PARTITION_MEM_STATUS__NPS_MODE_MASK 0x00000FF0L
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dev0_epf0_BIFPFVFDEC1[13440..14975]
+//RCC_DEV0_EPF0_RCC_ERR_LOG
+#define RCC_DEV0_EPF0_RCC_ERR_LOG__INVALID_REG_ACCESS_IN_SRIOV_STATUS__SHIFT 0x0
+#define RCC_DEV0_EPF0_RCC_ERR_LOG__DOORBELL_READ_ACCESS_STATUS__SHIFT 0x1
+#define RCC_DEV0_EPF0_RCC_ERR_LOG__INVALID_REG_ACCESS_IN_SRIOV_STATUS_MASK 0x00000001L
+#define RCC_DEV0_EPF0_RCC_ERR_LOG__DOORBELL_READ_ACCESS_STATUS_MASK 0x00000002L
+//RCC_DEV0_EPF0_RCC_DOORBELL_APER_EN
+#define RCC_DEV0_EPF0_RCC_DOORBELL_APER_EN__BIF_DOORBELL_APER_EN__SHIFT 0x0
+#define RCC_DEV0_EPF0_RCC_DOORBELL_APER_EN__BIF_DOORBELL_APER_EN_MASK 0x00000001L
+//RCC_DEV0_EPF0_RCC_CONFIG_MEMSIZE
+#define RCC_DEV0_EPF0_RCC_CONFIG_MEMSIZE__CONFIG_MEMSIZE__SHIFT 0x0
+#define RCC_DEV0_EPF0_RCC_CONFIG_MEMSIZE__CONFIG_MEMSIZE_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_RCC_CONFIG_RESERVED
+#define RCC_DEV0_EPF0_RCC_CONFIG_RESERVED__CONFIG_RESERVED__SHIFT 0x0
+#define RCC_DEV0_EPF0_RCC_CONFIG_RESERVED__CONFIG_RESERVED_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_RCC_IOV_FUNC_IDENTIFIER
+#define RCC_DEV0_EPF0_RCC_IOV_FUNC_IDENTIFIER__FUNC_IDENTIFIER__SHIFT 0x0
+#define RCC_DEV0_EPF0_RCC_IOV_FUNC_IDENTIFIER__IOV_ENABLE__SHIFT 0x1f
+#define RCC_DEV0_EPF0_RCC_IOV_FUNC_IDENTIFIER__FUNC_IDENTIFIER_MASK 0x00000001L
+#define RCC_DEV0_EPF0_RCC_IOV_FUNC_IDENTIFIER__IOV_ENABLE_MASK 0x80000000L
+
+
+// addressBlock: aid_nbio_nbif0_gdc_GDCDEC
+//GDC0_A2S_CNTL_CL0
+#define GDC0_A2S_CNTL_CL0__NSNOOP_MAP__SHIFT 0x0
+#define GDC0_A2S_CNTL_CL0__REQPASSPW_VC0_MAP__SHIFT 0x2
+#define GDC0_A2S_CNTL_CL0__REQPASSPW_NVC0_MAP__SHIFT 0x4
+#define GDC0_A2S_CNTL_CL0__REQRSPPASSPW_VC0_MAP__SHIFT 0x6
+#define GDC0_A2S_CNTL_CL0__REQRSPPASSPW_NVC0_MAP__SHIFT 0x8
+#define GDC0_A2S_CNTL_CL0__BLKLVL_MAP__SHIFT 0xa
+#define GDC0_A2S_CNTL_CL0__DATERR_MAP__SHIFT 0xc
+#define GDC0_A2S_CNTL_CL0__EXOKAY_WR_MAP__SHIFT 0xe
+#define GDC0_A2S_CNTL_CL0__EXOKAY_RD_MAP__SHIFT 0x10
+#define GDC0_A2S_CNTL_CL0__RESP_WR_MAP__SHIFT 0x12
+#define GDC0_A2S_CNTL_CL0__RESP_RD_MAP__SHIFT 0x14
+#define GDC0_A2S_CNTL_CL0__RDRSP_ERRMAP__SHIFT 0x16
+#define GDC0_A2S_CNTL_CL0__RDRSP_SEL_MODE__SHIFT 0x18
+#define GDC0_A2S_CNTL_CL0__STATIC_VC_ENABLE__SHIFT 0x1b
+#define GDC0_A2S_CNTL_CL0__STATIC_VC_VALUE__SHIFT 0x1c
+#define GDC0_A2S_CNTL_CL0__NSNOOP_MAP_MASK 0x00000003L
+#define GDC0_A2S_CNTL_CL0__REQPASSPW_VC0_MAP_MASK 0x0000000CL
+#define GDC0_A2S_CNTL_CL0__REQPASSPW_NVC0_MAP_MASK 0x00000030L
+#define GDC0_A2S_CNTL_CL0__REQRSPPASSPW_VC0_MAP_MASK 0x000000C0L
+#define GDC0_A2S_CNTL_CL0__REQRSPPASSPW_NVC0_MAP_MASK 0x00000300L
+#define GDC0_A2S_CNTL_CL0__BLKLVL_MAP_MASK 0x00000C00L
+#define GDC0_A2S_CNTL_CL0__DATERR_MAP_MASK 0x00003000L
+#define GDC0_A2S_CNTL_CL0__EXOKAY_WR_MAP_MASK 0x0000C000L
+#define GDC0_A2S_CNTL_CL0__EXOKAY_RD_MAP_MASK 0x00030000L
+#define GDC0_A2S_CNTL_CL0__RESP_WR_MAP_MASK 0x000C0000L
+#define GDC0_A2S_CNTL_CL0__RESP_RD_MAP_MASK 0x00300000L
+#define GDC0_A2S_CNTL_CL0__RDRSP_ERRMAP_MASK 0x00C00000L
+#define GDC0_A2S_CNTL_CL0__RDRSP_SEL_MODE_MASK 0x07000000L
+#define GDC0_A2S_CNTL_CL0__STATIC_VC_ENABLE_MASK 0x08000000L
+#define GDC0_A2S_CNTL_CL0__STATIC_VC_VALUE_MASK 0x70000000L
+//GDC0_A2S_CNTL_CL1
+#define GDC0_A2S_CNTL_CL1__NSNOOP_MAP__SHIFT 0x0
+#define GDC0_A2S_CNTL_CL1__REQPASSPW_VC0_MAP__SHIFT 0x2
+#define GDC0_A2S_CNTL_CL1__REQPASSPW_NVC0_MAP__SHIFT 0x4
+#define GDC0_A2S_CNTL_CL1__REQRSPPASSPW_VC0_MAP__SHIFT 0x6
+#define GDC0_A2S_CNTL_CL1__REQRSPPASSPW_NVC0_MAP__SHIFT 0x8
+#define GDC0_A2S_CNTL_CL1__BLKLVL_MAP__SHIFT 0xa
+#define GDC0_A2S_CNTL_CL1__DATERR_MAP__SHIFT 0xc
+#define GDC0_A2S_CNTL_CL1__EXOKAY_WR_MAP__SHIFT 0xe
+#define GDC0_A2S_CNTL_CL1__EXOKAY_RD_MAP__SHIFT 0x10
+#define GDC0_A2S_CNTL_CL1__RESP_WR_MAP__SHIFT 0x12
+#define GDC0_A2S_CNTL_CL1__RESP_RD_MAP__SHIFT 0x14
+#define GDC0_A2S_CNTL_CL1__RDRSP_ERRMAP__SHIFT 0x16
+#define GDC0_A2S_CNTL_CL1__RDRSP_SEL_MODE__SHIFT 0x18
+#define GDC0_A2S_CNTL_CL1__STATIC_VC_ENABLE__SHIFT 0x1b
+#define GDC0_A2S_CNTL_CL1__STATIC_VC_VALUE__SHIFT 0x1c
+#define GDC0_A2S_CNTL_CL1__NSNOOP_MAP_MASK 0x00000003L
+#define GDC0_A2S_CNTL_CL1__REQPASSPW_VC0_MAP_MASK 0x0000000CL
+#define GDC0_A2S_CNTL_CL1__REQPASSPW_NVC0_MAP_MASK 0x00000030L
+#define GDC0_A2S_CNTL_CL1__REQRSPPASSPW_VC0_MAP_MASK 0x000000C0L
+#define GDC0_A2S_CNTL_CL1__REQRSPPASSPW_NVC0_MAP_MASK 0x00000300L
+#define GDC0_A2S_CNTL_CL1__BLKLVL_MAP_MASK 0x00000C00L
+#define GDC0_A2S_CNTL_CL1__DATERR_MAP_MASK 0x00003000L
+#define GDC0_A2S_CNTL_CL1__EXOKAY_WR_MAP_MASK 0x0000C000L
+#define GDC0_A2S_CNTL_CL1__EXOKAY_RD_MAP_MASK 0x00030000L
+#define GDC0_A2S_CNTL_CL1__RESP_WR_MAP_MASK 0x000C0000L
+#define GDC0_A2S_CNTL_CL1__RESP_RD_MAP_MASK 0x00300000L
+#define GDC0_A2S_CNTL_CL1__RDRSP_ERRMAP_MASK 0x00C00000L
+#define GDC0_A2S_CNTL_CL1__RDRSP_SEL_MODE_MASK 0x07000000L
+#define GDC0_A2S_CNTL_CL1__STATIC_VC_ENABLE_MASK 0x08000000L
+#define GDC0_A2S_CNTL_CL1__STATIC_VC_VALUE_MASK 0x70000000L
+//GDC0_A2S_CNTL3_CL0
+#define GDC0_A2S_CNTL3_CL0__FORCE_WR_PH__SHIFT 0x0
+#define GDC0_A2S_CNTL3_CL0__FORCE_WR_STEERING__SHIFT 0x2
+#define GDC0_A2S_CNTL3_CL0__WR_ST_TAG_MODE__SHIFT 0x3
+#define GDC0_A2S_CNTL3_CL0__FORCE_WR_ST_ENTRY__SHIFT 0x4
+#define GDC0_A2S_CNTL3_CL0__FORCE_WR_PH_MASK 0x00000003L
+#define GDC0_A2S_CNTL3_CL0__FORCE_WR_STEERING_MASK 0x00000004L
+#define GDC0_A2S_CNTL3_CL0__WR_ST_TAG_MODE_MASK 0x00000008L
+#define GDC0_A2S_CNTL3_CL0__FORCE_WR_ST_ENTRY_MASK 0x000003F0L
+//GDC0_A2S_CNTL3_CL1
+#define GDC0_A2S_CNTL3_CL1__FORCE_WR_PH__SHIFT 0x0
+#define GDC0_A2S_CNTL3_CL1__FORCE_WR_STEERING__SHIFT 0x2
+#define GDC0_A2S_CNTL3_CL1__WR_ST_TAG_MODE__SHIFT 0x3
+#define GDC0_A2S_CNTL3_CL1__FORCE_WR_ST_ENTRY__SHIFT 0x4
+#define GDC0_A2S_CNTL3_CL1__FORCE_WR_PH_MASK 0x00000003L
+#define GDC0_A2S_CNTL3_CL1__FORCE_WR_STEERING_MASK 0x00000004L
+#define GDC0_A2S_CNTL3_CL1__WR_ST_TAG_MODE_MASK 0x00000008L
+#define GDC0_A2S_CNTL3_CL1__FORCE_WR_ST_ENTRY_MASK 0x000003F0L
+//GDC0_A2S_CNTL_SW0
+#define GDC0_A2S_CNTL_SW0__STATIC_VC_ENABLE__SHIFT 0x0
+#define GDC0_A2S_CNTL_SW0__STATIC_VC_VALUE__SHIFT 0x1
+#define GDC0_A2S_CNTL_SW0__FORCE_RSP_REORDER_EN__SHIFT 0x6
+#define GDC0_A2S_CNTL_SW0__SDP_WR_CHAIN_DIS__SHIFT 0x9
+#define GDC0_A2S_CNTL_SW0__WR_TAG_FOR_CHAIN_ENABLE__SHIFT 0xa
+#define GDC0_A2S_CNTL_SW0__WR_TAG_FOR_NONCHAIN_ENABLE__SHIFT 0xb
+#define GDC0_A2S_CNTL_SW0__SDP_DYNAMIC_VC_WR_CHAIN_DIS__SHIFT 0xc
+#define GDC0_A2S_CNTL_SW0__WRR_RD_WEIGHT__SHIFT 0x10
+#define GDC0_A2S_CNTL_SW0__WRR_WR_WEIGHT__SHIFT 0x18
+#define GDC0_A2S_CNTL_SW0__STATIC_VC_ENABLE_MASK 0x00000001L
+#define GDC0_A2S_CNTL_SW0__STATIC_VC_VALUE_MASK 0x0000000EL
+#define GDC0_A2S_CNTL_SW0__FORCE_RSP_REORDER_EN_MASK 0x00000040L
+#define GDC0_A2S_CNTL_SW0__SDP_WR_CHAIN_DIS_MASK 0x00000200L
+#define GDC0_A2S_CNTL_SW0__WR_TAG_FOR_CHAIN_ENABLE_MASK 0x00000400L
+#define GDC0_A2S_CNTL_SW0__WR_TAG_FOR_NONCHAIN_ENABLE_MASK 0x00000800L
+#define GDC0_A2S_CNTL_SW0__SDP_DYNAMIC_VC_WR_CHAIN_DIS_MASK 0x00001000L
+#define GDC0_A2S_CNTL_SW0__WRR_RD_WEIGHT_MASK 0x00FF0000L
+#define GDC0_A2S_CNTL_SW0__WRR_WR_WEIGHT_MASK 0xFF000000L
+//GDC0_A2S_CNTL_SW1
+#define GDC0_A2S_CNTL_SW1__STATIC_VC_ENABLE__SHIFT 0x0
+#define GDC0_A2S_CNTL_SW1__STATIC_VC_VALUE__SHIFT 0x1
+#define GDC0_A2S_CNTL_SW1__FORCE_RSP_REORDER_EN__SHIFT 0x6
+#define GDC0_A2S_CNTL_SW1__SDP_WR_CHAIN_DIS__SHIFT 0x9
+#define GDC0_A2S_CNTL_SW1__WR_TAG_FOR_CHAIN_ENABLE__SHIFT 0xa
+#define GDC0_A2S_CNTL_SW1__WR_TAG_FOR_NONCHAIN_ENABLE__SHIFT 0xb
+#define GDC0_A2S_CNTL_SW1__SDP_DYNAMIC_VC_WR_CHAIN_DIS__SHIFT 0xc
+#define GDC0_A2S_CNTL_SW1__WRR_RD_WEIGHT__SHIFT 0x10
+#define GDC0_A2S_CNTL_SW1__WRR_WR_WEIGHT__SHIFT 0x18
+#define GDC0_A2S_CNTL_SW1__STATIC_VC_ENABLE_MASK 0x00000001L
+#define GDC0_A2S_CNTL_SW1__STATIC_VC_VALUE_MASK 0x0000000EL
+#define GDC0_A2S_CNTL_SW1__FORCE_RSP_REORDER_EN_MASK 0x00000040L
+#define GDC0_A2S_CNTL_SW1__SDP_WR_CHAIN_DIS_MASK 0x00000200L
+#define GDC0_A2S_CNTL_SW1__WR_TAG_FOR_CHAIN_ENABLE_MASK 0x00000400L
+#define GDC0_A2S_CNTL_SW1__WR_TAG_FOR_NONCHAIN_ENABLE_MASK 0x00000800L
+#define GDC0_A2S_CNTL_SW1__SDP_DYNAMIC_VC_WR_CHAIN_DIS_MASK 0x00001000L
+#define GDC0_A2S_CNTL_SW1__WRR_RD_WEIGHT_MASK 0x00FF0000L
+#define GDC0_A2S_CNTL_SW1__WRR_WR_WEIGHT_MASK 0xFF000000L
+//GDC0_A2S_CNTL_SW2
+#define GDC0_A2S_CNTL_SW2__STATIC_VC_ENABLE__SHIFT 0x0
+#define GDC0_A2S_CNTL_SW2__STATIC_VC_VALUE__SHIFT 0x1
+#define GDC0_A2S_CNTL_SW2__FORCE_RSP_REORDER_EN__SHIFT 0x6
+#define GDC0_A2S_CNTL_SW2__SDP_WR_CHAIN_DIS__SHIFT 0x9
+#define GDC0_A2S_CNTL_SW2__WR_TAG_FOR_CHAIN_ENABLE__SHIFT 0xa
+#define GDC0_A2S_CNTL_SW2__WR_TAG_FOR_NONCHAIN_ENABLE__SHIFT 0xb
+#define GDC0_A2S_CNTL_SW2__SDP_DYNAMIC_VC_WR_CHAIN_DIS__SHIFT 0xc
+#define GDC0_A2S_CNTL_SW2__WRR_RD_WEIGHT__SHIFT 0x10
+#define GDC0_A2S_CNTL_SW2__WRR_WR_WEIGHT__SHIFT 0x18
+#define GDC0_A2S_CNTL_SW2__STATIC_VC_ENABLE_MASK 0x00000001L
+#define GDC0_A2S_CNTL_SW2__STATIC_VC_VALUE_MASK 0x0000000EL
+#define GDC0_A2S_CNTL_SW2__FORCE_RSP_REORDER_EN_MASK 0x00000040L
+#define GDC0_A2S_CNTL_SW2__SDP_WR_CHAIN_DIS_MASK 0x00000200L
+#define GDC0_A2S_CNTL_SW2__WR_TAG_FOR_CHAIN_ENABLE_MASK 0x00000400L
+#define GDC0_A2S_CNTL_SW2__WR_TAG_FOR_NONCHAIN_ENABLE_MASK 0x00000800L
+#define GDC0_A2S_CNTL_SW2__SDP_DYNAMIC_VC_WR_CHAIN_DIS_MASK 0x00001000L
+#define GDC0_A2S_CNTL_SW2__WRR_RD_WEIGHT_MASK 0x00FF0000L
+#define GDC0_A2S_CNTL_SW2__WRR_WR_WEIGHT_MASK 0xFF000000L
+//GDC0_A2S_TAG_ALLOC_0
+#define GDC0_A2S_TAG_ALLOC_0__TAG_ALLOC_FOR_VC0_WR__SHIFT 0x0
+#define GDC0_A2S_TAG_ALLOC_0__TAG_ALLOC_FOR_VC0_RD__SHIFT 0x8
+#define GDC0_A2S_TAG_ALLOC_0__TAG_ALLOC_FOR_VC1_WR__SHIFT 0x10
+#define GDC0_A2S_TAG_ALLOC_0__TAG_ALLOC_FOR_VC0_WR_MASK 0x000000FFL
+#define GDC0_A2S_TAG_ALLOC_0__TAG_ALLOC_FOR_VC0_RD_MASK 0x0000FF00L
+#define GDC0_A2S_TAG_ALLOC_0__TAG_ALLOC_FOR_VC1_WR_MASK 0x00FF0000L
+//GDC0_A2S_TAG_ALLOC_1
+#define GDC0_A2S_TAG_ALLOC_1__TAG_ALLOC_FOR_VC3_WR__SHIFT 0x0
+#define GDC0_A2S_TAG_ALLOC_1__TAG_ALLOC_FOR_VC7_WR__SHIFT 0x10
+#define GDC0_A2S_TAG_ALLOC_1__TAG_ALLOC_FOR_VC7_RD__SHIFT 0x18
+#define GDC0_A2S_TAG_ALLOC_1__TAG_ALLOC_FOR_VC3_WR_MASK 0x000000FFL
+#define GDC0_A2S_TAG_ALLOC_1__TAG_ALLOC_FOR_VC7_WR_MASK 0x00FF0000L
+#define GDC0_A2S_TAG_ALLOC_1__TAG_ALLOC_FOR_VC7_RD_MASK 0xFF000000L
+//GDC0_A2S_MISC_CNTL
+#define GDC0_A2S_MISC_CNTL__BLKLVL_FOR_MSG__SHIFT 0x0
+#define GDC0_A2S_MISC_CNTL__RESERVE_2_CRED_FOR_NPWR_REQ_DIS__SHIFT 0x2
+#define GDC0_A2S_MISC_CNTL__WRR_LRG_SIZE_MODE__SHIFT 0x3
+#define GDC0_A2S_MISC_CNTL__FORCE_RSP_REORDER_EN__SHIFT 0x4
+#define GDC0_A2S_MISC_CNTL__RSP_REORDER_DIS__SHIFT 0x5
+#define GDC0_A2S_MISC_CNTL__WRRSP_ACCUM_SEL__SHIFT 0x6
+#define GDC0_A2S_MISC_CNTL__WRRSP_TAGFIFO_CONT_RD_DIS__SHIFT 0x7
+#define GDC0_A2S_MISC_CNTL__RDRSP_TAGFIFO_CONT_RD_DIS__SHIFT 0x8
+#define GDC0_A2S_MISC_CNTL__RDRSP_STS_DATSTS_PRIORITY__SHIFT 0x9
+#define GDC0_A2S_MISC_CNTL__INSERT_RD_ON_2ND_WDAT_EN__SHIFT 0xa
+#define GDC0_A2S_MISC_CNTL__WR_TAG_SET_MIN__SHIFT 0x10
+#define GDC0_A2S_MISC_CNTL__RD_TAG_SET_MIN__SHIFT 0x15
+#define GDC0_A2S_MISC_CNTL__WRR_LRG_MODE__SHIFT 0x1a
+#define GDC0_A2S_MISC_CNTL__WRR_LRG_COUNTER_MODE__SHIFT 0x1b
+#define GDC0_A2S_MISC_CNTL__BLKLVL_FOR_MSG_MASK 0x00000003L
+#define GDC0_A2S_MISC_CNTL__RESERVE_2_CRED_FOR_NPWR_REQ_DIS_MASK 0x00000004L
+#define GDC0_A2S_MISC_CNTL__WRR_LRG_SIZE_MODE_MASK 0x00000008L
+#define GDC0_A2S_MISC_CNTL__FORCE_RSP_REORDER_EN_MASK 0x00000010L
+#define GDC0_A2S_MISC_CNTL__RSP_REORDER_DIS_MASK 0x00000020L
+#define GDC0_A2S_MISC_CNTL__WRRSP_ACCUM_SEL_MASK 0x00000040L
+#define GDC0_A2S_MISC_CNTL__WRRSP_TAGFIFO_CONT_RD_DIS_MASK 0x00000080L
+#define GDC0_A2S_MISC_CNTL__RDRSP_TAGFIFO_CONT_RD_DIS_MASK 0x00000100L
+#define GDC0_A2S_MISC_CNTL__RDRSP_STS_DATSTS_PRIORITY_MASK 0x00000200L
+#define GDC0_A2S_MISC_CNTL__INSERT_RD_ON_2ND_WDAT_EN_MASK 0x00000400L
+#define GDC0_A2S_MISC_CNTL__WR_TAG_SET_MIN_MASK 0x001F0000L
+#define GDC0_A2S_MISC_CNTL__RD_TAG_SET_MIN_MASK 0x03E00000L
+#define GDC0_A2S_MISC_CNTL__WRR_LRG_MODE_MASK 0x04000000L
+#define GDC0_A2S_MISC_CNTL__WRR_LRG_COUNTER_MODE_MASK 0x08000000L
+//GDC0_SHUB_REGS_IF_CTL
+#define GDC0_SHUB_REGS_IF_CTL__SHUB_REGS_DROP_NONPF_MMREGREQ_SETERR_DIS__SHIFT 0x0
+#define GDC0_SHUB_REGS_IF_CTL__SHUB_REGS_VF_PROTECTION_DIS__SHIFT 0x1
+#define GDC0_SHUB_REGS_IF_CTL__SHUB_REGS_DROP_NONPF_MMREGREQ_SETERR_DIS_MASK 0x00000001L
+#define GDC0_SHUB_REGS_IF_CTL__SHUB_REGS_VF_PROTECTION_DIS_MASK 0x00000002L
+//GDC0_NGDC_MGCG_CTRL
+#define GDC0_NGDC_MGCG_CTRL__NGDC_MGCG_EN__SHIFT 0x0
+#define GDC0_NGDC_MGCG_CTRL__NGDC_MGCG_MODE__SHIFT 0x1
+#define GDC0_NGDC_MGCG_CTRL__NGDC_MGCG_HYSTERESIS__SHIFT 0x2
+#define GDC0_NGDC_MGCG_CTRL__NGDC_MGCG_HST_DIS__SHIFT 0xa
+#define GDC0_NGDC_MGCG_CTRL__NGDC_MGCG_DMA_DIS__SHIFT 0xb
+#define GDC0_NGDC_MGCG_CTRL__NGDC_MGCG_REG_DIS__SHIFT 0xc
+#define GDC0_NGDC_MGCG_CTRL__NGDC_MGCG_AER_DIS__SHIFT 0xd
+#define GDC0_NGDC_MGCG_CTRL__NGDC_SRAM_FGCG_EN__SHIFT 0xe
+#define GDC0_NGDC_MGCG_CTRL__NGDC_MGCG_EN_MASK 0x00000001L
+#define GDC0_NGDC_MGCG_CTRL__NGDC_MGCG_MODE_MASK 0x00000002L
+#define GDC0_NGDC_MGCG_CTRL__NGDC_MGCG_HYSTERESIS_MASK 0x000003FCL
+#define GDC0_NGDC_MGCG_CTRL__NGDC_MGCG_HST_DIS_MASK 0x00000400L
+#define GDC0_NGDC_MGCG_CTRL__NGDC_MGCG_DMA_DIS_MASK 0x00000800L
+#define GDC0_NGDC_MGCG_CTRL__NGDC_MGCG_REG_DIS_MASK 0x00001000L
+#define GDC0_NGDC_MGCG_CTRL__NGDC_MGCG_AER_DIS_MASK 0x00002000L
+#define GDC0_NGDC_MGCG_CTRL__NGDC_SRAM_FGCG_EN_MASK 0x00004000L
+//GDC0_NGDC_RESERVED_0
+#define GDC0_NGDC_RESERVED_0__RESERVED__SHIFT 0x0
+#define GDC0_NGDC_RESERVED_0__RESERVED_MASK 0xFFFFFFFFL
+//GDC0_NGDC_RESERVED_1
+#define GDC0_NGDC_RESERVED_1__RESERVED__SHIFT 0x0
+#define GDC0_NGDC_RESERVED_1__RESERVED_MASK 0xFFFFFFFFL
+//GDC0_NBIF_GFX_DOORBELL_STATUS
+#define GDC0_NBIF_GFX_DOORBELL_STATUS__NBIF_GFX_DOORBELL_SENT__SHIFT 0x0
+#define GDC0_NBIF_GFX_DOORBELL_STATUS__NBIF_GFX_DOORBELL_SENT_MASK 0x0000FFFFL
+//GDC0_ATDMA_MISC_CNTL
+#define GDC0_ATDMA_MISC_CNTL__WRR_ARB_MODE__SHIFT 0x0
+#define GDC0_ATDMA_MISC_CNTL__INSERT_RD_ON_2ND_WDAT_EN__SHIFT 0x1
+#define GDC0_ATDMA_MISC_CNTL__RDRSP_ARB_MODE__SHIFT 0x2
+#define GDC0_ATDMA_MISC_CNTL__WRR_VC6_WEIGHT__SHIFT 0x8
+#define GDC0_ATDMA_MISC_CNTL__WRR_VC0_WEIGHT__SHIFT 0x10
+#define GDC0_ATDMA_MISC_CNTL__WRR_VC1_WEIGHT__SHIFT 0x18
+#define GDC0_ATDMA_MISC_CNTL__WRR_ARB_MODE_MASK 0x00000001L
+#define GDC0_ATDMA_MISC_CNTL__INSERT_RD_ON_2ND_WDAT_EN_MASK 0x00000002L
+#define GDC0_ATDMA_MISC_CNTL__RDRSP_ARB_MODE_MASK 0x0000000CL
+#define GDC0_ATDMA_MISC_CNTL__WRR_VC6_WEIGHT_MASK 0x0000FF00L
+#define GDC0_ATDMA_MISC_CNTL__WRR_VC0_WEIGHT_MASK 0x00FF0000L
+#define GDC0_ATDMA_MISC_CNTL__WRR_VC1_WEIGHT_MASK 0xFF000000L
+//GDC0_S2A_MISC_CNTL
+#define GDC0_S2A_MISC_CNTL__AXI_HST_CPL_EP_DIS__SHIFT 0x3
+#define GDC0_S2A_MISC_CNTL__ATM_ARB_MODE__SHIFT 0x8
+#define GDC0_S2A_MISC_CNTL__RB_ARB_MODE__SHIFT 0xa
+#define GDC0_S2A_MISC_CNTL__HSTR_ARB_MODE__SHIFT 0xc
+#define GDC0_S2A_MISC_CNTL__HDP_PERF_ENH_DIS__SHIFT 0xf
+#define GDC0_S2A_MISC_CNTL__WRSP_ARB_MODE__SHIFT 0x10
+#define GDC0_S2A_MISC_CNTL__AXI_HST_CPL_EP_DIS_MASK 0x00000008L
+#define GDC0_S2A_MISC_CNTL__ATM_ARB_MODE_MASK 0x00000300L
+#define GDC0_S2A_MISC_CNTL__RB_ARB_MODE_MASK 0x00000C00L
+#define GDC0_S2A_MISC_CNTL__HSTR_ARB_MODE_MASK 0x00003000L
+#define GDC0_S2A_MISC_CNTL__HDP_PERF_ENH_DIS_MASK 0x00008000L
+#define GDC0_S2A_MISC_CNTL__WRSP_ARB_MODE_MASK 0x000F0000L
+//GDC0_NGDC_PG_MISC_CTRL
+#define GDC0_NGDC_PG_MISC_CTRL__NGDC_PG_ENDP_D3_ONLY__SHIFT 0xa
+#define GDC0_NGDC_PG_MISC_CTRL__NGDC_PG_CLK_PERM1__SHIFT 0xd
+#define GDC0_NGDC_PG_MISC_CTRL__NGDC_PG_DS_ALLOW_DIS__SHIFT 0xe
+#define GDC0_NGDC_PG_MISC_CTRL__NGDC_PG_CLK_PERM2__SHIFT 0x10
+#define GDC0_NGDC_PG_MISC_CTRL__NGDC_CFG_REFCLK_CYCLE_FOR_200NS__SHIFT 0x18
+#define GDC0_NGDC_PG_MISC_CTRL__NGDC_CFG_PG_EXIT_OVERRIDE__SHIFT 0x1f
+#define GDC0_NGDC_PG_MISC_CTRL__NGDC_PG_ENDP_D3_ONLY_MASK 0x00000400L
+#define GDC0_NGDC_PG_MISC_CTRL__NGDC_PG_CLK_PERM1_MASK 0x00002000L
+#define GDC0_NGDC_PG_MISC_CTRL__NGDC_PG_DS_ALLOW_DIS_MASK 0x00004000L
+#define GDC0_NGDC_PG_MISC_CTRL__NGDC_PG_CLK_PERM2_MASK 0x00010000L
+#define GDC0_NGDC_PG_MISC_CTRL__NGDC_CFG_REFCLK_CYCLE_FOR_200NS_MASK 0x3F000000L
+#define GDC0_NGDC_PG_MISC_CTRL__NGDC_CFG_PG_EXIT_OVERRIDE_MASK 0x80000000L
+//GDC0_NGDC_PGMST_CTRL
+#define GDC0_NGDC_PGMST_CTRL__NGDC_CFG_PG_HYSTERESIS__SHIFT 0x0
+#define GDC0_NGDC_PGMST_CTRL__NGDC_CFG_PG_EN__SHIFT 0x8
+#define GDC0_NGDC_PGMST_CTRL__NGDC_CFG_IDLENESS_COUNT_EN__SHIFT 0xa
+#define GDC0_NGDC_PGMST_CTRL__NGDC_CFG_FW_PG_EXIT_EN__SHIFT 0xe
+#define GDC0_NGDC_PGMST_CTRL__NGDC_CFG_PG_HYSTERESIS_MASK 0x000000FFL
+#define GDC0_NGDC_PGMST_CTRL__NGDC_CFG_PG_EN_MASK 0x00000100L
+#define GDC0_NGDC_PGMST_CTRL__NGDC_CFG_IDLENESS_COUNT_EN_MASK 0x00003C00L
+#define GDC0_NGDC_PGMST_CTRL__NGDC_CFG_FW_PG_EXIT_EN_MASK 0x0000C000L
+//GDC0_NGDC_PGSLV_CTRL
+#define GDC0_NGDC_PGSLV_CTRL__NGDC_CFG_SHUBCLK_0_IDLE_HYSTERESIS__SHIFT 0x0
+#define GDC0_NGDC_PGSLV_CTRL__NGDC_CFG_SHUBCLK_1_IDLE_HYSTERESIS__SHIFT 0x5
+#define GDC0_NGDC_PGSLV_CTRL__NGDC_CFG_GDCCLK_IDLE_HYSTERESIS__SHIFT 0xa
+#define GDC0_NGDC_PGSLV_CTRL__NGDC_CFG_SHUBCLK_0_IDLE_HYSTERESIS_MASK 0x0000001FL
+#define GDC0_NGDC_PGSLV_CTRL__NGDC_CFG_SHUBCLK_1_IDLE_HYSTERESIS_MASK 0x000003E0L
+#define GDC0_NGDC_PGSLV_CTRL__NGDC_CFG_GDCCLK_IDLE_HYSTERESIS_MASK 0x00007C00L
+
+
+// addressBlock: aid_nbio_nbif0_bif_cfg_dev0_epf0_bifcfgdecp
+//BIF_CFG_DEV0_EPF0_VENDOR_ID
+#define BIF_CFG_DEV0_EPF0_VENDOR_ID__VENDOR_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VENDOR_ID__VENDOR_ID_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_DEVICE_ID
+#define BIF_CFG_DEV0_EPF0_DEVICE_ID__DEVICE_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_DEVICE_ID__DEVICE_ID_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_COMMAND
+#define BIF_CFG_DEV0_EPF0_COMMAND__IO_ACCESS_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_COMMAND__MEM_ACCESS_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_COMMAND__BUS_MASTER_EN__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_COMMAND__SPECIAL_CYCLE_EN__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_COMMAND__MEM_WRITE_INVALIDATE_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_COMMAND__PAL_SNOOP_EN__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_COMMAND__PARITY_ERROR_RESPONSE__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_COMMAND__AD_STEPPING__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_COMMAND__SERR_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_COMMAND__FAST_B2B_EN__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_COMMAND__INT_DIS__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_COMMAND__IO_ACCESS_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_COMMAND__MEM_ACCESS_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_COMMAND__BUS_MASTER_EN_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_COMMAND__SPECIAL_CYCLE_EN_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_COMMAND__MEM_WRITE_INVALIDATE_EN_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_COMMAND__PAL_SNOOP_EN_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_COMMAND__PARITY_ERROR_RESPONSE_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_COMMAND__AD_STEPPING_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_COMMAND__SERR_EN_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_COMMAND__FAST_B2B_EN_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_COMMAND__INT_DIS_MASK 0x0400L
+//BIF_CFG_DEV0_EPF0_STATUS
+#define BIF_CFG_DEV0_EPF0_STATUS__IMMEDIATE_READINESS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_STATUS__INT_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_STATUS__CAP_LIST__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_STATUS__PCI_66_CAP__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_STATUS__FAST_BACK_CAPABLE__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_STATUS__MASTER_DATA_PARITY_ERROR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_STATUS__DEVSEL_TIMING__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_STATUS__SIGNAL_TARGET_ABORT__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_STATUS__RECEIVED_TARGET_ABORT__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_STATUS__RECEIVED_MASTER_ABORT__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_STATUS__SIGNALED_SYSTEM_ERROR__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_STATUS__PARITY_ERROR_DETECTED__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_STATUS__IMMEDIATE_READINESS_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_STATUS__INT_STATUS_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_STATUS__CAP_LIST_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_STATUS__PCI_66_CAP_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_STATUS__FAST_BACK_CAPABLE_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_STATUS__MASTER_DATA_PARITY_ERROR_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_STATUS__DEVSEL_TIMING_MASK 0x0600L
+#define BIF_CFG_DEV0_EPF0_STATUS__SIGNAL_TARGET_ABORT_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_STATUS__RECEIVED_TARGET_ABORT_MASK 0x1000L
+#define BIF_CFG_DEV0_EPF0_STATUS__RECEIVED_MASTER_ABORT_MASK 0x2000L
+#define BIF_CFG_DEV0_EPF0_STATUS__SIGNALED_SYSTEM_ERROR_MASK 0x4000L
+#define BIF_CFG_DEV0_EPF0_STATUS__PARITY_ERROR_DETECTED_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_REVISION_ID
+#define BIF_CFG_DEV0_EPF0_REVISION_ID__MINOR_REV_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_REVISION_ID__MAJOR_REV_ID__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_REVISION_ID__MINOR_REV_ID_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_REVISION_ID__MAJOR_REV_ID_MASK 0xF0L
+//BIF_CFG_DEV0_EPF0_PROG_INTERFACE
+#define BIF_CFG_DEV0_EPF0_PROG_INTERFACE__PROG_INTERFACE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PROG_INTERFACE__PROG_INTERFACE_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_SUB_CLASS
+#define BIF_CFG_DEV0_EPF0_SUB_CLASS__SUB_CLASS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_SUB_CLASS__SUB_CLASS_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_BASE_CLASS
+#define BIF_CFG_DEV0_EPF0_BASE_CLASS__BASE_CLASS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_BASE_CLASS__BASE_CLASS_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_CACHE_LINE
+#define BIF_CFG_DEV0_EPF0_CACHE_LINE__CACHE_LINE_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_CACHE_LINE__CACHE_LINE_SIZE_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_LATENCY
+#define BIF_CFG_DEV0_EPF0_LATENCY__LATENCY_TIMER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LATENCY__LATENCY_TIMER_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_HEADER
+#define BIF_CFG_DEV0_EPF0_HEADER__HEADER_TYPE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_HEADER__DEVICE_TYPE__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_HEADER__HEADER_TYPE_MASK 0x7FL
+#define BIF_CFG_DEV0_EPF0_HEADER__DEVICE_TYPE_MASK 0x80L
+//BIF_CFG_DEV0_EPF0_BIST
+#define BIF_CFG_DEV0_EPF0_BIST__BIST_COMP__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_BIST__BIST_STRT__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_BIST__BIST_CAP__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_BIST__BIST_COMP_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_BIST__BIST_STRT_MASK 0x40L
+#define BIF_CFG_DEV0_EPF0_BIST__BIST_CAP_MASK 0x80L
+//BIF_CFG_DEV0_EPF0_BASE_ADDR_1
+#define BIF_CFG_DEV0_EPF0_BASE_ADDR_1__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_BASE_ADDR_1__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_BASE_ADDR_2
+#define BIF_CFG_DEV0_EPF0_BASE_ADDR_2__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_BASE_ADDR_2__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_BASE_ADDR_3
+#define BIF_CFG_DEV0_EPF0_BASE_ADDR_3__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_BASE_ADDR_3__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_BASE_ADDR_4
+#define BIF_CFG_DEV0_EPF0_BASE_ADDR_4__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_BASE_ADDR_4__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_BASE_ADDR_5
+#define BIF_CFG_DEV0_EPF0_BASE_ADDR_5__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_BASE_ADDR_5__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_BASE_ADDR_6
+#define BIF_CFG_DEV0_EPF0_BASE_ADDR_6__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_BASE_ADDR_6__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_CARDBUS_CIS_PTR
+#define BIF_CFG_DEV0_EPF0_CARDBUS_CIS_PTR__CARDBUS_CIS_PTR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_CARDBUS_CIS_PTR__CARDBUS_CIS_PTR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_ADAPTER_ID
+#define BIF_CFG_DEV0_EPF0_ADAPTER_ID__SUBSYSTEM_VENDOR_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_ADAPTER_ID__SUBSYSTEM_ID__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_ADAPTER_ID__SUBSYSTEM_VENDOR_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_ADAPTER_ID__SUBSYSTEM_ID_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_ROM_BASE_ADDR
+#define BIF_CFG_DEV0_EPF0_ROM_BASE_ADDR__ROM_ENABLE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_ROM_BASE_ADDR__ROM_VALIDATION_STATUS__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_ROM_BASE_ADDR__ROM_VALIDATION_DETAILS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_ROM_BASE_ADDR__BASE_ADDR__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_ROM_BASE_ADDR__ROM_ENABLE_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_ROM_BASE_ADDR__ROM_VALIDATION_STATUS_MASK 0x0000000EL
+#define BIF_CFG_DEV0_EPF0_ROM_BASE_ADDR__ROM_VALIDATION_DETAILS_MASK 0x000000F0L
+#define BIF_CFG_DEV0_EPF0_ROM_BASE_ADDR__BASE_ADDR_MASK 0xFFFFF800L
+//BIF_CFG_DEV0_EPF0_CAP_PTR
+#define BIF_CFG_DEV0_EPF0_CAP_PTR__CAP_PTR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_CAP_PTR__CAP_PTR_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_INTERRUPT_LINE
+#define BIF_CFG_DEV0_EPF0_INTERRUPT_LINE__INTERRUPT_LINE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_INTERRUPT_LINE__INTERRUPT_LINE_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_INTERRUPT_PIN
+#define BIF_CFG_DEV0_EPF0_INTERRUPT_PIN__INTERRUPT_PIN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_INTERRUPT_PIN__INTERRUPT_PIN_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_MIN_GRANT
+#define BIF_CFG_DEV0_EPF0_MIN_GRANT__MIN_GNT__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_MIN_GRANT__MIN_GNT_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_MAX_LATENCY
+#define BIF_CFG_DEV0_EPF0_MAX_LATENCY__MAX_LAT__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_MAX_LATENCY__MAX_LAT_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VENDOR_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VENDOR_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VENDOR_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VENDOR_CAP_LIST__LENGTH__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VENDOR_CAP_LIST__CAP_ID_MASK 0x000000FFL
+#define BIF_CFG_DEV0_EPF0_VENDOR_CAP_LIST__NEXT_PTR_MASK 0x0000FF00L
+#define BIF_CFG_DEV0_EPF0_VENDOR_CAP_LIST__LENGTH_MASK 0x00FF0000L
+//BIF_CFG_DEV0_EPF0_ADAPTER_ID_W
+#define BIF_CFG_DEV0_EPF0_ADAPTER_ID_W__SUBSYSTEM_VENDOR_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_ADAPTER_ID_W__SUBSYSTEM_ID__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_ADAPTER_ID_W__SUBSYSTEM_VENDOR_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_ADAPTER_ID_W__SUBSYSTEM_ID_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_PMI_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_PMI_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PMI_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_PMI_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_EPF0_PMI_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_PMI_CAP
+#define BIF_CFG_DEV0_EPF0_PMI_CAP__VERSION__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PMI_CAP__PME_CLOCK__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_PMI_CAP__IMMEDIATE_READINESS_ON_RETURN_TO_D0__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_PMI_CAP__DEV_SPECIFIC_INIT__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_PMI_CAP__AUX_CURRENT__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_PMI_CAP__D1_SUPPORT__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_PMI_CAP__D2_SUPPORT__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_PMI_CAP__PME_SUPPORT__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_PMI_CAP__VERSION_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_PMI_CAP__PME_CLOCK_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_PMI_CAP__IMMEDIATE_READINESS_ON_RETURN_TO_D0_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_PMI_CAP__DEV_SPECIFIC_INIT_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_PMI_CAP__AUX_CURRENT_MASK 0x01C0L
+#define BIF_CFG_DEV0_EPF0_PMI_CAP__D1_SUPPORT_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_PMI_CAP__D2_SUPPORT_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF0_PMI_CAP__PME_SUPPORT_MASK 0xF800L
+//BIF_CFG_DEV0_EPF0_PMI_STATUS_CNTL
+#define BIF_CFG_DEV0_EPF0_PMI_STATUS_CNTL__POWER_STATE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PMI_STATUS_CNTL__NO_SOFT_RESET__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_PMI_STATUS_CNTL__PME_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_PMI_STATUS_CNTL__DATA_SELECT__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_PMI_STATUS_CNTL__DATA_SCALE__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_PMI_STATUS_CNTL__PME_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_PMI_STATUS_CNTL__B2_B3_SUPPORT__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_PMI_STATUS_CNTL__BUS_PWR_EN__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_PMI_STATUS_CNTL__PMI_DATA__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_PMI_STATUS_CNTL__POWER_STATE_MASK 0x00000003L
+#define BIF_CFG_DEV0_EPF0_PMI_STATUS_CNTL__NO_SOFT_RESET_MASK 0x00000008L
+#define BIF_CFG_DEV0_EPF0_PMI_STATUS_CNTL__PME_EN_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_PMI_STATUS_CNTL__DATA_SELECT_MASK 0x00001E00L
+#define BIF_CFG_DEV0_EPF0_PMI_STATUS_CNTL__DATA_SCALE_MASK 0x00006000L
+#define BIF_CFG_DEV0_EPF0_PMI_STATUS_CNTL__PME_STATUS_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_PMI_STATUS_CNTL__B2_B3_SUPPORT_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_PMI_STATUS_CNTL__BUS_PWR_EN_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_PMI_STATUS_CNTL__PMI_DATA_MASK 0xFF000000L
+//BIF_CFG_DEV0_EPF0_PCIE_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_PCIE_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_PCIE_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_EPF0_PCIE_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_PCIE_CAP
+#define BIF_CFG_DEV0_EPF0_PCIE_CAP__VERSION__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_CAP__DEVICE_TYPE__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_PCIE_CAP__SLOT_IMPLEMENTED__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_PCIE_CAP__INT_MESSAGE_NUM__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_PCIE_CAP__VERSION_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_PCIE_CAP__DEVICE_TYPE_MASK 0x00F0L
+#define BIF_CFG_DEV0_EPF0_PCIE_CAP__SLOT_IMPLEMENTED_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_PCIE_CAP__INT_MESSAGE_NUM_MASK 0x3E00L
+//BIF_CFG_DEV0_EPF0_DEVICE_CAP
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP__MAX_PAYLOAD_SUPPORT__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP__PHANTOM_FUNC__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP__EXTENDED_TAG__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP__L0S_ACCEPTABLE_LATENCY__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP__L1_ACCEPTABLE_LATENCY__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP__ROLE_BASED_ERR_REPORTING__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP__ERR_COR_SUBCLASS_CAPABLE__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP__CAPTURED_SLOT_POWER_LIMIT__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP__CAPTURED_SLOT_POWER_SCALE__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP__FLR_CAPABLE__SHIFT 0x1c
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP__MAX_PAYLOAD_SUPPORT_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP__PHANTOM_FUNC_MASK 0x00000018L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP__EXTENDED_TAG_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP__L0S_ACCEPTABLE_LATENCY_MASK 0x000001C0L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP__L1_ACCEPTABLE_LATENCY_MASK 0x00000E00L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP__ROLE_BASED_ERR_REPORTING_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP__ERR_COR_SUBCLASS_CAPABLE_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP__CAPTURED_SLOT_POWER_LIMIT_MASK 0x03FC0000L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP__CAPTURED_SLOT_POWER_SCALE_MASK 0x0C000000L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP__FLR_CAPABLE_MASK 0x10000000L
+//BIF_CFG_DEV0_EPF0_DEVICE_CNTL
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL__CORR_ERR_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL__NON_FATAL_ERR_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL__FATAL_ERR_EN__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL__USR_REPORT_EN__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL__RELAXED_ORD_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL__MAX_PAYLOAD_SIZE__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL__EXTENDED_TAG_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL__PHANTOM_FUNC_EN__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL__AUX_POWER_PM_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL__NO_SNOOP_EN__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL__MAX_READ_REQUEST_SIZE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL__INITIATE_FLR__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL__CORR_ERR_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL__NON_FATAL_ERR_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL__FATAL_ERR_EN_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL__USR_REPORT_EN_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL__RELAXED_ORD_EN_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL__MAX_PAYLOAD_SIZE_MASK 0x00E0L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL__EXTENDED_TAG_EN_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL__PHANTOM_FUNC_EN_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL__AUX_POWER_PM_EN_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL__NO_SNOOP_EN_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL__MAX_READ_REQUEST_SIZE_MASK 0x7000L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL__INITIATE_FLR_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_DEVICE_STATUS
+#define BIF_CFG_DEV0_EPF0_DEVICE_STATUS__CORR_ERR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_DEVICE_STATUS__NON_FATAL_ERR__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_DEVICE_STATUS__FATAL_ERR__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_DEVICE_STATUS__USR_DETECTED__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_DEVICE_STATUS__AUX_PWR__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_DEVICE_STATUS__TRANSACTIONS_PEND__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_DEVICE_STATUS__EMER_POWER_REDUCTION_DETECTED__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_DEVICE_STATUS__CORR_ERR_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_DEVICE_STATUS__NON_FATAL_ERR_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_DEVICE_STATUS__FATAL_ERR_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_DEVICE_STATUS__USR_DETECTED_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_DEVICE_STATUS__AUX_PWR_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_DEVICE_STATUS__TRANSACTIONS_PEND_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_DEVICE_STATUS__EMER_POWER_REDUCTION_DETECTED_MASK 0x0040L
+//BIF_CFG_DEV0_EPF0_LINK_CAP
+#define BIF_CFG_DEV0_EPF0_LINK_CAP__LINK_SPEED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LINK_CAP__LINK_WIDTH__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_LINK_CAP__PM_SUPPORT__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_LINK_CAP__L0S_EXIT_LATENCY__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_LINK_CAP__L1_EXIT_LATENCY__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_LINK_CAP__CLOCK_POWER_MANAGEMENT__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_LINK_CAP__SURPRISE_DOWN_ERR_REPORTING__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF0_LINK_CAP__DL_ACTIVE_REPORTING_CAPABLE__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_LINK_CAP__LINK_BW_NOTIFICATION_CAP__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_LINK_CAP__ASPM_OPTIONALITY_COMPLIANCE__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_LINK_CAP__PORT_NUMBER__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_LINK_CAP__LINK_SPEED_MASK 0x0000000FL
+#define BIF_CFG_DEV0_EPF0_LINK_CAP__LINK_WIDTH_MASK 0x000003F0L
+#define BIF_CFG_DEV0_EPF0_LINK_CAP__PM_SUPPORT_MASK 0x00000C00L
+#define BIF_CFG_DEV0_EPF0_LINK_CAP__L0S_EXIT_LATENCY_MASK 0x00007000L
+#define BIF_CFG_DEV0_EPF0_LINK_CAP__L1_EXIT_LATENCY_MASK 0x00038000L
+#define BIF_CFG_DEV0_EPF0_LINK_CAP__CLOCK_POWER_MANAGEMENT_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF0_LINK_CAP__SURPRISE_DOWN_ERR_REPORTING_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF0_LINK_CAP__DL_ACTIVE_REPORTING_CAPABLE_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_LINK_CAP__LINK_BW_NOTIFICATION_CAP_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_LINK_CAP__ASPM_OPTIONALITY_COMPLIANCE_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_LINK_CAP__PORT_NUMBER_MASK 0xFF000000L
+//BIF_CFG_DEV0_EPF0_LINK_CNTL
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL__PM_CONTROL__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL__PTM_PROP_DELAY_ADAPT_INTER_B__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL__READ_CPL_BOUNDARY__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL__LINK_DIS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL__RETRAIN_LINK__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL__COMMON_CLOCK_CFG__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL__EXTENDED_SYNC__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL__CLOCK_POWER_MANAGEMENT_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL__HW_AUTONOMOUS_WIDTH_DISABLE__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL__LINK_BW_MANAGEMENT_INT_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL__LINK_AUTONOMOUS_BW_INT_EN__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL__DRS_SIGNALING_CONTROL__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL__PM_CONTROL_MASK 0x0003L
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL__PTM_PROP_DELAY_ADAPT_INTER_B_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL__READ_CPL_BOUNDARY_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL__LINK_DIS_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL__RETRAIN_LINK_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL__COMMON_CLOCK_CFG_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL__EXTENDED_SYNC_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL__CLOCK_POWER_MANAGEMENT_EN_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL__HW_AUTONOMOUS_WIDTH_DISABLE_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL__LINK_BW_MANAGEMENT_INT_EN_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL__LINK_AUTONOMOUS_BW_INT_EN_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL__DRS_SIGNALING_CONTROL_MASK 0xC000L
+//BIF_CFG_DEV0_EPF0_LINK_STATUS
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS__CURRENT_LINK_SPEED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS__NEGOTIATED_LINK_WIDTH__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS__LINK_TRAINING__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS__SLOT_CLOCK_CFG__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS__DL_ACTIVE__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS__LINK_BW_MANAGEMENT_STATUS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS__LINK_AUTONOMOUS_BW_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS__CURRENT_LINK_SPEED_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS__NEGOTIATED_LINK_WIDTH_MASK 0x03F0L
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS__LINK_TRAINING_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS__SLOT_CLOCK_CFG_MASK 0x1000L
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS__DL_ACTIVE_MASK 0x2000L
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS__LINK_BW_MANAGEMENT_STATUS_MASK 0x4000L
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS__LINK_AUTONOMOUS_BW_STATUS_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_DEVICE_CAP2
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP2__CPL_TIMEOUT_RANGE_SUPPORTED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP2__CPL_TIMEOUT_DIS_SUPPORTED__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP2__ARI_FORWARDING_SUPPORTED__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP2__ATOMICOP_ROUTING_SUPPORTED__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP2__ATOMICOP_32CMPLT_SUPPORTED__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP2__ATOMICOP_64CMPLT_SUPPORTED__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP2__CAS128_CMPLT_SUPPORTED__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP2__NO_RO_ENABLED_P2P_PASSING__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP2__LTR_SUPPORTED__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP2__TPH_CPLR_SUPPORTED__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP2__LN_SYSTEM_CLS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP2__TEN_BIT_TAG_COMPLETER_SUPPORTED__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP2__TEN_BIT_TAG_REQUESTER_SUPPORTED__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP2__OBFF_SUPPORTED__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP2__EXTENDED_FMT_FIELD_SUPPORTED__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP2__END_END_TLP_PREFIX_SUPPORTED__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP2__MAX_END_END_TLP_PREFIXES__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP2__EMER_POWER_REDUCTION_SUPPORTED__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP2__EMER_POWER_REDUCTION_INIT_REQ__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP2__FRS_SUPPORTED__SHIFT 0x1f
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP2__CPL_TIMEOUT_RANGE_SUPPORTED_MASK 0x0000000FL
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP2__CPL_TIMEOUT_DIS_SUPPORTED_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP2__ARI_FORWARDING_SUPPORTED_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP2__ATOMICOP_ROUTING_SUPPORTED_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP2__ATOMICOP_32CMPLT_SUPPORTED_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP2__ATOMICOP_64CMPLT_SUPPORTED_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP2__CAS128_CMPLT_SUPPORTED_MASK 0x00000200L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP2__NO_RO_ENABLED_P2P_PASSING_MASK 0x00000400L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP2__LTR_SUPPORTED_MASK 0x00000800L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP2__TPH_CPLR_SUPPORTED_MASK 0x00003000L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP2__LN_SYSTEM_CLS_MASK 0x0000C000L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP2__TEN_BIT_TAG_COMPLETER_SUPPORTED_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP2__TEN_BIT_TAG_REQUESTER_SUPPORTED_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP2__OBFF_SUPPORTED_MASK 0x000C0000L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP2__EXTENDED_FMT_FIELD_SUPPORTED_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP2__END_END_TLP_PREFIX_SUPPORTED_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP2__MAX_END_END_TLP_PREFIXES_MASK 0x00C00000L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP2__EMER_POWER_REDUCTION_SUPPORTED_MASK 0x03000000L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP2__EMER_POWER_REDUCTION_INIT_REQ_MASK 0x04000000L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CAP2__FRS_SUPPORTED_MASK 0x80000000L
+//BIF_CFG_DEV0_EPF0_DEVICE_CNTL2
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL2__CPL_TIMEOUT_VALUE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL2__CPL_TIMEOUT_DIS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL2__ARI_FORWARDING_EN__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL2__ATOMICOP_REQUEST_EN__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL2__ATOMICOP_EGRESS_BLOCKING__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL2__IDO_REQUEST_ENABLE__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL2__IDO_COMPLETION_ENABLE__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL2__LTR_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL2__EMER_POWER_REDUCTION_REQUEST__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL2__TEN_BIT_TAG_REQUESTER_ENABLE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL2__OBFF_EN__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL2__END_END_TLP_PREFIX_BLOCKING__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL2__CPL_TIMEOUT_VALUE_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL2__CPL_TIMEOUT_DIS_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL2__ARI_FORWARDING_EN_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL2__ATOMICOP_REQUEST_EN_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL2__ATOMICOP_EGRESS_BLOCKING_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL2__IDO_REQUEST_ENABLE_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL2__IDO_COMPLETION_ENABLE_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL2__LTR_EN_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL2__EMER_POWER_REDUCTION_REQUEST_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL2__TEN_BIT_TAG_REQUESTER_ENABLE_MASK 0x1000L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL2__OBFF_EN_MASK 0x6000L
+#define BIF_CFG_DEV0_EPF0_DEVICE_CNTL2__END_END_TLP_PREFIX_BLOCKING_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_DEVICE_STATUS2
+#define BIF_CFG_DEV0_EPF0_DEVICE_STATUS2__RESERVED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_DEVICE_STATUS2__RESERVED_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_LINK_CAP2
+#define BIF_CFG_DEV0_EPF0_LINK_CAP2__SUPPORTED_LINK_SPEED__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_LINK_CAP2__CROSSLINK_SUPPORTED__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_LINK_CAP2__LOWER_SKP_OS_GEN_SUPPORT__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_LINK_CAP2__LOWER_SKP_OS_RCV_SUPPORT__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_LINK_CAP2__RTM1_PRESENCE_DET_SUPPORT__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_LINK_CAP2__RTM2_PRESENCE_DET_SUPPORT__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_LINK_CAP2__DRS_SUPPORTED__SHIFT 0x1f
+#define BIF_CFG_DEV0_EPF0_LINK_CAP2__SUPPORTED_LINK_SPEED_MASK 0x000000FEL
+#define BIF_CFG_DEV0_EPF0_LINK_CAP2__CROSSLINK_SUPPORTED_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_LINK_CAP2__LOWER_SKP_OS_GEN_SUPPORT_MASK 0x0000FE00L
+#define BIF_CFG_DEV0_EPF0_LINK_CAP2__LOWER_SKP_OS_RCV_SUPPORT_MASK 0x007F0000L
+#define BIF_CFG_DEV0_EPF0_LINK_CAP2__RTM1_PRESENCE_DET_SUPPORT_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_LINK_CAP2__RTM2_PRESENCE_DET_SUPPORT_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_LINK_CAP2__DRS_SUPPORTED_MASK 0x80000000L
+//BIF_CFG_DEV0_EPF0_LINK_CNTL2
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL2__TARGET_LINK_SPEED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL2__ENTER_COMPLIANCE__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL2__HW_AUTONOMOUS_SPEED_DISABLE__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL2__SELECTABLE_DEEMPHASIS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL2__XMIT_MARGIN__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL2__ENTER_MOD_COMPLIANCE__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL2__COMPLIANCE_SOS__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL2__COMPLIANCE_DEEMPHASIS__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL2__TARGET_LINK_SPEED_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL2__ENTER_COMPLIANCE_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL2__HW_AUTONOMOUS_SPEED_DISABLE_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL2__SELECTABLE_DEEMPHASIS_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL2__XMIT_MARGIN_MASK 0x0380L
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL2__ENTER_MOD_COMPLIANCE_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL2__COMPLIANCE_SOS_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL2__COMPLIANCE_DEEMPHASIS_MASK 0xF000L
+//BIF_CFG_DEV0_EPF0_LINK_STATUS2
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS2__CUR_DEEMPHASIS_LEVEL__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS2__EQUALIZATION_COMPLETE_8GT__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS2__EQUALIZATION_PHASE1_SUCCESS_8GT__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS2__EQUALIZATION_PHASE2_SUCCESS_8GT__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS2__EQUALIZATION_PHASE3_SUCCESS_8GT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS2__LINK_EQUALIZATION_REQUEST_8GT__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS2__RTM1_PRESENCE_DET__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS2__RTM2_PRESENCE_DET__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS2__CROSSLINK_RESOLUTION__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS2__DOWNSTREAM_COMPONENT_PRESENCE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS2__DRS_MESSAGE_RECEIVED__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS2__CUR_DEEMPHASIS_LEVEL_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS2__EQUALIZATION_COMPLETE_8GT_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS2__EQUALIZATION_PHASE1_SUCCESS_8GT_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS2__EQUALIZATION_PHASE2_SUCCESS_8GT_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS2__EQUALIZATION_PHASE3_SUCCESS_8GT_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS2__LINK_EQUALIZATION_REQUEST_8GT_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS2__RTM1_PRESENCE_DET_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS2__RTM2_PRESENCE_DET_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS2__CROSSLINK_RESOLUTION_MASK 0x0300L
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS2__DOWNSTREAM_COMPONENT_PRESENCE_MASK 0x7000L
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS2__DRS_MESSAGE_RECEIVED_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_MSI_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_MSI_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_MSI_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_MSI_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_EPF0_MSI_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_MSI_MSG_CNTL
+#define BIF_CFG_DEV0_EPF0_MSI_MSG_CNTL__MSI_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_MSI_MSG_CNTL__MSI_MULTI_CAP__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_MSI_MSG_CNTL__MSI_MULTI_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_MSI_MSG_CNTL__MSI_64BIT__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_MSI_MSG_CNTL__MSI_PERVECTOR_MASKING_CAP__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_CAP__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_MSI_MSG_CNTL__MSI_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_MSI_MSG_CNTL__MSI_MULTI_CAP_MASK 0x000EL
+#define BIF_CFG_DEV0_EPF0_MSI_MSG_CNTL__MSI_MULTI_EN_MASK 0x0070L
+#define BIF_CFG_DEV0_EPF0_MSI_MSG_CNTL__MSI_64BIT_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_MSI_MSG_CNTL__MSI_PERVECTOR_MASKING_CAP_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_CAP_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_EN_MASK 0x0400L
+//BIF_CFG_DEV0_EPF0_MSI_MSG_ADDR_LO
+#define BIF_CFG_DEV0_EPF0_MSI_MSG_ADDR_LO__MSI_MSG_ADDR_LO__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_MSI_MSG_ADDR_LO__MSI_MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//BIF_CFG_DEV0_EPF0_MSI_MSG_ADDR_HI
+#define BIF_CFG_DEV0_EPF0_MSI_MSG_ADDR_HI__MSI_MSG_ADDR_HI__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_MSI_MSG_ADDR_HI__MSI_MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_MSI_MSG_DATA
+#define BIF_CFG_DEV0_EPF0_MSI_MSG_DATA__MSI_DATA__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_MSI_MSG_DATA__MSI_DATA_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_MSI_EXT_MSG_DATA
+#define BIF_CFG_DEV0_EPF0_MSI_EXT_MSG_DATA__MSI_EXT_DATA__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_MSI_EXT_MSG_DATA__MSI_EXT_DATA_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_MSI_MASK
+#define BIF_CFG_DEV0_EPF0_MSI_MASK__MSI_MASK__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_MSI_MASK__MSI_MASK_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_MSI_MSG_DATA_64
+#define BIF_CFG_DEV0_EPF0_MSI_MSG_DATA_64__MSI_DATA_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_MSI_MSG_DATA_64__MSI_DATA_64_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_MSI_EXT_MSG_DATA_64
+#define BIF_CFG_DEV0_EPF0_MSI_EXT_MSG_DATA_64__MSI_EXT_DATA_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_MSI_EXT_MSG_DATA_64__MSI_EXT_DATA_64_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_MSI_MASK_64
+#define BIF_CFG_DEV0_EPF0_MSI_MASK_64__MSI_MASK_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_MSI_MASK_64__MSI_MASK_64_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_MSI_PENDING
+#define BIF_CFG_DEV0_EPF0_MSI_PENDING__MSI_PENDING__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_MSI_PENDING__MSI_PENDING_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_MSI_PENDING_64
+#define BIF_CFG_DEV0_EPF0_MSI_PENDING_64__MSI_PENDING_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_MSI_PENDING_64__MSI_PENDING_64_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_MSIX_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_MSIX_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_MSIX_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_MSIX_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_EPF0_MSIX_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_MSIX_MSG_CNTL
+#define BIF_CFG_DEV0_EPF0_MSIX_MSG_CNTL__MSIX_TABLE_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_MSIX_MSG_CNTL__MSIX_FUNC_MASK__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_MSIX_MSG_CNTL__MSIX_EN__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_MSIX_MSG_CNTL__MSIX_TABLE_SIZE_MASK 0x07FFL
+#define BIF_CFG_DEV0_EPF0_MSIX_MSG_CNTL__MSIX_FUNC_MASK_MASK 0x4000L
+#define BIF_CFG_DEV0_EPF0_MSIX_MSG_CNTL__MSIX_EN_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_MSIX_TABLE
+#define BIF_CFG_DEV0_EPF0_MSIX_TABLE__MSIX_TABLE_BIR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_MSIX_TABLE__MSIX_TABLE_OFFSET__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_MSIX_TABLE__MSIX_TABLE_BIR_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF0_MSIX_TABLE__MSIX_TABLE_OFFSET_MASK 0xFFFFFFF8L
+//BIF_CFG_DEV0_EPF0_MSIX_PBA
+#define BIF_CFG_DEV0_EPF0_MSIX_PBA__MSIX_PBA_BIR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_MSIX_PBA__MSIX_PBA_OFFSET__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_MSIX_PBA__MSIX_PBA_BIR_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF0_MSIX_PBA__MSIX_PBA_OFFSET_MASK 0xFFFFFFF8L
+//BIF_CFG_DEV0_EPF0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_PCIE_VENDOR_SPECIFIC_HDR
+#define BIF_CFG_DEV0_EPF0_PCIE_VENDOR_SPECIFIC_HDR__VSEC_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_VENDOR_SPECIFIC_HDR__VSEC_REV__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_PCIE_VENDOR_SPECIFIC_HDR__VSEC_LENGTH__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_PCIE_VENDOR_SPECIFIC_HDR__VSEC_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_PCIE_VENDOR_SPECIFIC_HDR__VSEC_REV_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_PCIE_VENDOR_SPECIFIC_HDR__VSEC_LENGTH_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_PCIE_VENDOR_SPECIFIC1
+#define BIF_CFG_DEV0_EPF0_PCIE_VENDOR_SPECIFIC1__SCRATCH__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_VENDOR_SPECIFIC1__SCRATCH_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_PCIE_VENDOR_SPECIFIC2
+#define BIF_CFG_DEV0_EPF0_PCIE_VENDOR_SPECIFIC2__SCRATCH__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_VENDOR_SPECIFIC2__SCRATCH_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_PCIE_VC_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_PCIE_VC_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_VC_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_PCIE_VC_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_PCIE_VC_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_PCIE_VC_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_PCIE_VC_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_PCIE_PORT_VC_CAP_REG1
+#define BIF_CFG_DEV0_EPF0_PCIE_PORT_VC_CAP_REG1__EXT_VC_COUNT__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_PORT_VC_CAP_REG1__LOW_PRIORITY_EXT_VC_COUNT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_PCIE_PORT_VC_CAP_REG1__REF_CLK__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_PCIE_PORT_VC_CAP_REG1__PORT_ARB_TABLE_ENTRY_SIZE__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_PCIE_PORT_VC_CAP_REG1__EXT_VC_COUNT_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF0_PCIE_PORT_VC_CAP_REG1__LOW_PRIORITY_EXT_VC_COUNT_MASK 0x00000070L
+#define BIF_CFG_DEV0_EPF0_PCIE_PORT_VC_CAP_REG1__REF_CLK_MASK 0x00000300L
+#define BIF_CFG_DEV0_EPF0_PCIE_PORT_VC_CAP_REG1__PORT_ARB_TABLE_ENTRY_SIZE_MASK 0x00000C00L
+//BIF_CFG_DEV0_EPF0_PCIE_PORT_VC_CAP_REG2
+#define BIF_CFG_DEV0_EPF0_PCIE_PORT_VC_CAP_REG2__VC_ARB_CAP__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_PORT_VC_CAP_REG2__VC_ARB_TABLE_OFFSET__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_PCIE_PORT_VC_CAP_REG2__VC_ARB_CAP_MASK 0x000000FFL
+#define BIF_CFG_DEV0_EPF0_PCIE_PORT_VC_CAP_REG2__VC_ARB_TABLE_OFFSET_MASK 0xFF000000L
+//BIF_CFG_DEV0_EPF0_PCIE_PORT_VC_CNTL
+#define BIF_CFG_DEV0_EPF0_PCIE_PORT_VC_CNTL__LOAD_VC_ARB_TABLE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_PORT_VC_CNTL__VC_ARB_SELECT__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_PCIE_PORT_VC_CNTL__LOAD_VC_ARB_TABLE_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_PCIE_PORT_VC_CNTL__VC_ARB_SELECT_MASK 0x000EL
+//BIF_CFG_DEV0_EPF0_PCIE_PORT_VC_STATUS
+#define BIF_CFG_DEV0_EPF0_PCIE_PORT_VC_STATUS__VC_ARB_TABLE_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_PORT_VC_STATUS__VC_ARB_TABLE_STATUS_MASK 0x0001L
+//BIF_CFG_DEV0_EPF0_PCIE_VC0_RESOURCE_CAP
+#define BIF_CFG_DEV0_EPF0_PCIE_VC0_RESOURCE_CAP__PORT_ARB_CAP__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_VC0_RESOURCE_CAP__REJECT_SNOOP_TRANS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_PCIE_VC0_RESOURCE_CAP__MAX_TIME_SLOTS__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_PCIE_VC0_RESOURCE_CAP__PORT_ARB_TABLE_OFFSET__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_PCIE_VC0_RESOURCE_CAP__PORT_ARB_CAP_MASK 0x000000FFL
+#define BIF_CFG_DEV0_EPF0_PCIE_VC0_RESOURCE_CAP__REJECT_SNOOP_TRANS_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_PCIE_VC0_RESOURCE_CAP__MAX_TIME_SLOTS_MASK 0x007F0000L
+#define BIF_CFG_DEV0_EPF0_PCIE_VC0_RESOURCE_CAP__PORT_ARB_TABLE_OFFSET_MASK 0xFF000000L
+//BIF_CFG_DEV0_EPF0_PCIE_VC0_RESOURCE_CNTL
+#define BIF_CFG_DEV0_EPF0_PCIE_VC0_RESOURCE_CNTL__TC_VC_MAP_TC0__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_VC0_RESOURCE_CNTL__TC_VC_MAP_TC1_7__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_PCIE_VC0_RESOURCE_CNTL__LOAD_PORT_ARB_TABLE__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_PCIE_VC0_RESOURCE_CNTL__PORT_ARB_SELECT__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_PCIE_VC0_RESOURCE_CNTL__VC_ID__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_PCIE_VC0_RESOURCE_CNTL__VC_ENABLE__SHIFT 0x1f
+#define BIF_CFG_DEV0_EPF0_PCIE_VC0_RESOURCE_CNTL__TC_VC_MAP_TC0_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_PCIE_VC0_RESOURCE_CNTL__TC_VC_MAP_TC1_7_MASK 0x000000FEL
+#define BIF_CFG_DEV0_EPF0_PCIE_VC0_RESOURCE_CNTL__LOAD_PORT_ARB_TABLE_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_PCIE_VC0_RESOURCE_CNTL__PORT_ARB_SELECT_MASK 0x000E0000L
+#define BIF_CFG_DEV0_EPF0_PCIE_VC0_RESOURCE_CNTL__VC_ID_MASK 0x07000000L
+#define BIF_CFG_DEV0_EPF0_PCIE_VC0_RESOURCE_CNTL__VC_ENABLE_MASK 0x80000000L
+//BIF_CFG_DEV0_EPF0_PCIE_VC0_RESOURCE_STATUS
+#define BIF_CFG_DEV0_EPF0_PCIE_VC0_RESOURCE_STATUS__PORT_ARB_TABLE_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_VC0_RESOURCE_STATUS__VC_NEGOTIATION_PENDING__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_PCIE_VC0_RESOURCE_STATUS__PORT_ARB_TABLE_STATUS_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_PCIE_VC0_RESOURCE_STATUS__VC_NEGOTIATION_PENDING_MASK 0x0002L
+//BIF_CFG_DEV0_EPF0_PCIE_VC1_RESOURCE_CAP
+#define BIF_CFG_DEV0_EPF0_PCIE_VC1_RESOURCE_CAP__PORT_ARB_CAP__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_VC1_RESOURCE_CAP__REJECT_SNOOP_TRANS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_PCIE_VC1_RESOURCE_CAP__MAX_TIME_SLOTS__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_PCIE_VC1_RESOURCE_CAP__PORT_ARB_TABLE_OFFSET__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_PCIE_VC1_RESOURCE_CAP__PORT_ARB_CAP_MASK 0x000000FFL
+#define BIF_CFG_DEV0_EPF0_PCIE_VC1_RESOURCE_CAP__REJECT_SNOOP_TRANS_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_PCIE_VC1_RESOURCE_CAP__MAX_TIME_SLOTS_MASK 0x003F0000L
+#define BIF_CFG_DEV0_EPF0_PCIE_VC1_RESOURCE_CAP__PORT_ARB_TABLE_OFFSET_MASK 0xFF000000L
+//BIF_CFG_DEV0_EPF0_PCIE_VC1_RESOURCE_CNTL
+#define BIF_CFG_DEV0_EPF0_PCIE_VC1_RESOURCE_CNTL__TC_VC_MAP_TC0__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_VC1_RESOURCE_CNTL__TC_VC_MAP_TC1_7__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_PCIE_VC1_RESOURCE_CNTL__LOAD_PORT_ARB_TABLE__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_PCIE_VC1_RESOURCE_CNTL__PORT_ARB_SELECT__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_PCIE_VC1_RESOURCE_CNTL__VC_ID__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_PCIE_VC1_RESOURCE_CNTL__VC_ENABLE__SHIFT 0x1f
+#define BIF_CFG_DEV0_EPF0_PCIE_VC1_RESOURCE_CNTL__TC_VC_MAP_TC0_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_PCIE_VC1_RESOURCE_CNTL__TC_VC_MAP_TC1_7_MASK 0x000000FEL
+#define BIF_CFG_DEV0_EPF0_PCIE_VC1_RESOURCE_CNTL__LOAD_PORT_ARB_TABLE_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_PCIE_VC1_RESOURCE_CNTL__PORT_ARB_SELECT_MASK 0x000E0000L
+#define BIF_CFG_DEV0_EPF0_PCIE_VC1_RESOURCE_CNTL__VC_ID_MASK 0x07000000L
+#define BIF_CFG_DEV0_EPF0_PCIE_VC1_RESOURCE_CNTL__VC_ENABLE_MASK 0x80000000L
+//BIF_CFG_DEV0_EPF0_PCIE_VC1_RESOURCE_STATUS
+#define BIF_CFG_DEV0_EPF0_PCIE_VC1_RESOURCE_STATUS__PORT_ARB_TABLE_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_VC1_RESOURCE_STATUS__VC_NEGOTIATION_PENDING__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_PCIE_VC1_RESOURCE_STATUS__PORT_ARB_TABLE_STATUS_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_PCIE_VC1_RESOURCE_STATUS__VC_NEGOTIATION_PENDING_MASK 0x0002L
+//BIF_CFG_DEV0_EPF0_PCIE_DEV_SERIAL_NUM_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_PCIE_DEV_SERIAL_NUM_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_DEV_SERIAL_NUM_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_PCIE_DEV_SERIAL_NUM_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_PCIE_DEV_SERIAL_NUM_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_PCIE_DEV_SERIAL_NUM_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_PCIE_DEV_SERIAL_NUM_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_PCIE_DEV_SERIAL_NUM_DW1
+#define BIF_CFG_DEV0_EPF0_PCIE_DEV_SERIAL_NUM_DW1__SERIAL_NUMBER_LO__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_DEV_SERIAL_NUM_DW1__SERIAL_NUMBER_LO_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_PCIE_DEV_SERIAL_NUM_DW2
+#define BIF_CFG_DEV0_EPF0_PCIE_DEV_SERIAL_NUM_DW2__SERIAL_NUMBER_HI__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_DEV_SERIAL_NUM_DW2__SERIAL_NUMBER_HI_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_PCIE_ADV_ERR_RPT_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_STATUS
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_STATUS__DLP_ERR_STATUS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_STATUS__SURPDN_ERR_STATUS__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_STATUS__PSN_ERR_STATUS__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_STATUS__FC_ERR_STATUS__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_STATUS__CPL_TIMEOUT_STATUS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_STATUS__CPL_ABORT_ERR_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_STATUS__UNEXP_CPL_STATUS__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_STATUS__RCV_OVFL_STATUS__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_STATUS__MAL_TLP_STATUS__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_STATUS__ECRC_ERR_STATUS__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_STATUS__UNSUPP_REQ_ERR_STATUS__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_STATUS__ACS_VIOLATION_STATUS__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_STATUS__UNCORR_INT_ERR_STATUS__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_STATUS__MC_BLOCKED_TLP_STATUS__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_STATUS__ATOMICOP_EGRESS_BLOCKED_STATUS__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_STATUS__TLP_PREFIX_BLOCKED_ERR_STATUS__SHIFT 0x19
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_STATUS__POISONED_TLP_EGRESS_BLOCKED_STATUS__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_STATUS__DLP_ERR_STATUS_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_STATUS__SURPDN_ERR_STATUS_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_STATUS__PSN_ERR_STATUS_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_STATUS__FC_ERR_STATUS_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_STATUS__CPL_TIMEOUT_STATUS_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_STATUS__CPL_ABORT_ERR_STATUS_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_STATUS__UNEXP_CPL_STATUS_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_STATUS__RCV_OVFL_STATUS_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_STATUS__MAL_TLP_STATUS_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_STATUS__ECRC_ERR_STATUS_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_STATUS__UNSUPP_REQ_ERR_STATUS_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_STATUS__ACS_VIOLATION_STATUS_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_STATUS__UNCORR_INT_ERR_STATUS_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_STATUS__MC_BLOCKED_TLP_STATUS_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_STATUS__ATOMICOP_EGRESS_BLOCKED_STATUS_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_STATUS__TLP_PREFIX_BLOCKED_ERR_STATUS_MASK 0x02000000L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_STATUS__POISONED_TLP_EGRESS_BLOCKED_STATUS_MASK 0x04000000L
+//BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_MASK
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_MASK__DLP_ERR_MASK__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_MASK__SURPDN_ERR_MASK__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_MASK__PSN_ERR_MASK__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_MASK__FC_ERR_MASK__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_MASK__CPL_TIMEOUT_MASK__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_MASK__CPL_ABORT_ERR_MASK__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_MASK__UNEXP_CPL_MASK__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_MASK__RCV_OVFL_MASK__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_MASK__MAL_TLP_MASK__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_MASK__ECRC_ERR_MASK__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_MASK__UNSUPP_REQ_ERR_MASK__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_MASK__ACS_VIOLATION_MASK__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_MASK__UNCORR_INT_ERR_MASK__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_MASK__MC_BLOCKED_TLP_MASK__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_MASK__ATOMICOP_EGRESS_BLOCKED_MASK__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_MASK__TLP_PREFIX_BLOCKED_ERR_MASK__SHIFT 0x19
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_MASK__POISONED_TLP_EGRESS_BLOCKED_MASK__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_MASK__DLP_ERR_MASK_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_MASK__SURPDN_ERR_MASK_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_MASK__PSN_ERR_MASK_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_MASK__FC_ERR_MASK_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_MASK__CPL_TIMEOUT_MASK_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_MASK__CPL_ABORT_ERR_MASK_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_MASK__UNEXP_CPL_MASK_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_MASK__RCV_OVFL_MASK_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_MASK__MAL_TLP_MASK_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_MASK__ECRC_ERR_MASK_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_MASK__UNSUPP_REQ_ERR_MASK_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_MASK__ACS_VIOLATION_MASK_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_MASK__UNCORR_INT_ERR_MASK_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_MASK__MC_BLOCKED_TLP_MASK_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_MASK__ATOMICOP_EGRESS_BLOCKED_MASK_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_MASK__TLP_PREFIX_BLOCKED_ERR_MASK_MASK 0x02000000L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_MASK__POISONED_TLP_EGRESS_BLOCKED_MASK_MASK 0x04000000L
+//BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_SEVERITY
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_SEVERITY__DLP_ERR_SEVERITY__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_SEVERITY__SURPDN_ERR_SEVERITY__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_SEVERITY__PSN_ERR_SEVERITY__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_SEVERITY__FC_ERR_SEVERITY__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_SEVERITY__CPL_TIMEOUT_SEVERITY__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_SEVERITY__CPL_ABORT_ERR_SEVERITY__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_SEVERITY__UNEXP_CPL_SEVERITY__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_SEVERITY__RCV_OVFL_SEVERITY__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_SEVERITY__MAL_TLP_SEVERITY__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_SEVERITY__ECRC_ERR_SEVERITY__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_SEVERITY__UNSUPP_REQ_ERR_SEVERITY__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_SEVERITY__ACS_VIOLATION_SEVERITY__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_SEVERITY__UNCORR_INT_ERR_SEVERITY__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_SEVERITY__MC_BLOCKED_TLP_SEVERITY__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_SEVERITY__ATOMICOP_EGRESS_BLOCKED_SEVERITY__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_SEVERITY__TLP_PREFIX_BLOCKED_ERR_SEVERITY__SHIFT 0x19
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_SEVERITY__POISONED_TLP_EGRESS_BLOCKED_SEVERITY__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_SEVERITY__DLP_ERR_SEVERITY_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_SEVERITY__SURPDN_ERR_SEVERITY_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_SEVERITY__PSN_ERR_SEVERITY_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_SEVERITY__FC_ERR_SEVERITY_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_SEVERITY__CPL_TIMEOUT_SEVERITY_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_SEVERITY__CPL_ABORT_ERR_SEVERITY_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_SEVERITY__UNEXP_CPL_SEVERITY_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_SEVERITY__RCV_OVFL_SEVERITY_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_SEVERITY__MAL_TLP_SEVERITY_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_SEVERITY__ECRC_ERR_SEVERITY_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_SEVERITY__UNSUPP_REQ_ERR_SEVERITY_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_SEVERITY__ACS_VIOLATION_SEVERITY_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_SEVERITY__UNCORR_INT_ERR_SEVERITY_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_SEVERITY__MC_BLOCKED_TLP_SEVERITY_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_SEVERITY__ATOMICOP_EGRESS_BLOCKED_SEVERITY_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_SEVERITY__TLP_PREFIX_BLOCKED_ERR_SEVERITY_MASK 0x02000000L
+#define BIF_CFG_DEV0_EPF0_PCIE_UNCORR_ERR_SEVERITY__POISONED_TLP_EGRESS_BLOCKED_SEVERITY_MASK 0x04000000L
+//BIF_CFG_DEV0_EPF0_PCIE_CORR_ERR_STATUS
+#define BIF_CFG_DEV0_EPF0_PCIE_CORR_ERR_STATUS__RCV_ERR_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_CORR_ERR_STATUS__BAD_TLP_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_PCIE_CORR_ERR_STATUS__BAD_DLLP_STATUS__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_PCIE_CORR_ERR_STATUS__REPLAY_NUM_ROLLOVER_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_PCIE_CORR_ERR_STATUS__REPLAY_TIMER_TIMEOUT_STATUS__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_PCIE_CORR_ERR_STATUS__ADVISORY_NONFATAL_ERR_STATUS__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_PCIE_CORR_ERR_STATUS__CORR_INT_ERR_STATUS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_PCIE_CORR_ERR_STATUS__HDR_LOG_OVFL_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_PCIE_CORR_ERR_STATUS__RCV_ERR_STATUS_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_PCIE_CORR_ERR_STATUS__BAD_TLP_STATUS_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_PCIE_CORR_ERR_STATUS__BAD_DLLP_STATUS_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_PCIE_CORR_ERR_STATUS__REPLAY_NUM_ROLLOVER_STATUS_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_PCIE_CORR_ERR_STATUS__REPLAY_TIMER_TIMEOUT_STATUS_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_PCIE_CORR_ERR_STATUS__ADVISORY_NONFATAL_ERR_STATUS_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_PCIE_CORR_ERR_STATUS__CORR_INT_ERR_STATUS_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_PCIE_CORR_ERR_STATUS__HDR_LOG_OVFL_STATUS_MASK 0x00008000L
+//BIF_CFG_DEV0_EPF0_PCIE_CORR_ERR_MASK
+#define BIF_CFG_DEV0_EPF0_PCIE_CORR_ERR_MASK__RCV_ERR_MASK__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_CORR_ERR_MASK__BAD_TLP_MASK__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_PCIE_CORR_ERR_MASK__BAD_DLLP_MASK__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_PCIE_CORR_ERR_MASK__REPLAY_NUM_ROLLOVER_MASK__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_PCIE_CORR_ERR_MASK__REPLAY_TIMER_TIMEOUT_MASK__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_PCIE_CORR_ERR_MASK__ADVISORY_NONFATAL_ERR_MASK__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_PCIE_CORR_ERR_MASK__CORR_INT_ERR_MASK__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_PCIE_CORR_ERR_MASK__HDR_LOG_OVFL_MASK__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_PCIE_CORR_ERR_MASK__RCV_ERR_MASK_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_PCIE_CORR_ERR_MASK__BAD_TLP_MASK_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_PCIE_CORR_ERR_MASK__BAD_DLLP_MASK_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_PCIE_CORR_ERR_MASK__REPLAY_NUM_ROLLOVER_MASK_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_PCIE_CORR_ERR_MASK__REPLAY_TIMER_TIMEOUT_MASK_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_PCIE_CORR_ERR_MASK__ADVISORY_NONFATAL_ERR_MASK_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_PCIE_CORR_ERR_MASK__CORR_INT_ERR_MASK_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_PCIE_CORR_ERR_MASK__HDR_LOG_OVFL_MASK_MASK 0x00008000L
+//BIF_CFG_DEV0_EPF0_PCIE_ADV_ERR_CAP_CNTL
+#define BIF_CFG_DEV0_EPF0_PCIE_ADV_ERR_CAP_CNTL__FIRST_ERR_PTR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_CAP__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_EN__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_CAP__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_CAP__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_PCIE_ADV_ERR_CAP_CNTL__TLP_PREFIX_LOG_PRESENT__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_PCIE_ADV_ERR_CAP_CNTL__COMPLETION_TIMEOUT_LOG_CAPABLE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_PCIE_ADV_ERR_CAP_CNTL__FIRST_ERR_PTR_MASK 0x0000001FL
+#define BIF_CFG_DEV0_EPF0_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_CAP_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_EN_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_CAP_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_EN_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_CAP_MASK 0x00000200L
+#define BIF_CFG_DEV0_EPF0_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_EN_MASK 0x00000400L
+#define BIF_CFG_DEV0_EPF0_PCIE_ADV_ERR_CAP_CNTL__TLP_PREFIX_LOG_PRESENT_MASK 0x00000800L
+#define BIF_CFG_DEV0_EPF0_PCIE_ADV_ERR_CAP_CNTL__COMPLETION_TIMEOUT_LOG_CAPABLE_MASK 0x00001000L
+//BIF_CFG_DEV0_EPF0_PCIE_HDR_LOG0
+#define BIF_CFG_DEV0_EPF0_PCIE_HDR_LOG0__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_HDR_LOG0__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_PCIE_HDR_LOG1
+#define BIF_CFG_DEV0_EPF0_PCIE_HDR_LOG1__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_HDR_LOG1__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_PCIE_HDR_LOG2
+#define BIF_CFG_DEV0_EPF0_PCIE_HDR_LOG2__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_HDR_LOG2__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_PCIE_HDR_LOG3
+#define BIF_CFG_DEV0_EPF0_PCIE_HDR_LOG3__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_HDR_LOG3__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_PCIE_TLP_PREFIX_LOG0
+#define BIF_CFG_DEV0_EPF0_PCIE_TLP_PREFIX_LOG0__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_TLP_PREFIX_LOG0__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_PCIE_TLP_PREFIX_LOG1
+#define BIF_CFG_DEV0_EPF0_PCIE_TLP_PREFIX_LOG1__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_TLP_PREFIX_LOG1__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_PCIE_TLP_PREFIX_LOG2
+#define BIF_CFG_DEV0_EPF0_PCIE_TLP_PREFIX_LOG2__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_TLP_PREFIX_LOG2__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_PCIE_TLP_PREFIX_LOG3
+#define BIF_CFG_DEV0_EPF0_PCIE_TLP_PREFIX_LOG3__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_TLP_PREFIX_LOG3__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_PCIE_BAR_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_PCIE_BAR1_CAP
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR1_CAP__BAR_SIZE_SUPPORTED__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR1_CAP__BAR_SIZE_SUPPORTED_MASK 0xFFFFFFF0L
+//BIF_CFG_DEV0_EPF0_PCIE_BAR1_CNTL
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR1_CNTL__BAR_INDEX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR1_CNTL__BAR_TOTAL_NUM__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR1_CNTL__BAR_SIZE__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR1_CNTL__BAR_SIZE_SUPPORTED_UPPER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR1_CNTL__BAR_INDEX_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR1_CNTL__BAR_TOTAL_NUM_MASK 0x000000E0L
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR1_CNTL__BAR_SIZE_MASK 0x00003F00L
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR1_CNTL__BAR_SIZE_SUPPORTED_UPPER_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_PCIE_BAR2_CAP
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR2_CAP__BAR_SIZE_SUPPORTED__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR2_CAP__BAR_SIZE_SUPPORTED_MASK 0xFFFFFFF0L
+//BIF_CFG_DEV0_EPF0_PCIE_BAR2_CNTL
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR2_CNTL__BAR_INDEX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR2_CNTL__BAR_TOTAL_NUM__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR2_CNTL__BAR_SIZE__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR2_CNTL__BAR_SIZE_SUPPORTED_UPPER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR2_CNTL__BAR_INDEX_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR2_CNTL__BAR_TOTAL_NUM_MASK 0x000000E0L
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR2_CNTL__BAR_SIZE_MASK 0x00003F00L
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR2_CNTL__BAR_SIZE_SUPPORTED_UPPER_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_PCIE_BAR3_CAP
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR3_CAP__BAR_SIZE_SUPPORTED__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR3_CAP__BAR_SIZE_SUPPORTED_MASK 0xFFFFFFF0L
+//BIF_CFG_DEV0_EPF0_PCIE_BAR3_CNTL
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR3_CNTL__BAR_INDEX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR3_CNTL__BAR_TOTAL_NUM__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR3_CNTL__BAR_SIZE__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR3_CNTL__BAR_SIZE_SUPPORTED_UPPER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR3_CNTL__BAR_INDEX_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR3_CNTL__BAR_TOTAL_NUM_MASK 0x000000E0L
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR3_CNTL__BAR_SIZE_MASK 0x00003F00L
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR3_CNTL__BAR_SIZE_SUPPORTED_UPPER_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_PCIE_BAR4_CAP
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR4_CAP__BAR_SIZE_SUPPORTED__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR4_CAP__BAR_SIZE_SUPPORTED_MASK 0xFFFFFFF0L
+//BIF_CFG_DEV0_EPF0_PCIE_BAR4_CNTL
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR4_CNTL__BAR_INDEX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR4_CNTL__BAR_TOTAL_NUM__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR4_CNTL__BAR_SIZE__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR4_CNTL__BAR_SIZE_SUPPORTED_UPPER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR4_CNTL__BAR_INDEX_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR4_CNTL__BAR_TOTAL_NUM_MASK 0x000000E0L
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR4_CNTL__BAR_SIZE_MASK 0x00003F00L
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR4_CNTL__BAR_SIZE_SUPPORTED_UPPER_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_PCIE_BAR5_CAP
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR5_CAP__BAR_SIZE_SUPPORTED__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR5_CAP__BAR_SIZE_SUPPORTED_MASK 0xFFFFFFF0L
+//BIF_CFG_DEV0_EPF0_PCIE_BAR5_CNTL
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR5_CNTL__BAR_INDEX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR5_CNTL__BAR_TOTAL_NUM__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR5_CNTL__BAR_SIZE__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR5_CNTL__BAR_SIZE_SUPPORTED_UPPER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR5_CNTL__BAR_INDEX_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR5_CNTL__BAR_TOTAL_NUM_MASK 0x000000E0L
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR5_CNTL__BAR_SIZE_MASK 0x00003F00L
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR5_CNTL__BAR_SIZE_SUPPORTED_UPPER_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_PCIE_BAR6_CAP
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR6_CAP__BAR_SIZE_SUPPORTED__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR6_CAP__BAR_SIZE_SUPPORTED_MASK 0xFFFFFFF0L
+//BIF_CFG_DEV0_EPF0_PCIE_BAR6_CNTL
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR6_CNTL__BAR_INDEX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR6_CNTL__BAR_TOTAL_NUM__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR6_CNTL__BAR_SIZE__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR6_CNTL__BAR_SIZE_SUPPORTED_UPPER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR6_CNTL__BAR_INDEX_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR6_CNTL__BAR_TOTAL_NUM_MASK 0x000000E0L
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR6_CNTL__BAR_SIZE_MASK 0x00003F00L
+#define BIF_CFG_DEV0_EPF0_PCIE_BAR6_CNTL__BAR_SIZE_SUPPORTED_UPPER_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_PCIE_PWR_BUDGET_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_PCIE_PWR_BUDGET_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_PWR_BUDGET_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_PCIE_PWR_BUDGET_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_PCIE_PWR_BUDGET_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_PCIE_PWR_BUDGET_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_PCIE_PWR_BUDGET_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_PCIE_PWR_BUDGET_DATA_SELECT
+#define BIF_CFG_DEV0_EPF0_PCIE_PWR_BUDGET_DATA_SELECT__DATA_SELECT__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_PWR_BUDGET_DATA_SELECT__DATA_SELECT_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_PCIE_PWR_BUDGET_DATA
+#define BIF_CFG_DEV0_EPF0_PCIE_PWR_BUDGET_DATA__BASE_POWER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_PWR_BUDGET_DATA__DATA_SCALE__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_PCIE_PWR_BUDGET_DATA__PM_SUB_STATE__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_PCIE_PWR_BUDGET_DATA__PM_STATE__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_PCIE_PWR_BUDGET_DATA__TYPE__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_PCIE_PWR_BUDGET_DATA__POWER_RAIL__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_PCIE_PWR_BUDGET_DATA__BASE_POWER_MASK 0x000000FFL
+#define BIF_CFG_DEV0_EPF0_PCIE_PWR_BUDGET_DATA__DATA_SCALE_MASK 0x00000300L
+#define BIF_CFG_DEV0_EPF0_PCIE_PWR_BUDGET_DATA__PM_SUB_STATE_MASK 0x00001C00L
+#define BIF_CFG_DEV0_EPF0_PCIE_PWR_BUDGET_DATA__PM_STATE_MASK 0x00006000L
+#define BIF_CFG_DEV0_EPF0_PCIE_PWR_BUDGET_DATA__TYPE_MASK 0x00038000L
+#define BIF_CFG_DEV0_EPF0_PCIE_PWR_BUDGET_DATA__POWER_RAIL_MASK 0x001C0000L
+//BIF_CFG_DEV0_EPF0_PCIE_PWR_BUDGET_CAP
+#define BIF_CFG_DEV0_EPF0_PCIE_PWR_BUDGET_CAP__SYSTEM_ALLOCATED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_PWR_BUDGET_CAP__SYSTEM_ALLOCATED_MASK 0x01L
+//BIF_CFG_DEV0_EPF0_PCIE_DPA_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_PCIE_DPA_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_DPA_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_PCIE_DPA_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_PCIE_DPA_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_PCIE_DPA_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_PCIE_DPA_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_PCIE_DPA_CAP
+#define BIF_CFG_DEV0_EPF0_PCIE_DPA_CAP__SUBSTATE_MAX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_DPA_CAP__TRANS_LAT_UNIT__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_PCIE_DPA_CAP__PWR_ALLOC_SCALE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_PCIE_DPA_CAP__TRANS_LAT_VAL_0__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_PCIE_DPA_CAP__TRANS_LAT_VAL_1__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_PCIE_DPA_CAP__SUBSTATE_MAX_MASK 0x0000001FL
+#define BIF_CFG_DEV0_EPF0_PCIE_DPA_CAP__TRANS_LAT_UNIT_MASK 0x00000300L
+#define BIF_CFG_DEV0_EPF0_PCIE_DPA_CAP__PWR_ALLOC_SCALE_MASK 0x00003000L
+#define BIF_CFG_DEV0_EPF0_PCIE_DPA_CAP__TRANS_LAT_VAL_0_MASK 0x00FF0000L
+#define BIF_CFG_DEV0_EPF0_PCIE_DPA_CAP__TRANS_LAT_VAL_1_MASK 0xFF000000L
+//BIF_CFG_DEV0_EPF0_PCIE_DPA_LATENCY_INDICATOR
+#define BIF_CFG_DEV0_EPF0_PCIE_DPA_LATENCY_INDICATOR__TRANS_LAT_INDICATOR_BITS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_DPA_LATENCY_INDICATOR__TRANS_LAT_INDICATOR_BITS_MASK 0x000000FFL
+//BIF_CFG_DEV0_EPF0_PCIE_DPA_STATUS
+#define BIF_CFG_DEV0_EPF0_PCIE_DPA_STATUS__SUBSTATE_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_DPA_STATUS__SUBSTATE_CNTL_ENABLED__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_PCIE_DPA_STATUS__SUBSTATE_STATUS_MASK 0x001FL
+#define BIF_CFG_DEV0_EPF0_PCIE_DPA_STATUS__SUBSTATE_CNTL_ENABLED_MASK 0x0100L
+//BIF_CFG_DEV0_EPF0_PCIE_DPA_CNTL
+#define BIF_CFG_DEV0_EPF0_PCIE_DPA_CNTL__SUBSTATE_CNTL__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_DPA_CNTL__SUBSTATE_CNTL_MASK 0x001FL
+//BIF_CFG_DEV0_EPF0_PCIE_DPA_SUBSTATE_PWR_ALLOC_0
+#define BIF_CFG_DEV0_EPF0_PCIE_DPA_SUBSTATE_PWR_ALLOC_0__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_DPA_SUBSTATE_PWR_ALLOC_0__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_PCIE_DPA_SUBSTATE_PWR_ALLOC_1
+#define BIF_CFG_DEV0_EPF0_PCIE_DPA_SUBSTATE_PWR_ALLOC_1__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_DPA_SUBSTATE_PWR_ALLOC_1__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_PCIE_DPA_SUBSTATE_PWR_ALLOC_2
+#define BIF_CFG_DEV0_EPF0_PCIE_DPA_SUBSTATE_PWR_ALLOC_2__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_DPA_SUBSTATE_PWR_ALLOC_2__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_PCIE_DPA_SUBSTATE_PWR_ALLOC_3
+#define BIF_CFG_DEV0_EPF0_PCIE_DPA_SUBSTATE_PWR_ALLOC_3__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_DPA_SUBSTATE_PWR_ALLOC_3__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_PCIE_DPA_SUBSTATE_PWR_ALLOC_4
+#define BIF_CFG_DEV0_EPF0_PCIE_DPA_SUBSTATE_PWR_ALLOC_4__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_DPA_SUBSTATE_PWR_ALLOC_4__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_PCIE_DPA_SUBSTATE_PWR_ALLOC_5
+#define BIF_CFG_DEV0_EPF0_PCIE_DPA_SUBSTATE_PWR_ALLOC_5__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_DPA_SUBSTATE_PWR_ALLOC_5__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_PCIE_DPA_SUBSTATE_PWR_ALLOC_6
+#define BIF_CFG_DEV0_EPF0_PCIE_DPA_SUBSTATE_PWR_ALLOC_6__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_DPA_SUBSTATE_PWR_ALLOC_6__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_PCIE_DPA_SUBSTATE_PWR_ALLOC_7
+#define BIF_CFG_DEV0_EPF0_PCIE_DPA_SUBSTATE_PWR_ALLOC_7__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_DPA_SUBSTATE_PWR_ALLOC_7__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_PCIE_SECONDARY_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_PCIE_SECONDARY_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_SECONDARY_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_PCIE_SECONDARY_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_PCIE_SECONDARY_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_PCIE_SECONDARY_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_PCIE_SECONDARY_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_PCIE_LINK_CNTL3
+#define BIF_CFG_DEV0_EPF0_PCIE_LINK_CNTL3__PERFORM_EQUALIZATION__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_LINK_CNTL3__LINK_EQUALIZATION_REQ_INT_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_PCIE_LINK_CNTL3__ENABLE_LOWER_SKP_OS_GEN__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_PCIE_LINK_CNTL3__PERFORM_EQUALIZATION_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_PCIE_LINK_CNTL3__LINK_EQUALIZATION_REQ_INT_EN_MASK 0x00000002L
+#define BIF_CFG_DEV0_EPF0_PCIE_LINK_CNTL3__ENABLE_LOWER_SKP_OS_GEN_MASK 0x0000FE00L
+//BIF_CFG_DEV0_EPF0_PCIE_LANE_ERROR_STATUS
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_ERROR_STATUS__LANE_ERROR_STATUS_BITS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_ERROR_STATUS__LANE_ERROR_STATUS_BITS_MASK 0x0000FFFFL
+//BIF_CFG_DEV0_EPF0_PCIE_LANE_0_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_0_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_0_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_0_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_0_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_0_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_0_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_0_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_0_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_EPF0_PCIE_LANE_1_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_1_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_1_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_1_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_1_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_1_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_1_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_1_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_1_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_EPF0_PCIE_LANE_2_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_2_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_2_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_2_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_2_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_2_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_2_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_2_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_2_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_EPF0_PCIE_LANE_3_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_3_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_3_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_3_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_3_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_3_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_3_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_3_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_3_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_EPF0_PCIE_LANE_4_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_4_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_4_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_4_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_4_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_4_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_4_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_4_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_4_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_EPF0_PCIE_LANE_5_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_5_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_5_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_5_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_5_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_5_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_5_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_5_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_5_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_EPF0_PCIE_LANE_6_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_6_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_6_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_6_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_6_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_6_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_6_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_6_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_6_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_EPF0_PCIE_LANE_7_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_7_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_7_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_7_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_7_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_7_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_7_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_7_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_7_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_EPF0_PCIE_LANE_8_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_8_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_8_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_8_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_8_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_8_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_8_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_8_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_8_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_EPF0_PCIE_LANE_9_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_9_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_9_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_9_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_9_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_9_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_9_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_9_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_9_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_EPF0_PCIE_LANE_10_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_10_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_10_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_10_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_10_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_10_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_10_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_10_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_10_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_EPF0_PCIE_LANE_11_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_11_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_11_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_11_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_11_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_11_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_11_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_11_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_11_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_EPF0_PCIE_LANE_12_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_12_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_12_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_12_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_12_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_12_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_12_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_12_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_12_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_EPF0_PCIE_LANE_13_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_13_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_13_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_13_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_13_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_13_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_13_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_13_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_13_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_EPF0_PCIE_LANE_14_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_14_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_14_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_14_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_14_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_14_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_14_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_14_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_14_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_EPF0_PCIE_LANE_15_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_15_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_15_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_15_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_15_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_15_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_15_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_15_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_EPF0_PCIE_LANE_15_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_EPF0_PCIE_ACS_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_PCIE_ACS_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_ACS_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_PCIE_ACS_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_PCIE_ACS_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_PCIE_ACS_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_PCIE_ACS_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_PCIE_ACS_CAP
+#define BIF_CFG_DEV0_EPF0_PCIE_ACS_CAP__SOURCE_VALIDATION__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_ACS_CAP__TRANSLATION_BLOCKING__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_PCIE_ACS_CAP__P2P_REQUEST_REDIRECT__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_PCIE_ACS_CAP__P2P_COMPLETION_REDIRECT__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_PCIE_ACS_CAP__UPSTREAM_FORWARDING__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_PCIE_ACS_CAP__P2P_EGRESS_CONTROL__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_PCIE_ACS_CAP__DIRECT_TRANSLATED_P2P__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_PCIE_ACS_CAP__ENHANCED_CAPABILITY__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_PCIE_ACS_CAP__EGRESS_CONTROL_VECTOR_SIZE__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_PCIE_ACS_CAP__SOURCE_VALIDATION_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_PCIE_ACS_CAP__TRANSLATION_BLOCKING_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_PCIE_ACS_CAP__P2P_REQUEST_REDIRECT_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_PCIE_ACS_CAP__P2P_COMPLETION_REDIRECT_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_PCIE_ACS_CAP__UPSTREAM_FORWARDING_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_PCIE_ACS_CAP__P2P_EGRESS_CONTROL_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_PCIE_ACS_CAP__DIRECT_TRANSLATED_P2P_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_PCIE_ACS_CAP__ENHANCED_CAPABILITY_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_PCIE_ACS_CAP__EGRESS_CONTROL_VECTOR_SIZE_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_PCIE_ACS_CNTL
+#define BIF_CFG_DEV0_EPF0_PCIE_ACS_CNTL__SOURCE_VALIDATION_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_ACS_CNTL__TRANSLATION_BLOCKING_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_PCIE_ACS_CNTL__P2P_REQUEST_REDIRECT_EN__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_PCIE_ACS_CNTL__P2P_COMPLETION_REDIRECT_EN__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_PCIE_ACS_CNTL__UPSTREAM_FORWARDING_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_PCIE_ACS_CNTL__P2P_EGRESS_CONTROL_EN__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_PCIE_ACS_CNTL__DIRECT_TRANSLATED_P2P_EN__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_PCIE_ACS_CNTL__IO_REQUEST_BLOCKING_EN__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_PCIE_ACS_CNTL__DSP_MEMORY_TARGET_ACCESS_CNTL__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_PCIE_ACS_CNTL__USP_MEMORY_TARGET_ACCESS_CNTL__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_PCIE_ACS_CNTL__UNCLAIMED_REQUEST_REDIRECT_CNTL__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_PCIE_ACS_CNTL__SOURCE_VALIDATION_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_PCIE_ACS_CNTL__TRANSLATION_BLOCKING_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_PCIE_ACS_CNTL__P2P_REQUEST_REDIRECT_EN_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_PCIE_ACS_CNTL__P2P_COMPLETION_REDIRECT_EN_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_PCIE_ACS_CNTL__UPSTREAM_FORWARDING_EN_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_PCIE_ACS_CNTL__P2P_EGRESS_CONTROL_EN_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_PCIE_ACS_CNTL__DIRECT_TRANSLATED_P2P_EN_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_PCIE_ACS_CNTL__IO_REQUEST_BLOCKING_EN_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_PCIE_ACS_CNTL__DSP_MEMORY_TARGET_ACCESS_CNTL_MASK 0x0300L
+#define BIF_CFG_DEV0_EPF0_PCIE_ACS_CNTL__USP_MEMORY_TARGET_ACCESS_CNTL_MASK 0x0C00L
+#define BIF_CFG_DEV0_EPF0_PCIE_ACS_CNTL__UNCLAIMED_REQUEST_REDIRECT_CNTL_MASK 0x1000L
+//BIF_CFG_DEV0_EPF0_PCIE_ATS_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_PCIE_ATS_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_ATS_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_PCIE_ATS_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_PCIE_ATS_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_PCIE_ATS_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_PCIE_ATS_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_PCIE_ATS_CAP
+#define BIF_CFG_DEV0_EPF0_PCIE_ATS_CAP__INVALIDATE_Q_DEPTH__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_ATS_CAP__PAGE_ALIGNED_REQUEST__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_PCIE_ATS_CAP__GLOBAL_INVALIDATE_SUPPORTED__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_PCIE_ATS_CAP__RELAXED_ORDERING_SUPPORTED__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_PCIE_ATS_CAP__INVALIDATE_Q_DEPTH_MASK 0x001FL
+#define BIF_CFG_DEV0_EPF0_PCIE_ATS_CAP__PAGE_ALIGNED_REQUEST_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_PCIE_ATS_CAP__GLOBAL_INVALIDATE_SUPPORTED_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_PCIE_ATS_CAP__RELAXED_ORDERING_SUPPORTED_MASK 0x0080L
+//BIF_CFG_DEV0_EPF0_PCIE_ATS_CNTL
+#define BIF_CFG_DEV0_EPF0_PCIE_ATS_CNTL__STU__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_ATS_CNTL__ATC_ENABLE__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_PCIE_ATS_CNTL__STU_MASK 0x001FL
+#define BIF_CFG_DEV0_EPF0_PCIE_ATS_CNTL__ATC_ENABLE_MASK 0x8000L
+//PCIE_PAGE_REQ_ENH_CAP_LIST
+#define PCIE_PAGE_REQ_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define PCIE_PAGE_REQ_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define PCIE_PAGE_REQ_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define PCIE_PAGE_REQ_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define PCIE_PAGE_REQ_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define PCIE_PAGE_REQ_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//PCIE_PAGE_REQ_CNTL
+#define PCIE_PAGE_REQ_CNTL__PRI_ENABLE__SHIFT 0x0
+#define PCIE_PAGE_REQ_CNTL__PRI_RESET__SHIFT 0x1
+#define PCIE_PAGE_REQ_CNTL__PRI_ENABLE_MASK 0x0001L
+#define PCIE_PAGE_REQ_CNTL__PRI_RESET_MASK 0x0002L
+//PCIE_PAGE_REQ_STATUS
+#define PCIE_PAGE_REQ_STATUS__RESPONSE_FAILURE__SHIFT 0x0
+#define PCIE_PAGE_REQ_STATUS__UNEXPECTED_PAGE_REQ_GRP_INDEX__SHIFT 0x1
+#define PCIE_PAGE_REQ_STATUS__STOPPED__SHIFT 0x8
+#define PCIE_PAGE_REQ_STATUS__PRG_RESPONSE_PASID_REQUIRED__SHIFT 0xf
+#define PCIE_PAGE_REQ_STATUS__RESPONSE_FAILURE_MASK 0x0001L
+#define PCIE_PAGE_REQ_STATUS__UNEXPECTED_PAGE_REQ_GRP_INDEX_MASK 0x0002L
+#define PCIE_PAGE_REQ_STATUS__STOPPED_MASK 0x0100L
+#define PCIE_PAGE_REQ_STATUS__PRG_RESPONSE_PASID_REQUIRED_MASK 0x8000L
+//PCIE_OUTSTAND_PAGE_REQ_CAPACITY
+#define PCIE_OUTSTAND_PAGE_REQ_CAPACITY__OUTSTAND_PAGE_REQ_CAPACITY__SHIFT 0x0
+#define PCIE_OUTSTAND_PAGE_REQ_CAPACITY__OUTSTAND_PAGE_REQ_CAPACITY_MASK 0xFFFFFFFFL
+//PCIE_OUTSTAND_PAGE_REQ_ALLOC
+#define PCIE_OUTSTAND_PAGE_REQ_ALLOC__OUTSTAND_PAGE_REQ_ALLOC__SHIFT 0x0
+#define PCIE_OUTSTAND_PAGE_REQ_ALLOC__OUTSTAND_PAGE_REQ_ALLOC_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_PCIE_PASID_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_PCIE_PASID_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_PASID_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_PCIE_PASID_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_PCIE_PASID_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_PCIE_PASID_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_PCIE_PASID_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_PCIE_PASID_CAP
+#define BIF_CFG_DEV0_EPF0_PCIE_PASID_CAP__PASID_EXE_PERMISSION_SUPPORTED__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_PCIE_PASID_CAP__PASID_PRIV_MODE_SUPPORTED__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_PCIE_PASID_CAP__MAX_PASID_WIDTH__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_PCIE_PASID_CAP__PASID_EXE_PERMISSION_SUPPORTED_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_PCIE_PASID_CAP__PASID_PRIV_MODE_SUPPORTED_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_PCIE_PASID_CAP__MAX_PASID_WIDTH_MASK 0x1F00L
+//BIF_CFG_DEV0_EPF0_PCIE_PASID_CNTL
+#define BIF_CFG_DEV0_EPF0_PCIE_PASID_CNTL__PASID_ENABLE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_PASID_CNTL__PASID_EXE_PERMISSION_ENABLE__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_PCIE_PASID_CNTL__PASID_PRIV_MODE_SUPPORTED_ENABLE__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_PCIE_PASID_CNTL__PASID_ENABLE_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_PCIE_PASID_CNTL__PASID_EXE_PERMISSION_ENABLE_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_PCIE_PASID_CNTL__PASID_PRIV_MODE_SUPPORTED_ENABLE_MASK 0x0004L
+//BIF_CFG_DEV0_EPF0_PCIE_MC_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_PCIE_MC_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_MC_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_PCIE_MC_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_PCIE_MC_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_PCIE_MC_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_PCIE_MC_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_PCIE_MC_CAP
+#define BIF_CFG_DEV0_EPF0_PCIE_MC_CAP__MC_MAX_GROUP__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_MC_CAP__MC_WIN_SIZE_REQ__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_PCIE_MC_CAP__MC_ECRC_REGEN_SUPP__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_PCIE_MC_CAP__MC_MAX_GROUP_MASK 0x003FL
+#define BIF_CFG_DEV0_EPF0_PCIE_MC_CAP__MC_WIN_SIZE_REQ_MASK 0x3F00L
+#define BIF_CFG_DEV0_EPF0_PCIE_MC_CAP__MC_ECRC_REGEN_SUPP_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_PCIE_MC_CNTL
+#define BIF_CFG_DEV0_EPF0_PCIE_MC_CNTL__MC_NUM_GROUP__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_MC_CNTL__MC_ENABLE__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_PCIE_MC_CNTL__MC_NUM_GROUP_MASK 0x003FL
+#define BIF_CFG_DEV0_EPF0_PCIE_MC_CNTL__MC_ENABLE_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_PCIE_MC_ADDR0
+#define BIF_CFG_DEV0_EPF0_PCIE_MC_ADDR0__MC_INDEX_POS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_MC_ADDR0__MC_BASE_ADDR_0__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_PCIE_MC_ADDR0__MC_INDEX_POS_MASK 0x0000003FL
+#define BIF_CFG_DEV0_EPF0_PCIE_MC_ADDR0__MC_BASE_ADDR_0_MASK 0xFFFFF000L
+//BIF_CFG_DEV0_EPF0_PCIE_MC_ADDR1
+#define BIF_CFG_DEV0_EPF0_PCIE_MC_ADDR1__MC_BASE_ADDR_1__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_MC_ADDR1__MC_BASE_ADDR_1_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_PCIE_MC_RCV0
+#define BIF_CFG_DEV0_EPF0_PCIE_MC_RCV0__MC_RECEIVE_0__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_MC_RCV0__MC_RECEIVE_0_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_PCIE_MC_RCV1
+#define BIF_CFG_DEV0_EPF0_PCIE_MC_RCV1__MC_RECEIVE_1__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_MC_RCV1__MC_RECEIVE_1_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_PCIE_MC_BLOCK_ALL0
+#define BIF_CFG_DEV0_EPF0_PCIE_MC_BLOCK_ALL0__MC_BLOCK_ALL_0__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_MC_BLOCK_ALL0__MC_BLOCK_ALL_0_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_PCIE_MC_BLOCK_ALL1
+#define BIF_CFG_DEV0_EPF0_PCIE_MC_BLOCK_ALL1__MC_BLOCK_ALL_1__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_MC_BLOCK_ALL1__MC_BLOCK_ALL_1_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_PCIE_MC_BLOCK_UNTRANSLATED_0
+#define BIF_CFG_DEV0_EPF0_PCIE_MC_BLOCK_UNTRANSLATED_0__MC_BLOCK_UNTRANSLATED_0__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_MC_BLOCK_UNTRANSLATED_0__MC_BLOCK_UNTRANSLATED_0_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_PCIE_MC_BLOCK_UNTRANSLATED_1
+#define BIF_CFG_DEV0_EPF0_PCIE_MC_BLOCK_UNTRANSLATED_1__MC_BLOCK_UNTRANSLATED_1__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_MC_BLOCK_UNTRANSLATED_1__MC_BLOCK_UNTRANSLATED_1_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_PCIE_LTR_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_PCIE_LTR_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_LTR_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_PCIE_LTR_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_PCIE_LTR_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_PCIE_LTR_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_PCIE_LTR_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_PCIE_LTR_CAP
+#define BIF_CFG_DEV0_EPF0_PCIE_LTR_CAP__LTR_MAX_S_LATENCY_VALUE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_LTR_CAP__LTR_MAX_S_LATENCY_SCALE__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_PCIE_LTR_CAP__LTR_MAX_NS_LATENCY_VALUE__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_PCIE_LTR_CAP__LTR_MAX_NS_LATENCY_SCALE__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_PCIE_LTR_CAP__LTR_MAX_S_LATENCY_VALUE_MASK 0x000003FFL
+#define BIF_CFG_DEV0_EPF0_PCIE_LTR_CAP__LTR_MAX_S_LATENCY_SCALE_MASK 0x00001C00L
+#define BIF_CFG_DEV0_EPF0_PCIE_LTR_CAP__LTR_MAX_NS_LATENCY_VALUE_MASK 0x03FF0000L
+#define BIF_CFG_DEV0_EPF0_PCIE_LTR_CAP__LTR_MAX_NS_LATENCY_SCALE_MASK 0x1C000000L
+//BIF_CFG_DEV0_EPF0_PCIE_ARI_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_PCIE_ARI_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_ARI_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_PCIE_ARI_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_PCIE_ARI_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_PCIE_ARI_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_PCIE_ARI_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_PCIE_ARI_CAP
+#define BIF_CFG_DEV0_EPF0_PCIE_ARI_CAP__ARI_MFVC_FUNC_GROUPS_CAP__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_ARI_CAP__ARI_ACS_FUNC_GROUPS_CAP__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_PCIE_ARI_CAP__ARI_NEXT_FUNC_NUM__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_PCIE_ARI_CAP__ARI_MFVC_FUNC_GROUPS_CAP_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_PCIE_ARI_CAP__ARI_ACS_FUNC_GROUPS_CAP_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_PCIE_ARI_CAP__ARI_NEXT_FUNC_NUM_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_PCIE_ARI_CNTL
+#define BIF_CFG_DEV0_EPF0_PCIE_ARI_CNTL__ARI_MFVC_FUNC_GROUPS_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_ARI_CNTL__ARI_ACS_FUNC_GROUPS_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_PCIE_ARI_CNTL__ARI_FUNCTION_GROUP__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_PCIE_ARI_CNTL__ARI_MFVC_FUNC_GROUPS_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_PCIE_ARI_CNTL__ARI_ACS_FUNC_GROUPS_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_PCIE_ARI_CNTL__ARI_FUNCTION_GROUP_MASK 0x0070L
+//PCIE_SRIOV_ENH_CAP_LIST
+#define PCIE_SRIOV_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define PCIE_SRIOV_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define PCIE_SRIOV_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define PCIE_SRIOV_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define PCIE_SRIOV_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define PCIE_SRIOV_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//PCIE_SRIOV_CAP
+#define PCIE_SRIOV_CAP__SRIOV_VF_MIGRATION_CAP__SHIFT 0x0
+#define PCIE_SRIOV_CAP__SRIOV_ARI_CAP_HIERARCHY_PRESERVED__SHIFT 0x1
+#define PCIE_SRIOV_CAP__SRIOV_VF_TEN_BIT_TAG_REQUESTER_SUPPORTED__SHIFT 0x2
+#define PCIE_SRIOV_CAP__SRIOV_VF_MIGRATION_INTR_MSG_NUM__SHIFT 0x15
+#define PCIE_SRIOV_CAP__SRIOV_VF_MIGRATION_CAP_MASK 0x00000001L
+#define PCIE_SRIOV_CAP__SRIOV_ARI_CAP_HIERARCHY_PRESERVED_MASK 0x00000002L
+#define PCIE_SRIOV_CAP__SRIOV_VF_TEN_BIT_TAG_REQUESTER_SUPPORTED_MASK 0x00000004L
+#define PCIE_SRIOV_CAP__SRIOV_VF_MIGRATION_INTR_MSG_NUM_MASK 0xFFE00000L
+//PCIE_SRIOV_CONTROL
+#define PCIE_SRIOV_CONTROL__SRIOV_VF_ENABLE__SHIFT 0x0
+#define PCIE_SRIOV_CONTROL__SRIOV_VF_MIGRATION_ENABLE__SHIFT 0x1
+#define PCIE_SRIOV_CONTROL__SRIOV_VF_MIGRATION_INTR_ENABLE__SHIFT 0x2
+#define PCIE_SRIOV_CONTROL__SRIOV_VF_MSE__SHIFT 0x3
+#define PCIE_SRIOV_CONTROL__SRIOV_ARI_CAP_HIERARCHY__SHIFT 0x4
+#define PCIE_SRIOV_CONTROL__SRIOV_VF_TEN_BIT_TAG_REQUESTER_ENABLE__SHIFT 0x5
+#define PCIE_SRIOV_CONTROL__SRIOV_VF_ENABLE_MASK 0x0001L
+#define PCIE_SRIOV_CONTROL__SRIOV_VF_MIGRATION_ENABLE_MASK 0x0002L
+#define PCIE_SRIOV_CONTROL__SRIOV_VF_MIGRATION_INTR_ENABLE_MASK 0x0004L
+#define PCIE_SRIOV_CONTROL__SRIOV_VF_MSE_MASK 0x0008L
+#define PCIE_SRIOV_CONTROL__SRIOV_ARI_CAP_HIERARCHY_MASK 0x0010L
+#define PCIE_SRIOV_CONTROL__SRIOV_VF_TEN_BIT_TAG_REQUESTER_ENABLE_MASK 0x0020L
+//PCIE_SRIOV_STATUS
+#define PCIE_SRIOV_STATUS__SRIOV_VF_MIGRATION_STATUS__SHIFT 0x0
+#define PCIE_SRIOV_STATUS__SRIOV_VF_MIGRATION_STATUS_MASK 0x0001L
+//PCIE_SRIOV_INITIAL_VFS
+#define PCIE_SRIOV_INITIAL_VFS__SRIOV_INITIAL_VFS__SHIFT 0x0
+#define PCIE_SRIOV_INITIAL_VFS__SRIOV_INITIAL_VFS_MASK 0xFFFFL
+//PCIE_SRIOV_TOTAL_VFS
+#define PCIE_SRIOV_TOTAL_VFS__SRIOV_TOTAL_VFS__SHIFT 0x0
+#define PCIE_SRIOV_TOTAL_VFS__SRIOV_TOTAL_VFS_MASK 0xFFFFL
+//PCIE_SRIOV_NUM_VFS
+#define PCIE_SRIOV_NUM_VFS__SRIOV_NUM_VFS__SHIFT 0x0
+#define PCIE_SRIOV_NUM_VFS__SRIOV_NUM_VFS_MASK 0xFFFFL
+//PCIE_SRIOV_FUNC_DEP_LINK
+#define PCIE_SRIOV_FUNC_DEP_LINK__SRIOV_FUNC_DEP_LINK__SHIFT 0x0
+#define PCIE_SRIOV_FUNC_DEP_LINK__SRIOV_FUNC_DEP_LINK_MASK 0xFFL
+//PCIE_SRIOV_FIRST_VF_OFFSET
+#define PCIE_SRIOV_FIRST_VF_OFFSET__SRIOV_FIRST_VF_OFFSET__SHIFT 0x0
+#define PCIE_SRIOV_FIRST_VF_OFFSET__SRIOV_FIRST_VF_OFFSET_MASK 0xFFFFL
+//PCIE_SRIOV_VF_STRIDE
+#define PCIE_SRIOV_VF_STRIDE__SRIOV_VF_STRIDE__SHIFT 0x0
+#define PCIE_SRIOV_VF_STRIDE__SRIOV_VF_STRIDE_MASK 0xFFFFL
+//PCIE_SRIOV_VF_DEVICE_ID
+#define PCIE_SRIOV_VF_DEVICE_ID__SRIOV_VF_DEVICE_ID__SHIFT 0x0
+#define PCIE_SRIOV_VF_DEVICE_ID__SRIOV_VF_DEVICE_ID_MASK 0xFFFFL
+//PCIE_SRIOV_SUPPORTED_PAGE_SIZE
+#define PCIE_SRIOV_SUPPORTED_PAGE_SIZE__SRIOV_SUPPORTED_PAGE_SIZE__SHIFT 0x0
+#define PCIE_SRIOV_SUPPORTED_PAGE_SIZE__SRIOV_SUPPORTED_PAGE_SIZE_MASK 0xFFFFFFFFL
+//PCIE_SRIOV_SYSTEM_PAGE_SIZE
+#define PCIE_SRIOV_SYSTEM_PAGE_SIZE__SRIOV_SYSTEM_PAGE_SIZE__SHIFT 0x0
+#define PCIE_SRIOV_SYSTEM_PAGE_SIZE__SRIOV_SYSTEM_PAGE_SIZE_MASK 0xFFFFFFFFL
+//PCIE_SRIOV_VF_BASE_ADDR_0
+#define PCIE_SRIOV_VF_BASE_ADDR_0__VF_BASE_ADDR__SHIFT 0x0
+#define PCIE_SRIOV_VF_BASE_ADDR_0__VF_BASE_ADDR_MASK 0xFFFFFFFFL
+//PCIE_SRIOV_VF_BASE_ADDR_1
+#define PCIE_SRIOV_VF_BASE_ADDR_1__VF_BASE_ADDR__SHIFT 0x0
+#define PCIE_SRIOV_VF_BASE_ADDR_1__VF_BASE_ADDR_MASK 0xFFFFFFFFL
+//PCIE_SRIOV_VF_BASE_ADDR_2
+#define PCIE_SRIOV_VF_BASE_ADDR_2__VF_BASE_ADDR__SHIFT 0x0
+#define PCIE_SRIOV_VF_BASE_ADDR_2__VF_BASE_ADDR_MASK 0xFFFFFFFFL
+//PCIE_SRIOV_VF_BASE_ADDR_3
+#define PCIE_SRIOV_VF_BASE_ADDR_3__VF_BASE_ADDR__SHIFT 0x0
+#define PCIE_SRIOV_VF_BASE_ADDR_3__VF_BASE_ADDR_MASK 0xFFFFFFFFL
+//PCIE_SRIOV_VF_BASE_ADDR_4
+#define PCIE_SRIOV_VF_BASE_ADDR_4__VF_BASE_ADDR__SHIFT 0x0
+#define PCIE_SRIOV_VF_BASE_ADDR_4__VF_BASE_ADDR_MASK 0xFFFFFFFFL
+//PCIE_SRIOV_VF_BASE_ADDR_5
+#define PCIE_SRIOV_VF_BASE_ADDR_5__VF_BASE_ADDR__SHIFT 0x0
+#define PCIE_SRIOV_VF_BASE_ADDR_5__VF_BASE_ADDR_MASK 0xFFFFFFFFL
+//PCIE_SRIOV_VF_MIGRATION_STATE_ARRAY_OFFSET
+#define PCIE_SRIOV_VF_MIGRATION_STATE_ARRAY_OFFSET__SRIOV_VF_MIGRATION_STATE_BIR__SHIFT 0x0
+#define PCIE_SRIOV_VF_MIGRATION_STATE_ARRAY_OFFSET__SRIOV_VF_MIGRATION_STATE_ARRAY_OFFSET__SHIFT 0x3
+#define PCIE_SRIOV_VF_MIGRATION_STATE_ARRAY_OFFSET__SRIOV_VF_MIGRATION_STATE_BIR_MASK 0x00000007L
+#define PCIE_SRIOV_VF_MIGRATION_STATE_ARRAY_OFFSET__SRIOV_VF_MIGRATION_STATE_ARRAY_OFFSET_MASK 0xFFFFFFF8L
+//BIF_CFG_DEV0_EPF0_PCIE_DLF_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_PCIE_DLF_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_DLF_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_PCIE_DLF_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_PCIE_DLF_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_PCIE_DLF_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_PCIE_DLF_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_DATA_LINK_FEATURE_CAP
+#define BIF_CFG_DEV0_EPF0_DATA_LINK_FEATURE_CAP__LOCAL_DLF_SUPPORTED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_DATA_LINK_FEATURE_CAP__DLF_EXCHANGE_ENABLE__SHIFT 0x1f
+#define BIF_CFG_DEV0_EPF0_DATA_LINK_FEATURE_CAP__LOCAL_DLF_SUPPORTED_MASK 0x007FFFFFL
+#define BIF_CFG_DEV0_EPF0_DATA_LINK_FEATURE_CAP__DLF_EXCHANGE_ENABLE_MASK 0x80000000L
+//BIF_CFG_DEV0_EPF0_DATA_LINK_FEATURE_STATUS
+#define BIF_CFG_DEV0_EPF0_DATA_LINK_FEATURE_STATUS__REMOTE_DLF_SUPPORTED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_DATA_LINK_FEATURE_STATUS__REMOTE_DLF_SUPPORTED_VALID__SHIFT 0x1f
+#define BIF_CFG_DEV0_EPF0_DATA_LINK_FEATURE_STATUS__REMOTE_DLF_SUPPORTED_MASK 0x007FFFFFL
+#define BIF_CFG_DEV0_EPF0_DATA_LINK_FEATURE_STATUS__REMOTE_DLF_SUPPORTED_VALID_MASK 0x80000000L
+//BIF_CFG_DEV0_EPF0_PCIE_PHY_16GT_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_PCIE_PHY_16GT_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_PHY_16GT_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_PCIE_PHY_16GT_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_PCIE_PHY_16GT_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_PCIE_PHY_16GT_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_PCIE_PHY_16GT_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_LINK_CAP_16GT
+#define BIF_CFG_DEV0_EPF0_LINK_CAP_16GT__RESERVED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LINK_CAP_16GT__RESERVED_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_LINK_CNTL_16GT
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL_16GT__RESERVED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL_16GT__RESERVED_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_LINK_STATUS_16GT
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS_16GT__EQUALIZATION_COMPLETE_16GT__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS_16GT__EQUALIZATION_PHASE1_SUCCESS_16GT__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS_16GT__EQUALIZATION_PHASE2_SUCCESS_16GT__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS_16GT__EQUALIZATION_PHASE3_SUCCESS_16GT__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS_16GT__LINK_EQUALIZATION_REQUEST_16GT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS_16GT__EQUALIZATION_COMPLETE_16GT_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS_16GT__EQUALIZATION_PHASE1_SUCCESS_16GT_MASK 0x00000002L
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS_16GT__EQUALIZATION_PHASE2_SUCCESS_16GT_MASK 0x00000004L
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS_16GT__EQUALIZATION_PHASE3_SUCCESS_16GT_MASK 0x00000008L
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS_16GT__LINK_EQUALIZATION_REQUEST_16GT_MASK 0x00000010L
+//BIF_CFG_DEV0_EPF0_LOCAL_PARITY_MISMATCH_STATUS_16GT
+#define BIF_CFG_DEV0_EPF0_LOCAL_PARITY_MISMATCH_STATUS_16GT__LOCAL_PARITY_MISMATCH_STATUS_BITS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LOCAL_PARITY_MISMATCH_STATUS_16GT__LOCAL_PARITY_MISMATCH_STATUS_BITS_MASK 0x0000FFFFL
+//BIF_CFG_DEV0_EPF0_RTM1_PARITY_MISMATCH_STATUS_16GT
+#define BIF_CFG_DEV0_EPF0_RTM1_PARITY_MISMATCH_STATUS_16GT__RTM1_PARITY_MISMATCH_STATUS_BITS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_RTM1_PARITY_MISMATCH_STATUS_16GT__RTM1_PARITY_MISMATCH_STATUS_BITS_MASK 0x0000FFFFL
+//BIF_CFG_DEV0_EPF0_RTM2_PARITY_MISMATCH_STATUS_16GT
+#define BIF_CFG_DEV0_EPF0_RTM2_PARITY_MISMATCH_STATUS_16GT__RTM2_PARITY_MISMATCH_STATUS_BITS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_RTM2_PARITY_MISMATCH_STATUS_16GT__RTM2_PARITY_MISMATCH_STATUS_BITS_MASK 0x0000FFFFL
+//BIF_CFG_DEV0_EPF0_LANE_0_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_EPF0_LANE_0_EQUALIZATION_CNTL_16GT__LANE_0_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_0_EQUALIZATION_CNTL_16GT__LANE_0_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_LANE_0_EQUALIZATION_CNTL_16GT__LANE_0_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_LANE_0_EQUALIZATION_CNTL_16GT__LANE_0_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_EPF0_LANE_1_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_EPF0_LANE_1_EQUALIZATION_CNTL_16GT__LANE_1_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_1_EQUALIZATION_CNTL_16GT__LANE_1_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_LANE_1_EQUALIZATION_CNTL_16GT__LANE_1_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_LANE_1_EQUALIZATION_CNTL_16GT__LANE_1_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_EPF0_LANE_2_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_EPF0_LANE_2_EQUALIZATION_CNTL_16GT__LANE_2_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_2_EQUALIZATION_CNTL_16GT__LANE_2_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_LANE_2_EQUALIZATION_CNTL_16GT__LANE_2_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_LANE_2_EQUALIZATION_CNTL_16GT__LANE_2_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_EPF0_LANE_3_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_EPF0_LANE_3_EQUALIZATION_CNTL_16GT__LANE_3_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_3_EQUALIZATION_CNTL_16GT__LANE_3_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_LANE_3_EQUALIZATION_CNTL_16GT__LANE_3_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_LANE_3_EQUALIZATION_CNTL_16GT__LANE_3_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_EPF0_LANE_4_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_EPF0_LANE_4_EQUALIZATION_CNTL_16GT__LANE_4_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_4_EQUALIZATION_CNTL_16GT__LANE_4_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_LANE_4_EQUALIZATION_CNTL_16GT__LANE_4_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_LANE_4_EQUALIZATION_CNTL_16GT__LANE_4_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_EPF0_LANE_5_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_EPF0_LANE_5_EQUALIZATION_CNTL_16GT__LANE_5_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_5_EQUALIZATION_CNTL_16GT__LANE_5_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_LANE_5_EQUALIZATION_CNTL_16GT__LANE_5_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_LANE_5_EQUALIZATION_CNTL_16GT__LANE_5_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_EPF0_LANE_6_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_EPF0_LANE_6_EQUALIZATION_CNTL_16GT__LANE_6_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_6_EQUALIZATION_CNTL_16GT__LANE_6_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_LANE_6_EQUALIZATION_CNTL_16GT__LANE_6_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_LANE_6_EQUALIZATION_CNTL_16GT__LANE_6_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_EPF0_LANE_7_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_EPF0_LANE_7_EQUALIZATION_CNTL_16GT__LANE_7_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_7_EQUALIZATION_CNTL_16GT__LANE_7_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_LANE_7_EQUALIZATION_CNTL_16GT__LANE_7_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_LANE_7_EQUALIZATION_CNTL_16GT__LANE_7_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_EPF0_LANE_8_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_EPF0_LANE_8_EQUALIZATION_CNTL_16GT__LANE_8_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_8_EQUALIZATION_CNTL_16GT__LANE_8_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_LANE_8_EQUALIZATION_CNTL_16GT__LANE_8_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_LANE_8_EQUALIZATION_CNTL_16GT__LANE_8_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_EPF0_LANE_9_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_EPF0_LANE_9_EQUALIZATION_CNTL_16GT__LANE_9_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_9_EQUALIZATION_CNTL_16GT__LANE_9_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_LANE_9_EQUALIZATION_CNTL_16GT__LANE_9_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_LANE_9_EQUALIZATION_CNTL_16GT__LANE_9_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_EPF0_LANE_10_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_EPF0_LANE_10_EQUALIZATION_CNTL_16GT__LANE_10_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_10_EQUALIZATION_CNTL_16GT__LANE_10_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_LANE_10_EQUALIZATION_CNTL_16GT__LANE_10_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_LANE_10_EQUALIZATION_CNTL_16GT__LANE_10_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_EPF0_LANE_11_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_EPF0_LANE_11_EQUALIZATION_CNTL_16GT__LANE_11_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_11_EQUALIZATION_CNTL_16GT__LANE_11_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_LANE_11_EQUALIZATION_CNTL_16GT__LANE_11_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_LANE_11_EQUALIZATION_CNTL_16GT__LANE_11_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_EPF0_LANE_12_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_EPF0_LANE_12_EQUALIZATION_CNTL_16GT__LANE_12_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_12_EQUALIZATION_CNTL_16GT__LANE_12_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_LANE_12_EQUALIZATION_CNTL_16GT__LANE_12_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_LANE_12_EQUALIZATION_CNTL_16GT__LANE_12_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_EPF0_LANE_13_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_EPF0_LANE_13_EQUALIZATION_CNTL_16GT__LANE_13_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_13_EQUALIZATION_CNTL_16GT__LANE_13_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_LANE_13_EQUALIZATION_CNTL_16GT__LANE_13_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_LANE_13_EQUALIZATION_CNTL_16GT__LANE_13_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_EPF0_LANE_14_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_EPF0_LANE_14_EQUALIZATION_CNTL_16GT__LANE_14_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_14_EQUALIZATION_CNTL_16GT__LANE_14_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_LANE_14_EQUALIZATION_CNTL_16GT__LANE_14_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_LANE_14_EQUALIZATION_CNTL_16GT__LANE_14_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_EPF0_LANE_15_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_EPF0_LANE_15_EQUALIZATION_CNTL_16GT__LANE_15_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_15_EQUALIZATION_CNTL_16GT__LANE_15_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_LANE_15_EQUALIZATION_CNTL_16GT__LANE_15_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_LANE_15_EQUALIZATION_CNTL_16GT__LANE_15_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_EPF0_PCIE_MARGINING_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_PCIE_MARGINING_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_PCIE_MARGINING_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_PCIE_MARGINING_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_PCIE_MARGINING_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_PCIE_MARGINING_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_PCIE_MARGINING_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_MARGINING_PORT_CAP
+#define BIF_CFG_DEV0_EPF0_MARGINING_PORT_CAP__MARGINING_USES_SOFTWARE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_MARGINING_PORT_CAP__MARGINING_USES_SOFTWARE_MASK 0x0001L
+//BIF_CFG_DEV0_EPF0_MARGINING_PORT_STATUS
+#define BIF_CFG_DEV0_EPF0_MARGINING_PORT_STATUS__MARGINING_READY__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_MARGINING_PORT_STATUS__MARGINING_SOFTWARE_READY__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_MARGINING_PORT_STATUS__MARGINING_READY_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_MARGINING_PORT_STATUS__MARGINING_SOFTWARE_READY_MASK 0x0002L
+//BIF_CFG_DEV0_EPF0_LANE_0_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_EPF0_LANE_0_MARGINING_LANE_CNTL__LANE_0_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_0_MARGINING_LANE_CNTL__LANE_0_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_LANE_0_MARGINING_LANE_CNTL__LANE_0_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_LANE_0_MARGINING_LANE_CNTL__LANE_0_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_LANE_0_MARGINING_LANE_CNTL__LANE_0_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_LANE_0_MARGINING_LANE_CNTL__LANE_0_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_LANE_0_MARGINING_LANE_CNTL__LANE_0_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_LANE_0_MARGINING_LANE_CNTL__LANE_0_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_LANE_0_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_EPF0_LANE_0_MARGINING_LANE_STATUS__LANE_0_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_0_MARGINING_LANE_STATUS__LANE_0_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_LANE_0_MARGINING_LANE_STATUS__LANE_0_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_LANE_0_MARGINING_LANE_STATUS__LANE_0_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_LANE_0_MARGINING_LANE_STATUS__LANE_0_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_LANE_0_MARGINING_LANE_STATUS__LANE_0_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_LANE_0_MARGINING_LANE_STATUS__LANE_0_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_LANE_0_MARGINING_LANE_STATUS__LANE_0_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_LANE_1_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_EPF0_LANE_1_MARGINING_LANE_CNTL__LANE_1_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_1_MARGINING_LANE_CNTL__LANE_1_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_LANE_1_MARGINING_LANE_CNTL__LANE_1_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_LANE_1_MARGINING_LANE_CNTL__LANE_1_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_LANE_1_MARGINING_LANE_CNTL__LANE_1_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_LANE_1_MARGINING_LANE_CNTL__LANE_1_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_LANE_1_MARGINING_LANE_CNTL__LANE_1_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_LANE_1_MARGINING_LANE_CNTL__LANE_1_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_LANE_1_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_EPF0_LANE_1_MARGINING_LANE_STATUS__LANE_1_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_1_MARGINING_LANE_STATUS__LANE_1_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_LANE_1_MARGINING_LANE_STATUS__LANE_1_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_LANE_1_MARGINING_LANE_STATUS__LANE_1_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_LANE_1_MARGINING_LANE_STATUS__LANE_1_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_LANE_1_MARGINING_LANE_STATUS__LANE_1_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_LANE_1_MARGINING_LANE_STATUS__LANE_1_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_LANE_1_MARGINING_LANE_STATUS__LANE_1_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_LANE_2_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_EPF0_LANE_2_MARGINING_LANE_CNTL__LANE_2_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_2_MARGINING_LANE_CNTL__LANE_2_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_LANE_2_MARGINING_LANE_CNTL__LANE_2_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_LANE_2_MARGINING_LANE_CNTL__LANE_2_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_LANE_2_MARGINING_LANE_CNTL__LANE_2_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_LANE_2_MARGINING_LANE_CNTL__LANE_2_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_LANE_2_MARGINING_LANE_CNTL__LANE_2_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_LANE_2_MARGINING_LANE_CNTL__LANE_2_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_LANE_2_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_EPF0_LANE_2_MARGINING_LANE_STATUS__LANE_2_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_2_MARGINING_LANE_STATUS__LANE_2_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_LANE_2_MARGINING_LANE_STATUS__LANE_2_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_LANE_2_MARGINING_LANE_STATUS__LANE_2_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_LANE_2_MARGINING_LANE_STATUS__LANE_2_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_LANE_2_MARGINING_LANE_STATUS__LANE_2_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_LANE_2_MARGINING_LANE_STATUS__LANE_2_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_LANE_2_MARGINING_LANE_STATUS__LANE_2_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_LANE_3_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_EPF0_LANE_3_MARGINING_LANE_CNTL__LANE_3_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_3_MARGINING_LANE_CNTL__LANE_3_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_LANE_3_MARGINING_LANE_CNTL__LANE_3_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_LANE_3_MARGINING_LANE_CNTL__LANE_3_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_LANE_3_MARGINING_LANE_CNTL__LANE_3_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_LANE_3_MARGINING_LANE_CNTL__LANE_3_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_LANE_3_MARGINING_LANE_CNTL__LANE_3_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_LANE_3_MARGINING_LANE_CNTL__LANE_3_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_LANE_3_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_EPF0_LANE_3_MARGINING_LANE_STATUS__LANE_3_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_3_MARGINING_LANE_STATUS__LANE_3_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_LANE_3_MARGINING_LANE_STATUS__LANE_3_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_LANE_3_MARGINING_LANE_STATUS__LANE_3_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_LANE_3_MARGINING_LANE_STATUS__LANE_3_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_LANE_3_MARGINING_LANE_STATUS__LANE_3_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_LANE_3_MARGINING_LANE_STATUS__LANE_3_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_LANE_3_MARGINING_LANE_STATUS__LANE_3_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_LANE_4_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_EPF0_LANE_4_MARGINING_LANE_CNTL__LANE_4_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_4_MARGINING_LANE_CNTL__LANE_4_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_LANE_4_MARGINING_LANE_CNTL__LANE_4_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_LANE_4_MARGINING_LANE_CNTL__LANE_4_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_LANE_4_MARGINING_LANE_CNTL__LANE_4_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_LANE_4_MARGINING_LANE_CNTL__LANE_4_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_LANE_4_MARGINING_LANE_CNTL__LANE_4_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_LANE_4_MARGINING_LANE_CNTL__LANE_4_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_LANE_4_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_EPF0_LANE_4_MARGINING_LANE_STATUS__LANE_4_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_4_MARGINING_LANE_STATUS__LANE_4_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_LANE_4_MARGINING_LANE_STATUS__LANE_4_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_LANE_4_MARGINING_LANE_STATUS__LANE_4_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_LANE_4_MARGINING_LANE_STATUS__LANE_4_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_LANE_4_MARGINING_LANE_STATUS__LANE_4_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_LANE_4_MARGINING_LANE_STATUS__LANE_4_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_LANE_4_MARGINING_LANE_STATUS__LANE_4_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_LANE_5_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_EPF0_LANE_5_MARGINING_LANE_CNTL__LANE_5_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_5_MARGINING_LANE_CNTL__LANE_5_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_LANE_5_MARGINING_LANE_CNTL__LANE_5_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_LANE_5_MARGINING_LANE_CNTL__LANE_5_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_LANE_5_MARGINING_LANE_CNTL__LANE_5_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_LANE_5_MARGINING_LANE_CNTL__LANE_5_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_LANE_5_MARGINING_LANE_CNTL__LANE_5_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_LANE_5_MARGINING_LANE_CNTL__LANE_5_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_LANE_5_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_EPF0_LANE_5_MARGINING_LANE_STATUS__LANE_5_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_5_MARGINING_LANE_STATUS__LANE_5_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_LANE_5_MARGINING_LANE_STATUS__LANE_5_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_LANE_5_MARGINING_LANE_STATUS__LANE_5_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_LANE_5_MARGINING_LANE_STATUS__LANE_5_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_LANE_5_MARGINING_LANE_STATUS__LANE_5_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_LANE_5_MARGINING_LANE_STATUS__LANE_5_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_LANE_5_MARGINING_LANE_STATUS__LANE_5_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_LANE_6_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_EPF0_LANE_6_MARGINING_LANE_CNTL__LANE_6_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_6_MARGINING_LANE_CNTL__LANE_6_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_LANE_6_MARGINING_LANE_CNTL__LANE_6_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_LANE_6_MARGINING_LANE_CNTL__LANE_6_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_LANE_6_MARGINING_LANE_CNTL__LANE_6_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_LANE_6_MARGINING_LANE_CNTL__LANE_6_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_LANE_6_MARGINING_LANE_CNTL__LANE_6_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_LANE_6_MARGINING_LANE_CNTL__LANE_6_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_LANE_6_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_EPF0_LANE_6_MARGINING_LANE_STATUS__LANE_6_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_6_MARGINING_LANE_STATUS__LANE_6_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_LANE_6_MARGINING_LANE_STATUS__LANE_6_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_LANE_6_MARGINING_LANE_STATUS__LANE_6_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_LANE_6_MARGINING_LANE_STATUS__LANE_6_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_LANE_6_MARGINING_LANE_STATUS__LANE_6_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_LANE_6_MARGINING_LANE_STATUS__LANE_6_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_LANE_6_MARGINING_LANE_STATUS__LANE_6_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_LANE_7_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_EPF0_LANE_7_MARGINING_LANE_CNTL__LANE_7_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_7_MARGINING_LANE_CNTL__LANE_7_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_LANE_7_MARGINING_LANE_CNTL__LANE_7_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_LANE_7_MARGINING_LANE_CNTL__LANE_7_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_LANE_7_MARGINING_LANE_CNTL__LANE_7_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_LANE_7_MARGINING_LANE_CNTL__LANE_7_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_LANE_7_MARGINING_LANE_CNTL__LANE_7_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_LANE_7_MARGINING_LANE_CNTL__LANE_7_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_LANE_7_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_EPF0_LANE_7_MARGINING_LANE_STATUS__LANE_7_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_7_MARGINING_LANE_STATUS__LANE_7_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_LANE_7_MARGINING_LANE_STATUS__LANE_7_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_LANE_7_MARGINING_LANE_STATUS__LANE_7_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_LANE_7_MARGINING_LANE_STATUS__LANE_7_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_LANE_7_MARGINING_LANE_STATUS__LANE_7_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_LANE_7_MARGINING_LANE_STATUS__LANE_7_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_LANE_7_MARGINING_LANE_STATUS__LANE_7_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_LANE_8_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_EPF0_LANE_8_MARGINING_LANE_CNTL__LANE_8_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_8_MARGINING_LANE_CNTL__LANE_8_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_LANE_8_MARGINING_LANE_CNTL__LANE_8_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_LANE_8_MARGINING_LANE_CNTL__LANE_8_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_LANE_8_MARGINING_LANE_CNTL__LANE_8_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_LANE_8_MARGINING_LANE_CNTL__LANE_8_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_LANE_8_MARGINING_LANE_CNTL__LANE_8_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_LANE_8_MARGINING_LANE_CNTL__LANE_8_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_LANE_8_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_EPF0_LANE_8_MARGINING_LANE_STATUS__LANE_8_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_8_MARGINING_LANE_STATUS__LANE_8_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_LANE_8_MARGINING_LANE_STATUS__LANE_8_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_LANE_8_MARGINING_LANE_STATUS__LANE_8_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_LANE_8_MARGINING_LANE_STATUS__LANE_8_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_LANE_8_MARGINING_LANE_STATUS__LANE_8_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_LANE_8_MARGINING_LANE_STATUS__LANE_8_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_LANE_8_MARGINING_LANE_STATUS__LANE_8_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_LANE_9_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_EPF0_LANE_9_MARGINING_LANE_CNTL__LANE_9_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_9_MARGINING_LANE_CNTL__LANE_9_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_LANE_9_MARGINING_LANE_CNTL__LANE_9_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_LANE_9_MARGINING_LANE_CNTL__LANE_9_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_LANE_9_MARGINING_LANE_CNTL__LANE_9_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_LANE_9_MARGINING_LANE_CNTL__LANE_9_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_LANE_9_MARGINING_LANE_CNTL__LANE_9_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_LANE_9_MARGINING_LANE_CNTL__LANE_9_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_LANE_9_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_EPF0_LANE_9_MARGINING_LANE_STATUS__LANE_9_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_9_MARGINING_LANE_STATUS__LANE_9_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_LANE_9_MARGINING_LANE_STATUS__LANE_9_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_LANE_9_MARGINING_LANE_STATUS__LANE_9_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_LANE_9_MARGINING_LANE_STATUS__LANE_9_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_LANE_9_MARGINING_LANE_STATUS__LANE_9_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_LANE_9_MARGINING_LANE_STATUS__LANE_9_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_LANE_9_MARGINING_LANE_STATUS__LANE_9_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_LANE_10_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_EPF0_LANE_10_MARGINING_LANE_CNTL__LANE_10_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_10_MARGINING_LANE_CNTL__LANE_10_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_LANE_10_MARGINING_LANE_CNTL__LANE_10_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_LANE_10_MARGINING_LANE_CNTL__LANE_10_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_LANE_10_MARGINING_LANE_CNTL__LANE_10_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_LANE_10_MARGINING_LANE_CNTL__LANE_10_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_LANE_10_MARGINING_LANE_CNTL__LANE_10_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_LANE_10_MARGINING_LANE_CNTL__LANE_10_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_LANE_10_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_EPF0_LANE_10_MARGINING_LANE_STATUS__LANE_10_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_10_MARGINING_LANE_STATUS__LANE_10_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_LANE_10_MARGINING_LANE_STATUS__LANE_10_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_LANE_10_MARGINING_LANE_STATUS__LANE_10_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_LANE_10_MARGINING_LANE_STATUS__LANE_10_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_LANE_10_MARGINING_LANE_STATUS__LANE_10_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_LANE_10_MARGINING_LANE_STATUS__LANE_10_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_LANE_10_MARGINING_LANE_STATUS__LANE_10_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_LANE_11_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_EPF0_LANE_11_MARGINING_LANE_CNTL__LANE_11_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_11_MARGINING_LANE_CNTL__LANE_11_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_LANE_11_MARGINING_LANE_CNTL__LANE_11_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_LANE_11_MARGINING_LANE_CNTL__LANE_11_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_LANE_11_MARGINING_LANE_CNTL__LANE_11_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_LANE_11_MARGINING_LANE_CNTL__LANE_11_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_LANE_11_MARGINING_LANE_CNTL__LANE_11_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_LANE_11_MARGINING_LANE_CNTL__LANE_11_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_LANE_11_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_EPF0_LANE_11_MARGINING_LANE_STATUS__LANE_11_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_11_MARGINING_LANE_STATUS__LANE_11_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_LANE_11_MARGINING_LANE_STATUS__LANE_11_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_LANE_11_MARGINING_LANE_STATUS__LANE_11_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_LANE_11_MARGINING_LANE_STATUS__LANE_11_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_LANE_11_MARGINING_LANE_STATUS__LANE_11_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_LANE_11_MARGINING_LANE_STATUS__LANE_11_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_LANE_11_MARGINING_LANE_STATUS__LANE_11_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_LANE_12_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_EPF0_LANE_12_MARGINING_LANE_CNTL__LANE_12_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_12_MARGINING_LANE_CNTL__LANE_12_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_LANE_12_MARGINING_LANE_CNTL__LANE_12_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_LANE_12_MARGINING_LANE_CNTL__LANE_12_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_LANE_12_MARGINING_LANE_CNTL__LANE_12_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_LANE_12_MARGINING_LANE_CNTL__LANE_12_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_LANE_12_MARGINING_LANE_CNTL__LANE_12_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_LANE_12_MARGINING_LANE_CNTL__LANE_12_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_LANE_12_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_EPF0_LANE_12_MARGINING_LANE_STATUS__LANE_12_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_12_MARGINING_LANE_STATUS__LANE_12_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_LANE_12_MARGINING_LANE_STATUS__LANE_12_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_LANE_12_MARGINING_LANE_STATUS__LANE_12_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_LANE_12_MARGINING_LANE_STATUS__LANE_12_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_LANE_12_MARGINING_LANE_STATUS__LANE_12_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_LANE_12_MARGINING_LANE_STATUS__LANE_12_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_LANE_12_MARGINING_LANE_STATUS__LANE_12_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_LANE_13_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_EPF0_LANE_13_MARGINING_LANE_CNTL__LANE_13_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_13_MARGINING_LANE_CNTL__LANE_13_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_LANE_13_MARGINING_LANE_CNTL__LANE_13_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_LANE_13_MARGINING_LANE_CNTL__LANE_13_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_LANE_13_MARGINING_LANE_CNTL__LANE_13_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_LANE_13_MARGINING_LANE_CNTL__LANE_13_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_LANE_13_MARGINING_LANE_CNTL__LANE_13_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_LANE_13_MARGINING_LANE_CNTL__LANE_13_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_LANE_13_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_EPF0_LANE_13_MARGINING_LANE_STATUS__LANE_13_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_13_MARGINING_LANE_STATUS__LANE_13_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_LANE_13_MARGINING_LANE_STATUS__LANE_13_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_LANE_13_MARGINING_LANE_STATUS__LANE_13_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_LANE_13_MARGINING_LANE_STATUS__LANE_13_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_LANE_13_MARGINING_LANE_STATUS__LANE_13_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_LANE_13_MARGINING_LANE_STATUS__LANE_13_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_LANE_13_MARGINING_LANE_STATUS__LANE_13_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_LANE_14_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_EPF0_LANE_14_MARGINING_LANE_CNTL__LANE_14_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_14_MARGINING_LANE_CNTL__LANE_14_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_LANE_14_MARGINING_LANE_CNTL__LANE_14_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_LANE_14_MARGINING_LANE_CNTL__LANE_14_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_LANE_14_MARGINING_LANE_CNTL__LANE_14_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_LANE_14_MARGINING_LANE_CNTL__LANE_14_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_LANE_14_MARGINING_LANE_CNTL__LANE_14_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_LANE_14_MARGINING_LANE_CNTL__LANE_14_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_LANE_14_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_EPF0_LANE_14_MARGINING_LANE_STATUS__LANE_14_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_14_MARGINING_LANE_STATUS__LANE_14_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_LANE_14_MARGINING_LANE_STATUS__LANE_14_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_LANE_14_MARGINING_LANE_STATUS__LANE_14_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_LANE_14_MARGINING_LANE_STATUS__LANE_14_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_LANE_14_MARGINING_LANE_STATUS__LANE_14_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_LANE_14_MARGINING_LANE_STATUS__LANE_14_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_LANE_14_MARGINING_LANE_STATUS__LANE_14_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_LANE_15_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_EPF0_LANE_15_MARGINING_LANE_CNTL__LANE_15_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_15_MARGINING_LANE_CNTL__LANE_15_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_LANE_15_MARGINING_LANE_CNTL__LANE_15_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_LANE_15_MARGINING_LANE_CNTL__LANE_15_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_LANE_15_MARGINING_LANE_CNTL__LANE_15_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_LANE_15_MARGINING_LANE_CNTL__LANE_15_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_LANE_15_MARGINING_LANE_CNTL__LANE_15_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_LANE_15_MARGINING_LANE_CNTL__LANE_15_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_LANE_15_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_EPF0_LANE_15_MARGINING_LANE_STATUS__LANE_15_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LANE_15_MARGINING_LANE_STATUS__LANE_15_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_LANE_15_MARGINING_LANE_STATUS__LANE_15_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_LANE_15_MARGINING_LANE_STATUS__LANE_15_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_LANE_15_MARGINING_LANE_STATUS__LANE_15_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_LANE_15_MARGINING_LANE_STATUS__LANE_15_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_LANE_15_MARGINING_LANE_STATUS__LANE_15_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_LANE_15_MARGINING_LANE_STATUS__LANE_15_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_LINK_CAP_32GT
+#define BIF_CFG_DEV0_EPF0_LINK_CAP_32GT__EQ_BYPASS_TO_HIGHEST_RATE_SUPPORTED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LINK_CAP_32GT__NO_EQ_NEEDED_SUPPORTED__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_LINK_CAP_32GT__MODIFIED_TS_USAGE_MODE0_SUPPORTED__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_LINK_CAP_32GT__MODIFIED_TS_USAGE_MODE1_SUPPORTED__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_LINK_CAP_32GT__MODIFIED_TS_USAGE_MODE2_SUPPORTED__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_LINK_CAP_32GT__MODIFIED_TS_RESERVED_USAGE_MODES__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_LINK_CAP_32GT__EQ_BYPASS_TO_HIGHEST_RATE_SUPPORTED_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_LINK_CAP_32GT__NO_EQ_NEEDED_SUPPORTED_MASK 0x00000002L
+#define BIF_CFG_DEV0_EPF0_LINK_CAP_32GT__MODIFIED_TS_USAGE_MODE0_SUPPORTED_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_LINK_CAP_32GT__MODIFIED_TS_USAGE_MODE1_SUPPORTED_MASK 0x00000200L
+#define BIF_CFG_DEV0_EPF0_LINK_CAP_32GT__MODIFIED_TS_USAGE_MODE2_SUPPORTED_MASK 0x00000400L
+#define BIF_CFG_DEV0_EPF0_LINK_CAP_32GT__MODIFIED_TS_RESERVED_USAGE_MODES_MASK 0x0000F800L
+//BIF_CFG_DEV0_EPF0_LINK_CNTL_32GT
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL_32GT__EQ_BYPASS_TO_HIGHEST_RATE_DIS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL_32GT__NO_EQ_NEEDED_DIS__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL_32GT__MODIFIED_TS_USAGE_MODE_SEL__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL_32GT__EQ_BYPASS_TO_HIGHEST_RATE_DIS_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL_32GT__NO_EQ_NEEDED_DIS_MASK 0x00000002L
+#define BIF_CFG_DEV0_EPF0_LINK_CNTL_32GT__MODIFIED_TS_USAGE_MODE_SEL_MASK 0x00000700L
+//BIF_CFG_DEV0_EPF0_LINK_STATUS_32GT
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS_32GT__EQUALIZATION_COMPLETE_32GT__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS_32GT__EQUALIZATION_PHASE1_SUCCESS_32GT__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS_32GT__EQUALIZATION_PHASE2_SUCCESS_32GT__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS_32GT__EQUALIZATION_PHASE3_SUCCESS_32GT__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS_32GT__LINK_EQUALIZATION_REQUEST_32GT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS_32GT__MODIFIED_TS_RECEIVED__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS_32GT__RECEIVED_ENHANCED_LINK_BEHAVIOR_CNTL__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS_32GT__TRANSMITTER_PRECODING_ON__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS_32GT__TRANSMITTER_PRECODE_REQUEST__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS_32GT__NO_EQ_NEEDED_RECEIVED__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS_32GT__EQUALIZATION_COMPLETE_32GT_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS_32GT__EQUALIZATION_PHASE1_SUCCESS_32GT_MASK 0x00000002L
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS_32GT__EQUALIZATION_PHASE2_SUCCESS_32GT_MASK 0x00000004L
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS_32GT__EQUALIZATION_PHASE3_SUCCESS_32GT_MASK 0x00000008L
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS_32GT__LINK_EQUALIZATION_REQUEST_32GT_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS_32GT__MODIFIED_TS_RECEIVED_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS_32GT__RECEIVED_ENHANCED_LINK_BEHAVIOR_CNTL_MASK 0x000000C0L
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS_32GT__TRANSMITTER_PRECODING_ON_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS_32GT__TRANSMITTER_PRECODE_REQUEST_MASK 0x00000200L
+#define BIF_CFG_DEV0_EPF0_LINK_STATUS_32GT__NO_EQ_NEEDED_RECEIVED_MASK 0x00000400L
+//PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST_GPUIOV
+#define PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST_GPUIOV__CAP_ID__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST_GPUIOV__CAP_VER__SHIFT 0x10
+#define PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST_GPUIOV__NEXT_PTR__SHIFT 0x14
+#define PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST_GPUIOV__CAP_ID_MASK 0x0000FFFFL
+#define PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST_GPUIOV__CAP_VER_MASK 0x000F0000L
+#define PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST_GPUIOV__NEXT_PTR_MASK 0xFFF00000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV__VSEC_ID__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV__VSEC_REV__SHIFT 0x10
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV__VSEC_LENGTH__SHIFT 0x14
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV__VSEC_ID_MASK 0x0000FFFFL
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV__VSEC_REV_MASK 0x000F0000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV__VSEC_LENGTH_MASK 0xFFF00000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_SRIOV_SHADOW
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_INTR_ENABLE
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_INTR_ENABLE__HVVM_MAILBOX_TRN_ACK_INTR_EN__SHIFT 0x18
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_INTR_ENABLE__HVVM_MAILBOX_RCV_VALID_INTR_EN__SHIFT 0x19
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_INTR_ENABLE__HVVM_MAILBOX_TRN_ACK_INTR_EN_MASK 0x01000000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_INTR_ENABLE__HVVM_MAILBOX_RCV_VALID_INTR_EN_MASK 0x02000000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_INTR_STATUS
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_INTR_STATUS__HVVM_MAILBOX_TRN_ACK_INTR_STATUS__SHIFT 0x18
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_INTR_STATUS__HVVM_MAILBOX_RCV_VALID_INTR_STATUS__SHIFT 0x19
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_INTR_STATUS__HVVM_MAILBOX_TRN_ACK_INTR_STATUS_MASK 0x01000000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_INTR_STATUS__HVVM_MAILBOX_RCV_VALID_INTR_STATUS_MASK 0x02000000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_RESET_CONTROL
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_RESET_CONTROL__SOFT_PF_FLR__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_RESET_CONTROL__SOFT_PF_FLR_MASK 0x0001L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW0__VF_INDEX__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW0__TRN_MSG_DATA__SHIFT 0x8
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW0__TRN_MSG_VALID__SHIFT 0xf
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW0__RCV_MSG_DATA__SHIFT 0x10
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW0__RCV_MSG_ACK__SHIFT 0x18
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW0__VF_INDEX_MASK 0x000000FFL
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW0__TRN_MSG_DATA_MASK 0x00000F00L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW0__TRN_MSG_VALID_MASK 0x00008000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW0__RCV_MSG_DATA_MASK 0x000F0000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW0__RCV_MSG_ACK_MASK 0x01000000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF0_TRN_ACK__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF0_RCV_VALID__SHIFT 0x1
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF1_TRN_ACK__SHIFT 0x2
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF1_RCV_VALID__SHIFT 0x3
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF2_TRN_ACK__SHIFT 0x4
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF2_RCV_VALID__SHIFT 0x5
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF3_TRN_ACK__SHIFT 0x6
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF3_RCV_VALID__SHIFT 0x7
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF4_TRN_ACK__SHIFT 0x8
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF4_RCV_VALID__SHIFT 0x9
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF5_TRN_ACK__SHIFT 0xa
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF5_RCV_VALID__SHIFT 0xb
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF6_TRN_ACK__SHIFT 0xc
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF6_RCV_VALID__SHIFT 0xd
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF7_TRN_ACK__SHIFT 0xe
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF7_RCV_VALID__SHIFT 0xf
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF8_TRN_ACK__SHIFT 0x10
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF8_RCV_VALID__SHIFT 0x11
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF9_TRN_ACK__SHIFT 0x12
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF9_RCV_VALID__SHIFT 0x13
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF10_TRN_ACK__SHIFT 0x14
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF10_RCV_VALID__SHIFT 0x15
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF11_TRN_ACK__SHIFT 0x16
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF11_RCV_VALID__SHIFT 0x17
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF12_TRN_ACK__SHIFT 0x18
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF12_RCV_VALID__SHIFT 0x19
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF13_TRN_ACK__SHIFT 0x1a
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF13_RCV_VALID__SHIFT 0x1b
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF14_TRN_ACK__SHIFT 0x1c
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF14_RCV_VALID__SHIFT 0x1d
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF15_TRN_ACK__SHIFT 0x1e
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF15_RCV_VALID__SHIFT 0x1f
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF0_TRN_ACK_MASK 0x00000001L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF0_RCV_VALID_MASK 0x00000002L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF1_TRN_ACK_MASK 0x00000004L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF1_RCV_VALID_MASK 0x00000008L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF2_TRN_ACK_MASK 0x00000010L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF2_RCV_VALID_MASK 0x00000020L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF3_TRN_ACK_MASK 0x00000040L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF3_RCV_VALID_MASK 0x00000080L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF4_TRN_ACK_MASK 0x00000100L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF4_RCV_VALID_MASK 0x00000200L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF5_TRN_ACK_MASK 0x00000400L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF5_RCV_VALID_MASK 0x00000800L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF6_TRN_ACK_MASK 0x00001000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF6_RCV_VALID_MASK 0x00002000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF7_TRN_ACK_MASK 0x00004000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF7_RCV_VALID_MASK 0x00008000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF8_TRN_ACK_MASK 0x00010000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF8_RCV_VALID_MASK 0x00020000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF9_TRN_ACK_MASK 0x00040000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF9_RCV_VALID_MASK 0x00080000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF10_TRN_ACK_MASK 0x00100000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF10_RCV_VALID_MASK 0x00200000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF11_TRN_ACK_MASK 0x00400000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF11_RCV_VALID_MASK 0x00800000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF12_TRN_ACK_MASK 0x01000000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF12_RCV_VALID_MASK 0x02000000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF13_TRN_ACK_MASK 0x04000000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF13_RCV_VALID_MASK 0x08000000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF14_TRN_ACK_MASK 0x10000000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF14_RCV_VALID_MASK 0x20000000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF15_TRN_ACK_MASK 0x40000000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF15_RCV_VALID_MASK 0x80000000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF16_TRN_ACK__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF16_RCV_VALID__SHIFT 0x1
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF17_TRN_ACK__SHIFT 0x2
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF17_RCV_VALID__SHIFT 0x3
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF18_TRN_ACK__SHIFT 0x4
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF18_RCV_VALID__SHIFT 0x5
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF19_TRN_ACK__SHIFT 0x6
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF19_RCV_VALID__SHIFT 0x7
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF20_TRN_ACK__SHIFT 0x8
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF20_RCV_VALID__SHIFT 0x9
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF21_TRN_ACK__SHIFT 0xa
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF21_RCV_VALID__SHIFT 0xb
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF22_TRN_ACK__SHIFT 0xc
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF22_RCV_VALID__SHIFT 0xd
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF23_TRN_ACK__SHIFT 0xe
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF23_RCV_VALID__SHIFT 0xf
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF24_TRN_ACK__SHIFT 0x10
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF24_RCV_VALID__SHIFT 0x11
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF25_TRN_ACK__SHIFT 0x12
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF25_RCV_VALID__SHIFT 0x13
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF26_TRN_ACK__SHIFT 0x14
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF26_RCV_VALID__SHIFT 0x15
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF27_TRN_ACK__SHIFT 0x16
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF27_RCV_VALID__SHIFT 0x17
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF28_TRN_ACK__SHIFT 0x18
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF28_RCV_VALID__SHIFT 0x19
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF29_TRN_ACK__SHIFT 0x1a
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF29_RCV_VALID__SHIFT 0x1b
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF30_TRN_ACK__SHIFT 0x1c
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF30_RCV_VALID__SHIFT 0x1d
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__PF_TRN_ACK__SHIFT 0x1e
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__PF_RCV_VALID__SHIFT 0x1f
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF16_TRN_ACK_MASK 0x00000001L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF16_RCV_VALID_MASK 0x00000002L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF17_TRN_ACK_MASK 0x00000004L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF17_RCV_VALID_MASK 0x00000008L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF18_TRN_ACK_MASK 0x00000010L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF18_RCV_VALID_MASK 0x00000020L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF19_TRN_ACK_MASK 0x00000040L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF19_RCV_VALID_MASK 0x00000080L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF20_TRN_ACK_MASK 0x00000100L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF20_RCV_VALID_MASK 0x00000200L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF21_TRN_ACK_MASK 0x00000400L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF21_RCV_VALID_MASK 0x00000800L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF22_TRN_ACK_MASK 0x00001000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF22_RCV_VALID_MASK 0x00002000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF23_TRN_ACK_MASK 0x00004000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF23_RCV_VALID_MASK 0x00008000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF24_TRN_ACK_MASK 0x00010000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF24_RCV_VALID_MASK 0x00020000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF25_TRN_ACK_MASK 0x00040000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF25_RCV_VALID_MASK 0x00080000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF26_TRN_ACK_MASK 0x00100000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF26_RCV_VALID_MASK 0x00200000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF27_TRN_ACK_MASK 0x00400000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF27_RCV_VALID_MASK 0x00800000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF28_TRN_ACK_MASK 0x01000000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF28_RCV_VALID_MASK 0x02000000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF29_TRN_ACK_MASK 0x04000000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF29_RCV_VALID_MASK 0x08000000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF30_TRN_ACK_MASK 0x10000000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF30_RCV_VALID_MASK 0x20000000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__PF_TRN_ACK_MASK 0x40000000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__PF_RCV_VALID_MASK 0x80000000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_CONTEXT
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_CONTEXT__CONTEXT_SIZE__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_CONTEXT__LOC__SHIFT 0x7
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_CONTEXT__CONTEXT_OFFSET__SHIFT 0xa
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_CONTEXT__CONTEXT_SIZE_MASK 0x0000007FL
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_CONTEXT__LOC_MASK 0x00000080L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_CONTEXT__CONTEXT_OFFSET_MASK 0xFFFFFC00L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_TOTAL_FB
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_TOTAL_FB__TOTAL_FB_AVAILABLE__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_TOTAL_FB__TOTAL_FB_CONSUMED__SHIFT 0x10
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_TOTAL_FB__TOTAL_FB_AVAILABLE_MASK 0x0000FFFFL
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_TOTAL_FB__TOTAL_FB_CONSUMED_MASK 0xFFFF0000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_REGION
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_REGION__LFB_REGION__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_REGION__MAX_REGION__SHIFT 0x4
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_REGION__LFB_REGION_MASK 0x0000000FL
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_REGION__MAX_REGION_MASK 0x000000F0L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_P2P_OVER_XGMI_ENABLE
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_P2P_OVER_XGMI_ENABLE__P2P_OVER_XGMI_ENABLE_VF__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_P2P_OVER_XGMI_ENABLE__P2P_OVER_XGMI_ENABLE_PF__SHIFT 0x1f
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_P2P_OVER_XGMI_ENABLE__P2P_OVER_XGMI_ENABLE_VF_MASK 0x7FFFFFFFL
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_P2P_OVER_XGMI_ENABLE__P2P_OVER_XGMI_ENABLE_PF_MASK 0x80000000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF0_FB
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF0_FB__VF0_FB_SIZE__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF0_FB__VF0_FB_OFFSET__SHIFT 0x10
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF0_FB__VF0_FB_SIZE_MASK 0x0000FFFFL
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF0_FB__VF0_FB_OFFSET_MASK 0xFFFF0000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF1_FB
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF1_FB__VF1_FB_SIZE__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF1_FB__VF1_FB_OFFSET__SHIFT 0x10
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF1_FB__VF1_FB_SIZE_MASK 0x0000FFFFL
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF1_FB__VF1_FB_OFFSET_MASK 0xFFFF0000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF2_FB
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF2_FB__VF2_FB_SIZE__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF2_FB__VF2_FB_OFFSET__SHIFT 0x10
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF2_FB__VF2_FB_SIZE_MASK 0x0000FFFFL
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF2_FB__VF2_FB_OFFSET_MASK 0xFFFF0000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF3_FB
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF3_FB__VF3_FB_SIZE__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF3_FB__VF3_FB_OFFSET__SHIFT 0x10
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF3_FB__VF3_FB_SIZE_MASK 0x0000FFFFL
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF3_FB__VF3_FB_OFFSET_MASK 0xFFFF0000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF4_FB
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF4_FB__VF4_FB_SIZE__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF4_FB__VF4_FB_OFFSET__SHIFT 0x10
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF4_FB__VF4_FB_SIZE_MASK 0x0000FFFFL
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF4_FB__VF4_FB_OFFSET_MASK 0xFFFF0000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF5_FB
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF5_FB__VF5_FB_SIZE__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF5_FB__VF5_FB_OFFSET__SHIFT 0x10
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF5_FB__VF5_FB_SIZE_MASK 0x0000FFFFL
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF5_FB__VF5_FB_OFFSET_MASK 0xFFFF0000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF6_FB
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF6_FB__VF6_FB_SIZE__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF6_FB__VF6_FB_OFFSET__SHIFT 0x10
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF6_FB__VF6_FB_SIZE_MASK 0x0000FFFFL
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF6_FB__VF6_FB_OFFSET_MASK 0xFFFF0000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF7_FB
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF7_FB__VF7_FB_SIZE__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF7_FB__VF7_FB_OFFSET__SHIFT 0x10
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF7_FB__VF7_FB_SIZE_MASK 0x0000FFFFL
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF7_FB__VF7_FB_OFFSET_MASK 0xFFFF0000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF8_FB
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF8_FB__VF8_FB_SIZE__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF8_FB__VF8_FB_OFFSET__SHIFT 0x10
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF8_FB__VF8_FB_SIZE_MASK 0x0000FFFFL
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF8_FB__VF8_FB_OFFSET_MASK 0xFFFF0000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF9_FB
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF9_FB__VF9_FB_SIZE__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF9_FB__VF9_FB_OFFSET__SHIFT 0x10
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF9_FB__VF9_FB_SIZE_MASK 0x0000FFFFL
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF9_FB__VF9_FB_OFFSET_MASK 0xFFFF0000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF10_FB
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF10_FB__VF10_FB_SIZE__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF10_FB__VF10_FB_OFFSET__SHIFT 0x10
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF10_FB__VF10_FB_SIZE_MASK 0x0000FFFFL
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF10_FB__VF10_FB_OFFSET_MASK 0xFFFF0000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF11_FB
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF11_FB__VF11_FB_SIZE__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF11_FB__VF11_FB_OFFSET__SHIFT 0x10
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF11_FB__VF11_FB_SIZE_MASK 0x0000FFFFL
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF11_FB__VF11_FB_OFFSET_MASK 0xFFFF0000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF12_FB
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF12_FB__VF12_FB_SIZE__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF12_FB__VF12_FB_OFFSET__SHIFT 0x10
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF12_FB__VF12_FB_SIZE_MASK 0x0000FFFFL
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF12_FB__VF12_FB_OFFSET_MASK 0xFFFF0000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF13_FB
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF13_FB__VF13_FB_SIZE__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF13_FB__VF13_FB_OFFSET__SHIFT 0x10
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF13_FB__VF13_FB_SIZE_MASK 0x0000FFFFL
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF13_FB__VF13_FB_OFFSET_MASK 0xFFFF0000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF14_FB
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF14_FB__VF14_FB_SIZE__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF14_FB__VF14_FB_OFFSET__SHIFT 0x10
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF14_FB__VF14_FB_SIZE_MASK 0x0000FFFFL
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF14_FB__VF14_FB_OFFSET_MASK 0xFFFF0000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF15_FB
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF15_FB__VF15_FB_SIZE__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF15_FB__VF15_FB_OFFSET__SHIFT 0x10
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF15_FB__VF15_FB_SIZE_MASK 0x0000FFFFL
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF15_FB__VF15_FB_OFFSET_MASK 0xFFFF0000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF16_FB
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF16_FB__VF16_FB_SIZE__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF16_FB__VF16_FB_OFFSET__SHIFT 0x10
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF16_FB__VF16_FB_SIZE_MASK 0x0000FFFFL
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF16_FB__VF16_FB_OFFSET_MASK 0xFFFF0000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF17_FB
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF17_FB__VF17_FB_SIZE__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF17_FB__VF17_FB_OFFSET__SHIFT 0x10
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF17_FB__VF17_FB_SIZE_MASK 0x0000FFFFL
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF17_FB__VF17_FB_OFFSET_MASK 0xFFFF0000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF18_FB
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF18_FB__VF18_FB_SIZE__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF18_FB__VF18_FB_OFFSET__SHIFT 0x10
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF18_FB__VF18_FB_SIZE_MASK 0x0000FFFFL
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF18_FB__VF18_FB_OFFSET_MASK 0xFFFF0000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF19_FB
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF19_FB__VF19_FB_SIZE__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF19_FB__VF19_FB_OFFSET__SHIFT 0x10
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF19_FB__VF19_FB_SIZE_MASK 0x0000FFFFL
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF19_FB__VF19_FB_OFFSET_MASK 0xFFFF0000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF20_FB
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF20_FB__VF20_FB_SIZE__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF20_FB__VF20_FB_OFFSET__SHIFT 0x10
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF20_FB__VF20_FB_SIZE_MASK 0x0000FFFFL
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF20_FB__VF20_FB_OFFSET_MASK 0xFFFF0000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF21_FB
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF21_FB__VF21_FB_SIZE__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF21_FB__VF21_FB_OFFSET__SHIFT 0x10
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF21_FB__VF21_FB_SIZE_MASK 0x0000FFFFL
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF21_FB__VF21_FB_OFFSET_MASK 0xFFFF0000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF22_FB
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF22_FB__VF22_FB_SIZE__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF22_FB__VF22_FB_OFFSET__SHIFT 0x10
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF22_FB__VF22_FB_SIZE_MASK 0x0000FFFFL
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF22_FB__VF22_FB_OFFSET_MASK 0xFFFF0000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF23_FB
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF23_FB__VF23_FB_SIZE__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF23_FB__VF23_FB_OFFSET__SHIFT 0x10
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF23_FB__VF23_FB_SIZE_MASK 0x0000FFFFL
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF23_FB__VF23_FB_OFFSET_MASK 0xFFFF0000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF24_FB
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF24_FB__VF24_FB_SIZE__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF24_FB__VF24_FB_OFFSET__SHIFT 0x10
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF24_FB__VF24_FB_SIZE_MASK 0x0000FFFFL
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF24_FB__VF24_FB_OFFSET_MASK 0xFFFF0000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF25_FB
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF25_FB__VF25_FB_SIZE__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF25_FB__VF25_FB_OFFSET__SHIFT 0x10
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF25_FB__VF25_FB_SIZE_MASK 0x0000FFFFL
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF25_FB__VF25_FB_OFFSET_MASK 0xFFFF0000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF26_FB
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF26_FB__VF26_FB_SIZE__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF26_FB__VF26_FB_OFFSET__SHIFT 0x10
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF26_FB__VF26_FB_SIZE_MASK 0x0000FFFFL
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF26_FB__VF26_FB_OFFSET_MASK 0xFFFF0000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF27_FB
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF27_FB__VF27_FB_SIZE__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF27_FB__VF27_FB_OFFSET__SHIFT 0x10
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF27_FB__VF27_FB_SIZE_MASK 0x0000FFFFL
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF27_FB__VF27_FB_OFFSET_MASK 0xFFFF0000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF28_FB
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF28_FB__VF28_FB_SIZE__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF28_FB__VF28_FB_OFFSET__SHIFT 0x10
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF28_FB__VF28_FB_SIZE_MASK 0x0000FFFFL
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF28_FB__VF28_FB_OFFSET_MASK 0xFFFF0000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF29_FB
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF29_FB__VF29_FB_SIZE__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF29_FB__VF29_FB_OFFSET__SHIFT 0x10
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF29_FB__VF29_FB_SIZE_MASK 0x0000FFFFL
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF29_FB__VF29_FB_OFFSET_MASK 0xFFFF0000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF30_FB
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF30_FB__VF30_FB_SIZE__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF30_FB__VF30_FB_OFFSET__SHIFT 0x10
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF30_FB__VF30_FB_SIZE_MASK 0x0000FFFFL
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF30_FB__VF30_FB_OFFSET_MASK 0xFFFF0000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS__VCN0SCH_OFFSET__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS__VCN1SCH_OFFSET__SHIFT 0x8
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS__VCN2SCH_OFFSET__SHIFT 0x10
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS__VCN3SCH_OFFSET__SHIFT 0x18
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS__VCN0SCH_OFFSET_MASK 0x000000FFL
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS__VCN1SCH_OFFSET_MASK 0x0000FF00L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS__VCN2SCH_OFFSET_MASK 0x00FF0000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS__VCN3SCH_OFFSET_MASK 0xFF000000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS1
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS1__VCN4SCH_OFFSET__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS1__VCN5SCH_OFFSET__SHIFT 0x8
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS1__VCN6SCH_OFFSET__SHIFT 0x10
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS1__VCN7SCH_OFFSET__SHIFT 0x18
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS1__VCN4SCH_OFFSET_MASK 0x000000FFL
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS1__VCN5SCH_OFFSET_MASK 0x0000FF00L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS1__VCN6SCH_OFFSET_MASK 0x00FF0000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS1__VCN7SCH_OFFSET_MASK 0xFF000000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS2
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS2__VCN8SCH_OFFSET__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS2__VCN9SCH_OFFSET__SHIFT 0x8
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS2__VCN10SCH_OFFSET__SHIFT 0x10
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS2__VCN11SCH_OFFSET__SHIFT 0x18
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS2__VCN8SCH_OFFSET_MASK 0x000000FFL
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS2__VCN9SCH_OFFSET_MASK 0x0000FF00L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS2__VCN10SCH_OFFSET_MASK 0x00FF0000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS2__VCN11SCH_OFFSET_MASK 0xFF000000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS3
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS3__GFX0SCH_OFFSET__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS3__GFX1SCH_OFFSET__SHIFT 0x8
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS3__GFX2SCH_OFFSET__SHIFT 0x10
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS3__GFX3SCH_OFFSET__SHIFT 0x18
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS3__GFX0SCH_OFFSET_MASK 0x000000FFL
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS3__GFX1SCH_OFFSET_MASK 0x0000FF00L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS3__GFX2SCH_OFFSET_MASK 0x00FF0000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS3__GFX3SCH_OFFSET_MASK 0xFF000000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS4
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS4__GFX4SCH_OFFSET__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS4__GFX5SCH_OFFSET__SHIFT 0x8
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS4__GFX6SCH_OFFSET__SHIFT 0x10
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS4__GFX7SCH_OFFSET__SHIFT 0x18
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS4__GFX4SCH_OFFSET_MASK 0x000000FFL
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS4__GFX5SCH_OFFSET_MASK 0x0000FF00L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS4__GFX6SCH_OFFSET_MASK 0x00FF0000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS4__GFX7SCH_OFFSET_MASK 0xFF000000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW0__DW0__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW0__DW0_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW1
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW1__DW1__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW1__DW1_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW2
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW2__DW2__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW2__DW2_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW3
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW3__DW3__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW3__DW3_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW4
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW4__DW4__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW4__DW4_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW5
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW5__DW5__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW5__DW5_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW6
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW6__DW6__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW6__DW6_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW7
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW7__DW7__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW7__DW7_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW8
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW8__DW8__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW8__DW8_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW0__DW0__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW0__DW0_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW1
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW1__DW1__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW1__DW1_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW2
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW2__DW2__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW2__DW2_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW3
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW3__DW3__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW3__DW3_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW4
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW4__DW4__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW4__DW4_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW5
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW5__DW5__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW5__DW5_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW6
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW6__DW6__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW6__DW6_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW7
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW7__DW7__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW7__DW7_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW8
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW8__DW8__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW8__DW8_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW0__DW0__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW0__DW0_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW1
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW1__DW1__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW1__DW1_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW2
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW2__DW2__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW2__DW2_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW3
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW3__DW3__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW3__DW3_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW4
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW4__DW4__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW4__DW4_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW5
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW5__DW5__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW5__DW5_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW6
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW6__DW6__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW6__DW6_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW7
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW7__DW7__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW7__DW7_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW8
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW8__DW8__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW8__DW8_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW0__DW0__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW0__DW0_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW1
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW1__DW1__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW1__DW1_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW2
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW2__DW2__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW2__DW2_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW3
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW3__DW3__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW3__DW3_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW4
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW4__DW4__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW4__DW4_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW5
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW5__DW5__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW5__DW5_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW6
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW6__DW6__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW6__DW6_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW7
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW7__DW7__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW7__DW7_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW8
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW8__DW8__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW8__DW8_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW0__DW0__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW0__DW0_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW1
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW1__DW1__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW1__DW1_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW2
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW2__DW2__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW2__DW2_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW3
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW3__DW3__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW3__DW3_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW4
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW4__DW4__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW4__DW4_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW5
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW5__DW5__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW5__DW5_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW6
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW6__DW6__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW6__DW6_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW7
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW7__DW7__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW7__DW7_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW8
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW8__DW8__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW8__DW8_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW0__DW0__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW0__DW0_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW1
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW1__DW1__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW1__DW1_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW2
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW2__DW2__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW2__DW2_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW3
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW3__DW3__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW3__DW3_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW4
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW4__DW4__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW4__DW4_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW5
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW5__DW5__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW5__DW5_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW6
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW6__DW6__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW6__DW6_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW7
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW7__DW7__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW7__DW7_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW8
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW8__DW8__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW8__DW8_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW0__DW0__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW0__DW0_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW1
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW1__DW1__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW1__DW1_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW2
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW2__DW2__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW2__DW2_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW3
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW3__DW3__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW3__DW3_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW4
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW4__DW4__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW4__DW4_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW5
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW5__DW5__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW5__DW5_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW6
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW6__DW6__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW6__DW6_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW7
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW7__DW7__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW7__DW7_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW8
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW8__DW8__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW8__DW8_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW0__DW0__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW0__DW0_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW1
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW1__DW1__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW1__DW1_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW2
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW2__DW2__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW2__DW2_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW3
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW3__DW3__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW3__DW3_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW4
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW4__DW4__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW4__DW4_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW5
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW5__DW5__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW5__DW5_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW6
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW6__DW6__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW6__DW6_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW7
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW7__DW7__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW7__DW7_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW8
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW8__DW8__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW8__DW8_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW0__DW0__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW0__DW0_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW1
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW1__DW1__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW1__DW1_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW2
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW2__DW2__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW2__DW2_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW3
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW3__DW3__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW3__DW3_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW4
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW4__DW4__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW4__DW4_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW5
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW5__DW5__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW5__DW5_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW6
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW6__DW6__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW6__DW6_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW7
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW7__DW7__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW7__DW7_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW8
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW8__DW8__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW8__DW8_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW0__DW0__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW0__DW0_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW1
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW1__DW1__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW1__DW1_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW2
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW2__DW2__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW2__DW2_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW3
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW3__DW3__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW3__DW3_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW4
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW4__DW4__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW4__DW4_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW5
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW5__DW5__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW5__DW5_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW6
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW6__DW6__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW6__DW6_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW7
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW7__DW7__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW7__DW7_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW8
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW8__DW8__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW8__DW8_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW0__DW0__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW0__DW0_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW1
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW1__DW1__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW1__DW1_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW2
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW2__DW2__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW2__DW2_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW3
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW3__DW3__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW3__DW3_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW4
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW4__DW4__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW4__DW4_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW5
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW5__DW5__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW5__DW5_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW6
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW6__DW6__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW6__DW6_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW7
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW7__DW7__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW7__DW7_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW8
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW8__DW8__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW8__DW8_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW0__DW0__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW0__DW0_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW1
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW1__DW1__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW1__DW1_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW2
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW2__DW2__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW2__DW2_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW3
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW3__DW3__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW3__DW3_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW4
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW4__DW4__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW4__DW4_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW5
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW5__DW5__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW5__DW5_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW6
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW6__DW6__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW6__DW6_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW7
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW7__DW7__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW7__DW7_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW8
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW8__DW8__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW8__DW8_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW0__DW0__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW0__DW0_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW1
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW1__DW1__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW1__DW1_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW2
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW2__DW2__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW2__DW2_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW3
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW3__DW3__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW3__DW3_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW4
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW4__DW4__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW4__DW4_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW5
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW5__DW5__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW5__DW5_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW6
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW6__DW6__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW6__DW6_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW7
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW7__DW7__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW7__DW7_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW8
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW8__DW8__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW8__DW8_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW0__DW0__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW0__DW0_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW1
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW1__DW1__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW1__DW1_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW2
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW2__DW2__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW2__DW2_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW3
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW3__DW3__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW3__DW3_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW4
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW4__DW4__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW4__DW4_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW5
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW5__DW5__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW5__DW5_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW6
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW6__DW6__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW6__DW6_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW7
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW7__DW7__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW7__DW7_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW8
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW8__DW8__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW8__DW8_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW0__DW0__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW0__DW0_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW1
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW1__DW1__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW1__DW1_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW2
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW2__DW2__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW2__DW2_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW3
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW3__DW3__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW3__DW3_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW4
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW4__DW4__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW4__DW4_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW5
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW5__DW5__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW5__DW5_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW6
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW6__DW6__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW6__DW6_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW7
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW7__DW7__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW7__DW7_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW8
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW8__DW8__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW8__DW8_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW0__DW0__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW0__DW0_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW1
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW1__DW1__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW1__DW1_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW2
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW2__DW2__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW2__DW2_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW3
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW3__DW3__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW3__DW3_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW4
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW4__DW4__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW4__DW4_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW5
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW5__DW5__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW5__DW5_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW6
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW6__DW6__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW6__DW6_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW7
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW7__DW7__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW7__DW7_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW8
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW8__DW8__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW8__DW8_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW0__DW0__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW0__DW0_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW1
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW1__DW1__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW1__DW1_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW2
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW2__DW2__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW2__DW2_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW3
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW3__DW3__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW3__DW3_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW4
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW4__DW4__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW4__DW4_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW5
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW5__DW5__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW5__DW5_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW6
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW6__DW6__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW6__DW6_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW7
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW7__DW7__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW7__DW7_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW8
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW8__DW8__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW8__DW8_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW0__DW0__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW0__DW0_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW1
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW1__DW1__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW1__DW1_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW2
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW2__DW2__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW2__DW2_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW3
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW3__DW3__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW3__DW3_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW4
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW4__DW4__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW4__DW4_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW5
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW5__DW5__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW5__DW5_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW6
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW6__DW6__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW6__DW6_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW7
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW7__DW7__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW7__DW7_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW8
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW8__DW8__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW8__DW8_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW0__DW0__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW0__DW0_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW1
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW1__DW1__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW1__DW1_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW2
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW2__DW2__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW2__DW2_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW3
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW3__DW3__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW3__DW3_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW4
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW4__DW4__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW4__DW4_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW5
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW5__DW5__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW5__DW5_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW6
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW6__DW6__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW6__DW6_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW7
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW7__DW7__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW7__DW7_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW8
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW8__DW8__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW8__DW8_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW0__DW0__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW0__DW0_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW1
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW1__DW1__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW1__DW1_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW2
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW2__DW2__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW2__DW2_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW3
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW3__DW3__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW3__DW3_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW4
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW4__DW4__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW4__DW4_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW5
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW5__DW5__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW5__DW5_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW6
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW6__DW6__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW6__DW6_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW7
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW7__DW7__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW7__DW7_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW8
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW8__DW8__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW8__DW8_MASK 0xFFFFFFFFL
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A0_CMD_COMPLETE_INTR_EN__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A0_HANG_SELF_RECOVERED_INTR_EN__SHIFT 0x1
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A0_HANG_NEED_FLR_INTR_EN__SHIFT 0x2
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A0_VM_BUSY_TRANSITION_INTR_EN__SHIFT 0x3
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A1_CMD_COMPLETE_INTR_EN__SHIFT 0x4
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A1_HANG_SELF_RECOVERED_INTR_EN__SHIFT 0x5
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A1_HANG_NEED_FLR_INTR_EN__SHIFT 0x6
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A1_VM_BUSY_TRANSITION_INTR_EN__SHIFT 0x7
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A2_CMD_COMPLETE_INTR_EN__SHIFT 0x8
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A2_HANG_SELF_RECOVERED_INTR_EN__SHIFT 0x9
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A2_HANG_NEED_FLR_INTR_EN__SHIFT 0xa
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A2_VM_BUSY_TRANSITION_INTR_EN__SHIFT 0xb
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A3_CMD_COMPLETE_INTR_EN__SHIFT 0xc
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A3_HANG_SELF_RECOVERED_INTR_EN__SHIFT 0xd
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A3_HANG_NEED_FLR_INTR_EN__SHIFT 0xe
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A3_VM_BUSY_TRANSITION_INTR_EN__SHIFT 0xf
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A4_CMD_COMPLETE_INTR_EN__SHIFT 0x10
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A4_HANG_SELF_RECOVERED_INTR_EN__SHIFT 0x11
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A4_HANG_NEED_FLR_INTR_EN__SHIFT 0x12
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A4_VM_BUSY_TRANSITION_INTR_EN__SHIFT 0x13
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A5_CMD_COMPLETE_INTR_EN__SHIFT 0x14
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A5_HANG_SELF_RECOVERED_INTR_EN__SHIFT 0x15
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A5_HANG_NEED_FLR_INTR_EN__SHIFT 0x16
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A5_VM_BUSY_TRANSITION_INTR_EN__SHIFT 0x17
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A6_CMD_COMPLETE_INTR_EN__SHIFT 0x18
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A6_HANG_SELF_RECOVERED_INTR_EN__SHIFT 0x19
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A6_HANG_NEED_FLR_INTR_EN__SHIFT 0x1a
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A6_VM_BUSY_TRANSITION_INTR_EN__SHIFT 0x1b
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A7_CMD_COMPLETE_INTR_EN__SHIFT 0x1c
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A7_HANG_SELF_RECOVERED_INTR_EN__SHIFT 0x1d
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A7_HANG_NEED_FLR_INTR_EN__SHIFT 0x1e
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A7_VM_BUSY_TRANSITION_INTR_EN__SHIFT 0x1f
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A0_CMD_COMPLETE_INTR_EN_MASK 0x00000001L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A0_HANG_SELF_RECOVERED_INTR_EN_MASK 0x00000002L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A0_HANG_NEED_FLR_INTR_EN_MASK 0x00000004L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A0_VM_BUSY_TRANSITION_INTR_EN_MASK 0x00000008L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A1_CMD_COMPLETE_INTR_EN_MASK 0x00000010L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A1_HANG_SELF_RECOVERED_INTR_EN_MASK 0x00000020L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A1_HANG_NEED_FLR_INTR_EN_MASK 0x00000040L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A1_VM_BUSY_TRANSITION_INTR_EN_MASK 0x00000080L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A2_CMD_COMPLETE_INTR_EN_MASK 0x00000100L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A2_HANG_SELF_RECOVERED_INTR_EN_MASK 0x00000200L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A2_HANG_NEED_FLR_INTR_EN_MASK 0x00000400L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A2_VM_BUSY_TRANSITION_INTR_EN_MASK 0x00000800L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A3_CMD_COMPLETE_INTR_EN_MASK 0x00001000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A3_HANG_SELF_RECOVERED_INTR_EN_MASK 0x00002000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A3_HANG_NEED_FLR_INTR_EN_MASK 0x00004000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A3_VM_BUSY_TRANSITION_INTR_EN_MASK 0x00008000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A4_CMD_COMPLETE_INTR_EN_MASK 0x00010000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A4_HANG_SELF_RECOVERED_INTR_EN_MASK 0x00020000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A4_HANG_NEED_FLR_INTR_EN_MASK 0x00040000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A4_VM_BUSY_TRANSITION_INTR_EN_MASK 0x00080000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A5_CMD_COMPLETE_INTR_EN_MASK 0x00100000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A5_HANG_SELF_RECOVERED_INTR_EN_MASK 0x00200000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A5_HANG_NEED_FLR_INTR_EN_MASK 0x00400000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A5_VM_BUSY_TRANSITION_INTR_EN_MASK 0x00800000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A6_CMD_COMPLETE_INTR_EN_MASK 0x01000000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A6_HANG_SELF_RECOVERED_INTR_EN_MASK 0x02000000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A6_HANG_NEED_FLR_INTR_EN_MASK 0x04000000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A6_VM_BUSY_TRANSITION_INTR_EN_MASK 0x08000000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A7_CMD_COMPLETE_INTR_EN_MASK 0x10000000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A7_HANG_SELF_RECOVERED_INTR_EN_MASK 0x20000000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A7_HANG_NEED_FLR_INTR_EN_MASK 0x40000000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A7_VM_BUSY_TRANSITION_INTR_EN_MASK 0x80000000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A8_15_INTR_ENABLE
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B0_CMD_COMPLETE_INTR_EN__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B0_HANG_SELF_RECOVERED_INTR_EN__SHIFT 0x1
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B0_HANG_NEED_FLR_INTR_EN__SHIFT 0x2
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B0_VM_BUSY_TRANSITION_INTR_EN__SHIFT 0x3
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B1_CMD_COMPLETE_INTR_EN__SHIFT 0x4
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B1_HANG_SELF_RECOVERED_INTR_EN__SHIFT 0x5
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B1_HANG_NEED_FLR_INTR_EN__SHIFT 0x6
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B1_VM_BUSY_TRANSITION_INTR_EN__SHIFT 0x7
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B2_CMD_COMPLETE_INTR_EN__SHIFT 0x8
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B2_HANG_SELF_RECOVERED_INTR_EN__SHIFT 0x9
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B2_HANG_NEED_FLR_INTR_EN__SHIFT 0xa
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B2_VM_BUSY_TRANSITION_INTR_EN__SHIFT 0xb
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B3_CMD_COMPLETE_INTR_EN__SHIFT 0xc
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B3_HANG_SELF_RECOVERED_INTR_EN__SHIFT 0xd
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B3_HANG_NEED_FLR_INTR_EN__SHIFT 0xe
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B3_VM_BUSY_TRANSITION_INTR_EN__SHIFT 0xf
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B4_CMD_COMPLETE_INTR_EN__SHIFT 0x10
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B4_HANG_SELF_RECOVERED_INTR_EN__SHIFT 0x11
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B4_HANG_NEED_FLR_INTR_EN__SHIFT 0x12
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B4_VM_BUSY_TRANSITION_INTR_EN__SHIFT 0x13
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B5_CMD_COMPLETE_INTR_EN__SHIFT 0x14
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B5_HANG_SELF_RECOVERED_INTR_EN__SHIFT 0x15
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B5_HANG_NEED_FLR_INTR_EN__SHIFT 0x16
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B5_VM_BUSY_TRANSITION_INTR_EN__SHIFT 0x17
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B6_CMD_COMPLETE_INTR_EN__SHIFT 0x18
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B6_HANG_SELF_RECOVERED_INTR_EN__SHIFT 0x19
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B6_HANG_NEED_FLR_INTR_EN__SHIFT 0x1a
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B6_VM_BUSY_TRANSITION_INTR_EN__SHIFT 0x1b
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B7_CMD_COMPLETE_INTR_EN__SHIFT 0x1c
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B7_HANG_SELF_RECOVERED_INTR_EN__SHIFT 0x1d
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B7_HANG_NEED_FLR_INTR_EN__SHIFT 0x1e
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B7_VM_BUSY_TRANSITION_INTR_EN__SHIFT 0x1f
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B0_CMD_COMPLETE_INTR_EN_MASK 0x00000001L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B0_HANG_SELF_RECOVERED_INTR_EN_MASK 0x00000002L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B0_HANG_NEED_FLR_INTR_EN_MASK 0x00000004L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B0_VM_BUSY_TRANSITION_INTR_EN_MASK 0x00000008L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B1_CMD_COMPLETE_INTR_EN_MASK 0x00000010L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B1_HANG_SELF_RECOVERED_INTR_EN_MASK 0x00000020L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B1_HANG_NEED_FLR_INTR_EN_MASK 0x00000040L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B1_VM_BUSY_TRANSITION_INTR_EN_MASK 0x00000080L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B2_CMD_COMPLETE_INTR_EN_MASK 0x00000100L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B2_HANG_SELF_RECOVERED_INTR_EN_MASK 0x00000200L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B2_HANG_NEED_FLR_INTR_EN_MASK 0x00000400L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B2_VM_BUSY_TRANSITION_INTR_EN_MASK 0x00000800L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B3_CMD_COMPLETE_INTR_EN_MASK 0x00001000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B3_HANG_SELF_RECOVERED_INTR_EN_MASK 0x00002000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B3_HANG_NEED_FLR_INTR_EN_MASK 0x00004000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B3_VM_BUSY_TRANSITION_INTR_EN_MASK 0x00008000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B4_CMD_COMPLETE_INTR_EN_MASK 0x00010000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B4_HANG_SELF_RECOVERED_INTR_EN_MASK 0x00020000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B4_HANG_NEED_FLR_INTR_EN_MASK 0x00040000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B4_VM_BUSY_TRANSITION_INTR_EN_MASK 0x00080000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B5_CMD_COMPLETE_INTR_EN_MASK 0x00100000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B5_HANG_SELF_RECOVERED_INTR_EN_MASK 0x00200000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B5_HANG_NEED_FLR_INTR_EN_MASK 0x00400000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B5_VM_BUSY_TRANSITION_INTR_EN_MASK 0x00800000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B6_CMD_COMPLETE_INTR_EN_MASK 0x01000000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B6_HANG_SELF_RECOVERED_INTR_EN_MASK 0x02000000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B6_HANG_NEED_FLR_INTR_EN_MASK 0x04000000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B6_VM_BUSY_TRANSITION_INTR_EN_MASK 0x08000000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B7_CMD_COMPLETE_INTR_EN_MASK 0x10000000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B7_HANG_SELF_RECOVERED_INTR_EN_MASK 0x20000000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B7_HANG_NEED_FLR_INTR_EN_MASK 0x40000000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B7_VM_BUSY_TRANSITION_INTR_EN_MASK 0x80000000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B8_CMD_COMPLETE_INTR_EN__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B8_HANG_SELF_RECOVERED_INTR_EN__SHIFT 0x1
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B8_HANG_NEED_FLR_INTR_EN__SHIFT 0x2
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B8_VM_BUSY_TRANSITION_INTR_EN__SHIFT 0x3
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B9_CMD_COMPLETE_INTR_EN__SHIFT 0x4
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B9_HANG_SELF_RECOVERED_INTR_EN__SHIFT 0x5
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B9_HANG_NEED_FLR_INTR_EN__SHIFT 0x6
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B9_VM_BUSY_TRANSITION_INTR_EN__SHIFT 0x7
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B10_CMD_COMPLETE_INTR_EN__SHIFT 0x8
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B10_HANG_SELF_RECOVERED_INTR_EN__SHIFT 0x9
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B10_HANG_NEED_FLR_INTR_EN__SHIFT 0xa
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B10_VM_BUSY_TRANSITION_INTR_EN__SHIFT 0xb
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B11_CMD_COMPLETE_INTR_EN__SHIFT 0xc
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B11_HANG_SELF_RECOVERED_INTR_EN__SHIFT 0xd
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B11_HANG_NEED_FLR_INTR_EN__SHIFT 0xe
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B11_VM_BUSY_TRANSITION_INTR_EN__SHIFT 0xf
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B8_CMD_COMPLETE_INTR_EN_MASK 0x00000001L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B8_HANG_SELF_RECOVERED_INTR_EN_MASK 0x00000002L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B8_HANG_NEED_FLR_INTR_EN_MASK 0x00000004L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B8_VM_BUSY_TRANSITION_INTR_EN_MASK 0x00000008L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B9_CMD_COMPLETE_INTR_EN_MASK 0x00000010L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B9_HANG_SELF_RECOVERED_INTR_EN_MASK 0x00000020L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B9_HANG_NEED_FLR_INTR_EN_MASK 0x00000040L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B9_VM_BUSY_TRANSITION_INTR_EN_MASK 0x00000080L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B10_CMD_COMPLETE_INTR_EN_MASK 0x00000100L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B10_HANG_SELF_RECOVERED_INTR_EN_MASK 0x00000200L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B10_HANG_NEED_FLR_INTR_EN_MASK 0x00000400L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B10_VM_BUSY_TRANSITION_INTR_EN_MASK 0x00000800L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B11_CMD_COMPLETE_INTR_EN_MASK 0x00001000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B11_HANG_SELF_RECOVERED_INTR_EN_MASK 0x00002000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B11_HANG_NEED_FLR_INTR_EN_MASK 0x00004000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B11_VM_BUSY_TRANSITION_INTR_EN_MASK 0x00008000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A0_CMD_COMPLETE_INTR_STATUS__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A0_HANG_SELF_RECOVERED_INTR_STATUS__SHIFT 0x1
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A0_HANG_NEED_FLR_INTR_STATUS__SHIFT 0x2
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A0_VM_BUSY_TRANSITION_INTR_STATUS__SHIFT 0x3
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A1_CMD_COMPLETE_INTR_STATUS__SHIFT 0x4
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A1_HANG_SELF_RECOVERED_INTR_STATUS__SHIFT 0x5
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A1_HANG_NEED_FLR_INTR_STATUS__SHIFT 0x6
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A1_VM_BUSY_TRANSITION_INTR_STATUS__SHIFT 0x7
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A2_CMD_COMPLETE_INTR_STATUS__SHIFT 0x8
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A2_HANG_SELF_RECOVERED_INTR_STATUS__SHIFT 0x9
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A2_HANG_NEED_FLR_INTR_STATUS__SHIFT 0xa
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A2_VM_BUSY_TRANSITION_INTR_STATUS__SHIFT 0xb
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A3_CMD_COMPLETE_INTR_STATUS__SHIFT 0xc
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A3_HANG_SELF_RECOVERED_INTR_STATUS__SHIFT 0xd
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A3_HANG_NEED_FLR_INTR_STATUS__SHIFT 0xe
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A3_VM_BUSY_TRANSITION_INTR_STATUS__SHIFT 0xf
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A4_CMD_COMPLETE_INTR_STATUS__SHIFT 0x10
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A4_HANG_SELF_RECOVERED_INTR_STATUS__SHIFT 0x11
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A4_HANG_NEED_FLR_INTR_STATUS__SHIFT 0x12
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A4_VM_BUSY_TRANSITION_INTR_STATUS__SHIFT 0x13
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A5_CMD_COMPLETE_INTR_STATUS__SHIFT 0x14
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A5_HANG_SELF_RECOVERED_INTR_STATUS__SHIFT 0x15
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A5_HANG_NEED_FLR_INTR_STATUS__SHIFT 0x16
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A5_VM_BUSY_TRANSITION_INTR_STATUS__SHIFT 0x17
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A6_CMD_COMPLETE_INTR_STATUS__SHIFT 0x18
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A6_HANG_SELF_RECOVERED_INTR_STATUS__SHIFT 0x19
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A6_HANG_NEED_FLR_INTR_STATUS__SHIFT 0x1a
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A6_VM_BUSY_TRANSITION_INTR_STATUS__SHIFT 0x1b
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A7_CMD_COMPLETE_INTR_STATUS__SHIFT 0x1c
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A7_HANG_SELF_RECOVERED_INTR_STATUS__SHIFT 0x1d
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A7_HANG_NEED_FLR_INTR_STATUS__SHIFT 0x1e
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A7_VM_BUSY_TRANSITION_INTR_STATUS__SHIFT 0x1f
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A0_CMD_COMPLETE_INTR_STATUS_MASK 0x00000001L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A0_HANG_SELF_RECOVERED_INTR_STATUS_MASK 0x00000002L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A0_HANG_NEED_FLR_INTR_STATUS_MASK 0x00000004L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A0_VM_BUSY_TRANSITION_INTR_STATUS_MASK 0x00000008L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A1_CMD_COMPLETE_INTR_STATUS_MASK 0x00000010L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A1_HANG_SELF_RECOVERED_INTR_STATUS_MASK 0x00000020L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A1_HANG_NEED_FLR_INTR_STATUS_MASK 0x00000040L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A1_VM_BUSY_TRANSITION_INTR_STATUS_MASK 0x00000080L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A2_CMD_COMPLETE_INTR_STATUS_MASK 0x00000100L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A2_HANG_SELF_RECOVERED_INTR_STATUS_MASK 0x00000200L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A2_HANG_NEED_FLR_INTR_STATUS_MASK 0x00000400L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A2_VM_BUSY_TRANSITION_INTR_STATUS_MASK 0x00000800L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A3_CMD_COMPLETE_INTR_STATUS_MASK 0x00001000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A3_HANG_SELF_RECOVERED_INTR_STATUS_MASK 0x00002000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A3_HANG_NEED_FLR_INTR_STATUS_MASK 0x00004000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A3_VM_BUSY_TRANSITION_INTR_STATUS_MASK 0x00008000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A4_CMD_COMPLETE_INTR_STATUS_MASK 0x00010000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A4_HANG_SELF_RECOVERED_INTR_STATUS_MASK 0x00020000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A4_HANG_NEED_FLR_INTR_STATUS_MASK 0x00040000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A4_VM_BUSY_TRANSITION_INTR_STATUS_MASK 0x00080000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A5_CMD_COMPLETE_INTR_STATUS_MASK 0x00100000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A5_HANG_SELF_RECOVERED_INTR_STATUS_MASK 0x00200000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A5_HANG_NEED_FLR_INTR_STATUS_MASK 0x00400000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A5_VM_BUSY_TRANSITION_INTR_STATUS_MASK 0x00800000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A6_CMD_COMPLETE_INTR_STATUS_MASK 0x01000000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A6_HANG_SELF_RECOVERED_INTR_STATUS_MASK 0x02000000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A6_HANG_NEED_FLR_INTR_STATUS_MASK 0x04000000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A6_VM_BUSY_TRANSITION_INTR_STATUS_MASK 0x08000000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A7_CMD_COMPLETE_INTR_STATUS_MASK 0x10000000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A7_HANG_SELF_RECOVERED_INTR_STATUS_MASK 0x20000000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A7_HANG_NEED_FLR_INTR_STATUS_MASK 0x40000000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A7_VM_BUSY_TRANSITION_INTR_STATUS_MASK 0x80000000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A8_15_INTR_STATUS
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B0_CMD_COMPLETE_INTR_STATUS__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B0_HANG_SELF_RECOVERED_INTR_STATUS__SHIFT 0x1
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B0_HANG_NEED_FLR_INTR_STATUS__SHIFT 0x2
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B0_VM_BUSY_TRANSITION_INTR_STATUS__SHIFT 0x3
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B1_CMD_COMPLETE_INTR_STATUS__SHIFT 0x4
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B1_HANG_SELF_RECOVERED_INTR_STATUS__SHIFT 0x5
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B1_HANG_NEED_FLR_INTR_STATUS__SHIFT 0x6
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B1_VM_BUSY_TRANSITION_INTR_STATUS__SHIFT 0x7
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B2_CMD_COMPLETE_INTR_STATUS__SHIFT 0x8
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B2_HANG_SELF_RECOVERED_INTR_STATUS__SHIFT 0x9
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B2_HANG_NEED_FLR_INTR_STATUS__SHIFT 0xa
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B2_VM_BUSY_TRANSITION_INTR_STATUS__SHIFT 0xb
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B3_CMD_COMPLETE_INTR_STATUS__SHIFT 0xc
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B3_HANG_SELF_RECOVERED_INTR_STATUS__SHIFT 0xd
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B3_HANG_NEED_FLR_INTR_STATUS__SHIFT 0xe
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B3_VM_BUSY_TRANSITION_INTR_STATUS__SHIFT 0xf
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B4_CMD_COMPLETE_INTR_STATUS__SHIFT 0x10
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B4_HANG_SELF_RECOVERED_INTR_STATUS__SHIFT 0x11
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B4_HANG_NEED_FLR_INTR_STATUS__SHIFT 0x12
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B4_VM_BUSY_TRANSITION_INTR_STATUS__SHIFT 0x13
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B5_CMD_COMPLETE_INTR_STATUS__SHIFT 0x14
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B5_HANG_SELF_RECOVERED_INTR_STATUS__SHIFT 0x15
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B5_HANG_NEED_FLR_INTR_STATUS__SHIFT 0x16
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B5_VM_BUSY_TRANSITION_INTR_STATUS__SHIFT 0x17
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B6_CMD_COMPLETE_INTR_STATUS__SHIFT 0x18
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B6_HANG_SELF_RECOVERED_INTR_STATUS__SHIFT 0x19
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B6_HANG_NEED_FLR_INTR_STATUS__SHIFT 0x1a
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B6_VM_BUSY_TRANSITION_INTR_STATUS__SHIFT 0x1b
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B7_CMD_COMPLETE_INTR_STATUS__SHIFT 0x1c
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B7_HANG_SELF_RECOVERED_INTR_STATUS__SHIFT 0x1d
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B7_HANG_NEED_FLR_INTR_STATUS__SHIFT 0x1e
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B7_VM_BUSY_TRANSITION_INTR_STATUS__SHIFT 0x1f
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B0_CMD_COMPLETE_INTR_STATUS_MASK 0x00000001L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B0_HANG_SELF_RECOVERED_INTR_STATUS_MASK 0x00000002L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B0_HANG_NEED_FLR_INTR_STATUS_MASK 0x00000004L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B0_VM_BUSY_TRANSITION_INTR_STATUS_MASK 0x00000008L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B1_CMD_COMPLETE_INTR_STATUS_MASK 0x00000010L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B1_HANG_SELF_RECOVERED_INTR_STATUS_MASK 0x00000020L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B1_HANG_NEED_FLR_INTR_STATUS_MASK 0x00000040L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B1_VM_BUSY_TRANSITION_INTR_STATUS_MASK 0x00000080L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B2_CMD_COMPLETE_INTR_STATUS_MASK 0x00000100L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B2_HANG_SELF_RECOVERED_INTR_STATUS_MASK 0x00000200L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B2_HANG_NEED_FLR_INTR_STATUS_MASK 0x00000400L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B2_VM_BUSY_TRANSITION_INTR_STATUS_MASK 0x00000800L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B3_CMD_COMPLETE_INTR_STATUS_MASK 0x00001000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B3_HANG_SELF_RECOVERED_INTR_STATUS_MASK 0x00002000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B3_HANG_NEED_FLR_INTR_STATUS_MASK 0x00004000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B3_VM_BUSY_TRANSITION_INTR_STATUS_MASK 0x00008000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B4_CMD_COMPLETE_INTR_STATUS_MASK 0x00010000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B4_HANG_SELF_RECOVERED_INTR_STATUS_MASK 0x00020000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B4_HANG_NEED_FLR_INTR_STATUS_MASK 0x00040000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B4_VM_BUSY_TRANSITION_INTR_STATUS_MASK 0x00080000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B5_CMD_COMPLETE_INTR_STATUS_MASK 0x00100000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B5_HANG_SELF_RECOVERED_INTR_STATUS_MASK 0x00200000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B5_HANG_NEED_FLR_INTR_STATUS_MASK 0x00400000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B5_VM_BUSY_TRANSITION_INTR_STATUS_MASK 0x00800000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B6_CMD_COMPLETE_INTR_STATUS_MASK 0x01000000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B6_HANG_SELF_RECOVERED_INTR_STATUS_MASK 0x02000000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B6_HANG_NEED_FLR_INTR_STATUS_MASK 0x04000000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B6_VM_BUSY_TRANSITION_INTR_STATUS_MASK 0x08000000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B7_CMD_COMPLETE_INTR_STATUS_MASK 0x10000000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B7_HANG_SELF_RECOVERED_INTR_STATUS_MASK 0x20000000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B7_HANG_NEED_FLR_INTR_STATUS_MASK 0x40000000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B7_VM_BUSY_TRANSITION_INTR_STATUS_MASK 0x80000000L
+//PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B8_CMD_COMPLETE_INTR_STATUS__SHIFT 0x0
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B8_HANG_SELF_RECOVERED_INTR_STATUS__SHIFT 0x1
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B8_HANG_NEED_FLR_INTR_STATUS__SHIFT 0x2
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B8_VM_BUSY_TRANSITION_INTR_STATUS__SHIFT 0x3
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B9_CMD_COMPLETE_INTR_STATUS__SHIFT 0x4
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B9_HANG_SELF_RECOVERED_INTR_STATUS__SHIFT 0x5
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B9_HANG_NEED_FLR_INTR_STATUS__SHIFT 0x6
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B9_VM_BUSY_TRANSITION_INTR_STATUS__SHIFT 0x7
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B10_CMD_COMPLETE_INTR_STATUS__SHIFT 0x8
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B10_HANG_SELF_RECOVERED_INTR_STATUS__SHIFT 0x9
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B10_HANG_NEED_FLR_INTR_STATUS__SHIFT 0xa
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B10_VM_BUSY_TRANSITION_INTR_STATUS__SHIFT 0xb
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B11_CMD_COMPLETE_INTR_STATUS__SHIFT 0xc
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B11_HANG_SELF_RECOVERED_INTR_STATUS__SHIFT 0xd
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B11_HANG_NEED_FLR_INTR_STATUS__SHIFT 0xe
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B11_VM_BUSY_TRANSITION_INTR_STATUS__SHIFT 0xf
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B8_CMD_COMPLETE_INTR_STATUS_MASK 0x00000001L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B8_HANG_SELF_RECOVERED_INTR_STATUS_MASK 0x00000002L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B8_HANG_NEED_FLR_INTR_STATUS_MASK 0x00000004L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B8_VM_BUSY_TRANSITION_INTR_STATUS_MASK 0x00000008L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B9_CMD_COMPLETE_INTR_STATUS_MASK 0x00000010L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B9_HANG_SELF_RECOVERED_INTR_STATUS_MASK 0x00000020L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B9_HANG_NEED_FLR_INTR_STATUS_MASK 0x00000040L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B9_VM_BUSY_TRANSITION_INTR_STATUS_MASK 0x00000080L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B10_CMD_COMPLETE_INTR_STATUS_MASK 0x00000100L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B10_HANG_SELF_RECOVERED_INTR_STATUS_MASK 0x00000200L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B10_HANG_NEED_FLR_INTR_STATUS_MASK 0x00000400L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B10_VM_BUSY_TRANSITION_INTR_STATUS_MASK 0x00000800L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B11_CMD_COMPLETE_INTR_STATUS_MASK 0x00001000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B11_HANG_SELF_RECOVERED_INTR_STATUS_MASK 0x00002000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B11_HANG_NEED_FLR_INTR_STATUS_MASK 0x00004000L
+#define PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B11_VM_BUSY_TRANSITION_INTR_STATUS_MASK 0x00008000L
+
+
+// addressBlock: aid_nbio_nbif0_bif_cfg_dev0_epf1_bifcfgdecp
+//BIF_CFG_DEV0_EPF1_VENDOR_ID
+#define BIF_CFG_DEV0_EPF1_VENDOR_ID__VENDOR_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_VENDOR_ID__VENDOR_ID_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF1_DEVICE_ID
+#define BIF_CFG_DEV0_EPF1_DEVICE_ID__DEVICE_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_DEVICE_ID__DEVICE_ID_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF1_COMMAND
+#define BIF_CFG_DEV0_EPF1_COMMAND__IO_ACCESS_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_COMMAND__MEM_ACCESS_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF1_COMMAND__BUS_MASTER_EN__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF1_COMMAND__SPECIAL_CYCLE_EN__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF1_COMMAND__MEM_WRITE_INVALIDATE_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_COMMAND__PAL_SNOOP_EN__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF1_COMMAND__PARITY_ERROR_RESPONSE__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF1_COMMAND__AD_STEPPING__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF1_COMMAND__SERR_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_COMMAND__FAST_B2B_EN__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF1_COMMAND__INT_DIS__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF1_COMMAND__IO_ACCESS_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF1_COMMAND__MEM_ACCESS_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF1_COMMAND__BUS_MASTER_EN_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF1_COMMAND__SPECIAL_CYCLE_EN_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF1_COMMAND__MEM_WRITE_INVALIDATE_EN_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF1_COMMAND__PAL_SNOOP_EN_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF1_COMMAND__PARITY_ERROR_RESPONSE_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF1_COMMAND__AD_STEPPING_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF1_COMMAND__SERR_EN_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF1_COMMAND__FAST_B2B_EN_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF1_COMMAND__INT_DIS_MASK 0x0400L
+//BIF_CFG_DEV0_EPF1_STATUS
+#define BIF_CFG_DEV0_EPF1_STATUS__IMMEDIATE_READINESS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_STATUS__INT_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF1_STATUS__CAP_LIST__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_STATUS__PCI_66_CAP__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF1_STATUS__FAST_BACK_CAPABLE__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF1_STATUS__MASTER_DATA_PARITY_ERROR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_STATUS__DEVSEL_TIMING__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF1_STATUS__SIGNAL_TARGET_ABORT__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF1_STATUS__RECEIVED_TARGET_ABORT__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF1_STATUS__RECEIVED_MASTER_ABORT__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF1_STATUS__SIGNALED_SYSTEM_ERROR__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF1_STATUS__PARITY_ERROR_DETECTED__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF1_STATUS__IMMEDIATE_READINESS_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF1_STATUS__INT_STATUS_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF1_STATUS__CAP_LIST_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF1_STATUS__PCI_66_CAP_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF1_STATUS__FAST_BACK_CAPABLE_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF1_STATUS__MASTER_DATA_PARITY_ERROR_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF1_STATUS__DEVSEL_TIMING_MASK 0x0600L
+#define BIF_CFG_DEV0_EPF1_STATUS__SIGNAL_TARGET_ABORT_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF1_STATUS__RECEIVED_TARGET_ABORT_MASK 0x1000L
+#define BIF_CFG_DEV0_EPF1_STATUS__RECEIVED_MASTER_ABORT_MASK 0x2000L
+#define BIF_CFG_DEV0_EPF1_STATUS__SIGNALED_SYSTEM_ERROR_MASK 0x4000L
+#define BIF_CFG_DEV0_EPF1_STATUS__PARITY_ERROR_DETECTED_MASK 0x8000L
+//BIF_CFG_DEV0_EPF1_REVISION_ID
+#define BIF_CFG_DEV0_EPF1_REVISION_ID__MINOR_REV_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_REVISION_ID__MAJOR_REV_ID__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_REVISION_ID__MINOR_REV_ID_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF1_REVISION_ID__MAJOR_REV_ID_MASK 0xF0L
+//BIF_CFG_DEV0_EPF1_PROG_INTERFACE
+#define BIF_CFG_DEV0_EPF1_PROG_INTERFACE__PROG_INTERFACE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PROG_INTERFACE__PROG_INTERFACE_MASK 0xFFL
+//BIF_CFG_DEV0_EPF1_SUB_CLASS
+#define BIF_CFG_DEV0_EPF1_SUB_CLASS__SUB_CLASS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_SUB_CLASS__SUB_CLASS_MASK 0xFFL
+//BIF_CFG_DEV0_EPF1_BASE_CLASS
+#define BIF_CFG_DEV0_EPF1_BASE_CLASS__BASE_CLASS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_BASE_CLASS__BASE_CLASS_MASK 0xFFL
+//BIF_CFG_DEV0_EPF1_CACHE_LINE
+#define BIF_CFG_DEV0_EPF1_CACHE_LINE__CACHE_LINE_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_CACHE_LINE__CACHE_LINE_SIZE_MASK 0xFFL
+//BIF_CFG_DEV0_EPF1_LATENCY
+#define BIF_CFG_DEV0_EPF1_LATENCY__LATENCY_TIMER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_LATENCY__LATENCY_TIMER_MASK 0xFFL
+//BIF_CFG_DEV0_EPF1_HEADER
+#define BIF_CFG_DEV0_EPF1_HEADER__HEADER_TYPE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_HEADER__DEVICE_TYPE__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF1_HEADER__HEADER_TYPE_MASK 0x7FL
+#define BIF_CFG_DEV0_EPF1_HEADER__DEVICE_TYPE_MASK 0x80L
+//BIF_CFG_DEV0_EPF1_BIST
+#define BIF_CFG_DEV0_EPF1_BIST__BIST_COMP__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_BIST__BIST_STRT__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF1_BIST__BIST_CAP__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF1_BIST__BIST_COMP_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF1_BIST__BIST_STRT_MASK 0x40L
+#define BIF_CFG_DEV0_EPF1_BIST__BIST_CAP_MASK 0x80L
+//BIF_CFG_DEV0_EPF1_BASE_ADDR_1
+#define BIF_CFG_DEV0_EPF1_BASE_ADDR_1__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_BASE_ADDR_1__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF1_BASE_ADDR_2
+#define BIF_CFG_DEV0_EPF1_BASE_ADDR_2__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_BASE_ADDR_2__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF1_BASE_ADDR_3
+#define BIF_CFG_DEV0_EPF1_BASE_ADDR_3__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_BASE_ADDR_3__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF1_BASE_ADDR_4
+#define BIF_CFG_DEV0_EPF1_BASE_ADDR_4__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_BASE_ADDR_4__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF1_BASE_ADDR_5
+#define BIF_CFG_DEV0_EPF1_BASE_ADDR_5__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_BASE_ADDR_5__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF1_BASE_ADDR_6
+#define BIF_CFG_DEV0_EPF1_BASE_ADDR_6__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_BASE_ADDR_6__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF1_CARDBUS_CIS_PTR
+#define BIF_CFG_DEV0_EPF1_CARDBUS_CIS_PTR__CARDBUS_CIS_PTR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_CARDBUS_CIS_PTR__CARDBUS_CIS_PTR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF1_ADAPTER_ID
+#define BIF_CFG_DEV0_EPF1_ADAPTER_ID__SUBSYSTEM_VENDOR_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_ADAPTER_ID__SUBSYSTEM_ID__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_ADAPTER_ID__SUBSYSTEM_VENDOR_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF1_ADAPTER_ID__SUBSYSTEM_ID_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF1_ROM_BASE_ADDR
+#define BIF_CFG_DEV0_EPF1_ROM_BASE_ADDR__ROM_ENABLE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_ROM_BASE_ADDR__ROM_VALIDATION_STATUS__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF1_ROM_BASE_ADDR__ROM_VALIDATION_DETAILS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_ROM_BASE_ADDR__BASE_ADDR__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF1_ROM_BASE_ADDR__ROM_ENABLE_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF1_ROM_BASE_ADDR__ROM_VALIDATION_STATUS_MASK 0x0000000EL
+#define BIF_CFG_DEV0_EPF1_ROM_BASE_ADDR__ROM_VALIDATION_DETAILS_MASK 0x000000F0L
+#define BIF_CFG_DEV0_EPF1_ROM_BASE_ADDR__BASE_ADDR_MASK 0xFFFFF800L
+//BIF_CFG_DEV0_EPF1_CAP_PTR
+#define BIF_CFG_DEV0_EPF1_CAP_PTR__CAP_PTR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_CAP_PTR__CAP_PTR_MASK 0xFFL
+//BIF_CFG_DEV0_EPF1_INTERRUPT_LINE
+#define BIF_CFG_DEV0_EPF1_INTERRUPT_LINE__INTERRUPT_LINE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_INTERRUPT_LINE__INTERRUPT_LINE_MASK 0xFFL
+//BIF_CFG_DEV0_EPF1_INTERRUPT_PIN
+#define BIF_CFG_DEV0_EPF1_INTERRUPT_PIN__INTERRUPT_PIN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_INTERRUPT_PIN__INTERRUPT_PIN_MASK 0xFFL
+//BIF_CFG_DEV0_EPF1_MIN_GRANT
+#define BIF_CFG_DEV0_EPF1_MIN_GRANT__MIN_GNT__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_MIN_GRANT__MIN_GNT_MASK 0xFFL
+//BIF_CFG_DEV0_EPF1_MAX_LATENCY
+#define BIF_CFG_DEV0_EPF1_MAX_LATENCY__MAX_LAT__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_MAX_LATENCY__MAX_LAT_MASK 0xFFL
+//BIF_CFG_DEV0_EPF1_VENDOR_CAP_LIST
+#define BIF_CFG_DEV0_EPF1_VENDOR_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_VENDOR_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_VENDOR_CAP_LIST__LENGTH__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_VENDOR_CAP_LIST__CAP_ID_MASK 0x000000FFL
+#define BIF_CFG_DEV0_EPF1_VENDOR_CAP_LIST__NEXT_PTR_MASK 0x0000FF00L
+#define BIF_CFG_DEV0_EPF1_VENDOR_CAP_LIST__LENGTH_MASK 0x00FF0000L
+//BIF_CFG_DEV0_EPF1_ADAPTER_ID_W
+#define BIF_CFG_DEV0_EPF1_ADAPTER_ID_W__SUBSYSTEM_VENDOR_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_ADAPTER_ID_W__SUBSYSTEM_ID__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_ADAPTER_ID_W__SUBSYSTEM_VENDOR_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF1_ADAPTER_ID_W__SUBSYSTEM_ID_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF1_PMI_CAP_LIST
+#define BIF_CFG_DEV0_EPF1_PMI_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PMI_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_PMI_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_EPF1_PMI_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF1_PMI_CAP
+#define BIF_CFG_DEV0_EPF1_PMI_CAP__VERSION__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PMI_CAP__PME_CLOCK__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF1_PMI_CAP__IMMEDIATE_READINESS_ON_RETURN_TO_D0__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_PMI_CAP__DEV_SPECIFIC_INIT__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF1_PMI_CAP__AUX_CURRENT__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF1_PMI_CAP__D1_SUPPORT__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF1_PMI_CAP__D2_SUPPORT__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF1_PMI_CAP__PME_SUPPORT__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF1_PMI_CAP__VERSION_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF1_PMI_CAP__PME_CLOCK_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF1_PMI_CAP__IMMEDIATE_READINESS_ON_RETURN_TO_D0_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF1_PMI_CAP__DEV_SPECIFIC_INIT_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF1_PMI_CAP__AUX_CURRENT_MASK 0x01C0L
+#define BIF_CFG_DEV0_EPF1_PMI_CAP__D1_SUPPORT_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF1_PMI_CAP__D2_SUPPORT_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF1_PMI_CAP__PME_SUPPORT_MASK 0xF800L
+//BIF_CFG_DEV0_EPF1_PMI_STATUS_CNTL
+#define BIF_CFG_DEV0_EPF1_PMI_STATUS_CNTL__POWER_STATE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PMI_STATUS_CNTL__NO_SOFT_RESET__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF1_PMI_STATUS_CNTL__PME_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_PMI_STATUS_CNTL__DATA_SELECT__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF1_PMI_STATUS_CNTL__DATA_SCALE__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF1_PMI_STATUS_CNTL__PME_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF1_PMI_STATUS_CNTL__B2_B3_SUPPORT__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF1_PMI_STATUS_CNTL__BUS_PWR_EN__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF1_PMI_STATUS_CNTL__PMI_DATA__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF1_PMI_STATUS_CNTL__POWER_STATE_MASK 0x00000003L
+#define BIF_CFG_DEV0_EPF1_PMI_STATUS_CNTL__NO_SOFT_RESET_MASK 0x00000008L
+#define BIF_CFG_DEV0_EPF1_PMI_STATUS_CNTL__PME_EN_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF1_PMI_STATUS_CNTL__DATA_SELECT_MASK 0x00001E00L
+#define BIF_CFG_DEV0_EPF1_PMI_STATUS_CNTL__DATA_SCALE_MASK 0x00006000L
+#define BIF_CFG_DEV0_EPF1_PMI_STATUS_CNTL__PME_STATUS_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF1_PMI_STATUS_CNTL__B2_B3_SUPPORT_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF1_PMI_STATUS_CNTL__BUS_PWR_EN_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF1_PMI_STATUS_CNTL__PMI_DATA_MASK 0xFF000000L
+//BIF_CFG_DEV0_EPF1_PCIE_CAP_LIST
+#define BIF_CFG_DEV0_EPF1_PCIE_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_PCIE_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_EPF1_PCIE_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF1_PCIE_CAP
+#define BIF_CFG_DEV0_EPF1_PCIE_CAP__VERSION__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_CAP__DEVICE_TYPE__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_PCIE_CAP__SLOT_IMPLEMENTED__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_PCIE_CAP__INT_MESSAGE_NUM__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF1_PCIE_CAP__VERSION_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF1_PCIE_CAP__DEVICE_TYPE_MASK 0x00F0L
+#define BIF_CFG_DEV0_EPF1_PCIE_CAP__SLOT_IMPLEMENTED_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF1_PCIE_CAP__INT_MESSAGE_NUM_MASK 0x3E00L
+//BIF_CFG_DEV0_EPF1_DEVICE_CAP
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP__MAX_PAYLOAD_SUPPORT__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP__PHANTOM_FUNC__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP__EXTENDED_TAG__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP__L0S_ACCEPTABLE_LATENCY__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP__L1_ACCEPTABLE_LATENCY__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP__ROLE_BASED_ERR_REPORTING__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP__ERR_COR_SUBCLASS_CAPABLE__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP__CAPTURED_SLOT_POWER_LIMIT__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP__CAPTURED_SLOT_POWER_SCALE__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP__FLR_CAPABLE__SHIFT 0x1c
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP__MAX_PAYLOAD_SUPPORT_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP__PHANTOM_FUNC_MASK 0x00000018L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP__EXTENDED_TAG_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP__L0S_ACCEPTABLE_LATENCY_MASK 0x000001C0L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP__L1_ACCEPTABLE_LATENCY_MASK 0x00000E00L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP__ROLE_BASED_ERR_REPORTING_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP__ERR_COR_SUBCLASS_CAPABLE_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP__CAPTURED_SLOT_POWER_LIMIT_MASK 0x03FC0000L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP__CAPTURED_SLOT_POWER_SCALE_MASK 0x0C000000L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP__FLR_CAPABLE_MASK 0x10000000L
+//BIF_CFG_DEV0_EPF1_DEVICE_CNTL
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL__CORR_ERR_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL__NON_FATAL_ERR_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL__FATAL_ERR_EN__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL__USR_REPORT_EN__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL__RELAXED_ORD_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL__MAX_PAYLOAD_SIZE__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL__EXTENDED_TAG_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL__PHANTOM_FUNC_EN__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL__AUX_POWER_PM_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL__NO_SNOOP_EN__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL__MAX_READ_REQUEST_SIZE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL__INITIATE_FLR__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL__CORR_ERR_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL__NON_FATAL_ERR_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL__FATAL_ERR_EN_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL__USR_REPORT_EN_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL__RELAXED_ORD_EN_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL__MAX_PAYLOAD_SIZE_MASK 0x00E0L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL__EXTENDED_TAG_EN_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL__PHANTOM_FUNC_EN_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL__AUX_POWER_PM_EN_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL__NO_SNOOP_EN_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL__MAX_READ_REQUEST_SIZE_MASK 0x7000L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL__INITIATE_FLR_MASK 0x8000L
+//BIF_CFG_DEV0_EPF1_DEVICE_STATUS
+#define BIF_CFG_DEV0_EPF1_DEVICE_STATUS__CORR_ERR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_DEVICE_STATUS__NON_FATAL_ERR__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF1_DEVICE_STATUS__FATAL_ERR__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF1_DEVICE_STATUS__USR_DETECTED__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF1_DEVICE_STATUS__AUX_PWR__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_DEVICE_STATUS__TRANSACTIONS_PEND__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF1_DEVICE_STATUS__EMER_POWER_REDUCTION_DETECTED__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF1_DEVICE_STATUS__CORR_ERR_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF1_DEVICE_STATUS__NON_FATAL_ERR_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF1_DEVICE_STATUS__FATAL_ERR_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF1_DEVICE_STATUS__USR_DETECTED_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF1_DEVICE_STATUS__AUX_PWR_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF1_DEVICE_STATUS__TRANSACTIONS_PEND_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF1_DEVICE_STATUS__EMER_POWER_REDUCTION_DETECTED_MASK 0x0040L
+//BIF_CFG_DEV0_EPF1_LINK_CAP
+#define BIF_CFG_DEV0_EPF1_LINK_CAP__LINK_SPEED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_LINK_CAP__LINK_WIDTH__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_LINK_CAP__PM_SUPPORT__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF1_LINK_CAP__L0S_EXIT_LATENCY__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF1_LINK_CAP__L1_EXIT_LATENCY__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF1_LINK_CAP__CLOCK_POWER_MANAGEMENT__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF1_LINK_CAP__SURPRISE_DOWN_ERR_REPORTING__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF1_LINK_CAP__DL_ACTIVE_REPORTING_CAPABLE__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF1_LINK_CAP__LINK_BW_NOTIFICATION_CAP__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF1_LINK_CAP__ASPM_OPTIONALITY_COMPLIANCE__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF1_LINK_CAP__PORT_NUMBER__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF1_LINK_CAP__LINK_SPEED_MASK 0x0000000FL
+#define BIF_CFG_DEV0_EPF1_LINK_CAP__LINK_WIDTH_MASK 0x000003F0L
+#define BIF_CFG_DEV0_EPF1_LINK_CAP__PM_SUPPORT_MASK 0x00000C00L
+#define BIF_CFG_DEV0_EPF1_LINK_CAP__L0S_EXIT_LATENCY_MASK 0x00007000L
+#define BIF_CFG_DEV0_EPF1_LINK_CAP__L1_EXIT_LATENCY_MASK 0x00038000L
+#define BIF_CFG_DEV0_EPF1_LINK_CAP__CLOCK_POWER_MANAGEMENT_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF1_LINK_CAP__SURPRISE_DOWN_ERR_REPORTING_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF1_LINK_CAP__DL_ACTIVE_REPORTING_CAPABLE_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF1_LINK_CAP__LINK_BW_NOTIFICATION_CAP_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF1_LINK_CAP__ASPM_OPTIONALITY_COMPLIANCE_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF1_LINK_CAP__PORT_NUMBER_MASK 0xFF000000L
+//BIF_CFG_DEV0_EPF1_LINK_CNTL
+#define BIF_CFG_DEV0_EPF1_LINK_CNTL__PM_CONTROL__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_LINK_CNTL__PTM_PROP_DELAY_ADAPT_INTER_B__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF1_LINK_CNTL__READ_CPL_BOUNDARY__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF1_LINK_CNTL__LINK_DIS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_LINK_CNTL__RETRAIN_LINK__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF1_LINK_CNTL__COMMON_CLOCK_CFG__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF1_LINK_CNTL__EXTENDED_SYNC__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF1_LINK_CNTL__CLOCK_POWER_MANAGEMENT_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_LINK_CNTL__HW_AUTONOMOUS_WIDTH_DISABLE__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF1_LINK_CNTL__LINK_BW_MANAGEMENT_INT_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF1_LINK_CNTL__LINK_AUTONOMOUS_BW_INT_EN__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF1_LINK_CNTL__DRS_SIGNALING_CONTROL__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF1_LINK_CNTL__PM_CONTROL_MASK 0x0003L
+#define BIF_CFG_DEV0_EPF1_LINK_CNTL__PTM_PROP_DELAY_ADAPT_INTER_B_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF1_LINK_CNTL__READ_CPL_BOUNDARY_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF1_LINK_CNTL__LINK_DIS_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF1_LINK_CNTL__RETRAIN_LINK_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF1_LINK_CNTL__COMMON_CLOCK_CFG_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF1_LINK_CNTL__EXTENDED_SYNC_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF1_LINK_CNTL__CLOCK_POWER_MANAGEMENT_EN_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF1_LINK_CNTL__HW_AUTONOMOUS_WIDTH_DISABLE_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF1_LINK_CNTL__LINK_BW_MANAGEMENT_INT_EN_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF1_LINK_CNTL__LINK_AUTONOMOUS_BW_INT_EN_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF1_LINK_CNTL__DRS_SIGNALING_CONTROL_MASK 0xC000L
+//BIF_CFG_DEV0_EPF1_LINK_STATUS
+#define BIF_CFG_DEV0_EPF1_LINK_STATUS__CURRENT_LINK_SPEED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_LINK_STATUS__NEGOTIATED_LINK_WIDTH__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_LINK_STATUS__LINK_TRAINING__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF1_LINK_STATUS__SLOT_CLOCK_CFG__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF1_LINK_STATUS__DL_ACTIVE__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF1_LINK_STATUS__LINK_BW_MANAGEMENT_STATUS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF1_LINK_STATUS__LINK_AUTONOMOUS_BW_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF1_LINK_STATUS__CURRENT_LINK_SPEED_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF1_LINK_STATUS__NEGOTIATED_LINK_WIDTH_MASK 0x03F0L
+#define BIF_CFG_DEV0_EPF1_LINK_STATUS__LINK_TRAINING_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF1_LINK_STATUS__SLOT_CLOCK_CFG_MASK 0x1000L
+#define BIF_CFG_DEV0_EPF1_LINK_STATUS__DL_ACTIVE_MASK 0x2000L
+#define BIF_CFG_DEV0_EPF1_LINK_STATUS__LINK_BW_MANAGEMENT_STATUS_MASK 0x4000L
+#define BIF_CFG_DEV0_EPF1_LINK_STATUS__LINK_AUTONOMOUS_BW_STATUS_MASK 0x8000L
+//BIF_CFG_DEV0_EPF1_DEVICE_CAP2
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP2__CPL_TIMEOUT_RANGE_SUPPORTED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP2__CPL_TIMEOUT_DIS_SUPPORTED__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP2__ARI_FORWARDING_SUPPORTED__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP2__ATOMICOP_ROUTING_SUPPORTED__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP2__ATOMICOP_32CMPLT_SUPPORTED__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP2__ATOMICOP_64CMPLT_SUPPORTED__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP2__CAS128_CMPLT_SUPPORTED__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP2__NO_RO_ENABLED_P2P_PASSING__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP2__LTR_SUPPORTED__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP2__TPH_CPLR_SUPPORTED__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP2__LN_SYSTEM_CLS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP2__TEN_BIT_TAG_COMPLETER_SUPPORTED__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP2__TEN_BIT_TAG_REQUESTER_SUPPORTED__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP2__OBFF_SUPPORTED__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP2__EXTENDED_FMT_FIELD_SUPPORTED__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP2__END_END_TLP_PREFIX_SUPPORTED__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP2__MAX_END_END_TLP_PREFIXES__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP2__EMER_POWER_REDUCTION_SUPPORTED__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP2__EMER_POWER_REDUCTION_INIT_REQ__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP2__FRS_SUPPORTED__SHIFT 0x1f
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP2__CPL_TIMEOUT_RANGE_SUPPORTED_MASK 0x0000000FL
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP2__CPL_TIMEOUT_DIS_SUPPORTED_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP2__ARI_FORWARDING_SUPPORTED_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP2__ATOMICOP_ROUTING_SUPPORTED_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP2__ATOMICOP_32CMPLT_SUPPORTED_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP2__ATOMICOP_64CMPLT_SUPPORTED_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP2__CAS128_CMPLT_SUPPORTED_MASK 0x00000200L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP2__NO_RO_ENABLED_P2P_PASSING_MASK 0x00000400L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP2__LTR_SUPPORTED_MASK 0x00000800L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP2__TPH_CPLR_SUPPORTED_MASK 0x00003000L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP2__LN_SYSTEM_CLS_MASK 0x0000C000L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP2__TEN_BIT_TAG_COMPLETER_SUPPORTED_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP2__TEN_BIT_TAG_REQUESTER_SUPPORTED_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP2__OBFF_SUPPORTED_MASK 0x000C0000L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP2__EXTENDED_FMT_FIELD_SUPPORTED_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP2__END_END_TLP_PREFIX_SUPPORTED_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP2__MAX_END_END_TLP_PREFIXES_MASK 0x00C00000L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP2__EMER_POWER_REDUCTION_SUPPORTED_MASK 0x03000000L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP2__EMER_POWER_REDUCTION_INIT_REQ_MASK 0x04000000L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CAP2__FRS_SUPPORTED_MASK 0x80000000L
+//BIF_CFG_DEV0_EPF1_DEVICE_CNTL2
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL2__CPL_TIMEOUT_VALUE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL2__CPL_TIMEOUT_DIS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL2__ARI_FORWARDING_EN__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL2__ATOMICOP_REQUEST_EN__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL2__ATOMICOP_EGRESS_BLOCKING__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL2__IDO_REQUEST_ENABLE__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL2__IDO_COMPLETION_ENABLE__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL2__LTR_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL2__EMER_POWER_REDUCTION_REQUEST__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL2__TEN_BIT_TAG_REQUESTER_ENABLE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL2__OBFF_EN__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL2__END_END_TLP_PREFIX_BLOCKING__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL2__CPL_TIMEOUT_VALUE_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL2__CPL_TIMEOUT_DIS_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL2__ARI_FORWARDING_EN_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL2__ATOMICOP_REQUEST_EN_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL2__ATOMICOP_EGRESS_BLOCKING_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL2__IDO_REQUEST_ENABLE_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL2__IDO_COMPLETION_ENABLE_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL2__LTR_EN_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL2__EMER_POWER_REDUCTION_REQUEST_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL2__TEN_BIT_TAG_REQUESTER_ENABLE_MASK 0x1000L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL2__OBFF_EN_MASK 0x6000L
+#define BIF_CFG_DEV0_EPF1_DEVICE_CNTL2__END_END_TLP_PREFIX_BLOCKING_MASK 0x8000L
+//BIF_CFG_DEV0_EPF1_DEVICE_STATUS2
+#define BIF_CFG_DEV0_EPF1_DEVICE_STATUS2__RESERVED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_DEVICE_STATUS2__RESERVED_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF1_LINK_CAP2
+#define BIF_CFG_DEV0_EPF1_LINK_CAP2__SUPPORTED_LINK_SPEED__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF1_LINK_CAP2__CROSSLINK_SUPPORTED__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_LINK_CAP2__LOWER_SKP_OS_GEN_SUPPORT__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF1_LINK_CAP2__LOWER_SKP_OS_RCV_SUPPORT__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_LINK_CAP2__RTM1_PRESENCE_DET_SUPPORT__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF1_LINK_CAP2__RTM2_PRESENCE_DET_SUPPORT__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF1_LINK_CAP2__DRS_SUPPORTED__SHIFT 0x1f
+#define BIF_CFG_DEV0_EPF1_LINK_CAP2__SUPPORTED_LINK_SPEED_MASK 0x000000FEL
+#define BIF_CFG_DEV0_EPF1_LINK_CAP2__CROSSLINK_SUPPORTED_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF1_LINK_CAP2__LOWER_SKP_OS_GEN_SUPPORT_MASK 0x0000FE00L
+#define BIF_CFG_DEV0_EPF1_LINK_CAP2__LOWER_SKP_OS_RCV_SUPPORT_MASK 0x007F0000L
+#define BIF_CFG_DEV0_EPF1_LINK_CAP2__RTM1_PRESENCE_DET_SUPPORT_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF1_LINK_CAP2__RTM2_PRESENCE_DET_SUPPORT_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF1_LINK_CAP2__DRS_SUPPORTED_MASK 0x80000000L
+//BIF_CFG_DEV0_EPF1_LINK_CNTL2
+#define BIF_CFG_DEV0_EPF1_LINK_CNTL2__TARGET_LINK_SPEED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_LINK_CNTL2__ENTER_COMPLIANCE__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_LINK_CNTL2__HW_AUTONOMOUS_SPEED_DISABLE__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF1_LINK_CNTL2__SELECTABLE_DEEMPHASIS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF1_LINK_CNTL2__XMIT_MARGIN__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF1_LINK_CNTL2__ENTER_MOD_COMPLIANCE__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF1_LINK_CNTL2__COMPLIANCE_SOS__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF1_LINK_CNTL2__COMPLIANCE_DEEMPHASIS__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF1_LINK_CNTL2__TARGET_LINK_SPEED_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF1_LINK_CNTL2__ENTER_COMPLIANCE_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF1_LINK_CNTL2__HW_AUTONOMOUS_SPEED_DISABLE_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF1_LINK_CNTL2__SELECTABLE_DEEMPHASIS_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF1_LINK_CNTL2__XMIT_MARGIN_MASK 0x0380L
+#define BIF_CFG_DEV0_EPF1_LINK_CNTL2__ENTER_MOD_COMPLIANCE_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF1_LINK_CNTL2__COMPLIANCE_SOS_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF1_LINK_CNTL2__COMPLIANCE_DEEMPHASIS_MASK 0xF000L
+//BIF_CFG_DEV0_EPF1_LINK_STATUS2
+#define BIF_CFG_DEV0_EPF1_LINK_STATUS2__CUR_DEEMPHASIS_LEVEL__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_LINK_STATUS2__EQUALIZATION_COMPLETE_8GT__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF1_LINK_STATUS2__EQUALIZATION_PHASE1_SUCCESS_8GT__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF1_LINK_STATUS2__EQUALIZATION_PHASE2_SUCCESS_8GT__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF1_LINK_STATUS2__EQUALIZATION_PHASE3_SUCCESS_8GT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_LINK_STATUS2__LINK_EQUALIZATION_REQUEST_8GT__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF1_LINK_STATUS2__RTM1_PRESENCE_DET__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF1_LINK_STATUS2__RTM2_PRESENCE_DET__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF1_LINK_STATUS2__CROSSLINK_RESOLUTION__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_LINK_STATUS2__DOWNSTREAM_COMPONENT_PRESENCE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF1_LINK_STATUS2__DRS_MESSAGE_RECEIVED__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF1_LINK_STATUS2__CUR_DEEMPHASIS_LEVEL_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF1_LINK_STATUS2__EQUALIZATION_COMPLETE_8GT_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF1_LINK_STATUS2__EQUALIZATION_PHASE1_SUCCESS_8GT_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF1_LINK_STATUS2__EQUALIZATION_PHASE2_SUCCESS_8GT_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF1_LINK_STATUS2__EQUALIZATION_PHASE3_SUCCESS_8GT_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF1_LINK_STATUS2__LINK_EQUALIZATION_REQUEST_8GT_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF1_LINK_STATUS2__RTM1_PRESENCE_DET_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF1_LINK_STATUS2__RTM2_PRESENCE_DET_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF1_LINK_STATUS2__CROSSLINK_RESOLUTION_MASK 0x0300L
+#define BIF_CFG_DEV0_EPF1_LINK_STATUS2__DOWNSTREAM_COMPONENT_PRESENCE_MASK 0x7000L
+#define BIF_CFG_DEV0_EPF1_LINK_STATUS2__DRS_MESSAGE_RECEIVED_MASK 0x8000L
+//BIF_CFG_DEV0_EPF1_MSI_CAP_LIST
+#define BIF_CFG_DEV0_EPF1_MSI_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_MSI_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_MSI_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_EPF1_MSI_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF1_MSI_MSG_CNTL
+#define BIF_CFG_DEV0_EPF1_MSI_MSG_CNTL__MSI_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_MSI_MSG_CNTL__MSI_MULTI_CAP__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF1_MSI_MSG_CNTL__MSI_MULTI_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_MSI_MSG_CNTL__MSI_64BIT__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF1_MSI_MSG_CNTL__MSI_PERVECTOR_MASKING_CAP__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_CAP__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF1_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF1_MSI_MSG_CNTL__MSI_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF1_MSI_MSG_CNTL__MSI_MULTI_CAP_MASK 0x000EL
+#define BIF_CFG_DEV0_EPF1_MSI_MSG_CNTL__MSI_MULTI_EN_MASK 0x0070L
+#define BIF_CFG_DEV0_EPF1_MSI_MSG_CNTL__MSI_64BIT_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF1_MSI_MSG_CNTL__MSI_PERVECTOR_MASKING_CAP_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF1_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_CAP_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF1_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_EN_MASK 0x0400L
+//BIF_CFG_DEV0_EPF1_MSI_MSG_ADDR_LO
+#define BIF_CFG_DEV0_EPF1_MSI_MSG_ADDR_LO__MSI_MSG_ADDR_LO__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF1_MSI_MSG_ADDR_LO__MSI_MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//BIF_CFG_DEV0_EPF1_MSI_MSG_ADDR_HI
+#define BIF_CFG_DEV0_EPF1_MSI_MSG_ADDR_HI__MSI_MSG_ADDR_HI__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_MSI_MSG_ADDR_HI__MSI_MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF1_MSI_MSG_DATA
+#define BIF_CFG_DEV0_EPF1_MSI_MSG_DATA__MSI_DATA__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_MSI_MSG_DATA__MSI_DATA_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF1_MSI_EXT_MSG_DATA
+#define BIF_CFG_DEV0_EPF1_MSI_EXT_MSG_DATA__MSI_EXT_DATA__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_MSI_EXT_MSG_DATA__MSI_EXT_DATA_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF1_MSI_MASK
+#define BIF_CFG_DEV0_EPF1_MSI_MASK__MSI_MASK__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_MSI_MASK__MSI_MASK_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF1_MSI_MSG_DATA_64
+#define BIF_CFG_DEV0_EPF1_MSI_MSG_DATA_64__MSI_DATA_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_MSI_MSG_DATA_64__MSI_DATA_64_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF1_MSI_EXT_MSG_DATA_64
+#define BIF_CFG_DEV0_EPF1_MSI_EXT_MSG_DATA_64__MSI_EXT_DATA_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_MSI_EXT_MSG_DATA_64__MSI_EXT_DATA_64_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF1_MSI_MASK_64
+#define BIF_CFG_DEV0_EPF1_MSI_MASK_64__MSI_MASK_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_MSI_MASK_64__MSI_MASK_64_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF1_MSI_PENDING
+#define BIF_CFG_DEV0_EPF1_MSI_PENDING__MSI_PENDING__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_MSI_PENDING__MSI_PENDING_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF1_MSI_PENDING_64
+#define BIF_CFG_DEV0_EPF1_MSI_PENDING_64__MSI_PENDING_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_MSI_PENDING_64__MSI_PENDING_64_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF1_MSIX_CAP_LIST
+#define BIF_CFG_DEV0_EPF1_MSIX_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_MSIX_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_MSIX_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_EPF1_MSIX_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF1_MSIX_MSG_CNTL
+#define BIF_CFG_DEV0_EPF1_MSIX_MSG_CNTL__MSIX_TABLE_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_MSIX_MSG_CNTL__MSIX_FUNC_MASK__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF1_MSIX_MSG_CNTL__MSIX_EN__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF1_MSIX_MSG_CNTL__MSIX_TABLE_SIZE_MASK 0x07FFL
+#define BIF_CFG_DEV0_EPF1_MSIX_MSG_CNTL__MSIX_FUNC_MASK_MASK 0x4000L
+#define BIF_CFG_DEV0_EPF1_MSIX_MSG_CNTL__MSIX_EN_MASK 0x8000L
+//BIF_CFG_DEV0_EPF1_MSIX_TABLE
+#define BIF_CFG_DEV0_EPF1_MSIX_TABLE__MSIX_TABLE_BIR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_MSIX_TABLE__MSIX_TABLE_OFFSET__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF1_MSIX_TABLE__MSIX_TABLE_BIR_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF1_MSIX_TABLE__MSIX_TABLE_OFFSET_MASK 0xFFFFFFF8L
+//BIF_CFG_DEV0_EPF1_MSIX_PBA
+#define BIF_CFG_DEV0_EPF1_MSIX_PBA__MSIX_PBA_BIR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_MSIX_PBA__MSIX_PBA_OFFSET__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF1_MSIX_PBA__MSIX_PBA_BIR_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF1_MSIX_PBA__MSIX_PBA_OFFSET_MASK 0xFFFFFFF8L
+//BIF_CFG_DEV0_EPF1_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF1_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF1_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF1_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF1_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF1_PCIE_VENDOR_SPECIFIC_HDR
+#define BIF_CFG_DEV0_EPF1_PCIE_VENDOR_SPECIFIC_HDR__VSEC_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_VENDOR_SPECIFIC_HDR__VSEC_REV__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_PCIE_VENDOR_SPECIFIC_HDR__VSEC_LENGTH__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF1_PCIE_VENDOR_SPECIFIC_HDR__VSEC_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF1_PCIE_VENDOR_SPECIFIC_HDR__VSEC_REV_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF1_PCIE_VENDOR_SPECIFIC_HDR__VSEC_LENGTH_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF1_PCIE_VENDOR_SPECIFIC1
+#define BIF_CFG_DEV0_EPF1_PCIE_VENDOR_SPECIFIC1__SCRATCH__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_VENDOR_SPECIFIC1__SCRATCH_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF1_PCIE_VENDOR_SPECIFIC2
+#define BIF_CFG_DEV0_EPF1_PCIE_VENDOR_SPECIFIC2__SCRATCH__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_VENDOR_SPECIFIC2__SCRATCH_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF1_PCIE_ADV_ERR_RPT_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF1_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF1_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF1_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF1_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_STATUS
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_STATUS__DLP_ERR_STATUS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_STATUS__SURPDN_ERR_STATUS__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_STATUS__PSN_ERR_STATUS__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_STATUS__FC_ERR_STATUS__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_STATUS__CPL_TIMEOUT_STATUS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_STATUS__CPL_ABORT_ERR_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_STATUS__UNEXP_CPL_STATUS__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_STATUS__RCV_OVFL_STATUS__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_STATUS__MAL_TLP_STATUS__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_STATUS__ECRC_ERR_STATUS__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_STATUS__UNSUPP_REQ_ERR_STATUS__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_STATUS__ACS_VIOLATION_STATUS__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_STATUS__UNCORR_INT_ERR_STATUS__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_STATUS__MC_BLOCKED_TLP_STATUS__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_STATUS__ATOMICOP_EGRESS_BLOCKED_STATUS__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_STATUS__TLP_PREFIX_BLOCKED_ERR_STATUS__SHIFT 0x19
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_STATUS__POISONED_TLP_EGRESS_BLOCKED_STATUS__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_STATUS__DLP_ERR_STATUS_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_STATUS__SURPDN_ERR_STATUS_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_STATUS__PSN_ERR_STATUS_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_STATUS__FC_ERR_STATUS_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_STATUS__CPL_TIMEOUT_STATUS_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_STATUS__CPL_ABORT_ERR_STATUS_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_STATUS__UNEXP_CPL_STATUS_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_STATUS__RCV_OVFL_STATUS_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_STATUS__MAL_TLP_STATUS_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_STATUS__ECRC_ERR_STATUS_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_STATUS__UNSUPP_REQ_ERR_STATUS_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_STATUS__ACS_VIOLATION_STATUS_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_STATUS__UNCORR_INT_ERR_STATUS_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_STATUS__MC_BLOCKED_TLP_STATUS_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_STATUS__ATOMICOP_EGRESS_BLOCKED_STATUS_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_STATUS__TLP_PREFIX_BLOCKED_ERR_STATUS_MASK 0x02000000L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_STATUS__POISONED_TLP_EGRESS_BLOCKED_STATUS_MASK 0x04000000L
+//BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_MASK
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_MASK__DLP_ERR_MASK__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_MASK__SURPDN_ERR_MASK__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_MASK__PSN_ERR_MASK__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_MASK__FC_ERR_MASK__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_MASK__CPL_TIMEOUT_MASK__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_MASK__CPL_ABORT_ERR_MASK__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_MASK__UNEXP_CPL_MASK__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_MASK__RCV_OVFL_MASK__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_MASK__MAL_TLP_MASK__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_MASK__ECRC_ERR_MASK__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_MASK__UNSUPP_REQ_ERR_MASK__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_MASK__ACS_VIOLATION_MASK__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_MASK__UNCORR_INT_ERR_MASK__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_MASK__MC_BLOCKED_TLP_MASK__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_MASK__ATOMICOP_EGRESS_BLOCKED_MASK__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_MASK__TLP_PREFIX_BLOCKED_ERR_MASK__SHIFT 0x19
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_MASK__POISONED_TLP_EGRESS_BLOCKED_MASK__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_MASK__DLP_ERR_MASK_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_MASK__SURPDN_ERR_MASK_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_MASK__PSN_ERR_MASK_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_MASK__FC_ERR_MASK_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_MASK__CPL_TIMEOUT_MASK_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_MASK__CPL_ABORT_ERR_MASK_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_MASK__UNEXP_CPL_MASK_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_MASK__RCV_OVFL_MASK_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_MASK__MAL_TLP_MASK_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_MASK__ECRC_ERR_MASK_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_MASK__UNSUPP_REQ_ERR_MASK_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_MASK__ACS_VIOLATION_MASK_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_MASK__UNCORR_INT_ERR_MASK_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_MASK__MC_BLOCKED_TLP_MASK_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_MASK__ATOMICOP_EGRESS_BLOCKED_MASK_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_MASK__TLP_PREFIX_BLOCKED_ERR_MASK_MASK 0x02000000L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_MASK__POISONED_TLP_EGRESS_BLOCKED_MASK_MASK 0x04000000L
+//BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_SEVERITY
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_SEVERITY__DLP_ERR_SEVERITY__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_SEVERITY__SURPDN_ERR_SEVERITY__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_SEVERITY__PSN_ERR_SEVERITY__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_SEVERITY__FC_ERR_SEVERITY__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_SEVERITY__CPL_TIMEOUT_SEVERITY__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_SEVERITY__CPL_ABORT_ERR_SEVERITY__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_SEVERITY__UNEXP_CPL_SEVERITY__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_SEVERITY__RCV_OVFL_SEVERITY__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_SEVERITY__MAL_TLP_SEVERITY__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_SEVERITY__ECRC_ERR_SEVERITY__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_SEVERITY__UNSUPP_REQ_ERR_SEVERITY__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_SEVERITY__ACS_VIOLATION_SEVERITY__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_SEVERITY__UNCORR_INT_ERR_SEVERITY__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_SEVERITY__MC_BLOCKED_TLP_SEVERITY__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_SEVERITY__ATOMICOP_EGRESS_BLOCKED_SEVERITY__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_SEVERITY__TLP_PREFIX_BLOCKED_ERR_SEVERITY__SHIFT 0x19
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_SEVERITY__POISONED_TLP_EGRESS_BLOCKED_SEVERITY__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_SEVERITY__DLP_ERR_SEVERITY_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_SEVERITY__SURPDN_ERR_SEVERITY_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_SEVERITY__PSN_ERR_SEVERITY_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_SEVERITY__FC_ERR_SEVERITY_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_SEVERITY__CPL_TIMEOUT_SEVERITY_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_SEVERITY__CPL_ABORT_ERR_SEVERITY_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_SEVERITY__UNEXP_CPL_SEVERITY_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_SEVERITY__RCV_OVFL_SEVERITY_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_SEVERITY__MAL_TLP_SEVERITY_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_SEVERITY__ECRC_ERR_SEVERITY_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_SEVERITY__UNSUPP_REQ_ERR_SEVERITY_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_SEVERITY__ACS_VIOLATION_SEVERITY_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_SEVERITY__UNCORR_INT_ERR_SEVERITY_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_SEVERITY__MC_BLOCKED_TLP_SEVERITY_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_SEVERITY__ATOMICOP_EGRESS_BLOCKED_SEVERITY_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_SEVERITY__TLP_PREFIX_BLOCKED_ERR_SEVERITY_MASK 0x02000000L
+#define BIF_CFG_DEV0_EPF1_PCIE_UNCORR_ERR_SEVERITY__POISONED_TLP_EGRESS_BLOCKED_SEVERITY_MASK 0x04000000L
+//BIF_CFG_DEV0_EPF1_PCIE_CORR_ERR_STATUS
+#define BIF_CFG_DEV0_EPF1_PCIE_CORR_ERR_STATUS__RCV_ERR_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_CORR_ERR_STATUS__BAD_TLP_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF1_PCIE_CORR_ERR_STATUS__BAD_DLLP_STATUS__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF1_PCIE_CORR_ERR_STATUS__REPLAY_NUM_ROLLOVER_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_PCIE_CORR_ERR_STATUS__REPLAY_TIMER_TIMEOUT_STATUS__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF1_PCIE_CORR_ERR_STATUS__ADVISORY_NONFATAL_ERR_STATUS__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF1_PCIE_CORR_ERR_STATUS__CORR_INT_ERR_STATUS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF1_PCIE_CORR_ERR_STATUS__HDR_LOG_OVFL_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF1_PCIE_CORR_ERR_STATUS__RCV_ERR_STATUS_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF1_PCIE_CORR_ERR_STATUS__BAD_TLP_STATUS_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF1_PCIE_CORR_ERR_STATUS__BAD_DLLP_STATUS_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF1_PCIE_CORR_ERR_STATUS__REPLAY_NUM_ROLLOVER_STATUS_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF1_PCIE_CORR_ERR_STATUS__REPLAY_TIMER_TIMEOUT_STATUS_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF1_PCIE_CORR_ERR_STATUS__ADVISORY_NONFATAL_ERR_STATUS_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF1_PCIE_CORR_ERR_STATUS__CORR_INT_ERR_STATUS_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF1_PCIE_CORR_ERR_STATUS__HDR_LOG_OVFL_STATUS_MASK 0x00008000L
+//BIF_CFG_DEV0_EPF1_PCIE_CORR_ERR_MASK
+#define BIF_CFG_DEV0_EPF1_PCIE_CORR_ERR_MASK__RCV_ERR_MASK__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_CORR_ERR_MASK__BAD_TLP_MASK__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF1_PCIE_CORR_ERR_MASK__BAD_DLLP_MASK__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF1_PCIE_CORR_ERR_MASK__REPLAY_NUM_ROLLOVER_MASK__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_PCIE_CORR_ERR_MASK__REPLAY_TIMER_TIMEOUT_MASK__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF1_PCIE_CORR_ERR_MASK__ADVISORY_NONFATAL_ERR_MASK__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF1_PCIE_CORR_ERR_MASK__CORR_INT_ERR_MASK__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF1_PCIE_CORR_ERR_MASK__HDR_LOG_OVFL_MASK__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF1_PCIE_CORR_ERR_MASK__RCV_ERR_MASK_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF1_PCIE_CORR_ERR_MASK__BAD_TLP_MASK_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF1_PCIE_CORR_ERR_MASK__BAD_DLLP_MASK_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF1_PCIE_CORR_ERR_MASK__REPLAY_NUM_ROLLOVER_MASK_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF1_PCIE_CORR_ERR_MASK__REPLAY_TIMER_TIMEOUT_MASK_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF1_PCIE_CORR_ERR_MASK__ADVISORY_NONFATAL_ERR_MASK_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF1_PCIE_CORR_ERR_MASK__CORR_INT_ERR_MASK_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF1_PCIE_CORR_ERR_MASK__HDR_LOG_OVFL_MASK_MASK 0x00008000L
+//BIF_CFG_DEV0_EPF1_PCIE_ADV_ERR_CAP_CNTL
+#define BIF_CFG_DEV0_EPF1_PCIE_ADV_ERR_CAP_CNTL__FIRST_ERR_PTR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_CAP__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF1_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_EN__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF1_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_CAP__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF1_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_CAP__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF1_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF1_PCIE_ADV_ERR_CAP_CNTL__TLP_PREFIX_LOG_PRESENT__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF1_PCIE_ADV_ERR_CAP_CNTL__COMPLETION_TIMEOUT_LOG_CAPABLE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF1_PCIE_ADV_ERR_CAP_CNTL__FIRST_ERR_PTR_MASK 0x0000001FL
+#define BIF_CFG_DEV0_EPF1_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_CAP_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF1_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_EN_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF1_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_CAP_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF1_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_EN_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF1_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_CAP_MASK 0x00000200L
+#define BIF_CFG_DEV0_EPF1_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_EN_MASK 0x00000400L
+#define BIF_CFG_DEV0_EPF1_PCIE_ADV_ERR_CAP_CNTL__TLP_PREFIX_LOG_PRESENT_MASK 0x00000800L
+#define BIF_CFG_DEV0_EPF1_PCIE_ADV_ERR_CAP_CNTL__COMPLETION_TIMEOUT_LOG_CAPABLE_MASK 0x00001000L
+//BIF_CFG_DEV0_EPF1_PCIE_HDR_LOG0
+#define BIF_CFG_DEV0_EPF1_PCIE_HDR_LOG0__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_HDR_LOG0__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF1_PCIE_HDR_LOG1
+#define BIF_CFG_DEV0_EPF1_PCIE_HDR_LOG1__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_HDR_LOG1__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF1_PCIE_HDR_LOG2
+#define BIF_CFG_DEV0_EPF1_PCIE_HDR_LOG2__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_HDR_LOG2__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF1_PCIE_HDR_LOG3
+#define BIF_CFG_DEV0_EPF1_PCIE_HDR_LOG3__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_HDR_LOG3__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF1_PCIE_TLP_PREFIX_LOG0
+#define BIF_CFG_DEV0_EPF1_PCIE_TLP_PREFIX_LOG0__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_TLP_PREFIX_LOG0__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF1_PCIE_TLP_PREFIX_LOG1
+#define BIF_CFG_DEV0_EPF1_PCIE_TLP_PREFIX_LOG1__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_TLP_PREFIX_LOG1__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF1_PCIE_TLP_PREFIX_LOG2
+#define BIF_CFG_DEV0_EPF1_PCIE_TLP_PREFIX_LOG2__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_TLP_PREFIX_LOG2__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF1_PCIE_TLP_PREFIX_LOG3
+#define BIF_CFG_DEV0_EPF1_PCIE_TLP_PREFIX_LOG3__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_TLP_PREFIX_LOG3__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF1_PCIE_BAR_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF1_PCIE_BAR1_CAP
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR1_CAP__BAR_SIZE_SUPPORTED__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR1_CAP__BAR_SIZE_SUPPORTED_MASK 0xFFFFFFF0L
+//BIF_CFG_DEV0_EPF1_PCIE_BAR1_CNTL
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR1_CNTL__BAR_INDEX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR1_CNTL__BAR_TOTAL_NUM__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR1_CNTL__BAR_SIZE__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR1_CNTL__BAR_SIZE_SUPPORTED_UPPER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR1_CNTL__BAR_INDEX_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR1_CNTL__BAR_TOTAL_NUM_MASK 0x000000E0L
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR1_CNTL__BAR_SIZE_MASK 0x00003F00L
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR1_CNTL__BAR_SIZE_SUPPORTED_UPPER_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF1_PCIE_BAR2_CAP
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR2_CAP__BAR_SIZE_SUPPORTED__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR2_CAP__BAR_SIZE_SUPPORTED_MASK 0xFFFFFFF0L
+//BIF_CFG_DEV0_EPF1_PCIE_BAR2_CNTL
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR2_CNTL__BAR_INDEX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR2_CNTL__BAR_TOTAL_NUM__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR2_CNTL__BAR_SIZE__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR2_CNTL__BAR_SIZE_SUPPORTED_UPPER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR2_CNTL__BAR_INDEX_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR2_CNTL__BAR_TOTAL_NUM_MASK 0x000000E0L
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR2_CNTL__BAR_SIZE_MASK 0x00003F00L
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR2_CNTL__BAR_SIZE_SUPPORTED_UPPER_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF1_PCIE_BAR3_CAP
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR3_CAP__BAR_SIZE_SUPPORTED__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR3_CAP__BAR_SIZE_SUPPORTED_MASK 0xFFFFFFF0L
+//BIF_CFG_DEV0_EPF1_PCIE_BAR3_CNTL
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR3_CNTL__BAR_INDEX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR3_CNTL__BAR_TOTAL_NUM__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR3_CNTL__BAR_SIZE__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR3_CNTL__BAR_SIZE_SUPPORTED_UPPER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR3_CNTL__BAR_INDEX_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR3_CNTL__BAR_TOTAL_NUM_MASK 0x000000E0L
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR3_CNTL__BAR_SIZE_MASK 0x00003F00L
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR3_CNTL__BAR_SIZE_SUPPORTED_UPPER_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF1_PCIE_BAR4_CAP
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR4_CAP__BAR_SIZE_SUPPORTED__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR4_CAP__BAR_SIZE_SUPPORTED_MASK 0xFFFFFFF0L
+//BIF_CFG_DEV0_EPF1_PCIE_BAR4_CNTL
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR4_CNTL__BAR_INDEX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR4_CNTL__BAR_TOTAL_NUM__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR4_CNTL__BAR_SIZE__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR4_CNTL__BAR_SIZE_SUPPORTED_UPPER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR4_CNTL__BAR_INDEX_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR4_CNTL__BAR_TOTAL_NUM_MASK 0x000000E0L
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR4_CNTL__BAR_SIZE_MASK 0x00003F00L
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR4_CNTL__BAR_SIZE_SUPPORTED_UPPER_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF1_PCIE_BAR5_CAP
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR5_CAP__BAR_SIZE_SUPPORTED__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR5_CAP__BAR_SIZE_SUPPORTED_MASK 0xFFFFFFF0L
+//BIF_CFG_DEV0_EPF1_PCIE_BAR5_CNTL
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR5_CNTL__BAR_INDEX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR5_CNTL__BAR_TOTAL_NUM__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR5_CNTL__BAR_SIZE__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR5_CNTL__BAR_SIZE_SUPPORTED_UPPER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR5_CNTL__BAR_INDEX_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR5_CNTL__BAR_TOTAL_NUM_MASK 0x000000E0L
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR5_CNTL__BAR_SIZE_MASK 0x00003F00L
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR5_CNTL__BAR_SIZE_SUPPORTED_UPPER_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF1_PCIE_BAR6_CAP
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR6_CAP__BAR_SIZE_SUPPORTED__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR6_CAP__BAR_SIZE_SUPPORTED_MASK 0xFFFFFFF0L
+//BIF_CFG_DEV0_EPF1_PCIE_BAR6_CNTL
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR6_CNTL__BAR_INDEX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR6_CNTL__BAR_TOTAL_NUM__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR6_CNTL__BAR_SIZE__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR6_CNTL__BAR_SIZE_SUPPORTED_UPPER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR6_CNTL__BAR_INDEX_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR6_CNTL__BAR_TOTAL_NUM_MASK 0x000000E0L
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR6_CNTL__BAR_SIZE_MASK 0x00003F00L
+#define BIF_CFG_DEV0_EPF1_PCIE_BAR6_CNTL__BAR_SIZE_SUPPORTED_UPPER_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF1_PCIE_PWR_BUDGET_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF1_PCIE_PWR_BUDGET_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_PWR_BUDGET_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_PCIE_PWR_BUDGET_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF1_PCIE_PWR_BUDGET_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF1_PCIE_PWR_BUDGET_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF1_PCIE_PWR_BUDGET_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF1_PCIE_PWR_BUDGET_DATA_SELECT
+#define BIF_CFG_DEV0_EPF1_PCIE_PWR_BUDGET_DATA_SELECT__DATA_SELECT__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_PWR_BUDGET_DATA_SELECT__DATA_SELECT_MASK 0xFFL
+//BIF_CFG_DEV0_EPF1_PCIE_PWR_BUDGET_DATA
+#define BIF_CFG_DEV0_EPF1_PCIE_PWR_BUDGET_DATA__BASE_POWER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_PWR_BUDGET_DATA__DATA_SCALE__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_PCIE_PWR_BUDGET_DATA__PM_SUB_STATE__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF1_PCIE_PWR_BUDGET_DATA__PM_STATE__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF1_PCIE_PWR_BUDGET_DATA__TYPE__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF1_PCIE_PWR_BUDGET_DATA__POWER_RAIL__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF1_PCIE_PWR_BUDGET_DATA__BASE_POWER_MASK 0x000000FFL
+#define BIF_CFG_DEV0_EPF1_PCIE_PWR_BUDGET_DATA__DATA_SCALE_MASK 0x00000300L
+#define BIF_CFG_DEV0_EPF1_PCIE_PWR_BUDGET_DATA__PM_SUB_STATE_MASK 0x00001C00L
+#define BIF_CFG_DEV0_EPF1_PCIE_PWR_BUDGET_DATA__PM_STATE_MASK 0x00006000L
+#define BIF_CFG_DEV0_EPF1_PCIE_PWR_BUDGET_DATA__TYPE_MASK 0x00038000L
+#define BIF_CFG_DEV0_EPF1_PCIE_PWR_BUDGET_DATA__POWER_RAIL_MASK 0x001C0000L
+//BIF_CFG_DEV0_EPF1_PCIE_PWR_BUDGET_CAP
+#define BIF_CFG_DEV0_EPF1_PCIE_PWR_BUDGET_CAP__SYSTEM_ALLOCATED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_PWR_BUDGET_CAP__SYSTEM_ALLOCATED_MASK 0x01L
+//BIF_CFG_DEV0_EPF1_PCIE_DPA_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF1_PCIE_DPA_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_DPA_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_PCIE_DPA_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF1_PCIE_DPA_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF1_PCIE_DPA_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF1_PCIE_DPA_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF1_PCIE_DPA_CAP
+#define BIF_CFG_DEV0_EPF1_PCIE_DPA_CAP__SUBSTATE_MAX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_DPA_CAP__TRANS_LAT_UNIT__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_PCIE_DPA_CAP__PWR_ALLOC_SCALE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF1_PCIE_DPA_CAP__TRANS_LAT_VAL_0__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_PCIE_DPA_CAP__TRANS_LAT_VAL_1__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF1_PCIE_DPA_CAP__SUBSTATE_MAX_MASK 0x0000001FL
+#define BIF_CFG_DEV0_EPF1_PCIE_DPA_CAP__TRANS_LAT_UNIT_MASK 0x00000300L
+#define BIF_CFG_DEV0_EPF1_PCIE_DPA_CAP__PWR_ALLOC_SCALE_MASK 0x00003000L
+#define BIF_CFG_DEV0_EPF1_PCIE_DPA_CAP__TRANS_LAT_VAL_0_MASK 0x00FF0000L
+#define BIF_CFG_DEV0_EPF1_PCIE_DPA_CAP__TRANS_LAT_VAL_1_MASK 0xFF000000L
+//BIF_CFG_DEV0_EPF1_PCIE_DPA_LATENCY_INDICATOR
+#define BIF_CFG_DEV0_EPF1_PCIE_DPA_LATENCY_INDICATOR__TRANS_LAT_INDICATOR_BITS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_DPA_LATENCY_INDICATOR__TRANS_LAT_INDICATOR_BITS_MASK 0x000000FFL
+//BIF_CFG_DEV0_EPF1_PCIE_DPA_STATUS
+#define BIF_CFG_DEV0_EPF1_PCIE_DPA_STATUS__SUBSTATE_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_DPA_STATUS__SUBSTATE_CNTL_ENABLED__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_PCIE_DPA_STATUS__SUBSTATE_STATUS_MASK 0x001FL
+#define BIF_CFG_DEV0_EPF1_PCIE_DPA_STATUS__SUBSTATE_CNTL_ENABLED_MASK 0x0100L
+//BIF_CFG_DEV0_EPF1_PCIE_DPA_CNTL
+#define BIF_CFG_DEV0_EPF1_PCIE_DPA_CNTL__SUBSTATE_CNTL__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_DPA_CNTL__SUBSTATE_CNTL_MASK 0x001FL
+//BIF_CFG_DEV0_EPF1_PCIE_DPA_SUBSTATE_PWR_ALLOC_0
+#define BIF_CFG_DEV0_EPF1_PCIE_DPA_SUBSTATE_PWR_ALLOC_0__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_DPA_SUBSTATE_PWR_ALLOC_0__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//BIF_CFG_DEV0_EPF1_PCIE_DPA_SUBSTATE_PWR_ALLOC_1
+#define BIF_CFG_DEV0_EPF1_PCIE_DPA_SUBSTATE_PWR_ALLOC_1__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_DPA_SUBSTATE_PWR_ALLOC_1__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//BIF_CFG_DEV0_EPF1_PCIE_DPA_SUBSTATE_PWR_ALLOC_2
+#define BIF_CFG_DEV0_EPF1_PCIE_DPA_SUBSTATE_PWR_ALLOC_2__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_DPA_SUBSTATE_PWR_ALLOC_2__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//BIF_CFG_DEV0_EPF1_PCIE_DPA_SUBSTATE_PWR_ALLOC_3
+#define BIF_CFG_DEV0_EPF1_PCIE_DPA_SUBSTATE_PWR_ALLOC_3__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_DPA_SUBSTATE_PWR_ALLOC_3__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//BIF_CFG_DEV0_EPF1_PCIE_DPA_SUBSTATE_PWR_ALLOC_4
+#define BIF_CFG_DEV0_EPF1_PCIE_DPA_SUBSTATE_PWR_ALLOC_4__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_DPA_SUBSTATE_PWR_ALLOC_4__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//BIF_CFG_DEV0_EPF1_PCIE_DPA_SUBSTATE_PWR_ALLOC_5
+#define BIF_CFG_DEV0_EPF1_PCIE_DPA_SUBSTATE_PWR_ALLOC_5__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_DPA_SUBSTATE_PWR_ALLOC_5__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//BIF_CFG_DEV0_EPF1_PCIE_DPA_SUBSTATE_PWR_ALLOC_6
+#define BIF_CFG_DEV0_EPF1_PCIE_DPA_SUBSTATE_PWR_ALLOC_6__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_DPA_SUBSTATE_PWR_ALLOC_6__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//BIF_CFG_DEV0_EPF1_PCIE_DPA_SUBSTATE_PWR_ALLOC_7
+#define BIF_CFG_DEV0_EPF1_PCIE_DPA_SUBSTATE_PWR_ALLOC_7__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_DPA_SUBSTATE_PWR_ALLOC_7__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//BIF_CFG_DEV0_EPF1_PCIE_ACS_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF1_PCIE_ACS_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_ACS_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_PCIE_ACS_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF1_PCIE_ACS_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF1_PCIE_ACS_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF1_PCIE_ACS_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF1_PCIE_ACS_CAP
+#define BIF_CFG_DEV0_EPF1_PCIE_ACS_CAP__SOURCE_VALIDATION__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_ACS_CAP__TRANSLATION_BLOCKING__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF1_PCIE_ACS_CAP__P2P_REQUEST_REDIRECT__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF1_PCIE_ACS_CAP__P2P_COMPLETION_REDIRECT__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF1_PCIE_ACS_CAP__UPSTREAM_FORWARDING__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_PCIE_ACS_CAP__P2P_EGRESS_CONTROL__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF1_PCIE_ACS_CAP__DIRECT_TRANSLATED_P2P__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF1_PCIE_ACS_CAP__ENHANCED_CAPABILITY__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF1_PCIE_ACS_CAP__EGRESS_CONTROL_VECTOR_SIZE__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_PCIE_ACS_CAP__SOURCE_VALIDATION_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF1_PCIE_ACS_CAP__TRANSLATION_BLOCKING_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF1_PCIE_ACS_CAP__P2P_REQUEST_REDIRECT_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF1_PCIE_ACS_CAP__P2P_COMPLETION_REDIRECT_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF1_PCIE_ACS_CAP__UPSTREAM_FORWARDING_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF1_PCIE_ACS_CAP__P2P_EGRESS_CONTROL_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF1_PCIE_ACS_CAP__DIRECT_TRANSLATED_P2P_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF1_PCIE_ACS_CAP__ENHANCED_CAPABILITY_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF1_PCIE_ACS_CAP__EGRESS_CONTROL_VECTOR_SIZE_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF1_PCIE_ACS_CNTL
+#define BIF_CFG_DEV0_EPF1_PCIE_ACS_CNTL__SOURCE_VALIDATION_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_ACS_CNTL__TRANSLATION_BLOCKING_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF1_PCIE_ACS_CNTL__P2P_REQUEST_REDIRECT_EN__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF1_PCIE_ACS_CNTL__P2P_COMPLETION_REDIRECT_EN__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF1_PCIE_ACS_CNTL__UPSTREAM_FORWARDING_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_PCIE_ACS_CNTL__P2P_EGRESS_CONTROL_EN__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF1_PCIE_ACS_CNTL__DIRECT_TRANSLATED_P2P_EN__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF1_PCIE_ACS_CNTL__IO_REQUEST_BLOCKING_EN__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF1_PCIE_ACS_CNTL__DSP_MEMORY_TARGET_ACCESS_CNTL__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_PCIE_ACS_CNTL__USP_MEMORY_TARGET_ACCESS_CNTL__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF1_PCIE_ACS_CNTL__UNCLAIMED_REQUEST_REDIRECT_CNTL__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF1_PCIE_ACS_CNTL__SOURCE_VALIDATION_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF1_PCIE_ACS_CNTL__TRANSLATION_BLOCKING_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF1_PCIE_ACS_CNTL__P2P_REQUEST_REDIRECT_EN_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF1_PCIE_ACS_CNTL__P2P_COMPLETION_REDIRECT_EN_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF1_PCIE_ACS_CNTL__UPSTREAM_FORWARDING_EN_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF1_PCIE_ACS_CNTL__P2P_EGRESS_CONTROL_EN_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF1_PCIE_ACS_CNTL__DIRECT_TRANSLATED_P2P_EN_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF1_PCIE_ACS_CNTL__IO_REQUEST_BLOCKING_EN_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF1_PCIE_ACS_CNTL__DSP_MEMORY_TARGET_ACCESS_CNTL_MASK 0x0300L
+#define BIF_CFG_DEV0_EPF1_PCIE_ACS_CNTL__USP_MEMORY_TARGET_ACCESS_CNTL_MASK 0x0C00L
+#define BIF_CFG_DEV0_EPF1_PCIE_ACS_CNTL__UNCLAIMED_REQUEST_REDIRECT_CNTL_MASK 0x1000L
+//BIF_CFG_DEV0_EPF1_PCIE_PASID_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF1_PCIE_PASID_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_PASID_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_PCIE_PASID_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF1_PCIE_PASID_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF1_PCIE_PASID_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF1_PCIE_PASID_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF1_PCIE_PASID_CAP
+#define BIF_CFG_DEV0_EPF1_PCIE_PASID_CAP__PASID_EXE_PERMISSION_SUPPORTED__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF1_PCIE_PASID_CAP__PASID_PRIV_MODE_SUPPORTED__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF1_PCIE_PASID_CAP__MAX_PASID_WIDTH__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_PCIE_PASID_CAP__PASID_EXE_PERMISSION_SUPPORTED_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF1_PCIE_PASID_CAP__PASID_PRIV_MODE_SUPPORTED_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF1_PCIE_PASID_CAP__MAX_PASID_WIDTH_MASK 0x1F00L
+//BIF_CFG_DEV0_EPF1_PCIE_PASID_CNTL
+#define BIF_CFG_DEV0_EPF1_PCIE_PASID_CNTL__PASID_ENABLE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_PASID_CNTL__PASID_EXE_PERMISSION_ENABLE__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF1_PCIE_PASID_CNTL__PASID_PRIV_MODE_SUPPORTED_ENABLE__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF1_PCIE_PASID_CNTL__PASID_ENABLE_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF1_PCIE_PASID_CNTL__PASID_EXE_PERMISSION_ENABLE_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF1_PCIE_PASID_CNTL__PASID_PRIV_MODE_SUPPORTED_ENABLE_MASK 0x0004L
+//BIF_CFG_DEV0_EPF1_PCIE_ARI_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF1_PCIE_ARI_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_ARI_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_PCIE_ARI_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF1_PCIE_ARI_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF1_PCIE_ARI_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF1_PCIE_ARI_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF1_PCIE_ARI_CAP
+#define BIF_CFG_DEV0_EPF1_PCIE_ARI_CAP__ARI_MFVC_FUNC_GROUPS_CAP__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_ARI_CAP__ARI_ACS_FUNC_GROUPS_CAP__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF1_PCIE_ARI_CAP__ARI_NEXT_FUNC_NUM__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_PCIE_ARI_CAP__ARI_MFVC_FUNC_GROUPS_CAP_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF1_PCIE_ARI_CAP__ARI_ACS_FUNC_GROUPS_CAP_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF1_PCIE_ARI_CAP__ARI_NEXT_FUNC_NUM_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF1_PCIE_ARI_CNTL
+#define BIF_CFG_DEV0_EPF1_PCIE_ARI_CNTL__ARI_MFVC_FUNC_GROUPS_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_PCIE_ARI_CNTL__ARI_ACS_FUNC_GROUPS_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF1_PCIE_ARI_CNTL__ARI_FUNCTION_GROUP__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_PCIE_ARI_CNTL__ARI_MFVC_FUNC_GROUPS_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF1_PCIE_ARI_CNTL__ARI_ACS_FUNC_GROUPS_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF1_PCIE_ARI_CNTL__ARI_FUNCTION_GROUP_MASK 0x0070L
+
+
+// addressBlock: aid_nbio_nbif0_bif_cfg_dev0_rc_bifcfgdecp
+//BIF_CFG_DEV0_RC0_VENDOR_ID
+#define BIF_CFG_DEV0_RC0_VENDOR_ID__VENDOR_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_VENDOR_ID__VENDOR_ID_MASK 0xFFFFL
+//BIF_CFG_DEV0_RC0_DEVICE_ID
+#define BIF_CFG_DEV0_RC0_DEVICE_ID__DEVICE_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_DEVICE_ID__DEVICE_ID_MASK 0xFFFFL
+//BIF_CFG_DEV0_RC0_COMMAND
+#define BIF_CFG_DEV0_RC0_COMMAND__IOEN_DN__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_COMMAND__MEMEN_DN__SHIFT 0x1
+#define BIF_CFG_DEV0_RC0_COMMAND__BUS_MASTER_EN__SHIFT 0x2
+#define BIF_CFG_DEV0_RC0_COMMAND__SPECIAL_CYCLE_EN__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_COMMAND__MEM_WRITE_INVALIDATE_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_COMMAND__PAL_SNOOP_EN__SHIFT 0x5
+#define BIF_CFG_DEV0_RC0_COMMAND__PARITY_ERROR_RESPONSE__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_COMMAND__AD_STEPPING__SHIFT 0x7
+#define BIF_CFG_DEV0_RC0_COMMAND__SERR_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_COMMAND__FAST_B2B_EN__SHIFT 0x9
+#define BIF_CFG_DEV0_RC0_COMMAND__INT_DIS__SHIFT 0xa
+#define BIF_CFG_DEV0_RC0_COMMAND__IOEN_DN_MASK 0x0001L
+#define BIF_CFG_DEV0_RC0_COMMAND__MEMEN_DN_MASK 0x0002L
+#define BIF_CFG_DEV0_RC0_COMMAND__BUS_MASTER_EN_MASK 0x0004L
+#define BIF_CFG_DEV0_RC0_COMMAND__SPECIAL_CYCLE_EN_MASK 0x0008L
+#define BIF_CFG_DEV0_RC0_COMMAND__MEM_WRITE_INVALIDATE_EN_MASK 0x0010L
+#define BIF_CFG_DEV0_RC0_COMMAND__PAL_SNOOP_EN_MASK 0x0020L
+#define BIF_CFG_DEV0_RC0_COMMAND__PARITY_ERROR_RESPONSE_MASK 0x0040L
+#define BIF_CFG_DEV0_RC0_COMMAND__AD_STEPPING_MASK 0x0080L
+#define BIF_CFG_DEV0_RC0_COMMAND__SERR_EN_MASK 0x0100L
+#define BIF_CFG_DEV0_RC0_COMMAND__FAST_B2B_EN_MASK 0x0200L
+#define BIF_CFG_DEV0_RC0_COMMAND__INT_DIS_MASK 0x0400L
+//BIF_CFG_DEV0_RC0_STATUS
+#define BIF_CFG_DEV0_RC0_STATUS__IMMEDIATE_READINESS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_STATUS__INT_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_STATUS__CAP_LIST__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_STATUS__PCI_66_CAP__SHIFT 0x5
+#define BIF_CFG_DEV0_RC0_STATUS__FAST_BACK_CAPABLE__SHIFT 0x7
+#define BIF_CFG_DEV0_RC0_STATUS__MASTER_DATA_PARITY_ERROR__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_STATUS__DEVSEL_TIMING__SHIFT 0x9
+#define BIF_CFG_DEV0_RC0_STATUS__SIGNAL_TARGET_ABORT__SHIFT 0xb
+#define BIF_CFG_DEV0_RC0_STATUS__RECEIVED_TARGET_ABORT__SHIFT 0xc
+#define BIF_CFG_DEV0_RC0_STATUS__RECEIVED_MASTER_ABORT__SHIFT 0xd
+#define BIF_CFG_DEV0_RC0_STATUS__SIGNALED_SYSTEM_ERROR__SHIFT 0xe
+#define BIF_CFG_DEV0_RC0_STATUS__PARITY_ERROR_DETECTED__SHIFT 0xf
+#define BIF_CFG_DEV0_RC0_STATUS__IMMEDIATE_READINESS_MASK 0x0001L
+#define BIF_CFG_DEV0_RC0_STATUS__INT_STATUS_MASK 0x0008L
+#define BIF_CFG_DEV0_RC0_STATUS__CAP_LIST_MASK 0x0010L
+#define BIF_CFG_DEV0_RC0_STATUS__PCI_66_CAP_MASK 0x0020L
+#define BIF_CFG_DEV0_RC0_STATUS__FAST_BACK_CAPABLE_MASK 0x0080L
+#define BIF_CFG_DEV0_RC0_STATUS__MASTER_DATA_PARITY_ERROR_MASK 0x0100L
+#define BIF_CFG_DEV0_RC0_STATUS__DEVSEL_TIMING_MASK 0x0600L
+#define BIF_CFG_DEV0_RC0_STATUS__SIGNAL_TARGET_ABORT_MASK 0x0800L
+#define BIF_CFG_DEV0_RC0_STATUS__RECEIVED_TARGET_ABORT_MASK 0x1000L
+#define BIF_CFG_DEV0_RC0_STATUS__RECEIVED_MASTER_ABORT_MASK 0x2000L
+#define BIF_CFG_DEV0_RC0_STATUS__SIGNALED_SYSTEM_ERROR_MASK 0x4000L
+#define BIF_CFG_DEV0_RC0_STATUS__PARITY_ERROR_DETECTED_MASK 0x8000L
+//BIF_CFG_DEV0_RC0_REVISION_ID
+#define BIF_CFG_DEV0_RC0_REVISION_ID__MINOR_REV_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_REVISION_ID__MAJOR_REV_ID__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_REVISION_ID__MINOR_REV_ID_MASK 0x0FL
+#define BIF_CFG_DEV0_RC0_REVISION_ID__MAJOR_REV_ID_MASK 0xF0L
+//BIF_CFG_DEV0_RC0_PROG_INTERFACE
+#define BIF_CFG_DEV0_RC0_PROG_INTERFACE__PROG_INTERFACE__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PROG_INTERFACE__PROG_INTERFACE_MASK 0xFFL
+//BIF_CFG_DEV0_RC0_SUB_CLASS
+#define BIF_CFG_DEV0_RC0_SUB_CLASS__SUB_CLASS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_SUB_CLASS__SUB_CLASS_MASK 0xFFL
+//BIF_CFG_DEV0_RC0_BASE_CLASS
+#define BIF_CFG_DEV0_RC0_BASE_CLASS__BASE_CLASS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_BASE_CLASS__BASE_CLASS_MASK 0xFFL
+//BIF_CFG_DEV0_RC0_CACHE_LINE
+#define BIF_CFG_DEV0_RC0_CACHE_LINE__CACHE_LINE_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_CACHE_LINE__CACHE_LINE_SIZE_MASK 0xFFL
+//BIF_CFG_DEV0_RC0_LATENCY
+#define BIF_CFG_DEV0_RC0_LATENCY__LATENCY_TIMER__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LATENCY__LATENCY_TIMER_MASK 0xFFL
+//BIF_CFG_DEV0_RC0_HEADER
+#define BIF_CFG_DEV0_RC0_HEADER__HEADER_TYPE__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_HEADER__DEVICE_TYPE__SHIFT 0x7
+#define BIF_CFG_DEV0_RC0_HEADER__HEADER_TYPE_MASK 0x7FL
+#define BIF_CFG_DEV0_RC0_HEADER__DEVICE_TYPE_MASK 0x80L
+//BIF_CFG_DEV0_RC0_BIST
+#define BIF_CFG_DEV0_RC0_BIST__BIST_COMP__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_BIST__BIST_STRT__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_BIST__BIST_CAP__SHIFT 0x7
+#define BIF_CFG_DEV0_RC0_BIST__BIST_COMP_MASK 0x0FL
+#define BIF_CFG_DEV0_RC0_BIST__BIST_STRT_MASK 0x40L
+#define BIF_CFG_DEV0_RC0_BIST__BIST_CAP_MASK 0x80L
+//BIF_CFG_DEV0_RC0_BASE_ADDR_1
+#define BIF_CFG_DEV0_RC0_BASE_ADDR_1__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_BASE_ADDR_1__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_RC0_BASE_ADDR_2
+#define BIF_CFG_DEV0_RC0_BASE_ADDR_2__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_BASE_ADDR_2__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_RC0_SUB_BUS_NUMBER_LATENCY
+#define BIF_CFG_DEV0_RC0_SUB_BUS_NUMBER_LATENCY__PRIMARY_BUS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_SUB_BUS_NUMBER_LATENCY__SECONDARY_BUS__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_SUB_BUS_NUMBER_LATENCY__SUB_BUS_NUM__SHIFT 0x10
+#define BIF_CFG_DEV0_RC0_SUB_BUS_NUMBER_LATENCY__SECONDARY_LATENCY_TIMER__SHIFT 0x18
+#define BIF_CFG_DEV0_RC0_SUB_BUS_NUMBER_LATENCY__PRIMARY_BUS_MASK 0x000000FFL
+#define BIF_CFG_DEV0_RC0_SUB_BUS_NUMBER_LATENCY__SECONDARY_BUS_MASK 0x0000FF00L
+#define BIF_CFG_DEV0_RC0_SUB_BUS_NUMBER_LATENCY__SUB_BUS_NUM_MASK 0x00FF0000L
+#define BIF_CFG_DEV0_RC0_SUB_BUS_NUMBER_LATENCY__SECONDARY_LATENCY_TIMER_MASK 0xFF000000L
+//BIF_CFG_DEV0_RC0_IO_BASE_LIMIT
+#define BIF_CFG_DEV0_RC0_IO_BASE_LIMIT__IO_BASE_TYPE__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_IO_BASE_LIMIT__IO_BASE__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_IO_BASE_LIMIT__IO_LIMIT_TYPE__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_IO_BASE_LIMIT__IO_LIMIT__SHIFT 0xc
+#define BIF_CFG_DEV0_RC0_IO_BASE_LIMIT__IO_BASE_TYPE_MASK 0x000FL
+#define BIF_CFG_DEV0_RC0_IO_BASE_LIMIT__IO_BASE_MASK 0x00F0L
+#define BIF_CFG_DEV0_RC0_IO_BASE_LIMIT__IO_LIMIT_TYPE_MASK 0x0F00L
+#define BIF_CFG_DEV0_RC0_IO_BASE_LIMIT__IO_LIMIT_MASK 0xF000L
+//BIF_CFG_DEV0_RC0_SECONDARY_STATUS
+#define BIF_CFG_DEV0_RC0_SECONDARY_STATUS__PCI_66_CAP__SHIFT 0x5
+#define BIF_CFG_DEV0_RC0_SECONDARY_STATUS__FAST_BACK_CAPABLE__SHIFT 0x7
+#define BIF_CFG_DEV0_RC0_SECONDARY_STATUS__MASTER_DATA_PARITY_ERROR__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_SECONDARY_STATUS__DEVSEL_TIMING__SHIFT 0x9
+#define BIF_CFG_DEV0_RC0_SECONDARY_STATUS__SIGNAL_TARGET_ABORT__SHIFT 0xb
+#define BIF_CFG_DEV0_RC0_SECONDARY_STATUS__RECEIVED_TARGET_ABORT__SHIFT 0xc
+#define BIF_CFG_DEV0_RC0_SECONDARY_STATUS__RECEIVED_MASTER_ABORT__SHIFT 0xd
+#define BIF_CFG_DEV0_RC0_SECONDARY_STATUS__RECEIVED_SYSTEM_ERROR__SHIFT 0xe
+#define BIF_CFG_DEV0_RC0_SECONDARY_STATUS__PARITY_ERROR_DETECTED__SHIFT 0xf
+#define BIF_CFG_DEV0_RC0_SECONDARY_STATUS__PCI_66_CAP_MASK 0x0020L
+#define BIF_CFG_DEV0_RC0_SECONDARY_STATUS__FAST_BACK_CAPABLE_MASK 0x0080L
+#define BIF_CFG_DEV0_RC0_SECONDARY_STATUS__MASTER_DATA_PARITY_ERROR_MASK 0x0100L
+#define BIF_CFG_DEV0_RC0_SECONDARY_STATUS__DEVSEL_TIMING_MASK 0x0600L
+#define BIF_CFG_DEV0_RC0_SECONDARY_STATUS__SIGNAL_TARGET_ABORT_MASK 0x0800L
+#define BIF_CFG_DEV0_RC0_SECONDARY_STATUS__RECEIVED_TARGET_ABORT_MASK 0x1000L
+#define BIF_CFG_DEV0_RC0_SECONDARY_STATUS__RECEIVED_MASTER_ABORT_MASK 0x2000L
+#define BIF_CFG_DEV0_RC0_SECONDARY_STATUS__RECEIVED_SYSTEM_ERROR_MASK 0x4000L
+#define BIF_CFG_DEV0_RC0_SECONDARY_STATUS__PARITY_ERROR_DETECTED_MASK 0x8000L
+//BIF_CFG_DEV0_RC0_MEM_BASE_LIMIT
+#define BIF_CFG_DEV0_RC0_MEM_BASE_LIMIT__MEM_BASE_TYPE__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_MEM_BASE_LIMIT__MEM_BASE_31_20__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_MEM_BASE_LIMIT__MEM_LIMIT_TYPE__SHIFT 0x10
+#define BIF_CFG_DEV0_RC0_MEM_BASE_LIMIT__MEM_LIMIT_31_20__SHIFT 0x14
+#define BIF_CFG_DEV0_RC0_MEM_BASE_LIMIT__MEM_BASE_TYPE_MASK 0x0000000FL
+#define BIF_CFG_DEV0_RC0_MEM_BASE_LIMIT__MEM_BASE_31_20_MASK 0x0000FFF0L
+#define BIF_CFG_DEV0_RC0_MEM_BASE_LIMIT__MEM_LIMIT_TYPE_MASK 0x000F0000L
+#define BIF_CFG_DEV0_RC0_MEM_BASE_LIMIT__MEM_LIMIT_31_20_MASK 0xFFF00000L
+//BIF_CFG_DEV0_RC0_PREF_BASE_LIMIT
+#define BIF_CFG_DEV0_RC0_PREF_BASE_LIMIT__PREF_MEM_BASE_TYPE__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PREF_BASE_LIMIT__PREF_MEM_BASE_31_20__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_PREF_BASE_LIMIT__PREF_MEM_LIMIT_TYPE__SHIFT 0x10
+#define BIF_CFG_DEV0_RC0_PREF_BASE_LIMIT__PREF_MEM_LIMIT_31_20__SHIFT 0x14
+#define BIF_CFG_DEV0_RC0_PREF_BASE_LIMIT__PREF_MEM_BASE_TYPE_MASK 0x0000000FL
+#define BIF_CFG_DEV0_RC0_PREF_BASE_LIMIT__PREF_MEM_BASE_31_20_MASK 0x0000FFF0L
+#define BIF_CFG_DEV0_RC0_PREF_BASE_LIMIT__PREF_MEM_LIMIT_TYPE_MASK 0x000F0000L
+#define BIF_CFG_DEV0_RC0_PREF_BASE_LIMIT__PREF_MEM_LIMIT_31_20_MASK 0xFFF00000L
+//BIF_CFG_DEV0_RC0_PREF_BASE_UPPER
+#define BIF_CFG_DEV0_RC0_PREF_BASE_UPPER__PREF_BASE_UPPER__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PREF_BASE_UPPER__PREF_BASE_UPPER_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_RC0_PREF_LIMIT_UPPER
+#define BIF_CFG_DEV0_RC0_PREF_LIMIT_UPPER__PREF_LIMIT_UPPER__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PREF_LIMIT_UPPER__PREF_LIMIT_UPPER_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_RC0_IO_BASE_LIMIT_HI
+#define BIF_CFG_DEV0_RC0_IO_BASE_LIMIT_HI__IO_BASE_31_16__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_IO_BASE_LIMIT_HI__IO_LIMIT_31_16__SHIFT 0x10
+#define BIF_CFG_DEV0_RC0_IO_BASE_LIMIT_HI__IO_BASE_31_16_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_RC0_IO_BASE_LIMIT_HI__IO_LIMIT_31_16_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_RC0_CAP_PTR
+#define BIF_CFG_DEV0_RC0_CAP_PTR__CAP_PTR__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_CAP_PTR__CAP_PTR_MASK 0xFFL
+//BIF_CFG_DEV0_RC0_ROM_BASE_ADDR
+#define BIF_CFG_DEV0_RC0_ROM_BASE_ADDR__ROM_ENABLE__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_ROM_BASE_ADDR__ROM_VALIDATION_STATUS__SHIFT 0x1
+#define BIF_CFG_DEV0_RC0_ROM_BASE_ADDR__ROM_VALIDATION_DETAILS__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_ROM_BASE_ADDR__BASE_ADDR__SHIFT 0xb
+#define BIF_CFG_DEV0_RC0_ROM_BASE_ADDR__ROM_ENABLE_MASK 0x00000001L
+#define BIF_CFG_DEV0_RC0_ROM_BASE_ADDR__ROM_VALIDATION_STATUS_MASK 0x0000000EL
+#define BIF_CFG_DEV0_RC0_ROM_BASE_ADDR__ROM_VALIDATION_DETAILS_MASK 0x000000F0L
+#define BIF_CFG_DEV0_RC0_ROM_BASE_ADDR__BASE_ADDR_MASK 0xFFFFF800L
+//BIF_CFG_DEV0_RC0_INTERRUPT_LINE
+#define BIF_CFG_DEV0_RC0_INTERRUPT_LINE__INTERRUPT_LINE__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_INTERRUPT_LINE__INTERRUPT_LINE_MASK 0xFFL
+//BIF_CFG_DEV0_RC0_INTERRUPT_PIN
+#define BIF_CFG_DEV0_RC0_INTERRUPT_PIN__INTERRUPT_PIN__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_INTERRUPT_PIN__INTERRUPT_PIN_MASK 0xFFL
+//BIF_CFG_DEV0_RC0_IRQ_BRIDGE_CNTL
+#define BIF_CFG_DEV0_RC0_IRQ_BRIDGE_CNTL__PARITY_RESPONSE_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_IRQ_BRIDGE_CNTL__SERR_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_RC0_IRQ_BRIDGE_CNTL__ISA_EN__SHIFT 0x2
+#define BIF_CFG_DEV0_RC0_IRQ_BRIDGE_CNTL__VGA_EN__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_IRQ_BRIDGE_CNTL__VGA_DEC__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_IRQ_BRIDGE_CNTL__MASTER_ABORT_MODE__SHIFT 0x5
+#define BIF_CFG_DEV0_RC0_IRQ_BRIDGE_CNTL__SECONDARY_BUS_RESET__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_IRQ_BRIDGE_CNTL__FAST_B2B_EN__SHIFT 0x7
+#define BIF_CFG_DEV0_RC0_IRQ_BRIDGE_CNTL__PRIMARY_DISCARD_TIMER__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_IRQ_BRIDGE_CNTL__SECONDARY_DISCARD_TIMER__SHIFT 0x9
+#define BIF_CFG_DEV0_RC0_IRQ_BRIDGE_CNTL__DISCARD_TIMER_STATUS__SHIFT 0xa
+#define BIF_CFG_DEV0_RC0_IRQ_BRIDGE_CNTL__DISCARD_TIMER_SERR_ENABLE__SHIFT 0xb
+#define BIF_CFG_DEV0_RC0_IRQ_BRIDGE_CNTL__PARITY_RESPONSE_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_RC0_IRQ_BRIDGE_CNTL__SERR_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_RC0_IRQ_BRIDGE_CNTL__ISA_EN_MASK 0x0004L
+#define BIF_CFG_DEV0_RC0_IRQ_BRIDGE_CNTL__VGA_EN_MASK 0x0008L
+#define BIF_CFG_DEV0_RC0_IRQ_BRIDGE_CNTL__VGA_DEC_MASK 0x0010L
+#define BIF_CFG_DEV0_RC0_IRQ_BRIDGE_CNTL__MASTER_ABORT_MODE_MASK 0x0020L
+#define BIF_CFG_DEV0_RC0_IRQ_BRIDGE_CNTL__SECONDARY_BUS_RESET_MASK 0x0040L
+#define BIF_CFG_DEV0_RC0_IRQ_BRIDGE_CNTL__FAST_B2B_EN_MASK 0x0080L
+#define BIF_CFG_DEV0_RC0_IRQ_BRIDGE_CNTL__PRIMARY_DISCARD_TIMER_MASK 0x0100L
+#define BIF_CFG_DEV0_RC0_IRQ_BRIDGE_CNTL__SECONDARY_DISCARD_TIMER_MASK 0x0200L
+#define BIF_CFG_DEV0_RC0_IRQ_BRIDGE_CNTL__DISCARD_TIMER_STATUS_MASK 0x0400L
+#define BIF_CFG_DEV0_RC0_IRQ_BRIDGE_CNTL__DISCARD_TIMER_SERR_ENABLE_MASK 0x0800L
+//BIF_CFG_DEV0_RC0_EXT_BRIDGE_CNTL
+#define BIF_CFG_DEV0_RC0_EXT_BRIDGE_CNTL__IO_PORT_80_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_EXT_BRIDGE_CNTL__IO_PORT_80_EN_MASK 0x01L
+//BIF_CFG_DEV0_RC0_PMI_CAP_LIST
+#define BIF_CFG_DEV0_RC0_PMI_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PMI_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_PMI_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_RC0_PMI_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_RC0_PMI_CAP
+#define BIF_CFG_DEV0_RC0_PMI_CAP__VERSION__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PMI_CAP__PME_CLOCK__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_PMI_CAP__IMMEDIATE_READINESS_ON_RETURN_TO_D0__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_PMI_CAP__DEV_SPECIFIC_INIT__SHIFT 0x5
+#define BIF_CFG_DEV0_RC0_PMI_CAP__AUX_CURRENT__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_PMI_CAP__D1_SUPPORT__SHIFT 0x9
+#define BIF_CFG_DEV0_RC0_PMI_CAP__D2_SUPPORT__SHIFT 0xa
+#define BIF_CFG_DEV0_RC0_PMI_CAP__PME_SUPPORT__SHIFT 0xb
+#define BIF_CFG_DEV0_RC0_PMI_CAP__VERSION_MASK 0x0007L
+#define BIF_CFG_DEV0_RC0_PMI_CAP__PME_CLOCK_MASK 0x0008L
+#define BIF_CFG_DEV0_RC0_PMI_CAP__IMMEDIATE_READINESS_ON_RETURN_TO_D0_MASK 0x0010L
+#define BIF_CFG_DEV0_RC0_PMI_CAP__DEV_SPECIFIC_INIT_MASK 0x0020L
+#define BIF_CFG_DEV0_RC0_PMI_CAP__AUX_CURRENT_MASK 0x01C0L
+#define BIF_CFG_DEV0_RC0_PMI_CAP__D1_SUPPORT_MASK 0x0200L
+#define BIF_CFG_DEV0_RC0_PMI_CAP__D2_SUPPORT_MASK 0x0400L
+#define BIF_CFG_DEV0_RC0_PMI_CAP__PME_SUPPORT_MASK 0xF800L
+//BIF_CFG_DEV0_RC0_PMI_STATUS_CNTL
+#define BIF_CFG_DEV0_RC0_PMI_STATUS_CNTL__POWER_STATE__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PMI_STATUS_CNTL__NO_SOFT_RESET__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_PMI_STATUS_CNTL__PME_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_PMI_STATUS_CNTL__DATA_SELECT__SHIFT 0x9
+#define BIF_CFG_DEV0_RC0_PMI_STATUS_CNTL__DATA_SCALE__SHIFT 0xd
+#define BIF_CFG_DEV0_RC0_PMI_STATUS_CNTL__PME_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_RC0_PMI_STATUS_CNTL__B2_B3_SUPPORT__SHIFT 0x16
+#define BIF_CFG_DEV0_RC0_PMI_STATUS_CNTL__BUS_PWR_EN__SHIFT 0x17
+#define BIF_CFG_DEV0_RC0_PMI_STATUS_CNTL__PMI_DATA__SHIFT 0x18
+#define BIF_CFG_DEV0_RC0_PMI_STATUS_CNTL__POWER_STATE_MASK 0x00000003L
+#define BIF_CFG_DEV0_RC0_PMI_STATUS_CNTL__NO_SOFT_RESET_MASK 0x00000008L
+#define BIF_CFG_DEV0_RC0_PMI_STATUS_CNTL__PME_EN_MASK 0x00000100L
+#define BIF_CFG_DEV0_RC0_PMI_STATUS_CNTL__DATA_SELECT_MASK 0x00001E00L
+#define BIF_CFG_DEV0_RC0_PMI_STATUS_CNTL__DATA_SCALE_MASK 0x00006000L
+#define BIF_CFG_DEV0_RC0_PMI_STATUS_CNTL__PME_STATUS_MASK 0x00008000L
+#define BIF_CFG_DEV0_RC0_PMI_STATUS_CNTL__B2_B3_SUPPORT_MASK 0x00400000L
+#define BIF_CFG_DEV0_RC0_PMI_STATUS_CNTL__BUS_PWR_EN_MASK 0x00800000L
+#define BIF_CFG_DEV0_RC0_PMI_STATUS_CNTL__PMI_DATA_MASK 0xFF000000L
+//BIF_CFG_DEV0_RC0_PCIE_CAP_LIST
+#define BIF_CFG_DEV0_RC0_PCIE_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_PCIE_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_RC0_PCIE_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_RC0_PCIE_CAP
+#define BIF_CFG_DEV0_RC0_PCIE_CAP__VERSION__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_CAP__DEVICE_TYPE__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_PCIE_CAP__SLOT_IMPLEMENTED__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_PCIE_CAP__INT_MESSAGE_NUM__SHIFT 0x9
+#define BIF_CFG_DEV0_RC0_PCIE_CAP__VERSION_MASK 0x000FL
+#define BIF_CFG_DEV0_RC0_PCIE_CAP__DEVICE_TYPE_MASK 0x00F0L
+#define BIF_CFG_DEV0_RC0_PCIE_CAP__SLOT_IMPLEMENTED_MASK 0x0100L
+#define BIF_CFG_DEV0_RC0_PCIE_CAP__INT_MESSAGE_NUM_MASK 0x3E00L
+//BIF_CFG_DEV0_RC0_DEVICE_CAP
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP__MAX_PAYLOAD_SUPPORT__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP__PHANTOM_FUNC__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP__EXTENDED_TAG__SHIFT 0x5
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP__L0S_ACCEPTABLE_LATENCY__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP__L1_ACCEPTABLE_LATENCY__SHIFT 0x9
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP__ROLE_BASED_ERR_REPORTING__SHIFT 0xf
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP__ERR_COR_SUBCLASS_CAPABLE__SHIFT 0x10
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP__CAPTURED_SLOT_POWER_LIMIT__SHIFT 0x12
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP__CAPTURED_SLOT_POWER_SCALE__SHIFT 0x1a
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP__FLR_CAPABLE__SHIFT 0x1c
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP__MAX_PAYLOAD_SUPPORT_MASK 0x00000007L
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP__PHANTOM_FUNC_MASK 0x00000018L
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP__EXTENDED_TAG_MASK 0x00000020L
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP__L0S_ACCEPTABLE_LATENCY_MASK 0x000001C0L
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP__L1_ACCEPTABLE_LATENCY_MASK 0x00000E00L
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP__ROLE_BASED_ERR_REPORTING_MASK 0x00008000L
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP__ERR_COR_SUBCLASS_CAPABLE_MASK 0x00010000L
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP__CAPTURED_SLOT_POWER_LIMIT_MASK 0x03FC0000L
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP__CAPTURED_SLOT_POWER_SCALE_MASK 0x0C000000L
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP__FLR_CAPABLE_MASK 0x10000000L
+//BIF_CFG_DEV0_RC0_DEVICE_CNTL
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL__CORR_ERR_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL__NON_FATAL_ERR_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL__FATAL_ERR_EN__SHIFT 0x2
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL__USR_REPORT_EN__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL__RELAXED_ORD_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL__MAX_PAYLOAD_SIZE__SHIFT 0x5
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL__EXTENDED_TAG_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL__PHANTOM_FUNC_EN__SHIFT 0x9
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL__AUX_POWER_PM_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL__NO_SNOOP_EN__SHIFT 0xb
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL__MAX_READ_REQUEST_SIZE__SHIFT 0xc
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL__BRIDGE_CFG_RETRY_EN__SHIFT 0xf
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL__CORR_ERR_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL__NON_FATAL_ERR_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL__FATAL_ERR_EN_MASK 0x0004L
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL__USR_REPORT_EN_MASK 0x0008L
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL__RELAXED_ORD_EN_MASK 0x0010L
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL__MAX_PAYLOAD_SIZE_MASK 0x00E0L
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL__EXTENDED_TAG_EN_MASK 0x0100L
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL__PHANTOM_FUNC_EN_MASK 0x0200L
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL__AUX_POWER_PM_EN_MASK 0x0400L
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL__NO_SNOOP_EN_MASK 0x0800L
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL__MAX_READ_REQUEST_SIZE_MASK 0x7000L
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL__BRIDGE_CFG_RETRY_EN_MASK 0x8000L
+//BIF_CFG_DEV0_RC0_DEVICE_STATUS
+#define BIF_CFG_DEV0_RC0_DEVICE_STATUS__CORR_ERR__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_DEVICE_STATUS__NON_FATAL_ERR__SHIFT 0x1
+#define BIF_CFG_DEV0_RC0_DEVICE_STATUS__FATAL_ERR__SHIFT 0x2
+#define BIF_CFG_DEV0_RC0_DEVICE_STATUS__USR_DETECTED__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_DEVICE_STATUS__AUX_PWR__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_DEVICE_STATUS__TRANSACTIONS_PEND__SHIFT 0x5
+#define BIF_CFG_DEV0_RC0_DEVICE_STATUS__EMER_POWER_REDUCTION_DETECTED__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_DEVICE_STATUS__CORR_ERR_MASK 0x0001L
+#define BIF_CFG_DEV0_RC0_DEVICE_STATUS__NON_FATAL_ERR_MASK 0x0002L
+#define BIF_CFG_DEV0_RC0_DEVICE_STATUS__FATAL_ERR_MASK 0x0004L
+#define BIF_CFG_DEV0_RC0_DEVICE_STATUS__USR_DETECTED_MASK 0x0008L
+#define BIF_CFG_DEV0_RC0_DEVICE_STATUS__AUX_PWR_MASK 0x0010L
+#define BIF_CFG_DEV0_RC0_DEVICE_STATUS__TRANSACTIONS_PEND_MASK 0x0020L
+#define BIF_CFG_DEV0_RC0_DEVICE_STATUS__EMER_POWER_REDUCTION_DETECTED_MASK 0x0040L
+//BIF_CFG_DEV0_RC0_LINK_CAP
+#define BIF_CFG_DEV0_RC0_LINK_CAP__LINK_SPEED__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LINK_CAP__LINK_WIDTH__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_LINK_CAP__PM_SUPPORT__SHIFT 0xa
+#define BIF_CFG_DEV0_RC0_LINK_CAP__L0S_EXIT_LATENCY__SHIFT 0xc
+#define BIF_CFG_DEV0_RC0_LINK_CAP__L1_EXIT_LATENCY__SHIFT 0xf
+#define BIF_CFG_DEV0_RC0_LINK_CAP__CLOCK_POWER_MANAGEMENT__SHIFT 0x12
+#define BIF_CFG_DEV0_RC0_LINK_CAP__SURPRISE_DOWN_ERR_REPORTING__SHIFT 0x13
+#define BIF_CFG_DEV0_RC0_LINK_CAP__DL_ACTIVE_REPORTING_CAPABLE__SHIFT 0x14
+#define BIF_CFG_DEV0_RC0_LINK_CAP__LINK_BW_NOTIFICATION_CAP__SHIFT 0x15
+#define BIF_CFG_DEV0_RC0_LINK_CAP__ASPM_OPTIONALITY_COMPLIANCE__SHIFT 0x16
+#define BIF_CFG_DEV0_RC0_LINK_CAP__PORT_NUMBER__SHIFT 0x18
+#define BIF_CFG_DEV0_RC0_LINK_CAP__LINK_SPEED_MASK 0x0000000FL
+#define BIF_CFG_DEV0_RC0_LINK_CAP__LINK_WIDTH_MASK 0x000003F0L
+#define BIF_CFG_DEV0_RC0_LINK_CAP__PM_SUPPORT_MASK 0x00000C00L
+#define BIF_CFG_DEV0_RC0_LINK_CAP__L0S_EXIT_LATENCY_MASK 0x00007000L
+#define BIF_CFG_DEV0_RC0_LINK_CAP__L1_EXIT_LATENCY_MASK 0x00038000L
+#define BIF_CFG_DEV0_RC0_LINK_CAP__CLOCK_POWER_MANAGEMENT_MASK 0x00040000L
+#define BIF_CFG_DEV0_RC0_LINK_CAP__SURPRISE_DOWN_ERR_REPORTING_MASK 0x00080000L
+#define BIF_CFG_DEV0_RC0_LINK_CAP__DL_ACTIVE_REPORTING_CAPABLE_MASK 0x00100000L
+#define BIF_CFG_DEV0_RC0_LINK_CAP__LINK_BW_NOTIFICATION_CAP_MASK 0x00200000L
+#define BIF_CFG_DEV0_RC0_LINK_CAP__ASPM_OPTIONALITY_COMPLIANCE_MASK 0x00400000L
+#define BIF_CFG_DEV0_RC0_LINK_CAP__PORT_NUMBER_MASK 0xFF000000L
+//BIF_CFG_DEV0_RC0_LINK_CNTL
+#define BIF_CFG_DEV0_RC0_LINK_CNTL__PM_CONTROL__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LINK_CNTL__PTM_PROP_DELAY_ADAPT_INTER_B__SHIFT 0x2
+#define BIF_CFG_DEV0_RC0_LINK_CNTL__READ_CPL_BOUNDARY__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_LINK_CNTL__LINK_DIS__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_LINK_CNTL__RETRAIN_LINK__SHIFT 0x5
+#define BIF_CFG_DEV0_RC0_LINK_CNTL__COMMON_CLOCK_CFG__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_LINK_CNTL__EXTENDED_SYNC__SHIFT 0x7
+#define BIF_CFG_DEV0_RC0_LINK_CNTL__CLOCK_POWER_MANAGEMENT_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_LINK_CNTL__HW_AUTONOMOUS_WIDTH_DISABLE__SHIFT 0x9
+#define BIF_CFG_DEV0_RC0_LINK_CNTL__LINK_BW_MANAGEMENT_INT_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_RC0_LINK_CNTL__LINK_AUTONOMOUS_BW_INT_EN__SHIFT 0xb
+#define BIF_CFG_DEV0_RC0_LINK_CNTL__DRS_SIGNALING_CONTROL__SHIFT 0xe
+#define BIF_CFG_DEV0_RC0_LINK_CNTL__PM_CONTROL_MASK 0x0003L
+#define BIF_CFG_DEV0_RC0_LINK_CNTL__PTM_PROP_DELAY_ADAPT_INTER_B_MASK 0x0004L
+#define BIF_CFG_DEV0_RC0_LINK_CNTL__READ_CPL_BOUNDARY_MASK 0x0008L
+#define BIF_CFG_DEV0_RC0_LINK_CNTL__LINK_DIS_MASK 0x0010L
+#define BIF_CFG_DEV0_RC0_LINK_CNTL__RETRAIN_LINK_MASK 0x0020L
+#define BIF_CFG_DEV0_RC0_LINK_CNTL__COMMON_CLOCK_CFG_MASK 0x0040L
+#define BIF_CFG_DEV0_RC0_LINK_CNTL__EXTENDED_SYNC_MASK 0x0080L
+#define BIF_CFG_DEV0_RC0_LINK_CNTL__CLOCK_POWER_MANAGEMENT_EN_MASK 0x0100L
+#define BIF_CFG_DEV0_RC0_LINK_CNTL__HW_AUTONOMOUS_WIDTH_DISABLE_MASK 0x0200L
+#define BIF_CFG_DEV0_RC0_LINK_CNTL__LINK_BW_MANAGEMENT_INT_EN_MASK 0x0400L
+#define BIF_CFG_DEV0_RC0_LINK_CNTL__LINK_AUTONOMOUS_BW_INT_EN_MASK 0x0800L
+#define BIF_CFG_DEV0_RC0_LINK_CNTL__DRS_SIGNALING_CONTROL_MASK 0xC000L
+//BIF_CFG_DEV0_RC0_LINK_STATUS
+#define BIF_CFG_DEV0_RC0_LINK_STATUS__CURRENT_LINK_SPEED__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LINK_STATUS__NEGOTIATED_LINK_WIDTH__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_LINK_STATUS__LINK_TRAINING__SHIFT 0xb
+#define BIF_CFG_DEV0_RC0_LINK_STATUS__SLOT_CLOCK_CFG__SHIFT 0xc
+#define BIF_CFG_DEV0_RC0_LINK_STATUS__DL_ACTIVE__SHIFT 0xd
+#define BIF_CFG_DEV0_RC0_LINK_STATUS__LINK_BW_MANAGEMENT_STATUS__SHIFT 0xe
+#define BIF_CFG_DEV0_RC0_LINK_STATUS__LINK_AUTONOMOUS_BW_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_RC0_LINK_STATUS__CURRENT_LINK_SPEED_MASK 0x000FL
+#define BIF_CFG_DEV0_RC0_LINK_STATUS__NEGOTIATED_LINK_WIDTH_MASK 0x03F0L
+#define BIF_CFG_DEV0_RC0_LINK_STATUS__LINK_TRAINING_MASK 0x0800L
+#define BIF_CFG_DEV0_RC0_LINK_STATUS__SLOT_CLOCK_CFG_MASK 0x1000L
+#define BIF_CFG_DEV0_RC0_LINK_STATUS__DL_ACTIVE_MASK 0x2000L
+#define BIF_CFG_DEV0_RC0_LINK_STATUS__LINK_BW_MANAGEMENT_STATUS_MASK 0x4000L
+#define BIF_CFG_DEV0_RC0_LINK_STATUS__LINK_AUTONOMOUS_BW_STATUS_MASK 0x8000L
+//BIF_CFG_DEV0_RC0_SLOT_CAP
+#define BIF_CFG_DEV0_RC0_SLOT_CAP__ATTN_BUTTON_PRESENT__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_SLOT_CAP__PWR_CONTROLLER_PRESENT__SHIFT 0x1
+#define BIF_CFG_DEV0_RC0_SLOT_CAP__MRL_SENSOR_PRESENT__SHIFT 0x2
+#define BIF_CFG_DEV0_RC0_SLOT_CAP__ATTN_INDICATOR_PRESENT__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_SLOT_CAP__PWR_INDICATOR_PRESENT__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_SLOT_CAP__HOTPLUG_SURPRISE__SHIFT 0x5
+#define BIF_CFG_DEV0_RC0_SLOT_CAP__HOTPLUG_CAPABLE__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_SLOT_CAP__SLOT_PWR_LIMIT_VALUE__SHIFT 0x7
+#define BIF_CFG_DEV0_RC0_SLOT_CAP__SLOT_PWR_LIMIT_SCALE__SHIFT 0xf
+#define BIF_CFG_DEV0_RC0_SLOT_CAP__ELECTROMECH_INTERLOCK_PRESENT__SHIFT 0x11
+#define BIF_CFG_DEV0_RC0_SLOT_CAP__NO_COMMAND_COMPLETED_SUPPORTED__SHIFT 0x12
+#define BIF_CFG_DEV0_RC0_SLOT_CAP__PHYSICAL_SLOT_NUM__SHIFT 0x13
+#define BIF_CFG_DEV0_RC0_SLOT_CAP__ATTN_BUTTON_PRESENT_MASK 0x00000001L
+#define BIF_CFG_DEV0_RC0_SLOT_CAP__PWR_CONTROLLER_PRESENT_MASK 0x00000002L
+#define BIF_CFG_DEV0_RC0_SLOT_CAP__MRL_SENSOR_PRESENT_MASK 0x00000004L
+#define BIF_CFG_DEV0_RC0_SLOT_CAP__ATTN_INDICATOR_PRESENT_MASK 0x00000008L
+#define BIF_CFG_DEV0_RC0_SLOT_CAP__PWR_INDICATOR_PRESENT_MASK 0x00000010L
+#define BIF_CFG_DEV0_RC0_SLOT_CAP__HOTPLUG_SURPRISE_MASK 0x00000020L
+#define BIF_CFG_DEV0_RC0_SLOT_CAP__HOTPLUG_CAPABLE_MASK 0x00000040L
+#define BIF_CFG_DEV0_RC0_SLOT_CAP__SLOT_PWR_LIMIT_VALUE_MASK 0x00007F80L
+#define BIF_CFG_DEV0_RC0_SLOT_CAP__SLOT_PWR_LIMIT_SCALE_MASK 0x00018000L
+#define BIF_CFG_DEV0_RC0_SLOT_CAP__ELECTROMECH_INTERLOCK_PRESENT_MASK 0x00020000L
+#define BIF_CFG_DEV0_RC0_SLOT_CAP__NO_COMMAND_COMPLETED_SUPPORTED_MASK 0x00040000L
+#define BIF_CFG_DEV0_RC0_SLOT_CAP__PHYSICAL_SLOT_NUM_MASK 0xFFF80000L
+//BIF_CFG_DEV0_RC0_SLOT_CNTL
+#define BIF_CFG_DEV0_RC0_SLOT_CNTL__ATTN_BUTTON_PRESSED_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_SLOT_CNTL__PWR_FAULT_DETECTED_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_RC0_SLOT_CNTL__MRL_SENSOR_CHANGED_EN__SHIFT 0x2
+#define BIF_CFG_DEV0_RC0_SLOT_CNTL__PRESENCE_DETECT_CHANGED_EN__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_SLOT_CNTL__COMMAND_COMPLETED_INTR_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_SLOT_CNTL__HOTPLUG_INTR_EN__SHIFT 0x5
+#define BIF_CFG_DEV0_RC0_SLOT_CNTL__ATTN_INDICATOR_CNTL__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_SLOT_CNTL__PWR_INDICATOR_CNTL__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_SLOT_CNTL__PWR_CONTROLLER_CNTL__SHIFT 0xa
+#define BIF_CFG_DEV0_RC0_SLOT_CNTL__ELECTROMECH_INTERLOCK_CNTL__SHIFT 0xb
+#define BIF_CFG_DEV0_RC0_SLOT_CNTL__DL_STATE_CHANGED_EN__SHIFT 0xc
+#define BIF_CFG_DEV0_RC0_SLOT_CNTL__AUTO_SLOT_PWR_LIMIT_DISABLE__SHIFT 0xd
+#define BIF_CFG_DEV0_RC0_SLOT_CNTL__INBAND_PD_DISABLE__SHIFT 0xe
+#define BIF_CFG_DEV0_RC0_SLOT_CNTL__ATTN_BUTTON_PRESSED_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_RC0_SLOT_CNTL__PWR_FAULT_DETECTED_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_RC0_SLOT_CNTL__MRL_SENSOR_CHANGED_EN_MASK 0x0004L
+#define BIF_CFG_DEV0_RC0_SLOT_CNTL__PRESENCE_DETECT_CHANGED_EN_MASK 0x0008L
+#define BIF_CFG_DEV0_RC0_SLOT_CNTL__COMMAND_COMPLETED_INTR_EN_MASK 0x0010L
+#define BIF_CFG_DEV0_RC0_SLOT_CNTL__HOTPLUG_INTR_EN_MASK 0x0020L
+#define BIF_CFG_DEV0_RC0_SLOT_CNTL__ATTN_INDICATOR_CNTL_MASK 0x00C0L
+#define BIF_CFG_DEV0_RC0_SLOT_CNTL__PWR_INDICATOR_CNTL_MASK 0x0300L
+#define BIF_CFG_DEV0_RC0_SLOT_CNTL__PWR_CONTROLLER_CNTL_MASK 0x0400L
+#define BIF_CFG_DEV0_RC0_SLOT_CNTL__ELECTROMECH_INTERLOCK_CNTL_MASK 0x0800L
+#define BIF_CFG_DEV0_RC0_SLOT_CNTL__DL_STATE_CHANGED_EN_MASK 0x1000L
+#define BIF_CFG_DEV0_RC0_SLOT_CNTL__AUTO_SLOT_PWR_LIMIT_DISABLE_MASK 0x2000L
+#define BIF_CFG_DEV0_RC0_SLOT_CNTL__INBAND_PD_DISABLE_MASK 0x4000L
+//BIF_CFG_DEV0_RC0_SLOT_STATUS
+#define BIF_CFG_DEV0_RC0_SLOT_STATUS__ATTN_BUTTON_PRESSED__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_SLOT_STATUS__PWR_FAULT_DETECTED__SHIFT 0x1
+#define BIF_CFG_DEV0_RC0_SLOT_STATUS__MRL_SENSOR_CHANGED__SHIFT 0x2
+#define BIF_CFG_DEV0_RC0_SLOT_STATUS__PRESENCE_DETECT_CHANGED__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_SLOT_STATUS__COMMAND_COMPLETED__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_SLOT_STATUS__MRL_SENSOR_STATE__SHIFT 0x5
+#define BIF_CFG_DEV0_RC0_SLOT_STATUS__PRESENCE_DETECT_STATE__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_SLOT_STATUS__ELECTROMECH_INTERLOCK_STATUS__SHIFT 0x7
+#define BIF_CFG_DEV0_RC0_SLOT_STATUS__DL_STATE_CHANGED__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_SLOT_STATUS__ATTN_BUTTON_PRESSED_MASK 0x0001L
+#define BIF_CFG_DEV0_RC0_SLOT_STATUS__PWR_FAULT_DETECTED_MASK 0x0002L
+#define BIF_CFG_DEV0_RC0_SLOT_STATUS__MRL_SENSOR_CHANGED_MASK 0x0004L
+#define BIF_CFG_DEV0_RC0_SLOT_STATUS__PRESENCE_DETECT_CHANGED_MASK 0x0008L
+#define BIF_CFG_DEV0_RC0_SLOT_STATUS__COMMAND_COMPLETED_MASK 0x0010L
+#define BIF_CFG_DEV0_RC0_SLOT_STATUS__MRL_SENSOR_STATE_MASK 0x0020L
+#define BIF_CFG_DEV0_RC0_SLOT_STATUS__PRESENCE_DETECT_STATE_MASK 0x0040L
+#define BIF_CFG_DEV0_RC0_SLOT_STATUS__ELECTROMECH_INTERLOCK_STATUS_MASK 0x0080L
+#define BIF_CFG_DEV0_RC0_SLOT_STATUS__DL_STATE_CHANGED_MASK 0x0100L
+//BIF_CFG_DEV0_RC0_ROOT_CNTL
+#define BIF_CFG_DEV0_RC0_ROOT_CNTL__SERR_ON_CORR_ERR_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_ROOT_CNTL__SERR_ON_NONFATAL_ERR_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_RC0_ROOT_CNTL__SERR_ON_FATAL_ERR_EN__SHIFT 0x2
+#define BIF_CFG_DEV0_RC0_ROOT_CNTL__PM_INTERRUPT_EN__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_ROOT_CNTL__CRS_SOFTWARE_VISIBILITY_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_ROOT_CNTL__SERR_ON_CORR_ERR_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_RC0_ROOT_CNTL__SERR_ON_NONFATAL_ERR_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_RC0_ROOT_CNTL__SERR_ON_FATAL_ERR_EN_MASK 0x0004L
+#define BIF_CFG_DEV0_RC0_ROOT_CNTL__PM_INTERRUPT_EN_MASK 0x0008L
+#define BIF_CFG_DEV0_RC0_ROOT_CNTL__CRS_SOFTWARE_VISIBILITY_EN_MASK 0x0010L
+//BIF_CFG_DEV0_RC0_ROOT_CAP
+#define BIF_CFG_DEV0_RC0_ROOT_CAP__CRS_SOFTWARE_VISIBILITY__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_ROOT_CAP__CRS_SOFTWARE_VISIBILITY_MASK 0x0001L
+//BIF_CFG_DEV0_RC0_ROOT_STATUS
+#define BIF_CFG_DEV0_RC0_ROOT_STATUS__PME_REQUESTOR_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_ROOT_STATUS__PME_STATUS__SHIFT 0x10
+#define BIF_CFG_DEV0_RC0_ROOT_STATUS__PME_PENDING__SHIFT 0x11
+#define BIF_CFG_DEV0_RC0_ROOT_STATUS__PME_REQUESTOR_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_RC0_ROOT_STATUS__PME_STATUS_MASK 0x00010000L
+#define BIF_CFG_DEV0_RC0_ROOT_STATUS__PME_PENDING_MASK 0x00020000L
+//BIF_CFG_DEV0_RC0_DEVICE_CAP2
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP2__CPL_TIMEOUT_RANGE_SUPPORTED__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP2__CPL_TIMEOUT_DIS_SUPPORTED__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP2__ARI_FORWARDING_SUPPORTED__SHIFT 0x5
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP2__ATOMICOP_ROUTING_SUPPORTED__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP2__ATOMICOP_32CMPLT_SUPPORTED__SHIFT 0x7
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP2__ATOMICOP_64CMPLT_SUPPORTED__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP2__CAS128_CMPLT_SUPPORTED__SHIFT 0x9
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP2__NO_RO_ENABLED_P2P_PASSING__SHIFT 0xa
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP2__LTR_SUPPORTED__SHIFT 0xb
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP2__TPH_CPLR_SUPPORTED__SHIFT 0xc
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP2__LN_SYSTEM_CLS__SHIFT 0xe
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP2__TEN_BIT_TAG_COMPLETER_SUPPORTED__SHIFT 0x10
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP2__TEN_BIT_TAG_REQUESTER_SUPPORTED__SHIFT 0x11
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP2__OBFF_SUPPORTED__SHIFT 0x12
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP2__EXTENDED_FMT_FIELD_SUPPORTED__SHIFT 0x14
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP2__END_END_TLP_PREFIX_SUPPORTED__SHIFT 0x15
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP2__MAX_END_END_TLP_PREFIXES__SHIFT 0x16
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP2__EMER_POWER_REDUCTION_SUPPORTED__SHIFT 0x18
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP2__EMER_POWER_REDUCTION_INIT_REQ__SHIFT 0x1a
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP2__FRS_SUPPORTED__SHIFT 0x1f
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP2__CPL_TIMEOUT_RANGE_SUPPORTED_MASK 0x0000000FL
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP2__CPL_TIMEOUT_DIS_SUPPORTED_MASK 0x00000010L
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP2__ARI_FORWARDING_SUPPORTED_MASK 0x00000020L
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP2__ATOMICOP_ROUTING_SUPPORTED_MASK 0x00000040L
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP2__ATOMICOP_32CMPLT_SUPPORTED_MASK 0x00000080L
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP2__ATOMICOP_64CMPLT_SUPPORTED_MASK 0x00000100L
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP2__CAS128_CMPLT_SUPPORTED_MASK 0x00000200L
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP2__NO_RO_ENABLED_P2P_PASSING_MASK 0x00000400L
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP2__LTR_SUPPORTED_MASK 0x00000800L
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP2__TPH_CPLR_SUPPORTED_MASK 0x00003000L
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP2__LN_SYSTEM_CLS_MASK 0x0000C000L
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP2__TEN_BIT_TAG_COMPLETER_SUPPORTED_MASK 0x00010000L
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP2__TEN_BIT_TAG_REQUESTER_SUPPORTED_MASK 0x00020000L
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP2__OBFF_SUPPORTED_MASK 0x000C0000L
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP2__EXTENDED_FMT_FIELD_SUPPORTED_MASK 0x00100000L
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP2__END_END_TLP_PREFIX_SUPPORTED_MASK 0x00200000L
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP2__MAX_END_END_TLP_PREFIXES_MASK 0x00C00000L
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP2__EMER_POWER_REDUCTION_SUPPORTED_MASK 0x03000000L
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP2__EMER_POWER_REDUCTION_INIT_REQ_MASK 0x04000000L
+#define BIF_CFG_DEV0_RC0_DEVICE_CAP2__FRS_SUPPORTED_MASK 0x80000000L
+//BIF_CFG_DEV0_RC0_DEVICE_CNTL2
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL2__CPL_TIMEOUT_VALUE__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL2__CPL_TIMEOUT_DIS__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL2__ARI_FORWARDING_EN__SHIFT 0x5
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL2__ATOMICOP_REQUEST_EN__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL2__ATOMICOP_EGRESS_BLOCKING__SHIFT 0x7
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL2__IDO_REQUEST_ENABLE__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL2__IDO_COMPLETION_ENABLE__SHIFT 0x9
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL2__LTR_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL2__EMER_POWER_REDUCTION_REQUEST__SHIFT 0xb
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL2__TEN_BIT_TAG_REQUESTER_ENABLE__SHIFT 0xc
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL2__OBFF_EN__SHIFT 0xd
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL2__END_END_TLP_PREFIX_BLOCKING__SHIFT 0xf
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL2__CPL_TIMEOUT_VALUE_MASK 0x000FL
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL2__CPL_TIMEOUT_DIS_MASK 0x0010L
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL2__ARI_FORWARDING_EN_MASK 0x0020L
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL2__ATOMICOP_REQUEST_EN_MASK 0x0040L
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL2__ATOMICOP_EGRESS_BLOCKING_MASK 0x0080L
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL2__IDO_REQUEST_ENABLE_MASK 0x0100L
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL2__IDO_COMPLETION_ENABLE_MASK 0x0200L
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL2__LTR_EN_MASK 0x0400L
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL2__EMER_POWER_REDUCTION_REQUEST_MASK 0x0800L
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL2__TEN_BIT_TAG_REQUESTER_ENABLE_MASK 0x1000L
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL2__OBFF_EN_MASK 0x6000L
+#define BIF_CFG_DEV0_RC0_DEVICE_CNTL2__END_END_TLP_PREFIX_BLOCKING_MASK 0x8000L
+//BIF_CFG_DEV0_RC0_DEVICE_STATUS2
+#define BIF_CFG_DEV0_RC0_DEVICE_STATUS2__RESERVED__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_DEVICE_STATUS2__RESERVED_MASK 0xFFFFL
+//BIF_CFG_DEV0_RC0_LINK_CAP2
+#define BIF_CFG_DEV0_RC0_LINK_CAP2__SUPPORTED_LINK_SPEED__SHIFT 0x1
+#define BIF_CFG_DEV0_RC0_LINK_CAP2__CROSSLINK_SUPPORTED__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_LINK_CAP2__LOWER_SKP_OS_GEN_SUPPORT__SHIFT 0x9
+#define BIF_CFG_DEV0_RC0_LINK_CAP2__LOWER_SKP_OS_RCV_SUPPORT__SHIFT 0x10
+#define BIF_CFG_DEV0_RC0_LINK_CAP2__RTM1_PRESENCE_DET_SUPPORT__SHIFT 0x17
+#define BIF_CFG_DEV0_RC0_LINK_CAP2__RTM2_PRESENCE_DET_SUPPORT__SHIFT 0x18
+#define BIF_CFG_DEV0_RC0_LINK_CAP2__DRS_SUPPORTED__SHIFT 0x1f
+#define BIF_CFG_DEV0_RC0_LINK_CAP2__SUPPORTED_LINK_SPEED_MASK 0x000000FEL
+#define BIF_CFG_DEV0_RC0_LINK_CAP2__CROSSLINK_SUPPORTED_MASK 0x00000100L
+#define BIF_CFG_DEV0_RC0_LINK_CAP2__LOWER_SKP_OS_GEN_SUPPORT_MASK 0x0000FE00L
+#define BIF_CFG_DEV0_RC0_LINK_CAP2__LOWER_SKP_OS_RCV_SUPPORT_MASK 0x007F0000L
+#define BIF_CFG_DEV0_RC0_LINK_CAP2__RTM1_PRESENCE_DET_SUPPORT_MASK 0x00800000L
+#define BIF_CFG_DEV0_RC0_LINK_CAP2__RTM2_PRESENCE_DET_SUPPORT_MASK 0x01000000L
+#define BIF_CFG_DEV0_RC0_LINK_CAP2__DRS_SUPPORTED_MASK 0x80000000L
+//BIF_CFG_DEV0_RC0_LINK_CNTL2
+#define BIF_CFG_DEV0_RC0_LINK_CNTL2__TARGET_LINK_SPEED__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LINK_CNTL2__ENTER_COMPLIANCE__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_LINK_CNTL2__HW_AUTONOMOUS_SPEED_DISABLE__SHIFT 0x5
+#define BIF_CFG_DEV0_RC0_LINK_CNTL2__SELECTABLE_DEEMPHASIS__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_LINK_CNTL2__XMIT_MARGIN__SHIFT 0x7
+#define BIF_CFG_DEV0_RC0_LINK_CNTL2__ENTER_MOD_COMPLIANCE__SHIFT 0xa
+#define BIF_CFG_DEV0_RC0_LINK_CNTL2__COMPLIANCE_SOS__SHIFT 0xb
+#define BIF_CFG_DEV0_RC0_LINK_CNTL2__COMPLIANCE_DEEMPHASIS__SHIFT 0xc
+#define BIF_CFG_DEV0_RC0_LINK_CNTL2__TARGET_LINK_SPEED_MASK 0x000FL
+#define BIF_CFG_DEV0_RC0_LINK_CNTL2__ENTER_COMPLIANCE_MASK 0x0010L
+#define BIF_CFG_DEV0_RC0_LINK_CNTL2__HW_AUTONOMOUS_SPEED_DISABLE_MASK 0x0020L
+#define BIF_CFG_DEV0_RC0_LINK_CNTL2__SELECTABLE_DEEMPHASIS_MASK 0x0040L
+#define BIF_CFG_DEV0_RC0_LINK_CNTL2__XMIT_MARGIN_MASK 0x0380L
+#define BIF_CFG_DEV0_RC0_LINK_CNTL2__ENTER_MOD_COMPLIANCE_MASK 0x0400L
+#define BIF_CFG_DEV0_RC0_LINK_CNTL2__COMPLIANCE_SOS_MASK 0x0800L
+#define BIF_CFG_DEV0_RC0_LINK_CNTL2__COMPLIANCE_DEEMPHASIS_MASK 0xF000L
+//BIF_CFG_DEV0_RC0_LINK_STATUS2
+#define BIF_CFG_DEV0_RC0_LINK_STATUS2__CUR_DEEMPHASIS_LEVEL__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LINK_STATUS2__EQUALIZATION_COMPLETE_8GT__SHIFT 0x1
+#define BIF_CFG_DEV0_RC0_LINK_STATUS2__EQUALIZATION_PHASE1_SUCCESS_8GT__SHIFT 0x2
+#define BIF_CFG_DEV0_RC0_LINK_STATUS2__EQUALIZATION_PHASE2_SUCCESS_8GT__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_LINK_STATUS2__EQUALIZATION_PHASE3_SUCCESS_8GT__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_LINK_STATUS2__LINK_EQUALIZATION_REQUEST_8GT__SHIFT 0x5
+#define BIF_CFG_DEV0_RC0_LINK_STATUS2__RTM1_PRESENCE_DET__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_LINK_STATUS2__RTM2_PRESENCE_DET__SHIFT 0x7
+#define BIF_CFG_DEV0_RC0_LINK_STATUS2__CROSSLINK_RESOLUTION__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_LINK_STATUS2__DOWNSTREAM_COMPONENT_PRESENCE__SHIFT 0xc
+#define BIF_CFG_DEV0_RC0_LINK_STATUS2__DRS_MESSAGE_RECEIVED__SHIFT 0xf
+#define BIF_CFG_DEV0_RC0_LINK_STATUS2__CUR_DEEMPHASIS_LEVEL_MASK 0x0001L
+#define BIF_CFG_DEV0_RC0_LINK_STATUS2__EQUALIZATION_COMPLETE_8GT_MASK 0x0002L
+#define BIF_CFG_DEV0_RC0_LINK_STATUS2__EQUALIZATION_PHASE1_SUCCESS_8GT_MASK 0x0004L
+#define BIF_CFG_DEV0_RC0_LINK_STATUS2__EQUALIZATION_PHASE2_SUCCESS_8GT_MASK 0x0008L
+#define BIF_CFG_DEV0_RC0_LINK_STATUS2__EQUALIZATION_PHASE3_SUCCESS_8GT_MASK 0x0010L
+#define BIF_CFG_DEV0_RC0_LINK_STATUS2__LINK_EQUALIZATION_REQUEST_8GT_MASK 0x0020L
+#define BIF_CFG_DEV0_RC0_LINK_STATUS2__RTM1_PRESENCE_DET_MASK 0x0040L
+#define BIF_CFG_DEV0_RC0_LINK_STATUS2__RTM2_PRESENCE_DET_MASK 0x0080L
+#define BIF_CFG_DEV0_RC0_LINK_STATUS2__CROSSLINK_RESOLUTION_MASK 0x0300L
+#define BIF_CFG_DEV0_RC0_LINK_STATUS2__DOWNSTREAM_COMPONENT_PRESENCE_MASK 0x7000L
+#define BIF_CFG_DEV0_RC0_LINK_STATUS2__DRS_MESSAGE_RECEIVED_MASK 0x8000L
+//BIF_CFG_DEV0_RC0_SLOT_CAP2
+#define BIF_CFG_DEV0_RC0_SLOT_CAP2__INBAND_PD_DISABLE_SUPPORTED__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_SLOT_CAP2__INBAND_PD_DISABLE_SUPPORTED_MASK 0x00000001L
+//BIF_CFG_DEV0_RC0_SLOT_CNTL2
+#define BIF_CFG_DEV0_RC0_SLOT_CNTL2__RESERVED__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_SLOT_CNTL2__RESERVED_MASK 0xFFFFL
+//BIF_CFG_DEV0_RC0_SLOT_STATUS2
+#define BIF_CFG_DEV0_RC0_SLOT_STATUS2__RESERVED__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_SLOT_STATUS2__RESERVED_MASK 0xFFFFL
+//BIF_CFG_DEV0_RC0_MSI_CAP_LIST
+#define BIF_CFG_DEV0_RC0_MSI_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_MSI_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_MSI_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_RC0_MSI_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_RC0_MSI_MSG_CNTL
+#define BIF_CFG_DEV0_RC0_MSI_MSG_CNTL__MSI_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_MSI_MSG_CNTL__MSI_MULTI_CAP__SHIFT 0x1
+#define BIF_CFG_DEV0_RC0_MSI_MSG_CNTL__MSI_MULTI_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_MSI_MSG_CNTL__MSI_64BIT__SHIFT 0x7
+#define BIF_CFG_DEV0_RC0_MSI_MSG_CNTL__MSI_PERVECTOR_MASKING_CAP__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_CAP__SHIFT 0x9
+#define BIF_CFG_DEV0_RC0_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_RC0_MSI_MSG_CNTL__MSI_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_RC0_MSI_MSG_CNTL__MSI_MULTI_CAP_MASK 0x000EL
+#define BIF_CFG_DEV0_RC0_MSI_MSG_CNTL__MSI_MULTI_EN_MASK 0x0070L
+#define BIF_CFG_DEV0_RC0_MSI_MSG_CNTL__MSI_64BIT_MASK 0x0080L
+#define BIF_CFG_DEV0_RC0_MSI_MSG_CNTL__MSI_PERVECTOR_MASKING_CAP_MASK 0x0100L
+#define BIF_CFG_DEV0_RC0_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_CAP_MASK 0x0200L
+#define BIF_CFG_DEV0_RC0_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_EN_MASK 0x0400L
+//BIF_CFG_DEV0_RC0_MSI_MSG_ADDR_LO
+#define BIF_CFG_DEV0_RC0_MSI_MSG_ADDR_LO__MSI_MSG_ADDR_LO__SHIFT 0x2
+#define BIF_CFG_DEV0_RC0_MSI_MSG_ADDR_LO__MSI_MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//BIF_CFG_DEV0_RC0_MSI_MSG_ADDR_HI
+#define BIF_CFG_DEV0_RC0_MSI_MSG_ADDR_HI__MSI_MSG_ADDR_HI__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_MSI_MSG_ADDR_HI__MSI_MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_RC0_MSI_MSG_DATA
+#define BIF_CFG_DEV0_RC0_MSI_MSG_DATA__MSI_DATA__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_MSI_MSG_DATA__MSI_DATA_MASK 0xFFFFL
+//BIF_CFG_DEV0_RC0_MSI_EXT_MSG_DATA
+#define BIF_CFG_DEV0_RC0_MSI_EXT_MSG_DATA__MSI_EXT_DATA__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_MSI_EXT_MSG_DATA__MSI_EXT_DATA_MASK 0xFFFFL
+//BIF_CFG_DEV0_RC0_MSI_MSG_DATA_64
+#define BIF_CFG_DEV0_RC0_MSI_MSG_DATA_64__MSI_DATA_64__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_MSI_MSG_DATA_64__MSI_DATA_64_MASK 0xFFFFL
+//BIF_CFG_DEV0_RC0_MSI_EXT_MSG_DATA_64
+#define BIF_CFG_DEV0_RC0_MSI_EXT_MSG_DATA_64__MSI_EXT_DATA_64__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_MSI_EXT_MSG_DATA_64__MSI_EXT_DATA_64_MASK 0xFFFFL
+//BIF_CFG_DEV0_RC0_SSID_CAP_LIST
+#define BIF_CFG_DEV0_RC0_SSID_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_SSID_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_SSID_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_RC0_SSID_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_RC0_SSID_CAP
+#define BIF_CFG_DEV0_RC0_SSID_CAP__SUBSYSTEM_VENDOR_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_SSID_CAP__SUBSYSTEM_ID__SHIFT 0x10
+#define BIF_CFG_DEV0_RC0_SSID_CAP__SUBSYSTEM_VENDOR_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_RC0_SSID_CAP__SUBSYSTEM_ID_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_RC0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST
+#define BIF_CFG_DEV0_RC0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_RC0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_RC0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_RC0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_RC0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_RC0_PCIE_VENDOR_SPECIFIC_HDR
+#define BIF_CFG_DEV0_RC0_PCIE_VENDOR_SPECIFIC_HDR__VSEC_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_VENDOR_SPECIFIC_HDR__VSEC_REV__SHIFT 0x10
+#define BIF_CFG_DEV0_RC0_PCIE_VENDOR_SPECIFIC_HDR__VSEC_LENGTH__SHIFT 0x14
+#define BIF_CFG_DEV0_RC0_PCIE_VENDOR_SPECIFIC_HDR__VSEC_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_RC0_PCIE_VENDOR_SPECIFIC_HDR__VSEC_REV_MASK 0x000F0000L
+#define BIF_CFG_DEV0_RC0_PCIE_VENDOR_SPECIFIC_HDR__VSEC_LENGTH_MASK 0xFFF00000L
+//BIF_CFG_DEV0_RC0_PCIE_VENDOR_SPECIFIC1
+#define BIF_CFG_DEV0_RC0_PCIE_VENDOR_SPECIFIC1__SCRATCH__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_VENDOR_SPECIFIC1__SCRATCH_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_RC0_PCIE_VENDOR_SPECIFIC2
+#define BIF_CFG_DEV0_RC0_PCIE_VENDOR_SPECIFIC2__SCRATCH__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_VENDOR_SPECIFIC2__SCRATCH_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_RC0_PCIE_VC_ENH_CAP_LIST
+#define BIF_CFG_DEV0_RC0_PCIE_VC_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_VC_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_RC0_PCIE_VC_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_RC0_PCIE_VC_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_RC0_PCIE_VC_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_RC0_PCIE_VC_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_RC0_PCIE_PORT_VC_CAP_REG1
+#define BIF_CFG_DEV0_RC0_PCIE_PORT_VC_CAP_REG1__EXT_VC_COUNT__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_PORT_VC_CAP_REG1__LOW_PRIORITY_EXT_VC_COUNT__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_PCIE_PORT_VC_CAP_REG1__REF_CLK__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_PCIE_PORT_VC_CAP_REG1__PORT_ARB_TABLE_ENTRY_SIZE__SHIFT 0xa
+#define BIF_CFG_DEV0_RC0_PCIE_PORT_VC_CAP_REG1__EXT_VC_COUNT_MASK 0x00000007L
+#define BIF_CFG_DEV0_RC0_PCIE_PORT_VC_CAP_REG1__LOW_PRIORITY_EXT_VC_COUNT_MASK 0x00000070L
+#define BIF_CFG_DEV0_RC0_PCIE_PORT_VC_CAP_REG1__REF_CLK_MASK 0x00000300L
+#define BIF_CFG_DEV0_RC0_PCIE_PORT_VC_CAP_REG1__PORT_ARB_TABLE_ENTRY_SIZE_MASK 0x00000C00L
+//BIF_CFG_DEV0_RC0_PCIE_PORT_VC_CAP_REG2
+#define BIF_CFG_DEV0_RC0_PCIE_PORT_VC_CAP_REG2__VC_ARB_CAP__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_PORT_VC_CAP_REG2__VC_ARB_TABLE_OFFSET__SHIFT 0x18
+#define BIF_CFG_DEV0_RC0_PCIE_PORT_VC_CAP_REG2__VC_ARB_CAP_MASK 0x000000FFL
+#define BIF_CFG_DEV0_RC0_PCIE_PORT_VC_CAP_REG2__VC_ARB_TABLE_OFFSET_MASK 0xFF000000L
+//BIF_CFG_DEV0_RC0_PCIE_PORT_VC_CNTL
+#define BIF_CFG_DEV0_RC0_PCIE_PORT_VC_CNTL__LOAD_VC_ARB_TABLE__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_PORT_VC_CNTL__VC_ARB_SELECT__SHIFT 0x1
+#define BIF_CFG_DEV0_RC0_PCIE_PORT_VC_CNTL__LOAD_VC_ARB_TABLE_MASK 0x0001L
+#define BIF_CFG_DEV0_RC0_PCIE_PORT_VC_CNTL__VC_ARB_SELECT_MASK 0x000EL
+//BIF_CFG_DEV0_RC0_PCIE_PORT_VC_STATUS
+#define BIF_CFG_DEV0_RC0_PCIE_PORT_VC_STATUS__VC_ARB_TABLE_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_PORT_VC_STATUS__VC_ARB_TABLE_STATUS_MASK 0x0001L
+//BIF_CFG_DEV0_RC0_PCIE_VC0_RESOURCE_CAP
+#define BIF_CFG_DEV0_RC0_PCIE_VC0_RESOURCE_CAP__PORT_ARB_CAP__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_VC0_RESOURCE_CAP__REJECT_SNOOP_TRANS__SHIFT 0xf
+#define BIF_CFG_DEV0_RC0_PCIE_VC0_RESOURCE_CAP__MAX_TIME_SLOTS__SHIFT 0x10
+#define BIF_CFG_DEV0_RC0_PCIE_VC0_RESOURCE_CAP__PORT_ARB_TABLE_OFFSET__SHIFT 0x18
+#define BIF_CFG_DEV0_RC0_PCIE_VC0_RESOURCE_CAP__PORT_ARB_CAP_MASK 0x000000FFL
+#define BIF_CFG_DEV0_RC0_PCIE_VC0_RESOURCE_CAP__REJECT_SNOOP_TRANS_MASK 0x00008000L
+#define BIF_CFG_DEV0_RC0_PCIE_VC0_RESOURCE_CAP__MAX_TIME_SLOTS_MASK 0x007F0000L
+#define BIF_CFG_DEV0_RC0_PCIE_VC0_RESOURCE_CAP__PORT_ARB_TABLE_OFFSET_MASK 0xFF000000L
+//BIF_CFG_DEV0_RC0_PCIE_VC0_RESOURCE_CNTL
+#define BIF_CFG_DEV0_RC0_PCIE_VC0_RESOURCE_CNTL__TC_VC_MAP_TC0__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_VC0_RESOURCE_CNTL__TC_VC_MAP_TC1_7__SHIFT 0x1
+#define BIF_CFG_DEV0_RC0_PCIE_VC0_RESOURCE_CNTL__LOAD_PORT_ARB_TABLE__SHIFT 0x10
+#define BIF_CFG_DEV0_RC0_PCIE_VC0_RESOURCE_CNTL__PORT_ARB_SELECT__SHIFT 0x11
+#define BIF_CFG_DEV0_RC0_PCIE_VC0_RESOURCE_CNTL__VC_ID__SHIFT 0x18
+#define BIF_CFG_DEV0_RC0_PCIE_VC0_RESOURCE_CNTL__VC_ENABLE__SHIFT 0x1f
+#define BIF_CFG_DEV0_RC0_PCIE_VC0_RESOURCE_CNTL__TC_VC_MAP_TC0_MASK 0x00000001L
+#define BIF_CFG_DEV0_RC0_PCIE_VC0_RESOURCE_CNTL__TC_VC_MAP_TC1_7_MASK 0x000000FEL
+#define BIF_CFG_DEV0_RC0_PCIE_VC0_RESOURCE_CNTL__LOAD_PORT_ARB_TABLE_MASK 0x00010000L
+#define BIF_CFG_DEV0_RC0_PCIE_VC0_RESOURCE_CNTL__PORT_ARB_SELECT_MASK 0x000E0000L
+#define BIF_CFG_DEV0_RC0_PCIE_VC0_RESOURCE_CNTL__VC_ID_MASK 0x07000000L
+#define BIF_CFG_DEV0_RC0_PCIE_VC0_RESOURCE_CNTL__VC_ENABLE_MASK 0x80000000L
+//BIF_CFG_DEV0_RC0_PCIE_VC0_RESOURCE_STATUS
+#define BIF_CFG_DEV0_RC0_PCIE_VC0_RESOURCE_STATUS__PORT_ARB_TABLE_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_VC0_RESOURCE_STATUS__VC_NEGOTIATION_PENDING__SHIFT 0x1
+#define BIF_CFG_DEV0_RC0_PCIE_VC0_RESOURCE_STATUS__PORT_ARB_TABLE_STATUS_MASK 0x0001L
+#define BIF_CFG_DEV0_RC0_PCIE_VC0_RESOURCE_STATUS__VC_NEGOTIATION_PENDING_MASK 0x0002L
+//BIF_CFG_DEV0_RC0_PCIE_VC1_RESOURCE_CAP
+#define BIF_CFG_DEV0_RC0_PCIE_VC1_RESOURCE_CAP__PORT_ARB_CAP__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_VC1_RESOURCE_CAP__REJECT_SNOOP_TRANS__SHIFT 0xf
+#define BIF_CFG_DEV0_RC0_PCIE_VC1_RESOURCE_CAP__MAX_TIME_SLOTS__SHIFT 0x10
+#define BIF_CFG_DEV0_RC0_PCIE_VC1_RESOURCE_CAP__PORT_ARB_TABLE_OFFSET__SHIFT 0x18
+#define BIF_CFG_DEV0_RC0_PCIE_VC1_RESOURCE_CAP__PORT_ARB_CAP_MASK 0x000000FFL
+#define BIF_CFG_DEV0_RC0_PCIE_VC1_RESOURCE_CAP__REJECT_SNOOP_TRANS_MASK 0x00008000L
+#define BIF_CFG_DEV0_RC0_PCIE_VC1_RESOURCE_CAP__MAX_TIME_SLOTS_MASK 0x003F0000L
+#define BIF_CFG_DEV0_RC0_PCIE_VC1_RESOURCE_CAP__PORT_ARB_TABLE_OFFSET_MASK 0xFF000000L
+//BIF_CFG_DEV0_RC0_PCIE_VC1_RESOURCE_CNTL
+#define BIF_CFG_DEV0_RC0_PCIE_VC1_RESOURCE_CNTL__TC_VC_MAP_TC0__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_VC1_RESOURCE_CNTL__TC_VC_MAP_TC1_7__SHIFT 0x1
+#define BIF_CFG_DEV0_RC0_PCIE_VC1_RESOURCE_CNTL__LOAD_PORT_ARB_TABLE__SHIFT 0x10
+#define BIF_CFG_DEV0_RC0_PCIE_VC1_RESOURCE_CNTL__PORT_ARB_SELECT__SHIFT 0x11
+#define BIF_CFG_DEV0_RC0_PCIE_VC1_RESOURCE_CNTL__VC_ID__SHIFT 0x18
+#define BIF_CFG_DEV0_RC0_PCIE_VC1_RESOURCE_CNTL__VC_ENABLE__SHIFT 0x1f
+#define BIF_CFG_DEV0_RC0_PCIE_VC1_RESOURCE_CNTL__TC_VC_MAP_TC0_MASK 0x00000001L
+#define BIF_CFG_DEV0_RC0_PCIE_VC1_RESOURCE_CNTL__TC_VC_MAP_TC1_7_MASK 0x000000FEL
+#define BIF_CFG_DEV0_RC0_PCIE_VC1_RESOURCE_CNTL__LOAD_PORT_ARB_TABLE_MASK 0x00010000L
+#define BIF_CFG_DEV0_RC0_PCIE_VC1_RESOURCE_CNTL__PORT_ARB_SELECT_MASK 0x000E0000L
+#define BIF_CFG_DEV0_RC0_PCIE_VC1_RESOURCE_CNTL__VC_ID_MASK 0x07000000L
+#define BIF_CFG_DEV0_RC0_PCIE_VC1_RESOURCE_CNTL__VC_ENABLE_MASK 0x80000000L
+//BIF_CFG_DEV0_RC0_PCIE_VC1_RESOURCE_STATUS
+#define BIF_CFG_DEV0_RC0_PCIE_VC1_RESOURCE_STATUS__PORT_ARB_TABLE_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_VC1_RESOURCE_STATUS__VC_NEGOTIATION_PENDING__SHIFT 0x1
+#define BIF_CFG_DEV0_RC0_PCIE_VC1_RESOURCE_STATUS__PORT_ARB_TABLE_STATUS_MASK 0x0001L
+#define BIF_CFG_DEV0_RC0_PCIE_VC1_RESOURCE_STATUS__VC_NEGOTIATION_PENDING_MASK 0x0002L
+//BIF_CFG_DEV0_RC0_PCIE_DEV_SERIAL_NUM_ENH_CAP_LIST
+#define BIF_CFG_DEV0_RC0_PCIE_DEV_SERIAL_NUM_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_DEV_SERIAL_NUM_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_RC0_PCIE_DEV_SERIAL_NUM_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_RC0_PCIE_DEV_SERIAL_NUM_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_RC0_PCIE_DEV_SERIAL_NUM_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_RC0_PCIE_DEV_SERIAL_NUM_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_RC0_PCIE_DEV_SERIAL_NUM_DW1
+#define BIF_CFG_DEV0_RC0_PCIE_DEV_SERIAL_NUM_DW1__SERIAL_NUMBER_LO__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_DEV_SERIAL_NUM_DW1__SERIAL_NUMBER_LO_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_RC0_PCIE_DEV_SERIAL_NUM_DW2
+#define BIF_CFG_DEV0_RC0_PCIE_DEV_SERIAL_NUM_DW2__SERIAL_NUMBER_HI__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_DEV_SERIAL_NUM_DW2__SERIAL_NUMBER_HI_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_RC0_PCIE_ADV_ERR_RPT_ENH_CAP_LIST
+#define BIF_CFG_DEV0_RC0_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_RC0_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_RC0_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_RC0_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_RC0_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_STATUS
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_STATUS__DLP_ERR_STATUS__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_STATUS__SURPDN_ERR_STATUS__SHIFT 0x5
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_STATUS__PSN_ERR_STATUS__SHIFT 0xc
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_STATUS__FC_ERR_STATUS__SHIFT 0xd
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_STATUS__CPL_TIMEOUT_STATUS__SHIFT 0xe
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_STATUS__CPL_ABORT_ERR_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_STATUS__UNEXP_CPL_STATUS__SHIFT 0x10
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_STATUS__RCV_OVFL_STATUS__SHIFT 0x11
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_STATUS__MAL_TLP_STATUS__SHIFT 0x12
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_STATUS__ECRC_ERR_STATUS__SHIFT 0x13
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_STATUS__UNSUPP_REQ_ERR_STATUS__SHIFT 0x14
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_STATUS__ACS_VIOLATION_STATUS__SHIFT 0x15
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_STATUS__UNCORR_INT_ERR_STATUS__SHIFT 0x16
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_STATUS__MC_BLOCKED_TLP_STATUS__SHIFT 0x17
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_STATUS__ATOMICOP_EGRESS_BLOCKED_STATUS__SHIFT 0x18
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_STATUS__TLP_PREFIX_BLOCKED_ERR_STATUS__SHIFT 0x19
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_STATUS__POISONED_TLP_EGRESS_BLOCKED_STATUS__SHIFT 0x1a
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_STATUS__DLP_ERR_STATUS_MASK 0x00000010L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_STATUS__SURPDN_ERR_STATUS_MASK 0x00000020L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_STATUS__PSN_ERR_STATUS_MASK 0x00001000L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_STATUS__FC_ERR_STATUS_MASK 0x00002000L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_STATUS__CPL_TIMEOUT_STATUS_MASK 0x00004000L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_STATUS__CPL_ABORT_ERR_STATUS_MASK 0x00008000L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_STATUS__UNEXP_CPL_STATUS_MASK 0x00010000L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_STATUS__RCV_OVFL_STATUS_MASK 0x00020000L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_STATUS__MAL_TLP_STATUS_MASK 0x00040000L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_STATUS__ECRC_ERR_STATUS_MASK 0x00080000L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_STATUS__UNSUPP_REQ_ERR_STATUS_MASK 0x00100000L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_STATUS__ACS_VIOLATION_STATUS_MASK 0x00200000L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_STATUS__UNCORR_INT_ERR_STATUS_MASK 0x00400000L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_STATUS__MC_BLOCKED_TLP_STATUS_MASK 0x00800000L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_STATUS__ATOMICOP_EGRESS_BLOCKED_STATUS_MASK 0x01000000L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_STATUS__TLP_PREFIX_BLOCKED_ERR_STATUS_MASK 0x02000000L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_STATUS__POISONED_TLP_EGRESS_BLOCKED_STATUS_MASK 0x04000000L
+//BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_MASK
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_MASK__DLP_ERR_MASK__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_MASK__SURPDN_ERR_MASK__SHIFT 0x5
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_MASK__PSN_ERR_MASK__SHIFT 0xc
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_MASK__FC_ERR_MASK__SHIFT 0xd
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_MASK__CPL_TIMEOUT_MASK__SHIFT 0xe
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_MASK__CPL_ABORT_ERR_MASK__SHIFT 0xf
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_MASK__UNEXP_CPL_MASK__SHIFT 0x10
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_MASK__RCV_OVFL_MASK__SHIFT 0x11
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_MASK__MAL_TLP_MASK__SHIFT 0x12
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_MASK__ECRC_ERR_MASK__SHIFT 0x13
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_MASK__UNSUPP_REQ_ERR_MASK__SHIFT 0x14
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_MASK__ACS_VIOLATION_MASK__SHIFT 0x15
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_MASK__UNCORR_INT_ERR_MASK__SHIFT 0x16
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_MASK__MC_BLOCKED_TLP_MASK__SHIFT 0x17
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_MASK__ATOMICOP_EGRESS_BLOCKED_MASK__SHIFT 0x18
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_MASK__TLP_PREFIX_BLOCKED_ERR_MASK__SHIFT 0x19
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_MASK__POISONED_TLP_EGRESS_BLOCKED_MASK__SHIFT 0x1a
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_MASK__DLP_ERR_MASK_MASK 0x00000010L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_MASK__SURPDN_ERR_MASK_MASK 0x00000020L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_MASK__PSN_ERR_MASK_MASK 0x00001000L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_MASK__FC_ERR_MASK_MASK 0x00002000L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_MASK__CPL_TIMEOUT_MASK_MASK 0x00004000L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_MASK__CPL_ABORT_ERR_MASK_MASK 0x00008000L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_MASK__UNEXP_CPL_MASK_MASK 0x00010000L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_MASK__RCV_OVFL_MASK_MASK 0x00020000L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_MASK__MAL_TLP_MASK_MASK 0x00040000L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_MASK__ECRC_ERR_MASK_MASK 0x00080000L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_MASK__UNSUPP_REQ_ERR_MASK_MASK 0x00100000L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_MASK__ACS_VIOLATION_MASK_MASK 0x00200000L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_MASK__UNCORR_INT_ERR_MASK_MASK 0x00400000L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_MASK__MC_BLOCKED_TLP_MASK_MASK 0x00800000L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_MASK__ATOMICOP_EGRESS_BLOCKED_MASK_MASK 0x01000000L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_MASK__TLP_PREFIX_BLOCKED_ERR_MASK_MASK 0x02000000L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_MASK__POISONED_TLP_EGRESS_BLOCKED_MASK_MASK 0x04000000L
+//BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_SEVERITY
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_SEVERITY__DLP_ERR_SEVERITY__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_SEVERITY__SURPDN_ERR_SEVERITY__SHIFT 0x5
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_SEVERITY__PSN_ERR_SEVERITY__SHIFT 0xc
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_SEVERITY__FC_ERR_SEVERITY__SHIFT 0xd
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_SEVERITY__CPL_TIMEOUT_SEVERITY__SHIFT 0xe
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_SEVERITY__CPL_ABORT_ERR_SEVERITY__SHIFT 0xf
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_SEVERITY__UNEXP_CPL_SEVERITY__SHIFT 0x10
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_SEVERITY__RCV_OVFL_SEVERITY__SHIFT 0x11
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_SEVERITY__MAL_TLP_SEVERITY__SHIFT 0x12
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_SEVERITY__ECRC_ERR_SEVERITY__SHIFT 0x13
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_SEVERITY__UNSUPP_REQ_ERR_SEVERITY__SHIFT 0x14
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_SEVERITY__ACS_VIOLATION_SEVERITY__SHIFT 0x15
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_SEVERITY__UNCORR_INT_ERR_SEVERITY__SHIFT 0x16
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_SEVERITY__MC_BLOCKED_TLP_SEVERITY__SHIFT 0x17
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_SEVERITY__ATOMICOP_EGRESS_BLOCKED_SEVERITY__SHIFT 0x18
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_SEVERITY__TLP_PREFIX_BLOCKED_ERR_SEVERITY__SHIFT 0x19
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_SEVERITY__POISONED_TLP_EGRESS_BLOCKED_SEVERITY__SHIFT 0x1a
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_SEVERITY__DLP_ERR_SEVERITY_MASK 0x00000010L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_SEVERITY__SURPDN_ERR_SEVERITY_MASK 0x00000020L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_SEVERITY__PSN_ERR_SEVERITY_MASK 0x00001000L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_SEVERITY__FC_ERR_SEVERITY_MASK 0x00002000L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_SEVERITY__CPL_TIMEOUT_SEVERITY_MASK 0x00004000L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_SEVERITY__CPL_ABORT_ERR_SEVERITY_MASK 0x00008000L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_SEVERITY__UNEXP_CPL_SEVERITY_MASK 0x00010000L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_SEVERITY__RCV_OVFL_SEVERITY_MASK 0x00020000L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_SEVERITY__MAL_TLP_SEVERITY_MASK 0x00040000L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_SEVERITY__ECRC_ERR_SEVERITY_MASK 0x00080000L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_SEVERITY__UNSUPP_REQ_ERR_SEVERITY_MASK 0x00100000L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_SEVERITY__ACS_VIOLATION_SEVERITY_MASK 0x00200000L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_SEVERITY__UNCORR_INT_ERR_SEVERITY_MASK 0x00400000L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_SEVERITY__MC_BLOCKED_TLP_SEVERITY_MASK 0x00800000L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_SEVERITY__ATOMICOP_EGRESS_BLOCKED_SEVERITY_MASK 0x01000000L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_SEVERITY__TLP_PREFIX_BLOCKED_ERR_SEVERITY_MASK 0x02000000L
+#define BIF_CFG_DEV0_RC0_PCIE_UNCORR_ERR_SEVERITY__POISONED_TLP_EGRESS_BLOCKED_SEVERITY_MASK 0x04000000L
+//BIF_CFG_DEV0_RC0_PCIE_CORR_ERR_STATUS
+#define BIF_CFG_DEV0_RC0_PCIE_CORR_ERR_STATUS__RCV_ERR_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_CORR_ERR_STATUS__BAD_TLP_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_PCIE_CORR_ERR_STATUS__BAD_DLLP_STATUS__SHIFT 0x7
+#define BIF_CFG_DEV0_RC0_PCIE_CORR_ERR_STATUS__REPLAY_NUM_ROLLOVER_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_PCIE_CORR_ERR_STATUS__REPLAY_TIMER_TIMEOUT_STATUS__SHIFT 0xc
+#define BIF_CFG_DEV0_RC0_PCIE_CORR_ERR_STATUS__ADVISORY_NONFATAL_ERR_STATUS__SHIFT 0xd
+#define BIF_CFG_DEV0_RC0_PCIE_CORR_ERR_STATUS__CORR_INT_ERR_STATUS__SHIFT 0xe
+#define BIF_CFG_DEV0_RC0_PCIE_CORR_ERR_STATUS__HDR_LOG_OVFL_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_RC0_PCIE_CORR_ERR_STATUS__RCV_ERR_STATUS_MASK 0x00000001L
+#define BIF_CFG_DEV0_RC0_PCIE_CORR_ERR_STATUS__BAD_TLP_STATUS_MASK 0x00000040L
+#define BIF_CFG_DEV0_RC0_PCIE_CORR_ERR_STATUS__BAD_DLLP_STATUS_MASK 0x00000080L
+#define BIF_CFG_DEV0_RC0_PCIE_CORR_ERR_STATUS__REPLAY_NUM_ROLLOVER_STATUS_MASK 0x00000100L
+#define BIF_CFG_DEV0_RC0_PCIE_CORR_ERR_STATUS__REPLAY_TIMER_TIMEOUT_STATUS_MASK 0x00001000L
+#define BIF_CFG_DEV0_RC0_PCIE_CORR_ERR_STATUS__ADVISORY_NONFATAL_ERR_STATUS_MASK 0x00002000L
+#define BIF_CFG_DEV0_RC0_PCIE_CORR_ERR_STATUS__CORR_INT_ERR_STATUS_MASK 0x00004000L
+#define BIF_CFG_DEV0_RC0_PCIE_CORR_ERR_STATUS__HDR_LOG_OVFL_STATUS_MASK 0x00008000L
+//BIF_CFG_DEV0_RC0_PCIE_CORR_ERR_MASK
+#define BIF_CFG_DEV0_RC0_PCIE_CORR_ERR_MASK__RCV_ERR_MASK__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_CORR_ERR_MASK__BAD_TLP_MASK__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_PCIE_CORR_ERR_MASK__BAD_DLLP_MASK__SHIFT 0x7
+#define BIF_CFG_DEV0_RC0_PCIE_CORR_ERR_MASK__REPLAY_NUM_ROLLOVER_MASK__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_PCIE_CORR_ERR_MASK__REPLAY_TIMER_TIMEOUT_MASK__SHIFT 0xc
+#define BIF_CFG_DEV0_RC0_PCIE_CORR_ERR_MASK__ADVISORY_NONFATAL_ERR_MASK__SHIFT 0xd
+#define BIF_CFG_DEV0_RC0_PCIE_CORR_ERR_MASK__CORR_INT_ERR_MASK__SHIFT 0xe
+#define BIF_CFG_DEV0_RC0_PCIE_CORR_ERR_MASK__HDR_LOG_OVFL_MASK__SHIFT 0xf
+#define BIF_CFG_DEV0_RC0_PCIE_CORR_ERR_MASK__RCV_ERR_MASK_MASK 0x00000001L
+#define BIF_CFG_DEV0_RC0_PCIE_CORR_ERR_MASK__BAD_TLP_MASK_MASK 0x00000040L
+#define BIF_CFG_DEV0_RC0_PCIE_CORR_ERR_MASK__BAD_DLLP_MASK_MASK 0x00000080L
+#define BIF_CFG_DEV0_RC0_PCIE_CORR_ERR_MASK__REPLAY_NUM_ROLLOVER_MASK_MASK 0x00000100L
+#define BIF_CFG_DEV0_RC0_PCIE_CORR_ERR_MASK__REPLAY_TIMER_TIMEOUT_MASK_MASK 0x00001000L
+#define BIF_CFG_DEV0_RC0_PCIE_CORR_ERR_MASK__ADVISORY_NONFATAL_ERR_MASK_MASK 0x00002000L
+#define BIF_CFG_DEV0_RC0_PCIE_CORR_ERR_MASK__CORR_INT_ERR_MASK_MASK 0x00004000L
+#define BIF_CFG_DEV0_RC0_PCIE_CORR_ERR_MASK__HDR_LOG_OVFL_MASK_MASK 0x00008000L
+//BIF_CFG_DEV0_RC0_PCIE_ADV_ERR_CAP_CNTL
+#define BIF_CFG_DEV0_RC0_PCIE_ADV_ERR_CAP_CNTL__FIRST_ERR_PTR__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_CAP__SHIFT 0x5
+#define BIF_CFG_DEV0_RC0_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_EN__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_CAP__SHIFT 0x7
+#define BIF_CFG_DEV0_RC0_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_CAP__SHIFT 0x9
+#define BIF_CFG_DEV0_RC0_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_RC0_PCIE_ADV_ERR_CAP_CNTL__TLP_PREFIX_LOG_PRESENT__SHIFT 0xb
+#define BIF_CFG_DEV0_RC0_PCIE_ADV_ERR_CAP_CNTL__COMPLETION_TIMEOUT_LOG_CAPABLE__SHIFT 0xc
+#define BIF_CFG_DEV0_RC0_PCIE_ADV_ERR_CAP_CNTL__FIRST_ERR_PTR_MASK 0x0000001FL
+#define BIF_CFG_DEV0_RC0_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_CAP_MASK 0x00000020L
+#define BIF_CFG_DEV0_RC0_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_EN_MASK 0x00000040L
+#define BIF_CFG_DEV0_RC0_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_CAP_MASK 0x00000080L
+#define BIF_CFG_DEV0_RC0_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_EN_MASK 0x00000100L
+#define BIF_CFG_DEV0_RC0_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_CAP_MASK 0x00000200L
+#define BIF_CFG_DEV0_RC0_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_EN_MASK 0x00000400L
+#define BIF_CFG_DEV0_RC0_PCIE_ADV_ERR_CAP_CNTL__TLP_PREFIX_LOG_PRESENT_MASK 0x00000800L
+#define BIF_CFG_DEV0_RC0_PCIE_ADV_ERR_CAP_CNTL__COMPLETION_TIMEOUT_LOG_CAPABLE_MASK 0x00001000L
+//BIF_CFG_DEV0_RC0_PCIE_HDR_LOG0
+#define BIF_CFG_DEV0_RC0_PCIE_HDR_LOG0__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_HDR_LOG0__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_RC0_PCIE_HDR_LOG1
+#define BIF_CFG_DEV0_RC0_PCIE_HDR_LOG1__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_HDR_LOG1__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_RC0_PCIE_HDR_LOG2
+#define BIF_CFG_DEV0_RC0_PCIE_HDR_LOG2__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_HDR_LOG2__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_RC0_PCIE_HDR_LOG3
+#define BIF_CFG_DEV0_RC0_PCIE_HDR_LOG3__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_HDR_LOG3__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_RC0_PCIE_ROOT_ERR_CMD
+#define BIF_CFG_DEV0_RC0_PCIE_ROOT_ERR_CMD__CORR_ERR_REP_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_ROOT_ERR_CMD__NONFATAL_ERR_REP_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_RC0_PCIE_ROOT_ERR_CMD__FATAL_ERR_REP_EN__SHIFT 0x2
+#define BIF_CFG_DEV0_RC0_PCIE_ROOT_ERR_CMD__CORR_ERR_REP_EN_MASK 0x00000001L
+#define BIF_CFG_DEV0_RC0_PCIE_ROOT_ERR_CMD__NONFATAL_ERR_REP_EN_MASK 0x00000002L
+#define BIF_CFG_DEV0_RC0_PCIE_ROOT_ERR_CMD__FATAL_ERR_REP_EN_MASK 0x00000004L
+//BIF_CFG_DEV0_RC0_PCIE_ROOT_ERR_STATUS
+#define BIF_CFG_DEV0_RC0_PCIE_ROOT_ERR_STATUS__ERR_CORR_RCVD__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_ROOT_ERR_STATUS__MULT_ERR_CORR_RCVD__SHIFT 0x1
+#define BIF_CFG_DEV0_RC0_PCIE_ROOT_ERR_STATUS__ERR_FATAL_NONFATAL_RCVD__SHIFT 0x2
+#define BIF_CFG_DEV0_RC0_PCIE_ROOT_ERR_STATUS__MULT_ERR_FATAL_NONFATAL_RCVD__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_PCIE_ROOT_ERR_STATUS__FIRST_UNCORRECTABLE_FATAL__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_PCIE_ROOT_ERR_STATUS__NONFATAL_ERROR_MSG_RCVD__SHIFT 0x5
+#define BIF_CFG_DEV0_RC0_PCIE_ROOT_ERR_STATUS__FATAL_ERROR_MSG_RCVD__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_PCIE_ROOT_ERR_STATUS__ERR_COR_SUBCLASS__SHIFT 0x7
+#define BIF_CFG_DEV0_RC0_PCIE_ROOT_ERR_STATUS__ADV_ERR_INT_MSG_NUM__SHIFT 0x1b
+#define BIF_CFG_DEV0_RC0_PCIE_ROOT_ERR_STATUS__ERR_CORR_RCVD_MASK 0x00000001L
+#define BIF_CFG_DEV0_RC0_PCIE_ROOT_ERR_STATUS__MULT_ERR_CORR_RCVD_MASK 0x00000002L
+#define BIF_CFG_DEV0_RC0_PCIE_ROOT_ERR_STATUS__ERR_FATAL_NONFATAL_RCVD_MASK 0x00000004L
+#define BIF_CFG_DEV0_RC0_PCIE_ROOT_ERR_STATUS__MULT_ERR_FATAL_NONFATAL_RCVD_MASK 0x00000008L
+#define BIF_CFG_DEV0_RC0_PCIE_ROOT_ERR_STATUS__FIRST_UNCORRECTABLE_FATAL_MASK 0x00000010L
+#define BIF_CFG_DEV0_RC0_PCIE_ROOT_ERR_STATUS__NONFATAL_ERROR_MSG_RCVD_MASK 0x00000020L
+#define BIF_CFG_DEV0_RC0_PCIE_ROOT_ERR_STATUS__FATAL_ERROR_MSG_RCVD_MASK 0x00000040L
+#define BIF_CFG_DEV0_RC0_PCIE_ROOT_ERR_STATUS__ERR_COR_SUBCLASS_MASK 0x00000180L
+#define BIF_CFG_DEV0_RC0_PCIE_ROOT_ERR_STATUS__ADV_ERR_INT_MSG_NUM_MASK 0xF8000000L
+//BIF_CFG_DEV0_RC0_PCIE_ERR_SRC_ID
+#define BIF_CFG_DEV0_RC0_PCIE_ERR_SRC_ID__ERR_CORR_SRC_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_ERR_SRC_ID__ERR_FATAL_NONFATAL_SRC_ID__SHIFT 0x10
+#define BIF_CFG_DEV0_RC0_PCIE_ERR_SRC_ID__ERR_CORR_SRC_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_RC0_PCIE_ERR_SRC_ID__ERR_FATAL_NONFATAL_SRC_ID_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_RC0_PCIE_TLP_PREFIX_LOG0
+#define BIF_CFG_DEV0_RC0_PCIE_TLP_PREFIX_LOG0__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_TLP_PREFIX_LOG0__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_RC0_PCIE_TLP_PREFIX_LOG1
+#define BIF_CFG_DEV0_RC0_PCIE_TLP_PREFIX_LOG1__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_TLP_PREFIX_LOG1__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_RC0_PCIE_TLP_PREFIX_LOG2
+#define BIF_CFG_DEV0_RC0_PCIE_TLP_PREFIX_LOG2__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_TLP_PREFIX_LOG2__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_RC0_PCIE_TLP_PREFIX_LOG3
+#define BIF_CFG_DEV0_RC0_PCIE_TLP_PREFIX_LOG3__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_TLP_PREFIX_LOG3__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_RC0_PCIE_SECONDARY_ENH_CAP_LIST
+#define BIF_CFG_DEV0_RC0_PCIE_SECONDARY_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_SECONDARY_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_RC0_PCIE_SECONDARY_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_RC0_PCIE_SECONDARY_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_RC0_PCIE_SECONDARY_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_RC0_PCIE_SECONDARY_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_RC0_PCIE_LINK_CNTL3
+#define BIF_CFG_DEV0_RC0_PCIE_LINK_CNTL3__PERFORM_EQUALIZATION__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_LINK_CNTL3__LINK_EQUALIZATION_REQ_INT_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_RC0_PCIE_LINK_CNTL3__ENABLE_LOWER_SKP_OS_GEN__SHIFT 0x9
+#define BIF_CFG_DEV0_RC0_PCIE_LINK_CNTL3__PERFORM_EQUALIZATION_MASK 0x00000001L
+#define BIF_CFG_DEV0_RC0_PCIE_LINK_CNTL3__LINK_EQUALIZATION_REQ_INT_EN_MASK 0x00000002L
+#define BIF_CFG_DEV0_RC0_PCIE_LINK_CNTL3__ENABLE_LOWER_SKP_OS_GEN_MASK 0x0000FE00L
+//BIF_CFG_DEV0_RC0_PCIE_LANE_ERROR_STATUS
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_ERROR_STATUS__LANE_ERROR_STATUS_BITS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_ERROR_STATUS__LANE_ERROR_STATUS_BITS_MASK 0x0000FFFFL
+//BIF_CFG_DEV0_RC0_PCIE_LANE_0_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_0_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_0_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_0_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_0_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_0_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_0_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_0_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_0_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_RC0_PCIE_LANE_1_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_1_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_1_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_1_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_1_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_1_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_1_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_1_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_1_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_RC0_PCIE_LANE_2_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_2_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_2_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_2_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_2_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_2_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_2_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_2_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_2_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_RC0_PCIE_LANE_3_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_3_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_3_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_3_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_3_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_3_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_3_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_3_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_3_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_RC0_PCIE_LANE_4_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_4_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_4_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_4_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_4_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_4_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_4_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_4_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_4_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_RC0_PCIE_LANE_5_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_5_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_5_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_5_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_5_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_5_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_5_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_5_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_5_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_RC0_PCIE_LANE_6_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_6_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_6_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_6_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_6_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_6_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_6_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_6_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_6_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_RC0_PCIE_LANE_7_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_7_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_7_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_7_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_7_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_7_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_7_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_7_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_7_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_RC0_PCIE_LANE_8_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_8_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_8_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_8_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_8_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_8_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_8_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_8_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_8_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_RC0_PCIE_LANE_9_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_9_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_9_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_9_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_9_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_9_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_9_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_9_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_9_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_RC0_PCIE_LANE_10_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_10_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_10_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_10_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_10_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_10_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_10_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_10_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_10_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_RC0_PCIE_LANE_11_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_11_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_11_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_11_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_11_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_11_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_11_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_11_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_11_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_RC0_PCIE_LANE_12_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_12_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_12_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_12_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_12_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_12_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_12_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_12_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_12_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_RC0_PCIE_LANE_13_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_13_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_13_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_13_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_13_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_13_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_13_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_13_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_13_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_RC0_PCIE_LANE_14_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_14_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_14_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_14_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_14_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_14_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_14_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_14_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_14_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_RC0_PCIE_LANE_15_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_15_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_15_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_15_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_15_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_15_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_15_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_15_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_RC0_PCIE_LANE_15_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_RC0_PCIE_ACS_ENH_CAP_LIST
+#define BIF_CFG_DEV0_RC0_PCIE_ACS_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_ACS_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_RC0_PCIE_ACS_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_RC0_PCIE_ACS_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_RC0_PCIE_ACS_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_RC0_PCIE_ACS_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_RC0_PCIE_ACS_CAP
+#define BIF_CFG_DEV0_RC0_PCIE_ACS_CAP__SOURCE_VALIDATION__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_ACS_CAP__TRANSLATION_BLOCKING__SHIFT 0x1
+#define BIF_CFG_DEV0_RC0_PCIE_ACS_CAP__P2P_REQUEST_REDIRECT__SHIFT 0x2
+#define BIF_CFG_DEV0_RC0_PCIE_ACS_CAP__P2P_COMPLETION_REDIRECT__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_PCIE_ACS_CAP__UPSTREAM_FORWARDING__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_PCIE_ACS_CAP__P2P_EGRESS_CONTROL__SHIFT 0x5
+#define BIF_CFG_DEV0_RC0_PCIE_ACS_CAP__DIRECT_TRANSLATED_P2P__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_PCIE_ACS_CAP__ENHANCED_CAPABILITY__SHIFT 0x7
+#define BIF_CFG_DEV0_RC0_PCIE_ACS_CAP__EGRESS_CONTROL_VECTOR_SIZE__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_PCIE_ACS_CAP__SOURCE_VALIDATION_MASK 0x0001L
+#define BIF_CFG_DEV0_RC0_PCIE_ACS_CAP__TRANSLATION_BLOCKING_MASK 0x0002L
+#define BIF_CFG_DEV0_RC0_PCIE_ACS_CAP__P2P_REQUEST_REDIRECT_MASK 0x0004L
+#define BIF_CFG_DEV0_RC0_PCIE_ACS_CAP__P2P_COMPLETION_REDIRECT_MASK 0x0008L
+#define BIF_CFG_DEV0_RC0_PCIE_ACS_CAP__UPSTREAM_FORWARDING_MASK 0x0010L
+#define BIF_CFG_DEV0_RC0_PCIE_ACS_CAP__P2P_EGRESS_CONTROL_MASK 0x0020L
+#define BIF_CFG_DEV0_RC0_PCIE_ACS_CAP__DIRECT_TRANSLATED_P2P_MASK 0x0040L
+#define BIF_CFG_DEV0_RC0_PCIE_ACS_CAP__ENHANCED_CAPABILITY_MASK 0x0080L
+#define BIF_CFG_DEV0_RC0_PCIE_ACS_CAP__EGRESS_CONTROL_VECTOR_SIZE_MASK 0xFF00L
+//BIF_CFG_DEV0_RC0_PCIE_ACS_CNTL
+#define BIF_CFG_DEV0_RC0_PCIE_ACS_CNTL__SOURCE_VALIDATION_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_ACS_CNTL__TRANSLATION_BLOCKING_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_RC0_PCIE_ACS_CNTL__P2P_REQUEST_REDIRECT_EN__SHIFT 0x2
+#define BIF_CFG_DEV0_RC0_PCIE_ACS_CNTL__P2P_COMPLETION_REDIRECT_EN__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_PCIE_ACS_CNTL__UPSTREAM_FORWARDING_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_PCIE_ACS_CNTL__P2P_EGRESS_CONTROL_EN__SHIFT 0x5
+#define BIF_CFG_DEV0_RC0_PCIE_ACS_CNTL__DIRECT_TRANSLATED_P2P_EN__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_PCIE_ACS_CNTL__IO_REQUEST_BLOCKING_EN__SHIFT 0x7
+#define BIF_CFG_DEV0_RC0_PCIE_ACS_CNTL__DSP_MEMORY_TARGET_ACCESS_CNTL__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_PCIE_ACS_CNTL__USP_MEMORY_TARGET_ACCESS_CNTL__SHIFT 0xa
+#define BIF_CFG_DEV0_RC0_PCIE_ACS_CNTL__UNCLAIMED_REQUEST_REDIRECT_CNTL__SHIFT 0xc
+#define BIF_CFG_DEV0_RC0_PCIE_ACS_CNTL__SOURCE_VALIDATION_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_RC0_PCIE_ACS_CNTL__TRANSLATION_BLOCKING_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_RC0_PCIE_ACS_CNTL__P2P_REQUEST_REDIRECT_EN_MASK 0x0004L
+#define BIF_CFG_DEV0_RC0_PCIE_ACS_CNTL__P2P_COMPLETION_REDIRECT_EN_MASK 0x0008L
+#define BIF_CFG_DEV0_RC0_PCIE_ACS_CNTL__UPSTREAM_FORWARDING_EN_MASK 0x0010L
+#define BIF_CFG_DEV0_RC0_PCIE_ACS_CNTL__P2P_EGRESS_CONTROL_EN_MASK 0x0020L
+#define BIF_CFG_DEV0_RC0_PCIE_ACS_CNTL__DIRECT_TRANSLATED_P2P_EN_MASK 0x0040L
+#define BIF_CFG_DEV0_RC0_PCIE_ACS_CNTL__IO_REQUEST_BLOCKING_EN_MASK 0x0080L
+#define BIF_CFG_DEV0_RC0_PCIE_ACS_CNTL__DSP_MEMORY_TARGET_ACCESS_CNTL_MASK 0x0300L
+#define BIF_CFG_DEV0_RC0_PCIE_ACS_CNTL__USP_MEMORY_TARGET_ACCESS_CNTL_MASK 0x0C00L
+#define BIF_CFG_DEV0_RC0_PCIE_ACS_CNTL__UNCLAIMED_REQUEST_REDIRECT_CNTL_MASK 0x1000L
+//BIF_CFG_DEV0_RC0_PCIE_DLF_ENH_CAP_LIST
+#define BIF_CFG_DEV0_RC0_PCIE_DLF_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_DLF_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_RC0_PCIE_DLF_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_RC0_PCIE_DLF_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_RC0_PCIE_DLF_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_RC0_PCIE_DLF_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_RC0_DATA_LINK_FEATURE_CAP
+#define BIF_CFG_DEV0_RC0_DATA_LINK_FEATURE_CAP__LOCAL_DLF_SUPPORTED__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_DATA_LINK_FEATURE_CAP__DLF_EXCHANGE_ENABLE__SHIFT 0x1f
+#define BIF_CFG_DEV0_RC0_DATA_LINK_FEATURE_CAP__LOCAL_DLF_SUPPORTED_MASK 0x007FFFFFL
+#define BIF_CFG_DEV0_RC0_DATA_LINK_FEATURE_CAP__DLF_EXCHANGE_ENABLE_MASK 0x80000000L
+//BIF_CFG_DEV0_RC0_DATA_LINK_FEATURE_STATUS
+#define BIF_CFG_DEV0_RC0_DATA_LINK_FEATURE_STATUS__REMOTE_DLF_SUPPORTED__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_DATA_LINK_FEATURE_STATUS__REMOTE_DLF_SUPPORTED_VALID__SHIFT 0x1f
+#define BIF_CFG_DEV0_RC0_DATA_LINK_FEATURE_STATUS__REMOTE_DLF_SUPPORTED_MASK 0x007FFFFFL
+#define BIF_CFG_DEV0_RC0_DATA_LINK_FEATURE_STATUS__REMOTE_DLF_SUPPORTED_VALID_MASK 0x80000000L
+//BIF_CFG_DEV0_RC0_PCIE_PHY_16GT_ENH_CAP_LIST
+#define BIF_CFG_DEV0_RC0_PCIE_PHY_16GT_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_PHY_16GT_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_RC0_PCIE_PHY_16GT_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_RC0_PCIE_PHY_16GT_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_RC0_PCIE_PHY_16GT_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_RC0_PCIE_PHY_16GT_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_RC0_LINK_CAP_16GT
+#define BIF_CFG_DEV0_RC0_LINK_CAP_16GT__RESERVED__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LINK_CAP_16GT__RESERVED_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_RC0_LINK_CNTL_16GT
+#define BIF_CFG_DEV0_RC0_LINK_CNTL_16GT__RESERVED__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LINK_CNTL_16GT__RESERVED_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_RC0_LINK_STATUS_16GT
+#define BIF_CFG_DEV0_RC0_LINK_STATUS_16GT__EQUALIZATION_COMPLETE_16GT__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LINK_STATUS_16GT__EQUALIZATION_PHASE1_SUCCESS_16GT__SHIFT 0x1
+#define BIF_CFG_DEV0_RC0_LINK_STATUS_16GT__EQUALIZATION_PHASE2_SUCCESS_16GT__SHIFT 0x2
+#define BIF_CFG_DEV0_RC0_LINK_STATUS_16GT__EQUALIZATION_PHASE3_SUCCESS_16GT__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_LINK_STATUS_16GT__LINK_EQUALIZATION_REQUEST_16GT__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_LINK_STATUS_16GT__EQUALIZATION_COMPLETE_16GT_MASK 0x00000001L
+#define BIF_CFG_DEV0_RC0_LINK_STATUS_16GT__EQUALIZATION_PHASE1_SUCCESS_16GT_MASK 0x00000002L
+#define BIF_CFG_DEV0_RC0_LINK_STATUS_16GT__EQUALIZATION_PHASE2_SUCCESS_16GT_MASK 0x00000004L
+#define BIF_CFG_DEV0_RC0_LINK_STATUS_16GT__EQUALIZATION_PHASE3_SUCCESS_16GT_MASK 0x00000008L
+#define BIF_CFG_DEV0_RC0_LINK_STATUS_16GT__LINK_EQUALIZATION_REQUEST_16GT_MASK 0x00000010L
+//BIF_CFG_DEV0_RC0_LOCAL_PARITY_MISMATCH_STATUS_16GT
+#define BIF_CFG_DEV0_RC0_LOCAL_PARITY_MISMATCH_STATUS_16GT__LOCAL_PARITY_MISMATCH_STATUS_BITS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LOCAL_PARITY_MISMATCH_STATUS_16GT__LOCAL_PARITY_MISMATCH_STATUS_BITS_MASK 0x0000FFFFL
+//BIF_CFG_DEV0_RC0_RTM1_PARITY_MISMATCH_STATUS_16GT
+#define BIF_CFG_DEV0_RC0_RTM1_PARITY_MISMATCH_STATUS_16GT__RTM1_PARITY_MISMATCH_STATUS_BITS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_RTM1_PARITY_MISMATCH_STATUS_16GT__RTM1_PARITY_MISMATCH_STATUS_BITS_MASK 0x0000FFFFL
+//BIF_CFG_DEV0_RC0_RTM2_PARITY_MISMATCH_STATUS_16GT
+#define BIF_CFG_DEV0_RC0_RTM2_PARITY_MISMATCH_STATUS_16GT__RTM2_PARITY_MISMATCH_STATUS_BITS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_RTM2_PARITY_MISMATCH_STATUS_16GT__RTM2_PARITY_MISMATCH_STATUS_BITS_MASK 0x0000FFFFL
+//BIF_CFG_DEV0_RC0_LANE_0_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_RC0_LANE_0_EQUALIZATION_CNTL_16GT__LANE_0_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_0_EQUALIZATION_CNTL_16GT__LANE_0_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_LANE_0_EQUALIZATION_CNTL_16GT__LANE_0_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_RC0_LANE_0_EQUALIZATION_CNTL_16GT__LANE_0_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_RC0_LANE_1_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_RC0_LANE_1_EQUALIZATION_CNTL_16GT__LANE_1_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_1_EQUALIZATION_CNTL_16GT__LANE_1_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_LANE_1_EQUALIZATION_CNTL_16GT__LANE_1_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_RC0_LANE_1_EQUALIZATION_CNTL_16GT__LANE_1_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_RC0_LANE_2_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_RC0_LANE_2_EQUALIZATION_CNTL_16GT__LANE_2_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_2_EQUALIZATION_CNTL_16GT__LANE_2_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_LANE_2_EQUALIZATION_CNTL_16GT__LANE_2_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_RC0_LANE_2_EQUALIZATION_CNTL_16GT__LANE_2_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_RC0_LANE_3_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_RC0_LANE_3_EQUALIZATION_CNTL_16GT__LANE_3_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_3_EQUALIZATION_CNTL_16GT__LANE_3_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_LANE_3_EQUALIZATION_CNTL_16GT__LANE_3_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_RC0_LANE_3_EQUALIZATION_CNTL_16GT__LANE_3_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_RC0_LANE_4_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_RC0_LANE_4_EQUALIZATION_CNTL_16GT__LANE_4_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_4_EQUALIZATION_CNTL_16GT__LANE_4_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_LANE_4_EQUALIZATION_CNTL_16GT__LANE_4_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_RC0_LANE_4_EQUALIZATION_CNTL_16GT__LANE_4_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_RC0_LANE_5_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_RC0_LANE_5_EQUALIZATION_CNTL_16GT__LANE_5_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_5_EQUALIZATION_CNTL_16GT__LANE_5_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_LANE_5_EQUALIZATION_CNTL_16GT__LANE_5_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_RC0_LANE_5_EQUALIZATION_CNTL_16GT__LANE_5_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_RC0_LANE_6_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_RC0_LANE_6_EQUALIZATION_CNTL_16GT__LANE_6_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_6_EQUALIZATION_CNTL_16GT__LANE_6_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_LANE_6_EQUALIZATION_CNTL_16GT__LANE_6_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_RC0_LANE_6_EQUALIZATION_CNTL_16GT__LANE_6_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_RC0_LANE_7_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_RC0_LANE_7_EQUALIZATION_CNTL_16GT__LANE_7_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_7_EQUALIZATION_CNTL_16GT__LANE_7_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_LANE_7_EQUALIZATION_CNTL_16GT__LANE_7_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_RC0_LANE_7_EQUALIZATION_CNTL_16GT__LANE_7_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_RC0_LANE_8_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_RC0_LANE_8_EQUALIZATION_CNTL_16GT__LANE_8_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_8_EQUALIZATION_CNTL_16GT__LANE_8_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_LANE_8_EQUALIZATION_CNTL_16GT__LANE_8_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_RC0_LANE_8_EQUALIZATION_CNTL_16GT__LANE_8_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_RC0_LANE_9_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_RC0_LANE_9_EQUALIZATION_CNTL_16GT__LANE_9_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_9_EQUALIZATION_CNTL_16GT__LANE_9_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_LANE_9_EQUALIZATION_CNTL_16GT__LANE_9_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_RC0_LANE_9_EQUALIZATION_CNTL_16GT__LANE_9_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_RC0_LANE_10_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_RC0_LANE_10_EQUALIZATION_CNTL_16GT__LANE_10_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_10_EQUALIZATION_CNTL_16GT__LANE_10_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_LANE_10_EQUALIZATION_CNTL_16GT__LANE_10_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_RC0_LANE_10_EQUALIZATION_CNTL_16GT__LANE_10_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_RC0_LANE_11_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_RC0_LANE_11_EQUALIZATION_CNTL_16GT__LANE_11_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_11_EQUALIZATION_CNTL_16GT__LANE_11_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_LANE_11_EQUALIZATION_CNTL_16GT__LANE_11_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_RC0_LANE_11_EQUALIZATION_CNTL_16GT__LANE_11_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_RC0_LANE_12_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_RC0_LANE_12_EQUALIZATION_CNTL_16GT__LANE_12_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_12_EQUALIZATION_CNTL_16GT__LANE_12_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_LANE_12_EQUALIZATION_CNTL_16GT__LANE_12_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_RC0_LANE_12_EQUALIZATION_CNTL_16GT__LANE_12_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_RC0_LANE_13_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_RC0_LANE_13_EQUALIZATION_CNTL_16GT__LANE_13_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_13_EQUALIZATION_CNTL_16GT__LANE_13_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_LANE_13_EQUALIZATION_CNTL_16GT__LANE_13_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_RC0_LANE_13_EQUALIZATION_CNTL_16GT__LANE_13_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_RC0_LANE_14_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_RC0_LANE_14_EQUALIZATION_CNTL_16GT__LANE_14_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_14_EQUALIZATION_CNTL_16GT__LANE_14_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_LANE_14_EQUALIZATION_CNTL_16GT__LANE_14_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_RC0_LANE_14_EQUALIZATION_CNTL_16GT__LANE_14_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_RC0_LANE_15_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_RC0_LANE_15_EQUALIZATION_CNTL_16GT__LANE_15_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_15_EQUALIZATION_CNTL_16GT__LANE_15_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_LANE_15_EQUALIZATION_CNTL_16GT__LANE_15_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_RC0_LANE_15_EQUALIZATION_CNTL_16GT__LANE_15_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_RC0_PCIE_MARGINING_ENH_CAP_LIST
+#define BIF_CFG_DEV0_RC0_PCIE_MARGINING_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_PCIE_MARGINING_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_RC0_PCIE_MARGINING_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_RC0_PCIE_MARGINING_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_RC0_PCIE_MARGINING_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_RC0_PCIE_MARGINING_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_RC0_MARGINING_PORT_CAP
+#define BIF_CFG_DEV0_RC0_MARGINING_PORT_CAP__MARGINING_USES_SOFTWARE__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_MARGINING_PORT_CAP__MARGINING_USES_SOFTWARE_MASK 0x0001L
+//BIF_CFG_DEV0_RC0_MARGINING_PORT_STATUS
+#define BIF_CFG_DEV0_RC0_MARGINING_PORT_STATUS__MARGINING_READY__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_MARGINING_PORT_STATUS__MARGINING_SOFTWARE_READY__SHIFT 0x1
+#define BIF_CFG_DEV0_RC0_MARGINING_PORT_STATUS__MARGINING_READY_MASK 0x0001L
+#define BIF_CFG_DEV0_RC0_MARGINING_PORT_STATUS__MARGINING_SOFTWARE_READY_MASK 0x0002L
+//BIF_CFG_DEV0_RC0_LANE_0_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_RC0_LANE_0_MARGINING_LANE_CNTL__LANE_0_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_0_MARGINING_LANE_CNTL__LANE_0_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_LANE_0_MARGINING_LANE_CNTL__LANE_0_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_LANE_0_MARGINING_LANE_CNTL__LANE_0_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_LANE_0_MARGINING_LANE_CNTL__LANE_0_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_RC0_LANE_0_MARGINING_LANE_CNTL__LANE_0_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_RC0_LANE_0_MARGINING_LANE_CNTL__LANE_0_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_RC0_LANE_0_MARGINING_LANE_CNTL__LANE_0_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_RC0_LANE_0_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_RC0_LANE_0_MARGINING_LANE_STATUS__LANE_0_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_0_MARGINING_LANE_STATUS__LANE_0_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_LANE_0_MARGINING_LANE_STATUS__LANE_0_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_LANE_0_MARGINING_LANE_STATUS__LANE_0_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_LANE_0_MARGINING_LANE_STATUS__LANE_0_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_RC0_LANE_0_MARGINING_LANE_STATUS__LANE_0_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_RC0_LANE_0_MARGINING_LANE_STATUS__LANE_0_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_RC0_LANE_0_MARGINING_LANE_STATUS__LANE_0_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_RC0_LANE_1_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_RC0_LANE_1_MARGINING_LANE_CNTL__LANE_1_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_1_MARGINING_LANE_CNTL__LANE_1_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_LANE_1_MARGINING_LANE_CNTL__LANE_1_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_LANE_1_MARGINING_LANE_CNTL__LANE_1_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_LANE_1_MARGINING_LANE_CNTL__LANE_1_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_RC0_LANE_1_MARGINING_LANE_CNTL__LANE_1_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_RC0_LANE_1_MARGINING_LANE_CNTL__LANE_1_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_RC0_LANE_1_MARGINING_LANE_CNTL__LANE_1_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_RC0_LANE_1_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_RC0_LANE_1_MARGINING_LANE_STATUS__LANE_1_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_1_MARGINING_LANE_STATUS__LANE_1_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_LANE_1_MARGINING_LANE_STATUS__LANE_1_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_LANE_1_MARGINING_LANE_STATUS__LANE_1_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_LANE_1_MARGINING_LANE_STATUS__LANE_1_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_RC0_LANE_1_MARGINING_LANE_STATUS__LANE_1_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_RC0_LANE_1_MARGINING_LANE_STATUS__LANE_1_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_RC0_LANE_1_MARGINING_LANE_STATUS__LANE_1_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_RC0_LANE_2_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_RC0_LANE_2_MARGINING_LANE_CNTL__LANE_2_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_2_MARGINING_LANE_CNTL__LANE_2_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_LANE_2_MARGINING_LANE_CNTL__LANE_2_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_LANE_2_MARGINING_LANE_CNTL__LANE_2_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_LANE_2_MARGINING_LANE_CNTL__LANE_2_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_RC0_LANE_2_MARGINING_LANE_CNTL__LANE_2_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_RC0_LANE_2_MARGINING_LANE_CNTL__LANE_2_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_RC0_LANE_2_MARGINING_LANE_CNTL__LANE_2_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_RC0_LANE_2_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_RC0_LANE_2_MARGINING_LANE_STATUS__LANE_2_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_2_MARGINING_LANE_STATUS__LANE_2_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_LANE_2_MARGINING_LANE_STATUS__LANE_2_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_LANE_2_MARGINING_LANE_STATUS__LANE_2_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_LANE_2_MARGINING_LANE_STATUS__LANE_2_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_RC0_LANE_2_MARGINING_LANE_STATUS__LANE_2_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_RC0_LANE_2_MARGINING_LANE_STATUS__LANE_2_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_RC0_LANE_2_MARGINING_LANE_STATUS__LANE_2_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_RC0_LANE_3_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_RC0_LANE_3_MARGINING_LANE_CNTL__LANE_3_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_3_MARGINING_LANE_CNTL__LANE_3_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_LANE_3_MARGINING_LANE_CNTL__LANE_3_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_LANE_3_MARGINING_LANE_CNTL__LANE_3_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_LANE_3_MARGINING_LANE_CNTL__LANE_3_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_RC0_LANE_3_MARGINING_LANE_CNTL__LANE_3_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_RC0_LANE_3_MARGINING_LANE_CNTL__LANE_3_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_RC0_LANE_3_MARGINING_LANE_CNTL__LANE_3_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_RC0_LANE_3_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_RC0_LANE_3_MARGINING_LANE_STATUS__LANE_3_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_3_MARGINING_LANE_STATUS__LANE_3_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_LANE_3_MARGINING_LANE_STATUS__LANE_3_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_LANE_3_MARGINING_LANE_STATUS__LANE_3_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_LANE_3_MARGINING_LANE_STATUS__LANE_3_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_RC0_LANE_3_MARGINING_LANE_STATUS__LANE_3_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_RC0_LANE_3_MARGINING_LANE_STATUS__LANE_3_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_RC0_LANE_3_MARGINING_LANE_STATUS__LANE_3_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_RC0_LANE_4_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_RC0_LANE_4_MARGINING_LANE_CNTL__LANE_4_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_4_MARGINING_LANE_CNTL__LANE_4_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_LANE_4_MARGINING_LANE_CNTL__LANE_4_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_LANE_4_MARGINING_LANE_CNTL__LANE_4_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_LANE_4_MARGINING_LANE_CNTL__LANE_4_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_RC0_LANE_4_MARGINING_LANE_CNTL__LANE_4_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_RC0_LANE_4_MARGINING_LANE_CNTL__LANE_4_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_RC0_LANE_4_MARGINING_LANE_CNTL__LANE_4_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_RC0_LANE_4_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_RC0_LANE_4_MARGINING_LANE_STATUS__LANE_4_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_4_MARGINING_LANE_STATUS__LANE_4_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_LANE_4_MARGINING_LANE_STATUS__LANE_4_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_LANE_4_MARGINING_LANE_STATUS__LANE_4_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_LANE_4_MARGINING_LANE_STATUS__LANE_4_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_RC0_LANE_4_MARGINING_LANE_STATUS__LANE_4_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_RC0_LANE_4_MARGINING_LANE_STATUS__LANE_4_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_RC0_LANE_4_MARGINING_LANE_STATUS__LANE_4_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_RC0_LANE_5_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_RC0_LANE_5_MARGINING_LANE_CNTL__LANE_5_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_5_MARGINING_LANE_CNTL__LANE_5_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_LANE_5_MARGINING_LANE_CNTL__LANE_5_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_LANE_5_MARGINING_LANE_CNTL__LANE_5_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_LANE_5_MARGINING_LANE_CNTL__LANE_5_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_RC0_LANE_5_MARGINING_LANE_CNTL__LANE_5_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_RC0_LANE_5_MARGINING_LANE_CNTL__LANE_5_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_RC0_LANE_5_MARGINING_LANE_CNTL__LANE_5_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_RC0_LANE_5_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_RC0_LANE_5_MARGINING_LANE_STATUS__LANE_5_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_5_MARGINING_LANE_STATUS__LANE_5_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_LANE_5_MARGINING_LANE_STATUS__LANE_5_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_LANE_5_MARGINING_LANE_STATUS__LANE_5_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_LANE_5_MARGINING_LANE_STATUS__LANE_5_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_RC0_LANE_5_MARGINING_LANE_STATUS__LANE_5_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_RC0_LANE_5_MARGINING_LANE_STATUS__LANE_5_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_RC0_LANE_5_MARGINING_LANE_STATUS__LANE_5_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_RC0_LANE_6_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_RC0_LANE_6_MARGINING_LANE_CNTL__LANE_6_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_6_MARGINING_LANE_CNTL__LANE_6_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_LANE_6_MARGINING_LANE_CNTL__LANE_6_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_LANE_6_MARGINING_LANE_CNTL__LANE_6_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_LANE_6_MARGINING_LANE_CNTL__LANE_6_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_RC0_LANE_6_MARGINING_LANE_CNTL__LANE_6_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_RC0_LANE_6_MARGINING_LANE_CNTL__LANE_6_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_RC0_LANE_6_MARGINING_LANE_CNTL__LANE_6_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_RC0_LANE_6_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_RC0_LANE_6_MARGINING_LANE_STATUS__LANE_6_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_6_MARGINING_LANE_STATUS__LANE_6_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_LANE_6_MARGINING_LANE_STATUS__LANE_6_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_LANE_6_MARGINING_LANE_STATUS__LANE_6_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_LANE_6_MARGINING_LANE_STATUS__LANE_6_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_RC0_LANE_6_MARGINING_LANE_STATUS__LANE_6_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_RC0_LANE_6_MARGINING_LANE_STATUS__LANE_6_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_RC0_LANE_6_MARGINING_LANE_STATUS__LANE_6_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_RC0_LANE_7_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_RC0_LANE_7_MARGINING_LANE_CNTL__LANE_7_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_7_MARGINING_LANE_CNTL__LANE_7_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_LANE_7_MARGINING_LANE_CNTL__LANE_7_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_LANE_7_MARGINING_LANE_CNTL__LANE_7_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_LANE_7_MARGINING_LANE_CNTL__LANE_7_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_RC0_LANE_7_MARGINING_LANE_CNTL__LANE_7_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_RC0_LANE_7_MARGINING_LANE_CNTL__LANE_7_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_RC0_LANE_7_MARGINING_LANE_CNTL__LANE_7_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_RC0_LANE_7_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_RC0_LANE_7_MARGINING_LANE_STATUS__LANE_7_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_7_MARGINING_LANE_STATUS__LANE_7_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_LANE_7_MARGINING_LANE_STATUS__LANE_7_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_LANE_7_MARGINING_LANE_STATUS__LANE_7_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_LANE_7_MARGINING_LANE_STATUS__LANE_7_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_RC0_LANE_7_MARGINING_LANE_STATUS__LANE_7_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_RC0_LANE_7_MARGINING_LANE_STATUS__LANE_7_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_RC0_LANE_7_MARGINING_LANE_STATUS__LANE_7_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_RC0_LANE_8_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_RC0_LANE_8_MARGINING_LANE_CNTL__LANE_8_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_8_MARGINING_LANE_CNTL__LANE_8_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_LANE_8_MARGINING_LANE_CNTL__LANE_8_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_LANE_8_MARGINING_LANE_CNTL__LANE_8_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_LANE_8_MARGINING_LANE_CNTL__LANE_8_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_RC0_LANE_8_MARGINING_LANE_CNTL__LANE_8_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_RC0_LANE_8_MARGINING_LANE_CNTL__LANE_8_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_RC0_LANE_8_MARGINING_LANE_CNTL__LANE_8_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_RC0_LANE_8_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_RC0_LANE_8_MARGINING_LANE_STATUS__LANE_8_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_8_MARGINING_LANE_STATUS__LANE_8_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_LANE_8_MARGINING_LANE_STATUS__LANE_8_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_LANE_8_MARGINING_LANE_STATUS__LANE_8_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_LANE_8_MARGINING_LANE_STATUS__LANE_8_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_RC0_LANE_8_MARGINING_LANE_STATUS__LANE_8_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_RC0_LANE_8_MARGINING_LANE_STATUS__LANE_8_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_RC0_LANE_8_MARGINING_LANE_STATUS__LANE_8_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_RC0_LANE_9_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_RC0_LANE_9_MARGINING_LANE_CNTL__LANE_9_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_9_MARGINING_LANE_CNTL__LANE_9_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_LANE_9_MARGINING_LANE_CNTL__LANE_9_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_LANE_9_MARGINING_LANE_CNTL__LANE_9_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_LANE_9_MARGINING_LANE_CNTL__LANE_9_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_RC0_LANE_9_MARGINING_LANE_CNTL__LANE_9_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_RC0_LANE_9_MARGINING_LANE_CNTL__LANE_9_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_RC0_LANE_9_MARGINING_LANE_CNTL__LANE_9_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_RC0_LANE_9_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_RC0_LANE_9_MARGINING_LANE_STATUS__LANE_9_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_9_MARGINING_LANE_STATUS__LANE_9_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_LANE_9_MARGINING_LANE_STATUS__LANE_9_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_LANE_9_MARGINING_LANE_STATUS__LANE_9_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_LANE_9_MARGINING_LANE_STATUS__LANE_9_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_RC0_LANE_9_MARGINING_LANE_STATUS__LANE_9_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_RC0_LANE_9_MARGINING_LANE_STATUS__LANE_9_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_RC0_LANE_9_MARGINING_LANE_STATUS__LANE_9_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_RC0_LANE_10_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_RC0_LANE_10_MARGINING_LANE_CNTL__LANE_10_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_10_MARGINING_LANE_CNTL__LANE_10_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_LANE_10_MARGINING_LANE_CNTL__LANE_10_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_LANE_10_MARGINING_LANE_CNTL__LANE_10_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_LANE_10_MARGINING_LANE_CNTL__LANE_10_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_RC0_LANE_10_MARGINING_LANE_CNTL__LANE_10_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_RC0_LANE_10_MARGINING_LANE_CNTL__LANE_10_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_RC0_LANE_10_MARGINING_LANE_CNTL__LANE_10_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_RC0_LANE_10_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_RC0_LANE_10_MARGINING_LANE_STATUS__LANE_10_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_10_MARGINING_LANE_STATUS__LANE_10_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_LANE_10_MARGINING_LANE_STATUS__LANE_10_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_LANE_10_MARGINING_LANE_STATUS__LANE_10_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_LANE_10_MARGINING_LANE_STATUS__LANE_10_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_RC0_LANE_10_MARGINING_LANE_STATUS__LANE_10_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_RC0_LANE_10_MARGINING_LANE_STATUS__LANE_10_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_RC0_LANE_10_MARGINING_LANE_STATUS__LANE_10_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_RC0_LANE_11_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_RC0_LANE_11_MARGINING_LANE_CNTL__LANE_11_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_11_MARGINING_LANE_CNTL__LANE_11_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_LANE_11_MARGINING_LANE_CNTL__LANE_11_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_LANE_11_MARGINING_LANE_CNTL__LANE_11_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_LANE_11_MARGINING_LANE_CNTL__LANE_11_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_RC0_LANE_11_MARGINING_LANE_CNTL__LANE_11_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_RC0_LANE_11_MARGINING_LANE_CNTL__LANE_11_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_RC0_LANE_11_MARGINING_LANE_CNTL__LANE_11_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_RC0_LANE_11_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_RC0_LANE_11_MARGINING_LANE_STATUS__LANE_11_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_11_MARGINING_LANE_STATUS__LANE_11_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_LANE_11_MARGINING_LANE_STATUS__LANE_11_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_LANE_11_MARGINING_LANE_STATUS__LANE_11_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_LANE_11_MARGINING_LANE_STATUS__LANE_11_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_RC0_LANE_11_MARGINING_LANE_STATUS__LANE_11_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_RC0_LANE_11_MARGINING_LANE_STATUS__LANE_11_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_RC0_LANE_11_MARGINING_LANE_STATUS__LANE_11_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_RC0_LANE_12_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_RC0_LANE_12_MARGINING_LANE_CNTL__LANE_12_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_12_MARGINING_LANE_CNTL__LANE_12_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_LANE_12_MARGINING_LANE_CNTL__LANE_12_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_LANE_12_MARGINING_LANE_CNTL__LANE_12_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_LANE_12_MARGINING_LANE_CNTL__LANE_12_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_RC0_LANE_12_MARGINING_LANE_CNTL__LANE_12_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_RC0_LANE_12_MARGINING_LANE_CNTL__LANE_12_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_RC0_LANE_12_MARGINING_LANE_CNTL__LANE_12_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_RC0_LANE_12_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_RC0_LANE_12_MARGINING_LANE_STATUS__LANE_12_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_12_MARGINING_LANE_STATUS__LANE_12_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_LANE_12_MARGINING_LANE_STATUS__LANE_12_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_LANE_12_MARGINING_LANE_STATUS__LANE_12_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_LANE_12_MARGINING_LANE_STATUS__LANE_12_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_RC0_LANE_12_MARGINING_LANE_STATUS__LANE_12_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_RC0_LANE_12_MARGINING_LANE_STATUS__LANE_12_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_RC0_LANE_12_MARGINING_LANE_STATUS__LANE_12_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_RC0_LANE_13_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_RC0_LANE_13_MARGINING_LANE_CNTL__LANE_13_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_13_MARGINING_LANE_CNTL__LANE_13_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_LANE_13_MARGINING_LANE_CNTL__LANE_13_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_LANE_13_MARGINING_LANE_CNTL__LANE_13_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_LANE_13_MARGINING_LANE_CNTL__LANE_13_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_RC0_LANE_13_MARGINING_LANE_CNTL__LANE_13_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_RC0_LANE_13_MARGINING_LANE_CNTL__LANE_13_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_RC0_LANE_13_MARGINING_LANE_CNTL__LANE_13_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_RC0_LANE_13_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_RC0_LANE_13_MARGINING_LANE_STATUS__LANE_13_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_13_MARGINING_LANE_STATUS__LANE_13_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_LANE_13_MARGINING_LANE_STATUS__LANE_13_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_LANE_13_MARGINING_LANE_STATUS__LANE_13_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_LANE_13_MARGINING_LANE_STATUS__LANE_13_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_RC0_LANE_13_MARGINING_LANE_STATUS__LANE_13_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_RC0_LANE_13_MARGINING_LANE_STATUS__LANE_13_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_RC0_LANE_13_MARGINING_LANE_STATUS__LANE_13_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_RC0_LANE_14_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_RC0_LANE_14_MARGINING_LANE_CNTL__LANE_14_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_14_MARGINING_LANE_CNTL__LANE_14_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_LANE_14_MARGINING_LANE_CNTL__LANE_14_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_LANE_14_MARGINING_LANE_CNTL__LANE_14_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_LANE_14_MARGINING_LANE_CNTL__LANE_14_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_RC0_LANE_14_MARGINING_LANE_CNTL__LANE_14_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_RC0_LANE_14_MARGINING_LANE_CNTL__LANE_14_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_RC0_LANE_14_MARGINING_LANE_CNTL__LANE_14_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_RC0_LANE_14_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_RC0_LANE_14_MARGINING_LANE_STATUS__LANE_14_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_14_MARGINING_LANE_STATUS__LANE_14_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_LANE_14_MARGINING_LANE_STATUS__LANE_14_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_LANE_14_MARGINING_LANE_STATUS__LANE_14_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_LANE_14_MARGINING_LANE_STATUS__LANE_14_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_RC0_LANE_14_MARGINING_LANE_STATUS__LANE_14_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_RC0_LANE_14_MARGINING_LANE_STATUS__LANE_14_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_RC0_LANE_14_MARGINING_LANE_STATUS__LANE_14_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_RC0_LANE_15_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_RC0_LANE_15_MARGINING_LANE_CNTL__LANE_15_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_15_MARGINING_LANE_CNTL__LANE_15_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_LANE_15_MARGINING_LANE_CNTL__LANE_15_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_LANE_15_MARGINING_LANE_CNTL__LANE_15_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_LANE_15_MARGINING_LANE_CNTL__LANE_15_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_RC0_LANE_15_MARGINING_LANE_CNTL__LANE_15_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_RC0_LANE_15_MARGINING_LANE_CNTL__LANE_15_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_RC0_LANE_15_MARGINING_LANE_CNTL__LANE_15_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_RC0_LANE_15_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_RC0_LANE_15_MARGINING_LANE_STATUS__LANE_15_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LANE_15_MARGINING_LANE_STATUS__LANE_15_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_LANE_15_MARGINING_LANE_STATUS__LANE_15_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_LANE_15_MARGINING_LANE_STATUS__LANE_15_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_LANE_15_MARGINING_LANE_STATUS__LANE_15_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_RC0_LANE_15_MARGINING_LANE_STATUS__LANE_15_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_RC0_LANE_15_MARGINING_LANE_STATUS__LANE_15_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_RC0_LANE_15_MARGINING_LANE_STATUS__LANE_15_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_RC0_LINK_CAP_32GT
+#define BIF_CFG_DEV0_RC0_LINK_CAP_32GT__EQ_BYPASS_TO_HIGHEST_RATE_SUPPORTED__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LINK_CAP_32GT__NO_EQ_NEEDED_SUPPORTED__SHIFT 0x1
+#define BIF_CFG_DEV0_RC0_LINK_CAP_32GT__MODIFIED_TS_USAGE_MODE0_SUPPORTED__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_LINK_CAP_32GT__MODIFIED_TS_USAGE_MODE1_SUPPORTED__SHIFT 0x9
+#define BIF_CFG_DEV0_RC0_LINK_CAP_32GT__MODIFIED_TS_USAGE_MODE2_SUPPORTED__SHIFT 0xa
+#define BIF_CFG_DEV0_RC0_LINK_CAP_32GT__MODIFIED_TS_RESERVED_USAGE_MODES__SHIFT 0xb
+#define BIF_CFG_DEV0_RC0_LINK_CAP_32GT__EQ_BYPASS_TO_HIGHEST_RATE_SUPPORTED_MASK 0x00000001L
+#define BIF_CFG_DEV0_RC0_LINK_CAP_32GT__NO_EQ_NEEDED_SUPPORTED_MASK 0x00000002L
+#define BIF_CFG_DEV0_RC0_LINK_CAP_32GT__MODIFIED_TS_USAGE_MODE0_SUPPORTED_MASK 0x00000100L
+#define BIF_CFG_DEV0_RC0_LINK_CAP_32GT__MODIFIED_TS_USAGE_MODE1_SUPPORTED_MASK 0x00000200L
+#define BIF_CFG_DEV0_RC0_LINK_CAP_32GT__MODIFIED_TS_USAGE_MODE2_SUPPORTED_MASK 0x00000400L
+#define BIF_CFG_DEV0_RC0_LINK_CAP_32GT__MODIFIED_TS_RESERVED_USAGE_MODES_MASK 0x0000F800L
+//BIF_CFG_DEV0_RC0_LINK_CNTL_32GT
+#define BIF_CFG_DEV0_RC0_LINK_CNTL_32GT__EQ_BYPASS_TO_HIGHEST_RATE_DIS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LINK_CNTL_32GT__NO_EQ_NEEDED_DIS__SHIFT 0x1
+#define BIF_CFG_DEV0_RC0_LINK_CNTL_32GT__MODIFIED_TS_USAGE_MODE_SEL__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_LINK_CNTL_32GT__EQ_BYPASS_TO_HIGHEST_RATE_DIS_MASK 0x00000001L
+#define BIF_CFG_DEV0_RC0_LINK_CNTL_32GT__NO_EQ_NEEDED_DIS_MASK 0x00000002L
+#define BIF_CFG_DEV0_RC0_LINK_CNTL_32GT__MODIFIED_TS_USAGE_MODE_SEL_MASK 0x00000700L
+//BIF_CFG_DEV0_RC0_LINK_STATUS_32GT
+#define BIF_CFG_DEV0_RC0_LINK_STATUS_32GT__EQUALIZATION_COMPLETE_32GT__SHIFT 0x0
+#define BIF_CFG_DEV0_RC0_LINK_STATUS_32GT__EQUALIZATION_PHASE1_SUCCESS_32GT__SHIFT 0x1
+#define BIF_CFG_DEV0_RC0_LINK_STATUS_32GT__EQUALIZATION_PHASE2_SUCCESS_32GT__SHIFT 0x2
+#define BIF_CFG_DEV0_RC0_LINK_STATUS_32GT__EQUALIZATION_PHASE3_SUCCESS_32GT__SHIFT 0x3
+#define BIF_CFG_DEV0_RC0_LINK_STATUS_32GT__LINK_EQUALIZATION_REQUEST_32GT__SHIFT 0x4
+#define BIF_CFG_DEV0_RC0_LINK_STATUS_32GT__MODIFIED_TS_RECEIVED__SHIFT 0x5
+#define BIF_CFG_DEV0_RC0_LINK_STATUS_32GT__RECEIVED_ENHANCED_LINK_BEHAVIOR_CNTL__SHIFT 0x6
+#define BIF_CFG_DEV0_RC0_LINK_STATUS_32GT__TRANSMITTER_PRECODING_ON__SHIFT 0x8
+#define BIF_CFG_DEV0_RC0_LINK_STATUS_32GT__TRANSMITTER_PRECODE_REQUEST__SHIFT 0x9
+#define BIF_CFG_DEV0_RC0_LINK_STATUS_32GT__NO_EQ_NEEDED_RECEIVED__SHIFT 0xa
+#define BIF_CFG_DEV0_RC0_LINK_STATUS_32GT__EQUALIZATION_COMPLETE_32GT_MASK 0x00000001L
+#define BIF_CFG_DEV0_RC0_LINK_STATUS_32GT__EQUALIZATION_PHASE1_SUCCESS_32GT_MASK 0x00000002L
+#define BIF_CFG_DEV0_RC0_LINK_STATUS_32GT__EQUALIZATION_PHASE2_SUCCESS_32GT_MASK 0x00000004L
+#define BIF_CFG_DEV0_RC0_LINK_STATUS_32GT__EQUALIZATION_PHASE3_SUCCESS_32GT_MASK 0x00000008L
+#define BIF_CFG_DEV0_RC0_LINK_STATUS_32GT__LINK_EQUALIZATION_REQUEST_32GT_MASK 0x00000010L
+#define BIF_CFG_DEV0_RC0_LINK_STATUS_32GT__MODIFIED_TS_RECEIVED_MASK 0x00000020L
+#define BIF_CFG_DEV0_RC0_LINK_STATUS_32GT__RECEIVED_ENHANCED_LINK_BEHAVIOR_CNTL_MASK 0x000000C0L
+#define BIF_CFG_DEV0_RC0_LINK_STATUS_32GT__TRANSMITTER_PRECODING_ON_MASK 0x00000100L
+#define BIF_CFG_DEV0_RC0_LINK_STATUS_32GT__TRANSMITTER_PRECODE_REQUEST_MASK 0x00000200L
+#define BIF_CFG_DEV0_RC0_LINK_STATUS_32GT__NO_EQ_NEEDED_RECEIVED_MASK 0x00000400L
+
+
+// addressBlock: aid_nbio_nbif0_bif_cfg_dev0_epf0_bifcfgdecp
+//BIF_CFG_DEV0_EPF0_0_VENDOR_ID
+#define BIF_CFG_DEV0_EPF0_0_VENDOR_ID__VENDOR_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_VENDOR_ID__VENDOR_ID_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_0_DEVICE_ID
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_ID__DEVICE_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_ID__DEVICE_ID_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_0_COMMAND
+#define BIF_CFG_DEV0_EPF0_0_COMMAND__IO_ACCESS_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_COMMAND__MEM_ACCESS_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_0_COMMAND__BUS_MASTER_EN__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_0_COMMAND__SPECIAL_CYCLE_EN__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_COMMAND__MEM_WRITE_INVALIDATE_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_COMMAND__PAL_SNOOP_EN__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_0_COMMAND__PARITY_ERROR_RESPONSE__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_COMMAND__AD_STEPPING__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_0_COMMAND__SERR_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_COMMAND__FAST_B2B_EN__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_0_COMMAND__INT_DIS__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_0_COMMAND__IO_ACCESS_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_0_COMMAND__MEM_ACCESS_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_0_COMMAND__BUS_MASTER_EN_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_0_COMMAND__SPECIAL_CYCLE_EN_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_0_COMMAND__MEM_WRITE_INVALIDATE_EN_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_0_COMMAND__PAL_SNOOP_EN_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_0_COMMAND__PARITY_ERROR_RESPONSE_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_0_COMMAND__AD_STEPPING_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_0_COMMAND__SERR_EN_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_0_COMMAND__FAST_B2B_EN_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_0_COMMAND__INT_DIS_MASK 0x0400L
+//BIF_CFG_DEV0_EPF0_0_STATUS
+#define BIF_CFG_DEV0_EPF0_0_STATUS__IMMEDIATE_READINESS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_STATUS__INT_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_STATUS__CAP_LIST__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_STATUS__PCI_66_CAP__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_0_STATUS__FAST_BACK_CAPABLE__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_0_STATUS__MASTER_DATA_PARITY_ERROR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_STATUS__DEVSEL_TIMING__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_0_STATUS__SIGNAL_TARGET_ABORT__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_0_STATUS__RECEIVED_TARGET_ABORT__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_0_STATUS__RECEIVED_MASTER_ABORT__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_0_STATUS__SIGNALED_SYSTEM_ERROR__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_0_STATUS__PARITY_ERROR_DETECTED__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_0_STATUS__IMMEDIATE_READINESS_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_0_STATUS__INT_STATUS_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_0_STATUS__CAP_LIST_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_0_STATUS__PCI_66_CAP_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_0_STATUS__FAST_BACK_CAPABLE_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_0_STATUS__MASTER_DATA_PARITY_ERROR_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_0_STATUS__DEVSEL_TIMING_MASK 0x0600L
+#define BIF_CFG_DEV0_EPF0_0_STATUS__SIGNAL_TARGET_ABORT_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_0_STATUS__RECEIVED_TARGET_ABORT_MASK 0x1000L
+#define BIF_CFG_DEV0_EPF0_0_STATUS__RECEIVED_MASTER_ABORT_MASK 0x2000L
+#define BIF_CFG_DEV0_EPF0_0_STATUS__SIGNALED_SYSTEM_ERROR_MASK 0x4000L
+#define BIF_CFG_DEV0_EPF0_0_STATUS__PARITY_ERROR_DETECTED_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_0_REVISION_ID
+#define BIF_CFG_DEV0_EPF0_0_REVISION_ID__MINOR_REV_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_REVISION_ID__MAJOR_REV_ID__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_REVISION_ID__MINOR_REV_ID_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_0_REVISION_ID__MAJOR_REV_ID_MASK 0xF0L
+//BIF_CFG_DEV0_EPF0_0_PROG_INTERFACE
+#define BIF_CFG_DEV0_EPF0_0_PROG_INTERFACE__PROG_INTERFACE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PROG_INTERFACE__PROG_INTERFACE_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_0_SUB_CLASS
+#define BIF_CFG_DEV0_EPF0_0_SUB_CLASS__SUB_CLASS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_SUB_CLASS__SUB_CLASS_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_0_BASE_CLASS
+#define BIF_CFG_DEV0_EPF0_0_BASE_CLASS__BASE_CLASS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_BASE_CLASS__BASE_CLASS_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_0_CACHE_LINE
+#define BIF_CFG_DEV0_EPF0_0_CACHE_LINE__CACHE_LINE_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_CACHE_LINE__CACHE_LINE_SIZE_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_0_LATENCY
+#define BIF_CFG_DEV0_EPF0_0_LATENCY__LATENCY_TIMER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LATENCY__LATENCY_TIMER_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_0_HEADER
+#define BIF_CFG_DEV0_EPF0_0_HEADER__HEADER_TYPE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_HEADER__DEVICE_TYPE__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_0_HEADER__HEADER_TYPE_MASK 0x7FL
+#define BIF_CFG_DEV0_EPF0_0_HEADER__DEVICE_TYPE_MASK 0x80L
+//BIF_CFG_DEV0_EPF0_0_BIST
+#define BIF_CFG_DEV0_EPF0_0_BIST__BIST_COMP__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_BIST__BIST_STRT__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_BIST__BIST_CAP__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_0_BIST__BIST_COMP_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_0_BIST__BIST_STRT_MASK 0x40L
+#define BIF_CFG_DEV0_EPF0_0_BIST__BIST_CAP_MASK 0x80L
+//BIF_CFG_DEV0_EPF0_0_BASE_ADDR_1
+#define BIF_CFG_DEV0_EPF0_0_BASE_ADDR_1__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_BASE_ADDR_1__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_BASE_ADDR_2
+#define BIF_CFG_DEV0_EPF0_0_BASE_ADDR_2__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_BASE_ADDR_2__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_BASE_ADDR_3
+#define BIF_CFG_DEV0_EPF0_0_BASE_ADDR_3__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_BASE_ADDR_3__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_BASE_ADDR_4
+#define BIF_CFG_DEV0_EPF0_0_BASE_ADDR_4__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_BASE_ADDR_4__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_BASE_ADDR_5
+#define BIF_CFG_DEV0_EPF0_0_BASE_ADDR_5__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_BASE_ADDR_5__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_BASE_ADDR_6
+#define BIF_CFG_DEV0_EPF0_0_BASE_ADDR_6__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_BASE_ADDR_6__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_CARDBUS_CIS_PTR
+#define BIF_CFG_DEV0_EPF0_0_CARDBUS_CIS_PTR__CARDBUS_CIS_PTR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_CARDBUS_CIS_PTR__CARDBUS_CIS_PTR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_ADAPTER_ID
+#define BIF_CFG_DEV0_EPF0_0_ADAPTER_ID__SUBSYSTEM_VENDOR_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_ADAPTER_ID__SUBSYSTEM_ID__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_ADAPTER_ID__SUBSYSTEM_VENDOR_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_ADAPTER_ID__SUBSYSTEM_ID_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_0_ROM_BASE_ADDR
+#define BIF_CFG_DEV0_EPF0_0_ROM_BASE_ADDR__ROM_ENABLE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_ROM_BASE_ADDR__ROM_VALIDATION_STATUS__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_0_ROM_BASE_ADDR__ROM_VALIDATION_DETAILS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_ROM_BASE_ADDR__BASE_ADDR__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_0_ROM_BASE_ADDR__ROM_ENABLE_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_0_ROM_BASE_ADDR__ROM_VALIDATION_STATUS_MASK 0x0000000EL
+#define BIF_CFG_DEV0_EPF0_0_ROM_BASE_ADDR__ROM_VALIDATION_DETAILS_MASK 0x000000F0L
+#define BIF_CFG_DEV0_EPF0_0_ROM_BASE_ADDR__BASE_ADDR_MASK 0xFFFFF800L
+//BIF_CFG_DEV0_EPF0_0_CAP_PTR
+#define BIF_CFG_DEV0_EPF0_0_CAP_PTR__CAP_PTR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_CAP_PTR__CAP_PTR_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_0_INTERRUPT_LINE
+#define BIF_CFG_DEV0_EPF0_0_INTERRUPT_LINE__INTERRUPT_LINE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_INTERRUPT_LINE__INTERRUPT_LINE_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_0_INTERRUPT_PIN
+#define BIF_CFG_DEV0_EPF0_0_INTERRUPT_PIN__INTERRUPT_PIN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_INTERRUPT_PIN__INTERRUPT_PIN_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_0_MIN_GRANT
+#define BIF_CFG_DEV0_EPF0_0_MIN_GRANT__MIN_GNT__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_MIN_GRANT__MIN_GNT_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_0_MAX_LATENCY
+#define BIF_CFG_DEV0_EPF0_0_MAX_LATENCY__MAX_LAT__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_MAX_LATENCY__MAX_LAT_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_0_VENDOR_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_0_VENDOR_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_VENDOR_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_VENDOR_CAP_LIST__LENGTH__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_VENDOR_CAP_LIST__CAP_ID_MASK 0x000000FFL
+#define BIF_CFG_DEV0_EPF0_0_VENDOR_CAP_LIST__NEXT_PTR_MASK 0x0000FF00L
+#define BIF_CFG_DEV0_EPF0_0_VENDOR_CAP_LIST__LENGTH_MASK 0x00FF0000L
+//BIF_CFG_DEV0_EPF0_0_ADAPTER_ID_W
+#define BIF_CFG_DEV0_EPF0_0_ADAPTER_ID_W__SUBSYSTEM_VENDOR_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_ADAPTER_ID_W__SUBSYSTEM_ID__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_ADAPTER_ID_W__SUBSYSTEM_VENDOR_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_ADAPTER_ID_W__SUBSYSTEM_ID_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_0_PMI_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_0_PMI_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PMI_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PMI_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_EPF0_0_PMI_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_0_PMI_CAP
+#define BIF_CFG_DEV0_EPF0_0_PMI_CAP__VERSION__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PMI_CAP__PME_CLOCK__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_PMI_CAP__IMMEDIATE_READINESS_ON_RETURN_TO_D0__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_PMI_CAP__DEV_SPECIFIC_INIT__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_0_PMI_CAP__AUX_CURRENT__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_PMI_CAP__D1_SUPPORT__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_0_PMI_CAP__D2_SUPPORT__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_0_PMI_CAP__PME_SUPPORT__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_0_PMI_CAP__VERSION_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_0_PMI_CAP__PME_CLOCK_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_0_PMI_CAP__IMMEDIATE_READINESS_ON_RETURN_TO_D0_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_0_PMI_CAP__DEV_SPECIFIC_INIT_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_0_PMI_CAP__AUX_CURRENT_MASK 0x01C0L
+#define BIF_CFG_DEV0_EPF0_0_PMI_CAP__D1_SUPPORT_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_0_PMI_CAP__D2_SUPPORT_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF0_0_PMI_CAP__PME_SUPPORT_MASK 0xF800L
+//BIF_CFG_DEV0_EPF0_0_PMI_STATUS_CNTL
+#define BIF_CFG_DEV0_EPF0_0_PMI_STATUS_CNTL__POWER_STATE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PMI_STATUS_CNTL__NO_SOFT_RESET__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_PMI_STATUS_CNTL__PME_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PMI_STATUS_CNTL__DATA_SELECT__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_0_PMI_STATUS_CNTL__DATA_SCALE__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_0_PMI_STATUS_CNTL__PME_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_0_PMI_STATUS_CNTL__B2_B3_SUPPORT__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_0_PMI_STATUS_CNTL__BUS_PWR_EN__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_0_PMI_STATUS_CNTL__PMI_DATA__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_0_PMI_STATUS_CNTL__POWER_STATE_MASK 0x00000003L
+#define BIF_CFG_DEV0_EPF0_0_PMI_STATUS_CNTL__NO_SOFT_RESET_MASK 0x00000008L
+#define BIF_CFG_DEV0_EPF0_0_PMI_STATUS_CNTL__PME_EN_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_0_PMI_STATUS_CNTL__DATA_SELECT_MASK 0x00001E00L
+#define BIF_CFG_DEV0_EPF0_0_PMI_STATUS_CNTL__DATA_SCALE_MASK 0x00006000L
+#define BIF_CFG_DEV0_EPF0_0_PMI_STATUS_CNTL__PME_STATUS_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_0_PMI_STATUS_CNTL__B2_B3_SUPPORT_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_0_PMI_STATUS_CNTL__BUS_PWR_EN_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_0_PMI_STATUS_CNTL__PMI_DATA_MASK 0xFF000000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_0_PCIE_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_0_PCIE_CAP
+#define BIF_CFG_DEV0_EPF0_0_PCIE_CAP__VERSION__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_CAP__DEVICE_TYPE__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_CAP__SLOT_IMPLEMENTED__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_CAP__INT_MESSAGE_NUM__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_0_PCIE_CAP__VERSION_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_CAP__DEVICE_TYPE_MASK 0x00F0L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_CAP__SLOT_IMPLEMENTED_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_CAP__INT_MESSAGE_NUM_MASK 0x3E00L
+//BIF_CFG_DEV0_EPF0_0_DEVICE_CAP
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP__MAX_PAYLOAD_SUPPORT__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP__PHANTOM_FUNC__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP__EXTENDED_TAG__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP__L0S_ACCEPTABLE_LATENCY__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP__L1_ACCEPTABLE_LATENCY__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP__ROLE_BASED_ERR_REPORTING__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP__ERR_COR_SUBCLASS_CAPABLE__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP__CAPTURED_SLOT_POWER_LIMIT__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP__CAPTURED_SLOT_POWER_SCALE__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP__FLR_CAPABLE__SHIFT 0x1c
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP__MAX_PAYLOAD_SUPPORT_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP__PHANTOM_FUNC_MASK 0x00000018L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP__EXTENDED_TAG_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP__L0S_ACCEPTABLE_LATENCY_MASK 0x000001C0L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP__L1_ACCEPTABLE_LATENCY_MASK 0x00000E00L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP__ROLE_BASED_ERR_REPORTING_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP__ERR_COR_SUBCLASS_CAPABLE_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP__CAPTURED_SLOT_POWER_LIMIT_MASK 0x03FC0000L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP__CAPTURED_SLOT_POWER_SCALE_MASK 0x0C000000L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP__FLR_CAPABLE_MASK 0x10000000L
+//BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL__CORR_ERR_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL__NON_FATAL_ERR_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL__FATAL_ERR_EN__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL__USR_REPORT_EN__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL__RELAXED_ORD_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL__MAX_PAYLOAD_SIZE__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL__EXTENDED_TAG_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL__PHANTOM_FUNC_EN__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL__AUX_POWER_PM_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL__NO_SNOOP_EN__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL__MAX_READ_REQUEST_SIZE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL__INITIATE_FLR__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL__CORR_ERR_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL__NON_FATAL_ERR_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL__FATAL_ERR_EN_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL__USR_REPORT_EN_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL__RELAXED_ORD_EN_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL__MAX_PAYLOAD_SIZE_MASK 0x00E0L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL__EXTENDED_TAG_EN_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL__PHANTOM_FUNC_EN_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL__AUX_POWER_PM_EN_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL__NO_SNOOP_EN_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL__MAX_READ_REQUEST_SIZE_MASK 0x7000L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL__INITIATE_FLR_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_0_DEVICE_STATUS
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_STATUS__CORR_ERR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_STATUS__NON_FATAL_ERR__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_STATUS__FATAL_ERR__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_STATUS__USR_DETECTED__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_STATUS__AUX_PWR__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_STATUS__TRANSACTIONS_PEND__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_STATUS__EMER_POWER_REDUCTION_DETECTED__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_STATUS__CORR_ERR_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_STATUS__NON_FATAL_ERR_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_STATUS__FATAL_ERR_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_STATUS__USR_DETECTED_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_STATUS__AUX_PWR_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_STATUS__TRANSACTIONS_PEND_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_STATUS__EMER_POWER_REDUCTION_DETECTED_MASK 0x0040L
+//BIF_CFG_DEV0_EPF0_0_LINK_CAP
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP__LINK_SPEED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP__LINK_WIDTH__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP__PM_SUPPORT__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP__L0S_EXIT_LATENCY__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP__L1_EXIT_LATENCY__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP__CLOCK_POWER_MANAGEMENT__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP__SURPRISE_DOWN_ERR_REPORTING__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP__DL_ACTIVE_REPORTING_CAPABLE__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP__LINK_BW_NOTIFICATION_CAP__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP__ASPM_OPTIONALITY_COMPLIANCE__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP__PORT_NUMBER__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP__LINK_SPEED_MASK 0x0000000FL
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP__LINK_WIDTH_MASK 0x000003F0L
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP__PM_SUPPORT_MASK 0x00000C00L
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP__L0S_EXIT_LATENCY_MASK 0x00007000L
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP__L1_EXIT_LATENCY_MASK 0x00038000L
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP__CLOCK_POWER_MANAGEMENT_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP__SURPRISE_DOWN_ERR_REPORTING_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP__DL_ACTIVE_REPORTING_CAPABLE_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP__LINK_BW_NOTIFICATION_CAP_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP__ASPM_OPTIONALITY_COMPLIANCE_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP__PORT_NUMBER_MASK 0xFF000000L
+//BIF_CFG_DEV0_EPF0_0_LINK_CNTL
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL__PM_CONTROL__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL__PTM_PROP_DELAY_ADAPT_INTER_B__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL__READ_CPL_BOUNDARY__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL__LINK_DIS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL__RETRAIN_LINK__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL__COMMON_CLOCK_CFG__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL__EXTENDED_SYNC__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL__CLOCK_POWER_MANAGEMENT_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL__HW_AUTONOMOUS_WIDTH_DISABLE__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL__LINK_BW_MANAGEMENT_INT_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL__LINK_AUTONOMOUS_BW_INT_EN__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL__DRS_SIGNALING_CONTROL__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL__PM_CONTROL_MASK 0x0003L
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL__PTM_PROP_DELAY_ADAPT_INTER_B_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL__READ_CPL_BOUNDARY_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL__LINK_DIS_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL__RETRAIN_LINK_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL__COMMON_CLOCK_CFG_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL__EXTENDED_SYNC_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL__CLOCK_POWER_MANAGEMENT_EN_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL__HW_AUTONOMOUS_WIDTH_DISABLE_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL__LINK_BW_MANAGEMENT_INT_EN_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL__LINK_AUTONOMOUS_BW_INT_EN_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL__DRS_SIGNALING_CONTROL_MASK 0xC000L
+//BIF_CFG_DEV0_EPF0_0_LINK_STATUS
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS__CURRENT_LINK_SPEED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS__NEGOTIATED_LINK_WIDTH__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS__LINK_TRAINING__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS__SLOT_CLOCK_CFG__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS__DL_ACTIVE__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS__LINK_BW_MANAGEMENT_STATUS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS__LINK_AUTONOMOUS_BW_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS__CURRENT_LINK_SPEED_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS__NEGOTIATED_LINK_WIDTH_MASK 0x03F0L
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS__LINK_TRAINING_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS__SLOT_CLOCK_CFG_MASK 0x1000L
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS__DL_ACTIVE_MASK 0x2000L
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS__LINK_BW_MANAGEMENT_STATUS_MASK 0x4000L
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS__LINK_AUTONOMOUS_BW_STATUS_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_0_DEVICE_CAP2
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP2__CPL_TIMEOUT_RANGE_SUPPORTED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP2__CPL_TIMEOUT_DIS_SUPPORTED__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP2__ARI_FORWARDING_SUPPORTED__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP2__ATOMICOP_ROUTING_SUPPORTED__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP2__ATOMICOP_32CMPLT_SUPPORTED__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP2__ATOMICOP_64CMPLT_SUPPORTED__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP2__CAS128_CMPLT_SUPPORTED__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP2__NO_RO_ENABLED_P2P_PASSING__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP2__LTR_SUPPORTED__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP2__TPH_CPLR_SUPPORTED__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP2__LN_SYSTEM_CLS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP2__TEN_BIT_TAG_COMPLETER_SUPPORTED__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP2__TEN_BIT_TAG_REQUESTER_SUPPORTED__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP2__OBFF_SUPPORTED__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP2__EXTENDED_FMT_FIELD_SUPPORTED__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP2__END_END_TLP_PREFIX_SUPPORTED__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP2__MAX_END_END_TLP_PREFIXES__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP2__EMER_POWER_REDUCTION_SUPPORTED__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP2__EMER_POWER_REDUCTION_INIT_REQ__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP2__FRS_SUPPORTED__SHIFT 0x1f
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP2__CPL_TIMEOUT_RANGE_SUPPORTED_MASK 0x0000000FL
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP2__CPL_TIMEOUT_DIS_SUPPORTED_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP2__ARI_FORWARDING_SUPPORTED_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP2__ATOMICOP_ROUTING_SUPPORTED_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP2__ATOMICOP_32CMPLT_SUPPORTED_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP2__ATOMICOP_64CMPLT_SUPPORTED_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP2__CAS128_CMPLT_SUPPORTED_MASK 0x00000200L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP2__NO_RO_ENABLED_P2P_PASSING_MASK 0x00000400L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP2__LTR_SUPPORTED_MASK 0x00000800L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP2__TPH_CPLR_SUPPORTED_MASK 0x00003000L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP2__LN_SYSTEM_CLS_MASK 0x0000C000L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP2__TEN_BIT_TAG_COMPLETER_SUPPORTED_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP2__TEN_BIT_TAG_REQUESTER_SUPPORTED_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP2__OBFF_SUPPORTED_MASK 0x000C0000L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP2__EXTENDED_FMT_FIELD_SUPPORTED_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP2__END_END_TLP_PREFIX_SUPPORTED_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP2__MAX_END_END_TLP_PREFIXES_MASK 0x00C00000L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP2__EMER_POWER_REDUCTION_SUPPORTED_MASK 0x03000000L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP2__EMER_POWER_REDUCTION_INIT_REQ_MASK 0x04000000L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CAP2__FRS_SUPPORTED_MASK 0x80000000L
+//BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL2
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL2__CPL_TIMEOUT_VALUE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL2__CPL_TIMEOUT_DIS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL2__ARI_FORWARDING_EN__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL2__ATOMICOP_REQUEST_EN__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL2__ATOMICOP_EGRESS_BLOCKING__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL2__IDO_REQUEST_ENABLE__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL2__IDO_COMPLETION_ENABLE__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL2__LTR_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL2__EMER_POWER_REDUCTION_REQUEST__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL2__TEN_BIT_TAG_REQUESTER_ENABLE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL2__OBFF_EN__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL2__END_END_TLP_PREFIX_BLOCKING__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL2__CPL_TIMEOUT_VALUE_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL2__CPL_TIMEOUT_DIS_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL2__ARI_FORWARDING_EN_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL2__ATOMICOP_REQUEST_EN_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL2__ATOMICOP_EGRESS_BLOCKING_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL2__IDO_REQUEST_ENABLE_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL2__IDO_COMPLETION_ENABLE_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL2__LTR_EN_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL2__EMER_POWER_REDUCTION_REQUEST_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL2__TEN_BIT_TAG_REQUESTER_ENABLE_MASK 0x1000L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL2__OBFF_EN_MASK 0x6000L
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_CNTL2__END_END_TLP_PREFIX_BLOCKING_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_0_DEVICE_STATUS2
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_STATUS2__RESERVED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_DEVICE_STATUS2__RESERVED_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_0_LINK_CAP2
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP2__SUPPORTED_LINK_SPEED__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP2__CROSSLINK_SUPPORTED__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP2__LOWER_SKP_OS_GEN_SUPPORT__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP2__LOWER_SKP_OS_RCV_SUPPORT__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP2__RTM1_PRESENCE_DET_SUPPORT__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP2__RTM2_PRESENCE_DET_SUPPORT__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP2__DRS_SUPPORTED__SHIFT 0x1f
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP2__SUPPORTED_LINK_SPEED_MASK 0x000000FEL
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP2__CROSSLINK_SUPPORTED_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP2__LOWER_SKP_OS_GEN_SUPPORT_MASK 0x0000FE00L
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP2__LOWER_SKP_OS_RCV_SUPPORT_MASK 0x007F0000L
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP2__RTM1_PRESENCE_DET_SUPPORT_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP2__RTM2_PRESENCE_DET_SUPPORT_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP2__DRS_SUPPORTED_MASK 0x80000000L
+//BIF_CFG_DEV0_EPF0_0_LINK_CNTL2
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL2__TARGET_LINK_SPEED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL2__ENTER_COMPLIANCE__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL2__HW_AUTONOMOUS_SPEED_DISABLE__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL2__SELECTABLE_DEEMPHASIS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL2__XMIT_MARGIN__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL2__ENTER_MOD_COMPLIANCE__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL2__COMPLIANCE_SOS__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL2__COMPLIANCE_DEEMPHASIS__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL2__TARGET_LINK_SPEED_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL2__ENTER_COMPLIANCE_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL2__HW_AUTONOMOUS_SPEED_DISABLE_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL2__SELECTABLE_DEEMPHASIS_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL2__XMIT_MARGIN_MASK 0x0380L
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL2__ENTER_MOD_COMPLIANCE_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL2__COMPLIANCE_SOS_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL2__COMPLIANCE_DEEMPHASIS_MASK 0xF000L
+//BIF_CFG_DEV0_EPF0_0_LINK_STATUS2
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS2__CUR_DEEMPHASIS_LEVEL__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS2__EQUALIZATION_COMPLETE_8GT__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS2__EQUALIZATION_PHASE1_SUCCESS_8GT__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS2__EQUALIZATION_PHASE2_SUCCESS_8GT__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS2__EQUALIZATION_PHASE3_SUCCESS_8GT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS2__LINK_EQUALIZATION_REQUEST_8GT__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS2__RTM1_PRESENCE_DET__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS2__RTM2_PRESENCE_DET__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS2__CROSSLINK_RESOLUTION__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS2__DOWNSTREAM_COMPONENT_PRESENCE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS2__DRS_MESSAGE_RECEIVED__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS2__CUR_DEEMPHASIS_LEVEL_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS2__EQUALIZATION_COMPLETE_8GT_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS2__EQUALIZATION_PHASE1_SUCCESS_8GT_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS2__EQUALIZATION_PHASE2_SUCCESS_8GT_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS2__EQUALIZATION_PHASE3_SUCCESS_8GT_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS2__LINK_EQUALIZATION_REQUEST_8GT_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS2__RTM1_PRESENCE_DET_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS2__RTM2_PRESENCE_DET_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS2__CROSSLINK_RESOLUTION_MASK 0x0300L
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS2__DOWNSTREAM_COMPONENT_PRESENCE_MASK 0x7000L
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS2__DRS_MESSAGE_RECEIVED_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_0_MSI_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_0_MSI_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_MSI_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_MSI_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_EPF0_0_MSI_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_0_MSI_MSG_CNTL
+#define BIF_CFG_DEV0_EPF0_0_MSI_MSG_CNTL__MSI_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_MSI_MSG_CNTL__MSI_MULTI_CAP__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_0_MSI_MSG_CNTL__MSI_MULTI_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_MSI_MSG_CNTL__MSI_64BIT__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_0_MSI_MSG_CNTL__MSI_PERVECTOR_MASKING_CAP__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_CAP__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_0_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_0_MSI_MSG_CNTL__MSI_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_0_MSI_MSG_CNTL__MSI_MULTI_CAP_MASK 0x000EL
+#define BIF_CFG_DEV0_EPF0_0_MSI_MSG_CNTL__MSI_MULTI_EN_MASK 0x0070L
+#define BIF_CFG_DEV0_EPF0_0_MSI_MSG_CNTL__MSI_64BIT_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_0_MSI_MSG_CNTL__MSI_PERVECTOR_MASKING_CAP_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_0_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_CAP_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_0_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_EN_MASK 0x0400L
+//BIF_CFG_DEV0_EPF0_0_MSI_MSG_ADDR_LO
+#define BIF_CFG_DEV0_EPF0_0_MSI_MSG_ADDR_LO__MSI_MSG_ADDR_LO__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_0_MSI_MSG_ADDR_LO__MSI_MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//BIF_CFG_DEV0_EPF0_0_MSI_MSG_ADDR_HI
+#define BIF_CFG_DEV0_EPF0_0_MSI_MSG_ADDR_HI__MSI_MSG_ADDR_HI__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_MSI_MSG_ADDR_HI__MSI_MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_MSI_MSG_DATA
+#define BIF_CFG_DEV0_EPF0_0_MSI_MSG_DATA__MSI_DATA__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_MSI_MSG_DATA__MSI_DATA_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_0_MSI_EXT_MSG_DATA
+#define BIF_CFG_DEV0_EPF0_0_MSI_EXT_MSG_DATA__MSI_EXT_DATA__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_MSI_EXT_MSG_DATA__MSI_EXT_DATA_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_0_MSI_MASK
+#define BIF_CFG_DEV0_EPF0_0_MSI_MASK__MSI_MASK__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_MSI_MASK__MSI_MASK_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_MSI_MSG_DATA_64
+#define BIF_CFG_DEV0_EPF0_0_MSI_MSG_DATA_64__MSI_DATA_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_MSI_MSG_DATA_64__MSI_DATA_64_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_0_MSI_EXT_MSG_DATA_64
+#define BIF_CFG_DEV0_EPF0_0_MSI_EXT_MSG_DATA_64__MSI_EXT_DATA_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_MSI_EXT_MSG_DATA_64__MSI_EXT_DATA_64_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_0_MSI_MASK_64
+#define BIF_CFG_DEV0_EPF0_0_MSI_MASK_64__MSI_MASK_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_MSI_MASK_64__MSI_MASK_64_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_MSI_PENDING
+#define BIF_CFG_DEV0_EPF0_0_MSI_PENDING__MSI_PENDING__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_MSI_PENDING__MSI_PENDING_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_MSI_PENDING_64
+#define BIF_CFG_DEV0_EPF0_0_MSI_PENDING_64__MSI_PENDING_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_MSI_PENDING_64__MSI_PENDING_64_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_MSIX_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_0_MSIX_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_MSIX_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_MSIX_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_EPF0_0_MSIX_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_0_MSIX_MSG_CNTL
+#define BIF_CFG_DEV0_EPF0_0_MSIX_MSG_CNTL__MSIX_TABLE_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_MSIX_MSG_CNTL__MSIX_FUNC_MASK__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_0_MSIX_MSG_CNTL__MSIX_EN__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_0_MSIX_MSG_CNTL__MSIX_TABLE_SIZE_MASK 0x07FFL
+#define BIF_CFG_DEV0_EPF0_0_MSIX_MSG_CNTL__MSIX_FUNC_MASK_MASK 0x4000L
+#define BIF_CFG_DEV0_EPF0_0_MSIX_MSG_CNTL__MSIX_EN_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_0_MSIX_TABLE
+#define BIF_CFG_DEV0_EPF0_0_MSIX_TABLE__MSIX_TABLE_BIR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_MSIX_TABLE__MSIX_TABLE_OFFSET__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_MSIX_TABLE__MSIX_TABLE_BIR_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF0_0_MSIX_TABLE__MSIX_TABLE_OFFSET_MASK 0xFFFFFFF8L
+//BIF_CFG_DEV0_EPF0_0_MSIX_PBA
+#define BIF_CFG_DEV0_EPF0_0_MSIX_PBA__MSIX_PBA_BIR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_MSIX_PBA__MSIX_PBA_OFFSET__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_MSIX_PBA__MSIX_PBA_BIR_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF0_0_MSIX_PBA__MSIX_PBA_OFFSET_MASK 0xFFFFFFF8L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR__VSEC_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR__VSEC_REV__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR__VSEC_LENGTH__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR__VSEC_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR__VSEC_REV_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR__VSEC_LENGTH_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC1__SCRATCH__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC1__SCRATCH_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC2
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC2__SCRATCH__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC2__SCRATCH_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VC_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_PORT_VC_CAP_REG1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PORT_VC_CAP_REG1__EXT_VC_COUNT__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PORT_VC_CAP_REG1__LOW_PRIORITY_EXT_VC_COUNT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PORT_VC_CAP_REG1__REF_CLK__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PORT_VC_CAP_REG1__PORT_ARB_TABLE_ENTRY_SIZE__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PORT_VC_CAP_REG1__EXT_VC_COUNT_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PORT_VC_CAP_REG1__LOW_PRIORITY_EXT_VC_COUNT_MASK 0x00000070L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PORT_VC_CAP_REG1__REF_CLK_MASK 0x00000300L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PORT_VC_CAP_REG1__PORT_ARB_TABLE_ENTRY_SIZE_MASK 0x00000C00L
+//BIF_CFG_DEV0_EPF0_0_PCIE_PORT_VC_CAP_REG2
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PORT_VC_CAP_REG2__VC_ARB_CAP__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PORT_VC_CAP_REG2__VC_ARB_TABLE_OFFSET__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PORT_VC_CAP_REG2__VC_ARB_CAP_MASK 0x000000FFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PORT_VC_CAP_REG2__VC_ARB_TABLE_OFFSET_MASK 0xFF000000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_PORT_VC_CNTL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PORT_VC_CNTL__LOAD_VC_ARB_TABLE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PORT_VC_CNTL__VC_ARB_SELECT__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PORT_VC_CNTL__LOAD_VC_ARB_TABLE_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PORT_VC_CNTL__VC_ARB_SELECT_MASK 0x000EL
+//BIF_CFG_DEV0_EPF0_0_PCIE_PORT_VC_STATUS
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PORT_VC_STATUS__VC_ARB_TABLE_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PORT_VC_STATUS__VC_ARB_TABLE_STATUS_MASK 0x0001L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VC0_RESOURCE_CAP
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC0_RESOURCE_CAP__PORT_ARB_CAP__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC0_RESOURCE_CAP__REJECT_SNOOP_TRANS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC0_RESOURCE_CAP__MAX_TIME_SLOTS__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC0_RESOURCE_CAP__PORT_ARB_TABLE_OFFSET__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC0_RESOURCE_CAP__PORT_ARB_CAP_MASK 0x000000FFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC0_RESOURCE_CAP__REJECT_SNOOP_TRANS_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC0_RESOURCE_CAP__MAX_TIME_SLOTS_MASK 0x007F0000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC0_RESOURCE_CAP__PORT_ARB_TABLE_OFFSET_MASK 0xFF000000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VC0_RESOURCE_CNTL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC0_RESOURCE_CNTL__TC_VC_MAP_TC0__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC0_RESOURCE_CNTL__TC_VC_MAP_TC1_7__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC0_RESOURCE_CNTL__LOAD_PORT_ARB_TABLE__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC0_RESOURCE_CNTL__PORT_ARB_SELECT__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC0_RESOURCE_CNTL__VC_ID__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC0_RESOURCE_CNTL__VC_ENABLE__SHIFT 0x1f
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC0_RESOURCE_CNTL__TC_VC_MAP_TC0_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC0_RESOURCE_CNTL__TC_VC_MAP_TC1_7_MASK 0x000000FEL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC0_RESOURCE_CNTL__LOAD_PORT_ARB_TABLE_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC0_RESOURCE_CNTL__PORT_ARB_SELECT_MASK 0x000E0000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC0_RESOURCE_CNTL__VC_ID_MASK 0x07000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC0_RESOURCE_CNTL__VC_ENABLE_MASK 0x80000000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VC0_RESOURCE_STATUS
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC0_RESOURCE_STATUS__PORT_ARB_TABLE_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC0_RESOURCE_STATUS__VC_NEGOTIATION_PENDING__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC0_RESOURCE_STATUS__PORT_ARB_TABLE_STATUS_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC0_RESOURCE_STATUS__VC_NEGOTIATION_PENDING_MASK 0x0002L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VC1_RESOURCE_CAP
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC1_RESOURCE_CAP__PORT_ARB_CAP__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC1_RESOURCE_CAP__REJECT_SNOOP_TRANS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC1_RESOURCE_CAP__MAX_TIME_SLOTS__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC1_RESOURCE_CAP__PORT_ARB_TABLE_OFFSET__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC1_RESOURCE_CAP__PORT_ARB_CAP_MASK 0x000000FFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC1_RESOURCE_CAP__REJECT_SNOOP_TRANS_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC1_RESOURCE_CAP__MAX_TIME_SLOTS_MASK 0x003F0000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC1_RESOURCE_CAP__PORT_ARB_TABLE_OFFSET_MASK 0xFF000000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VC1_RESOURCE_CNTL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC1_RESOURCE_CNTL__TC_VC_MAP_TC0__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC1_RESOURCE_CNTL__TC_VC_MAP_TC1_7__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC1_RESOURCE_CNTL__LOAD_PORT_ARB_TABLE__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC1_RESOURCE_CNTL__PORT_ARB_SELECT__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC1_RESOURCE_CNTL__VC_ID__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC1_RESOURCE_CNTL__VC_ENABLE__SHIFT 0x1f
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC1_RESOURCE_CNTL__TC_VC_MAP_TC0_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC1_RESOURCE_CNTL__TC_VC_MAP_TC1_7_MASK 0x000000FEL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC1_RESOURCE_CNTL__LOAD_PORT_ARB_TABLE_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC1_RESOURCE_CNTL__PORT_ARB_SELECT_MASK 0x000E0000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC1_RESOURCE_CNTL__VC_ID_MASK 0x07000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC1_RESOURCE_CNTL__VC_ENABLE_MASK 0x80000000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VC1_RESOURCE_STATUS
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC1_RESOURCE_STATUS__PORT_ARB_TABLE_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC1_RESOURCE_STATUS__VC_NEGOTIATION_PENDING__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC1_RESOURCE_STATUS__PORT_ARB_TABLE_STATUS_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VC1_RESOURCE_STATUS__VC_NEGOTIATION_PENDING_MASK 0x0002L
+//BIF_CFG_DEV0_EPF0_0_PCIE_DEV_SERIAL_NUM_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DEV_SERIAL_NUM_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DEV_SERIAL_NUM_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DEV_SERIAL_NUM_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DEV_SERIAL_NUM_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DEV_SERIAL_NUM_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DEV_SERIAL_NUM_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_DEV_SERIAL_NUM_DW1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DEV_SERIAL_NUM_DW1__SERIAL_NUMBER_LO__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DEV_SERIAL_NUM_DW1__SERIAL_NUMBER_LO_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_DEV_SERIAL_NUM_DW2
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DEV_SERIAL_NUM_DW2__SERIAL_NUMBER_HI__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DEV_SERIAL_NUM_DW2__SERIAL_NUMBER_HI_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_ADV_ERR_RPT_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_STATUS
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_STATUS__DLP_ERR_STATUS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_STATUS__SURPDN_ERR_STATUS__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_STATUS__PSN_ERR_STATUS__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_STATUS__FC_ERR_STATUS__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_STATUS__CPL_TIMEOUT_STATUS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_STATUS__CPL_ABORT_ERR_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_STATUS__UNEXP_CPL_STATUS__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_STATUS__RCV_OVFL_STATUS__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_STATUS__MAL_TLP_STATUS__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_STATUS__ECRC_ERR_STATUS__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_STATUS__UNSUPP_REQ_ERR_STATUS__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_STATUS__ACS_VIOLATION_STATUS__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_STATUS__UNCORR_INT_ERR_STATUS__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_STATUS__MC_BLOCKED_TLP_STATUS__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_STATUS__ATOMICOP_EGRESS_BLOCKED_STATUS__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_STATUS__TLP_PREFIX_BLOCKED_ERR_STATUS__SHIFT 0x19
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_STATUS__POISONED_TLP_EGRESS_BLOCKED_STATUS__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_STATUS__DLP_ERR_STATUS_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_STATUS__SURPDN_ERR_STATUS_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_STATUS__PSN_ERR_STATUS_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_STATUS__FC_ERR_STATUS_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_STATUS__CPL_TIMEOUT_STATUS_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_STATUS__CPL_ABORT_ERR_STATUS_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_STATUS__UNEXP_CPL_STATUS_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_STATUS__RCV_OVFL_STATUS_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_STATUS__MAL_TLP_STATUS_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_STATUS__ECRC_ERR_STATUS_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_STATUS__UNSUPP_REQ_ERR_STATUS_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_STATUS__ACS_VIOLATION_STATUS_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_STATUS__UNCORR_INT_ERR_STATUS_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_STATUS__MC_BLOCKED_TLP_STATUS_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_STATUS__ATOMICOP_EGRESS_BLOCKED_STATUS_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_STATUS__TLP_PREFIX_BLOCKED_ERR_STATUS_MASK 0x02000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_STATUS__POISONED_TLP_EGRESS_BLOCKED_STATUS_MASK 0x04000000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_MASK
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_MASK__DLP_ERR_MASK__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_MASK__SURPDN_ERR_MASK__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_MASK__PSN_ERR_MASK__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_MASK__FC_ERR_MASK__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_MASK__CPL_TIMEOUT_MASK__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_MASK__CPL_ABORT_ERR_MASK__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_MASK__UNEXP_CPL_MASK__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_MASK__RCV_OVFL_MASK__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_MASK__MAL_TLP_MASK__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_MASK__ECRC_ERR_MASK__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_MASK__UNSUPP_REQ_ERR_MASK__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_MASK__ACS_VIOLATION_MASK__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_MASK__UNCORR_INT_ERR_MASK__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_MASK__MC_BLOCKED_TLP_MASK__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_MASK__ATOMICOP_EGRESS_BLOCKED_MASK__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_MASK__TLP_PREFIX_BLOCKED_ERR_MASK__SHIFT 0x19
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_MASK__POISONED_TLP_EGRESS_BLOCKED_MASK__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_MASK__DLP_ERR_MASK_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_MASK__SURPDN_ERR_MASK_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_MASK__PSN_ERR_MASK_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_MASK__FC_ERR_MASK_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_MASK__CPL_TIMEOUT_MASK_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_MASK__CPL_ABORT_ERR_MASK_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_MASK__UNEXP_CPL_MASK_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_MASK__RCV_OVFL_MASK_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_MASK__MAL_TLP_MASK_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_MASK__ECRC_ERR_MASK_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_MASK__UNSUPP_REQ_ERR_MASK_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_MASK__ACS_VIOLATION_MASK_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_MASK__UNCORR_INT_ERR_MASK_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_MASK__MC_BLOCKED_TLP_MASK_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_MASK__ATOMICOP_EGRESS_BLOCKED_MASK_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_MASK__TLP_PREFIX_BLOCKED_ERR_MASK_MASK 0x02000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_MASK__POISONED_TLP_EGRESS_BLOCKED_MASK_MASK 0x04000000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_SEVERITY
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_SEVERITY__DLP_ERR_SEVERITY__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_SEVERITY__SURPDN_ERR_SEVERITY__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_SEVERITY__PSN_ERR_SEVERITY__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_SEVERITY__FC_ERR_SEVERITY__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_SEVERITY__CPL_TIMEOUT_SEVERITY__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_SEVERITY__CPL_ABORT_ERR_SEVERITY__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_SEVERITY__UNEXP_CPL_SEVERITY__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_SEVERITY__RCV_OVFL_SEVERITY__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_SEVERITY__MAL_TLP_SEVERITY__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_SEVERITY__ECRC_ERR_SEVERITY__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_SEVERITY__UNSUPP_REQ_ERR_SEVERITY__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_SEVERITY__ACS_VIOLATION_SEVERITY__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_SEVERITY__UNCORR_INT_ERR_SEVERITY__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_SEVERITY__MC_BLOCKED_TLP_SEVERITY__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_SEVERITY__ATOMICOP_EGRESS_BLOCKED_SEVERITY__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_SEVERITY__TLP_PREFIX_BLOCKED_ERR_SEVERITY__SHIFT 0x19
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_SEVERITY__POISONED_TLP_EGRESS_BLOCKED_SEVERITY__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_SEVERITY__DLP_ERR_SEVERITY_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_SEVERITY__SURPDN_ERR_SEVERITY_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_SEVERITY__PSN_ERR_SEVERITY_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_SEVERITY__FC_ERR_SEVERITY_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_SEVERITY__CPL_TIMEOUT_SEVERITY_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_SEVERITY__CPL_ABORT_ERR_SEVERITY_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_SEVERITY__UNEXP_CPL_SEVERITY_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_SEVERITY__RCV_OVFL_SEVERITY_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_SEVERITY__MAL_TLP_SEVERITY_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_SEVERITY__ECRC_ERR_SEVERITY_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_SEVERITY__UNSUPP_REQ_ERR_SEVERITY_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_SEVERITY__ACS_VIOLATION_SEVERITY_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_SEVERITY__UNCORR_INT_ERR_SEVERITY_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_SEVERITY__MC_BLOCKED_TLP_SEVERITY_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_SEVERITY__ATOMICOP_EGRESS_BLOCKED_SEVERITY_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_SEVERITY__TLP_PREFIX_BLOCKED_ERR_SEVERITY_MASK 0x02000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_UNCORR_ERR_SEVERITY__POISONED_TLP_EGRESS_BLOCKED_SEVERITY_MASK 0x04000000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_CORR_ERR_STATUS
+#define BIF_CFG_DEV0_EPF0_0_PCIE_CORR_ERR_STATUS__RCV_ERR_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_CORR_ERR_STATUS__BAD_TLP_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_PCIE_CORR_ERR_STATUS__BAD_DLLP_STATUS__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_0_PCIE_CORR_ERR_STATUS__REPLAY_NUM_ROLLOVER_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_CORR_ERR_STATUS__REPLAY_TIMER_TIMEOUT_STATUS__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_0_PCIE_CORR_ERR_STATUS__ADVISORY_NONFATAL_ERR_STATUS__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_0_PCIE_CORR_ERR_STATUS__CORR_INT_ERR_STATUS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_0_PCIE_CORR_ERR_STATUS__HDR_LOG_OVFL_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_0_PCIE_CORR_ERR_STATUS__RCV_ERR_STATUS_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_CORR_ERR_STATUS__BAD_TLP_STATUS_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_CORR_ERR_STATUS__BAD_DLLP_STATUS_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_CORR_ERR_STATUS__REPLAY_NUM_ROLLOVER_STATUS_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_CORR_ERR_STATUS__REPLAY_TIMER_TIMEOUT_STATUS_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_CORR_ERR_STATUS__ADVISORY_NONFATAL_ERR_STATUS_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_CORR_ERR_STATUS__CORR_INT_ERR_STATUS_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_CORR_ERR_STATUS__HDR_LOG_OVFL_STATUS_MASK 0x00008000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_CORR_ERR_MASK
+#define BIF_CFG_DEV0_EPF0_0_PCIE_CORR_ERR_MASK__RCV_ERR_MASK__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_CORR_ERR_MASK__BAD_TLP_MASK__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_PCIE_CORR_ERR_MASK__BAD_DLLP_MASK__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_0_PCIE_CORR_ERR_MASK__REPLAY_NUM_ROLLOVER_MASK__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_CORR_ERR_MASK__REPLAY_TIMER_TIMEOUT_MASK__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_0_PCIE_CORR_ERR_MASK__ADVISORY_NONFATAL_ERR_MASK__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_0_PCIE_CORR_ERR_MASK__CORR_INT_ERR_MASK__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_0_PCIE_CORR_ERR_MASK__HDR_LOG_OVFL_MASK__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_0_PCIE_CORR_ERR_MASK__RCV_ERR_MASK_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_CORR_ERR_MASK__BAD_TLP_MASK_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_CORR_ERR_MASK__BAD_DLLP_MASK_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_CORR_ERR_MASK__REPLAY_NUM_ROLLOVER_MASK_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_CORR_ERR_MASK__REPLAY_TIMER_TIMEOUT_MASK_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_CORR_ERR_MASK__ADVISORY_NONFATAL_ERR_MASK_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_CORR_ERR_MASK__CORR_INT_ERR_MASK_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_CORR_ERR_MASK__HDR_LOG_OVFL_MASK_MASK 0x00008000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_ADV_ERR_CAP_CNTL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ADV_ERR_CAP_CNTL__FIRST_ERR_PTR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_CAP__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_EN__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_CAP__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_CAP__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ADV_ERR_CAP_CNTL__TLP_PREFIX_LOG_PRESENT__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ADV_ERR_CAP_CNTL__COMPLETION_TIMEOUT_LOG_CAPABLE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ADV_ERR_CAP_CNTL__FIRST_ERR_PTR_MASK 0x0000001FL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_CAP_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_EN_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_CAP_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_EN_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_CAP_MASK 0x00000200L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_EN_MASK 0x00000400L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ADV_ERR_CAP_CNTL__TLP_PREFIX_LOG_PRESENT_MASK 0x00000800L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ADV_ERR_CAP_CNTL__COMPLETION_TIMEOUT_LOG_CAPABLE_MASK 0x00001000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_HDR_LOG0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_HDR_LOG0__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_HDR_LOG0__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_HDR_LOG1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_HDR_LOG1__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_HDR_LOG1__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_HDR_LOG2
+#define BIF_CFG_DEV0_EPF0_0_PCIE_HDR_LOG2__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_HDR_LOG2__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_HDR_LOG3
+#define BIF_CFG_DEV0_EPF0_0_PCIE_HDR_LOG3__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_HDR_LOG3__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_TLP_PREFIX_LOG0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_TLP_PREFIX_LOG0__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_TLP_PREFIX_LOG0__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_TLP_PREFIX_LOG1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_TLP_PREFIX_LOG1__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_TLP_PREFIX_LOG1__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_TLP_PREFIX_LOG2
+#define BIF_CFG_DEV0_EPF0_0_PCIE_TLP_PREFIX_LOG2__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_TLP_PREFIX_LOG2__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_TLP_PREFIX_LOG3
+#define BIF_CFG_DEV0_EPF0_0_PCIE_TLP_PREFIX_LOG3__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_TLP_PREFIX_LOG3__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_BAR_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_BAR1_CAP
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR1_CAP__BAR_SIZE_SUPPORTED__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR1_CAP__BAR_SIZE_SUPPORTED_MASK 0xFFFFFFF0L
+//BIF_CFG_DEV0_EPF0_0_PCIE_BAR1_CNTL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR1_CNTL__BAR_INDEX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR1_CNTL__BAR_TOTAL_NUM__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR1_CNTL__BAR_SIZE__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR1_CNTL__BAR_SIZE_SUPPORTED_UPPER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR1_CNTL__BAR_INDEX_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR1_CNTL__BAR_TOTAL_NUM_MASK 0x000000E0L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR1_CNTL__BAR_SIZE_MASK 0x00003F00L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR1_CNTL__BAR_SIZE_SUPPORTED_UPPER_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_BAR2_CAP
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR2_CAP__BAR_SIZE_SUPPORTED__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR2_CAP__BAR_SIZE_SUPPORTED_MASK 0xFFFFFFF0L
+//BIF_CFG_DEV0_EPF0_0_PCIE_BAR2_CNTL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR2_CNTL__BAR_INDEX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR2_CNTL__BAR_TOTAL_NUM__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR2_CNTL__BAR_SIZE__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR2_CNTL__BAR_SIZE_SUPPORTED_UPPER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR2_CNTL__BAR_INDEX_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR2_CNTL__BAR_TOTAL_NUM_MASK 0x000000E0L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR2_CNTL__BAR_SIZE_MASK 0x00003F00L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR2_CNTL__BAR_SIZE_SUPPORTED_UPPER_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_BAR3_CAP
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR3_CAP__BAR_SIZE_SUPPORTED__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR3_CAP__BAR_SIZE_SUPPORTED_MASK 0xFFFFFFF0L
+//BIF_CFG_DEV0_EPF0_0_PCIE_BAR3_CNTL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR3_CNTL__BAR_INDEX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR3_CNTL__BAR_TOTAL_NUM__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR3_CNTL__BAR_SIZE__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR3_CNTL__BAR_SIZE_SUPPORTED_UPPER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR3_CNTL__BAR_INDEX_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR3_CNTL__BAR_TOTAL_NUM_MASK 0x000000E0L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR3_CNTL__BAR_SIZE_MASK 0x00003F00L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR3_CNTL__BAR_SIZE_SUPPORTED_UPPER_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_BAR4_CAP
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR4_CAP__BAR_SIZE_SUPPORTED__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR4_CAP__BAR_SIZE_SUPPORTED_MASK 0xFFFFFFF0L
+//BIF_CFG_DEV0_EPF0_0_PCIE_BAR4_CNTL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR4_CNTL__BAR_INDEX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR4_CNTL__BAR_TOTAL_NUM__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR4_CNTL__BAR_SIZE__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR4_CNTL__BAR_SIZE_SUPPORTED_UPPER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR4_CNTL__BAR_INDEX_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR4_CNTL__BAR_TOTAL_NUM_MASK 0x000000E0L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR4_CNTL__BAR_SIZE_MASK 0x00003F00L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR4_CNTL__BAR_SIZE_SUPPORTED_UPPER_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_BAR5_CAP
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR5_CAP__BAR_SIZE_SUPPORTED__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR5_CAP__BAR_SIZE_SUPPORTED_MASK 0xFFFFFFF0L
+//BIF_CFG_DEV0_EPF0_0_PCIE_BAR5_CNTL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR5_CNTL__BAR_INDEX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR5_CNTL__BAR_TOTAL_NUM__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR5_CNTL__BAR_SIZE__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR5_CNTL__BAR_SIZE_SUPPORTED_UPPER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR5_CNTL__BAR_INDEX_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR5_CNTL__BAR_TOTAL_NUM_MASK 0x000000E0L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR5_CNTL__BAR_SIZE_MASK 0x00003F00L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR5_CNTL__BAR_SIZE_SUPPORTED_UPPER_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_BAR6_CAP
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR6_CAP__BAR_SIZE_SUPPORTED__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR6_CAP__BAR_SIZE_SUPPORTED_MASK 0xFFFFFFF0L
+//BIF_CFG_DEV0_EPF0_0_PCIE_BAR6_CNTL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR6_CNTL__BAR_INDEX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR6_CNTL__BAR_TOTAL_NUM__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR6_CNTL__BAR_SIZE__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR6_CNTL__BAR_SIZE_SUPPORTED_UPPER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR6_CNTL__BAR_INDEX_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR6_CNTL__BAR_TOTAL_NUM_MASK 0x000000E0L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR6_CNTL__BAR_SIZE_MASK 0x00003F00L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_BAR6_CNTL__BAR_SIZE_SUPPORTED_UPPER_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_PWR_BUDGET_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PWR_BUDGET_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PWR_BUDGET_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PWR_BUDGET_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PWR_BUDGET_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PWR_BUDGET_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PWR_BUDGET_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_PWR_BUDGET_DATA_SELECT
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PWR_BUDGET_DATA_SELECT__DATA_SELECT__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PWR_BUDGET_DATA_SELECT__DATA_SELECT_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_PWR_BUDGET_DATA
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PWR_BUDGET_DATA__BASE_POWER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PWR_BUDGET_DATA__DATA_SCALE__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PWR_BUDGET_DATA__PM_SUB_STATE__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PWR_BUDGET_DATA__PM_STATE__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PWR_BUDGET_DATA__TYPE__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PWR_BUDGET_DATA__POWER_RAIL__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PWR_BUDGET_DATA__BASE_POWER_MASK 0x000000FFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PWR_BUDGET_DATA__DATA_SCALE_MASK 0x00000300L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PWR_BUDGET_DATA__PM_SUB_STATE_MASK 0x00001C00L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PWR_BUDGET_DATA__PM_STATE_MASK 0x00006000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PWR_BUDGET_DATA__TYPE_MASK 0x00038000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PWR_BUDGET_DATA__POWER_RAIL_MASK 0x001C0000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_PWR_BUDGET_CAP
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PWR_BUDGET_CAP__SYSTEM_ALLOCATED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PWR_BUDGET_CAP__SYSTEM_ALLOCATED_MASK 0x01L
+//BIF_CFG_DEV0_EPF0_0_PCIE_DPA_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DPA_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DPA_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DPA_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DPA_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DPA_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DPA_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_DPA_CAP
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DPA_CAP__SUBSTATE_MAX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DPA_CAP__TRANS_LAT_UNIT__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DPA_CAP__PWR_ALLOC_SCALE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DPA_CAP__TRANS_LAT_VAL_0__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DPA_CAP__TRANS_LAT_VAL_1__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DPA_CAP__SUBSTATE_MAX_MASK 0x0000001FL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DPA_CAP__TRANS_LAT_UNIT_MASK 0x00000300L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DPA_CAP__PWR_ALLOC_SCALE_MASK 0x00003000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DPA_CAP__TRANS_LAT_VAL_0_MASK 0x00FF0000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DPA_CAP__TRANS_LAT_VAL_1_MASK 0xFF000000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_DPA_LATENCY_INDICATOR
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DPA_LATENCY_INDICATOR__TRANS_LAT_INDICATOR_BITS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DPA_LATENCY_INDICATOR__TRANS_LAT_INDICATOR_BITS_MASK 0x000000FFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_DPA_STATUS
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DPA_STATUS__SUBSTATE_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DPA_STATUS__SUBSTATE_CNTL_ENABLED__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DPA_STATUS__SUBSTATE_STATUS_MASK 0x001FL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DPA_STATUS__SUBSTATE_CNTL_ENABLED_MASK 0x0100L
+//BIF_CFG_DEV0_EPF0_0_PCIE_DPA_CNTL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DPA_CNTL__SUBSTATE_CNTL__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DPA_CNTL__SUBSTATE_CNTL_MASK 0x001FL
+//BIF_CFG_DEV0_EPF0_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_0__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_0__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_1__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_1__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_2
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_2__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_2__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_3
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_3__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_3__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_4__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_4__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_5
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_5__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_5__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_6
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_6__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_6__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_7
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_7__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_7__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_SECONDARY_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SECONDARY_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SECONDARY_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SECONDARY_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SECONDARY_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SECONDARY_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SECONDARY_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_LINK_CNTL3
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LINK_CNTL3__PERFORM_EQUALIZATION__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LINK_CNTL3__LINK_EQUALIZATION_REQ_INT_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LINK_CNTL3__ENABLE_LOWER_SKP_OS_GEN__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LINK_CNTL3__PERFORM_EQUALIZATION_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LINK_CNTL3__LINK_EQUALIZATION_REQ_INT_EN_MASK 0x00000002L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LINK_CNTL3__ENABLE_LOWER_SKP_OS_GEN_MASK 0x0000FE00L
+//BIF_CFG_DEV0_EPF0_0_PCIE_LANE_ERROR_STATUS
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_ERROR_STATUS__LANE_ERROR_STATUS_BITS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_ERROR_STATUS__LANE_ERROR_STATUS_BITS_MASK 0x0000FFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_LANE_0_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_0_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_0_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_0_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_0_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_0_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_0_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_0_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_0_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_LANE_1_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_1_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_1_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_1_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_1_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_1_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_1_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_1_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_1_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_LANE_2_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_2_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_2_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_2_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_2_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_2_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_2_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_2_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_2_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_LANE_3_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_3_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_3_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_3_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_3_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_3_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_3_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_3_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_3_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_LANE_4_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_4_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_4_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_4_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_4_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_4_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_4_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_4_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_4_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_LANE_5_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_5_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_5_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_5_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_5_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_5_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_5_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_5_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_5_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_LANE_6_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_6_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_6_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_6_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_6_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_6_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_6_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_6_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_6_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_LANE_7_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_7_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_7_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_7_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_7_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_7_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_7_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_7_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_7_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_LANE_8_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_8_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_8_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_8_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_8_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_8_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_8_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_8_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_8_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_LANE_9_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_9_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_9_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_9_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_9_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_9_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_9_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_9_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_9_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_LANE_10_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_10_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_10_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_10_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_10_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_10_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_10_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_10_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_10_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_LANE_11_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_11_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_11_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_11_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_11_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_11_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_11_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_11_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_11_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_LANE_12_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_12_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_12_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_12_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_12_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_12_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_12_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_12_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_12_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_LANE_13_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_13_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_13_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_13_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_13_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_13_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_13_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_13_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_13_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_LANE_14_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_14_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_14_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_14_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_14_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_14_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_14_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_14_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_14_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_LANE_15_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_15_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_15_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_15_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_15_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_15_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_15_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_15_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LANE_15_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_ACS_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ACS_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ACS_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ACS_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ACS_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ACS_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ACS_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_ACS_CAP
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ACS_CAP__SOURCE_VALIDATION__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ACS_CAP__TRANSLATION_BLOCKING__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ACS_CAP__P2P_REQUEST_REDIRECT__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ACS_CAP__P2P_COMPLETION_REDIRECT__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ACS_CAP__UPSTREAM_FORWARDING__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ACS_CAP__P2P_EGRESS_CONTROL__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ACS_CAP__DIRECT_TRANSLATED_P2P__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ACS_CAP__ENHANCED_CAPABILITY__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ACS_CAP__EGRESS_CONTROL_VECTOR_SIZE__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ACS_CAP__SOURCE_VALIDATION_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ACS_CAP__TRANSLATION_BLOCKING_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ACS_CAP__P2P_REQUEST_REDIRECT_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ACS_CAP__P2P_COMPLETION_REDIRECT_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ACS_CAP__UPSTREAM_FORWARDING_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ACS_CAP__P2P_EGRESS_CONTROL_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ACS_CAP__DIRECT_TRANSLATED_P2P_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ACS_CAP__ENHANCED_CAPABILITY_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ACS_CAP__EGRESS_CONTROL_VECTOR_SIZE_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_0_PCIE_ACS_CNTL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ACS_CNTL__SOURCE_VALIDATION_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ACS_CNTL__TRANSLATION_BLOCKING_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ACS_CNTL__P2P_REQUEST_REDIRECT_EN__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ACS_CNTL__P2P_COMPLETION_REDIRECT_EN__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ACS_CNTL__UPSTREAM_FORWARDING_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ACS_CNTL__P2P_EGRESS_CONTROL_EN__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ACS_CNTL__DIRECT_TRANSLATED_P2P_EN__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ACS_CNTL__IO_REQUEST_BLOCKING_EN__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ACS_CNTL__DSP_MEMORY_TARGET_ACCESS_CNTL__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ACS_CNTL__USP_MEMORY_TARGET_ACCESS_CNTL__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ACS_CNTL__UNCLAIMED_REQUEST_REDIRECT_CNTL__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ACS_CNTL__SOURCE_VALIDATION_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ACS_CNTL__TRANSLATION_BLOCKING_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ACS_CNTL__P2P_REQUEST_REDIRECT_EN_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ACS_CNTL__P2P_COMPLETION_REDIRECT_EN_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ACS_CNTL__UPSTREAM_FORWARDING_EN_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ACS_CNTL__P2P_EGRESS_CONTROL_EN_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ACS_CNTL__DIRECT_TRANSLATED_P2P_EN_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ACS_CNTL__IO_REQUEST_BLOCKING_EN_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ACS_CNTL__DSP_MEMORY_TARGET_ACCESS_CNTL_MASK 0x0300L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ACS_CNTL__USP_MEMORY_TARGET_ACCESS_CNTL_MASK 0x0C00L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ACS_CNTL__UNCLAIMED_REQUEST_REDIRECT_CNTL_MASK 0x1000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_ATS_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ATS_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ATS_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ATS_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ATS_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ATS_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ATS_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_ATS_CAP
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ATS_CAP__INVALIDATE_Q_DEPTH__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ATS_CAP__PAGE_ALIGNED_REQUEST__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ATS_CAP__GLOBAL_INVALIDATE_SUPPORTED__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ATS_CAP__RELAXED_ORDERING_SUPPORTED__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ATS_CAP__INVALIDATE_Q_DEPTH_MASK 0x001FL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ATS_CAP__PAGE_ALIGNED_REQUEST_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ATS_CAP__GLOBAL_INVALIDATE_SUPPORTED_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ATS_CAP__RELAXED_ORDERING_SUPPORTED_MASK 0x0080L
+//BIF_CFG_DEV0_EPF0_0_PCIE_ATS_CNTL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ATS_CNTL__STU__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ATS_CNTL__ATC_ENABLE__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ATS_CNTL__STU_MASK 0x001FL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ATS_CNTL__ATC_ENABLE_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_PAGE_REQ_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PAGE_REQ_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PAGE_REQ_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PAGE_REQ_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PAGE_REQ_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PAGE_REQ_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PAGE_REQ_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_PAGE_REQ_CNTL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PAGE_REQ_CNTL__PRI_ENABLE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PAGE_REQ_CNTL__PRI_RESET__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PAGE_REQ_CNTL__PRI_ENABLE_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PAGE_REQ_CNTL__PRI_RESET_MASK 0x0002L
+//BIF_CFG_DEV0_EPF0_0_PCIE_PAGE_REQ_STATUS
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PAGE_REQ_STATUS__RESPONSE_FAILURE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PAGE_REQ_STATUS__UNEXPECTED_PAGE_REQ_GRP_INDEX__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PAGE_REQ_STATUS__STOPPED__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PAGE_REQ_STATUS__PRG_RESPONSE_PASID_REQUIRED__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PAGE_REQ_STATUS__RESPONSE_FAILURE_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PAGE_REQ_STATUS__UNEXPECTED_PAGE_REQ_GRP_INDEX_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PAGE_REQ_STATUS__STOPPED_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PAGE_REQ_STATUS__PRG_RESPONSE_PASID_REQUIRED_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_OUTSTAND_PAGE_REQ_CAPACITY
+#define BIF_CFG_DEV0_EPF0_0_PCIE_OUTSTAND_PAGE_REQ_CAPACITY__OUTSTAND_PAGE_REQ_CAPACITY__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_OUTSTAND_PAGE_REQ_CAPACITY__OUTSTAND_PAGE_REQ_CAPACITY_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_OUTSTAND_PAGE_REQ_ALLOC
+#define BIF_CFG_DEV0_EPF0_0_PCIE_OUTSTAND_PAGE_REQ_ALLOC__OUTSTAND_PAGE_REQ_ALLOC__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_OUTSTAND_PAGE_REQ_ALLOC__OUTSTAND_PAGE_REQ_ALLOC_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_PASID_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PASID_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PASID_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PASID_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PASID_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PASID_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PASID_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_PASID_CAP
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PASID_CAP__PASID_EXE_PERMISSION_SUPPORTED__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PASID_CAP__PASID_PRIV_MODE_SUPPORTED__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PASID_CAP__MAX_PASID_WIDTH__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PASID_CAP__PASID_EXE_PERMISSION_SUPPORTED_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PASID_CAP__PASID_PRIV_MODE_SUPPORTED_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PASID_CAP__MAX_PASID_WIDTH_MASK 0x1F00L
+//BIF_CFG_DEV0_EPF0_0_PCIE_PASID_CNTL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PASID_CNTL__PASID_ENABLE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PASID_CNTL__PASID_EXE_PERMISSION_ENABLE__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PASID_CNTL__PASID_PRIV_MODE_SUPPORTED_ENABLE__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PASID_CNTL__PASID_ENABLE_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PASID_CNTL__PASID_EXE_PERMISSION_ENABLE_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PASID_CNTL__PASID_PRIV_MODE_SUPPORTED_ENABLE_MASK 0x0004L
+//BIF_CFG_DEV0_EPF0_0_PCIE_MC_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_0_PCIE_MC_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_MC_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_MC_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_0_PCIE_MC_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_MC_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_MC_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_MC_CAP
+#define BIF_CFG_DEV0_EPF0_0_PCIE_MC_CAP__MC_MAX_GROUP__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_MC_CAP__MC_WIN_SIZE_REQ__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_MC_CAP__MC_ECRC_REGEN_SUPP__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_0_PCIE_MC_CAP__MC_MAX_GROUP_MASK 0x003FL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_MC_CAP__MC_WIN_SIZE_REQ_MASK 0x3F00L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_MC_CAP__MC_ECRC_REGEN_SUPP_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_MC_CNTL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_MC_CNTL__MC_NUM_GROUP__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_MC_CNTL__MC_ENABLE__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_0_PCIE_MC_CNTL__MC_NUM_GROUP_MASK 0x003FL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_MC_CNTL__MC_ENABLE_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_MC_ADDR0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_MC_ADDR0__MC_INDEX_POS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_MC_ADDR0__MC_BASE_ADDR_0__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_0_PCIE_MC_ADDR0__MC_INDEX_POS_MASK 0x0000003FL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_MC_ADDR0__MC_BASE_ADDR_0_MASK 0xFFFFF000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_MC_ADDR1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_MC_ADDR1__MC_BASE_ADDR_1__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_MC_ADDR1__MC_BASE_ADDR_1_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_MC_RCV0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_MC_RCV0__MC_RECEIVE_0__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_MC_RCV0__MC_RECEIVE_0_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_MC_RCV1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_MC_RCV1__MC_RECEIVE_1__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_MC_RCV1__MC_RECEIVE_1_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_MC_BLOCK_ALL0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_MC_BLOCK_ALL0__MC_BLOCK_ALL_0__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_MC_BLOCK_ALL0__MC_BLOCK_ALL_0_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_MC_BLOCK_ALL1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_MC_BLOCK_ALL1__MC_BLOCK_ALL_1__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_MC_BLOCK_ALL1__MC_BLOCK_ALL_1_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_MC_BLOCK_UNTRANSLATED_0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_MC_BLOCK_UNTRANSLATED_0__MC_BLOCK_UNTRANSLATED_0__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_MC_BLOCK_UNTRANSLATED_0__MC_BLOCK_UNTRANSLATED_0_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_MC_BLOCK_UNTRANSLATED_1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_MC_BLOCK_UNTRANSLATED_1__MC_BLOCK_UNTRANSLATED_1__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_MC_BLOCK_UNTRANSLATED_1__MC_BLOCK_UNTRANSLATED_1_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_LTR_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LTR_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LTR_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LTR_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LTR_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LTR_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LTR_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_LTR_CAP
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LTR_CAP__LTR_MAX_S_LATENCY_VALUE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LTR_CAP__LTR_MAX_S_LATENCY_SCALE__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LTR_CAP__LTR_MAX_NS_LATENCY_VALUE__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LTR_CAP__LTR_MAX_NS_LATENCY_SCALE__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LTR_CAP__LTR_MAX_S_LATENCY_VALUE_MASK 0x000003FFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LTR_CAP__LTR_MAX_S_LATENCY_SCALE_MASK 0x00001C00L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LTR_CAP__LTR_MAX_NS_LATENCY_VALUE_MASK 0x03FF0000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_LTR_CAP__LTR_MAX_NS_LATENCY_SCALE_MASK 0x1C000000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_ARI_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ARI_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ARI_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ARI_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ARI_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ARI_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ARI_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_ARI_CAP
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ARI_CAP__ARI_MFVC_FUNC_GROUPS_CAP__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ARI_CAP__ARI_ACS_FUNC_GROUPS_CAP__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ARI_CAP__ARI_NEXT_FUNC_NUM__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ARI_CAP__ARI_MFVC_FUNC_GROUPS_CAP_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ARI_CAP__ARI_ACS_FUNC_GROUPS_CAP_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ARI_CAP__ARI_NEXT_FUNC_NUM_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_0_PCIE_ARI_CNTL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ARI_CNTL__ARI_MFVC_FUNC_GROUPS_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ARI_CNTL__ARI_ACS_FUNC_GROUPS_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ARI_CNTL__ARI_FUNCTION_GROUP__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ARI_CNTL__ARI_MFVC_FUNC_GROUPS_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ARI_CNTL__ARI_ACS_FUNC_GROUPS_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_ARI_CNTL__ARI_FUNCTION_GROUP_MASK 0x0070L
+//BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_CAP
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_CAP__SRIOV_VF_MIGRATION_CAP__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_CAP__SRIOV_ARI_CAP_HIERARCHY_PRESERVED__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_CAP__SRIOV_VF_TEN_BIT_TAG_REQUESTER_SUPPORTED__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_CAP__SRIOV_VF_MIGRATION_INTR_MSG_NUM__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_CAP__SRIOV_VF_MIGRATION_CAP_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_CAP__SRIOV_ARI_CAP_HIERARCHY_PRESERVED_MASK 0x00000002L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_CAP__SRIOV_VF_TEN_BIT_TAG_REQUESTER_SUPPORTED_MASK 0x00000004L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_CAP__SRIOV_VF_MIGRATION_INTR_MSG_NUM_MASK 0xFFE00000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_CONTROL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_CONTROL__SRIOV_VF_ENABLE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_CONTROL__SRIOV_VF_MIGRATION_ENABLE__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_CONTROL__SRIOV_VF_MIGRATION_INTR_ENABLE__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_CONTROL__SRIOV_VF_MSE__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_CONTROL__SRIOV_ARI_CAP_HIERARCHY__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_CONTROL__SRIOV_VF_TEN_BIT_TAG_REQUESTER_ENABLE__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_CONTROL__SRIOV_VF_ENABLE_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_CONTROL__SRIOV_VF_MIGRATION_ENABLE_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_CONTROL__SRIOV_VF_MIGRATION_INTR_ENABLE_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_CONTROL__SRIOV_VF_MSE_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_CONTROL__SRIOV_ARI_CAP_HIERARCHY_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_CONTROL__SRIOV_VF_TEN_BIT_TAG_REQUESTER_ENABLE_MASK 0x0020L
+//BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_STATUS
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_STATUS__SRIOV_VF_MIGRATION_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_STATUS__SRIOV_VF_MIGRATION_STATUS_MASK 0x0001L
+//BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_INITIAL_VFS
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_INITIAL_VFS__SRIOV_INITIAL_VFS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_INITIAL_VFS__SRIOV_INITIAL_VFS_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_TOTAL_VFS
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_TOTAL_VFS__SRIOV_TOTAL_VFS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_TOTAL_VFS__SRIOV_TOTAL_VFS_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_NUM_VFS
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_NUM_VFS__SRIOV_NUM_VFS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_NUM_VFS__SRIOV_NUM_VFS_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_FUNC_DEP_LINK
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_FUNC_DEP_LINK__SRIOV_FUNC_DEP_LINK__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_FUNC_DEP_LINK__SRIOV_FUNC_DEP_LINK_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_FIRST_VF_OFFSET
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_FIRST_VF_OFFSET__SRIOV_FIRST_VF_OFFSET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_FIRST_VF_OFFSET__SRIOV_FIRST_VF_OFFSET_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_STRIDE
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_STRIDE__SRIOV_VF_STRIDE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_STRIDE__SRIOV_VF_STRIDE_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_DEVICE_ID
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_DEVICE_ID__SRIOV_VF_DEVICE_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_DEVICE_ID__SRIOV_VF_DEVICE_ID_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_SUPPORTED_PAGE_SIZE
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_SUPPORTED_PAGE_SIZE__SRIOV_SUPPORTED_PAGE_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_SUPPORTED_PAGE_SIZE__SRIOV_SUPPORTED_PAGE_SIZE_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_SYSTEM_PAGE_SIZE
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_SYSTEM_PAGE_SIZE__SRIOV_SYSTEM_PAGE_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_SYSTEM_PAGE_SIZE__SRIOV_SYSTEM_PAGE_SIZE_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_BASE_ADDR_0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_BASE_ADDR_0__VF_BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_BASE_ADDR_0__VF_BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_BASE_ADDR_1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_BASE_ADDR_1__VF_BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_BASE_ADDR_1__VF_BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_BASE_ADDR_2
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_BASE_ADDR_2__VF_BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_BASE_ADDR_2__VF_BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_BASE_ADDR_3
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_BASE_ADDR_3__VF_BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_BASE_ADDR_3__VF_BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_BASE_ADDR_4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_BASE_ADDR_4__VF_BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_BASE_ADDR_4__VF_BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_BASE_ADDR_5
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_BASE_ADDR_5__VF_BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_BASE_ADDR_5__VF_BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_MIGRATION_STATE_ARRAY_OFFSET
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_MIGRATION_STATE_ARRAY_OFFSET__SRIOV_VF_MIGRATION_STATE_BIR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_MIGRATION_STATE_ARRAY_OFFSET__SRIOV_VF_MIGRATION_STATE_ARRAY_OFFSET__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_MIGRATION_STATE_ARRAY_OFFSET__SRIOV_VF_MIGRATION_STATE_BIR_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_SRIOV_VF_MIGRATION_STATE_ARRAY_OFFSET__SRIOV_VF_MIGRATION_STATE_ARRAY_OFFSET_MASK 0xFFFFFFF8L
+//BIF_CFG_DEV0_EPF0_0_PCIE_DLF_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DLF_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DLF_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DLF_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DLF_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DLF_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_DLF_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_0_DATA_LINK_FEATURE_CAP
+#define BIF_CFG_DEV0_EPF0_0_DATA_LINK_FEATURE_CAP__LOCAL_DLF_SUPPORTED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_DATA_LINK_FEATURE_CAP__DLF_EXCHANGE_ENABLE__SHIFT 0x1f
+#define BIF_CFG_DEV0_EPF0_0_DATA_LINK_FEATURE_CAP__LOCAL_DLF_SUPPORTED_MASK 0x007FFFFFL
+#define BIF_CFG_DEV0_EPF0_0_DATA_LINK_FEATURE_CAP__DLF_EXCHANGE_ENABLE_MASK 0x80000000L
+//BIF_CFG_DEV0_EPF0_0_DATA_LINK_FEATURE_STATUS
+#define BIF_CFG_DEV0_EPF0_0_DATA_LINK_FEATURE_STATUS__REMOTE_DLF_SUPPORTED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_DATA_LINK_FEATURE_STATUS__REMOTE_DLF_SUPPORTED_VALID__SHIFT 0x1f
+#define BIF_CFG_DEV0_EPF0_0_DATA_LINK_FEATURE_STATUS__REMOTE_DLF_SUPPORTED_MASK 0x007FFFFFL
+#define BIF_CFG_DEV0_EPF0_0_DATA_LINK_FEATURE_STATUS__REMOTE_DLF_SUPPORTED_VALID_MASK 0x80000000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_PHY_16GT_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PHY_16GT_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PHY_16GT_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PHY_16GT_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PHY_16GT_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PHY_16GT_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_PHY_16GT_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_0_LINK_CAP_16GT
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP_16GT__RESERVED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP_16GT__RESERVED_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_LINK_CNTL_16GT
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL_16GT__RESERVED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL_16GT__RESERVED_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_LINK_STATUS_16GT
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS_16GT__EQUALIZATION_COMPLETE_16GT__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS_16GT__EQUALIZATION_PHASE1_SUCCESS_16GT__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS_16GT__EQUALIZATION_PHASE2_SUCCESS_16GT__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS_16GT__EQUALIZATION_PHASE3_SUCCESS_16GT__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS_16GT__LINK_EQUALIZATION_REQUEST_16GT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS_16GT__EQUALIZATION_COMPLETE_16GT_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS_16GT__EQUALIZATION_PHASE1_SUCCESS_16GT_MASK 0x00000002L
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS_16GT__EQUALIZATION_PHASE2_SUCCESS_16GT_MASK 0x00000004L
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS_16GT__EQUALIZATION_PHASE3_SUCCESS_16GT_MASK 0x00000008L
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS_16GT__LINK_EQUALIZATION_REQUEST_16GT_MASK 0x00000010L
+//BIF_CFG_DEV0_EPF0_0_LOCAL_PARITY_MISMATCH_STATUS_16GT
+#define BIF_CFG_DEV0_EPF0_0_LOCAL_PARITY_MISMATCH_STATUS_16GT__LOCAL_PARITY_MISMATCH_STATUS_BITS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LOCAL_PARITY_MISMATCH_STATUS_16GT__LOCAL_PARITY_MISMATCH_STATUS_BITS_MASK 0x0000FFFFL
+//BIF_CFG_DEV0_EPF0_0_RTM1_PARITY_MISMATCH_STATUS_16GT
+#define BIF_CFG_DEV0_EPF0_0_RTM1_PARITY_MISMATCH_STATUS_16GT__RTM1_PARITY_MISMATCH_STATUS_BITS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_RTM1_PARITY_MISMATCH_STATUS_16GT__RTM1_PARITY_MISMATCH_STATUS_BITS_MASK 0x0000FFFFL
+//BIF_CFG_DEV0_EPF0_0_RTM2_PARITY_MISMATCH_STATUS_16GT
+#define BIF_CFG_DEV0_EPF0_0_RTM2_PARITY_MISMATCH_STATUS_16GT__RTM2_PARITY_MISMATCH_STATUS_BITS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_RTM2_PARITY_MISMATCH_STATUS_16GT__RTM2_PARITY_MISMATCH_STATUS_BITS_MASK 0x0000FFFFL
+//BIF_CFG_DEV0_EPF0_0_LANE_0_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_EPF0_0_LANE_0_EQUALIZATION_CNTL_16GT__LANE_0_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_0_EQUALIZATION_CNTL_16GT__LANE_0_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_LANE_0_EQUALIZATION_CNTL_16GT__LANE_0_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_0_LANE_0_EQUALIZATION_CNTL_16GT__LANE_0_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_EPF0_0_LANE_1_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_EPF0_0_LANE_1_EQUALIZATION_CNTL_16GT__LANE_1_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_1_EQUALIZATION_CNTL_16GT__LANE_1_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_LANE_1_EQUALIZATION_CNTL_16GT__LANE_1_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_0_LANE_1_EQUALIZATION_CNTL_16GT__LANE_1_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_EPF0_0_LANE_2_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_EPF0_0_LANE_2_EQUALIZATION_CNTL_16GT__LANE_2_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_2_EQUALIZATION_CNTL_16GT__LANE_2_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_LANE_2_EQUALIZATION_CNTL_16GT__LANE_2_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_0_LANE_2_EQUALIZATION_CNTL_16GT__LANE_2_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_EPF0_0_LANE_3_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_EPF0_0_LANE_3_EQUALIZATION_CNTL_16GT__LANE_3_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_3_EQUALIZATION_CNTL_16GT__LANE_3_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_LANE_3_EQUALIZATION_CNTL_16GT__LANE_3_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_0_LANE_3_EQUALIZATION_CNTL_16GT__LANE_3_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_EPF0_0_LANE_4_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_EPF0_0_LANE_4_EQUALIZATION_CNTL_16GT__LANE_4_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_4_EQUALIZATION_CNTL_16GT__LANE_4_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_LANE_4_EQUALIZATION_CNTL_16GT__LANE_4_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_0_LANE_4_EQUALIZATION_CNTL_16GT__LANE_4_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_EPF0_0_LANE_5_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_EPF0_0_LANE_5_EQUALIZATION_CNTL_16GT__LANE_5_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_5_EQUALIZATION_CNTL_16GT__LANE_5_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_LANE_5_EQUALIZATION_CNTL_16GT__LANE_5_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_0_LANE_5_EQUALIZATION_CNTL_16GT__LANE_5_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_EPF0_0_LANE_6_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_EPF0_0_LANE_6_EQUALIZATION_CNTL_16GT__LANE_6_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_6_EQUALIZATION_CNTL_16GT__LANE_6_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_LANE_6_EQUALIZATION_CNTL_16GT__LANE_6_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_0_LANE_6_EQUALIZATION_CNTL_16GT__LANE_6_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_EPF0_0_LANE_7_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_EPF0_0_LANE_7_EQUALIZATION_CNTL_16GT__LANE_7_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_7_EQUALIZATION_CNTL_16GT__LANE_7_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_LANE_7_EQUALIZATION_CNTL_16GT__LANE_7_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_0_LANE_7_EQUALIZATION_CNTL_16GT__LANE_7_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_EPF0_0_LANE_8_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_EPF0_0_LANE_8_EQUALIZATION_CNTL_16GT__LANE_8_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_8_EQUALIZATION_CNTL_16GT__LANE_8_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_LANE_8_EQUALIZATION_CNTL_16GT__LANE_8_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_0_LANE_8_EQUALIZATION_CNTL_16GT__LANE_8_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_EPF0_0_LANE_9_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_EPF0_0_LANE_9_EQUALIZATION_CNTL_16GT__LANE_9_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_9_EQUALIZATION_CNTL_16GT__LANE_9_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_LANE_9_EQUALIZATION_CNTL_16GT__LANE_9_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_0_LANE_9_EQUALIZATION_CNTL_16GT__LANE_9_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_EPF0_0_LANE_10_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_EPF0_0_LANE_10_EQUALIZATION_CNTL_16GT__LANE_10_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_10_EQUALIZATION_CNTL_16GT__LANE_10_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_LANE_10_EQUALIZATION_CNTL_16GT__LANE_10_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_0_LANE_10_EQUALIZATION_CNTL_16GT__LANE_10_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_EPF0_0_LANE_11_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_EPF0_0_LANE_11_EQUALIZATION_CNTL_16GT__LANE_11_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_11_EQUALIZATION_CNTL_16GT__LANE_11_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_LANE_11_EQUALIZATION_CNTL_16GT__LANE_11_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_0_LANE_11_EQUALIZATION_CNTL_16GT__LANE_11_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_EPF0_0_LANE_12_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_EPF0_0_LANE_12_EQUALIZATION_CNTL_16GT__LANE_12_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_12_EQUALIZATION_CNTL_16GT__LANE_12_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_LANE_12_EQUALIZATION_CNTL_16GT__LANE_12_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_0_LANE_12_EQUALIZATION_CNTL_16GT__LANE_12_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_EPF0_0_LANE_13_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_EPF0_0_LANE_13_EQUALIZATION_CNTL_16GT__LANE_13_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_13_EQUALIZATION_CNTL_16GT__LANE_13_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_LANE_13_EQUALIZATION_CNTL_16GT__LANE_13_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_0_LANE_13_EQUALIZATION_CNTL_16GT__LANE_13_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_EPF0_0_LANE_14_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_EPF0_0_LANE_14_EQUALIZATION_CNTL_16GT__LANE_14_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_14_EQUALIZATION_CNTL_16GT__LANE_14_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_LANE_14_EQUALIZATION_CNTL_16GT__LANE_14_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_0_LANE_14_EQUALIZATION_CNTL_16GT__LANE_14_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_EPF0_0_LANE_15_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_EPF0_0_LANE_15_EQUALIZATION_CNTL_16GT__LANE_15_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_15_EQUALIZATION_CNTL_16GT__LANE_15_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_LANE_15_EQUALIZATION_CNTL_16GT__LANE_15_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_0_LANE_15_EQUALIZATION_CNTL_16GT__LANE_15_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_EPF0_0_PCIE_MARGINING_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_0_PCIE_MARGINING_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_MARGINING_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_MARGINING_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_0_PCIE_MARGINING_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_MARGINING_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_MARGINING_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_0_MARGINING_PORT_CAP
+#define BIF_CFG_DEV0_EPF0_0_MARGINING_PORT_CAP__MARGINING_USES_SOFTWARE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_MARGINING_PORT_CAP__MARGINING_USES_SOFTWARE_MASK 0x0001L
+//BIF_CFG_DEV0_EPF0_0_MARGINING_PORT_STATUS
+#define BIF_CFG_DEV0_EPF0_0_MARGINING_PORT_STATUS__MARGINING_READY__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_MARGINING_PORT_STATUS__MARGINING_SOFTWARE_READY__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_0_MARGINING_PORT_STATUS__MARGINING_READY_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_0_MARGINING_PORT_STATUS__MARGINING_SOFTWARE_READY_MASK 0x0002L
+//BIF_CFG_DEV0_EPF0_0_LANE_0_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_EPF0_0_LANE_0_MARGINING_LANE_CNTL__LANE_0_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_0_MARGINING_LANE_CNTL__LANE_0_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_LANE_0_MARGINING_LANE_CNTL__LANE_0_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_LANE_0_MARGINING_LANE_CNTL__LANE_0_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_LANE_0_MARGINING_LANE_CNTL__LANE_0_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_0_LANE_0_MARGINING_LANE_CNTL__LANE_0_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_0_LANE_0_MARGINING_LANE_CNTL__LANE_0_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_0_LANE_0_MARGINING_LANE_CNTL__LANE_0_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_0_LANE_0_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_EPF0_0_LANE_0_MARGINING_LANE_STATUS__LANE_0_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_0_MARGINING_LANE_STATUS__LANE_0_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_LANE_0_MARGINING_LANE_STATUS__LANE_0_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_LANE_0_MARGINING_LANE_STATUS__LANE_0_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_LANE_0_MARGINING_LANE_STATUS__LANE_0_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_0_LANE_0_MARGINING_LANE_STATUS__LANE_0_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_0_LANE_0_MARGINING_LANE_STATUS__LANE_0_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_0_LANE_0_MARGINING_LANE_STATUS__LANE_0_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_0_LANE_1_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_EPF0_0_LANE_1_MARGINING_LANE_CNTL__LANE_1_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_1_MARGINING_LANE_CNTL__LANE_1_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_LANE_1_MARGINING_LANE_CNTL__LANE_1_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_LANE_1_MARGINING_LANE_CNTL__LANE_1_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_LANE_1_MARGINING_LANE_CNTL__LANE_1_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_0_LANE_1_MARGINING_LANE_CNTL__LANE_1_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_0_LANE_1_MARGINING_LANE_CNTL__LANE_1_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_0_LANE_1_MARGINING_LANE_CNTL__LANE_1_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_0_LANE_1_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_EPF0_0_LANE_1_MARGINING_LANE_STATUS__LANE_1_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_1_MARGINING_LANE_STATUS__LANE_1_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_LANE_1_MARGINING_LANE_STATUS__LANE_1_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_LANE_1_MARGINING_LANE_STATUS__LANE_1_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_LANE_1_MARGINING_LANE_STATUS__LANE_1_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_0_LANE_1_MARGINING_LANE_STATUS__LANE_1_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_0_LANE_1_MARGINING_LANE_STATUS__LANE_1_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_0_LANE_1_MARGINING_LANE_STATUS__LANE_1_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_0_LANE_2_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_EPF0_0_LANE_2_MARGINING_LANE_CNTL__LANE_2_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_2_MARGINING_LANE_CNTL__LANE_2_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_LANE_2_MARGINING_LANE_CNTL__LANE_2_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_LANE_2_MARGINING_LANE_CNTL__LANE_2_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_LANE_2_MARGINING_LANE_CNTL__LANE_2_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_0_LANE_2_MARGINING_LANE_CNTL__LANE_2_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_0_LANE_2_MARGINING_LANE_CNTL__LANE_2_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_0_LANE_2_MARGINING_LANE_CNTL__LANE_2_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_0_LANE_2_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_EPF0_0_LANE_2_MARGINING_LANE_STATUS__LANE_2_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_2_MARGINING_LANE_STATUS__LANE_2_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_LANE_2_MARGINING_LANE_STATUS__LANE_2_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_LANE_2_MARGINING_LANE_STATUS__LANE_2_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_LANE_2_MARGINING_LANE_STATUS__LANE_2_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_0_LANE_2_MARGINING_LANE_STATUS__LANE_2_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_0_LANE_2_MARGINING_LANE_STATUS__LANE_2_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_0_LANE_2_MARGINING_LANE_STATUS__LANE_2_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_0_LANE_3_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_EPF0_0_LANE_3_MARGINING_LANE_CNTL__LANE_3_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_3_MARGINING_LANE_CNTL__LANE_3_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_LANE_3_MARGINING_LANE_CNTL__LANE_3_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_LANE_3_MARGINING_LANE_CNTL__LANE_3_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_LANE_3_MARGINING_LANE_CNTL__LANE_3_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_0_LANE_3_MARGINING_LANE_CNTL__LANE_3_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_0_LANE_3_MARGINING_LANE_CNTL__LANE_3_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_0_LANE_3_MARGINING_LANE_CNTL__LANE_3_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_0_LANE_3_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_EPF0_0_LANE_3_MARGINING_LANE_STATUS__LANE_3_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_3_MARGINING_LANE_STATUS__LANE_3_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_LANE_3_MARGINING_LANE_STATUS__LANE_3_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_LANE_3_MARGINING_LANE_STATUS__LANE_3_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_LANE_3_MARGINING_LANE_STATUS__LANE_3_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_0_LANE_3_MARGINING_LANE_STATUS__LANE_3_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_0_LANE_3_MARGINING_LANE_STATUS__LANE_3_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_0_LANE_3_MARGINING_LANE_STATUS__LANE_3_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_0_LANE_4_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_EPF0_0_LANE_4_MARGINING_LANE_CNTL__LANE_4_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_4_MARGINING_LANE_CNTL__LANE_4_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_LANE_4_MARGINING_LANE_CNTL__LANE_4_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_LANE_4_MARGINING_LANE_CNTL__LANE_4_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_LANE_4_MARGINING_LANE_CNTL__LANE_4_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_0_LANE_4_MARGINING_LANE_CNTL__LANE_4_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_0_LANE_4_MARGINING_LANE_CNTL__LANE_4_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_0_LANE_4_MARGINING_LANE_CNTL__LANE_4_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_0_LANE_4_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_EPF0_0_LANE_4_MARGINING_LANE_STATUS__LANE_4_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_4_MARGINING_LANE_STATUS__LANE_4_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_LANE_4_MARGINING_LANE_STATUS__LANE_4_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_LANE_4_MARGINING_LANE_STATUS__LANE_4_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_LANE_4_MARGINING_LANE_STATUS__LANE_4_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_0_LANE_4_MARGINING_LANE_STATUS__LANE_4_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_0_LANE_4_MARGINING_LANE_STATUS__LANE_4_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_0_LANE_4_MARGINING_LANE_STATUS__LANE_4_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_0_LANE_5_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_EPF0_0_LANE_5_MARGINING_LANE_CNTL__LANE_5_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_5_MARGINING_LANE_CNTL__LANE_5_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_LANE_5_MARGINING_LANE_CNTL__LANE_5_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_LANE_5_MARGINING_LANE_CNTL__LANE_5_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_LANE_5_MARGINING_LANE_CNTL__LANE_5_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_0_LANE_5_MARGINING_LANE_CNTL__LANE_5_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_0_LANE_5_MARGINING_LANE_CNTL__LANE_5_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_0_LANE_5_MARGINING_LANE_CNTL__LANE_5_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_0_LANE_5_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_EPF0_0_LANE_5_MARGINING_LANE_STATUS__LANE_5_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_5_MARGINING_LANE_STATUS__LANE_5_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_LANE_5_MARGINING_LANE_STATUS__LANE_5_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_LANE_5_MARGINING_LANE_STATUS__LANE_5_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_LANE_5_MARGINING_LANE_STATUS__LANE_5_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_0_LANE_5_MARGINING_LANE_STATUS__LANE_5_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_0_LANE_5_MARGINING_LANE_STATUS__LANE_5_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_0_LANE_5_MARGINING_LANE_STATUS__LANE_5_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_0_LANE_6_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_EPF0_0_LANE_6_MARGINING_LANE_CNTL__LANE_6_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_6_MARGINING_LANE_CNTL__LANE_6_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_LANE_6_MARGINING_LANE_CNTL__LANE_6_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_LANE_6_MARGINING_LANE_CNTL__LANE_6_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_LANE_6_MARGINING_LANE_CNTL__LANE_6_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_0_LANE_6_MARGINING_LANE_CNTL__LANE_6_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_0_LANE_6_MARGINING_LANE_CNTL__LANE_6_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_0_LANE_6_MARGINING_LANE_CNTL__LANE_6_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_0_LANE_6_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_EPF0_0_LANE_6_MARGINING_LANE_STATUS__LANE_6_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_6_MARGINING_LANE_STATUS__LANE_6_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_LANE_6_MARGINING_LANE_STATUS__LANE_6_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_LANE_6_MARGINING_LANE_STATUS__LANE_6_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_LANE_6_MARGINING_LANE_STATUS__LANE_6_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_0_LANE_6_MARGINING_LANE_STATUS__LANE_6_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_0_LANE_6_MARGINING_LANE_STATUS__LANE_6_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_0_LANE_6_MARGINING_LANE_STATUS__LANE_6_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_0_LANE_7_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_EPF0_0_LANE_7_MARGINING_LANE_CNTL__LANE_7_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_7_MARGINING_LANE_CNTL__LANE_7_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_LANE_7_MARGINING_LANE_CNTL__LANE_7_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_LANE_7_MARGINING_LANE_CNTL__LANE_7_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_LANE_7_MARGINING_LANE_CNTL__LANE_7_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_0_LANE_7_MARGINING_LANE_CNTL__LANE_7_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_0_LANE_7_MARGINING_LANE_CNTL__LANE_7_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_0_LANE_7_MARGINING_LANE_CNTL__LANE_7_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_0_LANE_7_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_EPF0_0_LANE_7_MARGINING_LANE_STATUS__LANE_7_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_7_MARGINING_LANE_STATUS__LANE_7_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_LANE_7_MARGINING_LANE_STATUS__LANE_7_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_LANE_7_MARGINING_LANE_STATUS__LANE_7_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_LANE_7_MARGINING_LANE_STATUS__LANE_7_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_0_LANE_7_MARGINING_LANE_STATUS__LANE_7_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_0_LANE_7_MARGINING_LANE_STATUS__LANE_7_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_0_LANE_7_MARGINING_LANE_STATUS__LANE_7_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_0_LANE_8_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_EPF0_0_LANE_8_MARGINING_LANE_CNTL__LANE_8_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_8_MARGINING_LANE_CNTL__LANE_8_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_LANE_8_MARGINING_LANE_CNTL__LANE_8_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_LANE_8_MARGINING_LANE_CNTL__LANE_8_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_LANE_8_MARGINING_LANE_CNTL__LANE_8_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_0_LANE_8_MARGINING_LANE_CNTL__LANE_8_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_0_LANE_8_MARGINING_LANE_CNTL__LANE_8_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_0_LANE_8_MARGINING_LANE_CNTL__LANE_8_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_0_LANE_8_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_EPF0_0_LANE_8_MARGINING_LANE_STATUS__LANE_8_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_8_MARGINING_LANE_STATUS__LANE_8_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_LANE_8_MARGINING_LANE_STATUS__LANE_8_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_LANE_8_MARGINING_LANE_STATUS__LANE_8_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_LANE_8_MARGINING_LANE_STATUS__LANE_8_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_0_LANE_8_MARGINING_LANE_STATUS__LANE_8_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_0_LANE_8_MARGINING_LANE_STATUS__LANE_8_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_0_LANE_8_MARGINING_LANE_STATUS__LANE_8_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_0_LANE_9_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_EPF0_0_LANE_9_MARGINING_LANE_CNTL__LANE_9_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_9_MARGINING_LANE_CNTL__LANE_9_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_LANE_9_MARGINING_LANE_CNTL__LANE_9_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_LANE_9_MARGINING_LANE_CNTL__LANE_9_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_LANE_9_MARGINING_LANE_CNTL__LANE_9_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_0_LANE_9_MARGINING_LANE_CNTL__LANE_9_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_0_LANE_9_MARGINING_LANE_CNTL__LANE_9_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_0_LANE_9_MARGINING_LANE_CNTL__LANE_9_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_0_LANE_9_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_EPF0_0_LANE_9_MARGINING_LANE_STATUS__LANE_9_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_9_MARGINING_LANE_STATUS__LANE_9_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_LANE_9_MARGINING_LANE_STATUS__LANE_9_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_LANE_9_MARGINING_LANE_STATUS__LANE_9_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_LANE_9_MARGINING_LANE_STATUS__LANE_9_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_0_LANE_9_MARGINING_LANE_STATUS__LANE_9_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_0_LANE_9_MARGINING_LANE_STATUS__LANE_9_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_0_LANE_9_MARGINING_LANE_STATUS__LANE_9_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_0_LANE_10_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_EPF0_0_LANE_10_MARGINING_LANE_CNTL__LANE_10_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_10_MARGINING_LANE_CNTL__LANE_10_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_LANE_10_MARGINING_LANE_CNTL__LANE_10_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_LANE_10_MARGINING_LANE_CNTL__LANE_10_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_LANE_10_MARGINING_LANE_CNTL__LANE_10_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_0_LANE_10_MARGINING_LANE_CNTL__LANE_10_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_0_LANE_10_MARGINING_LANE_CNTL__LANE_10_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_0_LANE_10_MARGINING_LANE_CNTL__LANE_10_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_0_LANE_10_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_EPF0_0_LANE_10_MARGINING_LANE_STATUS__LANE_10_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_10_MARGINING_LANE_STATUS__LANE_10_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_LANE_10_MARGINING_LANE_STATUS__LANE_10_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_LANE_10_MARGINING_LANE_STATUS__LANE_10_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_LANE_10_MARGINING_LANE_STATUS__LANE_10_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_0_LANE_10_MARGINING_LANE_STATUS__LANE_10_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_0_LANE_10_MARGINING_LANE_STATUS__LANE_10_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_0_LANE_10_MARGINING_LANE_STATUS__LANE_10_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_0_LANE_11_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_EPF0_0_LANE_11_MARGINING_LANE_CNTL__LANE_11_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_11_MARGINING_LANE_CNTL__LANE_11_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_LANE_11_MARGINING_LANE_CNTL__LANE_11_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_LANE_11_MARGINING_LANE_CNTL__LANE_11_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_LANE_11_MARGINING_LANE_CNTL__LANE_11_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_0_LANE_11_MARGINING_LANE_CNTL__LANE_11_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_0_LANE_11_MARGINING_LANE_CNTL__LANE_11_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_0_LANE_11_MARGINING_LANE_CNTL__LANE_11_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_0_LANE_11_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_EPF0_0_LANE_11_MARGINING_LANE_STATUS__LANE_11_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_11_MARGINING_LANE_STATUS__LANE_11_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_LANE_11_MARGINING_LANE_STATUS__LANE_11_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_LANE_11_MARGINING_LANE_STATUS__LANE_11_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_LANE_11_MARGINING_LANE_STATUS__LANE_11_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_0_LANE_11_MARGINING_LANE_STATUS__LANE_11_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_0_LANE_11_MARGINING_LANE_STATUS__LANE_11_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_0_LANE_11_MARGINING_LANE_STATUS__LANE_11_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_0_LANE_12_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_EPF0_0_LANE_12_MARGINING_LANE_CNTL__LANE_12_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_12_MARGINING_LANE_CNTL__LANE_12_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_LANE_12_MARGINING_LANE_CNTL__LANE_12_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_LANE_12_MARGINING_LANE_CNTL__LANE_12_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_LANE_12_MARGINING_LANE_CNTL__LANE_12_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_0_LANE_12_MARGINING_LANE_CNTL__LANE_12_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_0_LANE_12_MARGINING_LANE_CNTL__LANE_12_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_0_LANE_12_MARGINING_LANE_CNTL__LANE_12_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_0_LANE_12_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_EPF0_0_LANE_12_MARGINING_LANE_STATUS__LANE_12_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_12_MARGINING_LANE_STATUS__LANE_12_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_LANE_12_MARGINING_LANE_STATUS__LANE_12_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_LANE_12_MARGINING_LANE_STATUS__LANE_12_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_LANE_12_MARGINING_LANE_STATUS__LANE_12_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_0_LANE_12_MARGINING_LANE_STATUS__LANE_12_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_0_LANE_12_MARGINING_LANE_STATUS__LANE_12_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_0_LANE_12_MARGINING_LANE_STATUS__LANE_12_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_0_LANE_13_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_EPF0_0_LANE_13_MARGINING_LANE_CNTL__LANE_13_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_13_MARGINING_LANE_CNTL__LANE_13_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_LANE_13_MARGINING_LANE_CNTL__LANE_13_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_LANE_13_MARGINING_LANE_CNTL__LANE_13_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_LANE_13_MARGINING_LANE_CNTL__LANE_13_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_0_LANE_13_MARGINING_LANE_CNTL__LANE_13_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_0_LANE_13_MARGINING_LANE_CNTL__LANE_13_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_0_LANE_13_MARGINING_LANE_CNTL__LANE_13_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_0_LANE_13_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_EPF0_0_LANE_13_MARGINING_LANE_STATUS__LANE_13_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_13_MARGINING_LANE_STATUS__LANE_13_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_LANE_13_MARGINING_LANE_STATUS__LANE_13_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_LANE_13_MARGINING_LANE_STATUS__LANE_13_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_LANE_13_MARGINING_LANE_STATUS__LANE_13_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_0_LANE_13_MARGINING_LANE_STATUS__LANE_13_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_0_LANE_13_MARGINING_LANE_STATUS__LANE_13_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_0_LANE_13_MARGINING_LANE_STATUS__LANE_13_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_0_LANE_14_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_EPF0_0_LANE_14_MARGINING_LANE_CNTL__LANE_14_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_14_MARGINING_LANE_CNTL__LANE_14_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_LANE_14_MARGINING_LANE_CNTL__LANE_14_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_LANE_14_MARGINING_LANE_CNTL__LANE_14_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_LANE_14_MARGINING_LANE_CNTL__LANE_14_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_0_LANE_14_MARGINING_LANE_CNTL__LANE_14_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_0_LANE_14_MARGINING_LANE_CNTL__LANE_14_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_0_LANE_14_MARGINING_LANE_CNTL__LANE_14_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_0_LANE_14_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_EPF0_0_LANE_14_MARGINING_LANE_STATUS__LANE_14_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_14_MARGINING_LANE_STATUS__LANE_14_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_LANE_14_MARGINING_LANE_STATUS__LANE_14_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_LANE_14_MARGINING_LANE_STATUS__LANE_14_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_LANE_14_MARGINING_LANE_STATUS__LANE_14_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_0_LANE_14_MARGINING_LANE_STATUS__LANE_14_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_0_LANE_14_MARGINING_LANE_STATUS__LANE_14_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_0_LANE_14_MARGINING_LANE_STATUS__LANE_14_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_0_LANE_15_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_EPF0_0_LANE_15_MARGINING_LANE_CNTL__LANE_15_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_15_MARGINING_LANE_CNTL__LANE_15_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_LANE_15_MARGINING_LANE_CNTL__LANE_15_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_LANE_15_MARGINING_LANE_CNTL__LANE_15_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_LANE_15_MARGINING_LANE_CNTL__LANE_15_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_0_LANE_15_MARGINING_LANE_CNTL__LANE_15_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_0_LANE_15_MARGINING_LANE_CNTL__LANE_15_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_0_LANE_15_MARGINING_LANE_CNTL__LANE_15_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_0_LANE_15_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_EPF0_0_LANE_15_MARGINING_LANE_STATUS__LANE_15_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LANE_15_MARGINING_LANE_STATUS__LANE_15_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_LANE_15_MARGINING_LANE_STATUS__LANE_15_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_LANE_15_MARGINING_LANE_STATUS__LANE_15_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_LANE_15_MARGINING_LANE_STATUS__LANE_15_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF0_0_LANE_15_MARGINING_LANE_STATUS__LANE_15_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_EPF0_0_LANE_15_MARGINING_LANE_STATUS__LANE_15_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_0_LANE_15_MARGINING_LANE_STATUS__LANE_15_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_0_LINK_CAP_32GT
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP_32GT__EQ_BYPASS_TO_HIGHEST_RATE_SUPPORTED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP_32GT__NO_EQ_NEEDED_SUPPORTED__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP_32GT__MODIFIED_TS_USAGE_MODE0_SUPPORTED__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP_32GT__MODIFIED_TS_USAGE_MODE1_SUPPORTED__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP_32GT__MODIFIED_TS_USAGE_MODE2_SUPPORTED__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP_32GT__MODIFIED_TS_RESERVED_USAGE_MODES__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP_32GT__EQ_BYPASS_TO_HIGHEST_RATE_SUPPORTED_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP_32GT__NO_EQ_NEEDED_SUPPORTED_MASK 0x00000002L
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP_32GT__MODIFIED_TS_USAGE_MODE0_SUPPORTED_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP_32GT__MODIFIED_TS_USAGE_MODE1_SUPPORTED_MASK 0x00000200L
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP_32GT__MODIFIED_TS_USAGE_MODE2_SUPPORTED_MASK 0x00000400L
+#define BIF_CFG_DEV0_EPF0_0_LINK_CAP_32GT__MODIFIED_TS_RESERVED_USAGE_MODES_MASK 0x0000F800L
+//BIF_CFG_DEV0_EPF0_0_LINK_CNTL_32GT
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL_32GT__EQ_BYPASS_TO_HIGHEST_RATE_DIS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL_32GT__NO_EQ_NEEDED_DIS__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL_32GT__MODIFIED_TS_USAGE_MODE_SEL__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL_32GT__EQ_BYPASS_TO_HIGHEST_RATE_DIS_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL_32GT__NO_EQ_NEEDED_DIS_MASK 0x00000002L
+#define BIF_CFG_DEV0_EPF0_0_LINK_CNTL_32GT__MODIFIED_TS_USAGE_MODE_SEL_MASK 0x00000700L
+//BIF_CFG_DEV0_EPF0_0_LINK_STATUS_32GT
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS_32GT__EQUALIZATION_COMPLETE_32GT__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS_32GT__EQUALIZATION_PHASE1_SUCCESS_32GT__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS_32GT__EQUALIZATION_PHASE2_SUCCESS_32GT__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS_32GT__EQUALIZATION_PHASE3_SUCCESS_32GT__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS_32GT__LINK_EQUALIZATION_REQUEST_32GT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS_32GT__MODIFIED_TS_RECEIVED__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS_32GT__RECEIVED_ENHANCED_LINK_BEHAVIOR_CNTL__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS_32GT__TRANSMITTER_PRECODING_ON__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS_32GT__TRANSMITTER_PRECODE_REQUEST__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS_32GT__NO_EQ_NEEDED_RECEIVED__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS_32GT__EQUALIZATION_COMPLETE_32GT_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS_32GT__EQUALIZATION_PHASE1_SUCCESS_32GT_MASK 0x00000002L
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS_32GT__EQUALIZATION_PHASE2_SUCCESS_32GT_MASK 0x00000004L
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS_32GT__EQUALIZATION_PHASE3_SUCCESS_32GT_MASK 0x00000008L
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS_32GT__LINK_EQUALIZATION_REQUEST_32GT_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS_32GT__MODIFIED_TS_RECEIVED_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS_32GT__RECEIVED_ENHANCED_LINK_BEHAVIOR_CNTL_MASK 0x000000C0L
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS_32GT__TRANSMITTER_PRECODING_ON_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS_32GT__TRANSMITTER_PRECODE_REQUEST_MASK 0x00000200L
+#define BIF_CFG_DEV0_EPF0_0_LINK_STATUS_32GT__NO_EQ_NEEDED_RECEIVED_MASK 0x00000400L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST_GPUIOV
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST_GPUIOV__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST_GPUIOV__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST_GPUIOV__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST_GPUIOV__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST_GPUIOV__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST_GPUIOV__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV__VSEC_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV__VSEC_REV__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV__VSEC_LENGTH__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV__VSEC_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV__VSEC_REV_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV__VSEC_LENGTH_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_SRIOV_SHADOW
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_INTR_ENABLE
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_INTR_ENABLE__HVVM_MAILBOX_TRN_ACK_INTR_EN__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_INTR_ENABLE__HVVM_MAILBOX_RCV_VALID_INTR_EN__SHIFT 0x19
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_INTR_ENABLE__HVVM_MAILBOX_TRN_ACK_INTR_EN_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_INTR_ENABLE__HVVM_MAILBOX_RCV_VALID_INTR_EN_MASK 0x02000000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_INTR_STATUS
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_INTR_STATUS__HVVM_MAILBOX_TRN_ACK_INTR_STATUS__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_INTR_STATUS__HVVM_MAILBOX_RCV_VALID_INTR_STATUS__SHIFT 0x19
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_INTR_STATUS__HVVM_MAILBOX_TRN_ACK_INTR_STATUS_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_INTR_STATUS__HVVM_MAILBOX_RCV_VALID_INTR_STATUS_MASK 0x02000000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_RESET_CONTROL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_RESET_CONTROL__SOFT_PF_FLR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_RESET_CONTROL__SOFT_PF_FLR_MASK 0x0001L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW0__VF_INDEX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW0__TRN_MSG_DATA__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW0__TRN_MSG_VALID__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW0__RCV_MSG_DATA__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW0__RCV_MSG_ACK__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW0__VF_INDEX_MASK 0x000000FFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW0__TRN_MSG_DATA_MASK 0x00000F00L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW0__TRN_MSG_VALID_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW0__RCV_MSG_DATA_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW0__RCV_MSG_ACK_MASK 0x01000000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF0_TRN_ACK__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF0_RCV_VALID__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF1_TRN_ACK__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF1_RCV_VALID__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF2_TRN_ACK__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF2_RCV_VALID__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF3_TRN_ACK__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF3_RCV_VALID__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF4_TRN_ACK__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF4_RCV_VALID__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF5_TRN_ACK__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF5_RCV_VALID__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF6_TRN_ACK__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF6_RCV_VALID__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF7_TRN_ACK__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF7_RCV_VALID__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF8_TRN_ACK__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF8_RCV_VALID__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF9_TRN_ACK__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF9_RCV_VALID__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF10_TRN_ACK__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF10_RCV_VALID__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF11_TRN_ACK__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF11_RCV_VALID__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF12_TRN_ACK__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF12_RCV_VALID__SHIFT 0x19
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF13_TRN_ACK__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF13_RCV_VALID__SHIFT 0x1b
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF14_TRN_ACK__SHIFT 0x1c
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF14_RCV_VALID__SHIFT 0x1d
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF15_TRN_ACK__SHIFT 0x1e
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF15_RCV_VALID__SHIFT 0x1f
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF0_TRN_ACK_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF0_RCV_VALID_MASK 0x00000002L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF1_TRN_ACK_MASK 0x00000004L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF1_RCV_VALID_MASK 0x00000008L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF2_TRN_ACK_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF2_RCV_VALID_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF3_TRN_ACK_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF3_RCV_VALID_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF4_TRN_ACK_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF4_RCV_VALID_MASK 0x00000200L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF5_TRN_ACK_MASK 0x00000400L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF5_RCV_VALID_MASK 0x00000800L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF6_TRN_ACK_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF6_RCV_VALID_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF7_TRN_ACK_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF7_RCV_VALID_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF8_TRN_ACK_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF8_RCV_VALID_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF9_TRN_ACK_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF9_RCV_VALID_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF10_TRN_ACK_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF10_RCV_VALID_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF11_TRN_ACK_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF11_RCV_VALID_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF12_TRN_ACK_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF12_RCV_VALID_MASK 0x02000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF13_TRN_ACK_MASK 0x04000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF13_RCV_VALID_MASK 0x08000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF14_TRN_ACK_MASK 0x10000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF14_RCV_VALID_MASK 0x20000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF15_TRN_ACK_MASK 0x40000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW1__VF15_RCV_VALID_MASK 0x80000000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF16_TRN_ACK__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF16_RCV_VALID__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF17_TRN_ACK__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF17_RCV_VALID__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF18_TRN_ACK__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF18_RCV_VALID__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF19_TRN_ACK__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF19_RCV_VALID__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF20_TRN_ACK__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF20_RCV_VALID__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF21_TRN_ACK__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF21_RCV_VALID__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF22_TRN_ACK__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF22_RCV_VALID__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF23_TRN_ACK__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF23_RCV_VALID__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF24_TRN_ACK__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF24_RCV_VALID__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF25_TRN_ACK__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF25_RCV_VALID__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF26_TRN_ACK__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF26_RCV_VALID__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF27_TRN_ACK__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF27_RCV_VALID__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF28_TRN_ACK__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF28_RCV_VALID__SHIFT 0x19
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF29_TRN_ACK__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF29_RCV_VALID__SHIFT 0x1b
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF30_TRN_ACK__SHIFT 0x1c
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF30_RCV_VALID__SHIFT 0x1d
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__PF_TRN_ACK__SHIFT 0x1e
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__PF_RCV_VALID__SHIFT 0x1f
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF16_TRN_ACK_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF16_RCV_VALID_MASK 0x00000002L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF17_TRN_ACK_MASK 0x00000004L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF17_RCV_VALID_MASK 0x00000008L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF18_TRN_ACK_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF18_RCV_VALID_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF19_TRN_ACK_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF19_RCV_VALID_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF20_TRN_ACK_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF20_RCV_VALID_MASK 0x00000200L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF21_TRN_ACK_MASK 0x00000400L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF21_RCV_VALID_MASK 0x00000800L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF22_TRN_ACK_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF22_RCV_VALID_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF23_TRN_ACK_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF23_RCV_VALID_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF24_TRN_ACK_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF24_RCV_VALID_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF25_TRN_ACK_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF25_RCV_VALID_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF26_TRN_ACK_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF26_RCV_VALID_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF27_TRN_ACK_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF27_RCV_VALID_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF28_TRN_ACK_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF28_RCV_VALID_MASK 0x02000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF29_TRN_ACK_MASK 0x04000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF29_RCV_VALID_MASK 0x08000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF30_TRN_ACK_MASK 0x10000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__VF30_RCV_VALID_MASK 0x20000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__PF_TRN_ACK_MASK 0x40000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_HVVM_MBOX_DW2__PF_RCV_VALID_MASK 0x80000000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_CONTEXT
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_CONTEXT__CONTEXT_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_CONTEXT__LOC__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_CONTEXT__CONTEXT_OFFSET__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_CONTEXT__CONTEXT_SIZE_MASK 0x0000007FL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_CONTEXT__LOC_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_CONTEXT__CONTEXT_OFFSET_MASK 0xFFFFFC00L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_TOTAL_FB
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_TOTAL_FB__TOTAL_FB_AVAILABLE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_TOTAL_FB__TOTAL_FB_CONSUMED__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_TOTAL_FB__TOTAL_FB_AVAILABLE_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_TOTAL_FB__TOTAL_FB_CONSUMED_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_REGION
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_REGION__LFB_REGION__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_REGION__MAX_REGION__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_REGION__LFB_REGION_MASK 0x0000000FL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_REGION__MAX_REGION_MASK 0x000000F0L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_P2P_OVER_XGMI_ENABLE
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_P2P_OVER_XGMI_ENABLE__P2P_OVER_XGMI_ENABLE_VF__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_P2P_OVER_XGMI_ENABLE__P2P_OVER_XGMI_ENABLE_PF__SHIFT 0x1f
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_P2P_OVER_XGMI_ENABLE__P2P_OVER_XGMI_ENABLE_VF_MASK 0x7FFFFFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_P2P_OVER_XGMI_ENABLE__P2P_OVER_XGMI_ENABLE_PF_MASK 0x80000000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF0_FB
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF0_FB__VF0_FB_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF0_FB__VF0_FB_OFFSET__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF0_FB__VF0_FB_SIZE_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF0_FB__VF0_FB_OFFSET_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF1_FB
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF1_FB__VF1_FB_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF1_FB__VF1_FB_OFFSET__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF1_FB__VF1_FB_SIZE_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF1_FB__VF1_FB_OFFSET_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF2_FB
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF2_FB__VF2_FB_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF2_FB__VF2_FB_OFFSET__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF2_FB__VF2_FB_SIZE_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF2_FB__VF2_FB_OFFSET_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF3_FB
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF3_FB__VF3_FB_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF3_FB__VF3_FB_OFFSET__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF3_FB__VF3_FB_SIZE_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF3_FB__VF3_FB_OFFSET_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF4_FB
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF4_FB__VF4_FB_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF4_FB__VF4_FB_OFFSET__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF4_FB__VF4_FB_SIZE_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF4_FB__VF4_FB_OFFSET_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF5_FB
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF5_FB__VF5_FB_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF5_FB__VF5_FB_OFFSET__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF5_FB__VF5_FB_SIZE_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF5_FB__VF5_FB_OFFSET_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF6_FB
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF6_FB__VF6_FB_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF6_FB__VF6_FB_OFFSET__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF6_FB__VF6_FB_SIZE_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF6_FB__VF6_FB_OFFSET_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF7_FB
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF7_FB__VF7_FB_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF7_FB__VF7_FB_OFFSET__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF7_FB__VF7_FB_SIZE_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF7_FB__VF7_FB_OFFSET_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF8_FB
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF8_FB__VF8_FB_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF8_FB__VF8_FB_OFFSET__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF8_FB__VF8_FB_SIZE_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF8_FB__VF8_FB_OFFSET_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF9_FB
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF9_FB__VF9_FB_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF9_FB__VF9_FB_OFFSET__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF9_FB__VF9_FB_SIZE_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF9_FB__VF9_FB_OFFSET_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF10_FB
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF10_FB__VF10_FB_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF10_FB__VF10_FB_OFFSET__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF10_FB__VF10_FB_SIZE_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF10_FB__VF10_FB_OFFSET_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF11_FB
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF11_FB__VF11_FB_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF11_FB__VF11_FB_OFFSET__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF11_FB__VF11_FB_SIZE_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF11_FB__VF11_FB_OFFSET_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF12_FB
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF12_FB__VF12_FB_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF12_FB__VF12_FB_OFFSET__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF12_FB__VF12_FB_SIZE_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF12_FB__VF12_FB_OFFSET_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF13_FB
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF13_FB__VF13_FB_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF13_FB__VF13_FB_OFFSET__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF13_FB__VF13_FB_SIZE_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF13_FB__VF13_FB_OFFSET_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF14_FB
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF14_FB__VF14_FB_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF14_FB__VF14_FB_OFFSET__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF14_FB__VF14_FB_SIZE_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF14_FB__VF14_FB_OFFSET_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF15_FB
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF15_FB__VF15_FB_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF15_FB__VF15_FB_OFFSET__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF15_FB__VF15_FB_SIZE_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF15_FB__VF15_FB_OFFSET_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF16_FB
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF16_FB__VF16_FB_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF16_FB__VF16_FB_OFFSET__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF16_FB__VF16_FB_SIZE_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF16_FB__VF16_FB_OFFSET_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF17_FB
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF17_FB__VF17_FB_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF17_FB__VF17_FB_OFFSET__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF17_FB__VF17_FB_SIZE_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF17_FB__VF17_FB_OFFSET_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF18_FB
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF18_FB__VF18_FB_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF18_FB__VF18_FB_OFFSET__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF18_FB__VF18_FB_SIZE_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF18_FB__VF18_FB_OFFSET_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF19_FB
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF19_FB__VF19_FB_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF19_FB__VF19_FB_OFFSET__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF19_FB__VF19_FB_SIZE_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF19_FB__VF19_FB_OFFSET_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF20_FB
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF20_FB__VF20_FB_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF20_FB__VF20_FB_OFFSET__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF20_FB__VF20_FB_SIZE_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF20_FB__VF20_FB_OFFSET_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF21_FB
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF21_FB__VF21_FB_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF21_FB__VF21_FB_OFFSET__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF21_FB__VF21_FB_SIZE_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF21_FB__VF21_FB_OFFSET_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF22_FB
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF22_FB__VF22_FB_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF22_FB__VF22_FB_OFFSET__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF22_FB__VF22_FB_SIZE_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF22_FB__VF22_FB_OFFSET_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF23_FB
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF23_FB__VF23_FB_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF23_FB__VF23_FB_OFFSET__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF23_FB__VF23_FB_SIZE_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF23_FB__VF23_FB_OFFSET_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF24_FB
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF24_FB__VF24_FB_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF24_FB__VF24_FB_OFFSET__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF24_FB__VF24_FB_SIZE_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF24_FB__VF24_FB_OFFSET_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF25_FB
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF25_FB__VF25_FB_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF25_FB__VF25_FB_OFFSET__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF25_FB__VF25_FB_SIZE_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF25_FB__VF25_FB_OFFSET_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF26_FB
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF26_FB__VF26_FB_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF26_FB__VF26_FB_OFFSET__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF26_FB__VF26_FB_SIZE_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF26_FB__VF26_FB_OFFSET_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF27_FB
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF27_FB__VF27_FB_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF27_FB__VF27_FB_OFFSET__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF27_FB__VF27_FB_SIZE_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF27_FB__VF27_FB_OFFSET_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF28_FB
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF28_FB__VF28_FB_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF28_FB__VF28_FB_OFFSET__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF28_FB__VF28_FB_SIZE_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF28_FB__VF28_FB_OFFSET_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF29_FB
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF29_FB__VF29_FB_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF29_FB__VF29_FB_OFFSET__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF29_FB__VF29_FB_SIZE_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF29_FB__VF29_FB_OFFSET_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF30_FB
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF30_FB__VF30_FB_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF30_FB__VF30_FB_OFFSET__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF30_FB__VF30_FB_SIZE_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_VF30_FB__VF30_FB_OFFSET_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS__VCN0SCH_OFFSET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS__VCN1SCH_OFFSET__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS__VCN2SCH_OFFSET__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS__VCN3SCH_OFFSET__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS__VCN0SCH_OFFSET_MASK 0x000000FFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS__VCN1SCH_OFFSET_MASK 0x0000FF00L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS__VCN2SCH_OFFSET_MASK 0x00FF0000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS__VCN3SCH_OFFSET_MASK 0xFF000000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS1__VCN4SCH_OFFSET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS1__VCN5SCH_OFFSET__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS1__VCN6SCH_OFFSET__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS1__VCN7SCH_OFFSET__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS1__VCN4SCH_OFFSET_MASK 0x000000FFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS1__VCN5SCH_OFFSET_MASK 0x0000FF00L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS1__VCN6SCH_OFFSET_MASK 0x00FF0000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS1__VCN7SCH_OFFSET_MASK 0xFF000000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS2
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS2__VCN8SCH_OFFSET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS2__VCN9SCH_OFFSET__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS2__VCN10SCH_OFFSET__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS2__VCN11SCH_OFFSET__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS2__VCN8SCH_OFFSET_MASK 0x000000FFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS2__VCN9SCH_OFFSET_MASK 0x0000FF00L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS2__VCN10SCH_OFFSET_MASK 0x00FF0000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS2__VCN11SCH_OFFSET_MASK 0xFF000000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS3
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS3__GFX0SCH_OFFSET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS3__GFX1SCH_OFFSET__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS3__GFX2SCH_OFFSET__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS3__GFX3SCH_OFFSET__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS3__GFX0SCH_OFFSET_MASK 0x000000FFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS3__GFX1SCH_OFFSET_MASK 0x0000FF00L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS3__GFX2SCH_OFFSET_MASK 0x00FF0000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS3__GFX3SCH_OFFSET_MASK 0xFF000000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS4__GFX4SCH_OFFSET__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS4__GFX5SCH_OFFSET__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS4__GFX6SCH_OFFSET__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS4__GFX7SCH_OFFSET__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS4__GFX4SCH_OFFSET_MASK 0x000000FFL
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS4__GFX5SCH_OFFSET_MASK 0x0000FF00L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS4__GFX6SCH_OFFSET_MASK 0x00FF0000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_OFFSETS4__GFX7SCH_OFFSET_MASK 0xFF000000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW0__DW0__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW0__DW0_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW1__DW1__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW1__DW1_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW2
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW2__DW2__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW2__DW2_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW3
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW3__DW3__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW3__DW3_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW4__DW4__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW4__DW4_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW5
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW5__DW5__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW5__DW5_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW6
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW6__DW6__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW6__DW6_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW7
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW7__DW7__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW7__DW7_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW8__DW8__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD0SCH_DW8__DW8_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW0__DW0__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW0__DW0_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW1__DW1__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW1__DW1_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW2
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW2__DW2__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW2__DW2_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW3
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW3__DW3__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW3__DW3_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW4__DW4__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW4__DW4_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW5
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW5__DW5__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW5__DW5_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW6
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW6__DW6__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW6__DW6_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW7
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW7__DW7__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW7__DW7_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW8__DW8__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD1SCH_DW8__DW8_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW0__DW0__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW0__DW0_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW1__DW1__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW1__DW1_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW2
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW2__DW2__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW2__DW2_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW3
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW3__DW3__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW3__DW3_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW4__DW4__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW4__DW4_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW5
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW5__DW5__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW5__DW5_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW6
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW6__DW6__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW6__DW6_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW7
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW7__DW7__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW7__DW7_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW8__DW8__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD2SCH_DW8__DW8_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW0__DW0__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW0__DW0_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW1__DW1__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW1__DW1_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW2
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW2__DW2__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW2__DW2_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW3
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW3__DW3__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW3__DW3_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW4__DW4__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW4__DW4_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW5
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW5__DW5__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW5__DW5_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW6
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW6__DW6__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW6__DW6_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW7
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW7__DW7__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW7__DW7_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW8__DW8__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD3SCH_DW8__DW8_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW0__DW0__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW0__DW0_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW1__DW1__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW1__DW1_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW2
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW2__DW2__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW2__DW2_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW3
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW3__DW3__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW3__DW3_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW4__DW4__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW4__DW4_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW5
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW5__DW5__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW5__DW5_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW6
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW6__DW6__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW6__DW6_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW7
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW7__DW7__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW7__DW7_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW8__DW8__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD4SCH_DW8__DW8_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW0__DW0__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW0__DW0_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW1__DW1__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW1__DW1_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW2
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW2__DW2__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW2__DW2_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW3
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW3__DW3__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW3__DW3_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW4__DW4__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW4__DW4_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW5
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW5__DW5__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW5__DW5_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW6
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW6__DW6__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW6__DW6_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW7
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW7__DW7__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW7__DW7_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW8__DW8__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD5SCH_DW8__DW8_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW0__DW0__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW0__DW0_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW1__DW1__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW1__DW1_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW2
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW2__DW2__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW2__DW2_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW3
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW3__DW3__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW3__DW3_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW4__DW4__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW4__DW4_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW5
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW5__DW5__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW5__DW5_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW6
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW6__DW6__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW6__DW6_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW7
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW7__DW7__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW7__DW7_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW8__DW8__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD6SCH_DW8__DW8_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW0__DW0__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW0__DW0_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW1__DW1__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW1__DW1_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW2
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW2__DW2__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW2__DW2_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW3
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW3__DW3__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW3__DW3_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW4__DW4__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW4__DW4_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW5
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW5__DW5__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW5__DW5_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW6
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW6__DW6__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW6__DW6_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW7
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW7__DW7__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW7__DW7_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW8__DW8__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD7SCH_DW8__DW8_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW0__DW0__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW0__DW0_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW1__DW1__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW1__DW1_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW2
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW2__DW2__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW2__DW2_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW3
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW3__DW3__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW3__DW3_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW4__DW4__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW4__DW4_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW5
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW5__DW5__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW5__DW5_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW6
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW6__DW6__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW6__DW6_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW7
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW7__DW7__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW7__DW7_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW8__DW8__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD8SCH_DW8__DW8_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW0__DW0__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW0__DW0_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW1__DW1__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW1__DW1_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW2
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW2__DW2__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW2__DW2_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW3
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW3__DW3__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW3__DW3_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW4__DW4__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW4__DW4_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW5
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW5__DW5__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW5__DW5_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW6
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW6__DW6__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW6__DW6_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW7
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW7__DW7__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW7__DW7_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW8__DW8__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD9SCH_DW8__DW8_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW0__DW0__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW0__DW0_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW1__DW1__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW1__DW1_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW2
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW2__DW2__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW2__DW2_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW3
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW3__DW3__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW3__DW3_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW4__DW4__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW4__DW4_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW5
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW5__DW5__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW5__DW5_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW6
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW6__DW6__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW6__DW6_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW7
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW7__DW7__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW7__DW7_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW8__DW8__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD10SCH_DW8__DW8_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW0__DW0__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW0__DW0_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW1__DW1__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW1__DW1_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW2
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW2__DW2__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW2__DW2_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW3
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW3__DW3__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW3__DW3_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW4__DW4__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW4__DW4_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW5
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW5__DW5__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW5__DW5_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW6
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW6__DW6__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW6__DW6_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW7
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW7__DW7__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW7__DW7_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW8__DW8__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_UVD11SCH_DW8__DW8_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW0__DW0__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW0__DW0_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW1__DW1__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW1__DW1_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW2
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW2__DW2__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW2__DW2_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW3
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW3__DW3__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW3__DW3_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW4__DW4__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW4__DW4_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW5
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW5__DW5__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW5__DW5_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW6
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW6__DW6__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW6__DW6_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW7
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW7__DW7__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW7__DW7_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW8__DW8__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX0SCH_DW8__DW8_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW0__DW0__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW0__DW0_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW1__DW1__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW1__DW1_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW2
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW2__DW2__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW2__DW2_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW3
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW3__DW3__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW3__DW3_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW4__DW4__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW4__DW4_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW5
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW5__DW5__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW5__DW5_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW6
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW6__DW6__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW6__DW6_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW7
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW7__DW7__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW7__DW7_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW8__DW8__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX1SCH_DW8__DW8_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW0__DW0__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW0__DW0_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW1__DW1__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW1__DW1_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW2
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW2__DW2__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW2__DW2_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW3
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW3__DW3__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW3__DW3_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW4__DW4__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW4__DW4_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW5
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW5__DW5__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW5__DW5_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW6
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW6__DW6__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW6__DW6_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW7
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW7__DW7__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW7__DW7_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW8__DW8__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX2SCH_DW8__DW8_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW0__DW0__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW0__DW0_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW1__DW1__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW1__DW1_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW2
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW2__DW2__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW2__DW2_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW3
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW3__DW3__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW3__DW3_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW4__DW4__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW4__DW4_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW5
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW5__DW5__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW5__DW5_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW6
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW6__DW6__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW6__DW6_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW7
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW7__DW7__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW7__DW7_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW8__DW8__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX3SCH_DW8__DW8_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW0__DW0__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW0__DW0_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW1__DW1__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW1__DW1_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW2
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW2__DW2__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW2__DW2_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW3
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW3__DW3__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW3__DW3_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW4__DW4__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW4__DW4_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW5
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW5__DW5__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW5__DW5_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW6
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW6__DW6__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW6__DW6_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW7
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW7__DW7__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW7__DW7_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW8__DW8__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX4SCH_DW8__DW8_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW0__DW0__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW0__DW0_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW1__DW1__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW1__DW1_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW2
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW2__DW2__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW2__DW2_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW3
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW3__DW3__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW3__DW3_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW4__DW4__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW4__DW4_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW5
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW5__DW5__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW5__DW5_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW6
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW6__DW6__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW6__DW6_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW7
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW7__DW7__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW7__DW7_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW8__DW8__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX5SCH_DW8__DW8_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW0__DW0__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW0__DW0_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW1__DW1__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW1__DW1_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW2
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW2__DW2__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW2__DW2_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW3
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW3__DW3__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW3__DW3_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW4__DW4__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW4__DW4_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW5
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW5__DW5__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW5__DW5_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW6
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW6__DW6__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW6__DW6_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW7
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW7__DW7__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW7__DW7_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW8__DW8__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX6SCH_DW8__DW8_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW0__DW0__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW0__DW0_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW1__DW1__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW1__DW1_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW2
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW2__DW2__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW2__DW2_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW3
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW3__DW3__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW3__DW3_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW4__DW4__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW4__DW4_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW5
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW5__DW5__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW5__DW5_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW6
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW6__DW6__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW6__DW6_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW7
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW7__DW7__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW7__DW7_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW8__DW8__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_GFX7SCH_DW8__DW8_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A0_CMD_COMPLETE_INTR_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A0_HANG_SELF_RECOVERED_INTR_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A0_HANG_NEED_FLR_INTR_EN__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A0_VM_BUSY_TRANSITION_INTR_EN__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A1_CMD_COMPLETE_INTR_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A1_HANG_SELF_RECOVERED_INTR_EN__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A1_HANG_NEED_FLR_INTR_EN__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A1_VM_BUSY_TRANSITION_INTR_EN__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A2_CMD_COMPLETE_INTR_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A2_HANG_SELF_RECOVERED_INTR_EN__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A2_HANG_NEED_FLR_INTR_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A2_VM_BUSY_TRANSITION_INTR_EN__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A3_CMD_COMPLETE_INTR_EN__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A3_HANG_SELF_RECOVERED_INTR_EN__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A3_HANG_NEED_FLR_INTR_EN__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A3_VM_BUSY_TRANSITION_INTR_EN__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A4_CMD_COMPLETE_INTR_EN__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A4_HANG_SELF_RECOVERED_INTR_EN__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A4_HANG_NEED_FLR_INTR_EN__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A4_VM_BUSY_TRANSITION_INTR_EN__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A5_CMD_COMPLETE_INTR_EN__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A5_HANG_SELF_RECOVERED_INTR_EN__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A5_HANG_NEED_FLR_INTR_EN__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A5_VM_BUSY_TRANSITION_INTR_EN__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A6_CMD_COMPLETE_INTR_EN__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A6_HANG_SELF_RECOVERED_INTR_EN__SHIFT 0x19
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A6_HANG_NEED_FLR_INTR_EN__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A6_VM_BUSY_TRANSITION_INTR_EN__SHIFT 0x1b
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A7_CMD_COMPLETE_INTR_EN__SHIFT 0x1c
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A7_HANG_SELF_RECOVERED_INTR_EN__SHIFT 0x1d
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A7_HANG_NEED_FLR_INTR_EN__SHIFT 0x1e
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A7_VM_BUSY_TRANSITION_INTR_EN__SHIFT 0x1f
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A0_CMD_COMPLETE_INTR_EN_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A0_HANG_SELF_RECOVERED_INTR_EN_MASK 0x00000002L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A0_HANG_NEED_FLR_INTR_EN_MASK 0x00000004L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A0_VM_BUSY_TRANSITION_INTR_EN_MASK 0x00000008L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A1_CMD_COMPLETE_INTR_EN_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A1_HANG_SELF_RECOVERED_INTR_EN_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A1_HANG_NEED_FLR_INTR_EN_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A1_VM_BUSY_TRANSITION_INTR_EN_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A2_CMD_COMPLETE_INTR_EN_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A2_HANG_SELF_RECOVERED_INTR_EN_MASK 0x00000200L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A2_HANG_NEED_FLR_INTR_EN_MASK 0x00000400L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A2_VM_BUSY_TRANSITION_INTR_EN_MASK 0x00000800L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A3_CMD_COMPLETE_INTR_EN_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A3_HANG_SELF_RECOVERED_INTR_EN_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A3_HANG_NEED_FLR_INTR_EN_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A3_VM_BUSY_TRANSITION_INTR_EN_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A4_CMD_COMPLETE_INTR_EN_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A4_HANG_SELF_RECOVERED_INTR_EN_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A4_HANG_NEED_FLR_INTR_EN_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A4_VM_BUSY_TRANSITION_INTR_EN_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A5_CMD_COMPLETE_INTR_EN_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A5_HANG_SELF_RECOVERED_INTR_EN_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A5_HANG_NEED_FLR_INTR_EN_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A5_VM_BUSY_TRANSITION_INTR_EN_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A6_CMD_COMPLETE_INTR_EN_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A6_HANG_SELF_RECOVERED_INTR_EN_MASK 0x02000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A6_HANG_NEED_FLR_INTR_EN_MASK 0x04000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A6_VM_BUSY_TRANSITION_INTR_EN_MASK 0x08000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A7_CMD_COMPLETE_INTR_EN_MASK 0x10000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A7_HANG_SELF_RECOVERED_INTR_EN_MASK 0x20000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A7_HANG_NEED_FLR_INTR_EN_MASK 0x40000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_ENABLE__ENGA_A7_VM_BUSY_TRANSITION_INTR_EN_MASK 0x80000000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A8_15_INTR_ENABLE
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B0_CMD_COMPLETE_INTR_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B0_HANG_SELF_RECOVERED_INTR_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B0_HANG_NEED_FLR_INTR_EN__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B0_VM_BUSY_TRANSITION_INTR_EN__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B1_CMD_COMPLETE_INTR_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B1_HANG_SELF_RECOVERED_INTR_EN__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B1_HANG_NEED_FLR_INTR_EN__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B1_VM_BUSY_TRANSITION_INTR_EN__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B2_CMD_COMPLETE_INTR_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B2_HANG_SELF_RECOVERED_INTR_EN__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B2_HANG_NEED_FLR_INTR_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B2_VM_BUSY_TRANSITION_INTR_EN__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B3_CMD_COMPLETE_INTR_EN__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B3_HANG_SELF_RECOVERED_INTR_EN__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B3_HANG_NEED_FLR_INTR_EN__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B3_VM_BUSY_TRANSITION_INTR_EN__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B4_CMD_COMPLETE_INTR_EN__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B4_HANG_SELF_RECOVERED_INTR_EN__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B4_HANG_NEED_FLR_INTR_EN__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B4_VM_BUSY_TRANSITION_INTR_EN__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B5_CMD_COMPLETE_INTR_EN__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B5_HANG_SELF_RECOVERED_INTR_EN__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B5_HANG_NEED_FLR_INTR_EN__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B5_VM_BUSY_TRANSITION_INTR_EN__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B6_CMD_COMPLETE_INTR_EN__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B6_HANG_SELF_RECOVERED_INTR_EN__SHIFT 0x19
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B6_HANG_NEED_FLR_INTR_EN__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B6_VM_BUSY_TRANSITION_INTR_EN__SHIFT 0x1b
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B7_CMD_COMPLETE_INTR_EN__SHIFT 0x1c
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B7_HANG_SELF_RECOVERED_INTR_EN__SHIFT 0x1d
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B7_HANG_NEED_FLR_INTR_EN__SHIFT 0x1e
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B7_VM_BUSY_TRANSITION_INTR_EN__SHIFT 0x1f
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B0_CMD_COMPLETE_INTR_EN_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B0_HANG_SELF_RECOVERED_INTR_EN_MASK 0x00000002L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B0_HANG_NEED_FLR_INTR_EN_MASK 0x00000004L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B0_VM_BUSY_TRANSITION_INTR_EN_MASK 0x00000008L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B1_CMD_COMPLETE_INTR_EN_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B1_HANG_SELF_RECOVERED_INTR_EN_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B1_HANG_NEED_FLR_INTR_EN_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B1_VM_BUSY_TRANSITION_INTR_EN_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B2_CMD_COMPLETE_INTR_EN_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B2_HANG_SELF_RECOVERED_INTR_EN_MASK 0x00000200L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B2_HANG_NEED_FLR_INTR_EN_MASK 0x00000400L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B2_VM_BUSY_TRANSITION_INTR_EN_MASK 0x00000800L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B3_CMD_COMPLETE_INTR_EN_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B3_HANG_SELF_RECOVERED_INTR_EN_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B3_HANG_NEED_FLR_INTR_EN_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B3_VM_BUSY_TRANSITION_INTR_EN_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B4_CMD_COMPLETE_INTR_EN_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B4_HANG_SELF_RECOVERED_INTR_EN_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B4_HANG_NEED_FLR_INTR_EN_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B4_VM_BUSY_TRANSITION_INTR_EN_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B5_CMD_COMPLETE_INTR_EN_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B5_HANG_SELF_RECOVERED_INTR_EN_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B5_HANG_NEED_FLR_INTR_EN_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B5_VM_BUSY_TRANSITION_INTR_EN_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B6_CMD_COMPLETE_INTR_EN_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B6_HANG_SELF_RECOVERED_INTR_EN_MASK 0x02000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B6_HANG_NEED_FLR_INTR_EN_MASK 0x04000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B6_VM_BUSY_TRANSITION_INTR_EN_MASK 0x08000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B7_CMD_COMPLETE_INTR_EN_MASK 0x10000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B7_HANG_SELF_RECOVERED_INTR_EN_MASK 0x20000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B7_HANG_NEED_FLR_INTR_EN_MASK 0x40000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_ENABLE__ENGB_B7_VM_BUSY_TRANSITION_INTR_EN_MASK 0x80000000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B8_CMD_COMPLETE_INTR_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B8_HANG_SELF_RECOVERED_INTR_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B8_HANG_NEED_FLR_INTR_EN__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B8_VM_BUSY_TRANSITION_INTR_EN__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B9_CMD_COMPLETE_INTR_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B9_HANG_SELF_RECOVERED_INTR_EN__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B9_HANG_NEED_FLR_INTR_EN__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B9_VM_BUSY_TRANSITION_INTR_EN__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B10_CMD_COMPLETE_INTR_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B10_HANG_SELF_RECOVERED_INTR_EN__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B10_HANG_NEED_FLR_INTR_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B10_VM_BUSY_TRANSITION_INTR_EN__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B11_CMD_COMPLETE_INTR_EN__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B11_HANG_SELF_RECOVERED_INTR_EN__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B11_HANG_NEED_FLR_INTR_EN__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B11_VM_BUSY_TRANSITION_INTR_EN__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B8_CMD_COMPLETE_INTR_EN_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B8_HANG_SELF_RECOVERED_INTR_EN_MASK 0x00000002L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B8_HANG_NEED_FLR_INTR_EN_MASK 0x00000004L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B8_VM_BUSY_TRANSITION_INTR_EN_MASK 0x00000008L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B9_CMD_COMPLETE_INTR_EN_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B9_HANG_SELF_RECOVERED_INTR_EN_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B9_HANG_NEED_FLR_INTR_EN_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B9_VM_BUSY_TRANSITION_INTR_EN_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B10_CMD_COMPLETE_INTR_EN_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B10_HANG_SELF_RECOVERED_INTR_EN_MASK 0x00000200L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B10_HANG_NEED_FLR_INTR_EN_MASK 0x00000400L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B10_VM_BUSY_TRANSITION_INTR_EN_MASK 0x00000800L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B11_CMD_COMPLETE_INTR_EN_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B11_HANG_SELF_RECOVERED_INTR_EN_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B11_HANG_NEED_FLR_INTR_EN_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_ENABLE__ENGB_B11_VM_BUSY_TRANSITION_INTR_EN_MASK 0x00008000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A0_CMD_COMPLETE_INTR_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A0_HANG_SELF_RECOVERED_INTR_STATUS__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A0_HANG_NEED_FLR_INTR_STATUS__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A0_VM_BUSY_TRANSITION_INTR_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A1_CMD_COMPLETE_INTR_STATUS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A1_HANG_SELF_RECOVERED_INTR_STATUS__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A1_HANG_NEED_FLR_INTR_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A1_VM_BUSY_TRANSITION_INTR_STATUS__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A2_CMD_COMPLETE_INTR_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A2_HANG_SELF_RECOVERED_INTR_STATUS__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A2_HANG_NEED_FLR_INTR_STATUS__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A2_VM_BUSY_TRANSITION_INTR_STATUS__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A3_CMD_COMPLETE_INTR_STATUS__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A3_HANG_SELF_RECOVERED_INTR_STATUS__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A3_HANG_NEED_FLR_INTR_STATUS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A3_VM_BUSY_TRANSITION_INTR_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A4_CMD_COMPLETE_INTR_STATUS__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A4_HANG_SELF_RECOVERED_INTR_STATUS__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A4_HANG_NEED_FLR_INTR_STATUS__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A4_VM_BUSY_TRANSITION_INTR_STATUS__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A5_CMD_COMPLETE_INTR_STATUS__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A5_HANG_SELF_RECOVERED_INTR_STATUS__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A5_HANG_NEED_FLR_INTR_STATUS__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A5_VM_BUSY_TRANSITION_INTR_STATUS__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A6_CMD_COMPLETE_INTR_STATUS__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A6_HANG_SELF_RECOVERED_INTR_STATUS__SHIFT 0x19
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A6_HANG_NEED_FLR_INTR_STATUS__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A6_VM_BUSY_TRANSITION_INTR_STATUS__SHIFT 0x1b
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A7_CMD_COMPLETE_INTR_STATUS__SHIFT 0x1c
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A7_HANG_SELF_RECOVERED_INTR_STATUS__SHIFT 0x1d
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A7_HANG_NEED_FLR_INTR_STATUS__SHIFT 0x1e
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A7_VM_BUSY_TRANSITION_INTR_STATUS__SHIFT 0x1f
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A0_CMD_COMPLETE_INTR_STATUS_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A0_HANG_SELF_RECOVERED_INTR_STATUS_MASK 0x00000002L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A0_HANG_NEED_FLR_INTR_STATUS_MASK 0x00000004L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A0_VM_BUSY_TRANSITION_INTR_STATUS_MASK 0x00000008L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A1_CMD_COMPLETE_INTR_STATUS_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A1_HANG_SELF_RECOVERED_INTR_STATUS_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A1_HANG_NEED_FLR_INTR_STATUS_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A1_VM_BUSY_TRANSITION_INTR_STATUS_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A2_CMD_COMPLETE_INTR_STATUS_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A2_HANG_SELF_RECOVERED_INTR_STATUS_MASK 0x00000200L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A2_HANG_NEED_FLR_INTR_STATUS_MASK 0x00000400L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A2_VM_BUSY_TRANSITION_INTR_STATUS_MASK 0x00000800L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A3_CMD_COMPLETE_INTR_STATUS_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A3_HANG_SELF_RECOVERED_INTR_STATUS_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A3_HANG_NEED_FLR_INTR_STATUS_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A3_VM_BUSY_TRANSITION_INTR_STATUS_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A4_CMD_COMPLETE_INTR_STATUS_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A4_HANG_SELF_RECOVERED_INTR_STATUS_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A4_HANG_NEED_FLR_INTR_STATUS_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A4_VM_BUSY_TRANSITION_INTR_STATUS_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A5_CMD_COMPLETE_INTR_STATUS_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A5_HANG_SELF_RECOVERED_INTR_STATUS_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A5_HANG_NEED_FLR_INTR_STATUS_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A5_VM_BUSY_TRANSITION_INTR_STATUS_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A6_CMD_COMPLETE_INTR_STATUS_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A6_HANG_SELF_RECOVERED_INTR_STATUS_MASK 0x02000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A6_HANG_NEED_FLR_INTR_STATUS_MASK 0x04000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A6_VM_BUSY_TRANSITION_INTR_STATUS_MASK 0x08000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A7_CMD_COMPLETE_INTR_STATUS_MASK 0x10000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A7_HANG_SELF_RECOVERED_INTR_STATUS_MASK 0x20000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A7_HANG_NEED_FLR_INTR_STATUS_MASK 0x40000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A0_7_INTR_STATUS__ENGA_A7_VM_BUSY_TRANSITION_INTR_STATUS_MASK 0x80000000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGA_A8_15_INTR_STATUS
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B0_CMD_COMPLETE_INTR_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B0_HANG_SELF_RECOVERED_INTR_STATUS__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B0_HANG_NEED_FLR_INTR_STATUS__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B0_VM_BUSY_TRANSITION_INTR_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B1_CMD_COMPLETE_INTR_STATUS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B1_HANG_SELF_RECOVERED_INTR_STATUS__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B1_HANG_NEED_FLR_INTR_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B1_VM_BUSY_TRANSITION_INTR_STATUS__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B2_CMD_COMPLETE_INTR_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B2_HANG_SELF_RECOVERED_INTR_STATUS__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B2_HANG_NEED_FLR_INTR_STATUS__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B2_VM_BUSY_TRANSITION_INTR_STATUS__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B3_CMD_COMPLETE_INTR_STATUS__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B3_HANG_SELF_RECOVERED_INTR_STATUS__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B3_HANG_NEED_FLR_INTR_STATUS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B3_VM_BUSY_TRANSITION_INTR_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B4_CMD_COMPLETE_INTR_STATUS__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B4_HANG_SELF_RECOVERED_INTR_STATUS__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B4_HANG_NEED_FLR_INTR_STATUS__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B4_VM_BUSY_TRANSITION_INTR_STATUS__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B5_CMD_COMPLETE_INTR_STATUS__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B5_HANG_SELF_RECOVERED_INTR_STATUS__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B5_HANG_NEED_FLR_INTR_STATUS__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B5_VM_BUSY_TRANSITION_INTR_STATUS__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B6_CMD_COMPLETE_INTR_STATUS__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B6_HANG_SELF_RECOVERED_INTR_STATUS__SHIFT 0x19
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B6_HANG_NEED_FLR_INTR_STATUS__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B6_VM_BUSY_TRANSITION_INTR_STATUS__SHIFT 0x1b
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B7_CMD_COMPLETE_INTR_STATUS__SHIFT 0x1c
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B7_HANG_SELF_RECOVERED_INTR_STATUS__SHIFT 0x1d
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B7_HANG_NEED_FLR_INTR_STATUS__SHIFT 0x1e
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B7_VM_BUSY_TRANSITION_INTR_STATUS__SHIFT 0x1f
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B0_CMD_COMPLETE_INTR_STATUS_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B0_HANG_SELF_RECOVERED_INTR_STATUS_MASK 0x00000002L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B0_HANG_NEED_FLR_INTR_STATUS_MASK 0x00000004L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B0_VM_BUSY_TRANSITION_INTR_STATUS_MASK 0x00000008L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B1_CMD_COMPLETE_INTR_STATUS_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B1_HANG_SELF_RECOVERED_INTR_STATUS_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B1_HANG_NEED_FLR_INTR_STATUS_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B1_VM_BUSY_TRANSITION_INTR_STATUS_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B2_CMD_COMPLETE_INTR_STATUS_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B2_HANG_SELF_RECOVERED_INTR_STATUS_MASK 0x00000200L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B2_HANG_NEED_FLR_INTR_STATUS_MASK 0x00000400L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B2_VM_BUSY_TRANSITION_INTR_STATUS_MASK 0x00000800L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B3_CMD_COMPLETE_INTR_STATUS_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B3_HANG_SELF_RECOVERED_INTR_STATUS_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B3_HANG_NEED_FLR_INTR_STATUS_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B3_VM_BUSY_TRANSITION_INTR_STATUS_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B4_CMD_COMPLETE_INTR_STATUS_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B4_HANG_SELF_RECOVERED_INTR_STATUS_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B4_HANG_NEED_FLR_INTR_STATUS_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B4_VM_BUSY_TRANSITION_INTR_STATUS_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B5_CMD_COMPLETE_INTR_STATUS_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B5_HANG_SELF_RECOVERED_INTR_STATUS_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B5_HANG_NEED_FLR_INTR_STATUS_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B5_VM_BUSY_TRANSITION_INTR_STATUS_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B6_CMD_COMPLETE_INTR_STATUS_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B6_HANG_SELF_RECOVERED_INTR_STATUS_MASK 0x02000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B6_HANG_NEED_FLR_INTR_STATUS_MASK 0x04000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B6_VM_BUSY_TRANSITION_INTR_STATUS_MASK 0x08000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B7_CMD_COMPLETE_INTR_STATUS_MASK 0x10000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B7_HANG_SELF_RECOVERED_INTR_STATUS_MASK 0x20000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B7_HANG_NEED_FLR_INTR_STATUS_MASK 0x40000000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B0_7_INTR_STATUS__ENGB_B7_VM_BUSY_TRANSITION_INTR_STATUS_MASK 0x80000000L
+//BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B8_CMD_COMPLETE_INTR_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B8_HANG_SELF_RECOVERED_INTR_STATUS__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B8_HANG_NEED_FLR_INTR_STATUS__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B8_VM_BUSY_TRANSITION_INTR_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B9_CMD_COMPLETE_INTR_STATUS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B9_HANG_SELF_RECOVERED_INTR_STATUS__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B9_HANG_NEED_FLR_INTR_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B9_VM_BUSY_TRANSITION_INTR_STATUS__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B10_CMD_COMPLETE_INTR_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B10_HANG_SELF_RECOVERED_INTR_STATUS__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B10_HANG_NEED_FLR_INTR_STATUS__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B10_VM_BUSY_TRANSITION_INTR_STATUS__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B11_CMD_COMPLETE_INTR_STATUS__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B11_HANG_SELF_RECOVERED_INTR_STATUS__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B11_HANG_NEED_FLR_INTR_STATUS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B11_VM_BUSY_TRANSITION_INTR_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B8_CMD_COMPLETE_INTR_STATUS_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B8_HANG_SELF_RECOVERED_INTR_STATUS_MASK 0x00000002L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B8_HANG_NEED_FLR_INTR_STATUS_MASK 0x00000004L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B8_VM_BUSY_TRANSITION_INTR_STATUS_MASK 0x00000008L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B9_CMD_COMPLETE_INTR_STATUS_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B9_HANG_SELF_RECOVERED_INTR_STATUS_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B9_HANG_NEED_FLR_INTR_STATUS_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B9_VM_BUSY_TRANSITION_INTR_STATUS_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B10_CMD_COMPLETE_INTR_STATUS_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B10_HANG_SELF_RECOVERED_INTR_STATUS_MASK 0x00000200L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B10_HANG_NEED_FLR_INTR_STATUS_MASK 0x00000400L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B10_VM_BUSY_TRANSITION_INTR_STATUS_MASK 0x00000800L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B11_CMD_COMPLETE_INTR_STATUS_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B11_HANG_SELF_RECOVERED_INTR_STATUS_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B11_HANG_NEED_FLR_INTR_STATUS_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_0_PCIE_VENDOR_SPECIFIC_HDR_GPUIOV_ENGB_B8_15_INTR_STATUS__ENGB_B11_VM_BUSY_TRANSITION_INTR_STATUS_MASK 0x00008000L
+
+
+// addressBlock: aid_nbio_nbif0_bif_cfg_dev0_epf1_bifcfgdecp
+//BIF_CFG_DEV0_EPF1_0_VENDOR_ID
+#define BIF_CFG_DEV0_EPF1_0_VENDOR_ID__VENDOR_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_VENDOR_ID__VENDOR_ID_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF1_0_DEVICE_ID
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_ID__DEVICE_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_ID__DEVICE_ID_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF1_0_COMMAND
+#define BIF_CFG_DEV0_EPF1_0_COMMAND__IO_ACCESS_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_COMMAND__MEM_ACCESS_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF1_0_COMMAND__BUS_MASTER_EN__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF1_0_COMMAND__SPECIAL_CYCLE_EN__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF1_0_COMMAND__MEM_WRITE_INVALIDATE_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_0_COMMAND__PAL_SNOOP_EN__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF1_0_COMMAND__PARITY_ERROR_RESPONSE__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF1_0_COMMAND__AD_STEPPING__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF1_0_COMMAND__SERR_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_0_COMMAND__FAST_B2B_EN__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF1_0_COMMAND__INT_DIS__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF1_0_COMMAND__IO_ACCESS_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF1_0_COMMAND__MEM_ACCESS_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF1_0_COMMAND__BUS_MASTER_EN_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF1_0_COMMAND__SPECIAL_CYCLE_EN_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF1_0_COMMAND__MEM_WRITE_INVALIDATE_EN_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF1_0_COMMAND__PAL_SNOOP_EN_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF1_0_COMMAND__PARITY_ERROR_RESPONSE_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF1_0_COMMAND__AD_STEPPING_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF1_0_COMMAND__SERR_EN_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF1_0_COMMAND__FAST_B2B_EN_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF1_0_COMMAND__INT_DIS_MASK 0x0400L
+//BIF_CFG_DEV0_EPF1_0_STATUS
+#define BIF_CFG_DEV0_EPF1_0_STATUS__IMMEDIATE_READINESS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_STATUS__INT_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF1_0_STATUS__CAP_LIST__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_0_STATUS__PCI_66_CAP__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF1_0_STATUS__FAST_BACK_CAPABLE__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF1_0_STATUS__MASTER_DATA_PARITY_ERROR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_0_STATUS__DEVSEL_TIMING__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF1_0_STATUS__SIGNAL_TARGET_ABORT__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF1_0_STATUS__RECEIVED_TARGET_ABORT__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF1_0_STATUS__RECEIVED_MASTER_ABORT__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF1_0_STATUS__SIGNALED_SYSTEM_ERROR__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF1_0_STATUS__PARITY_ERROR_DETECTED__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF1_0_STATUS__IMMEDIATE_READINESS_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF1_0_STATUS__INT_STATUS_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF1_0_STATUS__CAP_LIST_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF1_0_STATUS__PCI_66_CAP_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF1_0_STATUS__FAST_BACK_CAPABLE_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF1_0_STATUS__MASTER_DATA_PARITY_ERROR_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF1_0_STATUS__DEVSEL_TIMING_MASK 0x0600L
+#define BIF_CFG_DEV0_EPF1_0_STATUS__SIGNAL_TARGET_ABORT_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF1_0_STATUS__RECEIVED_TARGET_ABORT_MASK 0x1000L
+#define BIF_CFG_DEV0_EPF1_0_STATUS__RECEIVED_MASTER_ABORT_MASK 0x2000L
+#define BIF_CFG_DEV0_EPF1_0_STATUS__SIGNALED_SYSTEM_ERROR_MASK 0x4000L
+#define BIF_CFG_DEV0_EPF1_0_STATUS__PARITY_ERROR_DETECTED_MASK 0x8000L
+//BIF_CFG_DEV0_EPF1_0_REVISION_ID
+#define BIF_CFG_DEV0_EPF1_0_REVISION_ID__MINOR_REV_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_REVISION_ID__MAJOR_REV_ID__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_0_REVISION_ID__MINOR_REV_ID_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF1_0_REVISION_ID__MAJOR_REV_ID_MASK 0xF0L
+//BIF_CFG_DEV0_EPF1_0_PROG_INTERFACE
+#define BIF_CFG_DEV0_EPF1_0_PROG_INTERFACE__PROG_INTERFACE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PROG_INTERFACE__PROG_INTERFACE_MASK 0xFFL
+//BIF_CFG_DEV0_EPF1_0_SUB_CLASS
+#define BIF_CFG_DEV0_EPF1_0_SUB_CLASS__SUB_CLASS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_SUB_CLASS__SUB_CLASS_MASK 0xFFL
+//BIF_CFG_DEV0_EPF1_0_BASE_CLASS
+#define BIF_CFG_DEV0_EPF1_0_BASE_CLASS__BASE_CLASS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_BASE_CLASS__BASE_CLASS_MASK 0xFFL
+//BIF_CFG_DEV0_EPF1_0_CACHE_LINE
+#define BIF_CFG_DEV0_EPF1_0_CACHE_LINE__CACHE_LINE_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_CACHE_LINE__CACHE_LINE_SIZE_MASK 0xFFL
+//BIF_CFG_DEV0_EPF1_0_LATENCY
+#define BIF_CFG_DEV0_EPF1_0_LATENCY__LATENCY_TIMER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_LATENCY__LATENCY_TIMER_MASK 0xFFL
+//BIF_CFG_DEV0_EPF1_0_HEADER
+#define BIF_CFG_DEV0_EPF1_0_HEADER__HEADER_TYPE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_HEADER__DEVICE_TYPE__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF1_0_HEADER__HEADER_TYPE_MASK 0x7FL
+#define BIF_CFG_DEV0_EPF1_0_HEADER__DEVICE_TYPE_MASK 0x80L
+//BIF_CFG_DEV0_EPF1_0_BIST
+#define BIF_CFG_DEV0_EPF1_0_BIST__BIST_COMP__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_BIST__BIST_STRT__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF1_0_BIST__BIST_CAP__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF1_0_BIST__BIST_COMP_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF1_0_BIST__BIST_STRT_MASK 0x40L
+#define BIF_CFG_DEV0_EPF1_0_BIST__BIST_CAP_MASK 0x80L
+//BIF_CFG_DEV0_EPF1_0_BASE_ADDR_1
+#define BIF_CFG_DEV0_EPF1_0_BASE_ADDR_1__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_BASE_ADDR_1__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF1_0_BASE_ADDR_2
+#define BIF_CFG_DEV0_EPF1_0_BASE_ADDR_2__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_BASE_ADDR_2__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF1_0_BASE_ADDR_3
+#define BIF_CFG_DEV0_EPF1_0_BASE_ADDR_3__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_BASE_ADDR_3__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF1_0_BASE_ADDR_4
+#define BIF_CFG_DEV0_EPF1_0_BASE_ADDR_4__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_BASE_ADDR_4__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF1_0_BASE_ADDR_5
+#define BIF_CFG_DEV0_EPF1_0_BASE_ADDR_5__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_BASE_ADDR_5__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF1_0_BASE_ADDR_6
+#define BIF_CFG_DEV0_EPF1_0_BASE_ADDR_6__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_BASE_ADDR_6__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF1_0_CARDBUS_CIS_PTR
+#define BIF_CFG_DEV0_EPF1_0_CARDBUS_CIS_PTR__CARDBUS_CIS_PTR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_CARDBUS_CIS_PTR__CARDBUS_CIS_PTR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF1_0_ADAPTER_ID
+#define BIF_CFG_DEV0_EPF1_0_ADAPTER_ID__SUBSYSTEM_VENDOR_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_ADAPTER_ID__SUBSYSTEM_ID__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_0_ADAPTER_ID__SUBSYSTEM_VENDOR_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF1_0_ADAPTER_ID__SUBSYSTEM_ID_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF1_0_ROM_BASE_ADDR
+#define BIF_CFG_DEV0_EPF1_0_ROM_BASE_ADDR__ROM_ENABLE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_ROM_BASE_ADDR__ROM_VALIDATION_STATUS__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF1_0_ROM_BASE_ADDR__ROM_VALIDATION_DETAILS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_0_ROM_BASE_ADDR__BASE_ADDR__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF1_0_ROM_BASE_ADDR__ROM_ENABLE_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF1_0_ROM_BASE_ADDR__ROM_VALIDATION_STATUS_MASK 0x0000000EL
+#define BIF_CFG_DEV0_EPF1_0_ROM_BASE_ADDR__ROM_VALIDATION_DETAILS_MASK 0x000000F0L
+#define BIF_CFG_DEV0_EPF1_0_ROM_BASE_ADDR__BASE_ADDR_MASK 0xFFFFF800L
+//BIF_CFG_DEV0_EPF1_0_CAP_PTR
+#define BIF_CFG_DEV0_EPF1_0_CAP_PTR__CAP_PTR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_CAP_PTR__CAP_PTR_MASK 0xFFL
+//BIF_CFG_DEV0_EPF1_0_INTERRUPT_LINE
+#define BIF_CFG_DEV0_EPF1_0_INTERRUPT_LINE__INTERRUPT_LINE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_INTERRUPT_LINE__INTERRUPT_LINE_MASK 0xFFL
+//BIF_CFG_DEV0_EPF1_0_INTERRUPT_PIN
+#define BIF_CFG_DEV0_EPF1_0_INTERRUPT_PIN__INTERRUPT_PIN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_INTERRUPT_PIN__INTERRUPT_PIN_MASK 0xFFL
+//BIF_CFG_DEV0_EPF1_0_MIN_GRANT
+#define BIF_CFG_DEV0_EPF1_0_MIN_GRANT__MIN_GNT__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_MIN_GRANT__MIN_GNT_MASK 0xFFL
+//BIF_CFG_DEV0_EPF1_0_MAX_LATENCY
+#define BIF_CFG_DEV0_EPF1_0_MAX_LATENCY__MAX_LAT__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_MAX_LATENCY__MAX_LAT_MASK 0xFFL
+//BIF_CFG_DEV0_EPF1_0_VENDOR_CAP_LIST
+#define BIF_CFG_DEV0_EPF1_0_VENDOR_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_VENDOR_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_0_VENDOR_CAP_LIST__LENGTH__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_0_VENDOR_CAP_LIST__CAP_ID_MASK 0x000000FFL
+#define BIF_CFG_DEV0_EPF1_0_VENDOR_CAP_LIST__NEXT_PTR_MASK 0x0000FF00L
+#define BIF_CFG_DEV0_EPF1_0_VENDOR_CAP_LIST__LENGTH_MASK 0x00FF0000L
+//BIF_CFG_DEV0_EPF1_0_ADAPTER_ID_W
+#define BIF_CFG_DEV0_EPF1_0_ADAPTER_ID_W__SUBSYSTEM_VENDOR_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_ADAPTER_ID_W__SUBSYSTEM_ID__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_0_ADAPTER_ID_W__SUBSYSTEM_VENDOR_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF1_0_ADAPTER_ID_W__SUBSYSTEM_ID_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF1_0_PMI_CAP_LIST
+#define BIF_CFG_DEV0_EPF1_0_PMI_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PMI_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_0_PMI_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_EPF1_0_PMI_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF1_0_PMI_CAP
+#define BIF_CFG_DEV0_EPF1_0_PMI_CAP__VERSION__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PMI_CAP__PME_CLOCK__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF1_0_PMI_CAP__IMMEDIATE_READINESS_ON_RETURN_TO_D0__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_0_PMI_CAP__DEV_SPECIFIC_INIT__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF1_0_PMI_CAP__AUX_CURRENT__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF1_0_PMI_CAP__D1_SUPPORT__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF1_0_PMI_CAP__D2_SUPPORT__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF1_0_PMI_CAP__PME_SUPPORT__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF1_0_PMI_CAP__VERSION_MASK 0x0007L
+#define BIF_CFG_DEV0_EPF1_0_PMI_CAP__PME_CLOCK_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF1_0_PMI_CAP__IMMEDIATE_READINESS_ON_RETURN_TO_D0_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF1_0_PMI_CAP__DEV_SPECIFIC_INIT_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF1_0_PMI_CAP__AUX_CURRENT_MASK 0x01C0L
+#define BIF_CFG_DEV0_EPF1_0_PMI_CAP__D1_SUPPORT_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF1_0_PMI_CAP__D2_SUPPORT_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF1_0_PMI_CAP__PME_SUPPORT_MASK 0xF800L
+//BIF_CFG_DEV0_EPF1_0_PMI_STATUS_CNTL
+#define BIF_CFG_DEV0_EPF1_0_PMI_STATUS_CNTL__POWER_STATE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PMI_STATUS_CNTL__NO_SOFT_RESET__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF1_0_PMI_STATUS_CNTL__PME_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_0_PMI_STATUS_CNTL__DATA_SELECT__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF1_0_PMI_STATUS_CNTL__DATA_SCALE__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF1_0_PMI_STATUS_CNTL__PME_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF1_0_PMI_STATUS_CNTL__B2_B3_SUPPORT__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF1_0_PMI_STATUS_CNTL__BUS_PWR_EN__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF1_0_PMI_STATUS_CNTL__PMI_DATA__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF1_0_PMI_STATUS_CNTL__POWER_STATE_MASK 0x00000003L
+#define BIF_CFG_DEV0_EPF1_0_PMI_STATUS_CNTL__NO_SOFT_RESET_MASK 0x00000008L
+#define BIF_CFG_DEV0_EPF1_0_PMI_STATUS_CNTL__PME_EN_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF1_0_PMI_STATUS_CNTL__DATA_SELECT_MASK 0x00001E00L
+#define BIF_CFG_DEV0_EPF1_0_PMI_STATUS_CNTL__DATA_SCALE_MASK 0x00006000L
+#define BIF_CFG_DEV0_EPF1_0_PMI_STATUS_CNTL__PME_STATUS_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF1_0_PMI_STATUS_CNTL__B2_B3_SUPPORT_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF1_0_PMI_STATUS_CNTL__BUS_PWR_EN_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF1_0_PMI_STATUS_CNTL__PMI_DATA_MASK 0xFF000000L
+//BIF_CFG_DEV0_EPF1_0_PCIE_CAP_LIST
+#define BIF_CFG_DEV0_EPF1_0_PCIE_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_0_PCIE_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_EPF1_0_PCIE_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF1_0_PCIE_CAP
+#define BIF_CFG_DEV0_EPF1_0_PCIE_CAP__VERSION__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_CAP__DEVICE_TYPE__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_0_PCIE_CAP__SLOT_IMPLEMENTED__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_0_PCIE_CAP__INT_MESSAGE_NUM__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF1_0_PCIE_CAP__VERSION_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF1_0_PCIE_CAP__DEVICE_TYPE_MASK 0x00F0L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_CAP__SLOT_IMPLEMENTED_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_CAP__INT_MESSAGE_NUM_MASK 0x3E00L
+//BIF_CFG_DEV0_EPF1_0_DEVICE_CAP
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP__MAX_PAYLOAD_SUPPORT__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP__PHANTOM_FUNC__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP__EXTENDED_TAG__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP__L0S_ACCEPTABLE_LATENCY__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP__L1_ACCEPTABLE_LATENCY__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP__ROLE_BASED_ERR_REPORTING__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP__ERR_COR_SUBCLASS_CAPABLE__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP__CAPTURED_SLOT_POWER_LIMIT__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP__CAPTURED_SLOT_POWER_SCALE__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP__FLR_CAPABLE__SHIFT 0x1c
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP__MAX_PAYLOAD_SUPPORT_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP__PHANTOM_FUNC_MASK 0x00000018L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP__EXTENDED_TAG_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP__L0S_ACCEPTABLE_LATENCY_MASK 0x000001C0L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP__L1_ACCEPTABLE_LATENCY_MASK 0x00000E00L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP__ROLE_BASED_ERR_REPORTING_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP__ERR_COR_SUBCLASS_CAPABLE_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP__CAPTURED_SLOT_POWER_LIMIT_MASK 0x03FC0000L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP__CAPTURED_SLOT_POWER_SCALE_MASK 0x0C000000L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP__FLR_CAPABLE_MASK 0x10000000L
+//BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL__CORR_ERR_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL__NON_FATAL_ERR_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL__FATAL_ERR_EN__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL__USR_REPORT_EN__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL__RELAXED_ORD_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL__MAX_PAYLOAD_SIZE__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL__EXTENDED_TAG_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL__PHANTOM_FUNC_EN__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL__AUX_POWER_PM_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL__NO_SNOOP_EN__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL__MAX_READ_REQUEST_SIZE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL__INITIATE_FLR__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL__CORR_ERR_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL__NON_FATAL_ERR_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL__FATAL_ERR_EN_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL__USR_REPORT_EN_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL__RELAXED_ORD_EN_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL__MAX_PAYLOAD_SIZE_MASK 0x00E0L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL__EXTENDED_TAG_EN_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL__PHANTOM_FUNC_EN_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL__AUX_POWER_PM_EN_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL__NO_SNOOP_EN_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL__MAX_READ_REQUEST_SIZE_MASK 0x7000L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL__INITIATE_FLR_MASK 0x8000L
+//BIF_CFG_DEV0_EPF1_0_DEVICE_STATUS
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_STATUS__CORR_ERR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_STATUS__NON_FATAL_ERR__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_STATUS__FATAL_ERR__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_STATUS__USR_DETECTED__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_STATUS__AUX_PWR__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_STATUS__TRANSACTIONS_PEND__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_STATUS__EMER_POWER_REDUCTION_DETECTED__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_STATUS__CORR_ERR_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_STATUS__NON_FATAL_ERR_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_STATUS__FATAL_ERR_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_STATUS__USR_DETECTED_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_STATUS__AUX_PWR_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_STATUS__TRANSACTIONS_PEND_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_STATUS__EMER_POWER_REDUCTION_DETECTED_MASK 0x0040L
+//BIF_CFG_DEV0_EPF1_0_LINK_CAP
+#define BIF_CFG_DEV0_EPF1_0_LINK_CAP__LINK_SPEED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_LINK_CAP__LINK_WIDTH__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_0_LINK_CAP__PM_SUPPORT__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF1_0_LINK_CAP__L0S_EXIT_LATENCY__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF1_0_LINK_CAP__L1_EXIT_LATENCY__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF1_0_LINK_CAP__CLOCK_POWER_MANAGEMENT__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF1_0_LINK_CAP__SURPRISE_DOWN_ERR_REPORTING__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF1_0_LINK_CAP__DL_ACTIVE_REPORTING_CAPABLE__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF1_0_LINK_CAP__LINK_BW_NOTIFICATION_CAP__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF1_0_LINK_CAP__ASPM_OPTIONALITY_COMPLIANCE__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF1_0_LINK_CAP__PORT_NUMBER__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF1_0_LINK_CAP__LINK_SPEED_MASK 0x0000000FL
+#define BIF_CFG_DEV0_EPF1_0_LINK_CAP__LINK_WIDTH_MASK 0x000003F0L
+#define BIF_CFG_DEV0_EPF1_0_LINK_CAP__PM_SUPPORT_MASK 0x00000C00L
+#define BIF_CFG_DEV0_EPF1_0_LINK_CAP__L0S_EXIT_LATENCY_MASK 0x00007000L
+#define BIF_CFG_DEV0_EPF1_0_LINK_CAP__L1_EXIT_LATENCY_MASK 0x00038000L
+#define BIF_CFG_DEV0_EPF1_0_LINK_CAP__CLOCK_POWER_MANAGEMENT_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF1_0_LINK_CAP__SURPRISE_DOWN_ERR_REPORTING_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF1_0_LINK_CAP__DL_ACTIVE_REPORTING_CAPABLE_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF1_0_LINK_CAP__LINK_BW_NOTIFICATION_CAP_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF1_0_LINK_CAP__ASPM_OPTIONALITY_COMPLIANCE_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF1_0_LINK_CAP__PORT_NUMBER_MASK 0xFF000000L
+//BIF_CFG_DEV0_EPF1_0_LINK_CNTL
+#define BIF_CFG_DEV0_EPF1_0_LINK_CNTL__PM_CONTROL__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_LINK_CNTL__PTM_PROP_DELAY_ADAPT_INTER_B__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF1_0_LINK_CNTL__READ_CPL_BOUNDARY__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF1_0_LINK_CNTL__LINK_DIS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_0_LINK_CNTL__RETRAIN_LINK__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF1_0_LINK_CNTL__COMMON_CLOCK_CFG__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF1_0_LINK_CNTL__EXTENDED_SYNC__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF1_0_LINK_CNTL__CLOCK_POWER_MANAGEMENT_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_0_LINK_CNTL__HW_AUTONOMOUS_WIDTH_DISABLE__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF1_0_LINK_CNTL__LINK_BW_MANAGEMENT_INT_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF1_0_LINK_CNTL__LINK_AUTONOMOUS_BW_INT_EN__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF1_0_LINK_CNTL__DRS_SIGNALING_CONTROL__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF1_0_LINK_CNTL__PM_CONTROL_MASK 0x0003L
+#define BIF_CFG_DEV0_EPF1_0_LINK_CNTL__PTM_PROP_DELAY_ADAPT_INTER_B_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF1_0_LINK_CNTL__READ_CPL_BOUNDARY_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF1_0_LINK_CNTL__LINK_DIS_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF1_0_LINK_CNTL__RETRAIN_LINK_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF1_0_LINK_CNTL__COMMON_CLOCK_CFG_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF1_0_LINK_CNTL__EXTENDED_SYNC_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF1_0_LINK_CNTL__CLOCK_POWER_MANAGEMENT_EN_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF1_0_LINK_CNTL__HW_AUTONOMOUS_WIDTH_DISABLE_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF1_0_LINK_CNTL__LINK_BW_MANAGEMENT_INT_EN_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF1_0_LINK_CNTL__LINK_AUTONOMOUS_BW_INT_EN_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF1_0_LINK_CNTL__DRS_SIGNALING_CONTROL_MASK 0xC000L
+//BIF_CFG_DEV0_EPF1_0_LINK_STATUS
+#define BIF_CFG_DEV0_EPF1_0_LINK_STATUS__CURRENT_LINK_SPEED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_LINK_STATUS__NEGOTIATED_LINK_WIDTH__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_0_LINK_STATUS__LINK_TRAINING__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF1_0_LINK_STATUS__SLOT_CLOCK_CFG__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF1_0_LINK_STATUS__DL_ACTIVE__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF1_0_LINK_STATUS__LINK_BW_MANAGEMENT_STATUS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF1_0_LINK_STATUS__LINK_AUTONOMOUS_BW_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF1_0_LINK_STATUS__CURRENT_LINK_SPEED_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF1_0_LINK_STATUS__NEGOTIATED_LINK_WIDTH_MASK 0x03F0L
+#define BIF_CFG_DEV0_EPF1_0_LINK_STATUS__LINK_TRAINING_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF1_0_LINK_STATUS__SLOT_CLOCK_CFG_MASK 0x1000L
+#define BIF_CFG_DEV0_EPF1_0_LINK_STATUS__DL_ACTIVE_MASK 0x2000L
+#define BIF_CFG_DEV0_EPF1_0_LINK_STATUS__LINK_BW_MANAGEMENT_STATUS_MASK 0x4000L
+#define BIF_CFG_DEV0_EPF1_0_LINK_STATUS__LINK_AUTONOMOUS_BW_STATUS_MASK 0x8000L
+//BIF_CFG_DEV0_EPF1_0_DEVICE_CAP2
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP2__CPL_TIMEOUT_RANGE_SUPPORTED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP2__CPL_TIMEOUT_DIS_SUPPORTED__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP2__ARI_FORWARDING_SUPPORTED__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP2__ATOMICOP_ROUTING_SUPPORTED__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP2__ATOMICOP_32CMPLT_SUPPORTED__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP2__ATOMICOP_64CMPLT_SUPPORTED__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP2__CAS128_CMPLT_SUPPORTED__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP2__NO_RO_ENABLED_P2P_PASSING__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP2__LTR_SUPPORTED__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP2__TPH_CPLR_SUPPORTED__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP2__LN_SYSTEM_CLS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP2__TEN_BIT_TAG_COMPLETER_SUPPORTED__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP2__TEN_BIT_TAG_REQUESTER_SUPPORTED__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP2__OBFF_SUPPORTED__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP2__EXTENDED_FMT_FIELD_SUPPORTED__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP2__END_END_TLP_PREFIX_SUPPORTED__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP2__MAX_END_END_TLP_PREFIXES__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP2__EMER_POWER_REDUCTION_SUPPORTED__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP2__EMER_POWER_REDUCTION_INIT_REQ__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP2__FRS_SUPPORTED__SHIFT 0x1f
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP2__CPL_TIMEOUT_RANGE_SUPPORTED_MASK 0x0000000FL
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP2__CPL_TIMEOUT_DIS_SUPPORTED_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP2__ARI_FORWARDING_SUPPORTED_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP2__ATOMICOP_ROUTING_SUPPORTED_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP2__ATOMICOP_32CMPLT_SUPPORTED_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP2__ATOMICOP_64CMPLT_SUPPORTED_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP2__CAS128_CMPLT_SUPPORTED_MASK 0x00000200L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP2__NO_RO_ENABLED_P2P_PASSING_MASK 0x00000400L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP2__LTR_SUPPORTED_MASK 0x00000800L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP2__TPH_CPLR_SUPPORTED_MASK 0x00003000L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP2__LN_SYSTEM_CLS_MASK 0x0000C000L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP2__TEN_BIT_TAG_COMPLETER_SUPPORTED_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP2__TEN_BIT_TAG_REQUESTER_SUPPORTED_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP2__OBFF_SUPPORTED_MASK 0x000C0000L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP2__EXTENDED_FMT_FIELD_SUPPORTED_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP2__END_END_TLP_PREFIX_SUPPORTED_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP2__MAX_END_END_TLP_PREFIXES_MASK 0x00C00000L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP2__EMER_POWER_REDUCTION_SUPPORTED_MASK 0x03000000L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP2__EMER_POWER_REDUCTION_INIT_REQ_MASK 0x04000000L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CAP2__FRS_SUPPORTED_MASK 0x80000000L
+//BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL2
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL2__CPL_TIMEOUT_VALUE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL2__CPL_TIMEOUT_DIS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL2__ARI_FORWARDING_EN__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL2__ATOMICOP_REQUEST_EN__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL2__ATOMICOP_EGRESS_BLOCKING__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL2__IDO_REQUEST_ENABLE__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL2__IDO_COMPLETION_ENABLE__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL2__LTR_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL2__EMER_POWER_REDUCTION_REQUEST__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL2__TEN_BIT_TAG_REQUESTER_ENABLE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL2__OBFF_EN__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL2__END_END_TLP_PREFIX_BLOCKING__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL2__CPL_TIMEOUT_VALUE_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL2__CPL_TIMEOUT_DIS_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL2__ARI_FORWARDING_EN_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL2__ATOMICOP_REQUEST_EN_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL2__ATOMICOP_EGRESS_BLOCKING_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL2__IDO_REQUEST_ENABLE_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL2__IDO_COMPLETION_ENABLE_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL2__LTR_EN_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL2__EMER_POWER_REDUCTION_REQUEST_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL2__TEN_BIT_TAG_REQUESTER_ENABLE_MASK 0x1000L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL2__OBFF_EN_MASK 0x6000L
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_CNTL2__END_END_TLP_PREFIX_BLOCKING_MASK 0x8000L
+//BIF_CFG_DEV0_EPF1_0_DEVICE_STATUS2
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_STATUS2__RESERVED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_DEVICE_STATUS2__RESERVED_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF1_0_LINK_CAP2
+#define BIF_CFG_DEV0_EPF1_0_LINK_CAP2__SUPPORTED_LINK_SPEED__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF1_0_LINK_CAP2__CROSSLINK_SUPPORTED__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_0_LINK_CAP2__LOWER_SKP_OS_GEN_SUPPORT__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF1_0_LINK_CAP2__LOWER_SKP_OS_RCV_SUPPORT__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_0_LINK_CAP2__RTM1_PRESENCE_DET_SUPPORT__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF1_0_LINK_CAP2__RTM2_PRESENCE_DET_SUPPORT__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF1_0_LINK_CAP2__DRS_SUPPORTED__SHIFT 0x1f
+#define BIF_CFG_DEV0_EPF1_0_LINK_CAP2__SUPPORTED_LINK_SPEED_MASK 0x000000FEL
+#define BIF_CFG_DEV0_EPF1_0_LINK_CAP2__CROSSLINK_SUPPORTED_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF1_0_LINK_CAP2__LOWER_SKP_OS_GEN_SUPPORT_MASK 0x0000FE00L
+#define BIF_CFG_DEV0_EPF1_0_LINK_CAP2__LOWER_SKP_OS_RCV_SUPPORT_MASK 0x007F0000L
+#define BIF_CFG_DEV0_EPF1_0_LINK_CAP2__RTM1_PRESENCE_DET_SUPPORT_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF1_0_LINK_CAP2__RTM2_PRESENCE_DET_SUPPORT_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF1_0_LINK_CAP2__DRS_SUPPORTED_MASK 0x80000000L
+//BIF_CFG_DEV0_EPF1_0_LINK_CNTL2
+#define BIF_CFG_DEV0_EPF1_0_LINK_CNTL2__TARGET_LINK_SPEED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_LINK_CNTL2__ENTER_COMPLIANCE__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_0_LINK_CNTL2__HW_AUTONOMOUS_SPEED_DISABLE__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF1_0_LINK_CNTL2__SELECTABLE_DEEMPHASIS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF1_0_LINK_CNTL2__XMIT_MARGIN__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF1_0_LINK_CNTL2__ENTER_MOD_COMPLIANCE__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF1_0_LINK_CNTL2__COMPLIANCE_SOS__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF1_0_LINK_CNTL2__COMPLIANCE_DEEMPHASIS__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF1_0_LINK_CNTL2__TARGET_LINK_SPEED_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF1_0_LINK_CNTL2__ENTER_COMPLIANCE_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF1_0_LINK_CNTL2__HW_AUTONOMOUS_SPEED_DISABLE_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF1_0_LINK_CNTL2__SELECTABLE_DEEMPHASIS_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF1_0_LINK_CNTL2__XMIT_MARGIN_MASK 0x0380L
+#define BIF_CFG_DEV0_EPF1_0_LINK_CNTL2__ENTER_MOD_COMPLIANCE_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF1_0_LINK_CNTL2__COMPLIANCE_SOS_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF1_0_LINK_CNTL2__COMPLIANCE_DEEMPHASIS_MASK 0xF000L
+//BIF_CFG_DEV0_EPF1_0_LINK_STATUS2
+#define BIF_CFG_DEV0_EPF1_0_LINK_STATUS2__CUR_DEEMPHASIS_LEVEL__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_LINK_STATUS2__EQUALIZATION_COMPLETE_8GT__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF1_0_LINK_STATUS2__EQUALIZATION_PHASE1_SUCCESS_8GT__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF1_0_LINK_STATUS2__EQUALIZATION_PHASE2_SUCCESS_8GT__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF1_0_LINK_STATUS2__EQUALIZATION_PHASE3_SUCCESS_8GT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_0_LINK_STATUS2__LINK_EQUALIZATION_REQUEST_8GT__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF1_0_LINK_STATUS2__RTM1_PRESENCE_DET__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF1_0_LINK_STATUS2__RTM2_PRESENCE_DET__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF1_0_LINK_STATUS2__CROSSLINK_RESOLUTION__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_0_LINK_STATUS2__DOWNSTREAM_COMPONENT_PRESENCE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF1_0_LINK_STATUS2__DRS_MESSAGE_RECEIVED__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF1_0_LINK_STATUS2__CUR_DEEMPHASIS_LEVEL_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF1_0_LINK_STATUS2__EQUALIZATION_COMPLETE_8GT_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF1_0_LINK_STATUS2__EQUALIZATION_PHASE1_SUCCESS_8GT_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF1_0_LINK_STATUS2__EQUALIZATION_PHASE2_SUCCESS_8GT_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF1_0_LINK_STATUS2__EQUALIZATION_PHASE3_SUCCESS_8GT_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF1_0_LINK_STATUS2__LINK_EQUALIZATION_REQUEST_8GT_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF1_0_LINK_STATUS2__RTM1_PRESENCE_DET_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF1_0_LINK_STATUS2__RTM2_PRESENCE_DET_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF1_0_LINK_STATUS2__CROSSLINK_RESOLUTION_MASK 0x0300L
+#define BIF_CFG_DEV0_EPF1_0_LINK_STATUS2__DOWNSTREAM_COMPONENT_PRESENCE_MASK 0x7000L
+#define BIF_CFG_DEV0_EPF1_0_LINK_STATUS2__DRS_MESSAGE_RECEIVED_MASK 0x8000L
+//BIF_CFG_DEV0_EPF1_0_MSI_CAP_LIST
+#define BIF_CFG_DEV0_EPF1_0_MSI_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_MSI_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_0_MSI_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_EPF1_0_MSI_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF1_0_MSI_MSG_CNTL
+#define BIF_CFG_DEV0_EPF1_0_MSI_MSG_CNTL__MSI_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_MSI_MSG_CNTL__MSI_MULTI_CAP__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF1_0_MSI_MSG_CNTL__MSI_MULTI_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_0_MSI_MSG_CNTL__MSI_64BIT__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF1_0_MSI_MSG_CNTL__MSI_PERVECTOR_MASKING_CAP__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_0_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_CAP__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF1_0_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF1_0_MSI_MSG_CNTL__MSI_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF1_0_MSI_MSG_CNTL__MSI_MULTI_CAP_MASK 0x000EL
+#define BIF_CFG_DEV0_EPF1_0_MSI_MSG_CNTL__MSI_MULTI_EN_MASK 0x0070L
+#define BIF_CFG_DEV0_EPF1_0_MSI_MSG_CNTL__MSI_64BIT_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF1_0_MSI_MSG_CNTL__MSI_PERVECTOR_MASKING_CAP_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF1_0_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_CAP_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF1_0_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_EN_MASK 0x0400L
+//BIF_CFG_DEV0_EPF1_0_MSI_MSG_ADDR_LO
+#define BIF_CFG_DEV0_EPF1_0_MSI_MSG_ADDR_LO__MSI_MSG_ADDR_LO__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF1_0_MSI_MSG_ADDR_LO__MSI_MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//BIF_CFG_DEV0_EPF1_0_MSI_MSG_ADDR_HI
+#define BIF_CFG_DEV0_EPF1_0_MSI_MSG_ADDR_HI__MSI_MSG_ADDR_HI__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_MSI_MSG_ADDR_HI__MSI_MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF1_0_MSI_MSG_DATA
+#define BIF_CFG_DEV0_EPF1_0_MSI_MSG_DATA__MSI_DATA__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_MSI_MSG_DATA__MSI_DATA_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF1_0_MSI_EXT_MSG_DATA
+#define BIF_CFG_DEV0_EPF1_0_MSI_EXT_MSG_DATA__MSI_EXT_DATA__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_MSI_EXT_MSG_DATA__MSI_EXT_DATA_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF1_0_MSI_MASK
+#define BIF_CFG_DEV0_EPF1_0_MSI_MASK__MSI_MASK__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_MSI_MASK__MSI_MASK_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF1_0_MSI_MSG_DATA_64
+#define BIF_CFG_DEV0_EPF1_0_MSI_MSG_DATA_64__MSI_DATA_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_MSI_MSG_DATA_64__MSI_DATA_64_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF1_0_MSI_EXT_MSG_DATA_64
+#define BIF_CFG_DEV0_EPF1_0_MSI_EXT_MSG_DATA_64__MSI_EXT_DATA_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_MSI_EXT_MSG_DATA_64__MSI_EXT_DATA_64_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF1_0_MSI_MASK_64
+#define BIF_CFG_DEV0_EPF1_0_MSI_MASK_64__MSI_MASK_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_MSI_MASK_64__MSI_MASK_64_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF1_0_MSI_PENDING
+#define BIF_CFG_DEV0_EPF1_0_MSI_PENDING__MSI_PENDING__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_MSI_PENDING__MSI_PENDING_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF1_0_MSI_PENDING_64
+#define BIF_CFG_DEV0_EPF1_0_MSI_PENDING_64__MSI_PENDING_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_MSI_PENDING_64__MSI_PENDING_64_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF1_0_MSIX_CAP_LIST
+#define BIF_CFG_DEV0_EPF1_0_MSIX_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_MSIX_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_0_MSIX_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_EPF1_0_MSIX_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF1_0_MSIX_MSG_CNTL
+#define BIF_CFG_DEV0_EPF1_0_MSIX_MSG_CNTL__MSIX_TABLE_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_MSIX_MSG_CNTL__MSIX_FUNC_MASK__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF1_0_MSIX_MSG_CNTL__MSIX_EN__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF1_0_MSIX_MSG_CNTL__MSIX_TABLE_SIZE_MASK 0x07FFL
+#define BIF_CFG_DEV0_EPF1_0_MSIX_MSG_CNTL__MSIX_FUNC_MASK_MASK 0x4000L
+#define BIF_CFG_DEV0_EPF1_0_MSIX_MSG_CNTL__MSIX_EN_MASK 0x8000L
+//BIF_CFG_DEV0_EPF1_0_MSIX_TABLE
+#define BIF_CFG_DEV0_EPF1_0_MSIX_TABLE__MSIX_TABLE_BIR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_MSIX_TABLE__MSIX_TABLE_OFFSET__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF1_0_MSIX_TABLE__MSIX_TABLE_BIR_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF1_0_MSIX_TABLE__MSIX_TABLE_OFFSET_MASK 0xFFFFFFF8L
+//BIF_CFG_DEV0_EPF1_0_MSIX_PBA
+#define BIF_CFG_DEV0_EPF1_0_MSIX_PBA__MSIX_PBA_BIR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_MSIX_PBA__MSIX_PBA_OFFSET__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF1_0_MSIX_PBA__MSIX_PBA_BIR_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF1_0_MSIX_PBA__MSIX_PBA_OFFSET_MASK 0xFFFFFFF8L
+//BIF_CFG_DEV0_EPF1_0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF1_0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF1_0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF1_0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF1_0_PCIE_VENDOR_SPECIFIC_HDR
+#define BIF_CFG_DEV0_EPF1_0_PCIE_VENDOR_SPECIFIC_HDR__VSEC_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_VENDOR_SPECIFIC_HDR__VSEC_REV__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_0_PCIE_VENDOR_SPECIFIC_HDR__VSEC_LENGTH__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF1_0_PCIE_VENDOR_SPECIFIC_HDR__VSEC_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF1_0_PCIE_VENDOR_SPECIFIC_HDR__VSEC_REV_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_VENDOR_SPECIFIC_HDR__VSEC_LENGTH_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF1_0_PCIE_VENDOR_SPECIFIC1
+#define BIF_CFG_DEV0_EPF1_0_PCIE_VENDOR_SPECIFIC1__SCRATCH__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_VENDOR_SPECIFIC1__SCRATCH_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF1_0_PCIE_VENDOR_SPECIFIC2
+#define BIF_CFG_DEV0_EPF1_0_PCIE_VENDOR_SPECIFIC2__SCRATCH__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_VENDOR_SPECIFIC2__SCRATCH_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF1_0_PCIE_ADV_ERR_RPT_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_STATUS
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_STATUS__DLP_ERR_STATUS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_STATUS__SURPDN_ERR_STATUS__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_STATUS__PSN_ERR_STATUS__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_STATUS__FC_ERR_STATUS__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_STATUS__CPL_TIMEOUT_STATUS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_STATUS__CPL_ABORT_ERR_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_STATUS__UNEXP_CPL_STATUS__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_STATUS__RCV_OVFL_STATUS__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_STATUS__MAL_TLP_STATUS__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_STATUS__ECRC_ERR_STATUS__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_STATUS__UNSUPP_REQ_ERR_STATUS__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_STATUS__ACS_VIOLATION_STATUS__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_STATUS__UNCORR_INT_ERR_STATUS__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_STATUS__MC_BLOCKED_TLP_STATUS__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_STATUS__ATOMICOP_EGRESS_BLOCKED_STATUS__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_STATUS__TLP_PREFIX_BLOCKED_ERR_STATUS__SHIFT 0x19
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_STATUS__POISONED_TLP_EGRESS_BLOCKED_STATUS__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_STATUS__DLP_ERR_STATUS_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_STATUS__SURPDN_ERR_STATUS_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_STATUS__PSN_ERR_STATUS_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_STATUS__FC_ERR_STATUS_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_STATUS__CPL_TIMEOUT_STATUS_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_STATUS__CPL_ABORT_ERR_STATUS_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_STATUS__UNEXP_CPL_STATUS_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_STATUS__RCV_OVFL_STATUS_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_STATUS__MAL_TLP_STATUS_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_STATUS__ECRC_ERR_STATUS_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_STATUS__UNSUPP_REQ_ERR_STATUS_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_STATUS__ACS_VIOLATION_STATUS_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_STATUS__UNCORR_INT_ERR_STATUS_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_STATUS__MC_BLOCKED_TLP_STATUS_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_STATUS__ATOMICOP_EGRESS_BLOCKED_STATUS_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_STATUS__TLP_PREFIX_BLOCKED_ERR_STATUS_MASK 0x02000000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_STATUS__POISONED_TLP_EGRESS_BLOCKED_STATUS_MASK 0x04000000L
+//BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_MASK
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_MASK__DLP_ERR_MASK__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_MASK__SURPDN_ERR_MASK__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_MASK__PSN_ERR_MASK__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_MASK__FC_ERR_MASK__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_MASK__CPL_TIMEOUT_MASK__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_MASK__CPL_ABORT_ERR_MASK__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_MASK__UNEXP_CPL_MASK__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_MASK__RCV_OVFL_MASK__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_MASK__MAL_TLP_MASK__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_MASK__ECRC_ERR_MASK__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_MASK__UNSUPP_REQ_ERR_MASK__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_MASK__ACS_VIOLATION_MASK__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_MASK__UNCORR_INT_ERR_MASK__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_MASK__MC_BLOCKED_TLP_MASK__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_MASK__ATOMICOP_EGRESS_BLOCKED_MASK__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_MASK__TLP_PREFIX_BLOCKED_ERR_MASK__SHIFT 0x19
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_MASK__POISONED_TLP_EGRESS_BLOCKED_MASK__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_MASK__DLP_ERR_MASK_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_MASK__SURPDN_ERR_MASK_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_MASK__PSN_ERR_MASK_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_MASK__FC_ERR_MASK_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_MASK__CPL_TIMEOUT_MASK_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_MASK__CPL_ABORT_ERR_MASK_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_MASK__UNEXP_CPL_MASK_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_MASK__RCV_OVFL_MASK_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_MASK__MAL_TLP_MASK_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_MASK__ECRC_ERR_MASK_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_MASK__UNSUPP_REQ_ERR_MASK_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_MASK__ACS_VIOLATION_MASK_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_MASK__UNCORR_INT_ERR_MASK_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_MASK__MC_BLOCKED_TLP_MASK_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_MASK__ATOMICOP_EGRESS_BLOCKED_MASK_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_MASK__TLP_PREFIX_BLOCKED_ERR_MASK_MASK 0x02000000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_MASK__POISONED_TLP_EGRESS_BLOCKED_MASK_MASK 0x04000000L
+//BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_SEVERITY
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_SEVERITY__DLP_ERR_SEVERITY__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_SEVERITY__SURPDN_ERR_SEVERITY__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_SEVERITY__PSN_ERR_SEVERITY__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_SEVERITY__FC_ERR_SEVERITY__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_SEVERITY__CPL_TIMEOUT_SEVERITY__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_SEVERITY__CPL_ABORT_ERR_SEVERITY__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_SEVERITY__UNEXP_CPL_SEVERITY__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_SEVERITY__RCV_OVFL_SEVERITY__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_SEVERITY__MAL_TLP_SEVERITY__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_SEVERITY__ECRC_ERR_SEVERITY__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_SEVERITY__UNSUPP_REQ_ERR_SEVERITY__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_SEVERITY__ACS_VIOLATION_SEVERITY__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_SEVERITY__UNCORR_INT_ERR_SEVERITY__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_SEVERITY__MC_BLOCKED_TLP_SEVERITY__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_SEVERITY__ATOMICOP_EGRESS_BLOCKED_SEVERITY__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_SEVERITY__TLP_PREFIX_BLOCKED_ERR_SEVERITY__SHIFT 0x19
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_SEVERITY__POISONED_TLP_EGRESS_BLOCKED_SEVERITY__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_SEVERITY__DLP_ERR_SEVERITY_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_SEVERITY__SURPDN_ERR_SEVERITY_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_SEVERITY__PSN_ERR_SEVERITY_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_SEVERITY__FC_ERR_SEVERITY_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_SEVERITY__CPL_TIMEOUT_SEVERITY_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_SEVERITY__CPL_ABORT_ERR_SEVERITY_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_SEVERITY__UNEXP_CPL_SEVERITY_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_SEVERITY__RCV_OVFL_SEVERITY_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_SEVERITY__MAL_TLP_SEVERITY_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_SEVERITY__ECRC_ERR_SEVERITY_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_SEVERITY__UNSUPP_REQ_ERR_SEVERITY_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_SEVERITY__ACS_VIOLATION_SEVERITY_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_SEVERITY__UNCORR_INT_ERR_SEVERITY_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_SEVERITY__MC_BLOCKED_TLP_SEVERITY_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_SEVERITY__ATOMICOP_EGRESS_BLOCKED_SEVERITY_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_SEVERITY__TLP_PREFIX_BLOCKED_ERR_SEVERITY_MASK 0x02000000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_UNCORR_ERR_SEVERITY__POISONED_TLP_EGRESS_BLOCKED_SEVERITY_MASK 0x04000000L
+//BIF_CFG_DEV0_EPF1_0_PCIE_CORR_ERR_STATUS
+#define BIF_CFG_DEV0_EPF1_0_PCIE_CORR_ERR_STATUS__RCV_ERR_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_CORR_ERR_STATUS__BAD_TLP_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF1_0_PCIE_CORR_ERR_STATUS__BAD_DLLP_STATUS__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF1_0_PCIE_CORR_ERR_STATUS__REPLAY_NUM_ROLLOVER_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_0_PCIE_CORR_ERR_STATUS__REPLAY_TIMER_TIMEOUT_STATUS__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF1_0_PCIE_CORR_ERR_STATUS__ADVISORY_NONFATAL_ERR_STATUS__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF1_0_PCIE_CORR_ERR_STATUS__CORR_INT_ERR_STATUS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF1_0_PCIE_CORR_ERR_STATUS__HDR_LOG_OVFL_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF1_0_PCIE_CORR_ERR_STATUS__RCV_ERR_STATUS_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_CORR_ERR_STATUS__BAD_TLP_STATUS_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_CORR_ERR_STATUS__BAD_DLLP_STATUS_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_CORR_ERR_STATUS__REPLAY_NUM_ROLLOVER_STATUS_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_CORR_ERR_STATUS__REPLAY_TIMER_TIMEOUT_STATUS_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_CORR_ERR_STATUS__ADVISORY_NONFATAL_ERR_STATUS_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_CORR_ERR_STATUS__CORR_INT_ERR_STATUS_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_CORR_ERR_STATUS__HDR_LOG_OVFL_STATUS_MASK 0x00008000L
+//BIF_CFG_DEV0_EPF1_0_PCIE_CORR_ERR_MASK
+#define BIF_CFG_DEV0_EPF1_0_PCIE_CORR_ERR_MASK__RCV_ERR_MASK__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_CORR_ERR_MASK__BAD_TLP_MASK__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF1_0_PCIE_CORR_ERR_MASK__BAD_DLLP_MASK__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF1_0_PCIE_CORR_ERR_MASK__REPLAY_NUM_ROLLOVER_MASK__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_0_PCIE_CORR_ERR_MASK__REPLAY_TIMER_TIMEOUT_MASK__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF1_0_PCIE_CORR_ERR_MASK__ADVISORY_NONFATAL_ERR_MASK__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF1_0_PCIE_CORR_ERR_MASK__CORR_INT_ERR_MASK__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF1_0_PCIE_CORR_ERR_MASK__HDR_LOG_OVFL_MASK__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF1_0_PCIE_CORR_ERR_MASK__RCV_ERR_MASK_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_CORR_ERR_MASK__BAD_TLP_MASK_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_CORR_ERR_MASK__BAD_DLLP_MASK_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_CORR_ERR_MASK__REPLAY_NUM_ROLLOVER_MASK_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_CORR_ERR_MASK__REPLAY_TIMER_TIMEOUT_MASK_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_CORR_ERR_MASK__ADVISORY_NONFATAL_ERR_MASK_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_CORR_ERR_MASK__CORR_INT_ERR_MASK_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_CORR_ERR_MASK__HDR_LOG_OVFL_MASK_MASK 0x00008000L
+//BIF_CFG_DEV0_EPF1_0_PCIE_ADV_ERR_CAP_CNTL
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ADV_ERR_CAP_CNTL__FIRST_ERR_PTR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_CAP__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_EN__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_CAP__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_CAP__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ADV_ERR_CAP_CNTL__TLP_PREFIX_LOG_PRESENT__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ADV_ERR_CAP_CNTL__COMPLETION_TIMEOUT_LOG_CAPABLE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ADV_ERR_CAP_CNTL__FIRST_ERR_PTR_MASK 0x0000001FL
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_CAP_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_EN_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_CAP_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_EN_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_CAP_MASK 0x00000200L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_EN_MASK 0x00000400L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ADV_ERR_CAP_CNTL__TLP_PREFIX_LOG_PRESENT_MASK 0x00000800L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ADV_ERR_CAP_CNTL__COMPLETION_TIMEOUT_LOG_CAPABLE_MASK 0x00001000L
+//BIF_CFG_DEV0_EPF1_0_PCIE_HDR_LOG0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_HDR_LOG0__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_HDR_LOG0__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF1_0_PCIE_HDR_LOG1
+#define BIF_CFG_DEV0_EPF1_0_PCIE_HDR_LOG1__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_HDR_LOG1__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF1_0_PCIE_HDR_LOG2
+#define BIF_CFG_DEV0_EPF1_0_PCIE_HDR_LOG2__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_HDR_LOG2__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF1_0_PCIE_HDR_LOG3
+#define BIF_CFG_DEV0_EPF1_0_PCIE_HDR_LOG3__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_HDR_LOG3__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF1_0_PCIE_TLP_PREFIX_LOG0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_TLP_PREFIX_LOG0__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_TLP_PREFIX_LOG0__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF1_0_PCIE_TLP_PREFIX_LOG1
+#define BIF_CFG_DEV0_EPF1_0_PCIE_TLP_PREFIX_LOG1__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_TLP_PREFIX_LOG1__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF1_0_PCIE_TLP_PREFIX_LOG2
+#define BIF_CFG_DEV0_EPF1_0_PCIE_TLP_PREFIX_LOG2__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_TLP_PREFIX_LOG2__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF1_0_PCIE_TLP_PREFIX_LOG3
+#define BIF_CFG_DEV0_EPF1_0_PCIE_TLP_PREFIX_LOG3__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_TLP_PREFIX_LOG3__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF1_0_PCIE_BAR_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF1_0_PCIE_BAR1_CAP
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR1_CAP__BAR_SIZE_SUPPORTED__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR1_CAP__BAR_SIZE_SUPPORTED_MASK 0xFFFFFFF0L
+//BIF_CFG_DEV0_EPF1_0_PCIE_BAR1_CNTL
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR1_CNTL__BAR_INDEX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR1_CNTL__BAR_TOTAL_NUM__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR1_CNTL__BAR_SIZE__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR1_CNTL__BAR_SIZE_SUPPORTED_UPPER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR1_CNTL__BAR_INDEX_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR1_CNTL__BAR_TOTAL_NUM_MASK 0x000000E0L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR1_CNTL__BAR_SIZE_MASK 0x00003F00L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR1_CNTL__BAR_SIZE_SUPPORTED_UPPER_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF1_0_PCIE_BAR2_CAP
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR2_CAP__BAR_SIZE_SUPPORTED__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR2_CAP__BAR_SIZE_SUPPORTED_MASK 0xFFFFFFF0L
+//BIF_CFG_DEV0_EPF1_0_PCIE_BAR2_CNTL
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR2_CNTL__BAR_INDEX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR2_CNTL__BAR_TOTAL_NUM__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR2_CNTL__BAR_SIZE__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR2_CNTL__BAR_SIZE_SUPPORTED_UPPER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR2_CNTL__BAR_INDEX_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR2_CNTL__BAR_TOTAL_NUM_MASK 0x000000E0L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR2_CNTL__BAR_SIZE_MASK 0x00003F00L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR2_CNTL__BAR_SIZE_SUPPORTED_UPPER_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF1_0_PCIE_BAR3_CAP
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR3_CAP__BAR_SIZE_SUPPORTED__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR3_CAP__BAR_SIZE_SUPPORTED_MASK 0xFFFFFFF0L
+//BIF_CFG_DEV0_EPF1_0_PCIE_BAR3_CNTL
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR3_CNTL__BAR_INDEX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR3_CNTL__BAR_TOTAL_NUM__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR3_CNTL__BAR_SIZE__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR3_CNTL__BAR_SIZE_SUPPORTED_UPPER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR3_CNTL__BAR_INDEX_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR3_CNTL__BAR_TOTAL_NUM_MASK 0x000000E0L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR3_CNTL__BAR_SIZE_MASK 0x00003F00L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR3_CNTL__BAR_SIZE_SUPPORTED_UPPER_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF1_0_PCIE_BAR4_CAP
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR4_CAP__BAR_SIZE_SUPPORTED__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR4_CAP__BAR_SIZE_SUPPORTED_MASK 0xFFFFFFF0L
+//BIF_CFG_DEV0_EPF1_0_PCIE_BAR4_CNTL
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR4_CNTL__BAR_INDEX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR4_CNTL__BAR_TOTAL_NUM__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR4_CNTL__BAR_SIZE__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR4_CNTL__BAR_SIZE_SUPPORTED_UPPER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR4_CNTL__BAR_INDEX_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR4_CNTL__BAR_TOTAL_NUM_MASK 0x000000E0L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR4_CNTL__BAR_SIZE_MASK 0x00003F00L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR4_CNTL__BAR_SIZE_SUPPORTED_UPPER_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF1_0_PCIE_BAR5_CAP
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR5_CAP__BAR_SIZE_SUPPORTED__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR5_CAP__BAR_SIZE_SUPPORTED_MASK 0xFFFFFFF0L
+//BIF_CFG_DEV0_EPF1_0_PCIE_BAR5_CNTL
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR5_CNTL__BAR_INDEX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR5_CNTL__BAR_TOTAL_NUM__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR5_CNTL__BAR_SIZE__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR5_CNTL__BAR_SIZE_SUPPORTED_UPPER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR5_CNTL__BAR_INDEX_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR5_CNTL__BAR_TOTAL_NUM_MASK 0x000000E0L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR5_CNTL__BAR_SIZE_MASK 0x00003F00L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR5_CNTL__BAR_SIZE_SUPPORTED_UPPER_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF1_0_PCIE_BAR6_CAP
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR6_CAP__BAR_SIZE_SUPPORTED__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR6_CAP__BAR_SIZE_SUPPORTED_MASK 0xFFFFFFF0L
+//BIF_CFG_DEV0_EPF1_0_PCIE_BAR6_CNTL
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR6_CNTL__BAR_INDEX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR6_CNTL__BAR_TOTAL_NUM__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR6_CNTL__BAR_SIZE__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR6_CNTL__BAR_SIZE_SUPPORTED_UPPER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR6_CNTL__BAR_INDEX_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR6_CNTL__BAR_TOTAL_NUM_MASK 0x000000E0L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR6_CNTL__BAR_SIZE_MASK 0x00003F00L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_BAR6_CNTL__BAR_SIZE_SUPPORTED_UPPER_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF1_0_PCIE_PWR_BUDGET_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF1_0_PCIE_PWR_BUDGET_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_PWR_BUDGET_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_0_PCIE_PWR_BUDGET_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF1_0_PCIE_PWR_BUDGET_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF1_0_PCIE_PWR_BUDGET_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_PWR_BUDGET_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF1_0_PCIE_PWR_BUDGET_DATA_SELECT
+#define BIF_CFG_DEV0_EPF1_0_PCIE_PWR_BUDGET_DATA_SELECT__DATA_SELECT__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_PWR_BUDGET_DATA_SELECT__DATA_SELECT_MASK 0xFFL
+//BIF_CFG_DEV0_EPF1_0_PCIE_PWR_BUDGET_DATA
+#define BIF_CFG_DEV0_EPF1_0_PCIE_PWR_BUDGET_DATA__BASE_POWER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_PWR_BUDGET_DATA__DATA_SCALE__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_0_PCIE_PWR_BUDGET_DATA__PM_SUB_STATE__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF1_0_PCIE_PWR_BUDGET_DATA__PM_STATE__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF1_0_PCIE_PWR_BUDGET_DATA__TYPE__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF1_0_PCIE_PWR_BUDGET_DATA__POWER_RAIL__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF1_0_PCIE_PWR_BUDGET_DATA__BASE_POWER_MASK 0x000000FFL
+#define BIF_CFG_DEV0_EPF1_0_PCIE_PWR_BUDGET_DATA__DATA_SCALE_MASK 0x00000300L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_PWR_BUDGET_DATA__PM_SUB_STATE_MASK 0x00001C00L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_PWR_BUDGET_DATA__PM_STATE_MASK 0x00006000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_PWR_BUDGET_DATA__TYPE_MASK 0x00038000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_PWR_BUDGET_DATA__POWER_RAIL_MASK 0x001C0000L
+//BIF_CFG_DEV0_EPF1_0_PCIE_PWR_BUDGET_CAP
+#define BIF_CFG_DEV0_EPF1_0_PCIE_PWR_BUDGET_CAP__SYSTEM_ALLOCATED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_PWR_BUDGET_CAP__SYSTEM_ALLOCATED_MASK 0x01L
+//BIF_CFG_DEV0_EPF1_0_PCIE_DPA_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF1_0_PCIE_DPA_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_DPA_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_0_PCIE_DPA_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF1_0_PCIE_DPA_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF1_0_PCIE_DPA_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_DPA_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF1_0_PCIE_DPA_CAP
+#define BIF_CFG_DEV0_EPF1_0_PCIE_DPA_CAP__SUBSTATE_MAX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_DPA_CAP__TRANS_LAT_UNIT__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_0_PCIE_DPA_CAP__PWR_ALLOC_SCALE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF1_0_PCIE_DPA_CAP__TRANS_LAT_VAL_0__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_0_PCIE_DPA_CAP__TRANS_LAT_VAL_1__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF1_0_PCIE_DPA_CAP__SUBSTATE_MAX_MASK 0x0000001FL
+#define BIF_CFG_DEV0_EPF1_0_PCIE_DPA_CAP__TRANS_LAT_UNIT_MASK 0x00000300L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_DPA_CAP__PWR_ALLOC_SCALE_MASK 0x00003000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_DPA_CAP__TRANS_LAT_VAL_0_MASK 0x00FF0000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_DPA_CAP__TRANS_LAT_VAL_1_MASK 0xFF000000L
+//BIF_CFG_DEV0_EPF1_0_PCIE_DPA_LATENCY_INDICATOR
+#define BIF_CFG_DEV0_EPF1_0_PCIE_DPA_LATENCY_INDICATOR__TRANS_LAT_INDICATOR_BITS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_DPA_LATENCY_INDICATOR__TRANS_LAT_INDICATOR_BITS_MASK 0x000000FFL
+//BIF_CFG_DEV0_EPF1_0_PCIE_DPA_STATUS
+#define BIF_CFG_DEV0_EPF1_0_PCIE_DPA_STATUS__SUBSTATE_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_DPA_STATUS__SUBSTATE_CNTL_ENABLED__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_0_PCIE_DPA_STATUS__SUBSTATE_STATUS_MASK 0x001FL
+#define BIF_CFG_DEV0_EPF1_0_PCIE_DPA_STATUS__SUBSTATE_CNTL_ENABLED_MASK 0x0100L
+//BIF_CFG_DEV0_EPF1_0_PCIE_DPA_CNTL
+#define BIF_CFG_DEV0_EPF1_0_PCIE_DPA_CNTL__SUBSTATE_CNTL__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_DPA_CNTL__SUBSTATE_CNTL_MASK 0x001FL
+//BIF_CFG_DEV0_EPF1_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_0__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_0__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//BIF_CFG_DEV0_EPF1_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_1
+#define BIF_CFG_DEV0_EPF1_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_1__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_1__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//BIF_CFG_DEV0_EPF1_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_2
+#define BIF_CFG_DEV0_EPF1_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_2__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_2__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//BIF_CFG_DEV0_EPF1_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_3
+#define BIF_CFG_DEV0_EPF1_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_3__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_3__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//BIF_CFG_DEV0_EPF1_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_4
+#define BIF_CFG_DEV0_EPF1_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_4__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_4__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//BIF_CFG_DEV0_EPF1_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_5
+#define BIF_CFG_DEV0_EPF1_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_5__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_5__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//BIF_CFG_DEV0_EPF1_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_6
+#define BIF_CFG_DEV0_EPF1_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_6__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_6__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//BIF_CFG_DEV0_EPF1_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_7
+#define BIF_CFG_DEV0_EPF1_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_7__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_DPA_SUBSTATE_PWR_ALLOC_7__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//BIF_CFG_DEV0_EPF1_0_PCIE_ACS_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ACS_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ACS_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ACS_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ACS_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ACS_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ACS_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF1_0_PCIE_ACS_CAP
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ACS_CAP__SOURCE_VALIDATION__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ACS_CAP__TRANSLATION_BLOCKING__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ACS_CAP__P2P_REQUEST_REDIRECT__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ACS_CAP__P2P_COMPLETION_REDIRECT__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ACS_CAP__UPSTREAM_FORWARDING__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ACS_CAP__P2P_EGRESS_CONTROL__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ACS_CAP__DIRECT_TRANSLATED_P2P__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ACS_CAP__ENHANCED_CAPABILITY__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ACS_CAP__EGRESS_CONTROL_VECTOR_SIZE__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ACS_CAP__SOURCE_VALIDATION_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ACS_CAP__TRANSLATION_BLOCKING_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ACS_CAP__P2P_REQUEST_REDIRECT_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ACS_CAP__P2P_COMPLETION_REDIRECT_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ACS_CAP__UPSTREAM_FORWARDING_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ACS_CAP__P2P_EGRESS_CONTROL_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ACS_CAP__DIRECT_TRANSLATED_P2P_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ACS_CAP__ENHANCED_CAPABILITY_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ACS_CAP__EGRESS_CONTROL_VECTOR_SIZE_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF1_0_PCIE_ACS_CNTL
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ACS_CNTL__SOURCE_VALIDATION_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ACS_CNTL__TRANSLATION_BLOCKING_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ACS_CNTL__P2P_REQUEST_REDIRECT_EN__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ACS_CNTL__P2P_COMPLETION_REDIRECT_EN__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ACS_CNTL__UPSTREAM_FORWARDING_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ACS_CNTL__P2P_EGRESS_CONTROL_EN__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ACS_CNTL__DIRECT_TRANSLATED_P2P_EN__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ACS_CNTL__IO_REQUEST_BLOCKING_EN__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ACS_CNTL__DSP_MEMORY_TARGET_ACCESS_CNTL__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ACS_CNTL__USP_MEMORY_TARGET_ACCESS_CNTL__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ACS_CNTL__UNCLAIMED_REQUEST_REDIRECT_CNTL__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ACS_CNTL__SOURCE_VALIDATION_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ACS_CNTL__TRANSLATION_BLOCKING_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ACS_CNTL__P2P_REQUEST_REDIRECT_EN_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ACS_CNTL__P2P_COMPLETION_REDIRECT_EN_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ACS_CNTL__UPSTREAM_FORWARDING_EN_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ACS_CNTL__P2P_EGRESS_CONTROL_EN_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ACS_CNTL__DIRECT_TRANSLATED_P2P_EN_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ACS_CNTL__IO_REQUEST_BLOCKING_EN_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ACS_CNTL__DSP_MEMORY_TARGET_ACCESS_CNTL_MASK 0x0300L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ACS_CNTL__USP_MEMORY_TARGET_ACCESS_CNTL_MASK 0x0C00L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ACS_CNTL__UNCLAIMED_REQUEST_REDIRECT_CNTL_MASK 0x1000L
+//BIF_CFG_DEV0_EPF1_0_PCIE_PASID_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF1_0_PCIE_PASID_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_PASID_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_0_PCIE_PASID_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF1_0_PCIE_PASID_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF1_0_PCIE_PASID_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_PASID_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF1_0_PCIE_PASID_CAP
+#define BIF_CFG_DEV0_EPF1_0_PCIE_PASID_CAP__PASID_EXE_PERMISSION_SUPPORTED__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF1_0_PCIE_PASID_CAP__PASID_PRIV_MODE_SUPPORTED__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF1_0_PCIE_PASID_CAP__MAX_PASID_WIDTH__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_0_PCIE_PASID_CAP__PASID_EXE_PERMISSION_SUPPORTED_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_PASID_CAP__PASID_PRIV_MODE_SUPPORTED_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_PASID_CAP__MAX_PASID_WIDTH_MASK 0x1F00L
+//BIF_CFG_DEV0_EPF1_0_PCIE_PASID_CNTL
+#define BIF_CFG_DEV0_EPF1_0_PCIE_PASID_CNTL__PASID_ENABLE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_PASID_CNTL__PASID_EXE_PERMISSION_ENABLE__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF1_0_PCIE_PASID_CNTL__PASID_PRIV_MODE_SUPPORTED_ENABLE__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF1_0_PCIE_PASID_CNTL__PASID_ENABLE_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_PASID_CNTL__PASID_EXE_PERMISSION_ENABLE_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_PASID_CNTL__PASID_PRIV_MODE_SUPPORTED_ENABLE_MASK 0x0004L
+//BIF_CFG_DEV0_EPF1_0_PCIE_ARI_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ARI_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ARI_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ARI_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ARI_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ARI_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ARI_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF1_0_PCIE_ARI_CAP
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ARI_CAP__ARI_MFVC_FUNC_GROUPS_CAP__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ARI_CAP__ARI_ACS_FUNC_GROUPS_CAP__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ARI_CAP__ARI_NEXT_FUNC_NUM__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ARI_CAP__ARI_MFVC_FUNC_GROUPS_CAP_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ARI_CAP__ARI_ACS_FUNC_GROUPS_CAP_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ARI_CAP__ARI_NEXT_FUNC_NUM_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF1_0_PCIE_ARI_CNTL
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ARI_CNTL__ARI_MFVC_FUNC_GROUPS_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ARI_CNTL__ARI_ACS_FUNC_GROUPS_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ARI_CNTL__ARI_FUNCTION_GROUP__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ARI_CNTL__ARI_MFVC_FUNC_GROUPS_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ARI_CNTL__ARI_ACS_FUNC_GROUPS_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF1_0_PCIE_ARI_CNTL__ARI_FUNCTION_GROUP_MASK 0x0070L
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dev0_RCCPORTDEC
+//RCC_DEV0_1_RCC_VDM_SUPPORT
+#define RCC_DEV0_1_RCC_VDM_SUPPORT__MCTP_SUPPORT__SHIFT 0x0
+#define RCC_DEV0_1_RCC_VDM_SUPPORT__AMPTP_SUPPORT__SHIFT 0x1
+#define RCC_DEV0_1_RCC_VDM_SUPPORT__OTHER_VDM_SUPPORT__SHIFT 0x2
+#define RCC_DEV0_1_RCC_VDM_SUPPORT__ROUTE_TO_RC_CHECK_IN_RCMODE__SHIFT 0x3
+#define RCC_DEV0_1_RCC_VDM_SUPPORT__ROUTE_BROADCAST_CHECK_IN_RCMODE__SHIFT 0x4
+#define RCC_DEV0_1_RCC_VDM_SUPPORT__MCTP_SUPPORT_MASK 0x00000001L
+#define RCC_DEV0_1_RCC_VDM_SUPPORT__AMPTP_SUPPORT_MASK 0x00000002L
+#define RCC_DEV0_1_RCC_VDM_SUPPORT__OTHER_VDM_SUPPORT_MASK 0x00000004L
+#define RCC_DEV0_1_RCC_VDM_SUPPORT__ROUTE_TO_RC_CHECK_IN_RCMODE_MASK 0x00000008L
+#define RCC_DEV0_1_RCC_VDM_SUPPORT__ROUTE_BROADCAST_CHECK_IN_RCMODE_MASK 0x00000010L
+//RCC_DEV0_1_RCC_BUS_CNTL
+#define RCC_DEV0_1_RCC_BUS_CNTL__PMI_IO_DIS__SHIFT 0x2
+#define RCC_DEV0_1_RCC_BUS_CNTL__PMI_MEM_DIS__SHIFT 0x3
+#define RCC_DEV0_1_RCC_BUS_CNTL__PMI_BM_DIS__SHIFT 0x4
+#define RCC_DEV0_1_RCC_BUS_CNTL__PMI_IO_DIS_DN__SHIFT 0x5
+#define RCC_DEV0_1_RCC_BUS_CNTL__PMI_MEM_DIS_DN__SHIFT 0x6
+#define RCC_DEV0_1_RCC_BUS_CNTL__PMI_IO_DIS_UP__SHIFT 0x7
+#define RCC_DEV0_1_RCC_BUS_CNTL__PMI_MEM_DIS_UP__SHIFT 0x8
+#define RCC_DEV0_1_RCC_BUS_CNTL__ROOT_ERR_LOG_ON_EVENT__SHIFT 0xc
+#define RCC_DEV0_1_RCC_BUS_CNTL__HOST_CPL_POISONED_LOG_IN_RC__SHIFT 0xd
+#define RCC_DEV0_1_RCC_BUS_CNTL__DN_SEC_SIG_CPLCA_WITH_EP_ERR__SHIFT 0x10
+#define RCC_DEV0_1_RCC_BUS_CNTL__DN_SEC_RCV_CPLCA_WITH_EP_ERR__SHIFT 0x11
+#define RCC_DEV0_1_RCC_BUS_CNTL__DN_SEC_RCV_CPLUR_WITH_EP_ERR__SHIFT 0x12
+#define RCC_DEV0_1_RCC_BUS_CNTL__DN_PRI_SIG_CPLCA_WITH_EP_ERR__SHIFT 0x13
+#define RCC_DEV0_1_RCC_BUS_CNTL__DN_PRI_RCV_CPLCA_WITH_EP_ERR__SHIFT 0x14
+#define RCC_DEV0_1_RCC_BUS_CNTL__DN_PRI_RCV_CPLUR_WITH_EP_ERR__SHIFT 0x15
+#define RCC_DEV0_1_RCC_BUS_CNTL__MAX_PAYLOAD_SIZE_MODE__SHIFT 0x18
+#define RCC_DEV0_1_RCC_BUS_CNTL__PRIV_MAX_PAYLOAD_SIZE__SHIFT 0x19
+#define RCC_DEV0_1_RCC_BUS_CNTL__MAX_READ_REQUEST_SIZE_MODE__SHIFT 0x1c
+#define RCC_DEV0_1_RCC_BUS_CNTL__PRIV_MAX_READ_REQUEST_SIZE__SHIFT 0x1d
+#define RCC_DEV0_1_RCC_BUS_CNTL__PMI_IO_DIS_MASK 0x00000004L
+#define RCC_DEV0_1_RCC_BUS_CNTL__PMI_MEM_DIS_MASK 0x00000008L
+#define RCC_DEV0_1_RCC_BUS_CNTL__PMI_BM_DIS_MASK 0x00000010L
+#define RCC_DEV0_1_RCC_BUS_CNTL__PMI_IO_DIS_DN_MASK 0x00000020L
+#define RCC_DEV0_1_RCC_BUS_CNTL__PMI_MEM_DIS_DN_MASK 0x00000040L
+#define RCC_DEV0_1_RCC_BUS_CNTL__PMI_IO_DIS_UP_MASK 0x00000080L
+#define RCC_DEV0_1_RCC_BUS_CNTL__PMI_MEM_DIS_UP_MASK 0x00000100L
+#define RCC_DEV0_1_RCC_BUS_CNTL__ROOT_ERR_LOG_ON_EVENT_MASK 0x00001000L
+#define RCC_DEV0_1_RCC_BUS_CNTL__HOST_CPL_POISONED_LOG_IN_RC_MASK 0x00002000L
+#define RCC_DEV0_1_RCC_BUS_CNTL__DN_SEC_SIG_CPLCA_WITH_EP_ERR_MASK 0x00010000L
+#define RCC_DEV0_1_RCC_BUS_CNTL__DN_SEC_RCV_CPLCA_WITH_EP_ERR_MASK 0x00020000L
+#define RCC_DEV0_1_RCC_BUS_CNTL__DN_SEC_RCV_CPLUR_WITH_EP_ERR_MASK 0x00040000L
+#define RCC_DEV0_1_RCC_BUS_CNTL__DN_PRI_SIG_CPLCA_WITH_EP_ERR_MASK 0x00080000L
+#define RCC_DEV0_1_RCC_BUS_CNTL__DN_PRI_RCV_CPLCA_WITH_EP_ERR_MASK 0x00100000L
+#define RCC_DEV0_1_RCC_BUS_CNTL__DN_PRI_RCV_CPLUR_WITH_EP_ERR_MASK 0x00200000L
+#define RCC_DEV0_1_RCC_BUS_CNTL__MAX_PAYLOAD_SIZE_MODE_MASK 0x01000000L
+#define RCC_DEV0_1_RCC_BUS_CNTL__PRIV_MAX_PAYLOAD_SIZE_MASK 0x0E000000L
+#define RCC_DEV0_1_RCC_BUS_CNTL__MAX_READ_REQUEST_SIZE_MODE_MASK 0x10000000L
+#define RCC_DEV0_1_RCC_BUS_CNTL__PRIV_MAX_READ_REQUEST_SIZE_MASK 0xE0000000L
+//RCC_DEV0_1_RCC_FEATURES_CONTROL_MISC
+#define RCC_DEV0_1_RCC_FEATURES_CONTROL_MISC__INIT_PFFLR_CRS_RET_DIS__SHIFT 0x7
+#define RCC_DEV0_1_RCC_FEATURES_CONTROL_MISC__ATC_PRG_RESP_PASID_UR_EN__SHIFT 0x8
+#define RCC_DEV0_1_RCC_FEATURES_CONTROL_MISC__RX_IGNORE_TRANSMRD_UR__SHIFT 0x9
+#define RCC_DEV0_1_RCC_FEATURES_CONTROL_MISC__RX_IGNORE_TRANSMWR_UR__SHIFT 0xa
+#define RCC_DEV0_1_RCC_FEATURES_CONTROL_MISC__RX_IGNORE_ATSTRANSREQ_UR__SHIFT 0xb
+#define RCC_DEV0_1_RCC_FEATURES_CONTROL_MISC__RX_IGNORE_PAGEREQMSG_UR__SHIFT 0xc
+#define RCC_DEV0_1_RCC_FEATURES_CONTROL_MISC__RX_IGNORE_INVCPL_UR__SHIFT 0xd
+#define RCC_DEV0_1_RCC_FEATURES_CONTROL_MISC__CLR_MSI_X_PENDING_WHEN_DISABLED_DIS__SHIFT 0xe
+#define RCC_DEV0_1_RCC_FEATURES_CONTROL_MISC__CHECK_BME_ON_PENDING_PKT_GEN_DIS__SHIFT 0xf
+#define RCC_DEV0_1_RCC_FEATURES_CONTROL_MISC__PSN_CHECK_ON_PAYLOAD_DIS__SHIFT 0x10
+#define RCC_DEV0_1_RCC_FEATURES_CONTROL_MISC__CLR_MSI_PENDING_ON_MULTIEN_DIS__SHIFT 0x11
+#define RCC_DEV0_1_RCC_FEATURES_CONTROL_MISC__SET_DEVICE_ERR_FOR_ECRC_EN__SHIFT 0x12
+#define RCC_DEV0_1_RCC_FEATURES_CONTROL_MISC__HOST_POISON_FLAG_CHECK_FOR_CHAIN_DIS__SHIFT 0x13
+#define RCC_DEV0_1_RCC_FEATURES_CONTROL_MISC__INIT_PFFLR_CRS_RET_DIS_MASK 0x00000080L
+#define RCC_DEV0_1_RCC_FEATURES_CONTROL_MISC__ATC_PRG_RESP_PASID_UR_EN_MASK 0x00000100L
+#define RCC_DEV0_1_RCC_FEATURES_CONTROL_MISC__RX_IGNORE_TRANSMRD_UR_MASK 0x00000200L
+#define RCC_DEV0_1_RCC_FEATURES_CONTROL_MISC__RX_IGNORE_TRANSMWR_UR_MASK 0x00000400L
+#define RCC_DEV0_1_RCC_FEATURES_CONTROL_MISC__RX_IGNORE_ATSTRANSREQ_UR_MASK 0x00000800L
+#define RCC_DEV0_1_RCC_FEATURES_CONTROL_MISC__RX_IGNORE_PAGEREQMSG_UR_MASK 0x00001000L
+#define RCC_DEV0_1_RCC_FEATURES_CONTROL_MISC__RX_IGNORE_INVCPL_UR_MASK 0x00002000L
+#define RCC_DEV0_1_RCC_FEATURES_CONTROL_MISC__CLR_MSI_X_PENDING_WHEN_DISABLED_DIS_MASK 0x00004000L
+#define RCC_DEV0_1_RCC_FEATURES_CONTROL_MISC__CHECK_BME_ON_PENDING_PKT_GEN_DIS_MASK 0x00008000L
+#define RCC_DEV0_1_RCC_FEATURES_CONTROL_MISC__PSN_CHECK_ON_PAYLOAD_DIS_MASK 0x00010000L
+#define RCC_DEV0_1_RCC_FEATURES_CONTROL_MISC__CLR_MSI_PENDING_ON_MULTIEN_DIS_MASK 0x00020000L
+#define RCC_DEV0_1_RCC_FEATURES_CONTROL_MISC__SET_DEVICE_ERR_FOR_ECRC_EN_MASK 0x00040000L
+#define RCC_DEV0_1_RCC_FEATURES_CONTROL_MISC__HOST_POISON_FLAG_CHECK_FOR_CHAIN_DIS_MASK 0x00080000L
+//RCC_DEV0_1_RCC_DEV0_LINK_CNTL
+#define RCC_DEV0_1_RCC_DEV0_LINK_CNTL__LINK_DOWN_EXIT__SHIFT 0x0
+#define RCC_DEV0_1_RCC_DEV0_LINK_CNTL__LINK_DOWN_ENTRY__SHIFT 0x8
+#define RCC_DEV0_1_RCC_DEV0_LINK_CNTL__SWUS_SRB_RST_TLS_DIS__SHIFT 0x10
+#define RCC_DEV0_1_RCC_DEV0_LINK_CNTL__SWUS_LDN_RST_TLS_DIS__SHIFT 0x11
+#define RCC_DEV0_1_RCC_DEV0_LINK_CNTL__LINK_DOWN_EXIT_MASK 0x00000001L
+#define RCC_DEV0_1_RCC_DEV0_LINK_CNTL__LINK_DOWN_ENTRY_MASK 0x00000100L
+#define RCC_DEV0_1_RCC_DEV0_LINK_CNTL__SWUS_SRB_RST_TLS_DIS_MASK 0x00010000L
+#define RCC_DEV0_1_RCC_DEV0_LINK_CNTL__SWUS_LDN_RST_TLS_DIS_MASK 0x00020000L
+//RCC_DEV0_1_RCC_CMN_LINK_CNTL
+#define RCC_DEV0_1_RCC_CMN_LINK_CNTL__BLOCK_PME_ON_L0S_DIS__SHIFT 0x0
+#define RCC_DEV0_1_RCC_CMN_LINK_CNTL__BLOCK_PME_ON_L1_DIS__SHIFT 0x1
+#define RCC_DEV0_1_RCC_CMN_LINK_CNTL__BLOCK_PME_ON_LDN_DIS__SHIFT 0x2
+#define RCC_DEV0_1_RCC_CMN_LINK_CNTL__PM_L1_IDLE_CHECK_DMA_EN__SHIFT 0x3
+#define RCC_DEV0_1_RCC_CMN_LINK_CNTL__VLINK_IN_L1LTR_TIMER__SHIFT 0x10
+#define RCC_DEV0_1_RCC_CMN_LINK_CNTL__BLOCK_PME_ON_L0S_DIS_MASK 0x00000001L
+#define RCC_DEV0_1_RCC_CMN_LINK_CNTL__BLOCK_PME_ON_L1_DIS_MASK 0x00000002L
+#define RCC_DEV0_1_RCC_CMN_LINK_CNTL__BLOCK_PME_ON_LDN_DIS_MASK 0x00000004L
+#define RCC_DEV0_1_RCC_CMN_LINK_CNTL__PM_L1_IDLE_CHECK_DMA_EN_MASK 0x00000008L
+#define RCC_DEV0_1_RCC_CMN_LINK_CNTL__VLINK_IN_L1LTR_TIMER_MASK 0xFFFF0000L
+//RCC_DEV0_1_RCC_EP_REQUESTERID_RESTORE
+#define RCC_DEV0_1_RCC_EP_REQUESTERID_RESTORE__EP_REQID_BUS__SHIFT 0x0
+#define RCC_DEV0_1_RCC_EP_REQUESTERID_RESTORE__EP_REQID_DEV__SHIFT 0x8
+#define RCC_DEV0_1_RCC_EP_REQUESTERID_RESTORE__EP_REQID_BUS_MASK 0x000000FFL
+#define RCC_DEV0_1_RCC_EP_REQUESTERID_RESTORE__EP_REQID_DEV_MASK 0x00001F00L
+//RCC_DEV0_1_RCC_LTR_LSWITCH_CNTL
+#define RCC_DEV0_1_RCC_LTR_LSWITCH_CNTL__LSWITCH_LATENCY_VALUE__SHIFT 0x0
+#define RCC_DEV0_1_RCC_LTR_LSWITCH_CNTL__LSWITCH_LATENCY_VALUE_MASK 0x000003FFL
+//RCC_DEV0_1_RCC_MH_ARB_CNTL
+#define RCC_DEV0_1_RCC_MH_ARB_CNTL__MH_ARB_MODE__SHIFT 0x0
+#define RCC_DEV0_1_RCC_MH_ARB_CNTL__MH_ARB_FIX_PRIORITY__SHIFT 0x1
+#define RCC_DEV0_1_RCC_MH_ARB_CNTL__MH_ARB_MODE_MASK 0x00000001L
+#define RCC_DEV0_1_RCC_MH_ARB_CNTL__MH_ARB_FIX_PRIORITY_MASK 0x00007FFEL
+//RCC_DEV0_1_RCC_MARGIN_PARAM_CNTL0
+#define RCC_DEV0_1_RCC_MARGIN_PARAM_CNTL0__MARGINING_VOLTAGE_SUPPORTED__SHIFT 0x0
+#define RCC_DEV0_1_RCC_MARGIN_PARAM_CNTL0__MARGINING_IND_LEFTRIGHT_TIMING__SHIFT 0x1
+#define RCC_DEV0_1_RCC_MARGIN_PARAM_CNTL0__MARGINING_IND_UPDOWN_VOLTAGE__SHIFT 0x2
+#define RCC_DEV0_1_RCC_MARGIN_PARAM_CNTL0__MARGINING_IND_ERROR_SAMPLER__SHIFT 0x3
+#define RCC_DEV0_1_RCC_MARGIN_PARAM_CNTL0__MARGINING_SAMPLE_REPORTING_METHOD__SHIFT 0x4
+#define RCC_DEV0_1_RCC_MARGIN_PARAM_CNTL0__MARGINING_NUM_TIMING_STEPS__SHIFT 0x5
+#define RCC_DEV0_1_RCC_MARGIN_PARAM_CNTL0__MARGINING_MAX_TIMING_OFFSET__SHIFT 0xb
+#define RCC_DEV0_1_RCC_MARGIN_PARAM_CNTL0__MARGINING_NUM_VOLTAGE_STEPS__SHIFT 0x12
+#define RCC_DEV0_1_RCC_MARGIN_PARAM_CNTL0__MARGINING_MAX_VOLTAGE_OFFSET__SHIFT 0x19
+#define RCC_DEV0_1_RCC_MARGIN_PARAM_CNTL0__MARGINING_VOLTAGE_SUPPORTED_MASK 0x00000001L
+#define RCC_DEV0_1_RCC_MARGIN_PARAM_CNTL0__MARGINING_IND_LEFTRIGHT_TIMING_MASK 0x00000002L
+#define RCC_DEV0_1_RCC_MARGIN_PARAM_CNTL0__MARGINING_IND_UPDOWN_VOLTAGE_MASK 0x00000004L
+#define RCC_DEV0_1_RCC_MARGIN_PARAM_CNTL0__MARGINING_IND_ERROR_SAMPLER_MASK 0x00000008L
+#define RCC_DEV0_1_RCC_MARGIN_PARAM_CNTL0__MARGINING_SAMPLE_REPORTING_METHOD_MASK 0x00000010L
+#define RCC_DEV0_1_RCC_MARGIN_PARAM_CNTL0__MARGINING_NUM_TIMING_STEPS_MASK 0x000007E0L
+#define RCC_DEV0_1_RCC_MARGIN_PARAM_CNTL0__MARGINING_MAX_TIMING_OFFSET_MASK 0x0003F800L
+#define RCC_DEV0_1_RCC_MARGIN_PARAM_CNTL0__MARGINING_NUM_VOLTAGE_STEPS_MASK 0x01FC0000L
+#define RCC_DEV0_1_RCC_MARGIN_PARAM_CNTL0__MARGINING_MAX_VOLTAGE_OFFSET_MASK 0xFE000000L
+//RCC_DEV0_1_RCC_MARGIN_PARAM_CNTL1
+#define RCC_DEV0_1_RCC_MARGIN_PARAM_CNTL1__MARGINING_SAMPLING_RATE_VOLTAGE__SHIFT 0x0
+#define RCC_DEV0_1_RCC_MARGIN_PARAM_CNTL1__MARGINING_SAMPLING_RATE_TIMING__SHIFT 0x6
+#define RCC_DEV0_1_RCC_MARGIN_PARAM_CNTL1__MARGINING_MAX_LANES__SHIFT 0xc
+#define RCC_DEV0_1_RCC_MARGIN_PARAM_CNTL1__MARGINING_SAMPLE_COUNT__SHIFT 0x11
+#define RCC_DEV0_1_RCC_MARGIN_PARAM_CNTL1__MARGINING_SAMPLING_RATE_VOLTAGE_MASK 0x0000003FL
+#define RCC_DEV0_1_RCC_MARGIN_PARAM_CNTL1__MARGINING_SAMPLING_RATE_TIMING_MASK 0x00000FC0L
+#define RCC_DEV0_1_RCC_MARGIN_PARAM_CNTL1__MARGINING_MAX_LANES_MASK 0x0001F000L
+#define RCC_DEV0_1_RCC_MARGIN_PARAM_CNTL1__MARGINING_SAMPLE_COUNT_MASK 0x00FE0000L
+
+
+// addressBlock: aid_nbio_nbif0_rcc_ep_dev0_RCCPORTDEC
+//RCC_EP_DEV0_1_EP_PCIE_SCRATCH
+#define RCC_EP_DEV0_1_EP_PCIE_SCRATCH__PCIE_SCRATCH__SHIFT 0x0
+#define RCC_EP_DEV0_1_EP_PCIE_SCRATCH__PCIE_SCRATCH_MASK 0xFFFFFFFFL
+//RCC_EP_DEV0_1_EP_PCIE_CNTL
+#define RCC_EP_DEV0_1_EP_PCIE_CNTL__UR_ERR_REPORT_DIS__SHIFT 0x7
+#define RCC_EP_DEV0_1_EP_PCIE_CNTL__PCIE_MALFORM_ATOMIC_OPS__SHIFT 0x8
+#define RCC_EP_DEV0_1_EP_PCIE_CNTL__RX_IGNORE_LTR_MSG_UR__SHIFT 0x1e
+#define RCC_EP_DEV0_1_EP_PCIE_CNTL__UR_ERR_REPORT_DIS_MASK 0x00000080L
+#define RCC_EP_DEV0_1_EP_PCIE_CNTL__PCIE_MALFORM_ATOMIC_OPS_MASK 0x00000100L
+#define RCC_EP_DEV0_1_EP_PCIE_CNTL__RX_IGNORE_LTR_MSG_UR_MASK 0x40000000L
+//RCC_EP_DEV0_1_EP_PCIE_INT_CNTL
+#define RCC_EP_DEV0_1_EP_PCIE_INT_CNTL__CORR_ERR_INT_EN__SHIFT 0x0
+#define RCC_EP_DEV0_1_EP_PCIE_INT_CNTL__NON_FATAL_ERR_INT_EN__SHIFT 0x1
+#define RCC_EP_DEV0_1_EP_PCIE_INT_CNTL__FATAL_ERR_INT_EN__SHIFT 0x2
+#define RCC_EP_DEV0_1_EP_PCIE_INT_CNTL__USR_DETECTED_INT_EN__SHIFT 0x3
+#define RCC_EP_DEV0_1_EP_PCIE_INT_CNTL__MISC_ERR_INT_EN__SHIFT 0x4
+#define RCC_EP_DEV0_1_EP_PCIE_INT_CNTL__POWER_STATE_CHG_INT_EN__SHIFT 0x6
+#define RCC_EP_DEV0_1_EP_PCIE_INT_CNTL__CORR_ERR_INT_EN_MASK 0x00000001L
+#define RCC_EP_DEV0_1_EP_PCIE_INT_CNTL__NON_FATAL_ERR_INT_EN_MASK 0x00000002L
+#define RCC_EP_DEV0_1_EP_PCIE_INT_CNTL__FATAL_ERR_INT_EN_MASK 0x00000004L
+#define RCC_EP_DEV0_1_EP_PCIE_INT_CNTL__USR_DETECTED_INT_EN_MASK 0x00000008L
+#define RCC_EP_DEV0_1_EP_PCIE_INT_CNTL__MISC_ERR_INT_EN_MASK 0x00000010L
+#define RCC_EP_DEV0_1_EP_PCIE_INT_CNTL__POWER_STATE_CHG_INT_EN_MASK 0x00000040L
+//RCC_EP_DEV0_1_EP_PCIE_INT_STATUS
+#define RCC_EP_DEV0_1_EP_PCIE_INT_STATUS__CORR_ERR_INT_STATUS__SHIFT 0x0
+#define RCC_EP_DEV0_1_EP_PCIE_INT_STATUS__NON_FATAL_ERR_INT_STATUS__SHIFT 0x1
+#define RCC_EP_DEV0_1_EP_PCIE_INT_STATUS__FATAL_ERR_INT_STATUS__SHIFT 0x2
+#define RCC_EP_DEV0_1_EP_PCIE_INT_STATUS__USR_DETECTED_INT_STATUS__SHIFT 0x3
+#define RCC_EP_DEV0_1_EP_PCIE_INT_STATUS__MISC_ERR_INT_STATUS__SHIFT 0x4
+#define RCC_EP_DEV0_1_EP_PCIE_INT_STATUS__POWER_STATE_CHG_INT_STATUS__SHIFT 0x6
+#define RCC_EP_DEV0_1_EP_PCIE_INT_STATUS__POWER_STATE_CHG_INT_STATUS_F0__SHIFT 0x7
+#define RCC_EP_DEV0_1_EP_PCIE_INT_STATUS__CORR_ERR_INT_STATUS_MASK 0x00000001L
+#define RCC_EP_DEV0_1_EP_PCIE_INT_STATUS__NON_FATAL_ERR_INT_STATUS_MASK 0x00000002L
+#define RCC_EP_DEV0_1_EP_PCIE_INT_STATUS__FATAL_ERR_INT_STATUS_MASK 0x00000004L
+#define RCC_EP_DEV0_1_EP_PCIE_INT_STATUS__USR_DETECTED_INT_STATUS_MASK 0x00000008L
+#define RCC_EP_DEV0_1_EP_PCIE_INT_STATUS__MISC_ERR_INT_STATUS_MASK 0x00000010L
+#define RCC_EP_DEV0_1_EP_PCIE_INT_STATUS__POWER_STATE_CHG_INT_STATUS_MASK 0x00000040L
+#define RCC_EP_DEV0_1_EP_PCIE_INT_STATUS__POWER_STATE_CHG_INT_STATUS_F0_MASK 0x00000080L
+//RCC_EP_DEV0_1_EP_PCIE_RX_CNTL2
+#define RCC_EP_DEV0_1_EP_PCIE_RX_CNTL2__RX_IGNORE_EP_INVALIDPASID_UR__SHIFT 0x0
+#define RCC_EP_DEV0_1_EP_PCIE_RX_CNTL2__RX_IGNORE_EP_INVALIDPASID_UR_MASK 0x00000001L
+//RCC_EP_DEV0_1_EP_PCIE_BUS_CNTL
+#define RCC_EP_DEV0_1_EP_PCIE_BUS_CNTL__IMMEDIATE_PMI_DIS__SHIFT 0x7
+#define RCC_EP_DEV0_1_EP_PCIE_BUS_CNTL__IMMEDIATE_PMI_DIS_MASK 0x00000080L
+//RCC_EP_DEV0_1_EP_PCIE_CFG_CNTL
+#define RCC_EP_DEV0_1_EP_PCIE_CFG_CNTL__CFG_EN_DEC_TO_HIDDEN_REG__SHIFT 0x0
+#define RCC_EP_DEV0_1_EP_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN2_HIDDEN_REG__SHIFT 0x1
+#define RCC_EP_DEV0_1_EP_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN3_HIDDEN_REG__SHIFT 0x2
+#define RCC_EP_DEV0_1_EP_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN4_HIDDEN_REG__SHIFT 0x3
+#define RCC_EP_DEV0_1_EP_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN5_HIDDEN_REG__SHIFT 0x4
+#define RCC_EP_DEV0_1_EP_PCIE_CFG_CNTL__CFG_EN_DEC_TO_HIDDEN_REG_MASK 0x00000001L
+#define RCC_EP_DEV0_1_EP_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN2_HIDDEN_REG_MASK 0x00000002L
+#define RCC_EP_DEV0_1_EP_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN3_HIDDEN_REG_MASK 0x00000004L
+#define RCC_EP_DEV0_1_EP_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN4_HIDDEN_REG_MASK 0x00000008L
+#define RCC_EP_DEV0_1_EP_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN5_HIDDEN_REG_MASK 0x00000010L
+//RCC_EP_DEV0_1_EP_PCIE_TX_LTR_CNTL
+#define RCC_EP_DEV0_1_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_S_SHORT_VALUE__SHIFT 0x0
+#define RCC_EP_DEV0_1_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_S_LONG_VALUE__SHIFT 0x3
+#define RCC_EP_DEV0_1_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_S_REQUIREMENT__SHIFT 0x6
+#define RCC_EP_DEV0_1_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_NS_SHORT_VALUE__SHIFT 0x7
+#define RCC_EP_DEV0_1_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_NS_LONG_VALUE__SHIFT 0xa
+#define RCC_EP_DEV0_1_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_NS_REQUIREMENT__SHIFT 0xd
+#define RCC_EP_DEV0_1_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_MSG_DIS_IN_PM_NON_D0__SHIFT 0xe
+#define RCC_EP_DEV0_1_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_RST_LTR_IN_DL_DOWN__SHIFT 0xf
+#define RCC_EP_DEV0_1_EP_PCIE_TX_LTR_CNTL__TX_CHK_FC_FOR_L1__SHIFT 0x10
+#define RCC_EP_DEV0_1_EP_PCIE_TX_LTR_CNTL__LTR_DSTATE_USING_WDATA_EN__SHIFT 0x11
+#define RCC_EP_DEV0_1_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_S_SHORT_VALUE_MASK 0x00000007L
+#define RCC_EP_DEV0_1_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_S_LONG_VALUE_MASK 0x00000038L
+#define RCC_EP_DEV0_1_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_S_REQUIREMENT_MASK 0x00000040L
+#define RCC_EP_DEV0_1_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_NS_SHORT_VALUE_MASK 0x00000380L
+#define RCC_EP_DEV0_1_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_NS_LONG_VALUE_MASK 0x00001C00L
+#define RCC_EP_DEV0_1_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_NS_REQUIREMENT_MASK 0x00002000L
+#define RCC_EP_DEV0_1_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_MSG_DIS_IN_PM_NON_D0_MASK 0x00004000L
+#define RCC_EP_DEV0_1_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_RST_LTR_IN_DL_DOWN_MASK 0x00008000L
+#define RCC_EP_DEV0_1_EP_PCIE_TX_LTR_CNTL__TX_CHK_FC_FOR_L1_MASK 0x00010000L
+#define RCC_EP_DEV0_1_EP_PCIE_TX_LTR_CNTL__LTR_DSTATE_USING_WDATA_EN_MASK 0x00020000L
+//RCC_EP_DEV0_1_EP_PCIE_STRAP_MISC
+#define RCC_EP_DEV0_1_EP_PCIE_STRAP_MISC__STRAP_MST_ADR64_EN__SHIFT 0x1d
+#define RCC_EP_DEV0_1_EP_PCIE_STRAP_MISC__STRAP_MST_ADR64_EN_MASK 0x20000000L
+//RCC_EP_DEV0_1_EP_PCIE_STRAP_MISC2
+#define RCC_EP_DEV0_1_EP_PCIE_STRAP_MISC2__STRAP_TPH_SUPPORTED__SHIFT 0x4
+#define RCC_EP_DEV0_1_EP_PCIE_STRAP_MISC2__STRAP_TPH_SUPPORTED_MASK 0x00000010L
+//RCC_EP_DEV0_1_EP_PCIE_F0_DPA_CAP
+#define RCC_EP_DEV0_1_EP_PCIE_F0_DPA_CAP__TRANS_LAT_UNIT__SHIFT 0x8
+#define RCC_EP_DEV0_1_EP_PCIE_F0_DPA_CAP__PWR_ALLOC_SCALE__SHIFT 0xc
+#define RCC_EP_DEV0_1_EP_PCIE_F0_DPA_CAP__TRANS_LAT_VAL_0__SHIFT 0x10
+#define RCC_EP_DEV0_1_EP_PCIE_F0_DPA_CAP__TRANS_LAT_VAL_1__SHIFT 0x18
+#define RCC_EP_DEV0_1_EP_PCIE_F0_DPA_CAP__TRANS_LAT_UNIT_MASK 0x00000300L
+#define RCC_EP_DEV0_1_EP_PCIE_F0_DPA_CAP__PWR_ALLOC_SCALE_MASK 0x00003000L
+#define RCC_EP_DEV0_1_EP_PCIE_F0_DPA_CAP__TRANS_LAT_VAL_0_MASK 0x00FF0000L
+#define RCC_EP_DEV0_1_EP_PCIE_F0_DPA_CAP__TRANS_LAT_VAL_1_MASK 0xFF000000L
+//RCC_EP_DEV0_1_EP_PCIE_F0_DPA_LATENCY_INDICATOR
+#define RCC_EP_DEV0_1_EP_PCIE_F0_DPA_LATENCY_INDICATOR__TRANS_LAT_INDICATOR_BITS__SHIFT 0x0
+#define RCC_EP_DEV0_1_EP_PCIE_F0_DPA_LATENCY_INDICATOR__TRANS_LAT_INDICATOR_BITS_MASK 0xFFL
+//RCC_EP_DEV0_1_EP_PCIE_F0_DPA_CNTL
+#define RCC_EP_DEV0_1_EP_PCIE_F0_DPA_CNTL__SUBSTATE_STATUS__SHIFT 0x0
+#define RCC_EP_DEV0_1_EP_PCIE_F0_DPA_CNTL__DPA_COMPLIANCE_MODE__SHIFT 0x8
+#define RCC_EP_DEV0_1_EP_PCIE_F0_DPA_CNTL__SUBSTATE_STATUS_MASK 0x001FL
+#define RCC_EP_DEV0_1_EP_PCIE_F0_DPA_CNTL__DPA_COMPLIANCE_MODE_MASK 0x0100L
+//RCC_EP_DEV0_1_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_0
+#define RCC_EP_DEV0_1_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_0__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define RCC_EP_DEV0_1_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_0__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//RCC_EP_DEV0_1_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_1
+#define RCC_EP_DEV0_1_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_1__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define RCC_EP_DEV0_1_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_1__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//RCC_EP_DEV0_1_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_2
+#define RCC_EP_DEV0_1_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_2__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define RCC_EP_DEV0_1_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_2__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//RCC_EP_DEV0_1_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_3
+#define RCC_EP_DEV0_1_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_3__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define RCC_EP_DEV0_1_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_3__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//RCC_EP_DEV0_1_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_4
+#define RCC_EP_DEV0_1_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_4__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define RCC_EP_DEV0_1_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_4__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//RCC_EP_DEV0_1_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_5
+#define RCC_EP_DEV0_1_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_5__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define RCC_EP_DEV0_1_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_5__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//RCC_EP_DEV0_1_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_6
+#define RCC_EP_DEV0_1_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_6__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define RCC_EP_DEV0_1_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_6__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//RCC_EP_DEV0_1_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_7
+#define RCC_EP_DEV0_1_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_7__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define RCC_EP_DEV0_1_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_7__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//RCC_EP_DEV0_1_EP_PCIE_PME_CONTROL
+#define RCC_EP_DEV0_1_EP_PCIE_PME_CONTROL__PME_SERVICE_TIMER__SHIFT 0x0
+#define RCC_EP_DEV0_1_EP_PCIE_PME_CONTROL__PME_SERVICE_TIMER_MASK 0x1FL
+//RCC_EP_DEV0_1_EP_PCIEP_RESERVED
+#define RCC_EP_DEV0_1_EP_PCIEP_RESERVED__PCIEP_RESERVED__SHIFT 0x0
+#define RCC_EP_DEV0_1_EP_PCIEP_RESERVED__PCIEP_RESERVED_MASK 0xFFFFFFFFL
+//RCC_EP_DEV0_1_EP_PCIE_TX_CNTL
+#define RCC_EP_DEV0_1_EP_PCIE_TX_CNTL__TX_SNR_OVERRIDE__SHIFT 0xa
+#define RCC_EP_DEV0_1_EP_PCIE_TX_CNTL__TX_RO_OVERRIDE__SHIFT 0xc
+#define RCC_EP_DEV0_1_EP_PCIE_TX_CNTL__TX_F0_TPH_DIS__SHIFT 0x18
+#define RCC_EP_DEV0_1_EP_PCIE_TX_CNTL__TX_F1_TPH_DIS__SHIFT 0x19
+#define RCC_EP_DEV0_1_EP_PCIE_TX_CNTL__TX_F2_TPH_DIS__SHIFT 0x1a
+#define RCC_EP_DEV0_1_EP_PCIE_TX_CNTL__TX_SNR_OVERRIDE_MASK 0x00000C00L
+#define RCC_EP_DEV0_1_EP_PCIE_TX_CNTL__TX_RO_OVERRIDE_MASK 0x00003000L
+#define RCC_EP_DEV0_1_EP_PCIE_TX_CNTL__TX_F0_TPH_DIS_MASK 0x01000000L
+#define RCC_EP_DEV0_1_EP_PCIE_TX_CNTL__TX_F1_TPH_DIS_MASK 0x02000000L
+#define RCC_EP_DEV0_1_EP_PCIE_TX_CNTL__TX_F2_TPH_DIS_MASK 0x04000000L
+//RCC_EP_DEV0_1_EP_PCIE_TX_REQUESTER_ID
+#define RCC_EP_DEV0_1_EP_PCIE_TX_REQUESTER_ID__TX_REQUESTER_ID_FUNCTION__SHIFT 0x0
+#define RCC_EP_DEV0_1_EP_PCIE_TX_REQUESTER_ID__TX_REQUESTER_ID_DEVICE__SHIFT 0x3
+#define RCC_EP_DEV0_1_EP_PCIE_TX_REQUESTER_ID__TX_REQUESTER_ID_BUS__SHIFT 0x8
+#define RCC_EP_DEV0_1_EP_PCIE_TX_REQUESTER_ID__TX_REQUESTER_ID_FUNCTION_MASK 0x00000007L
+#define RCC_EP_DEV0_1_EP_PCIE_TX_REQUESTER_ID__TX_REQUESTER_ID_DEVICE_MASK 0x000000F8L
+#define RCC_EP_DEV0_1_EP_PCIE_TX_REQUESTER_ID__TX_REQUESTER_ID_BUS_MASK 0x0000FF00L
+//RCC_EP_DEV0_1_EP_PCIE_ERR_CNTL
+#define RCC_EP_DEV0_1_EP_PCIE_ERR_CNTL__ERR_REPORTING_DIS__SHIFT 0x0
+#define RCC_EP_DEV0_1_EP_PCIE_ERR_CNTL__AER_HDR_LOG_TIMEOUT__SHIFT 0x8
+#define RCC_EP_DEV0_1_EP_PCIE_ERR_CNTL__SEND_ERR_MSG_IMMEDIATELY__SHIFT 0x11
+#define RCC_EP_DEV0_1_EP_PCIE_ERR_CNTL__STRAP_POISONED_ADVISORY_NONFATAL__SHIFT 0x12
+#define RCC_EP_DEV0_1_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F0_TIMER_EXPIRED__SHIFT 0x18
+#define RCC_EP_DEV0_1_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F1_TIMER_EXPIRED__SHIFT 0x19
+#define RCC_EP_DEV0_1_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F2_TIMER_EXPIRED__SHIFT 0x1a
+#define RCC_EP_DEV0_1_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F3_TIMER_EXPIRED__SHIFT 0x1b
+#define RCC_EP_DEV0_1_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F4_TIMER_EXPIRED__SHIFT 0x1c
+#define RCC_EP_DEV0_1_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F5_TIMER_EXPIRED__SHIFT 0x1d
+#define RCC_EP_DEV0_1_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F6_TIMER_EXPIRED__SHIFT 0x1e
+#define RCC_EP_DEV0_1_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F7_TIMER_EXPIRED__SHIFT 0x1f
+#define RCC_EP_DEV0_1_EP_PCIE_ERR_CNTL__ERR_REPORTING_DIS_MASK 0x00000001L
+#define RCC_EP_DEV0_1_EP_PCIE_ERR_CNTL__AER_HDR_LOG_TIMEOUT_MASK 0x00000700L
+#define RCC_EP_DEV0_1_EP_PCIE_ERR_CNTL__SEND_ERR_MSG_IMMEDIATELY_MASK 0x00020000L
+#define RCC_EP_DEV0_1_EP_PCIE_ERR_CNTL__STRAP_POISONED_ADVISORY_NONFATAL_MASK 0x00040000L
+#define RCC_EP_DEV0_1_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F0_TIMER_EXPIRED_MASK 0x01000000L
+#define RCC_EP_DEV0_1_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F1_TIMER_EXPIRED_MASK 0x02000000L
+#define RCC_EP_DEV0_1_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F2_TIMER_EXPIRED_MASK 0x04000000L
+#define RCC_EP_DEV0_1_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F3_TIMER_EXPIRED_MASK 0x08000000L
+#define RCC_EP_DEV0_1_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F4_TIMER_EXPIRED_MASK 0x10000000L
+#define RCC_EP_DEV0_1_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F5_TIMER_EXPIRED_MASK 0x20000000L
+#define RCC_EP_DEV0_1_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F6_TIMER_EXPIRED_MASK 0x40000000L
+#define RCC_EP_DEV0_1_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F7_TIMER_EXPIRED_MASK 0x80000000L
+//RCC_EP_DEV0_1_EP_PCIE_RX_CNTL
+#define RCC_EP_DEV0_1_EP_PCIE_RX_CNTL__RX_IGNORE_MAX_PAYLOAD_ERR__SHIFT 0x8
+#define RCC_EP_DEV0_1_EP_PCIE_RX_CNTL__RX_IGNORE_TC_ERR__SHIFT 0x9
+#define RCC_EP_DEV0_1_EP_PCIE_RX_CNTL__RX_PCIE_CPL_TIMEOUT_DIS__SHIFT 0x14
+#define RCC_EP_DEV0_1_EP_PCIE_RX_CNTL__RX_IGNORE_SHORTPREFIX_ERR__SHIFT 0x15
+#define RCC_EP_DEV0_1_EP_PCIE_RX_CNTL__RX_IGNORE_MAXPREFIX_ERR__SHIFT 0x16
+#define RCC_EP_DEV0_1_EP_PCIE_RX_CNTL__RX_IGNORE_INVALIDPASID_ERR__SHIFT 0x18
+#define RCC_EP_DEV0_1_EP_PCIE_RX_CNTL__RX_IGNORE_NOT_PASID_UR__SHIFT 0x19
+#define RCC_EP_DEV0_1_EP_PCIE_RX_CNTL__RX_TPH_DIS__SHIFT 0x1a
+#define RCC_EP_DEV0_1_EP_PCIE_RX_CNTL__RX_IGNORE_MAX_PAYLOAD_ERR_MASK 0x00000100L
+#define RCC_EP_DEV0_1_EP_PCIE_RX_CNTL__RX_IGNORE_TC_ERR_MASK 0x00000200L
+#define RCC_EP_DEV0_1_EP_PCIE_RX_CNTL__RX_PCIE_CPL_TIMEOUT_DIS_MASK 0x00100000L
+#define RCC_EP_DEV0_1_EP_PCIE_RX_CNTL__RX_IGNORE_SHORTPREFIX_ERR_MASK 0x00200000L
+#define RCC_EP_DEV0_1_EP_PCIE_RX_CNTL__RX_IGNORE_MAXPREFIX_ERR_MASK 0x00400000L
+#define RCC_EP_DEV0_1_EP_PCIE_RX_CNTL__RX_IGNORE_INVALIDPASID_ERR_MASK 0x01000000L
+#define RCC_EP_DEV0_1_EP_PCIE_RX_CNTL__RX_IGNORE_NOT_PASID_UR_MASK 0x02000000L
+#define RCC_EP_DEV0_1_EP_PCIE_RX_CNTL__RX_TPH_DIS_MASK 0x04000000L
+//RCC_EP_DEV0_1_EP_PCIE_LC_SPEED_CNTL
+#define RCC_EP_DEV0_1_EP_PCIE_LC_SPEED_CNTL__LC_GEN2_EN_STRAP__SHIFT 0x0
+#define RCC_EP_DEV0_1_EP_PCIE_LC_SPEED_CNTL__LC_GEN3_EN_STRAP__SHIFT 0x1
+#define RCC_EP_DEV0_1_EP_PCIE_LC_SPEED_CNTL__LC_GEN4_EN_STRAP__SHIFT 0x2
+#define RCC_EP_DEV0_1_EP_PCIE_LC_SPEED_CNTL__LC_GEN5_EN_STRAP__SHIFT 0x3
+#define RCC_EP_DEV0_1_EP_PCIE_LC_SPEED_CNTL__LC_GEN2_EN_STRAP_MASK 0x00000001L
+#define RCC_EP_DEV0_1_EP_PCIE_LC_SPEED_CNTL__LC_GEN3_EN_STRAP_MASK 0x00000002L
+#define RCC_EP_DEV0_1_EP_PCIE_LC_SPEED_CNTL__LC_GEN4_EN_STRAP_MASK 0x00000004L
+#define RCC_EP_DEV0_1_EP_PCIE_LC_SPEED_CNTL__LC_GEN5_EN_STRAP_MASK 0x00000008L
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dwn_dev0_RCCPORTDEC
+//RCC_DWN_DEV0_1_DN_PCIE_RESERVED
+#define RCC_DWN_DEV0_1_DN_PCIE_RESERVED__PCIE_RESERVED__SHIFT 0x0
+#define RCC_DWN_DEV0_1_DN_PCIE_RESERVED__PCIE_RESERVED_MASK 0xFFFFFFFFL
+//RCC_DWN_DEV0_1_DN_PCIE_SCRATCH
+#define RCC_DWN_DEV0_1_DN_PCIE_SCRATCH__PCIE_SCRATCH__SHIFT 0x0
+#define RCC_DWN_DEV0_1_DN_PCIE_SCRATCH__PCIE_SCRATCH_MASK 0xFFFFFFFFL
+//RCC_DWN_DEV0_1_DN_PCIE_CNTL
+#define RCC_DWN_DEV0_1_DN_PCIE_CNTL__HWINIT_WR_LOCK__SHIFT 0x0
+#define RCC_DWN_DEV0_1_DN_PCIE_CNTL__UR_ERR_REPORT_DIS_DN__SHIFT 0x7
+#define RCC_DWN_DEV0_1_DN_PCIE_CNTL__RX_IGNORE_LTR_MSG_UR__SHIFT 0x1e
+#define RCC_DWN_DEV0_1_DN_PCIE_CNTL__HWINIT_WR_LOCK_MASK 0x00000001L
+#define RCC_DWN_DEV0_1_DN_PCIE_CNTL__UR_ERR_REPORT_DIS_DN_MASK 0x00000080L
+#define RCC_DWN_DEV0_1_DN_PCIE_CNTL__RX_IGNORE_LTR_MSG_UR_MASK 0x40000000L
+//RCC_DWN_DEV0_1_DN_PCIE_CONFIG_CNTL
+#define RCC_DWN_DEV0_1_DN_PCIE_CONFIG_CNTL__CI_EXTENDED_TAG_EN_OVERRIDE__SHIFT 0x19
+#define RCC_DWN_DEV0_1_DN_PCIE_CONFIG_CNTL__CI_EXTENDED_TAG_EN_OVERRIDE_MASK 0x06000000L
+//RCC_DWN_DEV0_1_DN_PCIE_RX_CNTL2
+#define RCC_DWN_DEV0_1_DN_PCIE_RX_CNTL2__FLR_EXTEND_MODE__SHIFT 0x1c
+#define RCC_DWN_DEV0_1_DN_PCIE_RX_CNTL2__FLR_EXTEND_MODE_MASK 0x70000000L
+//RCC_DWN_DEV0_1_DN_PCIE_BUS_CNTL
+#define RCC_DWN_DEV0_1_DN_PCIE_BUS_CNTL__IMMEDIATE_PMI_DIS__SHIFT 0x7
+#define RCC_DWN_DEV0_1_DN_PCIE_BUS_CNTL__AER_CPL_TIMEOUT_RO_DIS_SWDN__SHIFT 0x8
+#define RCC_DWN_DEV0_1_DN_PCIE_BUS_CNTL__IMMEDIATE_PMI_DIS_MASK 0x00000080L
+#define RCC_DWN_DEV0_1_DN_PCIE_BUS_CNTL__AER_CPL_TIMEOUT_RO_DIS_SWDN_MASK 0x00000100L
+//RCC_DWN_DEV0_1_DN_PCIE_CFG_CNTL
+#define RCC_DWN_DEV0_1_DN_PCIE_CFG_CNTL__CFG_EN_DEC_TO_HIDDEN_REG__SHIFT 0x0
+#define RCC_DWN_DEV0_1_DN_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN2_HIDDEN_REG__SHIFT 0x1
+#define RCC_DWN_DEV0_1_DN_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN3_HIDDEN_REG__SHIFT 0x2
+#define RCC_DWN_DEV0_1_DN_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN4_HIDDEN_REG__SHIFT 0x3
+#define RCC_DWN_DEV0_1_DN_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN5_HIDDEN_REG__SHIFT 0x4
+#define RCC_DWN_DEV0_1_DN_PCIE_CFG_CNTL__CFG_EN_DEC_TO_HIDDEN_REG_MASK 0x00000001L
+#define RCC_DWN_DEV0_1_DN_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN2_HIDDEN_REG_MASK 0x00000002L
+#define RCC_DWN_DEV0_1_DN_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN3_HIDDEN_REG_MASK 0x00000004L
+#define RCC_DWN_DEV0_1_DN_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN4_HIDDEN_REG_MASK 0x00000008L
+#define RCC_DWN_DEV0_1_DN_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN5_HIDDEN_REG_MASK 0x00000010L
+//RCC_DWN_DEV0_1_DN_PCIE_STRAP_F0
+#define RCC_DWN_DEV0_1_DN_PCIE_STRAP_F0__STRAP_F0_EN__SHIFT 0x0
+#define RCC_DWN_DEV0_1_DN_PCIE_STRAP_F0__STRAP_F0_MC_EN__SHIFT 0x11
+#define RCC_DWN_DEV0_1_DN_PCIE_STRAP_F0__STRAP_F0_MSI_MULTI_CAP__SHIFT 0x15
+#define RCC_DWN_DEV0_1_DN_PCIE_STRAP_F0__STRAP_F0_EN_MASK 0x00000001L
+#define RCC_DWN_DEV0_1_DN_PCIE_STRAP_F0__STRAP_F0_MC_EN_MASK 0x00020000L
+#define RCC_DWN_DEV0_1_DN_PCIE_STRAP_F0__STRAP_F0_MSI_MULTI_CAP_MASK 0x00E00000L
+//RCC_DWN_DEV0_1_DN_PCIE_STRAP_MISC
+#define RCC_DWN_DEV0_1_DN_PCIE_STRAP_MISC__STRAP_CLK_PM_EN__SHIFT 0x18
+#define RCC_DWN_DEV0_1_DN_PCIE_STRAP_MISC__STRAP_MST_ADR64_EN__SHIFT 0x1d
+#define RCC_DWN_DEV0_1_DN_PCIE_STRAP_MISC__STRAP_CLK_PM_EN_MASK 0x01000000L
+#define RCC_DWN_DEV0_1_DN_PCIE_STRAP_MISC__STRAP_MST_ADR64_EN_MASK 0x20000000L
+//RCC_DWN_DEV0_1_DN_PCIE_STRAP_MISC2
+#define RCC_DWN_DEV0_1_DN_PCIE_STRAP_MISC2__STRAP_MSTCPL_TIMEOUT_EN__SHIFT 0x2
+#define RCC_DWN_DEV0_1_DN_PCIE_STRAP_MISC2__STRAP_MSTCPL_TIMEOUT_EN_MASK 0x00000004L
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dwnp_dev0_RCCPORTDEC
+//RCC_DWNP_DEV0_1_PCIE_ERR_CNTL
+#define RCC_DWNP_DEV0_1_PCIE_ERR_CNTL__ERR_REPORTING_DIS__SHIFT 0x0
+#define RCC_DWNP_DEV0_1_PCIE_ERR_CNTL__AER_HDR_LOG_TIMEOUT__SHIFT 0x8
+#define RCC_DWNP_DEV0_1_PCIE_ERR_CNTL__AER_HDR_LOG_F0_TIMER_EXPIRED__SHIFT 0xb
+#define RCC_DWNP_DEV0_1_PCIE_ERR_CNTL__SEND_ERR_MSG_IMMEDIATELY__SHIFT 0x11
+#define RCC_DWNP_DEV0_1_PCIE_ERR_CNTL__ERR_CORR_RCVD_CLR__SHIFT 0x12
+#define RCC_DWNP_DEV0_1_PCIE_ERR_CNTL__NONFATAL_ERR_RCVD_CLR__SHIFT 0x13
+#define RCC_DWNP_DEV0_1_PCIE_ERR_CNTL__FATAL_ERR_RCVD_CLR__SHIFT 0x14
+#define RCC_DWNP_DEV0_1_PCIE_ERR_CNTL__ERR_REPORTING_DIS_MASK 0x00000001L
+#define RCC_DWNP_DEV0_1_PCIE_ERR_CNTL__AER_HDR_LOG_TIMEOUT_MASK 0x00000700L
+#define RCC_DWNP_DEV0_1_PCIE_ERR_CNTL__AER_HDR_LOG_F0_TIMER_EXPIRED_MASK 0x00000800L
+#define RCC_DWNP_DEV0_1_PCIE_ERR_CNTL__SEND_ERR_MSG_IMMEDIATELY_MASK 0x00020000L
+#define RCC_DWNP_DEV0_1_PCIE_ERR_CNTL__ERR_CORR_RCVD_CLR_MASK 0x00040000L
+#define RCC_DWNP_DEV0_1_PCIE_ERR_CNTL__NONFATAL_ERR_RCVD_CLR_MASK 0x00080000L
+#define RCC_DWNP_DEV0_1_PCIE_ERR_CNTL__FATAL_ERR_RCVD_CLR_MASK 0x00100000L
+//RCC_DWNP_DEV0_1_PCIE_RX_CNTL
+#define RCC_DWNP_DEV0_1_PCIE_RX_CNTL__RX_IGNORE_MAX_PAYLOAD_ERR__SHIFT 0x8
+#define RCC_DWNP_DEV0_1_PCIE_RX_CNTL__RX_IGNORE_TC_ERR_DN__SHIFT 0x9
+#define RCC_DWNP_DEV0_1_PCIE_RX_CNTL__RX_PCIE_CPL_TIMEOUT_DIS__SHIFT 0x14
+#define RCC_DWNP_DEV0_1_PCIE_RX_CNTL__RX_IGNORE_SHORTPREFIX_ERR_DN__SHIFT 0x15
+#define RCC_DWNP_DEV0_1_PCIE_RX_CNTL__RX_RCB_FLR_TIMEOUT_DIS__SHIFT 0x1b
+#define RCC_DWNP_DEV0_1_PCIE_RX_CNTL__RX_IGNORE_MAX_PAYLOAD_ERR_MASK 0x00000100L
+#define RCC_DWNP_DEV0_1_PCIE_RX_CNTL__RX_IGNORE_TC_ERR_DN_MASK 0x00000200L
+#define RCC_DWNP_DEV0_1_PCIE_RX_CNTL__RX_PCIE_CPL_TIMEOUT_DIS_MASK 0x00100000L
+#define RCC_DWNP_DEV0_1_PCIE_RX_CNTL__RX_IGNORE_SHORTPREFIX_ERR_DN_MASK 0x00200000L
+#define RCC_DWNP_DEV0_1_PCIE_RX_CNTL__RX_RCB_FLR_TIMEOUT_DIS_MASK 0x08000000L
+//RCC_DWNP_DEV0_1_PCIE_LC_SPEED_CNTL
+#define RCC_DWNP_DEV0_1_PCIE_LC_SPEED_CNTL__LC_GEN2_EN_STRAP__SHIFT 0x0
+#define RCC_DWNP_DEV0_1_PCIE_LC_SPEED_CNTL__LC_GEN3_EN_STRAP__SHIFT 0x1
+#define RCC_DWNP_DEV0_1_PCIE_LC_SPEED_CNTL__LC_GEN4_EN_STRAP__SHIFT 0x2
+#define RCC_DWNP_DEV0_1_PCIE_LC_SPEED_CNTL__LC_GEN5_EN_STRAP__SHIFT 0x3
+#define RCC_DWNP_DEV0_1_PCIE_LC_SPEED_CNTL__LC_GEN2_EN_STRAP_MASK 0x00000001L
+#define RCC_DWNP_DEV0_1_PCIE_LC_SPEED_CNTL__LC_GEN3_EN_STRAP_MASK 0x00000002L
+#define RCC_DWNP_DEV0_1_PCIE_LC_SPEED_CNTL__LC_GEN4_EN_STRAP_MASK 0x00000004L
+#define RCC_DWNP_DEV0_1_PCIE_LC_SPEED_CNTL__LC_GEN5_EN_STRAP_MASK 0x00000008L
+//RCC_DWNP_DEV0_1_PCIE_LC_CNTL2
+#define RCC_DWNP_DEV0_1_PCIE_LC_CNTL2__DL_STATE_CHANGED_NOTIFICATION_DIS__SHIFT 0x0
+#define RCC_DWNP_DEV0_1_PCIE_LC_CNTL2__LC_LINK_BW_NOTIFICATION_DIS__SHIFT 0x1b
+#define RCC_DWNP_DEV0_1_PCIE_LC_CNTL2__DL_STATE_CHANGED_NOTIFICATION_DIS_MASK 0x00000001L
+#define RCC_DWNP_DEV0_1_PCIE_LC_CNTL2__LC_LINK_BW_NOTIFICATION_DIS_MASK 0x08000000L
+//RCC_DWNP_DEV0_1_PCIEP_STRAP_MISC
+#define RCC_DWNP_DEV0_1_PCIEP_STRAP_MISC__STRAP_MULTI_FUNC_EN__SHIFT 0xa
+#define RCC_DWNP_DEV0_1_PCIEP_STRAP_MISC__STRAP_MULTI_FUNC_EN_MASK 0x00000400L
+//RCC_DWNP_DEV0_1_LTR_MSG_INFO_FROM_EP
+#define RCC_DWNP_DEV0_1_LTR_MSG_INFO_FROM_EP__LTR_MSG_INFO_FROM_EP__SHIFT 0x0
+#define RCC_DWNP_DEV0_1_LTR_MSG_INFO_FROM_EP__LTR_MSG_INFO_FROM_EP_MASK 0xFFFFFFFFL
+
+
+// addressBlock: aid_nbio_nbif0_rcc_pfc_amdgfx_RCCPFCDEC
+//RCC_PFC_AMDGFX_RCC_PFC_LTR_CNTL
+#define RCC_PFC_AMDGFX_RCC_PFC_LTR_CNTL__SNOOP_LATENCY_VALUE__SHIFT 0x0
+#define RCC_PFC_AMDGFX_RCC_PFC_LTR_CNTL__SNOOP_LATENCY_SCALE__SHIFT 0xa
+#define RCC_PFC_AMDGFX_RCC_PFC_LTR_CNTL__SNOOP_REQUIREMENT__SHIFT 0xf
+#define RCC_PFC_AMDGFX_RCC_PFC_LTR_CNTL__NONSNOOP_LATENCY_VALUE__SHIFT 0x10
+#define RCC_PFC_AMDGFX_RCC_PFC_LTR_CNTL__NONSNOOP_LATENCY_SCALE__SHIFT 0x1a
+#define RCC_PFC_AMDGFX_RCC_PFC_LTR_CNTL__NONSNOOP_REQUIREMENT__SHIFT 0x1f
+#define RCC_PFC_AMDGFX_RCC_PFC_LTR_CNTL__SNOOP_LATENCY_VALUE_MASK 0x000003FFL
+#define RCC_PFC_AMDGFX_RCC_PFC_LTR_CNTL__SNOOP_LATENCY_SCALE_MASK 0x00001C00L
+#define RCC_PFC_AMDGFX_RCC_PFC_LTR_CNTL__SNOOP_REQUIREMENT_MASK 0x00008000L
+#define RCC_PFC_AMDGFX_RCC_PFC_LTR_CNTL__NONSNOOP_LATENCY_VALUE_MASK 0x03FF0000L
+#define RCC_PFC_AMDGFX_RCC_PFC_LTR_CNTL__NONSNOOP_LATENCY_SCALE_MASK 0x1C000000L
+#define RCC_PFC_AMDGFX_RCC_PFC_LTR_CNTL__NONSNOOP_REQUIREMENT_MASK 0x80000000L
+//RCC_PFC_AMDGFX_RCC_PFC_PME_RESTORE
+#define RCC_PFC_AMDGFX_RCC_PFC_PME_RESTORE__PME_RESTORE_PME_EN__SHIFT 0x0
+#define RCC_PFC_AMDGFX_RCC_PFC_PME_RESTORE__PME_RESTORE_PME_STATUS__SHIFT 0x8
+#define RCC_PFC_AMDGFX_RCC_PFC_PME_RESTORE__PME_RESTORE_PME_EN_MASK 0x00000001L
+#define RCC_PFC_AMDGFX_RCC_PFC_PME_RESTORE__PME_RESTORE_PME_STATUS_MASK 0x00000100L
+//RCC_PFC_AMDGFX_RCC_PFC_STICKY_RESTORE_0
+#define RCC_PFC_AMDGFX_RCC_PFC_STICKY_RESTORE_0__RESTORE_PSN_ERR_STATUS__SHIFT 0x0
+#define RCC_PFC_AMDGFX_RCC_PFC_STICKY_RESTORE_0__RESTORE_CPL_TIMEOUT_STATUS__SHIFT 0x1
+#define RCC_PFC_AMDGFX_RCC_PFC_STICKY_RESTORE_0__RESTORE_CPL_ABORT_ERR_STATUS__SHIFT 0x2
+#define RCC_PFC_AMDGFX_RCC_PFC_STICKY_RESTORE_0__RESTORE_UNEXP_CPL_STATUS__SHIFT 0x3
+#define RCC_PFC_AMDGFX_RCC_PFC_STICKY_RESTORE_0__RESTORE_MAL_TLP_STATUS__SHIFT 0x4
+#define RCC_PFC_AMDGFX_RCC_PFC_STICKY_RESTORE_0__RESTORE_ECRC_ERR_STATUS__SHIFT 0x5
+#define RCC_PFC_AMDGFX_RCC_PFC_STICKY_RESTORE_0__RESTORE_UNSUPP_REQ_ERR_STATUS__SHIFT 0x6
+#define RCC_PFC_AMDGFX_RCC_PFC_STICKY_RESTORE_0__RESTORE_ADVISORY_NONFATAL_ERR_STATUS__SHIFT 0x7
+#define RCC_PFC_AMDGFX_RCC_PFC_STICKY_RESTORE_0__RESTORE_PSN_ERR_STATUS_MASK 0x00000001L
+#define RCC_PFC_AMDGFX_RCC_PFC_STICKY_RESTORE_0__RESTORE_CPL_TIMEOUT_STATUS_MASK 0x00000002L
+#define RCC_PFC_AMDGFX_RCC_PFC_STICKY_RESTORE_0__RESTORE_CPL_ABORT_ERR_STATUS_MASK 0x00000004L
+#define RCC_PFC_AMDGFX_RCC_PFC_STICKY_RESTORE_0__RESTORE_UNEXP_CPL_STATUS_MASK 0x00000008L
+#define RCC_PFC_AMDGFX_RCC_PFC_STICKY_RESTORE_0__RESTORE_MAL_TLP_STATUS_MASK 0x00000010L
+#define RCC_PFC_AMDGFX_RCC_PFC_STICKY_RESTORE_0__RESTORE_ECRC_ERR_STATUS_MASK 0x00000020L
+#define RCC_PFC_AMDGFX_RCC_PFC_STICKY_RESTORE_0__RESTORE_UNSUPP_REQ_ERR_STATUS_MASK 0x00000040L
+#define RCC_PFC_AMDGFX_RCC_PFC_STICKY_RESTORE_0__RESTORE_ADVISORY_NONFATAL_ERR_STATUS_MASK 0x00000080L
+//RCC_PFC_AMDGFX_RCC_PFC_STICKY_RESTORE_1
+#define RCC_PFC_AMDGFX_RCC_PFC_STICKY_RESTORE_1__RESTORE_TLP_HDR_0__SHIFT 0x0
+#define RCC_PFC_AMDGFX_RCC_PFC_STICKY_RESTORE_1__RESTORE_TLP_HDR_0_MASK 0xFFFFFFFFL
+//RCC_PFC_AMDGFX_RCC_PFC_STICKY_RESTORE_2
+#define RCC_PFC_AMDGFX_RCC_PFC_STICKY_RESTORE_2__RESTORE_TLP_HDR_1__SHIFT 0x0
+#define RCC_PFC_AMDGFX_RCC_PFC_STICKY_RESTORE_2__RESTORE_TLP_HDR_1_MASK 0xFFFFFFFFL
+//RCC_PFC_AMDGFX_RCC_PFC_STICKY_RESTORE_3
+#define RCC_PFC_AMDGFX_RCC_PFC_STICKY_RESTORE_3__RESTORE_TLP_HDR_2__SHIFT 0x0
+#define RCC_PFC_AMDGFX_RCC_PFC_STICKY_RESTORE_3__RESTORE_TLP_HDR_2_MASK 0xFFFFFFFFL
+//RCC_PFC_AMDGFX_RCC_PFC_STICKY_RESTORE_4
+#define RCC_PFC_AMDGFX_RCC_PFC_STICKY_RESTORE_4__RESTORE_TLP_HDR_3__SHIFT 0x0
+#define RCC_PFC_AMDGFX_RCC_PFC_STICKY_RESTORE_4__RESTORE_TLP_HDR_3_MASK 0xFFFFFFFFL
+//RCC_PFC_AMDGFX_RCC_PFC_STICKY_RESTORE_5
+#define RCC_PFC_AMDGFX_RCC_PFC_STICKY_RESTORE_5__RESTORE_TLP_PREFIX__SHIFT 0x0
+#define RCC_PFC_AMDGFX_RCC_PFC_STICKY_RESTORE_5__RESTORE_TLP_PREFIX_MASK 0xFFFFFFFFL
+//RCC_PFC_AMDGFX_RCC_PFC_AUXPWR_CNTL
+#define RCC_PFC_AMDGFX_RCC_PFC_AUXPWR_CNTL__AUX_CURRENT_OVERRIDE__SHIFT 0x0
+#define RCC_PFC_AMDGFX_RCC_PFC_AUXPWR_CNTL__AUX_POWER_DETECTED_OVERRIDE__SHIFT 0x3
+#define RCC_PFC_AMDGFX_RCC_PFC_AUXPWR_CNTL__AUX_CURRENT_OVERRIDE_MASK 0x00000007L
+#define RCC_PFC_AMDGFX_RCC_PFC_AUXPWR_CNTL__AUX_POWER_DETECTED_OVERRIDE_MASK 0x00000008L
+
+
+// addressBlock: aid_nbio_nbif0_pciemsix_0_usb_MSIXTDEC
+//PCIEMSIX_VECT0_ADDR_LO
+#define PCIEMSIX_VECT0_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT0_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT0_ADDR_HI
+#define PCIEMSIX_VECT0_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT0_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT0_MSG_DATA
+#define PCIEMSIX_VECT0_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT0_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT0_CONTROL
+#define PCIEMSIX_VECT0_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT0_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT1_ADDR_LO
+#define PCIEMSIX_VECT1_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT1_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT1_ADDR_HI
+#define PCIEMSIX_VECT1_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT1_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT1_MSG_DATA
+#define PCIEMSIX_VECT1_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT1_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT1_CONTROL
+#define PCIEMSIX_VECT1_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT1_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT2_ADDR_LO
+#define PCIEMSIX_VECT2_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT2_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT2_ADDR_HI
+#define PCIEMSIX_VECT2_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT2_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT2_MSG_DATA
+#define PCIEMSIX_VECT2_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT2_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT2_CONTROL
+#define PCIEMSIX_VECT2_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT2_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT3_ADDR_LO
+#define PCIEMSIX_VECT3_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT3_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT3_ADDR_HI
+#define PCIEMSIX_VECT3_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT3_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT3_MSG_DATA
+#define PCIEMSIX_VECT3_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT3_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT3_CONTROL
+#define PCIEMSIX_VECT3_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT3_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT4_ADDR_LO
+#define PCIEMSIX_VECT4_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT4_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT4_ADDR_HI
+#define PCIEMSIX_VECT4_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT4_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT4_MSG_DATA
+#define PCIEMSIX_VECT4_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT4_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT4_CONTROL
+#define PCIEMSIX_VECT4_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT4_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT5_ADDR_LO
+#define PCIEMSIX_VECT5_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT5_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT5_ADDR_HI
+#define PCIEMSIX_VECT5_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT5_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT5_MSG_DATA
+#define PCIEMSIX_VECT5_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT5_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT5_CONTROL
+#define PCIEMSIX_VECT5_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT5_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT6_ADDR_LO
+#define PCIEMSIX_VECT6_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT6_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT6_ADDR_HI
+#define PCIEMSIX_VECT6_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT6_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT6_MSG_DATA
+#define PCIEMSIX_VECT6_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT6_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT6_CONTROL
+#define PCIEMSIX_VECT6_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT6_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT7_ADDR_LO
+#define PCIEMSIX_VECT7_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT7_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT7_ADDR_HI
+#define PCIEMSIX_VECT7_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT7_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT7_MSG_DATA
+#define PCIEMSIX_VECT7_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT7_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT7_CONTROL
+#define PCIEMSIX_VECT7_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT7_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT8_ADDR_LO
+#define PCIEMSIX_VECT8_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT8_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT8_ADDR_HI
+#define PCIEMSIX_VECT8_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT8_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT8_MSG_DATA
+#define PCIEMSIX_VECT8_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT8_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT8_CONTROL
+#define PCIEMSIX_VECT8_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT8_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT9_ADDR_LO
+#define PCIEMSIX_VECT9_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT9_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT9_ADDR_HI
+#define PCIEMSIX_VECT9_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT9_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT9_MSG_DATA
+#define PCIEMSIX_VECT9_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT9_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT9_CONTROL
+#define PCIEMSIX_VECT9_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT9_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT10_ADDR_LO
+#define PCIEMSIX_VECT10_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT10_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT10_ADDR_HI
+#define PCIEMSIX_VECT10_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT10_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT10_MSG_DATA
+#define PCIEMSIX_VECT10_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT10_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT10_CONTROL
+#define PCIEMSIX_VECT10_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT10_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT11_ADDR_LO
+#define PCIEMSIX_VECT11_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT11_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT11_ADDR_HI
+#define PCIEMSIX_VECT11_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT11_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT11_MSG_DATA
+#define PCIEMSIX_VECT11_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT11_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT11_CONTROL
+#define PCIEMSIX_VECT11_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT11_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT12_ADDR_LO
+#define PCIEMSIX_VECT12_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT12_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT12_ADDR_HI
+#define PCIEMSIX_VECT12_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT12_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT12_MSG_DATA
+#define PCIEMSIX_VECT12_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT12_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT12_CONTROL
+#define PCIEMSIX_VECT12_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT12_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT13_ADDR_LO
+#define PCIEMSIX_VECT13_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT13_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT13_ADDR_HI
+#define PCIEMSIX_VECT13_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT13_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT13_MSG_DATA
+#define PCIEMSIX_VECT13_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT13_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT13_CONTROL
+#define PCIEMSIX_VECT13_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT13_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT14_ADDR_LO
+#define PCIEMSIX_VECT14_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT14_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT14_ADDR_HI
+#define PCIEMSIX_VECT14_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT14_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT14_MSG_DATA
+#define PCIEMSIX_VECT14_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT14_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT14_CONTROL
+#define PCIEMSIX_VECT14_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT14_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT15_ADDR_LO
+#define PCIEMSIX_VECT15_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT15_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT15_ADDR_HI
+#define PCIEMSIX_VECT15_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT15_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT15_MSG_DATA
+#define PCIEMSIX_VECT15_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT15_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT15_CONTROL
+#define PCIEMSIX_VECT15_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT15_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT16_ADDR_LO
+#define PCIEMSIX_VECT16_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT16_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT16_ADDR_HI
+#define PCIEMSIX_VECT16_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT16_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT16_MSG_DATA
+#define PCIEMSIX_VECT16_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT16_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT16_CONTROL
+#define PCIEMSIX_VECT16_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT16_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT17_ADDR_LO
+#define PCIEMSIX_VECT17_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT17_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT17_ADDR_HI
+#define PCIEMSIX_VECT17_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT17_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT17_MSG_DATA
+#define PCIEMSIX_VECT17_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT17_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT17_CONTROL
+#define PCIEMSIX_VECT17_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT17_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT18_ADDR_LO
+#define PCIEMSIX_VECT18_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT18_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT18_ADDR_HI
+#define PCIEMSIX_VECT18_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT18_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT18_MSG_DATA
+#define PCIEMSIX_VECT18_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT18_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT18_CONTROL
+#define PCIEMSIX_VECT18_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT18_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT19_ADDR_LO
+#define PCIEMSIX_VECT19_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT19_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT19_ADDR_HI
+#define PCIEMSIX_VECT19_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT19_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT19_MSG_DATA
+#define PCIEMSIX_VECT19_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT19_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT19_CONTROL
+#define PCIEMSIX_VECT19_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT19_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT20_ADDR_LO
+#define PCIEMSIX_VECT20_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT20_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT20_ADDR_HI
+#define PCIEMSIX_VECT20_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT20_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT20_MSG_DATA
+#define PCIEMSIX_VECT20_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT20_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT20_CONTROL
+#define PCIEMSIX_VECT20_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT20_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT21_ADDR_LO
+#define PCIEMSIX_VECT21_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT21_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT21_ADDR_HI
+#define PCIEMSIX_VECT21_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT21_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT21_MSG_DATA
+#define PCIEMSIX_VECT21_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT21_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT21_CONTROL
+#define PCIEMSIX_VECT21_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT21_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT22_ADDR_LO
+#define PCIEMSIX_VECT22_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT22_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT22_ADDR_HI
+#define PCIEMSIX_VECT22_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT22_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT22_MSG_DATA
+#define PCIEMSIX_VECT22_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT22_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT22_CONTROL
+#define PCIEMSIX_VECT22_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT22_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT23_ADDR_LO
+#define PCIEMSIX_VECT23_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT23_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT23_ADDR_HI
+#define PCIEMSIX_VECT23_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT23_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT23_MSG_DATA
+#define PCIEMSIX_VECT23_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT23_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT23_CONTROL
+#define PCIEMSIX_VECT23_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT23_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT24_ADDR_LO
+#define PCIEMSIX_VECT24_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT24_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT24_ADDR_HI
+#define PCIEMSIX_VECT24_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT24_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT24_MSG_DATA
+#define PCIEMSIX_VECT24_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT24_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT24_CONTROL
+#define PCIEMSIX_VECT24_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT24_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT25_ADDR_LO
+#define PCIEMSIX_VECT25_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT25_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT25_ADDR_HI
+#define PCIEMSIX_VECT25_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT25_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT25_MSG_DATA
+#define PCIEMSIX_VECT25_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT25_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT25_CONTROL
+#define PCIEMSIX_VECT25_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT25_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT26_ADDR_LO
+#define PCIEMSIX_VECT26_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT26_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT26_ADDR_HI
+#define PCIEMSIX_VECT26_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT26_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT26_MSG_DATA
+#define PCIEMSIX_VECT26_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT26_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT26_CONTROL
+#define PCIEMSIX_VECT26_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT26_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT27_ADDR_LO
+#define PCIEMSIX_VECT27_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT27_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT27_ADDR_HI
+#define PCIEMSIX_VECT27_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT27_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT27_MSG_DATA
+#define PCIEMSIX_VECT27_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT27_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT27_CONTROL
+#define PCIEMSIX_VECT27_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT27_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT28_ADDR_LO
+#define PCIEMSIX_VECT28_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT28_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT28_ADDR_HI
+#define PCIEMSIX_VECT28_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT28_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT28_MSG_DATA
+#define PCIEMSIX_VECT28_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT28_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT28_CONTROL
+#define PCIEMSIX_VECT28_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT28_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT29_ADDR_LO
+#define PCIEMSIX_VECT29_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT29_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT29_ADDR_HI
+#define PCIEMSIX_VECT29_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT29_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT29_MSG_DATA
+#define PCIEMSIX_VECT29_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT29_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT29_CONTROL
+#define PCIEMSIX_VECT29_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT29_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT30_ADDR_LO
+#define PCIEMSIX_VECT30_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT30_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT30_ADDR_HI
+#define PCIEMSIX_VECT30_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT30_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT30_MSG_DATA
+#define PCIEMSIX_VECT30_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT30_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT30_CONTROL
+#define PCIEMSIX_VECT30_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT30_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT31_ADDR_LO
+#define PCIEMSIX_VECT31_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT31_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT31_ADDR_HI
+#define PCIEMSIX_VECT31_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT31_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT31_MSG_DATA
+#define PCIEMSIX_VECT31_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT31_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT31_CONTROL
+#define PCIEMSIX_VECT31_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT31_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT32_ADDR_LO
+#define PCIEMSIX_VECT32_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT32_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT32_ADDR_HI
+#define PCIEMSIX_VECT32_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT32_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT32_MSG_DATA
+#define PCIEMSIX_VECT32_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT32_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT32_CONTROL
+#define PCIEMSIX_VECT32_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT32_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT33_ADDR_LO
+#define PCIEMSIX_VECT33_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT33_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT33_ADDR_HI
+#define PCIEMSIX_VECT33_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT33_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT33_MSG_DATA
+#define PCIEMSIX_VECT33_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT33_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT33_CONTROL
+#define PCIEMSIX_VECT33_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT33_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT34_ADDR_LO
+#define PCIEMSIX_VECT34_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT34_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT34_ADDR_HI
+#define PCIEMSIX_VECT34_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT34_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT34_MSG_DATA
+#define PCIEMSIX_VECT34_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT34_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT34_CONTROL
+#define PCIEMSIX_VECT34_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT34_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT35_ADDR_LO
+#define PCIEMSIX_VECT35_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT35_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT35_ADDR_HI
+#define PCIEMSIX_VECT35_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT35_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT35_MSG_DATA
+#define PCIEMSIX_VECT35_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT35_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT35_CONTROL
+#define PCIEMSIX_VECT35_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT35_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT36_ADDR_LO
+#define PCIEMSIX_VECT36_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT36_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT36_ADDR_HI
+#define PCIEMSIX_VECT36_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT36_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT36_MSG_DATA
+#define PCIEMSIX_VECT36_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT36_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT36_CONTROL
+#define PCIEMSIX_VECT36_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT36_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT37_ADDR_LO
+#define PCIEMSIX_VECT37_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT37_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT37_ADDR_HI
+#define PCIEMSIX_VECT37_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT37_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT37_MSG_DATA
+#define PCIEMSIX_VECT37_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT37_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT37_CONTROL
+#define PCIEMSIX_VECT37_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT37_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT38_ADDR_LO
+#define PCIEMSIX_VECT38_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT38_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT38_ADDR_HI
+#define PCIEMSIX_VECT38_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT38_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT38_MSG_DATA
+#define PCIEMSIX_VECT38_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT38_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT38_CONTROL
+#define PCIEMSIX_VECT38_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT38_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT39_ADDR_LO
+#define PCIEMSIX_VECT39_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT39_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT39_ADDR_HI
+#define PCIEMSIX_VECT39_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT39_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT39_MSG_DATA
+#define PCIEMSIX_VECT39_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT39_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT39_CONTROL
+#define PCIEMSIX_VECT39_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT39_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT40_ADDR_LO
+#define PCIEMSIX_VECT40_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT40_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT40_ADDR_HI
+#define PCIEMSIX_VECT40_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT40_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT40_MSG_DATA
+#define PCIEMSIX_VECT40_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT40_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT40_CONTROL
+#define PCIEMSIX_VECT40_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT40_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT41_ADDR_LO
+#define PCIEMSIX_VECT41_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT41_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT41_ADDR_HI
+#define PCIEMSIX_VECT41_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT41_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT41_MSG_DATA
+#define PCIEMSIX_VECT41_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT41_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT41_CONTROL
+#define PCIEMSIX_VECT41_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT41_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT42_ADDR_LO
+#define PCIEMSIX_VECT42_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT42_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT42_ADDR_HI
+#define PCIEMSIX_VECT42_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT42_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT42_MSG_DATA
+#define PCIEMSIX_VECT42_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT42_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT42_CONTROL
+#define PCIEMSIX_VECT42_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT42_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT43_ADDR_LO
+#define PCIEMSIX_VECT43_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT43_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT43_ADDR_HI
+#define PCIEMSIX_VECT43_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT43_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT43_MSG_DATA
+#define PCIEMSIX_VECT43_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT43_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT43_CONTROL
+#define PCIEMSIX_VECT43_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT43_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT44_ADDR_LO
+#define PCIEMSIX_VECT44_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT44_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT44_ADDR_HI
+#define PCIEMSIX_VECT44_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT44_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT44_MSG_DATA
+#define PCIEMSIX_VECT44_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT44_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT44_CONTROL
+#define PCIEMSIX_VECT44_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT44_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT45_ADDR_LO
+#define PCIEMSIX_VECT45_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT45_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT45_ADDR_HI
+#define PCIEMSIX_VECT45_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT45_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT45_MSG_DATA
+#define PCIEMSIX_VECT45_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT45_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT45_CONTROL
+#define PCIEMSIX_VECT45_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT45_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT46_ADDR_LO
+#define PCIEMSIX_VECT46_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT46_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT46_ADDR_HI
+#define PCIEMSIX_VECT46_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT46_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT46_MSG_DATA
+#define PCIEMSIX_VECT46_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT46_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT46_CONTROL
+#define PCIEMSIX_VECT46_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT46_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT47_ADDR_LO
+#define PCIEMSIX_VECT47_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT47_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT47_ADDR_HI
+#define PCIEMSIX_VECT47_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT47_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT47_MSG_DATA
+#define PCIEMSIX_VECT47_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT47_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT47_CONTROL
+#define PCIEMSIX_VECT47_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT47_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT48_ADDR_LO
+#define PCIEMSIX_VECT48_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT48_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT48_ADDR_HI
+#define PCIEMSIX_VECT48_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT48_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT48_MSG_DATA
+#define PCIEMSIX_VECT48_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT48_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT48_CONTROL
+#define PCIEMSIX_VECT48_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT48_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT49_ADDR_LO
+#define PCIEMSIX_VECT49_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT49_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT49_ADDR_HI
+#define PCIEMSIX_VECT49_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT49_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT49_MSG_DATA
+#define PCIEMSIX_VECT49_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT49_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT49_CONTROL
+#define PCIEMSIX_VECT49_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT49_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT50_ADDR_LO
+#define PCIEMSIX_VECT50_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT50_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT50_ADDR_HI
+#define PCIEMSIX_VECT50_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT50_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT50_MSG_DATA
+#define PCIEMSIX_VECT50_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT50_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT50_CONTROL
+#define PCIEMSIX_VECT50_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT50_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT51_ADDR_LO
+#define PCIEMSIX_VECT51_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT51_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT51_ADDR_HI
+#define PCIEMSIX_VECT51_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT51_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT51_MSG_DATA
+#define PCIEMSIX_VECT51_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT51_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT51_CONTROL
+#define PCIEMSIX_VECT51_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT51_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT52_ADDR_LO
+#define PCIEMSIX_VECT52_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT52_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT52_ADDR_HI
+#define PCIEMSIX_VECT52_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT52_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT52_MSG_DATA
+#define PCIEMSIX_VECT52_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT52_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT52_CONTROL
+#define PCIEMSIX_VECT52_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT52_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT53_ADDR_LO
+#define PCIEMSIX_VECT53_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT53_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT53_ADDR_HI
+#define PCIEMSIX_VECT53_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT53_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT53_MSG_DATA
+#define PCIEMSIX_VECT53_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT53_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT53_CONTROL
+#define PCIEMSIX_VECT53_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT53_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT54_ADDR_LO
+#define PCIEMSIX_VECT54_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT54_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT54_ADDR_HI
+#define PCIEMSIX_VECT54_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT54_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT54_MSG_DATA
+#define PCIEMSIX_VECT54_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT54_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT54_CONTROL
+#define PCIEMSIX_VECT54_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT54_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT55_ADDR_LO
+#define PCIEMSIX_VECT55_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT55_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT55_ADDR_HI
+#define PCIEMSIX_VECT55_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT55_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT55_MSG_DATA
+#define PCIEMSIX_VECT55_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT55_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT55_CONTROL
+#define PCIEMSIX_VECT55_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT55_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT56_ADDR_LO
+#define PCIEMSIX_VECT56_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT56_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT56_ADDR_HI
+#define PCIEMSIX_VECT56_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT56_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT56_MSG_DATA
+#define PCIEMSIX_VECT56_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT56_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT56_CONTROL
+#define PCIEMSIX_VECT56_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT56_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT57_ADDR_LO
+#define PCIEMSIX_VECT57_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT57_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT57_ADDR_HI
+#define PCIEMSIX_VECT57_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT57_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT57_MSG_DATA
+#define PCIEMSIX_VECT57_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT57_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT57_CONTROL
+#define PCIEMSIX_VECT57_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT57_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT58_ADDR_LO
+#define PCIEMSIX_VECT58_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT58_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT58_ADDR_HI
+#define PCIEMSIX_VECT58_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT58_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT58_MSG_DATA
+#define PCIEMSIX_VECT58_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT58_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT58_CONTROL
+#define PCIEMSIX_VECT58_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT58_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT59_ADDR_LO
+#define PCIEMSIX_VECT59_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT59_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT59_ADDR_HI
+#define PCIEMSIX_VECT59_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT59_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT59_MSG_DATA
+#define PCIEMSIX_VECT59_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT59_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT59_CONTROL
+#define PCIEMSIX_VECT59_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT59_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT60_ADDR_LO
+#define PCIEMSIX_VECT60_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT60_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT60_ADDR_HI
+#define PCIEMSIX_VECT60_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT60_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT60_MSG_DATA
+#define PCIEMSIX_VECT60_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT60_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT60_CONTROL
+#define PCIEMSIX_VECT60_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT60_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT61_ADDR_LO
+#define PCIEMSIX_VECT61_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT61_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT61_ADDR_HI
+#define PCIEMSIX_VECT61_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT61_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT61_MSG_DATA
+#define PCIEMSIX_VECT61_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT61_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT61_CONTROL
+#define PCIEMSIX_VECT61_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT61_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT62_ADDR_LO
+#define PCIEMSIX_VECT62_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT62_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT62_ADDR_HI
+#define PCIEMSIX_VECT62_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT62_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT62_MSG_DATA
+#define PCIEMSIX_VECT62_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT62_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT62_CONTROL
+#define PCIEMSIX_VECT62_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT62_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT63_ADDR_LO
+#define PCIEMSIX_VECT63_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT63_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT63_ADDR_HI
+#define PCIEMSIX_VECT63_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT63_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT63_MSG_DATA
+#define PCIEMSIX_VECT63_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT63_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT63_CONTROL
+#define PCIEMSIX_VECT63_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT63_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT64_ADDR_LO
+#define PCIEMSIX_VECT64_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT64_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT64_ADDR_HI
+#define PCIEMSIX_VECT64_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT64_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT64_MSG_DATA
+#define PCIEMSIX_VECT64_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT64_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT64_CONTROL
+#define PCIEMSIX_VECT64_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT64_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT65_ADDR_LO
+#define PCIEMSIX_VECT65_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT65_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT65_ADDR_HI
+#define PCIEMSIX_VECT65_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT65_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT65_MSG_DATA
+#define PCIEMSIX_VECT65_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT65_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT65_CONTROL
+#define PCIEMSIX_VECT65_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT65_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT66_ADDR_LO
+#define PCIEMSIX_VECT66_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT66_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT66_ADDR_HI
+#define PCIEMSIX_VECT66_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT66_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT66_MSG_DATA
+#define PCIEMSIX_VECT66_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT66_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT66_CONTROL
+#define PCIEMSIX_VECT66_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT66_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT67_ADDR_LO
+#define PCIEMSIX_VECT67_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT67_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT67_ADDR_HI
+#define PCIEMSIX_VECT67_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT67_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT67_MSG_DATA
+#define PCIEMSIX_VECT67_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT67_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT67_CONTROL
+#define PCIEMSIX_VECT67_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT67_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT68_ADDR_LO
+#define PCIEMSIX_VECT68_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT68_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT68_ADDR_HI
+#define PCIEMSIX_VECT68_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT68_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT68_MSG_DATA
+#define PCIEMSIX_VECT68_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT68_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT68_CONTROL
+#define PCIEMSIX_VECT68_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT68_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT69_ADDR_LO
+#define PCIEMSIX_VECT69_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT69_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT69_ADDR_HI
+#define PCIEMSIX_VECT69_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT69_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT69_MSG_DATA
+#define PCIEMSIX_VECT69_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT69_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT69_CONTROL
+#define PCIEMSIX_VECT69_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT69_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT70_ADDR_LO
+#define PCIEMSIX_VECT70_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT70_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT70_ADDR_HI
+#define PCIEMSIX_VECT70_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT70_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT70_MSG_DATA
+#define PCIEMSIX_VECT70_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT70_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT70_CONTROL
+#define PCIEMSIX_VECT70_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT70_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT71_ADDR_LO
+#define PCIEMSIX_VECT71_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT71_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT71_ADDR_HI
+#define PCIEMSIX_VECT71_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT71_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT71_MSG_DATA
+#define PCIEMSIX_VECT71_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT71_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT71_CONTROL
+#define PCIEMSIX_VECT71_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT71_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT72_ADDR_LO
+#define PCIEMSIX_VECT72_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT72_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT72_ADDR_HI
+#define PCIEMSIX_VECT72_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT72_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT72_MSG_DATA
+#define PCIEMSIX_VECT72_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT72_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT72_CONTROL
+#define PCIEMSIX_VECT72_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT72_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT73_ADDR_LO
+#define PCIEMSIX_VECT73_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT73_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT73_ADDR_HI
+#define PCIEMSIX_VECT73_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT73_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT73_MSG_DATA
+#define PCIEMSIX_VECT73_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT73_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT73_CONTROL
+#define PCIEMSIX_VECT73_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT73_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT74_ADDR_LO
+#define PCIEMSIX_VECT74_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT74_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT74_ADDR_HI
+#define PCIEMSIX_VECT74_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT74_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT74_MSG_DATA
+#define PCIEMSIX_VECT74_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT74_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT74_CONTROL
+#define PCIEMSIX_VECT74_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT74_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT75_ADDR_LO
+#define PCIEMSIX_VECT75_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT75_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT75_ADDR_HI
+#define PCIEMSIX_VECT75_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT75_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT75_MSG_DATA
+#define PCIEMSIX_VECT75_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT75_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT75_CONTROL
+#define PCIEMSIX_VECT75_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT75_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT76_ADDR_LO
+#define PCIEMSIX_VECT76_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT76_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT76_ADDR_HI
+#define PCIEMSIX_VECT76_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT76_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT76_MSG_DATA
+#define PCIEMSIX_VECT76_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT76_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT76_CONTROL
+#define PCIEMSIX_VECT76_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT76_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT77_ADDR_LO
+#define PCIEMSIX_VECT77_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT77_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT77_ADDR_HI
+#define PCIEMSIX_VECT77_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT77_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT77_MSG_DATA
+#define PCIEMSIX_VECT77_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT77_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT77_CONTROL
+#define PCIEMSIX_VECT77_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT77_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT78_ADDR_LO
+#define PCIEMSIX_VECT78_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT78_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT78_ADDR_HI
+#define PCIEMSIX_VECT78_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT78_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT78_MSG_DATA
+#define PCIEMSIX_VECT78_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT78_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT78_CONTROL
+#define PCIEMSIX_VECT78_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT78_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT79_ADDR_LO
+#define PCIEMSIX_VECT79_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT79_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT79_ADDR_HI
+#define PCIEMSIX_VECT79_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT79_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT79_MSG_DATA
+#define PCIEMSIX_VECT79_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT79_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT79_CONTROL
+#define PCIEMSIX_VECT79_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT79_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT80_ADDR_LO
+#define PCIEMSIX_VECT80_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT80_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT80_ADDR_HI
+#define PCIEMSIX_VECT80_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT80_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT80_MSG_DATA
+#define PCIEMSIX_VECT80_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT80_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT80_CONTROL
+#define PCIEMSIX_VECT80_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT80_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT81_ADDR_LO
+#define PCIEMSIX_VECT81_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT81_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT81_ADDR_HI
+#define PCIEMSIX_VECT81_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT81_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT81_MSG_DATA
+#define PCIEMSIX_VECT81_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT81_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT81_CONTROL
+#define PCIEMSIX_VECT81_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT81_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT82_ADDR_LO
+#define PCIEMSIX_VECT82_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT82_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT82_ADDR_HI
+#define PCIEMSIX_VECT82_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT82_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT82_MSG_DATA
+#define PCIEMSIX_VECT82_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT82_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT82_CONTROL
+#define PCIEMSIX_VECT82_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT82_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT83_ADDR_LO
+#define PCIEMSIX_VECT83_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT83_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT83_ADDR_HI
+#define PCIEMSIX_VECT83_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT83_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT83_MSG_DATA
+#define PCIEMSIX_VECT83_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT83_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT83_CONTROL
+#define PCIEMSIX_VECT83_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT83_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT84_ADDR_LO
+#define PCIEMSIX_VECT84_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT84_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT84_ADDR_HI
+#define PCIEMSIX_VECT84_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT84_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT84_MSG_DATA
+#define PCIEMSIX_VECT84_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT84_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT84_CONTROL
+#define PCIEMSIX_VECT84_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT84_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT85_ADDR_LO
+#define PCIEMSIX_VECT85_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT85_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT85_ADDR_HI
+#define PCIEMSIX_VECT85_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT85_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT85_MSG_DATA
+#define PCIEMSIX_VECT85_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT85_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT85_CONTROL
+#define PCIEMSIX_VECT85_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT85_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT86_ADDR_LO
+#define PCIEMSIX_VECT86_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT86_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT86_ADDR_HI
+#define PCIEMSIX_VECT86_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT86_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT86_MSG_DATA
+#define PCIEMSIX_VECT86_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT86_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT86_CONTROL
+#define PCIEMSIX_VECT86_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT86_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT87_ADDR_LO
+#define PCIEMSIX_VECT87_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT87_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT87_ADDR_HI
+#define PCIEMSIX_VECT87_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT87_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT87_MSG_DATA
+#define PCIEMSIX_VECT87_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT87_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT87_CONTROL
+#define PCIEMSIX_VECT87_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT87_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT88_ADDR_LO
+#define PCIEMSIX_VECT88_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT88_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT88_ADDR_HI
+#define PCIEMSIX_VECT88_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT88_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT88_MSG_DATA
+#define PCIEMSIX_VECT88_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT88_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT88_CONTROL
+#define PCIEMSIX_VECT88_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT88_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT89_ADDR_LO
+#define PCIEMSIX_VECT89_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT89_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT89_ADDR_HI
+#define PCIEMSIX_VECT89_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT89_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT89_MSG_DATA
+#define PCIEMSIX_VECT89_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT89_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT89_CONTROL
+#define PCIEMSIX_VECT89_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT89_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT90_ADDR_LO
+#define PCIEMSIX_VECT90_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT90_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT90_ADDR_HI
+#define PCIEMSIX_VECT90_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT90_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT90_MSG_DATA
+#define PCIEMSIX_VECT90_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT90_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT90_CONTROL
+#define PCIEMSIX_VECT90_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT90_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT91_ADDR_LO
+#define PCIEMSIX_VECT91_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT91_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT91_ADDR_HI
+#define PCIEMSIX_VECT91_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT91_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT91_MSG_DATA
+#define PCIEMSIX_VECT91_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT91_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT91_CONTROL
+#define PCIEMSIX_VECT91_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT91_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT92_ADDR_LO
+#define PCIEMSIX_VECT92_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT92_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT92_ADDR_HI
+#define PCIEMSIX_VECT92_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT92_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT92_MSG_DATA
+#define PCIEMSIX_VECT92_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT92_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT92_CONTROL
+#define PCIEMSIX_VECT92_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT92_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT93_ADDR_LO
+#define PCIEMSIX_VECT93_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT93_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT93_ADDR_HI
+#define PCIEMSIX_VECT93_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT93_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT93_MSG_DATA
+#define PCIEMSIX_VECT93_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT93_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT93_CONTROL
+#define PCIEMSIX_VECT93_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT93_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT94_ADDR_LO
+#define PCIEMSIX_VECT94_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT94_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT94_ADDR_HI
+#define PCIEMSIX_VECT94_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT94_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT94_MSG_DATA
+#define PCIEMSIX_VECT94_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT94_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT94_CONTROL
+#define PCIEMSIX_VECT94_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT94_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT95_ADDR_LO
+#define PCIEMSIX_VECT95_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT95_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT95_ADDR_HI
+#define PCIEMSIX_VECT95_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT95_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT95_MSG_DATA
+#define PCIEMSIX_VECT95_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT95_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT95_CONTROL
+#define PCIEMSIX_VECT95_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT95_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT96_ADDR_LO
+#define PCIEMSIX_VECT96_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT96_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT96_ADDR_HI
+#define PCIEMSIX_VECT96_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT96_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT96_MSG_DATA
+#define PCIEMSIX_VECT96_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT96_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT96_CONTROL
+#define PCIEMSIX_VECT96_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT96_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT97_ADDR_LO
+#define PCIEMSIX_VECT97_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT97_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT97_ADDR_HI
+#define PCIEMSIX_VECT97_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT97_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT97_MSG_DATA
+#define PCIEMSIX_VECT97_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT97_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT97_CONTROL
+#define PCIEMSIX_VECT97_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT97_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT98_ADDR_LO
+#define PCIEMSIX_VECT98_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT98_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT98_ADDR_HI
+#define PCIEMSIX_VECT98_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT98_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT98_MSG_DATA
+#define PCIEMSIX_VECT98_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT98_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT98_CONTROL
+#define PCIEMSIX_VECT98_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT98_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT99_ADDR_LO
+#define PCIEMSIX_VECT99_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT99_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT99_ADDR_HI
+#define PCIEMSIX_VECT99_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT99_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT99_MSG_DATA
+#define PCIEMSIX_VECT99_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT99_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT99_CONTROL
+#define PCIEMSIX_VECT99_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT99_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT100_ADDR_LO
+#define PCIEMSIX_VECT100_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT100_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT100_ADDR_HI
+#define PCIEMSIX_VECT100_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT100_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT100_MSG_DATA
+#define PCIEMSIX_VECT100_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT100_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT100_CONTROL
+#define PCIEMSIX_VECT100_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT100_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT101_ADDR_LO
+#define PCIEMSIX_VECT101_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT101_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT101_ADDR_HI
+#define PCIEMSIX_VECT101_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT101_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT101_MSG_DATA
+#define PCIEMSIX_VECT101_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT101_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT101_CONTROL
+#define PCIEMSIX_VECT101_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT101_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT102_ADDR_LO
+#define PCIEMSIX_VECT102_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT102_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT102_ADDR_HI
+#define PCIEMSIX_VECT102_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT102_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT102_MSG_DATA
+#define PCIEMSIX_VECT102_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT102_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT102_CONTROL
+#define PCIEMSIX_VECT102_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT102_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT103_ADDR_LO
+#define PCIEMSIX_VECT103_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT103_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT103_ADDR_HI
+#define PCIEMSIX_VECT103_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT103_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT103_MSG_DATA
+#define PCIEMSIX_VECT103_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT103_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT103_CONTROL
+#define PCIEMSIX_VECT103_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT103_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT104_ADDR_LO
+#define PCIEMSIX_VECT104_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT104_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT104_ADDR_HI
+#define PCIEMSIX_VECT104_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT104_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT104_MSG_DATA
+#define PCIEMSIX_VECT104_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT104_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT104_CONTROL
+#define PCIEMSIX_VECT104_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT104_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT105_ADDR_LO
+#define PCIEMSIX_VECT105_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT105_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT105_ADDR_HI
+#define PCIEMSIX_VECT105_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT105_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT105_MSG_DATA
+#define PCIEMSIX_VECT105_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT105_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT105_CONTROL
+#define PCIEMSIX_VECT105_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT105_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT106_ADDR_LO
+#define PCIEMSIX_VECT106_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT106_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT106_ADDR_HI
+#define PCIEMSIX_VECT106_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT106_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT106_MSG_DATA
+#define PCIEMSIX_VECT106_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT106_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT106_CONTROL
+#define PCIEMSIX_VECT106_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT106_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT107_ADDR_LO
+#define PCIEMSIX_VECT107_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT107_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT107_ADDR_HI
+#define PCIEMSIX_VECT107_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT107_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT107_MSG_DATA
+#define PCIEMSIX_VECT107_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT107_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT107_CONTROL
+#define PCIEMSIX_VECT107_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT107_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT108_ADDR_LO
+#define PCIEMSIX_VECT108_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT108_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT108_ADDR_HI
+#define PCIEMSIX_VECT108_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT108_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT108_MSG_DATA
+#define PCIEMSIX_VECT108_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT108_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT108_CONTROL
+#define PCIEMSIX_VECT108_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT108_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT109_ADDR_LO
+#define PCIEMSIX_VECT109_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT109_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT109_ADDR_HI
+#define PCIEMSIX_VECT109_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT109_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT109_MSG_DATA
+#define PCIEMSIX_VECT109_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT109_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT109_CONTROL
+#define PCIEMSIX_VECT109_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT109_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT110_ADDR_LO
+#define PCIEMSIX_VECT110_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT110_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT110_ADDR_HI
+#define PCIEMSIX_VECT110_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT110_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT110_MSG_DATA
+#define PCIEMSIX_VECT110_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT110_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT110_CONTROL
+#define PCIEMSIX_VECT110_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT110_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT111_ADDR_LO
+#define PCIEMSIX_VECT111_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT111_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT111_ADDR_HI
+#define PCIEMSIX_VECT111_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT111_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT111_MSG_DATA
+#define PCIEMSIX_VECT111_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT111_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT111_CONTROL
+#define PCIEMSIX_VECT111_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT111_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT112_ADDR_LO
+#define PCIEMSIX_VECT112_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT112_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT112_ADDR_HI
+#define PCIEMSIX_VECT112_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT112_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT112_MSG_DATA
+#define PCIEMSIX_VECT112_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT112_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT112_CONTROL
+#define PCIEMSIX_VECT112_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT112_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT113_ADDR_LO
+#define PCIEMSIX_VECT113_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT113_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT113_ADDR_HI
+#define PCIEMSIX_VECT113_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT113_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT113_MSG_DATA
+#define PCIEMSIX_VECT113_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT113_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT113_CONTROL
+#define PCIEMSIX_VECT113_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT113_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT114_ADDR_LO
+#define PCIEMSIX_VECT114_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT114_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT114_ADDR_HI
+#define PCIEMSIX_VECT114_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT114_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT114_MSG_DATA
+#define PCIEMSIX_VECT114_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT114_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT114_CONTROL
+#define PCIEMSIX_VECT114_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT114_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT115_ADDR_LO
+#define PCIEMSIX_VECT115_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT115_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT115_ADDR_HI
+#define PCIEMSIX_VECT115_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT115_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT115_MSG_DATA
+#define PCIEMSIX_VECT115_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT115_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT115_CONTROL
+#define PCIEMSIX_VECT115_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT115_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT116_ADDR_LO
+#define PCIEMSIX_VECT116_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT116_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT116_ADDR_HI
+#define PCIEMSIX_VECT116_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT116_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT116_MSG_DATA
+#define PCIEMSIX_VECT116_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT116_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT116_CONTROL
+#define PCIEMSIX_VECT116_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT116_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT117_ADDR_LO
+#define PCIEMSIX_VECT117_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT117_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT117_ADDR_HI
+#define PCIEMSIX_VECT117_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT117_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT117_MSG_DATA
+#define PCIEMSIX_VECT117_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT117_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT117_CONTROL
+#define PCIEMSIX_VECT117_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT117_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT118_ADDR_LO
+#define PCIEMSIX_VECT118_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT118_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT118_ADDR_HI
+#define PCIEMSIX_VECT118_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT118_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT118_MSG_DATA
+#define PCIEMSIX_VECT118_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT118_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT118_CONTROL
+#define PCIEMSIX_VECT118_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT118_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT119_ADDR_LO
+#define PCIEMSIX_VECT119_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT119_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT119_ADDR_HI
+#define PCIEMSIX_VECT119_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT119_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT119_MSG_DATA
+#define PCIEMSIX_VECT119_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT119_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT119_CONTROL
+#define PCIEMSIX_VECT119_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT119_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT120_ADDR_LO
+#define PCIEMSIX_VECT120_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT120_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT120_ADDR_HI
+#define PCIEMSIX_VECT120_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT120_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT120_MSG_DATA
+#define PCIEMSIX_VECT120_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT120_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT120_CONTROL
+#define PCIEMSIX_VECT120_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT120_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT121_ADDR_LO
+#define PCIEMSIX_VECT121_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT121_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT121_ADDR_HI
+#define PCIEMSIX_VECT121_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT121_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT121_MSG_DATA
+#define PCIEMSIX_VECT121_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT121_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT121_CONTROL
+#define PCIEMSIX_VECT121_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT121_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT122_ADDR_LO
+#define PCIEMSIX_VECT122_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT122_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT122_ADDR_HI
+#define PCIEMSIX_VECT122_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT122_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT122_MSG_DATA
+#define PCIEMSIX_VECT122_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT122_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT122_CONTROL
+#define PCIEMSIX_VECT122_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT122_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT123_ADDR_LO
+#define PCIEMSIX_VECT123_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT123_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT123_ADDR_HI
+#define PCIEMSIX_VECT123_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT123_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT123_MSG_DATA
+#define PCIEMSIX_VECT123_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT123_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT123_CONTROL
+#define PCIEMSIX_VECT123_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT123_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT124_ADDR_LO
+#define PCIEMSIX_VECT124_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT124_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT124_ADDR_HI
+#define PCIEMSIX_VECT124_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT124_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT124_MSG_DATA
+#define PCIEMSIX_VECT124_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT124_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT124_CONTROL
+#define PCIEMSIX_VECT124_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT124_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT125_ADDR_LO
+#define PCIEMSIX_VECT125_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT125_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT125_ADDR_HI
+#define PCIEMSIX_VECT125_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT125_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT125_MSG_DATA
+#define PCIEMSIX_VECT125_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT125_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT125_CONTROL
+#define PCIEMSIX_VECT125_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT125_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT126_ADDR_LO
+#define PCIEMSIX_VECT126_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT126_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT126_ADDR_HI
+#define PCIEMSIX_VECT126_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT126_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT126_MSG_DATA
+#define PCIEMSIX_VECT126_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT126_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT126_CONTROL
+#define PCIEMSIX_VECT126_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT126_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT127_ADDR_LO
+#define PCIEMSIX_VECT127_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT127_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT127_ADDR_HI
+#define PCIEMSIX_VECT127_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT127_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT127_MSG_DATA
+#define PCIEMSIX_VECT127_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT127_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT127_CONTROL
+#define PCIEMSIX_VECT127_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT127_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT128_ADDR_LO
+#define PCIEMSIX_VECT128_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT128_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT128_ADDR_HI
+#define PCIEMSIX_VECT128_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT128_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT128_MSG_DATA
+#define PCIEMSIX_VECT128_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT128_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT128_CONTROL
+#define PCIEMSIX_VECT128_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT128_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT129_ADDR_LO
+#define PCIEMSIX_VECT129_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT129_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT129_ADDR_HI
+#define PCIEMSIX_VECT129_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT129_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT129_MSG_DATA
+#define PCIEMSIX_VECT129_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT129_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT129_CONTROL
+#define PCIEMSIX_VECT129_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT129_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT130_ADDR_LO
+#define PCIEMSIX_VECT130_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT130_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT130_ADDR_HI
+#define PCIEMSIX_VECT130_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT130_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT130_MSG_DATA
+#define PCIEMSIX_VECT130_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT130_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT130_CONTROL
+#define PCIEMSIX_VECT130_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT130_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT131_ADDR_LO
+#define PCIEMSIX_VECT131_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT131_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT131_ADDR_HI
+#define PCIEMSIX_VECT131_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT131_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT131_MSG_DATA
+#define PCIEMSIX_VECT131_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT131_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT131_CONTROL
+#define PCIEMSIX_VECT131_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT131_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT132_ADDR_LO
+#define PCIEMSIX_VECT132_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT132_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT132_ADDR_HI
+#define PCIEMSIX_VECT132_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT132_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT132_MSG_DATA
+#define PCIEMSIX_VECT132_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT132_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT132_CONTROL
+#define PCIEMSIX_VECT132_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT132_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT133_ADDR_LO
+#define PCIEMSIX_VECT133_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT133_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT133_ADDR_HI
+#define PCIEMSIX_VECT133_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT133_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT133_MSG_DATA
+#define PCIEMSIX_VECT133_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT133_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT133_CONTROL
+#define PCIEMSIX_VECT133_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT133_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT134_ADDR_LO
+#define PCIEMSIX_VECT134_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT134_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT134_ADDR_HI
+#define PCIEMSIX_VECT134_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT134_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT134_MSG_DATA
+#define PCIEMSIX_VECT134_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT134_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT134_CONTROL
+#define PCIEMSIX_VECT134_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT134_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT135_ADDR_LO
+#define PCIEMSIX_VECT135_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT135_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT135_ADDR_HI
+#define PCIEMSIX_VECT135_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT135_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT135_MSG_DATA
+#define PCIEMSIX_VECT135_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT135_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT135_CONTROL
+#define PCIEMSIX_VECT135_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT135_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT136_ADDR_LO
+#define PCIEMSIX_VECT136_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT136_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT136_ADDR_HI
+#define PCIEMSIX_VECT136_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT136_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT136_MSG_DATA
+#define PCIEMSIX_VECT136_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT136_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT136_CONTROL
+#define PCIEMSIX_VECT136_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT136_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT137_ADDR_LO
+#define PCIEMSIX_VECT137_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT137_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT137_ADDR_HI
+#define PCIEMSIX_VECT137_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT137_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT137_MSG_DATA
+#define PCIEMSIX_VECT137_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT137_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT137_CONTROL
+#define PCIEMSIX_VECT137_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT137_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT138_ADDR_LO
+#define PCIEMSIX_VECT138_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT138_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT138_ADDR_HI
+#define PCIEMSIX_VECT138_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT138_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT138_MSG_DATA
+#define PCIEMSIX_VECT138_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT138_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT138_CONTROL
+#define PCIEMSIX_VECT138_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT138_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT139_ADDR_LO
+#define PCIEMSIX_VECT139_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT139_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT139_ADDR_HI
+#define PCIEMSIX_VECT139_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT139_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT139_MSG_DATA
+#define PCIEMSIX_VECT139_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT139_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT139_CONTROL
+#define PCIEMSIX_VECT139_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT139_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT140_ADDR_LO
+#define PCIEMSIX_VECT140_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT140_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT140_ADDR_HI
+#define PCIEMSIX_VECT140_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT140_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT140_MSG_DATA
+#define PCIEMSIX_VECT140_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT140_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT140_CONTROL
+#define PCIEMSIX_VECT140_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT140_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT141_ADDR_LO
+#define PCIEMSIX_VECT141_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT141_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT141_ADDR_HI
+#define PCIEMSIX_VECT141_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT141_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT141_MSG_DATA
+#define PCIEMSIX_VECT141_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT141_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT141_CONTROL
+#define PCIEMSIX_VECT141_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT141_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT142_ADDR_LO
+#define PCIEMSIX_VECT142_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT142_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT142_ADDR_HI
+#define PCIEMSIX_VECT142_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT142_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT142_MSG_DATA
+#define PCIEMSIX_VECT142_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT142_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT142_CONTROL
+#define PCIEMSIX_VECT142_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT142_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT143_ADDR_LO
+#define PCIEMSIX_VECT143_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT143_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT143_ADDR_HI
+#define PCIEMSIX_VECT143_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT143_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT143_MSG_DATA
+#define PCIEMSIX_VECT143_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT143_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT143_CONTROL
+#define PCIEMSIX_VECT143_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT143_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT144_ADDR_LO
+#define PCIEMSIX_VECT144_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT144_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT144_ADDR_HI
+#define PCIEMSIX_VECT144_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT144_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT144_MSG_DATA
+#define PCIEMSIX_VECT144_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT144_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT144_CONTROL
+#define PCIEMSIX_VECT144_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT144_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT145_ADDR_LO
+#define PCIEMSIX_VECT145_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT145_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT145_ADDR_HI
+#define PCIEMSIX_VECT145_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT145_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT145_MSG_DATA
+#define PCIEMSIX_VECT145_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT145_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT145_CONTROL
+#define PCIEMSIX_VECT145_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT145_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT146_ADDR_LO
+#define PCIEMSIX_VECT146_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT146_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT146_ADDR_HI
+#define PCIEMSIX_VECT146_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT146_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT146_MSG_DATA
+#define PCIEMSIX_VECT146_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT146_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT146_CONTROL
+#define PCIEMSIX_VECT146_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT146_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT147_ADDR_LO
+#define PCIEMSIX_VECT147_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT147_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT147_ADDR_HI
+#define PCIEMSIX_VECT147_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT147_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT147_MSG_DATA
+#define PCIEMSIX_VECT147_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT147_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT147_CONTROL
+#define PCIEMSIX_VECT147_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT147_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT148_ADDR_LO
+#define PCIEMSIX_VECT148_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT148_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT148_ADDR_HI
+#define PCIEMSIX_VECT148_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT148_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT148_MSG_DATA
+#define PCIEMSIX_VECT148_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT148_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT148_CONTROL
+#define PCIEMSIX_VECT148_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT148_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT149_ADDR_LO
+#define PCIEMSIX_VECT149_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT149_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT149_ADDR_HI
+#define PCIEMSIX_VECT149_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT149_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT149_MSG_DATA
+#define PCIEMSIX_VECT149_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT149_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT149_CONTROL
+#define PCIEMSIX_VECT149_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT149_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT150_ADDR_LO
+#define PCIEMSIX_VECT150_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT150_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT150_ADDR_HI
+#define PCIEMSIX_VECT150_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT150_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT150_MSG_DATA
+#define PCIEMSIX_VECT150_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT150_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT150_CONTROL
+#define PCIEMSIX_VECT150_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT150_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT151_ADDR_LO
+#define PCIEMSIX_VECT151_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT151_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT151_ADDR_HI
+#define PCIEMSIX_VECT151_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT151_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT151_MSG_DATA
+#define PCIEMSIX_VECT151_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT151_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT151_CONTROL
+#define PCIEMSIX_VECT151_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT151_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT152_ADDR_LO
+#define PCIEMSIX_VECT152_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT152_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT152_ADDR_HI
+#define PCIEMSIX_VECT152_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT152_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT152_MSG_DATA
+#define PCIEMSIX_VECT152_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT152_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT152_CONTROL
+#define PCIEMSIX_VECT152_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT152_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT153_ADDR_LO
+#define PCIEMSIX_VECT153_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT153_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT153_ADDR_HI
+#define PCIEMSIX_VECT153_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT153_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT153_MSG_DATA
+#define PCIEMSIX_VECT153_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT153_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT153_CONTROL
+#define PCIEMSIX_VECT153_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT153_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT154_ADDR_LO
+#define PCIEMSIX_VECT154_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT154_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT154_ADDR_HI
+#define PCIEMSIX_VECT154_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT154_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT154_MSG_DATA
+#define PCIEMSIX_VECT154_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT154_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT154_CONTROL
+#define PCIEMSIX_VECT154_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT154_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT155_ADDR_LO
+#define PCIEMSIX_VECT155_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT155_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT155_ADDR_HI
+#define PCIEMSIX_VECT155_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT155_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT155_MSG_DATA
+#define PCIEMSIX_VECT155_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT155_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT155_CONTROL
+#define PCIEMSIX_VECT155_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT155_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT156_ADDR_LO
+#define PCIEMSIX_VECT156_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT156_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT156_ADDR_HI
+#define PCIEMSIX_VECT156_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT156_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT156_MSG_DATA
+#define PCIEMSIX_VECT156_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT156_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT156_CONTROL
+#define PCIEMSIX_VECT156_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT156_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT157_ADDR_LO
+#define PCIEMSIX_VECT157_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT157_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT157_ADDR_HI
+#define PCIEMSIX_VECT157_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT157_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT157_MSG_DATA
+#define PCIEMSIX_VECT157_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT157_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT157_CONTROL
+#define PCIEMSIX_VECT157_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT157_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT158_ADDR_LO
+#define PCIEMSIX_VECT158_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT158_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT158_ADDR_HI
+#define PCIEMSIX_VECT158_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT158_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT158_MSG_DATA
+#define PCIEMSIX_VECT158_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT158_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT158_CONTROL
+#define PCIEMSIX_VECT158_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT158_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT159_ADDR_LO
+#define PCIEMSIX_VECT159_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT159_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT159_ADDR_HI
+#define PCIEMSIX_VECT159_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT159_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT159_MSG_DATA
+#define PCIEMSIX_VECT159_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT159_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT159_CONTROL
+#define PCIEMSIX_VECT159_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT159_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT160_ADDR_LO
+#define PCIEMSIX_VECT160_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT160_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT160_ADDR_HI
+#define PCIEMSIX_VECT160_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT160_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT160_MSG_DATA
+#define PCIEMSIX_VECT160_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT160_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT160_CONTROL
+#define PCIEMSIX_VECT160_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT160_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT161_ADDR_LO
+#define PCIEMSIX_VECT161_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT161_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT161_ADDR_HI
+#define PCIEMSIX_VECT161_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT161_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT161_MSG_DATA
+#define PCIEMSIX_VECT161_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT161_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT161_CONTROL
+#define PCIEMSIX_VECT161_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT161_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT162_ADDR_LO
+#define PCIEMSIX_VECT162_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT162_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT162_ADDR_HI
+#define PCIEMSIX_VECT162_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT162_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT162_MSG_DATA
+#define PCIEMSIX_VECT162_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT162_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT162_CONTROL
+#define PCIEMSIX_VECT162_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT162_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT163_ADDR_LO
+#define PCIEMSIX_VECT163_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT163_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT163_ADDR_HI
+#define PCIEMSIX_VECT163_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT163_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT163_MSG_DATA
+#define PCIEMSIX_VECT163_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT163_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT163_CONTROL
+#define PCIEMSIX_VECT163_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT163_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT164_ADDR_LO
+#define PCIEMSIX_VECT164_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT164_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT164_ADDR_HI
+#define PCIEMSIX_VECT164_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT164_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT164_MSG_DATA
+#define PCIEMSIX_VECT164_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT164_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT164_CONTROL
+#define PCIEMSIX_VECT164_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT164_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT165_ADDR_LO
+#define PCIEMSIX_VECT165_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT165_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT165_ADDR_HI
+#define PCIEMSIX_VECT165_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT165_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT165_MSG_DATA
+#define PCIEMSIX_VECT165_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT165_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT165_CONTROL
+#define PCIEMSIX_VECT165_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT165_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT166_ADDR_LO
+#define PCIEMSIX_VECT166_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT166_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT166_ADDR_HI
+#define PCIEMSIX_VECT166_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT166_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT166_MSG_DATA
+#define PCIEMSIX_VECT166_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT166_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT166_CONTROL
+#define PCIEMSIX_VECT166_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT166_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT167_ADDR_LO
+#define PCIEMSIX_VECT167_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT167_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT167_ADDR_HI
+#define PCIEMSIX_VECT167_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT167_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT167_MSG_DATA
+#define PCIEMSIX_VECT167_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT167_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT167_CONTROL
+#define PCIEMSIX_VECT167_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT167_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT168_ADDR_LO
+#define PCIEMSIX_VECT168_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT168_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT168_ADDR_HI
+#define PCIEMSIX_VECT168_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT168_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT168_MSG_DATA
+#define PCIEMSIX_VECT168_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT168_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT168_CONTROL
+#define PCIEMSIX_VECT168_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT168_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT169_ADDR_LO
+#define PCIEMSIX_VECT169_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT169_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT169_ADDR_HI
+#define PCIEMSIX_VECT169_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT169_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT169_MSG_DATA
+#define PCIEMSIX_VECT169_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT169_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT169_CONTROL
+#define PCIEMSIX_VECT169_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT169_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT170_ADDR_LO
+#define PCIEMSIX_VECT170_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT170_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT170_ADDR_HI
+#define PCIEMSIX_VECT170_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT170_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT170_MSG_DATA
+#define PCIEMSIX_VECT170_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT170_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT170_CONTROL
+#define PCIEMSIX_VECT170_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT170_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT171_ADDR_LO
+#define PCIEMSIX_VECT171_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT171_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT171_ADDR_HI
+#define PCIEMSIX_VECT171_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT171_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT171_MSG_DATA
+#define PCIEMSIX_VECT171_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT171_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT171_CONTROL
+#define PCIEMSIX_VECT171_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT171_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT172_ADDR_LO
+#define PCIEMSIX_VECT172_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT172_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT172_ADDR_HI
+#define PCIEMSIX_VECT172_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT172_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT172_MSG_DATA
+#define PCIEMSIX_VECT172_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT172_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT172_CONTROL
+#define PCIEMSIX_VECT172_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT172_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT173_ADDR_LO
+#define PCIEMSIX_VECT173_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT173_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT173_ADDR_HI
+#define PCIEMSIX_VECT173_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT173_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT173_MSG_DATA
+#define PCIEMSIX_VECT173_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT173_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT173_CONTROL
+#define PCIEMSIX_VECT173_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT173_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT174_ADDR_LO
+#define PCIEMSIX_VECT174_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT174_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT174_ADDR_HI
+#define PCIEMSIX_VECT174_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT174_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT174_MSG_DATA
+#define PCIEMSIX_VECT174_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT174_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT174_CONTROL
+#define PCIEMSIX_VECT174_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT174_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT175_ADDR_LO
+#define PCIEMSIX_VECT175_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT175_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT175_ADDR_HI
+#define PCIEMSIX_VECT175_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT175_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT175_MSG_DATA
+#define PCIEMSIX_VECT175_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT175_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT175_CONTROL
+#define PCIEMSIX_VECT175_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT175_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT176_ADDR_LO
+#define PCIEMSIX_VECT176_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT176_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT176_ADDR_HI
+#define PCIEMSIX_VECT176_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT176_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT176_MSG_DATA
+#define PCIEMSIX_VECT176_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT176_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT176_CONTROL
+#define PCIEMSIX_VECT176_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT176_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT177_ADDR_LO
+#define PCIEMSIX_VECT177_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT177_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT177_ADDR_HI
+#define PCIEMSIX_VECT177_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT177_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT177_MSG_DATA
+#define PCIEMSIX_VECT177_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT177_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT177_CONTROL
+#define PCIEMSIX_VECT177_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT177_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT178_ADDR_LO
+#define PCIEMSIX_VECT178_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT178_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT178_ADDR_HI
+#define PCIEMSIX_VECT178_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT178_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT178_MSG_DATA
+#define PCIEMSIX_VECT178_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT178_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT178_CONTROL
+#define PCIEMSIX_VECT178_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT178_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT179_ADDR_LO
+#define PCIEMSIX_VECT179_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT179_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT179_ADDR_HI
+#define PCIEMSIX_VECT179_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT179_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT179_MSG_DATA
+#define PCIEMSIX_VECT179_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT179_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT179_CONTROL
+#define PCIEMSIX_VECT179_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT179_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT180_ADDR_LO
+#define PCIEMSIX_VECT180_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT180_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT180_ADDR_HI
+#define PCIEMSIX_VECT180_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT180_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT180_MSG_DATA
+#define PCIEMSIX_VECT180_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT180_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT180_CONTROL
+#define PCIEMSIX_VECT180_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT180_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT181_ADDR_LO
+#define PCIEMSIX_VECT181_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT181_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT181_ADDR_HI
+#define PCIEMSIX_VECT181_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT181_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT181_MSG_DATA
+#define PCIEMSIX_VECT181_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT181_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT181_CONTROL
+#define PCIEMSIX_VECT181_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT181_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT182_ADDR_LO
+#define PCIEMSIX_VECT182_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT182_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT182_ADDR_HI
+#define PCIEMSIX_VECT182_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT182_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT182_MSG_DATA
+#define PCIEMSIX_VECT182_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT182_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT182_CONTROL
+#define PCIEMSIX_VECT182_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT182_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT183_ADDR_LO
+#define PCIEMSIX_VECT183_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT183_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT183_ADDR_HI
+#define PCIEMSIX_VECT183_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT183_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT183_MSG_DATA
+#define PCIEMSIX_VECT183_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT183_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT183_CONTROL
+#define PCIEMSIX_VECT183_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT183_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT184_ADDR_LO
+#define PCIEMSIX_VECT184_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT184_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT184_ADDR_HI
+#define PCIEMSIX_VECT184_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT184_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT184_MSG_DATA
+#define PCIEMSIX_VECT184_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT184_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT184_CONTROL
+#define PCIEMSIX_VECT184_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT184_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT185_ADDR_LO
+#define PCIEMSIX_VECT185_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT185_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT185_ADDR_HI
+#define PCIEMSIX_VECT185_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT185_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT185_MSG_DATA
+#define PCIEMSIX_VECT185_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT185_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT185_CONTROL
+#define PCIEMSIX_VECT185_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT185_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT186_ADDR_LO
+#define PCIEMSIX_VECT186_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT186_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT186_ADDR_HI
+#define PCIEMSIX_VECT186_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT186_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT186_MSG_DATA
+#define PCIEMSIX_VECT186_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT186_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT186_CONTROL
+#define PCIEMSIX_VECT186_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT186_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT187_ADDR_LO
+#define PCIEMSIX_VECT187_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT187_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT187_ADDR_HI
+#define PCIEMSIX_VECT187_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT187_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT187_MSG_DATA
+#define PCIEMSIX_VECT187_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT187_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT187_CONTROL
+#define PCIEMSIX_VECT187_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT187_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT188_ADDR_LO
+#define PCIEMSIX_VECT188_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT188_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT188_ADDR_HI
+#define PCIEMSIX_VECT188_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT188_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT188_MSG_DATA
+#define PCIEMSIX_VECT188_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT188_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT188_CONTROL
+#define PCIEMSIX_VECT188_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT188_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT189_ADDR_LO
+#define PCIEMSIX_VECT189_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT189_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT189_ADDR_HI
+#define PCIEMSIX_VECT189_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT189_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT189_MSG_DATA
+#define PCIEMSIX_VECT189_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT189_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT189_CONTROL
+#define PCIEMSIX_VECT189_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT189_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT190_ADDR_LO
+#define PCIEMSIX_VECT190_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT190_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT190_ADDR_HI
+#define PCIEMSIX_VECT190_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT190_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT190_MSG_DATA
+#define PCIEMSIX_VECT190_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT190_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT190_CONTROL
+#define PCIEMSIX_VECT190_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT190_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT191_ADDR_LO
+#define PCIEMSIX_VECT191_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT191_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT191_ADDR_HI
+#define PCIEMSIX_VECT191_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT191_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT191_MSG_DATA
+#define PCIEMSIX_VECT191_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT191_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT191_CONTROL
+#define PCIEMSIX_VECT191_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT191_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT192_ADDR_LO
+#define PCIEMSIX_VECT192_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT192_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT192_ADDR_HI
+#define PCIEMSIX_VECT192_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT192_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT192_MSG_DATA
+#define PCIEMSIX_VECT192_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT192_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT192_CONTROL
+#define PCIEMSIX_VECT192_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT192_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT193_ADDR_LO
+#define PCIEMSIX_VECT193_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT193_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT193_ADDR_HI
+#define PCIEMSIX_VECT193_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT193_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT193_MSG_DATA
+#define PCIEMSIX_VECT193_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT193_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT193_CONTROL
+#define PCIEMSIX_VECT193_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT193_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT194_ADDR_LO
+#define PCIEMSIX_VECT194_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT194_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT194_ADDR_HI
+#define PCIEMSIX_VECT194_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT194_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT194_MSG_DATA
+#define PCIEMSIX_VECT194_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT194_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT194_CONTROL
+#define PCIEMSIX_VECT194_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT194_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT195_ADDR_LO
+#define PCIEMSIX_VECT195_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT195_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT195_ADDR_HI
+#define PCIEMSIX_VECT195_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT195_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT195_MSG_DATA
+#define PCIEMSIX_VECT195_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT195_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT195_CONTROL
+#define PCIEMSIX_VECT195_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT195_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT196_ADDR_LO
+#define PCIEMSIX_VECT196_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT196_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT196_ADDR_HI
+#define PCIEMSIX_VECT196_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT196_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT196_MSG_DATA
+#define PCIEMSIX_VECT196_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT196_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT196_CONTROL
+#define PCIEMSIX_VECT196_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT196_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT197_ADDR_LO
+#define PCIEMSIX_VECT197_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT197_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT197_ADDR_HI
+#define PCIEMSIX_VECT197_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT197_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT197_MSG_DATA
+#define PCIEMSIX_VECT197_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT197_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT197_CONTROL
+#define PCIEMSIX_VECT197_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT197_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT198_ADDR_LO
+#define PCIEMSIX_VECT198_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT198_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT198_ADDR_HI
+#define PCIEMSIX_VECT198_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT198_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT198_MSG_DATA
+#define PCIEMSIX_VECT198_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT198_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT198_CONTROL
+#define PCIEMSIX_VECT198_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT198_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT199_ADDR_LO
+#define PCIEMSIX_VECT199_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT199_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT199_ADDR_HI
+#define PCIEMSIX_VECT199_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT199_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT199_MSG_DATA
+#define PCIEMSIX_VECT199_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT199_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT199_CONTROL
+#define PCIEMSIX_VECT199_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT199_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT200_ADDR_LO
+#define PCIEMSIX_VECT200_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT200_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT200_ADDR_HI
+#define PCIEMSIX_VECT200_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT200_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT200_MSG_DATA
+#define PCIEMSIX_VECT200_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT200_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT200_CONTROL
+#define PCIEMSIX_VECT200_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT200_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT201_ADDR_LO
+#define PCIEMSIX_VECT201_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT201_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT201_ADDR_HI
+#define PCIEMSIX_VECT201_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT201_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT201_MSG_DATA
+#define PCIEMSIX_VECT201_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT201_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT201_CONTROL
+#define PCIEMSIX_VECT201_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT201_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT202_ADDR_LO
+#define PCIEMSIX_VECT202_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT202_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT202_ADDR_HI
+#define PCIEMSIX_VECT202_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT202_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT202_MSG_DATA
+#define PCIEMSIX_VECT202_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT202_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT202_CONTROL
+#define PCIEMSIX_VECT202_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT202_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT203_ADDR_LO
+#define PCIEMSIX_VECT203_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT203_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT203_ADDR_HI
+#define PCIEMSIX_VECT203_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT203_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT203_MSG_DATA
+#define PCIEMSIX_VECT203_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT203_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT203_CONTROL
+#define PCIEMSIX_VECT203_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT203_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT204_ADDR_LO
+#define PCIEMSIX_VECT204_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT204_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT204_ADDR_HI
+#define PCIEMSIX_VECT204_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT204_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT204_MSG_DATA
+#define PCIEMSIX_VECT204_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT204_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT204_CONTROL
+#define PCIEMSIX_VECT204_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT204_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT205_ADDR_LO
+#define PCIEMSIX_VECT205_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT205_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT205_ADDR_HI
+#define PCIEMSIX_VECT205_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT205_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT205_MSG_DATA
+#define PCIEMSIX_VECT205_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT205_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT205_CONTROL
+#define PCIEMSIX_VECT205_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT205_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT206_ADDR_LO
+#define PCIEMSIX_VECT206_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT206_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT206_ADDR_HI
+#define PCIEMSIX_VECT206_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT206_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT206_MSG_DATA
+#define PCIEMSIX_VECT206_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT206_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT206_CONTROL
+#define PCIEMSIX_VECT206_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT206_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT207_ADDR_LO
+#define PCIEMSIX_VECT207_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT207_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT207_ADDR_HI
+#define PCIEMSIX_VECT207_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT207_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT207_MSG_DATA
+#define PCIEMSIX_VECT207_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT207_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT207_CONTROL
+#define PCIEMSIX_VECT207_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT207_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT208_ADDR_LO
+#define PCIEMSIX_VECT208_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT208_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT208_ADDR_HI
+#define PCIEMSIX_VECT208_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT208_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT208_MSG_DATA
+#define PCIEMSIX_VECT208_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT208_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT208_CONTROL
+#define PCIEMSIX_VECT208_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT208_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT209_ADDR_LO
+#define PCIEMSIX_VECT209_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT209_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT209_ADDR_HI
+#define PCIEMSIX_VECT209_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT209_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT209_MSG_DATA
+#define PCIEMSIX_VECT209_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT209_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT209_CONTROL
+#define PCIEMSIX_VECT209_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT209_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT210_ADDR_LO
+#define PCIEMSIX_VECT210_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT210_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT210_ADDR_HI
+#define PCIEMSIX_VECT210_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT210_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT210_MSG_DATA
+#define PCIEMSIX_VECT210_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT210_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT210_CONTROL
+#define PCIEMSIX_VECT210_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT210_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT211_ADDR_LO
+#define PCIEMSIX_VECT211_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT211_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT211_ADDR_HI
+#define PCIEMSIX_VECT211_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT211_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT211_MSG_DATA
+#define PCIEMSIX_VECT211_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT211_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT211_CONTROL
+#define PCIEMSIX_VECT211_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT211_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT212_ADDR_LO
+#define PCIEMSIX_VECT212_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT212_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT212_ADDR_HI
+#define PCIEMSIX_VECT212_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT212_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT212_MSG_DATA
+#define PCIEMSIX_VECT212_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT212_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT212_CONTROL
+#define PCIEMSIX_VECT212_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT212_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT213_ADDR_LO
+#define PCIEMSIX_VECT213_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT213_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT213_ADDR_HI
+#define PCIEMSIX_VECT213_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT213_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT213_MSG_DATA
+#define PCIEMSIX_VECT213_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT213_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT213_CONTROL
+#define PCIEMSIX_VECT213_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT213_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT214_ADDR_LO
+#define PCIEMSIX_VECT214_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT214_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT214_ADDR_HI
+#define PCIEMSIX_VECT214_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT214_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT214_MSG_DATA
+#define PCIEMSIX_VECT214_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT214_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT214_CONTROL
+#define PCIEMSIX_VECT214_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT214_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT215_ADDR_LO
+#define PCIEMSIX_VECT215_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT215_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT215_ADDR_HI
+#define PCIEMSIX_VECT215_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT215_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT215_MSG_DATA
+#define PCIEMSIX_VECT215_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT215_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT215_CONTROL
+#define PCIEMSIX_VECT215_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT215_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT216_ADDR_LO
+#define PCIEMSIX_VECT216_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT216_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT216_ADDR_HI
+#define PCIEMSIX_VECT216_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT216_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT216_MSG_DATA
+#define PCIEMSIX_VECT216_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT216_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT216_CONTROL
+#define PCIEMSIX_VECT216_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT216_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT217_ADDR_LO
+#define PCIEMSIX_VECT217_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT217_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT217_ADDR_HI
+#define PCIEMSIX_VECT217_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT217_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT217_MSG_DATA
+#define PCIEMSIX_VECT217_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT217_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT217_CONTROL
+#define PCIEMSIX_VECT217_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT217_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT218_ADDR_LO
+#define PCIEMSIX_VECT218_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT218_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT218_ADDR_HI
+#define PCIEMSIX_VECT218_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT218_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT218_MSG_DATA
+#define PCIEMSIX_VECT218_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT218_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT218_CONTROL
+#define PCIEMSIX_VECT218_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT218_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT219_ADDR_LO
+#define PCIEMSIX_VECT219_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT219_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT219_ADDR_HI
+#define PCIEMSIX_VECT219_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT219_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT219_MSG_DATA
+#define PCIEMSIX_VECT219_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT219_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT219_CONTROL
+#define PCIEMSIX_VECT219_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT219_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT220_ADDR_LO
+#define PCIEMSIX_VECT220_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT220_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT220_ADDR_HI
+#define PCIEMSIX_VECT220_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT220_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT220_MSG_DATA
+#define PCIEMSIX_VECT220_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT220_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT220_CONTROL
+#define PCIEMSIX_VECT220_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT220_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT221_ADDR_LO
+#define PCIEMSIX_VECT221_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT221_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT221_ADDR_HI
+#define PCIEMSIX_VECT221_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT221_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT221_MSG_DATA
+#define PCIEMSIX_VECT221_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT221_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT221_CONTROL
+#define PCIEMSIX_VECT221_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT221_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT222_ADDR_LO
+#define PCIEMSIX_VECT222_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT222_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT222_ADDR_HI
+#define PCIEMSIX_VECT222_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT222_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT222_MSG_DATA
+#define PCIEMSIX_VECT222_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT222_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT222_CONTROL
+#define PCIEMSIX_VECT222_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT222_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT223_ADDR_LO
+#define PCIEMSIX_VECT223_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT223_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT223_ADDR_HI
+#define PCIEMSIX_VECT223_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT223_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT223_MSG_DATA
+#define PCIEMSIX_VECT223_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT223_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT223_CONTROL
+#define PCIEMSIX_VECT223_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT223_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT224_ADDR_LO
+#define PCIEMSIX_VECT224_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT224_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT224_ADDR_HI
+#define PCIEMSIX_VECT224_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT224_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT224_MSG_DATA
+#define PCIEMSIX_VECT224_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT224_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT224_CONTROL
+#define PCIEMSIX_VECT224_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT224_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT225_ADDR_LO
+#define PCIEMSIX_VECT225_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT225_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT225_ADDR_HI
+#define PCIEMSIX_VECT225_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT225_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT225_MSG_DATA
+#define PCIEMSIX_VECT225_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT225_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT225_CONTROL
+#define PCIEMSIX_VECT225_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT225_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT226_ADDR_LO
+#define PCIEMSIX_VECT226_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT226_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT226_ADDR_HI
+#define PCIEMSIX_VECT226_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT226_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT226_MSG_DATA
+#define PCIEMSIX_VECT226_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT226_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT226_CONTROL
+#define PCIEMSIX_VECT226_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT226_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT227_ADDR_LO
+#define PCIEMSIX_VECT227_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT227_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT227_ADDR_HI
+#define PCIEMSIX_VECT227_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT227_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT227_MSG_DATA
+#define PCIEMSIX_VECT227_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT227_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT227_CONTROL
+#define PCIEMSIX_VECT227_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT227_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT228_ADDR_LO
+#define PCIEMSIX_VECT228_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT228_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT228_ADDR_HI
+#define PCIEMSIX_VECT228_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT228_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT228_MSG_DATA
+#define PCIEMSIX_VECT228_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT228_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT228_CONTROL
+#define PCIEMSIX_VECT228_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT228_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT229_ADDR_LO
+#define PCIEMSIX_VECT229_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT229_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT229_ADDR_HI
+#define PCIEMSIX_VECT229_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT229_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT229_MSG_DATA
+#define PCIEMSIX_VECT229_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT229_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT229_CONTROL
+#define PCIEMSIX_VECT229_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT229_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT230_ADDR_LO
+#define PCIEMSIX_VECT230_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT230_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT230_ADDR_HI
+#define PCIEMSIX_VECT230_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT230_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT230_MSG_DATA
+#define PCIEMSIX_VECT230_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT230_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT230_CONTROL
+#define PCIEMSIX_VECT230_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT230_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT231_ADDR_LO
+#define PCIEMSIX_VECT231_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT231_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT231_ADDR_HI
+#define PCIEMSIX_VECT231_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT231_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT231_MSG_DATA
+#define PCIEMSIX_VECT231_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT231_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT231_CONTROL
+#define PCIEMSIX_VECT231_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT231_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT232_ADDR_LO
+#define PCIEMSIX_VECT232_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT232_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT232_ADDR_HI
+#define PCIEMSIX_VECT232_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT232_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT232_MSG_DATA
+#define PCIEMSIX_VECT232_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT232_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT232_CONTROL
+#define PCIEMSIX_VECT232_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT232_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT233_ADDR_LO
+#define PCIEMSIX_VECT233_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT233_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT233_ADDR_HI
+#define PCIEMSIX_VECT233_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT233_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT233_MSG_DATA
+#define PCIEMSIX_VECT233_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT233_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT233_CONTROL
+#define PCIEMSIX_VECT233_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT233_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT234_ADDR_LO
+#define PCIEMSIX_VECT234_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT234_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT234_ADDR_HI
+#define PCIEMSIX_VECT234_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT234_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT234_MSG_DATA
+#define PCIEMSIX_VECT234_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT234_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT234_CONTROL
+#define PCIEMSIX_VECT234_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT234_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT235_ADDR_LO
+#define PCIEMSIX_VECT235_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT235_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT235_ADDR_HI
+#define PCIEMSIX_VECT235_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT235_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT235_MSG_DATA
+#define PCIEMSIX_VECT235_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT235_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT235_CONTROL
+#define PCIEMSIX_VECT235_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT235_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT236_ADDR_LO
+#define PCIEMSIX_VECT236_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT236_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT236_ADDR_HI
+#define PCIEMSIX_VECT236_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT236_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT236_MSG_DATA
+#define PCIEMSIX_VECT236_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT236_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT236_CONTROL
+#define PCIEMSIX_VECT236_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT236_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT237_ADDR_LO
+#define PCIEMSIX_VECT237_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT237_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT237_ADDR_HI
+#define PCIEMSIX_VECT237_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT237_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT237_MSG_DATA
+#define PCIEMSIX_VECT237_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT237_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT237_CONTROL
+#define PCIEMSIX_VECT237_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT237_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT238_ADDR_LO
+#define PCIEMSIX_VECT238_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT238_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT238_ADDR_HI
+#define PCIEMSIX_VECT238_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT238_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT238_MSG_DATA
+#define PCIEMSIX_VECT238_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT238_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT238_CONTROL
+#define PCIEMSIX_VECT238_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT238_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT239_ADDR_LO
+#define PCIEMSIX_VECT239_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT239_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT239_ADDR_HI
+#define PCIEMSIX_VECT239_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT239_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT239_MSG_DATA
+#define PCIEMSIX_VECT239_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT239_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT239_CONTROL
+#define PCIEMSIX_VECT239_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT239_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT240_ADDR_LO
+#define PCIEMSIX_VECT240_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT240_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT240_ADDR_HI
+#define PCIEMSIX_VECT240_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT240_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT240_MSG_DATA
+#define PCIEMSIX_VECT240_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT240_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT240_CONTROL
+#define PCIEMSIX_VECT240_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT240_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT241_ADDR_LO
+#define PCIEMSIX_VECT241_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT241_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT241_ADDR_HI
+#define PCIEMSIX_VECT241_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT241_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT241_MSG_DATA
+#define PCIEMSIX_VECT241_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT241_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT241_CONTROL
+#define PCIEMSIX_VECT241_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT241_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT242_ADDR_LO
+#define PCIEMSIX_VECT242_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT242_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT242_ADDR_HI
+#define PCIEMSIX_VECT242_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT242_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT242_MSG_DATA
+#define PCIEMSIX_VECT242_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT242_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT242_CONTROL
+#define PCIEMSIX_VECT242_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT242_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT243_ADDR_LO
+#define PCIEMSIX_VECT243_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT243_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT243_ADDR_HI
+#define PCIEMSIX_VECT243_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT243_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT243_MSG_DATA
+#define PCIEMSIX_VECT243_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT243_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT243_CONTROL
+#define PCIEMSIX_VECT243_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT243_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT244_ADDR_LO
+#define PCIEMSIX_VECT244_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT244_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT244_ADDR_HI
+#define PCIEMSIX_VECT244_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT244_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT244_MSG_DATA
+#define PCIEMSIX_VECT244_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT244_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT244_CONTROL
+#define PCIEMSIX_VECT244_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT244_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT245_ADDR_LO
+#define PCIEMSIX_VECT245_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT245_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT245_ADDR_HI
+#define PCIEMSIX_VECT245_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT245_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT245_MSG_DATA
+#define PCIEMSIX_VECT245_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT245_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT245_CONTROL
+#define PCIEMSIX_VECT245_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT245_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT246_ADDR_LO
+#define PCIEMSIX_VECT246_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT246_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT246_ADDR_HI
+#define PCIEMSIX_VECT246_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT246_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT246_MSG_DATA
+#define PCIEMSIX_VECT246_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT246_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT246_CONTROL
+#define PCIEMSIX_VECT246_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT246_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT247_ADDR_LO
+#define PCIEMSIX_VECT247_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT247_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT247_ADDR_HI
+#define PCIEMSIX_VECT247_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT247_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT247_MSG_DATA
+#define PCIEMSIX_VECT247_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT247_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT247_CONTROL
+#define PCIEMSIX_VECT247_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT247_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT248_ADDR_LO
+#define PCIEMSIX_VECT248_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT248_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT248_ADDR_HI
+#define PCIEMSIX_VECT248_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT248_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT248_MSG_DATA
+#define PCIEMSIX_VECT248_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT248_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT248_CONTROL
+#define PCIEMSIX_VECT248_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT248_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT249_ADDR_LO
+#define PCIEMSIX_VECT249_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT249_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT249_ADDR_HI
+#define PCIEMSIX_VECT249_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT249_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT249_MSG_DATA
+#define PCIEMSIX_VECT249_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT249_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT249_CONTROL
+#define PCIEMSIX_VECT249_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT249_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT250_ADDR_LO
+#define PCIEMSIX_VECT250_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT250_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT250_ADDR_HI
+#define PCIEMSIX_VECT250_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT250_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT250_MSG_DATA
+#define PCIEMSIX_VECT250_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT250_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT250_CONTROL
+#define PCIEMSIX_VECT250_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT250_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT251_ADDR_LO
+#define PCIEMSIX_VECT251_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT251_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT251_ADDR_HI
+#define PCIEMSIX_VECT251_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT251_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT251_MSG_DATA
+#define PCIEMSIX_VECT251_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT251_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT251_CONTROL
+#define PCIEMSIX_VECT251_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT251_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT252_ADDR_LO
+#define PCIEMSIX_VECT252_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT252_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT252_ADDR_HI
+#define PCIEMSIX_VECT252_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT252_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT252_MSG_DATA
+#define PCIEMSIX_VECT252_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT252_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT252_CONTROL
+#define PCIEMSIX_VECT252_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT252_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT253_ADDR_LO
+#define PCIEMSIX_VECT253_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT253_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT253_ADDR_HI
+#define PCIEMSIX_VECT253_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT253_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT253_MSG_DATA
+#define PCIEMSIX_VECT253_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT253_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT253_CONTROL
+#define PCIEMSIX_VECT253_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT253_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT254_ADDR_LO
+#define PCIEMSIX_VECT254_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT254_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT254_ADDR_HI
+#define PCIEMSIX_VECT254_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT254_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT254_MSG_DATA
+#define PCIEMSIX_VECT254_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT254_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT254_CONTROL
+#define PCIEMSIX_VECT254_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT254_CONTROL__MASK_BIT_MASK 0x00000001L
+//PCIEMSIX_VECT255_ADDR_LO
+#define PCIEMSIX_VECT255_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define PCIEMSIX_VECT255_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//PCIEMSIX_VECT255_ADDR_HI
+#define PCIEMSIX_VECT255_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define PCIEMSIX_VECT255_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT255_MSG_DATA
+#define PCIEMSIX_VECT255_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define PCIEMSIX_VECT255_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//PCIEMSIX_VECT255_CONTROL
+#define PCIEMSIX_VECT255_CONTROL__MASK_BIT__SHIFT 0x0
+#define PCIEMSIX_VECT255_CONTROL__MASK_BIT_MASK 0x00000001L
+
+
+// addressBlock: aid_nbio_nbif0_pciemsix_0_usb_MSIXPDEC
+//PCIEMSIX_PBA_0
+#define PCIEMSIX_PBA_0__MSIX_PENDING_BITS__SHIFT 0x0
+#define PCIEMSIX_PBA_0__MSIX_PENDING_BITS_MASK 0xFFFFFFFFL
+//PCIEMSIX_PBA_1
+#define PCIEMSIX_PBA_1__MSIX_PENDING_BITS__SHIFT 0x0
+#define PCIEMSIX_PBA_1__MSIX_PENDING_BITS_MASK 0xFFFFFFFFL
+//PCIEMSIX_PBA_2
+#define PCIEMSIX_PBA_2__MSIX_PENDING_BITS__SHIFT 0x0
+#define PCIEMSIX_PBA_2__MSIX_PENDING_BITS_MASK 0xFFFFFFFFL
+//PCIEMSIX_PBA_3
+#define PCIEMSIX_PBA_3__MSIX_PENDING_BITS__SHIFT 0x0
+#define PCIEMSIX_PBA_3__MSIX_PENDING_BITS_MASK 0xFFFFFFFFL
+//PCIEMSIX_PBA_4
+#define PCIEMSIX_PBA_4__MSIX_PENDING_BITS__SHIFT 0x0
+#define PCIEMSIX_PBA_4__MSIX_PENDING_BITS_MASK 0xFFFFFFFFL
+//PCIEMSIX_PBA_5
+#define PCIEMSIX_PBA_5__MSIX_PENDING_BITS__SHIFT 0x0
+#define PCIEMSIX_PBA_5__MSIX_PENDING_BITS_MASK 0xFFFFFFFFL
+//PCIEMSIX_PBA_6
+#define PCIEMSIX_PBA_6__MSIX_PENDING_BITS__SHIFT 0x0
+#define PCIEMSIX_PBA_6__MSIX_PENDING_BITS_MASK 0xFFFFFFFFL
+//PCIEMSIX_PBA_7
+#define PCIEMSIX_PBA_7__MSIX_PENDING_BITS__SHIFT 0x0
+#define PCIEMSIX_PBA_7__MSIX_PENDING_BITS_MASK 0xFFFFFFFFL
+
+
+// addressBlock: aid_nbio_nbif0_bif_swus_SUMDEC
+//SUM_INDEX
+#define SUM_INDEX__SUM_INDEX__SHIFT 0x0
+#define SUM_INDEX__SUM_INDEX_MASK 0xFFFFFFFFL
+//SUM_DATA
+#define SUM_DATA__SUM_DATA__SHIFT 0x0
+#define SUM_DATA__SUM_DATA_MASK 0xFFFFFFFFL
+//SUM_INDEX_HI
+#define SUM_INDEX_HI__SUM_INDEX_HI__SHIFT 0x0
+#define SUM_INDEX_HI__SUM_INDEX_HI_MASK 0x000000FFL
+
+
+// addressBlock: aid_nbio_nbif0_rcc_strap_rcc_strap_internal
+//RCC_STRAP1_RCC_DEV0_PORT_STRAP0
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP0__STRAP_DEVICE_ID_DN_DEV0__SHIFT 0x0
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP0__STRAP_ARI_EN_DN_DEV0__SHIFT 0x10
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP0__STRAP_ACS_EN_DN_DEV0__SHIFT 0x11
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP0__STRAP_AER_EN_DN_DEV0__SHIFT 0x12
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP0__STRAP_CPL_ABORT_ERR_EN_DN_DEV0__SHIFT 0x13
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP0__STRAP_INTERRUPT_PIN_DN_DEV0__SHIFT 0x15
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP0__STRAP_IGNORE_E2E_PREFIX_UR_DN_DEV0__SHIFT 0x18
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP0__STRAP_MAX_PAYLOAD_SUPPORT_DN_DEV0__SHIFT 0x19
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP0__STRAP_MAX_LINK_WIDTH_SUPPORT_DEV0__SHIFT 0x1c
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP0__STRAP_EPF0_DUMMY_EN_DEV0__SHIFT 0x1f
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP0__STRAP_DEVICE_ID_DN_DEV0_MASK 0x0000FFFFL
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP0__STRAP_ARI_EN_DN_DEV0_MASK 0x00010000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP0__STRAP_ACS_EN_DN_DEV0_MASK 0x00020000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP0__STRAP_AER_EN_DN_DEV0_MASK 0x00040000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP0__STRAP_CPL_ABORT_ERR_EN_DN_DEV0_MASK 0x00080000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP0__STRAP_INTERRUPT_PIN_DN_DEV0_MASK 0x00E00000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP0__STRAP_IGNORE_E2E_PREFIX_UR_DN_DEV0_MASK 0x01000000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP0__STRAP_MAX_PAYLOAD_SUPPORT_DN_DEV0_MASK 0x0E000000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP0__STRAP_MAX_LINK_WIDTH_SUPPORT_DEV0_MASK 0x70000000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP0__STRAP_EPF0_DUMMY_EN_DEV0_MASK 0x80000000L
+//RCC_STRAP1_RCC_DEV0_PORT_STRAP1
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP1__STRAP_SUBSYS_ID_DN_DEV0__SHIFT 0x0
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP1__STRAP_SUBSYS_VEN_ID_DN_DEV0__SHIFT 0x10
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP1__STRAP_SUBSYS_ID_DN_DEV0_MASK 0x0000FFFFL
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP1__STRAP_SUBSYS_VEN_ID_DN_DEV0_MASK 0xFFFF0000L
+//RCC_STRAP1_RCC_DEV0_PORT_STRAP2
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP2__STRAP_DE_EMPHASIS_SEL_DN_DEV0__SHIFT 0x0
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP2__STRAP_DSN_EN_DN_DEV0__SHIFT 0x1
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP2__STRAP_E2E_PREFIX_EN_DEV0__SHIFT 0x2
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP2__STRAP_ECN1P1_EN_DEV0__SHIFT 0x3
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP2__STRAP_ECRC_CHECK_EN_DEV0__SHIFT 0x4
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP2__STRAP_ECRC_GEN_EN_DEV0__SHIFT 0x5
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP2__STRAP_ERR_REPORTING_DIS_DEV0__SHIFT 0x6
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP2__STRAP_EXTENDED_FMT_SUPPORTED_DEV0__SHIFT 0x7
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP2__STRAP_EXTENDED_TAG_ECN_EN_DEV0__SHIFT 0x8
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP2__STRAP_EXT_VC_COUNT_DN_DEV0__SHIFT 0x9
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP2__STRAP_FIRST_RCVD_ERR_LOG_DN_DEV0__SHIFT 0xc
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP2__STRAP_POISONED_ADVISORY_NONFATAL_DN_DEV0__SHIFT 0xd
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP2__STRAP_GEN2_COMPLIANCE_DEV0__SHIFT 0xe
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP2__STRAP_GEN2_EN_DEV0__SHIFT 0xf
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP2__STRAP_GEN3_COMPLIANCE_DEV0__SHIFT 0x10
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP2__STRAP_GEN4_COMPLIANCE_DEV0__SHIFT 0x11
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP2__STRAP_L0S_ACCEPTABLE_LATENCY_DEV0__SHIFT 0x14
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP2__STRAP_L0S_EXIT_LATENCY_DEV0__SHIFT 0x17
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP2__STRAP_L1_ACCEPTABLE_LATENCY_DEV0__SHIFT 0x1a
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP2__STRAP_L1_EXIT_LATENCY_DEV0__SHIFT 0x1d
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP2__STRAP_DE_EMPHASIS_SEL_DN_DEV0_MASK 0x00000001L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP2__STRAP_DSN_EN_DN_DEV0_MASK 0x00000002L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP2__STRAP_E2E_PREFIX_EN_DEV0_MASK 0x00000004L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP2__STRAP_ECN1P1_EN_DEV0_MASK 0x00000008L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP2__STRAP_ECRC_CHECK_EN_DEV0_MASK 0x00000010L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP2__STRAP_ECRC_GEN_EN_DEV0_MASK 0x00000020L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP2__STRAP_ERR_REPORTING_DIS_DEV0_MASK 0x00000040L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP2__STRAP_EXTENDED_FMT_SUPPORTED_DEV0_MASK 0x00000080L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP2__STRAP_EXTENDED_TAG_ECN_EN_DEV0_MASK 0x00000100L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP2__STRAP_EXT_VC_COUNT_DN_DEV0_MASK 0x00000E00L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP2__STRAP_FIRST_RCVD_ERR_LOG_DN_DEV0_MASK 0x00001000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP2__STRAP_POISONED_ADVISORY_NONFATAL_DN_DEV0_MASK 0x00002000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP2__STRAP_GEN2_COMPLIANCE_DEV0_MASK 0x00004000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP2__STRAP_GEN2_EN_DEV0_MASK 0x00008000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP2__STRAP_GEN3_COMPLIANCE_DEV0_MASK 0x00010000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP2__STRAP_GEN4_COMPLIANCE_DEV0_MASK 0x00020000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP2__STRAP_L0S_ACCEPTABLE_LATENCY_DEV0_MASK 0x00700000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP2__STRAP_L0S_EXIT_LATENCY_DEV0_MASK 0x03800000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP2__STRAP_L1_ACCEPTABLE_LATENCY_DEV0_MASK 0x1C000000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP2__STRAP_L1_EXIT_LATENCY_DEV0_MASK 0xE0000000L
+//RCC_STRAP1_RCC_DEV0_PORT_STRAP3
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP3__STRAP_LINK_BW_NOTIFICATION_CAP_DN_EN_DEV0__SHIFT 0x0
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP3__STRAP_LTR_EN_DEV0__SHIFT 0x1
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP3__STRAP_LTR_EN_DN_DEV0__SHIFT 0x2
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP3__STRAP_MAX_PAYLOAD_SUPPORT_DEV0__SHIFT 0x3
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP3__STRAP_MSI_EN_DN_DEV0__SHIFT 0x6
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP3__STRAP_MSTCPL_TIMEOUT_EN_DEV0__SHIFT 0x7
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP3__STRAP_NO_SOFT_RESET_DN_DEV0__SHIFT 0x8
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP3__STRAP_OBFF_SUPPORTED_DEV0__SHIFT 0x9
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP3__STRAP_PCIE_LANE_EQUALIZATION_CNTL_DOWNSTREAM_PORT_RX_PRESET_HINT_DEV0__SHIFT 0xb
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP3__STRAP_PCIE_LANE_EQUALIZATION_CNTL_DOWNSTREAM_PORT_TX_PRESET_DEV0__SHIFT 0xe
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP3__STRAP_PCIE_LANE_EQUALIZATION_CNTL_UPSTREAM_PORT_RX_PRESET_HINT_DEV0__SHIFT 0x12
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP3__STRAP_PCIE_LANE_EQUALIZATION_CNTL_UPSTREAM_PORT_TX_PRESET_DEV0__SHIFT 0x15
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP3__STRAP_PM_SUPPORT_DEV0__SHIFT 0x19
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP3__STRAP_PM_SUPPORT_DN_DEV0__SHIFT 0x1b
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP3__STRAP_ATOMIC_EN_DN_DEV0__SHIFT 0x1d
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP3__STRAP_PMC_DSI_DN_DEV0__SHIFT 0x1f
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP3__STRAP_LINK_BW_NOTIFICATION_CAP_DN_EN_DEV0_MASK 0x00000001L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP3__STRAP_LTR_EN_DEV0_MASK 0x00000002L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP3__STRAP_LTR_EN_DN_DEV0_MASK 0x00000004L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP3__STRAP_MAX_PAYLOAD_SUPPORT_DEV0_MASK 0x00000038L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP3__STRAP_MSI_EN_DN_DEV0_MASK 0x00000040L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP3__STRAP_MSTCPL_TIMEOUT_EN_DEV0_MASK 0x00000080L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP3__STRAP_NO_SOFT_RESET_DN_DEV0_MASK 0x00000100L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP3__STRAP_OBFF_SUPPORTED_DEV0_MASK 0x00000600L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP3__STRAP_PCIE_LANE_EQUALIZATION_CNTL_DOWNSTREAM_PORT_RX_PRESET_HINT_DEV0_MASK 0x00003800L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP3__STRAP_PCIE_LANE_EQUALIZATION_CNTL_DOWNSTREAM_PORT_TX_PRESET_DEV0_MASK 0x0003C000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP3__STRAP_PCIE_LANE_EQUALIZATION_CNTL_UPSTREAM_PORT_RX_PRESET_HINT_DEV0_MASK 0x001C0000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP3__STRAP_PCIE_LANE_EQUALIZATION_CNTL_UPSTREAM_PORT_TX_PRESET_DEV0_MASK 0x01E00000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP3__STRAP_PM_SUPPORT_DEV0_MASK 0x06000000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP3__STRAP_PM_SUPPORT_DN_DEV0_MASK 0x18000000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP3__STRAP_ATOMIC_EN_DN_DEV0_MASK 0x20000000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP3__STRAP_PMC_DSI_DN_DEV0_MASK 0x80000000L
+//RCC_STRAP1_RCC_DEV0_PORT_STRAP4
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP4__STRAP_PWR_BUDGET_DATA_8T0_0_DEV0__SHIFT 0x0
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP4__STRAP_PWR_BUDGET_DATA_8T0_1_DEV0__SHIFT 0x8
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP4__STRAP_PWR_BUDGET_DATA_8T0_2_DEV0__SHIFT 0x10
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP4__STRAP_PWR_BUDGET_DATA_8T0_3_DEV0__SHIFT 0x18
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP4__STRAP_PWR_BUDGET_DATA_8T0_0_DEV0_MASK 0x000000FFL
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP4__STRAP_PWR_BUDGET_DATA_8T0_1_DEV0_MASK 0x0000FF00L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP4__STRAP_PWR_BUDGET_DATA_8T0_2_DEV0_MASK 0x00FF0000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP4__STRAP_PWR_BUDGET_DATA_8T0_3_DEV0_MASK 0xFF000000L
+//RCC_STRAP1_RCC_DEV0_PORT_STRAP5
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP5__STRAP_PWR_BUDGET_DATA_8T0_4_DEV0__SHIFT 0x0
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP5__STRAP_PWR_BUDGET_DATA_8T0_5_DEV0__SHIFT 0x8
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP5__STRAP_PWR_BUDGET_SYSTEM_ALLOCATED_DEV0__SHIFT 0x10
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP5__STRAP_ATOMIC_64BIT_EN_DN_DEV0__SHIFT 0x11
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP5__STRAP_ATOMIC_ROUTING_EN_DEV0__SHIFT 0x12
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP5__STRAP_VC_EN_DN_DEV0__SHIFT 0x13
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP5__STRAP_TwoVC_EN_DEV0__SHIFT 0x14
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP5__STRAP_TwoVC_EN_DN_DEV0__SHIFT 0x15
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP5__STRAP_LOCAL_DLF_SUPPORTED_DEV0__SHIFT 0x16
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP5__STRAP_ACS_SOURCE_VALIDATION_DN_DEV0__SHIFT 0x17
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP5__STRAP_ACS_TRANSLATION_BLOCKING_DN_DEV0__SHIFT 0x18
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP5__STRAP_ACS_P2P_REQUEST_REDIRECT_DN_DEV0__SHIFT 0x19
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP5__STRAP_ACS_P2P_COMPLETION_REDIRECT_DN_DEV0__SHIFT 0x1a
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP5__STRAP_ACS_UPSTREAM_FORWARDING_DN_DEV0__SHIFT 0x1b
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP5__STRAP_ACS_P2P_EGRESS_CONTROL_DN_DEV0__SHIFT 0x1c
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP5__STRAP_ACS_DIRECT_TRANSLATED_P2P_DN_DEV0__SHIFT 0x1d
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP5__STRAP_SSID_EN_DEV0__SHIFT 0x1f
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP5__STRAP_PWR_BUDGET_DATA_8T0_4_DEV0_MASK 0x000000FFL
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP5__STRAP_PWR_BUDGET_DATA_8T0_5_DEV0_MASK 0x0000FF00L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP5__STRAP_PWR_BUDGET_SYSTEM_ALLOCATED_DEV0_MASK 0x00010000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP5__STRAP_ATOMIC_64BIT_EN_DN_DEV0_MASK 0x00020000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP5__STRAP_ATOMIC_ROUTING_EN_DEV0_MASK 0x00040000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP5__STRAP_VC_EN_DN_DEV0_MASK 0x00080000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP5__STRAP_TwoVC_EN_DEV0_MASK 0x00100000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP5__STRAP_TwoVC_EN_DN_DEV0_MASK 0x00200000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP5__STRAP_LOCAL_DLF_SUPPORTED_DEV0_MASK 0x00400000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP5__STRAP_ACS_SOURCE_VALIDATION_DN_DEV0_MASK 0x00800000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP5__STRAP_ACS_TRANSLATION_BLOCKING_DN_DEV0_MASK 0x01000000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP5__STRAP_ACS_P2P_REQUEST_REDIRECT_DN_DEV0_MASK 0x02000000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP5__STRAP_ACS_P2P_COMPLETION_REDIRECT_DN_DEV0_MASK 0x04000000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP5__STRAP_ACS_UPSTREAM_FORWARDING_DN_DEV0_MASK 0x08000000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP5__STRAP_ACS_P2P_EGRESS_CONTROL_DN_DEV0_MASK 0x10000000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP5__STRAP_ACS_DIRECT_TRANSLATED_P2P_DN_DEV0_MASK 0x20000000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP5__STRAP_SSID_EN_DEV0_MASK 0x80000000L
+//RCC_STRAP1_RCC_DEV0_PORT_STRAP6
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP6__STRAP_CFG_CRS_EN_DEV0__SHIFT 0x0
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP6__STRAP_SMN_ERR_STATUS_MASK_EN_DNS_DEV0__SHIFT 0x1
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP6__STRAP_INTERNAL_ERR_EN_DEV0__SHIFT 0x2
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP6__STRAP_RTM1_PRESENCE_DET_SUPPORT_DEV0__SHIFT 0x3
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP6__STRAP_RTM2_PRESENCE_DET_SUPPORT_DEV0__SHIFT 0x4
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP6__STRAP_10BIT_TAG_COMPLETER_SUPPORTED_DEV0__SHIFT 0x5
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP6__STRAP_10BIT_TAG_REQUESTER_SUPPORTED_DEV0__SHIFT 0x6
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP6__STRAP_VF_10BIT_TAG_REQUESTER_SUPPORTED_DEV0__SHIFT 0x7
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP6__STRAP_PCIE_16GT_LANE_EQUALIZATION_CNTL_DSP_TX_PRESET_DEV0__SHIFT 0x8
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP6__STRAP_PCIE_16GT_LANE_EQUALIZATION_CNTL_USP_TX_PRESET_DEV0__SHIFT 0xc
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP6__STRAP_TPH_CPLR_SUPPORTED_DN_DEV0__SHIFT 0x10
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP6__STRAP_MSI_EXT_MSG_DATA_CAP_DN_DEV0__SHIFT 0x12
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP6__STRAP_NO_COMMAND_COMPLETED_SUPPORTED_DEV0__SHIFT 0x13
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP6__STRAP_GEN5_COMPLIANCE_DEV0__SHIFT 0x14
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP6__STRAP_TARGET_LINK_SPEED_DEV0__SHIFT 0x15
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP6__STRAP_PCIE_32GT_LANE_EQUALIZATION_CNTL_DSP_TX_PRESET_DEV0__SHIFT 0x18
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP6__STRAP_PCIE_32GT_LANE_EQUALIZATION_CNTL_USP_TX_PRESET_DEV0__SHIFT 0x1c
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP6__STRAP_CFG_CRS_EN_DEV0_MASK 0x00000001L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP6__STRAP_SMN_ERR_STATUS_MASK_EN_DNS_DEV0_MASK 0x00000002L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP6__STRAP_INTERNAL_ERR_EN_DEV0_MASK 0x00000004L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP6__STRAP_RTM1_PRESENCE_DET_SUPPORT_DEV0_MASK 0x00000008L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP6__STRAP_RTM2_PRESENCE_DET_SUPPORT_DEV0_MASK 0x00000010L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP6__STRAP_10BIT_TAG_COMPLETER_SUPPORTED_DEV0_MASK 0x00000020L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP6__STRAP_10BIT_TAG_REQUESTER_SUPPORTED_DEV0_MASK 0x00000040L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP6__STRAP_VF_10BIT_TAG_REQUESTER_SUPPORTED_DEV0_MASK 0x00000080L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP6__STRAP_PCIE_16GT_LANE_EQUALIZATION_CNTL_DSP_TX_PRESET_DEV0_MASK 0x00000F00L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP6__STRAP_PCIE_16GT_LANE_EQUALIZATION_CNTL_USP_TX_PRESET_DEV0_MASK 0x0000F000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP6__STRAP_TPH_CPLR_SUPPORTED_DN_DEV0_MASK 0x00030000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP6__STRAP_MSI_EXT_MSG_DATA_CAP_DN_DEV0_MASK 0x00040000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP6__STRAP_NO_COMMAND_COMPLETED_SUPPORTED_DEV0_MASK 0x00080000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP6__STRAP_GEN5_COMPLIANCE_DEV0_MASK 0x00100000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP6__STRAP_TARGET_LINK_SPEED_DEV0_MASK 0x00E00000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP6__STRAP_PCIE_32GT_LANE_EQUALIZATION_CNTL_DSP_TX_PRESET_DEV0_MASK 0x0F000000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP6__STRAP_PCIE_32GT_LANE_EQUALIZATION_CNTL_USP_TX_PRESET_DEV0_MASK 0xF0000000L
+//RCC_STRAP1_RCC_DEV0_PORT_STRAP7
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP7__STRAP_PORT_NUMBER_DEV0__SHIFT 0x0
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP7__STRAP_MAJOR_REV_ID_DN_DEV0__SHIFT 0x8
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP7__STRAP_MINOR_REV_ID_DN_DEV0__SHIFT 0xc
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP7__STRAP_RP_BUSNUM_DEV0__SHIFT 0x10
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP7__STRAP_DN_DEVNUM_DEV0__SHIFT 0x18
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP7__STRAP_DN_FUNCID_DEV0__SHIFT 0x1d
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP7__STRAP_PORT_NUMBER_DEV0_MASK 0x000000FFL
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP7__STRAP_MAJOR_REV_ID_DN_DEV0_MASK 0x00000F00L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP7__STRAP_MINOR_REV_ID_DN_DEV0_MASK 0x0000F000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP7__STRAP_RP_BUSNUM_DEV0_MASK 0x00FF0000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP7__STRAP_DN_DEVNUM_DEV0_MASK 0x1F000000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP7__STRAP_DN_FUNCID_DEV0_MASK 0xE0000000L
+//RCC_STRAP1_RCC_DEV0_PORT_STRAP8
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP8__STRAP_PWR_BUDGET_DATA_8T0_6_DEV0__SHIFT 0x0
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP8__STRAP_PWR_BUDGET_DATA_8T0_7_DEV0__SHIFT 0x8
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP8__STRAP_PWR_BUDGET_DATA_8T0_8_DEV0__SHIFT 0x10
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP8__STRAP_PWR_BUDGET_DATA_8T0_9_DEV0__SHIFT 0x18
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP8__STRAP_PWR_BUDGET_DATA_8T0_6_DEV0_MASK 0x000000FFL
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP8__STRAP_PWR_BUDGET_DATA_8T0_7_DEV0_MASK 0x0000FF00L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP8__STRAP_PWR_BUDGET_DATA_8T0_8_DEV0_MASK 0x00FF0000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP8__STRAP_PWR_BUDGET_DATA_8T0_9_DEV0_MASK 0xFF000000L
+//RCC_STRAP1_RCC_DEV0_PORT_STRAP9
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP9__STRAP_PWR_BUDGET_DATA_8T0_a_DEV0__SHIFT 0x0
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP9__STRAP_PWR_BUDGET_DATA_8T0_b_DEV0__SHIFT 0x8
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP9__STRAP_VENDOR_ID_DN_DEV0__SHIFT 0x10
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP9__STRAP_PWR_BUDGET_DATA_8T0_a_DEV0_MASK 0x000000FFL
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP9__STRAP_PWR_BUDGET_DATA_8T0_b_DEV0_MASK 0x0000FF00L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP9__STRAP_VENDOR_ID_DN_DEV0_MASK 0xFFFF0000L
+//RCC_STRAP1_RCC_DEV0_PORT_STRAP10
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP10__STRAP_NO_EQ_NEED_SUPPORTED_DEV0__SHIFT 0x0
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP10__STRAP_NO_EQ_NEED_SUPPORTED_DN_DEV0__SHIFT 0x1
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP10__STRAP_MODIFID_TS_USAGE_MODE1_SUPPORTED_DEV0__SHIFT 0x2
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP10__STRAP_MODIFID_TS_USAGE_MODE2_SUPPORTED_DEV0__SHIFT 0x3
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP10__STRAP_TRANSMITTER_PRECODEING_ON_DEV0__SHIFT 0x4
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP10__STRAP_TRANSMITTER_PRECODE_REQUEST_DEV0__SHIFT 0x5
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP10__STRAP_MODIFIED_TS_INFOR1_DEV0__SHIFT 0x6
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP10__STRAP_NO_EQ_NEED_SUPPORTED_DEV0_MASK 0x00000001L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP10__STRAP_NO_EQ_NEED_SUPPORTED_DN_DEV0_MASK 0x00000002L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP10__STRAP_MODIFID_TS_USAGE_MODE1_SUPPORTED_DEV0_MASK 0x00000004L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP10__STRAP_MODIFID_TS_USAGE_MODE2_SUPPORTED_DEV0_MASK 0x00000008L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP10__STRAP_TRANSMITTER_PRECODEING_ON_DEV0_MASK 0x00000010L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP10__STRAP_TRANSMITTER_PRECODE_REQUEST_DEV0_MASK 0x00000020L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP10__STRAP_MODIFIED_TS_INFOR1_DEV0_MASK 0x0007FFC0L
+//RCC_STRAP1_RCC_DEV0_PORT_STRAP11
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP11__STRAP_MODIFIED_TS_VENDOR_ID_DEV0__SHIFT 0x0
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP11__STRAP_RTR_RESET_TIME_DN_DEV0__SHIFT 0x10
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP11__STRAP_RTR_VALID_DN_DEV0__SHIFT 0x1c
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP11__STRAP_RTR_EN_DN_DEV0__SHIFT 0x1d
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP11__STRAP_SDPVW_REG_UPDATE_EN_DEV0__SHIFT 0x1e
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP11__STRAP_MODIFIED_TS_VENDOR_ID_DEV0_MASK 0x0000FFFFL
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP11__STRAP_RTR_RESET_TIME_DN_DEV0_MASK 0x0FFF0000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP11__STRAP_RTR_VALID_DN_DEV0_MASK 0x10000000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP11__STRAP_RTR_EN_DN_DEV0_MASK 0x20000000L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP11__STRAP_SDPVW_REG_UPDATE_EN_DEV0_MASK 0x40000000L
+//RCC_STRAP1_RCC_DEV0_PORT_STRAP12
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP12__STRAP_MODIFIED_TS_INFOR2_DEV0__SHIFT 0x0
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP12__STRAP_MODIFIED_TS_INFOR2_DEV0_MASK 0x00FFFFFFL
+//RCC_STRAP1_RCC_DEV0_PORT_STRAP13
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP13__STRAP_ALTERNATE_PROTOCOL_COUNT_DEV0__SHIFT 0x0
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP13__STRAP_ALTERNATE_PROTOCOL_SELECTIVE_ENABLE_SUPPORTED_DEV0__SHIFT 0x8
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP13__STRAP_ALTERNATE_PROTOCOL_DETAILS_DEV0__SHIFT 0x9
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP13__STRAP_RTR_D3HOTD0_TIME_DN_DEV0__SHIFT 0x14
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP13__STRAP_ALTERNATE_PROTOCOL_COUNT_DEV0_MASK 0x000000FFL
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP13__STRAP_ALTERNATE_PROTOCOL_SELECTIVE_ENABLE_SUPPORTED_DEV0_MASK 0x00000100L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP13__STRAP_ALTERNATE_PROTOCOL_DETAILS_DEV0_MASK 0x000FFE00L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP13__STRAP_RTR_D3HOTD0_TIME_DN_DEV0_MASK 0xFFF00000L
+//RCC_STRAP1_RCC_DEV0_PORT_STRAP14
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP14__STRAP_CTO_LOGGING_SUPPORT_DEV0__SHIFT 0x0
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP14__STRAP_ACS_ENH_CAPABILITY_DN_DEV0__SHIFT 0x1
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP14__STRAP_COMMAND_COMPLETED_DEV0__SHIFT 0x2
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP14__STRAP_ERR_COR_SUBCLASS_CAPABLE_DEV0__SHIFT 0x3
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP14__STRAP_DOE_EN_UP_DEV0__SHIFT 0x4
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP14__STRAP_CTO_LOGGING_SUPPORT_DEV0_MASK 0x00000001L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP14__STRAP_ACS_ENH_CAPABILITY_DN_DEV0_MASK 0x00000002L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP14__STRAP_COMMAND_COMPLETED_DEV0_MASK 0x00000004L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP14__STRAP_ERR_COR_SUBCLASS_CAPABLE_DEV0_MASK 0x00000008L
+#define RCC_STRAP1_RCC_DEV0_PORT_STRAP14__STRAP_DOE_EN_UP_DEV0_MASK 0x00000010L
+//RCC_DEV1_PORT_STRAP0
+//RCC_DEV1_PORT_STRAP1
+//RCC_DEV1_PORT_STRAP2
+//RCC_DEV1_PORT_STRAP3
+//RCC_DEV1_PORT_STRAP4
+//RCC_DEV1_PORT_STRAP5
+//RCC_DEV1_PORT_STRAP6
+//RCC_DEV1_PORT_STRAP7
+//RCC_DEV1_PORT_STRAP8
+//RCC_DEV1_PORT_STRAP9
+//RCC_DEV1_PORT_STRAP10
+//RCC_DEV1_PORT_STRAP11
+//RCC_DEV1_PORT_STRAP12
+//RCC_DEV1_PORT_STRAP13
+//RCC_DEV1_PORT_STRAP14
+//RCC_DEV2_PORT_STRAP0
+//RCC_DEV2_PORT_STRAP1
+//RCC_DEV2_PORT_STRAP2
+//RCC_DEV2_PORT_STRAP3
+//RCC_DEV2_PORT_STRAP4
+//RCC_DEV2_PORT_STRAP5
+//RCC_DEV2_PORT_STRAP6
+//RCC_DEV2_PORT_STRAP7
+//RCC_DEV2_PORT_STRAP8
+//RCC_DEV2_PORT_STRAP9
+//RCC_DEV2_PORT_STRAP10
+//RCC_DEV2_PORT_STRAP11
+//RCC_DEV2_PORT_STRAP12
+//RCC_DEV2_PORT_STRAP13
+//RCC_DEV2_PORT_STRAP14
+//RCC_STRAP1_RCC_BIF_STRAP0
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_GEN4_DIS__SHIFT 0x0
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_EXPANSION_ROM_VALIDATION_SUPPORT__SHIFT 0x1
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_VGA_DIS_PIN__SHIFT 0x2
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_MEM_AP_SIZE_PIN__SHIFT 0x3
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_BIOS_ROM_EN_PIN__SHIFT 0x6
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_PX_CAPABLE__SHIFT 0x7
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_BIF_KILL_GEN3__SHIFT 0x8
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_MSI_FIRST_BE_FULL_PAYLOAD_EN__SHIFT 0x9
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_NBIF_IGNORE_ERR_INFLR__SHIFT 0xa
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_PME_SUPPORT_COMPLIANCE_EN__SHIFT 0xb
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_RX_IGNORE_EP_ERR__SHIFT 0xc
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_RX_IGNORE_MSG_ERR__SHIFT 0xd
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_RX_IGNORE_MAX_PAYLOAD_ERR__SHIFT 0xe
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_RX_IGNORE_SHORTPREFIX_ERR_DN__SHIFT 0xf
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_RX_IGNORE_TC_ERR__SHIFT 0x10
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_RX_IGNORE_TC_ERR_DN__SHIFT 0x11
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_AUD_PIN__SHIFT 0x12
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_GEN3_DIS__SHIFT 0x18
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_BIF_KILL_GEN4__SHIFT 0x19
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_QUICKSIM_START__SHIFT 0x1a
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_NO_RO_ENABLED_P2P_PASSING__SHIFT 0x1b
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_IGNORE_LOCAL_PREFIX_UR_SWUS__SHIFT 0x1c
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_CFG0_RD_VF_BUSNUM_CHK_EN__SHIFT 0x1d
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_BIGAPU_MODE__SHIFT 0x1e
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_LINK_DOWN_RESET_EN__SHIFT 0x1f
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_GEN4_DIS_MASK 0x00000001L
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_EXPANSION_ROM_VALIDATION_SUPPORT_MASK 0x00000002L
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_VGA_DIS_PIN_MASK 0x00000004L
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_MEM_AP_SIZE_PIN_MASK 0x00000038L
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_BIOS_ROM_EN_PIN_MASK 0x00000040L
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_PX_CAPABLE_MASK 0x00000080L
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_BIF_KILL_GEN3_MASK 0x00000100L
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_MSI_FIRST_BE_FULL_PAYLOAD_EN_MASK 0x00000200L
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_NBIF_IGNORE_ERR_INFLR_MASK 0x00000400L
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_PME_SUPPORT_COMPLIANCE_EN_MASK 0x00000800L
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_RX_IGNORE_EP_ERR_MASK 0x00001000L
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_RX_IGNORE_MSG_ERR_MASK 0x00002000L
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_RX_IGNORE_MAX_PAYLOAD_ERR_MASK 0x00004000L
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_RX_IGNORE_SHORTPREFIX_ERR_DN_MASK 0x00008000L
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_RX_IGNORE_TC_ERR_MASK 0x00010000L
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_RX_IGNORE_TC_ERR_DN_MASK 0x00020000L
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_AUD_PIN_MASK 0x000C0000L
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_GEN3_DIS_MASK 0x01000000L
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_BIF_KILL_GEN4_MASK 0x02000000L
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_QUICKSIM_START_MASK 0x04000000L
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_NO_RO_ENABLED_P2P_PASSING_MASK 0x08000000L
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_IGNORE_LOCAL_PREFIX_UR_SWUS_MASK 0x10000000L
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_CFG0_RD_VF_BUSNUM_CHK_EN_MASK 0x20000000L
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_BIGAPU_MODE_MASK 0x40000000L
+#define RCC_STRAP1_RCC_BIF_STRAP0__STRAP_LINK_DOWN_RESET_EN_MASK 0x80000000L
+//RCC_STRAP1_RCC_BIF_STRAP1
+#define RCC_STRAP1_RCC_BIF_STRAP1__FUSESTRAP_VALID__SHIFT 0x0
+#define RCC_STRAP1_RCC_BIF_STRAP1__ROMSTRAP_VALID__SHIFT 0x1
+#define RCC_STRAP1_RCC_BIF_STRAP1__WRITE_DISABLE__SHIFT 0x2
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_ECRC_INTERMEDIATE_CHK_EN__SHIFT 0x3
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_IGNORE_E2E_PREFIX_UR_SWUS__SHIFT 0x5
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_MARGINING_USES_SOFTWARE__SHIFT 0x6
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_MARGINING_READY__SHIFT 0x7
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_SWUS_APER_EN__SHIFT 0x8
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_SWUS_64BAR_EN__SHIFT 0x9
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_SWUS_AP_SIZE__SHIFT 0xa
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_SWUS_APER_PREFETCHABLE__SHIFT 0xc
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_HWREV_LSB2__SHIFT 0xd
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_SWREV_LSB2__SHIFT 0xf
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_LINK_RST_CFG_ONLY__SHIFT 0x11
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_BIF_IOV_LKRST_DIS__SHIFT 0x12
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_DLF_EN__SHIFT 0x13
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_PHY_16GT_EN__SHIFT 0x14
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_MARGIN_EN__SHIFT 0x15
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_BIF_PSN_UR_RPT_EN__SHIFT 0x16
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_BIF_SLOT_POWER_SUPPORT_EN__SHIFT 0x17
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_S5_REGS_ACCESS_DIS__SHIFT 0x18
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_S5_MMREG_WR_POSTED_EN__SHIFT 0x19
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_GFX_FUNC_LTR_MODE__SHIFT 0x1a
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_GSI_SMN_POSTWR_MULTI_EN__SHIFT 0x1b
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_DLF_EN_EP__SHIFT 0x1d
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_AP_EN__SHIFT 0x1e
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_AP_EN_DN__SHIFT 0x1f
+#define RCC_STRAP1_RCC_BIF_STRAP1__FUSESTRAP_VALID_MASK 0x00000001L
+#define RCC_STRAP1_RCC_BIF_STRAP1__ROMSTRAP_VALID_MASK 0x00000002L
+#define RCC_STRAP1_RCC_BIF_STRAP1__WRITE_DISABLE_MASK 0x00000004L
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_ECRC_INTERMEDIATE_CHK_EN_MASK 0x00000008L
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_IGNORE_E2E_PREFIX_UR_SWUS_MASK 0x00000020L
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_MARGINING_USES_SOFTWARE_MASK 0x00000040L
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_MARGINING_READY_MASK 0x00000080L
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_SWUS_APER_EN_MASK 0x00000100L
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_SWUS_64BAR_EN_MASK 0x00000200L
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_SWUS_AP_SIZE_MASK 0x00000C00L
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_SWUS_APER_PREFETCHABLE_MASK 0x00001000L
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_HWREV_LSB2_MASK 0x00006000L
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_SWREV_LSB2_MASK 0x00018000L
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_LINK_RST_CFG_ONLY_MASK 0x00020000L
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_BIF_IOV_LKRST_DIS_MASK 0x00040000L
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_DLF_EN_MASK 0x00080000L
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_PHY_16GT_EN_MASK 0x00100000L
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_MARGIN_EN_MASK 0x00200000L
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_BIF_PSN_UR_RPT_EN_MASK 0x00400000L
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_BIF_SLOT_POWER_SUPPORT_EN_MASK 0x00800000L
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_S5_REGS_ACCESS_DIS_MASK 0x01000000L
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_S5_MMREG_WR_POSTED_EN_MASK 0x02000000L
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_GFX_FUNC_LTR_MODE_MASK 0x04000000L
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_GSI_SMN_POSTWR_MULTI_EN_MASK 0x18000000L
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_DLF_EN_EP_MASK 0x20000000L
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_AP_EN_MASK 0x40000000L
+#define RCC_STRAP1_RCC_BIF_STRAP1__STRAP_AP_EN_DN_MASK 0x80000000L
+//RCC_STRAP1_RCC_BIF_STRAP2
+#define RCC_STRAP1_RCC_BIF_STRAP2__STRAP_PCIESWUS_INDEX_APER_RANGE__SHIFT 0x0
+#define RCC_STRAP1_RCC_BIF_STRAP2__STRAP_SUC_IND_ACCESS_DIS__SHIFT 0x3
+#define RCC_STRAP1_RCC_BIF_STRAP2__STRAP_SUM_IND_ACCESS_DIS__SHIFT 0x4
+#define RCC_STRAP1_RCC_BIF_STRAP2__STRAP_ENDP_LINKDOWN_DROP_DMA__SHIFT 0x5
+#define RCC_STRAP1_RCC_BIF_STRAP2__STRAP_SWITCH_LINKDOWN_DROP_DMA__SHIFT 0x6
+#define RCC_STRAP1_RCC_BIF_STRAP2__STRAP_SWUS_SEC_LVL_OVRD_EN__SHIFT 0x7
+#define RCC_STRAP1_RCC_BIF_STRAP2__STRAP_GMI_DNS_SDP_CLKREQ_TOGGLE_DIS__SHIFT 0x8
+#define RCC_STRAP1_RCC_BIF_STRAP2__STRAP_ACS_MSKSEV_EP_HIDE_DIS__SHIFT 0x9
+#define RCC_STRAP1_RCC_BIF_STRAP2__STRAP_CFG_PG_FW_INTERLOCK_EXIT_EN__SHIFT 0xa
+#define RCC_STRAP1_RCC_BIF_STRAP2__RESERVED_BIF_STRAP2__SHIFT 0xd
+#define RCC_STRAP1_RCC_BIF_STRAP2__STRAP_LTR_IN_ASPML1_DIS__SHIFT 0xe
+#define RCC_STRAP1_RCC_BIF_STRAP2__STRAP_GFXAZ_POWERSTATE_INTERLOCK_EN__SHIFT 0xf
+#define RCC_STRAP1_RCC_BIF_STRAP2__STRAP_PWRBRK_DEGLITCH_CYCLE__SHIFT 0x10
+#define RCC_STRAP1_RCC_BIF_STRAP2__STRAP_PWRBRK_DEGLITCH_BYPASS__SHIFT 0x18
+#define RCC_STRAP1_RCC_BIF_STRAP2__STRAP_VLINK_PMETO_LDN_EXIT_BY_LNKRST_DIS__SHIFT 0x1f
+#define RCC_STRAP1_RCC_BIF_STRAP2__STRAP_PCIESWUS_INDEX_APER_RANGE_MASK 0x00000001L
+#define RCC_STRAP1_RCC_BIF_STRAP2__STRAP_SUC_IND_ACCESS_DIS_MASK 0x00000008L
+#define RCC_STRAP1_RCC_BIF_STRAP2__STRAP_SUM_IND_ACCESS_DIS_MASK 0x00000010L
+#define RCC_STRAP1_RCC_BIF_STRAP2__STRAP_ENDP_LINKDOWN_DROP_DMA_MASK 0x00000020L
+#define RCC_STRAP1_RCC_BIF_STRAP2__STRAP_SWITCH_LINKDOWN_DROP_DMA_MASK 0x00000040L
+#define RCC_STRAP1_RCC_BIF_STRAP2__STRAP_SWUS_SEC_LVL_OVRD_EN_MASK 0x00000080L
+#define RCC_STRAP1_RCC_BIF_STRAP2__STRAP_GMI_DNS_SDP_CLKREQ_TOGGLE_DIS_MASK 0x00000100L
+#define RCC_STRAP1_RCC_BIF_STRAP2__STRAP_ACS_MSKSEV_EP_HIDE_DIS_MASK 0x00000200L
+#define RCC_STRAP1_RCC_BIF_STRAP2__STRAP_CFG_PG_FW_INTERLOCK_EXIT_EN_MASK 0x00000C00L
+#define RCC_STRAP1_RCC_BIF_STRAP2__RESERVED_BIF_STRAP2_MASK 0x00002000L
+#define RCC_STRAP1_RCC_BIF_STRAP2__STRAP_LTR_IN_ASPML1_DIS_MASK 0x00004000L
+#define RCC_STRAP1_RCC_BIF_STRAP2__STRAP_GFXAZ_POWERSTATE_INTERLOCK_EN_MASK 0x00008000L
+#define RCC_STRAP1_RCC_BIF_STRAP2__STRAP_PWRBRK_DEGLITCH_CYCLE_MASK 0x00FF0000L
+#define RCC_STRAP1_RCC_BIF_STRAP2__STRAP_PWRBRK_DEGLITCH_BYPASS_MASK 0x01000000L
+#define RCC_STRAP1_RCC_BIF_STRAP2__STRAP_VLINK_PMETO_LDN_EXIT_BY_LNKRST_DIS_MASK 0x80000000L
+//RCC_STRAP1_RCC_BIF_STRAP3
+#define RCC_STRAP1_RCC_BIF_STRAP3__STRAP_VLINK_ASPM_IDLE_TIMER__SHIFT 0x0
+#define RCC_STRAP1_RCC_BIF_STRAP3__STRAP_VLINK_PM_L1_ENTRY_TIMER__SHIFT 0x10
+#define RCC_STRAP1_RCC_BIF_STRAP3__STRAP_VLINK_ASPM_IDLE_TIMER_MASK 0x0000FFFFL
+#define RCC_STRAP1_RCC_BIF_STRAP3__STRAP_VLINK_PM_L1_ENTRY_TIMER_MASK 0xFFFF0000L
+//RCC_STRAP1_RCC_BIF_STRAP4
+#define RCC_STRAP1_RCC_BIF_STRAP4__STRAP_VLINK_L0S_EXIT_TIMER__SHIFT 0x0
+#define RCC_STRAP1_RCC_BIF_STRAP4__STRAP_VLINK_L1_EXIT_TIMER__SHIFT 0x10
+#define RCC_STRAP1_RCC_BIF_STRAP4__STRAP_VLINK_L0S_EXIT_TIMER_MASK 0x0000FFFFL
+#define RCC_STRAP1_RCC_BIF_STRAP4__STRAP_VLINK_L1_EXIT_TIMER_MASK 0xFFFF0000L
+//RCC_STRAP1_RCC_BIF_STRAP5
+#define RCC_STRAP1_RCC_BIF_STRAP5__STRAP_VLINK_LDN_ENTRY_TIMER__SHIFT 0x0
+#define RCC_STRAP1_RCC_BIF_STRAP5__STRAP_VLINK_LDN_ON_SWUS_LDN_EN__SHIFT 0x10
+#define RCC_STRAP1_RCC_BIF_STRAP5__STRAP_VLINK_LDN_ON_SWUS_SECRST_EN__SHIFT 0x11
+#define RCC_STRAP1_RCC_BIF_STRAP5__STRAP_VLINK_ENTER_COMPLIANCE_DIS__SHIFT 0x12
+#define RCC_STRAP1_RCC_BIF_STRAP5__STRAP_IGNORE_PSN_ON_VDM1_DIS__SHIFT 0x13
+#define RCC_STRAP1_RCC_BIF_STRAP5__STRAP_SMN_ERR_STATUS_MASK_EN_UPS__SHIFT 0x14
+#define RCC_STRAP1_RCC_BIF_STRAP5__STRAP_REG_PROTECTION_DIS__SHIFT 0x15
+#define RCC_STRAP1_RCC_BIF_STRAP5__STRAP_SMN_ERRRSP_DATA_FORCE__SHIFT 0x16
+#define RCC_STRAP1_RCC_BIF_STRAP5__STRAP_INTERMEDIATERSP_DATA_ALLF_DATA_FORCE__SHIFT 0x18
+#define RCC_STRAP1_RCC_BIF_STRAP5__STRAP_EMER_POWER_REDUCTION_SUPPORTED__SHIFT 0x19
+#define RCC_STRAP1_RCC_BIF_STRAP5__STRAP_EMER_POWER_REDUCTION_INIT_REQ__SHIFT 0x1b
+#define RCC_STRAP1_RCC_BIF_STRAP5__STRAP_PWRBRK_STATUS_TIMER__SHIFT 0x1c
+#define RCC_STRAP1_RCC_BIF_STRAP5__STRAP_VLINK_LDN_ENTRY_TIMER_MASK 0x0000FFFFL
+#define RCC_STRAP1_RCC_BIF_STRAP5__STRAP_VLINK_LDN_ON_SWUS_LDN_EN_MASK 0x00010000L
+#define RCC_STRAP1_RCC_BIF_STRAP5__STRAP_VLINK_LDN_ON_SWUS_SECRST_EN_MASK 0x00020000L
+#define RCC_STRAP1_RCC_BIF_STRAP5__STRAP_VLINK_ENTER_COMPLIANCE_DIS_MASK 0x00040000L
+#define RCC_STRAP1_RCC_BIF_STRAP5__STRAP_IGNORE_PSN_ON_VDM1_DIS_MASK 0x00080000L
+#define RCC_STRAP1_RCC_BIF_STRAP5__STRAP_SMN_ERR_STATUS_MASK_EN_UPS_MASK 0x00100000L
+#define RCC_STRAP1_RCC_BIF_STRAP5__STRAP_REG_PROTECTION_DIS_MASK 0x00200000L
+#define RCC_STRAP1_RCC_BIF_STRAP5__STRAP_SMN_ERRRSP_DATA_FORCE_MASK 0x00C00000L
+#define RCC_STRAP1_RCC_BIF_STRAP5__STRAP_INTERMEDIATERSP_DATA_ALLF_DATA_FORCE_MASK 0x01000000L
+#define RCC_STRAP1_RCC_BIF_STRAP5__STRAP_EMER_POWER_REDUCTION_SUPPORTED_MASK 0x06000000L
+#define RCC_STRAP1_RCC_BIF_STRAP5__STRAP_EMER_POWER_REDUCTION_INIT_REQ_MASK 0x08000000L
+#define RCC_STRAP1_RCC_BIF_STRAP5__STRAP_PWRBRK_STATUS_TIMER_MASK 0x70000000L
+//RCC_STRAP1_RCC_BIF_STRAP6
+#define RCC_STRAP1_RCC_BIF_STRAP6__STRAP_GEN5_DIS__SHIFT 0x0
+#define RCC_STRAP1_RCC_BIF_STRAP6__STRAP_BIF_KILL_GEN5__SHIFT 0x1
+#define RCC_STRAP1_RCC_BIF_STRAP6__STRAP_PHY_32GT_EN__SHIFT 0x2
+#define RCC_STRAP1_RCC_BIF_STRAP6__STRAP_GEN5_DIS_MASK 0x00000001L
+#define RCC_STRAP1_RCC_BIF_STRAP6__STRAP_BIF_KILL_GEN5_MASK 0x00000002L
+#define RCC_STRAP1_RCC_BIF_STRAP6__STRAP_PHY_32GT_EN_MASK 0x00000004L
+//RCC_STRAP1_RCC_DEV0_EPF0_STRAP0
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP0__STRAP_DEVICE_ID_DEV0_F0__SHIFT 0x0
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP0__STRAP_MAJOR_REV_ID_DEV0_F0__SHIFT 0x10
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP0__STRAP_MINOR_REV_ID_DEV0_F0__SHIFT 0x14
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP0__STRAP_ATI_REV_ID_DEV0_F0__SHIFT 0x18
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP0__STRAP_FUNC_EN_DEV0_F0__SHIFT 0x1c
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP0__STRAP_LEGACY_DEVICE_TYPE_EN_DEV0_F0__SHIFT 0x1d
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP0__STRAP_D1_SUPPORT_DEV0_F0__SHIFT 0x1e
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP0__STRAP_D2_SUPPORT_DEV0_F0__SHIFT 0x1f
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP0__STRAP_DEVICE_ID_DEV0_F0_MASK 0x0000FFFFL
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP0__STRAP_MAJOR_REV_ID_DEV0_F0_MASK 0x000F0000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP0__STRAP_MINOR_REV_ID_DEV0_F0_MASK 0x00F00000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP0__STRAP_ATI_REV_ID_DEV0_F0_MASK 0x0F000000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP0__STRAP_FUNC_EN_DEV0_F0_MASK 0x10000000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP0__STRAP_LEGACY_DEVICE_TYPE_EN_DEV0_F0_MASK 0x20000000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP0__STRAP_D1_SUPPORT_DEV0_F0_MASK 0x40000000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP0__STRAP_D2_SUPPORT_DEV0_F0_MASK 0x80000000L
+//RCC_STRAP1_RCC_DEV0_EPF0_STRAP1
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP1__STRAP_SRIOV_VF_DEVICE_ID_DEV0_F0__SHIFT 0x0
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP1__STRAP_SRIOV_SUPPORTED_PAGE_SIZE_DEV0_F0__SHIFT 0x10
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP1__STRAP_SRIOV_VF_DEVICE_ID_DEV0_F0_MASK 0x0000FFFFL
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP1__STRAP_SRIOV_SUPPORTED_PAGE_SIZE_DEV0_F0_MASK 0xFFFF0000L
+//RCC_STRAP1_RCC_DEV0_EPF0_STRAP2
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP2__STRAP_SRIOV_EN_DEV0_F0__SHIFT 0x0
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP2__STRAP_64BAR_DIS_DEV0_F0__SHIFT 0x6
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP2__STRAP_NO_SOFT_RESET_DEV0_F0__SHIFT 0x7
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP2__STRAP_RESIZE_BAR_EN_DEV0_F0__SHIFT 0x8
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP2__STRAP_MAX_PASID_WIDTH_DEV0_F0__SHIFT 0x9
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP2__STRAP_MSI_PERVECTOR_MASK_CAP_DEV0_F0__SHIFT 0xe
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP2__STRAP_ARI_EN_DEV0_F0__SHIFT 0xf
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP2__STRAP_AER_EN_DEV0_F0__SHIFT 0x10
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP2__STRAP_ACS_EN_DEV0_F0__SHIFT 0x11
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP2__STRAP_ATS_EN_DEV0_F0__SHIFT 0x12
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP2__STRAP_CPL_ABORT_ERR_EN_DEV0_F0__SHIFT 0x14
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP2__STRAP_DPA_EN_DEV0_F0__SHIFT 0x15
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP2__STRAP_DSN_EN_DEV0_F0__SHIFT 0x16
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP2__STRAP_VC_EN_DEV0_F0__SHIFT 0x17
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP2__STRAP_MSI_MULTI_CAP_DEV0_F0__SHIFT 0x18
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP2__STRAP_PAGE_REQ_EN_DEV0_F0__SHIFT 0x1b
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP2__STRAP_PASID_EN_DEV0_F0__SHIFT 0x1c
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP2__STRAP_PASID_EXE_PERMISSION_SUPPORTED_DEV0_F0__SHIFT 0x1d
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP2__STRAP_PASID_GLOBAL_INVALIDATE_SUPPORTED_DEV0_F0__SHIFT 0x1e
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP2__STRAP_PASID_PRIV_MODE_SUPPORTED_DEV0_F0__SHIFT 0x1f
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP2__STRAP_SRIOV_EN_DEV0_F0_MASK 0x00000001L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP2__STRAP_64BAR_DIS_DEV0_F0_MASK 0x00000040L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP2__STRAP_NO_SOFT_RESET_DEV0_F0_MASK 0x00000080L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP2__STRAP_RESIZE_BAR_EN_DEV0_F0_MASK 0x00000100L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP2__STRAP_MAX_PASID_WIDTH_DEV0_F0_MASK 0x00003E00L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP2__STRAP_MSI_PERVECTOR_MASK_CAP_DEV0_F0_MASK 0x00004000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP2__STRAP_ARI_EN_DEV0_F0_MASK 0x00008000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP2__STRAP_AER_EN_DEV0_F0_MASK 0x00010000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP2__STRAP_ACS_EN_DEV0_F0_MASK 0x00020000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP2__STRAP_ATS_EN_DEV0_F0_MASK 0x00040000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP2__STRAP_CPL_ABORT_ERR_EN_DEV0_F0_MASK 0x00100000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP2__STRAP_DPA_EN_DEV0_F0_MASK 0x00200000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP2__STRAP_DSN_EN_DEV0_F0_MASK 0x00400000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP2__STRAP_VC_EN_DEV0_F0_MASK 0x00800000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP2__STRAP_MSI_MULTI_CAP_DEV0_F0_MASK 0x07000000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP2__STRAP_PAGE_REQ_EN_DEV0_F0_MASK 0x08000000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP2__STRAP_PASID_EN_DEV0_F0_MASK 0x10000000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP2__STRAP_PASID_EXE_PERMISSION_SUPPORTED_DEV0_F0_MASK 0x20000000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP2__STRAP_PASID_GLOBAL_INVALIDATE_SUPPORTED_DEV0_F0_MASK 0x40000000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP2__STRAP_PASID_PRIV_MODE_SUPPORTED_DEV0_F0_MASK 0x80000000L
+//RCC_STRAP1_RCC_DEV0_EPF0_STRAP3
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP3__STRAP_SUBSYS_ID_DEV0_F0__SHIFT 0x0
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP3__STRAP_POISONED_ADVISORY_NONFATAL_DEV0_F0__SHIFT 0x10
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP3__STRAP_PWR_EN_DEV0_F0__SHIFT 0x11
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP3__STRAP_MSI_EN_DEV0_F0__SHIFT 0x12
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP3__STRAP_MSI_CLR_PENDING_EN_DEV0_F0__SHIFT 0x13
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP3__STRAP_MSIX_EN_DEV0_F0__SHIFT 0x14
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP3__STRAP_MSIX_TABLE_BIR_DEV0_F0__SHIFT 0x15
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP3__STRAP_PMC_DSI_DEV0_F0__SHIFT 0x18
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP3__STRAP_ALL_MSI_EVENT_SUPPORT_EN_DEV0_F0__SHIFT 0x1a
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP3__STRAP_SMN_ERR_STATUS_MASK_EN_EP_DEV0_F0__SHIFT 0x1b
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP3__STRAP_VF_RESIZE_BAR_EN_DEV0_F0__SHIFT 0x1c
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP3__STRAP_CLK_PM_EN_DEV0_F0__SHIFT 0x1d
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP3__STRAP_TRUE_PM_STATUS_EN_DEV0_F0__SHIFT 0x1e
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP3__STRAP_RTR_EN_DEV0_F0__SHIFT 0x1f
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP3__STRAP_SUBSYS_ID_DEV0_F0_MASK 0x0000FFFFL
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP3__STRAP_POISONED_ADVISORY_NONFATAL_DEV0_F0_MASK 0x00010000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP3__STRAP_PWR_EN_DEV0_F0_MASK 0x00020000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP3__STRAP_MSI_EN_DEV0_F0_MASK 0x00040000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP3__STRAP_MSI_CLR_PENDING_EN_DEV0_F0_MASK 0x00080000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP3__STRAP_MSIX_EN_DEV0_F0_MASK 0x00100000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP3__STRAP_MSIX_TABLE_BIR_DEV0_F0_MASK 0x00E00000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP3__STRAP_PMC_DSI_DEV0_F0_MASK 0x01000000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP3__STRAP_ALL_MSI_EVENT_SUPPORT_EN_DEV0_F0_MASK 0x04000000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP3__STRAP_SMN_ERR_STATUS_MASK_EN_EP_DEV0_F0_MASK 0x08000000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP3__STRAP_VF_RESIZE_BAR_EN_DEV0_F0_MASK 0x10000000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP3__STRAP_CLK_PM_EN_DEV0_F0_MASK 0x20000000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP3__STRAP_TRUE_PM_STATUS_EN_DEV0_F0_MASK 0x40000000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP3__STRAP_RTR_EN_DEV0_F0_MASK 0x80000000L
+//RCC_STRAP1_RCC_DEV0_EPF0_STRAP4
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP4__STRAP_RESERVED_STRAP4_DEV0_F0__SHIFT 0x0
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP4__STRAP_DOE_EN_DEV0_F0__SHIFT 0xa
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP4__STRAP_ATOMIC_64BIT_EN_DEV0_F0__SHIFT 0x14
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP4__STRAP_ATOMIC_EN_DEV0_F0__SHIFT 0x15
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP4__STRAP_FLR_EN_DEV0_F0__SHIFT 0x16
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP4__STRAP_PME_SUPPORT_DEV0_F0__SHIFT 0x17
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP4__STRAP_INTERRUPT_PIN_DEV0_F0__SHIFT 0x1c
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP4__STRAP_RESERVED_STRAP4_DEV0_F0_MASK 0x000003FFL
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP4__STRAP_DOE_EN_DEV0_F0_MASK 0x00000400L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP4__STRAP_ATOMIC_64BIT_EN_DEV0_F0_MASK 0x00100000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP4__STRAP_ATOMIC_EN_DEV0_F0_MASK 0x00200000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP4__STRAP_FLR_EN_DEV0_F0_MASK 0x00400000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP4__STRAP_PME_SUPPORT_DEV0_F0_MASK 0x0F800000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP4__STRAP_INTERRUPT_PIN_DEV0_F0_MASK 0x70000000L
+//RCC_STRAP1_RCC_DEV0_EPF0_STRAP5
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP5__STRAP_SUBSYS_VEN_ID_DEV0_F0__SHIFT 0x0
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP5__STRAP_MSI_EXT_MSG_DATA_CAP_DEV0_F0__SHIFT 0x1e
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP5__STRAP_SUBSYS_VEN_ID_DEV0_F0_MASK 0x0000FFFFL
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP5__STRAP_MSI_EXT_MSG_DATA_CAP_DEV0_F0_MASK 0x40000000L
+//RCC_STRAP1_RCC_DEV0_EPF0_STRAP8
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP8__STRAP_DOORBELL_APER_SIZE_DEV0_F0__SHIFT 0x0
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP8__STRAP_DOORBELL_BAR_DIS_DEV0_F0__SHIFT 0x3
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP8__STRAP_ROM_AP_SIZE_DEV0_F0__SHIFT 0x4
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP8__STRAP_IO_BAR_DIS_DEV0_F0__SHIFT 0x7
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP8__STRAP_LFB_ERRMSG_EN_DEV0_F0__SHIFT 0x8
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP8__STRAP_MEM_AP_SIZE_DEV0_F0__SHIFT 0x9
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP8__STRAP_REG_AP_SIZE_DEV0_F0__SHIFT 0xd
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP8__STRAP_VF_DOORBELL_APER_SIZE_DEV0_F0__SHIFT 0x10
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP8__STRAP_VF_MEM_AP_SIZE_DEV0_F0__SHIFT 0x13
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP8__STRAP_VF_REG_AP_SIZE_DEV0_F0__SHIFT 0x17
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP8__STRAP_VGA_DIS_DEV0_F0__SHIFT 0x1a
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP8__STRAP_VF_MSI_MULTI_CAP_DEV0_F0__SHIFT 0x1b
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP8__STRAP_SRIOV_VF_MAPPING_MODE_DEV0_F0__SHIFT 0x1e
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP8__STRAP_DOORBELL_APER_SIZE_DEV0_F0_MASK 0x00000007L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP8__STRAP_DOORBELL_BAR_DIS_DEV0_F0_MASK 0x00000008L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP8__STRAP_ROM_AP_SIZE_DEV0_F0_MASK 0x00000070L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP8__STRAP_IO_BAR_DIS_DEV0_F0_MASK 0x00000080L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP8__STRAP_LFB_ERRMSG_EN_DEV0_F0_MASK 0x00000100L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP8__STRAP_MEM_AP_SIZE_DEV0_F0_MASK 0x00001E00L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP8__STRAP_REG_AP_SIZE_DEV0_F0_MASK 0x0000E000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP8__STRAP_VF_DOORBELL_APER_SIZE_DEV0_F0_MASK 0x00070000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP8__STRAP_VF_MEM_AP_SIZE_DEV0_F0_MASK 0x00780000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP8__STRAP_VF_REG_AP_SIZE_DEV0_F0_MASK 0x03800000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP8__STRAP_VGA_DIS_DEV0_F0_MASK 0x04000000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP8__STRAP_VF_MSI_MULTI_CAP_DEV0_F0_MASK 0x38000000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP8__STRAP_SRIOV_VF_MAPPING_MODE_DEV0_F0_MASK 0xC0000000L
+//RCC_STRAP1_RCC_DEV0_EPF0_STRAP9
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP9__STRAP_OUTSTAND_PAGE_REQ_CAP_DEV0_F0__SHIFT 0x0
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP9__STRAP_BAR_COMPLIANCE_EN_DEV0_F0__SHIFT 0x12
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP9__STRAP_NBIF_ROM_BAR_DIS_CHICKEN_DEV0_F0__SHIFT 0x13
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP9__STRAP_VF_REG_PROT_DIS_DEV0_F0__SHIFT 0x14
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP9__STRAP_FB_ALWAYS_ON_DEV0_F0__SHIFT 0x15
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP9__STRAP_FB_CPL_TYPE_SEL_DEV0_F0__SHIFT 0x16
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP9__STRAP_GPUIOV_VSEC_REV_DEV0_F0__SHIFT 0x18
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP9__STRAP_OUTSTAND_PAGE_REQ_CAP_DEV0_F0_MASK 0x0000FFFFL
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP9__STRAP_BAR_COMPLIANCE_EN_DEV0_F0_MASK 0x00040000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP9__STRAP_NBIF_ROM_BAR_DIS_CHICKEN_DEV0_F0_MASK 0x00080000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP9__STRAP_VF_REG_PROT_DIS_DEV0_F0_MASK 0x00100000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP9__STRAP_FB_ALWAYS_ON_DEV0_F0_MASK 0x00200000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP9__STRAP_FB_CPL_TYPE_SEL_DEV0_F0_MASK 0x00C00000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP9__STRAP_GPUIOV_VSEC_REV_DEV0_F0_MASK 0x0F000000L
+//RCC_STRAP1_RCC_DEV0_EPF0_STRAP13
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP13__STRAP_CLASS_CODE_PIF_DEV0_F0__SHIFT 0x0
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP13__STRAP_CLASS_CODE_SUB_DEV0_F0__SHIFT 0x8
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP13__STRAP_CLASS_CODE_BASE_DEV0_F0__SHIFT 0x10
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP13__STRAP_SRIOV_TOTAL_VFS_DEV0_F0__SHIFT 0x18
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP13__STRAP_CLASS_CODE_PIF_DEV0_F0_MASK 0x000000FFL
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP13__STRAP_CLASS_CODE_SUB_DEV0_F0_MASK 0x0000FF00L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP13__STRAP_CLASS_CODE_BASE_DEV0_F0_MASK 0x00FF0000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP13__STRAP_SRIOV_TOTAL_VFS_DEV0_F0_MASK 0xFF000000L
+//RCC_STRAP1_RCC_DEV0_EPF0_STRAP14
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP14__STRAP_VENDOR_ID_DEV0_F0__SHIFT 0x0
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP14__STRAP_VENDOR_ID_DEV0_F0_MASK 0x0000FFFFL
+//RCC_STRAP1_RCC_DEV0_EPF0_STRAP15
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP15__STRAP_RTR_RESET_TIME_DEV0_F0__SHIFT 0x0
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP15__STRAP_RTR_DLUP_TIME_DEV0_F0__SHIFT 0xc
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP15__STRAP_RTR_VALID_DEV0_F0__SHIFT 0x18
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP15__STRAP_ATS_INVALIDATE_QUEUE_DEPTH_DEV0_F0__SHIFT 0x19
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP15__STRAP_ATS_PAGE_ALIGNED_REQUEST_DEV0_F0__SHIFT 0x1e
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP15__STRAP_RTR_RESET_TIME_DEV0_F0_MASK 0x00000FFFL
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP15__STRAP_RTR_DLUP_TIME_DEV0_F0_MASK 0x00FFF000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP15__STRAP_RTR_VALID_DEV0_F0_MASK 0x01000000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP15__STRAP_ATS_INVALIDATE_QUEUE_DEPTH_DEV0_F0_MASK 0x3E000000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP15__STRAP_ATS_PAGE_ALIGNED_REQUEST_DEV0_F0_MASK 0x40000000L
+//RCC_STRAP1_RCC_DEV0_EPF0_STRAP16
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP16__STRAP_RTR_FLR_TIME_DEV0_F0__SHIFT 0x0
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP16__STRAP_RTR_D3HOTD0_TIME_DEV0_F0__SHIFT 0xc
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP16__STRAP_RTR_FLR_TIME_DEV0_F0_MASK 0x00000FFFL
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP16__STRAP_RTR_D3HOTD0_TIME_DEV0_F0_MASK 0x00FFF000L
+//RCC_STRAP1_RCC_DEV0_EPF0_STRAP17
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP17__STRAP_RTR_VF_RESET_TIME_DEV0_F0__SHIFT 0x0
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP17__STRAP_RTR_VF_VALID_DEV0_F0__SHIFT 0xc
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP17__STRAP_RTR_VF_FLR_TIME_DEV0_F0__SHIFT 0xd
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP17__STRAP_RTR_VF_RESET_TIME_DEV0_F0_MASK 0x00000FFFL
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP17__STRAP_RTR_VF_VALID_DEV0_F0_MASK 0x00001000L
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP17__STRAP_RTR_VF_FLR_TIME_DEV0_F0_MASK 0x01FFE000L
+//RCC_STRAP1_RCC_DEV0_EPF0_STRAP18
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP18__STRAP_RTR_VF_D3HOTD0_TIME_DEV0_F0__SHIFT 0x0
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP18__STRAP_RTR_VF_D3HOTD0_TIME_DEV0_F0_MASK 0x00000FFFL
+//RCC_STRAP1_RCC_DEV0_EPF0_STRAP26
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP26__STRAP_GPUIOV_VSEC_LENGTH_DEV0_F0__SHIFT 0x0
+#define RCC_STRAP1_RCC_DEV0_EPF0_STRAP26__STRAP_GPUIOV_VSEC_LENGTH_DEV0_F0_MASK 0x00000FFFL
+//RCC_STRAP1_RCC_DEV0_EPF1_STRAP0
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP0__STRAP_DEVICE_ID_DEV0_F1__SHIFT 0x0
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP0__STRAP_MAJOR_REV_ID_DEV0_F1__SHIFT 0x10
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP0__STRAP_MINOR_REV_ID_DEV0_F1__SHIFT 0x14
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP0__STRAP_FUNC_EN_DEV0_F1__SHIFT 0x1c
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP0__STRAP_LEGACY_DEVICE_TYPE_EN_DEV0_F1__SHIFT 0x1d
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP0__STRAP_D1_SUPPORT_DEV0_F1__SHIFT 0x1e
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP0__STRAP_D2_SUPPORT_DEV0_F1__SHIFT 0x1f
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP0__STRAP_DEVICE_ID_DEV0_F1_MASK 0x0000FFFFL
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP0__STRAP_MAJOR_REV_ID_DEV0_F1_MASK 0x000F0000L
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP0__STRAP_MINOR_REV_ID_DEV0_F1_MASK 0x00F00000L
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP0__STRAP_FUNC_EN_DEV0_F1_MASK 0x10000000L
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP0__STRAP_LEGACY_DEVICE_TYPE_EN_DEV0_F1_MASK 0x20000000L
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP0__STRAP_D1_SUPPORT_DEV0_F1_MASK 0x40000000L
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP0__STRAP_D2_SUPPORT_DEV0_F1_MASK 0x80000000L
+//RCC_STRAP1_RCC_DEV0_EPF1_STRAP2
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP2__STRAP_NO_SOFT_RESET_DEV0_F1__SHIFT 0x7
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP2__STRAP_RESIZE_BAR_EN_DEV0_F1__SHIFT 0x8
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP2__STRAP_MAX_PASID_WIDTH_DEV0_F1__SHIFT 0x9
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP2__STRAP_MSI_PERVECTOR_MASK_CAP_DEV0_F1__SHIFT 0xe
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP2__STRAP_AER_EN_DEV0_F1__SHIFT 0x10
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP2__STRAP_ACS_EN_DEV0_F1__SHIFT 0x11
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP2__STRAP_CPL_ABORT_ERR_EN_DEV0_F1__SHIFT 0x14
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP2__STRAP_DPA_EN_DEV0_F1__SHIFT 0x15
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP2__STRAP_VC_EN_DEV0_F1__SHIFT 0x17
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP2__STRAP_MSI_MULTI_CAP_DEV0_F1__SHIFT 0x18
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP2__STRAP_PASID_EN_DEV0_F1__SHIFT 0x1c
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP2__STRAP_PASID_EXE_PERMISSION_SUPPORTED_DEV0_F1__SHIFT 0x1d
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP2__STRAP_PASID_GLOBAL_INVALIDATE_SUPPORTED_DEV0_F1__SHIFT 0x1e
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP2__STRAP_PASID_PRIV_MODE_SUPPORTED_DEV0_F1__SHIFT 0x1f
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP2__STRAP_NO_SOFT_RESET_DEV0_F1_MASK 0x00000080L
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP2__STRAP_RESIZE_BAR_EN_DEV0_F1_MASK 0x00000100L
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP2__STRAP_MAX_PASID_WIDTH_DEV0_F1_MASK 0x00003E00L
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP2__STRAP_MSI_PERVECTOR_MASK_CAP_DEV0_F1_MASK 0x00004000L
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP2__STRAP_AER_EN_DEV0_F1_MASK 0x00010000L
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP2__STRAP_ACS_EN_DEV0_F1_MASK 0x00020000L
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP2__STRAP_CPL_ABORT_ERR_EN_DEV0_F1_MASK 0x00100000L
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP2__STRAP_DPA_EN_DEV0_F1_MASK 0x00200000L
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP2__STRAP_VC_EN_DEV0_F1_MASK 0x00800000L
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP2__STRAP_MSI_MULTI_CAP_DEV0_F1_MASK 0x07000000L
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP2__STRAP_PASID_EN_DEV0_F1_MASK 0x10000000L
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP2__STRAP_PASID_EXE_PERMISSION_SUPPORTED_DEV0_F1_MASK 0x20000000L
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP2__STRAP_PASID_GLOBAL_INVALIDATE_SUPPORTED_DEV0_F1_MASK 0x40000000L
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP2__STRAP_PASID_PRIV_MODE_SUPPORTED_DEV0_F1_MASK 0x80000000L
+//RCC_STRAP1_RCC_DEV0_EPF1_STRAP3
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP3__STRAP_SUBSYS_ID_DEV0_F1__SHIFT 0x0
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP3__STRAP_POISONED_ADVISORY_NONFATAL_DEV0_F1__SHIFT 0x10
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP3__STRAP_PWR_EN_DEV0_F1__SHIFT 0x11
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP3__STRAP_MSI_EN_DEV0_F1__SHIFT 0x12
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP3__STRAP_MSI_CLR_PENDING_EN_DEV0_F1__SHIFT 0x13
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP3__STRAP_MSIX_EN_DEV0_F1__SHIFT 0x14
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP3__STRAP_PMC_DSI_DEV0_F1__SHIFT 0x18
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP3__STRAP_ALL_MSI_EVENT_SUPPORT_EN_DEV0_F1__SHIFT 0x1a
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP3__STRAP_SMN_ERR_STATUS_MASK_EN_EP_DEV0_F1__SHIFT 0x1b
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP3__STRAP_CLK_PM_EN_DEV0_F1__SHIFT 0x1d
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP3__STRAP_TRUE_PM_STATUS_EN_DEV0_F1__SHIFT 0x1e
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP3__STRAP_RTR_EN_DEV0_F1__SHIFT 0x1f
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP3__STRAP_SUBSYS_ID_DEV0_F1_MASK 0x0000FFFFL
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP3__STRAP_POISONED_ADVISORY_NONFATAL_DEV0_F1_MASK 0x00010000L
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP3__STRAP_PWR_EN_DEV0_F1_MASK 0x00020000L
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP3__STRAP_MSI_EN_DEV0_F1_MASK 0x00040000L
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP3__STRAP_MSI_CLR_PENDING_EN_DEV0_F1_MASK 0x00080000L
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP3__STRAP_MSIX_EN_DEV0_F1_MASK 0x00100000L
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP3__STRAP_PMC_DSI_DEV0_F1_MASK 0x01000000L
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP3__STRAP_ALL_MSI_EVENT_SUPPORT_EN_DEV0_F1_MASK 0x04000000L
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP3__STRAP_SMN_ERR_STATUS_MASK_EN_EP_DEV0_F1_MASK 0x08000000L
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP3__STRAP_CLK_PM_EN_DEV0_F1_MASK 0x20000000L
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP3__STRAP_TRUE_PM_STATUS_EN_DEV0_F1_MASK 0x40000000L
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP3__STRAP_RTR_EN_DEV0_F1_MASK 0x80000000L
+//RCC_STRAP1_RCC_DEV0_EPF1_STRAP4
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP4__STRAP_ATOMIC_64BIT_EN_DEV0_F1__SHIFT 0x14
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP4__STRAP_ATOMIC_EN_DEV0_F1__SHIFT 0x15
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP4__STRAP_FLR_EN_DEV0_F1__SHIFT 0x16
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP4__STRAP_PME_SUPPORT_DEV0_F1__SHIFT 0x17
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP4__STRAP_INTERRUPT_PIN_DEV0_F1__SHIFT 0x1c
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP4__STRAP_AUXPWR_SUPPORT_DEV0_F1__SHIFT 0x1f
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP4__STRAP_ATOMIC_64BIT_EN_DEV0_F1_MASK 0x00100000L
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP4__STRAP_ATOMIC_EN_DEV0_F1_MASK 0x00200000L
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP4__STRAP_FLR_EN_DEV0_F1_MASK 0x00400000L
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP4__STRAP_PME_SUPPORT_DEV0_F1_MASK 0x0F800000L
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP4__STRAP_INTERRUPT_PIN_DEV0_F1_MASK 0x70000000L
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP4__STRAP_AUXPWR_SUPPORT_DEV0_F1_MASK 0x80000000L
+//RCC_STRAP1_RCC_DEV0_EPF1_STRAP5
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP5__STRAP_SUBSYS_VEN_ID_DEV0_F1__SHIFT 0x0
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP5__STRAP_AUX_CURRENT_DEV0_F1__SHIFT 0x1b
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP5__STRAP_MSI_EXT_MSG_DATA_CAP_DEV0_F1__SHIFT 0x1e
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP5__STRAP_SUBSYS_VEN_ID_DEV0_F1_MASK 0x0000FFFFL
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP5__STRAP_AUX_CURRENT_DEV0_F1_MASK 0x38000000L
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP5__STRAP_MSI_EXT_MSG_DATA_CAP_DEV0_F1_MASK 0x40000000L
+//RCC_STRAP1_RCC_DEV0_EPF1_STRAP6
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP6__STRAP_APER0_EN_DEV0_F1__SHIFT 0x0
+#define RCC_STRAP1_RCC_DEV0_EPF1_STRAP6__STRAP_APER0_EN_DEV0_F1_MASK 0x00000001L
+
+
+// addressBlock: aid_nbio_nbif0_bif_rst_bif_rst_regblk
+//HARD_RST_CTRL
+#define HARD_RST_CTRL__DSPT_CFG_RST_EN__SHIFT 0x0
+#define HARD_RST_CTRL__DSPT_CFG_STICKY_RST_EN__SHIFT 0x1
+#define HARD_RST_CTRL__DSPT_PRV_RST_EN__SHIFT 0x2
+#define HARD_RST_CTRL__DSPT_PRV_STICKY_RST_EN__SHIFT 0x3
+#define HARD_RST_CTRL__EP_CFG_RST_EN__SHIFT 0x4
+#define HARD_RST_CTRL__EP_CFG_STICKY_RST_EN__SHIFT 0x5
+#define HARD_RST_CTRL__EP_PRV_RST_EN__SHIFT 0x6
+#define HARD_RST_CTRL__EP_PRV_STICKY_RST_EN__SHIFT 0x7
+#define HARD_RST_CTRL__SDP_PORT_RESET_EN__SHIFT 0x9
+#define HARD_RST_CTRL__SION_AON_RESET_EN__SHIFT 0xa
+#define HARD_RST_CTRL__STRAP_RST_EN__SHIFT 0x17
+#define HARD_RST_CTRL__CORE_STICKY_RST_EN__SHIFT 0x1d
+#define HARD_RST_CTRL__RELOAD_STRAP_EN__SHIFT 0x1e
+#define HARD_RST_CTRL__CORE_RST_EN__SHIFT 0x1f
+#define HARD_RST_CTRL__DSPT_CFG_RST_EN_MASK 0x00000001L
+#define HARD_RST_CTRL__DSPT_CFG_STICKY_RST_EN_MASK 0x00000002L
+#define HARD_RST_CTRL__DSPT_PRV_RST_EN_MASK 0x00000004L
+#define HARD_RST_CTRL__DSPT_PRV_STICKY_RST_EN_MASK 0x00000008L
+#define HARD_RST_CTRL__EP_CFG_RST_EN_MASK 0x00000010L
+#define HARD_RST_CTRL__EP_CFG_STICKY_RST_EN_MASK 0x00000020L
+#define HARD_RST_CTRL__EP_PRV_RST_EN_MASK 0x00000040L
+#define HARD_RST_CTRL__EP_PRV_STICKY_RST_EN_MASK 0x00000080L
+#define HARD_RST_CTRL__SDP_PORT_RESET_EN_MASK 0x00000200L
+#define HARD_RST_CTRL__SION_AON_RESET_EN_MASK 0x00000400L
+#define HARD_RST_CTRL__STRAP_RST_EN_MASK 0x00800000L
+#define HARD_RST_CTRL__CORE_STICKY_RST_EN_MASK 0x20000000L
+#define HARD_RST_CTRL__RELOAD_STRAP_EN_MASK 0x40000000L
+#define HARD_RST_CTRL__CORE_RST_EN_MASK 0x80000000L
+//SELF_SOFT_RST
+#define SELF_SOFT_RST__DSPT0_CFG_RST__SHIFT 0x0
+#define SELF_SOFT_RST__DSPT0_CFG_STICKY_RST__SHIFT 0x1
+#define SELF_SOFT_RST__DSPT0_PRV_RST__SHIFT 0x2
+#define SELF_SOFT_RST__DSPT0_PRV_STICKY_RST__SHIFT 0x3
+#define SELF_SOFT_RST__EP0_CFG_RST__SHIFT 0x4
+#define SELF_SOFT_RST__EP0_CFG_STICKY_RST__SHIFT 0x5
+#define SELF_SOFT_RST__EP0_PRV_RST__SHIFT 0x6
+#define SELF_SOFT_RST__EP0_PRV_STICKY_RST__SHIFT 0x7
+#define SELF_SOFT_RST__HRPU_SDP_PORT_RST__SHIFT 0x18
+#define SELF_SOFT_RST__GSID_SDP_PORT_RST__SHIFT 0x19
+#define SELF_SOFT_RST__GMIU_SDP_PORT_RST__SHIFT 0x1a
+#define SELF_SOFT_RST__GMID_SDP_PORT_RST__SHIFT 0x1b
+#define SELF_SOFT_RST__CORE_STICKY_RST__SHIFT 0x1d
+#define SELF_SOFT_RST__RELOAD_STRAP__SHIFT 0x1e
+#define SELF_SOFT_RST__CORE_RST__SHIFT 0x1f
+#define SELF_SOFT_RST__DSPT0_CFG_RST_MASK 0x00000001L
+#define SELF_SOFT_RST__DSPT0_CFG_STICKY_RST_MASK 0x00000002L
+#define SELF_SOFT_RST__DSPT0_PRV_RST_MASK 0x00000004L
+#define SELF_SOFT_RST__DSPT0_PRV_STICKY_RST_MASK 0x00000008L
+#define SELF_SOFT_RST__EP0_CFG_RST_MASK 0x00000010L
+#define SELF_SOFT_RST__EP0_CFG_STICKY_RST_MASK 0x00000020L
+#define SELF_SOFT_RST__EP0_PRV_RST_MASK 0x00000040L
+#define SELF_SOFT_RST__EP0_PRV_STICKY_RST_MASK 0x00000080L
+#define SELF_SOFT_RST__HRPU_SDP_PORT_RST_MASK 0x01000000L
+#define SELF_SOFT_RST__GSID_SDP_PORT_RST_MASK 0x02000000L
+#define SELF_SOFT_RST__GMIU_SDP_PORT_RST_MASK 0x04000000L
+#define SELF_SOFT_RST__GMID_SDP_PORT_RST_MASK 0x08000000L
+#define SELF_SOFT_RST__CORE_STICKY_RST_MASK 0x20000000L
+#define SELF_SOFT_RST__RELOAD_STRAP_MASK 0x40000000L
+#define SELF_SOFT_RST__CORE_RST_MASK 0x80000000L
+//BIF_GFX_DRV_VPU_RST
+#define BIF_GFX_DRV_VPU_RST__DRV_MODE1_PF_CFG_RST__SHIFT 0x0
+#define BIF_GFX_DRV_VPU_RST__DRV_MODE1_PF_CFG_FLR_EXC_RST__SHIFT 0x1
+#define BIF_GFX_DRV_VPU_RST__DRV_MODE1_PF_CFG_STICKY_RST__SHIFT 0x2
+#define BIF_GFX_DRV_VPU_RST__DRV_MODE1_PF_PRV_RST__SHIFT 0x3
+#define BIF_GFX_DRV_VPU_RST__DRV_MODE1_PF_PRV_STICKY_RST__SHIFT 0x4
+#define BIF_GFX_DRV_VPU_RST__DRV_MODE1_VF_CFG_RST__SHIFT 0x5
+#define BIF_GFX_DRV_VPU_RST__DRV_MODE1_VF_CFG_STICKY_RST__SHIFT 0x6
+#define BIF_GFX_DRV_VPU_RST__DRV_MODE1_VF_PRV_RST__SHIFT 0x7
+#define BIF_GFX_DRV_VPU_RST__DRV_MODE1_PF_CFG_RST_MASK 0x00000001L
+#define BIF_GFX_DRV_VPU_RST__DRV_MODE1_PF_CFG_FLR_EXC_RST_MASK 0x00000002L
+#define BIF_GFX_DRV_VPU_RST__DRV_MODE1_PF_CFG_STICKY_RST_MASK 0x00000004L
+#define BIF_GFX_DRV_VPU_RST__DRV_MODE1_PF_PRV_RST_MASK 0x00000008L
+#define BIF_GFX_DRV_VPU_RST__DRV_MODE1_PF_PRV_STICKY_RST_MASK 0x00000010L
+#define BIF_GFX_DRV_VPU_RST__DRV_MODE1_VF_CFG_RST_MASK 0x00000020L
+#define BIF_GFX_DRV_VPU_RST__DRV_MODE1_VF_CFG_STICKY_RST_MASK 0x00000040L
+#define BIF_GFX_DRV_VPU_RST__DRV_MODE1_VF_PRV_RST_MASK 0x00000080L
+//BIF_RST_MISC_CTRL
+#define BIF_RST_MISC_CTRL__ERRSTATUS_KEPT_IN_PERSTB__SHIFT 0x0
+#define BIF_RST_MISC_CTRL__DRV_RST_MODE__SHIFT 0x2
+#define BIF_RST_MISC_CTRL__DRV_RST_CFG_MASK__SHIFT 0x4
+#define BIF_RST_MISC_CTRL__DRV_RST_BITS_AUTO_CLEAR__SHIFT 0x5
+#define BIF_RST_MISC_CTRL__FLR_RST_BIT_AUTO_CLEAR__SHIFT 0x6
+#define BIF_RST_MISC_CTRL__STRAP_EP_LNK_RST_IOV_EN__SHIFT 0x8
+#define BIF_RST_MISC_CTRL__LNK_RST_GRACE_MODE__SHIFT 0x9
+#define BIF_RST_MISC_CTRL__LNK_RST_GRACE_TIMEOUT__SHIFT 0xa
+#define BIF_RST_MISC_CTRL__LNK_RST_TIMER_SEL__SHIFT 0xd
+#define BIF_RST_MISC_CTRL__LNK_RST_TIMER2_SEL__SHIFT 0xf
+#define BIF_RST_MISC_CTRL__SRIOV_SAVE_VFS_ON_VFENABLE_CLR__SHIFT 0x11
+#define BIF_RST_MISC_CTRL__LNK_RST_DMA_DUMMY_DIS__SHIFT 0x17
+#define BIF_RST_MISC_CTRL__LNK_RST_DMA_DUMMY_RSPSTS__SHIFT 0x18
+#define BIF_RST_MISC_CTRL__ERRSTATUS_KEPT_IN_PERSTB_MASK 0x00000001L
+#define BIF_RST_MISC_CTRL__DRV_RST_MODE_MASK 0x0000000CL
+#define BIF_RST_MISC_CTRL__DRV_RST_CFG_MASK_MASK 0x00000010L
+#define BIF_RST_MISC_CTRL__DRV_RST_BITS_AUTO_CLEAR_MASK 0x00000020L
+#define BIF_RST_MISC_CTRL__FLR_RST_BIT_AUTO_CLEAR_MASK 0x00000040L
+#define BIF_RST_MISC_CTRL__STRAP_EP_LNK_RST_IOV_EN_MASK 0x00000100L
+#define BIF_RST_MISC_CTRL__LNK_RST_GRACE_MODE_MASK 0x00000200L
+#define BIF_RST_MISC_CTRL__LNK_RST_GRACE_TIMEOUT_MASK 0x00001C00L
+#define BIF_RST_MISC_CTRL__LNK_RST_TIMER_SEL_MASK 0x00006000L
+#define BIF_RST_MISC_CTRL__LNK_RST_TIMER2_SEL_MASK 0x00018000L
+#define BIF_RST_MISC_CTRL__SRIOV_SAVE_VFS_ON_VFENABLE_CLR_MASK 0x000E0000L
+#define BIF_RST_MISC_CTRL__LNK_RST_DMA_DUMMY_DIS_MASK 0x00800000L
+#define BIF_RST_MISC_CTRL__LNK_RST_DMA_DUMMY_RSPSTS_MASK 0x03000000L
+//BIF_RST_MISC_CTRL2
+#define BIF_RST_MISC_CTRL2__SWUS_LNK_RST_PROTECT__SHIFT 0x0
+#define BIF_RST_MISC_CTRL2__SWDS_LNK_RST_PROTECT__SHIFT 0x1
+#define BIF_RST_MISC_CTRL2__ENDP0_LNK_RST_PROTECT__SHIFT 0x2
+#define BIF_RST_MISC_CTRL2__ALL_RST_PROTECT__SHIFT 0xf
+#define BIF_RST_MISC_CTRL2__SWUS_LNK_RST_TRANS_IDLE__SHIFT 0x10
+#define BIF_RST_MISC_CTRL2__SWDS_LNK_RST_TRANS_IDLE__SHIFT 0x11
+#define BIF_RST_MISC_CTRL2__ENDP0_LNK_RST_TRANS_IDLE__SHIFT 0x12
+#define BIF_RST_MISC_CTRL2__ALL_RST_PROTECT_DIS__SHIFT 0x1e
+#define BIF_RST_MISC_CTRL2__ALL_RST_TRANS_IDLE__SHIFT 0x1f
+#define BIF_RST_MISC_CTRL2__SWUS_LNK_RST_PROTECT_MASK 0x00000001L
+#define BIF_RST_MISC_CTRL2__SWDS_LNK_RST_PROTECT_MASK 0x00000002L
+#define BIF_RST_MISC_CTRL2__ENDP0_LNK_RST_PROTECT_MASK 0x00000004L
+#define BIF_RST_MISC_CTRL2__ALL_RST_PROTECT_MASK 0x00008000L
+#define BIF_RST_MISC_CTRL2__SWUS_LNK_RST_TRANS_IDLE_MASK 0x00010000L
+#define BIF_RST_MISC_CTRL2__SWDS_LNK_RST_TRANS_IDLE_MASK 0x00020000L
+#define BIF_RST_MISC_CTRL2__ENDP0_LNK_RST_TRANS_IDLE_MASK 0x00040000L
+#define BIF_RST_MISC_CTRL2__ALL_RST_PROTECT_DIS_MASK 0x40000000L
+#define BIF_RST_MISC_CTRL2__ALL_RST_TRANS_IDLE_MASK 0x80000000L
+//BIF_RST_MISC_CTRL3
+#define BIF_RST_MISC_CTRL3__TIMER_SCALE__SHIFT 0x0
+#define BIF_RST_MISC_CTRL3__PME_TURNOFF_TIMEOUT__SHIFT 0x4
+#define BIF_RST_MISC_CTRL3__PME_TURNOFF_MODE__SHIFT 0x6
+#define BIF_RST_MISC_CTRL3__RELOAD_STRAP_DELAY_HARD__SHIFT 0x7
+#define BIF_RST_MISC_CTRL3__RELOAD_STRAP_DELAY_SOFT__SHIFT 0xa
+#define BIF_RST_MISC_CTRL3__RELOAD_STRAP_DELAY_SELF__SHIFT 0xd
+#define BIF_RST_MISC_CTRL3__TIMER_SCALE_MASK 0x0000000FL
+#define BIF_RST_MISC_CTRL3__PME_TURNOFF_TIMEOUT_MASK 0x00000030L
+#define BIF_RST_MISC_CTRL3__PME_TURNOFF_MODE_MASK 0x00000040L
+#define BIF_RST_MISC_CTRL3__RELOAD_STRAP_DELAY_HARD_MASK 0x00000380L
+#define BIF_RST_MISC_CTRL3__RELOAD_STRAP_DELAY_SOFT_MASK 0x00001C00L
+#define BIF_RST_MISC_CTRL3__RELOAD_STRAP_DELAY_SELF_MASK 0x0000E000L
+//DEV0_PF0_FLR_RST_CTRL
+#define DEV0_PF0_FLR_RST_CTRL__PF_CFG_EN__SHIFT 0x0
+#define DEV0_PF0_FLR_RST_CTRL__PF_CFG_FLR_EXC_EN__SHIFT 0x1
+#define DEV0_PF0_FLR_RST_CTRL__PF_CFG_STICKY_EN__SHIFT 0x2
+#define DEV0_PF0_FLR_RST_CTRL__PF_PRV_EN__SHIFT 0x3
+#define DEV0_PF0_FLR_RST_CTRL__PF_PRV_STICKY_EN__SHIFT 0x4
+#define DEV0_PF0_FLR_RST_CTRL__VF_CFG_EN__SHIFT 0x5
+#define DEV0_PF0_FLR_RST_CTRL__VF_CFG_STICKY_EN__SHIFT 0x6
+#define DEV0_PF0_FLR_RST_CTRL__VF_PRV_EN__SHIFT 0x7
+#define DEV0_PF0_FLR_RST_CTRL__SOFT_PF_CFG_EN__SHIFT 0x8
+#define DEV0_PF0_FLR_RST_CTRL__SOFT_PF_CFG_FLR_EXC_EN__SHIFT 0x9
+#define DEV0_PF0_FLR_RST_CTRL__SOFT_PF_CFG_STICKY_EN__SHIFT 0xa
+#define DEV0_PF0_FLR_RST_CTRL__SOFT_PF_PRV_EN__SHIFT 0xb
+#define DEV0_PF0_FLR_RST_CTRL__SOFT_PF_PRV_STICKY_EN__SHIFT 0xc
+#define DEV0_PF0_FLR_RST_CTRL__VF_VF_CFG_EN__SHIFT 0xd
+#define DEV0_PF0_FLR_RST_CTRL__VF_VF_CFG_STICKY_EN__SHIFT 0xe
+#define DEV0_PF0_FLR_RST_CTRL__VF_VF_PRV_EN__SHIFT 0xf
+#define DEV0_PF0_FLR_RST_CTRL__FLR_TWICE_EN__SHIFT 0x10
+#define DEV0_PF0_FLR_RST_CTRL__FLR_GRACE_MODE__SHIFT 0x11
+#define DEV0_PF0_FLR_RST_CTRL__FLR_GRACE_TIMEOUT__SHIFT 0x12
+#define DEV0_PF0_FLR_RST_CTRL__FLR_DMA_DUMMY_RSPSTS__SHIFT 0x17
+#define DEV0_PF0_FLR_RST_CTRL__FLR_HST_DUMMY_RSPSTS__SHIFT 0x19
+#define DEV0_PF0_FLR_RST_CTRL__SOFT_PF_PFCOPY_PRV_EN__SHIFT 0x1f
+#define DEV0_PF0_FLR_RST_CTRL__PF_CFG_EN_MASK 0x00000001L
+#define DEV0_PF0_FLR_RST_CTRL__PF_CFG_FLR_EXC_EN_MASK 0x00000002L
+#define DEV0_PF0_FLR_RST_CTRL__PF_CFG_STICKY_EN_MASK 0x00000004L
+#define DEV0_PF0_FLR_RST_CTRL__PF_PRV_EN_MASK 0x00000008L
+#define DEV0_PF0_FLR_RST_CTRL__PF_PRV_STICKY_EN_MASK 0x00000010L
+#define DEV0_PF0_FLR_RST_CTRL__VF_CFG_EN_MASK 0x00000020L
+#define DEV0_PF0_FLR_RST_CTRL__VF_CFG_STICKY_EN_MASK 0x00000040L
+#define DEV0_PF0_FLR_RST_CTRL__VF_PRV_EN_MASK 0x00000080L
+#define DEV0_PF0_FLR_RST_CTRL__SOFT_PF_CFG_EN_MASK 0x00000100L
+#define DEV0_PF0_FLR_RST_CTRL__SOFT_PF_CFG_FLR_EXC_EN_MASK 0x00000200L
+#define DEV0_PF0_FLR_RST_CTRL__SOFT_PF_CFG_STICKY_EN_MASK 0x00000400L
+#define DEV0_PF0_FLR_RST_CTRL__SOFT_PF_PRV_EN_MASK 0x00000800L
+#define DEV0_PF0_FLR_RST_CTRL__SOFT_PF_PRV_STICKY_EN_MASK 0x00001000L
+#define DEV0_PF0_FLR_RST_CTRL__VF_VF_CFG_EN_MASK 0x00002000L
+#define DEV0_PF0_FLR_RST_CTRL__VF_VF_CFG_STICKY_EN_MASK 0x00004000L
+#define DEV0_PF0_FLR_RST_CTRL__VF_VF_PRV_EN_MASK 0x00008000L
+#define DEV0_PF0_FLR_RST_CTRL__FLR_TWICE_EN_MASK 0x00010000L
+#define DEV0_PF0_FLR_RST_CTRL__FLR_GRACE_MODE_MASK 0x00020000L
+#define DEV0_PF0_FLR_RST_CTRL__FLR_GRACE_TIMEOUT_MASK 0x001C0000L
+#define DEV0_PF0_FLR_RST_CTRL__FLR_DMA_DUMMY_RSPSTS_MASK 0x01800000L
+#define DEV0_PF0_FLR_RST_CTRL__FLR_HST_DUMMY_RSPSTS_MASK 0x06000000L
+#define DEV0_PF0_FLR_RST_CTRL__SOFT_PF_PFCOPY_PRV_EN_MASK 0x80000000L
+//DEV0_PF1_FLR_RST_CTRL
+#define DEV0_PF1_FLR_RST_CTRL__PF_CFG_EN__SHIFT 0x0
+#define DEV0_PF1_FLR_RST_CTRL__PF_CFG_FLR_EXC_EN__SHIFT 0x1
+#define DEV0_PF1_FLR_RST_CTRL__PF_CFG_STICKY_EN__SHIFT 0x2
+#define DEV0_PF1_FLR_RST_CTRL__PF_PRV_EN__SHIFT 0x3
+#define DEV0_PF1_FLR_RST_CTRL__PF_PRV_STICKY_EN__SHIFT 0x4
+#define DEV0_PF1_FLR_RST_CTRL__FLR_GRACE_MODE__SHIFT 0x11
+#define DEV0_PF1_FLR_RST_CTRL__FLR_GRACE_TIMEOUT__SHIFT 0x12
+#define DEV0_PF1_FLR_RST_CTRL__FLR_DMA_DUMMY_RSPSTS__SHIFT 0x17
+#define DEV0_PF1_FLR_RST_CTRL__FLR_HST_DUMMY_RSPSTS__SHIFT 0x19
+#define DEV0_PF1_FLR_RST_CTRL__PF_CFG_EN_MASK 0x00000001L
+#define DEV0_PF1_FLR_RST_CTRL__PF_CFG_FLR_EXC_EN_MASK 0x00000002L
+#define DEV0_PF1_FLR_RST_CTRL__PF_CFG_STICKY_EN_MASK 0x00000004L
+#define DEV0_PF1_FLR_RST_CTRL__PF_PRV_EN_MASK 0x00000008L
+#define DEV0_PF1_FLR_RST_CTRL__PF_PRV_STICKY_EN_MASK 0x00000010L
+#define DEV0_PF1_FLR_RST_CTRL__FLR_GRACE_MODE_MASK 0x00020000L
+#define DEV0_PF1_FLR_RST_CTRL__FLR_GRACE_TIMEOUT_MASK 0x001C0000L
+#define DEV0_PF1_FLR_RST_CTRL__FLR_DMA_DUMMY_RSPSTS_MASK 0x01800000L
+#define DEV0_PF1_FLR_RST_CTRL__FLR_HST_DUMMY_RSPSTS_MASK 0x06000000L
+//BIF_INST_RESET_INTR_STS
+#define BIF_INST_RESET_INTR_STS__EP0_LINK_RESET_INTR_STS__SHIFT 0x0
+#define BIF_INST_RESET_INTR_STS__EP0_LINK_RESET_CFG_ONLY_INTR_STS__SHIFT 0x1
+#define BIF_INST_RESET_INTR_STS__DRV_RESET_M0_INTR_STS__SHIFT 0x2
+#define BIF_INST_RESET_INTR_STS__DRV_RESET_M1_INTR_STS__SHIFT 0x3
+#define BIF_INST_RESET_INTR_STS__DRV_RESET_M2_INTR_STS__SHIFT 0x4
+#define BIF_INST_RESET_INTR_STS__EP0_LINK_RESET_INTR_STS_MASK 0x00000001L
+#define BIF_INST_RESET_INTR_STS__EP0_LINK_RESET_CFG_ONLY_INTR_STS_MASK 0x00000002L
+#define BIF_INST_RESET_INTR_STS__DRV_RESET_M0_INTR_STS_MASK 0x00000004L
+#define BIF_INST_RESET_INTR_STS__DRV_RESET_M1_INTR_STS_MASK 0x00000008L
+#define BIF_INST_RESET_INTR_STS__DRV_RESET_M2_INTR_STS_MASK 0x00000010L
+//BIF_PF_FLR_INTR_STS
+#define BIF_PF_FLR_INTR_STS__DEV0_PF0_FLR_INTR_STS__SHIFT 0x0
+#define BIF_PF_FLR_INTR_STS__DEV0_PF1_FLR_INTR_STS__SHIFT 0x1
+#define BIF_PF_FLR_INTR_STS__DEV0_PF0_FLR_INTR_STS_MASK 0x00000001L
+#define BIF_PF_FLR_INTR_STS__DEV0_PF1_FLR_INTR_STS_MASK 0x00000002L
+//BIF_D3HOTD0_INTR_STS
+#define BIF_D3HOTD0_INTR_STS__DEV0_PF0_D3HOTD0_INTR_STS__SHIFT 0x0
+#define BIF_D3HOTD0_INTR_STS__DEV0_PF1_D3HOTD0_INTR_STS__SHIFT 0x1
+#define BIF_D3HOTD0_INTR_STS__DEV0_PF0_D3HOTD0_INTR_STS_MASK 0x00000001L
+#define BIF_D3HOTD0_INTR_STS__DEV0_PF1_D3HOTD0_INTR_STS_MASK 0x00000002L
+//BIF_POWER_INTR_STS
+#define BIF_POWER_INTR_STS__DEV0_PME_TURN_OFF_INTR_STS__SHIFT 0x0
+#define BIF_POWER_INTR_STS__PORT0_DSTATE_INTR_STS__SHIFT 0x10
+#define BIF_POWER_INTR_STS__DEV0_PME_TURN_OFF_INTR_STS_MASK 0x00000001L
+#define BIF_POWER_INTR_STS__PORT0_DSTATE_INTR_STS_MASK 0x00010000L
+//BIF_PF_DSTATE_INTR_STS
+#define BIF_PF_DSTATE_INTR_STS__DEV0_PF0_DSTATE_INTR_STS__SHIFT 0x0
+#define BIF_PF_DSTATE_INTR_STS__DEV0_PF1_DSTATE_INTR_STS__SHIFT 0x1
+#define BIF_PF_DSTATE_INTR_STS__DEV0_PF2_DSTATE_INTR_STS__SHIFT 0x2
+#define BIF_PF_DSTATE_INTR_STS__DEV0_PF3_DSTATE_INTR_STS__SHIFT 0x3
+#define BIF_PF_DSTATE_INTR_STS__DEV0_PF4_DSTATE_INTR_STS__SHIFT 0x4
+#define BIF_PF_DSTATE_INTR_STS__DEV0_PF5_DSTATE_INTR_STS__SHIFT 0x5
+#define BIF_PF_DSTATE_INTR_STS__DEV0_PF6_DSTATE_INTR_STS__SHIFT 0x6
+#define BIF_PF_DSTATE_INTR_STS__DEV0_PF7_DSTATE_INTR_STS__SHIFT 0x7
+#define BIF_PF_DSTATE_INTR_STS__DEV0_PF0_DSTATE_INTR_STS_MASK 0x00000001L
+#define BIF_PF_DSTATE_INTR_STS__DEV0_PF1_DSTATE_INTR_STS_MASK 0x00000002L
+#define BIF_PF_DSTATE_INTR_STS__DEV0_PF2_DSTATE_INTR_STS_MASK 0x00000004L
+#define BIF_PF_DSTATE_INTR_STS__DEV0_PF3_DSTATE_INTR_STS_MASK 0x00000008L
+#define BIF_PF_DSTATE_INTR_STS__DEV0_PF4_DSTATE_INTR_STS_MASK 0x00000010L
+#define BIF_PF_DSTATE_INTR_STS__DEV0_PF5_DSTATE_INTR_STS_MASK 0x00000020L
+#define BIF_PF_DSTATE_INTR_STS__DEV0_PF6_DSTATE_INTR_STS_MASK 0x00000040L
+#define BIF_PF_DSTATE_INTR_STS__DEV0_PF7_DSTATE_INTR_STS_MASK 0x00000080L
+//SELF_SOFT_RST_2
+#define SELF_SOFT_RST_2__DSPT3_CFG_RST__SHIFT 0x0
+#define SELF_SOFT_RST_2__DSPT3_CFG_STICKY_RST__SHIFT 0x1
+#define SELF_SOFT_RST_2__DSPT3_PRV_RST__SHIFT 0x2
+#define SELF_SOFT_RST_2__DSPT3_PRV_STICKY_RST__SHIFT 0x3
+#define SELF_SOFT_RST_2__EP3_CFG_RST__SHIFT 0x4
+#define SELF_SOFT_RST_2__EP3_CFG_STICKY_RST__SHIFT 0x5
+#define SELF_SOFT_RST_2__EP3_PRV_RST__SHIFT 0x6
+#define SELF_SOFT_RST_2__EP3_PRV_STICKY_RST__SHIFT 0x7
+#define SELF_SOFT_RST_2__GMISP0_SDP_PORT_RST__SHIFT 0x18
+#define SELF_SOFT_RST_2__STRAP_RST__SHIFT 0x19
+#define SELF_SOFT_RST_2__DSPT3_CFG_RST_MASK 0x00000001L
+#define SELF_SOFT_RST_2__DSPT3_CFG_STICKY_RST_MASK 0x00000002L
+#define SELF_SOFT_RST_2__DSPT3_PRV_RST_MASK 0x00000004L
+#define SELF_SOFT_RST_2__DSPT3_PRV_STICKY_RST_MASK 0x00000008L
+#define SELF_SOFT_RST_2__EP3_CFG_RST_MASK 0x00000010L
+#define SELF_SOFT_RST_2__EP3_CFG_STICKY_RST_MASK 0x00000020L
+#define SELF_SOFT_RST_2__EP3_PRV_RST_MASK 0x00000040L
+#define SELF_SOFT_RST_2__EP3_PRV_STICKY_RST_MASK 0x00000080L
+#define SELF_SOFT_RST_2__GMISP0_SDP_PORT_RST_MASK 0x01000000L
+#define SELF_SOFT_RST_2__STRAP_RST_MASK 0x02000000L
+//BIF_INST_RESET_INTR_MASK
+#define BIF_INST_RESET_INTR_MASK__EP0_LINK_RESET_INTR_MASK__SHIFT 0x0
+#define BIF_INST_RESET_INTR_MASK__EP0_LINK_RESET_CFG_ONLY_INTR_MASK__SHIFT 0x1
+#define BIF_INST_RESET_INTR_MASK__DRV_RESET_M0_INTR_MASK__SHIFT 0x2
+#define BIF_INST_RESET_INTR_MASK__DRV_RESET_M1_INTR_MASK__SHIFT 0x3
+#define BIF_INST_RESET_INTR_MASK__DRV_RESET_M2_INTR_MASK__SHIFT 0x4
+#define BIF_INST_RESET_INTR_MASK__EP0_LINK_RESET_INTR_MASK_MASK 0x00000001L
+#define BIF_INST_RESET_INTR_MASK__EP0_LINK_RESET_CFG_ONLY_INTR_MASK_MASK 0x00000002L
+#define BIF_INST_RESET_INTR_MASK__DRV_RESET_M0_INTR_MASK_MASK 0x00000004L
+#define BIF_INST_RESET_INTR_MASK__DRV_RESET_M1_INTR_MASK_MASK 0x00000008L
+#define BIF_INST_RESET_INTR_MASK__DRV_RESET_M2_INTR_MASK_MASK 0x00000010L
+//BIF_PF_FLR_INTR_MASK
+#define BIF_PF_FLR_INTR_MASK__DEV0_PF0_FLR_INTR_MASK__SHIFT 0x0
+#define BIF_PF_FLR_INTR_MASK__DEV0_PF1_FLR_INTR_MASK__SHIFT 0x1
+#define BIF_PF_FLR_INTR_MASK__DEV0_PF0_FLR_INTR_MASK_MASK 0x00000001L
+#define BIF_PF_FLR_INTR_MASK__DEV0_PF1_FLR_INTR_MASK_MASK 0x00000002L
+//BIF_D3HOTD0_INTR_MASK
+#define BIF_D3HOTD0_INTR_MASK__DEV0_PF0_D3HOTD0_INTR_MASK__SHIFT 0x0
+#define BIF_D3HOTD0_INTR_MASK__DEV0_PF1_D3HOTD0_INTR_MASK__SHIFT 0x1
+#define BIF_D3HOTD0_INTR_MASK__DEV0_PF0_D3HOTD0_INTR_MASK_MASK 0x00000001L
+#define BIF_D3HOTD0_INTR_MASK__DEV0_PF1_D3HOTD0_INTR_MASK_MASK 0x00000002L
+//BIF_POWER_INTR_MASK
+#define BIF_POWER_INTR_MASK__DEV0_PME_TURN_OFF_INTR_MASK__SHIFT 0x0
+#define BIF_POWER_INTR_MASK__PORT0_DSTATE_INTR_MASK__SHIFT 0x10
+#define BIF_POWER_INTR_MASK__DEV0_PME_TURN_OFF_INTR_MASK_MASK 0x00000001L
+#define BIF_POWER_INTR_MASK__PORT0_DSTATE_INTR_MASK_MASK 0x00010000L
+//BIF_PF_DSTATE_INTR_MASK
+#define BIF_PF_DSTATE_INTR_MASK__DEV0_PF0_DSTATE_INTR_MASK__SHIFT 0x0
+#define BIF_PF_DSTATE_INTR_MASK__DEV0_PF1_DSTATE_INTR_MASK__SHIFT 0x1
+#define BIF_PF_DSTATE_INTR_MASK__DEV0_PF2_DSTATE_INTR_MASK__SHIFT 0x2
+#define BIF_PF_DSTATE_INTR_MASK__DEV0_PF3_DSTATE_INTR_MASK__SHIFT 0x3
+#define BIF_PF_DSTATE_INTR_MASK__DEV0_PF4_DSTATE_INTR_MASK__SHIFT 0x4
+#define BIF_PF_DSTATE_INTR_MASK__DEV0_PF5_DSTATE_INTR_MASK__SHIFT 0x5
+#define BIF_PF_DSTATE_INTR_MASK__DEV0_PF6_DSTATE_INTR_MASK__SHIFT 0x6
+#define BIF_PF_DSTATE_INTR_MASK__DEV0_PF7_DSTATE_INTR_MASK__SHIFT 0x7
+#define BIF_PF_DSTATE_INTR_MASK__DEV0_PF0_DSTATE_INTR_MASK_MASK 0x00000001L
+#define BIF_PF_DSTATE_INTR_MASK__DEV0_PF1_DSTATE_INTR_MASK_MASK 0x00000002L
+#define BIF_PF_DSTATE_INTR_MASK__DEV0_PF2_DSTATE_INTR_MASK_MASK 0x00000004L
+#define BIF_PF_DSTATE_INTR_MASK__DEV0_PF3_DSTATE_INTR_MASK_MASK 0x00000008L
+#define BIF_PF_DSTATE_INTR_MASK__DEV0_PF4_DSTATE_INTR_MASK_MASK 0x00000010L
+#define BIF_PF_DSTATE_INTR_MASK__DEV0_PF5_DSTATE_INTR_MASK_MASK 0x00000020L
+#define BIF_PF_DSTATE_INTR_MASK__DEV0_PF6_DSTATE_INTR_MASK_MASK 0x00000040L
+#define BIF_PF_DSTATE_INTR_MASK__DEV0_PF7_DSTATE_INTR_MASK_MASK 0x00000080L
+//BIF_PF_FLR_RST
+#define BIF_PF_FLR_RST__DEV0_PF0_FLR_RST__SHIFT 0x0
+#define BIF_PF_FLR_RST__DEV0_PF1_FLR_RST__SHIFT 0x1
+#define BIF_PF_FLR_RST__DEV0_PF0_FLR_RST_MASK 0x00000001L
+#define BIF_PF_FLR_RST__DEV0_PF1_FLR_RST_MASK 0x00000002L
+//BIF_DEV0_PF0_DSTATE_VALUE
+#define BIF_DEV0_PF0_DSTATE_VALUE__DEV0_PF0_DSTATE_TGT_VALUE__SHIFT 0x0
+#define BIF_DEV0_PF0_DSTATE_VALUE__DEV0_PF0_DSTATE_NEED_D3TOD0_RESET__SHIFT 0x2
+#define BIF_DEV0_PF0_DSTATE_VALUE__DEV0_PF0_DSTATE_ACK_VALUE__SHIFT 0x10
+#define BIF_DEV0_PF0_DSTATE_VALUE__DEV0_PF0_DSTATE_TGT_VALUE_MASK 0x00000003L
+#define BIF_DEV0_PF0_DSTATE_VALUE__DEV0_PF0_DSTATE_NEED_D3TOD0_RESET_MASK 0x00000004L
+#define BIF_DEV0_PF0_DSTATE_VALUE__DEV0_PF0_DSTATE_ACK_VALUE_MASK 0x00030000L
+//BIF_DEV0_PF1_DSTATE_VALUE
+#define BIF_DEV0_PF1_DSTATE_VALUE__DEV0_PF1_DSTATE_TGT_VALUE__SHIFT 0x0
+#define BIF_DEV0_PF1_DSTATE_VALUE__DEV0_PF1_DSTATE_NEED_D3TOD0_RESET__SHIFT 0x2
+#define BIF_DEV0_PF1_DSTATE_VALUE__DEV0_PF1_DSTATE_ACK_VALUE__SHIFT 0x10
+#define BIF_DEV0_PF1_DSTATE_VALUE__DEV0_PF1_DSTATE_TGT_VALUE_MASK 0x00000003L
+#define BIF_DEV0_PF1_DSTATE_VALUE__DEV0_PF1_DSTATE_NEED_D3TOD0_RESET_MASK 0x00000004L
+#define BIF_DEV0_PF1_DSTATE_VALUE__DEV0_PF1_DSTATE_ACK_VALUE_MASK 0x00030000L
+//DEV0_PF0_D3HOTD0_RST_CTRL
+#define DEV0_PF0_D3HOTD0_RST_CTRL__PF_CFG_EN__SHIFT 0x0
+#define DEV0_PF0_D3HOTD0_RST_CTRL__PF_CFG_FLR_EXC_EN__SHIFT 0x1
+#define DEV0_PF0_D3HOTD0_RST_CTRL__PF_CFG_STICKY_EN__SHIFT 0x2
+#define DEV0_PF0_D3HOTD0_RST_CTRL__PF_PRV_EN__SHIFT 0x3
+#define DEV0_PF0_D3HOTD0_RST_CTRL__PF_PRV_STICKY_EN__SHIFT 0x4
+#define DEV0_PF0_D3HOTD0_RST_CTRL__PF_CFG_EN_MASK 0x00000001L
+#define DEV0_PF0_D3HOTD0_RST_CTRL__PF_CFG_FLR_EXC_EN_MASK 0x00000002L
+#define DEV0_PF0_D3HOTD0_RST_CTRL__PF_CFG_STICKY_EN_MASK 0x00000004L
+#define DEV0_PF0_D3HOTD0_RST_CTRL__PF_PRV_EN_MASK 0x00000008L
+#define DEV0_PF0_D3HOTD0_RST_CTRL__PF_PRV_STICKY_EN_MASK 0x00000010L
+//DEV0_PF1_D3HOTD0_RST_CTRL
+#define DEV0_PF1_D3HOTD0_RST_CTRL__PF_CFG_EN__SHIFT 0x0
+#define DEV0_PF1_D3HOTD0_RST_CTRL__PF_CFG_FLR_EXC_EN__SHIFT 0x1
+#define DEV0_PF1_D3HOTD0_RST_CTRL__PF_CFG_STICKY_EN__SHIFT 0x2
+#define DEV0_PF1_D3HOTD0_RST_CTRL__PF_PRV_EN__SHIFT 0x3
+#define DEV0_PF1_D3HOTD0_RST_CTRL__PF_PRV_STICKY_EN__SHIFT 0x4
+#define DEV0_PF1_D3HOTD0_RST_CTRL__PF_CFG_EN_MASK 0x00000001L
+#define DEV0_PF1_D3HOTD0_RST_CTRL__PF_CFG_FLR_EXC_EN_MASK 0x00000002L
+#define DEV0_PF1_D3HOTD0_RST_CTRL__PF_CFG_STICKY_EN_MASK 0x00000004L
+#define DEV0_PF1_D3HOTD0_RST_CTRL__PF_PRV_EN_MASK 0x00000008L
+#define DEV0_PF1_D3HOTD0_RST_CTRL__PF_PRV_STICKY_EN_MASK 0x00000010L
+//BIF_PORT0_DSTATE_VALUE
+#define BIF_PORT0_DSTATE_VALUE__PORT0_DSTATE_TGT_VALUE__SHIFT 0x0
+#define BIF_PORT0_DSTATE_VALUE__PORT0_DSTATE_ACK_VALUE__SHIFT 0x10
+#define BIF_PORT0_DSTATE_VALUE__PORT0_DSTATE_TGT_VALUE_MASK 0x00000003L
+#define BIF_PORT0_DSTATE_VALUE__PORT0_DSTATE_ACK_VALUE_MASK 0x00030000L
+
+
+// addressBlock: aid_nbio_nbif0_bif_misc_bif_misc_regblk
+//REGS_ROM_OFFSET_CTRL
+#define REGS_ROM_OFFSET_CTRL__ROM_OFFSET__SHIFT 0x0
+#define REGS_ROM_OFFSET_CTRL__ROM_OFFSET_MASK 0x7FL
+//NBIF_STRAP_BIOS_CNTL
+#define NBIF_STRAP_BIOS_CNTL__NBIF_STRAP_BIOS_EN__SHIFT 0x0
+#define NBIF_STRAP_BIOS_CNTL__NBIF_STRAP_PCIE_ID_BIOS_EN__SHIFT 0x1
+#define NBIF_STRAP_BIOS_CNTL__NBIF_STRAP_BIOS_EN_MASK 0x00000001L
+#define NBIF_STRAP_BIOS_CNTL__NBIF_STRAP_PCIE_ID_BIOS_EN_MASK 0x00000002L
+//DOORBELL0_CTRL_ENTRY_0
+#define DOORBELL0_CTRL_ENTRY_0__BIF_DOORBELL0_RANGE_OFFSET_ENTRY__SHIFT 0x0
+#define DOORBELL0_CTRL_ENTRY_0__BIF_DOORBELL0_RANGE_SIZE_ENTRY__SHIFT 0xa
+#define DOORBELL0_CTRL_ENTRY_0__DOORBELL0_FENCE_ENABLE_ENTRY__SHIFT 0x10
+#define DOORBELL0_CTRL_ENTRY_0__BIF_DOORBELL0_RANGE_OFFSET_ENTRY_MASK 0x000003FFL
+#define DOORBELL0_CTRL_ENTRY_0__BIF_DOORBELL0_RANGE_SIZE_ENTRY_MASK 0x00007C00L
+#define DOORBELL0_CTRL_ENTRY_0__DOORBELL0_FENCE_ENABLE_ENTRY_MASK 0x001F0000L
+//DOORBELL0_CTRL_ENTRY_1
+#define DOORBELL0_CTRL_ENTRY_1__BIF_DOORBELL1_RANGE_OFFSET_ENTRY__SHIFT 0x0
+#define DOORBELL0_CTRL_ENTRY_1__BIF_DOORBELL1_RANGE_SIZE_ENTRY__SHIFT 0xa
+#define DOORBELL0_CTRL_ENTRY_1__DOORBELL1_FENCE_ENABLE_ENTRY__SHIFT 0x10
+#define DOORBELL0_CTRL_ENTRY_1__BIF_DOORBELL1_RANGE_OFFSET_ENTRY_MASK 0x000003FFL
+#define DOORBELL0_CTRL_ENTRY_1__BIF_DOORBELL1_RANGE_SIZE_ENTRY_MASK 0x00007C00L
+#define DOORBELL0_CTRL_ENTRY_1__DOORBELL1_FENCE_ENABLE_ENTRY_MASK 0x001F0000L
+//DOORBELL0_CTRL_ENTRY_2
+#define DOORBELL0_CTRL_ENTRY_2__BIF_DOORBELL2_RANGE_OFFSET_ENTRY__SHIFT 0x0
+#define DOORBELL0_CTRL_ENTRY_2__BIF_DOORBELL2_RANGE_SIZE_ENTRY__SHIFT 0xa
+#define DOORBELL0_CTRL_ENTRY_2__DOORBELL2_FENCE_ENABLE_ENTRY__SHIFT 0x10
+#define DOORBELL0_CTRL_ENTRY_2__BIF_DOORBELL2_RANGE_OFFSET_ENTRY_MASK 0x000003FFL
+#define DOORBELL0_CTRL_ENTRY_2__BIF_DOORBELL2_RANGE_SIZE_ENTRY_MASK 0x00007C00L
+#define DOORBELL0_CTRL_ENTRY_2__DOORBELL2_FENCE_ENABLE_ENTRY_MASK 0x001F0000L
+//DOORBELL0_CTRL_ENTRY_3
+#define DOORBELL0_CTRL_ENTRY_3__BIF_DOORBELL3_RANGE_OFFSET_ENTRY__SHIFT 0x0
+#define DOORBELL0_CTRL_ENTRY_3__BIF_DOORBELL3_RANGE_SIZE_ENTRY__SHIFT 0xa
+#define DOORBELL0_CTRL_ENTRY_3__DOORBELL3_FENCE_ENABLE_ENTRY__SHIFT 0x10
+#define DOORBELL0_CTRL_ENTRY_3__BIF_DOORBELL3_RANGE_OFFSET_ENTRY_MASK 0x000003FFL
+#define DOORBELL0_CTRL_ENTRY_3__BIF_DOORBELL3_RANGE_SIZE_ENTRY_MASK 0x00007C00L
+#define DOORBELL0_CTRL_ENTRY_3__DOORBELL3_FENCE_ENABLE_ENTRY_MASK 0x001F0000L
+//DOORBELL0_CTRL_ENTRY_4
+#define DOORBELL0_CTRL_ENTRY_4__BIF_DOORBELL4_RANGE_OFFSET_ENTRY__SHIFT 0x0
+#define DOORBELL0_CTRL_ENTRY_4__BIF_DOORBELL4_RANGE_SIZE_ENTRY__SHIFT 0xa
+#define DOORBELL0_CTRL_ENTRY_4__DOORBELL4_FENCE_ENABLE_ENTRY__SHIFT 0x10
+#define DOORBELL0_CTRL_ENTRY_4__BIF_DOORBELL4_RANGE_OFFSET_ENTRY_MASK 0x000003FFL
+#define DOORBELL0_CTRL_ENTRY_4__BIF_DOORBELL4_RANGE_SIZE_ENTRY_MASK 0x00007C00L
+#define DOORBELL0_CTRL_ENTRY_4__DOORBELL4_FENCE_ENABLE_ENTRY_MASK 0x001F0000L
+//DOORBELL0_CTRL_ENTRY_5
+#define DOORBELL0_CTRL_ENTRY_5__BIF_DOORBELL5_RANGE_OFFSET_ENTRY__SHIFT 0x0
+#define DOORBELL0_CTRL_ENTRY_5__BIF_DOORBELL5_RANGE_SIZE_ENTRY__SHIFT 0xa
+#define DOORBELL0_CTRL_ENTRY_5__DOORBELL5_FENCE_ENABLE_ENTRY__SHIFT 0x10
+#define DOORBELL0_CTRL_ENTRY_5__BIF_DOORBELL5_RANGE_OFFSET_ENTRY_MASK 0x000003FFL
+#define DOORBELL0_CTRL_ENTRY_5__BIF_DOORBELL5_RANGE_SIZE_ENTRY_MASK 0x00007C00L
+#define DOORBELL0_CTRL_ENTRY_5__DOORBELL5_FENCE_ENABLE_ENTRY_MASK 0x001F0000L
+//DOORBELL0_CTRL_ENTRY_6
+#define DOORBELL0_CTRL_ENTRY_6__BIF_DOORBELL6_RANGE_OFFSET_ENTRY__SHIFT 0x0
+#define DOORBELL0_CTRL_ENTRY_6__BIF_DOORBELL6_RANGE_SIZE_ENTRY__SHIFT 0xa
+#define DOORBELL0_CTRL_ENTRY_6__DOORBELL6_FENCE_ENABLE_ENTRY__SHIFT 0x10
+#define DOORBELL0_CTRL_ENTRY_6__BIF_DOORBELL6_RANGE_OFFSET_ENTRY_MASK 0x000003FFL
+#define DOORBELL0_CTRL_ENTRY_6__BIF_DOORBELL6_RANGE_SIZE_ENTRY_MASK 0x00007C00L
+#define DOORBELL0_CTRL_ENTRY_6__DOORBELL6_FENCE_ENABLE_ENTRY_MASK 0x001F0000L
+//DOORBELL0_CTRL_ENTRY_7
+#define DOORBELL0_CTRL_ENTRY_7__BIF_DOORBELL7_RANGE_OFFSET_ENTRY__SHIFT 0x0
+#define DOORBELL0_CTRL_ENTRY_7__BIF_DOORBELL7_RANGE_SIZE_ENTRY__SHIFT 0xa
+#define DOORBELL0_CTRL_ENTRY_7__DOORBELL7_FENCE_ENABLE_ENTRY__SHIFT 0x10
+#define DOORBELL0_CTRL_ENTRY_7__BIF_DOORBELL7_RANGE_OFFSET_ENTRY_MASK 0x000003FFL
+#define DOORBELL0_CTRL_ENTRY_7__BIF_DOORBELL7_RANGE_SIZE_ENTRY_MASK 0x00007C00L
+#define DOORBELL0_CTRL_ENTRY_7__DOORBELL7_FENCE_ENABLE_ENTRY_MASK 0x001F0000L
+//DOORBELL0_CTRL_ENTRY_8
+#define DOORBELL0_CTRL_ENTRY_8__BIF_DOORBELL8_RANGE_OFFSET_ENTRY__SHIFT 0x0
+#define DOORBELL0_CTRL_ENTRY_8__BIF_DOORBELL8_RANGE_SIZE_ENTRY__SHIFT 0xa
+#define DOORBELL0_CTRL_ENTRY_8__DOORBELL8_FENCE_ENABLE_ENTRY__SHIFT 0x10
+#define DOORBELL0_CTRL_ENTRY_8__BIF_DOORBELL8_RANGE_OFFSET_ENTRY_MASK 0x000003FFL
+#define DOORBELL0_CTRL_ENTRY_8__BIF_DOORBELL8_RANGE_SIZE_ENTRY_MASK 0x00007C00L
+#define DOORBELL0_CTRL_ENTRY_8__DOORBELL8_FENCE_ENABLE_ENTRY_MASK 0x001F0000L
+//DOORBELL0_CTRL_ENTRY_9
+#define DOORBELL0_CTRL_ENTRY_9__BIF_DOORBELL9_RANGE_OFFSET_ENTRY__SHIFT 0x0
+#define DOORBELL0_CTRL_ENTRY_9__BIF_DOORBELL9_RANGE_SIZE_ENTRY__SHIFT 0xa
+#define DOORBELL0_CTRL_ENTRY_9__DOORBELL9_FENCE_ENABLE_ENTRY__SHIFT 0x10
+#define DOORBELL0_CTRL_ENTRY_9__BIF_DOORBELL9_RANGE_OFFSET_ENTRY_MASK 0x000003FFL
+#define DOORBELL0_CTRL_ENTRY_9__BIF_DOORBELL9_RANGE_SIZE_ENTRY_MASK 0x00007C00L
+#define DOORBELL0_CTRL_ENTRY_9__DOORBELL9_FENCE_ENABLE_ENTRY_MASK 0x001F0000L
+//DOORBELL0_CTRL_ENTRY_10
+#define DOORBELL0_CTRL_ENTRY_10__BIF_DOORBELL10_RANGE_OFFSET_ENTRY__SHIFT 0x0
+#define DOORBELL0_CTRL_ENTRY_10__BIF_DOORBELL10_RANGE_SIZE_ENTRY__SHIFT 0xa
+#define DOORBELL0_CTRL_ENTRY_10__DOORBELL10_FENCE_ENABLE_ENTRY__SHIFT 0x10
+#define DOORBELL0_CTRL_ENTRY_10__BIF_DOORBELL10_RANGE_OFFSET_ENTRY_MASK 0x000003FFL
+#define DOORBELL0_CTRL_ENTRY_10__BIF_DOORBELL10_RANGE_SIZE_ENTRY_MASK 0x00007C00L
+#define DOORBELL0_CTRL_ENTRY_10__DOORBELL10_FENCE_ENABLE_ENTRY_MASK 0x001F0000L
+//DOORBELL0_CTRL_ENTRY_11
+#define DOORBELL0_CTRL_ENTRY_11__BIF_DOORBELL11_RANGE_OFFSET_ENTRY__SHIFT 0x0
+#define DOORBELL0_CTRL_ENTRY_11__BIF_DOORBELL11_RANGE_SIZE_ENTRY__SHIFT 0xa
+#define DOORBELL0_CTRL_ENTRY_11__DOORBELL11_FENCE_ENABLE_ENTRY__SHIFT 0x10
+#define DOORBELL0_CTRL_ENTRY_11__BIF_DOORBELL11_RANGE_OFFSET_ENTRY_MASK 0x000003FFL
+#define DOORBELL0_CTRL_ENTRY_11__BIF_DOORBELL11_RANGE_SIZE_ENTRY_MASK 0x00007C00L
+#define DOORBELL0_CTRL_ENTRY_11__DOORBELL11_FENCE_ENABLE_ENTRY_MASK 0x001F0000L
+//DOORBELL0_CTRL_ENTRY_12
+#define DOORBELL0_CTRL_ENTRY_12__BIF_DOORBELL12_RANGE_OFFSET_ENTRY__SHIFT 0x0
+#define DOORBELL0_CTRL_ENTRY_12__BIF_DOORBELL12_RANGE_SIZE_ENTRY__SHIFT 0xa
+#define DOORBELL0_CTRL_ENTRY_12__DOORBELL12_FENCE_ENABLE_ENTRY__SHIFT 0x10
+#define DOORBELL0_CTRL_ENTRY_12__BIF_DOORBELL12_RANGE_OFFSET_ENTRY_MASK 0x000003FFL
+#define DOORBELL0_CTRL_ENTRY_12__BIF_DOORBELL12_RANGE_SIZE_ENTRY_MASK 0x00007C00L
+#define DOORBELL0_CTRL_ENTRY_12__DOORBELL12_FENCE_ENABLE_ENTRY_MASK 0x001F0000L
+//DOORBELL0_CTRL_ENTRY_13
+#define DOORBELL0_CTRL_ENTRY_13__BIF_DOORBELL13_RANGE_OFFSET_ENTRY__SHIFT 0x0
+#define DOORBELL0_CTRL_ENTRY_13__BIF_DOORBELL13_RANGE_SIZE_ENTRY__SHIFT 0xa
+#define DOORBELL0_CTRL_ENTRY_13__DOORBELL13_FENCE_ENABLE_ENTRY__SHIFT 0x10
+#define DOORBELL0_CTRL_ENTRY_13__BIF_DOORBELL13_RANGE_OFFSET_ENTRY_MASK 0x000003FFL
+#define DOORBELL0_CTRL_ENTRY_13__BIF_DOORBELL13_RANGE_SIZE_ENTRY_MASK 0x00007C00L
+#define DOORBELL0_CTRL_ENTRY_13__DOORBELL13_FENCE_ENABLE_ENTRY_MASK 0x001F0000L
+//DOORBELL0_CTRL_ENTRY_14
+#define DOORBELL0_CTRL_ENTRY_14__BIF_DOORBELL14_RANGE_OFFSET_ENTRY__SHIFT 0x0
+#define DOORBELL0_CTRL_ENTRY_14__BIF_DOORBELL14_RANGE_SIZE_ENTRY__SHIFT 0xa
+#define DOORBELL0_CTRL_ENTRY_14__DOORBELL14_FENCE_ENABLE_ENTRY__SHIFT 0x10
+#define DOORBELL0_CTRL_ENTRY_14__BIF_DOORBELL14_RANGE_OFFSET_ENTRY_MASK 0x000003FFL
+#define DOORBELL0_CTRL_ENTRY_14__BIF_DOORBELL14_RANGE_SIZE_ENTRY_MASK 0x00007C00L
+#define DOORBELL0_CTRL_ENTRY_14__DOORBELL14_FENCE_ENABLE_ENTRY_MASK 0x001F0000L
+//DOORBELL0_CTRL_ENTRY_15
+#define DOORBELL0_CTRL_ENTRY_15__BIF_DOORBELL15_RANGE_OFFSET_ENTRY__SHIFT 0x0
+#define DOORBELL0_CTRL_ENTRY_15__BIF_DOORBELL15_RANGE_SIZE_ENTRY__SHIFT 0xa
+#define DOORBELL0_CTRL_ENTRY_15__DOORBELL15_FENCE_ENABLE_ENTRY__SHIFT 0x10
+#define DOORBELL0_CTRL_ENTRY_15__BIF_DOORBELL15_RANGE_OFFSET_ENTRY_MASK 0x000003FFL
+#define DOORBELL0_CTRL_ENTRY_15__BIF_DOORBELL15_RANGE_SIZE_ENTRY_MASK 0x00007C00L
+#define DOORBELL0_CTRL_ENTRY_15__DOORBELL15_FENCE_ENABLE_ENTRY_MASK 0x001F0000L
+//DOORBELL0_CTRL_ENTRY_16
+#define DOORBELL0_CTRL_ENTRY_16__BIF_DOORBELL16_RANGE_OFFSET_ENTRY__SHIFT 0x0
+#define DOORBELL0_CTRL_ENTRY_16__BIF_DOORBELL16_RANGE_SIZE_ENTRY__SHIFT 0xa
+#define DOORBELL0_CTRL_ENTRY_16__DOORBELL16_FENCE_ENABLE_ENTRY__SHIFT 0x10
+#define DOORBELL0_CTRL_ENTRY_16__BIF_DOORBELL16_RANGE_OFFSET_ENTRY_MASK 0x000003FFL
+#define DOORBELL0_CTRL_ENTRY_16__BIF_DOORBELL16_RANGE_SIZE_ENTRY_MASK 0x00007C00L
+#define DOORBELL0_CTRL_ENTRY_16__DOORBELL16_FENCE_ENABLE_ENTRY_MASK 0x001F0000L
+//DOORBELL0_CTRL_ENTRY_17
+#define DOORBELL0_CTRL_ENTRY_17__BIF_DOORBELL17_RANGE_OFFSET_ENTRY__SHIFT 0x0
+#define DOORBELL0_CTRL_ENTRY_17__BIF_DOORBELL17_RANGE_SIZE_ENTRY__SHIFT 0xa
+#define DOORBELL0_CTRL_ENTRY_17__DOORBELL17_FENCE_ENABLE_ENTRY__SHIFT 0x10
+#define DOORBELL0_CTRL_ENTRY_17__BIF_DOORBELL17_RANGE_OFFSET_ENTRY_MASK 0x000003FFL
+#define DOORBELL0_CTRL_ENTRY_17__BIF_DOORBELL17_RANGE_SIZE_ENTRY_MASK 0x00007C00L
+#define DOORBELL0_CTRL_ENTRY_17__DOORBELL17_FENCE_ENABLE_ENTRY_MASK 0x001F0000L
+//DOORBELL0_CTRL_ENTRY_18
+#define DOORBELL0_CTRL_ENTRY_18__BIF_DOORBELL18_RANGE_OFFSET_ENTRY__SHIFT 0x0
+#define DOORBELL0_CTRL_ENTRY_18__BIF_DOORBELL18_RANGE_SIZE_ENTRY__SHIFT 0xa
+#define DOORBELL0_CTRL_ENTRY_18__DOORBELL18_FENCE_ENABLE_ENTRY__SHIFT 0x10
+#define DOORBELL0_CTRL_ENTRY_18__BIF_DOORBELL18_RANGE_OFFSET_ENTRY_MASK 0x000003FFL
+#define DOORBELL0_CTRL_ENTRY_18__BIF_DOORBELL18_RANGE_SIZE_ENTRY_MASK 0x00007C00L
+#define DOORBELL0_CTRL_ENTRY_18__DOORBELL18_FENCE_ENABLE_ENTRY_MASK 0x001F0000L
+//DOORBELL0_CTRL_ENTRY_19
+#define DOORBELL0_CTRL_ENTRY_19__BIF_DOORBELL19_RANGE_OFFSET_ENTRY__SHIFT 0x0
+#define DOORBELL0_CTRL_ENTRY_19__BIF_DOORBELL19_RANGE_SIZE_ENTRY__SHIFT 0xa
+#define DOORBELL0_CTRL_ENTRY_19__DOORBELL19_FENCE_ENABLE_ENTRY__SHIFT 0x10
+#define DOORBELL0_CTRL_ENTRY_19__BIF_DOORBELL19_RANGE_OFFSET_ENTRY_MASK 0x000003FFL
+#define DOORBELL0_CTRL_ENTRY_19__BIF_DOORBELL19_RANGE_SIZE_ENTRY_MASK 0x00007C00L
+#define DOORBELL0_CTRL_ENTRY_19__DOORBELL19_FENCE_ENABLE_ENTRY_MASK 0x001F0000L
+//DOORBELL0_CTRL_ENTRY_20
+#define DOORBELL0_CTRL_ENTRY_20__BIF_DOORBELL20_RANGE_OFFSET_ENTRY__SHIFT 0x0
+#define DOORBELL0_CTRL_ENTRY_20__BIF_DOORBELL20_RANGE_SIZE_ENTRY__SHIFT 0xa
+#define DOORBELL0_CTRL_ENTRY_20__DOORBELL20_FENCE_ENABLE_ENTRY__SHIFT 0x10
+#define DOORBELL0_CTRL_ENTRY_20__BIF_DOORBELL20_RANGE_OFFSET_ENTRY_MASK 0x000003FFL
+#define DOORBELL0_CTRL_ENTRY_20__BIF_DOORBELL20_RANGE_SIZE_ENTRY_MASK 0x00007C00L
+#define DOORBELL0_CTRL_ENTRY_20__DOORBELL20_FENCE_ENABLE_ENTRY_MASK 0x001F0000L
+//AID0_VF0_BASE_ADDR
+#define AID0_VF0_BASE_ADDR__AID0_VF0_BASE_ADDR__SHIFT 0x0
+#define AID0_VF0_BASE_ADDR__AID0_VF0_BASE_ADDR_MASK 0x0000FFFFL
+//AID1_VF0_BASE_ADDR
+#define AID1_VF0_BASE_ADDR__AID1_VF0_BASE_ADDR__SHIFT 0x0
+#define AID1_VF0_BASE_ADDR__AID1_VF0_BASE_ADDR_MASK 0x0000FFFFL
+//AID2_VF0_BASE_ADDR
+#define AID2_VF0_BASE_ADDR__AID2_VF0_BASE_ADDR__SHIFT 0x0
+#define AID2_VF0_BASE_ADDR__AID2_VF0_BASE_ADDR_MASK 0x0000FFFFL
+//AID3_VF0_BASE_ADDR
+#define AID3_VF0_BASE_ADDR__AID3_VF0_BASE_ADDR__SHIFT 0x0
+#define AID3_VF0_BASE_ADDR__AID3_VF0_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_XCC0_VF0_BASE_ADDR
+#define AID0_XCC0_VF0_BASE_ADDR__AID0_XCC0_VF0_BASE_ADDR__SHIFT 0x0
+#define AID0_XCC0_VF0_BASE_ADDR__AID0_XCC0_VF0_BASE_ADDR_MASK 0x0001FFFFL
+//AID0_XCC1_VF0_BASE_ADDR
+#define AID0_XCC1_VF0_BASE_ADDR__AID0_XCC1_VF0_BASE_ADDR__SHIFT 0x0
+#define AID0_XCC1_VF0_BASE_ADDR__AID0_XCC1_VF0_BASE_ADDR_MASK 0x0000FFFFL
+//AID1_XCC0_VF0_BASE_ADDR
+#define AID1_XCC0_VF0_BASE_ADDR__AID1_XCC0_VF0_BASE_ADDR__SHIFT 0x0
+#define AID1_XCC0_VF0_BASE_ADDR__AID1_XCC0_VF0_BASE_ADDR_MASK 0x0000FFFFL
+//AID1_XCC1_VF0_BASE_ADDR
+#define AID1_XCC1_VF0_BASE_ADDR__AID1_XCC1_VF0_BASE_ADDR__SHIFT 0x0
+#define AID1_XCC1_VF0_BASE_ADDR__AID1_XCC1_VF0_BASE_ADDR_MASK 0x0000FFFFL
+//AID2_XCC0_VF0_BASE_ADDR
+#define AID2_XCC0_VF0_BASE_ADDR__AID2_XCC0_VF0_BASE_ADDR__SHIFT 0x0
+#define AID2_XCC0_VF0_BASE_ADDR__AID2_XCC0_VF0_BASE_ADDR_MASK 0x0000FFFFL
+//AID2_XCC1_VF0_BASE_ADDR
+#define AID2_XCC1_VF0_BASE_ADDR__AID2_XCC1_VF0_BASE_ADDR__SHIFT 0x0
+#define AID2_XCC1_VF0_BASE_ADDR__AID2_XCC1_VF0_BASE_ADDR_MASK 0x0000FFFFL
+//AID3_XCC0_VF0_BASE_ADDR
+#define AID3_XCC0_VF0_BASE_ADDR__AID3_XCC0_VF0_BASE_ADDR__SHIFT 0x0
+#define AID3_XCC0_VF0_BASE_ADDR__AID3_XCC0_VF0_BASE_ADDR_MASK 0x0000FFFFL
+//AID3_XCC1_VF0_BASE_ADDR
+#define AID3_XCC1_VF0_BASE_ADDR__AID3_XCC1_VF0_BASE_ADDR__SHIFT 0x0
+#define AID3_XCC1_VF0_BASE_ADDR__AID3_XCC1_VF0_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_NBIF_VF0_BASE_ADDR
+#define AID0_NBIF_VF0_BASE_ADDR__AID0_NBIF_VF0_BASE_ADDR__SHIFT 0x0
+#define AID0_NBIF_VF0_BASE_ADDR__AID0_NBIF_VF0_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_ATHUB_VF0_BASE_ADDR
+#define AID0_ATHUB_VF0_BASE_ADDR__AID0_ATHUB_VF0_BASE_ADDR__SHIFT 0x0
+#define AID0_ATHUB_VF0_BASE_ADDR__AID0_ATHUB_VF0_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_IH_VF0_BASE_ADDR
+#define AID0_IH_VF0_BASE_ADDR__AID0_IH_VF0_BASE_ADDR__SHIFT 0x0
+#define AID0_IH_VF0_BASE_ADDR__AID0_IH_VF0_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_HDP_VF0_BASE_ADDR
+#define AID0_HDP_VF0_BASE_ADDR__AID0_HDP_VF0_BASE_ADDR__SHIFT 0x0
+#define AID0_HDP_VF0_BASE_ADDR__AID0_HDP_VF0_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_VF1_BASE_ADDR
+#define AID0_VF1_BASE_ADDR__AID0_VF1_BASE_ADDR__SHIFT 0x0
+#define AID0_VF1_BASE_ADDR__AID0_VF1_BASE_ADDR_MASK 0x0000FFFFL
+//AID1_VF1_BASE_ADDR
+#define AID1_VF1_BASE_ADDR__AID1_VF1_BASE_ADDR__SHIFT 0x0
+#define AID1_VF1_BASE_ADDR__AID1_VF1_BASE_ADDR_MASK 0x0000FFFFL
+//AID2_VF1_BASE_ADDR
+#define AID2_VF1_BASE_ADDR__AID2_VF1_BASE_ADDR__SHIFT 0x0
+#define AID2_VF1_BASE_ADDR__AID2_VF1_BASE_ADDR_MASK 0x0000FFFFL
+//AID3_VF1_BASE_ADDR
+#define AID3_VF1_BASE_ADDR__AID3_VF1_BASE_ADDR__SHIFT 0x0
+#define AID3_VF1_BASE_ADDR__AID3_VF1_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_XCC0_VF1_BASE_ADDR
+#define AID0_XCC0_VF1_BASE_ADDR__AID0_XCC0_VF1_BASE_ADDR__SHIFT 0x0
+#define AID0_XCC0_VF1_BASE_ADDR__AID0_XCC0_VF1_BASE_ADDR_MASK 0x0001FFFFL
+//AID0_XCC1_VF1_BASE_ADDR
+#define AID0_XCC1_VF1_BASE_ADDR__AID0_XCC1_VF1_BASE_ADDR__SHIFT 0x0
+#define AID0_XCC1_VF1_BASE_ADDR__AID0_XCC1_VF1_BASE_ADDR_MASK 0x0000FFFFL
+//AID1_XCC0_VF1_BASE_ADDR
+#define AID1_XCC0_VF1_BASE_ADDR__AID1_XCC0_VF1_BASE_ADDR__SHIFT 0x0
+#define AID1_XCC0_VF1_BASE_ADDR__AID1_XCC0_VF1_BASE_ADDR_MASK 0x0000FFFFL
+//AID1_XCC1_VF1_BASE_ADDR
+#define AID1_XCC1_VF1_BASE_ADDR__AID1_XCC1_VF1_BASE_ADDR__SHIFT 0x0
+#define AID1_XCC1_VF1_BASE_ADDR__AID1_XCC1_VF1_BASE_ADDR_MASK 0x0000FFFFL
+//AID2_XCC0_VF1_BASE_ADDR
+#define AID2_XCC0_VF1_BASE_ADDR__AID2_XCC0_VF1_BASE_ADDR__SHIFT 0x0
+#define AID2_XCC0_VF1_BASE_ADDR__AID2_XCC0_VF1_BASE_ADDR_MASK 0x0000FFFFL
+//AID2_XCC1_VF1_BASE_ADDR
+#define AID2_XCC1_VF1_BASE_ADDR__AID2_XCC1_VF1_BASE_ADDR__SHIFT 0x0
+#define AID2_XCC1_VF1_BASE_ADDR__AID2_XCC1_VF1_BASE_ADDR_MASK 0x0000FFFFL
+//AID3_XCC0_VF1_BASE_ADDR
+#define AID3_XCC0_VF1_BASE_ADDR__AID3_XCC0_VF1_BASE_ADDR__SHIFT 0x0
+#define AID3_XCC0_VF1_BASE_ADDR__AID3_XCC0_VF1_BASE_ADDR_MASK 0x0000FFFFL
+//AID3_XCC1_VF1_BASE_ADDR
+#define AID3_XCC1_VF1_BASE_ADDR__AID3_XCC1_VF1_BASE_ADDR__SHIFT 0x0
+#define AID3_XCC1_VF1_BASE_ADDR__AID3_XCC1_VF1_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_NBIF_VF1_BASE_ADDR
+#define AID0_NBIF_VF1_BASE_ADDR__AID0_NBIF_VF1_BASE_ADDR__SHIFT 0x0
+#define AID0_NBIF_VF1_BASE_ADDR__AID0_NBIF_VF1_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_ATHUB_VF1_BASE_ADDR
+#define AID0_ATHUB_VF1_BASE_ADDR__AID0_ATHUB_VF1_BASE_ADDR__SHIFT 0x0
+#define AID0_ATHUB_VF1_BASE_ADDR__AID0_ATHUB_VF1_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_IH_VF1_BASE_ADDR
+#define AID0_IH_VF1_BASE_ADDR__AID0_IH_VF1_BASE_ADDR__SHIFT 0x0
+#define AID0_IH_VF1_BASE_ADDR__AID0_IH_VF1_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_HDP_VF1_BASE_ADDR
+#define AID0_HDP_VF1_BASE_ADDR__AID0_HDP_VF1_BASE_ADDR__SHIFT 0x0
+#define AID0_HDP_VF1_BASE_ADDR__AID0_HDP_VF1_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_VF2_BASE_ADDR
+#define AID0_VF2_BASE_ADDR__AID0_VF2_BASE_ADDR__SHIFT 0x0
+#define AID0_VF2_BASE_ADDR__AID0_VF2_BASE_ADDR_MASK 0x0000FFFFL
+//AID1_VF2_BASE_ADDR
+#define AID1_VF2_BASE_ADDR__AID1_VF2_BASE_ADDR__SHIFT 0x0
+#define AID1_VF2_BASE_ADDR__AID1_VF2_BASE_ADDR_MASK 0x0000FFFFL
+//AID2_VF2_BASE_ADDR
+#define AID2_VF2_BASE_ADDR__AID2_VF2_BASE_ADDR__SHIFT 0x0
+#define AID2_VF2_BASE_ADDR__AID2_VF2_BASE_ADDR_MASK 0x0000FFFFL
+//AID3_VF2_BASE_ADDR
+#define AID3_VF2_BASE_ADDR__AID3_VF2_BASE_ADDR__SHIFT 0x0
+#define AID3_VF2_BASE_ADDR__AID3_VF2_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_XCC0_VF2_BASE_ADDR
+#define AID0_XCC0_VF2_BASE_ADDR__AID0_XCC0_VF2_BASE_ADDR__SHIFT 0x0
+#define AID0_XCC0_VF2_BASE_ADDR__AID0_XCC0_VF2_BASE_ADDR_MASK 0x0001FFFFL
+//AID0_XCC1_VF2_BASE_ADDR
+#define AID0_XCC1_VF2_BASE_ADDR__AID0_XCC1_VF2_BASE_ADDR__SHIFT 0x0
+#define AID0_XCC1_VF2_BASE_ADDR__AID0_XCC1_VF2_BASE_ADDR_MASK 0x0000FFFFL
+//AID1_XCC0_VF2_BASE_ADDR
+#define AID1_XCC0_VF2_BASE_ADDR__AID1_XCC0_VF2_BASE_ADDR__SHIFT 0x0
+#define AID1_XCC0_VF2_BASE_ADDR__AID1_XCC0_VF2_BASE_ADDR_MASK 0x0000FFFFL
+//AID1_XCC1_VF2_BASE_ADDR
+#define AID1_XCC1_VF2_BASE_ADDR__AID1_XCC1_VF2_BASE_ADDR__SHIFT 0x0
+#define AID1_XCC1_VF2_BASE_ADDR__AID1_XCC1_VF2_BASE_ADDR_MASK 0x0000FFFFL
+//AID2_XCC0_VF2_BASE_ADDR
+#define AID2_XCC0_VF2_BASE_ADDR__AID2_XCC0_VF2_BASE_ADDR__SHIFT 0x0
+#define AID2_XCC0_VF2_BASE_ADDR__AID2_XCC0_VF2_BASE_ADDR_MASK 0x0000FFFFL
+//AID2_XCC1_VF2_BASE_ADDR
+#define AID2_XCC1_VF2_BASE_ADDR__AID2_XCC1_VF2_BASE_ADDR__SHIFT 0x0
+#define AID2_XCC1_VF2_BASE_ADDR__AID2_XCC1_VF2_BASE_ADDR_MASK 0x0000FFFFL
+//AID3_XCC0_VF2_BASE_ADDR
+#define AID3_XCC0_VF2_BASE_ADDR__AID3_XCC0_VF2_BASE_ADDR__SHIFT 0x0
+#define AID3_XCC0_VF2_BASE_ADDR__AID3_XCC0_VF2_BASE_ADDR_MASK 0x0000FFFFL
+//AID3_XCC1_VF2_BASE_ADDR
+#define AID3_XCC1_VF2_BASE_ADDR__AID3_XCC1_VF2_BASE_ADDR__SHIFT 0x0
+#define AID3_XCC1_VF2_BASE_ADDR__AID3_XCC1_VF2_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_NBIF_VF2_BASE_ADDR
+#define AID0_NBIF_VF2_BASE_ADDR__AID0_NBIF_VF2_BASE_ADDR__SHIFT 0x0
+#define AID0_NBIF_VF2_BASE_ADDR__AID0_NBIF_VF2_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_ATHUB_VF2_BASE_ADDR
+#define AID0_ATHUB_VF2_BASE_ADDR__AID0_ATHUB_VF2_BASE_ADDR__SHIFT 0x0
+#define AID0_ATHUB_VF2_BASE_ADDR__AID0_ATHUB_VF2_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_IH_VF2_BASE_ADDR
+#define AID0_IH_VF2_BASE_ADDR__AID0_IH_VF2_BASE_ADDR__SHIFT 0x0
+#define AID0_IH_VF2_BASE_ADDR__AID0_IH_VF2_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_HDP_VF2_BASE_ADDR
+#define AID0_HDP_VF2_BASE_ADDR__AID0_HDP_VF2_BASE_ADDR__SHIFT 0x0
+#define AID0_HDP_VF2_BASE_ADDR__AID0_HDP_VF2_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_VF3_BASE_ADDR
+#define AID0_VF3_BASE_ADDR__AID0_VF3_BASE_ADDR__SHIFT 0x0
+#define AID0_VF3_BASE_ADDR__AID0_VF3_BASE_ADDR_MASK 0x0000FFFFL
+//AID1_VF3_BASE_ADDR
+#define AID1_VF3_BASE_ADDR__AID1_VF3_BASE_ADDR__SHIFT 0x0
+#define AID1_VF3_BASE_ADDR__AID1_VF3_BASE_ADDR_MASK 0x0000FFFFL
+//AID2_VF3_BASE_ADDR
+#define AID2_VF3_BASE_ADDR__AID2_VF3_BASE_ADDR__SHIFT 0x0
+#define AID2_VF3_BASE_ADDR__AID2_VF3_BASE_ADDR_MASK 0x0000FFFFL
+//AID3_VF3_BASE_ADDR
+#define AID3_VF3_BASE_ADDR__AID3_VF3_BASE_ADDR__SHIFT 0x0
+#define AID3_VF3_BASE_ADDR__AID3_VF3_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_XCC0_VF3_BASE_ADDR
+#define AID0_XCC0_VF3_BASE_ADDR__AID0_XCC0_VF3_BASE_ADDR__SHIFT 0x0
+#define AID0_XCC0_VF3_BASE_ADDR__AID0_XCC0_VF3_BASE_ADDR_MASK 0x0001FFFFL
+//AID0_XCC1_VF3_BASE_ADDR
+#define AID0_XCC1_VF3_BASE_ADDR__AID0_XCC1_VF3_BASE_ADDR__SHIFT 0x0
+#define AID0_XCC1_VF3_BASE_ADDR__AID0_XCC1_VF3_BASE_ADDR_MASK 0x0000FFFFL
+//AID1_XCC0_VF3_BASE_ADDR
+#define AID1_XCC0_VF3_BASE_ADDR__AID1_XCC0_VF3_BASE_ADDR__SHIFT 0x0
+#define AID1_XCC0_VF3_BASE_ADDR__AID1_XCC0_VF3_BASE_ADDR_MASK 0x0000FFFFL
+//AID1_XCC1_VF3_BASE_ADDR
+#define AID1_XCC1_VF3_BASE_ADDR__AID1_XCC1_VF3_BASE_ADDR__SHIFT 0x0
+#define AID1_XCC1_VF3_BASE_ADDR__AID1_XCC1_VF3_BASE_ADDR_MASK 0x0000FFFFL
+//AID2_XCC0_VF3_BASE_ADDR
+#define AID2_XCC0_VF3_BASE_ADDR__AID2_XCC0_VF3_BASE_ADDR__SHIFT 0x0
+#define AID2_XCC0_VF3_BASE_ADDR__AID2_XCC0_VF3_BASE_ADDR_MASK 0x0000FFFFL
+//AID2_XCC1_VF3_BASE_ADDR
+#define AID2_XCC1_VF3_BASE_ADDR__AID2_XCC1_VF3_BASE_ADDR__SHIFT 0x0
+#define AID2_XCC1_VF3_BASE_ADDR__AID2_XCC1_VF3_BASE_ADDR_MASK 0x0000FFFFL
+//AID3_XCC0_VF3_BASE_ADDR
+#define AID3_XCC0_VF3_BASE_ADDR__AID3_XCC0_VF3_BASE_ADDR__SHIFT 0x0
+#define AID3_XCC0_VF3_BASE_ADDR__AID3_XCC0_VF3_BASE_ADDR_MASK 0x0000FFFFL
+//AID3_XCC1_VF3_BASE_ADDR
+#define AID3_XCC1_VF3_BASE_ADDR__AID3_XCC1_VF3_BASE_ADDR__SHIFT 0x0
+#define AID3_XCC1_VF3_BASE_ADDR__AID3_XCC1_VF3_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_NBIF_VF3_BASE_ADDR
+#define AID0_NBIF_VF3_BASE_ADDR__AID0_NBIF_VF3_BASE_ADDR__SHIFT 0x0
+#define AID0_NBIF_VF3_BASE_ADDR__AID0_NBIF_VF3_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_ATHUB_VF3_BASE_ADDR
+#define AID0_ATHUB_VF3_BASE_ADDR__AID0_ATHUB_VF3_BASE_ADDR__SHIFT 0x0
+#define AID0_ATHUB_VF3_BASE_ADDR__AID0_ATHUB_VF3_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_IH_VF3_BASE_ADDR
+#define AID0_IH_VF3_BASE_ADDR__AID0_IH_VF3_BASE_ADDR__SHIFT 0x0
+#define AID0_IH_VF3_BASE_ADDR__AID0_IH_VF3_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_HDP_VF3_BASE_ADDR
+#define AID0_HDP_VF3_BASE_ADDR__AID0_HDP_VF3_BASE_ADDR__SHIFT 0x0
+#define AID0_HDP_VF3_BASE_ADDR__AID0_HDP_VF3_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_VF4_BASE_ADDR
+#define AID0_VF4_BASE_ADDR__AID0_VF4_BASE_ADDR__SHIFT 0x0
+#define AID0_VF4_BASE_ADDR__AID0_VF4_BASE_ADDR_MASK 0x0000FFFFL
+//AID1_VF4_BASE_ADDR
+#define AID1_VF4_BASE_ADDR__AID1_VF4_BASE_ADDR__SHIFT 0x0
+#define AID1_VF4_BASE_ADDR__AID1_VF4_BASE_ADDR_MASK 0x0000FFFFL
+//AID2_VF4_BASE_ADDR
+#define AID2_VF4_BASE_ADDR__AID2_VF4_BASE_ADDR__SHIFT 0x0
+#define AID2_VF4_BASE_ADDR__AID2_VF4_BASE_ADDR_MASK 0x0000FFFFL
+//AID3_VF4_BASE_ADDR
+#define AID3_VF4_BASE_ADDR__AID3_VF4_BASE_ADDR__SHIFT 0x0
+#define AID3_VF4_BASE_ADDR__AID3_VF4_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_XCC0_VF4_BASE_ADDR
+#define AID0_XCC0_VF4_BASE_ADDR__AID0_XCC0_VF4_BASE_ADDR__SHIFT 0x0
+#define AID0_XCC0_VF4_BASE_ADDR__AID0_XCC0_VF4_BASE_ADDR_MASK 0x0001FFFFL
+//AID0_XCC1_VF4_BASE_ADDR
+#define AID0_XCC1_VF4_BASE_ADDR__AID0_XCC1_VF4_BASE_ADDR__SHIFT 0x0
+#define AID0_XCC1_VF4_BASE_ADDR__AID0_XCC1_VF4_BASE_ADDR_MASK 0x0000FFFFL
+//AID1_XCC0_VF4_BASE_ADDR
+#define AID1_XCC0_VF4_BASE_ADDR__AID1_XCC0_VF4_BASE_ADDR__SHIFT 0x0
+#define AID1_XCC0_VF4_BASE_ADDR__AID1_XCC0_VF4_BASE_ADDR_MASK 0x0000FFFFL
+//AID1_XCC1_VF4_BASE_ADDR
+#define AID1_XCC1_VF4_BASE_ADDR__AID1_XCC1_VF4_BASE_ADDR__SHIFT 0x0
+#define AID1_XCC1_VF4_BASE_ADDR__AID1_XCC1_VF4_BASE_ADDR_MASK 0x0000FFFFL
+//AID2_XCC0_VF4_BASE_ADDR
+#define AID2_XCC0_VF4_BASE_ADDR__AID2_XCC0_VF4_BASE_ADDR__SHIFT 0x0
+#define AID2_XCC0_VF4_BASE_ADDR__AID2_XCC0_VF4_BASE_ADDR_MASK 0x0000FFFFL
+//AID2_XCC1_VF4_BASE_ADDR
+#define AID2_XCC1_VF4_BASE_ADDR__AID2_XCC1_VF4_BASE_ADDR__SHIFT 0x0
+#define AID2_XCC1_VF4_BASE_ADDR__AID2_XCC1_VF4_BASE_ADDR_MASK 0x0000FFFFL
+//AID3_XCC0_VF4_BASE_ADDR
+#define AID3_XCC0_VF4_BASE_ADDR__AID3_XCC0_VF4_BASE_ADDR__SHIFT 0x0
+#define AID3_XCC0_VF4_BASE_ADDR__AID3_XCC0_VF4_BASE_ADDR_MASK 0x0000FFFFL
+//AID3_XCC1_VF4_BASE_ADDR
+#define AID3_XCC1_VF4_BASE_ADDR__AID3_XCC1_VF4_BASE_ADDR__SHIFT 0x0
+#define AID3_XCC1_VF4_BASE_ADDR__AID3_XCC1_VF4_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_NBIF_VF4_BASE_ADDR
+#define AID0_NBIF_VF4_BASE_ADDR__AID0_NBIF_VF4_BASE_ADDR__SHIFT 0x0
+#define AID0_NBIF_VF4_BASE_ADDR__AID0_NBIF_VF4_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_ATHUB_VF4_BASE_ADDR
+#define AID0_ATHUB_VF4_BASE_ADDR__AID0_ATHUB_VF4_BASE_ADDR__SHIFT 0x0
+#define AID0_ATHUB_VF4_BASE_ADDR__AID0_ATHUB_VF4_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_IH_VF4_BASE_ADDR
+#define AID0_IH_VF4_BASE_ADDR__AID0_IH_VF4_BASE_ADDR__SHIFT 0x0
+#define AID0_IH_VF4_BASE_ADDR__AID0_IH_VF4_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_HDP_VF4_BASE_ADDR
+#define AID0_HDP_VF4_BASE_ADDR__AID0_HDP_VF4_BASE_ADDR__SHIFT 0x0
+#define AID0_HDP_VF4_BASE_ADDR__AID0_HDP_VF4_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_VF5_BASE_ADDR
+#define AID0_VF5_BASE_ADDR__AID0_VF5_BASE_ADDR__SHIFT 0x0
+#define AID0_VF5_BASE_ADDR__AID0_VF5_BASE_ADDR_MASK 0x0000FFFFL
+//AID1_VF5_BASE_ADDR
+#define AID1_VF5_BASE_ADDR__AID1_VF5_BASE_ADDR__SHIFT 0x0
+#define AID1_VF5_BASE_ADDR__AID1_VF5_BASE_ADDR_MASK 0x0000FFFFL
+//AID2_VF5_BASE_ADDR
+#define AID2_VF5_BASE_ADDR__AID2_VF5_BASE_ADDR__SHIFT 0x0
+#define AID2_VF5_BASE_ADDR__AID2_VF5_BASE_ADDR_MASK 0x0000FFFFL
+//AID3_VF5_BASE_ADDR
+#define AID3_VF5_BASE_ADDR__AID3_VF5_BASE_ADDR__SHIFT 0x0
+#define AID3_VF5_BASE_ADDR__AID3_VF5_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_XCC0_VF5_BASE_ADDR
+#define AID0_XCC0_VF5_BASE_ADDR__AID0_XCC0_VF5_BASE_ADDR__SHIFT 0x0
+#define AID0_XCC0_VF5_BASE_ADDR__AID0_XCC0_VF5_BASE_ADDR_MASK 0x0001FFFFL
+//AID0_XCC1_VF5_BASE_ADDR
+#define AID0_XCC1_VF5_BASE_ADDR__AID0_XCC1_VF5_BASE_ADDR__SHIFT 0x0
+#define AID0_XCC1_VF5_BASE_ADDR__AID0_XCC1_VF5_BASE_ADDR_MASK 0x0000FFFFL
+//AID1_XCC0_VF5_BASE_ADDR
+#define AID1_XCC0_VF5_BASE_ADDR__AID1_XCC0_VF5_BASE_ADDR__SHIFT 0x0
+#define AID1_XCC0_VF5_BASE_ADDR__AID1_XCC0_VF5_BASE_ADDR_MASK 0x0000FFFFL
+//AID1_XCC1_VF5_BASE_ADDR
+#define AID1_XCC1_VF5_BASE_ADDR__AID1_XCC1_VF5_BASE_ADDR__SHIFT 0x0
+#define AID1_XCC1_VF5_BASE_ADDR__AID1_XCC1_VF5_BASE_ADDR_MASK 0x0000FFFFL
+//AID2_XCC0_VF5_BASE_ADDR
+#define AID2_XCC0_VF5_BASE_ADDR__AID2_XCC0_VF5_BASE_ADDR__SHIFT 0x0
+#define AID2_XCC0_VF5_BASE_ADDR__AID2_XCC0_VF5_BASE_ADDR_MASK 0x0000FFFFL
+//AID2_XCC1_VF5_BASE_ADDR
+#define AID2_XCC1_VF5_BASE_ADDR__AID2_XCC1_VF5_BASE_ADDR__SHIFT 0x0
+#define AID2_XCC1_VF5_BASE_ADDR__AID2_XCC1_VF5_BASE_ADDR_MASK 0x0000FFFFL
+//AID3_XCC0_VF5_BASE_ADDR
+#define AID3_XCC0_VF5_BASE_ADDR__AID3_XCC0_VF5_BASE_ADDR__SHIFT 0x0
+#define AID3_XCC0_VF5_BASE_ADDR__AID3_XCC0_VF5_BASE_ADDR_MASK 0x0000FFFFL
+//AID3_XCC1_VF5_BASE_ADDR
+#define AID3_XCC1_VF5_BASE_ADDR__AID3_XCC1_VF5_BASE_ADDR__SHIFT 0x0
+#define AID3_XCC1_VF5_BASE_ADDR__AID3_XCC1_VF5_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_NBIF_VF5_BASE_ADDR
+#define AID0_NBIF_VF5_BASE_ADDR__AID0_NBIF_VF5_BASE_ADDR__SHIFT 0x0
+#define AID0_NBIF_VF5_BASE_ADDR__AID0_NBIF_VF5_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_ATHUB_VF5_BASE_ADDR
+#define AID0_ATHUB_VF5_BASE_ADDR__AID0_ATHUB_VF5_BASE_ADDR__SHIFT 0x0
+#define AID0_ATHUB_VF5_BASE_ADDR__AID0_ATHUB_VF5_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_IH_VF5_BASE_ADDR
+#define AID0_IH_VF5_BASE_ADDR__AID0_IH_VF5_BASE_ADDR__SHIFT 0x0
+#define AID0_IH_VF5_BASE_ADDR__AID0_IH_VF5_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_HDP_VF5_BASE_ADDR
+#define AID0_HDP_VF5_BASE_ADDR__AID0_HDP_VF5_BASE_ADDR__SHIFT 0x0
+#define AID0_HDP_VF5_BASE_ADDR__AID0_HDP_VF5_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_VF6_BASE_ADDR
+#define AID0_VF6_BASE_ADDR__AID0_VF6_BASE_ADDR__SHIFT 0x0
+#define AID0_VF6_BASE_ADDR__AID0_VF6_BASE_ADDR_MASK 0x0000FFFFL
+//AID1_VF6_BASE_ADDR
+#define AID1_VF6_BASE_ADDR__AID1_VF6_BASE_ADDR__SHIFT 0x0
+#define AID1_VF6_BASE_ADDR__AID1_VF6_BASE_ADDR_MASK 0x0000FFFFL
+//AID2_VF6_BASE_ADDR
+#define AID2_VF6_BASE_ADDR__AID2_VF6_BASE_ADDR__SHIFT 0x0
+#define AID2_VF6_BASE_ADDR__AID2_VF6_BASE_ADDR_MASK 0x0000FFFFL
+//AID3_VF6_BASE_ADDR
+#define AID3_VF6_BASE_ADDR__AID3_VF6_BASE_ADDR__SHIFT 0x0
+#define AID3_VF6_BASE_ADDR__AID3_VF6_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_XCC0_VF6_BASE_ADDR
+#define AID0_XCC0_VF6_BASE_ADDR__AID0_XCC0_VF6_BASE_ADDR__SHIFT 0x0
+#define AID0_XCC0_VF6_BASE_ADDR__AID0_XCC0_VF6_BASE_ADDR_MASK 0x0001FFFFL
+//AID0_XCC1_VF6_BASE_ADDR
+#define AID0_XCC1_VF6_BASE_ADDR__AID0_XCC1_VF6_BASE_ADDR__SHIFT 0x0
+#define AID0_XCC1_VF6_BASE_ADDR__AID0_XCC1_VF6_BASE_ADDR_MASK 0x0000FFFFL
+//AID1_XCC0_VF6_BASE_ADDR
+#define AID1_XCC0_VF6_BASE_ADDR__AID1_XCC0_VF6_BASE_ADDR__SHIFT 0x0
+#define AID1_XCC0_VF6_BASE_ADDR__AID1_XCC0_VF6_BASE_ADDR_MASK 0x0000FFFFL
+//AID1_XCC1_VF6_BASE_ADDR
+#define AID1_XCC1_VF6_BASE_ADDR__AID1_XCC1_VF6_BASE_ADDR__SHIFT 0x0
+#define AID1_XCC1_VF6_BASE_ADDR__AID1_XCC1_VF6_BASE_ADDR_MASK 0x0000FFFFL
+//AID2_XCC0_VF6_BASE_ADDR
+#define AID2_XCC0_VF6_BASE_ADDR__AID2_XCC0_VF6_BASE_ADDR__SHIFT 0x0
+#define AID2_XCC0_VF6_BASE_ADDR__AID2_XCC0_VF6_BASE_ADDR_MASK 0x0000FFFFL
+//AID2_XCC1_VF6_BASE_ADDR
+#define AID2_XCC1_VF6_BASE_ADDR__AID2_XCC1_VF6_BASE_ADDR__SHIFT 0x0
+#define AID2_XCC1_VF6_BASE_ADDR__AID2_XCC1_VF6_BASE_ADDR_MASK 0x0000FFFFL
+//AID3_XCC0_VF6_BASE_ADDR
+#define AID3_XCC0_VF6_BASE_ADDR__AID3_XCC0_VF6_BASE_ADDR__SHIFT 0x0
+#define AID3_XCC0_VF6_BASE_ADDR__AID3_XCC0_VF6_BASE_ADDR_MASK 0x0000FFFFL
+//AID3_XCC1_VF6_BASE_ADDR
+#define AID3_XCC1_VF6_BASE_ADDR__AID3_XCC1_VF6_BASE_ADDR__SHIFT 0x0
+#define AID3_XCC1_VF6_BASE_ADDR__AID3_XCC1_VF6_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_NBIF_VF6_BASE_ADDR
+#define AID0_NBIF_VF6_BASE_ADDR__AID0_NBIF_VF6_BASE_ADDR__SHIFT 0x0
+#define AID0_NBIF_VF6_BASE_ADDR__AID0_NBIF_VF6_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_ATHUB_VF6_BASE_ADDR
+#define AID0_ATHUB_VF6_BASE_ADDR__AID0_ATHUB_VF6_BASE_ADDR__SHIFT 0x0
+#define AID0_ATHUB_VF6_BASE_ADDR__AID0_ATHUB_VF6_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_IH_VF6_BASE_ADDR
+#define AID0_IH_VF6_BASE_ADDR__AID0_IH_VF6_BASE_ADDR__SHIFT 0x0
+#define AID0_IH_VF6_BASE_ADDR__AID0_IH_VF6_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_HDP_VF6_BASE_ADDR
+#define AID0_HDP_VF6_BASE_ADDR__AID0_HDP_VF6_BASE_ADDR__SHIFT 0x0
+#define AID0_HDP_VF6_BASE_ADDR__AID0_HDP_VF6_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_VF7_BASE_ADDR
+#define AID0_VF7_BASE_ADDR__AID0_VF7_BASE_ADDR__SHIFT 0x0
+#define AID0_VF7_BASE_ADDR__AID0_VF7_BASE_ADDR_MASK 0x0000FFFFL
+//AID1_VF7_BASE_ADDR
+#define AID1_VF7_BASE_ADDR__AID1_VF7_BASE_ADDR__SHIFT 0x0
+#define AID1_VF7_BASE_ADDR__AID1_VF7_BASE_ADDR_MASK 0x0000FFFFL
+//AID2_VF7_BASE_ADDR
+#define AID2_VF7_BASE_ADDR__AID2_VF7_BASE_ADDR__SHIFT 0x0
+#define AID2_VF7_BASE_ADDR__AID2_VF7_BASE_ADDR_MASK 0x0000FFFFL
+//AID3_VF7_BASE_ADDR
+#define AID3_VF7_BASE_ADDR__AID3_VF7_BASE_ADDR__SHIFT 0x0
+#define AID3_VF7_BASE_ADDR__AID3_VF7_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_XCC0_VF7_BASE_ADDR
+#define AID0_XCC0_VF7_BASE_ADDR__AID0_XCC0_VF7_BASE_ADDR__SHIFT 0x0
+#define AID0_XCC0_VF7_BASE_ADDR__AID0_XCC0_VF7_BASE_ADDR_MASK 0x0001FFFFL
+//AID0_XCC1_VF7_BASE_ADDR
+#define AID0_XCC1_VF7_BASE_ADDR__AID0_XCC1_VF7_BASE_ADDR__SHIFT 0x0
+#define AID0_XCC1_VF7_BASE_ADDR__AID0_XCC1_VF7_BASE_ADDR_MASK 0x0000FFFFL
+//AID1_XCC0_VF7_BASE_ADDR
+#define AID1_XCC0_VF7_BASE_ADDR__AID1_XCC0_VF7_BASE_ADDR__SHIFT 0x0
+#define AID1_XCC0_VF7_BASE_ADDR__AID1_XCC0_VF7_BASE_ADDR_MASK 0x0000FFFFL
+//AID1_XCC1_VF7_BASE_ADDR
+#define AID1_XCC1_VF7_BASE_ADDR__AID1_XCC1_VF7_BASE_ADDR__SHIFT 0x0
+#define AID1_XCC1_VF7_BASE_ADDR__AID1_XCC1_VF7_BASE_ADDR_MASK 0x0000FFFFL
+//AID2_XCC0_VF7_BASE_ADDR
+#define AID2_XCC0_VF7_BASE_ADDR__AID2_XCC0_VF7_BASE_ADDR__SHIFT 0x0
+#define AID2_XCC0_VF7_BASE_ADDR__AID2_XCC0_VF7_BASE_ADDR_MASK 0x0000FFFFL
+//AID2_XCC1_VF7_BASE_ADDR
+#define AID2_XCC1_VF7_BASE_ADDR__AID2_XCC1_VF7_BASE_ADDR__SHIFT 0x0
+#define AID2_XCC1_VF7_BASE_ADDR__AID2_XCC1_VF7_BASE_ADDR_MASK 0x0000FFFFL
+//AID3_XCC0_VF7_BASE_ADDR
+#define AID3_XCC0_VF7_BASE_ADDR__AID3_XCC0_VF7_BASE_ADDR__SHIFT 0x0
+#define AID3_XCC0_VF7_BASE_ADDR__AID3_XCC0_VF7_BASE_ADDR_MASK 0x0000FFFFL
+//AID3_XCC1_VF7_BASE_ADDR
+#define AID3_XCC1_VF7_BASE_ADDR__AID3_XCC1_VF7_BASE_ADDR__SHIFT 0x0
+#define AID3_XCC1_VF7_BASE_ADDR__AID3_XCC1_VF7_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_NBIF_VF7_BASE_ADDR
+#define AID0_NBIF_VF7_BASE_ADDR__AID0_NBIF_VF7_BASE_ADDR__SHIFT 0x0
+#define AID0_NBIF_VF7_BASE_ADDR__AID0_NBIF_VF7_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_ATHUB_VF7_BASE_ADDR
+#define AID0_ATHUB_VF7_BASE_ADDR__AID0_ATHUB_VF7_BASE_ADDR__SHIFT 0x0
+#define AID0_ATHUB_VF7_BASE_ADDR__AID0_ATHUB_VF7_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_IH_VF7_BASE_ADDR
+#define AID0_IH_VF7_BASE_ADDR__AID0_IH_VF7_BASE_ADDR__SHIFT 0x0
+#define AID0_IH_VF7_BASE_ADDR__AID0_IH_VF7_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_HDP_VF7_BASE_ADDR
+#define AID0_HDP_VF7_BASE_ADDR__AID0_HDP_VF7_BASE_ADDR__SHIFT 0x0
+#define AID0_HDP_VF7_BASE_ADDR__AID0_HDP_VF7_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_PF_BASE_ADDR
+#define AID0_PF_BASE_ADDR__AID0_PF_BASE_ADDR__SHIFT 0x0
+#define AID0_PF_BASE_ADDR__AID0_PF_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_XCC0_PF_BASE_ADDR
+#define AID0_XCC0_PF_BASE_ADDR__AID0_XCC0_PF_BASE_ADDR__SHIFT 0x0
+#define AID0_XCC0_PF_BASE_ADDR__AID0_XCC0_PF_BASE_ADDR_MASK 0x0000FFFFL
+//AID0_XCC1_PF_BASE_ADDR
+#define AID0_XCC1_PF_BASE_ADDR__AID0_XCC1_PF_BASE_ADDR__SHIFT 0x0
+#define AID0_XCC1_PF_BASE_ADDR__AID0_XCC1_PF_BASE_ADDR_MASK 0x0000FFFFL
+//AID1_PF_BASE_ADDR
+#define AID1_PF_BASE_ADDR__AID1_PF_BASE_ADDR__SHIFT 0x0
+#define AID1_PF_BASE_ADDR__AID1_PF_BASE_ADDR_MASK 0x0000FFFFL
+//AID1_XCC0_PF_BASE_ADDR
+#define AID1_XCC0_PF_BASE_ADDR__AID1_XCC0_PF_BASE_ADDR__SHIFT 0x0
+#define AID1_XCC0_PF_BASE_ADDR__AID1_XCC0_PF_BASE_ADDR_MASK 0x0000FFFFL
+//AID1_XCC1_PF_BASE_ADDR
+#define AID1_XCC1_PF_BASE_ADDR__AID1_XCC1_PF_BASE_ADDR__SHIFT 0x0
+#define AID1_XCC1_PF_BASE_ADDR__AID1_XCC1_PF_BASE_ADDR_MASK 0x0000FFFFL
+//AID2_PF_BASE_ADDR
+#define AID2_PF_BASE_ADDR__AID2_PF_BASE_ADDR__SHIFT 0x0
+#define AID2_PF_BASE_ADDR__AID2_PF_BASE_ADDR_MASK 0x0000FFFFL
+//AID2_XCC0_PF_BASE_ADDR
+#define AID2_XCC0_PF_BASE_ADDR__AID2_XCC0_PF_BASE_ADDR__SHIFT 0x0
+#define AID2_XCC0_PF_BASE_ADDR__AID2_XCC0_PF_BASE_ADDR_MASK 0x0000FFFFL
+//AID2_XCC1_PF_BASE_ADDR
+#define AID2_XCC1_PF_BASE_ADDR__AID2_XCC1_PF_BASE_ADDR__SHIFT 0x0
+#define AID2_XCC1_PF_BASE_ADDR__AID2_XCC1_PF_BASE_ADDR_MASK 0x0000FFFFL
+//AID3_PF_BASE_ADDR
+#define AID3_PF_BASE_ADDR__AID3_PF_BASE_ADDR__SHIFT 0x0
+#define AID3_PF_BASE_ADDR__AID3_PF_BASE_ADDR_MASK 0x0000FFFFL
+//AID3_XCC0_PF_BASE_ADDR
+#define AID3_XCC0_PF_BASE_ADDR__AID3_XCC0_PF_BASE_ADDR__SHIFT 0x0
+#define AID3_XCC0_PF_BASE_ADDR__AID3_XCC0_PF_BASE_ADDR_MASK 0x0000FFFFL
+//AID3_XCC1_PF_BASE_ADDR
+#define AID3_XCC1_PF_BASE_ADDR__AID3_XCC1_PF_BASE_ADDR__SHIFT 0x0
+#define AID3_XCC1_PF_BASE_ADDR__AID3_XCC1_PF_BASE_ADDR_MASK 0x0000FFFFL
+//NBIF_RRMT_CNTL
+#define NBIF_RRMT_CNTL__PARTITION_MODE__SHIFT 0x0
+#define NBIF_RRMT_CNTL__AID_DIE_ID__SHIFT 0x4
+#define NBIF_RRMT_CNTL__RRMT_ENABLE__SHIFT 0x8
+#define NBIF_RRMT_CNTL__RRMT_Invalid_Address_H__SHIFT 0x18
+#define NBIF_RRMT_CNTL__PARTITION_MODE_MASK 0x00000007L
+#define NBIF_RRMT_CNTL__AID_DIE_ID_MASK 0x00000030L
+#define NBIF_RRMT_CNTL__RRMT_ENABLE_MASK 0x00000100L
+#define NBIF_RRMT_CNTL__RRMT_Invalid_Address_H_MASK 0xFF000000L
+//BIFC_DOORBELL_ACCESS_EN_PF
+#define BIFC_DOORBELL_ACCESS_EN_PF__BIFC_DOORBELL_ACCESS_EN_PF__SHIFT 0x0
+#define BIFC_DOORBELL_ACCESS_EN_PF__BIFC_DOORBELL_ACCESS_EN_PF_MASK 0x000FFFFFL
+//BIFC_DOORBELL_ACCESS_EN_VF0
+#define BIFC_DOORBELL_ACCESS_EN_VF0__BIFC_DOORBELL_ACCESS_EN_VF0__SHIFT 0x0
+#define BIFC_DOORBELL_ACCESS_EN_VF0__BIFC_DOORBELL_ACCESS_EN_VF0_MASK 0x000FFFFFL
+//BIFC_DOORBELL_ACCESS_EN_VF1
+#define BIFC_DOORBELL_ACCESS_EN_VF1__BIFC_DOORBELL_ACCESS_EN_VF1__SHIFT 0x0
+#define BIFC_DOORBELL_ACCESS_EN_VF1__BIFC_DOORBELL_ACCESS_EN_VF1_MASK 0x000FFFFFL
+//BIFC_DOORBELL_ACCESS_EN_VF2
+#define BIFC_DOORBELL_ACCESS_EN_VF2__BIFC_DOORBELL_ACCESS_EN_VF2__SHIFT 0x0
+#define BIFC_DOORBELL_ACCESS_EN_VF2__BIFC_DOORBELL_ACCESS_EN_VF2_MASK 0x000FFFFFL
+//BIFC_DOORBELL_ACCESS_EN_VF3
+#define BIFC_DOORBELL_ACCESS_EN_VF3__BIFC_DOORBELL_ACCESS_EN_VF3__SHIFT 0x0
+#define BIFC_DOORBELL_ACCESS_EN_VF3__BIFC_DOORBELL_ACCESS_EN_VF3_MASK 0x000FFFFFL
+//BIFC_DOORBELL_ACCESS_EN_VF4
+#define BIFC_DOORBELL_ACCESS_EN_VF4__BIFC_DOORBELL_ACCESS_EN_VF4__SHIFT 0x0
+#define BIFC_DOORBELL_ACCESS_EN_VF4__BIFC_DOORBELL_ACCESS_EN_VF4_MASK 0x000FFFFFL
+//BIFC_DOORBELL_ACCESS_EN_VF5
+#define BIFC_DOORBELL_ACCESS_EN_VF5__BIFC_DOORBELL_ACCESS_EN_VF5__SHIFT 0x0
+#define BIFC_DOORBELL_ACCESS_EN_VF5__BIFC_DOORBELL_ACCESS_EN_VF5_MASK 0x000FFFFFL
+//BIFC_DOORBELL_ACCESS_EN_VF6
+#define BIFC_DOORBELL_ACCESS_EN_VF6__BIFC_DOORBELL_ACCESS_EN_VF6__SHIFT 0x0
+#define BIFC_DOORBELL_ACCESS_EN_VF6__BIFC_DOORBELL_ACCESS_EN_VF6_MASK 0x000FFFFFL
+//BIFC_DOORBELL_ACCESS_EN_VF7
+#define BIFC_DOORBELL_ACCESS_EN_VF7__BIFC_DOORBELL_ACCESS_EN_VF7__SHIFT 0x0
+#define BIFC_DOORBELL_ACCESS_EN_VF7__BIFC_DOORBELL_ACCESS_EN_VF7_MASK 0x000FFFFFL
+//MISC_SCRATCH
+#define MISC_SCRATCH__MISC_SCRATCH0__SHIFT 0x0
+#define MISC_SCRATCH__MISC_SCRATCH0_MASK 0xFFFFFFFFL
+//INTR_LINE_POLARITY
+#define INTR_LINE_POLARITY__INTR_LINE_POLARITY_DEV0__SHIFT 0x0
+#define INTR_LINE_POLARITY__INTR_LINE_POLARITY_DEV0_MASK 0x000000FFL
+//INTR_LINE_ENABLE
+#define INTR_LINE_ENABLE__INTR_LINE_ENABLE_DEV0__SHIFT 0x0
+#define INTR_LINE_ENABLE__INTR_LINE_ENABLE_DEV0_MASK 0x000000FFL
+//OUTSTANDING_VC_ALLOC
+#define OUTSTANDING_VC_ALLOC__DMA_OUTSTANDING_VC0_ALLOC__SHIFT 0x0
+#define OUTSTANDING_VC_ALLOC__DMA_OUTSTANDING_VC1_ALLOC__SHIFT 0x2
+#define OUTSTANDING_VC_ALLOC__DMA_OUTSTANDING_VC2_ALLOC__SHIFT 0x4
+#define OUTSTANDING_VC_ALLOC__DMA_OUTSTANDING_VC3_ALLOC__SHIFT 0x6
+#define OUTSTANDING_VC_ALLOC__DMA_OUTSTANDING_VC4_ALLOC__SHIFT 0x8
+#define OUTSTANDING_VC_ALLOC__DMA_OUTSTANDING_VC5_ALLOC__SHIFT 0xa
+#define OUTSTANDING_VC_ALLOC__DMA_OUTSTANDING_VC6_ALLOC__SHIFT 0xc
+#define OUTSTANDING_VC_ALLOC__DMA_OUTSTANDING_VC7_ALLOC__SHIFT 0xe
+#define OUTSTANDING_VC_ALLOC__DMA_OUTSTANDING_THRD__SHIFT 0x10
+#define OUTSTANDING_VC_ALLOC__HST_OUTSTANDING_VC0_ALLOC__SHIFT 0x18
+#define OUTSTANDING_VC_ALLOC__HST_OUTSTANDING_VC1_ALLOC__SHIFT 0x1a
+#define OUTSTANDING_VC_ALLOC__HST_OUTSTANDING_THRD__SHIFT 0x1c
+#define OUTSTANDING_VC_ALLOC__DMA_OUTSTANDING_VC0_ALLOC_MASK 0x00000003L
+#define OUTSTANDING_VC_ALLOC__DMA_OUTSTANDING_VC1_ALLOC_MASK 0x0000000CL
+#define OUTSTANDING_VC_ALLOC__DMA_OUTSTANDING_VC2_ALLOC_MASK 0x00000030L
+#define OUTSTANDING_VC_ALLOC__DMA_OUTSTANDING_VC3_ALLOC_MASK 0x000000C0L
+#define OUTSTANDING_VC_ALLOC__DMA_OUTSTANDING_VC4_ALLOC_MASK 0x00000300L
+#define OUTSTANDING_VC_ALLOC__DMA_OUTSTANDING_VC5_ALLOC_MASK 0x00000C00L
+#define OUTSTANDING_VC_ALLOC__DMA_OUTSTANDING_VC6_ALLOC_MASK 0x00003000L
+#define OUTSTANDING_VC_ALLOC__DMA_OUTSTANDING_VC7_ALLOC_MASK 0x0000C000L
+#define OUTSTANDING_VC_ALLOC__DMA_OUTSTANDING_THRD_MASK 0x000F0000L
+#define OUTSTANDING_VC_ALLOC__HST_OUTSTANDING_VC0_ALLOC_MASK 0x03000000L
+#define OUTSTANDING_VC_ALLOC__HST_OUTSTANDING_VC1_ALLOC_MASK 0x0C000000L
+#define OUTSTANDING_VC_ALLOC__HST_OUTSTANDING_THRD_MASK 0xF0000000L
+//BIFC_MISC_CTRL0
+#define BIFC_MISC_CTRL0__VWIRE_TARG_UNITID_CHECK_EN__SHIFT 0x0
+#define BIFC_MISC_CTRL0__VWIRE_SRC_UNITID_CHECK_EN__SHIFT 0x1
+#define BIFC_MISC_CTRL0__DMA_VC4_NON_DVM_STS__SHIFT 0x4
+#define BIFC_MISC_CTRL0__DMA_CHAIN_BREAK_IN_RCMODE__SHIFT 0x8
+#define BIFC_MISC_CTRL0__HST_ARB_CHAIN_LOCK_P__SHIFT 0x9
+#define BIFC_MISC_CTRL0__GSI_RD_SPLIT_STALL_FLUSH_EN__SHIFT 0xb
+#define BIFC_MISC_CTRL0__GSI_RD_SPLIT_STALL_NPWR_DIS__SHIFT 0xc
+#define BIFC_MISC_CTRL0__GSI_SET_PRECEEDINGWR_DIS__SHIFT 0xd
+#define BIFC_MISC_CTRL0__HST_ARB_CHAIN_LOCK_NP__SHIFT 0xe
+#define BIFC_MISC_CTRL0__HRP_CHAIN_DISABLE__SHIFT 0xf
+#define BIFC_MISC_CTRL0__DMA_ATOMIC_LENGTH_CHK_DIS__SHIFT 0x10
+#define BIFC_MISC_CTRL0__DMA_ATOMIC_FAILED_STS_SEL__SHIFT 0x11
+#define BIFC_MISC_CTRL0__DMA_FORCE_VF_AS_PF_SRIOIVEN_LOW__SHIFT 0x12
+#define BIFC_MISC_CTRL0__DMA_ADDR_KEEP_PH__SHIFT 0x13
+#define BIFC_MISC_CTRL0__RCC_GMI_TD_FORCE_ZERO__SHIFT 0x14
+#define BIFC_MISC_CTRL0__HST_FLUSH_DEFER_EN__SHIFT 0x15
+#define BIFC_MISC_CTRL0__HST_FLUSH_CLR_LOCK_EN__SHIFT 0x16
+#define BIFC_MISC_CTRL0__STFETCH_BLOCK_IN_RST__SHIFT 0x17
+#define BIFC_MISC_CTRL0__PCIE_CAPABILITY_PROT_DIS__SHIFT 0x18
+#define BIFC_MISC_CTRL0__ATS_MSG_BLOCK_IN_RST__SHIFT 0x19
+#define BIFC_MISC_CTRL0__DMA_2ND_REQ_DIS__SHIFT 0x1a
+#define BIFC_MISC_CTRL0__PORT_DSTATE_BYPASS_MODE__SHIFT 0x1b
+#define BIFC_MISC_CTRL0__PME_TURNOFF_MODE__SHIFT 0x1c
+#define BIFC_MISC_CTRL0__DMA_ALL_RST_PROTECT_STS_SEL__SHIFT 0x1d
+#define BIFC_MISC_CTRL0__HDP_P2P_DIRECT_ADD_ADJUST__SHIFT 0x1e
+#define BIFC_MISC_CTRL0__PCIESWUS_SELECTION__SHIFT 0x1f
+#define BIFC_MISC_CTRL0__VWIRE_TARG_UNITID_CHECK_EN_MASK 0x00000001L
+#define BIFC_MISC_CTRL0__VWIRE_SRC_UNITID_CHECK_EN_MASK 0x00000006L
+#define BIFC_MISC_CTRL0__DMA_VC4_NON_DVM_STS_MASK 0x000000F0L
+#define BIFC_MISC_CTRL0__DMA_CHAIN_BREAK_IN_RCMODE_MASK 0x00000100L
+#define BIFC_MISC_CTRL0__HST_ARB_CHAIN_LOCK_P_MASK 0x00000200L
+#define BIFC_MISC_CTRL0__GSI_RD_SPLIT_STALL_FLUSH_EN_MASK 0x00000800L
+#define BIFC_MISC_CTRL0__GSI_RD_SPLIT_STALL_NPWR_DIS_MASK 0x00001000L
+#define BIFC_MISC_CTRL0__GSI_SET_PRECEEDINGWR_DIS_MASK 0x00002000L
+#define BIFC_MISC_CTRL0__HST_ARB_CHAIN_LOCK_NP_MASK 0x00004000L
+#define BIFC_MISC_CTRL0__HRP_CHAIN_DISABLE_MASK 0x00008000L
+#define BIFC_MISC_CTRL0__DMA_ATOMIC_LENGTH_CHK_DIS_MASK 0x00010000L
+#define BIFC_MISC_CTRL0__DMA_ATOMIC_FAILED_STS_SEL_MASK 0x00020000L
+#define BIFC_MISC_CTRL0__DMA_FORCE_VF_AS_PF_SRIOIVEN_LOW_MASK 0x00040000L
+#define BIFC_MISC_CTRL0__DMA_ADDR_KEEP_PH_MASK 0x00080000L
+#define BIFC_MISC_CTRL0__RCC_GMI_TD_FORCE_ZERO_MASK 0x00100000L
+#define BIFC_MISC_CTRL0__HST_FLUSH_DEFER_EN_MASK 0x00200000L
+#define BIFC_MISC_CTRL0__HST_FLUSH_CLR_LOCK_EN_MASK 0x00400000L
+#define BIFC_MISC_CTRL0__STFETCH_BLOCK_IN_RST_MASK 0x00800000L
+#define BIFC_MISC_CTRL0__PCIE_CAPABILITY_PROT_DIS_MASK 0x01000000L
+#define BIFC_MISC_CTRL0__ATS_MSG_BLOCK_IN_RST_MASK 0x02000000L
+#define BIFC_MISC_CTRL0__DMA_2ND_REQ_DIS_MASK 0x04000000L
+#define BIFC_MISC_CTRL0__PORT_DSTATE_BYPASS_MODE_MASK 0x08000000L
+#define BIFC_MISC_CTRL0__PME_TURNOFF_MODE_MASK 0x10000000L
+#define BIFC_MISC_CTRL0__DMA_ALL_RST_PROTECT_STS_SEL_MASK 0x20000000L
+#define BIFC_MISC_CTRL0__HDP_P2P_DIRECT_ADD_ADJUST_MASK 0x40000000L
+#define BIFC_MISC_CTRL0__PCIESWUS_SELECTION_MASK 0x80000000L
+//BIFC_MISC_CTRL1
+#define BIFC_MISC_CTRL1__THT_HST_CPLD_POISON_REPORT__SHIFT 0x0
+#define BIFC_MISC_CTRL1__DMA_REQ_POISON_REPORT__SHIFT 0x1
+#define BIFC_MISC_CTRL1__DMA_REQ_ACSVIO_REPORT__SHIFT 0x2
+#define BIFC_MISC_CTRL1__DMA_RSP_POISON_CPLD_REPORT__SHIFT 0x3
+#define BIFC_MISC_CTRL1__GSI_SMN_WORST_ERR_STSTUS__SHIFT 0x4
+#define BIFC_MISC_CTRL1__GSI_SDP_RDRSP_DATA_FORCE1_FOR_ERROR__SHIFT 0x5
+#define BIFC_MISC_CTRL1__GSI_RDWR_BALANCE_DIS__SHIFT 0x6
+#define BIFC_MISC_CTRL1__GMI_ATOMIC_POISON_DROP__SHIFT 0x7
+#define BIFC_MISC_CTRL1__HST_UNSUPPORT_SDPCMD_STS__SHIFT 0x8
+#define BIFC_MISC_CTRL1__HST_UNSUPPORT_SDPCMD_DATASTS__SHIFT 0xa
+#define BIFC_MISC_CTRL1__DROP_OTHER_HT_ADDR_REQ__SHIFT 0xc
+#define BIFC_MISC_CTRL1__DMAWRREQ_HSTRDRSP_ORDER_FORCE__SHIFT 0xd
+#define BIFC_MISC_CTRL1__DMAWRREQ_HSTRDRSP_ORDER_FORCE_VALUE__SHIFT 0xe
+#define BIFC_MISC_CTRL1__UPS_SDP_RDY_TIE1__SHIFT 0xf
+#define BIFC_MISC_CTRL1__GMI_RCC_DN_BME_DROP_DIS__SHIFT 0x10
+#define BIFC_MISC_CTRL1__GMI_RCC_EP_BME_DROP_DIS__SHIFT 0x11
+#define BIFC_MISC_CTRL1__GMI_BIH_DN_BME_DROP_DIS__SHIFT 0x12
+#define BIFC_MISC_CTRL1__GMI_BIH_EP_BME_DROP_DIS__SHIFT 0x13
+#define BIFC_MISC_CTRL1__GSI_SDP_RDRSP_DATA_FORCE0_FOR_ERROR__SHIFT 0x14
+#define BIFC_MISC_CTRL1__DMAWRREQ_HSTWRRSP_ORDER_FORCE__SHIFT 0x15
+#define BIFC_MISC_CTRL1__DMAWRREQ_HSTWRRSP_ORDER_FORCE_VALUE__SHIFT 0x16
+#define BIFC_MISC_CTRL1__GMI_ATOMIC_POISON_FOR_AERLOG__SHIFT 0x17
+#define BIFC_MISC_CTRL1__GMI_RDSIZED_REQATTR_MASK__SHIFT 0x18
+#define BIFC_MISC_CTRL1__GMI_RDSIZEDDW_REQATTR_MASK__SHIFT 0x19
+#define BIFC_MISC_CTRL1__GMI_WRSIZED_REQATTR_MASK__SHIFT 0x1a
+#define BIFC_MISC_CTRL1__GMI_WRSIZEDFL_REQATTR_MASK__SHIFT 0x1b
+#define BIFC_MISC_CTRL1__GMI_FORCE_NOT_SEND_NON_BASEVC_RSPCREDIT__SHIFT 0x1c
+#define BIFC_MISC_CTRL1__GMI_CPLBUF_EN__SHIFT 0x1d
+#define BIFC_MISC_CTRL1__GMI_MSG_BLOCKLVL_SEL__SHIFT 0x1e
+#define BIFC_MISC_CTRL1__THT_HST_CPLD_POISON_REPORT_MASK 0x00000001L
+#define BIFC_MISC_CTRL1__DMA_REQ_POISON_REPORT_MASK 0x00000002L
+#define BIFC_MISC_CTRL1__DMA_REQ_ACSVIO_REPORT_MASK 0x00000004L
+#define BIFC_MISC_CTRL1__DMA_RSP_POISON_CPLD_REPORT_MASK 0x00000008L
+#define BIFC_MISC_CTRL1__GSI_SMN_WORST_ERR_STSTUS_MASK 0x00000010L
+#define BIFC_MISC_CTRL1__GSI_SDP_RDRSP_DATA_FORCE1_FOR_ERROR_MASK 0x00000020L
+#define BIFC_MISC_CTRL1__GSI_RDWR_BALANCE_DIS_MASK 0x00000040L
+#define BIFC_MISC_CTRL1__GMI_ATOMIC_POISON_DROP_MASK 0x00000080L
+#define BIFC_MISC_CTRL1__HST_UNSUPPORT_SDPCMD_STS_MASK 0x00000300L
+#define BIFC_MISC_CTRL1__HST_UNSUPPORT_SDPCMD_DATASTS_MASK 0x00000C00L
+#define BIFC_MISC_CTRL1__DROP_OTHER_HT_ADDR_REQ_MASK 0x00001000L
+#define BIFC_MISC_CTRL1__DMAWRREQ_HSTRDRSP_ORDER_FORCE_MASK 0x00002000L
+#define BIFC_MISC_CTRL1__DMAWRREQ_HSTRDRSP_ORDER_FORCE_VALUE_MASK 0x00004000L
+#define BIFC_MISC_CTRL1__UPS_SDP_RDY_TIE1_MASK 0x00008000L
+#define BIFC_MISC_CTRL1__GMI_RCC_DN_BME_DROP_DIS_MASK 0x00010000L
+#define BIFC_MISC_CTRL1__GMI_RCC_EP_BME_DROP_DIS_MASK 0x00020000L
+#define BIFC_MISC_CTRL1__GMI_BIH_DN_BME_DROP_DIS_MASK 0x00040000L
+#define BIFC_MISC_CTRL1__GMI_BIH_EP_BME_DROP_DIS_MASK 0x00080000L
+#define BIFC_MISC_CTRL1__GSI_SDP_RDRSP_DATA_FORCE0_FOR_ERROR_MASK 0x00100000L
+#define BIFC_MISC_CTRL1__DMAWRREQ_HSTWRRSP_ORDER_FORCE_MASK 0x00200000L
+#define BIFC_MISC_CTRL1__DMAWRREQ_HSTWRRSP_ORDER_FORCE_VALUE_MASK 0x00400000L
+#define BIFC_MISC_CTRL1__GMI_ATOMIC_POISON_FOR_AERLOG_MASK 0x00800000L
+#define BIFC_MISC_CTRL1__GMI_RDSIZED_REQATTR_MASK_MASK 0x01000000L
+#define BIFC_MISC_CTRL1__GMI_RDSIZEDDW_REQATTR_MASK_MASK 0x02000000L
+#define BIFC_MISC_CTRL1__GMI_WRSIZED_REQATTR_MASK_MASK 0x04000000L
+#define BIFC_MISC_CTRL1__GMI_WRSIZEDFL_REQATTR_MASK_MASK 0x08000000L
+#define BIFC_MISC_CTRL1__GMI_FORCE_NOT_SEND_NON_BASEVC_RSPCREDIT_MASK 0x10000000L
+#define BIFC_MISC_CTRL1__GMI_CPLBUF_EN_MASK 0x20000000L
+#define BIFC_MISC_CTRL1__GMI_MSG_BLOCKLVL_SEL_MASK 0xC0000000L
+//BIFC_BME_ERR_LOG_LB
+#define BIFC_BME_ERR_LOG_LB__DMA_ON_BME_LOW_DEV0_F0__SHIFT 0x0
+#define BIFC_BME_ERR_LOG_LB__DMA_ON_BME_LOW_DEV0_F1__SHIFT 0x1
+#define BIFC_BME_ERR_LOG_LB__CLEAR_DMA_ON_BME_LOW_DEV0_F0__SHIFT 0x10
+#define BIFC_BME_ERR_LOG_LB__CLEAR_DMA_ON_BME_LOW_DEV0_F1__SHIFT 0x11
+#define BIFC_BME_ERR_LOG_LB__DMA_ON_BME_LOW_DEV0_F0_MASK 0x00000001L
+#define BIFC_BME_ERR_LOG_LB__DMA_ON_BME_LOW_DEV0_F1_MASK 0x00000002L
+#define BIFC_BME_ERR_LOG_LB__CLEAR_DMA_ON_BME_LOW_DEV0_F0_MASK 0x00010000L
+#define BIFC_BME_ERR_LOG_LB__CLEAR_DMA_ON_BME_LOW_DEV0_F1_MASK 0x00020000L
+//BIFC_LC_TIMER_CTRL
+#define BIFC_LC_TIMER_CTRL__ASPM_IDLE_TIMER_SCALE__SHIFT 0x0
+#define BIFC_LC_TIMER_CTRL__L1_EXIT_TIMER_SCALE__SHIFT 0x10
+#define BIFC_LC_TIMER_CTRL__ASPM_IDLE_TIMER_SCALE_MASK 0x0000FFFFL
+#define BIFC_LC_TIMER_CTRL__L1_EXIT_TIMER_SCALE_MASK 0xFFFF0000L
+//BIFC_RCCBIH_BME_ERR_LOG0
+#define BIFC_RCCBIH_BME_ERR_LOG0__RCCBIH_ON_BME_LOW_DEV0_F0__SHIFT 0x0
+#define BIFC_RCCBIH_BME_ERR_LOG0__RCCBIH_ON_BME_LOW_DEV0_F1__SHIFT 0x1
+#define BIFC_RCCBIH_BME_ERR_LOG0__CLEAR_RCCBIH_ON_BME_LOW_DEV0_F0__SHIFT 0x10
+#define BIFC_RCCBIH_BME_ERR_LOG0__CLEAR_RCCBIH_ON_BME_LOW_DEV0_F1__SHIFT 0x11
+#define BIFC_RCCBIH_BME_ERR_LOG0__RCCBIH_ON_BME_LOW_DEV0_F0_MASK 0x00000001L
+#define BIFC_RCCBIH_BME_ERR_LOG0__RCCBIH_ON_BME_LOW_DEV0_F1_MASK 0x00000002L
+#define BIFC_RCCBIH_BME_ERR_LOG0__CLEAR_RCCBIH_ON_BME_LOW_DEV0_F0_MASK 0x00010000L
+#define BIFC_RCCBIH_BME_ERR_LOG0__CLEAR_RCCBIH_ON_BME_LOW_DEV0_F1_MASK 0x00020000L
+//BIFC_DMA_ATTR_OVERRIDE_DEV0_F0_F1
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F0_F1__TX_IDO_OVERIDE_P_DEV0_F0__SHIFT 0x0
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F0_F1__TX_IDO_OVERIDE_NP_DEV0_F0__SHIFT 0x2
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F0_F1__BLKLVL_FOR_IDO_DEV0_F0__SHIFT 0x4
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F0_F1__TX_RO_OVERIDE_P_DEV0_F0__SHIFT 0x6
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F0_F1__TX_RO_OVERIDE_NP_DEV0_F0__SHIFT 0x8
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F0_F1__TX_SNR_OVERIDE_P_DEV0_F0__SHIFT 0xa
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F0_F1__TX_SNR_OVERIDE_NP_DEV0_F0__SHIFT 0xc
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F0_F1__BLKLVL_FOR_NONIDO_DEV0_F0__SHIFT 0xe
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F0_F1__TX_IDO_OVERIDE_P_DEV0_F1__SHIFT 0x10
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F0_F1__TX_IDO_OVERIDE_NP_DEV0_F1__SHIFT 0x12
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F0_F1__BLKLVL_FOR_IDO_DEV0_F1__SHIFT 0x14
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F0_F1__TX_RO_OVERIDE_P_DEV0_F1__SHIFT 0x16
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F0_F1__TX_RO_OVERIDE_NP_DEV0_F1__SHIFT 0x18
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F0_F1__TX_SNR_OVERIDE_P_DEV0_F1__SHIFT 0x1a
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F0_F1__TX_SNR_OVERIDE_NP_DEV0_F1__SHIFT 0x1c
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F0_F1__BLKLVL_FOR_NONIDO_DEV0_F1__SHIFT 0x1e
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F0_F1__TX_IDO_OVERIDE_P_DEV0_F0_MASK 0x00000003L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F0_F1__TX_IDO_OVERIDE_NP_DEV0_F0_MASK 0x0000000CL
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F0_F1__BLKLVL_FOR_IDO_DEV0_F0_MASK 0x00000030L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F0_F1__TX_RO_OVERIDE_P_DEV0_F0_MASK 0x000000C0L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F0_F1__TX_RO_OVERIDE_NP_DEV0_F0_MASK 0x00000300L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F0_F1__TX_SNR_OVERIDE_P_DEV0_F0_MASK 0x00000C00L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F0_F1__TX_SNR_OVERIDE_NP_DEV0_F0_MASK 0x00003000L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F0_F1__BLKLVL_FOR_NONIDO_DEV0_F0_MASK 0x0000C000L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F0_F1__TX_IDO_OVERIDE_P_DEV0_F1_MASK 0x00030000L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F0_F1__TX_IDO_OVERIDE_NP_DEV0_F1_MASK 0x000C0000L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F0_F1__BLKLVL_FOR_IDO_DEV0_F1_MASK 0x00300000L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F0_F1__TX_RO_OVERIDE_P_DEV0_F1_MASK 0x00C00000L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F0_F1__TX_RO_OVERIDE_NP_DEV0_F1_MASK 0x03000000L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F0_F1__TX_SNR_OVERIDE_P_DEV0_F1_MASK 0x0C000000L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F0_F1__TX_SNR_OVERIDE_NP_DEV0_F1_MASK 0x30000000L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F0_F1__BLKLVL_FOR_NONIDO_DEV0_F1_MASK 0xC0000000L
+//BIFC_DMA_ATTR_OVERRIDE_DEV0_F2_F3
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F2_F3__TX_IDO_OVERIDE_P_DEV0_F2__SHIFT 0x0
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F2_F3__TX_IDO_OVERIDE_NP_DEV0_F2__SHIFT 0x2
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F2_F3__BLKLVL_FOR_IDO_DEV0_F2__SHIFT 0x4
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F2_F3__TX_RO_OVERIDE_P_DEV0_F2__SHIFT 0x6
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F2_F3__TX_RO_OVERIDE_NP_DEV0_F2__SHIFT 0x8
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F2_F3__TX_SNR_OVERIDE_P_DEV0_F2__SHIFT 0xa
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F2_F3__TX_SNR_OVERIDE_NP_DEV0_F2__SHIFT 0xc
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F2_F3__BLKLVL_FOR_NONIDO_DEV0_F2__SHIFT 0xe
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F2_F3__TX_IDO_OVERIDE_P_DEV0_F3__SHIFT 0x10
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F2_F3__TX_IDO_OVERIDE_NP_DEV0_F3__SHIFT 0x12
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F2_F3__BLKLVL_FOR_IDO_DEV0_F3__SHIFT 0x14
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F2_F3__TX_RO_OVERIDE_P_DEV0_F3__SHIFT 0x16
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F2_F3__TX_RO_OVERIDE_NP_DEV0_F3__SHIFT 0x18
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F2_F3__TX_SNR_OVERIDE_P_DEV0_F3__SHIFT 0x1a
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F2_F3__TX_SNR_OVERIDE_NP_DEV0_F3__SHIFT 0x1c
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F2_F3__BLKLVL_FOR_NONIDO_DEV0_F3__SHIFT 0x1e
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F2_F3__TX_IDO_OVERIDE_P_DEV0_F2_MASK 0x00000003L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F2_F3__TX_IDO_OVERIDE_NP_DEV0_F2_MASK 0x0000000CL
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F2_F3__BLKLVL_FOR_IDO_DEV0_F2_MASK 0x00000030L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F2_F3__TX_RO_OVERIDE_P_DEV0_F2_MASK 0x000000C0L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F2_F3__TX_RO_OVERIDE_NP_DEV0_F2_MASK 0x00000300L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F2_F3__TX_SNR_OVERIDE_P_DEV0_F2_MASK 0x00000C00L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F2_F3__TX_SNR_OVERIDE_NP_DEV0_F2_MASK 0x00003000L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F2_F3__BLKLVL_FOR_NONIDO_DEV0_F2_MASK 0x0000C000L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F2_F3__TX_IDO_OVERIDE_P_DEV0_F3_MASK 0x00030000L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F2_F3__TX_IDO_OVERIDE_NP_DEV0_F3_MASK 0x000C0000L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F2_F3__BLKLVL_FOR_IDO_DEV0_F3_MASK 0x00300000L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F2_F3__TX_RO_OVERIDE_P_DEV0_F3_MASK 0x00C00000L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F2_F3__TX_RO_OVERIDE_NP_DEV0_F3_MASK 0x03000000L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F2_F3__TX_SNR_OVERIDE_P_DEV0_F3_MASK 0x0C000000L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F2_F3__TX_SNR_OVERIDE_NP_DEV0_F3_MASK 0x30000000L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F2_F3__BLKLVL_FOR_NONIDO_DEV0_F3_MASK 0xC0000000L
+//BIFC_DMA_ATTR_OVERRIDE_DEV0_F4_F5
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F4_F5__TX_IDO_OVERIDE_P_DEV0_F4__SHIFT 0x0
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F4_F5__TX_IDO_OVERIDE_NP_DEV0_F4__SHIFT 0x2
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F4_F5__BLKLVL_FOR_IDO_DEV0_F4__SHIFT 0x4
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F4_F5__TX_RO_OVERIDE_P_DEV0_F4__SHIFT 0x6
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F4_F5__TX_RO_OVERIDE_NP_DEV0_F4__SHIFT 0x8
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F4_F5__TX_SNR_OVERIDE_P_DEV0_F4__SHIFT 0xa
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F4_F5__TX_SNR_OVERIDE_NP_DEV0_F4__SHIFT 0xc
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F4_F5__BLKLVL_FOR_NONIDO_DEV0_F4__SHIFT 0xe
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F4_F5__TX_IDO_OVERIDE_P_DEV0_F5__SHIFT 0x10
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F4_F5__TX_IDO_OVERIDE_NP_DEV0_F5__SHIFT 0x12
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F4_F5__BLKLVL_FOR_IDO_DEV0_F5__SHIFT 0x14
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F4_F5__TX_RO_OVERIDE_P_DEV0_F5__SHIFT 0x16
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F4_F5__TX_RO_OVERIDE_NP_DEV0_F5__SHIFT 0x18
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F4_F5__TX_SNR_OVERIDE_P_DEV0_F5__SHIFT 0x1a
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F4_F5__TX_SNR_OVERIDE_NP_DEV0_F5__SHIFT 0x1c
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F4_F5__BLKLVL_FOR_NONIDO_DEV0_F5__SHIFT 0x1e
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F4_F5__TX_IDO_OVERIDE_P_DEV0_F4_MASK 0x00000003L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F4_F5__TX_IDO_OVERIDE_NP_DEV0_F4_MASK 0x0000000CL
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F4_F5__BLKLVL_FOR_IDO_DEV0_F4_MASK 0x00000030L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F4_F5__TX_RO_OVERIDE_P_DEV0_F4_MASK 0x000000C0L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F4_F5__TX_RO_OVERIDE_NP_DEV0_F4_MASK 0x00000300L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F4_F5__TX_SNR_OVERIDE_P_DEV0_F4_MASK 0x00000C00L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F4_F5__TX_SNR_OVERIDE_NP_DEV0_F4_MASK 0x00003000L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F4_F5__BLKLVL_FOR_NONIDO_DEV0_F4_MASK 0x0000C000L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F4_F5__TX_IDO_OVERIDE_P_DEV0_F5_MASK 0x00030000L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F4_F5__TX_IDO_OVERIDE_NP_DEV0_F5_MASK 0x000C0000L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F4_F5__BLKLVL_FOR_IDO_DEV0_F5_MASK 0x00300000L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F4_F5__TX_RO_OVERIDE_P_DEV0_F5_MASK 0x00C00000L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F4_F5__TX_RO_OVERIDE_NP_DEV0_F5_MASK 0x03000000L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F4_F5__TX_SNR_OVERIDE_P_DEV0_F5_MASK 0x0C000000L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F4_F5__TX_SNR_OVERIDE_NP_DEV0_F5_MASK 0x30000000L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F4_F5__BLKLVL_FOR_NONIDO_DEV0_F5_MASK 0xC0000000L
+//BIFC_DMA_ATTR_OVERRIDE_DEV0_F6_F7
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F6_F7__TX_IDO_OVERIDE_P_DEV0_F6__SHIFT 0x0
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F6_F7__TX_IDO_OVERIDE_NP_DEV0_F6__SHIFT 0x2
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F6_F7__BLKLVL_FOR_IDO_DEV0_F6__SHIFT 0x4
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F6_F7__TX_RO_OVERIDE_P_DEV0_F6__SHIFT 0x6
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F6_F7__TX_RO_OVERIDE_NP_DEV0_F6__SHIFT 0x8
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F6_F7__TX_SNR_OVERIDE_P_DEV0_F6__SHIFT 0xa
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F6_F7__TX_SNR_OVERIDE_NP_DEV0_F6__SHIFT 0xc
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F6_F7__BLKLVL_FOR_NONIDO_DEV0_F6__SHIFT 0xe
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F6_F7__TX_IDO_OVERIDE_P_DEV0_F7__SHIFT 0x10
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F6_F7__TX_IDO_OVERIDE_NP_DEV0_F7__SHIFT 0x12
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F6_F7__BLKLVL_FOR_IDO_DEV0_F7__SHIFT 0x14
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F6_F7__TX_RO_OVERIDE_P_DEV0_F7__SHIFT 0x16
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F6_F7__TX_RO_OVERIDE_NP_DEV0_F7__SHIFT 0x18
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F6_F7__TX_SNR_OVERIDE_P_DEV0_F7__SHIFT 0x1a
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F6_F7__TX_SNR_OVERIDE_NP_DEV0_F7__SHIFT 0x1c
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F6_F7__BLKLVL_FOR_NONIDO_DEV0_F7__SHIFT 0x1e
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F6_F7__TX_IDO_OVERIDE_P_DEV0_F6_MASK 0x00000003L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F6_F7__TX_IDO_OVERIDE_NP_DEV0_F6_MASK 0x0000000CL
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F6_F7__BLKLVL_FOR_IDO_DEV0_F6_MASK 0x00000030L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F6_F7__TX_RO_OVERIDE_P_DEV0_F6_MASK 0x000000C0L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F6_F7__TX_RO_OVERIDE_NP_DEV0_F6_MASK 0x00000300L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F6_F7__TX_SNR_OVERIDE_P_DEV0_F6_MASK 0x00000C00L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F6_F7__TX_SNR_OVERIDE_NP_DEV0_F6_MASK 0x00003000L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F6_F7__BLKLVL_FOR_NONIDO_DEV0_F6_MASK 0x0000C000L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F6_F7__TX_IDO_OVERIDE_P_DEV0_F7_MASK 0x00030000L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F6_F7__TX_IDO_OVERIDE_NP_DEV0_F7_MASK 0x000C0000L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F6_F7__BLKLVL_FOR_IDO_DEV0_F7_MASK 0x00300000L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F6_F7__TX_RO_OVERIDE_P_DEV0_F7_MASK 0x00C00000L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F6_F7__TX_RO_OVERIDE_NP_DEV0_F7_MASK 0x03000000L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F6_F7__TX_SNR_OVERIDE_P_DEV0_F7_MASK 0x0C000000L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F6_F7__TX_SNR_OVERIDE_NP_DEV0_F7_MASK 0x30000000L
+#define BIFC_DMA_ATTR_OVERRIDE_DEV0_F6_F7__BLKLVL_FOR_NONIDO_DEV0_F7_MASK 0xC0000000L
+//BIFC_DMA_ATTR_CNTL2_DEV0
+#define BIFC_DMA_ATTR_CNTL2_DEV0__BLKLVL_BYPASS_PCIE_IDO_CONTROL_DEV0_F0__SHIFT 0x0
+#define BIFC_DMA_ATTR_CNTL2_DEV0__BLKLVL_BYPASS_PCIE_IDO_CONTROL_DEV0_F1__SHIFT 0x4
+#define BIFC_DMA_ATTR_CNTL2_DEV0__BLKLVL_BYPASS_PCIE_IDO_CONTROL_DEV0_F2__SHIFT 0x8
+#define BIFC_DMA_ATTR_CNTL2_DEV0__BLKLVL_BYPASS_PCIE_IDO_CONTROL_DEV0_F3__SHIFT 0xc
+#define BIFC_DMA_ATTR_CNTL2_DEV0__BLKLVL_BYPASS_PCIE_IDO_CONTROL_DEV0_F4__SHIFT 0x10
+#define BIFC_DMA_ATTR_CNTL2_DEV0__BLKLVL_BYPASS_PCIE_IDO_CONTROL_DEV0_F5__SHIFT 0x14
+#define BIFC_DMA_ATTR_CNTL2_DEV0__BLKLVL_BYPASS_PCIE_IDO_CONTROL_DEV0_F6__SHIFT 0x18
+#define BIFC_DMA_ATTR_CNTL2_DEV0__BLKLVL_BYPASS_PCIE_IDO_CONTROL_DEV0_F7__SHIFT 0x1c
+#define BIFC_DMA_ATTR_CNTL2_DEV0__BLKLVL_BYPASS_PCIE_IDO_CONTROL_DEV0_F0_MASK 0x00000001L
+#define BIFC_DMA_ATTR_CNTL2_DEV0__BLKLVL_BYPASS_PCIE_IDO_CONTROL_DEV0_F1_MASK 0x00000010L
+#define BIFC_DMA_ATTR_CNTL2_DEV0__BLKLVL_BYPASS_PCIE_IDO_CONTROL_DEV0_F2_MASK 0x00000100L
+#define BIFC_DMA_ATTR_CNTL2_DEV0__BLKLVL_BYPASS_PCIE_IDO_CONTROL_DEV0_F3_MASK 0x00001000L
+#define BIFC_DMA_ATTR_CNTL2_DEV0__BLKLVL_BYPASS_PCIE_IDO_CONTROL_DEV0_F4_MASK 0x00010000L
+#define BIFC_DMA_ATTR_CNTL2_DEV0__BLKLVL_BYPASS_PCIE_IDO_CONTROL_DEV0_F5_MASK 0x00100000L
+#define BIFC_DMA_ATTR_CNTL2_DEV0__BLKLVL_BYPASS_PCIE_IDO_CONTROL_DEV0_F6_MASK 0x01000000L
+#define BIFC_DMA_ATTR_CNTL2_DEV0__BLKLVL_BYPASS_PCIE_IDO_CONTROL_DEV0_F7_MASK 0x10000000L
+//BME_DUMMY_CNTL_0
+#define BME_DUMMY_CNTL_0__BME_DUMMY_RSPSTS_DEV0_F0__SHIFT 0x0
+#define BME_DUMMY_CNTL_0__BME_DUMMY_RSPSTS_DEV0_F1__SHIFT 0x2
+#define BME_DUMMY_CNTL_0__BME_DUMMY_RSPSTS_DEV0_F2__SHIFT 0x4
+#define BME_DUMMY_CNTL_0__BME_DUMMY_RSPSTS_DEV0_F3__SHIFT 0x6
+#define BME_DUMMY_CNTL_0__BME_DUMMY_RSPSTS_DEV0_F4__SHIFT 0x8
+#define BME_DUMMY_CNTL_0__BME_DUMMY_RSPSTS_DEV0_F5__SHIFT 0xa
+#define BME_DUMMY_CNTL_0__BME_DUMMY_RSPSTS_DEV0_F6__SHIFT 0xc
+#define BME_DUMMY_CNTL_0__BME_DUMMY_RSPSTS_DEV0_F7__SHIFT 0xe
+#define BME_DUMMY_CNTL_0__BME_DUMMY_RSPSTS_DEV0_F0_MASK 0x00000003L
+#define BME_DUMMY_CNTL_0__BME_DUMMY_RSPSTS_DEV0_F1_MASK 0x0000000CL
+#define BME_DUMMY_CNTL_0__BME_DUMMY_RSPSTS_DEV0_F2_MASK 0x00000030L
+#define BME_DUMMY_CNTL_0__BME_DUMMY_RSPSTS_DEV0_F3_MASK 0x000000C0L
+#define BME_DUMMY_CNTL_0__BME_DUMMY_RSPSTS_DEV0_F4_MASK 0x00000300L
+#define BME_DUMMY_CNTL_0__BME_DUMMY_RSPSTS_DEV0_F5_MASK 0x00000C00L
+#define BME_DUMMY_CNTL_0__BME_DUMMY_RSPSTS_DEV0_F6_MASK 0x00003000L
+#define BME_DUMMY_CNTL_0__BME_DUMMY_RSPSTS_DEV0_F7_MASK 0x0000C000L
+//BIFC_THT_CNTL
+#define BIFC_THT_CNTL__CREDIT_ALLOC_THT_RD_VC0__SHIFT 0x0
+#define BIFC_THT_CNTL__CREDIT_ALLOC_THT_WR_VC0__SHIFT 0x4
+#define BIFC_THT_CNTL__CREDIT_ALLOC_THT_WR_VC1__SHIFT 0x8
+#define BIFC_THT_CNTL__UR_OVRD_FOR_ECRC_EN__SHIFT 0x10
+#define BIFC_THT_CNTL__THT_NTB_VC0_APER0_ADSC_PUSH_DIS__SHIFT 0x18
+#define BIFC_THT_CNTL__THT_NTB_VC0_OTHAPER_ADSC_PUSH_DIS__SHIFT 0x19
+#define BIFC_THT_CNTL__THT_NTB_VC1_APER0_ADSC_PUSH_DIS__SHIFT 0x1a
+#define BIFC_THT_CNTL__THT_NTB_VC1_OTHAPER_ADSC_PUSH_DIS__SHIFT 0x1b
+#define BIFC_THT_CNTL__CREDIT_ALLOC_THT_RD_VC0_MASK 0x0000000FL
+#define BIFC_THT_CNTL__CREDIT_ALLOC_THT_WR_VC0_MASK 0x000000F0L
+#define BIFC_THT_CNTL__CREDIT_ALLOC_THT_WR_VC1_MASK 0x00000F00L
+#define BIFC_THT_CNTL__UR_OVRD_FOR_ECRC_EN_MASK 0x00010000L
+#define BIFC_THT_CNTL__THT_NTB_VC0_APER0_ADSC_PUSH_DIS_MASK 0x01000000L
+#define BIFC_THT_CNTL__THT_NTB_VC0_OTHAPER_ADSC_PUSH_DIS_MASK 0x02000000L
+#define BIFC_THT_CNTL__THT_NTB_VC1_APER0_ADSC_PUSH_DIS_MASK 0x04000000L
+#define BIFC_THT_CNTL__THT_NTB_VC1_OTHAPER_ADSC_PUSH_DIS_MASK 0x08000000L
+//BIFC_HSTARB_CNTL
+#define BIFC_HSTARB_CNTL__SLVARB_MODE__SHIFT 0x0
+#define BIFC_HSTARB_CNTL__CFG_BLOCK_P_EN__SHIFT 0x8
+#define BIFC_HSTARB_CNTL__SLVARB_MODE_MASK 0x00000003L
+#define BIFC_HSTARB_CNTL__CFG_BLOCK_P_EN_MASK 0x00000100L
+//BIFC_GSI_CNTL
+#define BIFC_GSI_CNTL__GSI_SDP_RSP_ARB_MODE__SHIFT 0x0
+#define BIFC_GSI_CNTL__GSI_CPL_RSP_ARB_MODE__SHIFT 0x2
+#define BIFC_GSI_CNTL__GSI_CPL_INTERLEAVING_EN__SHIFT 0x5
+#define BIFC_GSI_CNTL__GSI_CPL_PCR_EP_CAUSE_UR_EN__SHIFT 0x6
+#define BIFC_GSI_CNTL__GSI_CPL_SMN_P_EP_CAUSE_UR_EN__SHIFT 0x7
+#define BIFC_GSI_CNTL__GSI_CPL_SMN_NP_EP_CAUSE_UR_EN__SHIFT 0x8
+#define BIFC_GSI_CNTL__GSI_SDP_REQ_ARB_MODE__SHIFT 0xa
+#define BIFC_GSI_CNTL__GSI_SMN_REQ_ARB_MODE__SHIFT 0xc
+#define BIFC_GSI_CNTL__GSI_SMN_PARITY_CHK_BE_MSK__SHIFT 0xf
+#define BIFC_GSI_CNTL__GSI_SMN_BURST_EN__SHIFT 0x10
+#define BIFC_GSI_CNTL__GSI_SMN_256B_SPLIT_64B_EN__SHIFT 0x11
+#define BIFC_GSI_CNTL__SMN_PP_PIPE_ENABLE__SHIFT 0x1b
+#define BIFC_GSI_CNTL__HDP_FB_UPLIMIT_COUNT_FBFLUSH__SHIFT 0x1c
+#define BIFC_GSI_CNTL__HDP_FB_UPLIMIT_COUNT_HDPFLUSH__SHIFT 0x1d
+#define BIFC_GSI_CNTL__HDP_FB_UPLIMIT_COUNT_HDPRD__SHIFT 0x1e
+#define BIFC_GSI_CNTL__HDP_FB_UPLIMIT_COUNT_ALL__SHIFT 0x1f
+#define BIFC_GSI_CNTL__GSI_SDP_RSP_ARB_MODE_MASK 0x00000003L
+#define BIFC_GSI_CNTL__GSI_CPL_RSP_ARB_MODE_MASK 0x0000001CL
+#define BIFC_GSI_CNTL__GSI_CPL_INTERLEAVING_EN_MASK 0x00000020L
+#define BIFC_GSI_CNTL__GSI_CPL_PCR_EP_CAUSE_UR_EN_MASK 0x00000040L
+#define BIFC_GSI_CNTL__GSI_CPL_SMN_P_EP_CAUSE_UR_EN_MASK 0x00000080L
+#define BIFC_GSI_CNTL__GSI_CPL_SMN_NP_EP_CAUSE_UR_EN_MASK 0x00000100L
+#define BIFC_GSI_CNTL__GSI_SDP_REQ_ARB_MODE_MASK 0x00000C00L
+#define BIFC_GSI_CNTL__GSI_SMN_REQ_ARB_MODE_MASK 0x00003000L
+#define BIFC_GSI_CNTL__GSI_SMN_PARITY_CHK_BE_MSK_MASK 0x00008000L
+#define BIFC_GSI_CNTL__GSI_SMN_BURST_EN_MASK 0x00010000L
+#define BIFC_GSI_CNTL__GSI_SMN_256B_SPLIT_64B_EN_MASK 0x00020000L
+#define BIFC_GSI_CNTL__SMN_PP_PIPE_ENABLE_MASK 0x08000000L
+#define BIFC_GSI_CNTL__HDP_FB_UPLIMIT_COUNT_FBFLUSH_MASK 0x10000000L
+#define BIFC_GSI_CNTL__HDP_FB_UPLIMIT_COUNT_HDPFLUSH_MASK 0x20000000L
+#define BIFC_GSI_CNTL__HDP_FB_UPLIMIT_COUNT_HDPRD_MASK 0x40000000L
+#define BIFC_GSI_CNTL__HDP_FB_UPLIMIT_COUNT_ALL_MASK 0x80000000L
+//BIFC_PCIEFUNC_CNTL
+#define BIFC_PCIEFUNC_CNTL__DMA_NON_PCIEFUNC_BUSDEVFUNC__SHIFT 0x0
+#define BIFC_PCIEFUNC_CNTL__DMA_NON_PCIEFUNC_BUSDEVFUNC_MASK 0x0000FFFFL
+//BIFC_PASID_CHECK_DIS
+#define BIFC_PASID_CHECK_DIS__PASID_CHECK_DIS_DEV0_F0__SHIFT 0x0
+#define BIFC_PASID_CHECK_DIS__PASID_CHECK_DIS_DEV0_F1__SHIFT 0x1
+#define BIFC_PASID_CHECK_DIS__PASID_CHECK_DIS_DEV0_F0_MASK 0x00000001L
+#define BIFC_PASID_CHECK_DIS__PASID_CHECK_DIS_DEV0_F1_MASK 0x00000002L
+//BIFC_SDP_CNTL_0
+#define BIFC_SDP_CNTL_0__HRP_SDP_DISCON_HYSTERESIS__SHIFT 0x0
+#define BIFC_SDP_CNTL_0__GSI_SDP_DISCON_HYSTERESIS__SHIFT 0x8
+#define BIFC_SDP_CNTL_0__GMI_DNS_SDP_DISCON_HYSTERESIS__SHIFT 0x10
+#define BIFC_SDP_CNTL_0__GMI_UPS_SDP_DISCON_HYSTERESIS__SHIFT 0x18
+#define BIFC_SDP_CNTL_0__HRP_SDP_DISCON_HYSTERESIS_MASK 0x000000FFL
+#define BIFC_SDP_CNTL_0__GSI_SDP_DISCON_HYSTERESIS_MASK 0x0000FF00L
+#define BIFC_SDP_CNTL_0__GMI_DNS_SDP_DISCON_HYSTERESIS_MASK 0x00FF0000L
+#define BIFC_SDP_CNTL_0__GMI_UPS_SDP_DISCON_HYSTERESIS_MASK 0xFF000000L
+//BIFC_SDP_CNTL_1
+#define BIFC_SDP_CNTL_1__HRP_SDP_DISCON_DIS__SHIFT 0x0
+#define BIFC_SDP_CNTL_1__GSI_SDP_DISCON_DIS__SHIFT 0x1
+#define BIFC_SDP_CNTL_1__GMI_DNS_SDP_DISCON_DIS__SHIFT 0x2
+#define BIFC_SDP_CNTL_1__GMI_UPS_SDP_DISCON_DIS__SHIFT 0x3
+#define BIFC_SDP_CNTL_1__HRP_SDP_DISCON_VLINK_NONL0_ONLY__SHIFT 0x4
+#define BIFC_SDP_CNTL_1__NP_KEEP_GOING_STALL_P__SHIFT 0x5
+#define BIFC_SDP_CNTL_1__GMI_UPS_SDP_DISCON_VLINK_NONL0_ONLY__SHIFT 0x7
+#define BIFC_SDP_CNTL_1__ATOMIC_STALL_BY_RDWR_EN__SHIFT 0x8
+#define BIFC_SDP_CNTL_1__POOL_CREDIT_ALLOC_OVERRIDE_DYNAMIC__SHIFT 0x9
+#define BIFC_SDP_CNTL_1__HRP_SDP_DISCON_DIS_MASK 0x00000001L
+#define BIFC_SDP_CNTL_1__GSI_SDP_DISCON_DIS_MASK 0x00000002L
+#define BIFC_SDP_CNTL_1__GMI_DNS_SDP_DISCON_DIS_MASK 0x00000004L
+#define BIFC_SDP_CNTL_1__GMI_UPS_SDP_DISCON_DIS_MASK 0x00000008L
+#define BIFC_SDP_CNTL_1__HRP_SDP_DISCON_VLINK_NONL0_ONLY_MASK 0x00000010L
+#define BIFC_SDP_CNTL_1__NP_KEEP_GOING_STALL_P_MASK 0x00000020L
+#define BIFC_SDP_CNTL_1__GMI_UPS_SDP_DISCON_VLINK_NONL0_ONLY_MASK 0x00000080L
+#define BIFC_SDP_CNTL_1__ATOMIC_STALL_BY_RDWR_EN_MASK 0x00000100L
+#define BIFC_SDP_CNTL_1__POOL_CREDIT_ALLOC_OVERRIDE_DYNAMIC_MASK 0x00000200L
+//BIFC_PASID_STS
+#define BIFC_PASID_STS__PASID_STS__SHIFT 0x0
+#define BIFC_PASID_STS__PASID_STS_MASK 0x0000000FL
+//BIFC_ATHUB_ACT_CNTL
+#define BIFC_ATHUB_ACT_CNTL__ATHUB_ACT_GSI_RSP_STS_TYPE__SHIFT 0x0
+#define BIFC_ATHUB_ACT_CNTL__ATHUB_SLFR_DATAERR_RSP_STS_TYPE__SHIFT 0x3
+#define BIFC_ATHUB_ACT_CNTL__ATHUB_ACT_GSI_REQ_DROP_DIS__SHIFT 0x8
+#define BIFC_ATHUB_ACT_CNTL__GSI_ATHUB_ACT_FLUSH_TRIGGER__SHIFT 0x9
+#define BIFC_ATHUB_ACT_CNTL__GMI_ATHUB_ACT_FLUSH_TRIGGER__SHIFT 0xa
+#define BIFC_ATHUB_ACT_CNTL__ATHUB_ACT_GSI_RSP_STS_TYPE_MASK 0x00000007L
+#define BIFC_ATHUB_ACT_CNTL__ATHUB_SLFR_DATAERR_RSP_STS_TYPE_MASK 0x00000038L
+#define BIFC_ATHUB_ACT_CNTL__ATHUB_ACT_GSI_REQ_DROP_DIS_MASK 0x00000100L
+#define BIFC_ATHUB_ACT_CNTL__GSI_ATHUB_ACT_FLUSH_TRIGGER_MASK 0x00000200L
+#define BIFC_ATHUB_ACT_CNTL__GMI_ATHUB_ACT_FLUSH_TRIGGER_MASK 0x00000400L
+//BIFC_PERF_CNTL_0
+#define BIFC_PERF_CNTL_0__PERF_CNT_MMIO_RD_EN__SHIFT 0x0
+#define BIFC_PERF_CNTL_0__PERF_CNT_MMIO_WR_EN__SHIFT 0x1
+#define BIFC_PERF_CNTL_0__PERF_CNT_MMIO_RD_RESET__SHIFT 0x8
+#define BIFC_PERF_CNTL_0__PERF_CNT_MMIO_WR_RESET__SHIFT 0x9
+#define BIFC_PERF_CNTL_0__PERF_CNT_MMIO_RD_SEL__SHIFT 0x10
+#define BIFC_PERF_CNTL_0__PERF_CNT_MMIO_WR_SEL__SHIFT 0x18
+#define BIFC_PERF_CNTL_0__PERF_CNT_MMIO_RD_EN_MASK 0x00000001L
+#define BIFC_PERF_CNTL_0__PERF_CNT_MMIO_WR_EN_MASK 0x00000002L
+#define BIFC_PERF_CNTL_0__PERF_CNT_MMIO_RD_RESET_MASK 0x00000100L
+#define BIFC_PERF_CNTL_0__PERF_CNT_MMIO_WR_RESET_MASK 0x00000200L
+#define BIFC_PERF_CNTL_0__PERF_CNT_MMIO_RD_SEL_MASK 0x007F0000L
+#define BIFC_PERF_CNTL_0__PERF_CNT_MMIO_WR_SEL_MASK 0x7F000000L
+//BIFC_PERF_CNTL_1
+#define BIFC_PERF_CNTL_1__PERF_CNT_DMA_RD_EN__SHIFT 0x0
+#define BIFC_PERF_CNTL_1__PERF_CNT_DMA_WR_EN__SHIFT 0x1
+#define BIFC_PERF_CNTL_1__PERF_CNT_DMA_RD_RESET__SHIFT 0x4
+#define BIFC_PERF_CNTL_1__PERF_CNT_DMA_WR_RESET__SHIFT 0x5
+#define BIFC_PERF_CNTL_1__PERF_CNT_DMA_RD_SEL__SHIFT 0x8
+#define BIFC_PERF_CNTL_1__PERF_CNT_DMA_WR_SEL__SHIFT 0x10
+#define BIFC_PERF_CNTL_1__PERF_CNT_DMA_RD_EN_MASK 0x00000001L
+#define BIFC_PERF_CNTL_1__PERF_CNT_DMA_WR_EN_MASK 0x00000002L
+#define BIFC_PERF_CNTL_1__PERF_CNT_DMA_RD_RESET_MASK 0x00000010L
+#define BIFC_PERF_CNTL_1__PERF_CNT_DMA_WR_RESET_MASK 0x00000020L
+#define BIFC_PERF_CNTL_1__PERF_CNT_DMA_RD_SEL_MASK 0x0000FF00L
+#define BIFC_PERF_CNTL_1__PERF_CNT_DMA_WR_SEL_MASK 0x01FF0000L
+//BIFC_PERF_CNT_MMIO_RD_L32BIT
+#define BIFC_PERF_CNT_MMIO_RD_L32BIT__PERF_CNT_MMIO_RD_VALUE_L32BIT__SHIFT 0x0
+#define BIFC_PERF_CNT_MMIO_RD_L32BIT__PERF_CNT_MMIO_RD_VALUE_L32BIT_MASK 0xFFFFFFFFL
+//BIFC_PERF_CNT_MMIO_WR_L32BIT
+#define BIFC_PERF_CNT_MMIO_WR_L32BIT__PERF_CNT_MMIO_WR_VALUE_L32BIT__SHIFT 0x0
+#define BIFC_PERF_CNT_MMIO_WR_L32BIT__PERF_CNT_MMIO_WR_VALUE_L32BIT_MASK 0xFFFFFFFFL
+//BIFC_PERF_CNT_DMA_RD_L32BIT
+#define BIFC_PERF_CNT_DMA_RD_L32BIT__PERF_CNT_DMA_RD_VALUE_L32BIT__SHIFT 0x0
+#define BIFC_PERF_CNT_DMA_RD_L32BIT__PERF_CNT_DMA_RD_VALUE_L32BIT_MASK 0xFFFFFFFFL
+//BIFC_PERF_CNT_DMA_WR_L32BIT
+#define BIFC_PERF_CNT_DMA_WR_L32BIT__PERF_CNT_DMA_WR_VALUE_L32BIT__SHIFT 0x0
+#define BIFC_PERF_CNT_DMA_WR_L32BIT__PERF_CNT_DMA_WR_VALUE_L32BIT_MASK 0xFFFFFFFFL
+//NBIF_REGIF_ERRSET_CTRL
+#define NBIF_REGIF_ERRSET_CTRL__DROP_NONPF_MMREGREQ_SETERR_DIS__SHIFT 0x0
+#define NBIF_REGIF_ERRSET_CTRL__DROP_NONPF_MMREGREQ_SETERR_DIS_MASK 0x00000001L
+//BIFC_SDP_CNTL_2
+#define BIFC_SDP_CNTL_2__SDP_SION_DISCON_HYSTERESIS__SHIFT 0x0
+#define BIFC_SDP_CNTL_2__SDP_SION_DISCON_HYSTERESIS_H__SHIFT 0x8
+#define BIFC_SDP_CNTL_2__HRP_SDP_DISCON_HYSTERESIS_H__SHIFT 0x10
+#define BIFC_SDP_CNTL_2__GSI_SDP_DISCON_HYSTERESIS_H__SHIFT 0x18
+#define BIFC_SDP_CNTL_2__SDP_SION_DISCON_HYSTERESIS_MASK 0x000000FFL
+#define BIFC_SDP_CNTL_2__SDP_SION_DISCON_HYSTERESIS_H_MASK 0x00000F00L
+#define BIFC_SDP_CNTL_2__HRP_SDP_DISCON_HYSTERESIS_H_MASK 0x000F0000L
+#define BIFC_SDP_CNTL_2__GSI_SDP_DISCON_HYSTERESIS_H_MASK 0x0F000000L
+//NBIF_PGMST_CTRL
+#define NBIF_PGMST_CTRL__NBIF_CFG_PG_HYSTERESIS__SHIFT 0x0
+#define NBIF_PGMST_CTRL__NBIF_CFG_PG_EN__SHIFT 0x8
+#define NBIF_PGMST_CTRL__NBIF_CFG_IDLENESS_COUNT_EN__SHIFT 0xa
+#define NBIF_PGMST_CTRL__NBIF_CFG_FW_PG_EXIT_EN__SHIFT 0xe
+#define NBIF_PGMST_CTRL__NBIF_CFG_PG_HYSTERESIS_MASK 0x000000FFL
+#define NBIF_PGMST_CTRL__NBIF_CFG_PG_EN_MASK 0x00000100L
+#define NBIF_PGMST_CTRL__NBIF_CFG_IDLENESS_COUNT_EN_MASK 0x00003C00L
+#define NBIF_PGMST_CTRL__NBIF_CFG_FW_PG_EXIT_EN_MASK 0x0000C000L
+//NBIF_PGSLV_CTRL
+#define NBIF_PGSLV_CTRL__NBIF_CFG_IDLE_HYSTERESIS__SHIFT 0x0
+#define NBIF_PGSLV_CTRL__NBIF_CFG_IDLE_HYSTERESIS_MASK 0x0000001FL
+//NBIF_PG_MISC_CTRL
+#define NBIF_PG_MISC_CTRL__NBIF_CFG_SHUBCLK_0_IDLE_HYSTERESIS__SHIFT 0x0
+#define NBIF_PG_MISC_CTRL__NBIF_CFG_SHUBCLK_1_IDLE_HYSTERESIS__SHIFT 0x5
+#define NBIF_PG_MISC_CTRL__NBIF_PG_ENDP_D3_ONLY__SHIFT 0xa
+#define NBIF_PG_MISC_CTRL__NBIF_PG_CLK_PERM1__SHIFT 0xd
+#define NBIF_PG_MISC_CTRL__NBIF_PG_DS_ALLOW_DIS__SHIFT 0xe
+#define NBIF_PG_MISC_CTRL__NBIF_PG_CLK_PERM2__SHIFT 0x10
+#define NBIF_PG_MISC_CTRL__NBIF_CFG_REFCLK_CYCLE_FOR_200NS__SHIFT 0x18
+#define NBIF_PG_MISC_CTRL__NBIF_PG_PCIE_NBIF_LD_MASK__SHIFT 0x1e
+#define NBIF_PG_MISC_CTRL__NBIF_CFG_PG_EXIT_OVERRIDE__SHIFT 0x1f
+#define NBIF_PG_MISC_CTRL__NBIF_CFG_SHUBCLK_0_IDLE_HYSTERESIS_MASK 0x0000001FL
+#define NBIF_PG_MISC_CTRL__NBIF_CFG_SHUBCLK_1_IDLE_HYSTERESIS_MASK 0x000003E0L
+#define NBIF_PG_MISC_CTRL__NBIF_PG_ENDP_D3_ONLY_MASK 0x00000400L
+#define NBIF_PG_MISC_CTRL__NBIF_PG_CLK_PERM1_MASK 0x00002000L
+#define NBIF_PG_MISC_CTRL__NBIF_PG_DS_ALLOW_DIS_MASK 0x00004000L
+#define NBIF_PG_MISC_CTRL__NBIF_PG_CLK_PERM2_MASK 0x00010000L
+#define NBIF_PG_MISC_CTRL__NBIF_CFG_REFCLK_CYCLE_FOR_200NS_MASK 0x3F000000L
+#define NBIF_PG_MISC_CTRL__NBIF_PG_PCIE_NBIF_LD_MASK_MASK 0x40000000L
+#define NBIF_PG_MISC_CTRL__NBIF_CFG_PG_EXIT_OVERRIDE_MASK 0x80000000L
+//SMN_MST_EP_CNTL3
+#define SMN_MST_EP_CNTL3__SMN_ZERO_BE_WR_EN_EP_DEV0_PF0__SHIFT 0x0
+#define SMN_MST_EP_CNTL3__SMN_ZERO_BE_WR_EN_EP_DEV0_PF1__SHIFT 0x1
+#define SMN_MST_EP_CNTL3__SMN_ZERO_BE_WR_EN_EP_DEV0_PF2__SHIFT 0x2
+#define SMN_MST_EP_CNTL3__SMN_ZERO_BE_WR_EN_EP_DEV0_PF3__SHIFT 0x3
+#define SMN_MST_EP_CNTL3__SMN_ZERO_BE_WR_EN_EP_DEV0_PF4__SHIFT 0x4
+#define SMN_MST_EP_CNTL3__SMN_ZERO_BE_WR_EN_EP_DEV0_PF5__SHIFT 0x5
+#define SMN_MST_EP_CNTL3__SMN_ZERO_BE_WR_EN_EP_DEV0_PF6__SHIFT 0x6
+#define SMN_MST_EP_CNTL3__SMN_ZERO_BE_WR_EN_EP_DEV0_PF7__SHIFT 0x7
+#define SMN_MST_EP_CNTL3__SMN_ZERO_BE_WR_EN_EP_DEV0_PF0_MASK 0x00000001L
+#define SMN_MST_EP_CNTL3__SMN_ZERO_BE_WR_EN_EP_DEV0_PF1_MASK 0x00000002L
+#define SMN_MST_EP_CNTL3__SMN_ZERO_BE_WR_EN_EP_DEV0_PF2_MASK 0x00000004L
+#define SMN_MST_EP_CNTL3__SMN_ZERO_BE_WR_EN_EP_DEV0_PF3_MASK 0x00000008L
+#define SMN_MST_EP_CNTL3__SMN_ZERO_BE_WR_EN_EP_DEV0_PF4_MASK 0x00000010L
+#define SMN_MST_EP_CNTL3__SMN_ZERO_BE_WR_EN_EP_DEV0_PF5_MASK 0x00000020L
+#define SMN_MST_EP_CNTL3__SMN_ZERO_BE_WR_EN_EP_DEV0_PF6_MASK 0x00000040L
+#define SMN_MST_EP_CNTL3__SMN_ZERO_BE_WR_EN_EP_DEV0_PF7_MASK 0x00000080L
+//SMN_MST_EP_CNTL4
+#define SMN_MST_EP_CNTL4__SMN_ZERO_BE_RD_EN_EP_DEV0_PF0__SHIFT 0x0
+#define SMN_MST_EP_CNTL4__SMN_ZERO_BE_RD_EN_EP_DEV0_PF1__SHIFT 0x1
+#define SMN_MST_EP_CNTL4__SMN_ZERO_BE_RD_EN_EP_DEV0_PF2__SHIFT 0x2
+#define SMN_MST_EP_CNTL4__SMN_ZERO_BE_RD_EN_EP_DEV0_PF3__SHIFT 0x3
+#define SMN_MST_EP_CNTL4__SMN_ZERO_BE_RD_EN_EP_DEV0_PF4__SHIFT 0x4
+#define SMN_MST_EP_CNTL4__SMN_ZERO_BE_RD_EN_EP_DEV0_PF5__SHIFT 0x5
+#define SMN_MST_EP_CNTL4__SMN_ZERO_BE_RD_EN_EP_DEV0_PF6__SHIFT 0x6
+#define SMN_MST_EP_CNTL4__SMN_ZERO_BE_RD_EN_EP_DEV0_PF7__SHIFT 0x7
+#define SMN_MST_EP_CNTL4__SMN_ZERO_BE_RD_EN_EP_DEV0_PF0_MASK 0x00000001L
+#define SMN_MST_EP_CNTL4__SMN_ZERO_BE_RD_EN_EP_DEV0_PF1_MASK 0x00000002L
+#define SMN_MST_EP_CNTL4__SMN_ZERO_BE_RD_EN_EP_DEV0_PF2_MASK 0x00000004L
+#define SMN_MST_EP_CNTL4__SMN_ZERO_BE_RD_EN_EP_DEV0_PF3_MASK 0x00000008L
+#define SMN_MST_EP_CNTL4__SMN_ZERO_BE_RD_EN_EP_DEV0_PF4_MASK 0x00000010L
+#define SMN_MST_EP_CNTL4__SMN_ZERO_BE_RD_EN_EP_DEV0_PF5_MASK 0x00000020L
+#define SMN_MST_EP_CNTL4__SMN_ZERO_BE_RD_EN_EP_DEV0_PF6_MASK 0x00000040L
+#define SMN_MST_EP_CNTL4__SMN_ZERO_BE_RD_EN_EP_DEV0_PF7_MASK 0x00000080L
+//SMN_MST_CNTL1
+#define SMN_MST_CNTL1__SMN_ERRRSP_DATA_ALLF_DIS_UPS__SHIFT 0x0
+#define SMN_MST_CNTL1__SMN_ERRRSP_DATA_ALLF_DIS_DNS_DEV0__SHIFT 0x10
+#define SMN_MST_CNTL1__SMN_ERRRSP_DATA_ALLF_DIS_UPS_MASK 0x00000001L
+#define SMN_MST_CNTL1__SMN_ERRRSP_DATA_ALLF_DIS_DNS_DEV0_MASK 0x00010000L
+//SMN_MST_EP_CNTL5
+#define SMN_MST_EP_CNTL5__SMN_ERRRSP_DATA_ALLF_DIS_EP_DEV0_PF0__SHIFT 0x0
+#define SMN_MST_EP_CNTL5__SMN_ERRRSP_DATA_ALLF_DIS_EP_DEV0_PF1__SHIFT 0x1
+#define SMN_MST_EP_CNTL5__SMN_ERRRSP_DATA_ALLF_DIS_EP_DEV0_PF2__SHIFT 0x2
+#define SMN_MST_EP_CNTL5__SMN_ERRRSP_DATA_ALLF_DIS_EP_DEV0_PF3__SHIFT 0x3
+#define SMN_MST_EP_CNTL5__SMN_ERRRSP_DATA_ALLF_DIS_EP_DEV0_PF4__SHIFT 0x4
+#define SMN_MST_EP_CNTL5__SMN_ERRRSP_DATA_ALLF_DIS_EP_DEV0_PF5__SHIFT 0x5
+#define SMN_MST_EP_CNTL5__SMN_ERRRSP_DATA_ALLF_DIS_EP_DEV0_PF6__SHIFT 0x6
+#define SMN_MST_EP_CNTL5__SMN_ERRRSP_DATA_ALLF_DIS_EP_DEV0_PF7__SHIFT 0x7
+#define SMN_MST_EP_CNTL5__SMN_ERRRSP_DATA_ALLF_DIS_EP_DEV0_PF0_MASK 0x00000001L
+#define SMN_MST_EP_CNTL5__SMN_ERRRSP_DATA_ALLF_DIS_EP_DEV0_PF1_MASK 0x00000002L
+#define SMN_MST_EP_CNTL5__SMN_ERRRSP_DATA_ALLF_DIS_EP_DEV0_PF2_MASK 0x00000004L
+#define SMN_MST_EP_CNTL5__SMN_ERRRSP_DATA_ALLF_DIS_EP_DEV0_PF3_MASK 0x00000008L
+#define SMN_MST_EP_CNTL5__SMN_ERRRSP_DATA_ALLF_DIS_EP_DEV0_PF4_MASK 0x00000010L
+#define SMN_MST_EP_CNTL5__SMN_ERRRSP_DATA_ALLF_DIS_EP_DEV0_PF5_MASK 0x00000020L
+#define SMN_MST_EP_CNTL5__SMN_ERRRSP_DATA_ALLF_DIS_EP_DEV0_PF6_MASK 0x00000040L
+#define SMN_MST_EP_CNTL5__SMN_ERRRSP_DATA_ALLF_DIS_EP_DEV0_PF7_MASK 0x00000080L
+//BIF_SELFRING_BUFFER_VID
+#define BIF_SELFRING_BUFFER_VID__DOORBELL_MONITOR_CID__SHIFT 0x0
+#define BIF_SELFRING_BUFFER_VID__RAS_CNTLR_INTR_CID__SHIFT 0x8
+#define BIF_SELFRING_BUFFER_VID__RAS_ATHUB_ERR_EVENT_INTR_CID__SHIFT 0x10
+#define BIF_SELFRING_BUFFER_VID__DOORBELL_MONITOR_CID_MASK 0x000000FFL
+#define BIF_SELFRING_BUFFER_VID__RAS_CNTLR_INTR_CID_MASK 0x0000FF00L
+#define BIF_SELFRING_BUFFER_VID__RAS_ATHUB_ERR_EVENT_INTR_CID_MASK 0x00FF0000L
+//BIF_SELFRING_VECTOR_CNTL
+#define BIF_SELFRING_VECTOR_CNTL__MISC_DB_MNTR_INTR_DIS__SHIFT 0x0
+#define BIF_SELFRING_VECTOR_CNTL__DB_MNTR_TS_FROM__SHIFT 0x1
+#define BIF_SELFRING_VECTOR_CNTL__MISC_DB_MNTR_INTR_DIS_MASK 0x00000001L
+#define BIF_SELFRING_VECTOR_CNTL__DB_MNTR_TS_FROM_MASK 0x00000002L
+//NBIF_STRAP_WRITE_CTRL
+#define NBIF_STRAP_WRITE_CTRL__NBIF_STRAP_WRITE_ONCE_ENABLE__SHIFT 0x0
+#define NBIF_STRAP_WRITE_CTRL__NBIF_STRAP_WRITE_ONCE_ENABLE_MASK 0x00000001L
+//NBIF_INTX_DSTATE_MISC_CNTL
+#define NBIF_INTX_DSTATE_MISC_CNTL__DEASRT_INTX_DSTATE_CHK_DIS_EP__SHIFT 0x0
+#define NBIF_INTX_DSTATE_MISC_CNTL__DEASRT_INTX_DSTATE_CHK_DIS_DN__SHIFT 0x1
+#define NBIF_INTX_DSTATE_MISC_CNTL__DEASRT_INTX_DSTATE_CHK_DIS_SWUS__SHIFT 0x2
+#define NBIF_INTX_DSTATE_MISC_CNTL__DEASRT_INTX_IN_NOND0_EN_EP__SHIFT 0x3
+#define NBIF_INTX_DSTATE_MISC_CNTL__DEASRT_INTX_IN_NOND0_EN_DN__SHIFT 0x4
+#define NBIF_INTX_DSTATE_MISC_CNTL__PMI_INT_DIS_EP__SHIFT 0x5
+#define NBIF_INTX_DSTATE_MISC_CNTL__PMI_INT_DIS_DN__SHIFT 0x6
+#define NBIF_INTX_DSTATE_MISC_CNTL__PMI_INT_DIS_SWUS__SHIFT 0x7
+#define NBIF_INTX_DSTATE_MISC_CNTL__DEASRT_INTX_DSTATE_CHK_DIS_EP_MASK 0x00000001L
+#define NBIF_INTX_DSTATE_MISC_CNTL__DEASRT_INTX_DSTATE_CHK_DIS_DN_MASK 0x00000002L
+#define NBIF_INTX_DSTATE_MISC_CNTL__DEASRT_INTX_DSTATE_CHK_DIS_SWUS_MASK 0x00000004L
+#define NBIF_INTX_DSTATE_MISC_CNTL__DEASRT_INTX_IN_NOND0_EN_EP_MASK 0x00000008L
+#define NBIF_INTX_DSTATE_MISC_CNTL__DEASRT_INTX_IN_NOND0_EN_DN_MASK 0x00000010L
+#define NBIF_INTX_DSTATE_MISC_CNTL__PMI_INT_DIS_EP_MASK 0x00000020L
+#define NBIF_INTX_DSTATE_MISC_CNTL__PMI_INT_DIS_DN_MASK 0x00000040L
+#define NBIF_INTX_DSTATE_MISC_CNTL__PMI_INT_DIS_SWUS_MASK 0x00000080L
+//NBIF_PENDING_MISC_CNTL
+#define NBIF_PENDING_MISC_CNTL__FLR_MST_PEND_CHK_DIS__SHIFT 0x0
+#define NBIF_PENDING_MISC_CNTL__FLR_SLV_PEND_CHK_DIS__SHIFT 0x1
+#define NBIF_PENDING_MISC_CNTL__FLR_MST_PEND_CHK_DIS_MASK 0x00000001L
+#define NBIF_PENDING_MISC_CNTL__FLR_SLV_PEND_CHK_DIS_MASK 0x00000002L
+//BIF_GMI_WRR_WEIGHT
+#define BIF_GMI_WRR_WEIGHT__GMI_REQ_WRR_LRG_COUNTER_MODE__SHIFT 0x1d
+#define BIF_GMI_WRR_WEIGHT__GMI_REQ_WRR_LRG_MODE__SHIFT 0x1e
+#define BIF_GMI_WRR_WEIGHT__GMI_REQ_WRR_LRG_SIZE_MODE__SHIFT 0x1f
+#define BIF_GMI_WRR_WEIGHT__GMI_REQ_WRR_LRG_COUNTER_MODE_MASK 0x20000000L
+#define BIF_GMI_WRR_WEIGHT__GMI_REQ_WRR_LRG_MODE_MASK 0x40000000L
+#define BIF_GMI_WRR_WEIGHT__GMI_REQ_WRR_LRG_SIZE_MODE_MASK 0x80000000L
+//BIF_GMI_WRR_WEIGHT2
+#define BIF_GMI_WRR_WEIGHT2__GMI_REQ_ENTRY0_WEIGHT__SHIFT 0x0
+#define BIF_GMI_WRR_WEIGHT2__GMI_REQ_ENTRY1_WEIGHT__SHIFT 0x8
+#define BIF_GMI_WRR_WEIGHT2__GMI_REQ_ENTRY2_WEIGHT__SHIFT 0x10
+#define BIF_GMI_WRR_WEIGHT2__GMI_REQ_ENTRY3_WEIGHT__SHIFT 0x18
+#define BIF_GMI_WRR_WEIGHT2__GMI_REQ_ENTRY0_WEIGHT_MASK 0x000000FFL
+#define BIF_GMI_WRR_WEIGHT2__GMI_REQ_ENTRY1_WEIGHT_MASK 0x0000FF00L
+#define BIF_GMI_WRR_WEIGHT2__GMI_REQ_ENTRY2_WEIGHT_MASK 0x00FF0000L
+#define BIF_GMI_WRR_WEIGHT2__GMI_REQ_ENTRY3_WEIGHT_MASK 0xFF000000L
+//BIF_GMI_WRR_WEIGHT3
+#define BIF_GMI_WRR_WEIGHT3__GMI_REQ_ENTRY4_WEIGHT__SHIFT 0x0
+#define BIF_GMI_WRR_WEIGHT3__GMI_REQ_ENTRY5_WEIGHT__SHIFT 0x8
+#define BIF_GMI_WRR_WEIGHT3__GMI_REQ_ENTRY6_WEIGHT__SHIFT 0x10
+#define BIF_GMI_WRR_WEIGHT3__GMI_REQ_ENTRY7_WEIGHT__SHIFT 0x18
+#define BIF_GMI_WRR_WEIGHT3__GMI_REQ_ENTRY4_WEIGHT_MASK 0x000000FFL
+#define BIF_GMI_WRR_WEIGHT3__GMI_REQ_ENTRY5_WEIGHT_MASK 0x0000FF00L
+#define BIF_GMI_WRR_WEIGHT3__GMI_REQ_ENTRY6_WEIGHT_MASK 0x00FF0000L
+#define BIF_GMI_WRR_WEIGHT3__GMI_REQ_ENTRY7_WEIGHT_MASK 0xFF000000L
+//NBIF_PWRBRK_REQUEST
+#define NBIF_PWRBRK_REQUEST__NBIF_PWRBRK_REQUEST__SHIFT 0x0
+#define NBIF_PWRBRK_REQUEST__NBIF_PWRBRK_REQUEST_MASK 0x00000001L
+//BIF_ATOMIC_ERR_LOG_DEV0_F0
+#define BIF_ATOMIC_ERR_LOG_DEV0_F0__UR_ATOMIC_OPCODE_DEV0_F0__SHIFT 0x0
+#define BIF_ATOMIC_ERR_LOG_DEV0_F0__UR_ATOMIC_REQEN_LOW_DEV0_F0__SHIFT 0x1
+#define BIF_ATOMIC_ERR_LOG_DEV0_F0__UR_ATOMIC_LENGTH_DEV0_F0__SHIFT 0x2
+#define BIF_ATOMIC_ERR_LOG_DEV0_F0__UR_ATOMIC_NR_DEV0_F0__SHIFT 0x3
+#define BIF_ATOMIC_ERR_LOG_DEV0_F0__CLEAR_UR_ATOMIC_OPCODE_DEV0_F0__SHIFT 0x10
+#define BIF_ATOMIC_ERR_LOG_DEV0_F0__CLEAR_UR_ATOMIC_REQEN_LOW_DEV0_F0__SHIFT 0x11
+#define BIF_ATOMIC_ERR_LOG_DEV0_F0__CLEAR_UR_ATOMIC_LENGTH_DEV0_F0__SHIFT 0x12
+#define BIF_ATOMIC_ERR_LOG_DEV0_F0__CLEAR_UR_ATOMIC_NR_DEV0_F0__SHIFT 0x13
+#define BIF_ATOMIC_ERR_LOG_DEV0_F0__UR_ATOMIC_OPCODE_DEV0_F0_MASK 0x00000001L
+#define BIF_ATOMIC_ERR_LOG_DEV0_F0__UR_ATOMIC_REQEN_LOW_DEV0_F0_MASK 0x00000002L
+#define BIF_ATOMIC_ERR_LOG_DEV0_F0__UR_ATOMIC_LENGTH_DEV0_F0_MASK 0x00000004L
+#define BIF_ATOMIC_ERR_LOG_DEV0_F0__UR_ATOMIC_NR_DEV0_F0_MASK 0x00000008L
+#define BIF_ATOMIC_ERR_LOG_DEV0_F0__CLEAR_UR_ATOMIC_OPCODE_DEV0_F0_MASK 0x00010000L
+#define BIF_ATOMIC_ERR_LOG_DEV0_F0__CLEAR_UR_ATOMIC_REQEN_LOW_DEV0_F0_MASK 0x00020000L
+#define BIF_ATOMIC_ERR_LOG_DEV0_F0__CLEAR_UR_ATOMIC_LENGTH_DEV0_F0_MASK 0x00040000L
+#define BIF_ATOMIC_ERR_LOG_DEV0_F0__CLEAR_UR_ATOMIC_NR_DEV0_F0_MASK 0x00080000L
+//BIF_ATOMIC_ERR_LOG_DEV0_F1
+#define BIF_ATOMIC_ERR_LOG_DEV0_F1__UR_ATOMIC_OPCODE_DEV0_F1__SHIFT 0x0
+#define BIF_ATOMIC_ERR_LOG_DEV0_F1__UR_ATOMIC_REQEN_LOW_DEV0_F1__SHIFT 0x1
+#define BIF_ATOMIC_ERR_LOG_DEV0_F1__UR_ATOMIC_LENGTH_DEV0_F1__SHIFT 0x2
+#define BIF_ATOMIC_ERR_LOG_DEV0_F1__UR_ATOMIC_NR_DEV0_F1__SHIFT 0x3
+#define BIF_ATOMIC_ERR_LOG_DEV0_F1__CLEAR_UR_ATOMIC_OPCODE_DEV0_F1__SHIFT 0x10
+#define BIF_ATOMIC_ERR_LOG_DEV0_F1__CLEAR_UR_ATOMIC_REQEN_LOW_DEV0_F1__SHIFT 0x11
+#define BIF_ATOMIC_ERR_LOG_DEV0_F1__CLEAR_UR_ATOMIC_LENGTH_DEV0_F1__SHIFT 0x12
+#define BIF_ATOMIC_ERR_LOG_DEV0_F1__CLEAR_UR_ATOMIC_NR_DEV0_F1__SHIFT 0x13
+#define BIF_ATOMIC_ERR_LOG_DEV0_F1__UR_ATOMIC_OPCODE_DEV0_F1_MASK 0x00000001L
+#define BIF_ATOMIC_ERR_LOG_DEV0_F1__UR_ATOMIC_REQEN_LOW_DEV0_F1_MASK 0x00000002L
+#define BIF_ATOMIC_ERR_LOG_DEV0_F1__UR_ATOMIC_LENGTH_DEV0_F1_MASK 0x00000004L
+#define BIF_ATOMIC_ERR_LOG_DEV0_F1__UR_ATOMIC_NR_DEV0_F1_MASK 0x00000008L
+#define BIF_ATOMIC_ERR_LOG_DEV0_F1__CLEAR_UR_ATOMIC_OPCODE_DEV0_F1_MASK 0x00010000L
+#define BIF_ATOMIC_ERR_LOG_DEV0_F1__CLEAR_UR_ATOMIC_REQEN_LOW_DEV0_F1_MASK 0x00020000L
+#define BIF_ATOMIC_ERR_LOG_DEV0_F1__CLEAR_UR_ATOMIC_LENGTH_DEV0_F1_MASK 0x00040000L
+#define BIF_ATOMIC_ERR_LOG_DEV0_F1__CLEAR_UR_ATOMIC_NR_DEV0_F1_MASK 0x00080000L
+//BIF_DMA_MP4_ERR_LOG
+#define BIF_DMA_MP4_ERR_LOG__MP4SDP_VC4_NON_DVM_ERR__SHIFT 0x0
+#define BIF_DMA_MP4_ERR_LOG__MP4SDP_ATOMIC_REQEN_LOW_ERR__SHIFT 0x1
+#define BIF_DMA_MP4_ERR_LOG__CLEAR_MP4SDP_VC4_NON_DVM_ERR__SHIFT 0x10
+#define BIF_DMA_MP4_ERR_LOG__CLEAR_MP4SDP_ATOMIC_REQEN_LOW_ERR__SHIFT 0x11
+#define BIF_DMA_MP4_ERR_LOG__MP4SDP_VC4_NON_DVM_ERR_MASK 0x00000001L
+#define BIF_DMA_MP4_ERR_LOG__MP4SDP_ATOMIC_REQEN_LOW_ERR_MASK 0x00000002L
+#define BIF_DMA_MP4_ERR_LOG__CLEAR_MP4SDP_VC4_NON_DVM_ERR_MASK 0x00010000L
+#define BIF_DMA_MP4_ERR_LOG__CLEAR_MP4SDP_ATOMIC_REQEN_LOW_ERR_MASK 0x00020000L
+//BIF_PASID_ERR_LOG
+#define BIF_PASID_ERR_LOG__PASID_ERR_DEV0_F0__SHIFT 0x0
+#define BIF_PASID_ERR_LOG__PASID_ERR_DEV0_F1__SHIFT 0x1
+#define BIF_PASID_ERR_LOG__PASID_ERR_DEV0_F0_MASK 0x00000001L
+#define BIF_PASID_ERR_LOG__PASID_ERR_DEV0_F1_MASK 0x00000002L
+//BIF_PASID_ERR_CLR
+#define BIF_PASID_ERR_CLR__PASID_ERR_CLR_DEV0_F0__SHIFT 0x0
+#define BIF_PASID_ERR_CLR__PASID_ERR_CLR_DEV0_F1__SHIFT 0x1
+#define BIF_PASID_ERR_CLR__PASID_ERR_CLR_DEV0_F0_MASK 0x00000001L
+#define BIF_PASID_ERR_CLR__PASID_ERR_CLR_DEV0_F1_MASK 0x00000002L
+//NBIF_VWIRE_CTRL
+#define NBIF_VWIRE_CTRL__NBIF_SMN_VWR_DIS__SHIFT 0x0
+#define NBIF_VWIRE_CTRL__SMN_VWR_RESET_DELAY_CNT__SHIFT 0x4
+#define NBIF_VWIRE_CTRL__SMN_VWR_POSTED__SHIFT 0x8
+#define NBIF_VWIRE_CTRL__NBIF_SDP_UPS_VWR_DIS__SHIFT 0x10
+#define NBIF_VWIRE_CTRL__SDP_VWR_RESET_DELAY_CNT__SHIFT 0x14
+#define NBIF_VWIRE_CTRL__SDP_VWR_BLOCKLVL__SHIFT 0x1a
+#define NBIF_VWIRE_CTRL__NBIF_SMN_VWR_DIS_MASK 0x00000001L
+#define NBIF_VWIRE_CTRL__SMN_VWR_RESET_DELAY_CNT_MASK 0x000000F0L
+#define NBIF_VWIRE_CTRL__SMN_VWR_POSTED_MASK 0x00000100L
+#define NBIF_VWIRE_CTRL__NBIF_SDP_UPS_VWR_DIS_MASK 0x00010000L
+#define NBIF_VWIRE_CTRL__SDP_VWR_RESET_DELAY_CNT_MASK 0x00F00000L
+#define NBIF_VWIRE_CTRL__SDP_VWR_BLOCKLVL_MASK 0x0C000000L
+//NBIF_SMN_VWR_VCHG_DIS_CTRL
+#define NBIF_SMN_VWR_VCHG_DIS_CTRL__SMN_VWR_VCHG_SET0_DIS__SHIFT 0x0
+#define NBIF_SMN_VWR_VCHG_DIS_CTRL__SMN_VWR_VCHG_SET1_DIS__SHIFT 0x1
+#define NBIF_SMN_VWR_VCHG_DIS_CTRL__SMN_VWR_VCHG_SET2_DIS__SHIFT 0x2
+#define NBIF_SMN_VWR_VCHG_DIS_CTRL__SMN_VWR_VCHG_SET3_DIS__SHIFT 0x3
+#define NBIF_SMN_VWR_VCHG_DIS_CTRL__SMN_VWR_VCHG_SET4_DIS__SHIFT 0x4
+#define NBIF_SMN_VWR_VCHG_DIS_CTRL__SMN_VWR_VCHG_SET5_DIS__SHIFT 0x5
+#define NBIF_SMN_VWR_VCHG_DIS_CTRL__SMN_VWR_VCHG_SET6_DIS__SHIFT 0x6
+#define NBIF_SMN_VWR_VCHG_DIS_CTRL__SMN_VWR_VCHG_SET0_DIS_MASK 0x00000001L
+#define NBIF_SMN_VWR_VCHG_DIS_CTRL__SMN_VWR_VCHG_SET1_DIS_MASK 0x00000002L
+#define NBIF_SMN_VWR_VCHG_DIS_CTRL__SMN_VWR_VCHG_SET2_DIS_MASK 0x00000004L
+#define NBIF_SMN_VWR_VCHG_DIS_CTRL__SMN_VWR_VCHG_SET3_DIS_MASK 0x00000008L
+#define NBIF_SMN_VWR_VCHG_DIS_CTRL__SMN_VWR_VCHG_SET4_DIS_MASK 0x00000010L
+#define NBIF_SMN_VWR_VCHG_DIS_CTRL__SMN_VWR_VCHG_SET5_DIS_MASK 0x00000020L
+#define NBIF_SMN_VWR_VCHG_DIS_CTRL__SMN_VWR_VCHG_SET6_DIS_MASK 0x00000040L
+//NBIF_SMN_VWR_VCHG_RST_CTRL0
+#define NBIF_SMN_VWR_VCHG_RST_CTRL0__SMN_VWR_VCHG_SET0_RST_DEF_REV__SHIFT 0x0
+#define NBIF_SMN_VWR_VCHG_RST_CTRL0__SMN_VWR_VCHG_SET1_RST_DEF_REV__SHIFT 0x1
+#define NBIF_SMN_VWR_VCHG_RST_CTRL0__SMN_VWR_VCHG_SET2_RST_DEF_REV__SHIFT 0x2
+#define NBIF_SMN_VWR_VCHG_RST_CTRL0__SMN_VWR_VCHG_SET3_RST_DEF_REV__SHIFT 0x3
+#define NBIF_SMN_VWR_VCHG_RST_CTRL0__SMN_VWR_VCHG_SET4_RST_DEF_REV__SHIFT 0x4
+#define NBIF_SMN_VWR_VCHG_RST_CTRL0__SMN_VWR_VCHG_SET5_RST_DEF_REV__SHIFT 0x5
+#define NBIF_SMN_VWR_VCHG_RST_CTRL0__SMN_VWR_VCHG_SET6_RST_DEF_REV__SHIFT 0x6
+#define NBIF_SMN_VWR_VCHG_RST_CTRL0__SMN_VWR_VCHG_SET0_RST_DEF_REV_MASK 0x00000001L
+#define NBIF_SMN_VWR_VCHG_RST_CTRL0__SMN_VWR_VCHG_SET1_RST_DEF_REV_MASK 0x00000002L
+#define NBIF_SMN_VWR_VCHG_RST_CTRL0__SMN_VWR_VCHG_SET2_RST_DEF_REV_MASK 0x00000004L
+#define NBIF_SMN_VWR_VCHG_RST_CTRL0__SMN_VWR_VCHG_SET3_RST_DEF_REV_MASK 0x00000008L
+#define NBIF_SMN_VWR_VCHG_RST_CTRL0__SMN_VWR_VCHG_SET4_RST_DEF_REV_MASK 0x00000010L
+#define NBIF_SMN_VWR_VCHG_RST_CTRL0__SMN_VWR_VCHG_SET5_RST_DEF_REV_MASK 0x00000020L
+#define NBIF_SMN_VWR_VCHG_RST_CTRL0__SMN_VWR_VCHG_SET6_RST_DEF_REV_MASK 0x00000040L
+//NBIF_SMN_VWR_VCHG_TRIG
+#define NBIF_SMN_VWR_VCHG_TRIG__SMN_VWR_VCHG_SET0_TRIG__SHIFT 0x0
+#define NBIF_SMN_VWR_VCHG_TRIG__SMN_VWR_VCHG_SET1_TRIG__SHIFT 0x1
+#define NBIF_SMN_VWR_VCHG_TRIG__SMN_VWR_VCHG_SET2_TRIG__SHIFT 0x2
+#define NBIF_SMN_VWR_VCHG_TRIG__SMN_VWR_VCHG_SET3_TRIG__SHIFT 0x3
+#define NBIF_SMN_VWR_VCHG_TRIG__SMN_VWR_VCHG_SET4_TRIG__SHIFT 0x4
+#define NBIF_SMN_VWR_VCHG_TRIG__SMN_VWR_VCHG_SET5_TRIG__SHIFT 0x5
+#define NBIF_SMN_VWR_VCHG_TRIG__SMN_VWR_VCHG_SET6_TRIG__SHIFT 0x6
+#define NBIF_SMN_VWR_VCHG_TRIG__SMN_VWR_VCHG_SET0_TRIG_MASK 0x00000001L
+#define NBIF_SMN_VWR_VCHG_TRIG__SMN_VWR_VCHG_SET1_TRIG_MASK 0x00000002L
+#define NBIF_SMN_VWR_VCHG_TRIG__SMN_VWR_VCHG_SET2_TRIG_MASK 0x00000004L
+#define NBIF_SMN_VWR_VCHG_TRIG__SMN_VWR_VCHG_SET3_TRIG_MASK 0x00000008L
+#define NBIF_SMN_VWR_VCHG_TRIG__SMN_VWR_VCHG_SET4_TRIG_MASK 0x00000010L
+#define NBIF_SMN_VWR_VCHG_TRIG__SMN_VWR_VCHG_SET5_TRIG_MASK 0x00000020L
+#define NBIF_SMN_VWR_VCHG_TRIG__SMN_VWR_VCHG_SET6_TRIG_MASK 0x00000040L
+//NBIF_SMN_VWR_WTRIG_CNTL
+#define NBIF_SMN_VWR_WTRIG_CNTL__SMN_VWR_WTRIG_SET0_DIS__SHIFT 0x0
+#define NBIF_SMN_VWR_WTRIG_CNTL__SMN_VWR_WTRIG_SET1_DIS__SHIFT 0x1
+#define NBIF_SMN_VWR_WTRIG_CNTL__SMN_VWR_WTRIG_SET2_DIS__SHIFT 0x2
+#define NBIF_SMN_VWR_WTRIG_CNTL__SMN_VWR_WTRIG_SET3_DIS__SHIFT 0x3
+#define NBIF_SMN_VWR_WTRIG_CNTL__SMN_VWR_WTRIG_SET4_DIS__SHIFT 0x4
+#define NBIF_SMN_VWR_WTRIG_CNTL__SMN_VWR_WTRIG_SET5_DIS__SHIFT 0x5
+#define NBIF_SMN_VWR_WTRIG_CNTL__SMN_VWR_WTRIG_SET6_DIS__SHIFT 0x6
+#define NBIF_SMN_VWR_WTRIG_CNTL__SMN_VWR_WTRIG_SET0_DIS_MASK 0x00000001L
+#define NBIF_SMN_VWR_WTRIG_CNTL__SMN_VWR_WTRIG_SET1_DIS_MASK 0x00000002L
+#define NBIF_SMN_VWR_WTRIG_CNTL__SMN_VWR_WTRIG_SET2_DIS_MASK 0x00000004L
+#define NBIF_SMN_VWR_WTRIG_CNTL__SMN_VWR_WTRIG_SET3_DIS_MASK 0x00000008L
+#define NBIF_SMN_VWR_WTRIG_CNTL__SMN_VWR_WTRIG_SET4_DIS_MASK 0x00000010L
+#define NBIF_SMN_VWR_WTRIG_CNTL__SMN_VWR_WTRIG_SET5_DIS_MASK 0x00000020L
+#define NBIF_SMN_VWR_WTRIG_CNTL__SMN_VWR_WTRIG_SET6_DIS_MASK 0x00000040L
+//NBIF_SMN_VWR_VCHG_DIS_CTRL_1
+#define NBIF_SMN_VWR_VCHG_DIS_CTRL_1__SMN_VWR_VCHG_SET0_DIFFDET_DEF_REV__SHIFT 0x0
+#define NBIF_SMN_VWR_VCHG_DIS_CTRL_1__SMN_VWR_VCHG_SET1_DIFFDET_DEF_REV__SHIFT 0x1
+#define NBIF_SMN_VWR_VCHG_DIS_CTRL_1__SMN_VWR_VCHG_SET2_DIFFDET_DEF_REV__SHIFT 0x2
+#define NBIF_SMN_VWR_VCHG_DIS_CTRL_1__SMN_VWR_VCHG_SET3_DIFFDET_DEF_REV__SHIFT 0x3
+#define NBIF_SMN_VWR_VCHG_DIS_CTRL_1__SMN_VWR_VCHG_SET4_DIFFDET_DEF_REV__SHIFT 0x4
+#define NBIF_SMN_VWR_VCHG_DIS_CTRL_1__SMN_VWR_VCHG_SET5_DIFFDET_DEF_REV__SHIFT 0x5
+#define NBIF_SMN_VWR_VCHG_DIS_CTRL_1__SMN_VWR_VCHG_SET6_DIFFDET_DEF_REV__SHIFT 0x6
+#define NBIF_SMN_VWR_VCHG_DIS_CTRL_1__SMN_VWR_VCHG_SET0_DIFFDET_DEF_REV_MASK 0x00000001L
+#define NBIF_SMN_VWR_VCHG_DIS_CTRL_1__SMN_VWR_VCHG_SET1_DIFFDET_DEF_REV_MASK 0x00000002L
+#define NBIF_SMN_VWR_VCHG_DIS_CTRL_1__SMN_VWR_VCHG_SET2_DIFFDET_DEF_REV_MASK 0x00000004L
+#define NBIF_SMN_VWR_VCHG_DIS_CTRL_1__SMN_VWR_VCHG_SET3_DIFFDET_DEF_REV_MASK 0x00000008L
+#define NBIF_SMN_VWR_VCHG_DIS_CTRL_1__SMN_VWR_VCHG_SET4_DIFFDET_DEF_REV_MASK 0x00000010L
+#define NBIF_SMN_VWR_VCHG_DIS_CTRL_1__SMN_VWR_VCHG_SET5_DIFFDET_DEF_REV_MASK 0x00000020L
+#define NBIF_SMN_VWR_VCHG_DIS_CTRL_1__SMN_VWR_VCHG_SET6_DIFFDET_DEF_REV_MASK 0x00000040L
+//NBIF_MGCG_CTRL_LCLK
+#define NBIF_MGCG_CTRL_LCLK__NBIF_MGCG_EN_LCLK__SHIFT 0x0
+#define NBIF_MGCG_CTRL_LCLK__NBIF_MGCG_MODE_LCLK__SHIFT 0x1
+#define NBIF_MGCG_CTRL_LCLK__NBIF_MGCG_HYSTERESIS_LCLK__SHIFT 0x2
+#define NBIF_MGCG_CTRL_LCLK__NBIF_MGCG_HST_DIS_LCLK__SHIFT 0xa
+#define NBIF_MGCG_CTRL_LCLK__NBIF_MGCG_DMA_DIS_LCLK__SHIFT 0xb
+#define NBIF_MGCG_CTRL_LCLK__NBIF_MGCG_REG_DIS_LCLK__SHIFT 0xc
+#define NBIF_MGCG_CTRL_LCLK__NBIF_MGCG_AER_DIS_LCLK__SHIFT 0xd
+#define NBIF_MGCG_CTRL_LCLK__NBIF_SRAM_FGCG_EN_LCLK__SHIFT 0xe
+#define NBIF_MGCG_CTRL_LCLK__NBIF_MGCG_EN_LCLK_MASK 0x00000001L
+#define NBIF_MGCG_CTRL_LCLK__NBIF_MGCG_MODE_LCLK_MASK 0x00000002L
+#define NBIF_MGCG_CTRL_LCLK__NBIF_MGCG_HYSTERESIS_LCLK_MASK 0x000003FCL
+#define NBIF_MGCG_CTRL_LCLK__NBIF_MGCG_HST_DIS_LCLK_MASK 0x00000400L
+#define NBIF_MGCG_CTRL_LCLK__NBIF_MGCG_DMA_DIS_LCLK_MASK 0x00000800L
+#define NBIF_MGCG_CTRL_LCLK__NBIF_MGCG_REG_DIS_LCLK_MASK 0x00001000L
+#define NBIF_MGCG_CTRL_LCLK__NBIF_MGCG_AER_DIS_LCLK_MASK 0x00002000L
+#define NBIF_MGCG_CTRL_LCLK__NBIF_SRAM_FGCG_EN_LCLK_MASK 0x00004000L
+//NBIF_DS_CTRL_LCLK
+#define NBIF_DS_CTRL_LCLK__NBIF_LCLK_DS_EN__SHIFT 0x0
+#define NBIF_DS_CTRL_LCLK__ATHUB_LCLK_DEEPSLEEP_ALLOW_ENABLE__SHIFT 0x1
+#define NBIF_DS_CTRL_LCLK__NBIF_LCLK_DS_TIMER__SHIFT 0x10
+#define NBIF_DS_CTRL_LCLK__NBIF_LCLK_DS_EN_MASK 0x00000001L
+#define NBIF_DS_CTRL_LCLK__ATHUB_LCLK_DEEPSLEEP_ALLOW_ENABLE_MASK 0x00000002L
+#define NBIF_DS_CTRL_LCLK__NBIF_LCLK_DS_TIMER_MASK 0xFFFF0000L
+//SMN_MST_CNTL0
+#define SMN_MST_CNTL0__SMN_ARB_MODE__SHIFT 0x0
+#define SMN_MST_CNTL0__SMN_ZERO_BE_WR_EN_UPS__SHIFT 0x8
+#define SMN_MST_CNTL0__SMN_ZERO_BE_RD_EN_UPS__SHIFT 0x9
+#define SMN_MST_CNTL0__SMN_POST_MASK_EN_UPS__SHIFT 0xa
+#define SMN_MST_CNTL0__MULTI_SMN_TRANS_ID_DIS_UPS__SHIFT 0xb
+#define SMN_MST_CNTL0__SMN_ZERO_BE_WR_EN_DNS_DEV0__SHIFT 0x10
+#define SMN_MST_CNTL0__SMN_ZERO_BE_RD_EN_DNS_DEV0__SHIFT 0x14
+#define SMN_MST_CNTL0__SMN_POST_MASK_EN_DNS_DEV0__SHIFT 0x18
+#define SMN_MST_CNTL0__MULTI_SMN_TRANS_ID_DIS_DNS_DEV0__SHIFT 0x1c
+#define SMN_MST_CNTL0__SMN_ARB_MODE_MASK 0x00000003L
+#define SMN_MST_CNTL0__SMN_ZERO_BE_WR_EN_UPS_MASK 0x00000100L
+#define SMN_MST_CNTL0__SMN_ZERO_BE_RD_EN_UPS_MASK 0x00000200L
+#define SMN_MST_CNTL0__SMN_POST_MASK_EN_UPS_MASK 0x00000400L
+#define SMN_MST_CNTL0__MULTI_SMN_TRANS_ID_DIS_UPS_MASK 0x00000800L
+#define SMN_MST_CNTL0__SMN_ZERO_BE_WR_EN_DNS_DEV0_MASK 0x00010000L
+#define SMN_MST_CNTL0__SMN_ZERO_BE_RD_EN_DNS_DEV0_MASK 0x00100000L
+#define SMN_MST_CNTL0__SMN_POST_MASK_EN_DNS_DEV0_MASK 0x01000000L
+#define SMN_MST_CNTL0__MULTI_SMN_TRANS_ID_DIS_DNS_DEV0_MASK 0x10000000L
+//SMN_MST_EP_CNTL1
+#define SMN_MST_EP_CNTL1__SMN_POST_MASK_EN_EP_DEV0_PF0__SHIFT 0x0
+#define SMN_MST_EP_CNTL1__SMN_POST_MASK_EN_EP_DEV0_PF1__SHIFT 0x1
+#define SMN_MST_EP_CNTL1__SMN_POST_MASK_EN_EP_DEV0_PF2__SHIFT 0x2
+#define SMN_MST_EP_CNTL1__SMN_POST_MASK_EN_EP_DEV0_PF3__SHIFT 0x3
+#define SMN_MST_EP_CNTL1__SMN_POST_MASK_EN_EP_DEV0_PF4__SHIFT 0x4
+#define SMN_MST_EP_CNTL1__SMN_POST_MASK_EN_EP_DEV0_PF5__SHIFT 0x5
+#define SMN_MST_EP_CNTL1__SMN_POST_MASK_EN_EP_DEV0_PF6__SHIFT 0x6
+#define SMN_MST_EP_CNTL1__SMN_POST_MASK_EN_EP_DEV0_PF7__SHIFT 0x7
+#define SMN_MST_EP_CNTL1__SMN_POST_MASK_EN_EP_DEV0_PF0_MASK 0x00000001L
+#define SMN_MST_EP_CNTL1__SMN_POST_MASK_EN_EP_DEV0_PF1_MASK 0x00000002L
+#define SMN_MST_EP_CNTL1__SMN_POST_MASK_EN_EP_DEV0_PF2_MASK 0x00000004L
+#define SMN_MST_EP_CNTL1__SMN_POST_MASK_EN_EP_DEV0_PF3_MASK 0x00000008L
+#define SMN_MST_EP_CNTL1__SMN_POST_MASK_EN_EP_DEV0_PF4_MASK 0x00000010L
+#define SMN_MST_EP_CNTL1__SMN_POST_MASK_EN_EP_DEV0_PF5_MASK 0x00000020L
+#define SMN_MST_EP_CNTL1__SMN_POST_MASK_EN_EP_DEV0_PF6_MASK 0x00000040L
+#define SMN_MST_EP_CNTL1__SMN_POST_MASK_EN_EP_DEV0_PF7_MASK 0x00000080L
+//SMN_MST_EP_CNTL2
+#define SMN_MST_EP_CNTL2__MULTI_SMN_TRANS_ID_DIS_EP_DEV0_PF0__SHIFT 0x0
+#define SMN_MST_EP_CNTL2__MULTI_SMN_TRANS_ID_DIS_EP_DEV0_PF1__SHIFT 0x1
+#define SMN_MST_EP_CNTL2__MULTI_SMN_TRANS_ID_DIS_EP_DEV0_PF2__SHIFT 0x2
+#define SMN_MST_EP_CNTL2__MULTI_SMN_TRANS_ID_DIS_EP_DEV0_PF3__SHIFT 0x3
+#define SMN_MST_EP_CNTL2__MULTI_SMN_TRANS_ID_DIS_EP_DEV0_PF4__SHIFT 0x4
+#define SMN_MST_EP_CNTL2__MULTI_SMN_TRANS_ID_DIS_EP_DEV0_PF5__SHIFT 0x5
+#define SMN_MST_EP_CNTL2__MULTI_SMN_TRANS_ID_DIS_EP_DEV0_PF6__SHIFT 0x6
+#define SMN_MST_EP_CNTL2__MULTI_SMN_TRANS_ID_DIS_EP_DEV0_PF7__SHIFT 0x7
+#define SMN_MST_EP_CNTL2__MULTI_SMN_TRANS_ID_DIS_EP_DEV0_PF0_MASK 0x00000001L
+#define SMN_MST_EP_CNTL2__MULTI_SMN_TRANS_ID_DIS_EP_DEV0_PF1_MASK 0x00000002L
+#define SMN_MST_EP_CNTL2__MULTI_SMN_TRANS_ID_DIS_EP_DEV0_PF2_MASK 0x00000004L
+#define SMN_MST_EP_CNTL2__MULTI_SMN_TRANS_ID_DIS_EP_DEV0_PF3_MASK 0x00000008L
+#define SMN_MST_EP_CNTL2__MULTI_SMN_TRANS_ID_DIS_EP_DEV0_PF4_MASK 0x00000010L
+#define SMN_MST_EP_CNTL2__MULTI_SMN_TRANS_ID_DIS_EP_DEV0_PF5_MASK 0x00000020L
+#define SMN_MST_EP_CNTL2__MULTI_SMN_TRANS_ID_DIS_EP_DEV0_PF6_MASK 0x00000040L
+#define SMN_MST_EP_CNTL2__MULTI_SMN_TRANS_ID_DIS_EP_DEV0_PF7_MASK 0x00000080L
+//NBIF_SDP_VWR_VCHG_DIS_CTRL
+#define NBIF_SDP_VWR_VCHG_DIS_CTRL__SDP_VWR_VCHG_ENDP_F0_DIS__SHIFT 0x0
+#define NBIF_SDP_VWR_VCHG_DIS_CTRL__SDP_VWR_VCHG_ENDP_F1_DIS__SHIFT 0x1
+#define NBIF_SDP_VWR_VCHG_DIS_CTRL__SDP_VWR_VCHG_ENDP_F2_DIS__SHIFT 0x2
+#define NBIF_SDP_VWR_VCHG_DIS_CTRL__SDP_VWR_VCHG_ENDP_F3_DIS__SHIFT 0x3
+#define NBIF_SDP_VWR_VCHG_DIS_CTRL__SDP_VWR_VCHG_ENDP_F4_DIS__SHIFT 0x4
+#define NBIF_SDP_VWR_VCHG_DIS_CTRL__SDP_VWR_VCHG_ENDP_F5_DIS__SHIFT 0x5
+#define NBIF_SDP_VWR_VCHG_DIS_CTRL__SDP_VWR_VCHG_ENDP_F6_DIS__SHIFT 0x6
+#define NBIF_SDP_VWR_VCHG_DIS_CTRL__SDP_VWR_VCHG_ENDP_F7_DIS__SHIFT 0x7
+#define NBIF_SDP_VWR_VCHG_DIS_CTRL__SDP_VWR_VCHG_SWDS_P0_DIS__SHIFT 0x18
+#define NBIF_SDP_VWR_VCHG_DIS_CTRL__SDP_VWR_VCHG_ENDP_F0_DIS_MASK 0x00000001L
+#define NBIF_SDP_VWR_VCHG_DIS_CTRL__SDP_VWR_VCHG_ENDP_F1_DIS_MASK 0x00000002L
+#define NBIF_SDP_VWR_VCHG_DIS_CTRL__SDP_VWR_VCHG_ENDP_F2_DIS_MASK 0x00000004L
+#define NBIF_SDP_VWR_VCHG_DIS_CTRL__SDP_VWR_VCHG_ENDP_F3_DIS_MASK 0x00000008L
+#define NBIF_SDP_VWR_VCHG_DIS_CTRL__SDP_VWR_VCHG_ENDP_F4_DIS_MASK 0x00000010L
+#define NBIF_SDP_VWR_VCHG_DIS_CTRL__SDP_VWR_VCHG_ENDP_F5_DIS_MASK 0x00000020L
+#define NBIF_SDP_VWR_VCHG_DIS_CTRL__SDP_VWR_VCHG_ENDP_F6_DIS_MASK 0x00000040L
+#define NBIF_SDP_VWR_VCHG_DIS_CTRL__SDP_VWR_VCHG_ENDP_F7_DIS_MASK 0x00000080L
+#define NBIF_SDP_VWR_VCHG_DIS_CTRL__SDP_VWR_VCHG_SWDS_P0_DIS_MASK 0x01000000L
+//NBIF_SDP_VWR_VCHG_RST_CTRL0
+#define NBIF_SDP_VWR_VCHG_RST_CTRL0__SDP_VWR_VCHG_ENDP_F0_RST_OVRD_EN__SHIFT 0x0
+#define NBIF_SDP_VWR_VCHG_RST_CTRL0__SDP_VWR_VCHG_ENDP_F1_RST_OVRD_EN__SHIFT 0x1
+#define NBIF_SDP_VWR_VCHG_RST_CTRL0__SDP_VWR_VCHG_ENDP_F2_RST_OVRD_EN__SHIFT 0x2
+#define NBIF_SDP_VWR_VCHG_RST_CTRL0__SDP_VWR_VCHG_ENDP_F3_RST_OVRD_EN__SHIFT 0x3
+#define NBIF_SDP_VWR_VCHG_RST_CTRL0__SDP_VWR_VCHG_ENDP_F4_RST_OVRD_EN__SHIFT 0x4
+#define NBIF_SDP_VWR_VCHG_RST_CTRL0__SDP_VWR_VCHG_ENDP_F5_RST_OVRD_EN__SHIFT 0x5
+#define NBIF_SDP_VWR_VCHG_RST_CTRL0__SDP_VWR_VCHG_ENDP_F6_RST_OVRD_EN__SHIFT 0x6
+#define NBIF_SDP_VWR_VCHG_RST_CTRL0__SDP_VWR_VCHG_ENDP_F7_RST_OVRD_EN__SHIFT 0x7
+#define NBIF_SDP_VWR_VCHG_RST_CTRL0__SDP_VWR_VCHG_SWDS_P0_RST_OVRD_EN__SHIFT 0x18
+#define NBIF_SDP_VWR_VCHG_RST_CTRL0__SDP_VWR_VCHG_ENDP_F0_RST_OVRD_EN_MASK 0x00000001L
+#define NBIF_SDP_VWR_VCHG_RST_CTRL0__SDP_VWR_VCHG_ENDP_F1_RST_OVRD_EN_MASK 0x00000002L
+#define NBIF_SDP_VWR_VCHG_RST_CTRL0__SDP_VWR_VCHG_ENDP_F2_RST_OVRD_EN_MASK 0x00000004L
+#define NBIF_SDP_VWR_VCHG_RST_CTRL0__SDP_VWR_VCHG_ENDP_F3_RST_OVRD_EN_MASK 0x00000008L
+#define NBIF_SDP_VWR_VCHG_RST_CTRL0__SDP_VWR_VCHG_ENDP_F4_RST_OVRD_EN_MASK 0x00000010L
+#define NBIF_SDP_VWR_VCHG_RST_CTRL0__SDP_VWR_VCHG_ENDP_F5_RST_OVRD_EN_MASK 0x00000020L
+#define NBIF_SDP_VWR_VCHG_RST_CTRL0__SDP_VWR_VCHG_ENDP_F6_RST_OVRD_EN_MASK 0x00000040L
+#define NBIF_SDP_VWR_VCHG_RST_CTRL0__SDP_VWR_VCHG_ENDP_F7_RST_OVRD_EN_MASK 0x00000080L
+#define NBIF_SDP_VWR_VCHG_RST_CTRL0__SDP_VWR_VCHG_SWDS_P0_RST_OVRD_EN_MASK 0x01000000L
+//NBIF_SDP_VWR_VCHG_RST_CTRL1
+#define NBIF_SDP_VWR_VCHG_RST_CTRL1__SDP_VWR_VCHG_ENDP_F0_RST_OVRD_VAL__SHIFT 0x0
+#define NBIF_SDP_VWR_VCHG_RST_CTRL1__SDP_VWR_VCHG_ENDP_F1_RST_OVRD_VAL__SHIFT 0x1
+#define NBIF_SDP_VWR_VCHG_RST_CTRL1__SDP_VWR_VCHG_ENDP_F2_RST_OVRD_VAL__SHIFT 0x2
+#define NBIF_SDP_VWR_VCHG_RST_CTRL1__SDP_VWR_VCHG_ENDP_F3_RST_OVRD_VAL__SHIFT 0x3
+#define NBIF_SDP_VWR_VCHG_RST_CTRL1__SDP_VWR_VCHG_ENDP_F4_RST_OVRD_VAL__SHIFT 0x4
+#define NBIF_SDP_VWR_VCHG_RST_CTRL1__SDP_VWR_VCHG_ENDP_F5_RST_OVRD_VAL__SHIFT 0x5
+#define NBIF_SDP_VWR_VCHG_RST_CTRL1__SDP_VWR_VCHG_ENDP_F6_RST_OVRD_VAL__SHIFT 0x6
+#define NBIF_SDP_VWR_VCHG_RST_CTRL1__SDP_VWR_VCHG_ENDP_F7_RST_OVRD_VAL__SHIFT 0x7
+#define NBIF_SDP_VWR_VCHG_RST_CTRL1__SDP_VWR_VCHG_SWDS_P0_RST_OVRD_VAL__SHIFT 0x18
+#define NBIF_SDP_VWR_VCHG_RST_CTRL1__SDP_VWR_VCHG_ENDP_F0_RST_OVRD_VAL_MASK 0x00000001L
+#define NBIF_SDP_VWR_VCHG_RST_CTRL1__SDP_VWR_VCHG_ENDP_F1_RST_OVRD_VAL_MASK 0x00000002L
+#define NBIF_SDP_VWR_VCHG_RST_CTRL1__SDP_VWR_VCHG_ENDP_F2_RST_OVRD_VAL_MASK 0x00000004L
+#define NBIF_SDP_VWR_VCHG_RST_CTRL1__SDP_VWR_VCHG_ENDP_F3_RST_OVRD_VAL_MASK 0x00000008L
+#define NBIF_SDP_VWR_VCHG_RST_CTRL1__SDP_VWR_VCHG_ENDP_F4_RST_OVRD_VAL_MASK 0x00000010L
+#define NBIF_SDP_VWR_VCHG_RST_CTRL1__SDP_VWR_VCHG_ENDP_F5_RST_OVRD_VAL_MASK 0x00000020L
+#define NBIF_SDP_VWR_VCHG_RST_CTRL1__SDP_VWR_VCHG_ENDP_F6_RST_OVRD_VAL_MASK 0x00000040L
+#define NBIF_SDP_VWR_VCHG_RST_CTRL1__SDP_VWR_VCHG_ENDP_F7_RST_OVRD_VAL_MASK 0x00000080L
+#define NBIF_SDP_VWR_VCHG_RST_CTRL1__SDP_VWR_VCHG_SWDS_P0_RST_OVRD_VAL_MASK 0x01000000L
+//NBIF_SDP_VWR_VCHG_TRIG
+#define NBIF_SDP_VWR_VCHG_TRIG__SDP_VWR_VCHG_ENDP_F0_TRIG__SHIFT 0x0
+#define NBIF_SDP_VWR_VCHG_TRIG__SDP_VWR_VCHG_ENDP_F1_TRIG__SHIFT 0x1
+#define NBIF_SDP_VWR_VCHG_TRIG__SDP_VWR_VCHG_ENDP_F2_TRIG__SHIFT 0x2
+#define NBIF_SDP_VWR_VCHG_TRIG__SDP_VWR_VCHG_ENDP_F3_TRIG__SHIFT 0x3
+#define NBIF_SDP_VWR_VCHG_TRIG__SDP_VWR_VCHG_ENDP_F4_TRIG__SHIFT 0x4
+#define NBIF_SDP_VWR_VCHG_TRIG__SDP_VWR_VCHG_ENDP_F5_TRIG__SHIFT 0x5
+#define NBIF_SDP_VWR_VCHG_TRIG__SDP_VWR_VCHG_ENDP_F6_TRIG__SHIFT 0x6
+#define NBIF_SDP_VWR_VCHG_TRIG__SDP_VWR_VCHG_ENDP_F7_TRIG__SHIFT 0x7
+#define NBIF_SDP_VWR_VCHG_TRIG__SDP_VWR_VCHG_SWDS_P0_TRIG__SHIFT 0x18
+#define NBIF_SDP_VWR_VCHG_TRIG__SDP_VWR_VCHG_ENDP_F0_TRIG_MASK 0x00000001L
+#define NBIF_SDP_VWR_VCHG_TRIG__SDP_VWR_VCHG_ENDP_F1_TRIG_MASK 0x00000002L
+#define NBIF_SDP_VWR_VCHG_TRIG__SDP_VWR_VCHG_ENDP_F2_TRIG_MASK 0x00000004L
+#define NBIF_SDP_VWR_VCHG_TRIG__SDP_VWR_VCHG_ENDP_F3_TRIG_MASK 0x00000008L
+#define NBIF_SDP_VWR_VCHG_TRIG__SDP_VWR_VCHG_ENDP_F4_TRIG_MASK 0x00000010L
+#define NBIF_SDP_VWR_VCHG_TRIG__SDP_VWR_VCHG_ENDP_F5_TRIG_MASK 0x00000020L
+#define NBIF_SDP_VWR_VCHG_TRIG__SDP_VWR_VCHG_ENDP_F6_TRIG_MASK 0x00000040L
+#define NBIF_SDP_VWR_VCHG_TRIG__SDP_VWR_VCHG_ENDP_F7_TRIG_MASK 0x00000080L
+#define NBIF_SDP_VWR_VCHG_TRIG__SDP_VWR_VCHG_SWDS_P0_TRIG_MASK 0x01000000L
+//NBIF_SHUB_TODET_CTRL
+#define NBIF_SHUB_TODET_CTRL__NBIF_SHUB_TODET_EN__SHIFT 0x0
+#define NBIF_SHUB_TODET_CTRL__NBIF_SHUB_TODET_AER_LOG_EN__SHIFT 0x1
+#define NBIF_SHUB_TODET_CTRL__NBIF_SHUB_TODET_TIMER_UNIT__SHIFT 0x8
+#define NBIF_SHUB_TODET_CTRL__NBIF_SHUB_TIMEOUT_COUNT__SHIFT 0x10
+#define NBIF_SHUB_TODET_CTRL__NBIF_SHUB_TODET_EN_MASK 0x00000001L
+#define NBIF_SHUB_TODET_CTRL__NBIF_SHUB_TODET_AER_LOG_EN_MASK 0x00000002L
+#define NBIF_SHUB_TODET_CTRL__NBIF_SHUB_TODET_TIMER_UNIT_MASK 0x00000700L
+#define NBIF_SHUB_TODET_CTRL__NBIF_SHUB_TIMEOUT_COUNT_MASK 0xFFFF0000L
+//NBIF_SHUB_TODET_CLIENT_CTRL
+#define NBIF_SHUB_TODET_CLIENT_CTRL__NBIF_SHUB_TODET_SLVERR_EN__SHIFT 0x0
+#define NBIF_SHUB_TODET_CLIENT_CTRL__NBIF_SHUB_TODET_SLVERR_EN_MASK 0xFFFFFFFFL
+//NBIF_SHUB_TODET_CLIENT_STATUS
+#define NBIF_SHUB_TODET_CLIENT_STATUS__NBIF_SHUB_TODET_CLIENT_STATUS__SHIFT 0x0
+#define NBIF_SHUB_TODET_CLIENT_STATUS__NBIF_SHUB_TODET_CLIENT_STATUS_MASK 0xFFFFFFFFL
+//NBIF_SHUB_TODET_SYNCFLOOD_CTRL
+#define NBIF_SHUB_TODET_SYNCFLOOD_CTRL__NBIF_SHUB_TODET_SYNCFLOOD_EN__SHIFT 0x0
+#define NBIF_SHUB_TODET_SYNCFLOOD_CTRL__NBIF_SHUB_TODET_SYNCFLOOD_EN_MASK 0xFFFFFFFFL
+//NBIF_SHUB_TODET_CLIENT_CTRL2
+#define NBIF_SHUB_TODET_CLIENT_CTRL2__NBIF_SHUB_TODET_SLVERR_EN2__SHIFT 0x0
+#define NBIF_SHUB_TODET_CLIENT_CTRL2__NBIF_SHUB_TODET_SLVERR_EN2_MASK 0xFFFFFFFFL
+//NBIF_SHUB_TODET_CLIENT_STATUS2
+#define NBIF_SHUB_TODET_CLIENT_STATUS2__NBIF_SHUB_TODET_CLIENT_STATUS2__SHIFT 0x0
+#define NBIF_SHUB_TODET_CLIENT_STATUS2__NBIF_SHUB_TODET_CLIENT_STATUS2_MASK 0xFFFFFFFFL
+//NBIF_SHUB_TODET_SYNCFLOOD_CTRL2
+#define NBIF_SHUB_TODET_SYNCFLOOD_CTRL2__NBIF_SHUB_TODET_SYNCFLOOD_EN2__SHIFT 0x0
+#define NBIF_SHUB_TODET_SYNCFLOOD_CTRL2__NBIF_SHUB_TODET_SYNCFLOOD_EN2_MASK 0xFFFFFFFFL
+//BIFC_BME_ERR_LOG_HB
+//BIFC_HRP_SDP_WRRSP_POOLCRED_ALLOC
+#define BIFC_HRP_SDP_WRRSP_POOLCRED_ALLOC__VC0_ALLOC__SHIFT 0x0
+#define BIFC_HRP_SDP_WRRSP_POOLCRED_ALLOC__VC1_ALLOC__SHIFT 0x4
+#define BIFC_HRP_SDP_WRRSP_POOLCRED_ALLOC__VC0_ALLOC_MASK 0x0000000FL
+#define BIFC_HRP_SDP_WRRSP_POOLCRED_ALLOC__VC1_ALLOC_MASK 0x000000F0L
+//BIFC_HRP_SDP_RDRSP_POOLCRED_ALLOC
+#define BIFC_HRP_SDP_RDRSP_POOLCRED_ALLOC__VC0_ALLOC__SHIFT 0x0
+#define BIFC_HRP_SDP_RDRSP_POOLCRED_ALLOC__VC1_ALLOC__SHIFT 0x4
+#define BIFC_HRP_SDP_RDRSP_POOLCRED_ALLOC__VC0_ALLOC_MASK 0x0000000FL
+#define BIFC_HRP_SDP_RDRSP_POOLCRED_ALLOC__VC1_ALLOC_MASK 0x000000F0L
+//BIFC_GMI_SDP_REQ_POOLCRED_ALLOC
+#define BIFC_GMI_SDP_REQ_POOLCRED_ALLOC__VC0_ALLOC__SHIFT 0x0
+#define BIFC_GMI_SDP_REQ_POOLCRED_ALLOC__VC1_ALLOC__SHIFT 0x4
+#define BIFC_GMI_SDP_REQ_POOLCRED_ALLOC__VC2_ALLOC__SHIFT 0x8
+#define BIFC_GMI_SDP_REQ_POOLCRED_ALLOC__VC3_ALLOC__SHIFT 0xc
+#define BIFC_GMI_SDP_REQ_POOLCRED_ALLOC__VC4_ALLOC__SHIFT 0x10
+#define BIFC_GMI_SDP_REQ_POOLCRED_ALLOC__VC5_ALLOC__SHIFT 0x14
+#define BIFC_GMI_SDP_REQ_POOLCRED_ALLOC__VC6_ALLOC__SHIFT 0x18
+#define BIFC_GMI_SDP_REQ_POOLCRED_ALLOC__VC7_ALLOC__SHIFT 0x1c
+#define BIFC_GMI_SDP_REQ_POOLCRED_ALLOC__VC0_ALLOC_MASK 0x0000000FL
+#define BIFC_GMI_SDP_REQ_POOLCRED_ALLOC__VC1_ALLOC_MASK 0x000000F0L
+#define BIFC_GMI_SDP_REQ_POOLCRED_ALLOC__VC2_ALLOC_MASK 0x00000F00L
+#define BIFC_GMI_SDP_REQ_POOLCRED_ALLOC__VC3_ALLOC_MASK 0x0000F000L
+#define BIFC_GMI_SDP_REQ_POOLCRED_ALLOC__VC4_ALLOC_MASK 0x000F0000L
+#define BIFC_GMI_SDP_REQ_POOLCRED_ALLOC__VC5_ALLOC_MASK 0x00F00000L
+#define BIFC_GMI_SDP_REQ_POOLCRED_ALLOC__VC6_ALLOC_MASK 0x0F000000L
+#define BIFC_GMI_SDP_REQ_POOLCRED_ALLOC__VC7_ALLOC_MASK 0xF0000000L
+//BIFC_GMI_SDP_DAT_POOLCRED_ALLOC
+#define BIFC_GMI_SDP_DAT_POOLCRED_ALLOC__VC0_ALLOC__SHIFT 0x0
+#define BIFC_GMI_SDP_DAT_POOLCRED_ALLOC__VC1_ALLOC__SHIFT 0x4
+#define BIFC_GMI_SDP_DAT_POOLCRED_ALLOC__VC2_ALLOC__SHIFT 0x8
+#define BIFC_GMI_SDP_DAT_POOLCRED_ALLOC__VC3_ALLOC__SHIFT 0xc
+#define BIFC_GMI_SDP_DAT_POOLCRED_ALLOC__VC4_ALLOC__SHIFT 0x10
+#define BIFC_GMI_SDP_DAT_POOLCRED_ALLOC__VC5_ALLOC__SHIFT 0x14
+#define BIFC_GMI_SDP_DAT_POOLCRED_ALLOC__VC6_ALLOC__SHIFT 0x18
+#define BIFC_GMI_SDP_DAT_POOLCRED_ALLOC__VC7_ALLOC__SHIFT 0x1c
+#define BIFC_GMI_SDP_DAT_POOLCRED_ALLOC__VC0_ALLOC_MASK 0x0000000FL
+#define BIFC_GMI_SDP_DAT_POOLCRED_ALLOC__VC1_ALLOC_MASK 0x000000F0L
+#define BIFC_GMI_SDP_DAT_POOLCRED_ALLOC__VC2_ALLOC_MASK 0x00000F00L
+#define BIFC_GMI_SDP_DAT_POOLCRED_ALLOC__VC3_ALLOC_MASK 0x0000F000L
+#define BIFC_GMI_SDP_DAT_POOLCRED_ALLOC__VC4_ALLOC_MASK 0x000F0000L
+#define BIFC_GMI_SDP_DAT_POOLCRED_ALLOC__VC5_ALLOC_MASK 0x00F00000L
+#define BIFC_GMI_SDP_DAT_POOLCRED_ALLOC__VC6_ALLOC_MASK 0x0F000000L
+#define BIFC_GMI_SDP_DAT_POOLCRED_ALLOC__VC7_ALLOC_MASK 0xF0000000L
+//DISCON_HYSTERESIS_HEAD_CTRL
+#define DISCON_HYSTERESIS_HEAD_CTRL__GMI_DNS_SDP_DISCON_HYSTERESIS_H__SHIFT 0x0
+#define DISCON_HYSTERESIS_HEAD_CTRL__GMI_UPS_SDP_DISCON_HYSTERESIS_H__SHIFT 0x8
+#define DISCON_HYSTERESIS_HEAD_CTRL__GMI_DNS_SDP_DISCON_HYSTERESIS_H_MASK 0x0000000FL
+#define DISCON_HYSTERESIS_HEAD_CTRL__GMI_UPS_SDP_DISCON_HYSTERESIS_H_MASK 0x00000F00L
+//BIFC_EARLY_WAKEUP_CNTL
+#define BIFC_EARLY_WAKEUP_CNTL__NBIF_EARLY_WAKEUP_BY_CLIENT_ACTIVE__SHIFT 0x0
+#define BIFC_EARLY_WAKEUP_CNTL__NBIF_EARLY_WAKEUP_BY_CLIENT_DS_EXIT__SHIFT 0x1
+#define BIFC_EARLY_WAKEUP_CNTL__NBIF_EARLY_WAKEUP_ALLOW_AER_ACTIVE__SHIFT 0x2
+#define BIFC_EARLY_WAKEUP_CNTL__NBIF_EARLY_WAKEUP_BY_CLIENT_ACTIVE_MASK 0x00000001L
+#define BIFC_EARLY_WAKEUP_CNTL__NBIF_EARLY_WAKEUP_BY_CLIENT_DS_EXIT_MASK 0x00000002L
+#define BIFC_EARLY_WAKEUP_CNTL__NBIF_EARLY_WAKEUP_ALLOW_AER_ACTIVE_MASK 0x00000004L
+//BIFC_PERF_CNT_MMIO_RD_H16BIT
+#define BIFC_PERF_CNT_MMIO_RD_H16BIT__PERF_CNT_MMIO_RD_VALUE_H16BIT__SHIFT 0x0
+#define BIFC_PERF_CNT_MMIO_RD_H16BIT__PERF_CNT_MMIO_RD_VALUE_H16BIT_MASK 0x0000FFFFL
+//BIFC_PERF_CNT_MMIO_WR_H16BIT
+#define BIFC_PERF_CNT_MMIO_WR_H16BIT__PERF_CNT_MMIO_WR_VALUE_H16BIT__SHIFT 0x0
+#define BIFC_PERF_CNT_MMIO_WR_H16BIT__PERF_CNT_MMIO_WR_VALUE_H16BIT_MASK 0x0000FFFFL
+//BIFC_PERF_CNT_DMA_RD_H16BIT
+#define BIFC_PERF_CNT_DMA_RD_H16BIT__PERF_CNT_DMA_RD_VALUE_H16BIT__SHIFT 0x0
+#define BIFC_PERF_CNT_DMA_RD_H16BIT__PERF_CNT_DMA_RD_VALUE_H16BIT_MASK 0x0000FFFFL
+//BIFC_PERF_CNT_DMA_WR_H16BIT
+#define BIFC_PERF_CNT_DMA_WR_H16BIT__PERF_CNT_DMA_WR_VALUE_H16BIT__SHIFT 0x0
+#define BIFC_PERF_CNT_DMA_WR_H16BIT__PERF_CNT_DMA_WR_VALUE_H16BIT_MASK 0x0000FFFFL
+//BIFC_A2S_SDP_PORT_CTRL
+#define BIFC_A2S_SDP_PORT_CTRL__SDP_DISCON_HYSTERESIS__SHIFT 0x0
+#define BIFC_A2S_SDP_PORT_CTRL__SDP_DISCON_HYSTERESIS_H__SHIFT 0x8
+#define BIFC_A2S_SDP_PORT_CTRL__SDP_DISCON_DIS__SHIFT 0xc
+#define BIFC_A2S_SDP_PORT_CTRL__SDP_DISCON_HYSTERESIS_MASK 0x000000FFL
+#define BIFC_A2S_SDP_PORT_CTRL__SDP_DISCON_HYSTERESIS_H_MASK 0x00000F00L
+#define BIFC_A2S_SDP_PORT_CTRL__SDP_DISCON_DIS_MASK 0x00001000L
+//BIFC_A2S_CNTL_SW0
+#define BIFC_A2S_CNTL_SW0__RDRSP_ERRMAP__SHIFT 0x0
+#define BIFC_A2S_CNTL_SW0__RDRSP_SEL_MODE__SHIFT 0x2
+#define BIFC_A2S_CNTL_SW0__STATIC_VC_ENABLE__SHIFT 0x5
+#define BIFC_A2S_CNTL_SW0__STATIC_VC_VALUE__SHIFT 0x6
+#define BIFC_A2S_CNTL_SW0__SDP_WR_CHAIN_DIS__SHIFT 0x9
+#define BIFC_A2S_CNTL_SW0__WR_TAG_FOR_CHAIN_ENABLE__SHIFT 0xa
+#define BIFC_A2S_CNTL_SW0__WR_TAG_FOR_NONCHAIN_ENABLE__SHIFT 0xb
+#define BIFC_A2S_CNTL_SW0__SDP_DYNAMIC_VC_WR_CHAIN_DIS__SHIFT 0xc
+#define BIFC_A2S_CNTL_SW0__WRR_RD_WEIGHT__SHIFT 0x10
+#define BIFC_A2S_CNTL_SW0__WRR_WR_WEIGHT__SHIFT 0x18
+#define BIFC_A2S_CNTL_SW0__RDRSP_ERRMAP_MASK 0x00000003L
+#define BIFC_A2S_CNTL_SW0__RDRSP_SEL_MODE_MASK 0x0000001CL
+#define BIFC_A2S_CNTL_SW0__STATIC_VC_ENABLE_MASK 0x00000020L
+#define BIFC_A2S_CNTL_SW0__STATIC_VC_VALUE_MASK 0x000001C0L
+#define BIFC_A2S_CNTL_SW0__SDP_WR_CHAIN_DIS_MASK 0x00000200L
+#define BIFC_A2S_CNTL_SW0__WR_TAG_FOR_CHAIN_ENABLE_MASK 0x00000400L
+#define BIFC_A2S_CNTL_SW0__WR_TAG_FOR_NONCHAIN_ENABLE_MASK 0x00000800L
+#define BIFC_A2S_CNTL_SW0__SDP_DYNAMIC_VC_WR_CHAIN_DIS_MASK 0x00001000L
+#define BIFC_A2S_CNTL_SW0__WRR_RD_WEIGHT_MASK 0x00FF0000L
+#define BIFC_A2S_CNTL_SW0__WRR_WR_WEIGHT_MASK 0xFF000000L
+//BIFC_A2S_MISC_CNTL
+#define BIFC_A2S_MISC_CNTL__BLKLVL_FOR_MSG__SHIFT 0x0
+#define BIFC_A2S_MISC_CNTL__RESERVE_2_CRED_FOR_NPWR_REQ_DIS__SHIFT 0x2
+#define BIFC_A2S_MISC_CNTL__WRR_LRG_SIZE_MODE__SHIFT 0x3
+#define BIFC_A2S_MISC_CNTL__FORCE_RSP_REORDER_EN__SHIFT 0x4
+#define BIFC_A2S_MISC_CNTL__RSP_REORDER_DIS__SHIFT 0x5
+#define BIFC_A2S_MISC_CNTL__WRRSP_ACCUM_SEL__SHIFT 0x6
+#define BIFC_A2S_MISC_CNTL__WRRSP_TAGFIFO_CONT_RD_DIS__SHIFT 0x7
+#define BIFC_A2S_MISC_CNTL__RDRSP_TAGFIFO_CONT_RD_DIS__SHIFT 0x8
+#define BIFC_A2S_MISC_CNTL__RDRSP_STS_DATSTS_PRIORITY__SHIFT 0x9
+#define BIFC_A2S_MISC_CNTL__INSERT_RD_ON_2ND_WDAT_EN__SHIFT 0xa
+#define BIFC_A2S_MISC_CNTL__WR_TAG_SET_MIN__SHIFT 0x10
+#define BIFC_A2S_MISC_CNTL__RD_TAG_SET_MIN__SHIFT 0x15
+#define BIFC_A2S_MISC_CNTL__WRR_LRG_MODE__SHIFT 0x1a
+#define BIFC_A2S_MISC_CNTL__WRR_LRG_COUNTER_MODE__SHIFT 0x1b
+#define BIFC_A2S_MISC_CNTL__BYPASS_OVERRIDE_EN__SHIFT 0x1c
+#define BIFC_A2S_MISC_CNTL__BYPASS_OVERRIDE_VALUE__SHIFT 0x1d
+#define BIFC_A2S_MISC_CNTL__BLKLVL_FOR_MSG_MASK 0x00000003L
+#define BIFC_A2S_MISC_CNTL__RESERVE_2_CRED_FOR_NPWR_REQ_DIS_MASK 0x00000004L
+#define BIFC_A2S_MISC_CNTL__WRR_LRG_SIZE_MODE_MASK 0x00000008L
+#define BIFC_A2S_MISC_CNTL__FORCE_RSP_REORDER_EN_MASK 0x00000010L
+#define BIFC_A2S_MISC_CNTL__RSP_REORDER_DIS_MASK 0x00000020L
+#define BIFC_A2S_MISC_CNTL__WRRSP_ACCUM_SEL_MASK 0x00000040L
+#define BIFC_A2S_MISC_CNTL__WRRSP_TAGFIFO_CONT_RD_DIS_MASK 0x00000080L
+#define BIFC_A2S_MISC_CNTL__RDRSP_TAGFIFO_CONT_RD_DIS_MASK 0x00000100L
+#define BIFC_A2S_MISC_CNTL__RDRSP_STS_DATSTS_PRIORITY_MASK 0x00000200L
+#define BIFC_A2S_MISC_CNTL__INSERT_RD_ON_2ND_WDAT_EN_MASK 0x00000400L
+#define BIFC_A2S_MISC_CNTL__WR_TAG_SET_MIN_MASK 0x001F0000L
+#define BIFC_A2S_MISC_CNTL__RD_TAG_SET_MIN_MASK 0x03E00000L
+#define BIFC_A2S_MISC_CNTL__WRR_LRG_MODE_MASK 0x04000000L
+#define BIFC_A2S_MISC_CNTL__WRR_LRG_COUNTER_MODE_MASK 0x08000000L
+#define BIFC_A2S_MISC_CNTL__BYPASS_OVERRIDE_EN_MASK 0x10000000L
+#define BIFC_A2S_MISC_CNTL__BYPASS_OVERRIDE_VALUE_MASK 0x20000000L
+//BIFC_A2S_TAG_ALLOC_0
+#define BIFC_A2S_TAG_ALLOC_0__TAG_ALLOC_FOR_VC0_WR__SHIFT 0x0
+#define BIFC_A2S_TAG_ALLOC_0__TAG_ALLOC_FOR_VC0_RD__SHIFT 0x8
+#define BIFC_A2S_TAG_ALLOC_0__TAG_ALLOC_FOR_VC1_WR__SHIFT 0x10
+#define BIFC_A2S_TAG_ALLOC_0__TAG_ALLOC_FOR_VC0_WR_MASK 0x000000FFL
+#define BIFC_A2S_TAG_ALLOC_0__TAG_ALLOC_FOR_VC0_RD_MASK 0x0000FF00L
+#define BIFC_A2S_TAG_ALLOC_0__TAG_ALLOC_FOR_VC1_WR_MASK 0x00FF0000L
+//BIFC_A2S_TAG_ALLOC_1
+#define BIFC_A2S_TAG_ALLOC_1__TAG_ALLOC_FOR_VC3_WR__SHIFT 0x0
+#define BIFC_A2S_TAG_ALLOC_1__TAG_ALLOC_FOR_VC7_WR__SHIFT 0x10
+#define BIFC_A2S_TAG_ALLOC_1__TAG_ALLOC_FOR_VC7_RD__SHIFT 0x18
+#define BIFC_A2S_TAG_ALLOC_1__TAG_ALLOC_FOR_VC3_WR_MASK 0x000000FFL
+#define BIFC_A2S_TAG_ALLOC_1__TAG_ALLOC_FOR_VC7_WR_MASK 0x00FF0000L
+#define BIFC_A2S_TAG_ALLOC_1__TAG_ALLOC_FOR_VC7_RD_MASK 0xFF000000L
+//BIFC_A2S_CNTL_CL0
+#define BIFC_A2S_CNTL_CL0__NSNOOP_MAP__SHIFT 0x0
+#define BIFC_A2S_CNTL_CL0__REQPASSPW_VC0_MAP__SHIFT 0x2
+#define BIFC_A2S_CNTL_CL0__REQPASSPW_NVC0_MAP__SHIFT 0x4
+#define BIFC_A2S_CNTL_CL0__REQRSPPASSPW_VC0_MAP__SHIFT 0x6
+#define BIFC_A2S_CNTL_CL0__REQRSPPASSPW_NVC0_MAP__SHIFT 0x8
+#define BIFC_A2S_CNTL_CL0__BLKLVL_MAP__SHIFT 0xa
+#define BIFC_A2S_CNTL_CL0__DATERR_MAP__SHIFT 0xc
+#define BIFC_A2S_CNTL_CL0__EXOKAY_WR_MAP__SHIFT 0xe
+#define BIFC_A2S_CNTL_CL0__EXOKAY_RD_MAP__SHIFT 0x10
+#define BIFC_A2S_CNTL_CL0__RESP_WR_MAP__SHIFT 0x12
+#define BIFC_A2S_CNTL_CL0__RESP_RD_MAP__SHIFT 0x14
+#define BIFC_A2S_CNTL_CL0__NSNOOP_MAP_MASK 0x00000003L
+#define BIFC_A2S_CNTL_CL0__REQPASSPW_VC0_MAP_MASK 0x0000000CL
+#define BIFC_A2S_CNTL_CL0__REQPASSPW_NVC0_MAP_MASK 0x00000030L
+#define BIFC_A2S_CNTL_CL0__REQRSPPASSPW_VC0_MAP_MASK 0x000000C0L
+#define BIFC_A2S_CNTL_CL0__REQRSPPASSPW_NVC0_MAP_MASK 0x00000300L
+#define BIFC_A2S_CNTL_CL0__BLKLVL_MAP_MASK 0x00000C00L
+#define BIFC_A2S_CNTL_CL0__DATERR_MAP_MASK 0x00003000L
+#define BIFC_A2S_CNTL_CL0__EXOKAY_WR_MAP_MASK 0x0000C000L
+#define BIFC_A2S_CNTL_CL0__EXOKAY_RD_MAP_MASK 0x00030000L
+#define BIFC_A2S_CNTL_CL0__RESP_WR_MAP_MASK 0x000C0000L
+#define BIFC_A2S_CNTL_CL0__RESP_RD_MAP_MASK 0x00300000L
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dwn_dev0_BIFDEC1
+//RCC_DWN_DEV0_2_DN_PCIE_RESERVED
+#define RCC_DWN_DEV0_2_DN_PCIE_RESERVED__PCIE_RESERVED__SHIFT 0x0
+#define RCC_DWN_DEV0_2_DN_PCIE_RESERVED__PCIE_RESERVED_MASK 0xFFFFFFFFL
+//RCC_DWN_DEV0_2_DN_PCIE_SCRATCH
+#define RCC_DWN_DEV0_2_DN_PCIE_SCRATCH__PCIE_SCRATCH__SHIFT 0x0
+#define RCC_DWN_DEV0_2_DN_PCIE_SCRATCH__PCIE_SCRATCH_MASK 0xFFFFFFFFL
+//RCC_DWN_DEV0_2_DN_PCIE_CNTL
+#define RCC_DWN_DEV0_2_DN_PCIE_CNTL__HWINIT_WR_LOCK__SHIFT 0x0
+#define RCC_DWN_DEV0_2_DN_PCIE_CNTL__UR_ERR_REPORT_DIS_DN__SHIFT 0x7
+#define RCC_DWN_DEV0_2_DN_PCIE_CNTL__RX_IGNORE_LTR_MSG_UR__SHIFT 0x1e
+#define RCC_DWN_DEV0_2_DN_PCIE_CNTL__HWINIT_WR_LOCK_MASK 0x00000001L
+#define RCC_DWN_DEV0_2_DN_PCIE_CNTL__UR_ERR_REPORT_DIS_DN_MASK 0x00000080L
+#define RCC_DWN_DEV0_2_DN_PCIE_CNTL__RX_IGNORE_LTR_MSG_UR_MASK 0x40000000L
+//RCC_DWN_DEV0_2_DN_PCIE_CONFIG_CNTL
+#define RCC_DWN_DEV0_2_DN_PCIE_CONFIG_CNTL__CI_EXTENDED_TAG_EN_OVERRIDE__SHIFT 0x19
+#define RCC_DWN_DEV0_2_DN_PCIE_CONFIG_CNTL__CI_EXTENDED_TAG_EN_OVERRIDE_MASK 0x06000000L
+//RCC_DWN_DEV0_2_DN_PCIE_RX_CNTL2
+#define RCC_DWN_DEV0_2_DN_PCIE_RX_CNTL2__FLR_EXTEND_MODE__SHIFT 0x1c
+#define RCC_DWN_DEV0_2_DN_PCIE_RX_CNTL2__FLR_EXTEND_MODE_MASK 0x70000000L
+//RCC_DWN_DEV0_2_DN_PCIE_BUS_CNTL
+#define RCC_DWN_DEV0_2_DN_PCIE_BUS_CNTL__IMMEDIATE_PMI_DIS__SHIFT 0x7
+#define RCC_DWN_DEV0_2_DN_PCIE_BUS_CNTL__AER_CPL_TIMEOUT_RO_DIS_SWDN__SHIFT 0x8
+#define RCC_DWN_DEV0_2_DN_PCIE_BUS_CNTL__IMMEDIATE_PMI_DIS_MASK 0x00000080L
+#define RCC_DWN_DEV0_2_DN_PCIE_BUS_CNTL__AER_CPL_TIMEOUT_RO_DIS_SWDN_MASK 0x00000100L
+//RCC_DWN_DEV0_2_DN_PCIE_CFG_CNTL
+#define RCC_DWN_DEV0_2_DN_PCIE_CFG_CNTL__CFG_EN_DEC_TO_HIDDEN_REG__SHIFT 0x0
+#define RCC_DWN_DEV0_2_DN_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN2_HIDDEN_REG__SHIFT 0x1
+#define RCC_DWN_DEV0_2_DN_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN3_HIDDEN_REG__SHIFT 0x2
+#define RCC_DWN_DEV0_2_DN_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN4_HIDDEN_REG__SHIFT 0x3
+#define RCC_DWN_DEV0_2_DN_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN5_HIDDEN_REG__SHIFT 0x4
+#define RCC_DWN_DEV0_2_DN_PCIE_CFG_CNTL__CFG_EN_DEC_TO_HIDDEN_REG_MASK 0x00000001L
+#define RCC_DWN_DEV0_2_DN_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN2_HIDDEN_REG_MASK 0x00000002L
+#define RCC_DWN_DEV0_2_DN_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN3_HIDDEN_REG_MASK 0x00000004L
+#define RCC_DWN_DEV0_2_DN_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN4_HIDDEN_REG_MASK 0x00000008L
+#define RCC_DWN_DEV0_2_DN_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN5_HIDDEN_REG_MASK 0x00000010L
+//RCC_DWN_DEV0_2_DN_PCIE_STRAP_F0
+#define RCC_DWN_DEV0_2_DN_PCIE_STRAP_F0__STRAP_F0_EN__SHIFT 0x0
+#define RCC_DWN_DEV0_2_DN_PCIE_STRAP_F0__STRAP_F0_MC_EN__SHIFT 0x11
+#define RCC_DWN_DEV0_2_DN_PCIE_STRAP_F0__STRAP_F0_MSI_MULTI_CAP__SHIFT 0x15
+#define RCC_DWN_DEV0_2_DN_PCIE_STRAP_F0__STRAP_F0_EN_MASK 0x00000001L
+#define RCC_DWN_DEV0_2_DN_PCIE_STRAP_F0__STRAP_F0_MC_EN_MASK 0x00020000L
+#define RCC_DWN_DEV0_2_DN_PCIE_STRAP_F0__STRAP_F0_MSI_MULTI_CAP_MASK 0x00E00000L
+//RCC_DWN_DEV0_2_DN_PCIE_STRAP_MISC
+#define RCC_DWN_DEV0_2_DN_PCIE_STRAP_MISC__STRAP_CLK_PM_EN__SHIFT 0x18
+#define RCC_DWN_DEV0_2_DN_PCIE_STRAP_MISC__STRAP_MST_ADR64_EN__SHIFT 0x1d
+#define RCC_DWN_DEV0_2_DN_PCIE_STRAP_MISC__STRAP_CLK_PM_EN_MASK 0x01000000L
+#define RCC_DWN_DEV0_2_DN_PCIE_STRAP_MISC__STRAP_MST_ADR64_EN_MASK 0x20000000L
+//RCC_DWN_DEV0_2_DN_PCIE_STRAP_MISC2
+#define RCC_DWN_DEV0_2_DN_PCIE_STRAP_MISC2__STRAP_MSTCPL_TIMEOUT_EN__SHIFT 0x2
+#define RCC_DWN_DEV0_2_DN_PCIE_STRAP_MISC2__STRAP_MSTCPL_TIMEOUT_EN_MASK 0x00000004L
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dwnp_dev0_BIFDEC1
+//RCC_DWNP_DEV0_2_PCIE_ERR_CNTL
+#define RCC_DWNP_DEV0_2_PCIE_ERR_CNTL__ERR_REPORTING_DIS__SHIFT 0x0
+#define RCC_DWNP_DEV0_2_PCIE_ERR_CNTL__AER_HDR_LOG_TIMEOUT__SHIFT 0x8
+#define RCC_DWNP_DEV0_2_PCIE_ERR_CNTL__AER_HDR_LOG_F0_TIMER_EXPIRED__SHIFT 0xb
+#define RCC_DWNP_DEV0_2_PCIE_ERR_CNTL__SEND_ERR_MSG_IMMEDIATELY__SHIFT 0x11
+#define RCC_DWNP_DEV0_2_PCIE_ERR_CNTL__ERR_CORR_RCVD_CLR__SHIFT 0x12
+#define RCC_DWNP_DEV0_2_PCIE_ERR_CNTL__NONFATAL_ERR_RCVD_CLR__SHIFT 0x13
+#define RCC_DWNP_DEV0_2_PCIE_ERR_CNTL__FATAL_ERR_RCVD_CLR__SHIFT 0x14
+#define RCC_DWNP_DEV0_2_PCIE_ERR_CNTL__ERR_REPORTING_DIS_MASK 0x00000001L
+#define RCC_DWNP_DEV0_2_PCIE_ERR_CNTL__AER_HDR_LOG_TIMEOUT_MASK 0x00000700L
+#define RCC_DWNP_DEV0_2_PCIE_ERR_CNTL__AER_HDR_LOG_F0_TIMER_EXPIRED_MASK 0x00000800L
+#define RCC_DWNP_DEV0_2_PCIE_ERR_CNTL__SEND_ERR_MSG_IMMEDIATELY_MASK 0x00020000L
+#define RCC_DWNP_DEV0_2_PCIE_ERR_CNTL__ERR_CORR_RCVD_CLR_MASK 0x00040000L
+#define RCC_DWNP_DEV0_2_PCIE_ERR_CNTL__NONFATAL_ERR_RCVD_CLR_MASK 0x00080000L
+#define RCC_DWNP_DEV0_2_PCIE_ERR_CNTL__FATAL_ERR_RCVD_CLR_MASK 0x00100000L
+//RCC_DWNP_DEV0_2_PCIE_RX_CNTL
+#define RCC_DWNP_DEV0_2_PCIE_RX_CNTL__RX_IGNORE_MAX_PAYLOAD_ERR__SHIFT 0x8
+#define RCC_DWNP_DEV0_2_PCIE_RX_CNTL__RX_IGNORE_TC_ERR_DN__SHIFT 0x9
+#define RCC_DWNP_DEV0_2_PCIE_RX_CNTL__RX_PCIE_CPL_TIMEOUT_DIS__SHIFT 0x14
+#define RCC_DWNP_DEV0_2_PCIE_RX_CNTL__RX_IGNORE_SHORTPREFIX_ERR_DN__SHIFT 0x15
+#define RCC_DWNP_DEV0_2_PCIE_RX_CNTL__RX_RCB_FLR_TIMEOUT_DIS__SHIFT 0x1b
+#define RCC_DWNP_DEV0_2_PCIE_RX_CNTL__RX_IGNORE_MAX_PAYLOAD_ERR_MASK 0x00000100L
+#define RCC_DWNP_DEV0_2_PCIE_RX_CNTL__RX_IGNORE_TC_ERR_DN_MASK 0x00000200L
+#define RCC_DWNP_DEV0_2_PCIE_RX_CNTL__RX_PCIE_CPL_TIMEOUT_DIS_MASK 0x00100000L
+#define RCC_DWNP_DEV0_2_PCIE_RX_CNTL__RX_IGNORE_SHORTPREFIX_ERR_DN_MASK 0x00200000L
+#define RCC_DWNP_DEV0_2_PCIE_RX_CNTL__RX_RCB_FLR_TIMEOUT_DIS_MASK 0x08000000L
+//RCC_DWNP_DEV0_2_PCIE_LC_SPEED_CNTL
+#define RCC_DWNP_DEV0_2_PCIE_LC_SPEED_CNTL__LC_GEN2_EN_STRAP__SHIFT 0x0
+#define RCC_DWNP_DEV0_2_PCIE_LC_SPEED_CNTL__LC_GEN3_EN_STRAP__SHIFT 0x1
+#define RCC_DWNP_DEV0_2_PCIE_LC_SPEED_CNTL__LC_GEN4_EN_STRAP__SHIFT 0x2
+#define RCC_DWNP_DEV0_2_PCIE_LC_SPEED_CNTL__LC_GEN5_EN_STRAP__SHIFT 0x3
+#define RCC_DWNP_DEV0_2_PCIE_LC_SPEED_CNTL__LC_GEN2_EN_STRAP_MASK 0x00000001L
+#define RCC_DWNP_DEV0_2_PCIE_LC_SPEED_CNTL__LC_GEN3_EN_STRAP_MASK 0x00000002L
+#define RCC_DWNP_DEV0_2_PCIE_LC_SPEED_CNTL__LC_GEN4_EN_STRAP_MASK 0x00000004L
+#define RCC_DWNP_DEV0_2_PCIE_LC_SPEED_CNTL__LC_GEN5_EN_STRAP_MASK 0x00000008L
+//RCC_DWNP_DEV0_2_PCIE_LC_CNTL2
+#define RCC_DWNP_DEV0_2_PCIE_LC_CNTL2__DL_STATE_CHANGED_NOTIFICATION_DIS__SHIFT 0x0
+#define RCC_DWNP_DEV0_2_PCIE_LC_CNTL2__LC_LINK_BW_NOTIFICATION_DIS__SHIFT 0x1b
+#define RCC_DWNP_DEV0_2_PCIE_LC_CNTL2__DL_STATE_CHANGED_NOTIFICATION_DIS_MASK 0x00000001L
+#define RCC_DWNP_DEV0_2_PCIE_LC_CNTL2__LC_LINK_BW_NOTIFICATION_DIS_MASK 0x08000000L
+//RCC_DWNP_DEV0_2_PCIEP_STRAP_MISC
+#define RCC_DWNP_DEV0_2_PCIEP_STRAP_MISC__STRAP_MULTI_FUNC_EN__SHIFT 0xa
+#define RCC_DWNP_DEV0_2_PCIEP_STRAP_MISC__STRAP_MULTI_FUNC_EN_MASK 0x00000400L
+//RCC_DWNP_DEV0_2_LTR_MSG_INFO_FROM_EP
+#define RCC_DWNP_DEV0_2_LTR_MSG_INFO_FROM_EP__LTR_MSG_INFO_FROM_EP__SHIFT 0x0
+#define RCC_DWNP_DEV0_2_LTR_MSG_INFO_FROM_EP__LTR_MSG_INFO_FROM_EP_MASK 0xFFFFFFFFL
+
+
+// addressBlock: aid_nbio_nbif0_rcc_ep_dev0_BIFDEC1
+//RCC_EP_DEV0_2_EP_PCIE_SCRATCH
+#define RCC_EP_DEV0_2_EP_PCIE_SCRATCH__PCIE_SCRATCH__SHIFT 0x0
+#define RCC_EP_DEV0_2_EP_PCIE_SCRATCH__PCIE_SCRATCH_MASK 0xFFFFFFFFL
+//RCC_EP_DEV0_2_EP_PCIE_CNTL
+#define RCC_EP_DEV0_2_EP_PCIE_CNTL__UR_ERR_REPORT_DIS__SHIFT 0x7
+#define RCC_EP_DEV0_2_EP_PCIE_CNTL__PCIE_MALFORM_ATOMIC_OPS__SHIFT 0x8
+#define RCC_EP_DEV0_2_EP_PCIE_CNTL__RX_IGNORE_LTR_MSG_UR__SHIFT 0x1e
+#define RCC_EP_DEV0_2_EP_PCIE_CNTL__UR_ERR_REPORT_DIS_MASK 0x00000080L
+#define RCC_EP_DEV0_2_EP_PCIE_CNTL__PCIE_MALFORM_ATOMIC_OPS_MASK 0x00000100L
+#define RCC_EP_DEV0_2_EP_PCIE_CNTL__RX_IGNORE_LTR_MSG_UR_MASK 0x40000000L
+//RCC_EP_DEV0_2_EP_PCIE_INT_CNTL
+#define RCC_EP_DEV0_2_EP_PCIE_INT_CNTL__CORR_ERR_INT_EN__SHIFT 0x0
+#define RCC_EP_DEV0_2_EP_PCIE_INT_CNTL__NON_FATAL_ERR_INT_EN__SHIFT 0x1
+#define RCC_EP_DEV0_2_EP_PCIE_INT_CNTL__FATAL_ERR_INT_EN__SHIFT 0x2
+#define RCC_EP_DEV0_2_EP_PCIE_INT_CNTL__USR_DETECTED_INT_EN__SHIFT 0x3
+#define RCC_EP_DEV0_2_EP_PCIE_INT_CNTL__MISC_ERR_INT_EN__SHIFT 0x4
+#define RCC_EP_DEV0_2_EP_PCIE_INT_CNTL__POWER_STATE_CHG_INT_EN__SHIFT 0x6
+#define RCC_EP_DEV0_2_EP_PCIE_INT_CNTL__CORR_ERR_INT_EN_MASK 0x00000001L
+#define RCC_EP_DEV0_2_EP_PCIE_INT_CNTL__NON_FATAL_ERR_INT_EN_MASK 0x00000002L
+#define RCC_EP_DEV0_2_EP_PCIE_INT_CNTL__FATAL_ERR_INT_EN_MASK 0x00000004L
+#define RCC_EP_DEV0_2_EP_PCIE_INT_CNTL__USR_DETECTED_INT_EN_MASK 0x00000008L
+#define RCC_EP_DEV0_2_EP_PCIE_INT_CNTL__MISC_ERR_INT_EN_MASK 0x00000010L
+#define RCC_EP_DEV0_2_EP_PCIE_INT_CNTL__POWER_STATE_CHG_INT_EN_MASK 0x00000040L
+//RCC_EP_DEV0_2_EP_PCIE_INT_STATUS
+#define RCC_EP_DEV0_2_EP_PCIE_INT_STATUS__CORR_ERR_INT_STATUS__SHIFT 0x0
+#define RCC_EP_DEV0_2_EP_PCIE_INT_STATUS__NON_FATAL_ERR_INT_STATUS__SHIFT 0x1
+#define RCC_EP_DEV0_2_EP_PCIE_INT_STATUS__FATAL_ERR_INT_STATUS__SHIFT 0x2
+#define RCC_EP_DEV0_2_EP_PCIE_INT_STATUS__USR_DETECTED_INT_STATUS__SHIFT 0x3
+#define RCC_EP_DEV0_2_EP_PCIE_INT_STATUS__MISC_ERR_INT_STATUS__SHIFT 0x4
+#define RCC_EP_DEV0_2_EP_PCIE_INT_STATUS__POWER_STATE_CHG_INT_STATUS__SHIFT 0x6
+#define RCC_EP_DEV0_2_EP_PCIE_INT_STATUS__POWER_STATE_CHG_INT_STATUS_F0__SHIFT 0x7
+#define RCC_EP_DEV0_2_EP_PCIE_INT_STATUS__CORR_ERR_INT_STATUS_MASK 0x00000001L
+#define RCC_EP_DEV0_2_EP_PCIE_INT_STATUS__NON_FATAL_ERR_INT_STATUS_MASK 0x00000002L
+#define RCC_EP_DEV0_2_EP_PCIE_INT_STATUS__FATAL_ERR_INT_STATUS_MASK 0x00000004L
+#define RCC_EP_DEV0_2_EP_PCIE_INT_STATUS__USR_DETECTED_INT_STATUS_MASK 0x00000008L
+#define RCC_EP_DEV0_2_EP_PCIE_INT_STATUS__MISC_ERR_INT_STATUS_MASK 0x00000010L
+#define RCC_EP_DEV0_2_EP_PCIE_INT_STATUS__POWER_STATE_CHG_INT_STATUS_MASK 0x00000040L
+#define RCC_EP_DEV0_2_EP_PCIE_INT_STATUS__POWER_STATE_CHG_INT_STATUS_F0_MASK 0x00000080L
+//RCC_EP_DEV0_2_EP_PCIE_RX_CNTL2
+#define RCC_EP_DEV0_2_EP_PCIE_RX_CNTL2__RX_IGNORE_EP_INVALIDPASID_UR__SHIFT 0x0
+#define RCC_EP_DEV0_2_EP_PCIE_RX_CNTL2__RX_IGNORE_EP_INVALIDPASID_UR_MASK 0x00000001L
+//RCC_EP_DEV0_2_EP_PCIE_BUS_CNTL
+#define RCC_EP_DEV0_2_EP_PCIE_BUS_CNTL__IMMEDIATE_PMI_DIS__SHIFT 0x7
+#define RCC_EP_DEV0_2_EP_PCIE_BUS_CNTL__IMMEDIATE_PMI_DIS_MASK 0x00000080L
+//RCC_EP_DEV0_2_EP_PCIE_CFG_CNTL
+#define RCC_EP_DEV0_2_EP_PCIE_CFG_CNTL__CFG_EN_DEC_TO_HIDDEN_REG__SHIFT 0x0
+#define RCC_EP_DEV0_2_EP_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN2_HIDDEN_REG__SHIFT 0x1
+#define RCC_EP_DEV0_2_EP_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN3_HIDDEN_REG__SHIFT 0x2
+#define RCC_EP_DEV0_2_EP_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN4_HIDDEN_REG__SHIFT 0x3
+#define RCC_EP_DEV0_2_EP_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN5_HIDDEN_REG__SHIFT 0x4
+#define RCC_EP_DEV0_2_EP_PCIE_CFG_CNTL__CFG_EN_DEC_TO_HIDDEN_REG_MASK 0x00000001L
+#define RCC_EP_DEV0_2_EP_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN2_HIDDEN_REG_MASK 0x00000002L
+#define RCC_EP_DEV0_2_EP_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN3_HIDDEN_REG_MASK 0x00000004L
+#define RCC_EP_DEV0_2_EP_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN4_HIDDEN_REG_MASK 0x00000008L
+#define RCC_EP_DEV0_2_EP_PCIE_CFG_CNTL__CFG_EN_DEC_TO_GEN5_HIDDEN_REG_MASK 0x00000010L
+//RCC_EP_DEV0_2_EP_PCIE_TX_LTR_CNTL
+#define RCC_EP_DEV0_2_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_S_SHORT_VALUE__SHIFT 0x0
+#define RCC_EP_DEV0_2_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_S_LONG_VALUE__SHIFT 0x3
+#define RCC_EP_DEV0_2_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_S_REQUIREMENT__SHIFT 0x6
+#define RCC_EP_DEV0_2_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_NS_SHORT_VALUE__SHIFT 0x7
+#define RCC_EP_DEV0_2_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_NS_LONG_VALUE__SHIFT 0xa
+#define RCC_EP_DEV0_2_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_NS_REQUIREMENT__SHIFT 0xd
+#define RCC_EP_DEV0_2_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_MSG_DIS_IN_PM_NON_D0__SHIFT 0xe
+#define RCC_EP_DEV0_2_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_RST_LTR_IN_DL_DOWN__SHIFT 0xf
+#define RCC_EP_DEV0_2_EP_PCIE_TX_LTR_CNTL__TX_CHK_FC_FOR_L1__SHIFT 0x10
+#define RCC_EP_DEV0_2_EP_PCIE_TX_LTR_CNTL__LTR_DSTATE_USING_WDATA_EN__SHIFT 0x11
+#define RCC_EP_DEV0_2_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_S_SHORT_VALUE_MASK 0x00000007L
+#define RCC_EP_DEV0_2_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_S_LONG_VALUE_MASK 0x00000038L
+#define RCC_EP_DEV0_2_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_S_REQUIREMENT_MASK 0x00000040L
+#define RCC_EP_DEV0_2_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_NS_SHORT_VALUE_MASK 0x00000380L
+#define RCC_EP_DEV0_2_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_NS_LONG_VALUE_MASK 0x00001C00L
+#define RCC_EP_DEV0_2_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_NS_REQUIREMENT_MASK 0x00002000L
+#define RCC_EP_DEV0_2_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_MSG_DIS_IN_PM_NON_D0_MASK 0x00004000L
+#define RCC_EP_DEV0_2_EP_PCIE_TX_LTR_CNTL__LTR_PRIV_RST_LTR_IN_DL_DOWN_MASK 0x00008000L
+#define RCC_EP_DEV0_2_EP_PCIE_TX_LTR_CNTL__TX_CHK_FC_FOR_L1_MASK 0x00010000L
+#define RCC_EP_DEV0_2_EP_PCIE_TX_LTR_CNTL__LTR_DSTATE_USING_WDATA_EN_MASK 0x00020000L
+//RCC_EP_DEV0_1_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_0
+#define RCC_EP_DEV0_1_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_0__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define RCC_EP_DEV0_1_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_0__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//RCC_EP_DEV0_1_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_1
+#define RCC_EP_DEV0_1_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_1__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define RCC_EP_DEV0_1_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_1__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//RCC_EP_DEV0_1_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_2
+#define RCC_EP_DEV0_1_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_2__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define RCC_EP_DEV0_1_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_2__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//RCC_EP_DEV0_1_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_3
+#define RCC_EP_DEV0_1_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_3__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define RCC_EP_DEV0_1_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_3__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//RCC_EP_DEV0_1_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_4
+#define RCC_EP_DEV0_1_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_4__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define RCC_EP_DEV0_1_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_4__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//RCC_EP_DEV0_1_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_5
+#define RCC_EP_DEV0_1_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_5__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define RCC_EP_DEV0_1_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_5__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//RCC_EP_DEV0_1_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_6
+#define RCC_EP_DEV0_1_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_6__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define RCC_EP_DEV0_1_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_6__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//RCC_EP_DEV0_1_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_7
+#define RCC_EP_DEV0_1_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_7__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define RCC_EP_DEV0_1_PCIE_F1_DPA_SUBSTATE_PWR_ALLOC_7__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//RCC_EP_DEV0_2_EP_PCIE_STRAP_MISC
+#define RCC_EP_DEV0_2_EP_PCIE_STRAP_MISC__STRAP_MST_ADR64_EN__SHIFT 0x1d
+#define RCC_EP_DEV0_2_EP_PCIE_STRAP_MISC__STRAP_MST_ADR64_EN_MASK 0x20000000L
+//RCC_EP_DEV0_2_EP_PCIE_STRAP_MISC2
+#define RCC_EP_DEV0_2_EP_PCIE_STRAP_MISC2__STRAP_TPH_SUPPORTED__SHIFT 0x4
+#define RCC_EP_DEV0_2_EP_PCIE_STRAP_MISC2__STRAP_TPH_SUPPORTED_MASK 0x00000010L
+//RCC_EP_DEV0_2_EP_PCIE_F0_DPA_CAP
+#define RCC_EP_DEV0_2_EP_PCIE_F0_DPA_CAP__TRANS_LAT_UNIT__SHIFT 0x8
+#define RCC_EP_DEV0_2_EP_PCIE_F0_DPA_CAP__PWR_ALLOC_SCALE__SHIFT 0xc
+#define RCC_EP_DEV0_2_EP_PCIE_F0_DPA_CAP__TRANS_LAT_VAL_0__SHIFT 0x10
+#define RCC_EP_DEV0_2_EP_PCIE_F0_DPA_CAP__TRANS_LAT_VAL_1__SHIFT 0x18
+#define RCC_EP_DEV0_2_EP_PCIE_F0_DPA_CAP__TRANS_LAT_UNIT_MASK 0x00000300L
+#define RCC_EP_DEV0_2_EP_PCIE_F0_DPA_CAP__PWR_ALLOC_SCALE_MASK 0x00003000L
+#define RCC_EP_DEV0_2_EP_PCIE_F0_DPA_CAP__TRANS_LAT_VAL_0_MASK 0x00FF0000L
+#define RCC_EP_DEV0_2_EP_PCIE_F0_DPA_CAP__TRANS_LAT_VAL_1_MASK 0xFF000000L
+//RCC_EP_DEV0_2_EP_PCIE_F0_DPA_LATENCY_INDICATOR
+#define RCC_EP_DEV0_2_EP_PCIE_F0_DPA_LATENCY_INDICATOR__TRANS_LAT_INDICATOR_BITS__SHIFT 0x0
+#define RCC_EP_DEV0_2_EP_PCIE_F0_DPA_LATENCY_INDICATOR__TRANS_LAT_INDICATOR_BITS_MASK 0xFFL
+//RCC_EP_DEV0_2_EP_PCIE_F0_DPA_CNTL
+#define RCC_EP_DEV0_2_EP_PCIE_F0_DPA_CNTL__SUBSTATE_STATUS__SHIFT 0x0
+#define RCC_EP_DEV0_2_EP_PCIE_F0_DPA_CNTL__DPA_COMPLIANCE_MODE__SHIFT 0x8
+#define RCC_EP_DEV0_2_EP_PCIE_F0_DPA_CNTL__SUBSTATE_STATUS_MASK 0x001FL
+#define RCC_EP_DEV0_2_EP_PCIE_F0_DPA_CNTL__DPA_COMPLIANCE_MODE_MASK 0x0100L
+//RCC_EP_DEV0_2_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_0
+#define RCC_EP_DEV0_2_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_0__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define RCC_EP_DEV0_2_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_0__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//RCC_EP_DEV0_2_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_1
+#define RCC_EP_DEV0_2_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_1__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define RCC_EP_DEV0_2_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_1__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//RCC_EP_DEV0_2_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_2
+#define RCC_EP_DEV0_2_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_2__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define RCC_EP_DEV0_2_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_2__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//RCC_EP_DEV0_2_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_3
+#define RCC_EP_DEV0_2_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_3__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define RCC_EP_DEV0_2_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_3__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//RCC_EP_DEV0_2_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_4
+#define RCC_EP_DEV0_2_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_4__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define RCC_EP_DEV0_2_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_4__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//RCC_EP_DEV0_2_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_5
+#define RCC_EP_DEV0_2_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_5__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define RCC_EP_DEV0_2_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_5__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//RCC_EP_DEV0_2_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_6
+#define RCC_EP_DEV0_2_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_6__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define RCC_EP_DEV0_2_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_6__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//RCC_EP_DEV0_2_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_7
+#define RCC_EP_DEV0_2_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_7__SUBSTATE_PWR_ALLOC__SHIFT 0x0
+#define RCC_EP_DEV0_2_PCIE_F0_DPA_SUBSTATE_PWR_ALLOC_7__SUBSTATE_PWR_ALLOC_MASK 0xFFL
+//RCC_EP_DEV0_2_EP_PCIE_PME_CONTROL
+#define RCC_EP_DEV0_2_EP_PCIE_PME_CONTROL__PME_SERVICE_TIMER__SHIFT 0x0
+#define RCC_EP_DEV0_2_EP_PCIE_PME_CONTROL__PME_SERVICE_TIMER_MASK 0x1FL
+//RCC_EP_DEV0_2_EP_PCIEP_RESERVED
+#define RCC_EP_DEV0_2_EP_PCIEP_RESERVED__PCIEP_RESERVED__SHIFT 0x0
+#define RCC_EP_DEV0_2_EP_PCIEP_RESERVED__PCIEP_RESERVED_MASK 0xFFFFFFFFL
+//RCC_EP_DEV0_2_EP_PCIE_TX_CNTL
+#define RCC_EP_DEV0_2_EP_PCIE_TX_CNTL__TX_SNR_OVERRIDE__SHIFT 0xa
+#define RCC_EP_DEV0_2_EP_PCIE_TX_CNTL__TX_RO_OVERRIDE__SHIFT 0xc
+#define RCC_EP_DEV0_2_EP_PCIE_TX_CNTL__TX_F0_TPH_DIS__SHIFT 0x18
+#define RCC_EP_DEV0_2_EP_PCIE_TX_CNTL__TX_F1_TPH_DIS__SHIFT 0x19
+#define RCC_EP_DEV0_2_EP_PCIE_TX_CNTL__TX_F2_TPH_DIS__SHIFT 0x1a
+#define RCC_EP_DEV0_2_EP_PCIE_TX_CNTL__TX_SNR_OVERRIDE_MASK 0x00000C00L
+#define RCC_EP_DEV0_2_EP_PCIE_TX_CNTL__TX_RO_OVERRIDE_MASK 0x00003000L
+#define RCC_EP_DEV0_2_EP_PCIE_TX_CNTL__TX_F0_TPH_DIS_MASK 0x01000000L
+#define RCC_EP_DEV0_2_EP_PCIE_TX_CNTL__TX_F1_TPH_DIS_MASK 0x02000000L
+#define RCC_EP_DEV0_2_EP_PCIE_TX_CNTL__TX_F2_TPH_DIS_MASK 0x04000000L
+//RCC_EP_DEV0_2_EP_PCIE_TX_REQUESTER_ID
+#define RCC_EP_DEV0_2_EP_PCIE_TX_REQUESTER_ID__TX_REQUESTER_ID_FUNCTION__SHIFT 0x0
+#define RCC_EP_DEV0_2_EP_PCIE_TX_REQUESTER_ID__TX_REQUESTER_ID_DEVICE__SHIFT 0x3
+#define RCC_EP_DEV0_2_EP_PCIE_TX_REQUESTER_ID__TX_REQUESTER_ID_BUS__SHIFT 0x8
+#define RCC_EP_DEV0_2_EP_PCIE_TX_REQUESTER_ID__TX_REQUESTER_ID_FUNCTION_MASK 0x00000007L
+#define RCC_EP_DEV0_2_EP_PCIE_TX_REQUESTER_ID__TX_REQUESTER_ID_DEVICE_MASK 0x000000F8L
+#define RCC_EP_DEV0_2_EP_PCIE_TX_REQUESTER_ID__TX_REQUESTER_ID_BUS_MASK 0x0000FF00L
+//RCC_EP_DEV0_2_EP_PCIE_ERR_CNTL
+#define RCC_EP_DEV0_2_EP_PCIE_ERR_CNTL__ERR_REPORTING_DIS__SHIFT 0x0
+#define RCC_EP_DEV0_2_EP_PCIE_ERR_CNTL__AER_HDR_LOG_TIMEOUT__SHIFT 0x8
+#define RCC_EP_DEV0_2_EP_PCIE_ERR_CNTL__SEND_ERR_MSG_IMMEDIATELY__SHIFT 0x11
+#define RCC_EP_DEV0_2_EP_PCIE_ERR_CNTL__STRAP_POISONED_ADVISORY_NONFATAL__SHIFT 0x12
+#define RCC_EP_DEV0_2_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F0_TIMER_EXPIRED__SHIFT 0x18
+#define RCC_EP_DEV0_2_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F1_TIMER_EXPIRED__SHIFT 0x19
+#define RCC_EP_DEV0_2_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F2_TIMER_EXPIRED__SHIFT 0x1a
+#define RCC_EP_DEV0_2_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F3_TIMER_EXPIRED__SHIFT 0x1b
+#define RCC_EP_DEV0_2_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F4_TIMER_EXPIRED__SHIFT 0x1c
+#define RCC_EP_DEV0_2_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F5_TIMER_EXPIRED__SHIFT 0x1d
+#define RCC_EP_DEV0_2_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F6_TIMER_EXPIRED__SHIFT 0x1e
+#define RCC_EP_DEV0_2_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F7_TIMER_EXPIRED__SHIFT 0x1f
+#define RCC_EP_DEV0_2_EP_PCIE_ERR_CNTL__ERR_REPORTING_DIS_MASK 0x00000001L
+#define RCC_EP_DEV0_2_EP_PCIE_ERR_CNTL__AER_HDR_LOG_TIMEOUT_MASK 0x00000700L
+#define RCC_EP_DEV0_2_EP_PCIE_ERR_CNTL__SEND_ERR_MSG_IMMEDIATELY_MASK 0x00020000L
+#define RCC_EP_DEV0_2_EP_PCIE_ERR_CNTL__STRAP_POISONED_ADVISORY_NONFATAL_MASK 0x00040000L
+#define RCC_EP_DEV0_2_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F0_TIMER_EXPIRED_MASK 0x01000000L
+#define RCC_EP_DEV0_2_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F1_TIMER_EXPIRED_MASK 0x02000000L
+#define RCC_EP_DEV0_2_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F2_TIMER_EXPIRED_MASK 0x04000000L
+#define RCC_EP_DEV0_2_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F3_TIMER_EXPIRED_MASK 0x08000000L
+#define RCC_EP_DEV0_2_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F4_TIMER_EXPIRED_MASK 0x10000000L
+#define RCC_EP_DEV0_2_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F5_TIMER_EXPIRED_MASK 0x20000000L
+#define RCC_EP_DEV0_2_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F6_TIMER_EXPIRED_MASK 0x40000000L
+#define RCC_EP_DEV0_2_EP_PCIE_ERR_CNTL__AER_HDR_LOG_F7_TIMER_EXPIRED_MASK 0x80000000L
+//RCC_EP_DEV0_2_EP_PCIE_RX_CNTL
+#define RCC_EP_DEV0_2_EP_PCIE_RX_CNTL__RX_IGNORE_MAX_PAYLOAD_ERR__SHIFT 0x8
+#define RCC_EP_DEV0_2_EP_PCIE_RX_CNTL__RX_IGNORE_TC_ERR__SHIFT 0x9
+#define RCC_EP_DEV0_2_EP_PCIE_RX_CNTL__RX_PCIE_CPL_TIMEOUT_DIS__SHIFT 0x14
+#define RCC_EP_DEV0_2_EP_PCIE_RX_CNTL__RX_IGNORE_SHORTPREFIX_ERR__SHIFT 0x15
+#define RCC_EP_DEV0_2_EP_PCIE_RX_CNTL__RX_IGNORE_MAXPREFIX_ERR__SHIFT 0x16
+#define RCC_EP_DEV0_2_EP_PCIE_RX_CNTL__RX_IGNORE_INVALIDPASID_ERR__SHIFT 0x18
+#define RCC_EP_DEV0_2_EP_PCIE_RX_CNTL__RX_IGNORE_NOT_PASID_UR__SHIFT 0x19
+#define RCC_EP_DEV0_2_EP_PCIE_RX_CNTL__RX_TPH_DIS__SHIFT 0x1a
+#define RCC_EP_DEV0_2_EP_PCIE_RX_CNTL__RX_IGNORE_MAX_PAYLOAD_ERR_MASK 0x00000100L
+#define RCC_EP_DEV0_2_EP_PCIE_RX_CNTL__RX_IGNORE_TC_ERR_MASK 0x00000200L
+#define RCC_EP_DEV0_2_EP_PCIE_RX_CNTL__RX_PCIE_CPL_TIMEOUT_DIS_MASK 0x00100000L
+#define RCC_EP_DEV0_2_EP_PCIE_RX_CNTL__RX_IGNORE_SHORTPREFIX_ERR_MASK 0x00200000L
+#define RCC_EP_DEV0_2_EP_PCIE_RX_CNTL__RX_IGNORE_MAXPREFIX_ERR_MASK 0x00400000L
+#define RCC_EP_DEV0_2_EP_PCIE_RX_CNTL__RX_IGNORE_INVALIDPASID_ERR_MASK 0x01000000L
+#define RCC_EP_DEV0_2_EP_PCIE_RX_CNTL__RX_IGNORE_NOT_PASID_UR_MASK 0x02000000L
+#define RCC_EP_DEV0_2_EP_PCIE_RX_CNTL__RX_TPH_DIS_MASK 0x04000000L
+//RCC_EP_DEV0_2_EP_PCIE_LC_SPEED_CNTL
+#define RCC_EP_DEV0_2_EP_PCIE_LC_SPEED_CNTL__LC_GEN2_EN_STRAP__SHIFT 0x0
+#define RCC_EP_DEV0_2_EP_PCIE_LC_SPEED_CNTL__LC_GEN3_EN_STRAP__SHIFT 0x1
+#define RCC_EP_DEV0_2_EP_PCIE_LC_SPEED_CNTL__LC_GEN4_EN_STRAP__SHIFT 0x2
+#define RCC_EP_DEV0_2_EP_PCIE_LC_SPEED_CNTL__LC_GEN5_EN_STRAP__SHIFT 0x3
+#define RCC_EP_DEV0_2_EP_PCIE_LC_SPEED_CNTL__LC_GEN2_EN_STRAP_MASK 0x00000001L
+#define RCC_EP_DEV0_2_EP_PCIE_LC_SPEED_CNTL__LC_GEN3_EN_STRAP_MASK 0x00000002L
+#define RCC_EP_DEV0_2_EP_PCIE_LC_SPEED_CNTL__LC_GEN4_EN_STRAP_MASK 0x00000004L
+#define RCC_EP_DEV0_2_EP_PCIE_LC_SPEED_CNTL__LC_GEN5_EN_STRAP_MASK 0x00000008L
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dev0_BIFDEC1
+//RCC_DEV0_1_RCC_ERR_INT_CNTL
+#define RCC_DEV0_1_RCC_ERR_INT_CNTL__INVALID_REG_ACCESS_IN_SRIOV_INT_EN__SHIFT 0x0
+#define RCC_DEV0_1_RCC_ERR_INT_CNTL__INVALID_REG_ACCESS_IN_SRIOV_INT_EN_MASK 0x00000001L
+//RCC_DEV0_1_RCC_BACO_CNTL_MISC
+#define RCC_DEV0_1_RCC_BACO_CNTL_MISC__BIF_ROM_REQ_DIS__SHIFT 0x0
+#define RCC_DEV0_1_RCC_BACO_CNTL_MISC__BIF_AZ_REQ_DIS__SHIFT 0x1
+#define RCC_DEV0_1_RCC_BACO_CNTL_MISC__BIF_ROM_REQ_DIS_MASK 0x00000001L
+#define RCC_DEV0_1_RCC_BACO_CNTL_MISC__BIF_AZ_REQ_DIS_MASK 0x00000002L
+//RCC_DEV0_1_RCC_RESET_EN
+#define RCC_DEV0_1_RCC_RESET_EN__DB_APER_RESET_EN__SHIFT 0xf
+#define RCC_DEV0_1_RCC_RESET_EN__DB_APER_RESET_EN_MASK 0x00008000L
+//RCC_DEV0_2_RCC_VDM_SUPPORT
+#define RCC_DEV0_2_RCC_VDM_SUPPORT__MCTP_SUPPORT__SHIFT 0x0
+#define RCC_DEV0_2_RCC_VDM_SUPPORT__AMPTP_SUPPORT__SHIFT 0x1
+#define RCC_DEV0_2_RCC_VDM_SUPPORT__OTHER_VDM_SUPPORT__SHIFT 0x2
+#define RCC_DEV0_2_RCC_VDM_SUPPORT__ROUTE_TO_RC_CHECK_IN_RCMODE__SHIFT 0x3
+#define RCC_DEV0_2_RCC_VDM_SUPPORT__ROUTE_BROADCAST_CHECK_IN_RCMODE__SHIFT 0x4
+#define RCC_DEV0_2_RCC_VDM_SUPPORT__MCTP_SUPPORT_MASK 0x00000001L
+#define RCC_DEV0_2_RCC_VDM_SUPPORT__AMPTP_SUPPORT_MASK 0x00000002L
+#define RCC_DEV0_2_RCC_VDM_SUPPORT__OTHER_VDM_SUPPORT_MASK 0x00000004L
+#define RCC_DEV0_2_RCC_VDM_SUPPORT__ROUTE_TO_RC_CHECK_IN_RCMODE_MASK 0x00000008L
+#define RCC_DEV0_2_RCC_VDM_SUPPORT__ROUTE_BROADCAST_CHECK_IN_RCMODE_MASK 0x00000010L
+//RCC_DEV0_2_RCC_MARGIN_PARAM_CNTL0
+#define RCC_DEV0_2_RCC_MARGIN_PARAM_CNTL0__MARGINING_VOLTAGE_SUPPORTED__SHIFT 0x0
+#define RCC_DEV0_2_RCC_MARGIN_PARAM_CNTL0__MARGINING_IND_LEFTRIGHT_TIMING__SHIFT 0x1
+#define RCC_DEV0_2_RCC_MARGIN_PARAM_CNTL0__MARGINING_IND_UPDOWN_VOLTAGE__SHIFT 0x2
+#define RCC_DEV0_2_RCC_MARGIN_PARAM_CNTL0__MARGINING_IND_ERROR_SAMPLER__SHIFT 0x3
+#define RCC_DEV0_2_RCC_MARGIN_PARAM_CNTL0__MARGINING_SAMPLE_REPORTING_METHOD__SHIFT 0x4
+#define RCC_DEV0_2_RCC_MARGIN_PARAM_CNTL0__MARGINING_NUM_TIMING_STEPS__SHIFT 0x5
+#define RCC_DEV0_2_RCC_MARGIN_PARAM_CNTL0__MARGINING_MAX_TIMING_OFFSET__SHIFT 0xb
+#define RCC_DEV0_2_RCC_MARGIN_PARAM_CNTL0__MARGINING_NUM_VOLTAGE_STEPS__SHIFT 0x12
+#define RCC_DEV0_2_RCC_MARGIN_PARAM_CNTL0__MARGINING_MAX_VOLTAGE_OFFSET__SHIFT 0x19
+#define RCC_DEV0_2_RCC_MARGIN_PARAM_CNTL0__MARGINING_VOLTAGE_SUPPORTED_MASK 0x00000001L
+#define RCC_DEV0_2_RCC_MARGIN_PARAM_CNTL0__MARGINING_IND_LEFTRIGHT_TIMING_MASK 0x00000002L
+#define RCC_DEV0_2_RCC_MARGIN_PARAM_CNTL0__MARGINING_IND_UPDOWN_VOLTAGE_MASK 0x00000004L
+#define RCC_DEV0_2_RCC_MARGIN_PARAM_CNTL0__MARGINING_IND_ERROR_SAMPLER_MASK 0x00000008L
+#define RCC_DEV0_2_RCC_MARGIN_PARAM_CNTL0__MARGINING_SAMPLE_REPORTING_METHOD_MASK 0x00000010L
+#define RCC_DEV0_2_RCC_MARGIN_PARAM_CNTL0__MARGINING_NUM_TIMING_STEPS_MASK 0x000007E0L
+#define RCC_DEV0_2_RCC_MARGIN_PARAM_CNTL0__MARGINING_MAX_TIMING_OFFSET_MASK 0x0003F800L
+#define RCC_DEV0_2_RCC_MARGIN_PARAM_CNTL0__MARGINING_NUM_VOLTAGE_STEPS_MASK 0x01FC0000L
+#define RCC_DEV0_2_RCC_MARGIN_PARAM_CNTL0__MARGINING_MAX_VOLTAGE_OFFSET_MASK 0xFE000000L
+//RCC_DEV0_2_RCC_MARGIN_PARAM_CNTL1
+#define RCC_DEV0_2_RCC_MARGIN_PARAM_CNTL1__MARGINING_SAMPLING_RATE_VOLTAGE__SHIFT 0x0
+#define RCC_DEV0_2_RCC_MARGIN_PARAM_CNTL1__MARGINING_SAMPLING_RATE_TIMING__SHIFT 0x6
+#define RCC_DEV0_2_RCC_MARGIN_PARAM_CNTL1__MARGINING_MAX_LANES__SHIFT 0xc
+#define RCC_DEV0_2_RCC_MARGIN_PARAM_CNTL1__MARGINING_SAMPLE_COUNT__SHIFT 0x11
+#define RCC_DEV0_2_RCC_MARGIN_PARAM_CNTL1__MARGINING_SAMPLING_RATE_VOLTAGE_MASK 0x0000003FL
+#define RCC_DEV0_2_RCC_MARGIN_PARAM_CNTL1__MARGINING_SAMPLING_RATE_TIMING_MASK 0x00000FC0L
+#define RCC_DEV0_2_RCC_MARGIN_PARAM_CNTL1__MARGINING_MAX_LANES_MASK 0x0001F000L
+#define RCC_DEV0_2_RCC_MARGIN_PARAM_CNTL1__MARGINING_SAMPLE_COUNT_MASK 0x00FE0000L
+//RCC_DEV0_1_RCC_GPUIOV_REGION
+#define RCC_DEV0_1_RCC_GPUIOV_REGION__LFB_REGION__SHIFT 0x0
+#define RCC_DEV0_1_RCC_GPUIOV_REGION__MAX_REGION__SHIFT 0x4
+#define RCC_DEV0_1_RCC_GPUIOV_REGION__LFB_REGION_MASK 0x0000000FL
+#define RCC_DEV0_1_RCC_GPUIOV_REGION__MAX_REGION_MASK 0x000000F0L
+//RCC_DEV0_1_RCC_GPU_HOSTVM_EN
+#define RCC_DEV0_1_RCC_GPU_HOSTVM_EN__GPU_HOSTVM_EN__SHIFT 0x0
+#define RCC_DEV0_1_RCC_GPU_HOSTVM_EN__GPU_HOSTVM_EN_MASK 0x00000001L
+//RCC_DEV0_1_RCC_CONSOLE_IOV_MODE_CNTL
+#define RCC_DEV0_1_RCC_CONSOLE_IOV_MODE_CNTL__RCC_CONSOLE_IOV_MODE_ENABLE__SHIFT 0x0
+#define RCC_DEV0_1_RCC_CONSOLE_IOV_MODE_CNTL__MULTIOS_IH_SUPPORT_EN__SHIFT 0x1
+#define RCC_DEV0_1_RCC_CONSOLE_IOV_MODE_CNTL__RCC_CONSOLE_IOV_MODE_ENABLE_MASK 0x00000001L
+#define RCC_DEV0_1_RCC_CONSOLE_IOV_MODE_CNTL__MULTIOS_IH_SUPPORT_EN_MASK 0x00000002L
+//RCC_DEV0_1_RCC_CONSOLE_IOV_FIRST_VF_OFFSET
+#define RCC_DEV0_1_RCC_CONSOLE_IOV_FIRST_VF_OFFSET__CONSOLE_IOV_FIRST_VF_OFFSET__SHIFT 0x0
+#define RCC_DEV0_1_RCC_CONSOLE_IOV_FIRST_VF_OFFSET__CONSOLE_IOV_FIRST_VF_OFFSET_MASK 0xFFFFL
+//RCC_DEV0_1_RCC_CONSOLE_IOV_VF_STRIDE
+#define RCC_DEV0_1_RCC_CONSOLE_IOV_VF_STRIDE__CONSOLE_IOV_VF_STRIDE__SHIFT 0x0
+#define RCC_DEV0_1_RCC_CONSOLE_IOV_VF_STRIDE__CONSOLE_IOV_VF_STRIDE_MASK 0xFFFFL
+//RCC_DEV0_1_RCC_PEER_REG_RANGE0
+#define RCC_DEV0_1_RCC_PEER_REG_RANGE0__START_ADDR__SHIFT 0x0
+#define RCC_DEV0_1_RCC_PEER_REG_RANGE0__END_ADDR__SHIFT 0x10
+#define RCC_DEV0_1_RCC_PEER_REG_RANGE0__START_ADDR_MASK 0x0000FFFFL
+#define RCC_DEV0_1_RCC_PEER_REG_RANGE0__END_ADDR_MASK 0xFFFF0000L
+//RCC_DEV0_1_RCC_PEER_REG_RANGE1
+#define RCC_DEV0_1_RCC_PEER_REG_RANGE1__START_ADDR__SHIFT 0x0
+#define RCC_DEV0_1_RCC_PEER_REG_RANGE1__END_ADDR__SHIFT 0x10
+#define RCC_DEV0_1_RCC_PEER_REG_RANGE1__START_ADDR_MASK 0x0000FFFFL
+#define RCC_DEV0_1_RCC_PEER_REG_RANGE1__END_ADDR_MASK 0xFFFF0000L
+//RCC_DEV0_2_RCC_BUS_CNTL
+#define RCC_DEV0_2_RCC_BUS_CNTL__PMI_IO_DIS__SHIFT 0x2
+#define RCC_DEV0_2_RCC_BUS_CNTL__PMI_MEM_DIS__SHIFT 0x3
+#define RCC_DEV0_2_RCC_BUS_CNTL__PMI_BM_DIS__SHIFT 0x4
+#define RCC_DEV0_2_RCC_BUS_CNTL__PMI_IO_DIS_DN__SHIFT 0x5
+#define RCC_DEV0_2_RCC_BUS_CNTL__PMI_MEM_DIS_DN__SHIFT 0x6
+#define RCC_DEV0_2_RCC_BUS_CNTL__PMI_IO_DIS_UP__SHIFT 0x7
+#define RCC_DEV0_2_RCC_BUS_CNTL__PMI_MEM_DIS_UP__SHIFT 0x8
+#define RCC_DEV0_2_RCC_BUS_CNTL__ROOT_ERR_LOG_ON_EVENT__SHIFT 0xc
+#define RCC_DEV0_2_RCC_BUS_CNTL__HOST_CPL_POISONED_LOG_IN_RC__SHIFT 0xd
+#define RCC_DEV0_2_RCC_BUS_CNTL__DN_SEC_SIG_CPLCA_WITH_EP_ERR__SHIFT 0x10
+#define RCC_DEV0_2_RCC_BUS_CNTL__DN_SEC_RCV_CPLCA_WITH_EP_ERR__SHIFT 0x11
+#define RCC_DEV0_2_RCC_BUS_CNTL__DN_SEC_RCV_CPLUR_WITH_EP_ERR__SHIFT 0x12
+#define RCC_DEV0_2_RCC_BUS_CNTL__DN_PRI_SIG_CPLCA_WITH_EP_ERR__SHIFT 0x13
+#define RCC_DEV0_2_RCC_BUS_CNTL__DN_PRI_RCV_CPLCA_WITH_EP_ERR__SHIFT 0x14
+#define RCC_DEV0_2_RCC_BUS_CNTL__DN_PRI_RCV_CPLUR_WITH_EP_ERR__SHIFT 0x15
+#define RCC_DEV0_2_RCC_BUS_CNTL__MAX_PAYLOAD_SIZE_MODE__SHIFT 0x18
+#define RCC_DEV0_2_RCC_BUS_CNTL__PRIV_MAX_PAYLOAD_SIZE__SHIFT 0x19
+#define RCC_DEV0_2_RCC_BUS_CNTL__MAX_READ_REQUEST_SIZE_MODE__SHIFT 0x1c
+#define RCC_DEV0_2_RCC_BUS_CNTL__PRIV_MAX_READ_REQUEST_SIZE__SHIFT 0x1d
+#define RCC_DEV0_2_RCC_BUS_CNTL__PMI_IO_DIS_MASK 0x00000004L
+#define RCC_DEV0_2_RCC_BUS_CNTL__PMI_MEM_DIS_MASK 0x00000008L
+#define RCC_DEV0_2_RCC_BUS_CNTL__PMI_BM_DIS_MASK 0x00000010L
+#define RCC_DEV0_2_RCC_BUS_CNTL__PMI_IO_DIS_DN_MASK 0x00000020L
+#define RCC_DEV0_2_RCC_BUS_CNTL__PMI_MEM_DIS_DN_MASK 0x00000040L
+#define RCC_DEV0_2_RCC_BUS_CNTL__PMI_IO_DIS_UP_MASK 0x00000080L
+#define RCC_DEV0_2_RCC_BUS_CNTL__PMI_MEM_DIS_UP_MASK 0x00000100L
+#define RCC_DEV0_2_RCC_BUS_CNTL__ROOT_ERR_LOG_ON_EVENT_MASK 0x00001000L
+#define RCC_DEV0_2_RCC_BUS_CNTL__HOST_CPL_POISONED_LOG_IN_RC_MASK 0x00002000L
+#define RCC_DEV0_2_RCC_BUS_CNTL__DN_SEC_SIG_CPLCA_WITH_EP_ERR_MASK 0x00010000L
+#define RCC_DEV0_2_RCC_BUS_CNTL__DN_SEC_RCV_CPLCA_WITH_EP_ERR_MASK 0x00020000L
+#define RCC_DEV0_2_RCC_BUS_CNTL__DN_SEC_RCV_CPLUR_WITH_EP_ERR_MASK 0x00040000L
+#define RCC_DEV0_2_RCC_BUS_CNTL__DN_PRI_SIG_CPLCA_WITH_EP_ERR_MASK 0x00080000L
+#define RCC_DEV0_2_RCC_BUS_CNTL__DN_PRI_RCV_CPLCA_WITH_EP_ERR_MASK 0x00100000L
+#define RCC_DEV0_2_RCC_BUS_CNTL__DN_PRI_RCV_CPLUR_WITH_EP_ERR_MASK 0x00200000L
+#define RCC_DEV0_2_RCC_BUS_CNTL__MAX_PAYLOAD_SIZE_MODE_MASK 0x01000000L
+#define RCC_DEV0_2_RCC_BUS_CNTL__PRIV_MAX_PAYLOAD_SIZE_MASK 0x0E000000L
+#define RCC_DEV0_2_RCC_BUS_CNTL__MAX_READ_REQUEST_SIZE_MODE_MASK 0x10000000L
+#define RCC_DEV0_2_RCC_BUS_CNTL__PRIV_MAX_READ_REQUEST_SIZE_MASK 0xE0000000L
+//RCC_DEV0_1_RCC_CONFIG_CNTL
+#define RCC_DEV0_1_RCC_CONFIG_CNTL__CFG_VGA_RAM_EN__SHIFT 0x0
+#define RCC_DEV0_1_RCC_CONFIG_CNTL__GENMO_MONO_ADDRESS_B__SHIFT 0x2
+#define RCC_DEV0_1_RCC_CONFIG_CNTL__GRPH_ADRSEL__SHIFT 0x3
+#define RCC_DEV0_1_RCC_CONFIG_CNTL__CFG_VGA_RAM_EN_MASK 0x00000001L
+#define RCC_DEV0_1_RCC_CONFIG_CNTL__GENMO_MONO_ADDRESS_B_MASK 0x00000004L
+#define RCC_DEV0_1_RCC_CONFIG_CNTL__GRPH_ADRSEL_MASK 0x00000018L
+//RCC_DEV0_1_RCC_CONFIG_F0_BASE
+#define RCC_DEV0_1_RCC_CONFIG_F0_BASE__F0_BASE__SHIFT 0x0
+#define RCC_DEV0_1_RCC_CONFIG_F0_BASE__F0_BASE_MASK 0xFFFFFFFFL
+//RCC_DEV0_1_RCC_CONFIG_APER_SIZE
+#define RCC_DEV0_1_RCC_CONFIG_APER_SIZE__APER_SIZE__SHIFT 0x0
+#define RCC_DEV0_1_RCC_CONFIG_APER_SIZE__APER_SIZE_MASK 0xFFFFFFFFL
+//RCC_DEV0_1_RCC_CONFIG_REG_APER_SIZE
+#define RCC_DEV0_1_RCC_CONFIG_REG_APER_SIZE__REG_APER_SIZE__SHIFT 0x0
+#define RCC_DEV0_1_RCC_CONFIG_REG_APER_SIZE__REG_APER_SIZE_MASK 0x07FFFFFFL
+//RCC_DEV0_1_RCC_XDMA_LO
+#define RCC_DEV0_1_RCC_XDMA_LO__BIF_XDMA_LOWER_BOUND__SHIFT 0x0
+#define RCC_DEV0_1_RCC_XDMA_LO__BIF_XDMA_APER_EN__SHIFT 0x1f
+#define RCC_DEV0_1_RCC_XDMA_LO__BIF_XDMA_LOWER_BOUND_MASK 0x7FFFFFFFL
+#define RCC_DEV0_1_RCC_XDMA_LO__BIF_XDMA_APER_EN_MASK 0x80000000L
+//RCC_DEV0_1_RCC_XDMA_HI
+#define RCC_DEV0_1_RCC_XDMA_HI__BIF_XDMA_UPPER_BOUND__SHIFT 0x0
+#define RCC_DEV0_1_RCC_XDMA_HI__BIF_XDMA_UPPER_BOUND_MASK 0x7FFFFFFFL
+//RCC_DEV0_2_RCC_FEATURES_CONTROL_MISC
+#define RCC_DEV0_2_RCC_FEATURES_CONTROL_MISC__INIT_PFFLR_CRS_RET_DIS__SHIFT 0x7
+#define RCC_DEV0_2_RCC_FEATURES_CONTROL_MISC__ATC_PRG_RESP_PASID_UR_EN__SHIFT 0x8
+#define RCC_DEV0_2_RCC_FEATURES_CONTROL_MISC__RX_IGNORE_TRANSMRD_UR__SHIFT 0x9
+#define RCC_DEV0_2_RCC_FEATURES_CONTROL_MISC__RX_IGNORE_TRANSMWR_UR__SHIFT 0xa
+#define RCC_DEV0_2_RCC_FEATURES_CONTROL_MISC__RX_IGNORE_ATSTRANSREQ_UR__SHIFT 0xb
+#define RCC_DEV0_2_RCC_FEATURES_CONTROL_MISC__RX_IGNORE_PAGEREQMSG_UR__SHIFT 0xc
+#define RCC_DEV0_2_RCC_FEATURES_CONTROL_MISC__RX_IGNORE_INVCPL_UR__SHIFT 0xd
+#define RCC_DEV0_2_RCC_FEATURES_CONTROL_MISC__CLR_MSI_X_PENDING_WHEN_DISABLED_DIS__SHIFT 0xe
+#define RCC_DEV0_2_RCC_FEATURES_CONTROL_MISC__CHECK_BME_ON_PENDING_PKT_GEN_DIS__SHIFT 0xf
+#define RCC_DEV0_2_RCC_FEATURES_CONTROL_MISC__PSN_CHECK_ON_PAYLOAD_DIS__SHIFT 0x10
+#define RCC_DEV0_2_RCC_FEATURES_CONTROL_MISC__CLR_MSI_PENDING_ON_MULTIEN_DIS__SHIFT 0x11
+#define RCC_DEV0_2_RCC_FEATURES_CONTROL_MISC__SET_DEVICE_ERR_FOR_ECRC_EN__SHIFT 0x12
+#define RCC_DEV0_2_RCC_FEATURES_CONTROL_MISC__HOST_POISON_FLAG_CHECK_FOR_CHAIN_DIS__SHIFT 0x13
+#define RCC_DEV0_2_RCC_FEATURES_CONTROL_MISC__INIT_PFFLR_CRS_RET_DIS_MASK 0x00000080L
+#define RCC_DEV0_2_RCC_FEATURES_CONTROL_MISC__ATC_PRG_RESP_PASID_UR_EN_MASK 0x00000100L
+#define RCC_DEV0_2_RCC_FEATURES_CONTROL_MISC__RX_IGNORE_TRANSMRD_UR_MASK 0x00000200L
+#define RCC_DEV0_2_RCC_FEATURES_CONTROL_MISC__RX_IGNORE_TRANSMWR_UR_MASK 0x00000400L
+#define RCC_DEV0_2_RCC_FEATURES_CONTROL_MISC__RX_IGNORE_ATSTRANSREQ_UR_MASK 0x00000800L
+#define RCC_DEV0_2_RCC_FEATURES_CONTROL_MISC__RX_IGNORE_PAGEREQMSG_UR_MASK 0x00001000L
+#define RCC_DEV0_2_RCC_FEATURES_CONTROL_MISC__RX_IGNORE_INVCPL_UR_MASK 0x00002000L
+#define RCC_DEV0_2_RCC_FEATURES_CONTROL_MISC__CLR_MSI_X_PENDING_WHEN_DISABLED_DIS_MASK 0x00004000L
+#define RCC_DEV0_2_RCC_FEATURES_CONTROL_MISC__CHECK_BME_ON_PENDING_PKT_GEN_DIS_MASK 0x00008000L
+#define RCC_DEV0_2_RCC_FEATURES_CONTROL_MISC__PSN_CHECK_ON_PAYLOAD_DIS_MASK 0x00010000L
+#define RCC_DEV0_2_RCC_FEATURES_CONTROL_MISC__CLR_MSI_PENDING_ON_MULTIEN_DIS_MASK 0x00020000L
+#define RCC_DEV0_2_RCC_FEATURES_CONTROL_MISC__SET_DEVICE_ERR_FOR_ECRC_EN_MASK 0x00040000L
+#define RCC_DEV0_2_RCC_FEATURES_CONTROL_MISC__HOST_POISON_FLAG_CHECK_FOR_CHAIN_DIS_MASK 0x00080000L
+//RCC_DEV0_1_RCC_BUSNUM_CNTL1
+#define RCC_DEV0_1_RCC_BUSNUM_CNTL1__ID_MASK__SHIFT 0x0
+#define RCC_DEV0_1_RCC_BUSNUM_CNTL1__ID_MASK_MASK 0x000000FFL
+//RCC_DEV0_1_RCC_BUSNUM_LIST0
+#define RCC_DEV0_1_RCC_BUSNUM_LIST0__ID0__SHIFT 0x0
+#define RCC_DEV0_1_RCC_BUSNUM_LIST0__ID1__SHIFT 0x8
+#define RCC_DEV0_1_RCC_BUSNUM_LIST0__ID2__SHIFT 0x10
+#define RCC_DEV0_1_RCC_BUSNUM_LIST0__ID3__SHIFT 0x18
+#define RCC_DEV0_1_RCC_BUSNUM_LIST0__ID0_MASK 0x000000FFL
+#define RCC_DEV0_1_RCC_BUSNUM_LIST0__ID1_MASK 0x0000FF00L
+#define RCC_DEV0_1_RCC_BUSNUM_LIST0__ID2_MASK 0x00FF0000L
+#define RCC_DEV0_1_RCC_BUSNUM_LIST0__ID3_MASK 0xFF000000L
+//RCC_DEV0_1_RCC_BUSNUM_LIST1
+#define RCC_DEV0_1_RCC_BUSNUM_LIST1__ID4__SHIFT 0x0
+#define RCC_DEV0_1_RCC_BUSNUM_LIST1__ID5__SHIFT 0x8
+#define RCC_DEV0_1_RCC_BUSNUM_LIST1__ID6__SHIFT 0x10
+#define RCC_DEV0_1_RCC_BUSNUM_LIST1__ID7__SHIFT 0x18
+#define RCC_DEV0_1_RCC_BUSNUM_LIST1__ID4_MASK 0x000000FFL
+#define RCC_DEV0_1_RCC_BUSNUM_LIST1__ID5_MASK 0x0000FF00L
+#define RCC_DEV0_1_RCC_BUSNUM_LIST1__ID6_MASK 0x00FF0000L
+#define RCC_DEV0_1_RCC_BUSNUM_LIST1__ID7_MASK 0xFF000000L
+//RCC_DEV0_1_RCC_BUSNUM_CNTL2
+#define RCC_DEV0_1_RCC_BUSNUM_CNTL2__AUTOUPDATE_SEL__SHIFT 0x0
+#define RCC_DEV0_1_RCC_BUSNUM_CNTL2__AUTOUPDATE_EN__SHIFT 0x8
+#define RCC_DEV0_1_RCC_BUSNUM_CNTL2__HDPREG_CNTL__SHIFT 0x10
+#define RCC_DEV0_1_RCC_BUSNUM_CNTL2__ERROR_MULTIPLE_ID_MATCH__SHIFT 0x11
+#define RCC_DEV0_1_RCC_BUSNUM_CNTL2__AUTOUPDATE_SEL_MASK 0x000000FFL
+#define RCC_DEV0_1_RCC_BUSNUM_CNTL2__AUTOUPDATE_EN_MASK 0x00000100L
+#define RCC_DEV0_1_RCC_BUSNUM_CNTL2__HDPREG_CNTL_MASK 0x00010000L
+#define RCC_DEV0_1_RCC_BUSNUM_CNTL2__ERROR_MULTIPLE_ID_MATCH_MASK 0x00020000L
+//RCC_DEV0_1_RCC_CAPTURE_HOST_BUSNUM
+#define RCC_DEV0_1_RCC_CAPTURE_HOST_BUSNUM__CHECK_EN__SHIFT 0x0
+#define RCC_DEV0_1_RCC_CAPTURE_HOST_BUSNUM__CHECK_EN_MASK 0x00000001L
+//RCC_DEV0_1_RCC_HOST_BUSNUM
+#define RCC_DEV0_1_RCC_HOST_BUSNUM__HOST_ID__SHIFT 0x0
+#define RCC_DEV0_1_RCC_HOST_BUSNUM__HOST_ID_MASK 0x0000FFFFL
+//RCC_DEV0_1_RCC_PEER0_FB_OFFSET_HI
+#define RCC_DEV0_1_RCC_PEER0_FB_OFFSET_HI__PEER0_FB_OFFSET_HI__SHIFT 0x0
+#define RCC_DEV0_1_RCC_PEER0_FB_OFFSET_HI__PEER0_FB_OFFSET_HI_MASK 0x000FFFFFL
+//RCC_DEV0_1_RCC_PEER0_FB_OFFSET_LO
+#define RCC_DEV0_1_RCC_PEER0_FB_OFFSET_LO__PEER0_FB_OFFSET_LO__SHIFT 0x0
+#define RCC_DEV0_1_RCC_PEER0_FB_OFFSET_LO__PEER0_FB_EN__SHIFT 0x1f
+#define RCC_DEV0_1_RCC_PEER0_FB_OFFSET_LO__PEER0_FB_OFFSET_LO_MASK 0x000FFFFFL
+#define RCC_DEV0_1_RCC_PEER0_FB_OFFSET_LO__PEER0_FB_EN_MASK 0x80000000L
+//RCC_DEV0_1_RCC_PEER1_FB_OFFSET_HI
+#define RCC_DEV0_1_RCC_PEER1_FB_OFFSET_HI__PEER1_FB_OFFSET_HI__SHIFT 0x0
+#define RCC_DEV0_1_RCC_PEER1_FB_OFFSET_HI__PEER1_FB_OFFSET_HI_MASK 0x000FFFFFL
+//RCC_DEV0_1_RCC_PEER1_FB_OFFSET_LO
+#define RCC_DEV0_1_RCC_PEER1_FB_OFFSET_LO__PEER1_FB_OFFSET_LO__SHIFT 0x0
+#define RCC_DEV0_1_RCC_PEER1_FB_OFFSET_LO__PEER1_FB_EN__SHIFT 0x1f
+#define RCC_DEV0_1_RCC_PEER1_FB_OFFSET_LO__PEER1_FB_OFFSET_LO_MASK 0x000FFFFFL
+#define RCC_DEV0_1_RCC_PEER1_FB_OFFSET_LO__PEER1_FB_EN_MASK 0x80000000L
+//RCC_DEV0_1_RCC_PEER2_FB_OFFSET_HI
+#define RCC_DEV0_1_RCC_PEER2_FB_OFFSET_HI__PEER2_FB_OFFSET_HI__SHIFT 0x0
+#define RCC_DEV0_1_RCC_PEER2_FB_OFFSET_HI__PEER2_FB_OFFSET_HI_MASK 0x000FFFFFL
+//RCC_DEV0_1_RCC_PEER2_FB_OFFSET_LO
+#define RCC_DEV0_1_RCC_PEER2_FB_OFFSET_LO__PEER2_FB_OFFSET_LO__SHIFT 0x0
+#define RCC_DEV0_1_RCC_PEER2_FB_OFFSET_LO__PEER2_FB_EN__SHIFT 0x1f
+#define RCC_DEV0_1_RCC_PEER2_FB_OFFSET_LO__PEER2_FB_OFFSET_LO_MASK 0x000FFFFFL
+#define RCC_DEV0_1_RCC_PEER2_FB_OFFSET_LO__PEER2_FB_EN_MASK 0x80000000L
+//RCC_DEV0_1_RCC_PEER3_FB_OFFSET_HI
+#define RCC_DEV0_1_RCC_PEER3_FB_OFFSET_HI__PEER3_FB_OFFSET_HI__SHIFT 0x0
+#define RCC_DEV0_1_RCC_PEER3_FB_OFFSET_HI__PEER3_FB_OFFSET_HI_MASK 0x000FFFFFL
+//RCC_DEV0_1_RCC_PEER3_FB_OFFSET_LO
+#define RCC_DEV0_1_RCC_PEER3_FB_OFFSET_LO__PEER3_FB_OFFSET_LO__SHIFT 0x0
+#define RCC_DEV0_1_RCC_PEER3_FB_OFFSET_LO__PEER3_FB_EN__SHIFT 0x1f
+#define RCC_DEV0_1_RCC_PEER3_FB_OFFSET_LO__PEER3_FB_OFFSET_LO_MASK 0x000FFFFFL
+#define RCC_DEV0_1_RCC_PEER3_FB_OFFSET_LO__PEER3_FB_EN_MASK 0x80000000L
+//RCC_DEV0_1_RCC_DEVFUNCNUM_LIST0
+#define RCC_DEV0_1_RCC_DEVFUNCNUM_LIST0__DEVFUNC_ID0__SHIFT 0x0
+#define RCC_DEV0_1_RCC_DEVFUNCNUM_LIST0__DEVFUNC_ID1__SHIFT 0x8
+#define RCC_DEV0_1_RCC_DEVFUNCNUM_LIST0__DEVFUNC_ID2__SHIFT 0x10
+#define RCC_DEV0_1_RCC_DEVFUNCNUM_LIST0__DEVFUNC_ID3__SHIFT 0x18
+#define RCC_DEV0_1_RCC_DEVFUNCNUM_LIST0__DEVFUNC_ID0_MASK 0x000000FFL
+#define RCC_DEV0_1_RCC_DEVFUNCNUM_LIST0__DEVFUNC_ID1_MASK 0x0000FF00L
+#define RCC_DEV0_1_RCC_DEVFUNCNUM_LIST0__DEVFUNC_ID2_MASK 0x00FF0000L
+#define RCC_DEV0_1_RCC_DEVFUNCNUM_LIST0__DEVFUNC_ID3_MASK 0xFF000000L
+//RCC_DEV0_1_RCC_DEVFUNCNUM_LIST1
+#define RCC_DEV0_1_RCC_DEVFUNCNUM_LIST1__DEVFUNC_ID4__SHIFT 0x0
+#define RCC_DEV0_1_RCC_DEVFUNCNUM_LIST1__DEVFUNC_ID5__SHIFT 0x8
+#define RCC_DEV0_1_RCC_DEVFUNCNUM_LIST1__DEVFUNC_ID6__SHIFT 0x10
+#define RCC_DEV0_1_RCC_DEVFUNCNUM_LIST1__DEVFUNC_ID7__SHIFT 0x18
+#define RCC_DEV0_1_RCC_DEVFUNCNUM_LIST1__DEVFUNC_ID4_MASK 0x000000FFL
+#define RCC_DEV0_1_RCC_DEVFUNCNUM_LIST1__DEVFUNC_ID5_MASK 0x0000FF00L
+#define RCC_DEV0_1_RCC_DEVFUNCNUM_LIST1__DEVFUNC_ID6_MASK 0x00FF0000L
+#define RCC_DEV0_1_RCC_DEVFUNCNUM_LIST1__DEVFUNC_ID7_MASK 0xFF000000L
+//RCC_DEV0_2_RCC_DEV0_LINK_CNTL
+#define RCC_DEV0_2_RCC_DEV0_LINK_CNTL__LINK_DOWN_EXIT__SHIFT 0x0
+#define RCC_DEV0_2_RCC_DEV0_LINK_CNTL__LINK_DOWN_ENTRY__SHIFT 0x8
+#define RCC_DEV0_2_RCC_DEV0_LINK_CNTL__SWUS_SRB_RST_TLS_DIS__SHIFT 0x10
+#define RCC_DEV0_2_RCC_DEV0_LINK_CNTL__SWUS_LDN_RST_TLS_DIS__SHIFT 0x11
+#define RCC_DEV0_2_RCC_DEV0_LINK_CNTL__LINK_DOWN_EXIT_MASK 0x00000001L
+#define RCC_DEV0_2_RCC_DEV0_LINK_CNTL__LINK_DOWN_ENTRY_MASK 0x00000100L
+#define RCC_DEV0_2_RCC_DEV0_LINK_CNTL__SWUS_SRB_RST_TLS_DIS_MASK 0x00010000L
+#define RCC_DEV0_2_RCC_DEV0_LINK_CNTL__SWUS_LDN_RST_TLS_DIS_MASK 0x00020000L
+//RCC_DEV0_2_RCC_CMN_LINK_CNTL
+#define RCC_DEV0_2_RCC_CMN_LINK_CNTL__BLOCK_PME_ON_L0S_DIS__SHIFT 0x0
+#define RCC_DEV0_2_RCC_CMN_LINK_CNTL__BLOCK_PME_ON_L1_DIS__SHIFT 0x1
+#define RCC_DEV0_2_RCC_CMN_LINK_CNTL__BLOCK_PME_ON_LDN_DIS__SHIFT 0x2
+#define RCC_DEV0_2_RCC_CMN_LINK_CNTL__PM_L1_IDLE_CHECK_DMA_EN__SHIFT 0x3
+#define RCC_DEV0_2_RCC_CMN_LINK_CNTL__VLINK_IN_L1LTR_TIMER__SHIFT 0x10
+#define RCC_DEV0_2_RCC_CMN_LINK_CNTL__BLOCK_PME_ON_L0S_DIS_MASK 0x00000001L
+#define RCC_DEV0_2_RCC_CMN_LINK_CNTL__BLOCK_PME_ON_L1_DIS_MASK 0x00000002L
+#define RCC_DEV0_2_RCC_CMN_LINK_CNTL__BLOCK_PME_ON_LDN_DIS_MASK 0x00000004L
+#define RCC_DEV0_2_RCC_CMN_LINK_CNTL__PM_L1_IDLE_CHECK_DMA_EN_MASK 0x00000008L
+#define RCC_DEV0_2_RCC_CMN_LINK_CNTL__VLINK_IN_L1LTR_TIMER_MASK 0xFFFF0000L
+//RCC_DEV0_2_RCC_EP_REQUESTERID_RESTORE
+#define RCC_DEV0_2_RCC_EP_REQUESTERID_RESTORE__EP_REQID_BUS__SHIFT 0x0
+#define RCC_DEV0_2_RCC_EP_REQUESTERID_RESTORE__EP_REQID_DEV__SHIFT 0x8
+#define RCC_DEV0_2_RCC_EP_REQUESTERID_RESTORE__EP_REQID_BUS_MASK 0x000000FFL
+#define RCC_DEV0_2_RCC_EP_REQUESTERID_RESTORE__EP_REQID_DEV_MASK 0x00001F00L
+//RCC_DEV0_2_RCC_LTR_LSWITCH_CNTL
+#define RCC_DEV0_2_RCC_LTR_LSWITCH_CNTL__LSWITCH_LATENCY_VALUE__SHIFT 0x0
+#define RCC_DEV0_2_RCC_LTR_LSWITCH_CNTL__LSWITCH_LATENCY_VALUE_MASK 0x000003FFL
+//RCC_DEV0_2_RCC_MH_ARB_CNTL
+#define RCC_DEV0_2_RCC_MH_ARB_CNTL__MH_ARB_MODE__SHIFT 0x0
+#define RCC_DEV0_2_RCC_MH_ARB_CNTL__MH_ARB_FIX_PRIORITY__SHIFT 0x1
+#define RCC_DEV0_2_RCC_MH_ARB_CNTL__MH_ARB_MODE_MASK 0x00000001L
+#define RCC_DEV0_2_RCC_MH_ARB_CNTL__MH_ARB_FIX_PRIORITY_MASK 0x00007FFEL
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_SYSDEC
+//BIF_BX1_PCIE_INDEX
+#define BIF_BX1_PCIE_INDEX__PCIE_INDEX__SHIFT 0x0
+#define BIF_BX1_PCIE_INDEX__PCIE_INDEX_MASK 0xFFFFFFFFL
+//BIF_BX1_PCIE_DATA
+#define BIF_BX1_PCIE_DATA__PCIE_DATA__SHIFT 0x0
+#define BIF_BX1_PCIE_DATA__PCIE_DATA_MASK 0xFFFFFFFFL
+//BIF_BX1_PCIE_INDEX2
+#define BIF_BX1_PCIE_INDEX2__PCIE_INDEX2__SHIFT 0x0
+#define BIF_BX1_PCIE_INDEX2__PCIE_INDEX2_MASK 0xFFFFFFFFL
+//BIF_BX1_PCIE_DATA2
+#define BIF_BX1_PCIE_DATA2__PCIE_DATA2__SHIFT 0x0
+#define BIF_BX1_PCIE_DATA2__PCIE_DATA2_MASK 0xFFFFFFFFL
+//BIF_BX1_PCIE_INDEX_HI
+#define BIF_BX1_PCIE_INDEX_HI__PCIE_INDEX_HI__SHIFT 0x0
+#define BIF_BX1_PCIE_INDEX_HI__PCIE_INDEX_HI_MASK 0x000000FFL
+//BIF_BX1_PCIE_INDEX2_HI
+#define BIF_BX1_PCIE_INDEX2_HI__PCIE_INDEX2_HI__SHIFT 0x0
+#define BIF_BX1_PCIE_INDEX2_HI__PCIE_INDEX2_HI_MASK 0x000000FFL
+//BIF_BX1_SBIOS_SCRATCH_0
+#define BIF_BX1_SBIOS_SCRATCH_0__SBIOS_SCRATCH_0__SHIFT 0x0
+#define BIF_BX1_SBIOS_SCRATCH_0__SBIOS_SCRATCH_0_MASK 0xFFFFFFFFL
+//BIF_BX1_SBIOS_SCRATCH_1
+#define BIF_BX1_SBIOS_SCRATCH_1__SBIOS_SCRATCH_1__SHIFT 0x0
+#define BIF_BX1_SBIOS_SCRATCH_1__SBIOS_SCRATCH_1_MASK 0xFFFFFFFFL
+//BIF_BX1_SBIOS_SCRATCH_2
+#define BIF_BX1_SBIOS_SCRATCH_2__SBIOS_SCRATCH_2__SHIFT 0x0
+#define BIF_BX1_SBIOS_SCRATCH_2__SBIOS_SCRATCH_2_MASK 0xFFFFFFFFL
+//BIF_BX1_SBIOS_SCRATCH_3
+#define BIF_BX1_SBIOS_SCRATCH_3__SBIOS_SCRATCH_3__SHIFT 0x0
+#define BIF_BX1_SBIOS_SCRATCH_3__SBIOS_SCRATCH_3_MASK 0xFFFFFFFFL
+//BIF_BX1_BIOS_SCRATCH_0
+#define BIF_BX1_BIOS_SCRATCH_0__BIOS_SCRATCH_0__SHIFT 0x0
+#define BIF_BX1_BIOS_SCRATCH_0__BIOS_SCRATCH_0_MASK 0xFFFFFFFFL
+//BIF_BX1_BIOS_SCRATCH_1
+#define BIF_BX1_BIOS_SCRATCH_1__BIOS_SCRATCH_1__SHIFT 0x0
+#define BIF_BX1_BIOS_SCRATCH_1__BIOS_SCRATCH_1_MASK 0xFFFFFFFFL
+//BIF_BX1_BIOS_SCRATCH_2
+#define BIF_BX1_BIOS_SCRATCH_2__BIOS_SCRATCH_2__SHIFT 0x0
+#define BIF_BX1_BIOS_SCRATCH_2__BIOS_SCRATCH_2_MASK 0xFFFFFFFFL
+//BIF_BX1_BIOS_SCRATCH_3
+#define BIF_BX1_BIOS_SCRATCH_3__BIOS_SCRATCH_3__SHIFT 0x0
+#define BIF_BX1_BIOS_SCRATCH_3__BIOS_SCRATCH_3_MASK 0xFFFFFFFFL
+//BIF_BX1_BIOS_SCRATCH_4
+#define BIF_BX1_BIOS_SCRATCH_4__BIOS_SCRATCH_4__SHIFT 0x0
+#define BIF_BX1_BIOS_SCRATCH_4__BIOS_SCRATCH_4_MASK 0xFFFFFFFFL
+//BIF_BX1_BIOS_SCRATCH_5
+#define BIF_BX1_BIOS_SCRATCH_5__BIOS_SCRATCH_5__SHIFT 0x0
+#define BIF_BX1_BIOS_SCRATCH_5__BIOS_SCRATCH_5_MASK 0xFFFFFFFFL
+//BIF_BX1_BIOS_SCRATCH_6
+#define BIF_BX1_BIOS_SCRATCH_6__BIOS_SCRATCH_6__SHIFT 0x0
+#define BIF_BX1_BIOS_SCRATCH_6__BIOS_SCRATCH_6_MASK 0xFFFFFFFFL
+//BIF_BX1_BIOS_SCRATCH_7
+#define BIF_BX1_BIOS_SCRATCH_7__BIOS_SCRATCH_7__SHIFT 0x0
+#define BIF_BX1_BIOS_SCRATCH_7__BIOS_SCRATCH_7_MASK 0xFFFFFFFFL
+//BIF_BX1_BIOS_SCRATCH_8
+#define BIF_BX1_BIOS_SCRATCH_8__BIOS_SCRATCH_8__SHIFT 0x0
+#define BIF_BX1_BIOS_SCRATCH_8__BIOS_SCRATCH_8_MASK 0xFFFFFFFFL
+//BIF_BX1_BIOS_SCRATCH_9
+#define BIF_BX1_BIOS_SCRATCH_9__BIOS_SCRATCH_9__SHIFT 0x0
+#define BIF_BX1_BIOS_SCRATCH_9__BIOS_SCRATCH_9_MASK 0xFFFFFFFFL
+//BIF_BX1_BIOS_SCRATCH_10
+#define BIF_BX1_BIOS_SCRATCH_10__BIOS_SCRATCH_10__SHIFT 0x0
+#define BIF_BX1_BIOS_SCRATCH_10__BIOS_SCRATCH_10_MASK 0xFFFFFFFFL
+//BIF_BX1_BIOS_SCRATCH_11
+#define BIF_BX1_BIOS_SCRATCH_11__BIOS_SCRATCH_11__SHIFT 0x0
+#define BIF_BX1_BIOS_SCRATCH_11__BIOS_SCRATCH_11_MASK 0xFFFFFFFFL
+//BIF_BX1_BIOS_SCRATCH_12
+#define BIF_BX1_BIOS_SCRATCH_12__BIOS_SCRATCH_12__SHIFT 0x0
+#define BIF_BX1_BIOS_SCRATCH_12__BIOS_SCRATCH_12_MASK 0xFFFFFFFFL
+//BIF_BX1_BIOS_SCRATCH_13
+#define BIF_BX1_BIOS_SCRATCH_13__BIOS_SCRATCH_13__SHIFT 0x0
+#define BIF_BX1_BIOS_SCRATCH_13__BIOS_SCRATCH_13_MASK 0xFFFFFFFFL
+//BIF_BX1_BIOS_SCRATCH_14
+#define BIF_BX1_BIOS_SCRATCH_14__BIOS_SCRATCH_14__SHIFT 0x0
+#define BIF_BX1_BIOS_SCRATCH_14__BIOS_SCRATCH_14_MASK 0xFFFFFFFFL
+//BIF_BX1_BIOS_SCRATCH_15
+#define BIF_BX1_BIOS_SCRATCH_15__BIOS_SCRATCH_15__SHIFT 0x0
+#define BIF_BX1_BIOS_SCRATCH_15__BIOS_SCRATCH_15_MASK 0xFFFFFFFFL
+//BIF_BX1_BIF_RLC_INTR_CNTL
+//BIF_BX1_BIF_VCE_INTR_CNTL
+//BIF_BX1_BIF_UVD_INTR_CNTL
+//BIF_BX1_GFX_MMIOREG_CAM_ADDR0
+#define BIF_BX1_GFX_MMIOREG_CAM_ADDR0__CAM_ADDR0__SHIFT 0x0
+#define BIF_BX1_GFX_MMIOREG_CAM_ADDR0__CAM_ADDR0_MASK 0x000FFFFFL
+//BIF_BX1_GFX_MMIOREG_CAM_REMAP_ADDR0
+#define BIF_BX1_GFX_MMIOREG_CAM_REMAP_ADDR0__CAM_REMAP_ADDR0__SHIFT 0x0
+#define BIF_BX1_GFX_MMIOREG_CAM_REMAP_ADDR0__CAM_REMAP_ADDR0_MASK 0x000FFFFFL
+//BIF_BX1_GFX_MMIOREG_CAM_ADDR1
+#define BIF_BX1_GFX_MMIOREG_CAM_ADDR1__CAM_ADDR1__SHIFT 0x0
+#define BIF_BX1_GFX_MMIOREG_CAM_ADDR1__CAM_ADDR1_MASK 0x000FFFFFL
+//BIF_BX1_GFX_MMIOREG_CAM_REMAP_ADDR1
+#define BIF_BX1_GFX_MMIOREG_CAM_REMAP_ADDR1__CAM_REMAP_ADDR1__SHIFT 0x0
+#define BIF_BX1_GFX_MMIOREG_CAM_REMAP_ADDR1__CAM_REMAP_ADDR1_MASK 0x000FFFFFL
+//BIF_BX1_GFX_MMIOREG_CAM_ADDR2
+#define BIF_BX1_GFX_MMIOREG_CAM_ADDR2__CAM_ADDR2__SHIFT 0x0
+#define BIF_BX1_GFX_MMIOREG_CAM_ADDR2__CAM_ADDR2_MASK 0x000FFFFFL
+//BIF_BX1_GFX_MMIOREG_CAM_REMAP_ADDR2
+#define BIF_BX1_GFX_MMIOREG_CAM_REMAP_ADDR2__CAM_REMAP_ADDR2__SHIFT 0x0
+#define BIF_BX1_GFX_MMIOREG_CAM_REMAP_ADDR2__CAM_REMAP_ADDR2_MASK 0x000FFFFFL
+//BIF_BX1_GFX_MMIOREG_CAM_ADDR3
+#define BIF_BX1_GFX_MMIOREG_CAM_ADDR3__CAM_ADDR3__SHIFT 0x0
+#define BIF_BX1_GFX_MMIOREG_CAM_ADDR3__CAM_ADDR3_MASK 0x000FFFFFL
+//BIF_BX1_GFX_MMIOREG_CAM_REMAP_ADDR3
+#define BIF_BX1_GFX_MMIOREG_CAM_REMAP_ADDR3__CAM_REMAP_ADDR3__SHIFT 0x0
+#define BIF_BX1_GFX_MMIOREG_CAM_REMAP_ADDR3__CAM_REMAP_ADDR3_MASK 0x000FFFFFL
+//BIF_BX1_GFX_MMIOREG_CAM_ADDR4
+#define BIF_BX1_GFX_MMIOREG_CAM_ADDR4__CAM_ADDR4__SHIFT 0x0
+#define BIF_BX1_GFX_MMIOREG_CAM_ADDR4__CAM_ADDR4_MASK 0x000FFFFFL
+//BIF_BX1_GFX_MMIOREG_CAM_REMAP_ADDR4
+#define BIF_BX1_GFX_MMIOREG_CAM_REMAP_ADDR4__CAM_REMAP_ADDR4__SHIFT 0x0
+#define BIF_BX1_GFX_MMIOREG_CAM_REMAP_ADDR4__CAM_REMAP_ADDR4_MASK 0x000FFFFFL
+//BIF_BX1_GFX_MMIOREG_CAM_ADDR5
+#define BIF_BX1_GFX_MMIOREG_CAM_ADDR5__CAM_ADDR5__SHIFT 0x0
+#define BIF_BX1_GFX_MMIOREG_CAM_ADDR5__CAM_ADDR5_MASK 0x000FFFFFL
+//BIF_BX1_GFX_MMIOREG_CAM_REMAP_ADDR5
+#define BIF_BX1_GFX_MMIOREG_CAM_REMAP_ADDR5__CAM_REMAP_ADDR5__SHIFT 0x0
+#define BIF_BX1_GFX_MMIOREG_CAM_REMAP_ADDR5__CAM_REMAP_ADDR5_MASK 0x000FFFFFL
+//BIF_BX1_GFX_MMIOREG_CAM_ADDR6
+#define BIF_BX1_GFX_MMIOREG_CAM_ADDR6__CAM_ADDR6__SHIFT 0x0
+#define BIF_BX1_GFX_MMIOREG_CAM_ADDR6__CAM_ADDR6_MASK 0x000FFFFFL
+//BIF_BX1_GFX_MMIOREG_CAM_REMAP_ADDR6
+#define BIF_BX1_GFX_MMIOREG_CAM_REMAP_ADDR6__CAM_REMAP_ADDR6__SHIFT 0x0
+#define BIF_BX1_GFX_MMIOREG_CAM_REMAP_ADDR6__CAM_REMAP_ADDR6_MASK 0x000FFFFFL
+//BIF_BX1_GFX_MMIOREG_CAM_ADDR7
+#define BIF_BX1_GFX_MMIOREG_CAM_ADDR7__CAM_ADDR7__SHIFT 0x0
+#define BIF_BX1_GFX_MMIOREG_CAM_ADDR7__CAM_ADDR7_MASK 0x000FFFFFL
+//BIF_BX1_GFX_MMIOREG_CAM_REMAP_ADDR7
+#define BIF_BX1_GFX_MMIOREG_CAM_REMAP_ADDR7__CAM_REMAP_ADDR7__SHIFT 0x0
+#define BIF_BX1_GFX_MMIOREG_CAM_REMAP_ADDR7__CAM_REMAP_ADDR7_MASK 0x000FFFFFL
+//BIF_BX1_GFX_MMIOREG_CAM_CNTL
+#define BIF_BX1_GFX_MMIOREG_CAM_CNTL__CAM_ENABLE__SHIFT 0x0
+#define BIF_BX1_GFX_MMIOREG_CAM_CNTL__CAM_ENABLE_MASK 0x000000FFL
+//BIF_BX1_GFX_MMIOREG_CAM_ZERO_CPL
+#define BIF_BX1_GFX_MMIOREG_CAM_ZERO_CPL__CAM_ZERO_CPL__SHIFT 0x0
+#define BIF_BX1_GFX_MMIOREG_CAM_ZERO_CPL__CAM_ZERO_CPL_MASK 0xFFFFFFFFL
+//BIF_BX1_GFX_MMIOREG_CAM_ONE_CPL
+#define BIF_BX1_GFX_MMIOREG_CAM_ONE_CPL__CAM_ONE_CPL__SHIFT 0x0
+#define BIF_BX1_GFX_MMIOREG_CAM_ONE_CPL__CAM_ONE_CPL_MASK 0xFFFFFFFFL
+//BIF_BX1_GFX_MMIOREG_CAM_PROGRAMMABLE_CPL
+#define BIF_BX1_GFX_MMIOREG_CAM_PROGRAMMABLE_CPL__CAM_PROGRAMMABLE_CPL__SHIFT 0x0
+#define BIF_BX1_GFX_MMIOREG_CAM_PROGRAMMABLE_CPL__CAM_PROGRAMMABLE_CPL_MASK 0xFFFFFFFFL
+//BIF_BX1_DRIVER_SCRATCH_0
+#define BIF_BX1_DRIVER_SCRATCH_0__DRIVER_SCRATCH_0__SHIFT 0x0
+#define BIF_BX1_DRIVER_SCRATCH_0__DRIVER_SCRATCH_0_MASK 0xFFFFFFFFL
+//BIF_BX1_DRIVER_SCRATCH_1
+#define BIF_BX1_DRIVER_SCRATCH_1__DRIVER_SCRATCH_1__SHIFT 0x0
+#define BIF_BX1_DRIVER_SCRATCH_1__DRIVER_SCRATCH_1_MASK 0xFFFFFFFFL
+//BIF_BX1_DRIVER_SCRATCH_2
+#define BIF_BX1_DRIVER_SCRATCH_2__DRIVER_SCRATCH_2__SHIFT 0x0
+#define BIF_BX1_DRIVER_SCRATCH_2__DRIVER_SCRATCH_2_MASK 0xFFFFFFFFL
+//BIF_BX1_DRIVER_SCRATCH_3
+#define BIF_BX1_DRIVER_SCRATCH_3__DRIVER_SCRATCH_3__SHIFT 0x0
+#define BIF_BX1_DRIVER_SCRATCH_3__DRIVER_SCRATCH_3_MASK 0xFFFFFFFFL
+//BIF_BX1_DRIVER_SCRATCH_4
+#define BIF_BX1_DRIVER_SCRATCH_4__DRIVER_SCRATCH_4__SHIFT 0x0
+#define BIF_BX1_DRIVER_SCRATCH_4__DRIVER_SCRATCH_4_MASK 0xFFFFFFFFL
+//BIF_BX1_DRIVER_SCRATCH_5
+#define BIF_BX1_DRIVER_SCRATCH_5__DRIVER_SCRATCH_5__SHIFT 0x0
+#define BIF_BX1_DRIVER_SCRATCH_5__DRIVER_SCRATCH_5_MASK 0xFFFFFFFFL
+//BIF_BX1_DRIVER_SCRATCH_6
+#define BIF_BX1_DRIVER_SCRATCH_6__DRIVER_SCRATCH_6__SHIFT 0x0
+#define BIF_BX1_DRIVER_SCRATCH_6__DRIVER_SCRATCH_6_MASK 0xFFFFFFFFL
+//BIF_BX1_DRIVER_SCRATCH_7
+#define BIF_BX1_DRIVER_SCRATCH_7__DRIVER_SCRATCH_7__SHIFT 0x0
+#define BIF_BX1_DRIVER_SCRATCH_7__DRIVER_SCRATCH_7_MASK 0xFFFFFFFFL
+//BIF_BX1_DRIVER_SCRATCH_8
+#define BIF_BX1_DRIVER_SCRATCH_8__DRIVER_SCRATCH_8__SHIFT 0x0
+#define BIF_BX1_DRIVER_SCRATCH_8__DRIVER_SCRATCH_8_MASK 0xFFFFFFFFL
+//BIF_BX1_DRIVER_SCRATCH_9
+#define BIF_BX1_DRIVER_SCRATCH_9__DRIVER_SCRATCH_9__SHIFT 0x0
+#define BIF_BX1_DRIVER_SCRATCH_9__DRIVER_SCRATCH_9_MASK 0xFFFFFFFFL
+//BIF_BX1_DRIVER_SCRATCH_10
+#define BIF_BX1_DRIVER_SCRATCH_10__DRIVER_SCRATCH_10__SHIFT 0x0
+#define BIF_BX1_DRIVER_SCRATCH_10__DRIVER_SCRATCH_10_MASK 0xFFFFFFFFL
+//BIF_BX1_DRIVER_SCRATCH_11
+#define BIF_BX1_DRIVER_SCRATCH_11__DRIVER_SCRATCH_11__SHIFT 0x0
+#define BIF_BX1_DRIVER_SCRATCH_11__DRIVER_SCRATCH_11_MASK 0xFFFFFFFFL
+//BIF_BX1_DRIVER_SCRATCH_12
+#define BIF_BX1_DRIVER_SCRATCH_12__DRIVER_SCRATCH_12__SHIFT 0x0
+#define BIF_BX1_DRIVER_SCRATCH_12__DRIVER_SCRATCH_12_MASK 0xFFFFFFFFL
+//BIF_BX1_DRIVER_SCRATCH_13
+#define BIF_BX1_DRIVER_SCRATCH_13__DRIVER_SCRATCH_13__SHIFT 0x0
+#define BIF_BX1_DRIVER_SCRATCH_13__DRIVER_SCRATCH_13_MASK 0xFFFFFFFFL
+//BIF_BX1_DRIVER_SCRATCH_14
+#define BIF_BX1_DRIVER_SCRATCH_14__DRIVER_SCRATCH_14__SHIFT 0x0
+#define BIF_BX1_DRIVER_SCRATCH_14__DRIVER_SCRATCH_14_MASK 0xFFFFFFFFL
+//BIF_BX1_DRIVER_SCRATCH_15
+#define BIF_BX1_DRIVER_SCRATCH_15__DRIVER_SCRATCH_15__SHIFT 0x0
+#define BIF_BX1_DRIVER_SCRATCH_15__DRIVER_SCRATCH_15_MASK 0xFFFFFFFFL
+//BIF_BX1_FW_SCRATCH_0
+#define BIF_BX1_FW_SCRATCH_0__FW_SCRATCH_0__SHIFT 0x0
+#define BIF_BX1_FW_SCRATCH_0__FW_SCRATCH_0_MASK 0xFFFFFFFFL
+//BIF_BX1_FW_SCRATCH_1
+#define BIF_BX1_FW_SCRATCH_1__FW_SCRATCH_1__SHIFT 0x0
+#define BIF_BX1_FW_SCRATCH_1__FW_SCRATCH_1_MASK 0xFFFFFFFFL
+//BIF_BX1_FW_SCRATCH_2
+#define BIF_BX1_FW_SCRATCH_2__FW_SCRATCH_2__SHIFT 0x0
+#define BIF_BX1_FW_SCRATCH_2__FW_SCRATCH_2_MASK 0xFFFFFFFFL
+//BIF_BX1_FW_SCRATCH_3
+#define BIF_BX1_FW_SCRATCH_3__FW_SCRATCH_3__SHIFT 0x0
+#define BIF_BX1_FW_SCRATCH_3__FW_SCRATCH_3_MASK 0xFFFFFFFFL
+//BIF_BX1_FW_SCRATCH_4
+#define BIF_BX1_FW_SCRATCH_4__FW_SCRATCH_4__SHIFT 0x0
+#define BIF_BX1_FW_SCRATCH_4__FW_SCRATCH_4_MASK 0xFFFFFFFFL
+//BIF_BX1_FW_SCRATCH_5
+#define BIF_BX1_FW_SCRATCH_5__FW_SCRATCH_5__SHIFT 0x0
+#define BIF_BX1_FW_SCRATCH_5__FW_SCRATCH_5_MASK 0xFFFFFFFFL
+//BIF_BX1_FW_SCRATCH_6
+#define BIF_BX1_FW_SCRATCH_6__FW_SCRATCH_6__SHIFT 0x0
+#define BIF_BX1_FW_SCRATCH_6__FW_SCRATCH_6_MASK 0xFFFFFFFFL
+//BIF_BX1_FW_SCRATCH_7
+#define BIF_BX1_FW_SCRATCH_7__FW_SCRATCH_7__SHIFT 0x0
+#define BIF_BX1_FW_SCRATCH_7__FW_SCRATCH_7_MASK 0xFFFFFFFFL
+//BIF_BX1_FW_SCRATCH_8
+#define BIF_BX1_FW_SCRATCH_8__FW_SCRATCH_8__SHIFT 0x0
+#define BIF_BX1_FW_SCRATCH_8__FW_SCRATCH_8_MASK 0xFFFFFFFFL
+//BIF_BX1_FW_SCRATCH_9
+#define BIF_BX1_FW_SCRATCH_9__FW_SCRATCH_9__SHIFT 0x0
+#define BIF_BX1_FW_SCRATCH_9__FW_SCRATCH_9_MASK 0xFFFFFFFFL
+//BIF_BX1_FW_SCRATCH_10
+#define BIF_BX1_FW_SCRATCH_10__FW_SCRATCH_10__SHIFT 0x0
+#define BIF_BX1_FW_SCRATCH_10__FW_SCRATCH_10_MASK 0xFFFFFFFFL
+//BIF_BX1_FW_SCRATCH_11
+#define BIF_BX1_FW_SCRATCH_11__FW_SCRATCH_11__SHIFT 0x0
+#define BIF_BX1_FW_SCRATCH_11__FW_SCRATCH_11_MASK 0xFFFFFFFFL
+//BIF_BX1_FW_SCRATCH_12
+#define BIF_BX1_FW_SCRATCH_12__FW_SCRATCH_12__SHIFT 0x0
+#define BIF_BX1_FW_SCRATCH_12__FW_SCRATCH_12_MASK 0xFFFFFFFFL
+//BIF_BX1_FW_SCRATCH_13
+#define BIF_BX1_FW_SCRATCH_13__FW_SCRATCH_13__SHIFT 0x0
+#define BIF_BX1_FW_SCRATCH_13__FW_SCRATCH_13_MASK 0xFFFFFFFFL
+//BIF_BX1_FW_SCRATCH_14
+#define BIF_BX1_FW_SCRATCH_14__FW_SCRATCH_14__SHIFT 0x0
+#define BIF_BX1_FW_SCRATCH_14__FW_SCRATCH_14_MASK 0xFFFFFFFFL
+//BIF_BX1_FW_SCRATCH_15
+#define BIF_BX1_FW_SCRATCH_15__FW_SCRATCH_15__SHIFT 0x0
+#define BIF_BX1_FW_SCRATCH_15__FW_SCRATCH_15_MASK 0xFFFFFFFFL
+//BIF_BX1_SBIOS_SCRATCH_4
+#define BIF_BX1_SBIOS_SCRATCH_4__SBIOS_SCRATCH_4__SHIFT 0x0
+#define BIF_BX1_SBIOS_SCRATCH_4__SBIOS_SCRATCH_4_MASK 0xFFFFFFFFL
+//BIF_BX1_SBIOS_SCRATCH_5
+#define BIF_BX1_SBIOS_SCRATCH_5__SBIOS_SCRATCH_5__SHIFT 0x0
+#define BIF_BX1_SBIOS_SCRATCH_5__SBIOS_SCRATCH_5_MASK 0xFFFFFFFFL
+//BIF_BX1_SBIOS_SCRATCH_6
+#define BIF_BX1_SBIOS_SCRATCH_6__SBIOS_SCRATCH_6__SHIFT 0x0
+#define BIF_BX1_SBIOS_SCRATCH_6__SBIOS_SCRATCH_6_MASK 0xFFFFFFFFL
+//BIF_BX1_SBIOS_SCRATCH_7
+#define BIF_BX1_SBIOS_SCRATCH_7__SBIOS_SCRATCH_7__SHIFT 0x0
+#define BIF_BX1_SBIOS_SCRATCH_7__SBIOS_SCRATCH_7_MASK 0xFFFFFFFFL
+//BIF_BX1_SBIOS_SCRATCH_8
+#define BIF_BX1_SBIOS_SCRATCH_8__SBIOS_SCRATCH_8__SHIFT 0x0
+#define BIF_BX1_SBIOS_SCRATCH_8__SBIOS_SCRATCH_8_MASK 0xFFFFFFFFL
+//BIF_BX1_SBIOS_SCRATCH_9
+#define BIF_BX1_SBIOS_SCRATCH_9__SBIOS_SCRATCH_9__SHIFT 0x0
+#define BIF_BX1_SBIOS_SCRATCH_9__SBIOS_SCRATCH_9_MASK 0xFFFFFFFFL
+//BIF_BX1_SBIOS_SCRATCH_10
+#define BIF_BX1_SBIOS_SCRATCH_10__SBIOS_SCRATCH_10__SHIFT 0x0
+#define BIF_BX1_SBIOS_SCRATCH_10__SBIOS_SCRATCH_10_MASK 0xFFFFFFFFL
+//BIF_BX1_SBIOS_SCRATCH_11
+#define BIF_BX1_SBIOS_SCRATCH_11__SBIOS_SCRATCH_11__SHIFT 0x0
+#define BIF_BX1_SBIOS_SCRATCH_11__SBIOS_SCRATCH_11_MASK 0xFFFFFFFFL
+//BIF_BX1_SBIOS_SCRATCH_12
+#define BIF_BX1_SBIOS_SCRATCH_12__SBIOS_SCRATCH_12__SHIFT 0x0
+#define BIF_BX1_SBIOS_SCRATCH_12__SBIOS_SCRATCH_12_MASK 0xFFFFFFFFL
+//BIF_BX1_SBIOS_SCRATCH_13
+#define BIF_BX1_SBIOS_SCRATCH_13__SBIOS_SCRATCH_13__SHIFT 0x0
+#define BIF_BX1_SBIOS_SCRATCH_13__SBIOS_SCRATCH_13_MASK 0xFFFFFFFFL
+//BIF_BX1_SBIOS_SCRATCH_14
+#define BIF_BX1_SBIOS_SCRATCH_14__SBIOS_SCRATCH_14__SHIFT 0x0
+#define BIF_BX1_SBIOS_SCRATCH_14__SBIOS_SCRATCH_14_MASK 0xFFFFFFFFL
+//BIF_BX1_SBIOS_SCRATCH_15
+#define BIF_BX1_SBIOS_SCRATCH_15__SBIOS_SCRATCH_15__SHIFT 0x0
+#define BIF_BX1_SBIOS_SCRATCH_15__SBIOS_SCRATCH_15_MASK 0xFFFFFFFFL
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_pf_SYSPFVFDEC
+//BIF_BX_PF1_MM_INDEX
+#define BIF_BX_PF1_MM_INDEX__MM_OFFSET__SHIFT 0x0
+#define BIF_BX_PF1_MM_INDEX__MM_APER__SHIFT 0x1f
+#define BIF_BX_PF1_MM_INDEX__MM_OFFSET_MASK 0x7FFFFFFFL
+#define BIF_BX_PF1_MM_INDEX__MM_APER_MASK 0x80000000L
+//BIF_BX_PF1_MM_DATA
+#define BIF_BX_PF1_MM_DATA__MM_DATA__SHIFT 0x0
+#define BIF_BX_PF1_MM_DATA__MM_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_PF1_MM_INDEX_HI
+#define BIF_BX_PF1_MM_INDEX_HI__MM_OFFSET_HI__SHIFT 0x0
+#define BIF_BX_PF1_MM_INDEX_HI__MM_OFFSET_HI_MASK 0xFFFFFFFFL
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_BIFDEC1
+//BIF_BX1_CC_BIF_BX_STRAP0
+#define BIF_BX1_CC_BIF_BX_STRAP0__STRAP_RESERVED__SHIFT 0x19
+#define BIF_BX1_CC_BIF_BX_STRAP0__STRAP_RESERVED_MASK 0xFE000000L
+//BIF_BX1_CC_BIF_BX_PINSTRAP0
+//BIF_BX1_BIF_MM_INDACCESS_CNTL
+#define BIF_BX1_BIF_MM_INDACCESS_CNTL__WRITE_DIS__SHIFT 0x0
+#define BIF_BX1_BIF_MM_INDACCESS_CNTL__MM_INDACCESS_DIS__SHIFT 0x1
+#define BIF_BX1_BIF_MM_INDACCESS_CNTL__WRITE_DIS_MASK 0x00000001L
+#define BIF_BX1_BIF_MM_INDACCESS_CNTL__MM_INDACCESS_DIS_MASK 0x00000002L
+//BIF_BX1_BUS_CNTL
+#define BIF_BX1_BUS_CNTL__VGA_REG_COHERENCY_DIS__SHIFT 0x6
+#define BIF_BX1_BUS_CNTL__VGA_MEM_COHERENCY_DIS__SHIFT 0x7
+#define BIF_BX1_BUS_CNTL__SET_AZ_TC__SHIFT 0xa
+#define BIF_BX1_BUS_CNTL__SET_MC_TC__SHIFT 0xd
+#define BIF_BX1_BUS_CNTL__ZERO_BE_WR_EN__SHIFT 0x10
+#define BIF_BX1_BUS_CNTL__ZERO_BE_RD_EN__SHIFT 0x11
+#define BIF_BX1_BUS_CNTL__RD_STALL_IO_WR__SHIFT 0x12
+#define BIF_BX1_BUS_CNTL__HDP_FB_FLUSH_STALL_DOORBELL_DIS__SHIFT 0x18
+#define BIF_BX1_BUS_CNTL__PRECEEDINGWR_STALL_VGA_FB_FLUSH_DIS__SHIFT 0x19
+#define BIF_BX1_BUS_CNTL__PRECEEDINGWR_STALL_VGA_REG_FLUSH_DIS__SHIFT 0x1a
+#define BIF_BX1_BUS_CNTL__MMDAT_RD_HDP_TRIGGER_HDP_FB_FLUSH_DIS__SHIFT 0x1b
+#define BIF_BX1_BUS_CNTL__HDP_FB_FLUSH_STALL_MMDAT_RD_HDP_DIS__SHIFT 0x1c
+#define BIF_BX1_BUS_CNTL__HDP_REG_FLUSH_VF_MASK_EN__SHIFT 0x1d
+#define BIF_BX1_BUS_CNTL__VGAFB_ZERO_BE_WR_EN__SHIFT 0x1e
+#define BIF_BX1_BUS_CNTL__VGAFB_ZERO_BE_RD_EN__SHIFT 0x1f
+#define BIF_BX1_BUS_CNTL__VGA_REG_COHERENCY_DIS_MASK 0x00000040L
+#define BIF_BX1_BUS_CNTL__VGA_MEM_COHERENCY_DIS_MASK 0x00000080L
+#define BIF_BX1_BUS_CNTL__SET_AZ_TC_MASK 0x00001C00L
+#define BIF_BX1_BUS_CNTL__SET_MC_TC_MASK 0x0000E000L
+#define BIF_BX1_BUS_CNTL__ZERO_BE_WR_EN_MASK 0x00010000L
+#define BIF_BX1_BUS_CNTL__ZERO_BE_RD_EN_MASK 0x00020000L
+#define BIF_BX1_BUS_CNTL__RD_STALL_IO_WR_MASK 0x00040000L
+#define BIF_BX1_BUS_CNTL__HDP_FB_FLUSH_STALL_DOORBELL_DIS_MASK 0x01000000L
+#define BIF_BX1_BUS_CNTL__PRECEEDINGWR_STALL_VGA_FB_FLUSH_DIS_MASK 0x02000000L
+#define BIF_BX1_BUS_CNTL__PRECEEDINGWR_STALL_VGA_REG_FLUSH_DIS_MASK 0x04000000L
+#define BIF_BX1_BUS_CNTL__MMDAT_RD_HDP_TRIGGER_HDP_FB_FLUSH_DIS_MASK 0x08000000L
+#define BIF_BX1_BUS_CNTL__HDP_FB_FLUSH_STALL_MMDAT_RD_HDP_DIS_MASK 0x10000000L
+#define BIF_BX1_BUS_CNTL__HDP_REG_FLUSH_VF_MASK_EN_MASK 0x20000000L
+#define BIF_BX1_BUS_CNTL__VGAFB_ZERO_BE_WR_EN_MASK 0x40000000L
+#define BIF_BX1_BUS_CNTL__VGAFB_ZERO_BE_RD_EN_MASK 0x80000000L
+//BIF_BX1_BIF_SCRATCH0
+#define BIF_BX1_BIF_SCRATCH0__BIF_SCRATCH0__SHIFT 0x0
+#define BIF_BX1_BIF_SCRATCH0__BIF_SCRATCH0_MASK 0xFFFFFFFFL
+//BIF_BX1_BIF_SCRATCH1
+#define BIF_BX1_BIF_SCRATCH1__BIF_SCRATCH1__SHIFT 0x0
+#define BIF_BX1_BIF_SCRATCH1__BIF_SCRATCH1_MASK 0xFFFFFFFFL
+//BIF_BX1_BX_RESET_EN
+#define BIF_BX1_BX_RESET_EN__RESET_ON_VFENABLE_LOW_EN__SHIFT 0x10
+#define BIF_BX1_BX_RESET_EN__RESET_ON_VFENABLE_LOW_EN_MASK 0x00010000L
+//BIF_BX1_MM_CFGREGS_CNTL
+#define BIF_BX1_MM_CFGREGS_CNTL__MM_CFG_FUNC_SEL__SHIFT 0x0
+#define BIF_BX1_MM_CFGREGS_CNTL__MM_CFG_DEV_SEL__SHIFT 0x6
+#define BIF_BX1_MM_CFGREGS_CNTL__MM_WR_TO_CFG_EN__SHIFT 0x1f
+#define BIF_BX1_MM_CFGREGS_CNTL__MM_CFG_FUNC_SEL_MASK 0x00000007L
+#define BIF_BX1_MM_CFGREGS_CNTL__MM_CFG_DEV_SEL_MASK 0x000000C0L
+#define BIF_BX1_MM_CFGREGS_CNTL__MM_WR_TO_CFG_EN_MASK 0x80000000L
+//BIF_BX1_BX_RESET_CNTL
+#define BIF_BX1_BX_RESET_CNTL__LINK_TRAIN_EN__SHIFT 0x0
+#define BIF_BX1_BX_RESET_CNTL__LINK_TRAIN_EN_MASK 0x00000001L
+//BIF_BX1_INTERRUPT_CNTL
+#define BIF_BX1_INTERRUPT_CNTL__IH_DUMMY_RD_OVERRIDE__SHIFT 0x0
+#define BIF_BX1_INTERRUPT_CNTL__IH_DUMMY_RD_EN__SHIFT 0x1
+#define BIF_BX1_INTERRUPT_CNTL__IH_REQ_NONSNOOP_EN__SHIFT 0x3
+#define BIF_BX1_INTERRUPT_CNTL__IH_INTR_DLY_CNTR__SHIFT 0x4
+#define BIF_BX1_INTERRUPT_CNTL__GEN_IH_INT_EN__SHIFT 0x8
+#define BIF_BX1_INTERRUPT_CNTL__BIF_RB_REQ_NONSNOOP_EN__SHIFT 0xf
+#define BIF_BX1_INTERRUPT_CNTL__DUMMYRD_BYPASS_IN_MSI_EN__SHIFT 0x10
+#define BIF_BX1_INTERRUPT_CNTL__ALWAYS_SEND_INTPKT_AFTER_DUMMYRD_DIS__SHIFT 0x11
+#define BIF_BX1_INTERRUPT_CNTL__BIF_RB_REQ_RELAX_ORDER_EN__SHIFT 0x12
+#define BIF_BX1_INTERRUPT_CNTL__IH_DUMMY_RD_OVERRIDE_MASK 0x00000001L
+#define BIF_BX1_INTERRUPT_CNTL__IH_DUMMY_RD_EN_MASK 0x00000002L
+#define BIF_BX1_INTERRUPT_CNTL__IH_REQ_NONSNOOP_EN_MASK 0x00000008L
+#define BIF_BX1_INTERRUPT_CNTL__IH_INTR_DLY_CNTR_MASK 0x000000F0L
+#define BIF_BX1_INTERRUPT_CNTL__GEN_IH_INT_EN_MASK 0x00000100L
+#define BIF_BX1_INTERRUPT_CNTL__BIF_RB_REQ_NONSNOOP_EN_MASK 0x00008000L
+#define BIF_BX1_INTERRUPT_CNTL__DUMMYRD_BYPASS_IN_MSI_EN_MASK 0x00010000L
+#define BIF_BX1_INTERRUPT_CNTL__ALWAYS_SEND_INTPKT_AFTER_DUMMYRD_DIS_MASK 0x00020000L
+#define BIF_BX1_INTERRUPT_CNTL__BIF_RB_REQ_RELAX_ORDER_EN_MASK 0x00040000L
+//BIF_BX1_INTERRUPT_CNTL2
+#define BIF_BX1_INTERRUPT_CNTL2__IH_DUMMY_RD_ADDR__SHIFT 0x0
+#define BIF_BX1_INTERRUPT_CNTL2__IH_DUMMY_RD_ADDR_MASK 0xFFFFFFFFL
+//BIF_BX1_CLKREQB_PAD_CNTL
+#define BIF_BX1_CLKREQB_PAD_CNTL__CLKREQB_PAD_A__SHIFT 0x0
+#define BIF_BX1_CLKREQB_PAD_CNTL__CLKREQB_PAD_SEL__SHIFT 0x1
+#define BIF_BX1_CLKREQB_PAD_CNTL__CLKREQB_PAD_MODE__SHIFT 0x2
+#define BIF_BX1_CLKREQB_PAD_CNTL__CLKREQB_PAD_SPARE__SHIFT 0x3
+#define BIF_BX1_CLKREQB_PAD_CNTL__CLKREQB_PAD_SN0__SHIFT 0x5
+#define BIF_BX1_CLKREQB_PAD_CNTL__CLKREQB_PAD_SN1__SHIFT 0x6
+#define BIF_BX1_CLKREQB_PAD_CNTL__CLKREQB_PAD_SN2__SHIFT 0x7
+#define BIF_BX1_CLKREQB_PAD_CNTL__CLKREQB_PAD_SN3__SHIFT 0x8
+#define BIF_BX1_CLKREQB_PAD_CNTL__CLKREQB_PAD_SLEWN__SHIFT 0x9
+#define BIF_BX1_CLKREQB_PAD_CNTL__CLKREQB_PAD_WAKE__SHIFT 0xa
+#define BIF_BX1_CLKREQB_PAD_CNTL__CLKREQB_PAD_SCHMEN__SHIFT 0xb
+#define BIF_BX1_CLKREQB_PAD_CNTL__CLKREQB_PAD_CNTL_EN__SHIFT 0xc
+#define BIF_BX1_CLKREQB_PAD_CNTL__CLKREQB_PAD_Y__SHIFT 0xd
+#define BIF_BX1_CLKREQB_PAD_CNTL__CLKREQB_PAD_A_MASK 0x00000001L
+#define BIF_BX1_CLKREQB_PAD_CNTL__CLKREQB_PAD_SEL_MASK 0x00000002L
+#define BIF_BX1_CLKREQB_PAD_CNTL__CLKREQB_PAD_MODE_MASK 0x00000004L
+#define BIF_BX1_CLKREQB_PAD_CNTL__CLKREQB_PAD_SPARE_MASK 0x00000018L
+#define BIF_BX1_CLKREQB_PAD_CNTL__CLKREQB_PAD_SN0_MASK 0x00000020L
+#define BIF_BX1_CLKREQB_PAD_CNTL__CLKREQB_PAD_SN1_MASK 0x00000040L
+#define BIF_BX1_CLKREQB_PAD_CNTL__CLKREQB_PAD_SN2_MASK 0x00000080L
+#define BIF_BX1_CLKREQB_PAD_CNTL__CLKREQB_PAD_SN3_MASK 0x00000100L
+#define BIF_BX1_CLKREQB_PAD_CNTL__CLKREQB_PAD_SLEWN_MASK 0x00000200L
+#define BIF_BX1_CLKREQB_PAD_CNTL__CLKREQB_PAD_WAKE_MASK 0x00000400L
+#define BIF_BX1_CLKREQB_PAD_CNTL__CLKREQB_PAD_SCHMEN_MASK 0x00000800L
+#define BIF_BX1_CLKREQB_PAD_CNTL__CLKREQB_PAD_CNTL_EN_MASK 0x00001000L
+#define BIF_BX1_CLKREQB_PAD_CNTL__CLKREQB_PAD_Y_MASK 0x00002000L
+//BIF_BX1_BIF_FEATURES_CONTROL_MISC
+#define BIF_BX1_BIF_FEATURES_CONTROL_MISC__MST_BIF_REQ_EP_DIS__SHIFT 0x0
+#define BIF_BX1_BIF_FEATURES_CONTROL_MISC__SLV_BIF_CPL_EP_DIS__SHIFT 0x1
+#define BIF_BX1_BIF_FEATURES_CONTROL_MISC__BIF_SLV_REQ_EP_DIS__SHIFT 0x2
+#define BIF_BX1_BIF_FEATURES_CONTROL_MISC__BIF_MST_CPL_EP_DIS__SHIFT 0x3
+#define BIF_BX1_BIF_FEATURES_CONTROL_MISC__BIF_RB_MSI_VEC_NOT_ENABLED_MODE__SHIFT 0xb
+#define BIF_BX1_BIF_FEATURES_CONTROL_MISC__BIF_RB_SET_OVERFLOW_EN__SHIFT 0xc
+#define BIF_BX1_BIF_FEATURES_CONTROL_MISC__ATOMIC_ERR_INT_DIS__SHIFT 0xd
+#define BIF_BX1_BIF_FEATURES_CONTROL_MISC__ATOMIC_ONLY_WRITE_DIS__SHIFT 0xe
+#define BIF_BX1_BIF_FEATURES_CONTROL_MISC__BME_HDL_NONVIR_EN__SHIFT 0xf
+#define BIF_BX1_BIF_FEATURES_CONTROL_MISC__HDP_NP_OSTD_LIMIT__SHIFT 0x10
+#define BIF_BX1_BIF_FEATURES_CONTROL_MISC__DOORBELL_SELFRING_GPA_APER_CHK_48BIT_ADDR__SHIFT 0x19
+#define BIF_BX1_BIF_FEATURES_CONTROL_MISC__MST_BIF_REQ_EP_DIS_MASK 0x00000001L
+#define BIF_BX1_BIF_FEATURES_CONTROL_MISC__SLV_BIF_CPL_EP_DIS_MASK 0x00000002L
+#define BIF_BX1_BIF_FEATURES_CONTROL_MISC__BIF_SLV_REQ_EP_DIS_MASK 0x00000004L
+#define BIF_BX1_BIF_FEATURES_CONTROL_MISC__BIF_MST_CPL_EP_DIS_MASK 0x00000008L
+#define BIF_BX1_BIF_FEATURES_CONTROL_MISC__BIF_RB_MSI_VEC_NOT_ENABLED_MODE_MASK 0x00000800L
+#define BIF_BX1_BIF_FEATURES_CONTROL_MISC__BIF_RB_SET_OVERFLOW_EN_MASK 0x00001000L
+#define BIF_BX1_BIF_FEATURES_CONTROL_MISC__ATOMIC_ERR_INT_DIS_MASK 0x00002000L
+#define BIF_BX1_BIF_FEATURES_CONTROL_MISC__ATOMIC_ONLY_WRITE_DIS_MASK 0x00004000L
+#define BIF_BX1_BIF_FEATURES_CONTROL_MISC__BME_HDL_NONVIR_EN_MASK 0x00008000L
+#define BIF_BX1_BIF_FEATURES_CONTROL_MISC__HDP_NP_OSTD_LIMIT_MASK 0x01FF0000L
+#define BIF_BX1_BIF_FEATURES_CONTROL_MISC__DOORBELL_SELFRING_GPA_APER_CHK_48BIT_ADDR_MASK 0x02000000L
+//BIF_BX1_HDP_ATOMIC_CONTROL_MISC
+#define BIF_BX1_HDP_ATOMIC_CONTROL_MISC__HDP_NP_ATOMIC_OSTD_LIMIT__SHIFT 0x0
+#define BIF_BX1_HDP_ATOMIC_CONTROL_MISC__HDP_NP_ATOMIC_OSTD_LIMIT_MASK 0x000000FFL
+//BIF_BX1_BIF_DOORBELL_CNTL
+#define BIF_BX1_BIF_DOORBELL_CNTL__SELF_RING_DIS__SHIFT 0x0
+#define BIF_BX1_BIF_DOORBELL_CNTL__TRANS_CHECK_DIS__SHIFT 0x1
+#define BIF_BX1_BIF_DOORBELL_CNTL__UNTRANS_LBACK_EN__SHIFT 0x2
+#define BIF_BX1_BIF_DOORBELL_CNTL__NON_CONSECUTIVE_BE_ZERO_DIS__SHIFT 0x3
+#define BIF_BX1_BIF_DOORBELL_CNTL__DOORBELL_MONITOR_EN__SHIFT 0x4
+#define BIF_BX1_BIF_DOORBELL_CNTL__DB_MNTR_INTGEN_DIS__SHIFT 0x18
+#define BIF_BX1_BIF_DOORBELL_CNTL__DB_MNTR_INTGEN_MODE_0__SHIFT 0x19
+#define BIF_BX1_BIF_DOORBELL_CNTL__DB_MNTR_INTGEN_MODE_1__SHIFT 0x1a
+#define BIF_BX1_BIF_DOORBELL_CNTL__DB_MNTR_INTGEN_MODE_2__SHIFT 0x1b
+#define BIF_BX1_BIF_DOORBELL_CNTL__SELF_RING_DIS_MASK 0x00000001L
+#define BIF_BX1_BIF_DOORBELL_CNTL__TRANS_CHECK_DIS_MASK 0x00000002L
+#define BIF_BX1_BIF_DOORBELL_CNTL__UNTRANS_LBACK_EN_MASK 0x00000004L
+#define BIF_BX1_BIF_DOORBELL_CNTL__NON_CONSECUTIVE_BE_ZERO_DIS_MASK 0x00000008L
+#define BIF_BX1_BIF_DOORBELL_CNTL__DOORBELL_MONITOR_EN_MASK 0x00000010L
+#define BIF_BX1_BIF_DOORBELL_CNTL__DB_MNTR_INTGEN_DIS_MASK 0x01000000L
+#define BIF_BX1_BIF_DOORBELL_CNTL__DB_MNTR_INTGEN_MODE_0_MASK 0x02000000L
+#define BIF_BX1_BIF_DOORBELL_CNTL__DB_MNTR_INTGEN_MODE_1_MASK 0x04000000L
+#define BIF_BX1_BIF_DOORBELL_CNTL__DB_MNTR_INTGEN_MODE_2_MASK 0x08000000L
+//BIF_BX1_BIF_DOORBELL_INT_CNTL
+#define BIF_BX1_BIF_DOORBELL_INT_CNTL__DOORBELL_INTERRUPT_STATUS__SHIFT 0x0
+#define BIF_BX1_BIF_DOORBELL_INT_CNTL__RAS_CNTLR_INTERRUPT_STATUS__SHIFT 0x1
+#define BIF_BX1_BIF_DOORBELL_INT_CNTL__RAS_ATHUB_ERR_EVENT_INTERRUPT_STATUS__SHIFT 0x2
+#define BIF_BX1_BIF_DOORBELL_INT_CNTL__DOORBELL_INTERRUPT_CLEAR__SHIFT 0x10
+#define BIF_BX1_BIF_DOORBELL_INT_CNTL__RAS_CNTLR_INTERRUPT_CLEAR__SHIFT 0x11
+#define BIF_BX1_BIF_DOORBELL_INT_CNTL__RAS_ATHUB_ERR_EVENT_INTERRUPT_CLEAR__SHIFT 0x12
+#define BIF_BX1_BIF_DOORBELL_INT_CNTL__RAS_CNTLR_ERR_EVENT_INTERRUPT_ENABLE__SHIFT 0x17
+#define BIF_BX1_BIF_DOORBELL_INT_CNTL__DOORBELL_INTERRUPT_DISABLE__SHIFT 0x18
+#define BIF_BX1_BIF_DOORBELL_INT_CNTL__RAS_CNTLR_INTERRUPT_DISABLE__SHIFT 0x19
+#define BIF_BX1_BIF_DOORBELL_INT_CNTL__RAS_ATHUB_ERR_EVENT_INTERRUPT_DISABLE__SHIFT 0x1a
+#define BIF_BX1_BIF_DOORBELL_INT_CNTL__SET_DB_INTR_STATUS_WHEN_RB_ENABLE__SHIFT 0x1c
+#define BIF_BX1_BIF_DOORBELL_INT_CNTL__SET_IOH_RAS_INTR_STATUS_WHEN_RB_ENABLE__SHIFT 0x1d
+#define BIF_BX1_BIF_DOORBELL_INT_CNTL__SET_ATH_RAS_INTR_STATUS_WHEN_RB_ENABLE__SHIFT 0x1e
+#define BIF_BX1_BIF_DOORBELL_INT_CNTL__TIMEOUT_ERR_EVENT_INTERRUPT_ENABLE__SHIFT 0x1f
+#define BIF_BX1_BIF_DOORBELL_INT_CNTL__DOORBELL_INTERRUPT_STATUS_MASK 0x00000001L
+#define BIF_BX1_BIF_DOORBELL_INT_CNTL__RAS_CNTLR_INTERRUPT_STATUS_MASK 0x00000002L
+#define BIF_BX1_BIF_DOORBELL_INT_CNTL__RAS_ATHUB_ERR_EVENT_INTERRUPT_STATUS_MASK 0x00000004L
+#define BIF_BX1_BIF_DOORBELL_INT_CNTL__DOORBELL_INTERRUPT_CLEAR_MASK 0x00010000L
+#define BIF_BX1_BIF_DOORBELL_INT_CNTL__RAS_CNTLR_INTERRUPT_CLEAR_MASK 0x00020000L
+#define BIF_BX1_BIF_DOORBELL_INT_CNTL__RAS_ATHUB_ERR_EVENT_INTERRUPT_CLEAR_MASK 0x00040000L
+#define BIF_BX1_BIF_DOORBELL_INT_CNTL__RAS_CNTLR_ERR_EVENT_INTERRUPT_ENABLE_MASK 0x00800000L
+#define BIF_BX1_BIF_DOORBELL_INT_CNTL__DOORBELL_INTERRUPT_DISABLE_MASK 0x01000000L
+#define BIF_BX1_BIF_DOORBELL_INT_CNTL__RAS_CNTLR_INTERRUPT_DISABLE_MASK 0x02000000L
+#define BIF_BX1_BIF_DOORBELL_INT_CNTL__RAS_ATHUB_ERR_EVENT_INTERRUPT_DISABLE_MASK 0x04000000L
+#define BIF_BX1_BIF_DOORBELL_INT_CNTL__SET_DB_INTR_STATUS_WHEN_RB_ENABLE_MASK 0x10000000L
+#define BIF_BX1_BIF_DOORBELL_INT_CNTL__SET_IOH_RAS_INTR_STATUS_WHEN_RB_ENABLE_MASK 0x20000000L
+#define BIF_BX1_BIF_DOORBELL_INT_CNTL__SET_ATH_RAS_INTR_STATUS_WHEN_RB_ENABLE_MASK 0x40000000L
+#define BIF_BX1_BIF_DOORBELL_INT_CNTL__TIMEOUT_ERR_EVENT_INTERRUPT_ENABLE_MASK 0x80000000L
+//BIF_BX1_BIF_FB_EN
+#define BIF_BX1_BIF_FB_EN__FB_READ_EN__SHIFT 0x0
+#define BIF_BX1_BIF_FB_EN__FB_WRITE_EN__SHIFT 0x1
+#define BIF_BX1_BIF_FB_EN__FB_READ_EN_MASK 0x00000001L
+#define BIF_BX1_BIF_FB_EN__FB_WRITE_EN_MASK 0x00000002L
+//BIF_BX1_BIF_INTR_CNTL
+#define BIF_BX1_BIF_INTR_CNTL__RAS_INTR_VEC_SEL__SHIFT 0x0
+#define BIF_BX1_BIF_INTR_CNTL__RAS_INTR_VEC_SEL_MASK 0x00000001L
+//BIF_BX1_BIF_MST_TRANS_PENDING_VF
+#define BIF_BX1_BIF_MST_TRANS_PENDING_VF__BIF_MST_TRANS_PENDING__SHIFT 0x0
+#define BIF_BX1_BIF_MST_TRANS_PENDING_VF__BIF_MST_TRANS_PENDING_MASK 0x7FFFFFFFL
+//BIF_BX1_BIF_SLV_TRANS_PENDING_VF
+#define BIF_BX1_BIF_SLV_TRANS_PENDING_VF__BIF_SLV_TRANS_PENDING__SHIFT 0x0
+#define BIF_BX1_BIF_SLV_TRANS_PENDING_VF__BIF_SLV_TRANS_PENDING_MASK 0x7FFFFFFFL
+//BIF_BX1_BACO_CNTL
+#define BIF_BX1_BACO_CNTL__BACO_EN__SHIFT 0x0
+#define BIF_BX1_BACO_CNTL__BACO_DUMMY_EN__SHIFT 0x2
+#define BIF_BX1_BACO_CNTL__BACO_POWER_OFF__SHIFT 0x3
+#define BIF_BX1_BACO_CNTL__BACO_DSTATE_BYPASS__SHIFT 0x5
+#define BIF_BX1_BACO_CNTL__BACO_RST_INTR_MASK__SHIFT 0x6
+#define BIF_BX1_BACO_CNTL__BACO_MODE__SHIFT 0x8
+#define BIF_BX1_BACO_CNTL__RCU_BIF_CONFIG_DONE__SHIFT 0x9
+#define BIF_BX1_BACO_CNTL__PWRGOOD_VDDSOC__SHIFT 0x10
+#define BIF_BX1_BACO_CNTL__BACO_AUTO_EXIT__SHIFT 0x1f
+#define BIF_BX1_BACO_CNTL__BACO_EN_MASK 0x00000001L
+#define BIF_BX1_BACO_CNTL__BACO_DUMMY_EN_MASK 0x00000004L
+#define BIF_BX1_BACO_CNTL__BACO_POWER_OFF_MASK 0x00000008L
+#define BIF_BX1_BACO_CNTL__BACO_DSTATE_BYPASS_MASK 0x00000020L
+#define BIF_BX1_BACO_CNTL__BACO_RST_INTR_MASK_MASK 0x00000040L
+#define BIF_BX1_BACO_CNTL__BACO_MODE_MASK 0x00000100L
+#define BIF_BX1_BACO_CNTL__RCU_BIF_CONFIG_DONE_MASK 0x00000200L
+#define BIF_BX1_BACO_CNTL__PWRGOOD_VDDSOC_MASK 0x00010000L
+#define BIF_BX1_BACO_CNTL__BACO_AUTO_EXIT_MASK 0x80000000L
+//BIF_BX1_BIF_BACO_EXIT_TIME0
+#define BIF_BX1_BIF_BACO_EXIT_TIME0__BACO_EXIT_PXEN_CLR_TIMER__SHIFT 0x0
+#define BIF_BX1_BIF_BACO_EXIT_TIME0__BACO_EXIT_PXEN_CLR_TIMER_MASK 0x000FFFFFL
+//BIF_BX1_BIF_BACO_EXIT_TIMER1
+#define BIF_BX1_BIF_BACO_EXIT_TIMER1__BACO_EXIT_SIDEBAND_TIMER__SHIFT 0x0
+#define BIF_BX1_BIF_BACO_EXIT_TIMER1__BACO_HW_AUTO_FLUSH_EN__SHIFT 0x18
+#define BIF_BX1_BIF_BACO_EXIT_TIMER1__BACO_HW_EXIT_DIS__SHIFT 0x1a
+#define BIF_BX1_BIF_BACO_EXIT_TIMER1__PX_EN_OE_IN_PX_EN_HIGH__SHIFT 0x1b
+#define BIF_BX1_BIF_BACO_EXIT_TIMER1__PX_EN_OE_IN_PX_EN_LOW__SHIFT 0x1c
+#define BIF_BX1_BIF_BACO_EXIT_TIMER1__BACO_MODE_SEL__SHIFT 0x1d
+#define BIF_BX1_BIF_BACO_EXIT_TIMER1__AUTO_BACO_EXIT_CLR_BY_HW_DIS__SHIFT 0x1f
+#define BIF_BX1_BIF_BACO_EXIT_TIMER1__BACO_EXIT_SIDEBAND_TIMER_MASK 0x000FFFFFL
+#define BIF_BX1_BIF_BACO_EXIT_TIMER1__BACO_HW_AUTO_FLUSH_EN_MASK 0x01000000L
+#define BIF_BX1_BIF_BACO_EXIT_TIMER1__BACO_HW_EXIT_DIS_MASK 0x04000000L
+#define BIF_BX1_BIF_BACO_EXIT_TIMER1__PX_EN_OE_IN_PX_EN_HIGH_MASK 0x08000000L
+#define BIF_BX1_BIF_BACO_EXIT_TIMER1__PX_EN_OE_IN_PX_EN_LOW_MASK 0x10000000L
+#define BIF_BX1_BIF_BACO_EXIT_TIMER1__BACO_MODE_SEL_MASK 0x60000000L
+#define BIF_BX1_BIF_BACO_EXIT_TIMER1__AUTO_BACO_EXIT_CLR_BY_HW_DIS_MASK 0x80000000L
+//BIF_BX1_BIF_BACO_EXIT_TIMER2
+#define BIF_BX1_BIF_BACO_EXIT_TIMER2__BACO_EXIT_LCLK_BAK_TIMER__SHIFT 0x0
+#define BIF_BX1_BIF_BACO_EXIT_TIMER2__BACO_EXIT_LCLK_BAK_TIMER_MASK 0x000FFFFFL
+//BIF_BX1_BIF_BACO_EXIT_TIMER3
+#define BIF_BX1_BIF_BACO_EXIT_TIMER3__BACO_EXIT_DUMMY_EN_CLR_TIMER__SHIFT 0x0
+#define BIF_BX1_BIF_BACO_EXIT_TIMER3__BACO_EXIT_DUMMY_EN_CLR_TIMER_MASK 0x000FFFFFL
+//BIF_BX1_BIF_BACO_EXIT_TIMER4
+#define BIF_BX1_BIF_BACO_EXIT_TIMER4__BACO_EXIT_BACO_EN_CLR_TIMER__SHIFT 0x0
+#define BIF_BX1_BIF_BACO_EXIT_TIMER4__BACO_EXIT_BACO_EN_CLR_TIMER_MASK 0x000FFFFFL
+//BIF_BX1_MEM_TYPE_CNTL
+#define BIF_BX1_MEM_TYPE_CNTL__BF_MEM_PHY_G5_G3__SHIFT 0x0
+#define BIF_BX1_MEM_TYPE_CNTL__BF_MEM_PHY_G5_G3_MASK 0x00000001L
+//BIF_BX1_NBIF_GFX_ADDR_LUT_CNTL
+#define BIF_BX1_NBIF_GFX_ADDR_LUT_CNTL__LUT_ENABLE__SHIFT 0x0
+#define BIF_BX1_NBIF_GFX_ADDR_LUT_CNTL__MSI_ADDR_MODE__SHIFT 0x1
+#define BIF_BX1_NBIF_GFX_ADDR_LUT_CNTL__LUT_BC_MODE__SHIFT 0x8
+#define BIF_BX1_NBIF_GFX_ADDR_LUT_CNTL__LUT_ENABLE_MASK 0x00000001L
+#define BIF_BX1_NBIF_GFX_ADDR_LUT_CNTL__MSI_ADDR_MODE_MASK 0x00000002L
+#define BIF_BX1_NBIF_GFX_ADDR_LUT_CNTL__LUT_BC_MODE_MASK 0x00000100L
+//BIF_BX1_NBIF_GFX_ADDR_LUT_0
+#define BIF_BX1_NBIF_GFX_ADDR_LUT_0__ADDR__SHIFT 0x0
+#define BIF_BX1_NBIF_GFX_ADDR_LUT_0__ADDR_MASK 0x00FFFFFFL
+//BIF_BX1_NBIF_GFX_ADDR_LUT_1
+#define BIF_BX1_NBIF_GFX_ADDR_LUT_1__ADDR__SHIFT 0x0
+#define BIF_BX1_NBIF_GFX_ADDR_LUT_1__ADDR_MASK 0x00FFFFFFL
+//BIF_BX1_NBIF_GFX_ADDR_LUT_2
+#define BIF_BX1_NBIF_GFX_ADDR_LUT_2__ADDR__SHIFT 0x0
+#define BIF_BX1_NBIF_GFX_ADDR_LUT_2__ADDR_MASK 0x00FFFFFFL
+//BIF_BX1_NBIF_GFX_ADDR_LUT_3
+#define BIF_BX1_NBIF_GFX_ADDR_LUT_3__ADDR__SHIFT 0x0
+#define BIF_BX1_NBIF_GFX_ADDR_LUT_3__ADDR_MASK 0x00FFFFFFL
+//BIF_BX1_NBIF_GFX_ADDR_LUT_4
+#define BIF_BX1_NBIF_GFX_ADDR_LUT_4__ADDR__SHIFT 0x0
+#define BIF_BX1_NBIF_GFX_ADDR_LUT_4__ADDR_MASK 0x00FFFFFFL
+//BIF_BX1_NBIF_GFX_ADDR_LUT_5
+#define BIF_BX1_NBIF_GFX_ADDR_LUT_5__ADDR__SHIFT 0x0
+#define BIF_BX1_NBIF_GFX_ADDR_LUT_5__ADDR_MASK 0x00FFFFFFL
+//BIF_BX1_NBIF_GFX_ADDR_LUT_6
+#define BIF_BX1_NBIF_GFX_ADDR_LUT_6__ADDR__SHIFT 0x0
+#define BIF_BX1_NBIF_GFX_ADDR_LUT_6__ADDR_MASK 0x00FFFFFFL
+//BIF_BX1_NBIF_GFX_ADDR_LUT_7
+#define BIF_BX1_NBIF_GFX_ADDR_LUT_7__ADDR__SHIFT 0x0
+#define BIF_BX1_NBIF_GFX_ADDR_LUT_7__ADDR_MASK 0x00FFFFFFL
+//BIF_BX1_NBIF_GFX_ADDR_LUT_8
+#define BIF_BX1_NBIF_GFX_ADDR_LUT_8__ADDR__SHIFT 0x0
+#define BIF_BX1_NBIF_GFX_ADDR_LUT_8__ADDR_MASK 0x00FFFFFFL
+//BIF_BX1_NBIF_GFX_ADDR_LUT_9
+#define BIF_BX1_NBIF_GFX_ADDR_LUT_9__ADDR__SHIFT 0x0
+#define BIF_BX1_NBIF_GFX_ADDR_LUT_9__ADDR_MASK 0x00FFFFFFL
+//BIF_BX1_NBIF_GFX_ADDR_LUT_10
+#define BIF_BX1_NBIF_GFX_ADDR_LUT_10__ADDR__SHIFT 0x0
+#define BIF_BX1_NBIF_GFX_ADDR_LUT_10__ADDR_MASK 0x00FFFFFFL
+//BIF_BX1_NBIF_GFX_ADDR_LUT_11
+#define BIF_BX1_NBIF_GFX_ADDR_LUT_11__ADDR__SHIFT 0x0
+#define BIF_BX1_NBIF_GFX_ADDR_LUT_11__ADDR_MASK 0x00FFFFFFL
+//BIF_BX1_NBIF_GFX_ADDR_LUT_12
+#define BIF_BX1_NBIF_GFX_ADDR_LUT_12__ADDR__SHIFT 0x0
+#define BIF_BX1_NBIF_GFX_ADDR_LUT_12__ADDR_MASK 0x00FFFFFFL
+//BIF_BX1_NBIF_GFX_ADDR_LUT_13
+#define BIF_BX1_NBIF_GFX_ADDR_LUT_13__ADDR__SHIFT 0x0
+#define BIF_BX1_NBIF_GFX_ADDR_LUT_13__ADDR_MASK 0x00FFFFFFL
+//BIF_BX1_NBIF_GFX_ADDR_LUT_14
+#define BIF_BX1_NBIF_GFX_ADDR_LUT_14__ADDR__SHIFT 0x0
+#define BIF_BX1_NBIF_GFX_ADDR_LUT_14__ADDR_MASK 0x00FFFFFFL
+//BIF_BX1_NBIF_GFX_ADDR_LUT_15
+#define BIF_BX1_NBIF_GFX_ADDR_LUT_15__ADDR__SHIFT 0x0
+#define BIF_BX1_NBIF_GFX_ADDR_LUT_15__ADDR_MASK 0x00FFFFFFL
+//BIF_BX1_VF_REGWR_EN
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF0__SHIFT 0x0
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF1__SHIFT 0x1
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF2__SHIFT 0x2
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF3__SHIFT 0x3
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF4__SHIFT 0x4
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF5__SHIFT 0x5
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF6__SHIFT 0x6
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF7__SHIFT 0x7
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF8__SHIFT 0x8
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF9__SHIFT 0x9
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF10__SHIFT 0xa
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF11__SHIFT 0xb
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF12__SHIFT 0xc
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF13__SHIFT 0xd
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF14__SHIFT 0xe
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF15__SHIFT 0xf
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF16__SHIFT 0x10
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF17__SHIFT 0x11
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF18__SHIFT 0x12
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF19__SHIFT 0x13
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF20__SHIFT 0x14
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF21__SHIFT 0x15
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF22__SHIFT 0x16
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF23__SHIFT 0x17
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF24__SHIFT 0x18
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF25__SHIFT 0x19
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF26__SHIFT 0x1a
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF27__SHIFT 0x1b
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF28__SHIFT 0x1c
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF29__SHIFT 0x1d
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF30__SHIFT 0x1e
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF0_MASK 0x00000001L
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF1_MASK 0x00000002L
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF2_MASK 0x00000004L
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF3_MASK 0x00000008L
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF4_MASK 0x00000010L
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF5_MASK 0x00000020L
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF6_MASK 0x00000040L
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF7_MASK 0x00000080L
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF8_MASK 0x00000100L
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF9_MASK 0x00000200L
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF10_MASK 0x00000400L
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF11_MASK 0x00000800L
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF12_MASK 0x00001000L
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF13_MASK 0x00002000L
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF14_MASK 0x00004000L
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF15_MASK 0x00008000L
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF16_MASK 0x00010000L
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF17_MASK 0x00020000L
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF18_MASK 0x00040000L
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF19_MASK 0x00080000L
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF20_MASK 0x00100000L
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF21_MASK 0x00200000L
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF22_MASK 0x00400000L
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF23_MASK 0x00800000L
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF24_MASK 0x01000000L
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF25_MASK 0x02000000L
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF26_MASK 0x04000000L
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF27_MASK 0x08000000L
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF28_MASK 0x10000000L
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF29_MASK 0x20000000L
+#define BIF_BX1_VF_REGWR_EN__VF_REGWR_EN_VF30_MASK 0x40000000L
+//BIF_BX1_VF_DOORBELL_EN
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF0__SHIFT 0x0
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF1__SHIFT 0x1
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF2__SHIFT 0x2
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF3__SHIFT 0x3
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF4__SHIFT 0x4
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF5__SHIFT 0x5
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF6__SHIFT 0x6
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF7__SHIFT 0x7
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF8__SHIFT 0x8
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF9__SHIFT 0x9
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF10__SHIFT 0xa
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF11__SHIFT 0xb
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF12__SHIFT 0xc
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF13__SHIFT 0xd
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF14__SHIFT 0xe
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF15__SHIFT 0xf
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF16__SHIFT 0x10
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF17__SHIFT 0x11
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF18__SHIFT 0x12
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF19__SHIFT 0x13
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF20__SHIFT 0x14
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF21__SHIFT 0x15
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF22__SHIFT 0x16
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF23__SHIFT 0x17
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF24__SHIFT 0x18
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF25__SHIFT 0x19
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF26__SHIFT 0x1a
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF27__SHIFT 0x1b
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF28__SHIFT 0x1c
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF29__SHIFT 0x1d
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF30__SHIFT 0x1e
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_RD_LOG_DIS__SHIFT 0x1f
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF0_MASK 0x00000001L
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF1_MASK 0x00000002L
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF2_MASK 0x00000004L
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF3_MASK 0x00000008L
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF4_MASK 0x00000010L
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF5_MASK 0x00000020L
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF6_MASK 0x00000040L
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF7_MASK 0x00000080L
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF8_MASK 0x00000100L
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF9_MASK 0x00000200L
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF10_MASK 0x00000400L
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF11_MASK 0x00000800L
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF12_MASK 0x00001000L
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF13_MASK 0x00002000L
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF14_MASK 0x00004000L
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF15_MASK 0x00008000L
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF16_MASK 0x00010000L
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF17_MASK 0x00020000L
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF18_MASK 0x00040000L
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF19_MASK 0x00080000L
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF20_MASK 0x00100000L
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF21_MASK 0x00200000L
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF22_MASK 0x00400000L
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF23_MASK 0x00800000L
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF24_MASK 0x01000000L
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF25_MASK 0x02000000L
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF26_MASK 0x04000000L
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF27_MASK 0x08000000L
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF28_MASK 0x10000000L
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF29_MASK 0x20000000L
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_EN_VF30_MASK 0x40000000L
+#define BIF_BX1_VF_DOORBELL_EN__VF_DOORBELL_RD_LOG_DIS_MASK 0x80000000L
+//BIF_BX1_VF_FB_EN
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF0__SHIFT 0x0
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF1__SHIFT 0x1
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF2__SHIFT 0x2
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF3__SHIFT 0x3
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF4__SHIFT 0x4
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF5__SHIFT 0x5
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF6__SHIFT 0x6
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF7__SHIFT 0x7
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF8__SHIFT 0x8
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF9__SHIFT 0x9
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF10__SHIFT 0xa
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF11__SHIFT 0xb
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF12__SHIFT 0xc
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF13__SHIFT 0xd
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF14__SHIFT 0xe
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF15__SHIFT 0xf
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF16__SHIFT 0x10
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF17__SHIFT 0x11
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF18__SHIFT 0x12
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF19__SHIFT 0x13
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF20__SHIFT 0x14
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF21__SHIFT 0x15
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF22__SHIFT 0x16
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF23__SHIFT 0x17
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF24__SHIFT 0x18
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF25__SHIFT 0x19
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF26__SHIFT 0x1a
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF27__SHIFT 0x1b
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF28__SHIFT 0x1c
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF29__SHIFT 0x1d
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF30__SHIFT 0x1e
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF0_MASK 0x00000001L
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF1_MASK 0x00000002L
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF2_MASK 0x00000004L
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF3_MASK 0x00000008L
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF4_MASK 0x00000010L
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF5_MASK 0x00000020L
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF6_MASK 0x00000040L
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF7_MASK 0x00000080L
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF8_MASK 0x00000100L
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF9_MASK 0x00000200L
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF10_MASK 0x00000400L
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF11_MASK 0x00000800L
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF12_MASK 0x00001000L
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF13_MASK 0x00002000L
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF14_MASK 0x00004000L
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF15_MASK 0x00008000L
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF16_MASK 0x00010000L
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF17_MASK 0x00020000L
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF18_MASK 0x00040000L
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF19_MASK 0x00080000L
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF20_MASK 0x00100000L
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF21_MASK 0x00200000L
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF22_MASK 0x00400000L
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF23_MASK 0x00800000L
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF24_MASK 0x01000000L
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF25_MASK 0x02000000L
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF26_MASK 0x04000000L
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF27_MASK 0x08000000L
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF28_MASK 0x10000000L
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF29_MASK 0x20000000L
+#define BIF_BX1_VF_FB_EN__VF_FB_EN_VF30_MASK 0x40000000L
+//BIF_BX1_VF_REGWR_STATUS
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF0__SHIFT 0x0
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF1__SHIFT 0x1
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF2__SHIFT 0x2
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF3__SHIFT 0x3
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF4__SHIFT 0x4
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF5__SHIFT 0x5
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF6__SHIFT 0x6
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF7__SHIFT 0x7
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF8__SHIFT 0x8
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF9__SHIFT 0x9
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF10__SHIFT 0xa
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF11__SHIFT 0xb
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF12__SHIFT 0xc
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF13__SHIFT 0xd
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF14__SHIFT 0xe
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF15__SHIFT 0xf
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF16__SHIFT 0x10
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF17__SHIFT 0x11
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF18__SHIFT 0x12
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF19__SHIFT 0x13
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF20__SHIFT 0x14
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF21__SHIFT 0x15
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF22__SHIFT 0x16
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF23__SHIFT 0x17
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF24__SHIFT 0x18
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF25__SHIFT 0x19
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF26__SHIFT 0x1a
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF27__SHIFT 0x1b
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF28__SHIFT 0x1c
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF29__SHIFT 0x1d
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF30__SHIFT 0x1e
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF0_MASK 0x00000001L
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF1_MASK 0x00000002L
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF2_MASK 0x00000004L
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF3_MASK 0x00000008L
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF4_MASK 0x00000010L
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF5_MASK 0x00000020L
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF6_MASK 0x00000040L
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF7_MASK 0x00000080L
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF8_MASK 0x00000100L
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF9_MASK 0x00000200L
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF10_MASK 0x00000400L
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF11_MASK 0x00000800L
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF12_MASK 0x00001000L
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF13_MASK 0x00002000L
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF14_MASK 0x00004000L
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF15_MASK 0x00008000L
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF16_MASK 0x00010000L
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF17_MASK 0x00020000L
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF18_MASK 0x00040000L
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF19_MASK 0x00080000L
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF20_MASK 0x00100000L
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF21_MASK 0x00200000L
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF22_MASK 0x00400000L
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF23_MASK 0x00800000L
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF24_MASK 0x01000000L
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF25_MASK 0x02000000L
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF26_MASK 0x04000000L
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF27_MASK 0x08000000L
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF28_MASK 0x10000000L
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF29_MASK 0x20000000L
+#define BIF_BX1_VF_REGWR_STATUS__VF_REGWR_STATUS_VF30_MASK 0x40000000L
+//BIF_BX1_VF_DOORBELL_STATUS
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF0__SHIFT 0x0
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF1__SHIFT 0x1
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF2__SHIFT 0x2
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF3__SHIFT 0x3
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF4__SHIFT 0x4
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF5__SHIFT 0x5
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF6__SHIFT 0x6
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF7__SHIFT 0x7
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF8__SHIFT 0x8
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF9__SHIFT 0x9
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF10__SHIFT 0xa
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF11__SHIFT 0xb
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF12__SHIFT 0xc
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF13__SHIFT 0xd
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF14__SHIFT 0xe
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF15__SHIFT 0xf
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF16__SHIFT 0x10
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF17__SHIFT 0x11
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF18__SHIFT 0x12
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF19__SHIFT 0x13
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF20__SHIFT 0x14
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF21__SHIFT 0x15
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF22__SHIFT 0x16
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF23__SHIFT 0x17
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF24__SHIFT 0x18
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF25__SHIFT 0x19
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF26__SHIFT 0x1a
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF27__SHIFT 0x1b
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF28__SHIFT 0x1c
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF29__SHIFT 0x1d
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF30__SHIFT 0x1e
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF0_MASK 0x00000001L
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF1_MASK 0x00000002L
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF2_MASK 0x00000004L
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF3_MASK 0x00000008L
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF4_MASK 0x00000010L
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF5_MASK 0x00000020L
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF6_MASK 0x00000040L
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF7_MASK 0x00000080L
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF8_MASK 0x00000100L
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF9_MASK 0x00000200L
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF10_MASK 0x00000400L
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF11_MASK 0x00000800L
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF12_MASK 0x00001000L
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF13_MASK 0x00002000L
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF14_MASK 0x00004000L
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF15_MASK 0x00008000L
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF16_MASK 0x00010000L
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF17_MASK 0x00020000L
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF18_MASK 0x00040000L
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF19_MASK 0x00080000L
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF20_MASK 0x00100000L
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF21_MASK 0x00200000L
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF22_MASK 0x00400000L
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF23_MASK 0x00800000L
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF24_MASK 0x01000000L
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF25_MASK 0x02000000L
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF26_MASK 0x04000000L
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF27_MASK 0x08000000L
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF28_MASK 0x10000000L
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF29_MASK 0x20000000L
+#define BIF_BX1_VF_DOORBELL_STATUS__VF_DOORBELL_STATUS_VF30_MASK 0x40000000L
+//BIF_BX1_VF_FB_STATUS
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF0__SHIFT 0x0
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF1__SHIFT 0x1
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF2__SHIFT 0x2
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF3__SHIFT 0x3
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF4__SHIFT 0x4
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF5__SHIFT 0x5
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF6__SHIFT 0x6
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF7__SHIFT 0x7
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF8__SHIFT 0x8
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF9__SHIFT 0x9
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF10__SHIFT 0xa
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF11__SHIFT 0xb
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF12__SHIFT 0xc
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF13__SHIFT 0xd
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF14__SHIFT 0xe
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF15__SHIFT 0xf
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF16__SHIFT 0x10
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF17__SHIFT 0x11
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF18__SHIFT 0x12
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF19__SHIFT 0x13
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF20__SHIFT 0x14
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF21__SHIFT 0x15
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF22__SHIFT 0x16
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF23__SHIFT 0x17
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF24__SHIFT 0x18
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF25__SHIFT 0x19
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF26__SHIFT 0x1a
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF27__SHIFT 0x1b
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF28__SHIFT 0x1c
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF29__SHIFT 0x1d
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF30__SHIFT 0x1e
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF0_MASK 0x00000001L
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF1_MASK 0x00000002L
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF2_MASK 0x00000004L
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF3_MASK 0x00000008L
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF4_MASK 0x00000010L
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF5_MASK 0x00000020L
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF6_MASK 0x00000040L
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF7_MASK 0x00000080L
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF8_MASK 0x00000100L
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF9_MASK 0x00000200L
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF10_MASK 0x00000400L
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF11_MASK 0x00000800L
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF12_MASK 0x00001000L
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF13_MASK 0x00002000L
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF14_MASK 0x00004000L
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF15_MASK 0x00008000L
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF16_MASK 0x00010000L
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF17_MASK 0x00020000L
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF18_MASK 0x00040000L
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF19_MASK 0x00080000L
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF20_MASK 0x00100000L
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF21_MASK 0x00200000L
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF22_MASK 0x00400000L
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF23_MASK 0x00800000L
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF24_MASK 0x01000000L
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF25_MASK 0x02000000L
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF26_MASK 0x04000000L
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF27_MASK 0x08000000L
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF28_MASK 0x10000000L
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF29_MASK 0x20000000L
+#define BIF_BX1_VF_FB_STATUS__VF_FB_STATUS_VF30_MASK 0x40000000L
+//BIF_BX1_REMAP_HDP_MEM_FLUSH_CNTL
+#define BIF_BX1_REMAP_HDP_MEM_FLUSH_CNTL__ADDRESS__SHIFT 0x2
+#define BIF_BX1_REMAP_HDP_MEM_FLUSH_CNTL__ADDRESS_MASK 0x0007FFFCL
+//BIF_BX1_REMAP_HDP_REG_FLUSH_CNTL
+#define BIF_BX1_REMAP_HDP_REG_FLUSH_CNTL__ADDRESS__SHIFT 0x2
+#define BIF_BX1_REMAP_HDP_REG_FLUSH_CNTL__ADDRESS_MASK 0x0007FFFCL
+//BIF_BX1_BIF_RB_CNTL
+#define BIF_BX1_BIF_RB_CNTL__RB_ENABLE__SHIFT 0x0
+#define BIF_BX1_BIF_RB_CNTL__RB_SIZE__SHIFT 0x1
+#define BIF_BX1_BIF_RB_CNTL__WPTR_WRITEBACK_ENABLE__SHIFT 0x8
+#define BIF_BX1_BIF_RB_CNTL__WPTR_WRITEBACK_TIMER__SHIFT 0x9
+#define BIF_BX1_BIF_RB_CNTL__BIF_RB_TRAN__SHIFT 0x11
+#define BIF_BX1_BIF_RB_CNTL__DIS_PROTECT_WHEN_RB_FULL__SHIFT 0x19
+#define BIF_BX1_BIF_RB_CNTL__RB_INTR_FIX_PRIORITY__SHIFT 0x1a
+#define BIF_BX1_BIF_RB_CNTL__RB_INTR_ARB_MODE__SHIFT 0x1d
+#define BIF_BX1_BIF_RB_CNTL__RB_RST_BY_FLR_DISABLE__SHIFT 0x1e
+#define BIF_BX1_BIF_RB_CNTL__WPTR_OVERFLOW_CLEAR__SHIFT 0x1f
+#define BIF_BX1_BIF_RB_CNTL__RB_ENABLE_MASK 0x00000001L
+#define BIF_BX1_BIF_RB_CNTL__RB_SIZE_MASK 0x0000003EL
+#define BIF_BX1_BIF_RB_CNTL__WPTR_WRITEBACK_ENABLE_MASK 0x00000100L
+#define BIF_BX1_BIF_RB_CNTL__WPTR_WRITEBACK_TIMER_MASK 0x00003E00L
+#define BIF_BX1_BIF_RB_CNTL__BIF_RB_TRAN_MASK 0x00020000L
+#define BIF_BX1_BIF_RB_CNTL__DIS_PROTECT_WHEN_RB_FULL_MASK 0x02000000L
+#define BIF_BX1_BIF_RB_CNTL__RB_INTR_FIX_PRIORITY_MASK 0x1C000000L
+#define BIF_BX1_BIF_RB_CNTL__RB_INTR_ARB_MODE_MASK 0x20000000L
+#define BIF_BX1_BIF_RB_CNTL__RB_RST_BY_FLR_DISABLE_MASK 0x40000000L
+#define BIF_BX1_BIF_RB_CNTL__WPTR_OVERFLOW_CLEAR_MASK 0x80000000L
+//BIF_BX1_BIF_RB_BASE
+#define BIF_BX1_BIF_RB_BASE__ADDR__SHIFT 0x0
+#define BIF_BX1_BIF_RB_BASE__ADDR_MASK 0xFFFFFFFFL
+//BIF_BX1_BIF_RB_RPTR
+#define BIF_BX1_BIF_RB_RPTR__OFFSET__SHIFT 0x2
+#define BIF_BX1_BIF_RB_RPTR__OFFSET_MASK 0x0003FFFCL
+//BIF_BX1_BIF_RB_WPTR
+#define BIF_BX1_BIF_RB_WPTR__BIF_RB_OVERFLOW__SHIFT 0x0
+#define BIF_BX1_BIF_RB_WPTR__OFFSET__SHIFT 0x2
+#define BIF_BX1_BIF_RB_WPTR__BIF_RB_OVERFLOW_MASK 0x00000001L
+#define BIF_BX1_BIF_RB_WPTR__OFFSET_MASK 0x0003FFFCL
+//BIF_BX1_BIF_RB_WPTR_ADDR_HI
+#define BIF_BX1_BIF_RB_WPTR_ADDR_HI__ADDR__SHIFT 0x0
+#define BIF_BX1_BIF_RB_WPTR_ADDR_HI__ADDR_MASK 0x000000FFL
+//BIF_BX1_BIF_RB_WPTR_ADDR_LO
+#define BIF_BX1_BIF_RB_WPTR_ADDR_LO__ADDR__SHIFT 0x2
+#define BIF_BX1_BIF_RB_WPTR_ADDR_LO__ADDR_MASK 0xFFFFFFFCL
+//BIF_BX1_MAILBOX_INDEX
+#define BIF_BX1_MAILBOX_INDEX__MAILBOX_INDEX__SHIFT 0x0
+#define BIF_BX1_MAILBOX_INDEX__MAILBOX_INDEX_MASK 0x0000001FL
+//BIF_BX1_BIF_MP1_INTR_CTRL
+#define BIF_BX1_BIF_MP1_INTR_CTRL__BACO_EXIT_DONE__SHIFT 0x0
+#define BIF_BX1_BIF_MP1_INTR_CTRL__BACO_EXIT_DONE_MASK 0x00000001L
+//BIF_BX1_BIF_PERSTB_PAD_CNTL
+#define BIF_BX1_BIF_PERSTB_PAD_CNTL__PERSTB_PAD_CNTL__SHIFT 0x0
+#define BIF_BX1_BIF_PERSTB_PAD_CNTL__PERSTB_PAD_CNTL_MASK 0x0000FFFFL
+//BIF_BX1_BIF_PX_EN_PAD_CNTL
+#define BIF_BX1_BIF_PX_EN_PAD_CNTL__PX_EN_PAD_CNTL__SHIFT 0x0
+#define BIF_BX1_BIF_PX_EN_PAD_CNTL__PX_EN_PAD_CNTL_MASK 0x00000FFFL
+//BIF_BX1_BIF_REFPADKIN_PAD_CNTL
+#define BIF_BX1_BIF_REFPADKIN_PAD_CNTL__REFPADKIN_PAD_CNTL__SHIFT 0x0
+#define BIF_BX1_BIF_REFPADKIN_PAD_CNTL__REFPADKIN_PAD_CNTL_MASK 0x000000FFL
+//BIF_BX1_BIF_CLKREQB_PAD_CNTL
+#define BIF_BX1_BIF_CLKREQB_PAD_CNTL__CLKREQB_PAD_CNTL__SHIFT 0x0
+#define BIF_BX1_BIF_CLKREQB_PAD_CNTL__CLKREQB_PAD_CNTL_MASK 0x7FFFFFFFL
+//BIF_BX1_BIF_PWRBRK_PAD_CNTL
+#define BIF_BX1_BIF_PWRBRK_PAD_CNTL__PWRBRK_PAD_CNTL__SHIFT 0x0
+#define BIF_BX1_BIF_PWRBRK_PAD_CNTL__PWRBRK_PAD_CNTL_MASK 0x000000FFL
+//BIF_BX1_BIF_VCN0_GPUIOV_CFG_SIZE
+#define BIF_BX1_BIF_VCN0_GPUIOV_CFG_SIZE__VCN0_GPUIOV_CFG_SIZE__SHIFT 0x0
+#define BIF_BX1_BIF_VCN0_GPUIOV_CFG_SIZE__VCN0_GPUIOV_CFG_SIZE_MASK 0x0000000FL
+//BIF_BX1_BIF_VCN1_GPUIOV_CFG_SIZE
+#define BIF_BX1_BIF_VCN1_GPUIOV_CFG_SIZE__VCN1_GPUIOV_CFG_SIZE__SHIFT 0x0
+#define BIF_BX1_BIF_VCN1_GPUIOV_CFG_SIZE__VCN1_GPUIOV_CFG_SIZE_MASK 0x0000000FL
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_pf_BIFPFVFDEC1
+//BIF_BX_PF1_BIF_BME_STATUS
+#define BIF_BX_PF1_BIF_BME_STATUS__DMA_ON_BME_LOW__SHIFT 0x0
+#define BIF_BX_PF1_BIF_BME_STATUS__CLEAR_DMA_ON_BME_LOW__SHIFT 0x10
+#define BIF_BX_PF1_BIF_BME_STATUS__DMA_ON_BME_LOW_MASK 0x00000001L
+#define BIF_BX_PF1_BIF_BME_STATUS__CLEAR_DMA_ON_BME_LOW_MASK 0x00010000L
+//BIF_BX_PF1_BIF_ATOMIC_ERR_LOG
+#define BIF_BX_PF1_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_OPCODE__SHIFT 0x0
+#define BIF_BX_PF1_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_REQEN_LOW__SHIFT 0x1
+#define BIF_BX_PF1_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_LENGTH__SHIFT 0x2
+#define BIF_BX_PF1_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_NR__SHIFT 0x3
+#define BIF_BX_PF1_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_OPCODE__SHIFT 0x10
+#define BIF_BX_PF1_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_REQEN_LOW__SHIFT 0x11
+#define BIF_BX_PF1_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_LENGTH__SHIFT 0x12
+#define BIF_BX_PF1_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_NR__SHIFT 0x13
+#define BIF_BX_PF1_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_OPCODE_MASK 0x00000001L
+#define BIF_BX_PF1_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_REQEN_LOW_MASK 0x00000002L
+#define BIF_BX_PF1_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_LENGTH_MASK 0x00000004L
+#define BIF_BX_PF1_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_NR_MASK 0x00000008L
+#define BIF_BX_PF1_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_OPCODE_MASK 0x00010000L
+#define BIF_BX_PF1_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_REQEN_LOW_MASK 0x00020000L
+#define BIF_BX_PF1_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_LENGTH_MASK 0x00040000L
+#define BIF_BX_PF1_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_NR_MASK 0x00080000L
+//BIF_BX_PF1_DOORBELL_SELFRING_GPA_APER_BASE_HIGH
+#define BIF_BX_PF1_DOORBELL_SELFRING_GPA_APER_BASE_HIGH__DOORBELL_SELFRING_GPA_APER_BASE_HIGH__SHIFT 0x0
+#define BIF_BX_PF1_DOORBELL_SELFRING_GPA_APER_BASE_HIGH__DOORBELL_SELFRING_GPA_APER_BASE_HIGH_MASK 0xFFFFFFFFL
+//BIF_BX_PF1_DOORBELL_SELFRING_GPA_APER_BASE_LOW
+#define BIF_BX_PF1_DOORBELL_SELFRING_GPA_APER_BASE_LOW__DOORBELL_SELFRING_GPA_APER_BASE_LOW__SHIFT 0x0
+#define BIF_BX_PF1_DOORBELL_SELFRING_GPA_APER_BASE_LOW__DOORBELL_SELFRING_GPA_APER_BASE_LOW_MASK 0xFFFFFFFFL
+//BIF_BX_PF1_DOORBELL_SELFRING_GPA_APER_CNTL
+#define BIF_BX_PF1_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_EN__SHIFT 0x0
+#define BIF_BX_PF1_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_MODE__SHIFT 0x1
+#define BIF_BX_PF1_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_SIZE__SHIFT 0x8
+#define BIF_BX_PF1_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_EN_MASK 0x00000001L
+#define BIF_BX_PF1_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_MODE_MASK 0x00000002L
+#define BIF_BX_PF1_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_SIZE_MASK 0x000FFF00L
+//BIF_BX_PF1_HDP_REG_COHERENCY_FLUSH_CNTL
+#define BIF_BX_PF1_HDP_REG_COHERENCY_FLUSH_CNTL__HDP_REG_FLUSH_ADDR__SHIFT 0x0
+#define BIF_BX_PF1_HDP_REG_COHERENCY_FLUSH_CNTL__HDP_REG_FLUSH_ADDR_MASK 0x00000001L
+//BIF_BX_PF1_HDP_MEM_COHERENCY_FLUSH_CNTL
+#define BIF_BX_PF1_HDP_MEM_COHERENCY_FLUSH_CNTL__HDP_MEM_FLUSH_ADDR__SHIFT 0x0
+#define BIF_BX_PF1_HDP_MEM_COHERENCY_FLUSH_CNTL__HDP_MEM_FLUSH_ADDR_MASK 0x00000001L
+//BIF_BX_PF1_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL
+#define BIF_BX_PF1_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL__HDP_MEM_FLUSH_ONLY_ADDR__SHIFT 0x0
+#define BIF_BX_PF1_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL__HDP_MEM_FLUSH_ONLY_ADDR_MASK 0x00000001L
+//BIF_BX_PF1_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL
+#define BIF_BX_PF1_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL__HDP_MEM_INVALIDATE_ONLY_ADDR__SHIFT 0x0
+#define BIF_BX_PF1_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL__HDP_MEM_INVALIDATE_ONLY_ADDR_MASK 0x00000001L
+//BIF_BX_PF1_GPU_HDP_FLUSH_REQ
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__CP0__SHIFT 0x0
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__CP1__SHIFT 0x1
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__CP2__SHIFT 0x2
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__CP3__SHIFT 0x3
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__CP4__SHIFT 0x4
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__CP5__SHIFT 0x5
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__CP6__SHIFT 0x6
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__CP7__SHIFT 0x7
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__CP8__SHIFT 0x8
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__CP9__SHIFT 0x9
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__SDMA0__SHIFT 0xa
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__SDMA1__SHIFT 0xb
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__RSVD_ENG0__SHIFT 0xc
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__RSVD_ENG1__SHIFT 0xd
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__RSVD_ENG2__SHIFT 0xe
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__RSVD_ENG3__SHIFT 0xf
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__RSVD_ENG4__SHIFT 0x10
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__RSVD_ENG5__SHIFT 0x11
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__RSVD_ENG6__SHIFT 0x12
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__RSVD_ENG7__SHIFT 0x13
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__RSVD_ENG8__SHIFT 0x14
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__RSVD_ENG9__SHIFT 0x15
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__RSVD_ENG10__SHIFT 0x16
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__RSVD_ENG11__SHIFT 0x17
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__RSVD_ENG12__SHIFT 0x18
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__RSVD_ENG13__SHIFT 0x19
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__RSVD_ENG14__SHIFT 0x1a
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__RSVD_ENG15__SHIFT 0x1b
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__RSVD_ENG16__SHIFT 0x1c
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__RSVD_ENG17__SHIFT 0x1d
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__RSVD_ENG18__SHIFT 0x1e
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__RSVD_ENG19__SHIFT 0x1f
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__CP0_MASK 0x00000001L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__CP1_MASK 0x00000002L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__CP2_MASK 0x00000004L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__CP3_MASK 0x00000008L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__CP4_MASK 0x00000010L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__CP5_MASK 0x00000020L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__CP6_MASK 0x00000040L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__CP7_MASK 0x00000080L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__CP8_MASK 0x00000100L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__CP9_MASK 0x00000200L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__SDMA0_MASK 0x00000400L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__SDMA1_MASK 0x00000800L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__RSVD_ENG0_MASK 0x00001000L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__RSVD_ENG1_MASK 0x00002000L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__RSVD_ENG2_MASK 0x00004000L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__RSVD_ENG3_MASK 0x00008000L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__RSVD_ENG4_MASK 0x00010000L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__RSVD_ENG5_MASK 0x00020000L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__RSVD_ENG6_MASK 0x00040000L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__RSVD_ENG7_MASK 0x00080000L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__RSVD_ENG8_MASK 0x00100000L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__RSVD_ENG9_MASK 0x00200000L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__RSVD_ENG10_MASK 0x00400000L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__RSVD_ENG11_MASK 0x00800000L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__RSVD_ENG12_MASK 0x01000000L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__RSVD_ENG13_MASK 0x02000000L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__RSVD_ENG14_MASK 0x04000000L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__RSVD_ENG15_MASK 0x08000000L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__RSVD_ENG16_MASK 0x10000000L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__RSVD_ENG17_MASK 0x20000000L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__RSVD_ENG18_MASK 0x40000000L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_REQ__RSVD_ENG19_MASK 0x80000000L
+//BIF_BX_PF1_GPU_HDP_FLUSH_DONE
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__CP0__SHIFT 0x0
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__CP1__SHIFT 0x1
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__CP2__SHIFT 0x2
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__CP3__SHIFT 0x3
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__CP4__SHIFT 0x4
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__CP5__SHIFT 0x5
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__CP6__SHIFT 0x6
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__CP7__SHIFT 0x7
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__CP8__SHIFT 0x8
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__CP9__SHIFT 0x9
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__SDMA0__SHIFT 0xa
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__SDMA1__SHIFT 0xb
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__RSVD_ENG0__SHIFT 0xc
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__RSVD_ENG1__SHIFT 0xd
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__RSVD_ENG2__SHIFT 0xe
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__RSVD_ENG3__SHIFT 0xf
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__RSVD_ENG4__SHIFT 0x10
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__RSVD_ENG5__SHIFT 0x11
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__RSVD_ENG6__SHIFT 0x12
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__RSVD_ENG7__SHIFT 0x13
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__RSVD_ENG8__SHIFT 0x14
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__RSVD_ENG9__SHIFT 0x15
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__RSVD_ENG10__SHIFT 0x16
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__RSVD_ENG11__SHIFT 0x17
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__RSVD_ENG12__SHIFT 0x18
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__RSVD_ENG13__SHIFT 0x19
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__RSVD_ENG14__SHIFT 0x1a
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__RSVD_ENG15__SHIFT 0x1b
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__RSVD_ENG16__SHIFT 0x1c
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__RSVD_ENG17__SHIFT 0x1d
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__RSVD_ENG18__SHIFT 0x1e
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__RSVD_ENG19__SHIFT 0x1f
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__CP0_MASK 0x00000001L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__CP1_MASK 0x00000002L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__CP2_MASK 0x00000004L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__CP3_MASK 0x00000008L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__CP4_MASK 0x00000010L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__CP5_MASK 0x00000020L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__CP6_MASK 0x00000040L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__CP7_MASK 0x00000080L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__CP8_MASK 0x00000100L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__CP9_MASK 0x00000200L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__SDMA0_MASK 0x00000400L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__SDMA1_MASK 0x00000800L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__RSVD_ENG0_MASK 0x00001000L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__RSVD_ENG1_MASK 0x00002000L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__RSVD_ENG2_MASK 0x00004000L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__RSVD_ENG3_MASK 0x00008000L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__RSVD_ENG4_MASK 0x00010000L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__RSVD_ENG5_MASK 0x00020000L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__RSVD_ENG6_MASK 0x00040000L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__RSVD_ENG7_MASK 0x00080000L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__RSVD_ENG8_MASK 0x00100000L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__RSVD_ENG9_MASK 0x00200000L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__RSVD_ENG10_MASK 0x00400000L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__RSVD_ENG11_MASK 0x00800000L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__RSVD_ENG12_MASK 0x01000000L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__RSVD_ENG13_MASK 0x02000000L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__RSVD_ENG14_MASK 0x04000000L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__RSVD_ENG15_MASK 0x08000000L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__RSVD_ENG16_MASK 0x10000000L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__RSVD_ENG17_MASK 0x20000000L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__RSVD_ENG18_MASK 0x40000000L
+#define BIF_BX_PF1_GPU_HDP_FLUSH_DONE__RSVD_ENG19_MASK 0x80000000L
+//BIF_BX_PF1_BIF_TRANS_PENDING
+#define BIF_BX_PF1_BIF_TRANS_PENDING__BIF_MST_TRANS_PENDING__SHIFT 0x0
+#define BIF_BX_PF1_BIF_TRANS_PENDING__BIF_SLV_TRANS_PENDING__SHIFT 0x1
+#define BIF_BX_PF1_BIF_TRANS_PENDING__BIF_MST_TRANS_PENDING_MASK 0x00000001L
+#define BIF_BX_PF1_BIF_TRANS_PENDING__BIF_SLV_TRANS_PENDING_MASK 0x00000002L
+//BIF_BX_PF1_NBIF_GFX_ADDR_LUT_BYPASS
+#define BIF_BX_PF1_NBIF_GFX_ADDR_LUT_BYPASS__LUT_BYPASS__SHIFT 0x0
+#define BIF_BX_PF1_NBIF_GFX_ADDR_LUT_BYPASS__LUT_BYPASS_MASK 0x00000001L
+//BIF_BX_PF1_MAILBOX_MSGBUF_TRN_DW0
+#define BIF_BX_PF1_MAILBOX_MSGBUF_TRN_DW0__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_PF1_MAILBOX_MSGBUF_TRN_DW0__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_PF1_MAILBOX_MSGBUF_TRN_DW1
+#define BIF_BX_PF1_MAILBOX_MSGBUF_TRN_DW1__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_PF1_MAILBOX_MSGBUF_TRN_DW1__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_PF1_MAILBOX_MSGBUF_TRN_DW2
+#define BIF_BX_PF1_MAILBOX_MSGBUF_TRN_DW2__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_PF1_MAILBOX_MSGBUF_TRN_DW2__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_PF1_MAILBOX_MSGBUF_TRN_DW3
+#define BIF_BX_PF1_MAILBOX_MSGBUF_TRN_DW3__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_PF1_MAILBOX_MSGBUF_TRN_DW3__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_PF1_MAILBOX_MSGBUF_RCV_DW0
+#define BIF_BX_PF1_MAILBOX_MSGBUF_RCV_DW0__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_PF1_MAILBOX_MSGBUF_RCV_DW0__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_PF1_MAILBOX_MSGBUF_RCV_DW1
+#define BIF_BX_PF1_MAILBOX_MSGBUF_RCV_DW1__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_PF1_MAILBOX_MSGBUF_RCV_DW1__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_PF1_MAILBOX_MSGBUF_RCV_DW2
+#define BIF_BX_PF1_MAILBOX_MSGBUF_RCV_DW2__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_PF1_MAILBOX_MSGBUF_RCV_DW2__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_PF1_MAILBOX_MSGBUF_RCV_DW3
+#define BIF_BX_PF1_MAILBOX_MSGBUF_RCV_DW3__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_PF1_MAILBOX_MSGBUF_RCV_DW3__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_PF1_MAILBOX_CONTROL
+#define BIF_BX_PF1_MAILBOX_CONTROL__TRN_MSG_VALID__SHIFT 0x0
+#define BIF_BX_PF1_MAILBOX_CONTROL__TRN_MSG_ACK__SHIFT 0x1
+#define BIF_BX_PF1_MAILBOX_CONTROL__RCV_MSG_VALID__SHIFT 0x8
+#define BIF_BX_PF1_MAILBOX_CONTROL__RCV_MSG_ACK__SHIFT 0x9
+#define BIF_BX_PF1_MAILBOX_CONTROL__TRN_MSG_VALID_MASK 0x00000001L
+#define BIF_BX_PF1_MAILBOX_CONTROL__TRN_MSG_ACK_MASK 0x00000002L
+#define BIF_BX_PF1_MAILBOX_CONTROL__RCV_MSG_VALID_MASK 0x00000100L
+#define BIF_BX_PF1_MAILBOX_CONTROL__RCV_MSG_ACK_MASK 0x00000200L
+//BIF_BX_PF1_MAILBOX_INT_CNTL
+#define BIF_BX_PF1_MAILBOX_INT_CNTL__VALID_INT_EN__SHIFT 0x0
+#define BIF_BX_PF1_MAILBOX_INT_CNTL__ACK_INT_EN__SHIFT 0x1
+#define BIF_BX_PF1_MAILBOX_INT_CNTL__VALID_INT_EN_MASK 0x00000001L
+#define BIF_BX_PF1_MAILBOX_INT_CNTL__ACK_INT_EN_MASK 0x00000002L
+//BIF_BX_PF1_BIF_VMHV_MAILBOX
+#define BIF_BX_PF1_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_ACK_INTR_EN__SHIFT 0x0
+#define BIF_BX_PF1_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_VALID_INTR_EN__SHIFT 0x1
+#define BIF_BX_PF1_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_DATA__SHIFT 0x8
+#define BIF_BX_PF1_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_VALID__SHIFT 0xf
+#define BIF_BX_PF1_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_DATA__SHIFT 0x10
+#define BIF_BX_PF1_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_VALID__SHIFT 0x17
+#define BIF_BX_PF1_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_ACK__SHIFT 0x18
+#define BIF_BX_PF1_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_ACK__SHIFT 0x19
+#define BIF_BX_PF1_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_ACK_INTR_EN_MASK 0x00000001L
+#define BIF_BX_PF1_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_VALID_INTR_EN_MASK 0x00000002L
+#define BIF_BX_PF1_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_DATA_MASK 0x00000F00L
+#define BIF_BX_PF1_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_VALID_MASK 0x00008000L
+#define BIF_BX_PF1_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_DATA_MASK 0x000F0000L
+#define BIF_BX_PF1_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_VALID_MASK 0x00800000L
+#define BIF_BX_PF1_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_ACK_MASK 0x01000000L
+#define BIF_BX_PF1_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_ACK_MASK 0x02000000L
+//BIF_BX_PF1_PARTITION_COMPUTE_CAP
+#define BIF_BX_PF1_PARTITION_COMPUTE_CAP__SPX_SUPPORT__SHIFT 0x0
+#define BIF_BX_PF1_PARTITION_COMPUTE_CAP__DPX_SUPPORT__SHIFT 0x1
+#define BIF_BX_PF1_PARTITION_COMPUTE_CAP__TPX_SUPPORT__SHIFT 0x2
+#define BIF_BX_PF1_PARTITION_COMPUTE_CAP__QPX_SUPPORT__SHIFT 0x3
+#define BIF_BX_PF1_PARTITION_COMPUTE_CAP__CPX_SUPPORT__SHIFT 0x4
+#define BIF_BX_PF1_PARTITION_COMPUTE_CAP__CPX_AVAILABILITY__SHIFT 0xa
+#define BIF_BX_PF1_PARTITION_COMPUTE_CAP__SPX_SUPPORT_MASK 0x00000001L
+#define BIF_BX_PF1_PARTITION_COMPUTE_CAP__DPX_SUPPORT_MASK 0x00000002L
+#define BIF_BX_PF1_PARTITION_COMPUTE_CAP__TPX_SUPPORT_MASK 0x00000004L
+#define BIF_BX_PF1_PARTITION_COMPUTE_CAP__QPX_SUPPORT_MASK 0x00000008L
+#define BIF_BX_PF1_PARTITION_COMPUTE_CAP__CPX_SUPPORT_MASK 0x00000010L
+#define BIF_BX_PF1_PARTITION_COMPUTE_CAP__CPX_AVAILABILITY_MASK 0x0003FC00L
+//BIF_BX_PF1_PARTITION_MEM_CAP
+#define BIF_BX_PF1_PARTITION_MEM_CAP__NPS1_SUPPORT__SHIFT 0x0
+#define BIF_BX_PF1_PARTITION_MEM_CAP__NPS2_SUPPORT__SHIFT 0x1
+#define BIF_BX_PF1_PARTITION_MEM_CAP__NPS3_SUPPORT__SHIFT 0x2
+#define BIF_BX_PF1_PARTITION_MEM_CAP__NPS4_SUPPORT__SHIFT 0x3
+#define BIF_BX_PF1_PARTITION_MEM_CAP__NPS6_SUPPORT__SHIFT 0x5
+#define BIF_BX_PF1_PARTITION_MEM_CAP__NPS8_SUPPORT__SHIFT 0x7
+#define BIF_BX_PF1_PARTITION_MEM_CAP__NPS1_SUPPORT_MASK 0x00000001L
+#define BIF_BX_PF1_PARTITION_MEM_CAP__NPS2_SUPPORT_MASK 0x00000002L
+#define BIF_BX_PF1_PARTITION_MEM_CAP__NPS3_SUPPORT_MASK 0x00000004L
+#define BIF_BX_PF1_PARTITION_MEM_CAP__NPS4_SUPPORT_MASK 0x00000008L
+#define BIF_BX_PF1_PARTITION_MEM_CAP__NPS6_SUPPORT_MASK 0x00000020L
+#define BIF_BX_PF1_PARTITION_MEM_CAP__NPS8_SUPPORT_MASK 0x00000080L
+//BIF_BX_PF1_PARTITION_COMPUTE_STATUS
+#define BIF_BX_PF1_PARTITION_COMPUTE_STATUS__PARTITION_MODE__SHIFT 0x4
+#define BIF_BX_PF1_PARTITION_COMPUTE_STATUS__PARTITION_MODE_MASK 0x000000F0L
+//BIF_BX_PF1_PARTITION_MEM_STATUS
+#define BIF_BX_PF1_PARTITION_MEM_STATUS__CHANGE_STATUE__SHIFT 0x0
+#define BIF_BX_PF1_PARTITION_MEM_STATUS__NPS_MODE__SHIFT 0x4
+#define BIF_BX_PF1_PARTITION_MEM_STATUS__CHANGE_STATUE_MASK 0x0000000FL
+#define BIF_BX_PF1_PARTITION_MEM_STATUS__NPS_MODE_MASK 0x00000FF0L
+
+
+// addressBlock: aid_nbio_nbif0_rcc_strap_BIFDEC1:1
+//RCC_STRAP2_RCC_BIF_STRAP0
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_GEN4_DIS__SHIFT 0x0
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_EXPANSION_ROM_VALIDATION_SUPPORT__SHIFT 0x1
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_VGA_DIS_PIN__SHIFT 0x2
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_MEM_AP_SIZE_PIN__SHIFT 0x3
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_BIOS_ROM_EN_PIN__SHIFT 0x6
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_PX_CAPABLE__SHIFT 0x7
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_BIF_KILL_GEN3__SHIFT 0x8
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_MSI_FIRST_BE_FULL_PAYLOAD_EN__SHIFT 0x9
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_NBIF_IGNORE_ERR_INFLR__SHIFT 0xa
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_PME_SUPPORT_COMPLIANCE_EN__SHIFT 0xb
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_RX_IGNORE_EP_ERR__SHIFT 0xc
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_RX_IGNORE_MSG_ERR__SHIFT 0xd
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_RX_IGNORE_MAX_PAYLOAD_ERR__SHIFT 0xe
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_RX_IGNORE_SHORTPREFIX_ERR_DN__SHIFT 0xf
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_RX_IGNORE_TC_ERR__SHIFT 0x10
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_RX_IGNORE_TC_ERR_DN__SHIFT 0x11
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_AUD_PIN__SHIFT 0x12
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_GEN3_DIS__SHIFT 0x18
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_BIF_KILL_GEN4__SHIFT 0x19
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_QUICKSIM_START__SHIFT 0x1a
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_NO_RO_ENABLED_P2P_PASSING__SHIFT 0x1b
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_IGNORE_LOCAL_PREFIX_UR_SWUS__SHIFT 0x1c
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_CFG0_RD_VF_BUSNUM_CHK_EN__SHIFT 0x1d
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_BIGAPU_MODE__SHIFT 0x1e
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_LINK_DOWN_RESET_EN__SHIFT 0x1f
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_GEN4_DIS_MASK 0x00000001L
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_EXPANSION_ROM_VALIDATION_SUPPORT_MASK 0x00000002L
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_VGA_DIS_PIN_MASK 0x00000004L
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_MEM_AP_SIZE_PIN_MASK 0x00000038L
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_BIOS_ROM_EN_PIN_MASK 0x00000040L
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_PX_CAPABLE_MASK 0x00000080L
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_BIF_KILL_GEN3_MASK 0x00000100L
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_MSI_FIRST_BE_FULL_PAYLOAD_EN_MASK 0x00000200L
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_NBIF_IGNORE_ERR_INFLR_MASK 0x00000400L
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_PME_SUPPORT_COMPLIANCE_EN_MASK 0x00000800L
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_RX_IGNORE_EP_ERR_MASK 0x00001000L
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_RX_IGNORE_MSG_ERR_MASK 0x00002000L
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_RX_IGNORE_MAX_PAYLOAD_ERR_MASK 0x00004000L
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_RX_IGNORE_SHORTPREFIX_ERR_DN_MASK 0x00008000L
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_RX_IGNORE_TC_ERR_MASK 0x00010000L
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_RX_IGNORE_TC_ERR_DN_MASK 0x00020000L
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_AUD_PIN_MASK 0x000C0000L
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_GEN3_DIS_MASK 0x01000000L
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_BIF_KILL_GEN4_MASK 0x02000000L
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_QUICKSIM_START_MASK 0x04000000L
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_NO_RO_ENABLED_P2P_PASSING_MASK 0x08000000L
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_IGNORE_LOCAL_PREFIX_UR_SWUS_MASK 0x10000000L
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_CFG0_RD_VF_BUSNUM_CHK_EN_MASK 0x20000000L
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_BIGAPU_MODE_MASK 0x40000000L
+#define RCC_STRAP2_RCC_BIF_STRAP0__STRAP_LINK_DOWN_RESET_EN_MASK 0x80000000L
+//RCC_STRAP2_RCC_BIF_STRAP1
+#define RCC_STRAP2_RCC_BIF_STRAP1__FUSESTRAP_VALID__SHIFT 0x0
+#define RCC_STRAP2_RCC_BIF_STRAP1__ROMSTRAP_VALID__SHIFT 0x1
+#define RCC_STRAP2_RCC_BIF_STRAP1__WRITE_DISABLE__SHIFT 0x2
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_ECRC_INTERMEDIATE_CHK_EN__SHIFT 0x3
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_IGNORE_E2E_PREFIX_UR_SWUS__SHIFT 0x5
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_MARGINING_USES_SOFTWARE__SHIFT 0x6
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_MARGINING_READY__SHIFT 0x7
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_SWUS_APER_EN__SHIFT 0x8
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_SWUS_64BAR_EN__SHIFT 0x9
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_SWUS_AP_SIZE__SHIFT 0xa
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_SWUS_APER_PREFETCHABLE__SHIFT 0xc
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_HWREV_LSB2__SHIFT 0xd
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_SWREV_LSB2__SHIFT 0xf
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_LINK_RST_CFG_ONLY__SHIFT 0x11
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_BIF_IOV_LKRST_DIS__SHIFT 0x12
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_DLF_EN__SHIFT 0x13
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_PHY_16GT_EN__SHIFT 0x14
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_MARGIN_EN__SHIFT 0x15
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_BIF_PSN_UR_RPT_EN__SHIFT 0x16
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_BIF_SLOT_POWER_SUPPORT_EN__SHIFT 0x17
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_S5_REGS_ACCESS_DIS__SHIFT 0x18
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_S5_MMREG_WR_POSTED_EN__SHIFT 0x19
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_GFX_FUNC_LTR_MODE__SHIFT 0x1a
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_GSI_SMN_POSTWR_MULTI_EN__SHIFT 0x1b
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_DLF_EN_EP__SHIFT 0x1d
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_AP_EN__SHIFT 0x1e
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_AP_EN_DN__SHIFT 0x1f
+#define RCC_STRAP2_RCC_BIF_STRAP1__FUSESTRAP_VALID_MASK 0x00000001L
+#define RCC_STRAP2_RCC_BIF_STRAP1__ROMSTRAP_VALID_MASK 0x00000002L
+#define RCC_STRAP2_RCC_BIF_STRAP1__WRITE_DISABLE_MASK 0x00000004L
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_ECRC_INTERMEDIATE_CHK_EN_MASK 0x00000008L
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_IGNORE_E2E_PREFIX_UR_SWUS_MASK 0x00000020L
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_MARGINING_USES_SOFTWARE_MASK 0x00000040L
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_MARGINING_READY_MASK 0x00000080L
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_SWUS_APER_EN_MASK 0x00000100L
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_SWUS_64BAR_EN_MASK 0x00000200L
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_SWUS_AP_SIZE_MASK 0x00000C00L
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_SWUS_APER_PREFETCHABLE_MASK 0x00001000L
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_HWREV_LSB2_MASK 0x00006000L
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_SWREV_LSB2_MASK 0x00018000L
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_LINK_RST_CFG_ONLY_MASK 0x00020000L
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_BIF_IOV_LKRST_DIS_MASK 0x00040000L
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_DLF_EN_MASK 0x00080000L
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_PHY_16GT_EN_MASK 0x00100000L
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_MARGIN_EN_MASK 0x00200000L
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_BIF_PSN_UR_RPT_EN_MASK 0x00400000L
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_BIF_SLOT_POWER_SUPPORT_EN_MASK 0x00800000L
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_S5_REGS_ACCESS_DIS_MASK 0x01000000L
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_S5_MMREG_WR_POSTED_EN_MASK 0x02000000L
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_GFX_FUNC_LTR_MODE_MASK 0x04000000L
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_GSI_SMN_POSTWR_MULTI_EN_MASK 0x18000000L
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_DLF_EN_EP_MASK 0x20000000L
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_AP_EN_MASK 0x40000000L
+#define RCC_STRAP2_RCC_BIF_STRAP1__STRAP_AP_EN_DN_MASK 0x80000000L
+//RCC_STRAP2_RCC_BIF_STRAP2
+#define RCC_STRAP2_RCC_BIF_STRAP2__STRAP_PCIESWUS_INDEX_APER_RANGE__SHIFT 0x0
+#define RCC_STRAP2_RCC_BIF_STRAP2__STRAP_SUC_IND_ACCESS_DIS__SHIFT 0x3
+#define RCC_STRAP2_RCC_BIF_STRAP2__STRAP_SUM_IND_ACCESS_DIS__SHIFT 0x4
+#define RCC_STRAP2_RCC_BIF_STRAP2__STRAP_ENDP_LINKDOWN_DROP_DMA__SHIFT 0x5
+#define RCC_STRAP2_RCC_BIF_STRAP2__STRAP_SWITCH_LINKDOWN_DROP_DMA__SHIFT 0x6
+#define RCC_STRAP2_RCC_BIF_STRAP2__STRAP_SWUS_SEC_LVL_OVRD_EN__SHIFT 0x7
+#define RCC_STRAP2_RCC_BIF_STRAP2__STRAP_GMI_DNS_SDP_CLKREQ_TOGGLE_DIS__SHIFT 0x8
+#define RCC_STRAP2_RCC_BIF_STRAP2__STRAP_ACS_MSKSEV_EP_HIDE_DIS__SHIFT 0x9
+#define RCC_STRAP2_RCC_BIF_STRAP2__STRAP_CFG_PG_FW_INTERLOCK_EXIT_EN__SHIFT 0xa
+#define RCC_STRAP2_RCC_BIF_STRAP2__RESERVED_BIF_STRAP2__SHIFT 0xd
+#define RCC_STRAP2_RCC_BIF_STRAP2__STRAP_LTR_IN_ASPML1_DIS__SHIFT 0xe
+#define RCC_STRAP2_RCC_BIF_STRAP2__STRAP_GFXAZ_POWERSTATE_INTERLOCK_EN__SHIFT 0xf
+#define RCC_STRAP2_RCC_BIF_STRAP2__STRAP_PWRBRK_DEGLITCH_CYCLE__SHIFT 0x10
+#define RCC_STRAP2_RCC_BIF_STRAP2__STRAP_PWRBRK_DEGLITCH_BYPASS__SHIFT 0x18
+#define RCC_STRAP2_RCC_BIF_STRAP2__STRAP_VLINK_PMETO_LDN_EXIT_BY_LNKRST_DIS__SHIFT 0x1f
+#define RCC_STRAP2_RCC_BIF_STRAP2__STRAP_PCIESWUS_INDEX_APER_RANGE_MASK 0x00000001L
+#define RCC_STRAP2_RCC_BIF_STRAP2__STRAP_SUC_IND_ACCESS_DIS_MASK 0x00000008L
+#define RCC_STRAP2_RCC_BIF_STRAP2__STRAP_SUM_IND_ACCESS_DIS_MASK 0x00000010L
+#define RCC_STRAP2_RCC_BIF_STRAP2__STRAP_ENDP_LINKDOWN_DROP_DMA_MASK 0x00000020L
+#define RCC_STRAP2_RCC_BIF_STRAP2__STRAP_SWITCH_LINKDOWN_DROP_DMA_MASK 0x00000040L
+#define RCC_STRAP2_RCC_BIF_STRAP2__STRAP_SWUS_SEC_LVL_OVRD_EN_MASK 0x00000080L
+#define RCC_STRAP2_RCC_BIF_STRAP2__STRAP_GMI_DNS_SDP_CLKREQ_TOGGLE_DIS_MASK 0x00000100L
+#define RCC_STRAP2_RCC_BIF_STRAP2__STRAP_ACS_MSKSEV_EP_HIDE_DIS_MASK 0x00000200L
+#define RCC_STRAP2_RCC_BIF_STRAP2__STRAP_CFG_PG_FW_INTERLOCK_EXIT_EN_MASK 0x00000C00L
+#define RCC_STRAP2_RCC_BIF_STRAP2__RESERVED_BIF_STRAP2_MASK 0x00002000L
+#define RCC_STRAP2_RCC_BIF_STRAP2__STRAP_LTR_IN_ASPML1_DIS_MASK 0x00004000L
+#define RCC_STRAP2_RCC_BIF_STRAP2__STRAP_GFXAZ_POWERSTATE_INTERLOCK_EN_MASK 0x00008000L
+#define RCC_STRAP2_RCC_BIF_STRAP2__STRAP_PWRBRK_DEGLITCH_CYCLE_MASK 0x00FF0000L
+#define RCC_STRAP2_RCC_BIF_STRAP2__STRAP_PWRBRK_DEGLITCH_BYPASS_MASK 0x01000000L
+#define RCC_STRAP2_RCC_BIF_STRAP2__STRAP_VLINK_PMETO_LDN_EXIT_BY_LNKRST_DIS_MASK 0x80000000L
+//RCC_STRAP2_RCC_BIF_STRAP3
+#define RCC_STRAP2_RCC_BIF_STRAP3__STRAP_VLINK_ASPM_IDLE_TIMER__SHIFT 0x0
+#define RCC_STRAP2_RCC_BIF_STRAP3__STRAP_VLINK_PM_L1_ENTRY_TIMER__SHIFT 0x10
+#define RCC_STRAP2_RCC_BIF_STRAP3__STRAP_VLINK_ASPM_IDLE_TIMER_MASK 0x0000FFFFL
+#define RCC_STRAP2_RCC_BIF_STRAP3__STRAP_VLINK_PM_L1_ENTRY_TIMER_MASK 0xFFFF0000L
+//RCC_STRAP2_RCC_BIF_STRAP4
+#define RCC_STRAP2_RCC_BIF_STRAP4__STRAP_VLINK_L0S_EXIT_TIMER__SHIFT 0x0
+#define RCC_STRAP2_RCC_BIF_STRAP4__STRAP_VLINK_L1_EXIT_TIMER__SHIFT 0x10
+#define RCC_STRAP2_RCC_BIF_STRAP4__STRAP_VLINK_L0S_EXIT_TIMER_MASK 0x0000FFFFL
+#define RCC_STRAP2_RCC_BIF_STRAP4__STRAP_VLINK_L1_EXIT_TIMER_MASK 0xFFFF0000L
+//RCC_STRAP2_RCC_BIF_STRAP5
+#define RCC_STRAP2_RCC_BIF_STRAP5__STRAP_VLINK_LDN_ENTRY_TIMER__SHIFT 0x0
+#define RCC_STRAP2_RCC_BIF_STRAP5__STRAP_VLINK_LDN_ON_SWUS_LDN_EN__SHIFT 0x10
+#define RCC_STRAP2_RCC_BIF_STRAP5__STRAP_VLINK_LDN_ON_SWUS_SECRST_EN__SHIFT 0x11
+#define RCC_STRAP2_RCC_BIF_STRAP5__STRAP_VLINK_ENTER_COMPLIANCE_DIS__SHIFT 0x12
+#define RCC_STRAP2_RCC_BIF_STRAP5__STRAP_IGNORE_PSN_ON_VDM1_DIS__SHIFT 0x13
+#define RCC_STRAP2_RCC_BIF_STRAP5__STRAP_SMN_ERR_STATUS_MASK_EN_UPS__SHIFT 0x14
+#define RCC_STRAP2_RCC_BIF_STRAP5__STRAP_REG_PROTECTION_DIS__SHIFT 0x15
+#define RCC_STRAP2_RCC_BIF_STRAP5__STRAP_SMN_ERRRSP_DATA_FORCE__SHIFT 0x16
+#define RCC_STRAP2_RCC_BIF_STRAP5__STRAP_INTERMEDIATERSP_DATA_ALLF_DATA_FORCE__SHIFT 0x18
+#define RCC_STRAP2_RCC_BIF_STRAP5__STRAP_EMER_POWER_REDUCTION_SUPPORTED__SHIFT 0x19
+#define RCC_STRAP2_RCC_BIF_STRAP5__STRAP_EMER_POWER_REDUCTION_INIT_REQ__SHIFT 0x1b
+#define RCC_STRAP2_RCC_BIF_STRAP5__STRAP_PWRBRK_STATUS_TIMER__SHIFT 0x1c
+#define RCC_STRAP2_RCC_BIF_STRAP5__STRAP_VLINK_LDN_ENTRY_TIMER_MASK 0x0000FFFFL
+#define RCC_STRAP2_RCC_BIF_STRAP5__STRAP_VLINK_LDN_ON_SWUS_LDN_EN_MASK 0x00010000L
+#define RCC_STRAP2_RCC_BIF_STRAP5__STRAP_VLINK_LDN_ON_SWUS_SECRST_EN_MASK 0x00020000L
+#define RCC_STRAP2_RCC_BIF_STRAP5__STRAP_VLINK_ENTER_COMPLIANCE_DIS_MASK 0x00040000L
+#define RCC_STRAP2_RCC_BIF_STRAP5__STRAP_IGNORE_PSN_ON_VDM1_DIS_MASK 0x00080000L
+#define RCC_STRAP2_RCC_BIF_STRAP5__STRAP_SMN_ERR_STATUS_MASK_EN_UPS_MASK 0x00100000L
+#define RCC_STRAP2_RCC_BIF_STRAP5__STRAP_REG_PROTECTION_DIS_MASK 0x00200000L
+#define RCC_STRAP2_RCC_BIF_STRAP5__STRAP_SMN_ERRRSP_DATA_FORCE_MASK 0x00C00000L
+#define RCC_STRAP2_RCC_BIF_STRAP5__STRAP_INTERMEDIATERSP_DATA_ALLF_DATA_FORCE_MASK 0x01000000L
+#define RCC_STRAP2_RCC_BIF_STRAP5__STRAP_EMER_POWER_REDUCTION_SUPPORTED_MASK 0x06000000L
+#define RCC_STRAP2_RCC_BIF_STRAP5__STRAP_EMER_POWER_REDUCTION_INIT_REQ_MASK 0x08000000L
+#define RCC_STRAP2_RCC_BIF_STRAP5__STRAP_PWRBRK_STATUS_TIMER_MASK 0x70000000L
+//RCC_STRAP2_RCC_BIF_STRAP6
+#define RCC_STRAP2_RCC_BIF_STRAP6__STRAP_GEN5_DIS__SHIFT 0x0
+#define RCC_STRAP2_RCC_BIF_STRAP6__STRAP_BIF_KILL_GEN5__SHIFT 0x1
+#define RCC_STRAP2_RCC_BIF_STRAP6__STRAP_PHY_32GT_EN__SHIFT 0x2
+#define RCC_STRAP2_RCC_BIF_STRAP6__STRAP_GEN5_DIS_MASK 0x00000001L
+#define RCC_STRAP2_RCC_BIF_STRAP6__STRAP_BIF_KILL_GEN5_MASK 0x00000002L
+#define RCC_STRAP2_RCC_BIF_STRAP6__STRAP_PHY_32GT_EN_MASK 0x00000004L
+//RCC_STRAP2_RCC_DEV0_PORT_STRAP0
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP0__STRAP_DEVICE_ID_DN_DEV0__SHIFT 0x0
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP0__STRAP_ARI_EN_DN_DEV0__SHIFT 0x10
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP0__STRAP_ACS_EN_DN_DEV0__SHIFT 0x11
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP0__STRAP_AER_EN_DN_DEV0__SHIFT 0x12
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP0__STRAP_CPL_ABORT_ERR_EN_DN_DEV0__SHIFT 0x13
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP0__STRAP_INTERRUPT_PIN_DN_DEV0__SHIFT 0x15
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP0__STRAP_IGNORE_E2E_PREFIX_UR_DN_DEV0__SHIFT 0x18
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP0__STRAP_MAX_PAYLOAD_SUPPORT_DN_DEV0__SHIFT 0x19
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP0__STRAP_MAX_LINK_WIDTH_SUPPORT_DEV0__SHIFT 0x1c
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP0__STRAP_EPF0_DUMMY_EN_DEV0__SHIFT 0x1f
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP0__STRAP_DEVICE_ID_DN_DEV0_MASK 0x0000FFFFL
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP0__STRAP_ARI_EN_DN_DEV0_MASK 0x00010000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP0__STRAP_ACS_EN_DN_DEV0_MASK 0x00020000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP0__STRAP_AER_EN_DN_DEV0_MASK 0x00040000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP0__STRAP_CPL_ABORT_ERR_EN_DN_DEV0_MASK 0x00080000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP0__STRAP_INTERRUPT_PIN_DN_DEV0_MASK 0x00E00000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP0__STRAP_IGNORE_E2E_PREFIX_UR_DN_DEV0_MASK 0x01000000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP0__STRAP_MAX_PAYLOAD_SUPPORT_DN_DEV0_MASK 0x0E000000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP0__STRAP_MAX_LINK_WIDTH_SUPPORT_DEV0_MASK 0x70000000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP0__STRAP_EPF0_DUMMY_EN_DEV0_MASK 0x80000000L
+//RCC_STRAP2_RCC_DEV0_PORT_STRAP1
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP1__STRAP_SUBSYS_ID_DN_DEV0__SHIFT 0x0
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP1__STRAP_SUBSYS_VEN_ID_DN_DEV0__SHIFT 0x10
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP1__STRAP_SUBSYS_ID_DN_DEV0_MASK 0x0000FFFFL
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP1__STRAP_SUBSYS_VEN_ID_DN_DEV0_MASK 0xFFFF0000L
+//RCC_STRAP2_RCC_DEV0_PORT_STRAP10
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP10__STRAP_NO_EQ_NEED_SUPPORTED_DEV0__SHIFT 0x0
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP10__STRAP_NO_EQ_NEED_SUPPORTED_DN_DEV0__SHIFT 0x1
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP10__STRAP_MODIFID_TS_USAGE_MODE1_SUPPORTED_DEV0__SHIFT 0x2
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP10__STRAP_MODIFID_TS_USAGE_MODE2_SUPPORTED_DEV0__SHIFT 0x3
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP10__STRAP_TRANSMITTER_PRECODEING_ON_DEV0__SHIFT 0x4
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP10__STRAP_TRANSMITTER_PRECODE_REQUEST_DEV0__SHIFT 0x5
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP10__STRAP_MODIFIED_TS_INFOR1_DEV0__SHIFT 0x6
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP10__STRAP_NO_EQ_NEED_SUPPORTED_DEV0_MASK 0x00000001L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP10__STRAP_NO_EQ_NEED_SUPPORTED_DN_DEV0_MASK 0x00000002L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP10__STRAP_MODIFID_TS_USAGE_MODE1_SUPPORTED_DEV0_MASK 0x00000004L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP10__STRAP_MODIFID_TS_USAGE_MODE2_SUPPORTED_DEV0_MASK 0x00000008L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP10__STRAP_TRANSMITTER_PRECODEING_ON_DEV0_MASK 0x00000010L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP10__STRAP_TRANSMITTER_PRECODE_REQUEST_DEV0_MASK 0x00000020L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP10__STRAP_MODIFIED_TS_INFOR1_DEV0_MASK 0x0007FFC0L
+//RCC_STRAP2_RCC_DEV0_PORT_STRAP11
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP11__STRAP_MODIFIED_TS_VENDOR_ID_DEV0__SHIFT 0x0
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP11__STRAP_RTR_RESET_TIME_DN_DEV0__SHIFT 0x10
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP11__STRAP_RTR_VALID_DN_DEV0__SHIFT 0x1c
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP11__STRAP_RTR_EN_DN_DEV0__SHIFT 0x1d
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP11__STRAP_SDPVW_REG_UPDATE_EN_DEV0__SHIFT 0x1e
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP11__STRAP_MODIFIED_TS_VENDOR_ID_DEV0_MASK 0x0000FFFFL
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP11__STRAP_RTR_RESET_TIME_DN_DEV0_MASK 0x0FFF0000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP11__STRAP_RTR_VALID_DN_DEV0_MASK 0x10000000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP11__STRAP_RTR_EN_DN_DEV0_MASK 0x20000000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP11__STRAP_SDPVW_REG_UPDATE_EN_DEV0_MASK 0x40000000L
+//RCC_STRAP2_RCC_DEV0_PORT_STRAP12
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP12__STRAP_MODIFIED_TS_INFOR2_DEV0__SHIFT 0x0
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP12__STRAP_MODIFIED_TS_INFOR2_DEV0_MASK 0x00FFFFFFL
+//RCC_STRAP2_RCC_DEV0_PORT_STRAP13
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP13__STRAP_ALTERNATE_PROTOCOL_COUNT_DEV0__SHIFT 0x0
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP13__STRAP_ALTERNATE_PROTOCOL_SELECTIVE_ENABLE_SUPPORTED_DEV0__SHIFT 0x8
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP13__STRAP_ALTERNATE_PROTOCOL_DETAILS_DEV0__SHIFT 0x9
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP13__STRAP_RTR_D3HOTD0_TIME_DN_DEV0__SHIFT 0x14
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP13__STRAP_ALTERNATE_PROTOCOL_COUNT_DEV0_MASK 0x000000FFL
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP13__STRAP_ALTERNATE_PROTOCOL_SELECTIVE_ENABLE_SUPPORTED_DEV0_MASK 0x00000100L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP13__STRAP_ALTERNATE_PROTOCOL_DETAILS_DEV0_MASK 0x000FFE00L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP13__STRAP_RTR_D3HOTD0_TIME_DN_DEV0_MASK 0xFFF00000L
+//RCC_STRAP2_RCC_DEV0_PORT_STRAP14
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP14__STRAP_CTO_LOGGING_SUPPORT_DEV0__SHIFT 0x0
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP14__STRAP_ACS_ENH_CAPABILITY_DN_DEV0__SHIFT 0x1
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP14__STRAP_COMMAND_COMPLETED_DEV0__SHIFT 0x2
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP14__STRAP_ERR_COR_SUBCLASS_CAPABLE_DEV0__SHIFT 0x3
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP14__STRAP_DOE_EN_UP_DEV0__SHIFT 0x4
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP14__STRAP_CTO_LOGGING_SUPPORT_DEV0_MASK 0x00000001L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP14__STRAP_ACS_ENH_CAPABILITY_DN_DEV0_MASK 0x00000002L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP14__STRAP_COMMAND_COMPLETED_DEV0_MASK 0x00000004L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP14__STRAP_ERR_COR_SUBCLASS_CAPABLE_DEV0_MASK 0x00000008L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP14__STRAP_DOE_EN_UP_DEV0_MASK 0x00000010L
+//RCC_STRAP2_RCC_DEV0_PORT_STRAP2
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP2__STRAP_DE_EMPHASIS_SEL_DN_DEV0__SHIFT 0x0
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP2__STRAP_DSN_EN_DN_DEV0__SHIFT 0x1
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP2__STRAP_E2E_PREFIX_EN_DEV0__SHIFT 0x2
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP2__STRAP_ECN1P1_EN_DEV0__SHIFT 0x3
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP2__STRAP_ECRC_CHECK_EN_DEV0__SHIFT 0x4
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP2__STRAP_ECRC_GEN_EN_DEV0__SHIFT 0x5
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP2__STRAP_ERR_REPORTING_DIS_DEV0__SHIFT 0x6
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP2__STRAP_EXTENDED_FMT_SUPPORTED_DEV0__SHIFT 0x7
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP2__STRAP_EXTENDED_TAG_ECN_EN_DEV0__SHIFT 0x8
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP2__STRAP_EXT_VC_COUNT_DN_DEV0__SHIFT 0x9
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP2__STRAP_FIRST_RCVD_ERR_LOG_DN_DEV0__SHIFT 0xc
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP2__STRAP_POISONED_ADVISORY_NONFATAL_DN_DEV0__SHIFT 0xd
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP2__STRAP_GEN2_COMPLIANCE_DEV0__SHIFT 0xe
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP2__STRAP_GEN2_EN_DEV0__SHIFT 0xf
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP2__STRAP_GEN3_COMPLIANCE_DEV0__SHIFT 0x10
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP2__STRAP_GEN4_COMPLIANCE_DEV0__SHIFT 0x11
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP2__STRAP_L0S_ACCEPTABLE_LATENCY_DEV0__SHIFT 0x14
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP2__STRAP_L0S_EXIT_LATENCY_DEV0__SHIFT 0x17
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP2__STRAP_L1_ACCEPTABLE_LATENCY_DEV0__SHIFT 0x1a
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP2__STRAP_L1_EXIT_LATENCY_DEV0__SHIFT 0x1d
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP2__STRAP_DE_EMPHASIS_SEL_DN_DEV0_MASK 0x00000001L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP2__STRAP_DSN_EN_DN_DEV0_MASK 0x00000002L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP2__STRAP_E2E_PREFIX_EN_DEV0_MASK 0x00000004L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP2__STRAP_ECN1P1_EN_DEV0_MASK 0x00000008L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP2__STRAP_ECRC_CHECK_EN_DEV0_MASK 0x00000010L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP2__STRAP_ECRC_GEN_EN_DEV0_MASK 0x00000020L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP2__STRAP_ERR_REPORTING_DIS_DEV0_MASK 0x00000040L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP2__STRAP_EXTENDED_FMT_SUPPORTED_DEV0_MASK 0x00000080L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP2__STRAP_EXTENDED_TAG_ECN_EN_DEV0_MASK 0x00000100L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP2__STRAP_EXT_VC_COUNT_DN_DEV0_MASK 0x00000E00L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP2__STRAP_FIRST_RCVD_ERR_LOG_DN_DEV0_MASK 0x00001000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP2__STRAP_POISONED_ADVISORY_NONFATAL_DN_DEV0_MASK 0x00002000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP2__STRAP_GEN2_COMPLIANCE_DEV0_MASK 0x00004000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP2__STRAP_GEN2_EN_DEV0_MASK 0x00008000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP2__STRAP_GEN3_COMPLIANCE_DEV0_MASK 0x00010000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP2__STRAP_GEN4_COMPLIANCE_DEV0_MASK 0x00020000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP2__STRAP_L0S_ACCEPTABLE_LATENCY_DEV0_MASK 0x00700000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP2__STRAP_L0S_EXIT_LATENCY_DEV0_MASK 0x03800000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP2__STRAP_L1_ACCEPTABLE_LATENCY_DEV0_MASK 0x1C000000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP2__STRAP_L1_EXIT_LATENCY_DEV0_MASK 0xE0000000L
+//RCC_STRAP2_RCC_DEV0_PORT_STRAP3
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP3__STRAP_LINK_BW_NOTIFICATION_CAP_DN_EN_DEV0__SHIFT 0x0
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP3__STRAP_LTR_EN_DEV0__SHIFT 0x1
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP3__STRAP_LTR_EN_DN_DEV0__SHIFT 0x2
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP3__STRAP_MAX_PAYLOAD_SUPPORT_DEV0__SHIFT 0x3
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP3__STRAP_MSI_EN_DN_DEV0__SHIFT 0x6
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP3__STRAP_MSTCPL_TIMEOUT_EN_DEV0__SHIFT 0x7
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP3__STRAP_NO_SOFT_RESET_DN_DEV0__SHIFT 0x8
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP3__STRAP_OBFF_SUPPORTED_DEV0__SHIFT 0x9
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP3__STRAP_PCIE_LANE_EQUALIZATION_CNTL_DOWNSTREAM_PORT_RX_PRESET_HINT_DEV0__SHIFT 0xb
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP3__STRAP_PCIE_LANE_EQUALIZATION_CNTL_DOWNSTREAM_PORT_TX_PRESET_DEV0__SHIFT 0xe
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP3__STRAP_PCIE_LANE_EQUALIZATION_CNTL_UPSTREAM_PORT_RX_PRESET_HINT_DEV0__SHIFT 0x12
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP3__STRAP_PCIE_LANE_EQUALIZATION_CNTL_UPSTREAM_PORT_TX_PRESET_DEV0__SHIFT 0x15
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP3__STRAP_PM_SUPPORT_DEV0__SHIFT 0x19
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP3__STRAP_PM_SUPPORT_DN_DEV0__SHIFT 0x1b
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP3__STRAP_ATOMIC_EN_DN_DEV0__SHIFT 0x1d
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP3__STRAP_PMC_DSI_DN_DEV0__SHIFT 0x1f
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP3__STRAP_LINK_BW_NOTIFICATION_CAP_DN_EN_DEV0_MASK 0x00000001L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP3__STRAP_LTR_EN_DEV0_MASK 0x00000002L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP3__STRAP_LTR_EN_DN_DEV0_MASK 0x00000004L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP3__STRAP_MAX_PAYLOAD_SUPPORT_DEV0_MASK 0x00000038L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP3__STRAP_MSI_EN_DN_DEV0_MASK 0x00000040L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP3__STRAP_MSTCPL_TIMEOUT_EN_DEV0_MASK 0x00000080L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP3__STRAP_NO_SOFT_RESET_DN_DEV0_MASK 0x00000100L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP3__STRAP_OBFF_SUPPORTED_DEV0_MASK 0x00000600L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP3__STRAP_PCIE_LANE_EQUALIZATION_CNTL_DOWNSTREAM_PORT_RX_PRESET_HINT_DEV0_MASK 0x00003800L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP3__STRAP_PCIE_LANE_EQUALIZATION_CNTL_DOWNSTREAM_PORT_TX_PRESET_DEV0_MASK 0x0003C000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP3__STRAP_PCIE_LANE_EQUALIZATION_CNTL_UPSTREAM_PORT_RX_PRESET_HINT_DEV0_MASK 0x001C0000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP3__STRAP_PCIE_LANE_EQUALIZATION_CNTL_UPSTREAM_PORT_TX_PRESET_DEV0_MASK 0x01E00000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP3__STRAP_PM_SUPPORT_DEV0_MASK 0x06000000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP3__STRAP_PM_SUPPORT_DN_DEV0_MASK 0x18000000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP3__STRAP_ATOMIC_EN_DN_DEV0_MASK 0x20000000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP3__STRAP_PMC_DSI_DN_DEV0_MASK 0x80000000L
+//RCC_STRAP2_RCC_DEV0_PORT_STRAP4
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP4__STRAP_PWR_BUDGET_DATA_8T0_0_DEV0__SHIFT 0x0
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP4__STRAP_PWR_BUDGET_DATA_8T0_1_DEV0__SHIFT 0x8
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP4__STRAP_PWR_BUDGET_DATA_8T0_2_DEV0__SHIFT 0x10
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP4__STRAP_PWR_BUDGET_DATA_8T0_3_DEV0__SHIFT 0x18
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP4__STRAP_PWR_BUDGET_DATA_8T0_0_DEV0_MASK 0x000000FFL
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP4__STRAP_PWR_BUDGET_DATA_8T0_1_DEV0_MASK 0x0000FF00L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP4__STRAP_PWR_BUDGET_DATA_8T0_2_DEV0_MASK 0x00FF0000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP4__STRAP_PWR_BUDGET_DATA_8T0_3_DEV0_MASK 0xFF000000L
+//RCC_STRAP2_RCC_DEV0_PORT_STRAP5
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP5__STRAP_PWR_BUDGET_DATA_8T0_4_DEV0__SHIFT 0x0
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP5__STRAP_PWR_BUDGET_DATA_8T0_5_DEV0__SHIFT 0x8
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP5__STRAP_PWR_BUDGET_SYSTEM_ALLOCATED_DEV0__SHIFT 0x10
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP5__STRAP_ATOMIC_64BIT_EN_DN_DEV0__SHIFT 0x11
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP5__STRAP_ATOMIC_ROUTING_EN_DEV0__SHIFT 0x12
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP5__STRAP_VC_EN_DN_DEV0__SHIFT 0x13
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP5__STRAP_TwoVC_EN_DEV0__SHIFT 0x14
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP5__STRAP_TwoVC_EN_DN_DEV0__SHIFT 0x15
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP5__STRAP_LOCAL_DLF_SUPPORTED_DEV0__SHIFT 0x16
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP5__STRAP_ACS_SOURCE_VALIDATION_DN_DEV0__SHIFT 0x17
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP5__STRAP_ACS_TRANSLATION_BLOCKING_DN_DEV0__SHIFT 0x18
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP5__STRAP_ACS_P2P_REQUEST_REDIRECT_DN_DEV0__SHIFT 0x19
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP5__STRAP_ACS_P2P_COMPLETION_REDIRECT_DN_DEV0__SHIFT 0x1a
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP5__STRAP_ACS_UPSTREAM_FORWARDING_DN_DEV0__SHIFT 0x1b
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP5__STRAP_ACS_P2P_EGRESS_CONTROL_DN_DEV0__SHIFT 0x1c
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP5__STRAP_ACS_DIRECT_TRANSLATED_P2P_DN_DEV0__SHIFT 0x1d
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP5__STRAP_SSID_EN_DEV0__SHIFT 0x1f
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP5__STRAP_PWR_BUDGET_DATA_8T0_4_DEV0_MASK 0x000000FFL
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP5__STRAP_PWR_BUDGET_DATA_8T0_5_DEV0_MASK 0x0000FF00L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP5__STRAP_PWR_BUDGET_SYSTEM_ALLOCATED_DEV0_MASK 0x00010000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP5__STRAP_ATOMIC_64BIT_EN_DN_DEV0_MASK 0x00020000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP5__STRAP_ATOMIC_ROUTING_EN_DEV0_MASK 0x00040000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP5__STRAP_VC_EN_DN_DEV0_MASK 0x00080000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP5__STRAP_TwoVC_EN_DEV0_MASK 0x00100000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP5__STRAP_TwoVC_EN_DN_DEV0_MASK 0x00200000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP5__STRAP_LOCAL_DLF_SUPPORTED_DEV0_MASK 0x00400000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP5__STRAP_ACS_SOURCE_VALIDATION_DN_DEV0_MASK 0x00800000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP5__STRAP_ACS_TRANSLATION_BLOCKING_DN_DEV0_MASK 0x01000000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP5__STRAP_ACS_P2P_REQUEST_REDIRECT_DN_DEV0_MASK 0x02000000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP5__STRAP_ACS_P2P_COMPLETION_REDIRECT_DN_DEV0_MASK 0x04000000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP5__STRAP_ACS_UPSTREAM_FORWARDING_DN_DEV0_MASK 0x08000000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP5__STRAP_ACS_P2P_EGRESS_CONTROL_DN_DEV0_MASK 0x10000000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP5__STRAP_ACS_DIRECT_TRANSLATED_P2P_DN_DEV0_MASK 0x20000000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP5__STRAP_SSID_EN_DEV0_MASK 0x80000000L
+//RCC_STRAP2_RCC_DEV0_PORT_STRAP6
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP6__STRAP_CFG_CRS_EN_DEV0__SHIFT 0x0
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP6__STRAP_SMN_ERR_STATUS_MASK_EN_DNS_DEV0__SHIFT 0x1
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP6__STRAP_INTERNAL_ERR_EN_DEV0__SHIFT 0x2
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP6__STRAP_RTM1_PRESENCE_DET_SUPPORT_DEV0__SHIFT 0x3
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP6__STRAP_RTM2_PRESENCE_DET_SUPPORT_DEV0__SHIFT 0x4
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP6__STRAP_10BIT_TAG_COMPLETER_SUPPORTED_DEV0__SHIFT 0x5
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP6__STRAP_10BIT_TAG_REQUESTER_SUPPORTED_DEV0__SHIFT 0x6
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP6__STRAP_VF_10BIT_TAG_REQUESTER_SUPPORTED_DEV0__SHIFT 0x7
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP6__STRAP_PCIE_16GT_LANE_EQUALIZATION_CNTL_DSP_TX_PRESET_DEV0__SHIFT 0x8
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP6__STRAP_PCIE_16GT_LANE_EQUALIZATION_CNTL_USP_TX_PRESET_DEV0__SHIFT 0xc
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP6__STRAP_TPH_CPLR_SUPPORTED_DN_DEV0__SHIFT 0x10
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP6__STRAP_MSI_EXT_MSG_DATA_CAP_DN_DEV0__SHIFT 0x12
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP6__STRAP_NO_COMMAND_COMPLETED_SUPPORTED_DEV0__SHIFT 0x13
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP6__STRAP_GEN5_COMPLIANCE_DEV0__SHIFT 0x14
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP6__STRAP_TARGET_LINK_SPEED_DEV0__SHIFT 0x15
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP6__STRAP_PCIE_32GT_LANE_EQUALIZATION_CNTL_DSP_TX_PRESET_DEV0__SHIFT 0x18
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP6__STRAP_PCIE_32GT_LANE_EQUALIZATION_CNTL_USP_TX_PRESET_DEV0__SHIFT 0x1c
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP6__STRAP_CFG_CRS_EN_DEV0_MASK 0x00000001L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP6__STRAP_SMN_ERR_STATUS_MASK_EN_DNS_DEV0_MASK 0x00000002L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP6__STRAP_INTERNAL_ERR_EN_DEV0_MASK 0x00000004L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP6__STRAP_RTM1_PRESENCE_DET_SUPPORT_DEV0_MASK 0x00000008L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP6__STRAP_RTM2_PRESENCE_DET_SUPPORT_DEV0_MASK 0x00000010L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP6__STRAP_10BIT_TAG_COMPLETER_SUPPORTED_DEV0_MASK 0x00000020L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP6__STRAP_10BIT_TAG_REQUESTER_SUPPORTED_DEV0_MASK 0x00000040L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP6__STRAP_VF_10BIT_TAG_REQUESTER_SUPPORTED_DEV0_MASK 0x00000080L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP6__STRAP_PCIE_16GT_LANE_EQUALIZATION_CNTL_DSP_TX_PRESET_DEV0_MASK 0x00000F00L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP6__STRAP_PCIE_16GT_LANE_EQUALIZATION_CNTL_USP_TX_PRESET_DEV0_MASK 0x0000F000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP6__STRAP_TPH_CPLR_SUPPORTED_DN_DEV0_MASK 0x00030000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP6__STRAP_MSI_EXT_MSG_DATA_CAP_DN_DEV0_MASK 0x00040000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP6__STRAP_NO_COMMAND_COMPLETED_SUPPORTED_DEV0_MASK 0x00080000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP6__STRAP_GEN5_COMPLIANCE_DEV0_MASK 0x00100000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP6__STRAP_TARGET_LINK_SPEED_DEV0_MASK 0x00E00000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP6__STRAP_PCIE_32GT_LANE_EQUALIZATION_CNTL_DSP_TX_PRESET_DEV0_MASK 0x0F000000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP6__STRAP_PCIE_32GT_LANE_EQUALIZATION_CNTL_USP_TX_PRESET_DEV0_MASK 0xF0000000L
+//RCC_STRAP2_RCC_DEV0_PORT_STRAP7
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP7__STRAP_PORT_NUMBER_DEV0__SHIFT 0x0
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP7__STRAP_MAJOR_REV_ID_DN_DEV0__SHIFT 0x8
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP7__STRAP_MINOR_REV_ID_DN_DEV0__SHIFT 0xc
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP7__STRAP_RP_BUSNUM_DEV0__SHIFT 0x10
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP7__STRAP_DN_DEVNUM_DEV0__SHIFT 0x18
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP7__STRAP_DN_FUNCID_DEV0__SHIFT 0x1d
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP7__STRAP_PORT_NUMBER_DEV0_MASK 0x000000FFL
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP7__STRAP_MAJOR_REV_ID_DN_DEV0_MASK 0x00000F00L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP7__STRAP_MINOR_REV_ID_DN_DEV0_MASK 0x0000F000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP7__STRAP_RP_BUSNUM_DEV0_MASK 0x00FF0000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP7__STRAP_DN_DEVNUM_DEV0_MASK 0x1F000000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP7__STRAP_DN_FUNCID_DEV0_MASK 0xE0000000L
+//RCC_STRAP2_RCC_DEV0_PORT_STRAP8
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP8__STRAP_PWR_BUDGET_DATA_8T0_6_DEV0__SHIFT 0x0
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP8__STRAP_PWR_BUDGET_DATA_8T0_7_DEV0__SHIFT 0x8
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP8__STRAP_PWR_BUDGET_DATA_8T0_8_DEV0__SHIFT 0x10
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP8__STRAP_PWR_BUDGET_DATA_8T0_9_DEV0__SHIFT 0x18
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP8__STRAP_PWR_BUDGET_DATA_8T0_6_DEV0_MASK 0x000000FFL
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP8__STRAP_PWR_BUDGET_DATA_8T0_7_DEV0_MASK 0x0000FF00L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP8__STRAP_PWR_BUDGET_DATA_8T0_8_DEV0_MASK 0x00FF0000L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP8__STRAP_PWR_BUDGET_DATA_8T0_9_DEV0_MASK 0xFF000000L
+//RCC_STRAP2_RCC_DEV0_PORT_STRAP9
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP9__STRAP_PWR_BUDGET_DATA_8T0_a_DEV0__SHIFT 0x0
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP9__STRAP_PWR_BUDGET_DATA_8T0_b_DEV0__SHIFT 0x8
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP9__STRAP_VENDOR_ID_DN_DEV0__SHIFT 0x10
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP9__STRAP_PWR_BUDGET_DATA_8T0_a_DEV0_MASK 0x000000FFL
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP9__STRAP_PWR_BUDGET_DATA_8T0_b_DEV0_MASK 0x0000FF00L
+#define RCC_STRAP2_RCC_DEV0_PORT_STRAP9__STRAP_VENDOR_ID_DN_DEV0_MASK 0xFFFF0000L
+//RCC_STRAP2_RCC_DEV0_EPF0_STRAP0
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP0__STRAP_DEVICE_ID_DEV0_F0__SHIFT 0x0
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP0__STRAP_MAJOR_REV_ID_DEV0_F0__SHIFT 0x10
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP0__STRAP_MINOR_REV_ID_DEV0_F0__SHIFT 0x14
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP0__STRAP_ATI_REV_ID_DEV0_F0__SHIFT 0x18
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP0__STRAP_FUNC_EN_DEV0_F0__SHIFT 0x1c
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP0__STRAP_LEGACY_DEVICE_TYPE_EN_DEV0_F0__SHIFT 0x1d
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP0__STRAP_D1_SUPPORT_DEV0_F0__SHIFT 0x1e
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP0__STRAP_D2_SUPPORT_DEV0_F0__SHIFT 0x1f
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP0__STRAP_DEVICE_ID_DEV0_F0_MASK 0x0000FFFFL
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP0__STRAP_MAJOR_REV_ID_DEV0_F0_MASK 0x000F0000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP0__STRAP_MINOR_REV_ID_DEV0_F0_MASK 0x00F00000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP0__STRAP_ATI_REV_ID_DEV0_F0_MASK 0x0F000000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP0__STRAP_FUNC_EN_DEV0_F0_MASK 0x10000000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP0__STRAP_LEGACY_DEVICE_TYPE_EN_DEV0_F0_MASK 0x20000000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP0__STRAP_D1_SUPPORT_DEV0_F0_MASK 0x40000000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP0__STRAP_D2_SUPPORT_DEV0_F0_MASK 0x80000000L
+//RCC_STRAP2_RCC_DEV0_EPF0_STRAP1
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP1__STRAP_SRIOV_VF_DEVICE_ID_DEV0_F0__SHIFT 0x0
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP1__STRAP_SRIOV_SUPPORTED_PAGE_SIZE_DEV0_F0__SHIFT 0x10
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP1__STRAP_SRIOV_VF_DEVICE_ID_DEV0_F0_MASK 0x0000FFFFL
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP1__STRAP_SRIOV_SUPPORTED_PAGE_SIZE_DEV0_F0_MASK 0xFFFF0000L
+//RCC_STRAP2_RCC_DEV0_EPF0_STRAP13
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP13__STRAP_CLASS_CODE_PIF_DEV0_F0__SHIFT 0x0
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP13__STRAP_CLASS_CODE_SUB_DEV0_F0__SHIFT 0x8
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP13__STRAP_CLASS_CODE_BASE_DEV0_F0__SHIFT 0x10
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP13__STRAP_SRIOV_TOTAL_VFS_DEV0_F0__SHIFT 0x18
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP13__STRAP_CLASS_CODE_PIF_DEV0_F0_MASK 0x000000FFL
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP13__STRAP_CLASS_CODE_SUB_DEV0_F0_MASK 0x0000FF00L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP13__STRAP_CLASS_CODE_BASE_DEV0_F0_MASK 0x00FF0000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP13__STRAP_SRIOV_TOTAL_VFS_DEV0_F0_MASK 0xFF000000L
+//RCC_STRAP2_RCC_DEV0_EPF0_STRAP14
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP14__STRAP_VENDOR_ID_DEV0_F0__SHIFT 0x0
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP14__STRAP_VENDOR_ID_DEV0_F0_MASK 0x0000FFFFL
+//RCC_STRAP2_RCC_DEV0_EPF0_STRAP15
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP15__STRAP_RTR_RESET_TIME_DEV0_F0__SHIFT 0x0
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP15__STRAP_RTR_DLUP_TIME_DEV0_F0__SHIFT 0xc
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP15__STRAP_RTR_VALID_DEV0_F0__SHIFT 0x18
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP15__STRAP_ATS_INVALIDATE_QUEUE_DEPTH_DEV0_F0__SHIFT 0x19
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP15__STRAP_ATS_PAGE_ALIGNED_REQUEST_DEV0_F0__SHIFT 0x1e
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP15__STRAP_RTR_RESET_TIME_DEV0_F0_MASK 0x00000FFFL
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP15__STRAP_RTR_DLUP_TIME_DEV0_F0_MASK 0x00FFF000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP15__STRAP_RTR_VALID_DEV0_F0_MASK 0x01000000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP15__STRAP_ATS_INVALIDATE_QUEUE_DEPTH_DEV0_F0_MASK 0x3E000000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP15__STRAP_ATS_PAGE_ALIGNED_REQUEST_DEV0_F0_MASK 0x40000000L
+//RCC_STRAP2_RCC_DEV0_EPF0_STRAP16
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP16__STRAP_RTR_FLR_TIME_DEV0_F0__SHIFT 0x0
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP16__STRAP_RTR_D3HOTD0_TIME_DEV0_F0__SHIFT 0xc
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP16__STRAP_RTR_FLR_TIME_DEV0_F0_MASK 0x00000FFFL
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP16__STRAP_RTR_D3HOTD0_TIME_DEV0_F0_MASK 0x00FFF000L
+//RCC_STRAP2_RCC_DEV0_EPF0_STRAP17
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP17__STRAP_RTR_VF_RESET_TIME_DEV0_F0__SHIFT 0x0
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP17__STRAP_RTR_VF_VALID_DEV0_F0__SHIFT 0xc
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP17__STRAP_RTR_VF_FLR_TIME_DEV0_F0__SHIFT 0xd
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP17__STRAP_RTR_VF_RESET_TIME_DEV0_F0_MASK 0x00000FFFL
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP17__STRAP_RTR_VF_VALID_DEV0_F0_MASK 0x00001000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP17__STRAP_RTR_VF_FLR_TIME_DEV0_F0_MASK 0x01FFE000L
+//RCC_STRAP2_RCC_DEV0_EPF0_STRAP18
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP18__STRAP_RTR_VF_D3HOTD0_TIME_DEV0_F0__SHIFT 0x0
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP18__STRAP_RTR_VF_D3HOTD0_TIME_DEV0_F0_MASK 0x00000FFFL
+//RCC_STRAP2_RCC_DEV0_EPF0_STRAP2
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP2__STRAP_SRIOV_EN_DEV0_F0__SHIFT 0x0
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP2__STRAP_64BAR_DIS_DEV0_F0__SHIFT 0x6
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP2__STRAP_NO_SOFT_RESET_DEV0_F0__SHIFT 0x7
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP2__STRAP_RESIZE_BAR_EN_DEV0_F0__SHIFT 0x8
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP2__STRAP_MAX_PASID_WIDTH_DEV0_F0__SHIFT 0x9
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP2__STRAP_MSI_PERVECTOR_MASK_CAP_DEV0_F0__SHIFT 0xe
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP2__STRAP_ARI_EN_DEV0_F0__SHIFT 0xf
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP2__STRAP_AER_EN_DEV0_F0__SHIFT 0x10
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP2__STRAP_ACS_EN_DEV0_F0__SHIFT 0x11
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP2__STRAP_ATS_EN_DEV0_F0__SHIFT 0x12
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP2__STRAP_CPL_ABORT_ERR_EN_DEV0_F0__SHIFT 0x14
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP2__STRAP_DPA_EN_DEV0_F0__SHIFT 0x15
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP2__STRAP_DSN_EN_DEV0_F0__SHIFT 0x16
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP2__STRAP_VC_EN_DEV0_F0__SHIFT 0x17
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP2__STRAP_MSI_MULTI_CAP_DEV0_F0__SHIFT 0x18
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP2__STRAP_PAGE_REQ_EN_DEV0_F0__SHIFT 0x1b
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP2__STRAP_PASID_EN_DEV0_F0__SHIFT 0x1c
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP2__STRAP_PASID_EXE_PERMISSION_SUPPORTED_DEV0_F0__SHIFT 0x1d
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP2__STRAP_PASID_GLOBAL_INVALIDATE_SUPPORTED_DEV0_F0__SHIFT 0x1e
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP2__STRAP_PASID_PRIV_MODE_SUPPORTED_DEV0_F0__SHIFT 0x1f
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP2__STRAP_SRIOV_EN_DEV0_F0_MASK 0x00000001L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP2__STRAP_64BAR_DIS_DEV0_F0_MASK 0x00000040L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP2__STRAP_NO_SOFT_RESET_DEV0_F0_MASK 0x00000080L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP2__STRAP_RESIZE_BAR_EN_DEV0_F0_MASK 0x00000100L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP2__STRAP_MAX_PASID_WIDTH_DEV0_F0_MASK 0x00003E00L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP2__STRAP_MSI_PERVECTOR_MASK_CAP_DEV0_F0_MASK 0x00004000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP2__STRAP_ARI_EN_DEV0_F0_MASK 0x00008000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP2__STRAP_AER_EN_DEV0_F0_MASK 0x00010000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP2__STRAP_ACS_EN_DEV0_F0_MASK 0x00020000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP2__STRAP_ATS_EN_DEV0_F0_MASK 0x00040000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP2__STRAP_CPL_ABORT_ERR_EN_DEV0_F0_MASK 0x00100000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP2__STRAP_DPA_EN_DEV0_F0_MASK 0x00200000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP2__STRAP_DSN_EN_DEV0_F0_MASK 0x00400000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP2__STRAP_VC_EN_DEV0_F0_MASK 0x00800000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP2__STRAP_MSI_MULTI_CAP_DEV0_F0_MASK 0x07000000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP2__STRAP_PAGE_REQ_EN_DEV0_F0_MASK 0x08000000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP2__STRAP_PASID_EN_DEV0_F0_MASK 0x10000000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP2__STRAP_PASID_EXE_PERMISSION_SUPPORTED_DEV0_F0_MASK 0x20000000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP2__STRAP_PASID_GLOBAL_INVALIDATE_SUPPORTED_DEV0_F0_MASK 0x40000000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP2__STRAP_PASID_PRIV_MODE_SUPPORTED_DEV0_F0_MASK 0x80000000L
+//RCC_STRAP2_RCC_DEV0_EPF0_STRAP26
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP26__STRAP_GPUIOV_VSEC_LENGTH_DEV0_F0__SHIFT 0x0
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP26__STRAP_GPUIOV_VSEC_LENGTH_DEV0_F0_MASK 0x00000FFFL
+//RCC_STRAP2_RCC_DEV0_EPF0_STRAP3
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP3__STRAP_SUBSYS_ID_DEV0_F0__SHIFT 0x0
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP3__STRAP_POISONED_ADVISORY_NONFATAL_DEV0_F0__SHIFT 0x10
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP3__STRAP_PWR_EN_DEV0_F0__SHIFT 0x11
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP3__STRAP_MSI_EN_DEV0_F0__SHIFT 0x12
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP3__STRAP_MSI_CLR_PENDING_EN_DEV0_F0__SHIFT 0x13
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP3__STRAP_MSIX_EN_DEV0_F0__SHIFT 0x14
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP3__STRAP_MSIX_TABLE_BIR_DEV0_F0__SHIFT 0x15
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP3__STRAP_PMC_DSI_DEV0_F0__SHIFT 0x18
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP3__STRAP_ALL_MSI_EVENT_SUPPORT_EN_DEV0_F0__SHIFT 0x1a
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP3__STRAP_SMN_ERR_STATUS_MASK_EN_EP_DEV0_F0__SHIFT 0x1b
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP3__STRAP_VF_RESIZE_BAR_EN_DEV0_F0__SHIFT 0x1c
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP3__STRAP_CLK_PM_EN_DEV0_F0__SHIFT 0x1d
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP3__STRAP_TRUE_PM_STATUS_EN_DEV0_F0__SHIFT 0x1e
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP3__STRAP_RTR_EN_DEV0_F0__SHIFT 0x1f
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP3__STRAP_SUBSYS_ID_DEV0_F0_MASK 0x0000FFFFL
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP3__STRAP_POISONED_ADVISORY_NONFATAL_DEV0_F0_MASK 0x00010000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP3__STRAP_PWR_EN_DEV0_F0_MASK 0x00020000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP3__STRAP_MSI_EN_DEV0_F0_MASK 0x00040000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP3__STRAP_MSI_CLR_PENDING_EN_DEV0_F0_MASK 0x00080000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP3__STRAP_MSIX_EN_DEV0_F0_MASK 0x00100000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP3__STRAP_MSIX_TABLE_BIR_DEV0_F0_MASK 0x00E00000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP3__STRAP_PMC_DSI_DEV0_F0_MASK 0x01000000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP3__STRAP_ALL_MSI_EVENT_SUPPORT_EN_DEV0_F0_MASK 0x04000000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP3__STRAP_SMN_ERR_STATUS_MASK_EN_EP_DEV0_F0_MASK 0x08000000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP3__STRAP_VF_RESIZE_BAR_EN_DEV0_F0_MASK 0x10000000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP3__STRAP_CLK_PM_EN_DEV0_F0_MASK 0x20000000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP3__STRAP_TRUE_PM_STATUS_EN_DEV0_F0_MASK 0x40000000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP3__STRAP_RTR_EN_DEV0_F0_MASK 0x80000000L
+//RCC_STRAP2_RCC_DEV0_EPF0_STRAP4
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP4__STRAP_RESERVED_STRAP4_DEV0_F0__SHIFT 0x0
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP4__STRAP_DOE_EN_DEV0_F0__SHIFT 0xa
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP4__STRAP_ATOMIC_64BIT_EN_DEV0_F0__SHIFT 0x14
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP4__STRAP_ATOMIC_EN_DEV0_F0__SHIFT 0x15
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP4__STRAP_FLR_EN_DEV0_F0__SHIFT 0x16
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP4__STRAP_PME_SUPPORT_DEV0_F0__SHIFT 0x17
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP4__STRAP_INTERRUPT_PIN_DEV0_F0__SHIFT 0x1c
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP4__STRAP_RESERVED_STRAP4_DEV0_F0_MASK 0x000003FFL
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP4__STRAP_DOE_EN_DEV0_F0_MASK 0x00000400L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP4__STRAP_ATOMIC_64BIT_EN_DEV0_F0_MASK 0x00100000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP4__STRAP_ATOMIC_EN_DEV0_F0_MASK 0x00200000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP4__STRAP_FLR_EN_DEV0_F0_MASK 0x00400000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP4__STRAP_PME_SUPPORT_DEV0_F0_MASK 0x0F800000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP4__STRAP_INTERRUPT_PIN_DEV0_F0_MASK 0x70000000L
+//RCC_STRAP2_RCC_DEV0_EPF0_STRAP5
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP5__STRAP_SUBSYS_VEN_ID_DEV0_F0__SHIFT 0x0
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP5__STRAP_MSI_EXT_MSG_DATA_CAP_DEV0_F0__SHIFT 0x1e
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP5__STRAP_SUBSYS_VEN_ID_DEV0_F0_MASK 0x0000FFFFL
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP5__STRAP_MSI_EXT_MSG_DATA_CAP_DEV0_F0_MASK 0x40000000L
+//RCC_STRAP2_RCC_DEV0_EPF0_STRAP8
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP8__STRAP_DOORBELL_APER_SIZE_DEV0_F0__SHIFT 0x0
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP8__STRAP_DOORBELL_BAR_DIS_DEV0_F0__SHIFT 0x3
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP8__STRAP_ROM_AP_SIZE_DEV0_F0__SHIFT 0x4
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP8__STRAP_IO_BAR_DIS_DEV0_F0__SHIFT 0x7
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP8__STRAP_LFB_ERRMSG_EN_DEV0_F0__SHIFT 0x8
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP8__STRAP_MEM_AP_SIZE_DEV0_F0__SHIFT 0x9
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP8__STRAP_REG_AP_SIZE_DEV0_F0__SHIFT 0xd
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP8__STRAP_VF_DOORBELL_APER_SIZE_DEV0_F0__SHIFT 0x10
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP8__STRAP_VF_MEM_AP_SIZE_DEV0_F0__SHIFT 0x13
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP8__STRAP_VF_REG_AP_SIZE_DEV0_F0__SHIFT 0x17
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP8__STRAP_VGA_DIS_DEV0_F0__SHIFT 0x1a
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP8__STRAP_VF_MSI_MULTI_CAP_DEV0_F0__SHIFT 0x1b
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP8__STRAP_SRIOV_VF_MAPPING_MODE_DEV0_F0__SHIFT 0x1e
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP8__STRAP_DOORBELL_APER_SIZE_DEV0_F0_MASK 0x00000007L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP8__STRAP_DOORBELL_BAR_DIS_DEV0_F0_MASK 0x00000008L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP8__STRAP_ROM_AP_SIZE_DEV0_F0_MASK 0x00000070L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP8__STRAP_IO_BAR_DIS_DEV0_F0_MASK 0x00000080L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP8__STRAP_LFB_ERRMSG_EN_DEV0_F0_MASK 0x00000100L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP8__STRAP_MEM_AP_SIZE_DEV0_F0_MASK 0x00001E00L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP8__STRAP_REG_AP_SIZE_DEV0_F0_MASK 0x0000E000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP8__STRAP_VF_DOORBELL_APER_SIZE_DEV0_F0_MASK 0x00070000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP8__STRAP_VF_MEM_AP_SIZE_DEV0_F0_MASK 0x00780000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP8__STRAP_VF_REG_AP_SIZE_DEV0_F0_MASK 0x03800000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP8__STRAP_VGA_DIS_DEV0_F0_MASK 0x04000000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP8__STRAP_VF_MSI_MULTI_CAP_DEV0_F0_MASK 0x38000000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP8__STRAP_SRIOV_VF_MAPPING_MODE_DEV0_F0_MASK 0xC0000000L
+//RCC_STRAP2_RCC_DEV0_EPF0_STRAP9
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP9__STRAP_OUTSTAND_PAGE_REQ_CAP_DEV0_F0__SHIFT 0x0
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP9__STRAP_BAR_COMPLIANCE_EN_DEV0_F0__SHIFT 0x12
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP9__STRAP_NBIF_ROM_BAR_DIS_CHICKEN_DEV0_F0__SHIFT 0x13
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP9__STRAP_VF_REG_PROT_DIS_DEV0_F0__SHIFT 0x14
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP9__STRAP_FB_ALWAYS_ON_DEV0_F0__SHIFT 0x15
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP9__STRAP_FB_CPL_TYPE_SEL_DEV0_F0__SHIFT 0x16
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP9__STRAP_GPUIOV_VSEC_REV_DEV0_F0__SHIFT 0x18
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP9__STRAP_OUTSTAND_PAGE_REQ_CAP_DEV0_F0_MASK 0x0000FFFFL
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP9__STRAP_BAR_COMPLIANCE_EN_DEV0_F0_MASK 0x00040000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP9__STRAP_NBIF_ROM_BAR_DIS_CHICKEN_DEV0_F0_MASK 0x00080000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP9__STRAP_VF_REG_PROT_DIS_DEV0_F0_MASK 0x00100000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP9__STRAP_FB_ALWAYS_ON_DEV0_F0_MASK 0x00200000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP9__STRAP_FB_CPL_TYPE_SEL_DEV0_F0_MASK 0x00C00000L
+#define RCC_STRAP2_RCC_DEV0_EPF0_STRAP9__STRAP_GPUIOV_VSEC_REV_DEV0_F0_MASK 0x0F000000L
+//RCC_STRAP2_RCC_DEV0_EPF1_STRAP0
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP0__STRAP_DEVICE_ID_DEV0_F1__SHIFT 0x0
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP0__STRAP_MAJOR_REV_ID_DEV0_F1__SHIFT 0x10
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP0__STRAP_MINOR_REV_ID_DEV0_F1__SHIFT 0x14
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP0__STRAP_FUNC_EN_DEV0_F1__SHIFT 0x1c
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP0__STRAP_LEGACY_DEVICE_TYPE_EN_DEV0_F1__SHIFT 0x1d
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP0__STRAP_D1_SUPPORT_DEV0_F1__SHIFT 0x1e
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP0__STRAP_D2_SUPPORT_DEV0_F1__SHIFT 0x1f
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP0__STRAP_DEVICE_ID_DEV0_F1_MASK 0x0000FFFFL
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP0__STRAP_MAJOR_REV_ID_DEV0_F1_MASK 0x000F0000L
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP0__STRAP_MINOR_REV_ID_DEV0_F1_MASK 0x00F00000L
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP0__STRAP_FUNC_EN_DEV0_F1_MASK 0x10000000L
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP0__STRAP_LEGACY_DEVICE_TYPE_EN_DEV0_F1_MASK 0x20000000L
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP0__STRAP_D1_SUPPORT_DEV0_F1_MASK 0x40000000L
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP0__STRAP_D2_SUPPORT_DEV0_F1_MASK 0x80000000L
+//RCC_STRAP2_RCC_DEV0_EPF1_STRAP2
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP2__STRAP_NO_SOFT_RESET_DEV0_F1__SHIFT 0x7
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP2__STRAP_RESIZE_BAR_EN_DEV0_F1__SHIFT 0x8
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP2__STRAP_MAX_PASID_WIDTH_DEV0_F1__SHIFT 0x9
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP2__STRAP_MSI_PERVECTOR_MASK_CAP_DEV0_F1__SHIFT 0xe
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP2__STRAP_AER_EN_DEV0_F1__SHIFT 0x10
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP2__STRAP_ACS_EN_DEV0_F1__SHIFT 0x11
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP2__STRAP_CPL_ABORT_ERR_EN_DEV0_F1__SHIFT 0x14
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP2__STRAP_DPA_EN_DEV0_F1__SHIFT 0x15
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP2__STRAP_VC_EN_DEV0_F1__SHIFT 0x17
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP2__STRAP_MSI_MULTI_CAP_DEV0_F1__SHIFT 0x18
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP2__STRAP_PASID_EN_DEV0_F1__SHIFT 0x1c
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP2__STRAP_PASID_EXE_PERMISSION_SUPPORTED_DEV0_F1__SHIFT 0x1d
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP2__STRAP_PASID_GLOBAL_INVALIDATE_SUPPORTED_DEV0_F1__SHIFT 0x1e
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP2__STRAP_PASID_PRIV_MODE_SUPPORTED_DEV0_F1__SHIFT 0x1f
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP2__STRAP_NO_SOFT_RESET_DEV0_F1_MASK 0x00000080L
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP2__STRAP_RESIZE_BAR_EN_DEV0_F1_MASK 0x00000100L
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP2__STRAP_MAX_PASID_WIDTH_DEV0_F1_MASK 0x00003E00L
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP2__STRAP_MSI_PERVECTOR_MASK_CAP_DEV0_F1_MASK 0x00004000L
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP2__STRAP_AER_EN_DEV0_F1_MASK 0x00010000L
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP2__STRAP_ACS_EN_DEV0_F1_MASK 0x00020000L
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP2__STRAP_CPL_ABORT_ERR_EN_DEV0_F1_MASK 0x00100000L
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP2__STRAP_DPA_EN_DEV0_F1_MASK 0x00200000L
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP2__STRAP_VC_EN_DEV0_F1_MASK 0x00800000L
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP2__STRAP_MSI_MULTI_CAP_DEV0_F1_MASK 0x07000000L
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP2__STRAP_PASID_EN_DEV0_F1_MASK 0x10000000L
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP2__STRAP_PASID_EXE_PERMISSION_SUPPORTED_DEV0_F1_MASK 0x20000000L
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP2__STRAP_PASID_GLOBAL_INVALIDATE_SUPPORTED_DEV0_F1_MASK 0x40000000L
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP2__STRAP_PASID_PRIV_MODE_SUPPORTED_DEV0_F1_MASK 0x80000000L
+//RCC_STRAP2_RCC_DEV0_EPF1_STRAP20
+//RCC_STRAP2_RCC_DEV0_EPF1_STRAP21
+//RCC_STRAP2_RCC_DEV0_EPF1_STRAP22
+//RCC_STRAP2_RCC_DEV0_EPF1_STRAP23
+//RCC_STRAP2_RCC_DEV0_EPF1_STRAP24
+//RCC_STRAP2_RCC_DEV0_EPF1_STRAP25
+//RCC_STRAP2_RCC_DEV0_EPF1_STRAP3
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP3__STRAP_SUBSYS_ID_DEV0_F1__SHIFT 0x0
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP3__STRAP_POISONED_ADVISORY_NONFATAL_DEV0_F1__SHIFT 0x10
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP3__STRAP_PWR_EN_DEV0_F1__SHIFT 0x11
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP3__STRAP_MSI_EN_DEV0_F1__SHIFT 0x12
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP3__STRAP_MSI_CLR_PENDING_EN_DEV0_F1__SHIFT 0x13
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP3__STRAP_MSIX_EN_DEV0_F1__SHIFT 0x14
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP3__STRAP_PMC_DSI_DEV0_F1__SHIFT 0x18
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP3__STRAP_ALL_MSI_EVENT_SUPPORT_EN_DEV0_F1__SHIFT 0x1a
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP3__STRAP_SMN_ERR_STATUS_MASK_EN_EP_DEV0_F1__SHIFT 0x1b
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP3__STRAP_CLK_PM_EN_DEV0_F1__SHIFT 0x1d
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP3__STRAP_TRUE_PM_STATUS_EN_DEV0_F1__SHIFT 0x1e
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP3__STRAP_RTR_EN_DEV0_F1__SHIFT 0x1f
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP3__STRAP_SUBSYS_ID_DEV0_F1_MASK 0x0000FFFFL
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP3__STRAP_POISONED_ADVISORY_NONFATAL_DEV0_F1_MASK 0x00010000L
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP3__STRAP_PWR_EN_DEV0_F1_MASK 0x00020000L
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP3__STRAP_MSI_EN_DEV0_F1_MASK 0x00040000L
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP3__STRAP_MSI_CLR_PENDING_EN_DEV0_F1_MASK 0x00080000L
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP3__STRAP_MSIX_EN_DEV0_F1_MASK 0x00100000L
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP3__STRAP_PMC_DSI_DEV0_F1_MASK 0x01000000L
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP3__STRAP_ALL_MSI_EVENT_SUPPORT_EN_DEV0_F1_MASK 0x04000000L
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP3__STRAP_SMN_ERR_STATUS_MASK_EN_EP_DEV0_F1_MASK 0x08000000L
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP3__STRAP_CLK_PM_EN_DEV0_F1_MASK 0x20000000L
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP3__STRAP_TRUE_PM_STATUS_EN_DEV0_F1_MASK 0x40000000L
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP3__STRAP_RTR_EN_DEV0_F1_MASK 0x80000000L
+//RCC_STRAP2_RCC_DEV0_EPF1_STRAP4
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP4__STRAP_ATOMIC_64BIT_EN_DEV0_F1__SHIFT 0x14
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP4__STRAP_ATOMIC_EN_DEV0_F1__SHIFT 0x15
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP4__STRAP_FLR_EN_DEV0_F1__SHIFT 0x16
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP4__STRAP_PME_SUPPORT_DEV0_F1__SHIFT 0x17
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP4__STRAP_INTERRUPT_PIN_DEV0_F1__SHIFT 0x1c
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP4__STRAP_AUXPWR_SUPPORT_DEV0_F1__SHIFT 0x1f
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP4__STRAP_ATOMIC_64BIT_EN_DEV0_F1_MASK 0x00100000L
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP4__STRAP_ATOMIC_EN_DEV0_F1_MASK 0x00200000L
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP4__STRAP_FLR_EN_DEV0_F1_MASK 0x00400000L
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP4__STRAP_PME_SUPPORT_DEV0_F1_MASK 0x0F800000L
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP4__STRAP_INTERRUPT_PIN_DEV0_F1_MASK 0x70000000L
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP4__STRAP_AUXPWR_SUPPORT_DEV0_F1_MASK 0x80000000L
+//RCC_STRAP2_RCC_DEV0_EPF1_STRAP5
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP5__STRAP_SUBSYS_VEN_ID_DEV0_F1__SHIFT 0x0
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP5__STRAP_AUX_CURRENT_DEV0_F1__SHIFT 0x1b
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP5__STRAP_MSI_EXT_MSG_DATA_CAP_DEV0_F1__SHIFT 0x1e
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP5__STRAP_SUBSYS_VEN_ID_DEV0_F1_MASK 0x0000FFFFL
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP5__STRAP_AUX_CURRENT_DEV0_F1_MASK 0x38000000L
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP5__STRAP_MSI_EXT_MSG_DATA_CAP_DEV0_F1_MASK 0x40000000L
+//RCC_STRAP2_RCC_DEV0_EPF1_STRAP6
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP6__STRAP_APER0_EN_DEV0_F1__SHIFT 0x0
+#define RCC_STRAP2_RCC_DEV0_EPF1_STRAP6__STRAP_APER0_EN_DEV0_F1_MASK 0x00000001L
+//RCC_STRAP2_RCC_DEV0_EPF1_STRAP7
+
+
+// addressBlock: aid_nbio_nbif0_gdc_hst_sion_SIONDEC
+//S2A_DOORBELL_ENTRY_0_CTRL
+#define S2A_DOORBELL_ENTRY_0_CTRL__S2A_DOORBELL_PORT0_ENABLE__SHIFT 0x0
+#define S2A_DOORBELL_ENTRY_0_CTRL__S2A_DOORBELL_PORT0_AWID__SHIFT 0x1
+#define S2A_DOORBELL_ENTRY_0_CTRL__S2A_DOORBELL_PORT0_FENCE_ENABLE__SHIFT 0x6
+#define S2A_DOORBELL_ENTRY_0_CTRL__S2A_DOORBELL_PORT0_RANGE_OFFSET__SHIFT 0x7
+#define S2A_DOORBELL_ENTRY_0_CTRL__S2A_DOORBELL_PORT0_RANGE_SIZE__SHIFT 0x11
+#define S2A_DOORBELL_ENTRY_0_CTRL__S2A_DOORBELL_PORT0_64BIT_SUPPORT_DIS__SHIFT 0x19
+#define S2A_DOORBELL_ENTRY_0_CTRL__S2A_DOORBELL_PORT0_NEED_DEDUCT_RANGE_OFFSET__SHIFT 0x1a
+#define S2A_DOORBELL_ENTRY_0_CTRL__S2A_DOORBELL_PORT0_AWADDR_31_28_VALUE__SHIFT 0x1c
+#define S2A_DOORBELL_ENTRY_0_CTRL__S2A_DOORBELL_PORT0_ENABLE_MASK 0x00000001L
+#define S2A_DOORBELL_ENTRY_0_CTRL__S2A_DOORBELL_PORT0_AWID_MASK 0x0000003EL
+#define S2A_DOORBELL_ENTRY_0_CTRL__S2A_DOORBELL_PORT0_FENCE_ENABLE_MASK 0x00000040L
+#define S2A_DOORBELL_ENTRY_0_CTRL__S2A_DOORBELL_PORT0_RANGE_OFFSET_MASK 0x0001FF80L
+#define S2A_DOORBELL_ENTRY_0_CTRL__S2A_DOORBELL_PORT0_RANGE_SIZE_MASK 0x01FE0000L
+#define S2A_DOORBELL_ENTRY_0_CTRL__S2A_DOORBELL_PORT0_64BIT_SUPPORT_DIS_MASK 0x02000000L
+#define S2A_DOORBELL_ENTRY_0_CTRL__S2A_DOORBELL_PORT0_NEED_DEDUCT_RANGE_OFFSET_MASK 0x04000000L
+#define S2A_DOORBELL_ENTRY_0_CTRL__S2A_DOORBELL_PORT0_AWADDR_31_28_VALUE_MASK 0xF0000000L
+//S2A_DOORBELL_ENTRY_1_CTRL
+#define S2A_DOORBELL_ENTRY_1_CTRL__S2A_DOORBELL_PORT1_ENABLE__SHIFT 0x0
+#define S2A_DOORBELL_ENTRY_1_CTRL__S2A_DOORBELL_PORT1_AWID__SHIFT 0x1
+#define S2A_DOORBELL_ENTRY_1_CTRL__S2A_DOORBELL_PORT1_FENCE_ENABLE__SHIFT 0x6
+#define S2A_DOORBELL_ENTRY_1_CTRL__S2A_DOORBELL_PORT1_RANGE_OFFSET__SHIFT 0x7
+#define S2A_DOORBELL_ENTRY_1_CTRL__S2A_DOORBELL_PORT1_RANGE_SIZE__SHIFT 0x11
+#define S2A_DOORBELL_ENTRY_1_CTRL__S2A_DOORBELL_PORT1_64BIT_SUPPORT_DIS__SHIFT 0x19
+#define S2A_DOORBELL_ENTRY_1_CTRL__S2A_DOORBELL_PORT1_NEED_DEDUCT_RANGE_OFFSET__SHIFT 0x1a
+#define S2A_DOORBELL_ENTRY_1_CTRL__S2A_DOORBELL_PORT1_AWADDR_31_28_VALUE__SHIFT 0x1c
+#define S2A_DOORBELL_ENTRY_1_CTRL__S2A_DOORBELL_PORT1_ENABLE_MASK 0x00000001L
+#define S2A_DOORBELL_ENTRY_1_CTRL__S2A_DOORBELL_PORT1_AWID_MASK 0x0000003EL
+#define S2A_DOORBELL_ENTRY_1_CTRL__S2A_DOORBELL_PORT1_FENCE_ENABLE_MASK 0x00000040L
+#define S2A_DOORBELL_ENTRY_1_CTRL__S2A_DOORBELL_PORT1_RANGE_OFFSET_MASK 0x0001FF80L
+#define S2A_DOORBELL_ENTRY_1_CTRL__S2A_DOORBELL_PORT1_RANGE_SIZE_MASK 0x01FE0000L
+#define S2A_DOORBELL_ENTRY_1_CTRL__S2A_DOORBELL_PORT1_64BIT_SUPPORT_DIS_MASK 0x02000000L
+#define S2A_DOORBELL_ENTRY_1_CTRL__S2A_DOORBELL_PORT1_NEED_DEDUCT_RANGE_OFFSET_MASK 0x04000000L
+#define S2A_DOORBELL_ENTRY_1_CTRL__S2A_DOORBELL_PORT1_AWADDR_31_28_VALUE_MASK 0xF0000000L
+//S2A_DOORBELL_ENTRY_2_CTRL
+#define S2A_DOORBELL_ENTRY_2_CTRL__S2A_DOORBELL_PORT2_ENABLE__SHIFT 0x0
+#define S2A_DOORBELL_ENTRY_2_CTRL__S2A_DOORBELL_PORT2_AWID__SHIFT 0x1
+#define S2A_DOORBELL_ENTRY_2_CTRL__S2A_DOORBELL_PORT2_FENCE_ENABLE__SHIFT 0x6
+#define S2A_DOORBELL_ENTRY_2_CTRL__S2A_DOORBELL_PORT2_RANGE_OFFSET__SHIFT 0x7
+#define S2A_DOORBELL_ENTRY_2_CTRL__S2A_DOORBELL_PORT2_RANGE_SIZE__SHIFT 0x11
+#define S2A_DOORBELL_ENTRY_2_CTRL__S2A_DOORBELL_PORT2_64BIT_SUPPORT_DIS__SHIFT 0x19
+#define S2A_DOORBELL_ENTRY_2_CTRL__S2A_DOORBELL_PORT2_NEED_DEDUCT_RANGE_OFFSET__SHIFT 0x1a
+#define S2A_DOORBELL_ENTRY_2_CTRL__S2A_DOORBELL_PORT2_AWADDR_31_28_VALUE__SHIFT 0x1c
+#define S2A_DOORBELL_ENTRY_2_CTRL__S2A_DOORBELL_PORT2_ENABLE_MASK 0x00000001L
+#define S2A_DOORBELL_ENTRY_2_CTRL__S2A_DOORBELL_PORT2_AWID_MASK 0x0000003EL
+#define S2A_DOORBELL_ENTRY_2_CTRL__S2A_DOORBELL_PORT2_FENCE_ENABLE_MASK 0x00000040L
+#define S2A_DOORBELL_ENTRY_2_CTRL__S2A_DOORBELL_PORT2_RANGE_OFFSET_MASK 0x0001FF80L
+#define S2A_DOORBELL_ENTRY_2_CTRL__S2A_DOORBELL_PORT2_RANGE_SIZE_MASK 0x01FE0000L
+#define S2A_DOORBELL_ENTRY_2_CTRL__S2A_DOORBELL_PORT2_64BIT_SUPPORT_DIS_MASK 0x02000000L
+#define S2A_DOORBELL_ENTRY_2_CTRL__S2A_DOORBELL_PORT2_NEED_DEDUCT_RANGE_OFFSET_MASK 0x04000000L
+#define S2A_DOORBELL_ENTRY_2_CTRL__S2A_DOORBELL_PORT2_AWADDR_31_28_VALUE_MASK 0xF0000000L
+//S2A_DOORBELL_ENTRY_3_CTRL
+#define S2A_DOORBELL_ENTRY_3_CTRL__S2A_DOORBELL_PORT3_ENABLE__SHIFT 0x0
+#define S2A_DOORBELL_ENTRY_3_CTRL__S2A_DOORBELL_PORT3_AWID__SHIFT 0x1
+#define S2A_DOORBELL_ENTRY_3_CTRL__S2A_DOORBELL_PORT3_FENCE_ENABLE__SHIFT 0x6
+#define S2A_DOORBELL_ENTRY_3_CTRL__S2A_DOORBELL_PORT3_RANGE_OFFSET__SHIFT 0x7
+#define S2A_DOORBELL_ENTRY_3_CTRL__S2A_DOORBELL_PORT3_RANGE_SIZE__SHIFT 0x11
+#define S2A_DOORBELL_ENTRY_3_CTRL__S2A_DOORBELL_PORT3_64BIT_SUPPORT_DIS__SHIFT 0x19
+#define S2A_DOORBELL_ENTRY_3_CTRL__S2A_DOORBELL_PORT3_NEED_DEDUCT_RANGE_OFFSET__SHIFT 0x1a
+#define S2A_DOORBELL_ENTRY_3_CTRL__S2A_DOORBELL_PORT3_AWADDR_31_28_VALUE__SHIFT 0x1c
+#define S2A_DOORBELL_ENTRY_3_CTRL__S2A_DOORBELL_PORT3_ENABLE_MASK 0x00000001L
+#define S2A_DOORBELL_ENTRY_3_CTRL__S2A_DOORBELL_PORT3_AWID_MASK 0x0000003EL
+#define S2A_DOORBELL_ENTRY_3_CTRL__S2A_DOORBELL_PORT3_FENCE_ENABLE_MASK 0x00000040L
+#define S2A_DOORBELL_ENTRY_3_CTRL__S2A_DOORBELL_PORT3_RANGE_OFFSET_MASK 0x0001FF80L
+#define S2A_DOORBELL_ENTRY_3_CTRL__S2A_DOORBELL_PORT3_RANGE_SIZE_MASK 0x01FE0000L
+#define S2A_DOORBELL_ENTRY_3_CTRL__S2A_DOORBELL_PORT3_64BIT_SUPPORT_DIS_MASK 0x02000000L
+#define S2A_DOORBELL_ENTRY_3_CTRL__S2A_DOORBELL_PORT3_NEED_DEDUCT_RANGE_OFFSET_MASK 0x04000000L
+#define S2A_DOORBELL_ENTRY_3_CTRL__S2A_DOORBELL_PORT3_AWADDR_31_28_VALUE_MASK 0xF0000000L
+//S2A_DOORBELL_ENTRY_4_CTRL
+#define S2A_DOORBELL_ENTRY_4_CTRL__S2A_DOORBELL_PORT4_ENABLE__SHIFT 0x0
+#define S2A_DOORBELL_ENTRY_4_CTRL__S2A_DOORBELL_PORT4_AWID__SHIFT 0x1
+#define S2A_DOORBELL_ENTRY_4_CTRL__S2A_DOORBELL_PORT4_FENCE_ENABLE__SHIFT 0x6
+#define S2A_DOORBELL_ENTRY_4_CTRL__S2A_DOORBELL_PORT4_RANGE_OFFSET__SHIFT 0x7
+#define S2A_DOORBELL_ENTRY_4_CTRL__S2A_DOORBELL_PORT4_RANGE_SIZE__SHIFT 0x11
+#define S2A_DOORBELL_ENTRY_4_CTRL__S2A_DOORBELL_PORT4_64BIT_SUPPORT_DIS__SHIFT 0x19
+#define S2A_DOORBELL_ENTRY_4_CTRL__S2A_DOORBELL_PORT4_NEED_DEDUCT_RANGE_OFFSET__SHIFT 0x1a
+#define S2A_DOORBELL_ENTRY_4_CTRL__S2A_DOORBELL_PORT4_AWADDR_31_28_VALUE__SHIFT 0x1c
+#define S2A_DOORBELL_ENTRY_4_CTRL__S2A_DOORBELL_PORT4_ENABLE_MASK 0x00000001L
+#define S2A_DOORBELL_ENTRY_4_CTRL__S2A_DOORBELL_PORT4_AWID_MASK 0x0000003EL
+#define S2A_DOORBELL_ENTRY_4_CTRL__S2A_DOORBELL_PORT4_FENCE_ENABLE_MASK 0x00000040L
+#define S2A_DOORBELL_ENTRY_4_CTRL__S2A_DOORBELL_PORT4_RANGE_OFFSET_MASK 0x0001FF80L
+#define S2A_DOORBELL_ENTRY_4_CTRL__S2A_DOORBELL_PORT4_RANGE_SIZE_MASK 0x01FE0000L
+#define S2A_DOORBELL_ENTRY_4_CTRL__S2A_DOORBELL_PORT4_64BIT_SUPPORT_DIS_MASK 0x02000000L
+#define S2A_DOORBELL_ENTRY_4_CTRL__S2A_DOORBELL_PORT4_NEED_DEDUCT_RANGE_OFFSET_MASK 0x04000000L
+#define S2A_DOORBELL_ENTRY_4_CTRL__S2A_DOORBELL_PORT4_AWADDR_31_28_VALUE_MASK 0xF0000000L
+//S2A_DOORBELL_ENTRY_5_CTRL
+#define S2A_DOORBELL_ENTRY_5_CTRL__S2A_DOORBELL_PORT5_ENABLE__SHIFT 0x0
+#define S2A_DOORBELL_ENTRY_5_CTRL__S2A_DOORBELL_PORT5_AWID__SHIFT 0x1
+#define S2A_DOORBELL_ENTRY_5_CTRL__S2A_DOORBELL_PORT5_FENCE_ENABLE__SHIFT 0x6
+#define S2A_DOORBELL_ENTRY_5_CTRL__S2A_DOORBELL_PORT5_RANGE_OFFSET__SHIFT 0x7
+#define S2A_DOORBELL_ENTRY_5_CTRL__S2A_DOORBELL_PORT5_RANGE_SIZE__SHIFT 0x11
+#define S2A_DOORBELL_ENTRY_5_CTRL__S2A_DOORBELL_PORT5_64BIT_SUPPORT_DIS__SHIFT 0x19
+#define S2A_DOORBELL_ENTRY_5_CTRL__S2A_DOORBELL_PORT5_NEED_DEDUCT_RANGE_OFFSET__SHIFT 0x1a
+#define S2A_DOORBELL_ENTRY_5_CTRL__S2A_DOORBELL_PORT5_AWADDR_31_28_VALUE__SHIFT 0x1c
+#define S2A_DOORBELL_ENTRY_5_CTRL__S2A_DOORBELL_PORT5_ENABLE_MASK 0x00000001L
+#define S2A_DOORBELL_ENTRY_5_CTRL__S2A_DOORBELL_PORT5_AWID_MASK 0x0000003EL
+#define S2A_DOORBELL_ENTRY_5_CTRL__S2A_DOORBELL_PORT5_FENCE_ENABLE_MASK 0x00000040L
+#define S2A_DOORBELL_ENTRY_5_CTRL__S2A_DOORBELL_PORT5_RANGE_OFFSET_MASK 0x0001FF80L
+#define S2A_DOORBELL_ENTRY_5_CTRL__S2A_DOORBELL_PORT5_RANGE_SIZE_MASK 0x01FE0000L
+#define S2A_DOORBELL_ENTRY_5_CTRL__S2A_DOORBELL_PORT5_64BIT_SUPPORT_DIS_MASK 0x02000000L
+#define S2A_DOORBELL_ENTRY_5_CTRL__S2A_DOORBELL_PORT5_NEED_DEDUCT_RANGE_OFFSET_MASK 0x04000000L
+#define S2A_DOORBELL_ENTRY_5_CTRL__S2A_DOORBELL_PORT5_AWADDR_31_28_VALUE_MASK 0xF0000000L
+//S2A_DOORBELL_ENTRY_6_CTRL
+#define S2A_DOORBELL_ENTRY_6_CTRL__S2A_DOORBELL_PORT6_ENABLE__SHIFT 0x0
+#define S2A_DOORBELL_ENTRY_6_CTRL__S2A_DOORBELL_PORT6_AWID__SHIFT 0x1
+#define S2A_DOORBELL_ENTRY_6_CTRL__S2A_DOORBELL_PORT6_FENCE_ENABLE__SHIFT 0x6
+#define S2A_DOORBELL_ENTRY_6_CTRL__S2A_DOORBELL_PORT6_RANGE_OFFSET__SHIFT 0x7
+#define S2A_DOORBELL_ENTRY_6_CTRL__S2A_DOORBELL_PORT6_RANGE_SIZE__SHIFT 0x11
+#define S2A_DOORBELL_ENTRY_6_CTRL__S2A_DOORBELL_PORT6_64BIT_SUPPORT_DIS__SHIFT 0x19
+#define S2A_DOORBELL_ENTRY_6_CTRL__S2A_DOORBELL_PORT6_NEED_DEDUCT_RANGE_OFFSET__SHIFT 0x1a
+#define S2A_DOORBELL_ENTRY_6_CTRL__S2A_DOORBELL_PORT6_AWADDR_31_28_VALUE__SHIFT 0x1c
+#define S2A_DOORBELL_ENTRY_6_CTRL__S2A_DOORBELL_PORT6_ENABLE_MASK 0x00000001L
+#define S2A_DOORBELL_ENTRY_6_CTRL__S2A_DOORBELL_PORT6_AWID_MASK 0x0000003EL
+#define S2A_DOORBELL_ENTRY_6_CTRL__S2A_DOORBELL_PORT6_FENCE_ENABLE_MASK 0x00000040L
+#define S2A_DOORBELL_ENTRY_6_CTRL__S2A_DOORBELL_PORT6_RANGE_OFFSET_MASK 0x0001FF80L
+#define S2A_DOORBELL_ENTRY_6_CTRL__S2A_DOORBELL_PORT6_RANGE_SIZE_MASK 0x01FE0000L
+#define S2A_DOORBELL_ENTRY_6_CTRL__S2A_DOORBELL_PORT6_64BIT_SUPPORT_DIS_MASK 0x02000000L
+#define S2A_DOORBELL_ENTRY_6_CTRL__S2A_DOORBELL_PORT6_NEED_DEDUCT_RANGE_OFFSET_MASK 0x04000000L
+#define S2A_DOORBELL_ENTRY_6_CTRL__S2A_DOORBELL_PORT6_AWADDR_31_28_VALUE_MASK 0xF0000000L
+//S2A_DOORBELL_ENTRY_7_CTRL
+#define S2A_DOORBELL_ENTRY_7_CTRL__S2A_DOORBELL_PORT7_ENABLE__SHIFT 0x0
+#define S2A_DOORBELL_ENTRY_7_CTRL__S2A_DOORBELL_PORT7_AWID__SHIFT 0x1
+#define S2A_DOORBELL_ENTRY_7_CTRL__S2A_DOORBELL_PORT7_FENCE_ENABLE__SHIFT 0x6
+#define S2A_DOORBELL_ENTRY_7_CTRL__S2A_DOORBELL_PORT7_RANGE_OFFSET__SHIFT 0x7
+#define S2A_DOORBELL_ENTRY_7_CTRL__S2A_DOORBELL_PORT7_RANGE_SIZE__SHIFT 0x11
+#define S2A_DOORBELL_ENTRY_7_CTRL__S2A_DOORBELL_PORT7_64BIT_SUPPORT_DIS__SHIFT 0x19
+#define S2A_DOORBELL_ENTRY_7_CTRL__S2A_DOORBELL_PORT7_NEED_DEDUCT_RANGE_OFFSET__SHIFT 0x1a
+#define S2A_DOORBELL_ENTRY_7_CTRL__S2A_DOORBELL_PORT7_AWADDR_31_28_VALUE__SHIFT 0x1c
+#define S2A_DOORBELL_ENTRY_7_CTRL__S2A_DOORBELL_PORT7_ENABLE_MASK 0x00000001L
+#define S2A_DOORBELL_ENTRY_7_CTRL__S2A_DOORBELL_PORT7_AWID_MASK 0x0000003EL
+#define S2A_DOORBELL_ENTRY_7_CTRL__S2A_DOORBELL_PORT7_FENCE_ENABLE_MASK 0x00000040L
+#define S2A_DOORBELL_ENTRY_7_CTRL__S2A_DOORBELL_PORT7_RANGE_OFFSET_MASK 0x0001FF80L
+#define S2A_DOORBELL_ENTRY_7_CTRL__S2A_DOORBELL_PORT7_RANGE_SIZE_MASK 0x01FE0000L
+#define S2A_DOORBELL_ENTRY_7_CTRL__S2A_DOORBELL_PORT7_64BIT_SUPPORT_DIS_MASK 0x02000000L
+#define S2A_DOORBELL_ENTRY_7_CTRL__S2A_DOORBELL_PORT7_NEED_DEDUCT_RANGE_OFFSET_MASK 0x04000000L
+#define S2A_DOORBELL_ENTRY_7_CTRL__S2A_DOORBELL_PORT7_AWADDR_31_28_VALUE_MASK 0xF0000000L
+//S2A_DOORBELL_ENTRY_8_CTRL
+#define S2A_DOORBELL_ENTRY_8_CTRL__S2A_DOORBELL_PORT8_ENABLE__SHIFT 0x0
+#define S2A_DOORBELL_ENTRY_8_CTRL__S2A_DOORBELL_PORT8_AWID__SHIFT 0x1
+#define S2A_DOORBELL_ENTRY_8_CTRL__S2A_DOORBELL_PORT8_FENCE_ENABLE__SHIFT 0x6
+#define S2A_DOORBELL_ENTRY_8_CTRL__S2A_DOORBELL_PORT8_RANGE_OFFSET__SHIFT 0x7
+#define S2A_DOORBELL_ENTRY_8_CTRL__S2A_DOORBELL_PORT8_RANGE_SIZE__SHIFT 0x11
+#define S2A_DOORBELL_ENTRY_8_CTRL__S2A_DOORBELL_PORT8_64BIT_SUPPORT_DIS__SHIFT 0x19
+#define S2A_DOORBELL_ENTRY_8_CTRL__S2A_DOORBELL_PORT8_NEED_DEDUCT_RANGE_OFFSET__SHIFT 0x1a
+#define S2A_DOORBELL_ENTRY_8_CTRL__S2A_DOORBELL_PORT8_AWADDR_31_28_VALUE__SHIFT 0x1c
+#define S2A_DOORBELL_ENTRY_8_CTRL__S2A_DOORBELL_PORT8_ENABLE_MASK 0x00000001L
+#define S2A_DOORBELL_ENTRY_8_CTRL__S2A_DOORBELL_PORT8_AWID_MASK 0x0000003EL
+#define S2A_DOORBELL_ENTRY_8_CTRL__S2A_DOORBELL_PORT8_FENCE_ENABLE_MASK 0x00000040L
+#define S2A_DOORBELL_ENTRY_8_CTRL__S2A_DOORBELL_PORT8_RANGE_OFFSET_MASK 0x0001FF80L
+#define S2A_DOORBELL_ENTRY_8_CTRL__S2A_DOORBELL_PORT8_RANGE_SIZE_MASK 0x01FE0000L
+#define S2A_DOORBELL_ENTRY_8_CTRL__S2A_DOORBELL_PORT8_64BIT_SUPPORT_DIS_MASK 0x02000000L
+#define S2A_DOORBELL_ENTRY_8_CTRL__S2A_DOORBELL_PORT8_NEED_DEDUCT_RANGE_OFFSET_MASK 0x04000000L
+#define S2A_DOORBELL_ENTRY_8_CTRL__S2A_DOORBELL_PORT8_AWADDR_31_28_VALUE_MASK 0xF0000000L
+//S2A_DOORBELL_ENTRY_9_CTRL
+#define S2A_DOORBELL_ENTRY_9_CTRL__S2A_DOORBELL_PORT9_ENABLE__SHIFT 0x0
+#define S2A_DOORBELL_ENTRY_9_CTRL__S2A_DOORBELL_PORT9_AWID__SHIFT 0x1
+#define S2A_DOORBELL_ENTRY_9_CTRL__S2A_DOORBELL_PORT9_FENCE_ENABLE__SHIFT 0x6
+#define S2A_DOORBELL_ENTRY_9_CTRL__S2A_DOORBELL_PORT9_RANGE_OFFSET__SHIFT 0x7
+#define S2A_DOORBELL_ENTRY_9_CTRL__S2A_DOORBELL_PORT9_RANGE_SIZE__SHIFT 0x11
+#define S2A_DOORBELL_ENTRY_9_CTRL__S2A_DOORBELL_PORT9_64BIT_SUPPORT_DIS__SHIFT 0x19
+#define S2A_DOORBELL_ENTRY_9_CTRL__S2A_DOORBELL_PORT9_NEED_DEDUCT_RANGE_OFFSET__SHIFT 0x1a
+#define S2A_DOORBELL_ENTRY_9_CTRL__S2A_DOORBELL_PORT9_AWADDR_31_28_VALUE__SHIFT 0x1c
+#define S2A_DOORBELL_ENTRY_9_CTRL__S2A_DOORBELL_PORT9_ENABLE_MASK 0x00000001L
+#define S2A_DOORBELL_ENTRY_9_CTRL__S2A_DOORBELL_PORT9_AWID_MASK 0x0000003EL
+#define S2A_DOORBELL_ENTRY_9_CTRL__S2A_DOORBELL_PORT9_FENCE_ENABLE_MASK 0x00000040L
+#define S2A_DOORBELL_ENTRY_9_CTRL__S2A_DOORBELL_PORT9_RANGE_OFFSET_MASK 0x0001FF80L
+#define S2A_DOORBELL_ENTRY_9_CTRL__S2A_DOORBELL_PORT9_RANGE_SIZE_MASK 0x01FE0000L
+#define S2A_DOORBELL_ENTRY_9_CTRL__S2A_DOORBELL_PORT9_64BIT_SUPPORT_DIS_MASK 0x02000000L
+#define S2A_DOORBELL_ENTRY_9_CTRL__S2A_DOORBELL_PORT9_NEED_DEDUCT_RANGE_OFFSET_MASK 0x04000000L
+#define S2A_DOORBELL_ENTRY_9_CTRL__S2A_DOORBELL_PORT9_AWADDR_31_28_VALUE_MASK 0xF0000000L
+//S2A_DOORBELL_ENTRY_10_CTRL
+#define S2A_DOORBELL_ENTRY_10_CTRL__S2A_DOORBELL_PORT10_ENABLE__SHIFT 0x0
+#define S2A_DOORBELL_ENTRY_10_CTRL__S2A_DOORBELL_PORT10_AWID__SHIFT 0x1
+#define S2A_DOORBELL_ENTRY_10_CTRL__S2A_DOORBELL_PORT10_FENCE_ENABLE__SHIFT 0x6
+#define S2A_DOORBELL_ENTRY_10_CTRL__S2A_DOORBELL_PORT10_RANGE_OFFSET__SHIFT 0x7
+#define S2A_DOORBELL_ENTRY_10_CTRL__S2A_DOORBELL_PORT10_RANGE_SIZE__SHIFT 0x11
+#define S2A_DOORBELL_ENTRY_10_CTRL__S2A_DOORBELL_PORT10_64BIT_SUPPORT_DIS__SHIFT 0x19
+#define S2A_DOORBELL_ENTRY_10_CTRL__S2A_DOORBELL_PORT10_NEED_DEDUCT_RANGE_OFFSET__SHIFT 0x1a
+#define S2A_DOORBELL_ENTRY_10_CTRL__S2A_DOORBELL_PORT10_AWADDR_31_28_VALUE__SHIFT 0x1c
+#define S2A_DOORBELL_ENTRY_10_CTRL__S2A_DOORBELL_PORT10_ENABLE_MASK 0x00000001L
+#define S2A_DOORBELL_ENTRY_10_CTRL__S2A_DOORBELL_PORT10_AWID_MASK 0x0000003EL
+#define S2A_DOORBELL_ENTRY_10_CTRL__S2A_DOORBELL_PORT10_FENCE_ENABLE_MASK 0x00000040L
+#define S2A_DOORBELL_ENTRY_10_CTRL__S2A_DOORBELL_PORT10_RANGE_OFFSET_MASK 0x0001FF80L
+#define S2A_DOORBELL_ENTRY_10_CTRL__S2A_DOORBELL_PORT10_RANGE_SIZE_MASK 0x01FE0000L
+#define S2A_DOORBELL_ENTRY_10_CTRL__S2A_DOORBELL_PORT10_64BIT_SUPPORT_DIS_MASK 0x02000000L
+#define S2A_DOORBELL_ENTRY_10_CTRL__S2A_DOORBELL_PORT10_NEED_DEDUCT_RANGE_OFFSET_MASK 0x04000000L
+#define S2A_DOORBELL_ENTRY_10_CTRL__S2A_DOORBELL_PORT10_AWADDR_31_28_VALUE_MASK 0xF0000000L
+//S2A_DOORBELL_ENTRY_11_CTRL
+#define S2A_DOORBELL_ENTRY_11_CTRL__S2A_DOORBELL_PORT11_ENABLE__SHIFT 0x0
+#define S2A_DOORBELL_ENTRY_11_CTRL__S2A_DOORBELL_PORT11_AWID__SHIFT 0x1
+#define S2A_DOORBELL_ENTRY_11_CTRL__S2A_DOORBELL_PORT11_FENCE_ENABLE__SHIFT 0x6
+#define S2A_DOORBELL_ENTRY_11_CTRL__S2A_DOORBELL_PORT11_RANGE_OFFSET__SHIFT 0x7
+#define S2A_DOORBELL_ENTRY_11_CTRL__S2A_DOORBELL_PORT11_RANGE_SIZE__SHIFT 0x11
+#define S2A_DOORBELL_ENTRY_11_CTRL__S2A_DOORBELL_PORT11_64BIT_SUPPORT_DIS__SHIFT 0x19
+#define S2A_DOORBELL_ENTRY_11_CTRL__S2A_DOORBELL_PORT11_NEED_DEDUCT_RANGE_OFFSET__SHIFT 0x1a
+#define S2A_DOORBELL_ENTRY_11_CTRL__S2A_DOORBELL_PORT11_AWADDR_31_28_VALUE__SHIFT 0x1c
+#define S2A_DOORBELL_ENTRY_11_CTRL__S2A_DOORBELL_PORT11_ENABLE_MASK 0x00000001L
+#define S2A_DOORBELL_ENTRY_11_CTRL__S2A_DOORBELL_PORT11_AWID_MASK 0x0000003EL
+#define S2A_DOORBELL_ENTRY_11_CTRL__S2A_DOORBELL_PORT11_FENCE_ENABLE_MASK 0x00000040L
+#define S2A_DOORBELL_ENTRY_11_CTRL__S2A_DOORBELL_PORT11_RANGE_OFFSET_MASK 0x0001FF80L
+#define S2A_DOORBELL_ENTRY_11_CTRL__S2A_DOORBELL_PORT11_RANGE_SIZE_MASK 0x01FE0000L
+#define S2A_DOORBELL_ENTRY_11_CTRL__S2A_DOORBELL_PORT11_64BIT_SUPPORT_DIS_MASK 0x02000000L
+#define S2A_DOORBELL_ENTRY_11_CTRL__S2A_DOORBELL_PORT11_NEED_DEDUCT_RANGE_OFFSET_MASK 0x04000000L
+#define S2A_DOORBELL_ENTRY_11_CTRL__S2A_DOORBELL_PORT11_AWADDR_31_28_VALUE_MASK 0xF0000000L
+//S2A_DOORBELL_ENTRY_12_CTRL
+#define S2A_DOORBELL_ENTRY_12_CTRL__S2A_DOORBELL_PORT12_ENABLE__SHIFT 0x0
+#define S2A_DOORBELL_ENTRY_12_CTRL__S2A_DOORBELL_PORT12_AWID__SHIFT 0x1
+#define S2A_DOORBELL_ENTRY_12_CTRL__S2A_DOORBELL_PORT12_FENCE_ENABLE__SHIFT 0x6
+#define S2A_DOORBELL_ENTRY_12_CTRL__S2A_DOORBELL_PORT12_RANGE_OFFSET__SHIFT 0x7
+#define S2A_DOORBELL_ENTRY_12_CTRL__S2A_DOORBELL_PORT12_RANGE_SIZE__SHIFT 0x11
+#define S2A_DOORBELL_ENTRY_12_CTRL__S2A_DOORBELL_PORT12_64BIT_SUPPORT_DIS__SHIFT 0x19
+#define S2A_DOORBELL_ENTRY_12_CTRL__S2A_DOORBELL_PORT12_NEED_DEDUCT_RANGE_OFFSET__SHIFT 0x1a
+#define S2A_DOORBELL_ENTRY_12_CTRL__S2A_DOORBELL_PORT12_AWADDR_31_28_VALUE__SHIFT 0x1c
+#define S2A_DOORBELL_ENTRY_12_CTRL__S2A_DOORBELL_PORT12_ENABLE_MASK 0x00000001L
+#define S2A_DOORBELL_ENTRY_12_CTRL__S2A_DOORBELL_PORT12_AWID_MASK 0x0000003EL
+#define S2A_DOORBELL_ENTRY_12_CTRL__S2A_DOORBELL_PORT12_FENCE_ENABLE_MASK 0x00000040L
+#define S2A_DOORBELL_ENTRY_12_CTRL__S2A_DOORBELL_PORT12_RANGE_OFFSET_MASK 0x0001FF80L
+#define S2A_DOORBELL_ENTRY_12_CTRL__S2A_DOORBELL_PORT12_RANGE_SIZE_MASK 0x01FE0000L
+#define S2A_DOORBELL_ENTRY_12_CTRL__S2A_DOORBELL_PORT12_64BIT_SUPPORT_DIS_MASK 0x02000000L
+#define S2A_DOORBELL_ENTRY_12_CTRL__S2A_DOORBELL_PORT12_NEED_DEDUCT_RANGE_OFFSET_MASK 0x04000000L
+#define S2A_DOORBELL_ENTRY_12_CTRL__S2A_DOORBELL_PORT12_AWADDR_31_28_VALUE_MASK 0xF0000000L
+//S2A_DOORBELL_ENTRY_13_CTRL
+#define S2A_DOORBELL_ENTRY_13_CTRL__S2A_DOORBELL_PORT13_ENABLE__SHIFT 0x0
+#define S2A_DOORBELL_ENTRY_13_CTRL__S2A_DOORBELL_PORT13_AWID__SHIFT 0x1
+#define S2A_DOORBELL_ENTRY_13_CTRL__S2A_DOORBELL_PORT13_FENCE_ENABLE__SHIFT 0x6
+#define S2A_DOORBELL_ENTRY_13_CTRL__S2A_DOORBELL_PORT13_RANGE_OFFSET__SHIFT 0x7
+#define S2A_DOORBELL_ENTRY_13_CTRL__S2A_DOORBELL_PORT13_RANGE_SIZE__SHIFT 0x11
+#define S2A_DOORBELL_ENTRY_13_CTRL__S2A_DOORBELL_PORT13_64BIT_SUPPORT_DIS__SHIFT 0x19
+#define S2A_DOORBELL_ENTRY_13_CTRL__S2A_DOORBELL_PORT13_NEED_DEDUCT_RANGE_OFFSET__SHIFT 0x1a
+#define S2A_DOORBELL_ENTRY_13_CTRL__S2A_DOORBELL_PORT13_AWADDR_31_28_VALUE__SHIFT 0x1c
+#define S2A_DOORBELL_ENTRY_13_CTRL__S2A_DOORBELL_PORT13_ENABLE_MASK 0x00000001L
+#define S2A_DOORBELL_ENTRY_13_CTRL__S2A_DOORBELL_PORT13_AWID_MASK 0x0000003EL
+#define S2A_DOORBELL_ENTRY_13_CTRL__S2A_DOORBELL_PORT13_FENCE_ENABLE_MASK 0x00000040L
+#define S2A_DOORBELL_ENTRY_13_CTRL__S2A_DOORBELL_PORT13_RANGE_OFFSET_MASK 0x0001FF80L
+#define S2A_DOORBELL_ENTRY_13_CTRL__S2A_DOORBELL_PORT13_RANGE_SIZE_MASK 0x01FE0000L
+#define S2A_DOORBELL_ENTRY_13_CTRL__S2A_DOORBELL_PORT13_64BIT_SUPPORT_DIS_MASK 0x02000000L
+#define S2A_DOORBELL_ENTRY_13_CTRL__S2A_DOORBELL_PORT13_NEED_DEDUCT_RANGE_OFFSET_MASK 0x04000000L
+#define S2A_DOORBELL_ENTRY_13_CTRL__S2A_DOORBELL_PORT13_AWADDR_31_28_VALUE_MASK 0xF0000000L
+//S2A_DOORBELL_ENTRY_14_CTRL
+#define S2A_DOORBELL_ENTRY_14_CTRL__S2A_DOORBELL_PORT14_ENABLE__SHIFT 0x0
+#define S2A_DOORBELL_ENTRY_14_CTRL__S2A_DOORBELL_PORT14_AWID__SHIFT 0x1
+#define S2A_DOORBELL_ENTRY_14_CTRL__S2A_DOORBELL_PORT14_FENCE_ENABLE__SHIFT 0x6
+#define S2A_DOORBELL_ENTRY_14_CTRL__S2A_DOORBELL_PORT14_RANGE_OFFSET__SHIFT 0x7
+#define S2A_DOORBELL_ENTRY_14_CTRL__S2A_DOORBELL_PORT14_RANGE_SIZE__SHIFT 0x11
+#define S2A_DOORBELL_ENTRY_14_CTRL__S2A_DOORBELL_PORT14_64BIT_SUPPORT_DIS__SHIFT 0x19
+#define S2A_DOORBELL_ENTRY_14_CTRL__S2A_DOORBELL_PORT14_NEED_DEDUCT_RANGE_OFFSET__SHIFT 0x1a
+#define S2A_DOORBELL_ENTRY_14_CTRL__S2A_DOORBELL_PORT14_AWADDR_31_28_VALUE__SHIFT 0x1c
+#define S2A_DOORBELL_ENTRY_14_CTRL__S2A_DOORBELL_PORT14_ENABLE_MASK 0x00000001L
+#define S2A_DOORBELL_ENTRY_14_CTRL__S2A_DOORBELL_PORT14_AWID_MASK 0x0000003EL
+#define S2A_DOORBELL_ENTRY_14_CTRL__S2A_DOORBELL_PORT14_FENCE_ENABLE_MASK 0x00000040L
+#define S2A_DOORBELL_ENTRY_14_CTRL__S2A_DOORBELL_PORT14_RANGE_OFFSET_MASK 0x0001FF80L
+#define S2A_DOORBELL_ENTRY_14_CTRL__S2A_DOORBELL_PORT14_RANGE_SIZE_MASK 0x01FE0000L
+#define S2A_DOORBELL_ENTRY_14_CTRL__S2A_DOORBELL_PORT14_64BIT_SUPPORT_DIS_MASK 0x02000000L
+#define S2A_DOORBELL_ENTRY_14_CTRL__S2A_DOORBELL_PORT14_NEED_DEDUCT_RANGE_OFFSET_MASK 0x04000000L
+#define S2A_DOORBELL_ENTRY_14_CTRL__S2A_DOORBELL_PORT14_AWADDR_31_28_VALUE_MASK 0xF0000000L
+//S2A_DOORBELL_ENTRY_15_CTRL
+#define S2A_DOORBELL_ENTRY_15_CTRL__S2A_DOORBELL_PORT15_ENABLE__SHIFT 0x0
+#define S2A_DOORBELL_ENTRY_15_CTRL__S2A_DOORBELL_PORT15_AWID__SHIFT 0x1
+#define S2A_DOORBELL_ENTRY_15_CTRL__S2A_DOORBELL_PORT15_FENCE_ENABLE__SHIFT 0x6
+#define S2A_DOORBELL_ENTRY_15_CTRL__S2A_DOORBELL_PORT15_RANGE_OFFSET__SHIFT 0x7
+#define S2A_DOORBELL_ENTRY_15_CTRL__S2A_DOORBELL_PORT15_RANGE_SIZE__SHIFT 0x11
+#define S2A_DOORBELL_ENTRY_15_CTRL__S2A_DOORBELL_PORT15_64BIT_SUPPORT_DIS__SHIFT 0x19
+#define S2A_DOORBELL_ENTRY_15_CTRL__S2A_DOORBELL_PORT15_NEED_DEDUCT_RANGE_OFFSET__SHIFT 0x1a
+#define S2A_DOORBELL_ENTRY_15_CTRL__S2A_DOORBELL_PORT15_AWADDR_31_28_VALUE__SHIFT 0x1c
+#define S2A_DOORBELL_ENTRY_15_CTRL__S2A_DOORBELL_PORT15_ENABLE_MASK 0x00000001L
+#define S2A_DOORBELL_ENTRY_15_CTRL__S2A_DOORBELL_PORT15_AWID_MASK 0x0000003EL
+#define S2A_DOORBELL_ENTRY_15_CTRL__S2A_DOORBELL_PORT15_FENCE_ENABLE_MASK 0x00000040L
+#define S2A_DOORBELL_ENTRY_15_CTRL__S2A_DOORBELL_PORT15_RANGE_OFFSET_MASK 0x0001FF80L
+#define S2A_DOORBELL_ENTRY_15_CTRL__S2A_DOORBELL_PORT15_RANGE_SIZE_MASK 0x01FE0000L
+#define S2A_DOORBELL_ENTRY_15_CTRL__S2A_DOORBELL_PORT15_64BIT_SUPPORT_DIS_MASK 0x02000000L
+#define S2A_DOORBELL_ENTRY_15_CTRL__S2A_DOORBELL_PORT15_NEED_DEDUCT_RANGE_OFFSET_MASK 0x04000000L
+#define S2A_DOORBELL_ENTRY_15_CTRL__S2A_DOORBELL_PORT15_AWADDR_31_28_VALUE_MASK 0xF0000000L
+//S2A_DOORBELL_COMMON_CTRL_REG
+#define S2A_DOORBELL_COMMON_CTRL_REG__S2A_DOORBELL_FENCE_ONCE_TRIGGER_DIS__SHIFT 0x0
+#define S2A_DOORBELL_COMMON_CTRL_REG__S2A_DOORBELL_FENCE_ONCE_TRIGGER_DIS_MASK 0x00000001L
+
+
+// addressBlock: aid_nbio_nbif0_gdc_GDCDEC
+//GDC1_A2S_CNTL_CL0
+#define GDC1_A2S_CNTL_CL0__NSNOOP_MAP__SHIFT 0x0
+#define GDC1_A2S_CNTL_CL0__REQPASSPW_VC0_MAP__SHIFT 0x2
+#define GDC1_A2S_CNTL_CL0__REQPASSPW_NVC0_MAP__SHIFT 0x4
+#define GDC1_A2S_CNTL_CL0__REQRSPPASSPW_VC0_MAP__SHIFT 0x6
+#define GDC1_A2S_CNTL_CL0__REQRSPPASSPW_NVC0_MAP__SHIFT 0x8
+#define GDC1_A2S_CNTL_CL0__BLKLVL_MAP__SHIFT 0xa
+#define GDC1_A2S_CNTL_CL0__DATERR_MAP__SHIFT 0xc
+#define GDC1_A2S_CNTL_CL0__EXOKAY_WR_MAP__SHIFT 0xe
+#define GDC1_A2S_CNTL_CL0__EXOKAY_RD_MAP__SHIFT 0x10
+#define GDC1_A2S_CNTL_CL0__RESP_WR_MAP__SHIFT 0x12
+#define GDC1_A2S_CNTL_CL0__RESP_RD_MAP__SHIFT 0x14
+#define GDC1_A2S_CNTL_CL0__RDRSP_ERRMAP__SHIFT 0x16
+#define GDC1_A2S_CNTL_CL0__RDRSP_SEL_MODE__SHIFT 0x18
+#define GDC1_A2S_CNTL_CL0__STATIC_VC_ENABLE__SHIFT 0x1b
+#define GDC1_A2S_CNTL_CL0__STATIC_VC_VALUE__SHIFT 0x1c
+#define GDC1_A2S_CNTL_CL0__NSNOOP_MAP_MASK 0x00000003L
+#define GDC1_A2S_CNTL_CL0__REQPASSPW_VC0_MAP_MASK 0x0000000CL
+#define GDC1_A2S_CNTL_CL0__REQPASSPW_NVC0_MAP_MASK 0x00000030L
+#define GDC1_A2S_CNTL_CL0__REQRSPPASSPW_VC0_MAP_MASK 0x000000C0L
+#define GDC1_A2S_CNTL_CL0__REQRSPPASSPW_NVC0_MAP_MASK 0x00000300L
+#define GDC1_A2S_CNTL_CL0__BLKLVL_MAP_MASK 0x00000C00L
+#define GDC1_A2S_CNTL_CL0__DATERR_MAP_MASK 0x00003000L
+#define GDC1_A2S_CNTL_CL0__EXOKAY_WR_MAP_MASK 0x0000C000L
+#define GDC1_A2S_CNTL_CL0__EXOKAY_RD_MAP_MASK 0x00030000L
+#define GDC1_A2S_CNTL_CL0__RESP_WR_MAP_MASK 0x000C0000L
+#define GDC1_A2S_CNTL_CL0__RESP_RD_MAP_MASK 0x00300000L
+#define GDC1_A2S_CNTL_CL0__RDRSP_ERRMAP_MASK 0x00C00000L
+#define GDC1_A2S_CNTL_CL0__RDRSP_SEL_MODE_MASK 0x07000000L
+#define GDC1_A2S_CNTL_CL0__STATIC_VC_ENABLE_MASK 0x08000000L
+#define GDC1_A2S_CNTL_CL0__STATIC_VC_VALUE_MASK 0x70000000L
+//GDC1_A2S_CNTL_CL1
+#define GDC1_A2S_CNTL_CL1__NSNOOP_MAP__SHIFT 0x0
+#define GDC1_A2S_CNTL_CL1__REQPASSPW_VC0_MAP__SHIFT 0x2
+#define GDC1_A2S_CNTL_CL1__REQPASSPW_NVC0_MAP__SHIFT 0x4
+#define GDC1_A2S_CNTL_CL1__REQRSPPASSPW_VC0_MAP__SHIFT 0x6
+#define GDC1_A2S_CNTL_CL1__REQRSPPASSPW_NVC0_MAP__SHIFT 0x8
+#define GDC1_A2S_CNTL_CL1__BLKLVL_MAP__SHIFT 0xa
+#define GDC1_A2S_CNTL_CL1__DATERR_MAP__SHIFT 0xc
+#define GDC1_A2S_CNTL_CL1__EXOKAY_WR_MAP__SHIFT 0xe
+#define GDC1_A2S_CNTL_CL1__EXOKAY_RD_MAP__SHIFT 0x10
+#define GDC1_A2S_CNTL_CL1__RESP_WR_MAP__SHIFT 0x12
+#define GDC1_A2S_CNTL_CL1__RESP_RD_MAP__SHIFT 0x14
+#define GDC1_A2S_CNTL_CL1__RDRSP_ERRMAP__SHIFT 0x16
+#define GDC1_A2S_CNTL_CL1__RDRSP_SEL_MODE__SHIFT 0x18
+#define GDC1_A2S_CNTL_CL1__STATIC_VC_ENABLE__SHIFT 0x1b
+#define GDC1_A2S_CNTL_CL1__STATIC_VC_VALUE__SHIFT 0x1c
+#define GDC1_A2S_CNTL_CL1__NSNOOP_MAP_MASK 0x00000003L
+#define GDC1_A2S_CNTL_CL1__REQPASSPW_VC0_MAP_MASK 0x0000000CL
+#define GDC1_A2S_CNTL_CL1__REQPASSPW_NVC0_MAP_MASK 0x00000030L
+#define GDC1_A2S_CNTL_CL1__REQRSPPASSPW_VC0_MAP_MASK 0x000000C0L
+#define GDC1_A2S_CNTL_CL1__REQRSPPASSPW_NVC0_MAP_MASK 0x00000300L
+#define GDC1_A2S_CNTL_CL1__BLKLVL_MAP_MASK 0x00000C00L
+#define GDC1_A2S_CNTL_CL1__DATERR_MAP_MASK 0x00003000L
+#define GDC1_A2S_CNTL_CL1__EXOKAY_WR_MAP_MASK 0x0000C000L
+#define GDC1_A2S_CNTL_CL1__EXOKAY_RD_MAP_MASK 0x00030000L
+#define GDC1_A2S_CNTL_CL1__RESP_WR_MAP_MASK 0x000C0000L
+#define GDC1_A2S_CNTL_CL1__RESP_RD_MAP_MASK 0x00300000L
+#define GDC1_A2S_CNTL_CL1__RDRSP_ERRMAP_MASK 0x00C00000L
+#define GDC1_A2S_CNTL_CL1__RDRSP_SEL_MODE_MASK 0x07000000L
+#define GDC1_A2S_CNTL_CL1__STATIC_VC_ENABLE_MASK 0x08000000L
+#define GDC1_A2S_CNTL_CL1__STATIC_VC_VALUE_MASK 0x70000000L
+//GDC1_A2S_CNTL3_CL0
+#define GDC1_A2S_CNTL3_CL0__FORCE_WR_PH__SHIFT 0x0
+#define GDC1_A2S_CNTL3_CL0__FORCE_WR_STEERING__SHIFT 0x2
+#define GDC1_A2S_CNTL3_CL0__WR_ST_TAG_MODE__SHIFT 0x3
+#define GDC1_A2S_CNTL3_CL0__FORCE_WR_ST_ENTRY__SHIFT 0x4
+#define GDC1_A2S_CNTL3_CL0__FORCE_WR_PH_MASK 0x00000003L
+#define GDC1_A2S_CNTL3_CL0__FORCE_WR_STEERING_MASK 0x00000004L
+#define GDC1_A2S_CNTL3_CL0__WR_ST_TAG_MODE_MASK 0x00000008L
+#define GDC1_A2S_CNTL3_CL0__FORCE_WR_ST_ENTRY_MASK 0x000003F0L
+//GDC1_A2S_CNTL3_CL1
+#define GDC1_A2S_CNTL3_CL1__FORCE_WR_PH__SHIFT 0x0
+#define GDC1_A2S_CNTL3_CL1__FORCE_WR_STEERING__SHIFT 0x2
+#define GDC1_A2S_CNTL3_CL1__WR_ST_TAG_MODE__SHIFT 0x3
+#define GDC1_A2S_CNTL3_CL1__FORCE_WR_ST_ENTRY__SHIFT 0x4
+#define GDC1_A2S_CNTL3_CL1__FORCE_WR_PH_MASK 0x00000003L
+#define GDC1_A2S_CNTL3_CL1__FORCE_WR_STEERING_MASK 0x00000004L
+#define GDC1_A2S_CNTL3_CL1__WR_ST_TAG_MODE_MASK 0x00000008L
+#define GDC1_A2S_CNTL3_CL1__FORCE_WR_ST_ENTRY_MASK 0x000003F0L
+//GDC1_A2S_CNTL_SW0
+#define GDC1_A2S_CNTL_SW0__STATIC_VC_ENABLE__SHIFT 0x0
+#define GDC1_A2S_CNTL_SW0__STATIC_VC_VALUE__SHIFT 0x1
+#define GDC1_A2S_CNTL_SW0__FORCE_RSP_REORDER_EN__SHIFT 0x6
+#define GDC1_A2S_CNTL_SW0__SDP_WR_CHAIN_DIS__SHIFT 0x9
+#define GDC1_A2S_CNTL_SW0__WR_TAG_FOR_CHAIN_ENABLE__SHIFT 0xa
+#define GDC1_A2S_CNTL_SW0__WR_TAG_FOR_NONCHAIN_ENABLE__SHIFT 0xb
+#define GDC1_A2S_CNTL_SW0__SDP_DYNAMIC_VC_WR_CHAIN_DIS__SHIFT 0xc
+#define GDC1_A2S_CNTL_SW0__WRR_RD_WEIGHT__SHIFT 0x10
+#define GDC1_A2S_CNTL_SW0__WRR_WR_WEIGHT__SHIFT 0x18
+#define GDC1_A2S_CNTL_SW0__STATIC_VC_ENABLE_MASK 0x00000001L
+#define GDC1_A2S_CNTL_SW0__STATIC_VC_VALUE_MASK 0x0000000EL
+#define GDC1_A2S_CNTL_SW0__FORCE_RSP_REORDER_EN_MASK 0x00000040L
+#define GDC1_A2S_CNTL_SW0__SDP_WR_CHAIN_DIS_MASK 0x00000200L
+#define GDC1_A2S_CNTL_SW0__WR_TAG_FOR_CHAIN_ENABLE_MASK 0x00000400L
+#define GDC1_A2S_CNTL_SW0__WR_TAG_FOR_NONCHAIN_ENABLE_MASK 0x00000800L
+#define GDC1_A2S_CNTL_SW0__SDP_DYNAMIC_VC_WR_CHAIN_DIS_MASK 0x00001000L
+#define GDC1_A2S_CNTL_SW0__WRR_RD_WEIGHT_MASK 0x00FF0000L
+#define GDC1_A2S_CNTL_SW0__WRR_WR_WEIGHT_MASK 0xFF000000L
+//GDC1_A2S_CNTL_SW1
+#define GDC1_A2S_CNTL_SW1__STATIC_VC_ENABLE__SHIFT 0x0
+#define GDC1_A2S_CNTL_SW1__STATIC_VC_VALUE__SHIFT 0x1
+#define GDC1_A2S_CNTL_SW1__FORCE_RSP_REORDER_EN__SHIFT 0x6
+#define GDC1_A2S_CNTL_SW1__SDP_WR_CHAIN_DIS__SHIFT 0x9
+#define GDC1_A2S_CNTL_SW1__WR_TAG_FOR_CHAIN_ENABLE__SHIFT 0xa
+#define GDC1_A2S_CNTL_SW1__WR_TAG_FOR_NONCHAIN_ENABLE__SHIFT 0xb
+#define GDC1_A2S_CNTL_SW1__SDP_DYNAMIC_VC_WR_CHAIN_DIS__SHIFT 0xc
+#define GDC1_A2S_CNTL_SW1__WRR_RD_WEIGHT__SHIFT 0x10
+#define GDC1_A2S_CNTL_SW1__WRR_WR_WEIGHT__SHIFT 0x18
+#define GDC1_A2S_CNTL_SW1__STATIC_VC_ENABLE_MASK 0x00000001L
+#define GDC1_A2S_CNTL_SW1__STATIC_VC_VALUE_MASK 0x0000000EL
+#define GDC1_A2S_CNTL_SW1__FORCE_RSP_REORDER_EN_MASK 0x00000040L
+#define GDC1_A2S_CNTL_SW1__SDP_WR_CHAIN_DIS_MASK 0x00000200L
+#define GDC1_A2S_CNTL_SW1__WR_TAG_FOR_CHAIN_ENABLE_MASK 0x00000400L
+#define GDC1_A2S_CNTL_SW1__WR_TAG_FOR_NONCHAIN_ENABLE_MASK 0x00000800L
+#define GDC1_A2S_CNTL_SW1__SDP_DYNAMIC_VC_WR_CHAIN_DIS_MASK 0x00001000L
+#define GDC1_A2S_CNTL_SW1__WRR_RD_WEIGHT_MASK 0x00FF0000L
+#define GDC1_A2S_CNTL_SW1__WRR_WR_WEIGHT_MASK 0xFF000000L
+//GDC1_A2S_CNTL_SW2
+#define GDC1_A2S_CNTL_SW2__STATIC_VC_ENABLE__SHIFT 0x0
+#define GDC1_A2S_CNTL_SW2__STATIC_VC_VALUE__SHIFT 0x1
+#define GDC1_A2S_CNTL_SW2__FORCE_RSP_REORDER_EN__SHIFT 0x6
+#define GDC1_A2S_CNTL_SW2__SDP_WR_CHAIN_DIS__SHIFT 0x9
+#define GDC1_A2S_CNTL_SW2__WR_TAG_FOR_CHAIN_ENABLE__SHIFT 0xa
+#define GDC1_A2S_CNTL_SW2__WR_TAG_FOR_NONCHAIN_ENABLE__SHIFT 0xb
+#define GDC1_A2S_CNTL_SW2__SDP_DYNAMIC_VC_WR_CHAIN_DIS__SHIFT 0xc
+#define GDC1_A2S_CNTL_SW2__WRR_RD_WEIGHT__SHIFT 0x10
+#define GDC1_A2S_CNTL_SW2__WRR_WR_WEIGHT__SHIFT 0x18
+#define GDC1_A2S_CNTL_SW2__STATIC_VC_ENABLE_MASK 0x00000001L
+#define GDC1_A2S_CNTL_SW2__STATIC_VC_VALUE_MASK 0x0000000EL
+#define GDC1_A2S_CNTL_SW2__FORCE_RSP_REORDER_EN_MASK 0x00000040L
+#define GDC1_A2S_CNTL_SW2__SDP_WR_CHAIN_DIS_MASK 0x00000200L
+#define GDC1_A2S_CNTL_SW2__WR_TAG_FOR_CHAIN_ENABLE_MASK 0x00000400L
+#define GDC1_A2S_CNTL_SW2__WR_TAG_FOR_NONCHAIN_ENABLE_MASK 0x00000800L
+#define GDC1_A2S_CNTL_SW2__SDP_DYNAMIC_VC_WR_CHAIN_DIS_MASK 0x00001000L
+#define GDC1_A2S_CNTL_SW2__WRR_RD_WEIGHT_MASK 0x00FF0000L
+#define GDC1_A2S_CNTL_SW2__WRR_WR_WEIGHT_MASK 0xFF000000L
+//GDC1_A2S_TAG_ALLOC_0
+#define GDC1_A2S_TAG_ALLOC_0__TAG_ALLOC_FOR_VC0_WR__SHIFT 0x0
+#define GDC1_A2S_TAG_ALLOC_0__TAG_ALLOC_FOR_VC0_RD__SHIFT 0x8
+#define GDC1_A2S_TAG_ALLOC_0__TAG_ALLOC_FOR_VC1_WR__SHIFT 0x10
+#define GDC1_A2S_TAG_ALLOC_0__TAG_ALLOC_FOR_VC0_WR_MASK 0x000000FFL
+#define GDC1_A2S_TAG_ALLOC_0__TAG_ALLOC_FOR_VC0_RD_MASK 0x0000FF00L
+#define GDC1_A2S_TAG_ALLOC_0__TAG_ALLOC_FOR_VC1_WR_MASK 0x00FF0000L
+//GDC1_A2S_TAG_ALLOC_1
+#define GDC1_A2S_TAG_ALLOC_1__TAG_ALLOC_FOR_VC3_WR__SHIFT 0x0
+#define GDC1_A2S_TAG_ALLOC_1__TAG_ALLOC_FOR_VC7_WR__SHIFT 0x10
+#define GDC1_A2S_TAG_ALLOC_1__TAG_ALLOC_FOR_VC7_RD__SHIFT 0x18
+#define GDC1_A2S_TAG_ALLOC_1__TAG_ALLOC_FOR_VC3_WR_MASK 0x000000FFL
+#define GDC1_A2S_TAG_ALLOC_1__TAG_ALLOC_FOR_VC7_WR_MASK 0x00FF0000L
+#define GDC1_A2S_TAG_ALLOC_1__TAG_ALLOC_FOR_VC7_RD_MASK 0xFF000000L
+//GDC1_A2S_MISC_CNTL
+#define GDC1_A2S_MISC_CNTL__BLKLVL_FOR_MSG__SHIFT 0x0
+#define GDC1_A2S_MISC_CNTL__RESERVE_2_CRED_FOR_NPWR_REQ_DIS__SHIFT 0x2
+#define GDC1_A2S_MISC_CNTL__WRR_LRG_SIZE_MODE__SHIFT 0x3
+#define GDC1_A2S_MISC_CNTL__FORCE_RSP_REORDER_EN__SHIFT 0x4
+#define GDC1_A2S_MISC_CNTL__RSP_REORDER_DIS__SHIFT 0x5
+#define GDC1_A2S_MISC_CNTL__WRRSP_ACCUM_SEL__SHIFT 0x6
+#define GDC1_A2S_MISC_CNTL__WRRSP_TAGFIFO_CONT_RD_DIS__SHIFT 0x7
+#define GDC1_A2S_MISC_CNTL__RDRSP_TAGFIFO_CONT_RD_DIS__SHIFT 0x8
+#define GDC1_A2S_MISC_CNTL__RDRSP_STS_DATSTS_PRIORITY__SHIFT 0x9
+#define GDC1_A2S_MISC_CNTL__INSERT_RD_ON_2ND_WDAT_EN__SHIFT 0xa
+#define GDC1_A2S_MISC_CNTL__WR_TAG_SET_MIN__SHIFT 0x10
+#define GDC1_A2S_MISC_CNTL__RD_TAG_SET_MIN__SHIFT 0x15
+#define GDC1_A2S_MISC_CNTL__WRR_LRG_MODE__SHIFT 0x1a
+#define GDC1_A2S_MISC_CNTL__WRR_LRG_COUNTER_MODE__SHIFT 0x1b
+#define GDC1_A2S_MISC_CNTL__BLKLVL_FOR_MSG_MASK 0x00000003L
+#define GDC1_A2S_MISC_CNTL__RESERVE_2_CRED_FOR_NPWR_REQ_DIS_MASK 0x00000004L
+#define GDC1_A2S_MISC_CNTL__WRR_LRG_SIZE_MODE_MASK 0x00000008L
+#define GDC1_A2S_MISC_CNTL__FORCE_RSP_REORDER_EN_MASK 0x00000010L
+#define GDC1_A2S_MISC_CNTL__RSP_REORDER_DIS_MASK 0x00000020L
+#define GDC1_A2S_MISC_CNTL__WRRSP_ACCUM_SEL_MASK 0x00000040L
+#define GDC1_A2S_MISC_CNTL__WRRSP_TAGFIFO_CONT_RD_DIS_MASK 0x00000080L
+#define GDC1_A2S_MISC_CNTL__RDRSP_TAGFIFO_CONT_RD_DIS_MASK 0x00000100L
+#define GDC1_A2S_MISC_CNTL__RDRSP_STS_DATSTS_PRIORITY_MASK 0x00000200L
+#define GDC1_A2S_MISC_CNTL__INSERT_RD_ON_2ND_WDAT_EN_MASK 0x00000400L
+#define GDC1_A2S_MISC_CNTL__WR_TAG_SET_MIN_MASK 0x001F0000L
+#define GDC1_A2S_MISC_CNTL__RD_TAG_SET_MIN_MASK 0x03E00000L
+#define GDC1_A2S_MISC_CNTL__WRR_LRG_MODE_MASK 0x04000000L
+#define GDC1_A2S_MISC_CNTL__WRR_LRG_COUNTER_MODE_MASK 0x08000000L
+//GDC1_SHUB_REGS_IF_CTL
+#define GDC1_SHUB_REGS_IF_CTL__SHUB_REGS_DROP_NONPF_MMREGREQ_SETERR_DIS__SHIFT 0x0
+#define GDC1_SHUB_REGS_IF_CTL__SHUB_REGS_VF_PROTECTION_DIS__SHIFT 0x1
+#define GDC1_SHUB_REGS_IF_CTL__SHUB_REGS_DROP_NONPF_MMREGREQ_SETERR_DIS_MASK 0x00000001L
+#define GDC1_SHUB_REGS_IF_CTL__SHUB_REGS_VF_PROTECTION_DIS_MASK 0x00000002L
+//GDC1_NGDC_MGCG_CTRL
+#define GDC1_NGDC_MGCG_CTRL__NGDC_MGCG_EN__SHIFT 0x0
+#define GDC1_NGDC_MGCG_CTRL__NGDC_MGCG_MODE__SHIFT 0x1
+#define GDC1_NGDC_MGCG_CTRL__NGDC_MGCG_HYSTERESIS__SHIFT 0x2
+#define GDC1_NGDC_MGCG_CTRL__NGDC_MGCG_HST_DIS__SHIFT 0xa
+#define GDC1_NGDC_MGCG_CTRL__NGDC_MGCG_DMA_DIS__SHIFT 0xb
+#define GDC1_NGDC_MGCG_CTRL__NGDC_MGCG_REG_DIS__SHIFT 0xc
+#define GDC1_NGDC_MGCG_CTRL__NGDC_MGCG_AER_DIS__SHIFT 0xd
+#define GDC1_NGDC_MGCG_CTRL__NGDC_SRAM_FGCG_EN__SHIFT 0xe
+#define GDC1_NGDC_MGCG_CTRL__NGDC_MGCG_EN_MASK 0x00000001L
+#define GDC1_NGDC_MGCG_CTRL__NGDC_MGCG_MODE_MASK 0x00000002L
+#define GDC1_NGDC_MGCG_CTRL__NGDC_MGCG_HYSTERESIS_MASK 0x000003FCL
+#define GDC1_NGDC_MGCG_CTRL__NGDC_MGCG_HST_DIS_MASK 0x00000400L
+#define GDC1_NGDC_MGCG_CTRL__NGDC_MGCG_DMA_DIS_MASK 0x00000800L
+#define GDC1_NGDC_MGCG_CTRL__NGDC_MGCG_REG_DIS_MASK 0x00001000L
+#define GDC1_NGDC_MGCG_CTRL__NGDC_MGCG_AER_DIS_MASK 0x00002000L
+#define GDC1_NGDC_MGCG_CTRL__NGDC_SRAM_FGCG_EN_MASK 0x00004000L
+//GDC1_NGDC_RESERVED_0
+#define GDC1_NGDC_RESERVED_0__RESERVED__SHIFT 0x0
+#define GDC1_NGDC_RESERVED_0__RESERVED_MASK 0xFFFFFFFFL
+//GDC1_NGDC_RESERVED_1
+#define GDC1_NGDC_RESERVED_1__RESERVED__SHIFT 0x0
+#define GDC1_NGDC_RESERVED_1__RESERVED_MASK 0xFFFFFFFFL
+//GDC1_NBIF_GFX_DOORBELL_STATUS
+#define GDC1_NBIF_GFX_DOORBELL_STATUS__NBIF_GFX_DOORBELL_SENT__SHIFT 0x0
+#define GDC1_NBIF_GFX_DOORBELL_STATUS__NBIF_GFX_DOORBELL_SENT_MASK 0x0000FFFFL
+//GDC1_ATDMA_MISC_CNTL
+#define GDC1_ATDMA_MISC_CNTL__WRR_ARB_MODE__SHIFT 0x0
+#define GDC1_ATDMA_MISC_CNTL__INSERT_RD_ON_2ND_WDAT_EN__SHIFT 0x1
+#define GDC1_ATDMA_MISC_CNTL__RDRSP_ARB_MODE__SHIFT 0x2
+#define GDC1_ATDMA_MISC_CNTL__WRR_VC6_WEIGHT__SHIFT 0x8
+#define GDC1_ATDMA_MISC_CNTL__WRR_VC0_WEIGHT__SHIFT 0x10
+#define GDC1_ATDMA_MISC_CNTL__WRR_VC1_WEIGHT__SHIFT 0x18
+#define GDC1_ATDMA_MISC_CNTL__WRR_ARB_MODE_MASK 0x00000001L
+#define GDC1_ATDMA_MISC_CNTL__INSERT_RD_ON_2ND_WDAT_EN_MASK 0x00000002L
+#define GDC1_ATDMA_MISC_CNTL__RDRSP_ARB_MODE_MASK 0x0000000CL
+#define GDC1_ATDMA_MISC_CNTL__WRR_VC6_WEIGHT_MASK 0x0000FF00L
+#define GDC1_ATDMA_MISC_CNTL__WRR_VC0_WEIGHT_MASK 0x00FF0000L
+#define GDC1_ATDMA_MISC_CNTL__WRR_VC1_WEIGHT_MASK 0xFF000000L
+//GDC1_S2A_MISC_CNTL
+#define GDC1_S2A_MISC_CNTL__AXI_HST_CPL_EP_DIS__SHIFT 0x3
+#define GDC1_S2A_MISC_CNTL__ATM_ARB_MODE__SHIFT 0x8
+#define GDC1_S2A_MISC_CNTL__RB_ARB_MODE__SHIFT 0xa
+#define GDC1_S2A_MISC_CNTL__HSTR_ARB_MODE__SHIFT 0xc
+#define GDC1_S2A_MISC_CNTL__HDP_PERF_ENH_DIS__SHIFT 0xf
+#define GDC1_S2A_MISC_CNTL__WRSP_ARB_MODE__SHIFT 0x10
+#define GDC1_S2A_MISC_CNTL__AXI_HST_CPL_EP_DIS_MASK 0x00000008L
+#define GDC1_S2A_MISC_CNTL__ATM_ARB_MODE_MASK 0x00000300L
+#define GDC1_S2A_MISC_CNTL__RB_ARB_MODE_MASK 0x00000C00L
+#define GDC1_S2A_MISC_CNTL__HSTR_ARB_MODE_MASK 0x00003000L
+#define GDC1_S2A_MISC_CNTL__HDP_PERF_ENH_DIS_MASK 0x00008000L
+#define GDC1_S2A_MISC_CNTL__WRSP_ARB_MODE_MASK 0x000F0000L
+//GDC1_NGDC_EARLY_WAKEUP_CTRL
+#define GDC1_NGDC_EARLY_WAKEUP_CTRL__NGDC_EARLY_WAKEUP_BY_CLIENT_ACTIVE__SHIFT 0x0
+#define GDC1_NGDC_EARLY_WAKEUP_CTRL__NGDC_EARLY_WAKEUP_BY_CLIENT_DS_EXIT__SHIFT 0x1
+#define GDC1_NGDC_EARLY_WAKEUP_CTRL__NGDC_EARLY_WAKEUP_ALLOW_AER_ACTIVE__SHIFT 0x2
+#define GDC1_NGDC_EARLY_WAKEUP_CTRL__NGDC_EARLY_WAKEUP_BY_CLIENT_ACTIVE_MASK 0x00000001L
+#define GDC1_NGDC_EARLY_WAKEUP_CTRL__NGDC_EARLY_WAKEUP_BY_CLIENT_DS_EXIT_MASK 0x00000002L
+#define GDC1_NGDC_EARLY_WAKEUP_CTRL__NGDC_EARLY_WAKEUP_ALLOW_AER_ACTIVE_MASK 0x00000004L
+//GDC1_NGDC_PG_MISC_CTRL
+#define GDC1_NGDC_PG_MISC_CTRL__NGDC_PG_ENDP_D3_ONLY__SHIFT 0xa
+#define GDC1_NGDC_PG_MISC_CTRL__NGDC_PG_CLK_PERM1__SHIFT 0xd
+#define GDC1_NGDC_PG_MISC_CTRL__NGDC_PG_DS_ALLOW_DIS__SHIFT 0xe
+#define GDC1_NGDC_PG_MISC_CTRL__NGDC_PG_CLK_PERM2__SHIFT 0x10
+#define GDC1_NGDC_PG_MISC_CTRL__NGDC_CFG_REFCLK_CYCLE_FOR_200NS__SHIFT 0x18
+#define GDC1_NGDC_PG_MISC_CTRL__NGDC_CFG_PG_EXIT_OVERRIDE__SHIFT 0x1f
+#define GDC1_NGDC_PG_MISC_CTRL__NGDC_PG_ENDP_D3_ONLY_MASK 0x00000400L
+#define GDC1_NGDC_PG_MISC_CTRL__NGDC_PG_CLK_PERM1_MASK 0x00002000L
+#define GDC1_NGDC_PG_MISC_CTRL__NGDC_PG_DS_ALLOW_DIS_MASK 0x00004000L
+#define GDC1_NGDC_PG_MISC_CTRL__NGDC_PG_CLK_PERM2_MASK 0x00010000L
+#define GDC1_NGDC_PG_MISC_CTRL__NGDC_CFG_REFCLK_CYCLE_FOR_200NS_MASK 0x3F000000L
+#define GDC1_NGDC_PG_MISC_CTRL__NGDC_CFG_PG_EXIT_OVERRIDE_MASK 0x80000000L
+//GDC1_NGDC_PGMST_CTRL
+#define GDC1_NGDC_PGMST_CTRL__NGDC_CFG_PG_HYSTERESIS__SHIFT 0x0
+#define GDC1_NGDC_PGMST_CTRL__NGDC_CFG_PG_EN__SHIFT 0x8
+#define GDC1_NGDC_PGMST_CTRL__NGDC_CFG_IDLENESS_COUNT_EN__SHIFT 0xa
+#define GDC1_NGDC_PGMST_CTRL__NGDC_CFG_FW_PG_EXIT_EN__SHIFT 0xe
+#define GDC1_NGDC_PGMST_CTRL__NGDC_CFG_PG_HYSTERESIS_MASK 0x000000FFL
+#define GDC1_NGDC_PGMST_CTRL__NGDC_CFG_PG_EN_MASK 0x00000100L
+#define GDC1_NGDC_PGMST_CTRL__NGDC_CFG_IDLENESS_COUNT_EN_MASK 0x00003C00L
+#define GDC1_NGDC_PGMST_CTRL__NGDC_CFG_FW_PG_EXIT_EN_MASK 0x0000C000L
+//GDC1_NGDC_PGSLV_CTRL
+#define GDC1_NGDC_PGSLV_CTRL__NGDC_CFG_SHUBCLK_0_IDLE_HYSTERESIS__SHIFT 0x0
+#define GDC1_NGDC_PGSLV_CTRL__NGDC_CFG_SHUBCLK_1_IDLE_HYSTERESIS__SHIFT 0x5
+#define GDC1_NGDC_PGSLV_CTRL__NGDC_CFG_GDCCLK_IDLE_HYSTERESIS__SHIFT 0xa
+#define GDC1_NGDC_PGSLV_CTRL__NGDC_CFG_SHUBCLK_0_IDLE_HYSTERESIS_MASK 0x0000001FL
+#define GDC1_NGDC_PGSLV_CTRL__NGDC_CFG_SHUBCLK_1_IDLE_HYSTERESIS_MASK 0x000003E0L
+#define GDC1_NGDC_PGSLV_CTRL__NGDC_CFG_GDCCLK_IDLE_HYSTERESIS_MASK 0x00007C00L
+
+
+// addressBlock: aid_nbio_nbif0_gdc_sec_GDCSEC_DEC
+//XCC_DOORBELL_FENCE
+#define XCC_DOORBELL_FENCE__XCC_0_DOORBELL_FENCE__SHIFT 0x0
+#define XCC_DOORBELL_FENCE__XCC_1_DOORBELL_FENCE__SHIFT 0x1
+#define XCC_DOORBELL_FENCE__XCC_2_DOORBELL_FENCE__SHIFT 0x2
+#define XCC_DOORBELL_FENCE__XCC_3_DOORBELL_FENCE__SHIFT 0x3
+#define XCC_DOORBELL_FENCE__XCC_4_DOORBELL_FENCE__SHIFT 0x4
+#define XCC_DOORBELL_FENCE__XCC_5_DOORBELL_FENCE__SHIFT 0x5
+#define XCC_DOORBELL_FENCE__XCC_6_DOORBELL_FENCE__SHIFT 0x6
+#define XCC_DOORBELL_FENCE__XCC_7_DOORBELL_FENCE__SHIFT 0x7
+#define XCC_DOORBELL_FENCE__SHUB_SLV_MODE__SHIFT 0x10
+#define XCC_DOORBELL_FENCE__RMOTE_CP_SENT__SHIFT 0x11
+#define XCC_DOORBELL_FENCE__CP_0_SENT__SHIFT 0x12
+#define XCC_DOORBELL_FENCE__CP_1_SENT__SHIFT 0x13
+#define XCC_DOORBELL_FENCE__CP_2_SENT__SHIFT 0x14
+#define XCC_DOORBELL_FENCE__CP_3_SENT__SHIFT 0x15
+#define XCC_DOORBELL_FENCE__CP_4_SENT__SHIFT 0x16
+#define XCC_DOORBELL_FENCE__CP_5_SENT__SHIFT 0x17
+#define XCC_DOORBELL_FENCE__CP_6_SENT__SHIFT 0x18
+#define XCC_DOORBELL_FENCE__CP_7_SENT__SHIFT 0x19
+#define XCC_DOORBELL_FENCE__REMOTE_CLIENT_SENT__SHIFT 0x1a
+#define XCC_DOORBELL_FENCE__REMOTE_CLIENT_CLR_PENDING__SHIFT 0x1b
+#define XCC_DOORBELL_FENCE__XCC_0_DOORBELL_FENCE_MASK 0x00000001L
+#define XCC_DOORBELL_FENCE__XCC_1_DOORBELL_FENCE_MASK 0x00000002L
+#define XCC_DOORBELL_FENCE__XCC_2_DOORBELL_FENCE_MASK 0x00000004L
+#define XCC_DOORBELL_FENCE__XCC_3_DOORBELL_FENCE_MASK 0x00000008L
+#define XCC_DOORBELL_FENCE__XCC_4_DOORBELL_FENCE_MASK 0x00000010L
+#define XCC_DOORBELL_FENCE__XCC_5_DOORBELL_FENCE_MASK 0x00000020L
+#define XCC_DOORBELL_FENCE__XCC_6_DOORBELL_FENCE_MASK 0x00000040L
+#define XCC_DOORBELL_FENCE__XCC_7_DOORBELL_FENCE_MASK 0x00000080L
+#define XCC_DOORBELL_FENCE__SHUB_SLV_MODE_MASK 0x00010000L
+#define XCC_DOORBELL_FENCE__RMOTE_CP_SENT_MASK 0x00020000L
+#define XCC_DOORBELL_FENCE__CP_0_SENT_MASK 0x00040000L
+#define XCC_DOORBELL_FENCE__CP_1_SENT_MASK 0x00080000L
+#define XCC_DOORBELL_FENCE__CP_2_SENT_MASK 0x00100000L
+#define XCC_DOORBELL_FENCE__CP_3_SENT_MASK 0x00200000L
+#define XCC_DOORBELL_FENCE__CP_4_SENT_MASK 0x00400000L
+#define XCC_DOORBELL_FENCE__CP_5_SENT_MASK 0x00800000L
+#define XCC_DOORBELL_FENCE__CP_6_SENT_MASK 0x01000000L
+#define XCC_DOORBELL_FENCE__CP_7_SENT_MASK 0x02000000L
+#define XCC_DOORBELL_FENCE__REMOTE_CLIENT_SENT_MASK 0x04000000L
+#define XCC_DOORBELL_FENCE__REMOTE_CLIENT_CLR_PENDING_MASK 0x08000000L
+
+
+// addressBlock: aid_nbio_nbif0_gdc_rst_GDCRST_DEC
+//SHUB_PF_FLR_RST
+#define SHUB_PF_FLR_RST__DEV0_PF0_FLR_RST__SHIFT 0x0
+#define SHUB_PF_FLR_RST__DEV0_PF1_FLR_RST__SHIFT 0x1
+#define SHUB_PF_FLR_RST__DEV0_PF0_FLR_RST_MASK 0x00000001L
+#define SHUB_PF_FLR_RST__DEV0_PF1_FLR_RST_MASK 0x00000002L
+//SHUB_GFX_DRV_VPU_RST
+#define SHUB_GFX_DRV_VPU_RST__GFX_DRV_MODE1_RST__SHIFT 0x0
+#define SHUB_GFX_DRV_VPU_RST__GFX_DRV_MODE1_RST_MASK 0x00000001L
+//SHUB_LINK_RESET
+#define SHUB_LINK_RESET__LINK_P0_RESET__SHIFT 0x0
+#define SHUB_LINK_RESET__LINK_P1_RESET__SHIFT 0x1
+#define SHUB_LINK_RESET__LINK_P2_RESET__SHIFT 0x2
+#define SHUB_LINK_RESET__LINK_P3_RESET__SHIFT 0x3
+#define SHUB_LINK_RESET__LINK_P0_RESET_MASK 0x00000001L
+#define SHUB_LINK_RESET__LINK_P1_RESET_MASK 0x00000002L
+#define SHUB_LINK_RESET__LINK_P2_RESET_MASK 0x00000004L
+#define SHUB_LINK_RESET__LINK_P3_RESET_MASK 0x00000008L
+//SHUB_HARD_RST_CTRL
+#define SHUB_HARD_RST_CTRL__COR_RESET_EN__SHIFT 0x0
+#define SHUB_HARD_RST_CTRL__REG_RESET_EN__SHIFT 0x1
+#define SHUB_HARD_RST_CTRL__STY_RESET_EN__SHIFT 0x2
+#define SHUB_HARD_RST_CTRL__NIC400_RESET_EN__SHIFT 0x3
+#define SHUB_HARD_RST_CTRL__SDP_PORT_RESET_EN__SHIFT 0x4
+#define SHUB_HARD_RST_CTRL__SION_AON_RESET_EN__SHIFT 0x5
+#define SHUB_HARD_RST_CTRL__COR_RESET_EN_MASK 0x00000001L
+#define SHUB_HARD_RST_CTRL__REG_RESET_EN_MASK 0x00000002L
+#define SHUB_HARD_RST_CTRL__STY_RESET_EN_MASK 0x00000004L
+#define SHUB_HARD_RST_CTRL__NIC400_RESET_EN_MASK 0x00000008L
+#define SHUB_HARD_RST_CTRL__SDP_PORT_RESET_EN_MASK 0x00000010L
+#define SHUB_HARD_RST_CTRL__SION_AON_RESET_EN_MASK 0x00000020L
+//SHUB_SOFT_RST_CTRL
+#define SHUB_SOFT_RST_CTRL__COR_RESET_EN__SHIFT 0x0
+#define SHUB_SOFT_RST_CTRL__REG_RESET_EN__SHIFT 0x1
+#define SHUB_SOFT_RST_CTRL__STY_RESET_EN__SHIFT 0x2
+#define SHUB_SOFT_RST_CTRL__NIC400_RESET_EN__SHIFT 0x3
+#define SHUB_SOFT_RST_CTRL__SDP_PORT_RESET_EN__SHIFT 0x4
+#define SHUB_SOFT_RST_CTRL__SION_AON_RESET_EN__SHIFT 0x5
+#define SHUB_SOFT_RST_CTRL__COR_RESET_EN_MASK 0x00000001L
+#define SHUB_SOFT_RST_CTRL__REG_RESET_EN_MASK 0x00000002L
+#define SHUB_SOFT_RST_CTRL__STY_RESET_EN_MASK 0x00000004L
+#define SHUB_SOFT_RST_CTRL__NIC400_RESET_EN_MASK 0x00000008L
+#define SHUB_SOFT_RST_CTRL__SDP_PORT_RESET_EN_MASK 0x00000010L
+#define SHUB_SOFT_RST_CTRL__SION_AON_RESET_EN_MASK 0x00000020L
+//SHUB_SDP_PORT_RST
+#define SHUB_SDP_PORT_RST__A2S_SDP_PORT_RST__SHIFT 0x0
+#define SHUB_SDP_PORT_RST__NBIFSION_BIF_SDP_PORT_RST__SHIFT 0x1
+#define SHUB_SDP_PORT_RST__ATHUB_HST_SDP_PORT_RST__SHIFT 0x2
+#define SHUB_SDP_PORT_RST__ATHUB_DMA_SDP_PORT_RST__SHIFT 0x3
+#define SHUB_SDP_PORT_RST__ATDMA_NBIFSOIN_SDP_PORT_RST__SHIFT 0x4
+#define SHUB_SDP_PORT_RST__MP4SDP_SDP_PORT_RST__SHIFT 0x6
+#define SHUB_SDP_PORT_RST__NTB_HST_SDP_PORT_RST__SHIFT 0x8
+#define SHUB_SDP_PORT_RST__NTB_DMA_SDP_PORT_RST__SHIFT 0x9
+#define SHUB_SDP_PORT_RST__MPDMATF_DMA_SDP_PORT_RST__SHIFT 0xa
+#define SHUB_SDP_PORT_RST__MPDMAPM_DMA_SDP_PORT_RST__SHIFT 0xb
+#define SHUB_SDP_PORT_RST__MPDMATF_HST_SDP_PORT_RST__SHIFT 0xc
+#define SHUB_SDP_PORT_RST__SHUB_CNDI_HST_SDP_PORT_RST__SHIFT 0xd
+#define SHUB_SDP_PORT_RST__SION_AON_RST__SHIFT 0x18
+#define SHUB_SDP_PORT_RST__A2S_SDP_PORT_RST_MASK 0x00000001L
+#define SHUB_SDP_PORT_RST__NBIFSION_BIF_SDP_PORT_RST_MASK 0x00000002L
+#define SHUB_SDP_PORT_RST__ATHUB_HST_SDP_PORT_RST_MASK 0x00000004L
+#define SHUB_SDP_PORT_RST__ATHUB_DMA_SDP_PORT_RST_MASK 0x00000008L
+#define SHUB_SDP_PORT_RST__ATDMA_NBIFSOIN_SDP_PORT_RST_MASK 0x00000010L
+#define SHUB_SDP_PORT_RST__MP4SDP_SDP_PORT_RST_MASK 0x00000040L
+#define SHUB_SDP_PORT_RST__NTB_HST_SDP_PORT_RST_MASK 0x00000100L
+#define SHUB_SDP_PORT_RST__NTB_DMA_SDP_PORT_RST_MASK 0x00000200L
+#define SHUB_SDP_PORT_RST__MPDMATF_DMA_SDP_PORT_RST_MASK 0x00000400L
+#define SHUB_SDP_PORT_RST__MPDMAPM_DMA_SDP_PORT_RST_MASK 0x00000800L
+#define SHUB_SDP_PORT_RST__MPDMATF_HST_SDP_PORT_RST_MASK 0x00001000L
+#define SHUB_SDP_PORT_RST__SHUB_CNDI_HST_SDP_PORT_RST_MASK 0x00002000L
+#define SHUB_SDP_PORT_RST__SION_AON_RST_MASK 0x01000000L
+
+
+// addressBlock: aid_nbio_nbif0_syshub_mmreg_syshubdirect
+//HST_CLK0_SW0_CL0_CNTL
+#define HST_CLK0_SW0_CL0_CNTL__FLR_ON_RS_RESET_EN__SHIFT 0x0
+#define HST_CLK0_SW0_CL0_CNTL__LKRST_ON_RS_RESET_EN__SHIFT 0x1
+#define HST_CLK0_SW0_CL0_CNTL__FLR_ON_RS_RESET_EN_MASK 0x00000001L
+#define HST_CLK0_SW0_CL0_CNTL__LKRST_ON_RS_RESET_EN_MASK 0x00000002L
+//HST_CLK0_SW1_CL0_CNTL
+#define HST_CLK0_SW1_CL0_CNTL__FLR_ON_RS_RESET_EN__SHIFT 0x0
+#define HST_CLK0_SW1_CL0_CNTL__LKRST_ON_RS_RESET_EN__SHIFT 0x1
+#define HST_CLK0_SW1_CL0_CNTL__FLR_ON_RS_RESET_EN_MASK 0x00000001L
+#define HST_CLK0_SW1_CL0_CNTL__LKRST_ON_RS_RESET_EN_MASK 0x00000002L
+//HST_CLK0_SW1_CL1_CNTL
+#define HST_CLK0_SW1_CL1_CNTL__FLR_ON_RS_RESET_EN__SHIFT 0x0
+#define HST_CLK0_SW1_CL1_CNTL__LKRST_ON_RS_RESET_EN__SHIFT 0x1
+#define HST_CLK0_SW1_CL1_CNTL__FLR_ON_RS_RESET_EN_MASK 0x00000001L
+#define HST_CLK0_SW1_CL1_CNTL__LKRST_ON_RS_RESET_EN_MASK 0x00000002L
+//HST_CLK0_SW1_CL2_CNTL
+#define HST_CLK0_SW1_CL2_CNTL__FLR_ON_RS_RESET_EN__SHIFT 0x0
+#define HST_CLK0_SW1_CL2_CNTL__LKRST_ON_RS_RESET_EN__SHIFT 0x1
+#define HST_CLK0_SW1_CL2_CNTL__FLR_ON_RS_RESET_EN_MASK 0x00000001L
+#define HST_CLK0_SW1_CL2_CNTL__LKRST_ON_RS_RESET_EN_MASK 0x00000002L
+//DMA_CLK0_SW0_CL0_CNTL
+#define DMA_CLK0_SW0_CL0_CNTL__FLR_ON_RS_RESET_EN__SHIFT 0x0
+#define DMA_CLK0_SW0_CL0_CNTL__LKRST_ON_RS_RESET_EN__SHIFT 0x1
+#define DMA_CLK0_SW0_CL0_CNTL__QOS_STATIC_OVERRIDE_EN__SHIFT 0x8
+#define DMA_CLK0_SW0_CL0_CNTL__QOS_STATIC_OVERRIDE_VALUE__SHIFT 0x9
+#define DMA_CLK0_SW0_CL0_CNTL__READ_WRR_WEIGHT__SHIFT 0x10
+#define DMA_CLK0_SW0_CL0_CNTL__WRITE_WRR_WEIGHT__SHIFT 0x18
+#define DMA_CLK0_SW0_CL0_CNTL__FLR_ON_RS_RESET_EN_MASK 0x00000001L
+#define DMA_CLK0_SW0_CL0_CNTL__LKRST_ON_RS_RESET_EN_MASK 0x00000002L
+#define DMA_CLK0_SW0_CL0_CNTL__QOS_STATIC_OVERRIDE_EN_MASK 0x00000100L
+#define DMA_CLK0_SW0_CL0_CNTL__QOS_STATIC_OVERRIDE_VALUE_MASK 0x00001E00L
+#define DMA_CLK0_SW0_CL0_CNTL__READ_WRR_WEIGHT_MASK 0x00FF0000L
+#define DMA_CLK0_SW0_CL0_CNTL__WRITE_WRR_WEIGHT_MASK 0xFF000000L
+//DMA_CLK0_SW0_CL1_CNTL
+#define DMA_CLK0_SW0_CL1_CNTL__FLR_ON_RS_RESET_EN__SHIFT 0x0
+#define DMA_CLK0_SW0_CL1_CNTL__LKRST_ON_RS_RESET_EN__SHIFT 0x1
+#define DMA_CLK0_SW0_CL1_CNTL__QOS_STATIC_OVERRIDE_EN__SHIFT 0x8
+#define DMA_CLK0_SW0_CL1_CNTL__QOS_STATIC_OVERRIDE_VALUE__SHIFT 0x9
+#define DMA_CLK0_SW0_CL1_CNTL__READ_WRR_WEIGHT__SHIFT 0x10
+#define DMA_CLK0_SW0_CL1_CNTL__WRITE_WRR_WEIGHT__SHIFT 0x18
+#define DMA_CLK0_SW0_CL1_CNTL__FLR_ON_RS_RESET_EN_MASK 0x00000001L
+#define DMA_CLK0_SW0_CL1_CNTL__LKRST_ON_RS_RESET_EN_MASK 0x00000002L
+#define DMA_CLK0_SW0_CL1_CNTL__QOS_STATIC_OVERRIDE_EN_MASK 0x00000100L
+#define DMA_CLK0_SW0_CL1_CNTL__QOS_STATIC_OVERRIDE_VALUE_MASK 0x00001E00L
+#define DMA_CLK0_SW0_CL1_CNTL__READ_WRR_WEIGHT_MASK 0x00FF0000L
+#define DMA_CLK0_SW0_CL1_CNTL__WRITE_WRR_WEIGHT_MASK 0xFF000000L
+//NIC400_1_ASIB_0_FN_MOD
+#define NIC400_1_ASIB_0_FN_MOD__read_iss_override__SHIFT 0x0
+#define NIC400_1_ASIB_0_FN_MOD__write_iss_override__SHIFT 0x1
+#define NIC400_1_ASIB_0_FN_MOD__read_iss_override_MASK 0x00000001L
+#define NIC400_1_ASIB_0_FN_MOD__write_iss_override_MASK 0x00000002L
+//NIC400_1_IB_0_FN_MOD
+#define NIC400_1_IB_0_FN_MOD__read_iss_override__SHIFT 0x0
+#define NIC400_1_IB_0_FN_MOD__write_iss_override__SHIFT 0x1
+#define NIC400_1_IB_0_FN_MOD__read_iss_override_MASK 0x00000001L
+#define NIC400_1_IB_0_FN_MOD__write_iss_override_MASK 0x00000002L
+//NIC400_2_ASIB_0_FN_MOD
+#define NIC400_2_ASIB_0_FN_MOD__read_iss_override__SHIFT 0x0
+#define NIC400_2_ASIB_0_FN_MOD__write_iss_override__SHIFT 0x1
+#define NIC400_2_ASIB_0_FN_MOD__read_iss_override_MASK 0x00000001L
+#define NIC400_2_ASIB_0_FN_MOD__write_iss_override_MASK 0x00000002L
+//NIC400_2_ASIB_0_QOS_CNTL
+#define NIC400_2_ASIB_0_QOS_CNTL__en_aw_rate__SHIFT 0x0
+#define NIC400_2_ASIB_0_QOS_CNTL__en_ar_rate__SHIFT 0x1
+#define NIC400_2_ASIB_0_QOS_CNTL__en_awar_rate__SHIFT 0x2
+#define NIC400_2_ASIB_0_QOS_CNTL__en_aw_fc__SHIFT 0x3
+#define NIC400_2_ASIB_0_QOS_CNTL__en_ar_fc__SHIFT 0x4
+#define NIC400_2_ASIB_0_QOS_CNTL__en_aw_ot__SHIFT 0x5
+#define NIC400_2_ASIB_0_QOS_CNTL__en_ar_ot__SHIFT 0x6
+#define NIC400_2_ASIB_0_QOS_CNTL__en_awar_ot__SHIFT 0x7
+#define NIC400_2_ASIB_0_QOS_CNTL__mode_aw_fc__SHIFT 0x10
+#define NIC400_2_ASIB_0_QOS_CNTL__mode_ar_fc__SHIFT 0x14
+#define NIC400_2_ASIB_0_QOS_CNTL__en_aw_rate_MASK 0x00000001L
+#define NIC400_2_ASIB_0_QOS_CNTL__en_ar_rate_MASK 0x00000002L
+#define NIC400_2_ASIB_0_QOS_CNTL__en_awar_rate_MASK 0x00000004L
+#define NIC400_2_ASIB_0_QOS_CNTL__en_aw_fc_MASK 0x00000008L
+#define NIC400_2_ASIB_0_QOS_CNTL__en_ar_fc_MASK 0x00000010L
+#define NIC400_2_ASIB_0_QOS_CNTL__en_aw_ot_MASK 0x00000020L
+#define NIC400_2_ASIB_0_QOS_CNTL__en_ar_ot_MASK 0x00000040L
+#define NIC400_2_ASIB_0_QOS_CNTL__en_awar_ot_MASK 0x00000080L
+#define NIC400_2_ASIB_0_QOS_CNTL__mode_aw_fc_MASK 0x00010000L
+#define NIC400_2_ASIB_0_QOS_CNTL__mode_ar_fc_MASK 0x00100000L
+//NIC400_2_ASIB_0_MAX_OT
+#define NIC400_2_ASIB_0_MAX_OT__aw_max_otf__SHIFT 0x0
+#define NIC400_2_ASIB_0_MAX_OT__aw_max_oti__SHIFT 0x8
+#define NIC400_2_ASIB_0_MAX_OT__ar_max_otf__SHIFT 0x10
+#define NIC400_2_ASIB_0_MAX_OT__ar_max_oti__SHIFT 0x18
+#define NIC400_2_ASIB_0_MAX_OT__aw_max_otf_MASK 0x000000FFL
+#define NIC400_2_ASIB_0_MAX_OT__aw_max_oti_MASK 0x00003F00L
+#define NIC400_2_ASIB_0_MAX_OT__ar_max_otf_MASK 0x00FF0000L
+#define NIC400_2_ASIB_0_MAX_OT__ar_max_oti_MASK 0x3F000000L
+//NIC400_2_ASIB_0_MAX_COMB_OT
+#define NIC400_2_ASIB_0_MAX_COMB_OT__awar_max_otf__SHIFT 0x0
+#define NIC400_2_ASIB_0_MAX_COMB_OT__awar_max_oti__SHIFT 0x8
+#define NIC400_2_ASIB_0_MAX_COMB_OT__awar_max_otf_MASK 0x000000FFL
+#define NIC400_2_ASIB_0_MAX_COMB_OT__awar_max_oti_MASK 0x00007F00L
+//NIC400_2_ASIB_0_AW_P
+#define NIC400_2_ASIB_0_AW_P__aw_p__SHIFT 0x18
+#define NIC400_2_ASIB_0_AW_P__aw_p_MASK 0xFF000000L
+//NIC400_2_ASIB_0_AW_B
+#define NIC400_2_ASIB_0_AW_B__aw_b__SHIFT 0x0
+#define NIC400_2_ASIB_0_AW_B__aw_b_MASK 0x0000FFFFL
+//NIC400_2_ASIB_0_AW_R
+#define NIC400_2_ASIB_0_AW_R__aw_r__SHIFT 0x14
+#define NIC400_2_ASIB_0_AW_R__aw_r_MASK 0xFFF00000L
+//NIC400_2_ASIB_0_AR_P
+#define NIC400_2_ASIB_0_AR_P__ar_p__SHIFT 0x18
+#define NIC400_2_ASIB_0_AR_P__ar_p_MASK 0xFF000000L
+//NIC400_2_ASIB_0_AR_B
+#define NIC400_2_ASIB_0_AR_B__ar_b__SHIFT 0x0
+#define NIC400_2_ASIB_0_AR_B__ar_b_MASK 0x0000FFFFL
+//NIC400_2_ASIB_0_AR_R
+#define NIC400_2_ASIB_0_AR_R__ar_r__SHIFT 0x14
+#define NIC400_2_ASIB_0_AR_R__ar_r_MASK 0xFFF00000L
+//NIC400_2_ASIB_0_TARGET_FC
+#define NIC400_2_ASIB_0_TARGET_FC__aw_tgt_latency__SHIFT 0x0
+#define NIC400_2_ASIB_0_TARGET_FC__ar_tgt_latency__SHIFT 0x10
+#define NIC400_2_ASIB_0_TARGET_FC__aw_tgt_latency_MASK 0x00000FFFL
+#define NIC400_2_ASIB_0_TARGET_FC__ar_tgt_latency_MASK 0x0FFF0000L
+//NIC400_2_ASIB_0_KI_FC
+#define NIC400_2_ASIB_0_KI_FC__aw_tgt_latency__SHIFT 0x0
+#define NIC400_2_ASIB_0_KI_FC__ar_tgt_latency__SHIFT 0x8
+#define NIC400_2_ASIB_0_KI_FC__aw_tgt_latency_MASK 0x00000007L
+#define NIC400_2_ASIB_0_KI_FC__ar_tgt_latency_MASK 0x00000700L
+//NIC400_2_ASIB_0_QOS_RANGE
+#define NIC400_2_ASIB_0_QOS_RANGE__aw_min_qos__SHIFT 0x0
+#define NIC400_2_ASIB_0_QOS_RANGE__aw_max_qos__SHIFT 0x8
+#define NIC400_2_ASIB_0_QOS_RANGE__ar_min_qos__SHIFT 0x10
+#define NIC400_2_ASIB_0_QOS_RANGE__ar_max_qos__SHIFT 0x18
+#define NIC400_2_ASIB_0_QOS_RANGE__aw_min_qos_MASK 0x0000000FL
+#define NIC400_2_ASIB_0_QOS_RANGE__aw_max_qos_MASK 0x00000F00L
+#define NIC400_2_ASIB_0_QOS_RANGE__ar_min_qos_MASK 0x000F0000L
+#define NIC400_2_ASIB_0_QOS_RANGE__ar_max_qos_MASK 0x0F000000L
+//NIC400_2_ASIB_1_FN_MOD
+#define NIC400_2_ASIB_1_FN_MOD__read_iss_override__SHIFT 0x0
+#define NIC400_2_ASIB_1_FN_MOD__write_iss_override__SHIFT 0x1
+#define NIC400_2_ASIB_1_FN_MOD__read_iss_override_MASK 0x00000001L
+#define NIC400_2_ASIB_1_FN_MOD__write_iss_override_MASK 0x00000002L
+//NIC400_2_ASIB_1_QOS_CNTL
+#define NIC400_2_ASIB_1_QOS_CNTL__en_aw_rate__SHIFT 0x0
+#define NIC400_2_ASIB_1_QOS_CNTL__en_ar_rate__SHIFT 0x1
+#define NIC400_2_ASIB_1_QOS_CNTL__en_awar_rate__SHIFT 0x2
+#define NIC400_2_ASIB_1_QOS_CNTL__en_aw_fc__SHIFT 0x3
+#define NIC400_2_ASIB_1_QOS_CNTL__en_ar_fc__SHIFT 0x4
+#define NIC400_2_ASIB_1_QOS_CNTL__en_aw_ot__SHIFT 0x5
+#define NIC400_2_ASIB_1_QOS_CNTL__en_ar_ot__SHIFT 0x6
+#define NIC400_2_ASIB_1_QOS_CNTL__en_awar_ot__SHIFT 0x7
+#define NIC400_2_ASIB_1_QOS_CNTL__mode_aw_fc__SHIFT 0x10
+#define NIC400_2_ASIB_1_QOS_CNTL__mode_ar_fc__SHIFT 0x14
+#define NIC400_2_ASIB_1_QOS_CNTL__en_aw_rate_MASK 0x00000001L
+#define NIC400_2_ASIB_1_QOS_CNTL__en_ar_rate_MASK 0x00000002L
+#define NIC400_2_ASIB_1_QOS_CNTL__en_awar_rate_MASK 0x00000004L
+#define NIC400_2_ASIB_1_QOS_CNTL__en_aw_fc_MASK 0x00000008L
+#define NIC400_2_ASIB_1_QOS_CNTL__en_ar_fc_MASK 0x00000010L
+#define NIC400_2_ASIB_1_QOS_CNTL__en_aw_ot_MASK 0x00000020L
+#define NIC400_2_ASIB_1_QOS_CNTL__en_ar_ot_MASK 0x00000040L
+#define NIC400_2_ASIB_1_QOS_CNTL__en_awar_ot_MASK 0x00000080L
+#define NIC400_2_ASIB_1_QOS_CNTL__mode_aw_fc_MASK 0x00010000L
+#define NIC400_2_ASIB_1_QOS_CNTL__mode_ar_fc_MASK 0x00100000L
+//NIC400_2_ASIB_1_MAX_OT
+#define NIC400_2_ASIB_1_MAX_OT__aw_max_otf__SHIFT 0x0
+#define NIC400_2_ASIB_1_MAX_OT__aw_max_oti__SHIFT 0x8
+#define NIC400_2_ASIB_1_MAX_OT__ar_max_otf__SHIFT 0x10
+#define NIC400_2_ASIB_1_MAX_OT__ar_max_oti__SHIFT 0x18
+#define NIC400_2_ASIB_1_MAX_OT__aw_max_otf_MASK 0x000000FFL
+#define NIC400_2_ASIB_1_MAX_OT__aw_max_oti_MASK 0x00003F00L
+#define NIC400_2_ASIB_1_MAX_OT__ar_max_otf_MASK 0x00FF0000L
+#define NIC400_2_ASIB_1_MAX_OT__ar_max_oti_MASK 0x3F000000L
+//NIC400_2_ASIB_1_MAX_COMB_OT
+#define NIC400_2_ASIB_1_MAX_COMB_OT__awar_max_otf__SHIFT 0x0
+#define NIC400_2_ASIB_1_MAX_COMB_OT__awar_max_oti__SHIFT 0x8
+#define NIC400_2_ASIB_1_MAX_COMB_OT__awar_max_otf_MASK 0x000000FFL
+#define NIC400_2_ASIB_1_MAX_COMB_OT__awar_max_oti_MASK 0x00007F00L
+//NIC400_2_ASIB_1_AW_P
+#define NIC400_2_ASIB_1_AW_P__aw_p__SHIFT 0x18
+#define NIC400_2_ASIB_1_AW_P__aw_p_MASK 0xFF000000L
+//NIC400_2_ASIB_1_AW_B
+#define NIC400_2_ASIB_1_AW_B__aw_b__SHIFT 0x0
+#define NIC400_2_ASIB_1_AW_B__aw_b_MASK 0x0000FFFFL
+//NIC400_2_ASIB_1_AW_R
+#define NIC400_2_ASIB_1_AW_R__aw_r__SHIFT 0x14
+#define NIC400_2_ASIB_1_AW_R__aw_r_MASK 0xFFF00000L
+//NIC400_2_ASIB_1_AR_P
+#define NIC400_2_ASIB_1_AR_P__ar_p__SHIFT 0x18
+#define NIC400_2_ASIB_1_AR_P__ar_p_MASK 0xFF000000L
+//NIC400_2_ASIB_1_AR_B
+#define NIC400_2_ASIB_1_AR_B__ar_b__SHIFT 0x0
+#define NIC400_2_ASIB_1_AR_B__ar_b_MASK 0x0000FFFFL
+//NIC400_2_ASIB_1_AR_R
+#define NIC400_2_ASIB_1_AR_R__ar_r__SHIFT 0x14
+#define NIC400_2_ASIB_1_AR_R__ar_r_MASK 0xFFF00000L
+//NIC400_2_ASIB_1_TARGET_FC
+#define NIC400_2_ASIB_1_TARGET_FC__aw_tgt_latency__SHIFT 0x0
+#define NIC400_2_ASIB_1_TARGET_FC__ar_tgt_latency__SHIFT 0x10
+#define NIC400_2_ASIB_1_TARGET_FC__aw_tgt_latency_MASK 0x00000FFFL
+#define NIC400_2_ASIB_1_TARGET_FC__ar_tgt_latency_MASK 0x0FFF0000L
+//NIC400_2_ASIB_1_KI_FC
+#define NIC400_2_ASIB_1_KI_FC__aw_tgt_latency__SHIFT 0x0
+#define NIC400_2_ASIB_1_KI_FC__ar_tgt_latency__SHIFT 0x8
+#define NIC400_2_ASIB_1_KI_FC__aw_tgt_latency_MASK 0x00000007L
+#define NIC400_2_ASIB_1_KI_FC__ar_tgt_latency_MASK 0x00000700L
+//NIC400_2_ASIB_1_QOS_RANGE
+#define NIC400_2_ASIB_1_QOS_RANGE__aw_min_qos__SHIFT 0x0
+#define NIC400_2_ASIB_1_QOS_RANGE__aw_max_qos__SHIFT 0x8
+#define NIC400_2_ASIB_1_QOS_RANGE__ar_min_qos__SHIFT 0x10
+#define NIC400_2_ASIB_1_QOS_RANGE__ar_max_qos__SHIFT 0x18
+#define NIC400_2_ASIB_1_QOS_RANGE__aw_min_qos_MASK 0x0000000FL
+#define NIC400_2_ASIB_1_QOS_RANGE__aw_max_qos_MASK 0x00000F00L
+#define NIC400_2_ASIB_1_QOS_RANGE__ar_min_qos_MASK 0x000F0000L
+#define NIC400_2_ASIB_1_QOS_RANGE__ar_max_qos_MASK 0x0F000000L
+//NIC400_2_IB_0_FN_MOD
+#define NIC400_2_IB_0_FN_MOD__read_iss_override__SHIFT 0x0
+#define NIC400_2_IB_0_FN_MOD__write_iss_override__SHIFT 0x1
+#define NIC400_2_IB_0_FN_MOD__read_iss_override_MASK 0x00000001L
+#define NIC400_2_IB_0_FN_MOD__write_iss_override_MASK 0x00000002L
+
+
+// addressBlock: aid_nbio_iohub_nb_nbcfg_nb_cfgdec
+//NB_NBCFG0_NBCFG_SCRATCH_4
+#define NB_NBCFG0_NBCFG_SCRATCH_4__NBCFG_SCRATCH_4__SHIFT 0x0
+#define NB_NBCFG0_NBCFG_SCRATCH_4__NBCFG_SCRATCH_4_MASK 0xFFFFFFFFL
+
+
+// addressBlock: aid_nbio_iohub_nb_misc_misc_cfgdec
+//NB_CNTL
+#define NB_CNTL__HWINIT_WR_LOCK__SHIFT 0x7
+#define NB_CNTL__HWINIT_WR_LOCK_MASK 0x00000080L
+//NB_SPARE1
+#define NB_SPARE1__NB_SPARE1_RW__SHIFT 0x0
+#define NB_SPARE1__NB_SPARE1_RW_MASK 0xFFFFFFFFL
+//NB_SPARE2
+#define NB_SPARE2__NB_SPARE2_RW1C_0__SHIFT 0x0
+#define NB_SPARE2__NB_SPARE2_RW1C_1__SHIFT 0x1
+#define NB_SPARE2__NB_SPARE2_RW1C_2__SHIFT 0x2
+#define NB_SPARE2__NB_SPARE2_RW1C_3__SHIFT 0x3
+#define NB_SPARE2__NB_SPARE2_RW1C_4__SHIFT 0x4
+#define NB_SPARE2__NB_SPARE2_RW1C_5__SHIFT 0x5
+#define NB_SPARE2__NB_SPARE2_RW1C_6__SHIFT 0x6
+#define NB_SPARE2__NB_SPARE2_RW1C_7__SHIFT 0x7
+#define NB_SPARE2__NB_SPARE2_RW1C_8__SHIFT 0x8
+#define NB_SPARE2__NB_SPARE2_RW1C_9__SHIFT 0x9
+#define NB_SPARE2__NB_SPARE2_RW1C_10__SHIFT 0xa
+#define NB_SPARE2__NB_SPARE2_RW1C_11__SHIFT 0xb
+#define NB_SPARE2__NB_SPARE2_RW1C_12__SHIFT 0xc
+#define NB_SPARE2__NB_SPARE2_RW1C_13__SHIFT 0xd
+#define NB_SPARE2__NB_SPARE2_RW1C_14__SHIFT 0xe
+#define NB_SPARE2__NB_SPARE2_RW1C_15__SHIFT 0xf
+#define NB_SPARE2__NB_SPARE2_RW1C_16__SHIFT 0x10
+#define NB_SPARE2__NB_SPARE2_RW1C_17__SHIFT 0x11
+#define NB_SPARE2__NB_SPARE2_RW1C_18__SHIFT 0x12
+#define NB_SPARE2__NB_SPARE2_RW1C_19__SHIFT 0x13
+#define NB_SPARE2__NB_SPARE2_RW1C_20__SHIFT 0x14
+#define NB_SPARE2__NB_SPARE2_RW1C_21__SHIFT 0x15
+#define NB_SPARE2__NB_SPARE2_RW1C_22__SHIFT 0x16
+#define NB_SPARE2__NB_SPARE2_RW1C_23__SHIFT 0x17
+#define NB_SPARE2__NB_SPARE2_RW1C_24__SHIFT 0x18
+#define NB_SPARE2__NB_SPARE2_RW1C_25__SHIFT 0x19
+#define NB_SPARE2__NB_SPARE2_RW1C_26__SHIFT 0x1a
+#define NB_SPARE2__NB_SPARE2_RW1C_27__SHIFT 0x1b
+#define NB_SPARE2__NB_SPARE2_RW1C_28__SHIFT 0x1c
+#define NB_SPARE2__NB_SPARE2_RW1C_29__SHIFT 0x1d
+#define NB_SPARE2__NB_SPARE2_RW1C_30__SHIFT 0x1e
+#define NB_SPARE2__NB_SPARE2_RW1C_31__SHIFT 0x1f
+#define NB_SPARE2__NB_SPARE2_RW1C_0_MASK 0x00000001L
+#define NB_SPARE2__NB_SPARE2_RW1C_1_MASK 0x00000002L
+#define NB_SPARE2__NB_SPARE2_RW1C_2_MASK 0x00000004L
+#define NB_SPARE2__NB_SPARE2_RW1C_3_MASK 0x00000008L
+#define NB_SPARE2__NB_SPARE2_RW1C_4_MASK 0x00000010L
+#define NB_SPARE2__NB_SPARE2_RW1C_5_MASK 0x00000020L
+#define NB_SPARE2__NB_SPARE2_RW1C_6_MASK 0x00000040L
+#define NB_SPARE2__NB_SPARE2_RW1C_7_MASK 0x00000080L
+#define NB_SPARE2__NB_SPARE2_RW1C_8_MASK 0x00000100L
+#define NB_SPARE2__NB_SPARE2_RW1C_9_MASK 0x00000200L
+#define NB_SPARE2__NB_SPARE2_RW1C_10_MASK 0x00000400L
+#define NB_SPARE2__NB_SPARE2_RW1C_11_MASK 0x00000800L
+#define NB_SPARE2__NB_SPARE2_RW1C_12_MASK 0x00001000L
+#define NB_SPARE2__NB_SPARE2_RW1C_13_MASK 0x00002000L
+#define NB_SPARE2__NB_SPARE2_RW1C_14_MASK 0x00004000L
+#define NB_SPARE2__NB_SPARE2_RW1C_15_MASK 0x00008000L
+#define NB_SPARE2__NB_SPARE2_RW1C_16_MASK 0x00010000L
+#define NB_SPARE2__NB_SPARE2_RW1C_17_MASK 0x00020000L
+#define NB_SPARE2__NB_SPARE2_RW1C_18_MASK 0x00040000L
+#define NB_SPARE2__NB_SPARE2_RW1C_19_MASK 0x00080000L
+#define NB_SPARE2__NB_SPARE2_RW1C_20_MASK 0x00100000L
+#define NB_SPARE2__NB_SPARE2_RW1C_21_MASK 0x00200000L
+#define NB_SPARE2__NB_SPARE2_RW1C_22_MASK 0x00400000L
+#define NB_SPARE2__NB_SPARE2_RW1C_23_MASK 0x00800000L
+#define NB_SPARE2__NB_SPARE2_RW1C_24_MASK 0x01000000L
+#define NB_SPARE2__NB_SPARE2_RW1C_25_MASK 0x02000000L
+#define NB_SPARE2__NB_SPARE2_RW1C_26_MASK 0x04000000L
+#define NB_SPARE2__NB_SPARE2_RW1C_27_MASK 0x08000000L
+#define NB_SPARE2__NB_SPARE2_RW1C_28_MASK 0x10000000L
+#define NB_SPARE2__NB_SPARE2_RW1C_29_MASK 0x20000000L
+#define NB_SPARE2__NB_SPARE2_RW1C_30_MASK 0x40000000L
+#define NB_SPARE2__NB_SPARE2_RW1C_31_MASK 0x80000000L
+//NB_REVID
+#define NB_REVID__REVISION_ID__SHIFT 0x0
+#define NB_REVID__REVISION_ID_MASK 0x000003FFL
+//NBIO_LCLK_DS_MASK
+#define NBIO_LCLK_DS_MASK__LCLK_DS_MASK__SHIFT 0x0
+#define NBIO_LCLK_DS_MASK__LCLK_DS_MASK_MASK 0xFFFFFFFFL
+//NB_BUS_NUM_CNTL
+#define NB_BUS_NUM_CNTL__NB_BUS_NUM__SHIFT 0x0
+#define NB_BUS_NUM_CNTL__NB_BUS_LAT_Mode__SHIFT 0x8
+#define NB_BUS_NUM_CNTL__NB_SEGMENT__SHIFT 0x10
+#define NB_BUS_NUM_CNTL__NB_BUS_NUM_MASK 0x000000FFL
+#define NB_BUS_NUM_CNTL__NB_BUS_LAT_Mode_MASK 0x00000100L
+#define NB_BUS_NUM_CNTL__NB_SEGMENT_MASK 0x00FF0000L
+//NB_MMIOBASE
+#define NB_MMIOBASE__MMIOBASE__SHIFT 0x0
+#define NB_MMIOBASE__MMIOBASE_MASK 0xFFFFFFFFL
+//NB_MMIOLIMIT
+#define NB_MMIOLIMIT__MMIOLIMIT__SHIFT 0x0
+#define NB_MMIOLIMIT__MMIOLIMIT_MASK 0xFFFFFFFFL
+//NB_LOWER_TOP_OF_DRAM2
+#define NB_LOWER_TOP_OF_DRAM2__ENABLE__SHIFT 0x0
+#define NB_LOWER_TOP_OF_DRAM2__LOWER_TOM2__SHIFT 0x17
+#define NB_LOWER_TOP_OF_DRAM2__ENABLE_MASK 0x00000001L
+#define NB_LOWER_TOP_OF_DRAM2__LOWER_TOM2_MASK 0xFF800000L
+//NB_UPPER_TOP_OF_DRAM2
+#define NB_UPPER_TOP_OF_DRAM2__UPPER_TOM2__SHIFT 0x0
+#define NB_UPPER_TOP_OF_DRAM2__UPPER_TOM2_MASK 0x000001FFL
+//NB_LOWER_DRAM2_BASE
+#define NB_LOWER_DRAM2_BASE__LOWER_DRAM2_BASE__SHIFT 0x17
+#define NB_LOWER_DRAM2_BASE__LOWER_DRAM2_BASE_MASK 0xFF800000L
+//NB_UPPER_DRAM2_BASE
+#define NB_UPPER_DRAM2_BASE__UPPER_DRAM2_BASE__SHIFT 0x0
+#define NB_UPPER_DRAM2_BASE__UPPER_DRAM2_BASE_MASK 0x000001FFL
+//SB_LOCATION
+#define SB_LOCATION__SBlocated_Port__SHIFT 0x0
+#define SB_LOCATION__SBlocated_Core__SHIFT 0x10
+#define SB_LOCATION__SBlocated_Port_MASK 0x0000FFFFL
+#define SB_LOCATION__SBlocated_Core_MASK 0xFFFF0000L
+//SW_US_LOCATION
+#define SW_US_LOCATION__SW_USlocated_Port__SHIFT 0x0
+#define SW_US_LOCATION__SW_USlocated_Core__SHIFT 0x10
+#define SW_US_LOCATION__SW_USlocated_Port_MASK 0x0000FFFFL
+#define SW_US_LOCATION__SW_USlocated_Core_MASK 0xFFFF0000L
+//NB_PROG_DEVICE_REMAP_PBr0
+#define NB_PROG_DEVICE_REMAP_PBr0__PBr0_DevFnMap__SHIFT 0x0
+#define NB_PROG_DEVICE_REMAP_PBr0__PBr0_DevFnMap_MASK 0x000000FFL
+//NB_PROG_DEVICE_REMAP_PBr1
+#define NB_PROG_DEVICE_REMAP_PBr1__PBr1_DevFnMap__SHIFT 0x0
+#define NB_PROG_DEVICE_REMAP_PBr1__PBr1_DevFnMap_MASK 0x000000FFL
+//NB_PROG_DEVICE_REMAP_PBr2
+#define NB_PROG_DEVICE_REMAP_PBr2__PBr2_DevFnMap__SHIFT 0x0
+#define NB_PROG_DEVICE_REMAP_PBr2__PBr2_DevFnMap_MASK 0x000000FFL
+//NB_PROG_DEVICE_REMAP_PBr3
+#define NB_PROG_DEVICE_REMAP_PBr3__PBr3_DevFnMap__SHIFT 0x0
+#define NB_PROG_DEVICE_REMAP_PBr3__PBr3_DevFnMap_MASK 0x000000FFL
+//NB_PROG_DEVICE_REMAP_PBr4
+#define NB_PROG_DEVICE_REMAP_PBr4__PBr4_DevFnMap__SHIFT 0x0
+#define NB_PROG_DEVICE_REMAP_PBr4__PBr4_DevFnMap_MASK 0x000000FFL
+//NB_PROG_DEVICE_REMAP_PBr5
+#define NB_PROG_DEVICE_REMAP_PBr5__PBr5_DevFnMap__SHIFT 0x0
+#define NB_PROG_DEVICE_REMAP_PBr5__PBr5_DevFnMap_MASK 0x000000FFL
+//NB_PROG_DEVICE_REMAP_PBr6
+#define NB_PROG_DEVICE_REMAP_PBr6__PBr6_DevFnMap__SHIFT 0x0
+#define NB_PROG_DEVICE_REMAP_PBr6__PBr6_DevFnMap_MASK 0x000000FFL
+//NB_PROG_DEVICE_REMAP_PBr7
+#define NB_PROG_DEVICE_REMAP_PBr7__PBr7_DevFnMap__SHIFT 0x0
+#define NB_PROG_DEVICE_REMAP_PBr7__PBr7_DevFnMap_MASK 0x000000FFL
+//NB_PROG_DEVICE_REMAP_PBr8
+#define NB_PROG_DEVICE_REMAP_PBr8__PBr8_DevFnMap__SHIFT 0x0
+#define NB_PROG_DEVICE_REMAP_PBr8__PBr8_DevFnMap_MASK 0x000000FFL
+//NB_PROG_DEVICE_REMAP_PBr10
+#define NB_PROG_DEVICE_REMAP_PBr10__PBr10_DevFnMap__SHIFT 0x0
+#define NB_PROG_DEVICE_REMAP_PBr10__PBr10_DevFnMap_MASK 0x000000FFL
+//NB_PROG_DEVICE_REMAP_PBr11
+#define NB_PROG_DEVICE_REMAP_PBr11__PBr11_DevFnMap__SHIFT 0x0
+#define NB_PROG_DEVICE_REMAP_PBr11__PBr11_DevFnMap_MASK 0x000000FFL
+//NB_PROG_DEVICE_REMAP_PBr12
+#define NB_PROG_DEVICE_REMAP_PBr12__PBr12_DevFnMap__SHIFT 0x0
+#define NB_PROG_DEVICE_REMAP_PBr12__PBr12_DevFnMap_MASK 0x000000FFL
+//NB_PROG_DEVICE_REMAP_PBr13
+#define NB_PROG_DEVICE_REMAP_PBr13__PBr13_DevFnMap__SHIFT 0x0
+#define NB_PROG_DEVICE_REMAP_PBr13__PBr13_DevFnMap_MASK 0x000000FFL
+//SW_NMI_CNTL
+#define SW_NMI_CNTL__SW_NMI_Status__SHIFT 0x0
+#define SW_NMI_CNTL__SW_NMI_Status_MASK 0xFFFFFFFFL
+//SW_SMI_CNTL
+#define SW_SMI_CNTL__SW_SMI_Status__SHIFT 0x0
+#define SW_SMI_CNTL__SW_SMI_Status_MASK 0xFFFFFFFFL
+//SW_SCI_CNTL
+#define SW_SCI_CNTL__SW_SCI_Status__SHIFT 0x0
+#define SW_SCI_CNTL__SW_SCI_Status_MASK 0xFFFFFFFFL
+//APML_SW_STATUS
+#define APML_SW_STATUS__APML_NMI_STATUS__SHIFT 0x0
+#define APML_SW_STATUS__APML_NMI_STATUS_MASK 0x00000001L
+//SW_GIC_SPI_CNTL
+#define SW_GIC_SPI_CNTL__SW_NMI_GIC_SPI_Vector__SHIFT 0x0
+#define SW_GIC_SPI_CNTL__SW_SMI_GIC_SPI_Vector__SHIFT 0x8
+#define SW_GIC_SPI_CNTL__SW_SCI_GIC_SPI_Vector__SHIFT 0x10
+#define SW_GIC_SPI_CNTL__SW_NMI_GIC_SPI_Vector_MASK 0x000000FFL
+#define SW_GIC_SPI_CNTL__SW_SMI_GIC_SPI_Vector_MASK 0x0000FF00L
+#define SW_GIC_SPI_CNTL__SW_SCI_GIC_SPI_Vector_MASK 0x00FF0000L
+//SW_SYNCFLOOD_CNTL
+#define SW_SYNCFLOOD_CNTL__SW_SYNCFLOOD_PRIVATE__SHIFT 0x0
+#define SW_SYNCFLOOD_CNTL__SW_SYNCFLOOD_APML__SHIFT 0x1
+#define SW_SYNCFLOOD_CNTL__SW_SYNCFLOOD_PRIVATE_MASK 0x00000001L
+#define SW_SYNCFLOOD_CNTL__SW_SYNCFLOOD_APML_MASK 0x00000002L
+//NB_TOP_OF_DRAM3
+#define NB_TOP_OF_DRAM3__TOM3_LIMIT__SHIFT 0x0
+#define NB_TOP_OF_DRAM3__TOM3_ENABLE__SHIFT 0x1f
+#define NB_TOP_OF_DRAM3__TOM3_LIMIT_MASK 0x3FFFFFFFL
+#define NB_TOP_OF_DRAM3__TOM3_ENABLE_MASK 0x80000000L
+//CAM_CONTROL
+#define CAM_CONTROL__CAM_En__SHIFT 0x0
+#define CAM_CONTROL__Op__SHIFT 0x1
+#define CAM_CONTROL__AccessType__SHIFT 0x2
+#define CAM_CONTROL__DataMatchEn__SHIFT 0x3
+#define CAM_CONTROL__VC__SHIFT 0x4
+#define CAM_CONTROL__CrossTrigger__SHIFT 0x8
+#define CAM_CONTROL__CAM_En_MASK 0x00000001L
+#define CAM_CONTROL__Op_MASK 0x00000002L
+#define CAM_CONTROL__AccessType_MASK 0x00000004L
+#define CAM_CONTROL__DataMatchEn_MASK 0x00000008L
+#define CAM_CONTROL__VC_MASK 0x00000070L
+#define CAM_CONTROL__CrossTrigger_MASK 0x00000F00L
+//CAM_TARGET_INDEX_ADDR_BOTTOM
+#define CAM_TARGET_INDEX_ADDR_BOTTOM__IndexAddrBottom__SHIFT 0x0
+#define CAM_TARGET_INDEX_ADDR_BOTTOM__IndexAddrBottom_MASK 0xFFFFFFFFL
+//CAM_TARGET_INDEX_ADDR_TOP
+#define CAM_TARGET_INDEX_ADDR_TOP__IndexAddrTop__SHIFT 0x0
+#define CAM_TARGET_INDEX_ADDR_TOP__IndexAddrTop_MASK 0xFFFFFFFFL
+//CAM_TARGET_INDEX_DATA
+#define CAM_TARGET_INDEX_DATA__IndexData__SHIFT 0x0
+#define CAM_TARGET_INDEX_DATA__IndexData_MASK 0xFFFFFFFFL
+//CAM_TARGET_INDEX_DATA_MASK
+#define CAM_TARGET_INDEX_DATA_MASK__IndexDataMask__SHIFT 0x0
+#define CAM_TARGET_INDEX_DATA_MASK__IndexDataMask_MASK 0xFFFFFFFFL
+//CAM_TARGET_DATA_ADDR_BOTTOM
+#define CAM_TARGET_DATA_ADDR_BOTTOM__DataAddrBottom__SHIFT 0x0
+#define CAM_TARGET_DATA_ADDR_BOTTOM__DataAddrBottom_MASK 0xFFFFFFFFL
+//CAM_TARGET_DATA_ADDR_TOP
+#define CAM_TARGET_DATA_ADDR_TOP__DataAddrTop__SHIFT 0x0
+#define CAM_TARGET_DATA_ADDR_TOP__DataAddrTop_MASK 0xFFFFFFFFL
+//CAM_TARGET_DATA
+#define CAM_TARGET_DATA__Data__SHIFT 0x0
+#define CAM_TARGET_DATA__Data_MASK 0xFFFFFFFFL
+//CAM_TARGET_DATA_MASK
+#define CAM_TARGET_DATA_MASK__DataMask__SHIFT 0x0
+#define CAM_TARGET_DATA_MASK__DataMask_MASK 0xFFFFFFFFL
+//P_DMA_DROPPED_LOG_LOWER
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_0__SHIFT 0x0
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_1__SHIFT 0x1
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_2__SHIFT 0x2
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_3__SHIFT 0x3
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_4__SHIFT 0x4
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_5__SHIFT 0x5
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_6__SHIFT 0x6
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_7__SHIFT 0x7
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_8__SHIFT 0x8
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_9__SHIFT 0x9
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_10__SHIFT 0xa
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_11__SHIFT 0xb
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_12__SHIFT 0xc
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_13__SHIFT 0xd
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_14__SHIFT 0xe
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_15__SHIFT 0xf
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_16__SHIFT 0x10
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_17__SHIFT 0x11
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_18__SHIFT 0x12
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_19__SHIFT 0x13
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_20__SHIFT 0x14
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_21__SHIFT 0x15
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_22__SHIFT 0x16
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_23__SHIFT 0x17
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_24__SHIFT 0x18
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_25__SHIFT 0x19
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_26__SHIFT 0x1a
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_27__SHIFT 0x1b
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_28__SHIFT 0x1c
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_29__SHIFT 0x1d
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_30__SHIFT 0x1e
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_31__SHIFT 0x1f
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_0_MASK 0x00000001L
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_1_MASK 0x00000002L
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_2_MASK 0x00000004L
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_3_MASK 0x00000008L
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_4_MASK 0x00000010L
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_5_MASK 0x00000020L
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_6_MASK 0x00000040L
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_7_MASK 0x00000080L
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_8_MASK 0x00000100L
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_9_MASK 0x00000200L
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_10_MASK 0x00000400L
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_11_MASK 0x00000800L
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_12_MASK 0x00001000L
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_13_MASK 0x00002000L
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_14_MASK 0x00004000L
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_15_MASK 0x00008000L
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_16_MASK 0x00010000L
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_17_MASK 0x00020000L
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_18_MASK 0x00040000L
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_19_MASK 0x00080000L
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_20_MASK 0x00100000L
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_21_MASK 0x00200000L
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_22_MASK 0x00400000L
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_23_MASK 0x00800000L
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_24_MASK 0x01000000L
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_25_MASK 0x02000000L
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_26_MASK 0x04000000L
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_27_MASK 0x08000000L
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_28_MASK 0x10000000L
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_29_MASK 0x20000000L
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_30_MASK 0x40000000L
+#define P_DMA_DROPPED_LOG_LOWER__P_DMA_DROPPED_LOG_LOWER_31_MASK 0x80000000L
+//P_DMA_DROPPED_LOG_UPPER
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_0__SHIFT 0x0
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_1__SHIFT 0x1
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_2__SHIFT 0x2
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_3__SHIFT 0x3
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_4__SHIFT 0x4
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_5__SHIFT 0x5
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_6__SHIFT 0x6
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_7__SHIFT 0x7
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_8__SHIFT 0x8
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_9__SHIFT 0x9
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_10__SHIFT 0xa
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_11__SHIFT 0xb
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_12__SHIFT 0xc
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_13__SHIFT 0xd
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_14__SHIFT 0xe
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_15__SHIFT 0xf
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_16__SHIFT 0x10
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_17__SHIFT 0x11
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_18__SHIFT 0x12
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_19__SHIFT 0x13
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_20__SHIFT 0x14
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_21__SHIFT 0x15
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_22__SHIFT 0x16
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_23__SHIFT 0x17
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_24__SHIFT 0x18
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_25__SHIFT 0x19
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_26__SHIFT 0x1a
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_27__SHIFT 0x1b
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_28__SHIFT 0x1c
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_29__SHIFT 0x1d
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_30__SHIFT 0x1e
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_31__SHIFT 0x1f
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_0_MASK 0x00000001L
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_1_MASK 0x00000002L
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_2_MASK 0x00000004L
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_3_MASK 0x00000008L
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_4_MASK 0x00000010L
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_5_MASK 0x00000020L
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_6_MASK 0x00000040L
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_7_MASK 0x00000080L
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_8_MASK 0x00000100L
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_9_MASK 0x00000200L
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_10_MASK 0x00000400L
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_11_MASK 0x00000800L
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_12_MASK 0x00001000L
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_13_MASK 0x00002000L
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_14_MASK 0x00004000L
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_15_MASK 0x00008000L
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_16_MASK 0x00010000L
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_17_MASK 0x00020000L
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_18_MASK 0x00040000L
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_19_MASK 0x00080000L
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_20_MASK 0x00100000L
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_21_MASK 0x00200000L
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_22_MASK 0x00400000L
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_23_MASK 0x00800000L
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_24_MASK 0x01000000L
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_25_MASK 0x02000000L
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_26_MASK 0x04000000L
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_27_MASK 0x08000000L
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_28_MASK 0x10000000L
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_29_MASK 0x20000000L
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_30_MASK 0x40000000L
+#define P_DMA_DROPPED_LOG_UPPER__P_DMA_DROPPED_LOG_UPPER_31_MASK 0x80000000L
+//NP_DMA_DROPPED_LOG_LOWER
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_0__SHIFT 0x0
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_1__SHIFT 0x1
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_2__SHIFT 0x2
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_3__SHIFT 0x3
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_4__SHIFT 0x4
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_5__SHIFT 0x5
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_6__SHIFT 0x6
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_7__SHIFT 0x7
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_8__SHIFT 0x8
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_9__SHIFT 0x9
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_10__SHIFT 0xa
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_11__SHIFT 0xb
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_12__SHIFT 0xc
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_13__SHIFT 0xd
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_14__SHIFT 0xe
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_15__SHIFT 0xf
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_16__SHIFT 0x10
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_17__SHIFT 0x11
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_18__SHIFT 0x12
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_19__SHIFT 0x13
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_20__SHIFT 0x14
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_21__SHIFT 0x15
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_22__SHIFT 0x16
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_23__SHIFT 0x17
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_24__SHIFT 0x18
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_25__SHIFT 0x19
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_26__SHIFT 0x1a
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_27__SHIFT 0x1b
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_28__SHIFT 0x1c
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_29__SHIFT 0x1d
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_30__SHIFT 0x1e
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_31__SHIFT 0x1f
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_0_MASK 0x00000001L
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_1_MASK 0x00000002L
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_2_MASK 0x00000004L
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_3_MASK 0x00000008L
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_4_MASK 0x00000010L
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_5_MASK 0x00000020L
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_6_MASK 0x00000040L
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_7_MASK 0x00000080L
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_8_MASK 0x00000100L
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_9_MASK 0x00000200L
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_10_MASK 0x00000400L
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_11_MASK 0x00000800L
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_12_MASK 0x00001000L
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_13_MASK 0x00002000L
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_14_MASK 0x00004000L
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_15_MASK 0x00008000L
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_16_MASK 0x00010000L
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_17_MASK 0x00020000L
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_18_MASK 0x00040000L
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_19_MASK 0x00080000L
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_20_MASK 0x00100000L
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_21_MASK 0x00200000L
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_22_MASK 0x00400000L
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_23_MASK 0x00800000L
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_24_MASK 0x01000000L
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_25_MASK 0x02000000L
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_26_MASK 0x04000000L
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_27_MASK 0x08000000L
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_28_MASK 0x10000000L
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_29_MASK 0x20000000L
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_30_MASK 0x40000000L
+#define NP_DMA_DROPPED_LOG_LOWER__NP_DMA_DROPPED_LOG_LOWER_31_MASK 0x80000000L
+//NP_DMA_DROPPED_LOG_UPPER
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_0__SHIFT 0x0
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_1__SHIFT 0x1
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_2__SHIFT 0x2
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_3__SHIFT 0x3
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_4__SHIFT 0x4
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_5__SHIFT 0x5
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_6__SHIFT 0x6
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_7__SHIFT 0x7
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_8__SHIFT 0x8
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_9__SHIFT 0x9
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_10__SHIFT 0xa
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_11__SHIFT 0xb
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_12__SHIFT 0xc
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_13__SHIFT 0xd
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_14__SHIFT 0xe
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_15__SHIFT 0xf
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_16__SHIFT 0x10
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_17__SHIFT 0x11
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_18__SHIFT 0x12
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_19__SHIFT 0x13
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_20__SHIFT 0x14
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_21__SHIFT 0x15
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_22__SHIFT 0x16
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_23__SHIFT 0x17
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_24__SHIFT 0x18
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_25__SHIFT 0x19
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_26__SHIFT 0x1a
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_27__SHIFT 0x1b
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_28__SHIFT 0x1c
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_29__SHIFT 0x1d
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_30__SHIFT 0x1e
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_31__SHIFT 0x1f
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_0_MASK 0x00000001L
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_1_MASK 0x00000002L
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_2_MASK 0x00000004L
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_3_MASK 0x00000008L
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_4_MASK 0x00000010L
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_5_MASK 0x00000020L
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_6_MASK 0x00000040L
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_7_MASK 0x00000080L
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_8_MASK 0x00000100L
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_9_MASK 0x00000200L
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_10_MASK 0x00000400L
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_11_MASK 0x00000800L
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_12_MASK 0x00001000L
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_13_MASK 0x00002000L
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_14_MASK 0x00004000L
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_15_MASK 0x00008000L
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_16_MASK 0x00010000L
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_17_MASK 0x00020000L
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_18_MASK 0x00040000L
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_19_MASK 0x00080000L
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_20_MASK 0x00100000L
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_21_MASK 0x00200000L
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_22_MASK 0x00400000L
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_23_MASK 0x00800000L
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_24_MASK 0x01000000L
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_25_MASK 0x02000000L
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_26_MASK 0x04000000L
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_27_MASK 0x08000000L
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_28_MASK 0x10000000L
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_29_MASK 0x20000000L
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_30_MASK 0x40000000L
+#define NP_DMA_DROPPED_LOG_UPPER__NP_DMA_DROPPED_LOG_UPPER_31_MASK 0x80000000L
+//PCIE_VDM_NODE0_CTRL4
+#define PCIE_VDM_NODE0_CTRL4__BUS_RANGE_BASE__SHIFT 0x0
+#define PCIE_VDM_NODE0_CTRL4__BUS_RANGE_LIMIT__SHIFT 0x8
+#define PCIE_VDM_NODE0_CTRL4__NODE0_PRESENT__SHIFT 0x1f
+#define PCIE_VDM_NODE0_CTRL4__BUS_RANGE_BASE_MASK 0x000000FFL
+#define PCIE_VDM_NODE0_CTRL4__BUS_RANGE_LIMIT_MASK 0x0000FF00L
+#define PCIE_VDM_NODE0_CTRL4__NODE0_PRESENT_MASK 0x80000000L
+//PCIE_VDM_CNTL2
+#define PCIE_VDM_CNTL2__VdmP2pMode__SHIFT 0x0
+#define PCIE_VDM_CNTL2__MCTPEndpointEn__SHIFT 0x2
+#define PCIE_VDM_CNTL2__MCTPMultiSegEn__SHIFT 0x3
+#define PCIE_VDM_CNTL2__MCTPT2SMUEn__SHIFT 0x4
+#define PCIE_VDM_CNTL2__AMDVDM2SMUEn__SHIFT 0x5
+#define PCIE_VDM_CNTL2__OtherVDM2SMUEn__SHIFT 0x6
+#define PCIE_VDM_CNTL2__RouteAllToMCTPMaster__SHIFT 0x7
+#define PCIE_VDM_CNTL2__MCTPMasterSeg__SHIFT 0x8
+#define PCIE_VDM_CNTL2__MCTPMasterID__SHIFT 0x10
+#define PCIE_VDM_CNTL2__VdmP2pMode_MASK 0x00000003L
+#define PCIE_VDM_CNTL2__MCTPEndpointEn_MASK 0x00000004L
+#define PCIE_VDM_CNTL2__MCTPMultiSegEn_MASK 0x00000008L
+#define PCIE_VDM_CNTL2__MCTPT2SMUEn_MASK 0x00000010L
+#define PCIE_VDM_CNTL2__AMDVDM2SMUEn_MASK 0x00000020L
+#define PCIE_VDM_CNTL2__OtherVDM2SMUEn_MASK 0x00000040L
+#define PCIE_VDM_CNTL2__RouteAllToMCTPMaster_MASK 0x00000080L
+#define PCIE_VDM_CNTL2__MCTPMasterSeg_MASK 0x0000FF00L
+#define PCIE_VDM_CNTL2__MCTPMasterID_MASK 0xFFFF0000L
+//PCIE_VDM_CNTL3
+#define PCIE_VDM_CNTL3__APMTPMasterValid__SHIFT 0xf
+#define PCIE_VDM_CNTL3__APMTPMasterID__SHIFT 0x10
+#define PCIE_VDM_CNTL3__APMTPMasterValid_MASK 0x00008000L
+#define PCIE_VDM_CNTL3__APMTPMasterID_MASK 0xFFFF0000L
+//STALL_CONTROL_XBARPORT0_0
+#define STALL_CONTROL_XBARPORT0_0__StallVC0ReqEn__SHIFT 0x0
+#define STALL_CONTROL_XBARPORT0_0__StallVC1ReqEn__SHIFT 0x4
+#define STALL_CONTROL_XBARPORT0_0__StallVC2ReqEn__SHIFT 0x8
+#define STALL_CONTROL_XBARPORT0_0__StallVC3ReqEn__SHIFT 0xc
+#define STALL_CONTROL_XBARPORT0_0__StallVC4ReqEn__SHIFT 0x10
+#define STALL_CONTROL_XBARPORT0_0__StallVC5ReqEn__SHIFT 0x14
+#define STALL_CONTROL_XBARPORT0_0__StallVC7ReqEn__SHIFT 0x1c
+#define STALL_CONTROL_XBARPORT0_0__StallVC0ReqEn_MASK 0x00000003L
+#define STALL_CONTROL_XBARPORT0_0__StallVC1ReqEn_MASK 0x00000030L
+#define STALL_CONTROL_XBARPORT0_0__StallVC2ReqEn_MASK 0x00000300L
+#define STALL_CONTROL_XBARPORT0_0__StallVC3ReqEn_MASK 0x00003000L
+#define STALL_CONTROL_XBARPORT0_0__StallVC4ReqEn_MASK 0x00030000L
+#define STALL_CONTROL_XBARPORT0_0__StallVC5ReqEn_MASK 0x00300000L
+#define STALL_CONTROL_XBARPORT0_0__StallVC7ReqEn_MASK 0x30000000L
+//STALL_CONTROL_XBARPORT0_1
+#define STALL_CONTROL_XBARPORT0_1__StallVC0RspEn__SHIFT 0x0
+#define STALL_CONTROL_XBARPORT0_1__StallVC1RspEn__SHIFT 0x4
+#define STALL_CONTROL_XBARPORT0_1__StallVC2RspEn__SHIFT 0x8
+#define STALL_CONTROL_XBARPORT0_1__StallVC3RspEn__SHIFT 0xc
+#define STALL_CONTROL_XBARPORT0_1__StallVC4RspEn__SHIFT 0x10
+#define STALL_CONTROL_XBARPORT0_1__StallVC5RspEn__SHIFT 0x14
+#define STALL_CONTROL_XBARPORT0_1__StallVC7RspEn__SHIFT 0x1c
+#define STALL_CONTROL_XBARPORT0_1__StallVC0RspEn_MASK 0x00000003L
+#define STALL_CONTROL_XBARPORT0_1__StallVC1RspEn_MASK 0x00000030L
+#define STALL_CONTROL_XBARPORT0_1__StallVC2RspEn_MASK 0x00000300L
+#define STALL_CONTROL_XBARPORT0_1__StallVC3RspEn_MASK 0x00003000L
+#define STALL_CONTROL_XBARPORT0_1__StallVC4RspEn_MASK 0x00030000L
+#define STALL_CONTROL_XBARPORT0_1__StallVC5RspEn_MASK 0x00300000L
+#define STALL_CONTROL_XBARPORT0_1__StallVC7RspEn_MASK 0x30000000L
+//STALL_CONTROL_XBARPORT1_0
+#define STALL_CONTROL_XBARPORT1_0__StallVC0ReqEn__SHIFT 0x0
+#define STALL_CONTROL_XBARPORT1_0__StallVC1ReqEn__SHIFT 0x4
+#define STALL_CONTROL_XBARPORT1_0__StallVC2ReqEn__SHIFT 0x8
+#define STALL_CONTROL_XBARPORT1_0__StallVC3ReqEn__SHIFT 0xc
+#define STALL_CONTROL_XBARPORT1_0__StallVC4ReqEn__SHIFT 0x10
+#define STALL_CONTROL_XBARPORT1_0__StallVC5ReqEn__SHIFT 0x14
+#define STALL_CONTROL_XBARPORT1_0__StallVC7ReqEn__SHIFT 0x1c
+#define STALL_CONTROL_XBARPORT1_0__StallVC0ReqEn_MASK 0x00000003L
+#define STALL_CONTROL_XBARPORT1_0__StallVC1ReqEn_MASK 0x00000030L
+#define STALL_CONTROL_XBARPORT1_0__StallVC2ReqEn_MASK 0x00000300L
+#define STALL_CONTROL_XBARPORT1_0__StallVC3ReqEn_MASK 0x00003000L
+#define STALL_CONTROL_XBARPORT1_0__StallVC4ReqEn_MASK 0x00030000L
+#define STALL_CONTROL_XBARPORT1_0__StallVC5ReqEn_MASK 0x00300000L
+#define STALL_CONTROL_XBARPORT1_0__StallVC7ReqEn_MASK 0x30000000L
+//STALL_CONTROL_XBARPORT1_1
+#define STALL_CONTROL_XBARPORT1_1__StallVC0RspEn__SHIFT 0x0
+#define STALL_CONTROL_XBARPORT1_1__StallVC1RspEn__SHIFT 0x4
+#define STALL_CONTROL_XBARPORT1_1__StallVC2RspEn__SHIFT 0x8
+#define STALL_CONTROL_XBARPORT1_1__StallVC3RspEn__SHIFT 0xc
+#define STALL_CONTROL_XBARPORT1_1__StallVC4RspEn__SHIFT 0x10
+#define STALL_CONTROL_XBARPORT1_1__StallVC5RspEn__SHIFT 0x14
+#define STALL_CONTROL_XBARPORT1_1__StallVC7RspEn__SHIFT 0x1c
+#define STALL_CONTROL_XBARPORT1_1__StallVC0RspEn_MASK 0x00000003L
+#define STALL_CONTROL_XBARPORT1_1__StallVC1RspEn_MASK 0x00000030L
+#define STALL_CONTROL_XBARPORT1_1__StallVC2RspEn_MASK 0x00000300L
+#define STALL_CONTROL_XBARPORT1_1__StallVC3RspEn_MASK 0x00003000L
+#define STALL_CONTROL_XBARPORT1_1__StallVC4RspEn_MASK 0x00030000L
+#define STALL_CONTROL_XBARPORT1_1__StallVC5RspEn_MASK 0x00300000L
+#define STALL_CONTROL_XBARPORT1_1__StallVC7RspEn_MASK 0x30000000L
+//STALL_CONTROL_XBARPORT2_0
+#define STALL_CONTROL_XBARPORT2_0__StallVC0ReqEn__SHIFT 0x0
+#define STALL_CONTROL_XBARPORT2_0__StallVC1ReqEn__SHIFT 0x4
+#define STALL_CONTROL_XBARPORT2_0__StallVC2ReqEn__SHIFT 0x8
+#define STALL_CONTROL_XBARPORT2_0__StallVC3ReqEn__SHIFT 0xc
+#define STALL_CONTROL_XBARPORT2_0__StallVC4ReqEn__SHIFT 0x10
+#define STALL_CONTROL_XBARPORT2_0__StallVC5ReqEn__SHIFT 0x14
+#define STALL_CONTROL_XBARPORT2_0__StallVC7ReqEn__SHIFT 0x1c
+#define STALL_CONTROL_XBARPORT2_0__StallVC0ReqEn_MASK 0x00000003L
+#define STALL_CONTROL_XBARPORT2_0__StallVC1ReqEn_MASK 0x00000030L
+#define STALL_CONTROL_XBARPORT2_0__StallVC2ReqEn_MASK 0x00000300L
+#define STALL_CONTROL_XBARPORT2_0__StallVC3ReqEn_MASK 0x00003000L
+#define STALL_CONTROL_XBARPORT2_0__StallVC4ReqEn_MASK 0x00030000L
+#define STALL_CONTROL_XBARPORT2_0__StallVC5ReqEn_MASK 0x00300000L
+#define STALL_CONTROL_XBARPORT2_0__StallVC7ReqEn_MASK 0x30000000L
+//STALL_CONTROL_XBARPORT2_1
+#define STALL_CONTROL_XBARPORT2_1__StallVC0RspEn__SHIFT 0x0
+#define STALL_CONTROL_XBARPORT2_1__StallVC1RspEn__SHIFT 0x4
+#define STALL_CONTROL_XBARPORT2_1__StallVC2RspEn__SHIFT 0x8
+#define STALL_CONTROL_XBARPORT2_1__StallVC3RspEn__SHIFT 0xc
+#define STALL_CONTROL_XBARPORT2_1__StallVC4RspEn__SHIFT 0x10
+#define STALL_CONTROL_XBARPORT2_1__StallVC5RspEn__SHIFT 0x14
+#define STALL_CONTROL_XBARPORT2_1__StallVC7RspEn__SHIFT 0x1c
+#define STALL_CONTROL_XBARPORT2_1__StallVC0RspEn_MASK 0x00000003L
+#define STALL_CONTROL_XBARPORT2_1__StallVC1RspEn_MASK 0x00000030L
+#define STALL_CONTROL_XBARPORT2_1__StallVC2RspEn_MASK 0x00000300L
+#define STALL_CONTROL_XBARPORT2_1__StallVC3RspEn_MASK 0x00003000L
+#define STALL_CONTROL_XBARPORT2_1__StallVC4RspEn_MASK 0x00030000L
+#define STALL_CONTROL_XBARPORT2_1__StallVC5RspEn_MASK 0x00300000L
+#define STALL_CONTROL_XBARPORT2_1__StallVC7RspEn_MASK 0x30000000L
+//STALL_CONTROL_XBARPORT3_0
+#define STALL_CONTROL_XBARPORT3_0__StallVC0ReqEn__SHIFT 0x0
+#define STALL_CONTROL_XBARPORT3_0__StallVC1ReqEn__SHIFT 0x4
+#define STALL_CONTROL_XBARPORT3_0__StallVC2ReqEn__SHIFT 0x8
+#define STALL_CONTROL_XBARPORT3_0__StallVC3ReqEn__SHIFT 0xc
+#define STALL_CONTROL_XBARPORT3_0__StallVC4ReqEn__SHIFT 0x10
+#define STALL_CONTROL_XBARPORT3_0__StallVC5ReqEn__SHIFT 0x14
+#define STALL_CONTROL_XBARPORT3_0__StallVC7ReqEn__SHIFT 0x1c
+#define STALL_CONTROL_XBARPORT3_0__StallVC0ReqEn_MASK 0x00000003L
+#define STALL_CONTROL_XBARPORT3_0__StallVC1ReqEn_MASK 0x00000030L
+#define STALL_CONTROL_XBARPORT3_0__StallVC2ReqEn_MASK 0x00000300L
+#define STALL_CONTROL_XBARPORT3_0__StallVC3ReqEn_MASK 0x00003000L
+#define STALL_CONTROL_XBARPORT3_0__StallVC4ReqEn_MASK 0x00030000L
+#define STALL_CONTROL_XBARPORT3_0__StallVC5ReqEn_MASK 0x00300000L
+#define STALL_CONTROL_XBARPORT3_0__StallVC7ReqEn_MASK 0x30000000L
+//STALL_CONTROL_XBARPORT3_1
+#define STALL_CONTROL_XBARPORT3_1__StallVC0RspEn__SHIFT 0x0
+#define STALL_CONTROL_XBARPORT3_1__StallVC1RspEn__SHIFT 0x4
+#define STALL_CONTROL_XBARPORT3_1__StallVC2RspEn__SHIFT 0x8
+#define STALL_CONTROL_XBARPORT3_1__StallVC3RspEn__SHIFT 0xc
+#define STALL_CONTROL_XBARPORT3_1__StallVC4RspEn__SHIFT 0x10
+#define STALL_CONTROL_XBARPORT3_1__StallVC5RspEn__SHIFT 0x14
+#define STALL_CONTROL_XBARPORT3_1__StallVC7RspEn__SHIFT 0x1c
+#define STALL_CONTROL_XBARPORT3_1__StallVC0RspEn_MASK 0x00000003L
+#define STALL_CONTROL_XBARPORT3_1__StallVC1RspEn_MASK 0x00000030L
+#define STALL_CONTROL_XBARPORT3_1__StallVC2RspEn_MASK 0x00000300L
+#define STALL_CONTROL_XBARPORT3_1__StallVC3RspEn_MASK 0x00003000L
+#define STALL_CONTROL_XBARPORT3_1__StallVC4RspEn_MASK 0x00030000L
+#define STALL_CONTROL_XBARPORT3_1__StallVC5RspEn_MASK 0x00300000L
+#define STALL_CONTROL_XBARPORT3_1__StallVC7RspEn_MASK 0x30000000L
+//STALL_CONTROL_XBARPORT4_0
+#define STALL_CONTROL_XBARPORT4_0__StallVC0ReqEn__SHIFT 0x0
+#define STALL_CONTROL_XBARPORT4_0__StallVC1ReqEn__SHIFT 0x4
+#define STALL_CONTROL_XBARPORT4_0__StallVC2ReqEn__SHIFT 0x8
+#define STALL_CONTROL_XBARPORT4_0__StallVC3ReqEn__SHIFT 0xc
+#define STALL_CONTROL_XBARPORT4_0__StallVC4ReqEn__SHIFT 0x10
+#define STALL_CONTROL_XBARPORT4_0__StallVC5ReqEn__SHIFT 0x14
+#define STALL_CONTROL_XBARPORT4_0__StallVC7ReqEn__SHIFT 0x1c
+#define STALL_CONTROL_XBARPORT4_0__StallVC0ReqEn_MASK 0x00000003L
+#define STALL_CONTROL_XBARPORT4_0__StallVC1ReqEn_MASK 0x00000030L
+#define STALL_CONTROL_XBARPORT4_0__StallVC2ReqEn_MASK 0x00000300L
+#define STALL_CONTROL_XBARPORT4_0__StallVC3ReqEn_MASK 0x00003000L
+#define STALL_CONTROL_XBARPORT4_0__StallVC4ReqEn_MASK 0x00030000L
+#define STALL_CONTROL_XBARPORT4_0__StallVC5ReqEn_MASK 0x00300000L
+#define STALL_CONTROL_XBARPORT4_0__StallVC7ReqEn_MASK 0x30000000L
+//STALL_CONTROL_XBARPORT4_1
+#define STALL_CONTROL_XBARPORT4_1__StallVC0RspEn__SHIFT 0x0
+#define STALL_CONTROL_XBARPORT4_1__StallVC1RspEn__SHIFT 0x4
+#define STALL_CONTROL_XBARPORT4_1__StallVC2RspEn__SHIFT 0x8
+#define STALL_CONTROL_XBARPORT4_1__StallVC3RspEn__SHIFT 0xc
+#define STALL_CONTROL_XBARPORT4_1__StallVC4RspEn__SHIFT 0x10
+#define STALL_CONTROL_XBARPORT4_1__StallVC5RspEn__SHIFT 0x14
+#define STALL_CONTROL_XBARPORT4_1__StallVC7RspEn__SHIFT 0x1c
+#define STALL_CONTROL_XBARPORT4_1__StallVC0RspEn_MASK 0x00000003L
+#define STALL_CONTROL_XBARPORT4_1__StallVC1RspEn_MASK 0x00000030L
+#define STALL_CONTROL_XBARPORT4_1__StallVC2RspEn_MASK 0x00000300L
+#define STALL_CONTROL_XBARPORT4_1__StallVC3RspEn_MASK 0x00003000L
+#define STALL_CONTROL_XBARPORT4_1__StallVC4RspEn_MASK 0x00030000L
+#define STALL_CONTROL_XBARPORT4_1__StallVC5RspEn_MASK 0x00300000L
+#define STALL_CONTROL_XBARPORT4_1__StallVC7RspEn_MASK 0x30000000L
+//STALL_CONTROL_XBARPORT5_0
+#define STALL_CONTROL_XBARPORT5_0__StallVC0ReqEn__SHIFT 0x0
+#define STALL_CONTROL_XBARPORT5_0__StallVC1ReqEn__SHIFT 0x4
+#define STALL_CONTROL_XBARPORT5_0__StallVC2ReqEn__SHIFT 0x8
+#define STALL_CONTROL_XBARPORT5_0__StallVC3ReqEn__SHIFT 0xc
+#define STALL_CONTROL_XBARPORT5_0__StallVC4ReqEn__SHIFT 0x10
+#define STALL_CONTROL_XBARPORT5_0__StallVC5ReqEn__SHIFT 0x14
+#define STALL_CONTROL_XBARPORT5_0__StallVC7ReqEn__SHIFT 0x1c
+#define STALL_CONTROL_XBARPORT5_0__StallVC0ReqEn_MASK 0x00000003L
+#define STALL_CONTROL_XBARPORT5_0__StallVC1ReqEn_MASK 0x00000030L
+#define STALL_CONTROL_XBARPORT5_0__StallVC2ReqEn_MASK 0x00000300L
+#define STALL_CONTROL_XBARPORT5_0__StallVC3ReqEn_MASK 0x00003000L
+#define STALL_CONTROL_XBARPORT5_0__StallVC4ReqEn_MASK 0x00030000L
+#define STALL_CONTROL_XBARPORT5_0__StallVC5ReqEn_MASK 0x00300000L
+#define STALL_CONTROL_XBARPORT5_0__StallVC7ReqEn_MASK 0x30000000L
+//STALL_CONTROL_XBARPORT5_1
+#define STALL_CONTROL_XBARPORT5_1__StallVC0RspEn__SHIFT 0x0
+#define STALL_CONTROL_XBARPORT5_1__StallVC1RspEn__SHIFT 0x4
+#define STALL_CONTROL_XBARPORT5_1__StallVC2RspEn__SHIFT 0x8
+#define STALL_CONTROL_XBARPORT5_1__StallVC3RspEn__SHIFT 0xc
+#define STALL_CONTROL_XBARPORT5_1__StallVC4RspEn__SHIFT 0x10
+#define STALL_CONTROL_XBARPORT5_1__StallVC5RspEn__SHIFT 0x14
+#define STALL_CONTROL_XBARPORT5_1__StallVC7RspEn__SHIFT 0x1c
+#define STALL_CONTROL_XBARPORT5_1__StallVC0RspEn_MASK 0x00000003L
+#define STALL_CONTROL_XBARPORT5_1__StallVC1RspEn_MASK 0x00000030L
+#define STALL_CONTROL_XBARPORT5_1__StallVC2RspEn_MASK 0x00000300L
+#define STALL_CONTROL_XBARPORT5_1__StallVC3RspEn_MASK 0x00003000L
+#define STALL_CONTROL_XBARPORT5_1__StallVC4RspEn_MASK 0x00030000L
+#define STALL_CONTROL_XBARPORT5_1__StallVC5RspEn_MASK 0x00300000L
+#define STALL_CONTROL_XBARPORT5_1__StallVC7RspEn_MASK 0x30000000L
+//NB_DRAM3_BASE
+#define NB_DRAM3_BASE__DRAM3_BASE__SHIFT 0x0
+#define NB_DRAM3_BASE__DRAM3_BASE_MASK 0x3FFFFFFFL
+//PSP_BASE_ADDR_LO
+#define PSP_BASE_ADDR_LO__PSP_MMIO_EN__SHIFT 0x0
+#define PSP_BASE_ADDR_LO__PSP_MMIO_LOCK__SHIFT 0x8
+#define PSP_BASE_ADDR_LO__PSP_BASE_ADDR_LO__SHIFT 0x14
+#define PSP_BASE_ADDR_LO__PSP_MMIO_EN_MASK 0x00000001L
+#define PSP_BASE_ADDR_LO__PSP_MMIO_LOCK_MASK 0x00000100L
+#define PSP_BASE_ADDR_LO__PSP_BASE_ADDR_LO_MASK 0xFFF00000L
+//PSP_BASE_ADDR_HI
+#define PSP_BASE_ADDR_HI__PSP_BASE_ADDR_HI__SHIFT 0x0
+#define PSP_BASE_ADDR_HI__PSP_BASE_ADDR_HI_MASK 0x0000FFFFL
+//SMU_BASE_ADDR_LO
+#define SMU_BASE_ADDR_LO__SMU_MMIO_EN__SHIFT 0x0
+#define SMU_BASE_ADDR_LO__SMU_MMIO_LOCK__SHIFT 0x1
+#define SMU_BASE_ADDR_LO__SMU_BASE_ADDR_LO__SHIFT 0x14
+#define SMU_BASE_ADDR_LO__SMU_MMIO_EN_MASK 0x00000001L
+#define SMU_BASE_ADDR_LO__SMU_MMIO_LOCK_MASK 0x00000002L
+#define SMU_BASE_ADDR_LO__SMU_BASE_ADDR_LO_MASK 0xFFF00000L
+//SMU_BASE_ADDR_HI
+#define SMU_BASE_ADDR_HI__SMU_BASE_ADDR_HI__SHIFT 0x0
+#define SMU_BASE_ADDR_HI__SMU_BASE_ADDR_HI_MASK 0x0000FFFFL
+//SCRATCH_4
+#define SCRATCH_4__SCRATCH_4__SHIFT 0x0
+#define SCRATCH_4__SCRATCH_4_MASK 0xFFFFFFFFL
+//SCRATCH_5
+#define SCRATCH_5__SCRATCH_5__SHIFT 0x0
+#define SCRATCH_5__SCRATCH_5_MASK 0xFFFFFFFFL
+//SMU_BLOCK_CPU
+#define SMU_BLOCK_CPU__SMUBlockCPU_Valid__SHIFT 0x0
+#define SMU_BLOCK_CPU__SMUBlockCPU_Valid_MASK 0x00000001L
+//SMU_BLOCK_CPU_STATUS
+#define SMU_BLOCK_CPU_STATUS__SMUBlockCPU_Status__SHIFT 0x0
+#define SMU_BLOCK_CPU_STATUS__SMUBlockCPU_Status_MASK 0x00000001L
+//TRAP_STATUS
+#define TRAP_STATUS__TrapReqValid__SHIFT 0x0
+#define TRAP_STATUS__TrapNumber__SHIFT 0x8
+#define TRAP_STATUS__TrapS2Vld__SHIFT 0xc
+#define TRAP_STATUS__TrapS2Number__SHIFT 0x10
+#define TRAP_STATUS__TrapReqValid_MASK 0x00000001L
+#define TRAP_STATUS__TrapNumber_MASK 0x00000F00L
+#define TRAP_STATUS__TrapS2Vld_MASK 0x00001000L
+#define TRAP_STATUS__TrapS2Number_MASK 0x03FF0000L
+//TRAP_REQUEST0
+#define TRAP_REQUEST0__TrapReqAddrLo__SHIFT 0x2
+#define TRAP_REQUEST0__TrapReqAddrLo_MASK 0xFFFFFFFCL
+//TRAP_REQUEST1
+#define TRAP_REQUEST1__TrapReqAddrHi__SHIFT 0x0
+#define TRAP_REQUEST1__TrapReqAddrHi_MASK 0xFFFFFFFFL
+//TRAP_REQUEST2
+#define TRAP_REQUEST2__TrapReqCmd__SHIFT 0x0
+#define TRAP_REQUEST2__TrapAttr__SHIFT 0x8
+#define TRAP_REQUEST2__TrapReqLen__SHIFT 0x10
+#define TRAP_REQUEST2__TrapReqCmd_MASK 0x0000003FL
+#define TRAP_REQUEST2__TrapAttr_MASK 0x0000FF00L
+#define TRAP_REQUEST2__TrapReqLen_MASK 0x003F0000L
+//TRAP_REQUEST3
+#define TRAP_REQUEST3__TrapReqVC__SHIFT 0x0
+#define TRAP_REQUEST3__TrapReqBlockLevel__SHIFT 0x4
+#define TRAP_REQUEST3__TrapReqChain__SHIFT 0x6
+#define TRAP_REQUEST3__TrapReqIO__SHIFT 0x7
+#define TRAP_REQUEST3__TrapReqPassPW__SHIFT 0x8
+#define TRAP_REQUEST3__TrapReqRspPassPW__SHIFT 0x9
+#define TRAP_REQUEST3__TrapReqUnitID__SHIFT 0x10
+#define TRAP_REQUEST3__TrapReqVC_MASK 0x00000007L
+#define TRAP_REQUEST3__TrapReqBlockLevel_MASK 0x00000030L
+#define TRAP_REQUEST3__TrapReqChain_MASK 0x00000040L
+#define TRAP_REQUEST3__TrapReqIO_MASK 0x00000080L
+#define TRAP_REQUEST3__TrapReqPassPW_MASK 0x00000100L
+#define TRAP_REQUEST3__TrapReqRspPassPW_MASK 0x00000200L
+#define TRAP_REQUEST3__TrapReqUnitID_MASK 0x003F0000L
+//TRAP_REQUEST4
+#define TRAP_REQUEST4__TrapReqSecLevel__SHIFT 0x0
+#define TRAP_REQUEST4__TrapReqSecLevel_MASK 0x0000000FL
+//TRAP_REQUEST5
+#define TRAP_REQUEST5__TrapReqDataVC__SHIFT 0x0
+#define TRAP_REQUEST5__TrapReqDataErr__SHIFT 0x4
+#define TRAP_REQUEST5__TrapReqDataParity__SHIFT 0x8
+#define TRAP_REQUEST5__TrapReqDataVC_MASK 0x00000007L
+#define TRAP_REQUEST5__TrapReqDataErr_MASK 0x00000010L
+#define TRAP_REQUEST5__TrapReqDataParity_MASK 0x0000FF00L
+//TRAP_REQUEST_DATASTRB0
+#define TRAP_REQUEST_DATASTRB0__TrapReqDataBytEn0__SHIFT 0x0
+#define TRAP_REQUEST_DATASTRB0__TrapReqDataBytEn0_MASK 0xFFFFFFFFL
+//TRAP_REQUEST_DATASTRB1
+#define TRAP_REQUEST_DATASTRB1__TrapReqDataBytEn1__SHIFT 0x0
+#define TRAP_REQUEST_DATASTRB1__TrapReqDataBytEn1_MASK 0xFFFFFFFFL
+//TRAP_REQUEST_DATA0
+#define TRAP_REQUEST_DATA0__TrapReqData0__SHIFT 0x0
+#define TRAP_REQUEST_DATA0__TrapReqData0_MASK 0xFFFFFFFFL
+//TRAP_REQUEST_DATA1
+#define TRAP_REQUEST_DATA1__TrapReqData1__SHIFT 0x0
+#define TRAP_REQUEST_DATA1__TrapReqData1_MASK 0xFFFFFFFFL
+//TRAP_REQUEST_DATA2
+#define TRAP_REQUEST_DATA2__TrapReqData2__SHIFT 0x0
+#define TRAP_REQUEST_DATA2__TrapReqData2_MASK 0xFFFFFFFFL
+//TRAP_REQUEST_DATA3
+#define TRAP_REQUEST_DATA3__TrapReqData3__SHIFT 0x0
+#define TRAP_REQUEST_DATA3__TrapReqData3_MASK 0xFFFFFFFFL
+//TRAP_REQUEST_DATA4
+#define TRAP_REQUEST_DATA4__TrapReqData4__SHIFT 0x0
+#define TRAP_REQUEST_DATA4__TrapReqData4_MASK 0xFFFFFFFFL
+//TRAP_REQUEST_DATA5
+#define TRAP_REQUEST_DATA5__TrapReqData5__SHIFT 0x0
+#define TRAP_REQUEST_DATA5__TrapReqData5_MASK 0xFFFFFFFFL
+//TRAP_REQUEST_DATA6
+#define TRAP_REQUEST_DATA6__TrapReqData6__SHIFT 0x0
+#define TRAP_REQUEST_DATA6__TrapReqData6_MASK 0xFFFFFFFFL
+//TRAP_REQUEST_DATA7
+#define TRAP_REQUEST_DATA7__TrapReqData7__SHIFT 0x0
+#define TRAP_REQUEST_DATA7__TrapReqData7_MASK 0xFFFFFFFFL
+//TRAP_REQUEST_DATA8
+#define TRAP_REQUEST_DATA8__TrapReqData8__SHIFT 0x0
+#define TRAP_REQUEST_DATA8__TrapReqData8_MASK 0xFFFFFFFFL
+//TRAP_REQUEST_DATA9
+#define TRAP_REQUEST_DATA9__TrapReqData9__SHIFT 0x0
+#define TRAP_REQUEST_DATA9__TrapReqData9_MASK 0xFFFFFFFFL
+//TRAP_REQUEST_DATA10
+#define TRAP_REQUEST_DATA10__TrapReqData10__SHIFT 0x0
+#define TRAP_REQUEST_DATA10__TrapReqData10_MASK 0xFFFFFFFFL
+//TRAP_REQUEST_DATA11
+#define TRAP_REQUEST_DATA11__TrapReqData11__SHIFT 0x0
+#define TRAP_REQUEST_DATA11__TrapReqData11_MASK 0xFFFFFFFFL
+//TRAP_REQUEST_DATA12
+#define TRAP_REQUEST_DATA12__TrapReqData12__SHIFT 0x0
+#define TRAP_REQUEST_DATA12__TrapReqData12_MASK 0xFFFFFFFFL
+//TRAP_REQUEST_DATA13
+#define TRAP_REQUEST_DATA13__TrapReqData13__SHIFT 0x0
+#define TRAP_REQUEST_DATA13__TrapReqData13_MASK 0xFFFFFFFFL
+//TRAP_REQUEST_DATA14
+#define TRAP_REQUEST_DATA14__TrapReqData14__SHIFT 0x0
+#define TRAP_REQUEST_DATA14__TrapReqData14_MASK 0xFFFFFFFFL
+//TRAP_REQUEST_DATA15
+#define TRAP_REQUEST_DATA15__TrapReqData15__SHIFT 0x0
+#define TRAP_REQUEST_DATA15__TrapReqData15_MASK 0xFFFFFFFFL
+//TRAP_RESPONSE_CONTROL
+#define TRAP_RESPONSE_CONTROL__TrapRspTrigger__SHIFT 0x0
+#define TRAP_RESPONSE_CONTROL__TrapRspReqPassthru__SHIFT 0x1
+#define TRAP_RESPONSE_CONTROL__TrapRspTrigger_MASK 0x00000001L
+#define TRAP_RESPONSE_CONTROL__TrapRspReqPassthru_MASK 0x00000002L
+//TRAP_RESPONSE0
+#define TRAP_RESPONSE0__TrapRspPassPW__SHIFT 0x0
+#define TRAP_RESPONSE0__TrapRspStatus__SHIFT 0x4
+#define TRAP_RESPONSE0__TrapRspDataStatus__SHIFT 0x10
+#define TRAP_RESPONSE0__TrapRspPassPW_MASK 0x00000001L
+#define TRAP_RESPONSE0__TrapRspStatus_MASK 0x000000F0L
+#define TRAP_RESPONSE0__TrapRspDataStatus_MASK 0x00FF0000L
+//TRAP_RESPONSE_DATA0
+#define TRAP_RESPONSE_DATA0__TrapRdRspData0__SHIFT 0x0
+#define TRAP_RESPONSE_DATA0__TrapRdRspData0_MASK 0xFFFFFFFFL
+//TRAP_RESPONSE_DATA1
+#define TRAP_RESPONSE_DATA1__TrapRdRspData1__SHIFT 0x0
+#define TRAP_RESPONSE_DATA1__TrapRdRspData1_MASK 0xFFFFFFFFL
+//TRAP_RESPONSE_DATA2
+#define TRAP_RESPONSE_DATA2__TrapRdRspData2__SHIFT 0x0
+#define TRAP_RESPONSE_DATA2__TrapRdRspData2_MASK 0xFFFFFFFFL
+//TRAP_RESPONSE_DATA3
+#define TRAP_RESPONSE_DATA3__TrapRdRspData3__SHIFT 0x0
+#define TRAP_RESPONSE_DATA3__TrapRdRspData3_MASK 0xFFFFFFFFL
+//TRAP_RESPONSE_DATA4
+#define TRAP_RESPONSE_DATA4__TrapRdRspData4__SHIFT 0x0
+#define TRAP_RESPONSE_DATA4__TrapRdRspData4_MASK 0xFFFFFFFFL
+//TRAP_RESPONSE_DATA5
+#define TRAP_RESPONSE_DATA5__TrapRdRspData5__SHIFT 0x0
+#define TRAP_RESPONSE_DATA5__TrapRdRspData5_MASK 0xFFFFFFFFL
+//TRAP_RESPONSE_DATA6
+#define TRAP_RESPONSE_DATA6__TrapRdRspData6__SHIFT 0x0
+#define TRAP_RESPONSE_DATA6__TrapRdRspData6_MASK 0xFFFFFFFFL
+//TRAP_RESPONSE_DATA7
+#define TRAP_RESPONSE_DATA7__TrapRdRspData7__SHIFT 0x0
+#define TRAP_RESPONSE_DATA7__TrapRdRspData7_MASK 0xFFFFFFFFL
+//TRAP_RESPONSE_DATA8
+#define TRAP_RESPONSE_DATA8__TrapRdRspData8__SHIFT 0x0
+#define TRAP_RESPONSE_DATA8__TrapRdRspData8_MASK 0xFFFFFFFFL
+//TRAP_RESPONSE_DATA9
+#define TRAP_RESPONSE_DATA9__TrapRdRspData9__SHIFT 0x0
+#define TRAP_RESPONSE_DATA9__TrapRdRspData9_MASK 0xFFFFFFFFL
+//TRAP_RESPONSE_DATA10
+#define TRAP_RESPONSE_DATA10__TrapRdRspData10__SHIFT 0x0
+#define TRAP_RESPONSE_DATA10__TrapRdRspData10_MASK 0xFFFFFFFFL
+//TRAP_RESPONSE_DATA11
+#define TRAP_RESPONSE_DATA11__TrapRdRspData11__SHIFT 0x0
+#define TRAP_RESPONSE_DATA11__TrapRdRspData11_MASK 0xFFFFFFFFL
+//TRAP_RESPONSE_DATA12
+#define TRAP_RESPONSE_DATA12__TrapRdRspData12__SHIFT 0x0
+#define TRAP_RESPONSE_DATA12__TrapRdRspData12_MASK 0xFFFFFFFFL
+//TRAP_RESPONSE_DATA13
+#define TRAP_RESPONSE_DATA13__TrapRdRspData13__SHIFT 0x0
+#define TRAP_RESPONSE_DATA13__TrapRdRspData13_MASK 0xFFFFFFFFL
+//TRAP_RESPONSE_DATA14
+#define TRAP_RESPONSE_DATA14__TrapRdRspData14__SHIFT 0x0
+#define TRAP_RESPONSE_DATA14__TrapRdRspData14_MASK 0xFFFFFFFFL
+//TRAP_RESPONSE_DATA15
+#define TRAP_RESPONSE_DATA15__TrapRdRspData15__SHIFT 0x0
+#define TRAP_RESPONSE_DATA15__TrapRdRspData15_MASK 0xFFFFFFFFL
+//TRAP0_CONTROL0
+#define TRAP0_CONTROL0__Trap0En__SHIFT 0x0
+#define TRAP0_CONTROL0__Trap0SMUIntr__SHIFT 0x3
+#define TRAP0_CONTROL0__Trap0Stage2Ptr__SHIFT 0xe
+#define TRAP0_CONTROL0__Trap0CrossTrigger__SHIFT 0x18
+#define TRAP0_CONTROL0__Trap0Stage2En__SHIFT 0x1f
+#define TRAP0_CONTROL0__Trap0En_MASK 0x00000001L
+#define TRAP0_CONTROL0__Trap0SMUIntr_MASK 0x00000008L
+#define TRAP0_CONTROL0__Trap0Stage2Ptr_MASK 0x00FFC000L
+#define TRAP0_CONTROL0__Trap0CrossTrigger_MASK 0x0F000000L
+#define TRAP0_CONTROL0__Trap0Stage2En_MASK 0x80000000L
+//TRAP0_ADDRESS_LO
+#define TRAP0_ADDRESS_LO__Trap0AddrLo__SHIFT 0x2
+#define TRAP0_ADDRESS_LO__Trap0AddrLo_MASK 0xFFFFFFFCL
+//TRAP0_ADDRESS_HI
+#define TRAP0_ADDRESS_HI__Trap0AddrHi__SHIFT 0x0
+#define TRAP0_ADDRESS_HI__Trap0AddrHi_MASK 0xFFFFFFFFL
+//TRAP0_COMMAND
+#define TRAP0_COMMAND__Trap0Cmd0__SHIFT 0x0
+#define TRAP0_COMMAND__Trap0Cmd1__SHIFT 0x8
+#define TRAP0_COMMAND__Trap0Cmd0_MASK 0x0000003FL
+#define TRAP0_COMMAND__Trap0Cmd1_MASK 0x00003F00L
+//TRAP0_ADDRESS_LO_MASK
+#define TRAP0_ADDRESS_LO_MASK__Trap0AddrLoMask__SHIFT 0x2
+#define TRAP0_ADDRESS_LO_MASK__Trap0AddrLoMask_MASK 0xFFFFFFFCL
+//TRAP0_ADDRESS_HI_MASK
+#define TRAP0_ADDRESS_HI_MASK__Trap0AddrHiMask__SHIFT 0x0
+#define TRAP0_ADDRESS_HI_MASK__Trap0AddrHiMask_MASK 0xFFFFFFFFL
+//TRAP0_COMMAND_MASK
+#define TRAP0_COMMAND_MASK__Trap0Cmd0Mask__SHIFT 0x0
+#define TRAP0_COMMAND_MASK__Trap0Cmd1Mask__SHIFT 0x8
+#define TRAP0_COMMAND_MASK__Trap0Cmd0Mask_MASK 0x0000003FL
+#define TRAP0_COMMAND_MASK__Trap0Cmd1Mask_MASK 0x00003F00L
+//TRAP1_CONTROL0
+#define TRAP1_CONTROL0__Trap1En__SHIFT 0x0
+#define TRAP1_CONTROL0__Trap1SMUIntr__SHIFT 0x3
+#define TRAP1_CONTROL0__Trap1Stage2Ptr__SHIFT 0xe
+#define TRAP1_CONTROL0__Trap1CrossTrigger__SHIFT 0x18
+#define TRAP1_CONTROL0__Trap1Stage2En__SHIFT 0x1f
+#define TRAP1_CONTROL0__Trap1En_MASK 0x00000001L
+#define TRAP1_CONTROL0__Trap1SMUIntr_MASK 0x00000008L
+#define TRAP1_CONTROL0__Trap1Stage2Ptr_MASK 0x00FFC000L
+#define TRAP1_CONTROL0__Trap1CrossTrigger_MASK 0x0F000000L
+#define TRAP1_CONTROL0__Trap1Stage2En_MASK 0x80000000L
+//TRAP1_ADDRESS_LO
+#define TRAP1_ADDRESS_LO__Trap1AddrLo__SHIFT 0x2
+#define TRAP1_ADDRESS_LO__Trap1AddrLo_MASK 0xFFFFFFFCL
+//TRAP1_ADDRESS_HI
+#define TRAP1_ADDRESS_HI__Trap1AddrHi__SHIFT 0x0
+#define TRAP1_ADDRESS_HI__Trap1AddrHi_MASK 0xFFFFFFFFL
+//TRAP1_COMMAND
+#define TRAP1_COMMAND__Trap1Cmd0__SHIFT 0x0
+#define TRAP1_COMMAND__Trap1Cmd1__SHIFT 0x8
+#define TRAP1_COMMAND__Trap1Cmd0_MASK 0x0000003FL
+#define TRAP1_COMMAND__Trap1Cmd1_MASK 0x00003F00L
+//TRAP1_ADDRESS_LO_MASK
+#define TRAP1_ADDRESS_LO_MASK__Trap1AddrLoMask__SHIFT 0x2
+#define TRAP1_ADDRESS_LO_MASK__Trap1AddrLoMask_MASK 0xFFFFFFFCL
+//TRAP1_ADDRESS_HI_MASK
+#define TRAP1_ADDRESS_HI_MASK__Trap1AddrHiMask__SHIFT 0x0
+#define TRAP1_ADDRESS_HI_MASK__Trap1AddrHiMask_MASK 0xFFFFFFFFL
+//TRAP1_COMMAND_MASK
+#define TRAP1_COMMAND_MASK__Trap1Cmd0Mask__SHIFT 0x0
+#define TRAP1_COMMAND_MASK__Trap1Cmd1Mask__SHIFT 0x8
+#define TRAP1_COMMAND_MASK__Trap1Cmd0Mask_MASK 0x0000003FL
+#define TRAP1_COMMAND_MASK__Trap1Cmd1Mask_MASK 0x00003F00L
+//TRAP2_CONTROL0
+#define TRAP2_CONTROL0__Trap2En__SHIFT 0x0
+#define TRAP2_CONTROL0__Trap2SMUIntr__SHIFT 0x3
+#define TRAP2_CONTROL0__Trap2Stage2Ptr__SHIFT 0xe
+#define TRAP2_CONTROL0__Trap2CrossTrigger__SHIFT 0x18
+#define TRAP2_CONTROL0__Trap2Stage2En__SHIFT 0x1f
+#define TRAP2_CONTROL0__Trap2En_MASK 0x00000001L
+#define TRAP2_CONTROL0__Trap2SMUIntr_MASK 0x00000008L
+#define TRAP2_CONTROL0__Trap2Stage2Ptr_MASK 0x00FFC000L
+#define TRAP2_CONTROL0__Trap2CrossTrigger_MASK 0x0F000000L
+#define TRAP2_CONTROL0__Trap2Stage2En_MASK 0x80000000L
+//TRAP2_ADDRESS_LO
+#define TRAP2_ADDRESS_LO__Trap2AddrLo__SHIFT 0x2
+#define TRAP2_ADDRESS_LO__Trap2AddrLo_MASK 0xFFFFFFFCL
+//TRAP2_ADDRESS_HI
+#define TRAP2_ADDRESS_HI__Trap2AddrHi__SHIFT 0x0
+#define TRAP2_ADDRESS_HI__Trap2AddrHi_MASK 0xFFFFFFFFL
+//TRAP2_COMMAND
+#define TRAP2_COMMAND__Trap2Cmd0__SHIFT 0x0
+#define TRAP2_COMMAND__Trap2Cmd1__SHIFT 0x8
+#define TRAP2_COMMAND__Trap2Cmd0_MASK 0x0000003FL
+#define TRAP2_COMMAND__Trap2Cmd1_MASK 0x00003F00L
+//TRAP2_ADDRESS_LO_MASK
+#define TRAP2_ADDRESS_LO_MASK__Trap2AddrLoMask__SHIFT 0x2
+#define TRAP2_ADDRESS_LO_MASK__Trap2AddrLoMask_MASK 0xFFFFFFFCL
+//TRAP2_ADDRESS_HI_MASK
+#define TRAP2_ADDRESS_HI_MASK__Trap2AddrHiMask__SHIFT 0x0
+#define TRAP2_ADDRESS_HI_MASK__Trap2AddrHiMask_MASK 0xFFFFFFFFL
+//TRAP2_COMMAND_MASK
+#define TRAP2_COMMAND_MASK__Trap2Cmd0Mask__SHIFT 0x0
+#define TRAP2_COMMAND_MASK__Trap2Cmd1Mask__SHIFT 0x8
+#define TRAP2_COMMAND_MASK__Trap2Cmd0Mask_MASK 0x0000003FL
+#define TRAP2_COMMAND_MASK__Trap2Cmd1Mask_MASK 0x00003F00L
+//TRAP3_CONTROL0
+#define TRAP3_CONTROL0__Trap3En__SHIFT 0x0
+#define TRAP3_CONTROL0__Trap3SMUIntr__SHIFT 0x3
+#define TRAP3_CONTROL0__Trap3Stage2Ptr__SHIFT 0xe
+#define TRAP3_CONTROL0__Trap3CrossTrigger__SHIFT 0x18
+#define TRAP3_CONTROL0__Trap3Stage2En__SHIFT 0x1f
+#define TRAP3_CONTROL0__Trap3En_MASK 0x00000001L
+#define TRAP3_CONTROL0__Trap3SMUIntr_MASK 0x00000008L
+#define TRAP3_CONTROL0__Trap3Stage2Ptr_MASK 0x00FFC000L
+#define TRAP3_CONTROL0__Trap3CrossTrigger_MASK 0x0F000000L
+#define TRAP3_CONTROL0__Trap3Stage2En_MASK 0x80000000L
+//TRAP3_ADDRESS_LO
+#define TRAP3_ADDRESS_LO__Trap3AddrLo__SHIFT 0x2
+#define TRAP3_ADDRESS_LO__Trap3AddrLo_MASK 0xFFFFFFFCL
+//TRAP3_ADDRESS_HI
+#define TRAP3_ADDRESS_HI__Trap3AddrHi__SHIFT 0x0
+#define TRAP3_ADDRESS_HI__Trap3AddrHi_MASK 0xFFFFFFFFL
+//TRAP3_COMMAND
+#define TRAP3_COMMAND__Trap3Cmd0__SHIFT 0x0
+#define TRAP3_COMMAND__Trap3Cmd1__SHIFT 0x8
+#define TRAP3_COMMAND__Trap3Cmd0_MASK 0x0000003FL
+#define TRAP3_COMMAND__Trap3Cmd1_MASK 0x00003F00L
+//TRAP3_ADDRESS_LO_MASK
+#define TRAP3_ADDRESS_LO_MASK__Trap3AddrLoMask__SHIFT 0x2
+#define TRAP3_ADDRESS_LO_MASK__Trap3AddrLoMask_MASK 0xFFFFFFFCL
+//TRAP3_ADDRESS_HI_MASK
+#define TRAP3_ADDRESS_HI_MASK__Trap3AddrHiMask__SHIFT 0x0
+#define TRAP3_ADDRESS_HI_MASK__Trap3AddrHiMask_MASK 0xFFFFFFFFL
+//TRAP3_COMMAND_MASK
+#define TRAP3_COMMAND_MASK__Trap3Cmd0Mask__SHIFT 0x0
+#define TRAP3_COMMAND_MASK__Trap3Cmd1Mask__SHIFT 0x8
+#define TRAP3_COMMAND_MASK__Trap3Cmd0Mask_MASK 0x0000003FL
+#define TRAP3_COMMAND_MASK__Trap3Cmd1Mask_MASK 0x00003F00L
+//TRAP4_CONTROL0
+#define TRAP4_CONTROL0__Trap4En__SHIFT 0x0
+#define TRAP4_CONTROL0__Trap4SMUIntr__SHIFT 0x3
+#define TRAP4_CONTROL0__Trap4Stage2Ptr__SHIFT 0xe
+#define TRAP4_CONTROL0__Trap4CrossTrigger__SHIFT 0x18
+#define TRAP4_CONTROL0__Trap4Stage2En__SHIFT 0x1f
+#define TRAP4_CONTROL0__Trap4En_MASK 0x00000001L
+#define TRAP4_CONTROL0__Trap4SMUIntr_MASK 0x00000008L
+#define TRAP4_CONTROL0__Trap4Stage2Ptr_MASK 0x00FFC000L
+#define TRAP4_CONTROL0__Trap4CrossTrigger_MASK 0x0F000000L
+#define TRAP4_CONTROL0__Trap4Stage2En_MASK 0x80000000L
+//TRAP4_ADDRESS_LO
+#define TRAP4_ADDRESS_LO__Trap4AddrLo__SHIFT 0x2
+#define TRAP4_ADDRESS_LO__Trap4AddrLo_MASK 0xFFFFFFFCL
+//TRAP4_ADDRESS_HI
+#define TRAP4_ADDRESS_HI__Trap4AddrHi__SHIFT 0x0
+#define TRAP4_ADDRESS_HI__Trap4AddrHi_MASK 0xFFFFFFFFL
+//TRAP4_COMMAND
+#define TRAP4_COMMAND__Trap4Cmd0__SHIFT 0x0
+#define TRAP4_COMMAND__Trap4Cmd1__SHIFT 0x8
+#define TRAP4_COMMAND__Trap4Cmd0_MASK 0x0000003FL
+#define TRAP4_COMMAND__Trap4Cmd1_MASK 0x00003F00L
+//TRAP4_ADDRESS_LO_MASK
+#define TRAP4_ADDRESS_LO_MASK__Trap4AddrLoMask__SHIFT 0x2
+#define TRAP4_ADDRESS_LO_MASK__Trap4AddrLoMask_MASK 0xFFFFFFFCL
+//TRAP4_ADDRESS_HI_MASK
+#define TRAP4_ADDRESS_HI_MASK__Trap4AddrHiMask__SHIFT 0x0
+#define TRAP4_ADDRESS_HI_MASK__Trap4AddrHiMask_MASK 0xFFFFFFFFL
+//TRAP4_COMMAND_MASK
+#define TRAP4_COMMAND_MASK__Trap4Cmd0Mask__SHIFT 0x0
+#define TRAP4_COMMAND_MASK__Trap4Cmd1Mask__SHIFT 0x8
+#define TRAP4_COMMAND_MASK__Trap4Cmd0Mask_MASK 0x0000003FL
+#define TRAP4_COMMAND_MASK__Trap4Cmd1Mask_MASK 0x00003F00L
+//TRAP5_CONTROL0
+#define TRAP5_CONTROL0__Trap5En__SHIFT 0x0
+#define TRAP5_CONTROL0__Trap5SMUIntr__SHIFT 0x3
+#define TRAP5_CONTROL0__Trap5Stage2Ptr__SHIFT 0xe
+#define TRAP5_CONTROL0__Trap5CrossTrigger__SHIFT 0x18
+#define TRAP5_CONTROL0__Trap5Stage2En__SHIFT 0x1f
+#define TRAP5_CONTROL0__Trap5En_MASK 0x00000001L
+#define TRAP5_CONTROL0__Trap5SMUIntr_MASK 0x00000008L
+#define TRAP5_CONTROL0__Trap5Stage2Ptr_MASK 0x00FFC000L
+#define TRAP5_CONTROL0__Trap5CrossTrigger_MASK 0x0F000000L
+#define TRAP5_CONTROL0__Trap5Stage2En_MASK 0x80000000L
+//TRAP5_ADDRESS_LO
+#define TRAP5_ADDRESS_LO__Trap5AddrLo__SHIFT 0x2
+#define TRAP5_ADDRESS_LO__Trap5AddrLo_MASK 0xFFFFFFFCL
+//TRAP5_ADDRESS_HI
+#define TRAP5_ADDRESS_HI__Trap5AddrHi__SHIFT 0x0
+#define TRAP5_ADDRESS_HI__Trap5AddrHi_MASK 0xFFFFFFFFL
+//TRAP5_COMMAND
+#define TRAP5_COMMAND__Trap5Cmd0__SHIFT 0x0
+#define TRAP5_COMMAND__Trap5Cmd1__SHIFT 0x8
+#define TRAP5_COMMAND__Trap5Cmd0_MASK 0x0000003FL
+#define TRAP5_COMMAND__Trap5Cmd1_MASK 0x00003F00L
+//TRAP5_ADDRESS_LO_MASK
+#define TRAP5_ADDRESS_LO_MASK__Trap5AddrLoMask__SHIFT 0x2
+#define TRAP5_ADDRESS_LO_MASK__Trap5AddrLoMask_MASK 0xFFFFFFFCL
+//TRAP5_ADDRESS_HI_MASK
+#define TRAP5_ADDRESS_HI_MASK__Trap5AddrHiMask__SHIFT 0x0
+#define TRAP5_ADDRESS_HI_MASK__Trap5AddrHiMask_MASK 0xFFFFFFFFL
+//TRAP5_COMMAND_MASK
+#define TRAP5_COMMAND_MASK__Trap5Cmd0Mask__SHIFT 0x0
+#define TRAP5_COMMAND_MASK__Trap5Cmd1Mask__SHIFT 0x8
+#define TRAP5_COMMAND_MASK__Trap5Cmd0Mask_MASK 0x0000003FL
+#define TRAP5_COMMAND_MASK__Trap5Cmd1Mask_MASK 0x00003F00L
+//TRAP6_CONTROL0
+#define TRAP6_CONTROL0__Trap6En__SHIFT 0x0
+#define TRAP6_CONTROL0__Trap6SMUIntr__SHIFT 0x3
+#define TRAP6_CONTROL0__Trap6Stage2Ptr__SHIFT 0xe
+#define TRAP6_CONTROL0__Trap6CrossTrigger__SHIFT 0x18
+#define TRAP6_CONTROL0__Trap6Stage2En__SHIFT 0x1f
+#define TRAP6_CONTROL0__Trap6En_MASK 0x00000001L
+#define TRAP6_CONTROL0__Trap6SMUIntr_MASK 0x00000008L
+#define TRAP6_CONTROL0__Trap6Stage2Ptr_MASK 0x00FFC000L
+#define TRAP6_CONTROL0__Trap6CrossTrigger_MASK 0x0F000000L
+#define TRAP6_CONTROL0__Trap6Stage2En_MASK 0x80000000L
+//TRAP6_ADDRESS_LO
+#define TRAP6_ADDRESS_LO__Trap6AddrLo__SHIFT 0x2
+#define TRAP6_ADDRESS_LO__Trap6AddrLo_MASK 0xFFFFFFFCL
+//TRAP6_ADDRESS_HI
+#define TRAP6_ADDRESS_HI__Trap6AddrHi__SHIFT 0x0
+#define TRAP6_ADDRESS_HI__Trap6AddrHi_MASK 0xFFFFFFFFL
+//TRAP6_COMMAND
+#define TRAP6_COMMAND__Trap6Cmd0__SHIFT 0x0
+#define TRAP6_COMMAND__Trap6Cmd1__SHIFT 0x8
+#define TRAP6_COMMAND__Trap6Cmd0_MASK 0x0000003FL
+#define TRAP6_COMMAND__Trap6Cmd1_MASK 0x00003F00L
+//TRAP6_ADDRESS_LO_MASK
+#define TRAP6_ADDRESS_LO_MASK__Trap6AddrLoMask__SHIFT 0x2
+#define TRAP6_ADDRESS_LO_MASK__Trap6AddrLoMask_MASK 0xFFFFFFFCL
+//TRAP6_ADDRESS_HI_MASK
+#define TRAP6_ADDRESS_HI_MASK__Trap6AddrHiMask__SHIFT 0x0
+#define TRAP6_ADDRESS_HI_MASK__Trap6AddrHiMask_MASK 0xFFFFFFFFL
+//TRAP6_COMMAND_MASK
+#define TRAP6_COMMAND_MASK__Trap6Cmd0Mask__SHIFT 0x0
+#define TRAP6_COMMAND_MASK__Trap6Cmd1Mask__SHIFT 0x8
+#define TRAP6_COMMAND_MASK__Trap6Cmd0Mask_MASK 0x0000003FL
+#define TRAP6_COMMAND_MASK__Trap6Cmd1Mask_MASK 0x00003F00L
+//TRAP7_CONTROL0
+#define TRAP7_CONTROL0__Trap7En__SHIFT 0x0
+#define TRAP7_CONTROL0__Trap7SMUIntr__SHIFT 0x3
+#define TRAP7_CONTROL0__Trap7Stage2Ptr__SHIFT 0xe
+#define TRAP7_CONTROL0__Trap7CrossTrigger__SHIFT 0x18
+#define TRAP7_CONTROL0__Trap7Stage2En__SHIFT 0x1f
+#define TRAP7_CONTROL0__Trap7En_MASK 0x00000001L
+#define TRAP7_CONTROL0__Trap7SMUIntr_MASK 0x00000008L
+#define TRAP7_CONTROL0__Trap7Stage2Ptr_MASK 0x00FFC000L
+#define TRAP7_CONTROL0__Trap7CrossTrigger_MASK 0x0F000000L
+#define TRAP7_CONTROL0__Trap7Stage2En_MASK 0x80000000L
+//TRAP7_ADDRESS_LO
+#define TRAP7_ADDRESS_LO__Trap7AddrLo__SHIFT 0x2
+#define TRAP7_ADDRESS_LO__Trap7AddrLo_MASK 0xFFFFFFFCL
+//TRAP7_ADDRESS_HI
+#define TRAP7_ADDRESS_HI__Trap7AddrHi__SHIFT 0x0
+#define TRAP7_ADDRESS_HI__Trap7AddrHi_MASK 0xFFFFFFFFL
+//TRAP7_COMMAND
+#define TRAP7_COMMAND__Trap7Cmd0__SHIFT 0x0
+#define TRAP7_COMMAND__Trap7Cmd1__SHIFT 0x8
+#define TRAP7_COMMAND__Trap7Cmd0_MASK 0x0000003FL
+#define TRAP7_COMMAND__Trap7Cmd1_MASK 0x00003F00L
+//TRAP7_ADDRESS_LO_MASK
+#define TRAP7_ADDRESS_LO_MASK__Trap7AddrLoMask__SHIFT 0x2
+#define TRAP7_ADDRESS_LO_MASK__Trap7AddrLoMask_MASK 0xFFFFFFFCL
+//TRAP7_ADDRESS_HI_MASK
+#define TRAP7_ADDRESS_HI_MASK__Trap7AddrHiMask__SHIFT 0x0
+#define TRAP7_ADDRESS_HI_MASK__Trap7AddrHiMask_MASK 0xFFFFFFFFL
+//TRAP7_COMMAND_MASK
+#define TRAP7_COMMAND_MASK__Trap7Cmd0Mask__SHIFT 0x0
+#define TRAP7_COMMAND_MASK__Trap7Cmd1Mask__SHIFT 0x8
+#define TRAP7_COMMAND_MASK__Trap7Cmd0Mask_MASK 0x0000003FL
+#define TRAP7_COMMAND_MASK__Trap7Cmd1Mask_MASK 0x00003F00L
+//TRAP8_CONTROL0
+#define TRAP8_CONTROL0__Trap8En__SHIFT 0x0
+#define TRAP8_CONTROL0__Trap8SMUIntr__SHIFT 0x3
+#define TRAP8_CONTROL0__Trap8Stage2Ptr__SHIFT 0xe
+#define TRAP8_CONTROL0__Trap8CrossTrigger__SHIFT 0x18
+#define TRAP8_CONTROL0__Trap8Stage2En__SHIFT 0x1f
+#define TRAP8_CONTROL0__Trap8En_MASK 0x00000001L
+#define TRAP8_CONTROL0__Trap8SMUIntr_MASK 0x00000008L
+#define TRAP8_CONTROL0__Trap8Stage2Ptr_MASK 0x00FFC000L
+#define TRAP8_CONTROL0__Trap8CrossTrigger_MASK 0x0F000000L
+#define TRAP8_CONTROL0__Trap8Stage2En_MASK 0x80000000L
+//TRAP8_ADDRESS_LO
+#define TRAP8_ADDRESS_LO__Trap8AddrLo__SHIFT 0x2
+#define TRAP8_ADDRESS_LO__Trap8AddrLo_MASK 0xFFFFFFFCL
+//TRAP8_ADDRESS_HI
+#define TRAP8_ADDRESS_HI__Trap8AddrHi__SHIFT 0x0
+#define TRAP8_ADDRESS_HI__Trap8AddrHi_MASK 0xFFFFFFFFL
+//TRAP8_COMMAND
+#define TRAP8_COMMAND__Trap8Cmd0__SHIFT 0x0
+#define TRAP8_COMMAND__Trap8Cmd1__SHIFT 0x8
+#define TRAP8_COMMAND__Trap8Cmd0_MASK 0x0000003FL
+#define TRAP8_COMMAND__Trap8Cmd1_MASK 0x00003F00L
+//TRAP8_ADDRESS_LO_MASK
+#define TRAP8_ADDRESS_LO_MASK__Trap8AddrLoMask__SHIFT 0x2
+#define TRAP8_ADDRESS_LO_MASK__Trap8AddrLoMask_MASK 0xFFFFFFFCL
+//TRAP8_ADDRESS_HI_MASK
+#define TRAP8_ADDRESS_HI_MASK__Trap8AddrHiMask__SHIFT 0x0
+#define TRAP8_ADDRESS_HI_MASK__Trap8AddrHiMask_MASK 0xFFFFFFFFL
+//TRAP8_COMMAND_MASK
+#define TRAP8_COMMAND_MASK__Trap8Cmd0Mask__SHIFT 0x0
+#define TRAP8_COMMAND_MASK__Trap8Cmd1Mask__SHIFT 0x8
+#define TRAP8_COMMAND_MASK__Trap8Cmd0Mask_MASK 0x0000003FL
+#define TRAP8_COMMAND_MASK__Trap8Cmd1Mask_MASK 0x00003F00L
+//TRAP9_CONTROL0
+#define TRAP9_CONTROL0__Trap9En__SHIFT 0x0
+#define TRAP9_CONTROL0__Trap9SMUIntr__SHIFT 0x3
+#define TRAP9_CONTROL0__Trap9Stage2Ptr__SHIFT 0xe
+#define TRAP9_CONTROL0__Trap9CrossTrigger__SHIFT 0x18
+#define TRAP9_CONTROL0__Trap9Stage2En__SHIFT 0x1f
+#define TRAP9_CONTROL0__Trap9En_MASK 0x00000001L
+#define TRAP9_CONTROL0__Trap9SMUIntr_MASK 0x00000008L
+#define TRAP9_CONTROL0__Trap9Stage2Ptr_MASK 0x00FFC000L
+#define TRAP9_CONTROL0__Trap9CrossTrigger_MASK 0x0F000000L
+#define TRAP9_CONTROL0__Trap9Stage2En_MASK 0x80000000L
+//TRAP9_ADDRESS_LO
+#define TRAP9_ADDRESS_LO__Trap9AddrLo__SHIFT 0x2
+#define TRAP9_ADDRESS_LO__Trap9AddrLo_MASK 0xFFFFFFFCL
+//TRAP9_ADDRESS_HI
+#define TRAP9_ADDRESS_HI__Trap9AddrHi__SHIFT 0x0
+#define TRAP9_ADDRESS_HI__Trap9AddrHi_MASK 0xFFFFFFFFL
+//TRAP9_COMMAND
+#define TRAP9_COMMAND__Trap9Cmd0__SHIFT 0x0
+#define TRAP9_COMMAND__Trap9Cmd1__SHIFT 0x8
+#define TRAP9_COMMAND__Trap9Cmd0_MASK 0x0000003FL
+#define TRAP9_COMMAND__Trap9Cmd1_MASK 0x00003F00L
+//TRAP9_ADDRESS_LO_MASK
+#define TRAP9_ADDRESS_LO_MASK__Trap9AddrLoMask__SHIFT 0x2
+#define TRAP9_ADDRESS_LO_MASK__Trap9AddrLoMask_MASK 0xFFFFFFFCL
+//TRAP9_ADDRESS_HI_MASK
+#define TRAP9_ADDRESS_HI_MASK__Trap9AddrHiMask__SHIFT 0x0
+#define TRAP9_ADDRESS_HI_MASK__Trap9AddrHiMask_MASK 0xFFFFFFFFL
+//TRAP9_COMMAND_MASK
+#define TRAP9_COMMAND_MASK__Trap9Cmd0Mask__SHIFT 0x0
+#define TRAP9_COMMAND_MASK__Trap9Cmd1Mask__SHIFT 0x8
+#define TRAP9_COMMAND_MASK__Trap9Cmd0Mask_MASK 0x0000003FL
+#define TRAP9_COMMAND_MASK__Trap9Cmd1Mask_MASK 0x00003F00L
+//TRAP10_CONTROL0
+#define TRAP10_CONTROL0__Trap10En__SHIFT 0x0
+#define TRAP10_CONTROL0__Trap10SMUIntr__SHIFT 0x3
+#define TRAP10_CONTROL0__Trap10Stage2Ptr__SHIFT 0xe
+#define TRAP10_CONTROL0__Trap10CrossTrigger__SHIFT 0x18
+#define TRAP10_CONTROL0__Trap10Stage2En__SHIFT 0x1f
+#define TRAP10_CONTROL0__Trap10En_MASK 0x00000001L
+#define TRAP10_CONTROL0__Trap10SMUIntr_MASK 0x00000008L
+#define TRAP10_CONTROL0__Trap10Stage2Ptr_MASK 0x00FFC000L
+#define TRAP10_CONTROL0__Trap10CrossTrigger_MASK 0x0F000000L
+#define TRAP10_CONTROL0__Trap10Stage2En_MASK 0x80000000L
+//TRAP10_ADDRESS_LO
+#define TRAP10_ADDRESS_LO__Trap10AddrLo__SHIFT 0x2
+#define TRAP10_ADDRESS_LO__Trap10AddrLo_MASK 0xFFFFFFFCL
+//TRAP10_ADDRESS_HI
+#define TRAP10_ADDRESS_HI__Trap10AddrHi__SHIFT 0x0
+#define TRAP10_ADDRESS_HI__Trap10AddrHi_MASK 0xFFFFFFFFL
+//TRAP10_COMMAND
+#define TRAP10_COMMAND__Trap10Cmd0__SHIFT 0x0
+#define TRAP10_COMMAND__Trap10Cmd1__SHIFT 0x8
+#define TRAP10_COMMAND__Trap10Cmd0_MASK 0x0000003FL
+#define TRAP10_COMMAND__Trap10Cmd1_MASK 0x00003F00L
+//TRAP10_ADDRESS_LO_MASK
+#define TRAP10_ADDRESS_LO_MASK__Trap10AddrLoMask__SHIFT 0x2
+#define TRAP10_ADDRESS_LO_MASK__Trap10AddrLoMask_MASK 0xFFFFFFFCL
+//TRAP10_ADDRESS_HI_MASK
+#define TRAP10_ADDRESS_HI_MASK__Trap10AddrHiMask__SHIFT 0x0
+#define TRAP10_ADDRESS_HI_MASK__Trap10AddrHiMask_MASK 0xFFFFFFFFL
+//TRAP10_COMMAND_MASK
+#define TRAP10_COMMAND_MASK__Trap10Cmd0Mask__SHIFT 0x0
+#define TRAP10_COMMAND_MASK__Trap10Cmd1Mask__SHIFT 0x8
+#define TRAP10_COMMAND_MASK__Trap10Cmd0Mask_MASK 0x0000003FL
+#define TRAP10_COMMAND_MASK__Trap10Cmd1Mask_MASK 0x00003F00L
+//TRAP11_CONTROL0
+#define TRAP11_CONTROL0__Trap11En__SHIFT 0x0
+#define TRAP11_CONTROL0__Trap11SMUIntr__SHIFT 0x3
+#define TRAP11_CONTROL0__Trap11Stage2Ptr__SHIFT 0xe
+#define TRAP11_CONTROL0__Trap11CrossTrigger__SHIFT 0x18
+#define TRAP11_CONTROL0__Trap11Stage2En__SHIFT 0x1f
+#define TRAP11_CONTROL0__Trap11En_MASK 0x00000001L
+#define TRAP11_CONTROL0__Trap11SMUIntr_MASK 0x00000008L
+#define TRAP11_CONTROL0__Trap11Stage2Ptr_MASK 0x00FFC000L
+#define TRAP11_CONTROL0__Trap11CrossTrigger_MASK 0x0F000000L
+#define TRAP11_CONTROL0__Trap11Stage2En_MASK 0x80000000L
+//TRAP11_ADDRESS_LO
+#define TRAP11_ADDRESS_LO__Trap11AddrLo__SHIFT 0x2
+#define TRAP11_ADDRESS_LO__Trap11AddrLo_MASK 0xFFFFFFFCL
+//TRAP11_ADDRESS_HI
+#define TRAP11_ADDRESS_HI__Trap11AddrHi__SHIFT 0x0
+#define TRAP11_ADDRESS_HI__Trap11AddrHi_MASK 0xFFFFFFFFL
+//TRAP11_COMMAND
+#define TRAP11_COMMAND__Trap11Cmd0__SHIFT 0x0
+#define TRAP11_COMMAND__Trap11Cmd1__SHIFT 0x8
+#define TRAP11_COMMAND__Trap11Cmd0_MASK 0x0000003FL
+#define TRAP11_COMMAND__Trap11Cmd1_MASK 0x00003F00L
+//TRAP11_ADDRESS_LO_MASK
+#define TRAP11_ADDRESS_LO_MASK__Trap11AddrLoMask__SHIFT 0x2
+#define TRAP11_ADDRESS_LO_MASK__Trap11AddrLoMask_MASK 0xFFFFFFFCL
+//TRAP11_ADDRESS_HI_MASK
+#define TRAP11_ADDRESS_HI_MASK__Trap11AddrHiMask__SHIFT 0x0
+#define TRAP11_ADDRESS_HI_MASK__Trap11AddrHiMask_MASK 0xFFFFFFFFL
+//TRAP11_COMMAND_MASK
+#define TRAP11_COMMAND_MASK__Trap11Cmd0Mask__SHIFT 0x0
+#define TRAP11_COMMAND_MASK__Trap11Cmd1Mask__SHIFT 0x8
+#define TRAP11_COMMAND_MASK__Trap11Cmd0Mask_MASK 0x0000003FL
+#define TRAP11_COMMAND_MASK__Trap11Cmd1Mask_MASK 0x00003F00L
+//TRAP12_CONTROL0
+#define TRAP12_CONTROL0__Trap12En__SHIFT 0x0
+#define TRAP12_CONTROL0__Trap12SMUIntr__SHIFT 0x3
+#define TRAP12_CONTROL0__Trap12Stage2Ptr__SHIFT 0xe
+#define TRAP12_CONTROL0__Trap12CrossTrigger__SHIFT 0x18
+#define TRAP12_CONTROL0__Trap12Stage2En__SHIFT 0x1f
+#define TRAP12_CONTROL0__Trap12En_MASK 0x00000001L
+#define TRAP12_CONTROL0__Trap12SMUIntr_MASK 0x00000008L
+#define TRAP12_CONTROL0__Trap12Stage2Ptr_MASK 0x00FFC000L
+#define TRAP12_CONTROL0__Trap12CrossTrigger_MASK 0x0F000000L
+#define TRAP12_CONTROL0__Trap12Stage2En_MASK 0x80000000L
+//TRAP12_ADDRESS_LO
+#define TRAP12_ADDRESS_LO__Trap12AddrLo__SHIFT 0x2
+#define TRAP12_ADDRESS_LO__Trap12AddrLo_MASK 0xFFFFFFFCL
+//TRAP12_ADDRESS_HI
+#define TRAP12_ADDRESS_HI__Trap12AddrHi__SHIFT 0x0
+#define TRAP12_ADDRESS_HI__Trap12AddrHi_MASK 0xFFFFFFFFL
+//TRAP12_COMMAND
+#define TRAP12_COMMAND__Trap12Cmd0__SHIFT 0x0
+#define TRAP12_COMMAND__Trap12Cmd1__SHIFT 0x8
+#define TRAP12_COMMAND__Trap12Cmd0_MASK 0x0000003FL
+#define TRAP12_COMMAND__Trap12Cmd1_MASK 0x00003F00L
+//TRAP12_ADDRESS_LO_MASK
+#define TRAP12_ADDRESS_LO_MASK__Trap12AddrLoMask__SHIFT 0x2
+#define TRAP12_ADDRESS_LO_MASK__Trap12AddrLoMask_MASK 0xFFFFFFFCL
+//TRAP12_ADDRESS_HI_MASK
+#define TRAP12_ADDRESS_HI_MASK__Trap12AddrHiMask__SHIFT 0x0
+#define TRAP12_ADDRESS_HI_MASK__Trap12AddrHiMask_MASK 0xFFFFFFFFL
+//TRAP12_COMMAND_MASK
+#define TRAP12_COMMAND_MASK__Trap12Cmd0Mask__SHIFT 0x0
+#define TRAP12_COMMAND_MASK__Trap12Cmd1Mask__SHIFT 0x8
+#define TRAP12_COMMAND_MASK__Trap12Cmd0Mask_MASK 0x0000003FL
+#define TRAP12_COMMAND_MASK__Trap12Cmd1Mask_MASK 0x00003F00L
+//TRAP13_CONTROL0
+#define TRAP13_CONTROL0__Trap13En__SHIFT 0x0
+#define TRAP13_CONTROL0__Trap13SMUIntr__SHIFT 0x3
+#define TRAP13_CONTROL0__Trap13Stage2Ptr__SHIFT 0xe
+#define TRAP13_CONTROL0__Trap13CrossTrigger__SHIFT 0x18
+#define TRAP13_CONTROL0__Trap13Stage2En__SHIFT 0x1f
+#define TRAP13_CONTROL0__Trap13En_MASK 0x00000001L
+#define TRAP13_CONTROL0__Trap13SMUIntr_MASK 0x00000008L
+#define TRAP13_CONTROL0__Trap13Stage2Ptr_MASK 0x00FFC000L
+#define TRAP13_CONTROL0__Trap13CrossTrigger_MASK 0x0F000000L
+#define TRAP13_CONTROL0__Trap13Stage2En_MASK 0x80000000L
+//TRAP13_ADDRESS_LO
+#define TRAP13_ADDRESS_LO__Trap13AddrLo__SHIFT 0x2
+#define TRAP13_ADDRESS_LO__Trap13AddrLo_MASK 0xFFFFFFFCL
+//TRAP13_ADDRESS_HI
+#define TRAP13_ADDRESS_HI__Trap13AddrHi__SHIFT 0x0
+#define TRAP13_ADDRESS_HI__Trap13AddrHi_MASK 0xFFFFFFFFL
+//TRAP13_COMMAND
+#define TRAP13_COMMAND__Trap13Cmd0__SHIFT 0x0
+#define TRAP13_COMMAND__Trap13Cmd1__SHIFT 0x8
+#define TRAP13_COMMAND__Trap13Cmd0_MASK 0x0000003FL
+#define TRAP13_COMMAND__Trap13Cmd1_MASK 0x00003F00L
+//TRAP13_ADDRESS_LO_MASK
+#define TRAP13_ADDRESS_LO_MASK__Trap13AddrLoMask__SHIFT 0x2
+#define TRAP13_ADDRESS_LO_MASK__Trap13AddrLoMask_MASK 0xFFFFFFFCL
+//TRAP13_ADDRESS_HI_MASK
+#define TRAP13_ADDRESS_HI_MASK__Trap13AddrHiMask__SHIFT 0x0
+#define TRAP13_ADDRESS_HI_MASK__Trap13AddrHiMask_MASK 0xFFFFFFFFL
+//TRAP13_COMMAND_MASK
+#define TRAP13_COMMAND_MASK__Trap13Cmd0Mask__SHIFT 0x0
+#define TRAP13_COMMAND_MASK__Trap13Cmd1Mask__SHIFT 0x8
+#define TRAP13_COMMAND_MASK__Trap13Cmd0Mask_MASK 0x0000003FL
+#define TRAP13_COMMAND_MASK__Trap13Cmd1Mask_MASK 0x00003F00L
+//TRAP14_CONTROL0
+#define TRAP14_CONTROL0__Trap14En__SHIFT 0x0
+#define TRAP14_CONTROL0__Trap14SMUIntr__SHIFT 0x3
+#define TRAP14_CONTROL0__Trap14Stage2Ptr__SHIFT 0xe
+#define TRAP14_CONTROL0__Trap14CrossTrigger__SHIFT 0x18
+#define TRAP14_CONTROL0__Trap14Stage2En__SHIFT 0x1f
+#define TRAP14_CONTROL0__Trap14En_MASK 0x00000001L
+#define TRAP14_CONTROL0__Trap14SMUIntr_MASK 0x00000008L
+#define TRAP14_CONTROL0__Trap14Stage2Ptr_MASK 0x00FFC000L
+#define TRAP14_CONTROL0__Trap14CrossTrigger_MASK 0x0F000000L
+#define TRAP14_CONTROL0__Trap14Stage2En_MASK 0x80000000L
+//TRAP14_ADDRESS_LO
+#define TRAP14_ADDRESS_LO__Trap14AddrLo__SHIFT 0x2
+#define TRAP14_ADDRESS_LO__Trap14AddrLo_MASK 0xFFFFFFFCL
+//TRAP14_ADDRESS_HI
+#define TRAP14_ADDRESS_HI__Trap14AddrHi__SHIFT 0x0
+#define TRAP14_ADDRESS_HI__Trap14AddrHi_MASK 0xFFFFFFFFL
+//TRAP14_COMMAND
+#define TRAP14_COMMAND__Trap14Cmd0__SHIFT 0x0
+#define TRAP14_COMMAND__Trap14Cmd1__SHIFT 0x8
+#define TRAP14_COMMAND__Trap14Cmd0_MASK 0x0000003FL
+#define TRAP14_COMMAND__Trap14Cmd1_MASK 0x00003F00L
+//TRAP14_ADDRESS_LO_MASK
+#define TRAP14_ADDRESS_LO_MASK__Trap14AddrLoMask__SHIFT 0x2
+#define TRAP14_ADDRESS_LO_MASK__Trap14AddrLoMask_MASK 0xFFFFFFFCL
+//TRAP14_ADDRESS_HI_MASK
+#define TRAP14_ADDRESS_HI_MASK__Trap14AddrHiMask__SHIFT 0x0
+#define TRAP14_ADDRESS_HI_MASK__Trap14AddrHiMask_MASK 0xFFFFFFFFL
+//TRAP14_COMMAND_MASK
+#define TRAP14_COMMAND_MASK__Trap14Cmd0Mask__SHIFT 0x0
+#define TRAP14_COMMAND_MASK__Trap14Cmd1Mask__SHIFT 0x8
+#define TRAP14_COMMAND_MASK__Trap14Cmd0Mask_MASK 0x0000003FL
+#define TRAP14_COMMAND_MASK__Trap14Cmd1Mask_MASK 0x00003F00L
+//TRAP15_CONTROL0
+#define TRAP15_CONTROL0__Trap15En__SHIFT 0x0
+#define TRAP15_CONTROL0__Trap15SMUIntr__SHIFT 0x3
+#define TRAP15_CONTROL0__Trap15Stage2Ptr__SHIFT 0xe
+#define TRAP15_CONTROL0__Trap15CrossTrigger__SHIFT 0x18
+#define TRAP15_CONTROL0__Trap15Stage2En__SHIFT 0x1f
+#define TRAP15_CONTROL0__Trap15En_MASK 0x00000001L
+#define TRAP15_CONTROL0__Trap15SMUIntr_MASK 0x00000008L
+#define TRAP15_CONTROL0__Trap15Stage2Ptr_MASK 0x00FFC000L
+#define TRAP15_CONTROL0__Trap15CrossTrigger_MASK 0x0F000000L
+#define TRAP15_CONTROL0__Trap15Stage2En_MASK 0x80000000L
+//TRAP15_ADDRESS_LO
+#define TRAP15_ADDRESS_LO__Trap15AddrLo__SHIFT 0x2
+#define TRAP15_ADDRESS_LO__Trap15AddrLo_MASK 0xFFFFFFFCL
+//TRAP15_ADDRESS_HI
+#define TRAP15_ADDRESS_HI__Trap15AddrHi__SHIFT 0x0
+#define TRAP15_ADDRESS_HI__Trap15AddrHi_MASK 0xFFFFFFFFL
+//TRAP15_COMMAND
+#define TRAP15_COMMAND__Trap15Cmd0__SHIFT 0x0
+#define TRAP15_COMMAND__Trap15Cmd1__SHIFT 0x8
+#define TRAP15_COMMAND__Trap15Cmd0_MASK 0x0000003FL
+#define TRAP15_COMMAND__Trap15Cmd1_MASK 0x00003F00L
+//TRAP15_ADDRESS_LO_MASK
+#define TRAP15_ADDRESS_LO_MASK__Trap15AddrLoMask__SHIFT 0x2
+#define TRAP15_ADDRESS_LO_MASK__Trap15AddrLoMask_MASK 0xFFFFFFFCL
+//TRAP15_ADDRESS_HI_MASK
+#define TRAP15_ADDRESS_HI_MASK__Trap15AddrHiMask__SHIFT 0x0
+#define TRAP15_ADDRESS_HI_MASK__Trap15AddrHiMask_MASK 0xFFFFFFFFL
+//TRAP15_COMMAND_MASK
+#define TRAP15_COMMAND_MASK__Trap15Cmd0Mask__SHIFT 0x0
+#define TRAP15_COMMAND_MASK__Trap15Cmd1Mask__SHIFT 0x8
+#define TRAP15_COMMAND_MASK__Trap15Cmd0Mask_MASK 0x0000003FL
+#define TRAP15_COMMAND_MASK__Trap15Cmd1Mask_MASK 0x00003F00L
+//SB_COMMAND
+#define SB_COMMAND__IO_ACCESS_EN__SHIFT 0x0
+#define SB_COMMAND__MEM_ACCESS_EN__SHIFT 0x1
+#define SB_COMMAND__BUS_MASTER_EN__SHIFT 0x2
+#define SB_COMMAND__IO_ACCESS_EN_MASK 0x0001L
+#define SB_COMMAND__MEM_ACCESS_EN_MASK 0x0002L
+#define SB_COMMAND__BUS_MASTER_EN_MASK 0x0004L
+//SB_SUB_BUS_NUMBER_LATENCY
+#define SB_SUB_BUS_NUMBER_LATENCY__SECONDARY_BUS__SHIFT 0x8
+#define SB_SUB_BUS_NUMBER_LATENCY__SUB_BUS_NUM__SHIFT 0x10
+#define SB_SUB_BUS_NUMBER_LATENCY__SECONDARY_BUS_MASK 0x0000FF00L
+#define SB_SUB_BUS_NUMBER_LATENCY__SUB_BUS_NUM_MASK 0x00FF0000L
+//SB_IO_BASE_LIMIT
+#define SB_IO_BASE_LIMIT__IO_BASE__SHIFT 0x4
+#define SB_IO_BASE_LIMIT__IO_LIMIT__SHIFT 0xc
+#define SB_IO_BASE_LIMIT__IO_BASE_MASK 0x00F0L
+#define SB_IO_BASE_LIMIT__IO_LIMIT_MASK 0xF000L
+//SB_MEM_BASE_LIMIT
+#define SB_MEM_BASE_LIMIT__MEM_BASE_31_20__SHIFT 0x4
+#define SB_MEM_BASE_LIMIT__MEM_LIMIT_31_20__SHIFT 0x14
+#define SB_MEM_BASE_LIMIT__MEM_BASE_31_20_MASK 0x0000FFF0L
+#define SB_MEM_BASE_LIMIT__MEM_LIMIT_31_20_MASK 0xFFF00000L
+//SB_PREF_BASE_LIMIT
+#define SB_PREF_BASE_LIMIT__PREF_MEM_BASE_31_20__SHIFT 0x4
+#define SB_PREF_BASE_LIMIT__PREF_MEM_LIMIT_31_20__SHIFT 0x14
+#define SB_PREF_BASE_LIMIT__PREF_MEM_BASE_31_20_MASK 0x0000FFF0L
+#define SB_PREF_BASE_LIMIT__PREF_MEM_LIMIT_31_20_MASK 0xFFF00000L
+//SB_PREF_BASE_UPPER
+#define SB_PREF_BASE_UPPER__PREF_BASE_UPPER__SHIFT 0x0
+#define SB_PREF_BASE_UPPER__PREF_BASE_UPPER_MASK 0xFFFFFFFFL
+//SB_PREF_LIMIT_UPPER
+#define SB_PREF_LIMIT_UPPER__PREF_LIMIT_UPPER__SHIFT 0x0
+#define SB_PREF_LIMIT_UPPER__PREF_LIMIT_UPPER_MASK 0xFFFFFFFFL
+//SB_IO_BASE_LIMIT_HI
+#define SB_IO_BASE_LIMIT_HI__IO_BASE_31_16__SHIFT 0x0
+#define SB_IO_BASE_LIMIT_HI__IO_LIMIT_31_16__SHIFT 0x10
+#define SB_IO_BASE_LIMIT_HI__IO_BASE_31_16_MASK 0x0000FFFFL
+#define SB_IO_BASE_LIMIT_HI__IO_LIMIT_31_16_MASK 0xFFFF0000L
+//SB_IRQ_BRIDGE_CNTL
+#define SB_IRQ_BRIDGE_CNTL__ISA_EN__SHIFT 0x2
+#define SB_IRQ_BRIDGE_CNTL__VGA_EN__SHIFT 0x3
+#define SB_IRQ_BRIDGE_CNTL__VGA_DEC__SHIFT 0x4
+#define SB_IRQ_BRIDGE_CNTL__ISA_EN_MASK 0x0004L
+#define SB_IRQ_BRIDGE_CNTL__VGA_EN_MASK 0x0008L
+#define SB_IRQ_BRIDGE_CNTL__VGA_DEC_MASK 0x0010L
+//SB_EXT_BRIDGE_CNTL
+#define SB_EXT_BRIDGE_CNTL__IO_PORT_80_EN__SHIFT 0x0
+#define SB_EXT_BRIDGE_CNTL__IO_PORT_80_EN_MASK 0x01L
+//SB_PMI_STATUS_CNTL
+#define SB_PMI_STATUS_CNTL__POWER_STATE__SHIFT 0x0
+#define SB_PMI_STATUS_CNTL__POWER_STATE_MASK 0x03L
+//SB_SLOT_CAP
+#define SB_SLOT_CAP__SLOT_PWR_LIMIT_VALUE__SHIFT 0x7
+#define SB_SLOT_CAP__SLOT_PWR_LIMIT_SCALE__SHIFT 0xf
+#define SB_SLOT_CAP__SLOT_PWR_LIMIT_VALUE_MASK 0x00007F80L
+#define SB_SLOT_CAP__SLOT_PWR_LIMIT_SCALE_MASK 0x00018000L
+//SB_ROOT_CNTL
+#define SB_ROOT_CNTL__CRS_SOFTWARE_VISIBILITY_EN__SHIFT 0x4
+#define SB_ROOT_CNTL__CRS_SOFTWARE_VISIBILITY_EN_MASK 0x0010L
+//SB_DEVICE_CNTL2
+#define SB_DEVICE_CNTL2__ARI_FORWARDING_EN__SHIFT 0x5
+#define SB_DEVICE_CNTL2__ARI_FORWARDING_EN_MASK 0x0020L
+//MCA_SMN_INT_REQ_ADDR
+#define MCA_SMN_INT_REQ_ADDR__SMN_INT_REQ_ADDR__SHIFT 0x0
+#define MCA_SMN_INT_REQ_ADDR__SMN_INT_REQ_ADDR_MASK 0x000FFFFFL
+//MCA_SMN_INT_MCM_ADDR
+#define MCA_SMN_INT_MCM_ADDR__SMN_INT_MCM_ADDR__SHIFT 0x0
+#define MCA_SMN_INT_MCM_ADDR__SMN_INT_MCM_ADDR_MASK 0x000000FFL
+//MCA_SMN_INT_APERTUREID
+#define MCA_SMN_INT_APERTUREID__SMN_INT_APERTUREID__SHIFT 0x0
+#define MCA_SMN_INT_APERTUREID__SMN_INT_APERTUREID_MASK 0x00000FFFL
+//MCA_SMN_INT_CONTROL
+#define MCA_SMN_INT_CONTROL__MCACrossTrigger__SHIFT 0x0
+#define MCA_SMN_INT_CONTROL__MCACrossTrigger_MASK 0x0000000FL
+
+
+// addressBlock: aid_nbio_iohub_nb_rascfg_ras_cfgdec
+//PARITY_CONTROL_0
+#define PARITY_CONTROL_0__ParityCorrThreshold__SHIFT 0x0
+#define PARITY_CONTROL_0__ParityUCPThreshold__SHIFT 0x10
+#define PARITY_CONTROL_0__ParityCorrThreshold_MASK 0x0000FFFFL
+#define PARITY_CONTROL_0__ParityUCPThreshold_MASK 0xFFFF0000L
+//PARITY_CONTROL_1
+#define PARITY_CONTROL_1__ParityErrGenGroupSel__SHIFT 0x0
+#define PARITY_CONTROL_1__ParityErrGenGroupTypeSel__SHIFT 0x8
+#define PARITY_CONTROL_1__ParityErrGenIdSel__SHIFT 0xb
+#define PARITY_CONTROL_1__ParityErrGenCmd__SHIFT 0x10
+#define PARITY_CONTROL_1__ParityErrGenTrigger__SHIFT 0x1e
+#define PARITY_CONTROL_1__ParityErrGenInjectAllow__SHIFT 0x1f
+#define PARITY_CONTROL_1__ParityErrGenGroupSel_MASK 0x000000FFL
+#define PARITY_CONTROL_1__ParityErrGenGroupTypeSel_MASK 0x00000100L
+#define PARITY_CONTROL_1__ParityErrGenIdSel_MASK 0x0000F800L
+#define PARITY_CONTROL_1__ParityErrGenCmd_MASK 0x000F0000L
+#define PARITY_CONTROL_1__ParityErrGenTrigger_MASK 0x40000000L
+#define PARITY_CONTROL_1__ParityErrGenInjectAllow_MASK 0x80000000L
+//PARITY_SEVERITY_CONTROL_UNCORR_0
+#define PARITY_SEVERITY_CONTROL_UNCORR_0__ParityErrSevUnCorrGrp0__SHIFT 0x0
+#define PARITY_SEVERITY_CONTROL_UNCORR_0__ParityErrSevUnCorrGrp1__SHIFT 0x2
+#define PARITY_SEVERITY_CONTROL_UNCORR_0__ParityErrSevUnCorrGrp2__SHIFT 0x4
+#define PARITY_SEVERITY_CONTROL_UNCORR_0__ParityErrSevUnCorrGrp3__SHIFT 0x6
+#define PARITY_SEVERITY_CONTROL_UNCORR_0__ParityErrSevUnCorrGrp4__SHIFT 0x8
+#define PARITY_SEVERITY_CONTROL_UNCORR_0__ParityErrSevUnCorrGrp5__SHIFT 0xa
+#define PARITY_SEVERITY_CONTROL_UNCORR_0__ParityErrSevUnCorrGrp6__SHIFT 0xc
+#define PARITY_SEVERITY_CONTROL_UNCORR_0__ParityErrSevUnCorrGrp7__SHIFT 0xe
+#define PARITY_SEVERITY_CONTROL_UNCORR_0__ParityErrSevUnCorrGrp8__SHIFT 0x10
+#define PARITY_SEVERITY_CONTROL_UNCORR_0__ParityErrSevUnCorrGrp9__SHIFT 0x12
+#define PARITY_SEVERITY_CONTROL_UNCORR_0__ParityErrSevUnCorrGrp10__SHIFT 0x14
+#define PARITY_SEVERITY_CONTROL_UNCORR_0__ParityErrSevUnCorrGrp11__SHIFT 0x16
+#define PARITY_SEVERITY_CONTROL_UNCORR_0__ParityErrSevUnCorrGrp12__SHIFT 0x18
+#define PARITY_SEVERITY_CONTROL_UNCORR_0__ParityErrSevUnCorrGrp13__SHIFT 0x1a
+#define PARITY_SEVERITY_CONTROL_UNCORR_0__ParityErrSevUnCorrGrp14__SHIFT 0x1c
+#define PARITY_SEVERITY_CONTROL_UNCORR_0__ParityErrSevUnCorrGrp15__SHIFT 0x1e
+#define PARITY_SEVERITY_CONTROL_UNCORR_0__ParityErrSevUnCorrGrp0_MASK 0x00000003L
+#define PARITY_SEVERITY_CONTROL_UNCORR_0__ParityErrSevUnCorrGrp1_MASK 0x0000000CL
+#define PARITY_SEVERITY_CONTROL_UNCORR_0__ParityErrSevUnCorrGrp2_MASK 0x00000030L
+#define PARITY_SEVERITY_CONTROL_UNCORR_0__ParityErrSevUnCorrGrp3_MASK 0x000000C0L
+#define PARITY_SEVERITY_CONTROL_UNCORR_0__ParityErrSevUnCorrGrp4_MASK 0x00000300L
+#define PARITY_SEVERITY_CONTROL_UNCORR_0__ParityErrSevUnCorrGrp5_MASK 0x00000C00L
+#define PARITY_SEVERITY_CONTROL_UNCORR_0__ParityErrSevUnCorrGrp6_MASK 0x00003000L
+#define PARITY_SEVERITY_CONTROL_UNCORR_0__ParityErrSevUnCorrGrp7_MASK 0x0000C000L
+#define PARITY_SEVERITY_CONTROL_UNCORR_0__ParityErrSevUnCorrGrp8_MASK 0x00030000L
+#define PARITY_SEVERITY_CONTROL_UNCORR_0__ParityErrSevUnCorrGrp9_MASK 0x000C0000L
+#define PARITY_SEVERITY_CONTROL_UNCORR_0__ParityErrSevUnCorrGrp10_MASK 0x00300000L
+#define PARITY_SEVERITY_CONTROL_UNCORR_0__ParityErrSevUnCorrGrp11_MASK 0x00C00000L
+#define PARITY_SEVERITY_CONTROL_UNCORR_0__ParityErrSevUnCorrGrp12_MASK 0x03000000L
+#define PARITY_SEVERITY_CONTROL_UNCORR_0__ParityErrSevUnCorrGrp13_MASK 0x0C000000L
+#define PARITY_SEVERITY_CONTROL_UNCORR_0__ParityErrSevUnCorrGrp14_MASK 0x30000000L
+#define PARITY_SEVERITY_CONTROL_UNCORR_0__ParityErrSevUnCorrGrp15_MASK 0xC0000000L
+//PARITY_SEVERITY_CONTROL_CORR_0
+#define PARITY_SEVERITY_CONTROL_CORR_0__ParityErrSevCorrGrp0__SHIFT 0x0
+#define PARITY_SEVERITY_CONTROL_CORR_0__ParityErrSevCorrGrp1__SHIFT 0x2
+#define PARITY_SEVERITY_CONTROL_CORR_0__ParityErrSevCorrGrp2__SHIFT 0x4
+#define PARITY_SEVERITY_CONTROL_CORR_0__ParityErrSevCorrGrp3__SHIFT 0x6
+#define PARITY_SEVERITY_CONTROL_CORR_0__ParityErrSevCorrGrp4__SHIFT 0x8
+#define PARITY_SEVERITY_CONTROL_CORR_0__ParityErrSevCorrGrp5__SHIFT 0xa
+#define PARITY_SEVERITY_CONTROL_CORR_0__ParityErrSevCorrGrp6__SHIFT 0xc
+#define PARITY_SEVERITY_CONTROL_CORR_0__ParityErrSevCorrGrp7__SHIFT 0xe
+#define PARITY_SEVERITY_CONTROL_CORR_0__ParityErrSevCorrGrp8__SHIFT 0x10
+#define PARITY_SEVERITY_CONTROL_CORR_0__ParityErrSevCorrGrp9__SHIFT 0x12
+#define PARITY_SEVERITY_CONTROL_CORR_0__ParityErrSevCorrGrp10__SHIFT 0x14
+#define PARITY_SEVERITY_CONTROL_CORR_0__ParityErrSevCorrGrp11__SHIFT 0x16
+#define PARITY_SEVERITY_CONTROL_CORR_0__ParityErrSevCorrGrp12__SHIFT 0x18
+#define PARITY_SEVERITY_CONTROL_CORR_0__ParityErrSevCorrGrp13__SHIFT 0x1a
+#define PARITY_SEVERITY_CONTROL_CORR_0__ParityErrSevCorrGrp14__SHIFT 0x1c
+#define PARITY_SEVERITY_CONTROL_CORR_0__ParityErrSevCorrGrp15__SHIFT 0x1e
+#define PARITY_SEVERITY_CONTROL_CORR_0__ParityErrSevCorrGrp0_MASK 0x00000003L
+#define PARITY_SEVERITY_CONTROL_CORR_0__ParityErrSevCorrGrp1_MASK 0x0000000CL
+#define PARITY_SEVERITY_CONTROL_CORR_0__ParityErrSevCorrGrp2_MASK 0x00000030L
+#define PARITY_SEVERITY_CONTROL_CORR_0__ParityErrSevCorrGrp3_MASK 0x000000C0L
+#define PARITY_SEVERITY_CONTROL_CORR_0__ParityErrSevCorrGrp4_MASK 0x00000300L
+#define PARITY_SEVERITY_CONTROL_CORR_0__ParityErrSevCorrGrp5_MASK 0x00000C00L
+#define PARITY_SEVERITY_CONTROL_CORR_0__ParityErrSevCorrGrp6_MASK 0x00003000L
+#define PARITY_SEVERITY_CONTROL_CORR_0__ParityErrSevCorrGrp7_MASK 0x0000C000L
+#define PARITY_SEVERITY_CONTROL_CORR_0__ParityErrSevCorrGrp8_MASK 0x00030000L
+#define PARITY_SEVERITY_CONTROL_CORR_0__ParityErrSevCorrGrp9_MASK 0x000C0000L
+#define PARITY_SEVERITY_CONTROL_CORR_0__ParityErrSevCorrGrp10_MASK 0x00300000L
+#define PARITY_SEVERITY_CONTROL_CORR_0__ParityErrSevCorrGrp11_MASK 0x00C00000L
+#define PARITY_SEVERITY_CONTROL_CORR_0__ParityErrSevCorrGrp12_MASK 0x03000000L
+#define PARITY_SEVERITY_CONTROL_CORR_0__ParityErrSevCorrGrp13_MASK 0x0C000000L
+#define PARITY_SEVERITY_CONTROL_CORR_0__ParityErrSevCorrGrp14_MASK 0x30000000L
+#define PARITY_SEVERITY_CONTROL_CORR_0__ParityErrSevCorrGrp15_MASK 0xC0000000L
+//PARITY_SEVERITY_CONTROL_UCP_0
+#define PARITY_SEVERITY_CONTROL_UCP_0__ParityErrSevUCPGrp0__SHIFT 0x0
+#define PARITY_SEVERITY_CONTROL_UCP_0__ParityErrSevUCPGrp1__SHIFT 0x2
+#define PARITY_SEVERITY_CONTROL_UCP_0__ParityErrSevUCPGrp2__SHIFT 0x4
+#define PARITY_SEVERITY_CONTROL_UCP_0__ParityErrSevUCPGrp3__SHIFT 0x6
+#define PARITY_SEVERITY_CONTROL_UCP_0__ParityErrSevUCPGrp4__SHIFT 0x8
+#define PARITY_SEVERITY_CONTROL_UCP_0__ParityErrSevUCPGrp5__SHIFT 0xa
+#define PARITY_SEVERITY_CONTROL_UCP_0__ParityErrSevUCPGrp6__SHIFT 0xc
+#define PARITY_SEVERITY_CONTROL_UCP_0__ParityErrSevUCPGrp7__SHIFT 0xe
+#define PARITY_SEVERITY_CONTROL_UCP_0__ParityErrSevUCPGrp8__SHIFT 0x10
+#define PARITY_SEVERITY_CONTROL_UCP_0__ParityErrSevUCPGrp9__SHIFT 0x12
+#define PARITY_SEVERITY_CONTROL_UCP_0__ParityErrSevUCPGrp10__SHIFT 0x14
+#define PARITY_SEVERITY_CONTROL_UCP_0__ParityErrSevUCPGrp11__SHIFT 0x16
+#define PARITY_SEVERITY_CONTROL_UCP_0__ParityErrSevUCPGrp12__SHIFT 0x18
+#define PARITY_SEVERITY_CONTROL_UCP_0__ParityErrSevUCPGrp0_MASK 0x00000003L
+#define PARITY_SEVERITY_CONTROL_UCP_0__ParityErrSevUCPGrp1_MASK 0x0000000CL
+#define PARITY_SEVERITY_CONTROL_UCP_0__ParityErrSevUCPGrp2_MASK 0x00000030L
+#define PARITY_SEVERITY_CONTROL_UCP_0__ParityErrSevUCPGrp3_MASK 0x000000C0L
+#define PARITY_SEVERITY_CONTROL_UCP_0__ParityErrSevUCPGrp4_MASK 0x00000300L
+#define PARITY_SEVERITY_CONTROL_UCP_0__ParityErrSevUCPGrp5_MASK 0x00000C00L
+#define PARITY_SEVERITY_CONTROL_UCP_0__ParityErrSevUCPGrp6_MASK 0x00003000L
+#define PARITY_SEVERITY_CONTROL_UCP_0__ParityErrSevUCPGrp7_MASK 0x0000C000L
+#define PARITY_SEVERITY_CONTROL_UCP_0__ParityErrSevUCPGrp8_MASK 0x00030000L
+#define PARITY_SEVERITY_CONTROL_UCP_0__ParityErrSevUCPGrp9_MASK 0x000C0000L
+#define PARITY_SEVERITY_CONTROL_UCP_0__ParityErrSevUCPGrp10_MASK 0x00300000L
+#define PARITY_SEVERITY_CONTROL_UCP_0__ParityErrSevUCPGrp11_MASK 0x00C00000L
+#define PARITY_SEVERITY_CONTROL_UCP_0__ParityErrSevUCPGrp12_MASK 0x03000000L
+//RAS_GLOBAL_STATUS_LO
+#define RAS_GLOBAL_STATUS_LO__ParityErrCorr__SHIFT 0x0
+#define RAS_GLOBAL_STATUS_LO__ParityErrNonFatal__SHIFT 0x1
+#define RAS_GLOBAL_STATUS_LO__ParityErrFatal__SHIFT 0x2
+#define RAS_GLOBAL_STATUS_LO__ParityErrSerr__SHIFT 0x3
+#define RAS_GLOBAL_STATUS_LO__HPLGWA_NMI__SHIFT 0x6
+#define RAS_GLOBAL_STATUS_LO__HPLGWA_SCI__SHIFT 0x7
+#define RAS_GLOBAL_STATUS_LO__HPLGWA_SMI__SHIFT 0x8
+#define RAS_GLOBAL_STATUS_LO__SW_SMI__SHIFT 0x9
+#define RAS_GLOBAL_STATUS_LO__SW_SCI__SHIFT 0xa
+#define RAS_GLOBAL_STATUS_LO__SW_NMI__SHIFT 0xb
+#define RAS_GLOBAL_STATUS_LO__APML_NMI__SHIFT 0xc
+#define RAS_GLOBAL_STATUS_LO__APML_SyncFld__SHIFT 0xd
+#define RAS_GLOBAL_STATUS_LO__PIN_SyncFld_NMI__SHIFT 0xe
+#define RAS_GLOBAL_STATUS_LO__APML_SyncFld_Private__SHIFT 0xf
+#define RAS_GLOBAL_STATUS_LO__ParityErrCorr_MASK 0x00000001L
+#define RAS_GLOBAL_STATUS_LO__ParityErrNonFatal_MASK 0x00000002L
+#define RAS_GLOBAL_STATUS_LO__ParityErrFatal_MASK 0x00000004L
+#define RAS_GLOBAL_STATUS_LO__ParityErrSerr_MASK 0x00000008L
+#define RAS_GLOBAL_STATUS_LO__HPLGWA_NMI_MASK 0x00000040L
+#define RAS_GLOBAL_STATUS_LO__HPLGWA_SCI_MASK 0x00000080L
+#define RAS_GLOBAL_STATUS_LO__HPLGWA_SMI_MASK 0x00000100L
+#define RAS_GLOBAL_STATUS_LO__SW_SMI_MASK 0x00000200L
+#define RAS_GLOBAL_STATUS_LO__SW_SCI_MASK 0x00000400L
+#define RAS_GLOBAL_STATUS_LO__SW_NMI_MASK 0x00000800L
+#define RAS_GLOBAL_STATUS_LO__APML_NMI_MASK 0x00001000L
+#define RAS_GLOBAL_STATUS_LO__APML_SyncFld_MASK 0x00002000L
+#define RAS_GLOBAL_STATUS_LO__PIN_SyncFld_NMI_MASK 0x00004000L
+#define RAS_GLOBAL_STATUS_LO__APML_SyncFld_Private_MASK 0x00008000L
+//RAS_GLOBAL_STATUS_HI
+#define RAS_GLOBAL_STATUS_HI__PCIE0PortAErr__SHIFT 0x0
+#define RAS_GLOBAL_STATUS_HI__PCIE0PortBErr__SHIFT 0x1
+#define RAS_GLOBAL_STATUS_HI__PCIE0PortCErr__SHIFT 0x2
+#define RAS_GLOBAL_STATUS_HI__PCIE0PortDErr__SHIFT 0x3
+#define RAS_GLOBAL_STATUS_HI__PCIE0PortEErr__SHIFT 0x4
+#define RAS_GLOBAL_STATUS_HI__PCIE0PortFErr__SHIFT 0x5
+#define RAS_GLOBAL_STATUS_HI__PCIE0PortGErr__SHIFT 0x6
+#define RAS_GLOBAL_STATUS_HI__PCIE0PortHErr__SHIFT 0x7
+#define RAS_GLOBAL_STATUS_HI__PCIE0PortIErr__SHIFT 0x8
+#define RAS_GLOBAL_STATUS_HI__PCIE1PortAErr__SHIFT 0x9
+#define RAS_GLOBAL_STATUS_HI__PCIE1PortBErr__SHIFT 0xa
+#define RAS_GLOBAL_STATUS_HI__PCIE1PortCErr__SHIFT 0xb
+#define RAS_GLOBAL_STATUS_HI__PCIE1PortDErr__SHIFT 0xc
+#define RAS_GLOBAL_STATUS_HI__NBIF1PortAErr__SHIFT 0xd
+#define RAS_GLOBAL_STATUS_HI__PCIE0PortAErr_MASK 0x00000001L
+#define RAS_GLOBAL_STATUS_HI__PCIE0PortBErr_MASK 0x00000002L
+#define RAS_GLOBAL_STATUS_HI__PCIE0PortCErr_MASK 0x00000004L
+#define RAS_GLOBAL_STATUS_HI__PCIE0PortDErr_MASK 0x00000008L
+#define RAS_GLOBAL_STATUS_HI__PCIE0PortEErr_MASK 0x00000010L
+#define RAS_GLOBAL_STATUS_HI__PCIE0PortFErr_MASK 0x00000020L
+#define RAS_GLOBAL_STATUS_HI__PCIE0PortGErr_MASK 0x00000040L
+#define RAS_GLOBAL_STATUS_HI__PCIE0PortHErr_MASK 0x00000080L
+#define RAS_GLOBAL_STATUS_HI__PCIE0PortIErr_MASK 0x00000100L
+#define RAS_GLOBAL_STATUS_HI__PCIE1PortAErr_MASK 0x00000200L
+#define RAS_GLOBAL_STATUS_HI__PCIE1PortBErr_MASK 0x00000400L
+#define RAS_GLOBAL_STATUS_HI__PCIE1PortCErr_MASK 0x00000800L
+#define RAS_GLOBAL_STATUS_HI__PCIE1PortDErr_MASK 0x00001000L
+#define RAS_GLOBAL_STATUS_HI__NBIF1PortAErr_MASK 0x00002000L
+//PARITY_ERROR_STATUS_UNCORR_GRP0
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id0__SHIFT 0x0
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id1__SHIFT 0x1
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id2__SHIFT 0x2
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id3__SHIFT 0x3
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id4__SHIFT 0x4
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id5__SHIFT 0x5
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id6__SHIFT 0x6
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id7__SHIFT 0x7
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id8__SHIFT 0x8
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id9__SHIFT 0x9
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id10__SHIFT 0xa
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id11__SHIFT 0xb
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id12__SHIFT 0xc
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id13__SHIFT 0xd
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id14__SHIFT 0xe
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id15__SHIFT 0xf
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id16__SHIFT 0x10
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id17__SHIFT 0x11
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id18__SHIFT 0x12
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id19__SHIFT 0x13
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id20__SHIFT 0x14
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id21__SHIFT 0x15
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id22__SHIFT 0x16
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id23__SHIFT 0x17
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id24__SHIFT 0x18
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id25__SHIFT 0x19
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id26__SHIFT 0x1a
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id27__SHIFT 0x1b
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id28__SHIFT 0x1c
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id29__SHIFT 0x1d
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id30__SHIFT 0x1e
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id31__SHIFT 0x1f
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id0_MASK 0x00000001L
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id1_MASK 0x00000002L
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id2_MASK 0x00000004L
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id3_MASK 0x00000008L
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id4_MASK 0x00000010L
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id5_MASK 0x00000020L
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id6_MASK 0x00000040L
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id7_MASK 0x00000080L
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id8_MASK 0x00000100L
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id9_MASK 0x00000200L
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id10_MASK 0x00000400L
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id11_MASK 0x00000800L
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id12_MASK 0x00001000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id13_MASK 0x00002000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id14_MASK 0x00004000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id15_MASK 0x00008000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id16_MASK 0x00010000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id17_MASK 0x00020000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id18_MASK 0x00040000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id19_MASK 0x00080000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id20_MASK 0x00100000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id21_MASK 0x00200000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id22_MASK 0x00400000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id23_MASK 0x00800000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id24_MASK 0x01000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id25_MASK 0x02000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id26_MASK 0x04000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id27_MASK 0x08000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id28_MASK 0x10000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id29_MASK 0x20000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id30_MASK 0x40000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP0__ParityErrDetected_Id31_MASK 0x80000000L
+//PARITY_ERROR_STATUS_UNCORR_GRP1
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id0__SHIFT 0x0
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id1__SHIFT 0x1
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id2__SHIFT 0x2
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id3__SHIFT 0x3
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id4__SHIFT 0x4
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id5__SHIFT 0x5
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id6__SHIFT 0x6
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id7__SHIFT 0x7
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id8__SHIFT 0x8
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id9__SHIFT 0x9
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id10__SHIFT 0xa
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id11__SHIFT 0xb
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id12__SHIFT 0xc
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id13__SHIFT 0xd
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id14__SHIFT 0xe
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id15__SHIFT 0xf
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id16__SHIFT 0x10
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id17__SHIFT 0x11
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id18__SHIFT 0x12
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id19__SHIFT 0x13
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id20__SHIFT 0x14
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id21__SHIFT 0x15
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id22__SHIFT 0x16
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id23__SHIFT 0x17
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id24__SHIFT 0x18
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id25__SHIFT 0x19
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id26__SHIFT 0x1a
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id27__SHIFT 0x1b
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id28__SHIFT 0x1c
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id29__SHIFT 0x1d
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id30__SHIFT 0x1e
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id31__SHIFT 0x1f
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id0_MASK 0x00000001L
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id1_MASK 0x00000002L
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id2_MASK 0x00000004L
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id3_MASK 0x00000008L
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id4_MASK 0x00000010L
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id5_MASK 0x00000020L
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id6_MASK 0x00000040L
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id7_MASK 0x00000080L
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id8_MASK 0x00000100L
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id9_MASK 0x00000200L
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id10_MASK 0x00000400L
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id11_MASK 0x00000800L
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id12_MASK 0x00001000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id13_MASK 0x00002000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id14_MASK 0x00004000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id15_MASK 0x00008000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id16_MASK 0x00010000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id17_MASK 0x00020000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id18_MASK 0x00040000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id19_MASK 0x00080000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id20_MASK 0x00100000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id21_MASK 0x00200000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id22_MASK 0x00400000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id23_MASK 0x00800000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id24_MASK 0x01000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id25_MASK 0x02000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id26_MASK 0x04000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id27_MASK 0x08000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id28_MASK 0x10000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id29_MASK 0x20000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id30_MASK 0x40000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP1__ParityErrDetected_Id31_MASK 0x80000000L
+//PARITY_ERROR_STATUS_UNCORR_GRP2
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id0__SHIFT 0x0
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id1__SHIFT 0x1
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id2__SHIFT 0x2
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id3__SHIFT 0x3
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id4__SHIFT 0x4
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id5__SHIFT 0x5
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id6__SHIFT 0x6
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id7__SHIFT 0x7
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id8__SHIFT 0x8
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id9__SHIFT 0x9
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id10__SHIFT 0xa
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id11__SHIFT 0xb
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id12__SHIFT 0xc
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id13__SHIFT 0xd
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id14__SHIFT 0xe
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id15__SHIFT 0xf
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id16__SHIFT 0x10
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id17__SHIFT 0x11
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id18__SHIFT 0x12
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id19__SHIFT 0x13
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id20__SHIFT 0x14
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id21__SHIFT 0x15
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id22__SHIFT 0x16
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id23__SHIFT 0x17
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id24__SHIFT 0x18
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id25__SHIFT 0x19
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id26__SHIFT 0x1a
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id27__SHIFT 0x1b
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id28__SHIFT 0x1c
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id29__SHIFT 0x1d
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id30__SHIFT 0x1e
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id31__SHIFT 0x1f
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id0_MASK 0x00000001L
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id1_MASK 0x00000002L
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id2_MASK 0x00000004L
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id3_MASK 0x00000008L
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id4_MASK 0x00000010L
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id5_MASK 0x00000020L
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id6_MASK 0x00000040L
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id7_MASK 0x00000080L
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id8_MASK 0x00000100L
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id9_MASK 0x00000200L
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id10_MASK 0x00000400L
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id11_MASK 0x00000800L
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id12_MASK 0x00001000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id13_MASK 0x00002000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id14_MASK 0x00004000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id15_MASK 0x00008000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id16_MASK 0x00010000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id17_MASK 0x00020000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id18_MASK 0x00040000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id19_MASK 0x00080000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id20_MASK 0x00100000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id21_MASK 0x00200000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id22_MASK 0x00400000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id23_MASK 0x00800000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id24_MASK 0x01000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id25_MASK 0x02000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id26_MASK 0x04000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id27_MASK 0x08000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id28_MASK 0x10000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id29_MASK 0x20000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id30_MASK 0x40000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP2__ParityErrDetected_Id31_MASK 0x80000000L
+//PARITY_ERROR_STATUS_UNCORR_GRP3
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id0__SHIFT 0x0
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id1__SHIFT 0x1
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id2__SHIFT 0x2
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id3__SHIFT 0x3
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id4__SHIFT 0x4
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id5__SHIFT 0x5
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id6__SHIFT 0x6
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id7__SHIFT 0x7
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id8__SHIFT 0x8
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id9__SHIFT 0x9
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id10__SHIFT 0xa
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id11__SHIFT 0xb
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id12__SHIFT 0xc
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id13__SHIFT 0xd
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id14__SHIFT 0xe
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id15__SHIFT 0xf
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id16__SHIFT 0x10
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id17__SHIFT 0x11
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id18__SHIFT 0x12
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id19__SHIFT 0x13
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id20__SHIFT 0x14
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id21__SHIFT 0x15
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id22__SHIFT 0x16
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id23__SHIFT 0x17
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id24__SHIFT 0x18
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id25__SHIFT 0x19
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id26__SHIFT 0x1a
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id27__SHIFT 0x1b
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id28__SHIFT 0x1c
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id29__SHIFT 0x1d
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id30__SHIFT 0x1e
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id31__SHIFT 0x1f
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id0_MASK 0x00000001L
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id1_MASK 0x00000002L
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id2_MASK 0x00000004L
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id3_MASK 0x00000008L
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id4_MASK 0x00000010L
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id5_MASK 0x00000020L
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id6_MASK 0x00000040L
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id7_MASK 0x00000080L
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id8_MASK 0x00000100L
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id9_MASK 0x00000200L
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id10_MASK 0x00000400L
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id11_MASK 0x00000800L
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id12_MASK 0x00001000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id13_MASK 0x00002000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id14_MASK 0x00004000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id15_MASK 0x00008000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id16_MASK 0x00010000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id17_MASK 0x00020000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id18_MASK 0x00040000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id19_MASK 0x00080000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id20_MASK 0x00100000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id21_MASK 0x00200000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id22_MASK 0x00400000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id23_MASK 0x00800000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id24_MASK 0x01000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id25_MASK 0x02000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id26_MASK 0x04000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id27_MASK 0x08000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id28_MASK 0x10000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id29_MASK 0x20000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id30_MASK 0x40000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP3__ParityErrDetected_Id31_MASK 0x80000000L
+//PARITY_ERROR_STATUS_UNCORR_GRP4
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id0__SHIFT 0x0
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id1__SHIFT 0x1
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id2__SHIFT 0x2
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id3__SHIFT 0x3
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id4__SHIFT 0x4
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id5__SHIFT 0x5
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id6__SHIFT 0x6
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id7__SHIFT 0x7
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id8__SHIFT 0x8
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id9__SHIFT 0x9
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id10__SHIFT 0xa
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id11__SHIFT 0xb
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id12__SHIFT 0xc
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id13__SHIFT 0xd
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id14__SHIFT 0xe
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id15__SHIFT 0xf
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id16__SHIFT 0x10
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id17__SHIFT 0x11
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id18__SHIFT 0x12
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id19__SHIFT 0x13
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id20__SHIFT 0x14
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id21__SHIFT 0x15
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id22__SHIFT 0x16
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id23__SHIFT 0x17
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id24__SHIFT 0x18
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id25__SHIFT 0x19
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id26__SHIFT 0x1a
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id27__SHIFT 0x1b
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id28__SHIFT 0x1c
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id29__SHIFT 0x1d
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id30__SHIFT 0x1e
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id31__SHIFT 0x1f
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id0_MASK 0x00000001L
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id1_MASK 0x00000002L
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id2_MASK 0x00000004L
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id3_MASK 0x00000008L
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id4_MASK 0x00000010L
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id5_MASK 0x00000020L
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id6_MASK 0x00000040L
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id7_MASK 0x00000080L
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id8_MASK 0x00000100L
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id9_MASK 0x00000200L
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id10_MASK 0x00000400L
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id11_MASK 0x00000800L
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id12_MASK 0x00001000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id13_MASK 0x00002000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id14_MASK 0x00004000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id15_MASK 0x00008000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id16_MASK 0x00010000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id17_MASK 0x00020000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id18_MASK 0x00040000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id19_MASK 0x00080000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id20_MASK 0x00100000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id21_MASK 0x00200000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id22_MASK 0x00400000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id23_MASK 0x00800000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id24_MASK 0x01000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id25_MASK 0x02000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id26_MASK 0x04000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id27_MASK 0x08000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id28_MASK 0x10000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id29_MASK 0x20000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id30_MASK 0x40000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP4__ParityErrDetected_Id31_MASK 0x80000000L
+//PARITY_ERROR_STATUS_UNCORR_GRP5
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id0__SHIFT 0x0
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id1__SHIFT 0x1
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id2__SHIFT 0x2
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id3__SHIFT 0x3
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id4__SHIFT 0x4
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id5__SHIFT 0x5
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id6__SHIFT 0x6
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id7__SHIFT 0x7
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id8__SHIFT 0x8
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id9__SHIFT 0x9
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id10__SHIFT 0xa
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id11__SHIFT 0xb
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id12__SHIFT 0xc
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id13__SHIFT 0xd
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id14__SHIFT 0xe
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id15__SHIFT 0xf
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id16__SHIFT 0x10
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id17__SHIFT 0x11
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id18__SHIFT 0x12
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id19__SHIFT 0x13
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id20__SHIFT 0x14
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id21__SHIFT 0x15
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id22__SHIFT 0x16
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id23__SHIFT 0x17
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id24__SHIFT 0x18
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id25__SHIFT 0x19
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id26__SHIFT 0x1a
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id27__SHIFT 0x1b
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id28__SHIFT 0x1c
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id29__SHIFT 0x1d
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id30__SHIFT 0x1e
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id31__SHIFT 0x1f
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id0_MASK 0x00000001L
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id1_MASK 0x00000002L
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id2_MASK 0x00000004L
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id3_MASK 0x00000008L
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id4_MASK 0x00000010L
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id5_MASK 0x00000020L
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id6_MASK 0x00000040L
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id7_MASK 0x00000080L
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id8_MASK 0x00000100L
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id9_MASK 0x00000200L
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id10_MASK 0x00000400L
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id11_MASK 0x00000800L
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id12_MASK 0x00001000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id13_MASK 0x00002000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id14_MASK 0x00004000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id15_MASK 0x00008000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id16_MASK 0x00010000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id17_MASK 0x00020000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id18_MASK 0x00040000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id19_MASK 0x00080000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id20_MASK 0x00100000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id21_MASK 0x00200000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id22_MASK 0x00400000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id23_MASK 0x00800000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id24_MASK 0x01000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id25_MASK 0x02000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id26_MASK 0x04000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id27_MASK 0x08000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id28_MASK 0x10000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id29_MASK 0x20000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id30_MASK 0x40000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP5__ParityErrDetected_Id31_MASK 0x80000000L
+//PARITY_ERROR_STATUS_UNCORR_GRP6
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id0__SHIFT 0x0
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id1__SHIFT 0x1
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id2__SHIFT 0x2
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id3__SHIFT 0x3
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id4__SHIFT 0x4
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id5__SHIFT 0x5
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id6__SHIFT 0x6
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id7__SHIFT 0x7
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id8__SHIFT 0x8
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id9__SHIFT 0x9
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id10__SHIFT 0xa
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id11__SHIFT 0xb
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id12__SHIFT 0xc
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id13__SHIFT 0xd
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id14__SHIFT 0xe
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id15__SHIFT 0xf
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id16__SHIFT 0x10
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id17__SHIFT 0x11
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id18__SHIFT 0x12
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id19__SHIFT 0x13
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id20__SHIFT 0x14
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id21__SHIFT 0x15
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id22__SHIFT 0x16
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id23__SHIFT 0x17
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id24__SHIFT 0x18
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id25__SHIFT 0x19
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id26__SHIFT 0x1a
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id27__SHIFT 0x1b
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id28__SHIFT 0x1c
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id29__SHIFT 0x1d
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id30__SHIFT 0x1e
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id31__SHIFT 0x1f
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id0_MASK 0x00000001L
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id1_MASK 0x00000002L
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id2_MASK 0x00000004L
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id3_MASK 0x00000008L
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id4_MASK 0x00000010L
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id5_MASK 0x00000020L
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id6_MASK 0x00000040L
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id7_MASK 0x00000080L
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id8_MASK 0x00000100L
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id9_MASK 0x00000200L
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id10_MASK 0x00000400L
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id11_MASK 0x00000800L
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id12_MASK 0x00001000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id13_MASK 0x00002000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id14_MASK 0x00004000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id15_MASK 0x00008000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id16_MASK 0x00010000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id17_MASK 0x00020000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id18_MASK 0x00040000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id19_MASK 0x00080000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id20_MASK 0x00100000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id21_MASK 0x00200000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id22_MASK 0x00400000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id23_MASK 0x00800000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id24_MASK 0x01000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id25_MASK 0x02000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id26_MASK 0x04000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id27_MASK 0x08000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id28_MASK 0x10000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id29_MASK 0x20000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id30_MASK 0x40000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP6__ParityErrDetected_Id31_MASK 0x80000000L
+//PARITY_ERROR_STATUS_UNCORR_GRP7
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id0__SHIFT 0x0
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id1__SHIFT 0x1
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id2__SHIFT 0x2
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id3__SHIFT 0x3
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id4__SHIFT 0x4
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id5__SHIFT 0x5
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id6__SHIFT 0x6
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id7__SHIFT 0x7
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id8__SHIFT 0x8
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id9__SHIFT 0x9
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id10__SHIFT 0xa
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id11__SHIFT 0xb
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id12__SHIFT 0xc
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id13__SHIFT 0xd
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id14__SHIFT 0xe
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id15__SHIFT 0xf
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id16__SHIFT 0x10
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id17__SHIFT 0x11
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id18__SHIFT 0x12
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id19__SHIFT 0x13
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id20__SHIFT 0x14
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id21__SHIFT 0x15
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id22__SHIFT 0x16
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id23__SHIFT 0x17
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id24__SHIFT 0x18
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id25__SHIFT 0x19
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id26__SHIFT 0x1a
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id27__SHIFT 0x1b
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id28__SHIFT 0x1c
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id29__SHIFT 0x1d
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id30__SHIFT 0x1e
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id31__SHIFT 0x1f
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id0_MASK 0x00000001L
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id1_MASK 0x00000002L
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id2_MASK 0x00000004L
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id3_MASK 0x00000008L
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id4_MASK 0x00000010L
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id5_MASK 0x00000020L
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id6_MASK 0x00000040L
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id7_MASK 0x00000080L
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id8_MASK 0x00000100L
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id9_MASK 0x00000200L
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id10_MASK 0x00000400L
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id11_MASK 0x00000800L
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id12_MASK 0x00001000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id13_MASK 0x00002000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id14_MASK 0x00004000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id15_MASK 0x00008000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id16_MASK 0x00010000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id17_MASK 0x00020000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id18_MASK 0x00040000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id19_MASK 0x00080000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id20_MASK 0x00100000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id21_MASK 0x00200000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id22_MASK 0x00400000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id23_MASK 0x00800000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id24_MASK 0x01000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id25_MASK 0x02000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id26_MASK 0x04000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id27_MASK 0x08000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id28_MASK 0x10000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id29_MASK 0x20000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id30_MASK 0x40000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP7__ParityErrDetected_Id31_MASK 0x80000000L
+//PARITY_ERROR_STATUS_UNCORR_GRP10
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id0__SHIFT 0x0
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id1__SHIFT 0x1
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id2__SHIFT 0x2
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id3__SHIFT 0x3
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id4__SHIFT 0x4
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id5__SHIFT 0x5
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id6__SHIFT 0x6
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id7__SHIFT 0x7
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id8__SHIFT 0x8
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id9__SHIFT 0x9
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id10__SHIFT 0xa
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id11__SHIFT 0xb
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id12__SHIFT 0xc
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id13__SHIFT 0xd
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id14__SHIFT 0xe
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id15__SHIFT 0xf
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id16__SHIFT 0x10
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id17__SHIFT 0x11
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id18__SHIFT 0x12
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id19__SHIFT 0x13
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id20__SHIFT 0x14
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id21__SHIFT 0x15
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id22__SHIFT 0x16
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id23__SHIFT 0x17
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id24__SHIFT 0x18
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id25__SHIFT 0x19
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id26__SHIFT 0x1a
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id27__SHIFT 0x1b
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id28__SHIFT 0x1c
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id29__SHIFT 0x1d
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id30__SHIFT 0x1e
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id31__SHIFT 0x1f
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id0_MASK 0x00000001L
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id1_MASK 0x00000002L
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id2_MASK 0x00000004L
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id3_MASK 0x00000008L
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id4_MASK 0x00000010L
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id5_MASK 0x00000020L
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id6_MASK 0x00000040L
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id7_MASK 0x00000080L
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id8_MASK 0x00000100L
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id9_MASK 0x00000200L
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id10_MASK 0x00000400L
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id11_MASK 0x00000800L
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id12_MASK 0x00001000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id13_MASK 0x00002000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id14_MASK 0x00004000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id15_MASK 0x00008000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id16_MASK 0x00010000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id17_MASK 0x00020000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id18_MASK 0x00040000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id19_MASK 0x00080000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id20_MASK 0x00100000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id21_MASK 0x00200000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id22_MASK 0x00400000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id23_MASK 0x00800000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id24_MASK 0x01000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id25_MASK 0x02000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id26_MASK 0x04000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id27_MASK 0x08000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id28_MASK 0x10000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id29_MASK 0x20000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id30_MASK 0x40000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP10__ParityErrDetected_Id31_MASK 0x80000000L
+//PARITY_ERROR_STATUS_UNCORR_GRP11
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id0__SHIFT 0x0
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id1__SHIFT 0x1
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id2__SHIFT 0x2
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id3__SHIFT 0x3
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id4__SHIFT 0x4
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id5__SHIFT 0x5
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id6__SHIFT 0x6
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id7__SHIFT 0x7
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id8__SHIFT 0x8
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id9__SHIFT 0x9
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id10__SHIFT 0xa
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id11__SHIFT 0xb
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id12__SHIFT 0xc
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id13__SHIFT 0xd
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id14__SHIFT 0xe
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id15__SHIFT 0xf
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id16__SHIFT 0x10
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id17__SHIFT 0x11
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id18__SHIFT 0x12
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id19__SHIFT 0x13
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id20__SHIFT 0x14
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id21__SHIFT 0x15
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id22__SHIFT 0x16
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id23__SHIFT 0x17
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id24__SHIFT 0x18
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id25__SHIFT 0x19
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id26__SHIFT 0x1a
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id27__SHIFT 0x1b
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id28__SHIFT 0x1c
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id29__SHIFT 0x1d
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id30__SHIFT 0x1e
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id31__SHIFT 0x1f
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id0_MASK 0x00000001L
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id1_MASK 0x00000002L
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id2_MASK 0x00000004L
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id3_MASK 0x00000008L
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id4_MASK 0x00000010L
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id5_MASK 0x00000020L
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id6_MASK 0x00000040L
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id7_MASK 0x00000080L
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id8_MASK 0x00000100L
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id9_MASK 0x00000200L
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id10_MASK 0x00000400L
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id11_MASK 0x00000800L
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id12_MASK 0x00001000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id13_MASK 0x00002000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id14_MASK 0x00004000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id15_MASK 0x00008000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id16_MASK 0x00010000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id17_MASK 0x00020000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id18_MASK 0x00040000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id19_MASK 0x00080000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id20_MASK 0x00100000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id21_MASK 0x00200000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id22_MASK 0x00400000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id23_MASK 0x00800000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id24_MASK 0x01000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id25_MASK 0x02000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id26_MASK 0x04000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id27_MASK 0x08000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id28_MASK 0x10000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id29_MASK 0x20000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id30_MASK 0x40000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP11__ParityErrDetected_Id31_MASK 0x80000000L
+//PARITY_ERROR_STATUS_UNCORR_GRP12
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id0__SHIFT 0x0
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id1__SHIFT 0x1
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id2__SHIFT 0x2
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id3__SHIFT 0x3
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id4__SHIFT 0x4
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id5__SHIFT 0x5
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id6__SHIFT 0x6
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id7__SHIFT 0x7
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id8__SHIFT 0x8
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id9__SHIFT 0x9
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id10__SHIFT 0xa
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id11__SHIFT 0xb
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id12__SHIFT 0xc
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id13__SHIFT 0xd
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id14__SHIFT 0xe
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id15__SHIFT 0xf
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id16__SHIFT 0x10
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id17__SHIFT 0x11
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id18__SHIFT 0x12
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id19__SHIFT 0x13
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id20__SHIFT 0x14
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id21__SHIFT 0x15
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id22__SHIFT 0x16
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id23__SHIFT 0x17
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id24__SHIFT 0x18
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id25__SHIFT 0x19
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id26__SHIFT 0x1a
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id27__SHIFT 0x1b
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id28__SHIFT 0x1c
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id29__SHIFT 0x1d
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id30__SHIFT 0x1e
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id31__SHIFT 0x1f
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id0_MASK 0x00000001L
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id1_MASK 0x00000002L
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id2_MASK 0x00000004L
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id3_MASK 0x00000008L
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id4_MASK 0x00000010L
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id5_MASK 0x00000020L
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id6_MASK 0x00000040L
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id7_MASK 0x00000080L
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id8_MASK 0x00000100L
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id9_MASK 0x00000200L
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id10_MASK 0x00000400L
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id11_MASK 0x00000800L
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id12_MASK 0x00001000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id13_MASK 0x00002000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id14_MASK 0x00004000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id15_MASK 0x00008000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id16_MASK 0x00010000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id17_MASK 0x00020000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id18_MASK 0x00040000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id19_MASK 0x00080000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id20_MASK 0x00100000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id21_MASK 0x00200000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id22_MASK 0x00400000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id23_MASK 0x00800000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id24_MASK 0x01000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id25_MASK 0x02000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id26_MASK 0x04000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id27_MASK 0x08000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id28_MASK 0x10000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id29_MASK 0x20000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id30_MASK 0x40000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP12__ParityErrDetected_Id31_MASK 0x80000000L
+//PARITY_ERROR_STATUS_UNCORR_GRP13
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id0__SHIFT 0x0
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id1__SHIFT 0x1
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id2__SHIFT 0x2
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id3__SHIFT 0x3
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id4__SHIFT 0x4
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id5__SHIFT 0x5
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id6__SHIFT 0x6
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id7__SHIFT 0x7
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id8__SHIFT 0x8
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id9__SHIFT 0x9
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id10__SHIFT 0xa
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id11__SHIFT 0xb
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id12__SHIFT 0xc
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id13__SHIFT 0xd
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id14__SHIFT 0xe
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id15__SHIFT 0xf
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id16__SHIFT 0x10
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id17__SHIFT 0x11
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id18__SHIFT 0x12
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id19__SHIFT 0x13
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id20__SHIFT 0x14
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id21__SHIFT 0x15
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id22__SHIFT 0x16
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id23__SHIFT 0x17
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id24__SHIFT 0x18
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id25__SHIFT 0x19
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id26__SHIFT 0x1a
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id27__SHIFT 0x1b
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id28__SHIFT 0x1c
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id29__SHIFT 0x1d
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id30__SHIFT 0x1e
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id31__SHIFT 0x1f
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id0_MASK 0x00000001L
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id1_MASK 0x00000002L
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id2_MASK 0x00000004L
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id3_MASK 0x00000008L
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id4_MASK 0x00000010L
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id5_MASK 0x00000020L
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id6_MASK 0x00000040L
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id7_MASK 0x00000080L
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id8_MASK 0x00000100L
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id9_MASK 0x00000200L
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id10_MASK 0x00000400L
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id11_MASK 0x00000800L
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id12_MASK 0x00001000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id13_MASK 0x00002000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id14_MASK 0x00004000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id15_MASK 0x00008000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id16_MASK 0x00010000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id17_MASK 0x00020000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id18_MASK 0x00040000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id19_MASK 0x00080000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id20_MASK 0x00100000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id21_MASK 0x00200000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id22_MASK 0x00400000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id23_MASK 0x00800000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id24_MASK 0x01000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id25_MASK 0x02000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id26_MASK 0x04000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id27_MASK 0x08000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id28_MASK 0x10000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id29_MASK 0x20000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id30_MASK 0x40000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP13__ParityErrDetected_Id31_MASK 0x80000000L
+//PARITY_ERROR_STATUS_UNCORR_GRP14
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id0__SHIFT 0x0
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id1__SHIFT 0x1
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id2__SHIFT 0x2
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id3__SHIFT 0x3
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id4__SHIFT 0x4
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id5__SHIFT 0x5
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id6__SHIFT 0x6
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id7__SHIFT 0x7
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id8__SHIFT 0x8
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id9__SHIFT 0x9
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id10__SHIFT 0xa
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id11__SHIFT 0xb
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id12__SHIFT 0xc
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id13__SHIFT 0xd
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id14__SHIFT 0xe
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id15__SHIFT 0xf
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id16__SHIFT 0x10
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id17__SHIFT 0x11
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id18__SHIFT 0x12
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id19__SHIFT 0x13
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id20__SHIFT 0x14
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id21__SHIFT 0x15
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id22__SHIFT 0x16
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id23__SHIFT 0x17
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id24__SHIFT 0x18
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id25__SHIFT 0x19
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id26__SHIFT 0x1a
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id27__SHIFT 0x1b
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id28__SHIFT 0x1c
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id29__SHIFT 0x1d
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id30__SHIFT 0x1e
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id31__SHIFT 0x1f
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id0_MASK 0x00000001L
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id1_MASK 0x00000002L
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id2_MASK 0x00000004L
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id3_MASK 0x00000008L
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id4_MASK 0x00000010L
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id5_MASK 0x00000020L
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id6_MASK 0x00000040L
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id7_MASK 0x00000080L
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id8_MASK 0x00000100L
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id9_MASK 0x00000200L
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id10_MASK 0x00000400L
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id11_MASK 0x00000800L
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id12_MASK 0x00001000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id13_MASK 0x00002000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id14_MASK 0x00004000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id15_MASK 0x00008000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id16_MASK 0x00010000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id17_MASK 0x00020000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id18_MASK 0x00040000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id19_MASK 0x00080000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id20_MASK 0x00100000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id21_MASK 0x00200000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id22_MASK 0x00400000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id23_MASK 0x00800000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id24_MASK 0x01000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id25_MASK 0x02000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id26_MASK 0x04000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id27_MASK 0x08000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id28_MASK 0x10000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id29_MASK 0x20000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id30_MASK 0x40000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP14__ParityErrDetected_Id31_MASK 0x80000000L
+//PARITY_ERROR_STATUS_UNCORR_GRP15
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id0__SHIFT 0x0
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id1__SHIFT 0x1
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id2__SHIFT 0x2
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id3__SHIFT 0x3
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id4__SHIFT 0x4
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id5__SHIFT 0x5
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id6__SHIFT 0x6
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id7__SHIFT 0x7
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id8__SHIFT 0x8
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id9__SHIFT 0x9
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id10__SHIFT 0xa
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id11__SHIFT 0xb
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id12__SHIFT 0xc
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id13__SHIFT 0xd
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id14__SHIFT 0xe
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id15__SHIFT 0xf
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id16__SHIFT 0x10
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id17__SHIFT 0x11
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id18__SHIFT 0x12
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id19__SHIFT 0x13
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id20__SHIFT 0x14
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id21__SHIFT 0x15
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id22__SHIFT 0x16
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id23__SHIFT 0x17
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id24__SHIFT 0x18
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id25__SHIFT 0x19
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id26__SHIFT 0x1a
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id27__SHIFT 0x1b
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id28__SHIFT 0x1c
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id29__SHIFT 0x1d
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id30__SHIFT 0x1e
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id31__SHIFT 0x1f
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id0_MASK 0x00000001L
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id1_MASK 0x00000002L
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id2_MASK 0x00000004L
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id3_MASK 0x00000008L
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id4_MASK 0x00000010L
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id5_MASK 0x00000020L
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id6_MASK 0x00000040L
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id7_MASK 0x00000080L
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id8_MASK 0x00000100L
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id9_MASK 0x00000200L
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id10_MASK 0x00000400L
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id11_MASK 0x00000800L
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id12_MASK 0x00001000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id13_MASK 0x00002000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id14_MASK 0x00004000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id15_MASK 0x00008000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id16_MASK 0x00010000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id17_MASK 0x00020000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id18_MASK 0x00040000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id19_MASK 0x00080000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id20_MASK 0x00100000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id21_MASK 0x00200000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id22_MASK 0x00400000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id23_MASK 0x00800000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id24_MASK 0x01000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id25_MASK 0x02000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id26_MASK 0x04000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id27_MASK 0x08000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id28_MASK 0x10000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id29_MASK 0x20000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id30_MASK 0x40000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP15__ParityErrDetected_Id31_MASK 0x80000000L
+//PARITY_ERROR_STATUS_UNCORR_GRP16
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id0__SHIFT 0x0
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id1__SHIFT 0x1
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id2__SHIFT 0x2
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id3__SHIFT 0x3
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id4__SHIFT 0x4
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id5__SHIFT 0x5
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id6__SHIFT 0x6
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id7__SHIFT 0x7
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id8__SHIFT 0x8
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id9__SHIFT 0x9
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id10__SHIFT 0xa
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id11__SHIFT 0xb
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id12__SHIFT 0xc
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id13__SHIFT 0xd
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id14__SHIFT 0xe
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id15__SHIFT 0xf
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id16__SHIFT 0x10
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id17__SHIFT 0x11
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id18__SHIFT 0x12
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id19__SHIFT 0x13
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id20__SHIFT 0x14
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id21__SHIFT 0x15
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id22__SHIFT 0x16
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id23__SHIFT 0x17
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id24__SHIFT 0x18
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id25__SHIFT 0x19
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id26__SHIFT 0x1a
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id27__SHIFT 0x1b
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id28__SHIFT 0x1c
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id29__SHIFT 0x1d
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id30__SHIFT 0x1e
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id31__SHIFT 0x1f
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id0_MASK 0x00000001L
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id1_MASK 0x00000002L
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id2_MASK 0x00000004L
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id3_MASK 0x00000008L
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id4_MASK 0x00000010L
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id5_MASK 0x00000020L
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id6_MASK 0x00000040L
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id7_MASK 0x00000080L
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id8_MASK 0x00000100L
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id9_MASK 0x00000200L
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id10_MASK 0x00000400L
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id11_MASK 0x00000800L
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id12_MASK 0x00001000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id13_MASK 0x00002000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id14_MASK 0x00004000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id15_MASK 0x00008000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id16_MASK 0x00010000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id17_MASK 0x00020000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id18_MASK 0x00040000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id19_MASK 0x00080000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id20_MASK 0x00100000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id21_MASK 0x00200000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id22_MASK 0x00400000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id23_MASK 0x00800000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id24_MASK 0x01000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id25_MASK 0x02000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id26_MASK 0x04000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id27_MASK 0x08000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id28_MASK 0x10000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id29_MASK 0x20000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id30_MASK 0x40000000L
+#define PARITY_ERROR_STATUS_UNCORR_GRP16__ParityErrDetected_Id31_MASK 0x80000000L
+//PARITY_ERROR_STATUS_CORR_GRP0
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id0__SHIFT 0x0
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id1__SHIFT 0x1
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id2__SHIFT 0x2
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id3__SHIFT 0x3
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id4__SHIFT 0x4
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id5__SHIFT 0x5
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id6__SHIFT 0x6
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id7__SHIFT 0x7
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id8__SHIFT 0x8
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id9__SHIFT 0x9
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id10__SHIFT 0xa
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id11__SHIFT 0xb
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id12__SHIFT 0xc
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id13__SHIFT 0xd
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id14__SHIFT 0xe
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id15__SHIFT 0xf
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id16__SHIFT 0x10
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id17__SHIFT 0x11
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id18__SHIFT 0x12
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id19__SHIFT 0x13
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id20__SHIFT 0x14
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id21__SHIFT 0x15
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id22__SHIFT 0x16
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id23__SHIFT 0x17
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id24__SHIFT 0x18
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id25__SHIFT 0x19
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id26__SHIFT 0x1a
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id27__SHIFT 0x1b
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id28__SHIFT 0x1c
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id29__SHIFT 0x1d
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id30__SHIFT 0x1e
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id31__SHIFT 0x1f
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id0_MASK 0x00000001L
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id1_MASK 0x00000002L
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id2_MASK 0x00000004L
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id3_MASK 0x00000008L
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id4_MASK 0x00000010L
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id5_MASK 0x00000020L
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id6_MASK 0x00000040L
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id7_MASK 0x00000080L
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id8_MASK 0x00000100L
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id9_MASK 0x00000200L
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id10_MASK 0x00000400L
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id11_MASK 0x00000800L
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id12_MASK 0x00001000L
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id13_MASK 0x00002000L
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id14_MASK 0x00004000L
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id15_MASK 0x00008000L
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id16_MASK 0x00010000L
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id17_MASK 0x00020000L
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id18_MASK 0x00040000L
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id19_MASK 0x00080000L
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id20_MASK 0x00100000L
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id21_MASK 0x00200000L
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id22_MASK 0x00400000L
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id23_MASK 0x00800000L
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id24_MASK 0x01000000L
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id25_MASK 0x02000000L
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id26_MASK 0x04000000L
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id27_MASK 0x08000000L
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id28_MASK 0x10000000L
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id29_MASK 0x20000000L
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id30_MASK 0x40000000L
+#define PARITY_ERROR_STATUS_CORR_GRP0__ParityErrDetected_Id31_MASK 0x80000000L
+//PARITY_ERROR_STATUS_CORR_GRP1
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id0__SHIFT 0x0
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id1__SHIFT 0x1
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id2__SHIFT 0x2
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id3__SHIFT 0x3
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id4__SHIFT 0x4
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id5__SHIFT 0x5
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id6__SHIFT 0x6
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id7__SHIFT 0x7
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id8__SHIFT 0x8
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id9__SHIFT 0x9
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id10__SHIFT 0xa
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id11__SHIFT 0xb
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id12__SHIFT 0xc
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id13__SHIFT 0xd
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id14__SHIFT 0xe
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id15__SHIFT 0xf
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id16__SHIFT 0x10
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id17__SHIFT 0x11
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id18__SHIFT 0x12
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id19__SHIFT 0x13
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id20__SHIFT 0x14
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id21__SHIFT 0x15
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id22__SHIFT 0x16
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id23__SHIFT 0x17
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id24__SHIFT 0x18
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id25__SHIFT 0x19
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id26__SHIFT 0x1a
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id27__SHIFT 0x1b
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id28__SHIFT 0x1c
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id29__SHIFT 0x1d
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id30__SHIFT 0x1e
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id31__SHIFT 0x1f
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id0_MASK 0x00000001L
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id1_MASK 0x00000002L
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id2_MASK 0x00000004L
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id3_MASK 0x00000008L
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id4_MASK 0x00000010L
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id5_MASK 0x00000020L
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id6_MASK 0x00000040L
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id7_MASK 0x00000080L
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id8_MASK 0x00000100L
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id9_MASK 0x00000200L
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id10_MASK 0x00000400L
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id11_MASK 0x00000800L
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id12_MASK 0x00001000L
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id13_MASK 0x00002000L
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id14_MASK 0x00004000L
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id15_MASK 0x00008000L
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id16_MASK 0x00010000L
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id17_MASK 0x00020000L
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id18_MASK 0x00040000L
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id19_MASK 0x00080000L
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id20_MASK 0x00100000L
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id21_MASK 0x00200000L
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id22_MASK 0x00400000L
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id23_MASK 0x00800000L
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id24_MASK 0x01000000L
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id25_MASK 0x02000000L
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id26_MASK 0x04000000L
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id27_MASK 0x08000000L
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id28_MASK 0x10000000L
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id29_MASK 0x20000000L
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id30_MASK 0x40000000L
+#define PARITY_ERROR_STATUS_CORR_GRP1__ParityErrDetected_Id31_MASK 0x80000000L
+//PARITY_ERROR_STATUS_CORR_GRP2
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id0__SHIFT 0x0
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id1__SHIFT 0x1
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id2__SHIFT 0x2
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id3__SHIFT 0x3
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id4__SHIFT 0x4
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id5__SHIFT 0x5
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id6__SHIFT 0x6
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id7__SHIFT 0x7
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id8__SHIFT 0x8
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id9__SHIFT 0x9
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id10__SHIFT 0xa
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id11__SHIFT 0xb
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id12__SHIFT 0xc
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id13__SHIFT 0xd
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id14__SHIFT 0xe
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id15__SHIFT 0xf
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id16__SHIFT 0x10
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id17__SHIFT 0x11
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id18__SHIFT 0x12
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id19__SHIFT 0x13
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id20__SHIFT 0x14
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id21__SHIFT 0x15
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id22__SHIFT 0x16
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id23__SHIFT 0x17
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id24__SHIFT 0x18
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id25__SHIFT 0x19
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id26__SHIFT 0x1a
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id27__SHIFT 0x1b
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id28__SHIFT 0x1c
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id29__SHIFT 0x1d
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id30__SHIFT 0x1e
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id31__SHIFT 0x1f
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id0_MASK 0x00000001L
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id1_MASK 0x00000002L
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id2_MASK 0x00000004L
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id3_MASK 0x00000008L
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id4_MASK 0x00000010L
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id5_MASK 0x00000020L
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id6_MASK 0x00000040L
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id7_MASK 0x00000080L
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id8_MASK 0x00000100L
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id9_MASK 0x00000200L
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id10_MASK 0x00000400L
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id11_MASK 0x00000800L
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id12_MASK 0x00001000L
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id13_MASK 0x00002000L
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id14_MASK 0x00004000L
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id15_MASK 0x00008000L
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id16_MASK 0x00010000L
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id17_MASK 0x00020000L
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id18_MASK 0x00040000L
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id19_MASK 0x00080000L
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id20_MASK 0x00100000L
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id21_MASK 0x00200000L
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id22_MASK 0x00400000L
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id23_MASK 0x00800000L
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id24_MASK 0x01000000L
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id25_MASK 0x02000000L
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id26_MASK 0x04000000L
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id27_MASK 0x08000000L
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id28_MASK 0x10000000L
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id29_MASK 0x20000000L
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id30_MASK 0x40000000L
+#define PARITY_ERROR_STATUS_CORR_GRP2__ParityErrDetected_Id31_MASK 0x80000000L
+//PARITY_ERROR_STATUS_CORR_GRP3
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id0__SHIFT 0x0
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id1__SHIFT 0x1
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id2__SHIFT 0x2
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id3__SHIFT 0x3
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id4__SHIFT 0x4
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id5__SHIFT 0x5
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id6__SHIFT 0x6
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id7__SHIFT 0x7
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id8__SHIFT 0x8
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id9__SHIFT 0x9
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id10__SHIFT 0xa
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id11__SHIFT 0xb
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id12__SHIFT 0xc
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id13__SHIFT 0xd
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id14__SHIFT 0xe
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id15__SHIFT 0xf
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id16__SHIFT 0x10
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id17__SHIFT 0x11
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id18__SHIFT 0x12
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id19__SHIFT 0x13
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id20__SHIFT 0x14
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id21__SHIFT 0x15
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id22__SHIFT 0x16
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id23__SHIFT 0x17
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id24__SHIFT 0x18
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id25__SHIFT 0x19
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id26__SHIFT 0x1a
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id27__SHIFT 0x1b
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id28__SHIFT 0x1c
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id29__SHIFT 0x1d
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id30__SHIFT 0x1e
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id31__SHIFT 0x1f
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id0_MASK 0x00000001L
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id1_MASK 0x00000002L
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id2_MASK 0x00000004L
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id3_MASK 0x00000008L
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id4_MASK 0x00000010L
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id5_MASK 0x00000020L
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id6_MASK 0x00000040L
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id7_MASK 0x00000080L
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id8_MASK 0x00000100L
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id9_MASK 0x00000200L
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id10_MASK 0x00000400L
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id11_MASK 0x00000800L
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id12_MASK 0x00001000L
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id13_MASK 0x00002000L
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id14_MASK 0x00004000L
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id15_MASK 0x00008000L
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id16_MASK 0x00010000L
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id17_MASK 0x00020000L
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id18_MASK 0x00040000L
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id19_MASK 0x00080000L
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id20_MASK 0x00100000L
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id21_MASK 0x00200000L
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id22_MASK 0x00400000L
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id23_MASK 0x00800000L
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id24_MASK 0x01000000L
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id25_MASK 0x02000000L
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id26_MASK 0x04000000L
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id27_MASK 0x08000000L
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id28_MASK 0x10000000L
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id29_MASK 0x20000000L
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id30_MASK 0x40000000L
+#define PARITY_ERROR_STATUS_CORR_GRP3__ParityErrDetected_Id31_MASK 0x80000000L
+//PARITY_ERROR_STATUS_CORR_GRP4
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id0__SHIFT 0x0
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id1__SHIFT 0x1
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id2__SHIFT 0x2
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id3__SHIFT 0x3
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id4__SHIFT 0x4
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id5__SHIFT 0x5
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id6__SHIFT 0x6
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id7__SHIFT 0x7
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id8__SHIFT 0x8
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id9__SHIFT 0x9
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id10__SHIFT 0xa
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id11__SHIFT 0xb
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id12__SHIFT 0xc
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id13__SHIFT 0xd
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id14__SHIFT 0xe
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id15__SHIFT 0xf
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id16__SHIFT 0x10
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id17__SHIFT 0x11
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id18__SHIFT 0x12
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id19__SHIFT 0x13
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id20__SHIFT 0x14
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id21__SHIFT 0x15
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id22__SHIFT 0x16
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id23__SHIFT 0x17
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id24__SHIFT 0x18
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id25__SHIFT 0x19
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id26__SHIFT 0x1a
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id27__SHIFT 0x1b
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id28__SHIFT 0x1c
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id29__SHIFT 0x1d
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id30__SHIFT 0x1e
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id31__SHIFT 0x1f
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id0_MASK 0x00000001L
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id1_MASK 0x00000002L
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id2_MASK 0x00000004L
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id3_MASK 0x00000008L
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id4_MASK 0x00000010L
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id5_MASK 0x00000020L
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id6_MASK 0x00000040L
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id7_MASK 0x00000080L
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id8_MASK 0x00000100L
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id9_MASK 0x00000200L
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id10_MASK 0x00000400L
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id11_MASK 0x00000800L
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id12_MASK 0x00001000L
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id13_MASK 0x00002000L
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id14_MASK 0x00004000L
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id15_MASK 0x00008000L
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id16_MASK 0x00010000L
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id17_MASK 0x00020000L
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id18_MASK 0x00040000L
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id19_MASK 0x00080000L
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id20_MASK 0x00100000L
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id21_MASK 0x00200000L
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id22_MASK 0x00400000L
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id23_MASK 0x00800000L
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id24_MASK 0x01000000L
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id25_MASK 0x02000000L
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id26_MASK 0x04000000L
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id27_MASK 0x08000000L
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id28_MASK 0x10000000L
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id29_MASK 0x20000000L
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id30_MASK 0x40000000L
+#define PARITY_ERROR_STATUS_CORR_GRP4__ParityErrDetected_Id31_MASK 0x80000000L
+//PARITY_ERROR_STATUS_CORR_GRP5
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id0__SHIFT 0x0
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id1__SHIFT 0x1
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id2__SHIFT 0x2
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id3__SHIFT 0x3
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id4__SHIFT 0x4
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id5__SHIFT 0x5
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id6__SHIFT 0x6
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id7__SHIFT 0x7
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id8__SHIFT 0x8
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id9__SHIFT 0x9
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id10__SHIFT 0xa
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id11__SHIFT 0xb
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id12__SHIFT 0xc
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id13__SHIFT 0xd
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id14__SHIFT 0xe
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id15__SHIFT 0xf
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id16__SHIFT 0x10
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id17__SHIFT 0x11
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id18__SHIFT 0x12
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id19__SHIFT 0x13
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id20__SHIFT 0x14
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id21__SHIFT 0x15
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id22__SHIFT 0x16
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id23__SHIFT 0x17
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id24__SHIFT 0x18
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id25__SHIFT 0x19
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id26__SHIFT 0x1a
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id27__SHIFT 0x1b
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id28__SHIFT 0x1c
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id29__SHIFT 0x1d
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id30__SHIFT 0x1e
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id31__SHIFT 0x1f
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id0_MASK 0x00000001L
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id1_MASK 0x00000002L
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id2_MASK 0x00000004L
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id3_MASK 0x00000008L
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id4_MASK 0x00000010L
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id5_MASK 0x00000020L
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id6_MASK 0x00000040L
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id7_MASK 0x00000080L
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id8_MASK 0x00000100L
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id9_MASK 0x00000200L
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id10_MASK 0x00000400L
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id11_MASK 0x00000800L
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id12_MASK 0x00001000L
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id13_MASK 0x00002000L
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id14_MASK 0x00004000L
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id15_MASK 0x00008000L
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id16_MASK 0x00010000L
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id17_MASK 0x00020000L
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id18_MASK 0x00040000L
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id19_MASK 0x00080000L
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id20_MASK 0x00100000L
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id21_MASK 0x00200000L
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id22_MASK 0x00400000L
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id23_MASK 0x00800000L
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id24_MASK 0x01000000L
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id25_MASK 0x02000000L
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id26_MASK 0x04000000L
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id27_MASK 0x08000000L
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id28_MASK 0x10000000L
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id29_MASK 0x20000000L
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id30_MASK 0x40000000L
+#define PARITY_ERROR_STATUS_CORR_GRP5__ParityErrDetected_Id31_MASK 0x80000000L
+//PARITY_ERROR_STATUS_CORR_GRP6
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id0__SHIFT 0x0
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id1__SHIFT 0x1
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id2__SHIFT 0x2
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id3__SHIFT 0x3
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id4__SHIFT 0x4
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id5__SHIFT 0x5
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id6__SHIFT 0x6
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id7__SHIFT 0x7
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id8__SHIFT 0x8
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id9__SHIFT 0x9
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id10__SHIFT 0xa
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id11__SHIFT 0xb
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id12__SHIFT 0xc
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id13__SHIFT 0xd
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id14__SHIFT 0xe
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id15__SHIFT 0xf
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id16__SHIFT 0x10
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id17__SHIFT 0x11
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id18__SHIFT 0x12
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id19__SHIFT 0x13
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id20__SHIFT 0x14
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id21__SHIFT 0x15
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id22__SHIFT 0x16
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id23__SHIFT 0x17
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id24__SHIFT 0x18
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id25__SHIFT 0x19
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id26__SHIFT 0x1a
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id27__SHIFT 0x1b
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id28__SHIFT 0x1c
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id29__SHIFT 0x1d
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id30__SHIFT 0x1e
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id31__SHIFT 0x1f
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id0_MASK 0x00000001L
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id1_MASK 0x00000002L
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id2_MASK 0x00000004L
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id3_MASK 0x00000008L
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id4_MASK 0x00000010L
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id5_MASK 0x00000020L
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id6_MASK 0x00000040L
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id7_MASK 0x00000080L
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id8_MASK 0x00000100L
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id9_MASK 0x00000200L
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id10_MASK 0x00000400L
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id11_MASK 0x00000800L
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id12_MASK 0x00001000L
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id13_MASK 0x00002000L
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id14_MASK 0x00004000L
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id15_MASK 0x00008000L
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id16_MASK 0x00010000L
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id17_MASK 0x00020000L
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id18_MASK 0x00040000L
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id19_MASK 0x00080000L
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id20_MASK 0x00100000L
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id21_MASK 0x00200000L
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id22_MASK 0x00400000L
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id23_MASK 0x00800000L
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id24_MASK 0x01000000L
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id25_MASK 0x02000000L
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id26_MASK 0x04000000L
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id27_MASK 0x08000000L
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id28_MASK 0x10000000L
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id29_MASK 0x20000000L
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id30_MASK 0x40000000L
+#define PARITY_ERROR_STATUS_CORR_GRP6__ParityErrDetected_Id31_MASK 0x80000000L
+//PARITY_ERROR_STATUS_CORR_GRP7
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id0__SHIFT 0x0
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id1__SHIFT 0x1
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id2__SHIFT 0x2
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id3__SHIFT 0x3
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id4__SHIFT 0x4
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id5__SHIFT 0x5
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id6__SHIFT 0x6
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id7__SHIFT 0x7
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id8__SHIFT 0x8
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id9__SHIFT 0x9
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id10__SHIFT 0xa
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id11__SHIFT 0xb
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id12__SHIFT 0xc
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id13__SHIFT 0xd
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id14__SHIFT 0xe
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id15__SHIFT 0xf
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id16__SHIFT 0x10
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id17__SHIFT 0x11
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id18__SHIFT 0x12
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id19__SHIFT 0x13
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id20__SHIFT 0x14
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id21__SHIFT 0x15
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id22__SHIFT 0x16
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id23__SHIFT 0x17
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id24__SHIFT 0x18
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id25__SHIFT 0x19
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id26__SHIFT 0x1a
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id27__SHIFT 0x1b
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id28__SHIFT 0x1c
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id29__SHIFT 0x1d
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id30__SHIFT 0x1e
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id31__SHIFT 0x1f
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id0_MASK 0x00000001L
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id1_MASK 0x00000002L
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id2_MASK 0x00000004L
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id3_MASK 0x00000008L
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id4_MASK 0x00000010L
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id5_MASK 0x00000020L
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id6_MASK 0x00000040L
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id7_MASK 0x00000080L
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id8_MASK 0x00000100L
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id9_MASK 0x00000200L
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id10_MASK 0x00000400L
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id11_MASK 0x00000800L
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id12_MASK 0x00001000L
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id13_MASK 0x00002000L
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id14_MASK 0x00004000L
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id15_MASK 0x00008000L
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id16_MASK 0x00010000L
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id17_MASK 0x00020000L
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id18_MASK 0x00040000L
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id19_MASK 0x00080000L
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id20_MASK 0x00100000L
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id21_MASK 0x00200000L
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id22_MASK 0x00400000L
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id23_MASK 0x00800000L
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id24_MASK 0x01000000L
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id25_MASK 0x02000000L
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id26_MASK 0x04000000L
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id27_MASK 0x08000000L
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id28_MASK 0x10000000L
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id29_MASK 0x20000000L
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id30_MASK 0x40000000L
+#define PARITY_ERROR_STATUS_CORR_GRP7__ParityErrDetected_Id31_MASK 0x80000000L
+//PARITY_ERROR_STATUS_CORR_GRP10
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id0__SHIFT 0x0
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id1__SHIFT 0x1
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id2__SHIFT 0x2
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id3__SHIFT 0x3
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id4__SHIFT 0x4
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id5__SHIFT 0x5
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id6__SHIFT 0x6
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id7__SHIFT 0x7
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id8__SHIFT 0x8
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id9__SHIFT 0x9
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id10__SHIFT 0xa
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id11__SHIFT 0xb
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id12__SHIFT 0xc
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id13__SHIFT 0xd
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id14__SHIFT 0xe
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id15__SHIFT 0xf
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id16__SHIFT 0x10
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id17__SHIFT 0x11
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id18__SHIFT 0x12
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id19__SHIFT 0x13
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id20__SHIFT 0x14
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id21__SHIFT 0x15
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id22__SHIFT 0x16
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id23__SHIFT 0x17
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id24__SHIFT 0x18
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id25__SHIFT 0x19
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id26__SHIFT 0x1a
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id27__SHIFT 0x1b
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id28__SHIFT 0x1c
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id29__SHIFT 0x1d
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id30__SHIFT 0x1e
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id31__SHIFT 0x1f
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id0_MASK 0x00000001L
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id1_MASK 0x00000002L
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id2_MASK 0x00000004L
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id3_MASK 0x00000008L
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id4_MASK 0x00000010L
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id5_MASK 0x00000020L
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id6_MASK 0x00000040L
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id7_MASK 0x00000080L
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id8_MASK 0x00000100L
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id9_MASK 0x00000200L
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id10_MASK 0x00000400L
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id11_MASK 0x00000800L
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id12_MASK 0x00001000L
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id13_MASK 0x00002000L
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id14_MASK 0x00004000L
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id15_MASK 0x00008000L
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id16_MASK 0x00010000L
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id17_MASK 0x00020000L
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id18_MASK 0x00040000L
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id19_MASK 0x00080000L
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id20_MASK 0x00100000L
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id21_MASK 0x00200000L
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id22_MASK 0x00400000L
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id23_MASK 0x00800000L
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id24_MASK 0x01000000L
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id25_MASK 0x02000000L
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id26_MASK 0x04000000L
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id27_MASK 0x08000000L
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id28_MASK 0x10000000L
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id29_MASK 0x20000000L
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id30_MASK 0x40000000L
+#define PARITY_ERROR_STATUS_CORR_GRP10__ParityErrDetected_Id31_MASK 0x80000000L
+//PARITY_ERROR_STATUS_CORR_GRP11
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id0__SHIFT 0x0
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id1__SHIFT 0x1
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id2__SHIFT 0x2
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id3__SHIFT 0x3
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id4__SHIFT 0x4
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id5__SHIFT 0x5
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id6__SHIFT 0x6
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id7__SHIFT 0x7
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id8__SHIFT 0x8
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id9__SHIFT 0x9
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id10__SHIFT 0xa
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id11__SHIFT 0xb
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id12__SHIFT 0xc
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id13__SHIFT 0xd
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id14__SHIFT 0xe
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id15__SHIFT 0xf
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id16__SHIFT 0x10
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id17__SHIFT 0x11
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id18__SHIFT 0x12
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id19__SHIFT 0x13
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id20__SHIFT 0x14
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id21__SHIFT 0x15
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id22__SHIFT 0x16
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id23__SHIFT 0x17
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id24__SHIFT 0x18
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id25__SHIFT 0x19
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id26__SHIFT 0x1a
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id27__SHIFT 0x1b
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id28__SHIFT 0x1c
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id29__SHIFT 0x1d
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id30__SHIFT 0x1e
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id31__SHIFT 0x1f
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id0_MASK 0x00000001L
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id1_MASK 0x00000002L
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id2_MASK 0x00000004L
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id3_MASK 0x00000008L
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id4_MASK 0x00000010L
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id5_MASK 0x00000020L
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id6_MASK 0x00000040L
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id7_MASK 0x00000080L
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id8_MASK 0x00000100L
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id9_MASK 0x00000200L
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id10_MASK 0x00000400L
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id11_MASK 0x00000800L
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id12_MASK 0x00001000L
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id13_MASK 0x00002000L
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id14_MASK 0x00004000L
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id15_MASK 0x00008000L
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id16_MASK 0x00010000L
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id17_MASK 0x00020000L
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id18_MASK 0x00040000L
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id19_MASK 0x00080000L
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id20_MASK 0x00100000L
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id21_MASK 0x00200000L
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id22_MASK 0x00400000L
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id23_MASK 0x00800000L
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id24_MASK 0x01000000L
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id25_MASK 0x02000000L
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id26_MASK 0x04000000L
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id27_MASK 0x08000000L
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id28_MASK 0x10000000L
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id29_MASK 0x20000000L
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id30_MASK 0x40000000L
+#define PARITY_ERROR_STATUS_CORR_GRP11__ParityErrDetected_Id31_MASK 0x80000000L
+//PARITY_ERROR_STATUS_CORR_GRP12
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id0__SHIFT 0x0
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id1__SHIFT 0x1
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id2__SHIFT 0x2
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id3__SHIFT 0x3
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id4__SHIFT 0x4
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id5__SHIFT 0x5
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id6__SHIFT 0x6
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id7__SHIFT 0x7
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id8__SHIFT 0x8
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id9__SHIFT 0x9
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id10__SHIFT 0xa
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id11__SHIFT 0xb
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id12__SHIFT 0xc
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id13__SHIFT 0xd
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id14__SHIFT 0xe
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id15__SHIFT 0xf
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id16__SHIFT 0x10
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id17__SHIFT 0x11
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id18__SHIFT 0x12
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id19__SHIFT 0x13
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id20__SHIFT 0x14
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id21__SHIFT 0x15
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id22__SHIFT 0x16
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id23__SHIFT 0x17
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id24__SHIFT 0x18
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id25__SHIFT 0x19
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id26__SHIFT 0x1a
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id27__SHIFT 0x1b
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id28__SHIFT 0x1c
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id29__SHIFT 0x1d
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id30__SHIFT 0x1e
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id31__SHIFT 0x1f
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id0_MASK 0x00000001L
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id1_MASK 0x00000002L
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id2_MASK 0x00000004L
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id3_MASK 0x00000008L
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id4_MASK 0x00000010L
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id5_MASK 0x00000020L
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id6_MASK 0x00000040L
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id7_MASK 0x00000080L
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id8_MASK 0x00000100L
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id9_MASK 0x00000200L
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id10_MASK 0x00000400L
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id11_MASK 0x00000800L
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id12_MASK 0x00001000L
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id13_MASK 0x00002000L
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id14_MASK 0x00004000L
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id15_MASK 0x00008000L
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id16_MASK 0x00010000L
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id17_MASK 0x00020000L
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id18_MASK 0x00040000L
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id19_MASK 0x00080000L
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id20_MASK 0x00100000L
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id21_MASK 0x00200000L
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id22_MASK 0x00400000L
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id23_MASK 0x00800000L
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id24_MASK 0x01000000L
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id25_MASK 0x02000000L
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id26_MASK 0x04000000L
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id27_MASK 0x08000000L
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id28_MASK 0x10000000L
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id29_MASK 0x20000000L
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id30_MASK 0x40000000L
+#define PARITY_ERROR_STATUS_CORR_GRP12__ParityErrDetected_Id31_MASK 0x80000000L
+//PARITY_ERROR_STATUS_CORR_GRP13
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id0__SHIFT 0x0
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id1__SHIFT 0x1
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id2__SHIFT 0x2
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id3__SHIFT 0x3
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id4__SHIFT 0x4
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id5__SHIFT 0x5
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id6__SHIFT 0x6
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id7__SHIFT 0x7
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id8__SHIFT 0x8
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id9__SHIFT 0x9
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id10__SHIFT 0xa
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id11__SHIFT 0xb
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id12__SHIFT 0xc
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id13__SHIFT 0xd
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id14__SHIFT 0xe
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id15__SHIFT 0xf
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id16__SHIFT 0x10
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id17__SHIFT 0x11
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id18__SHIFT 0x12
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id19__SHIFT 0x13
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id20__SHIFT 0x14
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id21__SHIFT 0x15
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id22__SHIFT 0x16
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id23__SHIFT 0x17
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id24__SHIFT 0x18
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id25__SHIFT 0x19
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id26__SHIFT 0x1a
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id27__SHIFT 0x1b
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id28__SHIFT 0x1c
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id29__SHIFT 0x1d
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id30__SHIFT 0x1e
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id31__SHIFT 0x1f
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id0_MASK 0x00000001L
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id1_MASK 0x00000002L
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id2_MASK 0x00000004L
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id3_MASK 0x00000008L
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id4_MASK 0x00000010L
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id5_MASK 0x00000020L
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id6_MASK 0x00000040L
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id7_MASK 0x00000080L
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id8_MASK 0x00000100L
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id9_MASK 0x00000200L
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id10_MASK 0x00000400L
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id11_MASK 0x00000800L
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id12_MASK 0x00001000L
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id13_MASK 0x00002000L
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id14_MASK 0x00004000L
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id15_MASK 0x00008000L
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id16_MASK 0x00010000L
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id17_MASK 0x00020000L
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id18_MASK 0x00040000L
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id19_MASK 0x00080000L
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id20_MASK 0x00100000L
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id21_MASK 0x00200000L
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id22_MASK 0x00400000L
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id23_MASK 0x00800000L
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id24_MASK 0x01000000L
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id25_MASK 0x02000000L
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id26_MASK 0x04000000L
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id27_MASK 0x08000000L
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id28_MASK 0x10000000L
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id29_MASK 0x20000000L
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id30_MASK 0x40000000L
+#define PARITY_ERROR_STATUS_CORR_GRP13__ParityErrDetected_Id31_MASK 0x80000000L
+//PARITY_ERROR_STATUS_CORR_GRP14
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id0__SHIFT 0x0
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id1__SHIFT 0x1
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id2__SHIFT 0x2
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id3__SHIFT 0x3
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id4__SHIFT 0x4
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id5__SHIFT 0x5
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id6__SHIFT 0x6
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id7__SHIFT 0x7
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id8__SHIFT 0x8
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id9__SHIFT 0x9
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id10__SHIFT 0xa
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id11__SHIFT 0xb
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id12__SHIFT 0xc
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id13__SHIFT 0xd
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id14__SHIFT 0xe
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id15__SHIFT 0xf
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id16__SHIFT 0x10
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id17__SHIFT 0x11
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id18__SHIFT 0x12
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id19__SHIFT 0x13
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id20__SHIFT 0x14
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id21__SHIFT 0x15
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id22__SHIFT 0x16
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id23__SHIFT 0x17
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id24__SHIFT 0x18
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id25__SHIFT 0x19
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id26__SHIFT 0x1a
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id27__SHIFT 0x1b
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id28__SHIFT 0x1c
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id29__SHIFT 0x1d
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id30__SHIFT 0x1e
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id31__SHIFT 0x1f
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id0_MASK 0x00000001L
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id1_MASK 0x00000002L
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id2_MASK 0x00000004L
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id3_MASK 0x00000008L
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id4_MASK 0x00000010L
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id5_MASK 0x00000020L
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id6_MASK 0x00000040L
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id7_MASK 0x00000080L
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id8_MASK 0x00000100L
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id9_MASK 0x00000200L
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id10_MASK 0x00000400L
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id11_MASK 0x00000800L
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id12_MASK 0x00001000L
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id13_MASK 0x00002000L
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id14_MASK 0x00004000L
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id15_MASK 0x00008000L
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id16_MASK 0x00010000L
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id17_MASK 0x00020000L
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id18_MASK 0x00040000L
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id19_MASK 0x00080000L
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id20_MASK 0x00100000L
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id21_MASK 0x00200000L
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id22_MASK 0x00400000L
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id23_MASK 0x00800000L
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id24_MASK 0x01000000L
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id25_MASK 0x02000000L
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id26_MASK 0x04000000L
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id27_MASK 0x08000000L
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id28_MASK 0x10000000L
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id29_MASK 0x20000000L
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id30_MASK 0x40000000L
+#define PARITY_ERROR_STATUS_CORR_GRP14__ParityErrDetected_Id31_MASK 0x80000000L
+//PARITY_ERROR_STATUS_CORR_GRP15
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id0__SHIFT 0x0
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id1__SHIFT 0x1
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id2__SHIFT 0x2
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id3__SHIFT 0x3
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id4__SHIFT 0x4
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id5__SHIFT 0x5
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id6__SHIFT 0x6
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id7__SHIFT 0x7
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id8__SHIFT 0x8
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id9__SHIFT 0x9
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id10__SHIFT 0xa
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id11__SHIFT 0xb
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id12__SHIFT 0xc
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id13__SHIFT 0xd
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id14__SHIFT 0xe
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id15__SHIFT 0xf
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id16__SHIFT 0x10
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id17__SHIFT 0x11
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id18__SHIFT 0x12
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id19__SHIFT 0x13
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id20__SHIFT 0x14
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id21__SHIFT 0x15
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id22__SHIFT 0x16
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id23__SHIFT 0x17
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id24__SHIFT 0x18
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id25__SHIFT 0x19
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id26__SHIFT 0x1a
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id27__SHIFT 0x1b
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id28__SHIFT 0x1c
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id29__SHIFT 0x1d
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id30__SHIFT 0x1e
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id31__SHIFT 0x1f
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id0_MASK 0x00000001L
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id1_MASK 0x00000002L
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id2_MASK 0x00000004L
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id3_MASK 0x00000008L
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id4_MASK 0x00000010L
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id5_MASK 0x00000020L
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id6_MASK 0x00000040L
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id7_MASK 0x00000080L
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id8_MASK 0x00000100L
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id9_MASK 0x00000200L
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id10_MASK 0x00000400L
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id11_MASK 0x00000800L
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id12_MASK 0x00001000L
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id13_MASK 0x00002000L
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id14_MASK 0x00004000L
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id15_MASK 0x00008000L
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id16_MASK 0x00010000L
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id17_MASK 0x00020000L
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id18_MASK 0x00040000L
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id19_MASK 0x00080000L
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id20_MASK 0x00100000L
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id21_MASK 0x00200000L
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id22_MASK 0x00400000L
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id23_MASK 0x00800000L
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id24_MASK 0x01000000L
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id25_MASK 0x02000000L
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id26_MASK 0x04000000L
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id27_MASK 0x08000000L
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id28_MASK 0x10000000L
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id29_MASK 0x20000000L
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id30_MASK 0x40000000L
+#define PARITY_ERROR_STATUS_CORR_GRP15__ParityErrDetected_Id31_MASK 0x80000000L
+//PARITY_ERROR_STATUS_CORR_GRP16
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id0__SHIFT 0x0
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id1__SHIFT 0x1
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id2__SHIFT 0x2
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id3__SHIFT 0x3
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id4__SHIFT 0x4
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id5__SHIFT 0x5
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id6__SHIFT 0x6
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id7__SHIFT 0x7
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id8__SHIFT 0x8
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id9__SHIFT 0x9
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id10__SHIFT 0xa
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id11__SHIFT 0xb
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id12__SHIFT 0xc
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id13__SHIFT 0xd
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id14__SHIFT 0xe
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id15__SHIFT 0xf
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id16__SHIFT 0x10
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id17__SHIFT 0x11
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id18__SHIFT 0x12
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id19__SHIFT 0x13
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id20__SHIFT 0x14
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id21__SHIFT 0x15
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id22__SHIFT 0x16
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id23__SHIFT 0x17
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id24__SHIFT 0x18
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id25__SHIFT 0x19
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id26__SHIFT 0x1a
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id27__SHIFT 0x1b
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id28__SHIFT 0x1c
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id29__SHIFT 0x1d
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id30__SHIFT 0x1e
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id31__SHIFT 0x1f
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id0_MASK 0x00000001L
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id1_MASK 0x00000002L
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id2_MASK 0x00000004L
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id3_MASK 0x00000008L
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id4_MASK 0x00000010L
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id5_MASK 0x00000020L
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id6_MASK 0x00000040L
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id7_MASK 0x00000080L
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id8_MASK 0x00000100L
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id9_MASK 0x00000200L
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id10_MASK 0x00000400L
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id11_MASK 0x00000800L
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id12_MASK 0x00001000L
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id13_MASK 0x00002000L
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id14_MASK 0x00004000L
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id15_MASK 0x00008000L
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id16_MASK 0x00010000L
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id17_MASK 0x00020000L
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id18_MASK 0x00040000L
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id19_MASK 0x00080000L
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id20_MASK 0x00100000L
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id21_MASK 0x00200000L
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id22_MASK 0x00400000L
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id23_MASK 0x00800000L
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id24_MASK 0x01000000L
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id25_MASK 0x02000000L
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id26_MASK 0x04000000L
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id27_MASK 0x08000000L
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id28_MASK 0x10000000L
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id29_MASK 0x20000000L
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id30_MASK 0x40000000L
+#define PARITY_ERROR_STATUS_CORR_GRP16__ParityErrDetected_Id31_MASK 0x80000000L
+//PARITY_ERROR_STATUS_CORR_GRP17
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id0__SHIFT 0x0
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id1__SHIFT 0x1
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id2__SHIFT 0x2
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id3__SHIFT 0x3
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id4__SHIFT 0x4
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id5__SHIFT 0x5
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id6__SHIFT 0x6
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id7__SHIFT 0x7
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id8__SHIFT 0x8
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id9__SHIFT 0x9
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id10__SHIFT 0xa
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id11__SHIFT 0xb
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id12__SHIFT 0xc
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id13__SHIFT 0xd
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id14__SHIFT 0xe
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id15__SHIFT 0xf
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id16__SHIFT 0x10
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id17__SHIFT 0x11
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id18__SHIFT 0x12
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id19__SHIFT 0x13
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id20__SHIFT 0x14
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id21__SHIFT 0x15
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id22__SHIFT 0x16
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id23__SHIFT 0x17
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id24__SHIFT 0x18
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id25__SHIFT 0x19
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id26__SHIFT 0x1a
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id27__SHIFT 0x1b
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id28__SHIFT 0x1c
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id29__SHIFT 0x1d
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id30__SHIFT 0x1e
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id31__SHIFT 0x1f
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id0_MASK 0x00000001L
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id1_MASK 0x00000002L
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id2_MASK 0x00000004L
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id3_MASK 0x00000008L
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id4_MASK 0x00000010L
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id5_MASK 0x00000020L
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id6_MASK 0x00000040L
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id7_MASK 0x00000080L
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id8_MASK 0x00000100L
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id9_MASK 0x00000200L
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id10_MASK 0x00000400L
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id11_MASK 0x00000800L
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id12_MASK 0x00001000L
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id13_MASK 0x00002000L
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id14_MASK 0x00004000L
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id15_MASK 0x00008000L
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id16_MASK 0x00010000L
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id17_MASK 0x00020000L
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id18_MASK 0x00040000L
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id19_MASK 0x00080000L
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id20_MASK 0x00100000L
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id21_MASK 0x00200000L
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id22_MASK 0x00400000L
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id23_MASK 0x00800000L
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id24_MASK 0x01000000L
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id25_MASK 0x02000000L
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id26_MASK 0x04000000L
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id27_MASK 0x08000000L
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id28_MASK 0x10000000L
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id29_MASK 0x20000000L
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id30_MASK 0x40000000L
+#define PARITY_ERROR_STATUS_CORR_GRP17__ParityErrDetected_Id31_MASK 0x80000000L
+//PARITY_COUNTER_CORR_GRP0
+#define PARITY_COUNTER_CORR_GRP0__ThresholdCounter__SHIFT 0x0
+#define PARITY_COUNTER_CORR_GRP0__ResetEn__SHIFT 0x1f
+#define PARITY_COUNTER_CORR_GRP0__ThresholdCounter_MASK 0x0000FFFFL
+#define PARITY_COUNTER_CORR_GRP0__ResetEn_MASK 0x80000000L
+//PARITY_COUNTER_CORR_GRP1
+#define PARITY_COUNTER_CORR_GRP1__ThresholdCounter__SHIFT 0x0
+#define PARITY_COUNTER_CORR_GRP1__ResetEn__SHIFT 0x1f
+#define PARITY_COUNTER_CORR_GRP1__ThresholdCounter_MASK 0x0000FFFFL
+#define PARITY_COUNTER_CORR_GRP1__ResetEn_MASK 0x80000000L
+//PARITY_COUNTER_CORR_GRP2
+#define PARITY_COUNTER_CORR_GRP2__ThresholdCounter__SHIFT 0x0
+#define PARITY_COUNTER_CORR_GRP2__ResetEn__SHIFT 0x1f
+#define PARITY_COUNTER_CORR_GRP2__ThresholdCounter_MASK 0x0000FFFFL
+#define PARITY_COUNTER_CORR_GRP2__ResetEn_MASK 0x80000000L
+//PARITY_COUNTER_CORR_GRP3
+#define PARITY_COUNTER_CORR_GRP3__ThresholdCounter__SHIFT 0x0
+#define PARITY_COUNTER_CORR_GRP3__ResetEn__SHIFT 0x1f
+#define PARITY_COUNTER_CORR_GRP3__ThresholdCounter_MASK 0x0000FFFFL
+#define PARITY_COUNTER_CORR_GRP3__ResetEn_MASK 0x80000000L
+//PARITY_COUNTER_CORR_GRP4
+#define PARITY_COUNTER_CORR_GRP4__ThresholdCounter__SHIFT 0x0
+#define PARITY_COUNTER_CORR_GRP4__ResetEn__SHIFT 0x1f
+#define PARITY_COUNTER_CORR_GRP4__ThresholdCounter_MASK 0x0000FFFFL
+#define PARITY_COUNTER_CORR_GRP4__ResetEn_MASK 0x80000000L
+//PARITY_COUNTER_CORR_GRP5
+#define PARITY_COUNTER_CORR_GRP5__ThresholdCounter__SHIFT 0x0
+#define PARITY_COUNTER_CORR_GRP5__ResetEn__SHIFT 0x1f
+#define PARITY_COUNTER_CORR_GRP5__ThresholdCounter_MASK 0x0000FFFFL
+#define PARITY_COUNTER_CORR_GRP5__ResetEn_MASK 0x80000000L
+//PARITY_COUNTER_CORR_GRP6
+#define PARITY_COUNTER_CORR_GRP6__ThresholdCounter__SHIFT 0x0
+#define PARITY_COUNTER_CORR_GRP6__ResetEn__SHIFT 0x1f
+#define PARITY_COUNTER_CORR_GRP6__ThresholdCounter_MASK 0x0000FFFFL
+#define PARITY_COUNTER_CORR_GRP6__ResetEn_MASK 0x80000000L
+//PARITY_COUNTER_CORR_GRP7
+#define PARITY_COUNTER_CORR_GRP7__ThresholdCounter__SHIFT 0x0
+#define PARITY_COUNTER_CORR_GRP7__ResetEn__SHIFT 0x1f
+#define PARITY_COUNTER_CORR_GRP7__ThresholdCounter_MASK 0x0000FFFFL
+#define PARITY_COUNTER_CORR_GRP7__ResetEn_MASK 0x80000000L
+//PARITY_COUNTER_CORR_GRP10
+#define PARITY_COUNTER_CORR_GRP10__ThresholdCounter__SHIFT 0x0
+#define PARITY_COUNTER_CORR_GRP10__ResetEn__SHIFT 0x1f
+#define PARITY_COUNTER_CORR_GRP10__ThresholdCounter_MASK 0x0000FFFFL
+#define PARITY_COUNTER_CORR_GRP10__ResetEn_MASK 0x80000000L
+//PARITY_COUNTER_CORR_GRP11
+#define PARITY_COUNTER_CORR_GRP11__ThresholdCounter__SHIFT 0x0
+#define PARITY_COUNTER_CORR_GRP11__ResetEn__SHIFT 0x1f
+#define PARITY_COUNTER_CORR_GRP11__ThresholdCounter_MASK 0x0000FFFFL
+#define PARITY_COUNTER_CORR_GRP11__ResetEn_MASK 0x80000000L
+//PARITY_COUNTER_CORR_GRP12
+#define PARITY_COUNTER_CORR_GRP12__ThresholdCounter__SHIFT 0x0
+#define PARITY_COUNTER_CORR_GRP12__ResetEn__SHIFT 0x1f
+#define PARITY_COUNTER_CORR_GRP12__ThresholdCounter_MASK 0x0000FFFFL
+#define PARITY_COUNTER_CORR_GRP12__ResetEn_MASK 0x80000000L
+//PARITY_COUNTER_CORR_GRP13
+#define PARITY_COUNTER_CORR_GRP13__ThresholdCounter__SHIFT 0x0
+#define PARITY_COUNTER_CORR_GRP13__ResetEn__SHIFT 0x1f
+#define PARITY_COUNTER_CORR_GRP13__ThresholdCounter_MASK 0x0000FFFFL
+#define PARITY_COUNTER_CORR_GRP13__ResetEn_MASK 0x80000000L
+//PARITY_COUNTER_CORR_GRP14
+#define PARITY_COUNTER_CORR_GRP14__ThresholdCounter__SHIFT 0x0
+#define PARITY_COUNTER_CORR_GRP14__ResetEn__SHIFT 0x1f
+#define PARITY_COUNTER_CORR_GRP14__ThresholdCounter_MASK 0x0000FFFFL
+#define PARITY_COUNTER_CORR_GRP14__ResetEn_MASK 0x80000000L
+//PARITY_COUNTER_CORR_GRP15
+#define PARITY_COUNTER_CORR_GRP15__ThresholdCounter__SHIFT 0x0
+#define PARITY_COUNTER_CORR_GRP15__ResetEn__SHIFT 0x1f
+#define PARITY_COUNTER_CORR_GRP15__ThresholdCounter_MASK 0x0000FFFFL
+#define PARITY_COUNTER_CORR_GRP15__ResetEn_MASK 0x80000000L
+//PARITY_COUNTER_CORR_GRP16
+#define PARITY_COUNTER_CORR_GRP16__ThresholdCounter__SHIFT 0x0
+#define PARITY_COUNTER_CORR_GRP16__ResetEn__SHIFT 0x1f
+#define PARITY_COUNTER_CORR_GRP16__ThresholdCounter_MASK 0x0000FFFFL
+#define PARITY_COUNTER_CORR_GRP16__ResetEn_MASK 0x80000000L
+//PARITY_COUNTER_CORR_GRP17
+#define PARITY_COUNTER_CORR_GRP17__ThresholdCounter__SHIFT 0x0
+#define PARITY_COUNTER_CORR_GRP17__ResetEn__SHIFT 0x1f
+#define PARITY_COUNTER_CORR_GRP17__ThresholdCounter_MASK 0x0000FFFFL
+#define PARITY_COUNTER_CORR_GRP17__ResetEn_MASK 0x80000000L
+//PARITY_ERROR_STATUS_UCP_GRP0
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id0__SHIFT 0x0
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id1__SHIFT 0x1
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id2__SHIFT 0x2
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id3__SHIFT 0x3
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id4__SHIFT 0x4
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id5__SHIFT 0x5
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id6__SHIFT 0x6
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id7__SHIFT 0x7
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id8__SHIFT 0x8
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id9__SHIFT 0x9
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id10__SHIFT 0xa
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id11__SHIFT 0xb
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id12__SHIFT 0xc
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id13__SHIFT 0xd
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id14__SHIFT 0xe
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id15__SHIFT 0xf
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id16__SHIFT 0x10
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id17__SHIFT 0x11
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id18__SHIFT 0x12
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id19__SHIFT 0x13
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id20__SHIFT 0x14
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id21__SHIFT 0x15
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id22__SHIFT 0x16
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id23__SHIFT 0x17
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id24__SHIFT 0x18
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id25__SHIFT 0x19
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id26__SHIFT 0x1a
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id27__SHIFT 0x1b
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id28__SHIFT 0x1c
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id29__SHIFT 0x1d
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id30__SHIFT 0x1e
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id31__SHIFT 0x1f
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id0_MASK 0x00000001L
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id1_MASK 0x00000002L
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id2_MASK 0x00000004L
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id3_MASK 0x00000008L
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id4_MASK 0x00000010L
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id5_MASK 0x00000020L
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id6_MASK 0x00000040L
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id7_MASK 0x00000080L
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id8_MASK 0x00000100L
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id9_MASK 0x00000200L
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id10_MASK 0x00000400L
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id11_MASK 0x00000800L
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id12_MASK 0x00001000L
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id13_MASK 0x00002000L
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id14_MASK 0x00004000L
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id15_MASK 0x00008000L
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id16_MASK 0x00010000L
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id17_MASK 0x00020000L
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id18_MASK 0x00040000L
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id19_MASK 0x00080000L
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id20_MASK 0x00100000L
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id21_MASK 0x00200000L
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id22_MASK 0x00400000L
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id23_MASK 0x00800000L
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id24_MASK 0x01000000L
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id25_MASK 0x02000000L
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id26_MASK 0x04000000L
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id27_MASK 0x08000000L
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id28_MASK 0x10000000L
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id29_MASK 0x20000000L
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id30_MASK 0x40000000L
+#define PARITY_ERROR_STATUS_UCP_GRP0__ParityErrDetected_Id31_MASK 0x80000000L
+//PARITY_ERROR_STATUS_UCP_GRP1
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id0__SHIFT 0x0
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id1__SHIFT 0x1
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id2__SHIFT 0x2
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id3__SHIFT 0x3
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id4__SHIFT 0x4
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id5__SHIFT 0x5
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id6__SHIFT 0x6
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id7__SHIFT 0x7
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id8__SHIFT 0x8
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id9__SHIFT 0x9
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id10__SHIFT 0xa
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id11__SHIFT 0xb
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id12__SHIFT 0xc
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id13__SHIFT 0xd
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id14__SHIFT 0xe
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id15__SHIFT 0xf
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id16__SHIFT 0x10
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id17__SHIFT 0x11
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id18__SHIFT 0x12
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id19__SHIFT 0x13
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id20__SHIFT 0x14
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id21__SHIFT 0x15
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id22__SHIFT 0x16
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id23__SHIFT 0x17
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id24__SHIFT 0x18
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id25__SHIFT 0x19
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id26__SHIFT 0x1a
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id27__SHIFT 0x1b
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id28__SHIFT 0x1c
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id29__SHIFT 0x1d
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id30__SHIFT 0x1e
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id31__SHIFT 0x1f
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id0_MASK 0x00000001L
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id1_MASK 0x00000002L
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id2_MASK 0x00000004L
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id3_MASK 0x00000008L
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id4_MASK 0x00000010L
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id5_MASK 0x00000020L
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id6_MASK 0x00000040L
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id7_MASK 0x00000080L
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id8_MASK 0x00000100L
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id9_MASK 0x00000200L
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id10_MASK 0x00000400L
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id11_MASK 0x00000800L
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id12_MASK 0x00001000L
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id13_MASK 0x00002000L
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id14_MASK 0x00004000L
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id15_MASK 0x00008000L
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id16_MASK 0x00010000L
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id17_MASK 0x00020000L
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id18_MASK 0x00040000L
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id19_MASK 0x00080000L
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id20_MASK 0x00100000L
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id21_MASK 0x00200000L
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id22_MASK 0x00400000L
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id23_MASK 0x00800000L
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id24_MASK 0x01000000L
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id25_MASK 0x02000000L
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id26_MASK 0x04000000L
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id27_MASK 0x08000000L
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id28_MASK 0x10000000L
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id29_MASK 0x20000000L
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id30_MASK 0x40000000L
+#define PARITY_ERROR_STATUS_UCP_GRP1__ParityErrDetected_Id31_MASK 0x80000000L
+//PARITY_ERROR_STATUS_UCP_GRP2
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id0__SHIFT 0x0
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id1__SHIFT 0x1
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id2__SHIFT 0x2
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id3__SHIFT 0x3
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id4__SHIFT 0x4
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id5__SHIFT 0x5
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id6__SHIFT 0x6
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id7__SHIFT 0x7
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id8__SHIFT 0x8
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id9__SHIFT 0x9
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id10__SHIFT 0xa
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id11__SHIFT 0xb
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id12__SHIFT 0xc
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id13__SHIFT 0xd
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id14__SHIFT 0xe
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id15__SHIFT 0xf
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id16__SHIFT 0x10
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id17__SHIFT 0x11
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id18__SHIFT 0x12
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id19__SHIFT 0x13
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id20__SHIFT 0x14
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id21__SHIFT 0x15
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id22__SHIFT 0x16
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id23__SHIFT 0x17
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id24__SHIFT 0x18
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id25__SHIFT 0x19
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id26__SHIFT 0x1a
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id27__SHIFT 0x1b
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id28__SHIFT 0x1c
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id29__SHIFT 0x1d
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id30__SHIFT 0x1e
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id31__SHIFT 0x1f
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id0_MASK 0x00000001L
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id1_MASK 0x00000002L
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id2_MASK 0x00000004L
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id3_MASK 0x00000008L
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id4_MASK 0x00000010L
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id5_MASK 0x00000020L
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id6_MASK 0x00000040L
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id7_MASK 0x00000080L
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id8_MASK 0x00000100L
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id9_MASK 0x00000200L
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id10_MASK 0x00000400L
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id11_MASK 0x00000800L
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id12_MASK 0x00001000L
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id13_MASK 0x00002000L
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id14_MASK 0x00004000L
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id15_MASK 0x00008000L
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id16_MASK 0x00010000L
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id17_MASK 0x00020000L
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id18_MASK 0x00040000L
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id19_MASK 0x00080000L
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id20_MASK 0x00100000L
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id21_MASK 0x00200000L
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id22_MASK 0x00400000L
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id23_MASK 0x00800000L
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id24_MASK 0x01000000L
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id25_MASK 0x02000000L
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id26_MASK 0x04000000L
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id27_MASK 0x08000000L
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id28_MASK 0x10000000L
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id29_MASK 0x20000000L
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id30_MASK 0x40000000L
+#define PARITY_ERROR_STATUS_UCP_GRP2__ParityErrDetected_Id31_MASK 0x80000000L
+//PARITY_ERROR_STATUS_UCP_GRP3
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id0__SHIFT 0x0
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id1__SHIFT 0x1
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id2__SHIFT 0x2
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id3__SHIFT 0x3
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id4__SHIFT 0x4
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id5__SHIFT 0x5
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id6__SHIFT 0x6
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id7__SHIFT 0x7
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id8__SHIFT 0x8
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id9__SHIFT 0x9
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id10__SHIFT 0xa
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id11__SHIFT 0xb
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id12__SHIFT 0xc
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id13__SHIFT 0xd
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id14__SHIFT 0xe
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id15__SHIFT 0xf
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id16__SHIFT 0x10
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id17__SHIFT 0x11
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id18__SHIFT 0x12
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id19__SHIFT 0x13
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id20__SHIFT 0x14
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id21__SHIFT 0x15
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id22__SHIFT 0x16
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id23__SHIFT 0x17
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id24__SHIFT 0x18
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id25__SHIFT 0x19
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id26__SHIFT 0x1a
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id27__SHIFT 0x1b
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id28__SHIFT 0x1c
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id29__SHIFT 0x1d
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id30__SHIFT 0x1e
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id31__SHIFT 0x1f
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id0_MASK 0x00000001L
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id1_MASK 0x00000002L
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id2_MASK 0x00000004L
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id3_MASK 0x00000008L
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id4_MASK 0x00000010L
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id5_MASK 0x00000020L
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id6_MASK 0x00000040L
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id7_MASK 0x00000080L
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id8_MASK 0x00000100L
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id9_MASK 0x00000200L
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id10_MASK 0x00000400L
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id11_MASK 0x00000800L
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id12_MASK 0x00001000L
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id13_MASK 0x00002000L
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id14_MASK 0x00004000L
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id15_MASK 0x00008000L
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id16_MASK 0x00010000L
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id17_MASK 0x00020000L
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id18_MASK 0x00040000L
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id19_MASK 0x00080000L
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id20_MASK 0x00100000L
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id21_MASK 0x00200000L
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id22_MASK 0x00400000L
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id23_MASK 0x00800000L
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id24_MASK 0x01000000L
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id25_MASK 0x02000000L
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id26_MASK 0x04000000L
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id27_MASK 0x08000000L
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id28_MASK 0x10000000L
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id29_MASK 0x20000000L
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id30_MASK 0x40000000L
+#define PARITY_ERROR_STATUS_UCP_GRP3__ParityErrDetected_Id31_MASK 0x80000000L
+//PARITY_ERROR_STATUS_UCP_GRP4
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id0__SHIFT 0x0
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id1__SHIFT 0x1
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id2__SHIFT 0x2
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id3__SHIFT 0x3
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id4__SHIFT 0x4
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id5__SHIFT 0x5
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id6__SHIFT 0x6
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id7__SHIFT 0x7
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id8__SHIFT 0x8
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id9__SHIFT 0x9
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id10__SHIFT 0xa
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id11__SHIFT 0xb
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id12__SHIFT 0xc
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id13__SHIFT 0xd
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id14__SHIFT 0xe
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id15__SHIFT 0xf
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id16__SHIFT 0x10
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id17__SHIFT 0x11
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id18__SHIFT 0x12
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id19__SHIFT 0x13
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id20__SHIFT 0x14
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id21__SHIFT 0x15
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id22__SHIFT 0x16
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id23__SHIFT 0x17
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id24__SHIFT 0x18
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id25__SHIFT 0x19
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id26__SHIFT 0x1a
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id27__SHIFT 0x1b
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id28__SHIFT 0x1c
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id29__SHIFT 0x1d
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id30__SHIFT 0x1e
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id31__SHIFT 0x1f
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id0_MASK 0x00000001L
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id1_MASK 0x00000002L
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id2_MASK 0x00000004L
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id3_MASK 0x00000008L
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id4_MASK 0x00000010L
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id5_MASK 0x00000020L
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id6_MASK 0x00000040L
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id7_MASK 0x00000080L
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id8_MASK 0x00000100L
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id9_MASK 0x00000200L
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id10_MASK 0x00000400L
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id11_MASK 0x00000800L
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id12_MASK 0x00001000L
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id13_MASK 0x00002000L
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id14_MASK 0x00004000L
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id15_MASK 0x00008000L
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id16_MASK 0x00010000L
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id17_MASK 0x00020000L
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id18_MASK 0x00040000L
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id19_MASK 0x00080000L
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id20_MASK 0x00100000L
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id21_MASK 0x00200000L
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id22_MASK 0x00400000L
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id23_MASK 0x00800000L
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id24_MASK 0x01000000L
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id25_MASK 0x02000000L
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id26_MASK 0x04000000L
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id27_MASK 0x08000000L
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id28_MASK 0x10000000L
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id29_MASK 0x20000000L
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id30_MASK 0x40000000L
+#define PARITY_ERROR_STATUS_UCP_GRP4__ParityErrDetected_Id31_MASK 0x80000000L
+//PARITY_ERROR_STATUS_UCP_GRP5
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id0__SHIFT 0x0
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id1__SHIFT 0x1
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id2__SHIFT 0x2
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id3__SHIFT 0x3
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id4__SHIFT 0x4
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id5__SHIFT 0x5
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id6__SHIFT 0x6
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id7__SHIFT 0x7
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id8__SHIFT 0x8
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id9__SHIFT 0x9
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id10__SHIFT 0xa
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id11__SHIFT 0xb
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id12__SHIFT 0xc
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id13__SHIFT 0xd
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id14__SHIFT 0xe
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id15__SHIFT 0xf
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id16__SHIFT 0x10
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id17__SHIFT 0x11
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id18__SHIFT 0x12
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id19__SHIFT 0x13
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id20__SHIFT 0x14
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id21__SHIFT 0x15
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id22__SHIFT 0x16
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id23__SHIFT 0x17
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id24__SHIFT 0x18
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id25__SHIFT 0x19
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id26__SHIFT 0x1a
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id27__SHIFT 0x1b
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id28__SHIFT 0x1c
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id29__SHIFT 0x1d
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id30__SHIFT 0x1e
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id31__SHIFT 0x1f
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id0_MASK 0x00000001L
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id1_MASK 0x00000002L
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id2_MASK 0x00000004L
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id3_MASK 0x00000008L
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id4_MASK 0x00000010L
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id5_MASK 0x00000020L
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id6_MASK 0x00000040L
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id7_MASK 0x00000080L
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id8_MASK 0x00000100L
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id9_MASK 0x00000200L
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id10_MASK 0x00000400L
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id11_MASK 0x00000800L
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id12_MASK 0x00001000L
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id13_MASK 0x00002000L
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id14_MASK 0x00004000L
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id15_MASK 0x00008000L
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id16_MASK 0x00010000L
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id17_MASK 0x00020000L
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id18_MASK 0x00040000L
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id19_MASK 0x00080000L
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id20_MASK 0x00100000L
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id21_MASK 0x00200000L
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id22_MASK 0x00400000L
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id23_MASK 0x00800000L
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id24_MASK 0x01000000L
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id25_MASK 0x02000000L
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id26_MASK 0x04000000L
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id27_MASK 0x08000000L
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id28_MASK 0x10000000L
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id29_MASK 0x20000000L
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id30_MASK 0x40000000L
+#define PARITY_ERROR_STATUS_UCP_GRP5__ParityErrDetected_Id31_MASK 0x80000000L
+//PARITY_ERROR_STATUS_UCP_GRP6
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id0__SHIFT 0x0
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id1__SHIFT 0x1
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id2__SHIFT 0x2
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id3__SHIFT 0x3
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id4__SHIFT 0x4
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id5__SHIFT 0x5
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id6__SHIFT 0x6
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id7__SHIFT 0x7
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id8__SHIFT 0x8
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id9__SHIFT 0x9
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id10__SHIFT 0xa
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id11__SHIFT 0xb
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id12__SHIFT 0xc
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id13__SHIFT 0xd
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id14__SHIFT 0xe
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id15__SHIFT 0xf
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id16__SHIFT 0x10
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id17__SHIFT 0x11
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id18__SHIFT 0x12
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id19__SHIFT 0x13
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id20__SHIFT 0x14
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id21__SHIFT 0x15
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id22__SHIFT 0x16
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id23__SHIFT 0x17
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id24__SHIFT 0x18
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id25__SHIFT 0x19
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id26__SHIFT 0x1a
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id27__SHIFT 0x1b
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id28__SHIFT 0x1c
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id29__SHIFT 0x1d
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id30__SHIFT 0x1e
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id31__SHIFT 0x1f
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id0_MASK 0x00000001L
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id1_MASK 0x00000002L
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id2_MASK 0x00000004L
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id3_MASK 0x00000008L
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id4_MASK 0x00000010L
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id5_MASK 0x00000020L
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id6_MASK 0x00000040L
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id7_MASK 0x00000080L
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id8_MASK 0x00000100L
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id9_MASK 0x00000200L
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id10_MASK 0x00000400L
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id11_MASK 0x00000800L
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id12_MASK 0x00001000L
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id13_MASK 0x00002000L
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id14_MASK 0x00004000L
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id15_MASK 0x00008000L
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id16_MASK 0x00010000L
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id17_MASK 0x00020000L
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id18_MASK 0x00040000L
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id19_MASK 0x00080000L
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id20_MASK 0x00100000L
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id21_MASK 0x00200000L
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id22_MASK 0x00400000L
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id23_MASK 0x00800000L
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id24_MASK 0x01000000L
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id25_MASK 0x02000000L
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id26_MASK 0x04000000L
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id27_MASK 0x08000000L
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id28_MASK 0x10000000L
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id29_MASK 0x20000000L
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id30_MASK 0x40000000L
+#define PARITY_ERROR_STATUS_UCP_GRP6__ParityErrDetected_Id31_MASK 0x80000000L
+//PARITY_ERROR_STATUS_UCP_GRP7
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id0__SHIFT 0x0
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id1__SHIFT 0x1
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id2__SHIFT 0x2
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id3__SHIFT 0x3
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id4__SHIFT 0x4
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id5__SHIFT 0x5
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id6__SHIFT 0x6
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id7__SHIFT 0x7
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id8__SHIFT 0x8
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id9__SHIFT 0x9
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id10__SHIFT 0xa
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id11__SHIFT 0xb
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id12__SHIFT 0xc
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id13__SHIFT 0xd
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id14__SHIFT 0xe
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id15__SHIFT 0xf
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id16__SHIFT 0x10
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id17__SHIFT 0x11
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id18__SHIFT 0x12
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id19__SHIFT 0x13
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id20__SHIFT 0x14
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id21__SHIFT 0x15
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id22__SHIFT 0x16
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id23__SHIFT 0x17
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id24__SHIFT 0x18
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id25__SHIFT 0x19
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id26__SHIFT 0x1a
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id27__SHIFT 0x1b
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id28__SHIFT 0x1c
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id29__SHIFT 0x1d
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id30__SHIFT 0x1e
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id31__SHIFT 0x1f
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id0_MASK 0x00000001L
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id1_MASK 0x00000002L
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id2_MASK 0x00000004L
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id3_MASK 0x00000008L
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id4_MASK 0x00000010L
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id5_MASK 0x00000020L
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id6_MASK 0x00000040L
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id7_MASK 0x00000080L
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id8_MASK 0x00000100L
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id9_MASK 0x00000200L
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id10_MASK 0x00000400L
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id11_MASK 0x00000800L
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id12_MASK 0x00001000L
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id13_MASK 0x00002000L
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id14_MASK 0x00004000L
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id15_MASK 0x00008000L
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id16_MASK 0x00010000L
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id17_MASK 0x00020000L
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id18_MASK 0x00040000L
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id19_MASK 0x00080000L
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id20_MASK 0x00100000L
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id21_MASK 0x00200000L
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id22_MASK 0x00400000L
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id23_MASK 0x00800000L
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id24_MASK 0x01000000L
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id25_MASK 0x02000000L
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id26_MASK 0x04000000L
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id27_MASK 0x08000000L
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id28_MASK 0x10000000L
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id29_MASK 0x20000000L
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id30_MASK 0x40000000L
+#define PARITY_ERROR_STATUS_UCP_GRP7__ParityErrDetected_Id31_MASK 0x80000000L
+//PARITY_ERROR_STATUS_UCP_GRP10
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id0__SHIFT 0x0
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id1__SHIFT 0x1
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id2__SHIFT 0x2
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id3__SHIFT 0x3
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id4__SHIFT 0x4
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id5__SHIFT 0x5
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id6__SHIFT 0x6
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id7__SHIFT 0x7
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id8__SHIFT 0x8
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id9__SHIFT 0x9
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id10__SHIFT 0xa
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id11__SHIFT 0xb
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id12__SHIFT 0xc
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id13__SHIFT 0xd
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id14__SHIFT 0xe
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id15__SHIFT 0xf
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id16__SHIFT 0x10
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id17__SHIFT 0x11
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id18__SHIFT 0x12
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id19__SHIFT 0x13
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id20__SHIFT 0x14
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id21__SHIFT 0x15
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id22__SHIFT 0x16
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id23__SHIFT 0x17
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id24__SHIFT 0x18
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id25__SHIFT 0x19
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id26__SHIFT 0x1a
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id27__SHIFT 0x1b
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id28__SHIFT 0x1c
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id29__SHIFT 0x1d
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id30__SHIFT 0x1e
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id31__SHIFT 0x1f
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id0_MASK 0x00000001L
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id1_MASK 0x00000002L
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id2_MASK 0x00000004L
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id3_MASK 0x00000008L
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id4_MASK 0x00000010L
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id5_MASK 0x00000020L
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id6_MASK 0x00000040L
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id7_MASK 0x00000080L
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id8_MASK 0x00000100L
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id9_MASK 0x00000200L
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id10_MASK 0x00000400L
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id11_MASK 0x00000800L
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id12_MASK 0x00001000L
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id13_MASK 0x00002000L
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id14_MASK 0x00004000L
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id15_MASK 0x00008000L
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id16_MASK 0x00010000L
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id17_MASK 0x00020000L
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id18_MASK 0x00040000L
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id19_MASK 0x00080000L
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id20_MASK 0x00100000L
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id21_MASK 0x00200000L
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id22_MASK 0x00400000L
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id23_MASK 0x00800000L
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id24_MASK 0x01000000L
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id25_MASK 0x02000000L
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id26_MASK 0x04000000L
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id27_MASK 0x08000000L
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id28_MASK 0x10000000L
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id29_MASK 0x20000000L
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id30_MASK 0x40000000L
+#define PARITY_ERROR_STATUS_UCP_GRP10__ParityErrDetected_Id31_MASK 0x80000000L
+//PARITY_ERROR_STATUS_UCP_GRP11
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id0__SHIFT 0x0
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id1__SHIFT 0x1
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id2__SHIFT 0x2
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id3__SHIFT 0x3
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id4__SHIFT 0x4
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id5__SHIFT 0x5
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id6__SHIFT 0x6
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id7__SHIFT 0x7
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id8__SHIFT 0x8
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id9__SHIFT 0x9
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id10__SHIFT 0xa
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id11__SHIFT 0xb
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id12__SHIFT 0xc
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id13__SHIFT 0xd
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id14__SHIFT 0xe
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id15__SHIFT 0xf
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id16__SHIFT 0x10
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id17__SHIFT 0x11
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id18__SHIFT 0x12
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id19__SHIFT 0x13
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id20__SHIFT 0x14
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id21__SHIFT 0x15
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id22__SHIFT 0x16
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id23__SHIFT 0x17
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id24__SHIFT 0x18
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id25__SHIFT 0x19
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id26__SHIFT 0x1a
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id27__SHIFT 0x1b
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id28__SHIFT 0x1c
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id29__SHIFT 0x1d
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id30__SHIFT 0x1e
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id31__SHIFT 0x1f
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id0_MASK 0x00000001L
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id1_MASK 0x00000002L
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id2_MASK 0x00000004L
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id3_MASK 0x00000008L
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id4_MASK 0x00000010L
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id5_MASK 0x00000020L
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id6_MASK 0x00000040L
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id7_MASK 0x00000080L
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id8_MASK 0x00000100L
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id9_MASK 0x00000200L
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id10_MASK 0x00000400L
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id11_MASK 0x00000800L
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id12_MASK 0x00001000L
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id13_MASK 0x00002000L
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id14_MASK 0x00004000L
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id15_MASK 0x00008000L
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id16_MASK 0x00010000L
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id17_MASK 0x00020000L
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id18_MASK 0x00040000L
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id19_MASK 0x00080000L
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id20_MASK 0x00100000L
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id21_MASK 0x00200000L
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id22_MASK 0x00400000L
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id23_MASK 0x00800000L
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id24_MASK 0x01000000L
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id25_MASK 0x02000000L
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id26_MASK 0x04000000L
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id27_MASK 0x08000000L
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id28_MASK 0x10000000L
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id29_MASK 0x20000000L
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id30_MASK 0x40000000L
+#define PARITY_ERROR_STATUS_UCP_GRP11__ParityErrDetected_Id31_MASK 0x80000000L
+//PARITY_ERROR_STATUS_UCP_GRP12
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id0__SHIFT 0x0
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id1__SHIFT 0x1
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id2__SHIFT 0x2
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id3__SHIFT 0x3
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id4__SHIFT 0x4
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id5__SHIFT 0x5
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id6__SHIFT 0x6
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id7__SHIFT 0x7
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id8__SHIFT 0x8
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id9__SHIFT 0x9
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id10__SHIFT 0xa
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id11__SHIFT 0xb
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id12__SHIFT 0xc
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id13__SHIFT 0xd
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id14__SHIFT 0xe
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id15__SHIFT 0xf
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id16__SHIFT 0x10
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id17__SHIFT 0x11
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id18__SHIFT 0x12
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id19__SHIFT 0x13
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id20__SHIFT 0x14
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id21__SHIFT 0x15
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id22__SHIFT 0x16
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id23__SHIFT 0x17
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id24__SHIFT 0x18
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id25__SHIFT 0x19
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id26__SHIFT 0x1a
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id27__SHIFT 0x1b
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id28__SHIFT 0x1c
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id29__SHIFT 0x1d
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id30__SHIFT 0x1e
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id31__SHIFT 0x1f
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id0_MASK 0x00000001L
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id1_MASK 0x00000002L
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id2_MASK 0x00000004L
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id3_MASK 0x00000008L
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id4_MASK 0x00000010L
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id5_MASK 0x00000020L
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id6_MASK 0x00000040L
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id7_MASK 0x00000080L
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id8_MASK 0x00000100L
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id9_MASK 0x00000200L
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id10_MASK 0x00000400L
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id11_MASK 0x00000800L
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id12_MASK 0x00001000L
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id13_MASK 0x00002000L
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id14_MASK 0x00004000L
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id15_MASK 0x00008000L
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id16_MASK 0x00010000L
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id17_MASK 0x00020000L
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id18_MASK 0x00040000L
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id19_MASK 0x00080000L
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id20_MASK 0x00100000L
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id21_MASK 0x00200000L
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id22_MASK 0x00400000L
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id23_MASK 0x00800000L
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id24_MASK 0x01000000L
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id25_MASK 0x02000000L
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id26_MASK 0x04000000L
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id27_MASK 0x08000000L
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id28_MASK 0x10000000L
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id29_MASK 0x20000000L
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id30_MASK 0x40000000L
+#define PARITY_ERROR_STATUS_UCP_GRP12__ParityErrDetected_Id31_MASK 0x80000000L
+//PARITY_COUNTER_UCP_GRP0
+#define PARITY_COUNTER_UCP_GRP0__ThresholdCounter__SHIFT 0x0
+#define PARITY_COUNTER_UCP_GRP0__ResetEn__SHIFT 0x1f
+#define PARITY_COUNTER_UCP_GRP0__ThresholdCounter_MASK 0x0000FFFFL
+#define PARITY_COUNTER_UCP_GRP0__ResetEn_MASK 0x80000000L
+//PARITY_COUNTER_UCP_GRP1
+#define PARITY_COUNTER_UCP_GRP1__ThresholdCounter__SHIFT 0x0
+#define PARITY_COUNTER_UCP_GRP1__ResetEn__SHIFT 0x1f
+#define PARITY_COUNTER_UCP_GRP1__ThresholdCounter_MASK 0x0000FFFFL
+#define PARITY_COUNTER_UCP_GRP1__ResetEn_MASK 0x80000000L
+//PARITY_COUNTER_UCP_GRP2
+#define PARITY_COUNTER_UCP_GRP2__ThresholdCounter__SHIFT 0x0
+#define PARITY_COUNTER_UCP_GRP2__ResetEn__SHIFT 0x1f
+#define PARITY_COUNTER_UCP_GRP2__ThresholdCounter_MASK 0x0000FFFFL
+#define PARITY_COUNTER_UCP_GRP2__ResetEn_MASK 0x80000000L
+//PARITY_COUNTER_UCP_GRP3
+#define PARITY_COUNTER_UCP_GRP3__ThresholdCounter__SHIFT 0x0
+#define PARITY_COUNTER_UCP_GRP3__ResetEn__SHIFT 0x1f
+#define PARITY_COUNTER_UCP_GRP3__ThresholdCounter_MASK 0x0000FFFFL
+#define PARITY_COUNTER_UCP_GRP3__ResetEn_MASK 0x80000000L
+//PARITY_COUNTER_UCP_GRP4
+#define PARITY_COUNTER_UCP_GRP4__ThresholdCounter__SHIFT 0x0
+#define PARITY_COUNTER_UCP_GRP4__ResetEn__SHIFT 0x1f
+#define PARITY_COUNTER_UCP_GRP4__ThresholdCounter_MASK 0x0000FFFFL
+#define PARITY_COUNTER_UCP_GRP4__ResetEn_MASK 0x80000000L
+//PARITY_COUNTER_UCP_GRP5
+#define PARITY_COUNTER_UCP_GRP5__ThresholdCounter__SHIFT 0x0
+#define PARITY_COUNTER_UCP_GRP5__ResetEn__SHIFT 0x1f
+#define PARITY_COUNTER_UCP_GRP5__ThresholdCounter_MASK 0x0000FFFFL
+#define PARITY_COUNTER_UCP_GRP5__ResetEn_MASK 0x80000000L
+//PARITY_COUNTER_UCP_GRP6
+#define PARITY_COUNTER_UCP_GRP6__ThresholdCounter__SHIFT 0x0
+#define PARITY_COUNTER_UCP_GRP6__ResetEn__SHIFT 0x1f
+#define PARITY_COUNTER_UCP_GRP6__ThresholdCounter_MASK 0x0000FFFFL
+#define PARITY_COUNTER_UCP_GRP6__ResetEn_MASK 0x80000000L
+//PARITY_COUNTER_UCP_GRP7
+#define PARITY_COUNTER_UCP_GRP7__ThresholdCounter__SHIFT 0x0
+#define PARITY_COUNTER_UCP_GRP7__ResetEn__SHIFT 0x1f
+#define PARITY_COUNTER_UCP_GRP7__ThresholdCounter_MASK 0x0000FFFFL
+#define PARITY_COUNTER_UCP_GRP7__ResetEn_MASK 0x80000000L
+//PARITY_COUNTER_UCP_GRP10
+#define PARITY_COUNTER_UCP_GRP10__ThresholdCounter__SHIFT 0x0
+#define PARITY_COUNTER_UCP_GRP10__ResetEn__SHIFT 0x1f
+#define PARITY_COUNTER_UCP_GRP10__ThresholdCounter_MASK 0x0000FFFFL
+#define PARITY_COUNTER_UCP_GRP10__ResetEn_MASK 0x80000000L
+//PARITY_COUNTER_UCP_GRP11
+#define PARITY_COUNTER_UCP_GRP11__ThresholdCounter__SHIFT 0x0
+#define PARITY_COUNTER_UCP_GRP11__ResetEn__SHIFT 0x1f
+#define PARITY_COUNTER_UCP_GRP11__ThresholdCounter_MASK 0x0000FFFFL
+#define PARITY_COUNTER_UCP_GRP11__ResetEn_MASK 0x80000000L
+//PARITY_COUNTER_UCP_GRP12
+#define PARITY_COUNTER_UCP_GRP12__ThresholdCounter__SHIFT 0x0
+#define PARITY_COUNTER_UCP_GRP12__ResetEn__SHIFT 0x1f
+#define PARITY_COUNTER_UCP_GRP12__ThresholdCounter_MASK 0x0000FFFFL
+#define PARITY_COUNTER_UCP_GRP12__ResetEn_MASK 0x80000000L
+//MISC_SEVERITY_CONTROL
+#define MISC_SEVERITY_CONTROL__ErrEventErrSev__SHIFT 0x4
+#define MISC_SEVERITY_CONTROL__PcieParityErrSev__SHIFT 0x6
+#define MISC_SEVERITY_CONTROL__ErrEventErrSev_MASK 0x00000030L
+#define MISC_SEVERITY_CONTROL__PcieParityErrSev_MASK 0x000000C0L
+//MISC_RAS_CONTROL
+#define MISC_RAS_CONTROL__PIN_NMI_SyncFlood_En__SHIFT 0x2
+#define MISC_RAS_CONTROL__GNB_SB_LinkNeverDis__SHIFT 0x3
+#define MISC_RAS_CONTROL__InterruptOutputDis__SHIFT 0x9
+#define MISC_RAS_CONTROL__LinkDisOutputDis__SHIFT 0xa
+#define MISC_RAS_CONTROL__SyncFldOutputDis__SHIFT 0xb
+#define MISC_RAS_CONTROL__PCIe_NMI_En__SHIFT 0xc
+#define MISC_RAS_CONTROL__PCIe_SCI_En__SHIFT 0xd
+#define MISC_RAS_CONTROL__PCIe_SMI_En__SHIFT 0xe
+#define MISC_RAS_CONTROL__SW_SCI_En__SHIFT 0xf
+#define MISC_RAS_CONTROL__SW_SMI_En__SHIFT 0x10
+#define MISC_RAS_CONTROL__SW_NMI_En__SHIFT 0x11
+#define MISC_RAS_CONTROL__PIN_NMI_SyncFlood_En_MASK 0x00000004L
+#define MISC_RAS_CONTROL__GNB_SB_LinkNeverDis_MASK 0x00000008L
+#define MISC_RAS_CONTROL__InterruptOutputDis_MASK 0x00000200L
+#define MISC_RAS_CONTROL__LinkDisOutputDis_MASK 0x00000400L
+#define MISC_RAS_CONTROL__SyncFldOutputDis_MASK 0x00000800L
+#define MISC_RAS_CONTROL__PCIe_NMI_En_MASK 0x00001000L
+#define MISC_RAS_CONTROL__PCIe_SCI_En_MASK 0x00002000L
+#define MISC_RAS_CONTROL__PCIe_SMI_En_MASK 0x00004000L
+#define MISC_RAS_CONTROL__SW_SCI_En_MASK 0x00008000L
+#define MISC_RAS_CONTROL__SW_SMI_En_MASK 0x00010000L
+#define MISC_RAS_CONTROL__SW_NMI_En_MASK 0x00020000L
+//RAS_SCRATCH_0
+#define RAS_SCRATCH_0__SCRATCH_0__SHIFT 0x0
+#define RAS_SCRATCH_0__SCRATCH_0_MASK 0xFFFFFFFFL
+//RAS_SCRATCH_1
+#define RAS_SCRATCH_1__SCRATCH_1__SHIFT 0x0
+#define RAS_SCRATCH_1__SCRATCH_1_MASK 0xFFFFFFFFL
+//ErrEvent_ACTION_CONTROL
+#define ErrEvent_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define ErrEvent_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define ErrEvent_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define ErrEvent_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define ErrEvent_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define ErrEvent_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define ErrEvent_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define ErrEvent_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//ParitySerr_ACTION_CONTROL
+#define ParitySerr_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define ParitySerr_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define ParitySerr_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define ParitySerr_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define ParitySerr_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define ParitySerr_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define ParitySerr_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define ParitySerr_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//ParityFatal_ACTION_CONTROL
+#define ParityFatal_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define ParityFatal_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define ParityFatal_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define ParityFatal_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define ParityFatal_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define ParityFatal_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define ParityFatal_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define ParityFatal_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//ParityNonFatal_ACTION_CONTROL
+#define ParityNonFatal_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define ParityNonFatal_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define ParityNonFatal_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define ParityNonFatal_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define ParityNonFatal_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define ParityNonFatal_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define ParityNonFatal_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define ParityNonFatal_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//ParityCorr_ACTION_CONTROL
+#define ParityCorr_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define ParityCorr_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define ParityCorr_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define ParityCorr_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define ParityCorr_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define ParityCorr_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define ParityCorr_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define ParityCorr_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortASerr_ACTION_CONTROL
+#define PCIE0PortASerr_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortASerr_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortASerr_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortASerr_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortASerr_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortASerr_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortASerr_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortASerr_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortAIntFatal_ACTION_CONTROL
+#define PCIE0PortAIntFatal_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortAIntFatal_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortAIntFatal_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortAIntFatal_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortAIntFatal_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortAIntFatal_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortAIntFatal_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortAIntFatal_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortAIntNonFatal_ACTION_CONTROL
+#define PCIE0PortAIntNonFatal_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortAIntNonFatal_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortAIntNonFatal_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortAIntNonFatal_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortAIntNonFatal_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortAIntNonFatal_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortAIntNonFatal_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortAIntNonFatal_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortAIntCorr_ACTION_CONTROL
+#define PCIE0PortAIntCorr_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortAIntCorr_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortAIntCorr_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortAIntCorr_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortAIntCorr_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortAIntCorr_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortAIntCorr_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortAIntCorr_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortAExtFatal_ACTION_CONTROL
+#define PCIE0PortAExtFatal_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortAExtFatal_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortAExtFatal_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortAExtFatal_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortAExtFatal_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortAExtFatal_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortAExtFatal_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortAExtFatal_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortAExtNonFatal_ACTION_CONTROL
+#define PCIE0PortAExtNonFatal_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortAExtNonFatal_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortAExtNonFatal_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortAExtNonFatal_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortAExtNonFatal_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortAExtNonFatal_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortAExtNonFatal_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortAExtNonFatal_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortAExtCorr_ACTION_CONTROL
+#define PCIE0PortAExtCorr_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortAExtCorr_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortAExtCorr_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortAExtCorr_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortAExtCorr_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortAExtCorr_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortAExtCorr_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortAExtCorr_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortAParityErr_ACTION_CONTROL
+#define PCIE0PortAParityErr_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortAParityErr_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortAParityErr_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortAParityErr_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortAParityErr_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortAParityErr_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortAParityErr_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortAParityErr_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortBSerr_ACTION_CONTROL
+#define PCIE0PortBSerr_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortBSerr_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortBSerr_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortBSerr_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortBSerr_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortBSerr_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortBSerr_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortBSerr_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortBIntFatal_ACTION_CONTROL
+#define PCIE0PortBIntFatal_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortBIntFatal_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortBIntFatal_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortBIntFatal_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortBIntFatal_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortBIntFatal_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortBIntFatal_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortBIntFatal_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortBIntNonFatal_ACTION_CONTROL
+#define PCIE0PortBIntNonFatal_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortBIntNonFatal_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortBIntNonFatal_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortBIntNonFatal_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortBIntNonFatal_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortBIntNonFatal_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortBIntNonFatal_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortBIntNonFatal_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortBIntCorr_ACTION_CONTROL
+#define PCIE0PortBIntCorr_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortBIntCorr_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortBIntCorr_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortBIntCorr_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortBIntCorr_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortBIntCorr_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortBIntCorr_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortBIntCorr_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortBExtFatal_ACTION_CONTROL
+#define PCIE0PortBExtFatal_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortBExtFatal_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortBExtFatal_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortBExtFatal_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortBExtFatal_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortBExtFatal_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortBExtFatal_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortBExtFatal_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortBExtNonFatal_ACTION_CONTROL
+#define PCIE0PortBExtNonFatal_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortBExtNonFatal_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortBExtNonFatal_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortBExtNonFatal_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortBExtNonFatal_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortBExtNonFatal_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortBExtNonFatal_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortBExtNonFatal_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortBExtCorr_ACTION_CONTROL
+#define PCIE0PortBExtCorr_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortBExtCorr_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortBExtCorr_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortBExtCorr_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortBExtCorr_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortBExtCorr_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortBExtCorr_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortBExtCorr_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortBParityErr_ACTION_CONTROL
+#define PCIE0PortBParityErr_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortBParityErr_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortBParityErr_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortBParityErr_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortBParityErr_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortBParityErr_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortBParityErr_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortBParityErr_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortCSerr_ACTION_CONTROL
+#define PCIE0PortCSerr_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortCSerr_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortCSerr_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortCSerr_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortCSerr_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortCSerr_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortCSerr_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortCSerr_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortCIntFatal_ACTION_CONTROL
+#define PCIE0PortCIntFatal_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortCIntFatal_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortCIntFatal_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortCIntFatal_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortCIntFatal_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortCIntFatal_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortCIntFatal_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortCIntFatal_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortCIntNonFatal_ACTION_CONTROL
+#define PCIE0PortCIntNonFatal_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortCIntNonFatal_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortCIntNonFatal_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortCIntNonFatal_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortCIntNonFatal_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortCIntNonFatal_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortCIntNonFatal_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortCIntNonFatal_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortCIntCorr_ACTION_CONTROL
+#define PCIE0PortCIntCorr_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortCIntCorr_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortCIntCorr_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortCIntCorr_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortCIntCorr_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortCIntCorr_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortCIntCorr_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortCIntCorr_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortCExtFatal_ACTION_CONTROL
+#define PCIE0PortCExtFatal_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortCExtFatal_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortCExtFatal_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortCExtFatal_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortCExtFatal_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortCExtFatal_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortCExtFatal_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortCExtFatal_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortCExtNonFatal_ACTION_CONTROL
+#define PCIE0PortCExtNonFatal_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortCExtNonFatal_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortCExtNonFatal_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortCExtNonFatal_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortCExtNonFatal_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortCExtNonFatal_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortCExtNonFatal_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortCExtNonFatal_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortCExtCorr_ACTION_CONTROL
+#define PCIE0PortCExtCorr_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortCExtCorr_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortCExtCorr_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortCExtCorr_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortCExtCorr_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortCExtCorr_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortCExtCorr_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortCExtCorr_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortCParityErr_ACTION_CONTROL
+#define PCIE0PortCParityErr_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortCParityErr_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortCParityErr_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortCParityErr_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortCParityErr_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortCParityErr_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortCParityErr_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortCParityErr_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortDSerr_ACTION_CONTROL
+#define PCIE0PortDSerr_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortDSerr_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortDSerr_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortDSerr_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortDSerr_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortDSerr_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortDSerr_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortDSerr_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortDIntFatal_ACTION_CONTROL
+#define PCIE0PortDIntFatal_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortDIntFatal_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortDIntFatal_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortDIntFatal_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortDIntFatal_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortDIntFatal_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortDIntFatal_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortDIntFatal_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortDIntNonFatal_ACTION_CONTROL
+#define PCIE0PortDIntNonFatal_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortDIntNonFatal_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortDIntNonFatal_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortDIntNonFatal_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortDIntNonFatal_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortDIntNonFatal_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortDIntNonFatal_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortDIntNonFatal_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortDIntCorr_ACTION_CONTROL
+#define PCIE0PortDIntCorr_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortDIntCorr_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortDIntCorr_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortDIntCorr_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortDIntCorr_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortDIntCorr_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortDIntCorr_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortDIntCorr_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortDExtFatal_ACTION_CONTROL
+#define PCIE0PortDExtFatal_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortDExtFatal_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortDExtFatal_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortDExtFatal_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortDExtFatal_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortDExtFatal_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortDExtFatal_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortDExtFatal_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortDExtNonFatal_ACTION_CONTROL
+#define PCIE0PortDExtNonFatal_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortDExtNonFatal_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortDExtNonFatal_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortDExtNonFatal_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortDExtNonFatal_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortDExtNonFatal_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortDExtNonFatal_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortDExtNonFatal_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortDExtCorr_ACTION_CONTROL
+#define PCIE0PortDExtCorr_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortDExtCorr_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortDExtCorr_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortDExtCorr_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortDExtCorr_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortDExtCorr_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortDExtCorr_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortDExtCorr_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortDParityErr_ACTION_CONTROL
+#define PCIE0PortDParityErr_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortDParityErr_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortDParityErr_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortDParityErr_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortDParityErr_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortDParityErr_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortDParityErr_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortDParityErr_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortESerr_ACTION_CONTROL
+#define PCIE0PortESerr_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortESerr_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortESerr_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortESerr_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortESerr_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortESerr_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortESerr_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortESerr_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortEIntFatal_ACTION_CONTROL
+#define PCIE0PortEIntFatal_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortEIntFatal_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortEIntFatal_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortEIntFatal_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortEIntFatal_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortEIntFatal_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortEIntFatal_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortEIntFatal_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortEIntNonFatal_ACTION_CONTROL
+#define PCIE0PortEIntNonFatal_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortEIntNonFatal_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortEIntNonFatal_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortEIntNonFatal_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortEIntNonFatal_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortEIntNonFatal_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortEIntNonFatal_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortEIntNonFatal_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortEIntCorr_ACTION_CONTROL
+#define PCIE0PortEIntCorr_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortEIntCorr_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortEIntCorr_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortEIntCorr_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortEIntCorr_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortEIntCorr_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortEIntCorr_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortEIntCorr_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortEExtFatal_ACTION_CONTROL
+#define PCIE0PortEExtFatal_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortEExtFatal_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortEExtFatal_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortEExtFatal_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortEExtFatal_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortEExtFatal_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortEExtFatal_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortEExtFatal_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortEExtNonFatal_ACTION_CONTROL
+#define PCIE0PortEExtNonFatal_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortEExtNonFatal_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortEExtNonFatal_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortEExtNonFatal_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortEExtNonFatal_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortEExtNonFatal_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortEExtNonFatal_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortEExtNonFatal_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortEExtCorr_ACTION_CONTROL
+#define PCIE0PortEExtCorr_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortEExtCorr_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortEExtCorr_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortEExtCorr_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortEExtCorr_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortEExtCorr_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortEExtCorr_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortEExtCorr_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortEParityErr_ACTION_CONTROL
+#define PCIE0PortEParityErr_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortEParityErr_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortEParityErr_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortEParityErr_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortEParityErr_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortEParityErr_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortEParityErr_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortEParityErr_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortFSerr_ACTION_CONTROL
+#define PCIE0PortFSerr_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortFSerr_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortFSerr_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortFSerr_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortFSerr_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortFSerr_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortFSerr_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortFSerr_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortFIntFatal_ACTION_CONTROL
+#define PCIE0PortFIntFatal_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortFIntFatal_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortFIntFatal_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortFIntFatal_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortFIntFatal_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortFIntFatal_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortFIntFatal_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortFIntFatal_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortFIntNonFatal_ACTION_CONTROL
+#define PCIE0PortFIntNonFatal_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortFIntNonFatal_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortFIntNonFatal_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortFIntNonFatal_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortFIntNonFatal_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortFIntNonFatal_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortFIntNonFatal_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortFIntNonFatal_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortFIntCorr_ACTION_CONTROL
+#define PCIE0PortFIntCorr_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortFIntCorr_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortFIntCorr_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortFIntCorr_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortFIntCorr_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortFIntCorr_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortFIntCorr_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortFIntCorr_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortFExtFatal_ACTION_CONTROL
+#define PCIE0PortFExtFatal_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortFExtFatal_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortFExtFatal_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortFExtFatal_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortFExtFatal_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortFExtFatal_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortFExtFatal_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortFExtFatal_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortFExtNonFatal_ACTION_CONTROL
+#define PCIE0PortFExtNonFatal_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortFExtNonFatal_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortFExtNonFatal_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortFExtNonFatal_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortFExtNonFatal_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortFExtNonFatal_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortFExtNonFatal_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortFExtNonFatal_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortFExtCorr_ACTION_CONTROL
+#define PCIE0PortFExtCorr_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortFExtCorr_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortFExtCorr_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortFExtCorr_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortFExtCorr_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortFExtCorr_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortFExtCorr_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortFExtCorr_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortFParityErr_ACTION_CONTROL
+#define PCIE0PortFParityErr_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortFParityErr_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortFParityErr_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortFParityErr_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortFParityErr_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortFParityErr_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortFParityErr_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortFParityErr_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortGSerr_ACTION_CONTROL
+#define PCIE0PortGSerr_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortGSerr_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortGSerr_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortGSerr_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortGSerr_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortGSerr_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortGSerr_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortGSerr_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortGIntFatal_ACTION_CONTROL
+#define PCIE0PortGIntFatal_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortGIntFatal_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortGIntFatal_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortGIntFatal_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortGIntFatal_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortGIntFatal_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortGIntFatal_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortGIntFatal_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortGIntNonFatal_ACTION_CONTROL
+#define PCIE0PortGIntNonFatal_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortGIntNonFatal_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortGIntNonFatal_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortGIntNonFatal_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortGIntNonFatal_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortGIntNonFatal_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortGIntNonFatal_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortGIntNonFatal_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortGIntCorr_ACTION_CONTROL
+#define PCIE0PortGIntCorr_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortGIntCorr_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortGIntCorr_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortGIntCorr_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortGIntCorr_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortGIntCorr_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortGIntCorr_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortGIntCorr_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortGExtFatal_ACTION_CONTROL
+#define PCIE0PortGExtFatal_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortGExtFatal_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortGExtFatal_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortGExtFatal_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortGExtFatal_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortGExtFatal_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortGExtFatal_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortGExtFatal_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortGExtNonFatal_ACTION_CONTROL
+#define PCIE0PortGExtNonFatal_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortGExtNonFatal_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortGExtNonFatal_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortGExtNonFatal_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortGExtNonFatal_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortGExtNonFatal_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortGExtNonFatal_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortGExtNonFatal_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortGExtCorr_ACTION_CONTROL
+#define PCIE0PortGExtCorr_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortGExtCorr_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortGExtCorr_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortGExtCorr_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortGExtCorr_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortGExtCorr_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortGExtCorr_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortGExtCorr_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//PCIE0PortGParityErr_ACTION_CONTROL
+#define PCIE0PortGParityErr_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define PCIE0PortGParityErr_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define PCIE0PortGParityErr_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define PCIE0PortGParityErr_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define PCIE0PortGParityErr_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define PCIE0PortGParityErr_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define PCIE0PortGParityErr_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define PCIE0PortGParityErr_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//NBIF1PortASerr_ACTION_CONTROL
+#define NBIF1PortASerr_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define NBIF1PortASerr_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define NBIF1PortASerr_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define NBIF1PortASerr_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define NBIF1PortASerr_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define NBIF1PortASerr_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define NBIF1PortASerr_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define NBIF1PortASerr_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//NBIF1PortAIntFatal_ACTION_CONTROL
+#define NBIF1PortAIntFatal_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define NBIF1PortAIntFatal_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define NBIF1PortAIntFatal_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define NBIF1PortAIntFatal_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define NBIF1PortAIntFatal_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define NBIF1PortAIntFatal_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define NBIF1PortAIntFatal_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define NBIF1PortAIntFatal_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//NBIF1PortAIntNonFatal_ACTION_CONTROL
+#define NBIF1PortAIntNonFatal_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define NBIF1PortAIntNonFatal_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define NBIF1PortAIntNonFatal_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define NBIF1PortAIntNonFatal_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define NBIF1PortAIntNonFatal_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define NBIF1PortAIntNonFatal_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define NBIF1PortAIntNonFatal_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define NBIF1PortAIntNonFatal_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//NBIF1PortAIntCorr_ACTION_CONTROL
+#define NBIF1PortAIntCorr_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define NBIF1PortAIntCorr_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define NBIF1PortAIntCorr_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define NBIF1PortAIntCorr_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define NBIF1PortAIntCorr_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define NBIF1PortAIntCorr_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define NBIF1PortAIntCorr_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define NBIF1PortAIntCorr_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//NBIF1PortAExtFatal_ACTION_CONTROL
+#define NBIF1PortAExtFatal_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define NBIF1PortAExtFatal_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define NBIF1PortAExtFatal_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define NBIF1PortAExtFatal_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define NBIF1PortAExtFatal_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define NBIF1PortAExtFatal_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define NBIF1PortAExtFatal_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define NBIF1PortAExtFatal_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//NBIF1PortAExtNonFatal_ACTION_CONTROL
+#define NBIF1PortAExtNonFatal_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define NBIF1PortAExtNonFatal_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define NBIF1PortAExtNonFatal_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define NBIF1PortAExtNonFatal_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define NBIF1PortAExtNonFatal_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define NBIF1PortAExtNonFatal_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define NBIF1PortAExtNonFatal_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define NBIF1PortAExtNonFatal_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//NBIF1PortAExtCorr_ACTION_CONTROL
+#define NBIF1PortAExtCorr_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define NBIF1PortAExtCorr_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define NBIF1PortAExtCorr_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define NBIF1PortAExtCorr_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define NBIF1PortAExtCorr_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define NBIF1PortAExtCorr_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define NBIF1PortAExtCorr_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define NBIF1PortAExtCorr_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//NBIF1PortAParityErr_ACTION_CONTROL
+#define NBIF1PortAParityErr_ACTION_CONTROL__APML_ERR_En__SHIFT 0x0
+#define NBIF1PortAParityErr_ACTION_CONTROL__IntrGenSel__SHIFT 0x1
+#define NBIF1PortAParityErr_ACTION_CONTROL__LinkDis_En__SHIFT 0x3
+#define NBIF1PortAParityErr_ACTION_CONTROL__SyncFlood_En__SHIFT 0x4
+#define NBIF1PortAParityErr_ACTION_CONTROL__APML_ERR_En_MASK 0x00000001L
+#define NBIF1PortAParityErr_ACTION_CONTROL__IntrGenSel_MASK 0x00000006L
+#define NBIF1PortAParityErr_ACTION_CONTROL__LinkDis_En_MASK 0x00000008L
+#define NBIF1PortAParityErr_ACTION_CONTROL__SyncFlood_En_MASK 0x00000010L
+//SYNCFLOOD_STATUS
+#define SYNCFLOOD_STATUS__SyncfloodFromRASCntl__SHIFT 0x0
+#define SYNCFLOOD_STATUS__SyncfloodFromAPML__SHIFT 0x1
+#define SYNCFLOOD_STATUS__SyncfloodFromPin__SHIFT 0x2
+#define SYNCFLOOD_STATUS__SyncfloodFromPrivate__SHIFT 0x4
+#define SYNCFLOOD_STATUS__SyncfloodFromMCA__SHIFT 0x5
+#define SYNCFLOOD_STATUS__SyncfloodFromRASCntl_MASK 0x00000001L
+#define SYNCFLOOD_STATUS__SyncfloodFromAPML_MASK 0x00000002L
+#define SYNCFLOOD_STATUS__SyncfloodFromPin_MASK 0x00000004L
+#define SYNCFLOOD_STATUS__SyncfloodFromPrivate_MASK 0x00000010L
+#define SYNCFLOOD_STATUS__SyncfloodFromMCA_MASK 0x00000020L
+//NMI_STATUS
+#define NMI_STATUS__NMIFromPin__SHIFT 0x0
+#define NMI_STATUS__NMIFromPin_MASK 0x00000001L
+//POISON_ACTION_CONTROL
+#define POISON_ACTION_CONTROL__IntPoisonAPMLErrEn__SHIFT 0x0
+#define POISON_ACTION_CONTROL__IntPoisonIntrGenSel__SHIFT 0x1
+#define POISON_ACTION_CONTROL__IntPoisonLinkDisEn__SHIFT 0x3
+#define POISON_ACTION_CONTROL__IntPoisonSyncFloodEn__SHIFT 0x4
+#define POISON_ACTION_CONTROL__EgressPoisonLSAPMLErrEn__SHIFT 0x8
+#define POISON_ACTION_CONTROL__EgressPoisonLSIntrGenSel__SHIFT 0x9
+#define POISON_ACTION_CONTROL__EgressPoisonLSLinkDisEn__SHIFT 0xb
+#define POISON_ACTION_CONTROL__EgressPoisonLSSyncFloodEn__SHIFT 0xc
+#define POISON_ACTION_CONTROL__EgressPoisonHSAPMLErrEn__SHIFT 0x10
+#define POISON_ACTION_CONTROL__EgressPoisonHSIntrGenSel__SHIFT 0x11
+#define POISON_ACTION_CONTROL__EgressPoisonHSLinkDisEn__SHIFT 0x13
+#define POISON_ACTION_CONTROL__EgressPoisonHSSyncFloodEn__SHIFT 0x14
+#define POISON_ACTION_CONTROL__IntPoisonAPMLErrEn_MASK 0x00000001L
+#define POISON_ACTION_CONTROL__IntPoisonIntrGenSel_MASK 0x00000006L
+#define POISON_ACTION_CONTROL__IntPoisonLinkDisEn_MASK 0x00000008L
+#define POISON_ACTION_CONTROL__IntPoisonSyncFloodEn_MASK 0x00000010L
+#define POISON_ACTION_CONTROL__EgressPoisonLSAPMLErrEn_MASK 0x00000100L
+#define POISON_ACTION_CONTROL__EgressPoisonLSIntrGenSel_MASK 0x00000600L
+#define POISON_ACTION_CONTROL__EgressPoisonLSLinkDisEn_MASK 0x00000800L
+#define POISON_ACTION_CONTROL__EgressPoisonLSSyncFloodEn_MASK 0x00001000L
+#define POISON_ACTION_CONTROL__EgressPoisonHSAPMLErrEn_MASK 0x00010000L
+#define POISON_ACTION_CONTROL__EgressPoisonHSIntrGenSel_MASK 0x00060000L
+#define POISON_ACTION_CONTROL__EgressPoisonHSLinkDisEn_MASK 0x00080000L
+#define POISON_ACTION_CONTROL__EgressPoisonHSSyncFloodEn_MASK 0x00100000L
+//INTERNAL_POISON_STATUS
+#define INTERNAL_POISON_STATUS__IntPoisonStatus_0__SHIFT 0x0
+#define INTERNAL_POISON_STATUS__IntPoisonStatus_1__SHIFT 0x1
+#define INTERNAL_POISON_STATUS__IntPoisonStatus_2__SHIFT 0x2
+#define INTERNAL_POISON_STATUS__IntPoisonStatus_3__SHIFT 0x3
+#define INTERNAL_POISON_STATUS__IntPoisonStatus_4__SHIFT 0x4
+#define INTERNAL_POISON_STATUS__IntPoisonStatus_5__SHIFT 0x5
+#define INTERNAL_POISON_STATUS__IntPoisonStatus_6__SHIFT 0x6
+#define INTERNAL_POISON_STATUS__IntPoisonStatus_7__SHIFT 0x7
+#define INTERNAL_POISON_STATUS__IntPoisonStatus_0_MASK 0x00000001L
+#define INTERNAL_POISON_STATUS__IntPoisonStatus_1_MASK 0x00000002L
+#define INTERNAL_POISON_STATUS__IntPoisonStatus_2_MASK 0x00000004L
+#define INTERNAL_POISON_STATUS__IntPoisonStatus_3_MASK 0x00000008L
+#define INTERNAL_POISON_STATUS__IntPoisonStatus_4_MASK 0x00000010L
+#define INTERNAL_POISON_STATUS__IntPoisonStatus_5_MASK 0x00000020L
+#define INTERNAL_POISON_STATUS__IntPoisonStatus_6_MASK 0x00000040L
+#define INTERNAL_POISON_STATUS__IntPoisonStatus_7_MASK 0x00000080L
+//INTERNAL_POISON_MASK
+#define INTERNAL_POISON_MASK__IntPoisonMask__SHIFT 0x0
+#define INTERNAL_POISON_MASK__IntPoisonMask_MASK 0x000000FFL
+//EGRESS_POISON_STATUS_LO
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_0__SHIFT 0x0
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_1__SHIFT 0x1
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_2__SHIFT 0x2
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_3__SHIFT 0x3
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_4__SHIFT 0x4
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_5__SHIFT 0x5
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_6__SHIFT 0x6
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_7__SHIFT 0x7
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_8__SHIFT 0x8
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_9__SHIFT 0x9
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_10__SHIFT 0xa
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_11__SHIFT 0xb
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_12__SHIFT 0xc
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_13__SHIFT 0xd
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_14__SHIFT 0xe
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_15__SHIFT 0xf
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_16__SHIFT 0x10
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_17__SHIFT 0x11
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_18__SHIFT 0x12
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_19__SHIFT 0x13
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_20__SHIFT 0x14
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_21__SHIFT 0x15
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_22__SHIFT 0x16
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_23__SHIFT 0x17
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_24__SHIFT 0x18
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_25__SHIFT 0x19
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_26__SHIFT 0x1a
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_27__SHIFT 0x1b
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_28__SHIFT 0x1c
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_29__SHIFT 0x1d
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_30__SHIFT 0x1e
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_31__SHIFT 0x1f
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_0_MASK 0x00000001L
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_1_MASK 0x00000002L
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_2_MASK 0x00000004L
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_3_MASK 0x00000008L
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_4_MASK 0x00000010L
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_5_MASK 0x00000020L
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_6_MASK 0x00000040L
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_7_MASK 0x00000080L
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_8_MASK 0x00000100L
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_9_MASK 0x00000200L
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_10_MASK 0x00000400L
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_11_MASK 0x00000800L
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_12_MASK 0x00001000L
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_13_MASK 0x00002000L
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_14_MASK 0x00004000L
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_15_MASK 0x00008000L
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_16_MASK 0x00010000L
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_17_MASK 0x00020000L
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_18_MASK 0x00040000L
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_19_MASK 0x00080000L
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_20_MASK 0x00100000L
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_21_MASK 0x00200000L
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_22_MASK 0x00400000L
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_23_MASK 0x00800000L
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_24_MASK 0x01000000L
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_25_MASK 0x02000000L
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_26_MASK 0x04000000L
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_27_MASK 0x08000000L
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_28_MASK 0x10000000L
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_29_MASK 0x20000000L
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_30_MASK 0x40000000L
+#define EGRESS_POISON_STATUS_LO__EgressPoisonStatusLo_31_MASK 0x80000000L
+//EGRESS_POISON_STATUS_HI
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_0__SHIFT 0x0
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_1__SHIFT 0x1
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_2__SHIFT 0x2
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_3__SHIFT 0x3
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_4__SHIFT 0x4
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_5__SHIFT 0x5
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_6__SHIFT 0x6
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_7__SHIFT 0x7
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_8__SHIFT 0x8
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_9__SHIFT 0x9
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_10__SHIFT 0xa
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_11__SHIFT 0xb
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_12__SHIFT 0xc
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_13__SHIFT 0xd
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_14__SHIFT 0xe
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_15__SHIFT 0xf
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_16__SHIFT 0x10
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_17__SHIFT 0x11
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_18__SHIFT 0x12
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_19__SHIFT 0x13
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_20__SHIFT 0x14
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_21__SHIFT 0x15
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_22__SHIFT 0x16
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_23__SHIFT 0x17
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_24__SHIFT 0x18
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_25__SHIFT 0x19
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_26__SHIFT 0x1a
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_27__SHIFT 0x1b
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_28__SHIFT 0x1c
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_29__SHIFT 0x1d
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_30__SHIFT 0x1e
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_31__SHIFT 0x1f
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_0_MASK 0x00000001L
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_1_MASK 0x00000002L
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_2_MASK 0x00000004L
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_3_MASK 0x00000008L
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_4_MASK 0x00000010L
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_5_MASK 0x00000020L
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_6_MASK 0x00000040L
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_7_MASK 0x00000080L
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_8_MASK 0x00000100L
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_9_MASK 0x00000200L
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_10_MASK 0x00000400L
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_11_MASK 0x00000800L
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_12_MASK 0x00001000L
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_13_MASK 0x00002000L
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_14_MASK 0x00004000L
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_15_MASK 0x00008000L
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_16_MASK 0x00010000L
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_17_MASK 0x00020000L
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_18_MASK 0x00040000L
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_19_MASK 0x00080000L
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_20_MASK 0x00100000L
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_21_MASK 0x00200000L
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_22_MASK 0x00400000L
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_23_MASK 0x00800000L
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_24_MASK 0x01000000L
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_25_MASK 0x02000000L
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_26_MASK 0x04000000L
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_27_MASK 0x08000000L
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_28_MASK 0x10000000L
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_29_MASK 0x20000000L
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_30_MASK 0x40000000L
+#define EGRESS_POISON_STATUS_HI__EgressPoisonStatusHi_31_MASK 0x80000000L
+//EGRESS_POISON_MASK_LO
+#define EGRESS_POISON_MASK_LO__EgressPoisonMaskLo__SHIFT 0x0
+#define EGRESS_POISON_MASK_LO__EgressPoisonMaskLo_MASK 0xFFFFFFFFL
+//EGRESS_POISON_MASK_HI
+#define EGRESS_POISON_MASK_HI__EgressPoisonMaskHi__SHIFT 0x0
+#define EGRESS_POISON_MASK_HI__EgressPoisonMaskHi_MASK 0xFFFFFFFFL
+//EGRESS_POISON_SEVERITY_DOWN
+#define EGRESS_POISON_SEVERITY_DOWN__EgressPoisonSeverityDown__SHIFT 0x0
+#define EGRESS_POISON_SEVERITY_DOWN__EgressPoisonSeverityDown_MASK 0xFFFFFFFFL
+//EGRESS_POISON_SEVERITY_UPPER
+#define EGRESS_POISON_SEVERITY_UPPER__EgressPoisonSeverityUpper__SHIFT 0x0
+#define EGRESS_POISON_SEVERITY_UPPER__EgressPoisonSeverityUpper_MASK 0xFFFFFFFFL
+//APML_STATUS
+#define APML_STATUS__APML_Corr__SHIFT 0x0
+#define APML_STATUS__APML_NonFatal__SHIFT 0x1
+#define APML_STATUS__APML_Fatal__SHIFT 0x2
+#define APML_STATUS__APML_Serr__SHIFT 0x3
+#define APML_STATUS__APML_IntPoisonErr__SHIFT 0x4
+#define APML_STATUS__APML_EgressPoisonErrLo__SHIFT 0x5
+#define APML_STATUS__APML_EgressPoisonErrHi__SHIFT 0x6
+#define APML_STATUS__APML_Corr_MASK 0x00000001L
+#define APML_STATUS__APML_NonFatal_MASK 0x00000002L
+#define APML_STATUS__APML_Fatal_MASK 0x00000004L
+#define APML_STATUS__APML_Serr_MASK 0x00000008L
+#define APML_STATUS__APML_IntPoisonErr_MASK 0x00000010L
+#define APML_STATUS__APML_EgressPoisonErrLo_MASK 0x00000020L
+#define APML_STATUS__APML_EgressPoisonErrHi_MASK 0x00000040L
+//APML_CONTROL
+#define APML_CONTROL__APML_NMI_En__SHIFT 0x0
+#define APML_CONTROL__APML_SyncFlood_En__SHIFT 0x1
+#define APML_CONTROL__APML_OutputDis__SHIFT 0x8
+#define APML_CONTROL__APML_NMI_En_MASK 0x00000001L
+#define APML_CONTROL__APML_SyncFlood_En_MASK 0x00000002L
+#define APML_CONTROL__APML_OutputDis_MASK 0x00000100L
+//APML_TRIGGER
+#define APML_TRIGGER__APML_NMI_TRIGGER__SHIFT 0x0
+#define APML_TRIGGER__APML_NMI_TRIGGER_MASK 0x00000001L
+
+
+// addressBlock: aid_nbio_iohub_nb_PCIE0devindcfg0_devind_cfgdecp
+//NB_PCIE0DEVINDCFG0_STEERING_CNTL
+#define NB_PCIE0DEVINDCFG0_STEERING_CNTL__ForceSteering__SHIFT 0x0
+#define NB_PCIE0DEVINDCFG0_STEERING_CNTL__SteeringValue__SHIFT 0x8
+#define NB_PCIE0DEVINDCFG0_STEERING_CNTL__ForceSteering_MASK 0x00000001L
+#define NB_PCIE0DEVINDCFG0_STEERING_CNTL__SteeringValue_MASK 0x0000FF00L
+
+
+// addressBlock: aid_nbio_iohub_nb_PCIE0devindcfg1_devind_cfgdecp
+//NB_PCIE0DEVINDCFG1_STEERING_CNTL
+#define NB_PCIE0DEVINDCFG1_STEERING_CNTL__ForceSteering__SHIFT 0x0
+#define NB_PCIE0DEVINDCFG1_STEERING_CNTL__SteeringValue__SHIFT 0x8
+#define NB_PCIE0DEVINDCFG1_STEERING_CNTL__ForceSteering_MASK 0x00000001L
+#define NB_PCIE0DEVINDCFG1_STEERING_CNTL__SteeringValue_MASK 0x0000FF00L
+
+
+// addressBlock: aid_nbio_iohub_nb_PCIE0devindcfg2_devind_cfgdecp
+//NB_PCIE0DEVINDCFG2_STEERING_CNTL
+#define NB_PCIE0DEVINDCFG2_STEERING_CNTL__ForceSteering__SHIFT 0x0
+#define NB_PCIE0DEVINDCFG2_STEERING_CNTL__SteeringValue__SHIFT 0x8
+#define NB_PCIE0DEVINDCFG2_STEERING_CNTL__ForceSteering_MASK 0x00000001L
+#define NB_PCIE0DEVINDCFG2_STEERING_CNTL__SteeringValue_MASK 0x0000FF00L
+
+
+// addressBlock: aid_nbio_iohub_nb_PCIE0devindcfg3_devind_cfgdecp
+//NB_PCIE0DEVINDCFG3_STEERING_CNTL
+#define NB_PCIE0DEVINDCFG3_STEERING_CNTL__ForceSteering__SHIFT 0x0
+#define NB_PCIE0DEVINDCFG3_STEERING_CNTL__SteeringValue__SHIFT 0x8
+#define NB_PCIE0DEVINDCFG3_STEERING_CNTL__ForceSteering_MASK 0x00000001L
+#define NB_PCIE0DEVINDCFG3_STEERING_CNTL__SteeringValue_MASK 0x0000FF00L
+
+
+// addressBlock: aid_nbio_iohub_nb_PCIE0devindcfg4_devind_cfgdecp
+//NB_PCIE0DEVINDCFG4_STEERING_CNTL
+#define NB_PCIE0DEVINDCFG4_STEERING_CNTL__ForceSteering__SHIFT 0x0
+#define NB_PCIE0DEVINDCFG4_STEERING_CNTL__SteeringValue__SHIFT 0x8
+#define NB_PCIE0DEVINDCFG4_STEERING_CNTL__ForceSteering_MASK 0x00000001L
+#define NB_PCIE0DEVINDCFG4_STEERING_CNTL__SteeringValue_MASK 0x0000FF00L
+
+
+// addressBlock: aid_nbio_iohub_nb_PCIE0devindcfg5_devind_cfgdecp
+//NB_PCIE0DEVINDCFG5_STEERING_CNTL
+#define NB_PCIE0DEVINDCFG5_STEERING_CNTL__ForceSteering__SHIFT 0x0
+#define NB_PCIE0DEVINDCFG5_STEERING_CNTL__SteeringValue__SHIFT 0x8
+#define NB_PCIE0DEVINDCFG5_STEERING_CNTL__ForceSteering_MASK 0x00000001L
+#define NB_PCIE0DEVINDCFG5_STEERING_CNTL__SteeringValue_MASK 0x0000FF00L
+
+
+// addressBlock: aid_nbio_iohub_nb_PCIE0devindcfg6_devind_cfgdecp
+//NB_PCIE0DEVINDCFG6_STEERING_CNTL
+#define NB_PCIE0DEVINDCFG6_STEERING_CNTL__ForceSteering__SHIFT 0x0
+#define NB_PCIE0DEVINDCFG6_STEERING_CNTL__SteeringValue__SHIFT 0x8
+#define NB_PCIE0DEVINDCFG6_STEERING_CNTL__ForceSteering_MASK 0x00000001L
+#define NB_PCIE0DEVINDCFG6_STEERING_CNTL__SteeringValue_MASK 0x0000FF00L
+
+
+// addressBlock: aid_nbio_iohub_nb_NBIF1devindcfg0_devind_cfgdecp
+//NB_NBIF1DEVINDCFG0_STEERING_CNTL
+#define NB_NBIF1DEVINDCFG0_STEERING_CNTL__ForceSteering__SHIFT 0x0
+#define NB_NBIF1DEVINDCFG0_STEERING_CNTL__SteeringValue__SHIFT 0x8
+#define NB_NBIF1DEVINDCFG0_STEERING_CNTL__ForceSteering_MASK 0x00000001L
+#define NB_NBIF1DEVINDCFG0_STEERING_CNTL__SteeringValue_MASK 0x0000FF00L
+
+
+// addressBlock: aid_nbio_iohub_nb_intSBdevindcfg0_devind_cfgdecp
+//NB_INTSBDEVINDCFG0_STEERING_CNTL
+#define NB_INTSBDEVINDCFG0_STEERING_CNTL__ForceSteering__SHIFT 0x0
+#define NB_INTSBDEVINDCFG0_STEERING_CNTL__SteeringValue__SHIFT 0x8
+#define NB_INTSBDEVINDCFG0_STEERING_CNTL__ForceSteering_MASK 0x00000001L
+#define NB_INTSBDEVINDCFG0_STEERING_CNTL__SteeringValue_MASK 0x0000FF00L
+
+
+// addressBlock: aid_nbio_iohub_nb_PCIE0rcbdg_indcfg0_pciercbdgind_cfgdec
+//NB_PCIE0RCBDG_INDCFG0_RC_SMN_INDEX_EXTENSION
+#define NB_PCIE0RCBDG_INDCFG0_RC_SMN_INDEX_EXTENSION__RC_SMN_INDEX_EXTENSION__SHIFT 0x0
+#define NB_PCIE0RCBDG_INDCFG0_RC_SMN_INDEX_EXTENSION__RC_SMN_INDEX_EXTENSION_MASK 0x000000FFL
+//NB_PCIE0RCBDG_INDCFG0_RC_SMN_INDEX
+#define NB_PCIE0RCBDG_INDCFG0_RC_SMN_INDEX__RC_SMN_INDEX__SHIFT 0x0
+#define NB_PCIE0RCBDG_INDCFG0_RC_SMN_INDEX__RC_SMN_INDEX_MASK 0xFFFFFFFFL
+//NB_PCIE0RCBDG_INDCFG0_RC_SMN_DATA
+#define NB_PCIE0RCBDG_INDCFG0_RC_SMN_DATA__RC_SMN_DATA__SHIFT 0x0
+#define NB_PCIE0RCBDG_INDCFG0_RC_SMN_DATA__RC_SMN_DATA_MASK 0xFFFFFFFFL
+
+
+// addressBlock: aid_nbio_iohub_nb_PCIE0rcbdg_indcfg1_pciercbdgind_cfgdec
+//NB_PCIE0RCBDG_INDCFG1_RC_SMN_INDEX_EXTENSION
+#define NB_PCIE0RCBDG_INDCFG1_RC_SMN_INDEX_EXTENSION__RC_SMN_INDEX_EXTENSION__SHIFT 0x0
+#define NB_PCIE0RCBDG_INDCFG1_RC_SMN_INDEX_EXTENSION__RC_SMN_INDEX_EXTENSION_MASK 0x000000FFL
+//NB_PCIE0RCBDG_INDCFG1_RC_SMN_INDEX
+#define NB_PCIE0RCBDG_INDCFG1_RC_SMN_INDEX__RC_SMN_INDEX__SHIFT 0x0
+#define NB_PCIE0RCBDG_INDCFG1_RC_SMN_INDEX__RC_SMN_INDEX_MASK 0xFFFFFFFFL
+//NB_PCIE0RCBDG_INDCFG1_RC_SMN_DATA
+#define NB_PCIE0RCBDG_INDCFG1_RC_SMN_DATA__RC_SMN_DATA__SHIFT 0x0
+#define NB_PCIE0RCBDG_INDCFG1_RC_SMN_DATA__RC_SMN_DATA_MASK 0xFFFFFFFFL
+
+
+// addressBlock: aid_nbio_iohub_nb_PCIE0rcbdg_indcfg2_pciercbdgind_cfgdec
+//NB_PCIE0RCBDG_INDCFG2_RC_SMN_INDEX_EXTENSION
+#define NB_PCIE0RCBDG_INDCFG2_RC_SMN_INDEX_EXTENSION__RC_SMN_INDEX_EXTENSION__SHIFT 0x0
+#define NB_PCIE0RCBDG_INDCFG2_RC_SMN_INDEX_EXTENSION__RC_SMN_INDEX_EXTENSION_MASK 0x000000FFL
+//NB_PCIE0RCBDG_INDCFG2_RC_SMN_INDEX
+#define NB_PCIE0RCBDG_INDCFG2_RC_SMN_INDEX__RC_SMN_INDEX__SHIFT 0x0
+#define NB_PCIE0RCBDG_INDCFG2_RC_SMN_INDEX__RC_SMN_INDEX_MASK 0xFFFFFFFFL
+//NB_PCIE0RCBDG_INDCFG2_RC_SMN_DATA
+#define NB_PCIE0RCBDG_INDCFG2_RC_SMN_DATA__RC_SMN_DATA__SHIFT 0x0
+#define NB_PCIE0RCBDG_INDCFG2_RC_SMN_DATA__RC_SMN_DATA_MASK 0xFFFFFFFFL
+
+
+// addressBlock: aid_nbio_iohub_nb_PCIE0rcbdg_indcfg3_pciercbdgind_cfgdec
+//NB_PCIE0RCBDG_INDCFG3_RC_SMN_INDEX_EXTENSION
+#define NB_PCIE0RCBDG_INDCFG3_RC_SMN_INDEX_EXTENSION__RC_SMN_INDEX_EXTENSION__SHIFT 0x0
+#define NB_PCIE0RCBDG_INDCFG3_RC_SMN_INDEX_EXTENSION__RC_SMN_INDEX_EXTENSION_MASK 0x000000FFL
+//NB_PCIE0RCBDG_INDCFG3_RC_SMN_INDEX
+#define NB_PCIE0RCBDG_INDCFG3_RC_SMN_INDEX__RC_SMN_INDEX__SHIFT 0x0
+#define NB_PCIE0RCBDG_INDCFG3_RC_SMN_INDEX__RC_SMN_INDEX_MASK 0xFFFFFFFFL
+//NB_PCIE0RCBDG_INDCFG3_RC_SMN_DATA
+#define NB_PCIE0RCBDG_INDCFG3_RC_SMN_DATA__RC_SMN_DATA__SHIFT 0x0
+#define NB_PCIE0RCBDG_INDCFG3_RC_SMN_DATA__RC_SMN_DATA_MASK 0xFFFFFFFFL
+
+
+// addressBlock: aid_nbio_iohub_nb_PCIE0rcbdg_indcfg4_pciercbdgind_cfgdec
+//NB_PCIE0RCBDG_INDCFG4_RC_SMN_INDEX_EXTENSION
+#define NB_PCIE0RCBDG_INDCFG4_RC_SMN_INDEX_EXTENSION__RC_SMN_INDEX_EXTENSION__SHIFT 0x0
+#define NB_PCIE0RCBDG_INDCFG4_RC_SMN_INDEX_EXTENSION__RC_SMN_INDEX_EXTENSION_MASK 0x000000FFL
+//NB_PCIE0RCBDG_INDCFG4_RC_SMN_INDEX
+#define NB_PCIE0RCBDG_INDCFG4_RC_SMN_INDEX__RC_SMN_INDEX__SHIFT 0x0
+#define NB_PCIE0RCBDG_INDCFG4_RC_SMN_INDEX__RC_SMN_INDEX_MASK 0xFFFFFFFFL
+//NB_PCIE0RCBDG_INDCFG4_RC_SMN_DATA
+#define NB_PCIE0RCBDG_INDCFG4_RC_SMN_DATA__RC_SMN_DATA__SHIFT 0x0
+#define NB_PCIE0RCBDG_INDCFG4_RC_SMN_DATA__RC_SMN_DATA_MASK 0xFFFFFFFFL
+
+
+// addressBlock: aid_nbio_iohub_nb_PCIE0rcbdg_indcfg5_pciercbdgind_cfgdec
+//NB_PCIE0RCBDG_INDCFG5_RC_SMN_INDEX_EXTENSION
+#define NB_PCIE0RCBDG_INDCFG5_RC_SMN_INDEX_EXTENSION__RC_SMN_INDEX_EXTENSION__SHIFT 0x0
+#define NB_PCIE0RCBDG_INDCFG5_RC_SMN_INDEX_EXTENSION__RC_SMN_INDEX_EXTENSION_MASK 0x000000FFL
+//NB_PCIE0RCBDG_INDCFG5_RC_SMN_INDEX
+#define NB_PCIE0RCBDG_INDCFG5_RC_SMN_INDEX__RC_SMN_INDEX__SHIFT 0x0
+#define NB_PCIE0RCBDG_INDCFG5_RC_SMN_INDEX__RC_SMN_INDEX_MASK 0xFFFFFFFFL
+//NB_PCIE0RCBDG_INDCFG5_RC_SMN_DATA
+#define NB_PCIE0RCBDG_INDCFG5_RC_SMN_DATA__RC_SMN_DATA__SHIFT 0x0
+#define NB_PCIE0RCBDG_INDCFG5_RC_SMN_DATA__RC_SMN_DATA_MASK 0xFFFFFFFFL
+
+
+// addressBlock: aid_nbio_iohub_nb_PCIE0rcbdg_indcfg6_pciercbdgind_cfgdec
+//NB_PCIE0RCBDG_INDCFG6_RC_SMN_INDEX_EXTENSION
+#define NB_PCIE0RCBDG_INDCFG6_RC_SMN_INDEX_EXTENSION__RC_SMN_INDEX_EXTENSION__SHIFT 0x0
+#define NB_PCIE0RCBDG_INDCFG6_RC_SMN_INDEX_EXTENSION__RC_SMN_INDEX_EXTENSION_MASK 0x000000FFL
+//NB_PCIE0RCBDG_INDCFG6_RC_SMN_INDEX
+#define NB_PCIE0RCBDG_INDCFG6_RC_SMN_INDEX__RC_SMN_INDEX__SHIFT 0x0
+#define NB_PCIE0RCBDG_INDCFG6_RC_SMN_INDEX__RC_SMN_INDEX_MASK 0xFFFFFFFFL
+//NB_PCIE0RCBDG_INDCFG6_RC_SMN_DATA
+#define NB_PCIE0RCBDG_INDCFG6_RC_SMN_DATA__RC_SMN_DATA__SHIFT 0x0
+#define NB_PCIE0RCBDG_INDCFG6_RC_SMN_DATA__RC_SMN_DATA_MASK 0xFFFFFFFFL
+
+
+// addressBlock: aid_nbio_iohub_nb_NBIF1rcbdg_indcfg0_pciercbdgind_cfgdec
+//NB_NBIF1RCBDG_INDCFG0_RC_SMN_INDEX_EXTENSION
+#define NB_NBIF1RCBDG_INDCFG0_RC_SMN_INDEX_EXTENSION__RC_SMN_INDEX_EXTENSION__SHIFT 0x0
+#define NB_NBIF1RCBDG_INDCFG0_RC_SMN_INDEX_EXTENSION__RC_SMN_INDEX_EXTENSION_MASK 0x000000FFL
+//NB_NBIF1RCBDG_INDCFG0_RC_SMN_INDEX
+#define NB_NBIF1RCBDG_INDCFG0_RC_SMN_INDEX__RC_SMN_INDEX__SHIFT 0x0
+#define NB_NBIF1RCBDG_INDCFG0_RC_SMN_INDEX__RC_SMN_INDEX_MASK 0xFFFFFFFFL
+//NB_NBIF1RCBDG_INDCFG0_RC_SMN_DATA
+#define NB_NBIF1RCBDG_INDCFG0_RC_SMN_DATA__RC_SMN_DATA__SHIFT 0x0
+#define NB_NBIF1RCBDG_INDCFG0_RC_SMN_DATA__RC_SMN_DATA_MASK 0xFFFFFFFFL
+
+
+// addressBlock: aid_nbio_iohub_iommu_l2a_l2acfg
+//L2_PERF_CNTL_0
+#define L2_PERF_CNTL_0__L2PerfEvent0__SHIFT 0x0
+#define L2_PERF_CNTL_0__L2PerfEvent1__SHIFT 0x8
+#define L2_PERF_CNTL_0__L2PerfCountUpper0__SHIFT 0x10
+#define L2_PERF_CNTL_0__L2PerfCountUpper1__SHIFT 0x18
+#define L2_PERF_CNTL_0__L2PerfEvent0_MASK 0x000000FFL
+#define L2_PERF_CNTL_0__L2PerfEvent1_MASK 0x0000FF00L
+#define L2_PERF_CNTL_0__L2PerfCountUpper0_MASK 0x00FF0000L
+#define L2_PERF_CNTL_0__L2PerfCountUpper1_MASK 0xFF000000L
+//L2_PERF_COUNT_0
+#define L2_PERF_COUNT_0__L2PerfCount0__SHIFT 0x0
+#define L2_PERF_COUNT_0__L2PerfCount0_MASK 0xFFFFFFFFL
+//L2_PERF_COUNT_1
+#define L2_PERF_COUNT_1__L2PerfCount1__SHIFT 0x0
+#define L2_PERF_COUNT_1__L2PerfCount1_MASK 0xFFFFFFFFL
+//L2_PERF_CNTL_1
+#define L2_PERF_CNTL_1__L2PerfEvent2__SHIFT 0x0
+#define L2_PERF_CNTL_1__L2PerfEvent3__SHIFT 0x8
+#define L2_PERF_CNTL_1__L2PerfCountUpper2__SHIFT 0x10
+#define L2_PERF_CNTL_1__L2PerfCountUpper3__SHIFT 0x18
+#define L2_PERF_CNTL_1__L2PerfEvent2_MASK 0x000000FFL
+#define L2_PERF_CNTL_1__L2PerfEvent3_MASK 0x0000FF00L
+#define L2_PERF_CNTL_1__L2PerfCountUpper2_MASK 0x00FF0000L
+#define L2_PERF_CNTL_1__L2PerfCountUpper3_MASK 0xFF000000L
+//L2_PERF_COUNT_2
+#define L2_PERF_COUNT_2__L2PerfCount2__SHIFT 0x0
+#define L2_PERF_COUNT_2__L2PerfCount2_MASK 0xFFFFFFFFL
+//L2_PERF_COUNT_3
+#define L2_PERF_COUNT_3__L2PerfCount3__SHIFT 0x0
+#define L2_PERF_COUNT_3__L2PerfCount3_MASK 0xFFFFFFFFL
+//L2_STATUS_0
+#define L2_STATUS_0__L2STATUS0__SHIFT 0x0
+#define L2_STATUS_0__L2STATUS0_MASK 0xFFFFFFFFL
+//L2_CONTROL_0
+#define L2_CONTROL_0__AllowL1CacheVZero__SHIFT 0x1
+#define L2_CONTROL_0__AllowL1CacheATSRsp__SHIFT 0x2
+#define L2_CONTROL_0__DTCHitVZeroOrIVZero__SHIFT 0x3
+#define L2_CONTROL_0__SIDEPTEOnUntransExcl__SHIFT 0xa
+#define L2_CONTROL_0__SIDEPTEOnAddrTransExcl__SHIFT 0xb
+#define L2_CONTROL_0__AllowL1CacheLargePagemode0__SHIFT 0x13
+#define L2_CONTROL_0__IFifoBurstLength__SHIFT 0x14
+#define L2_CONTROL_0__IFifoClientPriority__SHIFT 0x18
+#define L2_CONTROL_0__AllowL1CacheVZero_MASK 0x00000002L
+#define L2_CONTROL_0__AllowL1CacheATSRsp_MASK 0x00000004L
+#define L2_CONTROL_0__DTCHitVZeroOrIVZero_MASK 0x00000008L
+#define L2_CONTROL_0__SIDEPTEOnUntransExcl_MASK 0x00000400L
+#define L2_CONTROL_0__SIDEPTEOnAddrTransExcl_MASK 0x00000800L
+#define L2_CONTROL_0__AllowL1CacheLargePagemode0_MASK 0x00080000L
+#define L2_CONTROL_0__IFifoBurstLength_MASK 0x00F00000L
+#define L2_CONTROL_0__IFifoClientPriority_MASK 0xFF000000L
+//L2_CONTROL_1
+#define L2_CONTROL_1__SeqInvBurstLimitInv__SHIFT 0x0
+#define L2_CONTROL_1__SeqInvBurstLimitL2Req__SHIFT 0x8
+#define L2_CONTROL_1__SeqInvBurstLimitEn__SHIFT 0x10
+#define L2_CONTROL_1__DBUSDis__SHIFT 0x11
+#define L2_CONTROL_1__PerfThreshold__SHIFT 0x18
+#define L2_CONTROL_1__SeqInvBurstLimitInv_MASK 0x000000FFL
+#define L2_CONTROL_1__SeqInvBurstLimitL2Req_MASK 0x0000FF00L
+#define L2_CONTROL_1__SeqInvBurstLimitEn_MASK 0x00010000L
+#define L2_CONTROL_1__DBUSDis_MASK 0x00020000L
+#define L2_CONTROL_1__PerfThreshold_MASK 0xFF000000L
+//L2_DTC_CONTROL
+#define L2_DTC_CONTROL__DTCLRUUpdatePri__SHIFT 0x3
+#define L2_DTC_CONTROL__DTCParityEn__SHIFT 0x4
+#define L2_DTC_CONTROL__DTCInvalidationSel__SHIFT 0x8
+#define L2_DTC_CONTROL__DTCSoftInvalidate__SHIFT 0xa
+#define L2_DTC_CONTROL__DTCBypass__SHIFT 0xd
+#define L2_DTC_CONTROL__DTCParitySupport__SHIFT 0xf
+#define L2_DTC_CONTROL__DTCWays__SHIFT 0x10
+#define L2_DTC_CONTROL__DTCEntries__SHIFT 0x1c
+#define L2_DTC_CONTROL__DTCLRUUpdatePri_MASK 0x00000008L
+#define L2_DTC_CONTROL__DTCParityEn_MASK 0x00000010L
+#define L2_DTC_CONTROL__DTCInvalidationSel_MASK 0x00000300L
+#define L2_DTC_CONTROL__DTCSoftInvalidate_MASK 0x00000400L
+#define L2_DTC_CONTROL__DTCBypass_MASK 0x00002000L
+#define L2_DTC_CONTROL__DTCParitySupport_MASK 0x00008000L
+#define L2_DTC_CONTROL__DTCWays_MASK 0x00FF0000L
+#define L2_DTC_CONTROL__DTCEntries_MASK 0xF0000000L
+//L2_DTC_HASH_CONTROL
+#define L2_DTC_HASH_CONTROL__DTCAddressMask__SHIFT 0x10
+#define L2_DTC_HASH_CONTROL__DTCAddressMask_MASK 0xFFFF0000L
+//L2_DTC_WAY_CONTROL
+#define L2_DTC_WAY_CONTROL__DTCWayDisable__SHIFT 0x0
+#define L2_DTC_WAY_CONTROL__DTCWayAccessDisable__SHIFT 0x10
+#define L2_DTC_WAY_CONTROL__DTCWayDisable_MASK 0x0000FFFFL
+#define L2_DTC_WAY_CONTROL__DTCWayAccessDisable_MASK 0xFFFF0000L
+//L2_ITC_CONTROL
+#define L2_ITC_CONTROL__ITCLRUUpdatePri__SHIFT 0x3
+#define L2_ITC_CONTROL__ITCParityEn__SHIFT 0x4
+#define L2_ITC_CONTROL__ITCInvalidationSel__SHIFT 0x8
+#define L2_ITC_CONTROL__ITCSoftInvalidate__SHIFT 0xa
+#define L2_ITC_CONTROL__ITCBypass__SHIFT 0xd
+#define L2_ITC_CONTROL__ITCParitySupport__SHIFT 0xf
+#define L2_ITC_CONTROL__ITCWays__SHIFT 0x10
+#define L2_ITC_CONTROL__ITCEntries__SHIFT 0x1c
+#define L2_ITC_CONTROL__ITCLRUUpdatePri_MASK 0x00000008L
+#define L2_ITC_CONTROL__ITCParityEn_MASK 0x00000010L
+#define L2_ITC_CONTROL__ITCInvalidationSel_MASK 0x00000300L
+#define L2_ITC_CONTROL__ITCSoftInvalidate_MASK 0x00000400L
+#define L2_ITC_CONTROL__ITCBypass_MASK 0x00002000L
+#define L2_ITC_CONTROL__ITCParitySupport_MASK 0x00008000L
+#define L2_ITC_CONTROL__ITCWays_MASK 0x00FF0000L
+#define L2_ITC_CONTROL__ITCEntries_MASK 0xF0000000L
+//L2_ITC_HASH_CONTROL
+#define L2_ITC_HASH_CONTROL__ITCAddressMask__SHIFT 0x10
+#define L2_ITC_HASH_CONTROL__ITCAddressMask_MASK 0xFFFF0000L
+//L2_ITC_WAY_CONTROL
+#define L2_ITC_WAY_CONTROL__ITCWayDisable__SHIFT 0x0
+#define L2_ITC_WAY_CONTROL__ITCWayAccessDisable__SHIFT 0x10
+#define L2_ITC_WAY_CONTROL__ITCWayDisable_MASK 0x0000FFFFL
+#define L2_ITC_WAY_CONTROL__ITCWayAccessDisable_MASK 0xFFFF0000L
+//L2_PTC_A_CONTROL
+#define L2_PTC_A_CONTROL__PTCAStoreFinalATSeperate__SHIFT 0x1
+#define L2_PTC_A_CONTROL__PTCAStorePartialATSeperate__SHIFT 0x2
+#define L2_PTC_A_CONTROL__PTCALRUUpdatePri__SHIFT 0x3
+#define L2_PTC_A_CONTROL__PTCAParityEn__SHIFT 0x4
+#define L2_PTC_A_CONTROL__PTCAInvalidationSel__SHIFT 0x8
+#define L2_PTC_A_CONTROL__PTCASoftInvalidate__SHIFT 0xa
+#define L2_PTC_A_CONTROL__PTCA2MMode__SHIFT 0xb
+#define L2_PTC_A_CONTROL__PCTA_Inv_Overlapping_Pages__SHIFT 0xc
+#define L2_PTC_A_CONTROL__PTCABypass__SHIFT 0xd
+#define L2_PTC_A_CONTROL__PTCAFastInvalidateGuest__SHIFT 0xe
+#define L2_PTC_A_CONTROL__PTCAParitySupport__SHIFT 0xf
+#define L2_PTC_A_CONTROL__PTCAWays__SHIFT 0x10
+#define L2_PTC_A_CONTROL__PTCAEntries__SHIFT 0x1c
+#define L2_PTC_A_CONTROL__PTCAStoreFinalATSeperate_MASK 0x00000002L
+#define L2_PTC_A_CONTROL__PTCAStorePartialATSeperate_MASK 0x00000004L
+#define L2_PTC_A_CONTROL__PTCALRUUpdatePri_MASK 0x00000008L
+#define L2_PTC_A_CONTROL__PTCAParityEn_MASK 0x00000010L
+#define L2_PTC_A_CONTROL__PTCAInvalidationSel_MASK 0x00000300L
+#define L2_PTC_A_CONTROL__PTCASoftInvalidate_MASK 0x00000400L
+#define L2_PTC_A_CONTROL__PTCA2MMode_MASK 0x00000800L
+#define L2_PTC_A_CONTROL__PCTA_Inv_Overlapping_Pages_MASK 0x00001000L
+#define L2_PTC_A_CONTROL__PTCABypass_MASK 0x00002000L
+#define L2_PTC_A_CONTROL__PTCAFastInvalidateGuest_MASK 0x00004000L
+#define L2_PTC_A_CONTROL__PTCAParitySupport_MASK 0x00008000L
+#define L2_PTC_A_CONTROL__PTCAWays_MASK 0x00FF0000L
+#define L2_PTC_A_CONTROL__PTCAEntries_MASK 0xF0000000L
+//L2_PTC_A_HASH_CONTROL
+#define L2_PTC_A_HASH_CONTROL__PTCAAddressMask__SHIFT 0x10
+#define L2_PTC_A_HASH_CONTROL__PTCAAddressMask_MASK 0xFFFF0000L
+//L2_PTC_A_WAY_CONTROL
+#define L2_PTC_A_WAY_CONTROL__PTCAWayDisable__SHIFT 0x0
+#define L2_PTC_A_WAY_CONTROL__PTCAWayAccessDisable__SHIFT 0x10
+#define L2_PTC_A_WAY_CONTROL__PTCAWayDisable_MASK 0x0000FFFFL
+#define L2_PTC_A_WAY_CONTROL__PTCAWayAccessDisable_MASK 0xFFFF0000L
+//L2A_UPDATE_FILTER_CNTL
+#define L2A_UPDATE_FILTER_CNTL__L2a_Update_Filter_Bypass__SHIFT 0x0
+#define L2A_UPDATE_FILTER_CNTL__L2a_Update_Filter_RdLatency__SHIFT 0x1
+#define L2A_UPDATE_FILTER_CNTL__L2a_Update_Filter_Bypass_MASK 0x00000001L
+#define L2A_UPDATE_FILTER_CNTL__L2a_Update_Filter_RdLatency_MASK 0x0000001EL
+//L2_ERR_RULE_CONTROL_3
+#define L2_ERR_RULE_CONTROL_3__ERRRuleLock1__SHIFT 0x0
+#define L2_ERR_RULE_CONTROL_3__ERRRuleDisable3__SHIFT 0x4
+#define L2_ERR_RULE_CONTROL_3__ERRRuleLock1_MASK 0x00000001L
+#define L2_ERR_RULE_CONTROL_3__ERRRuleDisable3_MASK 0xFFFFFFF0L
+//L2_ERR_RULE_CONTROL_4
+#define L2_ERR_RULE_CONTROL_4__ERRRuleDisable4__SHIFT 0x0
+#define L2_ERR_RULE_CONTROL_4__ERRRuleDisable4_MASK 0xFFFFFFFFL
+//L2_ERR_RULE_CONTROL_5
+#define L2_ERR_RULE_CONTROL_5__ERRRuleDisable5__SHIFT 0x0
+#define L2_ERR_RULE_CONTROL_5__ERRRuleDisable5_MASK 0xFFFFFFFFL
+//L2_L2A_CK_GATE_CONTROL
+#define L2_L2A_CK_GATE_CONTROL__CKGateL2ARegsDisable__SHIFT 0x0
+#define L2_L2A_CK_GATE_CONTROL__CKGateL2ADynamicDisable__SHIFT 0x1
+#define L2_L2A_CK_GATE_CONTROL__CKGateL2ACacheDisable__SHIFT 0x2
+#define L2_L2A_CK_GATE_CONTROL__CKGateL2APerfDisable__SHIFT 0x3
+#define L2_L2A_CK_GATE_CONTROL__CKGateL2ALength__SHIFT 0x10
+#define L2_L2A_CK_GATE_CONTROL__CKGateL2AStop__SHIFT 0x12
+#define L2_L2A_CK_GATE_CONTROL__CKGateL2APortClkDis__SHIFT 0x14
+#define L2_L2A_CK_GATE_CONTROL__Reserved__SHIFT 0x15
+#define L2_L2A_CK_GATE_CONTROL__CKGateL2ARegsDisable_MASK 0x00000001L
+#define L2_L2A_CK_GATE_CONTROL__CKGateL2ADynamicDisable_MASK 0x00000002L
+#define L2_L2A_CK_GATE_CONTROL__CKGateL2ACacheDisable_MASK 0x00000004L
+#define L2_L2A_CK_GATE_CONTROL__CKGateL2APerfDisable_MASK 0x00000008L
+#define L2_L2A_CK_GATE_CONTROL__CKGateL2ALength_MASK 0x00030000L
+#define L2_L2A_CK_GATE_CONTROL__CKGateL2AStop_MASK 0x000C0000L
+#define L2_L2A_CK_GATE_CONTROL__CKGateL2APortClkDis_MASK 0x00100000L
+#define L2_L2A_CK_GATE_CONTROL__Reserved_MASK 0xFFE00000L
+//L2_L2A_PGSIZE_CONTROL
+#define L2_L2A_PGSIZE_CONTROL__L2AREG_GST_PGSIZE__SHIFT 0x0
+#define L2_L2A_PGSIZE_CONTROL__L2AREG_HOST_PGSIZE__SHIFT 0x8
+#define L2_L2A_PGSIZE_CONTROL__L2AREG_PTCSCAN_MODE__SHIFT 0x11
+#define L2_L2A_PGSIZE_CONTROL__L2AREG_GST_PGSIZE_MASK 0x0000007FL
+#define L2_L2A_PGSIZE_CONTROL__L2AREG_HOST_PGSIZE_MASK 0x00007F00L
+#define L2_L2A_PGSIZE_CONTROL__L2AREG_PTCSCAN_MODE_MASK 0x000E0000L
+//L2_PWRGATE_CNTRL_REG_0
+#define L2_PWRGATE_CNTRL_REG_0__IP_PG_thres__SHIFT 0x0
+#define L2_PWRGATE_CNTRL_REG_0__IP_PG_thres_MASK 0xFFFFFFFFL
+//L2_PWRGATE_CNTRL_REG_3
+#define L2_PWRGATE_CNTRL_REG_3__IP_PG_en__SHIFT 0x0
+#define L2_PWRGATE_CNTRL_REG_3__IP_PG_busy__SHIFT 0x1
+#define L2_PWRGATE_CNTRL_REG_3__L2_PG_STATUS__SHIFT 0x2
+#define L2_PWRGATE_CNTRL_REG_3__CFG_FW_PG_EXIT_EN__SHIFT 0x3
+#define L2_PWRGATE_CNTRL_REG_3__IP_PG_en_MASK 0x00000001L
+#define L2_PWRGATE_CNTRL_REG_3__IP_PG_busy_MASK 0x00000002L
+#define L2_PWRGATE_CNTRL_REG_3__L2_PG_STATUS_MASK 0x00000004L
+#define L2_PWRGATE_CNTRL_REG_3__CFG_FW_PG_EXIT_EN_MASK 0x00000018L
+//L2_ECO_CNTRL_0
+#define L2_ECO_CNTRL_0__L2_ECO_0__SHIFT 0x0
+#define L2_ECO_CNTRL_0__L2_ECO_0_MASK 0xFFFFFFFFL
+
+
+// addressBlock: aid_nbio_iohub_iommu_l2indx_l2indxcfg
+//L2_STATUS_1
+#define L2_STATUS_1__L2STATUS1__SHIFT 0x0
+#define L2_STATUS_1__L2STATUS1_MASK 0xFFFFFFFFL
+//L2_SB_LOCATION
+#define L2_SB_LOCATION__SBlocated_Port__SHIFT 0x0
+#define L2_SB_LOCATION__SBlocated_Core__SHIFT 0x10
+#define L2_SB_LOCATION__SBlocated_Port_MASK 0x0000FFFFL
+#define L2_SB_LOCATION__SBlocated_Core_MASK 0xFFFF0000L
+//L2_CONTROL_5
+#define L2_CONTROL_5__QueueArbFBPri__SHIFT 0x0
+#define L2_CONTROL_5__FC1Dis__SHIFT 0x2
+#define L2_CONTROL_5__DTCUpdateVOneIVZero__SHIFT 0x3
+#define L2_CONTROL_5__DTCUpdateVZeroIVOne__SHIFT 0x4
+#define L2_CONTROL_5__FC3Dis__SHIFT 0x6
+#define L2_CONTROL_5__ForceTWonVCQoS__SHIFT 0xb
+#define L2_CONTROL_5__GST_partial_ptc_cntrl__SHIFT 0xc
+#define L2_CONTROL_5__STORE_PDPE_QOS_PTC__SHIFT 0x14
+#define L2_CONTROL_5__DTCUpdatePri__SHIFT 0x19
+#define L2_CONTROL_5__L2B_L2A_v1_trans_credits__SHIFT 0x1a
+#define L2_CONTROL_5__QueueArbFBPri_MASK 0x00000001L
+#define L2_CONTROL_5__FC1Dis_MASK 0x00000004L
+#define L2_CONTROL_5__DTCUpdateVOneIVZero_MASK 0x00000008L
+#define L2_CONTROL_5__DTCUpdateVZeroIVOne_MASK 0x00000010L
+#define L2_CONTROL_5__FC3Dis_MASK 0x00000040L
+#define L2_CONTROL_5__ForceTWonVCQoS_MASK 0x00000800L
+#define L2_CONTROL_5__GST_partial_ptc_cntrl_MASK 0x0007F000L
+#define L2_CONTROL_5__STORE_PDPE_QOS_PTC_MASK 0x00100000L
+#define L2_CONTROL_5__DTCUpdatePri_MASK 0x02000000L
+#define L2_CONTROL_5__L2B_L2A_v1_trans_credits_MASK 0xFC000000L
+//L2_CONTROL_6
+#define L2_CONTROL_6__SeqInvBurstLimitInv__SHIFT 0x0
+#define L2_CONTROL_6__SeqInvBurstLimitPDCReq__SHIFT 0x8
+#define L2_CONTROL_6__SeqInvBurstLimitEn__SHIFT 0x10
+#define L2_CONTROL_6__Perf2Threshold__SHIFT 0x18
+#define L2_CONTROL_6__SeqInvBurstLimitInv_MASK 0x000000FFL
+#define L2_CONTROL_6__SeqInvBurstLimitPDCReq_MASK 0x0000FF00L
+#define L2_CONTROL_6__SeqInvBurstLimitEn_MASK 0x00010000L
+#define L2_CONTROL_6__Perf2Threshold_MASK 0xFF000000L
+//L2_PDC_CONTROL
+#define L2_PDC_CONTROL__PDCLRUUpdatePri__SHIFT 0x3
+#define L2_PDC_CONTROL__PDCParityEn__SHIFT 0x4
+#define L2_PDC_CONTROL__PDCInvalidationSel__SHIFT 0x8
+#define L2_PDC_CONTROL__PDCSoftInvalidate__SHIFT 0xa
+#define L2_PDC_CONTROL__PDC_Inv_Overlapping_Pages__SHIFT 0xb
+#define L2_PDC_CONTROL__PDCSearchDirection__SHIFT 0xc
+#define L2_PDC_CONTROL__PDCBypass__SHIFT 0xd
+#define L2_PDC_CONTROL__PDCModeLookupFix__SHIFT 0xe
+#define L2_PDC_CONTROL__PDCParitySupport__SHIFT 0xf
+#define L2_PDC_CONTROL__PDCWays__SHIFT 0x10
+#define L2_PDC_CONTROL__PDCEntries__SHIFT 0x1c
+#define L2_PDC_CONTROL__PDCLRUUpdatePri_MASK 0x00000008L
+#define L2_PDC_CONTROL__PDCParityEn_MASK 0x00000010L
+#define L2_PDC_CONTROL__PDCInvalidationSel_MASK 0x00000300L
+#define L2_PDC_CONTROL__PDCSoftInvalidate_MASK 0x00000400L
+#define L2_PDC_CONTROL__PDC_Inv_Overlapping_Pages_MASK 0x00000800L
+#define L2_PDC_CONTROL__PDCSearchDirection_MASK 0x00001000L
+#define L2_PDC_CONTROL__PDCBypass_MASK 0x00002000L
+#define L2_PDC_CONTROL__PDCModeLookupFix_MASK 0x00004000L
+#define L2_PDC_CONTROL__PDCParitySupport_MASK 0x00008000L
+#define L2_PDC_CONTROL__PDCWays_MASK 0x00FF0000L
+#define L2_PDC_CONTROL__PDCEntries_MASK 0xF0000000L
+//L2_PDC_HASH_CONTROL
+#define L2_PDC_HASH_CONTROL__PDCAddressMask__SHIFT 0x10
+#define L2_PDC_HASH_CONTROL__PDCAddressMask_MASK 0xFFFF0000L
+//L2_PDC_WAY_CONTROL
+#define L2_PDC_WAY_CONTROL__PDCWayDisable__SHIFT 0x0
+#define L2_PDC_WAY_CONTROL__PDCWayAccessDisable__SHIFT 0x10
+#define L2_PDC_WAY_CONTROL__PDCWayDisable_MASK 0x0000FFFFL
+#define L2_PDC_WAY_CONTROL__PDCWayAccessDisable_MASK 0xFFFF0000L
+//L2B_UPDATE_FILTER_CNTL
+#define L2B_UPDATE_FILTER_CNTL__L2b_Update_Filter_Bypass__SHIFT 0x0
+#define L2B_UPDATE_FILTER_CNTL__L2b_Update_Filter_RdLatency__SHIFT 0x1
+#define L2B_UPDATE_FILTER_CNTL__L2b_Update_Filter_Bypass_MASK 0x00000001L
+#define L2B_UPDATE_FILTER_CNTL__L2b_Update_Filter_RdLatency_MASK 0x0000001EL
+//L2_TW_CONTROL
+#define L2_TW_CONTROL__RESERVED__SHIFT 0x0
+#define L2_TW_CONTROL__TWForceCoherent__SHIFT 0x6
+#define L2_TW_CONTROL__TWPrefetchEn__SHIFT 0x8
+#define L2_TW_CONTROL__TWPrefetchOnly4KDis__SHIFT 0x9
+#define L2_TW_CONTROL__TWPTEOnUntransExcl__SHIFT 0xa
+#define L2_TW_CONTROL__TWPTEOnAddrTransExcl__SHIFT 0xb
+#define L2_TW_CONTROL__TWPrefetchRange__SHIFT 0xc
+#define L2_TW_CONTROL__TWFilter_Dis__SHIFT 0x10
+#define L2_TW_CONTROL__TWFilter_64B_Dis__SHIFT 0x11
+#define L2_TW_CONTROL__TWContWalkOnPErrDis__SHIFT 0x12
+#define L2_TW_CONTROL__TWSetAccessBit_Dis__SHIFT 0x13
+#define L2_TW_CONTROL__TWClearAPBit_Dis__SHIFT 0x14
+#define L2_TW_CONTROL__TWCacheNestedPTE__SHIFT 0x19
+#define L2_TW_CONTROL__RESERVED_MASK 0x0000003FL
+#define L2_TW_CONTROL__TWForceCoherent_MASK 0x00000040L
+#define L2_TW_CONTROL__TWPrefetchEn_MASK 0x00000100L
+#define L2_TW_CONTROL__TWPrefetchOnly4KDis_MASK 0x00000200L
+#define L2_TW_CONTROL__TWPTEOnUntransExcl_MASK 0x00000400L
+#define L2_TW_CONTROL__TWPTEOnAddrTransExcl_MASK 0x00000800L
+#define L2_TW_CONTROL__TWPrefetchRange_MASK 0x00007000L
+#define L2_TW_CONTROL__TWFilter_Dis_MASK 0x00010000L
+#define L2_TW_CONTROL__TWFilter_64B_Dis_MASK 0x00020000L
+#define L2_TW_CONTROL__TWContWalkOnPErrDis_MASK 0x00040000L
+#define L2_TW_CONTROL__TWSetAccessBit_Dis_MASK 0x00080000L
+#define L2_TW_CONTROL__TWClearAPBit_Dis_MASK 0x00100000L
+#define L2_TW_CONTROL__TWCacheNestedPTE_MASK 0x02000000L
+//L2_CP_CONTROL
+#define L2_CP_CONTROL__CPPrefetchDis__SHIFT 0x0
+#define L2_CP_CONTROL__CPFlushOnWait__SHIFT 0x1
+#define L2_CP_CONTROL__CPFlushOnInv__SHIFT 0x2
+#define L2_CP_CONTROL__CPStallCmdErrForIOTLBCmpl__SHIFT 0x3
+#define L2_CP_CONTROL__CPForceReqPassPW__SHIFT 0x4
+#define L2_CP_CONTROL__CPForceOneOutstandingCommand__SHIFT 0x5
+#define L2_CP_CONTROL__CPRdDelay__SHIFT 0x10
+#define L2_CP_CONTROL__CPPrefetchDis_MASK 0x00000001L
+#define L2_CP_CONTROL__CPFlushOnWait_MASK 0x00000002L
+#define L2_CP_CONTROL__CPFlushOnInv_MASK 0x00000004L
+#define L2_CP_CONTROL__CPStallCmdErrForIOTLBCmpl_MASK 0x00000008L
+#define L2_CP_CONTROL__CPForceReqPassPW_MASK 0x00000010L
+#define L2_CP_CONTROL__CPForceOneOutstandingCommand_MASK 0x00000020L
+#define L2_CP_CONTROL__CPRdDelay_MASK 0xFFFF0000L
+//L2_CP_CONTROL_1
+#define L2_CP_CONTROL_1__CPL1Off__SHIFT 0x0
+#define L2_CP_CONTROL_1__Reserved__SHIFT 0x10
+#define L2_CP_CONTROL_1__CPL1Off_MASK 0x0000FFFFL
+#define L2_CP_CONTROL_1__Reserved_MASK 0xFFFF0000L
+//L2_TW_CONTROL_1
+#define L2_TW_CONTROL_1__TWTraceEn__SHIFT 0x0
+#define L2_TW_CONTROL_1__TWTraceNoWrap__SHIFT 0x1
+#define L2_TW_CONTROL_1__TWTraceForceDisable__SHIFT 0x2
+#define L2_TW_CONTROL_1__TWTraceMask__SHIFT 0xf
+#define L2_TW_CONTROL_1__TWTraceEn_MASK 0x00000001L
+#define L2_TW_CONTROL_1__TWTraceNoWrap_MASK 0x00000002L
+#define L2_TW_CONTROL_1__TWTraceForceDisable_MASK 0x00000004L
+#define L2_TW_CONTROL_1__TWTraceMask_MASK 0xFFFF8000L
+//L2_TW_CONTROL_2
+#define L2_TW_CONTROL_2__TWTraceAddrLo__SHIFT 0xc
+#define L2_TW_CONTROL_2__TWTraceAddrLo_MASK 0xFFFFF000L
+//L2_TW_CONTROL_3
+#define L2_TW_CONTROL_3__TWTraceAddrHi__SHIFT 0x0
+#define L2_TW_CONTROL_3__TWTraceAddrHi_MASK 0xFFFFFFFFL
+//L2_CREDIT_CONTROL_0
+#define L2_CREDIT_CONTROL_0__FC1Credits__SHIFT 0x0
+#define L2_CREDIT_CONTROL_0__FC1Override__SHIFT 0x7
+#define L2_CREDIT_CONTROL_0__FC3Credits__SHIFT 0xf
+#define L2_CREDIT_CONTROL_0__FC3Override__SHIFT 0x15
+#define L2_CREDIT_CONTROL_0__FC1Credits_MASK 0x0000007FL
+#define L2_CREDIT_CONTROL_0__FC1Override_MASK 0x00000080L
+#define L2_CREDIT_CONTROL_0__FC3Credits_MASK 0x001F8000L
+#define L2_CREDIT_CONTROL_0__FC3Override_MASK 0x00200000L
+//L2_CREDIT_CONTROL_1
+#define L2_CREDIT_CONTROL_1__CP_PREFETCH_credits__SHIFT 0x10
+#define L2_CREDIT_CONTROL_1__PPR_MCIF_credits__SHIFT 0x14
+#define L2_CREDIT_CONTROL_1__CP_PREFETCH_credits_MASK 0x000F0000L
+#define L2_CREDIT_CONTROL_1__PPR_MCIF_credits_MASK 0x00F00000L
+//L2_ERR_RULE_CONTROL_0
+#define L2_ERR_RULE_CONTROL_0__ERRRuleLock0__SHIFT 0x0
+#define L2_ERR_RULE_CONTROL_0__ERRRuleDisable0__SHIFT 0x1
+#define L2_ERR_RULE_CONTROL_0__ERRRuleLock0_MASK 0x00000001L
+#define L2_ERR_RULE_CONTROL_0__ERRRuleDisable0_MASK 0xFFFFFFFEL
+//L2_ERR_RULE_CONTROL_1
+#define L2_ERR_RULE_CONTROL_1__ERRRuleDisable1__SHIFT 0x0
+#define L2_ERR_RULE_CONTROL_1__ERRRuleDisable1_MASK 0xFFFFFFFFL
+//L2_ERR_RULE_CONTROL_2
+#define L2_ERR_RULE_CONTROL_2__ERRRuleDisable2__SHIFT 0x0
+#define L2_ERR_RULE_CONTROL_2__ERRRuleDisable2_MASK 0xFFFFFFFFL
+//L2_L2B_CK_GATE_CONTROL
+#define L2_L2B_CK_GATE_CONTROL__CKGateL2BRegsDisable__SHIFT 0x0
+#define L2_L2B_CK_GATE_CONTROL__CKGateL2BDynamicDisable__SHIFT 0x1
+#define L2_L2B_CK_GATE_CONTROL__CKGateL2BMiscDisable__SHIFT 0x2
+#define L2_L2B_CK_GATE_CONTROL__CKGateL2BCacheDisable__SHIFT 0x3
+#define L2_L2B_CK_GATE_CONTROL__CKGateL2BAPCDisable__SHIFT 0x4
+#define L2_L2B_CK_GATE_CONTROL__CKGateL2BPerfDisable__SHIFT 0x5
+#define L2_L2B_CK_GATE_CONTROL__CKGateL2BPortClkDis__SHIFT 0x6
+#define L2_L2B_CK_GATE_CONTROL__CKGateL2BLength__SHIFT 0x10
+#define L2_L2B_CK_GATE_CONTROL__CKGateL2BStop__SHIFT 0x12
+#define L2_L2B_CK_GATE_CONTROL__Reserved__SHIFT 0x14
+#define L2_L2B_CK_GATE_CONTROL__CKGateL2BRegsDisable_MASK 0x00000001L
+#define L2_L2B_CK_GATE_CONTROL__CKGateL2BDynamicDisable_MASK 0x00000002L
+#define L2_L2B_CK_GATE_CONTROL__CKGateL2BMiscDisable_MASK 0x00000004L
+#define L2_L2B_CK_GATE_CONTROL__CKGateL2BCacheDisable_MASK 0x00000008L
+#define L2_L2B_CK_GATE_CONTROL__CKGateL2BAPCDisable_MASK 0x00000010L
+#define L2_L2B_CK_GATE_CONTROL__CKGateL2BPerfDisable_MASK 0x00000020L
+#define L2_L2B_CK_GATE_CONTROL__CKGateL2BPortClkDis_MASK 0x00000040L
+#define L2_L2B_CK_GATE_CONTROL__CKGateL2BLength_MASK 0x00030000L
+#define L2_L2B_CK_GATE_CONTROL__CKGateL2BStop_MASK 0x000C0000L
+#define L2_L2B_CK_GATE_CONTROL__Reserved_MASK 0xFFF00000L
+//PPR_CONTROL
+#define PPR_CONTROL__PPR_IntTimeDelay__SHIFT 0x0
+#define PPR_CONTROL__PPR_IntReqDelay__SHIFT 0x8
+#define PPR_CONTROL__PPR_IntCoallesce_En__SHIFT 0x10
+#define PPR_CONTROL__PPR_IntTimeDelay_MASK 0x000000FFL
+#define PPR_CONTROL__PPR_IntReqDelay_MASK 0x0000FF00L
+#define PPR_CONTROL__PPR_IntCoallesce_En_MASK 0x00010000L
+//L2_L2B_PGSIZE_CONTROL
+#define L2_L2B_PGSIZE_CONTROL__L2BREG_GST_PGSIZE__SHIFT 0x0
+#define L2_L2B_PGSIZE_CONTROL__L2BREG_HOST_PGSIZE__SHIFT 0x8
+#define L2_L2B_PGSIZE_CONTROL__L2BREG_GST_PGSIZE_MASK 0x0000007FL
+#define L2_L2B_PGSIZE_CONTROL__L2BREG_HOST_PGSIZE_MASK 0x00007F00L
+//L2_PERF_CNTL_2
+#define L2_PERF_CNTL_2__L2PerfEvent4__SHIFT 0x0
+#define L2_PERF_CNTL_2__L2PerfEvent5__SHIFT 0x8
+#define L2_PERF_CNTL_2__L2PerfCountUpper4__SHIFT 0x10
+#define L2_PERF_CNTL_2__L2PerfCountUpper5__SHIFT 0x18
+#define L2_PERF_CNTL_2__L2PerfEvent4_MASK 0x000000FFL
+#define L2_PERF_CNTL_2__L2PerfEvent5_MASK 0x0000FF00L
+#define L2_PERF_CNTL_2__L2PerfCountUpper4_MASK 0x00FF0000L
+#define L2_PERF_CNTL_2__L2PerfCountUpper5_MASK 0xFF000000L
+//L2_PERF_COUNT_4
+#define L2_PERF_COUNT_4__L2PerfCount4__SHIFT 0x0
+#define L2_PERF_COUNT_4__L2PerfCount4_MASK 0xFFFFFFFFL
+//L2_PERF_COUNT_5
+#define L2_PERF_COUNT_5__L2PerfCount5__SHIFT 0x0
+#define L2_PERF_COUNT_5__L2PerfCount5_MASK 0xFFFFFFFFL
+//L2_PERF_CNTL_3
+#define L2_PERF_CNTL_3__L2PerfEvent6__SHIFT 0x0
+#define L2_PERF_CNTL_3__L2PerfEvent7__SHIFT 0x8
+#define L2_PERF_CNTL_3__L2PerfCountUpper6__SHIFT 0x10
+#define L2_PERF_CNTL_3__L2PerfCountUpper7__SHIFT 0x18
+#define L2_PERF_CNTL_3__L2PerfEvent6_MASK 0x000000FFL
+#define L2_PERF_CNTL_3__L2PerfEvent7_MASK 0x0000FF00L
+#define L2_PERF_CNTL_3__L2PerfCountUpper6_MASK 0x00FF0000L
+#define L2_PERF_CNTL_3__L2PerfCountUpper7_MASK 0xFF000000L
+//L2_PERF_COUNT_6
+#define L2_PERF_COUNT_6__L2PerfCount6__SHIFT 0x0
+#define L2_PERF_COUNT_6__L2PerfCount6_MASK 0xFFFFFFFFL
+//L2_PERF_COUNT_7
+#define L2_PERF_COUNT_7__L2PerfCount7__SHIFT 0x0
+#define L2_PERF_COUNT_7__L2PerfCount7_MASK 0xFFFFFFFFL
+//L2B_SDP_PARITY_ERROR_EN
+#define L2B_SDP_PARITY_ERROR_EN__DVM_PARITY_ERROR_EN__SHIFT 0x0
+#define L2B_SDP_PARITY_ERROR_EN__CP_PARITY_ERROR_EN__SHIFT 0x1
+#define L2B_SDP_PARITY_ERROR_EN__TWW_PARITY_ERROR_EN__SHIFT 0x2
+#define L2B_SDP_PARITY_ERROR_EN__VFMMIO_PARITY_ERROR_EN__SHIFT 0x3
+#define L2B_SDP_PARITY_ERROR_EN__MSG_PARITY_ERROR_EN__SHIFT 0x4
+#define L2B_SDP_PARITY_ERROR_EN__DVM_PARITY_ERROR_EN_MASK 0x00000001L
+#define L2B_SDP_PARITY_ERROR_EN__CP_PARITY_ERROR_EN_MASK 0x00000002L
+#define L2B_SDP_PARITY_ERROR_EN__TWW_PARITY_ERROR_EN_MASK 0x00000004L
+#define L2B_SDP_PARITY_ERROR_EN__VFMMIO_PARITY_ERROR_EN_MASK 0x00000008L
+#define L2B_SDP_PARITY_ERROR_EN__MSG_PARITY_ERROR_EN_MASK 0x00000010L
+//L2_ECO_CNTRL_1
+#define L2_ECO_CNTRL_1__L2_ECO_1__SHIFT 0x0
+#define L2_ECO_CNTRL_1__L2_ECO_1_MASK 0xFFFFFFFFL
+//L2_CP_CONTROL_2
+#define L2_CP_CONTROL_2__OVERCONSTRAIN_CMD_WQ_ON_INV__SHIFT 0x0
+#define L2_CP_CONTROL_2__LEGACY_CWWB_PATH__SHIFT 0x1
+#define L2_CP_CONTROL_2__gstcp_always_refetch_v1__SHIFT 0x2
+#define L2_CP_CONTROL_2__inv_waitcmpl_mode__SHIFT 0x16
+#define L2_CP_CONTROL_2__inv_dvmsync_mode__SHIFT 0x18
+#define L2_CP_CONTROL_2__inv_pspflush_mode__SHIFT 0x1a
+#define L2_CP_CONTROL_2__wqmask_propagation_latency__SHIFT 0x1c
+#define L2_CP_CONTROL_2__OVERCONSTRAIN_CMD_WQ_ON_INV_MASK 0x00000001L
+#define L2_CP_CONTROL_2__LEGACY_CWWB_PATH_MASK 0x00000002L
+#define L2_CP_CONTROL_2__gstcp_always_refetch_v1_MASK 0x00000004L
+#define L2_CP_CONTROL_2__inv_waitcmpl_mode_MASK 0x00C00000L
+#define L2_CP_CONTROL_2__inv_dvmsync_mode_MASK 0x03000000L
+#define L2_CP_CONTROL_2__inv_pspflush_mode_MASK 0x0C000000L
+#define L2_CP_CONTROL_2__wqmask_propagation_latency_MASK 0xF0000000L
+//L2_CP_CONTROL_3
+#define L2_CP_CONTROL_3__INV_CMD_PRIORITY__SHIFT 0x0
+#define L2_CP_CONTROL_3__WAIT_CMD_PRIORITY__SHIFT 0x4
+#define L2_CP_CONTROL_3__SYNC_CMD_PRIORITY__SHIFT 0x8
+#define L2_CP_CONTROL_3__PSP_CMD_PRIORITY__SHIFT 0xc
+#define L2_CP_CONTROL_3__INV_CMD_PRIORITY_MASK 0x0000000FL
+#define L2_CP_CONTROL_3__WAIT_CMD_PRIORITY_MASK 0x000000F0L
+#define L2_CP_CONTROL_3__SYNC_CMD_PRIORITY_MASK 0x00000F00L
+#define L2_CP_CONTROL_3__PSP_CMD_PRIORITY_MASK 0x0000F000L
+
+
+// addressBlock: aid_nbio_iohub_nb_ioapiccfg_ioapic_cfgdec
+//FEATURES_ENABLE
+#define FEATURES_ENABLE__Ioapic_id_ext_en__SHIFT 0x2
+#define FEATURES_ENABLE__Ioapic_sb_feature_en__SHIFT 0x4
+#define FEATURES_ENABLE__Ioapic_secondary_en__SHIFT 0x5
+#define FEATURES_ENABLE__Ioapic_processor_mode__SHIFT 0x8
+#define FEATURES_ENABLE__INTx_LevelOnlyMode__SHIFT 0x9
+#define FEATURES_ENABLE__Ioapic_id_ext_en_MASK 0x00000004L
+#define FEATURES_ENABLE__Ioapic_sb_feature_en_MASK 0x00000010L
+#define FEATURES_ENABLE__Ioapic_secondary_en_MASK 0x00000020L
+#define FEATURES_ENABLE__Ioapic_processor_mode_MASK 0x00000100L
+#define FEATURES_ENABLE__INTx_LevelOnlyMode_MASK 0x00000200L
+
+
+// addressBlock: aid_nbio_nbif0_bif_cfg_dev0_rc_bifcfgdecp
+//BIF_CFG_DEV0_RC_VENDOR_ID
+#define BIF_CFG_DEV0_RC_VENDOR_ID__VENDOR_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_VENDOR_ID__VENDOR_ID_MASK 0xFFFFL
+//BIF_CFG_DEV0_RC_DEVICE_ID
+#define BIF_CFG_DEV0_RC_DEVICE_ID__DEVICE_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_DEVICE_ID__DEVICE_ID_MASK 0xFFFFL
+//BIF_CFG_DEV0_RC_COMMAND
+#define BIF_CFG_DEV0_RC_COMMAND__IOEN_DN__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_COMMAND__MEMEN_DN__SHIFT 0x1
+#define BIF_CFG_DEV0_RC_COMMAND__BUS_MASTER_EN__SHIFT 0x2
+#define BIF_CFG_DEV0_RC_COMMAND__SPECIAL_CYCLE_EN__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_COMMAND__MEM_WRITE_INVALIDATE_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_COMMAND__PAL_SNOOP_EN__SHIFT 0x5
+#define BIF_CFG_DEV0_RC_COMMAND__PARITY_ERROR_RESPONSE__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_COMMAND__AD_STEPPING__SHIFT 0x7
+#define BIF_CFG_DEV0_RC_COMMAND__SERR_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_COMMAND__FAST_B2B_EN__SHIFT 0x9
+#define BIF_CFG_DEV0_RC_COMMAND__INT_DIS__SHIFT 0xa
+#define BIF_CFG_DEV0_RC_COMMAND__IOEN_DN_MASK 0x0001L
+#define BIF_CFG_DEV0_RC_COMMAND__MEMEN_DN_MASK 0x0002L
+#define BIF_CFG_DEV0_RC_COMMAND__BUS_MASTER_EN_MASK 0x0004L
+#define BIF_CFG_DEV0_RC_COMMAND__SPECIAL_CYCLE_EN_MASK 0x0008L
+#define BIF_CFG_DEV0_RC_COMMAND__MEM_WRITE_INVALIDATE_EN_MASK 0x0010L
+#define BIF_CFG_DEV0_RC_COMMAND__PAL_SNOOP_EN_MASK 0x0020L
+#define BIF_CFG_DEV0_RC_COMMAND__PARITY_ERROR_RESPONSE_MASK 0x0040L
+#define BIF_CFG_DEV0_RC_COMMAND__AD_STEPPING_MASK 0x0080L
+#define BIF_CFG_DEV0_RC_COMMAND__SERR_EN_MASK 0x0100L
+#define BIF_CFG_DEV0_RC_COMMAND__FAST_B2B_EN_MASK 0x0200L
+#define BIF_CFG_DEV0_RC_COMMAND__INT_DIS_MASK 0x0400L
+//BIF_CFG_DEV0_RC_STATUS
+#define BIF_CFG_DEV0_RC_STATUS__IMMEDIATE_READINESS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_STATUS__INT_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_STATUS__CAP_LIST__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_STATUS__PCI_66_CAP__SHIFT 0x5
+#define BIF_CFG_DEV0_RC_STATUS__FAST_BACK_CAPABLE__SHIFT 0x7
+#define BIF_CFG_DEV0_RC_STATUS__MASTER_DATA_PARITY_ERROR__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_STATUS__DEVSEL_TIMING__SHIFT 0x9
+#define BIF_CFG_DEV0_RC_STATUS__SIGNAL_TARGET_ABORT__SHIFT 0xb
+#define BIF_CFG_DEV0_RC_STATUS__RECEIVED_TARGET_ABORT__SHIFT 0xc
+#define BIF_CFG_DEV0_RC_STATUS__RECEIVED_MASTER_ABORT__SHIFT 0xd
+#define BIF_CFG_DEV0_RC_STATUS__SIGNALED_SYSTEM_ERROR__SHIFT 0xe
+#define BIF_CFG_DEV0_RC_STATUS__PARITY_ERROR_DETECTED__SHIFT 0xf
+#define BIF_CFG_DEV0_RC_STATUS__IMMEDIATE_READINESS_MASK 0x0001L
+#define BIF_CFG_DEV0_RC_STATUS__INT_STATUS_MASK 0x0008L
+#define BIF_CFG_DEV0_RC_STATUS__CAP_LIST_MASK 0x0010L
+#define BIF_CFG_DEV0_RC_STATUS__PCI_66_CAP_MASK 0x0020L
+#define BIF_CFG_DEV0_RC_STATUS__FAST_BACK_CAPABLE_MASK 0x0080L
+#define BIF_CFG_DEV0_RC_STATUS__MASTER_DATA_PARITY_ERROR_MASK 0x0100L
+#define BIF_CFG_DEV0_RC_STATUS__DEVSEL_TIMING_MASK 0x0600L
+#define BIF_CFG_DEV0_RC_STATUS__SIGNAL_TARGET_ABORT_MASK 0x0800L
+#define BIF_CFG_DEV0_RC_STATUS__RECEIVED_TARGET_ABORT_MASK 0x1000L
+#define BIF_CFG_DEV0_RC_STATUS__RECEIVED_MASTER_ABORT_MASK 0x2000L
+#define BIF_CFG_DEV0_RC_STATUS__SIGNALED_SYSTEM_ERROR_MASK 0x4000L
+#define BIF_CFG_DEV0_RC_STATUS__PARITY_ERROR_DETECTED_MASK 0x8000L
+//BIF_CFG_DEV0_RC_REVISION_ID
+#define BIF_CFG_DEV0_RC_REVISION_ID__MINOR_REV_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_REVISION_ID__MAJOR_REV_ID__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_REVISION_ID__MINOR_REV_ID_MASK 0x0FL
+#define BIF_CFG_DEV0_RC_REVISION_ID__MAJOR_REV_ID_MASK 0xF0L
+//BIF_CFG_DEV0_RC_PROG_INTERFACE
+#define BIF_CFG_DEV0_RC_PROG_INTERFACE__PROG_INTERFACE__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PROG_INTERFACE__PROG_INTERFACE_MASK 0xFFL
+//BIF_CFG_DEV0_RC_SUB_CLASS
+#define BIF_CFG_DEV0_RC_SUB_CLASS__SUB_CLASS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_SUB_CLASS__SUB_CLASS_MASK 0xFFL
+//BIF_CFG_DEV0_RC_BASE_CLASS
+#define BIF_CFG_DEV0_RC_BASE_CLASS__BASE_CLASS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_BASE_CLASS__BASE_CLASS_MASK 0xFFL
+//BIF_CFG_DEV0_RC_CACHE_LINE
+#define BIF_CFG_DEV0_RC_CACHE_LINE__CACHE_LINE_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_CACHE_LINE__CACHE_LINE_SIZE_MASK 0xFFL
+//BIF_CFG_DEV0_RC_LATENCY
+#define BIF_CFG_DEV0_RC_LATENCY__LATENCY_TIMER__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LATENCY__LATENCY_TIMER_MASK 0xFFL
+//BIF_CFG_DEV0_RC_HEADER
+#define BIF_CFG_DEV0_RC_HEADER__HEADER_TYPE__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_HEADER__DEVICE_TYPE__SHIFT 0x7
+#define BIF_CFG_DEV0_RC_HEADER__HEADER_TYPE_MASK 0x7FL
+#define BIF_CFG_DEV0_RC_HEADER__DEVICE_TYPE_MASK 0x80L
+//BIF_CFG_DEV0_RC_BIST
+#define BIF_CFG_DEV0_RC_BIST__BIST_COMP__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_BIST__BIST_STRT__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_BIST__BIST_CAP__SHIFT 0x7
+#define BIF_CFG_DEV0_RC_BIST__BIST_COMP_MASK 0x0FL
+#define BIF_CFG_DEV0_RC_BIST__BIST_STRT_MASK 0x40L
+#define BIF_CFG_DEV0_RC_BIST__BIST_CAP_MASK 0x80L
+//BIF_CFG_DEV0_RC_BASE_ADDR_1
+#define BIF_CFG_DEV0_RC_BASE_ADDR_1__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_BASE_ADDR_1__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_RC_BASE_ADDR_2
+#define BIF_CFG_DEV0_RC_BASE_ADDR_2__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_BASE_ADDR_2__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_RC_SUB_BUS_NUMBER_LATENCY
+#define BIF_CFG_DEV0_RC_SUB_BUS_NUMBER_LATENCY__PRIMARY_BUS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_SUB_BUS_NUMBER_LATENCY__SECONDARY_BUS__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_SUB_BUS_NUMBER_LATENCY__SUB_BUS_NUM__SHIFT 0x10
+#define BIF_CFG_DEV0_RC_SUB_BUS_NUMBER_LATENCY__SECONDARY_LATENCY_TIMER__SHIFT 0x18
+#define BIF_CFG_DEV0_RC_SUB_BUS_NUMBER_LATENCY__PRIMARY_BUS_MASK 0x000000FFL
+#define BIF_CFG_DEV0_RC_SUB_BUS_NUMBER_LATENCY__SECONDARY_BUS_MASK 0x0000FF00L
+#define BIF_CFG_DEV0_RC_SUB_BUS_NUMBER_LATENCY__SUB_BUS_NUM_MASK 0x00FF0000L
+#define BIF_CFG_DEV0_RC_SUB_BUS_NUMBER_LATENCY__SECONDARY_LATENCY_TIMER_MASK 0xFF000000L
+//BIF_CFG_DEV0_RC_IO_BASE_LIMIT
+#define BIF_CFG_DEV0_RC_IO_BASE_LIMIT__IO_BASE_TYPE__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_IO_BASE_LIMIT__IO_BASE__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_IO_BASE_LIMIT__IO_LIMIT_TYPE__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_IO_BASE_LIMIT__IO_LIMIT__SHIFT 0xc
+#define BIF_CFG_DEV0_RC_IO_BASE_LIMIT__IO_BASE_TYPE_MASK 0x000FL
+#define BIF_CFG_DEV0_RC_IO_BASE_LIMIT__IO_BASE_MASK 0x00F0L
+#define BIF_CFG_DEV0_RC_IO_BASE_LIMIT__IO_LIMIT_TYPE_MASK 0x0F00L
+#define BIF_CFG_DEV0_RC_IO_BASE_LIMIT__IO_LIMIT_MASK 0xF000L
+//BIF_CFG_DEV0_RC_SECONDARY_STATUS
+#define BIF_CFG_DEV0_RC_SECONDARY_STATUS__PCI_66_CAP__SHIFT 0x5
+#define BIF_CFG_DEV0_RC_SECONDARY_STATUS__FAST_BACK_CAPABLE__SHIFT 0x7
+#define BIF_CFG_DEV0_RC_SECONDARY_STATUS__MASTER_DATA_PARITY_ERROR__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_SECONDARY_STATUS__DEVSEL_TIMING__SHIFT 0x9
+#define BIF_CFG_DEV0_RC_SECONDARY_STATUS__SIGNAL_TARGET_ABORT__SHIFT 0xb
+#define BIF_CFG_DEV0_RC_SECONDARY_STATUS__RECEIVED_TARGET_ABORT__SHIFT 0xc
+#define BIF_CFG_DEV0_RC_SECONDARY_STATUS__RECEIVED_MASTER_ABORT__SHIFT 0xd
+#define BIF_CFG_DEV0_RC_SECONDARY_STATUS__RECEIVED_SYSTEM_ERROR__SHIFT 0xe
+#define BIF_CFG_DEV0_RC_SECONDARY_STATUS__PARITY_ERROR_DETECTED__SHIFT 0xf
+#define BIF_CFG_DEV0_RC_SECONDARY_STATUS__PCI_66_CAP_MASK 0x0020L
+#define BIF_CFG_DEV0_RC_SECONDARY_STATUS__FAST_BACK_CAPABLE_MASK 0x0080L
+#define BIF_CFG_DEV0_RC_SECONDARY_STATUS__MASTER_DATA_PARITY_ERROR_MASK 0x0100L
+#define BIF_CFG_DEV0_RC_SECONDARY_STATUS__DEVSEL_TIMING_MASK 0x0600L
+#define BIF_CFG_DEV0_RC_SECONDARY_STATUS__SIGNAL_TARGET_ABORT_MASK 0x0800L
+#define BIF_CFG_DEV0_RC_SECONDARY_STATUS__RECEIVED_TARGET_ABORT_MASK 0x1000L
+#define BIF_CFG_DEV0_RC_SECONDARY_STATUS__RECEIVED_MASTER_ABORT_MASK 0x2000L
+#define BIF_CFG_DEV0_RC_SECONDARY_STATUS__RECEIVED_SYSTEM_ERROR_MASK 0x4000L
+#define BIF_CFG_DEV0_RC_SECONDARY_STATUS__PARITY_ERROR_DETECTED_MASK 0x8000L
+//BIF_CFG_DEV0_RC_MEM_BASE_LIMIT
+#define BIF_CFG_DEV0_RC_MEM_BASE_LIMIT__MEM_BASE_TYPE__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_MEM_BASE_LIMIT__MEM_BASE_31_20__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_MEM_BASE_LIMIT__MEM_LIMIT_TYPE__SHIFT 0x10
+#define BIF_CFG_DEV0_RC_MEM_BASE_LIMIT__MEM_LIMIT_31_20__SHIFT 0x14
+#define BIF_CFG_DEV0_RC_MEM_BASE_LIMIT__MEM_BASE_TYPE_MASK 0x0000000FL
+#define BIF_CFG_DEV0_RC_MEM_BASE_LIMIT__MEM_BASE_31_20_MASK 0x0000FFF0L
+#define BIF_CFG_DEV0_RC_MEM_BASE_LIMIT__MEM_LIMIT_TYPE_MASK 0x000F0000L
+#define BIF_CFG_DEV0_RC_MEM_BASE_LIMIT__MEM_LIMIT_31_20_MASK 0xFFF00000L
+//BIF_CFG_DEV0_RC_PREF_BASE_LIMIT
+#define BIF_CFG_DEV0_RC_PREF_BASE_LIMIT__PREF_MEM_BASE_TYPE__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PREF_BASE_LIMIT__PREF_MEM_BASE_31_20__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_PREF_BASE_LIMIT__PREF_MEM_LIMIT_TYPE__SHIFT 0x10
+#define BIF_CFG_DEV0_RC_PREF_BASE_LIMIT__PREF_MEM_LIMIT_31_20__SHIFT 0x14
+#define BIF_CFG_DEV0_RC_PREF_BASE_LIMIT__PREF_MEM_BASE_TYPE_MASK 0x0000000FL
+#define BIF_CFG_DEV0_RC_PREF_BASE_LIMIT__PREF_MEM_BASE_31_20_MASK 0x0000FFF0L
+#define BIF_CFG_DEV0_RC_PREF_BASE_LIMIT__PREF_MEM_LIMIT_TYPE_MASK 0x000F0000L
+#define BIF_CFG_DEV0_RC_PREF_BASE_LIMIT__PREF_MEM_LIMIT_31_20_MASK 0xFFF00000L
+//BIF_CFG_DEV0_RC_PREF_BASE_UPPER
+#define BIF_CFG_DEV0_RC_PREF_BASE_UPPER__PREF_BASE_UPPER__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PREF_BASE_UPPER__PREF_BASE_UPPER_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_RC_PREF_LIMIT_UPPER
+#define BIF_CFG_DEV0_RC_PREF_LIMIT_UPPER__PREF_LIMIT_UPPER__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PREF_LIMIT_UPPER__PREF_LIMIT_UPPER_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_RC_IO_BASE_LIMIT_HI
+#define BIF_CFG_DEV0_RC_IO_BASE_LIMIT_HI__IO_BASE_31_16__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_IO_BASE_LIMIT_HI__IO_LIMIT_31_16__SHIFT 0x10
+#define BIF_CFG_DEV0_RC_IO_BASE_LIMIT_HI__IO_BASE_31_16_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_RC_IO_BASE_LIMIT_HI__IO_LIMIT_31_16_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_RC_CAP_PTR
+#define BIF_CFG_DEV0_RC_CAP_PTR__CAP_PTR__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_CAP_PTR__CAP_PTR_MASK 0xFFL
+//BIF_CFG_DEV0_RC_ROM_BASE_ADDR
+#define BIF_CFG_DEV0_RC_ROM_BASE_ADDR__ROM_ENABLE__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_ROM_BASE_ADDR__ROM_VALIDATION_STATUS__SHIFT 0x1
+#define BIF_CFG_DEV0_RC_ROM_BASE_ADDR__ROM_VALIDATION_DETAILS__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_ROM_BASE_ADDR__BASE_ADDR__SHIFT 0xb
+#define BIF_CFG_DEV0_RC_ROM_BASE_ADDR__ROM_ENABLE_MASK 0x00000001L
+#define BIF_CFG_DEV0_RC_ROM_BASE_ADDR__ROM_VALIDATION_STATUS_MASK 0x0000000EL
+#define BIF_CFG_DEV0_RC_ROM_BASE_ADDR__ROM_VALIDATION_DETAILS_MASK 0x000000F0L
+#define BIF_CFG_DEV0_RC_ROM_BASE_ADDR__BASE_ADDR_MASK 0xFFFFF800L
+//BIF_CFG_DEV0_RC_INTERRUPT_LINE
+#define BIF_CFG_DEV0_RC_INTERRUPT_LINE__INTERRUPT_LINE__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_INTERRUPT_LINE__INTERRUPT_LINE_MASK 0xFFL
+//BIF_CFG_DEV0_RC_INTERRUPT_PIN
+#define BIF_CFG_DEV0_RC_INTERRUPT_PIN__INTERRUPT_PIN__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_INTERRUPT_PIN__INTERRUPT_PIN_MASK 0xFFL
+//IRQ_BRIDGE_CNTL
+#define IRQ_BRIDGE_CNTL__PARITY_RESPONSE_EN__SHIFT 0x0
+#define IRQ_BRIDGE_CNTL__SERR_EN__SHIFT 0x1
+#define IRQ_BRIDGE_CNTL__ISA_EN__SHIFT 0x2
+#define IRQ_BRIDGE_CNTL__VGA_EN__SHIFT 0x3
+#define IRQ_BRIDGE_CNTL__VGA_DEC__SHIFT 0x4
+#define IRQ_BRIDGE_CNTL__MASTER_ABORT_MODE__SHIFT 0x5
+#define IRQ_BRIDGE_CNTL__SECONDARY_BUS_RESET__SHIFT 0x6
+#define IRQ_BRIDGE_CNTL__FAST_B2B_EN__SHIFT 0x7
+#define IRQ_BRIDGE_CNTL__PRIMARY_DISCARD_TIMER__SHIFT 0x8
+#define IRQ_BRIDGE_CNTL__SECONDARY_DISCARD_TIMER__SHIFT 0x9
+#define IRQ_BRIDGE_CNTL__DISCARD_TIMER_STATUS__SHIFT 0xa
+#define IRQ_BRIDGE_CNTL__DISCARD_TIMER_SERR_ENABLE__SHIFT 0xb
+#define IRQ_BRIDGE_CNTL__PARITY_RESPONSE_EN_MASK 0x0001L
+#define IRQ_BRIDGE_CNTL__SERR_EN_MASK 0x0002L
+#define IRQ_BRIDGE_CNTL__ISA_EN_MASK 0x0004L
+#define IRQ_BRIDGE_CNTL__VGA_EN_MASK 0x0008L
+#define IRQ_BRIDGE_CNTL__VGA_DEC_MASK 0x0010L
+#define IRQ_BRIDGE_CNTL__MASTER_ABORT_MODE_MASK 0x0020L
+#define IRQ_BRIDGE_CNTL__SECONDARY_BUS_RESET_MASK 0x0040L
+#define IRQ_BRIDGE_CNTL__FAST_B2B_EN_MASK 0x0080L
+#define IRQ_BRIDGE_CNTL__PRIMARY_DISCARD_TIMER_MASK 0x0100L
+#define IRQ_BRIDGE_CNTL__SECONDARY_DISCARD_TIMER_MASK 0x0200L
+#define IRQ_BRIDGE_CNTL__DISCARD_TIMER_STATUS_MASK 0x0400L
+#define IRQ_BRIDGE_CNTL__DISCARD_TIMER_SERR_ENABLE_MASK 0x0800L
+//BIF_CFG_DEV0_RC_EXT_BRIDGE_CNTL
+#define BIF_CFG_DEV0_RC_EXT_BRIDGE_CNTL__IO_PORT_80_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_EXT_BRIDGE_CNTL__IO_PORT_80_EN_MASK 0x01L
+//BIF_CFG_DEV0_RC_PMI_CAP_LIST
+#define BIF_CFG_DEV0_RC_PMI_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PMI_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_PMI_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_RC_PMI_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_RC_PMI_CAP
+#define BIF_CFG_DEV0_RC_PMI_CAP__VERSION__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PMI_CAP__PME_CLOCK__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_PMI_CAP__IMMEDIATE_READINESS_ON_RETURN_TO_D0__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_PMI_CAP__DEV_SPECIFIC_INIT__SHIFT 0x5
+#define BIF_CFG_DEV0_RC_PMI_CAP__AUX_CURRENT__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_PMI_CAP__D1_SUPPORT__SHIFT 0x9
+#define BIF_CFG_DEV0_RC_PMI_CAP__D2_SUPPORT__SHIFT 0xa
+#define BIF_CFG_DEV0_RC_PMI_CAP__PME_SUPPORT__SHIFT 0xb
+#define BIF_CFG_DEV0_RC_PMI_CAP__VERSION_MASK 0x0007L
+#define BIF_CFG_DEV0_RC_PMI_CAP__PME_CLOCK_MASK 0x0008L
+#define BIF_CFG_DEV0_RC_PMI_CAP__IMMEDIATE_READINESS_ON_RETURN_TO_D0_MASK 0x0010L
+#define BIF_CFG_DEV0_RC_PMI_CAP__DEV_SPECIFIC_INIT_MASK 0x0020L
+#define BIF_CFG_DEV0_RC_PMI_CAP__AUX_CURRENT_MASK 0x01C0L
+#define BIF_CFG_DEV0_RC_PMI_CAP__D1_SUPPORT_MASK 0x0200L
+#define BIF_CFG_DEV0_RC_PMI_CAP__D2_SUPPORT_MASK 0x0400L
+#define BIF_CFG_DEV0_RC_PMI_CAP__PME_SUPPORT_MASK 0xF800L
+//BIF_CFG_DEV0_RC_PMI_STATUS_CNTL
+#define BIF_CFG_DEV0_RC_PMI_STATUS_CNTL__POWER_STATE__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PMI_STATUS_CNTL__NO_SOFT_RESET__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_PMI_STATUS_CNTL__PME_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_PMI_STATUS_CNTL__DATA_SELECT__SHIFT 0x9
+#define BIF_CFG_DEV0_RC_PMI_STATUS_CNTL__DATA_SCALE__SHIFT 0xd
+#define BIF_CFG_DEV0_RC_PMI_STATUS_CNTL__PME_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_RC_PMI_STATUS_CNTL__B2_B3_SUPPORT__SHIFT 0x16
+#define BIF_CFG_DEV0_RC_PMI_STATUS_CNTL__BUS_PWR_EN__SHIFT 0x17
+#define BIF_CFG_DEV0_RC_PMI_STATUS_CNTL__PMI_DATA__SHIFT 0x18
+#define BIF_CFG_DEV0_RC_PMI_STATUS_CNTL__POWER_STATE_MASK 0x00000003L
+#define BIF_CFG_DEV0_RC_PMI_STATUS_CNTL__NO_SOFT_RESET_MASK 0x00000008L
+#define BIF_CFG_DEV0_RC_PMI_STATUS_CNTL__PME_EN_MASK 0x00000100L
+#define BIF_CFG_DEV0_RC_PMI_STATUS_CNTL__DATA_SELECT_MASK 0x00001E00L
+#define BIF_CFG_DEV0_RC_PMI_STATUS_CNTL__DATA_SCALE_MASK 0x00006000L
+#define BIF_CFG_DEV0_RC_PMI_STATUS_CNTL__PME_STATUS_MASK 0x00008000L
+#define BIF_CFG_DEV0_RC_PMI_STATUS_CNTL__B2_B3_SUPPORT_MASK 0x00400000L
+#define BIF_CFG_DEV0_RC_PMI_STATUS_CNTL__BUS_PWR_EN_MASK 0x00800000L
+#define BIF_CFG_DEV0_RC_PMI_STATUS_CNTL__PMI_DATA_MASK 0xFF000000L
+//BIF_CFG_DEV0_RC_PCIE_CAP_LIST
+#define BIF_CFG_DEV0_RC_PCIE_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_PCIE_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_RC_PCIE_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_RC_PCIE_CAP
+#define BIF_CFG_DEV0_RC_PCIE_CAP__VERSION__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_CAP__DEVICE_TYPE__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_PCIE_CAP__SLOT_IMPLEMENTED__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_PCIE_CAP__INT_MESSAGE_NUM__SHIFT 0x9
+#define BIF_CFG_DEV0_RC_PCIE_CAP__VERSION_MASK 0x000FL
+#define BIF_CFG_DEV0_RC_PCIE_CAP__DEVICE_TYPE_MASK 0x00F0L
+#define BIF_CFG_DEV0_RC_PCIE_CAP__SLOT_IMPLEMENTED_MASK 0x0100L
+#define BIF_CFG_DEV0_RC_PCIE_CAP__INT_MESSAGE_NUM_MASK 0x3E00L
+//BIF_CFG_DEV0_RC_DEVICE_CAP
+#define BIF_CFG_DEV0_RC_DEVICE_CAP__MAX_PAYLOAD_SUPPORT__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_DEVICE_CAP__PHANTOM_FUNC__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_DEVICE_CAP__EXTENDED_TAG__SHIFT 0x5
+#define BIF_CFG_DEV0_RC_DEVICE_CAP__L0S_ACCEPTABLE_LATENCY__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_DEVICE_CAP__L1_ACCEPTABLE_LATENCY__SHIFT 0x9
+#define BIF_CFG_DEV0_RC_DEVICE_CAP__ROLE_BASED_ERR_REPORTING__SHIFT 0xf
+#define BIF_CFG_DEV0_RC_DEVICE_CAP__ERR_COR_SUBCLASS_CAPABLE__SHIFT 0x10
+#define BIF_CFG_DEV0_RC_DEVICE_CAP__CAPTURED_SLOT_POWER_LIMIT__SHIFT 0x12
+#define BIF_CFG_DEV0_RC_DEVICE_CAP__CAPTURED_SLOT_POWER_SCALE__SHIFT 0x1a
+#define BIF_CFG_DEV0_RC_DEVICE_CAP__FLR_CAPABLE__SHIFT 0x1c
+#define BIF_CFG_DEV0_RC_DEVICE_CAP__MAX_PAYLOAD_SUPPORT_MASK 0x00000007L
+#define BIF_CFG_DEV0_RC_DEVICE_CAP__PHANTOM_FUNC_MASK 0x00000018L
+#define BIF_CFG_DEV0_RC_DEVICE_CAP__EXTENDED_TAG_MASK 0x00000020L
+#define BIF_CFG_DEV0_RC_DEVICE_CAP__L0S_ACCEPTABLE_LATENCY_MASK 0x000001C0L
+#define BIF_CFG_DEV0_RC_DEVICE_CAP__L1_ACCEPTABLE_LATENCY_MASK 0x00000E00L
+#define BIF_CFG_DEV0_RC_DEVICE_CAP__ROLE_BASED_ERR_REPORTING_MASK 0x00008000L
+#define BIF_CFG_DEV0_RC_DEVICE_CAP__ERR_COR_SUBCLASS_CAPABLE_MASK 0x00010000L
+#define BIF_CFG_DEV0_RC_DEVICE_CAP__CAPTURED_SLOT_POWER_LIMIT_MASK 0x03FC0000L
+#define BIF_CFG_DEV0_RC_DEVICE_CAP__CAPTURED_SLOT_POWER_SCALE_MASK 0x0C000000L
+#define BIF_CFG_DEV0_RC_DEVICE_CAP__FLR_CAPABLE_MASK 0x10000000L
+//BIF_CFG_DEV0_RC_DEVICE_CNTL
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL__CORR_ERR_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL__NON_FATAL_ERR_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL__FATAL_ERR_EN__SHIFT 0x2
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL__USR_REPORT_EN__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL__RELAXED_ORD_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL__MAX_PAYLOAD_SIZE__SHIFT 0x5
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL__EXTENDED_TAG_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL__PHANTOM_FUNC_EN__SHIFT 0x9
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL__AUX_POWER_PM_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL__NO_SNOOP_EN__SHIFT 0xb
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL__MAX_READ_REQUEST_SIZE__SHIFT 0xc
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL__BRIDGE_CFG_RETRY_EN__SHIFT 0xf
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL__CORR_ERR_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL__NON_FATAL_ERR_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL__FATAL_ERR_EN_MASK 0x0004L
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL__USR_REPORT_EN_MASK 0x0008L
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL__RELAXED_ORD_EN_MASK 0x0010L
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL__MAX_PAYLOAD_SIZE_MASK 0x00E0L
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL__EXTENDED_TAG_EN_MASK 0x0100L
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL__PHANTOM_FUNC_EN_MASK 0x0200L
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL__AUX_POWER_PM_EN_MASK 0x0400L
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL__NO_SNOOP_EN_MASK 0x0800L
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL__MAX_READ_REQUEST_SIZE_MASK 0x7000L
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL__BRIDGE_CFG_RETRY_EN_MASK 0x8000L
+//BIF_CFG_DEV0_RC_DEVICE_STATUS
+#define BIF_CFG_DEV0_RC_DEVICE_STATUS__CORR_ERR__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_DEVICE_STATUS__NON_FATAL_ERR__SHIFT 0x1
+#define BIF_CFG_DEV0_RC_DEVICE_STATUS__FATAL_ERR__SHIFT 0x2
+#define BIF_CFG_DEV0_RC_DEVICE_STATUS__USR_DETECTED__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_DEVICE_STATUS__AUX_PWR__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_DEVICE_STATUS__TRANSACTIONS_PEND__SHIFT 0x5
+#define BIF_CFG_DEV0_RC_DEVICE_STATUS__EMER_POWER_REDUCTION_DETECTED__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_DEVICE_STATUS__CORR_ERR_MASK 0x0001L
+#define BIF_CFG_DEV0_RC_DEVICE_STATUS__NON_FATAL_ERR_MASK 0x0002L
+#define BIF_CFG_DEV0_RC_DEVICE_STATUS__FATAL_ERR_MASK 0x0004L
+#define BIF_CFG_DEV0_RC_DEVICE_STATUS__USR_DETECTED_MASK 0x0008L
+#define BIF_CFG_DEV0_RC_DEVICE_STATUS__AUX_PWR_MASK 0x0010L
+#define BIF_CFG_DEV0_RC_DEVICE_STATUS__TRANSACTIONS_PEND_MASK 0x0020L
+#define BIF_CFG_DEV0_RC_DEVICE_STATUS__EMER_POWER_REDUCTION_DETECTED_MASK 0x0040L
+//BIF_CFG_DEV0_RC_LINK_CAP
+#define BIF_CFG_DEV0_RC_LINK_CAP__LINK_SPEED__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LINK_CAP__LINK_WIDTH__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_LINK_CAP__PM_SUPPORT__SHIFT 0xa
+#define BIF_CFG_DEV0_RC_LINK_CAP__L0S_EXIT_LATENCY__SHIFT 0xc
+#define BIF_CFG_DEV0_RC_LINK_CAP__L1_EXIT_LATENCY__SHIFT 0xf
+#define BIF_CFG_DEV0_RC_LINK_CAP__CLOCK_POWER_MANAGEMENT__SHIFT 0x12
+#define BIF_CFG_DEV0_RC_LINK_CAP__SURPRISE_DOWN_ERR_REPORTING__SHIFT 0x13
+#define BIF_CFG_DEV0_RC_LINK_CAP__DL_ACTIVE_REPORTING_CAPABLE__SHIFT 0x14
+#define BIF_CFG_DEV0_RC_LINK_CAP__LINK_BW_NOTIFICATION_CAP__SHIFT 0x15
+#define BIF_CFG_DEV0_RC_LINK_CAP__ASPM_OPTIONALITY_COMPLIANCE__SHIFT 0x16
+#define BIF_CFG_DEV0_RC_LINK_CAP__PORT_NUMBER__SHIFT 0x18
+#define BIF_CFG_DEV0_RC_LINK_CAP__LINK_SPEED_MASK 0x0000000FL
+#define BIF_CFG_DEV0_RC_LINK_CAP__LINK_WIDTH_MASK 0x000003F0L
+#define BIF_CFG_DEV0_RC_LINK_CAP__PM_SUPPORT_MASK 0x00000C00L
+#define BIF_CFG_DEV0_RC_LINK_CAP__L0S_EXIT_LATENCY_MASK 0x00007000L
+#define BIF_CFG_DEV0_RC_LINK_CAP__L1_EXIT_LATENCY_MASK 0x00038000L
+#define BIF_CFG_DEV0_RC_LINK_CAP__CLOCK_POWER_MANAGEMENT_MASK 0x00040000L
+#define BIF_CFG_DEV0_RC_LINK_CAP__SURPRISE_DOWN_ERR_REPORTING_MASK 0x00080000L
+#define BIF_CFG_DEV0_RC_LINK_CAP__DL_ACTIVE_REPORTING_CAPABLE_MASK 0x00100000L
+#define BIF_CFG_DEV0_RC_LINK_CAP__LINK_BW_NOTIFICATION_CAP_MASK 0x00200000L
+#define BIF_CFG_DEV0_RC_LINK_CAP__ASPM_OPTIONALITY_COMPLIANCE_MASK 0x00400000L
+#define BIF_CFG_DEV0_RC_LINK_CAP__PORT_NUMBER_MASK 0xFF000000L
+//BIF_CFG_DEV0_RC_LINK_CNTL
+#define BIF_CFG_DEV0_RC_LINK_CNTL__PM_CONTROL__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LINK_CNTL__PTM_PROP_DELAY_ADAPT_INTER_B__SHIFT 0x2
+#define BIF_CFG_DEV0_RC_LINK_CNTL__READ_CPL_BOUNDARY__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_LINK_CNTL__LINK_DIS__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_LINK_CNTL__RETRAIN_LINK__SHIFT 0x5
+#define BIF_CFG_DEV0_RC_LINK_CNTL__COMMON_CLOCK_CFG__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_LINK_CNTL__EXTENDED_SYNC__SHIFT 0x7
+#define BIF_CFG_DEV0_RC_LINK_CNTL__CLOCK_POWER_MANAGEMENT_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_LINK_CNTL__HW_AUTONOMOUS_WIDTH_DISABLE__SHIFT 0x9
+#define BIF_CFG_DEV0_RC_LINK_CNTL__LINK_BW_MANAGEMENT_INT_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_RC_LINK_CNTL__LINK_AUTONOMOUS_BW_INT_EN__SHIFT 0xb
+#define BIF_CFG_DEV0_RC_LINK_CNTL__DRS_SIGNALING_CONTROL__SHIFT 0xe
+#define BIF_CFG_DEV0_RC_LINK_CNTL__PM_CONTROL_MASK 0x0003L
+#define BIF_CFG_DEV0_RC_LINK_CNTL__PTM_PROP_DELAY_ADAPT_INTER_B_MASK 0x0004L
+#define BIF_CFG_DEV0_RC_LINK_CNTL__READ_CPL_BOUNDARY_MASK 0x0008L
+#define BIF_CFG_DEV0_RC_LINK_CNTL__LINK_DIS_MASK 0x0010L
+#define BIF_CFG_DEV0_RC_LINK_CNTL__RETRAIN_LINK_MASK 0x0020L
+#define BIF_CFG_DEV0_RC_LINK_CNTL__COMMON_CLOCK_CFG_MASK 0x0040L
+#define BIF_CFG_DEV0_RC_LINK_CNTL__EXTENDED_SYNC_MASK 0x0080L
+#define BIF_CFG_DEV0_RC_LINK_CNTL__CLOCK_POWER_MANAGEMENT_EN_MASK 0x0100L
+#define BIF_CFG_DEV0_RC_LINK_CNTL__HW_AUTONOMOUS_WIDTH_DISABLE_MASK 0x0200L
+#define BIF_CFG_DEV0_RC_LINK_CNTL__LINK_BW_MANAGEMENT_INT_EN_MASK 0x0400L
+#define BIF_CFG_DEV0_RC_LINK_CNTL__LINK_AUTONOMOUS_BW_INT_EN_MASK 0x0800L
+#define BIF_CFG_DEV0_RC_LINK_CNTL__DRS_SIGNALING_CONTROL_MASK 0xC000L
+//BIF_CFG_DEV0_RC_LINK_STATUS
+#define BIF_CFG_DEV0_RC_LINK_STATUS__CURRENT_LINK_SPEED__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LINK_STATUS__NEGOTIATED_LINK_WIDTH__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_LINK_STATUS__LINK_TRAINING__SHIFT 0xb
+#define BIF_CFG_DEV0_RC_LINK_STATUS__SLOT_CLOCK_CFG__SHIFT 0xc
+#define BIF_CFG_DEV0_RC_LINK_STATUS__DL_ACTIVE__SHIFT 0xd
+#define BIF_CFG_DEV0_RC_LINK_STATUS__LINK_BW_MANAGEMENT_STATUS__SHIFT 0xe
+#define BIF_CFG_DEV0_RC_LINK_STATUS__LINK_AUTONOMOUS_BW_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_RC_LINK_STATUS__CURRENT_LINK_SPEED_MASK 0x000FL
+#define BIF_CFG_DEV0_RC_LINK_STATUS__NEGOTIATED_LINK_WIDTH_MASK 0x03F0L
+#define BIF_CFG_DEV0_RC_LINK_STATUS__LINK_TRAINING_MASK 0x0800L
+#define BIF_CFG_DEV0_RC_LINK_STATUS__SLOT_CLOCK_CFG_MASK 0x1000L
+#define BIF_CFG_DEV0_RC_LINK_STATUS__DL_ACTIVE_MASK 0x2000L
+#define BIF_CFG_DEV0_RC_LINK_STATUS__LINK_BW_MANAGEMENT_STATUS_MASK 0x4000L
+#define BIF_CFG_DEV0_RC_LINK_STATUS__LINK_AUTONOMOUS_BW_STATUS_MASK 0x8000L
+//BIF_CFG_DEV0_RC_SLOT_CAP
+#define BIF_CFG_DEV0_RC_SLOT_CAP__ATTN_BUTTON_PRESENT__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_SLOT_CAP__PWR_CONTROLLER_PRESENT__SHIFT 0x1
+#define BIF_CFG_DEV0_RC_SLOT_CAP__MRL_SENSOR_PRESENT__SHIFT 0x2
+#define BIF_CFG_DEV0_RC_SLOT_CAP__ATTN_INDICATOR_PRESENT__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_SLOT_CAP__PWR_INDICATOR_PRESENT__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_SLOT_CAP__HOTPLUG_SURPRISE__SHIFT 0x5
+#define BIF_CFG_DEV0_RC_SLOT_CAP__HOTPLUG_CAPABLE__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_SLOT_CAP__SLOT_PWR_LIMIT_VALUE__SHIFT 0x7
+#define BIF_CFG_DEV0_RC_SLOT_CAP__SLOT_PWR_LIMIT_SCALE__SHIFT 0xf
+#define BIF_CFG_DEV0_RC_SLOT_CAP__ELECTROMECH_INTERLOCK_PRESENT__SHIFT 0x11
+#define BIF_CFG_DEV0_RC_SLOT_CAP__NO_COMMAND_COMPLETED_SUPPORTED__SHIFT 0x12
+#define BIF_CFG_DEV0_RC_SLOT_CAP__PHYSICAL_SLOT_NUM__SHIFT 0x13
+#define BIF_CFG_DEV0_RC_SLOT_CAP__ATTN_BUTTON_PRESENT_MASK 0x00000001L
+#define BIF_CFG_DEV0_RC_SLOT_CAP__PWR_CONTROLLER_PRESENT_MASK 0x00000002L
+#define BIF_CFG_DEV0_RC_SLOT_CAP__MRL_SENSOR_PRESENT_MASK 0x00000004L
+#define BIF_CFG_DEV0_RC_SLOT_CAP__ATTN_INDICATOR_PRESENT_MASK 0x00000008L
+#define BIF_CFG_DEV0_RC_SLOT_CAP__PWR_INDICATOR_PRESENT_MASK 0x00000010L
+#define BIF_CFG_DEV0_RC_SLOT_CAP__HOTPLUG_SURPRISE_MASK 0x00000020L
+#define BIF_CFG_DEV0_RC_SLOT_CAP__HOTPLUG_CAPABLE_MASK 0x00000040L
+#define BIF_CFG_DEV0_RC_SLOT_CAP__SLOT_PWR_LIMIT_VALUE_MASK 0x00007F80L
+#define BIF_CFG_DEV0_RC_SLOT_CAP__SLOT_PWR_LIMIT_SCALE_MASK 0x00018000L
+#define BIF_CFG_DEV0_RC_SLOT_CAP__ELECTROMECH_INTERLOCK_PRESENT_MASK 0x00020000L
+#define BIF_CFG_DEV0_RC_SLOT_CAP__NO_COMMAND_COMPLETED_SUPPORTED_MASK 0x00040000L
+#define BIF_CFG_DEV0_RC_SLOT_CAP__PHYSICAL_SLOT_NUM_MASK 0xFFF80000L
+//BIF_CFG_DEV0_RC_SLOT_CNTL
+#define BIF_CFG_DEV0_RC_SLOT_CNTL__ATTN_BUTTON_PRESSED_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_SLOT_CNTL__PWR_FAULT_DETECTED_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_RC_SLOT_CNTL__MRL_SENSOR_CHANGED_EN__SHIFT 0x2
+#define BIF_CFG_DEV0_RC_SLOT_CNTL__PRESENCE_DETECT_CHANGED_EN__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_SLOT_CNTL__COMMAND_COMPLETED_INTR_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_SLOT_CNTL__HOTPLUG_INTR_EN__SHIFT 0x5
+#define BIF_CFG_DEV0_RC_SLOT_CNTL__ATTN_INDICATOR_CNTL__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_SLOT_CNTL__PWR_INDICATOR_CNTL__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_SLOT_CNTL__PWR_CONTROLLER_CNTL__SHIFT 0xa
+#define BIF_CFG_DEV0_RC_SLOT_CNTL__ELECTROMECH_INTERLOCK_CNTL__SHIFT 0xb
+#define BIF_CFG_DEV0_RC_SLOT_CNTL__DL_STATE_CHANGED_EN__SHIFT 0xc
+#define BIF_CFG_DEV0_RC_SLOT_CNTL__AUTO_SLOT_PWR_LIMIT_DISABLE__SHIFT 0xd
+#define BIF_CFG_DEV0_RC_SLOT_CNTL__INBAND_PD_DISABLE__SHIFT 0xe
+#define BIF_CFG_DEV0_RC_SLOT_CNTL__ATTN_BUTTON_PRESSED_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_RC_SLOT_CNTL__PWR_FAULT_DETECTED_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_RC_SLOT_CNTL__MRL_SENSOR_CHANGED_EN_MASK 0x0004L
+#define BIF_CFG_DEV0_RC_SLOT_CNTL__PRESENCE_DETECT_CHANGED_EN_MASK 0x0008L
+#define BIF_CFG_DEV0_RC_SLOT_CNTL__COMMAND_COMPLETED_INTR_EN_MASK 0x0010L
+#define BIF_CFG_DEV0_RC_SLOT_CNTL__HOTPLUG_INTR_EN_MASK 0x0020L
+#define BIF_CFG_DEV0_RC_SLOT_CNTL__ATTN_INDICATOR_CNTL_MASK 0x00C0L
+#define BIF_CFG_DEV0_RC_SLOT_CNTL__PWR_INDICATOR_CNTL_MASK 0x0300L
+#define BIF_CFG_DEV0_RC_SLOT_CNTL__PWR_CONTROLLER_CNTL_MASK 0x0400L
+#define BIF_CFG_DEV0_RC_SLOT_CNTL__ELECTROMECH_INTERLOCK_CNTL_MASK 0x0800L
+#define BIF_CFG_DEV0_RC_SLOT_CNTL__DL_STATE_CHANGED_EN_MASK 0x1000L
+#define BIF_CFG_DEV0_RC_SLOT_CNTL__AUTO_SLOT_PWR_LIMIT_DISABLE_MASK 0x2000L
+#define BIF_CFG_DEV0_RC_SLOT_CNTL__INBAND_PD_DISABLE_MASK 0x4000L
+//BIF_CFG_DEV0_RC_SLOT_STATUS
+#define BIF_CFG_DEV0_RC_SLOT_STATUS__ATTN_BUTTON_PRESSED__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_SLOT_STATUS__PWR_FAULT_DETECTED__SHIFT 0x1
+#define BIF_CFG_DEV0_RC_SLOT_STATUS__MRL_SENSOR_CHANGED__SHIFT 0x2
+#define BIF_CFG_DEV0_RC_SLOT_STATUS__PRESENCE_DETECT_CHANGED__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_SLOT_STATUS__COMMAND_COMPLETED__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_SLOT_STATUS__MRL_SENSOR_STATE__SHIFT 0x5
+#define BIF_CFG_DEV0_RC_SLOT_STATUS__PRESENCE_DETECT_STATE__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_SLOT_STATUS__ELECTROMECH_INTERLOCK_STATUS__SHIFT 0x7
+#define BIF_CFG_DEV0_RC_SLOT_STATUS__DL_STATE_CHANGED__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_SLOT_STATUS__ATTN_BUTTON_PRESSED_MASK 0x0001L
+#define BIF_CFG_DEV0_RC_SLOT_STATUS__PWR_FAULT_DETECTED_MASK 0x0002L
+#define BIF_CFG_DEV0_RC_SLOT_STATUS__MRL_SENSOR_CHANGED_MASK 0x0004L
+#define BIF_CFG_DEV0_RC_SLOT_STATUS__PRESENCE_DETECT_CHANGED_MASK 0x0008L
+#define BIF_CFG_DEV0_RC_SLOT_STATUS__COMMAND_COMPLETED_MASK 0x0010L
+#define BIF_CFG_DEV0_RC_SLOT_STATUS__MRL_SENSOR_STATE_MASK 0x0020L
+#define BIF_CFG_DEV0_RC_SLOT_STATUS__PRESENCE_DETECT_STATE_MASK 0x0040L
+#define BIF_CFG_DEV0_RC_SLOT_STATUS__ELECTROMECH_INTERLOCK_STATUS_MASK 0x0080L
+#define BIF_CFG_DEV0_RC_SLOT_STATUS__DL_STATE_CHANGED_MASK 0x0100L
+//BIF_CFG_DEV0_RC_ROOT_CNTL
+#define BIF_CFG_DEV0_RC_ROOT_CNTL__SERR_ON_CORR_ERR_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_ROOT_CNTL__SERR_ON_NONFATAL_ERR_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_RC_ROOT_CNTL__SERR_ON_FATAL_ERR_EN__SHIFT 0x2
+#define BIF_CFG_DEV0_RC_ROOT_CNTL__PM_INTERRUPT_EN__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_ROOT_CNTL__CRS_SOFTWARE_VISIBILITY_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_ROOT_CNTL__SERR_ON_CORR_ERR_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_RC_ROOT_CNTL__SERR_ON_NONFATAL_ERR_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_RC_ROOT_CNTL__SERR_ON_FATAL_ERR_EN_MASK 0x0004L
+#define BIF_CFG_DEV0_RC_ROOT_CNTL__PM_INTERRUPT_EN_MASK 0x0008L
+#define BIF_CFG_DEV0_RC_ROOT_CNTL__CRS_SOFTWARE_VISIBILITY_EN_MASK 0x0010L
+//BIF_CFG_DEV0_RC_ROOT_CAP
+#define BIF_CFG_DEV0_RC_ROOT_CAP__CRS_SOFTWARE_VISIBILITY__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_ROOT_CAP__CRS_SOFTWARE_VISIBILITY_MASK 0x0001L
+//BIF_CFG_DEV0_RC_ROOT_STATUS
+#define BIF_CFG_DEV0_RC_ROOT_STATUS__PME_REQUESTOR_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_ROOT_STATUS__PME_STATUS__SHIFT 0x10
+#define BIF_CFG_DEV0_RC_ROOT_STATUS__PME_PENDING__SHIFT 0x11
+#define BIF_CFG_DEV0_RC_ROOT_STATUS__PME_REQUESTOR_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_RC_ROOT_STATUS__PME_STATUS_MASK 0x00010000L
+#define BIF_CFG_DEV0_RC_ROOT_STATUS__PME_PENDING_MASK 0x00020000L
+//BIF_CFG_DEV0_RC_DEVICE_CAP2
+#define BIF_CFG_DEV0_RC_DEVICE_CAP2__CPL_TIMEOUT_RANGE_SUPPORTED__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_DEVICE_CAP2__CPL_TIMEOUT_DIS_SUPPORTED__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_DEVICE_CAP2__ARI_FORWARDING_SUPPORTED__SHIFT 0x5
+#define BIF_CFG_DEV0_RC_DEVICE_CAP2__ATOMICOP_ROUTING_SUPPORTED__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_DEVICE_CAP2__ATOMICOP_32CMPLT_SUPPORTED__SHIFT 0x7
+#define BIF_CFG_DEV0_RC_DEVICE_CAP2__ATOMICOP_64CMPLT_SUPPORTED__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_DEVICE_CAP2__CAS128_CMPLT_SUPPORTED__SHIFT 0x9
+#define BIF_CFG_DEV0_RC_DEVICE_CAP2__NO_RO_ENABLED_P2P_PASSING__SHIFT 0xa
+#define BIF_CFG_DEV0_RC_DEVICE_CAP2__LTR_SUPPORTED__SHIFT 0xb
+#define BIF_CFG_DEV0_RC_DEVICE_CAP2__TPH_CPLR_SUPPORTED__SHIFT 0xc
+#define BIF_CFG_DEV0_RC_DEVICE_CAP2__LN_SYSTEM_CLS__SHIFT 0xe
+#define BIF_CFG_DEV0_RC_DEVICE_CAP2__TEN_BIT_TAG_COMPLETER_SUPPORTED__SHIFT 0x10
+#define BIF_CFG_DEV0_RC_DEVICE_CAP2__TEN_BIT_TAG_REQUESTER_SUPPORTED__SHIFT 0x11
+#define BIF_CFG_DEV0_RC_DEVICE_CAP2__OBFF_SUPPORTED__SHIFT 0x12
+#define BIF_CFG_DEV0_RC_DEVICE_CAP2__EXTENDED_FMT_FIELD_SUPPORTED__SHIFT 0x14
+#define BIF_CFG_DEV0_RC_DEVICE_CAP2__END_END_TLP_PREFIX_SUPPORTED__SHIFT 0x15
+#define BIF_CFG_DEV0_RC_DEVICE_CAP2__MAX_END_END_TLP_PREFIXES__SHIFT 0x16
+#define BIF_CFG_DEV0_RC_DEVICE_CAP2__EMER_POWER_REDUCTION_SUPPORTED__SHIFT 0x18
+#define BIF_CFG_DEV0_RC_DEVICE_CAP2__EMER_POWER_REDUCTION_INIT_REQ__SHIFT 0x1a
+#define BIF_CFG_DEV0_RC_DEVICE_CAP2__FRS_SUPPORTED__SHIFT 0x1f
+#define BIF_CFG_DEV0_RC_DEVICE_CAP2__CPL_TIMEOUT_RANGE_SUPPORTED_MASK 0x0000000FL
+#define BIF_CFG_DEV0_RC_DEVICE_CAP2__CPL_TIMEOUT_DIS_SUPPORTED_MASK 0x00000010L
+#define BIF_CFG_DEV0_RC_DEVICE_CAP2__ARI_FORWARDING_SUPPORTED_MASK 0x00000020L
+#define BIF_CFG_DEV0_RC_DEVICE_CAP2__ATOMICOP_ROUTING_SUPPORTED_MASK 0x00000040L
+#define BIF_CFG_DEV0_RC_DEVICE_CAP2__ATOMICOP_32CMPLT_SUPPORTED_MASK 0x00000080L
+#define BIF_CFG_DEV0_RC_DEVICE_CAP2__ATOMICOP_64CMPLT_SUPPORTED_MASK 0x00000100L
+#define BIF_CFG_DEV0_RC_DEVICE_CAP2__CAS128_CMPLT_SUPPORTED_MASK 0x00000200L
+#define BIF_CFG_DEV0_RC_DEVICE_CAP2__NO_RO_ENABLED_P2P_PASSING_MASK 0x00000400L
+#define BIF_CFG_DEV0_RC_DEVICE_CAP2__LTR_SUPPORTED_MASK 0x00000800L
+#define BIF_CFG_DEV0_RC_DEVICE_CAP2__TPH_CPLR_SUPPORTED_MASK 0x00003000L
+#define BIF_CFG_DEV0_RC_DEVICE_CAP2__LN_SYSTEM_CLS_MASK 0x0000C000L
+#define BIF_CFG_DEV0_RC_DEVICE_CAP2__TEN_BIT_TAG_COMPLETER_SUPPORTED_MASK 0x00010000L
+#define BIF_CFG_DEV0_RC_DEVICE_CAP2__TEN_BIT_TAG_REQUESTER_SUPPORTED_MASK 0x00020000L
+#define BIF_CFG_DEV0_RC_DEVICE_CAP2__OBFF_SUPPORTED_MASK 0x000C0000L
+#define BIF_CFG_DEV0_RC_DEVICE_CAP2__EXTENDED_FMT_FIELD_SUPPORTED_MASK 0x00100000L
+#define BIF_CFG_DEV0_RC_DEVICE_CAP2__END_END_TLP_PREFIX_SUPPORTED_MASK 0x00200000L
+#define BIF_CFG_DEV0_RC_DEVICE_CAP2__MAX_END_END_TLP_PREFIXES_MASK 0x00C00000L
+#define BIF_CFG_DEV0_RC_DEVICE_CAP2__EMER_POWER_REDUCTION_SUPPORTED_MASK 0x03000000L
+#define BIF_CFG_DEV0_RC_DEVICE_CAP2__EMER_POWER_REDUCTION_INIT_REQ_MASK 0x04000000L
+#define BIF_CFG_DEV0_RC_DEVICE_CAP2__FRS_SUPPORTED_MASK 0x80000000L
+//BIF_CFG_DEV0_RC_DEVICE_CNTL2
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL2__CPL_TIMEOUT_VALUE__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL2__CPL_TIMEOUT_DIS__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL2__ARI_FORWARDING_EN__SHIFT 0x5
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL2__ATOMICOP_REQUEST_EN__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL2__ATOMICOP_EGRESS_BLOCKING__SHIFT 0x7
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL2__IDO_REQUEST_ENABLE__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL2__IDO_COMPLETION_ENABLE__SHIFT 0x9
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL2__LTR_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL2__EMER_POWER_REDUCTION_REQUEST__SHIFT 0xb
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL2__TEN_BIT_TAG_REQUESTER_ENABLE__SHIFT 0xc
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL2__OBFF_EN__SHIFT 0xd
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL2__END_END_TLP_PREFIX_BLOCKING__SHIFT 0xf
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL2__CPL_TIMEOUT_VALUE_MASK 0x000FL
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL2__CPL_TIMEOUT_DIS_MASK 0x0010L
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL2__ARI_FORWARDING_EN_MASK 0x0020L
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL2__ATOMICOP_REQUEST_EN_MASK 0x0040L
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL2__ATOMICOP_EGRESS_BLOCKING_MASK 0x0080L
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL2__IDO_REQUEST_ENABLE_MASK 0x0100L
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL2__IDO_COMPLETION_ENABLE_MASK 0x0200L
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL2__LTR_EN_MASK 0x0400L
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL2__EMER_POWER_REDUCTION_REQUEST_MASK 0x0800L
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL2__TEN_BIT_TAG_REQUESTER_ENABLE_MASK 0x1000L
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL2__OBFF_EN_MASK 0x6000L
+#define BIF_CFG_DEV0_RC_DEVICE_CNTL2__END_END_TLP_PREFIX_BLOCKING_MASK 0x8000L
+//BIF_CFG_DEV0_RC_DEVICE_STATUS2
+#define BIF_CFG_DEV0_RC_DEVICE_STATUS2__RESERVED__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_DEVICE_STATUS2__RESERVED_MASK 0xFFFFL
+//BIF_CFG_DEV0_RC_LINK_CAP2
+#define BIF_CFG_DEV0_RC_LINK_CAP2__SUPPORTED_LINK_SPEED__SHIFT 0x1
+#define BIF_CFG_DEV0_RC_LINK_CAP2__CROSSLINK_SUPPORTED__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_LINK_CAP2__LOWER_SKP_OS_GEN_SUPPORT__SHIFT 0x9
+#define BIF_CFG_DEV0_RC_LINK_CAP2__LOWER_SKP_OS_RCV_SUPPORT__SHIFT 0x10
+#define BIF_CFG_DEV0_RC_LINK_CAP2__RTM1_PRESENCE_DET_SUPPORT__SHIFT 0x17
+#define BIF_CFG_DEV0_RC_LINK_CAP2__RTM2_PRESENCE_DET_SUPPORT__SHIFT 0x18
+#define BIF_CFG_DEV0_RC_LINK_CAP2__DRS_SUPPORTED__SHIFT 0x1f
+#define BIF_CFG_DEV0_RC_LINK_CAP2__SUPPORTED_LINK_SPEED_MASK 0x000000FEL
+#define BIF_CFG_DEV0_RC_LINK_CAP2__CROSSLINK_SUPPORTED_MASK 0x00000100L
+#define BIF_CFG_DEV0_RC_LINK_CAP2__LOWER_SKP_OS_GEN_SUPPORT_MASK 0x0000FE00L
+#define BIF_CFG_DEV0_RC_LINK_CAP2__LOWER_SKP_OS_RCV_SUPPORT_MASK 0x007F0000L
+#define BIF_CFG_DEV0_RC_LINK_CAP2__RTM1_PRESENCE_DET_SUPPORT_MASK 0x00800000L
+#define BIF_CFG_DEV0_RC_LINK_CAP2__RTM2_PRESENCE_DET_SUPPORT_MASK 0x01000000L
+#define BIF_CFG_DEV0_RC_LINK_CAP2__DRS_SUPPORTED_MASK 0x80000000L
+//BIF_CFG_DEV0_RC_LINK_CNTL2
+#define BIF_CFG_DEV0_RC_LINK_CNTL2__TARGET_LINK_SPEED__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LINK_CNTL2__ENTER_COMPLIANCE__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_LINK_CNTL2__HW_AUTONOMOUS_SPEED_DISABLE__SHIFT 0x5
+#define BIF_CFG_DEV0_RC_LINK_CNTL2__SELECTABLE_DEEMPHASIS__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_LINK_CNTL2__XMIT_MARGIN__SHIFT 0x7
+#define BIF_CFG_DEV0_RC_LINK_CNTL2__ENTER_MOD_COMPLIANCE__SHIFT 0xa
+#define BIF_CFG_DEV0_RC_LINK_CNTL2__COMPLIANCE_SOS__SHIFT 0xb
+#define BIF_CFG_DEV0_RC_LINK_CNTL2__COMPLIANCE_DEEMPHASIS__SHIFT 0xc
+#define BIF_CFG_DEV0_RC_LINK_CNTL2__TARGET_LINK_SPEED_MASK 0x000FL
+#define BIF_CFG_DEV0_RC_LINK_CNTL2__ENTER_COMPLIANCE_MASK 0x0010L
+#define BIF_CFG_DEV0_RC_LINK_CNTL2__HW_AUTONOMOUS_SPEED_DISABLE_MASK 0x0020L
+#define BIF_CFG_DEV0_RC_LINK_CNTL2__SELECTABLE_DEEMPHASIS_MASK 0x0040L
+#define BIF_CFG_DEV0_RC_LINK_CNTL2__XMIT_MARGIN_MASK 0x0380L
+#define BIF_CFG_DEV0_RC_LINK_CNTL2__ENTER_MOD_COMPLIANCE_MASK 0x0400L
+#define BIF_CFG_DEV0_RC_LINK_CNTL2__COMPLIANCE_SOS_MASK 0x0800L
+#define BIF_CFG_DEV0_RC_LINK_CNTL2__COMPLIANCE_DEEMPHASIS_MASK 0xF000L
+//BIF_CFG_DEV0_RC_LINK_STATUS2
+#define BIF_CFG_DEV0_RC_LINK_STATUS2__CUR_DEEMPHASIS_LEVEL__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LINK_STATUS2__EQUALIZATION_COMPLETE_8GT__SHIFT 0x1
+#define BIF_CFG_DEV0_RC_LINK_STATUS2__EQUALIZATION_PHASE1_SUCCESS_8GT__SHIFT 0x2
+#define BIF_CFG_DEV0_RC_LINK_STATUS2__EQUALIZATION_PHASE2_SUCCESS_8GT__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_LINK_STATUS2__EQUALIZATION_PHASE3_SUCCESS_8GT__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_LINK_STATUS2__LINK_EQUALIZATION_REQUEST_8GT__SHIFT 0x5
+#define BIF_CFG_DEV0_RC_LINK_STATUS2__RTM1_PRESENCE_DET__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_LINK_STATUS2__RTM2_PRESENCE_DET__SHIFT 0x7
+#define BIF_CFG_DEV0_RC_LINK_STATUS2__CROSSLINK_RESOLUTION__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_LINK_STATUS2__DOWNSTREAM_COMPONENT_PRESENCE__SHIFT 0xc
+#define BIF_CFG_DEV0_RC_LINK_STATUS2__DRS_MESSAGE_RECEIVED__SHIFT 0xf
+#define BIF_CFG_DEV0_RC_LINK_STATUS2__CUR_DEEMPHASIS_LEVEL_MASK 0x0001L
+#define BIF_CFG_DEV0_RC_LINK_STATUS2__EQUALIZATION_COMPLETE_8GT_MASK 0x0002L
+#define BIF_CFG_DEV0_RC_LINK_STATUS2__EQUALIZATION_PHASE1_SUCCESS_8GT_MASK 0x0004L
+#define BIF_CFG_DEV0_RC_LINK_STATUS2__EQUALIZATION_PHASE2_SUCCESS_8GT_MASK 0x0008L
+#define BIF_CFG_DEV0_RC_LINK_STATUS2__EQUALIZATION_PHASE3_SUCCESS_8GT_MASK 0x0010L
+#define BIF_CFG_DEV0_RC_LINK_STATUS2__LINK_EQUALIZATION_REQUEST_8GT_MASK 0x0020L
+#define BIF_CFG_DEV0_RC_LINK_STATUS2__RTM1_PRESENCE_DET_MASK 0x0040L
+#define BIF_CFG_DEV0_RC_LINK_STATUS2__RTM2_PRESENCE_DET_MASK 0x0080L
+#define BIF_CFG_DEV0_RC_LINK_STATUS2__CROSSLINK_RESOLUTION_MASK 0x0300L
+#define BIF_CFG_DEV0_RC_LINK_STATUS2__DOWNSTREAM_COMPONENT_PRESENCE_MASK 0x7000L
+#define BIF_CFG_DEV0_RC_LINK_STATUS2__DRS_MESSAGE_RECEIVED_MASK 0x8000L
+//BIF_CFG_DEV0_RC_SLOT_CAP2
+#define BIF_CFG_DEV0_RC_SLOT_CAP2__INBAND_PD_DISABLE_SUPPORTED__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_SLOT_CAP2__INBAND_PD_DISABLE_SUPPORTED_MASK 0x00000001L
+//BIF_CFG_DEV0_RC_SLOT_CNTL2
+#define BIF_CFG_DEV0_RC_SLOT_CNTL2__RESERVED__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_SLOT_CNTL2__RESERVED_MASK 0xFFFFL
+//BIF_CFG_DEV0_RC_SLOT_STATUS2
+#define BIF_CFG_DEV0_RC_SLOT_STATUS2__RESERVED__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_SLOT_STATUS2__RESERVED_MASK 0xFFFFL
+//BIF_CFG_DEV0_RC_MSI_CAP_LIST
+#define BIF_CFG_DEV0_RC_MSI_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_MSI_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_MSI_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_RC_MSI_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_RC_MSI_MSG_CNTL
+#define BIF_CFG_DEV0_RC_MSI_MSG_CNTL__MSI_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_MSI_MSG_CNTL__MSI_MULTI_CAP__SHIFT 0x1
+#define BIF_CFG_DEV0_RC_MSI_MSG_CNTL__MSI_MULTI_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_MSI_MSG_CNTL__MSI_64BIT__SHIFT 0x7
+#define BIF_CFG_DEV0_RC_MSI_MSG_CNTL__MSI_PERVECTOR_MASKING_CAP__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_CAP__SHIFT 0x9
+#define BIF_CFG_DEV0_RC_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_RC_MSI_MSG_CNTL__MSI_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_RC_MSI_MSG_CNTL__MSI_MULTI_CAP_MASK 0x000EL
+#define BIF_CFG_DEV0_RC_MSI_MSG_CNTL__MSI_MULTI_EN_MASK 0x0070L
+#define BIF_CFG_DEV0_RC_MSI_MSG_CNTL__MSI_64BIT_MASK 0x0080L
+#define BIF_CFG_DEV0_RC_MSI_MSG_CNTL__MSI_PERVECTOR_MASKING_CAP_MASK 0x0100L
+#define BIF_CFG_DEV0_RC_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_CAP_MASK 0x0200L
+#define BIF_CFG_DEV0_RC_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_EN_MASK 0x0400L
+//BIF_CFG_DEV0_RC_MSI_MSG_ADDR_LO
+#define BIF_CFG_DEV0_RC_MSI_MSG_ADDR_LO__MSI_MSG_ADDR_LO__SHIFT 0x2
+#define BIF_CFG_DEV0_RC_MSI_MSG_ADDR_LO__MSI_MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//BIF_CFG_DEV0_RC_MSI_MSG_ADDR_HI
+#define BIF_CFG_DEV0_RC_MSI_MSG_ADDR_HI__MSI_MSG_ADDR_HI__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_MSI_MSG_ADDR_HI__MSI_MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_RC_MSI_MSG_DATA
+#define BIF_CFG_DEV0_RC_MSI_MSG_DATA__MSI_DATA__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_MSI_MSG_DATA__MSI_DATA_MASK 0xFFFFL
+//BIF_CFG_DEV0_RC_MSI_EXT_MSG_DATA
+#define BIF_CFG_DEV0_RC_MSI_EXT_MSG_DATA__MSI_EXT_DATA__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_MSI_EXT_MSG_DATA__MSI_EXT_DATA_MASK 0xFFFFL
+//BIF_CFG_DEV0_RC_MSI_MSG_DATA_64
+#define BIF_CFG_DEV0_RC_MSI_MSG_DATA_64__MSI_DATA_64__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_MSI_MSG_DATA_64__MSI_DATA_64_MASK 0xFFFFL
+//BIF_CFG_DEV0_RC_MSI_EXT_MSG_DATA_64
+#define BIF_CFG_DEV0_RC_MSI_EXT_MSG_DATA_64__MSI_EXT_DATA_64__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_MSI_EXT_MSG_DATA_64__MSI_EXT_DATA_64_MASK 0xFFFFL
+//BIF_CFG_DEV0_RC_SSID_CAP_LIST
+#define BIF_CFG_DEV0_RC_SSID_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_SSID_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_SSID_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_RC_SSID_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_RC_SSID_CAP
+#define BIF_CFG_DEV0_RC_SSID_CAP__SUBSYSTEM_VENDOR_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_SSID_CAP__SUBSYSTEM_ID__SHIFT 0x10
+#define BIF_CFG_DEV0_RC_SSID_CAP__SUBSYSTEM_VENDOR_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_RC_SSID_CAP__SUBSYSTEM_ID_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_RC_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST
+#define BIF_CFG_DEV0_RC_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_RC_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_RC_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_RC_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_RC_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_RC_PCIE_VENDOR_SPECIFIC_HDR
+#define BIF_CFG_DEV0_RC_PCIE_VENDOR_SPECIFIC_HDR__VSEC_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_VENDOR_SPECIFIC_HDR__VSEC_REV__SHIFT 0x10
+#define BIF_CFG_DEV0_RC_PCIE_VENDOR_SPECIFIC_HDR__VSEC_LENGTH__SHIFT 0x14
+#define BIF_CFG_DEV0_RC_PCIE_VENDOR_SPECIFIC_HDR__VSEC_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_RC_PCIE_VENDOR_SPECIFIC_HDR__VSEC_REV_MASK 0x000F0000L
+#define BIF_CFG_DEV0_RC_PCIE_VENDOR_SPECIFIC_HDR__VSEC_LENGTH_MASK 0xFFF00000L
+//BIF_CFG_DEV0_RC_PCIE_VENDOR_SPECIFIC1
+#define BIF_CFG_DEV0_RC_PCIE_VENDOR_SPECIFIC1__SCRATCH__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_VENDOR_SPECIFIC1__SCRATCH_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_RC_PCIE_VENDOR_SPECIFIC2
+#define BIF_CFG_DEV0_RC_PCIE_VENDOR_SPECIFIC2__SCRATCH__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_VENDOR_SPECIFIC2__SCRATCH_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_RC_PCIE_VC_ENH_CAP_LIST
+#define BIF_CFG_DEV0_RC_PCIE_VC_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_VC_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_RC_PCIE_VC_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_RC_PCIE_VC_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_RC_PCIE_VC_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_RC_PCIE_VC_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_RC_PCIE_PORT_VC_CAP_REG1
+#define BIF_CFG_DEV0_RC_PCIE_PORT_VC_CAP_REG1__EXT_VC_COUNT__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_PORT_VC_CAP_REG1__LOW_PRIORITY_EXT_VC_COUNT__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_PCIE_PORT_VC_CAP_REG1__REF_CLK__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_PCIE_PORT_VC_CAP_REG1__PORT_ARB_TABLE_ENTRY_SIZE__SHIFT 0xa
+#define BIF_CFG_DEV0_RC_PCIE_PORT_VC_CAP_REG1__EXT_VC_COUNT_MASK 0x00000007L
+#define BIF_CFG_DEV0_RC_PCIE_PORT_VC_CAP_REG1__LOW_PRIORITY_EXT_VC_COUNT_MASK 0x00000070L
+#define BIF_CFG_DEV0_RC_PCIE_PORT_VC_CAP_REG1__REF_CLK_MASK 0x00000300L
+#define BIF_CFG_DEV0_RC_PCIE_PORT_VC_CAP_REG1__PORT_ARB_TABLE_ENTRY_SIZE_MASK 0x00000C00L
+//BIF_CFG_DEV0_RC_PCIE_PORT_VC_CAP_REG2
+#define BIF_CFG_DEV0_RC_PCIE_PORT_VC_CAP_REG2__VC_ARB_CAP__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_PORT_VC_CAP_REG2__VC_ARB_TABLE_OFFSET__SHIFT 0x18
+#define BIF_CFG_DEV0_RC_PCIE_PORT_VC_CAP_REG2__VC_ARB_CAP_MASK 0x000000FFL
+#define BIF_CFG_DEV0_RC_PCIE_PORT_VC_CAP_REG2__VC_ARB_TABLE_OFFSET_MASK 0xFF000000L
+//BIF_CFG_DEV0_RC_PCIE_PORT_VC_CNTL
+#define BIF_CFG_DEV0_RC_PCIE_PORT_VC_CNTL__LOAD_VC_ARB_TABLE__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_PORT_VC_CNTL__VC_ARB_SELECT__SHIFT 0x1
+#define BIF_CFG_DEV0_RC_PCIE_PORT_VC_CNTL__LOAD_VC_ARB_TABLE_MASK 0x0001L
+#define BIF_CFG_DEV0_RC_PCIE_PORT_VC_CNTL__VC_ARB_SELECT_MASK 0x000EL
+//BIF_CFG_DEV0_RC_PCIE_PORT_VC_STATUS
+#define BIF_CFG_DEV0_RC_PCIE_PORT_VC_STATUS__VC_ARB_TABLE_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_PORT_VC_STATUS__VC_ARB_TABLE_STATUS_MASK 0x0001L
+//BIF_CFG_DEV0_RC_PCIE_VC0_RESOURCE_CAP
+#define BIF_CFG_DEV0_RC_PCIE_VC0_RESOURCE_CAP__PORT_ARB_CAP__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_VC0_RESOURCE_CAP__REJECT_SNOOP_TRANS__SHIFT 0xf
+#define BIF_CFG_DEV0_RC_PCIE_VC0_RESOURCE_CAP__MAX_TIME_SLOTS__SHIFT 0x10
+#define BIF_CFG_DEV0_RC_PCIE_VC0_RESOURCE_CAP__PORT_ARB_TABLE_OFFSET__SHIFT 0x18
+#define BIF_CFG_DEV0_RC_PCIE_VC0_RESOURCE_CAP__PORT_ARB_CAP_MASK 0x000000FFL
+#define BIF_CFG_DEV0_RC_PCIE_VC0_RESOURCE_CAP__REJECT_SNOOP_TRANS_MASK 0x00008000L
+#define BIF_CFG_DEV0_RC_PCIE_VC0_RESOURCE_CAP__MAX_TIME_SLOTS_MASK 0x007F0000L
+#define BIF_CFG_DEV0_RC_PCIE_VC0_RESOURCE_CAP__PORT_ARB_TABLE_OFFSET_MASK 0xFF000000L
+//BIF_CFG_DEV0_RC_PCIE_VC0_RESOURCE_CNTL
+#define BIF_CFG_DEV0_RC_PCIE_VC0_RESOURCE_CNTL__TC_VC_MAP_TC0__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_VC0_RESOURCE_CNTL__TC_VC_MAP_TC1_7__SHIFT 0x1
+#define BIF_CFG_DEV0_RC_PCIE_VC0_RESOURCE_CNTL__LOAD_PORT_ARB_TABLE__SHIFT 0x10
+#define BIF_CFG_DEV0_RC_PCIE_VC0_RESOURCE_CNTL__PORT_ARB_SELECT__SHIFT 0x11
+#define BIF_CFG_DEV0_RC_PCIE_VC0_RESOURCE_CNTL__VC_ID__SHIFT 0x18
+#define BIF_CFG_DEV0_RC_PCIE_VC0_RESOURCE_CNTL__VC_ENABLE__SHIFT 0x1f
+#define BIF_CFG_DEV0_RC_PCIE_VC0_RESOURCE_CNTL__TC_VC_MAP_TC0_MASK 0x00000001L
+#define BIF_CFG_DEV0_RC_PCIE_VC0_RESOURCE_CNTL__TC_VC_MAP_TC1_7_MASK 0x000000FEL
+#define BIF_CFG_DEV0_RC_PCIE_VC0_RESOURCE_CNTL__LOAD_PORT_ARB_TABLE_MASK 0x00010000L
+#define BIF_CFG_DEV0_RC_PCIE_VC0_RESOURCE_CNTL__PORT_ARB_SELECT_MASK 0x000E0000L
+#define BIF_CFG_DEV0_RC_PCIE_VC0_RESOURCE_CNTL__VC_ID_MASK 0x07000000L
+#define BIF_CFG_DEV0_RC_PCIE_VC0_RESOURCE_CNTL__VC_ENABLE_MASK 0x80000000L
+//BIF_CFG_DEV0_RC_PCIE_VC0_RESOURCE_STATUS
+#define BIF_CFG_DEV0_RC_PCIE_VC0_RESOURCE_STATUS__PORT_ARB_TABLE_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_VC0_RESOURCE_STATUS__VC_NEGOTIATION_PENDING__SHIFT 0x1
+#define BIF_CFG_DEV0_RC_PCIE_VC0_RESOURCE_STATUS__PORT_ARB_TABLE_STATUS_MASK 0x0001L
+#define BIF_CFG_DEV0_RC_PCIE_VC0_RESOURCE_STATUS__VC_NEGOTIATION_PENDING_MASK 0x0002L
+//BIF_CFG_DEV0_RC_PCIE_VC1_RESOURCE_CAP
+#define BIF_CFG_DEV0_RC_PCIE_VC1_RESOURCE_CAP__PORT_ARB_CAP__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_VC1_RESOURCE_CAP__REJECT_SNOOP_TRANS__SHIFT 0xf
+#define BIF_CFG_DEV0_RC_PCIE_VC1_RESOURCE_CAP__MAX_TIME_SLOTS__SHIFT 0x10
+#define BIF_CFG_DEV0_RC_PCIE_VC1_RESOURCE_CAP__PORT_ARB_TABLE_OFFSET__SHIFT 0x18
+#define BIF_CFG_DEV0_RC_PCIE_VC1_RESOURCE_CAP__PORT_ARB_CAP_MASK 0x000000FFL
+#define BIF_CFG_DEV0_RC_PCIE_VC1_RESOURCE_CAP__REJECT_SNOOP_TRANS_MASK 0x00008000L
+#define BIF_CFG_DEV0_RC_PCIE_VC1_RESOURCE_CAP__MAX_TIME_SLOTS_MASK 0x003F0000L
+#define BIF_CFG_DEV0_RC_PCIE_VC1_RESOURCE_CAP__PORT_ARB_TABLE_OFFSET_MASK 0xFF000000L
+//BIF_CFG_DEV0_RC_PCIE_VC1_RESOURCE_CNTL
+#define BIF_CFG_DEV0_RC_PCIE_VC1_RESOURCE_CNTL__TC_VC_MAP_TC0__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_VC1_RESOURCE_CNTL__TC_VC_MAP_TC1_7__SHIFT 0x1
+#define BIF_CFG_DEV0_RC_PCIE_VC1_RESOURCE_CNTL__LOAD_PORT_ARB_TABLE__SHIFT 0x10
+#define BIF_CFG_DEV0_RC_PCIE_VC1_RESOURCE_CNTL__PORT_ARB_SELECT__SHIFT 0x11
+#define BIF_CFG_DEV0_RC_PCIE_VC1_RESOURCE_CNTL__VC_ID__SHIFT 0x18
+#define BIF_CFG_DEV0_RC_PCIE_VC1_RESOURCE_CNTL__VC_ENABLE__SHIFT 0x1f
+#define BIF_CFG_DEV0_RC_PCIE_VC1_RESOURCE_CNTL__TC_VC_MAP_TC0_MASK 0x00000001L
+#define BIF_CFG_DEV0_RC_PCIE_VC1_RESOURCE_CNTL__TC_VC_MAP_TC1_7_MASK 0x000000FEL
+#define BIF_CFG_DEV0_RC_PCIE_VC1_RESOURCE_CNTL__LOAD_PORT_ARB_TABLE_MASK 0x00010000L
+#define BIF_CFG_DEV0_RC_PCIE_VC1_RESOURCE_CNTL__PORT_ARB_SELECT_MASK 0x000E0000L
+#define BIF_CFG_DEV0_RC_PCIE_VC1_RESOURCE_CNTL__VC_ID_MASK 0x07000000L
+#define BIF_CFG_DEV0_RC_PCIE_VC1_RESOURCE_CNTL__VC_ENABLE_MASK 0x80000000L
+//BIF_CFG_DEV0_RC_PCIE_VC1_RESOURCE_STATUS
+#define BIF_CFG_DEV0_RC_PCIE_VC1_RESOURCE_STATUS__PORT_ARB_TABLE_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_VC1_RESOURCE_STATUS__VC_NEGOTIATION_PENDING__SHIFT 0x1
+#define BIF_CFG_DEV0_RC_PCIE_VC1_RESOURCE_STATUS__PORT_ARB_TABLE_STATUS_MASK 0x0001L
+#define BIF_CFG_DEV0_RC_PCIE_VC1_RESOURCE_STATUS__VC_NEGOTIATION_PENDING_MASK 0x0002L
+//BIF_CFG_DEV0_RC_PCIE_DEV_SERIAL_NUM_ENH_CAP_LIST
+#define BIF_CFG_DEV0_RC_PCIE_DEV_SERIAL_NUM_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_DEV_SERIAL_NUM_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_RC_PCIE_DEV_SERIAL_NUM_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_RC_PCIE_DEV_SERIAL_NUM_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_RC_PCIE_DEV_SERIAL_NUM_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_RC_PCIE_DEV_SERIAL_NUM_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_RC_PCIE_DEV_SERIAL_NUM_DW1
+#define BIF_CFG_DEV0_RC_PCIE_DEV_SERIAL_NUM_DW1__SERIAL_NUMBER_LO__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_DEV_SERIAL_NUM_DW1__SERIAL_NUMBER_LO_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_RC_PCIE_DEV_SERIAL_NUM_DW2
+#define BIF_CFG_DEV0_RC_PCIE_DEV_SERIAL_NUM_DW2__SERIAL_NUMBER_HI__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_DEV_SERIAL_NUM_DW2__SERIAL_NUMBER_HI_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_RC_PCIE_ADV_ERR_RPT_ENH_CAP_LIST
+#define BIF_CFG_DEV0_RC_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_RC_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_RC_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_RC_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_RC_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_STATUS
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_STATUS__DLP_ERR_STATUS__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_STATUS__SURPDN_ERR_STATUS__SHIFT 0x5
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_STATUS__PSN_ERR_STATUS__SHIFT 0xc
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_STATUS__FC_ERR_STATUS__SHIFT 0xd
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_STATUS__CPL_TIMEOUT_STATUS__SHIFT 0xe
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_STATUS__CPL_ABORT_ERR_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_STATUS__UNEXP_CPL_STATUS__SHIFT 0x10
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_STATUS__RCV_OVFL_STATUS__SHIFT 0x11
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_STATUS__MAL_TLP_STATUS__SHIFT 0x12
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_STATUS__ECRC_ERR_STATUS__SHIFT 0x13
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_STATUS__UNSUPP_REQ_ERR_STATUS__SHIFT 0x14
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_STATUS__ACS_VIOLATION_STATUS__SHIFT 0x15
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_STATUS__UNCORR_INT_ERR_STATUS__SHIFT 0x16
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_STATUS__MC_BLOCKED_TLP_STATUS__SHIFT 0x17
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_STATUS__ATOMICOP_EGRESS_BLOCKED_STATUS__SHIFT 0x18
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_STATUS__TLP_PREFIX_BLOCKED_ERR_STATUS__SHIFT 0x19
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_STATUS__POISONED_TLP_EGRESS_BLOCKED_STATUS__SHIFT 0x1a
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_STATUS__DLP_ERR_STATUS_MASK 0x00000010L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_STATUS__SURPDN_ERR_STATUS_MASK 0x00000020L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_STATUS__PSN_ERR_STATUS_MASK 0x00001000L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_STATUS__FC_ERR_STATUS_MASK 0x00002000L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_STATUS__CPL_TIMEOUT_STATUS_MASK 0x00004000L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_STATUS__CPL_ABORT_ERR_STATUS_MASK 0x00008000L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_STATUS__UNEXP_CPL_STATUS_MASK 0x00010000L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_STATUS__RCV_OVFL_STATUS_MASK 0x00020000L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_STATUS__MAL_TLP_STATUS_MASK 0x00040000L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_STATUS__ECRC_ERR_STATUS_MASK 0x00080000L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_STATUS__UNSUPP_REQ_ERR_STATUS_MASK 0x00100000L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_STATUS__ACS_VIOLATION_STATUS_MASK 0x00200000L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_STATUS__UNCORR_INT_ERR_STATUS_MASK 0x00400000L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_STATUS__MC_BLOCKED_TLP_STATUS_MASK 0x00800000L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_STATUS__ATOMICOP_EGRESS_BLOCKED_STATUS_MASK 0x01000000L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_STATUS__TLP_PREFIX_BLOCKED_ERR_STATUS_MASK 0x02000000L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_STATUS__POISONED_TLP_EGRESS_BLOCKED_STATUS_MASK 0x04000000L
+//BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_MASK
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_MASK__DLP_ERR_MASK__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_MASK__SURPDN_ERR_MASK__SHIFT 0x5
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_MASK__PSN_ERR_MASK__SHIFT 0xc
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_MASK__FC_ERR_MASK__SHIFT 0xd
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_MASK__CPL_TIMEOUT_MASK__SHIFT 0xe
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_MASK__CPL_ABORT_ERR_MASK__SHIFT 0xf
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_MASK__UNEXP_CPL_MASK__SHIFT 0x10
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_MASK__RCV_OVFL_MASK__SHIFT 0x11
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_MASK__MAL_TLP_MASK__SHIFT 0x12
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_MASK__ECRC_ERR_MASK__SHIFT 0x13
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_MASK__UNSUPP_REQ_ERR_MASK__SHIFT 0x14
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_MASK__ACS_VIOLATION_MASK__SHIFT 0x15
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_MASK__UNCORR_INT_ERR_MASK__SHIFT 0x16
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_MASK__MC_BLOCKED_TLP_MASK__SHIFT 0x17
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_MASK__ATOMICOP_EGRESS_BLOCKED_MASK__SHIFT 0x18
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_MASK__TLP_PREFIX_BLOCKED_ERR_MASK__SHIFT 0x19
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_MASK__POISONED_TLP_EGRESS_BLOCKED_MASK__SHIFT 0x1a
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_MASK__DLP_ERR_MASK_MASK 0x00000010L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_MASK__SURPDN_ERR_MASK_MASK 0x00000020L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_MASK__PSN_ERR_MASK_MASK 0x00001000L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_MASK__FC_ERR_MASK_MASK 0x00002000L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_MASK__CPL_TIMEOUT_MASK_MASK 0x00004000L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_MASK__CPL_ABORT_ERR_MASK_MASK 0x00008000L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_MASK__UNEXP_CPL_MASK_MASK 0x00010000L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_MASK__RCV_OVFL_MASK_MASK 0x00020000L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_MASK__MAL_TLP_MASK_MASK 0x00040000L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_MASK__ECRC_ERR_MASK_MASK 0x00080000L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_MASK__UNSUPP_REQ_ERR_MASK_MASK 0x00100000L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_MASK__ACS_VIOLATION_MASK_MASK 0x00200000L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_MASK__UNCORR_INT_ERR_MASK_MASK 0x00400000L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_MASK__MC_BLOCKED_TLP_MASK_MASK 0x00800000L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_MASK__ATOMICOP_EGRESS_BLOCKED_MASK_MASK 0x01000000L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_MASK__TLP_PREFIX_BLOCKED_ERR_MASK_MASK 0x02000000L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_MASK__POISONED_TLP_EGRESS_BLOCKED_MASK_MASK 0x04000000L
+//BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_SEVERITY
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_SEVERITY__DLP_ERR_SEVERITY__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_SEVERITY__SURPDN_ERR_SEVERITY__SHIFT 0x5
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_SEVERITY__PSN_ERR_SEVERITY__SHIFT 0xc
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_SEVERITY__FC_ERR_SEVERITY__SHIFT 0xd
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_SEVERITY__CPL_TIMEOUT_SEVERITY__SHIFT 0xe
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_SEVERITY__CPL_ABORT_ERR_SEVERITY__SHIFT 0xf
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_SEVERITY__UNEXP_CPL_SEVERITY__SHIFT 0x10
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_SEVERITY__RCV_OVFL_SEVERITY__SHIFT 0x11
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_SEVERITY__MAL_TLP_SEVERITY__SHIFT 0x12
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_SEVERITY__ECRC_ERR_SEVERITY__SHIFT 0x13
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_SEVERITY__UNSUPP_REQ_ERR_SEVERITY__SHIFT 0x14
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_SEVERITY__ACS_VIOLATION_SEVERITY__SHIFT 0x15
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_SEVERITY__UNCORR_INT_ERR_SEVERITY__SHIFT 0x16
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_SEVERITY__MC_BLOCKED_TLP_SEVERITY__SHIFT 0x17
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_SEVERITY__ATOMICOP_EGRESS_BLOCKED_SEVERITY__SHIFT 0x18
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_SEVERITY__TLP_PREFIX_BLOCKED_ERR_SEVERITY__SHIFT 0x19
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_SEVERITY__POISONED_TLP_EGRESS_BLOCKED_SEVERITY__SHIFT 0x1a
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_SEVERITY__DLP_ERR_SEVERITY_MASK 0x00000010L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_SEVERITY__SURPDN_ERR_SEVERITY_MASK 0x00000020L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_SEVERITY__PSN_ERR_SEVERITY_MASK 0x00001000L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_SEVERITY__FC_ERR_SEVERITY_MASK 0x00002000L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_SEVERITY__CPL_TIMEOUT_SEVERITY_MASK 0x00004000L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_SEVERITY__CPL_ABORT_ERR_SEVERITY_MASK 0x00008000L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_SEVERITY__UNEXP_CPL_SEVERITY_MASK 0x00010000L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_SEVERITY__RCV_OVFL_SEVERITY_MASK 0x00020000L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_SEVERITY__MAL_TLP_SEVERITY_MASK 0x00040000L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_SEVERITY__ECRC_ERR_SEVERITY_MASK 0x00080000L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_SEVERITY__UNSUPP_REQ_ERR_SEVERITY_MASK 0x00100000L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_SEVERITY__ACS_VIOLATION_SEVERITY_MASK 0x00200000L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_SEVERITY__UNCORR_INT_ERR_SEVERITY_MASK 0x00400000L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_SEVERITY__MC_BLOCKED_TLP_SEVERITY_MASK 0x00800000L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_SEVERITY__ATOMICOP_EGRESS_BLOCKED_SEVERITY_MASK 0x01000000L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_SEVERITY__TLP_PREFIX_BLOCKED_ERR_SEVERITY_MASK 0x02000000L
+#define BIF_CFG_DEV0_RC_PCIE_UNCORR_ERR_SEVERITY__POISONED_TLP_EGRESS_BLOCKED_SEVERITY_MASK 0x04000000L
+//BIF_CFG_DEV0_RC_PCIE_CORR_ERR_STATUS
+#define BIF_CFG_DEV0_RC_PCIE_CORR_ERR_STATUS__RCV_ERR_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_CORR_ERR_STATUS__BAD_TLP_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_PCIE_CORR_ERR_STATUS__BAD_DLLP_STATUS__SHIFT 0x7
+#define BIF_CFG_DEV0_RC_PCIE_CORR_ERR_STATUS__REPLAY_NUM_ROLLOVER_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_PCIE_CORR_ERR_STATUS__REPLAY_TIMER_TIMEOUT_STATUS__SHIFT 0xc
+#define BIF_CFG_DEV0_RC_PCIE_CORR_ERR_STATUS__ADVISORY_NONFATAL_ERR_STATUS__SHIFT 0xd
+#define BIF_CFG_DEV0_RC_PCIE_CORR_ERR_STATUS__CORR_INT_ERR_STATUS__SHIFT 0xe
+#define BIF_CFG_DEV0_RC_PCIE_CORR_ERR_STATUS__HDR_LOG_OVFL_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_RC_PCIE_CORR_ERR_STATUS__RCV_ERR_STATUS_MASK 0x00000001L
+#define BIF_CFG_DEV0_RC_PCIE_CORR_ERR_STATUS__BAD_TLP_STATUS_MASK 0x00000040L
+#define BIF_CFG_DEV0_RC_PCIE_CORR_ERR_STATUS__BAD_DLLP_STATUS_MASK 0x00000080L
+#define BIF_CFG_DEV0_RC_PCIE_CORR_ERR_STATUS__REPLAY_NUM_ROLLOVER_STATUS_MASK 0x00000100L
+#define BIF_CFG_DEV0_RC_PCIE_CORR_ERR_STATUS__REPLAY_TIMER_TIMEOUT_STATUS_MASK 0x00001000L
+#define BIF_CFG_DEV0_RC_PCIE_CORR_ERR_STATUS__ADVISORY_NONFATAL_ERR_STATUS_MASK 0x00002000L
+#define BIF_CFG_DEV0_RC_PCIE_CORR_ERR_STATUS__CORR_INT_ERR_STATUS_MASK 0x00004000L
+#define BIF_CFG_DEV0_RC_PCIE_CORR_ERR_STATUS__HDR_LOG_OVFL_STATUS_MASK 0x00008000L
+//BIF_CFG_DEV0_RC_PCIE_CORR_ERR_MASK
+#define BIF_CFG_DEV0_RC_PCIE_CORR_ERR_MASK__RCV_ERR_MASK__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_CORR_ERR_MASK__BAD_TLP_MASK__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_PCIE_CORR_ERR_MASK__BAD_DLLP_MASK__SHIFT 0x7
+#define BIF_CFG_DEV0_RC_PCIE_CORR_ERR_MASK__REPLAY_NUM_ROLLOVER_MASK__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_PCIE_CORR_ERR_MASK__REPLAY_TIMER_TIMEOUT_MASK__SHIFT 0xc
+#define BIF_CFG_DEV0_RC_PCIE_CORR_ERR_MASK__ADVISORY_NONFATAL_ERR_MASK__SHIFT 0xd
+#define BIF_CFG_DEV0_RC_PCIE_CORR_ERR_MASK__CORR_INT_ERR_MASK__SHIFT 0xe
+#define BIF_CFG_DEV0_RC_PCIE_CORR_ERR_MASK__HDR_LOG_OVFL_MASK__SHIFT 0xf
+#define BIF_CFG_DEV0_RC_PCIE_CORR_ERR_MASK__RCV_ERR_MASK_MASK 0x00000001L
+#define BIF_CFG_DEV0_RC_PCIE_CORR_ERR_MASK__BAD_TLP_MASK_MASK 0x00000040L
+#define BIF_CFG_DEV0_RC_PCIE_CORR_ERR_MASK__BAD_DLLP_MASK_MASK 0x00000080L
+#define BIF_CFG_DEV0_RC_PCIE_CORR_ERR_MASK__REPLAY_NUM_ROLLOVER_MASK_MASK 0x00000100L
+#define BIF_CFG_DEV0_RC_PCIE_CORR_ERR_MASK__REPLAY_TIMER_TIMEOUT_MASK_MASK 0x00001000L
+#define BIF_CFG_DEV0_RC_PCIE_CORR_ERR_MASK__ADVISORY_NONFATAL_ERR_MASK_MASK 0x00002000L
+#define BIF_CFG_DEV0_RC_PCIE_CORR_ERR_MASK__CORR_INT_ERR_MASK_MASK 0x00004000L
+#define BIF_CFG_DEV0_RC_PCIE_CORR_ERR_MASK__HDR_LOG_OVFL_MASK_MASK 0x00008000L
+//BIF_CFG_DEV0_RC_PCIE_ADV_ERR_CAP_CNTL
+#define BIF_CFG_DEV0_RC_PCIE_ADV_ERR_CAP_CNTL__FIRST_ERR_PTR__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_CAP__SHIFT 0x5
+#define BIF_CFG_DEV0_RC_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_EN__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_CAP__SHIFT 0x7
+#define BIF_CFG_DEV0_RC_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_CAP__SHIFT 0x9
+#define BIF_CFG_DEV0_RC_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_RC_PCIE_ADV_ERR_CAP_CNTL__TLP_PREFIX_LOG_PRESENT__SHIFT 0xb
+#define BIF_CFG_DEV0_RC_PCIE_ADV_ERR_CAP_CNTL__COMPLETION_TIMEOUT_LOG_CAPABLE__SHIFT 0xc
+#define BIF_CFG_DEV0_RC_PCIE_ADV_ERR_CAP_CNTL__FIRST_ERR_PTR_MASK 0x0000001FL
+#define BIF_CFG_DEV0_RC_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_CAP_MASK 0x00000020L
+#define BIF_CFG_DEV0_RC_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_EN_MASK 0x00000040L
+#define BIF_CFG_DEV0_RC_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_CAP_MASK 0x00000080L
+#define BIF_CFG_DEV0_RC_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_EN_MASK 0x00000100L
+#define BIF_CFG_DEV0_RC_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_CAP_MASK 0x00000200L
+#define BIF_CFG_DEV0_RC_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_EN_MASK 0x00000400L
+#define BIF_CFG_DEV0_RC_PCIE_ADV_ERR_CAP_CNTL__TLP_PREFIX_LOG_PRESENT_MASK 0x00000800L
+#define BIF_CFG_DEV0_RC_PCIE_ADV_ERR_CAP_CNTL__COMPLETION_TIMEOUT_LOG_CAPABLE_MASK 0x00001000L
+//BIF_CFG_DEV0_RC_PCIE_HDR_LOG0
+#define BIF_CFG_DEV0_RC_PCIE_HDR_LOG0__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_HDR_LOG0__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_RC_PCIE_HDR_LOG1
+#define BIF_CFG_DEV0_RC_PCIE_HDR_LOG1__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_HDR_LOG1__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_RC_PCIE_HDR_LOG2
+#define BIF_CFG_DEV0_RC_PCIE_HDR_LOG2__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_HDR_LOG2__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_RC_PCIE_HDR_LOG3
+#define BIF_CFG_DEV0_RC_PCIE_HDR_LOG3__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_HDR_LOG3__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_RC_PCIE_ROOT_ERR_CMD
+#define BIF_CFG_DEV0_RC_PCIE_ROOT_ERR_CMD__CORR_ERR_REP_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_ROOT_ERR_CMD__NONFATAL_ERR_REP_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_RC_PCIE_ROOT_ERR_CMD__FATAL_ERR_REP_EN__SHIFT 0x2
+#define BIF_CFG_DEV0_RC_PCIE_ROOT_ERR_CMD__CORR_ERR_REP_EN_MASK 0x00000001L
+#define BIF_CFG_DEV0_RC_PCIE_ROOT_ERR_CMD__NONFATAL_ERR_REP_EN_MASK 0x00000002L
+#define BIF_CFG_DEV0_RC_PCIE_ROOT_ERR_CMD__FATAL_ERR_REP_EN_MASK 0x00000004L
+//BIF_CFG_DEV0_RC_PCIE_ROOT_ERR_STATUS
+#define BIF_CFG_DEV0_RC_PCIE_ROOT_ERR_STATUS__ERR_CORR_RCVD__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_ROOT_ERR_STATUS__MULT_ERR_CORR_RCVD__SHIFT 0x1
+#define BIF_CFG_DEV0_RC_PCIE_ROOT_ERR_STATUS__ERR_FATAL_NONFATAL_RCVD__SHIFT 0x2
+#define BIF_CFG_DEV0_RC_PCIE_ROOT_ERR_STATUS__MULT_ERR_FATAL_NONFATAL_RCVD__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_PCIE_ROOT_ERR_STATUS__FIRST_UNCORRECTABLE_FATAL__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_PCIE_ROOT_ERR_STATUS__NONFATAL_ERROR_MSG_RCVD__SHIFT 0x5
+#define BIF_CFG_DEV0_RC_PCIE_ROOT_ERR_STATUS__FATAL_ERROR_MSG_RCVD__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_PCIE_ROOT_ERR_STATUS__ERR_COR_SUBCLASS__SHIFT 0x7
+#define BIF_CFG_DEV0_RC_PCIE_ROOT_ERR_STATUS__ADV_ERR_INT_MSG_NUM__SHIFT 0x1b
+#define BIF_CFG_DEV0_RC_PCIE_ROOT_ERR_STATUS__ERR_CORR_RCVD_MASK 0x00000001L
+#define BIF_CFG_DEV0_RC_PCIE_ROOT_ERR_STATUS__MULT_ERR_CORR_RCVD_MASK 0x00000002L
+#define BIF_CFG_DEV0_RC_PCIE_ROOT_ERR_STATUS__ERR_FATAL_NONFATAL_RCVD_MASK 0x00000004L
+#define BIF_CFG_DEV0_RC_PCIE_ROOT_ERR_STATUS__MULT_ERR_FATAL_NONFATAL_RCVD_MASK 0x00000008L
+#define BIF_CFG_DEV0_RC_PCIE_ROOT_ERR_STATUS__FIRST_UNCORRECTABLE_FATAL_MASK 0x00000010L
+#define BIF_CFG_DEV0_RC_PCIE_ROOT_ERR_STATUS__NONFATAL_ERROR_MSG_RCVD_MASK 0x00000020L
+#define BIF_CFG_DEV0_RC_PCIE_ROOT_ERR_STATUS__FATAL_ERROR_MSG_RCVD_MASK 0x00000040L
+#define BIF_CFG_DEV0_RC_PCIE_ROOT_ERR_STATUS__ERR_COR_SUBCLASS_MASK 0x00000180L
+#define BIF_CFG_DEV0_RC_PCIE_ROOT_ERR_STATUS__ADV_ERR_INT_MSG_NUM_MASK 0xF8000000L
+//BIF_CFG_DEV0_RC_PCIE_ERR_SRC_ID
+#define BIF_CFG_DEV0_RC_PCIE_ERR_SRC_ID__ERR_CORR_SRC_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_ERR_SRC_ID__ERR_FATAL_NONFATAL_SRC_ID__SHIFT 0x10
+#define BIF_CFG_DEV0_RC_PCIE_ERR_SRC_ID__ERR_CORR_SRC_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_RC_PCIE_ERR_SRC_ID__ERR_FATAL_NONFATAL_SRC_ID_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_RC_PCIE_TLP_PREFIX_LOG0
+#define BIF_CFG_DEV0_RC_PCIE_TLP_PREFIX_LOG0__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_TLP_PREFIX_LOG0__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_RC_PCIE_TLP_PREFIX_LOG1
+#define BIF_CFG_DEV0_RC_PCIE_TLP_PREFIX_LOG1__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_TLP_PREFIX_LOG1__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_RC_PCIE_TLP_PREFIX_LOG2
+#define BIF_CFG_DEV0_RC_PCIE_TLP_PREFIX_LOG2__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_TLP_PREFIX_LOG2__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_RC_PCIE_TLP_PREFIX_LOG3
+#define BIF_CFG_DEV0_RC_PCIE_TLP_PREFIX_LOG3__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_TLP_PREFIX_LOG3__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_RC_PCIE_SECONDARY_ENH_CAP_LIST
+#define BIF_CFG_DEV0_RC_PCIE_SECONDARY_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_SECONDARY_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_RC_PCIE_SECONDARY_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_RC_PCIE_SECONDARY_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_RC_PCIE_SECONDARY_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_RC_PCIE_SECONDARY_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_RC_PCIE_LINK_CNTL3
+#define BIF_CFG_DEV0_RC_PCIE_LINK_CNTL3__PERFORM_EQUALIZATION__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_LINK_CNTL3__LINK_EQUALIZATION_REQ_INT_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_RC_PCIE_LINK_CNTL3__ENABLE_LOWER_SKP_OS_GEN__SHIFT 0x9
+#define BIF_CFG_DEV0_RC_PCIE_LINK_CNTL3__PERFORM_EQUALIZATION_MASK 0x00000001L
+#define BIF_CFG_DEV0_RC_PCIE_LINK_CNTL3__LINK_EQUALIZATION_REQ_INT_EN_MASK 0x00000002L
+#define BIF_CFG_DEV0_RC_PCIE_LINK_CNTL3__ENABLE_LOWER_SKP_OS_GEN_MASK 0x0000FE00L
+//BIF_CFG_DEV0_RC_PCIE_LANE_ERROR_STATUS
+#define BIF_CFG_DEV0_RC_PCIE_LANE_ERROR_STATUS__LANE_ERROR_STATUS_BITS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_LANE_ERROR_STATUS__LANE_ERROR_STATUS_BITS_MASK 0x0000FFFFL
+//BIF_CFG_DEV0_RC_PCIE_LANE_0_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_RC_PCIE_LANE_0_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_LANE_0_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_PCIE_LANE_0_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_PCIE_LANE_0_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_RC_PCIE_LANE_0_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_RC_PCIE_LANE_0_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_RC_PCIE_LANE_0_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_RC_PCIE_LANE_0_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_RC_PCIE_LANE_1_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_RC_PCIE_LANE_1_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_LANE_1_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_PCIE_LANE_1_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_PCIE_LANE_1_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_RC_PCIE_LANE_1_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_RC_PCIE_LANE_1_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_RC_PCIE_LANE_1_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_RC_PCIE_LANE_1_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_RC_PCIE_LANE_2_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_RC_PCIE_LANE_2_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_LANE_2_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_PCIE_LANE_2_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_PCIE_LANE_2_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_RC_PCIE_LANE_2_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_RC_PCIE_LANE_2_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_RC_PCIE_LANE_2_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_RC_PCIE_LANE_2_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_RC_PCIE_LANE_3_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_RC_PCIE_LANE_3_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_LANE_3_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_PCIE_LANE_3_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_PCIE_LANE_3_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_RC_PCIE_LANE_3_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_RC_PCIE_LANE_3_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_RC_PCIE_LANE_3_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_RC_PCIE_LANE_3_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_RC_PCIE_LANE_4_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_RC_PCIE_LANE_4_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_LANE_4_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_PCIE_LANE_4_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_PCIE_LANE_4_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_RC_PCIE_LANE_4_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_RC_PCIE_LANE_4_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_RC_PCIE_LANE_4_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_RC_PCIE_LANE_4_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_RC_PCIE_LANE_5_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_RC_PCIE_LANE_5_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_LANE_5_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_PCIE_LANE_5_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_PCIE_LANE_5_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_RC_PCIE_LANE_5_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_RC_PCIE_LANE_5_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_RC_PCIE_LANE_5_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_RC_PCIE_LANE_5_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_RC_PCIE_LANE_6_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_RC_PCIE_LANE_6_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_LANE_6_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_PCIE_LANE_6_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_PCIE_LANE_6_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_RC_PCIE_LANE_6_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_RC_PCIE_LANE_6_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_RC_PCIE_LANE_6_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_RC_PCIE_LANE_6_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_RC_PCIE_LANE_7_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_RC_PCIE_LANE_7_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_LANE_7_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_PCIE_LANE_7_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_PCIE_LANE_7_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_RC_PCIE_LANE_7_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_RC_PCIE_LANE_7_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_RC_PCIE_LANE_7_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_RC_PCIE_LANE_7_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_RC_PCIE_LANE_8_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_RC_PCIE_LANE_8_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_LANE_8_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_PCIE_LANE_8_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_PCIE_LANE_8_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_RC_PCIE_LANE_8_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_RC_PCIE_LANE_8_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_RC_PCIE_LANE_8_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_RC_PCIE_LANE_8_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_RC_PCIE_LANE_9_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_RC_PCIE_LANE_9_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_LANE_9_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_PCIE_LANE_9_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_PCIE_LANE_9_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_RC_PCIE_LANE_9_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_RC_PCIE_LANE_9_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_RC_PCIE_LANE_9_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_RC_PCIE_LANE_9_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_RC_PCIE_LANE_10_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_RC_PCIE_LANE_10_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_LANE_10_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_PCIE_LANE_10_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_PCIE_LANE_10_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_RC_PCIE_LANE_10_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_RC_PCIE_LANE_10_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_RC_PCIE_LANE_10_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_RC_PCIE_LANE_10_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_RC_PCIE_LANE_11_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_RC_PCIE_LANE_11_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_LANE_11_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_PCIE_LANE_11_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_PCIE_LANE_11_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_RC_PCIE_LANE_11_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_RC_PCIE_LANE_11_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_RC_PCIE_LANE_11_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_RC_PCIE_LANE_11_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_RC_PCIE_LANE_12_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_RC_PCIE_LANE_12_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_LANE_12_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_PCIE_LANE_12_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_PCIE_LANE_12_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_RC_PCIE_LANE_12_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_RC_PCIE_LANE_12_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_RC_PCIE_LANE_12_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_RC_PCIE_LANE_12_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_RC_PCIE_LANE_13_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_RC_PCIE_LANE_13_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_LANE_13_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_PCIE_LANE_13_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_PCIE_LANE_13_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_RC_PCIE_LANE_13_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_RC_PCIE_LANE_13_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_RC_PCIE_LANE_13_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_RC_PCIE_LANE_13_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_RC_PCIE_LANE_14_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_RC_PCIE_LANE_14_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_LANE_14_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_PCIE_LANE_14_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_PCIE_LANE_14_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_RC_PCIE_LANE_14_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_RC_PCIE_LANE_14_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_RC_PCIE_LANE_14_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_RC_PCIE_LANE_14_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_RC_PCIE_LANE_15_EQUALIZATION_CNTL
+#define BIF_CFG_DEV0_RC_PCIE_LANE_15_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_LANE_15_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_PCIE_LANE_15_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_PCIE_LANE_15_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT__SHIFT 0xc
+#define BIF_CFG_DEV0_RC_PCIE_LANE_15_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_TX_PRESET_MASK 0x000FL
+#define BIF_CFG_DEV0_RC_PCIE_LANE_15_EQUALIZATION_CNTL__DOWNSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x0070L
+#define BIF_CFG_DEV0_RC_PCIE_LANE_15_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_TX_PRESET_MASK 0x0F00L
+#define BIF_CFG_DEV0_RC_PCIE_LANE_15_EQUALIZATION_CNTL__UPSTREAM_PORT_8GT_RX_PRESET_HINT_MASK 0x7000L
+//BIF_CFG_DEV0_RC_PCIE_ACS_ENH_CAP_LIST
+#define BIF_CFG_DEV0_RC_PCIE_ACS_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_ACS_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_RC_PCIE_ACS_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_RC_PCIE_ACS_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_RC_PCIE_ACS_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_RC_PCIE_ACS_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_RC_PCIE_ACS_CAP
+#define BIF_CFG_DEV0_RC_PCIE_ACS_CAP__SOURCE_VALIDATION__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_ACS_CAP__TRANSLATION_BLOCKING__SHIFT 0x1
+#define BIF_CFG_DEV0_RC_PCIE_ACS_CAP__P2P_REQUEST_REDIRECT__SHIFT 0x2
+#define BIF_CFG_DEV0_RC_PCIE_ACS_CAP__P2P_COMPLETION_REDIRECT__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_PCIE_ACS_CAP__UPSTREAM_FORWARDING__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_PCIE_ACS_CAP__P2P_EGRESS_CONTROL__SHIFT 0x5
+#define BIF_CFG_DEV0_RC_PCIE_ACS_CAP__DIRECT_TRANSLATED_P2P__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_PCIE_ACS_CAP__ENHANCED_CAPABILITY__SHIFT 0x7
+#define BIF_CFG_DEV0_RC_PCIE_ACS_CAP__EGRESS_CONTROL_VECTOR_SIZE__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_PCIE_ACS_CAP__SOURCE_VALIDATION_MASK 0x0001L
+#define BIF_CFG_DEV0_RC_PCIE_ACS_CAP__TRANSLATION_BLOCKING_MASK 0x0002L
+#define BIF_CFG_DEV0_RC_PCIE_ACS_CAP__P2P_REQUEST_REDIRECT_MASK 0x0004L
+#define BIF_CFG_DEV0_RC_PCIE_ACS_CAP__P2P_COMPLETION_REDIRECT_MASK 0x0008L
+#define BIF_CFG_DEV0_RC_PCIE_ACS_CAP__UPSTREAM_FORWARDING_MASK 0x0010L
+#define BIF_CFG_DEV0_RC_PCIE_ACS_CAP__P2P_EGRESS_CONTROL_MASK 0x0020L
+#define BIF_CFG_DEV0_RC_PCIE_ACS_CAP__DIRECT_TRANSLATED_P2P_MASK 0x0040L
+#define BIF_CFG_DEV0_RC_PCIE_ACS_CAP__ENHANCED_CAPABILITY_MASK 0x0080L
+#define BIF_CFG_DEV0_RC_PCIE_ACS_CAP__EGRESS_CONTROL_VECTOR_SIZE_MASK 0xFF00L
+//BIF_CFG_DEV0_RC_PCIE_ACS_CNTL
+#define BIF_CFG_DEV0_RC_PCIE_ACS_CNTL__SOURCE_VALIDATION_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_ACS_CNTL__TRANSLATION_BLOCKING_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_RC_PCIE_ACS_CNTL__P2P_REQUEST_REDIRECT_EN__SHIFT 0x2
+#define BIF_CFG_DEV0_RC_PCIE_ACS_CNTL__P2P_COMPLETION_REDIRECT_EN__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_PCIE_ACS_CNTL__UPSTREAM_FORWARDING_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_PCIE_ACS_CNTL__P2P_EGRESS_CONTROL_EN__SHIFT 0x5
+#define BIF_CFG_DEV0_RC_PCIE_ACS_CNTL__DIRECT_TRANSLATED_P2P_EN__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_PCIE_ACS_CNTL__IO_REQUEST_BLOCKING_EN__SHIFT 0x7
+#define BIF_CFG_DEV0_RC_PCIE_ACS_CNTL__DSP_MEMORY_TARGET_ACCESS_CNTL__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_PCIE_ACS_CNTL__USP_MEMORY_TARGET_ACCESS_CNTL__SHIFT 0xa
+#define BIF_CFG_DEV0_RC_PCIE_ACS_CNTL__UNCLAIMED_REQUEST_REDIRECT_CNTL__SHIFT 0xc
+#define BIF_CFG_DEV0_RC_PCIE_ACS_CNTL__SOURCE_VALIDATION_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_RC_PCIE_ACS_CNTL__TRANSLATION_BLOCKING_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_RC_PCIE_ACS_CNTL__P2P_REQUEST_REDIRECT_EN_MASK 0x0004L
+#define BIF_CFG_DEV0_RC_PCIE_ACS_CNTL__P2P_COMPLETION_REDIRECT_EN_MASK 0x0008L
+#define BIF_CFG_DEV0_RC_PCIE_ACS_CNTL__UPSTREAM_FORWARDING_EN_MASK 0x0010L
+#define BIF_CFG_DEV0_RC_PCIE_ACS_CNTL__P2P_EGRESS_CONTROL_EN_MASK 0x0020L
+#define BIF_CFG_DEV0_RC_PCIE_ACS_CNTL__DIRECT_TRANSLATED_P2P_EN_MASK 0x0040L
+#define BIF_CFG_DEV0_RC_PCIE_ACS_CNTL__IO_REQUEST_BLOCKING_EN_MASK 0x0080L
+#define BIF_CFG_DEV0_RC_PCIE_ACS_CNTL__DSP_MEMORY_TARGET_ACCESS_CNTL_MASK 0x0300L
+#define BIF_CFG_DEV0_RC_PCIE_ACS_CNTL__USP_MEMORY_TARGET_ACCESS_CNTL_MASK 0x0C00L
+#define BIF_CFG_DEV0_RC_PCIE_ACS_CNTL__UNCLAIMED_REQUEST_REDIRECT_CNTL_MASK 0x1000L
+//BIF_CFG_DEV0_RC_PCIE_DLF_ENH_CAP_LIST
+#define BIF_CFG_DEV0_RC_PCIE_DLF_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_DLF_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_RC_PCIE_DLF_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_RC_PCIE_DLF_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_RC_PCIE_DLF_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_RC_PCIE_DLF_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_RC_DATA_LINK_FEATURE_CAP
+#define BIF_CFG_DEV0_RC_DATA_LINK_FEATURE_CAP__LOCAL_DLF_SUPPORTED__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_DATA_LINK_FEATURE_CAP__DLF_EXCHANGE_ENABLE__SHIFT 0x1f
+#define BIF_CFG_DEV0_RC_DATA_LINK_FEATURE_CAP__LOCAL_DLF_SUPPORTED_MASK 0x007FFFFFL
+#define BIF_CFG_DEV0_RC_DATA_LINK_FEATURE_CAP__DLF_EXCHANGE_ENABLE_MASK 0x80000000L
+//BIF_CFG_DEV0_RC_DATA_LINK_FEATURE_STATUS
+#define BIF_CFG_DEV0_RC_DATA_LINK_FEATURE_STATUS__REMOTE_DLF_SUPPORTED__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_DATA_LINK_FEATURE_STATUS__REMOTE_DLF_SUPPORTED_VALID__SHIFT 0x1f
+#define BIF_CFG_DEV0_RC_DATA_LINK_FEATURE_STATUS__REMOTE_DLF_SUPPORTED_MASK 0x007FFFFFL
+#define BIF_CFG_DEV0_RC_DATA_LINK_FEATURE_STATUS__REMOTE_DLF_SUPPORTED_VALID_MASK 0x80000000L
+//BIF_CFG_DEV0_RC_PCIE_PHY_16GT_ENH_CAP_LIST
+#define BIF_CFG_DEV0_RC_PCIE_PHY_16GT_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_PHY_16GT_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_RC_PCIE_PHY_16GT_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_RC_PCIE_PHY_16GT_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_RC_PCIE_PHY_16GT_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_RC_PCIE_PHY_16GT_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_RC_LINK_CAP_16GT
+#define BIF_CFG_DEV0_RC_LINK_CAP_16GT__RESERVED__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LINK_CAP_16GT__RESERVED_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_RC_LINK_CNTL_16GT
+#define BIF_CFG_DEV0_RC_LINK_CNTL_16GT__RESERVED__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LINK_CNTL_16GT__RESERVED_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_RC_LINK_STATUS_16GT
+#define BIF_CFG_DEV0_RC_LINK_STATUS_16GT__EQUALIZATION_COMPLETE_16GT__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LINK_STATUS_16GT__EQUALIZATION_PHASE1_SUCCESS_16GT__SHIFT 0x1
+#define BIF_CFG_DEV0_RC_LINK_STATUS_16GT__EQUALIZATION_PHASE2_SUCCESS_16GT__SHIFT 0x2
+#define BIF_CFG_DEV0_RC_LINK_STATUS_16GT__EQUALIZATION_PHASE3_SUCCESS_16GT__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_LINK_STATUS_16GT__LINK_EQUALIZATION_REQUEST_16GT__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_LINK_STATUS_16GT__EQUALIZATION_COMPLETE_16GT_MASK 0x00000001L
+#define BIF_CFG_DEV0_RC_LINK_STATUS_16GT__EQUALIZATION_PHASE1_SUCCESS_16GT_MASK 0x00000002L
+#define BIF_CFG_DEV0_RC_LINK_STATUS_16GT__EQUALIZATION_PHASE2_SUCCESS_16GT_MASK 0x00000004L
+#define BIF_CFG_DEV0_RC_LINK_STATUS_16GT__EQUALIZATION_PHASE3_SUCCESS_16GT_MASK 0x00000008L
+#define BIF_CFG_DEV0_RC_LINK_STATUS_16GT__LINK_EQUALIZATION_REQUEST_16GT_MASK 0x00000010L
+//BIF_CFG_DEV0_RC_LOCAL_PARITY_MISMATCH_STATUS_16GT
+#define BIF_CFG_DEV0_RC_LOCAL_PARITY_MISMATCH_STATUS_16GT__LOCAL_PARITY_MISMATCH_STATUS_BITS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LOCAL_PARITY_MISMATCH_STATUS_16GT__LOCAL_PARITY_MISMATCH_STATUS_BITS_MASK 0x0000FFFFL
+//BIF_CFG_DEV0_RC_RTM1_PARITY_MISMATCH_STATUS_16GT
+#define BIF_CFG_DEV0_RC_RTM1_PARITY_MISMATCH_STATUS_16GT__RTM1_PARITY_MISMATCH_STATUS_BITS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_RTM1_PARITY_MISMATCH_STATUS_16GT__RTM1_PARITY_MISMATCH_STATUS_BITS_MASK 0x0000FFFFL
+//BIF_CFG_DEV0_RC_RTM2_PARITY_MISMATCH_STATUS_16GT
+#define BIF_CFG_DEV0_RC_RTM2_PARITY_MISMATCH_STATUS_16GT__RTM2_PARITY_MISMATCH_STATUS_BITS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_RTM2_PARITY_MISMATCH_STATUS_16GT__RTM2_PARITY_MISMATCH_STATUS_BITS_MASK 0x0000FFFFL
+//BIF_CFG_DEV0_RC_LANE_0_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_RC_LANE_0_EQUALIZATION_CNTL_16GT__LANE_0_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_0_EQUALIZATION_CNTL_16GT__LANE_0_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_LANE_0_EQUALIZATION_CNTL_16GT__LANE_0_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_RC_LANE_0_EQUALIZATION_CNTL_16GT__LANE_0_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_RC_LANE_1_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_RC_LANE_1_EQUALIZATION_CNTL_16GT__LANE_1_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_1_EQUALIZATION_CNTL_16GT__LANE_1_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_LANE_1_EQUALIZATION_CNTL_16GT__LANE_1_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_RC_LANE_1_EQUALIZATION_CNTL_16GT__LANE_1_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_RC_LANE_2_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_RC_LANE_2_EQUALIZATION_CNTL_16GT__LANE_2_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_2_EQUALIZATION_CNTL_16GT__LANE_2_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_LANE_2_EQUALIZATION_CNTL_16GT__LANE_2_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_RC_LANE_2_EQUALIZATION_CNTL_16GT__LANE_2_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_RC_LANE_3_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_RC_LANE_3_EQUALIZATION_CNTL_16GT__LANE_3_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_3_EQUALIZATION_CNTL_16GT__LANE_3_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_LANE_3_EQUALIZATION_CNTL_16GT__LANE_3_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_RC_LANE_3_EQUALIZATION_CNTL_16GT__LANE_3_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_RC_LANE_4_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_RC_LANE_4_EQUALIZATION_CNTL_16GT__LANE_4_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_4_EQUALIZATION_CNTL_16GT__LANE_4_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_LANE_4_EQUALIZATION_CNTL_16GT__LANE_4_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_RC_LANE_4_EQUALIZATION_CNTL_16GT__LANE_4_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_RC_LANE_5_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_RC_LANE_5_EQUALIZATION_CNTL_16GT__LANE_5_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_5_EQUALIZATION_CNTL_16GT__LANE_5_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_LANE_5_EQUALIZATION_CNTL_16GT__LANE_5_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_RC_LANE_5_EQUALIZATION_CNTL_16GT__LANE_5_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_RC_LANE_6_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_RC_LANE_6_EQUALIZATION_CNTL_16GT__LANE_6_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_6_EQUALIZATION_CNTL_16GT__LANE_6_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_LANE_6_EQUALIZATION_CNTL_16GT__LANE_6_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_RC_LANE_6_EQUALIZATION_CNTL_16GT__LANE_6_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_RC_LANE_7_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_RC_LANE_7_EQUALIZATION_CNTL_16GT__LANE_7_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_7_EQUALIZATION_CNTL_16GT__LANE_7_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_LANE_7_EQUALIZATION_CNTL_16GT__LANE_7_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_RC_LANE_7_EQUALIZATION_CNTL_16GT__LANE_7_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_RC_LANE_8_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_RC_LANE_8_EQUALIZATION_CNTL_16GT__LANE_8_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_8_EQUALIZATION_CNTL_16GT__LANE_8_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_LANE_8_EQUALIZATION_CNTL_16GT__LANE_8_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_RC_LANE_8_EQUALIZATION_CNTL_16GT__LANE_8_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_RC_LANE_9_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_RC_LANE_9_EQUALIZATION_CNTL_16GT__LANE_9_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_9_EQUALIZATION_CNTL_16GT__LANE_9_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_LANE_9_EQUALIZATION_CNTL_16GT__LANE_9_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_RC_LANE_9_EQUALIZATION_CNTL_16GT__LANE_9_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_RC_LANE_10_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_RC_LANE_10_EQUALIZATION_CNTL_16GT__LANE_10_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_10_EQUALIZATION_CNTL_16GT__LANE_10_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_LANE_10_EQUALIZATION_CNTL_16GT__LANE_10_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_RC_LANE_10_EQUALIZATION_CNTL_16GT__LANE_10_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_RC_LANE_11_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_RC_LANE_11_EQUALIZATION_CNTL_16GT__LANE_11_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_11_EQUALIZATION_CNTL_16GT__LANE_11_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_LANE_11_EQUALIZATION_CNTL_16GT__LANE_11_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_RC_LANE_11_EQUALIZATION_CNTL_16GT__LANE_11_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_RC_LANE_12_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_RC_LANE_12_EQUALIZATION_CNTL_16GT__LANE_12_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_12_EQUALIZATION_CNTL_16GT__LANE_12_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_LANE_12_EQUALIZATION_CNTL_16GT__LANE_12_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_RC_LANE_12_EQUALIZATION_CNTL_16GT__LANE_12_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_RC_LANE_13_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_RC_LANE_13_EQUALIZATION_CNTL_16GT__LANE_13_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_13_EQUALIZATION_CNTL_16GT__LANE_13_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_LANE_13_EQUALIZATION_CNTL_16GT__LANE_13_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_RC_LANE_13_EQUALIZATION_CNTL_16GT__LANE_13_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_RC_LANE_14_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_RC_LANE_14_EQUALIZATION_CNTL_16GT__LANE_14_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_14_EQUALIZATION_CNTL_16GT__LANE_14_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_LANE_14_EQUALIZATION_CNTL_16GT__LANE_14_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_RC_LANE_14_EQUALIZATION_CNTL_16GT__LANE_14_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_RC_LANE_15_EQUALIZATION_CNTL_16GT
+#define BIF_CFG_DEV0_RC_LANE_15_EQUALIZATION_CNTL_16GT__LANE_15_DSP_16GT_TX_PRESET__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_15_EQUALIZATION_CNTL_16GT__LANE_15_USP_16GT_TX_PRESET__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_LANE_15_EQUALIZATION_CNTL_16GT__LANE_15_DSP_16GT_TX_PRESET_MASK 0x0FL
+#define BIF_CFG_DEV0_RC_LANE_15_EQUALIZATION_CNTL_16GT__LANE_15_USP_16GT_TX_PRESET_MASK 0xF0L
+//BIF_CFG_DEV0_RC_PCIE_MARGINING_ENH_CAP_LIST
+#define BIF_CFG_DEV0_RC_PCIE_MARGINING_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_PCIE_MARGINING_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_RC_PCIE_MARGINING_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_RC_PCIE_MARGINING_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_RC_PCIE_MARGINING_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_RC_PCIE_MARGINING_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_RC_MARGINING_PORT_CAP
+#define BIF_CFG_DEV0_RC_MARGINING_PORT_CAP__MARGINING_USES_SOFTWARE__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_MARGINING_PORT_CAP__MARGINING_USES_SOFTWARE_MASK 0x0001L
+//BIF_CFG_DEV0_RC_MARGINING_PORT_STATUS
+#define BIF_CFG_DEV0_RC_MARGINING_PORT_STATUS__MARGINING_READY__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_MARGINING_PORT_STATUS__MARGINING_SOFTWARE_READY__SHIFT 0x1
+#define BIF_CFG_DEV0_RC_MARGINING_PORT_STATUS__MARGINING_READY_MASK 0x0001L
+#define BIF_CFG_DEV0_RC_MARGINING_PORT_STATUS__MARGINING_SOFTWARE_READY_MASK 0x0002L
+//BIF_CFG_DEV0_RC_LANE_0_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_RC_LANE_0_MARGINING_LANE_CNTL__LANE_0_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_0_MARGINING_LANE_CNTL__LANE_0_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_LANE_0_MARGINING_LANE_CNTL__LANE_0_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_LANE_0_MARGINING_LANE_CNTL__LANE_0_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_LANE_0_MARGINING_LANE_CNTL__LANE_0_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_RC_LANE_0_MARGINING_LANE_CNTL__LANE_0_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_RC_LANE_0_MARGINING_LANE_CNTL__LANE_0_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_RC_LANE_0_MARGINING_LANE_CNTL__LANE_0_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_RC_LANE_0_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_RC_LANE_0_MARGINING_LANE_STATUS__LANE_0_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_0_MARGINING_LANE_STATUS__LANE_0_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_LANE_0_MARGINING_LANE_STATUS__LANE_0_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_LANE_0_MARGINING_LANE_STATUS__LANE_0_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_LANE_0_MARGINING_LANE_STATUS__LANE_0_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_RC_LANE_0_MARGINING_LANE_STATUS__LANE_0_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_RC_LANE_0_MARGINING_LANE_STATUS__LANE_0_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_RC_LANE_0_MARGINING_LANE_STATUS__LANE_0_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_RC_LANE_1_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_RC_LANE_1_MARGINING_LANE_CNTL__LANE_1_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_1_MARGINING_LANE_CNTL__LANE_1_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_LANE_1_MARGINING_LANE_CNTL__LANE_1_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_LANE_1_MARGINING_LANE_CNTL__LANE_1_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_LANE_1_MARGINING_LANE_CNTL__LANE_1_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_RC_LANE_1_MARGINING_LANE_CNTL__LANE_1_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_RC_LANE_1_MARGINING_LANE_CNTL__LANE_1_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_RC_LANE_1_MARGINING_LANE_CNTL__LANE_1_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_RC_LANE_1_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_RC_LANE_1_MARGINING_LANE_STATUS__LANE_1_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_1_MARGINING_LANE_STATUS__LANE_1_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_LANE_1_MARGINING_LANE_STATUS__LANE_1_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_LANE_1_MARGINING_LANE_STATUS__LANE_1_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_LANE_1_MARGINING_LANE_STATUS__LANE_1_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_RC_LANE_1_MARGINING_LANE_STATUS__LANE_1_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_RC_LANE_1_MARGINING_LANE_STATUS__LANE_1_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_RC_LANE_1_MARGINING_LANE_STATUS__LANE_1_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_RC_LANE_2_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_RC_LANE_2_MARGINING_LANE_CNTL__LANE_2_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_2_MARGINING_LANE_CNTL__LANE_2_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_LANE_2_MARGINING_LANE_CNTL__LANE_2_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_LANE_2_MARGINING_LANE_CNTL__LANE_2_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_LANE_2_MARGINING_LANE_CNTL__LANE_2_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_RC_LANE_2_MARGINING_LANE_CNTL__LANE_2_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_RC_LANE_2_MARGINING_LANE_CNTL__LANE_2_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_RC_LANE_2_MARGINING_LANE_CNTL__LANE_2_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_RC_LANE_2_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_RC_LANE_2_MARGINING_LANE_STATUS__LANE_2_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_2_MARGINING_LANE_STATUS__LANE_2_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_LANE_2_MARGINING_LANE_STATUS__LANE_2_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_LANE_2_MARGINING_LANE_STATUS__LANE_2_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_LANE_2_MARGINING_LANE_STATUS__LANE_2_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_RC_LANE_2_MARGINING_LANE_STATUS__LANE_2_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_RC_LANE_2_MARGINING_LANE_STATUS__LANE_2_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_RC_LANE_2_MARGINING_LANE_STATUS__LANE_2_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_RC_LANE_3_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_RC_LANE_3_MARGINING_LANE_CNTL__LANE_3_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_3_MARGINING_LANE_CNTL__LANE_3_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_LANE_3_MARGINING_LANE_CNTL__LANE_3_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_LANE_3_MARGINING_LANE_CNTL__LANE_3_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_LANE_3_MARGINING_LANE_CNTL__LANE_3_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_RC_LANE_3_MARGINING_LANE_CNTL__LANE_3_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_RC_LANE_3_MARGINING_LANE_CNTL__LANE_3_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_RC_LANE_3_MARGINING_LANE_CNTL__LANE_3_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_RC_LANE_3_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_RC_LANE_3_MARGINING_LANE_STATUS__LANE_3_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_3_MARGINING_LANE_STATUS__LANE_3_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_LANE_3_MARGINING_LANE_STATUS__LANE_3_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_LANE_3_MARGINING_LANE_STATUS__LANE_3_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_LANE_3_MARGINING_LANE_STATUS__LANE_3_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_RC_LANE_3_MARGINING_LANE_STATUS__LANE_3_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_RC_LANE_3_MARGINING_LANE_STATUS__LANE_3_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_RC_LANE_3_MARGINING_LANE_STATUS__LANE_3_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_RC_LANE_4_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_RC_LANE_4_MARGINING_LANE_CNTL__LANE_4_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_4_MARGINING_LANE_CNTL__LANE_4_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_LANE_4_MARGINING_LANE_CNTL__LANE_4_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_LANE_4_MARGINING_LANE_CNTL__LANE_4_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_LANE_4_MARGINING_LANE_CNTL__LANE_4_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_RC_LANE_4_MARGINING_LANE_CNTL__LANE_4_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_RC_LANE_4_MARGINING_LANE_CNTL__LANE_4_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_RC_LANE_4_MARGINING_LANE_CNTL__LANE_4_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_RC_LANE_4_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_RC_LANE_4_MARGINING_LANE_STATUS__LANE_4_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_4_MARGINING_LANE_STATUS__LANE_4_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_LANE_4_MARGINING_LANE_STATUS__LANE_4_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_LANE_4_MARGINING_LANE_STATUS__LANE_4_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_LANE_4_MARGINING_LANE_STATUS__LANE_4_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_RC_LANE_4_MARGINING_LANE_STATUS__LANE_4_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_RC_LANE_4_MARGINING_LANE_STATUS__LANE_4_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_RC_LANE_4_MARGINING_LANE_STATUS__LANE_4_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_RC_LANE_5_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_RC_LANE_5_MARGINING_LANE_CNTL__LANE_5_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_5_MARGINING_LANE_CNTL__LANE_5_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_LANE_5_MARGINING_LANE_CNTL__LANE_5_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_LANE_5_MARGINING_LANE_CNTL__LANE_5_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_LANE_5_MARGINING_LANE_CNTL__LANE_5_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_RC_LANE_5_MARGINING_LANE_CNTL__LANE_5_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_RC_LANE_5_MARGINING_LANE_CNTL__LANE_5_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_RC_LANE_5_MARGINING_LANE_CNTL__LANE_5_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_RC_LANE_5_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_RC_LANE_5_MARGINING_LANE_STATUS__LANE_5_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_5_MARGINING_LANE_STATUS__LANE_5_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_LANE_5_MARGINING_LANE_STATUS__LANE_5_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_LANE_5_MARGINING_LANE_STATUS__LANE_5_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_LANE_5_MARGINING_LANE_STATUS__LANE_5_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_RC_LANE_5_MARGINING_LANE_STATUS__LANE_5_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_RC_LANE_5_MARGINING_LANE_STATUS__LANE_5_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_RC_LANE_5_MARGINING_LANE_STATUS__LANE_5_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_RC_LANE_6_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_RC_LANE_6_MARGINING_LANE_CNTL__LANE_6_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_6_MARGINING_LANE_CNTL__LANE_6_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_LANE_6_MARGINING_LANE_CNTL__LANE_6_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_LANE_6_MARGINING_LANE_CNTL__LANE_6_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_LANE_6_MARGINING_LANE_CNTL__LANE_6_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_RC_LANE_6_MARGINING_LANE_CNTL__LANE_6_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_RC_LANE_6_MARGINING_LANE_CNTL__LANE_6_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_RC_LANE_6_MARGINING_LANE_CNTL__LANE_6_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_RC_LANE_6_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_RC_LANE_6_MARGINING_LANE_STATUS__LANE_6_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_6_MARGINING_LANE_STATUS__LANE_6_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_LANE_6_MARGINING_LANE_STATUS__LANE_6_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_LANE_6_MARGINING_LANE_STATUS__LANE_6_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_LANE_6_MARGINING_LANE_STATUS__LANE_6_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_RC_LANE_6_MARGINING_LANE_STATUS__LANE_6_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_RC_LANE_6_MARGINING_LANE_STATUS__LANE_6_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_RC_LANE_6_MARGINING_LANE_STATUS__LANE_6_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_RC_LANE_7_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_RC_LANE_7_MARGINING_LANE_CNTL__LANE_7_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_7_MARGINING_LANE_CNTL__LANE_7_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_LANE_7_MARGINING_LANE_CNTL__LANE_7_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_LANE_7_MARGINING_LANE_CNTL__LANE_7_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_LANE_7_MARGINING_LANE_CNTL__LANE_7_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_RC_LANE_7_MARGINING_LANE_CNTL__LANE_7_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_RC_LANE_7_MARGINING_LANE_CNTL__LANE_7_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_RC_LANE_7_MARGINING_LANE_CNTL__LANE_7_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_RC_LANE_7_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_RC_LANE_7_MARGINING_LANE_STATUS__LANE_7_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_7_MARGINING_LANE_STATUS__LANE_7_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_LANE_7_MARGINING_LANE_STATUS__LANE_7_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_LANE_7_MARGINING_LANE_STATUS__LANE_7_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_LANE_7_MARGINING_LANE_STATUS__LANE_7_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_RC_LANE_7_MARGINING_LANE_STATUS__LANE_7_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_RC_LANE_7_MARGINING_LANE_STATUS__LANE_7_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_RC_LANE_7_MARGINING_LANE_STATUS__LANE_7_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_RC_LANE_8_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_RC_LANE_8_MARGINING_LANE_CNTL__LANE_8_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_8_MARGINING_LANE_CNTL__LANE_8_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_LANE_8_MARGINING_LANE_CNTL__LANE_8_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_LANE_8_MARGINING_LANE_CNTL__LANE_8_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_LANE_8_MARGINING_LANE_CNTL__LANE_8_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_RC_LANE_8_MARGINING_LANE_CNTL__LANE_8_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_RC_LANE_8_MARGINING_LANE_CNTL__LANE_8_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_RC_LANE_8_MARGINING_LANE_CNTL__LANE_8_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_RC_LANE_8_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_RC_LANE_8_MARGINING_LANE_STATUS__LANE_8_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_8_MARGINING_LANE_STATUS__LANE_8_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_LANE_8_MARGINING_LANE_STATUS__LANE_8_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_LANE_8_MARGINING_LANE_STATUS__LANE_8_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_LANE_8_MARGINING_LANE_STATUS__LANE_8_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_RC_LANE_8_MARGINING_LANE_STATUS__LANE_8_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_RC_LANE_8_MARGINING_LANE_STATUS__LANE_8_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_RC_LANE_8_MARGINING_LANE_STATUS__LANE_8_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_RC_LANE_9_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_RC_LANE_9_MARGINING_LANE_CNTL__LANE_9_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_9_MARGINING_LANE_CNTL__LANE_9_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_LANE_9_MARGINING_LANE_CNTL__LANE_9_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_LANE_9_MARGINING_LANE_CNTL__LANE_9_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_LANE_9_MARGINING_LANE_CNTL__LANE_9_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_RC_LANE_9_MARGINING_LANE_CNTL__LANE_9_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_RC_LANE_9_MARGINING_LANE_CNTL__LANE_9_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_RC_LANE_9_MARGINING_LANE_CNTL__LANE_9_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_RC_LANE_9_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_RC_LANE_9_MARGINING_LANE_STATUS__LANE_9_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_9_MARGINING_LANE_STATUS__LANE_9_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_LANE_9_MARGINING_LANE_STATUS__LANE_9_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_LANE_9_MARGINING_LANE_STATUS__LANE_9_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_LANE_9_MARGINING_LANE_STATUS__LANE_9_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_RC_LANE_9_MARGINING_LANE_STATUS__LANE_9_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_RC_LANE_9_MARGINING_LANE_STATUS__LANE_9_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_RC_LANE_9_MARGINING_LANE_STATUS__LANE_9_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_RC_LANE_10_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_RC_LANE_10_MARGINING_LANE_CNTL__LANE_10_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_10_MARGINING_LANE_CNTL__LANE_10_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_LANE_10_MARGINING_LANE_CNTL__LANE_10_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_LANE_10_MARGINING_LANE_CNTL__LANE_10_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_LANE_10_MARGINING_LANE_CNTL__LANE_10_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_RC_LANE_10_MARGINING_LANE_CNTL__LANE_10_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_RC_LANE_10_MARGINING_LANE_CNTL__LANE_10_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_RC_LANE_10_MARGINING_LANE_CNTL__LANE_10_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_RC_LANE_10_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_RC_LANE_10_MARGINING_LANE_STATUS__LANE_10_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_10_MARGINING_LANE_STATUS__LANE_10_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_LANE_10_MARGINING_LANE_STATUS__LANE_10_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_LANE_10_MARGINING_LANE_STATUS__LANE_10_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_LANE_10_MARGINING_LANE_STATUS__LANE_10_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_RC_LANE_10_MARGINING_LANE_STATUS__LANE_10_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_RC_LANE_10_MARGINING_LANE_STATUS__LANE_10_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_RC_LANE_10_MARGINING_LANE_STATUS__LANE_10_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_RC_LANE_11_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_RC_LANE_11_MARGINING_LANE_CNTL__LANE_11_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_11_MARGINING_LANE_CNTL__LANE_11_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_LANE_11_MARGINING_LANE_CNTL__LANE_11_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_LANE_11_MARGINING_LANE_CNTL__LANE_11_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_LANE_11_MARGINING_LANE_CNTL__LANE_11_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_RC_LANE_11_MARGINING_LANE_CNTL__LANE_11_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_RC_LANE_11_MARGINING_LANE_CNTL__LANE_11_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_RC_LANE_11_MARGINING_LANE_CNTL__LANE_11_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_RC_LANE_11_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_RC_LANE_11_MARGINING_LANE_STATUS__LANE_11_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_11_MARGINING_LANE_STATUS__LANE_11_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_LANE_11_MARGINING_LANE_STATUS__LANE_11_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_LANE_11_MARGINING_LANE_STATUS__LANE_11_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_LANE_11_MARGINING_LANE_STATUS__LANE_11_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_RC_LANE_11_MARGINING_LANE_STATUS__LANE_11_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_RC_LANE_11_MARGINING_LANE_STATUS__LANE_11_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_RC_LANE_11_MARGINING_LANE_STATUS__LANE_11_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_RC_LANE_12_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_RC_LANE_12_MARGINING_LANE_CNTL__LANE_12_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_12_MARGINING_LANE_CNTL__LANE_12_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_LANE_12_MARGINING_LANE_CNTL__LANE_12_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_LANE_12_MARGINING_LANE_CNTL__LANE_12_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_LANE_12_MARGINING_LANE_CNTL__LANE_12_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_RC_LANE_12_MARGINING_LANE_CNTL__LANE_12_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_RC_LANE_12_MARGINING_LANE_CNTL__LANE_12_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_RC_LANE_12_MARGINING_LANE_CNTL__LANE_12_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_RC_LANE_12_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_RC_LANE_12_MARGINING_LANE_STATUS__LANE_12_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_12_MARGINING_LANE_STATUS__LANE_12_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_LANE_12_MARGINING_LANE_STATUS__LANE_12_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_LANE_12_MARGINING_LANE_STATUS__LANE_12_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_LANE_12_MARGINING_LANE_STATUS__LANE_12_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_RC_LANE_12_MARGINING_LANE_STATUS__LANE_12_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_RC_LANE_12_MARGINING_LANE_STATUS__LANE_12_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_RC_LANE_12_MARGINING_LANE_STATUS__LANE_12_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_RC_LANE_13_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_RC_LANE_13_MARGINING_LANE_CNTL__LANE_13_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_13_MARGINING_LANE_CNTL__LANE_13_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_LANE_13_MARGINING_LANE_CNTL__LANE_13_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_LANE_13_MARGINING_LANE_CNTL__LANE_13_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_LANE_13_MARGINING_LANE_CNTL__LANE_13_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_RC_LANE_13_MARGINING_LANE_CNTL__LANE_13_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_RC_LANE_13_MARGINING_LANE_CNTL__LANE_13_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_RC_LANE_13_MARGINING_LANE_CNTL__LANE_13_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_RC_LANE_13_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_RC_LANE_13_MARGINING_LANE_STATUS__LANE_13_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_13_MARGINING_LANE_STATUS__LANE_13_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_LANE_13_MARGINING_LANE_STATUS__LANE_13_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_LANE_13_MARGINING_LANE_STATUS__LANE_13_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_LANE_13_MARGINING_LANE_STATUS__LANE_13_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_RC_LANE_13_MARGINING_LANE_STATUS__LANE_13_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_RC_LANE_13_MARGINING_LANE_STATUS__LANE_13_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_RC_LANE_13_MARGINING_LANE_STATUS__LANE_13_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_RC_LANE_14_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_RC_LANE_14_MARGINING_LANE_CNTL__LANE_14_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_14_MARGINING_LANE_CNTL__LANE_14_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_LANE_14_MARGINING_LANE_CNTL__LANE_14_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_LANE_14_MARGINING_LANE_CNTL__LANE_14_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_LANE_14_MARGINING_LANE_CNTL__LANE_14_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_RC_LANE_14_MARGINING_LANE_CNTL__LANE_14_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_RC_LANE_14_MARGINING_LANE_CNTL__LANE_14_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_RC_LANE_14_MARGINING_LANE_CNTL__LANE_14_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_RC_LANE_14_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_RC_LANE_14_MARGINING_LANE_STATUS__LANE_14_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_14_MARGINING_LANE_STATUS__LANE_14_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_LANE_14_MARGINING_LANE_STATUS__LANE_14_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_LANE_14_MARGINING_LANE_STATUS__LANE_14_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_LANE_14_MARGINING_LANE_STATUS__LANE_14_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_RC_LANE_14_MARGINING_LANE_STATUS__LANE_14_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_RC_LANE_14_MARGINING_LANE_STATUS__LANE_14_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_RC_LANE_14_MARGINING_LANE_STATUS__LANE_14_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_RC_LANE_15_MARGINING_LANE_CNTL
+#define BIF_CFG_DEV0_RC_LANE_15_MARGINING_LANE_CNTL__LANE_15_RECEIVER_NUMBER__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_15_MARGINING_LANE_CNTL__LANE_15_MARGIN_TYPE__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_LANE_15_MARGINING_LANE_CNTL__LANE_15_USAGE_MODEL__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_LANE_15_MARGINING_LANE_CNTL__LANE_15_MARGIN_PAYLOAD__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_LANE_15_MARGINING_LANE_CNTL__LANE_15_RECEIVER_NUMBER_MASK 0x0007L
+#define BIF_CFG_DEV0_RC_LANE_15_MARGINING_LANE_CNTL__LANE_15_MARGIN_TYPE_MASK 0x0038L
+#define BIF_CFG_DEV0_RC_LANE_15_MARGINING_LANE_CNTL__LANE_15_USAGE_MODEL_MASK 0x0040L
+#define BIF_CFG_DEV0_RC_LANE_15_MARGINING_LANE_CNTL__LANE_15_MARGIN_PAYLOAD_MASK 0xFF00L
+//BIF_CFG_DEV0_RC_LANE_15_MARGINING_LANE_STATUS
+#define BIF_CFG_DEV0_RC_LANE_15_MARGINING_LANE_STATUS__LANE_15_RECEIVER_NUMBER_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LANE_15_MARGINING_LANE_STATUS__LANE_15_MARGIN_TYPE_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_LANE_15_MARGINING_LANE_STATUS__LANE_15_USAGE_MODEL_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_LANE_15_MARGINING_LANE_STATUS__LANE_15_MARGIN_PAYLOAD_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_LANE_15_MARGINING_LANE_STATUS__LANE_15_RECEIVER_NUMBER_STATUS_MASK 0x0007L
+#define BIF_CFG_DEV0_RC_LANE_15_MARGINING_LANE_STATUS__LANE_15_MARGIN_TYPE_STATUS_MASK 0x0038L
+#define BIF_CFG_DEV0_RC_LANE_15_MARGINING_LANE_STATUS__LANE_15_USAGE_MODEL_STATUS_MASK 0x0040L
+#define BIF_CFG_DEV0_RC_LANE_15_MARGINING_LANE_STATUS__LANE_15_MARGIN_PAYLOAD_STATUS_MASK 0xFF00L
+//BIF_CFG_DEV0_RC_LINK_CAP_32GT
+#define BIF_CFG_DEV0_RC_LINK_CAP_32GT__EQ_BYPASS_TO_HIGHEST_RATE_SUPPORTED__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LINK_CAP_32GT__NO_EQ_NEEDED_SUPPORTED__SHIFT 0x1
+#define BIF_CFG_DEV0_RC_LINK_CAP_32GT__MODIFIED_TS_USAGE_MODE0_SUPPORTED__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_LINK_CAP_32GT__MODIFIED_TS_USAGE_MODE1_SUPPORTED__SHIFT 0x9
+#define BIF_CFG_DEV0_RC_LINK_CAP_32GT__MODIFIED_TS_USAGE_MODE2_SUPPORTED__SHIFT 0xa
+#define BIF_CFG_DEV0_RC_LINK_CAP_32GT__MODIFIED_TS_RESERVED_USAGE_MODES__SHIFT 0xb
+#define BIF_CFG_DEV0_RC_LINK_CAP_32GT__EQ_BYPASS_TO_HIGHEST_RATE_SUPPORTED_MASK 0x00000001L
+#define BIF_CFG_DEV0_RC_LINK_CAP_32GT__NO_EQ_NEEDED_SUPPORTED_MASK 0x00000002L
+#define BIF_CFG_DEV0_RC_LINK_CAP_32GT__MODIFIED_TS_USAGE_MODE0_SUPPORTED_MASK 0x00000100L
+#define BIF_CFG_DEV0_RC_LINK_CAP_32GT__MODIFIED_TS_USAGE_MODE1_SUPPORTED_MASK 0x00000200L
+#define BIF_CFG_DEV0_RC_LINK_CAP_32GT__MODIFIED_TS_USAGE_MODE2_SUPPORTED_MASK 0x00000400L
+#define BIF_CFG_DEV0_RC_LINK_CAP_32GT__MODIFIED_TS_RESERVED_USAGE_MODES_MASK 0x0000F800L
+//BIF_CFG_DEV0_RC_LINK_CNTL_32GT
+#define BIF_CFG_DEV0_RC_LINK_CNTL_32GT__EQ_BYPASS_TO_HIGHEST_RATE_DIS__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LINK_CNTL_32GT__NO_EQ_NEEDED_DIS__SHIFT 0x1
+#define BIF_CFG_DEV0_RC_LINK_CNTL_32GT__MODIFIED_TS_USAGE_MODE_SEL__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_LINK_CNTL_32GT__EQ_BYPASS_TO_HIGHEST_RATE_DIS_MASK 0x00000001L
+#define BIF_CFG_DEV0_RC_LINK_CNTL_32GT__NO_EQ_NEEDED_DIS_MASK 0x00000002L
+#define BIF_CFG_DEV0_RC_LINK_CNTL_32GT__MODIFIED_TS_USAGE_MODE_SEL_MASK 0x00000700L
+//BIF_CFG_DEV0_RC_LINK_STATUS_32GT
+#define BIF_CFG_DEV0_RC_LINK_STATUS_32GT__EQUALIZATION_COMPLETE_32GT__SHIFT 0x0
+#define BIF_CFG_DEV0_RC_LINK_STATUS_32GT__EQUALIZATION_PHASE1_SUCCESS_32GT__SHIFT 0x1
+#define BIF_CFG_DEV0_RC_LINK_STATUS_32GT__EQUALIZATION_PHASE2_SUCCESS_32GT__SHIFT 0x2
+#define BIF_CFG_DEV0_RC_LINK_STATUS_32GT__EQUALIZATION_PHASE3_SUCCESS_32GT__SHIFT 0x3
+#define BIF_CFG_DEV0_RC_LINK_STATUS_32GT__LINK_EQUALIZATION_REQUEST_32GT__SHIFT 0x4
+#define BIF_CFG_DEV0_RC_LINK_STATUS_32GT__MODIFIED_TS_RECEIVED__SHIFT 0x5
+#define BIF_CFG_DEV0_RC_LINK_STATUS_32GT__RECEIVED_ENHANCED_LINK_BEHAVIOR_CNTL__SHIFT 0x6
+#define BIF_CFG_DEV0_RC_LINK_STATUS_32GT__TRANSMITTER_PRECODING_ON__SHIFT 0x8
+#define BIF_CFG_DEV0_RC_LINK_STATUS_32GT__TRANSMITTER_PRECODE_REQUEST__SHIFT 0x9
+#define BIF_CFG_DEV0_RC_LINK_STATUS_32GT__NO_EQ_NEEDED_RECEIVED__SHIFT 0xa
+#define BIF_CFG_DEV0_RC_LINK_STATUS_32GT__EQUALIZATION_COMPLETE_32GT_MASK 0x00000001L
+#define BIF_CFG_DEV0_RC_LINK_STATUS_32GT__EQUALIZATION_PHASE1_SUCCESS_32GT_MASK 0x00000002L
+#define BIF_CFG_DEV0_RC_LINK_STATUS_32GT__EQUALIZATION_PHASE2_SUCCESS_32GT_MASK 0x00000004L
+#define BIF_CFG_DEV0_RC_LINK_STATUS_32GT__EQUALIZATION_PHASE3_SUCCESS_32GT_MASK 0x00000008L
+#define BIF_CFG_DEV0_RC_LINK_STATUS_32GT__LINK_EQUALIZATION_REQUEST_32GT_MASK 0x00000010L
+#define BIF_CFG_DEV0_RC_LINK_STATUS_32GT__MODIFIED_TS_RECEIVED_MASK 0x00000020L
+#define BIF_CFG_DEV0_RC_LINK_STATUS_32GT__RECEIVED_ENHANCED_LINK_BEHAVIOR_CNTL_MASK 0x000000C0L
+#define BIF_CFG_DEV0_RC_LINK_STATUS_32GT__TRANSMITTER_PRECODING_ON_MASK 0x00000100L
+#define BIF_CFG_DEV0_RC_LINK_STATUS_32GT__TRANSMITTER_PRECODE_REQUEST_MASK 0x00000200L
+#define BIF_CFG_DEV0_RC_LINK_STATUS_32GT__NO_EQ_NEEDED_RECEIVED_MASK 0x00000400L
+
+
+// addressBlock: aid_nbio_nbif0_bif_cfg_dev0_epf0_vf0_bifcfgdecp
+//BIF_CFG_DEV0_EPF0_VF0_VENDOR_ID
+#define BIF_CFG_DEV0_EPF0_VF0_VENDOR_ID__VENDOR_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_VENDOR_ID__VENDOR_ID_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF0_DEVICE_ID
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_ID__DEVICE_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_ID__DEVICE_ID_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF0_COMMAND
+#define BIF_CFG_DEV0_EPF0_VF0_COMMAND__IO_ACCESS_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_COMMAND__MEM_ACCESS_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF0_COMMAND__BUS_MASTER_EN__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF0_COMMAND__SPECIAL_CYCLE_EN__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF0_COMMAND__MEM_WRITE_INVALIDATE_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF0_COMMAND__PAL_SNOOP_EN__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF0_COMMAND__PARITY_ERROR_RESPONSE__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF0_COMMAND__AD_STEPPING__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF0_COMMAND__SERR_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF0_COMMAND__FAST_B2B_EN__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF0_COMMAND__INT_DIS__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF0_COMMAND__IO_ACCESS_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF0_COMMAND__MEM_ACCESS_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF0_COMMAND__BUS_MASTER_EN_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_VF0_COMMAND__SPECIAL_CYCLE_EN_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF0_COMMAND__MEM_WRITE_INVALIDATE_EN_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF0_COMMAND__PAL_SNOOP_EN_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF0_COMMAND__PARITY_ERROR_RESPONSE_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF0_COMMAND__AD_STEPPING_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF0_COMMAND__SERR_EN_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF0_COMMAND__FAST_B2B_EN_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_VF0_COMMAND__INT_DIS_MASK 0x0400L
+//BIF_CFG_DEV0_EPF0_VF0_STATUS
+#define BIF_CFG_DEV0_EPF0_VF0_STATUS__IMMEDIATE_READINESS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_STATUS__INT_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF0_STATUS__CAP_LIST__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF0_STATUS__PCI_66_CAP__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF0_STATUS__FAST_BACK_CAPABLE__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF0_STATUS__MASTER_DATA_PARITY_ERROR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF0_STATUS__DEVSEL_TIMING__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF0_STATUS__SIGNAL_TARGET_ABORT__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF0_STATUS__RECEIVED_TARGET_ABORT__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF0_STATUS__RECEIVED_MASTER_ABORT__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF0_STATUS__SIGNALED_SYSTEM_ERROR__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF0_STATUS__PARITY_ERROR_DETECTED__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF0_STATUS__IMMEDIATE_READINESS_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF0_STATUS__INT_STATUS_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF0_STATUS__CAP_LIST_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF0_STATUS__PCI_66_CAP_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF0_STATUS__FAST_BACK_CAPABLE_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF0_STATUS__MASTER_DATA_PARITY_ERROR_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF0_STATUS__DEVSEL_TIMING_MASK 0x0600L
+#define BIF_CFG_DEV0_EPF0_VF0_STATUS__SIGNAL_TARGET_ABORT_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF0_STATUS__RECEIVED_TARGET_ABORT_MASK 0x1000L
+#define BIF_CFG_DEV0_EPF0_VF0_STATUS__RECEIVED_MASTER_ABORT_MASK 0x2000L
+#define BIF_CFG_DEV0_EPF0_VF0_STATUS__SIGNALED_SYSTEM_ERROR_MASK 0x4000L
+#define BIF_CFG_DEV0_EPF0_VF0_STATUS__PARITY_ERROR_DETECTED_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF0_REVISION_ID
+#define BIF_CFG_DEV0_EPF0_VF0_REVISION_ID__MINOR_REV_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_REVISION_ID__MAJOR_REV_ID__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF0_REVISION_ID__MINOR_REV_ID_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_VF0_REVISION_ID__MAJOR_REV_ID_MASK 0xF0L
+//BIF_CFG_DEV0_EPF0_VF0_PROG_INTERFACE
+#define BIF_CFG_DEV0_EPF0_VF0_PROG_INTERFACE__PROG_INTERFACE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_PROG_INTERFACE__PROG_INTERFACE_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF0_SUB_CLASS
+#define BIF_CFG_DEV0_EPF0_VF0_SUB_CLASS__SUB_CLASS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_SUB_CLASS__SUB_CLASS_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF0_BASE_CLASS
+#define BIF_CFG_DEV0_EPF0_VF0_BASE_CLASS__BASE_CLASS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_BASE_CLASS__BASE_CLASS_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF0_CACHE_LINE
+#define BIF_CFG_DEV0_EPF0_VF0_CACHE_LINE__CACHE_LINE_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_CACHE_LINE__CACHE_LINE_SIZE_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF0_LATENCY
+#define BIF_CFG_DEV0_EPF0_VF0_LATENCY__LATENCY_TIMER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_LATENCY__LATENCY_TIMER_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF0_HEADER
+#define BIF_CFG_DEV0_EPF0_VF0_HEADER__HEADER_TYPE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_HEADER__DEVICE_TYPE__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF0_HEADER__HEADER_TYPE_MASK 0x7FL
+#define BIF_CFG_DEV0_EPF0_VF0_HEADER__DEVICE_TYPE_MASK 0x80L
+//BIF_CFG_DEV0_EPF0_VF0_BIST
+#define BIF_CFG_DEV0_EPF0_VF0_BIST__BIST_COMP__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_BIST__BIST_STRT__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF0_BIST__BIST_CAP__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF0_BIST__BIST_COMP_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_VF0_BIST__BIST_STRT_MASK 0x40L
+#define BIF_CFG_DEV0_EPF0_VF0_BIST__BIST_CAP_MASK 0x80L
+//BIF_CFG_DEV0_EPF0_VF0_BASE_ADDR_1
+#define BIF_CFG_DEV0_EPF0_VF0_BASE_ADDR_1__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_BASE_ADDR_1__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF0_BASE_ADDR_2
+#define BIF_CFG_DEV0_EPF0_VF0_BASE_ADDR_2__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_BASE_ADDR_2__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF0_BASE_ADDR_3
+#define BIF_CFG_DEV0_EPF0_VF0_BASE_ADDR_3__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_BASE_ADDR_3__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF0_BASE_ADDR_4
+#define BIF_CFG_DEV0_EPF0_VF0_BASE_ADDR_4__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_BASE_ADDR_4__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF0_BASE_ADDR_5
+#define BIF_CFG_DEV0_EPF0_VF0_BASE_ADDR_5__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_BASE_ADDR_5__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF0_BASE_ADDR_6
+#define BIF_CFG_DEV0_EPF0_VF0_BASE_ADDR_6__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_BASE_ADDR_6__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF0_CARDBUS_CIS_PTR
+#define BIF_CFG_DEV0_EPF0_VF0_CARDBUS_CIS_PTR__CARDBUS_CIS_PTR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_CARDBUS_CIS_PTR__CARDBUS_CIS_PTR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF0_ADAPTER_ID
+#define BIF_CFG_DEV0_EPF0_VF0_ADAPTER_ID__SUBSYSTEM_VENDOR_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_ADAPTER_ID__SUBSYSTEM_ID__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF0_ADAPTER_ID__SUBSYSTEM_VENDOR_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF0_ADAPTER_ID__SUBSYSTEM_ID_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_VF0_ROM_BASE_ADDR
+#define BIF_CFG_DEV0_EPF0_VF0_ROM_BASE_ADDR__ROM_ENABLE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_ROM_BASE_ADDR__ROM_VALIDATION_STATUS__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF0_ROM_BASE_ADDR__ROM_VALIDATION_DETAILS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF0_ROM_BASE_ADDR__BASE_ADDR__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF0_ROM_BASE_ADDR__ROM_ENABLE_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_VF0_ROM_BASE_ADDR__ROM_VALIDATION_STATUS_MASK 0x0000000EL
+#define BIF_CFG_DEV0_EPF0_VF0_ROM_BASE_ADDR__ROM_VALIDATION_DETAILS_MASK 0x000000F0L
+#define BIF_CFG_DEV0_EPF0_VF0_ROM_BASE_ADDR__BASE_ADDR_MASK 0xFFFFF800L
+//BIF_CFG_DEV0_EPF0_VF0_CAP_PTR
+#define BIF_CFG_DEV0_EPF0_VF0_CAP_PTR__CAP_PTR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_CAP_PTR__CAP_PTR_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF0_INTERRUPT_LINE
+#define BIF_CFG_DEV0_EPF0_VF0_INTERRUPT_LINE__INTERRUPT_LINE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_INTERRUPT_LINE__INTERRUPT_LINE_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF0_INTERRUPT_PIN
+#define BIF_CFG_DEV0_EPF0_VF0_INTERRUPT_PIN__INTERRUPT_PIN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_INTERRUPT_PIN__INTERRUPT_PIN_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF0_MIN_GRANT
+#define BIF_CFG_DEV0_EPF0_VF0_MIN_GRANT__MIN_GNT__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_MIN_GRANT__MIN_GNT_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF0_MAX_LATENCY
+#define BIF_CFG_DEV0_EPF0_VF0_MAX_LATENCY__MAX_LAT__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_MAX_LATENCY__MAX_LAT_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF0_PCIE_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_VF0_PCIE_CAP
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_CAP__VERSION__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_CAP__DEVICE_TYPE__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_CAP__SLOT_IMPLEMENTED__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_CAP__INT_MESSAGE_NUM__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_CAP__VERSION_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_CAP__DEVICE_TYPE_MASK 0x00F0L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_CAP__SLOT_IMPLEMENTED_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_CAP__INT_MESSAGE_NUM_MASK 0x3E00L
+//BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP__MAX_PAYLOAD_SUPPORT__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP__PHANTOM_FUNC__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP__EXTENDED_TAG__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP__L0S_ACCEPTABLE_LATENCY__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP__L1_ACCEPTABLE_LATENCY__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP__ROLE_BASED_ERR_REPORTING__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP__ERR_COR_SUBCLASS_CAPABLE__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP__CAPTURED_SLOT_POWER_LIMIT__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP__CAPTURED_SLOT_POWER_SCALE__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP__FLR_CAPABLE__SHIFT 0x1c
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP__MAX_PAYLOAD_SUPPORT_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP__PHANTOM_FUNC_MASK 0x00000018L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP__EXTENDED_TAG_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP__L0S_ACCEPTABLE_LATENCY_MASK 0x000001C0L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP__L1_ACCEPTABLE_LATENCY_MASK 0x00000E00L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP__ROLE_BASED_ERR_REPORTING_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP__ERR_COR_SUBCLASS_CAPABLE_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP__CAPTURED_SLOT_POWER_LIMIT_MASK 0x03FC0000L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP__CAPTURED_SLOT_POWER_SCALE_MASK 0x0C000000L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP__FLR_CAPABLE_MASK 0x10000000L
+//BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL__CORR_ERR_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL__NON_FATAL_ERR_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL__FATAL_ERR_EN__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL__USR_REPORT_EN__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL__RELAXED_ORD_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL__MAX_PAYLOAD_SIZE__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL__EXTENDED_TAG_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL__PHANTOM_FUNC_EN__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL__AUX_POWER_PM_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL__NO_SNOOP_EN__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL__MAX_READ_REQUEST_SIZE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL__INITIATE_FLR__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL__CORR_ERR_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL__NON_FATAL_ERR_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL__FATAL_ERR_EN_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL__USR_REPORT_EN_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL__RELAXED_ORD_EN_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL__MAX_PAYLOAD_SIZE_MASK 0x00E0L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL__EXTENDED_TAG_EN_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL__PHANTOM_FUNC_EN_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL__AUX_POWER_PM_EN_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL__NO_SNOOP_EN_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL__MAX_READ_REQUEST_SIZE_MASK 0x7000L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL__INITIATE_FLR_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF0_DEVICE_STATUS
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_STATUS__CORR_ERR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_STATUS__NON_FATAL_ERR__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_STATUS__FATAL_ERR__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_STATUS__USR_DETECTED__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_STATUS__AUX_PWR__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_STATUS__TRANSACTIONS_PEND__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_STATUS__EMER_POWER_REDUCTION_DETECTED__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_STATUS__CORR_ERR_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_STATUS__NON_FATAL_ERR_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_STATUS__FATAL_ERR_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_STATUS__USR_DETECTED_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_STATUS__AUX_PWR_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_STATUS__TRANSACTIONS_PEND_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_STATUS__EMER_POWER_REDUCTION_DETECTED_MASK 0x0040L
+//BIF_CFG_DEV0_EPF0_VF0_LINK_CAP
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CAP__LINK_SPEED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CAP__LINK_WIDTH__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CAP__PM_SUPPORT__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CAP__L0S_EXIT_LATENCY__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CAP__L1_EXIT_LATENCY__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CAP__CLOCK_POWER_MANAGEMENT__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CAP__SURPRISE_DOWN_ERR_REPORTING__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CAP__DL_ACTIVE_REPORTING_CAPABLE__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CAP__LINK_BW_NOTIFICATION_CAP__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CAP__ASPM_OPTIONALITY_COMPLIANCE__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CAP__PORT_NUMBER__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CAP__LINK_SPEED_MASK 0x0000000FL
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CAP__LINK_WIDTH_MASK 0x000003F0L
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CAP__PM_SUPPORT_MASK 0x00000C00L
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CAP__L0S_EXIT_LATENCY_MASK 0x00007000L
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CAP__L1_EXIT_LATENCY_MASK 0x00038000L
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CAP__CLOCK_POWER_MANAGEMENT_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CAP__SURPRISE_DOWN_ERR_REPORTING_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CAP__DL_ACTIVE_REPORTING_CAPABLE_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CAP__LINK_BW_NOTIFICATION_CAP_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CAP__ASPM_OPTIONALITY_COMPLIANCE_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CAP__PORT_NUMBER_MASK 0xFF000000L
+//BIF_CFG_DEV0_EPF0_VF0_LINK_CNTL
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CNTL__PM_CONTROL__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CNTL__PTM_PROP_DELAY_ADAPT_INTER_B__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CNTL__READ_CPL_BOUNDARY__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CNTL__LINK_DIS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CNTL__RETRAIN_LINK__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CNTL__COMMON_CLOCK_CFG__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CNTL__EXTENDED_SYNC__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CNTL__CLOCK_POWER_MANAGEMENT_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CNTL__HW_AUTONOMOUS_WIDTH_DISABLE__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CNTL__LINK_BW_MANAGEMENT_INT_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CNTL__LINK_AUTONOMOUS_BW_INT_EN__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CNTL__DRS_SIGNALING_CONTROL__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CNTL__PM_CONTROL_MASK 0x0003L
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CNTL__PTM_PROP_DELAY_ADAPT_INTER_B_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CNTL__READ_CPL_BOUNDARY_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CNTL__LINK_DIS_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CNTL__RETRAIN_LINK_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CNTL__COMMON_CLOCK_CFG_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CNTL__EXTENDED_SYNC_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CNTL__CLOCK_POWER_MANAGEMENT_EN_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CNTL__HW_AUTONOMOUS_WIDTH_DISABLE_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CNTL__LINK_BW_MANAGEMENT_INT_EN_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CNTL__LINK_AUTONOMOUS_BW_INT_EN_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CNTL__DRS_SIGNALING_CONTROL_MASK 0xC000L
+//BIF_CFG_DEV0_EPF0_VF0_LINK_STATUS
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_STATUS__CURRENT_LINK_SPEED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_STATUS__NEGOTIATED_LINK_WIDTH__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_STATUS__LINK_TRAINING__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_STATUS__SLOT_CLOCK_CFG__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_STATUS__DL_ACTIVE__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_STATUS__LINK_BW_MANAGEMENT_STATUS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_STATUS__LINK_AUTONOMOUS_BW_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_STATUS__CURRENT_LINK_SPEED_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_STATUS__NEGOTIATED_LINK_WIDTH_MASK 0x03F0L
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_STATUS__LINK_TRAINING_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_STATUS__SLOT_CLOCK_CFG_MASK 0x1000L
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_STATUS__DL_ACTIVE_MASK 0x2000L
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_STATUS__LINK_BW_MANAGEMENT_STATUS_MASK 0x4000L
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_STATUS__LINK_AUTONOMOUS_BW_STATUS_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP2
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP2__CPL_TIMEOUT_RANGE_SUPPORTED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP2__CPL_TIMEOUT_DIS_SUPPORTED__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP2__ARI_FORWARDING_SUPPORTED__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP2__ATOMICOP_ROUTING_SUPPORTED__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP2__ATOMICOP_32CMPLT_SUPPORTED__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP2__ATOMICOP_64CMPLT_SUPPORTED__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP2__CAS128_CMPLT_SUPPORTED__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP2__NO_RO_ENABLED_P2P_PASSING__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP2__LTR_SUPPORTED__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP2__TPH_CPLR_SUPPORTED__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP2__LN_SYSTEM_CLS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP2__TEN_BIT_TAG_COMPLETER_SUPPORTED__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP2__TEN_BIT_TAG_REQUESTER_SUPPORTED__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP2__OBFF_SUPPORTED__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP2__EXTENDED_FMT_FIELD_SUPPORTED__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP2__END_END_TLP_PREFIX_SUPPORTED__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP2__MAX_END_END_TLP_PREFIXES__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP2__EMER_POWER_REDUCTION_SUPPORTED__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP2__EMER_POWER_REDUCTION_INIT_REQ__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP2__FRS_SUPPORTED__SHIFT 0x1f
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP2__CPL_TIMEOUT_RANGE_SUPPORTED_MASK 0x0000000FL
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP2__CPL_TIMEOUT_DIS_SUPPORTED_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP2__ARI_FORWARDING_SUPPORTED_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP2__ATOMICOP_ROUTING_SUPPORTED_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP2__ATOMICOP_32CMPLT_SUPPORTED_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP2__ATOMICOP_64CMPLT_SUPPORTED_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP2__CAS128_CMPLT_SUPPORTED_MASK 0x00000200L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP2__NO_RO_ENABLED_P2P_PASSING_MASK 0x00000400L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP2__LTR_SUPPORTED_MASK 0x00000800L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP2__TPH_CPLR_SUPPORTED_MASK 0x00003000L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP2__LN_SYSTEM_CLS_MASK 0x0000C000L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP2__TEN_BIT_TAG_COMPLETER_SUPPORTED_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP2__TEN_BIT_TAG_REQUESTER_SUPPORTED_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP2__OBFF_SUPPORTED_MASK 0x000C0000L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP2__EXTENDED_FMT_FIELD_SUPPORTED_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP2__END_END_TLP_PREFIX_SUPPORTED_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP2__MAX_END_END_TLP_PREFIXES_MASK 0x00C00000L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP2__EMER_POWER_REDUCTION_SUPPORTED_MASK 0x03000000L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP2__EMER_POWER_REDUCTION_INIT_REQ_MASK 0x04000000L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CAP2__FRS_SUPPORTED_MASK 0x80000000L
+//BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL2
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL2__CPL_TIMEOUT_VALUE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL2__CPL_TIMEOUT_DIS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL2__ARI_FORWARDING_EN__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL2__ATOMICOP_REQUEST_EN__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL2__ATOMICOP_EGRESS_BLOCKING__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL2__IDO_REQUEST_ENABLE__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL2__IDO_COMPLETION_ENABLE__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL2__LTR_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL2__EMER_POWER_REDUCTION_REQUEST__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL2__TEN_BIT_TAG_REQUESTER_ENABLE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL2__OBFF_EN__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL2__END_END_TLP_PREFIX_BLOCKING__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL2__CPL_TIMEOUT_VALUE_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL2__CPL_TIMEOUT_DIS_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL2__ARI_FORWARDING_EN_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL2__ATOMICOP_REQUEST_EN_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL2__ATOMICOP_EGRESS_BLOCKING_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL2__IDO_REQUEST_ENABLE_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL2__IDO_COMPLETION_ENABLE_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL2__LTR_EN_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL2__EMER_POWER_REDUCTION_REQUEST_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL2__TEN_BIT_TAG_REQUESTER_ENABLE_MASK 0x1000L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL2__OBFF_EN_MASK 0x6000L
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_CNTL2__END_END_TLP_PREFIX_BLOCKING_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF0_DEVICE_STATUS2
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_STATUS2__RESERVED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_DEVICE_STATUS2__RESERVED_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF0_LINK_CAP2
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CAP2__SUPPORTED_LINK_SPEED__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CAP2__CROSSLINK_SUPPORTED__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CAP2__LOWER_SKP_OS_GEN_SUPPORT__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CAP2__LOWER_SKP_OS_RCV_SUPPORT__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CAP2__RTM1_PRESENCE_DET_SUPPORT__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CAP2__RTM2_PRESENCE_DET_SUPPORT__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CAP2__DRS_SUPPORTED__SHIFT 0x1f
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CAP2__SUPPORTED_LINK_SPEED_MASK 0x000000FEL
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CAP2__CROSSLINK_SUPPORTED_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CAP2__LOWER_SKP_OS_GEN_SUPPORT_MASK 0x0000FE00L
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CAP2__LOWER_SKP_OS_RCV_SUPPORT_MASK 0x007F0000L
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CAP2__RTM1_PRESENCE_DET_SUPPORT_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CAP2__RTM2_PRESENCE_DET_SUPPORT_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CAP2__DRS_SUPPORTED_MASK 0x80000000L
+//BIF_CFG_DEV0_EPF0_VF0_LINK_CNTL2
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CNTL2__TARGET_LINK_SPEED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CNTL2__ENTER_COMPLIANCE__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CNTL2__HW_AUTONOMOUS_SPEED_DISABLE__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CNTL2__SELECTABLE_DEEMPHASIS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CNTL2__XMIT_MARGIN__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CNTL2__ENTER_MOD_COMPLIANCE__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CNTL2__COMPLIANCE_SOS__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CNTL2__COMPLIANCE_DEEMPHASIS__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CNTL2__TARGET_LINK_SPEED_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CNTL2__ENTER_COMPLIANCE_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CNTL2__HW_AUTONOMOUS_SPEED_DISABLE_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CNTL2__SELECTABLE_DEEMPHASIS_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CNTL2__XMIT_MARGIN_MASK 0x0380L
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CNTL2__ENTER_MOD_COMPLIANCE_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CNTL2__COMPLIANCE_SOS_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_CNTL2__COMPLIANCE_DEEMPHASIS_MASK 0xF000L
+//BIF_CFG_DEV0_EPF0_VF0_LINK_STATUS2
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_STATUS2__CUR_DEEMPHASIS_LEVEL__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_STATUS2__EQUALIZATION_COMPLETE_8GT__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_STATUS2__EQUALIZATION_PHASE1_SUCCESS_8GT__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_STATUS2__EQUALIZATION_PHASE2_SUCCESS_8GT__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_STATUS2__EQUALIZATION_PHASE3_SUCCESS_8GT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_STATUS2__LINK_EQUALIZATION_REQUEST_8GT__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_STATUS2__RTM1_PRESENCE_DET__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_STATUS2__RTM2_PRESENCE_DET__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_STATUS2__CROSSLINK_RESOLUTION__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_STATUS2__DOWNSTREAM_COMPONENT_PRESENCE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_STATUS2__DRS_MESSAGE_RECEIVED__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_STATUS2__CUR_DEEMPHASIS_LEVEL_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_STATUS2__EQUALIZATION_COMPLETE_8GT_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_STATUS2__EQUALIZATION_PHASE1_SUCCESS_8GT_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_STATUS2__EQUALIZATION_PHASE2_SUCCESS_8GT_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_STATUS2__EQUALIZATION_PHASE3_SUCCESS_8GT_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_STATUS2__LINK_EQUALIZATION_REQUEST_8GT_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_STATUS2__RTM1_PRESENCE_DET_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_STATUS2__RTM2_PRESENCE_DET_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_STATUS2__CROSSLINK_RESOLUTION_MASK 0x0300L
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_STATUS2__DOWNSTREAM_COMPONENT_PRESENCE_MASK 0x7000L
+#define BIF_CFG_DEV0_EPF0_VF0_LINK_STATUS2__DRS_MESSAGE_RECEIVED_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF0_MSI_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF0_MSI_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_MSI_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF0_MSI_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_EPF0_VF0_MSI_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_VF0_MSI_MSG_CNTL
+#define BIF_CFG_DEV0_EPF0_VF0_MSI_MSG_CNTL__MSI_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_MSI_MSG_CNTL__MSI_MULTI_CAP__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF0_MSI_MSG_CNTL__MSI_MULTI_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF0_MSI_MSG_CNTL__MSI_64BIT__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF0_MSI_MSG_CNTL__MSI_PERVECTOR_MASKING_CAP__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF0_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_CAP__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF0_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF0_MSI_MSG_CNTL__MSI_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF0_MSI_MSG_CNTL__MSI_MULTI_CAP_MASK 0x000EL
+#define BIF_CFG_DEV0_EPF0_VF0_MSI_MSG_CNTL__MSI_MULTI_EN_MASK 0x0070L
+#define BIF_CFG_DEV0_EPF0_VF0_MSI_MSG_CNTL__MSI_64BIT_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF0_MSI_MSG_CNTL__MSI_PERVECTOR_MASKING_CAP_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF0_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_CAP_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_VF0_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_EN_MASK 0x0400L
+//BIF_CFG_DEV0_EPF0_VF0_MSI_MSG_ADDR_LO
+#define BIF_CFG_DEV0_EPF0_VF0_MSI_MSG_ADDR_LO__MSI_MSG_ADDR_LO__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF0_MSI_MSG_ADDR_LO__MSI_MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//BIF_CFG_DEV0_EPF0_VF0_MSI_MSG_ADDR_HI
+#define BIF_CFG_DEV0_EPF0_VF0_MSI_MSG_ADDR_HI__MSI_MSG_ADDR_HI__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_MSI_MSG_ADDR_HI__MSI_MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF0_MSI_MSG_DATA
+#define BIF_CFG_DEV0_EPF0_VF0_MSI_MSG_DATA__MSI_DATA__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_MSI_MSG_DATA__MSI_DATA_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF0_MSI_EXT_MSG_DATA
+#define BIF_CFG_DEV0_EPF0_VF0_MSI_EXT_MSG_DATA__MSI_EXT_DATA__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_MSI_EXT_MSG_DATA__MSI_EXT_DATA_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF0_MSI_MASK
+#define BIF_CFG_DEV0_EPF0_VF0_MSI_MASK__MSI_MASK__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_MSI_MASK__MSI_MASK_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF0_MSI_MSG_DATA_64
+#define BIF_CFG_DEV0_EPF0_VF0_MSI_MSG_DATA_64__MSI_DATA_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_MSI_MSG_DATA_64__MSI_DATA_64_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF0_MSI_EXT_MSG_DATA_64
+#define BIF_CFG_DEV0_EPF0_VF0_MSI_EXT_MSG_DATA_64__MSI_EXT_DATA_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_MSI_EXT_MSG_DATA_64__MSI_EXT_DATA_64_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF0_MSI_MASK_64
+#define BIF_CFG_DEV0_EPF0_VF0_MSI_MASK_64__MSI_MASK_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_MSI_MASK_64__MSI_MASK_64_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF0_MSI_PENDING
+#define BIF_CFG_DEV0_EPF0_VF0_MSI_PENDING__MSI_PENDING__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_MSI_PENDING__MSI_PENDING_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF0_MSI_PENDING_64
+#define BIF_CFG_DEV0_EPF0_VF0_MSI_PENDING_64__MSI_PENDING_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_MSI_PENDING_64__MSI_PENDING_64_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF0_MSIX_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF0_MSIX_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_MSIX_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF0_MSIX_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_EPF0_VF0_MSIX_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_VF0_MSIX_MSG_CNTL
+#define BIF_CFG_DEV0_EPF0_VF0_MSIX_MSG_CNTL__MSIX_TABLE_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_MSIX_MSG_CNTL__MSIX_FUNC_MASK__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF0_MSIX_MSG_CNTL__MSIX_EN__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF0_MSIX_MSG_CNTL__MSIX_TABLE_SIZE_MASK 0x07FFL
+#define BIF_CFG_DEV0_EPF0_VF0_MSIX_MSG_CNTL__MSIX_FUNC_MASK_MASK 0x4000L
+#define BIF_CFG_DEV0_EPF0_VF0_MSIX_MSG_CNTL__MSIX_EN_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF0_MSIX_TABLE
+#define BIF_CFG_DEV0_EPF0_VF0_MSIX_TABLE__MSIX_TABLE_BIR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_MSIX_TABLE__MSIX_TABLE_OFFSET__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF0_MSIX_TABLE__MSIX_TABLE_BIR_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF0_VF0_MSIX_TABLE__MSIX_TABLE_OFFSET_MASK 0xFFFFFFF8L
+//BIF_CFG_DEV0_EPF0_VF0_MSIX_PBA
+#define BIF_CFG_DEV0_EPF0_VF0_MSIX_PBA__MSIX_PBA_BIR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_MSIX_PBA__MSIX_PBA_OFFSET__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF0_MSIX_PBA__MSIX_PBA_BIR_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF0_VF0_MSIX_PBA__MSIX_PBA_OFFSET_MASK 0xFFFFFFF8L
+//BIF_CFG_DEV0_EPF0_VF0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_VF0_PCIE_VENDOR_SPECIFIC_HDR
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_VENDOR_SPECIFIC_HDR__VSEC_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_VENDOR_SPECIFIC_HDR__VSEC_REV__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_VENDOR_SPECIFIC_HDR__VSEC_LENGTH__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_VENDOR_SPECIFIC_HDR__VSEC_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_VENDOR_SPECIFIC_HDR__VSEC_REV_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_VENDOR_SPECIFIC_HDR__VSEC_LENGTH_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_VF0_PCIE_VENDOR_SPECIFIC1
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_VENDOR_SPECIFIC1__SCRATCH__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_VENDOR_SPECIFIC1__SCRATCH_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF0_PCIE_VENDOR_SPECIFIC2
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_VENDOR_SPECIFIC2__SCRATCH__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_VENDOR_SPECIFIC2__SCRATCH_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF0_PCIE_ADV_ERR_RPT_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_STATUS
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_STATUS__DLP_ERR_STATUS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_STATUS__SURPDN_ERR_STATUS__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_STATUS__PSN_ERR_STATUS__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_STATUS__FC_ERR_STATUS__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_STATUS__CPL_TIMEOUT_STATUS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_STATUS__CPL_ABORT_ERR_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_STATUS__UNEXP_CPL_STATUS__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_STATUS__RCV_OVFL_STATUS__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_STATUS__MAL_TLP_STATUS__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_STATUS__ECRC_ERR_STATUS__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_STATUS__UNSUPP_REQ_ERR_STATUS__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_STATUS__ACS_VIOLATION_STATUS__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_STATUS__UNCORR_INT_ERR_STATUS__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_STATUS__MC_BLOCKED_TLP_STATUS__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_STATUS__ATOMICOP_EGRESS_BLOCKED_STATUS__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_STATUS__TLP_PREFIX_BLOCKED_ERR_STATUS__SHIFT 0x19
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_STATUS__POISONED_TLP_EGRESS_BLOCKED_STATUS__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_STATUS__DLP_ERR_STATUS_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_STATUS__SURPDN_ERR_STATUS_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_STATUS__PSN_ERR_STATUS_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_STATUS__FC_ERR_STATUS_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_STATUS__CPL_TIMEOUT_STATUS_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_STATUS__CPL_ABORT_ERR_STATUS_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_STATUS__UNEXP_CPL_STATUS_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_STATUS__RCV_OVFL_STATUS_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_STATUS__MAL_TLP_STATUS_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_STATUS__ECRC_ERR_STATUS_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_STATUS__UNSUPP_REQ_ERR_STATUS_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_STATUS__ACS_VIOLATION_STATUS_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_STATUS__UNCORR_INT_ERR_STATUS_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_STATUS__MC_BLOCKED_TLP_STATUS_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_STATUS__ATOMICOP_EGRESS_BLOCKED_STATUS_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_STATUS__TLP_PREFIX_BLOCKED_ERR_STATUS_MASK 0x02000000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_STATUS__POISONED_TLP_EGRESS_BLOCKED_STATUS_MASK 0x04000000L
+//BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_MASK
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_MASK__DLP_ERR_MASK__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_MASK__SURPDN_ERR_MASK__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_MASK__PSN_ERR_MASK__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_MASK__FC_ERR_MASK__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_MASK__CPL_TIMEOUT_MASK__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_MASK__CPL_ABORT_ERR_MASK__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_MASK__UNEXP_CPL_MASK__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_MASK__RCV_OVFL_MASK__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_MASK__MAL_TLP_MASK__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_MASK__ECRC_ERR_MASK__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_MASK__UNSUPP_REQ_ERR_MASK__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_MASK__ACS_VIOLATION_MASK__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_MASK__UNCORR_INT_ERR_MASK__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_MASK__MC_BLOCKED_TLP_MASK__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_MASK__ATOMICOP_EGRESS_BLOCKED_MASK__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_MASK__TLP_PREFIX_BLOCKED_ERR_MASK__SHIFT 0x19
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_MASK__POISONED_TLP_EGRESS_BLOCKED_MASK__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_MASK__DLP_ERR_MASK_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_MASK__SURPDN_ERR_MASK_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_MASK__PSN_ERR_MASK_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_MASK__FC_ERR_MASK_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_MASK__CPL_TIMEOUT_MASK_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_MASK__CPL_ABORT_ERR_MASK_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_MASK__UNEXP_CPL_MASK_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_MASK__RCV_OVFL_MASK_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_MASK__MAL_TLP_MASK_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_MASK__ECRC_ERR_MASK_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_MASK__UNSUPP_REQ_ERR_MASK_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_MASK__ACS_VIOLATION_MASK_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_MASK__UNCORR_INT_ERR_MASK_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_MASK__MC_BLOCKED_TLP_MASK_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_MASK__ATOMICOP_EGRESS_BLOCKED_MASK_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_MASK__TLP_PREFIX_BLOCKED_ERR_MASK_MASK 0x02000000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_MASK__POISONED_TLP_EGRESS_BLOCKED_MASK_MASK 0x04000000L
+//BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_SEVERITY
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_SEVERITY__DLP_ERR_SEVERITY__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_SEVERITY__SURPDN_ERR_SEVERITY__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_SEVERITY__PSN_ERR_SEVERITY__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_SEVERITY__FC_ERR_SEVERITY__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_SEVERITY__CPL_TIMEOUT_SEVERITY__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_SEVERITY__CPL_ABORT_ERR_SEVERITY__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_SEVERITY__UNEXP_CPL_SEVERITY__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_SEVERITY__RCV_OVFL_SEVERITY__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_SEVERITY__MAL_TLP_SEVERITY__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_SEVERITY__ECRC_ERR_SEVERITY__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_SEVERITY__UNSUPP_REQ_ERR_SEVERITY__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_SEVERITY__ACS_VIOLATION_SEVERITY__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_SEVERITY__UNCORR_INT_ERR_SEVERITY__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_SEVERITY__MC_BLOCKED_TLP_SEVERITY__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_SEVERITY__ATOMICOP_EGRESS_BLOCKED_SEVERITY__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_SEVERITY__TLP_PREFIX_BLOCKED_ERR_SEVERITY__SHIFT 0x19
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_SEVERITY__POISONED_TLP_EGRESS_BLOCKED_SEVERITY__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_SEVERITY__DLP_ERR_SEVERITY_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_SEVERITY__SURPDN_ERR_SEVERITY_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_SEVERITY__PSN_ERR_SEVERITY_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_SEVERITY__FC_ERR_SEVERITY_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_SEVERITY__CPL_TIMEOUT_SEVERITY_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_SEVERITY__CPL_ABORT_ERR_SEVERITY_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_SEVERITY__UNEXP_CPL_SEVERITY_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_SEVERITY__RCV_OVFL_SEVERITY_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_SEVERITY__MAL_TLP_SEVERITY_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_SEVERITY__ECRC_ERR_SEVERITY_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_SEVERITY__UNSUPP_REQ_ERR_SEVERITY_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_SEVERITY__ACS_VIOLATION_SEVERITY_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_SEVERITY__UNCORR_INT_ERR_SEVERITY_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_SEVERITY__MC_BLOCKED_TLP_SEVERITY_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_SEVERITY__ATOMICOP_EGRESS_BLOCKED_SEVERITY_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_SEVERITY__TLP_PREFIX_BLOCKED_ERR_SEVERITY_MASK 0x02000000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_UNCORR_ERR_SEVERITY__POISONED_TLP_EGRESS_BLOCKED_SEVERITY_MASK 0x04000000L
+//BIF_CFG_DEV0_EPF0_VF0_PCIE_CORR_ERR_STATUS
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_CORR_ERR_STATUS__RCV_ERR_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_CORR_ERR_STATUS__BAD_TLP_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_CORR_ERR_STATUS__BAD_DLLP_STATUS__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_CORR_ERR_STATUS__REPLAY_NUM_ROLLOVER_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_CORR_ERR_STATUS__REPLAY_TIMER_TIMEOUT_STATUS__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_CORR_ERR_STATUS__ADVISORY_NONFATAL_ERR_STATUS__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_CORR_ERR_STATUS__CORR_INT_ERR_STATUS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_CORR_ERR_STATUS__HDR_LOG_OVFL_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_CORR_ERR_STATUS__RCV_ERR_STATUS_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_CORR_ERR_STATUS__BAD_TLP_STATUS_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_CORR_ERR_STATUS__BAD_DLLP_STATUS_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_CORR_ERR_STATUS__REPLAY_NUM_ROLLOVER_STATUS_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_CORR_ERR_STATUS__REPLAY_TIMER_TIMEOUT_STATUS_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_CORR_ERR_STATUS__ADVISORY_NONFATAL_ERR_STATUS_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_CORR_ERR_STATUS__CORR_INT_ERR_STATUS_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_CORR_ERR_STATUS__HDR_LOG_OVFL_STATUS_MASK 0x00008000L
+//BIF_CFG_DEV0_EPF0_VF0_PCIE_CORR_ERR_MASK
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_CORR_ERR_MASK__RCV_ERR_MASK__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_CORR_ERR_MASK__BAD_TLP_MASK__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_CORR_ERR_MASK__BAD_DLLP_MASK__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_CORR_ERR_MASK__REPLAY_NUM_ROLLOVER_MASK__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_CORR_ERR_MASK__REPLAY_TIMER_TIMEOUT_MASK__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_CORR_ERR_MASK__ADVISORY_NONFATAL_ERR_MASK__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_CORR_ERR_MASK__CORR_INT_ERR_MASK__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_CORR_ERR_MASK__HDR_LOG_OVFL_MASK__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_CORR_ERR_MASK__RCV_ERR_MASK_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_CORR_ERR_MASK__BAD_TLP_MASK_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_CORR_ERR_MASK__BAD_DLLP_MASK_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_CORR_ERR_MASK__REPLAY_NUM_ROLLOVER_MASK_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_CORR_ERR_MASK__REPLAY_TIMER_TIMEOUT_MASK_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_CORR_ERR_MASK__ADVISORY_NONFATAL_ERR_MASK_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_CORR_ERR_MASK__CORR_INT_ERR_MASK_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_CORR_ERR_MASK__HDR_LOG_OVFL_MASK_MASK 0x00008000L
+//BIF_CFG_DEV0_EPF0_VF0_PCIE_ADV_ERR_CAP_CNTL
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ADV_ERR_CAP_CNTL__FIRST_ERR_PTR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_CAP__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_EN__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_CAP__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_CAP__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ADV_ERR_CAP_CNTL__TLP_PREFIX_LOG_PRESENT__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ADV_ERR_CAP_CNTL__COMPLETION_TIMEOUT_LOG_CAPABLE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ADV_ERR_CAP_CNTL__FIRST_ERR_PTR_MASK 0x0000001FL
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_CAP_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_EN_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_CAP_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_EN_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_CAP_MASK 0x00000200L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_EN_MASK 0x00000400L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ADV_ERR_CAP_CNTL__TLP_PREFIX_LOG_PRESENT_MASK 0x00000800L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ADV_ERR_CAP_CNTL__COMPLETION_TIMEOUT_LOG_CAPABLE_MASK 0x00001000L
+//BIF_CFG_DEV0_EPF0_VF0_PCIE_HDR_LOG0
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_HDR_LOG0__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_HDR_LOG0__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF0_PCIE_HDR_LOG1
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_HDR_LOG1__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_HDR_LOG1__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF0_PCIE_HDR_LOG2
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_HDR_LOG2__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_HDR_LOG2__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF0_PCIE_HDR_LOG3
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_HDR_LOG3__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_HDR_LOG3__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF0_PCIE_TLP_PREFIX_LOG0
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_TLP_PREFIX_LOG0__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_TLP_PREFIX_LOG0__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF0_PCIE_TLP_PREFIX_LOG1
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_TLP_PREFIX_LOG1__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_TLP_PREFIX_LOG1__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF0_PCIE_TLP_PREFIX_LOG2
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_TLP_PREFIX_LOG2__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_TLP_PREFIX_LOG2__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF0_PCIE_TLP_PREFIX_LOG3
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_TLP_PREFIX_LOG3__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_TLP_PREFIX_LOG3__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF0_PCIE_ATS_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ATS_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ATS_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ATS_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ATS_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ATS_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ATS_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_VF0_PCIE_ATS_CAP
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ATS_CAP__INVALIDATE_Q_DEPTH__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ATS_CAP__PAGE_ALIGNED_REQUEST__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ATS_CAP__GLOBAL_INVALIDATE_SUPPORTED__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ATS_CAP__RELAXED_ORDERING_SUPPORTED__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ATS_CAP__INVALIDATE_Q_DEPTH_MASK 0x001FL
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ATS_CAP__PAGE_ALIGNED_REQUEST_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ATS_CAP__GLOBAL_INVALIDATE_SUPPORTED_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ATS_CAP__RELAXED_ORDERING_SUPPORTED_MASK 0x0080L
+//BIF_CFG_DEV0_EPF0_VF0_PCIE_ATS_CNTL
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ATS_CNTL__STU__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ATS_CNTL__ATC_ENABLE__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ATS_CNTL__STU_MASK 0x001FL
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ATS_CNTL__ATC_ENABLE_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF0_PCIE_ARI_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ARI_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ARI_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ARI_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ARI_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ARI_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ARI_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_VF0_PCIE_ARI_CAP
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ARI_CAP__ARI_MFVC_FUNC_GROUPS_CAP__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ARI_CAP__ARI_ACS_FUNC_GROUPS_CAP__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ARI_CAP__ARI_NEXT_FUNC_NUM__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ARI_CAP__ARI_MFVC_FUNC_GROUPS_CAP_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ARI_CAP__ARI_ACS_FUNC_GROUPS_CAP_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ARI_CAP__ARI_NEXT_FUNC_NUM_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_VF0_PCIE_ARI_CNTL
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ARI_CNTL__ARI_MFVC_FUNC_GROUPS_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ARI_CNTL__ARI_ACS_FUNC_GROUPS_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ARI_CNTL__ARI_FUNCTION_GROUP__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ARI_CNTL__ARI_MFVC_FUNC_GROUPS_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ARI_CNTL__ARI_ACS_FUNC_GROUPS_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF0_PCIE_ARI_CNTL__ARI_FUNCTION_GROUP_MASK 0x0070L
+
+
+// addressBlock: aid_nbio_nbif0_bif_cfg_dev0_epf0_vf1_bifcfgdecp
+//BIF_CFG_DEV0_EPF0_VF1_VENDOR_ID
+#define BIF_CFG_DEV0_EPF0_VF1_VENDOR_ID__VENDOR_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_VENDOR_ID__VENDOR_ID_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF1_DEVICE_ID
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_ID__DEVICE_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_ID__DEVICE_ID_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF1_COMMAND
+#define BIF_CFG_DEV0_EPF0_VF1_COMMAND__IO_ACCESS_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_COMMAND__MEM_ACCESS_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF1_COMMAND__BUS_MASTER_EN__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF1_COMMAND__SPECIAL_CYCLE_EN__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF1_COMMAND__MEM_WRITE_INVALIDATE_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF1_COMMAND__PAL_SNOOP_EN__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF1_COMMAND__PARITY_ERROR_RESPONSE__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF1_COMMAND__AD_STEPPING__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF1_COMMAND__SERR_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF1_COMMAND__FAST_B2B_EN__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF1_COMMAND__INT_DIS__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF1_COMMAND__IO_ACCESS_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF1_COMMAND__MEM_ACCESS_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF1_COMMAND__BUS_MASTER_EN_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_VF1_COMMAND__SPECIAL_CYCLE_EN_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF1_COMMAND__MEM_WRITE_INVALIDATE_EN_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF1_COMMAND__PAL_SNOOP_EN_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF1_COMMAND__PARITY_ERROR_RESPONSE_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF1_COMMAND__AD_STEPPING_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF1_COMMAND__SERR_EN_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF1_COMMAND__FAST_B2B_EN_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_VF1_COMMAND__INT_DIS_MASK 0x0400L
+//BIF_CFG_DEV0_EPF0_VF1_STATUS
+#define BIF_CFG_DEV0_EPF0_VF1_STATUS__IMMEDIATE_READINESS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_STATUS__INT_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF1_STATUS__CAP_LIST__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF1_STATUS__PCI_66_CAP__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF1_STATUS__FAST_BACK_CAPABLE__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF1_STATUS__MASTER_DATA_PARITY_ERROR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF1_STATUS__DEVSEL_TIMING__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF1_STATUS__SIGNAL_TARGET_ABORT__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF1_STATUS__RECEIVED_TARGET_ABORT__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF1_STATUS__RECEIVED_MASTER_ABORT__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF1_STATUS__SIGNALED_SYSTEM_ERROR__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF1_STATUS__PARITY_ERROR_DETECTED__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF1_STATUS__IMMEDIATE_READINESS_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF1_STATUS__INT_STATUS_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF1_STATUS__CAP_LIST_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF1_STATUS__PCI_66_CAP_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF1_STATUS__FAST_BACK_CAPABLE_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF1_STATUS__MASTER_DATA_PARITY_ERROR_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF1_STATUS__DEVSEL_TIMING_MASK 0x0600L
+#define BIF_CFG_DEV0_EPF0_VF1_STATUS__SIGNAL_TARGET_ABORT_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF1_STATUS__RECEIVED_TARGET_ABORT_MASK 0x1000L
+#define BIF_CFG_DEV0_EPF0_VF1_STATUS__RECEIVED_MASTER_ABORT_MASK 0x2000L
+#define BIF_CFG_DEV0_EPF0_VF1_STATUS__SIGNALED_SYSTEM_ERROR_MASK 0x4000L
+#define BIF_CFG_DEV0_EPF0_VF1_STATUS__PARITY_ERROR_DETECTED_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF1_REVISION_ID
+#define BIF_CFG_DEV0_EPF0_VF1_REVISION_ID__MINOR_REV_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_REVISION_ID__MAJOR_REV_ID__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF1_REVISION_ID__MINOR_REV_ID_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_VF1_REVISION_ID__MAJOR_REV_ID_MASK 0xF0L
+//BIF_CFG_DEV0_EPF0_VF1_PROG_INTERFACE
+#define BIF_CFG_DEV0_EPF0_VF1_PROG_INTERFACE__PROG_INTERFACE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_PROG_INTERFACE__PROG_INTERFACE_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF1_SUB_CLASS
+#define BIF_CFG_DEV0_EPF0_VF1_SUB_CLASS__SUB_CLASS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_SUB_CLASS__SUB_CLASS_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF1_BASE_CLASS
+#define BIF_CFG_DEV0_EPF0_VF1_BASE_CLASS__BASE_CLASS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_BASE_CLASS__BASE_CLASS_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF1_CACHE_LINE
+#define BIF_CFG_DEV0_EPF0_VF1_CACHE_LINE__CACHE_LINE_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_CACHE_LINE__CACHE_LINE_SIZE_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF1_LATENCY
+#define BIF_CFG_DEV0_EPF0_VF1_LATENCY__LATENCY_TIMER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_LATENCY__LATENCY_TIMER_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF1_HEADER
+#define BIF_CFG_DEV0_EPF0_VF1_HEADER__HEADER_TYPE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_HEADER__DEVICE_TYPE__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF1_HEADER__HEADER_TYPE_MASK 0x7FL
+#define BIF_CFG_DEV0_EPF0_VF1_HEADER__DEVICE_TYPE_MASK 0x80L
+//BIF_CFG_DEV0_EPF0_VF1_BIST
+#define BIF_CFG_DEV0_EPF0_VF1_BIST__BIST_COMP__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_BIST__BIST_STRT__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF1_BIST__BIST_CAP__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF1_BIST__BIST_COMP_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_VF1_BIST__BIST_STRT_MASK 0x40L
+#define BIF_CFG_DEV0_EPF0_VF1_BIST__BIST_CAP_MASK 0x80L
+//BIF_CFG_DEV0_EPF0_VF1_BASE_ADDR_1
+#define BIF_CFG_DEV0_EPF0_VF1_BASE_ADDR_1__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_BASE_ADDR_1__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF1_BASE_ADDR_2
+#define BIF_CFG_DEV0_EPF0_VF1_BASE_ADDR_2__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_BASE_ADDR_2__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF1_BASE_ADDR_3
+#define BIF_CFG_DEV0_EPF0_VF1_BASE_ADDR_3__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_BASE_ADDR_3__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF1_BASE_ADDR_4
+#define BIF_CFG_DEV0_EPF0_VF1_BASE_ADDR_4__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_BASE_ADDR_4__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF1_BASE_ADDR_5
+#define BIF_CFG_DEV0_EPF0_VF1_BASE_ADDR_5__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_BASE_ADDR_5__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF1_BASE_ADDR_6
+#define BIF_CFG_DEV0_EPF0_VF1_BASE_ADDR_6__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_BASE_ADDR_6__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF1_CARDBUS_CIS_PTR
+#define BIF_CFG_DEV0_EPF0_VF1_CARDBUS_CIS_PTR__CARDBUS_CIS_PTR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_CARDBUS_CIS_PTR__CARDBUS_CIS_PTR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF1_ADAPTER_ID
+#define BIF_CFG_DEV0_EPF0_VF1_ADAPTER_ID__SUBSYSTEM_VENDOR_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_ADAPTER_ID__SUBSYSTEM_ID__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF1_ADAPTER_ID__SUBSYSTEM_VENDOR_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF1_ADAPTER_ID__SUBSYSTEM_ID_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_VF1_ROM_BASE_ADDR
+#define BIF_CFG_DEV0_EPF0_VF1_ROM_BASE_ADDR__ROM_ENABLE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_ROM_BASE_ADDR__ROM_VALIDATION_STATUS__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF1_ROM_BASE_ADDR__ROM_VALIDATION_DETAILS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF1_ROM_BASE_ADDR__BASE_ADDR__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF1_ROM_BASE_ADDR__ROM_ENABLE_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_VF1_ROM_BASE_ADDR__ROM_VALIDATION_STATUS_MASK 0x0000000EL
+#define BIF_CFG_DEV0_EPF0_VF1_ROM_BASE_ADDR__ROM_VALIDATION_DETAILS_MASK 0x000000F0L
+#define BIF_CFG_DEV0_EPF0_VF1_ROM_BASE_ADDR__BASE_ADDR_MASK 0xFFFFF800L
+//BIF_CFG_DEV0_EPF0_VF1_CAP_PTR
+#define BIF_CFG_DEV0_EPF0_VF1_CAP_PTR__CAP_PTR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_CAP_PTR__CAP_PTR_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF1_INTERRUPT_LINE
+#define BIF_CFG_DEV0_EPF0_VF1_INTERRUPT_LINE__INTERRUPT_LINE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_INTERRUPT_LINE__INTERRUPT_LINE_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF1_INTERRUPT_PIN
+#define BIF_CFG_DEV0_EPF0_VF1_INTERRUPT_PIN__INTERRUPT_PIN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_INTERRUPT_PIN__INTERRUPT_PIN_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF1_MIN_GRANT
+#define BIF_CFG_DEV0_EPF0_VF1_MIN_GRANT__MIN_GNT__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_MIN_GRANT__MIN_GNT_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF1_MAX_LATENCY
+#define BIF_CFG_DEV0_EPF0_VF1_MAX_LATENCY__MAX_LAT__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_MAX_LATENCY__MAX_LAT_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF1_PCIE_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_VF1_PCIE_CAP
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_CAP__VERSION__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_CAP__DEVICE_TYPE__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_CAP__SLOT_IMPLEMENTED__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_CAP__INT_MESSAGE_NUM__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_CAP__VERSION_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_CAP__DEVICE_TYPE_MASK 0x00F0L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_CAP__SLOT_IMPLEMENTED_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_CAP__INT_MESSAGE_NUM_MASK 0x3E00L
+//BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP__MAX_PAYLOAD_SUPPORT__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP__PHANTOM_FUNC__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP__EXTENDED_TAG__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP__L0S_ACCEPTABLE_LATENCY__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP__L1_ACCEPTABLE_LATENCY__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP__ROLE_BASED_ERR_REPORTING__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP__ERR_COR_SUBCLASS_CAPABLE__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP__CAPTURED_SLOT_POWER_LIMIT__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP__CAPTURED_SLOT_POWER_SCALE__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP__FLR_CAPABLE__SHIFT 0x1c
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP__MAX_PAYLOAD_SUPPORT_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP__PHANTOM_FUNC_MASK 0x00000018L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP__EXTENDED_TAG_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP__L0S_ACCEPTABLE_LATENCY_MASK 0x000001C0L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP__L1_ACCEPTABLE_LATENCY_MASK 0x00000E00L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP__ROLE_BASED_ERR_REPORTING_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP__ERR_COR_SUBCLASS_CAPABLE_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP__CAPTURED_SLOT_POWER_LIMIT_MASK 0x03FC0000L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP__CAPTURED_SLOT_POWER_SCALE_MASK 0x0C000000L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP__FLR_CAPABLE_MASK 0x10000000L
+//BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL__CORR_ERR_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL__NON_FATAL_ERR_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL__FATAL_ERR_EN__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL__USR_REPORT_EN__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL__RELAXED_ORD_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL__MAX_PAYLOAD_SIZE__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL__EXTENDED_TAG_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL__PHANTOM_FUNC_EN__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL__AUX_POWER_PM_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL__NO_SNOOP_EN__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL__MAX_READ_REQUEST_SIZE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL__INITIATE_FLR__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL__CORR_ERR_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL__NON_FATAL_ERR_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL__FATAL_ERR_EN_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL__USR_REPORT_EN_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL__RELAXED_ORD_EN_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL__MAX_PAYLOAD_SIZE_MASK 0x00E0L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL__EXTENDED_TAG_EN_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL__PHANTOM_FUNC_EN_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL__AUX_POWER_PM_EN_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL__NO_SNOOP_EN_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL__MAX_READ_REQUEST_SIZE_MASK 0x7000L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL__INITIATE_FLR_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF1_DEVICE_STATUS
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_STATUS__CORR_ERR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_STATUS__NON_FATAL_ERR__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_STATUS__FATAL_ERR__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_STATUS__USR_DETECTED__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_STATUS__AUX_PWR__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_STATUS__TRANSACTIONS_PEND__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_STATUS__EMER_POWER_REDUCTION_DETECTED__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_STATUS__CORR_ERR_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_STATUS__NON_FATAL_ERR_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_STATUS__FATAL_ERR_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_STATUS__USR_DETECTED_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_STATUS__AUX_PWR_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_STATUS__TRANSACTIONS_PEND_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_STATUS__EMER_POWER_REDUCTION_DETECTED_MASK 0x0040L
+//BIF_CFG_DEV0_EPF0_VF1_LINK_CAP
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CAP__LINK_SPEED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CAP__LINK_WIDTH__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CAP__PM_SUPPORT__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CAP__L0S_EXIT_LATENCY__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CAP__L1_EXIT_LATENCY__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CAP__CLOCK_POWER_MANAGEMENT__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CAP__SURPRISE_DOWN_ERR_REPORTING__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CAP__DL_ACTIVE_REPORTING_CAPABLE__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CAP__LINK_BW_NOTIFICATION_CAP__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CAP__ASPM_OPTIONALITY_COMPLIANCE__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CAP__PORT_NUMBER__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CAP__LINK_SPEED_MASK 0x0000000FL
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CAP__LINK_WIDTH_MASK 0x000003F0L
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CAP__PM_SUPPORT_MASK 0x00000C00L
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CAP__L0S_EXIT_LATENCY_MASK 0x00007000L
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CAP__L1_EXIT_LATENCY_MASK 0x00038000L
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CAP__CLOCK_POWER_MANAGEMENT_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CAP__SURPRISE_DOWN_ERR_REPORTING_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CAP__DL_ACTIVE_REPORTING_CAPABLE_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CAP__LINK_BW_NOTIFICATION_CAP_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CAP__ASPM_OPTIONALITY_COMPLIANCE_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CAP__PORT_NUMBER_MASK 0xFF000000L
+//BIF_CFG_DEV0_EPF0_VF1_LINK_CNTL
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CNTL__PM_CONTROL__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CNTL__PTM_PROP_DELAY_ADAPT_INTER_B__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CNTL__READ_CPL_BOUNDARY__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CNTL__LINK_DIS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CNTL__RETRAIN_LINK__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CNTL__COMMON_CLOCK_CFG__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CNTL__EXTENDED_SYNC__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CNTL__CLOCK_POWER_MANAGEMENT_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CNTL__HW_AUTONOMOUS_WIDTH_DISABLE__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CNTL__LINK_BW_MANAGEMENT_INT_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CNTL__LINK_AUTONOMOUS_BW_INT_EN__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CNTL__DRS_SIGNALING_CONTROL__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CNTL__PM_CONTROL_MASK 0x0003L
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CNTL__PTM_PROP_DELAY_ADAPT_INTER_B_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CNTL__READ_CPL_BOUNDARY_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CNTL__LINK_DIS_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CNTL__RETRAIN_LINK_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CNTL__COMMON_CLOCK_CFG_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CNTL__EXTENDED_SYNC_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CNTL__CLOCK_POWER_MANAGEMENT_EN_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CNTL__HW_AUTONOMOUS_WIDTH_DISABLE_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CNTL__LINK_BW_MANAGEMENT_INT_EN_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CNTL__LINK_AUTONOMOUS_BW_INT_EN_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CNTL__DRS_SIGNALING_CONTROL_MASK 0xC000L
+//BIF_CFG_DEV0_EPF0_VF1_LINK_STATUS
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_STATUS__CURRENT_LINK_SPEED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_STATUS__NEGOTIATED_LINK_WIDTH__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_STATUS__LINK_TRAINING__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_STATUS__SLOT_CLOCK_CFG__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_STATUS__DL_ACTIVE__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_STATUS__LINK_BW_MANAGEMENT_STATUS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_STATUS__LINK_AUTONOMOUS_BW_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_STATUS__CURRENT_LINK_SPEED_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_STATUS__NEGOTIATED_LINK_WIDTH_MASK 0x03F0L
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_STATUS__LINK_TRAINING_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_STATUS__SLOT_CLOCK_CFG_MASK 0x1000L
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_STATUS__DL_ACTIVE_MASK 0x2000L
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_STATUS__LINK_BW_MANAGEMENT_STATUS_MASK 0x4000L
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_STATUS__LINK_AUTONOMOUS_BW_STATUS_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP2
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP2__CPL_TIMEOUT_RANGE_SUPPORTED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP2__CPL_TIMEOUT_DIS_SUPPORTED__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP2__ARI_FORWARDING_SUPPORTED__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP2__ATOMICOP_ROUTING_SUPPORTED__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP2__ATOMICOP_32CMPLT_SUPPORTED__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP2__ATOMICOP_64CMPLT_SUPPORTED__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP2__CAS128_CMPLT_SUPPORTED__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP2__NO_RO_ENABLED_P2P_PASSING__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP2__LTR_SUPPORTED__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP2__TPH_CPLR_SUPPORTED__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP2__LN_SYSTEM_CLS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP2__TEN_BIT_TAG_COMPLETER_SUPPORTED__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP2__TEN_BIT_TAG_REQUESTER_SUPPORTED__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP2__OBFF_SUPPORTED__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP2__EXTENDED_FMT_FIELD_SUPPORTED__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP2__END_END_TLP_PREFIX_SUPPORTED__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP2__MAX_END_END_TLP_PREFIXES__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP2__EMER_POWER_REDUCTION_SUPPORTED__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP2__EMER_POWER_REDUCTION_INIT_REQ__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP2__FRS_SUPPORTED__SHIFT 0x1f
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP2__CPL_TIMEOUT_RANGE_SUPPORTED_MASK 0x0000000FL
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP2__CPL_TIMEOUT_DIS_SUPPORTED_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP2__ARI_FORWARDING_SUPPORTED_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP2__ATOMICOP_ROUTING_SUPPORTED_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP2__ATOMICOP_32CMPLT_SUPPORTED_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP2__ATOMICOP_64CMPLT_SUPPORTED_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP2__CAS128_CMPLT_SUPPORTED_MASK 0x00000200L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP2__NO_RO_ENABLED_P2P_PASSING_MASK 0x00000400L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP2__LTR_SUPPORTED_MASK 0x00000800L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP2__TPH_CPLR_SUPPORTED_MASK 0x00003000L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP2__LN_SYSTEM_CLS_MASK 0x0000C000L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP2__TEN_BIT_TAG_COMPLETER_SUPPORTED_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP2__TEN_BIT_TAG_REQUESTER_SUPPORTED_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP2__OBFF_SUPPORTED_MASK 0x000C0000L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP2__EXTENDED_FMT_FIELD_SUPPORTED_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP2__END_END_TLP_PREFIX_SUPPORTED_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP2__MAX_END_END_TLP_PREFIXES_MASK 0x00C00000L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP2__EMER_POWER_REDUCTION_SUPPORTED_MASK 0x03000000L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP2__EMER_POWER_REDUCTION_INIT_REQ_MASK 0x04000000L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CAP2__FRS_SUPPORTED_MASK 0x80000000L
+//BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL2
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL2__CPL_TIMEOUT_VALUE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL2__CPL_TIMEOUT_DIS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL2__ARI_FORWARDING_EN__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL2__ATOMICOP_REQUEST_EN__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL2__ATOMICOP_EGRESS_BLOCKING__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL2__IDO_REQUEST_ENABLE__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL2__IDO_COMPLETION_ENABLE__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL2__LTR_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL2__EMER_POWER_REDUCTION_REQUEST__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL2__TEN_BIT_TAG_REQUESTER_ENABLE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL2__OBFF_EN__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL2__END_END_TLP_PREFIX_BLOCKING__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL2__CPL_TIMEOUT_VALUE_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL2__CPL_TIMEOUT_DIS_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL2__ARI_FORWARDING_EN_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL2__ATOMICOP_REQUEST_EN_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL2__ATOMICOP_EGRESS_BLOCKING_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL2__IDO_REQUEST_ENABLE_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL2__IDO_COMPLETION_ENABLE_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL2__LTR_EN_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL2__EMER_POWER_REDUCTION_REQUEST_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL2__TEN_BIT_TAG_REQUESTER_ENABLE_MASK 0x1000L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL2__OBFF_EN_MASK 0x6000L
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_CNTL2__END_END_TLP_PREFIX_BLOCKING_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF1_DEVICE_STATUS2
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_STATUS2__RESERVED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_DEVICE_STATUS2__RESERVED_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF1_LINK_CAP2
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CAP2__SUPPORTED_LINK_SPEED__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CAP2__CROSSLINK_SUPPORTED__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CAP2__LOWER_SKP_OS_GEN_SUPPORT__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CAP2__LOWER_SKP_OS_RCV_SUPPORT__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CAP2__RTM1_PRESENCE_DET_SUPPORT__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CAP2__RTM2_PRESENCE_DET_SUPPORT__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CAP2__DRS_SUPPORTED__SHIFT 0x1f
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CAP2__SUPPORTED_LINK_SPEED_MASK 0x000000FEL
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CAP2__CROSSLINK_SUPPORTED_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CAP2__LOWER_SKP_OS_GEN_SUPPORT_MASK 0x0000FE00L
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CAP2__LOWER_SKP_OS_RCV_SUPPORT_MASK 0x007F0000L
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CAP2__RTM1_PRESENCE_DET_SUPPORT_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CAP2__RTM2_PRESENCE_DET_SUPPORT_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CAP2__DRS_SUPPORTED_MASK 0x80000000L
+//BIF_CFG_DEV0_EPF0_VF1_LINK_CNTL2
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CNTL2__TARGET_LINK_SPEED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CNTL2__ENTER_COMPLIANCE__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CNTL2__HW_AUTONOMOUS_SPEED_DISABLE__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CNTL2__SELECTABLE_DEEMPHASIS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CNTL2__XMIT_MARGIN__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CNTL2__ENTER_MOD_COMPLIANCE__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CNTL2__COMPLIANCE_SOS__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CNTL2__COMPLIANCE_DEEMPHASIS__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CNTL2__TARGET_LINK_SPEED_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CNTL2__ENTER_COMPLIANCE_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CNTL2__HW_AUTONOMOUS_SPEED_DISABLE_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CNTL2__SELECTABLE_DEEMPHASIS_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CNTL2__XMIT_MARGIN_MASK 0x0380L
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CNTL2__ENTER_MOD_COMPLIANCE_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CNTL2__COMPLIANCE_SOS_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_CNTL2__COMPLIANCE_DEEMPHASIS_MASK 0xF000L
+//BIF_CFG_DEV0_EPF0_VF1_LINK_STATUS2
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_STATUS2__CUR_DEEMPHASIS_LEVEL__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_STATUS2__EQUALIZATION_COMPLETE_8GT__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_STATUS2__EQUALIZATION_PHASE1_SUCCESS_8GT__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_STATUS2__EQUALIZATION_PHASE2_SUCCESS_8GT__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_STATUS2__EQUALIZATION_PHASE3_SUCCESS_8GT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_STATUS2__LINK_EQUALIZATION_REQUEST_8GT__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_STATUS2__RTM1_PRESENCE_DET__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_STATUS2__RTM2_PRESENCE_DET__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_STATUS2__CROSSLINK_RESOLUTION__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_STATUS2__DOWNSTREAM_COMPONENT_PRESENCE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_STATUS2__DRS_MESSAGE_RECEIVED__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_STATUS2__CUR_DEEMPHASIS_LEVEL_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_STATUS2__EQUALIZATION_COMPLETE_8GT_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_STATUS2__EQUALIZATION_PHASE1_SUCCESS_8GT_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_STATUS2__EQUALIZATION_PHASE2_SUCCESS_8GT_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_STATUS2__EQUALIZATION_PHASE3_SUCCESS_8GT_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_STATUS2__LINK_EQUALIZATION_REQUEST_8GT_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_STATUS2__RTM1_PRESENCE_DET_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_STATUS2__RTM2_PRESENCE_DET_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_STATUS2__CROSSLINK_RESOLUTION_MASK 0x0300L
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_STATUS2__DOWNSTREAM_COMPONENT_PRESENCE_MASK 0x7000L
+#define BIF_CFG_DEV0_EPF0_VF1_LINK_STATUS2__DRS_MESSAGE_RECEIVED_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF1_MSI_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF1_MSI_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_MSI_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF1_MSI_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_EPF0_VF1_MSI_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_VF1_MSI_MSG_CNTL
+#define BIF_CFG_DEV0_EPF0_VF1_MSI_MSG_CNTL__MSI_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_MSI_MSG_CNTL__MSI_MULTI_CAP__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF1_MSI_MSG_CNTL__MSI_MULTI_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF1_MSI_MSG_CNTL__MSI_64BIT__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF1_MSI_MSG_CNTL__MSI_PERVECTOR_MASKING_CAP__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF1_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_CAP__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF1_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF1_MSI_MSG_CNTL__MSI_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF1_MSI_MSG_CNTL__MSI_MULTI_CAP_MASK 0x000EL
+#define BIF_CFG_DEV0_EPF0_VF1_MSI_MSG_CNTL__MSI_MULTI_EN_MASK 0x0070L
+#define BIF_CFG_DEV0_EPF0_VF1_MSI_MSG_CNTL__MSI_64BIT_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF1_MSI_MSG_CNTL__MSI_PERVECTOR_MASKING_CAP_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF1_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_CAP_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_VF1_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_EN_MASK 0x0400L
+//BIF_CFG_DEV0_EPF0_VF1_MSI_MSG_ADDR_LO
+#define BIF_CFG_DEV0_EPF0_VF1_MSI_MSG_ADDR_LO__MSI_MSG_ADDR_LO__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF1_MSI_MSG_ADDR_LO__MSI_MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//BIF_CFG_DEV0_EPF0_VF1_MSI_MSG_ADDR_HI
+#define BIF_CFG_DEV0_EPF0_VF1_MSI_MSG_ADDR_HI__MSI_MSG_ADDR_HI__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_MSI_MSG_ADDR_HI__MSI_MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF1_MSI_MSG_DATA
+#define BIF_CFG_DEV0_EPF0_VF1_MSI_MSG_DATA__MSI_DATA__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_MSI_MSG_DATA__MSI_DATA_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF1_MSI_EXT_MSG_DATA
+#define BIF_CFG_DEV0_EPF0_VF1_MSI_EXT_MSG_DATA__MSI_EXT_DATA__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_MSI_EXT_MSG_DATA__MSI_EXT_DATA_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF1_MSI_MASK
+#define BIF_CFG_DEV0_EPF0_VF1_MSI_MASK__MSI_MASK__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_MSI_MASK__MSI_MASK_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF1_MSI_MSG_DATA_64
+#define BIF_CFG_DEV0_EPF0_VF1_MSI_MSG_DATA_64__MSI_DATA_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_MSI_MSG_DATA_64__MSI_DATA_64_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF1_MSI_EXT_MSG_DATA_64
+#define BIF_CFG_DEV0_EPF0_VF1_MSI_EXT_MSG_DATA_64__MSI_EXT_DATA_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_MSI_EXT_MSG_DATA_64__MSI_EXT_DATA_64_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF1_MSI_MASK_64
+#define BIF_CFG_DEV0_EPF0_VF1_MSI_MASK_64__MSI_MASK_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_MSI_MASK_64__MSI_MASK_64_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF1_MSI_PENDING
+#define BIF_CFG_DEV0_EPF0_VF1_MSI_PENDING__MSI_PENDING__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_MSI_PENDING__MSI_PENDING_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF1_MSI_PENDING_64
+#define BIF_CFG_DEV0_EPF0_VF1_MSI_PENDING_64__MSI_PENDING_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_MSI_PENDING_64__MSI_PENDING_64_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF1_MSIX_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF1_MSIX_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_MSIX_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF1_MSIX_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_EPF0_VF1_MSIX_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_VF1_MSIX_MSG_CNTL
+#define BIF_CFG_DEV0_EPF0_VF1_MSIX_MSG_CNTL__MSIX_TABLE_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_MSIX_MSG_CNTL__MSIX_FUNC_MASK__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF1_MSIX_MSG_CNTL__MSIX_EN__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF1_MSIX_MSG_CNTL__MSIX_TABLE_SIZE_MASK 0x07FFL
+#define BIF_CFG_DEV0_EPF0_VF1_MSIX_MSG_CNTL__MSIX_FUNC_MASK_MASK 0x4000L
+#define BIF_CFG_DEV0_EPF0_VF1_MSIX_MSG_CNTL__MSIX_EN_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF1_MSIX_TABLE
+#define BIF_CFG_DEV0_EPF0_VF1_MSIX_TABLE__MSIX_TABLE_BIR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_MSIX_TABLE__MSIX_TABLE_OFFSET__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF1_MSIX_TABLE__MSIX_TABLE_BIR_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF0_VF1_MSIX_TABLE__MSIX_TABLE_OFFSET_MASK 0xFFFFFFF8L
+//BIF_CFG_DEV0_EPF0_VF1_MSIX_PBA
+#define BIF_CFG_DEV0_EPF0_VF1_MSIX_PBA__MSIX_PBA_BIR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_MSIX_PBA__MSIX_PBA_OFFSET__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF1_MSIX_PBA__MSIX_PBA_BIR_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF0_VF1_MSIX_PBA__MSIX_PBA_OFFSET_MASK 0xFFFFFFF8L
+//BIF_CFG_DEV0_EPF0_VF1_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_VF1_PCIE_VENDOR_SPECIFIC_HDR
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_VENDOR_SPECIFIC_HDR__VSEC_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_VENDOR_SPECIFIC_HDR__VSEC_REV__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_VENDOR_SPECIFIC_HDR__VSEC_LENGTH__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_VENDOR_SPECIFIC_HDR__VSEC_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_VENDOR_SPECIFIC_HDR__VSEC_REV_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_VENDOR_SPECIFIC_HDR__VSEC_LENGTH_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_VF1_PCIE_VENDOR_SPECIFIC1
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_VENDOR_SPECIFIC1__SCRATCH__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_VENDOR_SPECIFIC1__SCRATCH_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF1_PCIE_VENDOR_SPECIFIC2
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_VENDOR_SPECIFIC2__SCRATCH__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_VENDOR_SPECIFIC2__SCRATCH_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF1_PCIE_ADV_ERR_RPT_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_STATUS
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_STATUS__DLP_ERR_STATUS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_STATUS__SURPDN_ERR_STATUS__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_STATUS__PSN_ERR_STATUS__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_STATUS__FC_ERR_STATUS__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_STATUS__CPL_TIMEOUT_STATUS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_STATUS__CPL_ABORT_ERR_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_STATUS__UNEXP_CPL_STATUS__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_STATUS__RCV_OVFL_STATUS__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_STATUS__MAL_TLP_STATUS__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_STATUS__ECRC_ERR_STATUS__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_STATUS__UNSUPP_REQ_ERR_STATUS__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_STATUS__ACS_VIOLATION_STATUS__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_STATUS__UNCORR_INT_ERR_STATUS__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_STATUS__MC_BLOCKED_TLP_STATUS__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_STATUS__ATOMICOP_EGRESS_BLOCKED_STATUS__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_STATUS__TLP_PREFIX_BLOCKED_ERR_STATUS__SHIFT 0x19
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_STATUS__POISONED_TLP_EGRESS_BLOCKED_STATUS__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_STATUS__DLP_ERR_STATUS_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_STATUS__SURPDN_ERR_STATUS_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_STATUS__PSN_ERR_STATUS_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_STATUS__FC_ERR_STATUS_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_STATUS__CPL_TIMEOUT_STATUS_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_STATUS__CPL_ABORT_ERR_STATUS_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_STATUS__UNEXP_CPL_STATUS_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_STATUS__RCV_OVFL_STATUS_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_STATUS__MAL_TLP_STATUS_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_STATUS__ECRC_ERR_STATUS_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_STATUS__UNSUPP_REQ_ERR_STATUS_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_STATUS__ACS_VIOLATION_STATUS_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_STATUS__UNCORR_INT_ERR_STATUS_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_STATUS__MC_BLOCKED_TLP_STATUS_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_STATUS__ATOMICOP_EGRESS_BLOCKED_STATUS_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_STATUS__TLP_PREFIX_BLOCKED_ERR_STATUS_MASK 0x02000000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_STATUS__POISONED_TLP_EGRESS_BLOCKED_STATUS_MASK 0x04000000L
+//BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_MASK
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_MASK__DLP_ERR_MASK__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_MASK__SURPDN_ERR_MASK__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_MASK__PSN_ERR_MASK__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_MASK__FC_ERR_MASK__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_MASK__CPL_TIMEOUT_MASK__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_MASK__CPL_ABORT_ERR_MASK__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_MASK__UNEXP_CPL_MASK__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_MASK__RCV_OVFL_MASK__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_MASK__MAL_TLP_MASK__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_MASK__ECRC_ERR_MASK__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_MASK__UNSUPP_REQ_ERR_MASK__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_MASK__ACS_VIOLATION_MASK__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_MASK__UNCORR_INT_ERR_MASK__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_MASK__MC_BLOCKED_TLP_MASK__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_MASK__ATOMICOP_EGRESS_BLOCKED_MASK__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_MASK__TLP_PREFIX_BLOCKED_ERR_MASK__SHIFT 0x19
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_MASK__POISONED_TLP_EGRESS_BLOCKED_MASK__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_MASK__DLP_ERR_MASK_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_MASK__SURPDN_ERR_MASK_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_MASK__PSN_ERR_MASK_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_MASK__FC_ERR_MASK_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_MASK__CPL_TIMEOUT_MASK_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_MASK__CPL_ABORT_ERR_MASK_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_MASK__UNEXP_CPL_MASK_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_MASK__RCV_OVFL_MASK_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_MASK__MAL_TLP_MASK_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_MASK__ECRC_ERR_MASK_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_MASK__UNSUPP_REQ_ERR_MASK_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_MASK__ACS_VIOLATION_MASK_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_MASK__UNCORR_INT_ERR_MASK_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_MASK__MC_BLOCKED_TLP_MASK_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_MASK__ATOMICOP_EGRESS_BLOCKED_MASK_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_MASK__TLP_PREFIX_BLOCKED_ERR_MASK_MASK 0x02000000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_MASK__POISONED_TLP_EGRESS_BLOCKED_MASK_MASK 0x04000000L
+//BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_SEVERITY
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_SEVERITY__DLP_ERR_SEVERITY__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_SEVERITY__SURPDN_ERR_SEVERITY__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_SEVERITY__PSN_ERR_SEVERITY__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_SEVERITY__FC_ERR_SEVERITY__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_SEVERITY__CPL_TIMEOUT_SEVERITY__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_SEVERITY__CPL_ABORT_ERR_SEVERITY__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_SEVERITY__UNEXP_CPL_SEVERITY__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_SEVERITY__RCV_OVFL_SEVERITY__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_SEVERITY__MAL_TLP_SEVERITY__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_SEVERITY__ECRC_ERR_SEVERITY__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_SEVERITY__UNSUPP_REQ_ERR_SEVERITY__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_SEVERITY__ACS_VIOLATION_SEVERITY__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_SEVERITY__UNCORR_INT_ERR_SEVERITY__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_SEVERITY__MC_BLOCKED_TLP_SEVERITY__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_SEVERITY__ATOMICOP_EGRESS_BLOCKED_SEVERITY__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_SEVERITY__TLP_PREFIX_BLOCKED_ERR_SEVERITY__SHIFT 0x19
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_SEVERITY__POISONED_TLP_EGRESS_BLOCKED_SEVERITY__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_SEVERITY__DLP_ERR_SEVERITY_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_SEVERITY__SURPDN_ERR_SEVERITY_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_SEVERITY__PSN_ERR_SEVERITY_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_SEVERITY__FC_ERR_SEVERITY_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_SEVERITY__CPL_TIMEOUT_SEVERITY_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_SEVERITY__CPL_ABORT_ERR_SEVERITY_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_SEVERITY__UNEXP_CPL_SEVERITY_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_SEVERITY__RCV_OVFL_SEVERITY_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_SEVERITY__MAL_TLP_SEVERITY_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_SEVERITY__ECRC_ERR_SEVERITY_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_SEVERITY__UNSUPP_REQ_ERR_SEVERITY_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_SEVERITY__ACS_VIOLATION_SEVERITY_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_SEVERITY__UNCORR_INT_ERR_SEVERITY_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_SEVERITY__MC_BLOCKED_TLP_SEVERITY_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_SEVERITY__ATOMICOP_EGRESS_BLOCKED_SEVERITY_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_SEVERITY__TLP_PREFIX_BLOCKED_ERR_SEVERITY_MASK 0x02000000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_UNCORR_ERR_SEVERITY__POISONED_TLP_EGRESS_BLOCKED_SEVERITY_MASK 0x04000000L
+//BIF_CFG_DEV0_EPF0_VF1_PCIE_CORR_ERR_STATUS
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_CORR_ERR_STATUS__RCV_ERR_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_CORR_ERR_STATUS__BAD_TLP_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_CORR_ERR_STATUS__BAD_DLLP_STATUS__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_CORR_ERR_STATUS__REPLAY_NUM_ROLLOVER_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_CORR_ERR_STATUS__REPLAY_TIMER_TIMEOUT_STATUS__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_CORR_ERR_STATUS__ADVISORY_NONFATAL_ERR_STATUS__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_CORR_ERR_STATUS__CORR_INT_ERR_STATUS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_CORR_ERR_STATUS__HDR_LOG_OVFL_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_CORR_ERR_STATUS__RCV_ERR_STATUS_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_CORR_ERR_STATUS__BAD_TLP_STATUS_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_CORR_ERR_STATUS__BAD_DLLP_STATUS_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_CORR_ERR_STATUS__REPLAY_NUM_ROLLOVER_STATUS_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_CORR_ERR_STATUS__REPLAY_TIMER_TIMEOUT_STATUS_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_CORR_ERR_STATUS__ADVISORY_NONFATAL_ERR_STATUS_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_CORR_ERR_STATUS__CORR_INT_ERR_STATUS_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_CORR_ERR_STATUS__HDR_LOG_OVFL_STATUS_MASK 0x00008000L
+//BIF_CFG_DEV0_EPF0_VF1_PCIE_CORR_ERR_MASK
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_CORR_ERR_MASK__RCV_ERR_MASK__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_CORR_ERR_MASK__BAD_TLP_MASK__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_CORR_ERR_MASK__BAD_DLLP_MASK__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_CORR_ERR_MASK__REPLAY_NUM_ROLLOVER_MASK__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_CORR_ERR_MASK__REPLAY_TIMER_TIMEOUT_MASK__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_CORR_ERR_MASK__ADVISORY_NONFATAL_ERR_MASK__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_CORR_ERR_MASK__CORR_INT_ERR_MASK__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_CORR_ERR_MASK__HDR_LOG_OVFL_MASK__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_CORR_ERR_MASK__RCV_ERR_MASK_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_CORR_ERR_MASK__BAD_TLP_MASK_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_CORR_ERR_MASK__BAD_DLLP_MASK_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_CORR_ERR_MASK__REPLAY_NUM_ROLLOVER_MASK_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_CORR_ERR_MASK__REPLAY_TIMER_TIMEOUT_MASK_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_CORR_ERR_MASK__ADVISORY_NONFATAL_ERR_MASK_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_CORR_ERR_MASK__CORR_INT_ERR_MASK_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_CORR_ERR_MASK__HDR_LOG_OVFL_MASK_MASK 0x00008000L
+//BIF_CFG_DEV0_EPF0_VF1_PCIE_ADV_ERR_CAP_CNTL
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ADV_ERR_CAP_CNTL__FIRST_ERR_PTR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_CAP__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_EN__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_CAP__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_CAP__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ADV_ERR_CAP_CNTL__TLP_PREFIX_LOG_PRESENT__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ADV_ERR_CAP_CNTL__COMPLETION_TIMEOUT_LOG_CAPABLE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ADV_ERR_CAP_CNTL__FIRST_ERR_PTR_MASK 0x0000001FL
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_CAP_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_EN_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_CAP_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_EN_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_CAP_MASK 0x00000200L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_EN_MASK 0x00000400L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ADV_ERR_CAP_CNTL__TLP_PREFIX_LOG_PRESENT_MASK 0x00000800L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ADV_ERR_CAP_CNTL__COMPLETION_TIMEOUT_LOG_CAPABLE_MASK 0x00001000L
+//BIF_CFG_DEV0_EPF0_VF1_PCIE_HDR_LOG0
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_HDR_LOG0__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_HDR_LOG0__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF1_PCIE_HDR_LOG1
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_HDR_LOG1__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_HDR_LOG1__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF1_PCIE_HDR_LOG2
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_HDR_LOG2__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_HDR_LOG2__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF1_PCIE_HDR_LOG3
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_HDR_LOG3__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_HDR_LOG3__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF1_PCIE_TLP_PREFIX_LOG0
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_TLP_PREFIX_LOG0__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_TLP_PREFIX_LOG0__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF1_PCIE_TLP_PREFIX_LOG1
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_TLP_PREFIX_LOG1__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_TLP_PREFIX_LOG1__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF1_PCIE_TLP_PREFIX_LOG2
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_TLP_PREFIX_LOG2__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_TLP_PREFIX_LOG2__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF1_PCIE_TLP_PREFIX_LOG3
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_TLP_PREFIX_LOG3__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_TLP_PREFIX_LOG3__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF1_PCIE_ATS_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ATS_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ATS_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ATS_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ATS_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ATS_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ATS_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_VF1_PCIE_ATS_CAP
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ATS_CAP__INVALIDATE_Q_DEPTH__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ATS_CAP__PAGE_ALIGNED_REQUEST__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ATS_CAP__GLOBAL_INVALIDATE_SUPPORTED__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ATS_CAP__RELAXED_ORDERING_SUPPORTED__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ATS_CAP__INVALIDATE_Q_DEPTH_MASK 0x001FL
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ATS_CAP__PAGE_ALIGNED_REQUEST_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ATS_CAP__GLOBAL_INVALIDATE_SUPPORTED_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ATS_CAP__RELAXED_ORDERING_SUPPORTED_MASK 0x0080L
+//BIF_CFG_DEV0_EPF0_VF1_PCIE_ATS_CNTL
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ATS_CNTL__STU__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ATS_CNTL__ATC_ENABLE__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ATS_CNTL__STU_MASK 0x001FL
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ATS_CNTL__ATC_ENABLE_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF1_PCIE_ARI_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ARI_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ARI_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ARI_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ARI_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ARI_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ARI_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_VF1_PCIE_ARI_CAP
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ARI_CAP__ARI_MFVC_FUNC_GROUPS_CAP__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ARI_CAP__ARI_ACS_FUNC_GROUPS_CAP__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ARI_CAP__ARI_NEXT_FUNC_NUM__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ARI_CAP__ARI_MFVC_FUNC_GROUPS_CAP_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ARI_CAP__ARI_ACS_FUNC_GROUPS_CAP_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ARI_CAP__ARI_NEXT_FUNC_NUM_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_VF1_PCIE_ARI_CNTL
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ARI_CNTL__ARI_MFVC_FUNC_GROUPS_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ARI_CNTL__ARI_ACS_FUNC_GROUPS_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ARI_CNTL__ARI_FUNCTION_GROUP__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ARI_CNTL__ARI_MFVC_FUNC_GROUPS_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ARI_CNTL__ARI_ACS_FUNC_GROUPS_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF1_PCIE_ARI_CNTL__ARI_FUNCTION_GROUP_MASK 0x0070L
+
+
+// addressBlock: aid_nbio_nbif0_bif_cfg_dev0_epf0_vf2_bifcfgdecp
+//BIF_CFG_DEV0_EPF0_VF2_VENDOR_ID
+#define BIF_CFG_DEV0_EPF0_VF2_VENDOR_ID__VENDOR_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_VENDOR_ID__VENDOR_ID_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF2_DEVICE_ID
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_ID__DEVICE_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_ID__DEVICE_ID_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF2_COMMAND
+#define BIF_CFG_DEV0_EPF0_VF2_COMMAND__IO_ACCESS_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_COMMAND__MEM_ACCESS_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF2_COMMAND__BUS_MASTER_EN__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF2_COMMAND__SPECIAL_CYCLE_EN__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF2_COMMAND__MEM_WRITE_INVALIDATE_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF2_COMMAND__PAL_SNOOP_EN__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF2_COMMAND__PARITY_ERROR_RESPONSE__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF2_COMMAND__AD_STEPPING__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF2_COMMAND__SERR_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF2_COMMAND__FAST_B2B_EN__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF2_COMMAND__INT_DIS__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF2_COMMAND__IO_ACCESS_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF2_COMMAND__MEM_ACCESS_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF2_COMMAND__BUS_MASTER_EN_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_VF2_COMMAND__SPECIAL_CYCLE_EN_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF2_COMMAND__MEM_WRITE_INVALIDATE_EN_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF2_COMMAND__PAL_SNOOP_EN_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF2_COMMAND__PARITY_ERROR_RESPONSE_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF2_COMMAND__AD_STEPPING_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF2_COMMAND__SERR_EN_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF2_COMMAND__FAST_B2B_EN_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_VF2_COMMAND__INT_DIS_MASK 0x0400L
+//BIF_CFG_DEV0_EPF0_VF2_STATUS
+#define BIF_CFG_DEV0_EPF0_VF2_STATUS__IMMEDIATE_READINESS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_STATUS__INT_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF2_STATUS__CAP_LIST__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF2_STATUS__PCI_66_CAP__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF2_STATUS__FAST_BACK_CAPABLE__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF2_STATUS__MASTER_DATA_PARITY_ERROR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF2_STATUS__DEVSEL_TIMING__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF2_STATUS__SIGNAL_TARGET_ABORT__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF2_STATUS__RECEIVED_TARGET_ABORT__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF2_STATUS__RECEIVED_MASTER_ABORT__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF2_STATUS__SIGNALED_SYSTEM_ERROR__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF2_STATUS__PARITY_ERROR_DETECTED__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF2_STATUS__IMMEDIATE_READINESS_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF2_STATUS__INT_STATUS_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF2_STATUS__CAP_LIST_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF2_STATUS__PCI_66_CAP_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF2_STATUS__FAST_BACK_CAPABLE_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF2_STATUS__MASTER_DATA_PARITY_ERROR_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF2_STATUS__DEVSEL_TIMING_MASK 0x0600L
+#define BIF_CFG_DEV0_EPF0_VF2_STATUS__SIGNAL_TARGET_ABORT_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF2_STATUS__RECEIVED_TARGET_ABORT_MASK 0x1000L
+#define BIF_CFG_DEV0_EPF0_VF2_STATUS__RECEIVED_MASTER_ABORT_MASK 0x2000L
+#define BIF_CFG_DEV0_EPF0_VF2_STATUS__SIGNALED_SYSTEM_ERROR_MASK 0x4000L
+#define BIF_CFG_DEV0_EPF0_VF2_STATUS__PARITY_ERROR_DETECTED_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF2_REVISION_ID
+#define BIF_CFG_DEV0_EPF0_VF2_REVISION_ID__MINOR_REV_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_REVISION_ID__MAJOR_REV_ID__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF2_REVISION_ID__MINOR_REV_ID_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_VF2_REVISION_ID__MAJOR_REV_ID_MASK 0xF0L
+//BIF_CFG_DEV0_EPF0_VF2_PROG_INTERFACE
+#define BIF_CFG_DEV0_EPF0_VF2_PROG_INTERFACE__PROG_INTERFACE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_PROG_INTERFACE__PROG_INTERFACE_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF2_SUB_CLASS
+#define BIF_CFG_DEV0_EPF0_VF2_SUB_CLASS__SUB_CLASS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_SUB_CLASS__SUB_CLASS_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF2_BASE_CLASS
+#define BIF_CFG_DEV0_EPF0_VF2_BASE_CLASS__BASE_CLASS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_BASE_CLASS__BASE_CLASS_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF2_CACHE_LINE
+#define BIF_CFG_DEV0_EPF0_VF2_CACHE_LINE__CACHE_LINE_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_CACHE_LINE__CACHE_LINE_SIZE_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF2_LATENCY
+#define BIF_CFG_DEV0_EPF0_VF2_LATENCY__LATENCY_TIMER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_LATENCY__LATENCY_TIMER_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF2_HEADER
+#define BIF_CFG_DEV0_EPF0_VF2_HEADER__HEADER_TYPE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_HEADER__DEVICE_TYPE__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF2_HEADER__HEADER_TYPE_MASK 0x7FL
+#define BIF_CFG_DEV0_EPF0_VF2_HEADER__DEVICE_TYPE_MASK 0x80L
+//BIF_CFG_DEV0_EPF0_VF2_BIST
+#define BIF_CFG_DEV0_EPF0_VF2_BIST__BIST_COMP__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_BIST__BIST_STRT__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF2_BIST__BIST_CAP__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF2_BIST__BIST_COMP_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_VF2_BIST__BIST_STRT_MASK 0x40L
+#define BIF_CFG_DEV0_EPF0_VF2_BIST__BIST_CAP_MASK 0x80L
+//BIF_CFG_DEV0_EPF0_VF2_BASE_ADDR_1
+#define BIF_CFG_DEV0_EPF0_VF2_BASE_ADDR_1__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_BASE_ADDR_1__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF2_BASE_ADDR_2
+#define BIF_CFG_DEV0_EPF0_VF2_BASE_ADDR_2__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_BASE_ADDR_2__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF2_BASE_ADDR_3
+#define BIF_CFG_DEV0_EPF0_VF2_BASE_ADDR_3__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_BASE_ADDR_3__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF2_BASE_ADDR_4
+#define BIF_CFG_DEV0_EPF0_VF2_BASE_ADDR_4__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_BASE_ADDR_4__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF2_BASE_ADDR_5
+#define BIF_CFG_DEV0_EPF0_VF2_BASE_ADDR_5__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_BASE_ADDR_5__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF2_BASE_ADDR_6
+#define BIF_CFG_DEV0_EPF0_VF2_BASE_ADDR_6__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_BASE_ADDR_6__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF2_CARDBUS_CIS_PTR
+#define BIF_CFG_DEV0_EPF0_VF2_CARDBUS_CIS_PTR__CARDBUS_CIS_PTR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_CARDBUS_CIS_PTR__CARDBUS_CIS_PTR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF2_ADAPTER_ID
+#define BIF_CFG_DEV0_EPF0_VF2_ADAPTER_ID__SUBSYSTEM_VENDOR_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_ADAPTER_ID__SUBSYSTEM_ID__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF2_ADAPTER_ID__SUBSYSTEM_VENDOR_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF2_ADAPTER_ID__SUBSYSTEM_ID_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_VF2_ROM_BASE_ADDR
+#define BIF_CFG_DEV0_EPF0_VF2_ROM_BASE_ADDR__ROM_ENABLE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_ROM_BASE_ADDR__ROM_VALIDATION_STATUS__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF2_ROM_BASE_ADDR__ROM_VALIDATION_DETAILS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF2_ROM_BASE_ADDR__BASE_ADDR__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF2_ROM_BASE_ADDR__ROM_ENABLE_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_VF2_ROM_BASE_ADDR__ROM_VALIDATION_STATUS_MASK 0x0000000EL
+#define BIF_CFG_DEV0_EPF0_VF2_ROM_BASE_ADDR__ROM_VALIDATION_DETAILS_MASK 0x000000F0L
+#define BIF_CFG_DEV0_EPF0_VF2_ROM_BASE_ADDR__BASE_ADDR_MASK 0xFFFFF800L
+//BIF_CFG_DEV0_EPF0_VF2_CAP_PTR
+#define BIF_CFG_DEV0_EPF0_VF2_CAP_PTR__CAP_PTR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_CAP_PTR__CAP_PTR_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF2_INTERRUPT_LINE
+#define BIF_CFG_DEV0_EPF0_VF2_INTERRUPT_LINE__INTERRUPT_LINE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_INTERRUPT_LINE__INTERRUPT_LINE_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF2_INTERRUPT_PIN
+#define BIF_CFG_DEV0_EPF0_VF2_INTERRUPT_PIN__INTERRUPT_PIN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_INTERRUPT_PIN__INTERRUPT_PIN_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF2_MIN_GRANT
+#define BIF_CFG_DEV0_EPF0_VF2_MIN_GRANT__MIN_GNT__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_MIN_GRANT__MIN_GNT_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF2_MAX_LATENCY
+#define BIF_CFG_DEV0_EPF0_VF2_MAX_LATENCY__MAX_LAT__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_MAX_LATENCY__MAX_LAT_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF2_PCIE_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_VF2_PCIE_CAP
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_CAP__VERSION__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_CAP__DEVICE_TYPE__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_CAP__SLOT_IMPLEMENTED__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_CAP__INT_MESSAGE_NUM__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_CAP__VERSION_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_CAP__DEVICE_TYPE_MASK 0x00F0L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_CAP__SLOT_IMPLEMENTED_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_CAP__INT_MESSAGE_NUM_MASK 0x3E00L
+//BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP__MAX_PAYLOAD_SUPPORT__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP__PHANTOM_FUNC__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP__EXTENDED_TAG__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP__L0S_ACCEPTABLE_LATENCY__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP__L1_ACCEPTABLE_LATENCY__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP__ROLE_BASED_ERR_REPORTING__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP__ERR_COR_SUBCLASS_CAPABLE__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP__CAPTURED_SLOT_POWER_LIMIT__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP__CAPTURED_SLOT_POWER_SCALE__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP__FLR_CAPABLE__SHIFT 0x1c
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP__MAX_PAYLOAD_SUPPORT_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP__PHANTOM_FUNC_MASK 0x00000018L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP__EXTENDED_TAG_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP__L0S_ACCEPTABLE_LATENCY_MASK 0x000001C0L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP__L1_ACCEPTABLE_LATENCY_MASK 0x00000E00L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP__ROLE_BASED_ERR_REPORTING_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP__ERR_COR_SUBCLASS_CAPABLE_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP__CAPTURED_SLOT_POWER_LIMIT_MASK 0x03FC0000L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP__CAPTURED_SLOT_POWER_SCALE_MASK 0x0C000000L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP__FLR_CAPABLE_MASK 0x10000000L
+//BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL__CORR_ERR_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL__NON_FATAL_ERR_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL__FATAL_ERR_EN__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL__USR_REPORT_EN__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL__RELAXED_ORD_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL__MAX_PAYLOAD_SIZE__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL__EXTENDED_TAG_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL__PHANTOM_FUNC_EN__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL__AUX_POWER_PM_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL__NO_SNOOP_EN__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL__MAX_READ_REQUEST_SIZE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL__INITIATE_FLR__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL__CORR_ERR_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL__NON_FATAL_ERR_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL__FATAL_ERR_EN_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL__USR_REPORT_EN_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL__RELAXED_ORD_EN_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL__MAX_PAYLOAD_SIZE_MASK 0x00E0L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL__EXTENDED_TAG_EN_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL__PHANTOM_FUNC_EN_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL__AUX_POWER_PM_EN_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL__NO_SNOOP_EN_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL__MAX_READ_REQUEST_SIZE_MASK 0x7000L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL__INITIATE_FLR_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF2_DEVICE_STATUS
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_STATUS__CORR_ERR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_STATUS__NON_FATAL_ERR__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_STATUS__FATAL_ERR__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_STATUS__USR_DETECTED__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_STATUS__AUX_PWR__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_STATUS__TRANSACTIONS_PEND__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_STATUS__EMER_POWER_REDUCTION_DETECTED__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_STATUS__CORR_ERR_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_STATUS__NON_FATAL_ERR_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_STATUS__FATAL_ERR_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_STATUS__USR_DETECTED_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_STATUS__AUX_PWR_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_STATUS__TRANSACTIONS_PEND_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_STATUS__EMER_POWER_REDUCTION_DETECTED_MASK 0x0040L
+//BIF_CFG_DEV0_EPF0_VF2_LINK_CAP
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CAP__LINK_SPEED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CAP__LINK_WIDTH__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CAP__PM_SUPPORT__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CAP__L0S_EXIT_LATENCY__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CAP__L1_EXIT_LATENCY__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CAP__CLOCK_POWER_MANAGEMENT__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CAP__SURPRISE_DOWN_ERR_REPORTING__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CAP__DL_ACTIVE_REPORTING_CAPABLE__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CAP__LINK_BW_NOTIFICATION_CAP__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CAP__ASPM_OPTIONALITY_COMPLIANCE__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CAP__PORT_NUMBER__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CAP__LINK_SPEED_MASK 0x0000000FL
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CAP__LINK_WIDTH_MASK 0x000003F0L
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CAP__PM_SUPPORT_MASK 0x00000C00L
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CAP__L0S_EXIT_LATENCY_MASK 0x00007000L
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CAP__L1_EXIT_LATENCY_MASK 0x00038000L
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CAP__CLOCK_POWER_MANAGEMENT_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CAP__SURPRISE_DOWN_ERR_REPORTING_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CAP__DL_ACTIVE_REPORTING_CAPABLE_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CAP__LINK_BW_NOTIFICATION_CAP_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CAP__ASPM_OPTIONALITY_COMPLIANCE_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CAP__PORT_NUMBER_MASK 0xFF000000L
+//BIF_CFG_DEV0_EPF0_VF2_LINK_CNTL
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CNTL__PM_CONTROL__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CNTL__PTM_PROP_DELAY_ADAPT_INTER_B__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CNTL__READ_CPL_BOUNDARY__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CNTL__LINK_DIS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CNTL__RETRAIN_LINK__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CNTL__COMMON_CLOCK_CFG__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CNTL__EXTENDED_SYNC__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CNTL__CLOCK_POWER_MANAGEMENT_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CNTL__HW_AUTONOMOUS_WIDTH_DISABLE__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CNTL__LINK_BW_MANAGEMENT_INT_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CNTL__LINK_AUTONOMOUS_BW_INT_EN__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CNTL__DRS_SIGNALING_CONTROL__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CNTL__PM_CONTROL_MASK 0x0003L
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CNTL__PTM_PROP_DELAY_ADAPT_INTER_B_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CNTL__READ_CPL_BOUNDARY_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CNTL__LINK_DIS_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CNTL__RETRAIN_LINK_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CNTL__COMMON_CLOCK_CFG_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CNTL__EXTENDED_SYNC_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CNTL__CLOCK_POWER_MANAGEMENT_EN_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CNTL__HW_AUTONOMOUS_WIDTH_DISABLE_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CNTL__LINK_BW_MANAGEMENT_INT_EN_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CNTL__LINK_AUTONOMOUS_BW_INT_EN_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CNTL__DRS_SIGNALING_CONTROL_MASK 0xC000L
+//BIF_CFG_DEV0_EPF0_VF2_LINK_STATUS
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_STATUS__CURRENT_LINK_SPEED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_STATUS__NEGOTIATED_LINK_WIDTH__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_STATUS__LINK_TRAINING__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_STATUS__SLOT_CLOCK_CFG__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_STATUS__DL_ACTIVE__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_STATUS__LINK_BW_MANAGEMENT_STATUS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_STATUS__LINK_AUTONOMOUS_BW_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_STATUS__CURRENT_LINK_SPEED_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_STATUS__NEGOTIATED_LINK_WIDTH_MASK 0x03F0L
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_STATUS__LINK_TRAINING_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_STATUS__SLOT_CLOCK_CFG_MASK 0x1000L
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_STATUS__DL_ACTIVE_MASK 0x2000L
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_STATUS__LINK_BW_MANAGEMENT_STATUS_MASK 0x4000L
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_STATUS__LINK_AUTONOMOUS_BW_STATUS_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP2
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP2__CPL_TIMEOUT_RANGE_SUPPORTED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP2__CPL_TIMEOUT_DIS_SUPPORTED__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP2__ARI_FORWARDING_SUPPORTED__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP2__ATOMICOP_ROUTING_SUPPORTED__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP2__ATOMICOP_32CMPLT_SUPPORTED__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP2__ATOMICOP_64CMPLT_SUPPORTED__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP2__CAS128_CMPLT_SUPPORTED__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP2__NO_RO_ENABLED_P2P_PASSING__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP2__LTR_SUPPORTED__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP2__TPH_CPLR_SUPPORTED__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP2__LN_SYSTEM_CLS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP2__TEN_BIT_TAG_COMPLETER_SUPPORTED__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP2__TEN_BIT_TAG_REQUESTER_SUPPORTED__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP2__OBFF_SUPPORTED__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP2__EXTENDED_FMT_FIELD_SUPPORTED__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP2__END_END_TLP_PREFIX_SUPPORTED__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP2__MAX_END_END_TLP_PREFIXES__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP2__EMER_POWER_REDUCTION_SUPPORTED__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP2__EMER_POWER_REDUCTION_INIT_REQ__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP2__FRS_SUPPORTED__SHIFT 0x1f
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP2__CPL_TIMEOUT_RANGE_SUPPORTED_MASK 0x0000000FL
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP2__CPL_TIMEOUT_DIS_SUPPORTED_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP2__ARI_FORWARDING_SUPPORTED_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP2__ATOMICOP_ROUTING_SUPPORTED_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP2__ATOMICOP_32CMPLT_SUPPORTED_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP2__ATOMICOP_64CMPLT_SUPPORTED_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP2__CAS128_CMPLT_SUPPORTED_MASK 0x00000200L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP2__NO_RO_ENABLED_P2P_PASSING_MASK 0x00000400L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP2__LTR_SUPPORTED_MASK 0x00000800L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP2__TPH_CPLR_SUPPORTED_MASK 0x00003000L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP2__LN_SYSTEM_CLS_MASK 0x0000C000L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP2__TEN_BIT_TAG_COMPLETER_SUPPORTED_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP2__TEN_BIT_TAG_REQUESTER_SUPPORTED_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP2__OBFF_SUPPORTED_MASK 0x000C0000L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP2__EXTENDED_FMT_FIELD_SUPPORTED_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP2__END_END_TLP_PREFIX_SUPPORTED_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP2__MAX_END_END_TLP_PREFIXES_MASK 0x00C00000L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP2__EMER_POWER_REDUCTION_SUPPORTED_MASK 0x03000000L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP2__EMER_POWER_REDUCTION_INIT_REQ_MASK 0x04000000L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CAP2__FRS_SUPPORTED_MASK 0x80000000L
+//BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL2
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL2__CPL_TIMEOUT_VALUE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL2__CPL_TIMEOUT_DIS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL2__ARI_FORWARDING_EN__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL2__ATOMICOP_REQUEST_EN__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL2__ATOMICOP_EGRESS_BLOCKING__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL2__IDO_REQUEST_ENABLE__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL2__IDO_COMPLETION_ENABLE__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL2__LTR_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL2__EMER_POWER_REDUCTION_REQUEST__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL2__TEN_BIT_TAG_REQUESTER_ENABLE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL2__OBFF_EN__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL2__END_END_TLP_PREFIX_BLOCKING__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL2__CPL_TIMEOUT_VALUE_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL2__CPL_TIMEOUT_DIS_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL2__ARI_FORWARDING_EN_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL2__ATOMICOP_REQUEST_EN_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL2__ATOMICOP_EGRESS_BLOCKING_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL2__IDO_REQUEST_ENABLE_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL2__IDO_COMPLETION_ENABLE_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL2__LTR_EN_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL2__EMER_POWER_REDUCTION_REQUEST_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL2__TEN_BIT_TAG_REQUESTER_ENABLE_MASK 0x1000L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL2__OBFF_EN_MASK 0x6000L
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_CNTL2__END_END_TLP_PREFIX_BLOCKING_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF2_DEVICE_STATUS2
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_STATUS2__RESERVED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_DEVICE_STATUS2__RESERVED_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF2_LINK_CAP2
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CAP2__SUPPORTED_LINK_SPEED__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CAP2__CROSSLINK_SUPPORTED__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CAP2__LOWER_SKP_OS_GEN_SUPPORT__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CAP2__LOWER_SKP_OS_RCV_SUPPORT__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CAP2__RTM1_PRESENCE_DET_SUPPORT__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CAP2__RTM2_PRESENCE_DET_SUPPORT__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CAP2__DRS_SUPPORTED__SHIFT 0x1f
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CAP2__SUPPORTED_LINK_SPEED_MASK 0x000000FEL
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CAP2__CROSSLINK_SUPPORTED_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CAP2__LOWER_SKP_OS_GEN_SUPPORT_MASK 0x0000FE00L
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CAP2__LOWER_SKP_OS_RCV_SUPPORT_MASK 0x007F0000L
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CAP2__RTM1_PRESENCE_DET_SUPPORT_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CAP2__RTM2_PRESENCE_DET_SUPPORT_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CAP2__DRS_SUPPORTED_MASK 0x80000000L
+//BIF_CFG_DEV0_EPF0_VF2_LINK_CNTL2
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CNTL2__TARGET_LINK_SPEED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CNTL2__ENTER_COMPLIANCE__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CNTL2__HW_AUTONOMOUS_SPEED_DISABLE__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CNTL2__SELECTABLE_DEEMPHASIS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CNTL2__XMIT_MARGIN__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CNTL2__ENTER_MOD_COMPLIANCE__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CNTL2__COMPLIANCE_SOS__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CNTL2__COMPLIANCE_DEEMPHASIS__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CNTL2__TARGET_LINK_SPEED_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CNTL2__ENTER_COMPLIANCE_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CNTL2__HW_AUTONOMOUS_SPEED_DISABLE_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CNTL2__SELECTABLE_DEEMPHASIS_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CNTL2__XMIT_MARGIN_MASK 0x0380L
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CNTL2__ENTER_MOD_COMPLIANCE_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CNTL2__COMPLIANCE_SOS_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_CNTL2__COMPLIANCE_DEEMPHASIS_MASK 0xF000L
+//BIF_CFG_DEV0_EPF0_VF2_LINK_STATUS2
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_STATUS2__CUR_DEEMPHASIS_LEVEL__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_STATUS2__EQUALIZATION_COMPLETE_8GT__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_STATUS2__EQUALIZATION_PHASE1_SUCCESS_8GT__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_STATUS2__EQUALIZATION_PHASE2_SUCCESS_8GT__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_STATUS2__EQUALIZATION_PHASE3_SUCCESS_8GT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_STATUS2__LINK_EQUALIZATION_REQUEST_8GT__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_STATUS2__RTM1_PRESENCE_DET__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_STATUS2__RTM2_PRESENCE_DET__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_STATUS2__CROSSLINK_RESOLUTION__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_STATUS2__DOWNSTREAM_COMPONENT_PRESENCE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_STATUS2__DRS_MESSAGE_RECEIVED__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_STATUS2__CUR_DEEMPHASIS_LEVEL_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_STATUS2__EQUALIZATION_COMPLETE_8GT_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_STATUS2__EQUALIZATION_PHASE1_SUCCESS_8GT_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_STATUS2__EQUALIZATION_PHASE2_SUCCESS_8GT_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_STATUS2__EQUALIZATION_PHASE3_SUCCESS_8GT_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_STATUS2__LINK_EQUALIZATION_REQUEST_8GT_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_STATUS2__RTM1_PRESENCE_DET_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_STATUS2__RTM2_PRESENCE_DET_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_STATUS2__CROSSLINK_RESOLUTION_MASK 0x0300L
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_STATUS2__DOWNSTREAM_COMPONENT_PRESENCE_MASK 0x7000L
+#define BIF_CFG_DEV0_EPF0_VF2_LINK_STATUS2__DRS_MESSAGE_RECEIVED_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF2_MSI_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF2_MSI_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_MSI_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF2_MSI_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_EPF0_VF2_MSI_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_VF2_MSI_MSG_CNTL
+#define BIF_CFG_DEV0_EPF0_VF2_MSI_MSG_CNTL__MSI_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_MSI_MSG_CNTL__MSI_MULTI_CAP__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF2_MSI_MSG_CNTL__MSI_MULTI_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF2_MSI_MSG_CNTL__MSI_64BIT__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF2_MSI_MSG_CNTL__MSI_PERVECTOR_MASKING_CAP__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF2_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_CAP__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF2_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF2_MSI_MSG_CNTL__MSI_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF2_MSI_MSG_CNTL__MSI_MULTI_CAP_MASK 0x000EL
+#define BIF_CFG_DEV0_EPF0_VF2_MSI_MSG_CNTL__MSI_MULTI_EN_MASK 0x0070L
+#define BIF_CFG_DEV0_EPF0_VF2_MSI_MSG_CNTL__MSI_64BIT_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF2_MSI_MSG_CNTL__MSI_PERVECTOR_MASKING_CAP_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF2_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_CAP_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_VF2_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_EN_MASK 0x0400L
+//BIF_CFG_DEV0_EPF0_VF2_MSI_MSG_ADDR_LO
+#define BIF_CFG_DEV0_EPF0_VF2_MSI_MSG_ADDR_LO__MSI_MSG_ADDR_LO__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF2_MSI_MSG_ADDR_LO__MSI_MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//BIF_CFG_DEV0_EPF0_VF2_MSI_MSG_ADDR_HI
+#define BIF_CFG_DEV0_EPF0_VF2_MSI_MSG_ADDR_HI__MSI_MSG_ADDR_HI__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_MSI_MSG_ADDR_HI__MSI_MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF2_MSI_MSG_DATA
+#define BIF_CFG_DEV0_EPF0_VF2_MSI_MSG_DATA__MSI_DATA__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_MSI_MSG_DATA__MSI_DATA_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF2_MSI_EXT_MSG_DATA
+#define BIF_CFG_DEV0_EPF0_VF2_MSI_EXT_MSG_DATA__MSI_EXT_DATA__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_MSI_EXT_MSG_DATA__MSI_EXT_DATA_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF2_MSI_MASK
+#define BIF_CFG_DEV0_EPF0_VF2_MSI_MASK__MSI_MASK__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_MSI_MASK__MSI_MASK_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF2_MSI_MSG_DATA_64
+#define BIF_CFG_DEV0_EPF0_VF2_MSI_MSG_DATA_64__MSI_DATA_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_MSI_MSG_DATA_64__MSI_DATA_64_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF2_MSI_EXT_MSG_DATA_64
+#define BIF_CFG_DEV0_EPF0_VF2_MSI_EXT_MSG_DATA_64__MSI_EXT_DATA_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_MSI_EXT_MSG_DATA_64__MSI_EXT_DATA_64_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF2_MSI_MASK_64
+#define BIF_CFG_DEV0_EPF0_VF2_MSI_MASK_64__MSI_MASK_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_MSI_MASK_64__MSI_MASK_64_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF2_MSI_PENDING
+#define BIF_CFG_DEV0_EPF0_VF2_MSI_PENDING__MSI_PENDING__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_MSI_PENDING__MSI_PENDING_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF2_MSI_PENDING_64
+#define BIF_CFG_DEV0_EPF0_VF2_MSI_PENDING_64__MSI_PENDING_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_MSI_PENDING_64__MSI_PENDING_64_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF2_MSIX_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF2_MSIX_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_MSIX_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF2_MSIX_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_EPF0_VF2_MSIX_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_VF2_MSIX_MSG_CNTL
+#define BIF_CFG_DEV0_EPF0_VF2_MSIX_MSG_CNTL__MSIX_TABLE_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_MSIX_MSG_CNTL__MSIX_FUNC_MASK__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF2_MSIX_MSG_CNTL__MSIX_EN__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF2_MSIX_MSG_CNTL__MSIX_TABLE_SIZE_MASK 0x07FFL
+#define BIF_CFG_DEV0_EPF0_VF2_MSIX_MSG_CNTL__MSIX_FUNC_MASK_MASK 0x4000L
+#define BIF_CFG_DEV0_EPF0_VF2_MSIX_MSG_CNTL__MSIX_EN_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF2_MSIX_TABLE
+#define BIF_CFG_DEV0_EPF0_VF2_MSIX_TABLE__MSIX_TABLE_BIR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_MSIX_TABLE__MSIX_TABLE_OFFSET__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF2_MSIX_TABLE__MSIX_TABLE_BIR_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF0_VF2_MSIX_TABLE__MSIX_TABLE_OFFSET_MASK 0xFFFFFFF8L
+//BIF_CFG_DEV0_EPF0_VF2_MSIX_PBA
+#define BIF_CFG_DEV0_EPF0_VF2_MSIX_PBA__MSIX_PBA_BIR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_MSIX_PBA__MSIX_PBA_OFFSET__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF2_MSIX_PBA__MSIX_PBA_BIR_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF0_VF2_MSIX_PBA__MSIX_PBA_OFFSET_MASK 0xFFFFFFF8L
+//BIF_CFG_DEV0_EPF0_VF2_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_VF2_PCIE_VENDOR_SPECIFIC_HDR
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_VENDOR_SPECIFIC_HDR__VSEC_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_VENDOR_SPECIFIC_HDR__VSEC_REV__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_VENDOR_SPECIFIC_HDR__VSEC_LENGTH__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_VENDOR_SPECIFIC_HDR__VSEC_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_VENDOR_SPECIFIC_HDR__VSEC_REV_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_VENDOR_SPECIFIC_HDR__VSEC_LENGTH_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_VF2_PCIE_VENDOR_SPECIFIC1
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_VENDOR_SPECIFIC1__SCRATCH__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_VENDOR_SPECIFIC1__SCRATCH_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF2_PCIE_VENDOR_SPECIFIC2
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_VENDOR_SPECIFIC2__SCRATCH__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_VENDOR_SPECIFIC2__SCRATCH_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF2_PCIE_ADV_ERR_RPT_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_STATUS
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_STATUS__DLP_ERR_STATUS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_STATUS__SURPDN_ERR_STATUS__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_STATUS__PSN_ERR_STATUS__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_STATUS__FC_ERR_STATUS__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_STATUS__CPL_TIMEOUT_STATUS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_STATUS__CPL_ABORT_ERR_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_STATUS__UNEXP_CPL_STATUS__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_STATUS__RCV_OVFL_STATUS__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_STATUS__MAL_TLP_STATUS__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_STATUS__ECRC_ERR_STATUS__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_STATUS__UNSUPP_REQ_ERR_STATUS__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_STATUS__ACS_VIOLATION_STATUS__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_STATUS__UNCORR_INT_ERR_STATUS__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_STATUS__MC_BLOCKED_TLP_STATUS__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_STATUS__ATOMICOP_EGRESS_BLOCKED_STATUS__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_STATUS__TLP_PREFIX_BLOCKED_ERR_STATUS__SHIFT 0x19
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_STATUS__POISONED_TLP_EGRESS_BLOCKED_STATUS__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_STATUS__DLP_ERR_STATUS_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_STATUS__SURPDN_ERR_STATUS_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_STATUS__PSN_ERR_STATUS_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_STATUS__FC_ERR_STATUS_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_STATUS__CPL_TIMEOUT_STATUS_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_STATUS__CPL_ABORT_ERR_STATUS_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_STATUS__UNEXP_CPL_STATUS_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_STATUS__RCV_OVFL_STATUS_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_STATUS__MAL_TLP_STATUS_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_STATUS__ECRC_ERR_STATUS_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_STATUS__UNSUPP_REQ_ERR_STATUS_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_STATUS__ACS_VIOLATION_STATUS_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_STATUS__UNCORR_INT_ERR_STATUS_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_STATUS__MC_BLOCKED_TLP_STATUS_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_STATUS__ATOMICOP_EGRESS_BLOCKED_STATUS_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_STATUS__TLP_PREFIX_BLOCKED_ERR_STATUS_MASK 0x02000000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_STATUS__POISONED_TLP_EGRESS_BLOCKED_STATUS_MASK 0x04000000L
+//BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_MASK
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_MASK__DLP_ERR_MASK__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_MASK__SURPDN_ERR_MASK__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_MASK__PSN_ERR_MASK__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_MASK__FC_ERR_MASK__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_MASK__CPL_TIMEOUT_MASK__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_MASK__CPL_ABORT_ERR_MASK__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_MASK__UNEXP_CPL_MASK__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_MASK__RCV_OVFL_MASK__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_MASK__MAL_TLP_MASK__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_MASK__ECRC_ERR_MASK__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_MASK__UNSUPP_REQ_ERR_MASK__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_MASK__ACS_VIOLATION_MASK__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_MASK__UNCORR_INT_ERR_MASK__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_MASK__MC_BLOCKED_TLP_MASK__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_MASK__ATOMICOP_EGRESS_BLOCKED_MASK__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_MASK__TLP_PREFIX_BLOCKED_ERR_MASK__SHIFT 0x19
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_MASK__POISONED_TLP_EGRESS_BLOCKED_MASK__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_MASK__DLP_ERR_MASK_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_MASK__SURPDN_ERR_MASK_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_MASK__PSN_ERR_MASK_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_MASK__FC_ERR_MASK_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_MASK__CPL_TIMEOUT_MASK_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_MASK__CPL_ABORT_ERR_MASK_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_MASK__UNEXP_CPL_MASK_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_MASK__RCV_OVFL_MASK_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_MASK__MAL_TLP_MASK_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_MASK__ECRC_ERR_MASK_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_MASK__UNSUPP_REQ_ERR_MASK_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_MASK__ACS_VIOLATION_MASK_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_MASK__UNCORR_INT_ERR_MASK_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_MASK__MC_BLOCKED_TLP_MASK_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_MASK__ATOMICOP_EGRESS_BLOCKED_MASK_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_MASK__TLP_PREFIX_BLOCKED_ERR_MASK_MASK 0x02000000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_MASK__POISONED_TLP_EGRESS_BLOCKED_MASK_MASK 0x04000000L
+//BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_SEVERITY
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_SEVERITY__DLP_ERR_SEVERITY__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_SEVERITY__SURPDN_ERR_SEVERITY__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_SEVERITY__PSN_ERR_SEVERITY__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_SEVERITY__FC_ERR_SEVERITY__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_SEVERITY__CPL_TIMEOUT_SEVERITY__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_SEVERITY__CPL_ABORT_ERR_SEVERITY__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_SEVERITY__UNEXP_CPL_SEVERITY__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_SEVERITY__RCV_OVFL_SEVERITY__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_SEVERITY__MAL_TLP_SEVERITY__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_SEVERITY__ECRC_ERR_SEVERITY__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_SEVERITY__UNSUPP_REQ_ERR_SEVERITY__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_SEVERITY__ACS_VIOLATION_SEVERITY__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_SEVERITY__UNCORR_INT_ERR_SEVERITY__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_SEVERITY__MC_BLOCKED_TLP_SEVERITY__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_SEVERITY__ATOMICOP_EGRESS_BLOCKED_SEVERITY__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_SEVERITY__TLP_PREFIX_BLOCKED_ERR_SEVERITY__SHIFT 0x19
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_SEVERITY__POISONED_TLP_EGRESS_BLOCKED_SEVERITY__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_SEVERITY__DLP_ERR_SEVERITY_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_SEVERITY__SURPDN_ERR_SEVERITY_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_SEVERITY__PSN_ERR_SEVERITY_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_SEVERITY__FC_ERR_SEVERITY_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_SEVERITY__CPL_TIMEOUT_SEVERITY_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_SEVERITY__CPL_ABORT_ERR_SEVERITY_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_SEVERITY__UNEXP_CPL_SEVERITY_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_SEVERITY__RCV_OVFL_SEVERITY_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_SEVERITY__MAL_TLP_SEVERITY_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_SEVERITY__ECRC_ERR_SEVERITY_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_SEVERITY__UNSUPP_REQ_ERR_SEVERITY_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_SEVERITY__ACS_VIOLATION_SEVERITY_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_SEVERITY__UNCORR_INT_ERR_SEVERITY_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_SEVERITY__MC_BLOCKED_TLP_SEVERITY_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_SEVERITY__ATOMICOP_EGRESS_BLOCKED_SEVERITY_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_SEVERITY__TLP_PREFIX_BLOCKED_ERR_SEVERITY_MASK 0x02000000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_UNCORR_ERR_SEVERITY__POISONED_TLP_EGRESS_BLOCKED_SEVERITY_MASK 0x04000000L
+//BIF_CFG_DEV0_EPF0_VF2_PCIE_CORR_ERR_STATUS
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_CORR_ERR_STATUS__RCV_ERR_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_CORR_ERR_STATUS__BAD_TLP_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_CORR_ERR_STATUS__BAD_DLLP_STATUS__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_CORR_ERR_STATUS__REPLAY_NUM_ROLLOVER_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_CORR_ERR_STATUS__REPLAY_TIMER_TIMEOUT_STATUS__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_CORR_ERR_STATUS__ADVISORY_NONFATAL_ERR_STATUS__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_CORR_ERR_STATUS__CORR_INT_ERR_STATUS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_CORR_ERR_STATUS__HDR_LOG_OVFL_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_CORR_ERR_STATUS__RCV_ERR_STATUS_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_CORR_ERR_STATUS__BAD_TLP_STATUS_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_CORR_ERR_STATUS__BAD_DLLP_STATUS_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_CORR_ERR_STATUS__REPLAY_NUM_ROLLOVER_STATUS_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_CORR_ERR_STATUS__REPLAY_TIMER_TIMEOUT_STATUS_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_CORR_ERR_STATUS__ADVISORY_NONFATAL_ERR_STATUS_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_CORR_ERR_STATUS__CORR_INT_ERR_STATUS_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_CORR_ERR_STATUS__HDR_LOG_OVFL_STATUS_MASK 0x00008000L
+//BIF_CFG_DEV0_EPF0_VF2_PCIE_CORR_ERR_MASK
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_CORR_ERR_MASK__RCV_ERR_MASK__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_CORR_ERR_MASK__BAD_TLP_MASK__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_CORR_ERR_MASK__BAD_DLLP_MASK__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_CORR_ERR_MASK__REPLAY_NUM_ROLLOVER_MASK__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_CORR_ERR_MASK__REPLAY_TIMER_TIMEOUT_MASK__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_CORR_ERR_MASK__ADVISORY_NONFATAL_ERR_MASK__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_CORR_ERR_MASK__CORR_INT_ERR_MASK__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_CORR_ERR_MASK__HDR_LOG_OVFL_MASK__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_CORR_ERR_MASK__RCV_ERR_MASK_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_CORR_ERR_MASK__BAD_TLP_MASK_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_CORR_ERR_MASK__BAD_DLLP_MASK_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_CORR_ERR_MASK__REPLAY_NUM_ROLLOVER_MASK_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_CORR_ERR_MASK__REPLAY_TIMER_TIMEOUT_MASK_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_CORR_ERR_MASK__ADVISORY_NONFATAL_ERR_MASK_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_CORR_ERR_MASK__CORR_INT_ERR_MASK_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_CORR_ERR_MASK__HDR_LOG_OVFL_MASK_MASK 0x00008000L
+//BIF_CFG_DEV0_EPF0_VF2_PCIE_ADV_ERR_CAP_CNTL
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ADV_ERR_CAP_CNTL__FIRST_ERR_PTR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_CAP__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_EN__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_CAP__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_CAP__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ADV_ERR_CAP_CNTL__TLP_PREFIX_LOG_PRESENT__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ADV_ERR_CAP_CNTL__COMPLETION_TIMEOUT_LOG_CAPABLE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ADV_ERR_CAP_CNTL__FIRST_ERR_PTR_MASK 0x0000001FL
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_CAP_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_EN_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_CAP_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_EN_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_CAP_MASK 0x00000200L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_EN_MASK 0x00000400L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ADV_ERR_CAP_CNTL__TLP_PREFIX_LOG_PRESENT_MASK 0x00000800L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ADV_ERR_CAP_CNTL__COMPLETION_TIMEOUT_LOG_CAPABLE_MASK 0x00001000L
+//BIF_CFG_DEV0_EPF0_VF2_PCIE_HDR_LOG0
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_HDR_LOG0__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_HDR_LOG0__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF2_PCIE_HDR_LOG1
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_HDR_LOG1__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_HDR_LOG1__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF2_PCIE_HDR_LOG2
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_HDR_LOG2__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_HDR_LOG2__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF2_PCIE_HDR_LOG3
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_HDR_LOG3__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_HDR_LOG3__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF2_PCIE_TLP_PREFIX_LOG0
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_TLP_PREFIX_LOG0__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_TLP_PREFIX_LOG0__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF2_PCIE_TLP_PREFIX_LOG1
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_TLP_PREFIX_LOG1__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_TLP_PREFIX_LOG1__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF2_PCIE_TLP_PREFIX_LOG2
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_TLP_PREFIX_LOG2__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_TLP_PREFIX_LOG2__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF2_PCIE_TLP_PREFIX_LOG3
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_TLP_PREFIX_LOG3__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_TLP_PREFIX_LOG3__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF2_PCIE_ATS_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ATS_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ATS_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ATS_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ATS_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ATS_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ATS_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_VF2_PCIE_ATS_CAP
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ATS_CAP__INVALIDATE_Q_DEPTH__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ATS_CAP__PAGE_ALIGNED_REQUEST__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ATS_CAP__GLOBAL_INVALIDATE_SUPPORTED__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ATS_CAP__RELAXED_ORDERING_SUPPORTED__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ATS_CAP__INVALIDATE_Q_DEPTH_MASK 0x001FL
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ATS_CAP__PAGE_ALIGNED_REQUEST_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ATS_CAP__GLOBAL_INVALIDATE_SUPPORTED_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ATS_CAP__RELAXED_ORDERING_SUPPORTED_MASK 0x0080L
+//BIF_CFG_DEV0_EPF0_VF2_PCIE_ATS_CNTL
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ATS_CNTL__STU__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ATS_CNTL__ATC_ENABLE__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ATS_CNTL__STU_MASK 0x001FL
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ATS_CNTL__ATC_ENABLE_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF2_PCIE_ARI_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ARI_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ARI_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ARI_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ARI_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ARI_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ARI_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_VF2_PCIE_ARI_CAP
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ARI_CAP__ARI_MFVC_FUNC_GROUPS_CAP__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ARI_CAP__ARI_ACS_FUNC_GROUPS_CAP__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ARI_CAP__ARI_NEXT_FUNC_NUM__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ARI_CAP__ARI_MFVC_FUNC_GROUPS_CAP_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ARI_CAP__ARI_ACS_FUNC_GROUPS_CAP_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ARI_CAP__ARI_NEXT_FUNC_NUM_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_VF2_PCIE_ARI_CNTL
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ARI_CNTL__ARI_MFVC_FUNC_GROUPS_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ARI_CNTL__ARI_ACS_FUNC_GROUPS_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ARI_CNTL__ARI_FUNCTION_GROUP__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ARI_CNTL__ARI_MFVC_FUNC_GROUPS_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ARI_CNTL__ARI_ACS_FUNC_GROUPS_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF2_PCIE_ARI_CNTL__ARI_FUNCTION_GROUP_MASK 0x0070L
+
+
+// addressBlock: aid_nbio_nbif0_bif_cfg_dev0_epf0_vf3_bifcfgdecp
+//BIF_CFG_DEV0_EPF0_VF3_VENDOR_ID
+#define BIF_CFG_DEV0_EPF0_VF3_VENDOR_ID__VENDOR_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_VENDOR_ID__VENDOR_ID_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF3_DEVICE_ID
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_ID__DEVICE_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_ID__DEVICE_ID_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF3_COMMAND
+#define BIF_CFG_DEV0_EPF0_VF3_COMMAND__IO_ACCESS_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_COMMAND__MEM_ACCESS_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF3_COMMAND__BUS_MASTER_EN__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF3_COMMAND__SPECIAL_CYCLE_EN__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF3_COMMAND__MEM_WRITE_INVALIDATE_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF3_COMMAND__PAL_SNOOP_EN__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF3_COMMAND__PARITY_ERROR_RESPONSE__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF3_COMMAND__AD_STEPPING__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF3_COMMAND__SERR_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF3_COMMAND__FAST_B2B_EN__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF3_COMMAND__INT_DIS__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF3_COMMAND__IO_ACCESS_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF3_COMMAND__MEM_ACCESS_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF3_COMMAND__BUS_MASTER_EN_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_VF3_COMMAND__SPECIAL_CYCLE_EN_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF3_COMMAND__MEM_WRITE_INVALIDATE_EN_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF3_COMMAND__PAL_SNOOP_EN_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF3_COMMAND__PARITY_ERROR_RESPONSE_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF3_COMMAND__AD_STEPPING_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF3_COMMAND__SERR_EN_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF3_COMMAND__FAST_B2B_EN_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_VF3_COMMAND__INT_DIS_MASK 0x0400L
+//BIF_CFG_DEV0_EPF0_VF3_STATUS
+#define BIF_CFG_DEV0_EPF0_VF3_STATUS__IMMEDIATE_READINESS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_STATUS__INT_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF3_STATUS__CAP_LIST__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF3_STATUS__PCI_66_CAP__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF3_STATUS__FAST_BACK_CAPABLE__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF3_STATUS__MASTER_DATA_PARITY_ERROR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF3_STATUS__DEVSEL_TIMING__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF3_STATUS__SIGNAL_TARGET_ABORT__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF3_STATUS__RECEIVED_TARGET_ABORT__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF3_STATUS__RECEIVED_MASTER_ABORT__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF3_STATUS__SIGNALED_SYSTEM_ERROR__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF3_STATUS__PARITY_ERROR_DETECTED__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF3_STATUS__IMMEDIATE_READINESS_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF3_STATUS__INT_STATUS_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF3_STATUS__CAP_LIST_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF3_STATUS__PCI_66_CAP_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF3_STATUS__FAST_BACK_CAPABLE_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF3_STATUS__MASTER_DATA_PARITY_ERROR_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF3_STATUS__DEVSEL_TIMING_MASK 0x0600L
+#define BIF_CFG_DEV0_EPF0_VF3_STATUS__SIGNAL_TARGET_ABORT_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF3_STATUS__RECEIVED_TARGET_ABORT_MASK 0x1000L
+#define BIF_CFG_DEV0_EPF0_VF3_STATUS__RECEIVED_MASTER_ABORT_MASK 0x2000L
+#define BIF_CFG_DEV0_EPF0_VF3_STATUS__SIGNALED_SYSTEM_ERROR_MASK 0x4000L
+#define BIF_CFG_DEV0_EPF0_VF3_STATUS__PARITY_ERROR_DETECTED_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF3_REVISION_ID
+#define BIF_CFG_DEV0_EPF0_VF3_REVISION_ID__MINOR_REV_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_REVISION_ID__MAJOR_REV_ID__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF3_REVISION_ID__MINOR_REV_ID_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_VF3_REVISION_ID__MAJOR_REV_ID_MASK 0xF0L
+//BIF_CFG_DEV0_EPF0_VF3_PROG_INTERFACE
+#define BIF_CFG_DEV0_EPF0_VF3_PROG_INTERFACE__PROG_INTERFACE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_PROG_INTERFACE__PROG_INTERFACE_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF3_SUB_CLASS
+#define BIF_CFG_DEV0_EPF0_VF3_SUB_CLASS__SUB_CLASS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_SUB_CLASS__SUB_CLASS_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF3_BASE_CLASS
+#define BIF_CFG_DEV0_EPF0_VF3_BASE_CLASS__BASE_CLASS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_BASE_CLASS__BASE_CLASS_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF3_CACHE_LINE
+#define BIF_CFG_DEV0_EPF0_VF3_CACHE_LINE__CACHE_LINE_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_CACHE_LINE__CACHE_LINE_SIZE_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF3_LATENCY
+#define BIF_CFG_DEV0_EPF0_VF3_LATENCY__LATENCY_TIMER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_LATENCY__LATENCY_TIMER_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF3_HEADER
+#define BIF_CFG_DEV0_EPF0_VF3_HEADER__HEADER_TYPE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_HEADER__DEVICE_TYPE__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF3_HEADER__HEADER_TYPE_MASK 0x7FL
+#define BIF_CFG_DEV0_EPF0_VF3_HEADER__DEVICE_TYPE_MASK 0x80L
+//BIF_CFG_DEV0_EPF0_VF3_BIST
+#define BIF_CFG_DEV0_EPF0_VF3_BIST__BIST_COMP__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_BIST__BIST_STRT__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF3_BIST__BIST_CAP__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF3_BIST__BIST_COMP_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_VF3_BIST__BIST_STRT_MASK 0x40L
+#define BIF_CFG_DEV0_EPF0_VF3_BIST__BIST_CAP_MASK 0x80L
+//BIF_CFG_DEV0_EPF0_VF3_BASE_ADDR_1
+#define BIF_CFG_DEV0_EPF0_VF3_BASE_ADDR_1__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_BASE_ADDR_1__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF3_BASE_ADDR_2
+#define BIF_CFG_DEV0_EPF0_VF3_BASE_ADDR_2__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_BASE_ADDR_2__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF3_BASE_ADDR_3
+#define BIF_CFG_DEV0_EPF0_VF3_BASE_ADDR_3__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_BASE_ADDR_3__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF3_BASE_ADDR_4
+#define BIF_CFG_DEV0_EPF0_VF3_BASE_ADDR_4__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_BASE_ADDR_4__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF3_BASE_ADDR_5
+#define BIF_CFG_DEV0_EPF0_VF3_BASE_ADDR_5__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_BASE_ADDR_5__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF3_BASE_ADDR_6
+#define BIF_CFG_DEV0_EPF0_VF3_BASE_ADDR_6__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_BASE_ADDR_6__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF3_CARDBUS_CIS_PTR
+#define BIF_CFG_DEV0_EPF0_VF3_CARDBUS_CIS_PTR__CARDBUS_CIS_PTR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_CARDBUS_CIS_PTR__CARDBUS_CIS_PTR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF3_ADAPTER_ID
+#define BIF_CFG_DEV0_EPF0_VF3_ADAPTER_ID__SUBSYSTEM_VENDOR_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_ADAPTER_ID__SUBSYSTEM_ID__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF3_ADAPTER_ID__SUBSYSTEM_VENDOR_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF3_ADAPTER_ID__SUBSYSTEM_ID_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_VF3_ROM_BASE_ADDR
+#define BIF_CFG_DEV0_EPF0_VF3_ROM_BASE_ADDR__ROM_ENABLE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_ROM_BASE_ADDR__ROM_VALIDATION_STATUS__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF3_ROM_BASE_ADDR__ROM_VALIDATION_DETAILS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF3_ROM_BASE_ADDR__BASE_ADDR__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF3_ROM_BASE_ADDR__ROM_ENABLE_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_VF3_ROM_BASE_ADDR__ROM_VALIDATION_STATUS_MASK 0x0000000EL
+#define BIF_CFG_DEV0_EPF0_VF3_ROM_BASE_ADDR__ROM_VALIDATION_DETAILS_MASK 0x000000F0L
+#define BIF_CFG_DEV0_EPF0_VF3_ROM_BASE_ADDR__BASE_ADDR_MASK 0xFFFFF800L
+//BIF_CFG_DEV0_EPF0_VF3_CAP_PTR
+#define BIF_CFG_DEV0_EPF0_VF3_CAP_PTR__CAP_PTR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_CAP_PTR__CAP_PTR_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF3_INTERRUPT_LINE
+#define BIF_CFG_DEV0_EPF0_VF3_INTERRUPT_LINE__INTERRUPT_LINE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_INTERRUPT_LINE__INTERRUPT_LINE_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF3_INTERRUPT_PIN
+#define BIF_CFG_DEV0_EPF0_VF3_INTERRUPT_PIN__INTERRUPT_PIN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_INTERRUPT_PIN__INTERRUPT_PIN_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF3_MIN_GRANT
+#define BIF_CFG_DEV0_EPF0_VF3_MIN_GRANT__MIN_GNT__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_MIN_GRANT__MIN_GNT_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF3_MAX_LATENCY
+#define BIF_CFG_DEV0_EPF0_VF3_MAX_LATENCY__MAX_LAT__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_MAX_LATENCY__MAX_LAT_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF3_PCIE_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_VF3_PCIE_CAP
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_CAP__VERSION__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_CAP__DEVICE_TYPE__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_CAP__SLOT_IMPLEMENTED__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_CAP__INT_MESSAGE_NUM__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_CAP__VERSION_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_CAP__DEVICE_TYPE_MASK 0x00F0L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_CAP__SLOT_IMPLEMENTED_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_CAP__INT_MESSAGE_NUM_MASK 0x3E00L
+//BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP__MAX_PAYLOAD_SUPPORT__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP__PHANTOM_FUNC__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP__EXTENDED_TAG__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP__L0S_ACCEPTABLE_LATENCY__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP__L1_ACCEPTABLE_LATENCY__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP__ROLE_BASED_ERR_REPORTING__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP__ERR_COR_SUBCLASS_CAPABLE__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP__CAPTURED_SLOT_POWER_LIMIT__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP__CAPTURED_SLOT_POWER_SCALE__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP__FLR_CAPABLE__SHIFT 0x1c
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP__MAX_PAYLOAD_SUPPORT_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP__PHANTOM_FUNC_MASK 0x00000018L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP__EXTENDED_TAG_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP__L0S_ACCEPTABLE_LATENCY_MASK 0x000001C0L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP__L1_ACCEPTABLE_LATENCY_MASK 0x00000E00L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP__ROLE_BASED_ERR_REPORTING_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP__ERR_COR_SUBCLASS_CAPABLE_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP__CAPTURED_SLOT_POWER_LIMIT_MASK 0x03FC0000L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP__CAPTURED_SLOT_POWER_SCALE_MASK 0x0C000000L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP__FLR_CAPABLE_MASK 0x10000000L
+//BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL__CORR_ERR_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL__NON_FATAL_ERR_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL__FATAL_ERR_EN__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL__USR_REPORT_EN__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL__RELAXED_ORD_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL__MAX_PAYLOAD_SIZE__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL__EXTENDED_TAG_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL__PHANTOM_FUNC_EN__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL__AUX_POWER_PM_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL__NO_SNOOP_EN__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL__MAX_READ_REQUEST_SIZE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL__INITIATE_FLR__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL__CORR_ERR_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL__NON_FATAL_ERR_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL__FATAL_ERR_EN_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL__USR_REPORT_EN_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL__RELAXED_ORD_EN_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL__MAX_PAYLOAD_SIZE_MASK 0x00E0L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL__EXTENDED_TAG_EN_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL__PHANTOM_FUNC_EN_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL__AUX_POWER_PM_EN_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL__NO_SNOOP_EN_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL__MAX_READ_REQUEST_SIZE_MASK 0x7000L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL__INITIATE_FLR_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF3_DEVICE_STATUS
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_STATUS__CORR_ERR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_STATUS__NON_FATAL_ERR__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_STATUS__FATAL_ERR__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_STATUS__USR_DETECTED__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_STATUS__AUX_PWR__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_STATUS__TRANSACTIONS_PEND__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_STATUS__EMER_POWER_REDUCTION_DETECTED__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_STATUS__CORR_ERR_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_STATUS__NON_FATAL_ERR_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_STATUS__FATAL_ERR_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_STATUS__USR_DETECTED_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_STATUS__AUX_PWR_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_STATUS__TRANSACTIONS_PEND_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_STATUS__EMER_POWER_REDUCTION_DETECTED_MASK 0x0040L
+//BIF_CFG_DEV0_EPF0_VF3_LINK_CAP
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CAP__LINK_SPEED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CAP__LINK_WIDTH__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CAP__PM_SUPPORT__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CAP__L0S_EXIT_LATENCY__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CAP__L1_EXIT_LATENCY__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CAP__CLOCK_POWER_MANAGEMENT__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CAP__SURPRISE_DOWN_ERR_REPORTING__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CAP__DL_ACTIVE_REPORTING_CAPABLE__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CAP__LINK_BW_NOTIFICATION_CAP__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CAP__ASPM_OPTIONALITY_COMPLIANCE__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CAP__PORT_NUMBER__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CAP__LINK_SPEED_MASK 0x0000000FL
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CAP__LINK_WIDTH_MASK 0x000003F0L
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CAP__PM_SUPPORT_MASK 0x00000C00L
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CAP__L0S_EXIT_LATENCY_MASK 0x00007000L
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CAP__L1_EXIT_LATENCY_MASK 0x00038000L
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CAP__CLOCK_POWER_MANAGEMENT_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CAP__SURPRISE_DOWN_ERR_REPORTING_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CAP__DL_ACTIVE_REPORTING_CAPABLE_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CAP__LINK_BW_NOTIFICATION_CAP_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CAP__ASPM_OPTIONALITY_COMPLIANCE_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CAP__PORT_NUMBER_MASK 0xFF000000L
+//BIF_CFG_DEV0_EPF0_VF3_LINK_CNTL
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CNTL__PM_CONTROL__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CNTL__PTM_PROP_DELAY_ADAPT_INTER_B__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CNTL__READ_CPL_BOUNDARY__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CNTL__LINK_DIS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CNTL__RETRAIN_LINK__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CNTL__COMMON_CLOCK_CFG__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CNTL__EXTENDED_SYNC__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CNTL__CLOCK_POWER_MANAGEMENT_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CNTL__HW_AUTONOMOUS_WIDTH_DISABLE__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CNTL__LINK_BW_MANAGEMENT_INT_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CNTL__LINK_AUTONOMOUS_BW_INT_EN__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CNTL__DRS_SIGNALING_CONTROL__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CNTL__PM_CONTROL_MASK 0x0003L
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CNTL__PTM_PROP_DELAY_ADAPT_INTER_B_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CNTL__READ_CPL_BOUNDARY_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CNTL__LINK_DIS_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CNTL__RETRAIN_LINK_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CNTL__COMMON_CLOCK_CFG_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CNTL__EXTENDED_SYNC_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CNTL__CLOCK_POWER_MANAGEMENT_EN_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CNTL__HW_AUTONOMOUS_WIDTH_DISABLE_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CNTL__LINK_BW_MANAGEMENT_INT_EN_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CNTL__LINK_AUTONOMOUS_BW_INT_EN_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CNTL__DRS_SIGNALING_CONTROL_MASK 0xC000L
+//BIF_CFG_DEV0_EPF0_VF3_LINK_STATUS
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_STATUS__CURRENT_LINK_SPEED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_STATUS__NEGOTIATED_LINK_WIDTH__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_STATUS__LINK_TRAINING__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_STATUS__SLOT_CLOCK_CFG__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_STATUS__DL_ACTIVE__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_STATUS__LINK_BW_MANAGEMENT_STATUS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_STATUS__LINK_AUTONOMOUS_BW_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_STATUS__CURRENT_LINK_SPEED_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_STATUS__NEGOTIATED_LINK_WIDTH_MASK 0x03F0L
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_STATUS__LINK_TRAINING_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_STATUS__SLOT_CLOCK_CFG_MASK 0x1000L
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_STATUS__DL_ACTIVE_MASK 0x2000L
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_STATUS__LINK_BW_MANAGEMENT_STATUS_MASK 0x4000L
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_STATUS__LINK_AUTONOMOUS_BW_STATUS_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP2
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP2__CPL_TIMEOUT_RANGE_SUPPORTED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP2__CPL_TIMEOUT_DIS_SUPPORTED__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP2__ARI_FORWARDING_SUPPORTED__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP2__ATOMICOP_ROUTING_SUPPORTED__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP2__ATOMICOP_32CMPLT_SUPPORTED__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP2__ATOMICOP_64CMPLT_SUPPORTED__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP2__CAS128_CMPLT_SUPPORTED__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP2__NO_RO_ENABLED_P2P_PASSING__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP2__LTR_SUPPORTED__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP2__TPH_CPLR_SUPPORTED__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP2__LN_SYSTEM_CLS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP2__TEN_BIT_TAG_COMPLETER_SUPPORTED__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP2__TEN_BIT_TAG_REQUESTER_SUPPORTED__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP2__OBFF_SUPPORTED__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP2__EXTENDED_FMT_FIELD_SUPPORTED__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP2__END_END_TLP_PREFIX_SUPPORTED__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP2__MAX_END_END_TLP_PREFIXES__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP2__EMER_POWER_REDUCTION_SUPPORTED__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP2__EMER_POWER_REDUCTION_INIT_REQ__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP2__FRS_SUPPORTED__SHIFT 0x1f
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP2__CPL_TIMEOUT_RANGE_SUPPORTED_MASK 0x0000000FL
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP2__CPL_TIMEOUT_DIS_SUPPORTED_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP2__ARI_FORWARDING_SUPPORTED_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP2__ATOMICOP_ROUTING_SUPPORTED_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP2__ATOMICOP_32CMPLT_SUPPORTED_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP2__ATOMICOP_64CMPLT_SUPPORTED_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP2__CAS128_CMPLT_SUPPORTED_MASK 0x00000200L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP2__NO_RO_ENABLED_P2P_PASSING_MASK 0x00000400L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP2__LTR_SUPPORTED_MASK 0x00000800L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP2__TPH_CPLR_SUPPORTED_MASK 0x00003000L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP2__LN_SYSTEM_CLS_MASK 0x0000C000L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP2__TEN_BIT_TAG_COMPLETER_SUPPORTED_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP2__TEN_BIT_TAG_REQUESTER_SUPPORTED_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP2__OBFF_SUPPORTED_MASK 0x000C0000L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP2__EXTENDED_FMT_FIELD_SUPPORTED_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP2__END_END_TLP_PREFIX_SUPPORTED_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP2__MAX_END_END_TLP_PREFIXES_MASK 0x00C00000L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP2__EMER_POWER_REDUCTION_SUPPORTED_MASK 0x03000000L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP2__EMER_POWER_REDUCTION_INIT_REQ_MASK 0x04000000L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CAP2__FRS_SUPPORTED_MASK 0x80000000L
+//BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL2
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL2__CPL_TIMEOUT_VALUE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL2__CPL_TIMEOUT_DIS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL2__ARI_FORWARDING_EN__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL2__ATOMICOP_REQUEST_EN__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL2__ATOMICOP_EGRESS_BLOCKING__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL2__IDO_REQUEST_ENABLE__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL2__IDO_COMPLETION_ENABLE__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL2__LTR_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL2__EMER_POWER_REDUCTION_REQUEST__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL2__TEN_BIT_TAG_REQUESTER_ENABLE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL2__OBFF_EN__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL2__END_END_TLP_PREFIX_BLOCKING__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL2__CPL_TIMEOUT_VALUE_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL2__CPL_TIMEOUT_DIS_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL2__ARI_FORWARDING_EN_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL2__ATOMICOP_REQUEST_EN_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL2__ATOMICOP_EGRESS_BLOCKING_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL2__IDO_REQUEST_ENABLE_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL2__IDO_COMPLETION_ENABLE_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL2__LTR_EN_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL2__EMER_POWER_REDUCTION_REQUEST_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL2__TEN_BIT_TAG_REQUESTER_ENABLE_MASK 0x1000L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL2__OBFF_EN_MASK 0x6000L
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_CNTL2__END_END_TLP_PREFIX_BLOCKING_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF3_DEVICE_STATUS2
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_STATUS2__RESERVED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_DEVICE_STATUS2__RESERVED_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF3_LINK_CAP2
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CAP2__SUPPORTED_LINK_SPEED__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CAP2__CROSSLINK_SUPPORTED__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CAP2__LOWER_SKP_OS_GEN_SUPPORT__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CAP2__LOWER_SKP_OS_RCV_SUPPORT__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CAP2__RTM1_PRESENCE_DET_SUPPORT__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CAP2__RTM2_PRESENCE_DET_SUPPORT__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CAP2__DRS_SUPPORTED__SHIFT 0x1f
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CAP2__SUPPORTED_LINK_SPEED_MASK 0x000000FEL
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CAP2__CROSSLINK_SUPPORTED_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CAP2__LOWER_SKP_OS_GEN_SUPPORT_MASK 0x0000FE00L
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CAP2__LOWER_SKP_OS_RCV_SUPPORT_MASK 0x007F0000L
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CAP2__RTM1_PRESENCE_DET_SUPPORT_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CAP2__RTM2_PRESENCE_DET_SUPPORT_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CAP2__DRS_SUPPORTED_MASK 0x80000000L
+//BIF_CFG_DEV0_EPF0_VF3_LINK_CNTL2
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CNTL2__TARGET_LINK_SPEED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CNTL2__ENTER_COMPLIANCE__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CNTL2__HW_AUTONOMOUS_SPEED_DISABLE__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CNTL2__SELECTABLE_DEEMPHASIS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CNTL2__XMIT_MARGIN__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CNTL2__ENTER_MOD_COMPLIANCE__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CNTL2__COMPLIANCE_SOS__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CNTL2__COMPLIANCE_DEEMPHASIS__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CNTL2__TARGET_LINK_SPEED_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CNTL2__ENTER_COMPLIANCE_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CNTL2__HW_AUTONOMOUS_SPEED_DISABLE_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CNTL2__SELECTABLE_DEEMPHASIS_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CNTL2__XMIT_MARGIN_MASK 0x0380L
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CNTL2__ENTER_MOD_COMPLIANCE_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CNTL2__COMPLIANCE_SOS_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_CNTL2__COMPLIANCE_DEEMPHASIS_MASK 0xF000L
+//BIF_CFG_DEV0_EPF0_VF3_LINK_STATUS2
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_STATUS2__CUR_DEEMPHASIS_LEVEL__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_STATUS2__EQUALIZATION_COMPLETE_8GT__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_STATUS2__EQUALIZATION_PHASE1_SUCCESS_8GT__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_STATUS2__EQUALIZATION_PHASE2_SUCCESS_8GT__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_STATUS2__EQUALIZATION_PHASE3_SUCCESS_8GT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_STATUS2__LINK_EQUALIZATION_REQUEST_8GT__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_STATUS2__RTM1_PRESENCE_DET__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_STATUS2__RTM2_PRESENCE_DET__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_STATUS2__CROSSLINK_RESOLUTION__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_STATUS2__DOWNSTREAM_COMPONENT_PRESENCE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_STATUS2__DRS_MESSAGE_RECEIVED__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_STATUS2__CUR_DEEMPHASIS_LEVEL_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_STATUS2__EQUALIZATION_COMPLETE_8GT_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_STATUS2__EQUALIZATION_PHASE1_SUCCESS_8GT_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_STATUS2__EQUALIZATION_PHASE2_SUCCESS_8GT_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_STATUS2__EQUALIZATION_PHASE3_SUCCESS_8GT_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_STATUS2__LINK_EQUALIZATION_REQUEST_8GT_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_STATUS2__RTM1_PRESENCE_DET_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_STATUS2__RTM2_PRESENCE_DET_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_STATUS2__CROSSLINK_RESOLUTION_MASK 0x0300L
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_STATUS2__DOWNSTREAM_COMPONENT_PRESENCE_MASK 0x7000L
+#define BIF_CFG_DEV0_EPF0_VF3_LINK_STATUS2__DRS_MESSAGE_RECEIVED_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF3_MSI_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF3_MSI_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_MSI_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF3_MSI_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_EPF0_VF3_MSI_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_VF3_MSI_MSG_CNTL
+#define BIF_CFG_DEV0_EPF0_VF3_MSI_MSG_CNTL__MSI_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_MSI_MSG_CNTL__MSI_MULTI_CAP__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF3_MSI_MSG_CNTL__MSI_MULTI_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF3_MSI_MSG_CNTL__MSI_64BIT__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF3_MSI_MSG_CNTL__MSI_PERVECTOR_MASKING_CAP__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF3_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_CAP__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF3_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF3_MSI_MSG_CNTL__MSI_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF3_MSI_MSG_CNTL__MSI_MULTI_CAP_MASK 0x000EL
+#define BIF_CFG_DEV0_EPF0_VF3_MSI_MSG_CNTL__MSI_MULTI_EN_MASK 0x0070L
+#define BIF_CFG_DEV0_EPF0_VF3_MSI_MSG_CNTL__MSI_64BIT_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF3_MSI_MSG_CNTL__MSI_PERVECTOR_MASKING_CAP_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF3_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_CAP_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_VF3_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_EN_MASK 0x0400L
+//BIF_CFG_DEV0_EPF0_VF3_MSI_MSG_ADDR_LO
+#define BIF_CFG_DEV0_EPF0_VF3_MSI_MSG_ADDR_LO__MSI_MSG_ADDR_LO__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF3_MSI_MSG_ADDR_LO__MSI_MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//BIF_CFG_DEV0_EPF0_VF3_MSI_MSG_ADDR_HI
+#define BIF_CFG_DEV0_EPF0_VF3_MSI_MSG_ADDR_HI__MSI_MSG_ADDR_HI__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_MSI_MSG_ADDR_HI__MSI_MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF3_MSI_MSG_DATA
+#define BIF_CFG_DEV0_EPF0_VF3_MSI_MSG_DATA__MSI_DATA__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_MSI_MSG_DATA__MSI_DATA_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF3_MSI_EXT_MSG_DATA
+#define BIF_CFG_DEV0_EPF0_VF3_MSI_EXT_MSG_DATA__MSI_EXT_DATA__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_MSI_EXT_MSG_DATA__MSI_EXT_DATA_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF3_MSI_MASK
+#define BIF_CFG_DEV0_EPF0_VF3_MSI_MASK__MSI_MASK__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_MSI_MASK__MSI_MASK_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF3_MSI_MSG_DATA_64
+#define BIF_CFG_DEV0_EPF0_VF3_MSI_MSG_DATA_64__MSI_DATA_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_MSI_MSG_DATA_64__MSI_DATA_64_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF3_MSI_EXT_MSG_DATA_64
+#define BIF_CFG_DEV0_EPF0_VF3_MSI_EXT_MSG_DATA_64__MSI_EXT_DATA_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_MSI_EXT_MSG_DATA_64__MSI_EXT_DATA_64_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF3_MSI_MASK_64
+#define BIF_CFG_DEV0_EPF0_VF3_MSI_MASK_64__MSI_MASK_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_MSI_MASK_64__MSI_MASK_64_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF3_MSI_PENDING
+#define BIF_CFG_DEV0_EPF0_VF3_MSI_PENDING__MSI_PENDING__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_MSI_PENDING__MSI_PENDING_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF3_MSI_PENDING_64
+#define BIF_CFG_DEV0_EPF0_VF3_MSI_PENDING_64__MSI_PENDING_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_MSI_PENDING_64__MSI_PENDING_64_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF3_MSIX_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF3_MSIX_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_MSIX_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF3_MSIX_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_EPF0_VF3_MSIX_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_VF3_MSIX_MSG_CNTL
+#define BIF_CFG_DEV0_EPF0_VF3_MSIX_MSG_CNTL__MSIX_TABLE_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_MSIX_MSG_CNTL__MSIX_FUNC_MASK__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF3_MSIX_MSG_CNTL__MSIX_EN__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF3_MSIX_MSG_CNTL__MSIX_TABLE_SIZE_MASK 0x07FFL
+#define BIF_CFG_DEV0_EPF0_VF3_MSIX_MSG_CNTL__MSIX_FUNC_MASK_MASK 0x4000L
+#define BIF_CFG_DEV0_EPF0_VF3_MSIX_MSG_CNTL__MSIX_EN_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF3_MSIX_TABLE
+#define BIF_CFG_DEV0_EPF0_VF3_MSIX_TABLE__MSIX_TABLE_BIR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_MSIX_TABLE__MSIX_TABLE_OFFSET__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF3_MSIX_TABLE__MSIX_TABLE_BIR_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF0_VF3_MSIX_TABLE__MSIX_TABLE_OFFSET_MASK 0xFFFFFFF8L
+//BIF_CFG_DEV0_EPF0_VF3_MSIX_PBA
+#define BIF_CFG_DEV0_EPF0_VF3_MSIX_PBA__MSIX_PBA_BIR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_MSIX_PBA__MSIX_PBA_OFFSET__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF3_MSIX_PBA__MSIX_PBA_BIR_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF0_VF3_MSIX_PBA__MSIX_PBA_OFFSET_MASK 0xFFFFFFF8L
+//BIF_CFG_DEV0_EPF0_VF3_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_VF3_PCIE_VENDOR_SPECIFIC_HDR
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_VENDOR_SPECIFIC_HDR__VSEC_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_VENDOR_SPECIFIC_HDR__VSEC_REV__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_VENDOR_SPECIFIC_HDR__VSEC_LENGTH__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_VENDOR_SPECIFIC_HDR__VSEC_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_VENDOR_SPECIFIC_HDR__VSEC_REV_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_VENDOR_SPECIFIC_HDR__VSEC_LENGTH_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_VF3_PCIE_VENDOR_SPECIFIC1
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_VENDOR_SPECIFIC1__SCRATCH__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_VENDOR_SPECIFIC1__SCRATCH_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF3_PCIE_VENDOR_SPECIFIC2
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_VENDOR_SPECIFIC2__SCRATCH__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_VENDOR_SPECIFIC2__SCRATCH_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF3_PCIE_ADV_ERR_RPT_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_STATUS
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_STATUS__DLP_ERR_STATUS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_STATUS__SURPDN_ERR_STATUS__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_STATUS__PSN_ERR_STATUS__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_STATUS__FC_ERR_STATUS__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_STATUS__CPL_TIMEOUT_STATUS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_STATUS__CPL_ABORT_ERR_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_STATUS__UNEXP_CPL_STATUS__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_STATUS__RCV_OVFL_STATUS__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_STATUS__MAL_TLP_STATUS__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_STATUS__ECRC_ERR_STATUS__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_STATUS__UNSUPP_REQ_ERR_STATUS__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_STATUS__ACS_VIOLATION_STATUS__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_STATUS__UNCORR_INT_ERR_STATUS__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_STATUS__MC_BLOCKED_TLP_STATUS__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_STATUS__ATOMICOP_EGRESS_BLOCKED_STATUS__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_STATUS__TLP_PREFIX_BLOCKED_ERR_STATUS__SHIFT 0x19
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_STATUS__POISONED_TLP_EGRESS_BLOCKED_STATUS__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_STATUS__DLP_ERR_STATUS_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_STATUS__SURPDN_ERR_STATUS_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_STATUS__PSN_ERR_STATUS_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_STATUS__FC_ERR_STATUS_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_STATUS__CPL_TIMEOUT_STATUS_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_STATUS__CPL_ABORT_ERR_STATUS_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_STATUS__UNEXP_CPL_STATUS_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_STATUS__RCV_OVFL_STATUS_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_STATUS__MAL_TLP_STATUS_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_STATUS__ECRC_ERR_STATUS_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_STATUS__UNSUPP_REQ_ERR_STATUS_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_STATUS__ACS_VIOLATION_STATUS_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_STATUS__UNCORR_INT_ERR_STATUS_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_STATUS__MC_BLOCKED_TLP_STATUS_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_STATUS__ATOMICOP_EGRESS_BLOCKED_STATUS_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_STATUS__TLP_PREFIX_BLOCKED_ERR_STATUS_MASK 0x02000000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_STATUS__POISONED_TLP_EGRESS_BLOCKED_STATUS_MASK 0x04000000L
+//BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_MASK
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_MASK__DLP_ERR_MASK__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_MASK__SURPDN_ERR_MASK__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_MASK__PSN_ERR_MASK__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_MASK__FC_ERR_MASK__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_MASK__CPL_TIMEOUT_MASK__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_MASK__CPL_ABORT_ERR_MASK__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_MASK__UNEXP_CPL_MASK__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_MASK__RCV_OVFL_MASK__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_MASK__MAL_TLP_MASK__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_MASK__ECRC_ERR_MASK__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_MASK__UNSUPP_REQ_ERR_MASK__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_MASK__ACS_VIOLATION_MASK__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_MASK__UNCORR_INT_ERR_MASK__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_MASK__MC_BLOCKED_TLP_MASK__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_MASK__ATOMICOP_EGRESS_BLOCKED_MASK__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_MASK__TLP_PREFIX_BLOCKED_ERR_MASK__SHIFT 0x19
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_MASK__POISONED_TLP_EGRESS_BLOCKED_MASK__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_MASK__DLP_ERR_MASK_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_MASK__SURPDN_ERR_MASK_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_MASK__PSN_ERR_MASK_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_MASK__FC_ERR_MASK_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_MASK__CPL_TIMEOUT_MASK_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_MASK__CPL_ABORT_ERR_MASK_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_MASK__UNEXP_CPL_MASK_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_MASK__RCV_OVFL_MASK_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_MASK__MAL_TLP_MASK_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_MASK__ECRC_ERR_MASK_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_MASK__UNSUPP_REQ_ERR_MASK_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_MASK__ACS_VIOLATION_MASK_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_MASK__UNCORR_INT_ERR_MASK_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_MASK__MC_BLOCKED_TLP_MASK_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_MASK__ATOMICOP_EGRESS_BLOCKED_MASK_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_MASK__TLP_PREFIX_BLOCKED_ERR_MASK_MASK 0x02000000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_MASK__POISONED_TLP_EGRESS_BLOCKED_MASK_MASK 0x04000000L
+//BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_SEVERITY
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_SEVERITY__DLP_ERR_SEVERITY__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_SEVERITY__SURPDN_ERR_SEVERITY__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_SEVERITY__PSN_ERR_SEVERITY__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_SEVERITY__FC_ERR_SEVERITY__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_SEVERITY__CPL_TIMEOUT_SEVERITY__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_SEVERITY__CPL_ABORT_ERR_SEVERITY__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_SEVERITY__UNEXP_CPL_SEVERITY__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_SEVERITY__RCV_OVFL_SEVERITY__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_SEVERITY__MAL_TLP_SEVERITY__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_SEVERITY__ECRC_ERR_SEVERITY__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_SEVERITY__UNSUPP_REQ_ERR_SEVERITY__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_SEVERITY__ACS_VIOLATION_SEVERITY__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_SEVERITY__UNCORR_INT_ERR_SEVERITY__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_SEVERITY__MC_BLOCKED_TLP_SEVERITY__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_SEVERITY__ATOMICOP_EGRESS_BLOCKED_SEVERITY__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_SEVERITY__TLP_PREFIX_BLOCKED_ERR_SEVERITY__SHIFT 0x19
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_SEVERITY__POISONED_TLP_EGRESS_BLOCKED_SEVERITY__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_SEVERITY__DLP_ERR_SEVERITY_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_SEVERITY__SURPDN_ERR_SEVERITY_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_SEVERITY__PSN_ERR_SEVERITY_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_SEVERITY__FC_ERR_SEVERITY_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_SEVERITY__CPL_TIMEOUT_SEVERITY_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_SEVERITY__CPL_ABORT_ERR_SEVERITY_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_SEVERITY__UNEXP_CPL_SEVERITY_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_SEVERITY__RCV_OVFL_SEVERITY_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_SEVERITY__MAL_TLP_SEVERITY_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_SEVERITY__ECRC_ERR_SEVERITY_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_SEVERITY__UNSUPP_REQ_ERR_SEVERITY_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_SEVERITY__ACS_VIOLATION_SEVERITY_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_SEVERITY__UNCORR_INT_ERR_SEVERITY_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_SEVERITY__MC_BLOCKED_TLP_SEVERITY_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_SEVERITY__ATOMICOP_EGRESS_BLOCKED_SEVERITY_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_SEVERITY__TLP_PREFIX_BLOCKED_ERR_SEVERITY_MASK 0x02000000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_UNCORR_ERR_SEVERITY__POISONED_TLP_EGRESS_BLOCKED_SEVERITY_MASK 0x04000000L
+//BIF_CFG_DEV0_EPF0_VF3_PCIE_CORR_ERR_STATUS
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_CORR_ERR_STATUS__RCV_ERR_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_CORR_ERR_STATUS__BAD_TLP_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_CORR_ERR_STATUS__BAD_DLLP_STATUS__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_CORR_ERR_STATUS__REPLAY_NUM_ROLLOVER_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_CORR_ERR_STATUS__REPLAY_TIMER_TIMEOUT_STATUS__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_CORR_ERR_STATUS__ADVISORY_NONFATAL_ERR_STATUS__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_CORR_ERR_STATUS__CORR_INT_ERR_STATUS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_CORR_ERR_STATUS__HDR_LOG_OVFL_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_CORR_ERR_STATUS__RCV_ERR_STATUS_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_CORR_ERR_STATUS__BAD_TLP_STATUS_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_CORR_ERR_STATUS__BAD_DLLP_STATUS_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_CORR_ERR_STATUS__REPLAY_NUM_ROLLOVER_STATUS_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_CORR_ERR_STATUS__REPLAY_TIMER_TIMEOUT_STATUS_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_CORR_ERR_STATUS__ADVISORY_NONFATAL_ERR_STATUS_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_CORR_ERR_STATUS__CORR_INT_ERR_STATUS_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_CORR_ERR_STATUS__HDR_LOG_OVFL_STATUS_MASK 0x00008000L
+//BIF_CFG_DEV0_EPF0_VF3_PCIE_CORR_ERR_MASK
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_CORR_ERR_MASK__RCV_ERR_MASK__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_CORR_ERR_MASK__BAD_TLP_MASK__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_CORR_ERR_MASK__BAD_DLLP_MASK__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_CORR_ERR_MASK__REPLAY_NUM_ROLLOVER_MASK__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_CORR_ERR_MASK__REPLAY_TIMER_TIMEOUT_MASK__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_CORR_ERR_MASK__ADVISORY_NONFATAL_ERR_MASK__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_CORR_ERR_MASK__CORR_INT_ERR_MASK__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_CORR_ERR_MASK__HDR_LOG_OVFL_MASK__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_CORR_ERR_MASK__RCV_ERR_MASK_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_CORR_ERR_MASK__BAD_TLP_MASK_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_CORR_ERR_MASK__BAD_DLLP_MASK_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_CORR_ERR_MASK__REPLAY_NUM_ROLLOVER_MASK_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_CORR_ERR_MASK__REPLAY_TIMER_TIMEOUT_MASK_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_CORR_ERR_MASK__ADVISORY_NONFATAL_ERR_MASK_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_CORR_ERR_MASK__CORR_INT_ERR_MASK_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_CORR_ERR_MASK__HDR_LOG_OVFL_MASK_MASK 0x00008000L
+//BIF_CFG_DEV0_EPF0_VF3_PCIE_ADV_ERR_CAP_CNTL
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ADV_ERR_CAP_CNTL__FIRST_ERR_PTR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_CAP__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_EN__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_CAP__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_CAP__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ADV_ERR_CAP_CNTL__TLP_PREFIX_LOG_PRESENT__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ADV_ERR_CAP_CNTL__COMPLETION_TIMEOUT_LOG_CAPABLE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ADV_ERR_CAP_CNTL__FIRST_ERR_PTR_MASK 0x0000001FL
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_CAP_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_EN_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_CAP_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_EN_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_CAP_MASK 0x00000200L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_EN_MASK 0x00000400L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ADV_ERR_CAP_CNTL__TLP_PREFIX_LOG_PRESENT_MASK 0x00000800L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ADV_ERR_CAP_CNTL__COMPLETION_TIMEOUT_LOG_CAPABLE_MASK 0x00001000L
+//BIF_CFG_DEV0_EPF0_VF3_PCIE_HDR_LOG0
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_HDR_LOG0__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_HDR_LOG0__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF3_PCIE_HDR_LOG1
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_HDR_LOG1__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_HDR_LOG1__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF3_PCIE_HDR_LOG2
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_HDR_LOG2__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_HDR_LOG2__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF3_PCIE_HDR_LOG3
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_HDR_LOG3__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_HDR_LOG3__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF3_PCIE_TLP_PREFIX_LOG0
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_TLP_PREFIX_LOG0__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_TLP_PREFIX_LOG0__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF3_PCIE_TLP_PREFIX_LOG1
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_TLP_PREFIX_LOG1__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_TLP_PREFIX_LOG1__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF3_PCIE_TLP_PREFIX_LOG2
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_TLP_PREFIX_LOG2__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_TLP_PREFIX_LOG2__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF3_PCIE_TLP_PREFIX_LOG3
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_TLP_PREFIX_LOG3__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_TLP_PREFIX_LOG3__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF3_PCIE_ATS_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ATS_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ATS_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ATS_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ATS_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ATS_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ATS_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_VF3_PCIE_ATS_CAP
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ATS_CAP__INVALIDATE_Q_DEPTH__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ATS_CAP__PAGE_ALIGNED_REQUEST__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ATS_CAP__GLOBAL_INVALIDATE_SUPPORTED__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ATS_CAP__RELAXED_ORDERING_SUPPORTED__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ATS_CAP__INVALIDATE_Q_DEPTH_MASK 0x001FL
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ATS_CAP__PAGE_ALIGNED_REQUEST_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ATS_CAP__GLOBAL_INVALIDATE_SUPPORTED_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ATS_CAP__RELAXED_ORDERING_SUPPORTED_MASK 0x0080L
+//BIF_CFG_DEV0_EPF0_VF3_PCIE_ATS_CNTL
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ATS_CNTL__STU__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ATS_CNTL__ATC_ENABLE__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ATS_CNTL__STU_MASK 0x001FL
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ATS_CNTL__ATC_ENABLE_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF3_PCIE_ARI_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ARI_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ARI_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ARI_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ARI_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ARI_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ARI_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_VF3_PCIE_ARI_CAP
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ARI_CAP__ARI_MFVC_FUNC_GROUPS_CAP__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ARI_CAP__ARI_ACS_FUNC_GROUPS_CAP__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ARI_CAP__ARI_NEXT_FUNC_NUM__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ARI_CAP__ARI_MFVC_FUNC_GROUPS_CAP_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ARI_CAP__ARI_ACS_FUNC_GROUPS_CAP_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ARI_CAP__ARI_NEXT_FUNC_NUM_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_VF3_PCIE_ARI_CNTL
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ARI_CNTL__ARI_MFVC_FUNC_GROUPS_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ARI_CNTL__ARI_ACS_FUNC_GROUPS_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ARI_CNTL__ARI_FUNCTION_GROUP__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ARI_CNTL__ARI_MFVC_FUNC_GROUPS_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ARI_CNTL__ARI_ACS_FUNC_GROUPS_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF3_PCIE_ARI_CNTL__ARI_FUNCTION_GROUP_MASK 0x0070L
+
+
+// addressBlock: aid_nbio_nbif0_bif_cfg_dev0_epf0_vf4_bifcfgdecp
+//BIF_CFG_DEV0_EPF0_VF4_VENDOR_ID
+#define BIF_CFG_DEV0_EPF0_VF4_VENDOR_ID__VENDOR_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_VENDOR_ID__VENDOR_ID_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF4_DEVICE_ID
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_ID__DEVICE_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_ID__DEVICE_ID_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF4_COMMAND
+#define BIF_CFG_DEV0_EPF0_VF4_COMMAND__IO_ACCESS_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_COMMAND__MEM_ACCESS_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF4_COMMAND__BUS_MASTER_EN__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF4_COMMAND__SPECIAL_CYCLE_EN__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF4_COMMAND__MEM_WRITE_INVALIDATE_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF4_COMMAND__PAL_SNOOP_EN__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF4_COMMAND__PARITY_ERROR_RESPONSE__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF4_COMMAND__AD_STEPPING__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF4_COMMAND__SERR_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF4_COMMAND__FAST_B2B_EN__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF4_COMMAND__INT_DIS__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF4_COMMAND__IO_ACCESS_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF4_COMMAND__MEM_ACCESS_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF4_COMMAND__BUS_MASTER_EN_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_VF4_COMMAND__SPECIAL_CYCLE_EN_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF4_COMMAND__MEM_WRITE_INVALIDATE_EN_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF4_COMMAND__PAL_SNOOP_EN_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF4_COMMAND__PARITY_ERROR_RESPONSE_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF4_COMMAND__AD_STEPPING_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF4_COMMAND__SERR_EN_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF4_COMMAND__FAST_B2B_EN_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_VF4_COMMAND__INT_DIS_MASK 0x0400L
+//BIF_CFG_DEV0_EPF0_VF4_STATUS
+#define BIF_CFG_DEV0_EPF0_VF4_STATUS__IMMEDIATE_READINESS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_STATUS__INT_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF4_STATUS__CAP_LIST__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF4_STATUS__PCI_66_CAP__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF4_STATUS__FAST_BACK_CAPABLE__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF4_STATUS__MASTER_DATA_PARITY_ERROR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF4_STATUS__DEVSEL_TIMING__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF4_STATUS__SIGNAL_TARGET_ABORT__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF4_STATUS__RECEIVED_TARGET_ABORT__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF4_STATUS__RECEIVED_MASTER_ABORT__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF4_STATUS__SIGNALED_SYSTEM_ERROR__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF4_STATUS__PARITY_ERROR_DETECTED__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF4_STATUS__IMMEDIATE_READINESS_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF4_STATUS__INT_STATUS_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF4_STATUS__CAP_LIST_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF4_STATUS__PCI_66_CAP_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF4_STATUS__FAST_BACK_CAPABLE_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF4_STATUS__MASTER_DATA_PARITY_ERROR_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF4_STATUS__DEVSEL_TIMING_MASK 0x0600L
+#define BIF_CFG_DEV0_EPF0_VF4_STATUS__SIGNAL_TARGET_ABORT_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF4_STATUS__RECEIVED_TARGET_ABORT_MASK 0x1000L
+#define BIF_CFG_DEV0_EPF0_VF4_STATUS__RECEIVED_MASTER_ABORT_MASK 0x2000L
+#define BIF_CFG_DEV0_EPF0_VF4_STATUS__SIGNALED_SYSTEM_ERROR_MASK 0x4000L
+#define BIF_CFG_DEV0_EPF0_VF4_STATUS__PARITY_ERROR_DETECTED_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF4_REVISION_ID
+#define BIF_CFG_DEV0_EPF0_VF4_REVISION_ID__MINOR_REV_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_REVISION_ID__MAJOR_REV_ID__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF4_REVISION_ID__MINOR_REV_ID_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_VF4_REVISION_ID__MAJOR_REV_ID_MASK 0xF0L
+//BIF_CFG_DEV0_EPF0_VF4_PROG_INTERFACE
+#define BIF_CFG_DEV0_EPF0_VF4_PROG_INTERFACE__PROG_INTERFACE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_PROG_INTERFACE__PROG_INTERFACE_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF4_SUB_CLASS
+#define BIF_CFG_DEV0_EPF0_VF4_SUB_CLASS__SUB_CLASS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_SUB_CLASS__SUB_CLASS_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF4_BASE_CLASS
+#define BIF_CFG_DEV0_EPF0_VF4_BASE_CLASS__BASE_CLASS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_BASE_CLASS__BASE_CLASS_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF4_CACHE_LINE
+#define BIF_CFG_DEV0_EPF0_VF4_CACHE_LINE__CACHE_LINE_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_CACHE_LINE__CACHE_LINE_SIZE_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF4_LATENCY
+#define BIF_CFG_DEV0_EPF0_VF4_LATENCY__LATENCY_TIMER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_LATENCY__LATENCY_TIMER_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF4_HEADER
+#define BIF_CFG_DEV0_EPF0_VF4_HEADER__HEADER_TYPE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_HEADER__DEVICE_TYPE__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF4_HEADER__HEADER_TYPE_MASK 0x7FL
+#define BIF_CFG_DEV0_EPF0_VF4_HEADER__DEVICE_TYPE_MASK 0x80L
+//BIF_CFG_DEV0_EPF0_VF4_BIST
+#define BIF_CFG_DEV0_EPF0_VF4_BIST__BIST_COMP__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_BIST__BIST_STRT__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF4_BIST__BIST_CAP__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF4_BIST__BIST_COMP_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_VF4_BIST__BIST_STRT_MASK 0x40L
+#define BIF_CFG_DEV0_EPF0_VF4_BIST__BIST_CAP_MASK 0x80L
+//BIF_CFG_DEV0_EPF0_VF4_BASE_ADDR_1
+#define BIF_CFG_DEV0_EPF0_VF4_BASE_ADDR_1__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_BASE_ADDR_1__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF4_BASE_ADDR_2
+#define BIF_CFG_DEV0_EPF0_VF4_BASE_ADDR_2__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_BASE_ADDR_2__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF4_BASE_ADDR_3
+#define BIF_CFG_DEV0_EPF0_VF4_BASE_ADDR_3__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_BASE_ADDR_3__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF4_BASE_ADDR_4
+#define BIF_CFG_DEV0_EPF0_VF4_BASE_ADDR_4__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_BASE_ADDR_4__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF4_BASE_ADDR_5
+#define BIF_CFG_DEV0_EPF0_VF4_BASE_ADDR_5__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_BASE_ADDR_5__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF4_BASE_ADDR_6
+#define BIF_CFG_DEV0_EPF0_VF4_BASE_ADDR_6__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_BASE_ADDR_6__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF4_CARDBUS_CIS_PTR
+#define BIF_CFG_DEV0_EPF0_VF4_CARDBUS_CIS_PTR__CARDBUS_CIS_PTR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_CARDBUS_CIS_PTR__CARDBUS_CIS_PTR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF4_ADAPTER_ID
+#define BIF_CFG_DEV0_EPF0_VF4_ADAPTER_ID__SUBSYSTEM_VENDOR_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_ADAPTER_ID__SUBSYSTEM_ID__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF4_ADAPTER_ID__SUBSYSTEM_VENDOR_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF4_ADAPTER_ID__SUBSYSTEM_ID_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_VF4_ROM_BASE_ADDR
+#define BIF_CFG_DEV0_EPF0_VF4_ROM_BASE_ADDR__ROM_ENABLE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_ROM_BASE_ADDR__ROM_VALIDATION_STATUS__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF4_ROM_BASE_ADDR__ROM_VALIDATION_DETAILS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF4_ROM_BASE_ADDR__BASE_ADDR__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF4_ROM_BASE_ADDR__ROM_ENABLE_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_VF4_ROM_BASE_ADDR__ROM_VALIDATION_STATUS_MASK 0x0000000EL
+#define BIF_CFG_DEV0_EPF0_VF4_ROM_BASE_ADDR__ROM_VALIDATION_DETAILS_MASK 0x000000F0L
+#define BIF_CFG_DEV0_EPF0_VF4_ROM_BASE_ADDR__BASE_ADDR_MASK 0xFFFFF800L
+//BIF_CFG_DEV0_EPF0_VF4_CAP_PTR
+#define BIF_CFG_DEV0_EPF0_VF4_CAP_PTR__CAP_PTR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_CAP_PTR__CAP_PTR_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF4_INTERRUPT_LINE
+#define BIF_CFG_DEV0_EPF0_VF4_INTERRUPT_LINE__INTERRUPT_LINE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_INTERRUPT_LINE__INTERRUPT_LINE_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF4_INTERRUPT_PIN
+#define BIF_CFG_DEV0_EPF0_VF4_INTERRUPT_PIN__INTERRUPT_PIN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_INTERRUPT_PIN__INTERRUPT_PIN_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF4_MIN_GRANT
+#define BIF_CFG_DEV0_EPF0_VF4_MIN_GRANT__MIN_GNT__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_MIN_GRANT__MIN_GNT_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF4_MAX_LATENCY
+#define BIF_CFG_DEV0_EPF0_VF4_MAX_LATENCY__MAX_LAT__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_MAX_LATENCY__MAX_LAT_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF4_PCIE_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_VF4_PCIE_CAP
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_CAP__VERSION__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_CAP__DEVICE_TYPE__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_CAP__SLOT_IMPLEMENTED__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_CAP__INT_MESSAGE_NUM__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_CAP__VERSION_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_CAP__DEVICE_TYPE_MASK 0x00F0L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_CAP__SLOT_IMPLEMENTED_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_CAP__INT_MESSAGE_NUM_MASK 0x3E00L
+//BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP__MAX_PAYLOAD_SUPPORT__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP__PHANTOM_FUNC__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP__EXTENDED_TAG__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP__L0S_ACCEPTABLE_LATENCY__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP__L1_ACCEPTABLE_LATENCY__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP__ROLE_BASED_ERR_REPORTING__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP__ERR_COR_SUBCLASS_CAPABLE__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP__CAPTURED_SLOT_POWER_LIMIT__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP__CAPTURED_SLOT_POWER_SCALE__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP__FLR_CAPABLE__SHIFT 0x1c
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP__MAX_PAYLOAD_SUPPORT_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP__PHANTOM_FUNC_MASK 0x00000018L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP__EXTENDED_TAG_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP__L0S_ACCEPTABLE_LATENCY_MASK 0x000001C0L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP__L1_ACCEPTABLE_LATENCY_MASK 0x00000E00L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP__ROLE_BASED_ERR_REPORTING_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP__ERR_COR_SUBCLASS_CAPABLE_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP__CAPTURED_SLOT_POWER_LIMIT_MASK 0x03FC0000L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP__CAPTURED_SLOT_POWER_SCALE_MASK 0x0C000000L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP__FLR_CAPABLE_MASK 0x10000000L
+//BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL__CORR_ERR_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL__NON_FATAL_ERR_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL__FATAL_ERR_EN__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL__USR_REPORT_EN__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL__RELAXED_ORD_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL__MAX_PAYLOAD_SIZE__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL__EXTENDED_TAG_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL__PHANTOM_FUNC_EN__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL__AUX_POWER_PM_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL__NO_SNOOP_EN__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL__MAX_READ_REQUEST_SIZE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL__INITIATE_FLR__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL__CORR_ERR_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL__NON_FATAL_ERR_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL__FATAL_ERR_EN_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL__USR_REPORT_EN_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL__RELAXED_ORD_EN_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL__MAX_PAYLOAD_SIZE_MASK 0x00E0L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL__EXTENDED_TAG_EN_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL__PHANTOM_FUNC_EN_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL__AUX_POWER_PM_EN_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL__NO_SNOOP_EN_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL__MAX_READ_REQUEST_SIZE_MASK 0x7000L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL__INITIATE_FLR_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF4_DEVICE_STATUS
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_STATUS__CORR_ERR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_STATUS__NON_FATAL_ERR__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_STATUS__FATAL_ERR__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_STATUS__USR_DETECTED__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_STATUS__AUX_PWR__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_STATUS__TRANSACTIONS_PEND__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_STATUS__EMER_POWER_REDUCTION_DETECTED__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_STATUS__CORR_ERR_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_STATUS__NON_FATAL_ERR_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_STATUS__FATAL_ERR_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_STATUS__USR_DETECTED_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_STATUS__AUX_PWR_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_STATUS__TRANSACTIONS_PEND_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_STATUS__EMER_POWER_REDUCTION_DETECTED_MASK 0x0040L
+//BIF_CFG_DEV0_EPF0_VF4_LINK_CAP
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CAP__LINK_SPEED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CAP__LINK_WIDTH__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CAP__PM_SUPPORT__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CAP__L0S_EXIT_LATENCY__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CAP__L1_EXIT_LATENCY__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CAP__CLOCK_POWER_MANAGEMENT__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CAP__SURPRISE_DOWN_ERR_REPORTING__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CAP__DL_ACTIVE_REPORTING_CAPABLE__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CAP__LINK_BW_NOTIFICATION_CAP__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CAP__ASPM_OPTIONALITY_COMPLIANCE__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CAP__PORT_NUMBER__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CAP__LINK_SPEED_MASK 0x0000000FL
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CAP__LINK_WIDTH_MASK 0x000003F0L
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CAP__PM_SUPPORT_MASK 0x00000C00L
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CAP__L0S_EXIT_LATENCY_MASK 0x00007000L
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CAP__L1_EXIT_LATENCY_MASK 0x00038000L
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CAP__CLOCK_POWER_MANAGEMENT_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CAP__SURPRISE_DOWN_ERR_REPORTING_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CAP__DL_ACTIVE_REPORTING_CAPABLE_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CAP__LINK_BW_NOTIFICATION_CAP_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CAP__ASPM_OPTIONALITY_COMPLIANCE_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CAP__PORT_NUMBER_MASK 0xFF000000L
+//BIF_CFG_DEV0_EPF0_VF4_LINK_CNTL
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CNTL__PM_CONTROL__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CNTL__PTM_PROP_DELAY_ADAPT_INTER_B__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CNTL__READ_CPL_BOUNDARY__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CNTL__LINK_DIS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CNTL__RETRAIN_LINK__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CNTL__COMMON_CLOCK_CFG__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CNTL__EXTENDED_SYNC__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CNTL__CLOCK_POWER_MANAGEMENT_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CNTL__HW_AUTONOMOUS_WIDTH_DISABLE__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CNTL__LINK_BW_MANAGEMENT_INT_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CNTL__LINK_AUTONOMOUS_BW_INT_EN__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CNTL__DRS_SIGNALING_CONTROL__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CNTL__PM_CONTROL_MASK 0x0003L
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CNTL__PTM_PROP_DELAY_ADAPT_INTER_B_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CNTL__READ_CPL_BOUNDARY_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CNTL__LINK_DIS_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CNTL__RETRAIN_LINK_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CNTL__COMMON_CLOCK_CFG_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CNTL__EXTENDED_SYNC_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CNTL__CLOCK_POWER_MANAGEMENT_EN_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CNTL__HW_AUTONOMOUS_WIDTH_DISABLE_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CNTL__LINK_BW_MANAGEMENT_INT_EN_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CNTL__LINK_AUTONOMOUS_BW_INT_EN_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CNTL__DRS_SIGNALING_CONTROL_MASK 0xC000L
+//BIF_CFG_DEV0_EPF0_VF4_LINK_STATUS
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_STATUS__CURRENT_LINK_SPEED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_STATUS__NEGOTIATED_LINK_WIDTH__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_STATUS__LINK_TRAINING__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_STATUS__SLOT_CLOCK_CFG__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_STATUS__DL_ACTIVE__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_STATUS__LINK_BW_MANAGEMENT_STATUS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_STATUS__LINK_AUTONOMOUS_BW_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_STATUS__CURRENT_LINK_SPEED_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_STATUS__NEGOTIATED_LINK_WIDTH_MASK 0x03F0L
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_STATUS__LINK_TRAINING_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_STATUS__SLOT_CLOCK_CFG_MASK 0x1000L
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_STATUS__DL_ACTIVE_MASK 0x2000L
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_STATUS__LINK_BW_MANAGEMENT_STATUS_MASK 0x4000L
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_STATUS__LINK_AUTONOMOUS_BW_STATUS_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP2
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP2__CPL_TIMEOUT_RANGE_SUPPORTED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP2__CPL_TIMEOUT_DIS_SUPPORTED__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP2__ARI_FORWARDING_SUPPORTED__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP2__ATOMICOP_ROUTING_SUPPORTED__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP2__ATOMICOP_32CMPLT_SUPPORTED__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP2__ATOMICOP_64CMPLT_SUPPORTED__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP2__CAS128_CMPLT_SUPPORTED__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP2__NO_RO_ENABLED_P2P_PASSING__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP2__LTR_SUPPORTED__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP2__TPH_CPLR_SUPPORTED__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP2__LN_SYSTEM_CLS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP2__TEN_BIT_TAG_COMPLETER_SUPPORTED__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP2__TEN_BIT_TAG_REQUESTER_SUPPORTED__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP2__OBFF_SUPPORTED__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP2__EXTENDED_FMT_FIELD_SUPPORTED__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP2__END_END_TLP_PREFIX_SUPPORTED__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP2__MAX_END_END_TLP_PREFIXES__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP2__EMER_POWER_REDUCTION_SUPPORTED__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP2__EMER_POWER_REDUCTION_INIT_REQ__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP2__FRS_SUPPORTED__SHIFT 0x1f
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP2__CPL_TIMEOUT_RANGE_SUPPORTED_MASK 0x0000000FL
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP2__CPL_TIMEOUT_DIS_SUPPORTED_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP2__ARI_FORWARDING_SUPPORTED_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP2__ATOMICOP_ROUTING_SUPPORTED_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP2__ATOMICOP_32CMPLT_SUPPORTED_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP2__ATOMICOP_64CMPLT_SUPPORTED_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP2__CAS128_CMPLT_SUPPORTED_MASK 0x00000200L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP2__NO_RO_ENABLED_P2P_PASSING_MASK 0x00000400L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP2__LTR_SUPPORTED_MASK 0x00000800L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP2__TPH_CPLR_SUPPORTED_MASK 0x00003000L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP2__LN_SYSTEM_CLS_MASK 0x0000C000L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP2__TEN_BIT_TAG_COMPLETER_SUPPORTED_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP2__TEN_BIT_TAG_REQUESTER_SUPPORTED_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP2__OBFF_SUPPORTED_MASK 0x000C0000L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP2__EXTENDED_FMT_FIELD_SUPPORTED_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP2__END_END_TLP_PREFIX_SUPPORTED_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP2__MAX_END_END_TLP_PREFIXES_MASK 0x00C00000L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP2__EMER_POWER_REDUCTION_SUPPORTED_MASK 0x03000000L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP2__EMER_POWER_REDUCTION_INIT_REQ_MASK 0x04000000L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CAP2__FRS_SUPPORTED_MASK 0x80000000L
+//BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL2
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL2__CPL_TIMEOUT_VALUE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL2__CPL_TIMEOUT_DIS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL2__ARI_FORWARDING_EN__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL2__ATOMICOP_REQUEST_EN__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL2__ATOMICOP_EGRESS_BLOCKING__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL2__IDO_REQUEST_ENABLE__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL2__IDO_COMPLETION_ENABLE__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL2__LTR_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL2__EMER_POWER_REDUCTION_REQUEST__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL2__TEN_BIT_TAG_REQUESTER_ENABLE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL2__OBFF_EN__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL2__END_END_TLP_PREFIX_BLOCKING__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL2__CPL_TIMEOUT_VALUE_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL2__CPL_TIMEOUT_DIS_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL2__ARI_FORWARDING_EN_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL2__ATOMICOP_REQUEST_EN_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL2__ATOMICOP_EGRESS_BLOCKING_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL2__IDO_REQUEST_ENABLE_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL2__IDO_COMPLETION_ENABLE_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL2__LTR_EN_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL2__EMER_POWER_REDUCTION_REQUEST_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL2__TEN_BIT_TAG_REQUESTER_ENABLE_MASK 0x1000L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL2__OBFF_EN_MASK 0x6000L
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_CNTL2__END_END_TLP_PREFIX_BLOCKING_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF4_DEVICE_STATUS2
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_STATUS2__RESERVED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_DEVICE_STATUS2__RESERVED_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF4_LINK_CAP2
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CAP2__SUPPORTED_LINK_SPEED__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CAP2__CROSSLINK_SUPPORTED__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CAP2__LOWER_SKP_OS_GEN_SUPPORT__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CAP2__LOWER_SKP_OS_RCV_SUPPORT__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CAP2__RTM1_PRESENCE_DET_SUPPORT__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CAP2__RTM2_PRESENCE_DET_SUPPORT__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CAP2__DRS_SUPPORTED__SHIFT 0x1f
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CAP2__SUPPORTED_LINK_SPEED_MASK 0x000000FEL
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CAP2__CROSSLINK_SUPPORTED_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CAP2__LOWER_SKP_OS_GEN_SUPPORT_MASK 0x0000FE00L
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CAP2__LOWER_SKP_OS_RCV_SUPPORT_MASK 0x007F0000L
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CAP2__RTM1_PRESENCE_DET_SUPPORT_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CAP2__RTM2_PRESENCE_DET_SUPPORT_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CAP2__DRS_SUPPORTED_MASK 0x80000000L
+//BIF_CFG_DEV0_EPF0_VF4_LINK_CNTL2
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CNTL2__TARGET_LINK_SPEED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CNTL2__ENTER_COMPLIANCE__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CNTL2__HW_AUTONOMOUS_SPEED_DISABLE__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CNTL2__SELECTABLE_DEEMPHASIS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CNTL2__XMIT_MARGIN__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CNTL2__ENTER_MOD_COMPLIANCE__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CNTL2__COMPLIANCE_SOS__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CNTL2__COMPLIANCE_DEEMPHASIS__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CNTL2__TARGET_LINK_SPEED_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CNTL2__ENTER_COMPLIANCE_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CNTL2__HW_AUTONOMOUS_SPEED_DISABLE_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CNTL2__SELECTABLE_DEEMPHASIS_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CNTL2__XMIT_MARGIN_MASK 0x0380L
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CNTL2__ENTER_MOD_COMPLIANCE_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CNTL2__COMPLIANCE_SOS_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_CNTL2__COMPLIANCE_DEEMPHASIS_MASK 0xF000L
+//BIF_CFG_DEV0_EPF0_VF4_LINK_STATUS2
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_STATUS2__CUR_DEEMPHASIS_LEVEL__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_STATUS2__EQUALIZATION_COMPLETE_8GT__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_STATUS2__EQUALIZATION_PHASE1_SUCCESS_8GT__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_STATUS2__EQUALIZATION_PHASE2_SUCCESS_8GT__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_STATUS2__EQUALIZATION_PHASE3_SUCCESS_8GT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_STATUS2__LINK_EQUALIZATION_REQUEST_8GT__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_STATUS2__RTM1_PRESENCE_DET__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_STATUS2__RTM2_PRESENCE_DET__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_STATUS2__CROSSLINK_RESOLUTION__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_STATUS2__DOWNSTREAM_COMPONENT_PRESENCE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_STATUS2__DRS_MESSAGE_RECEIVED__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_STATUS2__CUR_DEEMPHASIS_LEVEL_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_STATUS2__EQUALIZATION_COMPLETE_8GT_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_STATUS2__EQUALIZATION_PHASE1_SUCCESS_8GT_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_STATUS2__EQUALIZATION_PHASE2_SUCCESS_8GT_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_STATUS2__EQUALIZATION_PHASE3_SUCCESS_8GT_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_STATUS2__LINK_EQUALIZATION_REQUEST_8GT_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_STATUS2__RTM1_PRESENCE_DET_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_STATUS2__RTM2_PRESENCE_DET_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_STATUS2__CROSSLINK_RESOLUTION_MASK 0x0300L
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_STATUS2__DOWNSTREAM_COMPONENT_PRESENCE_MASK 0x7000L
+#define BIF_CFG_DEV0_EPF0_VF4_LINK_STATUS2__DRS_MESSAGE_RECEIVED_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF4_MSI_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF4_MSI_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_MSI_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF4_MSI_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_EPF0_VF4_MSI_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_VF4_MSI_MSG_CNTL
+#define BIF_CFG_DEV0_EPF0_VF4_MSI_MSG_CNTL__MSI_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_MSI_MSG_CNTL__MSI_MULTI_CAP__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF4_MSI_MSG_CNTL__MSI_MULTI_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF4_MSI_MSG_CNTL__MSI_64BIT__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF4_MSI_MSG_CNTL__MSI_PERVECTOR_MASKING_CAP__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF4_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_CAP__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF4_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF4_MSI_MSG_CNTL__MSI_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF4_MSI_MSG_CNTL__MSI_MULTI_CAP_MASK 0x000EL
+#define BIF_CFG_DEV0_EPF0_VF4_MSI_MSG_CNTL__MSI_MULTI_EN_MASK 0x0070L
+#define BIF_CFG_DEV0_EPF0_VF4_MSI_MSG_CNTL__MSI_64BIT_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF4_MSI_MSG_CNTL__MSI_PERVECTOR_MASKING_CAP_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF4_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_CAP_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_VF4_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_EN_MASK 0x0400L
+//BIF_CFG_DEV0_EPF0_VF4_MSI_MSG_ADDR_LO
+#define BIF_CFG_DEV0_EPF0_VF4_MSI_MSG_ADDR_LO__MSI_MSG_ADDR_LO__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF4_MSI_MSG_ADDR_LO__MSI_MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//BIF_CFG_DEV0_EPF0_VF4_MSI_MSG_ADDR_HI
+#define BIF_CFG_DEV0_EPF0_VF4_MSI_MSG_ADDR_HI__MSI_MSG_ADDR_HI__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_MSI_MSG_ADDR_HI__MSI_MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF4_MSI_MSG_DATA
+#define BIF_CFG_DEV0_EPF0_VF4_MSI_MSG_DATA__MSI_DATA__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_MSI_MSG_DATA__MSI_DATA_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF4_MSI_EXT_MSG_DATA
+#define BIF_CFG_DEV0_EPF0_VF4_MSI_EXT_MSG_DATA__MSI_EXT_DATA__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_MSI_EXT_MSG_DATA__MSI_EXT_DATA_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF4_MSI_MASK
+#define BIF_CFG_DEV0_EPF0_VF4_MSI_MASK__MSI_MASK__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_MSI_MASK__MSI_MASK_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF4_MSI_MSG_DATA_64
+#define BIF_CFG_DEV0_EPF0_VF4_MSI_MSG_DATA_64__MSI_DATA_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_MSI_MSG_DATA_64__MSI_DATA_64_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF4_MSI_EXT_MSG_DATA_64
+#define BIF_CFG_DEV0_EPF0_VF4_MSI_EXT_MSG_DATA_64__MSI_EXT_DATA_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_MSI_EXT_MSG_DATA_64__MSI_EXT_DATA_64_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF4_MSI_MASK_64
+#define BIF_CFG_DEV0_EPF0_VF4_MSI_MASK_64__MSI_MASK_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_MSI_MASK_64__MSI_MASK_64_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF4_MSI_PENDING
+#define BIF_CFG_DEV0_EPF0_VF4_MSI_PENDING__MSI_PENDING__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_MSI_PENDING__MSI_PENDING_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF4_MSI_PENDING_64
+#define BIF_CFG_DEV0_EPF0_VF4_MSI_PENDING_64__MSI_PENDING_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_MSI_PENDING_64__MSI_PENDING_64_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF4_MSIX_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF4_MSIX_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_MSIX_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF4_MSIX_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_EPF0_VF4_MSIX_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_VF4_MSIX_MSG_CNTL
+#define BIF_CFG_DEV0_EPF0_VF4_MSIX_MSG_CNTL__MSIX_TABLE_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_MSIX_MSG_CNTL__MSIX_FUNC_MASK__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF4_MSIX_MSG_CNTL__MSIX_EN__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF4_MSIX_MSG_CNTL__MSIX_TABLE_SIZE_MASK 0x07FFL
+#define BIF_CFG_DEV0_EPF0_VF4_MSIX_MSG_CNTL__MSIX_FUNC_MASK_MASK 0x4000L
+#define BIF_CFG_DEV0_EPF0_VF4_MSIX_MSG_CNTL__MSIX_EN_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF4_MSIX_TABLE
+#define BIF_CFG_DEV0_EPF0_VF4_MSIX_TABLE__MSIX_TABLE_BIR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_MSIX_TABLE__MSIX_TABLE_OFFSET__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF4_MSIX_TABLE__MSIX_TABLE_BIR_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF0_VF4_MSIX_TABLE__MSIX_TABLE_OFFSET_MASK 0xFFFFFFF8L
+//BIF_CFG_DEV0_EPF0_VF4_MSIX_PBA
+#define BIF_CFG_DEV0_EPF0_VF4_MSIX_PBA__MSIX_PBA_BIR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_MSIX_PBA__MSIX_PBA_OFFSET__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF4_MSIX_PBA__MSIX_PBA_BIR_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF0_VF4_MSIX_PBA__MSIX_PBA_OFFSET_MASK 0xFFFFFFF8L
+//BIF_CFG_DEV0_EPF0_VF4_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_VF4_PCIE_VENDOR_SPECIFIC_HDR
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_VENDOR_SPECIFIC_HDR__VSEC_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_VENDOR_SPECIFIC_HDR__VSEC_REV__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_VENDOR_SPECIFIC_HDR__VSEC_LENGTH__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_VENDOR_SPECIFIC_HDR__VSEC_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_VENDOR_SPECIFIC_HDR__VSEC_REV_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_VENDOR_SPECIFIC_HDR__VSEC_LENGTH_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_VF4_PCIE_VENDOR_SPECIFIC1
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_VENDOR_SPECIFIC1__SCRATCH__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_VENDOR_SPECIFIC1__SCRATCH_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF4_PCIE_VENDOR_SPECIFIC2
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_VENDOR_SPECIFIC2__SCRATCH__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_VENDOR_SPECIFIC2__SCRATCH_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF4_PCIE_ADV_ERR_RPT_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_STATUS
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_STATUS__DLP_ERR_STATUS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_STATUS__SURPDN_ERR_STATUS__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_STATUS__PSN_ERR_STATUS__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_STATUS__FC_ERR_STATUS__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_STATUS__CPL_TIMEOUT_STATUS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_STATUS__CPL_ABORT_ERR_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_STATUS__UNEXP_CPL_STATUS__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_STATUS__RCV_OVFL_STATUS__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_STATUS__MAL_TLP_STATUS__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_STATUS__ECRC_ERR_STATUS__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_STATUS__UNSUPP_REQ_ERR_STATUS__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_STATUS__ACS_VIOLATION_STATUS__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_STATUS__UNCORR_INT_ERR_STATUS__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_STATUS__MC_BLOCKED_TLP_STATUS__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_STATUS__ATOMICOP_EGRESS_BLOCKED_STATUS__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_STATUS__TLP_PREFIX_BLOCKED_ERR_STATUS__SHIFT 0x19
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_STATUS__POISONED_TLP_EGRESS_BLOCKED_STATUS__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_STATUS__DLP_ERR_STATUS_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_STATUS__SURPDN_ERR_STATUS_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_STATUS__PSN_ERR_STATUS_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_STATUS__FC_ERR_STATUS_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_STATUS__CPL_TIMEOUT_STATUS_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_STATUS__CPL_ABORT_ERR_STATUS_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_STATUS__UNEXP_CPL_STATUS_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_STATUS__RCV_OVFL_STATUS_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_STATUS__MAL_TLP_STATUS_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_STATUS__ECRC_ERR_STATUS_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_STATUS__UNSUPP_REQ_ERR_STATUS_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_STATUS__ACS_VIOLATION_STATUS_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_STATUS__UNCORR_INT_ERR_STATUS_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_STATUS__MC_BLOCKED_TLP_STATUS_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_STATUS__ATOMICOP_EGRESS_BLOCKED_STATUS_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_STATUS__TLP_PREFIX_BLOCKED_ERR_STATUS_MASK 0x02000000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_STATUS__POISONED_TLP_EGRESS_BLOCKED_STATUS_MASK 0x04000000L
+//BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_MASK
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_MASK__DLP_ERR_MASK__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_MASK__SURPDN_ERR_MASK__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_MASK__PSN_ERR_MASK__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_MASK__FC_ERR_MASK__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_MASK__CPL_TIMEOUT_MASK__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_MASK__CPL_ABORT_ERR_MASK__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_MASK__UNEXP_CPL_MASK__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_MASK__RCV_OVFL_MASK__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_MASK__MAL_TLP_MASK__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_MASK__ECRC_ERR_MASK__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_MASK__UNSUPP_REQ_ERR_MASK__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_MASK__ACS_VIOLATION_MASK__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_MASK__UNCORR_INT_ERR_MASK__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_MASK__MC_BLOCKED_TLP_MASK__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_MASK__ATOMICOP_EGRESS_BLOCKED_MASK__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_MASK__TLP_PREFIX_BLOCKED_ERR_MASK__SHIFT 0x19
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_MASK__POISONED_TLP_EGRESS_BLOCKED_MASK__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_MASK__DLP_ERR_MASK_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_MASK__SURPDN_ERR_MASK_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_MASK__PSN_ERR_MASK_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_MASK__FC_ERR_MASK_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_MASK__CPL_TIMEOUT_MASK_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_MASK__CPL_ABORT_ERR_MASK_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_MASK__UNEXP_CPL_MASK_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_MASK__RCV_OVFL_MASK_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_MASK__MAL_TLP_MASK_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_MASK__ECRC_ERR_MASK_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_MASK__UNSUPP_REQ_ERR_MASK_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_MASK__ACS_VIOLATION_MASK_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_MASK__UNCORR_INT_ERR_MASK_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_MASK__MC_BLOCKED_TLP_MASK_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_MASK__ATOMICOP_EGRESS_BLOCKED_MASK_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_MASK__TLP_PREFIX_BLOCKED_ERR_MASK_MASK 0x02000000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_MASK__POISONED_TLP_EGRESS_BLOCKED_MASK_MASK 0x04000000L
+//BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_SEVERITY
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_SEVERITY__DLP_ERR_SEVERITY__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_SEVERITY__SURPDN_ERR_SEVERITY__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_SEVERITY__PSN_ERR_SEVERITY__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_SEVERITY__FC_ERR_SEVERITY__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_SEVERITY__CPL_TIMEOUT_SEVERITY__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_SEVERITY__CPL_ABORT_ERR_SEVERITY__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_SEVERITY__UNEXP_CPL_SEVERITY__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_SEVERITY__RCV_OVFL_SEVERITY__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_SEVERITY__MAL_TLP_SEVERITY__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_SEVERITY__ECRC_ERR_SEVERITY__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_SEVERITY__UNSUPP_REQ_ERR_SEVERITY__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_SEVERITY__ACS_VIOLATION_SEVERITY__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_SEVERITY__UNCORR_INT_ERR_SEVERITY__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_SEVERITY__MC_BLOCKED_TLP_SEVERITY__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_SEVERITY__ATOMICOP_EGRESS_BLOCKED_SEVERITY__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_SEVERITY__TLP_PREFIX_BLOCKED_ERR_SEVERITY__SHIFT 0x19
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_SEVERITY__POISONED_TLP_EGRESS_BLOCKED_SEVERITY__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_SEVERITY__DLP_ERR_SEVERITY_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_SEVERITY__SURPDN_ERR_SEVERITY_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_SEVERITY__PSN_ERR_SEVERITY_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_SEVERITY__FC_ERR_SEVERITY_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_SEVERITY__CPL_TIMEOUT_SEVERITY_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_SEVERITY__CPL_ABORT_ERR_SEVERITY_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_SEVERITY__UNEXP_CPL_SEVERITY_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_SEVERITY__RCV_OVFL_SEVERITY_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_SEVERITY__MAL_TLP_SEVERITY_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_SEVERITY__ECRC_ERR_SEVERITY_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_SEVERITY__UNSUPP_REQ_ERR_SEVERITY_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_SEVERITY__ACS_VIOLATION_SEVERITY_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_SEVERITY__UNCORR_INT_ERR_SEVERITY_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_SEVERITY__MC_BLOCKED_TLP_SEVERITY_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_SEVERITY__ATOMICOP_EGRESS_BLOCKED_SEVERITY_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_SEVERITY__TLP_PREFIX_BLOCKED_ERR_SEVERITY_MASK 0x02000000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_UNCORR_ERR_SEVERITY__POISONED_TLP_EGRESS_BLOCKED_SEVERITY_MASK 0x04000000L
+//BIF_CFG_DEV0_EPF0_VF4_PCIE_CORR_ERR_STATUS
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_CORR_ERR_STATUS__RCV_ERR_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_CORR_ERR_STATUS__BAD_TLP_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_CORR_ERR_STATUS__BAD_DLLP_STATUS__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_CORR_ERR_STATUS__REPLAY_NUM_ROLLOVER_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_CORR_ERR_STATUS__REPLAY_TIMER_TIMEOUT_STATUS__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_CORR_ERR_STATUS__ADVISORY_NONFATAL_ERR_STATUS__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_CORR_ERR_STATUS__CORR_INT_ERR_STATUS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_CORR_ERR_STATUS__HDR_LOG_OVFL_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_CORR_ERR_STATUS__RCV_ERR_STATUS_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_CORR_ERR_STATUS__BAD_TLP_STATUS_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_CORR_ERR_STATUS__BAD_DLLP_STATUS_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_CORR_ERR_STATUS__REPLAY_NUM_ROLLOVER_STATUS_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_CORR_ERR_STATUS__REPLAY_TIMER_TIMEOUT_STATUS_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_CORR_ERR_STATUS__ADVISORY_NONFATAL_ERR_STATUS_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_CORR_ERR_STATUS__CORR_INT_ERR_STATUS_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_CORR_ERR_STATUS__HDR_LOG_OVFL_STATUS_MASK 0x00008000L
+//BIF_CFG_DEV0_EPF0_VF4_PCIE_CORR_ERR_MASK
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_CORR_ERR_MASK__RCV_ERR_MASK__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_CORR_ERR_MASK__BAD_TLP_MASK__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_CORR_ERR_MASK__BAD_DLLP_MASK__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_CORR_ERR_MASK__REPLAY_NUM_ROLLOVER_MASK__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_CORR_ERR_MASK__REPLAY_TIMER_TIMEOUT_MASK__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_CORR_ERR_MASK__ADVISORY_NONFATAL_ERR_MASK__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_CORR_ERR_MASK__CORR_INT_ERR_MASK__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_CORR_ERR_MASK__HDR_LOG_OVFL_MASK__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_CORR_ERR_MASK__RCV_ERR_MASK_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_CORR_ERR_MASK__BAD_TLP_MASK_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_CORR_ERR_MASK__BAD_DLLP_MASK_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_CORR_ERR_MASK__REPLAY_NUM_ROLLOVER_MASK_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_CORR_ERR_MASK__REPLAY_TIMER_TIMEOUT_MASK_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_CORR_ERR_MASK__ADVISORY_NONFATAL_ERR_MASK_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_CORR_ERR_MASK__CORR_INT_ERR_MASK_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_CORR_ERR_MASK__HDR_LOG_OVFL_MASK_MASK 0x00008000L
+//BIF_CFG_DEV0_EPF0_VF4_PCIE_ADV_ERR_CAP_CNTL
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ADV_ERR_CAP_CNTL__FIRST_ERR_PTR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_CAP__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_EN__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_CAP__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_CAP__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ADV_ERR_CAP_CNTL__TLP_PREFIX_LOG_PRESENT__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ADV_ERR_CAP_CNTL__COMPLETION_TIMEOUT_LOG_CAPABLE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ADV_ERR_CAP_CNTL__FIRST_ERR_PTR_MASK 0x0000001FL
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_CAP_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_EN_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_CAP_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_EN_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_CAP_MASK 0x00000200L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_EN_MASK 0x00000400L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ADV_ERR_CAP_CNTL__TLP_PREFIX_LOG_PRESENT_MASK 0x00000800L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ADV_ERR_CAP_CNTL__COMPLETION_TIMEOUT_LOG_CAPABLE_MASK 0x00001000L
+//BIF_CFG_DEV0_EPF0_VF4_PCIE_HDR_LOG0
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_HDR_LOG0__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_HDR_LOG0__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF4_PCIE_HDR_LOG1
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_HDR_LOG1__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_HDR_LOG1__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF4_PCIE_HDR_LOG2
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_HDR_LOG2__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_HDR_LOG2__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF4_PCIE_HDR_LOG3
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_HDR_LOG3__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_HDR_LOG3__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF4_PCIE_TLP_PREFIX_LOG0
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_TLP_PREFIX_LOG0__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_TLP_PREFIX_LOG0__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF4_PCIE_TLP_PREFIX_LOG1
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_TLP_PREFIX_LOG1__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_TLP_PREFIX_LOG1__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF4_PCIE_TLP_PREFIX_LOG2
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_TLP_PREFIX_LOG2__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_TLP_PREFIX_LOG2__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF4_PCIE_TLP_PREFIX_LOG3
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_TLP_PREFIX_LOG3__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_TLP_PREFIX_LOG3__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF4_PCIE_ATS_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ATS_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ATS_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ATS_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ATS_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ATS_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ATS_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_VF4_PCIE_ATS_CAP
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ATS_CAP__INVALIDATE_Q_DEPTH__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ATS_CAP__PAGE_ALIGNED_REQUEST__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ATS_CAP__GLOBAL_INVALIDATE_SUPPORTED__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ATS_CAP__RELAXED_ORDERING_SUPPORTED__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ATS_CAP__INVALIDATE_Q_DEPTH_MASK 0x001FL
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ATS_CAP__PAGE_ALIGNED_REQUEST_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ATS_CAP__GLOBAL_INVALIDATE_SUPPORTED_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ATS_CAP__RELAXED_ORDERING_SUPPORTED_MASK 0x0080L
+//BIF_CFG_DEV0_EPF0_VF4_PCIE_ATS_CNTL
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ATS_CNTL__STU__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ATS_CNTL__ATC_ENABLE__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ATS_CNTL__STU_MASK 0x001FL
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ATS_CNTL__ATC_ENABLE_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF4_PCIE_ARI_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ARI_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ARI_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ARI_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ARI_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ARI_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ARI_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_VF4_PCIE_ARI_CAP
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ARI_CAP__ARI_MFVC_FUNC_GROUPS_CAP__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ARI_CAP__ARI_ACS_FUNC_GROUPS_CAP__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ARI_CAP__ARI_NEXT_FUNC_NUM__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ARI_CAP__ARI_MFVC_FUNC_GROUPS_CAP_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ARI_CAP__ARI_ACS_FUNC_GROUPS_CAP_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ARI_CAP__ARI_NEXT_FUNC_NUM_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_VF4_PCIE_ARI_CNTL
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ARI_CNTL__ARI_MFVC_FUNC_GROUPS_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ARI_CNTL__ARI_ACS_FUNC_GROUPS_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ARI_CNTL__ARI_FUNCTION_GROUP__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ARI_CNTL__ARI_MFVC_FUNC_GROUPS_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ARI_CNTL__ARI_ACS_FUNC_GROUPS_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF4_PCIE_ARI_CNTL__ARI_FUNCTION_GROUP_MASK 0x0070L
+
+
+// addressBlock: aid_nbio_nbif0_bif_cfg_dev0_epf0_vf5_bifcfgdecp
+//BIF_CFG_DEV0_EPF0_VF5_VENDOR_ID
+#define BIF_CFG_DEV0_EPF0_VF5_VENDOR_ID__VENDOR_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_VENDOR_ID__VENDOR_ID_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF5_DEVICE_ID
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_ID__DEVICE_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_ID__DEVICE_ID_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF5_COMMAND
+#define BIF_CFG_DEV0_EPF0_VF5_COMMAND__IO_ACCESS_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_COMMAND__MEM_ACCESS_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF5_COMMAND__BUS_MASTER_EN__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF5_COMMAND__SPECIAL_CYCLE_EN__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF5_COMMAND__MEM_WRITE_INVALIDATE_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF5_COMMAND__PAL_SNOOP_EN__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF5_COMMAND__PARITY_ERROR_RESPONSE__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF5_COMMAND__AD_STEPPING__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF5_COMMAND__SERR_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF5_COMMAND__FAST_B2B_EN__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF5_COMMAND__INT_DIS__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF5_COMMAND__IO_ACCESS_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF5_COMMAND__MEM_ACCESS_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF5_COMMAND__BUS_MASTER_EN_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_VF5_COMMAND__SPECIAL_CYCLE_EN_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF5_COMMAND__MEM_WRITE_INVALIDATE_EN_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF5_COMMAND__PAL_SNOOP_EN_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF5_COMMAND__PARITY_ERROR_RESPONSE_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF5_COMMAND__AD_STEPPING_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF5_COMMAND__SERR_EN_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF5_COMMAND__FAST_B2B_EN_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_VF5_COMMAND__INT_DIS_MASK 0x0400L
+//BIF_CFG_DEV0_EPF0_VF5_STATUS
+#define BIF_CFG_DEV0_EPF0_VF5_STATUS__IMMEDIATE_READINESS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_STATUS__INT_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF5_STATUS__CAP_LIST__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF5_STATUS__PCI_66_CAP__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF5_STATUS__FAST_BACK_CAPABLE__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF5_STATUS__MASTER_DATA_PARITY_ERROR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF5_STATUS__DEVSEL_TIMING__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF5_STATUS__SIGNAL_TARGET_ABORT__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF5_STATUS__RECEIVED_TARGET_ABORT__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF5_STATUS__RECEIVED_MASTER_ABORT__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF5_STATUS__SIGNALED_SYSTEM_ERROR__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF5_STATUS__PARITY_ERROR_DETECTED__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF5_STATUS__IMMEDIATE_READINESS_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF5_STATUS__INT_STATUS_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF5_STATUS__CAP_LIST_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF5_STATUS__PCI_66_CAP_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF5_STATUS__FAST_BACK_CAPABLE_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF5_STATUS__MASTER_DATA_PARITY_ERROR_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF5_STATUS__DEVSEL_TIMING_MASK 0x0600L
+#define BIF_CFG_DEV0_EPF0_VF5_STATUS__SIGNAL_TARGET_ABORT_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF5_STATUS__RECEIVED_TARGET_ABORT_MASK 0x1000L
+#define BIF_CFG_DEV0_EPF0_VF5_STATUS__RECEIVED_MASTER_ABORT_MASK 0x2000L
+#define BIF_CFG_DEV0_EPF0_VF5_STATUS__SIGNALED_SYSTEM_ERROR_MASK 0x4000L
+#define BIF_CFG_DEV0_EPF0_VF5_STATUS__PARITY_ERROR_DETECTED_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF5_REVISION_ID
+#define BIF_CFG_DEV0_EPF0_VF5_REVISION_ID__MINOR_REV_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_REVISION_ID__MAJOR_REV_ID__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF5_REVISION_ID__MINOR_REV_ID_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_VF5_REVISION_ID__MAJOR_REV_ID_MASK 0xF0L
+//BIF_CFG_DEV0_EPF0_VF5_PROG_INTERFACE
+#define BIF_CFG_DEV0_EPF0_VF5_PROG_INTERFACE__PROG_INTERFACE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_PROG_INTERFACE__PROG_INTERFACE_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF5_SUB_CLASS
+#define BIF_CFG_DEV0_EPF0_VF5_SUB_CLASS__SUB_CLASS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_SUB_CLASS__SUB_CLASS_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF5_BASE_CLASS
+#define BIF_CFG_DEV0_EPF0_VF5_BASE_CLASS__BASE_CLASS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_BASE_CLASS__BASE_CLASS_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF5_CACHE_LINE
+#define BIF_CFG_DEV0_EPF0_VF5_CACHE_LINE__CACHE_LINE_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_CACHE_LINE__CACHE_LINE_SIZE_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF5_LATENCY
+#define BIF_CFG_DEV0_EPF0_VF5_LATENCY__LATENCY_TIMER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_LATENCY__LATENCY_TIMER_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF5_HEADER
+#define BIF_CFG_DEV0_EPF0_VF5_HEADER__HEADER_TYPE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_HEADER__DEVICE_TYPE__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF5_HEADER__HEADER_TYPE_MASK 0x7FL
+#define BIF_CFG_DEV0_EPF0_VF5_HEADER__DEVICE_TYPE_MASK 0x80L
+//BIF_CFG_DEV0_EPF0_VF5_BIST
+#define BIF_CFG_DEV0_EPF0_VF5_BIST__BIST_COMP__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_BIST__BIST_STRT__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF5_BIST__BIST_CAP__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF5_BIST__BIST_COMP_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_VF5_BIST__BIST_STRT_MASK 0x40L
+#define BIF_CFG_DEV0_EPF0_VF5_BIST__BIST_CAP_MASK 0x80L
+//BIF_CFG_DEV0_EPF0_VF5_BASE_ADDR_1
+#define BIF_CFG_DEV0_EPF0_VF5_BASE_ADDR_1__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_BASE_ADDR_1__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF5_BASE_ADDR_2
+#define BIF_CFG_DEV0_EPF0_VF5_BASE_ADDR_2__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_BASE_ADDR_2__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF5_BASE_ADDR_3
+#define BIF_CFG_DEV0_EPF0_VF5_BASE_ADDR_3__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_BASE_ADDR_3__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF5_BASE_ADDR_4
+#define BIF_CFG_DEV0_EPF0_VF5_BASE_ADDR_4__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_BASE_ADDR_4__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF5_BASE_ADDR_5
+#define BIF_CFG_DEV0_EPF0_VF5_BASE_ADDR_5__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_BASE_ADDR_5__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF5_BASE_ADDR_6
+#define BIF_CFG_DEV0_EPF0_VF5_BASE_ADDR_6__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_BASE_ADDR_6__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF5_CARDBUS_CIS_PTR
+#define BIF_CFG_DEV0_EPF0_VF5_CARDBUS_CIS_PTR__CARDBUS_CIS_PTR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_CARDBUS_CIS_PTR__CARDBUS_CIS_PTR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF5_ADAPTER_ID
+#define BIF_CFG_DEV0_EPF0_VF5_ADAPTER_ID__SUBSYSTEM_VENDOR_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_ADAPTER_ID__SUBSYSTEM_ID__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF5_ADAPTER_ID__SUBSYSTEM_VENDOR_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF5_ADAPTER_ID__SUBSYSTEM_ID_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_VF5_ROM_BASE_ADDR
+#define BIF_CFG_DEV0_EPF0_VF5_ROM_BASE_ADDR__ROM_ENABLE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_ROM_BASE_ADDR__ROM_VALIDATION_STATUS__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF5_ROM_BASE_ADDR__ROM_VALIDATION_DETAILS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF5_ROM_BASE_ADDR__BASE_ADDR__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF5_ROM_BASE_ADDR__ROM_ENABLE_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_VF5_ROM_BASE_ADDR__ROM_VALIDATION_STATUS_MASK 0x0000000EL
+#define BIF_CFG_DEV0_EPF0_VF5_ROM_BASE_ADDR__ROM_VALIDATION_DETAILS_MASK 0x000000F0L
+#define BIF_CFG_DEV0_EPF0_VF5_ROM_BASE_ADDR__BASE_ADDR_MASK 0xFFFFF800L
+//BIF_CFG_DEV0_EPF0_VF5_CAP_PTR
+#define BIF_CFG_DEV0_EPF0_VF5_CAP_PTR__CAP_PTR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_CAP_PTR__CAP_PTR_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF5_INTERRUPT_LINE
+#define BIF_CFG_DEV0_EPF0_VF5_INTERRUPT_LINE__INTERRUPT_LINE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_INTERRUPT_LINE__INTERRUPT_LINE_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF5_INTERRUPT_PIN
+#define BIF_CFG_DEV0_EPF0_VF5_INTERRUPT_PIN__INTERRUPT_PIN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_INTERRUPT_PIN__INTERRUPT_PIN_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF5_MIN_GRANT
+#define BIF_CFG_DEV0_EPF0_VF5_MIN_GRANT__MIN_GNT__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_MIN_GRANT__MIN_GNT_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF5_MAX_LATENCY
+#define BIF_CFG_DEV0_EPF0_VF5_MAX_LATENCY__MAX_LAT__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_MAX_LATENCY__MAX_LAT_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF5_PCIE_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_VF5_PCIE_CAP
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_CAP__VERSION__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_CAP__DEVICE_TYPE__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_CAP__SLOT_IMPLEMENTED__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_CAP__INT_MESSAGE_NUM__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_CAP__VERSION_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_CAP__DEVICE_TYPE_MASK 0x00F0L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_CAP__SLOT_IMPLEMENTED_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_CAP__INT_MESSAGE_NUM_MASK 0x3E00L
+//BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP__MAX_PAYLOAD_SUPPORT__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP__PHANTOM_FUNC__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP__EXTENDED_TAG__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP__L0S_ACCEPTABLE_LATENCY__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP__L1_ACCEPTABLE_LATENCY__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP__ROLE_BASED_ERR_REPORTING__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP__ERR_COR_SUBCLASS_CAPABLE__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP__CAPTURED_SLOT_POWER_LIMIT__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP__CAPTURED_SLOT_POWER_SCALE__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP__FLR_CAPABLE__SHIFT 0x1c
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP__MAX_PAYLOAD_SUPPORT_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP__PHANTOM_FUNC_MASK 0x00000018L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP__EXTENDED_TAG_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP__L0S_ACCEPTABLE_LATENCY_MASK 0x000001C0L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP__L1_ACCEPTABLE_LATENCY_MASK 0x00000E00L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP__ROLE_BASED_ERR_REPORTING_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP__ERR_COR_SUBCLASS_CAPABLE_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP__CAPTURED_SLOT_POWER_LIMIT_MASK 0x03FC0000L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP__CAPTURED_SLOT_POWER_SCALE_MASK 0x0C000000L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP__FLR_CAPABLE_MASK 0x10000000L
+//BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL__CORR_ERR_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL__NON_FATAL_ERR_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL__FATAL_ERR_EN__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL__USR_REPORT_EN__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL__RELAXED_ORD_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL__MAX_PAYLOAD_SIZE__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL__EXTENDED_TAG_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL__PHANTOM_FUNC_EN__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL__AUX_POWER_PM_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL__NO_SNOOP_EN__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL__MAX_READ_REQUEST_SIZE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL__INITIATE_FLR__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL__CORR_ERR_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL__NON_FATAL_ERR_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL__FATAL_ERR_EN_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL__USR_REPORT_EN_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL__RELAXED_ORD_EN_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL__MAX_PAYLOAD_SIZE_MASK 0x00E0L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL__EXTENDED_TAG_EN_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL__PHANTOM_FUNC_EN_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL__AUX_POWER_PM_EN_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL__NO_SNOOP_EN_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL__MAX_READ_REQUEST_SIZE_MASK 0x7000L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL__INITIATE_FLR_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF5_DEVICE_STATUS
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_STATUS__CORR_ERR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_STATUS__NON_FATAL_ERR__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_STATUS__FATAL_ERR__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_STATUS__USR_DETECTED__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_STATUS__AUX_PWR__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_STATUS__TRANSACTIONS_PEND__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_STATUS__EMER_POWER_REDUCTION_DETECTED__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_STATUS__CORR_ERR_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_STATUS__NON_FATAL_ERR_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_STATUS__FATAL_ERR_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_STATUS__USR_DETECTED_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_STATUS__AUX_PWR_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_STATUS__TRANSACTIONS_PEND_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_STATUS__EMER_POWER_REDUCTION_DETECTED_MASK 0x0040L
+//BIF_CFG_DEV0_EPF0_VF5_LINK_CAP
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CAP__LINK_SPEED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CAP__LINK_WIDTH__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CAP__PM_SUPPORT__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CAP__L0S_EXIT_LATENCY__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CAP__L1_EXIT_LATENCY__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CAP__CLOCK_POWER_MANAGEMENT__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CAP__SURPRISE_DOWN_ERR_REPORTING__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CAP__DL_ACTIVE_REPORTING_CAPABLE__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CAP__LINK_BW_NOTIFICATION_CAP__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CAP__ASPM_OPTIONALITY_COMPLIANCE__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CAP__PORT_NUMBER__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CAP__LINK_SPEED_MASK 0x0000000FL
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CAP__LINK_WIDTH_MASK 0x000003F0L
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CAP__PM_SUPPORT_MASK 0x00000C00L
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CAP__L0S_EXIT_LATENCY_MASK 0x00007000L
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CAP__L1_EXIT_LATENCY_MASK 0x00038000L
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CAP__CLOCK_POWER_MANAGEMENT_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CAP__SURPRISE_DOWN_ERR_REPORTING_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CAP__DL_ACTIVE_REPORTING_CAPABLE_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CAP__LINK_BW_NOTIFICATION_CAP_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CAP__ASPM_OPTIONALITY_COMPLIANCE_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CAP__PORT_NUMBER_MASK 0xFF000000L
+//BIF_CFG_DEV0_EPF0_VF5_LINK_CNTL
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CNTL__PM_CONTROL__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CNTL__PTM_PROP_DELAY_ADAPT_INTER_B__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CNTL__READ_CPL_BOUNDARY__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CNTL__LINK_DIS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CNTL__RETRAIN_LINK__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CNTL__COMMON_CLOCK_CFG__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CNTL__EXTENDED_SYNC__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CNTL__CLOCK_POWER_MANAGEMENT_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CNTL__HW_AUTONOMOUS_WIDTH_DISABLE__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CNTL__LINK_BW_MANAGEMENT_INT_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CNTL__LINK_AUTONOMOUS_BW_INT_EN__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CNTL__DRS_SIGNALING_CONTROL__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CNTL__PM_CONTROL_MASK 0x0003L
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CNTL__PTM_PROP_DELAY_ADAPT_INTER_B_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CNTL__READ_CPL_BOUNDARY_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CNTL__LINK_DIS_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CNTL__RETRAIN_LINK_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CNTL__COMMON_CLOCK_CFG_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CNTL__EXTENDED_SYNC_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CNTL__CLOCK_POWER_MANAGEMENT_EN_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CNTL__HW_AUTONOMOUS_WIDTH_DISABLE_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CNTL__LINK_BW_MANAGEMENT_INT_EN_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CNTL__LINK_AUTONOMOUS_BW_INT_EN_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CNTL__DRS_SIGNALING_CONTROL_MASK 0xC000L
+//BIF_CFG_DEV0_EPF0_VF5_LINK_STATUS
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_STATUS__CURRENT_LINK_SPEED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_STATUS__NEGOTIATED_LINK_WIDTH__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_STATUS__LINK_TRAINING__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_STATUS__SLOT_CLOCK_CFG__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_STATUS__DL_ACTIVE__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_STATUS__LINK_BW_MANAGEMENT_STATUS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_STATUS__LINK_AUTONOMOUS_BW_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_STATUS__CURRENT_LINK_SPEED_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_STATUS__NEGOTIATED_LINK_WIDTH_MASK 0x03F0L
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_STATUS__LINK_TRAINING_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_STATUS__SLOT_CLOCK_CFG_MASK 0x1000L
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_STATUS__DL_ACTIVE_MASK 0x2000L
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_STATUS__LINK_BW_MANAGEMENT_STATUS_MASK 0x4000L
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_STATUS__LINK_AUTONOMOUS_BW_STATUS_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP2
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP2__CPL_TIMEOUT_RANGE_SUPPORTED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP2__CPL_TIMEOUT_DIS_SUPPORTED__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP2__ARI_FORWARDING_SUPPORTED__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP2__ATOMICOP_ROUTING_SUPPORTED__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP2__ATOMICOP_32CMPLT_SUPPORTED__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP2__ATOMICOP_64CMPLT_SUPPORTED__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP2__CAS128_CMPLT_SUPPORTED__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP2__NO_RO_ENABLED_P2P_PASSING__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP2__LTR_SUPPORTED__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP2__TPH_CPLR_SUPPORTED__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP2__LN_SYSTEM_CLS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP2__TEN_BIT_TAG_COMPLETER_SUPPORTED__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP2__TEN_BIT_TAG_REQUESTER_SUPPORTED__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP2__OBFF_SUPPORTED__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP2__EXTENDED_FMT_FIELD_SUPPORTED__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP2__END_END_TLP_PREFIX_SUPPORTED__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP2__MAX_END_END_TLP_PREFIXES__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP2__EMER_POWER_REDUCTION_SUPPORTED__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP2__EMER_POWER_REDUCTION_INIT_REQ__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP2__FRS_SUPPORTED__SHIFT 0x1f
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP2__CPL_TIMEOUT_RANGE_SUPPORTED_MASK 0x0000000FL
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP2__CPL_TIMEOUT_DIS_SUPPORTED_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP2__ARI_FORWARDING_SUPPORTED_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP2__ATOMICOP_ROUTING_SUPPORTED_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP2__ATOMICOP_32CMPLT_SUPPORTED_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP2__ATOMICOP_64CMPLT_SUPPORTED_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP2__CAS128_CMPLT_SUPPORTED_MASK 0x00000200L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP2__NO_RO_ENABLED_P2P_PASSING_MASK 0x00000400L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP2__LTR_SUPPORTED_MASK 0x00000800L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP2__TPH_CPLR_SUPPORTED_MASK 0x00003000L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP2__LN_SYSTEM_CLS_MASK 0x0000C000L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP2__TEN_BIT_TAG_COMPLETER_SUPPORTED_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP2__TEN_BIT_TAG_REQUESTER_SUPPORTED_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP2__OBFF_SUPPORTED_MASK 0x000C0000L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP2__EXTENDED_FMT_FIELD_SUPPORTED_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP2__END_END_TLP_PREFIX_SUPPORTED_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP2__MAX_END_END_TLP_PREFIXES_MASK 0x00C00000L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP2__EMER_POWER_REDUCTION_SUPPORTED_MASK 0x03000000L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP2__EMER_POWER_REDUCTION_INIT_REQ_MASK 0x04000000L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CAP2__FRS_SUPPORTED_MASK 0x80000000L
+//BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL2
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL2__CPL_TIMEOUT_VALUE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL2__CPL_TIMEOUT_DIS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL2__ARI_FORWARDING_EN__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL2__ATOMICOP_REQUEST_EN__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL2__ATOMICOP_EGRESS_BLOCKING__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL2__IDO_REQUEST_ENABLE__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL2__IDO_COMPLETION_ENABLE__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL2__LTR_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL2__EMER_POWER_REDUCTION_REQUEST__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL2__TEN_BIT_TAG_REQUESTER_ENABLE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL2__OBFF_EN__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL2__END_END_TLP_PREFIX_BLOCKING__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL2__CPL_TIMEOUT_VALUE_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL2__CPL_TIMEOUT_DIS_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL2__ARI_FORWARDING_EN_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL2__ATOMICOP_REQUEST_EN_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL2__ATOMICOP_EGRESS_BLOCKING_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL2__IDO_REQUEST_ENABLE_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL2__IDO_COMPLETION_ENABLE_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL2__LTR_EN_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL2__EMER_POWER_REDUCTION_REQUEST_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL2__TEN_BIT_TAG_REQUESTER_ENABLE_MASK 0x1000L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL2__OBFF_EN_MASK 0x6000L
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_CNTL2__END_END_TLP_PREFIX_BLOCKING_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF5_DEVICE_STATUS2
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_STATUS2__RESERVED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_DEVICE_STATUS2__RESERVED_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF5_LINK_CAP2
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CAP2__SUPPORTED_LINK_SPEED__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CAP2__CROSSLINK_SUPPORTED__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CAP2__LOWER_SKP_OS_GEN_SUPPORT__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CAP2__LOWER_SKP_OS_RCV_SUPPORT__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CAP2__RTM1_PRESENCE_DET_SUPPORT__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CAP2__RTM2_PRESENCE_DET_SUPPORT__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CAP2__DRS_SUPPORTED__SHIFT 0x1f
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CAP2__SUPPORTED_LINK_SPEED_MASK 0x000000FEL
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CAP2__CROSSLINK_SUPPORTED_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CAP2__LOWER_SKP_OS_GEN_SUPPORT_MASK 0x0000FE00L
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CAP2__LOWER_SKP_OS_RCV_SUPPORT_MASK 0x007F0000L
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CAP2__RTM1_PRESENCE_DET_SUPPORT_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CAP2__RTM2_PRESENCE_DET_SUPPORT_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CAP2__DRS_SUPPORTED_MASK 0x80000000L
+//BIF_CFG_DEV0_EPF0_VF5_LINK_CNTL2
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CNTL2__TARGET_LINK_SPEED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CNTL2__ENTER_COMPLIANCE__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CNTL2__HW_AUTONOMOUS_SPEED_DISABLE__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CNTL2__SELECTABLE_DEEMPHASIS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CNTL2__XMIT_MARGIN__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CNTL2__ENTER_MOD_COMPLIANCE__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CNTL2__COMPLIANCE_SOS__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CNTL2__COMPLIANCE_DEEMPHASIS__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CNTL2__TARGET_LINK_SPEED_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CNTL2__ENTER_COMPLIANCE_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CNTL2__HW_AUTONOMOUS_SPEED_DISABLE_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CNTL2__SELECTABLE_DEEMPHASIS_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CNTL2__XMIT_MARGIN_MASK 0x0380L
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CNTL2__ENTER_MOD_COMPLIANCE_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CNTL2__COMPLIANCE_SOS_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_CNTL2__COMPLIANCE_DEEMPHASIS_MASK 0xF000L
+//BIF_CFG_DEV0_EPF0_VF5_LINK_STATUS2
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_STATUS2__CUR_DEEMPHASIS_LEVEL__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_STATUS2__EQUALIZATION_COMPLETE_8GT__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_STATUS2__EQUALIZATION_PHASE1_SUCCESS_8GT__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_STATUS2__EQUALIZATION_PHASE2_SUCCESS_8GT__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_STATUS2__EQUALIZATION_PHASE3_SUCCESS_8GT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_STATUS2__LINK_EQUALIZATION_REQUEST_8GT__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_STATUS2__RTM1_PRESENCE_DET__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_STATUS2__RTM2_PRESENCE_DET__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_STATUS2__CROSSLINK_RESOLUTION__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_STATUS2__DOWNSTREAM_COMPONENT_PRESENCE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_STATUS2__DRS_MESSAGE_RECEIVED__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_STATUS2__CUR_DEEMPHASIS_LEVEL_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_STATUS2__EQUALIZATION_COMPLETE_8GT_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_STATUS2__EQUALIZATION_PHASE1_SUCCESS_8GT_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_STATUS2__EQUALIZATION_PHASE2_SUCCESS_8GT_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_STATUS2__EQUALIZATION_PHASE3_SUCCESS_8GT_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_STATUS2__LINK_EQUALIZATION_REQUEST_8GT_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_STATUS2__RTM1_PRESENCE_DET_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_STATUS2__RTM2_PRESENCE_DET_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_STATUS2__CROSSLINK_RESOLUTION_MASK 0x0300L
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_STATUS2__DOWNSTREAM_COMPONENT_PRESENCE_MASK 0x7000L
+#define BIF_CFG_DEV0_EPF0_VF5_LINK_STATUS2__DRS_MESSAGE_RECEIVED_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF5_MSI_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF5_MSI_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_MSI_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF5_MSI_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_EPF0_VF5_MSI_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_VF5_MSI_MSG_CNTL
+#define BIF_CFG_DEV0_EPF0_VF5_MSI_MSG_CNTL__MSI_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_MSI_MSG_CNTL__MSI_MULTI_CAP__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF5_MSI_MSG_CNTL__MSI_MULTI_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF5_MSI_MSG_CNTL__MSI_64BIT__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF5_MSI_MSG_CNTL__MSI_PERVECTOR_MASKING_CAP__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF5_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_CAP__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF5_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF5_MSI_MSG_CNTL__MSI_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF5_MSI_MSG_CNTL__MSI_MULTI_CAP_MASK 0x000EL
+#define BIF_CFG_DEV0_EPF0_VF5_MSI_MSG_CNTL__MSI_MULTI_EN_MASK 0x0070L
+#define BIF_CFG_DEV0_EPF0_VF5_MSI_MSG_CNTL__MSI_64BIT_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF5_MSI_MSG_CNTL__MSI_PERVECTOR_MASKING_CAP_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF5_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_CAP_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_VF5_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_EN_MASK 0x0400L
+//BIF_CFG_DEV0_EPF0_VF5_MSI_MSG_ADDR_LO
+#define BIF_CFG_DEV0_EPF0_VF5_MSI_MSG_ADDR_LO__MSI_MSG_ADDR_LO__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF5_MSI_MSG_ADDR_LO__MSI_MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//BIF_CFG_DEV0_EPF0_VF5_MSI_MSG_ADDR_HI
+#define BIF_CFG_DEV0_EPF0_VF5_MSI_MSG_ADDR_HI__MSI_MSG_ADDR_HI__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_MSI_MSG_ADDR_HI__MSI_MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF5_MSI_MSG_DATA
+#define BIF_CFG_DEV0_EPF0_VF5_MSI_MSG_DATA__MSI_DATA__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_MSI_MSG_DATA__MSI_DATA_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF5_MSI_EXT_MSG_DATA
+#define BIF_CFG_DEV0_EPF0_VF5_MSI_EXT_MSG_DATA__MSI_EXT_DATA__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_MSI_EXT_MSG_DATA__MSI_EXT_DATA_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF5_MSI_MASK
+#define BIF_CFG_DEV0_EPF0_VF5_MSI_MASK__MSI_MASK__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_MSI_MASK__MSI_MASK_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF5_MSI_MSG_DATA_64
+#define BIF_CFG_DEV0_EPF0_VF5_MSI_MSG_DATA_64__MSI_DATA_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_MSI_MSG_DATA_64__MSI_DATA_64_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF5_MSI_EXT_MSG_DATA_64
+#define BIF_CFG_DEV0_EPF0_VF5_MSI_EXT_MSG_DATA_64__MSI_EXT_DATA_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_MSI_EXT_MSG_DATA_64__MSI_EXT_DATA_64_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF5_MSI_MASK_64
+#define BIF_CFG_DEV0_EPF0_VF5_MSI_MASK_64__MSI_MASK_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_MSI_MASK_64__MSI_MASK_64_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF5_MSI_PENDING
+#define BIF_CFG_DEV0_EPF0_VF5_MSI_PENDING__MSI_PENDING__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_MSI_PENDING__MSI_PENDING_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF5_MSI_PENDING_64
+#define BIF_CFG_DEV0_EPF0_VF5_MSI_PENDING_64__MSI_PENDING_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_MSI_PENDING_64__MSI_PENDING_64_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF5_MSIX_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF5_MSIX_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_MSIX_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF5_MSIX_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_EPF0_VF5_MSIX_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_VF5_MSIX_MSG_CNTL
+#define BIF_CFG_DEV0_EPF0_VF5_MSIX_MSG_CNTL__MSIX_TABLE_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_MSIX_MSG_CNTL__MSIX_FUNC_MASK__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF5_MSIX_MSG_CNTL__MSIX_EN__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF5_MSIX_MSG_CNTL__MSIX_TABLE_SIZE_MASK 0x07FFL
+#define BIF_CFG_DEV0_EPF0_VF5_MSIX_MSG_CNTL__MSIX_FUNC_MASK_MASK 0x4000L
+#define BIF_CFG_DEV0_EPF0_VF5_MSIX_MSG_CNTL__MSIX_EN_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF5_MSIX_TABLE
+#define BIF_CFG_DEV0_EPF0_VF5_MSIX_TABLE__MSIX_TABLE_BIR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_MSIX_TABLE__MSIX_TABLE_OFFSET__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF5_MSIX_TABLE__MSIX_TABLE_BIR_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF0_VF5_MSIX_TABLE__MSIX_TABLE_OFFSET_MASK 0xFFFFFFF8L
+//BIF_CFG_DEV0_EPF0_VF5_MSIX_PBA
+#define BIF_CFG_DEV0_EPF0_VF5_MSIX_PBA__MSIX_PBA_BIR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_MSIX_PBA__MSIX_PBA_OFFSET__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF5_MSIX_PBA__MSIX_PBA_BIR_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF0_VF5_MSIX_PBA__MSIX_PBA_OFFSET_MASK 0xFFFFFFF8L
+//BIF_CFG_DEV0_EPF0_VF5_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_VF5_PCIE_VENDOR_SPECIFIC_HDR
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_VENDOR_SPECIFIC_HDR__VSEC_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_VENDOR_SPECIFIC_HDR__VSEC_REV__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_VENDOR_SPECIFIC_HDR__VSEC_LENGTH__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_VENDOR_SPECIFIC_HDR__VSEC_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_VENDOR_SPECIFIC_HDR__VSEC_REV_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_VENDOR_SPECIFIC_HDR__VSEC_LENGTH_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_VF5_PCIE_VENDOR_SPECIFIC1
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_VENDOR_SPECIFIC1__SCRATCH__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_VENDOR_SPECIFIC1__SCRATCH_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF5_PCIE_VENDOR_SPECIFIC2
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_VENDOR_SPECIFIC2__SCRATCH__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_VENDOR_SPECIFIC2__SCRATCH_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF5_PCIE_ADV_ERR_RPT_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_STATUS
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_STATUS__DLP_ERR_STATUS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_STATUS__SURPDN_ERR_STATUS__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_STATUS__PSN_ERR_STATUS__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_STATUS__FC_ERR_STATUS__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_STATUS__CPL_TIMEOUT_STATUS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_STATUS__CPL_ABORT_ERR_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_STATUS__UNEXP_CPL_STATUS__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_STATUS__RCV_OVFL_STATUS__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_STATUS__MAL_TLP_STATUS__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_STATUS__ECRC_ERR_STATUS__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_STATUS__UNSUPP_REQ_ERR_STATUS__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_STATUS__ACS_VIOLATION_STATUS__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_STATUS__UNCORR_INT_ERR_STATUS__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_STATUS__MC_BLOCKED_TLP_STATUS__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_STATUS__ATOMICOP_EGRESS_BLOCKED_STATUS__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_STATUS__TLP_PREFIX_BLOCKED_ERR_STATUS__SHIFT 0x19
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_STATUS__POISONED_TLP_EGRESS_BLOCKED_STATUS__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_STATUS__DLP_ERR_STATUS_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_STATUS__SURPDN_ERR_STATUS_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_STATUS__PSN_ERR_STATUS_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_STATUS__FC_ERR_STATUS_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_STATUS__CPL_TIMEOUT_STATUS_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_STATUS__CPL_ABORT_ERR_STATUS_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_STATUS__UNEXP_CPL_STATUS_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_STATUS__RCV_OVFL_STATUS_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_STATUS__MAL_TLP_STATUS_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_STATUS__ECRC_ERR_STATUS_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_STATUS__UNSUPP_REQ_ERR_STATUS_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_STATUS__ACS_VIOLATION_STATUS_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_STATUS__UNCORR_INT_ERR_STATUS_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_STATUS__MC_BLOCKED_TLP_STATUS_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_STATUS__ATOMICOP_EGRESS_BLOCKED_STATUS_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_STATUS__TLP_PREFIX_BLOCKED_ERR_STATUS_MASK 0x02000000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_STATUS__POISONED_TLP_EGRESS_BLOCKED_STATUS_MASK 0x04000000L
+//BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_MASK
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_MASK__DLP_ERR_MASK__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_MASK__SURPDN_ERR_MASK__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_MASK__PSN_ERR_MASK__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_MASK__FC_ERR_MASK__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_MASK__CPL_TIMEOUT_MASK__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_MASK__CPL_ABORT_ERR_MASK__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_MASK__UNEXP_CPL_MASK__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_MASK__RCV_OVFL_MASK__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_MASK__MAL_TLP_MASK__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_MASK__ECRC_ERR_MASK__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_MASK__UNSUPP_REQ_ERR_MASK__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_MASK__ACS_VIOLATION_MASK__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_MASK__UNCORR_INT_ERR_MASK__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_MASK__MC_BLOCKED_TLP_MASK__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_MASK__ATOMICOP_EGRESS_BLOCKED_MASK__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_MASK__TLP_PREFIX_BLOCKED_ERR_MASK__SHIFT 0x19
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_MASK__POISONED_TLP_EGRESS_BLOCKED_MASK__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_MASK__DLP_ERR_MASK_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_MASK__SURPDN_ERR_MASK_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_MASK__PSN_ERR_MASK_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_MASK__FC_ERR_MASK_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_MASK__CPL_TIMEOUT_MASK_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_MASK__CPL_ABORT_ERR_MASK_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_MASK__UNEXP_CPL_MASK_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_MASK__RCV_OVFL_MASK_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_MASK__MAL_TLP_MASK_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_MASK__ECRC_ERR_MASK_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_MASK__UNSUPP_REQ_ERR_MASK_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_MASK__ACS_VIOLATION_MASK_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_MASK__UNCORR_INT_ERR_MASK_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_MASK__MC_BLOCKED_TLP_MASK_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_MASK__ATOMICOP_EGRESS_BLOCKED_MASK_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_MASK__TLP_PREFIX_BLOCKED_ERR_MASK_MASK 0x02000000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_MASK__POISONED_TLP_EGRESS_BLOCKED_MASK_MASK 0x04000000L
+//BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_SEVERITY
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_SEVERITY__DLP_ERR_SEVERITY__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_SEVERITY__SURPDN_ERR_SEVERITY__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_SEVERITY__PSN_ERR_SEVERITY__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_SEVERITY__FC_ERR_SEVERITY__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_SEVERITY__CPL_TIMEOUT_SEVERITY__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_SEVERITY__CPL_ABORT_ERR_SEVERITY__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_SEVERITY__UNEXP_CPL_SEVERITY__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_SEVERITY__RCV_OVFL_SEVERITY__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_SEVERITY__MAL_TLP_SEVERITY__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_SEVERITY__ECRC_ERR_SEVERITY__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_SEVERITY__UNSUPP_REQ_ERR_SEVERITY__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_SEVERITY__ACS_VIOLATION_SEVERITY__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_SEVERITY__UNCORR_INT_ERR_SEVERITY__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_SEVERITY__MC_BLOCKED_TLP_SEVERITY__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_SEVERITY__ATOMICOP_EGRESS_BLOCKED_SEVERITY__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_SEVERITY__TLP_PREFIX_BLOCKED_ERR_SEVERITY__SHIFT 0x19
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_SEVERITY__POISONED_TLP_EGRESS_BLOCKED_SEVERITY__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_SEVERITY__DLP_ERR_SEVERITY_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_SEVERITY__SURPDN_ERR_SEVERITY_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_SEVERITY__PSN_ERR_SEVERITY_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_SEVERITY__FC_ERR_SEVERITY_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_SEVERITY__CPL_TIMEOUT_SEVERITY_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_SEVERITY__CPL_ABORT_ERR_SEVERITY_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_SEVERITY__UNEXP_CPL_SEVERITY_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_SEVERITY__RCV_OVFL_SEVERITY_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_SEVERITY__MAL_TLP_SEVERITY_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_SEVERITY__ECRC_ERR_SEVERITY_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_SEVERITY__UNSUPP_REQ_ERR_SEVERITY_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_SEVERITY__ACS_VIOLATION_SEVERITY_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_SEVERITY__UNCORR_INT_ERR_SEVERITY_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_SEVERITY__MC_BLOCKED_TLP_SEVERITY_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_SEVERITY__ATOMICOP_EGRESS_BLOCKED_SEVERITY_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_SEVERITY__TLP_PREFIX_BLOCKED_ERR_SEVERITY_MASK 0x02000000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_UNCORR_ERR_SEVERITY__POISONED_TLP_EGRESS_BLOCKED_SEVERITY_MASK 0x04000000L
+//BIF_CFG_DEV0_EPF0_VF5_PCIE_CORR_ERR_STATUS
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_CORR_ERR_STATUS__RCV_ERR_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_CORR_ERR_STATUS__BAD_TLP_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_CORR_ERR_STATUS__BAD_DLLP_STATUS__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_CORR_ERR_STATUS__REPLAY_NUM_ROLLOVER_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_CORR_ERR_STATUS__REPLAY_TIMER_TIMEOUT_STATUS__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_CORR_ERR_STATUS__ADVISORY_NONFATAL_ERR_STATUS__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_CORR_ERR_STATUS__CORR_INT_ERR_STATUS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_CORR_ERR_STATUS__HDR_LOG_OVFL_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_CORR_ERR_STATUS__RCV_ERR_STATUS_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_CORR_ERR_STATUS__BAD_TLP_STATUS_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_CORR_ERR_STATUS__BAD_DLLP_STATUS_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_CORR_ERR_STATUS__REPLAY_NUM_ROLLOVER_STATUS_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_CORR_ERR_STATUS__REPLAY_TIMER_TIMEOUT_STATUS_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_CORR_ERR_STATUS__ADVISORY_NONFATAL_ERR_STATUS_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_CORR_ERR_STATUS__CORR_INT_ERR_STATUS_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_CORR_ERR_STATUS__HDR_LOG_OVFL_STATUS_MASK 0x00008000L
+//BIF_CFG_DEV0_EPF0_VF5_PCIE_CORR_ERR_MASK
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_CORR_ERR_MASK__RCV_ERR_MASK__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_CORR_ERR_MASK__BAD_TLP_MASK__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_CORR_ERR_MASK__BAD_DLLP_MASK__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_CORR_ERR_MASK__REPLAY_NUM_ROLLOVER_MASK__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_CORR_ERR_MASK__REPLAY_TIMER_TIMEOUT_MASK__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_CORR_ERR_MASK__ADVISORY_NONFATAL_ERR_MASK__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_CORR_ERR_MASK__CORR_INT_ERR_MASK__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_CORR_ERR_MASK__HDR_LOG_OVFL_MASK__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_CORR_ERR_MASK__RCV_ERR_MASK_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_CORR_ERR_MASK__BAD_TLP_MASK_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_CORR_ERR_MASK__BAD_DLLP_MASK_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_CORR_ERR_MASK__REPLAY_NUM_ROLLOVER_MASK_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_CORR_ERR_MASK__REPLAY_TIMER_TIMEOUT_MASK_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_CORR_ERR_MASK__ADVISORY_NONFATAL_ERR_MASK_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_CORR_ERR_MASK__CORR_INT_ERR_MASK_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_CORR_ERR_MASK__HDR_LOG_OVFL_MASK_MASK 0x00008000L
+//BIF_CFG_DEV0_EPF0_VF5_PCIE_ADV_ERR_CAP_CNTL
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ADV_ERR_CAP_CNTL__FIRST_ERR_PTR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_CAP__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_EN__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_CAP__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_CAP__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ADV_ERR_CAP_CNTL__TLP_PREFIX_LOG_PRESENT__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ADV_ERR_CAP_CNTL__COMPLETION_TIMEOUT_LOG_CAPABLE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ADV_ERR_CAP_CNTL__FIRST_ERR_PTR_MASK 0x0000001FL
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_CAP_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_EN_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_CAP_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_EN_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_CAP_MASK 0x00000200L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_EN_MASK 0x00000400L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ADV_ERR_CAP_CNTL__TLP_PREFIX_LOG_PRESENT_MASK 0x00000800L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ADV_ERR_CAP_CNTL__COMPLETION_TIMEOUT_LOG_CAPABLE_MASK 0x00001000L
+//BIF_CFG_DEV0_EPF0_VF5_PCIE_HDR_LOG0
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_HDR_LOG0__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_HDR_LOG0__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF5_PCIE_HDR_LOG1
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_HDR_LOG1__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_HDR_LOG1__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF5_PCIE_HDR_LOG2
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_HDR_LOG2__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_HDR_LOG2__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF5_PCIE_HDR_LOG3
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_HDR_LOG3__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_HDR_LOG3__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF5_PCIE_TLP_PREFIX_LOG0
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_TLP_PREFIX_LOG0__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_TLP_PREFIX_LOG0__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF5_PCIE_TLP_PREFIX_LOG1
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_TLP_PREFIX_LOG1__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_TLP_PREFIX_LOG1__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF5_PCIE_TLP_PREFIX_LOG2
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_TLP_PREFIX_LOG2__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_TLP_PREFIX_LOG2__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF5_PCIE_TLP_PREFIX_LOG3
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_TLP_PREFIX_LOG3__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_TLP_PREFIX_LOG3__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF5_PCIE_ATS_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ATS_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ATS_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ATS_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ATS_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ATS_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ATS_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_VF5_PCIE_ATS_CAP
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ATS_CAP__INVALIDATE_Q_DEPTH__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ATS_CAP__PAGE_ALIGNED_REQUEST__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ATS_CAP__GLOBAL_INVALIDATE_SUPPORTED__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ATS_CAP__RELAXED_ORDERING_SUPPORTED__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ATS_CAP__INVALIDATE_Q_DEPTH_MASK 0x001FL
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ATS_CAP__PAGE_ALIGNED_REQUEST_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ATS_CAP__GLOBAL_INVALIDATE_SUPPORTED_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ATS_CAP__RELAXED_ORDERING_SUPPORTED_MASK 0x0080L
+//BIF_CFG_DEV0_EPF0_VF5_PCIE_ATS_CNTL
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ATS_CNTL__STU__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ATS_CNTL__ATC_ENABLE__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ATS_CNTL__STU_MASK 0x001FL
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ATS_CNTL__ATC_ENABLE_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF5_PCIE_ARI_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ARI_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ARI_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ARI_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ARI_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ARI_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ARI_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_VF5_PCIE_ARI_CAP
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ARI_CAP__ARI_MFVC_FUNC_GROUPS_CAP__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ARI_CAP__ARI_ACS_FUNC_GROUPS_CAP__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ARI_CAP__ARI_NEXT_FUNC_NUM__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ARI_CAP__ARI_MFVC_FUNC_GROUPS_CAP_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ARI_CAP__ARI_ACS_FUNC_GROUPS_CAP_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ARI_CAP__ARI_NEXT_FUNC_NUM_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_VF5_PCIE_ARI_CNTL
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ARI_CNTL__ARI_MFVC_FUNC_GROUPS_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ARI_CNTL__ARI_ACS_FUNC_GROUPS_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ARI_CNTL__ARI_FUNCTION_GROUP__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ARI_CNTL__ARI_MFVC_FUNC_GROUPS_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ARI_CNTL__ARI_ACS_FUNC_GROUPS_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF5_PCIE_ARI_CNTL__ARI_FUNCTION_GROUP_MASK 0x0070L
+
+
+// addressBlock: aid_nbio_nbif0_bif_cfg_dev0_epf0_vf6_bifcfgdecp
+//BIF_CFG_DEV0_EPF0_VF6_VENDOR_ID
+#define BIF_CFG_DEV0_EPF0_VF6_VENDOR_ID__VENDOR_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_VENDOR_ID__VENDOR_ID_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF6_DEVICE_ID
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_ID__DEVICE_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_ID__DEVICE_ID_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF6_COMMAND
+#define BIF_CFG_DEV0_EPF0_VF6_COMMAND__IO_ACCESS_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_COMMAND__MEM_ACCESS_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF6_COMMAND__BUS_MASTER_EN__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF6_COMMAND__SPECIAL_CYCLE_EN__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF6_COMMAND__MEM_WRITE_INVALIDATE_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF6_COMMAND__PAL_SNOOP_EN__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF6_COMMAND__PARITY_ERROR_RESPONSE__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF6_COMMAND__AD_STEPPING__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF6_COMMAND__SERR_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF6_COMMAND__FAST_B2B_EN__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF6_COMMAND__INT_DIS__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF6_COMMAND__IO_ACCESS_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF6_COMMAND__MEM_ACCESS_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF6_COMMAND__BUS_MASTER_EN_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_VF6_COMMAND__SPECIAL_CYCLE_EN_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF6_COMMAND__MEM_WRITE_INVALIDATE_EN_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF6_COMMAND__PAL_SNOOP_EN_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF6_COMMAND__PARITY_ERROR_RESPONSE_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF6_COMMAND__AD_STEPPING_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF6_COMMAND__SERR_EN_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF6_COMMAND__FAST_B2B_EN_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_VF6_COMMAND__INT_DIS_MASK 0x0400L
+//BIF_CFG_DEV0_EPF0_VF6_STATUS
+#define BIF_CFG_DEV0_EPF0_VF6_STATUS__IMMEDIATE_READINESS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_STATUS__INT_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF6_STATUS__CAP_LIST__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF6_STATUS__PCI_66_CAP__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF6_STATUS__FAST_BACK_CAPABLE__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF6_STATUS__MASTER_DATA_PARITY_ERROR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF6_STATUS__DEVSEL_TIMING__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF6_STATUS__SIGNAL_TARGET_ABORT__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF6_STATUS__RECEIVED_TARGET_ABORT__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF6_STATUS__RECEIVED_MASTER_ABORT__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF6_STATUS__SIGNALED_SYSTEM_ERROR__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF6_STATUS__PARITY_ERROR_DETECTED__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF6_STATUS__IMMEDIATE_READINESS_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF6_STATUS__INT_STATUS_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF6_STATUS__CAP_LIST_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF6_STATUS__PCI_66_CAP_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF6_STATUS__FAST_BACK_CAPABLE_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF6_STATUS__MASTER_DATA_PARITY_ERROR_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF6_STATUS__DEVSEL_TIMING_MASK 0x0600L
+#define BIF_CFG_DEV0_EPF0_VF6_STATUS__SIGNAL_TARGET_ABORT_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF6_STATUS__RECEIVED_TARGET_ABORT_MASK 0x1000L
+#define BIF_CFG_DEV0_EPF0_VF6_STATUS__RECEIVED_MASTER_ABORT_MASK 0x2000L
+#define BIF_CFG_DEV0_EPF0_VF6_STATUS__SIGNALED_SYSTEM_ERROR_MASK 0x4000L
+#define BIF_CFG_DEV0_EPF0_VF6_STATUS__PARITY_ERROR_DETECTED_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF6_REVISION_ID
+#define BIF_CFG_DEV0_EPF0_VF6_REVISION_ID__MINOR_REV_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_REVISION_ID__MAJOR_REV_ID__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF6_REVISION_ID__MINOR_REV_ID_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_VF6_REVISION_ID__MAJOR_REV_ID_MASK 0xF0L
+//BIF_CFG_DEV0_EPF0_VF6_PROG_INTERFACE
+#define BIF_CFG_DEV0_EPF0_VF6_PROG_INTERFACE__PROG_INTERFACE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_PROG_INTERFACE__PROG_INTERFACE_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF6_SUB_CLASS
+#define BIF_CFG_DEV0_EPF0_VF6_SUB_CLASS__SUB_CLASS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_SUB_CLASS__SUB_CLASS_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF6_BASE_CLASS
+#define BIF_CFG_DEV0_EPF0_VF6_BASE_CLASS__BASE_CLASS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_BASE_CLASS__BASE_CLASS_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF6_CACHE_LINE
+#define BIF_CFG_DEV0_EPF0_VF6_CACHE_LINE__CACHE_LINE_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_CACHE_LINE__CACHE_LINE_SIZE_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF6_LATENCY
+#define BIF_CFG_DEV0_EPF0_VF6_LATENCY__LATENCY_TIMER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_LATENCY__LATENCY_TIMER_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF6_HEADER
+#define BIF_CFG_DEV0_EPF0_VF6_HEADER__HEADER_TYPE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_HEADER__DEVICE_TYPE__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF6_HEADER__HEADER_TYPE_MASK 0x7FL
+#define BIF_CFG_DEV0_EPF0_VF6_HEADER__DEVICE_TYPE_MASK 0x80L
+//BIF_CFG_DEV0_EPF0_VF6_BIST
+#define BIF_CFG_DEV0_EPF0_VF6_BIST__BIST_COMP__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_BIST__BIST_STRT__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF6_BIST__BIST_CAP__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF6_BIST__BIST_COMP_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_VF6_BIST__BIST_STRT_MASK 0x40L
+#define BIF_CFG_DEV0_EPF0_VF6_BIST__BIST_CAP_MASK 0x80L
+//BIF_CFG_DEV0_EPF0_VF6_BASE_ADDR_1
+#define BIF_CFG_DEV0_EPF0_VF6_BASE_ADDR_1__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_BASE_ADDR_1__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF6_BASE_ADDR_2
+#define BIF_CFG_DEV0_EPF0_VF6_BASE_ADDR_2__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_BASE_ADDR_2__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF6_BASE_ADDR_3
+#define BIF_CFG_DEV0_EPF0_VF6_BASE_ADDR_3__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_BASE_ADDR_3__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF6_BASE_ADDR_4
+#define BIF_CFG_DEV0_EPF0_VF6_BASE_ADDR_4__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_BASE_ADDR_4__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF6_BASE_ADDR_5
+#define BIF_CFG_DEV0_EPF0_VF6_BASE_ADDR_5__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_BASE_ADDR_5__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF6_BASE_ADDR_6
+#define BIF_CFG_DEV0_EPF0_VF6_BASE_ADDR_6__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_BASE_ADDR_6__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF6_CARDBUS_CIS_PTR
+#define BIF_CFG_DEV0_EPF0_VF6_CARDBUS_CIS_PTR__CARDBUS_CIS_PTR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_CARDBUS_CIS_PTR__CARDBUS_CIS_PTR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF6_ADAPTER_ID
+#define BIF_CFG_DEV0_EPF0_VF6_ADAPTER_ID__SUBSYSTEM_VENDOR_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_ADAPTER_ID__SUBSYSTEM_ID__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF6_ADAPTER_ID__SUBSYSTEM_VENDOR_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF6_ADAPTER_ID__SUBSYSTEM_ID_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_VF6_ROM_BASE_ADDR
+#define BIF_CFG_DEV0_EPF0_VF6_ROM_BASE_ADDR__ROM_ENABLE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_ROM_BASE_ADDR__ROM_VALIDATION_STATUS__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF6_ROM_BASE_ADDR__ROM_VALIDATION_DETAILS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF6_ROM_BASE_ADDR__BASE_ADDR__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF6_ROM_BASE_ADDR__ROM_ENABLE_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_VF6_ROM_BASE_ADDR__ROM_VALIDATION_STATUS_MASK 0x0000000EL
+#define BIF_CFG_DEV0_EPF0_VF6_ROM_BASE_ADDR__ROM_VALIDATION_DETAILS_MASK 0x000000F0L
+#define BIF_CFG_DEV0_EPF0_VF6_ROM_BASE_ADDR__BASE_ADDR_MASK 0xFFFFF800L
+//BIF_CFG_DEV0_EPF0_VF6_CAP_PTR
+#define BIF_CFG_DEV0_EPF0_VF6_CAP_PTR__CAP_PTR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_CAP_PTR__CAP_PTR_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF6_INTERRUPT_LINE
+#define BIF_CFG_DEV0_EPF0_VF6_INTERRUPT_LINE__INTERRUPT_LINE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_INTERRUPT_LINE__INTERRUPT_LINE_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF6_INTERRUPT_PIN
+#define BIF_CFG_DEV0_EPF0_VF6_INTERRUPT_PIN__INTERRUPT_PIN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_INTERRUPT_PIN__INTERRUPT_PIN_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF6_MIN_GRANT
+#define BIF_CFG_DEV0_EPF0_VF6_MIN_GRANT__MIN_GNT__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_MIN_GRANT__MIN_GNT_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF6_MAX_LATENCY
+#define BIF_CFG_DEV0_EPF0_VF6_MAX_LATENCY__MAX_LAT__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_MAX_LATENCY__MAX_LAT_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF6_PCIE_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_VF6_PCIE_CAP
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_CAP__VERSION__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_CAP__DEVICE_TYPE__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_CAP__SLOT_IMPLEMENTED__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_CAP__INT_MESSAGE_NUM__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_CAP__VERSION_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_CAP__DEVICE_TYPE_MASK 0x00F0L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_CAP__SLOT_IMPLEMENTED_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_CAP__INT_MESSAGE_NUM_MASK 0x3E00L
+//BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP__MAX_PAYLOAD_SUPPORT__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP__PHANTOM_FUNC__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP__EXTENDED_TAG__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP__L0S_ACCEPTABLE_LATENCY__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP__L1_ACCEPTABLE_LATENCY__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP__ROLE_BASED_ERR_REPORTING__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP__ERR_COR_SUBCLASS_CAPABLE__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP__CAPTURED_SLOT_POWER_LIMIT__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP__CAPTURED_SLOT_POWER_SCALE__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP__FLR_CAPABLE__SHIFT 0x1c
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP__MAX_PAYLOAD_SUPPORT_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP__PHANTOM_FUNC_MASK 0x00000018L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP__EXTENDED_TAG_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP__L0S_ACCEPTABLE_LATENCY_MASK 0x000001C0L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP__L1_ACCEPTABLE_LATENCY_MASK 0x00000E00L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP__ROLE_BASED_ERR_REPORTING_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP__ERR_COR_SUBCLASS_CAPABLE_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP__CAPTURED_SLOT_POWER_LIMIT_MASK 0x03FC0000L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP__CAPTURED_SLOT_POWER_SCALE_MASK 0x0C000000L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP__FLR_CAPABLE_MASK 0x10000000L
+//BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL__CORR_ERR_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL__NON_FATAL_ERR_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL__FATAL_ERR_EN__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL__USR_REPORT_EN__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL__RELAXED_ORD_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL__MAX_PAYLOAD_SIZE__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL__EXTENDED_TAG_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL__PHANTOM_FUNC_EN__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL__AUX_POWER_PM_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL__NO_SNOOP_EN__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL__MAX_READ_REQUEST_SIZE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL__INITIATE_FLR__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL__CORR_ERR_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL__NON_FATAL_ERR_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL__FATAL_ERR_EN_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL__USR_REPORT_EN_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL__RELAXED_ORD_EN_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL__MAX_PAYLOAD_SIZE_MASK 0x00E0L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL__EXTENDED_TAG_EN_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL__PHANTOM_FUNC_EN_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL__AUX_POWER_PM_EN_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL__NO_SNOOP_EN_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL__MAX_READ_REQUEST_SIZE_MASK 0x7000L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL__INITIATE_FLR_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF6_DEVICE_STATUS
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_STATUS__CORR_ERR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_STATUS__NON_FATAL_ERR__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_STATUS__FATAL_ERR__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_STATUS__USR_DETECTED__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_STATUS__AUX_PWR__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_STATUS__TRANSACTIONS_PEND__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_STATUS__EMER_POWER_REDUCTION_DETECTED__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_STATUS__CORR_ERR_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_STATUS__NON_FATAL_ERR_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_STATUS__FATAL_ERR_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_STATUS__USR_DETECTED_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_STATUS__AUX_PWR_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_STATUS__TRANSACTIONS_PEND_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_STATUS__EMER_POWER_REDUCTION_DETECTED_MASK 0x0040L
+//BIF_CFG_DEV0_EPF0_VF6_LINK_CAP
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CAP__LINK_SPEED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CAP__LINK_WIDTH__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CAP__PM_SUPPORT__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CAP__L0S_EXIT_LATENCY__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CAP__L1_EXIT_LATENCY__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CAP__CLOCK_POWER_MANAGEMENT__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CAP__SURPRISE_DOWN_ERR_REPORTING__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CAP__DL_ACTIVE_REPORTING_CAPABLE__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CAP__LINK_BW_NOTIFICATION_CAP__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CAP__ASPM_OPTIONALITY_COMPLIANCE__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CAP__PORT_NUMBER__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CAP__LINK_SPEED_MASK 0x0000000FL
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CAP__LINK_WIDTH_MASK 0x000003F0L
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CAP__PM_SUPPORT_MASK 0x00000C00L
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CAP__L0S_EXIT_LATENCY_MASK 0x00007000L
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CAP__L1_EXIT_LATENCY_MASK 0x00038000L
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CAP__CLOCK_POWER_MANAGEMENT_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CAP__SURPRISE_DOWN_ERR_REPORTING_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CAP__DL_ACTIVE_REPORTING_CAPABLE_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CAP__LINK_BW_NOTIFICATION_CAP_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CAP__ASPM_OPTIONALITY_COMPLIANCE_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CAP__PORT_NUMBER_MASK 0xFF000000L
+//BIF_CFG_DEV0_EPF0_VF6_LINK_CNTL
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CNTL__PM_CONTROL__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CNTL__PTM_PROP_DELAY_ADAPT_INTER_B__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CNTL__READ_CPL_BOUNDARY__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CNTL__LINK_DIS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CNTL__RETRAIN_LINK__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CNTL__COMMON_CLOCK_CFG__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CNTL__EXTENDED_SYNC__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CNTL__CLOCK_POWER_MANAGEMENT_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CNTL__HW_AUTONOMOUS_WIDTH_DISABLE__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CNTL__LINK_BW_MANAGEMENT_INT_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CNTL__LINK_AUTONOMOUS_BW_INT_EN__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CNTL__DRS_SIGNALING_CONTROL__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CNTL__PM_CONTROL_MASK 0x0003L
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CNTL__PTM_PROP_DELAY_ADAPT_INTER_B_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CNTL__READ_CPL_BOUNDARY_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CNTL__LINK_DIS_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CNTL__RETRAIN_LINK_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CNTL__COMMON_CLOCK_CFG_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CNTL__EXTENDED_SYNC_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CNTL__CLOCK_POWER_MANAGEMENT_EN_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CNTL__HW_AUTONOMOUS_WIDTH_DISABLE_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CNTL__LINK_BW_MANAGEMENT_INT_EN_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CNTL__LINK_AUTONOMOUS_BW_INT_EN_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CNTL__DRS_SIGNALING_CONTROL_MASK 0xC000L
+//BIF_CFG_DEV0_EPF0_VF6_LINK_STATUS
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_STATUS__CURRENT_LINK_SPEED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_STATUS__NEGOTIATED_LINK_WIDTH__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_STATUS__LINK_TRAINING__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_STATUS__SLOT_CLOCK_CFG__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_STATUS__DL_ACTIVE__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_STATUS__LINK_BW_MANAGEMENT_STATUS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_STATUS__LINK_AUTONOMOUS_BW_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_STATUS__CURRENT_LINK_SPEED_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_STATUS__NEGOTIATED_LINK_WIDTH_MASK 0x03F0L
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_STATUS__LINK_TRAINING_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_STATUS__SLOT_CLOCK_CFG_MASK 0x1000L
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_STATUS__DL_ACTIVE_MASK 0x2000L
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_STATUS__LINK_BW_MANAGEMENT_STATUS_MASK 0x4000L
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_STATUS__LINK_AUTONOMOUS_BW_STATUS_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP2
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP2__CPL_TIMEOUT_RANGE_SUPPORTED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP2__CPL_TIMEOUT_DIS_SUPPORTED__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP2__ARI_FORWARDING_SUPPORTED__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP2__ATOMICOP_ROUTING_SUPPORTED__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP2__ATOMICOP_32CMPLT_SUPPORTED__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP2__ATOMICOP_64CMPLT_SUPPORTED__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP2__CAS128_CMPLT_SUPPORTED__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP2__NO_RO_ENABLED_P2P_PASSING__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP2__LTR_SUPPORTED__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP2__TPH_CPLR_SUPPORTED__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP2__LN_SYSTEM_CLS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP2__TEN_BIT_TAG_COMPLETER_SUPPORTED__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP2__TEN_BIT_TAG_REQUESTER_SUPPORTED__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP2__OBFF_SUPPORTED__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP2__EXTENDED_FMT_FIELD_SUPPORTED__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP2__END_END_TLP_PREFIX_SUPPORTED__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP2__MAX_END_END_TLP_PREFIXES__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP2__EMER_POWER_REDUCTION_SUPPORTED__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP2__EMER_POWER_REDUCTION_INIT_REQ__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP2__FRS_SUPPORTED__SHIFT 0x1f
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP2__CPL_TIMEOUT_RANGE_SUPPORTED_MASK 0x0000000FL
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP2__CPL_TIMEOUT_DIS_SUPPORTED_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP2__ARI_FORWARDING_SUPPORTED_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP2__ATOMICOP_ROUTING_SUPPORTED_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP2__ATOMICOP_32CMPLT_SUPPORTED_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP2__ATOMICOP_64CMPLT_SUPPORTED_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP2__CAS128_CMPLT_SUPPORTED_MASK 0x00000200L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP2__NO_RO_ENABLED_P2P_PASSING_MASK 0x00000400L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP2__LTR_SUPPORTED_MASK 0x00000800L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP2__TPH_CPLR_SUPPORTED_MASK 0x00003000L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP2__LN_SYSTEM_CLS_MASK 0x0000C000L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP2__TEN_BIT_TAG_COMPLETER_SUPPORTED_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP2__TEN_BIT_TAG_REQUESTER_SUPPORTED_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP2__OBFF_SUPPORTED_MASK 0x000C0000L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP2__EXTENDED_FMT_FIELD_SUPPORTED_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP2__END_END_TLP_PREFIX_SUPPORTED_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP2__MAX_END_END_TLP_PREFIXES_MASK 0x00C00000L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP2__EMER_POWER_REDUCTION_SUPPORTED_MASK 0x03000000L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP2__EMER_POWER_REDUCTION_INIT_REQ_MASK 0x04000000L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CAP2__FRS_SUPPORTED_MASK 0x80000000L
+//BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL2
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL2__CPL_TIMEOUT_VALUE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL2__CPL_TIMEOUT_DIS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL2__ARI_FORWARDING_EN__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL2__ATOMICOP_REQUEST_EN__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL2__ATOMICOP_EGRESS_BLOCKING__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL2__IDO_REQUEST_ENABLE__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL2__IDO_COMPLETION_ENABLE__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL2__LTR_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL2__EMER_POWER_REDUCTION_REQUEST__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL2__TEN_BIT_TAG_REQUESTER_ENABLE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL2__OBFF_EN__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL2__END_END_TLP_PREFIX_BLOCKING__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL2__CPL_TIMEOUT_VALUE_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL2__CPL_TIMEOUT_DIS_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL2__ARI_FORWARDING_EN_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL2__ATOMICOP_REQUEST_EN_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL2__ATOMICOP_EGRESS_BLOCKING_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL2__IDO_REQUEST_ENABLE_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL2__IDO_COMPLETION_ENABLE_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL2__LTR_EN_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL2__EMER_POWER_REDUCTION_REQUEST_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL2__TEN_BIT_TAG_REQUESTER_ENABLE_MASK 0x1000L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL2__OBFF_EN_MASK 0x6000L
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_CNTL2__END_END_TLP_PREFIX_BLOCKING_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF6_DEVICE_STATUS2
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_STATUS2__RESERVED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_DEVICE_STATUS2__RESERVED_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF6_LINK_CAP2
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CAP2__SUPPORTED_LINK_SPEED__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CAP2__CROSSLINK_SUPPORTED__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CAP2__LOWER_SKP_OS_GEN_SUPPORT__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CAP2__LOWER_SKP_OS_RCV_SUPPORT__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CAP2__RTM1_PRESENCE_DET_SUPPORT__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CAP2__RTM2_PRESENCE_DET_SUPPORT__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CAP2__DRS_SUPPORTED__SHIFT 0x1f
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CAP2__SUPPORTED_LINK_SPEED_MASK 0x000000FEL
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CAP2__CROSSLINK_SUPPORTED_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CAP2__LOWER_SKP_OS_GEN_SUPPORT_MASK 0x0000FE00L
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CAP2__LOWER_SKP_OS_RCV_SUPPORT_MASK 0x007F0000L
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CAP2__RTM1_PRESENCE_DET_SUPPORT_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CAP2__RTM2_PRESENCE_DET_SUPPORT_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CAP2__DRS_SUPPORTED_MASK 0x80000000L
+//BIF_CFG_DEV0_EPF0_VF6_LINK_CNTL2
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CNTL2__TARGET_LINK_SPEED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CNTL2__ENTER_COMPLIANCE__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CNTL2__HW_AUTONOMOUS_SPEED_DISABLE__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CNTL2__SELECTABLE_DEEMPHASIS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CNTL2__XMIT_MARGIN__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CNTL2__ENTER_MOD_COMPLIANCE__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CNTL2__COMPLIANCE_SOS__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CNTL2__COMPLIANCE_DEEMPHASIS__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CNTL2__TARGET_LINK_SPEED_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CNTL2__ENTER_COMPLIANCE_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CNTL2__HW_AUTONOMOUS_SPEED_DISABLE_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CNTL2__SELECTABLE_DEEMPHASIS_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CNTL2__XMIT_MARGIN_MASK 0x0380L
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CNTL2__ENTER_MOD_COMPLIANCE_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CNTL2__COMPLIANCE_SOS_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_CNTL2__COMPLIANCE_DEEMPHASIS_MASK 0xF000L
+//BIF_CFG_DEV0_EPF0_VF6_LINK_STATUS2
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_STATUS2__CUR_DEEMPHASIS_LEVEL__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_STATUS2__EQUALIZATION_COMPLETE_8GT__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_STATUS2__EQUALIZATION_PHASE1_SUCCESS_8GT__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_STATUS2__EQUALIZATION_PHASE2_SUCCESS_8GT__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_STATUS2__EQUALIZATION_PHASE3_SUCCESS_8GT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_STATUS2__LINK_EQUALIZATION_REQUEST_8GT__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_STATUS2__RTM1_PRESENCE_DET__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_STATUS2__RTM2_PRESENCE_DET__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_STATUS2__CROSSLINK_RESOLUTION__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_STATUS2__DOWNSTREAM_COMPONENT_PRESENCE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_STATUS2__DRS_MESSAGE_RECEIVED__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_STATUS2__CUR_DEEMPHASIS_LEVEL_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_STATUS2__EQUALIZATION_COMPLETE_8GT_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_STATUS2__EQUALIZATION_PHASE1_SUCCESS_8GT_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_STATUS2__EQUALIZATION_PHASE2_SUCCESS_8GT_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_STATUS2__EQUALIZATION_PHASE3_SUCCESS_8GT_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_STATUS2__LINK_EQUALIZATION_REQUEST_8GT_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_STATUS2__RTM1_PRESENCE_DET_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_STATUS2__RTM2_PRESENCE_DET_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_STATUS2__CROSSLINK_RESOLUTION_MASK 0x0300L
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_STATUS2__DOWNSTREAM_COMPONENT_PRESENCE_MASK 0x7000L
+#define BIF_CFG_DEV0_EPF0_VF6_LINK_STATUS2__DRS_MESSAGE_RECEIVED_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF6_MSI_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF6_MSI_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_MSI_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF6_MSI_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_EPF0_VF6_MSI_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_VF6_MSI_MSG_CNTL
+#define BIF_CFG_DEV0_EPF0_VF6_MSI_MSG_CNTL__MSI_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_MSI_MSG_CNTL__MSI_MULTI_CAP__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF6_MSI_MSG_CNTL__MSI_MULTI_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF6_MSI_MSG_CNTL__MSI_64BIT__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF6_MSI_MSG_CNTL__MSI_PERVECTOR_MASKING_CAP__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF6_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_CAP__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF6_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF6_MSI_MSG_CNTL__MSI_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF6_MSI_MSG_CNTL__MSI_MULTI_CAP_MASK 0x000EL
+#define BIF_CFG_DEV0_EPF0_VF6_MSI_MSG_CNTL__MSI_MULTI_EN_MASK 0x0070L
+#define BIF_CFG_DEV0_EPF0_VF6_MSI_MSG_CNTL__MSI_64BIT_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF6_MSI_MSG_CNTL__MSI_PERVECTOR_MASKING_CAP_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF6_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_CAP_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_VF6_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_EN_MASK 0x0400L
+//BIF_CFG_DEV0_EPF0_VF6_MSI_MSG_ADDR_LO
+#define BIF_CFG_DEV0_EPF0_VF6_MSI_MSG_ADDR_LO__MSI_MSG_ADDR_LO__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF6_MSI_MSG_ADDR_LO__MSI_MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//BIF_CFG_DEV0_EPF0_VF6_MSI_MSG_ADDR_HI
+#define BIF_CFG_DEV0_EPF0_VF6_MSI_MSG_ADDR_HI__MSI_MSG_ADDR_HI__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_MSI_MSG_ADDR_HI__MSI_MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF6_MSI_MSG_DATA
+#define BIF_CFG_DEV0_EPF0_VF6_MSI_MSG_DATA__MSI_DATA__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_MSI_MSG_DATA__MSI_DATA_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF6_MSI_EXT_MSG_DATA
+#define BIF_CFG_DEV0_EPF0_VF6_MSI_EXT_MSG_DATA__MSI_EXT_DATA__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_MSI_EXT_MSG_DATA__MSI_EXT_DATA_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF6_MSI_MASK
+#define BIF_CFG_DEV0_EPF0_VF6_MSI_MASK__MSI_MASK__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_MSI_MASK__MSI_MASK_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF6_MSI_MSG_DATA_64
+#define BIF_CFG_DEV0_EPF0_VF6_MSI_MSG_DATA_64__MSI_DATA_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_MSI_MSG_DATA_64__MSI_DATA_64_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF6_MSI_EXT_MSG_DATA_64
+#define BIF_CFG_DEV0_EPF0_VF6_MSI_EXT_MSG_DATA_64__MSI_EXT_DATA_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_MSI_EXT_MSG_DATA_64__MSI_EXT_DATA_64_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF6_MSI_MASK_64
+#define BIF_CFG_DEV0_EPF0_VF6_MSI_MASK_64__MSI_MASK_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_MSI_MASK_64__MSI_MASK_64_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF6_MSI_PENDING
+#define BIF_CFG_DEV0_EPF0_VF6_MSI_PENDING__MSI_PENDING__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_MSI_PENDING__MSI_PENDING_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF6_MSI_PENDING_64
+#define BIF_CFG_DEV0_EPF0_VF6_MSI_PENDING_64__MSI_PENDING_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_MSI_PENDING_64__MSI_PENDING_64_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF6_MSIX_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF6_MSIX_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_MSIX_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF6_MSIX_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_EPF0_VF6_MSIX_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_VF6_MSIX_MSG_CNTL
+#define BIF_CFG_DEV0_EPF0_VF6_MSIX_MSG_CNTL__MSIX_TABLE_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_MSIX_MSG_CNTL__MSIX_FUNC_MASK__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF6_MSIX_MSG_CNTL__MSIX_EN__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF6_MSIX_MSG_CNTL__MSIX_TABLE_SIZE_MASK 0x07FFL
+#define BIF_CFG_DEV0_EPF0_VF6_MSIX_MSG_CNTL__MSIX_FUNC_MASK_MASK 0x4000L
+#define BIF_CFG_DEV0_EPF0_VF6_MSIX_MSG_CNTL__MSIX_EN_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF6_MSIX_TABLE
+#define BIF_CFG_DEV0_EPF0_VF6_MSIX_TABLE__MSIX_TABLE_BIR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_MSIX_TABLE__MSIX_TABLE_OFFSET__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF6_MSIX_TABLE__MSIX_TABLE_BIR_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF0_VF6_MSIX_TABLE__MSIX_TABLE_OFFSET_MASK 0xFFFFFFF8L
+//BIF_CFG_DEV0_EPF0_VF6_MSIX_PBA
+#define BIF_CFG_DEV0_EPF0_VF6_MSIX_PBA__MSIX_PBA_BIR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_MSIX_PBA__MSIX_PBA_OFFSET__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF6_MSIX_PBA__MSIX_PBA_BIR_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF0_VF6_MSIX_PBA__MSIX_PBA_OFFSET_MASK 0xFFFFFFF8L
+//BIF_CFG_DEV0_EPF0_VF6_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_VF6_PCIE_VENDOR_SPECIFIC_HDR
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_VENDOR_SPECIFIC_HDR__VSEC_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_VENDOR_SPECIFIC_HDR__VSEC_REV__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_VENDOR_SPECIFIC_HDR__VSEC_LENGTH__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_VENDOR_SPECIFIC_HDR__VSEC_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_VENDOR_SPECIFIC_HDR__VSEC_REV_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_VENDOR_SPECIFIC_HDR__VSEC_LENGTH_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_VF6_PCIE_VENDOR_SPECIFIC1
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_VENDOR_SPECIFIC1__SCRATCH__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_VENDOR_SPECIFIC1__SCRATCH_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF6_PCIE_VENDOR_SPECIFIC2
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_VENDOR_SPECIFIC2__SCRATCH__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_VENDOR_SPECIFIC2__SCRATCH_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF6_PCIE_ADV_ERR_RPT_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_STATUS
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_STATUS__DLP_ERR_STATUS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_STATUS__SURPDN_ERR_STATUS__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_STATUS__PSN_ERR_STATUS__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_STATUS__FC_ERR_STATUS__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_STATUS__CPL_TIMEOUT_STATUS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_STATUS__CPL_ABORT_ERR_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_STATUS__UNEXP_CPL_STATUS__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_STATUS__RCV_OVFL_STATUS__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_STATUS__MAL_TLP_STATUS__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_STATUS__ECRC_ERR_STATUS__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_STATUS__UNSUPP_REQ_ERR_STATUS__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_STATUS__ACS_VIOLATION_STATUS__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_STATUS__UNCORR_INT_ERR_STATUS__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_STATUS__MC_BLOCKED_TLP_STATUS__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_STATUS__ATOMICOP_EGRESS_BLOCKED_STATUS__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_STATUS__TLP_PREFIX_BLOCKED_ERR_STATUS__SHIFT 0x19
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_STATUS__POISONED_TLP_EGRESS_BLOCKED_STATUS__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_STATUS__DLP_ERR_STATUS_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_STATUS__SURPDN_ERR_STATUS_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_STATUS__PSN_ERR_STATUS_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_STATUS__FC_ERR_STATUS_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_STATUS__CPL_TIMEOUT_STATUS_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_STATUS__CPL_ABORT_ERR_STATUS_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_STATUS__UNEXP_CPL_STATUS_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_STATUS__RCV_OVFL_STATUS_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_STATUS__MAL_TLP_STATUS_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_STATUS__ECRC_ERR_STATUS_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_STATUS__UNSUPP_REQ_ERR_STATUS_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_STATUS__ACS_VIOLATION_STATUS_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_STATUS__UNCORR_INT_ERR_STATUS_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_STATUS__MC_BLOCKED_TLP_STATUS_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_STATUS__ATOMICOP_EGRESS_BLOCKED_STATUS_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_STATUS__TLP_PREFIX_BLOCKED_ERR_STATUS_MASK 0x02000000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_STATUS__POISONED_TLP_EGRESS_BLOCKED_STATUS_MASK 0x04000000L
+//BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_MASK
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_MASK__DLP_ERR_MASK__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_MASK__SURPDN_ERR_MASK__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_MASK__PSN_ERR_MASK__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_MASK__FC_ERR_MASK__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_MASK__CPL_TIMEOUT_MASK__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_MASK__CPL_ABORT_ERR_MASK__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_MASK__UNEXP_CPL_MASK__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_MASK__RCV_OVFL_MASK__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_MASK__MAL_TLP_MASK__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_MASK__ECRC_ERR_MASK__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_MASK__UNSUPP_REQ_ERR_MASK__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_MASK__ACS_VIOLATION_MASK__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_MASK__UNCORR_INT_ERR_MASK__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_MASK__MC_BLOCKED_TLP_MASK__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_MASK__ATOMICOP_EGRESS_BLOCKED_MASK__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_MASK__TLP_PREFIX_BLOCKED_ERR_MASK__SHIFT 0x19
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_MASK__POISONED_TLP_EGRESS_BLOCKED_MASK__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_MASK__DLP_ERR_MASK_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_MASK__SURPDN_ERR_MASK_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_MASK__PSN_ERR_MASK_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_MASK__FC_ERR_MASK_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_MASK__CPL_TIMEOUT_MASK_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_MASK__CPL_ABORT_ERR_MASK_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_MASK__UNEXP_CPL_MASK_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_MASK__RCV_OVFL_MASK_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_MASK__MAL_TLP_MASK_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_MASK__ECRC_ERR_MASK_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_MASK__UNSUPP_REQ_ERR_MASK_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_MASK__ACS_VIOLATION_MASK_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_MASK__UNCORR_INT_ERR_MASK_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_MASK__MC_BLOCKED_TLP_MASK_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_MASK__ATOMICOP_EGRESS_BLOCKED_MASK_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_MASK__TLP_PREFIX_BLOCKED_ERR_MASK_MASK 0x02000000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_MASK__POISONED_TLP_EGRESS_BLOCKED_MASK_MASK 0x04000000L
+//BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_SEVERITY
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_SEVERITY__DLP_ERR_SEVERITY__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_SEVERITY__SURPDN_ERR_SEVERITY__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_SEVERITY__PSN_ERR_SEVERITY__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_SEVERITY__FC_ERR_SEVERITY__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_SEVERITY__CPL_TIMEOUT_SEVERITY__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_SEVERITY__CPL_ABORT_ERR_SEVERITY__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_SEVERITY__UNEXP_CPL_SEVERITY__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_SEVERITY__RCV_OVFL_SEVERITY__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_SEVERITY__MAL_TLP_SEVERITY__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_SEVERITY__ECRC_ERR_SEVERITY__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_SEVERITY__UNSUPP_REQ_ERR_SEVERITY__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_SEVERITY__ACS_VIOLATION_SEVERITY__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_SEVERITY__UNCORR_INT_ERR_SEVERITY__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_SEVERITY__MC_BLOCKED_TLP_SEVERITY__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_SEVERITY__ATOMICOP_EGRESS_BLOCKED_SEVERITY__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_SEVERITY__TLP_PREFIX_BLOCKED_ERR_SEVERITY__SHIFT 0x19
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_SEVERITY__POISONED_TLP_EGRESS_BLOCKED_SEVERITY__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_SEVERITY__DLP_ERR_SEVERITY_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_SEVERITY__SURPDN_ERR_SEVERITY_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_SEVERITY__PSN_ERR_SEVERITY_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_SEVERITY__FC_ERR_SEVERITY_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_SEVERITY__CPL_TIMEOUT_SEVERITY_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_SEVERITY__CPL_ABORT_ERR_SEVERITY_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_SEVERITY__UNEXP_CPL_SEVERITY_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_SEVERITY__RCV_OVFL_SEVERITY_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_SEVERITY__MAL_TLP_SEVERITY_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_SEVERITY__ECRC_ERR_SEVERITY_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_SEVERITY__UNSUPP_REQ_ERR_SEVERITY_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_SEVERITY__ACS_VIOLATION_SEVERITY_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_SEVERITY__UNCORR_INT_ERR_SEVERITY_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_SEVERITY__MC_BLOCKED_TLP_SEVERITY_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_SEVERITY__ATOMICOP_EGRESS_BLOCKED_SEVERITY_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_SEVERITY__TLP_PREFIX_BLOCKED_ERR_SEVERITY_MASK 0x02000000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_UNCORR_ERR_SEVERITY__POISONED_TLP_EGRESS_BLOCKED_SEVERITY_MASK 0x04000000L
+//BIF_CFG_DEV0_EPF0_VF6_PCIE_CORR_ERR_STATUS
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_CORR_ERR_STATUS__RCV_ERR_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_CORR_ERR_STATUS__BAD_TLP_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_CORR_ERR_STATUS__BAD_DLLP_STATUS__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_CORR_ERR_STATUS__REPLAY_NUM_ROLLOVER_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_CORR_ERR_STATUS__REPLAY_TIMER_TIMEOUT_STATUS__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_CORR_ERR_STATUS__ADVISORY_NONFATAL_ERR_STATUS__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_CORR_ERR_STATUS__CORR_INT_ERR_STATUS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_CORR_ERR_STATUS__HDR_LOG_OVFL_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_CORR_ERR_STATUS__RCV_ERR_STATUS_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_CORR_ERR_STATUS__BAD_TLP_STATUS_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_CORR_ERR_STATUS__BAD_DLLP_STATUS_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_CORR_ERR_STATUS__REPLAY_NUM_ROLLOVER_STATUS_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_CORR_ERR_STATUS__REPLAY_TIMER_TIMEOUT_STATUS_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_CORR_ERR_STATUS__ADVISORY_NONFATAL_ERR_STATUS_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_CORR_ERR_STATUS__CORR_INT_ERR_STATUS_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_CORR_ERR_STATUS__HDR_LOG_OVFL_STATUS_MASK 0x00008000L
+//BIF_CFG_DEV0_EPF0_VF6_PCIE_CORR_ERR_MASK
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_CORR_ERR_MASK__RCV_ERR_MASK__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_CORR_ERR_MASK__BAD_TLP_MASK__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_CORR_ERR_MASK__BAD_DLLP_MASK__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_CORR_ERR_MASK__REPLAY_NUM_ROLLOVER_MASK__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_CORR_ERR_MASK__REPLAY_TIMER_TIMEOUT_MASK__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_CORR_ERR_MASK__ADVISORY_NONFATAL_ERR_MASK__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_CORR_ERR_MASK__CORR_INT_ERR_MASK__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_CORR_ERR_MASK__HDR_LOG_OVFL_MASK__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_CORR_ERR_MASK__RCV_ERR_MASK_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_CORR_ERR_MASK__BAD_TLP_MASK_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_CORR_ERR_MASK__BAD_DLLP_MASK_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_CORR_ERR_MASK__REPLAY_NUM_ROLLOVER_MASK_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_CORR_ERR_MASK__REPLAY_TIMER_TIMEOUT_MASK_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_CORR_ERR_MASK__ADVISORY_NONFATAL_ERR_MASK_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_CORR_ERR_MASK__CORR_INT_ERR_MASK_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_CORR_ERR_MASK__HDR_LOG_OVFL_MASK_MASK 0x00008000L
+//BIF_CFG_DEV0_EPF0_VF6_PCIE_ADV_ERR_CAP_CNTL
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ADV_ERR_CAP_CNTL__FIRST_ERR_PTR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_CAP__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_EN__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_CAP__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_CAP__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ADV_ERR_CAP_CNTL__TLP_PREFIX_LOG_PRESENT__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ADV_ERR_CAP_CNTL__COMPLETION_TIMEOUT_LOG_CAPABLE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ADV_ERR_CAP_CNTL__FIRST_ERR_PTR_MASK 0x0000001FL
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_CAP_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_EN_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_CAP_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_EN_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_CAP_MASK 0x00000200L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_EN_MASK 0x00000400L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ADV_ERR_CAP_CNTL__TLP_PREFIX_LOG_PRESENT_MASK 0x00000800L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ADV_ERR_CAP_CNTL__COMPLETION_TIMEOUT_LOG_CAPABLE_MASK 0x00001000L
+//BIF_CFG_DEV0_EPF0_VF6_PCIE_HDR_LOG0
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_HDR_LOG0__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_HDR_LOG0__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF6_PCIE_HDR_LOG1
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_HDR_LOG1__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_HDR_LOG1__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF6_PCIE_HDR_LOG2
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_HDR_LOG2__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_HDR_LOG2__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF6_PCIE_HDR_LOG3
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_HDR_LOG3__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_HDR_LOG3__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF6_PCIE_TLP_PREFIX_LOG0
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_TLP_PREFIX_LOG0__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_TLP_PREFIX_LOG0__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF6_PCIE_TLP_PREFIX_LOG1
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_TLP_PREFIX_LOG1__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_TLP_PREFIX_LOG1__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF6_PCIE_TLP_PREFIX_LOG2
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_TLP_PREFIX_LOG2__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_TLP_PREFIX_LOG2__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF6_PCIE_TLP_PREFIX_LOG3
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_TLP_PREFIX_LOG3__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_TLP_PREFIX_LOG3__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF6_PCIE_ATS_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ATS_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ATS_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ATS_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ATS_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ATS_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ATS_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_VF6_PCIE_ATS_CAP
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ATS_CAP__INVALIDATE_Q_DEPTH__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ATS_CAP__PAGE_ALIGNED_REQUEST__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ATS_CAP__GLOBAL_INVALIDATE_SUPPORTED__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ATS_CAP__RELAXED_ORDERING_SUPPORTED__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ATS_CAP__INVALIDATE_Q_DEPTH_MASK 0x001FL
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ATS_CAP__PAGE_ALIGNED_REQUEST_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ATS_CAP__GLOBAL_INVALIDATE_SUPPORTED_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ATS_CAP__RELAXED_ORDERING_SUPPORTED_MASK 0x0080L
+//BIF_CFG_DEV0_EPF0_VF6_PCIE_ATS_CNTL
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ATS_CNTL__STU__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ATS_CNTL__ATC_ENABLE__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ATS_CNTL__STU_MASK 0x001FL
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ATS_CNTL__ATC_ENABLE_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF6_PCIE_ARI_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ARI_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ARI_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ARI_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ARI_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ARI_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ARI_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_VF6_PCIE_ARI_CAP
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ARI_CAP__ARI_MFVC_FUNC_GROUPS_CAP__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ARI_CAP__ARI_ACS_FUNC_GROUPS_CAP__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ARI_CAP__ARI_NEXT_FUNC_NUM__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ARI_CAP__ARI_MFVC_FUNC_GROUPS_CAP_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ARI_CAP__ARI_ACS_FUNC_GROUPS_CAP_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ARI_CAP__ARI_NEXT_FUNC_NUM_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_VF6_PCIE_ARI_CNTL
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ARI_CNTL__ARI_MFVC_FUNC_GROUPS_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ARI_CNTL__ARI_ACS_FUNC_GROUPS_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ARI_CNTL__ARI_FUNCTION_GROUP__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ARI_CNTL__ARI_MFVC_FUNC_GROUPS_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ARI_CNTL__ARI_ACS_FUNC_GROUPS_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF6_PCIE_ARI_CNTL__ARI_FUNCTION_GROUP_MASK 0x0070L
+
+
+// addressBlock: aid_nbio_nbif0_bif_cfg_dev0_epf0_vf7_bifcfgdecp
+//BIF_CFG_DEV0_EPF0_VF7_VENDOR_ID
+#define BIF_CFG_DEV0_EPF0_VF7_VENDOR_ID__VENDOR_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_VENDOR_ID__VENDOR_ID_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF7_DEVICE_ID
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_ID__DEVICE_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_ID__DEVICE_ID_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF7_COMMAND
+#define BIF_CFG_DEV0_EPF0_VF7_COMMAND__IO_ACCESS_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_COMMAND__MEM_ACCESS_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF7_COMMAND__BUS_MASTER_EN__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF7_COMMAND__SPECIAL_CYCLE_EN__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF7_COMMAND__MEM_WRITE_INVALIDATE_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF7_COMMAND__PAL_SNOOP_EN__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF7_COMMAND__PARITY_ERROR_RESPONSE__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF7_COMMAND__AD_STEPPING__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF7_COMMAND__SERR_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF7_COMMAND__FAST_B2B_EN__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF7_COMMAND__INT_DIS__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF7_COMMAND__IO_ACCESS_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF7_COMMAND__MEM_ACCESS_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF7_COMMAND__BUS_MASTER_EN_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_VF7_COMMAND__SPECIAL_CYCLE_EN_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF7_COMMAND__MEM_WRITE_INVALIDATE_EN_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF7_COMMAND__PAL_SNOOP_EN_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF7_COMMAND__PARITY_ERROR_RESPONSE_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF7_COMMAND__AD_STEPPING_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF7_COMMAND__SERR_EN_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF7_COMMAND__FAST_B2B_EN_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_VF7_COMMAND__INT_DIS_MASK 0x0400L
+//BIF_CFG_DEV0_EPF0_VF7_STATUS
+#define BIF_CFG_DEV0_EPF0_VF7_STATUS__IMMEDIATE_READINESS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_STATUS__INT_STATUS__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF7_STATUS__CAP_LIST__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF7_STATUS__PCI_66_CAP__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF7_STATUS__FAST_BACK_CAPABLE__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF7_STATUS__MASTER_DATA_PARITY_ERROR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF7_STATUS__DEVSEL_TIMING__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF7_STATUS__SIGNAL_TARGET_ABORT__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF7_STATUS__RECEIVED_TARGET_ABORT__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF7_STATUS__RECEIVED_MASTER_ABORT__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF7_STATUS__SIGNALED_SYSTEM_ERROR__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF7_STATUS__PARITY_ERROR_DETECTED__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF7_STATUS__IMMEDIATE_READINESS_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF7_STATUS__INT_STATUS_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF7_STATUS__CAP_LIST_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF7_STATUS__PCI_66_CAP_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF7_STATUS__FAST_BACK_CAPABLE_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF7_STATUS__MASTER_DATA_PARITY_ERROR_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF7_STATUS__DEVSEL_TIMING_MASK 0x0600L
+#define BIF_CFG_DEV0_EPF0_VF7_STATUS__SIGNAL_TARGET_ABORT_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF7_STATUS__RECEIVED_TARGET_ABORT_MASK 0x1000L
+#define BIF_CFG_DEV0_EPF0_VF7_STATUS__RECEIVED_MASTER_ABORT_MASK 0x2000L
+#define BIF_CFG_DEV0_EPF0_VF7_STATUS__SIGNALED_SYSTEM_ERROR_MASK 0x4000L
+#define BIF_CFG_DEV0_EPF0_VF7_STATUS__PARITY_ERROR_DETECTED_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF7_REVISION_ID
+#define BIF_CFG_DEV0_EPF0_VF7_REVISION_ID__MINOR_REV_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_REVISION_ID__MAJOR_REV_ID__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF7_REVISION_ID__MINOR_REV_ID_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_VF7_REVISION_ID__MAJOR_REV_ID_MASK 0xF0L
+//BIF_CFG_DEV0_EPF0_VF7_PROG_INTERFACE
+#define BIF_CFG_DEV0_EPF0_VF7_PROG_INTERFACE__PROG_INTERFACE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_PROG_INTERFACE__PROG_INTERFACE_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF7_SUB_CLASS
+#define BIF_CFG_DEV0_EPF0_VF7_SUB_CLASS__SUB_CLASS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_SUB_CLASS__SUB_CLASS_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF7_BASE_CLASS
+#define BIF_CFG_DEV0_EPF0_VF7_BASE_CLASS__BASE_CLASS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_BASE_CLASS__BASE_CLASS_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF7_CACHE_LINE
+#define BIF_CFG_DEV0_EPF0_VF7_CACHE_LINE__CACHE_LINE_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_CACHE_LINE__CACHE_LINE_SIZE_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF7_LATENCY
+#define BIF_CFG_DEV0_EPF0_VF7_LATENCY__LATENCY_TIMER__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_LATENCY__LATENCY_TIMER_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF7_HEADER
+#define BIF_CFG_DEV0_EPF0_VF7_HEADER__HEADER_TYPE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_HEADER__DEVICE_TYPE__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF7_HEADER__HEADER_TYPE_MASK 0x7FL
+#define BIF_CFG_DEV0_EPF0_VF7_HEADER__DEVICE_TYPE_MASK 0x80L
+//BIF_CFG_DEV0_EPF0_VF7_BIST
+#define BIF_CFG_DEV0_EPF0_VF7_BIST__BIST_COMP__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_BIST__BIST_STRT__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF7_BIST__BIST_CAP__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF7_BIST__BIST_COMP_MASK 0x0FL
+#define BIF_CFG_DEV0_EPF0_VF7_BIST__BIST_STRT_MASK 0x40L
+#define BIF_CFG_DEV0_EPF0_VF7_BIST__BIST_CAP_MASK 0x80L
+//BIF_CFG_DEV0_EPF0_VF7_BASE_ADDR_1
+#define BIF_CFG_DEV0_EPF0_VF7_BASE_ADDR_1__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_BASE_ADDR_1__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF7_BASE_ADDR_2
+#define BIF_CFG_DEV0_EPF0_VF7_BASE_ADDR_2__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_BASE_ADDR_2__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF7_BASE_ADDR_3
+#define BIF_CFG_DEV0_EPF0_VF7_BASE_ADDR_3__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_BASE_ADDR_3__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF7_BASE_ADDR_4
+#define BIF_CFG_DEV0_EPF0_VF7_BASE_ADDR_4__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_BASE_ADDR_4__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF7_BASE_ADDR_5
+#define BIF_CFG_DEV0_EPF0_VF7_BASE_ADDR_5__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_BASE_ADDR_5__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF7_BASE_ADDR_6
+#define BIF_CFG_DEV0_EPF0_VF7_BASE_ADDR_6__BASE_ADDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_BASE_ADDR_6__BASE_ADDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF7_CARDBUS_CIS_PTR
+#define BIF_CFG_DEV0_EPF0_VF7_CARDBUS_CIS_PTR__CARDBUS_CIS_PTR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_CARDBUS_CIS_PTR__CARDBUS_CIS_PTR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF7_ADAPTER_ID
+#define BIF_CFG_DEV0_EPF0_VF7_ADAPTER_ID__SUBSYSTEM_VENDOR_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_ADAPTER_ID__SUBSYSTEM_ID__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF7_ADAPTER_ID__SUBSYSTEM_VENDOR_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF7_ADAPTER_ID__SUBSYSTEM_ID_MASK 0xFFFF0000L
+//BIF_CFG_DEV0_EPF0_VF7_ROM_BASE_ADDR
+#define BIF_CFG_DEV0_EPF0_VF7_ROM_BASE_ADDR__ROM_ENABLE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_ROM_BASE_ADDR__ROM_VALIDATION_STATUS__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF7_ROM_BASE_ADDR__ROM_VALIDATION_DETAILS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF7_ROM_BASE_ADDR__BASE_ADDR__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF7_ROM_BASE_ADDR__ROM_ENABLE_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_VF7_ROM_BASE_ADDR__ROM_VALIDATION_STATUS_MASK 0x0000000EL
+#define BIF_CFG_DEV0_EPF0_VF7_ROM_BASE_ADDR__ROM_VALIDATION_DETAILS_MASK 0x000000F0L
+#define BIF_CFG_DEV0_EPF0_VF7_ROM_BASE_ADDR__BASE_ADDR_MASK 0xFFFFF800L
+//BIF_CFG_DEV0_EPF0_VF7_CAP_PTR
+#define BIF_CFG_DEV0_EPF0_VF7_CAP_PTR__CAP_PTR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_CAP_PTR__CAP_PTR_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF7_INTERRUPT_LINE
+#define BIF_CFG_DEV0_EPF0_VF7_INTERRUPT_LINE__INTERRUPT_LINE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_INTERRUPT_LINE__INTERRUPT_LINE_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF7_INTERRUPT_PIN
+#define BIF_CFG_DEV0_EPF0_VF7_INTERRUPT_PIN__INTERRUPT_PIN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_INTERRUPT_PIN__INTERRUPT_PIN_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF7_MIN_GRANT
+#define BIF_CFG_DEV0_EPF0_VF7_MIN_GRANT__MIN_GNT__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_MIN_GRANT__MIN_GNT_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF7_MAX_LATENCY
+#define BIF_CFG_DEV0_EPF0_VF7_MAX_LATENCY__MAX_LAT__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_MAX_LATENCY__MAX_LAT_MASK 0xFFL
+//BIF_CFG_DEV0_EPF0_VF7_PCIE_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_VF7_PCIE_CAP
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_CAP__VERSION__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_CAP__DEVICE_TYPE__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_CAP__SLOT_IMPLEMENTED__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_CAP__INT_MESSAGE_NUM__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_CAP__VERSION_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_CAP__DEVICE_TYPE_MASK 0x00F0L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_CAP__SLOT_IMPLEMENTED_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_CAP__INT_MESSAGE_NUM_MASK 0x3E00L
+//BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP__MAX_PAYLOAD_SUPPORT__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP__PHANTOM_FUNC__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP__EXTENDED_TAG__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP__L0S_ACCEPTABLE_LATENCY__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP__L1_ACCEPTABLE_LATENCY__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP__ROLE_BASED_ERR_REPORTING__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP__ERR_COR_SUBCLASS_CAPABLE__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP__CAPTURED_SLOT_POWER_LIMIT__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP__CAPTURED_SLOT_POWER_SCALE__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP__FLR_CAPABLE__SHIFT 0x1c
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP__MAX_PAYLOAD_SUPPORT_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP__PHANTOM_FUNC_MASK 0x00000018L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP__EXTENDED_TAG_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP__L0S_ACCEPTABLE_LATENCY_MASK 0x000001C0L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP__L1_ACCEPTABLE_LATENCY_MASK 0x00000E00L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP__ROLE_BASED_ERR_REPORTING_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP__ERR_COR_SUBCLASS_CAPABLE_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP__CAPTURED_SLOT_POWER_LIMIT_MASK 0x03FC0000L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP__CAPTURED_SLOT_POWER_SCALE_MASK 0x0C000000L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP__FLR_CAPABLE_MASK 0x10000000L
+//BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL__CORR_ERR_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL__NON_FATAL_ERR_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL__FATAL_ERR_EN__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL__USR_REPORT_EN__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL__RELAXED_ORD_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL__MAX_PAYLOAD_SIZE__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL__EXTENDED_TAG_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL__PHANTOM_FUNC_EN__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL__AUX_POWER_PM_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL__NO_SNOOP_EN__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL__MAX_READ_REQUEST_SIZE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL__INITIATE_FLR__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL__CORR_ERR_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL__NON_FATAL_ERR_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL__FATAL_ERR_EN_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL__USR_REPORT_EN_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL__RELAXED_ORD_EN_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL__MAX_PAYLOAD_SIZE_MASK 0x00E0L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL__EXTENDED_TAG_EN_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL__PHANTOM_FUNC_EN_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL__AUX_POWER_PM_EN_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL__NO_SNOOP_EN_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL__MAX_READ_REQUEST_SIZE_MASK 0x7000L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL__INITIATE_FLR_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF7_DEVICE_STATUS
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_STATUS__CORR_ERR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_STATUS__NON_FATAL_ERR__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_STATUS__FATAL_ERR__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_STATUS__USR_DETECTED__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_STATUS__AUX_PWR__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_STATUS__TRANSACTIONS_PEND__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_STATUS__EMER_POWER_REDUCTION_DETECTED__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_STATUS__CORR_ERR_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_STATUS__NON_FATAL_ERR_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_STATUS__FATAL_ERR_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_STATUS__USR_DETECTED_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_STATUS__AUX_PWR_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_STATUS__TRANSACTIONS_PEND_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_STATUS__EMER_POWER_REDUCTION_DETECTED_MASK 0x0040L
+//BIF_CFG_DEV0_EPF0_VF7_LINK_CAP
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CAP__LINK_SPEED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CAP__LINK_WIDTH__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CAP__PM_SUPPORT__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CAP__L0S_EXIT_LATENCY__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CAP__L1_EXIT_LATENCY__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CAP__CLOCK_POWER_MANAGEMENT__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CAP__SURPRISE_DOWN_ERR_REPORTING__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CAP__DL_ACTIVE_REPORTING_CAPABLE__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CAP__LINK_BW_NOTIFICATION_CAP__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CAP__ASPM_OPTIONALITY_COMPLIANCE__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CAP__PORT_NUMBER__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CAP__LINK_SPEED_MASK 0x0000000FL
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CAP__LINK_WIDTH_MASK 0x000003F0L
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CAP__PM_SUPPORT_MASK 0x00000C00L
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CAP__L0S_EXIT_LATENCY_MASK 0x00007000L
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CAP__L1_EXIT_LATENCY_MASK 0x00038000L
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CAP__CLOCK_POWER_MANAGEMENT_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CAP__SURPRISE_DOWN_ERR_REPORTING_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CAP__DL_ACTIVE_REPORTING_CAPABLE_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CAP__LINK_BW_NOTIFICATION_CAP_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CAP__ASPM_OPTIONALITY_COMPLIANCE_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CAP__PORT_NUMBER_MASK 0xFF000000L
+//BIF_CFG_DEV0_EPF0_VF7_LINK_CNTL
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CNTL__PM_CONTROL__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CNTL__PTM_PROP_DELAY_ADAPT_INTER_B__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CNTL__READ_CPL_BOUNDARY__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CNTL__LINK_DIS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CNTL__RETRAIN_LINK__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CNTL__COMMON_CLOCK_CFG__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CNTL__EXTENDED_SYNC__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CNTL__CLOCK_POWER_MANAGEMENT_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CNTL__HW_AUTONOMOUS_WIDTH_DISABLE__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CNTL__LINK_BW_MANAGEMENT_INT_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CNTL__LINK_AUTONOMOUS_BW_INT_EN__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CNTL__DRS_SIGNALING_CONTROL__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CNTL__PM_CONTROL_MASK 0x0003L
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CNTL__PTM_PROP_DELAY_ADAPT_INTER_B_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CNTL__READ_CPL_BOUNDARY_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CNTL__LINK_DIS_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CNTL__RETRAIN_LINK_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CNTL__COMMON_CLOCK_CFG_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CNTL__EXTENDED_SYNC_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CNTL__CLOCK_POWER_MANAGEMENT_EN_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CNTL__HW_AUTONOMOUS_WIDTH_DISABLE_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CNTL__LINK_BW_MANAGEMENT_INT_EN_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CNTL__LINK_AUTONOMOUS_BW_INT_EN_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CNTL__DRS_SIGNALING_CONTROL_MASK 0xC000L
+//BIF_CFG_DEV0_EPF0_VF7_LINK_STATUS
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_STATUS__CURRENT_LINK_SPEED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_STATUS__NEGOTIATED_LINK_WIDTH__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_STATUS__LINK_TRAINING__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_STATUS__SLOT_CLOCK_CFG__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_STATUS__DL_ACTIVE__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_STATUS__LINK_BW_MANAGEMENT_STATUS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_STATUS__LINK_AUTONOMOUS_BW_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_STATUS__CURRENT_LINK_SPEED_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_STATUS__NEGOTIATED_LINK_WIDTH_MASK 0x03F0L
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_STATUS__LINK_TRAINING_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_STATUS__SLOT_CLOCK_CFG_MASK 0x1000L
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_STATUS__DL_ACTIVE_MASK 0x2000L
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_STATUS__LINK_BW_MANAGEMENT_STATUS_MASK 0x4000L
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_STATUS__LINK_AUTONOMOUS_BW_STATUS_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP2
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP2__CPL_TIMEOUT_RANGE_SUPPORTED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP2__CPL_TIMEOUT_DIS_SUPPORTED__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP2__ARI_FORWARDING_SUPPORTED__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP2__ATOMICOP_ROUTING_SUPPORTED__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP2__ATOMICOP_32CMPLT_SUPPORTED__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP2__ATOMICOP_64CMPLT_SUPPORTED__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP2__CAS128_CMPLT_SUPPORTED__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP2__NO_RO_ENABLED_P2P_PASSING__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP2__LTR_SUPPORTED__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP2__TPH_CPLR_SUPPORTED__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP2__LN_SYSTEM_CLS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP2__TEN_BIT_TAG_COMPLETER_SUPPORTED__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP2__TEN_BIT_TAG_REQUESTER_SUPPORTED__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP2__OBFF_SUPPORTED__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP2__EXTENDED_FMT_FIELD_SUPPORTED__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP2__END_END_TLP_PREFIX_SUPPORTED__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP2__MAX_END_END_TLP_PREFIXES__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP2__EMER_POWER_REDUCTION_SUPPORTED__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP2__EMER_POWER_REDUCTION_INIT_REQ__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP2__FRS_SUPPORTED__SHIFT 0x1f
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP2__CPL_TIMEOUT_RANGE_SUPPORTED_MASK 0x0000000FL
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP2__CPL_TIMEOUT_DIS_SUPPORTED_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP2__ARI_FORWARDING_SUPPORTED_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP2__ATOMICOP_ROUTING_SUPPORTED_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP2__ATOMICOP_32CMPLT_SUPPORTED_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP2__ATOMICOP_64CMPLT_SUPPORTED_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP2__CAS128_CMPLT_SUPPORTED_MASK 0x00000200L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP2__NO_RO_ENABLED_P2P_PASSING_MASK 0x00000400L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP2__LTR_SUPPORTED_MASK 0x00000800L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP2__TPH_CPLR_SUPPORTED_MASK 0x00003000L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP2__LN_SYSTEM_CLS_MASK 0x0000C000L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP2__TEN_BIT_TAG_COMPLETER_SUPPORTED_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP2__TEN_BIT_TAG_REQUESTER_SUPPORTED_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP2__OBFF_SUPPORTED_MASK 0x000C0000L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP2__EXTENDED_FMT_FIELD_SUPPORTED_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP2__END_END_TLP_PREFIX_SUPPORTED_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP2__MAX_END_END_TLP_PREFIXES_MASK 0x00C00000L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP2__EMER_POWER_REDUCTION_SUPPORTED_MASK 0x03000000L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP2__EMER_POWER_REDUCTION_INIT_REQ_MASK 0x04000000L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CAP2__FRS_SUPPORTED_MASK 0x80000000L
+//BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL2
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL2__CPL_TIMEOUT_VALUE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL2__CPL_TIMEOUT_DIS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL2__ARI_FORWARDING_EN__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL2__ATOMICOP_REQUEST_EN__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL2__ATOMICOP_EGRESS_BLOCKING__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL2__IDO_REQUEST_ENABLE__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL2__IDO_COMPLETION_ENABLE__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL2__LTR_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL2__EMER_POWER_REDUCTION_REQUEST__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL2__TEN_BIT_TAG_REQUESTER_ENABLE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL2__OBFF_EN__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL2__END_END_TLP_PREFIX_BLOCKING__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL2__CPL_TIMEOUT_VALUE_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL2__CPL_TIMEOUT_DIS_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL2__ARI_FORWARDING_EN_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL2__ATOMICOP_REQUEST_EN_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL2__ATOMICOP_EGRESS_BLOCKING_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL2__IDO_REQUEST_ENABLE_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL2__IDO_COMPLETION_ENABLE_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL2__LTR_EN_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL2__EMER_POWER_REDUCTION_REQUEST_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL2__TEN_BIT_TAG_REQUESTER_ENABLE_MASK 0x1000L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL2__OBFF_EN_MASK 0x6000L
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_CNTL2__END_END_TLP_PREFIX_BLOCKING_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF7_DEVICE_STATUS2
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_STATUS2__RESERVED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_DEVICE_STATUS2__RESERVED_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF7_LINK_CAP2
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CAP2__SUPPORTED_LINK_SPEED__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CAP2__CROSSLINK_SUPPORTED__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CAP2__LOWER_SKP_OS_GEN_SUPPORT__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CAP2__LOWER_SKP_OS_RCV_SUPPORT__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CAP2__RTM1_PRESENCE_DET_SUPPORT__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CAP2__RTM2_PRESENCE_DET_SUPPORT__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CAP2__DRS_SUPPORTED__SHIFT 0x1f
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CAP2__SUPPORTED_LINK_SPEED_MASK 0x000000FEL
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CAP2__CROSSLINK_SUPPORTED_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CAP2__LOWER_SKP_OS_GEN_SUPPORT_MASK 0x0000FE00L
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CAP2__LOWER_SKP_OS_RCV_SUPPORT_MASK 0x007F0000L
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CAP2__RTM1_PRESENCE_DET_SUPPORT_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CAP2__RTM2_PRESENCE_DET_SUPPORT_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CAP2__DRS_SUPPORTED_MASK 0x80000000L
+//BIF_CFG_DEV0_EPF0_VF7_LINK_CNTL2
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CNTL2__TARGET_LINK_SPEED__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CNTL2__ENTER_COMPLIANCE__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CNTL2__HW_AUTONOMOUS_SPEED_DISABLE__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CNTL2__SELECTABLE_DEEMPHASIS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CNTL2__XMIT_MARGIN__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CNTL2__ENTER_MOD_COMPLIANCE__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CNTL2__COMPLIANCE_SOS__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CNTL2__COMPLIANCE_DEEMPHASIS__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CNTL2__TARGET_LINK_SPEED_MASK 0x000FL
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CNTL2__ENTER_COMPLIANCE_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CNTL2__HW_AUTONOMOUS_SPEED_DISABLE_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CNTL2__SELECTABLE_DEEMPHASIS_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CNTL2__XMIT_MARGIN_MASK 0x0380L
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CNTL2__ENTER_MOD_COMPLIANCE_MASK 0x0400L
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CNTL2__COMPLIANCE_SOS_MASK 0x0800L
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_CNTL2__COMPLIANCE_DEEMPHASIS_MASK 0xF000L
+//BIF_CFG_DEV0_EPF0_VF7_LINK_STATUS2
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_STATUS2__CUR_DEEMPHASIS_LEVEL__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_STATUS2__EQUALIZATION_COMPLETE_8GT__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_STATUS2__EQUALIZATION_PHASE1_SUCCESS_8GT__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_STATUS2__EQUALIZATION_PHASE2_SUCCESS_8GT__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_STATUS2__EQUALIZATION_PHASE3_SUCCESS_8GT__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_STATUS2__LINK_EQUALIZATION_REQUEST_8GT__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_STATUS2__RTM1_PRESENCE_DET__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_STATUS2__RTM2_PRESENCE_DET__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_STATUS2__CROSSLINK_RESOLUTION__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_STATUS2__DOWNSTREAM_COMPONENT_PRESENCE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_STATUS2__DRS_MESSAGE_RECEIVED__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_STATUS2__CUR_DEEMPHASIS_LEVEL_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_STATUS2__EQUALIZATION_COMPLETE_8GT_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_STATUS2__EQUALIZATION_PHASE1_SUCCESS_8GT_MASK 0x0004L
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_STATUS2__EQUALIZATION_PHASE2_SUCCESS_8GT_MASK 0x0008L
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_STATUS2__EQUALIZATION_PHASE3_SUCCESS_8GT_MASK 0x0010L
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_STATUS2__LINK_EQUALIZATION_REQUEST_8GT_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_STATUS2__RTM1_PRESENCE_DET_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_STATUS2__RTM2_PRESENCE_DET_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_STATUS2__CROSSLINK_RESOLUTION_MASK 0x0300L
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_STATUS2__DOWNSTREAM_COMPONENT_PRESENCE_MASK 0x7000L
+#define BIF_CFG_DEV0_EPF0_VF7_LINK_STATUS2__DRS_MESSAGE_RECEIVED_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF7_MSI_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF7_MSI_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_MSI_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF7_MSI_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_EPF0_VF7_MSI_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_VF7_MSI_MSG_CNTL
+#define BIF_CFG_DEV0_EPF0_VF7_MSI_MSG_CNTL__MSI_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_MSI_MSG_CNTL__MSI_MULTI_CAP__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF7_MSI_MSG_CNTL__MSI_MULTI_EN__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF7_MSI_MSG_CNTL__MSI_64BIT__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF7_MSI_MSG_CNTL__MSI_PERVECTOR_MASKING_CAP__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF7_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_CAP__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF7_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF7_MSI_MSG_CNTL__MSI_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF7_MSI_MSG_CNTL__MSI_MULTI_CAP_MASK 0x000EL
+#define BIF_CFG_DEV0_EPF0_VF7_MSI_MSG_CNTL__MSI_MULTI_EN_MASK 0x0070L
+#define BIF_CFG_DEV0_EPF0_VF7_MSI_MSG_CNTL__MSI_64BIT_MASK 0x0080L
+#define BIF_CFG_DEV0_EPF0_VF7_MSI_MSG_CNTL__MSI_PERVECTOR_MASKING_CAP_MASK 0x0100L
+#define BIF_CFG_DEV0_EPF0_VF7_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_CAP_MASK 0x0200L
+#define BIF_CFG_DEV0_EPF0_VF7_MSI_MSG_CNTL__MSI_EXT_MSG_DATA_EN_MASK 0x0400L
+//BIF_CFG_DEV0_EPF0_VF7_MSI_MSG_ADDR_LO
+#define BIF_CFG_DEV0_EPF0_VF7_MSI_MSG_ADDR_LO__MSI_MSG_ADDR_LO__SHIFT 0x2
+#define BIF_CFG_DEV0_EPF0_VF7_MSI_MSG_ADDR_LO__MSI_MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//BIF_CFG_DEV0_EPF0_VF7_MSI_MSG_ADDR_HI
+#define BIF_CFG_DEV0_EPF0_VF7_MSI_MSG_ADDR_HI__MSI_MSG_ADDR_HI__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_MSI_MSG_ADDR_HI__MSI_MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF7_MSI_MSG_DATA
+#define BIF_CFG_DEV0_EPF0_VF7_MSI_MSG_DATA__MSI_DATA__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_MSI_MSG_DATA__MSI_DATA_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF7_MSI_EXT_MSG_DATA
+#define BIF_CFG_DEV0_EPF0_VF7_MSI_EXT_MSG_DATA__MSI_EXT_DATA__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_MSI_EXT_MSG_DATA__MSI_EXT_DATA_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF7_MSI_MASK
+#define BIF_CFG_DEV0_EPF0_VF7_MSI_MASK__MSI_MASK__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_MSI_MASK__MSI_MASK_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF7_MSI_MSG_DATA_64
+#define BIF_CFG_DEV0_EPF0_VF7_MSI_MSG_DATA_64__MSI_DATA_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_MSI_MSG_DATA_64__MSI_DATA_64_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF7_MSI_EXT_MSG_DATA_64
+#define BIF_CFG_DEV0_EPF0_VF7_MSI_EXT_MSG_DATA_64__MSI_EXT_DATA_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_MSI_EXT_MSG_DATA_64__MSI_EXT_DATA_64_MASK 0xFFFFL
+//BIF_CFG_DEV0_EPF0_VF7_MSI_MASK_64
+#define BIF_CFG_DEV0_EPF0_VF7_MSI_MASK_64__MSI_MASK_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_MSI_MASK_64__MSI_MASK_64_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF7_MSI_PENDING
+#define BIF_CFG_DEV0_EPF0_VF7_MSI_PENDING__MSI_PENDING__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_MSI_PENDING__MSI_PENDING_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF7_MSI_PENDING_64
+#define BIF_CFG_DEV0_EPF0_VF7_MSI_PENDING_64__MSI_PENDING_64__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_MSI_PENDING_64__MSI_PENDING_64_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF7_MSIX_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF7_MSIX_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_MSIX_CAP_LIST__NEXT_PTR__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF7_MSIX_CAP_LIST__CAP_ID_MASK 0x00FFL
+#define BIF_CFG_DEV0_EPF0_VF7_MSIX_CAP_LIST__NEXT_PTR_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_VF7_MSIX_MSG_CNTL
+#define BIF_CFG_DEV0_EPF0_VF7_MSIX_MSG_CNTL__MSIX_TABLE_SIZE__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_MSIX_MSG_CNTL__MSIX_FUNC_MASK__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF7_MSIX_MSG_CNTL__MSIX_EN__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF7_MSIX_MSG_CNTL__MSIX_TABLE_SIZE_MASK 0x07FFL
+#define BIF_CFG_DEV0_EPF0_VF7_MSIX_MSG_CNTL__MSIX_FUNC_MASK_MASK 0x4000L
+#define BIF_CFG_DEV0_EPF0_VF7_MSIX_MSG_CNTL__MSIX_EN_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF7_MSIX_TABLE
+#define BIF_CFG_DEV0_EPF0_VF7_MSIX_TABLE__MSIX_TABLE_BIR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_MSIX_TABLE__MSIX_TABLE_OFFSET__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF7_MSIX_TABLE__MSIX_TABLE_BIR_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF0_VF7_MSIX_TABLE__MSIX_TABLE_OFFSET_MASK 0xFFFFFFF8L
+//BIF_CFG_DEV0_EPF0_VF7_MSIX_PBA
+#define BIF_CFG_DEV0_EPF0_VF7_MSIX_PBA__MSIX_PBA_BIR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_MSIX_PBA__MSIX_PBA_OFFSET__SHIFT 0x3
+#define BIF_CFG_DEV0_EPF0_VF7_MSIX_PBA__MSIX_PBA_BIR_MASK 0x00000007L
+#define BIF_CFG_DEV0_EPF0_VF7_MSIX_PBA__MSIX_PBA_OFFSET_MASK 0xFFFFFFF8L
+//BIF_CFG_DEV0_EPF0_VF7_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_VENDOR_SPECIFIC_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_VF7_PCIE_VENDOR_SPECIFIC_HDR
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_VENDOR_SPECIFIC_HDR__VSEC_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_VENDOR_SPECIFIC_HDR__VSEC_REV__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_VENDOR_SPECIFIC_HDR__VSEC_LENGTH__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_VENDOR_SPECIFIC_HDR__VSEC_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_VENDOR_SPECIFIC_HDR__VSEC_REV_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_VENDOR_SPECIFIC_HDR__VSEC_LENGTH_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_VF7_PCIE_VENDOR_SPECIFIC1
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_VENDOR_SPECIFIC1__SCRATCH__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_VENDOR_SPECIFIC1__SCRATCH_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF7_PCIE_VENDOR_SPECIFIC2
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_VENDOR_SPECIFIC2__SCRATCH__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_VENDOR_SPECIFIC2__SCRATCH_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF7_PCIE_ADV_ERR_RPT_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ADV_ERR_RPT_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_STATUS
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_STATUS__DLP_ERR_STATUS__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_STATUS__SURPDN_ERR_STATUS__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_STATUS__PSN_ERR_STATUS__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_STATUS__FC_ERR_STATUS__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_STATUS__CPL_TIMEOUT_STATUS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_STATUS__CPL_ABORT_ERR_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_STATUS__UNEXP_CPL_STATUS__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_STATUS__RCV_OVFL_STATUS__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_STATUS__MAL_TLP_STATUS__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_STATUS__ECRC_ERR_STATUS__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_STATUS__UNSUPP_REQ_ERR_STATUS__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_STATUS__ACS_VIOLATION_STATUS__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_STATUS__UNCORR_INT_ERR_STATUS__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_STATUS__MC_BLOCKED_TLP_STATUS__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_STATUS__ATOMICOP_EGRESS_BLOCKED_STATUS__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_STATUS__TLP_PREFIX_BLOCKED_ERR_STATUS__SHIFT 0x19
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_STATUS__POISONED_TLP_EGRESS_BLOCKED_STATUS__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_STATUS__DLP_ERR_STATUS_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_STATUS__SURPDN_ERR_STATUS_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_STATUS__PSN_ERR_STATUS_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_STATUS__FC_ERR_STATUS_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_STATUS__CPL_TIMEOUT_STATUS_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_STATUS__CPL_ABORT_ERR_STATUS_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_STATUS__UNEXP_CPL_STATUS_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_STATUS__RCV_OVFL_STATUS_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_STATUS__MAL_TLP_STATUS_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_STATUS__ECRC_ERR_STATUS_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_STATUS__UNSUPP_REQ_ERR_STATUS_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_STATUS__ACS_VIOLATION_STATUS_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_STATUS__UNCORR_INT_ERR_STATUS_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_STATUS__MC_BLOCKED_TLP_STATUS_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_STATUS__ATOMICOP_EGRESS_BLOCKED_STATUS_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_STATUS__TLP_PREFIX_BLOCKED_ERR_STATUS_MASK 0x02000000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_STATUS__POISONED_TLP_EGRESS_BLOCKED_STATUS_MASK 0x04000000L
+//BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_MASK
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_MASK__DLP_ERR_MASK__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_MASK__SURPDN_ERR_MASK__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_MASK__PSN_ERR_MASK__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_MASK__FC_ERR_MASK__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_MASK__CPL_TIMEOUT_MASK__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_MASK__CPL_ABORT_ERR_MASK__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_MASK__UNEXP_CPL_MASK__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_MASK__RCV_OVFL_MASK__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_MASK__MAL_TLP_MASK__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_MASK__ECRC_ERR_MASK__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_MASK__UNSUPP_REQ_ERR_MASK__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_MASK__ACS_VIOLATION_MASK__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_MASK__UNCORR_INT_ERR_MASK__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_MASK__MC_BLOCKED_TLP_MASK__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_MASK__ATOMICOP_EGRESS_BLOCKED_MASK__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_MASK__TLP_PREFIX_BLOCKED_ERR_MASK__SHIFT 0x19
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_MASK__POISONED_TLP_EGRESS_BLOCKED_MASK__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_MASK__DLP_ERR_MASK_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_MASK__SURPDN_ERR_MASK_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_MASK__PSN_ERR_MASK_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_MASK__FC_ERR_MASK_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_MASK__CPL_TIMEOUT_MASK_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_MASK__CPL_ABORT_ERR_MASK_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_MASK__UNEXP_CPL_MASK_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_MASK__RCV_OVFL_MASK_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_MASK__MAL_TLP_MASK_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_MASK__ECRC_ERR_MASK_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_MASK__UNSUPP_REQ_ERR_MASK_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_MASK__ACS_VIOLATION_MASK_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_MASK__UNCORR_INT_ERR_MASK_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_MASK__MC_BLOCKED_TLP_MASK_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_MASK__ATOMICOP_EGRESS_BLOCKED_MASK_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_MASK__TLP_PREFIX_BLOCKED_ERR_MASK_MASK 0x02000000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_MASK__POISONED_TLP_EGRESS_BLOCKED_MASK_MASK 0x04000000L
+//BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_SEVERITY
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_SEVERITY__DLP_ERR_SEVERITY__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_SEVERITY__SURPDN_ERR_SEVERITY__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_SEVERITY__PSN_ERR_SEVERITY__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_SEVERITY__FC_ERR_SEVERITY__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_SEVERITY__CPL_TIMEOUT_SEVERITY__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_SEVERITY__CPL_ABORT_ERR_SEVERITY__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_SEVERITY__UNEXP_CPL_SEVERITY__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_SEVERITY__RCV_OVFL_SEVERITY__SHIFT 0x11
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_SEVERITY__MAL_TLP_SEVERITY__SHIFT 0x12
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_SEVERITY__ECRC_ERR_SEVERITY__SHIFT 0x13
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_SEVERITY__UNSUPP_REQ_ERR_SEVERITY__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_SEVERITY__ACS_VIOLATION_SEVERITY__SHIFT 0x15
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_SEVERITY__UNCORR_INT_ERR_SEVERITY__SHIFT 0x16
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_SEVERITY__MC_BLOCKED_TLP_SEVERITY__SHIFT 0x17
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_SEVERITY__ATOMICOP_EGRESS_BLOCKED_SEVERITY__SHIFT 0x18
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_SEVERITY__TLP_PREFIX_BLOCKED_ERR_SEVERITY__SHIFT 0x19
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_SEVERITY__POISONED_TLP_EGRESS_BLOCKED_SEVERITY__SHIFT 0x1a
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_SEVERITY__DLP_ERR_SEVERITY_MASK 0x00000010L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_SEVERITY__SURPDN_ERR_SEVERITY_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_SEVERITY__PSN_ERR_SEVERITY_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_SEVERITY__FC_ERR_SEVERITY_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_SEVERITY__CPL_TIMEOUT_SEVERITY_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_SEVERITY__CPL_ABORT_ERR_SEVERITY_MASK 0x00008000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_SEVERITY__UNEXP_CPL_SEVERITY_MASK 0x00010000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_SEVERITY__RCV_OVFL_SEVERITY_MASK 0x00020000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_SEVERITY__MAL_TLP_SEVERITY_MASK 0x00040000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_SEVERITY__ECRC_ERR_SEVERITY_MASK 0x00080000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_SEVERITY__UNSUPP_REQ_ERR_SEVERITY_MASK 0x00100000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_SEVERITY__ACS_VIOLATION_SEVERITY_MASK 0x00200000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_SEVERITY__UNCORR_INT_ERR_SEVERITY_MASK 0x00400000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_SEVERITY__MC_BLOCKED_TLP_SEVERITY_MASK 0x00800000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_SEVERITY__ATOMICOP_EGRESS_BLOCKED_SEVERITY_MASK 0x01000000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_SEVERITY__TLP_PREFIX_BLOCKED_ERR_SEVERITY_MASK 0x02000000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_UNCORR_ERR_SEVERITY__POISONED_TLP_EGRESS_BLOCKED_SEVERITY_MASK 0x04000000L
+//BIF_CFG_DEV0_EPF0_VF7_PCIE_CORR_ERR_STATUS
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_CORR_ERR_STATUS__RCV_ERR_STATUS__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_CORR_ERR_STATUS__BAD_TLP_STATUS__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_CORR_ERR_STATUS__BAD_DLLP_STATUS__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_CORR_ERR_STATUS__REPLAY_NUM_ROLLOVER_STATUS__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_CORR_ERR_STATUS__REPLAY_TIMER_TIMEOUT_STATUS__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_CORR_ERR_STATUS__ADVISORY_NONFATAL_ERR_STATUS__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_CORR_ERR_STATUS__CORR_INT_ERR_STATUS__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_CORR_ERR_STATUS__HDR_LOG_OVFL_STATUS__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_CORR_ERR_STATUS__RCV_ERR_STATUS_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_CORR_ERR_STATUS__BAD_TLP_STATUS_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_CORR_ERR_STATUS__BAD_DLLP_STATUS_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_CORR_ERR_STATUS__REPLAY_NUM_ROLLOVER_STATUS_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_CORR_ERR_STATUS__REPLAY_TIMER_TIMEOUT_STATUS_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_CORR_ERR_STATUS__ADVISORY_NONFATAL_ERR_STATUS_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_CORR_ERR_STATUS__CORR_INT_ERR_STATUS_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_CORR_ERR_STATUS__HDR_LOG_OVFL_STATUS_MASK 0x00008000L
+//BIF_CFG_DEV0_EPF0_VF7_PCIE_CORR_ERR_MASK
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_CORR_ERR_MASK__RCV_ERR_MASK__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_CORR_ERR_MASK__BAD_TLP_MASK__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_CORR_ERR_MASK__BAD_DLLP_MASK__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_CORR_ERR_MASK__REPLAY_NUM_ROLLOVER_MASK__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_CORR_ERR_MASK__REPLAY_TIMER_TIMEOUT_MASK__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_CORR_ERR_MASK__ADVISORY_NONFATAL_ERR_MASK__SHIFT 0xd
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_CORR_ERR_MASK__CORR_INT_ERR_MASK__SHIFT 0xe
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_CORR_ERR_MASK__HDR_LOG_OVFL_MASK__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_CORR_ERR_MASK__RCV_ERR_MASK_MASK 0x00000001L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_CORR_ERR_MASK__BAD_TLP_MASK_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_CORR_ERR_MASK__BAD_DLLP_MASK_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_CORR_ERR_MASK__REPLAY_NUM_ROLLOVER_MASK_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_CORR_ERR_MASK__REPLAY_TIMER_TIMEOUT_MASK_MASK 0x00001000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_CORR_ERR_MASK__ADVISORY_NONFATAL_ERR_MASK_MASK 0x00002000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_CORR_ERR_MASK__CORR_INT_ERR_MASK_MASK 0x00004000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_CORR_ERR_MASK__HDR_LOG_OVFL_MASK_MASK 0x00008000L
+//BIF_CFG_DEV0_EPF0_VF7_PCIE_ADV_ERR_CAP_CNTL
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ADV_ERR_CAP_CNTL__FIRST_ERR_PTR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_CAP__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_EN__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_CAP__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_EN__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_CAP__SHIFT 0x9
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_EN__SHIFT 0xa
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ADV_ERR_CAP_CNTL__TLP_PREFIX_LOG_PRESENT__SHIFT 0xb
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ADV_ERR_CAP_CNTL__COMPLETION_TIMEOUT_LOG_CAPABLE__SHIFT 0xc
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ADV_ERR_CAP_CNTL__FIRST_ERR_PTR_MASK 0x0000001FL
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_CAP_MASK 0x00000020L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ADV_ERR_CAP_CNTL__ECRC_GEN_EN_MASK 0x00000040L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_CAP_MASK 0x00000080L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ADV_ERR_CAP_CNTL__ECRC_CHECK_EN_MASK 0x00000100L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_CAP_MASK 0x00000200L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ADV_ERR_CAP_CNTL__MULTI_HDR_RECD_EN_MASK 0x00000400L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ADV_ERR_CAP_CNTL__TLP_PREFIX_LOG_PRESENT_MASK 0x00000800L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ADV_ERR_CAP_CNTL__COMPLETION_TIMEOUT_LOG_CAPABLE_MASK 0x00001000L
+//BIF_CFG_DEV0_EPF0_VF7_PCIE_HDR_LOG0
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_HDR_LOG0__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_HDR_LOG0__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF7_PCIE_HDR_LOG1
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_HDR_LOG1__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_HDR_LOG1__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF7_PCIE_HDR_LOG2
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_HDR_LOG2__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_HDR_LOG2__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF7_PCIE_HDR_LOG3
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_HDR_LOG3__TLP_HDR__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_HDR_LOG3__TLP_HDR_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF7_PCIE_TLP_PREFIX_LOG0
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_TLP_PREFIX_LOG0__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_TLP_PREFIX_LOG0__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF7_PCIE_TLP_PREFIX_LOG1
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_TLP_PREFIX_LOG1__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_TLP_PREFIX_LOG1__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF7_PCIE_TLP_PREFIX_LOG2
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_TLP_PREFIX_LOG2__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_TLP_PREFIX_LOG2__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF7_PCIE_TLP_PREFIX_LOG3
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_TLP_PREFIX_LOG3__TLP_PREFIX__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_TLP_PREFIX_LOG3__TLP_PREFIX_MASK 0xFFFFFFFFL
+//BIF_CFG_DEV0_EPF0_VF7_PCIE_ATS_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ATS_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ATS_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ATS_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ATS_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ATS_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ATS_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_VF7_PCIE_ATS_CAP
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ATS_CAP__INVALIDATE_Q_DEPTH__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ATS_CAP__PAGE_ALIGNED_REQUEST__SHIFT 0x5
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ATS_CAP__GLOBAL_INVALIDATE_SUPPORTED__SHIFT 0x6
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ATS_CAP__RELAXED_ORDERING_SUPPORTED__SHIFT 0x7
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ATS_CAP__INVALIDATE_Q_DEPTH_MASK 0x001FL
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ATS_CAP__PAGE_ALIGNED_REQUEST_MASK 0x0020L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ATS_CAP__GLOBAL_INVALIDATE_SUPPORTED_MASK 0x0040L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ATS_CAP__RELAXED_ORDERING_SUPPORTED_MASK 0x0080L
+//BIF_CFG_DEV0_EPF0_VF7_PCIE_ATS_CNTL
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ATS_CNTL__STU__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ATS_CNTL__ATC_ENABLE__SHIFT 0xf
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ATS_CNTL__STU_MASK 0x001FL
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ATS_CNTL__ATC_ENABLE_MASK 0x8000L
+//BIF_CFG_DEV0_EPF0_VF7_PCIE_ARI_ENH_CAP_LIST
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ARI_ENH_CAP_LIST__CAP_ID__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ARI_ENH_CAP_LIST__CAP_VER__SHIFT 0x10
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ARI_ENH_CAP_LIST__NEXT_PTR__SHIFT 0x14
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ARI_ENH_CAP_LIST__CAP_ID_MASK 0x0000FFFFL
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ARI_ENH_CAP_LIST__CAP_VER_MASK 0x000F0000L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ARI_ENH_CAP_LIST__NEXT_PTR_MASK 0xFFF00000L
+//BIF_CFG_DEV0_EPF0_VF7_PCIE_ARI_CAP
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ARI_CAP__ARI_MFVC_FUNC_GROUPS_CAP__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ARI_CAP__ARI_ACS_FUNC_GROUPS_CAP__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ARI_CAP__ARI_NEXT_FUNC_NUM__SHIFT 0x8
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ARI_CAP__ARI_MFVC_FUNC_GROUPS_CAP_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ARI_CAP__ARI_ACS_FUNC_GROUPS_CAP_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ARI_CAP__ARI_NEXT_FUNC_NUM_MASK 0xFF00L
+//BIF_CFG_DEV0_EPF0_VF7_PCIE_ARI_CNTL
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ARI_CNTL__ARI_MFVC_FUNC_GROUPS_EN__SHIFT 0x0
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ARI_CNTL__ARI_ACS_FUNC_GROUPS_EN__SHIFT 0x1
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ARI_CNTL__ARI_FUNCTION_GROUP__SHIFT 0x4
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ARI_CNTL__ARI_MFVC_FUNC_GROUPS_EN_MASK 0x0001L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ARI_CNTL__ARI_ACS_FUNC_GROUPS_EN_MASK 0x0002L
+#define BIF_CFG_DEV0_EPF0_VF7_PCIE_ARI_CNTL__ARI_FUNCTION_GROUP_MASK 0x0070L
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_dev0_epf0_vf0_BIFPFVFDEC1
+//BIF_BX_DEV0_EPF0_VF0_BIF_BME_STATUS
+#define BIF_BX_DEV0_EPF0_VF0_BIF_BME_STATUS__DMA_ON_BME_LOW__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF0_BIF_BME_STATUS__CLEAR_DMA_ON_BME_LOW__SHIFT 0x10
+#define BIF_BX_DEV0_EPF0_VF0_BIF_BME_STATUS__DMA_ON_BME_LOW_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF0_BIF_BME_STATUS__CLEAR_DMA_ON_BME_LOW_MASK 0x00010000L
+//BIF_BX_DEV0_EPF0_VF0_BIF_ATOMIC_ERR_LOG
+#define BIF_BX_DEV0_EPF0_VF0_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_OPCODE__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF0_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_REQEN_LOW__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF0_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_LENGTH__SHIFT 0x2
+#define BIF_BX_DEV0_EPF0_VF0_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_NR__SHIFT 0x3
+#define BIF_BX_DEV0_EPF0_VF0_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_OPCODE__SHIFT 0x10
+#define BIF_BX_DEV0_EPF0_VF0_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_REQEN_LOW__SHIFT 0x11
+#define BIF_BX_DEV0_EPF0_VF0_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_LENGTH__SHIFT 0x12
+#define BIF_BX_DEV0_EPF0_VF0_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_NR__SHIFT 0x13
+#define BIF_BX_DEV0_EPF0_VF0_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_OPCODE_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF0_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_REQEN_LOW_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF0_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_LENGTH_MASK 0x00000004L
+#define BIF_BX_DEV0_EPF0_VF0_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_NR_MASK 0x00000008L
+#define BIF_BX_DEV0_EPF0_VF0_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_OPCODE_MASK 0x00010000L
+#define BIF_BX_DEV0_EPF0_VF0_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_REQEN_LOW_MASK 0x00020000L
+#define BIF_BX_DEV0_EPF0_VF0_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_LENGTH_MASK 0x00040000L
+#define BIF_BX_DEV0_EPF0_VF0_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_NR_MASK 0x00080000L
+//BIF_BX_DEV0_EPF0_VF0_DOORBELL_SELFRING_GPA_APER_BASE_HIGH
+#define BIF_BX_DEV0_EPF0_VF0_DOORBELL_SELFRING_GPA_APER_BASE_HIGH__DOORBELL_SELFRING_GPA_APER_BASE_HIGH__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF0_DOORBELL_SELFRING_GPA_APER_BASE_HIGH__DOORBELL_SELFRING_GPA_APER_BASE_HIGH_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF0_DOORBELL_SELFRING_GPA_APER_BASE_LOW
+#define BIF_BX_DEV0_EPF0_VF0_DOORBELL_SELFRING_GPA_APER_BASE_LOW__DOORBELL_SELFRING_GPA_APER_BASE_LOW__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF0_DOORBELL_SELFRING_GPA_APER_BASE_LOW__DOORBELL_SELFRING_GPA_APER_BASE_LOW_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF0_DOORBELL_SELFRING_GPA_APER_CNTL
+#define BIF_BX_DEV0_EPF0_VF0_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_EN__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF0_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_MODE__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF0_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_SIZE__SHIFT 0x8
+#define BIF_BX_DEV0_EPF0_VF0_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_EN_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF0_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_MODE_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF0_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_SIZE_MASK 0x000FFF00L
+//BIF_BX_DEV0_EPF0_VF0_HDP_REG_COHERENCY_FLUSH_CNTL
+#define BIF_BX_DEV0_EPF0_VF0_HDP_REG_COHERENCY_FLUSH_CNTL__HDP_REG_FLUSH_ADDR__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF0_HDP_REG_COHERENCY_FLUSH_CNTL__HDP_REG_FLUSH_ADDR_MASK 0x00000001L
+//BIF_BX_DEV0_EPF0_VF0_HDP_MEM_COHERENCY_FLUSH_CNTL
+#define BIF_BX_DEV0_EPF0_VF0_HDP_MEM_COHERENCY_FLUSH_CNTL__HDP_MEM_FLUSH_ADDR__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF0_HDP_MEM_COHERENCY_FLUSH_CNTL__HDP_MEM_FLUSH_ADDR_MASK 0x00000001L
+//BIF_BX_DEV0_EPF0_VF0_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL
+#define BIF_BX_DEV0_EPF0_VF0_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL__HDP_MEM_FLUSH_ONLY_ADDR__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF0_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL__HDP_MEM_FLUSH_ONLY_ADDR_MASK 0x00000001L
+//BIF_BX_DEV0_EPF0_VF0_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL
+#define BIF_BX_DEV0_EPF0_VF0_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL__HDP_MEM_INVALIDATE_ONLY_ADDR__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF0_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL__HDP_MEM_INVALIDATE_ONLY_ADDR_MASK 0x00000001L
+//BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__CP0__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__CP1__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__CP2__SHIFT 0x2
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__CP3__SHIFT 0x3
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__CP4__SHIFT 0x4
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__CP5__SHIFT 0x5
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__CP6__SHIFT 0x6
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__CP7__SHIFT 0x7
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__CP8__SHIFT 0x8
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__CP9__SHIFT 0x9
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__SDMA0__SHIFT 0xa
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__SDMA1__SHIFT 0xb
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__RSVD_ENG0__SHIFT 0xc
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__RSVD_ENG1__SHIFT 0xd
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__RSVD_ENG2__SHIFT 0xe
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__RSVD_ENG3__SHIFT 0xf
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__RSVD_ENG4__SHIFT 0x10
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__RSVD_ENG5__SHIFT 0x11
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__RSVD_ENG6__SHIFT 0x12
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__RSVD_ENG7__SHIFT 0x13
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__RSVD_ENG8__SHIFT 0x14
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__RSVD_ENG9__SHIFT 0x15
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__RSVD_ENG10__SHIFT 0x16
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__RSVD_ENG11__SHIFT 0x17
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__RSVD_ENG12__SHIFT 0x18
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__RSVD_ENG13__SHIFT 0x19
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__RSVD_ENG14__SHIFT 0x1a
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__RSVD_ENG15__SHIFT 0x1b
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__RSVD_ENG16__SHIFT 0x1c
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__RSVD_ENG17__SHIFT 0x1d
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__RSVD_ENG18__SHIFT 0x1e
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__RSVD_ENG19__SHIFT 0x1f
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__CP0_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__CP1_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__CP2_MASK 0x00000004L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__CP3_MASK 0x00000008L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__CP4_MASK 0x00000010L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__CP5_MASK 0x00000020L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__CP6_MASK 0x00000040L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__CP7_MASK 0x00000080L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__CP8_MASK 0x00000100L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__CP9_MASK 0x00000200L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__SDMA0_MASK 0x00000400L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__SDMA1_MASK 0x00000800L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__RSVD_ENG0_MASK 0x00001000L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__RSVD_ENG1_MASK 0x00002000L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__RSVD_ENG2_MASK 0x00004000L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__RSVD_ENG3_MASK 0x00008000L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__RSVD_ENG4_MASK 0x00010000L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__RSVD_ENG5_MASK 0x00020000L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__RSVD_ENG6_MASK 0x00040000L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__RSVD_ENG7_MASK 0x00080000L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__RSVD_ENG8_MASK 0x00100000L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__RSVD_ENG9_MASK 0x00200000L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__RSVD_ENG10_MASK 0x00400000L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__RSVD_ENG11_MASK 0x00800000L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__RSVD_ENG12_MASK 0x01000000L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__RSVD_ENG13_MASK 0x02000000L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__RSVD_ENG14_MASK 0x04000000L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__RSVD_ENG15_MASK 0x08000000L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__RSVD_ENG16_MASK 0x10000000L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__RSVD_ENG17_MASK 0x20000000L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__RSVD_ENG18_MASK 0x40000000L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_REQ__RSVD_ENG19_MASK 0x80000000L
+//BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__CP0__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__CP1__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__CP2__SHIFT 0x2
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__CP3__SHIFT 0x3
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__CP4__SHIFT 0x4
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__CP5__SHIFT 0x5
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__CP6__SHIFT 0x6
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__CP7__SHIFT 0x7
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__CP8__SHIFT 0x8
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__CP9__SHIFT 0x9
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__SDMA0__SHIFT 0xa
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__SDMA1__SHIFT 0xb
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__RSVD_ENG0__SHIFT 0xc
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__RSVD_ENG1__SHIFT 0xd
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__RSVD_ENG2__SHIFT 0xe
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__RSVD_ENG3__SHIFT 0xf
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__RSVD_ENG4__SHIFT 0x10
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__RSVD_ENG5__SHIFT 0x11
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__RSVD_ENG6__SHIFT 0x12
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__RSVD_ENG7__SHIFT 0x13
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__RSVD_ENG8__SHIFT 0x14
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__RSVD_ENG9__SHIFT 0x15
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__RSVD_ENG10__SHIFT 0x16
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__RSVD_ENG11__SHIFT 0x17
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__RSVD_ENG12__SHIFT 0x18
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__RSVD_ENG13__SHIFT 0x19
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__RSVD_ENG14__SHIFT 0x1a
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__RSVD_ENG15__SHIFT 0x1b
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__RSVD_ENG16__SHIFT 0x1c
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__RSVD_ENG17__SHIFT 0x1d
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__RSVD_ENG18__SHIFT 0x1e
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__RSVD_ENG19__SHIFT 0x1f
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__CP0_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__CP1_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__CP2_MASK 0x00000004L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__CP3_MASK 0x00000008L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__CP4_MASK 0x00000010L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__CP5_MASK 0x00000020L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__CP6_MASK 0x00000040L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__CP7_MASK 0x00000080L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__CP8_MASK 0x00000100L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__CP9_MASK 0x00000200L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__SDMA0_MASK 0x00000400L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__SDMA1_MASK 0x00000800L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__RSVD_ENG0_MASK 0x00001000L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__RSVD_ENG1_MASK 0x00002000L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__RSVD_ENG2_MASK 0x00004000L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__RSVD_ENG3_MASK 0x00008000L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__RSVD_ENG4_MASK 0x00010000L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__RSVD_ENG5_MASK 0x00020000L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__RSVD_ENG6_MASK 0x00040000L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__RSVD_ENG7_MASK 0x00080000L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__RSVD_ENG8_MASK 0x00100000L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__RSVD_ENG9_MASK 0x00200000L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__RSVD_ENG10_MASK 0x00400000L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__RSVD_ENG11_MASK 0x00800000L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__RSVD_ENG12_MASK 0x01000000L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__RSVD_ENG13_MASK 0x02000000L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__RSVD_ENG14_MASK 0x04000000L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__RSVD_ENG15_MASK 0x08000000L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__RSVD_ENG16_MASK 0x10000000L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__RSVD_ENG17_MASK 0x20000000L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__RSVD_ENG18_MASK 0x40000000L
+#define BIF_BX_DEV0_EPF0_VF0_GPU_HDP_FLUSH_DONE__RSVD_ENG19_MASK 0x80000000L
+//BIF_BX_DEV0_EPF0_VF0_BIF_TRANS_PENDING
+#define BIF_BX_DEV0_EPF0_VF0_BIF_TRANS_PENDING__BIF_MST_TRANS_PENDING__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF0_BIF_TRANS_PENDING__BIF_SLV_TRANS_PENDING__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF0_BIF_TRANS_PENDING__BIF_MST_TRANS_PENDING_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF0_BIF_TRANS_PENDING__BIF_SLV_TRANS_PENDING_MASK 0x00000002L
+//BIF_BX_DEV0_EPF0_VF0_NBIF_GFX_ADDR_LUT_BYPASS
+#define BIF_BX_DEV0_EPF0_VF0_NBIF_GFX_ADDR_LUT_BYPASS__LUT_BYPASS__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF0_NBIF_GFX_ADDR_LUT_BYPASS__LUT_BYPASS_MASK 0x00000001L
+//BIF_BX_DEV0_EPF0_VF0_MAILBOX_MSGBUF_TRN_DW0
+#define BIF_BX_DEV0_EPF0_VF0_MAILBOX_MSGBUF_TRN_DW0__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF0_MAILBOX_MSGBUF_TRN_DW0__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF0_MAILBOX_MSGBUF_TRN_DW1
+#define BIF_BX_DEV0_EPF0_VF0_MAILBOX_MSGBUF_TRN_DW1__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF0_MAILBOX_MSGBUF_TRN_DW1__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF0_MAILBOX_MSGBUF_TRN_DW2
+#define BIF_BX_DEV0_EPF0_VF0_MAILBOX_MSGBUF_TRN_DW2__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF0_MAILBOX_MSGBUF_TRN_DW2__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF0_MAILBOX_MSGBUF_TRN_DW3
+#define BIF_BX_DEV0_EPF0_VF0_MAILBOX_MSGBUF_TRN_DW3__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF0_MAILBOX_MSGBUF_TRN_DW3__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF0_MAILBOX_MSGBUF_RCV_DW0
+#define BIF_BX_DEV0_EPF0_VF0_MAILBOX_MSGBUF_RCV_DW0__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF0_MAILBOX_MSGBUF_RCV_DW0__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF0_MAILBOX_MSGBUF_RCV_DW1
+#define BIF_BX_DEV0_EPF0_VF0_MAILBOX_MSGBUF_RCV_DW1__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF0_MAILBOX_MSGBUF_RCV_DW1__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF0_MAILBOX_MSGBUF_RCV_DW2
+#define BIF_BX_DEV0_EPF0_VF0_MAILBOX_MSGBUF_RCV_DW2__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF0_MAILBOX_MSGBUF_RCV_DW2__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF0_MAILBOX_MSGBUF_RCV_DW3
+#define BIF_BX_DEV0_EPF0_VF0_MAILBOX_MSGBUF_RCV_DW3__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF0_MAILBOX_MSGBUF_RCV_DW3__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF0_MAILBOX_CONTROL
+#define BIF_BX_DEV0_EPF0_VF0_MAILBOX_CONTROL__TRN_MSG_VALID__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF0_MAILBOX_CONTROL__TRN_MSG_ACK__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF0_MAILBOX_CONTROL__RCV_MSG_VALID__SHIFT 0x8
+#define BIF_BX_DEV0_EPF0_VF0_MAILBOX_CONTROL__RCV_MSG_ACK__SHIFT 0x9
+#define BIF_BX_DEV0_EPF0_VF0_MAILBOX_CONTROL__TRN_MSG_VALID_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF0_MAILBOX_CONTROL__TRN_MSG_ACK_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF0_MAILBOX_CONTROL__RCV_MSG_VALID_MASK 0x00000100L
+#define BIF_BX_DEV0_EPF0_VF0_MAILBOX_CONTROL__RCV_MSG_ACK_MASK 0x00000200L
+//BIF_BX_DEV0_EPF0_VF0_MAILBOX_INT_CNTL
+#define BIF_BX_DEV0_EPF0_VF0_MAILBOX_INT_CNTL__VALID_INT_EN__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF0_MAILBOX_INT_CNTL__ACK_INT_EN__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF0_MAILBOX_INT_CNTL__VALID_INT_EN_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF0_MAILBOX_INT_CNTL__ACK_INT_EN_MASK 0x00000002L
+//BIF_BX_DEV0_EPF0_VF0_BIF_VMHV_MAILBOX
+#define BIF_BX_DEV0_EPF0_VF0_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_ACK_INTR_EN__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF0_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_VALID_INTR_EN__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF0_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_DATA__SHIFT 0x8
+#define BIF_BX_DEV0_EPF0_VF0_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_VALID__SHIFT 0xf
+#define BIF_BX_DEV0_EPF0_VF0_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_DATA__SHIFT 0x10
+#define BIF_BX_DEV0_EPF0_VF0_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_VALID__SHIFT 0x17
+#define BIF_BX_DEV0_EPF0_VF0_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_ACK__SHIFT 0x18
+#define BIF_BX_DEV0_EPF0_VF0_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_ACK__SHIFT 0x19
+#define BIF_BX_DEV0_EPF0_VF0_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_ACK_INTR_EN_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF0_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_VALID_INTR_EN_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF0_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_DATA_MASK 0x00000F00L
+#define BIF_BX_DEV0_EPF0_VF0_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_VALID_MASK 0x00008000L
+#define BIF_BX_DEV0_EPF0_VF0_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_DATA_MASK 0x000F0000L
+#define BIF_BX_DEV0_EPF0_VF0_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_VALID_MASK 0x00800000L
+#define BIF_BX_DEV0_EPF0_VF0_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_ACK_MASK 0x01000000L
+#define BIF_BX_DEV0_EPF0_VF0_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_ACK_MASK 0x02000000L
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_dev0_epf0_vf0_SYSPFVFDEC
+//BIF_BX_DEV0_EPF0_VF0_MM_INDEX
+#define BIF_BX_DEV0_EPF0_VF0_MM_INDEX__MM_OFFSET__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF0_MM_INDEX__MM_APER__SHIFT 0x1f
+#define BIF_BX_DEV0_EPF0_VF0_MM_INDEX__MM_OFFSET_MASK 0x7FFFFFFFL
+#define BIF_BX_DEV0_EPF0_VF0_MM_INDEX__MM_APER_MASK 0x80000000L
+//BIF_BX_DEV0_EPF0_VF0_MM_DATA
+#define BIF_BX_DEV0_EPF0_VF0_MM_DATA__MM_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF0_MM_DATA__MM_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF0_MM_INDEX_HI
+#define BIF_BX_DEV0_EPF0_VF0_MM_INDEX_HI__MM_OFFSET_HI__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF0_MM_INDEX_HI__MM_OFFSET_HI_MASK 0xFFFFFFFFL
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dev0_epf0_vf0_BIFPFVFDEC1
+//RCC_DEV0_EPF0_VF0_RCC_ERR_LOG
+#define RCC_DEV0_EPF0_VF0_RCC_ERR_LOG__INVALID_REG_ACCESS_IN_SRIOV_STATUS__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF0_RCC_ERR_LOG__DOORBELL_READ_ACCESS_STATUS__SHIFT 0x1
+#define RCC_DEV0_EPF0_VF0_RCC_ERR_LOG__INVALID_REG_ACCESS_IN_SRIOV_STATUS_MASK 0x00000001L
+#define RCC_DEV0_EPF0_VF0_RCC_ERR_LOG__DOORBELL_READ_ACCESS_STATUS_MASK 0x00000002L
+//RCC_DEV0_EPF0_VF0_RCC_DOORBELL_APER_EN
+#define RCC_DEV0_EPF0_VF0_RCC_DOORBELL_APER_EN__BIF_DOORBELL_APER_EN__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF0_RCC_DOORBELL_APER_EN__BIF_DOORBELL_APER_EN_MASK 0x00000001L
+//RCC_DEV0_EPF0_VF0_RCC_CONFIG_MEMSIZE
+#define RCC_DEV0_EPF0_VF0_RCC_CONFIG_MEMSIZE__CONFIG_MEMSIZE__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF0_RCC_CONFIG_MEMSIZE__CONFIG_MEMSIZE_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF0_RCC_CONFIG_RESERVED
+#define RCC_DEV0_EPF0_VF0_RCC_CONFIG_RESERVED__CONFIG_RESERVED__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF0_RCC_CONFIG_RESERVED__CONFIG_RESERVED_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF0_RCC_IOV_FUNC_IDENTIFIER
+#define RCC_DEV0_EPF0_VF0_RCC_IOV_FUNC_IDENTIFIER__FUNC_IDENTIFIER__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF0_RCC_IOV_FUNC_IDENTIFIER__IOV_ENABLE__SHIFT 0x1f
+#define RCC_DEV0_EPF0_VF0_RCC_IOV_FUNC_IDENTIFIER__FUNC_IDENTIFIER_MASK 0x00000001L
+#define RCC_DEV0_EPF0_VF0_RCC_IOV_FUNC_IDENTIFIER__IOV_ENABLE_MASK 0x80000000L
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dev0_epf0_vf0_BIFDEC2
+//RCC_DEV0_EPF0_VF0_GFXMSIX_VECT0_ADDR_LO
+#define RCC_DEV0_EPF0_VF0_GFXMSIX_VECT0_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define RCC_DEV0_EPF0_VF0_GFXMSIX_VECT0_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//RCC_DEV0_EPF0_VF0_GFXMSIX_VECT0_ADDR_HI
+#define RCC_DEV0_EPF0_VF0_GFXMSIX_VECT0_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF0_GFXMSIX_VECT0_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF0_GFXMSIX_VECT0_MSG_DATA
+#define RCC_DEV0_EPF0_VF0_GFXMSIX_VECT0_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF0_GFXMSIX_VECT0_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF0_GFXMSIX_VECT0_CONTROL
+#define RCC_DEV0_EPF0_VF0_GFXMSIX_VECT0_CONTROL__MASK_BIT__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF0_GFXMSIX_VECT0_CONTROL__MASK_BIT_MASK 0x00000001L
+//RCC_DEV0_EPF0_VF0_GFXMSIX_VECT1_ADDR_LO
+#define RCC_DEV0_EPF0_VF0_GFXMSIX_VECT1_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define RCC_DEV0_EPF0_VF0_GFXMSIX_VECT1_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//RCC_DEV0_EPF0_VF0_GFXMSIX_VECT1_ADDR_HI
+#define RCC_DEV0_EPF0_VF0_GFXMSIX_VECT1_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF0_GFXMSIX_VECT1_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF0_GFXMSIX_VECT1_MSG_DATA
+#define RCC_DEV0_EPF0_VF0_GFXMSIX_VECT1_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF0_GFXMSIX_VECT1_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF0_GFXMSIX_VECT1_CONTROL
+#define RCC_DEV0_EPF0_VF0_GFXMSIX_VECT1_CONTROL__MASK_BIT__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF0_GFXMSIX_VECT1_CONTROL__MASK_BIT_MASK 0x00000001L
+//RCC_DEV0_EPF0_VF0_GFXMSIX_VECT2_ADDR_LO
+#define RCC_DEV0_EPF0_VF0_GFXMSIX_VECT2_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define RCC_DEV0_EPF0_VF0_GFXMSIX_VECT2_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//RCC_DEV0_EPF0_VF0_GFXMSIX_VECT2_ADDR_HI
+#define RCC_DEV0_EPF0_VF0_GFXMSIX_VECT2_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF0_GFXMSIX_VECT2_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF0_GFXMSIX_VECT2_MSG_DATA
+#define RCC_DEV0_EPF0_VF0_GFXMSIX_VECT2_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF0_GFXMSIX_VECT2_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF0_GFXMSIX_VECT2_CONTROL
+#define RCC_DEV0_EPF0_VF0_GFXMSIX_VECT2_CONTROL__MASK_BIT__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF0_GFXMSIX_VECT2_CONTROL__MASK_BIT_MASK 0x00000001L
+//RCC_DEV0_EPF0_VF0_GFXMSIX_VECT3_ADDR_LO
+#define RCC_DEV0_EPF0_VF0_GFXMSIX_VECT3_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define RCC_DEV0_EPF0_VF0_GFXMSIX_VECT3_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//RCC_DEV0_EPF0_VF0_GFXMSIX_VECT3_ADDR_HI
+#define RCC_DEV0_EPF0_VF0_GFXMSIX_VECT3_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF0_GFXMSIX_VECT3_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF0_GFXMSIX_VECT3_MSG_DATA
+#define RCC_DEV0_EPF0_VF0_GFXMSIX_VECT3_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF0_GFXMSIX_VECT3_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF0_GFXMSIX_VECT3_CONTROL
+#define RCC_DEV0_EPF0_VF0_GFXMSIX_VECT3_CONTROL__MASK_BIT__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF0_GFXMSIX_VECT3_CONTROL__MASK_BIT_MASK 0x00000001L
+//RCC_DEV0_EPF0_VF0_GFXMSIX_PBA
+#define RCC_DEV0_EPF0_VF0_GFXMSIX_PBA__MSIX_PENDING_BITS_0__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF0_GFXMSIX_PBA__MSIX_PENDING_BITS_1__SHIFT 0x1
+#define RCC_DEV0_EPF0_VF0_GFXMSIX_PBA__MSIX_PENDING_BITS_0_MASK 0x00000001L
+#define RCC_DEV0_EPF0_VF0_GFXMSIX_PBA__MSIX_PENDING_BITS_1_MASK 0x00000002L
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_dev0_epf0_vf1_BIFPFVFDEC1
+//BIF_BX_DEV0_EPF0_VF1_BIF_BME_STATUS
+#define BIF_BX_DEV0_EPF0_VF1_BIF_BME_STATUS__DMA_ON_BME_LOW__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF1_BIF_BME_STATUS__CLEAR_DMA_ON_BME_LOW__SHIFT 0x10
+#define BIF_BX_DEV0_EPF0_VF1_BIF_BME_STATUS__DMA_ON_BME_LOW_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF1_BIF_BME_STATUS__CLEAR_DMA_ON_BME_LOW_MASK 0x00010000L
+//BIF_BX_DEV0_EPF0_VF1_BIF_ATOMIC_ERR_LOG
+#define BIF_BX_DEV0_EPF0_VF1_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_OPCODE__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF1_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_REQEN_LOW__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF1_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_LENGTH__SHIFT 0x2
+#define BIF_BX_DEV0_EPF0_VF1_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_NR__SHIFT 0x3
+#define BIF_BX_DEV0_EPF0_VF1_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_OPCODE__SHIFT 0x10
+#define BIF_BX_DEV0_EPF0_VF1_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_REQEN_LOW__SHIFT 0x11
+#define BIF_BX_DEV0_EPF0_VF1_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_LENGTH__SHIFT 0x12
+#define BIF_BX_DEV0_EPF0_VF1_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_NR__SHIFT 0x13
+#define BIF_BX_DEV0_EPF0_VF1_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_OPCODE_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF1_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_REQEN_LOW_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF1_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_LENGTH_MASK 0x00000004L
+#define BIF_BX_DEV0_EPF0_VF1_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_NR_MASK 0x00000008L
+#define BIF_BX_DEV0_EPF0_VF1_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_OPCODE_MASK 0x00010000L
+#define BIF_BX_DEV0_EPF0_VF1_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_REQEN_LOW_MASK 0x00020000L
+#define BIF_BX_DEV0_EPF0_VF1_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_LENGTH_MASK 0x00040000L
+#define BIF_BX_DEV0_EPF0_VF1_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_NR_MASK 0x00080000L
+//BIF_BX_DEV0_EPF0_VF1_DOORBELL_SELFRING_GPA_APER_BASE_HIGH
+#define BIF_BX_DEV0_EPF0_VF1_DOORBELL_SELFRING_GPA_APER_BASE_HIGH__DOORBELL_SELFRING_GPA_APER_BASE_HIGH__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF1_DOORBELL_SELFRING_GPA_APER_BASE_HIGH__DOORBELL_SELFRING_GPA_APER_BASE_HIGH_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF1_DOORBELL_SELFRING_GPA_APER_BASE_LOW
+#define BIF_BX_DEV0_EPF0_VF1_DOORBELL_SELFRING_GPA_APER_BASE_LOW__DOORBELL_SELFRING_GPA_APER_BASE_LOW__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF1_DOORBELL_SELFRING_GPA_APER_BASE_LOW__DOORBELL_SELFRING_GPA_APER_BASE_LOW_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF1_DOORBELL_SELFRING_GPA_APER_CNTL
+#define BIF_BX_DEV0_EPF0_VF1_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_EN__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF1_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_MODE__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF1_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_SIZE__SHIFT 0x8
+#define BIF_BX_DEV0_EPF0_VF1_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_EN_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF1_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_MODE_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF1_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_SIZE_MASK 0x000FFF00L
+//BIF_BX_DEV0_EPF0_VF1_HDP_REG_COHERENCY_FLUSH_CNTL
+#define BIF_BX_DEV0_EPF0_VF1_HDP_REG_COHERENCY_FLUSH_CNTL__HDP_REG_FLUSH_ADDR__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF1_HDP_REG_COHERENCY_FLUSH_CNTL__HDP_REG_FLUSH_ADDR_MASK 0x00000001L
+//BIF_BX_DEV0_EPF0_VF1_HDP_MEM_COHERENCY_FLUSH_CNTL
+#define BIF_BX_DEV0_EPF0_VF1_HDP_MEM_COHERENCY_FLUSH_CNTL__HDP_MEM_FLUSH_ADDR__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF1_HDP_MEM_COHERENCY_FLUSH_CNTL__HDP_MEM_FLUSH_ADDR_MASK 0x00000001L
+//BIF_BX_DEV0_EPF0_VF1_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL
+#define BIF_BX_DEV0_EPF0_VF1_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL__HDP_MEM_FLUSH_ONLY_ADDR__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF1_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL__HDP_MEM_FLUSH_ONLY_ADDR_MASK 0x00000001L
+//BIF_BX_DEV0_EPF0_VF1_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL
+#define BIF_BX_DEV0_EPF0_VF1_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL__HDP_MEM_INVALIDATE_ONLY_ADDR__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF1_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL__HDP_MEM_INVALIDATE_ONLY_ADDR_MASK 0x00000001L
+//BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__CP0__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__CP1__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__CP2__SHIFT 0x2
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__CP3__SHIFT 0x3
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__CP4__SHIFT 0x4
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__CP5__SHIFT 0x5
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__CP6__SHIFT 0x6
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__CP7__SHIFT 0x7
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__CP8__SHIFT 0x8
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__CP9__SHIFT 0x9
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__SDMA0__SHIFT 0xa
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__SDMA1__SHIFT 0xb
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__RSVD_ENG0__SHIFT 0xc
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__RSVD_ENG1__SHIFT 0xd
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__RSVD_ENG2__SHIFT 0xe
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__RSVD_ENG3__SHIFT 0xf
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__RSVD_ENG4__SHIFT 0x10
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__RSVD_ENG5__SHIFT 0x11
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__RSVD_ENG6__SHIFT 0x12
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__RSVD_ENG7__SHIFT 0x13
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__RSVD_ENG8__SHIFT 0x14
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__RSVD_ENG9__SHIFT 0x15
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__RSVD_ENG10__SHIFT 0x16
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__RSVD_ENG11__SHIFT 0x17
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__RSVD_ENG12__SHIFT 0x18
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__RSVD_ENG13__SHIFT 0x19
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__RSVD_ENG14__SHIFT 0x1a
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__RSVD_ENG15__SHIFT 0x1b
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__RSVD_ENG16__SHIFT 0x1c
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__RSVD_ENG17__SHIFT 0x1d
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__RSVD_ENG18__SHIFT 0x1e
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__RSVD_ENG19__SHIFT 0x1f
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__CP0_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__CP1_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__CP2_MASK 0x00000004L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__CP3_MASK 0x00000008L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__CP4_MASK 0x00000010L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__CP5_MASK 0x00000020L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__CP6_MASK 0x00000040L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__CP7_MASK 0x00000080L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__CP8_MASK 0x00000100L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__CP9_MASK 0x00000200L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__SDMA0_MASK 0x00000400L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__SDMA1_MASK 0x00000800L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__RSVD_ENG0_MASK 0x00001000L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__RSVD_ENG1_MASK 0x00002000L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__RSVD_ENG2_MASK 0x00004000L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__RSVD_ENG3_MASK 0x00008000L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__RSVD_ENG4_MASK 0x00010000L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__RSVD_ENG5_MASK 0x00020000L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__RSVD_ENG6_MASK 0x00040000L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__RSVD_ENG7_MASK 0x00080000L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__RSVD_ENG8_MASK 0x00100000L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__RSVD_ENG9_MASK 0x00200000L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__RSVD_ENG10_MASK 0x00400000L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__RSVD_ENG11_MASK 0x00800000L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__RSVD_ENG12_MASK 0x01000000L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__RSVD_ENG13_MASK 0x02000000L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__RSVD_ENG14_MASK 0x04000000L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__RSVD_ENG15_MASK 0x08000000L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__RSVD_ENG16_MASK 0x10000000L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__RSVD_ENG17_MASK 0x20000000L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__RSVD_ENG18_MASK 0x40000000L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_REQ__RSVD_ENG19_MASK 0x80000000L
+//BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__CP0__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__CP1__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__CP2__SHIFT 0x2
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__CP3__SHIFT 0x3
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__CP4__SHIFT 0x4
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__CP5__SHIFT 0x5
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__CP6__SHIFT 0x6
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__CP7__SHIFT 0x7
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__CP8__SHIFT 0x8
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__CP9__SHIFT 0x9
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__SDMA0__SHIFT 0xa
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__SDMA1__SHIFT 0xb
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__RSVD_ENG0__SHIFT 0xc
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__RSVD_ENG1__SHIFT 0xd
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__RSVD_ENG2__SHIFT 0xe
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__RSVD_ENG3__SHIFT 0xf
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__RSVD_ENG4__SHIFT 0x10
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__RSVD_ENG5__SHIFT 0x11
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__RSVD_ENG6__SHIFT 0x12
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__RSVD_ENG7__SHIFT 0x13
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__RSVD_ENG8__SHIFT 0x14
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__RSVD_ENG9__SHIFT 0x15
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__RSVD_ENG10__SHIFT 0x16
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__RSVD_ENG11__SHIFT 0x17
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__RSVD_ENG12__SHIFT 0x18
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__RSVD_ENG13__SHIFT 0x19
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__RSVD_ENG14__SHIFT 0x1a
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__RSVD_ENG15__SHIFT 0x1b
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__RSVD_ENG16__SHIFT 0x1c
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__RSVD_ENG17__SHIFT 0x1d
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__RSVD_ENG18__SHIFT 0x1e
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__RSVD_ENG19__SHIFT 0x1f
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__CP0_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__CP1_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__CP2_MASK 0x00000004L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__CP3_MASK 0x00000008L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__CP4_MASK 0x00000010L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__CP5_MASK 0x00000020L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__CP6_MASK 0x00000040L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__CP7_MASK 0x00000080L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__CP8_MASK 0x00000100L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__CP9_MASK 0x00000200L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__SDMA0_MASK 0x00000400L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__SDMA1_MASK 0x00000800L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__RSVD_ENG0_MASK 0x00001000L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__RSVD_ENG1_MASK 0x00002000L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__RSVD_ENG2_MASK 0x00004000L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__RSVD_ENG3_MASK 0x00008000L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__RSVD_ENG4_MASK 0x00010000L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__RSVD_ENG5_MASK 0x00020000L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__RSVD_ENG6_MASK 0x00040000L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__RSVD_ENG7_MASK 0x00080000L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__RSVD_ENG8_MASK 0x00100000L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__RSVD_ENG9_MASK 0x00200000L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__RSVD_ENG10_MASK 0x00400000L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__RSVD_ENG11_MASK 0x00800000L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__RSVD_ENG12_MASK 0x01000000L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__RSVD_ENG13_MASK 0x02000000L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__RSVD_ENG14_MASK 0x04000000L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__RSVD_ENG15_MASK 0x08000000L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__RSVD_ENG16_MASK 0x10000000L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__RSVD_ENG17_MASK 0x20000000L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__RSVD_ENG18_MASK 0x40000000L
+#define BIF_BX_DEV0_EPF0_VF1_GPU_HDP_FLUSH_DONE__RSVD_ENG19_MASK 0x80000000L
+//BIF_BX_DEV0_EPF0_VF1_BIF_TRANS_PENDING
+#define BIF_BX_DEV0_EPF0_VF1_BIF_TRANS_PENDING__BIF_MST_TRANS_PENDING__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF1_BIF_TRANS_PENDING__BIF_SLV_TRANS_PENDING__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF1_BIF_TRANS_PENDING__BIF_MST_TRANS_PENDING_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF1_BIF_TRANS_PENDING__BIF_SLV_TRANS_PENDING_MASK 0x00000002L
+//BIF_BX_DEV0_EPF0_VF1_NBIF_GFX_ADDR_LUT_BYPASS
+#define BIF_BX_DEV0_EPF0_VF1_NBIF_GFX_ADDR_LUT_BYPASS__LUT_BYPASS__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF1_NBIF_GFX_ADDR_LUT_BYPASS__LUT_BYPASS_MASK 0x00000001L
+//BIF_BX_DEV0_EPF0_VF1_MAILBOX_MSGBUF_TRN_DW0
+#define BIF_BX_DEV0_EPF0_VF1_MAILBOX_MSGBUF_TRN_DW0__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF1_MAILBOX_MSGBUF_TRN_DW0__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF1_MAILBOX_MSGBUF_TRN_DW1
+#define BIF_BX_DEV0_EPF0_VF1_MAILBOX_MSGBUF_TRN_DW1__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF1_MAILBOX_MSGBUF_TRN_DW1__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF1_MAILBOX_MSGBUF_TRN_DW2
+#define BIF_BX_DEV0_EPF0_VF1_MAILBOX_MSGBUF_TRN_DW2__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF1_MAILBOX_MSGBUF_TRN_DW2__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF1_MAILBOX_MSGBUF_TRN_DW3
+#define BIF_BX_DEV0_EPF0_VF1_MAILBOX_MSGBUF_TRN_DW3__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF1_MAILBOX_MSGBUF_TRN_DW3__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF1_MAILBOX_MSGBUF_RCV_DW0
+#define BIF_BX_DEV0_EPF0_VF1_MAILBOX_MSGBUF_RCV_DW0__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF1_MAILBOX_MSGBUF_RCV_DW0__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF1_MAILBOX_MSGBUF_RCV_DW1
+#define BIF_BX_DEV0_EPF0_VF1_MAILBOX_MSGBUF_RCV_DW1__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF1_MAILBOX_MSGBUF_RCV_DW1__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF1_MAILBOX_MSGBUF_RCV_DW2
+#define BIF_BX_DEV0_EPF0_VF1_MAILBOX_MSGBUF_RCV_DW2__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF1_MAILBOX_MSGBUF_RCV_DW2__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF1_MAILBOX_MSGBUF_RCV_DW3
+#define BIF_BX_DEV0_EPF0_VF1_MAILBOX_MSGBUF_RCV_DW3__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF1_MAILBOX_MSGBUF_RCV_DW3__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF1_MAILBOX_CONTROL
+#define BIF_BX_DEV0_EPF0_VF1_MAILBOX_CONTROL__TRN_MSG_VALID__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF1_MAILBOX_CONTROL__TRN_MSG_ACK__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF1_MAILBOX_CONTROL__RCV_MSG_VALID__SHIFT 0x8
+#define BIF_BX_DEV0_EPF0_VF1_MAILBOX_CONTROL__RCV_MSG_ACK__SHIFT 0x9
+#define BIF_BX_DEV0_EPF0_VF1_MAILBOX_CONTROL__TRN_MSG_VALID_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF1_MAILBOX_CONTROL__TRN_MSG_ACK_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF1_MAILBOX_CONTROL__RCV_MSG_VALID_MASK 0x00000100L
+#define BIF_BX_DEV0_EPF0_VF1_MAILBOX_CONTROL__RCV_MSG_ACK_MASK 0x00000200L
+//BIF_BX_DEV0_EPF0_VF1_MAILBOX_INT_CNTL
+#define BIF_BX_DEV0_EPF0_VF1_MAILBOX_INT_CNTL__VALID_INT_EN__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF1_MAILBOX_INT_CNTL__ACK_INT_EN__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF1_MAILBOX_INT_CNTL__VALID_INT_EN_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF1_MAILBOX_INT_CNTL__ACK_INT_EN_MASK 0x00000002L
+//BIF_BX_DEV0_EPF0_VF1_BIF_VMHV_MAILBOX
+#define BIF_BX_DEV0_EPF0_VF1_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_ACK_INTR_EN__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF1_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_VALID_INTR_EN__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF1_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_DATA__SHIFT 0x8
+#define BIF_BX_DEV0_EPF0_VF1_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_VALID__SHIFT 0xf
+#define BIF_BX_DEV0_EPF0_VF1_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_DATA__SHIFT 0x10
+#define BIF_BX_DEV0_EPF0_VF1_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_VALID__SHIFT 0x17
+#define BIF_BX_DEV0_EPF0_VF1_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_ACK__SHIFT 0x18
+#define BIF_BX_DEV0_EPF0_VF1_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_ACK__SHIFT 0x19
+#define BIF_BX_DEV0_EPF0_VF1_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_ACK_INTR_EN_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF1_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_VALID_INTR_EN_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF1_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_DATA_MASK 0x00000F00L
+#define BIF_BX_DEV0_EPF0_VF1_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_VALID_MASK 0x00008000L
+#define BIF_BX_DEV0_EPF0_VF1_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_DATA_MASK 0x000F0000L
+#define BIF_BX_DEV0_EPF0_VF1_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_VALID_MASK 0x00800000L
+#define BIF_BX_DEV0_EPF0_VF1_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_ACK_MASK 0x01000000L
+#define BIF_BX_DEV0_EPF0_VF1_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_ACK_MASK 0x02000000L
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_dev0_epf0_vf1_SYSPFVFDEC
+//BIF_BX_DEV0_EPF0_VF1_MM_INDEX
+#define BIF_BX_DEV0_EPF0_VF1_MM_INDEX__MM_OFFSET__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF1_MM_INDEX__MM_APER__SHIFT 0x1f
+#define BIF_BX_DEV0_EPF0_VF1_MM_INDEX__MM_OFFSET_MASK 0x7FFFFFFFL
+#define BIF_BX_DEV0_EPF0_VF1_MM_INDEX__MM_APER_MASK 0x80000000L
+//BIF_BX_DEV0_EPF0_VF1_MM_DATA
+#define BIF_BX_DEV0_EPF0_VF1_MM_DATA__MM_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF1_MM_DATA__MM_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF1_MM_INDEX_HI
+#define BIF_BX_DEV0_EPF0_VF1_MM_INDEX_HI__MM_OFFSET_HI__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF1_MM_INDEX_HI__MM_OFFSET_HI_MASK 0xFFFFFFFFL
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dev0_epf0_vf1_BIFPFVFDEC1
+//RCC_DEV0_EPF0_VF1_RCC_ERR_LOG
+#define RCC_DEV0_EPF0_VF1_RCC_ERR_LOG__INVALID_REG_ACCESS_IN_SRIOV_STATUS__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF1_RCC_ERR_LOG__DOORBELL_READ_ACCESS_STATUS__SHIFT 0x1
+#define RCC_DEV0_EPF0_VF1_RCC_ERR_LOG__INVALID_REG_ACCESS_IN_SRIOV_STATUS_MASK 0x00000001L
+#define RCC_DEV0_EPF0_VF1_RCC_ERR_LOG__DOORBELL_READ_ACCESS_STATUS_MASK 0x00000002L
+//RCC_DEV0_EPF0_VF1_RCC_DOORBELL_APER_EN
+#define RCC_DEV0_EPF0_VF1_RCC_DOORBELL_APER_EN__BIF_DOORBELL_APER_EN__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF1_RCC_DOORBELL_APER_EN__BIF_DOORBELL_APER_EN_MASK 0x00000001L
+//RCC_DEV0_EPF0_VF1_RCC_CONFIG_MEMSIZE
+#define RCC_DEV0_EPF0_VF1_RCC_CONFIG_MEMSIZE__CONFIG_MEMSIZE__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF1_RCC_CONFIG_MEMSIZE__CONFIG_MEMSIZE_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF1_RCC_CONFIG_RESERVED
+#define RCC_DEV0_EPF0_VF1_RCC_CONFIG_RESERVED__CONFIG_RESERVED__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF1_RCC_CONFIG_RESERVED__CONFIG_RESERVED_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF1_RCC_IOV_FUNC_IDENTIFIER
+#define RCC_DEV0_EPF0_VF1_RCC_IOV_FUNC_IDENTIFIER__FUNC_IDENTIFIER__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF1_RCC_IOV_FUNC_IDENTIFIER__IOV_ENABLE__SHIFT 0x1f
+#define RCC_DEV0_EPF0_VF1_RCC_IOV_FUNC_IDENTIFIER__FUNC_IDENTIFIER_MASK 0x00000001L
+#define RCC_DEV0_EPF0_VF1_RCC_IOV_FUNC_IDENTIFIER__IOV_ENABLE_MASK 0x80000000L
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dev0_epf0_vf1_BIFDEC2
+//RCC_DEV0_EPF0_VF1_GFXMSIX_VECT0_ADDR_LO
+#define RCC_DEV0_EPF0_VF1_GFXMSIX_VECT0_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define RCC_DEV0_EPF0_VF1_GFXMSIX_VECT0_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//RCC_DEV0_EPF0_VF1_GFXMSIX_VECT0_ADDR_HI
+#define RCC_DEV0_EPF0_VF1_GFXMSIX_VECT0_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF1_GFXMSIX_VECT0_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF1_GFXMSIX_VECT0_MSG_DATA
+#define RCC_DEV0_EPF0_VF1_GFXMSIX_VECT0_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF1_GFXMSIX_VECT0_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF1_GFXMSIX_VECT0_CONTROL
+#define RCC_DEV0_EPF0_VF1_GFXMSIX_VECT0_CONTROL__MASK_BIT__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF1_GFXMSIX_VECT0_CONTROL__MASK_BIT_MASK 0x00000001L
+//RCC_DEV0_EPF0_VF1_GFXMSIX_VECT1_ADDR_LO
+#define RCC_DEV0_EPF0_VF1_GFXMSIX_VECT1_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define RCC_DEV0_EPF0_VF1_GFXMSIX_VECT1_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//RCC_DEV0_EPF0_VF1_GFXMSIX_VECT1_ADDR_HI
+#define RCC_DEV0_EPF0_VF1_GFXMSIX_VECT1_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF1_GFXMSIX_VECT1_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF1_GFXMSIX_VECT1_MSG_DATA
+#define RCC_DEV0_EPF0_VF1_GFXMSIX_VECT1_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF1_GFXMSIX_VECT1_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF1_GFXMSIX_VECT1_CONTROL
+#define RCC_DEV0_EPF0_VF1_GFXMSIX_VECT1_CONTROL__MASK_BIT__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF1_GFXMSIX_VECT1_CONTROL__MASK_BIT_MASK 0x00000001L
+//RCC_DEV0_EPF0_VF1_GFXMSIX_VECT2_ADDR_LO
+#define RCC_DEV0_EPF0_VF1_GFXMSIX_VECT2_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define RCC_DEV0_EPF0_VF1_GFXMSIX_VECT2_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//RCC_DEV0_EPF0_VF1_GFXMSIX_VECT2_ADDR_HI
+#define RCC_DEV0_EPF0_VF1_GFXMSIX_VECT2_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF1_GFXMSIX_VECT2_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF1_GFXMSIX_VECT2_MSG_DATA
+#define RCC_DEV0_EPF0_VF1_GFXMSIX_VECT2_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF1_GFXMSIX_VECT2_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF1_GFXMSIX_VECT2_CONTROL
+#define RCC_DEV0_EPF0_VF1_GFXMSIX_VECT2_CONTROL__MASK_BIT__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF1_GFXMSIX_VECT2_CONTROL__MASK_BIT_MASK 0x00000001L
+//RCC_DEV0_EPF0_VF1_GFXMSIX_VECT3_ADDR_LO
+#define RCC_DEV0_EPF0_VF1_GFXMSIX_VECT3_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define RCC_DEV0_EPF0_VF1_GFXMSIX_VECT3_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//RCC_DEV0_EPF0_VF1_GFXMSIX_VECT3_ADDR_HI
+#define RCC_DEV0_EPF0_VF1_GFXMSIX_VECT3_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF1_GFXMSIX_VECT3_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF1_GFXMSIX_VECT3_MSG_DATA
+#define RCC_DEV0_EPF0_VF1_GFXMSIX_VECT3_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF1_GFXMSIX_VECT3_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF1_GFXMSIX_VECT3_CONTROL
+#define RCC_DEV0_EPF0_VF1_GFXMSIX_VECT3_CONTROL__MASK_BIT__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF1_GFXMSIX_VECT3_CONTROL__MASK_BIT_MASK 0x00000001L
+//RCC_DEV0_EPF0_VF1_GFXMSIX_PBA
+#define RCC_DEV0_EPF0_VF1_GFXMSIX_PBA__MSIX_PENDING_BITS_0__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF1_GFXMSIX_PBA__MSIX_PENDING_BITS_1__SHIFT 0x1
+#define RCC_DEV0_EPF0_VF1_GFXMSIX_PBA__MSIX_PENDING_BITS_0_MASK 0x00000001L
+#define RCC_DEV0_EPF0_VF1_GFXMSIX_PBA__MSIX_PENDING_BITS_1_MASK 0x00000002L
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_dev0_epf0_vf2_BIFPFVFDEC1
+//BIF_BX_DEV0_EPF0_VF2_BIF_BME_STATUS
+#define BIF_BX_DEV0_EPF0_VF2_BIF_BME_STATUS__DMA_ON_BME_LOW__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF2_BIF_BME_STATUS__CLEAR_DMA_ON_BME_LOW__SHIFT 0x10
+#define BIF_BX_DEV0_EPF0_VF2_BIF_BME_STATUS__DMA_ON_BME_LOW_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF2_BIF_BME_STATUS__CLEAR_DMA_ON_BME_LOW_MASK 0x00010000L
+//BIF_BX_DEV0_EPF0_VF2_BIF_ATOMIC_ERR_LOG
+#define BIF_BX_DEV0_EPF0_VF2_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_OPCODE__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF2_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_REQEN_LOW__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF2_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_LENGTH__SHIFT 0x2
+#define BIF_BX_DEV0_EPF0_VF2_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_NR__SHIFT 0x3
+#define BIF_BX_DEV0_EPF0_VF2_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_OPCODE__SHIFT 0x10
+#define BIF_BX_DEV0_EPF0_VF2_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_REQEN_LOW__SHIFT 0x11
+#define BIF_BX_DEV0_EPF0_VF2_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_LENGTH__SHIFT 0x12
+#define BIF_BX_DEV0_EPF0_VF2_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_NR__SHIFT 0x13
+#define BIF_BX_DEV0_EPF0_VF2_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_OPCODE_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF2_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_REQEN_LOW_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF2_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_LENGTH_MASK 0x00000004L
+#define BIF_BX_DEV0_EPF0_VF2_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_NR_MASK 0x00000008L
+#define BIF_BX_DEV0_EPF0_VF2_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_OPCODE_MASK 0x00010000L
+#define BIF_BX_DEV0_EPF0_VF2_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_REQEN_LOW_MASK 0x00020000L
+#define BIF_BX_DEV0_EPF0_VF2_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_LENGTH_MASK 0x00040000L
+#define BIF_BX_DEV0_EPF0_VF2_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_NR_MASK 0x00080000L
+//BIF_BX_DEV0_EPF0_VF2_DOORBELL_SELFRING_GPA_APER_BASE_HIGH
+#define BIF_BX_DEV0_EPF0_VF2_DOORBELL_SELFRING_GPA_APER_BASE_HIGH__DOORBELL_SELFRING_GPA_APER_BASE_HIGH__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF2_DOORBELL_SELFRING_GPA_APER_BASE_HIGH__DOORBELL_SELFRING_GPA_APER_BASE_HIGH_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF2_DOORBELL_SELFRING_GPA_APER_BASE_LOW
+#define BIF_BX_DEV0_EPF0_VF2_DOORBELL_SELFRING_GPA_APER_BASE_LOW__DOORBELL_SELFRING_GPA_APER_BASE_LOW__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF2_DOORBELL_SELFRING_GPA_APER_BASE_LOW__DOORBELL_SELFRING_GPA_APER_BASE_LOW_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF2_DOORBELL_SELFRING_GPA_APER_CNTL
+#define BIF_BX_DEV0_EPF0_VF2_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_EN__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF2_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_MODE__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF2_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_SIZE__SHIFT 0x8
+#define BIF_BX_DEV0_EPF0_VF2_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_EN_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF2_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_MODE_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF2_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_SIZE_MASK 0x000FFF00L
+//BIF_BX_DEV0_EPF0_VF2_HDP_REG_COHERENCY_FLUSH_CNTL
+#define BIF_BX_DEV0_EPF0_VF2_HDP_REG_COHERENCY_FLUSH_CNTL__HDP_REG_FLUSH_ADDR__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF2_HDP_REG_COHERENCY_FLUSH_CNTL__HDP_REG_FLUSH_ADDR_MASK 0x00000001L
+//BIF_BX_DEV0_EPF0_VF2_HDP_MEM_COHERENCY_FLUSH_CNTL
+#define BIF_BX_DEV0_EPF0_VF2_HDP_MEM_COHERENCY_FLUSH_CNTL__HDP_MEM_FLUSH_ADDR__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF2_HDP_MEM_COHERENCY_FLUSH_CNTL__HDP_MEM_FLUSH_ADDR_MASK 0x00000001L
+//BIF_BX_DEV0_EPF0_VF2_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL
+#define BIF_BX_DEV0_EPF0_VF2_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL__HDP_MEM_FLUSH_ONLY_ADDR__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF2_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL__HDP_MEM_FLUSH_ONLY_ADDR_MASK 0x00000001L
+//BIF_BX_DEV0_EPF0_VF2_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL
+#define BIF_BX_DEV0_EPF0_VF2_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL__HDP_MEM_INVALIDATE_ONLY_ADDR__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF2_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL__HDP_MEM_INVALIDATE_ONLY_ADDR_MASK 0x00000001L
+//BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__CP0__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__CP1__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__CP2__SHIFT 0x2
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__CP3__SHIFT 0x3
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__CP4__SHIFT 0x4
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__CP5__SHIFT 0x5
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__CP6__SHIFT 0x6
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__CP7__SHIFT 0x7
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__CP8__SHIFT 0x8
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__CP9__SHIFT 0x9
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__SDMA0__SHIFT 0xa
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__SDMA1__SHIFT 0xb
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__RSVD_ENG0__SHIFT 0xc
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__RSVD_ENG1__SHIFT 0xd
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__RSVD_ENG2__SHIFT 0xe
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__RSVD_ENG3__SHIFT 0xf
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__RSVD_ENG4__SHIFT 0x10
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__RSVD_ENG5__SHIFT 0x11
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__RSVD_ENG6__SHIFT 0x12
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__RSVD_ENG7__SHIFT 0x13
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__RSVD_ENG8__SHIFT 0x14
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__RSVD_ENG9__SHIFT 0x15
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__RSVD_ENG10__SHIFT 0x16
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__RSVD_ENG11__SHIFT 0x17
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__RSVD_ENG12__SHIFT 0x18
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__RSVD_ENG13__SHIFT 0x19
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__RSVD_ENG14__SHIFT 0x1a
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__RSVD_ENG15__SHIFT 0x1b
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__RSVD_ENG16__SHIFT 0x1c
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__RSVD_ENG17__SHIFT 0x1d
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__RSVD_ENG18__SHIFT 0x1e
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__RSVD_ENG19__SHIFT 0x1f
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__CP0_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__CP1_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__CP2_MASK 0x00000004L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__CP3_MASK 0x00000008L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__CP4_MASK 0x00000010L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__CP5_MASK 0x00000020L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__CP6_MASK 0x00000040L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__CP7_MASK 0x00000080L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__CP8_MASK 0x00000100L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__CP9_MASK 0x00000200L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__SDMA0_MASK 0x00000400L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__SDMA1_MASK 0x00000800L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__RSVD_ENG0_MASK 0x00001000L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__RSVD_ENG1_MASK 0x00002000L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__RSVD_ENG2_MASK 0x00004000L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__RSVD_ENG3_MASK 0x00008000L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__RSVD_ENG4_MASK 0x00010000L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__RSVD_ENG5_MASK 0x00020000L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__RSVD_ENG6_MASK 0x00040000L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__RSVD_ENG7_MASK 0x00080000L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__RSVD_ENG8_MASK 0x00100000L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__RSVD_ENG9_MASK 0x00200000L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__RSVD_ENG10_MASK 0x00400000L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__RSVD_ENG11_MASK 0x00800000L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__RSVD_ENG12_MASK 0x01000000L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__RSVD_ENG13_MASK 0x02000000L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__RSVD_ENG14_MASK 0x04000000L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__RSVD_ENG15_MASK 0x08000000L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__RSVD_ENG16_MASK 0x10000000L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__RSVD_ENG17_MASK 0x20000000L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__RSVD_ENG18_MASK 0x40000000L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_REQ__RSVD_ENG19_MASK 0x80000000L
+//BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__CP0__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__CP1__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__CP2__SHIFT 0x2
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__CP3__SHIFT 0x3
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__CP4__SHIFT 0x4
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__CP5__SHIFT 0x5
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__CP6__SHIFT 0x6
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__CP7__SHIFT 0x7
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__CP8__SHIFT 0x8
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__CP9__SHIFT 0x9
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__SDMA0__SHIFT 0xa
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__SDMA1__SHIFT 0xb
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__RSVD_ENG0__SHIFT 0xc
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__RSVD_ENG1__SHIFT 0xd
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__RSVD_ENG2__SHIFT 0xe
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__RSVD_ENG3__SHIFT 0xf
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__RSVD_ENG4__SHIFT 0x10
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__RSVD_ENG5__SHIFT 0x11
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__RSVD_ENG6__SHIFT 0x12
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__RSVD_ENG7__SHIFT 0x13
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__RSVD_ENG8__SHIFT 0x14
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__RSVD_ENG9__SHIFT 0x15
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__RSVD_ENG10__SHIFT 0x16
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__RSVD_ENG11__SHIFT 0x17
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__RSVD_ENG12__SHIFT 0x18
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__RSVD_ENG13__SHIFT 0x19
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__RSVD_ENG14__SHIFT 0x1a
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__RSVD_ENG15__SHIFT 0x1b
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__RSVD_ENG16__SHIFT 0x1c
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__RSVD_ENG17__SHIFT 0x1d
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__RSVD_ENG18__SHIFT 0x1e
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__RSVD_ENG19__SHIFT 0x1f
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__CP0_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__CP1_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__CP2_MASK 0x00000004L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__CP3_MASK 0x00000008L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__CP4_MASK 0x00000010L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__CP5_MASK 0x00000020L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__CP6_MASK 0x00000040L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__CP7_MASK 0x00000080L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__CP8_MASK 0x00000100L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__CP9_MASK 0x00000200L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__SDMA0_MASK 0x00000400L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__SDMA1_MASK 0x00000800L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__RSVD_ENG0_MASK 0x00001000L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__RSVD_ENG1_MASK 0x00002000L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__RSVD_ENG2_MASK 0x00004000L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__RSVD_ENG3_MASK 0x00008000L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__RSVD_ENG4_MASK 0x00010000L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__RSVD_ENG5_MASK 0x00020000L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__RSVD_ENG6_MASK 0x00040000L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__RSVD_ENG7_MASK 0x00080000L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__RSVD_ENG8_MASK 0x00100000L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__RSVD_ENG9_MASK 0x00200000L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__RSVD_ENG10_MASK 0x00400000L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__RSVD_ENG11_MASK 0x00800000L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__RSVD_ENG12_MASK 0x01000000L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__RSVD_ENG13_MASK 0x02000000L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__RSVD_ENG14_MASK 0x04000000L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__RSVD_ENG15_MASK 0x08000000L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__RSVD_ENG16_MASK 0x10000000L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__RSVD_ENG17_MASK 0x20000000L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__RSVD_ENG18_MASK 0x40000000L
+#define BIF_BX_DEV0_EPF0_VF2_GPU_HDP_FLUSH_DONE__RSVD_ENG19_MASK 0x80000000L
+//BIF_BX_DEV0_EPF0_VF2_BIF_TRANS_PENDING
+#define BIF_BX_DEV0_EPF0_VF2_BIF_TRANS_PENDING__BIF_MST_TRANS_PENDING__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF2_BIF_TRANS_PENDING__BIF_SLV_TRANS_PENDING__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF2_BIF_TRANS_PENDING__BIF_MST_TRANS_PENDING_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF2_BIF_TRANS_PENDING__BIF_SLV_TRANS_PENDING_MASK 0x00000002L
+//BIF_BX_DEV0_EPF0_VF2_NBIF_GFX_ADDR_LUT_BYPASS
+#define BIF_BX_DEV0_EPF0_VF2_NBIF_GFX_ADDR_LUT_BYPASS__LUT_BYPASS__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF2_NBIF_GFX_ADDR_LUT_BYPASS__LUT_BYPASS_MASK 0x00000001L
+//BIF_BX_DEV0_EPF0_VF2_MAILBOX_MSGBUF_TRN_DW0
+#define BIF_BX_DEV0_EPF0_VF2_MAILBOX_MSGBUF_TRN_DW0__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF2_MAILBOX_MSGBUF_TRN_DW0__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF2_MAILBOX_MSGBUF_TRN_DW1
+#define BIF_BX_DEV0_EPF0_VF2_MAILBOX_MSGBUF_TRN_DW1__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF2_MAILBOX_MSGBUF_TRN_DW1__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF2_MAILBOX_MSGBUF_TRN_DW2
+#define BIF_BX_DEV0_EPF0_VF2_MAILBOX_MSGBUF_TRN_DW2__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF2_MAILBOX_MSGBUF_TRN_DW2__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF2_MAILBOX_MSGBUF_TRN_DW3
+#define BIF_BX_DEV0_EPF0_VF2_MAILBOX_MSGBUF_TRN_DW3__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF2_MAILBOX_MSGBUF_TRN_DW3__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF2_MAILBOX_MSGBUF_RCV_DW0
+#define BIF_BX_DEV0_EPF0_VF2_MAILBOX_MSGBUF_RCV_DW0__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF2_MAILBOX_MSGBUF_RCV_DW0__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF2_MAILBOX_MSGBUF_RCV_DW1
+#define BIF_BX_DEV0_EPF0_VF2_MAILBOX_MSGBUF_RCV_DW1__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF2_MAILBOX_MSGBUF_RCV_DW1__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF2_MAILBOX_MSGBUF_RCV_DW2
+#define BIF_BX_DEV0_EPF0_VF2_MAILBOX_MSGBUF_RCV_DW2__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF2_MAILBOX_MSGBUF_RCV_DW2__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF2_MAILBOX_MSGBUF_RCV_DW3
+#define BIF_BX_DEV0_EPF0_VF2_MAILBOX_MSGBUF_RCV_DW3__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF2_MAILBOX_MSGBUF_RCV_DW3__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF2_MAILBOX_CONTROL
+#define BIF_BX_DEV0_EPF0_VF2_MAILBOX_CONTROL__TRN_MSG_VALID__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF2_MAILBOX_CONTROL__TRN_MSG_ACK__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF2_MAILBOX_CONTROL__RCV_MSG_VALID__SHIFT 0x8
+#define BIF_BX_DEV0_EPF0_VF2_MAILBOX_CONTROL__RCV_MSG_ACK__SHIFT 0x9
+#define BIF_BX_DEV0_EPF0_VF2_MAILBOX_CONTROL__TRN_MSG_VALID_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF2_MAILBOX_CONTROL__TRN_MSG_ACK_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF2_MAILBOX_CONTROL__RCV_MSG_VALID_MASK 0x00000100L
+#define BIF_BX_DEV0_EPF0_VF2_MAILBOX_CONTROL__RCV_MSG_ACK_MASK 0x00000200L
+//BIF_BX_DEV0_EPF0_VF2_MAILBOX_INT_CNTL
+#define BIF_BX_DEV0_EPF0_VF2_MAILBOX_INT_CNTL__VALID_INT_EN__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF2_MAILBOX_INT_CNTL__ACK_INT_EN__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF2_MAILBOX_INT_CNTL__VALID_INT_EN_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF2_MAILBOX_INT_CNTL__ACK_INT_EN_MASK 0x00000002L
+//BIF_BX_DEV0_EPF0_VF2_BIF_VMHV_MAILBOX
+#define BIF_BX_DEV0_EPF0_VF2_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_ACK_INTR_EN__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF2_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_VALID_INTR_EN__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF2_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_DATA__SHIFT 0x8
+#define BIF_BX_DEV0_EPF0_VF2_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_VALID__SHIFT 0xf
+#define BIF_BX_DEV0_EPF0_VF2_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_DATA__SHIFT 0x10
+#define BIF_BX_DEV0_EPF0_VF2_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_VALID__SHIFT 0x17
+#define BIF_BX_DEV0_EPF0_VF2_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_ACK__SHIFT 0x18
+#define BIF_BX_DEV0_EPF0_VF2_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_ACK__SHIFT 0x19
+#define BIF_BX_DEV0_EPF0_VF2_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_ACK_INTR_EN_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF2_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_VALID_INTR_EN_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF2_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_DATA_MASK 0x00000F00L
+#define BIF_BX_DEV0_EPF0_VF2_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_VALID_MASK 0x00008000L
+#define BIF_BX_DEV0_EPF0_VF2_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_DATA_MASK 0x000F0000L
+#define BIF_BX_DEV0_EPF0_VF2_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_VALID_MASK 0x00800000L
+#define BIF_BX_DEV0_EPF0_VF2_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_ACK_MASK 0x01000000L
+#define BIF_BX_DEV0_EPF0_VF2_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_ACK_MASK 0x02000000L
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_dev0_epf0_vf2_SYSPFVFDEC
+//BIF_BX_DEV0_EPF0_VF2_MM_INDEX
+#define BIF_BX_DEV0_EPF0_VF2_MM_INDEX__MM_OFFSET__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF2_MM_INDEX__MM_APER__SHIFT 0x1f
+#define BIF_BX_DEV0_EPF0_VF2_MM_INDEX__MM_OFFSET_MASK 0x7FFFFFFFL
+#define BIF_BX_DEV0_EPF0_VF2_MM_INDEX__MM_APER_MASK 0x80000000L
+//BIF_BX_DEV0_EPF0_VF2_MM_DATA
+#define BIF_BX_DEV0_EPF0_VF2_MM_DATA__MM_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF2_MM_DATA__MM_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF2_MM_INDEX_HI
+#define BIF_BX_DEV0_EPF0_VF2_MM_INDEX_HI__MM_OFFSET_HI__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF2_MM_INDEX_HI__MM_OFFSET_HI_MASK 0xFFFFFFFFL
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dev0_epf0_vf2_BIFPFVFDEC1
+//RCC_DEV0_EPF0_VF2_RCC_ERR_LOG
+#define RCC_DEV0_EPF0_VF2_RCC_ERR_LOG__INVALID_REG_ACCESS_IN_SRIOV_STATUS__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF2_RCC_ERR_LOG__DOORBELL_READ_ACCESS_STATUS__SHIFT 0x1
+#define RCC_DEV0_EPF0_VF2_RCC_ERR_LOG__INVALID_REG_ACCESS_IN_SRIOV_STATUS_MASK 0x00000001L
+#define RCC_DEV0_EPF0_VF2_RCC_ERR_LOG__DOORBELL_READ_ACCESS_STATUS_MASK 0x00000002L
+//RCC_DEV0_EPF0_VF2_RCC_DOORBELL_APER_EN
+#define RCC_DEV0_EPF0_VF2_RCC_DOORBELL_APER_EN__BIF_DOORBELL_APER_EN__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF2_RCC_DOORBELL_APER_EN__BIF_DOORBELL_APER_EN_MASK 0x00000001L
+//RCC_DEV0_EPF0_VF2_RCC_CONFIG_MEMSIZE
+#define RCC_DEV0_EPF0_VF2_RCC_CONFIG_MEMSIZE__CONFIG_MEMSIZE__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF2_RCC_CONFIG_MEMSIZE__CONFIG_MEMSIZE_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF2_RCC_CONFIG_RESERVED
+#define RCC_DEV0_EPF0_VF2_RCC_CONFIG_RESERVED__CONFIG_RESERVED__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF2_RCC_CONFIG_RESERVED__CONFIG_RESERVED_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF2_RCC_IOV_FUNC_IDENTIFIER
+#define RCC_DEV0_EPF0_VF2_RCC_IOV_FUNC_IDENTIFIER__FUNC_IDENTIFIER__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF2_RCC_IOV_FUNC_IDENTIFIER__IOV_ENABLE__SHIFT 0x1f
+#define RCC_DEV0_EPF0_VF2_RCC_IOV_FUNC_IDENTIFIER__FUNC_IDENTIFIER_MASK 0x00000001L
+#define RCC_DEV0_EPF0_VF2_RCC_IOV_FUNC_IDENTIFIER__IOV_ENABLE_MASK 0x80000000L
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dev0_epf0_vf2_BIFDEC2
+//RCC_DEV0_EPF0_VF2_GFXMSIX_VECT0_ADDR_LO
+#define RCC_DEV0_EPF0_VF2_GFXMSIX_VECT0_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define RCC_DEV0_EPF0_VF2_GFXMSIX_VECT0_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//RCC_DEV0_EPF0_VF2_GFXMSIX_VECT0_ADDR_HI
+#define RCC_DEV0_EPF0_VF2_GFXMSIX_VECT0_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF2_GFXMSIX_VECT0_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF2_GFXMSIX_VECT0_MSG_DATA
+#define RCC_DEV0_EPF0_VF2_GFXMSIX_VECT0_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF2_GFXMSIX_VECT0_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF2_GFXMSIX_VECT0_CONTROL
+#define RCC_DEV0_EPF0_VF2_GFXMSIX_VECT0_CONTROL__MASK_BIT__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF2_GFXMSIX_VECT0_CONTROL__MASK_BIT_MASK 0x00000001L
+//RCC_DEV0_EPF0_VF2_GFXMSIX_VECT1_ADDR_LO
+#define RCC_DEV0_EPF0_VF2_GFXMSIX_VECT1_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define RCC_DEV0_EPF0_VF2_GFXMSIX_VECT1_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//RCC_DEV0_EPF0_VF2_GFXMSIX_VECT1_ADDR_HI
+#define RCC_DEV0_EPF0_VF2_GFXMSIX_VECT1_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF2_GFXMSIX_VECT1_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF2_GFXMSIX_VECT1_MSG_DATA
+#define RCC_DEV0_EPF0_VF2_GFXMSIX_VECT1_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF2_GFXMSIX_VECT1_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF2_GFXMSIX_VECT1_CONTROL
+#define RCC_DEV0_EPF0_VF2_GFXMSIX_VECT1_CONTROL__MASK_BIT__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF2_GFXMSIX_VECT1_CONTROL__MASK_BIT_MASK 0x00000001L
+//RCC_DEV0_EPF0_VF2_GFXMSIX_VECT2_ADDR_LO
+#define RCC_DEV0_EPF0_VF2_GFXMSIX_VECT2_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define RCC_DEV0_EPF0_VF2_GFXMSIX_VECT2_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//RCC_DEV0_EPF0_VF2_GFXMSIX_VECT2_ADDR_HI
+#define RCC_DEV0_EPF0_VF2_GFXMSIX_VECT2_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF2_GFXMSIX_VECT2_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF2_GFXMSIX_VECT2_MSG_DATA
+#define RCC_DEV0_EPF0_VF2_GFXMSIX_VECT2_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF2_GFXMSIX_VECT2_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF2_GFXMSIX_VECT2_CONTROL
+#define RCC_DEV0_EPF0_VF2_GFXMSIX_VECT2_CONTROL__MASK_BIT__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF2_GFXMSIX_VECT2_CONTROL__MASK_BIT_MASK 0x00000001L
+//RCC_DEV0_EPF0_VF2_GFXMSIX_VECT3_ADDR_LO
+#define RCC_DEV0_EPF0_VF2_GFXMSIX_VECT3_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define RCC_DEV0_EPF0_VF2_GFXMSIX_VECT3_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//RCC_DEV0_EPF0_VF2_GFXMSIX_VECT3_ADDR_HI
+#define RCC_DEV0_EPF0_VF2_GFXMSIX_VECT3_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF2_GFXMSIX_VECT3_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF2_GFXMSIX_VECT3_MSG_DATA
+#define RCC_DEV0_EPF0_VF2_GFXMSIX_VECT3_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF2_GFXMSIX_VECT3_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF2_GFXMSIX_VECT3_CONTROL
+#define RCC_DEV0_EPF0_VF2_GFXMSIX_VECT3_CONTROL__MASK_BIT__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF2_GFXMSIX_VECT3_CONTROL__MASK_BIT_MASK 0x00000001L
+//RCC_DEV0_EPF0_VF2_GFXMSIX_PBA
+#define RCC_DEV0_EPF0_VF2_GFXMSIX_PBA__MSIX_PENDING_BITS_0__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF2_GFXMSIX_PBA__MSIX_PENDING_BITS_1__SHIFT 0x1
+#define RCC_DEV0_EPF0_VF2_GFXMSIX_PBA__MSIX_PENDING_BITS_0_MASK 0x00000001L
+#define RCC_DEV0_EPF0_VF2_GFXMSIX_PBA__MSIX_PENDING_BITS_1_MASK 0x00000002L
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_dev0_epf0_vf3_BIFPFVFDEC1
+//BIF_BX_DEV0_EPF0_VF3_BIF_BME_STATUS
+#define BIF_BX_DEV0_EPF0_VF3_BIF_BME_STATUS__DMA_ON_BME_LOW__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF3_BIF_BME_STATUS__CLEAR_DMA_ON_BME_LOW__SHIFT 0x10
+#define BIF_BX_DEV0_EPF0_VF3_BIF_BME_STATUS__DMA_ON_BME_LOW_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF3_BIF_BME_STATUS__CLEAR_DMA_ON_BME_LOW_MASK 0x00010000L
+//BIF_BX_DEV0_EPF0_VF3_BIF_ATOMIC_ERR_LOG
+#define BIF_BX_DEV0_EPF0_VF3_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_OPCODE__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF3_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_REQEN_LOW__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF3_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_LENGTH__SHIFT 0x2
+#define BIF_BX_DEV0_EPF0_VF3_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_NR__SHIFT 0x3
+#define BIF_BX_DEV0_EPF0_VF3_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_OPCODE__SHIFT 0x10
+#define BIF_BX_DEV0_EPF0_VF3_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_REQEN_LOW__SHIFT 0x11
+#define BIF_BX_DEV0_EPF0_VF3_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_LENGTH__SHIFT 0x12
+#define BIF_BX_DEV0_EPF0_VF3_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_NR__SHIFT 0x13
+#define BIF_BX_DEV0_EPF0_VF3_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_OPCODE_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF3_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_REQEN_LOW_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF3_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_LENGTH_MASK 0x00000004L
+#define BIF_BX_DEV0_EPF0_VF3_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_NR_MASK 0x00000008L
+#define BIF_BX_DEV0_EPF0_VF3_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_OPCODE_MASK 0x00010000L
+#define BIF_BX_DEV0_EPF0_VF3_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_REQEN_LOW_MASK 0x00020000L
+#define BIF_BX_DEV0_EPF0_VF3_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_LENGTH_MASK 0x00040000L
+#define BIF_BX_DEV0_EPF0_VF3_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_NR_MASK 0x00080000L
+//BIF_BX_DEV0_EPF0_VF3_DOORBELL_SELFRING_GPA_APER_BASE_HIGH
+#define BIF_BX_DEV0_EPF0_VF3_DOORBELL_SELFRING_GPA_APER_BASE_HIGH__DOORBELL_SELFRING_GPA_APER_BASE_HIGH__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF3_DOORBELL_SELFRING_GPA_APER_BASE_HIGH__DOORBELL_SELFRING_GPA_APER_BASE_HIGH_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF3_DOORBELL_SELFRING_GPA_APER_BASE_LOW
+#define BIF_BX_DEV0_EPF0_VF3_DOORBELL_SELFRING_GPA_APER_BASE_LOW__DOORBELL_SELFRING_GPA_APER_BASE_LOW__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF3_DOORBELL_SELFRING_GPA_APER_BASE_LOW__DOORBELL_SELFRING_GPA_APER_BASE_LOW_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF3_DOORBELL_SELFRING_GPA_APER_CNTL
+#define BIF_BX_DEV0_EPF0_VF3_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_EN__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF3_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_MODE__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF3_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_SIZE__SHIFT 0x8
+#define BIF_BX_DEV0_EPF0_VF3_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_EN_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF3_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_MODE_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF3_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_SIZE_MASK 0x000FFF00L
+//BIF_BX_DEV0_EPF0_VF3_HDP_REG_COHERENCY_FLUSH_CNTL
+#define BIF_BX_DEV0_EPF0_VF3_HDP_REG_COHERENCY_FLUSH_CNTL__HDP_REG_FLUSH_ADDR__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF3_HDP_REG_COHERENCY_FLUSH_CNTL__HDP_REG_FLUSH_ADDR_MASK 0x00000001L
+//BIF_BX_DEV0_EPF0_VF3_HDP_MEM_COHERENCY_FLUSH_CNTL
+#define BIF_BX_DEV0_EPF0_VF3_HDP_MEM_COHERENCY_FLUSH_CNTL__HDP_MEM_FLUSH_ADDR__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF3_HDP_MEM_COHERENCY_FLUSH_CNTL__HDP_MEM_FLUSH_ADDR_MASK 0x00000001L
+//BIF_BX_DEV0_EPF0_VF3_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL
+#define BIF_BX_DEV0_EPF0_VF3_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL__HDP_MEM_FLUSH_ONLY_ADDR__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF3_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL__HDP_MEM_FLUSH_ONLY_ADDR_MASK 0x00000001L
+//BIF_BX_DEV0_EPF0_VF3_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL
+#define BIF_BX_DEV0_EPF0_VF3_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL__HDP_MEM_INVALIDATE_ONLY_ADDR__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF3_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL__HDP_MEM_INVALIDATE_ONLY_ADDR_MASK 0x00000001L
+//BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__CP0__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__CP1__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__CP2__SHIFT 0x2
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__CP3__SHIFT 0x3
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__CP4__SHIFT 0x4
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__CP5__SHIFT 0x5
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__CP6__SHIFT 0x6
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__CP7__SHIFT 0x7
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__CP8__SHIFT 0x8
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__CP9__SHIFT 0x9
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__SDMA0__SHIFT 0xa
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__SDMA1__SHIFT 0xb
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__RSVD_ENG0__SHIFT 0xc
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__RSVD_ENG1__SHIFT 0xd
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__RSVD_ENG2__SHIFT 0xe
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__RSVD_ENG3__SHIFT 0xf
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__RSVD_ENG4__SHIFT 0x10
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__RSVD_ENG5__SHIFT 0x11
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__RSVD_ENG6__SHIFT 0x12
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__RSVD_ENG7__SHIFT 0x13
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__RSVD_ENG8__SHIFT 0x14
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__RSVD_ENG9__SHIFT 0x15
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__RSVD_ENG10__SHIFT 0x16
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__RSVD_ENG11__SHIFT 0x17
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__RSVD_ENG12__SHIFT 0x18
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__RSVD_ENG13__SHIFT 0x19
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__RSVD_ENG14__SHIFT 0x1a
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__RSVD_ENG15__SHIFT 0x1b
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__RSVD_ENG16__SHIFT 0x1c
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__RSVD_ENG17__SHIFT 0x1d
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__RSVD_ENG18__SHIFT 0x1e
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__RSVD_ENG19__SHIFT 0x1f
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__CP0_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__CP1_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__CP2_MASK 0x00000004L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__CP3_MASK 0x00000008L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__CP4_MASK 0x00000010L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__CP5_MASK 0x00000020L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__CP6_MASK 0x00000040L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__CP7_MASK 0x00000080L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__CP8_MASK 0x00000100L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__CP9_MASK 0x00000200L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__SDMA0_MASK 0x00000400L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__SDMA1_MASK 0x00000800L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__RSVD_ENG0_MASK 0x00001000L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__RSVD_ENG1_MASK 0x00002000L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__RSVD_ENG2_MASK 0x00004000L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__RSVD_ENG3_MASK 0x00008000L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__RSVD_ENG4_MASK 0x00010000L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__RSVD_ENG5_MASK 0x00020000L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__RSVD_ENG6_MASK 0x00040000L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__RSVD_ENG7_MASK 0x00080000L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__RSVD_ENG8_MASK 0x00100000L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__RSVD_ENG9_MASK 0x00200000L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__RSVD_ENG10_MASK 0x00400000L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__RSVD_ENG11_MASK 0x00800000L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__RSVD_ENG12_MASK 0x01000000L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__RSVD_ENG13_MASK 0x02000000L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__RSVD_ENG14_MASK 0x04000000L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__RSVD_ENG15_MASK 0x08000000L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__RSVD_ENG16_MASK 0x10000000L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__RSVD_ENG17_MASK 0x20000000L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__RSVD_ENG18_MASK 0x40000000L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_REQ__RSVD_ENG19_MASK 0x80000000L
+//BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__CP0__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__CP1__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__CP2__SHIFT 0x2
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__CP3__SHIFT 0x3
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__CP4__SHIFT 0x4
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__CP5__SHIFT 0x5
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__CP6__SHIFT 0x6
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__CP7__SHIFT 0x7
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__CP8__SHIFT 0x8
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__CP9__SHIFT 0x9
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__SDMA0__SHIFT 0xa
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__SDMA1__SHIFT 0xb
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__RSVD_ENG0__SHIFT 0xc
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__RSVD_ENG1__SHIFT 0xd
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__RSVD_ENG2__SHIFT 0xe
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__RSVD_ENG3__SHIFT 0xf
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__RSVD_ENG4__SHIFT 0x10
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__RSVD_ENG5__SHIFT 0x11
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__RSVD_ENG6__SHIFT 0x12
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__RSVD_ENG7__SHIFT 0x13
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__RSVD_ENG8__SHIFT 0x14
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__RSVD_ENG9__SHIFT 0x15
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__RSVD_ENG10__SHIFT 0x16
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__RSVD_ENG11__SHIFT 0x17
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__RSVD_ENG12__SHIFT 0x18
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__RSVD_ENG13__SHIFT 0x19
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__RSVD_ENG14__SHIFT 0x1a
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__RSVD_ENG15__SHIFT 0x1b
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__RSVD_ENG16__SHIFT 0x1c
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__RSVD_ENG17__SHIFT 0x1d
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__RSVD_ENG18__SHIFT 0x1e
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__RSVD_ENG19__SHIFT 0x1f
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__CP0_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__CP1_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__CP2_MASK 0x00000004L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__CP3_MASK 0x00000008L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__CP4_MASK 0x00000010L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__CP5_MASK 0x00000020L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__CP6_MASK 0x00000040L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__CP7_MASK 0x00000080L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__CP8_MASK 0x00000100L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__CP9_MASK 0x00000200L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__SDMA0_MASK 0x00000400L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__SDMA1_MASK 0x00000800L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__RSVD_ENG0_MASK 0x00001000L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__RSVD_ENG1_MASK 0x00002000L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__RSVD_ENG2_MASK 0x00004000L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__RSVD_ENG3_MASK 0x00008000L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__RSVD_ENG4_MASK 0x00010000L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__RSVD_ENG5_MASK 0x00020000L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__RSVD_ENG6_MASK 0x00040000L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__RSVD_ENG7_MASK 0x00080000L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__RSVD_ENG8_MASK 0x00100000L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__RSVD_ENG9_MASK 0x00200000L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__RSVD_ENG10_MASK 0x00400000L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__RSVD_ENG11_MASK 0x00800000L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__RSVD_ENG12_MASK 0x01000000L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__RSVD_ENG13_MASK 0x02000000L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__RSVD_ENG14_MASK 0x04000000L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__RSVD_ENG15_MASK 0x08000000L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__RSVD_ENG16_MASK 0x10000000L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__RSVD_ENG17_MASK 0x20000000L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__RSVD_ENG18_MASK 0x40000000L
+#define BIF_BX_DEV0_EPF0_VF3_GPU_HDP_FLUSH_DONE__RSVD_ENG19_MASK 0x80000000L
+//BIF_BX_DEV0_EPF0_VF3_BIF_TRANS_PENDING
+#define BIF_BX_DEV0_EPF0_VF3_BIF_TRANS_PENDING__BIF_MST_TRANS_PENDING__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF3_BIF_TRANS_PENDING__BIF_SLV_TRANS_PENDING__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF3_BIF_TRANS_PENDING__BIF_MST_TRANS_PENDING_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF3_BIF_TRANS_PENDING__BIF_SLV_TRANS_PENDING_MASK 0x00000002L
+//BIF_BX_DEV0_EPF0_VF3_NBIF_GFX_ADDR_LUT_BYPASS
+#define BIF_BX_DEV0_EPF0_VF3_NBIF_GFX_ADDR_LUT_BYPASS__LUT_BYPASS__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF3_NBIF_GFX_ADDR_LUT_BYPASS__LUT_BYPASS_MASK 0x00000001L
+//BIF_BX_DEV0_EPF0_VF3_MAILBOX_MSGBUF_TRN_DW0
+#define BIF_BX_DEV0_EPF0_VF3_MAILBOX_MSGBUF_TRN_DW0__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF3_MAILBOX_MSGBUF_TRN_DW0__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF3_MAILBOX_MSGBUF_TRN_DW1
+#define BIF_BX_DEV0_EPF0_VF3_MAILBOX_MSGBUF_TRN_DW1__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF3_MAILBOX_MSGBUF_TRN_DW1__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF3_MAILBOX_MSGBUF_TRN_DW2
+#define BIF_BX_DEV0_EPF0_VF3_MAILBOX_MSGBUF_TRN_DW2__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF3_MAILBOX_MSGBUF_TRN_DW2__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF3_MAILBOX_MSGBUF_TRN_DW3
+#define BIF_BX_DEV0_EPF0_VF3_MAILBOX_MSGBUF_TRN_DW3__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF3_MAILBOX_MSGBUF_TRN_DW3__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF3_MAILBOX_MSGBUF_RCV_DW0
+#define BIF_BX_DEV0_EPF0_VF3_MAILBOX_MSGBUF_RCV_DW0__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF3_MAILBOX_MSGBUF_RCV_DW0__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF3_MAILBOX_MSGBUF_RCV_DW1
+#define BIF_BX_DEV0_EPF0_VF3_MAILBOX_MSGBUF_RCV_DW1__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF3_MAILBOX_MSGBUF_RCV_DW1__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF3_MAILBOX_MSGBUF_RCV_DW2
+#define BIF_BX_DEV0_EPF0_VF3_MAILBOX_MSGBUF_RCV_DW2__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF3_MAILBOX_MSGBUF_RCV_DW2__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF3_MAILBOX_MSGBUF_RCV_DW3
+#define BIF_BX_DEV0_EPF0_VF3_MAILBOX_MSGBUF_RCV_DW3__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF3_MAILBOX_MSGBUF_RCV_DW3__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF3_MAILBOX_CONTROL
+#define BIF_BX_DEV0_EPF0_VF3_MAILBOX_CONTROL__TRN_MSG_VALID__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF3_MAILBOX_CONTROL__TRN_MSG_ACK__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF3_MAILBOX_CONTROL__RCV_MSG_VALID__SHIFT 0x8
+#define BIF_BX_DEV0_EPF0_VF3_MAILBOX_CONTROL__RCV_MSG_ACK__SHIFT 0x9
+#define BIF_BX_DEV0_EPF0_VF3_MAILBOX_CONTROL__TRN_MSG_VALID_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF3_MAILBOX_CONTROL__TRN_MSG_ACK_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF3_MAILBOX_CONTROL__RCV_MSG_VALID_MASK 0x00000100L
+#define BIF_BX_DEV0_EPF0_VF3_MAILBOX_CONTROL__RCV_MSG_ACK_MASK 0x00000200L
+//BIF_BX_DEV0_EPF0_VF3_MAILBOX_INT_CNTL
+#define BIF_BX_DEV0_EPF0_VF3_MAILBOX_INT_CNTL__VALID_INT_EN__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF3_MAILBOX_INT_CNTL__ACK_INT_EN__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF3_MAILBOX_INT_CNTL__VALID_INT_EN_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF3_MAILBOX_INT_CNTL__ACK_INT_EN_MASK 0x00000002L
+//BIF_BX_DEV0_EPF0_VF3_BIF_VMHV_MAILBOX
+#define BIF_BX_DEV0_EPF0_VF3_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_ACK_INTR_EN__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF3_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_VALID_INTR_EN__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF3_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_DATA__SHIFT 0x8
+#define BIF_BX_DEV0_EPF0_VF3_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_VALID__SHIFT 0xf
+#define BIF_BX_DEV0_EPF0_VF3_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_DATA__SHIFT 0x10
+#define BIF_BX_DEV0_EPF0_VF3_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_VALID__SHIFT 0x17
+#define BIF_BX_DEV0_EPF0_VF3_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_ACK__SHIFT 0x18
+#define BIF_BX_DEV0_EPF0_VF3_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_ACK__SHIFT 0x19
+#define BIF_BX_DEV0_EPF0_VF3_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_ACK_INTR_EN_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF3_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_VALID_INTR_EN_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF3_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_DATA_MASK 0x00000F00L
+#define BIF_BX_DEV0_EPF0_VF3_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_VALID_MASK 0x00008000L
+#define BIF_BX_DEV0_EPF0_VF3_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_DATA_MASK 0x000F0000L
+#define BIF_BX_DEV0_EPF0_VF3_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_VALID_MASK 0x00800000L
+#define BIF_BX_DEV0_EPF0_VF3_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_ACK_MASK 0x01000000L
+#define BIF_BX_DEV0_EPF0_VF3_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_ACK_MASK 0x02000000L
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_dev0_epf0_vf3_SYSPFVFDEC
+//BIF_BX_DEV0_EPF0_VF3_MM_INDEX
+#define BIF_BX_DEV0_EPF0_VF3_MM_INDEX__MM_OFFSET__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF3_MM_INDEX__MM_APER__SHIFT 0x1f
+#define BIF_BX_DEV0_EPF0_VF3_MM_INDEX__MM_OFFSET_MASK 0x7FFFFFFFL
+#define BIF_BX_DEV0_EPF0_VF3_MM_INDEX__MM_APER_MASK 0x80000000L
+//BIF_BX_DEV0_EPF0_VF3_MM_DATA
+#define BIF_BX_DEV0_EPF0_VF3_MM_DATA__MM_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF3_MM_DATA__MM_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF3_MM_INDEX_HI
+#define BIF_BX_DEV0_EPF0_VF3_MM_INDEX_HI__MM_OFFSET_HI__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF3_MM_INDEX_HI__MM_OFFSET_HI_MASK 0xFFFFFFFFL
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dev0_epf0_vf3_BIFPFVFDEC1
+//RCC_DEV0_EPF0_VF3_RCC_ERR_LOG
+#define RCC_DEV0_EPF0_VF3_RCC_ERR_LOG__INVALID_REG_ACCESS_IN_SRIOV_STATUS__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF3_RCC_ERR_LOG__DOORBELL_READ_ACCESS_STATUS__SHIFT 0x1
+#define RCC_DEV0_EPF0_VF3_RCC_ERR_LOG__INVALID_REG_ACCESS_IN_SRIOV_STATUS_MASK 0x00000001L
+#define RCC_DEV0_EPF0_VF3_RCC_ERR_LOG__DOORBELL_READ_ACCESS_STATUS_MASK 0x00000002L
+//RCC_DEV0_EPF0_VF3_RCC_DOORBELL_APER_EN
+#define RCC_DEV0_EPF0_VF3_RCC_DOORBELL_APER_EN__BIF_DOORBELL_APER_EN__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF3_RCC_DOORBELL_APER_EN__BIF_DOORBELL_APER_EN_MASK 0x00000001L
+//RCC_DEV0_EPF0_VF3_RCC_CONFIG_MEMSIZE
+#define RCC_DEV0_EPF0_VF3_RCC_CONFIG_MEMSIZE__CONFIG_MEMSIZE__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF3_RCC_CONFIG_MEMSIZE__CONFIG_MEMSIZE_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF3_RCC_CONFIG_RESERVED
+#define RCC_DEV0_EPF0_VF3_RCC_CONFIG_RESERVED__CONFIG_RESERVED__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF3_RCC_CONFIG_RESERVED__CONFIG_RESERVED_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF3_RCC_IOV_FUNC_IDENTIFIER
+#define RCC_DEV0_EPF0_VF3_RCC_IOV_FUNC_IDENTIFIER__FUNC_IDENTIFIER__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF3_RCC_IOV_FUNC_IDENTIFIER__IOV_ENABLE__SHIFT 0x1f
+#define RCC_DEV0_EPF0_VF3_RCC_IOV_FUNC_IDENTIFIER__FUNC_IDENTIFIER_MASK 0x00000001L
+#define RCC_DEV0_EPF0_VF3_RCC_IOV_FUNC_IDENTIFIER__IOV_ENABLE_MASK 0x80000000L
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dev0_epf0_vf3_BIFDEC2
+//RCC_DEV0_EPF0_VF3_GFXMSIX_VECT0_ADDR_LO
+#define RCC_DEV0_EPF0_VF3_GFXMSIX_VECT0_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define RCC_DEV0_EPF0_VF3_GFXMSIX_VECT0_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//RCC_DEV0_EPF0_VF3_GFXMSIX_VECT0_ADDR_HI
+#define RCC_DEV0_EPF0_VF3_GFXMSIX_VECT0_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF3_GFXMSIX_VECT0_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF3_GFXMSIX_VECT0_MSG_DATA
+#define RCC_DEV0_EPF0_VF3_GFXMSIX_VECT0_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF3_GFXMSIX_VECT0_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF3_GFXMSIX_VECT0_CONTROL
+#define RCC_DEV0_EPF0_VF3_GFXMSIX_VECT0_CONTROL__MASK_BIT__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF3_GFXMSIX_VECT0_CONTROL__MASK_BIT_MASK 0x00000001L
+//RCC_DEV0_EPF0_VF3_GFXMSIX_VECT1_ADDR_LO
+#define RCC_DEV0_EPF0_VF3_GFXMSIX_VECT1_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define RCC_DEV0_EPF0_VF3_GFXMSIX_VECT1_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//RCC_DEV0_EPF0_VF3_GFXMSIX_VECT1_ADDR_HI
+#define RCC_DEV0_EPF0_VF3_GFXMSIX_VECT1_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF3_GFXMSIX_VECT1_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF3_GFXMSIX_VECT1_MSG_DATA
+#define RCC_DEV0_EPF0_VF3_GFXMSIX_VECT1_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF3_GFXMSIX_VECT1_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF3_GFXMSIX_VECT1_CONTROL
+#define RCC_DEV0_EPF0_VF3_GFXMSIX_VECT1_CONTROL__MASK_BIT__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF3_GFXMSIX_VECT1_CONTROL__MASK_BIT_MASK 0x00000001L
+//RCC_DEV0_EPF0_VF3_GFXMSIX_VECT2_ADDR_LO
+#define RCC_DEV0_EPF0_VF3_GFXMSIX_VECT2_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define RCC_DEV0_EPF0_VF3_GFXMSIX_VECT2_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//RCC_DEV0_EPF0_VF3_GFXMSIX_VECT2_ADDR_HI
+#define RCC_DEV0_EPF0_VF3_GFXMSIX_VECT2_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF3_GFXMSIX_VECT2_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF3_GFXMSIX_VECT2_MSG_DATA
+#define RCC_DEV0_EPF0_VF3_GFXMSIX_VECT2_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF3_GFXMSIX_VECT2_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF3_GFXMSIX_VECT2_CONTROL
+#define RCC_DEV0_EPF0_VF3_GFXMSIX_VECT2_CONTROL__MASK_BIT__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF3_GFXMSIX_VECT2_CONTROL__MASK_BIT_MASK 0x00000001L
+//RCC_DEV0_EPF0_VF3_GFXMSIX_VECT3_ADDR_LO
+#define RCC_DEV0_EPF0_VF3_GFXMSIX_VECT3_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define RCC_DEV0_EPF0_VF3_GFXMSIX_VECT3_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//RCC_DEV0_EPF0_VF3_GFXMSIX_VECT3_ADDR_HI
+#define RCC_DEV0_EPF0_VF3_GFXMSIX_VECT3_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF3_GFXMSIX_VECT3_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF3_GFXMSIX_VECT3_MSG_DATA
+#define RCC_DEV0_EPF0_VF3_GFXMSIX_VECT3_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF3_GFXMSIX_VECT3_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF3_GFXMSIX_VECT3_CONTROL
+#define RCC_DEV0_EPF0_VF3_GFXMSIX_VECT3_CONTROL__MASK_BIT__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF3_GFXMSIX_VECT3_CONTROL__MASK_BIT_MASK 0x00000001L
+//RCC_DEV0_EPF0_VF3_GFXMSIX_PBA
+#define RCC_DEV0_EPF0_VF3_GFXMSIX_PBA__MSIX_PENDING_BITS_0__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF3_GFXMSIX_PBA__MSIX_PENDING_BITS_1__SHIFT 0x1
+#define RCC_DEV0_EPF0_VF3_GFXMSIX_PBA__MSIX_PENDING_BITS_0_MASK 0x00000001L
+#define RCC_DEV0_EPF0_VF3_GFXMSIX_PBA__MSIX_PENDING_BITS_1_MASK 0x00000002L
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_dev0_epf0_vf4_BIFPFVFDEC1
+//BIF_BX_DEV0_EPF0_VF4_BIF_BME_STATUS
+#define BIF_BX_DEV0_EPF0_VF4_BIF_BME_STATUS__DMA_ON_BME_LOW__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF4_BIF_BME_STATUS__CLEAR_DMA_ON_BME_LOW__SHIFT 0x10
+#define BIF_BX_DEV0_EPF0_VF4_BIF_BME_STATUS__DMA_ON_BME_LOW_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF4_BIF_BME_STATUS__CLEAR_DMA_ON_BME_LOW_MASK 0x00010000L
+//BIF_BX_DEV0_EPF0_VF4_BIF_ATOMIC_ERR_LOG
+#define BIF_BX_DEV0_EPF0_VF4_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_OPCODE__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF4_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_REQEN_LOW__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF4_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_LENGTH__SHIFT 0x2
+#define BIF_BX_DEV0_EPF0_VF4_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_NR__SHIFT 0x3
+#define BIF_BX_DEV0_EPF0_VF4_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_OPCODE__SHIFT 0x10
+#define BIF_BX_DEV0_EPF0_VF4_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_REQEN_LOW__SHIFT 0x11
+#define BIF_BX_DEV0_EPF0_VF4_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_LENGTH__SHIFT 0x12
+#define BIF_BX_DEV0_EPF0_VF4_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_NR__SHIFT 0x13
+#define BIF_BX_DEV0_EPF0_VF4_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_OPCODE_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF4_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_REQEN_LOW_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF4_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_LENGTH_MASK 0x00000004L
+#define BIF_BX_DEV0_EPF0_VF4_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_NR_MASK 0x00000008L
+#define BIF_BX_DEV0_EPF0_VF4_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_OPCODE_MASK 0x00010000L
+#define BIF_BX_DEV0_EPF0_VF4_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_REQEN_LOW_MASK 0x00020000L
+#define BIF_BX_DEV0_EPF0_VF4_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_LENGTH_MASK 0x00040000L
+#define BIF_BX_DEV0_EPF0_VF4_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_NR_MASK 0x00080000L
+//BIF_BX_DEV0_EPF0_VF4_DOORBELL_SELFRING_GPA_APER_BASE_HIGH
+#define BIF_BX_DEV0_EPF0_VF4_DOORBELL_SELFRING_GPA_APER_BASE_HIGH__DOORBELL_SELFRING_GPA_APER_BASE_HIGH__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF4_DOORBELL_SELFRING_GPA_APER_BASE_HIGH__DOORBELL_SELFRING_GPA_APER_BASE_HIGH_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF4_DOORBELL_SELFRING_GPA_APER_BASE_LOW
+#define BIF_BX_DEV0_EPF0_VF4_DOORBELL_SELFRING_GPA_APER_BASE_LOW__DOORBELL_SELFRING_GPA_APER_BASE_LOW__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF4_DOORBELL_SELFRING_GPA_APER_BASE_LOW__DOORBELL_SELFRING_GPA_APER_BASE_LOW_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF4_DOORBELL_SELFRING_GPA_APER_CNTL
+#define BIF_BX_DEV0_EPF0_VF4_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_EN__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF4_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_MODE__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF4_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_SIZE__SHIFT 0x8
+#define BIF_BX_DEV0_EPF0_VF4_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_EN_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF4_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_MODE_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF4_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_SIZE_MASK 0x000FFF00L
+//BIF_BX_DEV0_EPF0_VF4_HDP_REG_COHERENCY_FLUSH_CNTL
+#define BIF_BX_DEV0_EPF0_VF4_HDP_REG_COHERENCY_FLUSH_CNTL__HDP_REG_FLUSH_ADDR__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF4_HDP_REG_COHERENCY_FLUSH_CNTL__HDP_REG_FLUSH_ADDR_MASK 0x00000001L
+//BIF_BX_DEV0_EPF0_VF4_HDP_MEM_COHERENCY_FLUSH_CNTL
+#define BIF_BX_DEV0_EPF0_VF4_HDP_MEM_COHERENCY_FLUSH_CNTL__HDP_MEM_FLUSH_ADDR__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF4_HDP_MEM_COHERENCY_FLUSH_CNTL__HDP_MEM_FLUSH_ADDR_MASK 0x00000001L
+//BIF_BX_DEV0_EPF0_VF4_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL
+#define BIF_BX_DEV0_EPF0_VF4_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL__HDP_MEM_FLUSH_ONLY_ADDR__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF4_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL__HDP_MEM_FLUSH_ONLY_ADDR_MASK 0x00000001L
+//BIF_BX_DEV0_EPF0_VF4_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL
+#define BIF_BX_DEV0_EPF0_VF4_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL__HDP_MEM_INVALIDATE_ONLY_ADDR__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF4_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL__HDP_MEM_INVALIDATE_ONLY_ADDR_MASK 0x00000001L
+//BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__CP0__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__CP1__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__CP2__SHIFT 0x2
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__CP3__SHIFT 0x3
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__CP4__SHIFT 0x4
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__CP5__SHIFT 0x5
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__CP6__SHIFT 0x6
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__CP7__SHIFT 0x7
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__CP8__SHIFT 0x8
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__CP9__SHIFT 0x9
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__SDMA0__SHIFT 0xa
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__SDMA1__SHIFT 0xb
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__RSVD_ENG0__SHIFT 0xc
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__RSVD_ENG1__SHIFT 0xd
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__RSVD_ENG2__SHIFT 0xe
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__RSVD_ENG3__SHIFT 0xf
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__RSVD_ENG4__SHIFT 0x10
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__RSVD_ENG5__SHIFT 0x11
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__RSVD_ENG6__SHIFT 0x12
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__RSVD_ENG7__SHIFT 0x13
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__RSVD_ENG8__SHIFT 0x14
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__RSVD_ENG9__SHIFT 0x15
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__RSVD_ENG10__SHIFT 0x16
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__RSVD_ENG11__SHIFT 0x17
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__RSVD_ENG12__SHIFT 0x18
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__RSVD_ENG13__SHIFT 0x19
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__RSVD_ENG14__SHIFT 0x1a
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__RSVD_ENG15__SHIFT 0x1b
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__RSVD_ENG16__SHIFT 0x1c
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__RSVD_ENG17__SHIFT 0x1d
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__RSVD_ENG18__SHIFT 0x1e
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__RSVD_ENG19__SHIFT 0x1f
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__CP0_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__CP1_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__CP2_MASK 0x00000004L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__CP3_MASK 0x00000008L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__CP4_MASK 0x00000010L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__CP5_MASK 0x00000020L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__CP6_MASK 0x00000040L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__CP7_MASK 0x00000080L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__CP8_MASK 0x00000100L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__CP9_MASK 0x00000200L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__SDMA0_MASK 0x00000400L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__SDMA1_MASK 0x00000800L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__RSVD_ENG0_MASK 0x00001000L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__RSVD_ENG1_MASK 0x00002000L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__RSVD_ENG2_MASK 0x00004000L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__RSVD_ENG3_MASK 0x00008000L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__RSVD_ENG4_MASK 0x00010000L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__RSVD_ENG5_MASK 0x00020000L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__RSVD_ENG6_MASK 0x00040000L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__RSVD_ENG7_MASK 0x00080000L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__RSVD_ENG8_MASK 0x00100000L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__RSVD_ENG9_MASK 0x00200000L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__RSVD_ENG10_MASK 0x00400000L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__RSVD_ENG11_MASK 0x00800000L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__RSVD_ENG12_MASK 0x01000000L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__RSVD_ENG13_MASK 0x02000000L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__RSVD_ENG14_MASK 0x04000000L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__RSVD_ENG15_MASK 0x08000000L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__RSVD_ENG16_MASK 0x10000000L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__RSVD_ENG17_MASK 0x20000000L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__RSVD_ENG18_MASK 0x40000000L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_REQ__RSVD_ENG19_MASK 0x80000000L
+//BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__CP0__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__CP1__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__CP2__SHIFT 0x2
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__CP3__SHIFT 0x3
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__CP4__SHIFT 0x4
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__CP5__SHIFT 0x5
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__CP6__SHIFT 0x6
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__CP7__SHIFT 0x7
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__CP8__SHIFT 0x8
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__CP9__SHIFT 0x9
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__SDMA0__SHIFT 0xa
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__SDMA1__SHIFT 0xb
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__RSVD_ENG0__SHIFT 0xc
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__RSVD_ENG1__SHIFT 0xd
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__RSVD_ENG2__SHIFT 0xe
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__RSVD_ENG3__SHIFT 0xf
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__RSVD_ENG4__SHIFT 0x10
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__RSVD_ENG5__SHIFT 0x11
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__RSVD_ENG6__SHIFT 0x12
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__RSVD_ENG7__SHIFT 0x13
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__RSVD_ENG8__SHIFT 0x14
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__RSVD_ENG9__SHIFT 0x15
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__RSVD_ENG10__SHIFT 0x16
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__RSVD_ENG11__SHIFT 0x17
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__RSVD_ENG12__SHIFT 0x18
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__RSVD_ENG13__SHIFT 0x19
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__RSVD_ENG14__SHIFT 0x1a
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__RSVD_ENG15__SHIFT 0x1b
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__RSVD_ENG16__SHIFT 0x1c
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__RSVD_ENG17__SHIFT 0x1d
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__RSVD_ENG18__SHIFT 0x1e
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__RSVD_ENG19__SHIFT 0x1f
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__CP0_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__CP1_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__CP2_MASK 0x00000004L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__CP3_MASK 0x00000008L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__CP4_MASK 0x00000010L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__CP5_MASK 0x00000020L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__CP6_MASK 0x00000040L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__CP7_MASK 0x00000080L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__CP8_MASK 0x00000100L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__CP9_MASK 0x00000200L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__SDMA0_MASK 0x00000400L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__SDMA1_MASK 0x00000800L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__RSVD_ENG0_MASK 0x00001000L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__RSVD_ENG1_MASK 0x00002000L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__RSVD_ENG2_MASK 0x00004000L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__RSVD_ENG3_MASK 0x00008000L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__RSVD_ENG4_MASK 0x00010000L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__RSVD_ENG5_MASK 0x00020000L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__RSVD_ENG6_MASK 0x00040000L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__RSVD_ENG7_MASK 0x00080000L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__RSVD_ENG8_MASK 0x00100000L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__RSVD_ENG9_MASK 0x00200000L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__RSVD_ENG10_MASK 0x00400000L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__RSVD_ENG11_MASK 0x00800000L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__RSVD_ENG12_MASK 0x01000000L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__RSVD_ENG13_MASK 0x02000000L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__RSVD_ENG14_MASK 0x04000000L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__RSVD_ENG15_MASK 0x08000000L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__RSVD_ENG16_MASK 0x10000000L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__RSVD_ENG17_MASK 0x20000000L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__RSVD_ENG18_MASK 0x40000000L
+#define BIF_BX_DEV0_EPF0_VF4_GPU_HDP_FLUSH_DONE__RSVD_ENG19_MASK 0x80000000L
+//BIF_BX_DEV0_EPF0_VF4_BIF_TRANS_PENDING
+#define BIF_BX_DEV0_EPF0_VF4_BIF_TRANS_PENDING__BIF_MST_TRANS_PENDING__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF4_BIF_TRANS_PENDING__BIF_SLV_TRANS_PENDING__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF4_BIF_TRANS_PENDING__BIF_MST_TRANS_PENDING_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF4_BIF_TRANS_PENDING__BIF_SLV_TRANS_PENDING_MASK 0x00000002L
+//BIF_BX_DEV0_EPF0_VF4_NBIF_GFX_ADDR_LUT_BYPASS
+#define BIF_BX_DEV0_EPF0_VF4_NBIF_GFX_ADDR_LUT_BYPASS__LUT_BYPASS__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF4_NBIF_GFX_ADDR_LUT_BYPASS__LUT_BYPASS_MASK 0x00000001L
+//BIF_BX_DEV0_EPF0_VF4_MAILBOX_MSGBUF_TRN_DW0
+#define BIF_BX_DEV0_EPF0_VF4_MAILBOX_MSGBUF_TRN_DW0__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF4_MAILBOX_MSGBUF_TRN_DW0__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF4_MAILBOX_MSGBUF_TRN_DW1
+#define BIF_BX_DEV0_EPF0_VF4_MAILBOX_MSGBUF_TRN_DW1__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF4_MAILBOX_MSGBUF_TRN_DW1__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF4_MAILBOX_MSGBUF_TRN_DW2
+#define BIF_BX_DEV0_EPF0_VF4_MAILBOX_MSGBUF_TRN_DW2__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF4_MAILBOX_MSGBUF_TRN_DW2__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF4_MAILBOX_MSGBUF_TRN_DW3
+#define BIF_BX_DEV0_EPF0_VF4_MAILBOX_MSGBUF_TRN_DW3__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF4_MAILBOX_MSGBUF_TRN_DW3__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF4_MAILBOX_MSGBUF_RCV_DW0
+#define BIF_BX_DEV0_EPF0_VF4_MAILBOX_MSGBUF_RCV_DW0__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF4_MAILBOX_MSGBUF_RCV_DW0__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF4_MAILBOX_MSGBUF_RCV_DW1
+#define BIF_BX_DEV0_EPF0_VF4_MAILBOX_MSGBUF_RCV_DW1__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF4_MAILBOX_MSGBUF_RCV_DW1__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF4_MAILBOX_MSGBUF_RCV_DW2
+#define BIF_BX_DEV0_EPF0_VF4_MAILBOX_MSGBUF_RCV_DW2__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF4_MAILBOX_MSGBUF_RCV_DW2__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF4_MAILBOX_MSGBUF_RCV_DW3
+#define BIF_BX_DEV0_EPF0_VF4_MAILBOX_MSGBUF_RCV_DW3__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF4_MAILBOX_MSGBUF_RCV_DW3__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF4_MAILBOX_CONTROL
+#define BIF_BX_DEV0_EPF0_VF4_MAILBOX_CONTROL__TRN_MSG_VALID__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF4_MAILBOX_CONTROL__TRN_MSG_ACK__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF4_MAILBOX_CONTROL__RCV_MSG_VALID__SHIFT 0x8
+#define BIF_BX_DEV0_EPF0_VF4_MAILBOX_CONTROL__RCV_MSG_ACK__SHIFT 0x9
+#define BIF_BX_DEV0_EPF0_VF4_MAILBOX_CONTROL__TRN_MSG_VALID_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF4_MAILBOX_CONTROL__TRN_MSG_ACK_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF4_MAILBOX_CONTROL__RCV_MSG_VALID_MASK 0x00000100L
+#define BIF_BX_DEV0_EPF0_VF4_MAILBOX_CONTROL__RCV_MSG_ACK_MASK 0x00000200L
+//BIF_BX_DEV0_EPF0_VF4_MAILBOX_INT_CNTL
+#define BIF_BX_DEV0_EPF0_VF4_MAILBOX_INT_CNTL__VALID_INT_EN__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF4_MAILBOX_INT_CNTL__ACK_INT_EN__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF4_MAILBOX_INT_CNTL__VALID_INT_EN_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF4_MAILBOX_INT_CNTL__ACK_INT_EN_MASK 0x00000002L
+//BIF_BX_DEV0_EPF0_VF4_BIF_VMHV_MAILBOX
+#define BIF_BX_DEV0_EPF0_VF4_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_ACK_INTR_EN__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF4_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_VALID_INTR_EN__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF4_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_DATA__SHIFT 0x8
+#define BIF_BX_DEV0_EPF0_VF4_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_VALID__SHIFT 0xf
+#define BIF_BX_DEV0_EPF0_VF4_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_DATA__SHIFT 0x10
+#define BIF_BX_DEV0_EPF0_VF4_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_VALID__SHIFT 0x17
+#define BIF_BX_DEV0_EPF0_VF4_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_ACK__SHIFT 0x18
+#define BIF_BX_DEV0_EPF0_VF4_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_ACK__SHIFT 0x19
+#define BIF_BX_DEV0_EPF0_VF4_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_ACK_INTR_EN_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF4_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_VALID_INTR_EN_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF4_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_DATA_MASK 0x00000F00L
+#define BIF_BX_DEV0_EPF0_VF4_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_VALID_MASK 0x00008000L
+#define BIF_BX_DEV0_EPF0_VF4_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_DATA_MASK 0x000F0000L
+#define BIF_BX_DEV0_EPF0_VF4_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_VALID_MASK 0x00800000L
+#define BIF_BX_DEV0_EPF0_VF4_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_ACK_MASK 0x01000000L
+#define BIF_BX_DEV0_EPF0_VF4_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_ACK_MASK 0x02000000L
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_dev0_epf0_vf4_SYSPFVFDEC
+//BIF_BX_DEV0_EPF0_VF4_MM_INDEX
+#define BIF_BX_DEV0_EPF0_VF4_MM_INDEX__MM_OFFSET__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF4_MM_INDEX__MM_APER__SHIFT 0x1f
+#define BIF_BX_DEV0_EPF0_VF4_MM_INDEX__MM_OFFSET_MASK 0x7FFFFFFFL
+#define BIF_BX_DEV0_EPF0_VF4_MM_INDEX__MM_APER_MASK 0x80000000L
+//BIF_BX_DEV0_EPF0_VF4_MM_DATA
+#define BIF_BX_DEV0_EPF0_VF4_MM_DATA__MM_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF4_MM_DATA__MM_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF4_MM_INDEX_HI
+#define BIF_BX_DEV0_EPF0_VF4_MM_INDEX_HI__MM_OFFSET_HI__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF4_MM_INDEX_HI__MM_OFFSET_HI_MASK 0xFFFFFFFFL
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dev0_epf0_vf4_BIFPFVFDEC1
+//RCC_DEV0_EPF0_VF4_RCC_ERR_LOG
+#define RCC_DEV0_EPF0_VF4_RCC_ERR_LOG__INVALID_REG_ACCESS_IN_SRIOV_STATUS__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF4_RCC_ERR_LOG__DOORBELL_READ_ACCESS_STATUS__SHIFT 0x1
+#define RCC_DEV0_EPF0_VF4_RCC_ERR_LOG__INVALID_REG_ACCESS_IN_SRIOV_STATUS_MASK 0x00000001L
+#define RCC_DEV0_EPF0_VF4_RCC_ERR_LOG__DOORBELL_READ_ACCESS_STATUS_MASK 0x00000002L
+//RCC_DEV0_EPF0_VF4_RCC_DOORBELL_APER_EN
+#define RCC_DEV0_EPF0_VF4_RCC_DOORBELL_APER_EN__BIF_DOORBELL_APER_EN__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF4_RCC_DOORBELL_APER_EN__BIF_DOORBELL_APER_EN_MASK 0x00000001L
+//RCC_DEV0_EPF0_VF4_RCC_CONFIG_MEMSIZE
+#define RCC_DEV0_EPF0_VF4_RCC_CONFIG_MEMSIZE__CONFIG_MEMSIZE__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF4_RCC_CONFIG_MEMSIZE__CONFIG_MEMSIZE_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF4_RCC_CONFIG_RESERVED
+#define RCC_DEV0_EPF0_VF4_RCC_CONFIG_RESERVED__CONFIG_RESERVED__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF4_RCC_CONFIG_RESERVED__CONFIG_RESERVED_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF4_RCC_IOV_FUNC_IDENTIFIER
+#define RCC_DEV0_EPF0_VF4_RCC_IOV_FUNC_IDENTIFIER__FUNC_IDENTIFIER__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF4_RCC_IOV_FUNC_IDENTIFIER__IOV_ENABLE__SHIFT 0x1f
+#define RCC_DEV0_EPF0_VF4_RCC_IOV_FUNC_IDENTIFIER__FUNC_IDENTIFIER_MASK 0x00000001L
+#define RCC_DEV0_EPF0_VF4_RCC_IOV_FUNC_IDENTIFIER__IOV_ENABLE_MASK 0x80000000L
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dev0_epf0_vf4_BIFDEC2
+//RCC_DEV0_EPF0_VF4_GFXMSIX_VECT0_ADDR_LO
+#define RCC_DEV0_EPF0_VF4_GFXMSIX_VECT0_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define RCC_DEV0_EPF0_VF4_GFXMSIX_VECT0_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//RCC_DEV0_EPF0_VF4_GFXMSIX_VECT0_ADDR_HI
+#define RCC_DEV0_EPF0_VF4_GFXMSIX_VECT0_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF4_GFXMSIX_VECT0_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF4_GFXMSIX_VECT0_MSG_DATA
+#define RCC_DEV0_EPF0_VF4_GFXMSIX_VECT0_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF4_GFXMSIX_VECT0_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF4_GFXMSIX_VECT0_CONTROL
+#define RCC_DEV0_EPF0_VF4_GFXMSIX_VECT0_CONTROL__MASK_BIT__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF4_GFXMSIX_VECT0_CONTROL__MASK_BIT_MASK 0x00000001L
+//RCC_DEV0_EPF0_VF4_GFXMSIX_VECT1_ADDR_LO
+#define RCC_DEV0_EPF0_VF4_GFXMSIX_VECT1_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define RCC_DEV0_EPF0_VF4_GFXMSIX_VECT1_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//RCC_DEV0_EPF0_VF4_GFXMSIX_VECT1_ADDR_HI
+#define RCC_DEV0_EPF0_VF4_GFXMSIX_VECT1_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF4_GFXMSIX_VECT1_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF4_GFXMSIX_VECT1_MSG_DATA
+#define RCC_DEV0_EPF0_VF4_GFXMSIX_VECT1_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF4_GFXMSIX_VECT1_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF4_GFXMSIX_VECT1_CONTROL
+#define RCC_DEV0_EPF0_VF4_GFXMSIX_VECT1_CONTROL__MASK_BIT__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF4_GFXMSIX_VECT1_CONTROL__MASK_BIT_MASK 0x00000001L
+//RCC_DEV0_EPF0_VF4_GFXMSIX_VECT2_ADDR_LO
+#define RCC_DEV0_EPF0_VF4_GFXMSIX_VECT2_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define RCC_DEV0_EPF0_VF4_GFXMSIX_VECT2_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//RCC_DEV0_EPF0_VF4_GFXMSIX_VECT2_ADDR_HI
+#define RCC_DEV0_EPF0_VF4_GFXMSIX_VECT2_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF4_GFXMSIX_VECT2_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF4_GFXMSIX_VECT2_MSG_DATA
+#define RCC_DEV0_EPF0_VF4_GFXMSIX_VECT2_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF4_GFXMSIX_VECT2_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF4_GFXMSIX_VECT2_CONTROL
+#define RCC_DEV0_EPF0_VF4_GFXMSIX_VECT2_CONTROL__MASK_BIT__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF4_GFXMSIX_VECT2_CONTROL__MASK_BIT_MASK 0x00000001L
+//RCC_DEV0_EPF0_VF4_GFXMSIX_VECT3_ADDR_LO
+#define RCC_DEV0_EPF0_VF4_GFXMSIX_VECT3_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define RCC_DEV0_EPF0_VF4_GFXMSIX_VECT3_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//RCC_DEV0_EPF0_VF4_GFXMSIX_VECT3_ADDR_HI
+#define RCC_DEV0_EPF0_VF4_GFXMSIX_VECT3_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF4_GFXMSIX_VECT3_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF4_GFXMSIX_VECT3_MSG_DATA
+#define RCC_DEV0_EPF0_VF4_GFXMSIX_VECT3_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF4_GFXMSIX_VECT3_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF4_GFXMSIX_VECT3_CONTROL
+#define RCC_DEV0_EPF0_VF4_GFXMSIX_VECT3_CONTROL__MASK_BIT__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF4_GFXMSIX_VECT3_CONTROL__MASK_BIT_MASK 0x00000001L
+//RCC_DEV0_EPF0_VF4_GFXMSIX_PBA
+#define RCC_DEV0_EPF0_VF4_GFXMSIX_PBA__MSIX_PENDING_BITS_0__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF4_GFXMSIX_PBA__MSIX_PENDING_BITS_1__SHIFT 0x1
+#define RCC_DEV0_EPF0_VF4_GFXMSIX_PBA__MSIX_PENDING_BITS_0_MASK 0x00000001L
+#define RCC_DEV0_EPF0_VF4_GFXMSIX_PBA__MSIX_PENDING_BITS_1_MASK 0x00000002L
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_dev0_epf0_vf5_BIFPFVFDEC1
+//BIF_BX_DEV0_EPF0_VF5_BIF_BME_STATUS
+#define BIF_BX_DEV0_EPF0_VF5_BIF_BME_STATUS__DMA_ON_BME_LOW__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF5_BIF_BME_STATUS__CLEAR_DMA_ON_BME_LOW__SHIFT 0x10
+#define BIF_BX_DEV0_EPF0_VF5_BIF_BME_STATUS__DMA_ON_BME_LOW_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF5_BIF_BME_STATUS__CLEAR_DMA_ON_BME_LOW_MASK 0x00010000L
+//BIF_BX_DEV0_EPF0_VF5_BIF_ATOMIC_ERR_LOG
+#define BIF_BX_DEV0_EPF0_VF5_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_OPCODE__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF5_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_REQEN_LOW__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF5_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_LENGTH__SHIFT 0x2
+#define BIF_BX_DEV0_EPF0_VF5_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_NR__SHIFT 0x3
+#define BIF_BX_DEV0_EPF0_VF5_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_OPCODE__SHIFT 0x10
+#define BIF_BX_DEV0_EPF0_VF5_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_REQEN_LOW__SHIFT 0x11
+#define BIF_BX_DEV0_EPF0_VF5_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_LENGTH__SHIFT 0x12
+#define BIF_BX_DEV0_EPF0_VF5_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_NR__SHIFT 0x13
+#define BIF_BX_DEV0_EPF0_VF5_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_OPCODE_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF5_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_REQEN_LOW_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF5_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_LENGTH_MASK 0x00000004L
+#define BIF_BX_DEV0_EPF0_VF5_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_NR_MASK 0x00000008L
+#define BIF_BX_DEV0_EPF0_VF5_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_OPCODE_MASK 0x00010000L
+#define BIF_BX_DEV0_EPF0_VF5_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_REQEN_LOW_MASK 0x00020000L
+#define BIF_BX_DEV0_EPF0_VF5_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_LENGTH_MASK 0x00040000L
+#define BIF_BX_DEV0_EPF0_VF5_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_NR_MASK 0x00080000L
+//BIF_BX_DEV0_EPF0_VF5_DOORBELL_SELFRING_GPA_APER_BASE_HIGH
+#define BIF_BX_DEV0_EPF0_VF5_DOORBELL_SELFRING_GPA_APER_BASE_HIGH__DOORBELL_SELFRING_GPA_APER_BASE_HIGH__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF5_DOORBELL_SELFRING_GPA_APER_BASE_HIGH__DOORBELL_SELFRING_GPA_APER_BASE_HIGH_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF5_DOORBELL_SELFRING_GPA_APER_BASE_LOW
+#define BIF_BX_DEV0_EPF0_VF5_DOORBELL_SELFRING_GPA_APER_BASE_LOW__DOORBELL_SELFRING_GPA_APER_BASE_LOW__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF5_DOORBELL_SELFRING_GPA_APER_BASE_LOW__DOORBELL_SELFRING_GPA_APER_BASE_LOW_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF5_DOORBELL_SELFRING_GPA_APER_CNTL
+#define BIF_BX_DEV0_EPF0_VF5_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_EN__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF5_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_MODE__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF5_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_SIZE__SHIFT 0x8
+#define BIF_BX_DEV0_EPF0_VF5_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_EN_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF5_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_MODE_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF5_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_SIZE_MASK 0x000FFF00L
+//BIF_BX_DEV0_EPF0_VF5_HDP_REG_COHERENCY_FLUSH_CNTL
+#define BIF_BX_DEV0_EPF0_VF5_HDP_REG_COHERENCY_FLUSH_CNTL__HDP_REG_FLUSH_ADDR__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF5_HDP_REG_COHERENCY_FLUSH_CNTL__HDP_REG_FLUSH_ADDR_MASK 0x00000001L
+//BIF_BX_DEV0_EPF0_VF5_HDP_MEM_COHERENCY_FLUSH_CNTL
+#define BIF_BX_DEV0_EPF0_VF5_HDP_MEM_COHERENCY_FLUSH_CNTL__HDP_MEM_FLUSH_ADDR__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF5_HDP_MEM_COHERENCY_FLUSH_CNTL__HDP_MEM_FLUSH_ADDR_MASK 0x00000001L
+//BIF_BX_DEV0_EPF0_VF5_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL
+#define BIF_BX_DEV0_EPF0_VF5_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL__HDP_MEM_FLUSH_ONLY_ADDR__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF5_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL__HDP_MEM_FLUSH_ONLY_ADDR_MASK 0x00000001L
+//BIF_BX_DEV0_EPF0_VF5_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL
+#define BIF_BX_DEV0_EPF0_VF5_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL__HDP_MEM_INVALIDATE_ONLY_ADDR__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF5_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL__HDP_MEM_INVALIDATE_ONLY_ADDR_MASK 0x00000001L
+//BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__CP0__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__CP1__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__CP2__SHIFT 0x2
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__CP3__SHIFT 0x3
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__CP4__SHIFT 0x4
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__CP5__SHIFT 0x5
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__CP6__SHIFT 0x6
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__CP7__SHIFT 0x7
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__CP8__SHIFT 0x8
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__CP9__SHIFT 0x9
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__SDMA0__SHIFT 0xa
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__SDMA1__SHIFT 0xb
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__RSVD_ENG0__SHIFT 0xc
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__RSVD_ENG1__SHIFT 0xd
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__RSVD_ENG2__SHIFT 0xe
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__RSVD_ENG3__SHIFT 0xf
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__RSVD_ENG4__SHIFT 0x10
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__RSVD_ENG5__SHIFT 0x11
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__RSVD_ENG6__SHIFT 0x12
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__RSVD_ENG7__SHIFT 0x13
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__RSVD_ENG8__SHIFT 0x14
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__RSVD_ENG9__SHIFT 0x15
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__RSVD_ENG10__SHIFT 0x16
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__RSVD_ENG11__SHIFT 0x17
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__RSVD_ENG12__SHIFT 0x18
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__RSVD_ENG13__SHIFT 0x19
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__RSVD_ENG14__SHIFT 0x1a
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__RSVD_ENG15__SHIFT 0x1b
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__RSVD_ENG16__SHIFT 0x1c
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__RSVD_ENG17__SHIFT 0x1d
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__RSVD_ENG18__SHIFT 0x1e
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__RSVD_ENG19__SHIFT 0x1f
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__CP0_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__CP1_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__CP2_MASK 0x00000004L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__CP3_MASK 0x00000008L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__CP4_MASK 0x00000010L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__CP5_MASK 0x00000020L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__CP6_MASK 0x00000040L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__CP7_MASK 0x00000080L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__CP8_MASK 0x00000100L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__CP9_MASK 0x00000200L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__SDMA0_MASK 0x00000400L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__SDMA1_MASK 0x00000800L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__RSVD_ENG0_MASK 0x00001000L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__RSVD_ENG1_MASK 0x00002000L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__RSVD_ENG2_MASK 0x00004000L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__RSVD_ENG3_MASK 0x00008000L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__RSVD_ENG4_MASK 0x00010000L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__RSVD_ENG5_MASK 0x00020000L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__RSVD_ENG6_MASK 0x00040000L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__RSVD_ENG7_MASK 0x00080000L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__RSVD_ENG8_MASK 0x00100000L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__RSVD_ENG9_MASK 0x00200000L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__RSVD_ENG10_MASK 0x00400000L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__RSVD_ENG11_MASK 0x00800000L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__RSVD_ENG12_MASK 0x01000000L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__RSVD_ENG13_MASK 0x02000000L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__RSVD_ENG14_MASK 0x04000000L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__RSVD_ENG15_MASK 0x08000000L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__RSVD_ENG16_MASK 0x10000000L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__RSVD_ENG17_MASK 0x20000000L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__RSVD_ENG18_MASK 0x40000000L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_REQ__RSVD_ENG19_MASK 0x80000000L
+//BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__CP0__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__CP1__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__CP2__SHIFT 0x2
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__CP3__SHIFT 0x3
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__CP4__SHIFT 0x4
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__CP5__SHIFT 0x5
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__CP6__SHIFT 0x6
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__CP7__SHIFT 0x7
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__CP8__SHIFT 0x8
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__CP9__SHIFT 0x9
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__SDMA0__SHIFT 0xa
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__SDMA1__SHIFT 0xb
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__RSVD_ENG0__SHIFT 0xc
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__RSVD_ENG1__SHIFT 0xd
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__RSVD_ENG2__SHIFT 0xe
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__RSVD_ENG3__SHIFT 0xf
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__RSVD_ENG4__SHIFT 0x10
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__RSVD_ENG5__SHIFT 0x11
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__RSVD_ENG6__SHIFT 0x12
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__RSVD_ENG7__SHIFT 0x13
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__RSVD_ENG8__SHIFT 0x14
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__RSVD_ENG9__SHIFT 0x15
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__RSVD_ENG10__SHIFT 0x16
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__RSVD_ENG11__SHIFT 0x17
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__RSVD_ENG12__SHIFT 0x18
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__RSVD_ENG13__SHIFT 0x19
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__RSVD_ENG14__SHIFT 0x1a
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__RSVD_ENG15__SHIFT 0x1b
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__RSVD_ENG16__SHIFT 0x1c
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__RSVD_ENG17__SHIFT 0x1d
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__RSVD_ENG18__SHIFT 0x1e
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__RSVD_ENG19__SHIFT 0x1f
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__CP0_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__CP1_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__CP2_MASK 0x00000004L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__CP3_MASK 0x00000008L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__CP4_MASK 0x00000010L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__CP5_MASK 0x00000020L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__CP6_MASK 0x00000040L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__CP7_MASK 0x00000080L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__CP8_MASK 0x00000100L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__CP9_MASK 0x00000200L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__SDMA0_MASK 0x00000400L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__SDMA1_MASK 0x00000800L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__RSVD_ENG0_MASK 0x00001000L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__RSVD_ENG1_MASK 0x00002000L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__RSVD_ENG2_MASK 0x00004000L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__RSVD_ENG3_MASK 0x00008000L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__RSVD_ENG4_MASK 0x00010000L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__RSVD_ENG5_MASK 0x00020000L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__RSVD_ENG6_MASK 0x00040000L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__RSVD_ENG7_MASK 0x00080000L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__RSVD_ENG8_MASK 0x00100000L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__RSVD_ENG9_MASK 0x00200000L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__RSVD_ENG10_MASK 0x00400000L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__RSVD_ENG11_MASK 0x00800000L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__RSVD_ENG12_MASK 0x01000000L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__RSVD_ENG13_MASK 0x02000000L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__RSVD_ENG14_MASK 0x04000000L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__RSVD_ENG15_MASK 0x08000000L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__RSVD_ENG16_MASK 0x10000000L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__RSVD_ENG17_MASK 0x20000000L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__RSVD_ENG18_MASK 0x40000000L
+#define BIF_BX_DEV0_EPF0_VF5_GPU_HDP_FLUSH_DONE__RSVD_ENG19_MASK 0x80000000L
+//BIF_BX_DEV0_EPF0_VF5_BIF_TRANS_PENDING
+#define BIF_BX_DEV0_EPF0_VF5_BIF_TRANS_PENDING__BIF_MST_TRANS_PENDING__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF5_BIF_TRANS_PENDING__BIF_SLV_TRANS_PENDING__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF5_BIF_TRANS_PENDING__BIF_MST_TRANS_PENDING_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF5_BIF_TRANS_PENDING__BIF_SLV_TRANS_PENDING_MASK 0x00000002L
+//BIF_BX_DEV0_EPF0_VF5_NBIF_GFX_ADDR_LUT_BYPASS
+#define BIF_BX_DEV0_EPF0_VF5_NBIF_GFX_ADDR_LUT_BYPASS__LUT_BYPASS__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF5_NBIF_GFX_ADDR_LUT_BYPASS__LUT_BYPASS_MASK 0x00000001L
+//BIF_BX_DEV0_EPF0_VF5_MAILBOX_MSGBUF_TRN_DW0
+#define BIF_BX_DEV0_EPF0_VF5_MAILBOX_MSGBUF_TRN_DW0__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF5_MAILBOX_MSGBUF_TRN_DW0__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF5_MAILBOX_MSGBUF_TRN_DW1
+#define BIF_BX_DEV0_EPF0_VF5_MAILBOX_MSGBUF_TRN_DW1__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF5_MAILBOX_MSGBUF_TRN_DW1__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF5_MAILBOX_MSGBUF_TRN_DW2
+#define BIF_BX_DEV0_EPF0_VF5_MAILBOX_MSGBUF_TRN_DW2__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF5_MAILBOX_MSGBUF_TRN_DW2__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF5_MAILBOX_MSGBUF_TRN_DW3
+#define BIF_BX_DEV0_EPF0_VF5_MAILBOX_MSGBUF_TRN_DW3__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF5_MAILBOX_MSGBUF_TRN_DW3__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF5_MAILBOX_MSGBUF_RCV_DW0
+#define BIF_BX_DEV0_EPF0_VF5_MAILBOX_MSGBUF_RCV_DW0__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF5_MAILBOX_MSGBUF_RCV_DW0__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF5_MAILBOX_MSGBUF_RCV_DW1
+#define BIF_BX_DEV0_EPF0_VF5_MAILBOX_MSGBUF_RCV_DW1__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF5_MAILBOX_MSGBUF_RCV_DW1__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF5_MAILBOX_MSGBUF_RCV_DW2
+#define BIF_BX_DEV0_EPF0_VF5_MAILBOX_MSGBUF_RCV_DW2__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF5_MAILBOX_MSGBUF_RCV_DW2__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF5_MAILBOX_MSGBUF_RCV_DW3
+#define BIF_BX_DEV0_EPF0_VF5_MAILBOX_MSGBUF_RCV_DW3__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF5_MAILBOX_MSGBUF_RCV_DW3__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF5_MAILBOX_CONTROL
+#define BIF_BX_DEV0_EPF0_VF5_MAILBOX_CONTROL__TRN_MSG_VALID__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF5_MAILBOX_CONTROL__TRN_MSG_ACK__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF5_MAILBOX_CONTROL__RCV_MSG_VALID__SHIFT 0x8
+#define BIF_BX_DEV0_EPF0_VF5_MAILBOX_CONTROL__RCV_MSG_ACK__SHIFT 0x9
+#define BIF_BX_DEV0_EPF0_VF5_MAILBOX_CONTROL__TRN_MSG_VALID_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF5_MAILBOX_CONTROL__TRN_MSG_ACK_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF5_MAILBOX_CONTROL__RCV_MSG_VALID_MASK 0x00000100L
+#define BIF_BX_DEV0_EPF0_VF5_MAILBOX_CONTROL__RCV_MSG_ACK_MASK 0x00000200L
+//BIF_BX_DEV0_EPF0_VF5_MAILBOX_INT_CNTL
+#define BIF_BX_DEV0_EPF0_VF5_MAILBOX_INT_CNTL__VALID_INT_EN__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF5_MAILBOX_INT_CNTL__ACK_INT_EN__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF5_MAILBOX_INT_CNTL__VALID_INT_EN_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF5_MAILBOX_INT_CNTL__ACK_INT_EN_MASK 0x00000002L
+//BIF_BX_DEV0_EPF0_VF5_BIF_VMHV_MAILBOX
+#define BIF_BX_DEV0_EPF0_VF5_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_ACK_INTR_EN__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF5_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_VALID_INTR_EN__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF5_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_DATA__SHIFT 0x8
+#define BIF_BX_DEV0_EPF0_VF5_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_VALID__SHIFT 0xf
+#define BIF_BX_DEV0_EPF0_VF5_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_DATA__SHIFT 0x10
+#define BIF_BX_DEV0_EPF0_VF5_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_VALID__SHIFT 0x17
+#define BIF_BX_DEV0_EPF0_VF5_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_ACK__SHIFT 0x18
+#define BIF_BX_DEV0_EPF0_VF5_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_ACK__SHIFT 0x19
+#define BIF_BX_DEV0_EPF0_VF5_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_ACK_INTR_EN_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF5_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_VALID_INTR_EN_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF5_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_DATA_MASK 0x00000F00L
+#define BIF_BX_DEV0_EPF0_VF5_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_VALID_MASK 0x00008000L
+#define BIF_BX_DEV0_EPF0_VF5_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_DATA_MASK 0x000F0000L
+#define BIF_BX_DEV0_EPF0_VF5_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_VALID_MASK 0x00800000L
+#define BIF_BX_DEV0_EPF0_VF5_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_ACK_MASK 0x01000000L
+#define BIF_BX_DEV0_EPF0_VF5_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_ACK_MASK 0x02000000L
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_dev0_epf0_vf5_SYSPFVFDEC
+//BIF_BX_DEV0_EPF0_VF5_MM_INDEX
+#define BIF_BX_DEV0_EPF0_VF5_MM_INDEX__MM_OFFSET__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF5_MM_INDEX__MM_APER__SHIFT 0x1f
+#define BIF_BX_DEV0_EPF0_VF5_MM_INDEX__MM_OFFSET_MASK 0x7FFFFFFFL
+#define BIF_BX_DEV0_EPF0_VF5_MM_INDEX__MM_APER_MASK 0x80000000L
+//BIF_BX_DEV0_EPF0_VF5_MM_DATA
+#define BIF_BX_DEV0_EPF0_VF5_MM_DATA__MM_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF5_MM_DATA__MM_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF5_MM_INDEX_HI
+#define BIF_BX_DEV0_EPF0_VF5_MM_INDEX_HI__MM_OFFSET_HI__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF5_MM_INDEX_HI__MM_OFFSET_HI_MASK 0xFFFFFFFFL
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dev0_epf0_vf5_BIFPFVFDEC1
+//RCC_DEV0_EPF0_VF5_RCC_ERR_LOG
+#define RCC_DEV0_EPF0_VF5_RCC_ERR_LOG__INVALID_REG_ACCESS_IN_SRIOV_STATUS__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF5_RCC_ERR_LOG__DOORBELL_READ_ACCESS_STATUS__SHIFT 0x1
+#define RCC_DEV0_EPF0_VF5_RCC_ERR_LOG__INVALID_REG_ACCESS_IN_SRIOV_STATUS_MASK 0x00000001L
+#define RCC_DEV0_EPF0_VF5_RCC_ERR_LOG__DOORBELL_READ_ACCESS_STATUS_MASK 0x00000002L
+//RCC_DEV0_EPF0_VF5_RCC_DOORBELL_APER_EN
+#define RCC_DEV0_EPF0_VF5_RCC_DOORBELL_APER_EN__BIF_DOORBELL_APER_EN__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF5_RCC_DOORBELL_APER_EN__BIF_DOORBELL_APER_EN_MASK 0x00000001L
+//RCC_DEV0_EPF0_VF5_RCC_CONFIG_MEMSIZE
+#define RCC_DEV0_EPF0_VF5_RCC_CONFIG_MEMSIZE__CONFIG_MEMSIZE__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF5_RCC_CONFIG_MEMSIZE__CONFIG_MEMSIZE_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF5_RCC_CONFIG_RESERVED
+#define RCC_DEV0_EPF0_VF5_RCC_CONFIG_RESERVED__CONFIG_RESERVED__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF5_RCC_CONFIG_RESERVED__CONFIG_RESERVED_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF5_RCC_IOV_FUNC_IDENTIFIER
+#define RCC_DEV0_EPF0_VF5_RCC_IOV_FUNC_IDENTIFIER__FUNC_IDENTIFIER__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF5_RCC_IOV_FUNC_IDENTIFIER__IOV_ENABLE__SHIFT 0x1f
+#define RCC_DEV0_EPF0_VF5_RCC_IOV_FUNC_IDENTIFIER__FUNC_IDENTIFIER_MASK 0x00000001L
+#define RCC_DEV0_EPF0_VF5_RCC_IOV_FUNC_IDENTIFIER__IOV_ENABLE_MASK 0x80000000L
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dev0_epf0_vf5_BIFDEC2
+//RCC_DEV0_EPF0_VF5_GFXMSIX_VECT0_ADDR_LO
+#define RCC_DEV0_EPF0_VF5_GFXMSIX_VECT0_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define RCC_DEV0_EPF0_VF5_GFXMSIX_VECT0_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//RCC_DEV0_EPF0_VF5_GFXMSIX_VECT0_ADDR_HI
+#define RCC_DEV0_EPF0_VF5_GFXMSIX_VECT0_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF5_GFXMSIX_VECT0_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF5_GFXMSIX_VECT0_MSG_DATA
+#define RCC_DEV0_EPF0_VF5_GFXMSIX_VECT0_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF5_GFXMSIX_VECT0_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF5_GFXMSIX_VECT0_CONTROL
+#define RCC_DEV0_EPF0_VF5_GFXMSIX_VECT0_CONTROL__MASK_BIT__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF5_GFXMSIX_VECT0_CONTROL__MASK_BIT_MASK 0x00000001L
+//RCC_DEV0_EPF0_VF5_GFXMSIX_VECT1_ADDR_LO
+#define RCC_DEV0_EPF0_VF5_GFXMSIX_VECT1_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define RCC_DEV0_EPF0_VF5_GFXMSIX_VECT1_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//RCC_DEV0_EPF0_VF5_GFXMSIX_VECT1_ADDR_HI
+#define RCC_DEV0_EPF0_VF5_GFXMSIX_VECT1_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF5_GFXMSIX_VECT1_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF5_GFXMSIX_VECT1_MSG_DATA
+#define RCC_DEV0_EPF0_VF5_GFXMSIX_VECT1_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF5_GFXMSIX_VECT1_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF5_GFXMSIX_VECT1_CONTROL
+#define RCC_DEV0_EPF0_VF5_GFXMSIX_VECT1_CONTROL__MASK_BIT__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF5_GFXMSIX_VECT1_CONTROL__MASK_BIT_MASK 0x00000001L
+//RCC_DEV0_EPF0_VF5_GFXMSIX_VECT2_ADDR_LO
+#define RCC_DEV0_EPF0_VF5_GFXMSIX_VECT2_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define RCC_DEV0_EPF0_VF5_GFXMSIX_VECT2_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//RCC_DEV0_EPF0_VF5_GFXMSIX_VECT2_ADDR_HI
+#define RCC_DEV0_EPF0_VF5_GFXMSIX_VECT2_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF5_GFXMSIX_VECT2_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF5_GFXMSIX_VECT2_MSG_DATA
+#define RCC_DEV0_EPF0_VF5_GFXMSIX_VECT2_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF5_GFXMSIX_VECT2_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF5_GFXMSIX_VECT2_CONTROL
+#define RCC_DEV0_EPF0_VF5_GFXMSIX_VECT2_CONTROL__MASK_BIT__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF5_GFXMSIX_VECT2_CONTROL__MASK_BIT_MASK 0x00000001L
+//RCC_DEV0_EPF0_VF5_GFXMSIX_VECT3_ADDR_LO
+#define RCC_DEV0_EPF0_VF5_GFXMSIX_VECT3_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define RCC_DEV0_EPF0_VF5_GFXMSIX_VECT3_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//RCC_DEV0_EPF0_VF5_GFXMSIX_VECT3_ADDR_HI
+#define RCC_DEV0_EPF0_VF5_GFXMSIX_VECT3_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF5_GFXMSIX_VECT3_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF5_GFXMSIX_VECT3_MSG_DATA
+#define RCC_DEV0_EPF0_VF5_GFXMSIX_VECT3_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF5_GFXMSIX_VECT3_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF5_GFXMSIX_VECT3_CONTROL
+#define RCC_DEV0_EPF0_VF5_GFXMSIX_VECT3_CONTROL__MASK_BIT__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF5_GFXMSIX_VECT3_CONTROL__MASK_BIT_MASK 0x00000001L
+//RCC_DEV0_EPF0_VF5_GFXMSIX_PBA
+#define RCC_DEV0_EPF0_VF5_GFXMSIX_PBA__MSIX_PENDING_BITS_0__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF5_GFXMSIX_PBA__MSIX_PENDING_BITS_1__SHIFT 0x1
+#define RCC_DEV0_EPF0_VF5_GFXMSIX_PBA__MSIX_PENDING_BITS_0_MASK 0x00000001L
+#define RCC_DEV0_EPF0_VF5_GFXMSIX_PBA__MSIX_PENDING_BITS_1_MASK 0x00000002L
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_dev0_epf0_vf6_BIFPFVFDEC1
+//BIF_BX_DEV0_EPF0_VF6_BIF_BME_STATUS
+#define BIF_BX_DEV0_EPF0_VF6_BIF_BME_STATUS__DMA_ON_BME_LOW__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF6_BIF_BME_STATUS__CLEAR_DMA_ON_BME_LOW__SHIFT 0x10
+#define BIF_BX_DEV0_EPF0_VF6_BIF_BME_STATUS__DMA_ON_BME_LOW_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF6_BIF_BME_STATUS__CLEAR_DMA_ON_BME_LOW_MASK 0x00010000L
+//BIF_BX_DEV0_EPF0_VF6_BIF_ATOMIC_ERR_LOG
+#define BIF_BX_DEV0_EPF0_VF6_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_OPCODE__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF6_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_REQEN_LOW__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF6_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_LENGTH__SHIFT 0x2
+#define BIF_BX_DEV0_EPF0_VF6_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_NR__SHIFT 0x3
+#define BIF_BX_DEV0_EPF0_VF6_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_OPCODE__SHIFT 0x10
+#define BIF_BX_DEV0_EPF0_VF6_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_REQEN_LOW__SHIFT 0x11
+#define BIF_BX_DEV0_EPF0_VF6_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_LENGTH__SHIFT 0x12
+#define BIF_BX_DEV0_EPF0_VF6_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_NR__SHIFT 0x13
+#define BIF_BX_DEV0_EPF0_VF6_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_OPCODE_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF6_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_REQEN_LOW_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF6_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_LENGTH_MASK 0x00000004L
+#define BIF_BX_DEV0_EPF0_VF6_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_NR_MASK 0x00000008L
+#define BIF_BX_DEV0_EPF0_VF6_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_OPCODE_MASK 0x00010000L
+#define BIF_BX_DEV0_EPF0_VF6_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_REQEN_LOW_MASK 0x00020000L
+#define BIF_BX_DEV0_EPF0_VF6_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_LENGTH_MASK 0x00040000L
+#define BIF_BX_DEV0_EPF0_VF6_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_NR_MASK 0x00080000L
+//BIF_BX_DEV0_EPF0_VF6_DOORBELL_SELFRING_GPA_APER_BASE_HIGH
+#define BIF_BX_DEV0_EPF0_VF6_DOORBELL_SELFRING_GPA_APER_BASE_HIGH__DOORBELL_SELFRING_GPA_APER_BASE_HIGH__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF6_DOORBELL_SELFRING_GPA_APER_BASE_HIGH__DOORBELL_SELFRING_GPA_APER_BASE_HIGH_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF6_DOORBELL_SELFRING_GPA_APER_BASE_LOW
+#define BIF_BX_DEV0_EPF0_VF6_DOORBELL_SELFRING_GPA_APER_BASE_LOW__DOORBELL_SELFRING_GPA_APER_BASE_LOW__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF6_DOORBELL_SELFRING_GPA_APER_BASE_LOW__DOORBELL_SELFRING_GPA_APER_BASE_LOW_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF6_DOORBELL_SELFRING_GPA_APER_CNTL
+#define BIF_BX_DEV0_EPF0_VF6_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_EN__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF6_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_MODE__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF6_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_SIZE__SHIFT 0x8
+#define BIF_BX_DEV0_EPF0_VF6_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_EN_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF6_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_MODE_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF6_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_SIZE_MASK 0x000FFF00L
+//BIF_BX_DEV0_EPF0_VF6_HDP_REG_COHERENCY_FLUSH_CNTL
+#define BIF_BX_DEV0_EPF0_VF6_HDP_REG_COHERENCY_FLUSH_CNTL__HDP_REG_FLUSH_ADDR__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF6_HDP_REG_COHERENCY_FLUSH_CNTL__HDP_REG_FLUSH_ADDR_MASK 0x00000001L
+//BIF_BX_DEV0_EPF0_VF6_HDP_MEM_COHERENCY_FLUSH_CNTL
+#define BIF_BX_DEV0_EPF0_VF6_HDP_MEM_COHERENCY_FLUSH_CNTL__HDP_MEM_FLUSH_ADDR__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF6_HDP_MEM_COHERENCY_FLUSH_CNTL__HDP_MEM_FLUSH_ADDR_MASK 0x00000001L
+//BIF_BX_DEV0_EPF0_VF6_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL
+#define BIF_BX_DEV0_EPF0_VF6_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL__HDP_MEM_FLUSH_ONLY_ADDR__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF6_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL__HDP_MEM_FLUSH_ONLY_ADDR_MASK 0x00000001L
+//BIF_BX_DEV0_EPF0_VF6_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL
+#define BIF_BX_DEV0_EPF0_VF6_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL__HDP_MEM_INVALIDATE_ONLY_ADDR__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF6_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL__HDP_MEM_INVALIDATE_ONLY_ADDR_MASK 0x00000001L
+//BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__CP0__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__CP1__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__CP2__SHIFT 0x2
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__CP3__SHIFT 0x3
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__CP4__SHIFT 0x4
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__CP5__SHIFT 0x5
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__CP6__SHIFT 0x6
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__CP7__SHIFT 0x7
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__CP8__SHIFT 0x8
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__CP9__SHIFT 0x9
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__SDMA0__SHIFT 0xa
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__SDMA1__SHIFT 0xb
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__RSVD_ENG0__SHIFT 0xc
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__RSVD_ENG1__SHIFT 0xd
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__RSVD_ENG2__SHIFT 0xe
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__RSVD_ENG3__SHIFT 0xf
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__RSVD_ENG4__SHIFT 0x10
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__RSVD_ENG5__SHIFT 0x11
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__RSVD_ENG6__SHIFT 0x12
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__RSVD_ENG7__SHIFT 0x13
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__RSVD_ENG8__SHIFT 0x14
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__RSVD_ENG9__SHIFT 0x15
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__RSVD_ENG10__SHIFT 0x16
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__RSVD_ENG11__SHIFT 0x17
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__RSVD_ENG12__SHIFT 0x18
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__RSVD_ENG13__SHIFT 0x19
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__RSVD_ENG14__SHIFT 0x1a
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__RSVD_ENG15__SHIFT 0x1b
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__RSVD_ENG16__SHIFT 0x1c
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__RSVD_ENG17__SHIFT 0x1d
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__RSVD_ENG18__SHIFT 0x1e
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__RSVD_ENG19__SHIFT 0x1f
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__CP0_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__CP1_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__CP2_MASK 0x00000004L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__CP3_MASK 0x00000008L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__CP4_MASK 0x00000010L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__CP5_MASK 0x00000020L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__CP6_MASK 0x00000040L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__CP7_MASK 0x00000080L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__CP8_MASK 0x00000100L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__CP9_MASK 0x00000200L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__SDMA0_MASK 0x00000400L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__SDMA1_MASK 0x00000800L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__RSVD_ENG0_MASK 0x00001000L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__RSVD_ENG1_MASK 0x00002000L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__RSVD_ENG2_MASK 0x00004000L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__RSVD_ENG3_MASK 0x00008000L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__RSVD_ENG4_MASK 0x00010000L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__RSVD_ENG5_MASK 0x00020000L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__RSVD_ENG6_MASK 0x00040000L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__RSVD_ENG7_MASK 0x00080000L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__RSVD_ENG8_MASK 0x00100000L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__RSVD_ENG9_MASK 0x00200000L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__RSVD_ENG10_MASK 0x00400000L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__RSVD_ENG11_MASK 0x00800000L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__RSVD_ENG12_MASK 0x01000000L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__RSVD_ENG13_MASK 0x02000000L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__RSVD_ENG14_MASK 0x04000000L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__RSVD_ENG15_MASK 0x08000000L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__RSVD_ENG16_MASK 0x10000000L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__RSVD_ENG17_MASK 0x20000000L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__RSVD_ENG18_MASK 0x40000000L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_REQ__RSVD_ENG19_MASK 0x80000000L
+//BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__CP0__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__CP1__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__CP2__SHIFT 0x2
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__CP3__SHIFT 0x3
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__CP4__SHIFT 0x4
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__CP5__SHIFT 0x5
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__CP6__SHIFT 0x6
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__CP7__SHIFT 0x7
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__CP8__SHIFT 0x8
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__CP9__SHIFT 0x9
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__SDMA0__SHIFT 0xa
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__SDMA1__SHIFT 0xb
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__RSVD_ENG0__SHIFT 0xc
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__RSVD_ENG1__SHIFT 0xd
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__RSVD_ENG2__SHIFT 0xe
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__RSVD_ENG3__SHIFT 0xf
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__RSVD_ENG4__SHIFT 0x10
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__RSVD_ENG5__SHIFT 0x11
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__RSVD_ENG6__SHIFT 0x12
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__RSVD_ENG7__SHIFT 0x13
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__RSVD_ENG8__SHIFT 0x14
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__RSVD_ENG9__SHIFT 0x15
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__RSVD_ENG10__SHIFT 0x16
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__RSVD_ENG11__SHIFT 0x17
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__RSVD_ENG12__SHIFT 0x18
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__RSVD_ENG13__SHIFT 0x19
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__RSVD_ENG14__SHIFT 0x1a
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__RSVD_ENG15__SHIFT 0x1b
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__RSVD_ENG16__SHIFT 0x1c
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__RSVD_ENG17__SHIFT 0x1d
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__RSVD_ENG18__SHIFT 0x1e
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__RSVD_ENG19__SHIFT 0x1f
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__CP0_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__CP1_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__CP2_MASK 0x00000004L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__CP3_MASK 0x00000008L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__CP4_MASK 0x00000010L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__CP5_MASK 0x00000020L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__CP6_MASK 0x00000040L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__CP7_MASK 0x00000080L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__CP8_MASK 0x00000100L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__CP9_MASK 0x00000200L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__SDMA0_MASK 0x00000400L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__SDMA1_MASK 0x00000800L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__RSVD_ENG0_MASK 0x00001000L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__RSVD_ENG1_MASK 0x00002000L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__RSVD_ENG2_MASK 0x00004000L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__RSVD_ENG3_MASK 0x00008000L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__RSVD_ENG4_MASK 0x00010000L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__RSVD_ENG5_MASK 0x00020000L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__RSVD_ENG6_MASK 0x00040000L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__RSVD_ENG7_MASK 0x00080000L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__RSVD_ENG8_MASK 0x00100000L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__RSVD_ENG9_MASK 0x00200000L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__RSVD_ENG10_MASK 0x00400000L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__RSVD_ENG11_MASK 0x00800000L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__RSVD_ENG12_MASK 0x01000000L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__RSVD_ENG13_MASK 0x02000000L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__RSVD_ENG14_MASK 0x04000000L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__RSVD_ENG15_MASK 0x08000000L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__RSVD_ENG16_MASK 0x10000000L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__RSVD_ENG17_MASK 0x20000000L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__RSVD_ENG18_MASK 0x40000000L
+#define BIF_BX_DEV0_EPF0_VF6_GPU_HDP_FLUSH_DONE__RSVD_ENG19_MASK 0x80000000L
+//BIF_BX_DEV0_EPF0_VF6_BIF_TRANS_PENDING
+#define BIF_BX_DEV0_EPF0_VF6_BIF_TRANS_PENDING__BIF_MST_TRANS_PENDING__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF6_BIF_TRANS_PENDING__BIF_SLV_TRANS_PENDING__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF6_BIF_TRANS_PENDING__BIF_MST_TRANS_PENDING_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF6_BIF_TRANS_PENDING__BIF_SLV_TRANS_PENDING_MASK 0x00000002L
+//BIF_BX_DEV0_EPF0_VF6_NBIF_GFX_ADDR_LUT_BYPASS
+#define BIF_BX_DEV0_EPF0_VF6_NBIF_GFX_ADDR_LUT_BYPASS__LUT_BYPASS__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF6_NBIF_GFX_ADDR_LUT_BYPASS__LUT_BYPASS_MASK 0x00000001L
+//BIF_BX_DEV0_EPF0_VF6_MAILBOX_MSGBUF_TRN_DW0
+#define BIF_BX_DEV0_EPF0_VF6_MAILBOX_MSGBUF_TRN_DW0__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF6_MAILBOX_MSGBUF_TRN_DW0__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF6_MAILBOX_MSGBUF_TRN_DW1
+#define BIF_BX_DEV0_EPF0_VF6_MAILBOX_MSGBUF_TRN_DW1__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF6_MAILBOX_MSGBUF_TRN_DW1__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF6_MAILBOX_MSGBUF_TRN_DW2
+#define BIF_BX_DEV0_EPF0_VF6_MAILBOX_MSGBUF_TRN_DW2__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF6_MAILBOX_MSGBUF_TRN_DW2__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF6_MAILBOX_MSGBUF_TRN_DW3
+#define BIF_BX_DEV0_EPF0_VF6_MAILBOX_MSGBUF_TRN_DW3__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF6_MAILBOX_MSGBUF_TRN_DW3__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF6_MAILBOX_MSGBUF_RCV_DW0
+#define BIF_BX_DEV0_EPF0_VF6_MAILBOX_MSGBUF_RCV_DW0__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF6_MAILBOX_MSGBUF_RCV_DW0__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF6_MAILBOX_MSGBUF_RCV_DW1
+#define BIF_BX_DEV0_EPF0_VF6_MAILBOX_MSGBUF_RCV_DW1__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF6_MAILBOX_MSGBUF_RCV_DW1__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF6_MAILBOX_MSGBUF_RCV_DW2
+#define BIF_BX_DEV0_EPF0_VF6_MAILBOX_MSGBUF_RCV_DW2__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF6_MAILBOX_MSGBUF_RCV_DW2__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF6_MAILBOX_MSGBUF_RCV_DW3
+#define BIF_BX_DEV0_EPF0_VF6_MAILBOX_MSGBUF_RCV_DW3__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF6_MAILBOX_MSGBUF_RCV_DW3__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF6_MAILBOX_CONTROL
+#define BIF_BX_DEV0_EPF0_VF6_MAILBOX_CONTROL__TRN_MSG_VALID__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF6_MAILBOX_CONTROL__TRN_MSG_ACK__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF6_MAILBOX_CONTROL__RCV_MSG_VALID__SHIFT 0x8
+#define BIF_BX_DEV0_EPF0_VF6_MAILBOX_CONTROL__RCV_MSG_ACK__SHIFT 0x9
+#define BIF_BX_DEV0_EPF0_VF6_MAILBOX_CONTROL__TRN_MSG_VALID_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF6_MAILBOX_CONTROL__TRN_MSG_ACK_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF6_MAILBOX_CONTROL__RCV_MSG_VALID_MASK 0x00000100L
+#define BIF_BX_DEV0_EPF0_VF6_MAILBOX_CONTROL__RCV_MSG_ACK_MASK 0x00000200L
+//BIF_BX_DEV0_EPF0_VF6_MAILBOX_INT_CNTL
+#define BIF_BX_DEV0_EPF0_VF6_MAILBOX_INT_CNTL__VALID_INT_EN__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF6_MAILBOX_INT_CNTL__ACK_INT_EN__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF6_MAILBOX_INT_CNTL__VALID_INT_EN_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF6_MAILBOX_INT_CNTL__ACK_INT_EN_MASK 0x00000002L
+//BIF_BX_DEV0_EPF0_VF6_BIF_VMHV_MAILBOX
+#define BIF_BX_DEV0_EPF0_VF6_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_ACK_INTR_EN__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF6_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_VALID_INTR_EN__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF6_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_DATA__SHIFT 0x8
+#define BIF_BX_DEV0_EPF0_VF6_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_VALID__SHIFT 0xf
+#define BIF_BX_DEV0_EPF0_VF6_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_DATA__SHIFT 0x10
+#define BIF_BX_DEV0_EPF0_VF6_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_VALID__SHIFT 0x17
+#define BIF_BX_DEV0_EPF0_VF6_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_ACK__SHIFT 0x18
+#define BIF_BX_DEV0_EPF0_VF6_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_ACK__SHIFT 0x19
+#define BIF_BX_DEV0_EPF0_VF6_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_ACK_INTR_EN_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF6_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_VALID_INTR_EN_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF6_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_DATA_MASK 0x00000F00L
+#define BIF_BX_DEV0_EPF0_VF6_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_VALID_MASK 0x00008000L
+#define BIF_BX_DEV0_EPF0_VF6_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_DATA_MASK 0x000F0000L
+#define BIF_BX_DEV0_EPF0_VF6_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_VALID_MASK 0x00800000L
+#define BIF_BX_DEV0_EPF0_VF6_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_ACK_MASK 0x01000000L
+#define BIF_BX_DEV0_EPF0_VF6_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_ACK_MASK 0x02000000L
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_dev0_epf0_vf6_SYSPFVFDEC
+//BIF_BX_DEV0_EPF0_VF6_MM_INDEX
+#define BIF_BX_DEV0_EPF0_VF6_MM_INDEX__MM_OFFSET__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF6_MM_INDEX__MM_APER__SHIFT 0x1f
+#define BIF_BX_DEV0_EPF0_VF6_MM_INDEX__MM_OFFSET_MASK 0x7FFFFFFFL
+#define BIF_BX_DEV0_EPF0_VF6_MM_INDEX__MM_APER_MASK 0x80000000L
+//BIF_BX_DEV0_EPF0_VF6_MM_DATA
+#define BIF_BX_DEV0_EPF0_VF6_MM_DATA__MM_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF6_MM_DATA__MM_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF6_MM_INDEX_HI
+#define BIF_BX_DEV0_EPF0_VF6_MM_INDEX_HI__MM_OFFSET_HI__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF6_MM_INDEX_HI__MM_OFFSET_HI_MASK 0xFFFFFFFFL
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dev0_epf0_vf6_BIFPFVFDEC1
+//RCC_DEV0_EPF0_VF6_RCC_ERR_LOG
+#define RCC_DEV0_EPF0_VF6_RCC_ERR_LOG__INVALID_REG_ACCESS_IN_SRIOV_STATUS__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF6_RCC_ERR_LOG__DOORBELL_READ_ACCESS_STATUS__SHIFT 0x1
+#define RCC_DEV0_EPF0_VF6_RCC_ERR_LOG__INVALID_REG_ACCESS_IN_SRIOV_STATUS_MASK 0x00000001L
+#define RCC_DEV0_EPF0_VF6_RCC_ERR_LOG__DOORBELL_READ_ACCESS_STATUS_MASK 0x00000002L
+//RCC_DEV0_EPF0_VF6_RCC_DOORBELL_APER_EN
+#define RCC_DEV0_EPF0_VF6_RCC_DOORBELL_APER_EN__BIF_DOORBELL_APER_EN__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF6_RCC_DOORBELL_APER_EN__BIF_DOORBELL_APER_EN_MASK 0x00000001L
+//RCC_DEV0_EPF0_VF6_RCC_CONFIG_MEMSIZE
+#define RCC_DEV0_EPF0_VF6_RCC_CONFIG_MEMSIZE__CONFIG_MEMSIZE__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF6_RCC_CONFIG_MEMSIZE__CONFIG_MEMSIZE_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF6_RCC_CONFIG_RESERVED
+#define RCC_DEV0_EPF0_VF6_RCC_CONFIG_RESERVED__CONFIG_RESERVED__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF6_RCC_CONFIG_RESERVED__CONFIG_RESERVED_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF6_RCC_IOV_FUNC_IDENTIFIER
+#define RCC_DEV0_EPF0_VF6_RCC_IOV_FUNC_IDENTIFIER__FUNC_IDENTIFIER__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF6_RCC_IOV_FUNC_IDENTIFIER__IOV_ENABLE__SHIFT 0x1f
+#define RCC_DEV0_EPF0_VF6_RCC_IOV_FUNC_IDENTIFIER__FUNC_IDENTIFIER_MASK 0x00000001L
+#define RCC_DEV0_EPF0_VF6_RCC_IOV_FUNC_IDENTIFIER__IOV_ENABLE_MASK 0x80000000L
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dev0_epf0_vf6_BIFDEC2
+//RCC_DEV0_EPF0_VF6_GFXMSIX_VECT0_ADDR_LO
+#define RCC_DEV0_EPF0_VF6_GFXMSIX_VECT0_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define RCC_DEV0_EPF0_VF6_GFXMSIX_VECT0_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//RCC_DEV0_EPF0_VF6_GFXMSIX_VECT0_ADDR_HI
+#define RCC_DEV0_EPF0_VF6_GFXMSIX_VECT0_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF6_GFXMSIX_VECT0_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF6_GFXMSIX_VECT0_MSG_DATA
+#define RCC_DEV0_EPF0_VF6_GFXMSIX_VECT0_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF6_GFXMSIX_VECT0_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF6_GFXMSIX_VECT0_CONTROL
+#define RCC_DEV0_EPF0_VF6_GFXMSIX_VECT0_CONTROL__MASK_BIT__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF6_GFXMSIX_VECT0_CONTROL__MASK_BIT_MASK 0x00000001L
+//RCC_DEV0_EPF0_VF6_GFXMSIX_VECT1_ADDR_LO
+#define RCC_DEV0_EPF0_VF6_GFXMSIX_VECT1_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define RCC_DEV0_EPF0_VF6_GFXMSIX_VECT1_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//RCC_DEV0_EPF0_VF6_GFXMSIX_VECT1_ADDR_HI
+#define RCC_DEV0_EPF0_VF6_GFXMSIX_VECT1_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF6_GFXMSIX_VECT1_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF6_GFXMSIX_VECT1_MSG_DATA
+#define RCC_DEV0_EPF0_VF6_GFXMSIX_VECT1_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF6_GFXMSIX_VECT1_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF6_GFXMSIX_VECT1_CONTROL
+#define RCC_DEV0_EPF0_VF6_GFXMSIX_VECT1_CONTROL__MASK_BIT__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF6_GFXMSIX_VECT1_CONTROL__MASK_BIT_MASK 0x00000001L
+//RCC_DEV0_EPF0_VF6_GFXMSIX_VECT2_ADDR_LO
+#define RCC_DEV0_EPF0_VF6_GFXMSIX_VECT2_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define RCC_DEV0_EPF0_VF6_GFXMSIX_VECT2_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//RCC_DEV0_EPF0_VF6_GFXMSIX_VECT2_ADDR_HI
+#define RCC_DEV0_EPF0_VF6_GFXMSIX_VECT2_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF6_GFXMSIX_VECT2_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF6_GFXMSIX_VECT2_MSG_DATA
+#define RCC_DEV0_EPF0_VF6_GFXMSIX_VECT2_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF6_GFXMSIX_VECT2_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF6_GFXMSIX_VECT2_CONTROL
+#define RCC_DEV0_EPF0_VF6_GFXMSIX_VECT2_CONTROL__MASK_BIT__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF6_GFXMSIX_VECT2_CONTROL__MASK_BIT_MASK 0x00000001L
+//RCC_DEV0_EPF0_VF6_GFXMSIX_VECT3_ADDR_LO
+#define RCC_DEV0_EPF0_VF6_GFXMSIX_VECT3_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define RCC_DEV0_EPF0_VF6_GFXMSIX_VECT3_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//RCC_DEV0_EPF0_VF6_GFXMSIX_VECT3_ADDR_HI
+#define RCC_DEV0_EPF0_VF6_GFXMSIX_VECT3_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF6_GFXMSIX_VECT3_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF6_GFXMSIX_VECT3_MSG_DATA
+#define RCC_DEV0_EPF0_VF6_GFXMSIX_VECT3_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF6_GFXMSIX_VECT3_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF6_GFXMSIX_VECT3_CONTROL
+#define RCC_DEV0_EPF0_VF6_GFXMSIX_VECT3_CONTROL__MASK_BIT__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF6_GFXMSIX_VECT3_CONTROL__MASK_BIT_MASK 0x00000001L
+//RCC_DEV0_EPF0_VF6_GFXMSIX_PBA
+#define RCC_DEV0_EPF0_VF6_GFXMSIX_PBA__MSIX_PENDING_BITS_0__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF6_GFXMSIX_PBA__MSIX_PENDING_BITS_1__SHIFT 0x1
+#define RCC_DEV0_EPF0_VF6_GFXMSIX_PBA__MSIX_PENDING_BITS_0_MASK 0x00000001L
+#define RCC_DEV0_EPF0_VF6_GFXMSIX_PBA__MSIX_PENDING_BITS_1_MASK 0x00000002L
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_dev0_epf0_vf7_BIFPFVFDEC1
+//BIF_BX_DEV0_EPF0_VF7_BIF_BME_STATUS
+#define BIF_BX_DEV0_EPF0_VF7_BIF_BME_STATUS__DMA_ON_BME_LOW__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF7_BIF_BME_STATUS__CLEAR_DMA_ON_BME_LOW__SHIFT 0x10
+#define BIF_BX_DEV0_EPF0_VF7_BIF_BME_STATUS__DMA_ON_BME_LOW_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF7_BIF_BME_STATUS__CLEAR_DMA_ON_BME_LOW_MASK 0x00010000L
+//BIF_BX_DEV0_EPF0_VF7_BIF_ATOMIC_ERR_LOG
+#define BIF_BX_DEV0_EPF0_VF7_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_OPCODE__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF7_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_REQEN_LOW__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF7_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_LENGTH__SHIFT 0x2
+#define BIF_BX_DEV0_EPF0_VF7_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_NR__SHIFT 0x3
+#define BIF_BX_DEV0_EPF0_VF7_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_OPCODE__SHIFT 0x10
+#define BIF_BX_DEV0_EPF0_VF7_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_REQEN_LOW__SHIFT 0x11
+#define BIF_BX_DEV0_EPF0_VF7_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_LENGTH__SHIFT 0x12
+#define BIF_BX_DEV0_EPF0_VF7_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_NR__SHIFT 0x13
+#define BIF_BX_DEV0_EPF0_VF7_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_OPCODE_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF7_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_REQEN_LOW_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF7_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_LENGTH_MASK 0x00000004L
+#define BIF_BX_DEV0_EPF0_VF7_BIF_ATOMIC_ERR_LOG__UR_ATOMIC_NR_MASK 0x00000008L
+#define BIF_BX_DEV0_EPF0_VF7_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_OPCODE_MASK 0x00010000L
+#define BIF_BX_DEV0_EPF0_VF7_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_REQEN_LOW_MASK 0x00020000L
+#define BIF_BX_DEV0_EPF0_VF7_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_LENGTH_MASK 0x00040000L
+#define BIF_BX_DEV0_EPF0_VF7_BIF_ATOMIC_ERR_LOG__CLEAR_UR_ATOMIC_NR_MASK 0x00080000L
+//BIF_BX_DEV0_EPF0_VF7_DOORBELL_SELFRING_GPA_APER_BASE_HIGH
+#define BIF_BX_DEV0_EPF0_VF7_DOORBELL_SELFRING_GPA_APER_BASE_HIGH__DOORBELL_SELFRING_GPA_APER_BASE_HIGH__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF7_DOORBELL_SELFRING_GPA_APER_BASE_HIGH__DOORBELL_SELFRING_GPA_APER_BASE_HIGH_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF7_DOORBELL_SELFRING_GPA_APER_BASE_LOW
+#define BIF_BX_DEV0_EPF0_VF7_DOORBELL_SELFRING_GPA_APER_BASE_LOW__DOORBELL_SELFRING_GPA_APER_BASE_LOW__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF7_DOORBELL_SELFRING_GPA_APER_BASE_LOW__DOORBELL_SELFRING_GPA_APER_BASE_LOW_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF7_DOORBELL_SELFRING_GPA_APER_CNTL
+#define BIF_BX_DEV0_EPF0_VF7_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_EN__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF7_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_MODE__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF7_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_SIZE__SHIFT 0x8
+#define BIF_BX_DEV0_EPF0_VF7_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_EN_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF7_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_MODE_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF7_DOORBELL_SELFRING_GPA_APER_CNTL__DOORBELL_SELFRING_GPA_APER_SIZE_MASK 0x000FFF00L
+//BIF_BX_DEV0_EPF0_VF7_HDP_REG_COHERENCY_FLUSH_CNTL
+#define BIF_BX_DEV0_EPF0_VF7_HDP_REG_COHERENCY_FLUSH_CNTL__HDP_REG_FLUSH_ADDR__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF7_HDP_REG_COHERENCY_FLUSH_CNTL__HDP_REG_FLUSH_ADDR_MASK 0x00000001L
+//BIF_BX_DEV0_EPF0_VF7_HDP_MEM_COHERENCY_FLUSH_CNTL
+#define BIF_BX_DEV0_EPF0_VF7_HDP_MEM_COHERENCY_FLUSH_CNTL__HDP_MEM_FLUSH_ADDR__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF7_HDP_MEM_COHERENCY_FLUSH_CNTL__HDP_MEM_FLUSH_ADDR_MASK 0x00000001L
+//BIF_BX_DEV0_EPF0_VF7_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL
+#define BIF_BX_DEV0_EPF0_VF7_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL__HDP_MEM_FLUSH_ONLY_ADDR__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF7_HDP_MEM_COHERENCY_FLUSH_ONLY_CNTL__HDP_MEM_FLUSH_ONLY_ADDR_MASK 0x00000001L
+//BIF_BX_DEV0_EPF0_VF7_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL
+#define BIF_BX_DEV0_EPF0_VF7_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL__HDP_MEM_INVALIDATE_ONLY_ADDR__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF7_HDP_MEM_COHERENCY_INVALIDATE_ONLY_CNTL__HDP_MEM_INVALIDATE_ONLY_ADDR_MASK 0x00000001L
+//BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__CP0__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__CP1__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__CP2__SHIFT 0x2
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__CP3__SHIFT 0x3
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__CP4__SHIFT 0x4
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__CP5__SHIFT 0x5
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__CP6__SHIFT 0x6
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__CP7__SHIFT 0x7
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__CP8__SHIFT 0x8
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__CP9__SHIFT 0x9
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__SDMA0__SHIFT 0xa
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__SDMA1__SHIFT 0xb
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__RSVD_ENG0__SHIFT 0xc
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__RSVD_ENG1__SHIFT 0xd
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__RSVD_ENG2__SHIFT 0xe
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__RSVD_ENG3__SHIFT 0xf
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__RSVD_ENG4__SHIFT 0x10
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__RSVD_ENG5__SHIFT 0x11
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__RSVD_ENG6__SHIFT 0x12
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__RSVD_ENG7__SHIFT 0x13
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__RSVD_ENG8__SHIFT 0x14
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__RSVD_ENG9__SHIFT 0x15
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__RSVD_ENG10__SHIFT 0x16
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__RSVD_ENG11__SHIFT 0x17
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__RSVD_ENG12__SHIFT 0x18
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__RSVD_ENG13__SHIFT 0x19
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__RSVD_ENG14__SHIFT 0x1a
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__RSVD_ENG15__SHIFT 0x1b
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__RSVD_ENG16__SHIFT 0x1c
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__RSVD_ENG17__SHIFT 0x1d
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__RSVD_ENG18__SHIFT 0x1e
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__RSVD_ENG19__SHIFT 0x1f
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__CP0_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__CP1_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__CP2_MASK 0x00000004L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__CP3_MASK 0x00000008L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__CP4_MASK 0x00000010L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__CP5_MASK 0x00000020L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__CP6_MASK 0x00000040L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__CP7_MASK 0x00000080L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__CP8_MASK 0x00000100L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__CP9_MASK 0x00000200L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__SDMA0_MASK 0x00000400L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__SDMA1_MASK 0x00000800L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__RSVD_ENG0_MASK 0x00001000L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__RSVD_ENG1_MASK 0x00002000L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__RSVD_ENG2_MASK 0x00004000L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__RSVD_ENG3_MASK 0x00008000L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__RSVD_ENG4_MASK 0x00010000L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__RSVD_ENG5_MASK 0x00020000L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__RSVD_ENG6_MASK 0x00040000L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__RSVD_ENG7_MASK 0x00080000L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__RSVD_ENG8_MASK 0x00100000L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__RSVD_ENG9_MASK 0x00200000L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__RSVD_ENG10_MASK 0x00400000L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__RSVD_ENG11_MASK 0x00800000L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__RSVD_ENG12_MASK 0x01000000L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__RSVD_ENG13_MASK 0x02000000L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__RSVD_ENG14_MASK 0x04000000L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__RSVD_ENG15_MASK 0x08000000L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__RSVD_ENG16_MASK 0x10000000L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__RSVD_ENG17_MASK 0x20000000L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__RSVD_ENG18_MASK 0x40000000L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_REQ__RSVD_ENG19_MASK 0x80000000L
+//BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__CP0__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__CP1__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__CP2__SHIFT 0x2
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__CP3__SHIFT 0x3
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__CP4__SHIFT 0x4
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__CP5__SHIFT 0x5
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__CP6__SHIFT 0x6
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__CP7__SHIFT 0x7
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__CP8__SHIFT 0x8
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__CP9__SHIFT 0x9
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__SDMA0__SHIFT 0xa
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__SDMA1__SHIFT 0xb
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__RSVD_ENG0__SHIFT 0xc
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__RSVD_ENG1__SHIFT 0xd
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__RSVD_ENG2__SHIFT 0xe
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__RSVD_ENG3__SHIFT 0xf
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__RSVD_ENG4__SHIFT 0x10
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__RSVD_ENG5__SHIFT 0x11
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__RSVD_ENG6__SHIFT 0x12
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__RSVD_ENG7__SHIFT 0x13
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__RSVD_ENG8__SHIFT 0x14
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__RSVD_ENG9__SHIFT 0x15
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__RSVD_ENG10__SHIFT 0x16
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__RSVD_ENG11__SHIFT 0x17
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__RSVD_ENG12__SHIFT 0x18
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__RSVD_ENG13__SHIFT 0x19
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__RSVD_ENG14__SHIFT 0x1a
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__RSVD_ENG15__SHIFT 0x1b
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__RSVD_ENG16__SHIFT 0x1c
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__RSVD_ENG17__SHIFT 0x1d
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__RSVD_ENG18__SHIFT 0x1e
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__RSVD_ENG19__SHIFT 0x1f
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__CP0_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__CP1_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__CP2_MASK 0x00000004L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__CP3_MASK 0x00000008L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__CP4_MASK 0x00000010L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__CP5_MASK 0x00000020L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__CP6_MASK 0x00000040L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__CP7_MASK 0x00000080L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__CP8_MASK 0x00000100L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__CP9_MASK 0x00000200L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__SDMA0_MASK 0x00000400L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__SDMA1_MASK 0x00000800L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__RSVD_ENG0_MASK 0x00001000L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__RSVD_ENG1_MASK 0x00002000L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__RSVD_ENG2_MASK 0x00004000L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__RSVD_ENG3_MASK 0x00008000L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__RSVD_ENG4_MASK 0x00010000L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__RSVD_ENG5_MASK 0x00020000L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__RSVD_ENG6_MASK 0x00040000L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__RSVD_ENG7_MASK 0x00080000L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__RSVD_ENG8_MASK 0x00100000L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__RSVD_ENG9_MASK 0x00200000L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__RSVD_ENG10_MASK 0x00400000L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__RSVD_ENG11_MASK 0x00800000L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__RSVD_ENG12_MASK 0x01000000L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__RSVD_ENG13_MASK 0x02000000L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__RSVD_ENG14_MASK 0x04000000L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__RSVD_ENG15_MASK 0x08000000L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__RSVD_ENG16_MASK 0x10000000L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__RSVD_ENG17_MASK 0x20000000L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__RSVD_ENG18_MASK 0x40000000L
+#define BIF_BX_DEV0_EPF0_VF7_GPU_HDP_FLUSH_DONE__RSVD_ENG19_MASK 0x80000000L
+//BIF_BX_DEV0_EPF0_VF7_BIF_TRANS_PENDING
+#define BIF_BX_DEV0_EPF0_VF7_BIF_TRANS_PENDING__BIF_MST_TRANS_PENDING__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF7_BIF_TRANS_PENDING__BIF_SLV_TRANS_PENDING__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF7_BIF_TRANS_PENDING__BIF_MST_TRANS_PENDING_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF7_BIF_TRANS_PENDING__BIF_SLV_TRANS_PENDING_MASK 0x00000002L
+//BIF_BX_DEV0_EPF0_VF7_NBIF_GFX_ADDR_LUT_BYPASS
+#define BIF_BX_DEV0_EPF0_VF7_NBIF_GFX_ADDR_LUT_BYPASS__LUT_BYPASS__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF7_NBIF_GFX_ADDR_LUT_BYPASS__LUT_BYPASS_MASK 0x00000001L
+//BIF_BX_DEV0_EPF0_VF7_MAILBOX_MSGBUF_TRN_DW0
+#define BIF_BX_DEV0_EPF0_VF7_MAILBOX_MSGBUF_TRN_DW0__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF7_MAILBOX_MSGBUF_TRN_DW0__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF7_MAILBOX_MSGBUF_TRN_DW1
+#define BIF_BX_DEV0_EPF0_VF7_MAILBOX_MSGBUF_TRN_DW1__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF7_MAILBOX_MSGBUF_TRN_DW1__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF7_MAILBOX_MSGBUF_TRN_DW2
+#define BIF_BX_DEV0_EPF0_VF7_MAILBOX_MSGBUF_TRN_DW2__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF7_MAILBOX_MSGBUF_TRN_DW2__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF7_MAILBOX_MSGBUF_TRN_DW3
+#define BIF_BX_DEV0_EPF0_VF7_MAILBOX_MSGBUF_TRN_DW3__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF7_MAILBOX_MSGBUF_TRN_DW3__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF7_MAILBOX_MSGBUF_RCV_DW0
+#define BIF_BX_DEV0_EPF0_VF7_MAILBOX_MSGBUF_RCV_DW0__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF7_MAILBOX_MSGBUF_RCV_DW0__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF7_MAILBOX_MSGBUF_RCV_DW1
+#define BIF_BX_DEV0_EPF0_VF7_MAILBOX_MSGBUF_RCV_DW1__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF7_MAILBOX_MSGBUF_RCV_DW1__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF7_MAILBOX_MSGBUF_RCV_DW2
+#define BIF_BX_DEV0_EPF0_VF7_MAILBOX_MSGBUF_RCV_DW2__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF7_MAILBOX_MSGBUF_RCV_DW2__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF7_MAILBOX_MSGBUF_RCV_DW3
+#define BIF_BX_DEV0_EPF0_VF7_MAILBOX_MSGBUF_RCV_DW3__MSGBUF_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF7_MAILBOX_MSGBUF_RCV_DW3__MSGBUF_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF7_MAILBOX_CONTROL
+#define BIF_BX_DEV0_EPF0_VF7_MAILBOX_CONTROL__TRN_MSG_VALID__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF7_MAILBOX_CONTROL__TRN_MSG_ACK__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF7_MAILBOX_CONTROL__RCV_MSG_VALID__SHIFT 0x8
+#define BIF_BX_DEV0_EPF0_VF7_MAILBOX_CONTROL__RCV_MSG_ACK__SHIFT 0x9
+#define BIF_BX_DEV0_EPF0_VF7_MAILBOX_CONTROL__TRN_MSG_VALID_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF7_MAILBOX_CONTROL__TRN_MSG_ACK_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF7_MAILBOX_CONTROL__RCV_MSG_VALID_MASK 0x00000100L
+#define BIF_BX_DEV0_EPF0_VF7_MAILBOX_CONTROL__RCV_MSG_ACK_MASK 0x00000200L
+//BIF_BX_DEV0_EPF0_VF7_MAILBOX_INT_CNTL
+#define BIF_BX_DEV0_EPF0_VF7_MAILBOX_INT_CNTL__VALID_INT_EN__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF7_MAILBOX_INT_CNTL__ACK_INT_EN__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF7_MAILBOX_INT_CNTL__VALID_INT_EN_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF7_MAILBOX_INT_CNTL__ACK_INT_EN_MASK 0x00000002L
+//BIF_BX_DEV0_EPF0_VF7_BIF_VMHV_MAILBOX
+#define BIF_BX_DEV0_EPF0_VF7_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_ACK_INTR_EN__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF7_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_VALID_INTR_EN__SHIFT 0x1
+#define BIF_BX_DEV0_EPF0_VF7_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_DATA__SHIFT 0x8
+#define BIF_BX_DEV0_EPF0_VF7_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_VALID__SHIFT 0xf
+#define BIF_BX_DEV0_EPF0_VF7_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_DATA__SHIFT 0x10
+#define BIF_BX_DEV0_EPF0_VF7_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_VALID__SHIFT 0x17
+#define BIF_BX_DEV0_EPF0_VF7_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_ACK__SHIFT 0x18
+#define BIF_BX_DEV0_EPF0_VF7_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_ACK__SHIFT 0x19
+#define BIF_BX_DEV0_EPF0_VF7_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_ACK_INTR_EN_MASK 0x00000001L
+#define BIF_BX_DEV0_EPF0_VF7_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_VALID_INTR_EN_MASK 0x00000002L
+#define BIF_BX_DEV0_EPF0_VF7_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_DATA_MASK 0x00000F00L
+#define BIF_BX_DEV0_EPF0_VF7_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_VALID_MASK 0x00008000L
+#define BIF_BX_DEV0_EPF0_VF7_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_DATA_MASK 0x000F0000L
+#define BIF_BX_DEV0_EPF0_VF7_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_VALID_MASK 0x00800000L
+#define BIF_BX_DEV0_EPF0_VF7_BIF_VMHV_MAILBOX__VMHV_MAILBOX_TRN_MSG_ACK_MASK 0x01000000L
+#define BIF_BX_DEV0_EPF0_VF7_BIF_VMHV_MAILBOX__VMHV_MAILBOX_RCV_MSG_ACK_MASK 0x02000000L
+
+
+// addressBlock: aid_nbio_nbif0_bif_bx_dev0_epf0_vf7_SYSPFVFDEC
+//BIF_BX_DEV0_EPF0_VF7_MM_INDEX
+#define BIF_BX_DEV0_EPF0_VF7_MM_INDEX__MM_OFFSET__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF7_MM_INDEX__MM_APER__SHIFT 0x1f
+#define BIF_BX_DEV0_EPF0_VF7_MM_INDEX__MM_OFFSET_MASK 0x7FFFFFFFL
+#define BIF_BX_DEV0_EPF0_VF7_MM_INDEX__MM_APER_MASK 0x80000000L
+//BIF_BX_DEV0_EPF0_VF7_MM_DATA
+#define BIF_BX_DEV0_EPF0_VF7_MM_DATA__MM_DATA__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF7_MM_DATA__MM_DATA_MASK 0xFFFFFFFFL
+//BIF_BX_DEV0_EPF0_VF7_MM_INDEX_HI
+#define BIF_BX_DEV0_EPF0_VF7_MM_INDEX_HI__MM_OFFSET_HI__SHIFT 0x0
+#define BIF_BX_DEV0_EPF0_VF7_MM_INDEX_HI__MM_OFFSET_HI_MASK 0xFFFFFFFFL
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dev0_epf0_vf7_BIFPFVFDEC1
+//RCC_DEV0_EPF0_VF7_RCC_ERR_LOG
+#define RCC_DEV0_EPF0_VF7_RCC_ERR_LOG__INVALID_REG_ACCESS_IN_SRIOV_STATUS__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF7_RCC_ERR_LOG__DOORBELL_READ_ACCESS_STATUS__SHIFT 0x1
+#define RCC_DEV0_EPF0_VF7_RCC_ERR_LOG__INVALID_REG_ACCESS_IN_SRIOV_STATUS_MASK 0x00000001L
+#define RCC_DEV0_EPF0_VF7_RCC_ERR_LOG__DOORBELL_READ_ACCESS_STATUS_MASK 0x00000002L
+//RCC_DEV0_EPF0_VF7_RCC_DOORBELL_APER_EN
+#define RCC_DEV0_EPF0_VF7_RCC_DOORBELL_APER_EN__BIF_DOORBELL_APER_EN__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF7_RCC_DOORBELL_APER_EN__BIF_DOORBELL_APER_EN_MASK 0x00000001L
+//RCC_DEV0_EPF0_VF7_RCC_CONFIG_MEMSIZE
+#define RCC_DEV0_EPF0_VF7_RCC_CONFIG_MEMSIZE__CONFIG_MEMSIZE__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF7_RCC_CONFIG_MEMSIZE__CONFIG_MEMSIZE_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF7_RCC_CONFIG_RESERVED
+#define RCC_DEV0_EPF0_VF7_RCC_CONFIG_RESERVED__CONFIG_RESERVED__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF7_RCC_CONFIG_RESERVED__CONFIG_RESERVED_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF7_RCC_IOV_FUNC_IDENTIFIER
+#define RCC_DEV0_EPF0_VF7_RCC_IOV_FUNC_IDENTIFIER__FUNC_IDENTIFIER__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF7_RCC_IOV_FUNC_IDENTIFIER__IOV_ENABLE__SHIFT 0x1f
+#define RCC_DEV0_EPF0_VF7_RCC_IOV_FUNC_IDENTIFIER__FUNC_IDENTIFIER_MASK 0x00000001L
+#define RCC_DEV0_EPF0_VF7_RCC_IOV_FUNC_IDENTIFIER__IOV_ENABLE_MASK 0x80000000L
+
+
+// addressBlock: aid_nbio_nbif0_rcc_dev0_epf0_vf7_BIFDEC2
+//RCC_DEV0_EPF0_VF7_GFXMSIX_VECT0_ADDR_LO
+#define RCC_DEV0_EPF0_VF7_GFXMSIX_VECT0_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define RCC_DEV0_EPF0_VF7_GFXMSIX_VECT0_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//RCC_DEV0_EPF0_VF7_GFXMSIX_VECT0_ADDR_HI
+#define RCC_DEV0_EPF0_VF7_GFXMSIX_VECT0_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF7_GFXMSIX_VECT0_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF7_GFXMSIX_VECT0_MSG_DATA
+#define RCC_DEV0_EPF0_VF7_GFXMSIX_VECT0_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF7_GFXMSIX_VECT0_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF7_GFXMSIX_VECT0_CONTROL
+#define RCC_DEV0_EPF0_VF7_GFXMSIX_VECT0_CONTROL__MASK_BIT__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF7_GFXMSIX_VECT0_CONTROL__MASK_BIT_MASK 0x00000001L
+//RCC_DEV0_EPF0_VF7_GFXMSIX_VECT1_ADDR_LO
+#define RCC_DEV0_EPF0_VF7_GFXMSIX_VECT1_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define RCC_DEV0_EPF0_VF7_GFXMSIX_VECT1_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//RCC_DEV0_EPF0_VF7_GFXMSIX_VECT1_ADDR_HI
+#define RCC_DEV0_EPF0_VF7_GFXMSIX_VECT1_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF7_GFXMSIX_VECT1_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF7_GFXMSIX_VECT1_MSG_DATA
+#define RCC_DEV0_EPF0_VF7_GFXMSIX_VECT1_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF7_GFXMSIX_VECT1_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF7_GFXMSIX_VECT1_CONTROL
+#define RCC_DEV0_EPF0_VF7_GFXMSIX_VECT1_CONTROL__MASK_BIT__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF7_GFXMSIX_VECT1_CONTROL__MASK_BIT_MASK 0x00000001L
+//RCC_DEV0_EPF0_VF7_GFXMSIX_VECT2_ADDR_LO
+#define RCC_DEV0_EPF0_VF7_GFXMSIX_VECT2_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define RCC_DEV0_EPF0_VF7_GFXMSIX_VECT2_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//RCC_DEV0_EPF0_VF7_GFXMSIX_VECT2_ADDR_HI
+#define RCC_DEV0_EPF0_VF7_GFXMSIX_VECT2_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF7_GFXMSIX_VECT2_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF7_GFXMSIX_VECT2_MSG_DATA
+#define RCC_DEV0_EPF0_VF7_GFXMSIX_VECT2_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF7_GFXMSIX_VECT2_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF7_GFXMSIX_VECT2_CONTROL
+#define RCC_DEV0_EPF0_VF7_GFXMSIX_VECT2_CONTROL__MASK_BIT__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF7_GFXMSIX_VECT2_CONTROL__MASK_BIT_MASK 0x00000001L
+//RCC_DEV0_EPF0_VF7_GFXMSIX_VECT3_ADDR_LO
+#define RCC_DEV0_EPF0_VF7_GFXMSIX_VECT3_ADDR_LO__MSG_ADDR_LO__SHIFT 0x2
+#define RCC_DEV0_EPF0_VF7_GFXMSIX_VECT3_ADDR_LO__MSG_ADDR_LO_MASK 0xFFFFFFFCL
+//RCC_DEV0_EPF0_VF7_GFXMSIX_VECT3_ADDR_HI
+#define RCC_DEV0_EPF0_VF7_GFXMSIX_VECT3_ADDR_HI__MSG_ADDR_HI__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF7_GFXMSIX_VECT3_ADDR_HI__MSG_ADDR_HI_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF7_GFXMSIX_VECT3_MSG_DATA
+#define RCC_DEV0_EPF0_VF7_GFXMSIX_VECT3_MSG_DATA__MSG_DATA__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF7_GFXMSIX_VECT3_MSG_DATA__MSG_DATA_MASK 0xFFFFFFFFL
+//RCC_DEV0_EPF0_VF7_GFXMSIX_VECT3_CONTROL
+#define RCC_DEV0_EPF0_VF7_GFXMSIX_VECT3_CONTROL__MASK_BIT__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF7_GFXMSIX_VECT3_CONTROL__MASK_BIT_MASK 0x00000001L
+//RCC_DEV0_EPF0_VF7_GFXMSIX_PBA
+#define RCC_DEV0_EPF0_VF7_GFXMSIX_PBA__MSIX_PENDING_BITS_0__SHIFT 0x0
+#define RCC_DEV0_EPF0_VF7_GFXMSIX_PBA__MSIX_PENDING_BITS_1__SHIFT 0x1
+#define RCC_DEV0_EPF0_VF7_GFXMSIX_PBA__MSIX_PENDING_BITS_0_MASK 0x00000001L
+#define RCC_DEV0_EPF0_VF7_GFXMSIX_PBA__MSIX_PENDING_BITS_1_MASK 0x00000002L
+
+
+#endif
diff --git a/drivers/gpu/drm/amd/include/asic_reg/oss/osssys_4_2_0_offset.h b/drivers/gpu/drm/amd/include/asic_reg/oss/osssys_4_2_0_offset.h
index bd129266ebfd..a84a7cfaf71e 100644
--- a/drivers/gpu/drm/amd/include/asic_reg/oss/osssys_4_2_0_offset.h
+++ b/drivers/gpu/drm/amd/include/asic_reg/oss/osssys_4_2_0_offset.h
@@ -135,6 +135,8 @@
#define mmIH_RB_WPTR_ADDR_LO_BASE_IDX 0
#define mmIH_DOORBELL_RPTR 0x0087
#define mmIH_DOORBELL_RPTR_BASE_IDX 0
+#define mmIH_DOORBELL_RETRY_CAM 0x0088
+#define mmIH_DOORBELL_RETRY_CAM_BASE_IDX 0
#define mmIH_RB_CNTL_RING1 0x008c
#define mmIH_RB_CNTL_RING1_BASE_IDX 0
#define mmIH_RB_BASE_RING1 0x008d
@@ -159,6 +161,8 @@
#define mmIH_RB_WPTR_RING2_BASE_IDX 0
#define mmIH_DOORBELL_RPTR_RING2 0x009f
#define mmIH_DOORBELL_RPTR_RING2_BASE_IDX 0
+#define mmIH_RETRY_CAM_ACK 0x00a4
+#define mmIH_RETRY_CAM_ACK_BASE_IDX 0
#define mmIH_VERSION 0x00a5
#define mmIH_VERSION_BASE_IDX 0
#define mmIH_CNTL 0x00c0
@@ -235,6 +239,8 @@
#define mmIH_MMHUB_ERROR_BASE_IDX 0
#define mmIH_MEM_POWER_CTRL 0x00e8
#define mmIH_MEM_POWER_CTRL_BASE_IDX 0
+#define mmIH_RETRY_INT_CAM_CNTL 0x00e9
+#define mmIH_RETRY_INT_CAM_CNTL_BASE_IDX 0
#define mmIH_REGISTER_LAST_PART2 0x00ff
#define mmIH_REGISTER_LAST_PART2_BASE_IDX 0
#define mmSEM_CLK_CTRL 0x0100
diff --git a/drivers/gpu/drm/amd/include/asic_reg/oss/osssys_4_2_0_sh_mask.h b/drivers/gpu/drm/amd/include/asic_reg/oss/osssys_4_2_0_sh_mask.h
index 3ea83ea9ce3a..75c04fc275a0 100644
--- a/drivers/gpu/drm/amd/include/asic_reg/oss/osssys_4_2_0_sh_mask.h
+++ b/drivers/gpu/drm/amd/include/asic_reg/oss/osssys_4_2_0_sh_mask.h
@@ -349,6 +349,17 @@
#define IH_DOORBELL_RPTR_RING2__ENABLE__SHIFT 0x1c
#define IH_DOORBELL_RPTR_RING2__OFFSET_MASK 0x03FFFFFFL
#define IH_DOORBELL_RPTR_RING2__ENABLE_MASK 0x10000000L
+//IH_RETRY_INT_CAM_CNTL
+#define IH_RETRY_INT_CAM_CNTL__CAM_SIZE__SHIFT 0x0
+#define IH_RETRY_INT_CAM_CNTL__BACK_PRESSURE_SKID_VALUE__SHIFT 0x8
+#define IH_RETRY_INT_CAM_CNTL__ENABLE__SHIFT 0x10
+#define IH_RETRY_INT_CAM_CNTL__BACK_PRESSURE_ENABLE__SHIFT 0x11
+#define IH_RETRY_INT_CAM_CNTL__PER_VF_ENTRY_SIZE__SHIFT 0x14
+#define IH_RETRY_INT_CAM_CNTL__CAM_SIZE_MASK 0x0000001FL
+#define IH_RETRY_INT_CAM_CNTL__BACK_PRESSURE_SKID_VALUE_MASK 0x00003F00L
+#define IH_RETRY_INT_CAM_CNTL__ENABLE_MASK 0x00010000L
+#define IH_RETRY_INT_CAM_CNTL__BACK_PRESSURE_ENABLE_MASK 0x00020000L
+#define IH_RETRY_INT_CAM_CNTL__PER_VF_ENTRY_SIZE_MASK 0x00300000L
//IH_VERSION
#define IH_VERSION__MINVER__SHIFT 0x0
#define IH_VERSION__MAJVER__SHIFT 0x8
diff --git a/drivers/gpu/drm/amd/include/asic_reg/oss/osssys_4_4_2_offset.h b/drivers/gpu/drm/amd/include/asic_reg/oss/osssys_4_4_2_offset.h
new file mode 100644
index 000000000000..bd30bd818a58
--- /dev/null
+++ b/drivers/gpu/drm/amd/include/asic_reg/oss/osssys_4_4_2_offset.h
@@ -0,0 +1,263 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ */
+#ifndef _osssys_4_4_2_OFFSET_HEADER
+#define _osssys_4_4_2_OFFSET_HEADER
+
+
+
+// addressBlock: aid_osssys_osssysdec
+// base address: 0x4280
+#define regIH_VMID_0_LUT 0x0000
+#define regIH_VMID_0_LUT_BASE_IDX 0
+#define regIH_VMID_1_LUT 0x0001
+#define regIH_VMID_1_LUT_BASE_IDX 0
+#define regIH_VMID_2_LUT 0x0002
+#define regIH_VMID_2_LUT_BASE_IDX 0
+#define regIH_VMID_3_LUT 0x0003
+#define regIH_VMID_3_LUT_BASE_IDX 0
+#define regIH_VMID_4_LUT 0x0004
+#define regIH_VMID_4_LUT_BASE_IDX 0
+#define regIH_VMID_5_LUT 0x0005
+#define regIH_VMID_5_LUT_BASE_IDX 0
+#define regIH_VMID_6_LUT 0x0006
+#define regIH_VMID_6_LUT_BASE_IDX 0
+#define regIH_VMID_7_LUT 0x0007
+#define regIH_VMID_7_LUT_BASE_IDX 0
+#define regIH_VMID_8_LUT 0x0008
+#define regIH_VMID_8_LUT_BASE_IDX 0
+#define regIH_VMID_9_LUT 0x0009
+#define regIH_VMID_9_LUT_BASE_IDX 0
+#define regIH_VMID_10_LUT 0x000a
+#define regIH_VMID_10_LUT_BASE_IDX 0
+#define regIH_VMID_11_LUT 0x000b
+#define regIH_VMID_11_LUT_BASE_IDX 0
+#define regIH_VMID_12_LUT 0x000c
+#define regIH_VMID_12_LUT_BASE_IDX 0
+#define regIH_VMID_13_LUT 0x000d
+#define regIH_VMID_13_LUT_BASE_IDX 0
+#define regIH_VMID_14_LUT 0x000e
+#define regIH_VMID_14_LUT_BASE_IDX 0
+#define regIH_VMID_15_LUT 0x000f
+#define regIH_VMID_15_LUT_BASE_IDX 0
+#define regIH_VMID_0_LUT_MM 0x0010
+#define regIH_VMID_0_LUT_MM_BASE_IDX 0
+#define regIH_VMID_1_LUT_MM 0x0011
+#define regIH_VMID_1_LUT_MM_BASE_IDX 0
+#define regIH_VMID_2_LUT_MM 0x0012
+#define regIH_VMID_2_LUT_MM_BASE_IDX 0
+#define regIH_VMID_3_LUT_MM 0x0013
+#define regIH_VMID_3_LUT_MM_BASE_IDX 0
+#define regIH_VMID_4_LUT_MM 0x0014
+#define regIH_VMID_4_LUT_MM_BASE_IDX 0
+#define regIH_VMID_5_LUT_MM 0x0015
+#define regIH_VMID_5_LUT_MM_BASE_IDX 0
+#define regIH_VMID_6_LUT_MM 0x0016
+#define regIH_VMID_6_LUT_MM_BASE_IDX 0
+#define regIH_VMID_7_LUT_MM 0x0017
+#define regIH_VMID_7_LUT_MM_BASE_IDX 0
+#define regIH_VMID_8_LUT_MM 0x0018
+#define regIH_VMID_8_LUT_MM_BASE_IDX 0
+#define regIH_VMID_9_LUT_MM 0x0019
+#define regIH_VMID_9_LUT_MM_BASE_IDX 0
+#define regIH_VMID_10_LUT_MM 0x001a
+#define regIH_VMID_10_LUT_MM_BASE_IDX 0
+#define regIH_VMID_11_LUT_MM 0x001b
+#define regIH_VMID_11_LUT_MM_BASE_IDX 0
+#define regIH_VMID_12_LUT_MM 0x001c
+#define regIH_VMID_12_LUT_MM_BASE_IDX 0
+#define regIH_VMID_13_LUT_MM 0x001d
+#define regIH_VMID_13_LUT_MM_BASE_IDX 0
+#define regIH_VMID_14_LUT_MM 0x001e
+#define regIH_VMID_14_LUT_MM_BASE_IDX 0
+#define regIH_VMID_15_LUT_MM 0x001f
+#define regIH_VMID_15_LUT_MM_BASE_IDX 0
+#define regIH_COOKIE_0 0x0020
+#define regIH_COOKIE_0_BASE_IDX 0
+#define regIH_COOKIE_1 0x0021
+#define regIH_COOKIE_1_BASE_IDX 0
+#define regIH_COOKIE_2 0x0022
+#define regIH_COOKIE_2_BASE_IDX 0
+#define regIH_COOKIE_3 0x0023
+#define regIH_COOKIE_3_BASE_IDX 0
+#define regIH_COOKIE_4 0x0024
+#define regIH_COOKIE_4_BASE_IDX 0
+#define regIH_COOKIE_5 0x0025
+#define regIH_COOKIE_5_BASE_IDX 0
+#define regIH_COOKIE_6 0x0026
+#define regIH_COOKIE_6_BASE_IDX 0
+#define regIH_COOKIE_7 0x0027
+#define regIH_COOKIE_7_BASE_IDX 0
+#define regIH_REGISTER_LAST_PART0 0x003f
+#define regIH_REGISTER_LAST_PART0_BASE_IDX 0
+#define regIH_RB_CNTL 0x0080
+#define regIH_RB_CNTL_BASE_IDX 0
+#define regIH_RB_BASE 0x0081
+#define regIH_RB_BASE_BASE_IDX 0
+#define regIH_RB_BASE_HI 0x0082
+#define regIH_RB_BASE_HI_BASE_IDX 0
+#define regIH_RB_RPTR 0x0083
+#define regIH_RB_RPTR_BASE_IDX 0
+#define regIH_RB_WPTR 0x0084
+#define regIH_RB_WPTR_BASE_IDX 0
+#define regIH_RB_WPTR_ADDR_HI 0x0085
+#define regIH_RB_WPTR_ADDR_HI_BASE_IDX 0
+#define regIH_RB_WPTR_ADDR_LO 0x0086
+#define regIH_RB_WPTR_ADDR_LO_BASE_IDX 0
+#define regIH_DOORBELL_RPTR 0x0087
+#define regIH_DOORBELL_RPTR_BASE_IDX 0
+#define regIH_DOORBELL_RETRY_CAM 0x0088
+#define regIH_DOORBELL_RETRY_CAM_BASE_IDX 0
+#define regIH_RB_CNTL_RING1 0x008c
+#define regIH_RB_CNTL_RING1_BASE_IDX 0
+#define regIH_RB_BASE_RING1 0x008d
+#define regIH_RB_BASE_RING1_BASE_IDX 0
+#define regIH_RB_BASE_HI_RING1 0x008e
+#define regIH_RB_BASE_HI_RING1_BASE_IDX 0
+#define regIH_RB_RPTR_RING1 0x008f
+#define regIH_RB_RPTR_RING1_BASE_IDX 0
+#define regIH_RB_WPTR_RING1 0x0090
+#define regIH_RB_WPTR_RING1_BASE_IDX 0
+#define regIH_DOORBELL_RPTR_RING1 0x0093
+#define regIH_DOORBELL_RPTR_RING1_BASE_IDX 0
+#define regIH_RETRY_CAM_ACK 0x00a4
+#define regIH_RETRY_CAM_ACK_BASE_IDX 0
+#define regIH_VERSION 0x00a5
+#define regIH_VERSION_BASE_IDX 0
+#define regIH_CNTL 0x00c0
+#define regIH_CNTL_BASE_IDX 0
+#define regIH_CNTL2 0x00c1
+#define regIH_CNTL2_BASE_IDX 0
+#define regIH_STATUS 0x00c2
+#define regIH_STATUS_BASE_IDX 0
+#define regIH_PERFMON_CNTL 0x00c3
+#define regIH_PERFMON_CNTL_BASE_IDX 0
+#define regIH_PERFCOUNTER0_RESULT 0x00c4
+#define regIH_PERFCOUNTER0_RESULT_BASE_IDX 0
+#define regIH_PERFCOUNTER1_RESULT 0x00c5
+#define regIH_PERFCOUNTER1_RESULT_BASE_IDX 0
+#define regIH_DSM_MATCH_VALUE_BIT_31_0 0x00c7
+#define regIH_DSM_MATCH_VALUE_BIT_31_0_BASE_IDX 0
+#define regIH_DSM_MATCH_VALUE_BIT_63_32 0x00c8
+#define regIH_DSM_MATCH_VALUE_BIT_63_32_BASE_IDX 0
+#define regIH_DSM_MATCH_VALUE_BIT_95_64 0x00c9
+#define regIH_DSM_MATCH_VALUE_BIT_95_64_BASE_IDX 0
+#define regIH_DSM_MATCH_FIELD_CONTROL 0x00ca
+#define regIH_DSM_MATCH_FIELD_CONTROL_BASE_IDX 0
+#define regIH_DSM_MATCH_DATA_CONTROL 0x00cb
+#define regIH_DSM_MATCH_DATA_CONTROL_BASE_IDX 0
+#define regIH_DSM_MATCH_FCN_ID 0x00cc
+#define regIH_DSM_MATCH_FCN_ID_BASE_IDX 0
+#define regIH_LIMIT_INT_RATE_CNTL 0x00cd
+#define regIH_LIMIT_INT_RATE_CNTL_BASE_IDX 0
+#define regIH_VF_RB_STATUS 0x00ce
+#define regIH_VF_RB_STATUS_BASE_IDX 0
+#define regIH_VF_RB_STATUS2 0x00cf
+#define regIH_VF_RB_STATUS2_BASE_IDX 0
+#define regIH_VF_RB1_STATUS 0x00d0
+#define regIH_VF_RB1_STATUS_BASE_IDX 0
+#define regIH_VF_RB1_STATUS2 0x00d1
+#define regIH_VF_RB1_STATUS2_BASE_IDX 0
+#define regIH_INT_FLOOD_CNTL 0x00d5
+#define regIH_INT_FLOOD_CNTL_BASE_IDX 0
+#define regIH_RB0_INT_FLOOD_STATUS 0x00d6
+#define regIH_RB0_INT_FLOOD_STATUS_BASE_IDX 0
+#define regIH_RB1_INT_FLOOD_STATUS 0x00d7
+#define regIH_RB1_INT_FLOOD_STATUS_BASE_IDX 0
+#define regIH_INT_FLOOD_STATUS 0x00d9
+#define regIH_INT_FLOOD_STATUS_BASE_IDX 0
+#define regIH_STORM_CLIENT_LIST_CNTL 0x00da
+#define regIH_STORM_CLIENT_LIST_CNTL_BASE_IDX 0
+#define regIH_CLK_CTRL 0x00db
+#define regIH_CLK_CTRL_BASE_IDX 0
+#define regIH_INT_FLAGS 0x00dc
+#define regIH_INT_FLAGS_BASE_IDX 0
+#define regIH_LAST_INT_INFO0 0x00dd
+#define regIH_LAST_INT_INFO0_BASE_IDX 0
+#define regIH_LAST_INT_INFO1 0x00de
+#define regIH_LAST_INT_INFO1_BASE_IDX 0
+#define regIH_LAST_INT_INFO2 0x00df
+#define regIH_LAST_INT_INFO2_BASE_IDX 0
+#define regIH_SCRATCH 0x00e0
+#define regIH_SCRATCH_BASE_IDX 0
+#define regIH_CLIENT_CREDIT_ERROR 0x00e1
+#define regIH_CLIENT_CREDIT_ERROR_BASE_IDX 0
+#define regIH_GPU_IOV_VIOLATION_LOG 0x00e2
+#define regIH_GPU_IOV_VIOLATION_LOG_BASE_IDX 0
+#define regIH_GPU_IOV_VIOLATION_LOG2 0x00e3
+#define regIH_GPU_IOV_VIOLATION_LOG2_BASE_IDX 0
+#define regIH_COOKIE_REC_VIOLATION_LOG 0x00e4
+#define regIH_COOKIE_REC_VIOLATION_LOG_BASE_IDX 0
+#define regIH_CREDIT_STATUS 0x00e5
+#define regIH_CREDIT_STATUS_BASE_IDX 0
+#define regIH_MMHUB_ERROR 0x00e6
+#define regIH_MMHUB_ERROR_BASE_IDX 0
+#define regIH_MEM_POWER_CTRL 0x00e9
+#define regIH_MEM_POWER_CTRL_BASE_IDX 0
+#define regIH_RETRY_INT_CAM_CNTL 0x00ea
+#define regIH_RETRY_INT_CAM_CNTL_BASE_IDX 0
+#define regIH_VMID_LUT_INDEX 0x00ec
+#define regIH_VMID_LUT_INDEX_BASE_IDX 0
+#define regIH_MEM_POWER_CTRL2 0x00f1
+#define regIH_MEM_POWER_CTRL2_BASE_IDX 0
+#define regIH_REGISTER_LAST_PART2 0x00ff
+#define regIH_REGISTER_LAST_PART2_BASE_IDX 0
+#define regSEM_MAILBOX 0x010a
+#define regSEM_MAILBOX_BASE_IDX 0
+#define regSEM_MAILBOX_CLEAR 0x010b
+#define regSEM_MAILBOX_CLEAR_BASE_IDX 0
+#define regSEM_REGISTER_LAST_PART2 0x017f
+#define regSEM_REGISTER_LAST_PART2_BASE_IDX 0
+#define regIH_ACTIVE_FCN_ID 0x0180
+#define regIH_ACTIVE_FCN_ID_BASE_IDX 0
+#define regIH_VIRT_RESET_REQ 0x0181
+#define regIH_VIRT_RESET_REQ_BASE_IDX 0
+#define regIH_CLIENT_CFG 0x0184
+#define regIH_CLIENT_CFG_BASE_IDX 0
+#define regIH_CLIENT_CFG_INDEX 0x0188
+#define regIH_CLIENT_CFG_INDEX_BASE_IDX 0
+#define regIH_CLIENT_CFG_DATA 0x0189
+#define regIH_CLIENT_CFG_DATA_BASE_IDX 0
+#define regIH_CLIENT_CFG_DATA2 0x018a
+#define regIH_CLIENT_CFG_DATA2_BASE_IDX 0
+#define regIH_CID_REMAP_INDEX 0x018b
+#define regIH_CID_REMAP_INDEX_BASE_IDX 0
+#define regIH_CID_REMAP_DATA 0x018c
+#define regIH_CID_REMAP_DATA_BASE_IDX 0
+#define regIH_CHICKEN 0x018d
+#define regIH_CHICKEN_BASE_IDX 0
+#define regIH_INT_DROP_CNTL 0x018f
+#define regIH_INT_DROP_CNTL_BASE_IDX 0
+#define regIH_INT_DROP_MATCH_VALUE0 0x0190
+#define regIH_INT_DROP_MATCH_VALUE0_BASE_IDX 0
+#define regIH_INT_DROP_MATCH_VALUE1 0x0191
+#define regIH_INT_DROP_MATCH_VALUE1_BASE_IDX 0
+#define regIH_INT_DROP_MATCH_MASK0 0x0192
+#define regIH_INT_DROP_MATCH_MASK0_BASE_IDX 0
+#define regIH_INT_DROP_MATCH_MASK1 0x0193
+#define regIH_INT_DROP_MATCH_MASK1_BASE_IDX 0
+#define regIH_MMHUB_CNTL 0x019e
+#define regIH_MMHUB_CNTL_BASE_IDX 0
+#define regIH_REGISTER_LAST_PART1 0x019f
+#define regIH_REGISTER_LAST_PART1_BASE_IDX 0
+
+#endif
diff --git a/drivers/gpu/drm/amd/include/asic_reg/oss/osssys_4_4_2_sh_mask.h b/drivers/gpu/drm/amd/include/asic_reg/oss/osssys_4_4_2_sh_mask.h
new file mode 100644
index 000000000000..7d1cf3bac801
--- /dev/null
+++ b/drivers/gpu/drm/amd/include/asic_reg/oss/osssys_4_4_2_sh_mask.h
@@ -0,0 +1,995 @@
+/*
+ * Copyright 2022 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ */
+#ifndef _osssys_4_4_2_SH_MASK_HEADER
+#define _osssys_4_4_2_SH_MASK_HEADER
+
+
+// addressBlock: aid_osssys_osssysdec
+//IH_VMID_0_LUT
+#define IH_VMID_0_LUT__PASID__SHIFT 0x0
+#define IH_VMID_0_LUT__PASID_MASK 0x0000FFFFL
+//IH_VMID_1_LUT
+#define IH_VMID_1_LUT__PASID__SHIFT 0x0
+#define IH_VMID_1_LUT__PASID_MASK 0x0000FFFFL
+//IH_VMID_2_LUT
+#define IH_VMID_2_LUT__PASID__SHIFT 0x0
+#define IH_VMID_2_LUT__PASID_MASK 0x0000FFFFL
+//IH_VMID_3_LUT
+#define IH_VMID_3_LUT__PASID__SHIFT 0x0
+#define IH_VMID_3_LUT__PASID_MASK 0x0000FFFFL
+//IH_VMID_4_LUT
+#define IH_VMID_4_LUT__PASID__SHIFT 0x0
+#define IH_VMID_4_LUT__PASID_MASK 0x0000FFFFL
+//IH_VMID_5_LUT
+#define IH_VMID_5_LUT__PASID__SHIFT 0x0
+#define IH_VMID_5_LUT__PASID_MASK 0x0000FFFFL
+//IH_VMID_6_LUT
+#define IH_VMID_6_LUT__PASID__SHIFT 0x0
+#define IH_VMID_6_LUT__PASID_MASK 0x0000FFFFL
+//IH_VMID_7_LUT
+#define IH_VMID_7_LUT__PASID__SHIFT 0x0
+#define IH_VMID_7_LUT__PASID_MASK 0x0000FFFFL
+//IH_VMID_8_LUT
+#define IH_VMID_8_LUT__PASID__SHIFT 0x0
+#define IH_VMID_8_LUT__PASID_MASK 0x0000FFFFL
+//IH_VMID_9_LUT
+#define IH_VMID_9_LUT__PASID__SHIFT 0x0
+#define IH_VMID_9_LUT__PASID_MASK 0x0000FFFFL
+//IH_VMID_10_LUT
+#define IH_VMID_10_LUT__PASID__SHIFT 0x0
+#define IH_VMID_10_LUT__PASID_MASK 0x0000FFFFL
+//IH_VMID_11_LUT
+#define IH_VMID_11_LUT__PASID__SHIFT 0x0
+#define IH_VMID_11_LUT__PASID_MASK 0x0000FFFFL
+//IH_VMID_12_LUT
+#define IH_VMID_12_LUT__PASID__SHIFT 0x0
+#define IH_VMID_12_LUT__PASID_MASK 0x0000FFFFL
+//IH_VMID_13_LUT
+#define IH_VMID_13_LUT__PASID__SHIFT 0x0
+#define IH_VMID_13_LUT__PASID_MASK 0x0000FFFFL
+//IH_VMID_14_LUT
+#define IH_VMID_14_LUT__PASID__SHIFT 0x0
+#define IH_VMID_14_LUT__PASID_MASK 0x0000FFFFL
+//IH_VMID_15_LUT
+#define IH_VMID_15_LUT__PASID__SHIFT 0x0
+#define IH_VMID_15_LUT__PASID_MASK 0x0000FFFFL
+//IH_VMID_0_LUT_MM
+#define IH_VMID_0_LUT_MM__PASID__SHIFT 0x0
+#define IH_VMID_0_LUT_MM__PASID_MASK 0x0000FFFFL
+//IH_VMID_1_LUT_MM
+#define IH_VMID_1_LUT_MM__PASID__SHIFT 0x0
+#define IH_VMID_1_LUT_MM__PASID_MASK 0x0000FFFFL
+//IH_VMID_2_LUT_MM
+#define IH_VMID_2_LUT_MM__PASID__SHIFT 0x0
+#define IH_VMID_2_LUT_MM__PASID_MASK 0x0000FFFFL
+//IH_VMID_3_LUT_MM
+#define IH_VMID_3_LUT_MM__PASID__SHIFT 0x0
+#define IH_VMID_3_LUT_MM__PASID_MASK 0x0000FFFFL
+//IH_VMID_4_LUT_MM
+#define IH_VMID_4_LUT_MM__PASID__SHIFT 0x0
+#define IH_VMID_4_LUT_MM__PASID_MASK 0x0000FFFFL
+//IH_VMID_5_LUT_MM
+#define IH_VMID_5_LUT_MM__PASID__SHIFT 0x0
+#define IH_VMID_5_LUT_MM__PASID_MASK 0x0000FFFFL
+//IH_VMID_6_LUT_MM
+#define IH_VMID_6_LUT_MM__PASID__SHIFT 0x0
+#define IH_VMID_6_LUT_MM__PASID_MASK 0x0000FFFFL
+//IH_VMID_7_LUT_MM
+#define IH_VMID_7_LUT_MM__PASID__SHIFT 0x0
+#define IH_VMID_7_LUT_MM__PASID_MASK 0x0000FFFFL
+//IH_VMID_8_LUT_MM
+#define IH_VMID_8_LUT_MM__PASID__SHIFT 0x0
+#define IH_VMID_8_LUT_MM__PASID_MASK 0x0000FFFFL
+//IH_VMID_9_LUT_MM
+#define IH_VMID_9_LUT_MM__PASID__SHIFT 0x0
+#define IH_VMID_9_LUT_MM__PASID_MASK 0x0000FFFFL
+//IH_VMID_10_LUT_MM
+#define IH_VMID_10_LUT_MM__PASID__SHIFT 0x0
+#define IH_VMID_10_LUT_MM__PASID_MASK 0x0000FFFFL
+//IH_VMID_11_LUT_MM
+#define IH_VMID_11_LUT_MM__PASID__SHIFT 0x0
+#define IH_VMID_11_LUT_MM__PASID_MASK 0x0000FFFFL
+//IH_VMID_12_LUT_MM
+#define IH_VMID_12_LUT_MM__PASID__SHIFT 0x0
+#define IH_VMID_12_LUT_MM__PASID_MASK 0x0000FFFFL
+//IH_VMID_13_LUT_MM
+#define IH_VMID_13_LUT_MM__PASID__SHIFT 0x0
+#define IH_VMID_13_LUT_MM__PASID_MASK 0x0000FFFFL
+//IH_VMID_14_LUT_MM
+#define IH_VMID_14_LUT_MM__PASID__SHIFT 0x0
+#define IH_VMID_14_LUT_MM__PASID_MASK 0x0000FFFFL
+//IH_VMID_15_LUT_MM
+#define IH_VMID_15_LUT_MM__PASID__SHIFT 0x0
+#define IH_VMID_15_LUT_MM__PASID_MASK 0x0000FFFFL
+//IH_COOKIE_0
+#define IH_COOKIE_0__CLIENT_ID__SHIFT 0x0
+#define IH_COOKIE_0__SOURCE_ID__SHIFT 0x8
+#define IH_COOKIE_0__RING_ID__SHIFT 0x10
+#define IH_COOKIE_0__VM_ID__SHIFT 0x18
+#define IH_COOKIE_0__RESERVED__SHIFT 0x1c
+#define IH_COOKIE_0__VMID_TYPE__SHIFT 0x1f
+#define IH_COOKIE_0__CLIENT_ID_MASK 0x000000FFL
+#define IH_COOKIE_0__SOURCE_ID_MASK 0x0000FF00L
+#define IH_COOKIE_0__RING_ID_MASK 0x00FF0000L
+#define IH_COOKIE_0__VM_ID_MASK 0x0F000000L
+#define IH_COOKIE_0__RESERVED_MASK 0x70000000L
+#define IH_COOKIE_0__VMID_TYPE_MASK 0x80000000L
+//IH_COOKIE_1
+#define IH_COOKIE_1__TIMESTAMP_31_0__SHIFT 0x0
+#define IH_COOKIE_1__TIMESTAMP_31_0_MASK 0xFFFFFFFFL
+//IH_COOKIE_2
+#define IH_COOKIE_2__TIMESTAMP_47_32__SHIFT 0x0
+#define IH_COOKIE_2__RESERVED__SHIFT 0x10
+#define IH_COOKIE_2__TIMESTAMP_SRC__SHIFT 0x1f
+#define IH_COOKIE_2__TIMESTAMP_47_32_MASK 0x0000FFFFL
+#define IH_COOKIE_2__RESERVED_MASK 0x7FFF0000L
+#define IH_COOKIE_2__TIMESTAMP_SRC_MASK 0x80000000L
+//IH_COOKIE_3
+#define IH_COOKIE_3__PAS_ID__SHIFT 0x0
+#define IH_COOKIE_3__RESERVED__SHIFT 0x10
+#define IH_COOKIE_3__PASID_SRC__SHIFT 0x1f
+#define IH_COOKIE_3__PAS_ID_MASK 0x0000FFFFL
+#define IH_COOKIE_3__RESERVED_MASK 0x7FFF0000L
+#define IH_COOKIE_3__PASID_SRC_MASK 0x80000000L
+//IH_COOKIE_4
+#define IH_COOKIE_4__CONTEXT_ID_31_0__SHIFT 0x0
+#define IH_COOKIE_4__CONTEXT_ID_31_0_MASK 0xFFFFFFFFL
+//IH_COOKIE_5
+#define IH_COOKIE_5__CONTEXT_ID_63_32__SHIFT 0x0
+#define IH_COOKIE_5__CONTEXT_ID_63_32_MASK 0xFFFFFFFFL
+//IH_COOKIE_6
+#define IH_COOKIE_6__CONTEXT_ID_95_64__SHIFT 0x0
+#define IH_COOKIE_6__CONTEXT_ID_95_64_MASK 0xFFFFFFFFL
+//IH_COOKIE_7
+#define IH_COOKIE_7__CONTEXT_ID_128_96__SHIFT 0x0
+#define IH_COOKIE_7__CONTEXT_ID_128_96_MASK 0xFFFFFFFFL
+//IH_REGISTER_LAST_PART0
+#define IH_REGISTER_LAST_PART0__RESERVED__SHIFT 0x0
+#define IH_REGISTER_LAST_PART0__RESERVED_MASK 0xFFFFFFFFL
+//IH_RB_CNTL
+#define IH_RB_CNTL__RB_ENABLE__SHIFT 0x0
+#define IH_RB_CNTL__RB_SIZE__SHIFT 0x1
+#define IH_RB_CNTL__RB_GPU_TS_ENABLE__SHIFT 0x7
+#define IH_RB_CNTL__WPTR_WRITEBACK_ENABLE__SHIFT 0x8
+#define IH_RB_CNTL__RB_FULL_DRAIN_ENABLE__SHIFT 0x9
+#define IH_RB_CNTL__FULL_DRAIN_CLEAR__SHIFT 0xa
+#define IH_RB_CNTL__PAGE_RB_CLEAR__SHIFT 0xb
+#define IH_RB_CNTL__RB_USED_INT_THRESHOLD__SHIFT 0xc
+#define IH_RB_CNTL__WPTR_OVERFLOW_ENABLE__SHIFT 0x10
+#define IH_RB_CNTL__ENABLE_INTR__SHIFT 0x11
+#define IH_RB_CNTL__MC_SWAP__SHIFT 0x12
+#define IH_RB_CNTL__MC_SNOOP__SHIFT 0x14
+#define IH_RB_CNTL__RPTR_REARM__SHIFT 0x15
+#define IH_RB_CNTL__MC_RO__SHIFT 0x16
+#define IH_RB_CNTL__MC_VMID__SHIFT 0x18
+#define IH_RB_CNTL__MC_SPACE__SHIFT 0x1c
+#define IH_RB_CNTL__WPTR_OVERFLOW_CLEAR__SHIFT 0x1f
+#define IH_RB_CNTL__RB_ENABLE_MASK 0x00000001L
+#define IH_RB_CNTL__RB_SIZE_MASK 0x0000003EL
+#define IH_RB_CNTL__RB_GPU_TS_ENABLE_MASK 0x00000080L
+#define IH_RB_CNTL__WPTR_WRITEBACK_ENABLE_MASK 0x00000100L
+#define IH_RB_CNTL__RB_FULL_DRAIN_ENABLE_MASK 0x00000200L
+#define IH_RB_CNTL__FULL_DRAIN_CLEAR_MASK 0x00000400L
+#define IH_RB_CNTL__PAGE_RB_CLEAR_MASK 0x00000800L
+#define IH_RB_CNTL__RB_USED_INT_THRESHOLD_MASK 0x0000F000L
+#define IH_RB_CNTL__WPTR_OVERFLOW_ENABLE_MASK 0x00010000L
+#define IH_RB_CNTL__ENABLE_INTR_MASK 0x00020000L
+#define IH_RB_CNTL__MC_SWAP_MASK 0x000C0000L
+#define IH_RB_CNTL__MC_SNOOP_MASK 0x00100000L
+#define IH_RB_CNTL__RPTR_REARM_MASK 0x00200000L
+#define IH_RB_CNTL__MC_RO_MASK 0x00400000L
+#define IH_RB_CNTL__MC_VMID_MASK 0x0F000000L
+#define IH_RB_CNTL__MC_SPACE_MASK 0x70000000L
+#define IH_RB_CNTL__WPTR_OVERFLOW_CLEAR_MASK 0x80000000L
+//IH_RB_BASE
+#define IH_RB_BASE__ADDR__SHIFT 0x0
+#define IH_RB_BASE__ADDR_MASK 0xFFFFFFFFL
+//IH_RB_BASE_HI
+#define IH_RB_BASE_HI__ADDR__SHIFT 0x0
+#define IH_RB_BASE_HI__ADDR_MASK 0x000000FFL
+//IH_RB_RPTR
+#define IH_RB_RPTR__OFFSET__SHIFT 0x2
+#define IH_RB_RPTR__OFFSET_MASK 0x0003FFFCL
+//IH_RB_WPTR
+#define IH_RB_WPTR__RB_OVERFLOW__SHIFT 0x0
+#define IH_RB_WPTR__OFFSET__SHIFT 0x2
+#define IH_RB_WPTR__RB_LEFT_NONE__SHIFT 0x12
+#define IH_RB_WPTR__RB_MAY_OVERFLOW__SHIFT 0x13
+#define IH_RB_WPTR__RB_OVERFLOW_MASK 0x00000001L
+#define IH_RB_WPTR__OFFSET_MASK 0x0003FFFCL
+#define IH_RB_WPTR__RB_LEFT_NONE_MASK 0x00040000L
+#define IH_RB_WPTR__RB_MAY_OVERFLOW_MASK 0x00080000L
+//IH_RB_WPTR_ADDR_HI
+#define IH_RB_WPTR_ADDR_HI__ADDR__SHIFT 0x0
+#define IH_RB_WPTR_ADDR_HI__ADDR_MASK 0x0000FFFFL
+//IH_RB_WPTR_ADDR_LO
+#define IH_RB_WPTR_ADDR_LO__ADDR__SHIFT 0x2
+#define IH_RB_WPTR_ADDR_LO__ADDR_MASK 0xFFFFFFFCL
+//IH_DOORBELL_RPTR
+#define IH_DOORBELL_RPTR__OFFSET__SHIFT 0x0
+#define IH_DOORBELL_RPTR__ENABLE__SHIFT 0x1c
+#define IH_DOORBELL_RPTR__OFFSET_MASK 0x03FFFFFFL
+#define IH_DOORBELL_RPTR__ENABLE_MASK 0x10000000L
+//IH_DOORBELL_RETRY_CAM
+#define IH_DOORBELL_RETRY_CAM__OFFSET__SHIFT 0x0
+#define IH_DOORBELL_RETRY_CAM__ENABLE__SHIFT 0x1c
+#define IH_DOORBELL_RETRY_CAM__OFFSET_MASK 0x03FFFFFFL
+#define IH_DOORBELL_RETRY_CAM__ENABLE_MASK 0x10000000L
+//IH_RB_CNTL_RING1
+#define IH_RB_CNTL_RING1__RB_ENABLE__SHIFT 0x0
+#define IH_RB_CNTL_RING1__RB_SIZE__SHIFT 0x1
+#define IH_RB_CNTL_RING1__RB_GPU_TS_ENABLE__SHIFT 0x7
+#define IH_RB_CNTL_RING1__RB_FULL_DRAIN_ENABLE__SHIFT 0x9
+#define IH_RB_CNTL_RING1__FULL_DRAIN_CLEAR__SHIFT 0xa
+#define IH_RB_CNTL_RING1__PAGE_RB_CLEAR__SHIFT 0xb
+#define IH_RB_CNTL_RING1__RB_USED_INT_THRESHOLD__SHIFT 0xc
+#define IH_RB_CNTL_RING1__WPTR_OVERFLOW_ENABLE__SHIFT 0x10
+#define IH_RB_CNTL_RING1__MC_SWAP__SHIFT 0x12
+#define IH_RB_CNTL_RING1__MC_SNOOP__SHIFT 0x14
+#define IH_RB_CNTL_RING1__MC_RO__SHIFT 0x16
+#define IH_RB_CNTL_RING1__MC_VMID__SHIFT 0x18
+#define IH_RB_CNTL_RING1__MC_SPACE__SHIFT 0x1c
+#define IH_RB_CNTL_RING1__WPTR_OVERFLOW_CLEAR__SHIFT 0x1f
+#define IH_RB_CNTL_RING1__RB_ENABLE_MASK 0x00000001L
+#define IH_RB_CNTL_RING1__RB_SIZE_MASK 0x0000003EL
+#define IH_RB_CNTL_RING1__RB_GPU_TS_ENABLE_MASK 0x00000080L
+#define IH_RB_CNTL_RING1__RB_FULL_DRAIN_ENABLE_MASK 0x00000200L
+#define IH_RB_CNTL_RING1__FULL_DRAIN_CLEAR_MASK 0x00000400L
+#define IH_RB_CNTL_RING1__PAGE_RB_CLEAR_MASK 0x00000800L
+#define IH_RB_CNTL_RING1__RB_USED_INT_THRESHOLD_MASK 0x0000F000L
+#define IH_RB_CNTL_RING1__WPTR_OVERFLOW_ENABLE_MASK 0x00010000L
+#define IH_RB_CNTL_RING1__MC_SWAP_MASK 0x000C0000L
+#define IH_RB_CNTL_RING1__MC_SNOOP_MASK 0x00100000L
+#define IH_RB_CNTL_RING1__MC_RO_MASK 0x00400000L
+#define IH_RB_CNTL_RING1__MC_VMID_MASK 0x0F000000L
+#define IH_RB_CNTL_RING1__MC_SPACE_MASK 0x70000000L
+#define IH_RB_CNTL_RING1__WPTR_OVERFLOW_CLEAR_MASK 0x80000000L
+//IH_RB_BASE_RING1
+#define IH_RB_BASE_RING1__ADDR__SHIFT 0x0
+#define IH_RB_BASE_RING1__ADDR_MASK 0xFFFFFFFFL
+//IH_RB_BASE_HI_RING1
+#define IH_RB_BASE_HI_RING1__ADDR__SHIFT 0x0
+#define IH_RB_BASE_HI_RING1__ADDR_MASK 0x000000FFL
+//IH_RB_RPTR_RING1
+#define IH_RB_RPTR_RING1__OFFSET__SHIFT 0x2
+#define IH_RB_RPTR_RING1__OFFSET_MASK 0x0003FFFCL
+//IH_RB_WPTR_RING1
+#define IH_RB_WPTR_RING1__RB_OVERFLOW__SHIFT 0x0
+#define IH_RB_WPTR_RING1__OFFSET__SHIFT 0x2
+#define IH_RB_WPTR_RING1__RB_LEFT_NONE__SHIFT 0x12
+#define IH_RB_WPTR_RING1__RB_MAY_OVERFLOW__SHIFT 0x13
+#define IH_RB_WPTR_RING1__RB_OVERFLOW_MASK 0x00000001L
+#define IH_RB_WPTR_RING1__OFFSET_MASK 0x0003FFFCL
+#define IH_RB_WPTR_RING1__RB_LEFT_NONE_MASK 0x00040000L
+#define IH_RB_WPTR_RING1__RB_MAY_OVERFLOW_MASK 0x00080000L
+//IH_DOORBELL_RPTR_RING1
+#define IH_DOORBELL_RPTR_RING1__OFFSET__SHIFT 0x0
+#define IH_DOORBELL_RPTR_RING1__ENABLE__SHIFT 0x1c
+#define IH_DOORBELL_RPTR_RING1__OFFSET_MASK 0x03FFFFFFL
+#define IH_DOORBELL_RPTR_RING1__ENABLE_MASK 0x10000000L
+//IH_RETRY_CAM_ACK
+#define IH_RETRY_CAM_ACK__INDEX__SHIFT 0x0
+#define IH_RETRY_CAM_ACK__INDEX_MASK 0x000003FFL
+//IH_VERSION
+#define IH_VERSION__MINVER__SHIFT 0x0
+#define IH_VERSION__MAJVER__SHIFT 0x8
+#define IH_VERSION__REV__SHIFT 0x10
+#define IH_VERSION__MINVER_MASK 0x0000007FL
+#define IH_VERSION__MAJVER_MASK 0x00007F00L
+#define IH_VERSION__REV_MASK 0x003F0000L
+//IH_CNTL
+#define IH_CNTL__WPTR_WRITEBACK_TIMER__SHIFT 0x0
+#define IH_CNTL__IH_IDLE_HYSTERESIS_CNTL__SHIFT 0x6
+#define IH_CNTL__IH_FIFO_HIGHWATER__SHIFT 0x8
+#define IH_CNTL__MC_WR_CLEAN_CNT__SHIFT 0x14
+#define IH_CNTL__SRAM_ECC_ENABLE__SHIFT 0x19
+#define IH_CNTL__FED_ENABLE__SHIFT 0x1a
+#define IH_CNTL__WPTR_WRITEBACK_TIMER_MASK 0x0000001FL
+#define IH_CNTL__IH_IDLE_HYSTERESIS_CNTL_MASK 0x000000C0L
+#define IH_CNTL__IH_FIFO_HIGHWATER_MASK 0x00007F00L
+#define IH_CNTL__MC_WR_CLEAN_CNT_MASK 0x01F00000L
+#define IH_CNTL__SRAM_ECC_ENABLE_MASK 0x02000000L
+#define IH_CNTL__FED_ENABLE_MASK 0x04000000L
+//IH_CNTL2
+#define IH_CNTL2__SELF_IV_FORCE_WPTR_UPDATE_TIMEOUT__SHIFT 0x0
+#define IH_CNTL2__SELF_IV_FORCE_WPTR_UPDATE_ENABLE__SHIFT 0x8
+#define IH_CNTL2__SELF_IV_FORCE_WPTR_UPDATE_TIMEOUT_MASK 0x0000001FL
+#define IH_CNTL2__SELF_IV_FORCE_WPTR_UPDATE_ENABLE_MASK 0x00000100L
+//IH_STATUS
+#define IH_STATUS__IDLE__SHIFT 0x0
+#define IH_STATUS__INPUT_IDLE__SHIFT 0x1
+#define IH_STATUS__BUFFER_IDLE__SHIFT 0x2
+#define IH_STATUS__RB_FULL__SHIFT 0x3
+#define IH_STATUS__RB_FULL_DRAIN__SHIFT 0x4
+#define IH_STATUS__RB_OVERFLOW__SHIFT 0x5
+#define IH_STATUS__MC_WR_IDLE__SHIFT 0x6
+#define IH_STATUS__MC_WR_STALL__SHIFT 0x7
+#define IH_STATUS__MC_WR_CLEAN_PENDING__SHIFT 0x8
+#define IH_STATUS__MC_WR_CLEAN_STALL__SHIFT 0x9
+#define IH_STATUS__BIF_INTERRUPT_LINE__SHIFT 0xa
+#define IH_STATUS__SWITCH_READY__SHIFT 0xb
+#define IH_STATUS__RB1_FULL__SHIFT 0xc
+#define IH_STATUS__RB1_FULL_DRAIN__SHIFT 0xd
+#define IH_STATUS__RB1_OVERFLOW__SHIFT 0xe
+#define IH_STATUS__SELF_INT_GEN_IDLE__SHIFT 0x12
+#define IH_STATUS__RETRY_INT_CAM_IDLE__SHIFT 0x13
+#define IH_STATUS__IH_BUFFER_MEM_POWER_GATED__SHIFT 0x14
+#define IH_STATUS__IH_RETRY_INT_CAM_MEM_POWER_GATED__SHIFT 0x15
+#define IH_STATUS__IH_PASID_LUT_MEM_POWER_GATED__SHIFT 0x16
+#define IH_STATUS__IDLE_MASK 0x00000001L
+#define IH_STATUS__INPUT_IDLE_MASK 0x00000002L
+#define IH_STATUS__BUFFER_IDLE_MASK 0x00000004L
+#define IH_STATUS__RB_FULL_MASK 0x00000008L
+#define IH_STATUS__RB_FULL_DRAIN_MASK 0x00000010L
+#define IH_STATUS__RB_OVERFLOW_MASK 0x00000020L
+#define IH_STATUS__MC_WR_IDLE_MASK 0x00000040L
+#define IH_STATUS__MC_WR_STALL_MASK 0x00000080L
+#define IH_STATUS__MC_WR_CLEAN_PENDING_MASK 0x00000100L
+#define IH_STATUS__MC_WR_CLEAN_STALL_MASK 0x00000200L
+#define IH_STATUS__BIF_INTERRUPT_LINE_MASK 0x00000400L
+#define IH_STATUS__SWITCH_READY_MASK 0x00000800L
+#define IH_STATUS__RB1_FULL_MASK 0x00001000L
+#define IH_STATUS__RB1_FULL_DRAIN_MASK 0x00002000L
+#define IH_STATUS__RB1_OVERFLOW_MASK 0x00004000L
+#define IH_STATUS__SELF_INT_GEN_IDLE_MASK 0x00040000L
+#define IH_STATUS__RETRY_INT_CAM_IDLE_MASK 0x00080000L
+#define IH_STATUS__IH_BUFFER_MEM_POWER_GATED_MASK 0x00100000L
+#define IH_STATUS__IH_RETRY_INT_CAM_MEM_POWER_GATED_MASK 0x00200000L
+#define IH_STATUS__IH_PASID_LUT_MEM_POWER_GATED_MASK 0x00400000L
+//IH_PERFMON_CNTL
+#define IH_PERFMON_CNTL__ENABLE0__SHIFT 0x0
+#define IH_PERFMON_CNTL__CLEAR0__SHIFT 0x1
+#define IH_PERFMON_CNTL__PERF_SEL0__SHIFT 0x2
+#define IH_PERFMON_CNTL__ENABLE1__SHIFT 0x10
+#define IH_PERFMON_CNTL__CLEAR1__SHIFT 0x11
+#define IH_PERFMON_CNTL__PERF_SEL1__SHIFT 0x12
+#define IH_PERFMON_CNTL__ENABLE0_MASK 0x00000001L
+#define IH_PERFMON_CNTL__CLEAR0_MASK 0x00000002L
+#define IH_PERFMON_CNTL__PERF_SEL0_MASK 0x00000FFCL
+#define IH_PERFMON_CNTL__ENABLE1_MASK 0x00010000L
+#define IH_PERFMON_CNTL__CLEAR1_MASK 0x00020000L
+#define IH_PERFMON_CNTL__PERF_SEL1_MASK 0x0FFC0000L
+//IH_PERFCOUNTER0_RESULT
+#define IH_PERFCOUNTER0_RESULT__PERF_COUNT__SHIFT 0x0
+#define IH_PERFCOUNTER0_RESULT__PERF_COUNT_MASK 0xFFFFFFFFL
+//IH_PERFCOUNTER1_RESULT
+#define IH_PERFCOUNTER1_RESULT__PERF_COUNT__SHIFT 0x0
+#define IH_PERFCOUNTER1_RESULT__PERF_COUNT_MASK 0xFFFFFFFFL
+//IH_DSM_MATCH_VALUE_BIT_31_0
+#define IH_DSM_MATCH_VALUE_BIT_31_0__VALUE__SHIFT 0x0
+#define IH_DSM_MATCH_VALUE_BIT_31_0__VALUE_MASK 0xFFFFFFFFL
+//IH_DSM_MATCH_VALUE_BIT_63_32
+#define IH_DSM_MATCH_VALUE_BIT_63_32__VALUE__SHIFT 0x0
+#define IH_DSM_MATCH_VALUE_BIT_63_32__VALUE_MASK 0xFFFFFFFFL
+//IH_DSM_MATCH_VALUE_BIT_95_64
+#define IH_DSM_MATCH_VALUE_BIT_95_64__VALUE__SHIFT 0x0
+#define IH_DSM_MATCH_VALUE_BIT_95_64__VALUE_MASK 0xFFFFFFFFL
+//IH_DSM_MATCH_FIELD_CONTROL
+#define IH_DSM_MATCH_FIELD_CONTROL__SRC_EN__SHIFT 0x0
+#define IH_DSM_MATCH_FIELD_CONTROL__FCNID_EN__SHIFT 0x1
+#define IH_DSM_MATCH_FIELD_CONTROL__TIMESTAMP_EN__SHIFT 0x2
+#define IH_DSM_MATCH_FIELD_CONTROL__RINGID_EN__SHIFT 0x3
+#define IH_DSM_MATCH_FIELD_CONTROL__VMID_EN__SHIFT 0x4
+#define IH_DSM_MATCH_FIELD_CONTROL__PASID_EN__SHIFT 0x5
+#define IH_DSM_MATCH_FIELD_CONTROL__CLIENT_ID_EN__SHIFT 0x6
+#define IH_DSM_MATCH_FIELD_CONTROL__DIEID_EN__SHIFT 0x7
+#define IH_DSM_MATCH_FIELD_CONTROL__SRC_EN_MASK 0x00000001L
+#define IH_DSM_MATCH_FIELD_CONTROL__FCNID_EN_MASK 0x00000002L
+#define IH_DSM_MATCH_FIELD_CONTROL__TIMESTAMP_EN_MASK 0x00000004L
+#define IH_DSM_MATCH_FIELD_CONTROL__RINGID_EN_MASK 0x00000008L
+#define IH_DSM_MATCH_FIELD_CONTROL__VMID_EN_MASK 0x00000010L
+#define IH_DSM_MATCH_FIELD_CONTROL__PASID_EN_MASK 0x00000020L
+#define IH_DSM_MATCH_FIELD_CONTROL__CLIENT_ID_EN_MASK 0x00000040L
+#define IH_DSM_MATCH_FIELD_CONTROL__DIEID_EN_MASK 0x00000080L
+//IH_DSM_MATCH_DATA_CONTROL
+#define IH_DSM_MATCH_DATA_CONTROL__VALUE__SHIFT 0x0
+#define IH_DSM_MATCH_DATA_CONTROL__VALUE_MASK 0x0FFFFFFFL
+//IH_DSM_MATCH_FCN_ID
+#define IH_DSM_MATCH_FCN_ID__PF_VF__SHIFT 0x0
+#define IH_DSM_MATCH_FCN_ID__VF_ID__SHIFT 0x1
+#define IH_DSM_MATCH_FCN_ID__PF_VF_MASK 0x00000001L
+#define IH_DSM_MATCH_FCN_ID__VF_ID_MASK 0x0000000EL
+//IH_LIMIT_INT_RATE_CNTL
+#define IH_LIMIT_INT_RATE_CNTL__LIMIT_ENABLE__SHIFT 0x0
+#define IH_LIMIT_INT_RATE_CNTL__PERF_INTERVAL__SHIFT 0x1
+#define IH_LIMIT_INT_RATE_CNTL__PERF_THRESHOLD__SHIFT 0x5
+#define IH_LIMIT_INT_RATE_CNTL__RETURN_DELAY__SHIFT 0x11
+#define IH_LIMIT_INT_RATE_CNTL__PERF_RESULT__SHIFT 0x15
+#define IH_LIMIT_INT_RATE_CNTL__LIMIT_ENABLE_MASK 0x00000001L
+#define IH_LIMIT_INT_RATE_CNTL__PERF_INTERVAL_MASK 0x0000001EL
+#define IH_LIMIT_INT_RATE_CNTL__PERF_THRESHOLD_MASK 0x0000FFE0L
+#define IH_LIMIT_INT_RATE_CNTL__RETURN_DELAY_MASK 0x001E0000L
+#define IH_LIMIT_INT_RATE_CNTL__PERF_RESULT_MASK 0xFFE00000L
+//IH_VF_RB_STATUS
+#define IH_VF_RB_STATUS__RB_FULL_DRAIN_VF__SHIFT 0x0
+#define IH_VF_RB_STATUS__RB_OVERFLOW_VF__SHIFT 0x10
+#define IH_VF_RB_STATUS__RB_FULL_DRAIN_VF_MASK 0x000000FFL
+#define IH_VF_RB_STATUS__RB_OVERFLOW_VF_MASK 0x00FF0000L
+//IH_VF_RB_STATUS2
+#define IH_VF_RB_STATUS2__RB_FULL_VF__SHIFT 0x0
+#define IH_VF_RB_STATUS2__BIF_INTERRUPT_LINE_VF__SHIFT 0x10
+#define IH_VF_RB_STATUS2__RB_FULL_VF_MASK 0x000000FFL
+#define IH_VF_RB_STATUS2__BIF_INTERRUPT_LINE_VF_MASK 0x00FF0000L
+//IH_VF_RB1_STATUS
+#define IH_VF_RB1_STATUS__RB_FULL_DRAIN_VF__SHIFT 0x0
+#define IH_VF_RB1_STATUS__RB_OVERFLOW_VF__SHIFT 0x10
+#define IH_VF_RB1_STATUS__RB_FULL_DRAIN_VF_MASK 0x000000FFL
+#define IH_VF_RB1_STATUS__RB_OVERFLOW_VF_MASK 0x00FF0000L
+//IH_VF_RB1_STATUS2
+#define IH_VF_RB1_STATUS2__RB_FULL_VF__SHIFT 0x0
+#define IH_VF_RB1_STATUS2__RB_FULL_VF_MASK 0x000000FFL
+//IH_INT_FLOOD_CNTL
+#define IH_INT_FLOOD_CNTL__HIGHWATER__SHIFT 0x0
+#define IH_INT_FLOOD_CNTL__FLOOD_CNTL_ENABLE__SHIFT 0x3
+#define IH_INT_FLOOD_CNTL__CLEAR_INT_FLOOD_STATUS__SHIFT 0x4
+#define IH_INT_FLOOD_CNTL__HIGHWATER_MASK 0x00000007L
+#define IH_INT_FLOOD_CNTL__FLOOD_CNTL_ENABLE_MASK 0x00000008L
+#define IH_INT_FLOOD_CNTL__CLEAR_INT_FLOOD_STATUS_MASK 0x00000010L
+//IH_RB0_INT_FLOOD_STATUS
+#define IH_RB0_INT_FLOOD_STATUS__RB_INT_DROPPED_VF__SHIFT 0x0
+#define IH_RB0_INT_FLOOD_STATUS__RB_INT_DROPPED__SHIFT 0x1f
+#define IH_RB0_INT_FLOOD_STATUS__RB_INT_DROPPED_VF_MASK 0x000000FFL
+#define IH_RB0_INT_FLOOD_STATUS__RB_INT_DROPPED_MASK 0x80000000L
+//IH_RB1_INT_FLOOD_STATUS
+#define IH_RB1_INT_FLOOD_STATUS__RB_INT_DROPPED_VF__SHIFT 0x0
+#define IH_RB1_INT_FLOOD_STATUS__RB_INT_DROPPED__SHIFT 0x1f
+#define IH_RB1_INT_FLOOD_STATUS__RB_INT_DROPPED_VF_MASK 0x000000FFL
+#define IH_RB1_INT_FLOOD_STATUS__RB_INT_DROPPED_MASK 0x80000000L
+//IH_INT_FLOOD_STATUS
+#define IH_INT_FLOOD_STATUS__INT_DROP_CNT__SHIFT 0x0
+#define IH_INT_FLOOD_STATUS__FIRST_DROP_INT_CLIENT_ID__SHIFT 0x8
+#define IH_INT_FLOOD_STATUS__FIRST_DROP_INT_SOURCE_ID__SHIFT 0x10
+#define IH_INT_FLOOD_STATUS__FIRST_DROP_INT_VF_ID__SHIFT 0x18
+#define IH_INT_FLOOD_STATUS__FIRST_DROP_INT_VF__SHIFT 0x1c
+#define IH_INT_FLOOD_STATUS__INT_DROPPED__SHIFT 0x1e
+#define IH_INT_FLOOD_STATUS__INT_DROP_CNT_MASK 0x000000FFL
+#define IH_INT_FLOOD_STATUS__FIRST_DROP_INT_CLIENT_ID_MASK 0x0000FF00L
+#define IH_INT_FLOOD_STATUS__FIRST_DROP_INT_SOURCE_ID_MASK 0x00FF0000L
+#define IH_INT_FLOOD_STATUS__FIRST_DROP_INT_VF_ID_MASK 0x07000000L
+#define IH_INT_FLOOD_STATUS__FIRST_DROP_INT_VF_MASK 0x10000000L
+#define IH_INT_FLOOD_STATUS__INT_DROPPED_MASK 0x40000000L
+//IH_STORM_CLIENT_LIST_CNTL
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT1_IS_STORM_CLIENT__SHIFT 0x1
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT2_IS_STORM_CLIENT__SHIFT 0x2
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT3_IS_STORM_CLIENT__SHIFT 0x3
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT4_IS_STORM_CLIENT__SHIFT 0x4
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT5_IS_STORM_CLIENT__SHIFT 0x5
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT6_IS_STORM_CLIENT__SHIFT 0x6
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT7_IS_STORM_CLIENT__SHIFT 0x7
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT8_IS_STORM_CLIENT__SHIFT 0x8
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT9_IS_STORM_CLIENT__SHIFT 0x9
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT10_IS_STORM_CLIENT__SHIFT 0xa
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT11_IS_STORM_CLIENT__SHIFT 0xb
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT12_IS_STORM_CLIENT__SHIFT 0xc
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT13_IS_STORM_CLIENT__SHIFT 0xd
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT14_IS_STORM_CLIENT__SHIFT 0xe
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT15_IS_STORM_CLIENT__SHIFT 0xf
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT16_IS_STORM_CLIENT__SHIFT 0x10
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT17_IS_STORM_CLIENT__SHIFT 0x11
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT18_IS_STORM_CLIENT__SHIFT 0x12
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT19_IS_STORM_CLIENT__SHIFT 0x13
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT20_IS_STORM_CLIENT__SHIFT 0x14
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT21_IS_STORM_CLIENT__SHIFT 0x15
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT22_IS_STORM_CLIENT__SHIFT 0x16
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT23_IS_STORM_CLIENT__SHIFT 0x17
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT24_IS_STORM_CLIENT__SHIFT 0x18
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT25_IS_STORM_CLIENT__SHIFT 0x19
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT26_IS_STORM_CLIENT__SHIFT 0x1a
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT27_IS_STORM_CLIENT__SHIFT 0x1b
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT28_IS_STORM_CLIENT__SHIFT 0x1c
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT29_IS_STORM_CLIENT__SHIFT 0x1d
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT30_IS_STORM_CLIENT__SHIFT 0x1e
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT31_IS_STORM_CLIENT__SHIFT 0x1f
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT1_IS_STORM_CLIENT_MASK 0x00000002L
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT2_IS_STORM_CLIENT_MASK 0x00000004L
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT3_IS_STORM_CLIENT_MASK 0x00000008L
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT4_IS_STORM_CLIENT_MASK 0x00000010L
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT5_IS_STORM_CLIENT_MASK 0x00000020L
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT6_IS_STORM_CLIENT_MASK 0x00000040L
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT7_IS_STORM_CLIENT_MASK 0x00000080L
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT8_IS_STORM_CLIENT_MASK 0x00000100L
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT9_IS_STORM_CLIENT_MASK 0x00000200L
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT10_IS_STORM_CLIENT_MASK 0x00000400L
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT11_IS_STORM_CLIENT_MASK 0x00000800L
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT12_IS_STORM_CLIENT_MASK 0x00001000L
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT13_IS_STORM_CLIENT_MASK 0x00002000L
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT14_IS_STORM_CLIENT_MASK 0x00004000L
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT15_IS_STORM_CLIENT_MASK 0x00008000L
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT16_IS_STORM_CLIENT_MASK 0x00010000L
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT17_IS_STORM_CLIENT_MASK 0x00020000L
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT18_IS_STORM_CLIENT_MASK 0x00040000L
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT19_IS_STORM_CLIENT_MASK 0x00080000L
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT20_IS_STORM_CLIENT_MASK 0x00100000L
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT21_IS_STORM_CLIENT_MASK 0x00200000L
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT22_IS_STORM_CLIENT_MASK 0x00400000L
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT23_IS_STORM_CLIENT_MASK 0x00800000L
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT24_IS_STORM_CLIENT_MASK 0x01000000L
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT25_IS_STORM_CLIENT_MASK 0x02000000L
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT26_IS_STORM_CLIENT_MASK 0x04000000L
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT27_IS_STORM_CLIENT_MASK 0x08000000L
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT28_IS_STORM_CLIENT_MASK 0x10000000L
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT29_IS_STORM_CLIENT_MASK 0x20000000L
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT30_IS_STORM_CLIENT_MASK 0x40000000L
+#define IH_STORM_CLIENT_LIST_CNTL__CLIENT31_IS_STORM_CLIENT_MASK 0x80000000L
+//IH_CLK_CTRL
+#define IH_CLK_CTRL__IH_PASID_LUT_MEM_CLK_SOFT_OVERRIDE__SHIFT 0x17
+#define IH_CLK_CTRL__IH_RAS_CLK_SOFT_OVERRIDE__SHIFT 0x18
+#define IH_CLK_CTRL__IH_RETRY_INT_CAM_MEM_CLK_SOFT_OVERRIDE__SHIFT 0x19
+#define IH_CLK_CTRL__IH_BUFFER_MEM_CLK_SOFT_OVERRIDE__SHIFT 0x1a
+#define IH_CLK_CTRL__DBUS_MUX_CLK_SOFT_OVERRIDE__SHIFT 0x1b
+#define IH_CLK_CTRL__OSSSYS_SHARE_CLK_SOFT_OVERRIDE__SHIFT 0x1c
+#define IH_CLK_CTRL__LIMIT_SMN_CLK_SOFT_OVERRIDE__SHIFT 0x1d
+#define IH_CLK_CTRL__DYN_CLK_SOFT_OVERRIDE__SHIFT 0x1e
+#define IH_CLK_CTRL__REG_CLK_SOFT_OVERRIDE__SHIFT 0x1f
+#define IH_CLK_CTRL__IH_PASID_LUT_MEM_CLK_SOFT_OVERRIDE_MASK 0x00800000L
+#define IH_CLK_CTRL__IH_RAS_CLK_SOFT_OVERRIDE_MASK 0x01000000L
+#define IH_CLK_CTRL__IH_RETRY_INT_CAM_MEM_CLK_SOFT_OVERRIDE_MASK 0x02000000L
+#define IH_CLK_CTRL__IH_BUFFER_MEM_CLK_SOFT_OVERRIDE_MASK 0x04000000L
+#define IH_CLK_CTRL__DBUS_MUX_CLK_SOFT_OVERRIDE_MASK 0x08000000L
+#define IH_CLK_CTRL__OSSSYS_SHARE_CLK_SOFT_OVERRIDE_MASK 0x10000000L
+#define IH_CLK_CTRL__LIMIT_SMN_CLK_SOFT_OVERRIDE_MASK 0x20000000L
+#define IH_CLK_CTRL__DYN_CLK_SOFT_OVERRIDE_MASK 0x40000000L
+#define IH_CLK_CTRL__REG_CLK_SOFT_OVERRIDE_MASK 0x80000000L
+//IH_INT_FLAGS
+#define IH_INT_FLAGS__CLIENT_0_FLAG__SHIFT 0x0
+#define IH_INT_FLAGS__CLIENT_1_FLAG__SHIFT 0x1
+#define IH_INT_FLAGS__CLIENT_2_FLAG__SHIFT 0x2
+#define IH_INT_FLAGS__CLIENT_3_FLAG__SHIFT 0x3
+#define IH_INT_FLAGS__CLIENT_4_FLAG__SHIFT 0x4
+#define IH_INT_FLAGS__CLIENT_5_FLAG__SHIFT 0x5
+#define IH_INT_FLAGS__CLIENT_6_FLAG__SHIFT 0x6
+#define IH_INT_FLAGS__CLIENT_7_FLAG__SHIFT 0x7
+#define IH_INT_FLAGS__CLIENT_8_FLAG__SHIFT 0x8
+#define IH_INT_FLAGS__CLIENT_9_FLAG__SHIFT 0x9
+#define IH_INT_FLAGS__CLIENT_10_FLAG__SHIFT 0xa
+#define IH_INT_FLAGS__CLIENT_11_FLAG__SHIFT 0xb
+#define IH_INT_FLAGS__CLIENT_12_FLAG__SHIFT 0xc
+#define IH_INT_FLAGS__CLIENT_13_FLAG__SHIFT 0xd
+#define IH_INT_FLAGS__CLIENT_14_FLAG__SHIFT 0xe
+#define IH_INT_FLAGS__CLIENT_15_FLAG__SHIFT 0xf
+#define IH_INT_FLAGS__CLIENT_16_FLAG__SHIFT 0x10
+#define IH_INT_FLAGS__CLIENT_17_FLAG__SHIFT 0x11
+#define IH_INT_FLAGS__CLIENT_18_FLAG__SHIFT 0x12
+#define IH_INT_FLAGS__CLIENT_19_FLAG__SHIFT 0x13
+#define IH_INT_FLAGS__CLIENT_20_FLAG__SHIFT 0x14
+#define IH_INT_FLAGS__CLIENT_21_FLAG__SHIFT 0x15
+#define IH_INT_FLAGS__CLIENT_22_FLAG__SHIFT 0x16
+#define IH_INT_FLAGS__CLIENT_23_FLAG__SHIFT 0x17
+#define IH_INT_FLAGS__CLIENT_24_FLAG__SHIFT 0x18
+#define IH_INT_FLAGS__CLIENT_25_FLAG__SHIFT 0x19
+#define IH_INT_FLAGS__CLIENT_26_FLAG__SHIFT 0x1a
+#define IH_INT_FLAGS__CLIENT_27_FLAG__SHIFT 0x1b
+#define IH_INT_FLAGS__CLIENT_28_FLAG__SHIFT 0x1c
+#define IH_INT_FLAGS__CLIENT_29_FLAG__SHIFT 0x1d
+#define IH_INT_FLAGS__CLIENT_30_FLAG__SHIFT 0x1e
+#define IH_INT_FLAGS__CLIENT_31_FLAG__SHIFT 0x1f
+#define IH_INT_FLAGS__CLIENT_0_FLAG_MASK 0x00000001L
+#define IH_INT_FLAGS__CLIENT_1_FLAG_MASK 0x00000002L
+#define IH_INT_FLAGS__CLIENT_2_FLAG_MASK 0x00000004L
+#define IH_INT_FLAGS__CLIENT_3_FLAG_MASK 0x00000008L
+#define IH_INT_FLAGS__CLIENT_4_FLAG_MASK 0x00000010L
+#define IH_INT_FLAGS__CLIENT_5_FLAG_MASK 0x00000020L
+#define IH_INT_FLAGS__CLIENT_6_FLAG_MASK 0x00000040L
+#define IH_INT_FLAGS__CLIENT_7_FLAG_MASK 0x00000080L
+#define IH_INT_FLAGS__CLIENT_8_FLAG_MASK 0x00000100L
+#define IH_INT_FLAGS__CLIENT_9_FLAG_MASK 0x00000200L
+#define IH_INT_FLAGS__CLIENT_10_FLAG_MASK 0x00000400L
+#define IH_INT_FLAGS__CLIENT_11_FLAG_MASK 0x00000800L
+#define IH_INT_FLAGS__CLIENT_12_FLAG_MASK 0x00001000L
+#define IH_INT_FLAGS__CLIENT_13_FLAG_MASK 0x00002000L
+#define IH_INT_FLAGS__CLIENT_14_FLAG_MASK 0x00004000L
+#define IH_INT_FLAGS__CLIENT_15_FLAG_MASK 0x00008000L
+#define IH_INT_FLAGS__CLIENT_16_FLAG_MASK 0x00010000L
+#define IH_INT_FLAGS__CLIENT_17_FLAG_MASK 0x00020000L
+#define IH_INT_FLAGS__CLIENT_18_FLAG_MASK 0x00040000L
+#define IH_INT_FLAGS__CLIENT_19_FLAG_MASK 0x00080000L
+#define IH_INT_FLAGS__CLIENT_20_FLAG_MASK 0x00100000L
+#define IH_INT_FLAGS__CLIENT_21_FLAG_MASK 0x00200000L
+#define IH_INT_FLAGS__CLIENT_22_FLAG_MASK 0x00400000L
+#define IH_INT_FLAGS__CLIENT_23_FLAG_MASK 0x00800000L
+#define IH_INT_FLAGS__CLIENT_24_FLAG_MASK 0x01000000L
+#define IH_INT_FLAGS__CLIENT_25_FLAG_MASK 0x02000000L
+#define IH_INT_FLAGS__CLIENT_26_FLAG_MASK 0x04000000L
+#define IH_INT_FLAGS__CLIENT_27_FLAG_MASK 0x08000000L
+#define IH_INT_FLAGS__CLIENT_28_FLAG_MASK 0x10000000L
+#define IH_INT_FLAGS__CLIENT_29_FLAG_MASK 0x20000000L
+#define IH_INT_FLAGS__CLIENT_30_FLAG_MASK 0x40000000L
+#define IH_INT_FLAGS__CLIENT_31_FLAG_MASK 0x80000000L
+//IH_LAST_INT_INFO0
+#define IH_LAST_INT_INFO0__CLIENT_ID__SHIFT 0x0
+#define IH_LAST_INT_INFO0__SOURCE_ID__SHIFT 0x8
+#define IH_LAST_INT_INFO0__RING_ID__SHIFT 0x10
+#define IH_LAST_INT_INFO0__VM_ID__SHIFT 0x18
+#define IH_LAST_INT_INFO0__VMID_TYPE__SHIFT 0x1f
+#define IH_LAST_INT_INFO0__CLIENT_ID_MASK 0x000000FFL
+#define IH_LAST_INT_INFO0__SOURCE_ID_MASK 0x0000FF00L
+#define IH_LAST_INT_INFO0__RING_ID_MASK 0x00FF0000L
+#define IH_LAST_INT_INFO0__VM_ID_MASK 0x0F000000L
+#define IH_LAST_INT_INFO0__VMID_TYPE_MASK 0x80000000L
+//IH_LAST_INT_INFO1
+#define IH_LAST_INT_INFO1__CONTEXT_ID__SHIFT 0x0
+#define IH_LAST_INT_INFO1__CONTEXT_ID_MASK 0xFFFFFFFFL
+//IH_LAST_INT_INFO2
+#define IH_LAST_INT_INFO2__PAS_ID__SHIFT 0x0
+#define IH_LAST_INT_INFO2__VF_ID__SHIFT 0x10
+#define IH_LAST_INT_INFO2__VF__SHIFT 0x14
+#define IH_LAST_INT_INFO2__PAS_ID_MASK 0x0000FFFFL
+#define IH_LAST_INT_INFO2__VF_ID_MASK 0x00070000L
+#define IH_LAST_INT_INFO2__VF_MASK 0x00100000L
+//IH_SCRATCH
+#define IH_SCRATCH__DATA__SHIFT 0x0
+#define IH_SCRATCH__DATA_MASK 0xFFFFFFFFL
+//IH_CLIENT_CREDIT_ERROR
+#define IH_CLIENT_CREDIT_ERROR__CLEAR__SHIFT 0x0
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_1_ERROR__SHIFT 0x1
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_2_ERROR__SHIFT 0x2
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_3_ERROR__SHIFT 0x3
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_4_ERROR__SHIFT 0x4
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_5_ERROR__SHIFT 0x5
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_6_ERROR__SHIFT 0x6
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_7_ERROR__SHIFT 0x7
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_8_ERROR__SHIFT 0x8
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_9_ERROR__SHIFT 0x9
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_10_ERROR__SHIFT 0xa
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_11_ERROR__SHIFT 0xb
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_12_ERROR__SHIFT 0xc
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_13_ERROR__SHIFT 0xd
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_14_ERROR__SHIFT 0xe
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_15_ERROR__SHIFT 0xf
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_16_ERROR__SHIFT 0x10
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_17_ERROR__SHIFT 0x11
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_18_ERROR__SHIFT 0x12
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_19_ERROR__SHIFT 0x13
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_20_ERROR__SHIFT 0x14
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_21_ERROR__SHIFT 0x15
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_22_ERROR__SHIFT 0x16
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_23_ERROR__SHIFT 0x17
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_24_ERROR__SHIFT 0x18
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_25_ERROR__SHIFT 0x19
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_26_ERROR__SHIFT 0x1a
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_27_ERROR__SHIFT 0x1b
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_28_ERROR__SHIFT 0x1c
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_29_ERROR__SHIFT 0x1d
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_30_ERROR__SHIFT 0x1e
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_31_ERROR__SHIFT 0x1f
+#define IH_CLIENT_CREDIT_ERROR__CLEAR_MASK 0x00000001L
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_1_ERROR_MASK 0x00000002L
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_2_ERROR_MASK 0x00000004L
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_3_ERROR_MASK 0x00000008L
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_4_ERROR_MASK 0x00000010L
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_5_ERROR_MASK 0x00000020L
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_6_ERROR_MASK 0x00000040L
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_7_ERROR_MASK 0x00000080L
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_8_ERROR_MASK 0x00000100L
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_9_ERROR_MASK 0x00000200L
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_10_ERROR_MASK 0x00000400L
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_11_ERROR_MASK 0x00000800L
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_12_ERROR_MASK 0x00001000L
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_13_ERROR_MASK 0x00002000L
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_14_ERROR_MASK 0x00004000L
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_15_ERROR_MASK 0x00008000L
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_16_ERROR_MASK 0x00010000L
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_17_ERROR_MASK 0x00020000L
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_18_ERROR_MASK 0x00040000L
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_19_ERROR_MASK 0x00080000L
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_20_ERROR_MASK 0x00100000L
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_21_ERROR_MASK 0x00200000L
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_22_ERROR_MASK 0x00400000L
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_23_ERROR_MASK 0x00800000L
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_24_ERROR_MASK 0x01000000L
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_25_ERROR_MASK 0x02000000L
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_26_ERROR_MASK 0x04000000L
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_27_ERROR_MASK 0x08000000L
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_28_ERROR_MASK 0x10000000L
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_29_ERROR_MASK 0x20000000L
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_30_ERROR_MASK 0x40000000L
+#define IH_CLIENT_CREDIT_ERROR__CLIENT_31_ERROR_MASK 0x80000000L
+//IH_GPU_IOV_VIOLATION_LOG
+#define IH_GPU_IOV_VIOLATION_LOG__VIOLATION_STATUS__SHIFT 0x0
+#define IH_GPU_IOV_VIOLATION_LOG__MULTIPLE_VIOLATION_STATUS__SHIFT 0x1
+#define IH_GPU_IOV_VIOLATION_LOG__ADDRESS__SHIFT 0x2
+#define IH_GPU_IOV_VIOLATION_LOG__OPCODE__SHIFT 0x12
+#define IH_GPU_IOV_VIOLATION_LOG__VF__SHIFT 0x13
+#define IH_GPU_IOV_VIOLATION_LOG__VF_ID__SHIFT 0x14
+#define IH_GPU_IOV_VIOLATION_LOG__VIOLATION_STATUS_MASK 0x00000001L
+#define IH_GPU_IOV_VIOLATION_LOG__MULTIPLE_VIOLATION_STATUS_MASK 0x00000002L
+#define IH_GPU_IOV_VIOLATION_LOG__ADDRESS_MASK 0x0003FFFCL
+#define IH_GPU_IOV_VIOLATION_LOG__OPCODE_MASK 0x00040000L
+#define IH_GPU_IOV_VIOLATION_LOG__VF_MASK 0x00080000L
+#define IH_GPU_IOV_VIOLATION_LOG__VF_ID_MASK 0x00700000L
+//IH_GPU_IOV_VIOLATION_LOG2
+#define IH_GPU_IOV_VIOLATION_LOG2__INITIATOR_ID__SHIFT 0x0
+#define IH_GPU_IOV_VIOLATION_LOG2__INITIATOR_ID_MASK 0x000003FFL
+//IH_COOKIE_REC_VIOLATION_LOG
+#define IH_COOKIE_REC_VIOLATION_LOG__VIOLATION_STATUS__SHIFT 0x0
+#define IH_COOKIE_REC_VIOLATION_LOG__CLIENT_ID__SHIFT 0x8
+#define IH_COOKIE_REC_VIOLATION_LOG__INITIATOR_ID__SHIFT 0x10
+#define IH_COOKIE_REC_VIOLATION_LOG__DIE_ID__SHIFT 0x1a
+#define IH_COOKIE_REC_VIOLATION_LOG__VIOLATION_STATUS_MASK 0x00000001L
+#define IH_COOKIE_REC_VIOLATION_LOG__CLIENT_ID_MASK 0x0000FF00L
+#define IH_COOKIE_REC_VIOLATION_LOG__INITIATOR_ID_MASK 0x03FF0000L
+#define IH_COOKIE_REC_VIOLATION_LOG__DIE_ID_MASK 0x3C000000L
+//IH_CREDIT_STATUS
+#define IH_CREDIT_STATUS__CLIENT_1_CREDIT_RETURNED__SHIFT 0x1
+#define IH_CREDIT_STATUS__CLIENT_2_CREDIT_RETURNED__SHIFT 0x2
+#define IH_CREDIT_STATUS__CLIENT_3_CREDIT_RETURNED__SHIFT 0x3
+#define IH_CREDIT_STATUS__CLIENT_4_CREDIT_RETURNED__SHIFT 0x4
+#define IH_CREDIT_STATUS__CLIENT_5_CREDIT_RETURNED__SHIFT 0x5
+#define IH_CREDIT_STATUS__CLIENT_6_CREDIT_RETURNED__SHIFT 0x6
+#define IH_CREDIT_STATUS__CLIENT_7_CREDIT_RETURNED__SHIFT 0x7
+#define IH_CREDIT_STATUS__CLIENT_8_CREDIT_RETURNED__SHIFT 0x8
+#define IH_CREDIT_STATUS__CLIENT_9_CREDIT_RETURNED__SHIFT 0x9
+#define IH_CREDIT_STATUS__CLIENT_10_CREDIT_RETURNED__SHIFT 0xa
+#define IH_CREDIT_STATUS__CLIENT_11_CREDIT_RETURNED__SHIFT 0xb
+#define IH_CREDIT_STATUS__CLIENT_12_CREDIT_RETURNED__SHIFT 0xc
+#define IH_CREDIT_STATUS__CLIENT_13_CREDIT_RETURNED__SHIFT 0xd
+#define IH_CREDIT_STATUS__CLIENT_14_CREDIT_RETURNED__SHIFT 0xe
+#define IH_CREDIT_STATUS__CLIENT_15_CREDIT_RETURNED__SHIFT 0xf
+#define IH_CREDIT_STATUS__CLIENT_16_CREDIT_RETURNED__SHIFT 0x10
+#define IH_CREDIT_STATUS__CLIENT_17_CREDIT_RETURNED__SHIFT 0x11
+#define IH_CREDIT_STATUS__CLIENT_18_CREDIT_RETURNED__SHIFT 0x12
+#define IH_CREDIT_STATUS__CLIENT_19_CREDIT_RETURNED__SHIFT 0x13
+#define IH_CREDIT_STATUS__CLIENT_20_CREDIT_RETURNED__SHIFT 0x14
+#define IH_CREDIT_STATUS__CLIENT_21_CREDIT_RETURNED__SHIFT 0x15
+#define IH_CREDIT_STATUS__CLIENT_22_CREDIT_RETURNED__SHIFT 0x16
+#define IH_CREDIT_STATUS__CLIENT_23_CREDIT_RETURNED__SHIFT 0x17
+#define IH_CREDIT_STATUS__CLIENT_24_CREDIT_RETURNED__SHIFT 0x18
+#define IH_CREDIT_STATUS__CLIENT_25_CREDIT_RETURNED__SHIFT 0x19
+#define IH_CREDIT_STATUS__CLIENT_26_CREDIT_RETURNED__SHIFT 0x1a
+#define IH_CREDIT_STATUS__CLIENT_27_CREDIT_RETURNED__SHIFT 0x1b
+#define IH_CREDIT_STATUS__CLIENT_28_CREDIT_RETURNED__SHIFT 0x1c
+#define IH_CREDIT_STATUS__CLIENT_29_CREDIT_RETURNED__SHIFT 0x1d
+#define IH_CREDIT_STATUS__CLIENT_30_CREDIT_RETURNED__SHIFT 0x1e
+#define IH_CREDIT_STATUS__CLIENT_31_CREDIT_RETURNED__SHIFT 0x1f
+#define IH_CREDIT_STATUS__CLIENT_1_CREDIT_RETURNED_MASK 0x00000002L
+#define IH_CREDIT_STATUS__CLIENT_2_CREDIT_RETURNED_MASK 0x00000004L
+#define IH_CREDIT_STATUS__CLIENT_3_CREDIT_RETURNED_MASK 0x00000008L
+#define IH_CREDIT_STATUS__CLIENT_4_CREDIT_RETURNED_MASK 0x00000010L
+#define IH_CREDIT_STATUS__CLIENT_5_CREDIT_RETURNED_MASK 0x00000020L
+#define IH_CREDIT_STATUS__CLIENT_6_CREDIT_RETURNED_MASK 0x00000040L
+#define IH_CREDIT_STATUS__CLIENT_7_CREDIT_RETURNED_MASK 0x00000080L
+#define IH_CREDIT_STATUS__CLIENT_8_CREDIT_RETURNED_MASK 0x00000100L
+#define IH_CREDIT_STATUS__CLIENT_9_CREDIT_RETURNED_MASK 0x00000200L
+#define IH_CREDIT_STATUS__CLIENT_10_CREDIT_RETURNED_MASK 0x00000400L
+#define IH_CREDIT_STATUS__CLIENT_11_CREDIT_RETURNED_MASK 0x00000800L
+#define IH_CREDIT_STATUS__CLIENT_12_CREDIT_RETURNED_MASK 0x00001000L
+#define IH_CREDIT_STATUS__CLIENT_13_CREDIT_RETURNED_MASK 0x00002000L
+#define IH_CREDIT_STATUS__CLIENT_14_CREDIT_RETURNED_MASK 0x00004000L
+#define IH_CREDIT_STATUS__CLIENT_15_CREDIT_RETURNED_MASK 0x00008000L
+#define IH_CREDIT_STATUS__CLIENT_16_CREDIT_RETURNED_MASK 0x00010000L
+#define IH_CREDIT_STATUS__CLIENT_17_CREDIT_RETURNED_MASK 0x00020000L
+#define IH_CREDIT_STATUS__CLIENT_18_CREDIT_RETURNED_MASK 0x00040000L
+#define IH_CREDIT_STATUS__CLIENT_19_CREDIT_RETURNED_MASK 0x00080000L
+#define IH_CREDIT_STATUS__CLIENT_20_CREDIT_RETURNED_MASK 0x00100000L
+#define IH_CREDIT_STATUS__CLIENT_21_CREDIT_RETURNED_MASK 0x00200000L
+#define IH_CREDIT_STATUS__CLIENT_22_CREDIT_RETURNED_MASK 0x00400000L
+#define IH_CREDIT_STATUS__CLIENT_23_CREDIT_RETURNED_MASK 0x00800000L
+#define IH_CREDIT_STATUS__CLIENT_24_CREDIT_RETURNED_MASK 0x01000000L
+#define IH_CREDIT_STATUS__CLIENT_25_CREDIT_RETURNED_MASK 0x02000000L
+#define IH_CREDIT_STATUS__CLIENT_26_CREDIT_RETURNED_MASK 0x04000000L
+#define IH_CREDIT_STATUS__CLIENT_27_CREDIT_RETURNED_MASK 0x08000000L
+#define IH_CREDIT_STATUS__CLIENT_28_CREDIT_RETURNED_MASK 0x10000000L
+#define IH_CREDIT_STATUS__CLIENT_29_CREDIT_RETURNED_MASK 0x20000000L
+#define IH_CREDIT_STATUS__CLIENT_30_CREDIT_RETURNED_MASK 0x40000000L
+#define IH_CREDIT_STATUS__CLIENT_31_CREDIT_RETURNED_MASK 0x80000000L
+//IH_MMHUB_ERROR
+#define IH_MMHUB_ERROR__IH_BRESP_01__SHIFT 0x1
+#define IH_MMHUB_ERROR__IH_BRESP_10__SHIFT 0x2
+#define IH_MMHUB_ERROR__IH_BRESP_11__SHIFT 0x3
+#define IH_MMHUB_ERROR__IH_BUSER_NACK_01__SHIFT 0x5
+#define IH_MMHUB_ERROR__IH_BUSER_NACK_10__SHIFT 0x6
+#define IH_MMHUB_ERROR__IH_BUSER_NACK_11__SHIFT 0x7
+#define IH_MMHUB_ERROR__IH_BUSER_FED__SHIFT 0x8
+#define IH_MMHUB_ERROR__IH_BRESP_01_MASK 0x00000002L
+#define IH_MMHUB_ERROR__IH_BRESP_10_MASK 0x00000004L
+#define IH_MMHUB_ERROR__IH_BRESP_11_MASK 0x00000008L
+#define IH_MMHUB_ERROR__IH_BUSER_NACK_01_MASK 0x00000020L
+#define IH_MMHUB_ERROR__IH_BUSER_NACK_10_MASK 0x00000040L
+#define IH_MMHUB_ERROR__IH_BUSER_NACK_11_MASK 0x00000080L
+#define IH_MMHUB_ERROR__IH_BUSER_FED_MASK 0x00000100L
+//IH_MEM_POWER_CTRL
+#define IH_MEM_POWER_CTRL__IH_BUFFER_MEM_POWER_CTRL_EN__SHIFT 0x0
+#define IH_MEM_POWER_CTRL__IH_BUFFER_MEM_POWER_LS_EN__SHIFT 0x1
+#define IH_MEM_POWER_CTRL__IH_BUFFER_MEM_POWER_DS_EN__SHIFT 0x2
+#define IH_MEM_POWER_CTRL__IH_BUFFER_MEM_POWER_SD_EN__SHIFT 0x3
+#define IH_MEM_POWER_CTRL__IH_BUFFER_MEM_IDLE_HYSTERESIS__SHIFT 0x4
+#define IH_MEM_POWER_CTRL__IH_BUFFER_MEM_POWER_UP_RECOVER_DELAY__SHIFT 0x8
+#define IH_MEM_POWER_CTRL__IH_BUFFER_MEM_POWER_DOWN_LS_ENTER_DELAY__SHIFT 0xe
+#define IH_MEM_POWER_CTRL__IH_RETRY_INT_CAM_MEM_POWER_CTRL_EN__SHIFT 0x10
+#define IH_MEM_POWER_CTRL__IH_RETRY_INT_CAM_MEM_POWER_LS_EN__SHIFT 0x11
+#define IH_MEM_POWER_CTRL__IH_RETRY_INT_CAM_MEM_POWER_DS_EN__SHIFT 0x12
+#define IH_MEM_POWER_CTRL__IH_RETRY_INT_CAM_MEM_POWER_SD_EN__SHIFT 0x13
+#define IH_MEM_POWER_CTRL__IH_RETRY_INT_CAM_MEM_IDLE_HYSTERESIS__SHIFT 0x14
+#define IH_MEM_POWER_CTRL__IH_RETRY_INT_CAM_MEM_POWER_UP_RECOVER_DELAY__SHIFT 0x18
+#define IH_MEM_POWER_CTRL__IH_RETRY_INT_CAM_MEM_POWER_DOWN_LS_ENTER_DELAY__SHIFT 0x1e
+#define IH_MEM_POWER_CTRL__IH_BUFFER_MEM_POWER_CTRL_EN_MASK 0x00000001L
+#define IH_MEM_POWER_CTRL__IH_BUFFER_MEM_POWER_LS_EN_MASK 0x00000002L
+#define IH_MEM_POWER_CTRL__IH_BUFFER_MEM_POWER_DS_EN_MASK 0x00000004L
+#define IH_MEM_POWER_CTRL__IH_BUFFER_MEM_POWER_SD_EN_MASK 0x00000008L
+#define IH_MEM_POWER_CTRL__IH_BUFFER_MEM_IDLE_HYSTERESIS_MASK 0x00000070L
+#define IH_MEM_POWER_CTRL__IH_BUFFER_MEM_POWER_UP_RECOVER_DELAY_MASK 0x00003F00L
+#define IH_MEM_POWER_CTRL__IH_BUFFER_MEM_POWER_DOWN_LS_ENTER_DELAY_MASK 0x0000C000L
+#define IH_MEM_POWER_CTRL__IH_RETRY_INT_CAM_MEM_POWER_CTRL_EN_MASK 0x00010000L
+#define IH_MEM_POWER_CTRL__IH_RETRY_INT_CAM_MEM_POWER_LS_EN_MASK 0x00020000L
+#define IH_MEM_POWER_CTRL__IH_RETRY_INT_CAM_MEM_POWER_DS_EN_MASK 0x00040000L
+#define IH_MEM_POWER_CTRL__IH_RETRY_INT_CAM_MEM_POWER_SD_EN_MASK 0x00080000L
+#define IH_MEM_POWER_CTRL__IH_RETRY_INT_CAM_MEM_IDLE_HYSTERESIS_MASK 0x00700000L
+#define IH_MEM_POWER_CTRL__IH_RETRY_INT_CAM_MEM_POWER_UP_RECOVER_DELAY_MASK 0x3F000000L
+#define IH_MEM_POWER_CTRL__IH_RETRY_INT_CAM_MEM_POWER_DOWN_LS_ENTER_DELAY_MASK 0xC0000000L
+//IH_RETRY_INT_CAM_CNTL
+#define IH_RETRY_INT_CAM_CNTL__CAM_SIZE__SHIFT 0x0
+#define IH_RETRY_INT_CAM_CNTL__BACK_PRESSURE_SKID_VALUE__SHIFT 0x8
+#define IH_RETRY_INT_CAM_CNTL__ENABLE__SHIFT 0x10
+#define IH_RETRY_INT_CAM_CNTL__BACK_PRESSURE_ENABLE__SHIFT 0x11
+#define IH_RETRY_INT_CAM_CNTL__PER_VF_ENTRY_SIZE__SHIFT 0x14
+#define IH_RETRY_INT_CAM_CNTL__CAM_SIZE_MASK 0x0000001FL
+#define IH_RETRY_INT_CAM_CNTL__BACK_PRESSURE_SKID_VALUE_MASK 0x00007F00L
+#define IH_RETRY_INT_CAM_CNTL__ENABLE_MASK 0x00010000L
+#define IH_RETRY_INT_CAM_CNTL__BACK_PRESSURE_ENABLE_MASK 0x00020000L
+#define IH_RETRY_INT_CAM_CNTL__PER_VF_ENTRY_SIZE_MASK 0x00300000L
+//IH_VMID_LUT_INDEX
+#define IH_VMID_LUT_INDEX__INDEX__SHIFT 0x0
+#define IH_VMID_LUT_INDEX__INDEX_MASK 0x0000000FL
+//IH_MEM_POWER_CTRL2
+#define IH_MEM_POWER_CTRL2__IH_PASID_LUT_MEM_POWER_CTRL_EN__SHIFT 0x0
+#define IH_MEM_POWER_CTRL2__IH_PASID_LUT_MEM_POWER_LS_EN__SHIFT 0x1
+#define IH_MEM_POWER_CTRL2__IH_PASID_LUT_MEM_POWER_DS_EN__SHIFT 0x2
+#define IH_MEM_POWER_CTRL2__IH_PASID_LUT_MEM_POWER_SD_EN__SHIFT 0x3
+#define IH_MEM_POWER_CTRL2__IH_PASID_LUT_MEM_IDLE_HYSTERESIS__SHIFT 0x4
+#define IH_MEM_POWER_CTRL2__IH_PASID_LUT_MEM_POWER_UP_RECOVER_DELAY__SHIFT 0x8
+#define IH_MEM_POWER_CTRL2__IH_PASID_LUT_MEM_POWER_DOWN_LS_ENTER_DELAY__SHIFT 0xe
+#define IH_MEM_POWER_CTRL2__IH_PASID_LUT_MEM_POWER_CTRL_EN_MASK 0x00000001L
+#define IH_MEM_POWER_CTRL2__IH_PASID_LUT_MEM_POWER_LS_EN_MASK 0x00000002L
+#define IH_MEM_POWER_CTRL2__IH_PASID_LUT_MEM_POWER_DS_EN_MASK 0x00000004L
+#define IH_MEM_POWER_CTRL2__IH_PASID_LUT_MEM_POWER_SD_EN_MASK 0x00000008L
+#define IH_MEM_POWER_CTRL2__IH_PASID_LUT_MEM_IDLE_HYSTERESIS_MASK 0x00000070L
+#define IH_MEM_POWER_CTRL2__IH_PASID_LUT_MEM_POWER_UP_RECOVER_DELAY_MASK 0x00003F00L
+#define IH_MEM_POWER_CTRL2__IH_PASID_LUT_MEM_POWER_DOWN_LS_ENTER_DELAY_MASK 0x0000C000L
+//IH_REGISTER_LAST_PART2
+#define IH_REGISTER_LAST_PART2__RESERVED__SHIFT 0x0
+#define IH_REGISTER_LAST_PART2__RESERVED_MASK 0xFFFFFFFFL
+//SEM_MAILBOX
+#define SEM_MAILBOX__HOSTPORT__SHIFT 0x0
+#define SEM_MAILBOX__RESERVED__SHIFT 0x10
+#define SEM_MAILBOX__HOSTPORT_MASK 0x0000FFFFL
+#define SEM_MAILBOX__RESERVED_MASK 0xFFFF0000L
+//SEM_MAILBOX_CLEAR
+#define SEM_MAILBOX_CLEAR__CLEAR__SHIFT 0x0
+#define SEM_MAILBOX_CLEAR__RESERVED__SHIFT 0x10
+#define SEM_MAILBOX_CLEAR__CLEAR_MASK 0x0000FFFFL
+#define SEM_MAILBOX_CLEAR__RESERVED_MASK 0xFFFF0000L
+//SEM_REGISTER_LAST_PART2
+#define SEM_REGISTER_LAST_PART2__RESERVED__SHIFT 0x0
+#define SEM_REGISTER_LAST_PART2__RESERVED_MASK 0xFFFFFFFFL
+//IH_ACTIVE_FCN_ID
+#define IH_ACTIVE_FCN_ID__VF_ID__SHIFT 0x0
+#define IH_ACTIVE_FCN_ID__RESERVED__SHIFT 0x3
+#define IH_ACTIVE_FCN_ID__PF_VF__SHIFT 0x1f
+#define IH_ACTIVE_FCN_ID__VF_ID_MASK 0x00000007L
+#define IH_ACTIVE_FCN_ID__RESERVED_MASK 0x7FFFFFF8L
+#define IH_ACTIVE_FCN_ID__PF_VF_MASK 0x80000000L
+//IH_VIRT_RESET_REQ
+#define IH_VIRT_RESET_REQ__VF__SHIFT 0x0
+#define IH_VIRT_RESET_REQ__PF__SHIFT 0x1f
+#define IH_VIRT_RESET_REQ__VF_MASK 0x000000FFL
+#define IH_VIRT_RESET_REQ__PF_MASK 0x80000000L
+//IH_CLIENT_CFG
+#define IH_CLIENT_CFG__TOTAL_CLIENT_NUM__SHIFT 0x0
+#define IH_CLIENT_CFG__TOTAL_CLIENT_NUM_MASK 0x0000007FL
+//IH_CLIENT_CFG_INDEX
+#define IH_CLIENT_CFG_INDEX__INDEX__SHIFT 0x0
+#define IH_CLIENT_CFG_INDEX__INDEX_MASK 0x0000001FL
+//IH_CLIENT_CFG_DATA
+#define IH_CLIENT_CFG_DATA__CLIENT_TYPE__SHIFT 0x13
+#define IH_CLIENT_CFG_DATA__RING_ID__SHIFT 0x14
+#define IH_CLIENT_CFG_DATA__VF_RB_SELECT__SHIFT 0x16
+#define IH_CLIENT_CFG_DATA__OVERWRITE_RING_ID_WITH_ACTIVE_FCN_ID__SHIFT 0x18
+#define IH_CLIENT_CFG_DATA__INTERFACE_TYPE__SHIFT 0x19
+#define IH_CLIENT_CFG_DATA__DIE_TYPE__SHIFT 0x1a
+#define IH_CLIENT_CFG_DATA__CLIENT_TYPE_MASK 0x00080000L
+#define IH_CLIENT_CFG_DATA__RING_ID_MASK 0x00300000L
+#define IH_CLIENT_CFG_DATA__VF_RB_SELECT_MASK 0x00C00000L
+#define IH_CLIENT_CFG_DATA__OVERWRITE_RING_ID_WITH_ACTIVE_FCN_ID_MASK 0x01000000L
+#define IH_CLIENT_CFG_DATA__INTERFACE_TYPE_MASK 0x02000000L
+#define IH_CLIENT_CFG_DATA__DIE_TYPE_MASK 0x04000000L
+//IH_CLIENT_CFG_DATA2
+#define IH_CLIENT_CFG_DATA2__CREDIT_RETURN_ADDR__SHIFT 0x0
+#define IH_CLIENT_CFG_DATA2__CREDIT_RETURN_ADDR_MASK 0xFFFFFFFFL
+//IH_CID_REMAP_INDEX
+#define IH_CID_REMAP_INDEX__INDEX__SHIFT 0x0
+#define IH_CID_REMAP_INDEX__INDEX_MASK 0x00000007L
+//IH_CID_REMAP_DATA
+#define IH_CID_REMAP_DATA__CLIENT_ID__SHIFT 0x0
+#define IH_CID_REMAP_DATA__INITIATOR_ID__SHIFT 0x8
+#define IH_CID_REMAP_DATA__CLIENT_ID_REMAP__SHIFT 0x18
+#define IH_CID_REMAP_DATA__CLIENT_ID_MASK 0x000000FFL
+#define IH_CID_REMAP_DATA__INITIATOR_ID_MASK 0x0003FF00L
+#define IH_CID_REMAP_DATA__CLIENT_ID_REMAP_MASK 0xFF000000L
+//IH_CHICKEN
+#define IH_CHICKEN__ACTIVE_FCN_ID_PROT_ENABLE__SHIFT 0x0
+#define IH_CHICKEN__MC_SPACE_FBPA_ENABLE__SHIFT 0x3
+#define IH_CHICKEN__MC_SPACE_GPA_ENABLE__SHIFT 0x4
+#define IH_CHICKEN__REG_FIREWALL_ENABLE__SHIFT 0x5
+#define IH_CHICKEN__ACTIVE_FCN_ID_PROT_ENABLE_MASK 0x00000001L
+#define IH_CHICKEN__MC_SPACE_FBPA_ENABLE_MASK 0x00000008L
+#define IH_CHICKEN__MC_SPACE_GPA_ENABLE_MASK 0x00000010L
+#define IH_CHICKEN__REG_FIREWALL_ENABLE_MASK 0x00000020L
+//IH_INT_DROP_CNTL
+#define IH_INT_DROP_CNTL__INT_DROP_EN__SHIFT 0x0
+#define IH_INT_DROP_CNTL__CLIENT_ID_MATCH_EN__SHIFT 0x1
+#define IH_INT_DROP_CNTL__SOURCE_ID_MATCH_EN__SHIFT 0x2
+#define IH_INT_DROP_CNTL__VF_ID_MATCH_EN__SHIFT 0x3
+#define IH_INT_DROP_CNTL__VF_MATCH_EN__SHIFT 0x4
+#define IH_INT_DROP_CNTL__CONTEXT_ID_MATCH_EN__SHIFT 0x5
+#define IH_INT_DROP_CNTL__INT_DROP_MODE__SHIFT 0x6
+#define IH_INT_DROP_CNTL__UTCL2_RETRY_INT_DROP_EN__SHIFT 0x8
+#define IH_INT_DROP_CNTL__INT_DROPPED__SHIFT 0x10
+#define IH_INT_DROP_CNTL__INT_DROP_EN_MASK 0x00000001L
+#define IH_INT_DROP_CNTL__CLIENT_ID_MATCH_EN_MASK 0x00000002L
+#define IH_INT_DROP_CNTL__SOURCE_ID_MATCH_EN_MASK 0x00000004L
+#define IH_INT_DROP_CNTL__VF_ID_MATCH_EN_MASK 0x00000008L
+#define IH_INT_DROP_CNTL__VF_MATCH_EN_MASK 0x00000010L
+#define IH_INT_DROP_CNTL__CONTEXT_ID_MATCH_EN_MASK 0x00000020L
+#define IH_INT_DROP_CNTL__INT_DROP_MODE_MASK 0x000000C0L
+#define IH_INT_DROP_CNTL__UTCL2_RETRY_INT_DROP_EN_MASK 0x00000100L
+#define IH_INT_DROP_CNTL__INT_DROPPED_MASK 0x00010000L
+//IH_INT_DROP_MATCH_VALUE0
+#define IH_INT_DROP_MATCH_VALUE0__CLIENT_ID_MATCH_VALUE__SHIFT 0x0
+#define IH_INT_DROP_MATCH_VALUE0__SOURCE_ID_MATCH_VALUE__SHIFT 0x8
+#define IH_INT_DROP_MATCH_VALUE0__VF_ID_MATCH_VALUE__SHIFT 0x10
+#define IH_INT_DROP_MATCH_VALUE0__VF_MATCH_VALUE__SHIFT 0x17
+#define IH_INT_DROP_MATCH_VALUE0__CONTEXT_ID_39_32_MATCH_VALUE__SHIFT 0x18
+#define IH_INT_DROP_MATCH_VALUE0__CLIENT_ID_MATCH_VALUE_MASK 0x000000FFL
+#define IH_INT_DROP_MATCH_VALUE0__SOURCE_ID_MATCH_VALUE_MASK 0x0000FF00L
+#define IH_INT_DROP_MATCH_VALUE0__VF_ID_MATCH_VALUE_MASK 0x000F0000L
+#define IH_INT_DROP_MATCH_VALUE0__VF_MATCH_VALUE_MASK 0x00800000L
+#define IH_INT_DROP_MATCH_VALUE0__CONTEXT_ID_39_32_MATCH_VALUE_MASK 0xFF000000L
+//IH_INT_DROP_MATCH_VALUE1
+#define IH_INT_DROP_MATCH_VALUE1__CONTEXT_ID_31_0_MATCH_VALUE__SHIFT 0x0
+#define IH_INT_DROP_MATCH_VALUE1__CONTEXT_ID_31_0_MATCH_VALUE_MASK 0xFFFFFFFFL
+//IH_INT_DROP_MATCH_MASK0
+#define IH_INT_DROP_MATCH_MASK0__CLIENT_ID_MATCH_MASK__SHIFT 0x0
+#define IH_INT_DROP_MATCH_MASK0__SOURCE_ID_MATCH_MASK__SHIFT 0x8
+#define IH_INT_DROP_MATCH_MASK0__VF_ID_MATCH_MASK__SHIFT 0x10
+#define IH_INT_DROP_MATCH_MASK0__VF_MATCH_MASK__SHIFT 0x17
+#define IH_INT_DROP_MATCH_MASK0__CONTEXT_ID_39_32_MATCH_MASK__SHIFT 0x18
+#define IH_INT_DROP_MATCH_MASK0__CLIENT_ID_MATCH_MASK_MASK 0x000000FFL
+#define IH_INT_DROP_MATCH_MASK0__SOURCE_ID_MATCH_MASK_MASK 0x0000FF00L
+#define IH_INT_DROP_MATCH_MASK0__VF_ID_MATCH_MASK_MASK 0x000F0000L
+#define IH_INT_DROP_MATCH_MASK0__VF_MATCH_MASK_MASK 0x00800000L
+#define IH_INT_DROP_MATCH_MASK0__CONTEXT_ID_39_32_MATCH_MASK_MASK 0xFF000000L
+//IH_INT_DROP_MATCH_MASK1
+#define IH_INT_DROP_MATCH_MASK1__CONTEXT_ID_31_0_MATCH_MASK__SHIFT 0x0
+#define IH_INT_DROP_MATCH_MASK1__CONTEXT_ID_31_0_MATCH_MASK_MASK 0xFFFFFFFFL
+//IH_MMHUB_CNTL
+#define IH_MMHUB_CNTL__UNITID__SHIFT 0x0
+#define IH_MMHUB_CNTL__IV_TLVL__SHIFT 0x8
+#define IH_MMHUB_CNTL__WPTR_WB_TLVL__SHIFT 0xc
+#define IH_MMHUB_CNTL__UNITID_MASK 0x0000003FL
+#define IH_MMHUB_CNTL__IV_TLVL_MASK 0x00000F00L
+#define IH_MMHUB_CNTL__WPTR_WB_TLVL_MASK 0x0000F000L
+//IH_REGISTER_LAST_PART1
+#define IH_REGISTER_LAST_PART1__RESERVED__SHIFT 0x0
+#define IH_REGISTER_LAST_PART1__RESERVED_MASK 0xFFFFFFFFL
+
+#endif
diff --git a/drivers/gpu/drm/amd/include/asic_reg/sdma/sdma_4_4_2_offset.h b/drivers/gpu/drm/amd/include/asic_reg/sdma/sdma_4_4_2_offset.h
new file mode 100644
index 000000000000..31bef0776ded
--- /dev/null
+++ b/drivers/gpu/drm/amd/include/asic_reg/sdma/sdma_4_4_2_offset.h
@@ -0,0 +1,1109 @@
+/*
+ * Copyright 2021 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ */
+#ifndef _sdma_4_4_2_OFFSET_HEADER
+#define _sdma_4_4_2_OFFSET_HEADER
+
+
+
+// addressBlock: aid_sdma_insts_sdma0_sdmadec
+// base address: 0x4980
+#define regSDMA_UCODE_ADDR 0x0000
+#define regSDMA_UCODE_ADDR_BASE_IDX 0
+#define regSDMA_UCODE_DATA 0x0001
+#define regSDMA_UCODE_DATA_BASE_IDX 0
+#define regSDMA_F32_CNTL 0x0002
+#define regSDMA_F32_CNTL_BASE_IDX 0
+#define regSDMA_MMHUB_CNTL 0x0005
+#define regSDMA_MMHUB_CNTL_BASE_IDX 0
+#define regSDMA_MMHUB_TRUSTLVL 0x0006
+#define regSDMA_MMHUB_TRUSTLVL_BASE_IDX 0
+#define regSDMA_VM_CNTL 0x0010
+#define regSDMA_VM_CNTL_BASE_IDX 0
+#define regSDMA_VM_CTX_LO 0x0011
+#define regSDMA_VM_CTX_LO_BASE_IDX 0
+#define regSDMA_VM_CTX_HI 0x0012
+#define regSDMA_VM_CTX_HI_BASE_IDX 0
+#define regSDMA_ACTIVE_FCN_ID 0x0013
+#define regSDMA_ACTIVE_FCN_ID_BASE_IDX 0
+#define regSDMA_VM_CTX_CNTL 0x0014
+#define regSDMA_VM_CTX_CNTL_BASE_IDX 0
+#define regSDMA_VIRT_RESET_REQ 0x0015
+#define regSDMA_VIRT_RESET_REQ_BASE_IDX 0
+#define regSDMA_VF_ENABLE 0x0016
+#define regSDMA_VF_ENABLE_BASE_IDX 0
+#define regSDMA_CONTEXT_REG_TYPE0 0x0017
+#define regSDMA_CONTEXT_REG_TYPE0_BASE_IDX 0
+#define regSDMA_CONTEXT_REG_TYPE1 0x0018
+#define regSDMA_CONTEXT_REG_TYPE1_BASE_IDX 0
+#define regSDMA_CONTEXT_REG_TYPE2 0x0019
+#define regSDMA_CONTEXT_REG_TYPE2_BASE_IDX 0
+#define regSDMA_CONTEXT_REG_TYPE3 0x001a
+#define regSDMA_CONTEXT_REG_TYPE3_BASE_IDX 0
+#define regSDMA_PUB_REG_TYPE0 0x001b
+#define regSDMA_PUB_REG_TYPE0_BASE_IDX 0
+#define regSDMA_PUB_REG_TYPE1 0x001c
+#define regSDMA_PUB_REG_TYPE1_BASE_IDX 0
+#define regSDMA_PUB_REG_TYPE2 0x001d
+#define regSDMA_PUB_REG_TYPE2_BASE_IDX 0
+#define regSDMA_PUB_REG_TYPE3 0x001e
+#define regSDMA_PUB_REG_TYPE3_BASE_IDX 0
+#define regSDMA_CONTEXT_GROUP_BOUNDARY 0x001f
+#define regSDMA_CONTEXT_GROUP_BOUNDARY_BASE_IDX 0
+#define regSDMA_RB_RPTR_FETCH_HI 0x0020
+#define regSDMA_RB_RPTR_FETCH_HI_BASE_IDX 0
+#define regSDMA_SEM_WAIT_FAIL_TIMER_CNTL 0x0021
+#define regSDMA_SEM_WAIT_FAIL_TIMER_CNTL_BASE_IDX 0
+#define regSDMA_RB_RPTR_FETCH 0x0022
+#define regSDMA_RB_RPTR_FETCH_BASE_IDX 0
+#define regSDMA_IB_OFFSET_FETCH 0x0023
+#define regSDMA_IB_OFFSET_FETCH_BASE_IDX 0
+#define regSDMA_PROGRAM 0x0024
+#define regSDMA_PROGRAM_BASE_IDX 0
+#define regSDMA_STATUS_REG 0x0025
+#define regSDMA_STATUS_REG_BASE_IDX 0
+#define regSDMA_STATUS1_REG 0x0026
+#define regSDMA_STATUS1_REG_BASE_IDX 0
+#define regSDMA_RD_BURST_CNTL 0x0027
+#define regSDMA_RD_BURST_CNTL_BASE_IDX 0
+#define regSDMA_HBM_PAGE_CONFIG 0x0028
+#define regSDMA_HBM_PAGE_CONFIG_BASE_IDX 0
+#define regSDMA_UCODE_CHECKSUM 0x0029
+#define regSDMA_UCODE_CHECKSUM_BASE_IDX 0
+#define regSDMA_FREEZE 0x002b
+#define regSDMA_FREEZE_BASE_IDX 0
+#define regSDMA_PHASE0_QUANTUM 0x002c
+#define regSDMA_PHASE0_QUANTUM_BASE_IDX 0
+#define regSDMA_PHASE1_QUANTUM 0x002d
+#define regSDMA_PHASE1_QUANTUM_BASE_IDX 0
+#define regSDMA_POWER_GATING 0x002e
+#define regSDMA_POWER_GATING_BASE_IDX 0
+#define regSDMA_PGFSM_CONFIG 0x002f
+#define regSDMA_PGFSM_CONFIG_BASE_IDX 0
+#define regSDMA_PGFSM_WRITE 0x0030
+#define regSDMA_PGFSM_WRITE_BASE_IDX 0
+#define regSDMA_PGFSM_READ 0x0031
+#define regSDMA_PGFSM_READ_BASE_IDX 0
+#define regCC_SDMA_EDC_CONFIG 0x0032
+#define regCC_SDMA_EDC_CONFIG_BASE_IDX 0
+#define regSDMA_BA_THRESHOLD 0x0033
+#define regSDMA_BA_THRESHOLD_BASE_IDX 0
+#define regSDMA_ID 0x0034
+#define regSDMA_ID_BASE_IDX 0
+#define regSDMA_VERSION 0x0035
+#define regSDMA_VERSION_BASE_IDX 0
+#define regSDMA_EDC_COUNTER 0x0036
+#define regSDMA_EDC_COUNTER_BASE_IDX 0
+#define regSDMA_EDC_COUNTER2 0x0037
+#define regSDMA_EDC_COUNTER2_BASE_IDX 0
+#define regSDMA_STATUS2_REG 0x0038
+#define regSDMA_STATUS2_REG_BASE_IDX 0
+#define regSDMA_ATOMIC_CNTL 0x0039
+#define regSDMA_ATOMIC_CNTL_BASE_IDX 0
+#define regSDMA_ATOMIC_PREOP_LO 0x003a
+#define regSDMA_ATOMIC_PREOP_LO_BASE_IDX 0
+#define regSDMA_ATOMIC_PREOP_HI 0x003b
+#define regSDMA_ATOMIC_PREOP_HI_BASE_IDX 0
+#define regSDMA_UTCL1_CNTL 0x003c
+#define regSDMA_UTCL1_CNTL_BASE_IDX 0
+#define regSDMA_UTCL1_WATERMK 0x003d
+#define regSDMA_UTCL1_WATERMK_BASE_IDX 0
+#define regSDMA_UTCL1_RD_STATUS 0x003e
+#define regSDMA_UTCL1_RD_STATUS_BASE_IDX 0
+#define regSDMA_UTCL1_WR_STATUS 0x003f
+#define regSDMA_UTCL1_WR_STATUS_BASE_IDX 0
+#define regSDMA_UTCL1_INV0 0x0040
+#define regSDMA_UTCL1_INV0_BASE_IDX 0
+#define regSDMA_UTCL1_INV1 0x0041
+#define regSDMA_UTCL1_INV1_BASE_IDX 0
+#define regSDMA_UTCL1_INV2 0x0042
+#define regSDMA_UTCL1_INV2_BASE_IDX 0
+#define regSDMA_UTCL1_RD_XNACK0 0x0043
+#define regSDMA_UTCL1_RD_XNACK0_BASE_IDX 0
+#define regSDMA_UTCL1_RD_XNACK1 0x0044
+#define regSDMA_UTCL1_RD_XNACK1_BASE_IDX 0
+#define regSDMA_UTCL1_WR_XNACK0 0x0045
+#define regSDMA_UTCL1_WR_XNACK0_BASE_IDX 0
+#define regSDMA_UTCL1_WR_XNACK1 0x0046
+#define regSDMA_UTCL1_WR_XNACK1_BASE_IDX 0
+#define regSDMA_UTCL1_TIMEOUT 0x0047
+#define regSDMA_UTCL1_TIMEOUT_BASE_IDX 0
+#define regSDMA_UTCL1_PAGE 0x0048
+#define regSDMA_UTCL1_PAGE_BASE_IDX 0
+#define regSDMA_POWER_CNTL_IDLE 0x0049
+#define regSDMA_POWER_CNTL_IDLE_BASE_IDX 0
+#define regSDMA_RELAX_ORDERING_LUT 0x004a
+#define regSDMA_RELAX_ORDERING_LUT_BASE_IDX 0
+#define regSDMA_CHICKEN_BITS_2 0x004b
+#define regSDMA_CHICKEN_BITS_2_BASE_IDX 0
+#define regSDMA_STATUS3_REG 0x004c
+#define regSDMA_STATUS3_REG_BASE_IDX 0
+#define regSDMA_PHYSICAL_ADDR_LO 0x004d
+#define regSDMA_PHYSICAL_ADDR_LO_BASE_IDX 0
+#define regSDMA_PHYSICAL_ADDR_HI 0x004e
+#define regSDMA_PHYSICAL_ADDR_HI_BASE_IDX 0
+#define regSDMA_PHASE2_QUANTUM 0x004f
+#define regSDMA_PHASE2_QUANTUM_BASE_IDX 0
+#define regSDMA_ERROR_LOG 0x0050
+#define regSDMA_ERROR_LOG_BASE_IDX 0
+#define regSDMA_PUB_DUMMY_REG0 0x0051
+#define regSDMA_PUB_DUMMY_REG0_BASE_IDX 0
+#define regSDMA_PUB_DUMMY_REG1 0x0052
+#define regSDMA_PUB_DUMMY_REG1_BASE_IDX 0
+#define regSDMA_PUB_DUMMY_REG2 0x0053
+#define regSDMA_PUB_DUMMY_REG2_BASE_IDX 0
+#define regSDMA_PUB_DUMMY_REG3 0x0054
+#define regSDMA_PUB_DUMMY_REG3_BASE_IDX 0
+#define regSDMA_F32_COUNTER 0x0055
+#define regSDMA_F32_COUNTER_BASE_IDX 0
+#define regSDMA_PERFCNT_PERFCOUNTER0_CFG 0x0057
+#define regSDMA_PERFCNT_PERFCOUNTER0_CFG_BASE_IDX 0
+#define regSDMA_PERFCNT_PERFCOUNTER1_CFG 0x0058
+#define regSDMA_PERFCNT_PERFCOUNTER1_CFG_BASE_IDX 0
+#define regSDMA_PERFCNT_PERFCOUNTER_RSLT_CNTL 0x0059
+#define regSDMA_PERFCNT_PERFCOUNTER_RSLT_CNTL_BASE_IDX 0
+#define regSDMA_PERFCNT_MISC_CNTL 0x005a
+#define regSDMA_PERFCNT_MISC_CNTL_BASE_IDX 0
+#define regSDMA_PERFCNT_PERFCOUNTER_LO 0x005b
+#define regSDMA_PERFCNT_PERFCOUNTER_LO_BASE_IDX 0
+#define regSDMA_PERFCNT_PERFCOUNTER_HI 0x005c
+#define regSDMA_PERFCNT_PERFCOUNTER_HI_BASE_IDX 0
+#define regSDMA_CRD_CNTL 0x005d
+#define regSDMA_CRD_CNTL_BASE_IDX 0
+#define regSDMA_GPU_IOV_VIOLATION_LOG 0x005e
+#define regSDMA_GPU_IOV_VIOLATION_LOG_BASE_IDX 0
+#define regSDMA_ULV_CNTL 0x005f
+#define regSDMA_ULV_CNTL_BASE_IDX 0
+#define regSDMA_EA_DBIT_ADDR_DATA 0x0060
+#define regSDMA_EA_DBIT_ADDR_DATA_BASE_IDX 0
+#define regSDMA_EA_DBIT_ADDR_INDEX 0x0061
+#define regSDMA_EA_DBIT_ADDR_INDEX_BASE_IDX 0
+#define regSDMA_GPU_IOV_VIOLATION_LOG2 0x0062
+#define regSDMA_GPU_IOV_VIOLATION_LOG2_BASE_IDX 0
+#define regSDMA_STATUS4_REG 0x0063
+#define regSDMA_STATUS4_REG_BASE_IDX 0
+#define regSDMA_SCRATCH_RAM_DATA 0x0064
+#define regSDMA_SCRATCH_RAM_DATA_BASE_IDX 0
+#define regSDMA_SCRATCH_RAM_ADDR 0x0065
+#define regSDMA_SCRATCH_RAM_ADDR_BASE_IDX 0
+#define regSDMA_CE_CTRL 0x0066
+#define regSDMA_CE_CTRL_BASE_IDX 0
+#define regSDMA_RAS_STATUS 0x0067
+#define regSDMA_RAS_STATUS_BASE_IDX 0
+#define regSDMA_CLK_STATUS 0x0068
+#define regSDMA_CLK_STATUS_BASE_IDX 0
+#define regSDMA_POWER_CNTL 0x006b
+#define regSDMA_POWER_CNTL_BASE_IDX 0
+#define regSDMA_CLK_CTRL 0x006c
+#define regSDMA_CLK_CTRL_BASE_IDX 0
+#define regSDMA_CNTL 0x006d
+#define regSDMA_CNTL_BASE_IDX 0
+#define regSDMA_CHICKEN_BITS 0x006e
+#define regSDMA_CHICKEN_BITS_BASE_IDX 0
+#define regSDMA_GB_ADDR_CONFIG 0x006f
+#define regSDMA_GB_ADDR_CONFIG_BASE_IDX 0
+#define regSDMA_GB_ADDR_CONFIG_READ 0x0070
+#define regSDMA_GB_ADDR_CONFIG_READ_BASE_IDX 0
+#define regSDMA_GFX_RB_CNTL 0x0080
+#define regSDMA_GFX_RB_CNTL_BASE_IDX 0
+#define regSDMA_GFX_RB_BASE 0x0081
+#define regSDMA_GFX_RB_BASE_BASE_IDX 0
+#define regSDMA_GFX_RB_BASE_HI 0x0082
+#define regSDMA_GFX_RB_BASE_HI_BASE_IDX 0
+#define regSDMA_GFX_RB_RPTR 0x0083
+#define regSDMA_GFX_RB_RPTR_BASE_IDX 0
+#define regSDMA_GFX_RB_RPTR_HI 0x0084
+#define regSDMA_GFX_RB_RPTR_HI_BASE_IDX 0
+#define regSDMA_GFX_RB_WPTR 0x0085
+#define regSDMA_GFX_RB_WPTR_BASE_IDX 0
+#define regSDMA_GFX_RB_WPTR_HI 0x0086
+#define regSDMA_GFX_RB_WPTR_HI_BASE_IDX 0
+#define regSDMA_GFX_RB_WPTR_POLL_CNTL 0x0087
+#define regSDMA_GFX_RB_WPTR_POLL_CNTL_BASE_IDX 0
+#define regSDMA_GFX_RB_RPTR_ADDR_HI 0x0088
+#define regSDMA_GFX_RB_RPTR_ADDR_HI_BASE_IDX 0
+#define regSDMA_GFX_RB_RPTR_ADDR_LO 0x0089
+#define regSDMA_GFX_RB_RPTR_ADDR_LO_BASE_IDX 0
+#define regSDMA_GFX_IB_CNTL 0x008a
+#define regSDMA_GFX_IB_CNTL_BASE_IDX 0
+#define regSDMA_GFX_IB_RPTR 0x008b
+#define regSDMA_GFX_IB_RPTR_BASE_IDX 0
+#define regSDMA_GFX_IB_OFFSET 0x008c
+#define regSDMA_GFX_IB_OFFSET_BASE_IDX 0
+#define regSDMA_GFX_IB_BASE_LO 0x008d
+#define regSDMA_GFX_IB_BASE_LO_BASE_IDX 0
+#define regSDMA_GFX_IB_BASE_HI 0x008e
+#define regSDMA_GFX_IB_BASE_HI_BASE_IDX 0
+#define regSDMA_GFX_IB_SIZE 0x008f
+#define regSDMA_GFX_IB_SIZE_BASE_IDX 0
+#define regSDMA_GFX_SKIP_CNTL 0x0090
+#define regSDMA_GFX_SKIP_CNTL_BASE_IDX 0
+#define regSDMA_GFX_CONTEXT_STATUS 0x0091
+#define regSDMA_GFX_CONTEXT_STATUS_BASE_IDX 0
+#define regSDMA_GFX_DOORBELL 0x0092
+#define regSDMA_GFX_DOORBELL_BASE_IDX 0
+#define regSDMA_GFX_CONTEXT_CNTL 0x0093
+#define regSDMA_GFX_CONTEXT_CNTL_BASE_IDX 0
+#define regSDMA_GFX_STATUS 0x00a8
+#define regSDMA_GFX_STATUS_BASE_IDX 0
+#define regSDMA_GFX_DOORBELL_LOG 0x00a9
+#define regSDMA_GFX_DOORBELL_LOG_BASE_IDX 0
+#define regSDMA_GFX_WATERMARK 0x00aa
+#define regSDMA_GFX_WATERMARK_BASE_IDX 0
+#define regSDMA_GFX_DOORBELL_OFFSET 0x00ab
+#define regSDMA_GFX_DOORBELL_OFFSET_BASE_IDX 0
+#define regSDMA_GFX_CSA_ADDR_LO 0x00ac
+#define regSDMA_GFX_CSA_ADDR_LO_BASE_IDX 0
+#define regSDMA_GFX_CSA_ADDR_HI 0x00ad
+#define regSDMA_GFX_CSA_ADDR_HI_BASE_IDX 0
+#define regSDMA_GFX_IB_SUB_REMAIN 0x00af
+#define regSDMA_GFX_IB_SUB_REMAIN_BASE_IDX 0
+#define regSDMA_GFX_PREEMPT 0x00b0
+#define regSDMA_GFX_PREEMPT_BASE_IDX 0
+#define regSDMA_GFX_DUMMY_REG 0x00b1
+#define regSDMA_GFX_DUMMY_REG_BASE_IDX 0
+#define regSDMA_GFX_RB_WPTR_POLL_ADDR_HI 0x00b2
+#define regSDMA_GFX_RB_WPTR_POLL_ADDR_HI_BASE_IDX 0
+#define regSDMA_GFX_RB_WPTR_POLL_ADDR_LO 0x00b3
+#define regSDMA_GFX_RB_WPTR_POLL_ADDR_LO_BASE_IDX 0
+#define regSDMA_GFX_RB_AQL_CNTL 0x00b4
+#define regSDMA_GFX_RB_AQL_CNTL_BASE_IDX 0
+#define regSDMA_GFX_MINOR_PTR_UPDATE 0x00b5
+#define regSDMA_GFX_MINOR_PTR_UPDATE_BASE_IDX 0
+#define regSDMA_GFX_MIDCMD_DATA0 0x00c0
+#define regSDMA_GFX_MIDCMD_DATA0_BASE_IDX 0
+#define regSDMA_GFX_MIDCMD_DATA1 0x00c1
+#define regSDMA_GFX_MIDCMD_DATA1_BASE_IDX 0
+#define regSDMA_GFX_MIDCMD_DATA2 0x00c2
+#define regSDMA_GFX_MIDCMD_DATA2_BASE_IDX 0
+#define regSDMA_GFX_MIDCMD_DATA3 0x00c3
+#define regSDMA_GFX_MIDCMD_DATA3_BASE_IDX 0
+#define regSDMA_GFX_MIDCMD_DATA4 0x00c4
+#define regSDMA_GFX_MIDCMD_DATA4_BASE_IDX 0
+#define regSDMA_GFX_MIDCMD_DATA5 0x00c5
+#define regSDMA_GFX_MIDCMD_DATA5_BASE_IDX 0
+#define regSDMA_GFX_MIDCMD_DATA6 0x00c6
+#define regSDMA_GFX_MIDCMD_DATA6_BASE_IDX 0
+#define regSDMA_GFX_MIDCMD_DATA7 0x00c7
+#define regSDMA_GFX_MIDCMD_DATA7_BASE_IDX 0
+#define regSDMA_GFX_MIDCMD_DATA8 0x00c8
+#define regSDMA_GFX_MIDCMD_DATA8_BASE_IDX 0
+#define regSDMA_GFX_MIDCMD_DATA9 0x00c9
+#define regSDMA_GFX_MIDCMD_DATA9_BASE_IDX 0
+#define regSDMA_GFX_MIDCMD_DATA10 0x00ca
+#define regSDMA_GFX_MIDCMD_DATA10_BASE_IDX 0
+#define regSDMA_GFX_MIDCMD_CNTL 0x00cb
+#define regSDMA_GFX_MIDCMD_CNTL_BASE_IDX 0
+#define regSDMA_PAGE_RB_CNTL 0x00d8
+#define regSDMA_PAGE_RB_CNTL_BASE_IDX 0
+#define regSDMA_PAGE_RB_BASE 0x00d9
+#define regSDMA_PAGE_RB_BASE_BASE_IDX 0
+#define regSDMA_PAGE_RB_BASE_HI 0x00da
+#define regSDMA_PAGE_RB_BASE_HI_BASE_IDX 0
+#define regSDMA_PAGE_RB_RPTR 0x00db
+#define regSDMA_PAGE_RB_RPTR_BASE_IDX 0
+#define regSDMA_PAGE_RB_RPTR_HI 0x00dc
+#define regSDMA_PAGE_RB_RPTR_HI_BASE_IDX 0
+#define regSDMA_PAGE_RB_WPTR 0x00dd
+#define regSDMA_PAGE_RB_WPTR_BASE_IDX 0
+#define regSDMA_PAGE_RB_WPTR_HI 0x00de
+#define regSDMA_PAGE_RB_WPTR_HI_BASE_IDX 0
+#define regSDMA_PAGE_RB_WPTR_POLL_CNTL 0x00df
+#define regSDMA_PAGE_RB_WPTR_POLL_CNTL_BASE_IDX 0
+#define regSDMA_PAGE_RB_RPTR_ADDR_HI 0x00e0
+#define regSDMA_PAGE_RB_RPTR_ADDR_HI_BASE_IDX 0
+#define regSDMA_PAGE_RB_RPTR_ADDR_LO 0x00e1
+#define regSDMA_PAGE_RB_RPTR_ADDR_LO_BASE_IDX 0
+#define regSDMA_PAGE_IB_CNTL 0x00e2
+#define regSDMA_PAGE_IB_CNTL_BASE_IDX 0
+#define regSDMA_PAGE_IB_RPTR 0x00e3
+#define regSDMA_PAGE_IB_RPTR_BASE_IDX 0
+#define regSDMA_PAGE_IB_OFFSET 0x00e4
+#define regSDMA_PAGE_IB_OFFSET_BASE_IDX 0
+#define regSDMA_PAGE_IB_BASE_LO 0x00e5
+#define regSDMA_PAGE_IB_BASE_LO_BASE_IDX 0
+#define regSDMA_PAGE_IB_BASE_HI 0x00e6
+#define regSDMA_PAGE_IB_BASE_HI_BASE_IDX 0
+#define regSDMA_PAGE_IB_SIZE 0x00e7
+#define regSDMA_PAGE_IB_SIZE_BASE_IDX 0
+#define regSDMA_PAGE_SKIP_CNTL 0x00e8
+#define regSDMA_PAGE_SKIP_CNTL_BASE_IDX 0
+#define regSDMA_PAGE_CONTEXT_STATUS 0x00e9
+#define regSDMA_PAGE_CONTEXT_STATUS_BASE_IDX 0
+#define regSDMA_PAGE_DOORBELL 0x00ea
+#define regSDMA_PAGE_DOORBELL_BASE_IDX 0
+#define regSDMA_PAGE_STATUS 0x0100
+#define regSDMA_PAGE_STATUS_BASE_IDX 0
+#define regSDMA_PAGE_DOORBELL_LOG 0x0101
+#define regSDMA_PAGE_DOORBELL_LOG_BASE_IDX 0
+#define regSDMA_PAGE_WATERMARK 0x0102
+#define regSDMA_PAGE_WATERMARK_BASE_IDX 0
+#define regSDMA_PAGE_DOORBELL_OFFSET 0x0103
+#define regSDMA_PAGE_DOORBELL_OFFSET_BASE_IDX 0
+#define regSDMA_PAGE_CSA_ADDR_LO 0x0104
+#define regSDMA_PAGE_CSA_ADDR_LO_BASE_IDX 0
+#define regSDMA_PAGE_CSA_ADDR_HI 0x0105
+#define regSDMA_PAGE_CSA_ADDR_HI_BASE_IDX 0
+#define regSDMA_PAGE_IB_SUB_REMAIN 0x0107
+#define regSDMA_PAGE_IB_SUB_REMAIN_BASE_IDX 0
+#define regSDMA_PAGE_PREEMPT 0x0108
+#define regSDMA_PAGE_PREEMPT_BASE_IDX 0
+#define regSDMA_PAGE_DUMMY_REG 0x0109
+#define regSDMA_PAGE_DUMMY_REG_BASE_IDX 0
+#define regSDMA_PAGE_RB_WPTR_POLL_ADDR_HI 0x010a
+#define regSDMA_PAGE_RB_WPTR_POLL_ADDR_HI_BASE_IDX 0
+#define regSDMA_PAGE_RB_WPTR_POLL_ADDR_LO 0x010b
+#define regSDMA_PAGE_RB_WPTR_POLL_ADDR_LO_BASE_IDX 0
+#define regSDMA_PAGE_RB_AQL_CNTL 0x010c
+#define regSDMA_PAGE_RB_AQL_CNTL_BASE_IDX 0
+#define regSDMA_PAGE_MINOR_PTR_UPDATE 0x010d
+#define regSDMA_PAGE_MINOR_PTR_UPDATE_BASE_IDX 0
+#define regSDMA_PAGE_MIDCMD_DATA0 0x0118
+#define regSDMA_PAGE_MIDCMD_DATA0_BASE_IDX 0
+#define regSDMA_PAGE_MIDCMD_DATA1 0x0119
+#define regSDMA_PAGE_MIDCMD_DATA1_BASE_IDX 0
+#define regSDMA_PAGE_MIDCMD_DATA2 0x011a
+#define regSDMA_PAGE_MIDCMD_DATA2_BASE_IDX 0
+#define regSDMA_PAGE_MIDCMD_DATA3 0x011b
+#define regSDMA_PAGE_MIDCMD_DATA3_BASE_IDX 0
+#define regSDMA_PAGE_MIDCMD_DATA4 0x011c
+#define regSDMA_PAGE_MIDCMD_DATA4_BASE_IDX 0
+#define regSDMA_PAGE_MIDCMD_DATA5 0x011d
+#define regSDMA_PAGE_MIDCMD_DATA5_BASE_IDX 0
+#define regSDMA_PAGE_MIDCMD_DATA6 0x011e
+#define regSDMA_PAGE_MIDCMD_DATA6_BASE_IDX 0
+#define regSDMA_PAGE_MIDCMD_DATA7 0x011f
+#define regSDMA_PAGE_MIDCMD_DATA7_BASE_IDX 0
+#define regSDMA_PAGE_MIDCMD_DATA8 0x0120
+#define regSDMA_PAGE_MIDCMD_DATA8_BASE_IDX 0
+#define regSDMA_PAGE_MIDCMD_DATA9 0x0121
+#define regSDMA_PAGE_MIDCMD_DATA9_BASE_IDX 0
+#define regSDMA_PAGE_MIDCMD_DATA10 0x0122
+#define regSDMA_PAGE_MIDCMD_DATA10_BASE_IDX 0
+#define regSDMA_PAGE_MIDCMD_CNTL 0x0123
+#define regSDMA_PAGE_MIDCMD_CNTL_BASE_IDX 0
+#define regSDMA_RLC0_RB_CNTL 0x0130
+#define regSDMA_RLC0_RB_CNTL_BASE_IDX 0
+#define regSDMA_RLC0_RB_BASE 0x0131
+#define regSDMA_RLC0_RB_BASE_BASE_IDX 0
+#define regSDMA_RLC0_RB_BASE_HI 0x0132
+#define regSDMA_RLC0_RB_BASE_HI_BASE_IDX 0
+#define regSDMA_RLC0_RB_RPTR 0x0133
+#define regSDMA_RLC0_RB_RPTR_BASE_IDX 0
+#define regSDMA_RLC0_RB_RPTR_HI 0x0134
+#define regSDMA_RLC0_RB_RPTR_HI_BASE_IDX 0
+#define regSDMA_RLC0_RB_WPTR 0x0135
+#define regSDMA_RLC0_RB_WPTR_BASE_IDX 0
+#define regSDMA_RLC0_RB_WPTR_HI 0x0136
+#define regSDMA_RLC0_RB_WPTR_HI_BASE_IDX 0
+#define regSDMA_RLC0_RB_WPTR_POLL_CNTL 0x0137
+#define regSDMA_RLC0_RB_WPTR_POLL_CNTL_BASE_IDX 0
+#define regSDMA_RLC0_RB_RPTR_ADDR_HI 0x0138
+#define regSDMA_RLC0_RB_RPTR_ADDR_HI_BASE_IDX 0
+#define regSDMA_RLC0_RB_RPTR_ADDR_LO 0x0139
+#define regSDMA_RLC0_RB_RPTR_ADDR_LO_BASE_IDX 0
+#define regSDMA_RLC0_IB_CNTL 0x013a
+#define regSDMA_RLC0_IB_CNTL_BASE_IDX 0
+#define regSDMA_RLC0_IB_RPTR 0x013b
+#define regSDMA_RLC0_IB_RPTR_BASE_IDX 0
+#define regSDMA_RLC0_IB_OFFSET 0x013c
+#define regSDMA_RLC0_IB_OFFSET_BASE_IDX 0
+#define regSDMA_RLC0_IB_BASE_LO 0x013d
+#define regSDMA_RLC0_IB_BASE_LO_BASE_IDX 0
+#define regSDMA_RLC0_IB_BASE_HI 0x013e
+#define regSDMA_RLC0_IB_BASE_HI_BASE_IDX 0
+#define regSDMA_RLC0_IB_SIZE 0x013f
+#define regSDMA_RLC0_IB_SIZE_BASE_IDX 0
+#define regSDMA_RLC0_SKIP_CNTL 0x0140
+#define regSDMA_RLC0_SKIP_CNTL_BASE_IDX 0
+#define regSDMA_RLC0_CONTEXT_STATUS 0x0141
+#define regSDMA_RLC0_CONTEXT_STATUS_BASE_IDX 0
+#define regSDMA_RLC0_DOORBELL 0x0142
+#define regSDMA_RLC0_DOORBELL_BASE_IDX 0
+#define regSDMA_RLC0_STATUS 0x0158
+#define regSDMA_RLC0_STATUS_BASE_IDX 0
+#define regSDMA_RLC0_DOORBELL_LOG 0x0159
+#define regSDMA_RLC0_DOORBELL_LOG_BASE_IDX 0
+#define regSDMA_RLC0_WATERMARK 0x015a
+#define regSDMA_RLC0_WATERMARK_BASE_IDX 0
+#define regSDMA_RLC0_DOORBELL_OFFSET 0x015b
+#define regSDMA_RLC0_DOORBELL_OFFSET_BASE_IDX 0
+#define regSDMA_RLC0_CSA_ADDR_LO 0x015c
+#define regSDMA_RLC0_CSA_ADDR_LO_BASE_IDX 0
+#define regSDMA_RLC0_CSA_ADDR_HI 0x015d
+#define regSDMA_RLC0_CSA_ADDR_HI_BASE_IDX 0
+#define regSDMA_RLC0_IB_SUB_REMAIN 0x015f
+#define regSDMA_RLC0_IB_SUB_REMAIN_BASE_IDX 0
+#define regSDMA_RLC0_PREEMPT 0x0160
+#define regSDMA_RLC0_PREEMPT_BASE_IDX 0
+#define regSDMA_RLC0_DUMMY_REG 0x0161
+#define regSDMA_RLC0_DUMMY_REG_BASE_IDX 0
+#define regSDMA_RLC0_RB_WPTR_POLL_ADDR_HI 0x0162
+#define regSDMA_RLC0_RB_WPTR_POLL_ADDR_HI_BASE_IDX 0
+#define regSDMA_RLC0_RB_WPTR_POLL_ADDR_LO 0x0163
+#define regSDMA_RLC0_RB_WPTR_POLL_ADDR_LO_BASE_IDX 0
+#define regSDMA_RLC0_RB_AQL_CNTL 0x0164
+#define regSDMA_RLC0_RB_AQL_CNTL_BASE_IDX 0
+#define regSDMA_RLC0_MINOR_PTR_UPDATE 0x0165
+#define regSDMA_RLC0_MINOR_PTR_UPDATE_BASE_IDX 0
+#define regSDMA_RLC0_MIDCMD_DATA0 0x0170
+#define regSDMA_RLC0_MIDCMD_DATA0_BASE_IDX 0
+#define regSDMA_RLC0_MIDCMD_DATA1 0x0171
+#define regSDMA_RLC0_MIDCMD_DATA1_BASE_IDX 0
+#define regSDMA_RLC0_MIDCMD_DATA2 0x0172
+#define regSDMA_RLC0_MIDCMD_DATA2_BASE_IDX 0
+#define regSDMA_RLC0_MIDCMD_DATA3 0x0173
+#define regSDMA_RLC0_MIDCMD_DATA3_BASE_IDX 0
+#define regSDMA_RLC0_MIDCMD_DATA4 0x0174
+#define regSDMA_RLC0_MIDCMD_DATA4_BASE_IDX 0
+#define regSDMA_RLC0_MIDCMD_DATA5 0x0175
+#define regSDMA_RLC0_MIDCMD_DATA5_BASE_IDX 0
+#define regSDMA_RLC0_MIDCMD_DATA6 0x0176
+#define regSDMA_RLC0_MIDCMD_DATA6_BASE_IDX 0
+#define regSDMA_RLC0_MIDCMD_DATA7 0x0177
+#define regSDMA_RLC0_MIDCMD_DATA7_BASE_IDX 0
+#define regSDMA_RLC0_MIDCMD_DATA8 0x0178
+#define regSDMA_RLC0_MIDCMD_DATA8_BASE_IDX 0
+#define regSDMA_RLC0_MIDCMD_DATA9 0x0179
+#define regSDMA_RLC0_MIDCMD_DATA9_BASE_IDX 0
+#define regSDMA_RLC0_MIDCMD_DATA10 0x017a
+#define regSDMA_RLC0_MIDCMD_DATA10_BASE_IDX 0
+#define regSDMA_RLC0_MIDCMD_CNTL 0x017b
+#define regSDMA_RLC0_MIDCMD_CNTL_BASE_IDX 0
+#define regSDMA_RLC1_RB_CNTL 0x0188
+#define regSDMA_RLC1_RB_CNTL_BASE_IDX 0
+#define regSDMA_RLC1_RB_BASE 0x0189
+#define regSDMA_RLC1_RB_BASE_BASE_IDX 0
+#define regSDMA_RLC1_RB_BASE_HI 0x018a
+#define regSDMA_RLC1_RB_BASE_HI_BASE_IDX 0
+#define regSDMA_RLC1_RB_RPTR 0x018b
+#define regSDMA_RLC1_RB_RPTR_BASE_IDX 0
+#define regSDMA_RLC1_RB_RPTR_HI 0x018c
+#define regSDMA_RLC1_RB_RPTR_HI_BASE_IDX 0
+#define regSDMA_RLC1_RB_WPTR 0x018d
+#define regSDMA_RLC1_RB_WPTR_BASE_IDX 0
+#define regSDMA_RLC1_RB_WPTR_HI 0x018e
+#define regSDMA_RLC1_RB_WPTR_HI_BASE_IDX 0
+#define regSDMA_RLC1_RB_WPTR_POLL_CNTL 0x018f
+#define regSDMA_RLC1_RB_WPTR_POLL_CNTL_BASE_IDX 0
+#define regSDMA_RLC1_RB_RPTR_ADDR_HI 0x0190
+#define regSDMA_RLC1_RB_RPTR_ADDR_HI_BASE_IDX 0
+#define regSDMA_RLC1_RB_RPTR_ADDR_LO 0x0191
+#define regSDMA_RLC1_RB_RPTR_ADDR_LO_BASE_IDX 0
+#define regSDMA_RLC1_IB_CNTL 0x0192
+#define regSDMA_RLC1_IB_CNTL_BASE_IDX 0
+#define regSDMA_RLC1_IB_RPTR 0x0193
+#define regSDMA_RLC1_IB_RPTR_BASE_IDX 0
+#define regSDMA_RLC1_IB_OFFSET 0x0194
+#define regSDMA_RLC1_IB_OFFSET_BASE_IDX 0
+#define regSDMA_RLC1_IB_BASE_LO 0x0195
+#define regSDMA_RLC1_IB_BASE_LO_BASE_IDX 0
+#define regSDMA_RLC1_IB_BASE_HI 0x0196
+#define regSDMA_RLC1_IB_BASE_HI_BASE_IDX 0
+#define regSDMA_RLC1_IB_SIZE 0x0197
+#define regSDMA_RLC1_IB_SIZE_BASE_IDX 0
+#define regSDMA_RLC1_SKIP_CNTL 0x0198
+#define regSDMA_RLC1_SKIP_CNTL_BASE_IDX 0
+#define regSDMA_RLC1_CONTEXT_STATUS 0x0199
+#define regSDMA_RLC1_CONTEXT_STATUS_BASE_IDX 0
+#define regSDMA_RLC1_DOORBELL 0x019a
+#define regSDMA_RLC1_DOORBELL_BASE_IDX 0
+#define regSDMA_RLC1_STATUS 0x01b0
+#define regSDMA_RLC1_STATUS_BASE_IDX 0
+#define regSDMA_RLC1_DOORBELL_LOG 0x01b1
+#define regSDMA_RLC1_DOORBELL_LOG_BASE_IDX 0
+#define regSDMA_RLC1_WATERMARK 0x01b2
+#define regSDMA_RLC1_WATERMARK_BASE_IDX 0
+#define regSDMA_RLC1_DOORBELL_OFFSET 0x01b3
+#define regSDMA_RLC1_DOORBELL_OFFSET_BASE_IDX 0
+#define regSDMA_RLC1_CSA_ADDR_LO 0x01b4
+#define regSDMA_RLC1_CSA_ADDR_LO_BASE_IDX 0
+#define regSDMA_RLC1_CSA_ADDR_HI 0x01b5
+#define regSDMA_RLC1_CSA_ADDR_HI_BASE_IDX 0
+#define regSDMA_RLC1_IB_SUB_REMAIN 0x01b7
+#define regSDMA_RLC1_IB_SUB_REMAIN_BASE_IDX 0
+#define regSDMA_RLC1_PREEMPT 0x01b8
+#define regSDMA_RLC1_PREEMPT_BASE_IDX 0
+#define regSDMA_RLC1_DUMMY_REG 0x01b9
+#define regSDMA_RLC1_DUMMY_REG_BASE_IDX 0
+#define regSDMA_RLC1_RB_WPTR_POLL_ADDR_HI 0x01ba
+#define regSDMA_RLC1_RB_WPTR_POLL_ADDR_HI_BASE_IDX 0
+#define regSDMA_RLC1_RB_WPTR_POLL_ADDR_LO 0x01bb
+#define regSDMA_RLC1_RB_WPTR_POLL_ADDR_LO_BASE_IDX 0
+#define regSDMA_RLC1_RB_AQL_CNTL 0x01bc
+#define regSDMA_RLC1_RB_AQL_CNTL_BASE_IDX 0
+#define regSDMA_RLC1_MINOR_PTR_UPDATE 0x01bd
+#define regSDMA_RLC1_MINOR_PTR_UPDATE_BASE_IDX 0
+#define regSDMA_RLC1_MIDCMD_DATA0 0x01c8
+#define regSDMA_RLC1_MIDCMD_DATA0_BASE_IDX 0
+#define regSDMA_RLC1_MIDCMD_DATA1 0x01c9
+#define regSDMA_RLC1_MIDCMD_DATA1_BASE_IDX 0
+#define regSDMA_RLC1_MIDCMD_DATA2 0x01ca
+#define regSDMA_RLC1_MIDCMD_DATA2_BASE_IDX 0
+#define regSDMA_RLC1_MIDCMD_DATA3 0x01cb
+#define regSDMA_RLC1_MIDCMD_DATA3_BASE_IDX 0
+#define regSDMA_RLC1_MIDCMD_DATA4 0x01cc
+#define regSDMA_RLC1_MIDCMD_DATA4_BASE_IDX 0
+#define regSDMA_RLC1_MIDCMD_DATA5 0x01cd
+#define regSDMA_RLC1_MIDCMD_DATA5_BASE_IDX 0
+#define regSDMA_RLC1_MIDCMD_DATA6 0x01ce
+#define regSDMA_RLC1_MIDCMD_DATA6_BASE_IDX 0
+#define regSDMA_RLC1_MIDCMD_DATA7 0x01cf
+#define regSDMA_RLC1_MIDCMD_DATA7_BASE_IDX 0
+#define regSDMA_RLC1_MIDCMD_DATA8 0x01d0
+#define regSDMA_RLC1_MIDCMD_DATA8_BASE_IDX 0
+#define regSDMA_RLC1_MIDCMD_DATA9 0x01d1
+#define regSDMA_RLC1_MIDCMD_DATA9_BASE_IDX 0
+#define regSDMA_RLC1_MIDCMD_DATA10 0x01d2
+#define regSDMA_RLC1_MIDCMD_DATA10_BASE_IDX 0
+#define regSDMA_RLC1_MIDCMD_CNTL 0x01d3
+#define regSDMA_RLC1_MIDCMD_CNTL_BASE_IDX 0
+#define regSDMA_RLC2_RB_CNTL 0x01e0
+#define regSDMA_RLC2_RB_CNTL_BASE_IDX 0
+#define regSDMA_RLC2_RB_BASE 0x01e1
+#define regSDMA_RLC2_RB_BASE_BASE_IDX 0
+#define regSDMA_RLC2_RB_BASE_HI 0x01e2
+#define regSDMA_RLC2_RB_BASE_HI_BASE_IDX 0
+#define regSDMA_RLC2_RB_RPTR 0x01e3
+#define regSDMA_RLC2_RB_RPTR_BASE_IDX 0
+#define regSDMA_RLC2_RB_RPTR_HI 0x01e4
+#define regSDMA_RLC2_RB_RPTR_HI_BASE_IDX 0
+#define regSDMA_RLC2_RB_WPTR 0x01e5
+#define regSDMA_RLC2_RB_WPTR_BASE_IDX 0
+#define regSDMA_RLC2_RB_WPTR_HI 0x01e6
+#define regSDMA_RLC2_RB_WPTR_HI_BASE_IDX 0
+#define regSDMA_RLC2_RB_WPTR_POLL_CNTL 0x01e7
+#define regSDMA_RLC2_RB_WPTR_POLL_CNTL_BASE_IDX 0
+#define regSDMA_RLC2_RB_RPTR_ADDR_HI 0x01e8
+#define regSDMA_RLC2_RB_RPTR_ADDR_HI_BASE_IDX 0
+#define regSDMA_RLC2_RB_RPTR_ADDR_LO 0x01e9
+#define regSDMA_RLC2_RB_RPTR_ADDR_LO_BASE_IDX 0
+#define regSDMA_RLC2_IB_CNTL 0x01ea
+#define regSDMA_RLC2_IB_CNTL_BASE_IDX 0
+#define regSDMA_RLC2_IB_RPTR 0x01eb
+#define regSDMA_RLC2_IB_RPTR_BASE_IDX 0
+#define regSDMA_RLC2_IB_OFFSET 0x01ec
+#define regSDMA_RLC2_IB_OFFSET_BASE_IDX 0
+#define regSDMA_RLC2_IB_BASE_LO 0x01ed
+#define regSDMA_RLC2_IB_BASE_LO_BASE_IDX 0
+#define regSDMA_RLC2_IB_BASE_HI 0x01ee
+#define regSDMA_RLC2_IB_BASE_HI_BASE_IDX 0
+#define regSDMA_RLC2_IB_SIZE 0x01ef
+#define regSDMA_RLC2_IB_SIZE_BASE_IDX 0
+#define regSDMA_RLC2_SKIP_CNTL 0x01f0
+#define regSDMA_RLC2_SKIP_CNTL_BASE_IDX 0
+#define regSDMA_RLC2_CONTEXT_STATUS 0x01f1
+#define regSDMA_RLC2_CONTEXT_STATUS_BASE_IDX 0
+#define regSDMA_RLC2_DOORBELL 0x01f2
+#define regSDMA_RLC2_DOORBELL_BASE_IDX 0
+#define regSDMA_RLC2_STATUS 0x0208
+#define regSDMA_RLC2_STATUS_BASE_IDX 0
+#define regSDMA_RLC2_DOORBELL_LOG 0x0209
+#define regSDMA_RLC2_DOORBELL_LOG_BASE_IDX 0
+#define regSDMA_RLC2_WATERMARK 0x020a
+#define regSDMA_RLC2_WATERMARK_BASE_IDX 0
+#define regSDMA_RLC2_DOORBELL_OFFSET 0x020b
+#define regSDMA_RLC2_DOORBELL_OFFSET_BASE_IDX 0
+#define regSDMA_RLC2_CSA_ADDR_LO 0x020c
+#define regSDMA_RLC2_CSA_ADDR_LO_BASE_IDX 0
+#define regSDMA_RLC2_CSA_ADDR_HI 0x020d
+#define regSDMA_RLC2_CSA_ADDR_HI_BASE_IDX 0
+#define regSDMA_RLC2_IB_SUB_REMAIN 0x020f
+#define regSDMA_RLC2_IB_SUB_REMAIN_BASE_IDX 0
+#define regSDMA_RLC2_PREEMPT 0x0210
+#define regSDMA_RLC2_PREEMPT_BASE_IDX 0
+#define regSDMA_RLC2_DUMMY_REG 0x0211
+#define regSDMA_RLC2_DUMMY_REG_BASE_IDX 0
+#define regSDMA_RLC2_RB_WPTR_POLL_ADDR_HI 0x0212
+#define regSDMA_RLC2_RB_WPTR_POLL_ADDR_HI_BASE_IDX 0
+#define regSDMA_RLC2_RB_WPTR_POLL_ADDR_LO 0x0213
+#define regSDMA_RLC2_RB_WPTR_POLL_ADDR_LO_BASE_IDX 0
+#define regSDMA_RLC2_RB_AQL_CNTL 0x0214
+#define regSDMA_RLC2_RB_AQL_CNTL_BASE_IDX 0
+#define regSDMA_RLC2_MINOR_PTR_UPDATE 0x0215
+#define regSDMA_RLC2_MINOR_PTR_UPDATE_BASE_IDX 0
+#define regSDMA_RLC2_MIDCMD_DATA0 0x0220
+#define regSDMA_RLC2_MIDCMD_DATA0_BASE_IDX 0
+#define regSDMA_RLC2_MIDCMD_DATA1 0x0221
+#define regSDMA_RLC2_MIDCMD_DATA1_BASE_IDX 0
+#define regSDMA_RLC2_MIDCMD_DATA2 0x0222
+#define regSDMA_RLC2_MIDCMD_DATA2_BASE_IDX 0
+#define regSDMA_RLC2_MIDCMD_DATA3 0x0223
+#define regSDMA_RLC2_MIDCMD_DATA3_BASE_IDX 0
+#define regSDMA_RLC2_MIDCMD_DATA4 0x0224
+#define regSDMA_RLC2_MIDCMD_DATA4_BASE_IDX 0
+#define regSDMA_RLC2_MIDCMD_DATA5 0x0225
+#define regSDMA_RLC2_MIDCMD_DATA5_BASE_IDX 0
+#define regSDMA_RLC2_MIDCMD_DATA6 0x0226
+#define regSDMA_RLC2_MIDCMD_DATA6_BASE_IDX 0
+#define regSDMA_RLC2_MIDCMD_DATA7 0x0227
+#define regSDMA_RLC2_MIDCMD_DATA7_BASE_IDX 0
+#define regSDMA_RLC2_MIDCMD_DATA8 0x0228
+#define regSDMA_RLC2_MIDCMD_DATA8_BASE_IDX 0
+#define regSDMA_RLC2_MIDCMD_DATA9 0x0229
+#define regSDMA_RLC2_MIDCMD_DATA9_BASE_IDX 0
+#define regSDMA_RLC2_MIDCMD_DATA10 0x022a
+#define regSDMA_RLC2_MIDCMD_DATA10_BASE_IDX 0
+#define regSDMA_RLC2_MIDCMD_CNTL 0x022b
+#define regSDMA_RLC2_MIDCMD_CNTL_BASE_IDX 0
+#define regSDMA_RLC3_RB_CNTL 0x0238
+#define regSDMA_RLC3_RB_CNTL_BASE_IDX 0
+#define regSDMA_RLC3_RB_BASE 0x0239
+#define regSDMA_RLC3_RB_BASE_BASE_IDX 0
+#define regSDMA_RLC3_RB_BASE_HI 0x023a
+#define regSDMA_RLC3_RB_BASE_HI_BASE_IDX 0
+#define regSDMA_RLC3_RB_RPTR 0x023b
+#define regSDMA_RLC3_RB_RPTR_BASE_IDX 0
+#define regSDMA_RLC3_RB_RPTR_HI 0x023c
+#define regSDMA_RLC3_RB_RPTR_HI_BASE_IDX 0
+#define regSDMA_RLC3_RB_WPTR 0x023d
+#define regSDMA_RLC3_RB_WPTR_BASE_IDX 0
+#define regSDMA_RLC3_RB_WPTR_HI 0x023e
+#define regSDMA_RLC3_RB_WPTR_HI_BASE_IDX 0
+#define regSDMA_RLC3_RB_WPTR_POLL_CNTL 0x023f
+#define regSDMA_RLC3_RB_WPTR_POLL_CNTL_BASE_IDX 0
+#define regSDMA_RLC3_RB_RPTR_ADDR_HI 0x0240
+#define regSDMA_RLC3_RB_RPTR_ADDR_HI_BASE_IDX 0
+#define regSDMA_RLC3_RB_RPTR_ADDR_LO 0x0241
+#define regSDMA_RLC3_RB_RPTR_ADDR_LO_BASE_IDX 0
+#define regSDMA_RLC3_IB_CNTL 0x0242
+#define regSDMA_RLC3_IB_CNTL_BASE_IDX 0
+#define regSDMA_RLC3_IB_RPTR 0x0243
+#define regSDMA_RLC3_IB_RPTR_BASE_IDX 0
+#define regSDMA_RLC3_IB_OFFSET 0x0244
+#define regSDMA_RLC3_IB_OFFSET_BASE_IDX 0
+#define regSDMA_RLC3_IB_BASE_LO 0x0245
+#define regSDMA_RLC3_IB_BASE_LO_BASE_IDX 0
+#define regSDMA_RLC3_IB_BASE_HI 0x0246
+#define regSDMA_RLC3_IB_BASE_HI_BASE_IDX 0
+#define regSDMA_RLC3_IB_SIZE 0x0247
+#define regSDMA_RLC3_IB_SIZE_BASE_IDX 0
+#define regSDMA_RLC3_SKIP_CNTL 0x0248
+#define regSDMA_RLC3_SKIP_CNTL_BASE_IDX 0
+#define regSDMA_RLC3_CONTEXT_STATUS 0x0249
+#define regSDMA_RLC3_CONTEXT_STATUS_BASE_IDX 0
+#define regSDMA_RLC3_DOORBELL 0x024a
+#define regSDMA_RLC3_DOORBELL_BASE_IDX 0
+#define regSDMA_RLC3_STATUS 0x0260
+#define regSDMA_RLC3_STATUS_BASE_IDX 0
+#define regSDMA_RLC3_DOORBELL_LOG 0x0261
+#define regSDMA_RLC3_DOORBELL_LOG_BASE_IDX 0
+#define regSDMA_RLC3_WATERMARK 0x0262
+#define regSDMA_RLC3_WATERMARK_BASE_IDX 0
+#define regSDMA_RLC3_DOORBELL_OFFSET 0x0263
+#define regSDMA_RLC3_DOORBELL_OFFSET_BASE_IDX 0
+#define regSDMA_RLC3_CSA_ADDR_LO 0x0264
+#define regSDMA_RLC3_CSA_ADDR_LO_BASE_IDX 0
+#define regSDMA_RLC3_CSA_ADDR_HI 0x0265
+#define regSDMA_RLC3_CSA_ADDR_HI_BASE_IDX 0
+#define regSDMA_RLC3_IB_SUB_REMAIN 0x0267
+#define regSDMA_RLC3_IB_SUB_REMAIN_BASE_IDX 0
+#define regSDMA_RLC3_PREEMPT 0x0268
+#define regSDMA_RLC3_PREEMPT_BASE_IDX 0
+#define regSDMA_RLC3_DUMMY_REG 0x0269
+#define regSDMA_RLC3_DUMMY_REG_BASE_IDX 0
+#define regSDMA_RLC3_RB_WPTR_POLL_ADDR_HI 0x026a
+#define regSDMA_RLC3_RB_WPTR_POLL_ADDR_HI_BASE_IDX 0
+#define regSDMA_RLC3_RB_WPTR_POLL_ADDR_LO 0x026b
+#define regSDMA_RLC3_RB_WPTR_POLL_ADDR_LO_BASE_IDX 0
+#define regSDMA_RLC3_RB_AQL_CNTL 0x026c
+#define regSDMA_RLC3_RB_AQL_CNTL_BASE_IDX 0
+#define regSDMA_RLC3_MINOR_PTR_UPDATE 0x026d
+#define regSDMA_RLC3_MINOR_PTR_UPDATE_BASE_IDX 0
+#define regSDMA_RLC3_MIDCMD_DATA0 0x0278
+#define regSDMA_RLC3_MIDCMD_DATA0_BASE_IDX 0
+#define regSDMA_RLC3_MIDCMD_DATA1 0x0279
+#define regSDMA_RLC3_MIDCMD_DATA1_BASE_IDX 0
+#define regSDMA_RLC3_MIDCMD_DATA2 0x027a
+#define regSDMA_RLC3_MIDCMD_DATA2_BASE_IDX 0
+#define regSDMA_RLC3_MIDCMD_DATA3 0x027b
+#define regSDMA_RLC3_MIDCMD_DATA3_BASE_IDX 0
+#define regSDMA_RLC3_MIDCMD_DATA4 0x027c
+#define regSDMA_RLC3_MIDCMD_DATA4_BASE_IDX 0
+#define regSDMA_RLC3_MIDCMD_DATA5 0x027d
+#define regSDMA_RLC3_MIDCMD_DATA5_BASE_IDX 0
+#define regSDMA_RLC3_MIDCMD_DATA6 0x027e
+#define regSDMA_RLC3_MIDCMD_DATA6_BASE_IDX 0
+#define regSDMA_RLC3_MIDCMD_DATA7 0x027f
+#define regSDMA_RLC3_MIDCMD_DATA7_BASE_IDX 0
+#define regSDMA_RLC3_MIDCMD_DATA8 0x0280
+#define regSDMA_RLC3_MIDCMD_DATA8_BASE_IDX 0
+#define regSDMA_RLC3_MIDCMD_DATA9 0x0281
+#define regSDMA_RLC3_MIDCMD_DATA9_BASE_IDX 0
+#define regSDMA_RLC3_MIDCMD_DATA10 0x0282
+#define regSDMA_RLC3_MIDCMD_DATA10_BASE_IDX 0
+#define regSDMA_RLC3_MIDCMD_CNTL 0x0283
+#define regSDMA_RLC3_MIDCMD_CNTL_BASE_IDX 0
+#define regSDMA_RLC4_RB_CNTL 0x0290
+#define regSDMA_RLC4_RB_CNTL_BASE_IDX 0
+#define regSDMA_RLC4_RB_BASE 0x0291
+#define regSDMA_RLC4_RB_BASE_BASE_IDX 0
+#define regSDMA_RLC4_RB_BASE_HI 0x0292
+#define regSDMA_RLC4_RB_BASE_HI_BASE_IDX 0
+#define regSDMA_RLC4_RB_RPTR 0x0293
+#define regSDMA_RLC4_RB_RPTR_BASE_IDX 0
+#define regSDMA_RLC4_RB_RPTR_HI 0x0294
+#define regSDMA_RLC4_RB_RPTR_HI_BASE_IDX 0
+#define regSDMA_RLC4_RB_WPTR 0x0295
+#define regSDMA_RLC4_RB_WPTR_BASE_IDX 0
+#define regSDMA_RLC4_RB_WPTR_HI 0x0296
+#define regSDMA_RLC4_RB_WPTR_HI_BASE_IDX 0
+#define regSDMA_RLC4_RB_WPTR_POLL_CNTL 0x0297
+#define regSDMA_RLC4_RB_WPTR_POLL_CNTL_BASE_IDX 0
+#define regSDMA_RLC4_RB_RPTR_ADDR_HI 0x0298
+#define regSDMA_RLC4_RB_RPTR_ADDR_HI_BASE_IDX 0
+#define regSDMA_RLC4_RB_RPTR_ADDR_LO 0x0299
+#define regSDMA_RLC4_RB_RPTR_ADDR_LO_BASE_IDX 0
+#define regSDMA_RLC4_IB_CNTL 0x029a
+#define regSDMA_RLC4_IB_CNTL_BASE_IDX 0
+#define regSDMA_RLC4_IB_RPTR 0x029b
+#define regSDMA_RLC4_IB_RPTR_BASE_IDX 0
+#define regSDMA_RLC4_IB_OFFSET 0x029c
+#define regSDMA_RLC4_IB_OFFSET_BASE_IDX 0
+#define regSDMA_RLC4_IB_BASE_LO 0x029d
+#define regSDMA_RLC4_IB_BASE_LO_BASE_IDX 0
+#define regSDMA_RLC4_IB_BASE_HI 0x029e
+#define regSDMA_RLC4_IB_BASE_HI_BASE_IDX 0
+#define regSDMA_RLC4_IB_SIZE 0x029f
+#define regSDMA_RLC4_IB_SIZE_BASE_IDX 0
+#define regSDMA_RLC4_SKIP_CNTL 0x02a0
+#define regSDMA_RLC4_SKIP_CNTL_BASE_IDX 0
+#define regSDMA_RLC4_CONTEXT_STATUS 0x02a1
+#define regSDMA_RLC4_CONTEXT_STATUS_BASE_IDX 0
+#define regSDMA_RLC4_DOORBELL 0x02a2
+#define regSDMA_RLC4_DOORBELL_BASE_IDX 0
+#define regSDMA_RLC4_STATUS 0x02b8
+#define regSDMA_RLC4_STATUS_BASE_IDX 0
+#define regSDMA_RLC4_DOORBELL_LOG 0x02b9
+#define regSDMA_RLC4_DOORBELL_LOG_BASE_IDX 0
+#define regSDMA_RLC4_WATERMARK 0x02ba
+#define regSDMA_RLC4_WATERMARK_BASE_IDX 0
+#define regSDMA_RLC4_DOORBELL_OFFSET 0x02bb
+#define regSDMA_RLC4_DOORBELL_OFFSET_BASE_IDX 0
+#define regSDMA_RLC4_CSA_ADDR_LO 0x02bc
+#define regSDMA_RLC4_CSA_ADDR_LO_BASE_IDX 0
+#define regSDMA_RLC4_CSA_ADDR_HI 0x02bd
+#define regSDMA_RLC4_CSA_ADDR_HI_BASE_IDX 0
+#define regSDMA_RLC4_IB_SUB_REMAIN 0x02bf
+#define regSDMA_RLC4_IB_SUB_REMAIN_BASE_IDX 0
+#define regSDMA_RLC4_PREEMPT 0x02c0
+#define regSDMA_RLC4_PREEMPT_BASE_IDX 0
+#define regSDMA_RLC4_DUMMY_REG 0x02c1
+#define regSDMA_RLC4_DUMMY_REG_BASE_IDX 0
+#define regSDMA_RLC4_RB_WPTR_POLL_ADDR_HI 0x02c2
+#define regSDMA_RLC4_RB_WPTR_POLL_ADDR_HI_BASE_IDX 0
+#define regSDMA_RLC4_RB_WPTR_POLL_ADDR_LO 0x02c3
+#define regSDMA_RLC4_RB_WPTR_POLL_ADDR_LO_BASE_IDX 0
+#define regSDMA_RLC4_RB_AQL_CNTL 0x02c4
+#define regSDMA_RLC4_RB_AQL_CNTL_BASE_IDX 0
+#define regSDMA_RLC4_MINOR_PTR_UPDATE 0x02c5
+#define regSDMA_RLC4_MINOR_PTR_UPDATE_BASE_IDX 0
+#define regSDMA_RLC4_MIDCMD_DATA0 0x02d0
+#define regSDMA_RLC4_MIDCMD_DATA0_BASE_IDX 0
+#define regSDMA_RLC4_MIDCMD_DATA1 0x02d1
+#define regSDMA_RLC4_MIDCMD_DATA1_BASE_IDX 0
+#define regSDMA_RLC4_MIDCMD_DATA2 0x02d2
+#define regSDMA_RLC4_MIDCMD_DATA2_BASE_IDX 0
+#define regSDMA_RLC4_MIDCMD_DATA3 0x02d3
+#define regSDMA_RLC4_MIDCMD_DATA3_BASE_IDX 0
+#define regSDMA_RLC4_MIDCMD_DATA4 0x02d4
+#define regSDMA_RLC4_MIDCMD_DATA4_BASE_IDX 0
+#define regSDMA_RLC4_MIDCMD_DATA5 0x02d5
+#define regSDMA_RLC4_MIDCMD_DATA5_BASE_IDX 0
+#define regSDMA_RLC4_MIDCMD_DATA6 0x02d6
+#define regSDMA_RLC4_MIDCMD_DATA6_BASE_IDX 0
+#define regSDMA_RLC4_MIDCMD_DATA7 0x02d7
+#define regSDMA_RLC4_MIDCMD_DATA7_BASE_IDX 0
+#define regSDMA_RLC4_MIDCMD_DATA8 0x02d8
+#define regSDMA_RLC4_MIDCMD_DATA8_BASE_IDX 0
+#define regSDMA_RLC4_MIDCMD_DATA9 0x02d9
+#define regSDMA_RLC4_MIDCMD_DATA9_BASE_IDX 0
+#define regSDMA_RLC4_MIDCMD_DATA10 0x02da
+#define regSDMA_RLC4_MIDCMD_DATA10_BASE_IDX 0
+#define regSDMA_RLC4_MIDCMD_CNTL 0x02db
+#define regSDMA_RLC4_MIDCMD_CNTL_BASE_IDX 0
+#define regSDMA_RLC5_RB_CNTL 0x02e8
+#define regSDMA_RLC5_RB_CNTL_BASE_IDX 0
+#define regSDMA_RLC5_RB_BASE 0x02e9
+#define regSDMA_RLC5_RB_BASE_BASE_IDX 0
+#define regSDMA_RLC5_RB_BASE_HI 0x02ea
+#define regSDMA_RLC5_RB_BASE_HI_BASE_IDX 0
+#define regSDMA_RLC5_RB_RPTR 0x02eb
+#define regSDMA_RLC5_RB_RPTR_BASE_IDX 0
+#define regSDMA_RLC5_RB_RPTR_HI 0x02ec
+#define regSDMA_RLC5_RB_RPTR_HI_BASE_IDX 0
+#define regSDMA_RLC5_RB_WPTR 0x02ed
+#define regSDMA_RLC5_RB_WPTR_BASE_IDX 0
+#define regSDMA_RLC5_RB_WPTR_HI 0x02ee
+#define regSDMA_RLC5_RB_WPTR_HI_BASE_IDX 0
+#define regSDMA_RLC5_RB_WPTR_POLL_CNTL 0x02ef
+#define regSDMA_RLC5_RB_WPTR_POLL_CNTL_BASE_IDX 0
+#define regSDMA_RLC5_RB_RPTR_ADDR_HI 0x02f0
+#define regSDMA_RLC5_RB_RPTR_ADDR_HI_BASE_IDX 0
+#define regSDMA_RLC5_RB_RPTR_ADDR_LO 0x02f1
+#define regSDMA_RLC5_RB_RPTR_ADDR_LO_BASE_IDX 0
+#define regSDMA_RLC5_IB_CNTL 0x02f2
+#define regSDMA_RLC5_IB_CNTL_BASE_IDX 0
+#define regSDMA_RLC5_IB_RPTR 0x02f3
+#define regSDMA_RLC5_IB_RPTR_BASE_IDX 0
+#define regSDMA_RLC5_IB_OFFSET 0x02f4
+#define regSDMA_RLC5_IB_OFFSET_BASE_IDX 0
+#define regSDMA_RLC5_IB_BASE_LO 0x02f5
+#define regSDMA_RLC5_IB_BASE_LO_BASE_IDX 0
+#define regSDMA_RLC5_IB_BASE_HI 0x02f6
+#define regSDMA_RLC5_IB_BASE_HI_BASE_IDX 0
+#define regSDMA_RLC5_IB_SIZE 0x02f7
+#define regSDMA_RLC5_IB_SIZE_BASE_IDX 0
+#define regSDMA_RLC5_SKIP_CNTL 0x02f8
+#define regSDMA_RLC5_SKIP_CNTL_BASE_IDX 0
+#define regSDMA_RLC5_CONTEXT_STATUS 0x02f9
+#define regSDMA_RLC5_CONTEXT_STATUS_BASE_IDX 0
+#define regSDMA_RLC5_DOORBELL 0x02fa
+#define regSDMA_RLC5_DOORBELL_BASE_IDX 0
+#define regSDMA_RLC5_STATUS 0x0310
+#define regSDMA_RLC5_STATUS_BASE_IDX 0
+#define regSDMA_RLC5_DOORBELL_LOG 0x0311
+#define regSDMA_RLC5_DOORBELL_LOG_BASE_IDX 0
+#define regSDMA_RLC5_WATERMARK 0x0312
+#define regSDMA_RLC5_WATERMARK_BASE_IDX 0
+#define regSDMA_RLC5_DOORBELL_OFFSET 0x0313
+#define regSDMA_RLC5_DOORBELL_OFFSET_BASE_IDX 0
+#define regSDMA_RLC5_CSA_ADDR_LO 0x0314
+#define regSDMA_RLC5_CSA_ADDR_LO_BASE_IDX 0
+#define regSDMA_RLC5_CSA_ADDR_HI 0x0315
+#define regSDMA_RLC5_CSA_ADDR_HI_BASE_IDX 0
+#define regSDMA_RLC5_IB_SUB_REMAIN 0x0317
+#define regSDMA_RLC5_IB_SUB_REMAIN_BASE_IDX 0
+#define regSDMA_RLC5_PREEMPT 0x0318
+#define regSDMA_RLC5_PREEMPT_BASE_IDX 0
+#define regSDMA_RLC5_DUMMY_REG 0x0319
+#define regSDMA_RLC5_DUMMY_REG_BASE_IDX 0
+#define regSDMA_RLC5_RB_WPTR_POLL_ADDR_HI 0x031a
+#define regSDMA_RLC5_RB_WPTR_POLL_ADDR_HI_BASE_IDX 0
+#define regSDMA_RLC5_RB_WPTR_POLL_ADDR_LO 0x031b
+#define regSDMA_RLC5_RB_WPTR_POLL_ADDR_LO_BASE_IDX 0
+#define regSDMA_RLC5_RB_AQL_CNTL 0x031c
+#define regSDMA_RLC5_RB_AQL_CNTL_BASE_IDX 0
+#define regSDMA_RLC5_MINOR_PTR_UPDATE 0x031d
+#define regSDMA_RLC5_MINOR_PTR_UPDATE_BASE_IDX 0
+#define regSDMA_RLC5_MIDCMD_DATA0 0x0328
+#define regSDMA_RLC5_MIDCMD_DATA0_BASE_IDX 0
+#define regSDMA_RLC5_MIDCMD_DATA1 0x0329
+#define regSDMA_RLC5_MIDCMD_DATA1_BASE_IDX 0
+#define regSDMA_RLC5_MIDCMD_DATA2 0x032a
+#define regSDMA_RLC5_MIDCMD_DATA2_BASE_IDX 0
+#define regSDMA_RLC5_MIDCMD_DATA3 0x032b
+#define regSDMA_RLC5_MIDCMD_DATA3_BASE_IDX 0
+#define regSDMA_RLC5_MIDCMD_DATA4 0x032c
+#define regSDMA_RLC5_MIDCMD_DATA4_BASE_IDX 0
+#define regSDMA_RLC5_MIDCMD_DATA5 0x032d
+#define regSDMA_RLC5_MIDCMD_DATA5_BASE_IDX 0
+#define regSDMA_RLC5_MIDCMD_DATA6 0x032e
+#define regSDMA_RLC5_MIDCMD_DATA6_BASE_IDX 0
+#define regSDMA_RLC5_MIDCMD_DATA7 0x032f
+#define regSDMA_RLC5_MIDCMD_DATA7_BASE_IDX 0
+#define regSDMA_RLC5_MIDCMD_DATA8 0x0330
+#define regSDMA_RLC5_MIDCMD_DATA8_BASE_IDX 0
+#define regSDMA_RLC5_MIDCMD_DATA9 0x0331
+#define regSDMA_RLC5_MIDCMD_DATA9_BASE_IDX 0
+#define regSDMA_RLC5_MIDCMD_DATA10 0x0332
+#define regSDMA_RLC5_MIDCMD_DATA10_BASE_IDX 0
+#define regSDMA_RLC5_MIDCMD_CNTL 0x0333
+#define regSDMA_RLC5_MIDCMD_CNTL_BASE_IDX 0
+#define regSDMA_RLC6_RB_CNTL 0x0340
+#define regSDMA_RLC6_RB_CNTL_BASE_IDX 0
+#define regSDMA_RLC6_RB_BASE 0x0341
+#define regSDMA_RLC6_RB_BASE_BASE_IDX 0
+#define regSDMA_RLC6_RB_BASE_HI 0x0342
+#define regSDMA_RLC6_RB_BASE_HI_BASE_IDX 0
+#define regSDMA_RLC6_RB_RPTR 0x0343
+#define regSDMA_RLC6_RB_RPTR_BASE_IDX 0
+#define regSDMA_RLC6_RB_RPTR_HI 0x0344
+#define regSDMA_RLC6_RB_RPTR_HI_BASE_IDX 0
+#define regSDMA_RLC6_RB_WPTR 0x0345
+#define regSDMA_RLC6_RB_WPTR_BASE_IDX 0
+#define regSDMA_RLC6_RB_WPTR_HI 0x0346
+#define regSDMA_RLC6_RB_WPTR_HI_BASE_IDX 0
+#define regSDMA_RLC6_RB_WPTR_POLL_CNTL 0x0347
+#define regSDMA_RLC6_RB_WPTR_POLL_CNTL_BASE_IDX 0
+#define regSDMA_RLC6_RB_RPTR_ADDR_HI 0x0348
+#define regSDMA_RLC6_RB_RPTR_ADDR_HI_BASE_IDX 0
+#define regSDMA_RLC6_RB_RPTR_ADDR_LO 0x0349
+#define regSDMA_RLC6_RB_RPTR_ADDR_LO_BASE_IDX 0
+#define regSDMA_RLC6_IB_CNTL 0x034a
+#define regSDMA_RLC6_IB_CNTL_BASE_IDX 0
+#define regSDMA_RLC6_IB_RPTR 0x034b
+#define regSDMA_RLC6_IB_RPTR_BASE_IDX 0
+#define regSDMA_RLC6_IB_OFFSET 0x034c
+#define regSDMA_RLC6_IB_OFFSET_BASE_IDX 0
+#define regSDMA_RLC6_IB_BASE_LO 0x034d
+#define regSDMA_RLC6_IB_BASE_LO_BASE_IDX 0
+#define regSDMA_RLC6_IB_BASE_HI 0x034e
+#define regSDMA_RLC6_IB_BASE_HI_BASE_IDX 0
+#define regSDMA_RLC6_IB_SIZE 0x034f
+#define regSDMA_RLC6_IB_SIZE_BASE_IDX 0
+#define regSDMA_RLC6_SKIP_CNTL 0x0350
+#define regSDMA_RLC6_SKIP_CNTL_BASE_IDX 0
+#define regSDMA_RLC6_CONTEXT_STATUS 0x0351
+#define regSDMA_RLC6_CONTEXT_STATUS_BASE_IDX 0
+#define regSDMA_RLC6_DOORBELL 0x0352
+#define regSDMA_RLC6_DOORBELL_BASE_IDX 0
+#define regSDMA_RLC6_STATUS 0x0368
+#define regSDMA_RLC6_STATUS_BASE_IDX 0
+#define regSDMA_RLC6_DOORBELL_LOG 0x0369
+#define regSDMA_RLC6_DOORBELL_LOG_BASE_IDX 0
+#define regSDMA_RLC6_WATERMARK 0x036a
+#define regSDMA_RLC6_WATERMARK_BASE_IDX 0
+#define regSDMA_RLC6_DOORBELL_OFFSET 0x036b
+#define regSDMA_RLC6_DOORBELL_OFFSET_BASE_IDX 0
+#define regSDMA_RLC6_CSA_ADDR_LO 0x036c
+#define regSDMA_RLC6_CSA_ADDR_LO_BASE_IDX 0
+#define regSDMA_RLC6_CSA_ADDR_HI 0x036d
+#define regSDMA_RLC6_CSA_ADDR_HI_BASE_IDX 0
+#define regSDMA_RLC6_IB_SUB_REMAIN 0x036f
+#define regSDMA_RLC6_IB_SUB_REMAIN_BASE_IDX 0
+#define regSDMA_RLC6_PREEMPT 0x0370
+#define regSDMA_RLC6_PREEMPT_BASE_IDX 0
+#define regSDMA_RLC6_DUMMY_REG 0x0371
+#define regSDMA_RLC6_DUMMY_REG_BASE_IDX 0
+#define regSDMA_RLC6_RB_WPTR_POLL_ADDR_HI 0x0372
+#define regSDMA_RLC6_RB_WPTR_POLL_ADDR_HI_BASE_IDX 0
+#define regSDMA_RLC6_RB_WPTR_POLL_ADDR_LO 0x0373
+#define regSDMA_RLC6_RB_WPTR_POLL_ADDR_LO_BASE_IDX 0
+#define regSDMA_RLC6_RB_AQL_CNTL 0x0374
+#define regSDMA_RLC6_RB_AQL_CNTL_BASE_IDX 0
+#define regSDMA_RLC6_MINOR_PTR_UPDATE 0x0375
+#define regSDMA_RLC6_MINOR_PTR_UPDATE_BASE_IDX 0
+#define regSDMA_RLC6_MIDCMD_DATA0 0x0380
+#define regSDMA_RLC6_MIDCMD_DATA0_BASE_IDX 0
+#define regSDMA_RLC6_MIDCMD_DATA1 0x0381
+#define regSDMA_RLC6_MIDCMD_DATA1_BASE_IDX 0
+#define regSDMA_RLC6_MIDCMD_DATA2 0x0382
+#define regSDMA_RLC6_MIDCMD_DATA2_BASE_IDX 0
+#define regSDMA_RLC6_MIDCMD_DATA3 0x0383
+#define regSDMA_RLC6_MIDCMD_DATA3_BASE_IDX 0
+#define regSDMA_RLC6_MIDCMD_DATA4 0x0384
+#define regSDMA_RLC6_MIDCMD_DATA4_BASE_IDX 0
+#define regSDMA_RLC6_MIDCMD_DATA5 0x0385
+#define regSDMA_RLC6_MIDCMD_DATA5_BASE_IDX 0
+#define regSDMA_RLC6_MIDCMD_DATA6 0x0386
+#define regSDMA_RLC6_MIDCMD_DATA6_BASE_IDX 0
+#define regSDMA_RLC6_MIDCMD_DATA7 0x0387
+#define regSDMA_RLC6_MIDCMD_DATA7_BASE_IDX 0
+#define regSDMA_RLC6_MIDCMD_DATA8 0x0388
+#define regSDMA_RLC6_MIDCMD_DATA8_BASE_IDX 0
+#define regSDMA_RLC6_MIDCMD_DATA9 0x0389
+#define regSDMA_RLC6_MIDCMD_DATA9_BASE_IDX 0
+#define regSDMA_RLC6_MIDCMD_DATA10 0x038a
+#define regSDMA_RLC6_MIDCMD_DATA10_BASE_IDX 0
+#define regSDMA_RLC6_MIDCMD_CNTL 0x038b
+#define regSDMA_RLC6_MIDCMD_CNTL_BASE_IDX 0
+#define regSDMA_RLC7_RB_CNTL 0x0398
+#define regSDMA_RLC7_RB_CNTL_BASE_IDX 0
+#define regSDMA_RLC7_RB_BASE 0x0399
+#define regSDMA_RLC7_RB_BASE_BASE_IDX 0
+#define regSDMA_RLC7_RB_BASE_HI 0x039a
+#define regSDMA_RLC7_RB_BASE_HI_BASE_IDX 0
+#define regSDMA_RLC7_RB_RPTR 0x039b
+#define regSDMA_RLC7_RB_RPTR_BASE_IDX 0
+#define regSDMA_RLC7_RB_RPTR_HI 0x039c
+#define regSDMA_RLC7_RB_RPTR_HI_BASE_IDX 0
+#define regSDMA_RLC7_RB_WPTR 0x039d
+#define regSDMA_RLC7_RB_WPTR_BASE_IDX 0
+#define regSDMA_RLC7_RB_WPTR_HI 0x039e
+#define regSDMA_RLC7_RB_WPTR_HI_BASE_IDX 0
+#define regSDMA_RLC7_RB_WPTR_POLL_CNTL 0x039f
+#define regSDMA_RLC7_RB_WPTR_POLL_CNTL_BASE_IDX 0
+#define regSDMA_RLC7_RB_RPTR_ADDR_HI 0x03a0
+#define regSDMA_RLC7_RB_RPTR_ADDR_HI_BASE_IDX 0
+#define regSDMA_RLC7_RB_RPTR_ADDR_LO 0x03a1
+#define regSDMA_RLC7_RB_RPTR_ADDR_LO_BASE_IDX 0
+#define regSDMA_RLC7_IB_CNTL 0x03a2
+#define regSDMA_RLC7_IB_CNTL_BASE_IDX 0
+#define regSDMA_RLC7_IB_RPTR 0x03a3
+#define regSDMA_RLC7_IB_RPTR_BASE_IDX 0
+#define regSDMA_RLC7_IB_OFFSET 0x03a4
+#define regSDMA_RLC7_IB_OFFSET_BASE_IDX 0
+#define regSDMA_RLC7_IB_BASE_LO 0x03a5
+#define regSDMA_RLC7_IB_BASE_LO_BASE_IDX 0
+#define regSDMA_RLC7_IB_BASE_HI 0x03a6
+#define regSDMA_RLC7_IB_BASE_HI_BASE_IDX 0
+#define regSDMA_RLC7_IB_SIZE 0x03a7
+#define regSDMA_RLC7_IB_SIZE_BASE_IDX 0
+#define regSDMA_RLC7_SKIP_CNTL 0x03a8
+#define regSDMA_RLC7_SKIP_CNTL_BASE_IDX 0
+#define regSDMA_RLC7_CONTEXT_STATUS 0x03a9
+#define regSDMA_RLC7_CONTEXT_STATUS_BASE_IDX 0
+#define regSDMA_RLC7_DOORBELL 0x03aa
+#define regSDMA_RLC7_DOORBELL_BASE_IDX 0
+#define regSDMA_RLC7_STATUS 0x03c0
+#define regSDMA_RLC7_STATUS_BASE_IDX 0
+#define regSDMA_RLC7_DOORBELL_LOG 0x03c1
+#define regSDMA_RLC7_DOORBELL_LOG_BASE_IDX 0
+#define regSDMA_RLC7_WATERMARK 0x03c2
+#define regSDMA_RLC7_WATERMARK_BASE_IDX 0
+#define regSDMA_RLC7_DOORBELL_OFFSET 0x03c3
+#define regSDMA_RLC7_DOORBELL_OFFSET_BASE_IDX 0
+#define regSDMA_RLC7_CSA_ADDR_LO 0x03c4
+#define regSDMA_RLC7_CSA_ADDR_LO_BASE_IDX 0
+#define regSDMA_RLC7_CSA_ADDR_HI 0x03c5
+#define regSDMA_RLC7_CSA_ADDR_HI_BASE_IDX 0
+#define regSDMA_RLC7_IB_SUB_REMAIN 0x03c7
+#define regSDMA_RLC7_IB_SUB_REMAIN_BASE_IDX 0
+#define regSDMA_RLC7_PREEMPT 0x03c8
+#define regSDMA_RLC7_PREEMPT_BASE_IDX 0
+#define regSDMA_RLC7_DUMMY_REG 0x03c9
+#define regSDMA_RLC7_DUMMY_REG_BASE_IDX 0
+#define regSDMA_RLC7_RB_WPTR_POLL_ADDR_HI 0x03ca
+#define regSDMA_RLC7_RB_WPTR_POLL_ADDR_HI_BASE_IDX 0
+#define regSDMA_RLC7_RB_WPTR_POLL_ADDR_LO 0x03cb
+#define regSDMA_RLC7_RB_WPTR_POLL_ADDR_LO_BASE_IDX 0
+#define regSDMA_RLC7_RB_AQL_CNTL 0x03cc
+#define regSDMA_RLC7_RB_AQL_CNTL_BASE_IDX 0
+#define regSDMA_RLC7_MINOR_PTR_UPDATE 0x03cd
+#define regSDMA_RLC7_MINOR_PTR_UPDATE_BASE_IDX 0
+#define regSDMA_RLC7_MIDCMD_DATA0 0x03d8
+#define regSDMA_RLC7_MIDCMD_DATA0_BASE_IDX 0
+#define regSDMA_RLC7_MIDCMD_DATA1 0x03d9
+#define regSDMA_RLC7_MIDCMD_DATA1_BASE_IDX 0
+#define regSDMA_RLC7_MIDCMD_DATA2 0x03da
+#define regSDMA_RLC7_MIDCMD_DATA2_BASE_IDX 0
+#define regSDMA_RLC7_MIDCMD_DATA3 0x03db
+#define regSDMA_RLC7_MIDCMD_DATA3_BASE_IDX 0
+#define regSDMA_RLC7_MIDCMD_DATA4 0x03dc
+#define regSDMA_RLC7_MIDCMD_DATA4_BASE_IDX 0
+#define regSDMA_RLC7_MIDCMD_DATA5 0x03dd
+#define regSDMA_RLC7_MIDCMD_DATA5_BASE_IDX 0
+#define regSDMA_RLC7_MIDCMD_DATA6 0x03de
+#define regSDMA_RLC7_MIDCMD_DATA6_BASE_IDX 0
+#define regSDMA_RLC7_MIDCMD_DATA7 0x03df
+#define regSDMA_RLC7_MIDCMD_DATA7_BASE_IDX 0
+#define regSDMA_RLC7_MIDCMD_DATA8 0x03e0
+#define regSDMA_RLC7_MIDCMD_DATA8_BASE_IDX 0
+#define regSDMA_RLC7_MIDCMD_DATA9 0x03e1
+#define regSDMA_RLC7_MIDCMD_DATA9_BASE_IDX 0
+#define regSDMA_RLC7_MIDCMD_DATA10 0x03e2
+#define regSDMA_RLC7_MIDCMD_DATA10_BASE_IDX 0
+#define regSDMA_RLC7_MIDCMD_CNTL 0x03e3
+#define regSDMA_RLC7_MIDCMD_CNTL_BASE_IDX 0
+
+#endif
diff --git a/drivers/gpu/drm/amd/include/asic_reg/sdma/sdma_4_4_2_sh_mask.h b/drivers/gpu/drm/amd/include/asic_reg/sdma/sdma_4_4_2_sh_mask.h
new file mode 100644
index 000000000000..e46cb3339355
--- /dev/null
+++ b/drivers/gpu/drm/amd/include/asic_reg/sdma/sdma_4_4_2_sh_mask.h
@@ -0,0 +1,3276 @@
+/*
+ * Copyright 2021 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ */
+#ifndef _sdma_4_4_2_SH_MASK_HEADER
+#define _sdma_4_4_2_SH_MASK_HEADER
+
+
+// addressBlock: aid_sdma_insts_sdma0_sdmadec
+//SDMA_UCODE_ADDR
+#define SDMA_UCODE_ADDR__VALUE__SHIFT 0x0
+#define SDMA_UCODE_ADDR__VALUE_MASK 0x00003FFFL
+//SDMA_UCODE_DATA
+#define SDMA_UCODE_DATA__VALUE__SHIFT 0x0
+#define SDMA_UCODE_DATA__VALUE_MASK 0xFFFFFFFFL
+//SDMA_F32_CNTL
+#define SDMA_F32_CNTL__HALT__SHIFT 0x0
+#define SDMA_F32_CNTL__STEP__SHIFT 0x1
+#define SDMA_F32_CNTL__DBG_SELECT_BITS__SHIFT 0x2
+#define SDMA_F32_CNTL__RESET__SHIFT 0x8
+#define SDMA_F32_CNTL__CHECKSUM_CLR__SHIFT 0x9
+#define SDMA_F32_CNTL__HALT_MASK 0x00000001L
+#define SDMA_F32_CNTL__STEP_MASK 0x00000002L
+#define SDMA_F32_CNTL__DBG_SELECT_BITS_MASK 0x000000FCL
+#define SDMA_F32_CNTL__RESET_MASK 0x00000100L
+#define SDMA_F32_CNTL__CHECKSUM_CLR_MASK 0x00000200L
+//SDMA_MMHUB_CNTL
+#define SDMA_MMHUB_CNTL__UNIT_ID__SHIFT 0x0
+#define SDMA_MMHUB_CNTL__UNIT_ID_MASK 0x0000003FL
+//SDMA_MMHUB_TRUSTLVL
+#define SDMA_MMHUB_TRUSTLVL__SECFLAG0__SHIFT 0x0
+#define SDMA_MMHUB_TRUSTLVL__SECFLAG1__SHIFT 0x4
+#define SDMA_MMHUB_TRUSTLVL__SECFLAG2__SHIFT 0x8
+#define SDMA_MMHUB_TRUSTLVL__SECFLAG3__SHIFT 0xc
+#define SDMA_MMHUB_TRUSTLVL__SECFLAG4__SHIFT 0x10
+#define SDMA_MMHUB_TRUSTLVL__SECFLAG5__SHIFT 0x14
+#define SDMA_MMHUB_TRUSTLVL__SECFLAG6__SHIFT 0x18
+#define SDMA_MMHUB_TRUSTLVL__SECFLAG7__SHIFT 0x1c
+#define SDMA_MMHUB_TRUSTLVL__SECFLAG0_MASK 0x0000000FL
+#define SDMA_MMHUB_TRUSTLVL__SECFLAG1_MASK 0x000000F0L
+#define SDMA_MMHUB_TRUSTLVL__SECFLAG2_MASK 0x00000F00L
+#define SDMA_MMHUB_TRUSTLVL__SECFLAG3_MASK 0x0000F000L
+#define SDMA_MMHUB_TRUSTLVL__SECFLAG4_MASK 0x000F0000L
+#define SDMA_MMHUB_TRUSTLVL__SECFLAG5_MASK 0x00F00000L
+#define SDMA_MMHUB_TRUSTLVL__SECFLAG6_MASK 0x0F000000L
+#define SDMA_MMHUB_TRUSTLVL__SECFLAG7_MASK 0xF0000000L
+//SDMA_VM_CNTL
+#define SDMA_VM_CNTL__CMD__SHIFT 0x0
+#define SDMA_VM_CNTL__CMD_MASK 0x0000000FL
+//SDMA_VM_CTX_LO
+#define SDMA_VM_CTX_LO__ADDR__SHIFT 0x2
+#define SDMA_VM_CTX_LO__ADDR_MASK 0xFFFFFFFCL
+//SDMA_VM_CTX_HI
+#define SDMA_VM_CTX_HI__ADDR__SHIFT 0x0
+#define SDMA_VM_CTX_HI__ADDR_MASK 0xFFFFFFFFL
+//SDMA_ACTIVE_FCN_ID
+#define SDMA_ACTIVE_FCN_ID__VFID__SHIFT 0x0
+#define SDMA_ACTIVE_FCN_ID__RESERVED__SHIFT 0x4
+#define SDMA_ACTIVE_FCN_ID__VF__SHIFT 0x1f
+#define SDMA_ACTIVE_FCN_ID__VFID_MASK 0x0000000FL
+#define SDMA_ACTIVE_FCN_ID__RESERVED_MASK 0x7FFFFFF0L
+#define SDMA_ACTIVE_FCN_ID__VF_MASK 0x80000000L
+//SDMA_VM_CTX_CNTL
+#define SDMA_VM_CTX_CNTL__PRIV__SHIFT 0x0
+#define SDMA_VM_CTX_CNTL__VMID__SHIFT 0x4
+#define SDMA_VM_CTX_CNTL__PRIV_MASK 0x00000001L
+#define SDMA_VM_CTX_CNTL__VMID_MASK 0x000000F0L
+//SDMA_VIRT_RESET_REQ
+#define SDMA_VIRT_RESET_REQ__VF__SHIFT 0x0
+#define SDMA_VIRT_RESET_REQ__PF__SHIFT 0x1f
+#define SDMA_VIRT_RESET_REQ__VF_MASK 0x0000FFFFL
+#define SDMA_VIRT_RESET_REQ__PF_MASK 0x80000000L
+//SDMA_VF_ENABLE
+#define SDMA_VF_ENABLE__VF_ENABLE__SHIFT 0x0
+#define SDMA_VF_ENABLE__VF_ENABLE_MASK 0x00000001L
+//SDMA_CONTEXT_REG_TYPE0
+#define SDMA_CONTEXT_REG_TYPE0__SDMA_GFX_RB_CNTL__SHIFT 0x0
+#define SDMA_CONTEXT_REG_TYPE0__SDMA_GFX_RB_BASE__SHIFT 0x1
+#define SDMA_CONTEXT_REG_TYPE0__SDMA_GFX_RB_BASE_HI__SHIFT 0x2
+#define SDMA_CONTEXT_REG_TYPE0__SDMA_GFX_RB_RPTR__SHIFT 0x3
+#define SDMA_CONTEXT_REG_TYPE0__SDMA_GFX_RB_RPTR_HI__SHIFT 0x4
+#define SDMA_CONTEXT_REG_TYPE0__SDMA_GFX_RB_WPTR__SHIFT 0x5
+#define SDMA_CONTEXT_REG_TYPE0__SDMA_GFX_RB_WPTR_HI__SHIFT 0x6
+#define SDMA_CONTEXT_REG_TYPE0__SDMA_GFX_RB_WPTR_POLL_CNTL__SHIFT 0x7
+#define SDMA_CONTEXT_REG_TYPE0__SDMA_GFX_RB_RPTR_ADDR_HI__SHIFT 0x8
+#define SDMA_CONTEXT_REG_TYPE0__SDMA_GFX_RB_RPTR_ADDR_LO__SHIFT 0x9
+#define SDMA_CONTEXT_REG_TYPE0__SDMA_GFX_IB_CNTL__SHIFT 0xa
+#define SDMA_CONTEXT_REG_TYPE0__SDMA_GFX_IB_RPTR__SHIFT 0xb
+#define SDMA_CONTEXT_REG_TYPE0__SDMA_GFX_IB_OFFSET__SHIFT 0xc
+#define SDMA_CONTEXT_REG_TYPE0__SDMA_GFX_IB_BASE_LO__SHIFT 0xd
+#define SDMA_CONTEXT_REG_TYPE0__SDMA_GFX_IB_BASE_HI__SHIFT 0xe
+#define SDMA_CONTEXT_REG_TYPE0__SDMA_GFX_IB_SIZE__SHIFT 0xf
+#define SDMA_CONTEXT_REG_TYPE0__SDMA_GFX_SKIP_CNTL__SHIFT 0x10
+#define SDMA_CONTEXT_REG_TYPE0__SDMA_GFX_CONTEXT_STATUS__SHIFT 0x11
+#define SDMA_CONTEXT_REG_TYPE0__SDMA_GFX_DOORBELL__SHIFT 0x12
+#define SDMA_CONTEXT_REG_TYPE0__SDMA_GFX_CONTEXT_CNTL__SHIFT 0x13
+#define SDMA_CONTEXT_REG_TYPE0__SDMA_GFX_RB_CNTL_MASK 0x00000001L
+#define SDMA_CONTEXT_REG_TYPE0__SDMA_GFX_RB_BASE_MASK 0x00000002L
+#define SDMA_CONTEXT_REG_TYPE0__SDMA_GFX_RB_BASE_HI_MASK 0x00000004L
+#define SDMA_CONTEXT_REG_TYPE0__SDMA_GFX_RB_RPTR_MASK 0x00000008L
+#define SDMA_CONTEXT_REG_TYPE0__SDMA_GFX_RB_RPTR_HI_MASK 0x00000010L
+#define SDMA_CONTEXT_REG_TYPE0__SDMA_GFX_RB_WPTR_MASK 0x00000020L
+#define SDMA_CONTEXT_REG_TYPE0__SDMA_GFX_RB_WPTR_HI_MASK 0x00000040L
+#define SDMA_CONTEXT_REG_TYPE0__SDMA_GFX_RB_WPTR_POLL_CNTL_MASK 0x00000080L
+#define SDMA_CONTEXT_REG_TYPE0__SDMA_GFX_RB_RPTR_ADDR_HI_MASK 0x00000100L
+#define SDMA_CONTEXT_REG_TYPE0__SDMA_GFX_RB_RPTR_ADDR_LO_MASK 0x00000200L
+#define SDMA_CONTEXT_REG_TYPE0__SDMA_GFX_IB_CNTL_MASK 0x00000400L
+#define SDMA_CONTEXT_REG_TYPE0__SDMA_GFX_IB_RPTR_MASK 0x00000800L
+#define SDMA_CONTEXT_REG_TYPE0__SDMA_GFX_IB_OFFSET_MASK 0x00001000L
+#define SDMA_CONTEXT_REG_TYPE0__SDMA_GFX_IB_BASE_LO_MASK 0x00002000L
+#define SDMA_CONTEXT_REG_TYPE0__SDMA_GFX_IB_BASE_HI_MASK 0x00004000L
+#define SDMA_CONTEXT_REG_TYPE0__SDMA_GFX_IB_SIZE_MASK 0x00008000L
+#define SDMA_CONTEXT_REG_TYPE0__SDMA_GFX_SKIP_CNTL_MASK 0x00010000L
+#define SDMA_CONTEXT_REG_TYPE0__SDMA_GFX_CONTEXT_STATUS_MASK 0x00020000L
+#define SDMA_CONTEXT_REG_TYPE0__SDMA_GFX_DOORBELL_MASK 0x00040000L
+#define SDMA_CONTEXT_REG_TYPE0__SDMA_GFX_CONTEXT_CNTL_MASK 0x00080000L
+//SDMA_CONTEXT_REG_TYPE1
+#define SDMA_CONTEXT_REG_TYPE1__SDMA_GFX_STATUS__SHIFT 0x8
+#define SDMA_CONTEXT_REG_TYPE1__SDMA_GFX_DOORBELL_LOG__SHIFT 0x9
+#define SDMA_CONTEXT_REG_TYPE1__SDMA_GFX_WATERMARK__SHIFT 0xa
+#define SDMA_CONTEXT_REG_TYPE1__SDMA_GFX_DOORBELL_OFFSET__SHIFT 0xb
+#define SDMA_CONTEXT_REG_TYPE1__SDMA_GFX_CSA_ADDR_LO__SHIFT 0xc
+#define SDMA_CONTEXT_REG_TYPE1__SDMA_GFX_CSA_ADDR_HI__SHIFT 0xd
+#define SDMA_CONTEXT_REG_TYPE1__SDMA_GFX_IB_SUB_REMAIN__SHIFT 0xf
+#define SDMA_CONTEXT_REG_TYPE1__SDMA_GFX_PREEMPT__SHIFT 0x10
+#define SDMA_CONTEXT_REG_TYPE1__SDMA_GFX_DUMMY_REG__SHIFT 0x11
+#define SDMA_CONTEXT_REG_TYPE1__SDMA_GFX_RB_WPTR_POLL_ADDR_HI__SHIFT 0x12
+#define SDMA_CONTEXT_REG_TYPE1__SDMA_GFX_RB_WPTR_POLL_ADDR_LO__SHIFT 0x13
+#define SDMA_CONTEXT_REG_TYPE1__SDMA_GFX_RB_AQL_CNTL__SHIFT 0x14
+#define SDMA_CONTEXT_REG_TYPE1__SDMA_GFX_MINOR_PTR_UPDATE__SHIFT 0x15
+#define SDMA_CONTEXT_REG_TYPE1__RESERVED__SHIFT 0x16
+#define SDMA_CONTEXT_REG_TYPE1__SDMA_GFX_STATUS_MASK 0x00000100L
+#define SDMA_CONTEXT_REG_TYPE1__SDMA_GFX_DOORBELL_LOG_MASK 0x00000200L
+#define SDMA_CONTEXT_REG_TYPE1__SDMA_GFX_WATERMARK_MASK 0x00000400L
+#define SDMA_CONTEXT_REG_TYPE1__SDMA_GFX_DOORBELL_OFFSET_MASK 0x00000800L
+#define SDMA_CONTEXT_REG_TYPE1__SDMA_GFX_CSA_ADDR_LO_MASK 0x00001000L
+#define SDMA_CONTEXT_REG_TYPE1__SDMA_GFX_CSA_ADDR_HI_MASK 0x00002000L
+#define SDMA_CONTEXT_REG_TYPE1__SDMA_GFX_IB_SUB_REMAIN_MASK 0x00008000L
+#define SDMA_CONTEXT_REG_TYPE1__SDMA_GFX_PREEMPT_MASK 0x00010000L
+#define SDMA_CONTEXT_REG_TYPE1__SDMA_GFX_DUMMY_REG_MASK 0x00020000L
+#define SDMA_CONTEXT_REG_TYPE1__SDMA_GFX_RB_WPTR_POLL_ADDR_HI_MASK 0x00040000L
+#define SDMA_CONTEXT_REG_TYPE1__SDMA_GFX_RB_WPTR_POLL_ADDR_LO_MASK 0x00080000L
+#define SDMA_CONTEXT_REG_TYPE1__SDMA_GFX_RB_AQL_CNTL_MASK 0x00100000L
+#define SDMA_CONTEXT_REG_TYPE1__SDMA_GFX_MINOR_PTR_UPDATE_MASK 0x00200000L
+#define SDMA_CONTEXT_REG_TYPE1__RESERVED_MASK 0xFFC00000L
+//SDMA_CONTEXT_REG_TYPE2
+#define SDMA_CONTEXT_REG_TYPE2__SDMA_GFX_MIDCMD_DATA0__SHIFT 0x0
+#define SDMA_CONTEXT_REG_TYPE2__SDMA_GFX_MIDCMD_DATA1__SHIFT 0x1
+#define SDMA_CONTEXT_REG_TYPE2__SDMA_GFX_MIDCMD_DATA2__SHIFT 0x2
+#define SDMA_CONTEXT_REG_TYPE2__SDMA_GFX_MIDCMD_DATA3__SHIFT 0x3
+#define SDMA_CONTEXT_REG_TYPE2__SDMA_GFX_MIDCMD_DATA4__SHIFT 0x4
+#define SDMA_CONTEXT_REG_TYPE2__SDMA_GFX_MIDCMD_DATA5__SHIFT 0x5
+#define SDMA_CONTEXT_REG_TYPE2__SDMA_GFX_MIDCMD_DATA6__SHIFT 0x6
+#define SDMA_CONTEXT_REG_TYPE2__SDMA_GFX_MIDCMD_DATA7__SHIFT 0x7
+#define SDMA_CONTEXT_REG_TYPE2__SDMA_GFX_MIDCMD_DATA8__SHIFT 0x8
+#define SDMA_CONTEXT_REG_TYPE2__SDMA_GFX_MIDCMD_DATA9__SHIFT 0x9
+#define SDMA_CONTEXT_REG_TYPE2__SDMA_GFX_MIDCMD_DATA10__SHIFT 0xa
+#define SDMA_CONTEXT_REG_TYPE2__SDMA_GFX_MIDCMD_CNTL__SHIFT 0xb
+#define SDMA_CONTEXT_REG_TYPE2__RESERVED__SHIFT 0xe
+#define SDMA_CONTEXT_REG_TYPE2__SDMA_GFX_MIDCMD_DATA0_MASK 0x00000001L
+#define SDMA_CONTEXT_REG_TYPE2__SDMA_GFX_MIDCMD_DATA1_MASK 0x00000002L
+#define SDMA_CONTEXT_REG_TYPE2__SDMA_GFX_MIDCMD_DATA2_MASK 0x00000004L
+#define SDMA_CONTEXT_REG_TYPE2__SDMA_GFX_MIDCMD_DATA3_MASK 0x00000008L
+#define SDMA_CONTEXT_REG_TYPE2__SDMA_GFX_MIDCMD_DATA4_MASK 0x00000010L
+#define SDMA_CONTEXT_REG_TYPE2__SDMA_GFX_MIDCMD_DATA5_MASK 0x00000020L
+#define SDMA_CONTEXT_REG_TYPE2__SDMA_GFX_MIDCMD_DATA6_MASK 0x00000040L
+#define SDMA_CONTEXT_REG_TYPE2__SDMA_GFX_MIDCMD_DATA7_MASK 0x00000080L
+#define SDMA_CONTEXT_REG_TYPE2__SDMA_GFX_MIDCMD_DATA8_MASK 0x00000100L
+#define SDMA_CONTEXT_REG_TYPE2__SDMA_GFX_MIDCMD_DATA9_MASK 0x00000200L
+#define SDMA_CONTEXT_REG_TYPE2__SDMA_GFX_MIDCMD_DATA10_MASK 0x00000400L
+#define SDMA_CONTEXT_REG_TYPE2__SDMA_GFX_MIDCMD_CNTL_MASK 0x00000800L
+#define SDMA_CONTEXT_REG_TYPE2__RESERVED_MASK 0xFFFFC000L
+//SDMA_CONTEXT_REG_TYPE3
+#define SDMA_CONTEXT_REG_TYPE3__RESERVED__SHIFT 0x0
+#define SDMA_CONTEXT_REG_TYPE3__RESERVED_MASK 0xFFFFFFFFL
+//SDMA_PUB_REG_TYPE0
+#define SDMA_PUB_REG_TYPE0__SDMA_UCODE_ADDR__SHIFT 0x0
+#define SDMA_PUB_REG_TYPE0__SDMA_UCODE_DATA__SHIFT 0x1
+#define SDMA_PUB_REG_TYPE0__SDMA_F32_CNTL__SHIFT 0x2
+#define SDMA_PUB_REG_TYPE0__SDMA_MMHUB_CNTL__SHIFT 0x5
+#define SDMA_PUB_REG_TYPE0__SDMA_MMHUB_TRUSTLVL__SHIFT 0x6
+#define SDMA_PUB_REG_TYPE0__RESERVED_14_10__SHIFT 0xa
+#define SDMA_PUB_REG_TYPE0__SDMA_VM_CNTL__SHIFT 0x10
+#define SDMA_PUB_REG_TYPE0__SDMA_VM_CTX_LO__SHIFT 0x11
+#define SDMA_PUB_REG_TYPE0__SDMA_VM_CTX_HI__SHIFT 0x12
+#define SDMA_PUB_REG_TYPE0__SDMA_ACTIVE_FCN_ID__SHIFT 0x13
+#define SDMA_PUB_REG_TYPE0__SDMA_VM_CTX_CNTL__SHIFT 0x14
+#define SDMA_PUB_REG_TYPE0__SDMA_VIRT_RESET_REQ__SHIFT 0x15
+#define SDMA_PUB_REG_TYPE0__SDMA_VF_ENABLE__SHIFT 0x16
+#define SDMA_PUB_REG_TYPE0__SDMA_CONTEXT_REG_TYPE0__SHIFT 0x17
+#define SDMA_PUB_REG_TYPE0__SDMA_CONTEXT_REG_TYPE1__SHIFT 0x18
+#define SDMA_PUB_REG_TYPE0__SDMA_CONTEXT_REG_TYPE2__SHIFT 0x19
+#define SDMA_PUB_REG_TYPE0__SDMA_CONTEXT_REG_TYPE3__SHIFT 0x1a
+#define SDMA_PUB_REG_TYPE0__SDMA_PUB_REG_TYPE0__SHIFT 0x1b
+#define SDMA_PUB_REG_TYPE0__SDMA_PUB_REG_TYPE1__SHIFT 0x1c
+#define SDMA_PUB_REG_TYPE0__SDMA_PUB_REG_TYPE2__SHIFT 0x1d
+#define SDMA_PUB_REG_TYPE0__SDMA_PUB_REG_TYPE3__SHIFT 0x1e
+#define SDMA_PUB_REG_TYPE0__SDMA_CONTEXT_GROUP_BOUNDARY__SHIFT 0x1f
+#define SDMA_PUB_REG_TYPE0__SDMA_UCODE_ADDR_MASK 0x00000001L
+#define SDMA_PUB_REG_TYPE0__SDMA_UCODE_DATA_MASK 0x00000002L
+#define SDMA_PUB_REG_TYPE0__SDMA_F32_CNTL_MASK 0x00000004L
+#define SDMA_PUB_REG_TYPE0__SDMA_MMHUB_CNTL_MASK 0x00000020L
+#define SDMA_PUB_REG_TYPE0__SDMA_MMHUB_TRUSTLVL_MASK 0x00000040L
+#define SDMA_PUB_REG_TYPE0__RESERVED_14_10_MASK 0x00007C00L
+#define SDMA_PUB_REG_TYPE0__SDMA_VM_CNTL_MASK 0x00010000L
+#define SDMA_PUB_REG_TYPE0__SDMA_VM_CTX_LO_MASK 0x00020000L
+#define SDMA_PUB_REG_TYPE0__SDMA_VM_CTX_HI_MASK 0x00040000L
+#define SDMA_PUB_REG_TYPE0__SDMA_ACTIVE_FCN_ID_MASK 0x00080000L
+#define SDMA_PUB_REG_TYPE0__SDMA_VM_CTX_CNTL_MASK 0x00100000L
+#define SDMA_PUB_REG_TYPE0__SDMA_VIRT_RESET_REQ_MASK 0x00200000L
+#define SDMA_PUB_REG_TYPE0__SDMA_VF_ENABLE_MASK 0x00400000L
+#define SDMA_PUB_REG_TYPE0__SDMA_CONTEXT_REG_TYPE0_MASK 0x00800000L
+#define SDMA_PUB_REG_TYPE0__SDMA_CONTEXT_REG_TYPE1_MASK 0x01000000L
+#define SDMA_PUB_REG_TYPE0__SDMA_CONTEXT_REG_TYPE2_MASK 0x02000000L
+#define SDMA_PUB_REG_TYPE0__SDMA_CONTEXT_REG_TYPE3_MASK 0x04000000L
+#define SDMA_PUB_REG_TYPE0__SDMA_PUB_REG_TYPE0_MASK 0x08000000L
+#define SDMA_PUB_REG_TYPE0__SDMA_PUB_REG_TYPE1_MASK 0x10000000L
+#define SDMA_PUB_REG_TYPE0__SDMA_PUB_REG_TYPE2_MASK 0x20000000L
+#define SDMA_PUB_REG_TYPE0__SDMA_PUB_REG_TYPE3_MASK 0x40000000L
+#define SDMA_PUB_REG_TYPE0__SDMA_CONTEXT_GROUP_BOUNDARY_MASK 0x80000000L
+//SDMA_PUB_REG_TYPE1
+#define SDMA_PUB_REG_TYPE1__SDMA_RB_RPTR_FETCH_HI__SHIFT 0x0
+#define SDMA_PUB_REG_TYPE1__SDMA_SEM_WAIT_FAIL_TIMER_CNTL__SHIFT 0x1
+#define SDMA_PUB_REG_TYPE1__SDMA_RB_RPTR_FETCH__SHIFT 0x2
+#define SDMA_PUB_REG_TYPE1__SDMA_IB_OFFSET_FETCH__SHIFT 0x3
+#define SDMA_PUB_REG_TYPE1__SDMA_PROGRAM__SHIFT 0x4
+#define SDMA_PUB_REG_TYPE1__SDMA_STATUS_REG__SHIFT 0x5
+#define SDMA_PUB_REG_TYPE1__SDMA_STATUS1_REG__SHIFT 0x6
+#define SDMA_PUB_REG_TYPE1__SDMA_RD_BURST_CNTL__SHIFT 0x7
+#define SDMA_PUB_REG_TYPE1__SDMA_HBM_PAGE_CONFIG__SHIFT 0x8
+#define SDMA_PUB_REG_TYPE1__SDMA_UCODE_CHECKSUM__SHIFT 0x9
+#define SDMA_PUB_REG_TYPE1__RESERVED_10_10__SHIFT 0xa
+#define SDMA_PUB_REG_TYPE1__SDMA_FREEZE__SHIFT 0xb
+#define SDMA_PUB_REG_TYPE1__SDMA_PHASE0_QUANTUM__SHIFT 0xc
+#define SDMA_PUB_REG_TYPE1__SDMA_PHASE1_QUANTUM__SHIFT 0xd
+#define SDMA_PUB_REG_TYPE1__SDMA_POWER_GATING__SHIFT 0xe
+#define SDMA_PUB_REG_TYPE1__SDMA_PGFSM_CONFIG__SHIFT 0xf
+#define SDMA_PUB_REG_TYPE1__SDMA_PGFSM_WRITE__SHIFT 0x10
+#define SDMA_PUB_REG_TYPE1__SDMA_PGFSM_READ__SHIFT 0x11
+#define SDMA_PUB_REG_TYPE1__CC_SDMA_EDC_CONFIG__SHIFT 0x12
+#define SDMA_PUB_REG_TYPE1__SDMA_BA_THRESHOLD__SHIFT 0x13
+#define SDMA_PUB_REG_TYPE1__SDMA_ID__SHIFT 0x14
+#define SDMA_PUB_REG_TYPE1__SDMA_VERSION__SHIFT 0x15
+#define SDMA_PUB_REG_TYPE1__SDMA_EDC_COUNTER__SHIFT 0x16
+#define SDMA_PUB_REG_TYPE1__SDMA_EDC_COUNTER2__SHIFT 0x17
+#define SDMA_PUB_REG_TYPE1__SDMA_STATUS2_REG__SHIFT 0x18
+#define SDMA_PUB_REG_TYPE1__SDMA_ATOMIC_CNTL__SHIFT 0x19
+#define SDMA_PUB_REG_TYPE1__SDMA_ATOMIC_PREOP_LO__SHIFT 0x1a
+#define SDMA_PUB_REG_TYPE1__SDMA_ATOMIC_PREOP_HI__SHIFT 0x1b
+#define SDMA_PUB_REG_TYPE1__SDMA_UTCL1_CNTL__SHIFT 0x1c
+#define SDMA_PUB_REG_TYPE1__SDMA_UTCL1_WATERMK__SHIFT 0x1d
+#define SDMA_PUB_REG_TYPE1__SDMA_UTCL1_RD_STATUS__SHIFT 0x1e
+#define SDMA_PUB_REG_TYPE1__SDMA_UTCL1_WR_STATUS__SHIFT 0x1f
+#define SDMA_PUB_REG_TYPE1__SDMA_RB_RPTR_FETCH_HI_MASK 0x00000001L
+#define SDMA_PUB_REG_TYPE1__SDMA_SEM_WAIT_FAIL_TIMER_CNTL_MASK 0x00000002L
+#define SDMA_PUB_REG_TYPE1__SDMA_RB_RPTR_FETCH_MASK 0x00000004L
+#define SDMA_PUB_REG_TYPE1__SDMA_IB_OFFSET_FETCH_MASK 0x00000008L
+#define SDMA_PUB_REG_TYPE1__SDMA_PROGRAM_MASK 0x00000010L
+#define SDMA_PUB_REG_TYPE1__SDMA_STATUS_REG_MASK 0x00000020L
+#define SDMA_PUB_REG_TYPE1__SDMA_STATUS1_REG_MASK 0x00000040L
+#define SDMA_PUB_REG_TYPE1__SDMA_RD_BURST_CNTL_MASK 0x00000080L
+#define SDMA_PUB_REG_TYPE1__SDMA_HBM_PAGE_CONFIG_MASK 0x00000100L
+#define SDMA_PUB_REG_TYPE1__SDMA_UCODE_CHECKSUM_MASK 0x00000200L
+#define SDMA_PUB_REG_TYPE1__RESERVED_10_10_MASK 0x00000400L
+#define SDMA_PUB_REG_TYPE1__SDMA_FREEZE_MASK 0x00000800L
+#define SDMA_PUB_REG_TYPE1__SDMA_PHASE0_QUANTUM_MASK 0x00001000L
+#define SDMA_PUB_REG_TYPE1__SDMA_PHASE1_QUANTUM_MASK 0x00002000L
+#define SDMA_PUB_REG_TYPE1__SDMA_POWER_GATING_MASK 0x00004000L
+#define SDMA_PUB_REG_TYPE1__SDMA_PGFSM_CONFIG_MASK 0x00008000L
+#define SDMA_PUB_REG_TYPE1__SDMA_PGFSM_WRITE_MASK 0x00010000L
+#define SDMA_PUB_REG_TYPE1__SDMA_PGFSM_READ_MASK 0x00020000L
+#define SDMA_PUB_REG_TYPE1__CC_SDMA_EDC_CONFIG_MASK 0x00040000L
+#define SDMA_PUB_REG_TYPE1__SDMA_BA_THRESHOLD_MASK 0x00080000L
+#define SDMA_PUB_REG_TYPE1__SDMA_ID_MASK 0x00100000L
+#define SDMA_PUB_REG_TYPE1__SDMA_VERSION_MASK 0x00200000L
+#define SDMA_PUB_REG_TYPE1__SDMA_EDC_COUNTER_MASK 0x00400000L
+#define SDMA_PUB_REG_TYPE1__SDMA_EDC_COUNTER2_MASK 0x00800000L
+#define SDMA_PUB_REG_TYPE1__SDMA_STATUS2_REG_MASK 0x01000000L
+#define SDMA_PUB_REG_TYPE1__SDMA_ATOMIC_CNTL_MASK 0x02000000L
+#define SDMA_PUB_REG_TYPE1__SDMA_ATOMIC_PREOP_LO_MASK 0x04000000L
+#define SDMA_PUB_REG_TYPE1__SDMA_ATOMIC_PREOP_HI_MASK 0x08000000L
+#define SDMA_PUB_REG_TYPE1__SDMA_UTCL1_CNTL_MASK 0x10000000L
+#define SDMA_PUB_REG_TYPE1__SDMA_UTCL1_WATERMK_MASK 0x20000000L
+#define SDMA_PUB_REG_TYPE1__SDMA_UTCL1_RD_STATUS_MASK 0x40000000L
+#define SDMA_PUB_REG_TYPE1__SDMA_UTCL1_WR_STATUS_MASK 0x80000000L
+//SDMA_PUB_REG_TYPE2
+#define SDMA_PUB_REG_TYPE2__SDMA_UTCL1_INV0__SHIFT 0x0
+#define SDMA_PUB_REG_TYPE2__SDMA_UTCL1_INV1__SHIFT 0x1
+#define SDMA_PUB_REG_TYPE2__SDMA_UTCL1_INV2__SHIFT 0x2
+#define SDMA_PUB_REG_TYPE2__SDMA_UTCL1_RD_XNACK0__SHIFT 0x3
+#define SDMA_PUB_REG_TYPE2__SDMA_UTCL1_RD_XNACK1__SHIFT 0x4
+#define SDMA_PUB_REG_TYPE2__SDMA_UTCL1_WR_XNACK0__SHIFT 0x5
+#define SDMA_PUB_REG_TYPE2__SDMA_UTCL1_WR_XNACK1__SHIFT 0x6
+#define SDMA_PUB_REG_TYPE2__SDMA_UTCL1_TIMEOUT__SHIFT 0x7
+#define SDMA_PUB_REG_TYPE2__SDMA_UTCL1_PAGE__SHIFT 0x8
+#define SDMA_PUB_REG_TYPE2__SDMA_POWER_CNTL_IDLE__SHIFT 0x9
+#define SDMA_PUB_REG_TYPE2__SDMA_RELAX_ORDERING_LUT__SHIFT 0xa
+#define SDMA_PUB_REG_TYPE2__SDMA_CHICKEN_BITS_2__SHIFT 0xb
+#define SDMA_PUB_REG_TYPE2__SDMA_STATUS3_REG__SHIFT 0xc
+#define SDMA_PUB_REG_TYPE2__SDMA_PHYSICAL_ADDR_LO__SHIFT 0xd
+#define SDMA_PUB_REG_TYPE2__SDMA_PHYSICAL_ADDR_HI__SHIFT 0xe
+#define SDMA_PUB_REG_TYPE2__SDMA_PHASE2_QUANTUM__SHIFT 0xf
+#define SDMA_PUB_REG_TYPE2__SDMA_ERROR_LOG__SHIFT 0x10
+#define SDMA_PUB_REG_TYPE2__SDMA_PUB_DUMMY_REG0__SHIFT 0x11
+#define SDMA_PUB_REG_TYPE2__SDMA_PUB_DUMMY_REG1__SHIFT 0x12
+#define SDMA_PUB_REG_TYPE2__SDMA_PUB_DUMMY_REG2__SHIFT 0x13
+#define SDMA_PUB_REG_TYPE2__SDMA_PUB_DUMMY_REG3__SHIFT 0x14
+#define SDMA_PUB_REG_TYPE2__SDMA_F32_COUNTER__SHIFT 0x15
+#define SDMA_PUB_REG_TYPE2__RESERVED_22_22__SHIFT 0x16
+#define SDMA_PUB_REG_TYPE2__SDMA_PERFCNT_PERFCOUNTER0_CFG__SHIFT 0x17
+#define SDMA_PUB_REG_TYPE2__SDMA_PERFCNT_PERFCOUNTER1_CFG__SHIFT 0x18
+#define SDMA_PUB_REG_TYPE2__SDMA_PERFCNT_PERFCOUNTER_RSLT_CNTL__SHIFT 0x19
+#define SDMA_PUB_REG_TYPE2__SDMA_PERFCNT_MISC_CNTL__SHIFT 0x1a
+#define SDMA_PUB_REG_TYPE2__SDMA_PERFCNT_PERFCOUNTER_LO__SHIFT 0x1b
+#define SDMA_PUB_REG_TYPE2__SDMA_PERFCNT_PERFCOUNTER_HI__SHIFT 0x1c
+#define SDMA_PUB_REG_TYPE2__SDMA_CRD_CNTL__SHIFT 0x1d
+#define SDMA_PUB_REG_TYPE2__SDMA_GPU_IOV_VIOLATION_LOG__SHIFT 0x1e
+#define SDMA_PUB_REG_TYPE2__SDMA_ULV_CNTL__SHIFT 0x1f
+#define SDMA_PUB_REG_TYPE2__SDMA_UTCL1_INV0_MASK 0x00000001L
+#define SDMA_PUB_REG_TYPE2__SDMA_UTCL1_INV1_MASK 0x00000002L
+#define SDMA_PUB_REG_TYPE2__SDMA_UTCL1_INV2_MASK 0x00000004L
+#define SDMA_PUB_REG_TYPE2__SDMA_UTCL1_RD_XNACK0_MASK 0x00000008L
+#define SDMA_PUB_REG_TYPE2__SDMA_UTCL1_RD_XNACK1_MASK 0x00000010L
+#define SDMA_PUB_REG_TYPE2__SDMA_UTCL1_WR_XNACK0_MASK 0x00000020L
+#define SDMA_PUB_REG_TYPE2__SDMA_UTCL1_WR_XNACK1_MASK 0x00000040L
+#define SDMA_PUB_REG_TYPE2__SDMA_UTCL1_TIMEOUT_MASK 0x00000080L
+#define SDMA_PUB_REG_TYPE2__SDMA_UTCL1_PAGE_MASK 0x00000100L
+#define SDMA_PUB_REG_TYPE2__SDMA_POWER_CNTL_IDLE_MASK 0x00000200L
+#define SDMA_PUB_REG_TYPE2__SDMA_RELAX_ORDERING_LUT_MASK 0x00000400L
+#define SDMA_PUB_REG_TYPE2__SDMA_CHICKEN_BITS_2_MASK 0x00000800L
+#define SDMA_PUB_REG_TYPE2__SDMA_STATUS3_REG_MASK 0x00001000L
+#define SDMA_PUB_REG_TYPE2__SDMA_PHYSICAL_ADDR_LO_MASK 0x00002000L
+#define SDMA_PUB_REG_TYPE2__SDMA_PHYSICAL_ADDR_HI_MASK 0x00004000L
+#define SDMA_PUB_REG_TYPE2__SDMA_PHASE2_QUANTUM_MASK 0x00008000L
+#define SDMA_PUB_REG_TYPE2__SDMA_ERROR_LOG_MASK 0x00010000L
+#define SDMA_PUB_REG_TYPE2__SDMA_PUB_DUMMY_REG0_MASK 0x00020000L
+#define SDMA_PUB_REG_TYPE2__SDMA_PUB_DUMMY_REG1_MASK 0x00040000L
+#define SDMA_PUB_REG_TYPE2__SDMA_PUB_DUMMY_REG2_MASK 0x00080000L
+#define SDMA_PUB_REG_TYPE2__SDMA_PUB_DUMMY_REG3_MASK 0x00100000L
+#define SDMA_PUB_REG_TYPE2__SDMA_F32_COUNTER_MASK 0x00200000L
+#define SDMA_PUB_REG_TYPE2__RESERVED_22_22_MASK 0x00400000L
+#define SDMA_PUB_REG_TYPE2__SDMA_PERFCNT_PERFCOUNTER0_CFG_MASK 0x00800000L
+#define SDMA_PUB_REG_TYPE2__SDMA_PERFCNT_PERFCOUNTER1_CFG_MASK 0x01000000L
+#define SDMA_PUB_REG_TYPE2__SDMA_PERFCNT_PERFCOUNTER_RSLT_CNTL_MASK 0x02000000L
+#define SDMA_PUB_REG_TYPE2__SDMA_PERFCNT_MISC_CNTL_MASK 0x04000000L
+#define SDMA_PUB_REG_TYPE2__SDMA_PERFCNT_PERFCOUNTER_LO_MASK 0x08000000L
+#define SDMA_PUB_REG_TYPE2__SDMA_PERFCNT_PERFCOUNTER_HI_MASK 0x10000000L
+#define SDMA_PUB_REG_TYPE2__SDMA_CRD_CNTL_MASK 0x20000000L
+#define SDMA_PUB_REG_TYPE2__SDMA_GPU_IOV_VIOLATION_LOG_MASK 0x40000000L
+#define SDMA_PUB_REG_TYPE2__SDMA_ULV_CNTL_MASK 0x80000000L
+//SDMA_PUB_REG_TYPE3
+#define SDMA_PUB_REG_TYPE3__SDMA_EA_DBIT_ADDR_DATA__SHIFT 0x0
+#define SDMA_PUB_REG_TYPE3__SDMA_EA_DBIT_ADDR_INDEX__SHIFT 0x1
+#define SDMA_PUB_REG_TYPE3__SDMA_GPU_IOV_VIOLATION_LOG2__SHIFT 0x2
+#define SDMA_PUB_REG_TYPE3__SDMA_STATUS4_REG__SHIFT 0x3
+#define SDMA_PUB_REG_TYPE3__SDMA_SCRATCH_RAM_DATA__SHIFT 0x4
+#define SDMA_PUB_REG_TYPE3__SDMA_SCRATCH_RAM_ADDR__SHIFT 0x5
+#define SDMA_PUB_REG_TYPE3__SDMA_CE_CTRL__SHIFT 0x6
+#define SDMA_PUB_REG_TYPE3__SDMA_RAS_STATUS__SHIFT 0x7
+#define SDMA_PUB_REG_TYPE3__SDMA_CLK_STATUS__SHIFT 0x8
+#define SDMA_PUB_REG_TYPE3__SDMA_POWER_CNTL__SHIFT 0xb
+#define SDMA_PUB_REG_TYPE3__SDMA_CLK_CTRL__SHIFT 0xc
+#define SDMA_PUB_REG_TYPE3__SDMA_CNTL__SHIFT 0xd
+#define SDMA_PUB_REG_TYPE3__SDMA_CHICKEN_BITS__SHIFT 0xe
+#define SDMA_PUB_REG_TYPE3__SDMA_GB_ADDR_CONFIG__SHIFT 0xf
+#define SDMA_PUB_REG_TYPE3__SDMA_GB_ADDR_CONFIG_READ__SHIFT 0x10
+#define SDMA_PUB_REG_TYPE3__RESERVED__SHIFT 0x13
+#define SDMA_PUB_REG_TYPE3__SDMA_EA_DBIT_ADDR_DATA_MASK 0x00000001L
+#define SDMA_PUB_REG_TYPE3__SDMA_EA_DBIT_ADDR_INDEX_MASK 0x00000002L
+#define SDMA_PUB_REG_TYPE3__SDMA_GPU_IOV_VIOLATION_LOG2_MASK 0x00000004L
+#define SDMA_PUB_REG_TYPE3__SDMA_STATUS4_REG_MASK 0x00000008L
+#define SDMA_PUB_REG_TYPE3__SDMA_SCRATCH_RAM_DATA_MASK 0x00000010L
+#define SDMA_PUB_REG_TYPE3__SDMA_SCRATCH_RAM_ADDR_MASK 0x00000020L
+#define SDMA_PUB_REG_TYPE3__SDMA_CE_CTRL_MASK 0x00000040L
+#define SDMA_PUB_REG_TYPE3__SDMA_RAS_STATUS_MASK 0x00000080L
+#define SDMA_PUB_REG_TYPE3__SDMA_CLK_STATUS_MASK 0x00000100L
+#define SDMA_PUB_REG_TYPE3__SDMA_POWER_CNTL_MASK 0x00000800L
+#define SDMA_PUB_REG_TYPE3__SDMA_CLK_CTRL_MASK 0x00001000L
+#define SDMA_PUB_REG_TYPE3__SDMA_CNTL_MASK 0x00002000L
+#define SDMA_PUB_REG_TYPE3__SDMA_CHICKEN_BITS_MASK 0x00004000L
+#define SDMA_PUB_REG_TYPE3__SDMA_GB_ADDR_CONFIG_MASK 0x00008000L
+#define SDMA_PUB_REG_TYPE3__SDMA_GB_ADDR_CONFIG_READ_MASK 0x00010000L
+#define SDMA_PUB_REG_TYPE3__RESERVED_MASK 0xFFF80000L
+//SDMA_CONTEXT_GROUP_BOUNDARY
+#define SDMA_CONTEXT_GROUP_BOUNDARY__RESERVED__SHIFT 0x0
+#define SDMA_CONTEXT_GROUP_BOUNDARY__RESERVED_MASK 0xFFFFFFFFL
+//SDMA_RB_RPTR_FETCH_HI
+#define SDMA_RB_RPTR_FETCH_HI__OFFSET__SHIFT 0x0
+#define SDMA_RB_RPTR_FETCH_HI__OFFSET_MASK 0xFFFFFFFFL
+//SDMA_SEM_WAIT_FAIL_TIMER_CNTL
+#define SDMA_SEM_WAIT_FAIL_TIMER_CNTL__TIMER__SHIFT 0x0
+#define SDMA_SEM_WAIT_FAIL_TIMER_CNTL__TIMER_MASK 0xFFFFFFFFL
+//SDMA_RB_RPTR_FETCH
+#define SDMA_RB_RPTR_FETCH__OFFSET__SHIFT 0x2
+#define SDMA_RB_RPTR_FETCH__OFFSET_MASK 0xFFFFFFFCL
+//SDMA_IB_OFFSET_FETCH
+#define SDMA_IB_OFFSET_FETCH__OFFSET__SHIFT 0x2
+#define SDMA_IB_OFFSET_FETCH__OFFSET_MASK 0x003FFFFCL
+//SDMA_PROGRAM
+#define SDMA_PROGRAM__STREAM__SHIFT 0x0
+#define SDMA_PROGRAM__STREAM_MASK 0xFFFFFFFFL
+//SDMA_STATUS_REG
+#define SDMA_STATUS_REG__IDLE__SHIFT 0x0
+#define SDMA_STATUS_REG__REG_IDLE__SHIFT 0x1
+#define SDMA_STATUS_REG__RB_EMPTY__SHIFT 0x2
+#define SDMA_STATUS_REG__RB_FULL__SHIFT 0x3
+#define SDMA_STATUS_REG__RB_CMD_IDLE__SHIFT 0x4
+#define SDMA_STATUS_REG__RB_CMD_FULL__SHIFT 0x5
+#define SDMA_STATUS_REG__IB_CMD_IDLE__SHIFT 0x6
+#define SDMA_STATUS_REG__IB_CMD_FULL__SHIFT 0x7
+#define SDMA_STATUS_REG__BLOCK_IDLE__SHIFT 0x8
+#define SDMA_STATUS_REG__INSIDE_IB__SHIFT 0x9
+#define SDMA_STATUS_REG__EX_IDLE__SHIFT 0xa
+#define SDMA_STATUS_REG__EX_IDLE_POLL_TIMER_EXPIRE__SHIFT 0xb
+#define SDMA_STATUS_REG__PACKET_READY__SHIFT 0xc
+#define SDMA_STATUS_REG__MC_WR_IDLE__SHIFT 0xd
+#define SDMA_STATUS_REG__SRBM_IDLE__SHIFT 0xe
+#define SDMA_STATUS_REG__CONTEXT_EMPTY__SHIFT 0xf
+#define SDMA_STATUS_REG__DELTA_RPTR_FULL__SHIFT 0x10
+#define SDMA_STATUS_REG__RB_MC_RREQ_IDLE__SHIFT 0x11
+#define SDMA_STATUS_REG__IB_MC_RREQ_IDLE__SHIFT 0x12
+#define SDMA_STATUS_REG__MC_RD_IDLE__SHIFT 0x13
+#define SDMA_STATUS_REG__DELTA_RPTR_EMPTY__SHIFT 0x14
+#define SDMA_STATUS_REG__MC_RD_RET_STALL__SHIFT 0x15
+#define SDMA_STATUS_REG__MC_RD_NO_POLL_IDLE__SHIFT 0x16
+#define SDMA_STATUS_REG__DRM_IDLE__SHIFT 0x17
+#define SDMA_STATUS_REG__DRM_MASK_FULL__SHIFT 0x18
+#define SDMA_STATUS_REG__PREV_CMD_IDLE__SHIFT 0x19
+#define SDMA_STATUS_REG__SEM_IDLE__SHIFT 0x1a
+#define SDMA_STATUS_REG__SEM_REQ_STALL__SHIFT 0x1b
+#define SDMA_STATUS_REG__SEM_RESP_STATE__SHIFT 0x1c
+#define SDMA_STATUS_REG__INT_IDLE__SHIFT 0x1e
+#define SDMA_STATUS_REG__INT_REQ_STALL__SHIFT 0x1f
+#define SDMA_STATUS_REG__IDLE_MASK 0x00000001L
+#define SDMA_STATUS_REG__REG_IDLE_MASK 0x00000002L
+#define SDMA_STATUS_REG__RB_EMPTY_MASK 0x00000004L
+#define SDMA_STATUS_REG__RB_FULL_MASK 0x00000008L
+#define SDMA_STATUS_REG__RB_CMD_IDLE_MASK 0x00000010L
+#define SDMA_STATUS_REG__RB_CMD_FULL_MASK 0x00000020L
+#define SDMA_STATUS_REG__IB_CMD_IDLE_MASK 0x00000040L
+#define SDMA_STATUS_REG__IB_CMD_FULL_MASK 0x00000080L
+#define SDMA_STATUS_REG__BLOCK_IDLE_MASK 0x00000100L
+#define SDMA_STATUS_REG__INSIDE_IB_MASK 0x00000200L
+#define SDMA_STATUS_REG__EX_IDLE_MASK 0x00000400L
+#define SDMA_STATUS_REG__EX_IDLE_POLL_TIMER_EXPIRE_MASK 0x00000800L
+#define SDMA_STATUS_REG__PACKET_READY_MASK 0x00001000L
+#define SDMA_STATUS_REG__MC_WR_IDLE_MASK 0x00002000L
+#define SDMA_STATUS_REG__SRBM_IDLE_MASK 0x00004000L
+#define SDMA_STATUS_REG__CONTEXT_EMPTY_MASK 0x00008000L
+#define SDMA_STATUS_REG__DELTA_RPTR_FULL_MASK 0x00010000L
+#define SDMA_STATUS_REG__RB_MC_RREQ_IDLE_MASK 0x00020000L
+#define SDMA_STATUS_REG__IB_MC_RREQ_IDLE_MASK 0x00040000L
+#define SDMA_STATUS_REG__MC_RD_IDLE_MASK 0x00080000L
+#define SDMA_STATUS_REG__DELTA_RPTR_EMPTY_MASK 0x00100000L
+#define SDMA_STATUS_REG__MC_RD_RET_STALL_MASK 0x00200000L
+#define SDMA_STATUS_REG__MC_RD_NO_POLL_IDLE_MASK 0x00400000L
+#define SDMA_STATUS_REG__DRM_IDLE_MASK 0x00800000L
+#define SDMA_STATUS_REG__DRM_MASK_FULL_MASK 0x01000000L
+#define SDMA_STATUS_REG__PREV_CMD_IDLE_MASK 0x02000000L
+#define SDMA_STATUS_REG__SEM_IDLE_MASK 0x04000000L
+#define SDMA_STATUS_REG__SEM_REQ_STALL_MASK 0x08000000L
+#define SDMA_STATUS_REG__SEM_RESP_STATE_MASK 0x30000000L
+#define SDMA_STATUS_REG__INT_IDLE_MASK 0x40000000L
+#define SDMA_STATUS_REG__INT_REQ_STALL_MASK 0x80000000L
+//SDMA_STATUS1_REG
+#define SDMA_STATUS1_REG__CE_WREQ_IDLE__SHIFT 0x0
+#define SDMA_STATUS1_REG__CE_WR_IDLE__SHIFT 0x1
+#define SDMA_STATUS1_REG__CE_SPLIT_IDLE__SHIFT 0x2
+#define SDMA_STATUS1_REG__CE_RREQ_IDLE__SHIFT 0x3
+#define SDMA_STATUS1_REG__CE_OUT_IDLE__SHIFT 0x4
+#define SDMA_STATUS1_REG__CE_IN_IDLE__SHIFT 0x5
+#define SDMA_STATUS1_REG__CE_DST_IDLE__SHIFT 0x6
+#define SDMA_STATUS1_REG__CE_DRM_IDLE__SHIFT 0x7
+#define SDMA_STATUS1_REG__CE_DRM1_IDLE__SHIFT 0x8
+#define SDMA_STATUS1_REG__CE_CMD_IDLE__SHIFT 0x9
+#define SDMA_STATUS1_REG__CE_AFIFO_FULL__SHIFT 0xa
+#define SDMA_STATUS1_REG__CE_DRM_FULL__SHIFT 0xb
+#define SDMA_STATUS1_REG__CE_DRM1_FULL__SHIFT 0xc
+#define SDMA_STATUS1_REG__CE_INFO_FULL__SHIFT 0xd
+#define SDMA_STATUS1_REG__CE_INFO1_FULL__SHIFT 0xe
+#define SDMA_STATUS1_REG__EX_START__SHIFT 0xf
+#define SDMA_STATUS1_REG__DRM_CTX_RESTORE__SHIFT 0x10
+#define SDMA_STATUS1_REG__CE_RD_STALL__SHIFT 0x11
+#define SDMA_STATUS1_REG__CE_WR_STALL__SHIFT 0x12
+#define SDMA_STATUS1_REG__CE_WREQ_IDLE_MASK 0x00000001L
+#define SDMA_STATUS1_REG__CE_WR_IDLE_MASK 0x00000002L
+#define SDMA_STATUS1_REG__CE_SPLIT_IDLE_MASK 0x00000004L
+#define SDMA_STATUS1_REG__CE_RREQ_IDLE_MASK 0x00000008L
+#define SDMA_STATUS1_REG__CE_OUT_IDLE_MASK 0x00000010L
+#define SDMA_STATUS1_REG__CE_IN_IDLE_MASK 0x00000020L
+#define SDMA_STATUS1_REG__CE_DST_IDLE_MASK 0x00000040L
+#define SDMA_STATUS1_REG__CE_DRM_IDLE_MASK 0x00000080L
+#define SDMA_STATUS1_REG__CE_DRM1_IDLE_MASK 0x00000100L
+#define SDMA_STATUS1_REG__CE_CMD_IDLE_MASK 0x00000200L
+#define SDMA_STATUS1_REG__CE_AFIFO_FULL_MASK 0x00000400L
+#define SDMA_STATUS1_REG__CE_DRM_FULL_MASK 0x00000800L
+#define SDMA_STATUS1_REG__CE_DRM1_FULL_MASK 0x00001000L
+#define SDMA_STATUS1_REG__CE_INFO_FULL_MASK 0x00002000L
+#define SDMA_STATUS1_REG__CE_INFO1_FULL_MASK 0x00004000L
+#define SDMA_STATUS1_REG__EX_START_MASK 0x00008000L
+#define SDMA_STATUS1_REG__DRM_CTX_RESTORE_MASK 0x00010000L
+#define SDMA_STATUS1_REG__CE_RD_STALL_MASK 0x00020000L
+#define SDMA_STATUS1_REG__CE_WR_STALL_MASK 0x00040000L
+//SDMA_RD_BURST_CNTL
+#define SDMA_RD_BURST_CNTL__RD_BURST__SHIFT 0x0
+#define SDMA_RD_BURST_CNTL__CMD_BUFFER_RD_BURST__SHIFT 0x2
+#define SDMA_RD_BURST_CNTL__RD_BURST_MASK 0x00000003L
+#define SDMA_RD_BURST_CNTL__CMD_BUFFER_RD_BURST_MASK 0x0000000CL
+//SDMA_HBM_PAGE_CONFIG
+#define SDMA_HBM_PAGE_CONFIG__PAGE_SIZE_EXPONENT__SHIFT 0x0
+#define SDMA_HBM_PAGE_CONFIG__PAGE_SIZE_EXPONENT_MASK 0x00000003L
+//SDMA_UCODE_CHECKSUM
+#define SDMA_UCODE_CHECKSUM__DATA__SHIFT 0x0
+#define SDMA_UCODE_CHECKSUM__DATA_MASK 0xFFFFFFFFL
+//SDMA_FREEZE
+#define SDMA_FREEZE__PREEMPT__SHIFT 0x0
+#define SDMA_FREEZE__FREEZE__SHIFT 0x4
+#define SDMA_FREEZE__FROZEN__SHIFT 0x5
+#define SDMA_FREEZE__F32_FREEZE__SHIFT 0x6
+#define SDMA_FREEZE__PREEMPT_MASK 0x00000001L
+#define SDMA_FREEZE__FREEZE_MASK 0x00000010L
+#define SDMA_FREEZE__FROZEN_MASK 0x00000020L
+#define SDMA_FREEZE__F32_FREEZE_MASK 0x00000040L
+//SDMA_PHASE0_QUANTUM
+#define SDMA_PHASE0_QUANTUM__UNIT__SHIFT 0x0
+#define SDMA_PHASE0_QUANTUM__VALUE__SHIFT 0x8
+#define SDMA_PHASE0_QUANTUM__PREFER__SHIFT 0x1e
+#define SDMA_PHASE0_QUANTUM__UNIT_MASK 0x0000000FL
+#define SDMA_PHASE0_QUANTUM__VALUE_MASK 0x00FFFF00L
+#define SDMA_PHASE0_QUANTUM__PREFER_MASK 0x40000000L
+//SDMA_PHASE1_QUANTUM
+#define SDMA_PHASE1_QUANTUM__UNIT__SHIFT 0x0
+#define SDMA_PHASE1_QUANTUM__VALUE__SHIFT 0x8
+#define SDMA_PHASE1_QUANTUM__PREFER__SHIFT 0x1e
+#define SDMA_PHASE1_QUANTUM__UNIT_MASK 0x0000000FL
+#define SDMA_PHASE1_QUANTUM__VALUE_MASK 0x00FFFF00L
+#define SDMA_PHASE1_QUANTUM__PREFER_MASK 0x40000000L
+//SDMA_POWER_GATING
+#define SDMA_POWER_GATING__SDMA_POWER_OFF_CONDITION__SHIFT 0x0
+#define SDMA_POWER_GATING__SDMA_POWER_ON_CONDITION__SHIFT 0x1
+#define SDMA_POWER_GATING__SDMA_POWER_OFF_REQ__SHIFT 0x2
+#define SDMA_POWER_GATING__SDMA_POWER_ON_REQ__SHIFT 0x3
+#define SDMA_POWER_GATING__PG_CNTL_STATUS__SHIFT 0x4
+#define SDMA_POWER_GATING__SDMA_POWER_OFF_CONDITION_MASK 0x00000001L
+#define SDMA_POWER_GATING__SDMA_POWER_ON_CONDITION_MASK 0x00000002L
+#define SDMA_POWER_GATING__SDMA_POWER_OFF_REQ_MASK 0x00000004L
+#define SDMA_POWER_GATING__SDMA_POWER_ON_REQ_MASK 0x00000008L
+#define SDMA_POWER_GATING__PG_CNTL_STATUS_MASK 0x00000030L
+//SDMA_PGFSM_CONFIG
+#define SDMA_PGFSM_CONFIG__FSM_ADDR__SHIFT 0x0
+#define SDMA_PGFSM_CONFIG__POWER_DOWN__SHIFT 0x8
+#define SDMA_PGFSM_CONFIG__POWER_UP__SHIFT 0x9
+#define SDMA_PGFSM_CONFIG__P1_SELECT__SHIFT 0xa
+#define SDMA_PGFSM_CONFIG__P2_SELECT__SHIFT 0xb
+#define SDMA_PGFSM_CONFIG__WRITE__SHIFT 0xc
+#define SDMA_PGFSM_CONFIG__READ__SHIFT 0xd
+#define SDMA_PGFSM_CONFIG__SRBM_OVERRIDE__SHIFT 0x1b
+#define SDMA_PGFSM_CONFIG__REG_ADDR__SHIFT 0x1c
+#define SDMA_PGFSM_CONFIG__FSM_ADDR_MASK 0x000000FFL
+#define SDMA_PGFSM_CONFIG__POWER_DOWN_MASK 0x00000100L
+#define SDMA_PGFSM_CONFIG__POWER_UP_MASK 0x00000200L
+#define SDMA_PGFSM_CONFIG__P1_SELECT_MASK 0x00000400L
+#define SDMA_PGFSM_CONFIG__P2_SELECT_MASK 0x00000800L
+#define SDMA_PGFSM_CONFIG__WRITE_MASK 0x00001000L
+#define SDMA_PGFSM_CONFIG__READ_MASK 0x00002000L
+#define SDMA_PGFSM_CONFIG__SRBM_OVERRIDE_MASK 0x08000000L
+#define SDMA_PGFSM_CONFIG__REG_ADDR_MASK 0xF0000000L
+//SDMA_PGFSM_WRITE
+#define SDMA_PGFSM_WRITE__VALUE__SHIFT 0x0
+#define SDMA_PGFSM_WRITE__VALUE_MASK 0xFFFFFFFFL
+//SDMA_PGFSM_READ
+#define SDMA_PGFSM_READ__VALUE__SHIFT 0x0
+#define SDMA_PGFSM_READ__VALUE_MASK 0x00FFFFFFL
+//CC_SDMA_EDC_CONFIG
+#define CC_SDMA_EDC_CONFIG__WRITE_DIS__SHIFT 0x0
+#define CC_SDMA_EDC_CONFIG__DIS_EDC__SHIFT 0x1
+#define CC_SDMA_EDC_CONFIG__WRITE_DIS_MASK 0x00000001L
+#define CC_SDMA_EDC_CONFIG__DIS_EDC_MASK 0x00000002L
+//SDMA_BA_THRESHOLD
+#define SDMA_BA_THRESHOLD__READ_THRES__SHIFT 0x0
+#define SDMA_BA_THRESHOLD__WRITE_THRES__SHIFT 0x10
+#define SDMA_BA_THRESHOLD__READ_THRES_MASK 0x000003FFL
+#define SDMA_BA_THRESHOLD__WRITE_THRES_MASK 0x03FF0000L
+//SDMA_ID
+#define SDMA_ID__DEVICE_ID__SHIFT 0x0
+#define SDMA_ID__DEVICE_ID_MASK 0x000000FFL
+//SDMA_VERSION
+#define SDMA_VERSION__MINVER__SHIFT 0x0
+#define SDMA_VERSION__MAJVER__SHIFT 0x8
+#define SDMA_VERSION__REV__SHIFT 0x10
+#define SDMA_VERSION__MINVER_MASK 0x0000007FL
+#define SDMA_VERSION__MAJVER_MASK 0x00007F00L
+#define SDMA_VERSION__REV_MASK 0x003F0000L
+//SDMA_EDC_COUNTER
+#define SDMA_EDC_COUNTER__SDMA_MBANK_DATA_BUF0_SED__SHIFT 0x0
+#define SDMA_EDC_COUNTER__SDMA_MBANK_DATA_BUF1_SED__SHIFT 0x2
+#define SDMA_EDC_COUNTER__SDMA_MBANK_DATA_BUF2_SED__SHIFT 0x4
+#define SDMA_EDC_COUNTER__SDMA_MBANK_DATA_BUF3_SED__SHIFT 0x6
+#define SDMA_EDC_COUNTER__SDMA_MBANK_DATA_BUF4_SED__SHIFT 0x8
+#define SDMA_EDC_COUNTER__SDMA_MBANK_DATA_BUF5_SED__SHIFT 0xa
+#define SDMA_EDC_COUNTER__SDMA_MBANK_DATA_BUF6_SED__SHIFT 0xc
+#define SDMA_EDC_COUNTER__SDMA_MBANK_DATA_BUF7_SED__SHIFT 0xe
+#define SDMA_EDC_COUNTER__SDMA_MBANK_DATA_BUF8_SED__SHIFT 0x10
+#define SDMA_EDC_COUNTER__SDMA_MBANK_DATA_BUF9_SED__SHIFT 0x12
+#define SDMA_EDC_COUNTER__SDMA_MBANK_DATA_BUF10_SED__SHIFT 0x14
+#define SDMA_EDC_COUNTER__SDMA_MBANK_DATA_BUF11_SED__SHIFT 0x16
+#define SDMA_EDC_COUNTER__SDMA_MBANK_DATA_BUF12_SED__SHIFT 0x18
+#define SDMA_EDC_COUNTER__SDMA_MBANK_DATA_BUF13_SED__SHIFT 0x1a
+#define SDMA_EDC_COUNTER__SDMA_MBANK_DATA_BUF14_SED__SHIFT 0x1c
+#define SDMA_EDC_COUNTER__SDMA_MBANK_DATA_BUF15_SED__SHIFT 0x1e
+#define SDMA_EDC_COUNTER__SDMA_MBANK_DATA_BUF0_SED_MASK 0x00000003L
+#define SDMA_EDC_COUNTER__SDMA_MBANK_DATA_BUF1_SED_MASK 0x0000000CL
+#define SDMA_EDC_COUNTER__SDMA_MBANK_DATA_BUF2_SED_MASK 0x00000030L
+#define SDMA_EDC_COUNTER__SDMA_MBANK_DATA_BUF3_SED_MASK 0x000000C0L
+#define SDMA_EDC_COUNTER__SDMA_MBANK_DATA_BUF4_SED_MASK 0x00000300L
+#define SDMA_EDC_COUNTER__SDMA_MBANK_DATA_BUF5_SED_MASK 0x00000C00L
+#define SDMA_EDC_COUNTER__SDMA_MBANK_DATA_BUF6_SED_MASK 0x00003000L
+#define SDMA_EDC_COUNTER__SDMA_MBANK_DATA_BUF7_SED_MASK 0x0000C000L
+#define SDMA_EDC_COUNTER__SDMA_MBANK_DATA_BUF8_SED_MASK 0x00030000L
+#define SDMA_EDC_COUNTER__SDMA_MBANK_DATA_BUF9_SED_MASK 0x000C0000L
+#define SDMA_EDC_COUNTER__SDMA_MBANK_DATA_BUF10_SED_MASK 0x00300000L
+#define SDMA_EDC_COUNTER__SDMA_MBANK_DATA_BUF11_SED_MASK 0x00C00000L
+#define SDMA_EDC_COUNTER__SDMA_MBANK_DATA_BUF12_SED_MASK 0x03000000L
+#define SDMA_EDC_COUNTER__SDMA_MBANK_DATA_BUF13_SED_MASK 0x0C000000L
+#define SDMA_EDC_COUNTER__SDMA_MBANK_DATA_BUF14_SED_MASK 0x30000000L
+#define SDMA_EDC_COUNTER__SDMA_MBANK_DATA_BUF15_SED_MASK 0xC0000000L
+//SDMA_EDC_COUNTER2
+#define SDMA_EDC_COUNTER2__SDMA_UCODE_BUF_SED__SHIFT 0x0
+#define SDMA_EDC_COUNTER2__SDMA_RB_CMD_BUF_SED__SHIFT 0x2
+#define SDMA_EDC_COUNTER2__SDMA_IB_CMD_BUF_SED__SHIFT 0x4
+#define SDMA_EDC_COUNTER2__SDMA_UTCL1_RD_FIFO_SED__SHIFT 0x6
+#define SDMA_EDC_COUNTER2__SDMA_UTCL1_RDBST_FIFO_SED__SHIFT 0x8
+#define SDMA_EDC_COUNTER2__SDMA_UTCL1_WR_FIFO_SED__SHIFT 0xa
+#define SDMA_EDC_COUNTER2__SDMA_DATA_LUT_FIFO_SED__SHIFT 0xc
+#define SDMA_EDC_COUNTER2__SDMA_SPLIT_DATA_BUF_SED__SHIFT 0xe
+#define SDMA_EDC_COUNTER2__SDMA_MC_WR_ADDR_FIFO_SED__SHIFT 0x10
+#define SDMA_EDC_COUNTER2__SDMA_MC_RDRET_BUF_SED__SHIFT 0x12
+#define SDMA_EDC_COUNTER2__SDMA_UCODE_BUF_SED_MASK 0x00000003L
+#define SDMA_EDC_COUNTER2__SDMA_RB_CMD_BUF_SED_MASK 0x0000000CL
+#define SDMA_EDC_COUNTER2__SDMA_IB_CMD_BUF_SED_MASK 0x00000030L
+#define SDMA_EDC_COUNTER2__SDMA_UTCL1_RD_FIFO_SED_MASK 0x000000C0L
+#define SDMA_EDC_COUNTER2__SDMA_UTCL1_RDBST_FIFO_SED_MASK 0x00000300L
+#define SDMA_EDC_COUNTER2__SDMA_UTCL1_WR_FIFO_SED_MASK 0x00000C00L
+#define SDMA_EDC_COUNTER2__SDMA_DATA_LUT_FIFO_SED_MASK 0x00003000L
+#define SDMA_EDC_COUNTER2__SDMA_SPLIT_DATA_BUF_SED_MASK 0x0000C000L
+#define SDMA_EDC_COUNTER2__SDMA_MC_WR_ADDR_FIFO_SED_MASK 0x00030000L
+#define SDMA_EDC_COUNTER2__SDMA_MC_RDRET_BUF_SED_MASK 0x000C0000L
+//SDMA_STATUS2_REG
+#define SDMA_STATUS2_REG__ID__SHIFT 0x0
+#define SDMA_STATUS2_REG__F32_INSTR_PTR__SHIFT 0x3
+#define SDMA_STATUS2_REG__CMD_OP__SHIFT 0x10
+#define SDMA_STATUS2_REG__ID_MASK 0x00000007L
+#define SDMA_STATUS2_REG__F32_INSTR_PTR_MASK 0x0000FFF8L
+#define SDMA_STATUS2_REG__CMD_OP_MASK 0xFFFF0000L
+//SDMA_ATOMIC_CNTL
+#define SDMA_ATOMIC_CNTL__LOOP_TIMER__SHIFT 0x0
+#define SDMA_ATOMIC_CNTL__ATOMIC_RTN_INT_ENABLE__SHIFT 0x1f
+#define SDMA_ATOMIC_CNTL__LOOP_TIMER_MASK 0x7FFFFFFFL
+#define SDMA_ATOMIC_CNTL__ATOMIC_RTN_INT_ENABLE_MASK 0x80000000L
+//SDMA_ATOMIC_PREOP_LO
+#define SDMA_ATOMIC_PREOP_LO__DATA__SHIFT 0x0
+#define SDMA_ATOMIC_PREOP_LO__DATA_MASK 0xFFFFFFFFL
+//SDMA_ATOMIC_PREOP_HI
+#define SDMA_ATOMIC_PREOP_HI__DATA__SHIFT 0x0
+#define SDMA_ATOMIC_PREOP_HI__DATA_MASK 0xFFFFFFFFL
+//SDMA_UTCL1_CNTL
+#define SDMA_UTCL1_CNTL__REDO_ENABLE__SHIFT 0x0
+#define SDMA_UTCL1_CNTL__REDO_DELAY__SHIFT 0x1
+#define SDMA_UTCL1_CNTL__REDO_WATERMK__SHIFT 0xb
+#define SDMA_UTCL1_CNTL__INVACK_DELAY__SHIFT 0xe
+#define SDMA_UTCL1_CNTL__REQL2_CREDIT__SHIFT 0x18
+#define SDMA_UTCL1_CNTL__VADDR_WATERMK__SHIFT 0x1d
+#define SDMA_UTCL1_CNTL__REDO_ENABLE_MASK 0x00000001L
+#define SDMA_UTCL1_CNTL__REDO_DELAY_MASK 0x000007FEL
+#define SDMA_UTCL1_CNTL__REDO_WATERMK_MASK 0x00003800L
+#define SDMA_UTCL1_CNTL__INVACK_DELAY_MASK 0x00FFC000L
+#define SDMA_UTCL1_CNTL__REQL2_CREDIT_MASK 0x1F000000L
+#define SDMA_UTCL1_CNTL__VADDR_WATERMK_MASK 0xE0000000L
+//SDMA_UTCL1_WATERMK
+#define SDMA_UTCL1_WATERMK__REQ_WATERMK__SHIFT 0x0
+#define SDMA_UTCL1_WATERMK__REQ_DEPTH__SHIFT 0x3
+#define SDMA_UTCL1_WATERMK__PAGE_WATERMK__SHIFT 0x5
+#define SDMA_UTCL1_WATERMK__INVREQ_WATERMK__SHIFT 0x8
+#define SDMA_UTCL1_WATERMK__RESERVED__SHIFT 0x10
+#define SDMA_UTCL1_WATERMK__REQ_WATERMK_MASK 0x00000007L
+#define SDMA_UTCL1_WATERMK__REQ_DEPTH_MASK 0x00000018L
+#define SDMA_UTCL1_WATERMK__PAGE_WATERMK_MASK 0x000000E0L
+#define SDMA_UTCL1_WATERMK__INVREQ_WATERMK_MASK 0x0000FF00L
+#define SDMA_UTCL1_WATERMK__RESERVED_MASK 0xFFFF0000L
+//SDMA_UTCL1_RD_STATUS
+#define SDMA_UTCL1_RD_STATUS__RQMC_RET_ADDR_FIFO_EMPTY__SHIFT 0x0
+#define SDMA_UTCL1_RD_STATUS__RQMC_REQ_FIFO_EMPTY__SHIFT 0x1
+#define SDMA_UTCL1_RD_STATUS__RTPG_RET_BUF_EMPTY__SHIFT 0x2
+#define SDMA_UTCL1_RD_STATUS__RTPG_VADDR_FIFO_EMPTY__SHIFT 0x3
+#define SDMA_UTCL1_RD_STATUS__RQPG_HEAD_VIRT_FIFO_EMPTY__SHIFT 0x4
+#define SDMA_UTCL1_RD_STATUS__RQPG_REDO_FIFO_EMPTY__SHIFT 0x5
+#define SDMA_UTCL1_RD_STATUS__RQPG_REQPAGE_FIFO_EMPTY__SHIFT 0x6
+#define SDMA_UTCL1_RD_STATUS__RQPG_XNACK_FIFO_EMPTY__SHIFT 0x7
+#define SDMA_UTCL1_RD_STATUS__RQPG_INVREQ_FIFO_EMPTY__SHIFT 0x8
+#define SDMA_UTCL1_RD_STATUS__RQMC_RET_ADDR_FIFO_FULL__SHIFT 0x9
+#define SDMA_UTCL1_RD_STATUS__RQMC_REQ_FIFO_FULL__SHIFT 0xa
+#define SDMA_UTCL1_RD_STATUS__RTPG_RET_BUF_FULL__SHIFT 0xb
+#define SDMA_UTCL1_RD_STATUS__RTPG_VADDR_FIFO_FULL__SHIFT 0xc
+#define SDMA_UTCL1_RD_STATUS__RQPG_HEAD_VIRT_FIFO_FULL__SHIFT 0xd
+#define SDMA_UTCL1_RD_STATUS__RQPG_REDO_FIFO_FULL__SHIFT 0xe
+#define SDMA_UTCL1_RD_STATUS__RQPG_REQPAGE_FIFO_FULL__SHIFT 0xf
+#define SDMA_UTCL1_RD_STATUS__RQPG_XNACK_FIFO_FULL__SHIFT 0x10
+#define SDMA_UTCL1_RD_STATUS__RQPG_INVREQ_FIFO_FULL__SHIFT 0x11
+#define SDMA_UTCL1_RD_STATUS__PAGE_FAULT__SHIFT 0x12
+#define SDMA_UTCL1_RD_STATUS__PAGE_NULL__SHIFT 0x13
+#define SDMA_UTCL1_RD_STATUS__REQL2_IDLE__SHIFT 0x14
+#define SDMA_UTCL1_RD_STATUS__CE_L1_STALL__SHIFT 0x15
+#define SDMA_UTCL1_RD_STATUS__NEXT_RD_VECTOR__SHIFT 0x16
+#define SDMA_UTCL1_RD_STATUS__MERGE_STATE__SHIFT 0x1a
+#define SDMA_UTCL1_RD_STATUS__ADDR_RD_RTR__SHIFT 0x1d
+#define SDMA_UTCL1_RD_STATUS__WPTR_POLLING__SHIFT 0x1e
+#define SDMA_UTCL1_RD_STATUS__INVREQ_SIZE__SHIFT 0x1f
+#define SDMA_UTCL1_RD_STATUS__RQMC_RET_ADDR_FIFO_EMPTY_MASK 0x00000001L
+#define SDMA_UTCL1_RD_STATUS__RQMC_REQ_FIFO_EMPTY_MASK 0x00000002L
+#define SDMA_UTCL1_RD_STATUS__RTPG_RET_BUF_EMPTY_MASK 0x00000004L
+#define SDMA_UTCL1_RD_STATUS__RTPG_VADDR_FIFO_EMPTY_MASK 0x00000008L
+#define SDMA_UTCL1_RD_STATUS__RQPG_HEAD_VIRT_FIFO_EMPTY_MASK 0x00000010L
+#define SDMA_UTCL1_RD_STATUS__RQPG_REDO_FIFO_EMPTY_MASK 0x00000020L
+#define SDMA_UTCL1_RD_STATUS__RQPG_REQPAGE_FIFO_EMPTY_MASK 0x00000040L
+#define SDMA_UTCL1_RD_STATUS__RQPG_XNACK_FIFO_EMPTY_MASK 0x00000080L
+#define SDMA_UTCL1_RD_STATUS__RQPG_INVREQ_FIFO_EMPTY_MASK 0x00000100L
+#define SDMA_UTCL1_RD_STATUS__RQMC_RET_ADDR_FIFO_FULL_MASK 0x00000200L
+#define SDMA_UTCL1_RD_STATUS__RQMC_REQ_FIFO_FULL_MASK 0x00000400L
+#define SDMA_UTCL1_RD_STATUS__RTPG_RET_BUF_FULL_MASK 0x00000800L
+#define SDMA_UTCL1_RD_STATUS__RTPG_VADDR_FIFO_FULL_MASK 0x00001000L
+#define SDMA_UTCL1_RD_STATUS__RQPG_HEAD_VIRT_FIFO_FULL_MASK 0x00002000L
+#define SDMA_UTCL1_RD_STATUS__RQPG_REDO_FIFO_FULL_MASK 0x00004000L
+#define SDMA_UTCL1_RD_STATUS__RQPG_REQPAGE_FIFO_FULL_MASK 0x00008000L
+#define SDMA_UTCL1_RD_STATUS__RQPG_XNACK_FIFO_FULL_MASK 0x00010000L
+#define SDMA_UTCL1_RD_STATUS__RQPG_INVREQ_FIFO_FULL_MASK 0x00020000L
+#define SDMA_UTCL1_RD_STATUS__PAGE_FAULT_MASK 0x00040000L
+#define SDMA_UTCL1_RD_STATUS__PAGE_NULL_MASK 0x00080000L
+#define SDMA_UTCL1_RD_STATUS__REQL2_IDLE_MASK 0x00100000L
+#define SDMA_UTCL1_RD_STATUS__CE_L1_STALL_MASK 0x00200000L
+#define SDMA_UTCL1_RD_STATUS__NEXT_RD_VECTOR_MASK 0x03C00000L
+#define SDMA_UTCL1_RD_STATUS__MERGE_STATE_MASK 0x1C000000L
+#define SDMA_UTCL1_RD_STATUS__ADDR_RD_RTR_MASK 0x20000000L
+#define SDMA_UTCL1_RD_STATUS__WPTR_POLLING_MASK 0x40000000L
+#define SDMA_UTCL1_RD_STATUS__INVREQ_SIZE_MASK 0x80000000L
+//SDMA_UTCL1_WR_STATUS
+#define SDMA_UTCL1_WR_STATUS__RQMC_RET_ADDR_FIFO_EMPTY__SHIFT 0x0
+#define SDMA_UTCL1_WR_STATUS__RQMC_REQ_FIFO_EMPTY__SHIFT 0x1
+#define SDMA_UTCL1_WR_STATUS__RTPG_RET_BUF_EMPTY__SHIFT 0x2
+#define SDMA_UTCL1_WR_STATUS__RTPG_VADDR_FIFO_EMPTY__SHIFT 0x3
+#define SDMA_UTCL1_WR_STATUS__RQPG_HEAD_VIRT_FIFO_EMPTY__SHIFT 0x4
+#define SDMA_UTCL1_WR_STATUS__RQPG_REDO_FIFO_EMPTY__SHIFT 0x5
+#define SDMA_UTCL1_WR_STATUS__RQPG_REQPAGE_FIFO_EMPTY__SHIFT 0x6
+#define SDMA_UTCL1_WR_STATUS__REDO_ARR_EMPTY__SHIFT 0x7
+#define SDMA_UTCL1_WR_STATUS__RESERVED_8__SHIFT 0x8
+#define SDMA_UTCL1_WR_STATUS__RQMC_RET_ADDR_FIFO_FULL__SHIFT 0x9
+#define SDMA_UTCL1_WR_STATUS__RQMC_REQ_FIFO_FULL__SHIFT 0xa
+#define SDMA_UTCL1_WR_STATUS__RTPG_RET_BUF_FULL__SHIFT 0xb
+#define SDMA_UTCL1_WR_STATUS__RTPG_VADDR_FIFO_FULL__SHIFT 0xc
+#define SDMA_UTCL1_WR_STATUS__RQPG_HEAD_VIRT_FIFO_FULL__SHIFT 0xd
+#define SDMA_UTCL1_WR_STATUS__RQPG_REDO_FIFO_FULL__SHIFT 0xe
+#define SDMA_UTCL1_WR_STATUS__RQPG_REQPAGE_FIFO_FULL__SHIFT 0xf
+#define SDMA_UTCL1_WR_STATUS__REDO_ARR_FULL__SHIFT 0x10
+#define SDMA_UTCL1_WR_STATUS__RESERVED_17__SHIFT 0x11
+#define SDMA_UTCL1_WR_STATUS__PAGE_FAULT__SHIFT 0x12
+#define SDMA_UTCL1_WR_STATUS__PAGE_NULL__SHIFT 0x13
+#define SDMA_UTCL1_WR_STATUS__REQL2_IDLE__SHIFT 0x14
+#define SDMA_UTCL1_WR_STATUS__F32_WR_RTR__SHIFT 0x15
+#define SDMA_UTCL1_WR_STATUS__NEXT_WR_VECTOR__SHIFT 0x16
+#define SDMA_UTCL1_WR_STATUS__MERGE_STATE__SHIFT 0x19
+#define SDMA_UTCL1_WR_STATUS__RPTR_DATA_FIFO_EMPTY__SHIFT 0x1c
+#define SDMA_UTCL1_WR_STATUS__RPTR_DATA_FIFO_FULL__SHIFT 0x1d
+#define SDMA_UTCL1_WR_STATUS__WRREQ_DATA_FIFO_EMPTY__SHIFT 0x1e
+#define SDMA_UTCL1_WR_STATUS__WRREQ_DATA_FIFO_FULL__SHIFT 0x1f
+#define SDMA_UTCL1_WR_STATUS__RQMC_RET_ADDR_FIFO_EMPTY_MASK 0x00000001L
+#define SDMA_UTCL1_WR_STATUS__RQMC_REQ_FIFO_EMPTY_MASK 0x00000002L
+#define SDMA_UTCL1_WR_STATUS__RTPG_RET_BUF_EMPTY_MASK 0x00000004L
+#define SDMA_UTCL1_WR_STATUS__RTPG_VADDR_FIFO_EMPTY_MASK 0x00000008L
+#define SDMA_UTCL1_WR_STATUS__RQPG_HEAD_VIRT_FIFO_EMPTY_MASK 0x00000010L
+#define SDMA_UTCL1_WR_STATUS__RQPG_REDO_FIFO_EMPTY_MASK 0x00000020L
+#define SDMA_UTCL1_WR_STATUS__RQPG_REQPAGE_FIFO_EMPTY_MASK 0x00000040L
+#define SDMA_UTCL1_WR_STATUS__REDO_ARR_EMPTY_MASK 0x00000080L
+#define SDMA_UTCL1_WR_STATUS__RESERVED_8_MASK 0x00000100L
+#define SDMA_UTCL1_WR_STATUS__RQMC_RET_ADDR_FIFO_FULL_MASK 0x00000200L
+#define SDMA_UTCL1_WR_STATUS__RQMC_REQ_FIFO_FULL_MASK 0x00000400L
+#define SDMA_UTCL1_WR_STATUS__RTPG_RET_BUF_FULL_MASK 0x00000800L
+#define SDMA_UTCL1_WR_STATUS__RTPG_VADDR_FIFO_FULL_MASK 0x00001000L
+#define SDMA_UTCL1_WR_STATUS__RQPG_HEAD_VIRT_FIFO_FULL_MASK 0x00002000L
+#define SDMA_UTCL1_WR_STATUS__RQPG_REDO_FIFO_FULL_MASK 0x00004000L
+#define SDMA_UTCL1_WR_STATUS__RQPG_REQPAGE_FIFO_FULL_MASK 0x00008000L
+#define SDMA_UTCL1_WR_STATUS__REDO_ARR_FULL_MASK 0x00010000L
+#define SDMA_UTCL1_WR_STATUS__RESERVED_17_MASK 0x00020000L
+#define SDMA_UTCL1_WR_STATUS__PAGE_FAULT_MASK 0x00040000L
+#define SDMA_UTCL1_WR_STATUS__PAGE_NULL_MASK 0x00080000L
+#define SDMA_UTCL1_WR_STATUS__REQL2_IDLE_MASK 0x00100000L
+#define SDMA_UTCL1_WR_STATUS__F32_WR_RTR_MASK 0x00200000L
+#define SDMA_UTCL1_WR_STATUS__NEXT_WR_VECTOR_MASK 0x01C00000L
+#define SDMA_UTCL1_WR_STATUS__MERGE_STATE_MASK 0x0E000000L
+#define SDMA_UTCL1_WR_STATUS__RPTR_DATA_FIFO_EMPTY_MASK 0x10000000L
+#define SDMA_UTCL1_WR_STATUS__RPTR_DATA_FIFO_FULL_MASK 0x20000000L
+#define SDMA_UTCL1_WR_STATUS__WRREQ_DATA_FIFO_EMPTY_MASK 0x40000000L
+#define SDMA_UTCL1_WR_STATUS__WRREQ_DATA_FIFO_FULL_MASK 0x80000000L
+//SDMA_UTCL1_INV0
+#define SDMA_UTCL1_INV0__INV_MIDDLE__SHIFT 0x0
+#define SDMA_UTCL1_INV0__RD_TIMEOUT__SHIFT 0x1
+#define SDMA_UTCL1_INV0__WR_TIMEOUT__SHIFT 0x2
+#define SDMA_UTCL1_INV0__RD_IN_INVADR__SHIFT 0x3
+#define SDMA_UTCL1_INV0__WR_IN_INVADR__SHIFT 0x4
+#define SDMA_UTCL1_INV0__PAGE_NULL_SW__SHIFT 0x5
+#define SDMA_UTCL1_INV0__XNACK_IS_INVADR__SHIFT 0x6
+#define SDMA_UTCL1_INV0__INVREQ_ENABLE__SHIFT 0x7
+#define SDMA_UTCL1_INV0__NACK_TIMEOUT_SW__SHIFT 0x8
+#define SDMA_UTCL1_INV0__NFLUSH_INV_IDLE__SHIFT 0x9
+#define SDMA_UTCL1_INV0__FLUSH_INV_IDLE__SHIFT 0xa
+#define SDMA_UTCL1_INV0__INV_FLUSHTYPE__SHIFT 0xb
+#define SDMA_UTCL1_INV0__INV_VMID_VEC__SHIFT 0xc
+#define SDMA_UTCL1_INV0__INV_ADDR_HI__SHIFT 0x1c
+#define SDMA_UTCL1_INV0__INV_MIDDLE_MASK 0x00000001L
+#define SDMA_UTCL1_INV0__RD_TIMEOUT_MASK 0x00000002L
+#define SDMA_UTCL1_INV0__WR_TIMEOUT_MASK 0x00000004L
+#define SDMA_UTCL1_INV0__RD_IN_INVADR_MASK 0x00000008L
+#define SDMA_UTCL1_INV0__WR_IN_INVADR_MASK 0x00000010L
+#define SDMA_UTCL1_INV0__PAGE_NULL_SW_MASK 0x00000020L
+#define SDMA_UTCL1_INV0__XNACK_IS_INVADR_MASK 0x00000040L
+#define SDMA_UTCL1_INV0__INVREQ_ENABLE_MASK 0x00000080L
+#define SDMA_UTCL1_INV0__NACK_TIMEOUT_SW_MASK 0x00000100L
+#define SDMA_UTCL1_INV0__NFLUSH_INV_IDLE_MASK 0x00000200L
+#define SDMA_UTCL1_INV0__FLUSH_INV_IDLE_MASK 0x00000400L
+#define SDMA_UTCL1_INV0__INV_FLUSHTYPE_MASK 0x00000800L
+#define SDMA_UTCL1_INV0__INV_VMID_VEC_MASK 0x0FFFF000L
+#define SDMA_UTCL1_INV0__INV_ADDR_HI_MASK 0xF0000000L
+//SDMA_UTCL1_INV1
+#define SDMA_UTCL1_INV1__INV_ADDR_LO__SHIFT 0x0
+#define SDMA_UTCL1_INV1__INV_ADDR_LO_MASK 0xFFFFFFFFL
+//SDMA_UTCL1_INV2
+#define SDMA_UTCL1_INV2__INV_NFLUSH_VMID_VEC__SHIFT 0x0
+#define SDMA_UTCL1_INV2__INV_NFLUSH_VMID_VEC_MASK 0xFFFFFFFFL
+//SDMA_UTCL1_RD_XNACK0
+#define SDMA_UTCL1_RD_XNACK0__XNACK_ADDR_LO__SHIFT 0x0
+#define SDMA_UTCL1_RD_XNACK0__XNACK_ADDR_LO_MASK 0xFFFFFFFFL
+//SDMA_UTCL1_RD_XNACK1
+#define SDMA_UTCL1_RD_XNACK1__XNACK_ADDR_HI__SHIFT 0x0
+#define SDMA_UTCL1_RD_XNACK1__XNACK_VMID__SHIFT 0x4
+#define SDMA_UTCL1_RD_XNACK1__XNACK_VECTOR__SHIFT 0x8
+#define SDMA_UTCL1_RD_XNACK1__IS_XNACK__SHIFT 0x1a
+#define SDMA_UTCL1_RD_XNACK1__XNACK_ADDR_HI_MASK 0x0000000FL
+#define SDMA_UTCL1_RD_XNACK1__XNACK_VMID_MASK 0x000000F0L
+#define SDMA_UTCL1_RD_XNACK1__XNACK_VECTOR_MASK 0x03FFFF00L
+#define SDMA_UTCL1_RD_XNACK1__IS_XNACK_MASK 0x0C000000L
+//SDMA_UTCL1_WR_XNACK0
+#define SDMA_UTCL1_WR_XNACK0__XNACK_ADDR_LO__SHIFT 0x0
+#define SDMA_UTCL1_WR_XNACK0__XNACK_ADDR_LO_MASK 0xFFFFFFFFL
+//SDMA_UTCL1_WR_XNACK1
+#define SDMA_UTCL1_WR_XNACK1__XNACK_ADDR_HI__SHIFT 0x0
+#define SDMA_UTCL1_WR_XNACK1__XNACK_VMID__SHIFT 0x4
+#define SDMA_UTCL1_WR_XNACK1__XNACK_VECTOR__SHIFT 0x8
+#define SDMA_UTCL1_WR_XNACK1__IS_XNACK__SHIFT 0x1a
+#define SDMA_UTCL1_WR_XNACK1__XNACK_ADDR_HI_MASK 0x0000000FL
+#define SDMA_UTCL1_WR_XNACK1__XNACK_VMID_MASK 0x000000F0L
+#define SDMA_UTCL1_WR_XNACK1__XNACK_VECTOR_MASK 0x03FFFF00L
+#define SDMA_UTCL1_WR_XNACK1__IS_XNACK_MASK 0x0C000000L
+//SDMA_UTCL1_TIMEOUT
+#define SDMA_UTCL1_TIMEOUT__RD_XNACK_LIMIT__SHIFT 0x0
+#define SDMA_UTCL1_TIMEOUT__WR_XNACK_LIMIT__SHIFT 0x10
+#define SDMA_UTCL1_TIMEOUT__RD_XNACK_LIMIT_MASK 0x0000FFFFL
+#define SDMA_UTCL1_TIMEOUT__WR_XNACK_LIMIT_MASK 0xFFFF0000L
+//SDMA_UTCL1_PAGE
+#define SDMA_UTCL1_PAGE__VM_HOLE__SHIFT 0x0
+#define SDMA_UTCL1_PAGE__REQ_TYPE__SHIFT 0x1
+#define SDMA_UTCL1_PAGE__TMZ_ENABLE__SHIFT 0x5
+#define SDMA_UTCL1_PAGE__USE_MTYPE__SHIFT 0x6
+#define SDMA_UTCL1_PAGE__USE_PT_SNOOP__SHIFT 0x9
+#define SDMA_UTCL1_PAGE__LLC_NOALLOC__SHIFT 0xa
+#define SDMA_UTCL1_PAGE__VM_HOLE_MASK 0x00000001L
+#define SDMA_UTCL1_PAGE__REQ_TYPE_MASK 0x0000001EL
+#define SDMA_UTCL1_PAGE__TMZ_ENABLE_MASK 0x00000020L
+#define SDMA_UTCL1_PAGE__USE_MTYPE_MASK 0x000001C0L
+#define SDMA_UTCL1_PAGE__USE_PT_SNOOP_MASK 0x00000200L
+#define SDMA_UTCL1_PAGE__LLC_NOALLOC_MASK 0x00000400L
+//SDMA_POWER_CNTL_IDLE
+#define SDMA_POWER_CNTL_IDLE__DELAY0__SHIFT 0x0
+#define SDMA_POWER_CNTL_IDLE__DELAY1__SHIFT 0x10
+#define SDMA_POWER_CNTL_IDLE__DELAY2__SHIFT 0x18
+#define SDMA_POWER_CNTL_IDLE__DELAY0_MASK 0x0000FFFFL
+#define SDMA_POWER_CNTL_IDLE__DELAY1_MASK 0x00FF0000L
+#define SDMA_POWER_CNTL_IDLE__DELAY2_MASK 0xFF000000L
+//SDMA_RELAX_ORDERING_LUT
+#define SDMA_RELAX_ORDERING_LUT__RESERVED0__SHIFT 0x0
+#define SDMA_RELAX_ORDERING_LUT__COPY__SHIFT 0x1
+#define SDMA_RELAX_ORDERING_LUT__WRITE__SHIFT 0x2
+#define SDMA_RELAX_ORDERING_LUT__RESERVED3__SHIFT 0x3
+#define SDMA_RELAX_ORDERING_LUT__RESERVED4__SHIFT 0x4
+#define SDMA_RELAX_ORDERING_LUT__FENCE__SHIFT 0x5
+#define SDMA_RELAX_ORDERING_LUT__RESERVED76__SHIFT 0x6
+#define SDMA_RELAX_ORDERING_LUT__POLL_MEM__SHIFT 0x8
+#define SDMA_RELAX_ORDERING_LUT__COND_EXE__SHIFT 0x9
+#define SDMA_RELAX_ORDERING_LUT__ATOMIC__SHIFT 0xa
+#define SDMA_RELAX_ORDERING_LUT__CONST_FILL__SHIFT 0xb
+#define SDMA_RELAX_ORDERING_LUT__PTEPDE__SHIFT 0xc
+#define SDMA_RELAX_ORDERING_LUT__TIMESTAMP__SHIFT 0xd
+#define SDMA_RELAX_ORDERING_LUT__RESERVED__SHIFT 0xe
+#define SDMA_RELAX_ORDERING_LUT__WORLD_SWITCH__SHIFT 0x1b
+#define SDMA_RELAX_ORDERING_LUT__RPTR_WRB__SHIFT 0x1c
+#define SDMA_RELAX_ORDERING_LUT__WPTR_POLL__SHIFT 0x1d
+#define SDMA_RELAX_ORDERING_LUT__IB_FETCH__SHIFT 0x1e
+#define SDMA_RELAX_ORDERING_LUT__RB_FETCH__SHIFT 0x1f
+#define SDMA_RELAX_ORDERING_LUT__RESERVED0_MASK 0x00000001L
+#define SDMA_RELAX_ORDERING_LUT__COPY_MASK 0x00000002L
+#define SDMA_RELAX_ORDERING_LUT__WRITE_MASK 0x00000004L
+#define SDMA_RELAX_ORDERING_LUT__RESERVED3_MASK 0x00000008L
+#define SDMA_RELAX_ORDERING_LUT__RESERVED4_MASK 0x00000010L
+#define SDMA_RELAX_ORDERING_LUT__FENCE_MASK 0x00000020L
+#define SDMA_RELAX_ORDERING_LUT__RESERVED76_MASK 0x000000C0L
+#define SDMA_RELAX_ORDERING_LUT__POLL_MEM_MASK 0x00000100L
+#define SDMA_RELAX_ORDERING_LUT__COND_EXE_MASK 0x00000200L
+#define SDMA_RELAX_ORDERING_LUT__ATOMIC_MASK 0x00000400L
+#define SDMA_RELAX_ORDERING_LUT__CONST_FILL_MASK 0x00000800L
+#define SDMA_RELAX_ORDERING_LUT__PTEPDE_MASK 0x00001000L
+#define SDMA_RELAX_ORDERING_LUT__TIMESTAMP_MASK 0x00002000L
+#define SDMA_RELAX_ORDERING_LUT__RESERVED_MASK 0x07FFC000L
+#define SDMA_RELAX_ORDERING_LUT__WORLD_SWITCH_MASK 0x08000000L
+#define SDMA_RELAX_ORDERING_LUT__RPTR_WRB_MASK 0x10000000L
+#define SDMA_RELAX_ORDERING_LUT__WPTR_POLL_MASK 0x20000000L
+#define SDMA_RELAX_ORDERING_LUT__IB_FETCH_MASK 0x40000000L
+#define SDMA_RELAX_ORDERING_LUT__RB_FETCH_MASK 0x80000000L
+//SDMA_CHICKEN_BITS_2
+#define SDMA_CHICKEN_BITS_2__F32_CMD_PROC_DELAY__SHIFT 0x0
+#define SDMA_CHICKEN_BITS_2__F32_SEND_POSTCODE_EN__SHIFT 0x4
+#define SDMA_CHICKEN_BITS_2__F32_CMD_PROC_DELAY_MASK 0x0000000FL
+#define SDMA_CHICKEN_BITS_2__F32_SEND_POSTCODE_EN_MASK 0x00000010L
+//SDMA_STATUS3_REG
+#define SDMA_STATUS3_REG__CMD_OP_STATUS__SHIFT 0x0
+#define SDMA_STATUS3_REG__PREV_VM_CMD__SHIFT 0x10
+#define SDMA_STATUS3_REG__EXCEPTION_IDLE__SHIFT 0x14
+#define SDMA_STATUS3_REG__QUEUE_ID_MATCH__SHIFT 0x15
+#define SDMA_STATUS3_REG__INT_QUEUE_ID__SHIFT 0x16
+#define SDMA_STATUS3_REG__CMD_OP_STATUS_MASK 0x0000FFFFL
+#define SDMA_STATUS3_REG__PREV_VM_CMD_MASK 0x000F0000L
+#define SDMA_STATUS3_REG__EXCEPTION_IDLE_MASK 0x00100000L
+#define SDMA_STATUS3_REG__QUEUE_ID_MATCH_MASK 0x00200000L
+#define SDMA_STATUS3_REG__INT_QUEUE_ID_MASK 0x03C00000L
+//SDMA_PHYSICAL_ADDR_LO
+#define SDMA_PHYSICAL_ADDR_LO__D_VALID__SHIFT 0x0
+#define SDMA_PHYSICAL_ADDR_LO__DIRTY__SHIFT 0x1
+#define SDMA_PHYSICAL_ADDR_LO__PHY_VALID__SHIFT 0x2
+#define SDMA_PHYSICAL_ADDR_LO__ADDR__SHIFT 0xc
+#define SDMA_PHYSICAL_ADDR_LO__D_VALID_MASK 0x00000001L
+#define SDMA_PHYSICAL_ADDR_LO__DIRTY_MASK 0x00000002L
+#define SDMA_PHYSICAL_ADDR_LO__PHY_VALID_MASK 0x00000004L
+#define SDMA_PHYSICAL_ADDR_LO__ADDR_MASK 0xFFFFF000L
+//SDMA_PHYSICAL_ADDR_HI
+#define SDMA_PHYSICAL_ADDR_HI__ADDR__SHIFT 0x0
+#define SDMA_PHYSICAL_ADDR_HI__ADDR_MASK 0x0000FFFFL
+//SDMA_PHASE2_QUANTUM
+#define SDMA_PHASE2_QUANTUM__UNIT__SHIFT 0x0
+#define SDMA_PHASE2_QUANTUM__VALUE__SHIFT 0x8
+#define SDMA_PHASE2_QUANTUM__PREFER__SHIFT 0x1e
+#define SDMA_PHASE2_QUANTUM__UNIT_MASK 0x0000000FL
+#define SDMA_PHASE2_QUANTUM__VALUE_MASK 0x00FFFF00L
+#define SDMA_PHASE2_QUANTUM__PREFER_MASK 0x40000000L
+//SDMA_ERROR_LOG
+#define SDMA_ERROR_LOG__OVERRIDE__SHIFT 0x0
+#define SDMA_ERROR_LOG__STATUS__SHIFT 0x10
+#define SDMA_ERROR_LOG__OVERRIDE_MASK 0x0000FFFFL
+#define SDMA_ERROR_LOG__STATUS_MASK 0xFFFF0000L
+//SDMA_PUB_DUMMY_REG0
+#define SDMA_PUB_DUMMY_REG0__VALUE__SHIFT 0x0
+#define SDMA_PUB_DUMMY_REG0__VALUE_MASK 0xFFFFFFFFL
+//SDMA_PUB_DUMMY_REG1
+#define SDMA_PUB_DUMMY_REG1__VALUE__SHIFT 0x0
+#define SDMA_PUB_DUMMY_REG1__VALUE_MASK 0xFFFFFFFFL
+//SDMA_PUB_DUMMY_REG2
+#define SDMA_PUB_DUMMY_REG2__VALUE__SHIFT 0x0
+#define SDMA_PUB_DUMMY_REG2__VALUE_MASK 0xFFFFFFFFL
+//SDMA_PUB_DUMMY_REG3
+#define SDMA_PUB_DUMMY_REG3__VALUE__SHIFT 0x0
+#define SDMA_PUB_DUMMY_REG3__VALUE_MASK 0xFFFFFFFFL
+//SDMA_F32_COUNTER
+#define SDMA_F32_COUNTER__VALUE__SHIFT 0x0
+#define SDMA_F32_COUNTER__VALUE_MASK 0xFFFFFFFFL
+//SDMA_PERFCNT_PERFCOUNTER0_CFG
+#define SDMA_PERFCNT_PERFCOUNTER0_CFG__PERF_SEL__SHIFT 0x0
+#define SDMA_PERFCNT_PERFCOUNTER0_CFG__PERF_SEL_END__SHIFT 0x8
+#define SDMA_PERFCNT_PERFCOUNTER0_CFG__PERF_MODE__SHIFT 0x18
+#define SDMA_PERFCNT_PERFCOUNTER0_CFG__ENABLE__SHIFT 0x1c
+#define SDMA_PERFCNT_PERFCOUNTER0_CFG__CLEAR__SHIFT 0x1d
+#define SDMA_PERFCNT_PERFCOUNTER0_CFG__PERF_SEL_MASK 0x000000FFL
+#define SDMA_PERFCNT_PERFCOUNTER0_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define SDMA_PERFCNT_PERFCOUNTER0_CFG__PERF_MODE_MASK 0x0F000000L
+#define SDMA_PERFCNT_PERFCOUNTER0_CFG__ENABLE_MASK 0x10000000L
+#define SDMA_PERFCNT_PERFCOUNTER0_CFG__CLEAR_MASK 0x20000000L
+//SDMA_PERFCNT_PERFCOUNTER1_CFG
+#define SDMA_PERFCNT_PERFCOUNTER1_CFG__PERF_SEL__SHIFT 0x0
+#define SDMA_PERFCNT_PERFCOUNTER1_CFG__PERF_SEL_END__SHIFT 0x8
+#define SDMA_PERFCNT_PERFCOUNTER1_CFG__PERF_MODE__SHIFT 0x18
+#define SDMA_PERFCNT_PERFCOUNTER1_CFG__ENABLE__SHIFT 0x1c
+#define SDMA_PERFCNT_PERFCOUNTER1_CFG__CLEAR__SHIFT 0x1d
+#define SDMA_PERFCNT_PERFCOUNTER1_CFG__PERF_SEL_MASK 0x000000FFL
+#define SDMA_PERFCNT_PERFCOUNTER1_CFG__PERF_SEL_END_MASK 0x0000FF00L
+#define SDMA_PERFCNT_PERFCOUNTER1_CFG__PERF_MODE_MASK 0x0F000000L
+#define SDMA_PERFCNT_PERFCOUNTER1_CFG__ENABLE_MASK 0x10000000L
+#define SDMA_PERFCNT_PERFCOUNTER1_CFG__CLEAR_MASK 0x20000000L
+//SDMA_PERFCNT_PERFCOUNTER_RSLT_CNTL
+#define SDMA_PERFCNT_PERFCOUNTER_RSLT_CNTL__PERF_COUNTER_SELECT__SHIFT 0x0
+#define SDMA_PERFCNT_PERFCOUNTER_RSLT_CNTL__START_TRIGGER__SHIFT 0x8
+#define SDMA_PERFCNT_PERFCOUNTER_RSLT_CNTL__STOP_TRIGGER__SHIFT 0x10
+#define SDMA_PERFCNT_PERFCOUNTER_RSLT_CNTL__ENABLE_ANY__SHIFT 0x18
+#define SDMA_PERFCNT_PERFCOUNTER_RSLT_CNTL__CLEAR_ALL__SHIFT 0x19
+#define SDMA_PERFCNT_PERFCOUNTER_RSLT_CNTL__STOP_ALL_ON_SATURATE__SHIFT 0x1a
+#define SDMA_PERFCNT_PERFCOUNTER_RSLT_CNTL__PERF_COUNTER_SELECT_MASK 0x0000000FL
+#define SDMA_PERFCNT_PERFCOUNTER_RSLT_CNTL__START_TRIGGER_MASK 0x0000FF00L
+#define SDMA_PERFCNT_PERFCOUNTER_RSLT_CNTL__STOP_TRIGGER_MASK 0x00FF0000L
+#define SDMA_PERFCNT_PERFCOUNTER_RSLT_CNTL__ENABLE_ANY_MASK 0x01000000L
+#define SDMA_PERFCNT_PERFCOUNTER_RSLT_CNTL__CLEAR_ALL_MASK 0x02000000L
+#define SDMA_PERFCNT_PERFCOUNTER_RSLT_CNTL__STOP_ALL_ON_SATURATE_MASK 0x04000000L
+//SDMA_PERFCNT_MISC_CNTL
+#define SDMA_PERFCNT_MISC_CNTL__CMD_OP__SHIFT 0x0
+#define SDMA_PERFCNT_MISC_CNTL__MMHUB_REQ_EVENT_SELECT__SHIFT 0x10
+#define SDMA_PERFCNT_MISC_CNTL__CMD_OP_MASK 0x0000FFFFL
+#define SDMA_PERFCNT_MISC_CNTL__MMHUB_REQ_EVENT_SELECT_MASK 0x00010000L
+//SDMA_PERFCNT_PERFCOUNTER_LO
+#define SDMA_PERFCNT_PERFCOUNTER_LO__COUNTER_LO__SHIFT 0x0
+#define SDMA_PERFCNT_PERFCOUNTER_LO__COUNTER_LO_MASK 0xFFFFFFFFL
+//SDMA_PERFCNT_PERFCOUNTER_HI
+#define SDMA_PERFCNT_PERFCOUNTER_HI__COUNTER_HI__SHIFT 0x0
+#define SDMA_PERFCNT_PERFCOUNTER_HI__COMPARE_VALUE__SHIFT 0x10
+#define SDMA_PERFCNT_PERFCOUNTER_HI__COUNTER_HI_MASK 0x0000FFFFL
+#define SDMA_PERFCNT_PERFCOUNTER_HI__COMPARE_VALUE_MASK 0xFFFF0000L
+//SDMA_CRD_CNTL
+#define SDMA_CRD_CNTL__DRM_CREDIT__SHIFT 0x0
+#define SDMA_CRD_CNTL__MC_WRREQ_CREDIT__SHIFT 0x7
+#define SDMA_CRD_CNTL__MC_RDREQ_CREDIT__SHIFT 0xd
+#define SDMA_CRD_CNTL__DRM_CREDIT_MASK 0x0000007FL
+#define SDMA_CRD_CNTL__MC_WRREQ_CREDIT_MASK 0x00001F80L
+#define SDMA_CRD_CNTL__MC_RDREQ_CREDIT_MASK 0x0007E000L
+//SDMA_GPU_IOV_VIOLATION_LOG
+#define SDMA_GPU_IOV_VIOLATION_LOG__VIOLATION_STATUS__SHIFT 0x0
+#define SDMA_GPU_IOV_VIOLATION_LOG__MULTIPLE_VIOLATION_STATUS__SHIFT 0x1
+#define SDMA_GPU_IOV_VIOLATION_LOG__ADDRESS__SHIFT 0x2
+#define SDMA_GPU_IOV_VIOLATION_LOG__WRITE_OPERATION__SHIFT 0x14
+#define SDMA_GPU_IOV_VIOLATION_LOG__VF__SHIFT 0x15
+#define SDMA_GPU_IOV_VIOLATION_LOG__VFID__SHIFT 0x16
+#define SDMA_GPU_IOV_VIOLATION_LOG__VIOLATION_STATUS_MASK 0x00000001L
+#define SDMA_GPU_IOV_VIOLATION_LOG__MULTIPLE_VIOLATION_STATUS_MASK 0x00000002L
+#define SDMA_GPU_IOV_VIOLATION_LOG__ADDRESS_MASK 0x000FFFFCL
+#define SDMA_GPU_IOV_VIOLATION_LOG__WRITE_OPERATION_MASK 0x00100000L
+#define SDMA_GPU_IOV_VIOLATION_LOG__VF_MASK 0x00200000L
+#define SDMA_GPU_IOV_VIOLATION_LOG__VFID_MASK 0x03C00000L
+//SDMA_ULV_CNTL
+#define SDMA_ULV_CNTL__HYSTERESIS__SHIFT 0x0
+#define SDMA_ULV_CNTL__ENTER_ULV_INT_CLR__SHIFT 0x1b
+#define SDMA_ULV_CNTL__EXIT_ULV_INT_CLR__SHIFT 0x1c
+#define SDMA_ULV_CNTL__ENTER_ULV_INT__SHIFT 0x1d
+#define SDMA_ULV_CNTL__EXIT_ULV_INT__SHIFT 0x1e
+#define SDMA_ULV_CNTL__ULV_STATUS__SHIFT 0x1f
+#define SDMA_ULV_CNTL__HYSTERESIS_MASK 0x0000001FL
+#define SDMA_ULV_CNTL__ENTER_ULV_INT_CLR_MASK 0x08000000L
+#define SDMA_ULV_CNTL__EXIT_ULV_INT_CLR_MASK 0x10000000L
+#define SDMA_ULV_CNTL__ENTER_ULV_INT_MASK 0x20000000L
+#define SDMA_ULV_CNTL__EXIT_ULV_INT_MASK 0x40000000L
+#define SDMA_ULV_CNTL__ULV_STATUS_MASK 0x80000000L
+//SDMA_EA_DBIT_ADDR_DATA
+#define SDMA_EA_DBIT_ADDR_DATA__VALUE__SHIFT 0x0
+#define SDMA_EA_DBIT_ADDR_DATA__VALUE_MASK 0xFFFFFFFFL
+//SDMA_EA_DBIT_ADDR_INDEX
+#define SDMA_EA_DBIT_ADDR_INDEX__VALUE__SHIFT 0x0
+#define SDMA_EA_DBIT_ADDR_INDEX__VALUE_MASK 0x00000007L
+//SDMA_GPU_IOV_VIOLATION_LOG2
+#define SDMA_GPU_IOV_VIOLATION_LOG2__INITIATOR_ID__SHIFT 0x0
+#define SDMA_GPU_IOV_VIOLATION_LOG2__INITIATOR_ID_MASK 0x000003FFL
+//SDMA_STATUS4_REG
+#define SDMA_STATUS4_REG__IDLE__SHIFT 0x0
+#define SDMA_STATUS4_REG__IH_OUTSTANDING__SHIFT 0x2
+#define SDMA_STATUS4_REG__SEM_OUTSTANDING__SHIFT 0x3
+#define SDMA_STATUS4_REG__MMHUB_RD_OUTSTANDING__SHIFT 0x4
+#define SDMA_STATUS4_REG__MMHUB_WR_OUTSTANDING__SHIFT 0x5
+#define SDMA_STATUS4_REG__UTCL2_RD_OUTSTANDING__SHIFT 0x6
+#define SDMA_STATUS4_REG__UTCL2_WR_OUTSTANDING__SHIFT 0x7
+#define SDMA_STATUS4_REG__REG_POLLING__SHIFT 0x8
+#define SDMA_STATUS4_REG__MEM_POLLING__SHIFT 0x9
+#define SDMA_STATUS4_REG__UTCL2_RD_XNACK__SHIFT 0xa
+#define SDMA_STATUS4_REG__UTCL2_WR_XNACK__SHIFT 0xc
+#define SDMA_STATUS4_REG__ACTIVE_QUEUE_ID__SHIFT 0xe
+#define SDMA_STATUS4_REG__SRIOV_WATING_RLCV_CMD__SHIFT 0x12
+#define SDMA_STATUS4_REG__SRIOV_SDMA_EXECUTING_CMD__SHIFT 0x13
+#define SDMA_STATUS4_REG__VM_HOLE_STATUS__SHIFT 0x14
+#define SDMA_STATUS4_REG__IDLE_MASK 0x00000001L
+#define SDMA_STATUS4_REG__IH_OUTSTANDING_MASK 0x00000004L
+#define SDMA_STATUS4_REG__SEM_OUTSTANDING_MASK 0x00000008L
+#define SDMA_STATUS4_REG__MMHUB_RD_OUTSTANDING_MASK 0x00000010L
+#define SDMA_STATUS4_REG__MMHUB_WR_OUTSTANDING_MASK 0x00000020L
+#define SDMA_STATUS4_REG__UTCL2_RD_OUTSTANDING_MASK 0x00000040L
+#define SDMA_STATUS4_REG__UTCL2_WR_OUTSTANDING_MASK 0x00000080L
+#define SDMA_STATUS4_REG__REG_POLLING_MASK 0x00000100L
+#define SDMA_STATUS4_REG__MEM_POLLING_MASK 0x00000200L
+#define SDMA_STATUS4_REG__UTCL2_RD_XNACK_MASK 0x00000C00L
+#define SDMA_STATUS4_REG__UTCL2_WR_XNACK_MASK 0x00003000L
+#define SDMA_STATUS4_REG__ACTIVE_QUEUE_ID_MASK 0x0003C000L
+#define SDMA_STATUS4_REG__SRIOV_WATING_RLCV_CMD_MASK 0x00040000L
+#define SDMA_STATUS4_REG__SRIOV_SDMA_EXECUTING_CMD_MASK 0x00080000L
+#define SDMA_STATUS4_REG__VM_HOLE_STATUS_MASK 0x00100000L
+//SDMA_SCRATCH_RAM_DATA
+#define SDMA_SCRATCH_RAM_DATA__DATA__SHIFT 0x0
+#define SDMA_SCRATCH_RAM_DATA__DATA_MASK 0xFFFFFFFFL
+//SDMA_SCRATCH_RAM_ADDR
+#define SDMA_SCRATCH_RAM_ADDR__ADDR__SHIFT 0x0
+#define SDMA_SCRATCH_RAM_ADDR__ADDR_MASK 0x0000007FL
+//SDMA_CE_CTRL
+#define SDMA_CE_CTRL__RD_LUT_WATERMARK__SHIFT 0x0
+#define SDMA_CE_CTRL__RD_LUT_DEPTH__SHIFT 0x3
+#define SDMA_CE_CTRL__WR_AFIFO_WATERMARK__SHIFT 0x5
+#define SDMA_CE_CTRL__RESERVED__SHIFT 0x8
+#define SDMA_CE_CTRL__RD_LUT_WATERMARK_MASK 0x00000007L
+#define SDMA_CE_CTRL__RD_LUT_DEPTH_MASK 0x00000018L
+#define SDMA_CE_CTRL__WR_AFIFO_WATERMARK_MASK 0x000000E0L
+#define SDMA_CE_CTRL__RESERVED_MASK 0xFFFFFF00L
+//SDMA_RAS_STATUS
+#define SDMA_RAS_STATUS__RB_FETCH_ECC__SHIFT 0x0
+#define SDMA_RAS_STATUS__IB_FETCH_ECC__SHIFT 0x1
+#define SDMA_RAS_STATUS__F32_DATA_ECC__SHIFT 0x2
+#define SDMA_RAS_STATUS__WPTR_ATOMIC_ECC__SHIFT 0x3
+#define SDMA_RAS_STATUS__COPY_DATA_ECC__SHIFT 0x4
+#define SDMA_RAS_STATUS__SRAM_ECC__SHIFT 0x5
+#define SDMA_RAS_STATUS__RB_FETCH_NACK_GEN_ERR__SHIFT 0x8
+#define SDMA_RAS_STATUS__IB_FETCH_NACK_GEN_ERR__SHIFT 0x9
+#define SDMA_RAS_STATUS__F32_DATA_NACK_GEN_ERR__SHIFT 0xa
+#define SDMA_RAS_STATUS__COPY_DATA_NACK_GEN_ERR__SHIFT 0xb
+#define SDMA_RAS_STATUS__WRRET_DATA_NACK_GEN_ERR__SHIFT 0xc
+#define SDMA_RAS_STATUS__WPTR_RPTR_ATOMIC_NACK_GEN_ERR__SHIFT 0xd
+#define SDMA_RAS_STATUS__ECC_PWRMGT_INT_BUSY__SHIFT 0xe
+#define SDMA_RAS_STATUS__RB_FETCH_ECC_MASK 0x00000001L
+#define SDMA_RAS_STATUS__IB_FETCH_ECC_MASK 0x00000002L
+#define SDMA_RAS_STATUS__F32_DATA_ECC_MASK 0x00000004L
+#define SDMA_RAS_STATUS__WPTR_ATOMIC_ECC_MASK 0x00000008L
+#define SDMA_RAS_STATUS__COPY_DATA_ECC_MASK 0x00000010L
+#define SDMA_RAS_STATUS__SRAM_ECC_MASK 0x00000020L
+#define SDMA_RAS_STATUS__RB_FETCH_NACK_GEN_ERR_MASK 0x00000100L
+#define SDMA_RAS_STATUS__IB_FETCH_NACK_GEN_ERR_MASK 0x00000200L
+#define SDMA_RAS_STATUS__F32_DATA_NACK_GEN_ERR_MASK 0x00000400L
+#define SDMA_RAS_STATUS__COPY_DATA_NACK_GEN_ERR_MASK 0x00000800L
+#define SDMA_RAS_STATUS__WRRET_DATA_NACK_GEN_ERR_MASK 0x00001000L
+#define SDMA_RAS_STATUS__WPTR_RPTR_ATOMIC_NACK_GEN_ERR_MASK 0x00002000L
+#define SDMA_RAS_STATUS__ECC_PWRMGT_INT_BUSY_MASK 0x00004000L
+//SDMA_CLK_STATUS
+#define SDMA_CLK_STATUS__DYN_CLK__SHIFT 0x0
+#define SDMA_CLK_STATUS__PTR_CLK__SHIFT 0x1
+#define SDMA_CLK_STATUS__REG_CLK__SHIFT 0x2
+#define SDMA_CLK_STATUS__F32_CLK__SHIFT 0x3
+#define SDMA_CLK_STATUS__CE_CLK__SHIFT 0x4
+#define SDMA_CLK_STATUS__PERF_CLK__SHIFT 0x5
+#define SDMA_CLK_STATUS__DYN_CLK_MASK 0x00000001L
+#define SDMA_CLK_STATUS__PTR_CLK_MASK 0x00000002L
+#define SDMA_CLK_STATUS__REG_CLK_MASK 0x00000004L
+#define SDMA_CLK_STATUS__F32_CLK_MASK 0x00000008L
+#define SDMA_CLK_STATUS__CE_CLK_MASK 0x00000010L
+#define SDMA_CLK_STATUS__PERF_CLK_MASK 0x00000020L
+//SDMA_POWER_CNTL
+#define SDMA_POWER_CNTL__PG_CNTL_ENABLE__SHIFT 0x0
+#define SDMA_POWER_CNTL__EXT_PG_POWER_ON_REQ__SHIFT 0x1
+#define SDMA_POWER_CNTL__EXT_PG_POWER_OFF_REQ__SHIFT 0x2
+#define SDMA_POWER_CNTL__ON_OFF_CONDITION_HOLD_TIME__SHIFT 0x3
+#define SDMA_POWER_CNTL__MEM_POWER_OVERRIDE__SHIFT 0x8
+#define SDMA_POWER_CNTL__MEM_POWER_LS_EN__SHIFT 0x9
+#define SDMA_POWER_CNTL__MEM_POWER_DS_EN__SHIFT 0xa
+#define SDMA_POWER_CNTL__MEM_POWER_SD_EN__SHIFT 0xb
+#define SDMA_POWER_CNTL__MEM_POWER_DELAY__SHIFT 0xc
+#define SDMA_POWER_CNTL__ON_OFF_STATUS_DURATION_TIME__SHIFT 0x1a
+#define SDMA_POWER_CNTL__PG_CNTL_ENABLE_MASK 0x00000001L
+#define SDMA_POWER_CNTL__EXT_PG_POWER_ON_REQ_MASK 0x00000002L
+#define SDMA_POWER_CNTL__EXT_PG_POWER_OFF_REQ_MASK 0x00000004L
+#define SDMA_POWER_CNTL__ON_OFF_CONDITION_HOLD_TIME_MASK 0x000000F8L
+#define SDMA_POWER_CNTL__MEM_POWER_OVERRIDE_MASK 0x00000100L
+#define SDMA_POWER_CNTL__MEM_POWER_LS_EN_MASK 0x00000200L
+#define SDMA_POWER_CNTL__MEM_POWER_DS_EN_MASK 0x00000400L
+#define SDMA_POWER_CNTL__MEM_POWER_SD_EN_MASK 0x00000800L
+#define SDMA_POWER_CNTL__MEM_POWER_DELAY_MASK 0x003FF000L
+#define SDMA_POWER_CNTL__ON_OFF_STATUS_DURATION_TIME_MASK 0xFC000000L
+//SDMA_CLK_CTRL
+#define SDMA_CLK_CTRL__ON_DELAY__SHIFT 0x0
+#define SDMA_CLK_CTRL__OFF_HYSTERESIS__SHIFT 0x4
+#define SDMA_CLK_CTRL__RESERVED__SHIFT 0xc
+#define SDMA_CLK_CTRL__SOFT_OVERRIDE7__SHIFT 0x18
+#define SDMA_CLK_CTRL__SOFT_OVERRIDE6__SHIFT 0x19
+#define SDMA_CLK_CTRL__SOFT_OVERRIDE5__SHIFT 0x1a
+#define SDMA_CLK_CTRL__SOFT_OVERRIDE4__SHIFT 0x1b
+#define SDMA_CLK_CTRL__SOFT_OVERRIDE3__SHIFT 0x1c
+#define SDMA_CLK_CTRL__SOFT_OVERRIDE2__SHIFT 0x1d
+#define SDMA_CLK_CTRL__SOFT_OVERRIDE1__SHIFT 0x1e
+#define SDMA_CLK_CTRL__SOFT_OVERRIDE0__SHIFT 0x1f
+#define SDMA_CLK_CTRL__ON_DELAY_MASK 0x0000000FL
+#define SDMA_CLK_CTRL__OFF_HYSTERESIS_MASK 0x00000FF0L
+#define SDMA_CLK_CTRL__RESERVED_MASK 0x00FFF000L
+#define SDMA_CLK_CTRL__SOFT_OVERRIDE7_MASK 0x01000000L
+#define SDMA_CLK_CTRL__SOFT_OVERRIDE6_MASK 0x02000000L
+#define SDMA_CLK_CTRL__SOFT_OVERRIDE5_MASK 0x04000000L
+#define SDMA_CLK_CTRL__SOFT_OVERRIDE4_MASK 0x08000000L
+#define SDMA_CLK_CTRL__SOFT_OVERRIDE3_MASK 0x10000000L
+#define SDMA_CLK_CTRL__SOFT_OVERRIDE2_MASK 0x20000000L
+#define SDMA_CLK_CTRL__SOFT_OVERRIDE1_MASK 0x40000000L
+#define SDMA_CLK_CTRL__SOFT_OVERRIDE0_MASK 0x80000000L
+//SDMA_CNTL
+#define SDMA_CNTL__TRAP_ENABLE__SHIFT 0x0
+#define SDMA_CNTL__UTC_L1_ENABLE__SHIFT 0x1
+#define SDMA_CNTL__SEM_WAIT_INT_ENABLE__SHIFT 0x2
+#define SDMA_CNTL__DATA_SWAP_ENABLE__SHIFT 0x3
+#define SDMA_CNTL__FENCE_SWAP_ENABLE__SHIFT 0x4
+#define SDMA_CNTL__MIDCMD_PREEMPT_ENABLE__SHIFT 0x5
+#define SDMA_CNTL__MIDCMD_EXPIRE_ENABLE__SHIFT 0x6
+#define SDMA_CNTL__REG_WRITE_PROTECT_INT_ENABLE__SHIFT 0x7
+#define SDMA_CNTL__INVALID_DOORBELL_INT_ENABLE__SHIFT 0x8
+#define SDMA_CNTL__VM_HOLE_INT_ENABLE__SHIFT 0x9
+#define SDMA_CNTL__DRAM_ECC_INT_ENABLE__SHIFT 0xa
+#define SDMA_CNTL__PAGE_RETRY_TIMEOUT_INT_ENABLE__SHIFT 0xb
+#define SDMA_CNTL__PAGE_NULL_INT_ENABLE__SHIFT 0xc
+#define SDMA_CNTL__PAGE_FAULT_INT_ENABLE__SHIFT 0xd
+#define SDMA_CNTL__NACK_GEN_ERR_INT_ENABLE__SHIFT 0xe
+#define SDMA_CNTL__MIDCMD_WORLDSWITCH_ENABLE__SHIFT 0x11
+#define SDMA_CNTL__AUTO_CTXSW_ENABLE__SHIFT 0x12
+#define SDMA_CNTL__DRM_RESTORE_ENABLE__SHIFT 0x13
+#define SDMA_CNTL__CTXEMPTY_INT_ENABLE__SHIFT 0x1c
+#define SDMA_CNTL__FROZEN_INT_ENABLE__SHIFT 0x1d
+#define SDMA_CNTL__IB_PREEMPT_INT_ENABLE__SHIFT 0x1e
+#define SDMA_CNTL__RB_PREEMPT_INT_ENABLE__SHIFT 0x1f
+#define SDMA_CNTL__TRAP_ENABLE_MASK 0x00000001L
+#define SDMA_CNTL__UTC_L1_ENABLE_MASK 0x00000002L
+#define SDMA_CNTL__SEM_WAIT_INT_ENABLE_MASK 0x00000004L
+#define SDMA_CNTL__DATA_SWAP_ENABLE_MASK 0x00000008L
+#define SDMA_CNTL__FENCE_SWAP_ENABLE_MASK 0x00000010L
+#define SDMA_CNTL__MIDCMD_PREEMPT_ENABLE_MASK 0x00000020L
+#define SDMA_CNTL__MIDCMD_EXPIRE_ENABLE_MASK 0x00000040L
+#define SDMA_CNTL__REG_WRITE_PROTECT_INT_ENABLE_MASK 0x00000080L
+#define SDMA_CNTL__INVALID_DOORBELL_INT_ENABLE_MASK 0x00000100L
+#define SDMA_CNTL__VM_HOLE_INT_ENABLE_MASK 0x00000200L
+#define SDMA_CNTL__DRAM_ECC_INT_ENABLE_MASK 0x00000400L
+#define SDMA_CNTL__PAGE_RETRY_TIMEOUT_INT_ENABLE_MASK 0x00000800L
+#define SDMA_CNTL__PAGE_NULL_INT_ENABLE_MASK 0x00001000L
+#define SDMA_CNTL__PAGE_FAULT_INT_ENABLE_MASK 0x00002000L
+#define SDMA_CNTL__NACK_GEN_ERR_INT_ENABLE_MASK 0x00004000L
+#define SDMA_CNTL__MIDCMD_WORLDSWITCH_ENABLE_MASK 0x00020000L
+#define SDMA_CNTL__AUTO_CTXSW_ENABLE_MASK 0x00040000L
+#define SDMA_CNTL__DRM_RESTORE_ENABLE_MASK 0x00080000L
+#define SDMA_CNTL__CTXEMPTY_INT_ENABLE_MASK 0x10000000L
+#define SDMA_CNTL__FROZEN_INT_ENABLE_MASK 0x20000000L
+#define SDMA_CNTL__IB_PREEMPT_INT_ENABLE_MASK 0x40000000L
+#define SDMA_CNTL__RB_PREEMPT_INT_ENABLE_MASK 0x80000000L
+//SDMA_CHICKEN_BITS
+#define SDMA_CHICKEN_BITS__COPY_EFFICIENCY_ENABLE__SHIFT 0x0
+#define SDMA_CHICKEN_BITS__STALL_ON_TRANS_FULL_ENABLE__SHIFT 0x1
+#define SDMA_CHICKEN_BITS__STALL_ON_NO_FREE_DATA_BUFFER_ENABLE__SHIFT 0x2
+#define SDMA_CHICKEN_BITS__F32_MGCG_ENABLE__SHIFT 0x3
+#define SDMA_CHICKEN_BITS__WRITE_BURST_LENGTH__SHIFT 0x8
+#define SDMA_CHICKEN_BITS__WRITE_BURST_WAIT_CYCLE__SHIFT 0xa
+#define SDMA_CHICKEN_BITS__COPY_OVERLAP_ENABLE__SHIFT 0x10
+#define SDMA_CHICKEN_BITS__RAW_CHECK_ENABLE__SHIFT 0x11
+#define SDMA_CHICKEN_BITS__SRBM_POLL_RETRYING__SHIFT 0x14
+#define SDMA_CHICKEN_BITS__CG_STATUS_OUTPUT__SHIFT 0x17
+#define SDMA_CHICKEN_BITS__SRAM_FGCG_ENABLE__SHIFT 0x1a
+#define SDMA_CHICKEN_BITS__RESERVED__SHIFT 0x1b
+#define SDMA_CHICKEN_BITS__COPY_EFFICIENCY_ENABLE_MASK 0x00000001L
+#define SDMA_CHICKEN_BITS__STALL_ON_TRANS_FULL_ENABLE_MASK 0x00000002L
+#define SDMA_CHICKEN_BITS__STALL_ON_NO_FREE_DATA_BUFFER_ENABLE_MASK 0x00000004L
+#define SDMA_CHICKEN_BITS__F32_MGCG_ENABLE_MASK 0x00000008L
+#define SDMA_CHICKEN_BITS__WRITE_BURST_LENGTH_MASK 0x00000300L
+#define SDMA_CHICKEN_BITS__WRITE_BURST_WAIT_CYCLE_MASK 0x00001C00L
+#define SDMA_CHICKEN_BITS__COPY_OVERLAP_ENABLE_MASK 0x00010000L
+#define SDMA_CHICKEN_BITS__RAW_CHECK_ENABLE_MASK 0x00020000L
+#define SDMA_CHICKEN_BITS__SRBM_POLL_RETRYING_MASK 0x00100000L
+#define SDMA_CHICKEN_BITS__CG_STATUS_OUTPUT_MASK 0x00800000L
+#define SDMA_CHICKEN_BITS__SRAM_FGCG_ENABLE_MASK 0x04000000L
+#define SDMA_CHICKEN_BITS__RESERVED_MASK 0xF8000000L
+//SDMA_GB_ADDR_CONFIG
+#define SDMA_GB_ADDR_CONFIG__NUM_PIPES__SHIFT 0x0
+#define SDMA_GB_ADDR_CONFIG__PIPE_INTERLEAVE_SIZE__SHIFT 0x3
+#define SDMA_GB_ADDR_CONFIG__BANK_INTERLEAVE_SIZE__SHIFT 0x8
+#define SDMA_GB_ADDR_CONFIG__NUM_BANKS__SHIFT 0xc
+#define SDMA_GB_ADDR_CONFIG__NUM_SHADER_ENGINES__SHIFT 0x13
+#define SDMA_GB_ADDR_CONFIG__NUM_PIPES_MASK 0x00000007L
+#define SDMA_GB_ADDR_CONFIG__PIPE_INTERLEAVE_SIZE_MASK 0x00000038L
+#define SDMA_GB_ADDR_CONFIG__BANK_INTERLEAVE_SIZE_MASK 0x00000700L
+#define SDMA_GB_ADDR_CONFIG__NUM_BANKS_MASK 0x00007000L
+#define SDMA_GB_ADDR_CONFIG__NUM_SHADER_ENGINES_MASK 0x00180000L
+//SDMA_GB_ADDR_CONFIG_READ
+#define SDMA_GB_ADDR_CONFIG_READ__NUM_PIPES__SHIFT 0x0
+#define SDMA_GB_ADDR_CONFIG_READ__PIPE_INTERLEAVE_SIZE__SHIFT 0x3
+#define SDMA_GB_ADDR_CONFIG_READ__BANK_INTERLEAVE_SIZE__SHIFT 0x8
+#define SDMA_GB_ADDR_CONFIG_READ__NUM_BANKS__SHIFT 0xc
+#define SDMA_GB_ADDR_CONFIG_READ__NUM_SHADER_ENGINES__SHIFT 0x13
+#define SDMA_GB_ADDR_CONFIG_READ__NUM_PIPES_MASK 0x00000007L
+#define SDMA_GB_ADDR_CONFIG_READ__PIPE_INTERLEAVE_SIZE_MASK 0x00000038L
+#define SDMA_GB_ADDR_CONFIG_READ__BANK_INTERLEAVE_SIZE_MASK 0x00000700L
+#define SDMA_GB_ADDR_CONFIG_READ__NUM_BANKS_MASK 0x00007000L
+#define SDMA_GB_ADDR_CONFIG_READ__NUM_SHADER_ENGINES_MASK 0x00180000L
+//SDMA_GFX_RB_CNTL
+#define SDMA_GFX_RB_CNTL__RB_ENABLE__SHIFT 0x0
+#define SDMA_GFX_RB_CNTL__RB_SIZE__SHIFT 0x1
+#define SDMA_GFX_RB_CNTL__RB_SWAP_ENABLE__SHIFT 0x9
+#define SDMA_GFX_RB_CNTL__RPTR_WRITEBACK_ENABLE__SHIFT 0xc
+#define SDMA_GFX_RB_CNTL__RPTR_WRITEBACK_SWAP_ENABLE__SHIFT 0xd
+#define SDMA_GFX_RB_CNTL__RPTR_WRITEBACK_TIMER__SHIFT 0x10
+#define SDMA_GFX_RB_CNTL__RB_PRIV__SHIFT 0x17
+#define SDMA_GFX_RB_CNTL__RB_VMID__SHIFT 0x18
+#define SDMA_GFX_RB_CNTL__RB_ENABLE_MASK 0x00000001L
+#define SDMA_GFX_RB_CNTL__RB_SIZE_MASK 0x0000003EL
+#define SDMA_GFX_RB_CNTL__RB_SWAP_ENABLE_MASK 0x00000200L
+#define SDMA_GFX_RB_CNTL__RPTR_WRITEBACK_ENABLE_MASK 0x00001000L
+#define SDMA_GFX_RB_CNTL__RPTR_WRITEBACK_SWAP_ENABLE_MASK 0x00002000L
+#define SDMA_GFX_RB_CNTL__RPTR_WRITEBACK_TIMER_MASK 0x001F0000L
+#define SDMA_GFX_RB_CNTL__RB_PRIV_MASK 0x00800000L
+#define SDMA_GFX_RB_CNTL__RB_VMID_MASK 0x0F000000L
+//SDMA_GFX_RB_BASE
+#define SDMA_GFX_RB_BASE__ADDR__SHIFT 0x0
+#define SDMA_GFX_RB_BASE__ADDR_MASK 0xFFFFFFFFL
+//SDMA_GFX_RB_BASE_HI
+#define SDMA_GFX_RB_BASE_HI__ADDR__SHIFT 0x0
+#define SDMA_GFX_RB_BASE_HI__ADDR_MASK 0x00FFFFFFL
+//SDMA_GFX_RB_RPTR
+#define SDMA_GFX_RB_RPTR__OFFSET__SHIFT 0x0
+#define SDMA_GFX_RB_RPTR__OFFSET_MASK 0xFFFFFFFFL
+//SDMA_GFX_RB_RPTR_HI
+#define SDMA_GFX_RB_RPTR_HI__OFFSET__SHIFT 0x0
+#define SDMA_GFX_RB_RPTR_HI__OFFSET_MASK 0xFFFFFFFFL
+//SDMA_GFX_RB_WPTR
+#define SDMA_GFX_RB_WPTR__OFFSET__SHIFT 0x0
+#define SDMA_GFX_RB_WPTR__OFFSET_MASK 0xFFFFFFFFL
+//SDMA_GFX_RB_WPTR_HI
+#define SDMA_GFX_RB_WPTR_HI__OFFSET__SHIFT 0x0
+#define SDMA_GFX_RB_WPTR_HI__OFFSET_MASK 0xFFFFFFFFL
+//SDMA_GFX_RB_WPTR_POLL_CNTL
+#define SDMA_GFX_RB_WPTR_POLL_CNTL__ENABLE__SHIFT 0x0
+#define SDMA_GFX_RB_WPTR_POLL_CNTL__SWAP_ENABLE__SHIFT 0x1
+#define SDMA_GFX_RB_WPTR_POLL_CNTL__F32_POLL_ENABLE__SHIFT 0x2
+#define SDMA_GFX_RB_WPTR_POLL_CNTL__FREQUENCY__SHIFT 0x4
+#define SDMA_GFX_RB_WPTR_POLL_CNTL__IDLE_POLL_COUNT__SHIFT 0x10
+#define SDMA_GFX_RB_WPTR_POLL_CNTL__ENABLE_MASK 0x00000001L
+#define SDMA_GFX_RB_WPTR_POLL_CNTL__SWAP_ENABLE_MASK 0x00000002L
+#define SDMA_GFX_RB_WPTR_POLL_CNTL__F32_POLL_ENABLE_MASK 0x00000004L
+#define SDMA_GFX_RB_WPTR_POLL_CNTL__FREQUENCY_MASK 0x0000FFF0L
+#define SDMA_GFX_RB_WPTR_POLL_CNTL__IDLE_POLL_COUNT_MASK 0xFFFF0000L
+//SDMA_GFX_RB_RPTR_ADDR_HI
+#define SDMA_GFX_RB_RPTR_ADDR_HI__ADDR__SHIFT 0x0
+#define SDMA_GFX_RB_RPTR_ADDR_HI__ADDR_MASK 0xFFFFFFFFL
+//SDMA_GFX_RB_RPTR_ADDR_LO
+#define SDMA_GFX_RB_RPTR_ADDR_LO__RPTR_WB_IDLE__SHIFT 0x0
+#define SDMA_GFX_RB_RPTR_ADDR_LO__ADDR__SHIFT 0x2
+#define SDMA_GFX_RB_RPTR_ADDR_LO__RPTR_WB_IDLE_MASK 0x00000001L
+#define SDMA_GFX_RB_RPTR_ADDR_LO__ADDR_MASK 0xFFFFFFFCL
+//SDMA_GFX_IB_CNTL
+#define SDMA_GFX_IB_CNTL__IB_ENABLE__SHIFT 0x0
+#define SDMA_GFX_IB_CNTL__IB_SWAP_ENABLE__SHIFT 0x4
+#define SDMA_GFX_IB_CNTL__SWITCH_INSIDE_IB__SHIFT 0x8
+#define SDMA_GFX_IB_CNTL__CMD_VMID__SHIFT 0x10
+#define SDMA_GFX_IB_CNTL__IB_PRIV__SHIFT 0x1f
+#define SDMA_GFX_IB_CNTL__IB_ENABLE_MASK 0x00000001L
+#define SDMA_GFX_IB_CNTL__IB_SWAP_ENABLE_MASK 0x00000010L
+#define SDMA_GFX_IB_CNTL__SWITCH_INSIDE_IB_MASK 0x00000100L
+#define SDMA_GFX_IB_CNTL__CMD_VMID_MASK 0x000F0000L
+#define SDMA_GFX_IB_CNTL__IB_PRIV_MASK 0x80000000L
+//SDMA_GFX_IB_RPTR
+#define SDMA_GFX_IB_RPTR__OFFSET__SHIFT 0x2
+#define SDMA_GFX_IB_RPTR__OFFSET_MASK 0x003FFFFCL
+//SDMA_GFX_IB_OFFSET
+#define SDMA_GFX_IB_OFFSET__OFFSET__SHIFT 0x2
+#define SDMA_GFX_IB_OFFSET__OFFSET_MASK 0x003FFFFCL
+//SDMA_GFX_IB_BASE_LO
+#define SDMA_GFX_IB_BASE_LO__ADDR__SHIFT 0x5
+#define SDMA_GFX_IB_BASE_LO__ADDR_MASK 0xFFFFFFE0L
+//SDMA_GFX_IB_BASE_HI
+#define SDMA_GFX_IB_BASE_HI__ADDR__SHIFT 0x0
+#define SDMA_GFX_IB_BASE_HI__ADDR_MASK 0xFFFFFFFFL
+//SDMA_GFX_IB_SIZE
+#define SDMA_GFX_IB_SIZE__SIZE__SHIFT 0x0
+#define SDMA_GFX_IB_SIZE__SIZE_MASK 0x000FFFFFL
+//SDMA_GFX_SKIP_CNTL
+#define SDMA_GFX_SKIP_CNTL__SKIP_COUNT__SHIFT 0x0
+#define SDMA_GFX_SKIP_CNTL__SKIP_COUNT_MASK 0x000FFFFFL
+//SDMA_GFX_CONTEXT_STATUS
+#define SDMA_GFX_CONTEXT_STATUS__SELECTED__SHIFT 0x0
+#define SDMA_GFX_CONTEXT_STATUS__IDLE__SHIFT 0x2
+#define SDMA_GFX_CONTEXT_STATUS__EXPIRED__SHIFT 0x3
+#define SDMA_GFX_CONTEXT_STATUS__EXCEPTION__SHIFT 0x4
+#define SDMA_GFX_CONTEXT_STATUS__CTXSW_ABLE__SHIFT 0x7
+#define SDMA_GFX_CONTEXT_STATUS__CTXSW_READY__SHIFT 0x8
+#define SDMA_GFX_CONTEXT_STATUS__PREEMPTED__SHIFT 0x9
+#define SDMA_GFX_CONTEXT_STATUS__PREEMPT_DISABLE__SHIFT 0xa
+#define SDMA_GFX_CONTEXT_STATUS__SELECTED_MASK 0x00000001L
+#define SDMA_GFX_CONTEXT_STATUS__IDLE_MASK 0x00000004L
+#define SDMA_GFX_CONTEXT_STATUS__EXPIRED_MASK 0x00000008L
+#define SDMA_GFX_CONTEXT_STATUS__EXCEPTION_MASK 0x00000070L
+#define SDMA_GFX_CONTEXT_STATUS__CTXSW_ABLE_MASK 0x00000080L
+#define SDMA_GFX_CONTEXT_STATUS__CTXSW_READY_MASK 0x00000100L
+#define SDMA_GFX_CONTEXT_STATUS__PREEMPTED_MASK 0x00000200L
+#define SDMA_GFX_CONTEXT_STATUS__PREEMPT_DISABLE_MASK 0x00000400L
+//SDMA_GFX_DOORBELL
+#define SDMA_GFX_DOORBELL__ENABLE__SHIFT 0x1c
+#define SDMA_GFX_DOORBELL__CAPTURED__SHIFT 0x1e
+#define SDMA_GFX_DOORBELL__ENABLE_MASK 0x10000000L
+#define SDMA_GFX_DOORBELL__CAPTURED_MASK 0x40000000L
+//SDMA_GFX_CONTEXT_CNTL
+#define SDMA_GFX_CONTEXT_CNTL__RESUME_CTX__SHIFT 0x10
+#define SDMA_GFX_CONTEXT_CNTL__SESSION_SEL__SHIFT 0x18
+#define SDMA_GFX_CONTEXT_CNTL__RESUME_CTX_MASK 0x00010000L
+#define SDMA_GFX_CONTEXT_CNTL__SESSION_SEL_MASK 0x0F000000L
+//SDMA_GFX_STATUS
+#define SDMA_GFX_STATUS__WPTR_UPDATE_FAIL_COUNT__SHIFT 0x0
+#define SDMA_GFX_STATUS__WPTR_UPDATE_PENDING__SHIFT 0x8
+#define SDMA_GFX_STATUS__WPTR_UPDATE_FAIL_COUNT_MASK 0x000000FFL
+#define SDMA_GFX_STATUS__WPTR_UPDATE_PENDING_MASK 0x00000100L
+//SDMA_GFX_DOORBELL_LOG
+#define SDMA_GFX_DOORBELL_LOG__BE_ERROR__SHIFT 0x0
+#define SDMA_GFX_DOORBELL_LOG__DATA__SHIFT 0x2
+#define SDMA_GFX_DOORBELL_LOG__BE_ERROR_MASK 0x00000001L
+#define SDMA_GFX_DOORBELL_LOG__DATA_MASK 0xFFFFFFFCL
+//SDMA_GFX_WATERMARK
+#define SDMA_GFX_WATERMARK__RD_OUTSTANDING__SHIFT 0x0
+#define SDMA_GFX_WATERMARK__WR_OUTSTANDING__SHIFT 0x10
+#define SDMA_GFX_WATERMARK__RD_OUTSTANDING_MASK 0x00000FFFL
+#define SDMA_GFX_WATERMARK__WR_OUTSTANDING_MASK 0x03FF0000L
+//SDMA_GFX_DOORBELL_OFFSET
+#define SDMA_GFX_DOORBELL_OFFSET__OFFSET__SHIFT 0x2
+#define SDMA_GFX_DOORBELL_OFFSET__OFFSET_MASK 0x0FFFFFFCL
+//SDMA_GFX_CSA_ADDR_LO
+#define SDMA_GFX_CSA_ADDR_LO__ADDR__SHIFT 0x2
+#define SDMA_GFX_CSA_ADDR_LO__ADDR_MASK 0xFFFFFFFCL
+//SDMA_GFX_CSA_ADDR_HI
+#define SDMA_GFX_CSA_ADDR_HI__ADDR__SHIFT 0x0
+#define SDMA_GFX_CSA_ADDR_HI__ADDR_MASK 0xFFFFFFFFL
+//SDMA_GFX_IB_SUB_REMAIN
+#define SDMA_GFX_IB_SUB_REMAIN__SIZE__SHIFT 0x0
+#define SDMA_GFX_IB_SUB_REMAIN__SIZE_MASK 0x000FFFFFL
+//SDMA_GFX_PREEMPT
+#define SDMA_GFX_PREEMPT__IB_PREEMPT__SHIFT 0x0
+#define SDMA_GFX_PREEMPT__IB_PREEMPT_MASK 0x00000001L
+//SDMA_GFX_DUMMY_REG
+#define SDMA_GFX_DUMMY_REG__DUMMY__SHIFT 0x0
+#define SDMA_GFX_DUMMY_REG__DUMMY_MASK 0xFFFFFFFFL
+//SDMA_GFX_RB_WPTR_POLL_ADDR_HI
+#define SDMA_GFX_RB_WPTR_POLL_ADDR_HI__ADDR__SHIFT 0x0
+#define SDMA_GFX_RB_WPTR_POLL_ADDR_HI__ADDR_MASK 0xFFFFFFFFL
+//SDMA_GFX_RB_WPTR_POLL_ADDR_LO
+#define SDMA_GFX_RB_WPTR_POLL_ADDR_LO__ADDR__SHIFT 0x2
+#define SDMA_GFX_RB_WPTR_POLL_ADDR_LO__ADDR_MASK 0xFFFFFFFCL
+//SDMA_GFX_RB_AQL_CNTL
+#define SDMA_GFX_RB_AQL_CNTL__AQL_ENABLE__SHIFT 0x0
+#define SDMA_GFX_RB_AQL_CNTL__AQL_PACKET_SIZE__SHIFT 0x1
+#define SDMA_GFX_RB_AQL_CNTL__PACKET_STEP__SHIFT 0x8
+#define SDMA_GFX_RB_AQL_CNTL__AQL_ENABLE_MASK 0x00000001L
+#define SDMA_GFX_RB_AQL_CNTL__AQL_PACKET_SIZE_MASK 0x000000FEL
+#define SDMA_GFX_RB_AQL_CNTL__PACKET_STEP_MASK 0x0000FF00L
+//SDMA_GFX_MINOR_PTR_UPDATE
+#define SDMA_GFX_MINOR_PTR_UPDATE__ENABLE__SHIFT 0x0
+#define SDMA_GFX_MINOR_PTR_UPDATE__ENABLE_MASK 0x00000001L
+//SDMA_GFX_MIDCMD_DATA0
+#define SDMA_GFX_MIDCMD_DATA0__DATA0__SHIFT 0x0
+#define SDMA_GFX_MIDCMD_DATA0__DATA0_MASK 0xFFFFFFFFL
+//SDMA_GFX_MIDCMD_DATA1
+#define SDMA_GFX_MIDCMD_DATA1__DATA1__SHIFT 0x0
+#define SDMA_GFX_MIDCMD_DATA1__DATA1_MASK 0xFFFFFFFFL
+//SDMA_GFX_MIDCMD_DATA2
+#define SDMA_GFX_MIDCMD_DATA2__DATA2__SHIFT 0x0
+#define SDMA_GFX_MIDCMD_DATA2__DATA2_MASK 0xFFFFFFFFL
+//SDMA_GFX_MIDCMD_DATA3
+#define SDMA_GFX_MIDCMD_DATA3__DATA3__SHIFT 0x0
+#define SDMA_GFX_MIDCMD_DATA3__DATA3_MASK 0xFFFFFFFFL
+//SDMA_GFX_MIDCMD_DATA4
+#define SDMA_GFX_MIDCMD_DATA4__DATA4__SHIFT 0x0
+#define SDMA_GFX_MIDCMD_DATA4__DATA4_MASK 0xFFFFFFFFL
+//SDMA_GFX_MIDCMD_DATA5
+#define SDMA_GFX_MIDCMD_DATA5__DATA5__SHIFT 0x0
+#define SDMA_GFX_MIDCMD_DATA5__DATA5_MASK 0xFFFFFFFFL
+//SDMA_GFX_MIDCMD_DATA6
+#define SDMA_GFX_MIDCMD_DATA6__DATA6__SHIFT 0x0
+#define SDMA_GFX_MIDCMD_DATA6__DATA6_MASK 0xFFFFFFFFL
+//SDMA_GFX_MIDCMD_DATA7
+#define SDMA_GFX_MIDCMD_DATA7__DATA7__SHIFT 0x0
+#define SDMA_GFX_MIDCMD_DATA7__DATA7_MASK 0xFFFFFFFFL
+//SDMA_GFX_MIDCMD_DATA8
+#define SDMA_GFX_MIDCMD_DATA8__DATA8__SHIFT 0x0
+#define SDMA_GFX_MIDCMD_DATA8__DATA8_MASK 0xFFFFFFFFL
+//SDMA_GFX_MIDCMD_DATA9
+#define SDMA_GFX_MIDCMD_DATA9__DATA9__SHIFT 0x0
+#define SDMA_GFX_MIDCMD_DATA9__DATA9_MASK 0xFFFFFFFFL
+//SDMA_GFX_MIDCMD_DATA10
+#define SDMA_GFX_MIDCMD_DATA10__DATA10__SHIFT 0x0
+#define SDMA_GFX_MIDCMD_DATA10__DATA10_MASK 0xFFFFFFFFL
+//SDMA_GFX_MIDCMD_CNTL
+#define SDMA_GFX_MIDCMD_CNTL__DATA_VALID__SHIFT 0x0
+#define SDMA_GFX_MIDCMD_CNTL__COPY_MODE__SHIFT 0x1
+#define SDMA_GFX_MIDCMD_CNTL__SPLIT_STATE__SHIFT 0x4
+#define SDMA_GFX_MIDCMD_CNTL__ALLOW_PREEMPT__SHIFT 0x8
+#define SDMA_GFX_MIDCMD_CNTL__DATA_VALID_MASK 0x00000001L
+#define SDMA_GFX_MIDCMD_CNTL__COPY_MODE_MASK 0x00000002L
+#define SDMA_GFX_MIDCMD_CNTL__SPLIT_STATE_MASK 0x000000F0L
+#define SDMA_GFX_MIDCMD_CNTL__ALLOW_PREEMPT_MASK 0x00000100L
+//SDMA_PAGE_RB_CNTL
+#define SDMA_PAGE_RB_CNTL__RB_ENABLE__SHIFT 0x0
+#define SDMA_PAGE_RB_CNTL__RB_SIZE__SHIFT 0x1
+#define SDMA_PAGE_RB_CNTL__RB_SWAP_ENABLE__SHIFT 0x9
+#define SDMA_PAGE_RB_CNTL__RPTR_WRITEBACK_ENABLE__SHIFT 0xc
+#define SDMA_PAGE_RB_CNTL__RPTR_WRITEBACK_SWAP_ENABLE__SHIFT 0xd
+#define SDMA_PAGE_RB_CNTL__RPTR_WRITEBACK_TIMER__SHIFT 0x10
+#define SDMA_PAGE_RB_CNTL__RB_PRIV__SHIFT 0x17
+#define SDMA_PAGE_RB_CNTL__RB_VMID__SHIFT 0x18
+#define SDMA_PAGE_RB_CNTL__RB_ENABLE_MASK 0x00000001L
+#define SDMA_PAGE_RB_CNTL__RB_SIZE_MASK 0x0000003EL
+#define SDMA_PAGE_RB_CNTL__RB_SWAP_ENABLE_MASK 0x00000200L
+#define SDMA_PAGE_RB_CNTL__RPTR_WRITEBACK_ENABLE_MASK 0x00001000L
+#define SDMA_PAGE_RB_CNTL__RPTR_WRITEBACK_SWAP_ENABLE_MASK 0x00002000L
+#define SDMA_PAGE_RB_CNTL__RPTR_WRITEBACK_TIMER_MASK 0x001F0000L
+#define SDMA_PAGE_RB_CNTL__RB_PRIV_MASK 0x00800000L
+#define SDMA_PAGE_RB_CNTL__RB_VMID_MASK 0x0F000000L
+//SDMA_PAGE_RB_BASE
+#define SDMA_PAGE_RB_BASE__ADDR__SHIFT 0x0
+#define SDMA_PAGE_RB_BASE__ADDR_MASK 0xFFFFFFFFL
+//SDMA_PAGE_RB_BASE_HI
+#define SDMA_PAGE_RB_BASE_HI__ADDR__SHIFT 0x0
+#define SDMA_PAGE_RB_BASE_HI__ADDR_MASK 0x00FFFFFFL
+//SDMA_PAGE_RB_RPTR
+#define SDMA_PAGE_RB_RPTR__OFFSET__SHIFT 0x0
+#define SDMA_PAGE_RB_RPTR__OFFSET_MASK 0xFFFFFFFFL
+//SDMA_PAGE_RB_RPTR_HI
+#define SDMA_PAGE_RB_RPTR_HI__OFFSET__SHIFT 0x0
+#define SDMA_PAGE_RB_RPTR_HI__OFFSET_MASK 0xFFFFFFFFL
+//SDMA_PAGE_RB_WPTR
+#define SDMA_PAGE_RB_WPTR__OFFSET__SHIFT 0x0
+#define SDMA_PAGE_RB_WPTR__OFFSET_MASK 0xFFFFFFFFL
+//SDMA_PAGE_RB_WPTR_HI
+#define SDMA_PAGE_RB_WPTR_HI__OFFSET__SHIFT 0x0
+#define SDMA_PAGE_RB_WPTR_HI__OFFSET_MASK 0xFFFFFFFFL
+//SDMA_PAGE_RB_WPTR_POLL_CNTL
+#define SDMA_PAGE_RB_WPTR_POLL_CNTL__ENABLE__SHIFT 0x0
+#define SDMA_PAGE_RB_WPTR_POLL_CNTL__SWAP_ENABLE__SHIFT 0x1
+#define SDMA_PAGE_RB_WPTR_POLL_CNTL__F32_POLL_ENABLE__SHIFT 0x2
+#define SDMA_PAGE_RB_WPTR_POLL_CNTL__FREQUENCY__SHIFT 0x4
+#define SDMA_PAGE_RB_WPTR_POLL_CNTL__IDLE_POLL_COUNT__SHIFT 0x10
+#define SDMA_PAGE_RB_WPTR_POLL_CNTL__ENABLE_MASK 0x00000001L
+#define SDMA_PAGE_RB_WPTR_POLL_CNTL__SWAP_ENABLE_MASK 0x00000002L
+#define SDMA_PAGE_RB_WPTR_POLL_CNTL__F32_POLL_ENABLE_MASK 0x00000004L
+#define SDMA_PAGE_RB_WPTR_POLL_CNTL__FREQUENCY_MASK 0x0000FFF0L
+#define SDMA_PAGE_RB_WPTR_POLL_CNTL__IDLE_POLL_COUNT_MASK 0xFFFF0000L
+//SDMA_PAGE_RB_RPTR_ADDR_HI
+#define SDMA_PAGE_RB_RPTR_ADDR_HI__ADDR__SHIFT 0x0
+#define SDMA_PAGE_RB_RPTR_ADDR_HI__ADDR_MASK 0xFFFFFFFFL
+//SDMA_PAGE_RB_RPTR_ADDR_LO
+#define SDMA_PAGE_RB_RPTR_ADDR_LO__RPTR_WB_IDLE__SHIFT 0x0
+#define SDMA_PAGE_RB_RPTR_ADDR_LO__ADDR__SHIFT 0x2
+#define SDMA_PAGE_RB_RPTR_ADDR_LO__RPTR_WB_IDLE_MASK 0x00000001L
+#define SDMA_PAGE_RB_RPTR_ADDR_LO__ADDR_MASK 0xFFFFFFFCL
+//SDMA_PAGE_IB_CNTL
+#define SDMA_PAGE_IB_CNTL__IB_ENABLE__SHIFT 0x0
+#define SDMA_PAGE_IB_CNTL__IB_SWAP_ENABLE__SHIFT 0x4
+#define SDMA_PAGE_IB_CNTL__SWITCH_INSIDE_IB__SHIFT 0x8
+#define SDMA_PAGE_IB_CNTL__CMD_VMID__SHIFT 0x10
+#define SDMA_PAGE_IB_CNTL__IB_PRIV__SHIFT 0x1f
+#define SDMA_PAGE_IB_CNTL__IB_ENABLE_MASK 0x00000001L
+#define SDMA_PAGE_IB_CNTL__IB_SWAP_ENABLE_MASK 0x00000010L
+#define SDMA_PAGE_IB_CNTL__SWITCH_INSIDE_IB_MASK 0x00000100L
+#define SDMA_PAGE_IB_CNTL__CMD_VMID_MASK 0x000F0000L
+#define SDMA_PAGE_IB_CNTL__IB_PRIV_MASK 0x80000000L
+//SDMA_PAGE_IB_RPTR
+#define SDMA_PAGE_IB_RPTR__OFFSET__SHIFT 0x2
+#define SDMA_PAGE_IB_RPTR__OFFSET_MASK 0x003FFFFCL
+//SDMA_PAGE_IB_OFFSET
+#define SDMA_PAGE_IB_OFFSET__OFFSET__SHIFT 0x2
+#define SDMA_PAGE_IB_OFFSET__OFFSET_MASK 0x003FFFFCL
+//SDMA_PAGE_IB_BASE_LO
+#define SDMA_PAGE_IB_BASE_LO__ADDR__SHIFT 0x5
+#define SDMA_PAGE_IB_BASE_LO__ADDR_MASK 0xFFFFFFE0L
+//SDMA_PAGE_IB_BASE_HI
+#define SDMA_PAGE_IB_BASE_HI__ADDR__SHIFT 0x0
+#define SDMA_PAGE_IB_BASE_HI__ADDR_MASK 0xFFFFFFFFL
+//SDMA_PAGE_IB_SIZE
+#define SDMA_PAGE_IB_SIZE__SIZE__SHIFT 0x0
+#define SDMA_PAGE_IB_SIZE__SIZE_MASK 0x000FFFFFL
+//SDMA_PAGE_SKIP_CNTL
+#define SDMA_PAGE_SKIP_CNTL__SKIP_COUNT__SHIFT 0x0
+#define SDMA_PAGE_SKIP_CNTL__SKIP_COUNT_MASK 0x000FFFFFL
+//SDMA_PAGE_CONTEXT_STATUS
+#define SDMA_PAGE_CONTEXT_STATUS__SELECTED__SHIFT 0x0
+#define SDMA_PAGE_CONTEXT_STATUS__IDLE__SHIFT 0x2
+#define SDMA_PAGE_CONTEXT_STATUS__EXPIRED__SHIFT 0x3
+#define SDMA_PAGE_CONTEXT_STATUS__EXCEPTION__SHIFT 0x4
+#define SDMA_PAGE_CONTEXT_STATUS__CTXSW_ABLE__SHIFT 0x7
+#define SDMA_PAGE_CONTEXT_STATUS__CTXSW_READY__SHIFT 0x8
+#define SDMA_PAGE_CONTEXT_STATUS__PREEMPTED__SHIFT 0x9
+#define SDMA_PAGE_CONTEXT_STATUS__PREEMPT_DISABLE__SHIFT 0xa
+#define SDMA_PAGE_CONTEXT_STATUS__SELECTED_MASK 0x00000001L
+#define SDMA_PAGE_CONTEXT_STATUS__IDLE_MASK 0x00000004L
+#define SDMA_PAGE_CONTEXT_STATUS__EXPIRED_MASK 0x00000008L
+#define SDMA_PAGE_CONTEXT_STATUS__EXCEPTION_MASK 0x00000070L
+#define SDMA_PAGE_CONTEXT_STATUS__CTXSW_ABLE_MASK 0x00000080L
+#define SDMA_PAGE_CONTEXT_STATUS__CTXSW_READY_MASK 0x00000100L
+#define SDMA_PAGE_CONTEXT_STATUS__PREEMPTED_MASK 0x00000200L
+#define SDMA_PAGE_CONTEXT_STATUS__PREEMPT_DISABLE_MASK 0x00000400L
+//SDMA_PAGE_DOORBELL
+#define SDMA_PAGE_DOORBELL__ENABLE__SHIFT 0x1c
+#define SDMA_PAGE_DOORBELL__CAPTURED__SHIFT 0x1e
+#define SDMA_PAGE_DOORBELL__ENABLE_MASK 0x10000000L
+#define SDMA_PAGE_DOORBELL__CAPTURED_MASK 0x40000000L
+//SDMA_PAGE_STATUS
+#define SDMA_PAGE_STATUS__WPTR_UPDATE_FAIL_COUNT__SHIFT 0x0
+#define SDMA_PAGE_STATUS__WPTR_UPDATE_PENDING__SHIFT 0x8
+#define SDMA_PAGE_STATUS__WPTR_UPDATE_FAIL_COUNT_MASK 0x000000FFL
+#define SDMA_PAGE_STATUS__WPTR_UPDATE_PENDING_MASK 0x00000100L
+//SDMA_PAGE_DOORBELL_LOG
+#define SDMA_PAGE_DOORBELL_LOG__BE_ERROR__SHIFT 0x0
+#define SDMA_PAGE_DOORBELL_LOG__DATA__SHIFT 0x2
+#define SDMA_PAGE_DOORBELL_LOG__BE_ERROR_MASK 0x00000001L
+#define SDMA_PAGE_DOORBELL_LOG__DATA_MASK 0xFFFFFFFCL
+//SDMA_PAGE_WATERMARK
+#define SDMA_PAGE_WATERMARK__RD_OUTSTANDING__SHIFT 0x0
+#define SDMA_PAGE_WATERMARK__WR_OUTSTANDING__SHIFT 0x10
+#define SDMA_PAGE_WATERMARK__RD_OUTSTANDING_MASK 0x00000FFFL
+#define SDMA_PAGE_WATERMARK__WR_OUTSTANDING_MASK 0x03FF0000L
+//SDMA_PAGE_DOORBELL_OFFSET
+#define SDMA_PAGE_DOORBELL_OFFSET__OFFSET__SHIFT 0x2
+#define SDMA_PAGE_DOORBELL_OFFSET__OFFSET_MASK 0x0FFFFFFCL
+//SDMA_PAGE_CSA_ADDR_LO
+#define SDMA_PAGE_CSA_ADDR_LO__ADDR__SHIFT 0x2
+#define SDMA_PAGE_CSA_ADDR_LO__ADDR_MASK 0xFFFFFFFCL
+//SDMA_PAGE_CSA_ADDR_HI
+#define SDMA_PAGE_CSA_ADDR_HI__ADDR__SHIFT 0x0
+#define SDMA_PAGE_CSA_ADDR_HI__ADDR_MASK 0xFFFFFFFFL
+//SDMA_PAGE_IB_SUB_REMAIN
+#define SDMA_PAGE_IB_SUB_REMAIN__SIZE__SHIFT 0x0
+#define SDMA_PAGE_IB_SUB_REMAIN__SIZE_MASK 0x000FFFFFL
+//SDMA_PAGE_PREEMPT
+#define SDMA_PAGE_PREEMPT__IB_PREEMPT__SHIFT 0x0
+#define SDMA_PAGE_PREEMPT__IB_PREEMPT_MASK 0x00000001L
+//SDMA_PAGE_DUMMY_REG
+#define SDMA_PAGE_DUMMY_REG__DUMMY__SHIFT 0x0
+#define SDMA_PAGE_DUMMY_REG__DUMMY_MASK 0xFFFFFFFFL
+//SDMA_PAGE_RB_WPTR_POLL_ADDR_HI
+#define SDMA_PAGE_RB_WPTR_POLL_ADDR_HI__ADDR__SHIFT 0x0
+#define SDMA_PAGE_RB_WPTR_POLL_ADDR_HI__ADDR_MASK 0xFFFFFFFFL
+//SDMA_PAGE_RB_WPTR_POLL_ADDR_LO
+#define SDMA_PAGE_RB_WPTR_POLL_ADDR_LO__ADDR__SHIFT 0x2
+#define SDMA_PAGE_RB_WPTR_POLL_ADDR_LO__ADDR_MASK 0xFFFFFFFCL
+//SDMA_PAGE_RB_AQL_CNTL
+#define SDMA_PAGE_RB_AQL_CNTL__AQL_ENABLE__SHIFT 0x0
+#define SDMA_PAGE_RB_AQL_CNTL__AQL_PACKET_SIZE__SHIFT 0x1
+#define SDMA_PAGE_RB_AQL_CNTL__PACKET_STEP__SHIFT 0x8
+#define SDMA_PAGE_RB_AQL_CNTL__AQL_ENABLE_MASK 0x00000001L
+#define SDMA_PAGE_RB_AQL_CNTL__AQL_PACKET_SIZE_MASK 0x000000FEL
+#define SDMA_PAGE_RB_AQL_CNTL__PACKET_STEP_MASK 0x0000FF00L
+//SDMA_PAGE_MINOR_PTR_UPDATE
+#define SDMA_PAGE_MINOR_PTR_UPDATE__ENABLE__SHIFT 0x0
+#define SDMA_PAGE_MINOR_PTR_UPDATE__ENABLE_MASK 0x00000001L
+//SDMA_PAGE_MIDCMD_DATA0
+#define SDMA_PAGE_MIDCMD_DATA0__DATA0__SHIFT 0x0
+#define SDMA_PAGE_MIDCMD_DATA0__DATA0_MASK 0xFFFFFFFFL
+//SDMA_PAGE_MIDCMD_DATA1
+#define SDMA_PAGE_MIDCMD_DATA1__DATA1__SHIFT 0x0
+#define SDMA_PAGE_MIDCMD_DATA1__DATA1_MASK 0xFFFFFFFFL
+//SDMA_PAGE_MIDCMD_DATA2
+#define SDMA_PAGE_MIDCMD_DATA2__DATA2__SHIFT 0x0
+#define SDMA_PAGE_MIDCMD_DATA2__DATA2_MASK 0xFFFFFFFFL
+//SDMA_PAGE_MIDCMD_DATA3
+#define SDMA_PAGE_MIDCMD_DATA3__DATA3__SHIFT 0x0
+#define SDMA_PAGE_MIDCMD_DATA3__DATA3_MASK 0xFFFFFFFFL
+//SDMA_PAGE_MIDCMD_DATA4
+#define SDMA_PAGE_MIDCMD_DATA4__DATA4__SHIFT 0x0
+#define SDMA_PAGE_MIDCMD_DATA4__DATA4_MASK 0xFFFFFFFFL
+//SDMA_PAGE_MIDCMD_DATA5
+#define SDMA_PAGE_MIDCMD_DATA5__DATA5__SHIFT 0x0
+#define SDMA_PAGE_MIDCMD_DATA5__DATA5_MASK 0xFFFFFFFFL
+//SDMA_PAGE_MIDCMD_DATA6
+#define SDMA_PAGE_MIDCMD_DATA6__DATA6__SHIFT 0x0
+#define SDMA_PAGE_MIDCMD_DATA6__DATA6_MASK 0xFFFFFFFFL
+//SDMA_PAGE_MIDCMD_DATA7
+#define SDMA_PAGE_MIDCMD_DATA7__DATA7__SHIFT 0x0
+#define SDMA_PAGE_MIDCMD_DATA7__DATA7_MASK 0xFFFFFFFFL
+//SDMA_PAGE_MIDCMD_DATA8
+#define SDMA_PAGE_MIDCMD_DATA8__DATA8__SHIFT 0x0
+#define SDMA_PAGE_MIDCMD_DATA8__DATA8_MASK 0xFFFFFFFFL
+//SDMA_PAGE_MIDCMD_DATA9
+#define SDMA_PAGE_MIDCMD_DATA9__DATA9__SHIFT 0x0
+#define SDMA_PAGE_MIDCMD_DATA9__DATA9_MASK 0xFFFFFFFFL
+//SDMA_PAGE_MIDCMD_DATA10
+#define SDMA_PAGE_MIDCMD_DATA10__DATA10__SHIFT 0x0
+#define SDMA_PAGE_MIDCMD_DATA10__DATA10_MASK 0xFFFFFFFFL
+//SDMA_PAGE_MIDCMD_CNTL
+#define SDMA_PAGE_MIDCMD_CNTL__DATA_VALID__SHIFT 0x0
+#define SDMA_PAGE_MIDCMD_CNTL__COPY_MODE__SHIFT 0x1
+#define SDMA_PAGE_MIDCMD_CNTL__SPLIT_STATE__SHIFT 0x4
+#define SDMA_PAGE_MIDCMD_CNTL__ALLOW_PREEMPT__SHIFT 0x8
+#define SDMA_PAGE_MIDCMD_CNTL__DATA_VALID_MASK 0x00000001L
+#define SDMA_PAGE_MIDCMD_CNTL__COPY_MODE_MASK 0x00000002L
+#define SDMA_PAGE_MIDCMD_CNTL__SPLIT_STATE_MASK 0x000000F0L
+#define SDMA_PAGE_MIDCMD_CNTL__ALLOW_PREEMPT_MASK 0x00000100L
+//SDMA_RLC0_RB_CNTL
+#define SDMA_RLC0_RB_CNTL__RB_ENABLE__SHIFT 0x0
+#define SDMA_RLC0_RB_CNTL__RB_SIZE__SHIFT 0x1
+#define SDMA_RLC0_RB_CNTL__RB_SWAP_ENABLE__SHIFT 0x9
+#define SDMA_RLC0_RB_CNTL__RPTR_WRITEBACK_ENABLE__SHIFT 0xc
+#define SDMA_RLC0_RB_CNTL__RPTR_WRITEBACK_SWAP_ENABLE__SHIFT 0xd
+#define SDMA_RLC0_RB_CNTL__RPTR_WRITEBACK_TIMER__SHIFT 0x10
+#define SDMA_RLC0_RB_CNTL__RB_PRIV__SHIFT 0x17
+#define SDMA_RLC0_RB_CNTL__RB_VMID__SHIFT 0x18
+#define SDMA_RLC0_RB_CNTL__RB_ENABLE_MASK 0x00000001L
+#define SDMA_RLC0_RB_CNTL__RB_SIZE_MASK 0x0000003EL
+#define SDMA_RLC0_RB_CNTL__RB_SWAP_ENABLE_MASK 0x00000200L
+#define SDMA_RLC0_RB_CNTL__RPTR_WRITEBACK_ENABLE_MASK 0x00001000L
+#define SDMA_RLC0_RB_CNTL__RPTR_WRITEBACK_SWAP_ENABLE_MASK 0x00002000L
+#define SDMA_RLC0_RB_CNTL__RPTR_WRITEBACK_TIMER_MASK 0x001F0000L
+#define SDMA_RLC0_RB_CNTL__RB_PRIV_MASK 0x00800000L
+#define SDMA_RLC0_RB_CNTL__RB_VMID_MASK 0x0F000000L
+//SDMA_RLC0_RB_BASE
+#define SDMA_RLC0_RB_BASE__ADDR__SHIFT 0x0
+#define SDMA_RLC0_RB_BASE__ADDR_MASK 0xFFFFFFFFL
+//SDMA_RLC0_RB_BASE_HI
+#define SDMA_RLC0_RB_BASE_HI__ADDR__SHIFT 0x0
+#define SDMA_RLC0_RB_BASE_HI__ADDR_MASK 0x00FFFFFFL
+//SDMA_RLC0_RB_RPTR
+#define SDMA_RLC0_RB_RPTR__OFFSET__SHIFT 0x0
+#define SDMA_RLC0_RB_RPTR__OFFSET_MASK 0xFFFFFFFFL
+//SDMA_RLC0_RB_RPTR_HI
+#define SDMA_RLC0_RB_RPTR_HI__OFFSET__SHIFT 0x0
+#define SDMA_RLC0_RB_RPTR_HI__OFFSET_MASK 0xFFFFFFFFL
+//SDMA_RLC0_RB_WPTR
+#define SDMA_RLC0_RB_WPTR__OFFSET__SHIFT 0x0
+#define SDMA_RLC0_RB_WPTR__OFFSET_MASK 0xFFFFFFFFL
+//SDMA_RLC0_RB_WPTR_HI
+#define SDMA_RLC0_RB_WPTR_HI__OFFSET__SHIFT 0x0
+#define SDMA_RLC0_RB_WPTR_HI__OFFSET_MASK 0xFFFFFFFFL
+//SDMA_RLC0_RB_WPTR_POLL_CNTL
+#define SDMA_RLC0_RB_WPTR_POLL_CNTL__ENABLE__SHIFT 0x0
+#define SDMA_RLC0_RB_WPTR_POLL_CNTL__SWAP_ENABLE__SHIFT 0x1
+#define SDMA_RLC0_RB_WPTR_POLL_CNTL__F32_POLL_ENABLE__SHIFT 0x2
+#define SDMA_RLC0_RB_WPTR_POLL_CNTL__FREQUENCY__SHIFT 0x4
+#define SDMA_RLC0_RB_WPTR_POLL_CNTL__IDLE_POLL_COUNT__SHIFT 0x10
+#define SDMA_RLC0_RB_WPTR_POLL_CNTL__ENABLE_MASK 0x00000001L
+#define SDMA_RLC0_RB_WPTR_POLL_CNTL__SWAP_ENABLE_MASK 0x00000002L
+#define SDMA_RLC0_RB_WPTR_POLL_CNTL__F32_POLL_ENABLE_MASK 0x00000004L
+#define SDMA_RLC0_RB_WPTR_POLL_CNTL__FREQUENCY_MASK 0x0000FFF0L
+#define SDMA_RLC0_RB_WPTR_POLL_CNTL__IDLE_POLL_COUNT_MASK 0xFFFF0000L
+//SDMA_RLC0_RB_RPTR_ADDR_HI
+#define SDMA_RLC0_RB_RPTR_ADDR_HI__ADDR__SHIFT 0x0
+#define SDMA_RLC0_RB_RPTR_ADDR_HI__ADDR_MASK 0xFFFFFFFFL
+//SDMA_RLC0_RB_RPTR_ADDR_LO
+#define SDMA_RLC0_RB_RPTR_ADDR_LO__RPTR_WB_IDLE__SHIFT 0x0
+#define SDMA_RLC0_RB_RPTR_ADDR_LO__ADDR__SHIFT 0x2
+#define SDMA_RLC0_RB_RPTR_ADDR_LO__RPTR_WB_IDLE_MASK 0x00000001L
+#define SDMA_RLC0_RB_RPTR_ADDR_LO__ADDR_MASK 0xFFFFFFFCL
+//SDMA_RLC0_IB_CNTL
+#define SDMA_RLC0_IB_CNTL__IB_ENABLE__SHIFT 0x0
+#define SDMA_RLC0_IB_CNTL__IB_SWAP_ENABLE__SHIFT 0x4
+#define SDMA_RLC0_IB_CNTL__SWITCH_INSIDE_IB__SHIFT 0x8
+#define SDMA_RLC0_IB_CNTL__CMD_VMID__SHIFT 0x10
+#define SDMA_RLC0_IB_CNTL__IB_PRIV__SHIFT 0x1f
+#define SDMA_RLC0_IB_CNTL__IB_ENABLE_MASK 0x00000001L
+#define SDMA_RLC0_IB_CNTL__IB_SWAP_ENABLE_MASK 0x00000010L
+#define SDMA_RLC0_IB_CNTL__SWITCH_INSIDE_IB_MASK 0x00000100L
+#define SDMA_RLC0_IB_CNTL__CMD_VMID_MASK 0x000F0000L
+#define SDMA_RLC0_IB_CNTL__IB_PRIV_MASK 0x80000000L
+//SDMA_RLC0_IB_RPTR
+#define SDMA_RLC0_IB_RPTR__OFFSET__SHIFT 0x2
+#define SDMA_RLC0_IB_RPTR__OFFSET_MASK 0x003FFFFCL
+//SDMA_RLC0_IB_OFFSET
+#define SDMA_RLC0_IB_OFFSET__OFFSET__SHIFT 0x2
+#define SDMA_RLC0_IB_OFFSET__OFFSET_MASK 0x003FFFFCL
+//SDMA_RLC0_IB_BASE_LO
+#define SDMA_RLC0_IB_BASE_LO__ADDR__SHIFT 0x5
+#define SDMA_RLC0_IB_BASE_LO__ADDR_MASK 0xFFFFFFE0L
+//SDMA_RLC0_IB_BASE_HI
+#define SDMA_RLC0_IB_BASE_HI__ADDR__SHIFT 0x0
+#define SDMA_RLC0_IB_BASE_HI__ADDR_MASK 0xFFFFFFFFL
+//SDMA_RLC0_IB_SIZE
+#define SDMA_RLC0_IB_SIZE__SIZE__SHIFT 0x0
+#define SDMA_RLC0_IB_SIZE__SIZE_MASK 0x000FFFFFL
+//SDMA_RLC0_SKIP_CNTL
+#define SDMA_RLC0_SKIP_CNTL__SKIP_COUNT__SHIFT 0x0
+#define SDMA_RLC0_SKIP_CNTL__SKIP_COUNT_MASK 0x000FFFFFL
+//SDMA_RLC0_CONTEXT_STATUS
+#define SDMA_RLC0_CONTEXT_STATUS__SELECTED__SHIFT 0x0
+#define SDMA_RLC0_CONTEXT_STATUS__IDLE__SHIFT 0x2
+#define SDMA_RLC0_CONTEXT_STATUS__EXPIRED__SHIFT 0x3
+#define SDMA_RLC0_CONTEXT_STATUS__EXCEPTION__SHIFT 0x4
+#define SDMA_RLC0_CONTEXT_STATUS__CTXSW_ABLE__SHIFT 0x7
+#define SDMA_RLC0_CONTEXT_STATUS__CTXSW_READY__SHIFT 0x8
+#define SDMA_RLC0_CONTEXT_STATUS__PREEMPTED__SHIFT 0x9
+#define SDMA_RLC0_CONTEXT_STATUS__PREEMPT_DISABLE__SHIFT 0xa
+#define SDMA_RLC0_CONTEXT_STATUS__SELECTED_MASK 0x00000001L
+#define SDMA_RLC0_CONTEXT_STATUS__IDLE_MASK 0x00000004L
+#define SDMA_RLC0_CONTEXT_STATUS__EXPIRED_MASK 0x00000008L
+#define SDMA_RLC0_CONTEXT_STATUS__EXCEPTION_MASK 0x00000070L
+#define SDMA_RLC0_CONTEXT_STATUS__CTXSW_ABLE_MASK 0x00000080L
+#define SDMA_RLC0_CONTEXT_STATUS__CTXSW_READY_MASK 0x00000100L
+#define SDMA_RLC0_CONTEXT_STATUS__PREEMPTED_MASK 0x00000200L
+#define SDMA_RLC0_CONTEXT_STATUS__PREEMPT_DISABLE_MASK 0x00000400L
+//SDMA_RLC0_DOORBELL
+#define SDMA_RLC0_DOORBELL__ENABLE__SHIFT 0x1c
+#define SDMA_RLC0_DOORBELL__CAPTURED__SHIFT 0x1e
+#define SDMA_RLC0_DOORBELL__ENABLE_MASK 0x10000000L
+#define SDMA_RLC0_DOORBELL__CAPTURED_MASK 0x40000000L
+//SDMA_RLC0_STATUS
+#define SDMA_RLC0_STATUS__WPTR_UPDATE_FAIL_COUNT__SHIFT 0x0
+#define SDMA_RLC0_STATUS__WPTR_UPDATE_PENDING__SHIFT 0x8
+#define SDMA_RLC0_STATUS__WPTR_UPDATE_FAIL_COUNT_MASK 0x000000FFL
+#define SDMA_RLC0_STATUS__WPTR_UPDATE_PENDING_MASK 0x00000100L
+//SDMA_RLC0_DOORBELL_LOG
+#define SDMA_RLC0_DOORBELL_LOG__BE_ERROR__SHIFT 0x0
+#define SDMA_RLC0_DOORBELL_LOG__DATA__SHIFT 0x2
+#define SDMA_RLC0_DOORBELL_LOG__BE_ERROR_MASK 0x00000001L
+#define SDMA_RLC0_DOORBELL_LOG__DATA_MASK 0xFFFFFFFCL
+//SDMA_RLC0_WATERMARK
+#define SDMA_RLC0_WATERMARK__RD_OUTSTANDING__SHIFT 0x0
+#define SDMA_RLC0_WATERMARK__WR_OUTSTANDING__SHIFT 0x10
+#define SDMA_RLC0_WATERMARK__RD_OUTSTANDING_MASK 0x00000FFFL
+#define SDMA_RLC0_WATERMARK__WR_OUTSTANDING_MASK 0x03FF0000L
+//SDMA_RLC0_DOORBELL_OFFSET
+#define SDMA_RLC0_DOORBELL_OFFSET__OFFSET__SHIFT 0x2
+#define SDMA_RLC0_DOORBELL_OFFSET__OFFSET_MASK 0x0FFFFFFCL
+//SDMA_RLC0_CSA_ADDR_LO
+#define SDMA_RLC0_CSA_ADDR_LO__ADDR__SHIFT 0x2
+#define SDMA_RLC0_CSA_ADDR_LO__ADDR_MASK 0xFFFFFFFCL
+//SDMA_RLC0_CSA_ADDR_HI
+#define SDMA_RLC0_CSA_ADDR_HI__ADDR__SHIFT 0x0
+#define SDMA_RLC0_CSA_ADDR_HI__ADDR_MASK 0xFFFFFFFFL
+//SDMA_RLC0_IB_SUB_REMAIN
+#define SDMA_RLC0_IB_SUB_REMAIN__SIZE__SHIFT 0x0
+#define SDMA_RLC0_IB_SUB_REMAIN__SIZE_MASK 0x000FFFFFL
+//SDMA_RLC0_PREEMPT
+#define SDMA_RLC0_PREEMPT__IB_PREEMPT__SHIFT 0x0
+#define SDMA_RLC0_PREEMPT__IB_PREEMPT_MASK 0x00000001L
+//SDMA_RLC0_DUMMY_REG
+#define SDMA_RLC0_DUMMY_REG__DUMMY__SHIFT 0x0
+#define SDMA_RLC0_DUMMY_REG__DUMMY_MASK 0xFFFFFFFFL
+//SDMA_RLC0_RB_WPTR_POLL_ADDR_HI
+#define SDMA_RLC0_RB_WPTR_POLL_ADDR_HI__ADDR__SHIFT 0x0
+#define SDMA_RLC0_RB_WPTR_POLL_ADDR_HI__ADDR_MASK 0xFFFFFFFFL
+//SDMA_RLC0_RB_WPTR_POLL_ADDR_LO
+#define SDMA_RLC0_RB_WPTR_POLL_ADDR_LO__ADDR__SHIFT 0x2
+#define SDMA_RLC0_RB_WPTR_POLL_ADDR_LO__ADDR_MASK 0xFFFFFFFCL
+//SDMA_RLC0_RB_AQL_CNTL
+#define SDMA_RLC0_RB_AQL_CNTL__AQL_ENABLE__SHIFT 0x0
+#define SDMA_RLC0_RB_AQL_CNTL__AQL_PACKET_SIZE__SHIFT 0x1
+#define SDMA_RLC0_RB_AQL_CNTL__PACKET_STEP__SHIFT 0x8
+#define SDMA_RLC0_RB_AQL_CNTL__AQL_ENABLE_MASK 0x00000001L
+#define SDMA_RLC0_RB_AQL_CNTL__AQL_PACKET_SIZE_MASK 0x000000FEL
+#define SDMA_RLC0_RB_AQL_CNTL__PACKET_STEP_MASK 0x0000FF00L
+//SDMA_RLC0_MINOR_PTR_UPDATE
+#define SDMA_RLC0_MINOR_PTR_UPDATE__ENABLE__SHIFT 0x0
+#define SDMA_RLC0_MINOR_PTR_UPDATE__ENABLE_MASK 0x00000001L
+//SDMA_RLC0_MIDCMD_DATA0
+#define SDMA_RLC0_MIDCMD_DATA0__DATA0__SHIFT 0x0
+#define SDMA_RLC0_MIDCMD_DATA0__DATA0_MASK 0xFFFFFFFFL
+//SDMA_RLC0_MIDCMD_DATA1
+#define SDMA_RLC0_MIDCMD_DATA1__DATA1__SHIFT 0x0
+#define SDMA_RLC0_MIDCMD_DATA1__DATA1_MASK 0xFFFFFFFFL
+//SDMA_RLC0_MIDCMD_DATA2
+#define SDMA_RLC0_MIDCMD_DATA2__DATA2__SHIFT 0x0
+#define SDMA_RLC0_MIDCMD_DATA2__DATA2_MASK 0xFFFFFFFFL
+//SDMA_RLC0_MIDCMD_DATA3
+#define SDMA_RLC0_MIDCMD_DATA3__DATA3__SHIFT 0x0
+#define SDMA_RLC0_MIDCMD_DATA3__DATA3_MASK 0xFFFFFFFFL
+//SDMA_RLC0_MIDCMD_DATA4
+#define SDMA_RLC0_MIDCMD_DATA4__DATA4__SHIFT 0x0
+#define SDMA_RLC0_MIDCMD_DATA4__DATA4_MASK 0xFFFFFFFFL
+//SDMA_RLC0_MIDCMD_DATA5
+#define SDMA_RLC0_MIDCMD_DATA5__DATA5__SHIFT 0x0
+#define SDMA_RLC0_MIDCMD_DATA5__DATA5_MASK 0xFFFFFFFFL
+//SDMA_RLC0_MIDCMD_DATA6
+#define SDMA_RLC0_MIDCMD_DATA6__DATA6__SHIFT 0x0
+#define SDMA_RLC0_MIDCMD_DATA6__DATA6_MASK 0xFFFFFFFFL
+//SDMA_RLC0_MIDCMD_DATA7
+#define SDMA_RLC0_MIDCMD_DATA7__DATA7__SHIFT 0x0
+#define SDMA_RLC0_MIDCMD_DATA7__DATA7_MASK 0xFFFFFFFFL
+//SDMA_RLC0_MIDCMD_DATA8
+#define SDMA_RLC0_MIDCMD_DATA8__DATA8__SHIFT 0x0
+#define SDMA_RLC0_MIDCMD_DATA8__DATA8_MASK 0xFFFFFFFFL
+//SDMA_RLC0_MIDCMD_DATA9
+#define SDMA_RLC0_MIDCMD_DATA9__DATA9__SHIFT 0x0
+#define SDMA_RLC0_MIDCMD_DATA9__DATA9_MASK 0xFFFFFFFFL
+//SDMA_RLC0_MIDCMD_DATA10
+#define SDMA_RLC0_MIDCMD_DATA10__DATA10__SHIFT 0x0
+#define SDMA_RLC0_MIDCMD_DATA10__DATA10_MASK 0xFFFFFFFFL
+//SDMA_RLC0_MIDCMD_CNTL
+#define SDMA_RLC0_MIDCMD_CNTL__DATA_VALID__SHIFT 0x0
+#define SDMA_RLC0_MIDCMD_CNTL__COPY_MODE__SHIFT 0x1
+#define SDMA_RLC0_MIDCMD_CNTL__SPLIT_STATE__SHIFT 0x4
+#define SDMA_RLC0_MIDCMD_CNTL__ALLOW_PREEMPT__SHIFT 0x8
+#define SDMA_RLC0_MIDCMD_CNTL__DATA_VALID_MASK 0x00000001L
+#define SDMA_RLC0_MIDCMD_CNTL__COPY_MODE_MASK 0x00000002L
+#define SDMA_RLC0_MIDCMD_CNTL__SPLIT_STATE_MASK 0x000000F0L
+#define SDMA_RLC0_MIDCMD_CNTL__ALLOW_PREEMPT_MASK 0x00000100L
+//SDMA_RLC1_RB_CNTL
+#define SDMA_RLC1_RB_CNTL__RB_ENABLE__SHIFT 0x0
+#define SDMA_RLC1_RB_CNTL__RB_SIZE__SHIFT 0x1
+#define SDMA_RLC1_RB_CNTL__RB_SWAP_ENABLE__SHIFT 0x9
+#define SDMA_RLC1_RB_CNTL__RPTR_WRITEBACK_ENABLE__SHIFT 0xc
+#define SDMA_RLC1_RB_CNTL__RPTR_WRITEBACK_SWAP_ENABLE__SHIFT 0xd
+#define SDMA_RLC1_RB_CNTL__RPTR_WRITEBACK_TIMER__SHIFT 0x10
+#define SDMA_RLC1_RB_CNTL__RB_PRIV__SHIFT 0x17
+#define SDMA_RLC1_RB_CNTL__RB_VMID__SHIFT 0x18
+#define SDMA_RLC1_RB_CNTL__RB_ENABLE_MASK 0x00000001L
+#define SDMA_RLC1_RB_CNTL__RB_SIZE_MASK 0x0000003EL
+#define SDMA_RLC1_RB_CNTL__RB_SWAP_ENABLE_MASK 0x00000200L
+#define SDMA_RLC1_RB_CNTL__RPTR_WRITEBACK_ENABLE_MASK 0x00001000L
+#define SDMA_RLC1_RB_CNTL__RPTR_WRITEBACK_SWAP_ENABLE_MASK 0x00002000L
+#define SDMA_RLC1_RB_CNTL__RPTR_WRITEBACK_TIMER_MASK 0x001F0000L
+#define SDMA_RLC1_RB_CNTL__RB_PRIV_MASK 0x00800000L
+#define SDMA_RLC1_RB_CNTL__RB_VMID_MASK 0x0F000000L
+//SDMA_RLC1_RB_BASE
+#define SDMA_RLC1_RB_BASE__ADDR__SHIFT 0x0
+#define SDMA_RLC1_RB_BASE__ADDR_MASK 0xFFFFFFFFL
+//SDMA_RLC1_RB_BASE_HI
+#define SDMA_RLC1_RB_BASE_HI__ADDR__SHIFT 0x0
+#define SDMA_RLC1_RB_BASE_HI__ADDR_MASK 0x00FFFFFFL
+//SDMA_RLC1_RB_RPTR
+#define SDMA_RLC1_RB_RPTR__OFFSET__SHIFT 0x0
+#define SDMA_RLC1_RB_RPTR__OFFSET_MASK 0xFFFFFFFFL
+//SDMA_RLC1_RB_RPTR_HI
+#define SDMA_RLC1_RB_RPTR_HI__OFFSET__SHIFT 0x0
+#define SDMA_RLC1_RB_RPTR_HI__OFFSET_MASK 0xFFFFFFFFL
+//SDMA_RLC1_RB_WPTR
+#define SDMA_RLC1_RB_WPTR__OFFSET__SHIFT 0x0
+#define SDMA_RLC1_RB_WPTR__OFFSET_MASK 0xFFFFFFFFL
+//SDMA_RLC1_RB_WPTR_HI
+#define SDMA_RLC1_RB_WPTR_HI__OFFSET__SHIFT 0x0
+#define SDMA_RLC1_RB_WPTR_HI__OFFSET_MASK 0xFFFFFFFFL
+//SDMA_RLC1_RB_WPTR_POLL_CNTL
+#define SDMA_RLC1_RB_WPTR_POLL_CNTL__ENABLE__SHIFT 0x0
+#define SDMA_RLC1_RB_WPTR_POLL_CNTL__SWAP_ENABLE__SHIFT 0x1
+#define SDMA_RLC1_RB_WPTR_POLL_CNTL__F32_POLL_ENABLE__SHIFT 0x2
+#define SDMA_RLC1_RB_WPTR_POLL_CNTL__FREQUENCY__SHIFT 0x4
+#define SDMA_RLC1_RB_WPTR_POLL_CNTL__IDLE_POLL_COUNT__SHIFT 0x10
+#define SDMA_RLC1_RB_WPTR_POLL_CNTL__ENABLE_MASK 0x00000001L
+#define SDMA_RLC1_RB_WPTR_POLL_CNTL__SWAP_ENABLE_MASK 0x00000002L
+#define SDMA_RLC1_RB_WPTR_POLL_CNTL__F32_POLL_ENABLE_MASK 0x00000004L
+#define SDMA_RLC1_RB_WPTR_POLL_CNTL__FREQUENCY_MASK 0x0000FFF0L
+#define SDMA_RLC1_RB_WPTR_POLL_CNTL__IDLE_POLL_COUNT_MASK 0xFFFF0000L
+//SDMA_RLC1_RB_RPTR_ADDR_HI
+#define SDMA_RLC1_RB_RPTR_ADDR_HI__ADDR__SHIFT 0x0
+#define SDMA_RLC1_RB_RPTR_ADDR_HI__ADDR_MASK 0xFFFFFFFFL
+//SDMA_RLC1_RB_RPTR_ADDR_LO
+#define SDMA_RLC1_RB_RPTR_ADDR_LO__RPTR_WB_IDLE__SHIFT 0x0
+#define SDMA_RLC1_RB_RPTR_ADDR_LO__ADDR__SHIFT 0x2
+#define SDMA_RLC1_RB_RPTR_ADDR_LO__RPTR_WB_IDLE_MASK 0x00000001L
+#define SDMA_RLC1_RB_RPTR_ADDR_LO__ADDR_MASK 0xFFFFFFFCL
+//SDMA_RLC1_IB_CNTL
+#define SDMA_RLC1_IB_CNTL__IB_ENABLE__SHIFT 0x0
+#define SDMA_RLC1_IB_CNTL__IB_SWAP_ENABLE__SHIFT 0x4
+#define SDMA_RLC1_IB_CNTL__SWITCH_INSIDE_IB__SHIFT 0x8
+#define SDMA_RLC1_IB_CNTL__CMD_VMID__SHIFT 0x10
+#define SDMA_RLC1_IB_CNTL__IB_PRIV__SHIFT 0x1f
+#define SDMA_RLC1_IB_CNTL__IB_ENABLE_MASK 0x00000001L
+#define SDMA_RLC1_IB_CNTL__IB_SWAP_ENABLE_MASK 0x00000010L
+#define SDMA_RLC1_IB_CNTL__SWITCH_INSIDE_IB_MASK 0x00000100L
+#define SDMA_RLC1_IB_CNTL__CMD_VMID_MASK 0x000F0000L
+#define SDMA_RLC1_IB_CNTL__IB_PRIV_MASK 0x80000000L
+//SDMA_RLC1_IB_RPTR
+#define SDMA_RLC1_IB_RPTR__OFFSET__SHIFT 0x2
+#define SDMA_RLC1_IB_RPTR__OFFSET_MASK 0x003FFFFCL
+//SDMA_RLC1_IB_OFFSET
+#define SDMA_RLC1_IB_OFFSET__OFFSET__SHIFT 0x2
+#define SDMA_RLC1_IB_OFFSET__OFFSET_MASK 0x003FFFFCL
+//SDMA_RLC1_IB_BASE_LO
+#define SDMA_RLC1_IB_BASE_LO__ADDR__SHIFT 0x5
+#define SDMA_RLC1_IB_BASE_LO__ADDR_MASK 0xFFFFFFE0L
+//SDMA_RLC1_IB_BASE_HI
+#define SDMA_RLC1_IB_BASE_HI__ADDR__SHIFT 0x0
+#define SDMA_RLC1_IB_BASE_HI__ADDR_MASK 0xFFFFFFFFL
+//SDMA_RLC1_IB_SIZE
+#define SDMA_RLC1_IB_SIZE__SIZE__SHIFT 0x0
+#define SDMA_RLC1_IB_SIZE__SIZE_MASK 0x000FFFFFL
+//SDMA_RLC1_SKIP_CNTL
+#define SDMA_RLC1_SKIP_CNTL__SKIP_COUNT__SHIFT 0x0
+#define SDMA_RLC1_SKIP_CNTL__SKIP_COUNT_MASK 0x000FFFFFL
+//SDMA_RLC1_CONTEXT_STATUS
+#define SDMA_RLC1_CONTEXT_STATUS__SELECTED__SHIFT 0x0
+#define SDMA_RLC1_CONTEXT_STATUS__IDLE__SHIFT 0x2
+#define SDMA_RLC1_CONTEXT_STATUS__EXPIRED__SHIFT 0x3
+#define SDMA_RLC1_CONTEXT_STATUS__EXCEPTION__SHIFT 0x4
+#define SDMA_RLC1_CONTEXT_STATUS__CTXSW_ABLE__SHIFT 0x7
+#define SDMA_RLC1_CONTEXT_STATUS__CTXSW_READY__SHIFT 0x8
+#define SDMA_RLC1_CONTEXT_STATUS__PREEMPTED__SHIFT 0x9
+#define SDMA_RLC1_CONTEXT_STATUS__PREEMPT_DISABLE__SHIFT 0xa
+#define SDMA_RLC1_CONTEXT_STATUS__SELECTED_MASK 0x00000001L
+#define SDMA_RLC1_CONTEXT_STATUS__IDLE_MASK 0x00000004L
+#define SDMA_RLC1_CONTEXT_STATUS__EXPIRED_MASK 0x00000008L
+#define SDMA_RLC1_CONTEXT_STATUS__EXCEPTION_MASK 0x00000070L
+#define SDMA_RLC1_CONTEXT_STATUS__CTXSW_ABLE_MASK 0x00000080L
+#define SDMA_RLC1_CONTEXT_STATUS__CTXSW_READY_MASK 0x00000100L
+#define SDMA_RLC1_CONTEXT_STATUS__PREEMPTED_MASK 0x00000200L
+#define SDMA_RLC1_CONTEXT_STATUS__PREEMPT_DISABLE_MASK 0x00000400L
+//SDMA_RLC1_DOORBELL
+#define SDMA_RLC1_DOORBELL__ENABLE__SHIFT 0x1c
+#define SDMA_RLC1_DOORBELL__CAPTURED__SHIFT 0x1e
+#define SDMA_RLC1_DOORBELL__ENABLE_MASK 0x10000000L
+#define SDMA_RLC1_DOORBELL__CAPTURED_MASK 0x40000000L
+//SDMA_RLC1_STATUS
+#define SDMA_RLC1_STATUS__WPTR_UPDATE_FAIL_COUNT__SHIFT 0x0
+#define SDMA_RLC1_STATUS__WPTR_UPDATE_PENDING__SHIFT 0x8
+#define SDMA_RLC1_STATUS__WPTR_UPDATE_FAIL_COUNT_MASK 0x000000FFL
+#define SDMA_RLC1_STATUS__WPTR_UPDATE_PENDING_MASK 0x00000100L
+//SDMA_RLC1_DOORBELL_LOG
+#define SDMA_RLC1_DOORBELL_LOG__BE_ERROR__SHIFT 0x0
+#define SDMA_RLC1_DOORBELL_LOG__DATA__SHIFT 0x2
+#define SDMA_RLC1_DOORBELL_LOG__BE_ERROR_MASK 0x00000001L
+#define SDMA_RLC1_DOORBELL_LOG__DATA_MASK 0xFFFFFFFCL
+//SDMA_RLC1_WATERMARK
+#define SDMA_RLC1_WATERMARK__RD_OUTSTANDING__SHIFT 0x0
+#define SDMA_RLC1_WATERMARK__WR_OUTSTANDING__SHIFT 0x10
+#define SDMA_RLC1_WATERMARK__RD_OUTSTANDING_MASK 0x00000FFFL
+#define SDMA_RLC1_WATERMARK__WR_OUTSTANDING_MASK 0x03FF0000L
+//SDMA_RLC1_DOORBELL_OFFSET
+#define SDMA_RLC1_DOORBELL_OFFSET__OFFSET__SHIFT 0x2
+#define SDMA_RLC1_DOORBELL_OFFSET__OFFSET_MASK 0x0FFFFFFCL
+//SDMA_RLC1_CSA_ADDR_LO
+#define SDMA_RLC1_CSA_ADDR_LO__ADDR__SHIFT 0x2
+#define SDMA_RLC1_CSA_ADDR_LO__ADDR_MASK 0xFFFFFFFCL
+//SDMA_RLC1_CSA_ADDR_HI
+#define SDMA_RLC1_CSA_ADDR_HI__ADDR__SHIFT 0x0
+#define SDMA_RLC1_CSA_ADDR_HI__ADDR_MASK 0xFFFFFFFFL
+//SDMA_RLC1_IB_SUB_REMAIN
+#define SDMA_RLC1_IB_SUB_REMAIN__SIZE__SHIFT 0x0
+#define SDMA_RLC1_IB_SUB_REMAIN__SIZE_MASK 0x000FFFFFL
+//SDMA_RLC1_PREEMPT
+#define SDMA_RLC1_PREEMPT__IB_PREEMPT__SHIFT 0x0
+#define SDMA_RLC1_PREEMPT__IB_PREEMPT_MASK 0x00000001L
+//SDMA_RLC1_DUMMY_REG
+#define SDMA_RLC1_DUMMY_REG__DUMMY__SHIFT 0x0
+#define SDMA_RLC1_DUMMY_REG__DUMMY_MASK 0xFFFFFFFFL
+//SDMA_RLC1_RB_WPTR_POLL_ADDR_HI
+#define SDMA_RLC1_RB_WPTR_POLL_ADDR_HI__ADDR__SHIFT 0x0
+#define SDMA_RLC1_RB_WPTR_POLL_ADDR_HI__ADDR_MASK 0xFFFFFFFFL
+//SDMA_RLC1_RB_WPTR_POLL_ADDR_LO
+#define SDMA_RLC1_RB_WPTR_POLL_ADDR_LO__ADDR__SHIFT 0x2
+#define SDMA_RLC1_RB_WPTR_POLL_ADDR_LO__ADDR_MASK 0xFFFFFFFCL
+//SDMA_RLC1_RB_AQL_CNTL
+#define SDMA_RLC1_RB_AQL_CNTL__AQL_ENABLE__SHIFT 0x0
+#define SDMA_RLC1_RB_AQL_CNTL__AQL_PACKET_SIZE__SHIFT 0x1
+#define SDMA_RLC1_RB_AQL_CNTL__PACKET_STEP__SHIFT 0x8
+#define SDMA_RLC1_RB_AQL_CNTL__AQL_ENABLE_MASK 0x00000001L
+#define SDMA_RLC1_RB_AQL_CNTL__AQL_PACKET_SIZE_MASK 0x000000FEL
+#define SDMA_RLC1_RB_AQL_CNTL__PACKET_STEP_MASK 0x0000FF00L
+//SDMA_RLC1_MINOR_PTR_UPDATE
+#define SDMA_RLC1_MINOR_PTR_UPDATE__ENABLE__SHIFT 0x0
+#define SDMA_RLC1_MINOR_PTR_UPDATE__ENABLE_MASK 0x00000001L
+//SDMA_RLC1_MIDCMD_DATA0
+#define SDMA_RLC1_MIDCMD_DATA0__DATA0__SHIFT 0x0
+#define SDMA_RLC1_MIDCMD_DATA0__DATA0_MASK 0xFFFFFFFFL
+//SDMA_RLC1_MIDCMD_DATA1
+#define SDMA_RLC1_MIDCMD_DATA1__DATA1__SHIFT 0x0
+#define SDMA_RLC1_MIDCMD_DATA1__DATA1_MASK 0xFFFFFFFFL
+//SDMA_RLC1_MIDCMD_DATA2
+#define SDMA_RLC1_MIDCMD_DATA2__DATA2__SHIFT 0x0
+#define SDMA_RLC1_MIDCMD_DATA2__DATA2_MASK 0xFFFFFFFFL
+//SDMA_RLC1_MIDCMD_DATA3
+#define SDMA_RLC1_MIDCMD_DATA3__DATA3__SHIFT 0x0
+#define SDMA_RLC1_MIDCMD_DATA3__DATA3_MASK 0xFFFFFFFFL
+//SDMA_RLC1_MIDCMD_DATA4
+#define SDMA_RLC1_MIDCMD_DATA4__DATA4__SHIFT 0x0
+#define SDMA_RLC1_MIDCMD_DATA4__DATA4_MASK 0xFFFFFFFFL
+//SDMA_RLC1_MIDCMD_DATA5
+#define SDMA_RLC1_MIDCMD_DATA5__DATA5__SHIFT 0x0
+#define SDMA_RLC1_MIDCMD_DATA5__DATA5_MASK 0xFFFFFFFFL
+//SDMA_RLC1_MIDCMD_DATA6
+#define SDMA_RLC1_MIDCMD_DATA6__DATA6__SHIFT 0x0
+#define SDMA_RLC1_MIDCMD_DATA6__DATA6_MASK 0xFFFFFFFFL
+//SDMA_RLC1_MIDCMD_DATA7
+#define SDMA_RLC1_MIDCMD_DATA7__DATA7__SHIFT 0x0
+#define SDMA_RLC1_MIDCMD_DATA7__DATA7_MASK 0xFFFFFFFFL
+//SDMA_RLC1_MIDCMD_DATA8
+#define SDMA_RLC1_MIDCMD_DATA8__DATA8__SHIFT 0x0
+#define SDMA_RLC1_MIDCMD_DATA8__DATA8_MASK 0xFFFFFFFFL
+//SDMA_RLC1_MIDCMD_DATA9
+#define SDMA_RLC1_MIDCMD_DATA9__DATA9__SHIFT 0x0
+#define SDMA_RLC1_MIDCMD_DATA9__DATA9_MASK 0xFFFFFFFFL
+//SDMA_RLC1_MIDCMD_DATA10
+#define SDMA_RLC1_MIDCMD_DATA10__DATA10__SHIFT 0x0
+#define SDMA_RLC1_MIDCMD_DATA10__DATA10_MASK 0xFFFFFFFFL
+//SDMA_RLC1_MIDCMD_CNTL
+#define SDMA_RLC1_MIDCMD_CNTL__DATA_VALID__SHIFT 0x0
+#define SDMA_RLC1_MIDCMD_CNTL__COPY_MODE__SHIFT 0x1
+#define SDMA_RLC1_MIDCMD_CNTL__SPLIT_STATE__SHIFT 0x4
+#define SDMA_RLC1_MIDCMD_CNTL__ALLOW_PREEMPT__SHIFT 0x8
+#define SDMA_RLC1_MIDCMD_CNTL__DATA_VALID_MASK 0x00000001L
+#define SDMA_RLC1_MIDCMD_CNTL__COPY_MODE_MASK 0x00000002L
+#define SDMA_RLC1_MIDCMD_CNTL__SPLIT_STATE_MASK 0x000000F0L
+#define SDMA_RLC1_MIDCMD_CNTL__ALLOW_PREEMPT_MASK 0x00000100L
+//SDMA_RLC2_RB_CNTL
+#define SDMA_RLC2_RB_CNTL__RB_ENABLE__SHIFT 0x0
+#define SDMA_RLC2_RB_CNTL__RB_SIZE__SHIFT 0x1
+#define SDMA_RLC2_RB_CNTL__RB_SWAP_ENABLE__SHIFT 0x9
+#define SDMA_RLC2_RB_CNTL__RPTR_WRITEBACK_ENABLE__SHIFT 0xc
+#define SDMA_RLC2_RB_CNTL__RPTR_WRITEBACK_SWAP_ENABLE__SHIFT 0xd
+#define SDMA_RLC2_RB_CNTL__RPTR_WRITEBACK_TIMER__SHIFT 0x10
+#define SDMA_RLC2_RB_CNTL__RB_PRIV__SHIFT 0x17
+#define SDMA_RLC2_RB_CNTL__RB_VMID__SHIFT 0x18
+#define SDMA_RLC2_RB_CNTL__RB_ENABLE_MASK 0x00000001L
+#define SDMA_RLC2_RB_CNTL__RB_SIZE_MASK 0x0000003EL
+#define SDMA_RLC2_RB_CNTL__RB_SWAP_ENABLE_MASK 0x00000200L
+#define SDMA_RLC2_RB_CNTL__RPTR_WRITEBACK_ENABLE_MASK 0x00001000L
+#define SDMA_RLC2_RB_CNTL__RPTR_WRITEBACK_SWAP_ENABLE_MASK 0x00002000L
+#define SDMA_RLC2_RB_CNTL__RPTR_WRITEBACK_TIMER_MASK 0x001F0000L
+#define SDMA_RLC2_RB_CNTL__RB_PRIV_MASK 0x00800000L
+#define SDMA_RLC2_RB_CNTL__RB_VMID_MASK 0x0F000000L
+//SDMA_RLC2_RB_BASE
+#define SDMA_RLC2_RB_BASE__ADDR__SHIFT 0x0
+#define SDMA_RLC2_RB_BASE__ADDR_MASK 0xFFFFFFFFL
+//SDMA_RLC2_RB_BASE_HI
+#define SDMA_RLC2_RB_BASE_HI__ADDR__SHIFT 0x0
+#define SDMA_RLC2_RB_BASE_HI__ADDR_MASK 0x00FFFFFFL
+//SDMA_RLC2_RB_RPTR
+#define SDMA_RLC2_RB_RPTR__OFFSET__SHIFT 0x0
+#define SDMA_RLC2_RB_RPTR__OFFSET_MASK 0xFFFFFFFFL
+//SDMA_RLC2_RB_RPTR_HI
+#define SDMA_RLC2_RB_RPTR_HI__OFFSET__SHIFT 0x0
+#define SDMA_RLC2_RB_RPTR_HI__OFFSET_MASK 0xFFFFFFFFL
+//SDMA_RLC2_RB_WPTR
+#define SDMA_RLC2_RB_WPTR__OFFSET__SHIFT 0x0
+#define SDMA_RLC2_RB_WPTR__OFFSET_MASK 0xFFFFFFFFL
+//SDMA_RLC2_RB_WPTR_HI
+#define SDMA_RLC2_RB_WPTR_HI__OFFSET__SHIFT 0x0
+#define SDMA_RLC2_RB_WPTR_HI__OFFSET_MASK 0xFFFFFFFFL
+//SDMA_RLC2_RB_WPTR_POLL_CNTL
+#define SDMA_RLC2_RB_WPTR_POLL_CNTL__ENABLE__SHIFT 0x0
+#define SDMA_RLC2_RB_WPTR_POLL_CNTL__SWAP_ENABLE__SHIFT 0x1
+#define SDMA_RLC2_RB_WPTR_POLL_CNTL__F32_POLL_ENABLE__SHIFT 0x2
+#define SDMA_RLC2_RB_WPTR_POLL_CNTL__FREQUENCY__SHIFT 0x4
+#define SDMA_RLC2_RB_WPTR_POLL_CNTL__IDLE_POLL_COUNT__SHIFT 0x10
+#define SDMA_RLC2_RB_WPTR_POLL_CNTL__ENABLE_MASK 0x00000001L
+#define SDMA_RLC2_RB_WPTR_POLL_CNTL__SWAP_ENABLE_MASK 0x00000002L
+#define SDMA_RLC2_RB_WPTR_POLL_CNTL__F32_POLL_ENABLE_MASK 0x00000004L
+#define SDMA_RLC2_RB_WPTR_POLL_CNTL__FREQUENCY_MASK 0x0000FFF0L
+#define SDMA_RLC2_RB_WPTR_POLL_CNTL__IDLE_POLL_COUNT_MASK 0xFFFF0000L
+//SDMA_RLC2_RB_RPTR_ADDR_HI
+#define SDMA_RLC2_RB_RPTR_ADDR_HI__ADDR__SHIFT 0x0
+#define SDMA_RLC2_RB_RPTR_ADDR_HI__ADDR_MASK 0xFFFFFFFFL
+//SDMA_RLC2_RB_RPTR_ADDR_LO
+#define SDMA_RLC2_RB_RPTR_ADDR_LO__RPTR_WB_IDLE__SHIFT 0x0
+#define SDMA_RLC2_RB_RPTR_ADDR_LO__ADDR__SHIFT 0x2
+#define SDMA_RLC2_RB_RPTR_ADDR_LO__RPTR_WB_IDLE_MASK 0x00000001L
+#define SDMA_RLC2_RB_RPTR_ADDR_LO__ADDR_MASK 0xFFFFFFFCL
+//SDMA_RLC2_IB_CNTL
+#define SDMA_RLC2_IB_CNTL__IB_ENABLE__SHIFT 0x0
+#define SDMA_RLC2_IB_CNTL__IB_SWAP_ENABLE__SHIFT 0x4
+#define SDMA_RLC2_IB_CNTL__SWITCH_INSIDE_IB__SHIFT 0x8
+#define SDMA_RLC2_IB_CNTL__CMD_VMID__SHIFT 0x10
+#define SDMA_RLC2_IB_CNTL__IB_PRIV__SHIFT 0x1f
+#define SDMA_RLC2_IB_CNTL__IB_ENABLE_MASK 0x00000001L
+#define SDMA_RLC2_IB_CNTL__IB_SWAP_ENABLE_MASK 0x00000010L
+#define SDMA_RLC2_IB_CNTL__SWITCH_INSIDE_IB_MASK 0x00000100L
+#define SDMA_RLC2_IB_CNTL__CMD_VMID_MASK 0x000F0000L
+#define SDMA_RLC2_IB_CNTL__IB_PRIV_MASK 0x80000000L
+//SDMA_RLC2_IB_RPTR
+#define SDMA_RLC2_IB_RPTR__OFFSET__SHIFT 0x2
+#define SDMA_RLC2_IB_RPTR__OFFSET_MASK 0x003FFFFCL
+//SDMA_RLC2_IB_OFFSET
+#define SDMA_RLC2_IB_OFFSET__OFFSET__SHIFT 0x2
+#define SDMA_RLC2_IB_OFFSET__OFFSET_MASK 0x003FFFFCL
+//SDMA_RLC2_IB_BASE_LO
+#define SDMA_RLC2_IB_BASE_LO__ADDR__SHIFT 0x5
+#define SDMA_RLC2_IB_BASE_LO__ADDR_MASK 0xFFFFFFE0L
+//SDMA_RLC2_IB_BASE_HI
+#define SDMA_RLC2_IB_BASE_HI__ADDR__SHIFT 0x0
+#define SDMA_RLC2_IB_BASE_HI__ADDR_MASK 0xFFFFFFFFL
+//SDMA_RLC2_IB_SIZE
+#define SDMA_RLC2_IB_SIZE__SIZE__SHIFT 0x0
+#define SDMA_RLC2_IB_SIZE__SIZE_MASK 0x000FFFFFL
+//SDMA_RLC2_SKIP_CNTL
+#define SDMA_RLC2_SKIP_CNTL__SKIP_COUNT__SHIFT 0x0
+#define SDMA_RLC2_SKIP_CNTL__SKIP_COUNT_MASK 0x000FFFFFL
+//SDMA_RLC2_CONTEXT_STATUS
+#define SDMA_RLC2_CONTEXT_STATUS__SELECTED__SHIFT 0x0
+#define SDMA_RLC2_CONTEXT_STATUS__IDLE__SHIFT 0x2
+#define SDMA_RLC2_CONTEXT_STATUS__EXPIRED__SHIFT 0x3
+#define SDMA_RLC2_CONTEXT_STATUS__EXCEPTION__SHIFT 0x4
+#define SDMA_RLC2_CONTEXT_STATUS__CTXSW_ABLE__SHIFT 0x7
+#define SDMA_RLC2_CONTEXT_STATUS__CTXSW_READY__SHIFT 0x8
+#define SDMA_RLC2_CONTEXT_STATUS__PREEMPTED__SHIFT 0x9
+#define SDMA_RLC2_CONTEXT_STATUS__PREEMPT_DISABLE__SHIFT 0xa
+#define SDMA_RLC2_CONTEXT_STATUS__SELECTED_MASK 0x00000001L
+#define SDMA_RLC2_CONTEXT_STATUS__IDLE_MASK 0x00000004L
+#define SDMA_RLC2_CONTEXT_STATUS__EXPIRED_MASK 0x00000008L
+#define SDMA_RLC2_CONTEXT_STATUS__EXCEPTION_MASK 0x00000070L
+#define SDMA_RLC2_CONTEXT_STATUS__CTXSW_ABLE_MASK 0x00000080L
+#define SDMA_RLC2_CONTEXT_STATUS__CTXSW_READY_MASK 0x00000100L
+#define SDMA_RLC2_CONTEXT_STATUS__PREEMPTED_MASK 0x00000200L
+#define SDMA_RLC2_CONTEXT_STATUS__PREEMPT_DISABLE_MASK 0x00000400L
+//SDMA_RLC2_DOORBELL
+#define SDMA_RLC2_DOORBELL__ENABLE__SHIFT 0x1c
+#define SDMA_RLC2_DOORBELL__CAPTURED__SHIFT 0x1e
+#define SDMA_RLC2_DOORBELL__ENABLE_MASK 0x10000000L
+#define SDMA_RLC2_DOORBELL__CAPTURED_MASK 0x40000000L
+//SDMA_RLC2_STATUS
+#define SDMA_RLC2_STATUS__WPTR_UPDATE_FAIL_COUNT__SHIFT 0x0
+#define SDMA_RLC2_STATUS__WPTR_UPDATE_PENDING__SHIFT 0x8
+#define SDMA_RLC2_STATUS__WPTR_UPDATE_FAIL_COUNT_MASK 0x000000FFL
+#define SDMA_RLC2_STATUS__WPTR_UPDATE_PENDING_MASK 0x00000100L
+//SDMA_RLC2_DOORBELL_LOG
+#define SDMA_RLC2_DOORBELL_LOG__BE_ERROR__SHIFT 0x0
+#define SDMA_RLC2_DOORBELL_LOG__DATA__SHIFT 0x2
+#define SDMA_RLC2_DOORBELL_LOG__BE_ERROR_MASK 0x00000001L
+#define SDMA_RLC2_DOORBELL_LOG__DATA_MASK 0xFFFFFFFCL
+//SDMA_RLC2_WATERMARK
+#define SDMA_RLC2_WATERMARK__RD_OUTSTANDING__SHIFT 0x0
+#define SDMA_RLC2_WATERMARK__WR_OUTSTANDING__SHIFT 0x10
+#define SDMA_RLC2_WATERMARK__RD_OUTSTANDING_MASK 0x00000FFFL
+#define SDMA_RLC2_WATERMARK__WR_OUTSTANDING_MASK 0x03FF0000L
+//SDMA_RLC2_DOORBELL_OFFSET
+#define SDMA_RLC2_DOORBELL_OFFSET__OFFSET__SHIFT 0x2
+#define SDMA_RLC2_DOORBELL_OFFSET__OFFSET_MASK 0x0FFFFFFCL
+//SDMA_RLC2_CSA_ADDR_LO
+#define SDMA_RLC2_CSA_ADDR_LO__ADDR__SHIFT 0x2
+#define SDMA_RLC2_CSA_ADDR_LO__ADDR_MASK 0xFFFFFFFCL
+//SDMA_RLC2_CSA_ADDR_HI
+#define SDMA_RLC2_CSA_ADDR_HI__ADDR__SHIFT 0x0
+#define SDMA_RLC2_CSA_ADDR_HI__ADDR_MASK 0xFFFFFFFFL
+//SDMA_RLC2_IB_SUB_REMAIN
+#define SDMA_RLC2_IB_SUB_REMAIN__SIZE__SHIFT 0x0
+#define SDMA_RLC2_IB_SUB_REMAIN__SIZE_MASK 0x000FFFFFL
+//SDMA_RLC2_PREEMPT
+#define SDMA_RLC2_PREEMPT__IB_PREEMPT__SHIFT 0x0
+#define SDMA_RLC2_PREEMPT__IB_PREEMPT_MASK 0x00000001L
+//SDMA_RLC2_DUMMY_REG
+#define SDMA_RLC2_DUMMY_REG__DUMMY__SHIFT 0x0
+#define SDMA_RLC2_DUMMY_REG__DUMMY_MASK 0xFFFFFFFFL
+//SDMA_RLC2_RB_WPTR_POLL_ADDR_HI
+#define SDMA_RLC2_RB_WPTR_POLL_ADDR_HI__ADDR__SHIFT 0x0
+#define SDMA_RLC2_RB_WPTR_POLL_ADDR_HI__ADDR_MASK 0xFFFFFFFFL
+//SDMA_RLC2_RB_WPTR_POLL_ADDR_LO
+#define SDMA_RLC2_RB_WPTR_POLL_ADDR_LO__ADDR__SHIFT 0x2
+#define SDMA_RLC2_RB_WPTR_POLL_ADDR_LO__ADDR_MASK 0xFFFFFFFCL
+//SDMA_RLC2_RB_AQL_CNTL
+#define SDMA_RLC2_RB_AQL_CNTL__AQL_ENABLE__SHIFT 0x0
+#define SDMA_RLC2_RB_AQL_CNTL__AQL_PACKET_SIZE__SHIFT 0x1
+#define SDMA_RLC2_RB_AQL_CNTL__PACKET_STEP__SHIFT 0x8
+#define SDMA_RLC2_RB_AQL_CNTL__AQL_ENABLE_MASK 0x00000001L
+#define SDMA_RLC2_RB_AQL_CNTL__AQL_PACKET_SIZE_MASK 0x000000FEL
+#define SDMA_RLC2_RB_AQL_CNTL__PACKET_STEP_MASK 0x0000FF00L
+//SDMA_RLC2_MINOR_PTR_UPDATE
+#define SDMA_RLC2_MINOR_PTR_UPDATE__ENABLE__SHIFT 0x0
+#define SDMA_RLC2_MINOR_PTR_UPDATE__ENABLE_MASK 0x00000001L
+//SDMA_RLC2_MIDCMD_DATA0
+#define SDMA_RLC2_MIDCMD_DATA0__DATA0__SHIFT 0x0
+#define SDMA_RLC2_MIDCMD_DATA0__DATA0_MASK 0xFFFFFFFFL
+//SDMA_RLC2_MIDCMD_DATA1
+#define SDMA_RLC2_MIDCMD_DATA1__DATA1__SHIFT 0x0
+#define SDMA_RLC2_MIDCMD_DATA1__DATA1_MASK 0xFFFFFFFFL
+//SDMA_RLC2_MIDCMD_DATA2
+#define SDMA_RLC2_MIDCMD_DATA2__DATA2__SHIFT 0x0
+#define SDMA_RLC2_MIDCMD_DATA2__DATA2_MASK 0xFFFFFFFFL
+//SDMA_RLC2_MIDCMD_DATA3
+#define SDMA_RLC2_MIDCMD_DATA3__DATA3__SHIFT 0x0
+#define SDMA_RLC2_MIDCMD_DATA3__DATA3_MASK 0xFFFFFFFFL
+//SDMA_RLC2_MIDCMD_DATA4
+#define SDMA_RLC2_MIDCMD_DATA4__DATA4__SHIFT 0x0
+#define SDMA_RLC2_MIDCMD_DATA4__DATA4_MASK 0xFFFFFFFFL
+//SDMA_RLC2_MIDCMD_DATA5
+#define SDMA_RLC2_MIDCMD_DATA5__DATA5__SHIFT 0x0
+#define SDMA_RLC2_MIDCMD_DATA5__DATA5_MASK 0xFFFFFFFFL
+//SDMA_RLC2_MIDCMD_DATA6
+#define SDMA_RLC2_MIDCMD_DATA6__DATA6__SHIFT 0x0
+#define SDMA_RLC2_MIDCMD_DATA6__DATA6_MASK 0xFFFFFFFFL
+//SDMA_RLC2_MIDCMD_DATA7
+#define SDMA_RLC2_MIDCMD_DATA7__DATA7__SHIFT 0x0
+#define SDMA_RLC2_MIDCMD_DATA7__DATA7_MASK 0xFFFFFFFFL
+//SDMA_RLC2_MIDCMD_DATA8
+#define SDMA_RLC2_MIDCMD_DATA8__DATA8__SHIFT 0x0
+#define SDMA_RLC2_MIDCMD_DATA8__DATA8_MASK 0xFFFFFFFFL
+//SDMA_RLC2_MIDCMD_DATA9
+#define SDMA_RLC2_MIDCMD_DATA9__DATA9__SHIFT 0x0
+#define SDMA_RLC2_MIDCMD_DATA9__DATA9_MASK 0xFFFFFFFFL
+//SDMA_RLC2_MIDCMD_DATA10
+#define SDMA_RLC2_MIDCMD_DATA10__DATA10__SHIFT 0x0
+#define SDMA_RLC2_MIDCMD_DATA10__DATA10_MASK 0xFFFFFFFFL
+//SDMA_RLC2_MIDCMD_CNTL
+#define SDMA_RLC2_MIDCMD_CNTL__DATA_VALID__SHIFT 0x0
+#define SDMA_RLC2_MIDCMD_CNTL__COPY_MODE__SHIFT 0x1
+#define SDMA_RLC2_MIDCMD_CNTL__SPLIT_STATE__SHIFT 0x4
+#define SDMA_RLC2_MIDCMD_CNTL__ALLOW_PREEMPT__SHIFT 0x8
+#define SDMA_RLC2_MIDCMD_CNTL__DATA_VALID_MASK 0x00000001L
+#define SDMA_RLC2_MIDCMD_CNTL__COPY_MODE_MASK 0x00000002L
+#define SDMA_RLC2_MIDCMD_CNTL__SPLIT_STATE_MASK 0x000000F0L
+#define SDMA_RLC2_MIDCMD_CNTL__ALLOW_PREEMPT_MASK 0x00000100L
+//SDMA_RLC3_RB_CNTL
+#define SDMA_RLC3_RB_CNTL__RB_ENABLE__SHIFT 0x0
+#define SDMA_RLC3_RB_CNTL__RB_SIZE__SHIFT 0x1
+#define SDMA_RLC3_RB_CNTL__RB_SWAP_ENABLE__SHIFT 0x9
+#define SDMA_RLC3_RB_CNTL__RPTR_WRITEBACK_ENABLE__SHIFT 0xc
+#define SDMA_RLC3_RB_CNTL__RPTR_WRITEBACK_SWAP_ENABLE__SHIFT 0xd
+#define SDMA_RLC3_RB_CNTL__RPTR_WRITEBACK_TIMER__SHIFT 0x10
+#define SDMA_RLC3_RB_CNTL__RB_PRIV__SHIFT 0x17
+#define SDMA_RLC3_RB_CNTL__RB_VMID__SHIFT 0x18
+#define SDMA_RLC3_RB_CNTL__RB_ENABLE_MASK 0x00000001L
+#define SDMA_RLC3_RB_CNTL__RB_SIZE_MASK 0x0000003EL
+#define SDMA_RLC3_RB_CNTL__RB_SWAP_ENABLE_MASK 0x00000200L
+#define SDMA_RLC3_RB_CNTL__RPTR_WRITEBACK_ENABLE_MASK 0x00001000L
+#define SDMA_RLC3_RB_CNTL__RPTR_WRITEBACK_SWAP_ENABLE_MASK 0x00002000L
+#define SDMA_RLC3_RB_CNTL__RPTR_WRITEBACK_TIMER_MASK 0x001F0000L
+#define SDMA_RLC3_RB_CNTL__RB_PRIV_MASK 0x00800000L
+#define SDMA_RLC3_RB_CNTL__RB_VMID_MASK 0x0F000000L
+//SDMA_RLC3_RB_BASE
+#define SDMA_RLC3_RB_BASE__ADDR__SHIFT 0x0
+#define SDMA_RLC3_RB_BASE__ADDR_MASK 0xFFFFFFFFL
+//SDMA_RLC3_RB_BASE_HI
+#define SDMA_RLC3_RB_BASE_HI__ADDR__SHIFT 0x0
+#define SDMA_RLC3_RB_BASE_HI__ADDR_MASK 0x00FFFFFFL
+//SDMA_RLC3_RB_RPTR
+#define SDMA_RLC3_RB_RPTR__OFFSET__SHIFT 0x0
+#define SDMA_RLC3_RB_RPTR__OFFSET_MASK 0xFFFFFFFFL
+//SDMA_RLC3_RB_RPTR_HI
+#define SDMA_RLC3_RB_RPTR_HI__OFFSET__SHIFT 0x0
+#define SDMA_RLC3_RB_RPTR_HI__OFFSET_MASK 0xFFFFFFFFL
+//SDMA_RLC3_RB_WPTR
+#define SDMA_RLC3_RB_WPTR__OFFSET__SHIFT 0x0
+#define SDMA_RLC3_RB_WPTR__OFFSET_MASK 0xFFFFFFFFL
+//SDMA_RLC3_RB_WPTR_HI
+#define SDMA_RLC3_RB_WPTR_HI__OFFSET__SHIFT 0x0
+#define SDMA_RLC3_RB_WPTR_HI__OFFSET_MASK 0xFFFFFFFFL
+//SDMA_RLC3_RB_WPTR_POLL_CNTL
+#define SDMA_RLC3_RB_WPTR_POLL_CNTL__ENABLE__SHIFT 0x0
+#define SDMA_RLC3_RB_WPTR_POLL_CNTL__SWAP_ENABLE__SHIFT 0x1
+#define SDMA_RLC3_RB_WPTR_POLL_CNTL__F32_POLL_ENABLE__SHIFT 0x2
+#define SDMA_RLC3_RB_WPTR_POLL_CNTL__FREQUENCY__SHIFT 0x4
+#define SDMA_RLC3_RB_WPTR_POLL_CNTL__IDLE_POLL_COUNT__SHIFT 0x10
+#define SDMA_RLC3_RB_WPTR_POLL_CNTL__ENABLE_MASK 0x00000001L
+#define SDMA_RLC3_RB_WPTR_POLL_CNTL__SWAP_ENABLE_MASK 0x00000002L
+#define SDMA_RLC3_RB_WPTR_POLL_CNTL__F32_POLL_ENABLE_MASK 0x00000004L
+#define SDMA_RLC3_RB_WPTR_POLL_CNTL__FREQUENCY_MASK 0x0000FFF0L
+#define SDMA_RLC3_RB_WPTR_POLL_CNTL__IDLE_POLL_COUNT_MASK 0xFFFF0000L
+//SDMA_RLC3_RB_RPTR_ADDR_HI
+#define SDMA_RLC3_RB_RPTR_ADDR_HI__ADDR__SHIFT 0x0
+#define SDMA_RLC3_RB_RPTR_ADDR_HI__ADDR_MASK 0xFFFFFFFFL
+//SDMA_RLC3_RB_RPTR_ADDR_LO
+#define SDMA_RLC3_RB_RPTR_ADDR_LO__RPTR_WB_IDLE__SHIFT 0x0
+#define SDMA_RLC3_RB_RPTR_ADDR_LO__ADDR__SHIFT 0x2
+#define SDMA_RLC3_RB_RPTR_ADDR_LO__RPTR_WB_IDLE_MASK 0x00000001L
+#define SDMA_RLC3_RB_RPTR_ADDR_LO__ADDR_MASK 0xFFFFFFFCL
+//SDMA_RLC3_IB_CNTL
+#define SDMA_RLC3_IB_CNTL__IB_ENABLE__SHIFT 0x0
+#define SDMA_RLC3_IB_CNTL__IB_SWAP_ENABLE__SHIFT 0x4
+#define SDMA_RLC3_IB_CNTL__SWITCH_INSIDE_IB__SHIFT 0x8
+#define SDMA_RLC3_IB_CNTL__CMD_VMID__SHIFT 0x10
+#define SDMA_RLC3_IB_CNTL__IB_PRIV__SHIFT 0x1f
+#define SDMA_RLC3_IB_CNTL__IB_ENABLE_MASK 0x00000001L
+#define SDMA_RLC3_IB_CNTL__IB_SWAP_ENABLE_MASK 0x00000010L
+#define SDMA_RLC3_IB_CNTL__SWITCH_INSIDE_IB_MASK 0x00000100L
+#define SDMA_RLC3_IB_CNTL__CMD_VMID_MASK 0x000F0000L
+#define SDMA_RLC3_IB_CNTL__IB_PRIV_MASK 0x80000000L
+//SDMA_RLC3_IB_RPTR
+#define SDMA_RLC3_IB_RPTR__OFFSET__SHIFT 0x2
+#define SDMA_RLC3_IB_RPTR__OFFSET_MASK 0x003FFFFCL
+//SDMA_RLC3_IB_OFFSET
+#define SDMA_RLC3_IB_OFFSET__OFFSET__SHIFT 0x2
+#define SDMA_RLC3_IB_OFFSET__OFFSET_MASK 0x003FFFFCL
+//SDMA_RLC3_IB_BASE_LO
+#define SDMA_RLC3_IB_BASE_LO__ADDR__SHIFT 0x5
+#define SDMA_RLC3_IB_BASE_LO__ADDR_MASK 0xFFFFFFE0L
+//SDMA_RLC3_IB_BASE_HI
+#define SDMA_RLC3_IB_BASE_HI__ADDR__SHIFT 0x0
+#define SDMA_RLC3_IB_BASE_HI__ADDR_MASK 0xFFFFFFFFL
+//SDMA_RLC3_IB_SIZE
+#define SDMA_RLC3_IB_SIZE__SIZE__SHIFT 0x0
+#define SDMA_RLC3_IB_SIZE__SIZE_MASK 0x000FFFFFL
+//SDMA_RLC3_SKIP_CNTL
+#define SDMA_RLC3_SKIP_CNTL__SKIP_COUNT__SHIFT 0x0
+#define SDMA_RLC3_SKIP_CNTL__SKIP_COUNT_MASK 0x000FFFFFL
+//SDMA_RLC3_CONTEXT_STATUS
+#define SDMA_RLC3_CONTEXT_STATUS__SELECTED__SHIFT 0x0
+#define SDMA_RLC3_CONTEXT_STATUS__IDLE__SHIFT 0x2
+#define SDMA_RLC3_CONTEXT_STATUS__EXPIRED__SHIFT 0x3
+#define SDMA_RLC3_CONTEXT_STATUS__EXCEPTION__SHIFT 0x4
+#define SDMA_RLC3_CONTEXT_STATUS__CTXSW_ABLE__SHIFT 0x7
+#define SDMA_RLC3_CONTEXT_STATUS__CTXSW_READY__SHIFT 0x8
+#define SDMA_RLC3_CONTEXT_STATUS__PREEMPTED__SHIFT 0x9
+#define SDMA_RLC3_CONTEXT_STATUS__PREEMPT_DISABLE__SHIFT 0xa
+#define SDMA_RLC3_CONTEXT_STATUS__SELECTED_MASK 0x00000001L
+#define SDMA_RLC3_CONTEXT_STATUS__IDLE_MASK 0x00000004L
+#define SDMA_RLC3_CONTEXT_STATUS__EXPIRED_MASK 0x00000008L
+#define SDMA_RLC3_CONTEXT_STATUS__EXCEPTION_MASK 0x00000070L
+#define SDMA_RLC3_CONTEXT_STATUS__CTXSW_ABLE_MASK 0x00000080L
+#define SDMA_RLC3_CONTEXT_STATUS__CTXSW_READY_MASK 0x00000100L
+#define SDMA_RLC3_CONTEXT_STATUS__PREEMPTED_MASK 0x00000200L
+#define SDMA_RLC3_CONTEXT_STATUS__PREEMPT_DISABLE_MASK 0x00000400L
+//SDMA_RLC3_DOORBELL
+#define SDMA_RLC3_DOORBELL__ENABLE__SHIFT 0x1c
+#define SDMA_RLC3_DOORBELL__CAPTURED__SHIFT 0x1e
+#define SDMA_RLC3_DOORBELL__ENABLE_MASK 0x10000000L
+#define SDMA_RLC3_DOORBELL__CAPTURED_MASK 0x40000000L
+//SDMA_RLC3_STATUS
+#define SDMA_RLC3_STATUS__WPTR_UPDATE_FAIL_COUNT__SHIFT 0x0
+#define SDMA_RLC3_STATUS__WPTR_UPDATE_PENDING__SHIFT 0x8
+#define SDMA_RLC3_STATUS__WPTR_UPDATE_FAIL_COUNT_MASK 0x000000FFL
+#define SDMA_RLC3_STATUS__WPTR_UPDATE_PENDING_MASK 0x00000100L
+//SDMA_RLC3_DOORBELL_LOG
+#define SDMA_RLC3_DOORBELL_LOG__BE_ERROR__SHIFT 0x0
+#define SDMA_RLC3_DOORBELL_LOG__DATA__SHIFT 0x2
+#define SDMA_RLC3_DOORBELL_LOG__BE_ERROR_MASK 0x00000001L
+#define SDMA_RLC3_DOORBELL_LOG__DATA_MASK 0xFFFFFFFCL
+//SDMA_RLC3_WATERMARK
+#define SDMA_RLC3_WATERMARK__RD_OUTSTANDING__SHIFT 0x0
+#define SDMA_RLC3_WATERMARK__WR_OUTSTANDING__SHIFT 0x10
+#define SDMA_RLC3_WATERMARK__RD_OUTSTANDING_MASK 0x00000FFFL
+#define SDMA_RLC3_WATERMARK__WR_OUTSTANDING_MASK 0x03FF0000L
+//SDMA_RLC3_DOORBELL_OFFSET
+#define SDMA_RLC3_DOORBELL_OFFSET__OFFSET__SHIFT 0x2
+#define SDMA_RLC3_DOORBELL_OFFSET__OFFSET_MASK 0x0FFFFFFCL
+//SDMA_RLC3_CSA_ADDR_LO
+#define SDMA_RLC3_CSA_ADDR_LO__ADDR__SHIFT 0x2
+#define SDMA_RLC3_CSA_ADDR_LO__ADDR_MASK 0xFFFFFFFCL
+//SDMA_RLC3_CSA_ADDR_HI
+#define SDMA_RLC3_CSA_ADDR_HI__ADDR__SHIFT 0x0
+#define SDMA_RLC3_CSA_ADDR_HI__ADDR_MASK 0xFFFFFFFFL
+//SDMA_RLC3_IB_SUB_REMAIN
+#define SDMA_RLC3_IB_SUB_REMAIN__SIZE__SHIFT 0x0
+#define SDMA_RLC3_IB_SUB_REMAIN__SIZE_MASK 0x000FFFFFL
+//SDMA_RLC3_PREEMPT
+#define SDMA_RLC3_PREEMPT__IB_PREEMPT__SHIFT 0x0
+#define SDMA_RLC3_PREEMPT__IB_PREEMPT_MASK 0x00000001L
+//SDMA_RLC3_DUMMY_REG
+#define SDMA_RLC3_DUMMY_REG__DUMMY__SHIFT 0x0
+#define SDMA_RLC3_DUMMY_REG__DUMMY_MASK 0xFFFFFFFFL
+//SDMA_RLC3_RB_WPTR_POLL_ADDR_HI
+#define SDMA_RLC3_RB_WPTR_POLL_ADDR_HI__ADDR__SHIFT 0x0
+#define SDMA_RLC3_RB_WPTR_POLL_ADDR_HI__ADDR_MASK 0xFFFFFFFFL
+//SDMA_RLC3_RB_WPTR_POLL_ADDR_LO
+#define SDMA_RLC3_RB_WPTR_POLL_ADDR_LO__ADDR__SHIFT 0x2
+#define SDMA_RLC3_RB_WPTR_POLL_ADDR_LO__ADDR_MASK 0xFFFFFFFCL
+//SDMA_RLC3_RB_AQL_CNTL
+#define SDMA_RLC3_RB_AQL_CNTL__AQL_ENABLE__SHIFT 0x0
+#define SDMA_RLC3_RB_AQL_CNTL__AQL_PACKET_SIZE__SHIFT 0x1
+#define SDMA_RLC3_RB_AQL_CNTL__PACKET_STEP__SHIFT 0x8
+#define SDMA_RLC3_RB_AQL_CNTL__AQL_ENABLE_MASK 0x00000001L
+#define SDMA_RLC3_RB_AQL_CNTL__AQL_PACKET_SIZE_MASK 0x000000FEL
+#define SDMA_RLC3_RB_AQL_CNTL__PACKET_STEP_MASK 0x0000FF00L
+//SDMA_RLC3_MINOR_PTR_UPDATE
+#define SDMA_RLC3_MINOR_PTR_UPDATE__ENABLE__SHIFT 0x0
+#define SDMA_RLC3_MINOR_PTR_UPDATE__ENABLE_MASK 0x00000001L
+//SDMA_RLC3_MIDCMD_DATA0
+#define SDMA_RLC3_MIDCMD_DATA0__DATA0__SHIFT 0x0
+#define SDMA_RLC3_MIDCMD_DATA0__DATA0_MASK 0xFFFFFFFFL
+//SDMA_RLC3_MIDCMD_DATA1
+#define SDMA_RLC3_MIDCMD_DATA1__DATA1__SHIFT 0x0
+#define SDMA_RLC3_MIDCMD_DATA1__DATA1_MASK 0xFFFFFFFFL
+//SDMA_RLC3_MIDCMD_DATA2
+#define SDMA_RLC3_MIDCMD_DATA2__DATA2__SHIFT 0x0
+#define SDMA_RLC3_MIDCMD_DATA2__DATA2_MASK 0xFFFFFFFFL
+//SDMA_RLC3_MIDCMD_DATA3
+#define SDMA_RLC3_MIDCMD_DATA3__DATA3__SHIFT 0x0
+#define SDMA_RLC3_MIDCMD_DATA3__DATA3_MASK 0xFFFFFFFFL
+//SDMA_RLC3_MIDCMD_DATA4
+#define SDMA_RLC3_MIDCMD_DATA4__DATA4__SHIFT 0x0
+#define SDMA_RLC3_MIDCMD_DATA4__DATA4_MASK 0xFFFFFFFFL
+//SDMA_RLC3_MIDCMD_DATA5
+#define SDMA_RLC3_MIDCMD_DATA5__DATA5__SHIFT 0x0
+#define SDMA_RLC3_MIDCMD_DATA5__DATA5_MASK 0xFFFFFFFFL
+//SDMA_RLC3_MIDCMD_DATA6
+#define SDMA_RLC3_MIDCMD_DATA6__DATA6__SHIFT 0x0
+#define SDMA_RLC3_MIDCMD_DATA6__DATA6_MASK 0xFFFFFFFFL
+//SDMA_RLC3_MIDCMD_DATA7
+#define SDMA_RLC3_MIDCMD_DATA7__DATA7__SHIFT 0x0
+#define SDMA_RLC3_MIDCMD_DATA7__DATA7_MASK 0xFFFFFFFFL
+//SDMA_RLC3_MIDCMD_DATA8
+#define SDMA_RLC3_MIDCMD_DATA8__DATA8__SHIFT 0x0
+#define SDMA_RLC3_MIDCMD_DATA8__DATA8_MASK 0xFFFFFFFFL
+//SDMA_RLC3_MIDCMD_DATA9
+#define SDMA_RLC3_MIDCMD_DATA9__DATA9__SHIFT 0x0
+#define SDMA_RLC3_MIDCMD_DATA9__DATA9_MASK 0xFFFFFFFFL
+//SDMA_RLC3_MIDCMD_DATA10
+#define SDMA_RLC3_MIDCMD_DATA10__DATA10__SHIFT 0x0
+#define SDMA_RLC3_MIDCMD_DATA10__DATA10_MASK 0xFFFFFFFFL
+//SDMA_RLC3_MIDCMD_CNTL
+#define SDMA_RLC3_MIDCMD_CNTL__DATA_VALID__SHIFT 0x0
+#define SDMA_RLC3_MIDCMD_CNTL__COPY_MODE__SHIFT 0x1
+#define SDMA_RLC3_MIDCMD_CNTL__SPLIT_STATE__SHIFT 0x4
+#define SDMA_RLC3_MIDCMD_CNTL__ALLOW_PREEMPT__SHIFT 0x8
+#define SDMA_RLC3_MIDCMD_CNTL__DATA_VALID_MASK 0x00000001L
+#define SDMA_RLC3_MIDCMD_CNTL__COPY_MODE_MASK 0x00000002L
+#define SDMA_RLC3_MIDCMD_CNTL__SPLIT_STATE_MASK 0x000000F0L
+#define SDMA_RLC3_MIDCMD_CNTL__ALLOW_PREEMPT_MASK 0x00000100L
+//SDMA_RLC4_RB_CNTL
+#define SDMA_RLC4_RB_CNTL__RB_ENABLE__SHIFT 0x0
+#define SDMA_RLC4_RB_CNTL__RB_SIZE__SHIFT 0x1
+#define SDMA_RLC4_RB_CNTL__RB_SWAP_ENABLE__SHIFT 0x9
+#define SDMA_RLC4_RB_CNTL__RPTR_WRITEBACK_ENABLE__SHIFT 0xc
+#define SDMA_RLC4_RB_CNTL__RPTR_WRITEBACK_SWAP_ENABLE__SHIFT 0xd
+#define SDMA_RLC4_RB_CNTL__RPTR_WRITEBACK_TIMER__SHIFT 0x10
+#define SDMA_RLC4_RB_CNTL__RB_PRIV__SHIFT 0x17
+#define SDMA_RLC4_RB_CNTL__RB_VMID__SHIFT 0x18
+#define SDMA_RLC4_RB_CNTL__RB_ENABLE_MASK 0x00000001L
+#define SDMA_RLC4_RB_CNTL__RB_SIZE_MASK 0x0000003EL
+#define SDMA_RLC4_RB_CNTL__RB_SWAP_ENABLE_MASK 0x00000200L
+#define SDMA_RLC4_RB_CNTL__RPTR_WRITEBACK_ENABLE_MASK 0x00001000L
+#define SDMA_RLC4_RB_CNTL__RPTR_WRITEBACK_SWAP_ENABLE_MASK 0x00002000L
+#define SDMA_RLC4_RB_CNTL__RPTR_WRITEBACK_TIMER_MASK 0x001F0000L
+#define SDMA_RLC4_RB_CNTL__RB_PRIV_MASK 0x00800000L
+#define SDMA_RLC4_RB_CNTL__RB_VMID_MASK 0x0F000000L
+//SDMA_RLC4_RB_BASE
+#define SDMA_RLC4_RB_BASE__ADDR__SHIFT 0x0
+#define SDMA_RLC4_RB_BASE__ADDR_MASK 0xFFFFFFFFL
+//SDMA_RLC4_RB_BASE_HI
+#define SDMA_RLC4_RB_BASE_HI__ADDR__SHIFT 0x0
+#define SDMA_RLC4_RB_BASE_HI__ADDR_MASK 0x00FFFFFFL
+//SDMA_RLC4_RB_RPTR
+#define SDMA_RLC4_RB_RPTR__OFFSET__SHIFT 0x0
+#define SDMA_RLC4_RB_RPTR__OFFSET_MASK 0xFFFFFFFFL
+//SDMA_RLC4_RB_RPTR_HI
+#define SDMA_RLC4_RB_RPTR_HI__OFFSET__SHIFT 0x0
+#define SDMA_RLC4_RB_RPTR_HI__OFFSET_MASK 0xFFFFFFFFL
+//SDMA_RLC4_RB_WPTR
+#define SDMA_RLC4_RB_WPTR__OFFSET__SHIFT 0x0
+#define SDMA_RLC4_RB_WPTR__OFFSET_MASK 0xFFFFFFFFL
+//SDMA_RLC4_RB_WPTR_HI
+#define SDMA_RLC4_RB_WPTR_HI__OFFSET__SHIFT 0x0
+#define SDMA_RLC4_RB_WPTR_HI__OFFSET_MASK 0xFFFFFFFFL
+//SDMA_RLC4_RB_WPTR_POLL_CNTL
+#define SDMA_RLC4_RB_WPTR_POLL_CNTL__ENABLE__SHIFT 0x0
+#define SDMA_RLC4_RB_WPTR_POLL_CNTL__SWAP_ENABLE__SHIFT 0x1
+#define SDMA_RLC4_RB_WPTR_POLL_CNTL__F32_POLL_ENABLE__SHIFT 0x2
+#define SDMA_RLC4_RB_WPTR_POLL_CNTL__FREQUENCY__SHIFT 0x4
+#define SDMA_RLC4_RB_WPTR_POLL_CNTL__IDLE_POLL_COUNT__SHIFT 0x10
+#define SDMA_RLC4_RB_WPTR_POLL_CNTL__ENABLE_MASK 0x00000001L
+#define SDMA_RLC4_RB_WPTR_POLL_CNTL__SWAP_ENABLE_MASK 0x00000002L
+#define SDMA_RLC4_RB_WPTR_POLL_CNTL__F32_POLL_ENABLE_MASK 0x00000004L
+#define SDMA_RLC4_RB_WPTR_POLL_CNTL__FREQUENCY_MASK 0x0000FFF0L
+#define SDMA_RLC4_RB_WPTR_POLL_CNTL__IDLE_POLL_COUNT_MASK 0xFFFF0000L
+//SDMA_RLC4_RB_RPTR_ADDR_HI
+#define SDMA_RLC4_RB_RPTR_ADDR_HI__ADDR__SHIFT 0x0
+#define SDMA_RLC4_RB_RPTR_ADDR_HI__ADDR_MASK 0xFFFFFFFFL
+//SDMA_RLC4_RB_RPTR_ADDR_LO
+#define SDMA_RLC4_RB_RPTR_ADDR_LO__RPTR_WB_IDLE__SHIFT 0x0
+#define SDMA_RLC4_RB_RPTR_ADDR_LO__ADDR__SHIFT 0x2
+#define SDMA_RLC4_RB_RPTR_ADDR_LO__RPTR_WB_IDLE_MASK 0x00000001L
+#define SDMA_RLC4_RB_RPTR_ADDR_LO__ADDR_MASK 0xFFFFFFFCL
+//SDMA_RLC4_IB_CNTL
+#define SDMA_RLC4_IB_CNTL__IB_ENABLE__SHIFT 0x0
+#define SDMA_RLC4_IB_CNTL__IB_SWAP_ENABLE__SHIFT 0x4
+#define SDMA_RLC4_IB_CNTL__SWITCH_INSIDE_IB__SHIFT 0x8
+#define SDMA_RLC4_IB_CNTL__CMD_VMID__SHIFT 0x10
+#define SDMA_RLC4_IB_CNTL__IB_PRIV__SHIFT 0x1f
+#define SDMA_RLC4_IB_CNTL__IB_ENABLE_MASK 0x00000001L
+#define SDMA_RLC4_IB_CNTL__IB_SWAP_ENABLE_MASK 0x00000010L
+#define SDMA_RLC4_IB_CNTL__SWITCH_INSIDE_IB_MASK 0x00000100L
+#define SDMA_RLC4_IB_CNTL__CMD_VMID_MASK 0x000F0000L
+#define SDMA_RLC4_IB_CNTL__IB_PRIV_MASK 0x80000000L
+//SDMA_RLC4_IB_RPTR
+#define SDMA_RLC4_IB_RPTR__OFFSET__SHIFT 0x2
+#define SDMA_RLC4_IB_RPTR__OFFSET_MASK 0x003FFFFCL
+//SDMA_RLC4_IB_OFFSET
+#define SDMA_RLC4_IB_OFFSET__OFFSET__SHIFT 0x2
+#define SDMA_RLC4_IB_OFFSET__OFFSET_MASK 0x003FFFFCL
+//SDMA_RLC4_IB_BASE_LO
+#define SDMA_RLC4_IB_BASE_LO__ADDR__SHIFT 0x5
+#define SDMA_RLC4_IB_BASE_LO__ADDR_MASK 0xFFFFFFE0L
+//SDMA_RLC4_IB_BASE_HI
+#define SDMA_RLC4_IB_BASE_HI__ADDR__SHIFT 0x0
+#define SDMA_RLC4_IB_BASE_HI__ADDR_MASK 0xFFFFFFFFL
+//SDMA_RLC4_IB_SIZE
+#define SDMA_RLC4_IB_SIZE__SIZE__SHIFT 0x0
+#define SDMA_RLC4_IB_SIZE__SIZE_MASK 0x000FFFFFL
+//SDMA_RLC4_SKIP_CNTL
+#define SDMA_RLC4_SKIP_CNTL__SKIP_COUNT__SHIFT 0x0
+#define SDMA_RLC4_SKIP_CNTL__SKIP_COUNT_MASK 0x000FFFFFL
+//SDMA_RLC4_CONTEXT_STATUS
+#define SDMA_RLC4_CONTEXT_STATUS__SELECTED__SHIFT 0x0
+#define SDMA_RLC4_CONTEXT_STATUS__IDLE__SHIFT 0x2
+#define SDMA_RLC4_CONTEXT_STATUS__EXPIRED__SHIFT 0x3
+#define SDMA_RLC4_CONTEXT_STATUS__EXCEPTION__SHIFT 0x4
+#define SDMA_RLC4_CONTEXT_STATUS__CTXSW_ABLE__SHIFT 0x7
+#define SDMA_RLC4_CONTEXT_STATUS__CTXSW_READY__SHIFT 0x8
+#define SDMA_RLC4_CONTEXT_STATUS__PREEMPTED__SHIFT 0x9
+#define SDMA_RLC4_CONTEXT_STATUS__PREEMPT_DISABLE__SHIFT 0xa
+#define SDMA_RLC4_CONTEXT_STATUS__SELECTED_MASK 0x00000001L
+#define SDMA_RLC4_CONTEXT_STATUS__IDLE_MASK 0x00000004L
+#define SDMA_RLC4_CONTEXT_STATUS__EXPIRED_MASK 0x00000008L
+#define SDMA_RLC4_CONTEXT_STATUS__EXCEPTION_MASK 0x00000070L
+#define SDMA_RLC4_CONTEXT_STATUS__CTXSW_ABLE_MASK 0x00000080L
+#define SDMA_RLC4_CONTEXT_STATUS__CTXSW_READY_MASK 0x00000100L
+#define SDMA_RLC4_CONTEXT_STATUS__PREEMPTED_MASK 0x00000200L
+#define SDMA_RLC4_CONTEXT_STATUS__PREEMPT_DISABLE_MASK 0x00000400L
+//SDMA_RLC4_DOORBELL
+#define SDMA_RLC4_DOORBELL__ENABLE__SHIFT 0x1c
+#define SDMA_RLC4_DOORBELL__CAPTURED__SHIFT 0x1e
+#define SDMA_RLC4_DOORBELL__ENABLE_MASK 0x10000000L
+#define SDMA_RLC4_DOORBELL__CAPTURED_MASK 0x40000000L
+//SDMA_RLC4_STATUS
+#define SDMA_RLC4_STATUS__WPTR_UPDATE_FAIL_COUNT__SHIFT 0x0
+#define SDMA_RLC4_STATUS__WPTR_UPDATE_PENDING__SHIFT 0x8
+#define SDMA_RLC4_STATUS__WPTR_UPDATE_FAIL_COUNT_MASK 0x000000FFL
+#define SDMA_RLC4_STATUS__WPTR_UPDATE_PENDING_MASK 0x00000100L
+//SDMA_RLC4_DOORBELL_LOG
+#define SDMA_RLC4_DOORBELL_LOG__BE_ERROR__SHIFT 0x0
+#define SDMA_RLC4_DOORBELL_LOG__DATA__SHIFT 0x2
+#define SDMA_RLC4_DOORBELL_LOG__BE_ERROR_MASK 0x00000001L
+#define SDMA_RLC4_DOORBELL_LOG__DATA_MASK 0xFFFFFFFCL
+//SDMA_RLC4_WATERMARK
+#define SDMA_RLC4_WATERMARK__RD_OUTSTANDING__SHIFT 0x0
+#define SDMA_RLC4_WATERMARK__WR_OUTSTANDING__SHIFT 0x10
+#define SDMA_RLC4_WATERMARK__RD_OUTSTANDING_MASK 0x00000FFFL
+#define SDMA_RLC4_WATERMARK__WR_OUTSTANDING_MASK 0x03FF0000L
+//SDMA_RLC4_DOORBELL_OFFSET
+#define SDMA_RLC4_DOORBELL_OFFSET__OFFSET__SHIFT 0x2
+#define SDMA_RLC4_DOORBELL_OFFSET__OFFSET_MASK 0x0FFFFFFCL
+//SDMA_RLC4_CSA_ADDR_LO
+#define SDMA_RLC4_CSA_ADDR_LO__ADDR__SHIFT 0x2
+#define SDMA_RLC4_CSA_ADDR_LO__ADDR_MASK 0xFFFFFFFCL
+//SDMA_RLC4_CSA_ADDR_HI
+#define SDMA_RLC4_CSA_ADDR_HI__ADDR__SHIFT 0x0
+#define SDMA_RLC4_CSA_ADDR_HI__ADDR_MASK 0xFFFFFFFFL
+//SDMA_RLC4_IB_SUB_REMAIN
+#define SDMA_RLC4_IB_SUB_REMAIN__SIZE__SHIFT 0x0
+#define SDMA_RLC4_IB_SUB_REMAIN__SIZE_MASK 0x000FFFFFL
+//SDMA_RLC4_PREEMPT
+#define SDMA_RLC4_PREEMPT__IB_PREEMPT__SHIFT 0x0
+#define SDMA_RLC4_PREEMPT__IB_PREEMPT_MASK 0x00000001L
+//SDMA_RLC4_DUMMY_REG
+#define SDMA_RLC4_DUMMY_REG__DUMMY__SHIFT 0x0
+#define SDMA_RLC4_DUMMY_REG__DUMMY_MASK 0xFFFFFFFFL
+//SDMA_RLC4_RB_WPTR_POLL_ADDR_HI
+#define SDMA_RLC4_RB_WPTR_POLL_ADDR_HI__ADDR__SHIFT 0x0
+#define SDMA_RLC4_RB_WPTR_POLL_ADDR_HI__ADDR_MASK 0xFFFFFFFFL
+//SDMA_RLC4_RB_WPTR_POLL_ADDR_LO
+#define SDMA_RLC4_RB_WPTR_POLL_ADDR_LO__ADDR__SHIFT 0x2
+#define SDMA_RLC4_RB_WPTR_POLL_ADDR_LO__ADDR_MASK 0xFFFFFFFCL
+//SDMA_RLC4_RB_AQL_CNTL
+#define SDMA_RLC4_RB_AQL_CNTL__AQL_ENABLE__SHIFT 0x0
+#define SDMA_RLC4_RB_AQL_CNTL__AQL_PACKET_SIZE__SHIFT 0x1
+#define SDMA_RLC4_RB_AQL_CNTL__PACKET_STEP__SHIFT 0x8
+#define SDMA_RLC4_RB_AQL_CNTL__AQL_ENABLE_MASK 0x00000001L
+#define SDMA_RLC4_RB_AQL_CNTL__AQL_PACKET_SIZE_MASK 0x000000FEL
+#define SDMA_RLC4_RB_AQL_CNTL__PACKET_STEP_MASK 0x0000FF00L
+//SDMA_RLC4_MINOR_PTR_UPDATE
+#define SDMA_RLC4_MINOR_PTR_UPDATE__ENABLE__SHIFT 0x0
+#define SDMA_RLC4_MINOR_PTR_UPDATE__ENABLE_MASK 0x00000001L
+//SDMA_RLC4_MIDCMD_DATA0
+#define SDMA_RLC4_MIDCMD_DATA0__DATA0__SHIFT 0x0
+#define SDMA_RLC4_MIDCMD_DATA0__DATA0_MASK 0xFFFFFFFFL
+//SDMA_RLC4_MIDCMD_DATA1
+#define SDMA_RLC4_MIDCMD_DATA1__DATA1__SHIFT 0x0
+#define SDMA_RLC4_MIDCMD_DATA1__DATA1_MASK 0xFFFFFFFFL
+//SDMA_RLC4_MIDCMD_DATA2
+#define SDMA_RLC4_MIDCMD_DATA2__DATA2__SHIFT 0x0
+#define SDMA_RLC4_MIDCMD_DATA2__DATA2_MASK 0xFFFFFFFFL
+//SDMA_RLC4_MIDCMD_DATA3
+#define SDMA_RLC4_MIDCMD_DATA3__DATA3__SHIFT 0x0
+#define SDMA_RLC4_MIDCMD_DATA3__DATA3_MASK 0xFFFFFFFFL
+//SDMA_RLC4_MIDCMD_DATA4
+#define SDMA_RLC4_MIDCMD_DATA4__DATA4__SHIFT 0x0
+#define SDMA_RLC4_MIDCMD_DATA4__DATA4_MASK 0xFFFFFFFFL
+//SDMA_RLC4_MIDCMD_DATA5
+#define SDMA_RLC4_MIDCMD_DATA5__DATA5__SHIFT 0x0
+#define SDMA_RLC4_MIDCMD_DATA5__DATA5_MASK 0xFFFFFFFFL
+//SDMA_RLC4_MIDCMD_DATA6
+#define SDMA_RLC4_MIDCMD_DATA6__DATA6__SHIFT 0x0
+#define SDMA_RLC4_MIDCMD_DATA6__DATA6_MASK 0xFFFFFFFFL
+//SDMA_RLC4_MIDCMD_DATA7
+#define SDMA_RLC4_MIDCMD_DATA7__DATA7__SHIFT 0x0
+#define SDMA_RLC4_MIDCMD_DATA7__DATA7_MASK 0xFFFFFFFFL
+//SDMA_RLC4_MIDCMD_DATA8
+#define SDMA_RLC4_MIDCMD_DATA8__DATA8__SHIFT 0x0
+#define SDMA_RLC4_MIDCMD_DATA8__DATA8_MASK 0xFFFFFFFFL
+//SDMA_RLC4_MIDCMD_DATA9
+#define SDMA_RLC4_MIDCMD_DATA9__DATA9__SHIFT 0x0
+#define SDMA_RLC4_MIDCMD_DATA9__DATA9_MASK 0xFFFFFFFFL
+//SDMA_RLC4_MIDCMD_DATA10
+#define SDMA_RLC4_MIDCMD_DATA10__DATA10__SHIFT 0x0
+#define SDMA_RLC4_MIDCMD_DATA10__DATA10_MASK 0xFFFFFFFFL
+//SDMA_RLC4_MIDCMD_CNTL
+#define SDMA_RLC4_MIDCMD_CNTL__DATA_VALID__SHIFT 0x0
+#define SDMA_RLC4_MIDCMD_CNTL__COPY_MODE__SHIFT 0x1
+#define SDMA_RLC4_MIDCMD_CNTL__SPLIT_STATE__SHIFT 0x4
+#define SDMA_RLC4_MIDCMD_CNTL__ALLOW_PREEMPT__SHIFT 0x8
+#define SDMA_RLC4_MIDCMD_CNTL__DATA_VALID_MASK 0x00000001L
+#define SDMA_RLC4_MIDCMD_CNTL__COPY_MODE_MASK 0x00000002L
+#define SDMA_RLC4_MIDCMD_CNTL__SPLIT_STATE_MASK 0x000000F0L
+#define SDMA_RLC4_MIDCMD_CNTL__ALLOW_PREEMPT_MASK 0x00000100L
+//SDMA_RLC5_RB_CNTL
+#define SDMA_RLC5_RB_CNTL__RB_ENABLE__SHIFT 0x0
+#define SDMA_RLC5_RB_CNTL__RB_SIZE__SHIFT 0x1
+#define SDMA_RLC5_RB_CNTL__RB_SWAP_ENABLE__SHIFT 0x9
+#define SDMA_RLC5_RB_CNTL__RPTR_WRITEBACK_ENABLE__SHIFT 0xc
+#define SDMA_RLC5_RB_CNTL__RPTR_WRITEBACK_SWAP_ENABLE__SHIFT 0xd
+#define SDMA_RLC5_RB_CNTL__RPTR_WRITEBACK_TIMER__SHIFT 0x10
+#define SDMA_RLC5_RB_CNTL__RB_PRIV__SHIFT 0x17
+#define SDMA_RLC5_RB_CNTL__RB_VMID__SHIFT 0x18
+#define SDMA_RLC5_RB_CNTL__RB_ENABLE_MASK 0x00000001L
+#define SDMA_RLC5_RB_CNTL__RB_SIZE_MASK 0x0000003EL
+#define SDMA_RLC5_RB_CNTL__RB_SWAP_ENABLE_MASK 0x00000200L
+#define SDMA_RLC5_RB_CNTL__RPTR_WRITEBACK_ENABLE_MASK 0x00001000L
+#define SDMA_RLC5_RB_CNTL__RPTR_WRITEBACK_SWAP_ENABLE_MASK 0x00002000L
+#define SDMA_RLC5_RB_CNTL__RPTR_WRITEBACK_TIMER_MASK 0x001F0000L
+#define SDMA_RLC5_RB_CNTL__RB_PRIV_MASK 0x00800000L
+#define SDMA_RLC5_RB_CNTL__RB_VMID_MASK 0x0F000000L
+//SDMA_RLC5_RB_BASE
+#define SDMA_RLC5_RB_BASE__ADDR__SHIFT 0x0
+#define SDMA_RLC5_RB_BASE__ADDR_MASK 0xFFFFFFFFL
+//SDMA_RLC5_RB_BASE_HI
+#define SDMA_RLC5_RB_BASE_HI__ADDR__SHIFT 0x0
+#define SDMA_RLC5_RB_BASE_HI__ADDR_MASK 0x00FFFFFFL
+//SDMA_RLC5_RB_RPTR
+#define SDMA_RLC5_RB_RPTR__OFFSET__SHIFT 0x0
+#define SDMA_RLC5_RB_RPTR__OFFSET_MASK 0xFFFFFFFFL
+//SDMA_RLC5_RB_RPTR_HI
+#define SDMA_RLC5_RB_RPTR_HI__OFFSET__SHIFT 0x0
+#define SDMA_RLC5_RB_RPTR_HI__OFFSET_MASK 0xFFFFFFFFL
+//SDMA_RLC5_RB_WPTR
+#define SDMA_RLC5_RB_WPTR__OFFSET__SHIFT 0x0
+#define SDMA_RLC5_RB_WPTR__OFFSET_MASK 0xFFFFFFFFL
+//SDMA_RLC5_RB_WPTR_HI
+#define SDMA_RLC5_RB_WPTR_HI__OFFSET__SHIFT 0x0
+#define SDMA_RLC5_RB_WPTR_HI__OFFSET_MASK 0xFFFFFFFFL
+//SDMA_RLC5_RB_WPTR_POLL_CNTL
+#define SDMA_RLC5_RB_WPTR_POLL_CNTL__ENABLE__SHIFT 0x0
+#define SDMA_RLC5_RB_WPTR_POLL_CNTL__SWAP_ENABLE__SHIFT 0x1
+#define SDMA_RLC5_RB_WPTR_POLL_CNTL__F32_POLL_ENABLE__SHIFT 0x2
+#define SDMA_RLC5_RB_WPTR_POLL_CNTL__FREQUENCY__SHIFT 0x4
+#define SDMA_RLC5_RB_WPTR_POLL_CNTL__IDLE_POLL_COUNT__SHIFT 0x10
+#define SDMA_RLC5_RB_WPTR_POLL_CNTL__ENABLE_MASK 0x00000001L
+#define SDMA_RLC5_RB_WPTR_POLL_CNTL__SWAP_ENABLE_MASK 0x00000002L
+#define SDMA_RLC5_RB_WPTR_POLL_CNTL__F32_POLL_ENABLE_MASK 0x00000004L
+#define SDMA_RLC5_RB_WPTR_POLL_CNTL__FREQUENCY_MASK 0x0000FFF0L
+#define SDMA_RLC5_RB_WPTR_POLL_CNTL__IDLE_POLL_COUNT_MASK 0xFFFF0000L
+//SDMA_RLC5_RB_RPTR_ADDR_HI
+#define SDMA_RLC5_RB_RPTR_ADDR_HI__ADDR__SHIFT 0x0
+#define SDMA_RLC5_RB_RPTR_ADDR_HI__ADDR_MASK 0xFFFFFFFFL
+//SDMA_RLC5_RB_RPTR_ADDR_LO
+#define SDMA_RLC5_RB_RPTR_ADDR_LO__RPTR_WB_IDLE__SHIFT 0x0
+#define SDMA_RLC5_RB_RPTR_ADDR_LO__ADDR__SHIFT 0x2
+#define SDMA_RLC5_RB_RPTR_ADDR_LO__RPTR_WB_IDLE_MASK 0x00000001L
+#define SDMA_RLC5_RB_RPTR_ADDR_LO__ADDR_MASK 0xFFFFFFFCL
+//SDMA_RLC5_IB_CNTL
+#define SDMA_RLC5_IB_CNTL__IB_ENABLE__SHIFT 0x0
+#define SDMA_RLC5_IB_CNTL__IB_SWAP_ENABLE__SHIFT 0x4
+#define SDMA_RLC5_IB_CNTL__SWITCH_INSIDE_IB__SHIFT 0x8
+#define SDMA_RLC5_IB_CNTL__CMD_VMID__SHIFT 0x10
+#define SDMA_RLC5_IB_CNTL__IB_PRIV__SHIFT 0x1f
+#define SDMA_RLC5_IB_CNTL__IB_ENABLE_MASK 0x00000001L
+#define SDMA_RLC5_IB_CNTL__IB_SWAP_ENABLE_MASK 0x00000010L
+#define SDMA_RLC5_IB_CNTL__SWITCH_INSIDE_IB_MASK 0x00000100L
+#define SDMA_RLC5_IB_CNTL__CMD_VMID_MASK 0x000F0000L
+#define SDMA_RLC5_IB_CNTL__IB_PRIV_MASK 0x80000000L
+//SDMA_RLC5_IB_RPTR
+#define SDMA_RLC5_IB_RPTR__OFFSET__SHIFT 0x2
+#define SDMA_RLC5_IB_RPTR__OFFSET_MASK 0x003FFFFCL
+//SDMA_RLC5_IB_OFFSET
+#define SDMA_RLC5_IB_OFFSET__OFFSET__SHIFT 0x2
+#define SDMA_RLC5_IB_OFFSET__OFFSET_MASK 0x003FFFFCL
+//SDMA_RLC5_IB_BASE_LO
+#define SDMA_RLC5_IB_BASE_LO__ADDR__SHIFT 0x5
+#define SDMA_RLC5_IB_BASE_LO__ADDR_MASK 0xFFFFFFE0L
+//SDMA_RLC5_IB_BASE_HI
+#define SDMA_RLC5_IB_BASE_HI__ADDR__SHIFT 0x0
+#define SDMA_RLC5_IB_BASE_HI__ADDR_MASK 0xFFFFFFFFL
+//SDMA_RLC5_IB_SIZE
+#define SDMA_RLC5_IB_SIZE__SIZE__SHIFT 0x0
+#define SDMA_RLC5_IB_SIZE__SIZE_MASK 0x000FFFFFL
+//SDMA_RLC5_SKIP_CNTL
+#define SDMA_RLC5_SKIP_CNTL__SKIP_COUNT__SHIFT 0x0
+#define SDMA_RLC5_SKIP_CNTL__SKIP_COUNT_MASK 0x000FFFFFL
+//SDMA_RLC5_CONTEXT_STATUS
+#define SDMA_RLC5_CONTEXT_STATUS__SELECTED__SHIFT 0x0
+#define SDMA_RLC5_CONTEXT_STATUS__IDLE__SHIFT 0x2
+#define SDMA_RLC5_CONTEXT_STATUS__EXPIRED__SHIFT 0x3
+#define SDMA_RLC5_CONTEXT_STATUS__EXCEPTION__SHIFT 0x4
+#define SDMA_RLC5_CONTEXT_STATUS__CTXSW_ABLE__SHIFT 0x7
+#define SDMA_RLC5_CONTEXT_STATUS__CTXSW_READY__SHIFT 0x8
+#define SDMA_RLC5_CONTEXT_STATUS__PREEMPTED__SHIFT 0x9
+#define SDMA_RLC5_CONTEXT_STATUS__PREEMPT_DISABLE__SHIFT 0xa
+#define SDMA_RLC5_CONTEXT_STATUS__SELECTED_MASK 0x00000001L
+#define SDMA_RLC5_CONTEXT_STATUS__IDLE_MASK 0x00000004L
+#define SDMA_RLC5_CONTEXT_STATUS__EXPIRED_MASK 0x00000008L
+#define SDMA_RLC5_CONTEXT_STATUS__EXCEPTION_MASK 0x00000070L
+#define SDMA_RLC5_CONTEXT_STATUS__CTXSW_ABLE_MASK 0x00000080L
+#define SDMA_RLC5_CONTEXT_STATUS__CTXSW_READY_MASK 0x00000100L
+#define SDMA_RLC5_CONTEXT_STATUS__PREEMPTED_MASK 0x00000200L
+#define SDMA_RLC5_CONTEXT_STATUS__PREEMPT_DISABLE_MASK 0x00000400L
+//SDMA_RLC5_DOORBELL
+#define SDMA_RLC5_DOORBELL__ENABLE__SHIFT 0x1c
+#define SDMA_RLC5_DOORBELL__CAPTURED__SHIFT 0x1e
+#define SDMA_RLC5_DOORBELL__ENABLE_MASK 0x10000000L
+#define SDMA_RLC5_DOORBELL__CAPTURED_MASK 0x40000000L
+//SDMA_RLC5_STATUS
+#define SDMA_RLC5_STATUS__WPTR_UPDATE_FAIL_COUNT__SHIFT 0x0
+#define SDMA_RLC5_STATUS__WPTR_UPDATE_PENDING__SHIFT 0x8
+#define SDMA_RLC5_STATUS__WPTR_UPDATE_FAIL_COUNT_MASK 0x000000FFL
+#define SDMA_RLC5_STATUS__WPTR_UPDATE_PENDING_MASK 0x00000100L
+//SDMA_RLC5_DOORBELL_LOG
+#define SDMA_RLC5_DOORBELL_LOG__BE_ERROR__SHIFT 0x0
+#define SDMA_RLC5_DOORBELL_LOG__DATA__SHIFT 0x2
+#define SDMA_RLC5_DOORBELL_LOG__BE_ERROR_MASK 0x00000001L
+#define SDMA_RLC5_DOORBELL_LOG__DATA_MASK 0xFFFFFFFCL
+//SDMA_RLC5_WATERMARK
+#define SDMA_RLC5_WATERMARK__RD_OUTSTANDING__SHIFT 0x0
+#define SDMA_RLC5_WATERMARK__WR_OUTSTANDING__SHIFT 0x10
+#define SDMA_RLC5_WATERMARK__RD_OUTSTANDING_MASK 0x00000FFFL
+#define SDMA_RLC5_WATERMARK__WR_OUTSTANDING_MASK 0x03FF0000L
+//SDMA_RLC5_DOORBELL_OFFSET
+#define SDMA_RLC5_DOORBELL_OFFSET__OFFSET__SHIFT 0x2
+#define SDMA_RLC5_DOORBELL_OFFSET__OFFSET_MASK 0x0FFFFFFCL
+//SDMA_RLC5_CSA_ADDR_LO
+#define SDMA_RLC5_CSA_ADDR_LO__ADDR__SHIFT 0x2
+#define SDMA_RLC5_CSA_ADDR_LO__ADDR_MASK 0xFFFFFFFCL
+//SDMA_RLC5_CSA_ADDR_HI
+#define SDMA_RLC5_CSA_ADDR_HI__ADDR__SHIFT 0x0
+#define SDMA_RLC5_CSA_ADDR_HI__ADDR_MASK 0xFFFFFFFFL
+//SDMA_RLC5_IB_SUB_REMAIN
+#define SDMA_RLC5_IB_SUB_REMAIN__SIZE__SHIFT 0x0
+#define SDMA_RLC5_IB_SUB_REMAIN__SIZE_MASK 0x000FFFFFL
+//SDMA_RLC5_PREEMPT
+#define SDMA_RLC5_PREEMPT__IB_PREEMPT__SHIFT 0x0
+#define SDMA_RLC5_PREEMPT__IB_PREEMPT_MASK 0x00000001L
+//SDMA_RLC5_DUMMY_REG
+#define SDMA_RLC5_DUMMY_REG__DUMMY__SHIFT 0x0
+#define SDMA_RLC5_DUMMY_REG__DUMMY_MASK 0xFFFFFFFFL
+//SDMA_RLC5_RB_WPTR_POLL_ADDR_HI
+#define SDMA_RLC5_RB_WPTR_POLL_ADDR_HI__ADDR__SHIFT 0x0
+#define SDMA_RLC5_RB_WPTR_POLL_ADDR_HI__ADDR_MASK 0xFFFFFFFFL
+//SDMA_RLC5_RB_WPTR_POLL_ADDR_LO
+#define SDMA_RLC5_RB_WPTR_POLL_ADDR_LO__ADDR__SHIFT 0x2
+#define SDMA_RLC5_RB_WPTR_POLL_ADDR_LO__ADDR_MASK 0xFFFFFFFCL
+//SDMA_RLC5_RB_AQL_CNTL
+#define SDMA_RLC5_RB_AQL_CNTL__AQL_ENABLE__SHIFT 0x0
+#define SDMA_RLC5_RB_AQL_CNTL__AQL_PACKET_SIZE__SHIFT 0x1
+#define SDMA_RLC5_RB_AQL_CNTL__PACKET_STEP__SHIFT 0x8
+#define SDMA_RLC5_RB_AQL_CNTL__AQL_ENABLE_MASK 0x00000001L
+#define SDMA_RLC5_RB_AQL_CNTL__AQL_PACKET_SIZE_MASK 0x000000FEL
+#define SDMA_RLC5_RB_AQL_CNTL__PACKET_STEP_MASK 0x0000FF00L
+//SDMA_RLC5_MINOR_PTR_UPDATE
+#define SDMA_RLC5_MINOR_PTR_UPDATE__ENABLE__SHIFT 0x0
+#define SDMA_RLC5_MINOR_PTR_UPDATE__ENABLE_MASK 0x00000001L
+//SDMA_RLC5_MIDCMD_DATA0
+#define SDMA_RLC5_MIDCMD_DATA0__DATA0__SHIFT 0x0
+#define SDMA_RLC5_MIDCMD_DATA0__DATA0_MASK 0xFFFFFFFFL
+//SDMA_RLC5_MIDCMD_DATA1
+#define SDMA_RLC5_MIDCMD_DATA1__DATA1__SHIFT 0x0
+#define SDMA_RLC5_MIDCMD_DATA1__DATA1_MASK 0xFFFFFFFFL
+//SDMA_RLC5_MIDCMD_DATA2
+#define SDMA_RLC5_MIDCMD_DATA2__DATA2__SHIFT 0x0
+#define SDMA_RLC5_MIDCMD_DATA2__DATA2_MASK 0xFFFFFFFFL
+//SDMA_RLC5_MIDCMD_DATA3
+#define SDMA_RLC5_MIDCMD_DATA3__DATA3__SHIFT 0x0
+#define SDMA_RLC5_MIDCMD_DATA3__DATA3_MASK 0xFFFFFFFFL
+//SDMA_RLC5_MIDCMD_DATA4
+#define SDMA_RLC5_MIDCMD_DATA4__DATA4__SHIFT 0x0
+#define SDMA_RLC5_MIDCMD_DATA4__DATA4_MASK 0xFFFFFFFFL
+//SDMA_RLC5_MIDCMD_DATA5
+#define SDMA_RLC5_MIDCMD_DATA5__DATA5__SHIFT 0x0
+#define SDMA_RLC5_MIDCMD_DATA5__DATA5_MASK 0xFFFFFFFFL
+//SDMA_RLC5_MIDCMD_DATA6
+#define SDMA_RLC5_MIDCMD_DATA6__DATA6__SHIFT 0x0
+#define SDMA_RLC5_MIDCMD_DATA6__DATA6_MASK 0xFFFFFFFFL
+//SDMA_RLC5_MIDCMD_DATA7
+#define SDMA_RLC5_MIDCMD_DATA7__DATA7__SHIFT 0x0
+#define SDMA_RLC5_MIDCMD_DATA7__DATA7_MASK 0xFFFFFFFFL
+//SDMA_RLC5_MIDCMD_DATA8
+#define SDMA_RLC5_MIDCMD_DATA8__DATA8__SHIFT 0x0
+#define SDMA_RLC5_MIDCMD_DATA8__DATA8_MASK 0xFFFFFFFFL
+//SDMA_RLC5_MIDCMD_DATA9
+#define SDMA_RLC5_MIDCMD_DATA9__DATA9__SHIFT 0x0
+#define SDMA_RLC5_MIDCMD_DATA9__DATA9_MASK 0xFFFFFFFFL
+//SDMA_RLC5_MIDCMD_DATA10
+#define SDMA_RLC5_MIDCMD_DATA10__DATA10__SHIFT 0x0
+#define SDMA_RLC5_MIDCMD_DATA10__DATA10_MASK 0xFFFFFFFFL
+//SDMA_RLC5_MIDCMD_CNTL
+#define SDMA_RLC5_MIDCMD_CNTL__DATA_VALID__SHIFT 0x0
+#define SDMA_RLC5_MIDCMD_CNTL__COPY_MODE__SHIFT 0x1
+#define SDMA_RLC5_MIDCMD_CNTL__SPLIT_STATE__SHIFT 0x4
+#define SDMA_RLC5_MIDCMD_CNTL__ALLOW_PREEMPT__SHIFT 0x8
+#define SDMA_RLC5_MIDCMD_CNTL__DATA_VALID_MASK 0x00000001L
+#define SDMA_RLC5_MIDCMD_CNTL__COPY_MODE_MASK 0x00000002L
+#define SDMA_RLC5_MIDCMD_CNTL__SPLIT_STATE_MASK 0x000000F0L
+#define SDMA_RLC5_MIDCMD_CNTL__ALLOW_PREEMPT_MASK 0x00000100L
+//SDMA_RLC6_RB_CNTL
+#define SDMA_RLC6_RB_CNTL__RB_ENABLE__SHIFT 0x0
+#define SDMA_RLC6_RB_CNTL__RB_SIZE__SHIFT 0x1
+#define SDMA_RLC6_RB_CNTL__RB_SWAP_ENABLE__SHIFT 0x9
+#define SDMA_RLC6_RB_CNTL__RPTR_WRITEBACK_ENABLE__SHIFT 0xc
+#define SDMA_RLC6_RB_CNTL__RPTR_WRITEBACK_SWAP_ENABLE__SHIFT 0xd
+#define SDMA_RLC6_RB_CNTL__RPTR_WRITEBACK_TIMER__SHIFT 0x10
+#define SDMA_RLC6_RB_CNTL__RB_PRIV__SHIFT 0x17
+#define SDMA_RLC6_RB_CNTL__RB_VMID__SHIFT 0x18
+#define SDMA_RLC6_RB_CNTL__RB_ENABLE_MASK 0x00000001L
+#define SDMA_RLC6_RB_CNTL__RB_SIZE_MASK 0x0000003EL
+#define SDMA_RLC6_RB_CNTL__RB_SWAP_ENABLE_MASK 0x00000200L
+#define SDMA_RLC6_RB_CNTL__RPTR_WRITEBACK_ENABLE_MASK 0x00001000L
+#define SDMA_RLC6_RB_CNTL__RPTR_WRITEBACK_SWAP_ENABLE_MASK 0x00002000L
+#define SDMA_RLC6_RB_CNTL__RPTR_WRITEBACK_TIMER_MASK 0x001F0000L
+#define SDMA_RLC6_RB_CNTL__RB_PRIV_MASK 0x00800000L
+#define SDMA_RLC6_RB_CNTL__RB_VMID_MASK 0x0F000000L
+//SDMA_RLC6_RB_BASE
+#define SDMA_RLC6_RB_BASE__ADDR__SHIFT 0x0
+#define SDMA_RLC6_RB_BASE__ADDR_MASK 0xFFFFFFFFL
+//SDMA_RLC6_RB_BASE_HI
+#define SDMA_RLC6_RB_BASE_HI__ADDR__SHIFT 0x0
+#define SDMA_RLC6_RB_BASE_HI__ADDR_MASK 0x00FFFFFFL
+//SDMA_RLC6_RB_RPTR
+#define SDMA_RLC6_RB_RPTR__OFFSET__SHIFT 0x0
+#define SDMA_RLC6_RB_RPTR__OFFSET_MASK 0xFFFFFFFFL
+//SDMA_RLC6_RB_RPTR_HI
+#define SDMA_RLC6_RB_RPTR_HI__OFFSET__SHIFT 0x0
+#define SDMA_RLC6_RB_RPTR_HI__OFFSET_MASK 0xFFFFFFFFL
+//SDMA_RLC6_RB_WPTR
+#define SDMA_RLC6_RB_WPTR__OFFSET__SHIFT 0x0
+#define SDMA_RLC6_RB_WPTR__OFFSET_MASK 0xFFFFFFFFL
+//SDMA_RLC6_RB_WPTR_HI
+#define SDMA_RLC6_RB_WPTR_HI__OFFSET__SHIFT 0x0
+#define SDMA_RLC6_RB_WPTR_HI__OFFSET_MASK 0xFFFFFFFFL
+//SDMA_RLC6_RB_WPTR_POLL_CNTL
+#define SDMA_RLC6_RB_WPTR_POLL_CNTL__ENABLE__SHIFT 0x0
+#define SDMA_RLC6_RB_WPTR_POLL_CNTL__SWAP_ENABLE__SHIFT 0x1
+#define SDMA_RLC6_RB_WPTR_POLL_CNTL__F32_POLL_ENABLE__SHIFT 0x2
+#define SDMA_RLC6_RB_WPTR_POLL_CNTL__FREQUENCY__SHIFT 0x4
+#define SDMA_RLC6_RB_WPTR_POLL_CNTL__IDLE_POLL_COUNT__SHIFT 0x10
+#define SDMA_RLC6_RB_WPTR_POLL_CNTL__ENABLE_MASK 0x00000001L
+#define SDMA_RLC6_RB_WPTR_POLL_CNTL__SWAP_ENABLE_MASK 0x00000002L
+#define SDMA_RLC6_RB_WPTR_POLL_CNTL__F32_POLL_ENABLE_MASK 0x00000004L
+#define SDMA_RLC6_RB_WPTR_POLL_CNTL__FREQUENCY_MASK 0x0000FFF0L
+#define SDMA_RLC6_RB_WPTR_POLL_CNTL__IDLE_POLL_COUNT_MASK 0xFFFF0000L
+//SDMA_RLC6_RB_RPTR_ADDR_HI
+#define SDMA_RLC6_RB_RPTR_ADDR_HI__ADDR__SHIFT 0x0
+#define SDMA_RLC6_RB_RPTR_ADDR_HI__ADDR_MASK 0xFFFFFFFFL
+//SDMA_RLC6_RB_RPTR_ADDR_LO
+#define SDMA_RLC6_RB_RPTR_ADDR_LO__RPTR_WB_IDLE__SHIFT 0x0
+#define SDMA_RLC6_RB_RPTR_ADDR_LO__ADDR__SHIFT 0x2
+#define SDMA_RLC6_RB_RPTR_ADDR_LO__RPTR_WB_IDLE_MASK 0x00000001L
+#define SDMA_RLC6_RB_RPTR_ADDR_LO__ADDR_MASK 0xFFFFFFFCL
+//SDMA_RLC6_IB_CNTL
+#define SDMA_RLC6_IB_CNTL__IB_ENABLE__SHIFT 0x0
+#define SDMA_RLC6_IB_CNTL__IB_SWAP_ENABLE__SHIFT 0x4
+#define SDMA_RLC6_IB_CNTL__SWITCH_INSIDE_IB__SHIFT 0x8
+#define SDMA_RLC6_IB_CNTL__CMD_VMID__SHIFT 0x10
+#define SDMA_RLC6_IB_CNTL__IB_PRIV__SHIFT 0x1f
+#define SDMA_RLC6_IB_CNTL__IB_ENABLE_MASK 0x00000001L
+#define SDMA_RLC6_IB_CNTL__IB_SWAP_ENABLE_MASK 0x00000010L
+#define SDMA_RLC6_IB_CNTL__SWITCH_INSIDE_IB_MASK 0x00000100L
+#define SDMA_RLC6_IB_CNTL__CMD_VMID_MASK 0x000F0000L
+#define SDMA_RLC6_IB_CNTL__IB_PRIV_MASK 0x80000000L
+//SDMA_RLC6_IB_RPTR
+#define SDMA_RLC6_IB_RPTR__OFFSET__SHIFT 0x2
+#define SDMA_RLC6_IB_RPTR__OFFSET_MASK 0x003FFFFCL
+//SDMA_RLC6_IB_OFFSET
+#define SDMA_RLC6_IB_OFFSET__OFFSET__SHIFT 0x2
+#define SDMA_RLC6_IB_OFFSET__OFFSET_MASK 0x003FFFFCL
+//SDMA_RLC6_IB_BASE_LO
+#define SDMA_RLC6_IB_BASE_LO__ADDR__SHIFT 0x5
+#define SDMA_RLC6_IB_BASE_LO__ADDR_MASK 0xFFFFFFE0L
+//SDMA_RLC6_IB_BASE_HI
+#define SDMA_RLC6_IB_BASE_HI__ADDR__SHIFT 0x0
+#define SDMA_RLC6_IB_BASE_HI__ADDR_MASK 0xFFFFFFFFL
+//SDMA_RLC6_IB_SIZE
+#define SDMA_RLC6_IB_SIZE__SIZE__SHIFT 0x0
+#define SDMA_RLC6_IB_SIZE__SIZE_MASK 0x000FFFFFL
+//SDMA_RLC6_SKIP_CNTL
+#define SDMA_RLC6_SKIP_CNTL__SKIP_COUNT__SHIFT 0x0
+#define SDMA_RLC6_SKIP_CNTL__SKIP_COUNT_MASK 0x000FFFFFL
+//SDMA_RLC6_CONTEXT_STATUS
+#define SDMA_RLC6_CONTEXT_STATUS__SELECTED__SHIFT 0x0
+#define SDMA_RLC6_CONTEXT_STATUS__IDLE__SHIFT 0x2
+#define SDMA_RLC6_CONTEXT_STATUS__EXPIRED__SHIFT 0x3
+#define SDMA_RLC6_CONTEXT_STATUS__EXCEPTION__SHIFT 0x4
+#define SDMA_RLC6_CONTEXT_STATUS__CTXSW_ABLE__SHIFT 0x7
+#define SDMA_RLC6_CONTEXT_STATUS__CTXSW_READY__SHIFT 0x8
+#define SDMA_RLC6_CONTEXT_STATUS__PREEMPTED__SHIFT 0x9
+#define SDMA_RLC6_CONTEXT_STATUS__PREEMPT_DISABLE__SHIFT 0xa
+#define SDMA_RLC6_CONTEXT_STATUS__SELECTED_MASK 0x00000001L
+#define SDMA_RLC6_CONTEXT_STATUS__IDLE_MASK 0x00000004L
+#define SDMA_RLC6_CONTEXT_STATUS__EXPIRED_MASK 0x00000008L
+#define SDMA_RLC6_CONTEXT_STATUS__EXCEPTION_MASK 0x00000070L
+#define SDMA_RLC6_CONTEXT_STATUS__CTXSW_ABLE_MASK 0x00000080L
+#define SDMA_RLC6_CONTEXT_STATUS__CTXSW_READY_MASK 0x00000100L
+#define SDMA_RLC6_CONTEXT_STATUS__PREEMPTED_MASK 0x00000200L
+#define SDMA_RLC6_CONTEXT_STATUS__PREEMPT_DISABLE_MASK 0x00000400L
+//SDMA_RLC6_DOORBELL
+#define SDMA_RLC6_DOORBELL__ENABLE__SHIFT 0x1c
+#define SDMA_RLC6_DOORBELL__CAPTURED__SHIFT 0x1e
+#define SDMA_RLC6_DOORBELL__ENABLE_MASK 0x10000000L
+#define SDMA_RLC6_DOORBELL__CAPTURED_MASK 0x40000000L
+//SDMA_RLC6_STATUS
+#define SDMA_RLC6_STATUS__WPTR_UPDATE_FAIL_COUNT__SHIFT 0x0
+#define SDMA_RLC6_STATUS__WPTR_UPDATE_PENDING__SHIFT 0x8
+#define SDMA_RLC6_STATUS__WPTR_UPDATE_FAIL_COUNT_MASK 0x000000FFL
+#define SDMA_RLC6_STATUS__WPTR_UPDATE_PENDING_MASK 0x00000100L
+//SDMA_RLC6_DOORBELL_LOG
+#define SDMA_RLC6_DOORBELL_LOG__BE_ERROR__SHIFT 0x0
+#define SDMA_RLC6_DOORBELL_LOG__DATA__SHIFT 0x2
+#define SDMA_RLC6_DOORBELL_LOG__BE_ERROR_MASK 0x00000001L
+#define SDMA_RLC6_DOORBELL_LOG__DATA_MASK 0xFFFFFFFCL
+//SDMA_RLC6_WATERMARK
+#define SDMA_RLC6_WATERMARK__RD_OUTSTANDING__SHIFT 0x0
+#define SDMA_RLC6_WATERMARK__WR_OUTSTANDING__SHIFT 0x10
+#define SDMA_RLC6_WATERMARK__RD_OUTSTANDING_MASK 0x00000FFFL
+#define SDMA_RLC6_WATERMARK__WR_OUTSTANDING_MASK 0x03FF0000L
+//SDMA_RLC6_DOORBELL_OFFSET
+#define SDMA_RLC6_DOORBELL_OFFSET__OFFSET__SHIFT 0x2
+#define SDMA_RLC6_DOORBELL_OFFSET__OFFSET_MASK 0x0FFFFFFCL
+//SDMA_RLC6_CSA_ADDR_LO
+#define SDMA_RLC6_CSA_ADDR_LO__ADDR__SHIFT 0x2
+#define SDMA_RLC6_CSA_ADDR_LO__ADDR_MASK 0xFFFFFFFCL
+//SDMA_RLC6_CSA_ADDR_HI
+#define SDMA_RLC6_CSA_ADDR_HI__ADDR__SHIFT 0x0
+#define SDMA_RLC6_CSA_ADDR_HI__ADDR_MASK 0xFFFFFFFFL
+//SDMA_RLC6_IB_SUB_REMAIN
+#define SDMA_RLC6_IB_SUB_REMAIN__SIZE__SHIFT 0x0
+#define SDMA_RLC6_IB_SUB_REMAIN__SIZE_MASK 0x000FFFFFL
+//SDMA_RLC6_PREEMPT
+#define SDMA_RLC6_PREEMPT__IB_PREEMPT__SHIFT 0x0
+#define SDMA_RLC6_PREEMPT__IB_PREEMPT_MASK 0x00000001L
+//SDMA_RLC6_DUMMY_REG
+#define SDMA_RLC6_DUMMY_REG__DUMMY__SHIFT 0x0
+#define SDMA_RLC6_DUMMY_REG__DUMMY_MASK 0xFFFFFFFFL
+//SDMA_RLC6_RB_WPTR_POLL_ADDR_HI
+#define SDMA_RLC6_RB_WPTR_POLL_ADDR_HI__ADDR__SHIFT 0x0
+#define SDMA_RLC6_RB_WPTR_POLL_ADDR_HI__ADDR_MASK 0xFFFFFFFFL
+//SDMA_RLC6_RB_WPTR_POLL_ADDR_LO
+#define SDMA_RLC6_RB_WPTR_POLL_ADDR_LO__ADDR__SHIFT 0x2
+#define SDMA_RLC6_RB_WPTR_POLL_ADDR_LO__ADDR_MASK 0xFFFFFFFCL
+//SDMA_RLC6_RB_AQL_CNTL
+#define SDMA_RLC6_RB_AQL_CNTL__AQL_ENABLE__SHIFT 0x0
+#define SDMA_RLC6_RB_AQL_CNTL__AQL_PACKET_SIZE__SHIFT 0x1
+#define SDMA_RLC6_RB_AQL_CNTL__PACKET_STEP__SHIFT 0x8
+#define SDMA_RLC6_RB_AQL_CNTL__AQL_ENABLE_MASK 0x00000001L
+#define SDMA_RLC6_RB_AQL_CNTL__AQL_PACKET_SIZE_MASK 0x000000FEL
+#define SDMA_RLC6_RB_AQL_CNTL__PACKET_STEP_MASK 0x0000FF00L
+//SDMA_RLC6_MINOR_PTR_UPDATE
+#define SDMA_RLC6_MINOR_PTR_UPDATE__ENABLE__SHIFT 0x0
+#define SDMA_RLC6_MINOR_PTR_UPDATE__ENABLE_MASK 0x00000001L
+//SDMA_RLC6_MIDCMD_DATA0
+#define SDMA_RLC6_MIDCMD_DATA0__DATA0__SHIFT 0x0
+#define SDMA_RLC6_MIDCMD_DATA0__DATA0_MASK 0xFFFFFFFFL
+//SDMA_RLC6_MIDCMD_DATA1
+#define SDMA_RLC6_MIDCMD_DATA1__DATA1__SHIFT 0x0
+#define SDMA_RLC6_MIDCMD_DATA1__DATA1_MASK 0xFFFFFFFFL
+//SDMA_RLC6_MIDCMD_DATA2
+#define SDMA_RLC6_MIDCMD_DATA2__DATA2__SHIFT 0x0
+#define SDMA_RLC6_MIDCMD_DATA2__DATA2_MASK 0xFFFFFFFFL
+//SDMA_RLC6_MIDCMD_DATA3
+#define SDMA_RLC6_MIDCMD_DATA3__DATA3__SHIFT 0x0
+#define SDMA_RLC6_MIDCMD_DATA3__DATA3_MASK 0xFFFFFFFFL
+//SDMA_RLC6_MIDCMD_DATA4
+#define SDMA_RLC6_MIDCMD_DATA4__DATA4__SHIFT 0x0
+#define SDMA_RLC6_MIDCMD_DATA4__DATA4_MASK 0xFFFFFFFFL
+//SDMA_RLC6_MIDCMD_DATA5
+#define SDMA_RLC6_MIDCMD_DATA5__DATA5__SHIFT 0x0
+#define SDMA_RLC6_MIDCMD_DATA5__DATA5_MASK 0xFFFFFFFFL
+//SDMA_RLC6_MIDCMD_DATA6
+#define SDMA_RLC6_MIDCMD_DATA6__DATA6__SHIFT 0x0
+#define SDMA_RLC6_MIDCMD_DATA6__DATA6_MASK 0xFFFFFFFFL
+//SDMA_RLC6_MIDCMD_DATA7
+#define SDMA_RLC6_MIDCMD_DATA7__DATA7__SHIFT 0x0
+#define SDMA_RLC6_MIDCMD_DATA7__DATA7_MASK 0xFFFFFFFFL
+//SDMA_RLC6_MIDCMD_DATA8
+#define SDMA_RLC6_MIDCMD_DATA8__DATA8__SHIFT 0x0
+#define SDMA_RLC6_MIDCMD_DATA8__DATA8_MASK 0xFFFFFFFFL
+//SDMA_RLC6_MIDCMD_DATA9
+#define SDMA_RLC6_MIDCMD_DATA9__DATA9__SHIFT 0x0
+#define SDMA_RLC6_MIDCMD_DATA9__DATA9_MASK 0xFFFFFFFFL
+//SDMA_RLC6_MIDCMD_DATA10
+#define SDMA_RLC6_MIDCMD_DATA10__DATA10__SHIFT 0x0
+#define SDMA_RLC6_MIDCMD_DATA10__DATA10_MASK 0xFFFFFFFFL
+//SDMA_RLC6_MIDCMD_CNTL
+#define SDMA_RLC6_MIDCMD_CNTL__DATA_VALID__SHIFT 0x0
+#define SDMA_RLC6_MIDCMD_CNTL__COPY_MODE__SHIFT 0x1
+#define SDMA_RLC6_MIDCMD_CNTL__SPLIT_STATE__SHIFT 0x4
+#define SDMA_RLC6_MIDCMD_CNTL__ALLOW_PREEMPT__SHIFT 0x8
+#define SDMA_RLC6_MIDCMD_CNTL__DATA_VALID_MASK 0x00000001L
+#define SDMA_RLC6_MIDCMD_CNTL__COPY_MODE_MASK 0x00000002L
+#define SDMA_RLC6_MIDCMD_CNTL__SPLIT_STATE_MASK 0x000000F0L
+#define SDMA_RLC6_MIDCMD_CNTL__ALLOW_PREEMPT_MASK 0x00000100L
+//SDMA_RLC7_RB_CNTL
+#define SDMA_RLC7_RB_CNTL__RB_ENABLE__SHIFT 0x0
+#define SDMA_RLC7_RB_CNTL__RB_SIZE__SHIFT 0x1
+#define SDMA_RLC7_RB_CNTL__RB_SWAP_ENABLE__SHIFT 0x9
+#define SDMA_RLC7_RB_CNTL__RPTR_WRITEBACK_ENABLE__SHIFT 0xc
+#define SDMA_RLC7_RB_CNTL__RPTR_WRITEBACK_SWAP_ENABLE__SHIFT 0xd
+#define SDMA_RLC7_RB_CNTL__RPTR_WRITEBACK_TIMER__SHIFT 0x10
+#define SDMA_RLC7_RB_CNTL__RB_PRIV__SHIFT 0x17
+#define SDMA_RLC7_RB_CNTL__RB_VMID__SHIFT 0x18
+#define SDMA_RLC7_RB_CNTL__RB_ENABLE_MASK 0x00000001L
+#define SDMA_RLC7_RB_CNTL__RB_SIZE_MASK 0x0000003EL
+#define SDMA_RLC7_RB_CNTL__RB_SWAP_ENABLE_MASK 0x00000200L
+#define SDMA_RLC7_RB_CNTL__RPTR_WRITEBACK_ENABLE_MASK 0x00001000L
+#define SDMA_RLC7_RB_CNTL__RPTR_WRITEBACK_SWAP_ENABLE_MASK 0x00002000L
+#define SDMA_RLC7_RB_CNTL__RPTR_WRITEBACK_TIMER_MASK 0x001F0000L
+#define SDMA_RLC7_RB_CNTL__RB_PRIV_MASK 0x00800000L
+#define SDMA_RLC7_RB_CNTL__RB_VMID_MASK 0x0F000000L
+//SDMA_RLC7_RB_BASE
+#define SDMA_RLC7_RB_BASE__ADDR__SHIFT 0x0
+#define SDMA_RLC7_RB_BASE__ADDR_MASK 0xFFFFFFFFL
+//SDMA_RLC7_RB_BASE_HI
+#define SDMA_RLC7_RB_BASE_HI__ADDR__SHIFT 0x0
+#define SDMA_RLC7_RB_BASE_HI__ADDR_MASK 0x00FFFFFFL
+//SDMA_RLC7_RB_RPTR
+#define SDMA_RLC7_RB_RPTR__OFFSET__SHIFT 0x0
+#define SDMA_RLC7_RB_RPTR__OFFSET_MASK 0xFFFFFFFFL
+//SDMA_RLC7_RB_RPTR_HI
+#define SDMA_RLC7_RB_RPTR_HI__OFFSET__SHIFT 0x0
+#define SDMA_RLC7_RB_RPTR_HI__OFFSET_MASK 0xFFFFFFFFL
+//SDMA_RLC7_RB_WPTR
+#define SDMA_RLC7_RB_WPTR__OFFSET__SHIFT 0x0
+#define SDMA_RLC7_RB_WPTR__OFFSET_MASK 0xFFFFFFFFL
+//SDMA_RLC7_RB_WPTR_HI
+#define SDMA_RLC7_RB_WPTR_HI__OFFSET__SHIFT 0x0
+#define SDMA_RLC7_RB_WPTR_HI__OFFSET_MASK 0xFFFFFFFFL
+//SDMA_RLC7_RB_WPTR_POLL_CNTL
+#define SDMA_RLC7_RB_WPTR_POLL_CNTL__ENABLE__SHIFT 0x0
+#define SDMA_RLC7_RB_WPTR_POLL_CNTL__SWAP_ENABLE__SHIFT 0x1
+#define SDMA_RLC7_RB_WPTR_POLL_CNTL__F32_POLL_ENABLE__SHIFT 0x2
+#define SDMA_RLC7_RB_WPTR_POLL_CNTL__FREQUENCY__SHIFT 0x4
+#define SDMA_RLC7_RB_WPTR_POLL_CNTL__IDLE_POLL_COUNT__SHIFT 0x10
+#define SDMA_RLC7_RB_WPTR_POLL_CNTL__ENABLE_MASK 0x00000001L
+#define SDMA_RLC7_RB_WPTR_POLL_CNTL__SWAP_ENABLE_MASK 0x00000002L
+#define SDMA_RLC7_RB_WPTR_POLL_CNTL__F32_POLL_ENABLE_MASK 0x00000004L
+#define SDMA_RLC7_RB_WPTR_POLL_CNTL__FREQUENCY_MASK 0x0000FFF0L
+#define SDMA_RLC7_RB_WPTR_POLL_CNTL__IDLE_POLL_COUNT_MASK 0xFFFF0000L
+//SDMA_RLC7_RB_RPTR_ADDR_HI
+#define SDMA_RLC7_RB_RPTR_ADDR_HI__ADDR__SHIFT 0x0
+#define SDMA_RLC7_RB_RPTR_ADDR_HI__ADDR_MASK 0xFFFFFFFFL
+//SDMA_RLC7_RB_RPTR_ADDR_LO
+#define SDMA_RLC7_RB_RPTR_ADDR_LO__RPTR_WB_IDLE__SHIFT 0x0
+#define SDMA_RLC7_RB_RPTR_ADDR_LO__ADDR__SHIFT 0x2
+#define SDMA_RLC7_RB_RPTR_ADDR_LO__RPTR_WB_IDLE_MASK 0x00000001L
+#define SDMA_RLC7_RB_RPTR_ADDR_LO__ADDR_MASK 0xFFFFFFFCL
+//SDMA_RLC7_IB_CNTL
+#define SDMA_RLC7_IB_CNTL__IB_ENABLE__SHIFT 0x0
+#define SDMA_RLC7_IB_CNTL__IB_SWAP_ENABLE__SHIFT 0x4
+#define SDMA_RLC7_IB_CNTL__SWITCH_INSIDE_IB__SHIFT 0x8
+#define SDMA_RLC7_IB_CNTL__CMD_VMID__SHIFT 0x10
+#define SDMA_RLC7_IB_CNTL__IB_PRIV__SHIFT 0x1f
+#define SDMA_RLC7_IB_CNTL__IB_ENABLE_MASK 0x00000001L
+#define SDMA_RLC7_IB_CNTL__IB_SWAP_ENABLE_MASK 0x00000010L
+#define SDMA_RLC7_IB_CNTL__SWITCH_INSIDE_IB_MASK 0x00000100L
+#define SDMA_RLC7_IB_CNTL__CMD_VMID_MASK 0x000F0000L
+#define SDMA_RLC7_IB_CNTL__IB_PRIV_MASK 0x80000000L
+//SDMA_RLC7_IB_RPTR
+#define SDMA_RLC7_IB_RPTR__OFFSET__SHIFT 0x2
+#define SDMA_RLC7_IB_RPTR__OFFSET_MASK 0x003FFFFCL
+//SDMA_RLC7_IB_OFFSET
+#define SDMA_RLC7_IB_OFFSET__OFFSET__SHIFT 0x2
+#define SDMA_RLC7_IB_OFFSET__OFFSET_MASK 0x003FFFFCL
+//SDMA_RLC7_IB_BASE_LO
+#define SDMA_RLC7_IB_BASE_LO__ADDR__SHIFT 0x5
+#define SDMA_RLC7_IB_BASE_LO__ADDR_MASK 0xFFFFFFE0L
+//SDMA_RLC7_IB_BASE_HI
+#define SDMA_RLC7_IB_BASE_HI__ADDR__SHIFT 0x0
+#define SDMA_RLC7_IB_BASE_HI__ADDR_MASK 0xFFFFFFFFL
+//SDMA_RLC7_IB_SIZE
+#define SDMA_RLC7_IB_SIZE__SIZE__SHIFT 0x0
+#define SDMA_RLC7_IB_SIZE__SIZE_MASK 0x000FFFFFL
+//SDMA_RLC7_SKIP_CNTL
+#define SDMA_RLC7_SKIP_CNTL__SKIP_COUNT__SHIFT 0x0
+#define SDMA_RLC7_SKIP_CNTL__SKIP_COUNT_MASK 0x000FFFFFL
+//SDMA_RLC7_CONTEXT_STATUS
+#define SDMA_RLC7_CONTEXT_STATUS__SELECTED__SHIFT 0x0
+#define SDMA_RLC7_CONTEXT_STATUS__IDLE__SHIFT 0x2
+#define SDMA_RLC7_CONTEXT_STATUS__EXPIRED__SHIFT 0x3
+#define SDMA_RLC7_CONTEXT_STATUS__EXCEPTION__SHIFT 0x4
+#define SDMA_RLC7_CONTEXT_STATUS__CTXSW_ABLE__SHIFT 0x7
+#define SDMA_RLC7_CONTEXT_STATUS__CTXSW_READY__SHIFT 0x8
+#define SDMA_RLC7_CONTEXT_STATUS__PREEMPTED__SHIFT 0x9
+#define SDMA_RLC7_CONTEXT_STATUS__PREEMPT_DISABLE__SHIFT 0xa
+#define SDMA_RLC7_CONTEXT_STATUS__SELECTED_MASK 0x00000001L
+#define SDMA_RLC7_CONTEXT_STATUS__IDLE_MASK 0x00000004L
+#define SDMA_RLC7_CONTEXT_STATUS__EXPIRED_MASK 0x00000008L
+#define SDMA_RLC7_CONTEXT_STATUS__EXCEPTION_MASK 0x00000070L
+#define SDMA_RLC7_CONTEXT_STATUS__CTXSW_ABLE_MASK 0x00000080L
+#define SDMA_RLC7_CONTEXT_STATUS__CTXSW_READY_MASK 0x00000100L
+#define SDMA_RLC7_CONTEXT_STATUS__PREEMPTED_MASK 0x00000200L
+#define SDMA_RLC7_CONTEXT_STATUS__PREEMPT_DISABLE_MASK 0x00000400L
+//SDMA_RLC7_DOORBELL
+#define SDMA_RLC7_DOORBELL__ENABLE__SHIFT 0x1c
+#define SDMA_RLC7_DOORBELL__CAPTURED__SHIFT 0x1e
+#define SDMA_RLC7_DOORBELL__ENABLE_MASK 0x10000000L
+#define SDMA_RLC7_DOORBELL__CAPTURED_MASK 0x40000000L
+//SDMA_RLC7_STATUS
+#define SDMA_RLC7_STATUS__WPTR_UPDATE_FAIL_COUNT__SHIFT 0x0
+#define SDMA_RLC7_STATUS__WPTR_UPDATE_PENDING__SHIFT 0x8
+#define SDMA_RLC7_STATUS__WPTR_UPDATE_FAIL_COUNT_MASK 0x000000FFL
+#define SDMA_RLC7_STATUS__WPTR_UPDATE_PENDING_MASK 0x00000100L
+//SDMA_RLC7_DOORBELL_LOG
+#define SDMA_RLC7_DOORBELL_LOG__BE_ERROR__SHIFT 0x0
+#define SDMA_RLC7_DOORBELL_LOG__DATA__SHIFT 0x2
+#define SDMA_RLC7_DOORBELL_LOG__BE_ERROR_MASK 0x00000001L
+#define SDMA_RLC7_DOORBELL_LOG__DATA_MASK 0xFFFFFFFCL
+//SDMA_RLC7_WATERMARK
+#define SDMA_RLC7_WATERMARK__RD_OUTSTANDING__SHIFT 0x0
+#define SDMA_RLC7_WATERMARK__WR_OUTSTANDING__SHIFT 0x10
+#define SDMA_RLC7_WATERMARK__RD_OUTSTANDING_MASK 0x00000FFFL
+#define SDMA_RLC7_WATERMARK__WR_OUTSTANDING_MASK 0x03FF0000L
+//SDMA_RLC7_DOORBELL_OFFSET
+#define SDMA_RLC7_DOORBELL_OFFSET__OFFSET__SHIFT 0x2
+#define SDMA_RLC7_DOORBELL_OFFSET__OFFSET_MASK 0x0FFFFFFCL
+//SDMA_RLC7_CSA_ADDR_LO
+#define SDMA_RLC7_CSA_ADDR_LO__ADDR__SHIFT 0x2
+#define SDMA_RLC7_CSA_ADDR_LO__ADDR_MASK 0xFFFFFFFCL
+//SDMA_RLC7_CSA_ADDR_HI
+#define SDMA_RLC7_CSA_ADDR_HI__ADDR__SHIFT 0x0
+#define SDMA_RLC7_CSA_ADDR_HI__ADDR_MASK 0xFFFFFFFFL
+//SDMA_RLC7_IB_SUB_REMAIN
+#define SDMA_RLC7_IB_SUB_REMAIN__SIZE__SHIFT 0x0
+#define SDMA_RLC7_IB_SUB_REMAIN__SIZE_MASK 0x000FFFFFL
+//SDMA_RLC7_PREEMPT
+#define SDMA_RLC7_PREEMPT__IB_PREEMPT__SHIFT 0x0
+#define SDMA_RLC7_PREEMPT__IB_PREEMPT_MASK 0x00000001L
+//SDMA_RLC7_DUMMY_REG
+#define SDMA_RLC7_DUMMY_REG__DUMMY__SHIFT 0x0
+#define SDMA_RLC7_DUMMY_REG__DUMMY_MASK 0xFFFFFFFFL
+//SDMA_RLC7_RB_WPTR_POLL_ADDR_HI
+#define SDMA_RLC7_RB_WPTR_POLL_ADDR_HI__ADDR__SHIFT 0x0
+#define SDMA_RLC7_RB_WPTR_POLL_ADDR_HI__ADDR_MASK 0xFFFFFFFFL
+//SDMA_RLC7_RB_WPTR_POLL_ADDR_LO
+#define SDMA_RLC7_RB_WPTR_POLL_ADDR_LO__ADDR__SHIFT 0x2
+#define SDMA_RLC7_RB_WPTR_POLL_ADDR_LO__ADDR_MASK 0xFFFFFFFCL
+//SDMA_RLC7_RB_AQL_CNTL
+#define SDMA_RLC7_RB_AQL_CNTL__AQL_ENABLE__SHIFT 0x0
+#define SDMA_RLC7_RB_AQL_CNTL__AQL_PACKET_SIZE__SHIFT 0x1
+#define SDMA_RLC7_RB_AQL_CNTL__PACKET_STEP__SHIFT 0x8
+#define SDMA_RLC7_RB_AQL_CNTL__AQL_ENABLE_MASK 0x00000001L
+#define SDMA_RLC7_RB_AQL_CNTL__AQL_PACKET_SIZE_MASK 0x000000FEL
+#define SDMA_RLC7_RB_AQL_CNTL__PACKET_STEP_MASK 0x0000FF00L
+//SDMA_RLC7_MINOR_PTR_UPDATE
+#define SDMA_RLC7_MINOR_PTR_UPDATE__ENABLE__SHIFT 0x0
+#define SDMA_RLC7_MINOR_PTR_UPDATE__ENABLE_MASK 0x00000001L
+//SDMA_RLC7_MIDCMD_DATA0
+#define SDMA_RLC7_MIDCMD_DATA0__DATA0__SHIFT 0x0
+#define SDMA_RLC7_MIDCMD_DATA0__DATA0_MASK 0xFFFFFFFFL
+//SDMA_RLC7_MIDCMD_DATA1
+#define SDMA_RLC7_MIDCMD_DATA1__DATA1__SHIFT 0x0
+#define SDMA_RLC7_MIDCMD_DATA1__DATA1_MASK 0xFFFFFFFFL
+//SDMA_RLC7_MIDCMD_DATA2
+#define SDMA_RLC7_MIDCMD_DATA2__DATA2__SHIFT 0x0
+#define SDMA_RLC7_MIDCMD_DATA2__DATA2_MASK 0xFFFFFFFFL
+//SDMA_RLC7_MIDCMD_DATA3
+#define SDMA_RLC7_MIDCMD_DATA3__DATA3__SHIFT 0x0
+#define SDMA_RLC7_MIDCMD_DATA3__DATA3_MASK 0xFFFFFFFFL
+//SDMA_RLC7_MIDCMD_DATA4
+#define SDMA_RLC7_MIDCMD_DATA4__DATA4__SHIFT 0x0
+#define SDMA_RLC7_MIDCMD_DATA4__DATA4_MASK 0xFFFFFFFFL
+//SDMA_RLC7_MIDCMD_DATA5
+#define SDMA_RLC7_MIDCMD_DATA5__DATA5__SHIFT 0x0
+#define SDMA_RLC7_MIDCMD_DATA5__DATA5_MASK 0xFFFFFFFFL
+//SDMA_RLC7_MIDCMD_DATA6
+#define SDMA_RLC7_MIDCMD_DATA6__DATA6__SHIFT 0x0
+#define SDMA_RLC7_MIDCMD_DATA6__DATA6_MASK 0xFFFFFFFFL
+//SDMA_RLC7_MIDCMD_DATA7
+#define SDMA_RLC7_MIDCMD_DATA7__DATA7__SHIFT 0x0
+#define SDMA_RLC7_MIDCMD_DATA7__DATA7_MASK 0xFFFFFFFFL
+//SDMA_RLC7_MIDCMD_DATA8
+#define SDMA_RLC7_MIDCMD_DATA8__DATA8__SHIFT 0x0
+#define SDMA_RLC7_MIDCMD_DATA8__DATA8_MASK 0xFFFFFFFFL
+//SDMA_RLC7_MIDCMD_DATA9
+#define SDMA_RLC7_MIDCMD_DATA9__DATA9__SHIFT 0x0
+#define SDMA_RLC7_MIDCMD_DATA9__DATA9_MASK 0xFFFFFFFFL
+//SDMA_RLC7_MIDCMD_DATA10
+#define SDMA_RLC7_MIDCMD_DATA10__DATA10__SHIFT 0x0
+#define SDMA_RLC7_MIDCMD_DATA10__DATA10_MASK 0xFFFFFFFFL
+//SDMA_RLC7_MIDCMD_CNTL
+#define SDMA_RLC7_MIDCMD_CNTL__DATA_VALID__SHIFT 0x0
+#define SDMA_RLC7_MIDCMD_CNTL__COPY_MODE__SHIFT 0x1
+#define SDMA_RLC7_MIDCMD_CNTL__SPLIT_STATE__SHIFT 0x4
+#define SDMA_RLC7_MIDCMD_CNTL__ALLOW_PREEMPT__SHIFT 0x8
+#define SDMA_RLC7_MIDCMD_CNTL__DATA_VALID_MASK 0x00000001L
+#define SDMA_RLC7_MIDCMD_CNTL__COPY_MODE_MASK 0x00000002L
+#define SDMA_RLC7_MIDCMD_CNTL__SPLIT_STATE_MASK 0x000000F0L
+#define SDMA_RLC7_MIDCMD_CNTL__ALLOW_PREEMPT_MASK 0x00000100L
+
+#endif
diff --git a/drivers/gpu/drm/amd/include/asic_reg/vcn/vcn_2_5_offset.h b/drivers/gpu/drm/amd/include/asic_reg/vcn/vcn_2_5_offset.h
index 363d2139cea2..db7e22720d00 100644
--- a/drivers/gpu/drm/amd/include/asic_reg/vcn/vcn_2_5_offset.h
+++ b/drivers/gpu/drm/amd/include/asic_reg/vcn/vcn_2_5_offset.h
@@ -993,7 +993,8 @@
#define mmUVD_RAS_VCPU_VCODEC_STATUS_BASE_IDX 1
#define mmUVD_RAS_MMSCH_FATAL_ERROR 0x0058
#define mmUVD_RAS_MMSCH_FATAL_ERROR_BASE_IDX 1
-
+#define mmVCN_RAS_CNTL 0x04b9
+#define mmVCN_RAS_CNTL_BASE_IDX 1
/* JPEG 2_6_0 regs */
#define mmUVD_RAS_JPEG0_STATUS 0x0059
diff --git a/drivers/gpu/drm/amd/include/asic_reg/vcn/vcn_2_5_sh_mask.h b/drivers/gpu/drm/amd/include/asic_reg/vcn/vcn_2_5_sh_mask.h
index 8de883b76d90..874a8b7e1feb 100644
--- a/drivers/gpu/drm/amd/include/asic_reg/vcn/vcn_2_5_sh_mask.h
+++ b/drivers/gpu/drm/amd/include/asic_reg/vcn/vcn_2_5_sh_mask.h
@@ -3618,6 +3618,33 @@
#define UVD_RAS_MMSCH_FATAL_ERROR__POISONED_VF_MASK 0x7FFFFFFFL
#define UVD_RAS_MMSCH_FATAL_ERROR__POISONED_PF_MASK 0x80000000L
+//VCN 2_6_0 VCN_RAS_CNTL
+#define VCN_RAS_CNTL__VCPU_VCODEC_IH_EN__SHIFT 0x0
+#define VCN_RAS_CNTL__MMSCH_FATAL_ERROR_EN__SHIFT 0x1
+#define VCN_RAS_CNTL__VCPU_VCODEC_PMI_EN__SHIFT 0x4
+#define VCN_RAS_CNTL__MMSCH_PMI_EN__SHIFT 0x5
+#define VCN_RAS_CNTL__VCPU_VCODEC_REARM__SHIFT 0x8
+#define VCN_RAS_CNTL__MMSCH_REARM__SHIFT 0x9
+#define VCN_RAS_CNTL__VCPU_VCODEC_STALL_EN__SHIFT 0xc
+#define VCN_RAS_CNTL__VCPU_VCODEC_READY__SHIFT 0x10
+#define VCN_RAS_CNTL__MMSCH_READY__SHIFT 0x11
+#define VCN_RAS_CNTL__VCPU_VCODEC_IH_EN_MASK 0x00000001L
+#define VCN_RAS_CNTL__MMSCH_FATAL_ERROR_EN_MASK 0x00000002L
+#define VCN_RAS_CNTL__VCPU_VCODEC_PMI_EN_MASK 0x00000010L
+#define VCN_RAS_CNTL__MMSCH_PMI_EN_MASK 0x00000020L
+#define VCN_RAS_CNTL__VCPU_VCODEC_REARM_MASK 0x00000100L
+#define VCN_RAS_CNTL__MMSCH_REARM_MASK 0x00000200L
+#define VCN_RAS_CNTL__VCPU_VCODEC_STALL_EN_MASK 0x00001000L
+#define VCN_RAS_CNTL__VCPU_VCODEC_READY_MASK 0x00010000L
+#define VCN_RAS_CNTL__MMSCH_READY_MASK 0x00020000L
+
+//VCN 2_6_0 UVD_VCPU_INT_EN
+#define UVD_VCPU_INT_EN__RASCNTL_VCPU_VCODEC_EN__SHIFT 0x16
+#define UVD_VCPU_INT_EN__RASCNTL_VCPU_VCODEC_EN_MASK 0x00400000L
+
+//VCN 2_6_0 UVD_SYS_INT_EN
+#define UVD_SYS_INT_EN__RASCNTL_VCPU_VCODEC_EN_MASK 0x04000000L
+
/* JPEG 2_6_0 UVD_RAS_JPEG0_STATUS */
#define UVD_RAS_JPEG0_STATUS__POISONED_VF__SHIFT 0x0
#define UVD_RAS_JPEG0_STATUS__POISONED_PF__SHIFT 0x1f
diff --git a/drivers/gpu/drm/amd/include/asic_reg/xgmi/xgmi_6_1_0_sh_mask.h b/drivers/gpu/drm/amd/include/asic_reg/xgmi/xgmi_6_1_0_sh_mask.h
new file mode 100644
index 000000000000..c6c0cf1376a6
--- /dev/null
+++ b/drivers/gpu/drm/amd/include/asic_reg/xgmi/xgmi_6_1_0_sh_mask.h
@@ -0,0 +1,87 @@
+/*
+ * Copyright 2023 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ */
+
+#ifndef _xgmi_6_1_0_SH_MASK_HEADER
+#define _xgmi_6_1_0_SH_MASK_HEADER
+
+//PCS_XGMI3X16_PCS_ERROR_STATUS
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__DataLossErr__SHIFT 0x0
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__TrainingErr__SHIFT 0x1
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__FlowCtrlAckErr__SHIFT 0x2
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__RxFifoUnderflowErr__SHIFT 0x3
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__RxFifoOverflowErr__SHIFT 0x4
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__CRCErr__SHIFT 0x5
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__BERExceededErr__SHIFT 0x6
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__TxVcidDataErr__SHIFT 0x7
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__ReplayBufParityErr__SHIFT 0x8
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__DataParityErr__SHIFT 0x9
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__ReplayFifoOverflowErr__SHIFT 0xa
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__ReplayFifoUnderflowErr__SHIFT 0xb
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__ElasticFifoOverflowErr__SHIFT 0xc
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__DeskewErr__SHIFT 0xd
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__FlowCtrlCRCErr__SHIFT 0xe
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__DataStartupLimitErr__SHIFT 0xf
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__FCInitTimeoutErr__SHIFT 0x10
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__RecoveryTimeoutErr__SHIFT 0x11
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__ReadySerialTimeoutErr__SHIFT 0x12
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__ReadySerialAttemptErr__SHIFT 0x13
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__RecoveryAttemptErr__SHIFT 0x14
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__RecoveryRelockAttemptErr__SHIFT 0x15
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__ReplayAttemptErr__SHIFT 0x16
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__SyncHdrErr__SHIFT 0x17
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__TxReplayTimeoutErr__SHIFT 0x18
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__RxReplayTimeoutErr__SHIFT 0x19
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__LinkSubTxTimeoutErr__SHIFT 0x1a
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__LinkSubRxTimeoutErr__SHIFT 0x1b
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__RxCMDPktErr__SHIFT 0x1c
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__DataLossErr_MASK 0x00000001L
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__TrainingErr_MASK 0x00000002L
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__FlowCtrlAckErr_MASK 0x00000004L
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__RxFifoUnderflowErr_MASK 0x00000008L
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__RxFifoOverflowErr_MASK 0x00000010L
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__CRCErr_MASK 0x00000020L
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__BERExceededErr_MASK 0x00000040L
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__TxVcidDataErr_MASK 0x00000080L
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__ReplayBufParityErr_MASK 0x00000100L
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__DataParityErr_MASK 0x00000200L
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__ReplayFifoOverflowErr_MASK 0x00000400L
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__ReplayFifoUnderflowErr_MASK 0x00000800L
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__ElasticFifoOverflowErr_MASK 0x00001000L
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__DeskewErr_MASK 0x00002000L
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__FlowCtrlCRCErr_MASK 0x00004000L
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__DataStartupLimitErr_MASK 0x00008000L
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__FCInitTimeoutErr_MASK 0x00010000L
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__RecoveryTimeoutErr_MASK 0x00020000L
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__ReadySerialTimeoutErr_MASK 0x00040000L
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__ReadySerialAttemptErr_MASK 0x00080000L
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__RecoveryAttemptErr_MASK 0x00100000L
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__RecoveryRelockAttemptErr_MASK 0x00200000L
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__ReplayAttemptErr_MASK 0x00400000L
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__SyncHdrErr_MASK 0x00800000L
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__TxReplayTimeoutErr_MASK 0x01000000L
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__RxReplayTimeoutErr_MASK 0x02000000L
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__LinkSubTxTimeoutErr_MASK 0x04000000L
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__LinkSubRxTimeoutErr_MASK 0x08000000L
+#define PCS_XGMI3X16_PCS_ERROR_STATUS__RxCMDPktErr_MASK 0x10000000L
+
+#endif
diff --git a/drivers/gpu/drm/amd/include/atombios.h b/drivers/gpu/drm/amd/include/atombios.h
index 15943bc21bc5..b78360a71bc9 100644
--- a/drivers/gpu/drm/amd/include/atombios.h
+++ b/drivers/gpu/drm/amd/include/atombios.h
@@ -4107,7 +4107,7 @@ typedef struct _ATOM_FAKE_EDID_PATCH_RECORD
{
UCHAR ucRecordType;
UCHAR ucFakeEDIDLength; // = 128 means EDID length is 128 bytes, otherwise the EDID length = ucFakeEDIDLength*128
- UCHAR ucFakeEDIDString[1]; // This actually has ucFakeEdidLength elements.
+ UCHAR ucFakeEDIDString[]; // This actually has ucFakeEdidLength elements.
} ATOM_FAKE_EDID_PATCH_RECORD;
typedef struct _ATOM_PANEL_RESOLUTION_PATCH_RECORD
@@ -4386,7 +4386,7 @@ typedef struct _ATOM_GPIO_PIN_ASSIGNMENT
typedef struct _ATOM_GPIO_PIN_LUT
{
ATOM_COMMON_TABLE_HEADER sHeader;
- ATOM_GPIO_PIN_ASSIGNMENT asGPIO_Pin[1];
+ ATOM_GPIO_PIN_ASSIGNMENT asGPIO_Pin[];
}ATOM_GPIO_PIN_LUT;
/****************************************************************************/
@@ -4513,7 +4513,7 @@ typedef struct _ATOM_DISPLAY_OBJECT_PATH
USHORT usSize; //the size of ATOM_DISPLAY_OBJECT_PATH
USHORT usConnObjectId; //Connector Object ID
USHORT usGPUObjectId; //GPU ID
- USHORT usGraphicObjIds[1]; //1st Encoder Obj source from GPU to last Graphic Obj destinate to connector.
+ USHORT usGraphicObjIds[]; //1st Encoder Obj source from GPU to last Graphic Obj destinate to connector.
}ATOM_DISPLAY_OBJECT_PATH;
typedef struct _ATOM_DISPLAY_EXTERNAL_OBJECT_PATH
@@ -4530,7 +4530,7 @@ typedef struct _ATOM_DISPLAY_OBJECT_PATH_TABLE
UCHAR ucNumOfDispPath;
UCHAR ucVersion;
UCHAR ucPadding[2];
- ATOM_DISPLAY_OBJECT_PATH asDispPath[1];
+ ATOM_DISPLAY_OBJECT_PATH asDispPath[];
}ATOM_DISPLAY_OBJECT_PATH_TABLE;
typedef struct _ATOM_OBJECT //each object has this structure
@@ -4545,7 +4545,7 @@ typedef struct _ATOM_OBJECT_TABLE //Above 4 object table
{
UCHAR ucNumberOfObjects;
UCHAR ucPadding[3];
- ATOM_OBJECT asObjects[1];
+ ATOM_OBJECT asObjects[];
}ATOM_OBJECT_TABLE;
typedef struct _ATOM_SRC_DST_TABLE_FOR_ONE_OBJECT //usSrcDstTableOffset pointing to this structure
@@ -4733,7 +4733,7 @@ typedef struct _ATOM_CONNECTOR_DEVICE_TAG_RECORD
ATOM_COMMON_RECORD_HEADER sheader;
UCHAR ucNumberOfDevice;
UCHAR ucReserved;
- ATOM_CONNECTOR_DEVICE_TAG asDeviceTag[1]; //This Id is same as "ATOM_DEVICE_XXX_SUPPORT", 1 is only for allocation
+ ATOM_CONNECTOR_DEVICE_TAG asDeviceTag[]; //This Id is same as "ATOM_DEVICE_XXX_SUPPORT"
}ATOM_CONNECTOR_DEVICE_TAG_RECORD;
@@ -4793,7 +4793,7 @@ typedef struct _ATOM_OBJECT_GPIO_CNTL_RECORD
ATOM_COMMON_RECORD_HEADER sheader;
UCHAR ucFlags; // Future expnadibility
UCHAR ucNumberOfPins; // Number of GPIO pins used to control the object
- ATOM_GPIO_PIN_CONTROL_PAIR asGpio[1]; // the real gpio pin pair determined by number of pins ucNumberOfPins
+ ATOM_GPIO_PIN_CONTROL_PAIR asGpio[]; // the real gpio pin pair determined by number of pins ucNumberOfPins
}ATOM_OBJECT_GPIO_CNTL_RECORD;
//Definitions for GPIO pin state
@@ -4982,7 +4982,7 @@ typedef struct _ATOM_BRACKET_LAYOUT_RECORD
UCHAR ucWidth;
UCHAR ucConnNum;
UCHAR ucReserved;
- ATOM_CONNECTOR_LAYOUT_INFO asConnInfo[1];
+ ATOM_CONNECTOR_LAYOUT_INFO asConnInfo[];
}ATOM_BRACKET_LAYOUT_RECORD;
@@ -5146,7 +5146,7 @@ typedef struct _ATOM_I2C_VOLTAGE_OBJECT_V3
UCHAR ucVoltageControlOffset;
UCHAR ucVoltageControlFlag; // Bit0: 0 - One byte data; 1 - Two byte data
UCHAR ulReserved[3];
- VOLTAGE_LUT_ENTRY asVolI2cLut[1]; // end with 0xff
+ VOLTAGE_LUT_ENTRY asVolI2cLut[]; // end with 0xff
}ATOM_I2C_VOLTAGE_OBJECT_V3;
// ATOM_I2C_VOLTAGE_OBJECT_V3.ucVoltageControlFlag
@@ -5161,7 +5161,7 @@ typedef struct _ATOM_GPIO_VOLTAGE_OBJECT_V3
UCHAR ucPhaseDelay; // phase delay in unit of micro second
UCHAR ucReserved;
ULONG ulGpioMaskVal; // GPIO Mask value
- VOLTAGE_LUT_ENTRY_V2 asVolGpioLut[1];
+ VOLTAGE_LUT_ENTRY_V2 asVolGpioLut[];
}ATOM_GPIO_VOLTAGE_OBJECT_V3;
typedef struct _ATOM_LEAKAGE_VOLTAGE_OBJECT_V3
@@ -5171,7 +5171,7 @@ typedef struct _ATOM_LEAKAGE_VOLTAGE_OBJECT_V3
UCHAR ucLeakageEntryNum; // indicate the entry number of LeakageId/Voltage Lut table
UCHAR ucReserved[2];
ULONG ulMaxVoltageLevel;
- LEAKAGE_VOLTAGE_LUT_ENTRY_V2 asLeakageIdLut[1];
+ LEAKAGE_VOLTAGE_LUT_ENTRY_V2 asLeakageIdLut[];
}ATOM_LEAKAGE_VOLTAGE_OBJECT_V3;
@@ -6599,7 +6599,7 @@ typedef struct _ATOM_FUSION_SYSTEM_INFO_V3
typedef struct _ATOM_I2C_DATA_RECORD
{
UCHAR ucNunberOfBytes; //Indicates how many bytes SW needs to write to the external ASIC for one block, besides to "Start" and "Stop"
- UCHAR ucI2CData[1]; //I2C data in bytes, should be less than 16 bytes usually
+ UCHAR ucI2CData[]; //I2C data in bytes, should be less than 16 bytes usually
}ATOM_I2C_DATA_RECORD;
@@ -6610,14 +6610,14 @@ typedef struct _ATOM_I2C_DEVICE_SETUP_INFO
UCHAR ucSSChipID; //SS chip being used
UCHAR ucSSChipSlaveAddr; //Slave Address to set up this SS chip
UCHAR ucNumOfI2CDataRecords; //number of data block
- ATOM_I2C_DATA_RECORD asI2CData[1];
+ ATOM_I2C_DATA_RECORD asI2CData[];
}ATOM_I2C_DEVICE_SETUP_INFO;
//==========================================================================================
typedef struct _ATOM_ASIC_MVDD_INFO
{
ATOM_COMMON_TABLE_HEADER sHeader;
- ATOM_I2C_DEVICE_SETUP_INFO asI2CSetup[1];
+ ATOM_I2C_DEVICE_SETUP_INFO asI2CSetup[];
}ATOM_ASIC_MVDD_INFO;
//==========================================================================================
@@ -6679,7 +6679,7 @@ typedef struct _ATOM_ASIC_INTERNAL_SS_INFO
typedef struct _ATOM_ASIC_INTERNAL_SS_INFO_V2
{
ATOM_COMMON_TABLE_HEADER sHeader;
- ATOM_ASIC_SS_ASSIGNMENT_V2 asSpreadSpectrum[1]; //this is point only.
+ ATOM_ASIC_SS_ASSIGNMENT_V2 asSpreadSpectrum[]; //this is point only.
}ATOM_ASIC_INTERNAL_SS_INFO_V2;
typedef struct _ATOM_ASIC_SS_ASSIGNMENT_V3
@@ -6701,7 +6701,7 @@ typedef struct _ATOM_ASIC_SS_ASSIGNMENT_V3
typedef struct _ATOM_ASIC_INTERNAL_SS_INFO_V3
{
ATOM_COMMON_TABLE_HEADER sHeader;
- ATOM_ASIC_SS_ASSIGNMENT_V3 asSpreadSpectrum[1]; //this is pointer only.
+ ATOM_ASIC_SS_ASSIGNMENT_V3 asSpreadSpectrum[]; //this is pointer only.
}ATOM_ASIC_INTERNAL_SS_INFO_V3;
@@ -9292,7 +9292,7 @@ typedef struct {
typedef struct {
VFCT_IMAGE_HEADER VbiosHeader;
- UCHAR VbiosContent[1];
+ UCHAR VbiosContent[];
}GOP_VBIOS_CONTENT;
typedef struct {
diff --git a/drivers/gpu/drm/amd/include/atomfirmware.h b/drivers/gpu/drm/amd/include/atomfirmware.h
index ff855cb21d3f..bbe1337a8cee 100644
--- a/drivers/gpu/drm/amd/include/atomfirmware.h
+++ b/drivers/gpu/drm/amd/include/atomfirmware.h
@@ -705,20 +705,65 @@ struct atom_gpio_pin_lut_v2_1
};
-/*
- ***************************************************************************
- Data Table vram_usagebyfirmware structure
- ***************************************************************************
-*/
+/*
+ * VBIOS/PRE-OS always reserve a FB region at the top of frame buffer. driver should not write
+ * access that region. driver can allocate their own reservation region as long as it does not
+ * overlap firwmare's reservation region.
+ * if (pre-NV1X) atom data table firmwareInfoTable version < 3.3:
+ * in this case, atom data table vram_usagebyfirmwareTable version always <= 2.1
+ * if VBIOS/UEFI GOP is posted:
+ * VBIOS/UEFIGOP update used_by_firmware_in_kb = total reserved size by VBIOS
+ * update start_address_in_kb = total_mem_size_in_kb - used_by_firmware_in_kb;
+ * ( total_mem_size_in_kb = reg(CONFIG_MEMSIZE)<<10)
+ * driver can allocate driver reservation region under firmware reservation,
+ * used_by_driver_in_kb = driver reservation size
+ * driver reservation start address = (start_address_in_kb - used_by_driver_in_kb)
+ * Comment1[hchan]: There is only one reservation at the beginning of the FB reserved by
+ * host driver. Host driver would overwrite the table with the following
+ * used_by_firmware_in_kb = total reserved size for pf-vf info exchange and
+ * set SRIOV_MSG_SHARE_RESERVATION mask start_address_in_kb = 0
+ * else there is no VBIOS reservation region:
+ * driver must allocate driver reservation region at top of FB.
+ * driver set used_by_driver_in_kb = driver reservation size
+ * driver reservation start address = (total_mem_size_in_kb - used_by_driver_in_kb)
+ * same as Comment1
+ * else (NV1X and after):
+ * if VBIOS/UEFI GOP is posted:
+ * VBIOS/UEFIGOP update:
+ * used_by_firmware_in_kb = atom_firmware_Info_v3_3.fw_reserved_size_in_kb;
+ * start_address_in_kb = total_mem_size_in_kb - used_by_firmware_in_kb;
+ * (total_mem_size_in_kb = reg(CONFIG_MEMSIZE)<<10)
+ * if vram_usagebyfirmwareTable version <= 2.1:
+ * driver can allocate driver reservation region under firmware reservation,
+ * driver set used_by_driver_in_kb = driver reservation size
+ * driver reservation start address = start_address_in_kb - used_by_driver_in_kb
+ * same as Comment1
+ * else driver can:
+ * allocate it reservation any place as long as it does overlap pre-OS FW reservation area
+ * set used_by_driver_region0_in_kb = driver reservation size
+ * set driver_region0_start_address_in_kb = driver reservation region start address
+ * Comment2[hchan]: Host driver can set used_by_firmware_in_kb and start_address_in_kb to
+ * zero as the reservation for VF as it doesn’t exist. And Host driver should also
+ * update atom_firmware_Info table to remove the same VBIOS reservation as well.
+ */
struct vram_usagebyfirmware_v2_1
{
- struct atom_common_table_header table_header;
- uint32_t start_address_in_kb;
- uint16_t used_by_firmware_in_kb;
- uint16_t used_by_driver_in_kb;
+ struct atom_common_table_header table_header;
+ uint32_t start_address_in_kb;
+ uint16_t used_by_firmware_in_kb;
+ uint16_t used_by_driver_in_kb;
};
+struct vram_usagebyfirmware_v2_2 {
+ struct atom_common_table_header table_header;
+ uint32_t fw_region_start_address_in_kb;
+ uint16_t used_by_firmware_in_kb;
+ uint16_t reserved;
+ uint32_t driver_region0_start_address_in_kb;
+ uint32_t used_by_driver_region0_in_kb;
+ uint32_t reserved32[7];
+};
/*
***************************************************************************
diff --git a/drivers/gpu/drm/amd/include/ivsrcid/gfx/irqsrcs_gfx_11_0_0.h b/drivers/gpu/drm/amd/include/ivsrcid/gfx/irqsrcs_gfx_11_0_0.h
index 9e8ed9f4bb15..3a4670bc4449 100644
--- a/drivers/gpu/drm/amd/include/ivsrcid/gfx/irqsrcs_gfx_11_0_0.h
+++ b/drivers/gpu/drm/amd/include/ivsrcid/gfx/irqsrcs_gfx_11_0_0.h
@@ -49,6 +49,8 @@
#define GFX_11_0_0__SRCID__SDMA_SEM_INCOMPLETE_TIMEOUT 65 // 0x41 GPF(Sem incomplete timeout)
#define GFX_11_0_0__SRCID__SDMA_SEM_WAIT_FAIL_TIMEOUT 66 // 0x42 Semaphore wait fail timeout
+#define GFX_11_0_0__SRCID__RLC_GC_FED_INTERRUPT 128 // 0x80 FED Interrupt (for data poisoning)
+
#define GFX_11_0_0__SRCID__CP_GENERIC_INT 177 // 0xB1 CP_GENERIC int
#define GFX_11_0_0__SRCID__CP_PM4_PKT_RSVD_BIT_ERROR 180 // 0xB4 PM4 Pkt Rsvd Bits Error
#define GFX_11_0_0__SRCID__CP_EOP_INTERRUPT 181 // 0xB5 End-of-Pipe Interrupt
diff --git a/drivers/gpu/drm/amd/include/ivsrcid/vcn/irqsrcs_vcn_4_0.h b/drivers/gpu/drm/amd/include/ivsrcid/vcn/irqsrcs_vcn_4_0.h
index a81138c9e491..03cfa0517df2 100644
--- a/drivers/gpu/drm/amd/include/ivsrcid/vcn/irqsrcs_vcn_4_0.h
+++ b/drivers/gpu/drm/amd/include/ivsrcid/vcn/irqsrcs_vcn_4_0.h
@@ -38,4 +38,7 @@
#define VCN_4_0__SRCID__JPEG6_DECODE 174 // 0xae JRBC6 Decode interrupt
#define VCN_4_0__SRCID__JPEG7_DECODE 175 // 0xaf JRBC7 Decode interrupt
+#define VCN_4_0__SRCID_UVD_POISON 160
+#define VCN_4_0__SRCID_DJPEG0_POISON 161
+#define VCN_4_0__SRCID_EJPEG0_POISON 162
#endif
diff --git a/drivers/gpu/drm/amd/include/kgd_pp_interface.h b/drivers/gpu/drm/amd/include/kgd_pp_interface.h
index a40ead44778a..9f542f6e19ed 100644
--- a/drivers/gpu/drm/amd/include/kgd_pp_interface.h
+++ b/drivers/gpu/drm/amd/include/kgd_pp_interface.h
@@ -104,7 +104,9 @@ enum pp_clock_type {
PP_FCLK,
PP_DCEFCLK,
PP_VCLK,
+ PP_VCLK1,
PP_DCLK,
+ PP_DCLK1,
OD_SCLK,
OD_MCLK,
OD_VDDC_CURVE,
@@ -139,6 +141,8 @@ enum amd_pp_sensors {
AMDGPU_PP_SENSOR_MIN_FAN_RPM,
AMDGPU_PP_SENSOR_MAX_FAN_RPM,
AMDGPU_PP_SENSOR_VCN_POWER_STATE,
+ AMDGPU_PP_SENSOR_PEAK_PSTATE_SCLK,
+ AMDGPU_PP_SENSOR_PEAK_PSTATE_MCLK,
};
enum amd_pp_task {
@@ -158,6 +162,8 @@ enum PP_SMC_POWER_PROFILE {
PP_SMC_POWER_PROFILE_COMPUTE = 0x5,
PP_SMC_POWER_PROFILE_CUSTOM = 0x6,
PP_SMC_POWER_PROFILE_WINDOW3D = 0x7,
+ PP_SMC_POWER_PROFILE_CAPPED = 0x8,
+ PP_SMC_POWER_PROFILE_UNCAPPED = 0x9,
PP_SMC_POWER_PROFILE_COUNT,
};
@@ -329,6 +335,8 @@ struct amd_pm_funcs {
int (*get_mclk_od)(void *handle);
int (*set_mclk_od)(void *handle, uint32_t value);
int (*read_sensor)(void *handle, int idx, void *value, int *size);
+ int (*get_apu_thermal_limit)(void *handle, uint32_t *limit);
+ int (*set_apu_thermal_limit)(void *handle, uint32_t limit);
enum amd_dpm_forced_level (*get_performance_level)(void *handle);
enum amd_pm_state_type (*get_current_power_state)(void *handle);
int (*get_fan_speed_rpm)(void *handle, uint32_t *rpm);
@@ -354,7 +362,8 @@ struct amd_pm_funcs {
int (*get_power_profile_mode)(void *handle, char *buf);
int (*set_power_profile_mode)(void *handle, long *input, uint32_t size);
int (*set_fine_grain_clk_vol)(void *handle, uint32_t type, long *input, uint32_t size);
- int (*odn_edit_dpm_table)(void *handle, uint32_t type, long *input, uint32_t size);
+ int (*odn_edit_dpm_table)(void *handle, enum PP_OD_DPM_TABLE_COMMAND type,
+ long *input, uint32_t size);
int (*set_mp1_state)(void *handle, enum pp_mp1_state mp1_state);
int (*smu_i2c_bus_access)(void *handle, bool acquire);
int (*gfx_state_change_set)(void *handle, uint32_t state);
@@ -394,6 +403,7 @@ struct amd_pm_funcs {
int (*get_ppfeature_status)(void *handle, char *buf);
int (*set_ppfeature_status)(void *handle, uint64_t ppfeature_masks);
int (*asic_reset_mode_2)(void *handle);
+ int (*asic_reset_enable_gfx_features)(void *handle);
int (*set_df_cstate)(void *handle, enum pp_df_cstate state);
int (*set_xgmi_pstate)(void *handle, uint32_t pstate);
ssize_t (*get_gpu_metrics)(void *handle, void **table);
diff --git a/drivers/gpu/drm/amd/include/mes_v11_api_def.h b/drivers/gpu/drm/amd/include/mes_v11_api_def.h
index 7e85cdc5bd34..dc694cb246d9 100644
--- a/drivers/gpu/drm/amd/include/mes_v11_api_def.h
+++ b/drivers/gpu/drm/amd/include/mes_v11_api_def.h
@@ -222,7 +222,11 @@ union MESAPI_SET_HW_RESOURCES {
uint32_t apply_grbm_remote_register_dummy_read_wa : 1;
uint32_t second_gfx_pipe_enabled : 1;
uint32_t enable_level_process_quantum_check : 1;
- uint32_t reserved : 25;
+ uint32_t legacy_sch_mode : 1;
+ uint32_t disable_add_queue_wptr_mc_addr : 1;
+ uint32_t enable_mes_event_int_logging : 1;
+ uint32_t enable_reg_active_poll : 1;
+ uint32_t reserved : 21;
};
uint32_t uint32_t_all;
};
diff --git a/drivers/gpu/drm/amd/include/v11_structs.h b/drivers/gpu/drm/amd/include/v11_structs.h
index b8ff7456ae0b..f8008270f813 100644
--- a/drivers/gpu/drm/amd/include/v11_structs.h
+++ b/drivers/gpu/drm/amd/include/v11_structs.h
@@ -25,14 +25,14 @@
#define V11_STRUCTS_H_
struct v11_gfx_mqd {
- uint32_t reserved_0; // offset: 0 (0x0)
- uint32_t reserved_1; // offset: 1 (0x1)
- uint32_t reserved_2; // offset: 2 (0x2)
- uint32_t reserved_3; // offset: 3 (0x3)
- uint32_t reserved_4; // offset: 4 (0x4)
- uint32_t reserved_5; // offset: 5 (0x5)
- uint32_t reserved_6; // offset: 6 (0x6)
- uint32_t reserved_7; // offset: 7 (0x7)
+ uint32_t shadow_base_lo; // offset: 0 (0x0)
+ uint32_t shadow_base_hi; // offset: 1 (0x1)
+ uint32_t gds_bkup_base_lo; // offset: 2 (0x2)
+ uint32_t gds_bkup_base_hi; // offset: 3 (0x3)
+ uint32_t fw_work_area_base_lo; // offset: 4 (0x4)
+ uint32_t fw_work_area_base_hi; // offset: 5 (0x5)
+ uint32_t shadow_initialized; // offset: 6 (0x6)
+ uint32_t ib_vmid; // offset: 7 (0x7)
uint32_t reserved_8; // offset: 8 (0x8)
uint32_t reserved_9; // offset: 9 (0x9)
uint32_t reserved_10; // offset: 10 (0xA)
diff --git a/drivers/gpu/drm/amd/include/yellow_carp_offset.h b/drivers/gpu/drm/amd/include/yellow_carp_offset.h
index 28a56b56bcaf..0fea6a746611 100644
--- a/drivers/gpu/drm/amd/include/yellow_carp_offset.h
+++ b/drivers/gpu/drm/amd/include/yellow_carp_offset.h
@@ -1,3 +1,4 @@
+// SPDX-License-Identifier: MIT
#ifndef YELLOW_CARP_OFFSET_H
#define YELLOW_CARP_OFFSET_H
diff --git a/drivers/gpu/drm/amd/pm/amdgpu_dpm.c b/drivers/gpu/drm/amd/pm/amdgpu_dpm.c
index 1b300c569faf..078aaaa53162 100644
--- a/drivers/gpu/drm/amd/pm/amdgpu_dpm.c
+++ b/drivers/gpu/drm/amd/pm/amdgpu_dpm.c
@@ -36,6 +36,8 @@
#define amdgpu_dpm_enable_bapm(adev, e) \
((adev)->powerplay.pp_funcs->enable_bapm((adev)->powerplay.pp_handle, (e)))
+#define amdgpu_dpm_is_legacy_dpm(adev) ((adev)->powerplay.pp_handle == (adev))
+
int amdgpu_dpm_get_sclk(struct amdgpu_device *adev, bool low)
{
const struct amd_pm_funcs *pp_funcs = adev->powerplay.pp_funcs;
@@ -227,6 +229,24 @@ int amdgpu_dpm_mode2_reset(struct amdgpu_device *adev)
return ret;
}
+int amdgpu_dpm_enable_gfx_features(struct amdgpu_device *adev)
+{
+ const struct amd_pm_funcs *pp_funcs = adev->powerplay.pp_funcs;
+ void *pp_handle = adev->powerplay.pp_handle;
+ int ret = 0;
+
+ if (!pp_funcs || !pp_funcs->asic_reset_enable_gfx_features)
+ return -ENOENT;
+
+ mutex_lock(&adev->pm.mutex);
+
+ ret = pp_funcs->asic_reset_enable_gfx_features(pp_handle);
+
+ mutex_unlock(&adev->pm.mutex);
+
+ return ret;
+}
+
int amdgpu_dpm_baco_reset(struct amdgpu_device *adev)
{
const struct amd_pm_funcs *pp_funcs = adev->powerplay.pp_funcs;
@@ -438,6 +458,34 @@ int amdgpu_dpm_read_sensor(struct amdgpu_device *adev, enum amd_pp_sensors senso
return ret;
}
+int amdgpu_dpm_get_apu_thermal_limit(struct amdgpu_device *adev, uint32_t *limit)
+{
+ const struct amd_pm_funcs *pp_funcs = adev->powerplay.pp_funcs;
+ int ret = -EINVAL;
+
+ if (pp_funcs && pp_funcs->get_apu_thermal_limit) {
+ mutex_lock(&adev->pm.mutex);
+ ret = pp_funcs->get_apu_thermal_limit(adev->powerplay.pp_handle, limit);
+ mutex_unlock(&adev->pm.mutex);
+ }
+
+ return ret;
+}
+
+int amdgpu_dpm_set_apu_thermal_limit(struct amdgpu_device *adev, uint32_t limit)
+{
+ const struct amd_pm_funcs *pp_funcs = adev->powerplay.pp_funcs;
+ int ret = -EINVAL;
+
+ if (pp_funcs && pp_funcs->set_apu_thermal_limit) {
+ mutex_lock(&adev->pm.mutex);
+ ret = pp_funcs->set_apu_thermal_limit(adev->powerplay.pp_handle, limit);
+ mutex_unlock(&adev->pm.mutex);
+ }
+
+ return ret;
+}
+
void amdgpu_dpm_compute_clocks(struct amdgpu_device *adev)
{
const struct amd_pm_funcs *pp_funcs = adev->powerplay.pp_funcs;
@@ -1414,15 +1462,24 @@ int amdgpu_dpm_get_smu_prv_buf_details(struct amdgpu_device *adev,
int amdgpu_dpm_is_overdrive_supported(struct amdgpu_device *adev)
{
- struct pp_hwmgr *hwmgr = adev->powerplay.pp_handle;
- struct smu_context *smu = adev->powerplay.pp_handle;
+ if (is_support_sw_smu(adev)) {
+ struct smu_context *smu = adev->powerplay.pp_handle;
+
+ return (smu->od_enabled || smu->is_apu);
+ } else {
+ struct pp_hwmgr *hwmgr;
- if ((is_support_sw_smu(adev) && smu->od_enabled) ||
- (is_support_sw_smu(adev) && smu->is_apu) ||
- (!is_support_sw_smu(adev) && hwmgr->od_enabled))
- return true;
+ /*
+ * dpm on some legacy asics don't carry od_enabled member
+ * as its pp_handle is casted directly from adev.
+ */
+ if (amdgpu_dpm_is_legacy_dpm(adev))
+ return false;
- return false;
+ hwmgr = (struct pp_hwmgr *)adev->powerplay.pp_handle;
+
+ return hwmgr->od_enabled;
+ }
}
int amdgpu_dpm_set_pp_table(struct amdgpu_device *adev,
diff --git a/drivers/gpu/drm/amd/pm/amdgpu_pm.c b/drivers/gpu/drm/amd/pm/amdgpu_pm.c
index 236657eece47..58c2246918fd 100644
--- a/drivers/gpu/drm/amd/pm/amdgpu_pm.c
+++ b/drivers/gpu/drm/amd/pm/amdgpu_pm.c
@@ -91,6 +91,8 @@ const char * const amdgpu_pp_profile_name[] = {
"COMPUTE",
"CUSTOM",
"WINDOW_3D",
+ "CAPPED",
+ "UNCAPPED",
};
/**
@@ -1178,6 +1180,21 @@ static ssize_t amdgpu_set_pp_dpm_vclk(struct device *dev,
return amdgpu_set_pp_dpm_clock(dev, PP_VCLK, buf, count);
}
+static ssize_t amdgpu_get_pp_dpm_vclk1(struct device *dev,
+ struct device_attribute *attr,
+ char *buf)
+{
+ return amdgpu_get_pp_dpm_clock(dev, PP_VCLK1, buf);
+}
+
+static ssize_t amdgpu_set_pp_dpm_vclk1(struct device *dev,
+ struct device_attribute *attr,
+ const char *buf,
+ size_t count)
+{
+ return amdgpu_set_pp_dpm_clock(dev, PP_VCLK1, buf, count);
+}
+
static ssize_t amdgpu_get_pp_dpm_dclk(struct device *dev,
struct device_attribute *attr,
char *buf)
@@ -1193,6 +1210,21 @@ static ssize_t amdgpu_set_pp_dpm_dclk(struct device *dev,
return amdgpu_set_pp_dpm_clock(dev, PP_DCLK, buf, count);
}
+static ssize_t amdgpu_get_pp_dpm_dclk1(struct device *dev,
+ struct device_attribute *attr,
+ char *buf)
+{
+ return amdgpu_get_pp_dpm_clock(dev, PP_DCLK1, buf);
+}
+
+static ssize_t amdgpu_set_pp_dpm_dclk1(struct device *dev,
+ struct device_attribute *attr,
+ const char *buf,
+ size_t count)
+{
+ return amdgpu_set_pp_dpm_clock(dev, PP_DCLK1, buf, count);
+}
+
static ssize_t amdgpu_get_pp_dpm_dcefclk(struct device *dev,
struct device_attribute *attr,
char *buf)
@@ -1686,6 +1718,82 @@ static ssize_t amdgpu_set_thermal_throttling_logging(struct device *dev,
}
/**
+ * DOC: apu_thermal_cap
+ *
+ * The amdgpu driver provides a sysfs API for retrieving/updating thermal
+ * limit temperature in millidegrees Celsius
+ *
+ * Reading back the file shows you core limit value
+ *
+ * Writing an integer to the file, sets a new thermal limit. The value
+ * should be between 0 and 100. If the value is less than 0 or greater
+ * than 100, then the write request will be ignored.
+ */
+static ssize_t amdgpu_get_apu_thermal_cap(struct device *dev,
+ struct device_attribute *attr,
+ char *buf)
+{
+ int ret, size;
+ u32 limit;
+ struct drm_device *ddev = dev_get_drvdata(dev);
+ struct amdgpu_device *adev = drm_to_adev(ddev);
+
+ ret = pm_runtime_get_sync(ddev->dev);
+ if (ret < 0) {
+ pm_runtime_put_autosuspend(ddev->dev);
+ return ret;
+ }
+
+ ret = amdgpu_dpm_get_apu_thermal_limit(adev, &limit);
+ if (!ret)
+ size = sysfs_emit(buf, "%u\n", limit);
+ else
+ size = sysfs_emit(buf, "failed to get thermal limit\n");
+
+ pm_runtime_mark_last_busy(ddev->dev);
+ pm_runtime_put_autosuspend(ddev->dev);
+
+ return size;
+}
+
+static ssize_t amdgpu_set_apu_thermal_cap(struct device *dev,
+ struct device_attribute *attr,
+ const char *buf,
+ size_t count)
+{
+ int ret;
+ u32 value;
+ struct drm_device *ddev = dev_get_drvdata(dev);
+ struct amdgpu_device *adev = drm_to_adev(ddev);
+
+ ret = kstrtou32(buf, 10, &value);
+ if (ret)
+ return ret;
+
+ if (value > 100) {
+ dev_err(dev, "Invalid argument !\n");
+ return -EINVAL;
+ }
+
+ ret = pm_runtime_get_sync(ddev->dev);
+ if (ret < 0) {
+ pm_runtime_put_autosuspend(ddev->dev);
+ return ret;
+ }
+
+ ret = amdgpu_dpm_set_apu_thermal_limit(adev, value);
+ if (ret) {
+ dev_err(dev, "failed to update thermal limit\n");
+ return ret;
+ }
+
+ pm_runtime_mark_last_busy(ddev->dev);
+ pm_runtime_put_autosuspend(ddev->dev);
+
+ return count;
+}
+
+/**
* DOC: gpu_metrics
*
* The amdgpu driver provides a sysfs API for retrieving current gpu
@@ -1924,7 +2032,9 @@ static struct amdgpu_device_attr amdgpu_device_attrs[] = {
AMDGPU_DEVICE_ATTR_RW(pp_dpm_socclk, ATTR_FLAG_BASIC|ATTR_FLAG_ONEVF),
AMDGPU_DEVICE_ATTR_RW(pp_dpm_fclk, ATTR_FLAG_BASIC|ATTR_FLAG_ONEVF),
AMDGPU_DEVICE_ATTR_RW(pp_dpm_vclk, ATTR_FLAG_BASIC|ATTR_FLAG_ONEVF),
+ AMDGPU_DEVICE_ATTR_RW(pp_dpm_vclk1, ATTR_FLAG_BASIC|ATTR_FLAG_ONEVF),
AMDGPU_DEVICE_ATTR_RW(pp_dpm_dclk, ATTR_FLAG_BASIC|ATTR_FLAG_ONEVF),
+ AMDGPU_DEVICE_ATTR_RW(pp_dpm_dclk1, ATTR_FLAG_BASIC|ATTR_FLAG_ONEVF),
AMDGPU_DEVICE_ATTR_RW(pp_dpm_dcefclk, ATTR_FLAG_BASIC|ATTR_FLAG_ONEVF),
AMDGPU_DEVICE_ATTR_RW(pp_dpm_pcie, ATTR_FLAG_BASIC|ATTR_FLAG_ONEVF),
AMDGPU_DEVICE_ATTR_RW(pp_sclk_od, ATTR_FLAG_BASIC),
@@ -1937,6 +2047,7 @@ static struct amdgpu_device_attr amdgpu_device_attrs[] = {
AMDGPU_DEVICE_ATTR_RW(pp_features, ATTR_FLAG_BASIC|ATTR_FLAG_ONEVF),
AMDGPU_DEVICE_ATTR_RO(unique_id, ATTR_FLAG_BASIC|ATTR_FLAG_ONEVF),
AMDGPU_DEVICE_ATTR_RW(thermal_throttling_logging, ATTR_FLAG_BASIC|ATTR_FLAG_ONEVF),
+ AMDGPU_DEVICE_ATTR_RW(apu_thermal_cap, ATTR_FLAG_BASIC|ATTR_FLAG_ONEVF),
AMDGPU_DEVICE_ATTR_RO(gpu_metrics, ATTR_FLAG_BASIC|ATTR_FLAG_ONEVF),
AMDGPU_DEVICE_ATTR_RO(smartshift_apu_power, ATTR_FLAG_BASIC,
.attr_update = ss_power_attr_update),
@@ -1991,6 +2102,8 @@ static int default_attr_update(struct amdgpu_device *adev, struct amdgpu_device_
case IP_VERSION(9, 4, 2):
case IP_VERSION(10, 3, 0):
case IP_VERSION(11, 0, 0):
+ case IP_VERSION(11, 0, 1):
+ case IP_VERSION(11, 0, 2):
*states = ATTR_STATE_SUPPORTED;
break;
default:
@@ -2007,14 +2120,28 @@ static int default_attr_update(struct amdgpu_device *adev, struct amdgpu_device_
gc_ver == IP_VERSION(10, 3, 0) ||
gc_ver == IP_VERSION(10, 1, 2) ||
gc_ver == IP_VERSION(11, 0, 0) ||
- gc_ver == IP_VERSION(11, 0, 2)))
+ gc_ver == IP_VERSION(11, 0, 2) ||
+ gc_ver == IP_VERSION(11, 0, 3)))
+ *states = ATTR_STATE_UNSUPPORTED;
+ } else if (DEVICE_ATTR_IS(pp_dpm_vclk1)) {
+ if (!((gc_ver == IP_VERSION(10, 3, 1) ||
+ gc_ver == IP_VERSION(10, 3, 0) ||
+ gc_ver == IP_VERSION(11, 0, 2) ||
+ gc_ver == IP_VERSION(11, 0, 3)) && adev->vcn.num_vcn_inst >= 2))
*states = ATTR_STATE_UNSUPPORTED;
} else if (DEVICE_ATTR_IS(pp_dpm_dclk)) {
if (!(gc_ver == IP_VERSION(10, 3, 1) ||
gc_ver == IP_VERSION(10, 3, 0) ||
gc_ver == IP_VERSION(10, 1, 2) ||
gc_ver == IP_VERSION(11, 0, 0) ||
- gc_ver == IP_VERSION(11, 0, 2)))
+ gc_ver == IP_VERSION(11, 0, 2) ||
+ gc_ver == IP_VERSION(11, 0, 3)))
+ *states = ATTR_STATE_UNSUPPORTED;
+ } else if (DEVICE_ATTR_IS(pp_dpm_dclk1)) {
+ if (!((gc_ver == IP_VERSION(10, 3, 1) ||
+ gc_ver == IP_VERSION(10, 3, 0) ||
+ gc_ver == IP_VERSION(11, 0, 2) ||
+ gc_ver == IP_VERSION(11, 0, 3)) && adev->vcn.num_vcn_inst >= 2))
*states = ATTR_STATE_UNSUPPORTED;
} else if (DEVICE_ATTR_IS(pp_power_profile_mode)) {
if (amdgpu_dpm_get_power_profile_mode(adev, NULL) == -EOPNOTSUPP)
@@ -3059,7 +3186,7 @@ static ssize_t amdgpu_hwmon_show_mclk_label(struct device *dev,
*
* hwmon interfaces for GPU power:
*
- * - power1_average: average power used by the GPU in microWatts
+ * - power1_average: average power used by the SoC in microWatts. On APUs this includes the CPU.
*
* - power1_cap_min: minimum cap supported in microWatts
*
@@ -3268,7 +3395,7 @@ static umode_t hwmon_attributes_visible(struct kobject *kobj,
attr == &sensor_dev_attr_pwm1_enable.dev_attr.attr)) /* can't manage state */
effective_mode &= ~S_IWUSR;
- /* not implemented yet for GC 10.3.1 APUs */
+ /* In the case of APUs, this is only implemented on Vangogh */
if (((adev->family == AMDGPU_FAMILY_SI) ||
((adev->flags & AMD_IS_APU) && (gc_ver != IP_VERSION(10, 3, 1)))) &&
(attr == &sensor_dev_attr_power1_cap_max.dev_attr.attr ||
@@ -3277,7 +3404,7 @@ static umode_t hwmon_attributes_visible(struct kobject *kobj,
attr == &sensor_dev_attr_power1_cap_default.dev_attr.attr))
return 0;
- /* not implemented yet for APUs having <= GC 9.3.0 */
+ /* not implemented yet for APUs having < GC 9.3.0 (Renoir) */
if (((adev->family == AMDGPU_FAMILY_SI) ||
((adev->flags & AMD_IS_APU) && (gc_ver < IP_VERSION(9, 3, 0)))) &&
(attr == &sensor_dev_attr_power1_average.dev_attr.attr))
diff --git a/drivers/gpu/drm/amd/pm/inc/amdgpu_dpm.h b/drivers/gpu/drm/amd/pm/inc/amdgpu_dpm.h
index cb5b9df78b4d..d178f3f44081 100644
--- a/drivers/gpu/drm/amd/pm/inc/amdgpu_dpm.h
+++ b/drivers/gpu/drm/amd/pm/inc/amdgpu_dpm.h
@@ -369,6 +369,9 @@ struct amdgpu_pm {
int amdgpu_dpm_read_sensor(struct amdgpu_device *adev, enum amd_pp_sensors sensor,
void *data, uint32_t *size);
+int amdgpu_dpm_get_apu_thermal_limit(struct amdgpu_device *adev, uint32_t *limit);
+int amdgpu_dpm_set_apu_thermal_limit(struct amdgpu_device *adev, uint32_t limit);
+
int amdgpu_dpm_set_powergating_by_smu(struct amdgpu_device *adev,
uint32_t block_type, bool gate);
@@ -386,6 +389,7 @@ int amdgpu_dpm_switch_power_profile(struct amdgpu_device *adev,
int amdgpu_dpm_baco_reset(struct amdgpu_device *adev);
int amdgpu_dpm_mode2_reset(struct amdgpu_device *adev);
+int amdgpu_dpm_enable_gfx_features(struct amdgpu_device *adev);
bool amdgpu_dpm_is_baco_supported(struct amdgpu_device *adev);
diff --git a/drivers/gpu/drm/amd/pm/legacy-dpm/si_dpm.c b/drivers/gpu/drm/amd/pm/legacy-dpm/si_dpm.c
index 49c398ec0aaf..d6d9e3b1b2c0 100644
--- a/drivers/gpu/drm/amd/pm/legacy-dpm/si_dpm.c
+++ b/drivers/gpu/drm/amd/pm/legacy-dpm/si_dpm.c
@@ -7714,20 +7714,13 @@ static int si_dpm_init_microcode(struct amdgpu_device *adev)
}
snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_smc.bin", chip_name);
- err = request_firmware(&adev->pm.fw, fw_name, adev->dev);
- if (err)
- goto out;
- err = amdgpu_ucode_validate(adev->pm.fw);
-
-out:
+ err = amdgpu_ucode_request(adev, &adev->pm.fw, fw_name);
if (err) {
DRM_ERROR("si_smc: Failed to load firmware. err = %d\"%s\"\n",
err, fw_name);
- release_firmware(adev->pm.fw);
- adev->pm.fw = NULL;
+ amdgpu_ucode_release(&adev->pm.fw);
}
return err;
-
}
static int si_dpm_sw_init(void *handle)
diff --git a/drivers/gpu/drm/amd/pm/powerplay/amd_powerplay.c b/drivers/gpu/drm/amd/pm/powerplay/amd_powerplay.c
index ec055858eb95..11b7b4cffaae 100644
--- a/drivers/gpu/drm/amd/pm/powerplay/amd_powerplay.c
+++ b/drivers/gpu/drm/amd/pm/powerplay/amd_powerplay.c
@@ -111,8 +111,7 @@ static int pp_sw_fini(void *handle)
hwmgr_sw_fini(hwmgr);
- release_firmware(adev->pm.fw);
- adev->pm.fw = NULL;
+ amdgpu_ucode_release(&adev->pm.fw);
return 0;
}
@@ -769,10 +768,16 @@ static int pp_dpm_read_sensor(void *handle, int idx,
switch (idx) {
case AMDGPU_PP_SENSOR_STABLE_PSTATE_SCLK:
- *((uint32_t *)value) = hwmgr->pstate_sclk;
+ *((uint32_t *)value) = hwmgr->pstate_sclk * 100;
return 0;
case AMDGPU_PP_SENSOR_STABLE_PSTATE_MCLK:
- *((uint32_t *)value) = hwmgr->pstate_mclk;
+ *((uint32_t *)value) = hwmgr->pstate_mclk * 100;
+ return 0;
+ case AMDGPU_PP_SENSOR_PEAK_PSTATE_SCLK:
+ *((uint32_t *)value) = hwmgr->pstate_sclk_peak * 100;
+ return 0;
+ case AMDGPU_PP_SENSOR_PEAK_PSTATE_MCLK:
+ *((uint32_t *)value) = hwmgr->pstate_mclk_peak * 100;
return 0;
case AMDGPU_PP_SENSOR_MIN_FAN_RPM:
*((uint32_t *)value) = hwmgr->thermal_controller.fanInfo.ulMinRPM;
@@ -838,7 +843,8 @@ static int pp_set_fine_grain_clk_vol(void *handle, uint32_t type, long *input, u
return hwmgr->hwmgr_func->set_fine_grain_clk_vol(hwmgr, type, input, size);
}
-static int pp_odn_edit_dpm_table(void *handle, uint32_t type, long *input, uint32_t size)
+static int pp_odn_edit_dpm_table(void *handle, enum PP_OD_DPM_TABLE_COMMAND type,
+ long *input, uint32_t size)
{
struct pp_hwmgr *hwmgr = handle;
@@ -1507,7 +1513,7 @@ static void pp_pm_compute_clocks(void *handle)
struct pp_hwmgr *hwmgr = handle;
struct amdgpu_device *adev = hwmgr->adev;
- if (!amdgpu_device_has_dc_support(adev)) {
+ if (!adev->dc_enabled) {
amdgpu_dpm_get_active_displays(adev);
adev->pm.pm_display_cfg.num_display = adev->pm.dpm.new_active_crtc_count;
adev->pm.pm_display_cfg.vrefresh = amdgpu_dpm_get_vrefresh(adev);
diff --git a/drivers/gpu/drm/amd/pm/powerplay/hwmgr/pp_psm.c b/drivers/gpu/drm/amd/pm/powerplay/hwmgr/pp_psm.c
index 67d7da0b6fed..1d829402cd2e 100644
--- a/drivers/gpu/drm/amd/pm/powerplay/hwmgr/pp_psm.c
+++ b/drivers/gpu/drm/amd/pm/powerplay/hwmgr/pp_psm.c
@@ -75,8 +75,10 @@ int psm_init_power_state_table(struct pp_hwmgr *hwmgr)
for (i = 0; i < table_entries; i++) {
result = hwmgr->hwmgr_func->get_pp_table_entry(hwmgr, i, state);
if (result) {
+ kfree(hwmgr->current_ps);
kfree(hwmgr->request_ps);
kfree(hwmgr->ps);
+ hwmgr->current_ps = NULL;
hwmgr->request_ps = NULL;
hwmgr->ps = NULL;
return -EINVAL;
diff --git a/drivers/gpu/drm/amd/pm/powerplay/hwmgr/smu10_hwmgr.c b/drivers/gpu/drm/amd/pm/powerplay/hwmgr/smu10_hwmgr.c
index ede71de2343d..86d6e88c7386 100644
--- a/drivers/gpu/drm/amd/pm/powerplay/hwmgr/smu10_hwmgr.c
+++ b/drivers/gpu/drm/amd/pm/powerplay/hwmgr/smu10_hwmgr.c
@@ -375,6 +375,17 @@ static int smu10_enable_gfx_off(struct pp_hwmgr *hwmgr)
return 0;
}
+static void smu10_populate_umdpstate_clocks(struct pp_hwmgr *hwmgr)
+{
+ hwmgr->pstate_sclk = SMU10_UMD_PSTATE_GFXCLK;
+ hwmgr->pstate_mclk = SMU10_UMD_PSTATE_FCLK;
+
+ smum_send_msg_to_smc(hwmgr,
+ PPSMC_MSG_GetMaxGfxclkFrequency,
+ &hwmgr->pstate_sclk_peak);
+ hwmgr->pstate_mclk_peak = SMU10_UMD_PSTATE_PEAK_FCLK;
+}
+
static int smu10_enable_dpm_tasks(struct pp_hwmgr *hwmgr)
{
struct amdgpu_device *adev = hwmgr->adev;
@@ -398,6 +409,8 @@ static int smu10_enable_dpm_tasks(struct pp_hwmgr *hwmgr)
return ret;
}
+ smu10_populate_umdpstate_clocks(hwmgr);
+
return 0;
}
@@ -574,9 +587,6 @@ static int smu10_hwmgr_backend_init(struct pp_hwmgr *hwmgr)
hwmgr->platform_descriptor.minimumClocksReductionPercentage = 50;
- hwmgr->pstate_sclk = SMU10_UMD_PSTATE_GFXCLK * 100;
- hwmgr->pstate_mclk = SMU10_UMD_PSTATE_FCLK * 100;
-
/* enable the pp_od_clk_voltage sysfs file */
hwmgr->od_enabled = 1;
/* disabled fine grain tuning function by default */
diff --git a/drivers/gpu/drm/amd/pm/powerplay/hwmgr/smu7_hwmgr.c b/drivers/gpu/drm/amd/pm/powerplay/hwmgr/smu7_hwmgr.c
index 7ef7e81525a3..e10cc5e7928e 100644
--- a/drivers/gpu/drm/amd/pm/powerplay/hwmgr/smu7_hwmgr.c
+++ b/drivers/gpu/drm/amd/pm/powerplay/hwmgr/smu7_hwmgr.c
@@ -22,7 +22,6 @@
*/
#include "pp_debug.h"
#include <linux/delay.h>
-#include <linux/fb.h>
#include <linux/module.h>
#include <linux/pci.h>
#include <linux/slab.h>
@@ -1501,6 +1500,67 @@ static int smu7_populate_edc_leakage_registers(struct pp_hwmgr *hwmgr)
return ret;
}
+static void smu7_populate_umdpstate_clocks(struct pp_hwmgr *hwmgr)
+{
+ struct smu7_hwmgr *data = (struct smu7_hwmgr *)(hwmgr->backend);
+ struct smu7_dpm_table *golden_dpm_table = &data->golden_dpm_table;
+ int32_t tmp_sclk, count, percentage;
+
+ if (golden_dpm_table->mclk_table.count == 1) {
+ percentage = 70;
+ hwmgr->pstate_mclk = golden_dpm_table->mclk_table.dpm_levels[0].value;
+ } else {
+ percentage = 100 * golden_dpm_table->sclk_table.dpm_levels[golden_dpm_table->sclk_table.count - 1].value /
+ golden_dpm_table->mclk_table.dpm_levels[golden_dpm_table->mclk_table.count - 1].value;
+ hwmgr->pstate_mclk = golden_dpm_table->mclk_table.dpm_levels[golden_dpm_table->mclk_table.count - 2].value;
+ }
+
+ tmp_sclk = hwmgr->pstate_mclk * percentage / 100;
+
+ if (hwmgr->pp_table_version == PP_TABLE_V0) {
+ struct phm_clock_voltage_dependency_table *vddc_dependency_on_sclk =
+ hwmgr->dyn_state.vddc_dependency_on_sclk;
+
+ for (count = vddc_dependency_on_sclk->count - 1; count >= 0; count--) {
+ if (tmp_sclk >= vddc_dependency_on_sclk->entries[count].clk) {
+ hwmgr->pstate_sclk = vddc_dependency_on_sclk->entries[count].clk;
+ break;
+ }
+ }
+ if (count < 0)
+ hwmgr->pstate_sclk = vddc_dependency_on_sclk->entries[0].clk;
+
+ hwmgr->pstate_sclk_peak =
+ vddc_dependency_on_sclk->entries[vddc_dependency_on_sclk->count - 1].clk;
+ } else if (hwmgr->pp_table_version == PP_TABLE_V1) {
+ struct phm_ppt_v1_information *table_info =
+ (struct phm_ppt_v1_information *)(hwmgr->pptable);
+ struct phm_ppt_v1_clock_voltage_dependency_table *vdd_dep_on_sclk =
+ table_info->vdd_dep_on_sclk;
+
+ for (count = vdd_dep_on_sclk->count - 1; count >= 0; count--) {
+ if (tmp_sclk >= vdd_dep_on_sclk->entries[count].clk) {
+ hwmgr->pstate_sclk = vdd_dep_on_sclk->entries[count].clk;
+ break;
+ }
+ }
+ if (count < 0)
+ hwmgr->pstate_sclk = vdd_dep_on_sclk->entries[0].clk;
+
+ hwmgr->pstate_sclk_peak =
+ vdd_dep_on_sclk->entries[vdd_dep_on_sclk->count - 1].clk;
+ }
+
+ hwmgr->pstate_mclk_peak =
+ golden_dpm_table->mclk_table.dpm_levels[golden_dpm_table->mclk_table.count - 1].value;
+
+ /* make sure the output is in Mhz */
+ hwmgr->pstate_sclk /= 100;
+ hwmgr->pstate_mclk /= 100;
+ hwmgr->pstate_sclk_peak /= 100;
+ hwmgr->pstate_mclk_peak /= 100;
+}
+
static int smu7_enable_dpm_tasks(struct pp_hwmgr *hwmgr)
{
int tmp_result = 0;
@@ -1625,6 +1685,8 @@ static int smu7_enable_dpm_tasks(struct pp_hwmgr *hwmgr)
PP_ASSERT_WITH_CODE((0 == tmp_result),
"pcie performance request failed!", result = tmp_result);
+ smu7_populate_umdpstate_clocks(hwmgr);
+
return 0;
}
@@ -3143,15 +3205,12 @@ static int smu7_get_profiling_clk(struct pp_hwmgr *hwmgr, enum amd_dpm_forced_le
for (count = hwmgr->dyn_state.vddc_dependency_on_sclk->count-1;
count >= 0; count--) {
if (tmp_sclk >= hwmgr->dyn_state.vddc_dependency_on_sclk->entries[count].clk) {
- tmp_sclk = hwmgr->dyn_state.vddc_dependency_on_sclk->entries[count].clk;
*sclk_mask = count;
break;
}
}
- if (count < 0 || level == AMD_DPM_FORCED_LEVEL_PROFILE_MIN_SCLK) {
+ if (count < 0 || level == AMD_DPM_FORCED_LEVEL_PROFILE_MIN_SCLK)
*sclk_mask = 0;
- tmp_sclk = hwmgr->dyn_state.vddc_dependency_on_sclk->entries[0].clk;
- }
if (level == AMD_DPM_FORCED_LEVEL_PROFILE_PEAK)
*sclk_mask = hwmgr->dyn_state.vddc_dependency_on_sclk->count-1;
@@ -3161,15 +3220,12 @@ static int smu7_get_profiling_clk(struct pp_hwmgr *hwmgr, enum amd_dpm_forced_le
for (count = table_info->vdd_dep_on_sclk->count-1; count >= 0; count--) {
if (tmp_sclk >= table_info->vdd_dep_on_sclk->entries[count].clk) {
- tmp_sclk = table_info->vdd_dep_on_sclk->entries[count].clk;
*sclk_mask = count;
break;
}
}
- if (count < 0 || level == AMD_DPM_FORCED_LEVEL_PROFILE_MIN_SCLK) {
+ if (count < 0 || level == AMD_DPM_FORCED_LEVEL_PROFILE_MIN_SCLK)
*sclk_mask = 0;
- tmp_sclk = table_info->vdd_dep_on_sclk->entries[0].clk;
- }
if (level == AMD_DPM_FORCED_LEVEL_PROFILE_PEAK)
*sclk_mask = table_info->vdd_dep_on_sclk->count - 1;
@@ -3181,8 +3237,6 @@ static int smu7_get_profiling_clk(struct pp_hwmgr *hwmgr, enum amd_dpm_forced_le
*mclk_mask = golden_dpm_table->mclk_table.count - 1;
*pcie_mask = data->dpm_table.pcie_speed_table.count - 1;
- hwmgr->pstate_sclk = tmp_sclk;
- hwmgr->pstate_mclk = tmp_mclk;
return 0;
}
@@ -3195,9 +3249,6 @@ static int smu7_force_dpm_level(struct pp_hwmgr *hwmgr,
uint32_t mclk_mask = 0;
uint32_t pcie_mask = 0;
- if (hwmgr->pstate_sclk == 0)
- smu7_get_profiling_clk(hwmgr, level, &sclk_mask, &mclk_mask, &pcie_mask);
-
switch (level) {
case AMD_DPM_FORCED_LEVEL_HIGH:
ret = smu7_force_dpm_highest(hwmgr);
@@ -4153,7 +4204,7 @@ static int smu7_freeze_sclk_mclk_dpm(struct pp_hwmgr *hwmgr)
if ((0 == data->sclk_dpm_key_disabled) &&
(data->need_update_smu7_dpm_table &
- (DPMTABLE_OD_UPDATE_SCLK + DPMTABLE_UPDATE_SCLK))) {
+ (DPMTABLE_OD_UPDATE_SCLK | DPMTABLE_UPDATE_SCLK))) {
PP_ASSERT_WITH_CODE(true == smum_is_dpm_running(hwmgr),
"Trying to freeze SCLK DPM when DPM is disabled",
);
@@ -4210,7 +4261,7 @@ static int smu7_populate_and_upload_sclk_mclk_dpm_levels(
}
if (data->need_update_smu7_dpm_table &
- (DPMTABLE_OD_UPDATE_SCLK + DPMTABLE_UPDATE_SCLK)) {
+ (DPMTABLE_OD_UPDATE_SCLK | DPMTABLE_UPDATE_SCLK)) {
result = smum_populate_all_graphic_levels(hwmgr);
PP_ASSERT_WITH_CODE((0 == result),
"Failed to populate SCLK during PopulateNewDPMClocksStates Function!",
@@ -4218,7 +4269,7 @@ static int smu7_populate_and_upload_sclk_mclk_dpm_levels(
}
if (data->need_update_smu7_dpm_table &
- (DPMTABLE_OD_UPDATE_MCLK + DPMTABLE_UPDATE_MCLK)) {
+ (DPMTABLE_OD_UPDATE_MCLK | DPMTABLE_UPDATE_MCLK)) {
/*populate MCLK dpm table to SMU7 */
result = smum_populate_all_memory_levels(hwmgr);
PP_ASSERT_WITH_CODE((0 == result),
@@ -4309,7 +4360,7 @@ static int smu7_unfreeze_sclk_mclk_dpm(struct pp_hwmgr *hwmgr)
if ((0 == data->sclk_dpm_key_disabled) &&
(data->need_update_smu7_dpm_table &
- (DPMTABLE_OD_UPDATE_SCLK + DPMTABLE_UPDATE_SCLK))) {
+ (DPMTABLE_OD_UPDATE_SCLK | DPMTABLE_UPDATE_SCLK))) {
PP_ASSERT_WITH_CODE(true == smum_is_dpm_running(hwmgr),
"Trying to Unfreeze SCLK DPM when DPM is disabled",
diff --git a/drivers/gpu/drm/amd/pm/powerplay/hwmgr/smu8_hwmgr.c b/drivers/gpu/drm/amd/pm/powerplay/hwmgr/smu8_hwmgr.c
index b50fd4a4a3d1..b015a601b385 100644
--- a/drivers/gpu/drm/amd/pm/powerplay/hwmgr/smu8_hwmgr.c
+++ b/drivers/gpu/drm/amd/pm/powerplay/hwmgr/smu8_hwmgr.c
@@ -1016,6 +1016,18 @@ static void smu8_reset_acp_boot_level(struct pp_hwmgr *hwmgr)
data->acp_boot_level = 0xff;
}
+static void smu8_populate_umdpstate_clocks(struct pp_hwmgr *hwmgr)
+{
+ struct phm_clock_voltage_dependency_table *table =
+ hwmgr->dyn_state.vddc_dependency_on_sclk;
+
+ hwmgr->pstate_sclk = table->entries[0].clk / 100;
+ hwmgr->pstate_mclk = 0;
+
+ hwmgr->pstate_sclk_peak = table->entries[table->count - 1].clk / 100;
+ hwmgr->pstate_mclk_peak = 0;
+}
+
static int smu8_enable_dpm_tasks(struct pp_hwmgr *hwmgr)
{
smu8_program_voting_clients(hwmgr);
@@ -1024,6 +1036,8 @@ static int smu8_enable_dpm_tasks(struct pp_hwmgr *hwmgr)
smu8_program_bootup_state(hwmgr);
smu8_reset_acp_boot_level(hwmgr);
+ smu8_populate_umdpstate_clocks(hwmgr);
+
return 0;
}
@@ -1167,8 +1181,6 @@ static int smu8_phm_unforce_dpm_levels(struct pp_hwmgr *hwmgr)
data->sclk_dpm.soft_min_clk = table->entries[0].clk;
data->sclk_dpm.hard_min_clk = table->entries[0].clk;
- hwmgr->pstate_sclk = table->entries[0].clk;
- hwmgr->pstate_mclk = 0;
level = smu8_get_max_sclk_level(hwmgr) - 1;
diff --git a/drivers/gpu/drm/amd/pm/powerplay/hwmgr/vega10_hwmgr.c b/drivers/gpu/drm/amd/pm/powerplay/hwmgr/vega10_hwmgr.c
index c8c9fb827bda..99cd2e63afdd 100644
--- a/drivers/gpu/drm/amd/pm/powerplay/hwmgr/vega10_hwmgr.c
+++ b/drivers/gpu/drm/amd/pm/powerplay/hwmgr/vega10_hwmgr.c
@@ -22,7 +22,6 @@
*/
#include <linux/delay.h>
-#include <linux/fb.h>
#include <linux/module.h>
#include <linux/pci.h>
#include <linux/slab.h>
@@ -3008,6 +3007,30 @@ static int vega10_enable_disable_PCC_limit_feature(struct pp_hwmgr *hwmgr, bool
return 0;
}
+static void vega10_populate_umdpstate_clocks(struct pp_hwmgr *hwmgr)
+{
+ struct phm_ppt_v2_information *table_info =
+ (struct phm_ppt_v2_information *)(hwmgr->pptable);
+
+ if (table_info->vdd_dep_on_sclk->count > VEGA10_UMD_PSTATE_GFXCLK_LEVEL &&
+ table_info->vdd_dep_on_mclk->count > VEGA10_UMD_PSTATE_MCLK_LEVEL) {
+ hwmgr->pstate_sclk = table_info->vdd_dep_on_sclk->entries[VEGA10_UMD_PSTATE_GFXCLK_LEVEL].clk;
+ hwmgr->pstate_mclk = table_info->vdd_dep_on_mclk->entries[VEGA10_UMD_PSTATE_MCLK_LEVEL].clk;
+ } else {
+ hwmgr->pstate_sclk = table_info->vdd_dep_on_sclk->entries[0].clk;
+ hwmgr->pstate_mclk = table_info->vdd_dep_on_mclk->entries[0].clk;
+ }
+
+ hwmgr->pstate_sclk_peak = table_info->vdd_dep_on_sclk->entries[table_info->vdd_dep_on_sclk->count - 1].clk;
+ hwmgr->pstate_mclk_peak = table_info->vdd_dep_on_mclk->entries[table_info->vdd_dep_on_mclk->count - 1].clk;
+
+ /* make sure the output is in Mhz */
+ hwmgr->pstate_sclk /= 100;
+ hwmgr->pstate_mclk /= 100;
+ hwmgr->pstate_sclk_peak /= 100;
+ hwmgr->pstate_mclk_peak /= 100;
+}
+
static int vega10_enable_dpm_tasks(struct pp_hwmgr *hwmgr)
{
struct vega10_hwmgr *data = hwmgr->backend;
@@ -3082,6 +3105,8 @@ static int vega10_enable_dpm_tasks(struct pp_hwmgr *hwmgr)
result = tmp_result);
}
+ vega10_populate_umdpstate_clocks(hwmgr);
+
return result;
}
@@ -4169,8 +4194,6 @@ static int vega10_get_profiling_clk_mask(struct pp_hwmgr *hwmgr, enum amd_dpm_fo
*sclk_mask = VEGA10_UMD_PSTATE_GFXCLK_LEVEL;
*soc_mask = VEGA10_UMD_PSTATE_SOCCLK_LEVEL;
*mclk_mask = VEGA10_UMD_PSTATE_MCLK_LEVEL;
- hwmgr->pstate_sclk = table_info->vdd_dep_on_sclk->entries[VEGA10_UMD_PSTATE_GFXCLK_LEVEL].clk;
- hwmgr->pstate_mclk = table_info->vdd_dep_on_mclk->entries[VEGA10_UMD_PSTATE_MCLK_LEVEL].clk;
}
if (level == AMD_DPM_FORCED_LEVEL_PROFILE_MIN_SCLK) {
@@ -4281,9 +4304,6 @@ static int vega10_dpm_force_dpm_level(struct pp_hwmgr *hwmgr,
uint32_t mclk_mask = 0;
uint32_t soc_mask = 0;
- if (hwmgr->pstate_sclk == 0)
- vega10_get_profiling_clk_mask(hwmgr, level, &sclk_mask, &mclk_mask, &soc_mask);
-
switch (level) {
case AMD_DPM_FORCED_LEVEL_HIGH:
ret = vega10_force_dpm_highest(hwmgr);
diff --git a/drivers/gpu/drm/amd/pm/powerplay/hwmgr/vega10_processpptables.c b/drivers/gpu/drm/amd/pm/powerplay/hwmgr/vega10_processpptables.c
index 95b988823f50..bb90d8abf79b 100644
--- a/drivers/gpu/drm/amd/pm/powerplay/hwmgr/vega10_processpptables.c
+++ b/drivers/gpu/drm/amd/pm/powerplay/hwmgr/vega10_processpptables.c
@@ -23,7 +23,6 @@
#include <linux/module.h>
#include <linux/pci.h>
#include <linux/slab.h>
-#include <linux/fb.h>
#include "vega10_processpptables.h"
#include "ppatomfwctrl.h"
diff --git a/drivers/gpu/drm/amd/pm/powerplay/hwmgr/vega12_hwmgr.c b/drivers/gpu/drm/amd/pm/powerplay/hwmgr/vega12_hwmgr.c
index a2f4d6773d45..e9db137cd1c6 100644
--- a/drivers/gpu/drm/amd/pm/powerplay/hwmgr/vega12_hwmgr.c
+++ b/drivers/gpu/drm/amd/pm/powerplay/hwmgr/vega12_hwmgr.c
@@ -22,7 +22,6 @@
*/
#include <linux/delay.h>
-#include <linux/fb.h>
#include <linux/module.h>
#include <linux/slab.h>
@@ -1026,6 +1025,25 @@ static int vega12_get_all_clock_ranges(struct pp_hwmgr *hwmgr)
return 0;
}
+static void vega12_populate_umdpstate_clocks(struct pp_hwmgr *hwmgr)
+{
+ struct vega12_hwmgr *data = (struct vega12_hwmgr *)(hwmgr->backend);
+ struct vega12_single_dpm_table *gfx_dpm_table = &(data->dpm_table.gfx_table);
+ struct vega12_single_dpm_table *mem_dpm_table = &(data->dpm_table.mem_table);
+
+ if (gfx_dpm_table->count > VEGA12_UMD_PSTATE_GFXCLK_LEVEL &&
+ mem_dpm_table->count > VEGA12_UMD_PSTATE_MCLK_LEVEL) {
+ hwmgr->pstate_sclk = gfx_dpm_table->dpm_levels[VEGA12_UMD_PSTATE_GFXCLK_LEVEL].value;
+ hwmgr->pstate_mclk = mem_dpm_table->dpm_levels[VEGA12_UMD_PSTATE_MCLK_LEVEL].value;
+ } else {
+ hwmgr->pstate_sclk = gfx_dpm_table->dpm_levels[0].value;
+ hwmgr->pstate_mclk = mem_dpm_table->dpm_levels[0].value;
+ }
+
+ hwmgr->pstate_sclk_peak = gfx_dpm_table->dpm_levels[gfx_dpm_table->count].value;
+ hwmgr->pstate_mclk_peak = mem_dpm_table->dpm_levels[mem_dpm_table->count].value;
+}
+
static int vega12_enable_dpm_tasks(struct pp_hwmgr *hwmgr)
{
int tmp_result, result = 0;
@@ -1077,6 +1095,9 @@ static int vega12_enable_dpm_tasks(struct pp_hwmgr *hwmgr)
PP_ASSERT_WITH_CODE(!result,
"Failed to setup default DPM tables!",
return result);
+
+ vega12_populate_umdpstate_clocks(hwmgr);
+
return result;
}
diff --git a/drivers/gpu/drm/amd/pm/powerplay/hwmgr/vega12_processpptables.c b/drivers/gpu/drm/amd/pm/powerplay/hwmgr/vega12_processpptables.c
index bd54fbd393b9..89148f73b514 100644
--- a/drivers/gpu/drm/amd/pm/powerplay/hwmgr/vega12_processpptables.c
+++ b/drivers/gpu/drm/amd/pm/powerplay/hwmgr/vega12_processpptables.c
@@ -22,7 +22,6 @@
*/
#include <linux/module.h>
#include <linux/slab.h>
-#include <linux/fb.h>
#include "vega12/smu9_driver_if.h"
#include "vega12_processpptables.h"
diff --git a/drivers/gpu/drm/amd/pm/powerplay/hwmgr/vega20_hwmgr.c b/drivers/gpu/drm/amd/pm/powerplay/hwmgr/vega20_hwmgr.c
index 97b3ad369046..0d4d4811527c 100644
--- a/drivers/gpu/drm/amd/pm/powerplay/hwmgr/vega20_hwmgr.c
+++ b/drivers/gpu/drm/amd/pm/powerplay/hwmgr/vega20_hwmgr.c
@@ -22,7 +22,6 @@
*/
#include <linux/delay.h>
-#include <linux/fb.h>
#include <linux/module.h>
#include <linux/slab.h>
@@ -1555,26 +1554,23 @@ static int vega20_set_mclk_od(
return 0;
}
-static int vega20_populate_umdpstate_clocks(
- struct pp_hwmgr *hwmgr)
+static void vega20_populate_umdpstate_clocks(struct pp_hwmgr *hwmgr)
{
struct vega20_hwmgr *data = (struct vega20_hwmgr *)(hwmgr->backend);
struct vega20_single_dpm_table *gfx_table = &(data->dpm_table.gfx_table);
struct vega20_single_dpm_table *mem_table = &(data->dpm_table.mem_table);
- hwmgr->pstate_sclk = gfx_table->dpm_levels[0].value;
- hwmgr->pstate_mclk = mem_table->dpm_levels[0].value;
-
if (gfx_table->count > VEGA20_UMD_PSTATE_GFXCLK_LEVEL &&
mem_table->count > VEGA20_UMD_PSTATE_MCLK_LEVEL) {
hwmgr->pstate_sclk = gfx_table->dpm_levels[VEGA20_UMD_PSTATE_GFXCLK_LEVEL].value;
hwmgr->pstate_mclk = mem_table->dpm_levels[VEGA20_UMD_PSTATE_MCLK_LEVEL].value;
+ } else {
+ hwmgr->pstate_sclk = gfx_table->dpm_levels[0].value;
+ hwmgr->pstate_mclk = mem_table->dpm_levels[0].value;
}
- hwmgr->pstate_sclk = hwmgr->pstate_sclk * 100;
- hwmgr->pstate_mclk = hwmgr->pstate_mclk * 100;
-
- return 0;
+ hwmgr->pstate_sclk_peak = gfx_table->dpm_levels[gfx_table->count - 1].value;
+ hwmgr->pstate_mclk_peak = mem_table->dpm_levels[mem_table->count - 1].value;
}
static int vega20_get_max_sustainable_clock(struct pp_hwmgr *hwmgr,
@@ -1753,10 +1749,7 @@ static int vega20_enable_dpm_tasks(struct pp_hwmgr *hwmgr)
"[EnableDPMTasks] Failed to initialize odn settings!",
return result);
- result = vega20_populate_umdpstate_clocks(hwmgr);
- PP_ASSERT_WITH_CODE(!result,
- "[EnableDPMTasks] Failed to populate umdpstate clocks!",
- return result);
+ vega20_populate_umdpstate_clocks(hwmgr);
result = smum_send_msg_to_smc_with_parameter(hwmgr, PPSMC_MSG_GetPptLimit,
POWER_SOURCE_AC << 16, &hwmgr->default_power_limit);
@@ -2961,7 +2954,8 @@ static int vega20_odn_edit_dpm_table(struct pp_hwmgr *hwmgr,
data->od8_settings.od8_settings_array;
OverDriveTable_t *od_table =
&(data->smc_state_table.overdrive_table);
- int32_t input_index, input_clk, input_vol, i;
+ int32_t input_clk, input_vol, i;
+ uint32_t input_index;
int od8_id;
int ret;
diff --git a/drivers/gpu/drm/amd/pm/powerplay/hwmgr/vega20_processpptables.c b/drivers/gpu/drm/amd/pm/powerplay/hwmgr/vega20_processpptables.c
index 1f9082539457..79c817752a33 100644
--- a/drivers/gpu/drm/amd/pm/powerplay/hwmgr/vega20_processpptables.c
+++ b/drivers/gpu/drm/amd/pm/powerplay/hwmgr/vega20_processpptables.c
@@ -22,7 +22,6 @@
*/
#include <linux/module.h>
#include <linux/slab.h>
-#include <linux/fb.h>
#include "smu11_driver_if.h"
#include "vega20_processpptables.h"
diff --git a/drivers/gpu/drm/amd/pm/powerplay/inc/hwmgr.h b/drivers/gpu/drm/amd/pm/powerplay/inc/hwmgr.h
index 27f8d0e0e6a8..5ce433e2c16a 100644
--- a/drivers/gpu/drm/amd/pm/powerplay/inc/hwmgr.h
+++ b/drivers/gpu/drm/amd/pm/powerplay/inc/hwmgr.h
@@ -809,6 +809,8 @@ struct pp_hwmgr {
uint32_t workload_prority[Workload_Policy_Max];
uint32_t workload_setting[Workload_Policy_Max];
bool gfxoff_state_changed_by_workload;
+ uint32_t pstate_sclk_peak;
+ uint32_t pstate_mclk_peak;
};
int hwmgr_early_init(struct pp_hwmgr *hwmgr);
diff --git a/drivers/gpu/drm/amd/pm/powerplay/inc/smu11_driver_if.h b/drivers/gpu/drm/amd/pm/powerplay/inc/smu11_driver_if.h
index fdc6b7a57bc9..c2efc70ef288 100644
--- a/drivers/gpu/drm/amd/pm/powerplay/inc/smu11_driver_if.h
+++ b/drivers/gpu/drm/amd/pm/powerplay/inc/smu11_driver_if.h
@@ -358,6 +358,7 @@ typedef struct {
QuadraticInt_t SsCurve;
} DpmDescriptor_t;
+#pragma pack(push, 1)
typedef struct {
uint32_t Version;
@@ -609,6 +610,7 @@ typedef struct {
uint32_t MmHubPadding[8];
} PPTable_t;
+#pragma pack(pop)
typedef struct {
diff --git a/drivers/gpu/drm/amd/pm/powerplay/inc/smu9_driver_if.h b/drivers/gpu/drm/amd/pm/powerplay/inc/smu9_driver_if.h
index 2818c98ff5ca..faae4b918d90 100644
--- a/drivers/gpu/drm/amd/pm/powerplay/inc/smu9_driver_if.h
+++ b/drivers/gpu/drm/amd/pm/powerplay/inc/smu9_driver_if.h
@@ -122,6 +122,7 @@ typedef struct {
uint16_t Vid; /* min voltage in SVI2 VID */
} DisplayClockTable_t;
+#pragma pack(push, 1)
typedef struct {
/* PowerTune */
uint16_t SocketPowerLimit; /* Watts */
@@ -323,6 +324,7 @@ typedef struct {
uint32_t MmHubPadding[3]; /* SMU internal use */
} PPTable_t;
+#pragma pack(pop)
typedef struct {
uint16_t MinClock; // This is either DCEFCLK or SOCCLK (in MHz)
diff --git a/drivers/gpu/drm/amd/pm/powerplay/inc/vega12/smu9_driver_if.h b/drivers/gpu/drm/amd/pm/powerplay/inc/vega12/smu9_driver_if.h
index b6ffd08784e7..6456bea5d2d5 100644
--- a/drivers/gpu/drm/amd/pm/powerplay/inc/vega12/smu9_driver_if.h
+++ b/drivers/gpu/drm/amd/pm/powerplay/inc/vega12/smu9_driver_if.h
@@ -245,6 +245,7 @@ typedef struct {
QuadraticInt_t SsCurve;
} DpmDescriptor_t;
+#pragma pack(push, 1)
typedef struct {
uint32_t Version;
@@ -508,6 +509,7 @@ typedef struct {
uint32_t MmHubPadding[7];
} PPTable_t;
+#pragma pack(pop)
typedef struct {
diff --git a/drivers/gpu/drm/amd/pm/powerplay/smumgr/ci_smumgr.c b/drivers/gpu/drm/amd/pm/powerplay/smumgr/ci_smumgr.c
index 5ca3c422f7d4..4bc8db1be738 100644
--- a/drivers/gpu/drm/amd/pm/powerplay/smumgr/ci_smumgr.c
+++ b/drivers/gpu/drm/amd/pm/powerplay/smumgr/ci_smumgr.c
@@ -22,7 +22,6 @@
*/
#include <linux/module.h>
#include <linux/slab.h>
-#include <linux/fb.h>
#include "linux/delay.h"
#include <linux/types.h>
#include <linux/pci.h>
@@ -2203,7 +2202,7 @@ static int ci_program_mem_timing_parameters(struct pp_hwmgr *hwmgr)
struct smu7_hwmgr *data = (struct smu7_hwmgr *)(hwmgr->backend);
if (data->need_update_smu7_dpm_table &
- (DPMTABLE_OD_UPDATE_SCLK + DPMTABLE_OD_UPDATE_MCLK))
+ (DPMTABLE_OD_UPDATE_SCLK | DPMTABLE_OD_UPDATE_MCLK))
return ci_program_memory_timing_parameters(hwmgr);
return 0;
diff --git a/drivers/gpu/drm/amd/pm/powerplay/smumgr/iceland_smumgr.c b/drivers/gpu/drm/amd/pm/powerplay/smumgr/iceland_smumgr.c
index 03df35dee8ba..060fc140c574 100644
--- a/drivers/gpu/drm/amd/pm/powerplay/smumgr/iceland_smumgr.c
+++ b/drivers/gpu/drm/amd/pm/powerplay/smumgr/iceland_smumgr.c
@@ -2165,7 +2165,7 @@ static int iceland_program_mem_timing_parameters(struct pp_hwmgr *hwmgr)
struct smu7_hwmgr *data = (struct smu7_hwmgr *)(hwmgr->backend);
if (data->need_update_smu7_dpm_table &
- (DPMTABLE_OD_UPDATE_SCLK + DPMTABLE_OD_UPDATE_MCLK))
+ (DPMTABLE_OD_UPDATE_SCLK | DPMTABLE_OD_UPDATE_MCLK))
return iceland_program_memory_timing_parameters(hwmgr);
return 0;
diff --git a/drivers/gpu/drm/amd/pm/powerplay/smumgr/smu10_smumgr.c b/drivers/gpu/drm/amd/pm/powerplay/smumgr/smu10_smumgr.c
index 88a5641465dc..7eeab84d421a 100644
--- a/drivers/gpu/drm/amd/pm/powerplay/smumgr/smu10_smumgr.c
+++ b/drivers/gpu/drm/amd/pm/powerplay/smumgr/smu10_smumgr.c
@@ -250,9 +250,8 @@ static int smu10_smu_init(struct pp_hwmgr *hwmgr)
/* allocate space for watermarks table */
r = amdgpu_bo_create_kernel((struct amdgpu_device *)hwmgr->adev,
- sizeof(Watermarks_t),
- PAGE_SIZE,
- AMDGPU_GEM_DOMAIN_VRAM,
+ sizeof(Watermarks_t), PAGE_SIZE,
+ AMDGPU_GEM_DOMAIN_VRAM | AMDGPU_GEM_DOMAIN_GTT,
&priv->smu_tables.entry[SMU10_WMTABLE].handle,
&priv->smu_tables.entry[SMU10_WMTABLE].mc_addr,
&priv->smu_tables.entry[SMU10_WMTABLE].table);
@@ -266,9 +265,8 @@ static int smu10_smu_init(struct pp_hwmgr *hwmgr)
/* allocate space for watermarks table */
r = amdgpu_bo_create_kernel((struct amdgpu_device *)hwmgr->adev,
- sizeof(DpmClocks_t),
- PAGE_SIZE,
- AMDGPU_GEM_DOMAIN_VRAM,
+ sizeof(DpmClocks_t), PAGE_SIZE,
+ AMDGPU_GEM_DOMAIN_VRAM | AMDGPU_GEM_DOMAIN_GTT,
&priv->smu_tables.entry[SMU10_CLOCKTABLE].handle,
&priv->smu_tables.entry[SMU10_CLOCKTABLE].mc_addr,
&priv->smu_tables.entry[SMU10_CLOCKTABLE].table);
diff --git a/drivers/gpu/drm/amd/pm/powerplay/smumgr/tonga_smumgr.c b/drivers/gpu/drm/amd/pm/powerplay/smumgr/tonga_smumgr.c
index 04b561f5d932..acbe41174d7e 100644
--- a/drivers/gpu/drm/amd/pm/powerplay/smumgr/tonga_smumgr.c
+++ b/drivers/gpu/drm/amd/pm/powerplay/smumgr/tonga_smumgr.c
@@ -2554,7 +2554,7 @@ static int tonga_program_mem_timing_parameters(struct pp_hwmgr *hwmgr)
struct smu7_hwmgr *data = (struct smu7_hwmgr *)(hwmgr->backend);
if (data->need_update_smu7_dpm_table &
- (DPMTABLE_OD_UPDATE_SCLK + DPMTABLE_OD_UPDATE_MCLK))
+ (DPMTABLE_OD_UPDATE_SCLK | DPMTABLE_OD_UPDATE_MCLK))
return tonga_program_memory_timing_parameters(hwmgr);
return 0;
diff --git a/drivers/gpu/drm/amd/pm/swsmu/amdgpu_smu.c b/drivers/gpu/drm/amd/pm/swsmu/amdgpu_smu.c
index 4fe75dd2b329..5633c5797e85 100644
--- a/drivers/gpu/drm/amd/pm/swsmu/amdgpu_smu.c
+++ b/drivers/gpu/drm/amd/pm/swsmu/amdgpu_smu.c
@@ -40,6 +40,7 @@
#include "smu_v13_0_0_ppt.h"
#include "smu_v13_0_4_ppt.h"
#include "smu_v13_0_5_ppt.h"
+#include "smu_v13_0_6_ppt.h"
#include "smu_v13_0_7_ppt.h"
#include "amd_pcie.h"
@@ -161,10 +162,15 @@ int smu_get_dpm_freq_range(struct smu_context *smu,
int smu_set_gfx_power_up_by_imu(struct smu_context *smu)
{
- if (!smu->ppt_funcs && !smu->ppt_funcs->set_gfx_power_up_by_imu)
- return -EOPNOTSUPP;
+ int ret = 0;
+ struct amdgpu_device *adev = smu->adev;
- return smu->ppt_funcs->set_gfx_power_up_by_imu(smu);
+ if (smu->ppt_funcs->set_gfx_power_up_by_imu) {
+ ret = smu->ppt_funcs->set_gfx_power_up_by_imu(smu);
+ if (ret)
+ dev_err(adev->dev, "Failed to enable gfx imu!\n");
+ }
+ return ret;
}
static u32 smu_get_mclk(void *handle, bool low)
@@ -195,6 +201,19 @@ static u32 smu_get_sclk(void *handle, bool low)
return clk_freq * 100;
}
+static int smu_set_gfx_imu_enable(struct smu_context *smu)
+{
+ struct amdgpu_device *adev = smu->adev;
+
+ if (adev->firmware.load_type != AMDGPU_FW_LOAD_PSP)
+ return 0;
+
+ if (amdgpu_in_reset(smu->adev) || adev->in_s0ix)
+ return 0;
+
+ return smu_set_gfx_power_up_by_imu(smu);
+}
+
static int smu_dpm_set_vcn_enable(struct smu_context *smu,
bool enable)
{
@@ -585,6 +604,7 @@ static int smu_set_funcs(struct amdgpu_device *adev)
yellow_carp_set_ppt_funcs(smu);
break;
case IP_VERSION(13, 0, 4):
+ case IP_VERSION(13, 0, 11):
smu_v13_0_4_set_ppt_funcs(smu);
break;
case IP_VERSION(13, 0, 5):
@@ -608,6 +628,11 @@ static int smu_set_funcs(struct amdgpu_device *adev)
case IP_VERSION(13, 0, 10):
smu_v13_0_0_set_ppt_funcs(smu);
break;
+ case IP_VERSION(13, 0, 6):
+ smu_v13_0_6_set_ppt_funcs(smu);
+ /* Enable pp_od_clk_voltage node */
+ smu->od_enabled = true;
+ break;
case IP_VERSION(13, 0, 7):
smu_v13_0_7_set_ppt_funcs(smu);
break;
@@ -622,6 +647,7 @@ static int smu_early_init(void *handle)
{
struct amdgpu_device *adev = (struct amdgpu_device *)handle;
struct smu_context *smu;
+ int r;
smu = kzalloc(sizeof(struct smu_context), GFP_KERNEL);
if (!smu)
@@ -639,7 +665,10 @@ static int smu_early_init(void *handle)
adev->powerplay.pp_handle = smu;
adev->powerplay.pp_funcs = &swsmu_pm_funcs;
- return smu_set_funcs(adev);
+ r = smu_set_funcs(adev);
+ if (r)
+ return r;
+ return smu_init_microcode(smu);
}
static int smu_set_default_dpm_table(struct smu_context *smu)
@@ -899,9 +928,8 @@ static int smu_alloc_dummy_read_table(struct smu_context *smu)
struct amdgpu_device *adev = smu->adev;
int ret = 0;
- dummy_read_1_table->size = 0x40000;
- dummy_read_1_table->align = PAGE_SIZE;
- dummy_read_1_table->domain = AMDGPU_GEM_DOMAIN_VRAM;
+ if (!dummy_read_1_table->size)
+ return 0;
ret = amdgpu_bo_create_kernel(adev,
dummy_read_1_table->size,
@@ -1066,12 +1094,6 @@ static int smu_sw_init(void *handle)
smu->smu_dpm.dpm_level = AMD_DPM_FORCED_LEVEL_AUTO;
smu->smu_dpm.requested_dpm_level = AMD_DPM_FORCED_LEVEL_AUTO;
- ret = smu_init_microcode(smu);
- if (ret) {
- dev_err(adev->dev, "Failed to load smu firmware!\n");
- return ret;
- }
-
ret = smu_smc_table_sw_init(smu);
if (ret) {
dev_err(adev->dev, "Failed to sw init smc table!\n");
@@ -1156,22 +1178,21 @@ static int smu_smc_hw_setup(struct smu_context *smu)
uint64_t features_supported;
int ret = 0;
- if (adev->in_suspend && smu_is_dpm_running(smu)) {
- dev_info(adev->dev, "dpm has been enabled\n");
- /* this is needed specifically */
- switch (adev->ip_versions[MP1_HWIP][0]) {
- case IP_VERSION(11, 0, 7):
- case IP_VERSION(11, 0, 11):
- case IP_VERSION(11, 5, 0):
- case IP_VERSION(11, 0, 12):
+ switch (adev->ip_versions[MP1_HWIP][0]) {
+ case IP_VERSION(11, 0, 7):
+ case IP_VERSION(11, 0, 11):
+ case IP_VERSION(11, 5, 0):
+ case IP_VERSION(11, 0, 12):
+ if (adev->in_suspend && smu_is_dpm_running(smu)) {
+ dev_info(adev->dev, "dpm has been enabled\n");
ret = smu_system_features_control(smu, true);
if (ret)
dev_err(adev->dev, "Failed system features control!\n");
- break;
- default:
- break;
+ return ret;
}
- return ret;
+ break;
+ default:
+ break;
}
ret = smu_init_display_count(smu, 0);
@@ -1205,10 +1226,17 @@ static int smu_smc_hw_setup(struct smu_context *smu)
return ret;
}
- ret = smu_setup_pptable(smu);
- if (ret) {
- dev_err(adev->dev, "Failed to setup pptable!\n");
- return ret;
+ /*
+ * It is assumed the pptable used before runpm is same as
+ * the one used afterwards. Thus, we can reuse the stored
+ * copy and do not need to resetup the pptable again.
+ */
+ if (!adev->in_runpm) {
+ ret = smu_setup_pptable(smu);
+ if (ret) {
+ dev_err(adev->dev, "Failed to setup pptable!\n");
+ return ret;
+ }
}
/* smu_dump_pptable(smu); */
@@ -1386,15 +1414,9 @@ static int smu_hw_init(void *handle)
}
if (smu->is_apu) {
- if ((smu->ppt_funcs->set_gfx_power_up_by_imu) &&
- likely(adev->firmware.load_type == AMDGPU_FW_LOAD_PSP)) {
- ret = smu->ppt_funcs->set_gfx_power_up_by_imu(smu);
- if (ret) {
- dev_err(adev->dev, "Failed to Enable gfx imu!\n");
- return ret;
- }
- }
-
+ ret = smu_set_gfx_imu_enable(smu);
+ if (ret)
+ return ret;
smu_dpm_set_vcn_enable(smu, true);
smu_dpm_set_jpeg_enable(smu, true);
smu_set_gfx_cgpg(smu, true);
@@ -1449,6 +1471,7 @@ static int smu_disable_dpms(struct smu_context *smu)
switch (adev->ip_versions[MP1_HWIP][0]) {
case IP_VERSION(13, 0, 0):
case IP_VERSION(13, 0, 7):
+ case IP_VERSION(13, 0, 10):
return 0;
default:
break;
@@ -1499,6 +1522,20 @@ static int smu_disable_dpms(struct smu_context *smu)
}
/*
+ * For SMU 13.0.4/11, PMFW will handle the features disablement properly
+ * for gpu reset case. Driver involvement is unnecessary.
+ */
+ if (amdgpu_in_reset(adev)) {
+ switch (adev->ip_versions[MP1_HWIP][0]) {
+ case IP_VERSION(13, 0, 4):
+ case IP_VERSION(13, 0, 11):
+ return 0;
+ default:
+ break;
+ }
+ }
+
+ /*
* For gpu reset, runpm and hibernation through BACO,
* BACO feature has to be kept enabled.
*/
@@ -1517,7 +1554,7 @@ static int smu_disable_dpms(struct smu_context *smu)
}
if (adev->ip_versions[GC_HWIP][0] >= IP_VERSION(9, 4, 2) &&
- adev->gfx.rlc.funcs->stop)
+ !amdgpu_sriov_vf(adev) && adev->gfx.rlc.funcs->stop)
adev->gfx.rlc.funcs->stop(adev);
return ret;
@@ -1656,6 +1693,10 @@ static int smu_resume(void *handle)
return ret;
}
+ ret = smu_set_gfx_imu_enable(smu);
+ if (ret)
+ return ret;
+
smu_set_gfx_cgpg(smu, true);
smu->disable_uclk_switch = 0;
@@ -1671,8 +1712,6 @@ static int smu_display_configuration_change(void *handle,
const struct amd_pp_display_configuration *display_config)
{
struct smu_context *smu = handle;
- int index = 0;
- int num_of_active_display = 0;
if (!smu->pm_enabled || !smu->adev->pm.dpm_enabled)
return -EOPNOTSUPP;
@@ -1683,11 +1722,6 @@ static int smu_display_configuration_change(void *handle,
smu_set_min_dcef_deep_sleep(smu,
display_config->min_dcef_deep_sleep_set_clk / 100);
- for (index = 0; index < display_config->num_path_including_non_display; index++) {
- if (display_config->displays[index].controller_id != 0)
- num_of_active_display++;
- }
-
return 0;
}
@@ -1981,8 +2015,12 @@ static int smu_force_ppclk_levels(void *handle,
clk_type = SMU_DCEFCLK; break;
case PP_VCLK:
clk_type = SMU_VCLK; break;
+ case PP_VCLK1:
+ clk_type = SMU_VCLK1; break;
case PP_DCLK:
clk_type = SMU_DCLK; break;
+ case PP_DCLK1:
+ clk_type = SMU_DCLK1; break;
case OD_SCLK:
clk_type = SMU_OD_SCLK; break;
case OD_MCLK:
@@ -2368,8 +2406,12 @@ static enum smu_clk_type smu_convert_to_smuclk(enum pp_clock_type type)
clk_type = SMU_DCEFCLK; break;
case PP_VCLK:
clk_type = SMU_VCLK; break;
+ case PP_VCLK1:
+ clk_type = SMU_VCLK1; break;
case PP_DCLK:
clk_type = SMU_DCLK; break;
+ case PP_DCLK1:
+ clk_type = SMU_DCLK1; break;
case OD_SCLK:
clk_type = SMU_OD_SCLK; break;
case OD_MCLK:
@@ -2472,6 +2514,14 @@ static int smu_read_sensor(void *handle,
*((uint32_t *)data) = pstate_table->uclk_pstate.standard * 100;
*size = 4;
break;
+ case AMDGPU_PP_SENSOR_PEAK_PSTATE_SCLK:
+ *((uint32_t *)data) = pstate_table->gfxclk_pstate.peak * 100;
+ *size = 4;
+ break;
+ case AMDGPU_PP_SENSOR_PEAK_PSTATE_MCLK:
+ *((uint32_t *)data) = pstate_table->uclk_pstate.peak * 100;
+ *size = 4;
+ break;
case AMDGPU_PP_SENSOR_ENABLED_SMC_FEATURES_MASK:
ret = smu_feature_get_enabled_mask(smu, (uint64_t *)data);
*size = 8;
@@ -2505,6 +2555,28 @@ unlock:
return ret;
}
+static int smu_get_apu_thermal_limit(void *handle, uint32_t *limit)
+{
+ int ret = -EINVAL;
+ struct smu_context *smu = handle;
+
+ if (smu->ppt_funcs && smu->ppt_funcs->get_apu_thermal_limit)
+ ret = smu->ppt_funcs->get_apu_thermal_limit(smu, limit);
+
+ return ret;
+}
+
+static int smu_set_apu_thermal_limit(void *handle, uint32_t limit)
+{
+ int ret = -EINVAL;
+ struct smu_context *smu = handle;
+
+ if (smu->ppt_funcs && smu->ppt_funcs->set_apu_thermal_limit)
+ ret = smu->ppt_funcs->set_apu_thermal_limit(smu, limit);
+
+ return ret;
+}
+
static int smu_get_power_profile_mode(void *handle, char *buf)
{
struct smu_context *smu = handle;
@@ -2838,6 +2910,23 @@ static int smu_mode2_reset(void *handle)
return ret;
}
+static int smu_enable_gfx_features(void *handle)
+{
+ struct smu_context *smu = handle;
+ int ret = 0;
+
+ if (!smu->pm_enabled)
+ return -EOPNOTSUPP;
+
+ if (smu->ppt_funcs->enable_gfx_features)
+ ret = smu->ppt_funcs->enable_gfx_features(smu);
+
+ if (ret)
+ dev_err(smu->adev->dev, "enable gfx features failed!\n");
+
+ return ret;
+}
+
static int smu_get_max_sustainable_clocks_by_dc(void *handle,
struct pp_smu_nv_clock_table *max_clocks)
{
@@ -2989,6 +3078,8 @@ static const struct amd_pm_funcs swsmu_pm_funcs = {
.emit_clock_levels = smu_emit_ppclk_levels,
.force_performance_level = smu_force_performance_level,
.read_sensor = smu_read_sensor,
+ .get_apu_thermal_limit = smu_get_apu_thermal_limit,
+ .set_apu_thermal_limit = smu_set_apu_thermal_limit,
.get_performance_level = smu_get_performance_level,
.get_current_power_state = smu_get_current_power_state,
.get_fan_speed_rpm = smu_get_fan_speed_rpm,
@@ -3022,6 +3113,7 @@ static const struct amd_pm_funcs swsmu_pm_funcs = {
.get_ppfeature_status = smu_sys_get_pp_feature_mask,
.set_ppfeature_status = smu_sys_set_pp_feature_mask,
.asic_reset_mode_2 = smu_mode2_reset,
+ .asic_reset_enable_gfx_features = smu_enable_gfx_features,
.set_df_cstate = smu_set_df_cstate,
.set_xgmi_pstate = smu_set_xgmi_pstate,
.get_gpu_metrics = smu_sys_get_gpu_metrics,
diff --git a/drivers/gpu/drm/amd/pm/swsmu/inc/amdgpu_smu.h b/drivers/gpu/drm/amd/pm/swsmu/inc/amdgpu_smu.h
index e2fa3b066b96..09469c750a96 100644
--- a/drivers/gpu/drm/amd/pm/swsmu/inc/amdgpu_smu.h
+++ b/drivers/gpu/drm/amd/pm/swsmu/inc/amdgpu_smu.h
@@ -168,6 +168,7 @@ struct smu_temperature_range {
int mem_crit_max;
int mem_emergency_max;
int software_shutdown_temp;
+ int software_shutdown_temp_offset;
};
struct smu_state_validation_block {
@@ -568,6 +569,10 @@ struct smu_context
u32 param_reg;
u32 msg_reg;
u32 resp_reg;
+
+ u32 debug_param_reg;
+ u32 debug_msg_reg;
+ u32 debug_resp_reg;
};
struct i2c_adapter;
@@ -717,6 +722,18 @@ struct pptable_funcs {
void *data, uint32_t *size);
/**
+ * @get_apu_thermal_limit: get apu core limit from smu
+ * &limit: current limit temperature in millidegrees Celsius
+ */
+ int (*get_apu_thermal_limit)(struct smu_context *smu, uint32_t *limit);
+
+ /**
+ * @set_apu_thermal_limit: update all controllers with new limit
+ * &limit: limit temperature to be setted, in millidegrees Celsius
+ */
+ int (*set_apu_thermal_limit)(struct smu_context *smu, uint32_t limit);
+
+ /**
* @pre_display_config_changed: Prepare GPU for a display configuration
* change.
*
@@ -1196,6 +1213,8 @@ struct pptable_funcs {
* IPs reset varies by asic.
*/
int (*mode2_reset)(struct smu_context *smu);
+ /* for gfx feature enablement after mode2 reset */
+ int (*enable_gfx_features)(struct smu_context *smu);
/**
* @get_dpm_ultimate_freq: Get the hard frequency range of a clock
@@ -1388,6 +1407,14 @@ enum smu_cmn2asic_mapping_type {
CMN2ASIC_MAPPING_WORKLOAD,
};
+enum smu_baco_seq {
+ BACO_SEQ_BACO = 0,
+ BACO_SEQ_MSR,
+ BACO_SEQ_BAMACO,
+ BACO_SEQ_ULPS,
+ BACO_SEQ_COUNT,
+};
+
#define MSG_MAP(msg, index, valid_in_vf) \
[SMU_MSG_##msg] = {1, (index), (valid_in_vf)}
diff --git a/drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu11_driver_if_arcturus.h b/drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu11_driver_if_arcturus.h
index 43d43d6addc0..d518dee18e1b 100644
--- a/drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu11_driver_if_arcturus.h
+++ b/drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu11_driver_if_arcturus.h
@@ -464,6 +464,7 @@ typedef struct {
uint16_t Padding16;
} DpmDescriptor_t;
+#pragma pack(push, 1)
typedef struct {
uint32_t Version;
@@ -733,6 +734,7 @@ typedef struct {
uint32_t MmHubPadding[8]; // SMU internal use
} PPTable_t;
+#pragma pack(pop)
typedef struct {
// Time constant parameters for clock averages in ms
diff --git a/drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu11_driver_if_navi10.h b/drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu11_driver_if_navi10.h
index 04752ade1016..c5c1943fb6a1 100644
--- a/drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu11_driver_if_navi10.h
+++ b/drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu11_driver_if_navi10.h
@@ -515,6 +515,7 @@ typedef struct {
uint32_t BoardLevelEnergyAccumulator;
} OutOfBandMonitor_t;
+#pragma pack(push, 1)
typedef struct {
uint32_t Version;
@@ -814,6 +815,7 @@ typedef struct {
uint32_t MmHubPadding[8]; // SMU internal use
} PPTable_t;
+#pragma pack(pop)
typedef struct {
// Time constant parameters for clock averages in ms
diff --git a/drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu11_driver_if_sienna_cichlid.h b/drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu11_driver_if_sienna_cichlid.h
index 351a4af429b3..aa6d29de4002 100644
--- a/drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu11_driver_if_sienna_cichlid.h
+++ b/drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu11_driver_if_sienna_cichlid.h
@@ -599,6 +599,7 @@ typedef struct {
uint16_t Fmax;
} UclkDpmChangeRange_t;
+#pragma pack(push, 1)
typedef struct {
// MAJOR SECTION: SKU PARAMETERS
@@ -957,6 +958,7 @@ typedef struct {
uint32_t MmHubPadding[8]; // SMU internal use
} PPTable_t;
+#pragma pack(pop)
typedef struct {
// MAJOR SECTION: SKU PARAMETERS
diff --git a/drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu11_driver_if_vangogh.h b/drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu11_driver_if_vangogh.h
index 8361ebd8d876..21e6028a49e6 100644
--- a/drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu11_driver_if_vangogh.h
+++ b/drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu11_driver_if_vangogh.h
@@ -238,7 +238,9 @@ typedef struct {
#define WORKLOAD_PPLIB_VR_BIT 3
#define WORKLOAD_PPLIB_COMPUTE_BIT 4
#define WORKLOAD_PPLIB_CUSTOM_BIT 5
-#define WORKLOAD_PPLIB_COUNT 6
+#define WORKLOAD_PPLIB_CAPPED_BIT 6
+#define WORKLOAD_PPLIB_UNCAPPED_BIT 7
+#define WORKLOAD_PPLIB_COUNT 8
#define TABLE_BIOS_IF 0 // Called by BIOS
#define TABLE_WATERMARKS 1 // Called by DAL through VBIOS
diff --git a/drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu13_driver_if_aldebaran.h b/drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu13_driver_if_aldebaran.h
index 7a6075daa7b2..90200f31ff52 100644
--- a/drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu13_driver_if_aldebaran.h
+++ b/drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu13_driver_if_aldebaran.h
@@ -267,6 +267,7 @@ typedef struct {
QuadraticInt_t SsCurve; // Slow-slow curve (GHz->V)
} DpmDescriptor_t;
+#pragma pack(push, 1)
typedef struct {
uint32_t Version;
@@ -448,6 +449,7 @@ typedef struct {
uint32_t reserved[14];
} PPTable_t;
+#pragma pack(pop)
typedef struct {
// Time constant parameters for clock averages in ms
diff --git a/drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu13_driver_if_v13_0_0.h b/drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu13_driver_if_v13_0_0.h
index b76f0f7e4299..b686fb68a6e7 100644
--- a/drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu13_driver_if_v13_0_0.h
+++ b/drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu13_driver_if_v13_0_0.h
@@ -123,7 +123,8 @@
(1 << FEATURE_DS_FCLK_BIT) | \
(1 << FEATURE_DS_LCLK_BIT) | \
(1 << FEATURE_DS_DCFCLK_BIT) | \
- (1 << FEATURE_DS_UCLK_BIT))
+ (1 << FEATURE_DS_UCLK_BIT) | \
+ (1ULL << FEATURE_DS_VCN_BIT))
//For use with feature control messages
typedef enum {
@@ -1346,10 +1347,12 @@ typedef struct {
uint32_t MmHubPadding[8];
} BoardTable_t;
+#pragma pack(push, 1)
typedef struct {
SkuTable_t SkuTable;
BoardTable_t BoardTable;
} PPTable_t;
+#pragma pack(pop)
typedef struct {
// Time constant parameters for clock averages in ms
diff --git a/drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu13_driver_if_v13_0_4.h b/drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu13_driver_if_v13_0_4.h
index f77401709d83..2162ecd1057d 100644
--- a/drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu13_driver_if_v13_0_4.h
+++ b/drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu13_driver_if_v13_0_4.h
@@ -27,7 +27,7 @@
// *** IMPORTANT ***
// SMU TEAM: Always increment the interface version if
// any structure is changed in this file
-#define PMFW_DRIVER_IF_VERSION 7
+#define PMFW_DRIVER_IF_VERSION 8
typedef struct {
int32_t value;
@@ -198,7 +198,7 @@ typedef struct {
uint16_t SkinTemp;
uint16_t DeviceState;
uint16_t CurTemp; //[centi-Celsius]
- uint16_t spare2;
+ uint16_t FilterAlphaValue;
uint16_t AverageGfxclkFrequency;
uint16_t AverageFclkFrequency;
diff --git a/drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu13_driver_if_v13_0_6.h b/drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu13_driver_if_v13_0_6.h
new file mode 100644
index 000000000000..be596777cd2c
--- /dev/null
+++ b/drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu13_driver_if_v13_0_6.h
@@ -0,0 +1,141 @@
+/*
+ * Copyright 2021 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ */
+#ifndef SMU_13_0_6_DRIVER_IF_H
+#define SMU_13_0_6_DRIVER_IF_H
+
+// *** IMPORTANT ***
+// PMFW TEAM: Always increment the interface version if
+// anything is changed in this file
+#define SMU13_0_6_DRIVER_IF_VERSION 0x08042022
+
+//I2C Interface
+#define NUM_I2C_CONTROLLERS 8
+#define I2C_CONTROLLER_ENABLED 1
+#define I2C_CONTROLLER_DISABLED 0
+
+#define MAX_SW_I2C_COMMANDS 24
+
+typedef enum {
+ I2C_CONTROLLER_PORT_0, //CKSVII2C0
+ I2C_CONTROLLER_PORT_1, //CKSVII2C1
+ I2C_CONTROLLER_PORT_COUNT,
+} I2cControllerPort_e;
+
+typedef enum {
+ UNSUPPORTED_1, //50 Kbits/s not supported anymore!
+ I2C_SPEED_STANDARD_100K, //100 Kbits/s
+ I2C_SPEED_FAST_400K, //400 Kbits/s
+ I2C_SPEED_FAST_PLUS_1M, //1 Mbits/s (in fast mode)
+ UNSUPPORTED_2, //1 Mbits/s (in high speed mode) not supported anymore!
+ UNSUPPORTED_3, //2.3 Mbits/s not supported anymore!
+ I2C_SPEED_COUNT,
+} I2cSpeed_e;
+
+typedef enum {
+ I2C_CMD_READ,
+ I2C_CMD_WRITE,
+ I2C_CMD_COUNT,
+} I2cCmdType_e;
+
+#define CMDCONFIG_STOP_BIT 0
+#define CMDCONFIG_RESTART_BIT 1
+#define CMDCONFIG_READWRITE_BIT 2 //bit should be 0 for read, 1 for write
+
+#define CMDCONFIG_STOP_MASK (1 << CMDCONFIG_STOP_BIT)
+#define CMDCONFIG_RESTART_MASK (1 << CMDCONFIG_RESTART_BIT)
+#define CMDCONFIG_READWRITE_MASK (1 << CMDCONFIG_READWRITE_BIT)
+
+typedef struct {
+ uint8_t ReadWriteData; //Return data for read. Data to send for write
+ uint8_t CmdConfig; //Includes whether associated command should have a stop or restart command, and is a read or write
+} SwI2cCmd_t; //SW I2C Command Table
+
+typedef struct {
+ uint8_t I2CcontrollerPort; //CKSVII2C0(0) or //CKSVII2C1(1)
+ uint8_t I2CSpeed; //Use I2cSpeed_e to indicate speed to select
+ uint8_t SlaveAddress; //Slave address of device
+ uint8_t NumCmds; //Number of commands
+ SwI2cCmd_t SwI2cCmds[MAX_SW_I2C_COMMANDS];
+} SwI2cRequest_t; // SW I2C Request Table
+
+typedef struct {
+ SwI2cRequest_t SwI2cRequest;
+ uint32_t Spare[8];
+ uint32_t MmHubPadding[8]; // SMU internal use
+} SwI2cRequestExternal_t;
+
+typedef enum {
+ PPCLK_VCLK,
+ PPCLK_DCLK,
+ PPCLK_SOCCLK,
+ PPCLK_UCLK,
+ PPCLK_FCLK,
+ PPCLK_LCLK,
+ PPCLK_COUNT,
+} PPCLK_e;
+
+typedef enum {
+ GPIO_INT_POLARITY_ACTIVE_LOW,
+ GPIO_INT_POLARITY_ACTIVE_HIGH,
+} GpioIntPolarity_e;
+
+//TODO confirm if this is used in SMU_13_0_6 PPSMC_MSG_SetUclkDpmMode
+typedef enum {
+ UCLK_DPM_MODE_BANDWIDTH,
+ UCLK_DPM_MODE_LATENCY,
+} UCLK_DPM_MODE_e;
+
+typedef struct {
+ //0-26 SOC, 27-29 SOCIO
+ uint16_t avgPsmCount[30];
+ uint16_t minPsmCount[30];
+ float avgPsmVoltage[30];
+ float minPsmVoltage[30];
+} AvfsDebugTableAid_t;
+
+typedef struct {
+ //0-27 GFX, 28-29 SOC
+ uint16_t avgPsmCount[30];
+ uint16_t minPsmCount[30];
+ float avgPsmVoltage[30];
+ float minPsmVoltage[30];
+} AvfsDebugTableXcd_t;
+
+// These defines are used with the following messages:
+// SMC_MSG_TransferTableDram2Smu
+// SMC_MSG_TransferTableSmu2Dram
+// #define TABLE_PPTABLE 0
+// #define TABLE_AVFS_PSM_DEBUG 1
+// #define TABLE_AVFS_FUSE_OVERRIDE 2
+// #define TABLE_PMSTATUSLOG 3
+// #define TABLE_SMU_METRICS 4
+// #define TABLE_DRIVER_SMU_CONFIG 5
+// #define TABLE_I2C_COMMANDS 6
+// #define TABLE_COUNT 7
+
+// // Table transfer status
+// #define TABLE_TRANSFER_OK 0x0
+// #define TABLE_TRANSFER_FAILED 0xFF
+// #define TABLE_TRANSFER_PENDING 0xAB
+
+#endif
diff --git a/drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu13_driver_if_v13_0_7.h b/drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu13_driver_if_v13_0_7.h
index 25c08f963f49..4c46a0392451 100644
--- a/drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu13_driver_if_v13_0_7.h
+++ b/drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu13_driver_if_v13_0_7.h
@@ -25,10 +25,10 @@
// *** IMPORTANT ***
// PMFW TEAM: Always increment the interface version on any change to this file
-#define SMU13_DRIVER_IF_VERSION 0x2C
+#define SMU13_DRIVER_IF_VERSION 0x35
//Increment this version if SkuTable_t or BoardTable_t change
-#define PPTABLE_VERSION 0x20
+#define PPTABLE_VERSION 0x27
#define NUM_GFXCLK_DPM_LEVELS 16
#define NUM_SOCCLK_DPM_LEVELS 8
@@ -96,7 +96,7 @@
#define FEATURE_MEM_TEMP_READ_BIT 47
#define FEATURE_ATHUB_MMHUB_PG_BIT 48
#define FEATURE_SOC_PCC_BIT 49
-#define FEATURE_SPARE_50_BIT 50
+#define FEATURE_EDC_PWRBRK_BIT 50
#define FEATURE_SPARE_51_BIT 51
#define FEATURE_SPARE_52_BIT 52
#define FEATURE_SPARE_53_BIT 53
@@ -113,20 +113,21 @@
#define NUM_FEATURES 64
#define ALLOWED_FEATURE_CTRL_DEFAULT 0xFFFFFFFFFFFFFFFFULL
-#define ALLOWED_FEATURE_CTRL_SCPM (1 << FEATURE_DPM_GFXCLK_BIT) | \
- (1 << FEATURE_DPM_GFX_POWER_OPTIMIZER_BIT) | \
- (1 << FEATURE_DPM_UCLK_BIT) | \
- (1 << FEATURE_DPM_FCLK_BIT) | \
- (1 << FEATURE_DPM_SOCCLK_BIT) | \
- (1 << FEATURE_DPM_MP0CLK_BIT) | \
- (1 << FEATURE_DPM_LINK_BIT) | \
- (1 << FEATURE_DPM_DCN_BIT) | \
- (1 << FEATURE_DS_GFXCLK_BIT) | \
- (1 << FEATURE_DS_SOCCLK_BIT) | \
- (1 << FEATURE_DS_FCLK_BIT) | \
- (1 << FEATURE_DS_LCLK_BIT) | \
- (1 << FEATURE_DS_DCFCLK_BIT) | \
- (1 << FEATURE_DS_UCLK_BIT)
+#define ALLOWED_FEATURE_CTRL_SCPM ((1 << FEATURE_DPM_GFXCLK_BIT) | \
+ (1 << FEATURE_DPM_GFX_POWER_OPTIMIZER_BIT) | \
+ (1 << FEATURE_DPM_UCLK_BIT) | \
+ (1 << FEATURE_DPM_FCLK_BIT) | \
+ (1 << FEATURE_DPM_SOCCLK_BIT) | \
+ (1 << FEATURE_DPM_MP0CLK_BIT) | \
+ (1 << FEATURE_DPM_LINK_BIT) | \
+ (1 << FEATURE_DPM_DCN_BIT) | \
+ (1 << FEATURE_DS_GFXCLK_BIT) | \
+ (1 << FEATURE_DS_SOCCLK_BIT) | \
+ (1 << FEATURE_DS_FCLK_BIT) | \
+ (1 << FEATURE_DS_LCLK_BIT) | \
+ (1 << FEATURE_DS_DCFCLK_BIT) | \
+ (1 << FEATURE_DS_UCLK_BIT) | \
+ (1ULL << FEATURE_DS_VCN_BIT))
//For use with feature control messages
typedef enum {
@@ -282,15 +283,15 @@ typedef enum {
} I2cControllerPort_e;
typedef enum {
- I2C_CONTROLLER_NAME_VR_GFX = 0,
- I2C_CONTROLLER_NAME_VR_SOC,
- I2C_CONTROLLER_NAME_VR_VMEMP,
- I2C_CONTROLLER_NAME_VR_VDDIO,
- I2C_CONTROLLER_NAME_LIQUID0,
- I2C_CONTROLLER_NAME_LIQUID1,
- I2C_CONTROLLER_NAME_PLX,
- I2C_CONTROLLER_NAME_OTHER,
- I2C_CONTROLLER_NAME_COUNT,
+ I2C_CONTROLLER_NAME_VR_GFX = 0,
+ I2C_CONTROLLER_NAME_VR_SOC,
+ I2C_CONTROLLER_NAME_VR_VMEMP,
+ I2C_CONTROLLER_NAME_VR_VDDIO,
+ I2C_CONTROLLER_NAME_LIQUID0,
+ I2C_CONTROLLER_NAME_LIQUID1,
+ I2C_CONTROLLER_NAME_PLX,
+ I2C_CONTROLLER_NAME_FAN_INTAKE,
+ I2C_CONTROLLER_NAME_COUNT,
} I2cControllerName_e;
typedef enum {
@@ -302,6 +303,7 @@ typedef enum {
I2C_CONTROLLER_THROTTLER_LIQUID0,
I2C_CONTROLLER_THROTTLER_LIQUID1,
I2C_CONTROLLER_THROTTLER_PLX,
+ I2C_CONTROLLER_THROTTLER_FAN_INTAKE,
I2C_CONTROLLER_THROTTLER_INA3221,
I2C_CONTROLLER_THROTTLER_COUNT,
} I2cControllerThrottler_e;
@@ -309,8 +311,9 @@ typedef enum {
typedef enum {
I2C_CONTROLLER_PROTOCOL_VR_XPDE132G5,
I2C_CONTROLLER_PROTOCOL_VR_IR35217,
- I2C_CONTROLLER_PROTOCOL_TMP_TMP102A,
+ I2C_CONTROLLER_PROTOCOL_TMP_MAX31875,
I2C_CONTROLLER_PROTOCOL_INA3221,
+ I2C_CONTROLLER_PROTOCOL_TMP_MAX6604,
I2C_CONTROLLER_PROTOCOL_COUNT,
} I2cControllerProtocol_e;
@@ -690,6 +693,9 @@ typedef struct {
#define PP_OD_FEATURE_UCLK_BIT 8
#define PP_OD_FEATURE_ZERO_FAN_BIT 9
#define PP_OD_FEATURE_TEMPERATURE_BIT 10
+#define PP_OD_FEATURE_POWER_FEATURE_CTRL_BIT 11
+#define PP_OD_FEATURE_ASIC_TDC_BIT 12
+#define PP_OD_FEATURE_COUNT 13
typedef enum {
PP_OD_POWER_FEATURE_ALWAYS_ENABLED,
@@ -697,6 +703,11 @@ typedef enum {
PP_OD_POWER_FEATURE_ALWAYS_DISABLED,
} PP_OD_POWER_FEATURE_e;
+typedef enum {
+ FAN_MODE_AUTO = 0,
+ FAN_MODE_MANUAL_LINEAR,
+} FanMode_e;
+
typedef struct {
uint32_t FeatureCtrlMask;
@@ -708,8 +719,8 @@ typedef struct {
uint8_t RuntimePwrSavingFeaturesCtrl;
//Frequency changes
- int16_t GfxclkFmin; // MHz
- int16_t GfxclkFmax; // MHz
+ int16_t GfxclkFmin; // MHz
+ int16_t GfxclkFmax; // MHz
uint16_t UclkFmin; // MHz
uint16_t UclkFmax; // MHz
@@ -730,7 +741,12 @@ typedef struct {
uint8_t MaxOpTemp;
uint8_t Padding[4];
- uint32_t Spare[12];
+ uint16_t GfxVoltageFullCtrlMode;
+ uint16_t GfxclkFullCtrlMode;
+ uint16_t UclkFullCtrlMode;
+ int16_t AsicTdc;
+
+ uint32_t Spare[10];
uint32_t MmHubPadding[8]; // SMU internal use. Adding here instead of external as a workaround
} OverDriveTable_t;
@@ -748,8 +764,8 @@ typedef struct {
uint8_t IdlePwrSavingFeaturesCtrl;
uint8_t RuntimePwrSavingFeaturesCtrl;
- uint16_t GfxclkFmin; // MHz
- uint16_t GfxclkFmax; // MHz
+ int16_t GfxclkFmin; // MHz
+ int16_t GfxclkFmax; // MHz
uint16_t UclkFmin; // MHz
uint16_t UclkFmax; // MHz
@@ -769,7 +785,12 @@ typedef struct {
uint8_t MaxOpTemp;
uint8_t Padding[4];
- uint32_t Spare[12];
+ uint16_t GfxVoltageFullCtrlMode;
+ uint16_t GfxclkFullCtrlMode;
+ uint16_t UclkFullCtrlMode;
+ int16_t AsicTdc;
+
+ uint32_t Spare[10];
} OverDriveLimits_t;
@@ -903,7 +924,8 @@ typedef struct {
uint16_t FanStartTempMin;
uint16_t FanStartTempMax;
- uint32_t Spare[12];
+ uint16_t PowerMinPpt0[POWER_SOURCE_COUNT];
+ uint32_t Spare[11];
} MsgLimits_t;
@@ -1086,11 +1108,13 @@ typedef struct {
uint32_t GfxoffSpare[15];
// GFX GPO
- float DfllBtcMasterScalerM;
+ uint32_t DfllBtcMasterScalerM;
int32_t DfllBtcMasterScalerB;
- float DfllBtcSlaveScalerM;
+ uint32_t DfllBtcSlaveScalerM;
int32_t DfllBtcSlaveScalerB;
- uint32_t GfxGpoSpare[12];
+ uint32_t DfllPccAsWaitCtrl; //GDFLL_AS_WAIT_CTRL_PCC register value to be passed to RLC msg
+ uint32_t DfllPccAsStepCtrl; //GDFLL_AS_STEP_CTRL_PCC register value to be passed to RLC msg
+ uint32_t GfxGpoSpare[10];
// GFX DCS
@@ -1106,7 +1130,10 @@ typedef struct {
uint16_t DcsTimeout; //This is the amount of time SMU FW waits for RLC to put GFX into GFXOFF before reverting to the fallback mechanism of throttling GFXCLK to Fmin.
- uint32_t DcsSpare[16];
+ uint32_t DcsSpare[14];
+
+ // UCLK section
+ uint16_t ShadowFreqTableUclk[NUM_UCLK_DPM_LEVELS]; // In MHz
// UCLK section
uint8_t UseStrobeModeOptimizations; //Set to indicate that FW should use strobe mode optimizations
@@ -1163,13 +1190,14 @@ typedef struct {
uint16_t IntakeTempHighIntakeAcousticLimit;
uint16_t IntakeTempAcouticLimitReleaseRate;
- uint16_t FanStalledTempLimitOffset;
+ int16_t FanAbnormalTempLimitOffset;
uint16_t FanStalledTriggerRpm;
- uint16_t FanAbnormalTriggerRpm;
- uint16_t FanPadding;
-
- uint32_t FanSpare[14];
+ uint16_t FanAbnormalTriggerRpmCoeff;
+ uint16_t FanAbnormalDetectionEnable;
+ uint8_t FanIntakeSensorSupport;
+ uint8_t FanIntakePadding[3];
+ uint32_t FanSpare[13];
// SECTION: VDD_GFX AVFS
uint8_t OverrideGfxAvfsFuses;
@@ -1193,7 +1221,6 @@ typedef struct {
uint32_t dGbV_dT_vmin;
uint32_t dGbV_dT_vmax;
- //Unused: PMFW-9370
uint32_t V2F_vmin_range_low;
uint32_t V2F_vmin_range_high;
uint32_t V2F_vmax_range_low;
@@ -1238,8 +1265,21 @@ typedef struct {
// SECTION: Advanced Options
uint32_t DebugOverrides;
+ // Section: Total Board Power idle vs active coefficients
+ uint8_t TotalBoardPowerSupport;
+ uint8_t TotalBoardPowerPadding[3];
+
+ int16_t TotalIdleBoardPowerM;
+ int16_t TotalIdleBoardPowerB;
+ int16_t TotalBoardPowerM;
+ int16_t TotalBoardPowerB;
+
+ QuadraticInt_t qFeffCoeffGameClock[POWER_SOURCE_COUNT];
+ QuadraticInt_t qFeffCoeffBaseClock[POWER_SOURCE_COUNT];
+ QuadraticInt_t qFeffCoeffBoostClock[POWER_SOURCE_COUNT];
+
// SECTION: Sku Reserved
- uint32_t Spare[64];
+ uint32_t Spare[43];
// Padding for MMHUB - do not modify this
uint32_t MmHubPadding[8];
@@ -1304,7 +1344,8 @@ typedef struct {
// SECTION: Clock Spread Spectrum
// UCLK Spread Spectrum
- uint16_t UclkSpreadPadding;
+ uint8_t UclkTrainingModeSpreadPercent; // Q4.4
+ uint8_t UclkSpreadPadding;
uint16_t UclkSpreadFreq; // kHz
// UCLK Spread Spectrum
@@ -1317,11 +1358,7 @@ typedef struct {
// Section: Memory Config
uint8_t DramWidth; // Width of interface to the channel for each DRAM module. See DRAM_BIT_WIDTH_TYPE_e
- uint8_t PaddingMem1[3];
-
- // Section: Total Board Power
- uint16_t TotalBoardPower; //Only needed for TCP Estimated case, where TCP = TGP+Total Board Power
- uint16_t BoardPowerPadding;
+ uint8_t PaddingMem1[7];
// SECTION: UMC feature flags
uint8_t HsrEnabled;
@@ -1343,10 +1380,12 @@ typedef struct {
uint32_t MmHubPadding[8];
} BoardTable_t;
+#pragma pack(push, 1)
typedef struct {
SkuTable_t SkuTable;
BoardTable_t BoardTable;
} PPTable_t;
+#pragma pack(pop)
typedef struct {
// Time constant parameters for clock averages in ms
@@ -1423,8 +1462,11 @@ typedef struct {
uint16_t Vcn1ActivityPercentage ;
uint32_t EnergyAccumulator;
- uint16_t AverageSocketPower ;
+ uint16_t AverageSocketPower;
+ uint16_t AverageTotalBoardPower;
+
uint16_t AvgTemperature[TEMP_COUNT];
+ uint16_t AvgTemperatureFanIntake;
uint8_t PcieRate ;
uint8_t PcieWidth ;
@@ -1592,5 +1634,7 @@ typedef struct {
#define IH_INTERRUPT_CONTEXT_ID_AUDIO_D0 0x5
#define IH_INTERRUPT_CONTEXT_ID_AUDIO_D3 0x6
#define IH_INTERRUPT_CONTEXT_ID_THERMAL_THROTTLING 0x7
+#define IH_INTERRUPT_CONTEXT_ID_FAN_ABNORMAL 0x8
+#define IH_INTERRUPT_CONTEXT_ID_FAN_RECOVERY 0x9
#endif
diff --git a/drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu_v13_0_0_ppsmc.h b/drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu_v13_0_0_ppsmc.h
index 9ebb8f39732a..10cff75b44d5 100644
--- a/drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu_v13_0_0_ppsmc.h
+++ b/drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu_v13_0_0_ppsmc.h
@@ -94,6 +94,7 @@
//Resets
#define PPSMC_MSG_PrepareMp1ForUnload 0x2E
#define PPSMC_MSG_Mode1Reset 0x2F
+#define PPSMC_MSG_Mode2Reset 0x4F
//Set SystemVirtual DramAddrHigh
#define PPSMC_MSG_SetSystemVirtualDramAddrHigh 0x30
@@ -131,7 +132,13 @@
#define PPSMC_MSG_EnableAudioStutterWA 0x44
#define PPSMC_MSG_PowerUpUmsch 0x45
#define PPSMC_MSG_PowerDownUmsch 0x46
-#define PPSMC_Message_Count 0x47
+#define PPSMC_MSG_SetDcsArch 0x47
+#define PPSMC_MSG_TriggerVFFLR 0x48
+#define PPSMC_MSG_SetNumBadMemoryPagesRetired 0x49
+#define PPSMC_MSG_SetBadMemoryPagesRetiredFlagsPerChannel 0x4A
+#define PPSMC_MSG_SetPriorityDeltaGain 0x4B
+#define PPSMC_MSG_AllowIHHostInterrupt 0x4C
+#define PPSMC_Message_Count 0x4D
//Debug Dump Message
#define DEBUGSMC_MSG_TestMessage 0x1
diff --git a/drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu_v13_0_6_pmfw.h b/drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu_v13_0_6_pmfw.h
new file mode 100644
index 000000000000..bdccbb4a6276
--- /dev/null
+++ b/drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu_v13_0_6_pmfw.h
@@ -0,0 +1,212 @@
+/*
+ * Copyright 2021 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ */
+#ifndef SMU_13_0_6_PMFW_H
+#define SMU_13_0_6_PMFW_H
+
+#define NUM_VCLK_DPM_LEVELS 4
+#define NUM_DCLK_DPM_LEVELS 4
+#define NUM_SOCCLK_DPM_LEVELS 4
+#define NUM_LCLK_DPM_LEVELS 4
+#define NUM_UCLK_DPM_LEVELS 4
+#define NUM_FCLK_DPM_LEVELS 4
+#define NUM_XGMI_DPM_LEVELS 2
+#define NUM_CXL_BITRATES 4
+#define NUM_PCIE_BITRATES 4
+#define NUM_XGMI_BITRATES 4
+#define NUM_XGMI_WIDTHS 3
+
+typedef enum {
+/*0*/ FEATURE_DATA_CALCULATION = 0,
+/*1*/ FEATURE_DPM_CCLK = 1,
+/*2*/ FEATURE_DPM_FCLK = 2,
+/*3*/ FEATURE_DPM_GFXCLK = 3,
+/*4*/ FEATURE_DPM_LCLK = 4,
+/*5*/ FEATURE_DPM_SOCCLK = 5,
+/*6*/ FEATURE_DPM_UCLK = 6,
+/*7*/ FEATURE_DPM_VCN = 7,
+/*8*/ FEATURE_DPM_XGMI = 8,
+/*9*/ FEATURE_DS_FCLK = 9,
+/*10*/ FEATURE_DS_GFXCLK = 10,
+/*11*/ FEATURE_DS_LCLK = 11,
+/*12*/ FEATURE_DS_MP0CLK = 12,
+/*13*/ FEATURE_DS_MP1CLK = 13,
+/*14*/ FEATURE_DS_MPIOCLK = 14,
+/*15*/ FEATURE_DS_SOCCLK = 15,
+/*16*/ FEATURE_DS_VCN = 16,
+/*17*/ FEATURE_APCC_DFLL = 17,
+/*18*/ FEATURE_APCC_PLUS = 18,
+/*19*/ FEATURE_DF_CSTATE = 19,
+/*20*/ FEATURE_CC6 = 20,
+/*21*/ FEATURE_PC6 = 21,
+/*22*/ FEATURE_CPPC = 22,
+/*23*/ FEATURE_PPT = 23,
+/*24*/ FEATURE_TDC = 24,
+/*25*/ FEATURE_THERMAL = 25,
+/*26*/ FEATURE_SOC_PCC = 26,
+/*27*/ FEATURE_CCD_PCC = 27,
+/*28*/ FEATURE_CCD_EDC = 28,
+/*29*/ FEATURE_PROCHOT = 29,
+/*30*/ FEATURE_DVO_CCLK = 30,
+/*31*/ FEATURE_FDD_AID_HBM = 31,
+/*32*/ FEATURE_FDD_AID_SOC = 32,
+/*33*/ FEATURE_FDD_XCD_EDC = 33,
+/*34*/ FEATURE_FDD_XCD_XVMIN = 34,
+/*35*/ FEATURE_FW_CTF = 35,
+/*36*/ FEATURE_GFXOFF = 36,
+/*37*/ FEATURE_SMU_CG = 37,
+/*38*/ FEATURE_PSI7 = 38,
+/*39*/ FEATURE_CSTATE_BOOST = 39,
+/*40*/ FEATURE_XGMI_PER_LINK_PWR_DOWN = 40,
+/*41*/ FEATURE_CXL_QOS = 41,
+/*42*/ FEATURE_SOC_DC_RTC = 42,
+/*43*/ FEATURE_GFX_DC_RTC = 43,
+
+/*44*/ NUM_FEATURES = 44
+} FEATURE_LIST_e;
+
+//enum for MPIO PCIe gen speed msgs
+typedef enum {
+ PCIE_LINK_SPEED_INDEX_TABLE_GEN1,
+ PCIE_LINK_SPEED_INDEX_TABLE_GEN2,
+ PCIE_LINK_SPEED_INDEX_TABLE_GEN3,
+ PCIE_LINK_SPEED_INDEX_TABLE_GEN4,
+ PCIE_LINK_SPEED_INDEX_TABLE_GEN4_ESM,
+ PCIE_LINK_SPEED_INDEX_TABLE_GEN5,
+ PCIE_LINK_SPEED_INDEX_TABLE_COUNT
+} PCIE_LINK_SPEED_INDEX_TABLE_e;
+
+typedef enum {
+ VOLTAGE_COLD_0,
+ VOLTAGE_COLD_1,
+ VOLTAGE_COLD_2,
+ VOLTAGE_COLD_3,
+ VOLTAGE_COLD_4,
+ VOLTAGE_COLD_5,
+ VOLTAGE_COLD_6,
+ VOLTAGE_COLD_7,
+ VOLTAGE_MID_0,
+ VOLTAGE_MID_1,
+ VOLTAGE_MID_2,
+ VOLTAGE_MID_3,
+ VOLTAGE_MID_4,
+ VOLTAGE_MID_5,
+ VOLTAGE_MID_6,
+ VOLTAGE_MID_7,
+ VOLTAGE_HOT_0,
+ VOLTAGE_HOT_1,
+ VOLTAGE_HOT_2,
+ VOLTAGE_HOT_3,
+ VOLTAGE_HOT_4,
+ VOLTAGE_HOT_5,
+ VOLTAGE_HOT_6,
+ VOLTAGE_HOT_7,
+ VOLTAGE_GUARDBAND_COUNT
+} GFX_GUARDBAND_e;
+
+#define SMU_METRICS_TABLE_VERSION 0x1
+
+typedef struct {
+ uint32_t AccumulationCounter;
+
+ //TEMPERATURE
+ uint32_t MaxSocketTemperature;
+ uint32_t MaxVrTemperature;
+ uint32_t MaxHbmTemperature;
+ uint64_t MaxSocketTemperatureAcc;
+ uint64_t MaxVrTemperatureAcc;
+ uint64_t MaxHbmTemperatureAcc;
+
+ //POWER
+ uint32_t SocketPowerLimit;
+ uint32_t MaxSocketPowerLimit;
+ uint32_t SocketPower;
+
+ //ENERGY
+ uint64_t Timestamp;
+ uint64_t SocketEnergyAcc;
+ uint64_t CcdEnergyAcc;
+ uint64_t XcdEnergyAcc;
+ uint64_t AidEnergyAcc;
+ uint64_t HbmEnergyAcc;
+
+ //FREQUENCY
+ uint32_t CclkFrequencyLimit;
+ uint32_t GfxclkFrequencyLimit;
+ uint32_t FclkFrequency;
+ uint32_t UclkFrequency;
+ uint32_t SocclkFrequency[4];
+ uint32_t VclkFrequency[4];
+ uint32_t DclkFrequency[4];
+ uint32_t LclkFrequency[4];
+ uint64_t GfxclkFrequencyAcc[8];
+ uint64_t CclkFrequencyAcc[96];
+
+ //FREQUENCY RANGE
+ uint32_t MaxCclkFrequency;
+ uint32_t MinCclkFrequency;
+ uint32_t MaxGfxclkFrequency;
+ uint32_t MinGfxclkFrequency;
+ uint32_t FclkFrequencyTable[4];
+ uint32_t UclkFrequencyTable[4];
+ uint32_t SocclkFrequencyTable[4];
+ uint32_t VclkFrequencyTable[4];
+ uint32_t DclkFrequencyTable[4];
+ uint32_t LclkFrequencyTable[4];
+ uint32_t MaxLclkDpmRange;
+ uint32_t MinLclkDpmRange;
+
+ //XGMI
+ uint32_t XgmiWidth;
+ uint32_t XgmiBitrate;
+ uint64_t XgmiReadBandwidthAcc[8];
+ uint64_t XgmiWriteBandwidthAcc[8];
+
+ //ACTIVITY
+ uint32_t SocketC0Residency;
+ uint32_t SocketGfxBusy;
+ uint32_t DramBandwidthUtilization;
+ uint64_t SocketC0ResidencyAcc;
+ uint64_t SocketGfxBusyAcc;
+ uint64_t DramBandwidthAcc;
+ uint32_t MaxDramBandwidth;
+ uint64_t DramBandwidthUtilizationAcc;
+ uint64_t PcieBandwidthAcc[4];
+
+ //THROTTLERS
+ uint32_t ProchotResidencyAcc;
+ uint32_t PptResidencyAcc;
+ uint32_t SocketThmResidencyAcc;
+ uint32_t VrThmResidencyAcc;
+ uint32_t HbmThmResidencyAcc;
+} MetricsTable_t;
+
+#define SMU_VF_METRICS_TABLE_VERSION 0x1
+
+typedef struct {
+ uint32_t AccumulationCounter;
+ uint32_t InstGfxclk_TargFreq;
+ uint64_t AccGfxclk_TargFreq;
+ uint64_t AccGfxRsmuDpm_Busy;
+} VfMetricsTable_t;
+
+#endif
diff --git a/drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu_v13_0_6_ppsmc.h b/drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu_v13_0_6_ppsmc.h
new file mode 100644
index 000000000000..b838e8db395a
--- /dev/null
+++ b/drivers/gpu/drm/amd/pm/swsmu/inc/pmfw_if/smu_v13_0_6_ppsmc.h
@@ -0,0 +1,95 @@
+/*
+ * Copyright 2021 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ */
+#ifndef SMU_13_0_6_PPSMC_H
+#define SMU_13_0_6_PPSMC_H
+
+// SMU Response Codes:
+#define PPSMC_Result_OK 0x1
+#define PPSMC_Result_Failed 0xFF
+#define PPSMC_Result_UnknownCmd 0xFE
+#define PPSMC_Result_CmdRejectedPrereq 0xFD
+#define PPSMC_Result_CmdRejectedBusy 0xFC
+
+// Message Definitions:
+#define PPSMC_MSG_TestMessage 0x1
+#define PPSMC_MSG_GetSmuVersion 0x2
+#define PPSMC_MSG_GfxDriverReset 0x3
+#define PPSMC_MSG_GetDriverIfVersion 0x4
+#define PPSMC_MSG_EnableAllSmuFeatures 0x5
+#define PPSMC_MSG_DisableAllSmuFeatures 0x6
+#define PPSMC_MSG_RequestI2cTransaction 0x7
+#define PPSMC_MSG_GetMetricsVersion 0x8
+#define PPSMC_MSG_GetMetricsTable 0x9
+#define PPSMC_MSG_GetEccInfoTable 0xA
+#define PPSMC_MSG_GetEnabledSmuFeaturesLow 0xB
+#define PPSMC_MSG_GetEnabledSmuFeaturesHigh 0xC
+#define PPSMC_MSG_SetDriverDramAddrHigh 0xD
+#define PPSMC_MSG_SetDriverDramAddrLow 0xE
+#define PPSMC_MSG_SetToolsDramAddrHigh 0xF
+#define PPSMC_MSG_SetToolsDramAddrLow 0x10
+#define PPSMC_MSG_SetSystemVirtualDramAddrHigh 0x11
+#define PPSMC_MSG_SetSystemVirtualDramAddrLow 0x12
+#define PPSMC_MSG_SetSoftMinByFreq 0x13
+#define PPSMC_MSG_SetSoftMaxByFreq 0x14
+#define PPSMC_MSG_GetMinDpmFreq 0x15
+#define PPSMC_MSG_GetMaxDpmFreq 0x16
+#define PPSMC_MSG_GetDpmFreqByIndex 0x17
+#define PPSMC_MSG_SetPptLimit 0x18
+#define PPSMC_MSG_GetPptLimit 0x19
+#define PPSMC_MSG_DramLogSetDramAddrHigh 0x1A
+#define PPSMC_MSG_DramLogSetDramAddrLow 0x1B
+#define PPSMC_MSG_DramLogSetDramSize 0x1C
+#define PPSMC_MSG_GetDebugData 0x1D
+#define PPSMC_MSG_HeavySBR 0x1E
+#define PPSMC_MSG_SetNumBadHbmPagesRetired 0x1F
+#define PPSMC_MSG_DFCstateControl 0x20
+#define PPSMC_MSG_GetGmiPwrDnHyst 0x21
+#define PPSMC_MSG_SetGmiPwrDnHyst 0x22
+#define PPSMC_MSG_GmiPwrDnControl 0x23
+#define PPSMC_MSG_EnterGfxoff 0x24
+#define PPSMC_MSG_ExitGfxoff 0x25
+#define PPSMC_MSG_EnableDeterminism 0x26
+#define PPSMC_MSG_DisableDeterminism 0x27
+#define PPSMC_MSG_DumpSTBtoDram 0x28
+#define PPSMC_MSG_STBtoDramLogSetDramAddrHigh 0x29
+#define PPSMC_MSG_STBtoDramLogSetDramAddrLow 0x2A
+#define PPSMC_MSG_STBtoDramLogSetDramSize 0x2B
+#define PPSMC_MSG_SetSystemVirtualSTBtoDramAddrHigh 0x2C
+#define PPSMC_MSG_SetSystemVirtualSTBtoDramAddrLow 0x2D
+#define PPSMC_MSG_GfxDriverResetRecovery 0x2E
+#define PPSMC_MSG_TriggerVFFLR 0x2F
+#define PPSMC_MSG_SetSoftMinGfxClk 0x30
+#define PPSMC_MSG_SetSoftMaxGfxClk 0x31
+#define PPSMC_MSG_GetMinGfxDpmFreq 0x32
+#define PPSMC_MSG_GetMaxGfxDpmFreq 0x33
+#define PPSMC_Message_Count 0x34
+
+//PPSMC Reset Types for driver msg argument
+#define PPSMC_RESET_TYPE_DRIVER_MODE_1_RESET 0x1
+#define PPSMC_RESET_TYPE_DRIVER_MODE_2_RESET 0x2
+#define PPSMC_RESET_TYPE_DRIVER_MODE_3_RESET 0x3
+
+typedef uint32_t PPSMC_Result;
+typedef uint32_t PPSMC_MSG;
+
+#endif
diff --git a/drivers/gpu/drm/amd/pm/swsmu/inc/smu_types.h b/drivers/gpu/drm/amd/pm/swsmu/inc/smu_types.h
index 58098b82df66..297b70b9388f 100644
--- a/drivers/gpu/drm/amd/pm/swsmu/inc/smu_types.h
+++ b/drivers/gpu/drm/amd/pm/swsmu/inc/smu_types.h
@@ -239,7 +239,13 @@
__SMU_DUMMY_MAP(DriverMode2Reset), \
__SMU_DUMMY_MAP(GetGfxOffStatus), \
__SMU_DUMMY_MAP(GetGfxOffEntryCount), \
- __SMU_DUMMY_MAP(LogGfxOffResidency),
+ __SMU_DUMMY_MAP(LogGfxOffResidency), \
+ __SMU_DUMMY_MAP(SetNumBadMemoryPagesRetired), \
+ __SMU_DUMMY_MAP(SetBadMemoryPagesRetiredFlagsPerChannel), \
+ __SMU_DUMMY_MAP(AllowGpo), \
+ __SMU_DUMMY_MAP(Mode2Reset), \
+ __SMU_DUMMY_MAP(RequestI2cTransaction), \
+ __SMU_DUMMY_MAP(GetMetricsTable),
#undef __SMU_DUMMY_MAP
#define __SMU_DUMMY_MAP(type) SMU_MSG_##type
diff --git a/drivers/gpu/drm/amd/pm/swsmu/inc/smu_v11_0.h b/drivers/gpu/drm/amd/pm/swsmu/inc/smu_v11_0.h
index a9215494dcdd..d466db6f0ad4 100644
--- a/drivers/gpu/drm/amd/pm/swsmu/inc/smu_v11_0.h
+++ b/drivers/gpu/drm/amd/pm/swsmu/inc/smu_v11_0.h
@@ -147,14 +147,6 @@ struct smu_11_5_power_context {
uint32_t max_fast_ppt_limit;
};
-enum smu_v11_0_baco_seq {
- BACO_SEQ_BACO = 0,
- BACO_SEQ_MSR,
- BACO_SEQ_BAMACO,
- BACO_SEQ_ULPS,
- BACO_SEQ_COUNT,
-};
-
#if defined(SWSMU_CODE_LAYER_L2) || defined(SWSMU_CODE_LAYER_L3)
int smu_v11_0_init_microcode(struct smu_context *smu);
@@ -257,7 +249,7 @@ int smu_v11_0_baco_enter(struct smu_context *smu);
int smu_v11_0_baco_exit(struct smu_context *smu);
int smu_v11_0_baco_set_armd3_sequence(struct smu_context *smu,
- enum smu_v11_0_baco_seq baco_seq);
+ enum smu_baco_seq baco_seq);
int smu_v11_0_mode1_reset(struct smu_context *smu);
diff --git a/drivers/gpu/drm/amd/pm/swsmu/inc/smu_v13_0.h b/drivers/gpu/drm/amd/pm/swsmu/inc/smu_v13_0.h
index 80fb583b18d9..df3baaab0037 100644
--- a/drivers/gpu/drm/amd/pm/swsmu/inc/smu_v13_0.h
+++ b/drivers/gpu/drm/amd/pm/swsmu/inc/smu_v13_0.h
@@ -28,11 +28,13 @@
#define SMU13_DRIVER_IF_VERSION_INV 0xFFFFFFFF
#define SMU13_DRIVER_IF_VERSION_YELLOW_CARP 0x04
#define SMU13_DRIVER_IF_VERSION_ALDE 0x08
-#define SMU13_DRIVER_IF_VERSION_SMU_V13_0_4 0x07
+#define SMU13_DRIVER_IF_VERSION_SMU_V13_0_0_0 0x37
+#define SMU13_DRIVER_IF_VERSION_SMU_V13_0_4 0x08
#define SMU13_DRIVER_IF_VERSION_SMU_V13_0_5 0x04
#define SMU13_DRIVER_IF_VERSION_SMU_V13_0_0_10 0x32
-#define SMU13_DRIVER_IF_VERSION_SMU_V13_0_7 0x2C
+#define SMU13_DRIVER_IF_VERSION_SMU_V13_0_7 0x37
#define SMU13_DRIVER_IF_VERSION_SMU_V13_0_10 0x1D
+#define SMU13_DRIVER_IF_VERSION_SMU_V13_0_6 0x0
#define SMU13_MODE1_RESET_WAIT_TIME_IN_MS 500 //500ms
@@ -60,6 +62,12 @@
#define CTF_OFFSET_HOTSPOT 5
#define CTF_OFFSET_MEM 5
+extern const int pmfw_decoded_link_speed[5];
+extern const int pmfw_decoded_link_width[7];
+
+#define DECODE_GEN_SPEED(gen_speed_idx) (pmfw_decoded_link_speed[gen_speed_idx])
+#define DECODE_LANE_WIDTH(lane_width_idx) (pmfw_decoded_link_width[lane_width_idx])
+
struct smu_13_0_max_sustainable_clocks {
uint32_t display_clock;
uint32_t phy_clock;
@@ -124,14 +132,6 @@ struct smu_13_0_power_context {
enum smu_13_0_power_state power_state;
};
-enum smu_v13_0_baco_seq {
- BACO_SEQ_BACO = 0,
- BACO_SEQ_MSR,
- BACO_SEQ_BAMACO,
- BACO_SEQ_ULPS,
- BACO_SEQ_COUNT,
-};
-
#if defined(SWSMU_CODE_LAYER_L2) || defined(SWSMU_CODE_LAYER_L3)
int smu_v13_0_init_microcode(struct smu_context *smu);
@@ -218,6 +218,9 @@ int smu_v13_0_set_azalia_d3_pme(struct smu_context *smu);
int smu_v13_0_get_max_sustainable_clocks_by_dc(struct smu_context *smu,
struct pp_smu_nv_clock_table *max_clocks);
+int smu_v13_0_baco_set_armd3_sequence(struct smu_context *smu,
+ enum smu_baco_seq baco_seq);
+
bool smu_v13_0_baco_is_support(struct smu_context *smu);
enum smu_baco_state smu_v13_0_baco_get_state(struct smu_context *smu);
@@ -248,10 +251,9 @@ int smu_v13_0_set_single_dpm_table(struct smu_context *smu,
enum smu_clk_type clk_type,
struct smu_13_0_dpm_table *single_dpm_table);
-int smu_v13_0_get_dpm_level_range(struct smu_context *smu,
- enum smu_clk_type clk_type,
- uint32_t *min_value,
- uint32_t *max_value);
+int smu_v13_0_get_dpm_freq_by_index(struct smu_context *smu,
+ enum smu_clk_type clk_type, uint16_t level,
+ uint32_t *value);
int smu_v13_0_get_current_pcie_link_width_level(struct smu_context *smu);
@@ -277,6 +279,9 @@ int smu_v13_0_init_pptable_microcode(struct smu_context *smu);
int smu_v13_0_run_btc(struct smu_context *smu);
+int smu_v13_0_gpo_control(struct smu_context *smu,
+ bool enablement);
+
int smu_v13_0_deep_sleep_control(struct smu_context *smu,
bool enablement);
diff --git a/drivers/gpu/drm/amd/pm/swsmu/smu11/navi10_ppt.c b/drivers/gpu/drm/amd/pm/swsmu/smu11/navi10_ppt.c
index 0bcd4fe0ef17..c4000518dc56 100644
--- a/drivers/gpu/drm/amd/pm/swsmu/smu11/navi10_ppt.c
+++ b/drivers/gpu/drm/amd/pm/swsmu/smu11/navi10_ppt.c
@@ -304,7 +304,8 @@ navi10_get_allowed_feature_mask(struct smu_context *smu,
| FEATURE_MASK(FEATURE_GFX_SS_BIT)
| FEATURE_MASK(FEATURE_APCC_DFLL_BIT)
| FEATURE_MASK(FEATURE_FW_CTF_BIT)
- | FEATURE_MASK(FEATURE_OUT_OF_BAND_MONITOR_BIT);
+ | FEATURE_MASK(FEATURE_OUT_OF_BAND_MONITOR_BIT)
+ | FEATURE_MASK(FEATURE_TEMP_DEPENDENT_VMIN_BIT);
if (adev->pm.pp_feature & PP_SCLK_DPM_MASK)
*(uint64_t *)feature_mask |= FEATURE_MASK(FEATURE_DPM_GFXCLK_BIT);
@@ -494,6 +495,8 @@ static int navi10_tables_init(struct smu_context *smu)
{
struct smu_table_context *smu_table = &smu->smu_table;
struct smu_table *tables = smu_table->tables;
+ struct smu_table *dummy_read_1_table =
+ &smu_table->dummy_read_1_table;
SMU_TABLE_INIT(tables, SMU_TABLE_PPTABLE, sizeof(PPTable_t),
PAGE_SIZE, AMDGPU_GEM_DOMAIN_VRAM);
@@ -513,6 +516,10 @@ static int navi10_tables_init(struct smu_context *smu)
SMU_TABLE_INIT(tables, SMU_TABLE_DRIVER_SMU_CONFIG, sizeof(DriverSmuConfig_t),
PAGE_SIZE, AMDGPU_GEM_DOMAIN_VRAM);
+ dummy_read_1_table->size = 0x40000;
+ dummy_read_1_table->align = PAGE_SIZE;
+ dummy_read_1_table->domain = AMDGPU_GEM_DOMAIN_VRAM;
+
smu_table->metrics_table = kzalloc(sizeof(SmuMetrics_NV1X_t),
GFP_KERNEL);
if (!smu_table->metrics_table)
diff --git a/drivers/gpu/drm/amd/pm/swsmu/smu11/sienna_cichlid_ppt.c b/drivers/gpu/drm/amd/pm/swsmu/smu11/sienna_cichlid_ppt.c
index 6212fd270857..75f18681e984 100644
--- a/drivers/gpu/drm/amd/pm/swsmu/smu11/sienna_cichlid_ppt.c
+++ b/drivers/gpu/drm/amd/pm/swsmu/smu11/sienna_cichlid_ppt.c
@@ -379,6 +379,10 @@ static void sienna_cichlid_check_bxco_support(struct smu_context *smu)
((adev->pdev->device == 0x73BF) &&
(adev->pdev->revision == 0xCF)) ||
((adev->pdev->device == 0x7422) &&
+ (adev->pdev->revision == 0x00)) ||
+ ((adev->pdev->device == 0x73A3) &&
+ (adev->pdev->revision == 0x00)) ||
+ ((adev->pdev->device == 0x73E3) &&
(adev->pdev->revision == 0x00)))
smu_baco->platform_support = false;
@@ -2139,16 +2143,9 @@ static int sienna_cichlid_set_default_od_settings(struct smu_context *smu)
(OverDriveTable_t *)smu->smu_table.boot_overdrive_table;
OverDriveTable_t *user_od_table =
(OverDriveTable_t *)smu->smu_table.user_overdrive_table;
+ OverDriveTable_t user_od_table_bak;
int ret = 0;
- /*
- * For S3/S4/Runpm resume, no need to setup those overdrive tables again as
- * - either they already have the default OD settings got during cold bootup
- * - or they have some user customized OD settings which cannot be overwritten
- */
- if (smu->adev->in_suspend)
- return 0;
-
ret = smu_cmn_update_table(smu, SMU_TABLE_OVERDRIVE,
0, (void *)boot_od_table, false);
if (ret) {
@@ -2159,7 +2156,23 @@ static int sienna_cichlid_set_default_od_settings(struct smu_context *smu)
sienna_cichlid_dump_od_table(smu, boot_od_table);
memcpy(od_table, boot_od_table, sizeof(OverDriveTable_t));
- memcpy(user_od_table, boot_od_table, sizeof(OverDriveTable_t));
+
+ /*
+ * For S3/S4/Runpm resume, we need to setup those overdrive tables again,
+ * but we have to preserve user defined values in "user_od_table".
+ */
+ if (!smu->adev->in_suspend) {
+ memcpy(user_od_table, boot_od_table, sizeof(OverDriveTable_t));
+ smu->user_dpm_profile.user_od = false;
+ } else if (smu->user_dpm_profile.user_od) {
+ memcpy(&user_od_table_bak, user_od_table, sizeof(OverDriveTable_t));
+ memcpy(user_od_table, boot_od_table, sizeof(OverDriveTable_t));
+ user_od_table->GfxclkFmin = user_od_table_bak.GfxclkFmin;
+ user_od_table->GfxclkFmax = user_od_table_bak.GfxclkFmax;
+ user_od_table->UclkFmin = user_od_table_bak.UclkFmin;
+ user_od_table->UclkFmax = user_od_table_bak.UclkFmax;
+ user_od_table->VddGfxOffset = user_od_table_bak.VddGfxOffset;
+ }
return 0;
}
@@ -2369,6 +2382,20 @@ static int sienna_cichlid_od_edit_dpm_table(struct smu_context *smu,
return ret;
}
+static int sienna_cichlid_restore_user_od_settings(struct smu_context *smu)
+{
+ struct smu_table_context *table_context = &smu->smu_table;
+ OverDriveTable_t *od_table = table_context->overdrive_table;
+ OverDriveTable_t *user_od_table = table_context->user_overdrive_table;
+ int res;
+
+ res = smu_v11_0_restore_user_od_settings(smu);
+ if (res == 0)
+ memcpy(od_table, user_od_table, sizeof(OverDriveTable_t));
+
+ return res;
+}
+
static int sienna_cichlid_run_btc(struct smu_context *smu)
{
int res;
@@ -4396,7 +4423,7 @@ static const struct pptable_funcs sienna_cichlid_ppt_funcs = {
.set_soft_freq_limited_range = smu_v11_0_set_soft_freq_limited_range,
.set_default_od_settings = sienna_cichlid_set_default_od_settings,
.od_edit_dpm_table = sienna_cichlid_od_edit_dpm_table,
- .restore_user_od_settings = smu_v11_0_restore_user_od_settings,
+ .restore_user_od_settings = sienna_cichlid_restore_user_od_settings,
.run_btc = sienna_cichlid_run_btc,
.set_power_source = smu_v11_0_set_power_source,
.get_pp_feature_mask = smu_cmn_get_pp_feature_mask,
diff --git a/drivers/gpu/drm/amd/pm/swsmu/smu11/smu_v11_0.c b/drivers/gpu/drm/amd/pm/swsmu/smu11/smu_v11_0.c
index dccbd9f70723..e1ef88ee1ed3 100644
--- a/drivers/gpu/drm/amd/pm/swsmu/smu11/smu_v11_0.c
+++ b/drivers/gpu/drm/amd/pm/swsmu/smu11/smu_v11_0.c
@@ -79,10 +79,21 @@ MODULE_FIRMWARE("amdgpu/beige_goby_smc.bin");
#define mmTHM_BACO_CNTL_ARCT 0xA7
#define mmTHM_BACO_CNTL_ARCT_BASE_IDX 0
+static void smu_v11_0_poll_baco_exit(struct smu_context *smu)
+{
+ struct amdgpu_device *adev = smu->adev;
+ uint32_t data, loop = 0;
+
+ do {
+ usleep_range(1000, 1100);
+ data = RREG32_SOC15(THM, 0, mmTHM_BACO_CNTL);
+ } while ((data & 0x100) && (++loop < 100));
+}
+
int smu_v11_0_init_microcode(struct smu_context *smu)
{
struct amdgpu_device *adev = smu->adev;
- const char *chip_name;
+ char ucode_prefix[30];
char fw_name[SMU_FW_NAME_LEN];
int err = 0;
const struct smc_firmware_header_v1_0 *hdr;
@@ -94,43 +105,11 @@ int smu_v11_0_init_microcode(struct smu_context *smu)
(adev->ip_versions[MP1_HWIP][0] == IP_VERSION(11, 0, 7))))
return 0;
- switch (adev->ip_versions[MP1_HWIP][0]) {
- case IP_VERSION(11, 0, 0):
- chip_name = "navi10";
- break;
- case IP_VERSION(11, 0, 5):
- chip_name = "navi14";
- break;
- case IP_VERSION(11, 0, 9):
- chip_name = "navi12";
- break;
- case IP_VERSION(11, 0, 7):
- chip_name = "sienna_cichlid";
- break;
- case IP_VERSION(11, 0, 11):
- chip_name = "navy_flounder";
- break;
- case IP_VERSION(11, 0, 12):
- chip_name = "dimgrey_cavefish";
- break;
- case IP_VERSION(11, 0, 13):
- chip_name = "beige_goby";
- break;
- case IP_VERSION(11, 0, 2):
- chip_name = "arcturus";
- break;
- default:
- dev_err(adev->dev, "Unsupported IP version 0x%x\n",
- adev->ip_versions[MP1_HWIP][0]);
- return -EINVAL;
- }
+ amdgpu_ucode_ip_version_decode(adev, MP1_HWIP, ucode_prefix, sizeof(ucode_prefix));
- snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_smc.bin", chip_name);
+ snprintf(fw_name, sizeof(fw_name), "amdgpu/%s.bin", ucode_prefix);
- err = request_firmware(&adev->pm.fw, fw_name, adev->dev);
- if (err)
- goto out;
- err = amdgpu_ucode_validate(adev->pm.fw);
+ err = amdgpu_ucode_request(adev, &adev->pm.fw, fw_name);
if (err)
goto out;
@@ -148,12 +127,8 @@ int smu_v11_0_init_microcode(struct smu_context *smu)
}
out:
- if (err) {
- DRM_ERROR("smu_v11_0: Failed to load firmware \"%s\"\n",
- fw_name);
- release_firmware(adev->pm.fw);
- adev->pm.fw = NULL;
- }
+ if (err)
+ amdgpu_ucode_release(&adev->pm.fw);
return err;
}
@@ -161,8 +136,7 @@ void smu_v11_0_fini_microcode(struct smu_context *smu)
{
struct amdgpu_device *adev = smu->adev;
- release_firmware(adev->pm.fw);
- adev->pm.fw = NULL;
+ amdgpu_ucode_release(&adev->pm.fw);
adev->pm.fw_version = 0;
}
@@ -282,7 +256,7 @@ int smu_v11_0_check_fw_version(struct smu_context *smu)
* to be backward compatible.
* 2. New fw usually brings some optimizations. But that's visible
* only on the paired driver.
- * Considering above, we just leave user a warning message instead
+ * Considering above, we just leave user a verbal message instead
* of halt driver loading.
*/
if (if_version != smu->smc_driver_if_version) {
@@ -290,7 +264,7 @@ int smu_v11_0_check_fw_version(struct smu_context *smu)
"smu fw program = %d, version = 0x%08x (%d.%d.%d)\n",
smu->smc_driver_if_version, if_version,
smu_program, smu_version, smu_major, smu_minor, smu_debug);
- dev_warn(smu->adev->dev, "SMU driver if version not matched\n");
+ dev_info(smu->adev->dev, "SMU driver if version not matched\n");
}
return ret;
@@ -1576,7 +1550,7 @@ int smu_v11_0_set_azalia_d3_pme(struct smu_context *smu)
}
int smu_v11_0_baco_set_armd3_sequence(struct smu_context *smu,
- enum smu_v11_0_baco_seq baco_seq)
+ enum smu_baco_seq baco_seq)
{
return smu_cmn_send_smc_msg_with_param(smu, SMU_MSG_ArmD3, baco_seq, NULL);
}
@@ -1588,6 +1562,10 @@ bool smu_v11_0_baco_is_support(struct smu_context *smu)
if (amdgpu_sriov_vf(smu->adev) || !smu_baco->platform_support)
return false;
+ /* return true if ASIC is in BACO state already */
+ if (smu_v11_0_baco_get_state(smu) == SMU_BACO_STATE_ENTER)
+ return true;
+
/* Arcturus does not support this bit mask */
if (smu_cmn_feature_is_supported(smu, SMU_FEATURE_BACO_BIT) &&
!smu_cmn_feature_is_enabled(smu, SMU_FEATURE_BACO_BIT))
@@ -1685,7 +1663,18 @@ int smu_v11_0_baco_enter(struct smu_context *smu)
int smu_v11_0_baco_exit(struct smu_context *smu)
{
- return smu_v11_0_baco_set_state(smu, SMU_BACO_STATE_EXIT);
+ int ret;
+
+ ret = smu_v11_0_baco_set_state(smu, SMU_BACO_STATE_EXIT);
+ if (!ret) {
+ /*
+ * Poll BACO exit status to ensure FW has completed
+ * BACO exit process to avoid timing issues.
+ */
+ smu_v11_0_poll_baco_exit(smu);
+ }
+
+ return ret;
}
int smu_v11_0_mode1_reset(struct smu_context *smu)
diff --git a/drivers/gpu/drm/amd/pm/swsmu/smu11/vangogh_ppt.c b/drivers/gpu/drm/amd/pm/swsmu/smu11/vangogh_ppt.c
index cb10c7e31264..7433dcaa16e0 100644
--- a/drivers/gpu/drm/amd/pm/swsmu/smu11/vangogh_ppt.c
+++ b/drivers/gpu/drm/amd/pm/swsmu/smu11/vangogh_ppt.c
@@ -203,6 +203,8 @@ static struct cmn2asic_mapping vangogh_workload_map[PP_SMC_POWER_PROFILE_COUNT]
WORKLOAD_MAP(PP_SMC_POWER_PROFILE_VR, WORKLOAD_PPLIB_VR_BIT),
WORKLOAD_MAP(PP_SMC_POWER_PROFILE_COMPUTE, WORKLOAD_PPLIB_COMPUTE_BIT),
WORKLOAD_MAP(PP_SMC_POWER_PROFILE_CUSTOM, WORKLOAD_PPLIB_CUSTOM_BIT),
+ WORKLOAD_MAP(PP_SMC_POWER_PROFILE_CAPPED, WORKLOAD_PPLIB_CAPPED_BIT),
+ WORKLOAD_MAP(PP_SMC_POWER_PROFILE_UNCAPPED, WORKLOAD_PPLIB_UNCAPPED_BIT),
};
static const uint8_t vangogh_throttler_map[] = {
@@ -1046,7 +1048,7 @@ static int vangogh_get_power_profile_mode(struct smu_context *smu,
if (!buf)
return -EINVAL;
- for (i = 0; i <= PP_SMC_POWER_PROFILE_CUSTOM; i++) {
+ for (i = 0; i < PP_SMC_POWER_PROFILE_COUNT; i++) {
/*
* Conv PP_SMC_POWER_PROFILE* to WORKLOAD_PPLIB_*_BIT
* Not all profile modes are supported on vangogh.
@@ -1070,7 +1072,7 @@ static int vangogh_set_power_profile_mode(struct smu_context *smu, long *input,
int workload_type, ret;
uint32_t profile_mode = input[size];
- if (profile_mode > PP_SMC_POWER_PROFILE_CUSTOM) {
+ if (profile_mode >= PP_SMC_POWER_PROFILE_COUNT) {
dev_err(smu->adev->dev, "Invalid power profile mode %d\n", profile_mode);
return -EINVAL;
}
@@ -1590,6 +1592,21 @@ static int vangogh_read_sensor(struct smu_context *smu,
return ret;
}
+static int vangogh_get_apu_thermal_limit(struct smu_context *smu, uint32_t *limit)
+{
+ return smu_cmn_send_smc_msg_with_param(smu,
+ SMU_MSG_GetThermalLimit,
+ 0, limit);
+}
+
+static int vangogh_set_apu_thermal_limit(struct smu_context *smu, uint32_t limit)
+{
+ return smu_cmn_send_smc_msg_with_param(smu,
+ SMU_MSG_SetReducedThermalLimit,
+ limit, NULL);
+}
+
+
static int vangogh_set_watermarks_table(struct smu_context *smu,
struct pp_smu_wm_range_sets *clock_ranges)
{
@@ -2372,6 +2389,7 @@ static u32 vangogh_set_gfxoff_residency(struct smu_context *smu, bool start)
* vangogh_get_gfxoff_residency
*
* @smu: amdgpu_device pointer
+ * @residency: placeholder for return value
*
* This function will be used to get gfxoff residency.
*
@@ -2390,6 +2408,7 @@ static u32 vangogh_get_gfxoff_residency(struct smu_context *smu, uint32_t *resid
* vangogh_get_gfxoff_entrycount - get gfxoff entry count
*
* @smu: amdgpu_device pointer
+ * @entrycount: placeholder for return value
*
* This function will be used to get gfxoff entry count
*
@@ -2425,6 +2444,8 @@ static const struct pptable_funcs vangogh_ppt_funcs = {
.dpm_set_jpeg_enable = vangogh_dpm_set_jpeg_enable,
.is_dpm_running = vangogh_is_dpm_running,
.read_sensor = vangogh_read_sensor,
+ .get_apu_thermal_limit = vangogh_get_apu_thermal_limit,
+ .set_apu_thermal_limit = vangogh_set_apu_thermal_limit,
.get_enabled_mask = smu_cmn_get_enabled_mask,
.get_pp_feature_mask = smu_cmn_get_pp_feature_mask,
.set_watermarks_table = vangogh_set_watermarks_table,
diff --git a/drivers/gpu/drm/amd/pm/swsmu/smu12/renoir_ppt.c b/drivers/gpu/drm/amd/pm/swsmu/smu12/renoir_ppt.c
index 85e22210963f..5cdc07165480 100644
--- a/drivers/gpu/drm/amd/pm/swsmu/smu12/renoir_ppt.c
+++ b/drivers/gpu/drm/amd/pm/swsmu/smu12/renoir_ppt.c
@@ -1171,6 +1171,7 @@ static int renoir_get_smu_metrics_data(struct smu_context *smu,
int ret = 0;
uint32_t apu_percent = 0;
uint32_t dgpu_percent = 0;
+ struct amdgpu_device *adev = smu->adev;
ret = smu_cmn_get_metrics_table(smu,
@@ -1196,7 +1197,11 @@ static int renoir_get_smu_metrics_data(struct smu_context *smu,
*value = metrics->AverageUvdActivity / 100;
break;
case METRICS_AVERAGE_SOCKETPOWER:
- *value = (metrics->CurrentSocketPower << 8) / 1000;
+ if (((adev->ip_versions[MP1_HWIP][0] == IP_VERSION(12, 0, 1)) && (adev->pm.fw_version >= 0x40000f)) ||
+ ((adev->ip_versions[MP1_HWIP][0] == IP_VERSION(12, 0, 0)) && (adev->pm.fw_version >= 0x373200)))
+ *value = metrics->CurrentSocketPower << 8;
+ else
+ *value = (metrics->CurrentSocketPower << 8) / 1000;
break;
case METRICS_TEMPERATURE_EDGE:
*value = (metrics->GfxTemperature / 100) *
diff --git a/drivers/gpu/drm/amd/pm/swsmu/smu12/smu_v12_0.c b/drivers/gpu/drm/amd/pm/swsmu/smu12/smu_v12_0.c
index 56a02bc60cee..c788aa7a99a9 100644
--- a/drivers/gpu/drm/amd/pm/swsmu/smu12/smu_v12_0.c
+++ b/drivers/gpu/drm/amd/pm/swsmu/smu12/smu_v12_0.c
@@ -93,7 +93,7 @@ int smu_v12_0_check_fw_version(struct smu_context *smu)
* to be backward compatible.
* 2. New fw usually brings some optimizations. But that's visible
* only on the paired driver.
- * Considering above, we just leave user a warning message instead
+ * Considering above, we just leave user a verbal message instead
* of halt driver loading.
*/
if (if_version != smu->smc_driver_if_version) {
@@ -101,7 +101,7 @@ int smu_v12_0_check_fw_version(struct smu_context *smu)
"smu fw program = %d, smu fw version = 0x%08x (%d.%d.%d)\n",
smu->smc_driver_if_version, if_version,
smu_program, smu_version, smu_major, smu_minor, smu_debug);
- dev_warn(smu->adev->dev, "SMU driver if version not matched\n");
+ dev_info(smu->adev->dev, "SMU driver if version not matched\n");
}
return ret;
diff --git a/drivers/gpu/drm/amd/pm/swsmu/smu13/Makefile b/drivers/gpu/drm/amd/pm/swsmu/smu13/Makefile
index 9043f6ef1aee..7f3493b6c53c 100644
--- a/drivers/gpu/drm/amd/pm/swsmu/smu13/Makefile
+++ b/drivers/gpu/drm/amd/pm/swsmu/smu13/Makefile
@@ -24,7 +24,7 @@
# It provides the smu management services for the driver.
SMU13_MGR = smu_v13_0.o aldebaran_ppt.o yellow_carp_ppt.o smu_v13_0_0_ppt.o smu_v13_0_4_ppt.o \
- smu_v13_0_5_ppt.o smu_v13_0_7_ppt.o
+ smu_v13_0_5_ppt.o smu_v13_0_7_ppt.o smu_v13_0_6_ppt.o
AMD_SWSMU_SMU13MGR = $(addprefix $(AMD_SWSMU_PATH)/smu13/,$(SMU13_MGR))
diff --git a/drivers/gpu/drm/amd/pm/swsmu/smu13/smu_v13_0.c b/drivers/gpu/drm/amd/pm/swsmu/smu13/smu_v13_0.c
index 43fb102a65f5..393c6a7b9609 100644
--- a/drivers/gpu/drm/amd/pm/swsmu/smu13/smu_v13_0.c
+++ b/drivers/gpu/drm/amd/pm/swsmu/smu13/smu_v13_0.c
@@ -85,10 +85,12 @@ MODULE_FIRMWARE("amdgpu/smu_13_0_10.bin");
static const int link_width[] = {0, 1, 2, 4, 8, 12, 16};
static const int link_speed[] = {25, 50, 80, 160};
+const int pmfw_decoded_link_speed[5] = {1, 2, 3, 4, 5};
+const int pmfw_decoded_link_width[7] = {0, 1, 2, 4, 8, 12, 16};
+
int smu_v13_0_init_microcode(struct smu_context *smu)
{
struct amdgpu_device *adev = smu->adev;
- const char *chip_name;
char fw_name[30];
char ucode_prefix[30];
int err = 0;
@@ -100,21 +102,11 @@ int smu_v13_0_init_microcode(struct smu_context *smu)
if (amdgpu_sriov_vf(adev))
return 0;
- switch (adev->ip_versions[MP1_HWIP][0]) {
- case IP_VERSION(13, 0, 2):
- chip_name = "aldebaran_smc";
- break;
- default:
- amdgpu_ucode_ip_version_decode(adev, MP1_HWIP, ucode_prefix, sizeof(ucode_prefix));
- chip_name = ucode_prefix;
- }
+ amdgpu_ucode_ip_version_decode(adev, MP1_HWIP, ucode_prefix, sizeof(ucode_prefix));
- snprintf(fw_name, sizeof(fw_name), "amdgpu/%s.bin", chip_name);
+ snprintf(fw_name, sizeof(fw_name), "amdgpu/%s.bin", ucode_prefix);
- err = request_firmware(&adev->pm.fw, fw_name, adev->dev);
- if (err)
- goto out;
- err = amdgpu_ucode_validate(adev->pm.fw);
+ err = amdgpu_ucode_request(adev, &adev->pm.fw, fw_name);
if (err)
goto out;
@@ -132,12 +124,8 @@ int smu_v13_0_init_microcode(struct smu_context *smu)
}
out:
- if (err) {
- DRM_ERROR("smu_v13_0: Failed to load firmware \"%s\"\n",
- fw_name);
- release_firmware(adev->pm.fw);
- adev->pm.fw = NULL;
- }
+ if (err)
+ amdgpu_ucode_release(&adev->pm.fw);
return err;
}
@@ -145,8 +133,7 @@ void smu_v13_0_fini_microcode(struct smu_context *smu)
{
struct amdgpu_device *adev = smu->adev;
- release_firmware(adev->pm.fw);
- adev->pm.fw = NULL;
+ amdgpu_ucode_release(&adev->pm.fw);
adev->pm.fw_version = 0;
}
@@ -250,6 +237,7 @@ int smu_v13_0_check_fw_status(struct smu_context *smu)
switch (adev->ip_versions[MP1_HWIP][0]) {
case IP_VERSION(13, 0, 4):
+ case IP_VERSION(13, 0, 11):
mp1_fw_flags = RREG32_PCIE(MP1_Public |
(smnMP1_V13_0_4_FIRMWARE_FLAGS & 0xffffffff));
break;
@@ -289,6 +277,8 @@ int smu_v13_0_check_fw_version(struct smu_context *smu)
smu->smc_driver_if_version = SMU13_DRIVER_IF_VERSION_ALDE;
break;
case IP_VERSION(13, 0, 0):
+ smu->smc_driver_if_version = SMU13_DRIVER_IF_VERSION_SMU_V13_0_0_0;
+ break;
case IP_VERSION(13, 0, 10):
smu->smc_driver_if_version = SMU13_DRIVER_IF_VERSION_SMU_V13_0_0_10;
break;
@@ -301,11 +291,16 @@ int smu_v13_0_check_fw_version(struct smu_context *smu)
smu->smc_driver_if_version = SMU13_DRIVER_IF_VERSION_YELLOW_CARP;
break;
case IP_VERSION(13, 0, 4):
+ case IP_VERSION(13, 0, 11):
smu->smc_driver_if_version = SMU13_DRIVER_IF_VERSION_SMU_V13_0_4;
break;
case IP_VERSION(13, 0, 5):
smu->smc_driver_if_version = SMU13_DRIVER_IF_VERSION_SMU_V13_0_5;
break;
+ case IP_VERSION(13, 0, 6):
+ smu->smc_driver_if_version = SMU13_DRIVER_IF_VERSION_SMU_V13_0_6;
+ adev->pm.fw_version = smu_version;
+ break;
default:
dev_err(adev->dev, "smu unsupported IP version: 0x%x.\n",
adev->ip_versions[MP1_HWIP][0]);
@@ -323,7 +318,7 @@ int smu_v13_0_check_fw_version(struct smu_context *smu)
* to be backward compatible.
* 2. New fw usually brings some optimizations. But that's visible
* only on the paired driver.
- * Considering above, we just leave user a warning message instead
+ * Considering above, we just leave user a verbal message instead
* of halt driver loading.
*/
if (if_version != smu->smc_driver_if_version) {
@@ -331,7 +326,7 @@ int smu_v13_0_check_fw_version(struct smu_context *smu)
"smu fw program = %d, smu fw version = 0x%08x (%d.%d.%d)\n",
smu->smc_driver_if_version, if_version,
smu_program, smu_version, smu_major, smu_minor, smu_debug);
- dev_warn(adev->dev, "SMU driver if version not matched\n");
+ dev_info(adev->dev, "SMU driver if version not matched\n");
}
return ret;
@@ -841,6 +836,7 @@ int smu_v13_0_gfx_off_control(struct smu_context *smu, bool enable)
case IP_VERSION(13, 0, 7):
case IP_VERSION(13, 0, 8):
case IP_VERSION(13, 0, 10):
+ case IP_VERSION(13, 0, 11):
if (!(adev->pm.pp_feature & PP_GFXOFF_MASK))
return 0;
if (enable)
@@ -1256,7 +1252,8 @@ int smu_v13_0_set_fan_speed_rpm(struct smu_context *smu,
uint32_t speed)
{
struct amdgpu_device *adev = smu->adev;
- uint32_t tach_period, crystal_clock_freq;
+ uint32_t crystal_clock_freq = 2500;
+ uint32_t tach_period;
int ret;
if (!speed)
@@ -1266,7 +1263,6 @@ int smu_v13_0_set_fan_speed_rpm(struct smu_context *smu,
if (ret)
return ret;
- crystal_clock_freq = amdgpu_asic_get_xclk(adev);
tach_period = 60 * crystal_clock_freq * 10000 / (8 * speed);
WREG32_SOC15(THM, 0, regCG_TACH_CTRL,
REG_SET_FIELD(RREG32_SOC15(THM, 0, regCG_TACH_CTRL),
@@ -1376,6 +1372,7 @@ static int smu_v13_0_irq_process(struct amdgpu_device *adev,
*/
uint32_t ctxid = entry->src_data[0];
uint32_t data;
+ uint32_t high;
if (client_id == SOC15_IH_CLIENTID_THM) {
switch (src_id) {
@@ -1432,6 +1429,36 @@ static int smu_v13_0_irq_process(struct amdgpu_device *adev,
schedule_work(&smu->throttling_logging_work);
break;
+ case 0x8:
+ high = smu->thermal_range.software_shutdown_temp +
+ smu->thermal_range.software_shutdown_temp_offset;
+ high = min_t(typeof(high),
+ SMU_THERMAL_MAXIMUM_ALERT_TEMP,
+ high);
+ dev_emerg(adev->dev, "Reduce soft CTF limit to %d (by an offset %d)\n",
+ high,
+ smu->thermal_range.software_shutdown_temp_offset);
+
+ data = RREG32_SOC15(THM, 0, regTHM_THERMAL_INT_CTRL);
+ data = REG_SET_FIELD(data, THM_THERMAL_INT_CTRL,
+ DIG_THERM_INTH,
+ (high & 0xff));
+ data = data & (~THM_THERMAL_INT_CTRL__THERM_TRIGGER_MASK_MASK);
+ WREG32_SOC15(THM, 0, regTHM_THERMAL_INT_CTRL, data);
+ break;
+ case 0x9:
+ high = min_t(typeof(high),
+ SMU_THERMAL_MAXIMUM_ALERT_TEMP,
+ smu->thermal_range.software_shutdown_temp);
+ dev_emerg(adev->dev, "Recover soft CTF limit to %d\n", high);
+
+ data = RREG32_SOC15(THM, 0, regTHM_THERMAL_INT_CTRL);
+ data = REG_SET_FIELD(data, THM_THERMAL_INT_CTRL,
+ DIG_THERM_INTH,
+ (high & 0xff));
+ data = data & (~THM_THERMAL_INT_CTRL__THERM_TRIGGER_MASK_MASK);
+ WREG32_SOC15(THM, 0, regTHM_THERMAL_INT_CTRL, data);
+ break;
}
}
}
@@ -1894,10 +1921,9 @@ int smu_v13_0_set_power_source(struct smu_context *smu,
NULL);
}
-static int smu_v13_0_get_dpm_freq_by_index(struct smu_context *smu,
- enum smu_clk_type clk_type,
- uint16_t level,
- uint32_t *value)
+int smu_v13_0_get_dpm_freq_by_index(struct smu_context *smu,
+ enum smu_clk_type clk_type, uint16_t level,
+ uint32_t *value)
{
int ret = 0, clk_id = 0;
uint32_t param;
@@ -2028,45 +2054,6 @@ int smu_v13_0_set_single_dpm_table(struct smu_context *smu,
return 0;
}
-int smu_v13_0_get_dpm_level_range(struct smu_context *smu,
- enum smu_clk_type clk_type,
- uint32_t *min_value,
- uint32_t *max_value)
-{
- uint32_t level_count = 0;
- int ret = 0;
-
- if (!min_value && !max_value)
- return -EINVAL;
-
- if (min_value) {
- /* by default, level 0 clock value as min value */
- ret = smu_v13_0_get_dpm_freq_by_index(smu,
- clk_type,
- 0,
- min_value);
- if (ret)
- return ret;
- }
-
- if (max_value) {
- ret = smu_v13_0_get_dpm_level_count(smu,
- clk_type,
- &level_count);
- if (ret)
- return ret;
-
- ret = smu_v13_0_get_dpm_freq_by_index(smu,
- clk_type,
- level_count - 1,
- max_value);
- if (ret)
- return ret;
- }
-
- return ret;
-}
-
int smu_v13_0_get_current_pcie_link_width_level(struct smu_context *smu)
{
struct amdgpu_device *adev = smu->adev;
@@ -2146,6 +2133,21 @@ int smu_v13_0_run_btc(struct smu_context *smu)
return res;
}
+int smu_v13_0_gpo_control(struct smu_context *smu,
+ bool enablement)
+{
+ int res;
+
+ res = smu_cmn_send_smc_msg_with_param(smu,
+ SMU_MSG_AllowGpo,
+ enablement ? 1 : 0,
+ NULL);
+ if (res)
+ dev_err(smu->adev->dev, "SetGpoAllow %d failed!\n", enablement);
+
+ return res;
+}
+
int smu_v13_0_deep_sleep_control(struct smu_context *smu,
bool enablement)
{
@@ -2230,6 +2232,28 @@ int smu_v13_0_gfx_ulv_control(struct smu_context *smu,
return ret;
}
+int smu_v13_0_baco_set_armd3_sequence(struct smu_context *smu,
+ enum smu_baco_seq baco_seq)
+{
+ struct smu_baco_context *smu_baco = &smu->smu_baco;
+ int ret;
+
+ ret = smu_cmn_send_smc_msg_with_param(smu,
+ SMU_MSG_ArmD3,
+ baco_seq,
+ NULL);
+ if (ret)
+ return ret;
+
+ if (baco_seq == BACO_SEQ_BAMACO ||
+ baco_seq == BACO_SEQ_BACO)
+ smu_baco->state = SMU_BACO_STATE_ENTER;
+ else
+ smu_baco->state = SMU_BACO_STATE_EXIT;
+
+ return 0;
+}
+
bool smu_v13_0_baco_is_support(struct smu_context *smu)
{
struct smu_baco_context *smu_baco = &smu->smu_baco;
@@ -2238,6 +2262,10 @@ bool smu_v13_0_baco_is_support(struct smu_context *smu)
!smu_baco->platform_support)
return false;
+ /* return true if ASIC is in BACO state already */
+ if (smu_v13_0_baco_get_state(smu) == SMU_BACO_STATE_ENTER)
+ return true;
+
if (smu_cmn_feature_is_supported(smu, SMU_FEATURE_BACO_BIT) &&
!smu_cmn_feature_is_enabled(smu, SMU_FEATURE_BACO_BIT))
return false;
diff --git a/drivers/gpu/drm/amd/pm/swsmu/smu13/smu_v13_0_0_ppt.c b/drivers/gpu/drm/amd/pm/swsmu/smu13/smu_v13_0_0_ppt.c
index 29529328152d..09405ef1e3c8 100644
--- a/drivers/gpu/drm/amd/pm/swsmu/smu13/smu_v13_0_0_ppt.c
+++ b/drivers/gpu/drm/amd/pm/swsmu/smu13/smu_v13_0_0_ppt.c
@@ -46,6 +46,7 @@
#include "asic_reg/mp/mp_13_0_0_sh_mask.h"
#include "smu_cmn.h"
#include "amdgpu_ras.h"
+#include "umc_v8_10.h"
/*
* DO NOT use these for err/warn/info/debug messages.
@@ -70,6 +71,32 @@
#define MP0_MP1_DATA_REGION_SIZE_COMBOPPTABLE 0x4000
+#define mmMP1_SMN_C2PMSG_66 0x0282
+#define mmMP1_SMN_C2PMSG_66_BASE_IDX 0
+
+#define mmMP1_SMN_C2PMSG_82 0x0292
+#define mmMP1_SMN_C2PMSG_82_BASE_IDX 0
+
+#define mmMP1_SMN_C2PMSG_90 0x029a
+#define mmMP1_SMN_C2PMSG_90_BASE_IDX 0
+
+#define mmMP1_SMN_C2PMSG_75 0x028b
+#define mmMP1_SMN_C2PMSG_75_BASE_IDX 0
+
+#define mmMP1_SMN_C2PMSG_53 0x0275
+#define mmMP1_SMN_C2PMSG_53_BASE_IDX 0
+
+#define mmMP1_SMN_C2PMSG_54 0x0276
+#define mmMP1_SMN_C2PMSG_54_BASE_IDX 0
+
+#define DEBUGSMC_MSG_Mode1Reset 2
+
+/*
+ * SMU_v13_0_10 supports ECCTABLE since version 80.34.0,
+ * use this to check ECCTABLE feature whether support
+ */
+#define SUPPORT_ECCTABLE_SMU_13_0_10_VERSION 0x00502200
+
static struct cmn2asic_msg_mapping smu_v13_0_0_message_map[SMU_MSG_MAX_COUNT] = {
MSG_MAP(TestMessage, PPSMC_MSG_TestMessage, 1),
MSG_MAP(GetSmuVersion, PPSMC_MSG_GetSmuVersion, 1),
@@ -118,8 +145,16 @@ static struct cmn2asic_msg_mapping smu_v13_0_0_message_map[SMU_MSG_MAX_COUNT] =
MSG_MAP(GetPptLimit, PPSMC_MSG_GetPptLimit, 0),
MSG_MAP(NotifyPowerSource, PPSMC_MSG_NotifyPowerSource, 0),
MSG_MAP(Mode1Reset, PPSMC_MSG_Mode1Reset, 0),
+ MSG_MAP(Mode2Reset, PPSMC_MSG_Mode2Reset, 0),
MSG_MAP(PrepareMp1ForUnload, PPSMC_MSG_PrepareMp1ForUnload, 0),
MSG_MAP(DFCstateControl, PPSMC_MSG_SetExternalClientDfCstateAllow, 0),
+ MSG_MAP(ArmD3, PPSMC_MSG_ArmD3, 0),
+ MSG_MAP(SetNumBadMemoryPagesRetired, PPSMC_MSG_SetNumBadMemoryPagesRetired, 0),
+ MSG_MAP(SetBadMemoryPagesRetiredFlagsPerChannel,
+ PPSMC_MSG_SetBadMemoryPagesRetiredFlagsPerChannel, 0),
+ MSG_MAP(AllowGpo, PPSMC_MSG_SetGpoAllow, 0),
+ MSG_MAP(AllowIHHostInterrupt, PPSMC_MSG_AllowIHHostInterrupt, 0),
+ MSG_MAP(ReenableAcDcInterrupt, PPSMC_MSG_ReenableAcDcInterrupt, 0),
};
static struct cmn2asic_mapping smu_v13_0_0_clk_map[SMU_CLK_COUNT] = {
@@ -186,6 +221,9 @@ static struct cmn2asic_mapping smu_v13_0_0_feature_mask_map[SMU_FEATURE_COUNT] =
FEA_MAP(MEM_TEMP_READ),
FEA_MAP(ATHUB_MMHUB_PG),
FEA_MAP(SOC_PCC),
+ [SMU_FEATURE_DPM_VCLK_BIT] = {1, FEATURE_MM_DPM_BIT},
+ [SMU_FEATURE_DPM_DCLK_BIT] = {1, FEATURE_MM_DPM_BIT},
+ [SMU_FEATURE_PPT_BIT] = {1, FEATURE_THROTTLERS_BIT},
};
static struct cmn2asic_mapping smu_v13_0_0_table_map[SMU_TABLE_COUNT] = {
@@ -198,6 +236,7 @@ static struct cmn2asic_mapping smu_v13_0_0_table_map[SMU_TABLE_COUNT] = {
TAB_MAP(ACTIVITY_MONITOR_COEFF),
[SMU_TABLE_COMBO_PPTABLE] = {1, TABLE_COMBO_PPTABLE},
TAB_MAP(I2C_COMMANDS),
+ TAB_MAP(ECCINFO),
};
static struct cmn2asic_mapping smu_v13_0_0_pwr_src_map[SMU_POWER_SOURCE_COUNT] = {
@@ -213,6 +252,7 @@ static struct cmn2asic_mapping smu_v13_0_0_workload_map[PP_SMC_POWER_PROFILE_COU
WORKLOAD_MAP(PP_SMC_POWER_PROFILE_VR, WORKLOAD_PPLIB_VR_BIT),
WORKLOAD_MAP(PP_SMC_POWER_PROFILE_COMPUTE, WORKLOAD_PPLIB_COMPUTE_BIT),
WORKLOAD_MAP(PP_SMC_POWER_PROFILE_CUSTOM, WORKLOAD_PPLIB_CUSTOM_BIT),
+ WORKLOAD_MAP(PP_SMC_POWER_PROFILE_WINDOW3D, WORKLOAD_PPLIB_WINDOW_3D_BIT),
};
static const uint8_t smu_v13_0_0_throttler_map[] = {
@@ -378,6 +418,9 @@ static int smu_v13_0_0_setup_pptable(struct smu_context *smu)
struct amdgpu_device *adev = smu->adev;
int ret = 0;
+ if (amdgpu_sriov_vf(smu->adev))
+ return 0;
+
ret = smu_v13_0_0_get_pptable_from_pmfw(smu,
&smu_table->power_play_table,
&smu_table->power_play_table_size);
@@ -427,6 +470,8 @@ static int smu_v13_0_0_tables_init(struct smu_context *smu)
AMDGPU_GEM_DOMAIN_VRAM);
SMU_TABLE_INIT(tables, SMU_TABLE_COMBO_PPTABLE, MP0_MP1_DATA_REGION_SIZE_COMBOPPTABLE,
PAGE_SIZE, AMDGPU_GEM_DOMAIN_VRAM);
+ SMU_TABLE_INIT(tables, SMU_TABLE_ECCINFO, sizeof(EccInfoTable_t),
+ PAGE_SIZE, AMDGPU_GEM_DOMAIN_VRAM);
smu_table->metrics_table = kzalloc(sizeof(SmuMetricsExternal_t), GFP_KERNEL);
if (!smu_table->metrics_table)
@@ -442,8 +487,14 @@ static int smu_v13_0_0_tables_init(struct smu_context *smu)
if (!smu_table->watermarks_table)
goto err2_out;
+ smu_table->ecc_table = kzalloc(tables[SMU_TABLE_ECCINFO].size, GFP_KERNEL);
+ if (!smu_table->ecc_table)
+ goto err3_out;
+
return 0;
+err3_out:
+ kfree(smu_table->watermarks_table);
err2_out:
kfree(smu_table->gpu_metrics_table);
err1_out:
@@ -516,6 +567,23 @@ static int smu_v13_0_0_set_default_dpm_table(struct smu_context *smu)
dpm_table);
if (ret)
return ret;
+
+ /*
+ * Update the reported maximum shader clock to the value
+ * which can be guarded to be achieved on all cards. This
+ * is aligned with Window setting. And considering that value
+ * might be not the peak frequency the card can achieve, it
+ * is normal some real-time clock frequency can overtake this
+ * labelled maximum clock frequency(for example in pp_dpm_sclk
+ * sysfs output).
+ */
+ if (skutable->DriverReportedClocks.GameClockAc &&
+ (dpm_table->dpm_levels[dpm_table->count - 1].value >
+ skutable->DriverReportedClocks.GameClockAc)) {
+ dpm_table->dpm_levels[dpm_table->count - 1].value =
+ skutable->DriverReportedClocks.GameClockAc;
+ dpm_table->max = skutable->DriverReportedClocks.GameClockAc;
+ }
} else {
dpm_table->count = 1;
dpm_table->dpm_levels[0].value = smu->smu_table.boot_values.gfxclk / 100;
@@ -778,6 +846,57 @@ static int smu_v13_0_0_get_smu_metrics_data(struct smu_context *smu,
return ret;
}
+static int smu_v13_0_0_get_dpm_ultimate_freq(struct smu_context *smu,
+ enum smu_clk_type clk_type,
+ uint32_t *min,
+ uint32_t *max)
+{
+ struct smu_13_0_dpm_context *dpm_context =
+ smu->smu_dpm.dpm_context;
+ struct smu_13_0_dpm_table *dpm_table;
+
+ switch (clk_type) {
+ case SMU_MCLK:
+ case SMU_UCLK:
+ /* uclk dpm table */
+ dpm_table = &dpm_context->dpm_tables.uclk_table;
+ break;
+ case SMU_GFXCLK:
+ case SMU_SCLK:
+ /* gfxclk dpm table */
+ dpm_table = &dpm_context->dpm_tables.gfx_table;
+ break;
+ case SMU_SOCCLK:
+ /* socclk dpm table */
+ dpm_table = &dpm_context->dpm_tables.soc_table;
+ break;
+ case SMU_FCLK:
+ /* fclk dpm table */
+ dpm_table = &dpm_context->dpm_tables.fclk_table;
+ break;
+ case SMU_VCLK:
+ case SMU_VCLK1:
+ /* vclk dpm table */
+ dpm_table = &dpm_context->dpm_tables.vclk_table;
+ break;
+ case SMU_DCLK:
+ case SMU_DCLK1:
+ /* dclk dpm table */
+ dpm_table = &dpm_context->dpm_tables.dclk_table;
+ break;
+ default:
+ dev_err(smu->adev->dev, "Unsupported clock type!\n");
+ return -EINVAL;
+ }
+
+ if (min)
+ *min = dpm_table->min;
+ if (max)
+ *max = dpm_table->max;
+
+ return 0;
+}
+
static int smu_v13_0_0_read_sensor(struct smu_context *smu,
enum amd_pp_sensors sensor,
void *data,
@@ -1025,8 +1144,8 @@ static int smu_v13_0_0_print_clk_levels(struct smu_context *smu,
(pcie_table->pcie_lane[i] == 5) ? "x12" :
(pcie_table->pcie_lane[i] == 6) ? "x16" : "",
pcie_table->clk_freq[i],
- ((gen_speed - 1) == pcie_table->pcie_gen[i]) &&
- (lane_width == link_width[pcie_table->pcie_lane[i]]) ?
+ (gen_speed == DECODE_GEN_SPEED(pcie_table->pcie_gen[i])) &&
+ (lane_width == DECODE_LANE_WIDTH(link_width[pcie_table->pcie_lane[i]])) ?
"*" : "");
break;
@@ -1160,6 +1279,9 @@ static int smu_v13_0_0_get_thermal_temperature_range(struct smu_context *smu,
table_context->power_play_table;
PPTable_t *pptable = smu->smu_table.driver_pptable;
+ if (amdgpu_sriov_vf(smu->adev))
+ return 0;
+
if (!range)
return -EINVAL;
@@ -1280,9 +1402,17 @@ static int smu_v13_0_0_populate_umd_state_clk(struct smu_context *smu)
&dpm_context->dpm_tables.fclk_table;
struct smu_umd_pstate_table *pstate_table =
&smu->pstate_table;
+ struct smu_table_context *table_context = &smu->smu_table;
+ PPTable_t *pptable = table_context->driver_pptable;
+ DriverReportedClocks_t driver_clocks =
+ pptable->SkuTable.DriverReportedClocks;
pstate_table->gfxclk_pstate.min = gfx_table->min;
- pstate_table->gfxclk_pstate.peak = gfx_table->max;
+ if (driver_clocks.GameClockAc &&
+ (driver_clocks.GameClockAc < gfx_table->max))
+ pstate_table->gfxclk_pstate.peak = driver_clocks.GameClockAc;
+ else
+ pstate_table->gfxclk_pstate.peak = gfx_table->max;
pstate_table->uclk_pstate.min = mem_table->min;
pstate_table->uclk_pstate.peak = mem_table->max;
@@ -1299,12 +1429,12 @@ static int smu_v13_0_0_populate_umd_state_clk(struct smu_context *smu)
pstate_table->fclk_pstate.min = fclk_table->min;
pstate_table->fclk_pstate.peak = fclk_table->max;
- /*
- * For now, just use the mininum clock frequency.
- * TODO: update them when the real pstate settings available
- */
- pstate_table->gfxclk_pstate.standard = gfx_table->min;
- pstate_table->uclk_pstate.standard = mem_table->min;
+ if (driver_clocks.BaseClockAc &&
+ driver_clocks.BaseClockAc < gfx_table->max)
+ pstate_table->gfxclk_pstate.standard = driver_clocks.BaseClockAc;
+ else
+ pstate_table->gfxclk_pstate.standard = gfx_table->max;
+ pstate_table->uclk_pstate.standard = mem_table->max;
pstate_table->socclk_pstate.standard = soc_table->min;
pstate_table->vclk_pstate.standard = vclk_table->min;
pstate_table->dclk_pstate.standard = dclk_table->min;
@@ -1338,12 +1468,23 @@ out:
static int smu_v13_0_0_get_fan_speed_pwm(struct smu_context *smu,
uint32_t *speed)
{
+ int ret;
+
if (!speed)
return -EINVAL;
- return smu_v13_0_0_get_smu_metrics_data(smu,
- METRICS_CURR_FANPWM,
- speed);
+ ret = smu_v13_0_0_get_smu_metrics_data(smu,
+ METRICS_CURR_FANPWM,
+ speed);
+ if (ret) {
+ dev_err(smu->adev->dev, "Failed to get fan speed(PWM)!");
+ return ret;
+ }
+
+ /* Convert the PMFW output which is in percent to pwm(255) based */
+ *speed = MIN(*speed * 255 / 100, 255);
+
+ return 0;
}
static int smu_v13_0_0_get_fan_speed_rpm(struct smu_context *smu,
@@ -1441,12 +1582,14 @@ static int smu_v13_0_0_get_power_profile_mode(struct smu_context *smu,
title[0], title[1], title[2], title[3], title[4], title[5],
title[6], title[7], title[8], title[9]);
- for (i = 0; i <= PP_SMC_POWER_PROFILE_CUSTOM; i++) {
+ for (i = 0; i < PP_SMC_POWER_PROFILE_COUNT; i++) {
/* conv PP_SMC_POWER_PROFILE* to WORKLOAD_PPLIB_*_BIT */
workload_type = smu_cmn_to_asic_specific_index(smu,
CMN2ASIC_MAPPING_WORKLOAD,
i);
- if (workload_type < 0)
+ if (workload_type == -ENOTSUPP)
+ continue;
+ else if (workload_type < 0)
return -EINVAL;
result = smu_cmn_update_table(smu,
@@ -1503,7 +1646,7 @@ static int smu_v13_0_0_set_power_profile_mode(struct smu_context *smu,
smu->power_profile_mode = input[size];
- if (smu->power_profile_mode > PP_SMC_POWER_PROFILE_CUSTOM) {
+ if (smu->power_profile_mode >= PP_SMC_POWER_PROFILE_COUNT) {
dev_err(smu->adev->dev, "Invalid power profile mode %d\n", smu->power_profile_mode);
return -EINVAL;
}
@@ -1566,6 +1709,31 @@ static int smu_v13_0_0_set_power_profile_mode(struct smu_context *smu,
NULL);
}
+static int smu_v13_0_0_baco_enter(struct smu_context *smu)
+{
+ struct smu_baco_context *smu_baco = &smu->smu_baco;
+ struct amdgpu_device *adev = smu->adev;
+
+ if (adev->in_runpm && smu_cmn_is_audio_func_enabled(adev))
+ return smu_v13_0_baco_set_armd3_sequence(smu,
+ smu_baco->maco_support ? BACO_SEQ_BAMACO : BACO_SEQ_BACO);
+ else
+ return smu_v13_0_baco_enter(smu);
+}
+
+static int smu_v13_0_0_baco_exit(struct smu_context *smu)
+{
+ struct amdgpu_device *adev = smu->adev;
+
+ if (adev->in_runpm && smu_cmn_is_audio_func_enabled(adev)) {
+ /* Wait for PMFW handling for the Dstate change */
+ usleep_range(10000, 11000);
+ return smu_v13_0_baco_set_armd3_sequence(smu, BACO_SEQ_ULPS);
+ } else {
+ return smu_v13_0_baco_exit(smu);
+ }
+}
+
static bool smu_v13_0_0_is_mode1_reset_supported(struct smu_context *smu)
{
struct amdgpu_device *adev = smu->adev;
@@ -1763,6 +1931,187 @@ static int smu_v13_0_0_set_df_cstate(struct smu_context *smu,
NULL);
}
+static void smu_v13_0_0_set_mode1_reset_param(struct smu_context *smu,
+ uint32_t supported_version,
+ uint32_t *param)
+{
+ uint32_t smu_version;
+ struct amdgpu_device *adev = smu->adev;
+ struct amdgpu_ras *ras = amdgpu_ras_get_context(adev);
+
+ smu_cmn_get_smc_version(smu, NULL, &smu_version);
+
+ if ((smu_version >= supported_version) &&
+ ras && atomic_read(&ras->in_recovery))
+ /* Set RAS fatal error reset flag */
+ *param = 1 << 16;
+ else
+ *param = 0;
+}
+
+static int smu_v13_0_0_mode1_reset(struct smu_context *smu)
+{
+ int ret;
+ uint32_t param;
+ struct amdgpu_device *adev = smu->adev;
+
+ switch (adev->ip_versions[MP1_HWIP][0]) {
+ case IP_VERSION(13, 0, 0):
+ /* SMU 13_0_0 PMFW supports RAS fatal error reset from 78.77 */
+ smu_v13_0_0_set_mode1_reset_param(smu, 0x004e4d00, &param);
+
+ ret = smu_cmn_send_smc_msg_with_param(smu,
+ SMU_MSG_Mode1Reset, param, NULL);
+ break;
+
+ case IP_VERSION(13, 0, 10):
+ /* SMU 13_0_10 PMFW supports RAS fatal error reset from 80.28 */
+ smu_v13_0_0_set_mode1_reset_param(smu, 0x00501c00, &param);
+
+ ret = smu_cmn_send_debug_smc_msg_with_param(smu,
+ DEBUGSMC_MSG_Mode1Reset, param);
+ break;
+
+ default:
+ ret = smu_cmn_send_smc_msg(smu, SMU_MSG_Mode1Reset, NULL);
+ break;
+ }
+
+ if (!ret)
+ msleep(SMU13_MODE1_RESET_WAIT_TIME_IN_MS);
+
+ return ret;
+}
+
+static int smu_v13_0_0_mode2_reset(struct smu_context *smu)
+{
+ int ret;
+ struct amdgpu_device *adev = smu->adev;
+
+ if (adev->ip_versions[MP1_HWIP][0] == IP_VERSION(13, 0, 10))
+ ret = smu_cmn_send_smc_msg(smu, SMU_MSG_Mode2Reset, NULL);
+ else
+ return -EOPNOTSUPP;
+
+ return ret;
+}
+
+static int smu_v13_0_0_enable_gfx_features(struct smu_context *smu)
+{
+ struct amdgpu_device *adev = smu->adev;
+
+ if (adev->ip_versions[MP1_HWIP][0] == IP_VERSION(13, 0, 10))
+ return smu_cmn_send_smc_msg_with_param(smu, SMU_MSG_EnableAllSmuFeatures,
+ FEATURE_PWR_GFX, NULL);
+ else
+ return -EOPNOTSUPP;
+}
+
+static void smu_v13_0_0_set_smu_mailbox_registers(struct smu_context *smu)
+{
+ struct amdgpu_device *adev = smu->adev;
+
+ smu->param_reg = SOC15_REG_OFFSET(MP1, 0, mmMP1_SMN_C2PMSG_82);
+ smu->msg_reg = SOC15_REG_OFFSET(MP1, 0, mmMP1_SMN_C2PMSG_66);
+ smu->resp_reg = SOC15_REG_OFFSET(MP1, 0, mmMP1_SMN_C2PMSG_90);
+
+ smu->debug_param_reg = SOC15_REG_OFFSET(MP1, 0, mmMP1_SMN_C2PMSG_53);
+ smu->debug_msg_reg = SOC15_REG_OFFSET(MP1, 0, mmMP1_SMN_C2PMSG_75);
+ smu->debug_resp_reg = SOC15_REG_OFFSET(MP1, 0, mmMP1_SMN_C2PMSG_54);
+}
+
+static int smu_v13_0_0_smu_send_bad_mem_page_num(struct smu_context *smu,
+ uint32_t size)
+{
+ int ret = 0;
+
+ /* message SMU to update the bad page number on SMUBUS */
+ ret = smu_cmn_send_smc_msg_with_param(smu,
+ SMU_MSG_SetNumBadMemoryPagesRetired,
+ size, NULL);
+ if (ret)
+ dev_err(smu->adev->dev,
+ "[%s] failed to message SMU to update bad memory pages number\n",
+ __func__);
+
+ return ret;
+}
+
+static int smu_v13_0_0_send_bad_mem_channel_flag(struct smu_context *smu,
+ uint32_t size)
+{
+ int ret = 0;
+
+ /* message SMU to update the bad channel info on SMUBUS */
+ ret = smu_cmn_send_smc_msg_with_param(smu,
+ SMU_MSG_SetBadMemoryPagesRetiredFlagsPerChannel,
+ size, NULL);
+ if (ret)
+ dev_err(smu->adev->dev,
+ "[%s] failed to message SMU to update bad memory pages channel info\n",
+ __func__);
+
+ return ret;
+}
+
+static int smu_v13_0_0_check_ecc_table_support(struct smu_context *smu)
+{
+ struct amdgpu_device *adev = smu->adev;
+ uint32_t if_version = 0xff, smu_version = 0xff;
+ int ret = 0;
+
+ ret = smu_cmn_get_smc_version(smu, &if_version, &smu_version);
+ if (ret)
+ return -EOPNOTSUPP;
+
+ if ((adev->ip_versions[MP1_HWIP][0] == IP_VERSION(13, 0, 10)) &&
+ (smu_version >= SUPPORT_ECCTABLE_SMU_13_0_10_VERSION))
+ return ret;
+ else
+ return -EOPNOTSUPP;
+}
+
+static ssize_t smu_v13_0_0_get_ecc_info(struct smu_context *smu,
+ void *table)
+{
+ struct smu_table_context *smu_table = &smu->smu_table;
+ struct amdgpu_device *adev = smu->adev;
+ EccInfoTable_t *ecc_table = NULL;
+ struct ecc_info_per_ch *ecc_info_per_channel = NULL;
+ int i, ret = 0;
+ struct umc_ecc_info *eccinfo = (struct umc_ecc_info *)table;
+
+ ret = smu_v13_0_0_check_ecc_table_support(smu);
+ if (ret)
+ return ret;
+
+ ret = smu_cmn_update_table(smu,
+ SMU_TABLE_ECCINFO,
+ 0,
+ smu_table->ecc_table,
+ false);
+ if (ret) {
+ dev_info(adev->dev, "Failed to export SMU ecc table!\n");
+ return ret;
+ }
+
+ ecc_table = (EccInfoTable_t *)smu_table->ecc_table;
+
+ for (i = 0; i < UMC_V8_10_TOTAL_CHANNEL_NUM(adev); i++) {
+ ecc_info_per_channel = &(eccinfo->ecc[i]);
+ ecc_info_per_channel->ce_count_lo_chip =
+ ecc_table->EccInfo[i].ce_count_lo_chip;
+ ecc_info_per_channel->ce_count_hi_chip =
+ ecc_table->EccInfo[i].ce_count_hi_chip;
+ ecc_info_per_channel->mca_umc_status =
+ ecc_table->EccInfo[i].mca_umc_status;
+ ecc_info_per_channel->mca_umc_addr =
+ ecc_table->EccInfo[i].mca_umc_addr;
+ }
+
+ return ret;
+}
+
static const struct pptable_funcs smu_v13_0_0_ppt_funcs = {
.get_allowed_feature_mask = smu_v13_0_0_get_allowed_feature_mask,
.set_default_dpm_table = smu_v13_0_0_set_default_dpm_table,
@@ -1787,7 +2136,7 @@ static const struct pptable_funcs smu_v13_0_0_ppt_funcs = {
.get_enabled_mask = smu_cmn_get_enabled_mask,
.dpm_set_vcn_enable = smu_v13_0_set_vcn_enable,
.dpm_set_jpeg_enable = smu_v13_0_set_jpeg_enable,
- .get_dpm_ultimate_freq = smu_v13_0_get_dpm_ultimate_freq,
+ .get_dpm_ultimate_freq = smu_v13_0_0_get_dpm_ultimate_freq,
.get_vbios_bootup_values = smu_v13_0_get_vbios_bootup_values,
.read_sensor = smu_v13_0_0_read_sensor,
.feature_is_enabled = smu_cmn_feature_is_enabled,
@@ -1827,12 +2176,18 @@ static const struct pptable_funcs smu_v13_0_0_ppt_funcs = {
.baco_is_support = smu_v13_0_baco_is_support,
.baco_get_state = smu_v13_0_baco_get_state,
.baco_set_state = smu_v13_0_baco_set_state,
- .baco_enter = smu_v13_0_baco_enter,
- .baco_exit = smu_v13_0_baco_exit,
+ .baco_enter = smu_v13_0_0_baco_enter,
+ .baco_exit = smu_v13_0_0_baco_exit,
.mode1_reset_is_support = smu_v13_0_0_is_mode1_reset_supported,
- .mode1_reset = smu_v13_0_mode1_reset,
+ .mode1_reset = smu_v13_0_0_mode1_reset,
+ .mode2_reset = smu_v13_0_0_mode2_reset,
+ .enable_gfx_features = smu_v13_0_0_enable_gfx_features,
.set_mp1_state = smu_v13_0_0_set_mp1_state,
.set_df_cstate = smu_v13_0_0_set_df_cstate,
+ .send_hbm_bad_pages_num = smu_v13_0_0_smu_send_bad_mem_page_num,
+ .send_hbm_bad_channel_flag = smu_v13_0_0_send_bad_mem_channel_flag,
+ .gpo_control = smu_v13_0_gpo_control,
+ .get_ecc_info = smu_v13_0_0_get_ecc_info,
};
void smu_v13_0_0_set_ppt_funcs(struct smu_context *smu)
@@ -1844,5 +2199,5 @@ void smu_v13_0_0_set_ppt_funcs(struct smu_context *smu)
smu->table_map = smu_v13_0_0_table_map;
smu->pwr_src_map = smu_v13_0_0_pwr_src_map;
smu->workload_map = smu_v13_0_0_workload_map;
- smu_v13_0_set_smu_mailbox_registers(smu);
+ smu_v13_0_0_set_smu_mailbox_registers(smu);
}
diff --git a/drivers/gpu/drm/amd/pm/swsmu/smu13/smu_v13_0_4_ppt.c b/drivers/gpu/drm/amd/pm/swsmu/smu13/smu_v13_0_4_ppt.c
index 97e1d55dcaad..8fa9a36c38b6 100644
--- a/drivers/gpu/drm/amd/pm/swsmu/smu13/smu_v13_0_4_ppt.c
+++ b/drivers/gpu/drm/amd/pm/swsmu/smu13/smu_v13_0_4_ppt.c
@@ -1026,6 +1026,15 @@ static const struct pptable_funcs smu_v13_0_4_ppt_funcs = {
.set_gfx_power_up_by_imu = smu_v13_0_set_gfx_power_up_by_imu,
};
+static void smu_v13_0_4_set_smu_mailbox_registers(struct smu_context *smu)
+{
+ struct amdgpu_device *adev = smu->adev;
+
+ smu->param_reg = SOC15_REG_OFFSET(MP1, 0, mmMP1_SMN_C2PMSG_82);
+ smu->msg_reg = SOC15_REG_OFFSET(MP1, 0, mmMP1_SMN_C2PMSG_66);
+ smu->resp_reg = SOC15_REG_OFFSET(MP1, 0, mmMP1_SMN_C2PMSG_90);
+}
+
void smu_v13_0_4_set_ppt_funcs(struct smu_context *smu)
{
struct amdgpu_device *adev = smu->adev;
@@ -1035,7 +1044,9 @@ void smu_v13_0_4_set_ppt_funcs(struct smu_context *smu)
smu->feature_map = smu_v13_0_4_feature_mask_map;
smu->table_map = smu_v13_0_4_table_map;
smu->is_apu = true;
- smu->param_reg = SOC15_REG_OFFSET(MP1, 0, mmMP1_SMN_C2PMSG_82);
- smu->msg_reg = SOC15_REG_OFFSET(MP1, 0, mmMP1_SMN_C2PMSG_66);
- smu->resp_reg = SOC15_REG_OFFSET(MP1, 0, mmMP1_SMN_C2PMSG_90);
+
+ if (adev->ip_versions[MP1_HWIP][0] == IP_VERSION(13, 0, 4))
+ smu_v13_0_4_set_smu_mailbox_registers(smu);
+ else
+ smu_v13_0_set_smu_mailbox_registers(smu);
}
diff --git a/drivers/gpu/drm/amd/pm/swsmu/smu13/smu_v13_0_6_ppt.c b/drivers/gpu/drm/amd/pm/swsmu/smu13/smu_v13_0_6_ppt.c
new file mode 100644
index 000000000000..ea8f3d6fb98b
--- /dev/null
+++ b/drivers/gpu/drm/amd/pm/swsmu/smu13/smu_v13_0_6_ppt.c
@@ -0,0 +1,2069 @@
+/*
+ * Copyright 2021 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ */
+
+#define SWSMU_CODE_LAYER_L2
+
+#include <linux/firmware.h>
+#include "amdgpu.h"
+#include "amdgpu_smu.h"
+#include "atomfirmware.h"
+#include "amdgpu_atomfirmware.h"
+#include "amdgpu_atombios.h"
+#include "smu_v13_0_6_pmfw.h"
+#include "smu13_driver_if_v13_0_6.h"
+#include "smu_v13_0_6_ppsmc.h"
+#include "soc15_common.h"
+#include "atom.h"
+#include "power_state.h"
+#include "smu_v13_0.h"
+#include "smu_v13_0_6_ppt.h"
+#include "nbio/nbio_7_4_offset.h"
+#include "nbio/nbio_7_4_sh_mask.h"
+#include "thm/thm_11_0_2_offset.h"
+#include "thm/thm_11_0_2_sh_mask.h"
+#include "amdgpu_xgmi.h"
+#include <linux/pci.h>
+#include "amdgpu_ras.h"
+#include "smu_cmn.h"
+#include "mp/mp_13_0_6_offset.h"
+#include "mp/mp_13_0_6_sh_mask.h"
+
+#undef MP1_Public
+#undef smnMP1_FIRMWARE_FLAGS
+
+/* TODO: Check final register offsets */
+#define MP1_Public 0x03b00000
+#define smnMP1_FIRMWARE_FLAGS 0x3010028
+/*
+ * DO NOT use these for err/warn/info/debug messages.
+ * Use dev_err, dev_warn, dev_info and dev_dbg instead.
+ * They are more MGPU friendly.
+ */
+#undef pr_err
+#undef pr_warn
+#undef pr_info
+#undef pr_debug
+
+#define to_amdgpu_device(x) (container_of(x, struct amdgpu_device, pm.smu_i2c))
+
+#define SMU_13_0_6_FEA_MAP(smu_feature, smu_13_0_6_feature) \
+ [smu_feature] = { 1, (smu_13_0_6_feature) }
+
+#define FEATURE_MASK(feature) (1ULL << feature)
+#define SMC_DPM_FEATURE \
+ (FEATURE_MASK(FEATURE_DATA_CALCULATION) | \
+ FEATURE_MASK(FEATURE_DPM_GFXCLK) | FEATURE_MASK(FEATURE_DPM_UCLK) | \
+ FEATURE_MASK(FEATURE_DPM_SOCCLK) | FEATURE_MASK(FEATURE_DPM_FCLK) | \
+ FEATURE_MASK(FEATURE_DPM_LCLK) | FEATURE_MASK(FEATURE_DPM_XGMI) | \
+ FEATURE_MASK(FEATURE_DPM_VCN))
+
+/* possible frequency drift (1Mhz) */
+#define EPSILON 1
+
+#define smnPCIE_ESM_CTRL 0x111003D0
+
+static const struct cmn2asic_msg_mapping smu_v13_0_6_message_map[SMU_MSG_MAX_COUNT] = {
+ MSG_MAP(TestMessage, PPSMC_MSG_TestMessage, 0),
+ MSG_MAP(GetSmuVersion, PPSMC_MSG_GetSmuVersion, 1),
+ MSG_MAP(GetDriverIfVersion, PPSMC_MSG_GetDriverIfVersion, 1),
+ MSG_MAP(EnableAllSmuFeatures, PPSMC_MSG_EnableAllSmuFeatures, 1),
+ MSG_MAP(DisableAllSmuFeatures, PPSMC_MSG_DisableAllSmuFeatures, 1),
+ MSG_MAP(RequestI2cTransaction, PPSMC_MSG_RequestI2cTransaction, 0),
+ MSG_MAP(GetMetricsTable, PPSMC_MSG_GetMetricsTable, 1),
+ MSG_MAP(GetEnabledSmuFeaturesHigh, PPSMC_MSG_GetEnabledSmuFeaturesHigh, 1),
+ MSG_MAP(GetEnabledSmuFeaturesLow, PPSMC_MSG_GetEnabledSmuFeaturesLow, 1),
+ MSG_MAP(SetDriverDramAddrHigh, PPSMC_MSG_SetDriverDramAddrHigh, 1),
+ MSG_MAP(SetDriverDramAddrLow, PPSMC_MSG_SetDriverDramAddrLow, 1),
+ MSG_MAP(SetToolsDramAddrHigh, PPSMC_MSG_SetToolsDramAddrHigh, 0),
+ MSG_MAP(SetToolsDramAddrLow, PPSMC_MSG_SetToolsDramAddrLow, 0),
+ MSG_MAP(SetSoftMinByFreq, PPSMC_MSG_SetSoftMinByFreq, 0),
+ MSG_MAP(SetSoftMaxByFreq, PPSMC_MSG_SetSoftMaxByFreq, 0),
+ MSG_MAP(GetMinDpmFreq, PPSMC_MSG_GetMinDpmFreq, 0),
+ MSG_MAP(GetMaxDpmFreq, PPSMC_MSG_GetMaxDpmFreq, 0),
+ MSG_MAP(GetDpmFreqByIndex, PPSMC_MSG_GetDpmFreqByIndex, 1),
+ MSG_MAP(SetPptLimit, PPSMC_MSG_SetPptLimit, 0),
+ MSG_MAP(GetPptLimit, PPSMC_MSG_GetPptLimit, 1),
+ MSG_MAP(GfxDeviceDriverReset, PPSMC_MSG_GfxDriverReset, 0),
+ MSG_MAP(DramLogSetDramAddrHigh, PPSMC_MSG_DramLogSetDramAddrHigh, 0),
+ MSG_MAP(DramLogSetDramAddrLow, PPSMC_MSG_DramLogSetDramAddrLow, 0),
+ MSG_MAP(DramLogSetDramSize, PPSMC_MSG_DramLogSetDramSize, 0),
+ MSG_MAP(GetDebugData, PPSMC_MSG_GetDebugData, 0),
+ MSG_MAP(SetNumBadHbmPagesRetired, PPSMC_MSG_SetNumBadHbmPagesRetired, 0),
+ MSG_MAP(DFCstateControl, PPSMC_MSG_DFCstateControl, 0),
+ MSG_MAP(GetGmiPwrDnHyst, PPSMC_MSG_GetGmiPwrDnHyst, 0),
+ MSG_MAP(SetGmiPwrDnHyst, PPSMC_MSG_SetGmiPwrDnHyst, 0),
+ MSG_MAP(GmiPwrDnControl, PPSMC_MSG_GmiPwrDnControl, 0),
+ MSG_MAP(EnterGfxoff, PPSMC_MSG_EnterGfxoff, 0),
+ MSG_MAP(ExitGfxoff, PPSMC_MSG_ExitGfxoff, 0),
+ MSG_MAP(EnableDeterminism, PPSMC_MSG_EnableDeterminism, 0),
+ MSG_MAP(DisableDeterminism, PPSMC_MSG_DisableDeterminism, 0),
+ MSG_MAP(GfxDriverResetRecovery, PPSMC_MSG_GfxDriverResetRecovery, 0),
+ MSG_MAP(GetMinGfxclkFrequency, PPSMC_MSG_GetMinGfxDpmFreq, 0),
+ MSG_MAP(GetMaxGfxclkFrequency, PPSMC_MSG_GetMaxGfxDpmFreq, 0),
+ MSG_MAP(SetSoftMinGfxclk, PPSMC_MSG_SetSoftMinGfxClk, 0),
+ MSG_MAP(SetSoftMaxGfxClk, PPSMC_MSG_SetSoftMaxGfxClk, 0),
+};
+
+static const struct cmn2asic_mapping smu_v13_0_6_clk_map[SMU_CLK_COUNT] = {
+ CLK_MAP(SOCCLK, PPCLK_SOCCLK),
+ CLK_MAP(FCLK, PPCLK_FCLK),
+ CLK_MAP(UCLK, PPCLK_UCLK),
+ CLK_MAP(MCLK, PPCLK_UCLK),
+ CLK_MAP(DCLK, PPCLK_DCLK),
+ CLK_MAP(VCLK, PPCLK_VCLK),
+ CLK_MAP(LCLK, PPCLK_LCLK),
+};
+
+static const struct cmn2asic_mapping smu_v13_0_6_feature_mask_map[SMU_FEATURE_COUNT] = {
+ SMU_13_0_6_FEA_MAP(SMU_FEATURE_DATA_CALCULATIONS_BIT, FEATURE_DATA_CALCULATION),
+ SMU_13_0_6_FEA_MAP(SMU_FEATURE_DPM_GFXCLK_BIT, FEATURE_DPM_GFXCLK),
+ SMU_13_0_6_FEA_MAP(SMU_FEATURE_DPM_UCLK_BIT, FEATURE_DPM_UCLK),
+ SMU_13_0_6_FEA_MAP(SMU_FEATURE_DPM_SOCCLK_BIT, FEATURE_DPM_SOCCLK),
+ SMU_13_0_6_FEA_MAP(SMU_FEATURE_DPM_FCLK_BIT, FEATURE_DPM_FCLK),
+ SMU_13_0_6_FEA_MAP(SMU_FEATURE_DPM_LCLK_BIT, FEATURE_DPM_LCLK),
+ SMU_13_0_6_FEA_MAP(SMU_FEATURE_DPM_VCLK_BIT, FEATURE_DPM_VCN),
+ SMU_13_0_6_FEA_MAP(SMU_FEATURE_DPM_DCLK_BIT, FEATURE_DPM_VCN),
+ SMU_13_0_6_FEA_MAP(SMU_FEATURE_DPM_XGMI_BIT, FEATURE_DPM_XGMI),
+ SMU_13_0_6_FEA_MAP(SMU_FEATURE_DS_GFXCLK_BIT, FEATURE_DS_GFXCLK),
+ SMU_13_0_6_FEA_MAP(SMU_FEATURE_DS_SOCCLK_BIT, FEATURE_DS_SOCCLK),
+ SMU_13_0_6_FEA_MAP(SMU_FEATURE_DS_LCLK_BIT, FEATURE_DS_LCLK),
+ SMU_13_0_6_FEA_MAP(SMU_FEATURE_DS_FCLK_BIT, FEATURE_DS_FCLK),
+ SMU_13_0_6_FEA_MAP(SMU_FEATURE_VCN_DPM_BIT, FEATURE_DPM_VCN),
+ SMU_13_0_6_FEA_MAP(SMU_FEATURE_PPT_BIT, FEATURE_PPT),
+ SMU_13_0_6_FEA_MAP(SMU_FEATURE_TDC_BIT, FEATURE_TDC),
+ SMU_13_0_6_FEA_MAP(SMU_FEATURE_APCC_DFLL_BIT, FEATURE_APCC_DFLL),
+ SMU_13_0_6_FEA_MAP(SMU_FEATURE_MP1_CG_BIT, FEATURE_SMU_CG),
+ SMU_13_0_6_FEA_MAP(SMU_FEATURE_GFXOFF_BIT, FEATURE_GFXOFF),
+ SMU_13_0_6_FEA_MAP(SMU_FEATURE_FW_CTF_BIT, FEATURE_FW_CTF),
+ SMU_13_0_6_FEA_MAP(SMU_FEATURE_THERMAL_BIT, FEATURE_THERMAL),
+ SMU_13_0_6_FEA_MAP(SMU_FEATURE_XGMI_PER_LINK_PWR_DWN_BIT, FEATURE_XGMI_PER_LINK_PWR_DOWN),
+ SMU_13_0_6_FEA_MAP(SMU_FEATURE_DF_CSTATE_BIT, FEATURE_DF_CSTATE),
+};
+
+#define TABLE_PMSTATUSLOG 0
+#define TABLE_SMU_METRICS 1
+#define TABLE_I2C_COMMANDS 2
+#define TABLE_COUNT 3
+
+static const struct cmn2asic_mapping smu_v13_0_6_table_map[SMU_TABLE_COUNT] = {
+ TAB_MAP(PMSTATUSLOG),
+ TAB_MAP(SMU_METRICS),
+ TAB_MAP(I2C_COMMANDS),
+};
+
+#define THROTTLER_PROCHOT_GFX_BIT 0
+#define THROTTLER_PPT_BIT 1
+#define THROTTLER_TEMP_SOC_BIT 2
+#define THROTTLER_TEMP_VR_GFX_BIT 3
+#define THROTTLER_TEMP_HBM_BIT 4
+
+static const uint8_t smu_v13_0_6_throttler_map[] = {
+ [THROTTLER_PPT_BIT] = (SMU_THROTTLER_PPT0_BIT),
+ [THROTTLER_TEMP_SOC_BIT] = (SMU_THROTTLER_TEMP_GPU_BIT),
+ [THROTTLER_TEMP_HBM_BIT] = (SMU_THROTTLER_TEMP_MEM_BIT),
+ [THROTTLER_TEMP_VR_GFX_BIT] = (SMU_THROTTLER_TEMP_VR_GFX_BIT),
+ [THROTTLER_PROCHOT_GFX_BIT] = (SMU_THROTTLER_PROCHOT_GFX_BIT),
+};
+
+struct PPTable_t {
+ uint32_t MaxSocketPowerLimit;
+ uint32_t MaxGfxclkFrequency;
+ uint32_t MinGfxclkFrequency;
+ uint32_t FclkFrequencyTable[4];
+ uint32_t UclkFrequencyTable[4];
+ uint32_t SocclkFrequencyTable[4];
+ uint32_t VclkFrequencyTable[4];
+ uint32_t DclkFrequencyTable[4];
+ uint32_t LclkFrequencyTable[4];
+ uint32_t MaxLclkDpmRange;
+ uint32_t MinLclkDpmRange;
+ bool Init;
+};
+
+#define SMUQ10_TO_UINT(x) ((x) >> 10)
+
+struct smu_v13_0_6_dpm_map {
+ enum smu_clk_type clk_type;
+ uint32_t feature_num;
+ struct smu_13_0_dpm_table *dpm_table;
+ uint32_t *freq_table;
+};
+
+static int smu_v13_0_6_tables_init(struct smu_context *smu)
+{
+ struct smu_table_context *smu_table = &smu->smu_table;
+ struct smu_table *tables = smu_table->tables;
+ struct amdgpu_device *adev = smu->adev;
+
+ if (!(adev->flags & AMD_IS_APU))
+ SMU_TABLE_INIT(tables, SMU_TABLE_PMSTATUSLOG, SMU13_TOOL_SIZE,
+ PAGE_SIZE, AMDGPU_GEM_DOMAIN_VRAM);
+
+ SMU_TABLE_INIT(tables, SMU_TABLE_SMU_METRICS, sizeof(MetricsTable_t),
+ PAGE_SIZE, AMDGPU_GEM_DOMAIN_VRAM);
+
+ SMU_TABLE_INIT(tables, SMU_TABLE_I2C_COMMANDS, sizeof(SwI2cRequest_t),
+ PAGE_SIZE, AMDGPU_GEM_DOMAIN_VRAM);
+
+ smu_table->metrics_table = kzalloc(sizeof(MetricsTable_t), GFP_KERNEL);
+ if (!smu_table->metrics_table)
+ return -ENOMEM;
+ smu_table->metrics_time = 0;
+
+ smu_table->gpu_metrics_table_size = sizeof(struct gpu_metrics_v1_3);
+ smu_table->gpu_metrics_table =
+ kzalloc(smu_table->gpu_metrics_table_size, GFP_KERNEL);
+ if (!smu_table->gpu_metrics_table) {
+ kfree(smu_table->metrics_table);
+ return -ENOMEM;
+ }
+
+ smu_table->driver_pptable =
+ kzalloc(sizeof(struct PPTable_t), GFP_KERNEL);
+ if (!smu_table->driver_pptable) {
+ kfree(smu_table->metrics_table);
+ kfree(smu_table->gpu_metrics_table);
+ return -ENOMEM;
+ }
+
+ return 0;
+}
+
+static int smu_v13_0_6_allocate_dpm_context(struct smu_context *smu)
+{
+ struct smu_dpm_context *smu_dpm = &smu->smu_dpm;
+
+ smu_dpm->dpm_context =
+ kzalloc(sizeof(struct smu_13_0_dpm_context), GFP_KERNEL);
+ if (!smu_dpm->dpm_context)
+ return -ENOMEM;
+ smu_dpm->dpm_context_size = sizeof(struct smu_13_0_dpm_context);
+
+ return 0;
+}
+
+static int smu_v13_0_6_init_smc_tables(struct smu_context *smu)
+{
+ int ret = 0;
+
+ ret = smu_v13_0_6_tables_init(smu);
+ if (ret)
+ return ret;
+
+ ret = smu_v13_0_6_allocate_dpm_context(smu);
+
+ return ret;
+}
+
+static int smu_v13_0_6_get_allowed_feature_mask(struct smu_context *smu,
+ uint32_t *feature_mask,
+ uint32_t num)
+{
+ if (num > 2)
+ return -EINVAL;
+
+ /* pptable will handle the features to enable */
+ memset(feature_mask, 0xFF, sizeof(uint32_t) * num);
+
+ return 0;
+}
+
+static int smu_v13_0_6_get_metrics_table(struct smu_context *smu,
+ void *metrics_table, bool bypass_cache)
+{
+ struct smu_table_context *smu_table = &smu->smu_table;
+ uint32_t table_size = smu_table->tables[SMU_TABLE_SMU_METRICS].size;
+ struct smu_table *table = &smu_table->driver_table;
+ int ret;
+
+ if (bypass_cache || !smu_table->metrics_time ||
+ time_after(jiffies,
+ smu_table->metrics_time + msecs_to_jiffies(1))) {
+ ret = smu_cmn_send_smc_msg(smu, SMU_MSG_GetMetricsTable, NULL);
+ if (ret) {
+ dev_info(smu->adev->dev,
+ "Failed to export SMU metrics table!\n");
+ return ret;
+ }
+
+ amdgpu_asic_invalidate_hdp(smu->adev, NULL);
+ memcpy(smu_table->metrics_table, table->cpu_addr, table_size);
+
+ smu_table->metrics_time = jiffies;
+ }
+
+ if (metrics_table)
+ memcpy(metrics_table, smu_table->metrics_table, table_size);
+
+ return 0;
+}
+
+static int smu_v13_0_6_setup_driver_pptable(struct smu_context *smu)
+{
+ struct smu_table_context *smu_table = &smu->smu_table;
+ MetricsTable_t *metrics = (MetricsTable_t *)smu_table->metrics_table;
+ struct PPTable_t *pptable =
+ (struct PPTable_t *)smu_table->driver_pptable;
+ int ret;
+ int i;
+
+ /* Store one-time values in driver PPTable */
+ if (!pptable->Init) {
+ ret = smu_v13_0_6_get_metrics_table(smu, NULL, false);
+ if (ret)
+ return ret;
+
+ pptable->MaxSocketPowerLimit =
+ SMUQ10_TO_UINT(metrics->MaxSocketPowerLimit);
+ pptable->MaxGfxclkFrequency =
+ SMUQ10_TO_UINT(metrics->MaxGfxclkFrequency);
+ pptable->MinGfxclkFrequency =
+ SMUQ10_TO_UINT(metrics->MinGfxclkFrequency);
+
+ for (i = 0; i < 4; ++i) {
+ pptable->FclkFrequencyTable[i] =
+ SMUQ10_TO_UINT(metrics->FclkFrequencyTable[i]);
+ pptable->UclkFrequencyTable[i] =
+ SMUQ10_TO_UINT(metrics->UclkFrequencyTable[i]);
+ pptable->SocclkFrequencyTable[i] = SMUQ10_TO_UINT(
+ metrics->SocclkFrequencyTable[i]);
+ pptable->VclkFrequencyTable[i] =
+ SMUQ10_TO_UINT(metrics->VclkFrequencyTable[i]);
+ pptable->DclkFrequencyTable[i] =
+ SMUQ10_TO_UINT(metrics->DclkFrequencyTable[i]);
+ pptable->LclkFrequencyTable[i] =
+ SMUQ10_TO_UINT(metrics->LclkFrequencyTable[i]);
+ }
+
+ pptable->Init = true;
+ }
+
+ return 0;
+}
+
+static int smu_v13_0_6_get_dpm_ultimate_freq(struct smu_context *smu,
+ enum smu_clk_type clk_type,
+ uint32_t *min, uint32_t *max)
+{
+ struct smu_table_context *smu_table = &smu->smu_table;
+ struct PPTable_t *pptable =
+ (struct PPTable_t *)smu_table->driver_pptable;
+ uint32_t clock_limit = 0, param;
+ int ret = 0, clk_id = 0;
+
+ if (!smu_cmn_clk_dpm_is_enabled(smu, clk_type)) {
+ switch (clk_type) {
+ case SMU_MCLK:
+ case SMU_UCLK:
+ if (pptable->Init)
+ clock_limit = pptable->UclkFrequencyTable[0];
+ break;
+ case SMU_GFXCLK:
+ case SMU_SCLK:
+ if (pptable->Init)
+ clock_limit = pptable->MinGfxclkFrequency;
+ break;
+ case SMU_SOCCLK:
+ if (pptable->Init)
+ clock_limit = pptable->UclkFrequencyTable[0];
+ break;
+ case SMU_FCLK:
+ if (pptable->Init)
+ clock_limit = pptable->FclkFrequencyTable[0];
+ break;
+ case SMU_VCLK:
+ if (pptable->Init)
+ clock_limit = pptable->VclkFrequencyTable[0];
+ break;
+ case SMU_DCLK:
+ if (pptable->Init)
+ clock_limit = pptable->DclkFrequencyTable[0];
+ break;
+ default:
+ break;
+ }
+
+ if (min)
+ *min = clock_limit;
+
+ if (max)
+ *max = clock_limit;
+
+ return 0;
+ }
+
+ if (!(clk_type == SMU_GFXCLK || clk_type == SMU_SCLK)) {
+ clk_id = smu_cmn_to_asic_specific_index(
+ smu, CMN2ASIC_MAPPING_CLK, clk_type);
+ if (clk_id < 0) {
+ ret = -EINVAL;
+ goto failed;
+ }
+ param = (clk_id & 0xffff) << 16;
+ }
+
+ if (max) {
+ if (clk_type == SMU_GFXCLK || clk_type == SMU_SCLK)
+ ret = smu_cmn_send_smc_msg(
+ smu, SMU_MSG_GetMaxGfxclkFrequency, max);
+ else
+ ret = smu_cmn_send_smc_msg_with_param(
+ smu, SMU_MSG_GetMaxDpmFreq, param, max);
+ if (ret)
+ goto failed;
+ }
+
+ if (min) {
+ if (clk_type == SMU_GFXCLK || clk_type == SMU_SCLK)
+ ret = smu_cmn_send_smc_msg(
+ smu, SMU_MSG_GetMinGfxclkFrequency, min);
+ else
+ ret = smu_cmn_send_smc_msg_with_param(
+ smu, SMU_MSG_GetMinDpmFreq, param, min);
+ }
+
+failed:
+ return ret;
+}
+
+static int smu_v13_0_6_get_dpm_level_count(struct smu_context *smu,
+ enum smu_clk_type clk_type,
+ uint32_t *levels)
+{
+ int ret;
+
+ ret = smu_v13_0_get_dpm_freq_by_index(smu, clk_type, 0xff, levels);
+ if (!ret)
+ ++(*levels);
+
+ return ret;
+}
+
+static int smu_v13_0_6_set_default_dpm_table(struct smu_context *smu)
+{
+ struct smu_13_0_dpm_context *dpm_context = smu->smu_dpm.dpm_context;
+ struct smu_table_context *smu_table = &smu->smu_table;
+ struct smu_13_0_dpm_table *dpm_table = NULL;
+ struct PPTable_t *pptable =
+ (struct PPTable_t *)smu_table->driver_pptable;
+ uint32_t gfxclkmin, gfxclkmax, levels;
+ int ret = 0, i, j;
+ struct smu_v13_0_6_dpm_map dpm_map[] = {
+ { SMU_SOCCLK, SMU_FEATURE_DPM_SOCCLK_BIT,
+ &dpm_context->dpm_tables.soc_table,
+ pptable->SocclkFrequencyTable },
+ { SMU_UCLK, SMU_FEATURE_DPM_UCLK_BIT,
+ &dpm_context->dpm_tables.uclk_table,
+ pptable->UclkFrequencyTable },
+ { SMU_FCLK, SMU_FEATURE_DPM_FCLK_BIT,
+ &dpm_context->dpm_tables.fclk_table,
+ pptable->FclkFrequencyTable },
+ { SMU_VCLK, SMU_FEATURE_DPM_VCLK_BIT,
+ &dpm_context->dpm_tables.vclk_table,
+ pptable->VclkFrequencyTable },
+ { SMU_DCLK, SMU_FEATURE_DPM_DCLK_BIT,
+ &dpm_context->dpm_tables.dclk_table,
+ pptable->DclkFrequencyTable },
+ };
+
+ smu_v13_0_6_setup_driver_pptable(smu);
+
+ /* gfxclk dpm table setup */
+ dpm_table = &dpm_context->dpm_tables.gfx_table;
+ if (smu_cmn_feature_is_enabled(smu, SMU_FEATURE_DPM_GFXCLK_BIT)) {
+ /* In the case of gfxclk, only fine-grained dpm is honored.
+ * Get min/max values from FW.
+ */
+ ret = smu_v13_0_6_get_dpm_ultimate_freq(smu, SMU_GFXCLK,
+ &gfxclkmin, &gfxclkmax);
+ if (ret)
+ return ret;
+
+ dpm_table->count = 2;
+ dpm_table->dpm_levels[0].value = gfxclkmin;
+ dpm_table->dpm_levels[0].enabled = true;
+ dpm_table->dpm_levels[1].value = gfxclkmax;
+ dpm_table->dpm_levels[1].enabled = true;
+ dpm_table->min = dpm_table->dpm_levels[0].value;
+ dpm_table->max = dpm_table->dpm_levels[1].value;
+ } else {
+ dpm_table->count = 1;
+ dpm_table->dpm_levels[0].value = pptable->MinGfxclkFrequency;
+ dpm_table->dpm_levels[0].enabled = true;
+ dpm_table->min = dpm_table->dpm_levels[0].value;
+ dpm_table->max = dpm_table->dpm_levels[0].value;
+ }
+
+ for (j = 0; j < ARRAY_SIZE(dpm_map); j++) {
+ dpm_table = dpm_map[j].dpm_table;
+ levels = 1;
+ if (smu_cmn_feature_is_enabled(smu, dpm_map[j].feature_num)) {
+ ret = smu_v13_0_6_get_dpm_level_count(
+ smu, dpm_map[j].clk_type, &levels);
+ if (ret)
+ return ret;
+ }
+ dpm_table->count = levels;
+ for (i = 0; i < dpm_table->count; ++i) {
+ dpm_table->dpm_levels[i].value =
+ dpm_map[j].freq_table[i];
+ dpm_table->dpm_levels[i].enabled = true;
+
+ }
+ dpm_table->min = dpm_table->dpm_levels[0].value;
+ dpm_table->max = dpm_table->dpm_levels[levels - 1].value;
+
+ }
+
+ return 0;
+}
+
+static int smu_v13_0_6_setup_pptable(struct smu_context *smu)
+{
+ struct smu_table_context *table_context = &smu->smu_table;
+
+ /* TODO: PPTable is not available.
+ * 1) Find an alternate way to get 'PPTable values' here.
+ * 2) Check if there is SW CTF
+ */
+ table_context->thermal_controller_type = 0;
+
+ return 0;
+}
+
+static int smu_v13_0_6_check_fw_status(struct smu_context *smu)
+{
+ struct amdgpu_device *adev = smu->adev;
+ uint32_t mp1_fw_flags;
+
+ mp1_fw_flags =
+ RREG32_PCIE(MP1_Public | (smnMP1_FIRMWARE_FLAGS & 0xffffffff));
+
+ if ((mp1_fw_flags & MP1_FIRMWARE_FLAGS__INTERRUPTS_ENABLED_MASK) >>
+ MP1_FIRMWARE_FLAGS__INTERRUPTS_ENABLED__SHIFT)
+ return 0;
+
+ return -EIO;
+}
+
+static int smu_v13_0_6_populate_umd_state_clk(struct smu_context *smu)
+{
+ struct smu_13_0_dpm_context *dpm_context = smu->smu_dpm.dpm_context;
+ struct smu_13_0_dpm_table *gfx_table =
+ &dpm_context->dpm_tables.gfx_table;
+ struct smu_13_0_dpm_table *mem_table =
+ &dpm_context->dpm_tables.uclk_table;
+ struct smu_13_0_dpm_table *soc_table =
+ &dpm_context->dpm_tables.soc_table;
+ struct smu_umd_pstate_table *pstate_table = &smu->pstate_table;
+
+ pstate_table->gfxclk_pstate.min = gfx_table->min;
+ pstate_table->gfxclk_pstate.peak = gfx_table->max;
+ pstate_table->gfxclk_pstate.curr.min = gfx_table->min;
+ pstate_table->gfxclk_pstate.curr.max = gfx_table->max;
+
+ pstate_table->uclk_pstate.min = mem_table->min;
+ pstate_table->uclk_pstate.peak = mem_table->max;
+ pstate_table->uclk_pstate.curr.min = mem_table->min;
+ pstate_table->uclk_pstate.curr.max = mem_table->max;
+
+ pstate_table->socclk_pstate.min = soc_table->min;
+ pstate_table->socclk_pstate.peak = soc_table->max;
+ pstate_table->socclk_pstate.curr.min = soc_table->min;
+ pstate_table->socclk_pstate.curr.max = soc_table->max;
+
+ if (gfx_table->count > SMU_13_0_6_UMD_PSTATE_GFXCLK_LEVEL &&
+ mem_table->count > SMU_13_0_6_UMD_PSTATE_MCLK_LEVEL &&
+ soc_table->count > SMU_13_0_6_UMD_PSTATE_SOCCLK_LEVEL) {
+ pstate_table->gfxclk_pstate.standard =
+ gfx_table->dpm_levels[SMU_13_0_6_UMD_PSTATE_GFXCLK_LEVEL].value;
+ pstate_table->uclk_pstate.standard =
+ mem_table->dpm_levels[SMU_13_0_6_UMD_PSTATE_MCLK_LEVEL].value;
+ pstate_table->socclk_pstate.standard =
+ soc_table->dpm_levels[SMU_13_0_6_UMD_PSTATE_SOCCLK_LEVEL].value;
+ } else {
+ pstate_table->gfxclk_pstate.standard =
+ pstate_table->gfxclk_pstate.min;
+ pstate_table->uclk_pstate.standard =
+ pstate_table->uclk_pstate.min;
+ pstate_table->socclk_pstate.standard =
+ pstate_table->socclk_pstate.min;
+ }
+
+ return 0;
+}
+
+static int smu_v13_0_6_get_clk_table(struct smu_context *smu,
+ struct pp_clock_levels_with_latency *clocks,
+ struct smu_13_0_dpm_table *dpm_table)
+{
+ int i, count;
+
+ count = (dpm_table->count > MAX_NUM_CLOCKS) ? MAX_NUM_CLOCKS :
+ dpm_table->count;
+ clocks->num_levels = count;
+
+ for (i = 0; i < count; i++) {
+ clocks->data[i].clocks_in_khz =
+ dpm_table->dpm_levels[i].value * 1000;
+ clocks->data[i].latency_in_us = 0;
+ }
+
+ return 0;
+}
+
+static int smu_v13_0_6_freqs_in_same_level(int32_t frequency1,
+ int32_t frequency2)
+{
+ return (abs(frequency1 - frequency2) <= EPSILON);
+}
+
+static uint32_t smu_v13_0_6_get_throttler_status(struct smu_context *smu,
+ MetricsTable_t *metrics)
+{
+ uint32_t throttler_status = 0;
+
+ throttler_status |= metrics->ProchotResidencyAcc > 0 ? 1U << THROTTLER_PROCHOT_GFX_BIT : 0;
+ throttler_status |= metrics->PptResidencyAcc > 0 ? 1U << THROTTLER_PPT_BIT : 0;
+ throttler_status |= metrics->SocketThmResidencyAcc > 0 ? 1U << THROTTLER_TEMP_SOC_BIT : 0;
+ throttler_status |= metrics->VrThmResidencyAcc > 0 ? 1U << THROTTLER_TEMP_VR_GFX_BIT : 0;
+ throttler_status |= metrics->HbmThmResidencyAcc > 0 ? 1U << THROTTLER_TEMP_HBM_BIT : 0;
+
+ return throttler_status;
+}
+
+static int smu_v13_0_6_get_smu_metrics_data(struct smu_context *smu,
+ MetricsMember_t member,
+ uint32_t *value)
+{
+ struct smu_table_context *smu_table = &smu->smu_table;
+ MetricsTable_t *metrics = (MetricsTable_t *)smu_table->metrics_table;
+ int ret = 0;
+
+ ret = smu_v13_0_6_get_metrics_table(smu, NULL, false);
+ if (ret)
+ return ret;
+
+ /* For clocks with multiple instances, only report the first one */
+ switch (member) {
+ case METRICS_CURR_GFXCLK:
+ case METRICS_AVERAGE_GFXCLK:
+ *value = 0;
+ break;
+ case METRICS_CURR_SOCCLK:
+ case METRICS_AVERAGE_SOCCLK:
+ *value = SMUQ10_TO_UINT(metrics->SocclkFrequency[0]);
+ break;
+ case METRICS_CURR_UCLK:
+ case METRICS_AVERAGE_UCLK:
+ *value = SMUQ10_TO_UINT(metrics->UclkFrequency);
+ break;
+ case METRICS_CURR_VCLK:
+ *value = SMUQ10_TO_UINT(metrics->VclkFrequency[0]);
+ break;
+ case METRICS_CURR_DCLK:
+ *value = SMUQ10_TO_UINT(metrics->DclkFrequency[0]);
+ break;
+ case METRICS_CURR_FCLK:
+ *value = SMUQ10_TO_UINT(metrics->FclkFrequency);
+ break;
+ case METRICS_AVERAGE_GFXACTIVITY:
+ *value = SMUQ10_TO_UINT(metrics->SocketGfxBusy);
+ break;
+ case METRICS_AVERAGE_MEMACTIVITY:
+ *value = SMUQ10_TO_UINT(metrics->DramBandwidthUtilization);
+ break;
+ case METRICS_AVERAGE_SOCKETPOWER:
+ *value = SMUQ10_TO_UINT(metrics->SocketPower) << 8;
+ break;
+ case METRICS_TEMPERATURE_HOTSPOT:
+ *value = SMUQ10_TO_UINT(metrics->MaxSocketTemperature);
+ break;
+ case METRICS_TEMPERATURE_MEM:
+ *value = SMUQ10_TO_UINT(metrics->MaxHbmTemperature);
+ break;
+ /* This is the max of all VRs and not just SOC VR.
+ * No need to define another data type for the same.
+ */
+ case METRICS_TEMPERATURE_VRSOC:
+ *value = SMUQ10_TO_UINT(metrics->MaxVrTemperature);
+ break;
+ case METRICS_THROTTLER_STATUS:
+ *value = smu_v13_0_6_get_throttler_status(smu, metrics);
+ break;
+ default:
+ *value = UINT_MAX;
+ break;
+ }
+
+ return ret;
+}
+
+static int smu_v13_0_6_get_current_clk_freq_by_table(struct smu_context *smu,
+ enum smu_clk_type clk_type,
+ uint32_t *value)
+{
+ MetricsMember_t member_type;
+
+ if (!value)
+ return -EINVAL;
+
+ switch (clk_type) {
+ case SMU_GFXCLK:
+ member_type = METRICS_CURR_GFXCLK;
+ break;
+ case SMU_UCLK:
+ member_type = METRICS_CURR_UCLK;
+ break;
+ case SMU_SOCCLK:
+ member_type = METRICS_CURR_SOCCLK;
+ break;
+ case SMU_VCLK:
+ member_type = METRICS_CURR_VCLK;
+ break;
+ case SMU_DCLK:
+ member_type = METRICS_CURR_DCLK;
+ break;
+ case SMU_FCLK:
+ member_type = METRICS_CURR_FCLK;
+ break;
+ default:
+ return -EINVAL;
+ }
+
+ return smu_v13_0_6_get_smu_metrics_data(smu, member_type, value);
+}
+
+static int smu_v13_0_6_print_clk_levels(struct smu_context *smu,
+ enum smu_clk_type type, char *buf)
+{
+ int i, now, size = 0;
+ int ret = 0;
+ struct smu_umd_pstate_table *pstate_table = &smu->pstate_table;
+ struct pp_clock_levels_with_latency clocks;
+ struct smu_13_0_dpm_table *single_dpm_table;
+ struct smu_dpm_context *smu_dpm = &smu->smu_dpm;
+ struct smu_13_0_dpm_context *dpm_context = NULL;
+ uint32_t display_levels;
+ uint32_t freq_values[3] = { 0 };
+ uint32_t min_clk, max_clk;
+
+ smu_cmn_get_sysfs_buf(&buf, &size);
+
+ if (amdgpu_ras_intr_triggered()) {
+ size += sysfs_emit_at(buf, size, "unavailable\n");
+ return size;
+ }
+
+ dpm_context = smu_dpm->dpm_context;
+
+ switch (type) {
+ case SMU_OD_SCLK:
+ size += sysfs_emit_at(buf, size, "%s:\n", "GFXCLK");
+ fallthrough;
+ case SMU_SCLK:
+ ret = smu_v13_0_6_get_current_clk_freq_by_table(smu, SMU_GFXCLK,
+ &now);
+ if (ret) {
+ dev_err(smu->adev->dev,
+ "Attempt to get current gfx clk Failed!");
+ return ret;
+ }
+
+ single_dpm_table = &(dpm_context->dpm_tables.gfx_table);
+ ret = smu_v13_0_6_get_clk_table(smu, &clocks, single_dpm_table);
+ if (ret) {
+ dev_err(smu->adev->dev,
+ "Attempt to get gfx clk levels Failed!");
+ return ret;
+ }
+
+ display_levels = clocks.num_levels;
+
+ min_clk = pstate_table->gfxclk_pstate.curr.min;
+ max_clk = pstate_table->gfxclk_pstate.curr.max;
+
+ freq_values[0] = min_clk;
+ freq_values[1] = max_clk;
+
+ /* fine-grained dpm has only 2 levels */
+ if (now > min_clk && now < max_clk) {
+ display_levels = clocks.num_levels + 1;
+ freq_values[2] = max_clk;
+ freq_values[1] = now;
+ }
+
+ /*
+ * For DPM disabled case, there will be only one clock level.
+ * And it's safe to assume that is always the current clock.
+ */
+ if (display_levels == clocks.num_levels) {
+ for (i = 0; i < clocks.num_levels; i++)
+ size += sysfs_emit_at(
+ buf, size, "%d: %uMhz %s\n", i,
+ freq_values[i],
+ (clocks.num_levels == 1) ?
+ "*" :
+ (smu_v13_0_6_freqs_in_same_level(
+ freq_values[i], now) ?
+ "*" :
+ ""));
+ } else {
+ for (i = 0; i < display_levels; i++)
+ size += sysfs_emit_at(buf, size,
+ "%d: %uMhz %s\n", i,
+ freq_values[i],
+ i == 1 ? "*" : "");
+ }
+
+ break;
+
+ case SMU_OD_MCLK:
+ size += sysfs_emit_at(buf, size, "%s:\n", "MCLK");
+ fallthrough;
+ case SMU_MCLK:
+ ret = smu_v13_0_6_get_current_clk_freq_by_table(smu, SMU_UCLK,
+ &now);
+ if (ret) {
+ dev_err(smu->adev->dev,
+ "Attempt to get current mclk Failed!");
+ return ret;
+ }
+
+ single_dpm_table = &(dpm_context->dpm_tables.uclk_table);
+ ret = smu_v13_0_6_get_clk_table(smu, &clocks, single_dpm_table);
+ if (ret) {
+ dev_err(smu->adev->dev,
+ "Attempt to get memory clk levels Failed!");
+ return ret;
+ }
+
+ for (i = 0; i < clocks.num_levels; i++)
+ size += sysfs_emit_at(
+ buf, size, "%d: %uMhz %s\n", i,
+ clocks.data[i].clocks_in_khz / 1000,
+ (clocks.num_levels == 1) ?
+ "*" :
+ (smu_v13_0_6_freqs_in_same_level(
+ clocks.data[i].clocks_in_khz /
+ 1000,
+ now) ?
+ "*" :
+ ""));
+ break;
+
+ case SMU_SOCCLK:
+ ret = smu_v13_0_6_get_current_clk_freq_by_table(smu, SMU_SOCCLK,
+ &now);
+ if (ret) {
+ dev_err(smu->adev->dev,
+ "Attempt to get current socclk Failed!");
+ return ret;
+ }
+
+ single_dpm_table = &(dpm_context->dpm_tables.soc_table);
+ ret = smu_v13_0_6_get_clk_table(smu, &clocks, single_dpm_table);
+ if (ret) {
+ dev_err(smu->adev->dev,
+ "Attempt to get socclk levels Failed!");
+ return ret;
+ }
+
+ for (i = 0; i < clocks.num_levels; i++)
+ size += sysfs_emit_at(
+ buf, size, "%d: %uMhz %s\n", i,
+ clocks.data[i].clocks_in_khz / 1000,
+ (clocks.num_levels == 1) ?
+ "*" :
+ (smu_v13_0_6_freqs_in_same_level(
+ clocks.data[i].clocks_in_khz /
+ 1000,
+ now) ?
+ "*" :
+ ""));
+ break;
+
+ case SMU_FCLK:
+ ret = smu_v13_0_6_get_current_clk_freq_by_table(smu, SMU_FCLK,
+ &now);
+ if (ret) {
+ dev_err(smu->adev->dev,
+ "Attempt to get current fclk Failed!");
+ return ret;
+ }
+
+ single_dpm_table = &(dpm_context->dpm_tables.fclk_table);
+ ret = smu_v13_0_6_get_clk_table(smu, &clocks, single_dpm_table);
+ if (ret) {
+ dev_err(smu->adev->dev,
+ "Attempt to get fclk levels Failed!");
+ return ret;
+ }
+
+ for (i = 0; i < single_dpm_table->count; i++)
+ size += sysfs_emit_at(
+ buf, size, "%d: %uMhz %s\n", i,
+ single_dpm_table->dpm_levels[i].value,
+ (clocks.num_levels == 1) ?
+ "*" :
+ (smu_v13_0_6_freqs_in_same_level(
+ clocks.data[i].clocks_in_khz /
+ 1000,
+ now) ?
+ "*" :
+ ""));
+ break;
+
+ case SMU_VCLK:
+ ret = smu_v13_0_6_get_current_clk_freq_by_table(smu, SMU_VCLK,
+ &now);
+ if (ret) {
+ dev_err(smu->adev->dev,
+ "Attempt to get current vclk Failed!");
+ return ret;
+ }
+
+ single_dpm_table = &(dpm_context->dpm_tables.vclk_table);
+ ret = smu_v13_0_6_get_clk_table(smu, &clocks, single_dpm_table);
+ if (ret) {
+ dev_err(smu->adev->dev,
+ "Attempt to get vclk levels Failed!");
+ return ret;
+ }
+
+ for (i = 0; i < single_dpm_table->count; i++)
+ size += sysfs_emit_at(
+ buf, size, "%d: %uMhz %s\n", i,
+ single_dpm_table->dpm_levels[i].value,
+ (clocks.num_levels == 1) ?
+ "*" :
+ (smu_v13_0_6_freqs_in_same_level(
+ clocks.data[i].clocks_in_khz /
+ 1000,
+ now) ?
+ "*" :
+ ""));
+ break;
+
+ case SMU_DCLK:
+ ret = smu_v13_0_6_get_current_clk_freq_by_table(smu, SMU_DCLK,
+ &now);
+ if (ret) {
+ dev_err(smu->adev->dev,
+ "Attempt to get current dclk Failed!");
+ return ret;
+ }
+
+ single_dpm_table = &(dpm_context->dpm_tables.dclk_table);
+ ret = smu_v13_0_6_get_clk_table(smu, &clocks, single_dpm_table);
+ if (ret) {
+ dev_err(smu->adev->dev,
+ "Attempt to get dclk levels Failed!");
+ return ret;
+ }
+
+ for (i = 0; i < single_dpm_table->count; i++)
+ size += sysfs_emit_at(
+ buf, size, "%d: %uMhz %s\n", i,
+ single_dpm_table->dpm_levels[i].value,
+ (clocks.num_levels == 1) ?
+ "*" :
+ (smu_v13_0_6_freqs_in_same_level(
+ clocks.data[i].clocks_in_khz /
+ 1000,
+ now) ?
+ "*" :
+ ""));
+ break;
+
+ default:
+ break;
+ }
+
+ return size;
+}
+
+static int smu_v13_0_6_upload_dpm_level(struct smu_context *smu, bool max,
+ uint32_t feature_mask, uint32_t level)
+{
+ struct smu_13_0_dpm_context *dpm_context = smu->smu_dpm.dpm_context;
+ uint32_t freq;
+ int ret = 0;
+
+ if (smu_cmn_feature_is_enabled(smu, SMU_FEATURE_DPM_GFXCLK_BIT) &&
+ (feature_mask & FEATURE_MASK(FEATURE_DPM_GFXCLK))) {
+ freq = dpm_context->dpm_tables.gfx_table.dpm_levels[level].value;
+ ret = smu_cmn_send_smc_msg_with_param(
+ smu,
+ (max ? SMU_MSG_SetSoftMaxGfxClk :
+ SMU_MSG_SetSoftMinGfxclk),
+ freq & 0xffff, NULL);
+ if (ret) {
+ dev_err(smu->adev->dev,
+ "Failed to set soft %s gfxclk !\n",
+ max ? "max" : "min");
+ return ret;
+ }
+ }
+
+ if (smu_cmn_feature_is_enabled(smu, SMU_FEATURE_DPM_UCLK_BIT) &&
+ (feature_mask & FEATURE_MASK(FEATURE_DPM_UCLK))) {
+ freq = dpm_context->dpm_tables.uclk_table.dpm_levels[level]
+ .value;
+ ret = smu_cmn_send_smc_msg_with_param(
+ smu,
+ (max ? SMU_MSG_SetSoftMaxByFreq :
+ SMU_MSG_SetSoftMinByFreq),
+ (PPCLK_UCLK << 16) | (freq & 0xffff), NULL);
+ if (ret) {
+ dev_err(smu->adev->dev,
+ "Failed to set soft %s memclk !\n",
+ max ? "max" : "min");
+ return ret;
+ }
+ }
+
+ if (smu_cmn_feature_is_enabled(smu, SMU_FEATURE_DPM_SOCCLK_BIT) &&
+ (feature_mask & FEATURE_MASK(FEATURE_DPM_SOCCLK))) {
+ freq = dpm_context->dpm_tables.soc_table.dpm_levels[level].value;
+ ret = smu_cmn_send_smc_msg_with_param(
+ smu,
+ (max ? SMU_MSG_SetSoftMaxByFreq :
+ SMU_MSG_SetSoftMinByFreq),
+ (PPCLK_SOCCLK << 16) | (freq & 0xffff), NULL);
+ if (ret) {
+ dev_err(smu->adev->dev,
+ "Failed to set soft %s socclk !\n",
+ max ? "max" : "min");
+ return ret;
+ }
+ }
+
+ return ret;
+}
+
+static int smu_v13_0_6_force_clk_levels(struct smu_context *smu,
+ enum smu_clk_type type, uint32_t mask)
+{
+ struct smu_13_0_dpm_context *dpm_context = smu->smu_dpm.dpm_context;
+ struct smu_13_0_dpm_table *single_dpm_table = NULL;
+ uint32_t soft_min_level, soft_max_level;
+ int ret = 0;
+
+ soft_min_level = mask ? (ffs(mask) - 1) : 0;
+ soft_max_level = mask ? (fls(mask) - 1) : 0;
+
+ switch (type) {
+ case SMU_SCLK:
+ single_dpm_table = &(dpm_context->dpm_tables.gfx_table);
+ if (soft_max_level >= single_dpm_table->count) {
+ dev_err(smu->adev->dev,
+ "Clock level specified %d is over max allowed %d\n",
+ soft_max_level, single_dpm_table->count - 1);
+ ret = -EINVAL;
+ break;
+ }
+
+ ret = smu_v13_0_6_upload_dpm_level(
+ smu, false, FEATURE_MASK(FEATURE_DPM_GFXCLK),
+ soft_min_level);
+ if (ret) {
+ dev_err(smu->adev->dev,
+ "Failed to upload boot level to lowest!\n");
+ break;
+ }
+
+ ret = smu_v13_0_6_upload_dpm_level(
+ smu, true, FEATURE_MASK(FEATURE_DPM_GFXCLK),
+ soft_max_level);
+ if (ret)
+ dev_err(smu->adev->dev,
+ "Failed to upload dpm max level to highest!\n");
+
+ break;
+
+ case SMU_MCLK:
+ case SMU_SOCCLK:
+ case SMU_FCLK:
+ /*
+ * Should not arrive here since smu_13_0_6 does not
+ * support mclk/socclk/fclk softmin/softmax settings
+ */
+ ret = -EINVAL;
+ break;
+
+ default:
+ break;
+ }
+
+ return ret;
+}
+
+static int smu_v13_0_6_get_current_activity_percent(struct smu_context *smu,
+ enum amd_pp_sensors sensor,
+ uint32_t *value)
+{
+ int ret = 0;
+
+ if (!value)
+ return -EINVAL;
+
+ switch (sensor) {
+ case AMDGPU_PP_SENSOR_GPU_LOAD:
+ ret = smu_v13_0_6_get_smu_metrics_data(
+ smu, METRICS_AVERAGE_GFXACTIVITY, value);
+ break;
+ case AMDGPU_PP_SENSOR_MEM_LOAD:
+ ret = smu_v13_0_6_get_smu_metrics_data(
+ smu, METRICS_AVERAGE_MEMACTIVITY, value);
+ break;
+ default:
+ dev_err(smu->adev->dev,
+ "Invalid sensor for retrieving clock activity\n");
+ return -EINVAL;
+ }
+
+ return ret;
+}
+
+static int smu_v13_0_6_get_gpu_power(struct smu_context *smu, uint32_t *value)
+{
+ if (!value)
+ return -EINVAL;
+
+ return smu_v13_0_6_get_smu_metrics_data(smu, METRICS_AVERAGE_SOCKETPOWER,
+ value);
+}
+
+static int smu_v13_0_6_thermal_get_temperature(struct smu_context *smu,
+ enum amd_pp_sensors sensor,
+ uint32_t *value)
+{
+ int ret = 0;
+
+ if (!value)
+ return -EINVAL;
+
+ switch (sensor) {
+ case AMDGPU_PP_SENSOR_HOTSPOT_TEMP:
+ ret = smu_v13_0_6_get_smu_metrics_data(
+ smu, METRICS_TEMPERATURE_HOTSPOT, value);
+ break;
+ case AMDGPU_PP_SENSOR_MEM_TEMP:
+ ret = smu_v13_0_6_get_smu_metrics_data(
+ smu, METRICS_TEMPERATURE_MEM, value);
+ break;
+ default:
+ dev_err(smu->adev->dev, "Invalid sensor for retrieving temp\n");
+ return -EINVAL;
+ }
+
+ return ret;
+}
+
+static int smu_v13_0_6_read_sensor(struct smu_context *smu,
+ enum amd_pp_sensors sensor, void *data,
+ uint32_t *size)
+{
+ int ret = 0;
+
+ if (amdgpu_ras_intr_triggered())
+ return 0;
+
+ if (!data || !size)
+ return -EINVAL;
+
+ switch (sensor) {
+ case AMDGPU_PP_SENSOR_MEM_LOAD:
+ case AMDGPU_PP_SENSOR_GPU_LOAD:
+ ret = smu_v13_0_6_get_current_activity_percent(smu, sensor,
+ (uint32_t *)data);
+ *size = 4;
+ break;
+ case AMDGPU_PP_SENSOR_GPU_POWER:
+ ret = smu_v13_0_6_get_gpu_power(smu, (uint32_t *)data);
+ *size = 4;
+ break;
+ case AMDGPU_PP_SENSOR_HOTSPOT_TEMP:
+ case AMDGPU_PP_SENSOR_MEM_TEMP:
+ ret = smu_v13_0_6_thermal_get_temperature(smu, sensor,
+ (uint32_t *)data);
+ *size = 4;
+ break;
+ case AMDGPU_PP_SENSOR_GFX_MCLK:
+ ret = smu_v13_0_6_get_current_clk_freq_by_table(
+ smu, SMU_UCLK, (uint32_t *)data);
+ /* the output clock frequency in 10K unit */
+ *(uint32_t *)data *= 100;
+ *size = 4;
+ break;
+ case AMDGPU_PP_SENSOR_GFX_SCLK:
+ ret = smu_v13_0_6_get_current_clk_freq_by_table(
+ smu, SMU_GFXCLK, (uint32_t *)data);
+ *(uint32_t *)data *= 100;
+ *size = 4;
+ break;
+ case AMDGPU_PP_SENSOR_VDDGFX:
+ ret = smu_v13_0_get_gfx_vdd(smu, (uint32_t *)data);
+ *size = 4;
+ break;
+ default:
+ ret = -EOPNOTSUPP;
+ break;
+ }
+
+ return ret;
+}
+
+static int smu_v13_0_6_get_power_limit(struct smu_context *smu,
+ uint32_t *current_power_limit,
+ uint32_t *default_power_limit,
+ uint32_t *max_power_limit)
+{
+ struct smu_table_context *smu_table = &smu->smu_table;
+ struct PPTable_t *pptable =
+ (struct PPTable_t *)smu_table->driver_pptable;
+ uint32_t power_limit = 0;
+ int ret;
+
+ if (!smu_cmn_feature_is_enabled(smu, SMU_FEATURE_PPT_BIT)) {
+ if (current_power_limit)
+ *current_power_limit = 0;
+ if (default_power_limit)
+ *default_power_limit = 0;
+ if (max_power_limit)
+ *max_power_limit = 0;
+
+ dev_warn(
+ smu->adev->dev,
+ "PPT feature is not enabled, power values can't be fetched.");
+
+ return 0;
+ }
+
+ ret = smu_cmn_send_smc_msg(smu, SMU_MSG_GetPptLimit, &power_limit);
+
+ if (ret) {
+ dev_err(smu->adev->dev, "Couldn't get PPT limit");
+ return -EINVAL;
+ }
+
+ if (current_power_limit)
+ *current_power_limit = power_limit;
+ if (default_power_limit)
+ *default_power_limit = power_limit;
+
+ if (max_power_limit) {
+ *max_power_limit = pptable->MaxSocketPowerLimit;
+ }
+
+ return 0;
+}
+
+static int smu_v13_0_6_set_power_limit(struct smu_context *smu,
+ enum smu_ppt_limit_type limit_type,
+ uint32_t limit)
+{
+ return smu_v13_0_set_power_limit(smu, limit_type, limit);
+}
+
+static int smu_v13_0_6_system_features_control(struct smu_context *smu,
+ bool enable)
+{
+ int ret;
+
+ /* Nothing to be done for APU */
+ if (smu->adev->flags & AMD_IS_APU)
+ return 0;
+
+ ret = smu_v13_0_system_features_control(smu, enable);
+
+ return ret;
+}
+
+static int smu_v13_0_6_set_gfx_soft_freq_limited_range(struct smu_context *smu,
+ uint32_t min,
+ uint32_t max)
+{
+ int ret;
+
+ ret = smu_cmn_send_smc_msg_with_param(smu, SMU_MSG_SetSoftMaxGfxClk,
+ max & 0xffff, NULL);
+ if (ret)
+ return ret;
+
+ ret = smu_cmn_send_smc_msg_with_param(smu, SMU_MSG_SetSoftMinGfxclk,
+ min & 0xffff, NULL);
+
+ return ret;
+}
+
+static int smu_v13_0_6_set_performance_level(struct smu_context *smu,
+ enum amd_dpm_forced_level level)
+{
+ struct smu_dpm_context *smu_dpm = &(smu->smu_dpm);
+ struct smu_13_0_dpm_context *dpm_context = smu_dpm->dpm_context;
+ struct smu_13_0_dpm_table *gfx_table =
+ &dpm_context->dpm_tables.gfx_table;
+ struct smu_umd_pstate_table *pstate_table = &smu->pstate_table;
+ int ret;
+
+ /* Disable determinism if switching to another mode */
+ if ((smu_dpm->dpm_level == AMD_DPM_FORCED_LEVEL_PERF_DETERMINISM) &&
+ (level != AMD_DPM_FORCED_LEVEL_PERF_DETERMINISM)) {
+ smu_cmn_send_smc_msg(smu, SMU_MSG_DisableDeterminism, NULL);
+ pstate_table->gfxclk_pstate.curr.max = gfx_table->max;
+ }
+
+ switch (level) {
+ case AMD_DPM_FORCED_LEVEL_PERF_DETERMINISM:
+ return 0;
+
+ case AMD_DPM_FORCED_LEVEL_AUTO:
+ if ((gfx_table->min == pstate_table->gfxclk_pstate.curr.min) &&
+ (gfx_table->max == pstate_table->gfxclk_pstate.curr.max))
+ return 0;
+
+ ret = smu_v13_0_6_set_gfx_soft_freq_limited_range(
+ smu, gfx_table->min, gfx_table->max);
+ if (ret)
+ return ret;
+
+ pstate_table->gfxclk_pstate.curr.min = gfx_table->min;
+ pstate_table->gfxclk_pstate.curr.max = gfx_table->max;
+ return 0;
+ case AMD_DPM_FORCED_LEVEL_MANUAL:
+ return 0;
+ default:
+ break;
+ }
+
+ return -EINVAL;
+}
+
+static int smu_v13_0_6_set_soft_freq_limited_range(struct smu_context *smu,
+ enum smu_clk_type clk_type,
+ uint32_t min, uint32_t max)
+{
+ struct smu_dpm_context *smu_dpm = &(smu->smu_dpm);
+ struct smu_13_0_dpm_context *dpm_context = smu_dpm->dpm_context;
+ struct smu_umd_pstate_table *pstate_table = &smu->pstate_table;
+ struct amdgpu_device *adev = smu->adev;
+ uint32_t min_clk;
+ uint32_t max_clk;
+ int ret = 0;
+
+ if (clk_type != SMU_GFXCLK && clk_type != SMU_SCLK)
+ return -EINVAL;
+
+ if ((smu_dpm->dpm_level != AMD_DPM_FORCED_LEVEL_MANUAL) &&
+ (smu_dpm->dpm_level != AMD_DPM_FORCED_LEVEL_PERF_DETERMINISM))
+ return -EINVAL;
+
+ if (smu_dpm->dpm_level == AMD_DPM_FORCED_LEVEL_MANUAL) {
+ if (min >= max) {
+ dev_err(smu->adev->dev,
+ "Minimum GFX clk should be less than the maximum allowed clock\n");
+ return -EINVAL;
+ }
+
+ if ((min == pstate_table->gfxclk_pstate.curr.min) &&
+ (max == pstate_table->gfxclk_pstate.curr.max))
+ return 0;
+
+ ret = smu_v13_0_6_set_gfx_soft_freq_limited_range(smu, min, max);
+ if (!ret) {
+ pstate_table->gfxclk_pstate.curr.min = min;
+ pstate_table->gfxclk_pstate.curr.max = max;
+ }
+
+ return ret;
+ }
+
+ if (smu_dpm->dpm_level == AMD_DPM_FORCED_LEVEL_PERF_DETERMINISM) {
+ if (!max || (max < dpm_context->dpm_tables.gfx_table.min) ||
+ (max > dpm_context->dpm_tables.gfx_table.max)) {
+ dev_warn(
+ adev->dev,
+ "Invalid max frequency %d MHz specified for determinism\n",
+ max);
+ return -EINVAL;
+ }
+
+ /* Restore default min/max clocks and enable determinism */
+ min_clk = dpm_context->dpm_tables.gfx_table.min;
+ max_clk = dpm_context->dpm_tables.gfx_table.max;
+ ret = smu_v13_0_6_set_gfx_soft_freq_limited_range(smu, min_clk,
+ max_clk);
+ if (!ret) {
+ usleep_range(500, 1000);
+ ret = smu_cmn_send_smc_msg_with_param(
+ smu, SMU_MSG_EnableDeterminism, max, NULL);
+ if (ret) {
+ dev_err(adev->dev,
+ "Failed to enable determinism at GFX clock %d MHz\n",
+ max);
+ } else {
+ pstate_table->gfxclk_pstate.curr.min = min_clk;
+ pstate_table->gfxclk_pstate.curr.max = max;
+ }
+ }
+ }
+
+ return ret;
+}
+
+static int smu_v13_0_6_usr_edit_dpm_table(struct smu_context *smu,
+ enum PP_OD_DPM_TABLE_COMMAND type,
+ long input[], uint32_t size)
+{
+ struct smu_dpm_context *smu_dpm = &(smu->smu_dpm);
+ struct smu_13_0_dpm_context *dpm_context = smu_dpm->dpm_context;
+ struct smu_umd_pstate_table *pstate_table = &smu->pstate_table;
+ uint32_t min_clk;
+ uint32_t max_clk;
+ int ret = 0;
+
+ /* Only allowed in manual or determinism mode */
+ if ((smu_dpm->dpm_level != AMD_DPM_FORCED_LEVEL_MANUAL) &&
+ (smu_dpm->dpm_level != AMD_DPM_FORCED_LEVEL_PERF_DETERMINISM))
+ return -EINVAL;
+
+ switch (type) {
+ case PP_OD_EDIT_SCLK_VDDC_TABLE:
+ if (size != 2) {
+ dev_err(smu->adev->dev,
+ "Input parameter number not correct\n");
+ return -EINVAL;
+ }
+
+ if (input[0] == 0) {
+ if (input[1] < dpm_context->dpm_tables.gfx_table.min) {
+ dev_warn(
+ smu->adev->dev,
+ "Minimum GFX clk (%ld) MHz specified is less than the minimum allowed (%d) MHz\n",
+ input[1],
+ dpm_context->dpm_tables.gfx_table.min);
+ pstate_table->gfxclk_pstate.custom.min =
+ pstate_table->gfxclk_pstate.curr.min;
+ return -EINVAL;
+ }
+
+ pstate_table->gfxclk_pstate.custom.min = input[1];
+ } else if (input[0] == 1) {
+ if (input[1] > dpm_context->dpm_tables.gfx_table.max) {
+ dev_warn(
+ smu->adev->dev,
+ "Maximum GFX clk (%ld) MHz specified is greater than the maximum allowed (%d) MHz\n",
+ input[1],
+ dpm_context->dpm_tables.gfx_table.max);
+ pstate_table->gfxclk_pstate.custom.max =
+ pstate_table->gfxclk_pstate.curr.max;
+ return -EINVAL;
+ }
+
+ pstate_table->gfxclk_pstate.custom.max = input[1];
+ } else {
+ return -EINVAL;
+ }
+ break;
+ case PP_OD_RESTORE_DEFAULT_TABLE:
+ if (size != 0) {
+ dev_err(smu->adev->dev,
+ "Input parameter number not correct\n");
+ return -EINVAL;
+ } else {
+ /* Use the default frequencies for manual and determinism mode */
+ min_clk = dpm_context->dpm_tables.gfx_table.min;
+ max_clk = dpm_context->dpm_tables.gfx_table.max;
+
+ return smu_v13_0_6_set_soft_freq_limited_range(
+ smu, SMU_GFXCLK, min_clk, max_clk);
+ }
+ break;
+ case PP_OD_COMMIT_DPM_TABLE:
+ if (size != 0) {
+ dev_err(smu->adev->dev,
+ "Input parameter number not correct\n");
+ return -EINVAL;
+ } else {
+ if (!pstate_table->gfxclk_pstate.custom.min)
+ pstate_table->gfxclk_pstate.custom.min =
+ pstate_table->gfxclk_pstate.curr.min;
+
+ if (!pstate_table->gfxclk_pstate.custom.max)
+ pstate_table->gfxclk_pstate.custom.max =
+ pstate_table->gfxclk_pstate.curr.max;
+
+ min_clk = pstate_table->gfxclk_pstate.custom.min;
+ max_clk = pstate_table->gfxclk_pstate.custom.max;
+
+ return smu_v13_0_6_set_soft_freq_limited_range(
+ smu, SMU_GFXCLK, min_clk, max_clk);
+ }
+ break;
+ default:
+ return -ENOSYS;
+ }
+
+ return ret;
+}
+
+static int smu_v13_0_6_get_enabled_mask(struct smu_context *smu,
+ uint64_t *feature_mask)
+{
+ uint32_t smu_version;
+ int ret;
+
+ smu_cmn_get_smc_version(smu, NULL, &smu_version);
+ ret = smu_cmn_get_enabled_mask(smu, feature_mask);
+
+ if (ret == -EIO && smu_version < 0x552F00) {
+ *feature_mask = 0;
+ ret = 0;
+ }
+
+ return ret;
+}
+
+static bool smu_v13_0_6_is_dpm_running(struct smu_context *smu)
+{
+ int ret;
+ uint64_t feature_enabled;
+
+ ret = smu_v13_0_6_get_enabled_mask(smu, &feature_enabled);
+
+ if (ret)
+ return false;
+
+ return !!(feature_enabled & SMC_DPM_FEATURE);
+}
+
+static int smu_v13_0_6_request_i2c_xfer(struct smu_context *smu,
+ void *table_data)
+{
+ struct smu_table_context *smu_table = &smu->smu_table;
+ struct smu_table *table = &smu_table->driver_table;
+ struct amdgpu_device *adev = smu->adev;
+ uint32_t table_size;
+ int ret = 0;
+
+ if (!table_data)
+ return -EINVAL;
+
+ table_size = smu_table->tables[SMU_TABLE_I2C_COMMANDS].size;
+
+ memcpy(table->cpu_addr, table_data, table_size);
+ /* Flush hdp cache */
+ amdgpu_asic_flush_hdp(adev, NULL);
+ ret = smu_cmn_send_smc_msg(smu, SMU_MSG_RequestI2cTransaction,
+ NULL);
+
+ return ret;
+}
+
+static int smu_v13_0_6_i2c_xfer(struct i2c_adapter *i2c_adap,
+ struct i2c_msg *msg, int num_msgs)
+{
+ struct amdgpu_smu_i2c_bus *smu_i2c = i2c_get_adapdata(i2c_adap);
+ struct amdgpu_device *adev = smu_i2c->adev;
+ struct smu_context *smu = adev->powerplay.pp_handle;
+ struct smu_table_context *smu_table = &smu->smu_table;
+ struct smu_table *table = &smu_table->driver_table;
+ SwI2cRequest_t *req, *res = (SwI2cRequest_t *)table->cpu_addr;
+ int i, j, r, c;
+ u16 dir;
+
+ if (!adev->pm.dpm_enabled)
+ return -EBUSY;
+
+ req = kzalloc(sizeof(*req), GFP_KERNEL);
+ if (!req)
+ return -ENOMEM;
+
+ req->I2CcontrollerPort = smu_i2c->port;
+ req->I2CSpeed = I2C_SPEED_FAST_400K;
+ req->SlaveAddress = msg[0].addr << 1; /* wants an 8-bit address */
+ dir = msg[0].flags & I2C_M_RD;
+
+ for (c = i = 0; i < num_msgs; i++) {
+ for (j = 0; j < msg[i].len; j++, c++) {
+ SwI2cCmd_t *cmd = &req->SwI2cCmds[c];
+
+ if (!(msg[i].flags & I2C_M_RD)) {
+ /* write */
+ cmd->CmdConfig |= CMDCONFIG_READWRITE_MASK;
+ cmd->ReadWriteData = msg[i].buf[j];
+ }
+
+ if ((dir ^ msg[i].flags) & I2C_M_RD) {
+ /* The direction changes.
+ */
+ dir = msg[i].flags & I2C_M_RD;
+ cmd->CmdConfig |= CMDCONFIG_RESTART_MASK;
+ }
+
+ req->NumCmds++;
+
+ /*
+ * Insert STOP if we are at the last byte of either last
+ * message for the transaction or the client explicitly
+ * requires a STOP at this particular message.
+ */
+ if ((j == msg[i].len - 1) &&
+ ((i == num_msgs - 1) || (msg[i].flags & I2C_M_STOP))) {
+ cmd->CmdConfig &= ~CMDCONFIG_RESTART_MASK;
+ cmd->CmdConfig |= CMDCONFIG_STOP_MASK;
+ }
+ }
+ }
+ mutex_lock(&adev->pm.mutex);
+ r = smu_v13_0_6_request_i2c_xfer(smu, req);
+ mutex_unlock(&adev->pm.mutex);
+ if (r)
+ goto fail;
+
+ for (c = i = 0; i < num_msgs; i++) {
+ if (!(msg[i].flags & I2C_M_RD)) {
+ c += msg[i].len;
+ continue;
+ }
+ for (j = 0; j < msg[i].len; j++, c++) {
+ SwI2cCmd_t *cmd = &res->SwI2cCmds[c];
+
+ msg[i].buf[j] = cmd->ReadWriteData;
+ }
+ }
+ r = num_msgs;
+fail:
+ kfree(req);
+ return r;
+}
+
+static u32 smu_v13_0_6_i2c_func(struct i2c_adapter *adap)
+{
+ return I2C_FUNC_I2C | I2C_FUNC_SMBUS_EMUL;
+}
+
+static const struct i2c_algorithm smu_v13_0_6_i2c_algo = {
+ .master_xfer = smu_v13_0_6_i2c_xfer,
+ .functionality = smu_v13_0_6_i2c_func,
+};
+
+static const struct i2c_adapter_quirks smu_v13_0_6_i2c_control_quirks = {
+ .flags = I2C_AQ_COMB | I2C_AQ_COMB_SAME_ADDR | I2C_AQ_NO_ZERO_LEN,
+ .max_read_len = MAX_SW_I2C_COMMANDS,
+ .max_write_len = MAX_SW_I2C_COMMANDS,
+ .max_comb_1st_msg_len = 2,
+ .max_comb_2nd_msg_len = MAX_SW_I2C_COMMANDS - 2,
+};
+
+static int smu_v13_0_6_i2c_control_init(struct smu_context *smu)
+{
+ struct amdgpu_device *adev = smu->adev;
+ int res, i;
+
+ for (i = 0; i < MAX_SMU_I2C_BUSES; i++) {
+ struct amdgpu_smu_i2c_bus *smu_i2c = &adev->pm.smu_i2c[i];
+ struct i2c_adapter *control = &smu_i2c->adapter;
+
+ smu_i2c->adev = adev;
+ smu_i2c->port = i;
+ mutex_init(&smu_i2c->mutex);
+ control->owner = THIS_MODULE;
+ control->class = I2C_CLASS_SPD;
+ control->dev.parent = &adev->pdev->dev;
+ control->algo = &smu_v13_0_6_i2c_algo;
+ snprintf(control->name, sizeof(control->name), "AMDGPU SMU %d", i);
+ control->quirks = &smu_v13_0_6_i2c_control_quirks;
+ i2c_set_adapdata(control, smu_i2c);
+
+ res = i2c_add_adapter(control);
+ if (res) {
+ DRM_ERROR("Failed to register hw i2c, err: %d\n", res);
+ goto Out_err;
+ }
+ }
+
+ adev->pm.ras_eeprom_i2c_bus = &adev->pm.smu_i2c[0].adapter;
+ adev->pm.fru_eeprom_i2c_bus = &adev->pm.smu_i2c[0].adapter;
+
+ return 0;
+Out_err:
+ for ( ; i >= 0; i--) {
+ struct amdgpu_smu_i2c_bus *smu_i2c = &adev->pm.smu_i2c[i];
+ struct i2c_adapter *control = &smu_i2c->adapter;
+
+ i2c_del_adapter(control);
+ }
+ return res;
+}
+
+static void smu_v13_0_6_i2c_control_fini(struct smu_context *smu)
+{
+ struct amdgpu_device *adev = smu->adev;
+ int i;
+
+ for (i = 0; i < MAX_SMU_I2C_BUSES; i++) {
+ struct amdgpu_smu_i2c_bus *smu_i2c = &adev->pm.smu_i2c[i];
+ struct i2c_adapter *control = &smu_i2c->adapter;
+
+ i2c_del_adapter(control);
+ }
+ adev->pm.ras_eeprom_i2c_bus = NULL;
+ adev->pm.fru_eeprom_i2c_bus = NULL;
+}
+
+static void smu_v13_0_6_get_unique_id(struct smu_context *smu)
+{
+ struct amdgpu_device *adev = smu->adev;
+ //SmuMetrics_t *metrics = smu->smu_table.metrics_table;
+ uint32_t upper32 = 0, lower32 = 0;
+ int ret;
+
+ ret = smu_cmn_get_metrics_table(smu, NULL, false);
+ if (ret)
+ goto out;
+
+ //upper32 = metrics->PublicSerialNumUpper32;
+ //lower32 = metrics->PublicSerialNumLower32;
+
+out:
+ adev->unique_id = ((uint64_t)upper32 << 32) | lower32;
+ if (adev->serial[0] == '\0')
+ sprintf(adev->serial, "%016llx", adev->unique_id);
+}
+
+static bool smu_v13_0_6_is_baco_supported(struct smu_context *smu)
+{
+ /* smu_13_0_6 does not support baco */
+
+ return false;
+}
+
+static int smu_v13_0_6_set_df_cstate(struct smu_context *smu,
+ enum pp_df_cstate state)
+{
+ return smu_cmn_send_smc_msg_with_param(smu, SMU_MSG_DFCstateControl,
+ state, NULL);
+}
+
+static int smu_v13_0_6_allow_xgmi_power_down(struct smu_context *smu, bool en)
+{
+ return smu_cmn_send_smc_msg_with_param(smu, SMU_MSG_GmiPwrDnControl,
+ en ? 0 : 1, NULL);
+}
+
+static const struct throttling_logging_label {
+ uint32_t feature_mask;
+ const char *label;
+} logging_label[] = {
+ { (1U << THROTTLER_TEMP_HBM_BIT), "HBM" },
+ { (1U << THROTTLER_TEMP_SOC_BIT), "SOC" },
+ { (1U << THROTTLER_TEMP_VR_GFX_BIT), "VR limit" },
+};
+static void smu_v13_0_6_log_thermal_throttling_event(struct smu_context *smu)
+{
+ int ret;
+ int throttler_idx, throtting_events = 0, buf_idx = 0;
+ struct amdgpu_device *adev = smu->adev;
+ uint32_t throttler_status;
+ char log_buf[256];
+
+ ret = smu_v13_0_6_get_smu_metrics_data(smu, METRICS_THROTTLER_STATUS,
+ &throttler_status);
+ if (ret)
+ return;
+
+ memset(log_buf, 0, sizeof(log_buf));
+ for (throttler_idx = 0; throttler_idx < ARRAY_SIZE(logging_label);
+ throttler_idx++) {
+ if (throttler_status &
+ logging_label[throttler_idx].feature_mask) {
+ throtting_events++;
+ buf_idx += snprintf(log_buf + buf_idx,
+ sizeof(log_buf) - buf_idx, "%s%s",
+ throtting_events > 1 ? " and " : "",
+ logging_label[throttler_idx].label);
+ if (buf_idx >= sizeof(log_buf)) {
+ dev_err(adev->dev, "buffer overflow!\n");
+ log_buf[sizeof(log_buf) - 1] = '\0';
+ break;
+ }
+ }
+ }
+
+ dev_warn(
+ adev->dev,
+ "WARN: GPU thermal throttling temperature reached, expect performance decrease. %s.\n",
+ log_buf);
+ kgd2kfd_smi_event_throttle(
+ smu->adev->kfd.dev,
+ smu_cmn_get_indep_throttler_status(throttler_status,
+ smu_v13_0_6_throttler_map));
+}
+
+static int smu_v13_0_6_get_current_pcie_link_speed(struct smu_context *smu)
+{
+ struct amdgpu_device *adev = smu->adev;
+ uint32_t esm_ctrl;
+
+ /* TODO: confirm this on real target */
+ esm_ctrl = RREG32_PCIE(smnPCIE_ESM_CTRL);
+ if ((esm_ctrl >> 15) & 0x1FFFF)
+ return (((esm_ctrl >> 8) & 0x3F) + 128);
+
+ return smu_v13_0_get_current_pcie_link_speed(smu);
+}
+
+static ssize_t smu_v13_0_6_get_gpu_metrics(struct smu_context *smu, void **table)
+{
+ struct smu_table_context *smu_table = &smu->smu_table;
+ struct gpu_metrics_v1_3 *gpu_metrics =
+ (struct gpu_metrics_v1_3 *)smu_table->gpu_metrics_table;
+ MetricsTable_t *metrics;
+ int i, ret = 0;
+
+ metrics = kzalloc(sizeof(MetricsTable_t), GFP_KERNEL);
+ ret = smu_v13_0_6_get_metrics_table(smu, metrics, true);
+ if (ret)
+ return ret;
+
+ smu_cmn_init_soft_gpu_metrics(gpu_metrics, 1, 3);
+
+ /* TODO: Decide on how to fill in zero value fields */
+ gpu_metrics->temperature_edge = 0;
+ gpu_metrics->temperature_hotspot = 0;
+ gpu_metrics->temperature_mem = 0;
+ gpu_metrics->temperature_vrgfx = 0;
+ gpu_metrics->temperature_vrsoc = 0;
+ gpu_metrics->temperature_vrmem = 0;
+
+ gpu_metrics->average_gfx_activity = 0;
+ gpu_metrics->average_umc_activity = 0;
+ gpu_metrics->average_mm_activity = 0;
+
+ gpu_metrics->average_socket_power = 0;
+ gpu_metrics->energy_accumulator = 0;
+
+ gpu_metrics->average_gfxclk_frequency = 0;
+ gpu_metrics->average_socclk_frequency = 0;
+ gpu_metrics->average_uclk_frequency = 0;
+ gpu_metrics->average_vclk0_frequency = 0;
+ gpu_metrics->average_dclk0_frequency = 0;
+
+ gpu_metrics->current_gfxclk = 0;
+ gpu_metrics->current_socclk = 0;
+ gpu_metrics->current_uclk = 0;
+ gpu_metrics->current_vclk0 = 0;
+ gpu_metrics->current_dclk0 = 0;
+
+ gpu_metrics->throttle_status = 0;
+ gpu_metrics->indep_throttle_status = smu_cmn_get_indep_throttler_status(
+ gpu_metrics->throttle_status, smu_v13_0_6_throttler_map);
+
+ gpu_metrics->current_fan_speed = 0;
+
+ gpu_metrics->pcie_link_width = 0;
+ gpu_metrics->pcie_link_speed = smu_v13_0_6_get_current_pcie_link_speed(smu);
+
+ gpu_metrics->system_clock_counter = ktime_get_boottime_ns();
+
+ gpu_metrics->gfx_activity_acc = 0;
+ gpu_metrics->mem_activity_acc = 0;
+
+ for (i = 0; i < NUM_HBM_INSTANCES; i++)
+ gpu_metrics->temperature_hbm[i] = 0;
+
+ gpu_metrics->firmware_timestamp = 0;
+
+ *table = (void *)gpu_metrics;
+ kfree(metrics);
+
+ return sizeof(struct gpu_metrics_v1_3);
+}
+
+static int smu_v13_0_6_mode2_reset(struct smu_context *smu)
+{
+ u32 smu_version;
+ int ret = 0, index;
+ struct amdgpu_device *adev = smu->adev;
+ int timeout = 10;
+
+ smu_cmn_get_smc_version(smu, NULL, &smu_version);
+
+ index = smu_cmn_to_asic_specific_index(smu, CMN2ASIC_MAPPING_MSG,
+ SMU_MSG_GfxDeviceDriverReset);
+
+ mutex_lock(&smu->message_lock);
+ ret = smu_cmn_send_msg_without_waiting(smu, (uint16_t)index,
+ SMU_RESET_MODE_2);
+ /* This is similar to FLR, wait till max FLR timeout */
+ msleep(100);
+ dev_dbg(smu->adev->dev, "restore config space...\n");
+ /* Restore the config space saved during init */
+ amdgpu_device_load_pci_state(adev->pdev);
+
+ dev_dbg(smu->adev->dev, "wait for reset ack\n");
+ while (ret == -ETIME && timeout) {
+ ret = smu_cmn_wait_for_response(smu);
+ /* Wait a bit more time for getting ACK */
+ if (ret == -ETIME) {
+ --timeout;
+ usleep_range(500, 1000);
+ continue;
+ }
+
+ if (ret != 1) {
+ dev_err(adev->dev,
+ "failed to send mode2 message \tparam: 0x%08x response %#x\n",
+ SMU_RESET_MODE_2, ret);
+ goto out;
+ }
+ }
+
+ if (ret == 1)
+ ret = 0;
+out:
+ mutex_unlock(&smu->message_lock);
+
+ return ret;
+}
+
+static int smu_v13_0_6_mode1_reset(struct smu_context *smu)
+{
+ struct amdgpu_device *adev = smu->adev;
+ struct amdgpu_ras *ras;
+ u32 fatal_err, param;
+ int ret = 0;
+
+ ras = amdgpu_ras_get_context(adev);
+ fatal_err = 0;
+ param = SMU_RESET_MODE_1;
+
+ /* fatal error triggered by ras, PMFW supports the flag */
+ if (ras && atomic_read(&ras->in_recovery))
+ fatal_err = 1;
+
+ param |= (fatal_err << 16);
+ ret = smu_cmn_send_smc_msg_with_param(smu, SMU_MSG_GfxDeviceDriverReset,
+ param, NULL);
+
+ if (!ret)
+ msleep(SMU13_MODE1_RESET_WAIT_TIME_IN_MS);
+
+ return ret;
+}
+
+static bool smu_v13_0_6_is_mode1_reset_supported(struct smu_context *smu)
+{
+ /* TODO: Enable this when FW support is added */
+ return false;
+}
+
+static bool smu_v13_0_6_is_mode2_reset_supported(struct smu_context *smu)
+{
+ return true;
+}
+
+static int smu_v13_0_6_smu_send_hbm_bad_page_num(struct smu_context *smu,
+ uint32_t size)
+{
+ int ret = 0;
+
+ /* message SMU to update the bad page number on SMUBUS */
+ ret = smu_cmn_send_smc_msg_with_param(
+ smu, SMU_MSG_SetNumBadHbmPagesRetired, size, NULL);
+ if (ret)
+ dev_err(smu->adev->dev,
+ "[%s] failed to message SMU to update HBM bad pages number\n",
+ __func__);
+
+ return ret;
+}
+
+static const struct pptable_funcs smu_v13_0_6_ppt_funcs = {
+ /* init dpm */
+ .get_allowed_feature_mask = smu_v13_0_6_get_allowed_feature_mask,
+ /* dpm/clk tables */
+ .set_default_dpm_table = smu_v13_0_6_set_default_dpm_table,
+ .populate_umd_state_clk = smu_v13_0_6_populate_umd_state_clk,
+ .print_clk_levels = smu_v13_0_6_print_clk_levels,
+ .force_clk_levels = smu_v13_0_6_force_clk_levels,
+ .read_sensor = smu_v13_0_6_read_sensor,
+ .set_performance_level = smu_v13_0_6_set_performance_level,
+ .get_power_limit = smu_v13_0_6_get_power_limit,
+ .is_dpm_running = smu_v13_0_6_is_dpm_running,
+ .get_unique_id = smu_v13_0_6_get_unique_id,
+ .init_smc_tables = smu_v13_0_6_init_smc_tables,
+ .fini_smc_tables = smu_v13_0_fini_smc_tables,
+ .init_power = smu_v13_0_init_power,
+ .fini_power = smu_v13_0_fini_power,
+ .check_fw_status = smu_v13_0_6_check_fw_status,
+ /* pptable related */
+ .check_fw_version = smu_v13_0_check_fw_version,
+ .set_driver_table_location = smu_v13_0_set_driver_table_location,
+ .set_tool_table_location = smu_v13_0_set_tool_table_location,
+ .notify_memory_pool_location = smu_v13_0_notify_memory_pool_location,
+ .system_features_control = smu_v13_0_6_system_features_control,
+ .send_smc_msg_with_param = smu_cmn_send_smc_msg_with_param,
+ .send_smc_msg = smu_cmn_send_smc_msg,
+ .get_enabled_mask = smu_v13_0_6_get_enabled_mask,
+ .feature_is_enabled = smu_cmn_feature_is_enabled,
+ .set_power_limit = smu_v13_0_6_set_power_limit,
+ .set_xgmi_pstate = smu_v13_0_set_xgmi_pstate,
+ /* TODO: Thermal limits unknown, skip these for now
+ .register_irq_handler = smu_v13_0_register_irq_handler,
+ .enable_thermal_alert = smu_v13_0_enable_thermal_alert,
+ .disable_thermal_alert = smu_v13_0_disable_thermal_alert,
+ */
+ .setup_pptable = smu_v13_0_6_setup_pptable,
+ .baco_is_support = smu_v13_0_6_is_baco_supported,
+ .get_dpm_ultimate_freq = smu_v13_0_6_get_dpm_ultimate_freq,
+ .set_soft_freq_limited_range = smu_v13_0_6_set_soft_freq_limited_range,
+ .od_edit_dpm_table = smu_v13_0_6_usr_edit_dpm_table,
+ .set_df_cstate = smu_v13_0_6_set_df_cstate,
+ .allow_xgmi_power_down = smu_v13_0_6_allow_xgmi_power_down,
+ .log_thermal_throttling_event = smu_v13_0_6_log_thermal_throttling_event,
+ .get_pp_feature_mask = smu_cmn_get_pp_feature_mask,
+ .set_pp_feature_mask = smu_cmn_set_pp_feature_mask,
+ .get_gpu_metrics = smu_v13_0_6_get_gpu_metrics,
+ .mode1_reset_is_support = smu_v13_0_6_is_mode1_reset_supported,
+ .mode2_reset_is_support = smu_v13_0_6_is_mode2_reset_supported,
+ .mode1_reset = smu_v13_0_6_mode1_reset,
+ .mode2_reset = smu_v13_0_6_mode2_reset,
+ .wait_for_event = smu_v13_0_wait_for_event,
+ .i2c_init = smu_v13_0_6_i2c_control_init,
+ .i2c_fini = smu_v13_0_6_i2c_control_fini,
+ .send_hbm_bad_pages_num = smu_v13_0_6_smu_send_hbm_bad_page_num,
+};
+
+void smu_v13_0_6_set_ppt_funcs(struct smu_context *smu)
+{
+ smu->ppt_funcs = &smu_v13_0_6_ppt_funcs;
+ smu->message_map = smu_v13_0_6_message_map;
+ smu->clock_map = smu_v13_0_6_clk_map;
+ smu->feature_map = smu_v13_0_6_feature_mask_map;
+ smu->table_map = smu_v13_0_6_table_map;
+ smu_v13_0_set_smu_mailbox_registers(smu);
+}
diff --git a/drivers/gpu/drm/amd/pm/swsmu/smu13/smu_v13_0_6_ppt.h b/drivers/gpu/drm/amd/pm/swsmu/smu13/smu_v13_0_6_ppt.h
new file mode 100644
index 000000000000..f0fa42a645c0
--- /dev/null
+++ b/drivers/gpu/drm/amd/pm/swsmu/smu13/smu_v13_0_6_ppt.h
@@ -0,0 +1,32 @@
+/*
+ * Copyright 2021 Advanced Micro Devices, Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ *
+ */
+#ifndef __SMU_13_0_6_PPT_H__
+#define __SMU_13_0_6_PPT_H__
+
+#define SMU_13_0_6_UMD_PSTATE_GFXCLK_LEVEL 0x2
+#define SMU_13_0_6_UMD_PSTATE_SOCCLK_LEVEL 0x4
+#define SMU_13_0_6_UMD_PSTATE_MCLK_LEVEL 0x2
+
+extern void smu_v13_0_6_set_ppt_funcs(struct smu_context *smu);
+
+#endif
diff --git a/drivers/gpu/drm/amd/pm/swsmu/smu13/smu_v13_0_7_ppt.c b/drivers/gpu/drm/amd/pm/swsmu/smu13/smu_v13_0_7_ppt.c
index c4102cfb734c..3d9ff46706fb 100644
--- a/drivers/gpu/drm/amd/pm/swsmu/smu13/smu_v13_0_7_ppt.c
+++ b/drivers/gpu/drm/amd/pm/swsmu/smu13/smu_v13_0_7_ppt.c
@@ -122,6 +122,9 @@ static struct cmn2asic_msg_mapping smu_v13_0_7_message_map[SMU_MSG_MAX_COUNT] =
MSG_MAP(PrepareMp1ForUnload, PPSMC_MSG_PrepareMp1ForUnload, 0),
MSG_MAP(SetMGpuFanBoostLimitRpm, PPSMC_MSG_SetMGpuFanBoostLimitRpm, 0),
MSG_MAP(DFCstateControl, PPSMC_MSG_SetExternalClientDfCstateAllow, 0),
+ MSG_MAP(ArmD3, PPSMC_MSG_ArmD3, 0),
+ MSG_MAP(AllowGpo, PPSMC_MSG_SetGpoAllow, 0),
+ MSG_MAP(GetPptLimit, PPSMC_MSG_GetPptLimit, 0),
};
static struct cmn2asic_mapping smu_v13_0_7_clk_map[SMU_CLK_COUNT] = {
@@ -188,6 +191,9 @@ static struct cmn2asic_mapping smu_v13_0_7_feature_mask_map[SMU_FEATURE_COUNT] =
FEA_MAP(MEM_TEMP_READ),
FEA_MAP(ATHUB_MMHUB_PG),
FEA_MAP(SOC_PCC),
+ [SMU_FEATURE_DPM_VCLK_BIT] = {1, FEATURE_MM_DPM_BIT},
+ [SMU_FEATURE_DPM_DCLK_BIT] = {1, FEATURE_MM_DPM_BIT},
+ [SMU_FEATURE_PPT_BIT] = {1, FEATURE_THROTTLERS_BIT},
};
static struct cmn2asic_mapping smu_v13_0_7_table_map[SMU_TABLE_COUNT] = {
@@ -569,6 +575,14 @@ static int smu_v13_0_7_set_default_dpm_table(struct smu_context *smu)
dpm_table);
if (ret)
return ret;
+
+ if (skutable->DriverReportedClocks.GameClockAc &&
+ (dpm_table->dpm_levels[dpm_table->count - 1].value >
+ skutable->DriverReportedClocks.GameClockAc)) {
+ dpm_table->dpm_levels[dpm_table->count - 1].value =
+ skutable->DriverReportedClocks.GameClockAc;
+ dpm_table->max = skutable->DriverReportedClocks.GameClockAc;
+ }
} else {
dpm_table->count = 1;
dpm_table->dpm_levels[0].value = smu->smu_table.boot_values.gfxclk / 100;
@@ -822,6 +836,57 @@ static int smu_v13_0_7_get_smu_metrics_data(struct smu_context *smu,
return ret;
}
+static int smu_v13_0_7_get_dpm_ultimate_freq(struct smu_context *smu,
+ enum smu_clk_type clk_type,
+ uint32_t *min,
+ uint32_t *max)
+{
+ struct smu_13_0_dpm_context *dpm_context =
+ smu->smu_dpm.dpm_context;
+ struct smu_13_0_dpm_table *dpm_table;
+
+ switch (clk_type) {
+ case SMU_MCLK:
+ case SMU_UCLK:
+ /* uclk dpm table */
+ dpm_table = &dpm_context->dpm_tables.uclk_table;
+ break;
+ case SMU_GFXCLK:
+ case SMU_SCLK:
+ /* gfxclk dpm table */
+ dpm_table = &dpm_context->dpm_tables.gfx_table;
+ break;
+ case SMU_SOCCLK:
+ /* socclk dpm table */
+ dpm_table = &dpm_context->dpm_tables.soc_table;
+ break;
+ case SMU_FCLK:
+ /* fclk dpm table */
+ dpm_table = &dpm_context->dpm_tables.fclk_table;
+ break;
+ case SMU_VCLK:
+ case SMU_VCLK1:
+ /* vclk dpm table */
+ dpm_table = &dpm_context->dpm_tables.vclk_table;
+ break;
+ case SMU_DCLK:
+ case SMU_DCLK1:
+ /* dclk dpm table */
+ dpm_table = &dpm_context->dpm_tables.dclk_table;
+ break;
+ default:
+ dev_err(smu->adev->dev, "Unsupported clock type!\n");
+ return -EINVAL;
+ }
+
+ if (min)
+ *min = dpm_table->min;
+ if (max)
+ *max = dpm_table->max;
+
+ return 0;
+}
+
static int smu_v13_0_7_read_sensor(struct smu_context *smu,
enum amd_pp_sensors sensor,
void *data,
@@ -1068,8 +1133,8 @@ static int smu_v13_0_7_print_clk_levels(struct smu_context *smu,
(pcie_table->pcie_lane[i] == 5) ? "x12" :
(pcie_table->pcie_lane[i] == 6) ? "x16" : "",
pcie_table->clk_freq[i],
- (gen_speed == pcie_table->pcie_gen[i]) &&
- (lane_width == pcie_table->pcie_lane[i]) ?
+ (gen_speed == DECODE_GEN_SPEED(pcie_table->pcie_gen[i])) &&
+ (lane_width == DECODE_LANE_WIDTH(pcie_table->pcie_lane[i])) ?
"*" : "");
break;
@@ -1222,6 +1287,7 @@ static int smu_v13_0_7_get_thermal_temperature_range(struct smu_context *smu,
range->mem_emergency_max = (pptable->SkuTable.TemperatureLimit[TEMP_MEM] + CTF_OFFSET_MEM)*
SMU_TEMPERATURE_UNITS_PER_CENTIGRADES;
range->software_shutdown_temp = powerplay_table->software_shutdown_temp;
+ range->software_shutdown_temp_offset = pptable->SkuTable.FanAbnormalTempLimitOffset;
return 0;
}
@@ -1322,9 +1388,17 @@ static int smu_v13_0_7_populate_umd_state_clk(struct smu_context *smu)
&dpm_context->dpm_tables.fclk_table;
struct smu_umd_pstate_table *pstate_table =
&smu->pstate_table;
+ struct smu_table_context *table_context = &smu->smu_table;
+ PPTable_t *pptable = table_context->driver_pptable;
+ DriverReportedClocks_t driver_clocks =
+ pptable->SkuTable.DriverReportedClocks;
pstate_table->gfxclk_pstate.min = gfx_table->min;
- pstate_table->gfxclk_pstate.peak = gfx_table->max;
+ if (driver_clocks.GameClockAc &&
+ (driver_clocks.GameClockAc < gfx_table->max))
+ pstate_table->gfxclk_pstate.peak = driver_clocks.GameClockAc;
+ else
+ pstate_table->gfxclk_pstate.peak = gfx_table->max;
pstate_table->uclk_pstate.min = mem_table->min;
pstate_table->uclk_pstate.peak = mem_table->max;
@@ -1341,12 +1415,12 @@ static int smu_v13_0_7_populate_umd_state_clk(struct smu_context *smu)
pstate_table->fclk_pstate.min = fclk_table->min;
pstate_table->fclk_pstate.peak = fclk_table->max;
- /*
- * For now, just use the mininum clock frequency.
- * TODO: update them when the real pstate settings available
- */
- pstate_table->gfxclk_pstate.standard = gfx_table->min;
- pstate_table->uclk_pstate.standard = mem_table->min;
+ if (driver_clocks.BaseClockAc &&
+ driver_clocks.BaseClockAc < gfx_table->max)
+ pstate_table->gfxclk_pstate.standard = driver_clocks.BaseClockAc;
+ else
+ pstate_table->gfxclk_pstate.standard = gfx_table->max;
+ pstate_table->uclk_pstate.standard = mem_table->max;
pstate_table->socclk_pstate.standard = soc_table->min;
pstate_table->vclk_pstate.standard = vclk_table->min;
pstate_table->dclk_pstate.standard = dclk_table->min;
@@ -1358,12 +1432,23 @@ static int smu_v13_0_7_populate_umd_state_clk(struct smu_context *smu)
static int smu_v13_0_7_get_fan_speed_pwm(struct smu_context *smu,
uint32_t *speed)
{
+ int ret;
+
if (!speed)
return -EINVAL;
- return smu_v13_0_7_get_smu_metrics_data(smu,
- METRICS_CURR_FANPWM,
- speed);
+ ret = smu_v13_0_7_get_smu_metrics_data(smu,
+ METRICS_CURR_FANPWM,
+ speed);
+ if (ret) {
+ dev_err(smu->adev->dev, "Failed to get fan speed(PWM)!");
+ return ret;
+ }
+
+ /* Convert the PMFW output which is in percent to pwm(255) based */
+ *speed = MIN(*speed * 255 / 100, 255);
+
+ return 0;
}
static int smu_v13_0_7_get_fan_speed_rpm(struct smu_context *smu,
@@ -1435,7 +1520,7 @@ static int smu_v13_0_7_get_power_limit(struct smu_context *smu,
static int smu_v13_0_7_get_power_profile_mode(struct smu_context *smu, char *buf)
{
- DpmActivityMonitorCoeffIntExternal_t activity_monitor_external[PP_SMC_POWER_PROFILE_COUNT];
+ DpmActivityMonitorCoeffIntExternal_t *activity_monitor_external;
uint32_t i, j, size = 0;
int16_t workload_type = 0;
int result = 0;
@@ -1443,6 +1528,12 @@ static int smu_v13_0_7_get_power_profile_mode(struct smu_context *smu, char *buf
if (!buf)
return -EINVAL;
+ activity_monitor_external = kcalloc(PP_SMC_POWER_PROFILE_COUNT,
+ sizeof(*activity_monitor_external),
+ GFP_KERNEL);
+ if (!activity_monitor_external)
+ return -ENOMEM;
+
size += sysfs_emit_at(buf, size, " ");
for (i = 0; i <= PP_SMC_POWER_PROFILE_WINDOW3D; i++)
size += sysfs_emit_at(buf, size, "%-14s%s", amdgpu_pp_profile_name[i],
@@ -1455,15 +1546,19 @@ static int smu_v13_0_7_get_power_profile_mode(struct smu_context *smu, char *buf
workload_type = smu_cmn_to_asic_specific_index(smu,
CMN2ASIC_MAPPING_WORKLOAD,
i);
- if (workload_type < 0)
- return -EINVAL;
+ if (workload_type == -ENOTSUPP)
+ continue;
+ else if (workload_type < 0) {
+ result = -EINVAL;
+ goto out;
+ }
result = smu_cmn_update_table(smu,
SMU_TABLE_ACTIVITY_MONITOR_COEFF, workload_type,
(void *)(&activity_monitor_external[i]), false);
if (result) {
dev_err(smu->adev->dev, "[%s] Failed to get activity monitor!", __func__);
- return result;
+ goto out;
}
}
@@ -1491,7 +1586,10 @@ do { \
PRINT_DPM_MONITOR(Fclk_BoosterFreq);
#undef PRINT_DPM_MONITOR
- return size;
+ result = size;
+out:
+ kfree(activity_monitor_external);
+ return result;
}
static int smu_v13_0_7_set_power_profile_mode(struct smu_context *smu, long *input, uint32_t size)
@@ -1578,6 +1676,31 @@ static int smu_v13_0_7_set_mp1_state(struct smu_context *smu,
return ret;
}
+static int smu_v13_0_7_baco_enter(struct smu_context *smu)
+{
+ struct smu_baco_context *smu_baco = &smu->smu_baco;
+ struct amdgpu_device *adev = smu->adev;
+
+ if (adev->in_runpm && smu_cmn_is_audio_func_enabled(adev))
+ return smu_v13_0_baco_set_armd3_sequence(smu,
+ smu_baco->maco_support ? BACO_SEQ_BAMACO : BACO_SEQ_BACO);
+ else
+ return smu_v13_0_baco_enter(smu);
+}
+
+static int smu_v13_0_7_baco_exit(struct smu_context *smu)
+{
+ struct amdgpu_device *adev = smu->adev;
+
+ if (adev->in_runpm && smu_cmn_is_audio_func_enabled(adev)) {
+ /* Wait for PMFW handling for the Dstate change */
+ usleep_range(10000, 11000);
+ return smu_v13_0_baco_set_armd3_sequence(smu, BACO_SEQ_ULPS);
+ } else {
+ return smu_v13_0_baco_exit(smu);
+ }
+}
+
static bool smu_v13_0_7_is_mode1_reset_supported(struct smu_context *smu)
{
struct amdgpu_device *adev = smu->adev;
@@ -1622,7 +1745,7 @@ static const struct pptable_funcs smu_v13_0_7_ppt_funcs = {
.dpm_set_jpeg_enable = smu_v13_0_set_jpeg_enable,
.init_pptable_microcode = smu_v13_0_init_pptable_microcode,
.populate_umd_state_clk = smu_v13_0_7_populate_umd_state_clk,
- .get_dpm_ultimate_freq = smu_v13_0_get_dpm_ultimate_freq,
+ .get_dpm_ultimate_freq = smu_v13_0_7_get_dpm_ultimate_freq,
.get_vbios_bootup_values = smu_v13_0_get_vbios_bootup_values,
.read_sensor = smu_v13_0_7_read_sensor,
.feature_is_enabled = smu_cmn_feature_is_enabled,
@@ -1655,12 +1778,13 @@ static const struct pptable_funcs smu_v13_0_7_ppt_funcs = {
.baco_is_support = smu_v13_0_baco_is_support,
.baco_get_state = smu_v13_0_baco_get_state,
.baco_set_state = smu_v13_0_baco_set_state,
- .baco_enter = smu_v13_0_baco_enter,
- .baco_exit = smu_v13_0_baco_exit,
+ .baco_enter = smu_v13_0_7_baco_enter,
+ .baco_exit = smu_v13_0_7_baco_exit,
.mode1_reset_is_support = smu_v13_0_7_is_mode1_reset_supported,
.mode1_reset = smu_v13_0_mode1_reset,
.set_mp1_state = smu_v13_0_7_set_mp1_state,
.set_df_cstate = smu_v13_0_7_set_df_cstate,
+ .gpo_control = smu_v13_0_gpo_control,
};
void smu_v13_0_7_set_ppt_funcs(struct smu_context *smu)
diff --git a/drivers/gpu/drm/amd/pm/swsmu/smu_cmn.c b/drivers/gpu/drm/amd/pm/swsmu/smu_cmn.c
index e4f8f90ac5aa..3ecb900e6ecd 100644
--- a/drivers/gpu/drm/amd/pm/swsmu/smu_cmn.c
+++ b/drivers/gpu/drm/amd/pm/swsmu/smu_cmn.c
@@ -233,6 +233,18 @@ static void __smu_cmn_send_msg(struct smu_context *smu,
WREG32(smu->msg_reg, msg);
}
+static int __smu_cmn_send_debug_msg(struct smu_context *smu,
+ u32 msg,
+ u32 param)
+{
+ struct amdgpu_device *adev = smu->adev;
+
+ WREG32(smu->debug_param_reg, param);
+ WREG32(smu->debug_msg_reg, msg);
+ WREG32(smu->debug_resp_reg, 0);
+
+ return 0;
+}
/**
* smu_cmn_send_msg_without_waiting -- send the message; don't wait for status
* @smu: pointer to an SMU context
@@ -386,6 +398,18 @@ int smu_cmn_send_smc_msg(struct smu_context *smu,
read_arg);
}
+int smu_cmn_send_debug_smc_msg(struct smu_context *smu,
+ uint32_t msg)
+{
+ return __smu_cmn_send_debug_msg(smu, msg, 0);
+}
+
+int smu_cmn_send_debug_smc_msg_with_param(struct smu_context *smu,
+ uint32_t msg, uint32_t param)
+{
+ return __smu_cmn_send_debug_msg(smu, msg, param);
+}
+
int smu_cmn_to_asic_specific_index(struct smu_context *smu,
enum smu_cmn2asic_mapping_type type,
uint32_t index)
@@ -454,13 +478,13 @@ int smu_cmn_to_asic_specific_index(struct smu_context *smu,
return mapping.map_to;
case CMN2ASIC_MAPPING_WORKLOAD:
- if (index > PP_SMC_POWER_PROFILE_WINDOW3D ||
+ if (index >= PP_SMC_POWER_PROFILE_COUNT ||
!smu->workload_map)
return -EINVAL;
mapping = smu->workload_map[index];
if (!mapping.valid_mapping)
- return -EINVAL;
+ return -ENOTSUPP;
return mapping.map_to;
diff --git a/drivers/gpu/drm/amd/pm/swsmu/smu_cmn.h b/drivers/gpu/drm/amd/pm/swsmu/smu_cmn.h
index 1526ce09c399..d7cd358a53bd 100644
--- a/drivers/gpu/drm/amd/pm/swsmu/smu_cmn.h
+++ b/drivers/gpu/drm/amd/pm/swsmu/smu_cmn.h
@@ -42,6 +42,12 @@ int smu_cmn_send_smc_msg(struct smu_context *smu,
enum smu_message_type msg,
uint32_t *read_arg);
+int smu_cmn_send_debug_smc_msg(struct smu_context *smu,
+ uint32_t msg);
+
+int smu_cmn_send_debug_smc_msg_with_param(struct smu_context *smu,
+ uint32_t msg, uint32_t param);
+
int smu_cmn_wait_for_response(struct smu_context *smu);
int smu_cmn_to_asic_specific_index(struct smu_context *smu,
diff --git a/drivers/gpu/drm/arm/display/komeda/komeda_crtc.c b/drivers/gpu/drm/arm/display/komeda/komeda_crtc.c
index 4cc07d6bb9d8..cea3fd5772b5 100644
--- a/drivers/gpu/drm/arm/display/komeda/komeda_crtc.c
+++ b/drivers/gpu/drm/arm/display/komeda/komeda_crtc.c
@@ -10,7 +10,6 @@
#include <drm/drm_atomic.h>
#include <drm/drm_atomic_helper.h>
-#include <drm/drm_crtc_helper.h>
#include <drm/drm_print.h>
#include <drm/drm_vblank.h>
diff --git a/drivers/gpu/drm/arm/display/komeda/komeda_drv.c b/drivers/gpu/drm/arm/display/komeda/komeda_drv.c
index 9fce4239d4ad..28f76e07dd95 100644
--- a/drivers/gpu/drm/arm/display/komeda/komeda_drv.c
+++ b/drivers/gpu/drm/arm/display/komeda/komeda_drv.c
@@ -6,10 +6,11 @@
*/
#include <linux/module.h>
#include <linux/kernel.h>
+#include <linux/of.h>
#include <linux/platform_device.h>
#include <linux/component.h>
#include <linux/pm_runtime.h>
-#include <drm/drm_fb_helper.h>
+#include <drm/drm_fbdev_generic.h>
#include <drm/drm_module.h>
#include <drm/drm_of.h>
#include "komeda_dev.h"
diff --git a/drivers/gpu/drm/arm/display/komeda/komeda_kms.c b/drivers/gpu/drm/arm/display/komeda/komeda_kms.c
index 451746ebbe71..62dc64550793 100644
--- a/drivers/gpu/drm/arm/display/komeda/komeda_kms.c
+++ b/drivers/gpu/drm/arm/display/komeda/komeda_kms.c
@@ -10,7 +10,6 @@
#include <drm/drm_atomic.h>
#include <drm/drm_atomic_helper.h>
#include <drm/drm_drv.h>
-#include <drm/drm_fb_helper.h>
#include <drm/drm_gem_dma_helper.h>
#include <drm/drm_gem_framebuffer_helper.h>
#include <drm/drm_managed.h>
@@ -59,7 +58,6 @@ static irqreturn_t komeda_kms_irq_handler(int irq, void *data)
static const struct drm_driver komeda_kms_driver = {
.driver_features = DRIVER_GEM | DRIVER_MODESET | DRIVER_ATOMIC,
- .lastclose = drm_fb_helper_lastclose,
DRM_GEM_DMA_DRIVER_OPS_WITH_DUMB_CREATE(komeda_gem_dma_dumb_create),
.fops = &komeda_cma_fops,
.name = "komeda",
diff --git a/drivers/gpu/drm/arm/display/komeda/komeda_kms.h b/drivers/gpu/drm/arm/display/komeda/komeda_kms.h
index 7339339ef6b8..3a872c292091 100644
--- a/drivers/gpu/drm/arm/display/komeda/komeda_kms.h
+++ b/drivers/gpu/drm/arm/display/komeda/komeda_kms.h
@@ -11,7 +11,6 @@
#include <drm/drm_atomic.h>
#include <drm/drm_atomic_helper.h>
#include <drm/drm_blend.h>
-#include <drm/drm_crtc_helper.h>
#include <drm/drm_device.h>
#include <drm/drm_writeback.h>
#include <drm/drm_print.h>
diff --git a/drivers/gpu/drm/arm/hdlcd_crtc.c b/drivers/gpu/drm/arm/hdlcd_crtc.c
index 7030339fa232..3cfefadc7c9d 100644
--- a/drivers/gpu/drm/arm/hdlcd_crtc.c
+++ b/drivers/gpu/drm/arm/hdlcd_crtc.c
@@ -19,7 +19,6 @@
#include <drm/drm_atomic_helper.h>
#include <drm/drm_crtc.h>
#include <drm/drm_fb_dma_helper.h>
-#include <drm/drm_fb_helper.h>
#include <drm/drm_framebuffer.h>
#include <drm/drm_gem_dma_helper.h>
#include <drm/drm_of.h>
@@ -275,7 +274,7 @@ static void hdlcd_plane_atomic_update(struct drm_plane *plane,
dest_h = drm_rect_height(&new_plane_state->dst);
scanout_start = drm_fb_dma_get_gem_addr(fb, new_plane_state, 0);
- hdlcd = plane->dev->dev_private;
+ hdlcd = drm_to_hdlcd_priv(plane->dev);
hdlcd_write(hdlcd, HDLCD_REG_FB_LINE_LENGTH, fb->pitches[0]);
hdlcd_write(hdlcd, HDLCD_REG_FB_LINE_PITCH, fb->pitches[0]);
hdlcd_write(hdlcd, HDLCD_REG_FB_LINE_COUNT, dest_h - 1);
@@ -290,7 +289,6 @@ static const struct drm_plane_helper_funcs hdlcd_plane_helper_funcs = {
static const struct drm_plane_funcs hdlcd_plane_funcs = {
.update_plane = drm_atomic_helper_update_plane,
.disable_plane = drm_atomic_helper_disable_plane,
- .destroy = drm_plane_cleanup,
.reset = drm_atomic_helper_plane_reset,
.atomic_duplicate_state = drm_atomic_helper_plane_duplicate_state,
.atomic_destroy_state = drm_atomic_helper_plane_destroy_state,
@@ -298,24 +296,19 @@ static const struct drm_plane_funcs hdlcd_plane_funcs = {
static struct drm_plane *hdlcd_plane_init(struct drm_device *drm)
{
- struct hdlcd_drm_private *hdlcd = drm->dev_private;
+ struct hdlcd_drm_private *hdlcd = drm_to_hdlcd_priv(drm);
struct drm_plane *plane = NULL;
u32 formats[ARRAY_SIZE(supported_formats)], i;
- int ret;
-
- plane = devm_kzalloc(drm->dev, sizeof(*plane), GFP_KERNEL);
- if (!plane)
- return ERR_PTR(-ENOMEM);
for (i = 0; i < ARRAY_SIZE(supported_formats); i++)
formats[i] = supported_formats[i].fourcc;
- ret = drm_universal_plane_init(drm, plane, 0xff, &hdlcd_plane_funcs,
- formats, ARRAY_SIZE(formats),
- NULL,
- DRM_PLANE_TYPE_PRIMARY, NULL);
- if (ret)
- return ERR_PTR(ret);
+ plane = drmm_universal_plane_alloc(drm, struct drm_plane, dev, 0xff,
+ &hdlcd_plane_funcs,
+ formats, ARRAY_SIZE(formats),
+ NULL, DRM_PLANE_TYPE_PRIMARY, NULL);
+ if (IS_ERR(plane))
+ return plane;
drm_plane_helper_add(plane, &hdlcd_plane_helper_funcs);
hdlcd->plane = plane;
@@ -325,7 +318,7 @@ static struct drm_plane *hdlcd_plane_init(struct drm_device *drm)
int hdlcd_setup_crtc(struct drm_device *drm)
{
- struct hdlcd_drm_private *hdlcd = drm->dev_private;
+ struct hdlcd_drm_private *hdlcd = drm_to_hdlcd_priv(drm);
struct drm_plane *primary;
int ret;
diff --git a/drivers/gpu/drm/arm/hdlcd_drv.c b/drivers/gpu/drm/arm/hdlcd_drv.c
index a032003c340c..9020bf820bc8 100644
--- a/drivers/gpu/drm/arm/hdlcd_drv.c
+++ b/drivers/gpu/drm/arm/hdlcd_drv.c
@@ -26,7 +26,7 @@
#include <drm/drm_crtc.h>
#include <drm/drm_debugfs.h>
#include <drm/drm_drv.h>
-#include <drm/drm_fb_helper.h>
+#include <drm/drm_fbdev_dma.h>
#include <drm/drm_gem_dma_helper.h>
#include <drm/drm_gem_framebuffer_helper.h>
#include <drm/drm_modeset_helper.h>
@@ -98,9 +98,8 @@ static void hdlcd_irq_uninstall(struct hdlcd_drm_private *hdlcd)
static int hdlcd_load(struct drm_device *drm, unsigned long flags)
{
- struct hdlcd_drm_private *hdlcd = drm->dev_private;
+ struct hdlcd_drm_private *hdlcd = drm_to_hdlcd_priv(drm);
struct platform_device *pdev = to_platform_device(drm->dev);
- struct resource *res;
u32 version;
int ret;
@@ -115,8 +114,7 @@ static int hdlcd_load(struct drm_device *drm, unsigned long flags)
atomic_set(&hdlcd->dma_end_count, 0);
#endif
- res = platform_get_resource(pdev, IORESOURCE_MEM, 0);
- hdlcd->mmio = devm_ioremap_resource(drm->dev, res);
+ hdlcd->mmio = devm_platform_ioremap_resource(pdev, 0);
if (IS_ERR(hdlcd->mmio)) {
DRM_ERROR("failed to map control registers area\n");
ret = PTR_ERR(hdlcd->mmio);
@@ -175,22 +173,29 @@ static const struct drm_mode_config_funcs hdlcd_mode_config_funcs = {
.atomic_commit = drm_atomic_helper_commit,
};
-static void hdlcd_setup_mode_config(struct drm_device *drm)
+static int hdlcd_setup_mode_config(struct drm_device *drm)
{
- drm_mode_config_init(drm);
+ int ret;
+
+ ret = drmm_mode_config_init(drm);
+ if (ret)
+ return ret;
+
drm->mode_config.min_width = 0;
drm->mode_config.min_height = 0;
drm->mode_config.max_width = HDLCD_MAX_XRES;
drm->mode_config.max_height = HDLCD_MAX_YRES;
drm->mode_config.funcs = &hdlcd_mode_config_funcs;
+
+ return 0;
}
#ifdef CONFIG_DEBUG_FS
static int hdlcd_show_underrun_count(struct seq_file *m, void *arg)
{
- struct drm_info_node *node = (struct drm_info_node *)m->private;
- struct drm_device *drm = node->minor->dev;
- struct hdlcd_drm_private *hdlcd = drm->dev_private;
+ struct drm_debugfs_entry *entry = m->private;
+ struct drm_device *drm = entry->dev;
+ struct hdlcd_drm_private *hdlcd = drm_to_hdlcd_priv(drm);
seq_printf(m, "underrun : %d\n", atomic_read(&hdlcd->buffer_underrun_count));
seq_printf(m, "dma_end : %d\n", atomic_read(&hdlcd->dma_end_count));
@@ -201,9 +206,9 @@ static int hdlcd_show_underrun_count(struct seq_file *m, void *arg)
static int hdlcd_show_pxlclock(struct seq_file *m, void *arg)
{
- struct drm_info_node *node = (struct drm_info_node *)m->private;
- struct drm_device *drm = node->minor->dev;
- struct hdlcd_drm_private *hdlcd = drm->dev_private;
+ struct drm_debugfs_entry *entry = m->private;
+ struct drm_device *drm = entry->dev;
+ struct hdlcd_drm_private *hdlcd = drm_to_hdlcd_priv(drm);
unsigned long clkrate = clk_get_rate(hdlcd->clk);
unsigned long mode_clock = hdlcd->crtc.mode.crtc_clock * 1000;
@@ -212,17 +217,10 @@ static int hdlcd_show_pxlclock(struct seq_file *m, void *arg)
return 0;
}
-static struct drm_info_list hdlcd_debugfs_list[] = {
+static struct drm_debugfs_info hdlcd_debugfs_list[] = {
{ "interrupt_count", hdlcd_show_underrun_count, 0 },
{ "clocks", hdlcd_show_pxlclock, 0 },
};
-
-static void hdlcd_debugfs_init(struct drm_minor *minor)
-{
- drm_debugfs_create_files(hdlcd_debugfs_list,
- ARRAY_SIZE(hdlcd_debugfs_list),
- minor->debugfs_root, minor);
-}
#endif
DEFINE_DRM_GEM_DMA_FOPS(fops);
@@ -230,9 +228,6 @@ DEFINE_DRM_GEM_DMA_FOPS(fops);
static const struct drm_driver hdlcd_driver = {
.driver_features = DRIVER_GEM | DRIVER_MODESET | DRIVER_ATOMIC,
DRM_GEM_DMA_DRIVER_OPS,
-#ifdef CONFIG_DEBUG_FS
- .debugfs_init = hdlcd_debugfs_init,
-#endif
.fops = &fops,
.name = "hdlcd",
.desc = "ARM HDLCD Controller DRM",
@@ -247,18 +242,18 @@ static int hdlcd_drm_bind(struct device *dev)
struct hdlcd_drm_private *hdlcd;
int ret;
- hdlcd = devm_kzalloc(dev, sizeof(*hdlcd), GFP_KERNEL);
- if (!hdlcd)
- return -ENOMEM;
+ hdlcd = devm_drm_dev_alloc(dev, &hdlcd_driver, typeof(*hdlcd), base);
+ if (IS_ERR(hdlcd))
+ return PTR_ERR(hdlcd);
- drm = drm_dev_alloc(&hdlcd_driver, dev);
- if (IS_ERR(drm))
- return PTR_ERR(drm);
+ drm = &hdlcd->base;
- drm->dev_private = hdlcd;
dev_set_drvdata(dev, drm);
- hdlcd_setup_mode_config(drm);
+ ret = hdlcd_setup_mode_config(drm);
+ if (ret)
+ goto err_free;
+
ret = hdlcd_load(drm, 0);
if (ret)
goto err_free;
@@ -296,11 +291,15 @@ static int hdlcd_drm_bind(struct device *dev)
drm_mode_config_reset(drm);
drm_kms_helper_poll_init(drm);
+#ifdef CONFIG_DEBUG_FS
+ drm_debugfs_add_files(drm, hdlcd_debugfs_list, ARRAY_SIZE(hdlcd_debugfs_list));
+#endif
+
ret = drm_dev_register(drm, 0);
if (ret)
goto err_register;
- drm_fbdev_generic_setup(drm, 32);
+ drm_fbdev_dma_setup(drm, 32);
return 0;
@@ -317,17 +316,14 @@ err_unload:
hdlcd_irq_uninstall(hdlcd);
of_reserved_mem_device_release(drm->dev);
err_free:
- drm_mode_config_cleanup(drm);
dev_set_drvdata(dev, NULL);
- drm_dev_put(drm);
-
return ret;
}
static void hdlcd_drm_unbind(struct device *dev)
{
struct drm_device *drm = dev_get_drvdata(dev);
- struct hdlcd_drm_private *hdlcd = drm->dev_private;
+ struct hdlcd_drm_private *hdlcd = drm_to_hdlcd_priv(drm);
drm_dev_unregister(drm);
drm_kms_helper_poll_fini(drm);
@@ -341,10 +337,7 @@ static void hdlcd_drm_unbind(struct device *dev)
if (pm_runtime_enabled(dev))
pm_runtime_disable(dev);
of_reserved_mem_device_release(dev);
- drm_mode_config_cleanup(drm);
- drm->dev_private = NULL;
dev_set_drvdata(dev, NULL);
- drm_dev_put(drm);
}
static const struct component_master_ops hdlcd_master_ops = {
diff --git a/drivers/gpu/drm/arm/hdlcd_drv.h b/drivers/gpu/drm/arm/hdlcd_drv.h
index 909c39c28487..f1c1da2ac2db 100644
--- a/drivers/gpu/drm/arm/hdlcd_drv.h
+++ b/drivers/gpu/drm/arm/hdlcd_drv.h
@@ -7,6 +7,7 @@
#define __HDLCD_DRV_H__
struct hdlcd_drm_private {
+ struct drm_device base;
void __iomem *mmio;
struct clk *clk;
struct drm_crtc crtc;
@@ -20,6 +21,7 @@ struct hdlcd_drm_private {
#endif
};
+#define drm_to_hdlcd_priv(x) container_of(x, struct hdlcd_drm_private, base)
#define crtc_to_hdlcd_priv(x) container_of(x, struct hdlcd_drm_private, crtc)
static inline void hdlcd_write(struct hdlcd_drm_private *hdlcd,
diff --git a/drivers/gpu/drm/arm/malidp_crtc.c b/drivers/gpu/drm/arm/malidp_crtc.c
index 962730772b2f..dc01c43f6193 100644
--- a/drivers/gpu/drm/arm/malidp_crtc.c
+++ b/drivers/gpu/drm/arm/malidp_crtc.c
@@ -514,7 +514,6 @@ static void malidp_crtc_disable_vblank(struct drm_crtc *crtc)
}
static const struct drm_crtc_funcs malidp_crtc_funcs = {
- .destroy = drm_crtc_cleanup,
.set_config = drm_atomic_helper_set_config,
.page_flip = drm_atomic_helper_page_flip,
.reset = malidp_crtc_reset,
@@ -526,7 +525,7 @@ static const struct drm_crtc_funcs malidp_crtc_funcs = {
int malidp_crtc_init(struct drm_device *drm)
{
- struct malidp_drm *malidp = drm->dev_private;
+ struct malidp_drm *malidp = drm_to_malidp(drm);
struct drm_plane *primary = NULL, *plane;
int ret;
@@ -548,8 +547,8 @@ int malidp_crtc_init(struct drm_device *drm)
return -EINVAL;
}
- ret = drm_crtc_init_with_planes(drm, &malidp->crtc, primary, NULL,
- &malidp_crtc_funcs, NULL);
+ ret = drmm_crtc_init_with_planes(drm, &malidp->crtc, primary, NULL,
+ &malidp_crtc_funcs, NULL);
if (ret)
return ret;
diff --git a/drivers/gpu/drm/arm/malidp_drv.c b/drivers/gpu/drm/arm/malidp_drv.c
index 1d0b0c54ccc7..c03cfd57b752 100644
--- a/drivers/gpu/drm/arm/malidp_drv.c
+++ b/drivers/gpu/drm/arm/malidp_drv.c
@@ -19,10 +19,11 @@
#include <drm/drm_atomic_helper.h>
#include <drm/drm_crtc.h>
#include <drm/drm_drv.h>
-#include <drm/drm_fb_helper.h>
+#include <drm/drm_fbdev_dma.h>
#include <drm/drm_fourcc.h>
#include <drm/drm_gem_dma_helper.h>
#include <drm/drm_gem_framebuffer_helper.h>
+#include <drm/drm_managed.h>
#include <drm/drm_modeset_helper.h>
#include <drm/drm_module.h>
#include <drm/drm_of.h>
@@ -168,7 +169,7 @@ static void malidp_atomic_commit_se_config(struct drm_crtc *crtc,
*/
static int malidp_set_and_wait_config_valid(struct drm_device *drm)
{
- struct malidp_drm *malidp = drm->dev_private;
+ struct malidp_drm *malidp = drm_to_malidp(drm);
struct malidp_hw_device *hwdev = malidp->dev;
int ret;
@@ -189,7 +190,7 @@ static int malidp_set_and_wait_config_valid(struct drm_device *drm)
static void malidp_atomic_commit_hw_done(struct drm_atomic_state *state)
{
struct drm_device *drm = state->dev;
- struct malidp_drm *malidp = drm->dev_private;
+ struct malidp_drm *malidp = drm_to_malidp(drm);
int loop = 5;
malidp->event = malidp->crtc.state->event;
@@ -230,7 +231,7 @@ static void malidp_atomic_commit_hw_done(struct drm_atomic_state *state)
static void malidp_atomic_commit_tail(struct drm_atomic_state *state)
{
struct drm_device *drm = state->dev;
- struct malidp_drm *malidp = drm->dev_private;
+ struct malidp_drm *malidp = drm_to_malidp(drm);
struct drm_crtc *crtc;
struct drm_crtc_state *old_crtc_state;
int i;
@@ -392,10 +393,12 @@ static const struct drm_mode_config_funcs malidp_mode_config_funcs = {
static int malidp_init(struct drm_device *drm)
{
int ret;
- struct malidp_drm *malidp = drm->dev_private;
+ struct malidp_drm *malidp = drm_to_malidp(drm);
struct malidp_hw_device *hwdev = malidp->dev;
- drm_mode_config_init(drm);
+ ret = drmm_mode_config_init(drm);
+ if (ret)
+ goto out;
drm->mode_config.min_width = hwdev->min_line_size;
drm->mode_config.min_height = hwdev->min_line_size;
@@ -406,29 +409,21 @@ static int malidp_init(struct drm_device *drm)
ret = malidp_crtc_init(drm);
if (ret)
- goto crtc_fail;
+ goto out;
ret = malidp_mw_connector_init(drm);
if (ret)
- goto crtc_fail;
-
- return 0;
+ goto out;
-crtc_fail:
- drm_mode_config_cleanup(drm);
+out:
return ret;
}
-static void malidp_fini(struct drm_device *drm)
-{
- drm_mode_config_cleanup(drm);
-}
-
static int malidp_irq_init(struct platform_device *pdev)
{
int irq_de, irq_se, ret = 0;
struct drm_device *drm = dev_get_drvdata(&pdev->dev);
- struct malidp_drm *malidp = drm->dev_private;
+ struct malidp_drm *malidp = drm_to_malidp(drm);
struct malidp_hw_device *hwdev = malidp->dev;
/* fetch the interrupts from DT */
@@ -462,7 +457,7 @@ static int malidp_dumb_create(struct drm_file *file_priv,
struct drm_device *drm,
struct drm_mode_create_dumb *args)
{
- struct malidp_drm *malidp = drm->dev_private;
+ struct malidp_drm *malidp = drm_to_malidp(drm);
/* allocate for the worst case scenario, i.e. rotated buffers */
u8 alignment = malidp_hw_get_pitch_align(malidp->dev, 1);
@@ -508,7 +503,7 @@ static void malidp_error_stats_dump(const char *prefix,
static int malidp_show_stats(struct seq_file *m, void *arg)
{
struct drm_device *drm = m->private;
- struct malidp_drm *malidp = drm->dev_private;
+ struct malidp_drm *malidp = drm_to_malidp(drm);
unsigned long irqflags;
struct malidp_error_stats de_errors, se_errors;
@@ -531,7 +526,7 @@ static ssize_t malidp_debugfs_write(struct file *file, const char __user *ubuf,
{
struct seq_file *m = file->private_data;
struct drm_device *drm = m->private;
- struct malidp_drm *malidp = drm->dev_private;
+ struct malidp_drm *malidp = drm_to_malidp(drm);
unsigned long irqflags;
spin_lock_irqsave(&malidp->errors_lock, irqflags);
@@ -552,7 +547,7 @@ static const struct file_operations malidp_debugfs_fops = {
static void malidp_debugfs_init(struct drm_minor *minor)
{
- struct malidp_drm *malidp = minor->dev->dev_private;
+ struct malidp_drm *malidp = drm_to_malidp(minor->dev);
malidp_error_stats_init(&malidp->de_errors);
malidp_error_stats_init(&malidp->se_errors);
@@ -652,9 +647,9 @@ static ssize_t core_id_show(struct device *dev, struct device_attribute *attr,
char *buf)
{
struct drm_device *drm = dev_get_drvdata(dev);
- struct malidp_drm *malidp = drm->dev_private;
+ struct malidp_drm *malidp = drm_to_malidp(drm);
- return snprintf(buf, PAGE_SIZE, "%08x\n", malidp->core_id);
+ return sysfs_emit(buf, "%08x\n", malidp->core_id);
}
static DEVICE_ATTR_RO(core_id);
@@ -670,7 +665,7 @@ ATTRIBUTE_GROUPS(mali_dp);
static int malidp_runtime_pm_suspend(struct device *dev)
{
struct drm_device *drm = dev_get_drvdata(dev);
- struct malidp_drm *malidp = drm->dev_private;
+ struct malidp_drm *malidp = drm_to_malidp(drm);
struct malidp_hw_device *hwdev = malidp->dev;
/* we can only suspend if the hardware is in config mode */
@@ -689,7 +684,7 @@ static int malidp_runtime_pm_suspend(struct device *dev)
static int malidp_runtime_pm_resume(struct device *dev)
{
struct drm_device *drm = dev_get_drvdata(dev);
- struct malidp_drm *malidp = drm->dev_private;
+ struct malidp_drm *malidp = drm_to_malidp(drm);
struct malidp_hw_device *hwdev = malidp->dev;
clk_prepare_enable(hwdev->pclk);
@@ -716,19 +711,20 @@ static int malidp_bind(struct device *dev)
int ret = 0, i;
u32 version, out_depth = 0;
- malidp = devm_kzalloc(dev, sizeof(*malidp), GFP_KERNEL);
- if (!malidp)
- return -ENOMEM;
+ malidp = devm_drm_dev_alloc(dev, &malidp_driver, typeof(*malidp), base);
+ if (IS_ERR(malidp))
+ return PTR_ERR(malidp);
+
+ drm = &malidp->base;
- hwdev = devm_kzalloc(dev, sizeof(*hwdev), GFP_KERNEL);
+ hwdev = drmm_kzalloc(drm, sizeof(*hwdev), GFP_KERNEL);
if (!hwdev)
return -ENOMEM;
hwdev->hw = (struct malidp_hw *)of_device_get_match_data(dev);
malidp->dev = hwdev;
- res = platform_get_resource(pdev, IORESOURCE_MEM, 0);
- hwdev->regs = devm_ioremap_resource(dev, res);
+ hwdev->regs = devm_platform_get_and_ioremap_resource(pdev, 0, &res);
if (IS_ERR(hwdev->regs))
return PTR_ERR(hwdev->regs);
@@ -753,13 +749,6 @@ static int malidp_bind(struct device *dev)
if (ret && ret != -ENODEV)
return ret;
- drm = drm_dev_alloc(&malidp_driver, dev);
- if (IS_ERR(drm)) {
- ret = PTR_ERR(drm);
- goto alloc_fail;
- }
-
- drm->dev_private = malidp;
dev_set_drvdata(dev, drm);
/* Enable power management */
@@ -862,7 +851,7 @@ static int malidp_bind(struct device *dev)
if (ret)
goto register_fail;
- drm_fbdev_generic_setup(drm, 32);
+ drm_fbdev_dma_setup(drm, 32);
return 0;
@@ -878,17 +867,13 @@ irq_init_fail:
bind_fail:
of_node_put(malidp->crtc.port);
malidp->crtc.port = NULL;
- malidp_fini(drm);
query_hw_fail:
pm_runtime_put(dev);
if (pm_runtime_enabled(dev))
pm_runtime_disable(dev);
else
malidp_runtime_pm_suspend(dev);
- drm->dev_private = NULL;
dev_set_drvdata(dev, NULL);
- drm_dev_put(drm);
-alloc_fail:
of_reserved_mem_device_release(dev);
return ret;
@@ -897,7 +882,7 @@ alloc_fail:
static void malidp_unbind(struct device *dev)
{
struct drm_device *drm = dev_get_drvdata(dev);
- struct malidp_drm *malidp = drm->dev_private;
+ struct malidp_drm *malidp = drm_to_malidp(drm);
struct malidp_hw_device *hwdev = malidp->dev;
drm_dev_unregister(drm);
@@ -909,15 +894,12 @@ static void malidp_unbind(struct device *dev)
component_unbind_all(dev, drm);
of_node_put(malidp->crtc.port);
malidp->crtc.port = NULL;
- malidp_fini(drm);
pm_runtime_put(dev);
if (pm_runtime_enabled(dev))
pm_runtime_disable(dev);
else
malidp_runtime_pm_suspend(dev);
- drm->dev_private = NULL;
dev_set_drvdata(dev, NULL);
- drm_dev_put(drm);
of_reserved_mem_device_release(dev);
}
diff --git a/drivers/gpu/drm/arm/malidp_drv.h b/drivers/gpu/drm/arm/malidp_drv.h
index cdfddfabf2d1..bc0387876dea 100644
--- a/drivers/gpu/drm/arm/malidp_drv.h
+++ b/drivers/gpu/drm/arm/malidp_drv.h
@@ -29,6 +29,7 @@ struct malidp_error_stats {
};
struct malidp_drm {
+ struct drm_device base;
struct malidp_hw_device *dev;
struct drm_crtc crtc;
struct drm_writeback_connector mw_connector;
@@ -44,6 +45,7 @@ struct malidp_drm {
#endif
};
+#define drm_to_malidp(x) container_of(x, struct malidp_drm, base)
#define crtc_to_malidp_device(x) container_of(x, struct malidp_drm, crtc)
struct malidp_plane {
diff --git a/drivers/gpu/drm/arm/malidp_hw.c b/drivers/gpu/drm/arm/malidp_hw.c
index e9de542f9b7c..9b845d3f34e1 100644
--- a/drivers/gpu/drm/arm/malidp_hw.c
+++ b/drivers/gpu/drm/arm/malidp_hw.c
@@ -1168,7 +1168,7 @@ static void malidp_hw_clear_irq(struct malidp_hw_device *hwdev, u8 block, u32 ir
static irqreturn_t malidp_de_irq(int irq, void *arg)
{
struct drm_device *drm = arg;
- struct malidp_drm *malidp = drm->dev_private;
+ struct malidp_drm *malidp = drm_to_malidp(drm);
struct malidp_hw_device *hwdev;
struct malidp_hw *hw;
const struct malidp_irq_map *de;
@@ -1226,7 +1226,7 @@ static irqreturn_t malidp_de_irq(int irq, void *arg)
static irqreturn_t malidp_de_irq_thread_handler(int irq, void *arg)
{
struct drm_device *drm = arg;
- struct malidp_drm *malidp = drm->dev_private;
+ struct malidp_drm *malidp = drm_to_malidp(drm);
wake_up(&malidp->wq);
@@ -1252,7 +1252,7 @@ void malidp_de_irq_hw_init(struct malidp_hw_device *hwdev)
int malidp_de_irq_init(struct drm_device *drm, int irq)
{
- struct malidp_drm *malidp = drm->dev_private;
+ struct malidp_drm *malidp = drm_to_malidp(drm);
struct malidp_hw_device *hwdev = malidp->dev;
int ret;
@@ -1286,7 +1286,7 @@ void malidp_de_irq_fini(struct malidp_hw_device *hwdev)
static irqreturn_t malidp_se_irq(int irq, void *arg)
{
struct drm_device *drm = arg;
- struct malidp_drm *malidp = drm->dev_private;
+ struct malidp_drm *malidp = drm_to_malidp(drm);
struct malidp_hw_device *hwdev = malidp->dev;
struct malidp_hw *hw = hwdev->hw;
const struct malidp_irq_map *se = &hw->map.se_irq_map;
@@ -1363,7 +1363,7 @@ static irqreturn_t malidp_se_irq_thread_handler(int irq, void *arg)
int malidp_se_irq_init(struct drm_device *drm, int irq)
{
- struct malidp_drm *malidp = drm->dev_private;
+ struct malidp_drm *malidp = drm_to_malidp(drm);
struct malidp_hw_device *hwdev = malidp->dev;
int ret;
diff --git a/drivers/gpu/drm/arm/malidp_mw.c b/drivers/gpu/drm/arm/malidp_mw.c
index ef76d0e6ee2f..626709bec6f5 100644
--- a/drivers/gpu/drm/arm/malidp_mw.c
+++ b/drivers/gpu/drm/arm/malidp_mw.c
@@ -129,7 +129,7 @@ malidp_mw_encoder_atomic_check(struct drm_encoder *encoder,
struct drm_connector_state *conn_state)
{
struct malidp_mw_connector_state *mw_state = to_mw_state(conn_state);
- struct malidp_drm *malidp = encoder->dev->dev_private;
+ struct malidp_drm *malidp = drm_to_malidp(encoder->dev);
struct drm_framebuffer *fb;
int i, n_planes;
@@ -207,7 +207,7 @@ static u32 *get_writeback_formats(struct malidp_drm *malidp, int *n_formats)
int malidp_mw_connector_init(struct drm_device *drm)
{
- struct malidp_drm *malidp = drm->dev_private;
+ struct malidp_drm *malidp = drm_to_malidp(drm);
u32 *formats;
int ret, n_formats;
@@ -236,7 +236,7 @@ int malidp_mw_connector_init(struct drm_device *drm)
void malidp_mw_atomic_commit(struct drm_device *drm,
struct drm_atomic_state *old_state)
{
- struct malidp_drm *malidp = drm->dev_private;
+ struct malidp_drm *malidp = drm_to_malidp(drm);
struct drm_writeback_connector *mw_conn = &malidp->mw_connector;
struct drm_connector_state *conn_state = mw_conn->base.state;
struct malidp_hw_device *hwdev = malidp->dev;
diff --git a/drivers/gpu/drm/arm/malidp_planes.c b/drivers/gpu/drm/arm/malidp_planes.c
index 45f5e35e7f24..34547edf1ee3 100644
--- a/drivers/gpu/drm/arm/malidp_planes.c
+++ b/drivers/gpu/drm/arm/malidp_planes.c
@@ -68,14 +68,6 @@
/* readahead for partial-frame prefetch */
#define MALIDP_MMU_PREFETCH_READAHEAD 8
-static void malidp_de_plane_destroy(struct drm_plane *plane)
-{
- struct malidp_plane *mp = to_malidp_plane(plane);
-
- drm_plane_cleanup(plane);
- kfree(mp);
-}
-
/*
* Replicate what the default ->reset hook does: free the state pointer and
* allocate a new empty object. We just need enough space to store
@@ -151,7 +143,7 @@ bool malidp_format_mod_supported(struct drm_device *drm,
{
const struct drm_format_info *info;
const u64 *modifiers;
- struct malidp_drm *malidp = drm->dev_private;
+ struct malidp_drm *malidp = drm_to_malidp(drm);
const struct malidp_hw_regmap *map = &malidp->dev->hw->map;
if (WARN_ON(modifier == DRM_FORMAT_MOD_INVALID))
@@ -260,7 +252,6 @@ static bool malidp_format_mod_supported_per_plane(struct drm_plane *plane,
static const struct drm_plane_funcs malidp_de_plane_funcs = {
.update_plane = drm_atomic_helper_update_plane,
.disable_plane = drm_atomic_helper_disable_plane,
- .destroy = malidp_de_plane_destroy,
.reset = malidp_plane_reset,
.atomic_duplicate_state = malidp_duplicate_plane_state,
.atomic_destroy_state = malidp_destroy_plane_state,
@@ -931,7 +922,7 @@ static const uint64_t linear_only_modifiers[] = {
int malidp_de_planes_init(struct drm_device *drm)
{
- struct malidp_drm *malidp = drm->dev_private;
+ struct malidp_drm *malidp = drm_to_malidp(drm);
const struct malidp_hw_regmap *map = &malidp->dev->hw->map;
struct malidp_plane *plane = NULL;
enum drm_plane_type plane_type;
@@ -972,12 +963,6 @@ int malidp_de_planes_init(struct drm_device *drm)
for (i = 0; i < map->n_layers; i++) {
u8 id = map->layers[i].id;
- plane = kzalloc(sizeof(*plane), GFP_KERNEL);
- if (!plane) {
- ret = -ENOMEM;
- goto cleanup;
- }
-
/* build the list of DRM supported formats based on the map */
for (n = 0, j = 0; j < map->n_pixel_formats; j++) {
if ((map->pixel_formats[j].layer & id) == id)
@@ -990,13 +975,14 @@ int malidp_de_planes_init(struct drm_device *drm)
/*
* All the layers except smart layer supports AFBC modifiers.
*/
- ret = drm_universal_plane_init(drm, &plane->base, crtcs,
- &malidp_de_plane_funcs, formats, n,
- (id == DE_SMART) ? linear_only_modifiers : modifiers,
- plane_type, NULL);
-
- if (ret < 0)
+ plane = drmm_universal_plane_alloc(drm, struct malidp_plane, base,
+ crtcs, &malidp_de_plane_funcs, formats, n,
+ (id == DE_SMART) ? linear_only_modifiers :
+ modifiers, plane_type, NULL);
+ if (IS_ERR(plane)) {
+ ret = PTR_ERR(plane);
goto cleanup;
+ }
drm_plane_helper_add(&plane->base,
&malidp_de_plane_helper_funcs);
diff --git a/drivers/gpu/drm/armada/armada_drv.c b/drivers/gpu/drm/armada/armada_drv.c
index 0643887800b4..142668cd6d7c 100644
--- a/drivers/gpu/drm/armada/armada_drv.c
+++ b/drivers/gpu/drm/armada/armada_drv.c
@@ -99,7 +99,6 @@ static int armada_drm_bind(struct device *dev)
if (ret) {
dev_err(dev, "[" DRM_NAME ":%s] can't kick out simple-fb: %d\n",
__func__, ret);
- kfree(priv);
return ret;
}
diff --git a/drivers/gpu/drm/armada/armada_fbdev.c b/drivers/gpu/drm/armada/armada_fbdev.c
index 38f5170c0fea..0e44f53e9fa4 100644
--- a/drivers/gpu/drm/armada/armada_fbdev.c
+++ b/drivers/gpu/drm/armada/armada_fbdev.c
@@ -19,6 +19,8 @@
static const struct fb_ops armada_fb_ops = {
.owner = THIS_MODULE,
DRM_FB_HELPER_DEFAULT_OPS,
+ .fb_read = drm_fb_helper_cfb_read,
+ .fb_write = drm_fb_helper_cfb_write,
.fb_fillrect = drm_fb_helper_cfb_fillrect,
.fb_copyarea = drm_fb_helper_cfb_copyarea,
.fb_imageblit = drm_fb_helper_cfb_imageblit,
@@ -72,7 +74,7 @@ static int armada_fbdev_create(struct drm_fb_helper *fbh,
if (IS_ERR(dfb))
return PTR_ERR(dfb);
- info = drm_fb_helper_alloc_fbi(fbh);
+ info = drm_fb_helper_alloc_info(fbh);
if (IS_ERR(info)) {
ret = PTR_ERR(info);
goto err_fballoc;
@@ -127,7 +129,7 @@ int armada_fbdev_init(struct drm_device *dev)
priv->fbdev = fbh;
- drm_fb_helper_prepare(dev, fbh, &armada_fb_helper_funcs);
+ drm_fb_helper_prepare(dev, fbh, 32, &armada_fb_helper_funcs);
ret = drm_fb_helper_init(dev, fbh);
if (ret) {
@@ -135,7 +137,7 @@ int armada_fbdev_init(struct drm_device *dev)
goto err_fb_helper;
}
- ret = drm_fb_helper_initial_config(fbh, 32);
+ ret = drm_fb_helper_initial_config(fbh);
if (ret) {
DRM_ERROR("failed to set initial config\n");
goto err_fb_setup;
@@ -145,6 +147,7 @@ int armada_fbdev_init(struct drm_device *dev)
err_fb_setup:
drm_fb_helper_fini(fbh);
err_fb_helper:
+ drm_fb_helper_unprepare(fbh);
priv->fbdev = NULL;
return ret;
}
@@ -155,13 +158,15 @@ void armada_fbdev_fini(struct drm_device *dev)
struct drm_fb_helper *fbh = priv->fbdev;
if (fbh) {
- drm_fb_helper_unregister_fbi(fbh);
+ drm_fb_helper_unregister_info(fbh);
drm_fb_helper_fini(fbh);
if (fbh->fb)
fbh->fb->funcs->destroy(fbh->fb);
+ drm_fb_helper_unprepare(fbh);
+
priv->fbdev = NULL;
}
}
diff --git a/drivers/gpu/drm/armada/armada_gem.c b/drivers/gpu/drm/armada/armada_gem.c
index 5430265ad458..26d10065d534 100644
--- a/drivers/gpu/drm/armada/armada_gem.c
+++ b/drivers/gpu/drm/armada/armada_gem.c
@@ -66,8 +66,8 @@ void armada_gem_free_object(struct drm_gem_object *obj)
if (dobj->obj.import_attach) {
/* We only ever display imported data */
if (dobj->sgt)
- dma_buf_unmap_attachment(dobj->obj.import_attach,
- dobj->sgt, DMA_TO_DEVICE);
+ dma_buf_unmap_attachment_unlocked(dobj->obj.import_attach,
+ dobj->sgt, DMA_TO_DEVICE);
drm_prime_gem_destroy(&dobj->obj, NULL);
}
@@ -539,8 +539,8 @@ int armada_gem_map_import(struct armada_gem_object *dobj)
{
int ret;
- dobj->sgt = dma_buf_map_attachment(dobj->obj.import_attach,
- DMA_TO_DEVICE);
+ dobj->sgt = dma_buf_map_attachment_unlocked(dobj->obj.import_attach,
+ DMA_TO_DEVICE);
if (IS_ERR(dobj->sgt)) {
ret = PTR_ERR(dobj->sgt);
dobj->sgt = NULL;
diff --git a/drivers/gpu/drm/aspeed/aspeed_gfx_crtc.c b/drivers/gpu/drm/aspeed/aspeed_gfx_crtc.c
index 55a3444a51d8..7877a57b8e26 100644
--- a/drivers/gpu/drm/aspeed/aspeed_gfx_crtc.c
+++ b/drivers/gpu/drm/aspeed/aspeed_gfx_crtc.c
@@ -5,7 +5,6 @@
#include <linux/reset.h>
#include <linux/regmap.h>
-#include <drm/drm_crtc_helper.h>
#include <drm/drm_device.h>
#include <drm/drm_fb_dma_helper.h>
#include <drm/drm_fourcc.h>
diff --git a/drivers/gpu/drm/aspeed/aspeed_gfx_drv.c b/drivers/gpu/drm/aspeed/aspeed_gfx_drv.c
index a94f1a9e8f40..c8c7f8215155 100644
--- a/drivers/gpu/drm/aspeed/aspeed_gfx_drv.c
+++ b/drivers/gpu/drm/aspeed/aspeed_gfx_drv.c
@@ -14,9 +14,8 @@
#include <linux/reset.h>
#include <drm/drm_atomic_helper.h>
-#include <drm/drm_crtc_helper.h>
#include <drm/drm_device.h>
-#include <drm/drm_fb_helper.h>
+#include <drm/drm_fbdev_dma.h>
#include <drm/drm_gem_dma_helper.h>
#include <drm/drm_gem_framebuffer_helper.h>
#include <drm/drm_module.h>
@@ -342,7 +341,7 @@ static int aspeed_gfx_probe(struct platform_device *pdev)
if (ret)
goto err_unload;
- drm_fbdev_generic_setup(&priv->drm, 32);
+ drm_fbdev_dma_setup(&priv->drm, 32);
return 0;
err_unload:
diff --git a/drivers/gpu/drm/aspeed/aspeed_gfx_out.c b/drivers/gpu/drm/aspeed/aspeed_gfx_out.c
index 4f2187025a21..78775e0c853f 100644
--- a/drivers/gpu/drm/aspeed/aspeed_gfx_out.c
+++ b/drivers/gpu/drm/aspeed/aspeed_gfx_out.c
@@ -3,7 +3,6 @@
#include <drm/drm_atomic_helper.h>
#include <drm/drm_connector.h>
-#include <drm/drm_crtc_helper.h>
#include <drm/drm_edid.h>
#include <drm/drm_probe_helper.h>
diff --git a/drivers/gpu/drm/ast/Kconfig b/drivers/gpu/drm/ast/Kconfig
index fbcf2f45cef5..563fa7a3b546 100644
--- a/drivers/gpu/drm/ast/Kconfig
+++ b/drivers/gpu/drm/ast/Kconfig
@@ -2,10 +2,10 @@
config DRM_AST
tristate "AST server chips"
depends on DRM && PCI && MMU
+ select DRM_GEM_SHMEM_HELPER
select DRM_KMS_HELPER
- select DRM_VRAM_HELPER
- select DRM_TTM
- select DRM_TTM_HELPER
+ select I2C
+ select I2C_ALGOBIT
help
Say yes for experimental AST GPU driver. Do not enable
this driver without having a working -modesetting,
diff --git a/drivers/gpu/drm/ast/ast_dp.c b/drivers/gpu/drm/ast/ast_dp.c
index 56483860306b..fbb070f63e36 100644
--- a/drivers/gpu/drm/ast/ast_dp.c
+++ b/drivers/gpu/drm/ast/ast_dp.c
@@ -9,7 +9,7 @@
int ast_astdp_read_edid(struct drm_device *dev, u8 *ediddata)
{
- struct ast_private *ast = to_ast_private(dev);
+ struct ast_device *ast = to_ast_device(dev);
u8 i = 0, j = 0;
/*
@@ -125,7 +125,7 @@ void ast_dp_launch(struct drm_device *dev, u8 bPower)
u8 bDPTX = 0;
u8 bDPExecute = 1;
- struct ast_private *ast = to_ast_private(dev);
+ struct ast_device *ast = to_ast_device(dev);
// S3 come back, need more time to wait BMC ready.
if (bPower)
WaitCount = 300;
@@ -172,7 +172,7 @@ void ast_dp_launch(struct drm_device *dev, u8 bPower)
void ast_dp_power_on_off(struct drm_device *dev, bool on)
{
- struct ast_private *ast = to_ast_private(dev);
+ struct ast_device *ast = to_ast_device(dev);
// Read and Turn off DP PHY sleep
u8 bE3 = ast_get_index_reg_mask(ast, AST_IO_CRTC_PORT, 0xE3, AST_DP_VIDEO_ENABLE);
@@ -188,7 +188,7 @@ void ast_dp_power_on_off(struct drm_device *dev, bool on)
void ast_dp_set_on_off(struct drm_device *dev, bool on)
{
- struct ast_private *ast = to_ast_private(dev);
+ struct ast_device *ast = to_ast_device(dev);
u8 video_on_off = on;
// Video On/Off
@@ -208,7 +208,7 @@ void ast_dp_set_on_off(struct drm_device *dev, bool on)
void ast_dp_set_mode(struct drm_crtc *crtc, struct ast_vbios_mode_info *vbios_mode)
{
- struct ast_private *ast = to_ast_private(crtc->dev);
+ struct ast_device *ast = to_ast_device(crtc->dev);
u32 ulRefreshRateIndex;
u8 ModeIdx;
diff --git a/drivers/gpu/drm/ast/ast_dp501.c b/drivers/gpu/drm/ast/ast_dp501.c
index 4f75a9efb610..1bc35a992369 100644
--- a/drivers/gpu/drm/ast/ast_dp501.c
+++ b/drivers/gpu/drm/ast/ast_dp501.c
@@ -10,7 +10,7 @@ MODULE_FIRMWARE("ast_dp501_fw.bin");
static void ast_release_firmware(void *data)
{
- struct ast_private *ast = data;
+ struct ast_device *ast = data;
release_firmware(ast->dp501_fw);
ast->dp501_fw = NULL;
@@ -18,7 +18,7 @@ static void ast_release_firmware(void *data)
static int ast_load_dp501_microcode(struct drm_device *dev)
{
- struct ast_private *ast = to_ast_private(dev);
+ struct ast_device *ast = to_ast_device(dev);
int ret;
ret = request_firmware(&ast->dp501_fw, "ast_dp501_fw.bin", dev->dev);
@@ -28,7 +28,7 @@ static int ast_load_dp501_microcode(struct drm_device *dev)
return devm_add_action_or_reset(dev->dev, ast_release_firmware, ast);
}
-static void send_ack(struct ast_private *ast)
+static void send_ack(struct ast_device *ast)
{
u8 sendack;
sendack = ast_get_index_reg_mask(ast, AST_IO_CRTC_PORT, 0x9b, 0xff);
@@ -36,7 +36,7 @@ static void send_ack(struct ast_private *ast)
ast_set_index_reg_mask(ast, AST_IO_CRTC_PORT, 0x9b, 0x00, sendack);
}
-static void send_nack(struct ast_private *ast)
+static void send_nack(struct ast_device *ast)
{
u8 sendack;
sendack = ast_get_index_reg_mask(ast, AST_IO_CRTC_PORT, 0x9b, 0xff);
@@ -44,7 +44,7 @@ static void send_nack(struct ast_private *ast)
ast_set_index_reg_mask(ast, AST_IO_CRTC_PORT, 0x9b, 0x00, sendack);
}
-static bool wait_ack(struct ast_private *ast)
+static bool wait_ack(struct ast_device *ast)
{
u8 waitack;
u32 retry = 0;
@@ -60,7 +60,7 @@ static bool wait_ack(struct ast_private *ast)
return false;
}
-static bool wait_nack(struct ast_private *ast)
+static bool wait_nack(struct ast_device *ast)
{
u8 waitack;
u32 retry = 0;
@@ -76,18 +76,18 @@ static bool wait_nack(struct ast_private *ast)
return false;
}
-static void set_cmd_trigger(struct ast_private *ast)
+static void set_cmd_trigger(struct ast_device *ast)
{
ast_set_index_reg_mask(ast, AST_IO_CRTC_PORT, 0x9b, ~0x40, 0x40);
}
-static void clear_cmd_trigger(struct ast_private *ast)
+static void clear_cmd_trigger(struct ast_device *ast)
{
ast_set_index_reg_mask(ast, AST_IO_CRTC_PORT, 0x9b, ~0x40, 0x00);
}
#if 0
-static bool wait_fw_ready(struct ast_private *ast)
+static bool wait_fw_ready(struct ast_device *ast)
{
u8 waitready;
u32 retry = 0;
@@ -106,7 +106,7 @@ static bool wait_fw_ready(struct ast_private *ast)
static bool ast_write_cmd(struct drm_device *dev, u8 data)
{
- struct ast_private *ast = to_ast_private(dev);
+ struct ast_device *ast = to_ast_device(dev);
int retry = 0;
if (wait_nack(ast)) {
send_nack(ast);
@@ -128,7 +128,7 @@ static bool ast_write_cmd(struct drm_device *dev, u8 data)
static bool ast_write_data(struct drm_device *dev, u8 data)
{
- struct ast_private *ast = to_ast_private(dev);
+ struct ast_device *ast = to_ast_device(dev);
if (wait_nack(ast)) {
send_nack(ast);
@@ -146,7 +146,7 @@ static bool ast_write_data(struct drm_device *dev, u8 data)
#if 0
static bool ast_read_data(struct drm_device *dev, u8 *data)
{
- struct ast_private *ast = to_ast_private(dev);
+ struct ast_device *ast = to_ast_device(dev);
u8 tmp;
*data = 0;
@@ -163,7 +163,7 @@ static bool ast_read_data(struct drm_device *dev, u8 *data)
return true;
}
-static void clear_cmd(struct ast_private *ast)
+static void clear_cmd(struct ast_device *ast)
{
send_nack(ast);
ast_set_index_reg_mask(ast, AST_IO_CRTC_PORT, 0x9a, 0x00, 0x00);
@@ -178,14 +178,14 @@ void ast_set_dp501_video_output(struct drm_device *dev, u8 mode)
msleep(10);
}
-static u32 get_fw_base(struct ast_private *ast)
+static u32 get_fw_base(struct ast_device *ast)
{
return ast_mindwm(ast, 0x1e6e2104) & 0x7fffffff;
}
bool ast_backup_fw(struct drm_device *dev, u8 *addr, u32 size)
{
- struct ast_private *ast = to_ast_private(dev);
+ struct ast_device *ast = to_ast_device(dev);
u32 i, data;
u32 boot_address;
@@ -204,7 +204,7 @@ bool ast_backup_fw(struct drm_device *dev, u8 *addr, u32 size)
static bool ast_launch_m68k(struct drm_device *dev)
{
- struct ast_private *ast = to_ast_private(dev);
+ struct ast_device *ast = to_ast_device(dev);
u32 i, data, len = 0;
u32 boot_address;
u8 *fw_addr = NULL;
@@ -274,7 +274,7 @@ static bool ast_launch_m68k(struct drm_device *dev)
bool ast_dp501_read_edid(struct drm_device *dev, u8 *ediddata)
{
- struct ast_private *ast = to_ast_private(dev);
+ struct ast_device *ast = to_ast_device(dev);
u32 i, boot_address, offset, data;
u32 *pEDIDidx;
@@ -334,7 +334,7 @@ bool ast_dp501_read_edid(struct drm_device *dev, u8 *ediddata)
static bool ast_init_dvo(struct drm_device *dev)
{
- struct ast_private *ast = to_ast_private(dev);
+ struct ast_device *ast = to_ast_device(dev);
u8 jreg;
u32 data;
ast_write32(ast, 0xf004, 0x1e6e0000);
@@ -407,7 +407,7 @@ static bool ast_init_dvo(struct drm_device *dev)
static void ast_init_analog(struct drm_device *dev)
{
- struct ast_private *ast = to_ast_private(dev);
+ struct ast_device *ast = to_ast_device(dev);
u32 data;
/*
@@ -434,7 +434,7 @@ static void ast_init_analog(struct drm_device *dev)
void ast_init_3rdtx(struct drm_device *dev)
{
- struct ast_private *ast = to_ast_private(dev);
+ struct ast_device *ast = to_ast_device(dev);
u8 jreg;
if (ast->chip == AST2300 || ast->chip == AST2400) {
diff --git a/drivers/gpu/drm/ast/ast_drv.c b/drivers/gpu/drm/ast/ast_drv.c
index b9392f31e629..e1224ef4ad83 100644
--- a/drivers/gpu/drm/ast/ast_drv.c
+++ b/drivers/gpu/drm/ast/ast_drv.c
@@ -31,9 +31,9 @@
#include <drm/drm_aperture.h>
#include <drm/drm_atomic_helper.h>
-#include <drm/drm_crtc_helper.h>
#include <drm/drm_drv.h>
-#include <drm/drm_gem_vram_helper.h>
+#include <drm/drm_fbdev_generic.h>
+#include <drm/drm_gem_shmem_helper.h>
#include <drm/drm_module.h>
#include <drm/drm_probe_helper.h>
@@ -63,7 +63,7 @@ static const struct drm_driver ast_driver = {
.minor = DRIVER_MINOR,
.patchlevel = DRIVER_PATCHLEVEL,
- DRM_GEM_VRAM_DRIVER
+ DRM_GEM_SHMEM_DRIVER_OPS
};
/*
@@ -89,27 +89,13 @@ static const struct pci_device_id ast_pciidlist[] = {
MODULE_DEVICE_TABLE(pci, ast_pciidlist);
-static int ast_remove_conflicting_framebuffers(struct pci_dev *pdev)
-{
- bool primary = false;
- resource_size_t base, size;
-
- base = pci_resource_start(pdev, 0);
- size = pci_resource_len(pdev, 0);
-#ifdef CONFIG_X86
- primary = pdev->resource[PCI_ROM_RESOURCE].flags & IORESOURCE_ROM_SHADOW;
-#endif
-
- return drm_aperture_remove_conflicting_framebuffers(base, size, primary, &ast_driver);
-}
-
static int ast_pci_probe(struct pci_dev *pdev, const struct pci_device_id *ent)
{
- struct ast_private *ast;
+ struct ast_device *ast;
struct drm_device *dev;
int ret;
- ret = ast_remove_conflicting_framebuffers(pdev);
+ ret = drm_aperture_remove_conflicting_pci_framebuffers(pdev, &ast_driver);
if (ret)
return ret;
diff --git a/drivers/gpu/drm/ast/ast_drv.h b/drivers/gpu/drm/ast/ast_drv.h
index 2e44b971c3a6..a501169cddad 100644
--- a/drivers/gpu/drm/ast/ast_drv.h
+++ b/drivers/gpu/drm/ast/ast_drv.h
@@ -38,7 +38,6 @@
#include <drm/drm_encoder.h>
#include <drm/drm_mode.h>
#include <drm/drm_framebuffer.h>
-#include <drm/drm_fb_helper.h>
#define DRIVER_AUTHOR "Dave Airlie"
@@ -87,7 +86,7 @@ enum ast_tx_chip {
#define AST_DRAM_8Gx16 8
/*
- * Cursor plane
+ * Hardware cursor
*/
#define AST_MAX_HWC_WIDTH 64
@@ -96,8 +95,6 @@ enum ast_tx_chip {
#define AST_HWC_SIZE (AST_MAX_HWC_WIDTH * AST_MAX_HWC_HEIGHT * 2)
#define AST_HWC_SIGNATURE_SIZE 32
-#define AST_DEFAULT_HWC_NUM 2
-
/* define for signature structure */
#define AST_HWC_SIGNATURE_CHECKSUM 0x00
#define AST_HWC_SIGNATURE_SizeX 0x04
@@ -107,22 +104,21 @@ enum ast_tx_chip {
#define AST_HWC_SIGNATURE_HOTSPOTX 0x14
#define AST_HWC_SIGNATURE_HOTSPOTY 0x18
-struct ast_cursor_plane {
- struct drm_plane base;
+/*
+ * Planes
+ */
- struct {
- struct drm_gem_vram_object *gbo;
- struct iosys_map map;
- u64 off;
- } hwc[AST_DEFAULT_HWC_NUM];
+struct ast_plane {
+ struct drm_plane base;
- unsigned int next_hwc_index;
+ void __iomem *vaddr;
+ u64 offset;
+ unsigned long size;
};
-static inline struct ast_cursor_plane *
-to_ast_cursor_plane(struct drm_plane *plane)
+static inline struct ast_plane *to_ast_plane(struct drm_plane *plane)
{
- return container_of(plane, struct ast_cursor_plane, base);
+ return container_of(plane, struct ast_plane, base);
}
/*
@@ -161,7 +157,7 @@ to_ast_sil164_connector(struct drm_connector *connector)
* Device
*/
-struct ast_private {
+struct ast_device {
struct drm_device base;
struct mutex ioregs_lock; /* Protects access to I/O registers in ioregs */
@@ -175,8 +171,13 @@ struct ast_private {
uint32_t dram_type;
uint32_t mclk;
- struct drm_plane primary_plane;
- struct ast_cursor_plane cursor_plane;
+ void __iomem *vram;
+ unsigned long vram_base;
+ unsigned long vram_size;
+ unsigned long vram_fb_available;
+
+ struct ast_plane primary_plane;
+ struct ast_plane cursor_plane;
struct drm_crtc crtc;
struct {
struct {
@@ -209,14 +210,14 @@ struct ast_private {
const struct firmware *dp501_fw; /* dp501 fw */
};
-static inline struct ast_private *to_ast_private(struct drm_device *dev)
+static inline struct ast_device *to_ast_device(struct drm_device *dev)
{
- return container_of(dev, struct ast_private, base);
+ return container_of(dev, struct ast_device, base);
}
-struct ast_private *ast_device_create(const struct drm_driver *drv,
- struct pci_dev *pdev,
- unsigned long flags);
+struct ast_device *ast_device_create(const struct drm_driver *drv,
+ struct pci_dev *pdev,
+ unsigned long flags);
#define AST_IO_AR_PORT_WRITE (0x40)
#define AST_IO_MISC_PORT_WRITE (0x42)
@@ -237,62 +238,44 @@ struct ast_private *ast_device_create(const struct drm_driver *drv,
#define AST_IO_VGACRCB_HWC_ENABLED BIT(1)
#define AST_IO_VGACRCB_HWC_16BPP BIT(0) /* set: ARGB4444, cleared: 2bpp palette */
-#define __ast_read(x) \
-static inline u##x ast_read##x(struct ast_private *ast, u32 reg) { \
-u##x val = 0;\
-val = ioread##x(ast->regs + reg); \
-return val;\
+static inline u32 ast_read32(struct ast_device *ast, u32 reg)
+{
+ return ioread32(ast->regs + reg);
}
-__ast_read(8);
-__ast_read(16);
-__ast_read(32)
-
-#define __ast_io_read(x) \
-static inline u##x ast_io_read##x(struct ast_private *ast, u32 reg) { \
-u##x val = 0;\
-val = ioread##x(ast->ioregs + reg); \
-return val;\
+static inline void ast_write32(struct ast_device *ast, u32 reg, u32 val)
+{
+ iowrite32(val, ast->regs + reg);
}
-__ast_io_read(8);
-__ast_io_read(16);
-__ast_io_read(32);
-
-#define __ast_write(x) \
-static inline void ast_write##x(struct ast_private *ast, u32 reg, u##x val) {\
- iowrite##x(val, ast->regs + reg);\
- }
-
-__ast_write(8);
-__ast_write(16);
-__ast_write(32);
-
-#define __ast_io_write(x) \
-static inline void ast_io_write##x(struct ast_private *ast, u32 reg, u##x val) {\
- iowrite##x(val, ast->ioregs + reg);\
- }
+static inline u8 ast_io_read8(struct ast_device *ast, u32 reg)
+{
+ return ioread8(ast->ioregs + reg);
+}
-__ast_io_write(8);
-__ast_io_write(16);
-#undef __ast_io_write
+static inline void ast_io_write8(struct ast_device *ast, u32 reg, u8 val)
+{
+ iowrite8(val, ast->ioregs + reg);
+}
-static inline void ast_set_index_reg(struct ast_private *ast,
+static inline void ast_set_index_reg(struct ast_device *ast,
uint32_t base, uint8_t index,
uint8_t val)
{
- ast_io_write16(ast, base, ((u16)val << 8) | index);
+ ast_io_write8(ast, base, index);
+ ++base;
+ ast_io_write8(ast, base, val);
}
-void ast_set_index_reg_mask(struct ast_private *ast,
+void ast_set_index_reg_mask(struct ast_device *ast,
uint32_t base, uint8_t index,
uint8_t mask, uint8_t val);
-uint8_t ast_get_index_reg(struct ast_private *ast,
+uint8_t ast_get_index_reg(struct ast_device *ast,
uint32_t base, uint8_t index);
-uint8_t ast_get_index_reg_mask(struct ast_private *ast,
+uint8_t ast_get_index_reg_mask(struct ast_device *ast,
uint32_t base, uint8_t index, uint8_t mask);
-static inline void ast_open_key(struct ast_private *ast)
+static inline void ast_open_key(struct ast_device *ast)
{
ast_set_index_reg(ast, AST_IO_CRTC_PORT, 0x80, 0xA8);
}
@@ -351,7 +334,7 @@ struct ast_crtc_state {
#define to_ast_crtc_state(state) container_of(state, struct ast_crtc_state, base)
-int ast_mode_config_init(struct ast_private *ast);
+int ast_mode_config_init(struct ast_device *ast);
#define AST_MM_ALIGN_SHIFT 4
#define AST_MM_ALIGN_MASK ((1 << AST_MM_ALIGN_SHIFT) - 1)
@@ -475,16 +458,16 @@ int ast_mode_config_init(struct ast_private *ast);
#define ASTDP_1366x768_60 0x1E
#define ASTDP_1152x864_75 0x1F
-int ast_mm_init(struct ast_private *ast);
+int ast_mm_init(struct ast_device *ast);
/* ast post */
void ast_enable_vga(struct drm_device *dev);
void ast_enable_mmio(struct drm_device *dev);
bool ast_is_vga_enabled(struct drm_device *dev);
void ast_post_gpu(struct drm_device *dev);
-u32 ast_mindwm(struct ast_private *ast, u32 r);
-void ast_moutdwm(struct ast_private *ast, u32 r, u32 v);
-void ast_patch_ahb_2500(struct ast_private *ast);
+u32 ast_mindwm(struct ast_device *ast, u32 r);
+void ast_moutdwm(struct ast_device *ast, u32 r, u32 v);
+void ast_patch_ahb_2500(struct ast_device *ast);
/* ast dp501 */
void ast_set_dp501_video_output(struct drm_device *dev, u8 mode);
bool ast_backup_fw(struct drm_device *dev, u8 *addr, u32 size);
diff --git a/drivers/gpu/drm/ast/ast_i2c.c b/drivers/gpu/drm/ast/ast_i2c.c
index 93e91c36d649..d64045c0b849 100644
--- a/drivers/gpu/drm/ast/ast_i2c.c
+++ b/drivers/gpu/drm/ast/ast_i2c.c
@@ -29,7 +29,7 @@
static void ast_i2c_setsda(void *i2c_priv, int data)
{
struct ast_i2c_chan *i2c = i2c_priv;
- struct ast_private *ast = to_ast_private(i2c->dev);
+ struct ast_device *ast = to_ast_device(i2c->dev);
int i;
u8 ujcrb7, jtemp;
@@ -45,7 +45,7 @@ static void ast_i2c_setsda(void *i2c_priv, int data)
static void ast_i2c_setscl(void *i2c_priv, int clock)
{
struct ast_i2c_chan *i2c = i2c_priv;
- struct ast_private *ast = to_ast_private(i2c->dev);
+ struct ast_device *ast = to_ast_device(i2c->dev);
int i;
u8 ujcrb7, jtemp;
@@ -61,7 +61,7 @@ static void ast_i2c_setscl(void *i2c_priv, int clock)
static int ast_i2c_getsda(void *i2c_priv)
{
struct ast_i2c_chan *i2c = i2c_priv;
- struct ast_private *ast = to_ast_private(i2c->dev);
+ struct ast_device *ast = to_ast_device(i2c->dev);
uint32_t val, val2, count, pass;
count = 0;
@@ -83,7 +83,7 @@ static int ast_i2c_getsda(void *i2c_priv)
static int ast_i2c_getscl(void *i2c_priv)
{
struct ast_i2c_chan *i2c = i2c_priv;
- struct ast_private *ast = to_ast_private(i2c->dev);
+ struct ast_device *ast = to_ast_device(i2c->dev);
uint32_t val, val2, count, pass;
count = 0;
diff --git a/drivers/gpu/drm/ast/ast_main.c b/drivers/gpu/drm/ast/ast_main.c
index 067453266897..f32ce29edba7 100644
--- a/drivers/gpu/drm/ast/ast_main.c
+++ b/drivers/gpu/drm/ast/ast_main.c
@@ -29,15 +29,13 @@
#include <linux/pci.h>
#include <drm/drm_atomic_helper.h>
-#include <drm/drm_crtc_helper.h>
#include <drm/drm_drv.h>
#include <drm/drm_gem.h>
-#include <drm/drm_gem_vram_helper.h>
#include <drm/drm_managed.h>
#include "ast_drv.h"
-void ast_set_index_reg_mask(struct ast_private *ast,
+void ast_set_index_reg_mask(struct ast_device *ast,
uint32_t base, uint8_t index,
uint8_t mask, uint8_t val)
{
@@ -47,7 +45,7 @@ void ast_set_index_reg_mask(struct ast_private *ast,
ast_set_index_reg(ast, base, index, tmp);
}
-uint8_t ast_get_index_reg(struct ast_private *ast,
+uint8_t ast_get_index_reg(struct ast_device *ast,
uint32_t base, uint8_t index)
{
uint8_t ret;
@@ -56,7 +54,7 @@ uint8_t ast_get_index_reg(struct ast_private *ast,
return ret;
}
-uint8_t ast_get_index_reg_mask(struct ast_private *ast,
+uint8_t ast_get_index_reg_mask(struct ast_device *ast,
uint32_t base, uint8_t index, uint8_t mask)
{
uint8_t ret;
@@ -68,7 +66,7 @@ uint8_t ast_get_index_reg_mask(struct ast_private *ast,
static void ast_detect_config_mode(struct drm_device *dev, u32 *scu_rev)
{
struct device_node *np = dev->dev->of_node;
- struct ast_private *ast = to_ast_private(dev);
+ struct ast_device *ast = to_ast_device(dev);
struct pci_dev *pdev = to_pci_dev(dev->dev);
uint32_t data, jregd0, jregd1;
@@ -124,7 +122,7 @@ static void ast_detect_config_mode(struct drm_device *dev, u32 *scu_rev)
static int ast_detect_chip(struct drm_device *dev, bool *need_post)
{
- struct ast_private *ast = to_ast_private(dev);
+ struct ast_device *ast = to_ast_device(dev);
struct pci_dev *pdev = to_pci_dev(dev->dev);
uint32_t jreg, scu_rev;
@@ -273,7 +271,7 @@ static int ast_detect_chip(struct drm_device *dev, bool *need_post)
static int ast_get_dram_info(struct drm_device *dev)
{
struct device_node *np = dev->dev->of_node;
- struct ast_private *ast = to_ast_private(dev);
+ struct ast_device *ast = to_ast_device(dev);
uint32_t mcr_cfg, mcr_scu_mpll, mcr_scu_strap;
uint32_t denum, num, div, ref_pll, dsel;
@@ -396,22 +394,22 @@ static int ast_get_dram_info(struct drm_device *dev)
*/
static void ast_device_release(void *data)
{
- struct ast_private *ast = data;
+ struct ast_device *ast = data;
/* enable standard VGA decode */
ast_set_index_reg(ast, AST_IO_CRTC_PORT, 0xa1, 0x04);
}
-struct ast_private *ast_device_create(const struct drm_driver *drv,
- struct pci_dev *pdev,
- unsigned long flags)
+struct ast_device *ast_device_create(const struct drm_driver *drv,
+ struct pci_dev *pdev,
+ unsigned long flags)
{
struct drm_device *dev;
- struct ast_private *ast;
+ struct ast_device *ast;
bool need_post;
int ret = 0;
- ast = devm_drm_dev_alloc(&pdev->dev, drv, struct ast_private, base);
+ ast = devm_drm_dev_alloc(&pdev->dev, drv, struct ast_device, base);
if (IS_ERR(ast))
return ast;
dev = &ast->base;
@@ -427,11 +425,12 @@ struct ast_private *ast_device_create(const struct drm_driver *drv,
return ERR_PTR(-EIO);
/*
- * If we don't have IO space at all, use MMIO now and
- * assume the chip has MMIO enabled by default (rev 0x20
- * and higher).
+ * After AST2500, MMIO is enabled by default, and it should be adopted
+ * to be compatible with Arm.
*/
- if (!(pci_resource_flags(pdev, 2) & IORESOURCE_IO)) {
+ if (pdev->revision >= 0x40) {
+ ast->ioregs = ast->regs + AST_IO_MM_OFFSET;
+ } else if (!(pci_resource_flags(pdev, 2) & IORESOURCE_IO)) {
drm_info(dev, "platform has no IO space, trying MMIO\n");
ast->ioregs = ast->regs + AST_IO_MM_OFFSET;
}
@@ -461,8 +460,8 @@ struct ast_private *ast_device_create(const struct drm_driver *drv,
/* map reserved buffer */
ast->dp501_fw_buf = NULL;
- if (dev->vram_mm->vram_size < pci_resource_len(pdev, 0)) {
- ast->dp501_fw_buf = pci_iomap_range(pdev, 0, dev->vram_mm->vram_size, 0);
+ if (ast->vram_size < pci_resource_len(pdev, 0)) {
+ ast->dp501_fw_buf = pci_iomap_range(pdev, 0, ast->vram_size, 0);
if (!ast->dp501_fw_buf)
drm_info(dev, "failed to map reserved buffer!\n");
}
diff --git a/drivers/gpu/drm/ast/ast_mm.c b/drivers/gpu/drm/ast/ast_mm.c
index 6e999408dda9..e16af60deef9 100644
--- a/drivers/gpu/drm/ast/ast_mm.c
+++ b/drivers/gpu/drm/ast/ast_mm.c
@@ -28,13 +28,12 @@
#include <linux/pci.h>
-#include <drm/drm_gem_vram_helper.h>
#include <drm/drm_managed.h>
#include <drm/drm_print.h>
#include "ast_drv.h"
-static u32 ast_get_vram_size(struct ast_private *ast)
+static u32 ast_get_vram_size(struct ast_device *ast)
{
u8 jreg;
u32 vram_size;
@@ -74,13 +73,12 @@ static u32 ast_get_vram_size(struct ast_private *ast)
return vram_size;
}
-int ast_mm_init(struct ast_private *ast)
+int ast_mm_init(struct ast_device *ast)
{
struct drm_device *dev = &ast->base;
struct pci_dev *pdev = to_pci_dev(dev->dev);
resource_size_t base, size;
u32 vram_size;
- int ret;
base = pci_resource_start(pdev, 0);
size = pci_resource_len(pdev, 0);
@@ -91,11 +89,13 @@ int ast_mm_init(struct ast_private *ast)
vram_size = ast_get_vram_size(ast);
- ret = drmm_vram_helper_init(dev, base, vram_size);
- if (ret) {
- drm_err(dev, "Error initializing VRAM MM; %d\n", ret);
- return ret;
- }
+ ast->vram = devm_ioremap_wc(dev->dev, base, vram_size);
+ if (!ast->vram)
+ return -ENOMEM;
+
+ ast->vram_base = base;
+ ast->vram_size = vram_size;
+ ast->vram_fb_available = vram_size;
return 0;
}
diff --git a/drivers/gpu/drm/ast/ast_mode.c b/drivers/gpu/drm/ast/ast_mode.c
index 1bc0220e6783..36374828f6c8 100644
--- a/drivers/gpu/drm/ast/ast_mode.c
+++ b/drivers/gpu/drm/ast/ast_mode.c
@@ -35,12 +35,13 @@
#include <drm/drm_atomic_helper.h>
#include <drm/drm_atomic_state_helper.h>
#include <drm/drm_crtc.h>
-#include <drm/drm_crtc_helper.h>
+#include <drm/drm_damage_helper.h>
#include <drm/drm_edid.h>
+#include <drm/drm_format_helper.h>
#include <drm/drm_fourcc.h>
#include <drm/drm_gem_atomic_helper.h>
#include <drm/drm_gem_framebuffer_helper.h>
-#include <drm/drm_gem_vram_helper.h>
+#include <drm/drm_gem_shmem_helper.h>
#include <drm/drm_managed.h>
#include <drm/drm_probe_helper.h>
#include <drm/drm_simple_kms_helper.h>
@@ -48,7 +49,9 @@
#include "ast_drv.h"
#include "ast_tables.h"
-static inline void ast_load_palette_index(struct ast_private *ast,
+#define AST_LUT_SIZE 256
+
+static inline void ast_load_palette_index(struct ast_device *ast,
u8 index, u8 red, u8 green,
u8 blue)
{
@@ -62,20 +65,46 @@ static inline void ast_load_palette_index(struct ast_private *ast,
ast_io_read8(ast, AST_IO_SEQ_PORT);
}
-static void ast_crtc_load_lut(struct ast_private *ast, struct drm_crtc *crtc)
+static void ast_crtc_set_gamma_linear(struct ast_device *ast,
+ const struct drm_format_info *format)
{
- u16 *r, *g, *b;
int i;
- if (!crtc->enabled)
- return;
+ switch (format->format) {
+ case DRM_FORMAT_C8: /* In this case, gamma table is used as color palette */
+ case DRM_FORMAT_RGB565:
+ case DRM_FORMAT_XRGB8888:
+ for (i = 0; i < AST_LUT_SIZE; i++)
+ ast_load_palette_index(ast, i, i, i, i);
+ break;
+ default:
+ drm_warn_once(&ast->base, "Unsupported format %p4cc for gamma correction\n",
+ &format->format);
+ break;
+ }
+}
- r = crtc->gamma_store;
- g = r + crtc->gamma_size;
- b = g + crtc->gamma_size;
+static void ast_crtc_set_gamma(struct ast_device *ast,
+ const struct drm_format_info *format,
+ struct drm_color_lut *lut)
+{
+ int i;
- for (i = 0; i < 256; i++)
- ast_load_palette_index(ast, i, *r++ >> 8, *g++ >> 8, *b++ >> 8);
+ switch (format->format) {
+ case DRM_FORMAT_C8: /* In this case, gamma table is used as color palette */
+ case DRM_FORMAT_RGB565:
+ case DRM_FORMAT_XRGB8888:
+ for (i = 0; i < AST_LUT_SIZE; i++)
+ ast_load_palette_index(ast, i,
+ lut[i].red >> 8,
+ lut[i].green >> 8,
+ lut[i].blue >> 8);
+ break;
+ default:
+ drm_warn_once(&ast->base, "Unsupported format %p4cc for gamma correction\n",
+ &format->format);
+ break;
+ }
}
static bool ast_get_vbios_mode_info(const struct drm_format_info *format,
@@ -203,7 +232,7 @@ static bool ast_get_vbios_mode_info(const struct drm_format_info *format,
return true;
}
-static void ast_set_vbios_color_reg(struct ast_private *ast,
+static void ast_set_vbios_color_reg(struct ast_device *ast,
const struct drm_format_info *format,
const struct ast_vbios_mode_info *vbios_mode)
{
@@ -234,7 +263,7 @@ static void ast_set_vbios_color_reg(struct ast_private *ast,
}
}
-static void ast_set_vbios_mode_reg(struct ast_private *ast,
+static void ast_set_vbios_mode_reg(struct ast_device *ast,
const struct drm_display_mode *adjusted_mode,
const struct ast_vbios_mode_info *vbios_mode)
{
@@ -258,7 +287,7 @@ static void ast_set_vbios_mode_reg(struct ast_private *ast,
}
}
-static void ast_set_std_reg(struct ast_private *ast,
+static void ast_set_std_reg(struct ast_device *ast,
struct drm_display_mode *mode,
struct ast_vbios_mode_info *vbios_mode)
{
@@ -306,7 +335,7 @@ static void ast_set_std_reg(struct ast_private *ast,
ast_set_index_reg(ast, AST_IO_GR_PORT, i, stdtable->gr[i]);
}
-static void ast_set_crtc_reg(struct ast_private *ast,
+static void ast_set_crtc_reg(struct ast_device *ast,
struct drm_display_mode *mode,
struct ast_vbios_mode_info *vbios_mode)
{
@@ -421,7 +450,7 @@ static void ast_set_crtc_reg(struct ast_private *ast,
ast_set_index_reg_mask(ast, AST_IO_CRTC_PORT, 0x11, 0x7f, 0x80);
}
-static void ast_set_offset_reg(struct ast_private *ast,
+static void ast_set_offset_reg(struct ast_device *ast,
struct drm_framebuffer *fb)
{
u16 offset;
@@ -431,7 +460,7 @@ static void ast_set_offset_reg(struct ast_private *ast,
ast_set_index_reg(ast, AST_IO_CRTC_PORT, 0xb0, (offset >> 8) & 0x3f);
}
-static void ast_set_dclk_reg(struct ast_private *ast,
+static void ast_set_dclk_reg(struct ast_device *ast,
struct drm_display_mode *mode,
struct ast_vbios_mode_info *vbios_mode)
{
@@ -449,7 +478,7 @@ static void ast_set_dclk_reg(struct ast_private *ast,
((clk_info->param3 & 0x3) << 4));
}
-static void ast_set_color_reg(struct ast_private *ast,
+static void ast_set_color_reg(struct ast_device *ast,
const struct drm_format_info *format)
{
u8 jregA0 = 0, jregA3 = 0, jregA8 = 0;
@@ -478,7 +507,7 @@ static void ast_set_color_reg(struct ast_private *ast,
ast_set_index_reg_mask(ast, AST_IO_CRTC_PORT, 0xa8, 0xfd, jregA8);
}
-static void ast_set_crtthd_reg(struct ast_private *ast)
+static void ast_set_crtthd_reg(struct ast_device *ast)
{
/* Set Threshold */
if (ast->chip == AST2600) {
@@ -500,7 +529,7 @@ static void ast_set_crtthd_reg(struct ast_private *ast)
}
}
-static void ast_set_sync_reg(struct ast_private *ast,
+static void ast_set_sync_reg(struct ast_device *ast,
struct drm_display_mode *mode,
struct ast_vbios_mode_info *vbios_mode)
{
@@ -515,7 +544,7 @@ static void ast_set_sync_reg(struct ast_private *ast,
ast_io_write8(ast, AST_IO_MISC_PORT_WRITE, jreg);
}
-static void ast_set_start_address_crt1(struct ast_private *ast,
+static void ast_set_start_address_crt1(struct ast_device *ast,
unsigned int offset)
{
u32 addr;
@@ -527,7 +556,7 @@ static void ast_set_start_address_crt1(struct ast_private *ast,
}
-static void ast_wait_for_vretrace(struct ast_private *ast)
+static void ast_wait_for_vretrace(struct ast_device *ast)
{
unsigned long timeout = jiffies + HZ;
u8 vgair1;
@@ -538,6 +567,29 @@ static void ast_wait_for_vretrace(struct ast_private *ast)
}
/*
+ * Planes
+ */
+
+static int ast_plane_init(struct drm_device *dev, struct ast_plane *ast_plane,
+ void __iomem *vaddr, u64 offset, unsigned long size,
+ uint32_t possible_crtcs,
+ const struct drm_plane_funcs *funcs,
+ const uint32_t *formats, unsigned int format_count,
+ const uint64_t *format_modifiers,
+ enum drm_plane_type type)
+{
+ struct drm_plane *plane = &ast_plane->base;
+
+ ast_plane->vaddr = vaddr;
+ ast_plane->offset = offset;
+ ast_plane->size = size;
+
+ return drm_universal_plane_init(dev, plane, possible_crtcs, funcs,
+ formats, format_count, format_modifiers,
+ type, NULL);
+}
+
+/*
* Primary plane
*/
@@ -550,52 +602,62 @@ static const uint32_t ast_primary_plane_formats[] = {
static int ast_primary_plane_helper_atomic_check(struct drm_plane *plane,
struct drm_atomic_state *state)
{
- struct drm_plane_state *new_plane_state = drm_atomic_get_new_plane_state(state,
- plane);
- struct drm_crtc_state *crtc_state;
- struct ast_crtc_state *ast_crtc_state;
+ struct drm_device *dev = plane->dev;
+ struct drm_plane_state *new_plane_state = drm_atomic_get_new_plane_state(state, plane);
+ struct drm_crtc_state *new_crtc_state = NULL;
+ struct ast_crtc_state *new_ast_crtc_state;
int ret;
- if (!new_plane_state->crtc)
- return 0;
-
- crtc_state = drm_atomic_get_new_crtc_state(state,
- new_plane_state->crtc);
+ if (new_plane_state->crtc)
+ new_crtc_state = drm_atomic_get_new_crtc_state(state, new_plane_state->crtc);
- ret = drm_atomic_helper_check_plane_state(new_plane_state, crtc_state,
+ ret = drm_atomic_helper_check_plane_state(new_plane_state, new_crtc_state,
DRM_PLANE_NO_SCALING,
DRM_PLANE_NO_SCALING,
false, true);
- if (ret)
+ if (ret) {
return ret;
+ } else if (!new_plane_state->visible) {
+ if (drm_WARN_ON(dev, new_plane_state->crtc)) /* cannot legally happen */
+ return -EINVAL;
+ else
+ return 0;
+ }
- if (!new_plane_state->visible)
- return 0;
-
- ast_crtc_state = to_ast_crtc_state(crtc_state);
+ new_ast_crtc_state = to_ast_crtc_state(new_crtc_state);
- ast_crtc_state->format = new_plane_state->fb->format;
+ new_ast_crtc_state->format = new_plane_state->fb->format;
return 0;
}
-static void
-ast_primary_plane_helper_atomic_update(struct drm_plane *plane,
- struct drm_atomic_state *state)
+static void ast_handle_damage(struct ast_plane *ast_plane, struct iosys_map *src,
+ struct drm_framebuffer *fb,
+ const struct drm_rect *clip)
+{
+ struct iosys_map dst = IOSYS_MAP_INIT_VADDR_IOMEM(ast_plane->vaddr);
+
+ iosys_map_incr(&dst, drm_fb_clip_offset(fb->pitches[0], fb->format, clip));
+ drm_fb_memcpy(&dst, fb->pitches, src, fb, clip);
+}
+
+static void ast_primary_plane_helper_atomic_update(struct drm_plane *plane,
+ struct drm_atomic_state *state)
{
- struct drm_plane_state *old_state = drm_atomic_get_old_plane_state(state,
- plane);
struct drm_device *dev = plane->dev;
- struct ast_private *ast = to_ast_private(dev);
- struct drm_plane_state *new_state = drm_atomic_get_new_plane_state(state,
- plane);
- struct drm_gem_vram_object *gbo;
- s64 gpu_addr;
- struct drm_framebuffer *fb = new_state->fb;
- struct drm_framebuffer *old_fb = old_state->fb;
+ struct ast_device *ast = to_ast_device(dev);
+ struct drm_plane_state *plane_state = drm_atomic_get_new_plane_state(state, plane);
+ struct drm_shadow_plane_state *shadow_plane_state = to_drm_shadow_plane_state(plane_state);
+ struct drm_framebuffer *fb = plane_state->fb;
+ struct drm_plane_state *old_plane_state = drm_atomic_get_old_plane_state(state, plane);
+ struct drm_framebuffer *old_fb = old_plane_state->fb;
+ struct ast_plane *ast_plane = to_ast_plane(plane);
+ struct drm_rect damage;
+ struct drm_atomic_helper_damage_iter iter;
if (!old_fb || (fb->format != old_fb->format)) {
- struct drm_crtc_state *crtc_state = new_state->crtc->state;
+ struct drm_crtc *crtc = plane_state->crtc;
+ struct drm_crtc_state *crtc_state = drm_atomic_get_new_crtc_state(state, crtc);
struct ast_crtc_state *ast_crtc_state = to_ast_crtc_state(crtc_state);
struct ast_vbios_mode_info *vbios_mode_info = &ast_crtc_state->vbios_mode_info;
@@ -603,30 +665,50 @@ ast_primary_plane_helper_atomic_update(struct drm_plane *plane,
ast_set_vbios_color_reg(ast, fb->format, vbios_mode_info);
}
- gbo = drm_gem_vram_of_gem(fb->obj[0]);
- gpu_addr = drm_gem_vram_offset(gbo);
- if (drm_WARN_ON_ONCE(dev, gpu_addr < 0))
- return; /* Bug: we didn't pin the BO to VRAM in prepare_fb. */
+ drm_atomic_helper_damage_iter_init(&iter, old_plane_state, plane_state);
+ drm_atomic_for_each_plane_damage(&iter, &damage) {
+ ast_handle_damage(ast_plane, shadow_plane_state->data, fb, &damage);
+ }
+
+ /*
+ * Some BMCs stop scanning out the video signal after the driver
+ * reprogrammed the offset. This stalls display output for several
+ * seconds and makes the display unusable. Therefore only update
+ * the offset if it changes.
+ */
+ if (!old_fb || old_fb->pitches[0] != fb->pitches[0])
+ ast_set_offset_reg(ast, fb);
+}
- ast_set_offset_reg(ast, fb);
- ast_set_start_address_crt1(ast, (u32)gpu_addr);
+static void ast_primary_plane_helper_atomic_enable(struct drm_plane *plane,
+ struct drm_atomic_state *state)
+{
+ struct ast_device *ast = to_ast_device(plane->dev);
+ struct ast_plane *ast_plane = to_ast_plane(plane);
+ /*
+ * Some BMCs stop scanning out the video signal after the driver
+ * reprogrammed the scanout address. This stalls display
+ * output for several seconds and makes the display unusable.
+ * Therefore only reprogram the address after enabling the plane.
+ */
+ ast_set_start_address_crt1(ast, (u32)ast_plane->offset);
ast_set_index_reg_mask(ast, AST_IO_SEQ_PORT, 0x1, 0xdf, 0x00);
}
-static void
-ast_primary_plane_helper_atomic_disable(struct drm_plane *plane,
- struct drm_atomic_state *state)
+static void ast_primary_plane_helper_atomic_disable(struct drm_plane *plane,
+ struct drm_atomic_state *state)
{
- struct ast_private *ast = to_ast_private(plane->dev);
+ struct ast_device *ast = to_ast_device(plane->dev);
ast_set_index_reg_mask(ast, AST_IO_SEQ_PORT, 0x1, 0xdf, 0x20);
}
static const struct drm_plane_helper_funcs ast_primary_plane_helper_funcs = {
- DRM_GEM_VRAM_PLANE_HELPER_FUNCS,
+ DRM_GEM_SHADOW_PLANE_HELPER_FUNCS,
.atomic_check = ast_primary_plane_helper_atomic_check,
.atomic_update = ast_primary_plane_helper_atomic_update,
+ .atomic_enable = ast_primary_plane_helper_atomic_enable,
.atomic_disable = ast_primary_plane_helper_atomic_disable,
};
@@ -634,27 +716,30 @@ static const struct drm_plane_funcs ast_primary_plane_funcs = {
.update_plane = drm_atomic_helper_update_plane,
.disable_plane = drm_atomic_helper_disable_plane,
.destroy = drm_plane_cleanup,
- .reset = drm_atomic_helper_plane_reset,
- .atomic_duplicate_state = drm_atomic_helper_plane_duplicate_state,
- .atomic_destroy_state = drm_atomic_helper_plane_destroy_state,
+ DRM_GEM_SHADOW_PLANE_FUNCS,
};
-static int ast_primary_plane_init(struct ast_private *ast)
+static int ast_primary_plane_init(struct ast_device *ast)
{
struct drm_device *dev = &ast->base;
- struct drm_plane *primary_plane = &ast->primary_plane;
+ struct ast_plane *ast_primary_plane = &ast->primary_plane;
+ struct drm_plane *primary_plane = &ast_primary_plane->base;
+ void __iomem *vaddr = ast->vram;
+ u64 offset = 0; /* with shmem, the primary plane is always at offset 0 */
+ unsigned long cursor_size = roundup(AST_HWC_SIZE + AST_HWC_SIGNATURE_SIZE, PAGE_SIZE);
+ unsigned long size = ast->vram_fb_available - cursor_size;
int ret;
- ret = drm_universal_plane_init(dev, primary_plane, 0x01,
- &ast_primary_plane_funcs,
- ast_primary_plane_formats,
- ARRAY_SIZE(ast_primary_plane_formats),
- NULL, DRM_PLANE_TYPE_PRIMARY, NULL);
+ ret = ast_plane_init(dev, ast_primary_plane, vaddr, offset, size,
+ 0x01, &ast_primary_plane_funcs,
+ ast_primary_plane_formats, ARRAY_SIZE(ast_primary_plane_formats),
+ NULL, DRM_PLANE_TYPE_PRIMARY);
if (ret) {
- drm_err(dev, "drm_universal_plane_init() failed: %d\n", ret);
+ drm_err(dev, "ast_plane_init() failed: %d\n", ret);
return ret;
}
drm_plane_helper_add(primary_plane, &ast_primary_plane_helper_funcs);
+ drm_plane_enable_fb_damage_clips(primary_plane);
return 0;
}
@@ -727,7 +812,7 @@ static void ast_update_cursor_image(u8 __iomem *dst, const u8 *src, int width, i
writel(0, dst + AST_HWC_SIGNATURE_HOTSPOTY);
}
-static void ast_set_cursor_base(struct ast_private *ast, u64 address)
+static void ast_set_cursor_base(struct ast_device *ast, u64 address)
{
u8 addr0 = (address >> 3) & 0xff;
u8 addr1 = (address >> 11) & 0xff;
@@ -738,7 +823,7 @@ static void ast_set_cursor_base(struct ast_private *ast, u64 address)
ast_set_index_reg(ast, AST_IO_CRTC_PORT, 0xca, addr2);
}
-static void ast_set_cursor_location(struct ast_private *ast, u16 x, u16 y,
+static void ast_set_cursor_location(struct ast_device *ast, u16 x, u16 y,
u8 x_offset, u8 y_offset)
{
u8 x0 = (x & 0x00ff);
@@ -754,7 +839,7 @@ static void ast_set_cursor_location(struct ast_private *ast, u16 x, u16 y,
ast_set_index_reg(ast, AST_IO_CRTC_PORT, 0xc7, y1);
}
-static void ast_set_cursor_enabled(struct ast_private *ast, bool enabled)
+static void ast_set_cursor_enabled(struct ast_device *ast, bool enabled)
{
static const u8 mask = (u8)~(AST_IO_VGACRCB_HWC_16BPP |
AST_IO_VGACRCB_HWC_ENABLED);
@@ -774,99 +859,79 @@ static const uint32_t ast_cursor_plane_formats[] = {
static int ast_cursor_plane_helper_atomic_check(struct drm_plane *plane,
struct drm_atomic_state *state)
{
- struct drm_plane_state *new_plane_state = drm_atomic_get_new_plane_state(state,
- plane);
- struct drm_framebuffer *fb = new_plane_state->fb;
- struct drm_crtc_state *crtc_state;
+ struct drm_plane_state *new_plane_state = drm_atomic_get_new_plane_state(state, plane);
+ struct drm_framebuffer *new_fb = new_plane_state->fb;
+ struct drm_crtc_state *new_crtc_state = NULL;
int ret;
- if (!new_plane_state->crtc)
- return 0;
-
- crtc_state = drm_atomic_get_new_crtc_state(state,
- new_plane_state->crtc);
+ if (new_plane_state->crtc)
+ new_crtc_state = drm_atomic_get_new_crtc_state(state, new_plane_state->crtc);
- ret = drm_atomic_helper_check_plane_state(new_plane_state, crtc_state,
+ ret = drm_atomic_helper_check_plane_state(new_plane_state, new_crtc_state,
DRM_PLANE_NO_SCALING,
DRM_PLANE_NO_SCALING,
true, true);
- if (ret)
+ if (ret || !new_plane_state->visible)
return ret;
- if (!new_plane_state->visible)
- return 0;
-
- if (fb->width > AST_MAX_HWC_WIDTH || fb->height > AST_MAX_HWC_HEIGHT)
+ if (new_fb->width > AST_MAX_HWC_WIDTH || new_fb->height > AST_MAX_HWC_HEIGHT)
return -EINVAL;
return 0;
}
-static void
-ast_cursor_plane_helper_atomic_update(struct drm_plane *plane,
- struct drm_atomic_state *state)
+static void ast_cursor_plane_helper_atomic_update(struct drm_plane *plane,
+ struct drm_atomic_state *state)
{
- struct ast_cursor_plane *ast_cursor_plane = to_ast_cursor_plane(plane);
- struct drm_plane_state *old_state = drm_atomic_get_old_plane_state(state,
- plane);
- struct drm_plane_state *new_state = drm_atomic_get_new_plane_state(state,
- plane);
- struct drm_shadow_plane_state *shadow_plane_state = to_drm_shadow_plane_state(new_state);
- struct drm_framebuffer *fb = new_state->fb;
- struct ast_private *ast = to_ast_private(plane->dev);
- struct iosys_map dst_map =
- ast_cursor_plane->hwc[ast_cursor_plane->next_hwc_index].map;
- u64 dst_off =
- ast_cursor_plane->hwc[ast_cursor_plane->next_hwc_index].off;
+ struct ast_plane *ast_plane = to_ast_plane(plane);
+ struct drm_plane_state *plane_state = drm_atomic_get_new_plane_state(state, plane);
+ struct drm_shadow_plane_state *shadow_plane_state = to_drm_shadow_plane_state(plane_state);
+ struct drm_framebuffer *fb = plane_state->fb;
+ struct drm_plane_state *old_plane_state = drm_atomic_get_old_plane_state(state, plane);
+ struct ast_device *ast = to_ast_device(plane->dev);
struct iosys_map src_map = shadow_plane_state->data[0];
+ struct drm_rect damage;
+ const u8 *src = src_map.vaddr; /* TODO: Use mapping abstraction properly */
+ u64 dst_off = ast_plane->offset;
+ u8 __iomem *dst = ast_plane->vaddr; /* TODO: Use mapping abstraction properly */
+ u8 __iomem *sig = dst + AST_HWC_SIZE; /* TODO: Use mapping abstraction properly */
unsigned int offset_x, offset_y;
u16 x, y;
u8 x_offset, y_offset;
- u8 __iomem *dst;
- u8 __iomem *sig;
- const u8 *src;
-
- src = src_map.vaddr; /* TODO: Use mapping abstraction properly */
- dst = dst_map.vaddr_iomem; /* TODO: Use mapping abstraction properly */
- sig = dst + AST_HWC_SIZE; /* TODO: Use mapping abstraction properly */
/*
- * Do data transfer to HW cursor BO. If a new cursor image was installed,
- * point the scanout engine to dst_gbo's offset and page-flip the HWC buffers.
+ * Do data transfer to hardware buffer and point the scanout
+ * engine to the offset.
*/
- ast_update_cursor_image(dst, src, fb->width, fb->height);
-
- if (new_state->fb != old_state->fb) {
+ if (drm_atomic_helper_damage_merged(old_plane_state, plane_state, &damage)) {
+ ast_update_cursor_image(dst, src, fb->width, fb->height);
ast_set_cursor_base(ast, dst_off);
-
- ++ast_cursor_plane->next_hwc_index;
- ast_cursor_plane->next_hwc_index %= ARRAY_SIZE(ast_cursor_plane->hwc);
}
/*
* Update location in HWC signature and registers.
*/
- writel(new_state->crtc_x, sig + AST_HWC_SIGNATURE_X);
- writel(new_state->crtc_y, sig + AST_HWC_SIGNATURE_Y);
+ writel(plane_state->crtc_x, sig + AST_HWC_SIGNATURE_X);
+ writel(plane_state->crtc_y, sig + AST_HWC_SIGNATURE_Y);
offset_x = AST_MAX_HWC_WIDTH - fb->width;
offset_y = AST_MAX_HWC_HEIGHT - fb->height;
- if (new_state->crtc_x < 0) {
- x_offset = (-new_state->crtc_x) + offset_x;
+ if (plane_state->crtc_x < 0) {
+ x_offset = (-plane_state->crtc_x) + offset_x;
x = 0;
} else {
x_offset = offset_x;
- x = new_state->crtc_x;
+ x = plane_state->crtc_x;
}
- if (new_state->crtc_y < 0) {
- y_offset = (-new_state->crtc_y) + offset_y;
+ if (plane_state->crtc_y < 0) {
+ y_offset = (-plane_state->crtc_y) + offset_y;
y = 0;
} else {
y_offset = offset_y;
- y = new_state->crtc_y;
+ y = plane_state->crtc_y;
}
ast_set_cursor_location(ast, x, y, x_offset, y_offset);
@@ -875,11 +940,10 @@ ast_cursor_plane_helper_atomic_update(struct drm_plane *plane,
ast_set_cursor_enabled(ast, true);
}
-static void
-ast_cursor_plane_helper_atomic_disable(struct drm_plane *plane,
- struct drm_atomic_state *state)
+static void ast_cursor_plane_helper_atomic_disable(struct drm_plane *plane,
+ struct drm_atomic_state *state)
{
- struct ast_private *ast = to_ast_private(plane->dev);
+ struct ast_device *ast = to_ast_device(plane->dev);
ast_set_cursor_enabled(ast, false);
}
@@ -891,41 +955,22 @@ static const struct drm_plane_helper_funcs ast_cursor_plane_helper_funcs = {
.atomic_disable = ast_cursor_plane_helper_atomic_disable,
};
-static void ast_cursor_plane_destroy(struct drm_plane *plane)
-{
- struct ast_cursor_plane *ast_cursor_plane = to_ast_cursor_plane(plane);
- size_t i;
- struct drm_gem_vram_object *gbo;
- struct iosys_map map;
-
- for (i = 0; i < ARRAY_SIZE(ast_cursor_plane->hwc); ++i) {
- gbo = ast_cursor_plane->hwc[i].gbo;
- map = ast_cursor_plane->hwc[i].map;
- drm_gem_vram_vunmap(gbo, &map);
- drm_gem_vram_unpin(gbo);
- drm_gem_vram_put(gbo);
- }
-
- drm_plane_cleanup(plane);
-}
-
static const struct drm_plane_funcs ast_cursor_plane_funcs = {
.update_plane = drm_atomic_helper_update_plane,
.disable_plane = drm_atomic_helper_disable_plane,
- .destroy = ast_cursor_plane_destroy,
+ .destroy = drm_plane_cleanup,
DRM_GEM_SHADOW_PLANE_FUNCS,
};
-static int ast_cursor_plane_init(struct ast_private *ast)
+static int ast_cursor_plane_init(struct ast_device *ast)
{
struct drm_device *dev = &ast->base;
- struct ast_cursor_plane *ast_cursor_plane = &ast->cursor_plane;
+ struct ast_plane *ast_cursor_plane = &ast->cursor_plane;
struct drm_plane *cursor_plane = &ast_cursor_plane->base;
- size_t size, i;
- struct drm_gem_vram_object *gbo;
- struct iosys_map map;
+ size_t size;
+ void __iomem *vaddr;
+ u64 offset;
int ret;
- s64 off;
/*
* Allocate backing storage for cursors. The BOs are permanently
@@ -934,60 +979,26 @@ static int ast_cursor_plane_init(struct ast_private *ast)
size = roundup(AST_HWC_SIZE + AST_HWC_SIGNATURE_SIZE, PAGE_SIZE);
- for (i = 0; i < ARRAY_SIZE(ast_cursor_plane->hwc); ++i) {
- gbo = drm_gem_vram_create(dev, size, 0);
- if (IS_ERR(gbo)) {
- ret = PTR_ERR(gbo);
- goto err_hwc;
- }
- ret = drm_gem_vram_pin(gbo, DRM_GEM_VRAM_PL_FLAG_VRAM |
- DRM_GEM_VRAM_PL_FLAG_TOPDOWN);
- if (ret)
- goto err_drm_gem_vram_put;
- ret = drm_gem_vram_vmap(gbo, &map);
- if (ret)
- goto err_drm_gem_vram_unpin;
- off = drm_gem_vram_offset(gbo);
- if (off < 0) {
- ret = off;
- goto err_drm_gem_vram_vunmap;
- }
- ast_cursor_plane->hwc[i].gbo = gbo;
- ast_cursor_plane->hwc[i].map = map;
- ast_cursor_plane->hwc[i].off = off;
- }
+ if (ast->vram_fb_available < size)
+ return -ENOMEM;
- /*
- * Create the cursor plane. The plane's destroy callback will release
- * the backing storages' BO memory.
- */
+ vaddr = ast->vram + ast->vram_fb_available - size;
+ offset = ast->vram_fb_available - size;
- ret = drm_universal_plane_init(dev, cursor_plane, 0x01,
- &ast_cursor_plane_funcs,
- ast_cursor_plane_formats,
- ARRAY_SIZE(ast_cursor_plane_formats),
- NULL, DRM_PLANE_TYPE_CURSOR, NULL);
+ ret = ast_plane_init(dev, ast_cursor_plane, vaddr, offset, size,
+ 0x01, &ast_cursor_plane_funcs,
+ ast_cursor_plane_formats, ARRAY_SIZE(ast_cursor_plane_formats),
+ NULL, DRM_PLANE_TYPE_CURSOR);
if (ret) {
- drm_err(dev, "drm_universal_plane failed(): %d\n", ret);
- goto err_hwc;
+ drm_err(dev, "ast_plane_init() failed: %d\n", ret);
+ return ret;
}
drm_plane_helper_add(cursor_plane, &ast_cursor_plane_helper_funcs);
+ drm_plane_enable_fb_damage_clips(cursor_plane);
- return 0;
+ ast->vram_fb_available -= size;
-err_hwc:
- while (i) {
- --i;
- gbo = ast_cursor_plane->hwc[i].gbo;
- map = ast_cursor_plane->hwc[i].map;
-err_drm_gem_vram_vunmap:
- drm_gem_vram_vunmap(gbo, &map);
-err_drm_gem_vram_unpin:
- drm_gem_vram_unpin(gbo);
-err_drm_gem_vram_put:
- drm_gem_vram_put(gbo);
- }
- return ret;
+ return 0;
}
/*
@@ -996,7 +1007,7 @@ err_drm_gem_vram_put:
static void ast_crtc_dpms(struct drm_crtc *crtc, int mode)
{
- struct ast_private *ast = to_ast_private(crtc->dev);
+ struct ast_device *ast = to_ast_device(crtc->dev);
u8 ch = AST_DPMS_VSYNC_OFF | AST_DPMS_HSYNC_OFF;
struct ast_crtc_state *ast_state;
const struct drm_format_info *format;
@@ -1026,9 +1037,11 @@ static void ast_crtc_dpms(struct drm_crtc *crtc, int mode)
ast_set_color_reg(ast, format);
ast_set_vbios_color_reg(ast, format, vbios_mode_info);
+ if (crtc->state->gamma_lut)
+ ast_crtc_set_gamma(ast, format, crtc->state->gamma_lut->data);
+ else
+ ast_crtc_set_gamma_linear(ast, format);
}
-
- ast_crtc_load_lut(ast, crtc);
break;
case DRM_MODE_DPMS_STANDBY:
case DRM_MODE_DPMS_SUSPEND:
@@ -1051,7 +1064,7 @@ static void ast_crtc_dpms(struct drm_crtc *crtc, int mode)
static enum drm_mode_status
ast_crtc_helper_mode_valid(struct drm_crtc *crtc, const struct drm_display_mode *mode)
{
- struct ast_private *ast = to_ast_private(crtc->dev);
+ struct ast_device *ast = to_ast_device(crtc->dev);
enum drm_mode_status status;
uint32_t jtemp;
@@ -1123,47 +1136,50 @@ static int ast_crtc_helper_atomic_check(struct drm_crtc *crtc,
struct drm_atomic_state *state)
{
struct drm_crtc_state *crtc_state = drm_atomic_get_new_crtc_state(state, crtc);
+ struct drm_crtc_state *old_crtc_state = drm_atomic_get_old_crtc_state(state, crtc);
+ struct ast_crtc_state *old_ast_crtc_state = to_ast_crtc_state(old_crtc_state);
struct drm_device *dev = crtc->dev;
struct ast_crtc_state *ast_state;
const struct drm_format_info *format;
bool succ;
int ret;
- ret = drm_atomic_helper_check_crtc_state(crtc_state, false);
+ if (!crtc_state->enable)
+ return 0;
+
+ ret = drm_atomic_helper_check_crtc_primary_plane(crtc_state);
if (ret)
return ret;
- if (!crtc_state->enable)
- goto out;
-
ast_state = to_ast_crtc_state(crtc_state);
format = ast_state->format;
if (drm_WARN_ON_ONCE(dev, !format))
return -EINVAL; /* BUG: We didn't set format in primary check(). */
+ /*
+ * The gamma LUT has to be reloaded after changing the primary
+ * plane's color format.
+ */
+ if (old_ast_crtc_state->format != format)
+ crtc_state->color_mgmt_changed = true;
+
+ if (crtc_state->color_mgmt_changed && crtc_state->gamma_lut) {
+ if (crtc_state->gamma_lut->length !=
+ AST_LUT_SIZE * sizeof(struct drm_color_lut)) {
+ drm_err(dev, "Wrong size for gamma_lut %zu\n",
+ crtc_state->gamma_lut->length);
+ return -EINVAL;
+ }
+ }
+
succ = ast_get_vbios_mode_info(format, &crtc_state->mode,
&crtc_state->adjusted_mode,
&ast_state->vbios_mode_info);
if (!succ)
return -EINVAL;
-out:
- return drm_atomic_add_affected_planes(state, crtc);
-}
-
-static void ast_crtc_helper_atomic_begin(struct drm_crtc *crtc, struct drm_atomic_state *state)
-{
- struct drm_device *dev = crtc->dev;
- struct ast_private *ast = to_ast_private(dev);
-
- /*
- * Concurrent operations could possibly trigger a call to
- * drm_connector_helper_funcs.get_modes by trying to read the
- * display modes. Protect access to I/O registers by acquiring
- * the I/O-register lock. Released in atomic_flush().
- */
- mutex_lock(&ast->ioregs_lock);
+ return 0;
}
static void
@@ -1172,35 +1188,34 @@ ast_crtc_helper_atomic_flush(struct drm_crtc *crtc,
{
struct drm_crtc_state *crtc_state = drm_atomic_get_new_crtc_state(state,
crtc);
- struct drm_crtc_state *old_crtc_state = drm_atomic_get_old_crtc_state(state,
- crtc);
struct drm_device *dev = crtc->dev;
- struct ast_private *ast = to_ast_private(dev);
+ struct ast_device *ast = to_ast_device(dev);
struct ast_crtc_state *ast_crtc_state = to_ast_crtc_state(crtc_state);
- struct ast_crtc_state *old_ast_crtc_state = to_ast_crtc_state(old_crtc_state);
struct ast_vbios_mode_info *vbios_mode_info = &ast_crtc_state->vbios_mode_info;
/*
* The gamma LUT has to be reloaded after changing the primary
* plane's color format.
*/
- if (old_ast_crtc_state->format != ast_crtc_state->format)
- ast_crtc_load_lut(ast, crtc);
+ if (crtc_state->enable && crtc_state->color_mgmt_changed) {
+ if (crtc_state->gamma_lut)
+ ast_crtc_set_gamma(ast,
+ ast_crtc_state->format,
+ crtc_state->gamma_lut->data);
+ else
+ ast_crtc_set_gamma_linear(ast, ast_crtc_state->format);
+ }
//Set Aspeed Display-Port
if (ast->tx_chip_types & AST_TX_ASTDP_BIT)
ast_dp_set_mode(crtc, vbios_mode_info);
-
- mutex_unlock(&ast->ioregs_lock);
}
-static void
-ast_crtc_helper_atomic_enable(struct drm_crtc *crtc,
- struct drm_atomic_state *state)
+static void ast_crtc_helper_atomic_enable(struct drm_crtc *crtc, struct drm_atomic_state *state)
{
struct drm_device *dev = crtc->dev;
- struct ast_private *ast = to_ast_private(dev);
- struct drm_crtc_state *crtc_state = crtc->state;
+ struct ast_device *ast = to_ast_device(dev);
+ struct drm_crtc_state *crtc_state = drm_atomic_get_new_crtc_state(state, crtc);
struct ast_crtc_state *ast_crtc_state = to_ast_crtc_state(crtc_state);
struct ast_vbios_mode_info *vbios_mode_info =
&ast_crtc_state->vbios_mode_info;
@@ -1217,14 +1232,11 @@ ast_crtc_helper_atomic_enable(struct drm_crtc *crtc,
ast_crtc_dpms(crtc, DRM_MODE_DPMS_ON);
}
-static void
-ast_crtc_helper_atomic_disable(struct drm_crtc *crtc,
- struct drm_atomic_state *state)
+static void ast_crtc_helper_atomic_disable(struct drm_crtc *crtc, struct drm_atomic_state *state)
{
- struct drm_crtc_state *old_crtc_state = drm_atomic_get_old_crtc_state(state,
- crtc);
+ struct drm_crtc_state *old_crtc_state = drm_atomic_get_old_crtc_state(state, crtc);
struct drm_device *dev = crtc->dev;
- struct ast_private *ast = to_ast_private(dev);
+ struct ast_device *ast = to_ast_device(dev);
ast_crtc_dpms(crtc, DRM_MODE_DPMS_OFF);
@@ -1250,7 +1262,6 @@ ast_crtc_helper_atomic_disable(struct drm_crtc *crtc,
static const struct drm_crtc_helper_funcs ast_crtc_helper_funcs = {
.mode_valid = ast_crtc_helper_mode_valid,
.atomic_check = ast_crtc_helper_atomic_check,
- .atomic_begin = ast_crtc_helper_atomic_begin,
.atomic_flush = ast_crtc_helper_atomic_flush,
.atomic_enable = ast_crtc_helper_atomic_enable,
.atomic_disable = ast_crtc_helper_atomic_disable,
@@ -1313,17 +1324,19 @@ static const struct drm_crtc_funcs ast_crtc_funcs = {
static int ast_crtc_init(struct drm_device *dev)
{
- struct ast_private *ast = to_ast_private(dev);
+ struct ast_device *ast = to_ast_device(dev);
struct drm_crtc *crtc = &ast->crtc;
int ret;
- ret = drm_crtc_init_with_planes(dev, crtc, &ast->primary_plane,
+ ret = drm_crtc_init_with_planes(dev, crtc, &ast->primary_plane.base,
&ast->cursor_plane.base, &ast_crtc_funcs,
NULL);
if (ret)
return ret;
- drm_mode_crtc_set_gamma_size(crtc, 256);
+ drm_mode_crtc_set_gamma_size(crtc, AST_LUT_SIZE);
+ drm_crtc_enable_color_mgmt(crtc, 0, false, AST_LUT_SIZE);
+
drm_crtc_helper_add(crtc, &ast_crtc_helper_funcs);
return 0;
@@ -1337,7 +1350,7 @@ static int ast_vga_connector_helper_get_modes(struct drm_connector *connector)
{
struct ast_vga_connector *ast_vga_connector = to_ast_vga_connector(connector);
struct drm_device *dev = connector->dev;
- struct ast_private *ast = to_ast_private(dev);
+ struct ast_device *ast = to_ast_device(dev);
struct edid *edid;
int count;
@@ -1410,7 +1423,7 @@ static int ast_vga_connector_init(struct drm_device *dev,
return 0;
}
-static int ast_vga_output_init(struct ast_private *ast)
+static int ast_vga_output_init(struct ast_device *ast)
{
struct drm_device *dev = &ast->base;
struct drm_crtc *crtc = &ast->crtc;
@@ -1443,7 +1456,7 @@ static int ast_sil164_connector_helper_get_modes(struct drm_connector *connector
{
struct ast_sil164_connector *ast_sil164_connector = to_ast_sil164_connector(connector);
struct drm_device *dev = connector->dev;
- struct ast_private *ast = to_ast_private(dev);
+ struct ast_device *ast = to_ast_device(dev);
struct edid *edid;
int count;
@@ -1516,7 +1529,7 @@ static int ast_sil164_connector_init(struct drm_device *dev,
return 0;
}
-static int ast_sil164_output_init(struct ast_private *ast)
+static int ast_sil164_output_init(struct ast_device *ast)
{
struct drm_device *dev = &ast->base;
struct drm_crtc *crtc = &ast->crtc;
@@ -1603,7 +1616,7 @@ static int ast_dp501_connector_init(struct drm_device *dev, struct drm_connector
return 0;
}
-static int ast_dp501_output_init(struct ast_private *ast)
+static int ast_dp501_output_init(struct ast_device *ast)
{
struct drm_device *dev = &ast->base;
struct drm_crtc *crtc = &ast->crtc;
@@ -1690,7 +1703,7 @@ static int ast_astdp_connector_init(struct drm_device *dev, struct drm_connector
return 0;
}
-static int ast_astdp_output_init(struct ast_private *ast)
+static int ast_astdp_output_init(struct ast_device *ast)
{
struct drm_device *dev = &ast->base;
struct drm_crtc *crtc = &ast->crtc;
@@ -1718,21 +1731,53 @@ static int ast_astdp_output_init(struct ast_private *ast)
* Mode config
*/
+static void ast_mode_config_helper_atomic_commit_tail(struct drm_atomic_state *state)
+{
+ struct ast_device *ast = to_ast_device(state->dev);
+
+ /*
+ * Concurrent operations could possibly trigger a call to
+ * drm_connector_helper_funcs.get_modes by trying to read the
+ * display modes. Protect access to I/O registers by acquiring
+ * the I/O-register lock. Released in atomic_flush().
+ */
+ mutex_lock(&ast->ioregs_lock);
+ drm_atomic_helper_commit_tail_rpm(state);
+ mutex_unlock(&ast->ioregs_lock);
+}
+
static const struct drm_mode_config_helper_funcs ast_mode_config_helper_funcs = {
- .atomic_commit_tail = drm_atomic_helper_commit_tail_rpm,
+ .atomic_commit_tail = ast_mode_config_helper_atomic_commit_tail,
};
+static enum drm_mode_status ast_mode_config_mode_valid(struct drm_device *dev,
+ const struct drm_display_mode *mode)
+{
+ static const unsigned long max_bpp = 4; /* DRM_FORMAT_XRGB8888 */
+ struct ast_device *ast = to_ast_device(dev);
+ unsigned long fbsize, fbpages, max_fbpages;
+
+ max_fbpages = (ast->vram_fb_available) >> PAGE_SHIFT;
+
+ fbsize = mode->hdisplay * mode->vdisplay * max_bpp;
+ fbpages = DIV_ROUND_UP(fbsize, PAGE_SIZE);
+
+ if (fbpages > max_fbpages)
+ return MODE_MEM;
+
+ return MODE_OK;
+}
+
static const struct drm_mode_config_funcs ast_mode_config_funcs = {
- .fb_create = drm_gem_fb_create,
- .mode_valid = drm_vram_helper_mode_valid,
+ .fb_create = drm_gem_fb_create_with_dirty,
+ .mode_valid = ast_mode_config_mode_valid,
.atomic_check = drm_atomic_helper_check,
.atomic_commit = drm_atomic_helper_commit,
};
-int ast_mode_config_init(struct ast_private *ast)
+int ast_mode_config_init(struct ast_device *ast)
{
struct drm_device *dev = &ast->base;
- struct pci_dev *pdev = to_pci_dev(dev->dev);
int ret;
ret = drmm_mode_config_init(dev);
@@ -1743,8 +1788,6 @@ int ast_mode_config_init(struct ast_private *ast)
dev->mode_config.min_width = 0;
dev->mode_config.min_height = 0;
dev->mode_config.preferred_depth = 24;
- dev->mode_config.prefer_shadow = 1;
- dev->mode_config.fb_base = pci_resource_start(pdev, 0);
if (ast->chip == AST2100 ||
ast->chip == AST2200 ||
@@ -1761,7 +1804,6 @@ int ast_mode_config_init(struct ast_private *ast)
dev->mode_config.helper_private = &ast_mode_config_helper_funcs;
-
ret = ast_primary_plane_init(ast);
if (ret)
return ret;
diff --git a/drivers/gpu/drm/ast/ast_post.c b/drivers/gpu/drm/ast/ast_post.c
index 82fd3c8adee1..71bb36b865fd 100644
--- a/drivers/gpu/drm/ast/ast_post.c
+++ b/drivers/gpu/drm/ast/ast_post.c
@@ -39,7 +39,7 @@ static void ast_post_chip_2500(struct drm_device *dev);
void ast_enable_vga(struct drm_device *dev)
{
- struct ast_private *ast = to_ast_private(dev);
+ struct ast_device *ast = to_ast_device(dev);
ast_io_write8(ast, AST_IO_VGA_ENABLE_PORT, 0x01);
ast_io_write8(ast, AST_IO_MISC_PORT_WRITE, 0x01);
@@ -47,7 +47,7 @@ void ast_enable_vga(struct drm_device *dev)
void ast_enable_mmio(struct drm_device *dev)
{
- struct ast_private *ast = to_ast_private(dev);
+ struct ast_device *ast = to_ast_device(dev);
ast_set_index_reg(ast, AST_IO_CRTC_PORT, 0xa1, 0x06);
}
@@ -55,7 +55,7 @@ void ast_enable_mmio(struct drm_device *dev)
bool ast_is_vga_enabled(struct drm_device *dev)
{
- struct ast_private *ast = to_ast_private(dev);
+ struct ast_device *ast = to_ast_device(dev);
u8 ch;
ch = ast_io_read8(ast, AST_IO_VGA_ENABLE_PORT);
@@ -70,7 +70,7 @@ static const u8 extreginfo_ast2300[] = { 0x0f, 0x04, 0x1f, 0xff };
static void
ast_set_def_ext_reg(struct drm_device *dev)
{
- struct ast_private *ast = to_ast_private(dev);
+ struct ast_device *ast = to_ast_device(dev);
struct pci_dev *pdev = to_pci_dev(dev->dev);
u8 i, index, reg;
const u8 *ext_reg_info;
@@ -110,7 +110,7 @@ ast_set_def_ext_reg(struct drm_device *dev)
ast_set_index_reg_mask(ast, AST_IO_CRTC_PORT, 0xb6, 0xff, reg);
}
-u32 ast_mindwm(struct ast_private *ast, u32 r)
+u32 ast_mindwm(struct ast_device *ast, u32 r)
{
uint32_t data;
@@ -123,7 +123,7 @@ u32 ast_mindwm(struct ast_private *ast, u32 r)
return ast_read32(ast, 0x10000 + (r & 0x0000ffff));
}
-void ast_moutdwm(struct ast_private *ast, u32 r, u32 v)
+void ast_moutdwm(struct ast_device *ast, u32 r, u32 v)
{
uint32_t data;
ast_write32(ast, 0xf004, r & 0xffff0000);
@@ -162,7 +162,7 @@ static const u32 pattern_AST2150[14] = {
0x20F050E0
};
-static u32 mmctestburst2_ast2150(struct ast_private *ast, u32 datagen)
+static u32 mmctestburst2_ast2150(struct ast_device *ast, u32 datagen)
{
u32 data, timeout;
@@ -192,7 +192,7 @@ static u32 mmctestburst2_ast2150(struct ast_private *ast, u32 datagen)
}
#if 0 /* unused in DDX driver - here for completeness */
-static u32 mmctestsingle2_ast2150(struct ast_private *ast, u32 datagen)
+static u32 mmctestsingle2_ast2150(struct ast_device *ast, u32 datagen)
{
u32 data, timeout;
@@ -212,7 +212,7 @@ static u32 mmctestsingle2_ast2150(struct ast_private *ast, u32 datagen)
}
#endif
-static int cbrtest_ast2150(struct ast_private *ast)
+static int cbrtest_ast2150(struct ast_device *ast)
{
int i;
@@ -222,7 +222,7 @@ static int cbrtest_ast2150(struct ast_private *ast)
return 1;
}
-static int cbrscan_ast2150(struct ast_private *ast, int busw)
+static int cbrscan_ast2150(struct ast_device *ast, int busw)
{
u32 patcnt, loop;
@@ -239,7 +239,7 @@ static int cbrscan_ast2150(struct ast_private *ast, int busw)
}
-static void cbrdlli_ast2150(struct ast_private *ast, int busw)
+static void cbrdlli_ast2150(struct ast_device *ast, int busw)
{
u32 dll_min[4], dll_max[4], dlli, data, passcnt;
@@ -273,7 +273,7 @@ cbr_start:
static void ast_init_dram_reg(struct drm_device *dev)
{
- struct ast_private *ast = to_ast_private(dev);
+ struct ast_device *ast = to_ast_device(dev);
u8 j;
u32 data, temp, i;
const struct ast_dramstruct *dram_reg_info;
@@ -366,7 +366,7 @@ static void ast_init_dram_reg(struct drm_device *dev)
void ast_post_gpu(struct drm_device *dev)
{
- struct ast_private *ast = to_ast_private(dev);
+ struct ast_device *ast = to_ast_device(dev);
struct pci_dev *pdev = to_pci_dev(dev->dev);
u32 reg;
@@ -449,7 +449,7 @@ static const u32 pattern[8] = {
0x7C61D253
};
-static bool mmc_test(struct ast_private *ast, u32 datagen, u8 test_ctl)
+static bool mmc_test(struct ast_device *ast, u32 datagen, u8 test_ctl)
{
u32 data, timeout;
@@ -469,7 +469,7 @@ static bool mmc_test(struct ast_private *ast, u32 datagen, u8 test_ctl)
return true;
}
-static u32 mmc_test2(struct ast_private *ast, u32 datagen, u8 test_ctl)
+static u32 mmc_test2(struct ast_device *ast, u32 datagen, u8 test_ctl)
{
u32 data, timeout;
@@ -490,32 +490,32 @@ static u32 mmc_test2(struct ast_private *ast, u32 datagen, u8 test_ctl)
}
-static bool mmc_test_burst(struct ast_private *ast, u32 datagen)
+static bool mmc_test_burst(struct ast_device *ast, u32 datagen)
{
return mmc_test(ast, datagen, 0xc1);
}
-static u32 mmc_test_burst2(struct ast_private *ast, u32 datagen)
+static u32 mmc_test_burst2(struct ast_device *ast, u32 datagen)
{
return mmc_test2(ast, datagen, 0x41);
}
-static bool mmc_test_single(struct ast_private *ast, u32 datagen)
+static bool mmc_test_single(struct ast_device *ast, u32 datagen)
{
return mmc_test(ast, datagen, 0xc5);
}
-static u32 mmc_test_single2(struct ast_private *ast, u32 datagen)
+static u32 mmc_test_single2(struct ast_device *ast, u32 datagen)
{
return mmc_test2(ast, datagen, 0x05);
}
-static bool mmc_test_single_2500(struct ast_private *ast, u32 datagen)
+static bool mmc_test_single_2500(struct ast_device *ast, u32 datagen)
{
return mmc_test(ast, datagen, 0x85);
}
-static int cbr_test(struct ast_private *ast)
+static int cbr_test(struct ast_device *ast)
{
u32 data;
int i;
@@ -534,7 +534,7 @@ static int cbr_test(struct ast_private *ast)
return 1;
}
-static int cbr_scan(struct ast_private *ast)
+static int cbr_scan(struct ast_device *ast)
{
u32 data, data2, patcnt, loop;
@@ -555,7 +555,7 @@ static int cbr_scan(struct ast_private *ast)
return data2;
}
-static u32 cbr_test2(struct ast_private *ast)
+static u32 cbr_test2(struct ast_device *ast)
{
u32 data;
@@ -569,7 +569,7 @@ static u32 cbr_test2(struct ast_private *ast)
return ~data & 0xffff;
}
-static u32 cbr_scan2(struct ast_private *ast)
+static u32 cbr_scan2(struct ast_device *ast)
{
u32 data, data2, patcnt, loop;
@@ -590,7 +590,7 @@ static u32 cbr_scan2(struct ast_private *ast)
return data2;
}
-static bool cbr_test3(struct ast_private *ast)
+static bool cbr_test3(struct ast_device *ast)
{
if (!mmc_test_burst(ast, 0))
return false;
@@ -599,7 +599,7 @@ static bool cbr_test3(struct ast_private *ast)
return true;
}
-static bool cbr_scan3(struct ast_private *ast)
+static bool cbr_scan3(struct ast_device *ast)
{
u32 patcnt, loop;
@@ -615,7 +615,7 @@ static bool cbr_scan3(struct ast_private *ast)
return true;
}
-static bool finetuneDQI_L(struct ast_private *ast, struct ast2300_dram_param *param)
+static bool finetuneDQI_L(struct ast_device *ast, struct ast2300_dram_param *param)
{
u32 gold_sadj[2], dllmin[16], dllmax[16], dlli, data, cnt, mask, passcnt, retry = 0;
bool status = false;
@@ -714,7 +714,7 @@ FINETUNE_DONE:
return status;
} /* finetuneDQI_L */
-static void finetuneDQSI(struct ast_private *ast)
+static void finetuneDQSI(struct ast_device *ast)
{
u32 dlli, dqsip, dqidly;
u32 reg_mcr18, reg_mcr0c, passcnt[2], diff;
@@ -804,7 +804,7 @@ static void finetuneDQSI(struct ast_private *ast)
ast_moutdwm(ast, 0x1E6E0018, reg_mcr18);
}
-static bool cbr_dll2(struct ast_private *ast, struct ast2300_dram_param *param)
+static bool cbr_dll2(struct ast_device *ast, struct ast2300_dram_param *param)
{
u32 dllmin[2], dllmax[2], dlli, data, passcnt, retry = 0;
bool status = false;
@@ -860,7 +860,7 @@ CBR_DONE2:
return status;
} /* CBRDLL2 */
-static void get_ddr3_info(struct ast_private *ast, struct ast2300_dram_param *param)
+static void get_ddr3_info(struct ast_device *ast, struct ast2300_dram_param *param)
{
u32 trap, trap_AC2, trap_MRS;
@@ -1102,7 +1102,7 @@ static void get_ddr3_info(struct ast_private *ast, struct ast2300_dram_param *pa
}
-static void ddr3_init(struct ast_private *ast, struct ast2300_dram_param *param)
+static void ddr3_init(struct ast_device *ast, struct ast2300_dram_param *param)
{
u32 data, data2, retry = 0;
@@ -1225,7 +1225,7 @@ ddr3_init_start:
}
-static void get_ddr2_info(struct ast_private *ast, struct ast2300_dram_param *param)
+static void get_ddr2_info(struct ast_device *ast, struct ast2300_dram_param *param)
{
u32 trap, trap_AC2, trap_MRS;
@@ -1472,7 +1472,7 @@ static void get_ddr2_info(struct ast_private *ast, struct ast2300_dram_param *pa
}
}
-static void ddr2_init(struct ast_private *ast, struct ast2300_dram_param *param)
+static void ddr2_init(struct ast_device *ast, struct ast2300_dram_param *param)
{
u32 data, data2, retry = 0;
@@ -1600,7 +1600,7 @@ ddr2_init_start:
static void ast_post_chip_2300(struct drm_device *dev)
{
- struct ast_private *ast = to_ast_private(dev);
+ struct ast_device *ast = to_ast_device(dev);
struct ast2300_dram_param param;
u32 temp;
u8 reg;
@@ -1681,7 +1681,7 @@ static void ast_post_chip_2300(struct drm_device *dev)
} while ((reg & 0x40) == 0);
}
-static bool cbr_test_2500(struct ast_private *ast)
+static bool cbr_test_2500(struct ast_device *ast)
{
ast_moutdwm(ast, 0x1E6E0074, 0x0000FFFF);
ast_moutdwm(ast, 0x1E6E007C, 0xFF00FF00);
@@ -1692,7 +1692,7 @@ static bool cbr_test_2500(struct ast_private *ast)
return true;
}
-static bool ddr_test_2500(struct ast_private *ast)
+static bool ddr_test_2500(struct ast_device *ast)
{
ast_moutdwm(ast, 0x1E6E0074, 0x0000FFFF);
ast_moutdwm(ast, 0x1E6E007C, 0xFF00FF00);
@@ -1709,7 +1709,7 @@ static bool ddr_test_2500(struct ast_private *ast)
return true;
}
-static void ddr_init_common_2500(struct ast_private *ast)
+static void ddr_init_common_2500(struct ast_device *ast)
{
ast_moutdwm(ast, 0x1E6E0034, 0x00020080);
ast_moutdwm(ast, 0x1E6E0008, 0x2003000F);
@@ -1732,7 +1732,7 @@ static void ddr_init_common_2500(struct ast_private *ast)
ast_moutdwm(ast, 0x1E6E024C, 0x80808080);
}
-static void ddr_phy_init_2500(struct ast_private *ast)
+static void ddr_phy_init_2500(struct ast_device *ast)
{
u32 data, pass, timecnt;
@@ -1766,7 +1766,7 @@ static void ddr_phy_init_2500(struct ast_private *ast)
* 4Gb : 0x80000000 ~ 0x9FFFFFFF
* 8Gb : 0x80000000 ~ 0xBFFFFFFF
*/
-static void check_dram_size_2500(struct ast_private *ast, u32 tRFC)
+static void check_dram_size_2500(struct ast_device *ast, u32 tRFC)
{
u32 reg_04, reg_14;
@@ -1797,7 +1797,7 @@ static void check_dram_size_2500(struct ast_private *ast, u32 tRFC)
ast_moutdwm(ast, 0x1E6E0014, reg_14);
}
-static void enable_cache_2500(struct ast_private *ast)
+static void enable_cache_2500(struct ast_device *ast)
{
u32 reg_04, data;
@@ -1810,7 +1810,7 @@ static void enable_cache_2500(struct ast_private *ast)
ast_moutdwm(ast, 0x1E6E0004, reg_04 | 0x400);
}
-static void set_mpll_2500(struct ast_private *ast)
+static void set_mpll_2500(struct ast_device *ast)
{
u32 addr, data, param;
@@ -1837,7 +1837,7 @@ static void set_mpll_2500(struct ast_private *ast)
udelay(100);
}
-static void reset_mmc_2500(struct ast_private *ast)
+static void reset_mmc_2500(struct ast_device *ast)
{
ast_moutdwm(ast, 0x1E78505C, 0x00000004);
ast_moutdwm(ast, 0x1E785044, 0x00000001);
@@ -1848,7 +1848,7 @@ static void reset_mmc_2500(struct ast_private *ast)
ast_moutdwm(ast, 0x1E6E0000, 0xFC600309);
}
-static void ddr3_init_2500(struct ast_private *ast, const u32 *ddr_table)
+static void ddr3_init_2500(struct ast_device *ast, const u32 *ddr_table)
{
ast_moutdwm(ast, 0x1E6E0004, 0x00000303);
@@ -1892,7 +1892,7 @@ static void ddr3_init_2500(struct ast_private *ast, const u32 *ddr_table)
ast_moutdwm(ast, 0x1E6E0038, 0xFFFFFF00);
}
-static void ddr4_init_2500(struct ast_private *ast, const u32 *ddr_table)
+static void ddr4_init_2500(struct ast_device *ast, const u32 *ddr_table)
{
u32 data, data2, pass, retrycnt;
u32 ddr_vref, phy_vref;
@@ -2002,7 +2002,7 @@ static void ddr4_init_2500(struct ast_private *ast, const u32 *ddr_table)
ast_moutdwm(ast, 0x1E6E0038, 0xFFFFFF00);
}
-static bool ast_dram_init_2500(struct ast_private *ast)
+static bool ast_dram_init_2500(struct ast_device *ast)
{
u32 data;
u32 max_tries = 5;
@@ -2030,7 +2030,7 @@ static bool ast_dram_init_2500(struct ast_private *ast)
return true;
}
-void ast_patch_ahb_2500(struct ast_private *ast)
+void ast_patch_ahb_2500(struct ast_device *ast)
{
u32 data;
@@ -2066,7 +2066,7 @@ void ast_patch_ahb_2500(struct ast_private *ast)
void ast_post_chip_2500(struct drm_device *dev)
{
- struct ast_private *ast = to_ast_private(dev);
+ struct ast_device *ast = to_ast_device(dev);
u32 temp;
u8 reg;
diff --git a/drivers/gpu/drm/atmel-hlcdc/atmel_hlcdc_dc.c b/drivers/gpu/drm/atmel-hlcdc/atmel_hlcdc_dc.c
index f7e7f4e919c7..29603561d501 100644
--- a/drivers/gpu/drm/atmel-hlcdc/atmel_hlcdc_dc.c
+++ b/drivers/gpu/drm/atmel-hlcdc/atmel_hlcdc_dc.c
@@ -19,7 +19,7 @@
#include <drm/drm_atomic.h>
#include <drm/drm_atomic_helper.h>
#include <drm/drm_drv.h>
-#include <drm/drm_fb_helper.h>
+#include <drm/drm_fbdev_dma.h>
#include <drm/drm_gem_dma_helper.h>
#include <drm/drm_gem_framebuffer_helper.h>
#include <drm/drm_module.h>
@@ -760,7 +760,7 @@ static int atmel_hlcdc_dc_drm_probe(struct platform_device *pdev)
if (ret)
goto err_unload;
- drm_fbdev_generic_setup(ddev, 24);
+ drm_fbdev_dma_setup(ddev, 24);
return 0;
@@ -784,7 +784,6 @@ static int atmel_hlcdc_dc_drm_remove(struct platform_device *pdev)
return 0;
}
-#ifdef CONFIG_PM_SLEEP
static int atmel_hlcdc_dc_drm_suspend(struct device *dev)
{
struct drm_device *drm_dev = dev_get_drvdata(dev);
@@ -815,10 +814,10 @@ static int atmel_hlcdc_dc_drm_resume(struct device *dev)
return drm_atomic_helper_resume(drm_dev, dc->suspend.state);
}
-#endif
-static SIMPLE_DEV_PM_OPS(atmel_hlcdc_dc_drm_pm_ops,
- atmel_hlcdc_dc_drm_suspend, atmel_hlcdc_dc_drm_resume);
+static DEFINE_SIMPLE_DEV_PM_OPS(atmel_hlcdc_dc_drm_pm_ops,
+ atmel_hlcdc_dc_drm_suspend,
+ atmel_hlcdc_dc_drm_resume);
static const struct of_device_id atmel_hlcdc_dc_of_match[] = {
{ .compatible = "atmel,hlcdc-display-controller" },
@@ -830,7 +829,7 @@ static struct platform_driver atmel_hlcdc_dc_platform_driver = {
.remove = atmel_hlcdc_dc_drm_remove,
.driver = {
.name = "atmel-hlcdc-display-controller",
- .pm = &atmel_hlcdc_dc_drm_pm_ops,
+ .pm = pm_sleep_ptr(&atmel_hlcdc_dc_drm_pm_ops),
.of_match_table = atmel_hlcdc_dc_of_match,
},
};
diff --git a/drivers/gpu/drm/bridge/Kconfig b/drivers/gpu/drm/bridge/Kconfig
index 57946d80b02d..f076a09afac0 100644
--- a/drivers/gpu/drm/bridge/Kconfig
+++ b/drivers/gpu/drm/bridge/Kconfig
@@ -15,17 +15,6 @@ config DRM_PANEL_BRIDGE
menu "Display Interface Bridges"
depends on DRM && DRM_BRIDGE
-config DRM_CDNS_DSI
- tristate "Cadence DPI/DSI bridge"
- select DRM_KMS_HELPER
- select DRM_MIPI_DSI
- select DRM_PANEL_BRIDGE
- select GENERIC_PHY_MIPI_DPHY
- depends on OF
- help
- Support Cadence DPI to DSI bridge. This is an internal
- bridge and is meant to be directly embedded in a SoC.
-
config DRM_CHIPONE_ICN6211
tristate "Chipone ICN6211 MIPI-DSI/RGB Converter bridge"
depends on OF
@@ -231,6 +220,18 @@ config DRM_PARADE_PS8640
The PS8640 is a high-performance and low-power
MIPI DSI to eDP converter
+config DRM_SAMSUNG_DSIM
+ tristate "Samsung MIPI DSIM bridge driver"
+ depends on COMMON_CLK
+ depends on OF && HAS_IOMEM
+ select DRM_KMS_HELPER
+ select DRM_MIPI_DSI
+ select DRM_PANEL_BRIDGE
+ help
+ The Samsung MIPI DSIM bridge controller driver.
+ This MIPI DSIM bridge can be found it on Exynos SoCs and
+ NXP's i.MX8M Mini/Nano.
+
config DRM_SIL_SII8620
tristate "Silicon Image SII8620 HDMI/MHL bridge"
depends on OF
@@ -337,7 +338,7 @@ config DRM_TI_DLPC3433
input that produces a DMD output in RGB565, RGB666, RGB888
formats.
- It supports upto 720p resolution with 60 and 120 Hz refresh
+ It supports up to 720p resolution with 60 and 120 Hz refresh
rates.
config DRM_TI_TFP410
diff --git a/drivers/gpu/drm/bridge/Makefile b/drivers/gpu/drm/bridge/Makefile
index 1884803c6860..2b892b7ed59e 100644
--- a/drivers/gpu/drm/bridge/Makefile
+++ b/drivers/gpu/drm/bridge/Makefile
@@ -1,5 +1,4 @@
# SPDX-License-Identifier: GPL-2.0
-obj-$(CONFIG_DRM_CDNS_DSI) += cdns-dsi.o
obj-$(CONFIG_DRM_CHIPONE_ICN6211) += chipone-icn6211.o
obj-$(CONFIG_DRM_CHRONTEL_CH7033) += chrontel-ch7033.o
obj-$(CONFIG_DRM_CROS_EC_ANX7688) += cros-ec-anx7688.o
@@ -15,6 +14,7 @@ obj-$(CONFIG_DRM_MEGACHIPS_STDPXXXX_GE_B850V3_FW) += megachips-stdpxxxx-ge-b850v
obj-$(CONFIG_DRM_NXP_PTN3460) += nxp-ptn3460.o
obj-$(CONFIG_DRM_PARADE_PS8622) += parade-ps8622.o
obj-$(CONFIG_DRM_PARADE_PS8640) += parade-ps8640.o
+obj-$(CONFIG_DRM_SAMSUNG_DSIM) += samsung-dsim.o
obj-$(CONFIG_DRM_SIL_SII8620) += sil-sii8620.o
obj-$(CONFIG_DRM_SII902X) += sii902x.o
obj-$(CONFIG_DRM_SII9234) += sii9234.o
diff --git a/drivers/gpu/drm/bridge/adv7511/adv7511.h b/drivers/gpu/drm/bridge/adv7511/adv7511.h
index 94de73cbeb2d..17445800248d 100644
--- a/drivers/gpu/drm/bridge/adv7511/adv7511.h
+++ b/drivers/gpu/drm/bridge/adv7511/adv7511.h
@@ -402,7 +402,8 @@ static inline int adv7511_cec_init(struct device *dev, struct adv7511 *adv7511)
void adv7533_dsi_power_on(struct adv7511 *adv);
void adv7533_dsi_power_off(struct adv7511 *adv);
-void adv7533_mode_set(struct adv7511 *adv, const struct drm_display_mode *mode);
+enum drm_mode_status adv7533_mode_valid(struct adv7511 *adv,
+ const struct drm_display_mode *mode);
int adv7533_patch_registers(struct adv7511 *adv);
int adv7533_patch_cec_registers(struct adv7511 *adv);
int adv7533_attach_dsi(struct adv7511 *adv);
diff --git a/drivers/gpu/drm/bridge/adv7511/adv7511_drv.c b/drivers/gpu/drm/bridge/adv7511/adv7511_drv.c
index f887200e8abc..ddceafa7b637 100644
--- a/drivers/gpu/drm/bridge/adv7511/adv7511_drv.c
+++ b/drivers/gpu/drm/bridge/adv7511/adv7511_drv.c
@@ -697,7 +697,7 @@ adv7511_detect(struct adv7511 *adv7511, struct drm_connector *connector)
}
static enum drm_mode_status adv7511_mode_valid(struct adv7511 *adv7511,
- struct drm_display_mode *mode)
+ const struct drm_display_mode *mode)
{
if (mode->clock > 165000)
return MODE_CLOCK_HIGH;
@@ -791,9 +791,6 @@ static void adv7511_mode_set(struct adv7511 *adv7511,
regmap_update_bits(adv7511->regmap, 0x17,
0x60, (vsync_polarity << 6) | (hsync_polarity << 5));
- if (adv7511->type == ADV7533 || adv7511->type == ADV7535)
- adv7533_mode_set(adv7511, adj_mode);
-
drm_mode_copy(&adv7511->curr_mode, adj_mode);
/*
@@ -913,6 +910,18 @@ static void adv7511_bridge_mode_set(struct drm_bridge *bridge,
adv7511_mode_set(adv, mode, adj_mode);
}
+static enum drm_mode_status adv7511_bridge_mode_valid(struct drm_bridge *bridge,
+ const struct drm_display_info *info,
+ const struct drm_display_mode *mode)
+{
+ struct adv7511 *adv = bridge_to_adv7511(bridge);
+
+ if (adv->type == ADV7533 || adv->type == ADV7535)
+ return adv7533_mode_valid(adv, mode);
+ else
+ return adv7511_mode_valid(adv, mode);
+}
+
static int adv7511_bridge_attach(struct drm_bridge *bridge,
enum drm_bridge_attach_flags flags)
{
@@ -960,6 +969,7 @@ static const struct drm_bridge_funcs adv7511_bridge_funcs = {
.enable = adv7511_bridge_enable,
.disable = adv7511_bridge_disable,
.mode_set = adv7511_bridge_mode_set,
+ .mode_valid = adv7511_bridge_mode_valid,
.attach = adv7511_bridge_attach,
.detect = adv7511_bridge_detect,
.get_edid = adv7511_bridge_get_edid,
@@ -1175,8 +1185,9 @@ static int adv7511_parse_dt(struct device_node *np,
return 0;
}
-static int adv7511_probe(struct i2c_client *i2c, const struct i2c_device_id *id)
+static int adv7511_probe(struct i2c_client *i2c)
{
+ const struct i2c_device_id *id = i2c_client_get_device_id(i2c);
struct adv7511_link_config link_config;
struct adv7511 *adv7511;
struct device *dev = &i2c->dev;
@@ -1209,10 +1220,8 @@ static int adv7511_probe(struct i2c_client *i2c, const struct i2c_device_id *id)
return ret;
ret = adv7511_init_regulators(adv7511);
- if (ret) {
- dev_err(dev, "failed to init regulators\n");
- return ret;
- }
+ if (ret)
+ return dev_err_probe(dev, ret, "failed to init regulators\n");
/*
* The power down GPIO is optional. If present, toggle it from active to
@@ -1384,7 +1393,7 @@ static struct i2c_driver adv7511_driver = {
.of_match_table = adv7511_of_ids,
},
.id_table = adv7511_i2c_ids,
- .probe = adv7511_probe,
+ .probe_new = adv7511_probe,
.remove = adv7511_remove,
};
diff --git a/drivers/gpu/drm/bridge/adv7511/adv7533.c b/drivers/gpu/drm/bridge/adv7511/adv7533.c
index ef6270806d1d..7e3e56441aed 100644
--- a/drivers/gpu/drm/bridge/adv7511/adv7533.c
+++ b/drivers/gpu/drm/bridge/adv7511/adv7533.c
@@ -100,26 +100,24 @@ void adv7533_dsi_power_off(struct adv7511 *adv)
regmap_write(adv->regmap_cec, 0x27, 0x0b);
}
-void adv7533_mode_set(struct adv7511 *adv, const struct drm_display_mode *mode)
+enum drm_mode_status adv7533_mode_valid(struct adv7511 *adv,
+ const struct drm_display_mode *mode)
{
+ unsigned long max_lane_freq;
struct mipi_dsi_device *dsi = adv->dsi;
- int lanes, ret;
-
- if (adv->num_dsi_lanes != 4)
- return;
-
- if (mode->clock > 80000)
- lanes = 4;
- else
- lanes = 3;
-
- if (lanes != dsi->lanes) {
- mipi_dsi_detach(dsi);
- dsi->lanes = lanes;
- ret = mipi_dsi_attach(dsi);
- if (ret)
- dev_err(&dsi->dev, "failed to change host lanes\n");
- }
+ u8 bpp = mipi_dsi_pixel_format_to_bpp(dsi->format);
+
+ /* Check max clock for either 7533 or 7535 */
+ if (mode->clock > (adv->type == ADV7533 ? 80000 : 148500))
+ return MODE_CLOCK_HIGH;
+
+ /* Check max clock for each lane */
+ max_lane_freq = (adv->type == ADV7533 ? 800000 : 891000);
+
+ if (mode->clock * bpp > max_lane_freq * adv->num_dsi_lanes)
+ return MODE_CLOCK_HIGH;
+
+ return MODE_OK;
}
int adv7533_patch_registers(struct adv7511 *adv)
@@ -148,16 +146,14 @@ int adv7533_attach_dsi(struct adv7511 *adv)
};
host = of_find_mipi_dsi_host_by_node(adv->host_node);
- if (!host) {
- dev_err(dev, "failed to find dsi host\n");
- return -EPROBE_DEFER;
- }
+ if (!host)
+ return dev_err_probe(dev, -EPROBE_DEFER,
+ "failed to find dsi host\n");
dsi = devm_mipi_dsi_device_register_full(dev, host, &info);
- if (IS_ERR(dsi)) {
- dev_err(dev, "failed to create dsi device\n");
- return PTR_ERR(dsi);
- }
+ if (IS_ERR(dsi))
+ return dev_err_probe(dev, PTR_ERR(dsi),
+ "failed to create dsi device\n");
adv->dsi = dsi;
@@ -167,10 +163,8 @@ int adv7533_attach_dsi(struct adv7511 *adv)
MIPI_DSI_MODE_NO_EOT_PACKET | MIPI_DSI_MODE_VIDEO_HSE;
ret = devm_mipi_dsi_attach(dev, dsi);
- if (ret < 0) {
- dev_err(dev, "failed to attach dsi to host\n");
- return ret;
- }
+ if (ret < 0)
+ return dev_err_probe(dev, ret, "failed to attach dsi to host\n");
return 0;
}
diff --git a/drivers/gpu/drm/bridge/analogix/analogix-anx6345.c b/drivers/gpu/drm/bridge/analogix/analogix-anx6345.c
index 660a54857929..3577c532abb4 100644
--- a/drivers/gpu/drm/bridge/analogix/analogix-anx6345.c
+++ b/drivers/gpu/drm/bridge/analogix/analogix-anx6345.c
@@ -22,7 +22,6 @@
#include <drm/drm_atomic_helper.h>
#include <drm/drm_bridge.h>
#include <drm/drm_crtc.h>
-#include <drm/drm_crtc_helper.h>
#include <drm/drm_edid.h>
#include <drm/drm_of.h>
#include <drm/drm_panel.h>
@@ -692,8 +691,7 @@ static bool anx6345_get_chip_id(struct anx6345 *anx6345)
return false;
}
-static int anx6345_i2c_probe(struct i2c_client *client,
- const struct i2c_device_id *id)
+static int anx6345_i2c_probe(struct i2c_client *client)
{
struct anx6345 *anx6345;
struct device *dev;
@@ -817,7 +815,7 @@ static struct i2c_driver anx6345_driver = {
.name = "anx6345",
.of_match_table = of_match_ptr(anx6345_match_table),
},
- .probe = anx6345_i2c_probe,
+ .probe_new = anx6345_i2c_probe,
.remove = anx6345_i2c_remove,
.id_table = anx6345_id,
};
diff --git a/drivers/gpu/drm/bridge/analogix/analogix-anx78xx.c b/drivers/gpu/drm/bridge/analogix/analogix-anx78xx.c
index 5997049fde5b..a3a38bbe2786 100644
--- a/drivers/gpu/drm/bridge/analogix/analogix-anx78xx.c
+++ b/drivers/gpu/drm/bridge/analogix/analogix-anx78xx.c
@@ -1214,8 +1214,7 @@ static const u16 anx78xx_chipid_list[] = {
0x7818,
};
-static int anx78xx_i2c_probe(struct i2c_client *client,
- const struct i2c_device_id *id)
+static int anx78xx_i2c_probe(struct i2c_client *client)
{
struct anx78xx *anx78xx;
struct anx78xx_platform_data *pdata;
@@ -1390,7 +1389,7 @@ static struct i2c_driver anx78xx_driver = {
.name = "anx7814",
.of_match_table = of_match_ptr(anx78xx_match_table),
},
- .probe = anx78xx_i2c_probe,
+ .probe_new = anx78xx_i2c_probe,
.remove = anx78xx_i2c_remove,
.id_table = anx78xx_id,
};
diff --git a/drivers/gpu/drm/bridge/analogix/anx7625.c b/drivers/gpu/drm/bridge/analogix/anx7625.c
index b0ff1ecb80a5..6846199a2ee1 100644
--- a/drivers/gpu/drm/bridge/analogix/anx7625.c
+++ b/drivers/gpu/drm/bridge/analogix/anx7625.c
@@ -26,7 +26,6 @@
#include <drm/display/drm_hdcp_helper.h>
#include <drm/drm_atomic_helper.h>
#include <drm/drm_bridge.h>
-#include <drm/drm_crtc_helper.h>
#include <drm/drm_edid.h>
#include <drm/drm_mipi_dsi.h>
#include <drm/drm_of.h>
@@ -1403,7 +1402,6 @@ static void anx7625_stop_dp_work(struct anx7625_data *ctx)
{
ctx->hpd_status = 0;
ctx->hpd_high_cnt = 0;
- ctx->display_timing_valid = 0;
}
static void anx7625_start_dp_work(struct anx7625_data *ctx)
@@ -2562,8 +2560,7 @@ static void anx7625_runtime_disable(void *data)
pm_runtime_disable(data);
}
-static int anx7625_i2c_probe(struct i2c_client *client,
- const struct i2c_device_id *id)
+static int anx7625_i2c_probe(struct i2c_client *client)
{
struct anx7625_data *platform;
struct anx7625_platform_data *pdata;
@@ -2756,7 +2753,7 @@ static struct i2c_driver anx7625_driver = {
.of_match_table = anx_match_table,
.pm = &anx7625_pm_ops,
},
- .probe = anx7625_i2c_probe,
+ .probe_new = anx7625_i2c_probe,
.remove = anx7625_i2c_remove,
.id_table = anx7625_id,
diff --git a/drivers/gpu/drm/bridge/cadence/Kconfig b/drivers/gpu/drm/bridge/cadence/Kconfig
index 1d06182bea71..ec35215a2003 100644
--- a/drivers/gpu/drm/bridge/cadence/Kconfig
+++ b/drivers/gpu/drm/bridge/cadence/Kconfig
@@ -1,4 +1,25 @@
# SPDX-License-Identifier: GPL-2.0-only
+config DRM_CDNS_DSI
+ tristate "Cadence DPI/DSI bridge"
+ select DRM_KMS_HELPER
+ select DRM_MIPI_DSI
+ select DRM_PANEL_BRIDGE
+ select GENERIC_PHY_MIPI_DPHY
+ depends on OF
+ help
+ Support Cadence DPI to DSI bridge. This is an internal
+ bridge and is meant to be directly embedded in a SoC.
+
+if DRM_CDNS_DSI
+
+config DRM_CDNS_DSI_J721E
+ bool "J721E Cadence DSI wrapper support"
+ default y
+ help
+ Support J721E Cadence DSI wrapper. The wrapper manages
+ the routing of the DSS DPI signal to the Cadence DSI.
+endif
+
config DRM_CDNS_MHDP8546
tristate "Cadence DPI/DP bridge"
select DRM_DISPLAY_DP_HELPER
diff --git a/drivers/gpu/drm/bridge/cadence/Makefile b/drivers/gpu/drm/bridge/cadence/Makefile
index 4d2db8df1bc6..c95fd5b81d13 100644
--- a/drivers/gpu/drm/bridge/cadence/Makefile
+++ b/drivers/gpu/drm/bridge/cadence/Makefile
@@ -1,4 +1,7 @@
# SPDX-License-Identifier: GPL-2.0-only
+obj-$(CONFIG_DRM_CDNS_DSI) += cdns-dsi.o
+cdns-dsi-y := cdns-dsi-core.o
+cdns-dsi-$(CONFIG_DRM_CDNS_DSI_J721E) += cdns-dsi-j721e.o
obj-$(CONFIG_DRM_CDNS_MHDP8546) += cdns-mhdp8546.o
cdns-mhdp8546-y := cdns-mhdp8546-core.o cdns-mhdp8546-hdcp.o
cdns-mhdp8546-$(CONFIG_DRM_CDNS_MHDP8546_J721E) += cdns-mhdp8546-j721e.o
diff --git a/drivers/gpu/drm/bridge/cdns-dsi.c b/drivers/gpu/drm/bridge/cadence/cdns-dsi-core.c
index 20bece84ff8c..f50d65f54314 100644
--- a/drivers/gpu/drm/bridge/cdns-dsi.c
+++ b/drivers/gpu/drm/bridge/cadence/cdns-dsi-core.c
@@ -6,10 +6,7 @@
*/
#include <drm/drm_atomic_helper.h>
-#include <drm/drm_bridge.h>
#include <drm/drm_drv.h>
-#include <drm/drm_mipi_dsi.h>
-#include <drm/drm_panel.h>
#include <drm/drm_probe_helper.h>
#include <video/mipi_display.h>
@@ -18,14 +15,19 @@
#include <linux/iopoll.h>
#include <linux/module.h>
#include <linux/of_address.h>
+#include <linux/of_device.h>
#include <linux/of_graph.h>
#include <linux/platform_device.h>
#include <linux/pm_runtime.h>
#include <linux/reset.h>
-#include <linux/phy/phy.h>
#include <linux/phy/phy-mipi-dphy.h>
+#include "cdns-dsi-core.h"
+#ifdef CONFIG_DRM_CDNS_DSI_J721E
+#include "cdns-dsi-j721e.h"
+#endif
+
#define IP_CONF 0x0
#define SP_HS_FIFO_DEPTH(x) (((x) & GENMASK(30, 26)) >> 26)
#define SP_LP_FIFO_DEPTH(x) (((x) & GENMASK(25, 21)) >> 21)
@@ -424,48 +426,6 @@
#define DSI_NULL_FRAME_OVERHEAD 6
#define DSI_EOT_PKT_SIZE 4
-struct cdns_dsi_output {
- struct mipi_dsi_device *dev;
- struct drm_panel *panel;
- struct drm_bridge *bridge;
- union phy_configure_opts phy_opts;
-};
-
-enum cdns_dsi_input_id {
- CDNS_SDI_INPUT,
- CDNS_DPI_INPUT,
- CDNS_DSC_INPUT,
-};
-
-struct cdns_dsi_cfg {
- unsigned int hfp;
- unsigned int hsa;
- unsigned int hbp;
- unsigned int hact;
- unsigned int htotal;
-};
-
-struct cdns_dsi_input {
- enum cdns_dsi_input_id id;
- struct drm_bridge bridge;
-};
-
-struct cdns_dsi {
- struct mipi_dsi_host base;
- void __iomem *regs;
- struct cdns_dsi_input input;
- struct cdns_dsi_output output;
- unsigned int direct_cmd_fifo_depth;
- unsigned int rx_fifo_depth;
- struct completion direct_cmd_comp;
- struct clk *dsi_p_clk;
- struct reset_control *dsi_p_rst;
- struct clk *dsi_sys_clk;
- bool link_initialized;
- bool phy_initialized;
- struct phy *dphy;
-};
-
static inline struct cdns_dsi *input_to_dsi(struct cdns_dsi_input *input)
{
return container_of(input, struct cdns_dsi, input);
@@ -709,6 +669,10 @@ static void cdns_dsi_bridge_disable(struct drm_bridge *bridge)
val = readl(dsi->regs + MCTL_MAIN_EN) & ~IF_EN(input->id);
writel(val, dsi->regs + MCTL_MAIN_EN);
+
+ if (dsi->platform_ops && dsi->platform_ops->disable)
+ dsi->platform_ops->disable(dsi);
+
pm_runtime_put(dsi->base.dev);
}
@@ -804,6 +768,9 @@ static void cdns_dsi_bridge_enable(struct drm_bridge *bridge)
if (WARN_ON(pm_runtime_get_sync(dsi->base.dev) < 0))
return;
+ if (dsi->platform_ops && dsi->platform_ops->enable)
+ dsi->platform_ops->enable(dsi);
+
mode = &bridge->encoder->crtc->state->adjusted_mode;
nlanes = output->dev->lanes;
@@ -1244,6 +1211,8 @@ static int cdns_dsi_drm_probe(struct platform_device *pdev)
goto err_disable_pclk;
}
+ dsi->platform_ops = of_device_get_match_data(&pdev->dev);
+
val = readl(dsi->regs + IP_CONF);
dsi->direct_cmd_fifo_depth = 1 << (DIRCMD_FIFO_DEPTH(val) + 2);
dsi->rx_fifo_depth = RX_FIFO_DEPTH(val);
@@ -1279,14 +1248,27 @@ static int cdns_dsi_drm_probe(struct platform_device *pdev)
dsi->base.dev = &pdev->dev;
dsi->base.ops = &cdns_dsi_ops;
+ if (dsi->platform_ops && dsi->platform_ops->init) {
+ ret = dsi->platform_ops->init(dsi);
+ if (ret != 0) {
+ dev_err(&pdev->dev, "platform initialization failed: %d\n",
+ ret);
+ goto err_disable_runtime_pm;
+ }
+ }
+
ret = mipi_dsi_host_register(&dsi->base);
if (ret)
- goto err_disable_runtime_pm;
+ goto err_deinit_platform;
clk_disable_unprepare(dsi->dsi_p_clk);
return 0;
+err_deinit_platform:
+ if (dsi->platform_ops && dsi->platform_ops->deinit)
+ dsi->platform_ops->deinit(dsi);
+
err_disable_runtime_pm:
pm_runtime_disable(&pdev->dev);
@@ -1296,25 +1278,30 @@ err_disable_pclk:
return ret;
}
-static int cdns_dsi_drm_remove(struct platform_device *pdev)
+static void cdns_dsi_drm_remove(struct platform_device *pdev)
{
struct cdns_dsi *dsi = platform_get_drvdata(pdev);
mipi_dsi_host_unregister(&dsi->base);
- pm_runtime_disable(&pdev->dev);
- return 0;
+ if (dsi->platform_ops && dsi->platform_ops->deinit)
+ dsi->platform_ops->deinit(dsi);
+
+ pm_runtime_disable(&pdev->dev);
}
static const struct of_device_id cdns_dsi_of_match[] = {
{ .compatible = "cdns,dsi" },
+#ifdef CONFIG_DRM_CDNS_DSI_J721E
+ { .compatible = "ti,j721e-dsi", .data = &dsi_ti_j721e_ops, },
+#endif
{ },
};
MODULE_DEVICE_TABLE(of, cdns_dsi_of_match);
static struct platform_driver cdns_dsi_platform_driver = {
.probe = cdns_dsi_drm_probe,
- .remove = cdns_dsi_drm_remove,
+ .remove_new = cdns_dsi_drm_remove,
.driver = {
.name = "cdns-dsi",
.of_match_table = cdns_dsi_of_match,
diff --git a/drivers/gpu/drm/bridge/cadence/cdns-dsi-core.h b/drivers/gpu/drm/bridge/cadence/cdns-dsi-core.h
new file mode 100644
index 000000000000..ca7ea2da635c
--- /dev/null
+++ b/drivers/gpu/drm/bridge/cadence/cdns-dsi-core.h
@@ -0,0 +1,84 @@
+/* SPDX-License-Identifier: GPL-2.0 */
+/*
+ * Copyright: 2017 Cadence Design Systems, Inc.
+ *
+ * Author: Boris Brezillon <boris.brezillon@bootlin.com>
+ */
+
+#ifndef __CDNS_DSI_H__
+#define __CDNS_DSI_H__
+
+#include <drm/drm_bridge.h>
+#include <drm/drm_mipi_dsi.h>
+#include <drm/drm_panel.h>
+
+#include <linux/bits.h>
+#include <linux/completion.h>
+#include <linux/phy/phy.h>
+
+struct clk;
+struct reset_control;
+
+struct cdns_dsi_output {
+ struct mipi_dsi_device *dev;
+ struct drm_panel *panel;
+ struct drm_bridge *bridge;
+ union phy_configure_opts phy_opts;
+};
+
+enum cdns_dsi_input_id {
+ CDNS_SDI_INPUT,
+ CDNS_DPI_INPUT,
+ CDNS_DSC_INPUT,
+};
+
+struct cdns_dsi_cfg {
+ unsigned int hfp;
+ unsigned int hsa;
+ unsigned int hbp;
+ unsigned int hact;
+ unsigned int htotal;
+};
+
+struct cdns_dsi_input {
+ enum cdns_dsi_input_id id;
+ struct drm_bridge bridge;
+};
+
+struct cdns_dsi;
+
+/**
+ * struct cdns_dsi_platform_ops - CDNS DSI Platform operations
+ * @init: Called in the CDNS DSI probe
+ * @deinit: Called in the CDNS DSI remove
+ * @enable: Called at the beginning of CDNS DSI bridge enable
+ * @disable: Called at the end of CDNS DSI bridge disable
+ */
+struct cdns_dsi_platform_ops {
+ int (*init)(struct cdns_dsi *dsi);
+ void (*deinit)(struct cdns_dsi *dsi);
+ void (*enable)(struct cdns_dsi *dsi);
+ void (*disable)(struct cdns_dsi *dsi);
+};
+
+struct cdns_dsi {
+ struct mipi_dsi_host base;
+ void __iomem *regs;
+#ifdef CONFIG_DRM_CDNS_DSI_J721E
+ void __iomem *j721e_regs;
+#endif
+ const struct cdns_dsi_platform_ops *platform_ops;
+ struct cdns_dsi_input input;
+ struct cdns_dsi_output output;
+ unsigned int direct_cmd_fifo_depth;
+ unsigned int rx_fifo_depth;
+ struct completion direct_cmd_comp;
+ struct clk *dsi_p_clk;
+ struct reset_control *dsi_p_rst;
+ struct clk *dsi_sys_clk;
+ bool link_initialized;
+ bool phy_initialized;
+ struct phy *dphy;
+};
+
+#endif /* !__CDNS_DSI_H__ */
diff --git a/drivers/gpu/drm/bridge/cadence/cdns-dsi-j721e.c b/drivers/gpu/drm/bridge/cadence/cdns-dsi-j721e.c
new file mode 100644
index 000000000000..b654d4b3cb5c
--- /dev/null
+++ b/drivers/gpu/drm/bridge/cadence/cdns-dsi-j721e.c
@@ -0,0 +1,51 @@
+// SPDX-License-Identifier: GPL-2.0
+/*
+ * TI j721e Cadence DSI wrapper
+ *
+ * Copyright (C) 2022 Texas Instruments Incorporated - http://www.ti.com/
+ * Author: Rahul T R <r-ravikumar@ti.com>
+ */
+
+#include <linux/io.h>
+#include <linux/platform_device.h>
+
+#include "cdns-dsi-j721e.h"
+
+#define DSI_WRAP_REVISION 0x0
+#define DSI_WRAP_DPI_CONTROL 0x4
+#define DSI_WRAP_DSC_CONTROL 0x8
+#define DSI_WRAP_DPI_SECURE 0xc
+#define DSI_WRAP_DSI_0_ASF_STATUS 0x10
+
+#define DSI_WRAP_DPI_0_EN BIT(0)
+#define DSI_WRAP_DSI2_MUX_SEL BIT(4)
+
+static int cdns_dsi_j721e_init(struct cdns_dsi *dsi)
+{
+ struct platform_device *pdev = to_platform_device(dsi->base.dev);
+
+ dsi->j721e_regs = devm_platform_ioremap_resource(pdev, 1);
+ return PTR_ERR_OR_ZERO(dsi->j721e_regs);
+}
+
+static void cdns_dsi_j721e_enable(struct cdns_dsi *dsi)
+{
+ /*
+ * Enable DPI0 as its input. DSS0 DPI2 is connected
+ * to DSI DPI0. This is the only supported configuration on
+ * J721E.
+ */
+ writel(DSI_WRAP_DPI_0_EN, dsi->j721e_regs + DSI_WRAP_DPI_CONTROL);
+}
+
+static void cdns_dsi_j721e_disable(struct cdns_dsi *dsi)
+{
+ /* Put everything to defaults */
+ writel(0, dsi->j721e_regs + DSI_WRAP_DPI_CONTROL);
+}
+
+const struct cdns_dsi_platform_ops dsi_ti_j721e_ops = {
+ .init = cdns_dsi_j721e_init,
+ .enable = cdns_dsi_j721e_enable,
+ .disable = cdns_dsi_j721e_disable,
+};
diff --git a/drivers/gpu/drm/bridge/cadence/cdns-dsi-j721e.h b/drivers/gpu/drm/bridge/cadence/cdns-dsi-j721e.h
new file mode 100644
index 000000000000..275e5e8e7583
--- /dev/null
+++ b/drivers/gpu/drm/bridge/cadence/cdns-dsi-j721e.h
@@ -0,0 +1,16 @@
+/* SPDX-License-Identifier: GPL-2.0 */
+/*
+ * TI j721e Cadence DSI wrapper
+ *
+ * Copyright (C) 2022 Texas Instruments Incorporated - http://www.ti.com/
+ * Author: Rahul T R <r-ravikumar@ti.com>
+ */
+
+#ifndef __CDNS_DSI_J721E_H__
+#define __CDNS_DSI_J721E_H__
+
+#include "cdns-dsi-core.h"
+
+extern const struct cdns_dsi_platform_ops dsi_ti_j721e_ops;
+
+#endif /* !__CDNS_DSI_J721E_H__ */
diff --git a/drivers/gpu/drm/bridge/cadence/cdns-mhdp8546-core.c b/drivers/gpu/drm/bridge/cadence/cdns-mhdp8546-core.c
index 31442a922502..f6822dfa3805 100644
--- a/drivers/gpu/drm/bridge/cadence/cdns-mhdp8546-core.c
+++ b/drivers/gpu/drm/bridge/cadence/cdns-mhdp8546-core.c
@@ -43,7 +43,6 @@
#include <drm/drm_atomic_state_helper.h>
#include <drm/drm_bridge.h>
#include <drm/drm_connector.h>
-#include <drm/drm_crtc_helper.h>
#include <drm/drm_edid.h>
#include <drm/drm_modeset_helper_vtables.h>
#include <drm/drm_print.h>
diff --git a/drivers/gpu/drm/bridge/chipone-icn6211.c b/drivers/gpu/drm/bridge/chipone-icn6211.c
index bf920c3503aa..0e37840cd7a8 100644
--- a/drivers/gpu/drm/bridge/chipone-icn6211.c
+++ b/drivers/gpu/drm/bridge/chipone-icn6211.c
@@ -740,8 +740,7 @@ static int chipone_dsi_probe(struct mipi_dsi_device *dsi)
return ret;
}
-static int chipone_i2c_probe(struct i2c_client *client,
- const struct i2c_device_id *id)
+static int chipone_i2c_probe(struct i2c_client *client)
{
struct device *dev = &client->dev;
struct chipone *icn;
@@ -796,7 +795,7 @@ static struct i2c_device_id chipone_i2c_id[] = {
MODULE_DEVICE_TABLE(i2c, chipone_i2c_id);
static struct i2c_driver chipone_i2c_driver = {
- .probe = chipone_i2c_probe,
+ .probe_new = chipone_i2c_probe,
.id_table = chipone_i2c_id,
.driver = {
.name = "chipone-icn6211-i2c",
diff --git a/drivers/gpu/drm/bridge/chrontel-ch7033.c b/drivers/gpu/drm/bridge/chrontel-ch7033.c
index b94f39a86846..339b759e4c81 100644
--- a/drivers/gpu/drm/bridge/chrontel-ch7033.c
+++ b/drivers/gpu/drm/bridge/chrontel-ch7033.c
@@ -528,8 +528,7 @@ static const struct regmap_config ch7033_regmap_config = {
.max_register = 0x7f,
};
-static int ch7033_probe(struct i2c_client *client,
- const struct i2c_device_id *id)
+static int ch7033_probe(struct i2c_client *client)
{
struct device *dev = &client->dev;
struct ch7033_priv *priv;
@@ -604,7 +603,7 @@ static const struct i2c_device_id ch7033_ids[] = {
MODULE_DEVICE_TABLE(i2c, ch7033_ids);
static struct i2c_driver ch7033_driver = {
- .probe = ch7033_probe,
+ .probe_new = ch7033_probe,
.remove = ch7033_remove,
.driver = {
.name = "ch7033",
diff --git a/drivers/gpu/drm/bridge/display-connector.c b/drivers/gpu/drm/bridge/display-connector.c
index 9a12449ad7b8..56ae511367b1 100644
--- a/drivers/gpu/drm/bridge/display-connector.c
+++ b/drivers/gpu/drm/bridge/display-connector.c
@@ -271,12 +271,9 @@ static int display_connector_probe(struct platform_device *pdev)
type == DRM_MODE_CONNECTOR_DisplayPort) {
conn->hpd_gpio = devm_gpiod_get_optional(&pdev->dev, "hpd",
GPIOD_IN);
- if (IS_ERR(conn->hpd_gpio)) {
- if (PTR_ERR(conn->hpd_gpio) != -EPROBE_DEFER)
- dev_err(&pdev->dev,
- "Unable to retrieve HPD GPIO\n");
- return PTR_ERR(conn->hpd_gpio);
- }
+ if (IS_ERR(conn->hpd_gpio))
+ return dev_err_probe(&pdev->dev, PTR_ERR(conn->hpd_gpio),
+ "Unable to retrieve HPD GPIO\n");
conn->hpd_irq = gpiod_to_irq(conn->hpd_gpio);
} else {
@@ -382,7 +379,7 @@ static int display_connector_probe(struct platform_device *pdev)
return 0;
}
-static int display_connector_remove(struct platform_device *pdev)
+static void display_connector_remove(struct platform_device *pdev)
{
struct display_connector *conn = platform_get_drvdata(pdev);
@@ -396,8 +393,6 @@ static int display_connector_remove(struct platform_device *pdev)
if (!IS_ERR(conn->bridge.ddc))
i2c_put_adapter(conn->bridge.ddc);
-
- return 0;
}
static const struct of_device_id display_connector_match[] = {
@@ -426,7 +421,7 @@ MODULE_DEVICE_TABLE(of, display_connector_match);
static struct platform_driver display_connector_driver = {
.probe = display_connector_probe,
- .remove = display_connector_remove,
+ .remove_new = display_connector_remove,
.driver = {
.name = "display-connector",
.of_match_table = display_connector_match,
diff --git a/drivers/gpu/drm/bridge/fsl-ldb.c b/drivers/gpu/drm/bridge/fsl-ldb.c
index f9e0f8d99268..682623369498 100644
--- a/drivers/gpu/drm/bridge/fsl-ldb.c
+++ b/drivers/gpu/drm/bridge/fsl-ldb.c
@@ -18,7 +18,6 @@
#include <drm/drm_of.h>
#include <drm/drm_panel.h>
-#define LDB_CTRL 0x5c
#define LDB_CTRL_CH0_ENABLE BIT(0)
#define LDB_CTRL_CH0_DI_SELECT BIT(1)
#define LDB_CTRL_CH1_ENABLE BIT(2)
@@ -35,9 +34,13 @@
#define LDB_CTRL_ASYNC_FIFO_ENABLE BIT(24)
#define LDB_CTRL_ASYNC_FIFO_THRESHOLD_MASK GENMASK(27, 25)
-#define LVDS_CTRL 0x128
#define LVDS_CTRL_CH0_EN BIT(0)
#define LVDS_CTRL_CH1_EN BIT(1)
+/*
+ * LVDS_CTRL_LVDS_EN bit is poorly named in i.MX93 reference manual.
+ * Clear it to enable LVDS and set it to disable LVDS.
+ */
+#define LVDS_CTRL_LVDS_EN BIT(1)
#define LVDS_CTRL_VBG_EN BIT(2)
#define LVDS_CTRL_HS_EN BIT(3)
#define LVDS_CTRL_PRE_EMPH_EN BIT(4)
@@ -52,20 +55,58 @@
#define LVDS_CTRL_VBG_ADJ(n) (((n) & 0x7) << 17)
#define LVDS_CTRL_VBG_ADJ_MASK GENMASK(19, 17)
+enum fsl_ldb_devtype {
+ IMX8MP_LDB,
+ IMX93_LDB,
+};
+
+struct fsl_ldb_devdata {
+ u32 ldb_ctrl;
+ u32 lvds_ctrl;
+ bool lvds_en_bit;
+};
+
+static const struct fsl_ldb_devdata fsl_ldb_devdata[] = {
+ [IMX8MP_LDB] = {
+ .ldb_ctrl = 0x5c,
+ .lvds_ctrl = 0x128,
+ },
+ [IMX93_LDB] = {
+ .ldb_ctrl = 0x20,
+ .lvds_ctrl = 0x24,
+ .lvds_en_bit = true,
+ },
+};
+
struct fsl_ldb {
struct device *dev;
struct drm_bridge bridge;
struct drm_bridge *panel_bridge;
struct clk *clk;
struct regmap *regmap;
- bool lvds_dual_link;
+ const struct fsl_ldb_devdata *devdata;
+ bool ch0_enabled;
+ bool ch1_enabled;
};
+static bool fsl_ldb_is_dual(const struct fsl_ldb *fsl_ldb)
+{
+ return (fsl_ldb->ch0_enabled && fsl_ldb->ch1_enabled);
+}
+
static inline struct fsl_ldb *to_fsl_ldb(struct drm_bridge *bridge)
{
return container_of(bridge, struct fsl_ldb, bridge);
}
+static unsigned long fsl_ldb_link_frequency(struct fsl_ldb *fsl_ldb, int clock)
+{
+ if (fsl_ldb_is_dual(fsl_ldb))
+ return clock * 3500;
+ else
+ return clock * 7000;
+}
+
static int fsl_ldb_attach(struct drm_bridge *bridge,
enum drm_bridge_attach_flags flags)
{
@@ -85,6 +126,8 @@ static void fsl_ldb_atomic_enable(struct drm_bridge *bridge,
const struct drm_display_mode *mode;
struct drm_connector *connector;
struct drm_crtc *crtc;
+ unsigned long configured_link_freq;
+ unsigned long requested_link_freq;
bool lvds_format_24bpp;
bool lvds_format_jeida;
u32 reg;
@@ -128,51 +171,48 @@ static void fsl_ldb_atomic_enable(struct drm_bridge *bridge,
crtc_state = drm_atomic_get_new_crtc_state(state, crtc);
mode = &crtc_state->adjusted_mode;
- if (fsl_ldb->lvds_dual_link)
- clk_set_rate(fsl_ldb->clk, mode->clock * 3500);
- else
- clk_set_rate(fsl_ldb->clk, mode->clock * 7000);
+ requested_link_freq = fsl_ldb_link_frequency(fsl_ldb, mode->clock);
+ clk_set_rate(fsl_ldb->clk, requested_link_freq);
+
+ configured_link_freq = clk_get_rate(fsl_ldb->clk);
+ if (configured_link_freq != requested_link_freq)
+ dev_warn(fsl_ldb->dev, "Configured LDB clock (%lu Hz) does not match requested LVDS clock: %lu Hz\n",
+ configured_link_freq,
+ requested_link_freq);
+
clk_prepare_enable(fsl_ldb->clk);
/* Program LDB_CTRL */
- reg = LDB_CTRL_CH0_ENABLE;
+ reg = (fsl_ldb->ch0_enabled ? LDB_CTRL_CH0_ENABLE : 0) |
+ (fsl_ldb->ch1_enabled ? LDB_CTRL_CH1_ENABLE : 0) |
+ (fsl_ldb_is_dual(fsl_ldb) ? LDB_CTRL_SPLIT_MODE : 0);
- if (fsl_ldb->lvds_dual_link)
- reg |= LDB_CTRL_CH1_ENABLE | LDB_CTRL_SPLIT_MODE;
+ if (lvds_format_24bpp)
+ reg |= (fsl_ldb->ch0_enabled ? LDB_CTRL_CH0_DATA_WIDTH : 0) |
+ (fsl_ldb->ch1_enabled ? LDB_CTRL_CH1_DATA_WIDTH : 0);
- if (lvds_format_24bpp) {
- reg |= LDB_CTRL_CH0_DATA_WIDTH;
- if (fsl_ldb->lvds_dual_link)
- reg |= LDB_CTRL_CH1_DATA_WIDTH;
- }
+ if (lvds_format_jeida)
+ reg |= (fsl_ldb->ch0_enabled ? LDB_CTRL_CH0_BIT_MAPPING : 0) |
+ (fsl_ldb->ch1_enabled ? LDB_CTRL_CH1_BIT_MAPPING : 0);
- if (lvds_format_jeida) {
- reg |= LDB_CTRL_CH0_BIT_MAPPING;
- if (fsl_ldb->lvds_dual_link)
- reg |= LDB_CTRL_CH1_BIT_MAPPING;
- }
+ if (mode->flags & DRM_MODE_FLAG_PVSYNC)
+ reg |= (fsl_ldb->ch0_enabled ? LDB_CTRL_DI0_VSYNC_POLARITY : 0) |
+ (fsl_ldb->ch1_enabled ? LDB_CTRL_DI1_VSYNC_POLARITY : 0);
- if (mode->flags & DRM_MODE_FLAG_PVSYNC) {
- reg |= LDB_CTRL_DI0_VSYNC_POLARITY;
- if (fsl_ldb->lvds_dual_link)
- reg |= LDB_CTRL_DI1_VSYNC_POLARITY;
- }
-
- regmap_write(fsl_ldb->regmap, LDB_CTRL, reg);
+ regmap_write(fsl_ldb->regmap, fsl_ldb->devdata->ldb_ctrl, reg);
/* Program LVDS_CTRL */
reg = LVDS_CTRL_CC_ADJ(2) | LVDS_CTRL_PRE_EMPH_EN |
LVDS_CTRL_PRE_EMPH_ADJ(3) | LVDS_CTRL_VBG_EN;
- regmap_write(fsl_ldb->regmap, LVDS_CTRL, reg);
+ regmap_write(fsl_ldb->regmap, fsl_ldb->devdata->lvds_ctrl, reg);
/* Wait for VBG to stabilize. */
usleep_range(15, 20);
- reg |= LVDS_CTRL_CH0_EN;
- if (fsl_ldb->lvds_dual_link)
- reg |= LVDS_CTRL_CH1_EN;
+ reg |= (fsl_ldb->ch0_enabled ? LVDS_CTRL_CH0_EN : 0) |
+ (fsl_ldb->ch1_enabled ? LVDS_CTRL_CH1_EN : 0);
- regmap_write(fsl_ldb->regmap, LVDS_CTRL, reg);
+ regmap_write(fsl_ldb->regmap, fsl_ldb->devdata->lvds_ctrl, reg);
}
static void fsl_ldb_atomic_disable(struct drm_bridge *bridge,
@@ -180,9 +220,14 @@ static void fsl_ldb_atomic_disable(struct drm_bridge *bridge,
{
struct fsl_ldb *fsl_ldb = to_fsl_ldb(bridge);
- /* Stop both channels. */
- regmap_write(fsl_ldb->regmap, LVDS_CTRL, 0);
- regmap_write(fsl_ldb->regmap, LDB_CTRL, 0);
+ /* Stop channel(s). */
+ if (fsl_ldb->devdata->lvds_en_bit)
+ /* Set LVDS_CTRL_LVDS_EN bit to disable. */
+ regmap_write(fsl_ldb->regmap, fsl_ldb->devdata->lvds_ctrl,
+ LVDS_CTRL_LVDS_EN);
+ else
+ regmap_write(fsl_ldb->regmap, fsl_ldb->devdata->lvds_ctrl, 0);
+ regmap_write(fsl_ldb->regmap, fsl_ldb->devdata->ldb_ctrl, 0);
clk_disable_unprepare(fsl_ldb->clk);
}
@@ -218,7 +263,7 @@ fsl_ldb_mode_valid(struct drm_bridge *bridge,
{
struct fsl_ldb *fsl_ldb = to_fsl_ldb(bridge);
- if (mode->clock > (fsl_ldb->lvds_dual_link ? 160000 : 80000))
+ if (mode->clock > (fsl_ldb_is_dual(fsl_ldb) ? 160000 : 80000))
return MODE_CLOCK_HIGH;
return MODE_OK;
@@ -239,7 +284,7 @@ static int fsl_ldb_probe(struct platform_device *pdev)
{
struct device *dev = &pdev->dev;
struct device_node *panel_node;
- struct device_node *port1, *port2;
+ struct device_node *remote1, *remote2;
struct drm_panel *panel;
struct fsl_ldb *fsl_ldb;
int dual_link;
@@ -248,6 +293,10 @@ static int fsl_ldb_probe(struct platform_device *pdev)
if (!fsl_ldb)
return -ENOMEM;
+ fsl_ldb->devdata = of_device_get_match_data(dev);
+ if (!fsl_ldb->devdata)
+ return -EINVAL;
+
fsl_ldb->dev = &pdev->dev;
fsl_ldb->bridge.funcs = &funcs;
fsl_ldb->bridge.of_node = dev->of_node;
@@ -260,10 +309,23 @@ static int fsl_ldb_probe(struct platform_device *pdev)
if (IS_ERR(fsl_ldb->regmap))
return PTR_ERR(fsl_ldb->regmap);
- /* Locate the panel DT node. */
- panel_node = of_graph_get_remote_node(dev->of_node, 1, 0);
- if (!panel_node)
- return -ENXIO;
+ /* Locate the remote ports and the panel node */
+ remote1 = of_graph_get_remote_node(dev->of_node, 1, 0);
+ remote2 = of_graph_get_remote_node(dev->of_node, 2, 0);
+ fsl_ldb->ch0_enabled = (remote1 != NULL);
+ fsl_ldb->ch1_enabled = (remote2 != NULL);
+ panel_node = of_node_get(remote1 ? remote1 : remote2);
+ of_node_put(remote1);
+ of_node_put(remote2);
+
+ if (!fsl_ldb->ch0_enabled && !fsl_ldb->ch1_enabled) {
+ of_node_put(panel_node);
+ return dev_err_probe(dev, -ENXIO, "No panel node found");
+ }
+
+ dev_dbg(dev, "Using %s\n",
+ fsl_ldb_is_dual(fsl_ldb) ? "dual-link mode" :
+ fsl_ldb->ch0_enabled ? "channel 0" : "channel 1");
panel = of_drm_find_panel(panel_node);
of_node_put(panel_node);
@@ -274,20 +336,26 @@ static int fsl_ldb_probe(struct platform_device *pdev)
if (IS_ERR(fsl_ldb->panel_bridge))
return PTR_ERR(fsl_ldb->panel_bridge);
- /* Determine whether this is dual-link configuration */
- port1 = of_graph_get_port_by_id(dev->of_node, 1);
- port2 = of_graph_get_port_by_id(dev->of_node, 2);
- dual_link = drm_of_lvds_get_dual_link_pixel_order(port1, port2);
- of_node_put(port1);
- of_node_put(port2);
- if (dual_link == DRM_LVDS_DUAL_LINK_EVEN_ODD_PIXELS) {
- dev_err(dev, "LVDS channel pixel swap not supported.\n");
- return -EINVAL;
- }
+ if (fsl_ldb_is_dual(fsl_ldb)) {
+ struct device_node *port1, *port2;
+
+ port1 = of_graph_get_port_by_id(dev->of_node, 1);
+ port2 = of_graph_get_port_by_id(dev->of_node, 2);
+ dual_link = drm_of_lvds_get_dual_link_pixel_order(port1, port2);
+ of_node_put(port1);
+ of_node_put(port2);
- if (dual_link == DRM_LVDS_DUAL_LINK_ODD_EVEN_PIXELS)
- fsl_ldb->lvds_dual_link = true;
+ if (dual_link < 0)
+ return dev_err_probe(dev, dual_link,
+ "Error getting dual link configuration\n");
+
+ /* Only DRM_LVDS_DUAL_LINK_ODD_EVEN_PIXELS is supported */
+ if (dual_link == DRM_LVDS_DUAL_LINK_EVEN_ODD_PIXELS) {
+ dev_err(dev, "LVDS channel pixel swap not supported.\n");
+ return -EINVAL;
+ }
+ }
platform_set_drvdata(pdev, fsl_ldb);
@@ -296,24 +364,25 @@ static int fsl_ldb_probe(struct platform_device *pdev)
return 0;
}
-static int fsl_ldb_remove(struct platform_device *pdev)
+static void fsl_ldb_remove(struct platform_device *pdev)
{
struct fsl_ldb *fsl_ldb = platform_get_drvdata(pdev);
drm_bridge_remove(&fsl_ldb->bridge);
-
- return 0;
}
static const struct of_device_id fsl_ldb_match[] = {
- { .compatible = "fsl,imx8mp-ldb", },
+ { .compatible = "fsl,imx8mp-ldb",
+ .data = &fsl_ldb_devdata[IMX8MP_LDB], },
+ { .compatible = "fsl,imx93-ldb",
+ .data = &fsl_ldb_devdata[IMX93_LDB], },
{ /* sentinel */ },
};
MODULE_DEVICE_TABLE(of, fsl_ldb_match);
static struct platform_driver fsl_ldb_driver = {
.probe = fsl_ldb_probe,
- .remove = fsl_ldb_remove,
+ .remove_new = fsl_ldb_remove,
.driver = {
.name = "fsl-ldb",
.of_match_table = fsl_ldb_match,
diff --git a/drivers/gpu/drm/bridge/imx/imx8qm-ldb-drv.c b/drivers/gpu/drm/bridge/imx/imx8qm-ldb-drv.c
index 178af8d2d80b..386032a02599 100644
--- a/drivers/gpu/drm/bridge/imx/imx8qm-ldb-drv.c
+++ b/drivers/gpu/drm/bridge/imx/imx8qm-ldb-drv.c
@@ -532,7 +532,7 @@ static int imx8qm_ldb_probe(struct platform_device *pdev)
return ret;
}
-static int imx8qm_ldb_remove(struct platform_device *pdev)
+static void imx8qm_ldb_remove(struct platform_device *pdev)
{
struct imx8qm_ldb *imx8qm_ldb = platform_get_drvdata(pdev);
struct ldb *ldb = &imx8qm_ldb->base;
@@ -540,8 +540,6 @@ static int imx8qm_ldb_remove(struct platform_device *pdev)
ldb_remove_bridge_helper(ldb);
pm_runtime_disable(&pdev->dev);
-
- return 0;
}
static int __maybe_unused imx8qm_ldb_runtime_suspend(struct device *dev)
@@ -573,7 +571,7 @@ MODULE_DEVICE_TABLE(of, imx8qm_ldb_dt_ids);
static struct platform_driver imx8qm_ldb_driver = {
.probe = imx8qm_ldb_probe,
- .remove = imx8qm_ldb_remove,
+ .remove_new = imx8qm_ldb_remove,
.driver = {
.pm = &imx8qm_ldb_pm_ops,
.name = DRIVER_NAME,
diff --git a/drivers/gpu/drm/bridge/imx/imx8qxp-ldb-drv.c b/drivers/gpu/drm/bridge/imx/imx8qxp-ldb-drv.c
index 63948d5d20fd..c806576b1e22 100644
--- a/drivers/gpu/drm/bridge/imx/imx8qxp-ldb-drv.c
+++ b/drivers/gpu/drm/bridge/imx/imx8qxp-ldb-drv.c
@@ -667,7 +667,7 @@ static int imx8qxp_ldb_probe(struct platform_device *pdev)
return ret;
}
-static int imx8qxp_ldb_remove(struct platform_device *pdev)
+static void imx8qxp_ldb_remove(struct platform_device *pdev)
{
struct imx8qxp_ldb *imx8qxp_ldb = platform_get_drvdata(pdev);
struct ldb *ldb = &imx8qxp_ldb->base;
@@ -675,8 +675,6 @@ static int imx8qxp_ldb_remove(struct platform_device *pdev)
ldb_remove_bridge_helper(ldb);
pm_runtime_disable(&pdev->dev);
-
- return 0;
}
static int __maybe_unused imx8qxp_ldb_runtime_suspend(struct device *dev)
@@ -708,7 +706,7 @@ MODULE_DEVICE_TABLE(of, imx8qxp_ldb_dt_ids);
static struct platform_driver imx8qxp_ldb_driver = {
.probe = imx8qxp_ldb_probe,
- .remove = imx8qxp_ldb_remove,
+ .remove_new = imx8qxp_ldb_remove,
.driver = {
.pm = &imx8qxp_ldb_pm_ops,
.name = DRIVER_NAME,
diff --git a/drivers/gpu/drm/bridge/imx/imx8qxp-pixel-combiner.c b/drivers/gpu/drm/bridge/imx/imx8qxp-pixel-combiner.c
index 503bd8db8afe..d0868a6ac6c9 100644
--- a/drivers/gpu/drm/bridge/imx/imx8qxp-pixel-combiner.c
+++ b/drivers/gpu/drm/bridge/imx/imx8qxp-pixel-combiner.c
@@ -357,7 +357,7 @@ free_child:
return ret;
}
-static int imx8qxp_pc_bridge_remove(struct platform_device *pdev)
+static void imx8qxp_pc_bridge_remove(struct platform_device *pdev)
{
struct imx8qxp_pc *pc = platform_get_drvdata(pdev);
struct imx8qxp_pc_channel *ch;
@@ -374,8 +374,6 @@ static int imx8qxp_pc_bridge_remove(struct platform_device *pdev)
}
pm_runtime_disable(&pdev->dev);
-
- return 0;
}
static int __maybe_unused imx8qxp_pc_runtime_suspend(struct device *dev)
@@ -435,7 +433,7 @@ MODULE_DEVICE_TABLE(of, imx8qxp_pc_dt_ids);
static struct platform_driver imx8qxp_pc_bridge_driver = {
.probe = imx8qxp_pc_bridge_probe,
- .remove = imx8qxp_pc_bridge_remove,
+ .remove_new = imx8qxp_pc_bridge_remove,
.driver = {
.pm = &imx8qxp_pc_pm_ops,
.name = DRIVER_NAME,
diff --git a/drivers/gpu/drm/bridge/imx/imx8qxp-pixel-link.c b/drivers/gpu/drm/bridge/imx/imx8qxp-pixel-link.c
index 9e5f2b4dc2e5..ed8b7a4e0e11 100644
--- a/drivers/gpu/drm/bridge/imx/imx8qxp-pixel-link.c
+++ b/drivers/gpu/drm/bridge/imx/imx8qxp-pixel-link.c
@@ -313,7 +313,7 @@ imx8qxp_pixel_link_find_next_bridge(struct imx8qxp_pixel_link *pl)
}
/* specially select the next bridge with companion PXL2DPI */
- if (of_find_property(remote, "fsl,companion-pxl2dpi", NULL))
+ if (of_property_present(remote, "fsl,companion-pxl2dpi"))
bridge_sel = ep_cnt;
ep_cnt++;
@@ -398,13 +398,11 @@ static int imx8qxp_pixel_link_bridge_probe(struct platform_device *pdev)
return ret;
}
-static int imx8qxp_pixel_link_bridge_remove(struct platform_device *pdev)
+static void imx8qxp_pixel_link_bridge_remove(struct platform_device *pdev)
{
struct imx8qxp_pixel_link *pl = platform_get_drvdata(pdev);
drm_bridge_remove(&pl->bridge);
-
- return 0;
}
static const struct of_device_id imx8qxp_pixel_link_dt_ids[] = {
@@ -416,7 +414,7 @@ MODULE_DEVICE_TABLE(of, imx8qxp_pixel_link_dt_ids);
static struct platform_driver imx8qxp_pixel_link_bridge_driver = {
.probe = imx8qxp_pixel_link_bridge_probe,
- .remove = imx8qxp_pixel_link_bridge_remove,
+ .remove_new = imx8qxp_pixel_link_bridge_remove,
.driver = {
.of_match_table = imx8qxp_pixel_link_dt_ids,
.name = DRIVER_NAME,
diff --git a/drivers/gpu/drm/bridge/imx/imx8qxp-pxl2dpi.c b/drivers/gpu/drm/bridge/imx/imx8qxp-pxl2dpi.c
index d0fec82f0cf8..4a886cb808ca 100644
--- a/drivers/gpu/drm/bridge/imx/imx8qxp-pxl2dpi.c
+++ b/drivers/gpu/drm/bridge/imx/imx8qxp-pxl2dpi.c
@@ -455,15 +455,13 @@ static int imx8qxp_pxl2dpi_bridge_probe(struct platform_device *pdev)
return ret;
}
-static int imx8qxp_pxl2dpi_bridge_remove(struct platform_device *pdev)
+static void imx8qxp_pxl2dpi_bridge_remove(struct platform_device *pdev)
{
struct imx8qxp_pxl2dpi *p2d = platform_get_drvdata(pdev);
drm_bridge_remove(&p2d->bridge);
pm_runtime_disable(&pdev->dev);
-
- return 0;
}
static const struct of_device_id imx8qxp_pxl2dpi_dt_ids[] = {
@@ -474,7 +472,7 @@ MODULE_DEVICE_TABLE(of, imx8qxp_pxl2dpi_dt_ids);
static struct platform_driver imx8qxp_pxl2dpi_bridge_driver = {
.probe = imx8qxp_pxl2dpi_bridge_probe,
- .remove = imx8qxp_pxl2dpi_bridge_remove,
+ .remove_new = imx8qxp_pxl2dpi_bridge_remove,
.driver = {
.of_match_table = imx8qxp_pxl2dpi_dt_ids,
.name = DRIVER_NAME,
diff --git a/drivers/gpu/drm/bridge/ite-it6505.c b/drivers/gpu/drm/bridge/ite-it6505.c
index dfe4351c9bdd..abaf6e23775e 100644
--- a/drivers/gpu/drm/bridge/ite-it6505.c
+++ b/drivers/gpu/drm/bridge/ite-it6505.c
@@ -26,7 +26,6 @@
#include <drm/drm_atomic_helper.h>
#include <drm/drm_bridge.h>
#include <drm/drm_crtc.h>
-#include <drm/drm_crtc_helper.h>
#include <drm/drm_edid.h>
#include <drm/drm_print.h>
#include <drm/drm_probe_helper.h>
@@ -259,12 +258,12 @@
#define REG_AUD_INFOFRAM_SUM 0xFB
/* the following six registers are in bank1 */
-#define REG_DRV_0_DB_800_MV 0x7E
-#define REG_PRE_0_DB_800_MV 0x7F
-#define REG_PRE_3P5_DB_800_MV 0x81
-#define REG_SSC_CTRL0 0x88
-#define REG_SSC_CTRL1 0x89
-#define REG_SSC_CTRL2 0x8A
+#define REG_DRV_0_DB_800_MV 0x17E
+#define REG_PRE_0_DB_800_MV 0x17F
+#define REG_PRE_3P5_DB_800_MV 0x181
+#define REG_SSC_CTRL0 0x188
+#define REG_SSC_CTRL1 0x189
+#define REG_SSC_CTRL2 0x18A
#define RBR DP_LINK_BW_1_62
#define HBR DP_LINK_BW_2_7
@@ -421,6 +420,7 @@ struct it6505 {
struct notifier_block event_nb;
struct extcon_dev *extcon;
struct work_struct extcon_wq;
+ int extcon_state;
enum drm_connector_status connector_status;
enum link_train_status link_state;
struct work_struct link_works;
@@ -436,10 +436,12 @@ struct it6505 {
bool powered;
bool hpd_state;
u32 afe_setting;
+ u32 max_dpi_pixel_clock;
+ u32 max_lane_count;
enum hdcp_state hdcp_status;
struct delayed_work hdcp_work;
struct work_struct hdcp_wait_ksv_list;
- struct completion wait_edid_complete;
+ struct completion extcon_completion;
u8 auto_train_retry;
bool hdcp_desired;
bool is_repeater;
@@ -455,6 +457,8 @@ struct it6505 {
/* it6505 driver hold option */
bool enable_drv_hold;
+
+ struct edid *cached_edid;
};
struct it6505_step_train_para {
@@ -485,7 +489,7 @@ static const struct it6505_audio_sample_rate_map audio_sample_rate_map[] = {
};
static const struct regmap_range it6505_bridge_volatile_ranges[] = {
- { .range_min = 0, .range_max = 0xFF },
+ { .range_min = 0, .range_max = 0x1FF },
};
static const struct regmap_access_table it6505_bridge_volatile_table = {
@@ -493,11 +497,27 @@ static const struct regmap_access_table it6505_bridge_volatile_table = {
.n_yes_ranges = ARRAY_SIZE(it6505_bridge_volatile_ranges),
};
+static const struct regmap_range_cfg it6505_regmap_banks[] = {
+ {
+ .name = "it6505",
+ .range_min = 0x00,
+ .range_max = 0x1FF,
+ .selector_reg = REG_BANK_SEL,
+ .selector_mask = 0x1,
+ .selector_shift = 0,
+ .window_start = 0x00,
+ .window_len = 0x100,
+ },
+};
+
static const struct regmap_config it6505_regmap_config = {
.reg_bits = 8,
.val_bits = 8,
.volatile_table = &it6505_bridge_volatile_table,
.cache_type = REGCACHE_NONE,
+ .ranges = it6505_regmap_banks,
+ .num_ranges = ARRAY_SIZE(it6505_regmap_banks),
+ .max_register = 0x1FF,
};
static int it6505_read(struct it6505 *it6505, unsigned int reg_addr)
@@ -724,28 +744,6 @@ static void it6505_calc_video_info(struct it6505 *it6505)
DRM_MODE_ARG(&it6505->video_info));
}
-static int it6505_drm_dp_link_probe(struct drm_dp_aux *aux,
- struct it6505_drm_dp_link *link)
-{
- u8 values[3];
- int err;
-
- memset(link, 0, sizeof(*link));
-
- err = drm_dp_dpcd_read(aux, DP_DPCD_REV, values, sizeof(values));
- if (err < 0)
- return err;
-
- link->revision = values[0];
- link->rate = drm_dp_bw_code_to_link_rate(values[1]);
- link->num_lanes = values[2] & DP_MAX_LANE_COUNT_MASK;
-
- if (values[2] & DP_ENHANCED_FRAME_CAP)
- link->capabilities = DP_ENHANCED_FRAME_CAP;
-
- return 0;
-}
-
static int it6505_drm_dp_link_set_power(struct drm_dp_aux *aux,
struct it6505_drm_dp_link *link,
u8 mode)
@@ -1285,7 +1283,6 @@ static void it6505_init(struct it6505 *it6505)
it6505_write(it6505, REG_TIME_STMP_CTRL,
EN_SSC_GAT | EN_ENHANCE_VID_STMP | EN_ENHANCE_AUD_STMP);
it6505_write(it6505, REG_INFOFRAME_CTRL, 0x00);
- it6505_write(it6505, REG_BANK_SEL, 0x01);
it6505_write(it6505, REG_DRV_0_DB_800_MV,
afe_setting_table[it6505->afe_setting][0]);
it6505_write(it6505, REG_PRE_0_DB_800_MV,
@@ -1295,7 +1292,6 @@ static void it6505_init(struct it6505 *it6505)
it6505_write(it6505, REG_SSC_CTRL0, 0x9E);
it6505_write(it6505, REG_SSC_CTRL1, 0x1C);
it6505_write(it6505, REG_SSC_CTRL2, 0x42);
- it6505_write(it6505, REG_BANK_SEL, 0x00);
}
static void it6505_video_disable(struct it6505 *it6505)
@@ -1455,11 +1451,19 @@ static void it6505_parse_link_capabilities(struct it6505 *it6505)
int bcaps;
if (it6505->dpcd[0] == 0) {
- it6505_aux_on(it6505);
- it6505_get_dpcd(it6505, DP_DPCD_REV, it6505->dpcd,
- ARRAY_SIZE(it6505->dpcd));
+ dev_err(dev, "DPCD is not initialized");
+ return;
}
+ memset(link, 0, sizeof(*link));
+
+ link->revision = it6505->dpcd[0];
+ link->rate = drm_dp_bw_code_to_link_rate(it6505->dpcd[1]);
+ link->num_lanes = it6505->dpcd[2] & DP_MAX_LANE_COUNT_MASK;
+
+ if (it6505->dpcd[2] & DP_ENHANCED_FRAME_CAP)
+ link->capabilities = DP_ENHANCED_FRAME_CAP;
+
DRM_DEV_DEBUG_DRIVER(dev, "DPCD Rev.: %d.%d",
link->revision >> 4, link->revision & 0x0F);
@@ -1475,7 +1479,8 @@ static void it6505_parse_link_capabilities(struct it6505 *it6505)
it6505->lane_count = link->num_lanes;
DRM_DEV_DEBUG_DRIVER(dev, "Sink support %d lanes training",
it6505->lane_count);
- it6505->lane_count = min_t(int, it6505->lane_count, MAX_LANE_COUNT);
+ it6505->lane_count = min_t(int, it6505->lane_count,
+ it6505->max_lane_count);
it6505->branch_device = drm_dp_is_branch(it6505->dpcd);
DRM_DEV_DEBUG_DRIVER(dev, "Sink %sbranch device",
@@ -1515,11 +1520,9 @@ static void it6505_setup_ssc(struct it6505 *it6505)
it6505_set_bits(it6505, REG_TRAIN_CTRL0, SPREAD_AMP_5,
it6505->enable_ssc ? SPREAD_AMP_5 : 0x00);
if (it6505->enable_ssc) {
- it6505_write(it6505, REG_BANK_SEL, 0x01);
it6505_write(it6505, REG_SSC_CTRL0, 0x9E);
it6505_write(it6505, REG_SSC_CTRL1, 0x1C);
it6505_write(it6505, REG_SSC_CTRL2, 0x42);
- it6505_write(it6505, REG_BANK_SEL, 0x00);
it6505_write(it6505, REG_SP_CTRL0, 0x07);
it6505_write(it6505, REG_IP_CTRL1, 0x29);
it6505_write(it6505, REG_IP_CTRL2, 0x03);
@@ -2256,6 +2259,12 @@ static void it6505_plugged_status_to_codec(struct it6505 *it6505)
status == connector_status_connected);
}
+static void it6505_remove_edid(struct it6505 *it6505)
+{
+ kfree(it6505->cached_edid);
+ it6505->cached_edid = NULL;
+}
+
static int it6505_process_hpd_irq(struct it6505 *it6505)
{
struct device *dev = &it6505->client->dev;
@@ -2282,6 +2291,7 @@ static int it6505_process_hpd_irq(struct it6505 *it6505)
it6505_reset_logic(it6505);
it6505_int_mask_enable(it6505);
it6505_init(it6505);
+ it6505_remove_edid(it6505);
return 0;
}
@@ -2322,19 +2332,32 @@ static int it6505_process_hpd_irq(struct it6505 *it6505)
static void it6505_irq_hpd(struct it6505 *it6505)
{
struct device *dev = &it6505->client->dev;
+ int dp_sink_count;
it6505->hpd_state = it6505_get_sink_hpd_status(it6505);
DRM_DEV_DEBUG_DRIVER(dev, "hpd change interrupt, change to %s",
it6505->hpd_state ? "high" : "low");
- if (it6505->bridge.dev)
- drm_helper_hpd_irq_event(it6505->bridge.dev);
- DRM_DEV_DEBUG_DRIVER(dev, "it6505->sink_count: %d",
- it6505->sink_count);
-
if (it6505->hpd_state) {
- wait_for_completion_timeout(&it6505->wait_edid_complete,
- msecs_to_jiffies(6000));
+ wait_for_completion_timeout(&it6505->extcon_completion,
+ msecs_to_jiffies(1000));
+ it6505_aux_on(it6505);
+ if (it6505->dpcd[0] == 0) {
+ it6505_get_dpcd(it6505, DP_DPCD_REV, it6505->dpcd,
+ ARRAY_SIZE(it6505->dpcd));
+ it6505_variable_config(it6505);
+ it6505_parse_link_capabilities(it6505);
+ }
+ it6505->auto_train_retry = AUTO_TRAIN_RETRY;
+
+ it6505_drm_dp_link_set_power(&it6505->aux, &it6505->link,
+ DP_SET_POWER_D0);
+ dp_sink_count = it6505_dpcd_read(it6505, DP_SINK_COUNT);
+ it6505->sink_count = DP_GET_SINK_COUNT(dp_sink_count);
+
+ DRM_DEV_DEBUG_DRIVER(dev, "it6505->sink_count: %d",
+ it6505->sink_count);
+
it6505_lane_termination_on(it6505);
it6505_lane_power_on(it6505);
@@ -2352,6 +2375,7 @@ static void it6505_irq_hpd(struct it6505 *it6505)
it6505_video_reset(it6505);
} else {
memset(it6505->dpcd, 0, sizeof(it6505->dpcd));
+ it6505_remove_edid(it6505);
if (it6505->hdcp_desired)
it6505_stop_hdcp(it6505);
@@ -2362,6 +2386,9 @@ static void it6505_irq_hpd(struct it6505 *it6505)
it6505_lane_off(it6505);
it6505_link_reset_step_train(it6505);
}
+
+ if (it6505->bridge.dev)
+ drm_helper_hpd_irq_event(it6505->bridge.dev);
}
static void it6505_irq_hpd_irq(struct it6505 *it6505)
@@ -2490,11 +2517,8 @@ static irqreturn_t it6505_int_threaded_handler(int unused, void *data)
};
int int_status[3], i;
- msleep(100);
- mutex_lock(&it6505->extcon_lock);
-
- if (it6505->enable_drv_hold || !it6505->powered)
- goto unlock;
+ if (it6505->enable_drv_hold || pm_runtime_get_if_in_use(dev) <= 0)
+ return IRQ_HANDLED;
int_status[0] = it6505_read(it6505, INT_STATUS_01);
int_status[1] = it6505_read(it6505, INT_STATUS_02);
@@ -2512,16 +2536,14 @@ static irqreturn_t it6505_int_threaded_handler(int unused, void *data)
if (it6505_test_bit(irq_vec[0].bit, (unsigned int *)int_status))
irq_vec[0].handler(it6505);
- if (!it6505->hpd_state)
- goto unlock;
-
- for (i = 1; i < ARRAY_SIZE(irq_vec); i++) {
- if (it6505_test_bit(irq_vec[i].bit, (unsigned int *)int_status))
- irq_vec[i].handler(it6505);
+ if (it6505->hpd_state) {
+ for (i = 1; i < ARRAY_SIZE(irq_vec); i++) {
+ if (it6505_test_bit(irq_vec[i].bit, (unsigned int *)int_status))
+ irq_vec[i].handler(it6505);
+ }
}
-unlock:
- mutex_unlock(&it6505->extcon_lock);
+ pm_runtime_put_sync(dev);
return IRQ_HANDLED;
}
@@ -2624,26 +2646,14 @@ static enum drm_connector_status it6505_detect(struct it6505 *it6505)
goto unlock;
if (it6505->enable_drv_hold) {
- status = it6505_get_sink_hpd_status(it6505) ?
- connector_status_connected :
- connector_status_disconnected;
+ status = it6505->hpd_state ? connector_status_connected :
+ connector_status_disconnected;
goto unlock;
}
- if (it6505_get_sink_hpd_status(it6505)) {
- it6505_aux_on(it6505);
- it6505_drm_dp_link_probe(&it6505->aux, &it6505->link);
+ if (it6505->hpd_state) {
it6505_drm_dp_link_set_power(&it6505->aux, &it6505->link,
DP_SET_POWER_D0);
- it6505->auto_train_retry = AUTO_TRAIN_RETRY;
-
- if (it6505->dpcd[0] == 0) {
- it6505_get_dpcd(it6505, DP_DPCD_REV, it6505->dpcd,
- ARRAY_SIZE(it6505->dpcd));
- it6505_variable_config(it6505);
- it6505_parse_link_capabilities(it6505);
- }
-
dp_sink_count = it6505_dpcd_read(it6505, DP_SINK_COUNT);
it6505->sink_count = DP_GET_SINK_COUNT(dp_sink_count);
DRM_DEV_DEBUG_DRIVER(dev, "it6505->sink_count:%d branch:%d",
@@ -2685,31 +2695,44 @@ static void it6505_extcon_work(struct work_struct *work)
{
struct it6505 *it6505 = container_of(work, struct it6505, extcon_wq);
struct device *dev = &it6505->client->dev;
- int state = extcon_get_state(it6505->extcon, EXTCON_DISP_DP);
- unsigned int pwroffretry = 0;
+ int state, ret;
if (it6505->enable_drv_hold)
return;
mutex_lock(&it6505->extcon_lock);
+ state = extcon_get_state(it6505->extcon, EXTCON_DISP_DP);
DRM_DEV_DEBUG_DRIVER(dev, "EXTCON_DISP_DP = 0x%02x", state);
- if (state > 0) {
+
+ if (state == it6505->extcon_state || unlikely(state < 0))
+ goto unlock;
+ it6505->extcon_state = state;
+ if (state) {
DRM_DEV_DEBUG_DRIVER(dev, "start to power on");
msleep(100);
- it6505_poweron(it6505);
+ ret = pm_runtime_get_sync(dev);
+
+ /*
+ * On system resume, extcon_work can be triggered before
+ * pm_runtime_force_resume re-enables runtime power management.
+ * Handling the error here to make sure the bridge is powered on.
+ */
+ if (ret < 0)
+ it6505_poweron(it6505);
+
+ complete_all(&it6505->extcon_completion);
} else {
DRM_DEV_DEBUG_DRIVER(dev, "start to power off");
- while (it6505_poweroff(it6505) && pwroffretry++ < 5) {
- DRM_DEV_DEBUG_DRIVER(dev, "power off fail %d times",
- pwroffretry);
- }
+ pm_runtime_put_sync(dev);
+ reinit_completion(&it6505->extcon_completion);
drm_helper_hpd_irq_event(it6505->bridge.dev);
memset(it6505->dpcd, 0, sizeof(it6505->dpcd));
DRM_DEV_DEBUG_DRIVER(dev, "power off it6505 success!");
}
+unlock:
mutex_unlock(&it6505->extcon_lock);
}
@@ -2860,10 +2883,7 @@ static int it6505_bridge_attach(struct drm_bridge *bridge,
}
/* Register aux channel */
- it6505->aux.name = "DP-AUX";
- it6505->aux.dev = dev;
it6505->aux.drm_dev = bridge->dev;
- it6505->aux.transfer = it6505_aux_transfer;
ret = drm_dp_aux_register(&it6505->aux);
@@ -2901,7 +2921,7 @@ it6505_bridge_mode_valid(struct drm_bridge *bridge,
if (mode->flags & DRM_MODE_FLAG_INTERLACE)
return MODE_NO_INTERLACE;
- if (mode->clock > DPI_PIXEL_CLK_MAX)
+ if (mode->clock > it6505->max_dpi_pixel_clock)
return MODE_CLOCK_HIGH;
it6505->video_info.clock = mode->clock;
@@ -2980,6 +3000,28 @@ static void it6505_bridge_atomic_disable(struct drm_bridge *bridge,
}
}
+static void it6505_bridge_atomic_pre_enable(struct drm_bridge *bridge,
+ struct drm_bridge_state *old_state)
+{
+ struct it6505 *it6505 = bridge_to_it6505(bridge);
+ struct device *dev = &it6505->client->dev;
+
+ DRM_DEV_DEBUG_DRIVER(dev, "start");
+
+ pm_runtime_get_sync(dev);
+}
+
+static void it6505_bridge_atomic_post_disable(struct drm_bridge *bridge,
+ struct drm_bridge_state *old_state)
+{
+ struct it6505 *it6505 = bridge_to_it6505(bridge);
+ struct device *dev = &it6505->client->dev;
+
+ DRM_DEV_DEBUG_DRIVER(dev, "start");
+
+ pm_runtime_put_sync(dev);
+}
+
static enum drm_connector_status
it6505_bridge_detect(struct drm_bridge *bridge)
{
@@ -2993,16 +3035,18 @@ static struct edid *it6505_bridge_get_edid(struct drm_bridge *bridge,
{
struct it6505 *it6505 = bridge_to_it6505(bridge);
struct device *dev = &it6505->client->dev;
- struct edid *edid;
- edid = drm_do_get_edid(connector, it6505_get_edid_block, it6505);
+ if (!it6505->cached_edid) {
+ it6505->cached_edid = drm_do_get_edid(connector, it6505_get_edid_block,
+ it6505);
- if (!edid) {
- DRM_DEV_DEBUG_DRIVER(dev, "failed to get edid!");
- return NULL;
+ if (!it6505->cached_edid) {
+ DRM_DEV_DEBUG_DRIVER(dev, "failed to get edid!");
+ return NULL;
+ }
}
- return edid;
+ return drm_edid_duplicate(it6505->cached_edid);
}
static const struct drm_bridge_funcs it6505_bridge_funcs = {
@@ -3014,6 +3058,8 @@ static const struct drm_bridge_funcs it6505_bridge_funcs = {
.mode_valid = it6505_bridge_mode_valid,
.atomic_enable = it6505_bridge_atomic_enable,
.atomic_disable = it6505_bridge_atomic_disable,
+ .atomic_pre_enable = it6505_bridge_atomic_pre_enable,
+ .atomic_post_disable = it6505_bridge_atomic_post_disable,
.detect = it6505_bridge_detect,
.get_edid = it6505_bridge_get_edid,
};
@@ -3032,8 +3078,10 @@ static __maybe_unused int it6505_bridge_suspend(struct device *dev)
return it6505_poweroff(it6505);
}
-static SIMPLE_DEV_PM_OPS(it6505_bridge_pm_ops, it6505_bridge_suspend,
- it6505_bridge_resume);
+static const struct dev_pm_ops it6505_bridge_pm_ops = {
+ SET_SYSTEM_SLEEP_PM_OPS(pm_runtime_force_suspend, pm_runtime_force_resume)
+ SET_RUNTIME_PM_OPS(it6505_bridge_suspend, it6505_bridge_resume, NULL)
+};
static int it6505_init_pdata(struct it6505 *it6505)
{
@@ -3062,10 +3110,32 @@ static int it6505_init_pdata(struct it6505 *it6505)
return 0;
}
+static int it6505_get_data_lanes_count(const struct device_node *endpoint,
+ const unsigned int min,
+ const unsigned int max)
+{
+ int ret;
+
+ ret = of_property_count_u32_elems(endpoint, "data-lanes");
+ if (ret < 0)
+ return ret;
+
+ if (ret < min || ret > max)
+ return -EINVAL;
+
+ return ret;
+}
+
static void it6505_parse_dt(struct it6505 *it6505)
{
struct device *dev = &it6505->client->dev;
+ struct device_node *np = dev->of_node, *ep = NULL;
+ int len;
+ u64 link_frequencies;
+ u32 data_lanes[4];
u32 *afe_setting = &it6505->afe_setting;
+ u32 *max_lane_count = &it6505->max_lane_count;
+ u32 *max_dpi_pixel_clock = &it6505->max_dpi_pixel_clock;
it6505->lane_swap_disabled =
device_property_read_bool(dev, "no-laneswap");
@@ -3081,7 +3151,56 @@ static void it6505_parse_dt(struct it6505 *it6505)
} else {
*afe_setting = 0;
}
- DRM_DEV_DEBUG_DRIVER(dev, "using afe_setting: %d", *afe_setting);
+
+ ep = of_graph_get_endpoint_by_regs(np, 1, 0);
+ of_node_put(ep);
+
+ if (ep) {
+ len = it6505_get_data_lanes_count(ep, 1, 4);
+
+ if (len > 0 && len != 3) {
+ of_property_read_u32_array(ep, "data-lanes",
+ data_lanes, len);
+ *max_lane_count = len;
+ } else {
+ *max_lane_count = MAX_LANE_COUNT;
+ dev_err(dev, "error data-lanes, use default");
+ }
+ } else {
+ *max_lane_count = MAX_LANE_COUNT;
+ dev_err(dev, "error endpoint, use default");
+ }
+
+ ep = of_graph_get_endpoint_by_regs(np, 0, 0);
+ of_node_put(ep);
+
+ if (ep) {
+ len = of_property_read_variable_u64_array(ep,
+ "link-frequencies",
+ &link_frequencies, 0,
+ 1);
+ if (len >= 0) {
+ do_div(link_frequencies, 1000);
+ if (link_frequencies > 297000) {
+ dev_err(dev,
+ "max pixel clock error, use default");
+ *max_dpi_pixel_clock = DPI_PIXEL_CLK_MAX;
+ } else {
+ *max_dpi_pixel_clock = link_frequencies;
+ }
+ } else {
+ dev_err(dev, "error link frequencies, use default");
+ *max_dpi_pixel_clock = DPI_PIXEL_CLK_MAX;
+ }
+ } else {
+ dev_err(dev, "error endpoint, use default");
+ *max_dpi_pixel_clock = DPI_PIXEL_CLK_MAX;
+ }
+
+ DRM_DEV_DEBUG_DRIVER(dev, "using afe_setting: %u, max_lane_count: %u",
+ it6505->afe_setting, it6505->max_lane_count);
+ DRM_DEV_DEBUG_DRIVER(dev, "using max_dpi_pixel_clock: %u kHz",
+ it6505->max_dpi_pixel_clock);
}
static ssize_t receive_timing_debugfs_show(struct file *file, char __user *buf,
@@ -3238,8 +3357,7 @@ static void it6505_shutdown(struct i2c_client *client)
it6505_lane_off(it6505);
}
-static int it6505_i2c_probe(struct i2c_client *client,
- const struct i2c_device_id *id)
+static int it6505_i2c_probe(struct i2c_client *client)
{
struct it6505 *it6505;
struct device *dev = &client->dev;
@@ -3305,7 +3423,7 @@ static int it6505_i2c_probe(struct i2c_client *client,
INIT_WORK(&it6505->link_works, it6505_link_training_work);
INIT_WORK(&it6505->hdcp_wait_ksv_list, it6505_hdcp_wait_ksv_list);
INIT_DELAYED_WORK(&it6505->hdcp_work, it6505_hdcp_work);
- init_completion(&it6505->wait_edid_complete);
+ init_completion(&it6505->extcon_completion);
memset(it6505->dpcd, 0, sizeof(it6505->dpcd));
it6505->powered = false;
it6505->enable_drv_hold = DEFAULT_DRV_HOLD;
@@ -3315,6 +3433,12 @@ static int it6505_i2c_probe(struct i2c_client *client,
DRM_DEV_DEBUG_DRIVER(dev, "it6505 device name: %s", dev_name(dev));
debugfs_init(it6505);
+ pm_runtime_enable(dev);
+
+ it6505->aux.name = "DP-AUX";
+ it6505->aux.dev = dev;
+ it6505->aux.transfer = it6505_aux_transfer;
+ drm_dp_aux_init(&it6505->aux);
it6505->bridge.funcs = &it6505_bridge_funcs;
it6505->bridge.type = DRM_MODE_CONNECTOR_DisplayPort;
@@ -3333,6 +3457,7 @@ static void it6505_i2c_remove(struct i2c_client *client)
drm_dp_aux_unregister(&it6505->aux);
it6505_debugfs_remove(it6505);
it6505_poweroff(it6505);
+ it6505_remove_edid(it6505);
}
static const struct i2c_device_id it6505_id[] = {
@@ -3353,7 +3478,7 @@ static struct i2c_driver it6505_i2c_driver = {
.of_match_table = it6505_of_match,
.pm = &it6505_bridge_pm_ops,
},
- .probe = it6505_i2c_probe,
+ .probe_new = it6505_i2c_probe,
.remove = it6505_i2c_remove,
.shutdown = it6505_shutdown,
.id_table = it6505_id,
diff --git a/drivers/gpu/drm/bridge/ite-it66121.c b/drivers/gpu/drm/bridge/ite-it66121.c
index 4f6f1deba28c..a2d723d6a4be 100644
--- a/drivers/gpu/drm/bridge/ite-it66121.c
+++ b/drivers/gpu/drm/bridge/ite-it66121.c
@@ -22,7 +22,6 @@
#include <drm/drm_atomic_helper.h>
#include <drm/drm_bridge.h>
-#include <drm/drm_crtc_helper.h>
#include <drm/drm_edid.h>
#include <drm/drm_modes.h>
#include <drm/drm_print.h>
@@ -35,10 +34,6 @@
#define IT66121_DEVICE_ID0_REG 0x02
#define IT66121_DEVICE_ID1_REG 0x03
-#define IT66121_VENDOR_ID0 0x54
-#define IT66121_VENDOR_ID1 0x49
-#define IT66121_DEVICE_ID0 0x12
-#define IT66121_DEVICE_ID1 0x06
#define IT66121_REVISION_MASK GENMASK(7, 4)
#define IT66121_DEVICE_ID1_MASK GENMASK(3, 0)
@@ -72,6 +67,7 @@
#define IT66121_AFE_XP_ENO BIT(4)
#define IT66121_AFE_XP_RESETB BIT(3)
#define IT66121_AFE_XP_PWDI BIT(2)
+#define IT6610_AFE_XP_BYPASS BIT(0)
#define IT66121_AFE_IP_REG 0x64
#define IT66121_AFE_IP_GAINBIT BIT(7)
@@ -286,13 +282,18 @@
#define IT66121_AUD_SWL_16BIT 0x2
#define IT66121_AUD_SWL_NOT_INDICATED 0x0
-#define IT66121_VENDOR_ID0 0x54
-#define IT66121_VENDOR_ID1 0x49
-#define IT66121_DEVICE_ID0 0x12
-#define IT66121_DEVICE_ID1 0x06
-#define IT66121_DEVICE_MASK 0x0F
#define IT66121_AFE_CLK_HIGH 80000 /* Khz */
+enum chip_id {
+ ID_IT6610,
+ ID_IT66121,
+};
+
+struct it66121_chip_info {
+ enum chip_id id;
+ u16 vid, pid;
+};
+
struct it66121_ctx {
struct regmap *regmap;
struct drm_bridge bridge;
@@ -301,7 +302,6 @@ struct it66121_ctx {
struct device *dev;
struct gpio_desc *gpio_reset;
struct i2c_client *client;
- struct regulator_bulk_data supplies[3];
u32 bus_width;
struct mutex lock; /* Protects fields below and device registers */
struct hdmi_avi_infoframe hdmi_avi_infoframe;
@@ -312,6 +312,7 @@ struct it66121_ctx {
u8 swl;
bool auto_cts;
} audio;
+ const struct it66121_chip_info *info;
};
static const struct regmap_range_cfg it66121_regmap_banks[] = {
@@ -342,16 +343,6 @@ static void it66121_hw_reset(struct it66121_ctx *ctx)
gpiod_set_value(ctx->gpio_reset, 0);
}
-static inline int ite66121_power_on(struct it66121_ctx *ctx)
-{
- return regulator_bulk_enable(ARRAY_SIZE(ctx->supplies), ctx->supplies);
-}
-
-static inline int ite66121_power_off(struct it66121_ctx *ctx)
-{
- return regulator_bulk_disable(ARRAY_SIZE(ctx->supplies), ctx->supplies);
-}
-
static inline int it66121_preamble_ddc(struct it66121_ctx *ctx)
{
return regmap_write(ctx->regmap, IT66121_MASTER_SEL_REG, IT66121_MASTER_SEL_HOST);
@@ -406,16 +397,22 @@ static int it66121_configure_afe(struct it66121_ctx *ctx,
ret = regmap_write_bits(ctx->regmap, IT66121_AFE_IP_REG,
IT66121_AFE_IP_GAINBIT |
- IT66121_AFE_IP_ER0 |
- IT66121_AFE_IP_EC1,
+ IT66121_AFE_IP_ER0,
IT66121_AFE_IP_GAINBIT);
if (ret)
return ret;
- ret = regmap_write_bits(ctx->regmap, IT66121_AFE_XP_EC1_REG,
- IT66121_AFE_XP_EC1_LOWCLK, 0x80);
- if (ret)
- return ret;
+ if (ctx->info->id == ID_IT66121) {
+ ret = regmap_write_bits(ctx->regmap, IT66121_AFE_IP_REG,
+ IT66121_AFE_IP_EC1, 0);
+ if (ret)
+ return ret;
+
+ ret = regmap_write_bits(ctx->regmap, IT66121_AFE_XP_EC1_REG,
+ IT66121_AFE_XP_EC1_LOWCLK, 0x80);
+ if (ret)
+ return ret;
+ }
} else {
ret = regmap_write_bits(ctx->regmap, IT66121_AFE_XP_REG,
IT66121_AFE_XP_GAINBIT |
@@ -426,17 +423,24 @@ static int it66121_configure_afe(struct it66121_ctx *ctx,
ret = regmap_write_bits(ctx->regmap, IT66121_AFE_IP_REG,
IT66121_AFE_IP_GAINBIT |
- IT66121_AFE_IP_ER0 |
- IT66121_AFE_IP_EC1, IT66121_AFE_IP_ER0 |
- IT66121_AFE_IP_EC1);
+ IT66121_AFE_IP_ER0,
+ IT66121_AFE_IP_ER0);
if (ret)
return ret;
- ret = regmap_write_bits(ctx->regmap, IT66121_AFE_XP_EC1_REG,
- IT66121_AFE_XP_EC1_LOWCLK,
- IT66121_AFE_XP_EC1_LOWCLK);
- if (ret)
- return ret;
+ if (ctx->info->id == ID_IT66121) {
+ ret = regmap_write_bits(ctx->regmap, IT66121_AFE_IP_REG,
+ IT66121_AFE_IP_EC1,
+ IT66121_AFE_IP_EC1);
+ if (ret)
+ return ret;
+
+ ret = regmap_write_bits(ctx->regmap, IT66121_AFE_XP_EC1_REG,
+ IT66121_AFE_XP_EC1_LOWCLK,
+ IT66121_AFE_XP_EC1_LOWCLK);
+ if (ret)
+ return ret;
+ }
}
/* Clear reset flags */
@@ -445,38 +449,36 @@ static int it66121_configure_afe(struct it66121_ctx *ctx,
if (ret)
return ret;
+ if (ctx->info->id == ID_IT6610) {
+ ret = regmap_write_bits(ctx->regmap, IT66121_AFE_XP_REG,
+ IT6610_AFE_XP_BYPASS,
+ IT6610_AFE_XP_BYPASS);
+ if (ret)
+ return ret;
+ }
+
return it66121_fire_afe(ctx);
}
static inline int it66121_wait_ddc_ready(struct it66121_ctx *ctx)
{
int ret, val;
- u32 busy = IT66121_DDC_STATUS_NOACK | IT66121_DDC_STATUS_WAIT_BUS |
- IT66121_DDC_STATUS_ARBI_LOSE;
+ u32 error = IT66121_DDC_STATUS_NOACK | IT66121_DDC_STATUS_WAIT_BUS |
+ IT66121_DDC_STATUS_ARBI_LOSE;
+ u32 done = IT66121_DDC_STATUS_TX_DONE;
- ret = regmap_read_poll_timeout(ctx->regmap, IT66121_DDC_STATUS_REG, val, true,
- IT66121_EDID_SLEEP_US, IT66121_EDID_TIMEOUT_US);
+ ret = regmap_read_poll_timeout(ctx->regmap, IT66121_DDC_STATUS_REG, val,
+ val & (error | done), IT66121_EDID_SLEEP_US,
+ IT66121_EDID_TIMEOUT_US);
if (ret)
return ret;
- if (val & busy)
+ if (val & error)
return -EAGAIN;
return 0;
}
-static int it66121_clear_ddc_fifo(struct it66121_ctx *ctx)
-{
- int ret;
-
- ret = it66121_preamble_ddc(ctx);
- if (ret)
- return ret;
-
- return regmap_write(ctx->regmap, IT66121_DDC_COMMAND_REG,
- IT66121_DDC_COMMAND_FIFO_CLR);
-}
-
static int it66121_abort_ddc_ops(struct it66121_ctx *ctx)
{
int ret;
@@ -516,7 +518,6 @@ static int it66121_get_edid_block(void *context, u8 *buf,
unsigned int block, size_t len)
{
struct it66121_ctx *ctx = context;
- unsigned int val;
int remain = len;
int offset = 0;
int ret, cnt;
@@ -524,26 +525,9 @@ static int it66121_get_edid_block(void *context, u8 *buf,
offset = (block % 2) * len;
block = block / 2;
- ret = regmap_read(ctx->regmap, IT66121_INT_STATUS1_REG, &val);
- if (ret)
- return ret;
-
- if (val & IT66121_INT_STATUS1_DDC_BUSHANG) {
- ret = it66121_abort_ddc_ops(ctx);
- if (ret)
- return ret;
- }
-
- ret = it66121_clear_ddc_fifo(ctx);
- if (ret)
- return ret;
-
while (remain > 0) {
cnt = (remain > IT66121_EDID_FIFO_SIZE) ?
IT66121_EDID_FIFO_SIZE : remain;
- ret = it66121_preamble_ddc(ctx);
- if (ret)
- return ret;
ret = regmap_write(ctx->regmap, IT66121_DDC_COMMAND_REG,
IT66121_DDC_COMMAND_FIFO_CLR);
@@ -554,25 +538,6 @@ static int it66121_get_edid_block(void *context, u8 *buf,
if (ret)
return ret;
- ret = regmap_read(ctx->regmap, IT66121_INT_STATUS1_REG, &val);
- if (ret)
- return ret;
-
- if (val & IT66121_INT_STATUS1_DDC_BUSHANG) {
- ret = it66121_abort_ddc_ops(ctx);
- if (ret)
- return ret;
- }
-
- ret = it66121_preamble_ddc(ctx);
- if (ret)
- return ret;
-
- ret = regmap_write(ctx->regmap, IT66121_DDC_HEADER_REG,
- IT66121_DDC_HEADER_EDID);
- if (ret)
- return ret;
-
ret = regmap_write(ctx->regmap, IT66121_DDC_OFFSET_REG, offset);
if (ret)
return ret;
@@ -593,20 +558,18 @@ static int it66121_get_edid_block(void *context, u8 *buf,
offset += cnt;
remain -= cnt;
- /* Per programming manual, sleep here before emptying the FIFO */
- msleep(20);
-
ret = it66121_wait_ddc_ready(ctx);
+ if (ret) {
+ it66121_abort_ddc_ops(ctx);
+ return ret;
+ }
+
+ ret = regmap_noinc_read(ctx->regmap, IT66121_DDC_RD_FIFO_REG,
+ buf, cnt);
if (ret)
return ret;
- do {
- ret = regmap_read(ctx->regmap, IT66121_DDC_RD_FIFO_REG, &val);
- if (ret)
- return ret;
- *(buf++) = val;
- cnt--;
- } while (cnt > 0);
+ buf += cnt;
}
return 0;
@@ -635,10 +598,12 @@ static int it66121_bridge_attach(struct drm_bridge *bridge,
if (ret)
return ret;
- ret = regmap_write_bits(ctx->regmap, IT66121_CLK_BANK_REG,
- IT66121_CLK_BANK_PWROFF_RCLK, 0);
- if (ret)
- return ret;
+ if (ctx->info->id == ID_IT66121) {
+ ret = regmap_write_bits(ctx->regmap, IT66121_CLK_BANK_REG,
+ IT66121_CLK_BANK_PWROFF_RCLK, 0);
+ if (ret)
+ return ret;
+ }
ret = regmap_write_bits(ctx->regmap, IT66121_INT_REG,
IT66121_INT_TX_CLK_OFF, 0);
@@ -684,11 +649,7 @@ static int it66121_bridge_attach(struct drm_bridge *bridge,
/* Per programming manual, sleep here for bridge to settle */
msleep(50);
- /* Start interrupts */
- return regmap_write_bits(ctx->regmap, IT66121_INT_MASK1_REG,
- IT66121_INT_MASK1_DDC_NOACK |
- IT66121_INT_MASK1_DDC_FIFOERR |
- IT66121_INT_MASK1_DDC_BUSHANG, 0);
+ return 0;
}
static int it66121_set_mute(struct it66121_ctx *ctx, bool mute)
@@ -780,29 +741,32 @@ static void it66121_bridge_disable(struct drm_bridge *bridge,
ctx->connector = NULL;
}
+static int it66121_bridge_check(struct drm_bridge *bridge,
+ struct drm_bridge_state *bridge_state,
+ struct drm_crtc_state *crtc_state,
+ struct drm_connector_state *conn_state)
+{
+ struct it66121_ctx *ctx = container_of(bridge, struct it66121_ctx, bridge);
+
+ if (ctx->info->id == ID_IT6610) {
+ /* The IT6610 only supports these settings */
+ bridge_state->input_bus_cfg.flags |= DRM_BUS_FLAG_DE_HIGH |
+ DRM_BUS_FLAG_PIXDATA_DRIVE_NEGEDGE;
+ bridge_state->input_bus_cfg.flags &=
+ ~DRM_BUS_FLAG_PIXDATA_DRIVE_POSEDGE;
+ }
+
+ return 0;
+}
+
static
void it66121_bridge_mode_set(struct drm_bridge *bridge,
const struct drm_display_mode *mode,
const struct drm_display_mode *adjusted_mode)
{
- int ret, i;
u8 buf[HDMI_INFOFRAME_SIZE(AVI)];
struct it66121_ctx *ctx = container_of(bridge, struct it66121_ctx, bridge);
- const u16 aviinfo_reg[HDMI_AVI_INFOFRAME_SIZE] = {
- IT66121_AVIINFO_DB1_REG,
- IT66121_AVIINFO_DB2_REG,
- IT66121_AVIINFO_DB3_REG,
- IT66121_AVIINFO_DB4_REG,
- IT66121_AVIINFO_DB5_REG,
- IT66121_AVIINFO_DB6_REG,
- IT66121_AVIINFO_DB7_REG,
- IT66121_AVIINFO_DB8_REG,
- IT66121_AVIINFO_DB9_REG,
- IT66121_AVIINFO_DB10_REG,
- IT66121_AVIINFO_DB11_REG,
- IT66121_AVIINFO_DB12_REG,
- IT66121_AVIINFO_DB13_REG
- };
+ int ret;
mutex_lock(&ctx->lock);
@@ -822,10 +786,12 @@ void it66121_bridge_mode_set(struct drm_bridge *bridge,
}
/* Write new AVI infoframe packet */
- for (i = 0; i < HDMI_AVI_INFOFRAME_SIZE; i++) {
- if (regmap_write(ctx->regmap, aviinfo_reg[i], buf[i + HDMI_INFOFRAME_HEADER_SIZE]))
- goto unlock;
- }
+ ret = regmap_bulk_write(ctx->regmap, IT66121_AVIINFO_DB1_REG,
+ &buf[HDMI_INFOFRAME_HEADER_SIZE],
+ HDMI_AVI_INFOFRAME_SIZE);
+ if (ret)
+ goto unlock;
+
if (regmap_write(ctx->regmap, IT66121_AVIINFO_CSUM_REG, buf[3]))
goto unlock;
@@ -838,9 +804,12 @@ void it66121_bridge_mode_set(struct drm_bridge *bridge,
if (regmap_write(ctx->regmap, IT66121_HDMI_MODE_REG, IT66121_HDMI_MODE_HDMI))
goto unlock;
- if (regmap_write_bits(ctx->regmap, IT66121_CLK_BANK_REG,
- IT66121_CLK_BANK_PWROFF_TXCLK, IT66121_CLK_BANK_PWROFF_TXCLK))
+ if (ctx->info->id == ID_IT66121 &&
+ regmap_write_bits(ctx->regmap, IT66121_CLK_BANK_REG,
+ IT66121_CLK_BANK_PWROFF_TXCLK,
+ IT66121_CLK_BANK_PWROFF_TXCLK)) {
goto unlock;
+ }
if (it66121_configure_input(ctx))
goto unlock;
@@ -848,7 +817,11 @@ void it66121_bridge_mode_set(struct drm_bridge *bridge,
if (it66121_configure_afe(ctx, adjusted_mode))
goto unlock;
- regmap_write_bits(ctx->regmap, IT66121_CLK_BANK_REG, IT66121_CLK_BANK_PWROFF_TXCLK, 0);
+ if (ctx->info->id == ID_IT66121 &&
+ regmap_write_bits(ctx->regmap, IT66121_CLK_BANK_REG,
+ IT66121_CLK_BANK_PWROFF_TXCLK, 0)) {
+ goto unlock;
+ }
unlock:
mutex_unlock(&ctx->lock);
@@ -906,9 +879,25 @@ static struct edid *it66121_bridge_get_edid(struct drm_bridge *bridge,
{
struct it66121_ctx *ctx = container_of(bridge, struct it66121_ctx, bridge);
struct edid *edid;
+ int ret;
mutex_lock(&ctx->lock);
+ ret = it66121_preamble_ddc(ctx);
+ if (ret) {
+ edid = ERR_PTR(ret);
+ goto out_unlock;
+ }
+
+ ret = regmap_write(ctx->regmap, IT66121_DDC_HEADER_REG,
+ IT66121_DDC_HEADER_EDID);
+ if (ret) {
+ edid = ERR_PTR(ret);
+ goto out_unlock;
+ }
+
edid = drm_do_get_edid(connector, it66121_get_edid_block, ctx);
+
+out_unlock:
mutex_unlock(&ctx->lock);
return edid;
@@ -923,6 +912,7 @@ static const struct drm_bridge_funcs it66121_bridge_funcs = {
.atomic_get_input_bus_fmts = it66121_bridge_atomic_get_input_bus_fmts,
.atomic_enable = it66121_bridge_enable,
.atomic_disable = it66121_bridge_disable,
+ .atomic_check = it66121_bridge_check,
.mode_set = it66121_bridge_mode_set,
.mode_valid = it66121_bridge_mode_valid,
.detect = it66121_bridge_detect,
@@ -952,21 +942,14 @@ static irqreturn_t it66121_irq_threaded_handler(int irq, void *dev_id)
ret = regmap_read(ctx->regmap, IT66121_INT_STATUS1_REG, &val);
if (ret) {
dev_err(dev, "Cannot read STATUS1_REG %d\n", ret);
- } else {
- if (val & IT66121_INT_STATUS1_DDC_FIFOERR)
- it66121_clear_ddc_fifo(ctx);
- if (val & (IT66121_INT_STATUS1_DDC_BUSHANG |
- IT66121_INT_STATUS1_DDC_NOACK))
- it66121_abort_ddc_ops(ctx);
- if (val & IT66121_INT_STATUS1_HPD_STATUS) {
- regmap_write_bits(ctx->regmap, IT66121_INT_CLR1_REG,
- IT66121_INT_CLR1_HPD, IT66121_INT_CLR1_HPD);
+ } else if (val & IT66121_INT_STATUS1_HPD_STATUS) {
+ regmap_write_bits(ctx->regmap, IT66121_INT_CLR1_REG,
+ IT66121_INT_CLR1_HPD, IT66121_INT_CLR1_HPD);
- status = it66121_is_hpd_detect(ctx) ? connector_status_connected
- : connector_status_disconnected;
+ status = it66121_is_hpd_detect(ctx) ? connector_status_connected
+ : connector_status_disconnected;
- event = true;
- }
+ event = true;
}
regmap_write_bits(ctx->regmap, IT66121_SYS_STATUS_REG,
@@ -1512,9 +1495,13 @@ static int it66121_audio_codec_init(struct it66121_ctx *ctx, struct device *dev)
return PTR_ERR_OR_ZERO(ctx->audio.pdev);
}
-static int it66121_probe(struct i2c_client *client,
- const struct i2c_device_id *id)
+static const char * const it66121_supplies[] = {
+ "vcn33", "vcn18", "vrf12"
+};
+
+static int it66121_probe(struct i2c_client *client)
{
+ const struct i2c_device_id *id = i2c_client_get_device_id(client);
u32 revision_id, vendor_ids[2] = { 0 }, device_ids[2] = { 0 };
struct device_node *ep;
int ret;
@@ -1536,6 +1523,7 @@ static int it66121_probe(struct i2c_client *client,
ctx->dev = dev;
ctx->client = client;
+ ctx->info = (const struct it66121_chip_info *) id->driver_data;
of_property_read_u32(ep, "bus-width", &ctx->bus_width);
of_node_put(ep);
@@ -1565,26 +1553,18 @@ static int it66121_probe(struct i2c_client *client,
i2c_set_clientdata(client, ctx);
mutex_init(&ctx->lock);
- ctx->supplies[0].supply = "vcn33";
- ctx->supplies[1].supply = "vcn18";
- ctx->supplies[2].supply = "vrf12";
- ret = devm_regulator_bulk_get(ctx->dev, 3, ctx->supplies);
+ ret = devm_regulator_bulk_get_enable(dev, ARRAY_SIZE(it66121_supplies),
+ it66121_supplies);
if (ret) {
- dev_err(ctx->dev, "regulator_bulk failed\n");
+ dev_err(dev, "Failed to enable power supplies\n");
return ret;
}
- ret = ite66121_power_on(ctx);
- if (ret)
- return ret;
-
it66121_hw_reset(ctx);
ctx->regmap = devm_regmap_init_i2c(client, &it66121_regmap_config);
- if (IS_ERR(ctx->regmap)) {
- ite66121_power_off(ctx);
+ if (IS_ERR(ctx->regmap))
return PTR_ERR(ctx->regmap);
- }
regmap_read(ctx->regmap, IT66121_VENDOR_ID0_REG, &vendor_ids[0]);
regmap_read(ctx->regmap, IT66121_VENDOR_ID1_REG, &vendor_ids[1]);
@@ -1595,9 +1575,8 @@ static int it66121_probe(struct i2c_client *client,
revision_id = FIELD_GET(IT66121_REVISION_MASK, device_ids[1]);
device_ids[1] &= IT66121_DEVICE_ID1_MASK;
- if (vendor_ids[0] != IT66121_VENDOR_ID0 || vendor_ids[1] != IT66121_VENDOR_ID1 ||
- device_ids[0] != IT66121_DEVICE_ID0 || device_ids[1] != IT66121_DEVICE_ID1) {
- ite66121_power_off(ctx);
+ if ((vendor_ids[1] << 8 | vendor_ids[0]) != ctx->info->vid ||
+ (device_ids[1] << 8 | device_ids[0]) != ctx->info->pid) {
return -ENODEV;
}
@@ -1610,7 +1589,6 @@ static int it66121_probe(struct i2c_client *client,
IRQF_ONESHOT, dev_name(dev), ctx);
if (ret < 0) {
dev_err(dev, "Failed to request irq %d:%d\n", client->irq, ret);
- ite66121_power_off(ctx);
return ret;
}
@@ -1627,19 +1605,32 @@ static void it66121_remove(struct i2c_client *client)
{
struct it66121_ctx *ctx = i2c_get_clientdata(client);
- ite66121_power_off(ctx);
drm_bridge_remove(&ctx->bridge);
mutex_destroy(&ctx->lock);
}
static const struct of_device_id it66121_dt_match[] = {
{ .compatible = "ite,it66121" },
+ { .compatible = "ite,it6610" },
{ }
};
MODULE_DEVICE_TABLE(of, it66121_dt_match);
+static const struct it66121_chip_info it66121_chip_info = {
+ .id = ID_IT66121,
+ .vid = 0x4954,
+ .pid = 0x0612,
+};
+
+static const struct it66121_chip_info it6610_chip_info = {
+ .id = ID_IT6610,
+ .vid = 0xca00,
+ .pid = 0x0611,
+};
+
static const struct i2c_device_id it66121_id[] = {
- { "it66121", 0 },
+ { "it66121", (kernel_ulong_t) &it66121_chip_info },
+ { "it6610", (kernel_ulong_t) &it6610_chip_info },
{ }
};
MODULE_DEVICE_TABLE(i2c, it66121_id);
@@ -1649,7 +1640,7 @@ static struct i2c_driver it66121_driver = {
.name = "it66121",
.of_match_table = it66121_dt_match,
},
- .probe = it66121_probe,
+ .probe_new = it66121_probe,
.remove = it66121_remove,
.id_table = it66121_id,
};
diff --git a/drivers/gpu/drm/bridge/lontium-lt8912b.c b/drivers/gpu/drm/bridge/lontium-lt8912b.c
index a98efef0ba0e..13c131ade268 100644
--- a/drivers/gpu/drm/bridge/lontium-lt8912b.c
+++ b/drivers/gpu/drm/bridge/lontium-lt8912b.c
@@ -504,7 +504,6 @@ static int lt8912_attach_dsi(struct lt8912 *lt)
dsi->format = MIPI_DSI_FMT_RGB888;
dsi->mode_flags = MIPI_DSI_MODE_VIDEO |
- MIPI_DSI_MODE_VIDEO_BURST |
MIPI_DSI_MODE_LPM |
MIPI_DSI_MODE_NO_EOT_PACKET;
@@ -517,14 +516,27 @@ static int lt8912_attach_dsi(struct lt8912 *lt)
return 0;
}
+static void lt8912_bridge_hpd_cb(void *data, enum drm_connector_status status)
+{
+ struct lt8912 *lt = data;
+
+ if (lt->bridge.dev)
+ drm_helper_hpd_irq_event(lt->bridge.dev);
+}
+
static int lt8912_bridge_connector_init(struct drm_bridge *bridge)
{
int ret;
struct lt8912 *lt = bridge_to_lt8912(bridge);
struct drm_connector *connector = &lt->connector;
- connector->polled = DRM_CONNECTOR_POLL_CONNECT |
- DRM_CONNECTOR_POLL_DISCONNECT;
+ if (lt->hdmi_port->ops & DRM_BRIDGE_OP_HPD) {
+ drm_bridge_hpd_enable(lt->hdmi_port, lt8912_bridge_hpd_cb, lt);
+ connector->polled = DRM_CONNECTOR_POLL_HPD;
+ } else {
+ connector->polled = DRM_CONNECTOR_POLL_CONNECT |
+ DRM_CONNECTOR_POLL_DISCONNECT;
+ }
ret = drm_connector_init(bridge->dev, connector,
&lt8912_connector_funcs,
@@ -578,6 +590,10 @@ static void lt8912_bridge_detach(struct drm_bridge *bridge)
if (lt->is_attached) {
lt8912_hard_power_off(lt);
+
+ if (lt->hdmi_port->ops & DRM_BRIDGE_OP_HPD)
+ drm_bridge_hpd_disable(lt->hdmi_port);
+
drm_connector_unregister(&lt->connector);
drm_connector_cleanup(&lt->connector);
}
@@ -659,8 +675,8 @@ static int lt8912_parse_dt(struct lt8912 *lt)
lt->hdmi_port = of_drm_find_bridge(port_node);
if (!lt->hdmi_port) {
- dev_err(lt->dev, "%s: Failed to get hdmi port\n", __func__);
- ret = -ENODEV;
+ ret = -EPROBE_DEFER;
+ dev_err_probe(lt->dev, ret, "%s: Failed to get hdmi port\n", __func__);
goto err_free_host_node;
}
@@ -685,8 +701,7 @@ static int lt8912_put_dt(struct lt8912 *lt)
return 0;
}
-static int lt8912_probe(struct i2c_client *client,
- const struct i2c_device_id *id)
+static int lt8912_probe(struct i2c_client *client)
{
static struct lt8912 *lt;
int ret = 0;
@@ -758,7 +773,7 @@ static struct i2c_driver lt8912_i2c_driver = {
.name = "lt8912",
.of_match_table = lt8912_dt_match,
},
- .probe = lt8912_probe,
+ .probe_new = lt8912_probe,
.remove = lt8912_remove,
.id_table = lt8912_id,
};
diff --git a/drivers/gpu/drm/bridge/lontium-lt9211.c b/drivers/gpu/drm/bridge/lontium-lt9211.c
index 933ca028d612..3e19fff6547a 100644
--- a/drivers/gpu/drm/bridge/lontium-lt9211.c
+++ b/drivers/gpu/drm/bridge/lontium-lt9211.c
@@ -720,8 +720,7 @@ static int lt9211_host_attach(struct lt9211 *ctx)
return 0;
}
-static int lt9211_probe(struct i2c_client *client,
- const struct i2c_device_id *id)
+static int lt9211_probe(struct i2c_client *client)
{
struct device *dev = &client->dev;
struct lt9211 *ctx;
@@ -786,7 +785,7 @@ static const struct of_device_id lt9211_match_table[] = {
MODULE_DEVICE_TABLE(of, lt9211_match_table);
static struct i2c_driver lt9211_driver = {
- .probe = lt9211_probe,
+ .probe_new = lt9211_probe,
.remove = lt9211_remove,
.id_table = lt9211_id,
.driver = {
diff --git a/drivers/gpu/drm/bridge/lontium-lt9611.c b/drivers/gpu/drm/bridge/lontium-lt9611.c
index 7c0a99173b39..a25d21a7d5c1 100644
--- a/drivers/gpu/drm/bridge/lontium-lt9611.c
+++ b/drivers/gpu/drm/bridge/lontium-lt9611.c
@@ -19,6 +19,7 @@
#include <drm/drm_atomic_helper.h>
#include <drm/drm_bridge.h>
#include <drm/drm_mipi_dsi.h>
+#include <drm/drm_of.h>
#include <drm/drm_print.h>
#include <drm/drm_probe_helper.h>
@@ -33,7 +34,7 @@
struct lt9611 {
struct device *dev;
struct drm_bridge bridge;
- struct drm_connector connector;
+ struct drm_bridge *next_bridge;
struct regmap *regmap;
@@ -58,7 +59,6 @@ struct lt9611 {
enum drm_connector_status status;
u8 edid_buf[EDID_SEG_SIZE];
- u32 vic;
};
#define LT9611_PAGE_CONTROL 0xff
@@ -84,34 +84,11 @@ static const struct regmap_config lt9611_regmap_config = {
.num_ranges = ARRAY_SIZE(lt9611_ranges),
};
-struct lt9611_mode {
- u16 hdisplay;
- u16 vdisplay;
- u8 vrefresh;
- u8 lanes;
- u8 intfs;
-};
-
-static struct lt9611_mode lt9611_modes[] = {
- { 3840, 2160, 30, 4, 2 }, /* 3840x2160 24bit 30Hz 4Lane 2ports */
- { 1920, 1080, 60, 4, 1 }, /* 1080P 24bit 60Hz 4lane 1port */
- { 1920, 1080, 30, 3, 1 }, /* 1080P 24bit 30Hz 3lane 1port */
- { 1920, 1080, 24, 3, 1 },
- { 720, 480, 60, 4, 1 },
- { 720, 576, 50, 2, 1 },
- { 640, 480, 60, 2, 1 },
-};
-
static struct lt9611 *bridge_to_lt9611(struct drm_bridge *bridge)
{
return container_of(bridge, struct lt9611, bridge);
}
-static struct lt9611 *connector_to_lt9611(struct drm_connector *connector)
-{
- return container_of(connector, struct lt9611, connector);
-}
-
static int lt9611_mipi_input_analog(struct lt9611 *lt9611)
{
const struct reg_sequence reg_cfg[] = {
@@ -141,7 +118,7 @@ static int lt9611_mipi_input_digital(struct lt9611 *lt9611,
{ 0x8306, 0x0a },
};
- if (mode->hdisplay == 3840)
+ if (lt9611->dsi1_node)
reg_cfg[1].def = 0x03;
return regmap_multi_reg_write(lt9611->regmap, reg_cfg, ARRAY_SIZE(reg_cfg));
@@ -159,12 +136,12 @@ static void lt9611_mipi_video_setup(struct lt9611 *lt9611,
hactive = mode->hdisplay;
hsync_len = mode->hsync_end - mode->hsync_start;
hfront_porch = mode->hsync_start - mode->hdisplay;
- hsync_porch = hsync_len + mode->htotal - mode->hsync_end;
+ hsync_porch = mode->htotal - mode->hsync_start;
vactive = mode->vdisplay;
vsync_len = mode->vsync_end - mode->vsync_start;
vfront_porch = mode->vsync_start - mode->vdisplay;
- vsync_porch = vsync_len + mode->vtotal - mode->vsync_end;
+ vsync_porch = mode->vtotal - mode->vsync_start;
regmap_write(lt9611->regmap, 0x830d, (u8)(v_total / 256));
regmap_write(lt9611->regmap, 0x830e, (u8)(v_total % 256));
@@ -187,12 +164,14 @@ static void lt9611_mipi_video_setup(struct lt9611 *lt9611,
regmap_write(lt9611->regmap, 0x8319, (u8)(hfront_porch % 256));
- regmap_write(lt9611->regmap, 0x831a, (u8)(hsync_porch / 256));
+ regmap_write(lt9611->regmap, 0x831a, (u8)(hsync_porch / 256) |
+ ((hfront_porch / 256) << 4));
regmap_write(lt9611->regmap, 0x831b, (u8)(hsync_porch % 256));
}
-static void lt9611_pcr_setup(struct lt9611 *lt9611, const struct drm_display_mode *mode)
+static void lt9611_pcr_setup(struct lt9611 *lt9611, const struct drm_display_mode *mode, unsigned int postdiv)
{
+ unsigned int pcr_m = mode->clock * 5 * postdiv / 27000;
const struct reg_sequence reg_cfg[] = {
{ 0x830b, 0x01 },
{ 0x830c, 0x10 },
@@ -207,45 +186,40 @@ static void lt9611_pcr_setup(struct lt9611 *lt9611, const struct drm_display_mod
/* stage 2 */
{ 0x834a, 0x40 },
- { 0x831d, 0x10 },
/* MK limit */
{ 0x832d, 0x38 },
{ 0x8331, 0x08 },
};
- const struct reg_sequence reg_cfg2[] = {
- { 0x830b, 0x03 },
- { 0x830c, 0xd0 },
- { 0x8348, 0x03 },
- { 0x8349, 0xe0 },
- { 0x8324, 0x72 },
- { 0x8325, 0x00 },
- { 0x832a, 0x01 },
- { 0x834a, 0x10 },
- { 0x831d, 0x10 },
- { 0x8326, 0x37 },
- };
+ u8 pol = 0x10;
- regmap_multi_reg_write(lt9611->regmap, reg_cfg, ARRAY_SIZE(reg_cfg));
+ if (mode->flags & DRM_MODE_FLAG_NHSYNC)
+ pol |= 0x2;
+ if (mode->flags & DRM_MODE_FLAG_NVSYNC)
+ pol |= 0x1;
+ regmap_write(lt9611->regmap, 0x831d, pol);
- switch (mode->hdisplay) {
- case 640:
- regmap_write(lt9611->regmap, 0x8326, 0x14);
- break;
- case 1920:
- regmap_write(lt9611->regmap, 0x8326, 0x37);
- break;
- case 3840:
- regmap_multi_reg_write(lt9611->regmap, reg_cfg2, ARRAY_SIZE(reg_cfg2));
- break;
+ regmap_multi_reg_write(lt9611->regmap, reg_cfg, ARRAY_SIZE(reg_cfg));
+ if (lt9611->dsi1_node) {
+ unsigned int hact = mode->hdisplay;
+
+ hact >>= 2;
+ hact += 0x50;
+ hact = min(hact, 0x3e0U);
+ regmap_write(lt9611->regmap, 0x830b, hact / 256);
+ regmap_write(lt9611->regmap, 0x830c, hact % 256);
+ regmap_write(lt9611->regmap, 0x8348, hact / 256);
+ regmap_write(lt9611->regmap, 0x8349, hact % 256);
}
+ regmap_write(lt9611->regmap, 0x8326, pcr_m);
+
/* pcr rst */
regmap_write(lt9611->regmap, 0x8011, 0x5a);
regmap_write(lt9611->regmap, 0x8011, 0xfa);
}
-static int lt9611_pll_setup(struct lt9611 *lt9611, const struct drm_display_mode *mode)
+static int lt9611_pll_setup(struct lt9611 *lt9611, const struct drm_display_mode *mode, unsigned int *postdiv)
{
unsigned int pclk = mode->clock;
const struct reg_sequence reg_cfg[] = {
@@ -259,16 +233,21 @@ static int lt9611_pll_setup(struct lt9611 *lt9611, const struct drm_display_mode
{ 0x8126, 0x55 },
{ 0x8127, 0x66 },
{ 0x8128, 0x88 },
+ { 0x812a, 0x20 },
};
regmap_multi_reg_write(lt9611->regmap, reg_cfg, ARRAY_SIZE(reg_cfg));
- if (pclk > 150000)
+ if (pclk > 150000) {
regmap_write(lt9611->regmap, 0x812d, 0x88);
- else if (pclk > 70000)
+ *postdiv = 1;
+ } else if (pclk > 70000) {
regmap_write(lt9611->regmap, 0x812d, 0x99);
- else
+ *postdiv = 2;
+ } else {
regmap_write(lt9611->regmap, 0x812d, 0xaa);
+ *postdiv = 4;
+ }
/*
* first divide pclk by 2 first
@@ -353,13 +332,55 @@ end:
return temp;
}
-static void lt9611_hdmi_tx_digital(struct lt9611 *lt9611)
+static void lt9611_hdmi_set_infoframes(struct lt9611 *lt9611,
+ struct drm_connector *connector,
+ struct drm_display_mode *mode)
{
- regmap_write(lt9611->regmap, 0x8443, 0x46 - lt9611->vic);
- regmap_write(lt9611->regmap, 0x8447, lt9611->vic);
- regmap_write(lt9611->regmap, 0x843d, 0x0a); /* UD1 infoframe */
+ union hdmi_infoframe infoframe;
+ ssize_t len;
+ u8 iframes = 0x0a; /* UD1 infoframe */
+ u8 buf[32];
+ int ret;
+ int i;
- regmap_write(lt9611->regmap, 0x82d6, 0x8c);
+ ret = drm_hdmi_avi_infoframe_from_display_mode(&infoframe.avi,
+ connector,
+ mode);
+ if (ret < 0)
+ goto out;
+
+ len = hdmi_infoframe_pack(&infoframe, buf, sizeof(buf));
+ if (len < 0)
+ goto out;
+
+ for (i = 0; i < len; i++)
+ regmap_write(lt9611->regmap, 0x8440 + i, buf[i]);
+
+ ret = drm_hdmi_vendor_infoframe_from_display_mode(&infoframe.vendor.hdmi,
+ connector,
+ mode);
+ if (ret < 0)
+ goto out;
+
+ len = hdmi_infoframe_pack(&infoframe, buf, sizeof(buf));
+ if (len < 0)
+ goto out;
+
+ for (i = 0; i < len; i++)
+ regmap_write(lt9611->regmap, 0x8474 + i, buf[i]);
+
+ iframes |= 0x20;
+
+out:
+ regmap_write(lt9611->regmap, 0x843d, iframes); /* UD1 infoframe */
+}
+
+static void lt9611_hdmi_tx_digital(struct lt9611 *lt9611, bool is_hdmi)
+{
+ if (is_hdmi)
+ regmap_write(lt9611->regmap, 0x82d6, 0x8c);
+ else
+ regmap_write(lt9611->regmap, 0x82d6, 0x0c);
regmap_write(lt9611->regmap, 0x82d7, 0x04);
}
@@ -448,12 +469,11 @@ static void lt9611_sleep_setup(struct lt9611 *lt9611)
{ 0x8023, 0x01 },
{ 0x8157, 0x03 }, /* set addr pin as output */
{ 0x8149, 0x0b },
- { 0x8151, 0x30 }, /* disable IRQ */
+
{ 0x8102, 0x48 }, /* MIPI Rx power down */
{ 0x8123, 0x80 },
{ 0x8130, 0x00 },
- { 0x8100, 0x01 }, /* bandgap power down */
- { 0x8101, 0x00 }, /* system clk power down */
+ { 0x8011, 0x0a },
};
regmap_multi_reg_write(lt9611->regmap,
@@ -564,24 +584,9 @@ static int lt9611_regulator_enable(struct lt9611 *lt9611)
return 0;
}
-static struct lt9611_mode *lt9611_find_mode(const struct drm_display_mode *mode)
-{
- int i;
-
- for (i = 0; i < ARRAY_SIZE(lt9611_modes); i++) {
- if (lt9611_modes[i].hdisplay == mode->hdisplay &&
- lt9611_modes[i].vdisplay == mode->vdisplay &&
- lt9611_modes[i].vrefresh == drm_mode_vrefresh(mode)) {
- return &lt9611_modes[i];
- }
- }
-
- return NULL;
-}
-
-/* connector funcs */
-static enum drm_connector_status __lt9611_detect(struct lt9611 *lt9611)
+static enum drm_connector_status lt9611_bridge_detect(struct drm_bridge *bridge)
{
+ struct lt9611 *lt9611 = bridge_to_lt9611(bridge);
unsigned int reg_val = 0;
int connected = 0;
@@ -594,12 +599,6 @@ static enum drm_connector_status __lt9611_detect(struct lt9611 *lt9611)
return lt9611->status;
}
-static enum drm_connector_status
-lt9611_connector_detect(struct drm_connector *connector, bool force)
-{
- return __lt9611_detect(connector_to_lt9611(connector));
-}
-
static int lt9611_read_edid(struct lt9611 *lt9611)
{
unsigned int temp;
@@ -681,36 +680,37 @@ lt9611_get_edid_block(void *data, u8 *buf, unsigned int block, size_t len)
return 0;
}
-static int lt9611_connector_get_modes(struct drm_connector *connector)
-{
- struct lt9611 *lt9611 = connector_to_lt9611(connector);
- unsigned int count;
- struct edid *edid;
-
- lt9611_power_on(lt9611);
- edid = drm_do_get_edid(connector, lt9611_get_edid_block, lt9611);
- drm_connector_update_edid_property(connector, edid);
- count = drm_add_edid_modes(connector, edid);
- kfree(edid);
-
- return count;
-}
-
-static enum drm_mode_status
-lt9611_connector_mode_valid(struct drm_connector *connector,
- struct drm_display_mode *mode)
-{
- struct lt9611_mode *lt9611_mode = lt9611_find_mode(mode);
-
- return lt9611_mode ? MODE_OK : MODE_BAD;
-}
-
/* bridge funcs */
static void
lt9611_bridge_atomic_enable(struct drm_bridge *bridge,
struct drm_bridge_state *old_bridge_state)
{
struct lt9611 *lt9611 = bridge_to_lt9611(bridge);
+ struct drm_atomic_state *state = old_bridge_state->base.state;
+ struct drm_connector *connector;
+ struct drm_connector_state *conn_state;
+ struct drm_crtc_state *crtc_state;
+ struct drm_display_mode *mode;
+ unsigned int postdiv;
+
+ connector = drm_atomic_get_new_connector_for_encoder(state, bridge->encoder);
+ if (WARN_ON(!connector))
+ return;
+
+ conn_state = drm_atomic_get_new_connector_state(state, connector);
+ if (WARN_ON(!conn_state))
+ return;
+
+ crtc_state = drm_atomic_get_new_crtc_state(state, conn_state->crtc);
+ if (WARN_ON(!crtc_state))
+ return;
+
+ mode = &crtc_state->adjusted_mode;
+
+ lt9611_mipi_input_digital(lt9611, mode);
+ lt9611_pll_setup(lt9611, mode, &postdiv);
+ lt9611_mipi_video_setup(lt9611, mode);
+ lt9611_pcr_setup(lt9611, mode, postdiv);
if (lt9611_power_on(lt9611)) {
dev_err(lt9611->dev, "power on failed\n");
@@ -718,7 +718,8 @@ lt9611_bridge_atomic_enable(struct drm_bridge *bridge,
}
lt9611_mipi_input_analog(lt9611);
- lt9611_hdmi_tx_digital(lt9611);
+ lt9611_hdmi_set_infoframes(lt9611, connector, mode);
+ lt9611_hdmi_tx_digital(lt9611, connector->display_info.is_hdmi);
lt9611_hdmi_tx_phy(lt9611);
msleep(500);
@@ -749,25 +750,10 @@ lt9611_bridge_atomic_disable(struct drm_bridge *bridge,
}
}
-static struct
-drm_connector_helper_funcs lt9611_bridge_connector_helper_funcs = {
- .get_modes = lt9611_connector_get_modes,
- .mode_valid = lt9611_connector_mode_valid,
-};
-
-static const struct drm_connector_funcs lt9611_bridge_connector_funcs = {
- .fill_modes = drm_helper_probe_single_connector_modes,
- .detect = lt9611_connector_detect,
- .destroy = drm_connector_cleanup,
- .reset = drm_atomic_helper_connector_reset,
- .atomic_duplicate_state = drm_atomic_helper_connector_duplicate_state,
- .atomic_destroy_state = drm_atomic_helper_connector_destroy_state,
-};
-
static struct mipi_dsi_device *lt9611_attach_dsi(struct lt9611 *lt9611,
struct device_node *dsi_node)
{
- const struct mipi_dsi_device_info info = { "lt9611", 0, NULL };
+ const struct mipi_dsi_device_info info = { "lt9611", 0, lt9611->dev->of_node};
struct mipi_dsi_device *dsi;
struct mipi_dsi_host *host;
struct device *dev = lt9611->dev;
@@ -799,70 +785,54 @@ static struct mipi_dsi_device *lt9611_attach_dsi(struct lt9611 *lt9611,
return dsi;
}
-static int lt9611_connector_init(struct drm_bridge *bridge, struct lt9611 *lt9611)
-{
- int ret;
-
- ret = drm_connector_init(bridge->dev, &lt9611->connector,
- &lt9611_bridge_connector_funcs,
- DRM_MODE_CONNECTOR_HDMIA);
- if (ret) {
- DRM_ERROR("Failed to initialize connector with drm\n");
- return ret;
- }
-
- drm_connector_helper_add(&lt9611->connector,
- &lt9611_bridge_connector_helper_funcs);
-
- if (!bridge->encoder) {
- DRM_ERROR("Parent encoder object not found");
- return -ENODEV;
- }
-
- drm_connector_attach_encoder(&lt9611->connector, bridge->encoder);
-
- return 0;
-}
-
static int lt9611_bridge_attach(struct drm_bridge *bridge,
enum drm_bridge_attach_flags flags)
{
struct lt9611 *lt9611 = bridge_to_lt9611(bridge);
- int ret;
- if (!(flags & DRM_BRIDGE_ATTACH_NO_CONNECTOR)) {
- ret = lt9611_connector_init(bridge, lt9611);
- if (ret < 0)
- return ret;
- }
-
- return 0;
+ return drm_bridge_attach(bridge->encoder, lt9611->next_bridge,
+ bridge, flags);
}
static enum drm_mode_status lt9611_bridge_mode_valid(struct drm_bridge *bridge,
const struct drm_display_info *info,
const struct drm_display_mode *mode)
{
- struct lt9611_mode *lt9611_mode = lt9611_find_mode(mode);
struct lt9611 *lt9611 = bridge_to_lt9611(bridge);
- if (!lt9611_mode)
- return MODE_BAD;
- else if (lt9611_mode->intfs > 1 && !lt9611->dsi1)
+ if (mode->hdisplay > 3840)
+ return MODE_BAD_HVALUE;
+
+ if (mode->vdisplay > 2160)
+ return MODE_BAD_VVALUE;
+
+ if (mode->hdisplay == 3840 &&
+ mode->vdisplay == 2160 &&
+ drm_mode_vrefresh(mode) > 30)
+ return MODE_CLOCK_HIGH;
+
+ if (mode->hdisplay > 2000 && !lt9611->dsi1_node)
return MODE_PANEL;
else
return MODE_OK;
}
-static void lt9611_bridge_pre_enable(struct drm_bridge *bridge)
+static void lt9611_bridge_atomic_pre_enable(struct drm_bridge *bridge,
+ struct drm_bridge_state *old_bridge_state)
{
struct lt9611 *lt9611 = bridge_to_lt9611(bridge);
+ static const struct reg_sequence reg_cfg[] = {
+ { 0x8102, 0x12 },
+ { 0x8123, 0x40 },
+ { 0x8130, 0xea },
+ { 0x8011, 0xfa },
+ };
if (!lt9611->sleep)
return;
- lt9611_reset(lt9611);
- regmap_write(lt9611->regmap, 0x80ee, 0x01);
+ regmap_multi_reg_write(lt9611->regmap,
+ reg_cfg, ARRAY_SIZE(reg_cfg));
lt9611->sleep = false;
}
@@ -876,33 +846,6 @@ lt9611_bridge_atomic_post_disable(struct drm_bridge *bridge,
lt9611_sleep_setup(lt9611);
}
-static void lt9611_bridge_mode_set(struct drm_bridge *bridge,
- const struct drm_display_mode *mode,
- const struct drm_display_mode *adj_mode)
-{
- struct lt9611 *lt9611 = bridge_to_lt9611(bridge);
- struct hdmi_avi_infoframe avi_frame;
- int ret;
-
- lt9611_bridge_pre_enable(bridge);
-
- lt9611_mipi_input_digital(lt9611, mode);
- lt9611_pll_setup(lt9611, mode);
- lt9611_mipi_video_setup(lt9611, mode);
- lt9611_pcr_setup(lt9611, mode);
-
- ret = drm_hdmi_avi_infoframe_from_display_mode(&avi_frame,
- &lt9611->connector,
- mode);
- if (!ret)
- lt9611->vic = avi_frame.video_code;
-}
-
-static enum drm_connector_status lt9611_bridge_detect(struct drm_bridge *bridge)
-{
- return __lt9611_detect(bridge_to_lt9611(bridge));
-}
-
static struct edid *lt9611_bridge_get_edid(struct drm_bridge *bridge,
struct drm_connector *connector)
{
@@ -948,11 +891,11 @@ lt9611_atomic_get_input_bus_fmts(struct drm_bridge *bridge,
static const struct drm_bridge_funcs lt9611_bridge_funcs = {
.attach = lt9611_bridge_attach,
.mode_valid = lt9611_bridge_mode_valid,
- .mode_set = lt9611_bridge_mode_set,
.detect = lt9611_bridge_detect,
.get_edid = lt9611_bridge_get_edid,
.hpd_enable = lt9611_bridge_hpd_enable,
+ .atomic_pre_enable = lt9611_bridge_atomic_pre_enable,
.atomic_enable = lt9611_bridge_atomic_enable,
.atomic_disable = lt9611_bridge_atomic_disable,
.atomic_post_disable = lt9611_bridge_atomic_post_disable,
@@ -975,7 +918,7 @@ static int lt9611_parse_dt(struct device *dev,
lt9611->ac_mode = of_property_read_bool(dev->of_node, "lt,ac-mode");
- return 0;
+ return drm_of_find_panel_or_bridge(dev->of_node, 2, -1, NULL, &lt9611->next_bridge);
}
static int lt9611_gpio_init(struct lt9611 *lt9611)
@@ -1108,8 +1051,7 @@ static void lt9611_audio_exit(struct lt9611 *lt9611)
}
}
-static int lt9611_probe(struct i2c_client *client,
- const struct i2c_device_id *id)
+static int lt9611_probe(struct i2c_client *client)
{
struct lt9611 *lt9611;
struct device *dev = &client->dev;
@@ -1248,7 +1190,7 @@ static struct i2c_driver lt9611_driver = {
.name = "lt9611",
.of_match_table = lt9611_match_table,
},
- .probe = lt9611_probe,
+ .probe_new = lt9611_probe,
.remove = lt9611_remove,
.id_table = lt9611_id,
};
diff --git a/drivers/gpu/drm/bridge/lontium-lt9611uxc.c b/drivers/gpu/drm/bridge/lontium-lt9611uxc.c
index fa1ee6264d92..583daacf3705 100644
--- a/drivers/gpu/drm/bridge/lontium-lt9611uxc.c
+++ b/drivers/gpu/drm/bridge/lontium-lt9611uxc.c
@@ -844,8 +844,7 @@ static const struct attribute_group *lt9611uxc_attr_groups[] = {
NULL,
};
-static int lt9611uxc_probe(struct i2c_client *client,
- const struct i2c_device_id *id)
+static int lt9611uxc_probe(struct i2c_client *client)
{
struct lt9611uxc *lt9611uxc;
struct device *dev = &client->dev;
@@ -1012,7 +1011,7 @@ static struct i2c_driver lt9611uxc_driver = {
.of_match_table = lt9611uxc_match_table,
.dev_groups = lt9611uxc_attr_groups,
},
- .probe = lt9611uxc_probe,
+ .probe_new = lt9611uxc_probe,
.remove = lt9611uxc_remove,
.id_table = lt9611uxc_id,
};
diff --git a/drivers/gpu/drm/bridge/lvds-codec.c b/drivers/gpu/drm/bridge/lvds-codec.c
index 39e7004de720..67368f23d4aa 100644
--- a/drivers/gpu/drm/bridge/lvds-codec.c
+++ b/drivers/gpu/drm/bridge/lvds-codec.c
@@ -215,13 +215,11 @@ static int lvds_codec_probe(struct platform_device *pdev)
return 0;
}
-static int lvds_codec_remove(struct platform_device *pdev)
+static void lvds_codec_remove(struct platform_device *pdev)
{
struct lvds_codec *lvds_codec = platform_get_drvdata(pdev);
drm_bridge_remove(&lvds_codec->bridge);
-
- return 0;
}
static const struct of_device_id lvds_codec_match[] = {
@@ -243,7 +241,7 @@ MODULE_DEVICE_TABLE(of, lvds_codec_match);
static struct platform_driver lvds_codec_driver = {
.probe = lvds_codec_probe,
- .remove = lvds_codec_remove,
+ .remove_new = lvds_codec_remove,
.driver = {
.name = "lvds-codec",
.of_match_table = lvds_codec_match,
diff --git a/drivers/gpu/drm/bridge/megachips-stdpxxxx-ge-b850v3-fw.c b/drivers/gpu/drm/bridge/megachips-stdpxxxx-ge-b850v3-fw.c
index 97359f807bfc..4fc494d9084b 100644
--- a/drivers/gpu/drm/bridge/megachips-stdpxxxx-ge-b850v3-fw.c
+++ b/drivers/gpu/drm/bridge/megachips-stdpxxxx-ge-b850v3-fw.c
@@ -336,8 +336,7 @@ static int ge_b850v3_register(void)
"ge-b850v3-lvds-dp", ge_b850v3_lvds_ptr);
}
-static int stdp4028_ge_b850v3_fw_probe(struct i2c_client *stdp4028_i2c,
- const struct i2c_device_id *id)
+static int stdp4028_ge_b850v3_fw_probe(struct i2c_client *stdp4028_i2c)
{
struct device *dev = &stdp4028_i2c->dev;
int ret;
@@ -376,7 +375,7 @@ MODULE_DEVICE_TABLE(of, stdp4028_ge_b850v3_fw_match);
static struct i2c_driver stdp4028_ge_b850v3_fw_driver = {
.id_table = stdp4028_ge_b850v3_fw_i2c_table,
- .probe = stdp4028_ge_b850v3_fw_probe,
+ .probe_new = stdp4028_ge_b850v3_fw_probe,
.remove = stdp4028_ge_b850v3_fw_remove,
.driver = {
.name = "stdp4028-ge-b850v3-fw",
@@ -384,8 +383,7 @@ static struct i2c_driver stdp4028_ge_b850v3_fw_driver = {
},
};
-static int stdp2690_ge_b850v3_fw_probe(struct i2c_client *stdp2690_i2c,
- const struct i2c_device_id *id)
+static int stdp2690_ge_b850v3_fw_probe(struct i2c_client *stdp2690_i2c)
{
struct device *dev = &stdp2690_i2c->dev;
int ret;
@@ -424,7 +422,7 @@ MODULE_DEVICE_TABLE(of, stdp2690_ge_b850v3_fw_match);
static struct i2c_driver stdp2690_ge_b850v3_fw_driver = {
.id_table = stdp2690_ge_b850v3_fw_i2c_table,
- .probe = stdp2690_ge_b850v3_fw_probe,
+ .probe_new = stdp2690_ge_b850v3_fw_probe,
.remove = stdp2690_ge_b850v3_fw_remove,
.driver = {
.name = "stdp2690-ge-b850v3-fw",
@@ -440,7 +438,11 @@ static int __init stdpxxxx_ge_b850v3_init(void)
if (ret)
return ret;
- return i2c_add_driver(&stdp2690_ge_b850v3_fw_driver);
+ ret = i2c_add_driver(&stdp2690_ge_b850v3_fw_driver);
+ if (ret)
+ i2c_del_driver(&stdp4028_ge_b850v3_fw_driver);
+
+ return ret;
}
module_init(stdpxxxx_ge_b850v3_init);
diff --git a/drivers/gpu/drm/bridge/nwl-dsi.c b/drivers/gpu/drm/bridge/nwl-dsi.c
index 6dc2a4e191d7..4a5f5c4f5dcc 100644
--- a/drivers/gpu/drm/bridge/nwl-dsi.c
+++ b/drivers/gpu/drm/bridge/nwl-dsi.c
@@ -1199,7 +1199,7 @@ static int nwl_dsi_probe(struct platform_device *pdev)
return 0;
}
-static int nwl_dsi_remove(struct platform_device *pdev)
+static void nwl_dsi_remove(struct platform_device *pdev)
{
struct nwl_dsi *dsi = platform_get_drvdata(pdev);
@@ -1207,12 +1207,11 @@ static int nwl_dsi_remove(struct platform_device *pdev)
mipi_dsi_host_unregister(&dsi->dsi_host);
drm_bridge_remove(&dsi->bridge);
pm_runtime_disable(&pdev->dev);
- return 0;
}
static struct platform_driver nwl_dsi_driver = {
.probe = nwl_dsi_probe,
- .remove = nwl_dsi_remove,
+ .remove_new = nwl_dsi_remove,
.driver = {
.of_match_table = nwl_dsi_dt_ids,
.name = DRV_NAME,
diff --git a/drivers/gpu/drm/bridge/nxp-ptn3460.c b/drivers/gpu/drm/bridge/nxp-ptn3460.c
index 0851101a8c72..cd292a2f894c 100644
--- a/drivers/gpu/drm/bridge/nxp-ptn3460.c
+++ b/drivers/gpu/drm/bridge/nxp-ptn3460.c
@@ -257,8 +257,7 @@ static const struct drm_bridge_funcs ptn3460_bridge_funcs = {
.get_edid = ptn3460_get_edid,
};
-static int ptn3460_probe(struct i2c_client *client,
- const struct i2c_device_id *id)
+static int ptn3460_probe(struct i2c_client *client)
{
struct device *dev = &client->dev;
struct ptn3460_bridge *ptn_bridge;
@@ -336,7 +335,7 @@ MODULE_DEVICE_TABLE(of, ptn3460_match);
static struct i2c_driver ptn3460_driver = {
.id_table = ptn3460_i2c_table,
- .probe = ptn3460_probe,
+ .probe_new = ptn3460_probe,
.remove = ptn3460_remove,
.driver = {
.name = "nxp,ptn3460",
diff --git a/drivers/gpu/drm/bridge/panel.c b/drivers/gpu/drm/bridge/panel.c
index 216af76d0042..9316384b4474 100644
--- a/drivers/gpu/drm/bridge/panel.c
+++ b/drivers/gpu/drm/bridge/panel.c
@@ -81,6 +81,8 @@ static int panel_bridge_attach(struct drm_bridge *bridge,
return ret;
}
+ drm_panel_bridge_set_orientation(connector, bridge);
+
drm_connector_attach_encoder(&panel_bridge->connector,
bridge->encoder);
@@ -109,30 +111,82 @@ static void panel_bridge_detach(struct drm_bridge *bridge)
drm_connector_cleanup(connector);
}
-static void panel_bridge_pre_enable(struct drm_bridge *bridge)
+static void panel_bridge_atomic_pre_enable(struct drm_bridge *bridge,
+ struct drm_bridge_state *old_bridge_state)
{
struct panel_bridge *panel_bridge = drm_bridge_to_panel_bridge(bridge);
+ struct drm_atomic_state *atomic_state = old_bridge_state->base.state;
+ struct drm_encoder *encoder = bridge->encoder;
+ struct drm_crtc *crtc;
+ struct drm_crtc_state *old_crtc_state;
+
+ crtc = drm_atomic_get_new_crtc_for_encoder(atomic_state, encoder);
+ if (!crtc)
+ return;
+
+ old_crtc_state = drm_atomic_get_old_crtc_state(atomic_state, crtc);
+ if (old_crtc_state && old_crtc_state->self_refresh_active)
+ return;
drm_panel_prepare(panel_bridge->panel);
}
-static void panel_bridge_enable(struct drm_bridge *bridge)
+static void panel_bridge_atomic_enable(struct drm_bridge *bridge,
+ struct drm_bridge_state *old_bridge_state)
{
struct panel_bridge *panel_bridge = drm_bridge_to_panel_bridge(bridge);
+ struct drm_atomic_state *atomic_state = old_bridge_state->base.state;
+ struct drm_encoder *encoder = bridge->encoder;
+ struct drm_crtc *crtc;
+ struct drm_crtc_state *old_crtc_state;
+
+ crtc = drm_atomic_get_new_crtc_for_encoder(atomic_state, encoder);
+ if (!crtc)
+ return;
+
+ old_crtc_state = drm_atomic_get_old_crtc_state(atomic_state, crtc);
+ if (old_crtc_state && old_crtc_state->self_refresh_active)
+ return;
drm_panel_enable(panel_bridge->panel);
}
-static void panel_bridge_disable(struct drm_bridge *bridge)
+static void panel_bridge_atomic_disable(struct drm_bridge *bridge,
+ struct drm_bridge_state *old_bridge_state)
{
struct panel_bridge *panel_bridge = drm_bridge_to_panel_bridge(bridge);
+ struct drm_atomic_state *atomic_state = old_bridge_state->base.state;
+ struct drm_encoder *encoder = bridge->encoder;
+ struct drm_crtc *crtc;
+ struct drm_crtc_state *new_crtc_state;
+
+ crtc = drm_atomic_get_old_crtc_for_encoder(atomic_state, encoder);
+ if (!crtc)
+ return;
+
+ new_crtc_state = drm_atomic_get_new_crtc_state(atomic_state, crtc);
+ if (new_crtc_state && new_crtc_state->self_refresh_active)
+ return;
drm_panel_disable(panel_bridge->panel);
}
-static void panel_bridge_post_disable(struct drm_bridge *bridge)
+static void panel_bridge_atomic_post_disable(struct drm_bridge *bridge,
+ struct drm_bridge_state *old_bridge_state)
{
struct panel_bridge *panel_bridge = drm_bridge_to_panel_bridge(bridge);
+ struct drm_atomic_state *atomic_state = old_bridge_state->base.state;
+ struct drm_encoder *encoder = bridge->encoder;
+ struct drm_crtc *crtc;
+ struct drm_crtc_state *new_crtc_state;
+
+ crtc = drm_atomic_get_old_crtc_for_encoder(atomic_state, encoder);
+ if (!crtc)
+ return;
+
+ new_crtc_state = drm_atomic_get_new_crtc_state(atomic_state, crtc);
+ if (new_crtc_state && new_crtc_state->self_refresh_active)
+ return;
drm_panel_unprepare(panel_bridge->panel);
}
@@ -159,10 +213,10 @@ static void panel_bridge_debugfs_init(struct drm_bridge *bridge,
static const struct drm_bridge_funcs panel_bridge_bridge_funcs = {
.attach = panel_bridge_attach,
.detach = panel_bridge_detach,
- .pre_enable = panel_bridge_pre_enable,
- .enable = panel_bridge_enable,
- .disable = panel_bridge_disable,
- .post_disable = panel_bridge_post_disable,
+ .atomic_pre_enable = panel_bridge_atomic_pre_enable,
+ .atomic_enable = panel_bridge_atomic_enable,
+ .atomic_disable = panel_bridge_atomic_disable,
+ .atomic_post_disable = panel_bridge_atomic_post_disable,
.get_modes = panel_bridge_get_modes,
.atomic_reset = drm_atomic_helper_bridge_reset,
.atomic_duplicate_state = drm_atomic_helper_bridge_duplicate_state,
@@ -357,13 +411,16 @@ struct drm_bridge *devm_drm_panel_bridge_add_typed(struct device *dev,
return ERR_PTR(-ENOMEM);
bridge = drm_panel_bridge_add_typed(panel, connector_type);
- if (!IS_ERR(bridge)) {
- *ptr = bridge;
- devres_add(dev, ptr);
- } else {
+ if (IS_ERR(bridge)) {
devres_free(ptr);
+ return bridge;
}
+ bridge->pre_enable_prev_first = panel->prepare_prev_first;
+
+ *ptr = bridge;
+ devres_add(dev, ptr);
+
return bridge;
}
EXPORT_SYMBOL(devm_drm_panel_bridge_add_typed);
@@ -402,6 +459,8 @@ struct drm_bridge *drmm_panel_bridge_add(struct drm_device *drm,
if (ret)
return ERR_PTR(ret);
+ bridge->pre_enable_prev_first = panel->prepare_prev_first;
+
return bridge;
}
EXPORT_SYMBOL(drmm_panel_bridge_add);
diff --git a/drivers/gpu/drm/bridge/parade-ps8622.c b/drivers/gpu/drm/bridge/parade-ps8622.c
index 309de802863d..efa80e309b98 100644
--- a/drivers/gpu/drm/bridge/parade-ps8622.c
+++ b/drivers/gpu/drm/bridge/parade-ps8622.c
@@ -442,9 +442,9 @@ static const struct of_device_id ps8622_devices[] = {
};
MODULE_DEVICE_TABLE(of, ps8622_devices);
-static int ps8622_probe(struct i2c_client *client,
- const struct i2c_device_id *id)
+static int ps8622_probe(struct i2c_client *client)
{
+ const struct i2c_device_id *id = i2c_client_get_device_id(client);
struct device *dev = &client->dev;
struct ps8622_bridge *ps8622;
struct drm_bridge *panel_bridge;
@@ -496,7 +496,7 @@ static int ps8622_probe(struct i2c_client *client,
ps8622->lane_count = ps8622->max_lane_count;
}
- if (!of_find_property(dev->of_node, "use-external-pwm", NULL)) {
+ if (!of_property_read_bool(dev->of_node, "use-external-pwm")) {
ps8622->bl = backlight_device_register("ps8622-backlight",
dev, ps8622, &ps8622_backlight_ops,
NULL);
@@ -538,7 +538,7 @@ MODULE_DEVICE_TABLE(i2c, ps8622_i2c_table);
static struct i2c_driver ps8622_driver = {
.id_table = ps8622_i2c_table,
- .probe = ps8622_probe,
+ .probe_new = ps8622_probe,
.remove = ps8622_remove,
.driver = {
.name = "ps8622",
diff --git a/drivers/gpu/drm/bridge/parade-ps8640.c b/drivers/gpu/drm/bridge/parade-ps8640.c
index 083337a27966..c3eb45179405 100644
--- a/drivers/gpu/drm/bridge/parade-ps8640.c
+++ b/drivers/gpu/drm/bridge/parade-ps8640.c
@@ -15,6 +15,7 @@
#include <drm/display/drm_dp_aux_bus.h>
#include <drm/display/drm_dp_helper.h>
+#include <drm/drm_atomic_state_helper.h>
#include <drm/drm_bridge.h>
#include <drm/drm_edid.h>
#include <drm/drm_mipi_dsi.h>
@@ -104,6 +105,7 @@ struct ps8640 {
struct gpio_desc *gpio_reset;
struct gpio_desc *gpio_powerdown;
struct device_link *link;
+ struct edid *edid;
bool pre_enabled;
bool need_post_hpd_delay;
};
@@ -182,7 +184,7 @@ static int _ps8640_wait_hpd_asserted(struct ps8640 *ps_bridge, unsigned long wai
* actually connected to GPIO9).
*/
ret = regmap_read_poll_timeout(map, PAGE2_GPIO_H, status,
- status & PS_GPIO9, wait_us / 10, wait_us);
+ status & PS_GPIO9, 20000, wait_us);
/*
* The first time we see HPD go high after a reset we delay an extra
@@ -304,7 +306,6 @@ static ssize_t ps8640_aux_transfer_msg(struct drm_dp_aux *aux,
}
switch (data & SWAUX_STATUS_MASK) {
- /* Ignore the DEFER cases as they are already handled in hardware */
case SWAUX_STATUS_NACK:
case SWAUX_STATUS_I2C_NACK:
/*
@@ -321,6 +322,14 @@ static ssize_t ps8640_aux_transfer_msg(struct drm_dp_aux *aux,
case SWAUX_STATUS_ACKM:
len = data & SWAUX_M_MASK;
break;
+ case SWAUX_STATUS_DEFER:
+ case SWAUX_STATUS_I2C_DEFER:
+ if (is_native_aux)
+ msg->reply |= DP_AUX_NATIVE_REPLY_DEFER;
+ else
+ msg->reply |= DP_AUX_I2C_REPLY_DEFER;
+ len = data & SWAUX_M_MASK;
+ break;
case SWAUX_STATUS_INVALID:
return -EOPNOTSUPP;
case SWAUX_STATUS_TIMEOUT:
@@ -435,7 +444,8 @@ static const struct dev_pm_ops ps8640_pm_ops = {
pm_runtime_force_resume)
};
-static void ps8640_pre_enable(struct drm_bridge *bridge)
+static void ps8640_atomic_pre_enable(struct drm_bridge *bridge,
+ struct drm_bridge_state *old_bridge_state)
{
struct ps8640 *ps_bridge = bridge_to_ps8640(bridge);
struct regmap *map = ps_bridge->regmap[PAGE2_TOP_CNTL];
@@ -469,7 +479,8 @@ static void ps8640_pre_enable(struct drm_bridge *bridge)
ps_bridge->pre_enabled = true;
}
-static void ps8640_post_disable(struct drm_bridge *bridge)
+static void ps8640_atomic_post_disable(struct drm_bridge *bridge,
+ struct drm_bridge_state *old_bridge_state)
{
struct ps8640 *ps_bridge = bridge_to_ps8640(bridge);
@@ -532,34 +543,44 @@ static struct edid *ps8640_bridge_get_edid(struct drm_bridge *bridge,
struct drm_connector *connector)
{
struct ps8640 *ps_bridge = bridge_to_ps8640(bridge);
+ struct device *dev = &ps_bridge->page[PAGE0_DP_CNTL]->dev;
bool poweroff = !ps_bridge->pre_enabled;
- struct edid *edid;
- /*
- * When we end calling get_edid() triggered by an ioctl, i.e
- *
- * drm_mode_getconnector (ioctl)
- * -> drm_helper_probe_single_connector_modes
- * -> drm_bridge_connector_get_modes
- * -> ps8640_bridge_get_edid
- *
- * We need to make sure that what we need is enabled before reading
- * EDID, for this chip, we need to do a full poweron, otherwise it will
- * fail.
- */
- drm_bridge_chain_pre_enable(bridge);
+ if (!ps_bridge->edid) {
+ /*
+ * When we end calling get_edid() triggered by an ioctl, i.e
+ *
+ * drm_mode_getconnector (ioctl)
+ * -> drm_helper_probe_single_connector_modes
+ * -> drm_bridge_connector_get_modes
+ * -> ps8640_bridge_get_edid
+ *
+ * We need to make sure that what we need is enabled before
+ * reading EDID, for this chip, we need to do a full poweron,
+ * otherwise it will fail.
+ */
+ if (poweroff)
+ drm_atomic_bridge_chain_pre_enable(bridge,
+ connector->state->state);
- edid = drm_get_edid(connector,
- ps_bridge->page[PAGE0_DP_CNTL]->adapter);
+ ps_bridge->edid = drm_get_edid(connector,
+ ps_bridge->page[PAGE0_DP_CNTL]->adapter);
- /*
- * If we call the get_edid() function without having enabled the chip
- * before, return the chip to its original power state.
- */
- if (poweroff)
- drm_bridge_chain_post_disable(bridge);
+ /*
+ * If we call the get_edid() function without having enabled the
+ * chip before, return the chip to its original power state.
+ */
+ if (poweroff)
+ drm_atomic_bridge_chain_post_disable(bridge,
+ connector->state->state);
+ }
- return edid;
+ if (!ps_bridge->edid) {
+ dev_err(dev, "Failed to get EDID\n");
+ return NULL;
+ }
+
+ return drm_edid_duplicate(ps_bridge->edid);
}
static void ps8640_runtime_disable(void *data)
@@ -572,8 +593,11 @@ static const struct drm_bridge_funcs ps8640_bridge_funcs = {
.attach = ps8640_bridge_attach,
.detach = ps8640_bridge_detach,
.get_edid = ps8640_bridge_get_edid,
- .post_disable = ps8640_post_disable,
- .pre_enable = ps8640_pre_enable,
+ .atomic_post_disable = ps8640_atomic_post_disable,
+ .atomic_pre_enable = ps8640_atomic_pre_enable,
+ .atomic_duplicate_state = drm_atomic_helper_bridge_duplicate_state,
+ .atomic_destroy_state = drm_atomic_helper_bridge_destroy_state,
+ .atomic_reset = drm_atomic_helper_bridge_reset,
};
static int ps8640_bridge_get_dsi_resources(struct device *dev, struct ps8640 *ps_bridge)
@@ -727,13 +751,13 @@ static int ps8640_probe(struct i2c_client *client)
pm_runtime_enable(dev);
/*
* Powering on ps8640 takes ~300ms. To avoid wasting time on power
- * cycling ps8640 too often, set autosuspend_delay to 1000ms to ensure
+ * cycling ps8640 too often, set autosuspend_delay to 2000ms to ensure
* the bridge wouldn't suspend in between each _aux_transfer_msg() call
* during EDID read (~20ms in my experiment) and in between the last
* _aux_transfer_msg() call during EDID read and the _pre_enable() call
* (~100ms in my experiment).
*/
- pm_runtime_set_autosuspend_delay(dev, 1000);
+ pm_runtime_set_autosuspend_delay(dev, 2000);
pm_runtime_use_autosuspend(dev);
pm_suspend_ignore_children(dev, true);
ret = devm_add_action_or_reset(dev, ps8640_runtime_disable, dev);
@@ -753,6 +777,13 @@ static int ps8640_probe(struct i2c_client *client)
return ret;
}
+static void ps8640_remove(struct i2c_client *client)
+{
+ struct ps8640 *ps_bridge = i2c_get_clientdata(client);
+
+ kfree(ps_bridge->edid);
+}
+
static const struct of_device_id ps8640_match[] = {
{ .compatible = "parade,ps8640" },
{ }
@@ -761,6 +792,7 @@ MODULE_DEVICE_TABLE(of, ps8640_match);
static struct i2c_driver ps8640_driver = {
.probe_new = ps8640_probe,
+ .remove = ps8640_remove,
.driver = {
.name = "ps8640",
.of_match_table = ps8640_match,
diff --git a/drivers/gpu/drm/bridge/samsung-dsim.c b/drivers/gpu/drm/bridge/samsung-dsim.c
new file mode 100644
index 000000000000..e0a402a85787
--- /dev/null
+++ b/drivers/gpu/drm/bridge/samsung-dsim.c
@@ -0,0 +1,1967 @@
+// SPDX-License-Identifier: GPL-2.0-only
+/*
+ * Samsung MIPI DSIM bridge driver.
+ *
+ * Copyright (C) 2021 Amarula Solutions(India)
+ * Copyright (c) 2014 Samsung Electronics Co., Ltd
+ * Author: Jagan Teki <jagan@amarulasolutions.com>
+ *
+ * Based on exynos_drm_dsi from
+ * Tomasz Figa <t.figa@samsung.com>
+ */
+
+#include <asm/unaligned.h>
+
+#include <linux/clk.h>
+#include <linux/delay.h>
+#include <linux/irq.h>
+#include <linux/media-bus-format.h>
+#include <linux/of_device.h>
+#include <linux/phy/phy.h>
+
+#include <video/mipi_display.h>
+
+#include <drm/bridge/samsung-dsim.h>
+#include <drm/drm_panel.h>
+#include <drm/drm_print.h>
+
+/* returns true iff both arguments logically differs */
+#define NEQV(a, b) (!(a) ^ !(b))
+
+/* DSIM_STATUS */
+#define DSIM_STOP_STATE_DAT(x) (((x) & 0xf) << 0)
+#define DSIM_STOP_STATE_CLK BIT(8)
+#define DSIM_TX_READY_HS_CLK BIT(10)
+#define DSIM_PLL_STABLE BIT(31)
+
+/* DSIM_SWRST */
+#define DSIM_FUNCRST BIT(16)
+#define DSIM_SWRST BIT(0)
+
+/* DSIM_TIMEOUT */
+#define DSIM_LPDR_TIMEOUT(x) ((x) << 0)
+#define DSIM_BTA_TIMEOUT(x) ((x) << 16)
+
+/* DSIM_CLKCTRL */
+#define DSIM_ESC_PRESCALER(x) (((x) & 0xffff) << 0)
+#define DSIM_ESC_PRESCALER_MASK (0xffff << 0)
+#define DSIM_LANE_ESC_CLK_EN_CLK BIT(19)
+#define DSIM_LANE_ESC_CLK_EN_DATA(x) (((x) & 0xf) << 20)
+#define DSIM_LANE_ESC_CLK_EN_DATA_MASK (0xf << 20)
+#define DSIM_BYTE_CLKEN BIT(24)
+#define DSIM_BYTE_CLK_SRC(x) (((x) & 0x3) << 25)
+#define DSIM_BYTE_CLK_SRC_MASK (0x3 << 25)
+#define DSIM_PLL_BYPASS BIT(27)
+#define DSIM_ESC_CLKEN BIT(28)
+#define DSIM_TX_REQUEST_HSCLK BIT(31)
+
+/* DSIM_CONFIG */
+#define DSIM_LANE_EN_CLK BIT(0)
+#define DSIM_LANE_EN(x) (((x) & 0xf) << 1)
+#define DSIM_NUM_OF_DATA_LANE(x) (((x) & 0x3) << 5)
+#define DSIM_SUB_PIX_FORMAT(x) (((x) & 0x7) << 8)
+#define DSIM_MAIN_PIX_FORMAT_MASK (0x7 << 12)
+#define DSIM_MAIN_PIX_FORMAT_RGB888 (0x7 << 12)
+#define DSIM_MAIN_PIX_FORMAT_RGB666 (0x6 << 12)
+#define DSIM_MAIN_PIX_FORMAT_RGB666_P (0x5 << 12)
+#define DSIM_MAIN_PIX_FORMAT_RGB565 (0x4 << 12)
+#define DSIM_SUB_VC (((x) & 0x3) << 16)
+#define DSIM_MAIN_VC (((x) & 0x3) << 18)
+#define DSIM_HSA_DISABLE_MODE BIT(20)
+#define DSIM_HBP_DISABLE_MODE BIT(21)
+#define DSIM_HFP_DISABLE_MODE BIT(22)
+/*
+ * The i.MX 8M Mini Applications Processor Reference Manual,
+ * Rev. 3, 11/2020 Page 4091
+ * The i.MX 8M Nano Applications Processor Reference Manual,
+ * Rev. 2, 07/2022 Page 3058
+ * The i.MX 8M Plus Applications Processor Reference Manual,
+ * Rev. 1, 06/2021 Page 5436
+ * all claims this bit is 'HseDisableMode' with the definition
+ * 0 = Disables transfer
+ * 1 = Enables transfer
+ *
+ * This clearly states that HSE is not a disabled bit.
+ *
+ * The naming convention follows as per the manual and the
+ * driver logic is based on the MIPI_DSI_MODE_VIDEO_HSE flag.
+ */
+#define DSIM_HSE_DISABLE_MODE BIT(23)
+#define DSIM_AUTO_MODE BIT(24)
+#define DSIM_VIDEO_MODE BIT(25)
+#define DSIM_BURST_MODE BIT(26)
+#define DSIM_SYNC_INFORM BIT(27)
+#define DSIM_EOT_DISABLE BIT(28)
+#define DSIM_MFLUSH_VS BIT(29)
+/* This flag is valid only for exynos3250/3472/5260/5430 */
+#define DSIM_CLKLANE_STOP BIT(30)
+
+/* DSIM_ESCMODE */
+#define DSIM_TX_TRIGGER_RST BIT(4)
+#define DSIM_TX_LPDT_LP BIT(6)
+#define DSIM_CMD_LPDT_LP BIT(7)
+#define DSIM_FORCE_BTA BIT(16)
+#define DSIM_FORCE_STOP_STATE BIT(20)
+#define DSIM_STOP_STATE_CNT(x) (((x) & 0x7ff) << 21)
+#define DSIM_STOP_STATE_CNT_MASK (0x7ff << 21)
+
+/* DSIM_MDRESOL */
+#define DSIM_MAIN_STAND_BY BIT(31)
+#define DSIM_MAIN_VRESOL(x, num_bits) (((x) & ((1 << (num_bits)) - 1)) << 16)
+#define DSIM_MAIN_HRESOL(x, num_bits) (((x) & ((1 << (num_bits)) - 1)) << 0)
+
+/* DSIM_MVPORCH */
+#define DSIM_CMD_ALLOW(x) ((x) << 28)
+#define DSIM_STABLE_VFP(x) ((x) << 16)
+#define DSIM_MAIN_VBP(x) ((x) << 0)
+#define DSIM_CMD_ALLOW_MASK (0xf << 28)
+#define DSIM_STABLE_VFP_MASK (0x7ff << 16)
+#define DSIM_MAIN_VBP_MASK (0x7ff << 0)
+
+/* DSIM_MHPORCH */
+#define DSIM_MAIN_HFP(x) ((x) << 16)
+#define DSIM_MAIN_HBP(x) ((x) << 0)
+#define DSIM_MAIN_HFP_MASK ((0xffff) << 16)
+#define DSIM_MAIN_HBP_MASK ((0xffff) << 0)
+
+/* DSIM_MSYNC */
+#define DSIM_MAIN_VSA(x) ((x) << 22)
+#define DSIM_MAIN_HSA(x) ((x) << 0)
+#define DSIM_MAIN_VSA_MASK ((0x3ff) << 22)
+#define DSIM_MAIN_HSA_MASK ((0xffff) << 0)
+
+/* DSIM_SDRESOL */
+#define DSIM_SUB_STANDY(x) ((x) << 31)
+#define DSIM_SUB_VRESOL(x) ((x) << 16)
+#define DSIM_SUB_HRESOL(x) ((x) << 0)
+#define DSIM_SUB_STANDY_MASK ((0x1) << 31)
+#define DSIM_SUB_VRESOL_MASK ((0x7ff) << 16)
+#define DSIM_SUB_HRESOL_MASK ((0x7ff) << 0)
+
+/* DSIM_INTSRC */
+#define DSIM_INT_PLL_STABLE BIT(31)
+#define DSIM_INT_SW_RST_RELEASE BIT(30)
+#define DSIM_INT_SFR_FIFO_EMPTY BIT(29)
+#define DSIM_INT_SFR_HDR_FIFO_EMPTY BIT(28)
+#define DSIM_INT_BTA BIT(25)
+#define DSIM_INT_FRAME_DONE BIT(24)
+#define DSIM_INT_RX_TIMEOUT BIT(21)
+#define DSIM_INT_BTA_TIMEOUT BIT(20)
+#define DSIM_INT_RX_DONE BIT(18)
+#define DSIM_INT_RX_TE BIT(17)
+#define DSIM_INT_RX_ACK BIT(16)
+#define DSIM_INT_RX_ECC_ERR BIT(15)
+#define DSIM_INT_RX_CRC_ERR BIT(14)
+
+/* DSIM_FIFOCTRL */
+#define DSIM_RX_DATA_FULL BIT(25)
+#define DSIM_RX_DATA_EMPTY BIT(24)
+#define DSIM_SFR_HEADER_FULL BIT(23)
+#define DSIM_SFR_HEADER_EMPTY BIT(22)
+#define DSIM_SFR_PAYLOAD_FULL BIT(21)
+#define DSIM_SFR_PAYLOAD_EMPTY BIT(20)
+#define DSIM_I80_HEADER_FULL BIT(19)
+#define DSIM_I80_HEADER_EMPTY BIT(18)
+#define DSIM_I80_PAYLOAD_FULL BIT(17)
+#define DSIM_I80_PAYLOAD_EMPTY BIT(16)
+#define DSIM_SD_HEADER_FULL BIT(15)
+#define DSIM_SD_HEADER_EMPTY BIT(14)
+#define DSIM_SD_PAYLOAD_FULL BIT(13)
+#define DSIM_SD_PAYLOAD_EMPTY BIT(12)
+#define DSIM_MD_HEADER_FULL BIT(11)
+#define DSIM_MD_HEADER_EMPTY BIT(10)
+#define DSIM_MD_PAYLOAD_FULL BIT(9)
+#define DSIM_MD_PAYLOAD_EMPTY BIT(8)
+#define DSIM_RX_FIFO BIT(4)
+#define DSIM_SFR_FIFO BIT(3)
+#define DSIM_I80_FIFO BIT(2)
+#define DSIM_SD_FIFO BIT(1)
+#define DSIM_MD_FIFO BIT(0)
+
+/* DSIM_PHYACCHR */
+#define DSIM_AFC_EN BIT(14)
+#define DSIM_AFC_CTL(x) (((x) & 0x7) << 5)
+
+/* DSIM_PLLCTRL */
+#define DSIM_FREQ_BAND(x) ((x) << 24)
+#define DSIM_PLL_EN BIT(23)
+#define DSIM_PLL_P(x, offset) ((x) << (offset))
+#define DSIM_PLL_M(x) ((x) << 4)
+#define DSIM_PLL_S(x) ((x) << 1)
+
+/* DSIM_PHYCTRL */
+#define DSIM_PHYCTRL_ULPS_EXIT(x) (((x) & 0x1ff) << 0)
+#define DSIM_PHYCTRL_B_DPHYCTL_VREG_LP BIT(30)
+#define DSIM_PHYCTRL_B_DPHYCTL_SLEW_UP BIT(14)
+
+/* DSIM_PHYTIMING */
+#define DSIM_PHYTIMING_LPX(x) ((x) << 8)
+#define DSIM_PHYTIMING_HS_EXIT(x) ((x) << 0)
+
+/* DSIM_PHYTIMING1 */
+#define DSIM_PHYTIMING1_CLK_PREPARE(x) ((x) << 24)
+#define DSIM_PHYTIMING1_CLK_ZERO(x) ((x) << 16)
+#define DSIM_PHYTIMING1_CLK_POST(x) ((x) << 8)
+#define DSIM_PHYTIMING1_CLK_TRAIL(x) ((x) << 0)
+
+/* DSIM_PHYTIMING2 */
+#define DSIM_PHYTIMING2_HS_PREPARE(x) ((x) << 16)
+#define DSIM_PHYTIMING2_HS_ZERO(x) ((x) << 8)
+#define DSIM_PHYTIMING2_HS_TRAIL(x) ((x) << 0)
+
+#define DSI_MAX_BUS_WIDTH 4
+#define DSI_NUM_VIRTUAL_CHANNELS 4
+#define DSI_TX_FIFO_SIZE 2048
+#define DSI_RX_FIFO_SIZE 256
+#define DSI_XFER_TIMEOUT_MS 100
+#define DSI_RX_FIFO_EMPTY 0x30800002
+
+#define OLD_SCLK_MIPI_CLK_NAME "pll_clk"
+
+static const char *const clk_names[5] = {
+ "bus_clk",
+ "sclk_mipi",
+ "phyclk_mipidphy0_bitclkdiv8",
+ "phyclk_mipidphy0_rxclkesc0",
+ "sclk_rgb_vclk_to_dsim0"
+};
+
+enum samsung_dsim_transfer_type {
+ EXYNOS_DSI_TX,
+ EXYNOS_DSI_RX,
+};
+
+enum reg_idx {
+ DSIM_STATUS_REG, /* Status register */
+ DSIM_SWRST_REG, /* Software reset register */
+ DSIM_CLKCTRL_REG, /* Clock control register */
+ DSIM_TIMEOUT_REG, /* Time out register */
+ DSIM_CONFIG_REG, /* Configuration register */
+ DSIM_ESCMODE_REG, /* Escape mode register */
+ DSIM_MDRESOL_REG,
+ DSIM_MVPORCH_REG, /* Main display Vporch register */
+ DSIM_MHPORCH_REG, /* Main display Hporch register */
+ DSIM_MSYNC_REG, /* Main display sync area register */
+ DSIM_INTSRC_REG, /* Interrupt source register */
+ DSIM_INTMSK_REG, /* Interrupt mask register */
+ DSIM_PKTHDR_REG, /* Packet Header FIFO register */
+ DSIM_PAYLOAD_REG, /* Payload FIFO register */
+ DSIM_RXFIFO_REG, /* Read FIFO register */
+ DSIM_FIFOCTRL_REG, /* FIFO status and control register */
+ DSIM_PLLCTRL_REG, /* PLL control register */
+ DSIM_PHYCTRL_REG,
+ DSIM_PHYTIMING_REG,
+ DSIM_PHYTIMING1_REG,
+ DSIM_PHYTIMING2_REG,
+ NUM_REGS
+};
+
+static const unsigned int exynos_reg_ofs[] = {
+ [DSIM_STATUS_REG] = 0x00,
+ [DSIM_SWRST_REG] = 0x04,
+ [DSIM_CLKCTRL_REG] = 0x08,
+ [DSIM_TIMEOUT_REG] = 0x0c,
+ [DSIM_CONFIG_REG] = 0x10,
+ [DSIM_ESCMODE_REG] = 0x14,
+ [DSIM_MDRESOL_REG] = 0x18,
+ [DSIM_MVPORCH_REG] = 0x1c,
+ [DSIM_MHPORCH_REG] = 0x20,
+ [DSIM_MSYNC_REG] = 0x24,
+ [DSIM_INTSRC_REG] = 0x2c,
+ [DSIM_INTMSK_REG] = 0x30,
+ [DSIM_PKTHDR_REG] = 0x34,
+ [DSIM_PAYLOAD_REG] = 0x38,
+ [DSIM_RXFIFO_REG] = 0x3c,
+ [DSIM_FIFOCTRL_REG] = 0x44,
+ [DSIM_PLLCTRL_REG] = 0x4c,
+ [DSIM_PHYCTRL_REG] = 0x5c,
+ [DSIM_PHYTIMING_REG] = 0x64,
+ [DSIM_PHYTIMING1_REG] = 0x68,
+ [DSIM_PHYTIMING2_REG] = 0x6c,
+};
+
+static const unsigned int exynos5433_reg_ofs[] = {
+ [DSIM_STATUS_REG] = 0x04,
+ [DSIM_SWRST_REG] = 0x0C,
+ [DSIM_CLKCTRL_REG] = 0x10,
+ [DSIM_TIMEOUT_REG] = 0x14,
+ [DSIM_CONFIG_REG] = 0x18,
+ [DSIM_ESCMODE_REG] = 0x1C,
+ [DSIM_MDRESOL_REG] = 0x20,
+ [DSIM_MVPORCH_REG] = 0x24,
+ [DSIM_MHPORCH_REG] = 0x28,
+ [DSIM_MSYNC_REG] = 0x2C,
+ [DSIM_INTSRC_REG] = 0x34,
+ [DSIM_INTMSK_REG] = 0x38,
+ [DSIM_PKTHDR_REG] = 0x3C,
+ [DSIM_PAYLOAD_REG] = 0x40,
+ [DSIM_RXFIFO_REG] = 0x44,
+ [DSIM_FIFOCTRL_REG] = 0x4C,
+ [DSIM_PLLCTRL_REG] = 0x94,
+ [DSIM_PHYCTRL_REG] = 0xA4,
+ [DSIM_PHYTIMING_REG] = 0xB4,
+ [DSIM_PHYTIMING1_REG] = 0xB8,
+ [DSIM_PHYTIMING2_REG] = 0xBC,
+};
+
+enum reg_value_idx {
+ RESET_TYPE,
+ PLL_TIMER,
+ STOP_STATE_CNT,
+ PHYCTRL_ULPS_EXIT,
+ PHYCTRL_VREG_LP,
+ PHYCTRL_SLEW_UP,
+ PHYTIMING_LPX,
+ PHYTIMING_HS_EXIT,
+ PHYTIMING_CLK_PREPARE,
+ PHYTIMING_CLK_ZERO,
+ PHYTIMING_CLK_POST,
+ PHYTIMING_CLK_TRAIL,
+ PHYTIMING_HS_PREPARE,
+ PHYTIMING_HS_ZERO,
+ PHYTIMING_HS_TRAIL
+};
+
+static const unsigned int reg_values[] = {
+ [RESET_TYPE] = DSIM_SWRST,
+ [PLL_TIMER] = 500,
+ [STOP_STATE_CNT] = 0xf,
+ [PHYCTRL_ULPS_EXIT] = DSIM_PHYCTRL_ULPS_EXIT(0x0af),
+ [PHYCTRL_VREG_LP] = 0,
+ [PHYCTRL_SLEW_UP] = 0,
+ [PHYTIMING_LPX] = DSIM_PHYTIMING_LPX(0x06),
+ [PHYTIMING_HS_EXIT] = DSIM_PHYTIMING_HS_EXIT(0x0b),
+ [PHYTIMING_CLK_PREPARE] = DSIM_PHYTIMING1_CLK_PREPARE(0x07),
+ [PHYTIMING_CLK_ZERO] = DSIM_PHYTIMING1_CLK_ZERO(0x27),
+ [PHYTIMING_CLK_POST] = DSIM_PHYTIMING1_CLK_POST(0x0d),
+ [PHYTIMING_CLK_TRAIL] = DSIM_PHYTIMING1_CLK_TRAIL(0x08),
+ [PHYTIMING_HS_PREPARE] = DSIM_PHYTIMING2_HS_PREPARE(0x09),
+ [PHYTIMING_HS_ZERO] = DSIM_PHYTIMING2_HS_ZERO(0x0d),
+ [PHYTIMING_HS_TRAIL] = DSIM_PHYTIMING2_HS_TRAIL(0x0b),
+};
+
+static const unsigned int exynos5422_reg_values[] = {
+ [RESET_TYPE] = DSIM_SWRST,
+ [PLL_TIMER] = 500,
+ [STOP_STATE_CNT] = 0xf,
+ [PHYCTRL_ULPS_EXIT] = DSIM_PHYCTRL_ULPS_EXIT(0xaf),
+ [PHYCTRL_VREG_LP] = 0,
+ [PHYCTRL_SLEW_UP] = 0,
+ [PHYTIMING_LPX] = DSIM_PHYTIMING_LPX(0x08),
+ [PHYTIMING_HS_EXIT] = DSIM_PHYTIMING_HS_EXIT(0x0d),
+ [PHYTIMING_CLK_PREPARE] = DSIM_PHYTIMING1_CLK_PREPARE(0x09),
+ [PHYTIMING_CLK_ZERO] = DSIM_PHYTIMING1_CLK_ZERO(0x30),
+ [PHYTIMING_CLK_POST] = DSIM_PHYTIMING1_CLK_POST(0x0e),
+ [PHYTIMING_CLK_TRAIL] = DSIM_PHYTIMING1_CLK_TRAIL(0x0a),
+ [PHYTIMING_HS_PREPARE] = DSIM_PHYTIMING2_HS_PREPARE(0x0c),
+ [PHYTIMING_HS_ZERO] = DSIM_PHYTIMING2_HS_ZERO(0x11),
+ [PHYTIMING_HS_TRAIL] = DSIM_PHYTIMING2_HS_TRAIL(0x0d),
+};
+
+static const unsigned int exynos5433_reg_values[] = {
+ [RESET_TYPE] = DSIM_FUNCRST,
+ [PLL_TIMER] = 22200,
+ [STOP_STATE_CNT] = 0xa,
+ [PHYCTRL_ULPS_EXIT] = DSIM_PHYCTRL_ULPS_EXIT(0x190),
+ [PHYCTRL_VREG_LP] = DSIM_PHYCTRL_B_DPHYCTL_VREG_LP,
+ [PHYCTRL_SLEW_UP] = DSIM_PHYCTRL_B_DPHYCTL_SLEW_UP,
+ [PHYTIMING_LPX] = DSIM_PHYTIMING_LPX(0x07),
+ [PHYTIMING_HS_EXIT] = DSIM_PHYTIMING_HS_EXIT(0x0c),
+ [PHYTIMING_CLK_PREPARE] = DSIM_PHYTIMING1_CLK_PREPARE(0x09),
+ [PHYTIMING_CLK_ZERO] = DSIM_PHYTIMING1_CLK_ZERO(0x2d),
+ [PHYTIMING_CLK_POST] = DSIM_PHYTIMING1_CLK_POST(0x0e),
+ [PHYTIMING_CLK_TRAIL] = DSIM_PHYTIMING1_CLK_TRAIL(0x09),
+ [PHYTIMING_HS_PREPARE] = DSIM_PHYTIMING2_HS_PREPARE(0x0b),
+ [PHYTIMING_HS_ZERO] = DSIM_PHYTIMING2_HS_ZERO(0x10),
+ [PHYTIMING_HS_TRAIL] = DSIM_PHYTIMING2_HS_TRAIL(0x0c),
+};
+
+static const unsigned int imx8mm_dsim_reg_values[] = {
+ [RESET_TYPE] = DSIM_SWRST,
+ [PLL_TIMER] = 500,
+ [STOP_STATE_CNT] = 0xf,
+ [PHYCTRL_ULPS_EXIT] = 0,
+ [PHYCTRL_VREG_LP] = 0,
+ [PHYCTRL_SLEW_UP] = 0,
+ [PHYTIMING_LPX] = DSIM_PHYTIMING_LPX(0x06),
+ [PHYTIMING_HS_EXIT] = DSIM_PHYTIMING_HS_EXIT(0x0b),
+ [PHYTIMING_CLK_PREPARE] = DSIM_PHYTIMING1_CLK_PREPARE(0x07),
+ [PHYTIMING_CLK_ZERO] = DSIM_PHYTIMING1_CLK_ZERO(0x26),
+ [PHYTIMING_CLK_POST] = DSIM_PHYTIMING1_CLK_POST(0x0d),
+ [PHYTIMING_CLK_TRAIL] = DSIM_PHYTIMING1_CLK_TRAIL(0x08),
+ [PHYTIMING_HS_PREPARE] = DSIM_PHYTIMING2_HS_PREPARE(0x08),
+ [PHYTIMING_HS_ZERO] = DSIM_PHYTIMING2_HS_ZERO(0x0d),
+ [PHYTIMING_HS_TRAIL] = DSIM_PHYTIMING2_HS_TRAIL(0x0b),
+};
+
+static const struct samsung_dsim_driver_data exynos3_dsi_driver_data = {
+ .reg_ofs = exynos_reg_ofs,
+ .plltmr_reg = 0x50,
+ .has_freqband = 1,
+ .has_clklane_stop = 1,
+ .num_clks = 2,
+ .max_freq = 1000,
+ .wait_for_reset = 1,
+ .num_bits_resol = 11,
+ .pll_p_offset = 13,
+ .reg_values = reg_values,
+};
+
+static const struct samsung_dsim_driver_data exynos4_dsi_driver_data = {
+ .reg_ofs = exynos_reg_ofs,
+ .plltmr_reg = 0x50,
+ .has_freqband = 1,
+ .has_clklane_stop = 1,
+ .num_clks = 2,
+ .max_freq = 1000,
+ .wait_for_reset = 1,
+ .num_bits_resol = 11,
+ .pll_p_offset = 13,
+ .reg_values = reg_values,
+};
+
+static const struct samsung_dsim_driver_data exynos5_dsi_driver_data = {
+ .reg_ofs = exynos_reg_ofs,
+ .plltmr_reg = 0x58,
+ .num_clks = 2,
+ .max_freq = 1000,
+ .wait_for_reset = 1,
+ .num_bits_resol = 11,
+ .pll_p_offset = 13,
+ .reg_values = reg_values,
+};
+
+static const struct samsung_dsim_driver_data exynos5433_dsi_driver_data = {
+ .reg_ofs = exynos5433_reg_ofs,
+ .plltmr_reg = 0xa0,
+ .has_clklane_stop = 1,
+ .num_clks = 5,
+ .max_freq = 1500,
+ .wait_for_reset = 0,
+ .num_bits_resol = 12,
+ .pll_p_offset = 13,
+ .reg_values = exynos5433_reg_values,
+};
+
+static const struct samsung_dsim_driver_data exynos5422_dsi_driver_data = {
+ .reg_ofs = exynos5433_reg_ofs,
+ .plltmr_reg = 0xa0,
+ .has_clklane_stop = 1,
+ .num_clks = 2,
+ .max_freq = 1500,
+ .wait_for_reset = 1,
+ .num_bits_resol = 12,
+ .pll_p_offset = 13,
+ .reg_values = exynos5422_reg_values,
+};
+
+static const struct samsung_dsim_driver_data imx8mm_dsi_driver_data = {
+ .reg_ofs = exynos5433_reg_ofs,
+ .plltmr_reg = 0xa0,
+ .has_clklane_stop = 1,
+ .num_clks = 2,
+ .max_freq = 2100,
+ .wait_for_reset = 0,
+ .num_bits_resol = 12,
+ /*
+ * Unlike Exynos, PLL_P(PMS_P) offset 14 is used in i.MX8M Mini/Nano/Plus
+ * downstream driver - drivers/gpu/drm/bridge/sec-dsim.c
+ */
+ .pll_p_offset = 14,
+ .reg_values = imx8mm_dsim_reg_values,
+};
+
+static const struct samsung_dsim_driver_data *
+samsung_dsim_types[DSIM_TYPE_COUNT] = {
+ [DSIM_TYPE_EXYNOS3250] = &exynos3_dsi_driver_data,
+ [DSIM_TYPE_EXYNOS4210] = &exynos4_dsi_driver_data,
+ [DSIM_TYPE_EXYNOS5410] = &exynos5_dsi_driver_data,
+ [DSIM_TYPE_EXYNOS5422] = &exynos5422_dsi_driver_data,
+ [DSIM_TYPE_EXYNOS5433] = &exynos5433_dsi_driver_data,
+ [DSIM_TYPE_IMX8MM] = &imx8mm_dsi_driver_data,
+ [DSIM_TYPE_IMX8MP] = &imx8mm_dsi_driver_data,
+};
+
+static inline struct samsung_dsim *host_to_dsi(struct mipi_dsi_host *h)
+{
+ return container_of(h, struct samsung_dsim, dsi_host);
+}
+
+static inline struct samsung_dsim *bridge_to_dsi(struct drm_bridge *b)
+{
+ return container_of(b, struct samsung_dsim, bridge);
+}
+
+static inline void samsung_dsim_write(struct samsung_dsim *dsi,
+ enum reg_idx idx, u32 val)
+{
+ writel(val, dsi->reg_base + dsi->driver_data->reg_ofs[idx]);
+}
+
+static inline u32 samsung_dsim_read(struct samsung_dsim *dsi, enum reg_idx idx)
+{
+ return readl(dsi->reg_base + dsi->driver_data->reg_ofs[idx]);
+}
+
+static void samsung_dsim_wait_for_reset(struct samsung_dsim *dsi)
+{
+ if (wait_for_completion_timeout(&dsi->completed, msecs_to_jiffies(300)))
+ return;
+
+ dev_err(dsi->dev, "timeout waiting for reset\n");
+}
+
+static void samsung_dsim_reset(struct samsung_dsim *dsi)
+{
+ u32 reset_val = dsi->driver_data->reg_values[RESET_TYPE];
+
+ reinit_completion(&dsi->completed);
+ samsung_dsim_write(dsi, DSIM_SWRST_REG, reset_val);
+}
+
+#ifndef MHZ
+#define MHZ (1000 * 1000)
+#endif
+
+static unsigned long samsung_dsim_pll_find_pms(struct samsung_dsim *dsi,
+ unsigned long fin,
+ unsigned long fout,
+ u8 *p, u16 *m, u8 *s)
+{
+ const struct samsung_dsim_driver_data *driver_data = dsi->driver_data;
+ unsigned long best_freq = 0;
+ u32 min_delta = 0xffffffff;
+ u8 p_min, p_max;
+ u8 _p, best_p;
+ u16 _m, best_m;
+ u8 _s, best_s;
+
+ p_min = DIV_ROUND_UP(fin, (12 * MHZ));
+ p_max = fin / (6 * MHZ);
+
+ for (_p = p_min; _p <= p_max; ++_p) {
+ for (_s = 0; _s <= 5; ++_s) {
+ u64 tmp;
+ u32 delta;
+
+ tmp = (u64)fout * (_p << _s);
+ do_div(tmp, fin);
+ _m = tmp;
+ if (_m < 41 || _m > 125)
+ continue;
+
+ tmp = (u64)_m * fin;
+ do_div(tmp, _p);
+ if (tmp < 500 * MHZ ||
+ tmp > driver_data->max_freq * MHZ)
+ continue;
+
+ tmp = (u64)_m * fin;
+ do_div(tmp, _p << _s);
+
+ delta = abs(fout - tmp);
+ if (delta < min_delta) {
+ best_p = _p;
+ best_m = _m;
+ best_s = _s;
+ min_delta = delta;
+ best_freq = tmp;
+ }
+ }
+ }
+
+ if (best_freq) {
+ *p = best_p;
+ *m = best_m;
+ *s = best_s;
+ }
+
+ return best_freq;
+}
+
+static unsigned long samsung_dsim_set_pll(struct samsung_dsim *dsi,
+ unsigned long freq)
+{
+ const struct samsung_dsim_driver_data *driver_data = dsi->driver_data;
+ unsigned long fin, fout;
+ int timeout;
+ u8 p, s;
+ u16 m;
+ u32 reg;
+
+ fin = dsi->pll_clk_rate;
+ fout = samsung_dsim_pll_find_pms(dsi, fin, freq, &p, &m, &s);
+ if (!fout) {
+ dev_err(dsi->dev,
+ "failed to find PLL PMS for requested frequency\n");
+ return 0;
+ }
+ dev_dbg(dsi->dev, "PLL freq %lu, (p %d, m %d, s %d)\n", fout, p, m, s);
+
+ writel(driver_data->reg_values[PLL_TIMER],
+ dsi->reg_base + driver_data->plltmr_reg);
+
+ reg = DSIM_PLL_EN | DSIM_PLL_P(p, driver_data->pll_p_offset) |
+ DSIM_PLL_M(m) | DSIM_PLL_S(s);
+
+ if (driver_data->has_freqband) {
+ static const unsigned long freq_bands[] = {
+ 100 * MHZ, 120 * MHZ, 160 * MHZ, 200 * MHZ,
+ 270 * MHZ, 320 * MHZ, 390 * MHZ, 450 * MHZ,
+ 510 * MHZ, 560 * MHZ, 640 * MHZ, 690 * MHZ,
+ 770 * MHZ, 870 * MHZ, 950 * MHZ,
+ };
+ int band;
+
+ for (band = 0; band < ARRAY_SIZE(freq_bands); ++band)
+ if (fout < freq_bands[band])
+ break;
+
+ dev_dbg(dsi->dev, "band %d\n", band);
+
+ reg |= DSIM_FREQ_BAND(band);
+ }
+
+ samsung_dsim_write(dsi, DSIM_PLLCTRL_REG, reg);
+
+ timeout = 1000;
+ do {
+ if (timeout-- == 0) {
+ dev_err(dsi->dev, "PLL failed to stabilize\n");
+ return 0;
+ }
+ reg = samsung_dsim_read(dsi, DSIM_STATUS_REG);
+ } while ((reg & DSIM_PLL_STABLE) == 0);
+
+ return fout;
+}
+
+static int samsung_dsim_enable_clock(struct samsung_dsim *dsi)
+{
+ unsigned long hs_clk, byte_clk, esc_clk;
+ unsigned long esc_div;
+ u32 reg;
+
+ hs_clk = samsung_dsim_set_pll(dsi, dsi->burst_clk_rate);
+ if (!hs_clk) {
+ dev_err(dsi->dev, "failed to configure DSI PLL\n");
+ return -EFAULT;
+ }
+
+ byte_clk = hs_clk / 8;
+ esc_div = DIV_ROUND_UP(byte_clk, dsi->esc_clk_rate);
+ esc_clk = byte_clk / esc_div;
+
+ if (esc_clk > 20 * MHZ) {
+ ++esc_div;
+ esc_clk = byte_clk / esc_div;
+ }
+
+ dev_dbg(dsi->dev, "hs_clk = %lu, byte_clk = %lu, esc_clk = %lu\n",
+ hs_clk, byte_clk, esc_clk);
+
+ reg = samsung_dsim_read(dsi, DSIM_CLKCTRL_REG);
+ reg &= ~(DSIM_ESC_PRESCALER_MASK | DSIM_LANE_ESC_CLK_EN_CLK
+ | DSIM_LANE_ESC_CLK_EN_DATA_MASK | DSIM_PLL_BYPASS
+ | DSIM_BYTE_CLK_SRC_MASK);
+ reg |= DSIM_ESC_CLKEN | DSIM_BYTE_CLKEN
+ | DSIM_ESC_PRESCALER(esc_div)
+ | DSIM_LANE_ESC_CLK_EN_CLK
+ | DSIM_LANE_ESC_CLK_EN_DATA(BIT(dsi->lanes) - 1)
+ | DSIM_BYTE_CLK_SRC(0)
+ | DSIM_TX_REQUEST_HSCLK;
+ samsung_dsim_write(dsi, DSIM_CLKCTRL_REG, reg);
+
+ return 0;
+}
+
+static void samsung_dsim_set_phy_ctrl(struct samsung_dsim *dsi)
+{
+ const struct samsung_dsim_driver_data *driver_data = dsi->driver_data;
+ const unsigned int *reg_values = driver_data->reg_values;
+ u32 reg;
+
+ if (driver_data->has_freqband)
+ return;
+
+ /* B D-PHY: D-PHY Master & Slave Analog Block control */
+ reg = reg_values[PHYCTRL_ULPS_EXIT] | reg_values[PHYCTRL_VREG_LP] |
+ reg_values[PHYCTRL_SLEW_UP];
+ samsung_dsim_write(dsi, DSIM_PHYCTRL_REG, reg);
+
+ /*
+ * T LPX: Transmitted length of any Low-Power state period
+ * T HS-EXIT: Time that the transmitter drives LP-11 following a HS
+ * burst
+ */
+ reg = reg_values[PHYTIMING_LPX] | reg_values[PHYTIMING_HS_EXIT];
+ samsung_dsim_write(dsi, DSIM_PHYTIMING_REG, reg);
+
+ /*
+ * T CLK-PREPARE: Time that the transmitter drives the Clock Lane LP-00
+ * Line state immediately before the HS-0 Line state starting the
+ * HS transmission
+ * T CLK-ZERO: Time that the transmitter drives the HS-0 state prior to
+ * transmitting the Clock.
+ * T CLK_POST: Time that the transmitter continues to send HS clock
+ * after the last associated Data Lane has transitioned to LP Mode
+ * Interval is defined as the period from the end of T HS-TRAIL to
+ * the beginning of T CLK-TRAIL
+ * T CLK-TRAIL: Time that the transmitter drives the HS-0 state after
+ * the last payload clock bit of a HS transmission burst
+ */
+ reg = reg_values[PHYTIMING_CLK_PREPARE] |
+ reg_values[PHYTIMING_CLK_ZERO] |
+ reg_values[PHYTIMING_CLK_POST] |
+ reg_values[PHYTIMING_CLK_TRAIL];
+
+ samsung_dsim_write(dsi, DSIM_PHYTIMING1_REG, reg);
+
+ /*
+ * T HS-PREPARE: Time that the transmitter drives the Data Lane LP-00
+ * Line state immediately before the HS-0 Line state starting the
+ * HS transmission
+ * T HS-ZERO: Time that the transmitter drives the HS-0 state prior to
+ * transmitting the Sync sequence.
+ * T HS-TRAIL: Time that the transmitter drives the flipped differential
+ * state after last payload data bit of a HS transmission burst
+ */
+ reg = reg_values[PHYTIMING_HS_PREPARE] | reg_values[PHYTIMING_HS_ZERO] |
+ reg_values[PHYTIMING_HS_TRAIL];
+ samsung_dsim_write(dsi, DSIM_PHYTIMING2_REG, reg);
+}
+
+static void samsung_dsim_disable_clock(struct samsung_dsim *dsi)
+{
+ u32 reg;
+
+ reg = samsung_dsim_read(dsi, DSIM_CLKCTRL_REG);
+ reg &= ~(DSIM_LANE_ESC_CLK_EN_CLK | DSIM_LANE_ESC_CLK_EN_DATA_MASK
+ | DSIM_ESC_CLKEN | DSIM_BYTE_CLKEN);
+ samsung_dsim_write(dsi, DSIM_CLKCTRL_REG, reg);
+
+ reg = samsung_dsim_read(dsi, DSIM_PLLCTRL_REG);
+ reg &= ~DSIM_PLL_EN;
+ samsung_dsim_write(dsi, DSIM_PLLCTRL_REG, reg);
+}
+
+static void samsung_dsim_enable_lane(struct samsung_dsim *dsi, u32 lane)
+{
+ u32 reg = samsung_dsim_read(dsi, DSIM_CONFIG_REG);
+
+ reg |= (DSIM_NUM_OF_DATA_LANE(dsi->lanes - 1) | DSIM_LANE_EN_CLK |
+ DSIM_LANE_EN(lane));
+ samsung_dsim_write(dsi, DSIM_CONFIG_REG, reg);
+}
+
+static int samsung_dsim_init_link(struct samsung_dsim *dsi)
+{
+ const struct samsung_dsim_driver_data *driver_data = dsi->driver_data;
+ int timeout;
+ u32 reg;
+ u32 lanes_mask;
+
+ /* Initialize FIFO pointers */
+ reg = samsung_dsim_read(dsi, DSIM_FIFOCTRL_REG);
+ reg &= ~0x1f;
+ samsung_dsim_write(dsi, DSIM_FIFOCTRL_REG, reg);
+
+ usleep_range(9000, 11000);
+
+ reg |= 0x1f;
+ samsung_dsim_write(dsi, DSIM_FIFOCTRL_REG, reg);
+ usleep_range(9000, 11000);
+
+ /* DSI configuration */
+ reg = 0;
+
+ /*
+ * The first bit of mode_flags specifies display configuration.
+ * If this bit is set[= MIPI_DSI_MODE_VIDEO], dsi will support video
+ * mode, otherwise it will support command mode.
+ */
+ if (dsi->mode_flags & MIPI_DSI_MODE_VIDEO) {
+ reg |= DSIM_VIDEO_MODE;
+
+ /*
+ * The user manual describes that following bits are ignored in
+ * command mode.
+ */
+ if (!(dsi->mode_flags & MIPI_DSI_MODE_VSYNC_FLUSH))
+ reg |= DSIM_MFLUSH_VS;
+ if (dsi->mode_flags & MIPI_DSI_MODE_VIDEO_SYNC_PULSE)
+ reg |= DSIM_SYNC_INFORM;
+ if (dsi->mode_flags & MIPI_DSI_MODE_VIDEO_BURST)
+ reg |= DSIM_BURST_MODE;
+ if (dsi->mode_flags & MIPI_DSI_MODE_VIDEO_AUTO_VERT)
+ reg |= DSIM_AUTO_MODE;
+ if (dsi->mode_flags & MIPI_DSI_MODE_VIDEO_HSE)
+ reg |= DSIM_HSE_DISABLE_MODE;
+ if (dsi->mode_flags & MIPI_DSI_MODE_VIDEO_NO_HFP)
+ reg |= DSIM_HFP_DISABLE_MODE;
+ if (dsi->mode_flags & MIPI_DSI_MODE_VIDEO_NO_HBP)
+ reg |= DSIM_HBP_DISABLE_MODE;
+ if (dsi->mode_flags & MIPI_DSI_MODE_VIDEO_NO_HSA)
+ reg |= DSIM_HSA_DISABLE_MODE;
+ }
+
+ if (dsi->mode_flags & MIPI_DSI_MODE_NO_EOT_PACKET)
+ reg |= DSIM_EOT_DISABLE;
+
+ switch (dsi->format) {
+ case MIPI_DSI_FMT_RGB888:
+ reg |= DSIM_MAIN_PIX_FORMAT_RGB888;
+ break;
+ case MIPI_DSI_FMT_RGB666:
+ reg |= DSIM_MAIN_PIX_FORMAT_RGB666;
+ break;
+ case MIPI_DSI_FMT_RGB666_PACKED:
+ reg |= DSIM_MAIN_PIX_FORMAT_RGB666_P;
+ break;
+ case MIPI_DSI_FMT_RGB565:
+ reg |= DSIM_MAIN_PIX_FORMAT_RGB565;
+ break;
+ default:
+ dev_err(dsi->dev, "invalid pixel format\n");
+ return -EINVAL;
+ }
+
+ /*
+ * Use non-continuous clock mode if the periparal wants and
+ * host controller supports
+ *
+ * In non-continous clock mode, host controller will turn off
+ * the HS clock between high-speed transmissions to reduce
+ * power consumption.
+ */
+ if (driver_data->has_clklane_stop &&
+ dsi->mode_flags & MIPI_DSI_CLOCK_NON_CONTINUOUS)
+ reg |= DSIM_CLKLANE_STOP;
+ samsung_dsim_write(dsi, DSIM_CONFIG_REG, reg);
+
+ lanes_mask = BIT(dsi->lanes) - 1;
+ samsung_dsim_enable_lane(dsi, lanes_mask);
+
+ /* Check clock and data lane state are stop state */
+ timeout = 100;
+ do {
+ if (timeout-- == 0) {
+ dev_err(dsi->dev, "waiting for bus lanes timed out\n");
+ return -EFAULT;
+ }
+
+ reg = samsung_dsim_read(dsi, DSIM_STATUS_REG);
+ if ((reg & DSIM_STOP_STATE_DAT(lanes_mask))
+ != DSIM_STOP_STATE_DAT(lanes_mask))
+ continue;
+ } while (!(reg & (DSIM_STOP_STATE_CLK | DSIM_TX_READY_HS_CLK)));
+
+ reg = samsung_dsim_read(dsi, DSIM_ESCMODE_REG);
+ reg &= ~DSIM_STOP_STATE_CNT_MASK;
+ reg |= DSIM_STOP_STATE_CNT(driver_data->reg_values[STOP_STATE_CNT]);
+ samsung_dsim_write(dsi, DSIM_ESCMODE_REG, reg);
+
+ reg = DSIM_BTA_TIMEOUT(0xff) | DSIM_LPDR_TIMEOUT(0xffff);
+ samsung_dsim_write(dsi, DSIM_TIMEOUT_REG, reg);
+
+ return 0;
+}
+
+static void samsung_dsim_set_display_mode(struct samsung_dsim *dsi)
+{
+ struct drm_display_mode *m = &dsi->mode;
+ unsigned int num_bits_resol = dsi->driver_data->num_bits_resol;
+ u32 reg;
+
+ if (dsi->mode_flags & MIPI_DSI_MODE_VIDEO) {
+ reg = DSIM_CMD_ALLOW(0xf)
+ | DSIM_STABLE_VFP(m->vsync_start - m->vdisplay)
+ | DSIM_MAIN_VBP(m->vtotal - m->vsync_end);
+ samsung_dsim_write(dsi, DSIM_MVPORCH_REG, reg);
+
+ reg = DSIM_MAIN_HFP(m->hsync_start - m->hdisplay)
+ | DSIM_MAIN_HBP(m->htotal - m->hsync_end);
+ samsung_dsim_write(dsi, DSIM_MHPORCH_REG, reg);
+
+ reg = DSIM_MAIN_VSA(m->vsync_end - m->vsync_start)
+ | DSIM_MAIN_HSA(m->hsync_end - m->hsync_start);
+ samsung_dsim_write(dsi, DSIM_MSYNC_REG, reg);
+ }
+ reg = DSIM_MAIN_HRESOL(m->hdisplay, num_bits_resol) |
+ DSIM_MAIN_VRESOL(m->vdisplay, num_bits_resol);
+
+ samsung_dsim_write(dsi, DSIM_MDRESOL_REG, reg);
+
+ dev_dbg(dsi->dev, "LCD size = %dx%d\n", m->hdisplay, m->vdisplay);
+}
+
+static void samsung_dsim_set_display_enable(struct samsung_dsim *dsi, bool enable)
+{
+ u32 reg;
+
+ reg = samsung_dsim_read(dsi, DSIM_MDRESOL_REG);
+ if (enable)
+ reg |= DSIM_MAIN_STAND_BY;
+ else
+ reg &= ~DSIM_MAIN_STAND_BY;
+ samsung_dsim_write(dsi, DSIM_MDRESOL_REG, reg);
+}
+
+static int samsung_dsim_wait_for_hdr_fifo(struct samsung_dsim *dsi)
+{
+ int timeout = 2000;
+
+ do {
+ u32 reg = samsung_dsim_read(dsi, DSIM_FIFOCTRL_REG);
+
+ if (!(reg & DSIM_SFR_HEADER_FULL))
+ return 0;
+
+ if (!cond_resched())
+ usleep_range(950, 1050);
+ } while (--timeout);
+
+ return -ETIMEDOUT;
+}
+
+static void samsung_dsim_set_cmd_lpm(struct samsung_dsim *dsi, bool lpm)
+{
+ u32 v = samsung_dsim_read(dsi, DSIM_ESCMODE_REG);
+
+ if (lpm)
+ v |= DSIM_CMD_LPDT_LP;
+ else
+ v &= ~DSIM_CMD_LPDT_LP;
+
+ samsung_dsim_write(dsi, DSIM_ESCMODE_REG, v);
+}
+
+static void samsung_dsim_force_bta(struct samsung_dsim *dsi)
+{
+ u32 v = samsung_dsim_read(dsi, DSIM_ESCMODE_REG);
+
+ v |= DSIM_FORCE_BTA;
+ samsung_dsim_write(dsi, DSIM_ESCMODE_REG, v);
+}
+
+static void samsung_dsim_send_to_fifo(struct samsung_dsim *dsi,
+ struct samsung_dsim_transfer *xfer)
+{
+ struct device *dev = dsi->dev;
+ struct mipi_dsi_packet *pkt = &xfer->packet;
+ const u8 *payload = pkt->payload + xfer->tx_done;
+ u16 length = pkt->payload_length - xfer->tx_done;
+ bool first = !xfer->tx_done;
+ u32 reg;
+
+ dev_dbg(dev, "< xfer %pK: tx len %u, done %u, rx len %u, done %u\n",
+ xfer, length, xfer->tx_done, xfer->rx_len, xfer->rx_done);
+
+ if (length > DSI_TX_FIFO_SIZE)
+ length = DSI_TX_FIFO_SIZE;
+
+ xfer->tx_done += length;
+
+ /* Send payload */
+ while (length >= 4) {
+ reg = get_unaligned_le32(payload);
+ samsung_dsim_write(dsi, DSIM_PAYLOAD_REG, reg);
+ payload += 4;
+ length -= 4;
+ }
+
+ reg = 0;
+ switch (length) {
+ case 3:
+ reg |= payload[2] << 16;
+ fallthrough;
+ case 2:
+ reg |= payload[1] << 8;
+ fallthrough;
+ case 1:
+ reg |= payload[0];
+ samsung_dsim_write(dsi, DSIM_PAYLOAD_REG, reg);
+ break;
+ }
+
+ /* Send packet header */
+ if (!first)
+ return;
+
+ reg = get_unaligned_le32(pkt->header);
+ if (samsung_dsim_wait_for_hdr_fifo(dsi)) {
+ dev_err(dev, "waiting for header FIFO timed out\n");
+ return;
+ }
+
+ if (NEQV(xfer->flags & MIPI_DSI_MSG_USE_LPM,
+ dsi->state & DSIM_STATE_CMD_LPM)) {
+ samsung_dsim_set_cmd_lpm(dsi, xfer->flags & MIPI_DSI_MSG_USE_LPM);
+ dsi->state ^= DSIM_STATE_CMD_LPM;
+ }
+
+ samsung_dsim_write(dsi, DSIM_PKTHDR_REG, reg);
+
+ if (xfer->flags & MIPI_DSI_MSG_REQ_ACK)
+ samsung_dsim_force_bta(dsi);
+}
+
+static void samsung_dsim_read_from_fifo(struct samsung_dsim *dsi,
+ struct samsung_dsim_transfer *xfer)
+{
+ u8 *payload = xfer->rx_payload + xfer->rx_done;
+ bool first = !xfer->rx_done;
+ struct device *dev = dsi->dev;
+ u16 length;
+ u32 reg;
+
+ if (first) {
+ reg = samsung_dsim_read(dsi, DSIM_RXFIFO_REG);
+
+ switch (reg & 0x3f) {
+ case MIPI_DSI_RX_GENERIC_SHORT_READ_RESPONSE_2BYTE:
+ case MIPI_DSI_RX_DCS_SHORT_READ_RESPONSE_2BYTE:
+ if (xfer->rx_len >= 2) {
+ payload[1] = reg >> 16;
+ ++xfer->rx_done;
+ }
+ fallthrough;
+ case MIPI_DSI_RX_GENERIC_SHORT_READ_RESPONSE_1BYTE:
+ case MIPI_DSI_RX_DCS_SHORT_READ_RESPONSE_1BYTE:
+ payload[0] = reg >> 8;
+ ++xfer->rx_done;
+ xfer->rx_len = xfer->rx_done;
+ xfer->result = 0;
+ goto clear_fifo;
+ case MIPI_DSI_RX_ACKNOWLEDGE_AND_ERROR_REPORT:
+ dev_err(dev, "DSI Error Report: 0x%04x\n", (reg >> 8) & 0xffff);
+ xfer->result = 0;
+ goto clear_fifo;
+ }
+
+ length = (reg >> 8) & 0xffff;
+ if (length > xfer->rx_len) {
+ dev_err(dev,
+ "response too long (%u > %u bytes), stripping\n",
+ xfer->rx_len, length);
+ length = xfer->rx_len;
+ } else if (length < xfer->rx_len) {
+ xfer->rx_len = length;
+ }
+ }
+
+ length = xfer->rx_len - xfer->rx_done;
+ xfer->rx_done += length;
+
+ /* Receive payload */
+ while (length >= 4) {
+ reg = samsung_dsim_read(dsi, DSIM_RXFIFO_REG);
+ payload[0] = (reg >> 0) & 0xff;
+ payload[1] = (reg >> 8) & 0xff;
+ payload[2] = (reg >> 16) & 0xff;
+ payload[3] = (reg >> 24) & 0xff;
+ payload += 4;
+ length -= 4;
+ }
+
+ if (length) {
+ reg = samsung_dsim_read(dsi, DSIM_RXFIFO_REG);
+ switch (length) {
+ case 3:
+ payload[2] = (reg >> 16) & 0xff;
+ fallthrough;
+ case 2:
+ payload[1] = (reg >> 8) & 0xff;
+ fallthrough;
+ case 1:
+ payload[0] = reg & 0xff;
+ }
+ }
+
+ if (xfer->rx_done == xfer->rx_len)
+ xfer->result = 0;
+
+clear_fifo:
+ length = DSI_RX_FIFO_SIZE / 4;
+ do {
+ reg = samsung_dsim_read(dsi, DSIM_RXFIFO_REG);
+ if (reg == DSI_RX_FIFO_EMPTY)
+ break;
+ } while (--length);
+}
+
+static void samsung_dsim_transfer_start(struct samsung_dsim *dsi)
+{
+ unsigned long flags;
+ struct samsung_dsim_transfer *xfer;
+ bool start = false;
+
+again:
+ spin_lock_irqsave(&dsi->transfer_lock, flags);
+
+ if (list_empty(&dsi->transfer_list)) {
+ spin_unlock_irqrestore(&dsi->transfer_lock, flags);
+ return;
+ }
+
+ xfer = list_first_entry(&dsi->transfer_list,
+ struct samsung_dsim_transfer, list);
+
+ spin_unlock_irqrestore(&dsi->transfer_lock, flags);
+
+ if (xfer->packet.payload_length &&
+ xfer->tx_done == xfer->packet.payload_length)
+ /* waiting for RX */
+ return;
+
+ samsung_dsim_send_to_fifo(dsi, xfer);
+
+ if (xfer->packet.payload_length || xfer->rx_len)
+ return;
+
+ xfer->result = 0;
+ complete(&xfer->completed);
+
+ spin_lock_irqsave(&dsi->transfer_lock, flags);
+
+ list_del_init(&xfer->list);
+ start = !list_empty(&dsi->transfer_list);
+
+ spin_unlock_irqrestore(&dsi->transfer_lock, flags);
+
+ if (start)
+ goto again;
+}
+
+static bool samsung_dsim_transfer_finish(struct samsung_dsim *dsi)
+{
+ struct samsung_dsim_transfer *xfer;
+ unsigned long flags;
+ bool start = true;
+
+ spin_lock_irqsave(&dsi->transfer_lock, flags);
+
+ if (list_empty(&dsi->transfer_list)) {
+ spin_unlock_irqrestore(&dsi->transfer_lock, flags);
+ return false;
+ }
+
+ xfer = list_first_entry(&dsi->transfer_list,
+ struct samsung_dsim_transfer, list);
+
+ spin_unlock_irqrestore(&dsi->transfer_lock, flags);
+
+ dev_dbg(dsi->dev,
+ "> xfer %pK, tx_len %zu, tx_done %u, rx_len %u, rx_done %u\n",
+ xfer, xfer->packet.payload_length, xfer->tx_done, xfer->rx_len,
+ xfer->rx_done);
+
+ if (xfer->tx_done != xfer->packet.payload_length)
+ return true;
+
+ if (xfer->rx_done != xfer->rx_len)
+ samsung_dsim_read_from_fifo(dsi, xfer);
+
+ if (xfer->rx_done != xfer->rx_len)
+ return true;
+
+ spin_lock_irqsave(&dsi->transfer_lock, flags);
+
+ list_del_init(&xfer->list);
+ start = !list_empty(&dsi->transfer_list);
+
+ spin_unlock_irqrestore(&dsi->transfer_lock, flags);
+
+ if (!xfer->rx_len)
+ xfer->result = 0;
+ complete(&xfer->completed);
+
+ return start;
+}
+
+static void samsung_dsim_remove_transfer(struct samsung_dsim *dsi,
+ struct samsung_dsim_transfer *xfer)
+{
+ unsigned long flags;
+ bool start;
+
+ spin_lock_irqsave(&dsi->transfer_lock, flags);
+
+ if (!list_empty(&dsi->transfer_list) &&
+ xfer == list_first_entry(&dsi->transfer_list,
+ struct samsung_dsim_transfer, list)) {
+ list_del_init(&xfer->list);
+ start = !list_empty(&dsi->transfer_list);
+ spin_unlock_irqrestore(&dsi->transfer_lock, flags);
+ if (start)
+ samsung_dsim_transfer_start(dsi);
+ return;
+ }
+
+ list_del_init(&xfer->list);
+
+ spin_unlock_irqrestore(&dsi->transfer_lock, flags);
+}
+
+static int samsung_dsim_transfer(struct samsung_dsim *dsi,
+ struct samsung_dsim_transfer *xfer)
+{
+ unsigned long flags;
+ bool stopped;
+
+ xfer->tx_done = 0;
+ xfer->rx_done = 0;
+ xfer->result = -ETIMEDOUT;
+ init_completion(&xfer->completed);
+
+ spin_lock_irqsave(&dsi->transfer_lock, flags);
+
+ stopped = list_empty(&dsi->transfer_list);
+ list_add_tail(&xfer->list, &dsi->transfer_list);
+
+ spin_unlock_irqrestore(&dsi->transfer_lock, flags);
+
+ if (stopped)
+ samsung_dsim_transfer_start(dsi);
+
+ wait_for_completion_timeout(&xfer->completed,
+ msecs_to_jiffies(DSI_XFER_TIMEOUT_MS));
+ if (xfer->result == -ETIMEDOUT) {
+ struct mipi_dsi_packet *pkt = &xfer->packet;
+
+ samsung_dsim_remove_transfer(dsi, xfer);
+ dev_err(dsi->dev, "xfer timed out: %*ph %*ph\n", 4, pkt->header,
+ (int)pkt->payload_length, pkt->payload);
+ return -ETIMEDOUT;
+ }
+
+ /* Also covers hardware timeout condition */
+ return xfer->result;
+}
+
+static irqreturn_t samsung_dsim_irq(int irq, void *dev_id)
+{
+ struct samsung_dsim *dsi = dev_id;
+ u32 status;
+
+ status = samsung_dsim_read(dsi, DSIM_INTSRC_REG);
+ if (!status) {
+ static unsigned long j;
+
+ if (printk_timed_ratelimit(&j, 500))
+ dev_warn(dsi->dev, "spurious interrupt\n");
+ return IRQ_HANDLED;
+ }
+ samsung_dsim_write(dsi, DSIM_INTSRC_REG, status);
+
+ if (status & DSIM_INT_SW_RST_RELEASE) {
+ unsigned long mask = ~(DSIM_INT_RX_DONE |
+ DSIM_INT_SFR_FIFO_EMPTY |
+ DSIM_INT_SFR_HDR_FIFO_EMPTY |
+ DSIM_INT_RX_ECC_ERR |
+ DSIM_INT_SW_RST_RELEASE);
+ samsung_dsim_write(dsi, DSIM_INTMSK_REG, mask);
+ complete(&dsi->completed);
+ return IRQ_HANDLED;
+ }
+
+ if (!(status & (DSIM_INT_RX_DONE | DSIM_INT_SFR_FIFO_EMPTY |
+ DSIM_INT_PLL_STABLE)))
+ return IRQ_HANDLED;
+
+ if (samsung_dsim_transfer_finish(dsi))
+ samsung_dsim_transfer_start(dsi);
+
+ return IRQ_HANDLED;
+}
+
+static void samsung_dsim_enable_irq(struct samsung_dsim *dsi)
+{
+ enable_irq(dsi->irq);
+
+ if (dsi->te_gpio)
+ enable_irq(gpiod_to_irq(dsi->te_gpio));
+}
+
+static void samsung_dsim_disable_irq(struct samsung_dsim *dsi)
+{
+ if (dsi->te_gpio)
+ disable_irq(gpiod_to_irq(dsi->te_gpio));
+
+ disable_irq(dsi->irq);
+}
+
+static int samsung_dsim_init(struct samsung_dsim *dsi)
+{
+ const struct samsung_dsim_driver_data *driver_data = dsi->driver_data;
+
+ if (dsi->state & DSIM_STATE_INITIALIZED)
+ return 0;
+
+ samsung_dsim_reset(dsi);
+ samsung_dsim_enable_irq(dsi);
+
+ if (driver_data->reg_values[RESET_TYPE] == DSIM_FUNCRST)
+ samsung_dsim_enable_lane(dsi, BIT(dsi->lanes) - 1);
+
+ samsung_dsim_enable_clock(dsi);
+ if (driver_data->wait_for_reset)
+ samsung_dsim_wait_for_reset(dsi);
+ samsung_dsim_set_phy_ctrl(dsi);
+ samsung_dsim_init_link(dsi);
+
+ dsi->state |= DSIM_STATE_INITIALIZED;
+
+ return 0;
+}
+
+static void samsung_dsim_atomic_pre_enable(struct drm_bridge *bridge,
+ struct drm_bridge_state *old_bridge_state)
+{
+ struct samsung_dsim *dsi = bridge_to_dsi(bridge);
+ int ret;
+
+ if (dsi->state & DSIM_STATE_ENABLED)
+ return;
+
+ ret = pm_runtime_resume_and_get(dsi->dev);
+ if (ret < 0) {
+ dev_err(dsi->dev, "failed to enable DSI device.\n");
+ return;
+ }
+
+ dsi->state |= DSIM_STATE_ENABLED;
+
+ /*
+ * For Exynos-DSIM the downstream bridge, or panel are expecting
+ * the host initialization during DSI transfer.
+ */
+ if (!samsung_dsim_hw_is_exynos(dsi->plat_data->hw_type)) {
+ ret = samsung_dsim_init(dsi);
+ if (ret)
+ return;
+ }
+}
+
+static void samsung_dsim_atomic_enable(struct drm_bridge *bridge,
+ struct drm_bridge_state *old_bridge_state)
+{
+ struct samsung_dsim *dsi = bridge_to_dsi(bridge);
+
+ samsung_dsim_set_display_mode(dsi);
+ samsung_dsim_set_display_enable(dsi, true);
+
+ dsi->state |= DSIM_STATE_VIDOUT_AVAILABLE;
+}
+
+static void samsung_dsim_atomic_disable(struct drm_bridge *bridge,
+ struct drm_bridge_state *old_bridge_state)
+{
+ struct samsung_dsim *dsi = bridge_to_dsi(bridge);
+
+ if (!(dsi->state & DSIM_STATE_ENABLED))
+ return;
+
+ dsi->state &= ~DSIM_STATE_VIDOUT_AVAILABLE;
+}
+
+static void samsung_dsim_atomic_post_disable(struct drm_bridge *bridge,
+ struct drm_bridge_state *old_bridge_state)
+{
+ struct samsung_dsim *dsi = bridge_to_dsi(bridge);
+
+ samsung_dsim_set_display_enable(dsi, false);
+
+ dsi->state &= ~DSIM_STATE_ENABLED;
+ pm_runtime_put_sync(dsi->dev);
+}
+
+/*
+ * This pixel output formats list referenced from,
+ * AN13573 i.MX 8/RT MIPI DSI/CSI-2, Rev. 0, 21 March 2022
+ * 3.7.4 Pixel formats
+ * Table 14. DSI pixel packing formats
+ */
+static const u32 samsung_dsim_pixel_output_fmts[] = {
+ MEDIA_BUS_FMT_YUYV10_1X20,
+ MEDIA_BUS_FMT_YUYV12_1X24,
+ MEDIA_BUS_FMT_UYVY8_1X16,
+ MEDIA_BUS_FMT_RGB101010_1X30,
+ MEDIA_BUS_FMT_RGB121212_1X36,
+ MEDIA_BUS_FMT_RGB565_1X16,
+ MEDIA_BUS_FMT_RGB666_1X18,
+ MEDIA_BUS_FMT_RGB888_1X24,
+};
+
+static bool samsung_dsim_pixel_output_fmt_supported(u32 fmt)
+{
+ int i;
+
+ if (fmt == MEDIA_BUS_FMT_FIXED)
+ return false;
+
+ for (i = 0; i < ARRAY_SIZE(samsung_dsim_pixel_output_fmts); i++) {
+ if (samsung_dsim_pixel_output_fmts[i] == fmt)
+ return true;
+ }
+
+ return false;
+}
+
+static u32 *
+samsung_dsim_atomic_get_input_bus_fmts(struct drm_bridge *bridge,
+ struct drm_bridge_state *bridge_state,
+ struct drm_crtc_state *crtc_state,
+ struct drm_connector_state *conn_state,
+ u32 output_fmt,
+ unsigned int *num_input_fmts)
+{
+ u32 *input_fmts;
+
+ input_fmts = kmalloc(sizeof(*input_fmts), GFP_KERNEL);
+ if (!input_fmts)
+ return NULL;
+
+ if (!samsung_dsim_pixel_output_fmt_supported(output_fmt))
+ /*
+ * Some bridge/display drivers are still not able to pass the
+ * correct format, so handle those pipelines by falling back
+ * to the default format till the supported formats finalized.
+ */
+ output_fmt = MEDIA_BUS_FMT_RGB888_1X24;
+
+ input_fmts[0] = output_fmt;
+ *num_input_fmts = 1;
+
+ return input_fmts;
+}
+
+static int samsung_dsim_atomic_check(struct drm_bridge *bridge,
+ struct drm_bridge_state *bridge_state,
+ struct drm_crtc_state *crtc_state,
+ struct drm_connector_state *conn_state)
+{
+ struct samsung_dsim *dsi = bridge_to_dsi(bridge);
+ struct drm_display_mode *adjusted_mode = &crtc_state->adjusted_mode;
+
+ /*
+ * The i.MX8M Mini/Nano glue logic between LCDIF and DSIM
+ * inverts HS/VS/DE sync signals polarity, therefore, while
+ * i.MX 8M Mini Applications Processor Reference Manual Rev. 3, 11/2020
+ * 13.6.3.5.2 RGB interface
+ * i.MX 8M Nano Applications Processor Reference Manual Rev. 2, 07/2022
+ * 13.6.2.7.2 RGB interface
+ * both claim "Vsync, Hsync, and VDEN are active high signals.", the
+ * LCDIF must generate inverted HS/VS/DE signals, i.e. active LOW.
+ *
+ * The i.MX8M Plus glue logic between LCDIFv3 and DSIM does not
+ * implement the same behavior, therefore LCDIFv3 must generate
+ * HS/VS/DE signals active HIGH.
+ */
+ if (dsi->plat_data->hw_type == DSIM_TYPE_IMX8MM) {
+ adjusted_mode->flags |= (DRM_MODE_FLAG_NHSYNC | DRM_MODE_FLAG_NVSYNC);
+ adjusted_mode->flags &= ~(DRM_MODE_FLAG_PHSYNC | DRM_MODE_FLAG_PVSYNC);
+ } else if (dsi->plat_data->hw_type == DSIM_TYPE_IMX8MP) {
+ adjusted_mode->flags &= ~(DRM_MODE_FLAG_NHSYNC | DRM_MODE_FLAG_NVSYNC);
+ adjusted_mode->flags |= (DRM_MODE_FLAG_PHSYNC | DRM_MODE_FLAG_PVSYNC);
+ }
+
+ return 0;
+}
+
+static void samsung_dsim_mode_set(struct drm_bridge *bridge,
+ const struct drm_display_mode *mode,
+ const struct drm_display_mode *adjusted_mode)
+{
+ struct samsung_dsim *dsi = bridge_to_dsi(bridge);
+
+ drm_mode_copy(&dsi->mode, adjusted_mode);
+}
+
+static int samsung_dsim_attach(struct drm_bridge *bridge,
+ enum drm_bridge_attach_flags flags)
+{
+ struct samsung_dsim *dsi = bridge_to_dsi(bridge);
+
+ return drm_bridge_attach(bridge->encoder, dsi->out_bridge, bridge,
+ flags);
+}
+
+static const struct drm_bridge_funcs samsung_dsim_bridge_funcs = {
+ .atomic_duplicate_state = drm_atomic_helper_bridge_duplicate_state,
+ .atomic_destroy_state = drm_atomic_helper_bridge_destroy_state,
+ .atomic_reset = drm_atomic_helper_bridge_reset,
+ .atomic_get_input_bus_fmts = samsung_dsim_atomic_get_input_bus_fmts,
+ .atomic_check = samsung_dsim_atomic_check,
+ .atomic_pre_enable = samsung_dsim_atomic_pre_enable,
+ .atomic_enable = samsung_dsim_atomic_enable,
+ .atomic_disable = samsung_dsim_atomic_disable,
+ .atomic_post_disable = samsung_dsim_atomic_post_disable,
+ .mode_set = samsung_dsim_mode_set,
+ .attach = samsung_dsim_attach,
+};
+
+static irqreturn_t samsung_dsim_te_irq_handler(int irq, void *dev_id)
+{
+ struct samsung_dsim *dsi = (struct samsung_dsim *)dev_id;
+ const struct samsung_dsim_plat_data *pdata = dsi->plat_data;
+
+ if (pdata->host_ops && pdata->host_ops->te_irq_handler)
+ return pdata->host_ops->te_irq_handler(dsi);
+
+ return IRQ_HANDLED;
+}
+
+static int samsung_dsim_register_te_irq(struct samsung_dsim *dsi, struct device *dev)
+{
+ int te_gpio_irq;
+ int ret;
+
+ dsi->te_gpio = devm_gpiod_get_optional(dev, "te", GPIOD_IN);
+ if (!dsi->te_gpio)
+ return 0;
+ else if (IS_ERR(dsi->te_gpio))
+ return dev_err_probe(dev, PTR_ERR(dsi->te_gpio), "failed to get te GPIO\n");
+
+ te_gpio_irq = gpiod_to_irq(dsi->te_gpio);
+
+ ret = request_threaded_irq(te_gpio_irq, samsung_dsim_te_irq_handler, NULL,
+ IRQF_TRIGGER_RISING | IRQF_NO_AUTOEN, "TE", dsi);
+ if (ret) {
+ dev_err(dsi->dev, "request interrupt failed with %d\n", ret);
+ gpiod_put(dsi->te_gpio);
+ return ret;
+ }
+
+ return 0;
+}
+
+static int samsung_dsim_host_attach(struct mipi_dsi_host *host,
+ struct mipi_dsi_device *device)
+{
+ struct samsung_dsim *dsi = host_to_dsi(host);
+ const struct samsung_dsim_plat_data *pdata = dsi->plat_data;
+ struct device *dev = dsi->dev;
+ struct device_node *np = dev->of_node;
+ struct device_node *remote;
+ struct drm_panel *panel;
+ int ret;
+
+ /*
+ * Devices can also be child nodes when we also control that device
+ * through the upstream device (ie, MIPI-DCS for a MIPI-DSI device).
+ *
+ * Lookup for a child node of the given parent that isn't either port
+ * or ports.
+ */
+ for_each_available_child_of_node(np, remote) {
+ if (of_node_name_eq(remote, "port") ||
+ of_node_name_eq(remote, "ports"))
+ continue;
+
+ goto of_find_panel_or_bridge;
+ }
+
+ /*
+ * of_graph_get_remote_node() produces a noisy error message if port
+ * node isn't found and the absence of the port is a legit case here,
+ * so at first we silently check whether graph presents in the
+ * device-tree node.
+ */
+ if (!of_graph_is_present(np))
+ return -ENODEV;
+
+ remote = of_graph_get_remote_node(np, 1, 0);
+
+of_find_panel_or_bridge:
+ if (!remote)
+ return -ENODEV;
+
+ panel = of_drm_find_panel(remote);
+ if (!IS_ERR(panel)) {
+ dsi->out_bridge = devm_drm_panel_bridge_add(dev, panel);
+ } else {
+ dsi->out_bridge = of_drm_find_bridge(remote);
+ if (!dsi->out_bridge)
+ dsi->out_bridge = ERR_PTR(-EINVAL);
+ }
+
+ of_node_put(remote);
+
+ if (IS_ERR(dsi->out_bridge)) {
+ ret = PTR_ERR(dsi->out_bridge);
+ DRM_DEV_ERROR(dev, "failed to find the bridge: %d\n", ret);
+ return ret;
+ }
+
+ DRM_DEV_INFO(dev, "Attached %s device\n", device->name);
+
+ drm_bridge_add(&dsi->bridge);
+
+ /*
+ * This is a temporary solution and should be made by more generic way.
+ *
+ * If attached panel device is for command mode one, dsi should register
+ * TE interrupt handler.
+ */
+ if (!(device->mode_flags & MIPI_DSI_MODE_VIDEO)) {
+ ret = samsung_dsim_register_te_irq(dsi, &device->dev);
+ if (ret)
+ return ret;
+ }
+
+ if (pdata->host_ops && pdata->host_ops->attach) {
+ ret = pdata->host_ops->attach(dsi, device);
+ if (ret)
+ return ret;
+ }
+
+ dsi->lanes = device->lanes;
+ dsi->format = device->format;
+ dsi->mode_flags = device->mode_flags;
+
+ return 0;
+}
+
+static void samsung_dsim_unregister_te_irq(struct samsung_dsim *dsi)
+{
+ if (dsi->te_gpio) {
+ free_irq(gpiod_to_irq(dsi->te_gpio), dsi);
+ gpiod_put(dsi->te_gpio);
+ }
+}
+
+static int samsung_dsim_host_detach(struct mipi_dsi_host *host,
+ struct mipi_dsi_device *device)
+{
+ struct samsung_dsim *dsi = host_to_dsi(host);
+ const struct samsung_dsim_plat_data *pdata = dsi->plat_data;
+
+ dsi->out_bridge = NULL;
+
+ if (pdata->host_ops && pdata->host_ops->detach)
+ pdata->host_ops->detach(dsi, device);
+
+ samsung_dsim_unregister_te_irq(dsi);
+
+ drm_bridge_remove(&dsi->bridge);
+
+ return 0;
+}
+
+static ssize_t samsung_dsim_host_transfer(struct mipi_dsi_host *host,
+ const struct mipi_dsi_msg *msg)
+{
+ struct samsung_dsim *dsi = host_to_dsi(host);
+ struct samsung_dsim_transfer xfer;
+ int ret;
+
+ if (!(dsi->state & DSIM_STATE_ENABLED))
+ return -EINVAL;
+
+ ret = samsung_dsim_init(dsi);
+ if (ret)
+ return ret;
+
+ ret = mipi_dsi_create_packet(&xfer.packet, msg);
+ if (ret < 0)
+ return ret;
+
+ xfer.rx_len = msg->rx_len;
+ xfer.rx_payload = msg->rx_buf;
+ xfer.flags = msg->flags;
+
+ ret = samsung_dsim_transfer(dsi, &xfer);
+ return (ret < 0) ? ret : xfer.rx_done;
+}
+
+static const struct mipi_dsi_host_ops samsung_dsim_ops = {
+ .attach = samsung_dsim_host_attach,
+ .detach = samsung_dsim_host_detach,
+ .transfer = samsung_dsim_host_transfer,
+};
+
+static int samsung_dsim_of_read_u32(const struct device_node *np,
+ const char *propname, u32 *out_value)
+{
+ int ret = of_property_read_u32(np, propname, out_value);
+
+ if (ret < 0)
+ pr_err("%pOF: failed to get '%s' property\n", np, propname);
+
+ return ret;
+}
+
+static int samsung_dsim_parse_dt(struct samsung_dsim *dsi)
+{
+ struct device *dev = dsi->dev;
+ struct device_node *node = dev->of_node;
+ int ret;
+
+ ret = samsung_dsim_of_read_u32(node, "samsung,pll-clock-frequency",
+ &dsi->pll_clk_rate);
+ if (ret < 0)
+ return ret;
+
+ ret = samsung_dsim_of_read_u32(node, "samsung,burst-clock-frequency",
+ &dsi->burst_clk_rate);
+ if (ret < 0)
+ return ret;
+
+ ret = samsung_dsim_of_read_u32(node, "samsung,esc-clock-frequency",
+ &dsi->esc_clk_rate);
+ if (ret < 0)
+ return ret;
+
+ return 0;
+}
+
+static int generic_dsim_register_host(struct samsung_dsim *dsi)
+{
+ return mipi_dsi_host_register(&dsi->dsi_host);
+}
+
+static void generic_dsim_unregister_host(struct samsung_dsim *dsi)
+{
+ mipi_dsi_host_unregister(&dsi->dsi_host);
+}
+
+static const struct samsung_dsim_host_ops generic_dsim_host_ops = {
+ .register_host = generic_dsim_register_host,
+ .unregister_host = generic_dsim_unregister_host,
+};
+
+static const struct drm_bridge_timings samsung_dsim_bridge_timings_de_high = {
+ .input_bus_flags = DRM_BUS_FLAG_DE_HIGH,
+};
+
+static const struct drm_bridge_timings samsung_dsim_bridge_timings_de_low = {
+ .input_bus_flags = DRM_BUS_FLAG_DE_LOW,
+};
+
+int samsung_dsim_probe(struct platform_device *pdev)
+{
+ struct device *dev = &pdev->dev;
+ struct samsung_dsim *dsi;
+ int ret, i;
+
+ dsi = devm_kzalloc(dev, sizeof(*dsi), GFP_KERNEL);
+ if (!dsi)
+ return -ENOMEM;
+
+ init_completion(&dsi->completed);
+ spin_lock_init(&dsi->transfer_lock);
+ INIT_LIST_HEAD(&dsi->transfer_list);
+
+ dsi->dsi_host.ops = &samsung_dsim_ops;
+ dsi->dsi_host.dev = dev;
+
+ dsi->dev = dev;
+ dsi->plat_data = of_device_get_match_data(dev);
+ dsi->driver_data = samsung_dsim_types[dsi->plat_data->hw_type];
+
+ dsi->supplies[0].supply = "vddcore";
+ dsi->supplies[1].supply = "vddio";
+ ret = devm_regulator_bulk_get(dev, ARRAY_SIZE(dsi->supplies),
+ dsi->supplies);
+ if (ret)
+ return dev_err_probe(dev, ret, "failed to get regulators\n");
+
+ dsi->clks = devm_kcalloc(dev, dsi->driver_data->num_clks,
+ sizeof(*dsi->clks), GFP_KERNEL);
+ if (!dsi->clks)
+ return -ENOMEM;
+
+ for (i = 0; i < dsi->driver_data->num_clks; i++) {
+ dsi->clks[i] = devm_clk_get(dev, clk_names[i]);
+ if (IS_ERR(dsi->clks[i])) {
+ if (strcmp(clk_names[i], "sclk_mipi") == 0) {
+ dsi->clks[i] = devm_clk_get(dev, OLD_SCLK_MIPI_CLK_NAME);
+ if (!IS_ERR(dsi->clks[i]))
+ continue;
+ }
+
+ dev_info(dev, "failed to get the clock: %s\n", clk_names[i]);
+ return PTR_ERR(dsi->clks[i]);
+ }
+ }
+
+ dsi->reg_base = devm_platform_ioremap_resource(pdev, 0);
+ if (IS_ERR(dsi->reg_base))
+ return PTR_ERR(dsi->reg_base);
+
+ dsi->phy = devm_phy_optional_get(dev, "dsim");
+ if (IS_ERR(dsi->phy)) {
+ dev_info(dev, "failed to get dsim phy\n");
+ return PTR_ERR(dsi->phy);
+ }
+
+ dsi->irq = platform_get_irq(pdev, 0);
+ if (dsi->irq < 0)
+ return dsi->irq;
+
+ ret = devm_request_threaded_irq(dev, dsi->irq, NULL,
+ samsung_dsim_irq,
+ IRQF_ONESHOT | IRQF_NO_AUTOEN,
+ dev_name(dev), dsi);
+ if (ret) {
+ dev_err(dev, "failed to request dsi irq\n");
+ return ret;
+ }
+
+ ret = samsung_dsim_parse_dt(dsi);
+ if (ret)
+ return ret;
+
+ platform_set_drvdata(pdev, dsi);
+
+ pm_runtime_enable(dev);
+
+ dsi->bridge.funcs = &samsung_dsim_bridge_funcs;
+ dsi->bridge.of_node = dev->of_node;
+ dsi->bridge.type = DRM_MODE_CONNECTOR_DSI;
+
+ /* DE_LOW: i.MX8M Mini/Nano LCDIF-DSIM glue logic inverts HS/VS/DE */
+ if (dsi->plat_data->hw_type == DSIM_TYPE_IMX8MM)
+ dsi->bridge.timings = &samsung_dsim_bridge_timings_de_low;
+ else
+ dsi->bridge.timings = &samsung_dsim_bridge_timings_de_high;
+
+ if (dsi->plat_data->host_ops && dsi->plat_data->host_ops->register_host)
+ ret = dsi->plat_data->host_ops->register_host(dsi);
+
+ if (ret)
+ goto err_disable_runtime;
+
+ return 0;
+
+err_disable_runtime:
+ pm_runtime_disable(dev);
+
+ return ret;
+}
+EXPORT_SYMBOL_GPL(samsung_dsim_probe);
+
+int samsung_dsim_remove(struct platform_device *pdev)
+{
+ struct samsung_dsim *dsi = platform_get_drvdata(pdev);
+
+ pm_runtime_disable(&pdev->dev);
+
+ if (dsi->plat_data->host_ops && dsi->plat_data->host_ops->unregister_host)
+ dsi->plat_data->host_ops->unregister_host(dsi);
+
+ return 0;
+}
+EXPORT_SYMBOL_GPL(samsung_dsim_remove);
+
+static int __maybe_unused samsung_dsim_suspend(struct device *dev)
+{
+ struct samsung_dsim *dsi = dev_get_drvdata(dev);
+ const struct samsung_dsim_driver_data *driver_data = dsi->driver_data;
+ int ret, i;
+
+ usleep_range(10000, 20000);
+
+ if (dsi->state & DSIM_STATE_INITIALIZED) {
+ dsi->state &= ~DSIM_STATE_INITIALIZED;
+
+ samsung_dsim_disable_clock(dsi);
+
+ samsung_dsim_disable_irq(dsi);
+ }
+
+ dsi->state &= ~DSIM_STATE_CMD_LPM;
+
+ phy_power_off(dsi->phy);
+
+ for (i = driver_data->num_clks - 1; i > -1; i--)
+ clk_disable_unprepare(dsi->clks[i]);
+
+ ret = regulator_bulk_disable(ARRAY_SIZE(dsi->supplies), dsi->supplies);
+ if (ret < 0)
+ dev_err(dsi->dev, "cannot disable regulators %d\n", ret);
+
+ return 0;
+}
+
+static int __maybe_unused samsung_dsim_resume(struct device *dev)
+{
+ struct samsung_dsim *dsi = dev_get_drvdata(dev);
+ const struct samsung_dsim_driver_data *driver_data = dsi->driver_data;
+ int ret, i;
+
+ ret = regulator_bulk_enable(ARRAY_SIZE(dsi->supplies), dsi->supplies);
+ if (ret < 0) {
+ dev_err(dsi->dev, "cannot enable regulators %d\n", ret);
+ return ret;
+ }
+
+ for (i = 0; i < driver_data->num_clks; i++) {
+ ret = clk_prepare_enable(dsi->clks[i]);
+ if (ret < 0)
+ goto err_clk;
+ }
+
+ ret = phy_power_on(dsi->phy);
+ if (ret < 0) {
+ dev_err(dsi->dev, "cannot enable phy %d\n", ret);
+ goto err_clk;
+ }
+
+ return 0;
+
+err_clk:
+ while (--i > -1)
+ clk_disable_unprepare(dsi->clks[i]);
+ regulator_bulk_disable(ARRAY_SIZE(dsi->supplies), dsi->supplies);
+
+ return ret;
+}
+
+const struct dev_pm_ops samsung_dsim_pm_ops = {
+ SET_RUNTIME_PM_OPS(samsung_dsim_suspend, samsung_dsim_resume, NULL)
+ SET_SYSTEM_SLEEP_PM_OPS(pm_runtime_force_suspend,
+ pm_runtime_force_resume)
+};
+EXPORT_SYMBOL_GPL(samsung_dsim_pm_ops);
+
+static const struct samsung_dsim_plat_data samsung_dsim_imx8mm_pdata = {
+ .hw_type = DSIM_TYPE_IMX8MM,
+ .host_ops = &generic_dsim_host_ops,
+};
+
+static const struct samsung_dsim_plat_data samsung_dsim_imx8mp_pdata = {
+ .hw_type = DSIM_TYPE_IMX8MP,
+ .host_ops = &generic_dsim_host_ops,
+};
+
+static const struct of_device_id samsung_dsim_of_match[] = {
+ {
+ .compatible = "fsl,imx8mm-mipi-dsim",
+ .data = &samsung_dsim_imx8mm_pdata,
+ },
+ {
+ .compatible = "fsl,imx8mp-mipi-dsim",
+ .data = &samsung_dsim_imx8mp_pdata,
+ },
+ { /* sentinel. */ }
+};
+MODULE_DEVICE_TABLE(of, samsung_dsim_of_match);
+
+static struct platform_driver samsung_dsim_driver = {
+ .probe = samsung_dsim_probe,
+ .remove = samsung_dsim_remove,
+ .driver = {
+ .name = "samsung-dsim",
+ .owner = THIS_MODULE,
+ .pm = &samsung_dsim_pm_ops,
+ .of_match_table = samsung_dsim_of_match,
+ },
+};
+
+module_platform_driver(samsung_dsim_driver);
+
+MODULE_AUTHOR("Jagan Teki <jagan@amarulasolutions.com>");
+MODULE_DESCRIPTION("Samsung MIPI DSIM controller bridge");
+MODULE_LICENSE("GPL");
diff --git a/drivers/gpu/drm/bridge/sii902x.c b/drivers/gpu/drm/bridge/sii902x.c
index 878fb7d3732b..ef66461e7f7c 100644
--- a/drivers/gpu/drm/bridge/sii902x.c
+++ b/drivers/gpu/drm/bridge/sii902x.c
@@ -171,7 +171,6 @@ struct sii902x {
struct drm_connector connector;
struct gpio_desc *reset_gpio;
struct i2c_mux_core *i2cmux;
- struct regulator_bulk_data supplies[2];
bool sink_is_hdmi;
/*
* Mutex protects audio and video functions from interfering
@@ -240,12 +239,12 @@ static void sii902x_reset(struct sii902x *sii902x)
if (!sii902x->reset_gpio)
return;
- gpiod_set_value(sii902x->reset_gpio, 1);
+ gpiod_set_value_cansleep(sii902x->reset_gpio, 1);
/* The datasheet says treset-min = 100us. Make it 150us to be sure. */
usleep_range(150, 200);
- gpiod_set_value(sii902x->reset_gpio, 0);
+ gpiod_set_value_cansleep(sii902x->reset_gpio, 0);
}
static enum drm_connector_status sii902x_detect(struct sii902x *sii902x)
@@ -1066,12 +1065,12 @@ static int sii902x_init(struct sii902x *sii902x)
return i2c_mux_add_adapter(sii902x->i2cmux, 0, 0, 0);
}
-static int sii902x_probe(struct i2c_client *client,
- const struct i2c_device_id *id)
+static int sii902x_probe(struct i2c_client *client)
{
struct device *dev = &client->dev;
struct device_node *endpoint;
struct sii902x *sii902x;
+ static const char * const supplies[] = {"iovcc", "cvcc12"};
int ret;
ret = i2c_check_functionality(client->adapter,
@@ -1117,32 +1116,17 @@ static int sii902x_probe(struct i2c_client *client,
sii902x->next_bridge = of_drm_find_bridge(remote);
of_node_put(remote);
if (!sii902x->next_bridge)
- return -EPROBE_DEFER;
+ return dev_err_probe(dev, -EPROBE_DEFER,
+ "Failed to find remote bridge\n");
}
mutex_init(&sii902x->mutex);
- sii902x->supplies[0].supply = "iovcc";
- sii902x->supplies[1].supply = "cvcc12";
- ret = devm_regulator_bulk_get(dev, ARRAY_SIZE(sii902x->supplies),
- sii902x->supplies);
+ ret = devm_regulator_bulk_get_enable(dev, ARRAY_SIZE(supplies), supplies);
if (ret < 0)
- return ret;
-
- ret = regulator_bulk_enable(ARRAY_SIZE(sii902x->supplies),
- sii902x->supplies);
- if (ret < 0) {
- dev_err_probe(dev, ret, "Failed to enable supplies");
- return ret;
- }
+ return dev_err_probe(dev, ret, "Failed to enable supplies");
- ret = sii902x_init(sii902x);
- if (ret < 0) {
- regulator_bulk_disable(ARRAY_SIZE(sii902x->supplies),
- sii902x->supplies);
- }
-
- return ret;
+ return sii902x_init(sii902x);
}
static void sii902x_remove(struct i2c_client *client)
@@ -1152,8 +1136,6 @@ static void sii902x_remove(struct i2c_client *client)
i2c_mux_del_adapters(sii902x->i2cmux);
drm_bridge_remove(&sii902x->bridge);
- regulator_bulk_disable(ARRAY_SIZE(sii902x->supplies),
- sii902x->supplies);
}
static const struct of_device_id sii902x_dt_ids[] = {
@@ -1169,7 +1151,7 @@ static const struct i2c_device_id sii902x_i2c_ids[] = {
MODULE_DEVICE_TABLE(i2c, sii902x_i2c_ids);
static struct i2c_driver sii902x_driver = {
- .probe = sii902x_probe,
+ .probe_new = sii902x_probe,
.remove = sii902x_remove,
.driver = {
.name = "sii902x",
diff --git a/drivers/gpu/drm/bridge/sii9234.c b/drivers/gpu/drm/bridge/sii9234.c
index 5b3061d4b5c3..2d17f227867b 100644
--- a/drivers/gpu/drm/bridge/sii9234.c
+++ b/drivers/gpu/drm/bridge/sii9234.c
@@ -867,11 +867,6 @@ static int sii9234_init_resources(struct sii9234 *ctx,
return 0;
}
-static inline struct sii9234 *bridge_to_sii9234(struct drm_bridge *bridge)
-{
- return container_of(bridge, struct sii9234, bridge);
-}
-
static enum drm_mode_status sii9234_mode_valid(struct drm_bridge *bridge,
const struct drm_display_info *info,
const struct drm_display_mode *mode)
@@ -886,8 +881,7 @@ static const struct drm_bridge_funcs sii9234_bridge_funcs = {
.mode_valid = sii9234_mode_valid,
};
-static int sii9234_probe(struct i2c_client *client,
- const struct i2c_device_id *id)
+static int sii9234_probe(struct i2c_client *client)
{
struct i2c_adapter *adapter = client->adapter;
struct sii9234 *ctx;
@@ -961,7 +955,7 @@ static struct i2c_driver sii9234_driver = {
.name = "sii9234",
.of_match_table = sii9234_dt_match,
},
- .probe = sii9234_probe,
+ .probe_new = sii9234_probe,
.remove = sii9234_remove,
.id_table = sii9234_id,
};
diff --git a/drivers/gpu/drm/bridge/sil-sii8620.c b/drivers/gpu/drm/bridge/sil-sii8620.c
index 511982a1cedb..b96d03cd878d 100644
--- a/drivers/gpu/drm/bridge/sil-sii8620.c
+++ b/drivers/gpu/drm/bridge/sil-sii8620.c
@@ -2284,8 +2284,7 @@ static const struct drm_bridge_funcs sii8620_bridge_funcs = {
.mode_valid = sii8620_mode_valid,
};
-static int sii8620_probe(struct i2c_client *client,
- const struct i2c_device_id *id)
+static int sii8620_probe(struct i2c_client *client)
{
struct device *dev = &client->dev;
struct sii8620 *ctx;
@@ -2379,7 +2378,7 @@ static struct i2c_driver sii8620_driver = {
.name = "sii8620",
.of_match_table = of_match_ptr(sii8620_dt_match),
},
- .probe = sii8620_probe,
+ .probe_new = sii8620_probe,
.remove = sii8620_remove,
.id_table = sii8620_id,
};
diff --git a/drivers/gpu/drm/bridge/simple-bridge.c b/drivers/gpu/drm/bridge/simple-bridge.c
index 2c5c5211bdab..d85d9ee463b8 100644
--- a/drivers/gpu/drm/bridge/simple-bridge.c
+++ b/drivers/gpu/drm/bridge/simple-bridge.c
@@ -202,11 +202,9 @@ static int simple_bridge_probe(struct platform_device *pdev)
sbridge->enable = devm_gpiod_get_optional(&pdev->dev, "enable",
GPIOD_OUT_LOW);
- if (IS_ERR(sbridge->enable)) {
- if (PTR_ERR(sbridge->enable) != -EPROBE_DEFER)
- dev_err(&pdev->dev, "Unable to retrieve enable GPIO\n");
- return PTR_ERR(sbridge->enable);
- }
+ if (IS_ERR(sbridge->enable))
+ return dev_err_probe(&pdev->dev, PTR_ERR(sbridge->enable),
+ "Unable to retrieve enable GPIO\n");
/* Register the bridge. */
sbridge->bridge.funcs = &simple_bridge_bridge_funcs;
@@ -218,13 +216,11 @@ static int simple_bridge_probe(struct platform_device *pdev)
return 0;
}
-static int simple_bridge_remove(struct platform_device *pdev)
+static void simple_bridge_remove(struct platform_device *pdev)
{
struct simple_bridge *sbridge = platform_get_drvdata(pdev);
drm_bridge_remove(&sbridge->bridge);
-
- return 0;
}
/*
@@ -301,7 +297,7 @@ MODULE_DEVICE_TABLE(of, simple_bridge_match);
static struct platform_driver simple_bridge_driver = {
.probe = simple_bridge_probe,
- .remove = simple_bridge_remove,
+ .remove_new = simple_bridge_remove,
.driver = {
.name = "simple-bridge",
.of_match_table = simple_bridge_match,
diff --git a/drivers/gpu/drm/bridge/synopsys/dw-hdmi-ahb-audio.c b/drivers/gpu/drm/bridge/synopsys/dw-hdmi-ahb-audio.c
index 4efb62bcdb63..67b8d17a722a 100644
--- a/drivers/gpu/drm/bridge/synopsys/dw-hdmi-ahb-audio.c
+++ b/drivers/gpu/drm/bridge/synopsys/dw-hdmi-ahb-audio.c
@@ -584,13 +584,11 @@ err:
return ret;
}
-static int snd_dw_hdmi_remove(struct platform_device *pdev)
+static void snd_dw_hdmi_remove(struct platform_device *pdev)
{
struct snd_dw_hdmi *dw = platform_get_drvdata(pdev);
snd_card_free(dw->card);
-
- return 0;
}
#if defined(CONFIG_PM_SLEEP) && defined(IS_NOT_BROKEN)
@@ -625,7 +623,7 @@ static SIMPLE_DEV_PM_OPS(snd_dw_hdmi_pm, snd_dw_hdmi_suspend,
static struct platform_driver snd_dw_hdmi_driver = {
.probe = snd_dw_hdmi_probe,
- .remove = snd_dw_hdmi_remove,
+ .remove_new = snd_dw_hdmi_remove,
.driver = {
.name = DRIVER_NAME,
.pm = PM_OPS,
diff --git a/drivers/gpu/drm/bridge/synopsys/dw-hdmi-cec.c b/drivers/gpu/drm/bridge/synopsys/dw-hdmi-cec.c
index c8f44bcb298a..9389ce526eb1 100644
--- a/drivers/gpu/drm/bridge/synopsys/dw-hdmi-cec.c
+++ b/drivers/gpu/drm/bridge/synopsys/dw-hdmi-cec.c
@@ -296,19 +296,17 @@ static int dw_hdmi_cec_probe(struct platform_device *pdev)
return 0;
}
-static int dw_hdmi_cec_remove(struct platform_device *pdev)
+static void dw_hdmi_cec_remove(struct platform_device *pdev)
{
struct dw_hdmi_cec *cec = platform_get_drvdata(pdev);
cec_notifier_cec_adap_unregister(cec->notify, cec->adap);
cec_unregister_adapter(cec->adap);
-
- return 0;
}
static struct platform_driver dw_hdmi_cec_driver = {
.probe = dw_hdmi_cec_probe,
- .remove = dw_hdmi_cec_remove,
+ .remove_new = dw_hdmi_cec_remove,
.driver = {
.name = "dw-hdmi-cec",
},
diff --git a/drivers/gpu/drm/bridge/synopsys/dw-hdmi-gp-audio.c b/drivers/gpu/drm/bridge/synopsys/dw-hdmi-gp-audio.c
index 557966239677..423762da2ab4 100644
--- a/drivers/gpu/drm/bridge/synopsys/dw-hdmi-gp-audio.c
+++ b/drivers/gpu/drm/bridge/synopsys/dw-hdmi-gp-audio.c
@@ -172,18 +172,16 @@ static int snd_dw_hdmi_probe(struct platform_device *pdev)
return PTR_ERR_OR_ZERO(dw->audio_pdev);
}
-static int snd_dw_hdmi_remove(struct platform_device *pdev)
+static void snd_dw_hdmi_remove(struct platform_device *pdev)
{
struct snd_dw_hdmi *dw = platform_get_drvdata(pdev);
platform_device_unregister(dw->audio_pdev);
-
- return 0;
}
static struct platform_driver snd_dw_hdmi_driver = {
.probe = snd_dw_hdmi_probe,
- .remove = snd_dw_hdmi_remove,
+ .remove_new = snd_dw_hdmi_remove,
.driver = {
.name = DRIVER_NAME,
},
diff --git a/drivers/gpu/drm/bridge/synopsys/dw-hdmi-i2s-audio.c b/drivers/gpu/drm/bridge/synopsys/dw-hdmi-i2s-audio.c
index a2f0860b20bb..26c187d20d97 100644
--- a/drivers/gpu/drm/bridge/synopsys/dw-hdmi-i2s-audio.c
+++ b/drivers/gpu/drm/bridge/synopsys/dw-hdmi-i2s-audio.c
@@ -193,6 +193,7 @@ static int snd_dw_hdmi_probe(struct platform_device *pdev)
struct hdmi_codec_pdata pdata;
struct platform_device *platform;
+ memset(&pdata, 0, sizeof(pdata));
pdata.ops = &dw_hdmi_i2s_ops;
pdata.i2s = 1;
pdata.max_i2s_channels = 8;
@@ -215,18 +216,16 @@ static int snd_dw_hdmi_probe(struct platform_device *pdev)
return 0;
}
-static int snd_dw_hdmi_remove(struct platform_device *pdev)
+static void snd_dw_hdmi_remove(struct platform_device *pdev)
{
struct platform_device *platform = dev_get_drvdata(&pdev->dev);
platform_device_unregister(platform);
-
- return 0;
}
static struct platform_driver snd_dw_hdmi_driver = {
.probe = snd_dw_hdmi_probe,
- .remove = snd_dw_hdmi_remove,
+ .remove_new = snd_dw_hdmi_remove,
.driver = {
.name = DRIVER_NAME,
},
diff --git a/drivers/gpu/drm/bridge/synopsys/dw-hdmi.c b/drivers/gpu/drm/bridge/synopsys/dw-hdmi.c
index 40d8ca37f5bc..603bb3c51027 100644
--- a/drivers/gpu/drm/bridge/synopsys/dw-hdmi.c
+++ b/drivers/gpu/drm/bridge/synopsys/dw-hdmi.c
@@ -1426,9 +1426,9 @@ void dw_hdmi_set_high_tmds_clock_ratio(struct dw_hdmi *hdmi,
/* Control for TMDS Bit Period/TMDS Clock-Period Ratio */
if (dw_hdmi_support_scdc(hdmi, display)) {
if (mtmdsclock > HDMI14_MAX_TMDSCLK)
- drm_scdc_set_high_tmds_clock_ratio(hdmi->ddc, 1);
+ drm_scdc_set_high_tmds_clock_ratio(&hdmi->connector, 1);
else
- drm_scdc_set_high_tmds_clock_ratio(hdmi->ddc, 0);
+ drm_scdc_set_high_tmds_clock_ratio(&hdmi->connector, 0);
}
}
EXPORT_SYMBOL_GPL(dw_hdmi_set_high_tmds_clock_ratio);
@@ -2116,7 +2116,7 @@ static void hdmi_av_composer(struct dw_hdmi *hdmi,
min_t(u8, bytes, SCDC_MIN_SOURCE_VERSION));
/* Enabled Scrambling in the Sink */
- drm_scdc_set_scrambling(hdmi->ddc, 1);
+ drm_scdc_set_scrambling(&hdmi->connector, 1);
/*
* To activate the scrambler feature, you must ensure
@@ -2132,7 +2132,7 @@ static void hdmi_av_composer(struct dw_hdmi *hdmi,
hdmi_writeb(hdmi, 0, HDMI_FC_SCRAMBLER_CTRL);
hdmi_writeb(hdmi, (u8)~HDMI_MC_SWRSTZ_TMDSSWRST_REQ,
HDMI_MC_SWRSTZ);
- drm_scdc_set_scrambling(hdmi->ddc, 0);
+ drm_scdc_set_scrambling(&hdmi->connector, 0);
}
}
@@ -2720,6 +2720,9 @@ static u32 *dw_hdmi_bridge_atomic_get_output_bus_fmts(struct drm_bridge *bridge,
* if supported. In any case the default RGB888 format is added
*/
+ /* Default 8bit RGB fallback */
+ output_fmts[i++] = MEDIA_BUS_FMT_RGB888_1X24;
+
if (max_bpc >= 16 && info->bpc == 16) {
if (info->color_formats & DRM_COLOR_FORMAT_YCBCR444)
output_fmts[i++] = MEDIA_BUS_FMT_YUV16_1X48;
@@ -2753,9 +2756,6 @@ static u32 *dw_hdmi_bridge_atomic_get_output_bus_fmts(struct drm_bridge *bridge,
if (info->color_formats & DRM_COLOR_FORMAT_YCBCR444)
output_fmts[i++] = MEDIA_BUS_FMT_YUV8_1X24;
- /* Default 8bit RGB fallback */
- output_fmts[i++] = MEDIA_BUS_FMT_RGB888_1X24;
-
*num_output_fmts = i;
return output_fmts;
diff --git a/drivers/gpu/drm/bridge/tc358762.c b/drivers/gpu/drm/bridge/tc358762.c
index 7f4fce1aa998..77f7f7f54757 100644
--- a/drivers/gpu/drm/bridge/tc358762.c
+++ b/drivers/gpu/drm/bridge/tc358762.c
@@ -11,6 +11,7 @@
*/
#include <linux/delay.h>
+#include <linux/mod_devicetable.h>
#include <linux/module.h>
#include <linux/of_graph.h>
#include <linux/regulator/consumer.h>
@@ -19,7 +20,6 @@
#include <drm/drm_atomic_helper.h>
#include <drm/drm_crtc.h>
-#include <drm/drm_fb_helper.h>
#include <drm/drm_mipi_dsi.h>
#include <drm/drm_of.h>
#include <drm/drm_panel.h>
@@ -229,6 +229,7 @@ static int tc358762_probe(struct mipi_dsi_device *dsi)
ctx->bridge.funcs = &tc358762_bridge_funcs;
ctx->bridge.type = DRM_MODE_CONNECTOR_DPI;
ctx->bridge.of_node = dev->of_node;
+ ctx->bridge.pre_enable_prev_first = true;
drm_bridge_add(&ctx->bridge);
diff --git a/drivers/gpu/drm/bridge/tc358764.c b/drivers/gpu/drm/bridge/tc358764.c
index 53259c12d777..f85654f1b104 100644
--- a/drivers/gpu/drm/bridge/tc358764.c
+++ b/drivers/gpu/drm/bridge/tc358764.c
@@ -369,6 +369,7 @@ static int tc358764_probe(struct mipi_dsi_device *dsi)
ctx->bridge.funcs = &tc358764_bridge_funcs;
ctx->bridge.of_node = dev->of_node;
+ ctx->bridge.pre_enable_prev_first = true;
drm_bridge_add(&ctx->bridge);
diff --git a/drivers/gpu/drm/bridge/tc358767.c b/drivers/gpu/drm/bridge/tc358767.c
index 2a58eb271f70..91f7cb56a654 100644
--- a/drivers/gpu/drm/bridge/tc358767.c
+++ b/drivers/gpu/drm/bridge/tc358767.c
@@ -1264,10 +1264,10 @@ static int tc_dsi_rx_enable(struct tc_data *tc)
u32 value;
int ret;
- regmap_write(tc->regmap, PPI_D0S_CLRSIPOCOUNT, 5);
- regmap_write(tc->regmap, PPI_D1S_CLRSIPOCOUNT, 5);
- regmap_write(tc->regmap, PPI_D2S_CLRSIPOCOUNT, 5);
- regmap_write(tc->regmap, PPI_D3S_CLRSIPOCOUNT, 5);
+ regmap_write(tc->regmap, PPI_D0S_CLRSIPOCOUNT, 25);
+ regmap_write(tc->regmap, PPI_D1S_CLRSIPOCOUNT, 25);
+ regmap_write(tc->regmap, PPI_D2S_CLRSIPOCOUNT, 25);
+ regmap_write(tc->regmap, PPI_D3S_CLRSIPOCOUNT, 25);
regmap_write(tc->regmap, PPI_D0S_ATMR, 0);
regmap_write(tc->regmap, PPI_D1S_ATMR, 0);
regmap_write(tc->regmap, PPI_TX_RX_TA, TTA_GET | TTA_SURE);
@@ -1896,10 +1896,10 @@ static int tc_mipi_dsi_host_attach(struct tc_data *tc)
"failed to create dsi device\n");
tc->dsi = dsi;
-
dsi->lanes = dsi_lanes;
dsi->format = MIPI_DSI_FMT_RGB888;
- dsi->mode_flags = MIPI_DSI_MODE_VIDEO | MIPI_DSI_MODE_VIDEO_SYNC_PULSE;
+ dsi->mode_flags = MIPI_DSI_MODE_VIDEO | MIPI_DSI_MODE_VIDEO_BURST |
+ MIPI_DSI_MODE_LPM | MIPI_DSI_CLOCK_NON_CONTINUOUS;
ret = mipi_dsi_attach(dsi);
if (ret < 0) {
@@ -2029,7 +2029,7 @@ static void tc_clk_disable(void *data)
clk_disable_unprepare(refclk);
}
-static int tc_probe(struct i2c_client *client, const struct i2c_device_id *id)
+static int tc_probe(struct i2c_client *client)
{
struct device *dev = &client->dev;
struct tc_data *tc;
@@ -2209,7 +2209,7 @@ static struct i2c_driver tc358767_driver = {
.of_match_table = tc358767_of_ids,
},
.id_table = tc358767_i2c_ids,
- .probe = tc_probe,
+ .probe_new = tc_probe,
.remove = tc_remove,
};
module_i2c_driver(tc358767_driver);
diff --git a/drivers/gpu/drm/bridge/tc358768.c b/drivers/gpu/drm/bridge/tc358768.c
index 4c4b77ce8aba..7c0cbe84611b 100644
--- a/drivers/gpu/drm/bridge/tc358768.c
+++ b/drivers/gpu/drm/bridge/tc358768.c
@@ -15,7 +15,6 @@
#include <linux/slab.h>
#include <drm/drm_atomic_helper.h>
-#include <drm/drm_crtc_helper.h>
#include <drm/drm_drv.h>
#include <drm/drm_mipi_dsi.h>
#include <drm/drm_of.h>
@@ -1018,8 +1017,7 @@ static int tc358768_get_regulators(struct tc358768_priv *priv)
return ret;
}
-static int tc358768_i2c_probe(struct i2c_client *client,
- const struct i2c_device_id *id)
+static int tc358768_i2c_probe(struct i2c_client *client)
{
struct tc358768_priv *priv;
struct device *dev = &client->dev;
@@ -1085,7 +1083,7 @@ static struct i2c_driver tc358768_driver = {
.of_match_table = tc358768_of_ids,
},
.id_table = tc358768_i2c_ids,
- .probe = tc358768_i2c_probe,
+ .probe_new = tc358768_i2c_probe,
.remove = tc358768_i2c_remove,
};
module_i2c_driver(tc358768_driver);
diff --git a/drivers/gpu/drm/bridge/tc358775.c b/drivers/gpu/drm/bridge/tc358775.c
index 02dc12b8151e..19316994ddd1 100644
--- a/drivers/gpu/drm/bridge/tc358775.c
+++ b/drivers/gpu/drm/bridge/tc358775.c
@@ -23,7 +23,6 @@
#include <drm/display/drm_dp_helper.h>
#include <drm/drm_atomic_helper.h>
#include <drm/drm_bridge.h>
-#include <drm/drm_crtc_helper.h>
#include <drm/drm_mipi_dsi.h>
#include <drm/drm_of.h>
#include <drm/drm_panel.h>
@@ -408,7 +407,7 @@ static void tc_bridge_enable(struct drm_bridge *bridge)
(val >> 8) & 0xFF, val & 0xFF);
d2l_write(tc->i2c, SYSRST, SYS_RST_REG | SYS_RST_DSIRX | SYS_RST_BM |
- SYS_RST_LCD | SYS_RST_I2CM | SYS_RST_I2CS);
+ SYS_RST_LCD | SYS_RST_I2CM);
usleep_range(30000, 40000);
d2l_write(tc->i2c, PPI_TX_RX_TA, TTA_GET | TTA_SURE);
@@ -637,7 +636,7 @@ static int tc_attach_host(struct tc_data *tc)
return 0;
}
-static int tc_probe(struct i2c_client *client, const struct i2c_device_id *id)
+static int tc_probe(struct i2c_client *client)
{
struct device *dev = &client->dev;
struct tc_data *tc;
@@ -729,7 +728,7 @@ static struct i2c_driver tc358775_driver = {
.of_match_table = tc358775_of_ids,
},
.id_table = tc358775_i2c_ids,
- .probe = tc_probe,
+ .probe_new = tc_probe,
.remove = tc_remove,
};
module_i2c_driver(tc358775_driver);
diff --git a/drivers/gpu/drm/bridge/thc63lvd1024.c b/drivers/gpu/drm/bridge/thc63lvd1024.c
index e21078b2f8b5..d4c1a601bbb5 100644
--- a/drivers/gpu/drm/bridge/thc63lvd1024.c
+++ b/drivers/gpu/drm/bridge/thc63lvd1024.c
@@ -230,13 +230,11 @@ static int thc63_probe(struct platform_device *pdev)
return 0;
}
-static int thc63_remove(struct platform_device *pdev)
+static void thc63_remove(struct platform_device *pdev)
{
struct thc63_dev *thc63 = platform_get_drvdata(pdev);
drm_bridge_remove(&thc63->bridge);
-
- return 0;
}
static const struct of_device_id thc63_match[] = {
@@ -247,7 +245,7 @@ MODULE_DEVICE_TABLE(of, thc63_match);
static struct platform_driver thc63_driver = {
.probe = thc63_probe,
- .remove = thc63_remove,
+ .remove_new = thc63_remove,
.driver = {
.name = "thc63lvd1024",
.of_match_table = thc63_match,
diff --git a/drivers/gpu/drm/bridge/ti-sn65dsi83.c b/drivers/gpu/drm/bridge/ti-sn65dsi83.c
index 7ba9467fff12..75286c9afbb9 100644
--- a/drivers/gpu/drm/bridge/ti-sn65dsi83.c
+++ b/drivers/gpu/drm/bridge/ti-sn65dsi83.c
@@ -346,7 +346,7 @@ static void sn65dsi83_atomic_enable(struct drm_bridge *bridge,
/* Deassert reset */
gpiod_set_value_cansleep(ctx->enable_gpio, 1);
- usleep_range(1000, 1100);
+ usleep_range(10000, 11000);
/* Get the LVDS format from the bridge state. */
bridge_state = drm_atomic_get_new_bridge_state(state, bridge);
@@ -642,7 +642,9 @@ static int sn65dsi83_host_attach(struct sn65dsi83 *ctx)
dsi->lanes = dsi_lanes;
dsi->format = MIPI_DSI_FMT_RGB888;
- dsi->mode_flags = MIPI_DSI_MODE_VIDEO | MIPI_DSI_MODE_VIDEO_BURST;
+ dsi->mode_flags = MIPI_DSI_MODE_VIDEO | MIPI_DSI_MODE_VIDEO_BURST |
+ MIPI_DSI_MODE_VIDEO_NO_HFP | MIPI_DSI_MODE_VIDEO_NO_HBP |
+ MIPI_DSI_MODE_VIDEO_NO_HSA | MIPI_DSI_MODE_NO_EOT_PACKET;
ret = devm_mipi_dsi_attach(dev, dsi);
if (ret < 0) {
@@ -653,9 +655,9 @@ static int sn65dsi83_host_attach(struct sn65dsi83 *ctx)
return 0;
}
-static int sn65dsi83_probe(struct i2c_client *client,
- const struct i2c_device_id *id)
+static int sn65dsi83_probe(struct i2c_client *client)
{
+ const struct i2c_device_id *id = i2c_client_get_device_id(client);
struct device *dev = &client->dev;
enum sn65dsi83_model model;
struct sn65dsi83 *ctx;
@@ -698,8 +700,10 @@ static int sn65dsi83_probe(struct i2c_client *client,
drm_bridge_add(&ctx->bridge);
ret = sn65dsi83_host_attach(ctx);
- if (ret)
+ if (ret) {
+ dev_err_probe(dev, ret, "failed to attach DSI host\n");
goto err_remove_bridge;
+ }
return 0;
@@ -730,7 +734,7 @@ static const struct of_device_id sn65dsi83_match_table[] = {
MODULE_DEVICE_TABLE(of, sn65dsi83_match_table);
static struct i2c_driver sn65dsi83_driver = {
- .probe = sn65dsi83_probe,
+ .probe_new = sn65dsi83_probe,
.remove = sn65dsi83_remove,
.id_table = sn65dsi83_id,
.driver = {
diff --git a/drivers/gpu/drm/bridge/ti-sn65dsi86.c b/drivers/gpu/drm/bridge/ti-sn65dsi86.c
index 3c3561942eb6..7a748785c545 100644
--- a/drivers/gpu/drm/bridge/ti-sn65dsi86.c
+++ b/drivers/gpu/drm/bridge/ti-sn65dsi86.c
@@ -363,7 +363,7 @@ static int __maybe_unused ti_sn65dsi86_resume(struct device *dev)
/* td2: min 100 us after regulators before enabling the GPIO */
usleep_range(100, 110);
- gpiod_set_value(pdata->enable_gpio, 1);
+ gpiod_set_value_cansleep(pdata->enable_gpio, 1);
/*
* If we have a reference clock we can enable communication w/ the
@@ -386,7 +386,7 @@ static int __maybe_unused ti_sn65dsi86_suspend(struct device *dev)
if (pdata->refclk)
ti_sn65dsi86_disable_comms(pdata);
- gpiod_set_value(pdata->enable_gpio, 0);
+ gpiod_set_value_cansleep(pdata->enable_gpio, 0);
ret = regulator_bulk_disable(SN_REGULATOR_SUPPLY_NUM, pdata->supplies);
if (ret)
@@ -931,9 +931,9 @@ static void ti_sn_bridge_set_video_timings(struct ti_sn65dsi86 *pdata)
&pdata->bridge.encoder->crtc->state->adjusted_mode;
u8 hsync_polarity = 0, vsync_polarity = 0;
- if (mode->flags & DRM_MODE_FLAG_PHSYNC)
+ if (mode->flags & DRM_MODE_FLAG_NHSYNC)
hsync_polarity = CHA_HSYNC_POLARITY;
- if (mode->flags & DRM_MODE_FLAG_PVSYNC)
+ if (mode->flags & DRM_MODE_FLAG_NVSYNC)
vsync_polarity = CHA_VSYNC_POLARITY;
ti_sn65dsi86_write_u16(pdata, SN_CHA_ACTIVE_LINE_LENGTH_LOW_REG,
@@ -1500,8 +1500,8 @@ out:
return ret;
}
-static void ti_sn_pwm_get_state(struct pwm_chip *chip, struct pwm_device *pwm,
- struct pwm_state *state)
+static int ti_sn_pwm_get_state(struct pwm_chip *chip, struct pwm_device *pwm,
+ struct pwm_state *state)
{
struct ti_sn65dsi86 *pdata = pwm_chip_to_ti_sn_bridge(chip);
unsigned int pwm_en_inv;
@@ -1512,19 +1512,19 @@ static void ti_sn_pwm_get_state(struct pwm_chip *chip, struct pwm_device *pwm,
ret = regmap_read(pdata->regmap, SN_PWM_EN_INV_REG, &pwm_en_inv);
if (ret)
- return;
+ return ret;
ret = ti_sn65dsi86_read_u16(pdata, SN_BACKLIGHT_SCALE_REG, &scale);
if (ret)
- return;
+ return ret;
ret = ti_sn65dsi86_read_u16(pdata, SN_BACKLIGHT_REG, &backlight);
if (ret)
- return;
+ return ret;
ret = regmap_read(pdata->regmap, SN_PWM_PRE_DIV_REG, &pre_div);
if (ret)
- return;
+ return ret;
state->enabled = FIELD_GET(SN_PWM_EN_MASK, pwm_en_inv);
if (FIELD_GET(SN_PWM_INV_MASK, pwm_en_inv))
@@ -1539,6 +1539,8 @@ static void ti_sn_pwm_get_state(struct pwm_chip *chip, struct pwm_device *pwm,
if (state->duty_cycle > state->period)
state->duty_cycle = state->period;
+
+ return 0;
}
static const struct pwm_ops ti_sn_pwm_ops = {
@@ -1850,8 +1852,7 @@ static int ti_sn65dsi86_parse_regulators(struct ti_sn65dsi86 *pdata)
pdata->supplies);
}
-static int ti_sn65dsi86_probe(struct i2c_client *client,
- const struct i2c_device_id *id)
+static int ti_sn65dsi86_probe(struct i2c_client *client)
{
struct device *dev = &client->dev;
struct ti_sn65dsi86 *pdata;
@@ -1950,7 +1951,7 @@ static struct i2c_driver ti_sn65dsi86_driver = {
.of_match_table = ti_sn65dsi86_match_table,
.pm = &ti_sn65dsi86_pm_ops,
},
- .probe = ti_sn65dsi86_probe,
+ .probe_new = ti_sn65dsi86_probe,
.id_table = ti_sn65dsi86_id,
};
diff --git a/drivers/gpu/drm/bridge/ti-tfp410.c b/drivers/gpu/drm/bridge/ti-tfp410.c
index b9635abbad16..ab63225cd635 100644
--- a/drivers/gpu/drm/bridge/ti-tfp410.c
+++ b/drivers/gpu/drm/bridge/ti-tfp410.c
@@ -355,11 +355,9 @@ static int tfp410_probe(struct platform_device *pdev)
return tfp410_init(&pdev->dev, false);
}
-static int tfp410_remove(struct platform_device *pdev)
+static void tfp410_remove(struct platform_device *pdev)
{
tfp410_fini(&pdev->dev);
-
- return 0;
}
static const struct of_device_id tfp410_match[] = {
@@ -370,7 +368,7 @@ MODULE_DEVICE_TABLE(of, tfp410_match);
static struct platform_driver tfp410_platform_driver = {
.probe = tfp410_probe,
- .remove = tfp410_remove,
+ .remove_new = tfp410_remove,
.driver = {
.name = "tfp410-bridge",
.of_match_table = tfp410_match,
@@ -379,8 +377,7 @@ static struct platform_driver tfp410_platform_driver = {
#if IS_ENABLED(CONFIG_I2C)
/* There is currently no i2c functionality. */
-static int tfp410_i2c_probe(struct i2c_client *client,
- const struct i2c_device_id *id)
+static int tfp410_i2c_probe(struct i2c_client *client)
{
int reg;
@@ -411,7 +408,7 @@ static struct i2c_driver tfp410_i2c_driver = {
.of_match_table = of_match_ptr(tfp410_match),
},
.id_table = tfp410_i2c_ids,
- .probe = tfp410_i2c_probe,
+ .probe_new = tfp410_i2c_probe,
.remove = tfp410_i2c_remove,
};
#endif /* IS_ENABLED(CONFIG_I2C) */
diff --git a/drivers/gpu/drm/display/Makefile b/drivers/gpu/drm/display/Makefile
index 52cdda1180d9..17ac4a1006a8 100644
--- a/drivers/gpu/drm/display/Makefile
+++ b/drivers/gpu/drm/display/Makefile
@@ -3,13 +3,15 @@
obj-$(CONFIG_DRM_DP_AUX_BUS) += drm_dp_aux_bus.o
drm_display_helper-y := drm_display_helper_mod.o
-drm_display_helper-$(CONFIG_DRM_DISPLAY_DP_HELPER) += drm_dp_dual_mode_helper.o \
- drm_dp_helper.o \
- drm_dp_mst_topology.o \
- drm_dsc_helper.o
+drm_display_helper-$(CONFIG_DRM_DISPLAY_DP_HELPER) += \
+ drm_dp_dual_mode_helper.o \
+ drm_dp_helper.o \
+ drm_dp_mst_topology.o \
+ drm_dsc_helper.o
drm_display_helper-$(CONFIG_DRM_DISPLAY_HDCP_HELPER) += drm_hdcp_helper.o
-drm_display_helper-$(CONFIG_DRM_DISPLAY_HDMI_HELPER) += drm_hdmi_helper.o \
- drm_scdc_helper.o
+drm_display_helper-$(CONFIG_DRM_DISPLAY_HDMI_HELPER) += \
+ drm_hdmi_helper.o \
+ drm_scdc_helper.o
drm_display_helper-$(CONFIG_DRM_DP_AUX_CHARDEV) += drm_dp_aux_dev.o
drm_display_helper-$(CONFIG_DRM_DP_CEC) += drm_dp_cec.o
diff --git a/drivers/gpu/drm/display/drm_dp_aux_bus.c b/drivers/gpu/drm/display/drm_dp_aux_bus.c
index f5741b45ca07..8a165be1a821 100644
--- a/drivers/gpu/drm/display/drm_dp_aux_bus.c
+++ b/drivers/gpu/drm/display/drm_dp_aux_bus.c
@@ -161,9 +161,14 @@ static void dp_aux_ep_dev_release(struct device *dev)
kfree(aux_ep_with_data);
}
+static int dp_aux_ep_dev_modalias(const struct device *dev, struct kobj_uevent_env *env)
+{
+ return of_device_uevent_modalias(dev, env);
+}
+
static struct device_type dp_aux_device_type_type = {
.groups = dp_aux_ep_dev_groups,
- .uevent = of_device_uevent_modalias,
+ .uevent = dp_aux_ep_dev_modalias,
.release = dp_aux_ep_dev_release,
};
diff --git a/drivers/gpu/drm/display/drm_dp_aux_dev.c b/drivers/gpu/drm/display/drm_dp_aux_dev.c
index 098e482e65a2..29555b9f03c8 100644
--- a/drivers/gpu/drm/display/drm_dp_aux_dev.c
+++ b/drivers/gpu/drm/display/drm_dp_aux_dev.c
@@ -330,7 +330,7 @@ int drm_dp_aux_dev_init(void)
{
int res;
- drm_dp_aux_dev_class = class_create(THIS_MODULE, "drm_dp_aux_dev");
+ drm_dp_aux_dev_class = class_create("drm_dp_aux_dev");
if (IS_ERR(drm_dp_aux_dev_class)) {
return PTR_ERR(drm_dp_aux_dev_class);
}
diff --git a/drivers/gpu/drm/display/drm_dp_dual_mode_helper.c b/drivers/gpu/drm/display/drm_dp_dual_mode_helper.c
index 3ea53bb67d3b..bd61e20770a5 100644
--- a/drivers/gpu/drm/display/drm_dp_dual_mode_helper.c
+++ b/drivers/gpu/drm/display/drm_dp_dual_mode_helper.c
@@ -63,23 +63,45 @@
ssize_t drm_dp_dual_mode_read(struct i2c_adapter *adapter,
u8 offset, void *buffer, size_t size)
{
+ u8 zero = 0;
+ char *tmpbuf = NULL;
+ /*
+ * As sub-addressing is not supported by all adaptors,
+ * always explicitly read from the start and discard
+ * any bytes that come before the requested offset.
+ * This way, no matter whether the adaptor supports it
+ * or not, we'll end up reading the proper data.
+ */
struct i2c_msg msgs[] = {
{
.addr = DP_DUAL_MODE_SLAVE_ADDRESS,
.flags = 0,
.len = 1,
- .buf = &offset,
+ .buf = &zero,
},
{
.addr = DP_DUAL_MODE_SLAVE_ADDRESS,
.flags = I2C_M_RD,
- .len = size,
+ .len = size + offset,
.buf = buffer,
},
};
int ret;
+ if (offset) {
+ tmpbuf = kmalloc(size + offset, GFP_KERNEL);
+ if (!tmpbuf)
+ return -ENOMEM;
+
+ msgs[1].buf = tmpbuf;
+ }
+
ret = i2c_transfer(adapter, msgs, ARRAY_SIZE(msgs));
+ if (tmpbuf)
+ memcpy(buffer, tmpbuf + offset, size);
+
+ kfree(tmpbuf);
+
if (ret < 0)
return ret;
if (ret != ARRAY_SIZE(msgs))
@@ -208,18 +230,6 @@ enum drm_dp_dual_mode_type drm_dp_dual_mode_detect(const struct drm_device *dev,
if (ret)
return DRM_DP_DUAL_MODE_UNKNOWN;
- /*
- * Sigh. Some (maybe all?) type 1 adaptors are broken and ack
- * the offset but ignore it, and instead they just always return
- * data from the start of the HDMI ID buffer. So for a broken
- * type 1 HDMI adaptor a single byte read will always give us
- * 0x44, and for a type 1 DVI adaptor it should give 0x00
- * (assuming it implements any registers). Fortunately neither
- * of those values will match the type 2 signature of the
- * DP_DUAL_MODE_ADAPTOR_ID register so we can proceed with
- * the type 2 adaptor detection safely even in the presence
- * of broken type 1 adaptors.
- */
ret = drm_dp_dual_mode_read(adapter, DP_DUAL_MODE_ADAPTOR_ID,
&adaptor_id, sizeof(adaptor_id));
drm_dbg_kms(dev, "DP dual mode adaptor ID: %02x (err %zd)\n", adaptor_id, ret);
@@ -233,11 +243,10 @@ enum drm_dp_dual_mode_type drm_dp_dual_mode_detect(const struct drm_device *dev,
return DRM_DP_DUAL_MODE_TYPE2_DVI;
}
/*
- * If neither a proper type 1 ID nor a broken type 1 adaptor
- * as described above, assume type 1, but let the user know
- * that we may have misdetected the type.
+ * If not a proper type 1 ID, still assume type 1, but let
+ * the user know that we may have misdetected the type.
*/
- if (!is_type1_adaptor(adaptor_id) && adaptor_id != hdmi_id[0])
+ if (!is_type1_adaptor(adaptor_id))
drm_err(dev, "Unexpected DP dual mode adaptor ID %02x\n", adaptor_id);
}
@@ -343,10 +352,8 @@ EXPORT_SYMBOL(drm_dp_dual_mode_get_tmds_output);
* @enable: enable (as opposed to disable) the TMDS output buffers
*
* Set the state of the TMDS output buffers in the adaptor. For
- * type2 this is set via the DP_DUAL_MODE_TMDS_OEN register. As
- * some type 1 adaptors have problems with registers (see comments
- * in drm_dp_dual_mode_detect()) we avoid touching the register,
- * making this function a no-op on type 1 adaptors.
+ * type2 this is set via the DP_DUAL_MODE_TMDS_OEN register.
+ * Type1 adaptors do not support any register writes.
*
* Returns:
* 0 on success, negative error code on failure
diff --git a/drivers/gpu/drm/display/drm_dp_mst_topology.c b/drivers/gpu/drm/display/drm_dp_mst_topology.c
index ecd22c038c8c..38dab76ae69e 100644
--- a/drivers/gpu/drm/display/drm_dp_mst_topology.c
+++ b/drivers/gpu/drm/display/drm_dp_mst_topology.c
@@ -3309,8 +3309,13 @@ int drm_dp_add_payload_part1(struct drm_dp_mst_topology_mgr *mgr,
int ret;
port = drm_dp_mst_topology_get_port_validated(mgr, payload->port);
- if (!port)
+ if (!port) {
+ drm_dbg_kms(mgr->dev,
+ "VCPI %d for port %p not in topology, not creating a payload\n",
+ payload->vcpi, payload->port);
+ payload->vc_start_slot = -1;
return 0;
+ }
if (mgr->payload_count == 0)
mgr->next_start_slot = mst_state->start_slot;
@@ -3337,7 +3342,8 @@ EXPORT_SYMBOL(drm_dp_add_payload_part1);
* drm_dp_remove_payload() - Remove an MST payload
* @mgr: Manager to use.
* @mst_state: The MST atomic state
- * @payload: The payload to write
+ * @old_payload: The payload with its old state
+ * @new_payload: The payload to write
*
* Removes a payload from an MST topology if it was successfully assigned a start slot. Also updates
* the starting time slots of all other payloads which would have been shifted towards the start of
@@ -3345,33 +3351,37 @@ EXPORT_SYMBOL(drm_dp_add_payload_part1);
*/
void drm_dp_remove_payload(struct drm_dp_mst_topology_mgr *mgr,
struct drm_dp_mst_topology_state *mst_state,
- struct drm_dp_mst_atomic_payload *payload)
+ const struct drm_dp_mst_atomic_payload *old_payload,
+ struct drm_dp_mst_atomic_payload *new_payload)
{
struct drm_dp_mst_atomic_payload *pos;
bool send_remove = false;
/* We failed to make the payload, so nothing to do */
- if (payload->vc_start_slot == -1)
+ if (new_payload->vc_start_slot == -1)
return;
mutex_lock(&mgr->lock);
- send_remove = drm_dp_mst_port_downstream_of_branch(payload->port, mgr->mst_primary);
+ send_remove = drm_dp_mst_port_downstream_of_branch(new_payload->port, mgr->mst_primary);
mutex_unlock(&mgr->lock);
if (send_remove)
- drm_dp_destroy_payload_step1(mgr, mst_state, payload);
+ drm_dp_destroy_payload_step1(mgr, mst_state, new_payload);
else
drm_dbg_kms(mgr->dev, "Payload for VCPI %d not in topology, not sending remove\n",
- payload->vcpi);
+ new_payload->vcpi);
list_for_each_entry(pos, &mst_state->payloads, next) {
- if (pos != payload && pos->vc_start_slot > payload->vc_start_slot)
- pos->vc_start_slot -= payload->time_slots;
+ if (pos != new_payload && pos->vc_start_slot > new_payload->vc_start_slot)
+ pos->vc_start_slot -= old_payload->time_slots;
}
- payload->vc_start_slot = -1;
+ new_payload->vc_start_slot = -1;
mgr->payload_count--;
- mgr->next_start_slot -= payload->time_slots;
+ mgr->next_start_slot -= old_payload->time_slots;
+
+ if (new_payload->delete)
+ drm_dp_mst_put_port_malloc(new_payload->port);
}
EXPORT_SYMBOL(drm_dp_remove_payload);
@@ -3641,6 +3651,9 @@ int drm_dp_mst_topology_mgr_set_mst(struct drm_dp_mst_topology_mgr *mgr, bool ms
drm_dp_dpcd_writeb(mgr->aux, DP_MSTM_CTRL, 0);
ret = 0;
mgr->payload_id_table_cleared = false;
+
+ memset(&mgr->down_rep_recv, 0, sizeof(mgr->down_rep_recv));
+ memset(&mgr->up_req_recv, 0, sizeof(mgr->up_req_recv));
}
out_unlock:
@@ -3853,7 +3866,7 @@ static int drm_dp_mst_handle_down_rep(struct drm_dp_mst_topology_mgr *mgr)
struct drm_dp_sideband_msg_rx *msg = &mgr->down_rep_recv;
if (!drm_dp_get_one_sb_msg(mgr, false, &mstb))
- goto out;
+ goto out_clear_reply;
/* Multi-packet message transmission, don't clear the reply */
if (!msg->have_eomt)
@@ -4327,7 +4340,6 @@ int drm_dp_atomic_release_time_slots(struct drm_atomic_state *state,
drm_dbg_atomic(mgr->dev, "[MST PORT:%p] TU %d -> 0\n", port, payload->time_slots);
if (!payload->delete) {
- drm_dp_mst_put_port_malloc(port);
payload->pbn = 0;
payload->delete = true;
topology_state->payload_mask &= ~BIT(payload->vcpi - 1);
@@ -5186,7 +5198,7 @@ int drm_dp_mst_add_affected_dsc_crtcs(struct drm_atomic_state *state, struct drm
mst_state = drm_atomic_get_mst_topology_state(state, mgr);
if (IS_ERR(mst_state))
- return -EINVAL;
+ return PTR_ERR(mst_state);
list_for_each_entry(pos, &mst_state->payloads, next) {
@@ -5353,27 +5365,52 @@ struct drm_dp_mst_topology_state *drm_atomic_get_mst_topology_state(struct drm_a
EXPORT_SYMBOL(drm_atomic_get_mst_topology_state);
/**
+ * drm_atomic_get_old_mst_topology_state: get old MST topology state in atomic state, if any
+ * @state: global atomic state
+ * @mgr: MST topology manager, also the private object in this case
+ *
+ * This function wraps drm_atomic_get_old_private_obj_state() passing in the MST atomic
+ * state vtable so that the private object state returned is that of a MST
+ * topology object.
+ *
+ * Returns:
+ *
+ * The old MST topology state, or NULL if there's no topology state for this MST mgr
+ * in the global atomic state
+ */
+struct drm_dp_mst_topology_state *
+drm_atomic_get_old_mst_topology_state(struct drm_atomic_state *state,
+ struct drm_dp_mst_topology_mgr *mgr)
+{
+ struct drm_private_state *old_priv_state =
+ drm_atomic_get_old_private_obj_state(state, &mgr->base);
+
+ return old_priv_state ? to_dp_mst_topology_state(old_priv_state) : NULL;
+}
+EXPORT_SYMBOL(drm_atomic_get_old_mst_topology_state);
+
+/**
* drm_atomic_get_new_mst_topology_state: get new MST topology state in atomic state, if any
* @state: global atomic state
* @mgr: MST topology manager, also the private object in this case
*
- * This function wraps drm_atomic_get_priv_obj_state() passing in the MST atomic
+ * This function wraps drm_atomic_get_new_private_obj_state() passing in the MST atomic
* state vtable so that the private object state returned is that of a MST
* topology object.
*
* Returns:
*
- * The MST topology state, or NULL if there's no topology state for this MST mgr
+ * The new MST topology state, or NULL if there's no topology state for this MST mgr
* in the global atomic state
*/
struct drm_dp_mst_topology_state *
drm_atomic_get_new_mst_topology_state(struct drm_atomic_state *state,
struct drm_dp_mst_topology_mgr *mgr)
{
- struct drm_private_state *priv_state =
+ struct drm_private_state *new_priv_state =
drm_atomic_get_new_private_obj_state(state, &mgr->base);
- return priv_state ? to_dp_mst_topology_state(priv_state) : NULL;
+ return new_priv_state ? to_dp_mst_topology_state(new_priv_state) : NULL;
}
EXPORT_SYMBOL(drm_atomic_get_new_mst_topology_state);
diff --git a/drivers/gpu/drm/display/drm_hdmi_helper.c b/drivers/gpu/drm/display/drm_hdmi_helper.c
index 0264abe55278..faf5e9efa7d3 100644
--- a/drivers/gpu/drm/display/drm_hdmi_helper.c
+++ b/drivers/gpu/drm/display/drm_hdmi_helper.c
@@ -44,10 +44,8 @@ int drm_hdmi_infoframe_set_hdr_metadata(struct hdmi_drm_infoframe *frame,
/* Sink EOTF is Bit map while infoframe is absolute values */
if (!is_eotf_supported(hdr_metadata->hdmi_metadata_type1.eotf,
- connector->hdr_sink_metadata.hdmi_type1.eotf)) {
- DRM_DEBUG_KMS("EOTF Not Supported\n");
- return -EINVAL;
- }
+ connector->hdr_sink_metadata.hdmi_type1.eotf))
+ DRM_DEBUG_KMS("Unknown EOTF %d\n", hdr_metadata->hdmi_metadata_type1.eotf);
err = hdmi_drm_infoframe_init(frame);
if (err < 0)
diff --git a/drivers/gpu/drm/display/drm_scdc_helper.c b/drivers/gpu/drm/display/drm_scdc_helper.c
index c3ad4ab2b456..6d2f244e5830 100644
--- a/drivers/gpu/drm/display/drm_scdc_helper.c
+++ b/drivers/gpu/drm/display/drm_scdc_helper.c
@@ -26,6 +26,8 @@
#include <linux/delay.h>
#include <drm/display/drm_scdc_helper.h>
+#include <drm/drm_connector.h>
+#include <drm/drm_device.h>
#include <drm/drm_print.h>
/**
@@ -140,7 +142,7 @@ EXPORT_SYMBOL(drm_scdc_write);
/**
* drm_scdc_get_scrambling_status - what is status of scrambling?
- * @adapter: I2C adapter for DDC channel
+ * @connector: connector
*
* Reads the scrambler status over SCDC, and checks the
* scrambling status.
@@ -148,14 +150,16 @@ EXPORT_SYMBOL(drm_scdc_write);
* Returns:
* True if the scrambling is enabled, false otherwise.
*/
-bool drm_scdc_get_scrambling_status(struct i2c_adapter *adapter)
+bool drm_scdc_get_scrambling_status(struct drm_connector *connector)
{
u8 status;
int ret;
- ret = drm_scdc_readb(adapter, SCDC_SCRAMBLER_STATUS, &status);
+ ret = drm_scdc_readb(connector->ddc, SCDC_SCRAMBLER_STATUS, &status);
if (ret < 0) {
- DRM_DEBUG_KMS("Failed to read scrambling status: %d\n", ret);
+ drm_dbg_kms(connector->dev,
+ "[CONNECTOR:%d:%s] Failed to read scrambling status: %d\n",
+ connector->base.id, connector->name, ret);
return false;
}
@@ -165,7 +169,7 @@ EXPORT_SYMBOL(drm_scdc_get_scrambling_status);
/**
* drm_scdc_set_scrambling - enable scrambling
- * @adapter: I2C adapter for DDC channel
+ * @connector: connector
* @enable: bool to indicate if scrambling is to be enabled/disabled
*
* Writes the TMDS config register over SCDC channel, and:
@@ -175,14 +179,17 @@ EXPORT_SYMBOL(drm_scdc_get_scrambling_status);
* Returns:
* True if scrambling is set/reset successfully, false otherwise.
*/
-bool drm_scdc_set_scrambling(struct i2c_adapter *adapter, bool enable)
+bool drm_scdc_set_scrambling(struct drm_connector *connector,
+ bool enable)
{
u8 config;
int ret;
- ret = drm_scdc_readb(adapter, SCDC_TMDS_CONFIG, &config);
+ ret = drm_scdc_readb(connector->ddc, SCDC_TMDS_CONFIG, &config);
if (ret < 0) {
- DRM_DEBUG_KMS("Failed to read TMDS config: %d\n", ret);
+ drm_dbg_kms(connector->dev,
+ "[CONNECTOR:%d:%s] Failed to read TMDS config: %d\n",
+ connector->base.id, connector->name, ret);
return false;
}
@@ -191,9 +198,11 @@ bool drm_scdc_set_scrambling(struct i2c_adapter *adapter, bool enable)
else
config &= ~SCDC_SCRAMBLING_ENABLE;
- ret = drm_scdc_writeb(adapter, SCDC_TMDS_CONFIG, config);
+ ret = drm_scdc_writeb(connector->ddc, SCDC_TMDS_CONFIG, config);
if (ret < 0) {
- DRM_DEBUG_KMS("Failed to enable scrambling: %d\n", ret);
+ drm_dbg_kms(connector->dev,
+ "[CONNECTOR:%d:%s] Failed to enable scrambling: %d\n",
+ connector->base.id, connector->name, ret);
return false;
}
@@ -203,7 +212,7 @@ EXPORT_SYMBOL(drm_scdc_set_scrambling);
/**
* drm_scdc_set_high_tmds_clock_ratio - set TMDS clock ratio
- * @adapter: I2C adapter for DDC channel
+ * @connector: connector
* @set: ret or reset the high clock ratio
*
*
@@ -230,14 +239,17 @@ EXPORT_SYMBOL(drm_scdc_set_scrambling);
* Returns:
* True if write is successful, false otherwise.
*/
-bool drm_scdc_set_high_tmds_clock_ratio(struct i2c_adapter *adapter, bool set)
+bool drm_scdc_set_high_tmds_clock_ratio(struct drm_connector *connector,
+ bool set)
{
u8 config;
int ret;
- ret = drm_scdc_readb(adapter, SCDC_TMDS_CONFIG, &config);
+ ret = drm_scdc_readb(connector->ddc, SCDC_TMDS_CONFIG, &config);
if (ret < 0) {
- DRM_DEBUG_KMS("Failed to read TMDS config: %d\n", ret);
+ drm_dbg_kms(connector->dev,
+ "[CONNECTOR:%d:%s] Failed to read TMDS config: %d\n",
+ connector->base.id, connector->name, ret);
return false;
}
@@ -246,9 +258,11 @@ bool drm_scdc_set_high_tmds_clock_ratio(struct i2c_adapter *adapter, bool set)
else
config &= ~SCDC_TMDS_BIT_CLOCK_RATIO_BY_40;
- ret = drm_scdc_writeb(adapter, SCDC_TMDS_CONFIG, config);
+ ret = drm_scdc_writeb(connector->ddc, SCDC_TMDS_CONFIG, config);
if (ret < 0) {
- DRM_DEBUG_KMS("Failed to set TMDS clock ratio: %d\n", ret);
+ drm_dbg_kms(connector->dev,
+ "[CONNECTOR:%d:%s] Failed to set TMDS clock ratio: %d\n",
+ connector->base.id, connector->name, ret);
return false;
}
diff --git a/drivers/gpu/drm/drm_atomic.c b/drivers/gpu/drm/drm_atomic.c
index f197f59f6d99..b4c6ffc438da 100644
--- a/drivers/gpu/drm/drm_atomic.c
+++ b/drivers/gpu/drm/drm_atomic.c
@@ -880,7 +880,7 @@ EXPORT_SYMBOL(drm_atomic_get_private_obj_state);
* or NULL if the private_obj is not part of the global atomic state.
*/
struct drm_private_state *
-drm_atomic_get_old_private_obj_state(struct drm_atomic_state *state,
+drm_atomic_get_old_private_obj_state(const struct drm_atomic_state *state,
struct drm_private_obj *obj)
{
int i;
@@ -902,7 +902,7 @@ EXPORT_SYMBOL(drm_atomic_get_old_private_obj_state);
* or NULL if the private_obj is not part of the global atomic state.
*/
struct drm_private_state *
-drm_atomic_get_new_private_obj_state(struct drm_atomic_state *state,
+drm_atomic_get_new_private_obj_state(const struct drm_atomic_state *state,
struct drm_private_obj *obj)
{
int i;
@@ -934,7 +934,7 @@ EXPORT_SYMBOL(drm_atomic_get_new_private_obj_state);
* not connected.
*/
struct drm_connector *
-drm_atomic_get_old_connector_for_encoder(struct drm_atomic_state *state,
+drm_atomic_get_old_connector_for_encoder(const struct drm_atomic_state *state,
struct drm_encoder *encoder)
{
struct drm_connector_state *conn_state;
@@ -968,7 +968,7 @@ EXPORT_SYMBOL(drm_atomic_get_old_connector_for_encoder);
* not connected.
*/
struct drm_connector *
-drm_atomic_get_new_connector_for_encoder(struct drm_atomic_state *state,
+drm_atomic_get_new_connector_for_encoder(const struct drm_atomic_state *state,
struct drm_encoder *encoder)
{
struct drm_connector_state *conn_state;
@@ -985,6 +985,66 @@ drm_atomic_get_new_connector_for_encoder(struct drm_atomic_state *state,
EXPORT_SYMBOL(drm_atomic_get_new_connector_for_encoder);
/**
+ * drm_atomic_get_old_crtc_for_encoder - Get old crtc for an encoder
+ * @state: Atomic state
+ * @encoder: The encoder to fetch the crtc state for
+ *
+ * This function finds and returns the crtc that was connected to @encoder
+ * as specified by the @state.
+ *
+ * Returns: The old crtc connected to @encoder, or NULL if the encoder is
+ * not connected.
+ */
+struct drm_crtc *
+drm_atomic_get_old_crtc_for_encoder(struct drm_atomic_state *state,
+ struct drm_encoder *encoder)
+{
+ struct drm_connector *connector;
+ struct drm_connector_state *conn_state;
+
+ connector = drm_atomic_get_old_connector_for_encoder(state, encoder);
+ if (!connector)
+ return NULL;
+
+ conn_state = drm_atomic_get_old_connector_state(state, connector);
+ if (!conn_state)
+ return NULL;
+
+ return conn_state->crtc;
+}
+EXPORT_SYMBOL(drm_atomic_get_old_crtc_for_encoder);
+
+/**
+ * drm_atomic_get_new_crtc_for_encoder - Get new crtc for an encoder
+ * @state: Atomic state
+ * @encoder: The encoder to fetch the crtc state for
+ *
+ * This function finds and returns the crtc that will be connected to @encoder
+ * as specified by the @state.
+ *
+ * Returns: The new crtc connected to @encoder, or NULL if the encoder is
+ * not connected.
+ */
+struct drm_crtc *
+drm_atomic_get_new_crtc_for_encoder(struct drm_atomic_state *state,
+ struct drm_encoder *encoder)
+{
+ struct drm_connector *connector;
+ struct drm_connector_state *conn_state;
+
+ connector = drm_atomic_get_new_connector_for_encoder(state, encoder);
+ if (!connector)
+ return NULL;
+
+ conn_state = drm_atomic_get_new_connector_state(state, connector);
+ if (!conn_state)
+ return NULL;
+
+ return conn_state->crtc;
+}
+EXPORT_SYMBOL(drm_atomic_get_new_crtc_for_encoder);
+
+/**
* drm_atomic_get_connector_state - get connector state
* @state: global atomic state object
* @connector: connector to get state object for
@@ -1070,6 +1130,7 @@ static void drm_atomic_connector_print_state(struct drm_printer *p,
drm_printf(p, "connector[%u]: %s\n", connector->base.id, connector->name);
drm_printf(p, "\tcrtc=%s\n", state->crtc ? state->crtc->name : "(null)");
drm_printf(p, "\tself_refresh_aware=%d\n", state->self_refresh_aware);
+ drm_printf(p, "\tmax_requested_bpc=%d\n", state->max_requested_bpc);
if (connector->connector_type == DRM_MODE_CONNECTOR_WRITEBACK)
if (state->writeback_job && state->writeback_job->fb)
@@ -1117,7 +1178,7 @@ EXPORT_SYMBOL(drm_atomic_get_bridge_state);
* the bridge is not part of the global atomic state.
*/
struct drm_bridge_state *
-drm_atomic_get_old_bridge_state(struct drm_atomic_state *state,
+drm_atomic_get_old_bridge_state(const struct drm_atomic_state *state,
struct drm_bridge *bridge)
{
struct drm_private_state *obj_state;
@@ -1139,7 +1200,7 @@ EXPORT_SYMBOL(drm_atomic_get_old_bridge_state);
* the bridge is not part of the global atomic state.
*/
struct drm_bridge_state *
-drm_atomic_get_new_bridge_state(struct drm_atomic_state *state,
+drm_atomic_get_new_bridge_state(const struct drm_atomic_state *state,
struct drm_bridge *bridge)
{
struct drm_private_state *obj_state;
@@ -1756,8 +1817,8 @@ EXPORT_SYMBOL(drm_state_dump);
#ifdef CONFIG_DEBUG_FS
static int drm_state_info(struct seq_file *m, void *data)
{
- struct drm_info_node *node = (struct drm_info_node *) m->private;
- struct drm_device *dev = node->minor->dev;
+ struct drm_debugfs_entry *entry = m->private;
+ struct drm_device *dev = entry->dev;
struct drm_printer p = drm_seq_file_printer(m);
__drm_state_dump(dev, &p, true);
@@ -1766,14 +1827,13 @@ static int drm_state_info(struct seq_file *m, void *data)
}
/* any use in debugfs files to dump individual planes/crtc/etc? */
-static const struct drm_info_list drm_atomic_debugfs_list[] = {
+static const struct drm_debugfs_info drm_atomic_debugfs_list[] = {
{"state", drm_state_info, 0},
};
void drm_atomic_debugfs_init(struct drm_minor *minor)
{
- drm_debugfs_create_files(drm_atomic_debugfs_list,
- ARRAY_SIZE(drm_atomic_debugfs_list),
- minor->debugfs_root, minor);
+ drm_debugfs_add_files(minor->dev, drm_atomic_debugfs_list,
+ ARRAY_SIZE(drm_atomic_debugfs_list));
}
#endif
diff --git a/drivers/gpu/drm/drm_atomic_helper.c b/drivers/gpu/drm/drm_atomic_helper.c
index 98cc3137c062..2c2c9caf0be5 100644
--- a/drivers/gpu/drm/drm_atomic_helper.c
+++ b/drivers/gpu/drm/drm_atomic_helper.c
@@ -924,59 +924,35 @@ int drm_atomic_helper_check_plane_state(struct drm_plane_state *plane_state,
EXPORT_SYMBOL(drm_atomic_helper_check_plane_state);
/**
- * drm_atomic_helper_check_crtc_state() - Check CRTC state for validity
+ * drm_atomic_helper_check_crtc_primary_plane() - Check CRTC state for primary plane
* @crtc_state: CRTC state to check
- * @can_disable_primary_planes: can the CRTC be enabled without a primary plane?
*
- * Checks that a desired CRTC update is valid. Drivers that provide
- * their own CRTC handling rather than helper-provided implementations may
- * still wish to call this function to avoid duplication of error checking
- * code.
- *
- * Note that @can_disable_primary_planes only tests if the CRTC can be
- * enabled without a primary plane. To test if a primary plane can be updated
- * without a CRTC, use drm_atomic_helper_check_plane_state() in the plane's
- * atomic check.
+ * Checks that a CRTC has at least one primary plane attached to it, which is
+ * a requirement on some hardware. Note that this only involves the CRTC side
+ * of the test. To test if the primary plane is visible or if it can be updated
+ * without the CRTC being enabled, use drm_atomic_helper_check_plane_state() in
+ * the plane's atomic check.
*
* RETURNS:
- * Zero if update appears valid, error code on failure
+ * 0 if a primary plane is attached to the CRTC, or an error code otherwise
*/
-int drm_atomic_helper_check_crtc_state(struct drm_crtc_state *crtc_state,
- bool can_disable_primary_planes)
+int drm_atomic_helper_check_crtc_primary_plane(struct drm_crtc_state *crtc_state)
{
- struct drm_device *dev = crtc_state->crtc->dev;
- struct drm_atomic_state *state = crtc_state->state;
-
- if (!crtc_state->enable)
- return 0;
+ struct drm_crtc *crtc = crtc_state->crtc;
+ struct drm_device *dev = crtc->dev;
+ struct drm_plane *plane;
/* needs at least one primary plane to be enabled */
- if (!can_disable_primary_planes) {
- bool has_primary_plane = false;
- struct drm_plane *plane;
-
- drm_for_each_plane_mask(plane, dev, crtc_state->plane_mask) {
- struct drm_plane_state *plane_state;
-
- if (plane->type != DRM_PLANE_TYPE_PRIMARY)
- continue;
- plane_state = drm_atomic_get_plane_state(state, plane);
- if (IS_ERR(plane_state))
- return PTR_ERR(plane_state);
- if (plane_state->fb && plane_state->crtc) {
- has_primary_plane = true;
- break;
- }
- }
- if (!has_primary_plane) {
- drm_dbg_kms(dev, "Cannot enable CRTC without a primary plane.\n");
- return -EINVAL;
- }
+ drm_for_each_plane_mask(plane, dev, crtc_state->plane_mask) {
+ if (plane->type == DRM_PLANE_TYPE_PRIMARY)
+ return 0;
}
- return 0;
+ drm_dbg_atomic(dev, "[CRTC:%d:%s] primary plane missing\n", crtc->base.id, crtc->name);
+
+ return -EINVAL;
}
-EXPORT_SYMBOL(drm_atomic_helper_check_crtc_state);
+EXPORT_SYMBOL(drm_atomic_helper_check_crtc_primary_plane);
/**
* drm_atomic_helper_check_planes - validate state object for planes changes
@@ -1535,6 +1511,47 @@ void drm_atomic_helper_commit_modeset_enables(struct drm_device *dev,
}
EXPORT_SYMBOL(drm_atomic_helper_commit_modeset_enables);
+/*
+ * For atomic updates which touch just a single CRTC, calculate the time of the
+ * next vblank, and inform all the fences of the deadline.
+ */
+static void set_fence_deadline(struct drm_device *dev,
+ struct drm_atomic_state *state)
+{
+ struct drm_crtc *crtc;
+ struct drm_crtc_state *new_crtc_state;
+ struct drm_plane *plane;
+ struct drm_plane_state *new_plane_state;
+ ktime_t vbltime = 0;
+ int i;
+
+ for_each_new_crtc_in_state (state, crtc, new_crtc_state, i) {
+ ktime_t v;
+
+ if (drm_atomic_crtc_needs_modeset(new_crtc_state))
+ continue;
+
+ if (!new_crtc_state->active)
+ continue;
+
+ if (drm_crtc_next_vblank_start(crtc, &v))
+ continue;
+
+ if (!vbltime || ktime_before(v, vbltime))
+ vbltime = v;
+ }
+
+ /* If no CRTCs updated, then nothing to do: */
+ if (!vbltime)
+ return;
+
+ for_each_new_plane_in_state (state, plane, new_plane_state, i) {
+ if (!new_plane_state->fence)
+ continue;
+ dma_fence_set_deadline(new_plane_state->fence, vbltime);
+ }
+}
+
/**
* drm_atomic_helper_wait_for_fences - wait for fences stashed in plane state
* @dev: DRM device
@@ -1564,6 +1581,8 @@ int drm_atomic_helper_wait_for_fences(struct drm_device *dev,
struct drm_plane_state *new_plane_state;
int i, ret;
+ set_fence_deadline(dev, state);
+
for_each_new_plane_in_state(state, plane, new_plane_state, i) {
if (!new_plane_state->fence)
continue;
@@ -2560,7 +2579,7 @@ int drm_atomic_helper_prepare_planes(struct drm_device *dev,
if (funcs->prepare_fb) {
ret = funcs->prepare_fb(plane, new_plane_state);
if (ret)
- goto fail;
+ goto fail_prepare_fb;
} else {
WARN_ON_ONCE(funcs->cleanup_fb);
@@ -2569,13 +2588,34 @@ int drm_atomic_helper_prepare_planes(struct drm_device *dev,
ret = drm_gem_plane_helper_prepare_fb(plane, new_plane_state);
if (ret)
- goto fail;
+ goto fail_prepare_fb;
+ }
+ }
+
+ for_each_new_plane_in_state(state, plane, new_plane_state, i) {
+ const struct drm_plane_helper_funcs *funcs = plane->helper_private;
+
+ if (funcs->begin_fb_access) {
+ ret = funcs->begin_fb_access(plane, new_plane_state);
+ if (ret)
+ goto fail_begin_fb_access;
}
}
return 0;
-fail:
+fail_begin_fb_access:
+ for_each_new_plane_in_state(state, plane, new_plane_state, j) {
+ const struct drm_plane_helper_funcs *funcs = plane->helper_private;
+
+ if (j >= i)
+ continue;
+
+ if (funcs->end_fb_access)
+ funcs->end_fb_access(plane, new_plane_state);
+ }
+ i = j; /* set i to upper limit to cleanup all planes */
+fail_prepare_fb:
for_each_new_plane_in_state(state, plane, new_plane_state, j) {
const struct drm_plane_helper_funcs *funcs;
@@ -2705,6 +2745,11 @@ void drm_atomic_helper_commit_planes(struct drm_device *dev,
funcs->atomic_disable(plane, old_state);
} else if (new_plane_state->crtc || disabling) {
funcs->atomic_update(plane, old_state);
+
+ if (!disabling && funcs->atomic_enable) {
+ if (drm_atomic_plane_enabling(old_plane_state, new_plane_state))
+ funcs->atomic_enable(plane, old_state);
+ }
}
}
@@ -2765,6 +2810,7 @@ drm_atomic_helper_commit_planes_on_crtc(struct drm_crtc_state *old_crtc_state)
struct drm_plane_state *new_plane_state =
drm_atomic_get_new_plane_state(old_state, plane);
const struct drm_plane_helper_funcs *plane_funcs;
+ bool disabling;
plane_funcs = plane->helper_private;
@@ -2774,12 +2820,18 @@ drm_atomic_helper_commit_planes_on_crtc(struct drm_crtc_state *old_crtc_state)
WARN_ON(new_plane_state->crtc &&
new_plane_state->crtc != crtc);
- if (drm_atomic_plane_disabling(old_plane_state, new_plane_state) &&
- plane_funcs->atomic_disable)
+ disabling = drm_atomic_plane_disabling(old_plane_state, new_plane_state);
+
+ if (disabling && plane_funcs->atomic_disable) {
plane_funcs->atomic_disable(plane, old_state);
- else if (new_plane_state->crtc ||
- drm_atomic_plane_disabling(old_plane_state, new_plane_state))
+ } else if (new_plane_state->crtc || disabling) {
plane_funcs->atomic_update(plane, old_state);
+
+ if (!disabling && plane_funcs->atomic_enable) {
+ if (drm_atomic_plane_enabling(old_plane_state, new_plane_state))
+ plane_funcs->atomic_enable(plane, old_state);
+ }
+ }
}
if (crtc_funcs && crtc_funcs->atomic_flush)
@@ -2852,6 +2904,13 @@ void drm_atomic_helper_cleanup_planes(struct drm_device *dev,
int i;
for_each_oldnew_plane_in_state(old_state, plane, old_plane_state, new_plane_state, i) {
+ const struct drm_plane_helper_funcs *funcs = plane->helper_private;
+
+ if (funcs->end_fb_access)
+ funcs->end_fb_access(plane, new_plane_state);
+ }
+
+ for_each_oldnew_plane_in_state(old_state, plane, old_plane_state, new_plane_state, i) {
const struct drm_plane_helper_funcs *funcs;
struct drm_plane_state *plane_state;
diff --git a/drivers/gpu/drm/drm_atomic_state_helper.c b/drivers/gpu/drm/drm_atomic_state_helper.c
index bf31b9d92094..784e63d70a42 100644
--- a/drivers/gpu/drm/drm_atomic_state_helper.c
+++ b/drivers/gpu/drm/drm_atomic_state_helper.c
@@ -464,12 +464,12 @@ void drm_atomic_helper_connector_reset(struct drm_connector *connector)
EXPORT_SYMBOL(drm_atomic_helper_connector_reset);
/**
- * drm_atomic_helper_connector_tv_reset - Resets TV connector properties
+ * drm_atomic_helper_connector_tv_margins_reset - Resets TV connector properties
* @connector: DRM connector
*
* Resets the TV-related properties attached to a connector.
*/
-void drm_atomic_helper_connector_tv_reset(struct drm_connector *connector)
+void drm_atomic_helper_connector_tv_margins_reset(struct drm_connector *connector)
{
struct drm_cmdline_mode *cmdline = &connector->cmdline_mode;
struct drm_connector_state *state = connector->state;
@@ -479,9 +479,133 @@ void drm_atomic_helper_connector_tv_reset(struct drm_connector *connector)
state->tv.margins.top = cmdline->tv_margins.top;
state->tv.margins.bottom = cmdline->tv_margins.bottom;
}
+EXPORT_SYMBOL(drm_atomic_helper_connector_tv_margins_reset);
+
+/**
+ * drm_atomic_helper_connector_tv_reset - Resets Analog TV connector properties
+ * @connector: DRM connector
+ *
+ * Resets the analog TV properties attached to a connector
+ */
+void drm_atomic_helper_connector_tv_reset(struct drm_connector *connector)
+{
+ struct drm_device *dev = connector->dev;
+ struct drm_cmdline_mode *cmdline = &connector->cmdline_mode;
+ struct drm_connector_state *state = connector->state;
+ struct drm_property *prop;
+ uint64_t val;
+
+ prop = dev->mode_config.tv_mode_property;
+ if (prop)
+ if (!drm_object_property_get_default_value(&connector->base,
+ prop, &val))
+ state->tv.mode = val;
+
+ if (cmdline->tv_mode_specified)
+ state->tv.mode = cmdline->tv_mode;
+
+ prop = dev->mode_config.tv_select_subconnector_property;
+ if (prop)
+ if (!drm_object_property_get_default_value(&connector->base,
+ prop, &val))
+ state->tv.select_subconnector = val;
+
+ prop = dev->mode_config.tv_subconnector_property;
+ if (prop)
+ if (!drm_object_property_get_default_value(&connector->base,
+ prop, &val))
+ state->tv.subconnector = val;
+
+ prop = dev->mode_config.tv_brightness_property;
+ if (prop)
+ if (!drm_object_property_get_default_value(&connector->base,
+ prop, &val))
+ state->tv.brightness = val;
+
+ prop = dev->mode_config.tv_contrast_property;
+ if (prop)
+ if (!drm_object_property_get_default_value(&connector->base,
+ prop, &val))
+ state->tv.contrast = val;
+
+ prop = dev->mode_config.tv_flicker_reduction_property;
+ if (prop)
+ if (!drm_object_property_get_default_value(&connector->base,
+ prop, &val))
+ state->tv.flicker_reduction = val;
+
+ prop = dev->mode_config.tv_overscan_property;
+ if (prop)
+ if (!drm_object_property_get_default_value(&connector->base,
+ prop, &val))
+ state->tv.overscan = val;
+
+ prop = dev->mode_config.tv_saturation_property;
+ if (prop)
+ if (!drm_object_property_get_default_value(&connector->base,
+ prop, &val))
+ state->tv.saturation = val;
+
+ prop = dev->mode_config.tv_hue_property;
+ if (prop)
+ if (!drm_object_property_get_default_value(&connector->base,
+ prop, &val))
+ state->tv.hue = val;
+
+ drm_atomic_helper_connector_tv_margins_reset(connector);
+}
EXPORT_SYMBOL(drm_atomic_helper_connector_tv_reset);
/**
+ * drm_atomic_helper_connector_tv_check - Validate an analog TV connector state
+ * @connector: DRM Connector
+ * @state: the DRM State object
+ *
+ * Checks the state object to see if the requested state is valid for an
+ * analog TV connector.
+ *
+ * Return:
+ * %0 for success, a negative error code on error.
+ */
+int drm_atomic_helper_connector_tv_check(struct drm_connector *connector,
+ struct drm_atomic_state *state)
+{
+ struct drm_connector_state *old_conn_state =
+ drm_atomic_get_old_connector_state(state, connector);
+ struct drm_connector_state *new_conn_state =
+ drm_atomic_get_new_connector_state(state, connector);
+ struct drm_crtc_state *crtc_state;
+ struct drm_crtc *crtc;
+
+ crtc = new_conn_state->crtc;
+ if (!crtc)
+ return 0;
+
+ crtc_state = drm_atomic_get_new_crtc_state(state, crtc);
+ if (!crtc_state)
+ return -EINVAL;
+
+ if (old_conn_state->tv.mode != new_conn_state->tv.mode)
+ crtc_state->mode_changed = true;
+
+ if (old_conn_state->tv.margins.left != new_conn_state->tv.margins.left ||
+ old_conn_state->tv.margins.right != new_conn_state->tv.margins.right ||
+ old_conn_state->tv.margins.top != new_conn_state->tv.margins.top ||
+ old_conn_state->tv.margins.bottom != new_conn_state->tv.margins.bottom ||
+ old_conn_state->tv.mode != new_conn_state->tv.mode ||
+ old_conn_state->tv.brightness != new_conn_state->tv.brightness ||
+ old_conn_state->tv.contrast != new_conn_state->tv.contrast ||
+ old_conn_state->tv.flicker_reduction != new_conn_state->tv.flicker_reduction ||
+ old_conn_state->tv.overscan != new_conn_state->tv.overscan ||
+ old_conn_state->tv.saturation != new_conn_state->tv.saturation ||
+ old_conn_state->tv.hue != new_conn_state->tv.hue)
+ crtc_state->connectors_changed = true;
+
+ return 0;
+}
+EXPORT_SYMBOL(drm_atomic_helper_connector_tv_check);
+
+/**
* __drm_atomic_helper_connector_duplicate_state - copy atomic connector state
* @connector: connector object
* @state: atomic connector state
diff --git a/drivers/gpu/drm/drm_atomic_uapi.c b/drivers/gpu/drm/drm_atomic_uapi.c
index 79730fa1dd8e..d867e7f9f2cd 100644
--- a/drivers/gpu/drm/drm_atomic_uapi.c
+++ b/drivers/gpu/drm/drm_atomic_uapi.c
@@ -687,6 +687,8 @@ static int drm_atomic_connector_set_property(struct drm_connector *connector,
*/
return -EINVAL;
} else if (property == config->tv_select_subconnector_property) {
+ state->tv.select_subconnector = val;
+ } else if (property == config->tv_subconnector_property) {
state->tv.subconnector = val;
} else if (property == config->tv_left_margin_property) {
state->tv.margins.left = val;
@@ -696,6 +698,8 @@ static int drm_atomic_connector_set_property(struct drm_connector *connector,
state->tv.margins.top = val;
} else if (property == config->tv_bottom_margin_property) {
state->tv.margins.bottom = val;
+ } else if (property == config->legacy_tv_mode_property) {
+ state->tv.legacy_mode = val;
} else if (property == config->tv_mode_property) {
state->tv.mode = val;
} else if (property == config->tv_brightness_property) {
@@ -795,6 +799,8 @@ drm_atomic_connector_get_property(struct drm_connector *connector,
else
*val = connector->dpms;
} else if (property == config->tv_select_subconnector_property) {
+ *val = state->tv.select_subconnector;
+ } else if (property == config->tv_subconnector_property) {
*val = state->tv.subconnector;
} else if (property == config->tv_left_margin_property) {
*val = state->tv.margins.left;
@@ -804,6 +810,8 @@ drm_atomic_connector_get_property(struct drm_connector *connector,
*val = state->tv.margins.top;
} else if (property == config->tv_bottom_margin_property) {
*val = state->tv.margins.bottom;
+ } else if (property == config->legacy_tv_mode_property) {
+ *val = state->tv.legacy_mode;
} else if (property == config->tv_mode_property) {
*val = state->tv.mode;
} else if (property == config->tv_brightness_property) {
diff --git a/drivers/gpu/drm/drm_blend.c b/drivers/gpu/drm/drm_blend.c
index b4c8cab7158c..6e74de833466 100644
--- a/drivers/gpu/drm/drm_blend.c
+++ b/drivers/gpu/drm/drm_blend.c
@@ -450,8 +450,8 @@ static int drm_atomic_helper_crtc_normalize_zpos(struct drm_crtc *crtc,
int i, n = 0;
int ret = 0;
- DRM_DEBUG_ATOMIC("[CRTC:%d:%s] calculating normalized zpos values\n",
- crtc->base.id, crtc->name);
+ drm_dbg_atomic(dev, "[CRTC:%d:%s] calculating normalized zpos values\n",
+ crtc->base.id, crtc->name);
states = kmalloc_array(total_planes, sizeof(*states), GFP_KERNEL);
if (!states)
@@ -469,9 +469,8 @@ static int drm_atomic_helper_crtc_normalize_zpos(struct drm_crtc *crtc,
goto done;
}
states[n++] = plane_state;
- DRM_DEBUG_ATOMIC("[PLANE:%d:%s] processing zpos value %d\n",
- plane->base.id, plane->name,
- plane_state->zpos);
+ drm_dbg_atomic(dev, "[PLANE:%d:%s] processing zpos value %d\n",
+ plane->base.id, plane->name, plane_state->zpos);
}
sort(states, n, sizeof(*states), drm_atomic_state_zpos_cmp, NULL);
@@ -480,8 +479,8 @@ static int drm_atomic_helper_crtc_normalize_zpos(struct drm_crtc *crtc,
plane = states[i]->plane;
states[i]->normalized_zpos = i;
- DRM_DEBUG_ATOMIC("[PLANE:%d:%s] normalized zpos value %d\n",
- plane->base.id, plane->name, i);
+ drm_dbg_atomic(dev, "[PLANE:%d:%s] normalized zpos value %d\n",
+ plane->base.id, plane->name, i);
}
crtc_state->zpos_changed = true;
diff --git a/drivers/gpu/drm/drm_bridge.c b/drivers/gpu/drm/drm_bridge.c
index 1545c50fd1c8..c3d69af02e79 100644
--- a/drivers/gpu/drm/drm_bridge.c
+++ b/drivers/gpu/drm/drm_bridge.c
@@ -153,6 +153,45 @@
* situation when probing.
*/
+/**
+ * DOC: dsi bridge operations
+ *
+ * DSI host interfaces are expected to be implemented as bridges rather than
+ * encoders, however there are a few aspects of their operation that need to
+ * be defined in order to provide a consistent interface.
+ *
+ * A DSI host should keep the PHY powered down until the pre_enable operation is
+ * called. All lanes are in an undefined idle state up to this point, and it
+ * must not be assumed that it is LP-11.
+ * pre_enable should initialise the PHY, set the data lanes to LP-11, and the
+ * clock lane to either LP-11 or HS depending on the mode_flag
+ * %MIPI_DSI_CLOCK_NON_CONTINUOUS.
+ *
+ * Ordinarily the downstream bridge DSI peripheral pre_enable will have been
+ * called before the DSI host. If the DSI peripheral requires LP-11 and/or
+ * the clock lane to be in HS mode prior to pre_enable, then it can set the
+ * &pre_enable_prev_first flag to request the pre_enable (and
+ * post_disable) order to be altered to enable the DSI host first.
+ *
+ * Either the CRTC being enabled, or the DSI host enable operation should switch
+ * the host to actively transmitting video on the data lanes.
+ *
+ * The reverse also applies. The DSI host disable operation or stopping the CRTC
+ * should stop transmitting video, and the data lanes should return to the LP-11
+ * state. The DSI host &post_disable operation should disable the PHY.
+ * If the &pre_enable_prev_first flag is set, then the DSI peripheral's
+ * bridge &post_disable will be called before the DSI host's post_disable.
+ *
+ * Whilst it is valid to call &host_transfer prior to pre_enable or after
+ * post_disable, the exact state of the lanes is undefined at this point. The
+ * DSI host should initialise the interface, transmit the data, and then disable
+ * the interface again.
+ *
+ * Ultra Low Power State (ULPS) is not explicitly supported by DRM. If
+ * implemented, it therefore needs to be handled entirely within the DSI Host
+ * driver.
+ */
+
static DEFINE_MUTEX(bridge_lock);
static LIST_HEAD(bridge_list);
@@ -510,61 +549,6 @@ drm_bridge_chain_mode_valid(struct drm_bridge *bridge,
EXPORT_SYMBOL(drm_bridge_chain_mode_valid);
/**
- * drm_bridge_chain_disable - disables all bridges in the encoder chain
- * @bridge: bridge control structure
- *
- * Calls &drm_bridge_funcs.disable op for all the bridges in the encoder
- * chain, starting from the last bridge to the first. These are called before
- * calling the encoder's prepare op.
- *
- * Note: the bridge passed should be the one closest to the encoder
- */
-void drm_bridge_chain_disable(struct drm_bridge *bridge)
-{
- struct drm_encoder *encoder;
- struct drm_bridge *iter;
-
- if (!bridge)
- return;
-
- encoder = bridge->encoder;
- list_for_each_entry_reverse(iter, &encoder->bridge_chain, chain_node) {
- if (iter->funcs->disable)
- iter->funcs->disable(iter);
-
- if (iter == bridge)
- break;
- }
-}
-EXPORT_SYMBOL(drm_bridge_chain_disable);
-
-/**
- * drm_bridge_chain_post_disable - cleans up after disabling all bridges in the
- * encoder chain
- * @bridge: bridge control structure
- *
- * Calls &drm_bridge_funcs.post_disable op for all the bridges in the
- * encoder chain, starting from the first bridge to the last. These are called
- * after completing the encoder's prepare op.
- *
- * Note: the bridge passed should be the one closest to the encoder
- */
-void drm_bridge_chain_post_disable(struct drm_bridge *bridge)
-{
- struct drm_encoder *encoder;
-
- if (!bridge)
- return;
-
- encoder = bridge->encoder;
- list_for_each_entry_from(bridge, &encoder->bridge_chain, chain_node) {
- if (bridge->funcs->post_disable)
- bridge->funcs->post_disable(bridge);
- }
-}
-EXPORT_SYMBOL(drm_bridge_chain_post_disable);
-
-/**
* drm_bridge_chain_mode_set - set proposed mode for all bridges in the
* encoder chain
* @bridge: bridge control structure
@@ -594,61 +578,6 @@ void drm_bridge_chain_mode_set(struct drm_bridge *bridge,
EXPORT_SYMBOL(drm_bridge_chain_mode_set);
/**
- * drm_bridge_chain_pre_enable - prepares for enabling all bridges in the
- * encoder chain
- * @bridge: bridge control structure
- *
- * Calls &drm_bridge_funcs.pre_enable op for all the bridges in the encoder
- * chain, starting from the last bridge to the first. These are called
- * before calling the encoder's commit op.
- *
- * Note: the bridge passed should be the one closest to the encoder
- */
-void drm_bridge_chain_pre_enable(struct drm_bridge *bridge)
-{
- struct drm_encoder *encoder;
- struct drm_bridge *iter;
-
- if (!bridge)
- return;
-
- encoder = bridge->encoder;
- list_for_each_entry_reverse(iter, &encoder->bridge_chain, chain_node) {
- if (iter->funcs->pre_enable)
- iter->funcs->pre_enable(iter);
-
- if (iter == bridge)
- break;
- }
-}
-EXPORT_SYMBOL(drm_bridge_chain_pre_enable);
-
-/**
- * drm_bridge_chain_enable - enables all bridges in the encoder chain
- * @bridge: bridge control structure
- *
- * Calls &drm_bridge_funcs.enable op for all the bridges in the encoder
- * chain, starting from the first bridge to the last. These are called
- * after completing the encoder's commit op.
- *
- * Note that the bridge passed should be the one closest to the encoder
- */
-void drm_bridge_chain_enable(struct drm_bridge *bridge)
-{
- struct drm_encoder *encoder;
-
- if (!bridge)
- return;
-
- encoder = bridge->encoder;
- list_for_each_entry_from(bridge, &encoder->bridge_chain, chain_node) {
- if (bridge->funcs->enable)
- bridge->funcs->enable(bridge);
- }
-}
-EXPORT_SYMBOL(drm_bridge_chain_enable);
-
-/**
* drm_atomic_bridge_chain_disable - disables all bridges in the encoder chain
* @bridge: bridge control structure
* @old_state: old atomic state
@@ -691,6 +620,25 @@ void drm_atomic_bridge_chain_disable(struct drm_bridge *bridge,
}
EXPORT_SYMBOL(drm_atomic_bridge_chain_disable);
+static void drm_atomic_bridge_call_post_disable(struct drm_bridge *bridge,
+ struct drm_atomic_state *old_state)
+{
+ if (old_state && bridge->funcs->atomic_post_disable) {
+ struct drm_bridge_state *old_bridge_state;
+
+ old_bridge_state =
+ drm_atomic_get_old_bridge_state(old_state,
+ bridge);
+ if (WARN_ON(!old_bridge_state))
+ return;
+
+ bridge->funcs->atomic_post_disable(bridge,
+ old_bridge_state);
+ } else if (bridge->funcs->post_disable) {
+ bridge->funcs->post_disable(bridge);
+ }
+}
+
/**
* drm_atomic_bridge_chain_post_disable - cleans up after disabling all bridges
* in the encoder chain
@@ -702,36 +650,86 @@ EXPORT_SYMBOL(drm_atomic_bridge_chain_disable);
* starting from the first bridge to the last. These are called after completing
* &drm_encoder_helper_funcs.atomic_disable
*
+ * If a bridge sets @pre_enable_prev_first, then the @post_disable for that
+ * bridge will be called before the previous one to reverse the @pre_enable
+ * calling direction.
+ *
* Note: the bridge passed should be the one closest to the encoder
*/
void drm_atomic_bridge_chain_post_disable(struct drm_bridge *bridge,
struct drm_atomic_state *old_state)
{
struct drm_encoder *encoder;
+ struct drm_bridge *next, *limit;
if (!bridge)
return;
encoder = bridge->encoder;
+
list_for_each_entry_from(bridge, &encoder->bridge_chain, chain_node) {
- if (bridge->funcs->atomic_post_disable) {
- struct drm_bridge_state *old_bridge_state;
+ limit = NULL;
+
+ if (!list_is_last(&bridge->chain_node, &encoder->bridge_chain)) {
+ next = list_next_entry(bridge, chain_node);
+
+ if (next->pre_enable_prev_first) {
+ /* next bridge had requested that prev
+ * was enabled first, so disabled last
+ */
+ limit = next;
+
+ /* Find the next bridge that has NOT requested
+ * prev to be enabled first / disabled last
+ */
+ list_for_each_entry_from(next, &encoder->bridge_chain,
+ chain_node) {
+ if (next->pre_enable_prev_first) {
+ next = list_prev_entry(next, chain_node);
+ limit = next;
+ break;
+ }
+ }
+
+ /* Call these bridges in reverse order */
+ list_for_each_entry_from_reverse(next, &encoder->bridge_chain,
+ chain_node) {
+ if (next == bridge)
+ break;
+
+ drm_atomic_bridge_call_post_disable(next,
+ old_state);
+ }
+ }
+ }
- old_bridge_state =
- drm_atomic_get_old_bridge_state(old_state,
- bridge);
- if (WARN_ON(!old_bridge_state))
- return;
+ drm_atomic_bridge_call_post_disable(bridge, old_state);
- bridge->funcs->atomic_post_disable(bridge,
- old_bridge_state);
- } else if (bridge->funcs->post_disable) {
- bridge->funcs->post_disable(bridge);
- }
+ if (limit)
+ /* Jump all bridges that we have already post_disabled */
+ bridge = limit;
}
}
EXPORT_SYMBOL(drm_atomic_bridge_chain_post_disable);
+static void drm_atomic_bridge_call_pre_enable(struct drm_bridge *bridge,
+ struct drm_atomic_state *old_state)
+{
+ if (old_state && bridge->funcs->atomic_pre_enable) {
+ struct drm_bridge_state *old_bridge_state;
+
+ old_bridge_state =
+ drm_atomic_get_old_bridge_state(old_state,
+ bridge);
+ if (WARN_ON(!old_bridge_state))
+ return;
+
+ bridge->funcs->atomic_pre_enable(bridge, old_bridge_state);
+ } else if (bridge->funcs->pre_enable) {
+ bridge->funcs->pre_enable(bridge);
+ }
+}
+
/**
* drm_atomic_bridge_chain_pre_enable - prepares for enabling all bridges in
* the encoder chain
@@ -743,32 +741,60 @@ EXPORT_SYMBOL(drm_atomic_bridge_chain_post_disable);
* starting from the last bridge to the first. These are called before calling
* &drm_encoder_helper_funcs.atomic_enable
*
+ * If a bridge sets @pre_enable_prev_first, then the pre_enable for the
+ * prev bridge will be called before pre_enable of this bridge.
+ *
* Note: the bridge passed should be the one closest to the encoder
*/
void drm_atomic_bridge_chain_pre_enable(struct drm_bridge *bridge,
struct drm_atomic_state *old_state)
{
struct drm_encoder *encoder;
- struct drm_bridge *iter;
+ struct drm_bridge *iter, *next, *limit;
if (!bridge)
return;
encoder = bridge->encoder;
+
list_for_each_entry_reverse(iter, &encoder->bridge_chain, chain_node) {
- if (iter->funcs->atomic_pre_enable) {
- struct drm_bridge_state *old_bridge_state;
+ if (iter->pre_enable_prev_first) {
+ next = iter;
+ limit = bridge;
+ list_for_each_entry_from_reverse(next,
+ &encoder->bridge_chain,
+ chain_node) {
+ if (next == bridge)
+ break;
+
+ if (!next->pre_enable_prev_first) {
+ /* Found first bridge that does NOT
+ * request prev to be enabled first
+ */
+ limit = list_prev_entry(next, chain_node);
+ break;
+ }
+ }
+
+ list_for_each_entry_from(next, &encoder->bridge_chain, chain_node) {
+ /* Call requested prev bridge pre_enable
+ * in order.
+ */
+ if (next == iter)
+ /* At the first bridge to request prev
+ * bridges called first.
+ */
+ break;
+
+ drm_atomic_bridge_call_pre_enable(next, old_state);
+ }
+ }
- old_bridge_state =
- drm_atomic_get_old_bridge_state(old_state,
- iter);
- if (WARN_ON(!old_bridge_state))
- return;
+ drm_atomic_bridge_call_pre_enable(iter, old_state);
- iter->funcs->atomic_pre_enable(iter, old_bridge_state);
- } else if (iter->funcs->pre_enable) {
- iter->funcs->pre_enable(iter);
- }
+ if (iter->pre_enable_prev_first)
+ /* Jump all bridges that we have already pre_enabled */
+ iter = limit;
if (iter == bridge)
break;
diff --git a/drivers/gpu/drm/drm_bridge_connector.c b/drivers/gpu/drm/drm_bridge_connector.c
index 1c7d936523df..19ae4a177ac3 100644
--- a/drivers/gpu/drm/drm_bridge_connector.c
+++ b/drivers/gpu/drm/drm_bridge_connector.c
@@ -128,14 +128,7 @@ static void drm_bridge_connector_hpd_cb(void *cb_data,
drm_kms_helper_hotplug_event(dev);
}
-/**
- * drm_bridge_connector_enable_hpd - Enable hot-plug detection for the connector
- * @connector: The DRM bridge connector
- *
- * This function enables hot-plug detection for the given bridge connector.
- * This is typically used by display drivers in their resume handler.
- */
-void drm_bridge_connector_enable_hpd(struct drm_connector *connector)
+static void drm_bridge_connector_enable_hpd(struct drm_connector *connector)
{
struct drm_bridge_connector *bridge_connector =
to_drm_bridge_connector(connector);
@@ -145,17 +138,8 @@ void drm_bridge_connector_enable_hpd(struct drm_connector *connector)
drm_bridge_hpd_enable(hpd, drm_bridge_connector_hpd_cb,
bridge_connector);
}
-EXPORT_SYMBOL_GPL(drm_bridge_connector_enable_hpd);
-/**
- * drm_bridge_connector_disable_hpd - Disable hot-plug detection for the
- * connector
- * @connector: The DRM bridge connector
- *
- * This function disables hot-plug detection for the given bridge connector.
- * This is typically used by display drivers in their suspend handler.
- */
-void drm_bridge_connector_disable_hpd(struct drm_connector *connector)
+static void drm_bridge_connector_disable_hpd(struct drm_connector *connector)
{
struct drm_bridge_connector *bridge_connector =
to_drm_bridge_connector(connector);
@@ -164,7 +148,6 @@ void drm_bridge_connector_disable_hpd(struct drm_connector *connector)
if (hpd)
drm_bridge_hpd_disable(hpd);
}
-EXPORT_SYMBOL_GPL(drm_bridge_connector_disable_hpd);
/* -----------------------------------------------------------------------------
* Bridge Connector Functions
@@ -305,6 +288,8 @@ static int drm_bridge_connector_get_modes(struct drm_connector *connector)
static const struct drm_connector_helper_funcs drm_bridge_connector_helper_funcs = {
.get_modes = drm_bridge_connector_get_modes,
/* No need for .mode_valid(), the bridges are checked by the core. */
+ .enable_hpd = drm_bridge_connector_enable_hpd,
+ .disable_hpd = drm_bridge_connector_disable_hpd,
};
/* -----------------------------------------------------------------------------
@@ -387,10 +372,8 @@ struct drm_connector *drm_bridge_connector_init(struct drm_device *drm,
connector_type, ddc);
drm_connector_helper_add(connector, &drm_bridge_connector_helper_funcs);
- if (bridge_connector->bridge_hpd) {
+ if (bridge_connector->bridge_hpd)
connector->polled = DRM_CONNECTOR_POLL_HPD;
- drm_bridge_connector_enable_hpd(connector);
- }
else if (bridge_connector->bridge_detect)
connector->polled = DRM_CONNECTOR_POLL_CONNECT
| DRM_CONNECTOR_POLL_DISCONNECT;
diff --git a/drivers/gpu/drm/drm_buddy.c b/drivers/gpu/drm/drm_buddy.c
index 11bb59399471..7098f125b54a 100644
--- a/drivers/gpu/drm/drm_buddy.c
+++ b/drivers/gpu/drm/drm_buddy.c
@@ -38,6 +38,25 @@ static void drm_block_free(struct drm_buddy *mm,
kmem_cache_free(slab_blocks, block);
}
+static void list_insert_sorted(struct drm_buddy *mm,
+ struct drm_buddy_block *block)
+{
+ struct drm_buddy_block *node;
+ struct list_head *head;
+
+ head = &mm->free_list[drm_buddy_block_order(block)];
+ if (list_empty(head)) {
+ list_add(&block->link, head);
+ return;
+ }
+
+ list_for_each_entry(node, head, link)
+ if (drm_buddy_block_offset(block) < drm_buddy_block_offset(node))
+ break;
+
+ __list_add(&block->link, node->link.prev, &node->link);
+}
+
static void mark_allocated(struct drm_buddy_block *block)
{
block->header &= ~DRM_BUDDY_HEADER_STATE;
@@ -52,8 +71,7 @@ static void mark_free(struct drm_buddy *mm,
block->header &= ~DRM_BUDDY_HEADER_STATE;
block->header |= DRM_BUDDY_FREE;
- list_add(&block->link,
- &mm->free_list[drm_buddy_block_order(block)]);
+ list_insert_sorted(mm, block);
}
static void mark_split(struct drm_buddy_block *block)
@@ -128,8 +146,8 @@ int drm_buddy_init(struct drm_buddy *mm, u64 size, u64 chunk_size)
unsigned int order;
u64 root_size;
- root_size = rounddown_pow_of_two(size);
- order = ilog2(root_size) - ilog2(chunk_size);
+ order = ilog2(size) - ilog2(chunk_size);
+ root_size = chunk_size << order;
root = drm_block_alloc(mm, NULL, order, offset);
if (!root)
@@ -387,20 +405,26 @@ err_undo:
}
static struct drm_buddy_block *
-get_maxblock(struct list_head *head)
+get_maxblock(struct drm_buddy *mm, unsigned int order)
{
struct drm_buddy_block *max_block = NULL, *node;
+ unsigned int i;
- max_block = list_first_entry_or_null(head,
- struct drm_buddy_block,
- link);
- if (!max_block)
- return NULL;
+ for (i = order; i <= mm->max_order; ++i) {
+ if (!list_empty(&mm->free_list[i])) {
+ node = list_last_entry(&mm->free_list[i],
+ struct drm_buddy_block,
+ link);
+ if (!max_block) {
+ max_block = node;
+ continue;
+ }
- list_for_each_entry(node, head, link) {
- if (drm_buddy_block_offset(node) >
- drm_buddy_block_offset(max_block))
- max_block = node;
+ if (drm_buddy_block_offset(node) >
+ drm_buddy_block_offset(max_block)) {
+ max_block = node;
+ }
+ }
}
return max_block;
@@ -412,20 +436,23 @@ alloc_from_freelist(struct drm_buddy *mm,
unsigned long flags)
{
struct drm_buddy_block *block = NULL;
- unsigned int i;
+ unsigned int tmp;
int err;
- for (i = order; i <= mm->max_order; ++i) {
- if (flags & DRM_BUDDY_TOPDOWN_ALLOCATION) {
- block = get_maxblock(&mm->free_list[i]);
- if (block)
- break;
- } else {
- block = list_first_entry_or_null(&mm->free_list[i],
- struct drm_buddy_block,
- link);
- if (block)
- break;
+ if (flags & DRM_BUDDY_TOPDOWN_ALLOCATION) {
+ block = get_maxblock(mm, order);
+ if (block)
+ /* Store the obtained block order */
+ tmp = drm_buddy_block_order(block);
+ } else {
+ for (tmp = order; tmp <= mm->max_order; ++tmp) {
+ if (!list_empty(&mm->free_list[tmp])) {
+ block = list_last_entry(&mm->free_list[tmp],
+ struct drm_buddy_block,
+ link);
+ if (block)
+ break;
+ }
}
}
@@ -434,18 +461,18 @@ alloc_from_freelist(struct drm_buddy *mm,
BUG_ON(!drm_buddy_block_is_free(block));
- while (i != order) {
+ while (tmp != order) {
err = split_block(mm, block);
if (unlikely(err))
goto err_undo;
block = block->right;
- i--;
+ tmp--;
}
return block;
err_undo:
- if (i != order)
+ if (tmp != order)
__drm_buddy_free(mm, block);
return ERR_PTR(err);
}
diff --git a/drivers/gpu/drm/drm_bufs.c b/drivers/gpu/drm/drm_bufs.c
index fcca21e8efac..86700560fea2 100644
--- a/drivers/gpu/drm/drm_bufs.c
+++ b/drivers/gpu/drm/drm_bufs.c
@@ -423,8 +423,7 @@ int drm_legacy_addmap_ioctl(struct drm_device *dev, void *data,
if (!(capable(CAP_SYS_ADMIN) || map->type == _DRM_AGP || map->type == _DRM_SHM))
return -EPERM;
- if (!drm_core_check_feature(dev, DRIVER_KMS_LEGACY_CONTEXT) &&
- !drm_core_check_feature(dev, DRIVER_LEGACY))
+ if (!drm_core_check_feature(dev, DRIVER_LEGACY))
return -EOPNOTSUPP;
err = drm_addmap_core(dev, map->offset, map->size, map->type,
@@ -469,8 +468,7 @@ int drm_legacy_getmap_ioctl(struct drm_device *dev, void *data,
int idx;
int i;
- if (!drm_core_check_feature(dev, DRIVER_KMS_LEGACY_CONTEXT) &&
- !drm_core_check_feature(dev, DRIVER_LEGACY))
+ if (!drm_core_check_feature(dev, DRIVER_LEGACY))
return -EOPNOTSUPP;
idx = map->offset;
@@ -570,8 +568,7 @@ EXPORT_SYMBOL(drm_legacy_rmmap_locked);
void drm_legacy_rmmap(struct drm_device *dev, struct drm_local_map *map)
{
- if (!drm_core_check_feature(dev, DRIVER_KMS_LEGACY_CONTEXT) &&
- !drm_core_check_feature(dev, DRIVER_LEGACY))
+ if (!drm_core_check_feature(dev, DRIVER_LEGACY))
return;
mutex_lock(&dev->struct_mutex);
@@ -628,8 +625,7 @@ int drm_legacy_rmmap_ioctl(struct drm_device *dev, void *data,
struct drm_map_list *r_list;
int ret;
- if (!drm_core_check_feature(dev, DRIVER_KMS_LEGACY_CONTEXT) &&
- !drm_core_check_feature(dev, DRIVER_LEGACY))
+ if (!drm_core_check_feature(dev, DRIVER_LEGACY))
return -EOPNOTSUPP;
mutex_lock(&dev->struct_mutex);
diff --git a/drivers/gpu/drm/drm_client.c b/drivers/gpu/drm/drm_client.c
index 2b230b4d6942..f6292ba0e6fc 100644
--- a/drivers/gpu/drm/drm_client.c
+++ b/drivers/gpu/drm/drm_client.c
@@ -198,13 +198,23 @@ void drm_client_dev_hotplug(struct drm_device *dev)
if (!drm_core_check_feature(dev, DRIVER_MODESET))
return;
+ if (!dev->mode_config.num_connector) {
+ drm_dbg_kms(dev, "No connectors found, will not send hotplug events!\n");
+ return;
+ }
+
mutex_lock(&dev->clientlist_mutex);
list_for_each_entry(client, &dev->clientlist, list) {
if (!client->funcs || !client->funcs->hotplug)
continue;
+ if (client->hotplug_failed)
+ continue;
+
ret = client->funcs->hotplug(client);
drm_dbg_kms(dev, "%s: ret=%d\n", client->name, ret);
+ if (ret)
+ client->hotplug_failed = true;
}
mutex_unlock(&dev->clientlist_mutex);
}
@@ -233,21 +243,17 @@ void drm_client_dev_restore(struct drm_device *dev)
static void drm_client_buffer_delete(struct drm_client_buffer *buffer)
{
- struct drm_device *dev = buffer->client->dev;
-
- drm_gem_vunmap(buffer->gem, &buffer->map);
-
- if (buffer->gem)
+ if (buffer->gem) {
+ drm_gem_vunmap_unlocked(buffer->gem, &buffer->map);
drm_gem_object_put(buffer->gem);
-
- if (buffer->handle)
- drm_mode_destroy_dumb(dev, buffer->handle, buffer->client->file);
+ }
kfree(buffer);
}
static struct drm_client_buffer *
-drm_client_buffer_create(struct drm_client_dev *client, u32 width, u32 height, u32 format)
+drm_client_buffer_create(struct drm_client_dev *client, u32 width, u32 height,
+ u32 format, u32 *handle)
{
const struct drm_format_info *info = drm_format_info(format);
struct drm_mode_create_dumb dumb_args = { };
@@ -269,16 +275,15 @@ drm_client_buffer_create(struct drm_client_dev *client, u32 width, u32 height, u
if (ret)
goto err_delete;
- buffer->handle = dumb_args.handle;
- buffer->pitch = dumb_args.pitch;
-
obj = drm_gem_object_lookup(client->file, dumb_args.handle);
if (!obj) {
ret = -ENOENT;
goto err_delete;
}
+ buffer->pitch = dumb_args.pitch;
buffer->gem = obj;
+ *handle = dumb_args.handle;
return buffer;
@@ -323,7 +328,7 @@ drm_client_buffer_vmap(struct drm_client_buffer *buffer,
* fd_install step out of the driver backend hooks, to make that
* final step optional for internal users.
*/
- ret = drm_gem_vmap(buffer->gem, map);
+ ret = drm_gem_vmap_unlocked(buffer->gem, map);
if (ret)
return ret;
@@ -345,7 +350,7 @@ void drm_client_buffer_vunmap(struct drm_client_buffer *buffer)
{
struct iosys_map *map = &buffer->map;
- drm_gem_vunmap(buffer->gem, map);
+ drm_gem_vunmap_unlocked(buffer->gem, map);
}
EXPORT_SYMBOL(drm_client_buffer_vunmap);
@@ -365,7 +370,8 @@ static void drm_client_buffer_rmfb(struct drm_client_buffer *buffer)
}
static int drm_client_buffer_addfb(struct drm_client_buffer *buffer,
- u32 width, u32 height, u32 format)
+ u32 width, u32 height, u32 format,
+ u32 handle)
{
struct drm_client_dev *client = buffer->client;
struct drm_mode_fb_cmd fb_req = { };
@@ -377,7 +383,7 @@ static int drm_client_buffer_addfb(struct drm_client_buffer *buffer,
fb_req.depth = info->depth;
fb_req.width = width;
fb_req.height = height;
- fb_req.handle = buffer->handle;
+ fb_req.handle = handle;
fb_req.pitch = buffer->pitch;
ret = drm_mode_addfb(client->dev, &fb_req, client->file);
@@ -414,13 +420,24 @@ struct drm_client_buffer *
drm_client_framebuffer_create(struct drm_client_dev *client, u32 width, u32 height, u32 format)
{
struct drm_client_buffer *buffer;
+ u32 handle;
int ret;
- buffer = drm_client_buffer_create(client, width, height, format);
+ buffer = drm_client_buffer_create(client, width, height, format,
+ &handle);
if (IS_ERR(buffer))
return buffer;
- ret = drm_client_buffer_addfb(buffer, width, height, format);
+ ret = drm_client_buffer_addfb(buffer, width, height, format, handle);
+
+ /*
+ * The handle is only needed for creating the framebuffer, destroy it
+ * again to solve a circular dependency should anybody export the GEM
+ * object as DMA-buf. The framebuffer and our buffer structure are still
+ * holding references to the GEM object to prevent its destruction.
+ */
+ drm_mode_destroy_dumb(client->dev, handle, client->file);
+
if (ret) {
drm_client_buffer_delete(buffer);
return ERR_PTR(ret);
@@ -480,8 +497,8 @@ EXPORT_SYMBOL(drm_client_framebuffer_flush);
#ifdef CONFIG_DEBUG_FS
static int drm_client_debugfs_internal_clients(struct seq_file *m, void *data)
{
- struct drm_info_node *node = m->private;
- struct drm_device *dev = node->minor->dev;
+ struct drm_debugfs_entry *entry = m->private;
+ struct drm_device *dev = entry->dev;
struct drm_printer p = drm_seq_file_printer(m);
struct drm_client_dev *client;
@@ -493,14 +510,13 @@ static int drm_client_debugfs_internal_clients(struct seq_file *m, void *data)
return 0;
}
-static const struct drm_info_list drm_client_debugfs_list[] = {
+static const struct drm_debugfs_info drm_client_debugfs_list[] = {
{ "internal_clients", drm_client_debugfs_internal_clients, 0 },
};
void drm_client_debugfs_init(struct drm_minor *minor)
{
- drm_debugfs_create_files(drm_client_debugfs_list,
- ARRAY_SIZE(drm_client_debugfs_list),
- minor->debugfs_root, minor);
+ drm_debugfs_add_files(minor->dev, drm_client_debugfs_list,
+ ARRAY_SIZE(drm_client_debugfs_list));
}
#endif
diff --git a/drivers/gpu/drm/drm_client_modeset.c b/drivers/gpu/drm/drm_client_modeset.c
index bbc535cc50dd..1b12a3c201a3 100644
--- a/drivers/gpu/drm/drm_client_modeset.c
+++ b/drivers/gpu/drm/drm_client_modeset.c
@@ -188,10 +188,6 @@ static struct drm_display_mode *drm_connector_pick_cmdline_mode(struct drm_conne
prefer_non_interlace = !cmdline_mode->interlace;
again:
list_for_each_entry(mode, &connector->modes, head) {
- /* Check (optional) mode name first */
- if (!strcmp(mode->name, cmdline_mode->name))
- return mode;
-
/* check width/height */
if (mode->hdisplay != cmdline_mode->xres ||
mode->vdisplay != cmdline_mode->yres)
@@ -1237,3 +1233,7 @@ int drm_client_modeset_dpms(struct drm_client_dev *client, int mode)
return ret;
}
EXPORT_SYMBOL(drm_client_modeset_dpms);
+
+#ifdef CONFIG_DRM_KUNIT_TEST
+#include "tests/drm_client_modeset_test.c"
+#endif
diff --git a/drivers/gpu/drm/drm_connector.c b/drivers/gpu/drm/drm_connector.c
index 61c29ce74b03..48df7a5ea503 100644
--- a/drivers/gpu/drm/drm_connector.c
+++ b/drivers/gpu/drm/drm_connector.c
@@ -33,9 +33,11 @@
#include <drm/drm_sysfs.h>
#include <drm/drm_utils.h>
-#include <linux/fb.h>
+#include <linux/property.h>
#include <linux/uaccess.h>
+#include <video/cmdline.h>
+
#include "drm_crtc_internal.h"
#include "drm_internal.h"
@@ -154,9 +156,10 @@ EXPORT_SYMBOL(drm_get_connector_type_name);
static void drm_connector_get_cmdline_mode(struct drm_connector *connector)
{
struct drm_cmdline_mode *mode = &connector->cmdline_mode;
- char *option = NULL;
+ const char *option;
- if (fb_get_options(connector->name, &option))
+ option = video_get_options(connector->name);
+ if (!option)
return;
if (!drm_mode_parse_command_line_for_connector(option,
@@ -274,6 +277,7 @@ static int __drm_connector_init(struct drm_device *dev,
INIT_LIST_HEAD(&connector->probed_modes);
INIT_LIST_HEAD(&connector->modes);
mutex_init(&connector->mutex);
+ mutex_init(&connector->edid_override_mutex);
connector->edid_blob_ptr = NULL;
connector->epoch_counter = 0;
connector->tile_blob_ptr = NULL;
@@ -564,6 +568,7 @@ void drm_connector_cleanup(struct drm_connector *connector)
ida_free(&dev->mode_config.connector_ida, connector->index);
kfree(connector->display_info.bus_formats);
+ kfree(connector->display_info.vics);
drm_mode_object_unregister(dev, &connector->base);
kfree(connector->name);
connector->name = NULL;
@@ -582,6 +587,9 @@ void drm_connector_cleanup(struct drm_connector *connector)
mutex_destroy(&connector->mutex);
memset(connector, 0, sizeof(*connector));
+
+ if (dev->registered)
+ drm_sysfs_hotplug_event(dev);
}
EXPORT_SYMBOL(drm_connector_cleanup);
@@ -980,6 +988,41 @@ static const struct drm_prop_enum_list drm_dvi_i_subconnector_enum_list[] = {
DRM_ENUM_NAME_FN(drm_get_dvi_i_subconnector_name,
drm_dvi_i_subconnector_enum_list)
+static const struct drm_prop_enum_list drm_tv_mode_enum_list[] = {
+ { DRM_MODE_TV_MODE_NTSC, "NTSC" },
+ { DRM_MODE_TV_MODE_NTSC_443, "NTSC-443" },
+ { DRM_MODE_TV_MODE_NTSC_J, "NTSC-J" },
+ { DRM_MODE_TV_MODE_PAL, "PAL" },
+ { DRM_MODE_TV_MODE_PAL_M, "PAL-M" },
+ { DRM_MODE_TV_MODE_PAL_N, "PAL-N" },
+ { DRM_MODE_TV_MODE_SECAM, "SECAM" },
+};
+DRM_ENUM_NAME_FN(drm_get_tv_mode_name, drm_tv_mode_enum_list)
+
+/**
+ * drm_get_tv_mode_from_name - Translates a TV mode name into its enum value
+ * @name: TV Mode name we want to convert
+ * @len: Length of @name
+ *
+ * Translates @name into an enum drm_connector_tv_mode.
+ *
+ * Returns: the enum value on success, a negative errno otherwise.
+ */
+int drm_get_tv_mode_from_name(const char *name, size_t len)
+{
+ unsigned int i;
+
+ for (i = 0; i < ARRAY_SIZE(drm_tv_mode_enum_list); i++) {
+ const struct drm_prop_enum_list *item = &drm_tv_mode_enum_list[i];
+
+ if (strlen(item->name) == len && !strncmp(item->name, name, len))
+ return item->type;
+ }
+
+ return -EINVAL;
+}
+EXPORT_SYMBOL(drm_get_tv_mode_from_name);
+
static const struct drm_prop_enum_list drm_tv_select_enum_list[] = {
{ DRM_MODE_SUBCONNECTOR_Automatic, "Automatic" }, /* DVI-I and TV-out */
{ DRM_MODE_SUBCONNECTOR_Composite, "Composite" }, /* TV-out */
@@ -1406,6 +1449,20 @@ static const struct drm_prop_enum_list dp_colorspaces[] = {
* a firmware handled hotkey. Therefor userspace must not include the
* privacy-screen sw-state in an atomic commit unless it wants to change
* its value.
+ *
+ * left margin, right margin, top margin, bottom margin:
+ * Add margins to the connector's viewport. This is typically used to
+ * mitigate overscan on TVs.
+ *
+ * The value is the size in pixels of the black border which will be
+ * added. The attached CRTC's content will be scaled to fill the whole
+ * area inside the margin.
+ *
+ * The margins configuration might be sent to the sink, e.g. via HDMI AVI
+ * InfoFrames.
+ *
+ * Drivers can set up these properties by calling
+ * drm_mode_create_tv_margin_properties().
*/
int drm_connector_create_standard_properties(struct drm_device *dev)
@@ -1548,6 +1605,66 @@ EXPORT_SYMBOL(drm_connector_attach_dp_subconnector_property);
* infoframe values is done through drm_hdmi_avi_infoframe_content_type().
*/
+/*
+ * TODO: Document the properties:
+ * - brightness
+ * - contrast
+ * - flicker reduction
+ * - hue
+ * - mode
+ * - overscan
+ * - saturation
+ * - select subconnector
+ */
+/**
+ * DOC: Analog TV Connector Properties
+ *
+ * TV Mode:
+ * Indicates the TV Mode used on an analog TV connector. The value
+ * of this property can be one of the following:
+ *
+ * NTSC:
+ * TV Mode is CCIR System M (aka 525-lines) together with
+ * the NTSC Color Encoding.
+ *
+ * NTSC-443:
+ *
+ * TV Mode is CCIR System M (aka 525-lines) together with
+ * the NTSC Color Encoding, but with a color subcarrier
+ * frequency of 4.43MHz
+ *
+ * NTSC-J:
+ *
+ * TV Mode is CCIR System M (aka 525-lines) together with
+ * the NTSC Color Encoding, but with a black level equal to
+ * the blanking level.
+ *
+ * PAL:
+ *
+ * TV Mode is CCIR System B (aka 625-lines) together with
+ * the PAL Color Encoding.
+ *
+ * PAL-M:
+ *
+ * TV Mode is CCIR System M (aka 525-lines) together with
+ * the PAL Color Encoding.
+ *
+ * PAL-N:
+ *
+ * TV Mode is CCIR System N together with the PAL Color
+ * Encoding, a color subcarrier frequency of 3.58MHz, the
+ * SECAM color space, and narrower channels than other PAL
+ * variants.
+ *
+ * SECAM:
+ *
+ * TV Mode is CCIR System B (aka 625-lines) together with
+ * the SECAM Color Encoding.
+ *
+ * Drivers can set up this property by calling
+ * drm_mode_create_tv_properties().
+ */
+
/**
* drm_connector_attach_content_type_property - attach content-type property
* @connector: connector to attach content type property on.
@@ -1600,7 +1717,7 @@ EXPORT_SYMBOL(drm_connector_attach_tv_margin_properties);
* Called by a driver's HDMI connector initialization routine, this function
* creates the TV margin properties for a given device. No need to call this
* function for an SDTV connector, it's already called from
- * drm_mode_create_tv_properties().
+ * drm_mode_create_tv_properties_legacy().
*
* Returns:
* 0 on success or a negative error code on failure.
@@ -1635,7 +1752,7 @@ int drm_mode_create_tv_margin_properties(struct drm_device *dev)
EXPORT_SYMBOL(drm_mode_create_tv_margin_properties);
/**
- * drm_mode_create_tv_properties - create TV specific connector properties
+ * drm_mode_create_tv_properties_legacy - create TV specific connector properties
* @dev: DRM device
* @num_modes: number of different TV formats (modes) supported
* @modes: array of pointers to strings containing name of each format
@@ -1645,12 +1762,16 @@ EXPORT_SYMBOL(drm_mode_create_tv_margin_properties);
* responsible for allocating a list of format names and passing them to
* this routine.
*
+ * NOTE: This functions registers the deprecated "mode" connector
+ * property to select the analog TV mode (ie, NTSC, PAL, etc.). New
+ * drivers must use drm_mode_create_tv_properties() instead.
+ *
* Returns:
* 0 on success or a negative error code on failure.
*/
-int drm_mode_create_tv_properties(struct drm_device *dev,
- unsigned int num_modes,
- const char * const modes[])
+int drm_mode_create_tv_properties_legacy(struct drm_device *dev,
+ unsigned int num_modes,
+ const char * const modes[])
{
struct drm_property *tv_selector;
struct drm_property *tv_subconnector;
@@ -1686,15 +1807,17 @@ int drm_mode_create_tv_properties(struct drm_device *dev,
if (drm_mode_create_tv_margin_properties(dev))
goto nomem;
- dev->mode_config.tv_mode_property =
- drm_property_create(dev, DRM_MODE_PROP_ENUM,
- "mode", num_modes);
- if (!dev->mode_config.tv_mode_property)
- goto nomem;
+ if (num_modes) {
+ dev->mode_config.legacy_tv_mode_property =
+ drm_property_create(dev, DRM_MODE_PROP_ENUM,
+ "mode", num_modes);
+ if (!dev->mode_config.legacy_tv_mode_property)
+ goto nomem;
- for (i = 0; i < num_modes; i++)
- drm_property_add_enum(dev->mode_config.tv_mode_property,
- i, modes[i]);
+ for (i = 0; i < num_modes; i++)
+ drm_property_add_enum(dev->mode_config.legacy_tv_mode_property,
+ i, modes[i]);
+ }
dev->mode_config.tv_brightness_property =
drm_property_create_range(dev, 0, "brightness", 0, 100);
@@ -1730,6 +1853,47 @@ int drm_mode_create_tv_properties(struct drm_device *dev,
nomem:
return -ENOMEM;
}
+EXPORT_SYMBOL(drm_mode_create_tv_properties_legacy);
+
+/**
+ * drm_mode_create_tv_properties - create TV specific connector properties
+ * @dev: DRM device
+ * @supported_tv_modes: Bitmask of TV modes supported (See DRM_MODE_TV_MODE_*)
+ *
+ * Called by a driver's TV initialization routine, this function creates
+ * the TV specific connector properties for a given device.
+ *
+ * Returns:
+ * 0 on success or a negative error code on failure.
+ */
+int drm_mode_create_tv_properties(struct drm_device *dev,
+ unsigned int supported_tv_modes)
+{
+ struct drm_prop_enum_list tv_mode_list[DRM_MODE_TV_MODE_MAX];
+ struct drm_property *tv_mode;
+ unsigned int i, len = 0;
+
+ if (dev->mode_config.tv_mode_property)
+ return 0;
+
+ for (i = 0; i < DRM_MODE_TV_MODE_MAX; i++) {
+ if (!(supported_tv_modes & BIT(i)))
+ continue;
+
+ tv_mode_list[len].type = i;
+ tv_mode_list[len].name = drm_get_tv_mode_name(i);
+ len++;
+ }
+
+ tv_mode = drm_property_create_enum(dev, 0, "TV mode",
+ tv_mode_list, len);
+ if (!tv_mode)
+ return -ENOMEM;
+
+ dev->mode_config.tv_mode_property = tv_mode;
+
+ return drm_mode_create_tv_properties_legacy(dev, 0, NULL);
+}
EXPORT_SYMBOL(drm_mode_create_tv_properties);
/**
diff --git a/drivers/gpu/drm/drm_context.c b/drivers/gpu/drm/drm_context.c
index c6e6a3e7219a..a0fc779e5e1e 100644
--- a/drivers/gpu/drm/drm_context.c
+++ b/drivers/gpu/drm/drm_context.c
@@ -59,8 +59,7 @@ struct drm_ctx_list {
*/
void drm_legacy_ctxbitmap_free(struct drm_device * dev, int ctx_handle)
{
- if (!drm_core_check_feature(dev, DRIVER_KMS_LEGACY_CONTEXT) &&
- !drm_core_check_feature(dev, DRIVER_LEGACY))
+ if (!drm_core_check_feature(dev, DRIVER_LEGACY))
return;
mutex_lock(&dev->struct_mutex);
@@ -97,8 +96,7 @@ static int drm_legacy_ctxbitmap_next(struct drm_device * dev)
*/
void drm_legacy_ctxbitmap_init(struct drm_device * dev)
{
- if (!drm_core_check_feature(dev, DRIVER_KMS_LEGACY_CONTEXT) &&
- !drm_core_check_feature(dev, DRIVER_LEGACY))
+ if (!drm_core_check_feature(dev, DRIVER_LEGACY))
return;
idr_init(&dev->ctx_idr);
@@ -114,8 +112,7 @@ void drm_legacy_ctxbitmap_init(struct drm_device * dev)
*/
void drm_legacy_ctxbitmap_cleanup(struct drm_device * dev)
{
- if (!drm_core_check_feature(dev, DRIVER_KMS_LEGACY_CONTEXT) &&
- !drm_core_check_feature(dev, DRIVER_LEGACY))
+ if (!drm_core_check_feature(dev, DRIVER_LEGACY))
return;
mutex_lock(&dev->struct_mutex);
@@ -136,8 +133,7 @@ void drm_legacy_ctxbitmap_flush(struct drm_device *dev, struct drm_file *file)
{
struct drm_ctx_list *pos, *tmp;
- if (!drm_core_check_feature(dev, DRIVER_KMS_LEGACY_CONTEXT) &&
- !drm_core_check_feature(dev, DRIVER_LEGACY))
+ if (!drm_core_check_feature(dev, DRIVER_LEGACY))
return;
mutex_lock(&dev->ctxlist_mutex);
@@ -182,8 +178,7 @@ int drm_legacy_getsareactx(struct drm_device *dev, void *data,
struct drm_local_map *map;
struct drm_map_list *_entry;
- if (!drm_core_check_feature(dev, DRIVER_KMS_LEGACY_CONTEXT) &&
- !drm_core_check_feature(dev, DRIVER_LEGACY))
+ if (!drm_core_check_feature(dev, DRIVER_LEGACY))
return -EOPNOTSUPP;
mutex_lock(&dev->struct_mutex);
@@ -230,8 +225,7 @@ int drm_legacy_setsareactx(struct drm_device *dev, void *data,
struct drm_local_map *map = NULL;
struct drm_map_list *r_list = NULL;
- if (!drm_core_check_feature(dev, DRIVER_KMS_LEGACY_CONTEXT) &&
- !drm_core_check_feature(dev, DRIVER_LEGACY))
+ if (!drm_core_check_feature(dev, DRIVER_LEGACY))
return -EOPNOTSUPP;
mutex_lock(&dev->struct_mutex);
@@ -335,8 +329,7 @@ int drm_legacy_resctx(struct drm_device *dev, void *data,
struct drm_ctx ctx;
int i;
- if (!drm_core_check_feature(dev, DRIVER_KMS_LEGACY_CONTEXT) &&
- !drm_core_check_feature(dev, DRIVER_LEGACY))
+ if (!drm_core_check_feature(dev, DRIVER_LEGACY))
return -EOPNOTSUPP;
if (res->count >= DRM_RESERVED_CONTEXTS) {
@@ -370,8 +363,7 @@ int drm_legacy_addctx(struct drm_device *dev, void *data,
struct drm_ctx *ctx = data;
int tmp_handle;
- if (!drm_core_check_feature(dev, DRIVER_KMS_LEGACY_CONTEXT) &&
- !drm_core_check_feature(dev, DRIVER_LEGACY))
+ if (!drm_core_check_feature(dev, DRIVER_LEGACY))
return -EOPNOTSUPP;
tmp_handle = drm_legacy_ctxbitmap_next(dev);
@@ -419,8 +411,7 @@ int drm_legacy_getctx(struct drm_device *dev, void *data,
{
struct drm_ctx *ctx = data;
- if (!drm_core_check_feature(dev, DRIVER_KMS_LEGACY_CONTEXT) &&
- !drm_core_check_feature(dev, DRIVER_LEGACY))
+ if (!drm_core_check_feature(dev, DRIVER_LEGACY))
return -EOPNOTSUPP;
/* This is 0, because we don't handle any context flags */
@@ -445,8 +436,7 @@ int drm_legacy_switchctx(struct drm_device *dev, void *data,
{
struct drm_ctx *ctx = data;
- if (!drm_core_check_feature(dev, DRIVER_KMS_LEGACY_CONTEXT) &&
- !drm_core_check_feature(dev, DRIVER_LEGACY))
+ if (!drm_core_check_feature(dev, DRIVER_LEGACY))
return -EOPNOTSUPP;
DRM_DEBUG("%d\n", ctx->handle);
@@ -469,8 +459,7 @@ int drm_legacy_newctx(struct drm_device *dev, void *data,
{
struct drm_ctx *ctx = data;
- if (!drm_core_check_feature(dev, DRIVER_KMS_LEGACY_CONTEXT) &&
- !drm_core_check_feature(dev, DRIVER_LEGACY))
+ if (!drm_core_check_feature(dev, DRIVER_LEGACY))
return -EOPNOTSUPP;
DRM_DEBUG("%d\n", ctx->handle);
@@ -495,8 +484,7 @@ int drm_legacy_rmctx(struct drm_device *dev, void *data,
{
struct drm_ctx *ctx = data;
- if (!drm_core_check_feature(dev, DRIVER_KMS_LEGACY_CONTEXT) &&
- !drm_core_check_feature(dev, DRIVER_LEGACY))
+ if (!drm_core_check_feature(dev, DRIVER_LEGACY))
return -EOPNOTSUPP;
DRM_DEBUG("%d\n", ctx->handle);
diff --git a/drivers/gpu/drm/drm_crtc_helper.c b/drivers/gpu/drm/drm_crtc_helper.c
index 7d86020b5244..a209659a996c 100644
--- a/drivers/gpu/drm/drm_crtc_helper.c
+++ b/drivers/gpu/drm/drm_crtc_helper.c
@@ -43,7 +43,6 @@
#include <drm/drm_drv.h>
#include <drm/drm_edid.h>
#include <drm/drm_encoder.h>
-#include <drm/drm_fb_helper.h>
#include <drm/drm_fourcc.h>
#include <drm/drm_framebuffer.h>
#include <drm/drm_print.h>
@@ -434,6 +433,32 @@ done:
}
EXPORT_SYMBOL(drm_crtc_helper_set_mode);
+/**
+ * drm_crtc_helper_atomic_check() - Helper to check CRTC atomic-state
+ * @crtc: CRTC to check
+ * @state: atomic state object
+ *
+ * Provides a default CRTC-state check handler for CRTCs that only have
+ * one primary plane attached to it.
+ *
+ * This is often the case for the CRTC of simple framebuffers. See also
+ * drm_plane_helper_atomic_check() for the respective plane-state check
+ * helper function.
+ *
+ * RETURNS:
+ * Zero on success, or an errno code otherwise.
+ */
+int drm_crtc_helper_atomic_check(struct drm_crtc *crtc, struct drm_atomic_state *state)
+{
+ struct drm_crtc_state *new_crtc_state = drm_atomic_get_new_crtc_state(state, crtc);
+
+ if (!new_crtc_state->enable)
+ return 0;
+
+ return drm_atomic_helper_check_crtc_primary_plane(new_crtc_state);
+}
+EXPORT_SYMBOL(drm_crtc_helper_atomic_check);
+
static void
drm_crtc_helper_disable(struct drm_crtc *crtc)
{
diff --git a/drivers/gpu/drm/drm_crtc_internal.h b/drivers/gpu/drm/drm_crtc_internal.h
index 56041b604881..501a10edd0e1 100644
--- a/drivers/gpu/drm/drm_crtc_internal.h
+++ b/drivers/gpu/drm/drm_crtc_internal.h
@@ -56,9 +56,10 @@ struct drm_plane;
struct drm_plane_state;
struct drm_property;
struct edid;
+struct fwnode_handle;
struct kref;
+struct seq_file;
struct work_struct;
-struct fwnode_handle;
/* drm_crtc.c */
int drm_mode_crtc_set_obj_prop(struct drm_mode_object *obj,
@@ -286,5 +287,17 @@ int drm_mode_page_flip_ioctl(struct drm_device *dev,
/* drm_edid.c */
void drm_mode_fixup_1366x768(struct drm_display_mode *mode);
+int drm_edid_override_show(struct drm_connector *connector, struct seq_file *m);
int drm_edid_override_set(struct drm_connector *connector, const void *edid, size_t size);
int drm_edid_override_reset(struct drm_connector *connector);
+
+/* drm_edid_load.c */
+#ifdef CONFIG_DRM_LOAD_EDID_FIRMWARE
+const struct drm_edid *drm_edid_load_firmware(struct drm_connector *connector);
+#else
+static inline const struct drm_edid *
+drm_edid_load_firmware(struct drm_connector *connector)
+{
+ return ERR_PTR(-ENOENT);
+}
+#endif
diff --git a/drivers/gpu/drm/drm_debugfs.c b/drivers/gpu/drm/drm_debugfs.c
index 01ee3febb813..4855230ba2c6 100644
--- a/drivers/gpu/drm/drm_debugfs.c
+++ b/drivers/gpu/drm/drm_debugfs.c
@@ -38,6 +38,7 @@
#include <drm/drm_edid.h>
#include <drm/drm_file.h>
#include <drm/drm_gem.h>
+#include <drm/drm_managed.h>
#include "drm_crtc_internal.h"
#include "drm_internal.h"
@@ -50,9 +51,8 @@
static int drm_name_info(struct seq_file *m, void *data)
{
- struct drm_info_node *node = (struct drm_info_node *) m->private;
- struct drm_minor *minor = node->minor;
- struct drm_device *dev = minor->dev;
+ struct drm_debugfs_entry *entry = m->private;
+ struct drm_device *dev = entry->dev;
struct drm_master *master;
mutex_lock(&dev->master_mutex);
@@ -72,15 +72,15 @@ static int drm_name_info(struct seq_file *m, void *data)
static int drm_clients_info(struct seq_file *m, void *data)
{
- struct drm_info_node *node = (struct drm_info_node *) m->private;
- struct drm_device *dev = node->minor->dev;
+ struct drm_debugfs_entry *entry = m->private;
+ struct drm_device *dev = entry->dev;
struct drm_file *priv;
kuid_t uid;
seq_printf(m,
"%20s %5s %3s master a %5s %10s\n",
"command",
- "pid",
+ "tgid",
"dev",
"uid",
"magic");
@@ -94,7 +94,7 @@ static int drm_clients_info(struct seq_file *m, void *data)
bool is_current_master = drm_is_current_master(priv);
rcu_read_lock(); /* locks pid_task()->comm */
- task = pid_task(priv->pid, PIDTYPE_PID);
+ task = pid_task(priv->pid, PIDTYPE_TGID);
uid = task ? __task_cred(task)->euid : GLOBAL_ROOT_UID;
seq_printf(m, "%20s %5d %3d %c %c %5d %10u\n",
task ? task->comm : "<unknown>",
@@ -124,8 +124,8 @@ static int drm_gem_one_name_info(int id, void *ptr, void *data)
static int drm_gem_name_info(struct seq_file *m, void *data)
{
- struct drm_info_node *node = (struct drm_info_node *) m->private;
- struct drm_device *dev = node->minor->dev;
+ struct drm_debugfs_entry *entry = m->private;
+ struct drm_device *dev = entry->dev;
seq_printf(m, " name size handles refcount\n");
@@ -136,7 +136,7 @@ static int drm_gem_name_info(struct seq_file *m, void *data)
return 0;
}
-static const struct drm_info_list drm_debugfs_list[] = {
+static const struct drm_debugfs_info drm_debugfs_list[] = {
{"name", drm_name_info, 0},
{"clients", drm_clients_info, 0},
{"gem_names", drm_gem_name_info, DRIVER_GEM},
@@ -151,6 +151,21 @@ static int drm_debugfs_open(struct inode *inode, struct file *file)
return single_open(file, node->info_ent->show, node);
}
+static int drm_debugfs_entry_open(struct inode *inode, struct file *file)
+{
+ struct drm_debugfs_entry *entry = inode->i_private;
+ struct drm_debugfs_info *node = &entry->file;
+
+ return single_open(file, node->show, entry);
+}
+
+static const struct file_operations drm_debugfs_entry_fops = {
+ .owner = THIS_MODULE,
+ .open = drm_debugfs_entry_open,
+ .read = seq_read,
+ .llseek = seq_lseek,
+ .release = single_release,
+};
static const struct file_operations drm_debugfs_fops = {
.owner = THIS_MODULE,
@@ -192,7 +207,7 @@ void drm_debugfs_create_files(const struct drm_info_list *files, int count,
tmp->minor = minor;
tmp->dent = debugfs_create_file(files[i].name,
- S_IFREG | S_IRUGO, root, tmp,
+ 0444, root, tmp,
&drm_debugfs_fops);
tmp->info_ent = &files[i];
@@ -207,6 +222,7 @@ int drm_debugfs_init(struct drm_minor *minor, int minor_id,
struct dentry *root)
{
struct drm_device *dev = minor->dev;
+ struct drm_debugfs_entry *entry, *tmp;
char name[64];
INIT_LIST_HEAD(&minor->debugfs_list);
@@ -214,8 +230,7 @@ int drm_debugfs_init(struct drm_minor *minor, int minor_id,
sprintf(name, "%d", minor_id);
minor->debugfs_root = debugfs_create_dir(name, root);
- drm_debugfs_create_files(drm_debugfs_list, DRM_DEBUGFS_ENTRIES,
- minor->debugfs_root, minor);
+ drm_debugfs_add_files(minor->dev, drm_debugfs_list, DRM_DEBUGFS_ENTRIES);
if (drm_drv_uses_atomic_modeset(dev)) {
drm_atomic_debugfs_init(minor);
@@ -230,9 +245,29 @@ int drm_debugfs_init(struct drm_minor *minor, int minor_id,
if (dev->driver->debugfs_init)
dev->driver->debugfs_init(minor);
+ list_for_each_entry_safe(entry, tmp, &dev->debugfs_list, list) {
+ debugfs_create_file(entry->file.name, 0444,
+ minor->debugfs_root, entry, &drm_debugfs_entry_fops);
+ list_del(&entry->list);
+ }
+
return 0;
}
+void drm_debugfs_late_register(struct drm_device *dev)
+{
+ struct drm_minor *minor = dev->primary;
+ struct drm_debugfs_entry *entry, *tmp;
+
+ if (!minor)
+ return;
+
+ list_for_each_entry_safe(entry, tmp, &dev->debugfs_list, list) {
+ debugfs_create_file(entry->file.name, 0444,
+ minor->debugfs_root, entry, &drm_debugfs_entry_fops);
+ list_del(&entry->list);
+ }
+}
int drm_debugfs_remove_files(const struct drm_info_list *files, int count,
struct drm_minor *minor)
@@ -281,6 +316,53 @@ void drm_debugfs_cleanup(struct drm_minor *minor)
minor->debugfs_root = NULL;
}
+/**
+ * drm_debugfs_add_file - Add a given file to the DRM device debugfs file list
+ * @dev: drm device for the ioctl
+ * @name: debugfs file name
+ * @show: show callback
+ * @data: driver-private data, should not be device-specific
+ *
+ * Add a given file entry to the DRM device debugfs file list to be created on
+ * drm_debugfs_init.
+ */
+void drm_debugfs_add_file(struct drm_device *dev, const char *name,
+ int (*show)(struct seq_file*, void*), void *data)
+{
+ struct drm_debugfs_entry *entry = drmm_kzalloc(dev, sizeof(*entry), GFP_KERNEL);
+
+ if (!entry)
+ return;
+
+ entry->file.name = name;
+ entry->file.show = show;
+ entry->file.data = data;
+ entry->dev = dev;
+
+ mutex_lock(&dev->debugfs_mutex);
+ list_add(&entry->list, &dev->debugfs_list);
+ mutex_unlock(&dev->debugfs_mutex);
+}
+EXPORT_SYMBOL(drm_debugfs_add_file);
+
+/**
+ * drm_debugfs_add_files - Add an array of files to the DRM device debugfs file list
+ * @dev: drm device for the ioctl
+ * @files: The array of files to create
+ * @count: The number of files given
+ *
+ * Add a given set of debugfs files represented by an array of
+ * &struct drm_debugfs_info in the DRM device debugfs file list.
+ */
+void drm_debugfs_add_files(struct drm_device *dev, const struct drm_debugfs_info *files, int count)
+{
+ int i;
+
+ for (i = 0; i < count; i++)
+ drm_debugfs_add_file(dev, files[i].name, files[i].show, files[i].data);
+}
+EXPORT_SYMBOL(drm_debugfs_add_files);
+
static int connector_show(struct seq_file *m, void *data)
{
struct drm_connector *connector = m->private;
@@ -328,13 +410,7 @@ static ssize_t connector_write(struct file *file, const char __user *ubuf,
static int edid_show(struct seq_file *m, void *data)
{
- struct drm_connector *connector = m->private;
- struct drm_property_blob *edid = connector->edid_blob_ptr;
-
- if (connector->override_edid && edid)
- seq_write(m, edid->data, edid->length);
-
- return 0;
+ return drm_edid_override_show(m->private, m);
}
static int edid_open(struct inode *inode, struct file *file)
@@ -432,15 +508,15 @@ void drm_debugfs_connector_add(struct drm_connector *connector)
connector->debugfs_entry = root;
/* force */
- debugfs_create_file("force", S_IRUGO | S_IWUSR, root, connector,
+ debugfs_create_file("force", 0644, root, connector,
&drm_connector_fops);
/* edid */
- debugfs_create_file("edid_override", S_IRUGO | S_IWUSR, root, connector,
+ debugfs_create_file("edid_override", 0644, root, connector,
&drm_edid_fops);
/* vrr range */
- debugfs_create_file("vrr_range", S_IRUGO, root, connector,
+ debugfs_create_file("vrr_range", 0444, root, connector,
&vrr_range_fops);
/* max bpc */
diff --git a/drivers/gpu/drm/drm_displayid.c b/drivers/gpu/drm/drm_displayid.c
index 38ea8203df45..9edc111be7ee 100644
--- a/drivers/gpu/drm/drm_displayid.c
+++ b/drivers/gpu/drm/drm_displayid.c
@@ -7,13 +7,29 @@
#include <drm/drm_edid.h>
#include <drm/drm_print.h>
-static int validate_displayid(const u8 *displayid, int length, int idx)
+static const struct displayid_header *
+displayid_get_header(const u8 *displayid, int length, int index)
+{
+ const struct displayid_header *base;
+
+ if (sizeof(*base) > length - index)
+ return ERR_PTR(-EINVAL);
+
+ base = (const struct displayid_header *)&displayid[index];
+
+ return base;
+}
+
+static const struct displayid_header *
+validate_displayid(const u8 *displayid, int length, int idx)
{
int i, dispid_length;
u8 csum = 0;
const struct displayid_header *base;
- base = (const struct displayid_header *)&displayid[idx];
+ base = displayid_get_header(displayid, length, idx);
+ if (IS_ERR(base))
+ return base;
DRM_DEBUG_KMS("base revision 0x%x, length %d, %d %d\n",
base->rev, base->bytes, base->prod_id, base->ext_count);
@@ -21,16 +37,16 @@ static int validate_displayid(const u8 *displayid, int length, int idx)
/* +1 for DispID checksum */
dispid_length = sizeof(*base) + base->bytes + 1;
if (dispid_length > length - idx)
- return -EINVAL;
+ return ERR_PTR(-EINVAL);
for (i = 0; i < dispid_length; i++)
csum += displayid[idx + i];
if (csum) {
DRM_NOTE("DisplayID checksum invalid, remainder is %d\n", csum);
- return -EINVAL;
+ return ERR_PTR(-EINVAL);
}
- return 0;
+ return base;
}
static const u8 *drm_find_displayid_extension(const struct drm_edid *drm_edid,
@@ -39,7 +55,6 @@ static const u8 *drm_find_displayid_extension(const struct drm_edid *drm_edid,
{
const u8 *displayid = drm_find_edid_extension(drm_edid, DISPLAYID_EXT, ext_index);
const struct displayid_header *base;
- int ret;
if (!displayid)
return NULL;
@@ -48,11 +63,10 @@ static const u8 *drm_find_displayid_extension(const struct drm_edid *drm_edid,
*length = EDID_LENGTH - 1;
*idx = 1;
- ret = validate_displayid(displayid, *length, *idx);
- if (ret)
+ base = validate_displayid(displayid, *length, *idx);
+ if (IS_ERR(base))
return NULL;
- base = (const struct displayid_header *)&displayid[*idx];
*length = *idx + sizeof(*base) + base->bytes;
return displayid;
@@ -109,6 +123,9 @@ __displayid_iter_next(struct displayid_iter *iter)
}
for (;;) {
+ /* The first section we encounter is the base section */
+ bool base_section = !iter->section;
+
iter->section = drm_find_displayid_extension(iter->drm_edid,
&iter->length,
&iter->idx,
@@ -118,6 +135,18 @@ __displayid_iter_next(struct displayid_iter *iter)
return NULL;
}
+ /* Save the structure version and primary use case. */
+ if (base_section) {
+ const struct displayid_header *base;
+
+ base = displayid_get_header(iter->section, iter->length,
+ iter->idx);
+ if (!IS_ERR(base)) {
+ iter->version = base->rev;
+ iter->primary_use = base->prod_id;
+ }
+ }
+
iter->idx += sizeof(struct displayid_header);
block = displayid_iter_block(iter);
@@ -130,3 +159,18 @@ void displayid_iter_end(struct displayid_iter *iter)
{
memset(iter, 0, sizeof(*iter));
}
+
+/* DisplayID Structure Version/Revision from the Base Section. */
+u8 displayid_version(const struct displayid_iter *iter)
+{
+ return iter->version;
+}
+
+/*
+ * DisplayID Primary Use Case (2.0+) or Product Type Identifier (1.0-1.3) from
+ * the Base Section.
+ */
+u8 displayid_primary_use(const struct displayid_iter *iter)
+{
+ return iter->primary_use;
+}
diff --git a/drivers/gpu/drm/drm_drv.c b/drivers/gpu/drm/drm_drv.c
index 8214a0b1ab7f..cee0cc522ed9 100644
--- a/drivers/gpu/drm/drm_drv.c
+++ b/drivers/gpu/drm/drm_drv.c
@@ -35,6 +35,7 @@
#include <linux/slab.h>
#include <linux/srcu.h>
+#include <drm/drm_accel.h>
#include <drm/drm_cache.h>
#include <drm/drm_client.h>
#include <drm/drm_color_mgmt.h>
@@ -90,6 +91,8 @@ static struct drm_minor **drm_minor_get_slot(struct drm_device *dev,
return &dev->primary;
case DRM_MINOR_RENDER:
return &dev->render;
+ case DRM_MINOR_ACCEL:
+ return &dev->accel;
default:
BUG();
}
@@ -104,9 +107,13 @@ static void drm_minor_alloc_release(struct drm_device *dev, void *data)
put_device(minor->kdev);
- spin_lock_irqsave(&drm_minor_lock, flags);
- idr_remove(&drm_minors_idr, minor->index);
- spin_unlock_irqrestore(&drm_minor_lock, flags);
+ if (minor->type == DRM_MINOR_ACCEL) {
+ accel_minor_remove(minor->index);
+ } else {
+ spin_lock_irqsave(&drm_minor_lock, flags);
+ idr_remove(&drm_minors_idr, minor->index);
+ spin_unlock_irqrestore(&drm_minor_lock, flags);
+ }
}
static int drm_minor_alloc(struct drm_device *dev, unsigned int type)
@@ -123,13 +130,17 @@ static int drm_minor_alloc(struct drm_device *dev, unsigned int type)
minor->dev = dev;
idr_preload(GFP_KERNEL);
- spin_lock_irqsave(&drm_minor_lock, flags);
- r = idr_alloc(&drm_minors_idr,
- NULL,
- 64 * type,
- 64 * (type + 1),
- GFP_NOWAIT);
- spin_unlock_irqrestore(&drm_minor_lock, flags);
+ if (type == DRM_MINOR_ACCEL) {
+ r = accel_minor_alloc();
+ } else {
+ spin_lock_irqsave(&drm_minor_lock, flags);
+ r = idr_alloc(&drm_minors_idr,
+ NULL,
+ 64 * type,
+ 64 * (type + 1),
+ GFP_NOWAIT);
+ spin_unlock_irqrestore(&drm_minor_lock, flags);
+ }
idr_preload_end();
if (r < 0)
@@ -161,10 +172,14 @@ static int drm_minor_register(struct drm_device *dev, unsigned int type)
if (!minor)
return 0;
- ret = drm_debugfs_init(minor, minor->index, drm_debugfs_root);
- if (ret) {
- DRM_ERROR("DRM: Failed to initialize /sys/kernel/debug/dri.\n");
- goto err_debugfs;
+ if (minor->type == DRM_MINOR_ACCEL) {
+ accel_debugfs_init(minor, minor->index);
+ } else {
+ ret = drm_debugfs_init(minor, minor->index, drm_debugfs_root);
+ if (ret) {
+ DRM_ERROR("DRM: Failed to initialize /sys/kernel/debug/dri.\n");
+ goto err_debugfs;
+ }
}
ret = device_add(minor->kdev);
@@ -172,9 +187,13 @@ static int drm_minor_register(struct drm_device *dev, unsigned int type)
goto err_debugfs;
/* replace NULL with @minor so lookups will succeed from now on */
- spin_lock_irqsave(&drm_minor_lock, flags);
- idr_replace(&drm_minors_idr, minor, minor->index);
- spin_unlock_irqrestore(&drm_minor_lock, flags);
+ if (minor->type == DRM_MINOR_ACCEL) {
+ accel_minor_replace(minor, minor->index);
+ } else {
+ spin_lock_irqsave(&drm_minor_lock, flags);
+ idr_replace(&drm_minors_idr, minor, minor->index);
+ spin_unlock_irqrestore(&drm_minor_lock, flags);
+ }
DRM_DEBUG("new minor registered %d\n", minor->index);
return 0;
@@ -194,9 +213,13 @@ static void drm_minor_unregister(struct drm_device *dev, unsigned int type)
return;
/* replace @minor with NULL so lookups will fail from now on */
- spin_lock_irqsave(&drm_minor_lock, flags);
- idr_replace(&drm_minors_idr, NULL, minor->index);
- spin_unlock_irqrestore(&drm_minor_lock, flags);
+ if (minor->type == DRM_MINOR_ACCEL) {
+ accel_minor_replace(NULL, minor->index);
+ } else {
+ spin_lock_irqsave(&drm_minor_lock, flags);
+ idr_replace(&drm_minors_idr, NULL, minor->index);
+ spin_unlock_irqrestore(&drm_minor_lock, flags);
+ }
device_del(minor->kdev);
dev_set_drvdata(minor->kdev, NULL); /* safety belt */
@@ -575,6 +598,7 @@ static void drm_dev_init_release(struct drm_device *dev, void *res)
mutex_destroy(&dev->clientlist_mutex);
mutex_destroy(&dev->filelist_mutex);
mutex_destroy(&dev->struct_mutex);
+ mutex_destroy(&dev->debugfs_mutex);
drm_legacy_destroy_members(dev);
}
@@ -603,19 +627,28 @@ static int drm_dev_init(struct drm_device *dev,
/* no per-device feature limits by default */
dev->driver_features = ~0u;
+ if (drm_core_check_feature(dev, DRIVER_COMPUTE_ACCEL) &&
+ (drm_core_check_feature(dev, DRIVER_RENDER) ||
+ drm_core_check_feature(dev, DRIVER_MODESET))) {
+ DRM_ERROR("DRM driver can't be both a compute acceleration and graphics driver\n");
+ return -EINVAL;
+ }
+
drm_legacy_init_members(dev);
INIT_LIST_HEAD(&dev->filelist);
INIT_LIST_HEAD(&dev->filelist_internal);
INIT_LIST_HEAD(&dev->clientlist);
INIT_LIST_HEAD(&dev->vblank_event_list);
+ INIT_LIST_HEAD(&dev->debugfs_list);
spin_lock_init(&dev->event_lock);
mutex_init(&dev->struct_mutex);
mutex_init(&dev->filelist_mutex);
mutex_init(&dev->clientlist_mutex);
mutex_init(&dev->master_mutex);
+ mutex_init(&dev->debugfs_mutex);
- ret = drmm_add_action(dev, drm_dev_init_release, NULL);
+ ret = drmm_add_action_or_reset(dev, drm_dev_init_release, NULL);
if (ret)
return ret;
@@ -628,15 +661,21 @@ static int drm_dev_init(struct drm_device *dev,
dev->anon_inode = inode;
- if (drm_core_check_feature(dev, DRIVER_RENDER)) {
- ret = drm_minor_alloc(dev, DRM_MINOR_RENDER);
+ if (drm_core_check_feature(dev, DRIVER_COMPUTE_ACCEL)) {
+ ret = drm_minor_alloc(dev, DRM_MINOR_ACCEL);
if (ret)
goto err;
- }
+ } else {
+ if (drm_core_check_feature(dev, DRIVER_RENDER)) {
+ ret = drm_minor_alloc(dev, DRM_MINOR_RENDER);
+ if (ret)
+ goto err;
+ }
- ret = drm_minor_alloc(dev, DRM_MINOR_PRIMARY);
- if (ret)
- goto err;
+ ret = drm_minor_alloc(dev, DRM_MINOR_PRIMARY);
+ if (ret)
+ goto err;
+ }
ret = drm_legacy_create_map_hash(dev);
if (ret)
@@ -652,9 +691,11 @@ static int drm_dev_init(struct drm_device *dev,
}
}
- ret = drm_dev_set_unique(dev, dev_name(parent));
- if (ret)
+ dev->unique = drmm_kstrdup(dev, dev_name(parent), GFP_KERNEL);
+ if (!dev->unique) {
+ ret = -ENOMEM;
goto err;
+ }
return 0;
@@ -883,14 +924,18 @@ int drm_dev_register(struct drm_device *dev, unsigned long flags)
if (ret)
goto err_minors;
+ ret = drm_minor_register(dev, DRM_MINOR_ACCEL);
+ if (ret)
+ goto err_minors;
+
ret = create_compat_control_link(dev);
if (ret)
goto err_minors;
dev->registered = true;
- if (dev->driver->load) {
- ret = dev->driver->load(dev, flags);
+ if (driver->load) {
+ ret = driver->load(dev, flags);
if (ret)
goto err_minors;
}
@@ -902,12 +947,13 @@ int drm_dev_register(struct drm_device *dev, unsigned long flags)
driver->name, driver->major, driver->minor,
driver->patchlevel, driver->date,
dev->dev ? dev_name(dev->dev) : "virtual device",
- dev->primary->index);
+ dev->primary ? dev->primary->index : dev->accel->index);
goto out_unlock;
err_minors:
remove_compat_control_link(dev);
+ drm_minor_unregister(dev, DRM_MINOR_ACCEL);
drm_minor_unregister(dev, DRM_MINOR_PRIMARY);
drm_minor_unregister(dev, DRM_MINOR_RENDER);
out_unlock:
@@ -950,31 +996,12 @@ void drm_dev_unregister(struct drm_device *dev)
drm_legacy_rmmaps(dev);
remove_compat_control_link(dev);
+ drm_minor_unregister(dev, DRM_MINOR_ACCEL);
drm_minor_unregister(dev, DRM_MINOR_PRIMARY);
drm_minor_unregister(dev, DRM_MINOR_RENDER);
}
EXPORT_SYMBOL(drm_dev_unregister);
-/**
- * drm_dev_set_unique - Set the unique name of a DRM device
- * @dev: device of which to set the unique name
- * @name: unique name
- *
- * Sets the unique name of a DRM device using the specified string. This is
- * already done by drm_dev_init(), drivers should only override the default
- * unique name for backwards compatibility reasons.
- *
- * Return: 0 on success or a negative error code on failure.
- */
-int drm_dev_set_unique(struct drm_device *dev, const char *name)
-{
- drmm_kfree(dev, dev->unique);
- dev->unique = drmm_kstrdup(dev, name, GFP_KERNEL);
-
- return dev->unique ? 0 : -ENOMEM;
-}
-EXPORT_SYMBOL(drm_dev_set_unique);
-
/*
* DRM Core
* The DRM core module initializes all global DRM objects and makes them
@@ -1034,6 +1061,7 @@ static const struct file_operations drm_stub_fops = {
static void drm_core_exit(void)
{
drm_privacy_screen_lookup_exit();
+ accel_core_exit();
unregister_chrdev(DRM_MAJOR, "drm");
debugfs_remove(drm_debugfs_root);
drm_sysfs_destroy();
@@ -1061,6 +1089,10 @@ static int __init drm_core_init(void)
if (ret < 0)
goto error;
+ ret = accel_core_init();
+ if (ret < 0)
+ goto error;
+
drm_privacy_screen_lookup_init();
drm_core_init_complete = true;
diff --git a/drivers/gpu/drm/drm_dumb_buffers.c b/drivers/gpu/drm/drm_dumb_buffers.c
index ad17fa21cebb..70032bba1c97 100644
--- a/drivers/gpu/drm/drm_dumb_buffers.c
+++ b/drivers/gpu/drm/drm_dumb_buffers.c
@@ -139,10 +139,7 @@ int drm_mode_destroy_dumb(struct drm_device *dev, u32 handle,
if (!dev->driver->dumb_create)
return -ENOSYS;
- if (dev->driver->dumb_destroy)
- return dev->driver->dumb_destroy(file_priv, dev, handle);
- else
- return drm_gem_dumb_destroy(file_priv, dev, handle);
+ return drm_gem_handle_delete(file_priv, handle);
}
int drm_mode_destroy_dumb_ioctl(struct drm_device *dev,
diff --git a/drivers/gpu/drm/drm_edid.c b/drivers/gpu/drm/drm_edid.c
index 4005dab6147d..0454da505687 100644
--- a/drivers/gpu/drm/drm_edid.c
+++ b/drivers/gpu/drm/drm_edid.c
@@ -87,6 +87,8 @@ static int oui(u8 first, u8 second, u8 third)
#define EDID_QUIRK_FORCE_10BPC (1 << 11)
/* Non desktop display (i.e. HMD) */
#define EDID_QUIRK_NON_DESKTOP (1 << 12)
+/* Cap the DSC target bitrate to 15bpp */
+#define EDID_QUIRK_CAP_DSC_15BPP (1 << 13)
#define MICROSOFT_IEEE_OUI 0xca125c
@@ -94,7 +96,6 @@ struct detailed_mode_closure {
struct drm_connector *connector;
const struct drm_edid *drm_edid;
bool preferred;
- u32 quirks;
int modes;
};
@@ -147,6 +148,12 @@ static const struct edid_quirk {
EDID_QUIRK('F', 'C', 'M', 13600, EDID_QUIRK_PREFER_LARGE_75 |
EDID_QUIRK_DETAILED_IN_CM),
+ /* LG 27GP950 */
+ EDID_QUIRK('G', 'S', 'M', 0x5bbf, EDID_QUIRK_CAP_DSC_15BPP),
+
+ /* LG 27GN950 */
+ EDID_QUIRK('G', 'S', 'M', 0x5b9a, EDID_QUIRK_CAP_DSC_15BPP),
+
/* LGD panel of HP zBook 17 G2, eDP 10 bpc, but reports unknown bpc */
EDID_QUIRK('L', 'G', 'D', 764, EDID_QUIRK_FORCE_10BPC),
@@ -1572,15 +1579,6 @@ struct drm_edid {
const struct edid *edid;
};
-static bool version_greater(const struct drm_edid *drm_edid,
- u8 version, u8 revision)
-{
- const struct edid *edid = drm_edid->edid;
-
- return edid->version > version ||
- (edid->version == version && edid->revision > revision);
-}
-
static int edid_hfeeodb_extension_block_count(const struct edid *edid);
static int edid_hfeeodb_block_count(const struct edid *edid)
@@ -1622,7 +1620,8 @@ static const void *edid_extension_block_data(const struct edid *edid, int index)
return edid_block_data(edid, index + 1);
}
-static int drm_edid_block_count(const struct drm_edid *drm_edid)
+/* EDID block count indicated in EDID, may exceed allocated size */
+static int __drm_edid_block_count(const struct drm_edid *drm_edid)
{
int num_blocks;
@@ -1642,12 +1641,18 @@ static int drm_edid_block_count(const struct drm_edid *drm_edid)
num_blocks = eeodb;
}
- /* Limit by allocated size */
- num_blocks = min(num_blocks, (int)drm_edid->size / EDID_LENGTH);
-
return num_blocks;
}
+/* EDID block count, limited by allocated size */
+static int drm_edid_block_count(const struct drm_edid *drm_edid)
+{
+ /* Limit by allocated size */
+ return min(__drm_edid_block_count(drm_edid),
+ (int)drm_edid->size / EDID_LENGTH);
+}
+
+/* EDID extension block count, limited by allocated size */
static int drm_edid_extension_block_count(const struct drm_edid *drm_edid)
{
return drm_edid_block_count(drm_edid) - 1;
@@ -1981,7 +1986,7 @@ bool drm_edid_block_valid(u8 *_block, int block_num, bool print_bad_edid,
status = edid_block_check(block, is_base_block);
if (status == EDID_BLOCK_HEADER_REPAIR) {
- DRM_DEBUG("Fixing EDID header, your hardware may be failing\n");
+ DRM_DEBUG_KMS("Fixing EDID header, your hardware may be failing\n");
edid_header_fix(block);
/* Retry with fixed header, update status if that worked. */
@@ -2042,6 +2047,36 @@ bool drm_edid_is_valid(struct edid *edid)
}
EXPORT_SYMBOL(drm_edid_is_valid);
+/**
+ * drm_edid_valid - sanity check EDID data
+ * @drm_edid: EDID data
+ *
+ * Sanity check an EDID. Cross check block count against allocated size and
+ * checksum the blocks.
+ *
+ * Return: True if the EDID data is valid, false otherwise.
+ */
+bool drm_edid_valid(const struct drm_edid *drm_edid)
+{
+ int i;
+
+ if (!drm_edid)
+ return false;
+
+ if (edid_size_by_blocks(__drm_edid_block_count(drm_edid)) != drm_edid->size)
+ return false;
+
+ for (i = 0; i < drm_edid_block_count(drm_edid); i++) {
+ const void *block = drm_edid_block_data(drm_edid, i);
+
+ if (!edid_block_valid(block, i == 0))
+ return false;
+ }
+
+ return true;
+}
+EXPORT_SYMBOL(drm_edid_valid);
+
static struct edid *edid_filter_invalid_blocks(struct edid *edid,
size_t *alloc_size)
{
@@ -2168,58 +2203,91 @@ static void connector_bad_edid(struct drm_connector *connector,
if (connector->bad_edid_counter++ && !drm_debug_enabled(DRM_UT_KMS))
return;
- drm_dbg_kms(connector->dev, "%s: EDID is invalid:\n", connector->name);
+ drm_dbg_kms(connector->dev, "[CONNECTOR:%d:%s] EDID is invalid:\n",
+ connector->base.id, connector->name);
for (i = 0; i < num_blocks; i++)
edid_block_dump(KERN_DEBUG, edid + i, i);
}
/* Get override or firmware EDID */
-static struct edid *drm_get_override_edid(struct drm_connector *connector,
- size_t *alloc_size)
+static const struct drm_edid *drm_edid_override_get(struct drm_connector *connector)
{
- struct edid *override = NULL;
+ const struct drm_edid *override = NULL;
- if (connector->override_edid)
- override = drm_edid_duplicate(connector->edid_blob_ptr->data);
+ mutex_lock(&connector->edid_override_mutex);
- if (!override)
- override = drm_load_edid_firmware(connector);
+ if (connector->edid_override)
+ override = drm_edid_dup(connector->edid_override);
- /* FIXME: Get alloc size from deeper down the stack */
- if (!IS_ERR_OR_NULL(override) && alloc_size)
- *alloc_size = edid_size(override);
+ mutex_unlock(&connector->edid_override_mutex);
+
+ if (!override)
+ override = drm_edid_load_firmware(connector);
return IS_ERR(override) ? NULL : override;
}
/* For debugfs edid_override implementation */
+int drm_edid_override_show(struct drm_connector *connector, struct seq_file *m)
+{
+ const struct drm_edid *drm_edid;
+
+ mutex_lock(&connector->edid_override_mutex);
+
+ drm_edid = connector->edid_override;
+ if (drm_edid)
+ seq_write(m, drm_edid->edid, drm_edid->size);
+
+ mutex_unlock(&connector->edid_override_mutex);
+
+ return 0;
+}
+
+/* For debugfs edid_override implementation */
int drm_edid_override_set(struct drm_connector *connector, const void *edid,
size_t size)
{
- int ret;
+ const struct drm_edid *drm_edid;
- if (size < EDID_LENGTH || edid_size(edid) > size)
+ drm_edid = drm_edid_alloc(edid, size);
+ if (!drm_edid_valid(drm_edid)) {
+ drm_dbg_kms(connector->dev, "[CONNECTOR:%d:%s] EDID override invalid\n",
+ connector->base.id, connector->name);
+ drm_edid_free(drm_edid);
return -EINVAL;
+ }
- connector->override_edid = false;
+ drm_dbg_kms(connector->dev, "[CONNECTOR:%d:%s] EDID override set\n",
+ connector->base.id, connector->name);
- ret = drm_connector_update_edid_property(connector, edid);
- if (!ret)
- connector->override_edid = true;
+ mutex_lock(&connector->edid_override_mutex);
- return ret;
+ drm_edid_free(connector->edid_override);
+ connector->edid_override = drm_edid;
+
+ mutex_unlock(&connector->edid_override_mutex);
+
+ return 0;
}
/* For debugfs edid_override implementation */
int drm_edid_override_reset(struct drm_connector *connector)
{
- connector->override_edid = false;
+ drm_dbg_kms(connector->dev, "[CONNECTOR:%d:%s] EDID override reset\n",
+ connector->base.id, connector->name);
+
+ mutex_lock(&connector->edid_override_mutex);
- return drm_connector_update_edid_property(connector, NULL);
+ drm_edid_free(connector->edid_override);
+ connector->edid_override = NULL;
+
+ mutex_unlock(&connector->edid_override_mutex);
+
+ return 0;
}
/**
- * drm_add_override_edid_modes - add modes from override/firmware EDID
+ * drm_edid_override_connector_update - add modes from override/firmware EDID
* @connector: connector we're probing
*
* Add modes from the override/firmware EDID, if available. Only to be used from
@@ -2229,24 +2297,25 @@ int drm_edid_override_reset(struct drm_connector *connector)
*
* Return: The number of modes added or 0 if we couldn't find any.
*/
-int drm_add_override_edid_modes(struct drm_connector *connector)
+int drm_edid_override_connector_update(struct drm_connector *connector)
{
- struct edid *override;
+ const struct drm_edid *override;
int num_modes = 0;
- override = drm_get_override_edid(connector, NULL);
+ override = drm_edid_override_get(connector);
if (override) {
- drm_connector_update_edid_property(connector, override);
- num_modes = drm_add_edid_modes(connector, override);
- kfree(override);
+ num_modes = drm_edid_connector_update(connector, override);
- DRM_DEBUG_KMS("[CONNECTOR:%d:%s] adding %d modes via fallback override/firmware EDID\n",
- connector->base.id, connector->name, num_modes);
+ drm_edid_free(override);
+
+ drm_dbg_kms(connector->dev,
+ "[CONNECTOR:%d:%s] adding %d modes via fallback override/firmware EDID\n",
+ connector->base.id, connector->name, num_modes);
}
return num_modes;
}
-EXPORT_SYMBOL(drm_add_override_edid_modes);
+EXPORT_SYMBOL(drm_edid_override_connector_update);
typedef int read_block_fn(void *context, u8 *buf, unsigned int block, size_t len);
@@ -2289,12 +2358,19 @@ static struct edid *_drm_do_get_edid(struct drm_connector *connector,
{
enum edid_block_status status;
int i, num_blocks, invalid_blocks = 0;
+ const struct drm_edid *override;
struct edid *edid, *new;
size_t alloc_size = EDID_LENGTH;
- edid = drm_get_override_edid(connector, &alloc_size);
- if (edid)
+ override = drm_edid_override_get(connector);
+ if (override) {
+ alloc_size = override->size;
+ edid = kmemdup(override->edid, alloc_size, GFP_KERNEL);
+ drm_edid_free(override);
+ if (!edid)
+ return NULL;
goto ok;
+ }
edid = kmalloc(alloc_size, GFP_KERNEL);
if (!edid)
@@ -2397,7 +2473,7 @@ fail:
* adapter and use drm_get_edid() instead of abusing this function.
*
* The EDID may be overridden using debugfs override_edid or firmware EDID
- * (drm_load_edid_firmware() and drm.edid_firmware parameter), in this priority
+ * (drm_edid_load_firmware() and drm.edid_firmware parameter), in this priority
* order. Having either of them bypasses actual EDID reads.
*
* Return: Pointer to valid EDID or NULL if we couldn't find any.
@@ -2575,7 +2651,7 @@ EXPORT_SYMBOL(drm_get_edid);
* this function.
*
* The EDID may be overridden using debugfs override_edid or firmware EDID
- * (drm_load_edid_firmware() and drm.edid_firmware parameter), in this priority
+ * (drm_edid_load_firmware() and drm.edid_firmware parameter), in this priority
* order. Having either of them bypasses actual EDID reads.
*
* The returned pointer must be freed using drm_edid_free().
@@ -2613,7 +2689,7 @@ EXPORT_SYMBOL(drm_edid_read_custom);
* Read EDID using the given I2C adapter.
*
* The EDID may be overridden using debugfs override_edid or firmware EDID
- * (drm_load_edid_firmware() and drm.edid_firmware parameter), in this priority
+ * (drm_edid_load_firmware() and drm.edid_firmware parameter), in this priority
* order. Having either of them bypasses actual EDID reads.
*
* Prefer initializing connector->ddc with drm_connector_init_with_ddc() and
@@ -2649,7 +2725,7 @@ EXPORT_SYMBOL(drm_edid_read_ddc);
* Read EDID using the connector's I2C adapter.
*
* The EDID may be overridden using debugfs override_edid or firmware EDID
- * (drm_load_edid_firmware() and drm.edid_firmware parameter), in this priority
+ * (drm_edid_load_firmware() and drm.edid_firmware parameter), in this priority
* order. Having either of them bypasses actual EDID reads.
*
* The returned pointer must be freed using drm_edid_free().
@@ -2720,7 +2796,7 @@ u32 drm_edid_get_panel_id(struct i2c_adapter *adapter)
* the EDID then we'll just return 0.
*/
- base_block = kmalloc(EDID_LENGTH, GFP_KERNEL);
+ base_block = kzalloc(EDID_LENGTH, GFP_KERNEL);
if (!base_block)
return 0;
@@ -2730,6 +2806,8 @@ u32 drm_edid_get_panel_id(struct i2c_adapter *adapter)
if (edid_block_status_valid(status, edid_block_tag(base_block)))
panel_id = edid_extract_panel_id(base_block);
+ else
+ edid_block_dump(KERN_NOTICE, base_block, 0);
kfree(base_block);
@@ -2808,9 +2886,9 @@ static u32 edid_get_quirks(const struct drm_edid *drm_edid)
* Walk the mode list for connector, clearing the preferred status on existing
* modes and setting it anew for the right mode ala quirks.
*/
-static void edid_fixup_preferred(struct drm_connector *connector,
- u32 quirks)
+static void edid_fixup_preferred(struct drm_connector *connector)
{
+ const struct drm_display_info *info = &connector->display_info;
struct drm_display_mode *t, *cur_mode, *preferred_mode;
int target_refresh = 0;
int cur_vrefresh, preferred_vrefresh;
@@ -2818,9 +2896,9 @@ static void edid_fixup_preferred(struct drm_connector *connector,
if (list_empty(&connector->probed_modes))
return;
- if (quirks & EDID_QUIRK_PREFER_LARGE_60)
+ if (info->quirks & EDID_QUIRK_PREFER_LARGE_60)
target_refresh = 60;
- if (quirks & EDID_QUIRK_PREFER_LARGE_75)
+ if (info->quirks & EDID_QUIRK_PREFER_LARGE_75)
target_refresh = 75;
preferred_mode = list_first_entry(&connector->probed_modes,
@@ -2984,7 +3062,7 @@ is_rb(const struct detailed_timing *descriptor, void *data)
BUILD_BUG_ON(offsetof(typeof(*descriptor), data.other_data.data.range.formula.cvt.flags) != 15);
if (descriptor->data.other_data.data.range.flags == DRM_EDID_CVT_SUPPORT_FLAG &&
- descriptor->data.other_data.data.range.formula.cvt.flags & 0x10)
+ descriptor->data.other_data.data.range.formula.cvt.flags & DRM_EDID_CVT_FLAGS_REDUCED_BLANKING)
*res = true;
}
@@ -3012,7 +3090,7 @@ find_gtf2(const struct detailed_timing *descriptor, void *data)
BUILD_BUG_ON(offsetof(typeof(*descriptor), data.other_data.data.range.flags) != 10);
- if (descriptor->data.other_data.data.range.flags == 0x02)
+ if (descriptor->data.other_data.data.range.flags == DRM_EDID_SECONDARY_GTF_SUPPORT_FLAG)
*res = descriptor;
}
@@ -3077,20 +3155,53 @@ drm_gtf2_2j(const struct drm_edid *drm_edid)
return descriptor ? descriptor->data.other_data.data.range.formula.gtf2.j : 0;
}
+static void
+get_timing_level(const struct detailed_timing *descriptor, void *data)
+{
+ int *res = data;
+
+ if (!is_display_descriptor(descriptor, EDID_DETAIL_MONITOR_RANGE))
+ return;
+
+ BUILD_BUG_ON(offsetof(typeof(*descriptor), data.other_data.data.range.flags) != 10);
+
+ switch (descriptor->data.other_data.data.range.flags) {
+ case DRM_EDID_DEFAULT_GTF_SUPPORT_FLAG:
+ *res = LEVEL_GTF;
+ break;
+ case DRM_EDID_SECONDARY_GTF_SUPPORT_FLAG:
+ *res = LEVEL_GTF2;
+ break;
+ case DRM_EDID_CVT_SUPPORT_FLAG:
+ *res = LEVEL_CVT;
+ break;
+ default:
+ break;
+ }
+}
+
/* Get standard timing level (CVT/GTF/DMT). */
static int standard_timing_level(const struct drm_edid *drm_edid)
{
const struct edid *edid = drm_edid->edid;
- if (edid->revision >= 2) {
- if (edid->revision >= 4 && (edid->features & DRM_EDID_FEATURE_DEFAULT_GTF))
- return LEVEL_CVT;
- if (drm_gtf2_hbreak(drm_edid))
- return LEVEL_GTF2;
- if (edid->features & DRM_EDID_FEATURE_DEFAULT_GTF)
- return LEVEL_GTF;
+ if (edid->revision >= 4) {
+ /*
+ * If the range descriptor doesn't
+ * indicate otherwise default to CVT
+ */
+ int ret = LEVEL_CVT;
+
+ drm_for_each_detailed_block(drm_edid, get_timing_level, &ret);
+
+ return ret;
+ } else if (edid->revision >= 3 && drm_gtf2_hbreak(drm_edid)) {
+ return LEVEL_GTF2;
+ } else if (edid->revision >= 2) {
+ return LEVEL_GTF;
+ } else {
+ return LEVEL_DMT;
}
- return LEVEL_DMT;
}
/*
@@ -3113,6 +3224,35 @@ static int drm_mode_hsync(const struct drm_display_mode *mode)
return DIV_ROUND_CLOSEST(mode->clock, mode->htotal);
}
+static struct drm_display_mode *
+drm_gtf2_mode(struct drm_device *dev,
+ const struct drm_edid *drm_edid,
+ int hsize, int vsize, int vrefresh_rate)
+{
+ struct drm_display_mode *mode;
+
+ /*
+ * This is potentially wrong if there's ever a monitor with
+ * more than one ranges section, each claiming a different
+ * secondary GTF curve. Please don't do that.
+ */
+ mode = drm_gtf_mode(dev, hsize, vsize, vrefresh_rate, 0, 0);
+ if (!mode)
+ return NULL;
+
+ if (drm_mode_hsync(mode) > drm_gtf2_hbreak(drm_edid)) {
+ drm_mode_destroy(dev, mode);
+ mode = drm_gtf_mode_complex(dev, hsize, vsize,
+ vrefresh_rate, 0, 0,
+ drm_gtf2_m(drm_edid),
+ drm_gtf2_2c(drm_edid),
+ drm_gtf2_k(drm_edid),
+ drm_gtf2_2j(drm_edid));
+ }
+
+ return mode;
+}
+
/*
* Take the standard timing params (in this case width, aspect, and refresh)
* and convert them into a real mode using CVT/GTF/DMT.
@@ -3201,23 +3341,7 @@ static struct drm_display_mode *drm_mode_std(struct drm_connector *connector,
mode = drm_gtf_mode(dev, hsize, vsize, vrefresh_rate, 0, 0);
break;
case LEVEL_GTF2:
- /*
- * This is potentially wrong if there's ever a monitor with
- * more than one ranges section, each claiming a different
- * secondary GTF curve. Please don't do that.
- */
- mode = drm_gtf_mode(dev, hsize, vsize, vrefresh_rate, 0, 0);
- if (!mode)
- return NULL;
- if (drm_mode_hsync(mode) > drm_gtf2_hbreak(drm_edid)) {
- drm_mode_destroy(dev, mode);
- mode = drm_gtf_mode_complex(dev, hsize, vsize,
- vrefresh_rate, 0, 0,
- drm_gtf2_m(drm_edid),
- drm_gtf2_2c(drm_edid),
- drm_gtf2_k(drm_edid),
- drm_gtf2_2j(drm_edid));
- }
+ mode = drm_gtf2_mode(dev, drm_edid, hsize, vsize, vrefresh_rate);
break;
case LEVEL_CVT:
mode = drm_cvt_mode(dev, hsize, vsize, vrefresh_rate, 0, 0,
@@ -3274,11 +3398,12 @@ drm_mode_do_interlace_quirk(struct drm_display_mode *mode,
* timing block contains enough info for us to create and return a new struct
* drm_display_mode.
*/
-static struct drm_display_mode *drm_mode_detailed(struct drm_device *dev,
+static struct drm_display_mode *drm_mode_detailed(struct drm_connector *connector,
const struct drm_edid *drm_edid,
- const struct detailed_timing *timing,
- u32 quirks)
+ const struct detailed_timing *timing)
{
+ const struct drm_display_info *info = &connector->display_info;
+ struct drm_device *dev = connector->dev;
struct drm_display_mode *mode;
const struct detailed_pixel_timing *pt = &timing->data.pixel_data;
unsigned hactive = (pt->hactive_hblank_hi & 0xf0) << 4 | pt->hactive_lo;
@@ -3295,21 +3420,19 @@ static struct drm_display_mode *drm_mode_detailed(struct drm_device *dev,
return NULL;
if (pt->misc & DRM_EDID_PT_STEREO) {
- DRM_DEBUG_KMS("stereo mode not supported\n");
+ drm_dbg_kms(dev, "[CONNECTOR:%d:%s] Stereo mode not supported\n",
+ connector->base.id, connector->name);
return NULL;
}
- if (!(pt->misc & DRM_EDID_PT_SEPARATE_SYNC)) {
- DRM_DEBUG_KMS("composite sync not supported\n");
- }
/* it is incorrect if hsync/vsync width is zero */
if (!hsync_pulse_width || !vsync_pulse_width) {
- DRM_DEBUG_KMS("Incorrect Detailed timing. "
- "Wrong Hsync/Vsync pulse width\n");
+ drm_dbg_kms(dev, "[CONNECTOR:%d:%s] Incorrect Detailed timing. Wrong Hsync/Vsync pulse width\n",
+ connector->base.id, connector->name);
return NULL;
}
- if (quirks & EDID_QUIRK_FORCE_REDUCED_BLANKING) {
+ if (info->quirks & EDID_QUIRK_FORCE_REDUCED_BLANKING) {
mode = drm_cvt_mode(dev, hactive, vactive, 60, true, false, false);
if (!mode)
return NULL;
@@ -3321,7 +3444,7 @@ static struct drm_display_mode *drm_mode_detailed(struct drm_device *dev,
if (!mode)
return NULL;
- if (quirks & EDID_QUIRK_135_CLOCK_TOO_HIGH)
+ if (info->quirks & EDID_QUIRK_135_CLOCK_TOO_HIGH)
mode->clock = 1088 * 10;
else
mode->clock = le16_to_cpu(timing->pixel_clock) * 10;
@@ -3344,25 +3467,42 @@ static struct drm_display_mode *drm_mode_detailed(struct drm_device *dev,
drm_mode_do_interlace_quirk(mode, pt);
- if (quirks & EDID_QUIRK_DETAILED_SYNC_PP) {
+ if (info->quirks & EDID_QUIRK_DETAILED_SYNC_PP) {
mode->flags |= DRM_MODE_FLAG_PHSYNC | DRM_MODE_FLAG_PVSYNC;
} else {
- mode->flags |= (pt->misc & DRM_EDID_PT_HSYNC_POSITIVE) ?
- DRM_MODE_FLAG_PHSYNC : DRM_MODE_FLAG_NHSYNC;
- mode->flags |= (pt->misc & DRM_EDID_PT_VSYNC_POSITIVE) ?
- DRM_MODE_FLAG_PVSYNC : DRM_MODE_FLAG_NVSYNC;
+ switch (pt->misc & DRM_EDID_PT_SYNC_MASK) {
+ case DRM_EDID_PT_ANALOG_CSYNC:
+ case DRM_EDID_PT_BIPOLAR_ANALOG_CSYNC:
+ drm_dbg_kms(dev, "[CONNECTOR:%d:%s] Analog composite sync!\n",
+ connector->base.id, connector->name);
+ mode->flags |= DRM_MODE_FLAG_CSYNC | DRM_MODE_FLAG_NCSYNC;
+ break;
+ case DRM_EDID_PT_DIGITAL_CSYNC:
+ drm_dbg_kms(dev, "[CONNECTOR:%d:%s] Digital composite sync!\n",
+ connector->base.id, connector->name);
+ mode->flags |= DRM_MODE_FLAG_CSYNC;
+ mode->flags |= (pt->misc & DRM_EDID_PT_HSYNC_POSITIVE) ?
+ DRM_MODE_FLAG_PCSYNC : DRM_MODE_FLAG_NCSYNC;
+ break;
+ case DRM_EDID_PT_DIGITAL_SEPARATE_SYNC:
+ mode->flags |= (pt->misc & DRM_EDID_PT_HSYNC_POSITIVE) ?
+ DRM_MODE_FLAG_PHSYNC : DRM_MODE_FLAG_NHSYNC;
+ mode->flags |= (pt->misc & DRM_EDID_PT_VSYNC_POSITIVE) ?
+ DRM_MODE_FLAG_PVSYNC : DRM_MODE_FLAG_NVSYNC;
+ break;
+ }
}
set_size:
mode->width_mm = pt->width_mm_lo | (pt->width_height_mm_hi & 0xf0) << 4;
mode->height_mm = pt->height_mm_lo | (pt->width_height_mm_hi & 0xf) << 8;
- if (quirks & EDID_QUIRK_DETAILED_IN_CM) {
+ if (info->quirks & EDID_QUIRK_DETAILED_IN_CM) {
mode->width_mm *= 10;
mode->height_mm *= 10;
}
- if (quirks & EDID_QUIRK_DETAILED_USE_MAXIMUM_SIZE) {
+ if (info->quirks & EDID_QUIRK_DETAILED_USE_MAXIMUM_SIZE) {
mode->width_mm = drm_edid->edid->width_cm * 10;
mode->height_mm = drm_edid->edid->height_cm * 10;
}
@@ -3415,7 +3555,7 @@ range_pixel_clock(const struct edid *edid, const u8 *t)
return 0;
/* 1.4 with CVT support gives us real precision, yay */
- if (edid->revision >= 4 && t[10] == 0x04)
+ if (edid->revision >= 4 && t[10] == DRM_EDID_CVT_SUPPORT_FLAG)
return (t[9] * 10000) - ((t[12] >> 2) * 250);
/* 1.3 is pathetic, so fuzz up a bit */
@@ -3441,7 +3581,7 @@ static bool mode_in_range(const struct drm_display_mode *mode,
return false;
/* 1.4 max horizontal check */
- if (edid->revision >= 4 && t[10] == 0x04)
+ if (edid->revision >= 4 && t[10] == DRM_EDID_CVT_SUPPORT_FLAG)
if (t[13] && mode->hdisplay > 8 * (t[13] + (256 * (t[12]&0x3))))
return false;
@@ -3533,6 +3673,35 @@ static int drm_gtf_modes_for_range(struct drm_connector *connector,
return modes;
}
+static int drm_gtf2_modes_for_range(struct drm_connector *connector,
+ const struct drm_edid *drm_edid,
+ const struct detailed_timing *timing)
+{
+ int i, modes = 0;
+ struct drm_display_mode *newmode;
+ struct drm_device *dev = connector->dev;
+
+ for (i = 0; i < ARRAY_SIZE(extra_modes); i++) {
+ const struct minimode *m = &extra_modes[i];
+
+ newmode = drm_gtf2_mode(dev, drm_edid, m->w, m->h, m->r);
+ if (!newmode)
+ return modes;
+
+ drm_mode_fixup_1366x768(newmode);
+ if (!mode_in_range(newmode, drm_edid, timing) ||
+ !valid_inferred_mode(connector, newmode)) {
+ drm_mode_destroy(dev, newmode);
+ continue;
+ }
+
+ drm_mode_probed_add(connector, newmode);
+ modes++;
+ }
+
+ return modes;
+}
+
static int drm_cvt_modes_for_range(struct drm_connector *connector,
const struct drm_edid *drm_edid,
const struct detailed_timing *timing)
@@ -3577,25 +3746,29 @@ do_inferred_modes(const struct detailed_timing *timing, void *c)
closure->drm_edid,
timing);
- if (!version_greater(closure->drm_edid, 1, 1))
+ if (closure->drm_edid->edid->revision < 2)
return; /* GTF not defined yet */
switch (range->flags) {
- case 0x02: /* secondary gtf, XXX could do more */
- case 0x00: /* default gtf */
+ case DRM_EDID_SECONDARY_GTF_SUPPORT_FLAG:
+ closure->modes += drm_gtf2_modes_for_range(closure->connector,
+ closure->drm_edid,
+ timing);
+ break;
+ case DRM_EDID_DEFAULT_GTF_SUPPORT_FLAG:
closure->modes += drm_gtf_modes_for_range(closure->connector,
closure->drm_edid,
timing);
break;
- case 0x04: /* cvt, only in 1.4+ */
- if (!version_greater(closure->drm_edid, 1, 3))
+ case DRM_EDID_CVT_SUPPORT_FLAG:
+ if (closure->drm_edid->edid->revision < 4)
break;
closure->modes += drm_cvt_modes_for_range(closure->connector,
closure->drm_edid,
timing);
break;
- case 0x01: /* just the ranges, no formula */
+ case DRM_EDID_RANGE_LIMITS_ONLY_FLAG:
default:
break;
}
@@ -3609,7 +3782,7 @@ static int add_inferred_modes(struct drm_connector *connector,
.drm_edid = drm_edid,
};
- if (version_greater(drm_edid, 1, 0))
+ if (drm_edid->edid->revision >= 1)
drm_for_each_detailed_block(drm_edid, do_inferred_modes, &closure);
return closure.modes;
@@ -3686,7 +3859,7 @@ static int add_established_modes(struct drm_connector *connector,
}
}
- if (version_greater(drm_edid, 1, 0))
+ if (edid->revision >= 1)
drm_for_each_detailed_block(drm_edid, do_established_modes,
&closure);
@@ -3741,7 +3914,7 @@ static int add_standard_modes(struct drm_connector *connector,
}
}
- if (version_greater(drm_edid, 1, 0))
+ if (drm_edid->edid->revision >= 1)
drm_for_each_detailed_block(drm_edid, do_standard_modes,
&closure);
@@ -3821,7 +3994,7 @@ add_cvt_modes(struct drm_connector *connector, const struct drm_edid *drm_edid)
.drm_edid = drm_edid,
};
- if (version_greater(drm_edid, 1, 2))
+ if (drm_edid->edid->revision >= 3)
drm_for_each_detailed_block(drm_edid, do_cvt_mode, &closure);
/* XXX should also look for CVT codes in VTB blocks */
@@ -3829,7 +4002,8 @@ add_cvt_modes(struct drm_connector *connector, const struct drm_edid *drm_edid)
return closure.modes;
}
-static void fixup_detailed_cea_mode_clock(struct drm_display_mode *mode);
+static void fixup_detailed_cea_mode_clock(struct drm_connector *connector,
+ struct drm_display_mode *mode);
static void
do_detailed_mode(const struct detailed_timing *timing, void *c)
@@ -3840,9 +4014,8 @@ do_detailed_mode(const struct detailed_timing *timing, void *c)
if (!is_detailed_timing_descriptor(timing))
return;
- newmode = drm_mode_detailed(closure->connector->dev,
- closure->drm_edid, timing,
- closure->quirks);
+ newmode = drm_mode_detailed(closure->connector,
+ closure->drm_edid, timing);
if (!newmode)
return;
@@ -3854,7 +4027,7 @@ do_detailed_mode(const struct detailed_timing *timing, void *c)
* so fix up anything that looks like CEA/HDMI mode, but the clock
* is just slightly off.
*/
- fixup_detailed_cea_mode_clock(newmode);
+ fixup_detailed_cea_mode_clock(closure->connector, newmode);
drm_mode_probed_add(closure->connector, newmode);
closure->modes++;
@@ -3865,21 +4038,20 @@ do_detailed_mode(const struct detailed_timing *timing, void *c)
* add_detailed_modes - Add modes from detailed timings
* @connector: attached connector
* @drm_edid: EDID block to scan
- * @quirks: quirks to apply
*/
static int add_detailed_modes(struct drm_connector *connector,
- const struct drm_edid *drm_edid, u32 quirks)
+ const struct drm_edid *drm_edid)
{
struct detailed_mode_closure closure = {
.connector = connector,
.drm_edid = drm_edid,
- .preferred = true,
- .quirks = quirks,
};
- if (closure.preferred && !version_greater(drm_edid, 1, 3))
+ if (drm_edid->edid->revision >= 4)
+ closure.preferred = true; /* first detailed timing is always preferred */
+ else
closure.preferred =
- (drm_edid->edid->features & DRM_EDID_FEATURE_PREFERRED_TIMING);
+ drm_edid->edid->features & DRM_EDID_FEATURE_PREFERRED_TIMING;
drm_for_each_detailed_block(drm_edid, do_detailed_mode, &closure);
@@ -4305,28 +4477,20 @@ static u8 svd_to_vic(u8 svd)
return svd;
}
+/*
+ * Return a display mode for the 0-based vic_index'th VIC across all CTA VDBs in
+ * the EDID, or NULL on errors.
+ */
static struct drm_display_mode *
-drm_display_mode_from_vic_index(struct drm_connector *connector,
- const u8 *video_db, u8 video_len,
- u8 video_index)
+drm_display_mode_from_vic_index(struct drm_connector *connector, int vic_index)
{
+ const struct drm_display_info *info = &connector->display_info;
struct drm_device *dev = connector->dev;
- struct drm_display_mode *newmode;
- u8 vic;
- if (video_db == NULL || video_index >= video_len)
+ if (!info->vics || vic_index >= info->vics_len || !info->vics[vic_index])
return NULL;
- /* CEA modes are numbered 1..127 */
- vic = svd_to_vic(video_db[video_index]);
- if (!drm_valid_cea_vic(vic))
- return NULL;
-
- newmode = drm_mode_duplicate(dev, cea_mode_for_vic(vic));
- if (!newmode)
- return NULL;
-
- return newmode;
+ return drm_display_mode_from_cea_vic(dev, info->vics[vic_index]);
}
/*
@@ -4342,10 +4506,8 @@ drm_display_mode_from_vic_index(struct drm_connector *connector,
static int do_y420vdb_modes(struct drm_connector *connector,
const u8 *svds, u8 svds_len)
{
- int modes = 0, i;
struct drm_device *dev = connector->dev;
- struct drm_display_info *info = &connector->display_info;
- struct drm_hdmi_info *hdmi = &info->hdmi;
+ int modes = 0, i;
for (i = 0; i < svds_len; i++) {
u8 vic = svd_to_vic(svds[i]);
@@ -4357,35 +4519,13 @@ static int do_y420vdb_modes(struct drm_connector *connector,
newmode = drm_mode_duplicate(dev, cea_mode_for_vic(vic));
if (!newmode)
break;
- bitmap_set(hdmi->y420_vdb_modes, vic, 1);
drm_mode_probed_add(connector, newmode);
modes++;
}
- if (modes > 0)
- info->color_formats |= DRM_COLOR_FORMAT_YCBCR420;
return modes;
}
-/*
- * drm_add_cmdb_modes - Add a YCBCR 420 mode into bitmap
- * @connector: connector corresponding to the HDMI sink
- * @vic: CEA vic for the video mode to be added in the map
- *
- * Makes an entry for a videomode in the YCBCR 420 bitmap
- */
-static void
-drm_add_cmdb_modes(struct drm_connector *connector, u8 svd)
-{
- u8 vic = svd_to_vic(svd);
- struct drm_hdmi_info *hdmi = &connector->display_info.hdmi;
-
- if (!drm_valid_cea_vic(vic))
- return;
-
- bitmap_set(hdmi->y420_cmdb_modes, vic, 1);
-}
-
/**
* drm_display_mode_from_cea_vic() - return a mode for CEA VIC
* @dev: DRM device
@@ -4414,29 +4554,20 @@ drm_display_mode_from_cea_vic(struct drm_device *dev,
}
EXPORT_SYMBOL(drm_display_mode_from_cea_vic);
-static int
-do_cea_modes(struct drm_connector *connector, const u8 *db, u8 len)
+/* Add modes based on VICs parsed in parse_cta_vdb() */
+static int add_cta_vdb_modes(struct drm_connector *connector)
{
+ const struct drm_display_info *info = &connector->display_info;
int i, modes = 0;
- struct drm_hdmi_info *hdmi = &connector->display_info.hdmi;
- for (i = 0; i < len; i++) {
+ if (!info->vics)
+ return 0;
+
+ for (i = 0; i < info->vics_len; i++) {
struct drm_display_mode *mode;
- mode = drm_display_mode_from_vic_index(connector, db, len, i);
+ mode = drm_display_mode_from_vic_index(connector, i);
if (mode) {
- /*
- * YCBCR420 capability block contains a bitmap which
- * gives the index of CEA modes from CEA VDB, which
- * can support YCBCR 420 sampling output also (apart
- * from RGB/YCBCR444 etc).
- * For example, if the bit 0 in bitmap is set,
- * first mode in VDB can support YCBCR420 output too.
- * Add YCBCR420 modes only if sink is HDMI 2.0 capable.
- */
- if (i < 64 && hdmi->y420_cmdb_map & (1ULL << i))
- drm_add_cmdb_modes(connector, db[i]);
-
drm_mode_probed_add(connector, mode);
modes++;
}
@@ -4515,7 +4646,8 @@ static int add_hdmi_mode(struct drm_connector *connector, u8 vic)
struct drm_display_mode *newmode;
if (!drm_valid_hdmi_vic(vic)) {
- DRM_ERROR("Unknown HDMI VIC: %d\n", vic);
+ drm_err(connector->dev, "[CONNECTOR:%d:%s] Unknown HDMI VIC: %d\n",
+ connector->base.id, connector->name, vic);
return 0;
}
@@ -4529,15 +4661,13 @@ static int add_hdmi_mode(struct drm_connector *connector, u8 vic)
}
static int add_3d_struct_modes(struct drm_connector *connector, u16 structure,
- const u8 *video_db, u8 video_len, u8 video_index)
+ int vic_index)
{
struct drm_display_mode *newmode;
int modes = 0;
if (structure & (1 << 0)) {
- newmode = drm_display_mode_from_vic_index(connector, video_db,
- video_len,
- video_index);
+ newmode = drm_display_mode_from_vic_index(connector, vic_index);
if (newmode) {
newmode->flags |= DRM_MODE_FLAG_3D_FRAME_PACKING;
drm_mode_probed_add(connector, newmode);
@@ -4545,9 +4675,7 @@ static int add_3d_struct_modes(struct drm_connector *connector, u16 structure,
}
}
if (structure & (1 << 6)) {
- newmode = drm_display_mode_from_vic_index(connector, video_db,
- video_len,
- video_index);
+ newmode = drm_display_mode_from_vic_index(connector, vic_index);
if (newmode) {
newmode->flags |= DRM_MODE_FLAG_3D_TOP_AND_BOTTOM;
drm_mode_probed_add(connector, newmode);
@@ -4555,9 +4683,7 @@ static int add_3d_struct_modes(struct drm_connector *connector, u16 structure,
}
}
if (structure & (1 << 8)) {
- newmode = drm_display_mode_from_vic_index(connector, video_db,
- video_len,
- video_index);
+ newmode = drm_display_mode_from_vic_index(connector, vic_index);
if (newmode) {
newmode->flags |= DRM_MODE_FLAG_3D_SIDE_BY_SIDE_HALF;
drm_mode_probed_add(connector, newmode);
@@ -4568,6 +4694,26 @@ static int add_3d_struct_modes(struct drm_connector *connector, u16 structure,
return modes;
}
+static bool hdmi_vsdb_latency_present(const u8 *db)
+{
+ return db[8] & BIT(7);
+}
+
+static bool hdmi_vsdb_i_latency_present(const u8 *db)
+{
+ return hdmi_vsdb_latency_present(db) && db[8] & BIT(6);
+}
+
+static int hdmi_vsdb_latency_length(const u8 *db)
+{
+ if (hdmi_vsdb_i_latency_present(db))
+ return 4;
+ else if (hdmi_vsdb_latency_present(db))
+ return 2;
+ else
+ return 0;
+}
+
/*
* do_hdmi_vsdb_modes - Parse the HDMI Vendor Specific data block
* @connector: connector corresponding to the HDMI sink
@@ -4578,10 +4724,8 @@ static int add_3d_struct_modes(struct drm_connector *connector, u16 structure,
* also adds the stereo 3d modes when applicable.
*/
static int
-do_hdmi_vsdb_modes(struct drm_connector *connector, const u8 *db, u8 len,
- const u8 *video_db, u8 video_len)
+do_hdmi_vsdb_modes(struct drm_connector *connector, const u8 *db, u8 len)
{
- struct drm_display_info *info = &connector->display_info;
int modes = 0, offset = 0, i, multi_present = 0, multi_len;
u8 vic_len, hdmi_3d_len = 0;
u16 mask;
@@ -4594,13 +4738,7 @@ do_hdmi_vsdb_modes(struct drm_connector *connector, const u8 *db, u8 len,
if (!(db[8] & (1 << 5)))
goto out;
- /* Latency_Fields_Present */
- if (db[8] & (1 << 7))
- offset += 2;
-
- /* I_Latency_Fields_Present */
- if (db[8] & (1 << 6))
- offset += 2;
+ offset += hdmi_vsdb_latency_length(db);
/* the declared length is not long enough for the 2 first bytes
* of additional video format capabilities */
@@ -4654,9 +4792,7 @@ do_hdmi_vsdb_modes(struct drm_connector *connector, const u8 *db, u8 len,
for (i = 0; i < 16; i++) {
if (mask & (1 << i))
modes += add_3d_struct_modes(connector,
- structure_all,
- video_db,
- video_len, i);
+ structure_all, i);
}
}
@@ -4693,8 +4829,6 @@ do_hdmi_vsdb_modes(struct drm_connector *connector, const u8 *db, u8 len,
if (newflag != 0) {
newmode = drm_display_mode_from_vic_index(connector,
- video_db,
- video_len,
vic_index);
if (newmode) {
@@ -4709,8 +4843,6 @@ do_hdmi_vsdb_modes(struct drm_connector *connector, const u8 *db, u8 len,
}
out:
- if (modes > 0)
- info->has_hdmi_infoframe = true;
return modes;
}
@@ -5040,20 +5172,26 @@ static int edid_hfeeodb_extension_block_count(const struct edid *edid)
return cta[4 + 2];
}
-static void drm_parse_y420cmdb_bitmap(struct drm_connector *connector,
- const u8 *db)
+/*
+ * CTA-861 YCbCr 4:2:0 Capability Map Data Block (CTA Y420CMDB)
+ *
+ * Y420CMDB contains a bitmap which gives the index of CTA modes from CTA VDB,
+ * which can support YCBCR 420 sampling output also (apart from RGB/YCBCR444
+ * etc). For example, if the bit 0 in bitmap is set, first mode in VDB can
+ * support YCBCR420 output too.
+ */
+static void parse_cta_y420cmdb(struct drm_connector *connector,
+ const struct cea_db *db, u64 *y420cmdb_map)
{
struct drm_display_info *info = &connector->display_info;
- struct drm_hdmi_info *hdmi = &info->hdmi;
- u8 map_len = cea_db_payload_len(db) - 1;
- u8 count;
+ int i, map_len = cea_db_payload_len(db) - 1;
+ const u8 *data = cea_db_data(db) + 1;
u64 map = 0;
if (map_len == 0) {
/* All CEA modes support ycbcr420 sampling also.*/
- hdmi->y420_cmdb_map = U64_MAX;
- info->color_formats |= DRM_COLOR_FORMAT_YCBCR420;
- return;
+ map = U64_MAX;
+ goto out;
}
/*
@@ -5071,13 +5209,14 @@ static void drm_parse_y420cmdb_bitmap(struct drm_connector *connector,
if (WARN_ON_ONCE(map_len > 8))
map_len = 8;
- for (count = 0; count < map_len; count++)
- map |= (u64)db[2 + count] << (8 * count);
+ for (i = 0; i < map_len; i++)
+ map |= (u64)data[i] << (8 * i);
+out:
if (map)
info->color_formats |= DRM_COLOR_FORMAT_YCBCR420;
- hdmi->y420_cmdb_map = map;
+ *y420cmdb_map = map;
}
static int add_cea_modes(struct drm_connector *connector,
@@ -5085,21 +5224,16 @@ static int add_cea_modes(struct drm_connector *connector,
{
const struct cea_db *db;
struct cea_db_iter iter;
- int modes = 0;
+ int modes;
+
+ /* CTA VDB block VICs parsed earlier */
+ modes = add_cta_vdb_modes(connector);
cea_db_iter_edid_begin(drm_edid, &iter);
cea_db_iter_for_each(db, &iter) {
- const u8 *hdmi = NULL, *video = NULL;
- u8 hdmi_len = 0, video_len = 0;
-
- if (cea_db_tag(db) == CTA_DB_VIDEO) {
- video = cea_db_data(db);
- video_len = cea_db_payload_len(db);
- modes += do_cea_modes(connector, video, video_len);
- } else if (cea_db_is_hdmi_vsdb(db)) {
- /* FIXME: Switch to use cea_db_data() */
- hdmi = (const u8 *)db;
- hdmi_len = cea_db_payload_len(db);
+ if (cea_db_is_hdmi_vsdb(db)) {
+ modes += do_hdmi_vsdb_modes(connector, (const u8 *)db,
+ cea_db_payload_len(db));
} else if (cea_db_is_y420vdb(db)) {
const u8 *vdb420 = cea_db_data(db) + 1;
@@ -5107,22 +5241,14 @@ static int add_cea_modes(struct drm_connector *connector,
modes += do_y420vdb_modes(connector, vdb420,
cea_db_payload_len(db) - 1);
}
-
- /*
- * We parse the HDMI VSDB after having added the cea modes as we
- * will be patching their flags when the sink supports stereo
- * 3D.
- */
- if (hdmi)
- modes += do_hdmi_vsdb_modes(connector, hdmi, hdmi_len,
- video, video_len);
}
cea_db_iter_end(&iter);
return modes;
}
-static void fixup_detailed_cea_mode_clock(struct drm_display_mode *mode)
+static void fixup_detailed_cea_mode_clock(struct drm_connector *connector,
+ struct drm_display_mode *mode)
{
const struct drm_display_mode *cea_mode;
int clock1, clock2, clock;
@@ -5160,8 +5286,10 @@ static void fixup_detailed_cea_mode_clock(struct drm_display_mode *mode)
if (mode->clock == clock)
return;
- DRM_DEBUG("detailed mode matches %s VIC %d, adjusting clock %d -> %d\n",
- type, vic, mode->clock, clock);
+ drm_dbg_kms(connector->dev,
+ "[CONNECTOR:%d:%s] detailed mode matches %s VIC %d, adjusting clock %d -> %d\n",
+ connector->base.id, connector->name,
+ type, vic, mode->clock, clock);
mode->clock = clock;
}
@@ -5249,6 +5377,7 @@ drm_parse_hdr_metadata_block(struct drm_connector *connector, const u8 *db)
}
}
+/* HDMI Vendor-Specific Data Block (HDMI VSDB, H14b-VSDB) */
static void
drm_parse_hdmi_vsdb_audio(struct drm_connector *connector, const u8 *db)
{
@@ -5256,28 +5385,25 @@ drm_parse_hdmi_vsdb_audio(struct drm_connector *connector, const u8 *db)
if (len >= 6 && (db[6] & (1 << 7)))
connector->eld[DRM_ELD_SAD_COUNT_CONN_TYPE] |= DRM_ELD_SUPPORTS_AI;
- if (len >= 8) {
- connector->latency_present[0] = db[8] >> 7;
- connector->latency_present[1] = (db[8] >> 6) & 1;
- }
- if (len >= 9)
+
+ if (len >= 10 && hdmi_vsdb_latency_present(db)) {
+ connector->latency_present[0] = true;
connector->video_latency[0] = db[9];
- if (len >= 10)
connector->audio_latency[0] = db[10];
- if (len >= 11)
+ }
+
+ if (len >= 12 && hdmi_vsdb_i_latency_present(db)) {
+ connector->latency_present[1] = true;
connector->video_latency[1] = db[11];
- if (len >= 12)
connector->audio_latency[1] = db[12];
+ }
- DRM_DEBUG_KMS("HDMI: latency present %d %d, "
- "video latency %d %d, "
- "audio latency %d %d\n",
- connector->latency_present[0],
- connector->latency_present[1],
- connector->video_latency[0],
- connector->video_latency[1],
- connector->audio_latency[0],
- connector->audio_latency[1]);
+ drm_dbg_kms(connector->dev,
+ "[CONNECTOR:%d:%s] HDMI: latency present %d %d, video latency %d %d, audio latency %d %d\n",
+ connector->base.id, connector->name,
+ connector->latency_present[0], connector->latency_present[1],
+ connector->video_latency[0], connector->video_latency[1],
+ connector->audio_latency[0], connector->audio_latency[1]);
}
static void
@@ -5369,13 +5495,13 @@ static void drm_edid_to_eld(struct drm_connector *connector,
int total_sad_count = 0;
int mnl;
- clear_eld(connector);
-
if (!drm_edid)
return;
mnl = get_monitor_name(drm_edid, &eld[DRM_ELD_MONITOR_NAME_STRING]);
- DRM_DEBUG_KMS("ELD monitor %s\n", &eld[DRM_ELD_MONITOR_NAME_STRING]);
+ drm_dbg_kms(connector->dev, "[CONNECTOR:%d:%s] ELD monitor %s\n",
+ connector->base.id, connector->name,
+ &eld[DRM_ELD_MONITOR_NAME_STRING]);
eld[DRM_ELD_CEA_EDID_VER_MNL] = info->cea_rev << DRM_ELD_CEA_EDID_VER_SHIFT;
eld[DRM_ELD_CEA_EDID_VER_MNL] |= mnl;
@@ -5429,8 +5555,9 @@ static void drm_edid_to_eld(struct drm_connector *connector,
eld[DRM_ELD_BASELINE_ELD_LEN] =
DIV_ROUND_UP(drm_eld_calc_baseline_block_size(eld), 4);
- DRM_DEBUG_KMS("ELD size %d, SAD count %d\n",
- drm_eld_size(eld), total_sad_count);
+ drm_dbg_kms(connector->dev, "[CONNECTOR:%d:%s] ELD size %d, SAD count %d\n",
+ connector->base.id, connector->name,
+ drm_eld_size(eld), total_sad_count);
}
static int _drm_edid_to_sad(const struct drm_edid *drm_edid,
@@ -5697,11 +5824,98 @@ drm_default_rgb_quant_range(const struct drm_display_mode *mode)
}
EXPORT_SYMBOL(drm_default_rgb_quant_range);
+/* CTA-861 Video Data Block (CTA VDB) */
+static void parse_cta_vdb(struct drm_connector *connector, const struct cea_db *db)
+{
+ struct drm_display_info *info = &connector->display_info;
+ int i, vic_index, len = cea_db_payload_len(db);
+ const u8 *svds = cea_db_data(db);
+ u8 *vics;
+
+ if (!len)
+ return;
+
+ /* Gracefully handle multiple VDBs, however unlikely that is */
+ vics = krealloc(info->vics, info->vics_len + len, GFP_KERNEL);
+ if (!vics)
+ return;
+
+ vic_index = info->vics_len;
+ info->vics_len += len;
+ info->vics = vics;
+
+ for (i = 0; i < len; i++) {
+ u8 vic = svd_to_vic(svds[i]);
+
+ if (!drm_valid_cea_vic(vic))
+ vic = 0;
+
+ info->vics[vic_index++] = vic;
+ }
+}
+
+/*
+ * Update y420_cmdb_modes based on previously parsed CTA VDB and Y420CMDB.
+ *
+ * Translate the y420cmdb_map based on VIC indexes to y420_cmdb_modes indexed
+ * using the VICs themselves.
+ */
+static void update_cta_y420cmdb(struct drm_connector *connector, u64 y420cmdb_map)
+{
+ struct drm_display_info *info = &connector->display_info;
+ struct drm_hdmi_info *hdmi = &info->hdmi;
+ int i, len = min_t(int, info->vics_len, BITS_PER_TYPE(y420cmdb_map));
+
+ for (i = 0; i < len; i++) {
+ u8 vic = info->vics[i];
+
+ if (vic && y420cmdb_map & BIT_ULL(i))
+ bitmap_set(hdmi->y420_cmdb_modes, vic, 1);
+ }
+}
+
+static bool cta_vdb_has_vic(const struct drm_connector *connector, u8 vic)
+{
+ const struct drm_display_info *info = &connector->display_info;
+ int i;
+
+ if (!vic || !info->vics)
+ return false;
+
+ for (i = 0; i < info->vics_len; i++) {
+ if (info->vics[i] == vic)
+ return true;
+ }
+
+ return false;
+}
+
+/* CTA-861-H YCbCr 4:2:0 Video Data Block (CTA Y420VDB) */
+static void parse_cta_y420vdb(struct drm_connector *connector,
+ const struct cea_db *db)
+{
+ struct drm_display_info *info = &connector->display_info;
+ struct drm_hdmi_info *hdmi = &info->hdmi;
+ const u8 *svds = cea_db_data(db) + 1;
+ int i;
+
+ for (i = 0; i < cea_db_payload_len(db) - 1; i++) {
+ u8 vic = svd_to_vic(svds[i]);
+
+ if (!drm_valid_cea_vic(vic))
+ continue;
+
+ bitmap_set(hdmi->y420_vdb_modes, vic, 1);
+ info->color_formats |= DRM_COLOR_FORMAT_YCBCR420;
+ }
+}
+
static void drm_parse_vcdb(struct drm_connector *connector, const u8 *db)
{
struct drm_display_info *info = &connector->display_info;
- DRM_DEBUG_KMS("CEA VCDB 0x%02x\n", db[2]);
+ drm_dbg_kms(connector->dev, "[CONNECTOR:%d:%s] CEA VCDB 0x%02x\n",
+ connector->base.id, connector->name, db[2]);
if (db[2] & EDID_CEA_VCDB_QS)
info->rgb_quant_range_selectable = true;
@@ -5752,14 +5966,89 @@ static void drm_parse_ycbcr420_deep_color_info(struct drm_connector *connector,
hdmi->y420_dc_modes = dc_mask;
}
+static void drm_parse_dsc_info(struct drm_hdmi_dsc_cap *hdmi_dsc,
+ const u8 *hf_scds)
+{
+ hdmi_dsc->v_1p2 = hf_scds[11] & DRM_EDID_DSC_1P2;
+
+ if (!hdmi_dsc->v_1p2)
+ return;
+
+ hdmi_dsc->native_420 = hf_scds[11] & DRM_EDID_DSC_NATIVE_420;
+ hdmi_dsc->all_bpp = hf_scds[11] & DRM_EDID_DSC_ALL_BPP;
+
+ if (hf_scds[11] & DRM_EDID_DSC_16BPC)
+ hdmi_dsc->bpc_supported = 16;
+ else if (hf_scds[11] & DRM_EDID_DSC_12BPC)
+ hdmi_dsc->bpc_supported = 12;
+ else if (hf_scds[11] & DRM_EDID_DSC_10BPC)
+ hdmi_dsc->bpc_supported = 10;
+ else
+ /* Supports min 8 BPC if DSC 1.2 is supported*/
+ hdmi_dsc->bpc_supported = 8;
+
+ if (cea_db_payload_len(hf_scds) >= 12 && hf_scds[12]) {
+ u8 dsc_max_slices;
+ u8 dsc_max_frl_rate;
+
+ dsc_max_frl_rate = (hf_scds[12] & DRM_EDID_DSC_MAX_FRL_RATE_MASK) >> 4;
+ drm_get_max_frl_rate(dsc_max_frl_rate, &hdmi_dsc->max_lanes,
+ &hdmi_dsc->max_frl_rate_per_lane);
+
+ dsc_max_slices = hf_scds[12] & DRM_EDID_DSC_MAX_SLICES;
+
+ switch (dsc_max_slices) {
+ case 1:
+ hdmi_dsc->max_slices = 1;
+ hdmi_dsc->clk_per_slice = 340;
+ break;
+ case 2:
+ hdmi_dsc->max_slices = 2;
+ hdmi_dsc->clk_per_slice = 340;
+ break;
+ case 3:
+ hdmi_dsc->max_slices = 4;
+ hdmi_dsc->clk_per_slice = 340;
+ break;
+ case 4:
+ hdmi_dsc->max_slices = 8;
+ hdmi_dsc->clk_per_slice = 340;
+ break;
+ case 5:
+ hdmi_dsc->max_slices = 8;
+ hdmi_dsc->clk_per_slice = 400;
+ break;
+ case 6:
+ hdmi_dsc->max_slices = 12;
+ hdmi_dsc->clk_per_slice = 400;
+ break;
+ case 7:
+ hdmi_dsc->max_slices = 16;
+ hdmi_dsc->clk_per_slice = 400;
+ break;
+ case 0:
+ default:
+ hdmi_dsc->max_slices = 0;
+ hdmi_dsc->clk_per_slice = 0;
+ }
+ }
+
+ if (cea_db_payload_len(hf_scds) >= 13 && hf_scds[13])
+ hdmi_dsc->total_chunk_kbytes = hf_scds[13] & DRM_EDID_DSC_TOTAL_CHUNK_KBYTES;
+}
+
/* Sink Capability Data Structure */
static void drm_parse_hdmi_forum_scds(struct drm_connector *connector,
const u8 *hf_scds)
{
- struct drm_display_info *display = &connector->display_info;
- struct drm_hdmi_info *hdmi = &display->hdmi;
+ struct drm_display_info *info = &connector->display_info;
+ struct drm_hdmi_info *hdmi = &info->hdmi;
+ struct drm_hdmi_dsc_cap *hdmi_dsc = &hdmi->dsc_cap;
+ int max_tmds_clock = 0;
+ u8 max_frl_rate = 0;
+ bool dsc_support = false;
- display->has_hdmi_infoframe = true;
+ info->has_hdmi_infoframe = true;
if (hf_scds[6] & 0x80) {
hdmi->scdc.supported = true;
@@ -5777,14 +6066,13 @@ static void drm_parse_hdmi_forum_scds(struct drm_connector *connector,
*/
if (hf_scds[5]) {
- /* max clock is 5000 KHz times block value */
- u32 max_tmds_clock = hf_scds[5] * 5000;
struct drm_scdc *scdc = &hdmi->scdc;
+ /* max clock is 5000 KHz times block value */
+ max_tmds_clock = hf_scds[5] * 5000;
+
if (max_tmds_clock > 340000) {
- display->max_tmds_clock = max_tmds_clock;
- DRM_DEBUG_KMS("HF-VSDB: max TMDS clock %d kHz\n",
- display->max_tmds_clock);
+ info->max_tmds_clock = max_tmds_clock;
}
if (scdc->supported) {
@@ -5797,74 +6085,22 @@ static void drm_parse_hdmi_forum_scds(struct drm_connector *connector,
}
if (hf_scds[7]) {
- u8 max_frl_rate;
- u8 dsc_max_frl_rate;
- u8 dsc_max_slices;
- struct drm_hdmi_dsc_cap *hdmi_dsc = &hdmi->dsc_cap;
-
- DRM_DEBUG_KMS("hdmi_21 sink detected. parsing edid\n");
max_frl_rate = (hf_scds[7] & DRM_EDID_MAX_FRL_RATE_MASK) >> 4;
drm_get_max_frl_rate(max_frl_rate, &hdmi->max_lanes,
&hdmi->max_frl_rate_per_lane);
- hdmi_dsc->v_1p2 = hf_scds[11] & DRM_EDID_DSC_1P2;
-
- if (hdmi_dsc->v_1p2) {
- hdmi_dsc->native_420 = hf_scds[11] & DRM_EDID_DSC_NATIVE_420;
- hdmi_dsc->all_bpp = hf_scds[11] & DRM_EDID_DSC_ALL_BPP;
-
- if (hf_scds[11] & DRM_EDID_DSC_16BPC)
- hdmi_dsc->bpc_supported = 16;
- else if (hf_scds[11] & DRM_EDID_DSC_12BPC)
- hdmi_dsc->bpc_supported = 12;
- else if (hf_scds[11] & DRM_EDID_DSC_10BPC)
- hdmi_dsc->bpc_supported = 10;
- else
- hdmi_dsc->bpc_supported = 0;
-
- dsc_max_frl_rate = (hf_scds[12] & DRM_EDID_DSC_MAX_FRL_RATE_MASK) >> 4;
- drm_get_max_frl_rate(dsc_max_frl_rate, &hdmi_dsc->max_lanes,
- &hdmi_dsc->max_frl_rate_per_lane);
- hdmi_dsc->total_chunk_kbytes = hf_scds[13] & DRM_EDID_DSC_TOTAL_CHUNK_KBYTES;
-
- dsc_max_slices = hf_scds[12] & DRM_EDID_DSC_MAX_SLICES;
- switch (dsc_max_slices) {
- case 1:
- hdmi_dsc->max_slices = 1;
- hdmi_dsc->clk_per_slice = 340;
- break;
- case 2:
- hdmi_dsc->max_slices = 2;
- hdmi_dsc->clk_per_slice = 340;
- break;
- case 3:
- hdmi_dsc->max_slices = 4;
- hdmi_dsc->clk_per_slice = 340;
- break;
- case 4:
- hdmi_dsc->max_slices = 8;
- hdmi_dsc->clk_per_slice = 340;
- break;
- case 5:
- hdmi_dsc->max_slices = 8;
- hdmi_dsc->clk_per_slice = 400;
- break;
- case 6:
- hdmi_dsc->max_slices = 12;
- hdmi_dsc->clk_per_slice = 400;
- break;
- case 7:
- hdmi_dsc->max_slices = 16;
- hdmi_dsc->clk_per_slice = 400;
- break;
- case 0:
- default:
- hdmi_dsc->max_slices = 0;
- hdmi_dsc->clk_per_slice = 0;
- }
- }
}
drm_parse_ycbcr420_deep_color_info(connector, hf_scds);
+
+ if (cea_db_payload_len(hf_scds) >= 11 && hf_scds[11]) {
+ drm_parse_dsc_info(hdmi_dsc, hf_scds);
+ dsc_support = true;
+ }
+
+ drm_dbg_kms(connector->dev,
+ "[CONNECTOR:%d:%s] HF-VSDB: max TMDS clock: %d KHz, HDMI 2.1 support: %s, DSC 1.2 support: %s\n",
+ connector->base.id, connector->name,
+ max_tmds_clock, str_yes_no(max_frl_rate), str_yes_no(dsc_support));
}
static void drm_parse_hdmi_deep_color_info(struct drm_connector *connector,
@@ -5882,39 +6118,39 @@ static void drm_parse_hdmi_deep_color_info(struct drm_connector *connector,
if (hdmi[6] & DRM_EDID_HDMI_DC_30) {
dc_bpc = 10;
info->edid_hdmi_rgb444_dc_modes |= DRM_EDID_HDMI_DC_30;
- DRM_DEBUG("%s: HDMI sink does deep color 30.\n",
- connector->name);
+ drm_dbg_kms(connector->dev, "[CONNECTOR:%d:%s] HDMI sink does deep color 30.\n",
+ connector->base.id, connector->name);
}
if (hdmi[6] & DRM_EDID_HDMI_DC_36) {
dc_bpc = 12;
info->edid_hdmi_rgb444_dc_modes |= DRM_EDID_HDMI_DC_36;
- DRM_DEBUG("%s: HDMI sink does deep color 36.\n",
- connector->name);
+ drm_dbg_kms(connector->dev, "[CONNECTOR:%d:%s] HDMI sink does deep color 36.\n",
+ connector->base.id, connector->name);
}
if (hdmi[6] & DRM_EDID_HDMI_DC_48) {
dc_bpc = 16;
info->edid_hdmi_rgb444_dc_modes |= DRM_EDID_HDMI_DC_48;
- DRM_DEBUG("%s: HDMI sink does deep color 48.\n",
- connector->name);
+ drm_dbg_kms(connector->dev, "[CONNECTOR:%d:%s] HDMI sink does deep color 48.\n",
+ connector->base.id, connector->name);
}
if (dc_bpc == 0) {
- DRM_DEBUG("%s: No deep color support on this HDMI sink.\n",
- connector->name);
+ drm_dbg_kms(connector->dev, "[CONNECTOR:%d:%s] No deep color support on this HDMI sink.\n",
+ connector->base.id, connector->name);
return;
}
- DRM_DEBUG("%s: Assigning HDMI sink color depth as %d bpc.\n",
- connector->name, dc_bpc);
+ drm_dbg_kms(connector->dev, "[CONNECTOR:%d:%s] Assigning HDMI sink color depth as %d bpc.\n",
+ connector->base.id, connector->name, dc_bpc);
info->bpc = dc_bpc;
/* YCRCB444 is optional according to spec. */
if (hdmi[6] & DRM_EDID_HDMI_DC_Y444) {
info->edid_hdmi_ycbcr444_dc_modes = info->edid_hdmi_rgb444_dc_modes;
- DRM_DEBUG("%s: HDMI sink does YCRCB444 in deep color.\n",
- connector->name);
+ drm_dbg_kms(connector->dev, "[CONNECTOR:%d:%s] HDMI sink does YCRCB444 in deep color.\n",
+ connector->base.id, connector->name);
}
/*
@@ -5922,11 +6158,12 @@ static void drm_parse_hdmi_deep_color_info(struct drm_connector *connector,
* then deep color 36 bit must be supported.
*/
if (!(hdmi[6] & DRM_EDID_HDMI_DC_36)) {
- DRM_DEBUG("%s: HDMI sink should do DC_36, but does not!\n",
- connector->name);
+ drm_dbg_kms(connector->dev, "[CONNECTOR:%d:%s] HDMI sink should do DC_36, but does not!\n",
+ connector->base.id, connector->name);
}
}
+/* HDMI Vendor-Specific Data Block (HDMI VSDB, H14b-VSDB) */
static void
drm_parse_hdmi_vsdb_video(struct drm_connector *connector, const u8 *db)
{
@@ -5940,10 +6177,18 @@ drm_parse_hdmi_vsdb_video(struct drm_connector *connector, const u8 *db)
if (len >= 7)
info->max_tmds_clock = db[7] * 5000;
- DRM_DEBUG_KMS("HDMI: DVI dual %d, "
- "max TMDS clock %d kHz\n",
- info->dvi_dual,
- info->max_tmds_clock);
+ /*
+ * Try to infer whether the sink supports HDMI infoframes.
+ *
+ * HDMI infoframe support was first added in HDMI 1.4. Assume the sink
+ * supports infoframes if HDMI_Video_present is set.
+ */
+ if (len >= 8 && db[8] & BIT(5))
+ info->has_hdmi_infoframe = true;
+
+ drm_dbg_kms(connector->dev, "[CONNECTOR:%d:%s] HDMI: DVI dual %d, max TMDS clock %d kHz\n",
+ connector->base.id, connector->name,
+ info->dvi_dual, info->max_tmds_clock);
drm_parse_hdmi_deep_color_info(connector, db);
}
@@ -5963,8 +6208,9 @@ static void drm_parse_microsoft_vsdb(struct drm_connector *connector,
if (version == 1 || version == 2 || (version == 3 && !desktop_usage))
info->non_desktop = true;
- drm_dbg_kms(connector->dev, "HMD or specialized display VSDB version %u: 0x%02x\n",
- version, db[5]);
+ drm_dbg_kms(connector->dev,
+ "[CONNECTOR:%d:%s] HMD or specialized display VSDB version %u: 0x%02x\n",
+ connector->base.id, connector->name, version, db[5]);
}
static void drm_parse_cea_ext(struct drm_connector *connector,
@@ -5975,6 +6221,7 @@ static void drm_parse_cea_ext(struct drm_connector *connector,
const struct cea_db *db;
struct cea_db_iter iter;
const u8 *edid_ext;
+ u64 y420cmdb_map = 0;
drm_edid_iter_begin(drm_edid, &edid_iter);
drm_edid_iter_for_each(edid_ext, &edid_iter) {
@@ -5985,8 +6232,10 @@ static void drm_parse_cea_ext(struct drm_connector *connector,
info->cea_rev = edid_ext[1];
if (info->cea_rev != edid_ext[1])
- DRM_DEBUG_KMS("CEA extension version mismatch %u != %u\n",
- info->cea_rev, edid_ext[1]);
+ drm_dbg_kms(connector->dev,
+ "[CONNECTOR:%d:%s] CEA extension version mismatch %u != %u\n",
+ connector->base.id, connector->name,
+ info->cea_rev, edid_ext[1]);
/* The existence of a CTA extension should imply RGB support */
info->color_formats = DRM_COLOR_FORMAT_RGB444;
@@ -6010,13 +6259,20 @@ static void drm_parse_cea_ext(struct drm_connector *connector,
else if (cea_db_is_microsoft_vsdb(db))
drm_parse_microsoft_vsdb(connector, data);
else if (cea_db_is_y420cmdb(db))
- drm_parse_y420cmdb_bitmap(connector, data);
+ parse_cta_y420cmdb(connector, db, &y420cmdb_map);
+ else if (cea_db_is_y420vdb(db))
+ parse_cta_y420vdb(connector, db);
else if (cea_db_is_vcdb(db))
drm_parse_vcdb(connector, data);
else if (cea_db_is_hdmi_hdr_metadata_block(db))
drm_parse_hdr_metadata_block(connector, data);
+ else if (cea_db_tag(db) == CTA_DB_VIDEO)
+ parse_cta_vdb(connector, db);
}
cea_db_iter_end(&iter);
+
+ if (y420cmdb_map)
+ update_cta_y420cmdb(connector, y420cmdb_map);
}
static
@@ -6033,10 +6289,13 @@ void get_monitor_range(const struct detailed_timing *timing, void *c)
return;
/*
- * Check for flag range limits only. If flag == 1 then
- * no additional timing information provided.
- * Default GTF, GTF Secondary curve and CVT are not
- * supported
+ * These limits are used to determine the VRR refresh
+ * rate range. Only the "range limits only" variant
+ * of the range descriptor seems to guarantee that
+ * any and all timings are accepted by the sink, as
+ * opposed to just timings conforming to the indicated
+ * formula (GTF/GTF2/CVT). Thus other variants of the
+ * range descriptor are not accepted here.
*/
if (range->flags != DRM_EDID_RANGE_LIMITS_ONLY_FLAG)
return;
@@ -6061,14 +6320,18 @@ static void drm_get_monitor_range(struct drm_connector *connector,
.drm_edid = drm_edid,
};
- if (!version_greater(drm_edid, 1, 1))
+ if (drm_edid->edid->revision < 4)
+ return;
+
+ if (!(drm_edid->edid->features & DRM_EDID_FEATURE_CONTINUOUS_FREQ))
return;
drm_for_each_detailed_block(drm_edid, get_monitor_range, &closure);
- DRM_DEBUG_KMS("Supported Monitor Refresh rate range is %d Hz - %d Hz\n",
- info->monitor_range.min_vfreq,
- info->monitor_range.max_vfreq);
+ drm_dbg_kms(connector->dev,
+ "[CONNECTOR:%d:%s] Supported Monitor Refresh rate range is %d Hz - %d Hz\n",
+ connector->base.id, connector->name,
+ info->monitor_range.min_vfreq, info->monitor_range.max_vfreq);
}
static void drm_parse_vesa_mso_data(struct drm_connector *connector,
@@ -6079,8 +6342,9 @@ static void drm_parse_vesa_mso_data(struct drm_connector *connector,
struct drm_display_info *info = &connector->display_info;
if (block->num_bytes < 3) {
- drm_dbg_kms(connector->dev, "Unexpected vendor block size %u\n",
- block->num_bytes);
+ drm_dbg_kms(connector->dev,
+ "[CONNECTOR:%d:%s] Unexpected vendor block size %u\n",
+ connector->base.id, connector->name, block->num_bytes);
return;
}
@@ -6088,13 +6352,16 @@ static void drm_parse_vesa_mso_data(struct drm_connector *connector,
return;
if (sizeof(*vesa) != sizeof(*block) + block->num_bytes) {
- drm_dbg_kms(connector->dev, "Unexpected VESA vendor block size\n");
+ drm_dbg_kms(connector->dev,
+ "[CONNECTOR:%d:%s] Unexpected VESA vendor block size\n",
+ connector->base.id, connector->name);
return;
}
switch (FIELD_GET(DISPLAYID_VESA_MSO_MODE, vesa->mso)) {
default:
- drm_dbg_kms(connector->dev, "Reserved MSO mode value\n");
+ drm_dbg_kms(connector->dev, "[CONNECTOR:%d:%s] Reserved MSO mode value\n",
+ connector->base.id, connector->name);
fallthrough;
case 0:
info->mso_stream_count = 0;
@@ -6114,12 +6381,16 @@ static void drm_parse_vesa_mso_data(struct drm_connector *connector,
info->mso_pixel_overlap = FIELD_GET(DISPLAYID_VESA_MSO_OVERLAP, vesa->mso);
if (info->mso_pixel_overlap > 8) {
- drm_dbg_kms(connector->dev, "Reserved MSO pixel overlap value %u\n",
+ drm_dbg_kms(connector->dev,
+ "[CONNECTOR:%d:%s] Reserved MSO pixel overlap value %u\n",
+ connector->base.id, connector->name,
info->mso_pixel_overlap);
info->mso_pixel_overlap = 8;
}
- drm_dbg_kms(connector->dev, "MSO stream count %u, pixel overlap %u\n",
+ drm_dbg_kms(connector->dev,
+ "[CONNECTOR:%d:%s] MSO stream count %u, pixel overlap %u\n",
+ connector->base.id, connector->name,
info->mso_stream_count, info->mso_pixel_overlap);
}
@@ -6166,17 +6437,53 @@ static void drm_reset_display_info(struct drm_connector *connector)
info->mso_stream_count = 0;
info->mso_pixel_overlap = 0;
+ info->max_dsc_bpp = 0;
+
+ kfree(info->vics);
+ info->vics = NULL;
+ info->vics_len = 0;
+
+ info->quirks = 0;
}
-static u32 update_display_info(struct drm_connector *connector,
- const struct drm_edid *drm_edid)
+static void update_displayid_info(struct drm_connector *connector,
+ const struct drm_edid *drm_edid)
{
struct drm_display_info *info = &connector->display_info;
- const struct edid *edid = drm_edid->edid;
+ const struct displayid_block *block;
+ struct displayid_iter iter;
- u32 quirks = edid_get_quirks(drm_edid);
+ displayid_iter_edid_begin(drm_edid, &iter);
+ displayid_iter_for_each(block, &iter) {
+ if (displayid_version(&iter) == DISPLAY_ID_STRUCTURE_VER_20 &&
+ (displayid_primary_use(&iter) == PRIMARY_USE_HEAD_MOUNTED_VR ||
+ displayid_primary_use(&iter) == PRIMARY_USE_HEAD_MOUNTED_AR))
+ info->non_desktop = true;
+
+ /*
+ * We're only interested in the base section here, no need to
+ * iterate further.
+ */
+ break;
+ }
+ displayid_iter_end(&iter);
+}
+
+static void update_display_info(struct drm_connector *connector,
+ const struct drm_edid *drm_edid)
+{
+ struct drm_display_info *info = &connector->display_info;
+ const struct edid *edid;
drm_reset_display_info(connector);
+ clear_eld(connector);
+
+ if (!drm_edid)
+ return;
+
+ edid = drm_edid->edid;
+
+ info->quirks = edid_get_quirks(drm_edid);
info->width_mm = edid->width_cm * 10;
info->height_mm = edid->height_cm * 10;
@@ -6192,6 +6499,8 @@ static u32 update_display_info(struct drm_connector *connector,
info->color_formats |= DRM_COLOR_FORMAT_RGB444;
drm_parse_cea_ext(connector, drm_edid);
+ update_displayid_info(connector, drm_edid);
+
/*
* Digital sink with "DFP 1.x compliant TMDS" according to EDID 1.3?
*
@@ -6202,8 +6511,9 @@ static u32 update_display_info(struct drm_connector *connector,
if (info->bpc == 0 && edid->revision == 3 &&
edid->input & DRM_EDID_DIGITAL_DFP_1_X) {
info->bpc = 8;
- DRM_DEBUG("%s: Assigning DFP sink color depth as %d bpc.\n",
- connector->name, info->bpc);
+ drm_dbg_kms(connector->dev,
+ "[CONNECTOR:%d:%s] Assigning DFP sink color depth as %d bpc.\n",
+ connector->base.id, connector->name, info->bpc);
}
/* Only defined for 1.4 with digital displays */
@@ -6235,8 +6545,9 @@ static u32 update_display_info(struct drm_connector *connector,
break;
}
- DRM_DEBUG("%s: Assigning EDID-1.4 digital sink color depth as %d bpc.\n",
- connector->name, info->bpc);
+ drm_dbg_kms(connector->dev,
+ "[CONNECTOR:%d:%s] Assigning EDID-1.4 digital sink color depth as %d bpc.\n",
+ connector->base.id, connector->name, info->bpc);
if (edid->features & DRM_EDID_FEATURE_RGB_YCRCB444)
info->color_formats |= DRM_COLOR_FORMAT_YCBCR444;
@@ -6246,13 +6557,30 @@ static u32 update_display_info(struct drm_connector *connector,
drm_update_mso(connector, drm_edid);
out:
- if (quirks & EDID_QUIRK_NON_DESKTOP) {
- drm_dbg_kms(connector->dev, "Non-desktop display%s\n",
+ if (info->quirks & EDID_QUIRK_NON_DESKTOP) {
+ drm_dbg_kms(connector->dev, "[CONNECTOR:%d:%s] Non-desktop display%s\n",
+ connector->base.id, connector->name,
info->non_desktop ? " (redundant quirk)" : "");
info->non_desktop = true;
}
- return quirks;
+ if (info->quirks & EDID_QUIRK_CAP_DSC_15BPP)
+ info->max_dsc_bpp = 15;
+
+ if (info->quirks & EDID_QUIRK_FORCE_6BPC)
+ info->bpc = 6;
+
+ if (info->quirks & EDID_QUIRK_FORCE_8BPC)
+ info->bpc = 8;
+
+ if (info->quirks & EDID_QUIRK_FORCE_10BPC)
+ info->bpc = 10;
+
+ if (info->quirks & EDID_QUIRK_FORCE_12BPC)
+ info->bpc = 12;
+
+ /* Depends on info->cea_rev set by drm_parse_cea_ext() above */
+ drm_edid_to_eld(connector, drm_edid);
}
static struct drm_display_mode *drm_mode_displayid_detailed(struct drm_device *dev,
@@ -6347,27 +6675,14 @@ static int add_displayid_detailed_modes(struct drm_connector *connector,
return num_modes;
}
-static int _drm_edid_connector_update(struct drm_connector *connector,
- const struct drm_edid *drm_edid)
+static int _drm_edid_connector_add_modes(struct drm_connector *connector,
+ const struct drm_edid *drm_edid)
{
+ const struct drm_display_info *info = &connector->display_info;
int num_modes = 0;
- u32 quirks;
- if (!drm_edid) {
- drm_reset_display_info(connector);
- clear_eld(connector);
+ if (!drm_edid)
return 0;
- }
-
- /*
- * CEA-861-F adds ycbcr capability map block, for HDMI 2.0 sinks.
- * To avoid multiple parsing of same block, lets parse that map
- * from sink info, before parsing CEA modes.
- */
- quirks = update_display_info(connector, drm_edid);
-
- /* Depends on info->cea_rev set by update_display_info() above */
- drm_edid_to_eld(connector, drm_edid);
/*
* EDID spec says modes should be preferred in this order:
@@ -6383,30 +6698,18 @@ static int _drm_edid_connector_update(struct drm_connector *connector,
*
* XXX order for additional mode types in extension blocks?
*/
- num_modes += add_detailed_modes(connector, drm_edid, quirks);
+ num_modes += add_detailed_modes(connector, drm_edid);
num_modes += add_cvt_modes(connector, drm_edid);
num_modes += add_standard_modes(connector, drm_edid);
num_modes += add_established_modes(connector, drm_edid);
num_modes += add_cea_modes(connector, drm_edid);
num_modes += add_alternate_cea_modes(connector, drm_edid);
num_modes += add_displayid_detailed_modes(connector, drm_edid);
- if (drm_edid->edid->features & DRM_EDID_FEATURE_DEFAULT_GTF)
+ if (drm_edid->edid->features & DRM_EDID_FEATURE_CONTINUOUS_FREQ)
num_modes += add_inferred_modes(connector, drm_edid);
- if (quirks & (EDID_QUIRK_PREFER_LARGE_60 | EDID_QUIRK_PREFER_LARGE_75))
- edid_fixup_preferred(connector, quirks);
-
- if (quirks & EDID_QUIRK_FORCE_6BPC)
- connector->display_info.bpc = 6;
-
- if (quirks & EDID_QUIRK_FORCE_8BPC)
- connector->display_info.bpc = 8;
-
- if (quirks & EDID_QUIRK_FORCE_10BPC)
- connector->display_info.bpc = 10;
-
- if (quirks & EDID_QUIRK_FORCE_12BPC)
- connector->display_info.bpc = 12;
+ if (info->quirks & (EDID_QUIRK_PREFER_LARGE_60 | EDID_QUIRK_PREFER_LARGE_75))
+ edid_fixup_preferred(connector);
return num_modes;
}
@@ -6470,70 +6773,54 @@ out:
* @connector: Connector
* @drm_edid: EDID
*
- * Update the connector mode list, display info, ELD, HDR metadata, relevant
- * properties, etc. from the passed in EDID.
+ * Update the connector display info, ELD, HDR metadata, relevant properties,
+ * etc. from the passed in EDID.
*
* If EDID is NULL, reset the information.
*
- * Return: The number of modes added or 0 if we couldn't find any.
+ * Must be called before calling drm_edid_connector_add_modes().
+ *
+ * Return: 0 on success, negative error on errors.
*/
int drm_edid_connector_update(struct drm_connector *connector,
const struct drm_edid *drm_edid)
{
- int count;
-
- /*
- * FIXME: Reconcile the differences in override_edid handling between
- * this and drm_connector_update_edid_property().
- *
- * If override_edid is set, and the EDID passed in here originates from
- * drm_edid_read() and friends, it will be the override EDID, and there
- * are no issues. drm_connector_update_edid_property() ignoring requests
- * to set the EDID dates back to a time when override EDID was not
- * handled at the low level EDID read.
- *
- * The only way the EDID passed in here can be different from the
- * override EDID is when a driver passes in an EDID that does *not*
- * originate from drm_edid_read() and friends, or passes in a stale
- * cached version. This, in turn, is a question of when an override EDID
- * set via debugfs should take effect.
- */
-
- count = _drm_edid_connector_update(connector, drm_edid);
+ update_display_info(connector, drm_edid);
_drm_update_tile_info(connector, drm_edid);
- /* Note: Ignore errors for now. */
- _drm_edid_connector_property_update(connector, drm_edid);
-
- return count;
+ return _drm_edid_connector_property_update(connector, drm_edid);
}
EXPORT_SYMBOL(drm_edid_connector_update);
-static int _drm_connector_update_edid_property(struct drm_connector *connector,
- const struct drm_edid *drm_edid)
+/**
+ * drm_edid_connector_add_modes - Update probed modes from the EDID property
+ * @connector: Connector
+ *
+ * Add the modes from the previously updated EDID property to the connector
+ * probed modes list.
+ *
+ * drm_edid_connector_update() must have been called before this to update the
+ * EDID property.
+ *
+ * Return: The number of modes added, or 0 if we couldn't find any.
+ */
+int drm_edid_connector_add_modes(struct drm_connector *connector)
{
- /* ignore requests to set edid when overridden */
- if (connector->override_edid)
- return 0;
+ const struct drm_edid *drm_edid = NULL;
+ int count;
- /*
- * Set the display info, using edid if available, otherwise resetting
- * the values to defaults. This duplicates the work done in
- * drm_add_edid_modes, but that function is not consistently called
- * before this one in all drivers and the computation is cheap enough
- * that it seems better to duplicate it rather than attempt to ensure
- * some arbitrary ordering of calls.
- */
- if (drm_edid)
- update_display_info(connector, drm_edid);
- else
- drm_reset_display_info(connector);
+ if (connector->edid_blob_ptr)
+ drm_edid = drm_edid_alloc(connector->edid_blob_ptr->data,
+ connector->edid_blob_ptr->length);
- _drm_update_tile_info(connector, drm_edid);
+ count = _drm_edid_connector_add_modes(connector, drm_edid);
- return _drm_edid_connector_property_update(connector, drm_edid);
+ drm_edid_free(drm_edid);
+
+ return count;
}
+EXPORT_SYMBOL(drm_edid_connector_add_modes);
/**
* drm_connector_update_edid_property - update the edid property of a connector
@@ -6556,8 +6843,7 @@ int drm_connector_update_edid_property(struct drm_connector *connector,
{
struct drm_edid drm_edid;
- return _drm_connector_update_edid_property(connector,
- drm_edid_legacy_init(&drm_edid, edid));
+ return drm_edid_connector_update(connector, drm_edid_legacy_init(&drm_edid, edid));
}
EXPORT_SYMBOL(drm_connector_update_edid_property);
@@ -6570,22 +6856,26 @@ EXPORT_SYMBOL(drm_connector_update_edid_property);
* &drm_display_info structure and ELD in @connector with any information which
* can be derived from the edid.
*
- * This function is deprecated. Use drm_edid_connector_update() instead.
+ * This function is deprecated. Use drm_edid_connector_add_modes() instead.
*
* Return: The number of modes added or 0 if we couldn't find any.
*/
int drm_add_edid_modes(struct drm_connector *connector, struct edid *edid)
{
- struct drm_edid drm_edid;
+ struct drm_edid _drm_edid;
+ const struct drm_edid *drm_edid;
if (edid && !drm_edid_is_valid(edid)) {
- drm_warn(connector->dev, "%s: EDID invalid.\n",
- connector->name);
+ drm_warn(connector->dev, "[CONNECTOR:%d:%s] EDID invalid.\n",
+ connector->base.id, connector->name);
edid = NULL;
}
- return _drm_edid_connector_update(connector,
- drm_edid_legacy_init(&drm_edid, edid));
+ drm_edid = drm_edid_legacy_init(&_drm_edid, edid);
+
+ update_display_info(connector, drm_edid);
+
+ return _drm_edid_connector_add_modes(connector, drm_edid);
}
EXPORT_SYMBOL(drm_add_edid_modes);
@@ -6692,8 +6982,6 @@ static u8 drm_mode_hdmi_vic(const struct drm_connector *connector,
static u8 drm_mode_cea_vic(const struct drm_connector *connector,
const struct drm_display_mode *mode)
{
- u8 vic;
-
/*
* HDMI spec says if a mode is found in HDMI 1.4b 4K modes
* we should send its VIC in vendor infoframes, else send the
@@ -6703,14 +6991,23 @@ static u8 drm_mode_cea_vic(const struct drm_connector *connector,
if (drm_mode_hdmi_vic(connector, mode))
return 0;
- vic = drm_match_cea_mode(mode);
+ return drm_match_cea_mode(mode);
+}
- /*
- * HDMI 1.4 VIC range: 1 <= VIC <= 64 (CEA-861-D) but
- * HDMI 2.0 VIC range: 1 <= VIC <= 107 (CEA-861-F). So we
- * have to make sure we dont break HDMI 1.4 sinks.
- */
- if (!is_hdmi2_sink(connector) && vic > 64)
+/*
+ * Avoid sending VICs defined in HDMI 2.0 in AVI infoframes to sinks that
+ * conform to HDMI 1.4.
+ *
+ * HDMI 1.4 (CTA-861-D) VIC range: [1..64]
+ * HDMI 2.0 (CTA-861-F) VIC range: [1..107]
+ *
+ * If the sink lists the VIC in CTA VDB, assume it's fine, regardless of HDMI
+ * version.
+ */
+static u8 vic_for_avi_infoframe(const struct drm_connector *connector, u8 vic)
+{
+ if (!is_hdmi2_sink(connector) && vic > 64 &&
+ !cta_vdb_has_vic(connector, vic))
return 0;
return vic;
@@ -6785,7 +7082,7 @@ drm_hdmi_avi_infoframe_from_display_mode(struct hdmi_avi_infoframe *frame,
picture_aspect = HDMI_PICTURE_ASPECT_NONE;
}
- frame->video_code = vic;
+ frame->video_code = vic_for_avi_infoframe(connector, vic);
frame->picture_aspect = picture_aspect;
frame->active_aspect = HDMI_ACTIVE_ASPECT_PICTURE;
frame->scan_mode = HDMI_SCAN_MODE_UNDERSCAN;
@@ -6837,7 +7134,7 @@ drm_hdmi_avi_infoframe_quant_range(struct hdmi_avi_infoframe *frame,
* by non-zero YQ when receiving RGB. There doesn't seem to be any
* good way to tell which version of CEA-861 the sink supports, so
* we limit non-zero YQ to HDMI 2.0 sinks only as HDMI 2.0 is based
- * on on CEA-861-F.
+ * on CEA-861-F.
*/
if (!is_hdmi2_sink(connector) ||
rgb_quant_range == HDMI_QUANTIZATION_RANGE_LIMITED)
@@ -6956,11 +7253,14 @@ static void drm_parse_tiled_block(struct drm_connector *connector,
connector->tile_h_size = w + 1;
connector->tile_v_size = h + 1;
- DRM_DEBUG_KMS("tile cap 0x%x\n", tile->tile_cap);
- DRM_DEBUG_KMS("tile_size %d x %d\n", w + 1, h + 1);
- DRM_DEBUG_KMS("topo num tiles %dx%d, location %dx%d\n",
- num_h_tile + 1, num_v_tile + 1, tile_h_loc, tile_v_loc);
- DRM_DEBUG_KMS("vend %c%c%c\n", tile->topology_id[0], tile->topology_id[1], tile->topology_id[2]);
+ drm_dbg_kms(connector->dev,
+ "[CONNECTOR:%d:%s] tile cap 0x%x, size %dx%d, num tiles %dx%d, location %dx%d, vend %c%c%c",
+ connector->base.id, connector->name,
+ tile->tile_cap,
+ connector->tile_h_size, connector->tile_v_size,
+ connector->num_h_tile, connector->num_v_tile,
+ connector->tile_h_loc, connector->tile_v_loc,
+ tile->topology_id[0], tile->topology_id[1], tile->topology_id[2]);
tg = drm_mode_get_tile_group(connector->dev, tile->topology_id);
if (!tg)
@@ -6980,6 +7280,15 @@ static void drm_parse_tiled_block(struct drm_connector *connector,
}
}
+static bool displayid_is_tiled_block(const struct displayid_iter *iter,
+ const struct displayid_block *block)
+{
+ return (displayid_version(iter) == DISPLAY_ID_STRUCTURE_VER_12 &&
+ block->tag == DATA_BLOCK_TILED_DISPLAY) ||
+ (displayid_version(iter) == DISPLAY_ID_STRUCTURE_VER_20 &&
+ block->tag == DATA_BLOCK_2_TILED_DISPLAY_TOPOLOGY);
+}
+
static void _drm_update_tile_info(struct drm_connector *connector,
const struct drm_edid *drm_edid)
{
@@ -6990,7 +7299,7 @@ static void _drm_update_tile_info(struct drm_connector *connector,
displayid_iter_edid_begin(drm_edid, &iter);
displayid_iter_for_each(block, &iter) {
- if (block->tag == DATA_BLOCK_TILED_DISPLAY)
+ if (displayid_is_tiled_block(&iter, block))
drm_parse_tiled_block(connector, block);
}
displayid_iter_end(&iter);
diff --git a/drivers/gpu/drm/drm_edid_load.c b/drivers/gpu/drm/drm_edid_load.c
index 37d8ba3ddb46..5d9ef267ebb3 100644
--- a/drivers/gpu/drm/drm_edid_load.c
+++ b/drivers/gpu/drm/drm_edid_load.c
@@ -11,12 +11,13 @@
#include <linux/module.h>
#include <linux/platform_device.h>
-#include <drm/drm_crtc.h>
-#include <drm/drm_crtc_helper.h>
+#include <drm/drm_connector.h>
#include <drm/drm_drv.h>
#include <drm/drm_edid.h>
#include <drm/drm_print.h>
+#include "drm_crtc_internal.h"
+
static char edid_firmware[PATH_MAX];
module_param_string(edid_firmware, edid_firmware, sizeof(edid_firmware), 0644);
MODULE_PARM_DESC(edid_firmware, "Do not probe monitor, use specified EDID blob "
@@ -159,44 +160,26 @@ static const u8 generic_edid[GENERIC_EDIDS][128] = {
},
};
-static int edid_size(const u8 *edid, int data_size)
-{
- if (data_size < EDID_LENGTH)
- return 0;
-
- return (edid[0x7e] + 1) * EDID_LENGTH;
-}
-
-static void *edid_load(struct drm_connector *connector, const char *name,
- const char *connector_name)
+static const struct drm_edid *edid_load(struct drm_connector *connector, const char *name)
{
const struct firmware *fw = NULL;
const u8 *fwdata;
- u8 *edid;
+ const struct drm_edid *drm_edid;
int fwsize, builtin;
- int i, valid_extensions = 0;
- bool print_bad_edid = !connector->bad_edid_counter || drm_debug_enabled(DRM_UT_KMS);
builtin = match_string(generic_edid_name, GENERIC_EDIDS, name);
if (builtin >= 0) {
fwdata = generic_edid[builtin];
fwsize = sizeof(generic_edid[builtin]);
} else {
- struct platform_device *pdev;
int err;
- pdev = platform_device_register_simple(connector_name, -1, NULL, 0);
- if (IS_ERR(pdev)) {
- DRM_ERROR("Failed to register EDID firmware platform device "
- "for connector \"%s\"\n", connector_name);
- return ERR_CAST(pdev);
- }
-
- err = request_firmware(&fw, name, &pdev->dev);
- platform_device_unregister(pdev);
+ err = request_firmware(&fw, name, connector->dev->dev);
if (err) {
- DRM_ERROR("Requesting EDID firmware \"%s\" failed (err=%d)\n",
- name, err);
+ drm_err(connector->dev,
+ "[CONNECTOR:%d:%s] Requesting EDID firmware \"%s\" failed (err=%d)\n",
+ connector->base.id, connector->name,
+ name, err);
return ERR_PTR(err);
}
@@ -204,70 +187,26 @@ static void *edid_load(struct drm_connector *connector, const char *name,
fwsize = fw->size;
}
- if (edid_size(fwdata, fwsize) != fwsize) {
- DRM_ERROR("Size of EDID firmware \"%s\" is invalid "
- "(expected %d, got %d\n", name,
- edid_size(fwdata, fwsize), (int)fwsize);
- edid = ERR_PTR(-EINVAL);
- goto out;
- }
-
- edid = kmemdup(fwdata, fwsize, GFP_KERNEL);
- if (edid == NULL) {
- edid = ERR_PTR(-ENOMEM);
- goto out;
- }
+ drm_dbg_kms(connector->dev, "[CONNECTOR:%d:%s] Loaded %s firmware EDID \"%s\"\n",
+ connector->base.id, connector->name,
+ builtin >= 0 ? "built-in" : "external", name);
- if (!drm_edid_block_valid(edid, 0, print_bad_edid,
- &connector->edid_corrupt)) {
- connector->bad_edid_counter++;
- DRM_ERROR("Base block of EDID firmware \"%s\" is invalid ",
- name);
- kfree(edid);
- edid = ERR_PTR(-EINVAL);
- goto out;
+ drm_edid = drm_edid_alloc(fwdata, fwsize);
+ if (!drm_edid_valid(drm_edid)) {
+ drm_err(connector->dev, "Invalid firmware EDID \"%s\"\n", name);
+ drm_edid_free(drm_edid);
+ drm_edid = ERR_PTR(-EINVAL);
}
- for (i = 1; i <= edid[0x7e]; i++) {
- if (i != valid_extensions + 1)
- memcpy(edid + (valid_extensions + 1) * EDID_LENGTH,
- edid + i * EDID_LENGTH, EDID_LENGTH);
- if (drm_edid_block_valid(edid + i * EDID_LENGTH, i,
- print_bad_edid,
- NULL))
- valid_extensions++;
- }
-
- if (valid_extensions != edid[0x7e]) {
- u8 *new_edid;
-
- edid[EDID_LENGTH-1] += edid[0x7e] - valid_extensions;
- DRM_INFO("Found %d valid extensions instead of %d in EDID data "
- "\"%s\" for connector \"%s\"\n", valid_extensions,
- edid[0x7e], name, connector_name);
- edid[0x7e] = valid_extensions;
-
- new_edid = krealloc(edid, (valid_extensions + 1) * EDID_LENGTH,
- GFP_KERNEL);
- if (new_edid)
- edid = new_edid;
- }
-
- DRM_INFO("Got %s EDID base block and %d extension%s from "
- "\"%s\" for connector \"%s\"\n", (builtin >= 0) ? "built-in" :
- "external", valid_extensions, valid_extensions == 1 ? "" : "s",
- name, connector_name);
-
-out:
release_firmware(fw);
- return edid;
+
+ return drm_edid;
}
-struct edid *drm_load_edid_firmware(struct drm_connector *connector)
+const struct drm_edid *drm_edid_load_firmware(struct drm_connector *connector)
{
- const char *connector_name = connector->name;
char *edidname, *last, *colon, *fwstr, *edidstr, *fallback = NULL;
- struct edid *edid;
+ const struct drm_edid *drm_edid;
if (edid_firmware[0] == '\0')
return ERR_PTR(-ENOENT);
@@ -288,7 +227,7 @@ struct edid *drm_load_edid_firmware(struct drm_connector *connector)
while ((edidname = strsep(&edidstr, ","))) {
colon = strchr(edidname, ':');
if (colon != NULL) {
- if (strncmp(connector_name, edidname, colon - edidname))
+ if (strncmp(connector->name, edidname, colon - edidname))
continue;
edidname = colon + 1;
break;
@@ -310,8 +249,9 @@ struct edid *drm_load_edid_firmware(struct drm_connector *connector)
if (*last == '\n')
*last = '\0';
- edid = edid_load(connector, edidname, connector_name);
+ drm_edid = edid_load(connector, edidname);
+
kfree(fwstr);
- return edid;
+ return drm_edid;
}
diff --git a/drivers/gpu/drm/drm_fb_helper.c b/drivers/gpu/drm/drm_fb_helper.c
index 71edb80fe0fb..6bb1b8b27d7a 100644
--- a/drivers/gpu/drm/drm_fb_helper.c
+++ b/drivers/gpu/drm/drm_fb_helper.c
@@ -30,24 +30,19 @@
#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
#include <linux/console.h>
-#include <linux/dma-buf.h>
-#include <linux/kernel.h>
-#include <linux/module.h>
-#include <linux/slab.h>
+#include <linux/pci.h>
#include <linux/sysrq.h>
-#include <linux/vmalloc.h>
+#include <linux/vga_switcheroo.h>
#include <drm/drm_atomic.h>
-#include <drm/drm_crtc.h>
-#include <drm/drm_crtc_helper.h>
#include <drm/drm_drv.h>
#include <drm/drm_fb_helper.h>
#include <drm/drm_fourcc.h>
#include <drm/drm_framebuffer.h>
+#include <drm/drm_modeset_helper_vtables.h>
#include <drm/drm_print.h>
#include <drm/drm_vblank.h>
-#include "drm_crtc_helper_internal.h"
#include "drm_internal.h"
static bool drm_fbdev_emulation = true;
@@ -65,16 +60,17 @@ MODULE_PARM_DESC(drm_fbdev_overalloc,
* In order to keep user-space compatibility, we want in certain use-cases
* to keep leaking the fbdev physical address to the user-space program
* handling the fbdev buffer.
- * This is a bad habit essentially kept into closed source opengl driver
- * that should really be moved into open-source upstream projects instead
- * of using legacy physical addresses in user space to communicate with
- * other out-of-tree kernel modules.
+ *
+ * This is a bad habit, essentially kept to support closed-source OpenGL
+ * drivers that should really be moved into open-source upstream projects
+ * instead of using legacy physical addresses in user space to communicate
+ * with other out-of-tree kernel modules.
*
* This module_param *should* be removed as soon as possible and be
* considered as a broken and legacy behaviour from a modern fbdev device.
*/
+static bool drm_leak_fbdev_smem;
#if IS_ENABLED(CONFIG_DRM_FBDEV_LEAK_PHYS_SMEM)
-static bool drm_leak_fbdev_smem = false;
module_param_unsafe(drm_leak_fbdev_smem, bool, 0600);
MODULE_PARM_DESC(drm_leak_fbdev_smem,
"Allow unsafe leaking fbdev physical smem address [default=false]");
@@ -96,11 +92,13 @@ static DEFINE_MUTEX(kernel_fb_helper_lock);
* It will automatically set up deferred I/O if the driver requires a shadow
* buffer.
*
- * At runtime drivers should restore the fbdev console by using
+ * Existing fbdev implementations should restore the fbdev console by using
* drm_fb_helper_lastclose() as their &drm_driver.lastclose callback.
* They should also notify the fb helper code from updates to the output
* configuration by using drm_fb_helper_output_poll_changed() as their
- * &drm_mode_config_funcs.output_poll_changed callback.
+ * &drm_mode_config_funcs.output_poll_changed callback. New implementations
+ * of fbdev should be build on top of struct &drm_client_funcs, which handles
+ * this automatically. Setting the old callbacks should be avoided.
*
* For suspend/resume consider using drm_mode_config_helper_suspend() and
* drm_mode_config_helper_resume() which takes care of fbdev as well.
@@ -368,115 +366,30 @@ static void drm_fb_helper_resume_worker(struct work_struct *work)
resume_work);
console_lock();
- fb_set_suspend(helper->fbdev, 0);
+ fb_set_suspend(helper->info, 0);
console_unlock();
}
-static void drm_fb_helper_damage_blit_real(struct drm_fb_helper *fb_helper,
- struct drm_clip_rect *clip,
- struct iosys_map *dst)
-{
- struct drm_framebuffer *fb = fb_helper->fb;
- size_t offset = clip->y1 * fb->pitches[0];
- size_t len = clip->x2 - clip->x1;
- unsigned int y;
- void *src;
-
- switch (drm_format_info_bpp(fb->format, 0)) {
- case 1:
- offset += clip->x1 / 8;
- len = DIV_ROUND_UP(len + clip->x1 % 8, 8);
- break;
- case 2:
- offset += clip->x1 / 4;
- len = DIV_ROUND_UP(len + clip->x1 % 4, 4);
- break;
- case 4:
- offset += clip->x1 / 2;
- len = DIV_ROUND_UP(len + clip->x1 % 2, 2);
- break;
- default:
- offset += clip->x1 * fb->format->cpp[0];
- len *= fb->format->cpp[0];
- break;
- }
-
- src = fb_helper->fbdev->screen_buffer + offset;
- iosys_map_incr(dst, offset); /* go to first pixel within clip rect */
-
- for (y = clip->y1; y < clip->y2; y++) {
- iosys_map_memcpy_to(dst, 0, src, len);
- iosys_map_incr(dst, fb->pitches[0]);
- src += fb->pitches[0];
- }
-}
-
-static int drm_fb_helper_damage_blit(struct drm_fb_helper *fb_helper,
- struct drm_clip_rect *clip)
-{
- struct drm_client_buffer *buffer = fb_helper->buffer;
- struct iosys_map map, dst;
- int ret;
-
- /*
- * We have to pin the client buffer to its current location while
- * flushing the shadow buffer. In the general case, concurrent
- * modesetting operations could try to move the buffer and would
- * fail. The modeset has to be serialized by acquiring the reservation
- * object of the underlying BO here.
- *
- * For fbdev emulation, we only have to protect against fbdev modeset
- * operations. Nothing else will involve the client buffer's BO. So it
- * is sufficient to acquire struct drm_fb_helper.lock here.
- */
- mutex_lock(&fb_helper->lock);
-
- ret = drm_client_buffer_vmap(buffer, &map);
- if (ret)
- goto out;
-
- dst = map;
- drm_fb_helper_damage_blit_real(fb_helper, clip, &dst);
-
- drm_client_buffer_vunmap(buffer);
-
-out:
- mutex_unlock(&fb_helper->lock);
-
- return ret;
-}
-
-static void drm_fb_helper_damage_work(struct work_struct *work)
+static void drm_fb_helper_fb_dirty(struct drm_fb_helper *helper)
{
- struct drm_fb_helper *helper = container_of(work, struct drm_fb_helper,
- damage_work);
struct drm_device *dev = helper->dev;
struct drm_clip_rect *clip = &helper->damage_clip;
struct drm_clip_rect clip_copy;
unsigned long flags;
int ret;
+ if (drm_WARN_ON_ONCE(dev, !helper->funcs->fb_dirty))
+ return;
+
spin_lock_irqsave(&helper->damage_lock, flags);
clip_copy = *clip;
clip->x1 = clip->y1 = ~0;
clip->x2 = clip->y2 = 0;
spin_unlock_irqrestore(&helper->damage_lock, flags);
- /* Call damage handlers only if necessary */
- if (!(clip_copy.x1 < clip_copy.x2 && clip_copy.y1 < clip_copy.y2))
- return;
-
- if (helper->buffer) {
- ret = drm_fb_helper_damage_blit(helper, &clip_copy);
- if (drm_WARN_ONCE(dev, ret, "Damage blitter failed: ret=%d\n", ret))
- goto err;
- }
-
- if (helper->fb->funcs->dirty) {
- ret = helper->fb->funcs->dirty(helper->fb, NULL, 0, 0, &clip_copy, 1);
- if (drm_WARN_ONCE(dev, ret, "Dirty helper failed: ret=%d\n", ret))
- goto err;
- }
+ ret = helper->funcs->fb_dirty(helper, &clip_copy);
+ if (ret)
+ goto err;
return;
@@ -493,18 +406,41 @@ err:
spin_unlock_irqrestore(&helper->damage_lock, flags);
}
+static void drm_fb_helper_damage_work(struct work_struct *work)
+{
+ struct drm_fb_helper *helper = container_of(work, struct drm_fb_helper, damage_work);
+
+ drm_fb_helper_fb_dirty(helper);
+}
+
/**
* drm_fb_helper_prepare - setup a drm_fb_helper structure
* @dev: DRM device
* @helper: driver-allocated fbdev helper structure to set up
+ * @preferred_bpp: Preferred bits per pixel for the device.
* @funcs: pointer to structure of functions associate with this helper
*
* Sets up the bare minimum to make the framebuffer helper usable. This is
* useful to implement race-free initialization of the polling helpers.
*/
void drm_fb_helper_prepare(struct drm_device *dev, struct drm_fb_helper *helper,
+ unsigned int preferred_bpp,
const struct drm_fb_helper_funcs *funcs)
{
+ /*
+ * Pick a preferred bpp of 32 if no value has been given. This
+ * will select XRGB8888 for the framebuffer formats. All drivers
+ * have to support XRGB8888 for backwards compatibility with legacy
+ * userspace, so it's the safe choice here.
+ *
+ * TODO: Replace struct drm_mode_config.preferred_depth and this
+ * bpp value with a preferred format that is given as struct
+ * drm_format_info. Then derive all other values from the
+ * format.
+ */
+ if (!preferred_bpp)
+ preferred_bpp = 32;
+
INIT_LIST_HEAD(&helper->kernel_fb_list);
spin_lock_init(&helper->damage_lock);
INIT_WORK(&helper->resume_work, drm_fb_helper_resume_worker);
@@ -513,10 +449,23 @@ void drm_fb_helper_prepare(struct drm_device *dev, struct drm_fb_helper *helper,
mutex_init(&helper->lock);
helper->funcs = funcs;
helper->dev = dev;
+ helper->preferred_bpp = preferred_bpp;
}
EXPORT_SYMBOL(drm_fb_helper_prepare);
/**
+ * drm_fb_helper_unprepare - clean up a drm_fb_helper structure
+ * @fb_helper: driver-allocated fbdev helper structure to set up
+ *
+ * Cleans up the framebuffer helper. Inverse of drm_fb_helper_prepare().
+ */
+void drm_fb_helper_unprepare(struct drm_fb_helper *fb_helper)
+{
+ mutex_destroy(&fb_helper->lock);
+}
+EXPORT_SYMBOL(drm_fb_helper_unprepare);
+
+/**
* drm_fb_helper_init - initialize a &struct drm_fb_helper
* @dev: drm device
* @fb_helper: driver-allocated fbdev helper structure to initialize
@@ -536,11 +485,6 @@ int drm_fb_helper_init(struct drm_device *dev,
{
int ret;
- if (!drm_fbdev_emulation) {
- dev->fb_helper = fb_helper;
- return 0;
- }
-
/*
* If this is not the generic fbdev client, initialize a drm_client
* without callbacks so we can use the modesets.
@@ -558,11 +502,11 @@ int drm_fb_helper_init(struct drm_device *dev,
EXPORT_SYMBOL(drm_fb_helper_init);
/**
- * drm_fb_helper_alloc_fbi - allocate fb_info and some of its members
+ * drm_fb_helper_alloc_info - allocate fb_info and some of its members
* @fb_helper: driver-allocated fbdev helper
*
- * A helper to alloc fb_info and the members cmap and apertures. Called
- * by the driver within the fb_probe fb_helper callback function. Drivers do not
+ * A helper to alloc fb_info and the member cmap. Called by the driver
+ * within the fb_probe fb_helper callback function. Drivers do not
* need to release the allocated fb_info structure themselves, this is
* automatically done when calling drm_fb_helper_fini().
*
@@ -570,7 +514,7 @@ EXPORT_SYMBOL(drm_fb_helper_init);
* fb_info pointer if things went okay, pointer containing error code
* otherwise
*/
-struct fb_info *drm_fb_helper_alloc_fbi(struct drm_fb_helper *fb_helper)
+struct fb_info *drm_fb_helper_alloc_info(struct drm_fb_helper *fb_helper)
{
struct device *dev = fb_helper->dev->dev;
struct fb_info *info;
@@ -584,47 +528,54 @@ struct fb_info *drm_fb_helper_alloc_fbi(struct drm_fb_helper *fb_helper)
if (ret)
goto err_release;
- /*
- * TODO: We really should be smarter here and alloc an aperture
- * for each IORESOURCE_MEM resource helper->dev->dev has and also
- * init the ranges of the appertures based on the resources.
- * Note some drivers currently count on there being only 1 empty
- * aperture and fill this themselves, these will need to be dealt
- * with somehow when fixing this.
- */
- info->apertures = alloc_apertures(1);
- if (!info->apertures) {
- ret = -ENOMEM;
- goto err_free_cmap;
- }
-
- fb_helper->fbdev = info;
+ fb_helper->info = info;
info->skip_vt_switch = true;
return info;
-err_free_cmap:
- fb_dealloc_cmap(&info->cmap);
err_release:
framebuffer_release(info);
return ERR_PTR(ret);
}
-EXPORT_SYMBOL(drm_fb_helper_alloc_fbi);
+EXPORT_SYMBOL(drm_fb_helper_alloc_info);
+
+/**
+ * drm_fb_helper_release_info - release fb_info and its members
+ * @fb_helper: driver-allocated fbdev helper
+ *
+ * A helper to release fb_info and the member cmap. Drivers do not
+ * need to release the allocated fb_info structure themselves, this is
+ * automatically done when calling drm_fb_helper_fini().
+ */
+void drm_fb_helper_release_info(struct drm_fb_helper *fb_helper)
+{
+ struct fb_info *info = fb_helper->info;
+
+ if (!info)
+ return;
+
+ fb_helper->info = NULL;
+
+ if (info->cmap.len)
+ fb_dealloc_cmap(&info->cmap);
+ framebuffer_release(info);
+}
+EXPORT_SYMBOL(drm_fb_helper_release_info);
/**
- * drm_fb_helper_unregister_fbi - unregister fb_info framebuffer device
+ * drm_fb_helper_unregister_info - unregister fb_info framebuffer device
* @fb_helper: driver-allocated fbdev helper, can be NULL
*
* A wrapper around unregister_framebuffer, to release the fb_info
* framebuffer device. This must be called before releasing all resources for
* @fb_helper by calling drm_fb_helper_fini().
*/
-void drm_fb_helper_unregister_fbi(struct drm_fb_helper *fb_helper)
+void drm_fb_helper_unregister_info(struct drm_fb_helper *fb_helper)
{
- if (fb_helper && fb_helper->fbdev)
- unregister_framebuffer(fb_helper->fbdev);
+ if (fb_helper && fb_helper->info)
+ unregister_framebuffer(fb_helper->info);
}
-EXPORT_SYMBOL(drm_fb_helper_unregister_fbi);
+EXPORT_SYMBOL(drm_fb_helper_unregister_info);
/**
* drm_fb_helper_fini - finialize a &struct drm_fb_helper
@@ -634,8 +585,6 @@ EXPORT_SYMBOL(drm_fb_helper_unregister_fbi);
*/
void drm_fb_helper_fini(struct drm_fb_helper *fb_helper)
{
- struct fb_info *info;
-
if (!fb_helper)
return;
@@ -647,13 +596,7 @@ void drm_fb_helper_fini(struct drm_fb_helper *fb_helper)
cancel_work_sync(&fb_helper->resume_work);
cancel_work_sync(&fb_helper->damage_work);
- info = fb_helper->fbdev;
- if (info) {
- if (info->cmap.len)
- fb_dealloc_cmap(&info->cmap);
- framebuffer_release(info);
- }
- fb_helper->fbdev = NULL;
+ drm_fb_helper_release_info(fb_helper);
mutex_lock(&kernel_fb_helper_lock);
if (!list_empty(&fb_helper->kernel_fb_list)) {
@@ -663,39 +606,29 @@ void drm_fb_helper_fini(struct drm_fb_helper *fb_helper)
}
mutex_unlock(&kernel_fb_helper_lock);
- mutex_destroy(&fb_helper->lock);
-
if (!fb_helper->client.funcs)
drm_client_release(&fb_helper->client);
}
EXPORT_SYMBOL(drm_fb_helper_fini);
-static bool drm_fbdev_use_shadow_fb(struct drm_fb_helper *fb_helper)
+static void drm_fb_helper_add_damage_clip(struct drm_fb_helper *helper, u32 x, u32 y,
+ u32 width, u32 height)
{
- struct drm_device *dev = fb_helper->dev;
- struct drm_framebuffer *fb = fb_helper->fb;
-
- return dev->mode_config.prefer_shadow_fbdev ||
- dev->mode_config.prefer_shadow ||
- fb->funcs->dirty;
-}
-
-static void drm_fb_helper_damage(struct fb_info *info, u32 x, u32 y,
- u32 width, u32 height)
-{
- struct drm_fb_helper *helper = info->par;
struct drm_clip_rect *clip = &helper->damage_clip;
unsigned long flags;
- if (!drm_fbdev_use_shadow_fb(helper))
- return;
-
spin_lock_irqsave(&helper->damage_lock, flags);
clip->x1 = min_t(u32, clip->x1, x);
clip->y1 = min_t(u32, clip->y1, y);
clip->x2 = max_t(u32, clip->x2, x + width);
clip->y2 = max_t(u32, clip->y2, y + height);
spin_unlock_irqrestore(&helper->damage_lock, flags);
+}
+
+static void drm_fb_helper_damage(struct drm_fb_helper *helper, u32 x, u32 y,
+ u32 width, u32 height)
+{
+ drm_fb_helper_add_damage_clip(helper, x, y, width, height);
schedule_work(&helper->damage_work);
}
@@ -708,19 +641,27 @@ static void drm_fb_helper_damage(struct fb_info *info, u32 x, u32 y,
static void drm_fb_helper_memory_range_to_clip(struct fb_info *info, off_t off, size_t len,
struct drm_rect *clip)
{
+ u32 line_length = info->fix.line_length;
+ u32 fb_height = info->var.yres;
off_t end = off + len;
u32 x1 = 0;
- u32 y1 = off / info->fix.line_length;
+ u32 y1 = off / line_length;
u32 x2 = info->var.xres;
- u32 y2 = DIV_ROUND_UP(end, info->fix.line_length);
+ u32 y2 = DIV_ROUND_UP(end, line_length);
+
+ /* Don't allow any of them beyond the bottom bound of display area */
+ if (y1 > fb_height)
+ y1 = fb_height;
+ if (y2 > fb_height)
+ y2 = fb_height;
if ((y2 - y1) == 1) {
/*
* We've only written to a single scanline. Try to reduce
* the number of horizontal pixels that need an update.
*/
- off_t bit_off = (off % info->fix.line_length) * 8;
- off_t bit_end = (end % info->fix.line_length) * 8;
+ off_t bit_off = (off % line_length) * 8;
+ off_t bit_end = (end % line_length) * 8;
x1 = bit_off / info->var.bits_per_pixel;
x2 = DIV_ROUND_UP(bit_end, info->var.bits_per_pixel);
@@ -739,7 +680,8 @@ static void drm_fb_helper_memory_range_to_clip(struct fb_info *info, off_t off,
*/
void drm_fb_helper_deferred_io(struct fb_info *info, struct list_head *pagereflist)
{
- unsigned long start, end, min_off, max_off;
+ struct drm_fb_helper *helper = info->par;
+ unsigned long start, end, min_off, max_off, total_size;
struct fb_deferred_io_pageref *pageref;
struct drm_rect damage_area;
@@ -751,63 +693,172 @@ void drm_fb_helper_deferred_io(struct fb_info *info, struct list_head *pagerefli
min_off = min(min_off, start);
max_off = max(max_off, end);
}
- if (min_off >= max_off)
- return;
/*
* As we can only track pages, we might reach beyond the end
* of the screen and account for non-existing scanlines. Hence,
* keep the covered memory area within the screen buffer.
*/
- max_off = min(max_off, info->screen_size);
+ if (info->screen_size)
+ total_size = info->screen_size;
+ else
+ total_size = info->fix.smem_len;
+ max_off = min(max_off, total_size);
- drm_fb_helper_memory_range_to_clip(info, min_off, max_off - min_off, &damage_area);
- drm_fb_helper_damage(info, damage_area.x1, damage_area.y1,
- drm_rect_width(&damage_area),
- drm_rect_height(&damage_area));
+ if (min_off < max_off) {
+ drm_fb_helper_memory_range_to_clip(info, min_off, max_off - min_off, &damage_area);
+ drm_fb_helper_damage(helper, damage_area.x1, damage_area.y1,
+ drm_rect_width(&damage_area),
+ drm_rect_height(&damage_area));
+ }
}
EXPORT_SYMBOL(drm_fb_helper_deferred_io);
+typedef ssize_t (*drm_fb_helper_read_screen)(struct fb_info *info, char __user *buf,
+ size_t count, loff_t pos);
+
+static ssize_t __drm_fb_helper_read(struct fb_info *info, char __user *buf, size_t count,
+ loff_t *ppos, drm_fb_helper_read_screen read_screen)
+{
+ loff_t pos = *ppos;
+ size_t total_size;
+ ssize_t ret;
+
+ if (info->screen_size)
+ total_size = info->screen_size;
+ else
+ total_size = info->fix.smem_len;
+
+ if (pos >= total_size)
+ return 0;
+ if (count >= total_size)
+ count = total_size;
+ if (total_size - count < pos)
+ count = total_size - pos;
+
+ if (info->fbops->fb_sync)
+ info->fbops->fb_sync(info);
+
+ ret = read_screen(info, buf, count, pos);
+ if (ret > 0)
+ *ppos += ret;
+
+ return ret;
+}
+
+typedef ssize_t (*drm_fb_helper_write_screen)(struct fb_info *info, const char __user *buf,
+ size_t count, loff_t pos);
+
+static ssize_t __drm_fb_helper_write(struct fb_info *info, const char __user *buf, size_t count,
+ loff_t *ppos, drm_fb_helper_write_screen write_screen)
+{
+ loff_t pos = *ppos;
+ size_t total_size;
+ ssize_t ret;
+ int err = 0;
+
+ if (info->screen_size)
+ total_size = info->screen_size;
+ else
+ total_size = info->fix.smem_len;
+
+ if (pos > total_size)
+ return -EFBIG;
+ if (count > total_size) {
+ err = -EFBIG;
+ count = total_size;
+ }
+ if (total_size - count < pos) {
+ if (!err)
+ err = -ENOSPC;
+ count = total_size - pos;
+ }
+
+ if (info->fbops->fb_sync)
+ info->fbops->fb_sync(info);
+
+ /*
+ * Copy to framebuffer even if we already logged an error. Emulates
+ * the behavior of the original fbdev implementation.
+ */
+ ret = write_screen(info, buf, count, pos);
+ if (ret < 0)
+ return ret; /* return last error, if any */
+ else if (!ret)
+ return err; /* return previous error, if any */
+
+ *ppos += ret;
+
+ return ret;
+}
+
+static ssize_t drm_fb_helper_read_screen_buffer(struct fb_info *info, char __user *buf,
+ size_t count, loff_t pos)
+{
+ const char *src = info->screen_buffer + pos;
+
+ if (copy_to_user(buf, src, count))
+ return -EFAULT;
+
+ return count;
+}
+
/**
- * drm_fb_helper_sys_read - wrapper around fb_sys_read
+ * drm_fb_helper_sys_read - Implements struct &fb_ops.fb_read for system memory
* @info: fb_info struct pointer
* @buf: userspace buffer to read from framebuffer memory
* @count: number of bytes to read from framebuffer memory
* @ppos: read offset within framebuffer memory
*
- * A wrapper around fb_sys_read implemented by fbdev core
+ * Returns:
+ * The number of bytes read on success, or an error code otherwise.
*/
ssize_t drm_fb_helper_sys_read(struct fb_info *info, char __user *buf,
size_t count, loff_t *ppos)
{
- return fb_sys_read(info, buf, count, ppos);
+ return __drm_fb_helper_read(info, buf, count, ppos, drm_fb_helper_read_screen_buffer);
}
EXPORT_SYMBOL(drm_fb_helper_sys_read);
+static ssize_t drm_fb_helper_write_screen_buffer(struct fb_info *info, const char __user *buf,
+ size_t count, loff_t pos)
+{
+ char *dst = info->screen_buffer + pos;
+
+ if (copy_from_user(dst, buf, count))
+ return -EFAULT;
+
+ return count;
+}
+
/**
- * drm_fb_helper_sys_write - wrapper around fb_sys_write
+ * drm_fb_helper_sys_write - Implements struct &fb_ops.fb_write for system memory
* @info: fb_info struct pointer
* @buf: userspace buffer to write to framebuffer memory
* @count: number of bytes to write to framebuffer memory
* @ppos: write offset within framebuffer memory
*
- * A wrapper around fb_sys_write implemented by fbdev core
+ * Returns:
+ * The number of bytes written on success, or an error code otherwise.
*/
ssize_t drm_fb_helper_sys_write(struct fb_info *info, const char __user *buf,
size_t count, loff_t *ppos)
{
+ struct drm_fb_helper *helper = info->par;
loff_t pos = *ppos;
ssize_t ret;
struct drm_rect damage_area;
- ret = fb_sys_write(info, buf, count, ppos);
+ ret = __drm_fb_helper_write(info, buf, count, ppos, drm_fb_helper_write_screen_buffer);
if (ret <= 0)
return ret;
- drm_fb_helper_memory_range_to_clip(info, pos, ret, &damage_area);
- drm_fb_helper_damage(info, damage_area.x1, damage_area.y1,
- drm_rect_width(&damage_area),
- drm_rect_height(&damage_area));
+ if (helper->funcs->fb_dirty) {
+ drm_fb_helper_memory_range_to_clip(info, pos, ret, &damage_area);
+ drm_fb_helper_damage(helper, damage_area.x1, damage_area.y1,
+ drm_rect_width(&damage_area),
+ drm_rect_height(&damage_area));
+ }
return ret;
}
@@ -823,8 +874,12 @@ EXPORT_SYMBOL(drm_fb_helper_sys_write);
void drm_fb_helper_sys_fillrect(struct fb_info *info,
const struct fb_fillrect *rect)
{
+ struct drm_fb_helper *helper = info->par;
+
sys_fillrect(info, rect);
- drm_fb_helper_damage(info, rect->dx, rect->dy, rect->width, rect->height);
+
+ if (helper->funcs->fb_dirty)
+ drm_fb_helper_damage(helper, rect->dx, rect->dy, rect->width, rect->height);
}
EXPORT_SYMBOL(drm_fb_helper_sys_fillrect);
@@ -838,8 +893,12 @@ EXPORT_SYMBOL(drm_fb_helper_sys_fillrect);
void drm_fb_helper_sys_copyarea(struct fb_info *info,
const struct fb_copyarea *area)
{
+ struct drm_fb_helper *helper = info->par;
+
sys_copyarea(info, area);
- drm_fb_helper_damage(info, area->dx, area->dy, area->width, area->height);
+
+ if (helper->funcs->fb_dirty)
+ drm_fb_helper_damage(helper, area->dx, area->dy, area->width, area->height);
}
EXPORT_SYMBOL(drm_fb_helper_sys_copyarea);
@@ -853,11 +912,131 @@ EXPORT_SYMBOL(drm_fb_helper_sys_copyarea);
void drm_fb_helper_sys_imageblit(struct fb_info *info,
const struct fb_image *image)
{
+ struct drm_fb_helper *helper = info->par;
+
sys_imageblit(info, image);
- drm_fb_helper_damage(info, image->dx, image->dy, image->width, image->height);
+
+ if (helper->funcs->fb_dirty)
+ drm_fb_helper_damage(helper, image->dx, image->dy, image->width, image->height);
}
EXPORT_SYMBOL(drm_fb_helper_sys_imageblit);
+static ssize_t fb_read_screen_base(struct fb_info *info, char __user *buf, size_t count,
+ loff_t pos)
+{
+ const char __iomem *src = info->screen_base + pos;
+ size_t alloc_size = min_t(size_t, count, PAGE_SIZE);
+ ssize_t ret = 0;
+ int err = 0;
+ char *tmp;
+
+ tmp = kmalloc(alloc_size, GFP_KERNEL);
+ if (!tmp)
+ return -ENOMEM;
+
+ while (count) {
+ size_t c = min_t(size_t, count, alloc_size);
+
+ memcpy_fromio(tmp, src, c);
+ if (copy_to_user(buf, tmp, c)) {
+ err = -EFAULT;
+ break;
+ }
+
+ src += c;
+ buf += c;
+ ret += c;
+ count -= c;
+ }
+
+ kfree(tmp);
+
+ return ret ? ret : err;
+}
+
+/**
+ * drm_fb_helper_cfb_read - Implements struct &fb_ops.fb_read for I/O memory
+ * @info: fb_info struct pointer
+ * @buf: userspace buffer to read from framebuffer memory
+ * @count: number of bytes to read from framebuffer memory
+ * @ppos: read offset within framebuffer memory
+ *
+ * Returns:
+ * The number of bytes read on success, or an error code otherwise.
+ */
+ssize_t drm_fb_helper_cfb_read(struct fb_info *info, char __user *buf,
+ size_t count, loff_t *ppos)
+{
+ return __drm_fb_helper_read(info, buf, count, ppos, fb_read_screen_base);
+}
+EXPORT_SYMBOL(drm_fb_helper_cfb_read);
+
+static ssize_t fb_write_screen_base(struct fb_info *info, const char __user *buf, size_t count,
+ loff_t pos)
+{
+ char __iomem *dst = info->screen_base + pos;
+ size_t alloc_size = min_t(size_t, count, PAGE_SIZE);
+ ssize_t ret = 0;
+ int err = 0;
+ u8 *tmp;
+
+ tmp = kmalloc(alloc_size, GFP_KERNEL);
+ if (!tmp)
+ return -ENOMEM;
+
+ while (count) {
+ size_t c = min_t(size_t, count, alloc_size);
+
+ if (copy_from_user(tmp, buf, c)) {
+ err = -EFAULT;
+ break;
+ }
+ memcpy_toio(dst, tmp, c);
+
+ dst += c;
+ buf += c;
+ ret += c;
+ count -= c;
+ }
+
+ kfree(tmp);
+
+ return ret ? ret : err;
+}
+
+/**
+ * drm_fb_helper_cfb_write - Implements struct &fb_ops.fb_write for I/O memory
+ * @info: fb_info struct pointer
+ * @buf: userspace buffer to write to framebuffer memory
+ * @count: number of bytes to write to framebuffer memory
+ * @ppos: write offset within framebuffer memory
+ *
+ * Returns:
+ * The number of bytes written on success, or an error code otherwise.
+ */
+ssize_t drm_fb_helper_cfb_write(struct fb_info *info, const char __user *buf,
+ size_t count, loff_t *ppos)
+{
+ struct drm_fb_helper *helper = info->par;
+ loff_t pos = *ppos;
+ ssize_t ret;
+ struct drm_rect damage_area;
+
+ ret = __drm_fb_helper_write(info, buf, count, ppos, fb_write_screen_base);
+ if (ret <= 0)
+ return ret;
+
+ if (helper->funcs->fb_dirty) {
+ drm_fb_helper_memory_range_to_clip(info, pos, ret, &damage_area);
+ drm_fb_helper_damage(helper, damage_area.x1, damage_area.y1,
+ drm_rect_width(&damage_area),
+ drm_rect_height(&damage_area));
+ }
+
+ return ret;
+}
+EXPORT_SYMBOL(drm_fb_helper_cfb_write);
+
/**
* drm_fb_helper_cfb_fillrect - wrapper around cfb_fillrect
* @info: fbdev registered by the helper
@@ -868,8 +1047,12 @@ EXPORT_SYMBOL(drm_fb_helper_sys_imageblit);
void drm_fb_helper_cfb_fillrect(struct fb_info *info,
const struct fb_fillrect *rect)
{
+ struct drm_fb_helper *helper = info->par;
+
cfb_fillrect(info, rect);
- drm_fb_helper_damage(info, rect->dx, rect->dy, rect->width, rect->height);
+
+ if (helper->funcs->fb_dirty)
+ drm_fb_helper_damage(helper, rect->dx, rect->dy, rect->width, rect->height);
}
EXPORT_SYMBOL(drm_fb_helper_cfb_fillrect);
@@ -883,8 +1066,12 @@ EXPORT_SYMBOL(drm_fb_helper_cfb_fillrect);
void drm_fb_helper_cfb_copyarea(struct fb_info *info,
const struct fb_copyarea *area)
{
+ struct drm_fb_helper *helper = info->par;
+
cfb_copyarea(info, area);
- drm_fb_helper_damage(info, area->dx, area->dy, area->width, area->height);
+
+ if (helper->funcs->fb_dirty)
+ drm_fb_helper_damage(helper, area->dx, area->dy, area->width, area->height);
}
EXPORT_SYMBOL(drm_fb_helper_cfb_copyarea);
@@ -898,8 +1085,12 @@ EXPORT_SYMBOL(drm_fb_helper_cfb_copyarea);
void drm_fb_helper_cfb_imageblit(struct fb_info *info,
const struct fb_image *image)
{
+ struct drm_fb_helper *helper = info->par;
+
cfb_imageblit(info, image);
- drm_fb_helper_damage(info, image->dx, image->dy, image->width, image->height);
+
+ if (helper->funcs->fb_dirty)
+ drm_fb_helper_damage(helper, image->dx, image->dy, image->width, image->height);
}
EXPORT_SYMBOL(drm_fb_helper_cfb_imageblit);
@@ -914,8 +1105,8 @@ EXPORT_SYMBOL(drm_fb_helper_cfb_imageblit);
*/
void drm_fb_helper_set_suspend(struct drm_fb_helper *fb_helper, bool suspend)
{
- if (fb_helper && fb_helper->fbdev)
- fb_set_suspend(fb_helper->fbdev, suspend);
+ if (fb_helper && fb_helper->info)
+ fb_set_suspend(fb_helper->info, suspend);
}
EXPORT_SYMBOL(drm_fb_helper_set_suspend);
@@ -938,20 +1129,20 @@ EXPORT_SYMBOL(drm_fb_helper_set_suspend);
void drm_fb_helper_set_suspend_unlocked(struct drm_fb_helper *fb_helper,
bool suspend)
{
- if (!fb_helper || !fb_helper->fbdev)
+ if (!fb_helper || !fb_helper->info)
return;
/* make sure there's no pending/ongoing resume */
flush_work(&fb_helper->resume_work);
if (suspend) {
- if (fb_helper->fbdev->state != FBINFO_STATE_RUNNING)
+ if (fb_helper->info->state != FBINFO_STATE_RUNNING)
return;
console_lock();
} else {
- if (fb_helper->fbdev->state == FBINFO_STATE_RUNNING)
+ if (fb_helper->info->state == FBINFO_STATE_RUNNING)
return;
if (!console_trylock()) {
@@ -960,7 +1151,7 @@ void drm_fb_helper_set_suspend_unlocked(struct drm_fb_helper *fb_helper,
}
}
- fb_set_suspend(fb_helper->fbdev, suspend);
+ fb_set_suspend(fb_helper->info, suspend);
console_unlock();
}
EXPORT_SYMBOL(drm_fb_helper_set_suspend_unlocked);
@@ -1354,6 +1545,27 @@ static void drm_fb_helper_fill_pixel_fmt(struct fb_var_screeninfo *var,
}
}
+static void __fill_var(struct fb_var_screeninfo *var,
+ struct drm_framebuffer *fb)
+{
+ int i;
+
+ var->xres_virtual = fb->width;
+ var->yres_virtual = fb->height;
+ var->accel_flags = FB_ACCELF_TEXT;
+ var->bits_per_pixel = drm_format_info_bpp(fb->format, 0);
+
+ var->height = var->width = 0;
+ var->left_margin = var->right_margin = 0;
+ var->upper_margin = var->lower_margin = 0;
+ var->hsync_len = var->vsync_len = 0;
+ var->sync = var->vmode = 0;
+ var->rotate = 0;
+ var->colorspace = 0;
+ for (i = 0; i < 4; i++)
+ var->reserved[i] = 0;
+}
+
/**
* drm_fb_helper_check_var - implementation for &fb_ops.fb_check_var
* @var: screeninfo to check
@@ -1406,6 +1618,23 @@ int drm_fb_helper_check_var(struct fb_var_screeninfo *var,
return -EINVAL;
}
+ __fill_var(var, fb);
+
+ /*
+ * fb_pan_display() validates this, but fb_set_par() doesn't and just
+ * falls over. Note that __fill_var above adjusts y/res_virtual.
+ */
+ if (var->yoffset > var->yres_virtual - var->yres ||
+ var->xoffset > var->xres_virtual - var->xres)
+ return -EINVAL;
+
+ /* We neither support grayscale nor FOURCC (also stored in here). */
+ if (var->grayscale > 0)
+ return -EINVAL;
+
+ if (var->nonstd)
+ return -EINVAL;
+
/*
* Workaround for SDL 1.2, which is known to be setting all pixel format
* fields values to zero in some cases. We treat this situation as a
@@ -1421,11 +1650,6 @@ int drm_fb_helper_check_var(struct fb_var_screeninfo *var,
}
/*
- * Likewise, bits_per_pixel should be rounded up to a supported value.
- */
- var->bits_per_pixel = bpp;
-
- /*
* drm fbdev emulation doesn't support changing the pixel format at all,
* so reject all pixel format changing requests.
*/
@@ -1455,11 +1679,6 @@ int drm_fb_helper_set_par(struct fb_info *info)
if (oops_in_progress)
return -EBUSY;
- if (var->pixclock != 0) {
- drm_err(fb_helper->dev, "PIXEL CLOCK SET\n");
- return -EINVAL;
- }
-
/*
* Normally we want to make sure that a kms master takes precedence over
* fbdev, to avoid fbdev flickering and occasionally stealing the
@@ -1576,117 +1795,132 @@ unlock:
}
EXPORT_SYMBOL(drm_fb_helper_pan_display);
-/*
- * Allocates the backing storage and sets up the fbdev info structure through
- * the ->fb_probe callback.
- */
-static int drm_fb_helper_single_fb_probe(struct drm_fb_helper *fb_helper,
- int preferred_bpp)
+static uint32_t drm_fb_helper_find_format(struct drm_fb_helper *fb_helper, const uint32_t *formats,
+ size_t format_count, uint32_t bpp, uint32_t depth)
{
- struct drm_client_dev *client = &fb_helper->client;
struct drm_device *dev = fb_helper->dev;
- struct drm_mode_config *config = &dev->mode_config;
- int ret = 0;
- int crtc_count = 0;
- struct drm_connector_list_iter conn_iter;
- struct drm_fb_helper_surface_size sizes;
- struct drm_connector *connector;
- struct drm_mode_set *mode_set;
- int best_depth = 0;
-
- memset(&sizes, 0, sizeof(struct drm_fb_helper_surface_size));
- sizes.surface_depth = 24;
- sizes.surface_bpp = 32;
- sizes.fb_width = (u32)-1;
- sizes.fb_height = (u32)-1;
+ uint32_t format;
+ size_t i;
/*
- * If driver picks 8 or 16 by default use that for both depth/bpp
- * to begin with
+ * Do not consider YUV or other complicated formats
+ * for framebuffers. This means only legacy formats
+ * are supported (fmt->depth is a legacy field), but
+ * the framebuffer emulation can only deal with such
+ * formats, specifically RGB/BGA formats.
*/
- if (preferred_bpp != sizes.surface_bpp)
- sizes.surface_depth = sizes.surface_bpp = preferred_bpp;
+ format = drm_mode_legacy_fb_format(bpp, depth);
+ if (!format)
+ goto err;
- drm_connector_list_iter_begin(fb_helper->dev, &conn_iter);
- drm_client_for_each_connector_iter(connector, &conn_iter) {
- struct drm_cmdline_mode *cmdline_mode;
+ for (i = 0; i < format_count; ++i) {
+ if (formats[i] == format)
+ return format;
+ }
- cmdline_mode = &connector->cmdline_mode;
+err:
+ /* We found nothing. */
+ drm_warn(dev, "bpp/depth value of %u/%u not supported\n", bpp, depth);
- if (cmdline_mode->bpp_specified) {
- switch (cmdline_mode->bpp) {
- case 8:
- sizes.surface_depth = sizes.surface_bpp = 8;
- break;
- case 15:
- sizes.surface_depth = 15;
- sizes.surface_bpp = 16;
- break;
- case 16:
- sizes.surface_depth = sizes.surface_bpp = 16;
- break;
- case 24:
- sizes.surface_depth = sizes.surface_bpp = 24;
- break;
- case 32:
- sizes.surface_depth = 24;
- sizes.surface_bpp = 32;
- break;
- }
- break;
- }
+ return DRM_FORMAT_INVALID;
+}
+
+static uint32_t drm_fb_helper_find_color_mode_format(struct drm_fb_helper *fb_helper,
+ const uint32_t *formats, size_t format_count,
+ unsigned int color_mode)
+{
+ struct drm_device *dev = fb_helper->dev;
+ uint32_t bpp, depth;
+
+ switch (color_mode) {
+ case 1:
+ case 2:
+ case 4:
+ case 8:
+ case 16:
+ case 24:
+ bpp = depth = color_mode;
+ break;
+ case 15:
+ bpp = 16;
+ depth = 15;
+ break;
+ case 32:
+ bpp = 32;
+ depth = 24;
+ break;
+ default:
+ drm_info(dev, "unsupported color mode of %d\n", color_mode);
+ return DRM_FORMAT_INVALID;
}
- drm_connector_list_iter_end(&conn_iter);
- /*
- * If we run into a situation where, for example, the primary plane
- * supports RGBA5551 (16 bpp, depth 15) but not RGB565 (16 bpp, depth
- * 16) we need to scale down the depth of the sizes we request.
- */
- mutex_lock(&client->modeset_mutex);
+ return drm_fb_helper_find_format(fb_helper, formats, format_count, bpp, depth);
+}
+
+static int __drm_fb_helper_find_sizes(struct drm_fb_helper *fb_helper,
+ struct drm_fb_helper_surface_size *sizes)
+{
+ struct drm_client_dev *client = &fb_helper->client;
+ struct drm_device *dev = fb_helper->dev;
+ int crtc_count = 0;
+ struct drm_connector_list_iter conn_iter;
+ struct drm_connector *connector;
+ struct drm_mode_set *mode_set;
+ uint32_t surface_format = DRM_FORMAT_INVALID;
+ const struct drm_format_info *info;
+
+ memset(sizes, 0, sizeof(*sizes));
+ sizes->fb_width = (u32)-1;
+ sizes->fb_height = (u32)-1;
+
drm_client_for_each_modeset(mode_set, client) {
struct drm_crtc *crtc = mode_set->crtc;
struct drm_plane *plane = crtc->primary;
- int j;
drm_dbg_kms(dev, "test CRTC %u primary plane\n", drm_crtc_index(crtc));
- for (j = 0; j < plane->format_count; j++) {
- const struct drm_format_info *fmt;
-
- fmt = drm_format_info(plane->format_types[j]);
-
- /*
- * Do not consider YUV or other complicated formats
- * for framebuffers. This means only legacy formats
- * are supported (fmt->depth is a legacy field) but
- * the framebuffer emulation can only deal with such
- * formats, specifically RGB/BGA formats.
- */
- if (fmt->depth == 0)
- continue;
-
- /* We found a perfect fit, great */
- if (fmt->depth == sizes.surface_depth) {
- best_depth = fmt->depth;
- break;
- }
+ drm_connector_list_iter_begin(fb_helper->dev, &conn_iter);
+ drm_client_for_each_connector_iter(connector, &conn_iter) {
+ struct drm_cmdline_mode *cmdline_mode = &connector->cmdline_mode;
- /* Skip depths above what we're looking for */
- if (fmt->depth > sizes.surface_depth)
+ if (!cmdline_mode->bpp_specified)
continue;
- /* Best depth found so far */
- if (fmt->depth > best_depth)
- best_depth = fmt->depth;
+ surface_format = drm_fb_helper_find_color_mode_format(fb_helper,
+ plane->format_types,
+ plane->format_count,
+ cmdline_mode->bpp);
+ if (surface_format != DRM_FORMAT_INVALID)
+ break; /* found supported format */
}
+ drm_connector_list_iter_end(&conn_iter);
+
+ if (surface_format != DRM_FORMAT_INVALID)
+ break; /* found supported format */
+
+ /* try preferred color mode */
+ surface_format = drm_fb_helper_find_color_mode_format(fb_helper,
+ plane->format_types,
+ plane->format_count,
+ fb_helper->preferred_bpp);
+ if (surface_format != DRM_FORMAT_INVALID)
+ break; /* found supported format */
}
- if (sizes.surface_depth != best_depth && best_depth) {
- drm_info(dev, "requested bpp %d, scaled depth down to %d",
- sizes.surface_bpp, best_depth);
- sizes.surface_depth = best_depth;
+
+ if (surface_format == DRM_FORMAT_INVALID) {
+ /*
+ * If none of the given color modes works, fall back
+ * to XRGB8888. Drivers are expected to provide this
+ * format for compatibility with legacy applications.
+ */
+ drm_warn(dev, "No compatible format found\n");
+ surface_format = drm_driver_legacy_fb_format(dev, 32, 24);
}
+ info = drm_format_info(surface_format);
+ sizes->surface_bpp = drm_format_info_bpp(info, 0);
+ sizes->surface_depth = info->depth;
+
/* first up get a count of crtcs now in use and new min/maxes width/heights */
crtc_count = 0;
drm_client_for_each_modeset(mode_set, client) {
@@ -1708,8 +1942,10 @@ static int drm_fb_helper_single_fb_probe(struct drm_fb_helper *fb_helper,
x = mode_set->x;
y = mode_set->y;
- sizes.surface_width = max_t(u32, desired_mode->hdisplay + x, sizes.surface_width);
- sizes.surface_height = max_t(u32, desired_mode->vdisplay + y, sizes.surface_height);
+ sizes->surface_width =
+ max_t(u32, desired_mode->hdisplay + x, sizes->surface_width);
+ sizes->surface_height =
+ max_t(u32, desired_mode->vdisplay + y, sizes->surface_height);
for (j = 0; j < mode_set->num_connectors; j++) {
struct drm_connector *connector = mode_set->connectors[j];
@@ -1725,28 +1961,63 @@ static int drm_fb_helper_single_fb_probe(struct drm_fb_helper *fb_helper,
}
if (lasth)
- sizes.fb_width = min_t(u32, desired_mode->hdisplay + x, sizes.fb_width);
+ sizes->fb_width = min_t(u32, desired_mode->hdisplay + x, sizes->fb_width);
if (lastv)
- sizes.fb_height = min_t(u32, desired_mode->vdisplay + y, sizes.fb_height);
+ sizes->fb_height = min_t(u32, desired_mode->vdisplay + y, sizes->fb_height);
}
- mutex_unlock(&client->modeset_mutex);
- if (crtc_count == 0 || sizes.fb_width == -1 || sizes.fb_height == -1) {
+ if (crtc_count == 0 || sizes->fb_width == -1 || sizes->fb_height == -1) {
drm_info(dev, "Cannot find any crtc or sizes\n");
-
- /* First time: disable all crtc's.. */
- if (!fb_helper->deferred_setup)
- drm_client_modeset_commit(client);
return -EAGAIN;
}
+ return 0;
+}
+
+static int drm_fb_helper_find_sizes(struct drm_fb_helper *fb_helper,
+ struct drm_fb_helper_surface_size *sizes)
+{
+ struct drm_client_dev *client = &fb_helper->client;
+ struct drm_device *dev = fb_helper->dev;
+ struct drm_mode_config *config = &dev->mode_config;
+ int ret;
+
+ mutex_lock(&client->modeset_mutex);
+ ret = __drm_fb_helper_find_sizes(fb_helper, sizes);
+ mutex_unlock(&client->modeset_mutex);
+
+ if (ret)
+ return ret;
+
/* Handle our overallocation */
- sizes.surface_height *= drm_fbdev_overalloc;
- sizes.surface_height /= 100;
- if (sizes.surface_height > config->max_height) {
+ sizes->surface_height *= drm_fbdev_overalloc;
+ sizes->surface_height /= 100;
+ if (sizes->surface_height > config->max_height) {
drm_dbg_kms(dev, "Fbdev over-allocation too large; clamping height to %d\n",
config->max_height);
- sizes.surface_height = config->max_height;
+ sizes->surface_height = config->max_height;
+ }
+
+ return 0;
+}
+
+/*
+ * Allocates the backing storage and sets up the fbdev info structure through
+ * the ->fb_probe callback.
+ */
+static int drm_fb_helper_single_fb_probe(struct drm_fb_helper *fb_helper)
+{
+ struct drm_client_dev *client = &fb_helper->client;
+ struct drm_device *dev = fb_helper->dev;
+ struct drm_fb_helper_surface_size sizes;
+ int ret;
+
+ ret = drm_fb_helper_find_sizes(fb_helper, &sizes);
+ if (ret) {
+ /* First time: disable all crtc's.. */
+ if (!fb_helper->deferred_setup)
+ drm_client_modeset_commit(client);
+ return ret;
}
/* push down into drivers */
@@ -1755,6 +2026,11 @@ static int drm_fb_helper_single_fb_probe(struct drm_fb_helper *fb_helper,
return ret;
strcpy(fb_helper->fb->comm, "[fbcon]");
+
+ /* Set the fb info for vgaswitcheroo clients. Does nothing otherwise. */
+ if (dev_is_pci(dev->dev))
+ vga_switcheroo_client_fb_set(to_pci_dev(dev->dev), fb_helper->info);
+
return 0;
}
@@ -1796,12 +2072,9 @@ static void drm_fb_helper_fill_var(struct fb_info *info,
}
info->pseudo_palette = fb_helper->pseudo_palette;
- info->var.xres_virtual = fb->width;
- info->var.yres_virtual = fb->height;
- info->var.bits_per_pixel = drm_format_info_bpp(format, 0);
- info->var.accel_flags = FB_ACCELF_TEXT;
info->var.xoffset = 0;
info->var.yoffset = 0;
+ __fill_var(&info->var, fb);
info->var.activate = FB_ACTIVATE_NOW;
drm_fb_helper_fill_pixel_fmt(&info->var, format);
@@ -1850,7 +2123,7 @@ EXPORT_SYMBOL(drm_fb_helper_fill_info);
/*
* This is a continuation of drm_setup_crtcs() that sets up anything related
* to the framebuffer. During initialization, drm_setup_crtcs() is called before
- * the framebuffer has been allocated (fb_helper->fb and fb_helper->fbdev).
+ * the framebuffer has been allocated (fb_helper->fb and fb_helper->info).
* So, any setup that touches those fields needs to be done here instead of in
* drm_setup_crtcs().
*/
@@ -1858,7 +2131,7 @@ static void drm_setup_crtcs_fb(struct drm_fb_helper *fb_helper)
{
struct drm_client_dev *client = &fb_helper->client;
struct drm_connector_list_iter conn_iter;
- struct fb_info *info = fb_helper->fbdev;
+ struct fb_info *info = fb_helper->info;
unsigned int rotation, sw_rotations = 0;
struct drm_connector *connector;
struct drm_mode_set *modeset;
@@ -1915,8 +2188,7 @@ static void drm_setup_crtcs_fb(struct drm_fb_helper *fb_helper)
/* Note: Drops fb_helper->lock before returning. */
static int
-__drm_fb_helper_initial_config_and_unlock(struct drm_fb_helper *fb_helper,
- int bpp_sel)
+__drm_fb_helper_initial_config_and_unlock(struct drm_fb_helper *fb_helper)
{
struct drm_device *dev = fb_helper->dev;
struct fb_info *info;
@@ -1927,10 +2199,9 @@ __drm_fb_helper_initial_config_and_unlock(struct drm_fb_helper *fb_helper,
height = dev->mode_config.max_height;
drm_client_modeset_probe(&fb_helper->client, width, height);
- ret = drm_fb_helper_single_fb_probe(fb_helper, bpp_sel);
+ ret = drm_fb_helper_single_fb_probe(fb_helper);
if (ret < 0) {
if (ret == -EAGAIN) {
- fb_helper->preferred_bpp = bpp_sel;
fb_helper->deferred_setup = true;
ret = 0;
}
@@ -1942,13 +2213,10 @@ __drm_fb_helper_initial_config_and_unlock(struct drm_fb_helper *fb_helper,
fb_helper->deferred_setup = false;
- info = fb_helper->fbdev;
+ info = fb_helper->info;
info->var.pixclock = 0;
- /* Shamelessly allow physical address leaking to userspace */
-#if IS_ENABLED(CONFIG_DRM_FBDEV_LEAK_PHYS_SMEM)
+
if (!drm_leak_fbdev_smem)
-#endif
- /* don't leak any physical addresses to userspace */
info->flags |= FBINFO_HIDE_SMEM_START;
/* Need to drop locks to avoid recursive deadlock in
@@ -1976,7 +2244,6 @@ __drm_fb_helper_initial_config_and_unlock(struct drm_fb_helper *fb_helper,
/**
* drm_fb_helper_initial_config - setup a sane initial connector configuration
* @fb_helper: fb_helper device struct
- * @bpp_sel: bpp value to use for the framebuffer configuration
*
* Scans the CRTCs and connectors and tries to put together an initial setup.
* At the moment, this is a cloned configuration across all heads with
@@ -2014,7 +2281,7 @@ __drm_fb_helper_initial_config_and_unlock(struct drm_fb_helper *fb_helper,
* RETURNS:
* Zero if everything went ok, nonzero otherwise.
*/
-int drm_fb_helper_initial_config(struct drm_fb_helper *fb_helper, int bpp_sel)
+int drm_fb_helper_initial_config(struct drm_fb_helper *fb_helper)
{
int ret;
@@ -2022,7 +2289,7 @@ int drm_fb_helper_initial_config(struct drm_fb_helper *fb_helper, int bpp_sel)
return 0;
mutex_lock(&fb_helper->lock);
- ret = __drm_fb_helper_initial_config_and_unlock(fb_helper, bpp_sel);
+ ret = __drm_fb_helper_initial_config_and_unlock(fb_helper);
return ret;
}
@@ -2058,8 +2325,7 @@ int drm_fb_helper_hotplug_event(struct drm_fb_helper *fb_helper)
mutex_lock(&fb_helper->lock);
if (fb_helper->deferred_setup) {
- err = __drm_fb_helper_initial_config_and_unlock(fb_helper,
- fb_helper->preferred_bpp);
+ err = __drm_fb_helper_initial_config_and_unlock(fb_helper);
return err;
}
@@ -2077,7 +2343,7 @@ int drm_fb_helper_hotplug_event(struct drm_fb_helper *fb_helper)
drm_setup_crtcs_fb(fb_helper);
mutex_unlock(&fb_helper->lock);
- drm_fb_helper_set_par(fb_helper->fbdev);
+ drm_fb_helper_set_par(fb_helper->info);
return 0;
}
@@ -2103,530 +2369,10 @@ EXPORT_SYMBOL(drm_fb_helper_lastclose);
*
* This function can be used as the
* &drm_mode_config_funcs.output_poll_changed callback for drivers that only
- * need to call drm_fb_helper_hotplug_event().
+ * need to call drm_fbdev.hotplug_event().
*/
void drm_fb_helper_output_poll_changed(struct drm_device *dev)
{
drm_fb_helper_hotplug_event(dev->fb_helper);
}
EXPORT_SYMBOL(drm_fb_helper_output_poll_changed);
-
-/* @user: 1=userspace, 0=fbcon */
-static int drm_fbdev_fb_open(struct fb_info *info, int user)
-{
- struct drm_fb_helper *fb_helper = info->par;
-
- /* No need to take a ref for fbcon because it unbinds on unregister */
- if (user && !try_module_get(fb_helper->dev->driver->fops->owner))
- return -ENODEV;
-
- return 0;
-}
-
-static int drm_fbdev_fb_release(struct fb_info *info, int user)
-{
- struct drm_fb_helper *fb_helper = info->par;
-
- if (user)
- module_put(fb_helper->dev->driver->fops->owner);
-
- return 0;
-}
-
-static void drm_fbdev_cleanup(struct drm_fb_helper *fb_helper)
-{
- struct fb_info *fbi = fb_helper->fbdev;
- void *shadow = NULL;
-
- if (!fb_helper->dev)
- return;
-
- if (fbi) {
- if (fbi->fbdefio)
- fb_deferred_io_cleanup(fbi);
- if (drm_fbdev_use_shadow_fb(fb_helper))
- shadow = fbi->screen_buffer;
- }
-
- drm_fb_helper_fini(fb_helper);
-
- if (shadow)
- vfree(shadow);
- else if (fb_helper->buffer)
- drm_client_buffer_vunmap(fb_helper->buffer);
-
- drm_client_framebuffer_delete(fb_helper->buffer);
-}
-
-static void drm_fbdev_release(struct drm_fb_helper *fb_helper)
-{
- drm_fbdev_cleanup(fb_helper);
- drm_client_release(&fb_helper->client);
- kfree(fb_helper);
-}
-
-/*
- * fb_ops.fb_destroy is called by the last put_fb_info() call at the end of
- * unregister_framebuffer() or fb_release().
- */
-static void drm_fbdev_fb_destroy(struct fb_info *info)
-{
- drm_fbdev_release(info->par);
-}
-
-static int drm_fbdev_fb_mmap(struct fb_info *info, struct vm_area_struct *vma)
-{
- struct drm_fb_helper *fb_helper = info->par;
-
- if (drm_fbdev_use_shadow_fb(fb_helper))
- return fb_deferred_io_mmap(info, vma);
- else if (fb_helper->dev->driver->gem_prime_mmap)
- return fb_helper->dev->driver->gem_prime_mmap(fb_helper->buffer->gem, vma);
- else
- return -ENODEV;
-}
-
-static bool drm_fbdev_use_iomem(struct fb_info *info)
-{
- struct drm_fb_helper *fb_helper = info->par;
- struct drm_client_buffer *buffer = fb_helper->buffer;
-
- return !drm_fbdev_use_shadow_fb(fb_helper) && buffer->map.is_iomem;
-}
-
-static ssize_t fb_read_screen_base(struct fb_info *info, char __user *buf, size_t count,
- loff_t pos)
-{
- const char __iomem *src = info->screen_base + pos;
- size_t alloc_size = min_t(size_t, count, PAGE_SIZE);
- ssize_t ret = 0;
- int err = 0;
- char *tmp;
-
- tmp = kmalloc(alloc_size, GFP_KERNEL);
- if (!tmp)
- return -ENOMEM;
-
- while (count) {
- size_t c = min_t(size_t, count, alloc_size);
-
- memcpy_fromio(tmp, src, c);
- if (copy_to_user(buf, tmp, c)) {
- err = -EFAULT;
- break;
- }
-
- src += c;
- buf += c;
- ret += c;
- count -= c;
- }
-
- kfree(tmp);
-
- return ret ? ret : err;
-}
-
-static ssize_t fb_read_screen_buffer(struct fb_info *info, char __user *buf, size_t count,
- loff_t pos)
-{
- const char *src = info->screen_buffer + pos;
-
- if (copy_to_user(buf, src, count))
- return -EFAULT;
-
- return count;
-}
-
-static ssize_t drm_fbdev_fb_read(struct fb_info *info, char __user *buf,
- size_t count, loff_t *ppos)
-{
- loff_t pos = *ppos;
- size_t total_size;
- ssize_t ret;
-
- if (info->screen_size)
- total_size = info->screen_size;
- else
- total_size = info->fix.smem_len;
-
- if (pos >= total_size)
- return 0;
- if (count >= total_size)
- count = total_size;
- if (total_size - count < pos)
- count = total_size - pos;
-
- if (drm_fbdev_use_iomem(info))
- ret = fb_read_screen_base(info, buf, count, pos);
- else
- ret = fb_read_screen_buffer(info, buf, count, pos);
-
- if (ret > 0)
- *ppos += ret;
-
- return ret;
-}
-
-static ssize_t fb_write_screen_base(struct fb_info *info, const char __user *buf, size_t count,
- loff_t pos)
-{
- char __iomem *dst = info->screen_base + pos;
- size_t alloc_size = min_t(size_t, count, PAGE_SIZE);
- ssize_t ret = 0;
- int err = 0;
- u8 *tmp;
-
- tmp = kmalloc(alloc_size, GFP_KERNEL);
- if (!tmp)
- return -ENOMEM;
-
- while (count) {
- size_t c = min_t(size_t, count, alloc_size);
-
- if (copy_from_user(tmp, buf, c)) {
- err = -EFAULT;
- break;
- }
- memcpy_toio(dst, tmp, c);
-
- dst += c;
- buf += c;
- ret += c;
- count -= c;
- }
-
- kfree(tmp);
-
- return ret ? ret : err;
-}
-
-static ssize_t fb_write_screen_buffer(struct fb_info *info, const char __user *buf, size_t count,
- loff_t pos)
-{
- char *dst = info->screen_buffer + pos;
-
- if (copy_from_user(dst, buf, count))
- return -EFAULT;
-
- return count;
-}
-
-static ssize_t drm_fbdev_fb_write(struct fb_info *info, const char __user *buf,
- size_t count, loff_t *ppos)
-{
- loff_t pos = *ppos;
- size_t total_size;
- ssize_t ret;
- struct drm_rect damage_area;
- int err = 0;
-
- if (info->screen_size)
- total_size = info->screen_size;
- else
- total_size = info->fix.smem_len;
-
- if (pos > total_size)
- return -EFBIG;
- if (count > total_size) {
- err = -EFBIG;
- count = total_size;
- }
- if (total_size - count < pos) {
- if (!err)
- err = -ENOSPC;
- count = total_size - pos;
- }
-
- /*
- * Copy to framebuffer even if we already logged an error. Emulates
- * the behavior of the original fbdev implementation.
- */
- if (drm_fbdev_use_iomem(info))
- ret = fb_write_screen_base(info, buf, count, pos);
- else
- ret = fb_write_screen_buffer(info, buf, count, pos);
-
- if (ret < 0)
- return ret; /* return last error, if any */
- else if (!ret)
- return err; /* return previous error, if any */
-
- *ppos += ret;
-
- drm_fb_helper_memory_range_to_clip(info, pos, ret, &damage_area);
- drm_fb_helper_damage(info, damage_area.x1, damage_area.y1,
- drm_rect_width(&damage_area),
- drm_rect_height(&damage_area));
-
- return ret;
-}
-
-static void drm_fbdev_fb_fillrect(struct fb_info *info,
- const struct fb_fillrect *rect)
-{
- if (drm_fbdev_use_iomem(info))
- drm_fb_helper_cfb_fillrect(info, rect);
- else
- drm_fb_helper_sys_fillrect(info, rect);
-}
-
-static void drm_fbdev_fb_copyarea(struct fb_info *info,
- const struct fb_copyarea *area)
-{
- if (drm_fbdev_use_iomem(info))
- drm_fb_helper_cfb_copyarea(info, area);
- else
- drm_fb_helper_sys_copyarea(info, area);
-}
-
-static void drm_fbdev_fb_imageblit(struct fb_info *info,
- const struct fb_image *image)
-{
- if (drm_fbdev_use_iomem(info))
- drm_fb_helper_cfb_imageblit(info, image);
- else
- drm_fb_helper_sys_imageblit(info, image);
-}
-
-static const struct fb_ops drm_fbdev_fb_ops = {
- .owner = THIS_MODULE,
- DRM_FB_HELPER_DEFAULT_OPS,
- .fb_open = drm_fbdev_fb_open,
- .fb_release = drm_fbdev_fb_release,
- .fb_destroy = drm_fbdev_fb_destroy,
- .fb_mmap = drm_fbdev_fb_mmap,
- .fb_read = drm_fbdev_fb_read,
- .fb_write = drm_fbdev_fb_write,
- .fb_fillrect = drm_fbdev_fb_fillrect,
- .fb_copyarea = drm_fbdev_fb_copyarea,
- .fb_imageblit = drm_fbdev_fb_imageblit,
-};
-
-static struct fb_deferred_io drm_fbdev_defio = {
- .delay = HZ / 20,
- .deferred_io = drm_fb_helper_deferred_io,
-};
-
-/*
- * This function uses the client API to create a framebuffer backed by a dumb buffer.
- *
- * The _sys_ versions are used for &fb_ops.fb_read, fb_write, fb_fillrect,
- * fb_copyarea, fb_imageblit.
- */
-static int drm_fb_helper_generic_probe(struct drm_fb_helper *fb_helper,
- struct drm_fb_helper_surface_size *sizes)
-{
- struct drm_client_dev *client = &fb_helper->client;
- struct drm_device *dev = fb_helper->dev;
- struct drm_client_buffer *buffer;
- struct drm_framebuffer *fb;
- struct fb_info *fbi;
- u32 format;
- struct iosys_map map;
- int ret;
-
- drm_dbg_kms(dev, "surface width(%d), height(%d) and bpp(%d)\n",
- sizes->surface_width, sizes->surface_height,
- sizes->surface_bpp);
-
- format = drm_mode_legacy_fb_format(sizes->surface_bpp, sizes->surface_depth);
- buffer = drm_client_framebuffer_create(client, sizes->surface_width,
- sizes->surface_height, format);
- if (IS_ERR(buffer))
- return PTR_ERR(buffer);
-
- fb_helper->buffer = buffer;
- fb_helper->fb = buffer->fb;
- fb = buffer->fb;
-
- fbi = drm_fb_helper_alloc_fbi(fb_helper);
- if (IS_ERR(fbi))
- return PTR_ERR(fbi);
-
- fbi->fbops = &drm_fbdev_fb_ops;
- fbi->screen_size = sizes->surface_height * fb->pitches[0];
- fbi->fix.smem_len = fbi->screen_size;
- fbi->flags = FBINFO_DEFAULT;
-
- drm_fb_helper_fill_info(fbi, fb_helper, sizes);
-
- if (drm_fbdev_use_shadow_fb(fb_helper)) {
- fbi->screen_buffer = vzalloc(fbi->screen_size);
- if (!fbi->screen_buffer)
- return -ENOMEM;
- fbi->flags |= FBINFO_VIRTFB | FBINFO_READS_FAST;
-
- fbi->fbdefio = &drm_fbdev_defio;
- fb_deferred_io_init(fbi);
- } else {
- /* buffer is mapped for HW framebuffer */
- ret = drm_client_buffer_vmap(fb_helper->buffer, &map);
- if (ret)
- return ret;
- if (map.is_iomem) {
- fbi->screen_base = map.vaddr_iomem;
- } else {
- fbi->screen_buffer = map.vaddr;
- fbi->flags |= FBINFO_VIRTFB;
- }
-
- /*
- * Shamelessly leak the physical address to user-space. As
- * page_to_phys() is undefined for I/O memory, warn in this
- * case.
- */
-#if IS_ENABLED(CONFIG_DRM_FBDEV_LEAK_PHYS_SMEM)
- if (drm_leak_fbdev_smem && fbi->fix.smem_start == 0 &&
- !drm_WARN_ON_ONCE(dev, map.is_iomem))
- fbi->fix.smem_start =
- page_to_phys(virt_to_page(fbi->screen_buffer));
-#endif
- }
-
- return 0;
-}
-
-static const struct drm_fb_helper_funcs drm_fb_helper_generic_funcs = {
- .fb_probe = drm_fb_helper_generic_probe,
-};
-
-static void drm_fbdev_client_unregister(struct drm_client_dev *client)
-{
- struct drm_fb_helper *fb_helper = drm_fb_helper_from_client(client);
-
- if (fb_helper->fbdev)
- /* drm_fbdev_fb_destroy() takes care of cleanup */
- drm_fb_helper_unregister_fbi(fb_helper);
- else
- drm_fbdev_release(fb_helper);
-}
-
-static int drm_fbdev_client_restore(struct drm_client_dev *client)
-{
- drm_fb_helper_lastclose(client->dev);
-
- return 0;
-}
-
-static int drm_fbdev_client_hotplug(struct drm_client_dev *client)
-{
- struct drm_fb_helper *fb_helper = drm_fb_helper_from_client(client);
- struct drm_device *dev = client->dev;
- int ret;
-
- /* Setup is not retried if it has failed */
- if (!fb_helper->dev && fb_helper->funcs)
- return 0;
-
- if (dev->fb_helper)
- return drm_fb_helper_hotplug_event(dev->fb_helper);
-
- if (!dev->mode_config.num_connector) {
- drm_dbg_kms(dev, "No connectors found, will not create framebuffer!\n");
- return 0;
- }
-
- drm_fb_helper_prepare(dev, fb_helper, &drm_fb_helper_generic_funcs);
-
- ret = drm_fb_helper_init(dev, fb_helper);
- if (ret)
- goto err;
-
- if (!drm_drv_uses_atomic_modeset(dev))
- drm_helper_disable_unused_functions(dev);
-
- ret = drm_fb_helper_initial_config(fb_helper, fb_helper->preferred_bpp);
- if (ret)
- goto err_cleanup;
-
- return 0;
-
-err_cleanup:
- drm_fbdev_cleanup(fb_helper);
-err:
- fb_helper->dev = NULL;
- fb_helper->fbdev = NULL;
-
- drm_err(dev, "fbdev: Failed to setup generic emulation (ret=%d)\n", ret);
-
- return ret;
-}
-
-static const struct drm_client_funcs drm_fbdev_client_funcs = {
- .owner = THIS_MODULE,
- .unregister = drm_fbdev_client_unregister,
- .restore = drm_fbdev_client_restore,
- .hotplug = drm_fbdev_client_hotplug,
-};
-
-/**
- * drm_fbdev_generic_setup() - Setup generic fbdev emulation
- * @dev: DRM device
- * @preferred_bpp: Preferred bits per pixel for the device.
- * @dev->mode_config.preferred_depth is used if this is zero.
- *
- * This function sets up generic fbdev emulation for drivers that supports
- * dumb buffers with a virtual address and that can be mmap'ed.
- * drm_fbdev_generic_setup() shall be called after the DRM driver registered
- * the new DRM device with drm_dev_register().
- *
- * Restore, hotplug events and teardown are all taken care of. Drivers that do
- * suspend/resume need to call drm_fb_helper_set_suspend_unlocked() themselves.
- * Simple drivers might use drm_mode_config_helper_suspend().
- *
- * Drivers that set the dirty callback on their framebuffer will get a shadow
- * fbdev buffer that is blitted onto the real buffer. This is done in order to
- * make deferred I/O work with all kinds of buffers. A shadow buffer can be
- * requested explicitly by setting struct drm_mode_config.prefer_shadow or
- * struct drm_mode_config.prefer_shadow_fbdev to true beforehand. This is
- * required to use generic fbdev emulation with SHMEM helpers.
- *
- * This function is safe to call even when there are no connectors present.
- * Setup will be retried on the next hotplug event.
- *
- * The fbdev is destroyed by drm_dev_unregister().
- */
-void drm_fbdev_generic_setup(struct drm_device *dev,
- unsigned int preferred_bpp)
-{
- struct drm_fb_helper *fb_helper;
- int ret;
-
- drm_WARN(dev, !dev->registered, "Device has not been registered.\n");
- drm_WARN(dev, dev->fb_helper, "fb_helper is already set!\n");
-
- if (!drm_fbdev_emulation)
- return;
-
- fb_helper = kzalloc(sizeof(*fb_helper), GFP_KERNEL);
- if (!fb_helper) {
- drm_err(dev, "Failed to allocate fb_helper\n");
- return;
- }
-
- ret = drm_client_init(dev, &fb_helper->client, "fbdev", &drm_fbdev_client_funcs);
- if (ret) {
- kfree(fb_helper);
- drm_err(dev, "Failed to register client: %d\n", ret);
- return;
- }
-
- /*
- * FIXME: This mixes up depth with bpp, which results in a glorious
- * mess, resulting in some drivers picking wrong fbdev defaults and
- * others wrong preferred_depth defaults.
- */
- if (!preferred_bpp)
- preferred_bpp = dev->mode_config.preferred_depth;
- if (!preferred_bpp)
- preferred_bpp = 32;
- fb_helper->preferred_bpp = preferred_bpp;
-
- ret = drm_fbdev_client_hotplug(&fb_helper->client);
- if (ret)
- drm_dbg_kms(dev, "client hotplug ret=%d\n", ret);
-
- drm_client_register(&fb_helper->client);
-}
-EXPORT_SYMBOL(drm_fbdev_generic_setup);
diff --git a/drivers/gpu/drm/drm_fbdev_dma.c b/drivers/gpu/drm/drm_fbdev_dma.c
new file mode 100644
index 000000000000..728deffcc0d9
--- /dev/null
+++ b/drivers/gpu/drm/drm_fbdev_dma.c
@@ -0,0 +1,268 @@
+// SPDX-License-Identifier: MIT
+
+#include <drm/drm_crtc_helper.h>
+#include <drm/drm_drv.h>
+#include <drm/drm_fb_helper.h>
+#include <drm/drm_framebuffer.h>
+#include <drm/drm_gem_dma_helper.h>
+
+#include <drm/drm_fbdev_dma.h>
+
+/*
+ * struct fb_ops
+ */
+
+static int drm_fbdev_dma_fb_open(struct fb_info *info, int user)
+{
+ struct drm_fb_helper *fb_helper = info->par;
+
+ /* No need to take a ref for fbcon because it unbinds on unregister */
+ if (user && !try_module_get(fb_helper->dev->driver->fops->owner))
+ return -ENODEV;
+
+ return 0;
+}
+
+static int drm_fbdev_dma_fb_release(struct fb_info *info, int user)
+{
+ struct drm_fb_helper *fb_helper = info->par;
+
+ if (user)
+ module_put(fb_helper->dev->driver->fops->owner);
+
+ return 0;
+}
+
+static void drm_fbdev_dma_fb_destroy(struct fb_info *info)
+{
+ struct drm_fb_helper *fb_helper = info->par;
+
+ if (!fb_helper->dev)
+ return;
+
+ drm_fb_helper_fini(fb_helper);
+
+ drm_client_buffer_vunmap(fb_helper->buffer);
+ drm_client_framebuffer_delete(fb_helper->buffer);
+ drm_client_release(&fb_helper->client);
+ drm_fb_helper_unprepare(fb_helper);
+ kfree(fb_helper);
+}
+
+static int drm_fbdev_dma_fb_mmap(struct fb_info *info, struct vm_area_struct *vma)
+{
+ struct drm_fb_helper *fb_helper = info->par;
+ struct drm_device *dev = fb_helper->dev;
+
+ if (drm_WARN_ON_ONCE(dev, !fb_helper->dev->driver->gem_prime_mmap))
+ return -ENODEV;
+
+ return fb_helper->dev->driver->gem_prime_mmap(fb_helper->buffer->gem, vma);
+}
+
+static const struct fb_ops drm_fbdev_dma_fb_ops = {
+ .owner = THIS_MODULE,
+ .fb_open = drm_fbdev_dma_fb_open,
+ .fb_release = drm_fbdev_dma_fb_release,
+ .fb_read = drm_fb_helper_sys_read,
+ .fb_write = drm_fb_helper_sys_write,
+ DRM_FB_HELPER_DEFAULT_OPS,
+ .fb_fillrect = drm_fb_helper_sys_fillrect,
+ .fb_copyarea = drm_fb_helper_sys_copyarea,
+ .fb_imageblit = drm_fb_helper_sys_imageblit,
+ .fb_destroy = drm_fbdev_dma_fb_destroy,
+ .fb_mmap = drm_fbdev_dma_fb_mmap,
+};
+
+/*
+ * struct drm_fb_helper
+ */
+
+static int drm_fbdev_dma_helper_fb_probe(struct drm_fb_helper *fb_helper,
+ struct drm_fb_helper_surface_size *sizes)
+{
+ struct drm_client_dev *client = &fb_helper->client;
+ struct drm_device *dev = fb_helper->dev;
+ struct drm_client_buffer *buffer;
+ struct drm_gem_dma_object *dma_obj;
+ struct drm_framebuffer *fb;
+ struct fb_info *info;
+ u32 format;
+ struct iosys_map map;
+ int ret;
+
+ drm_dbg_kms(dev, "surface width(%d), height(%d) and bpp(%d)\n",
+ sizes->surface_width, sizes->surface_height,
+ sizes->surface_bpp);
+
+ format = drm_mode_legacy_fb_format(sizes->surface_bpp, sizes->surface_depth);
+ buffer = drm_client_framebuffer_create(client, sizes->surface_width,
+ sizes->surface_height, format);
+ if (IS_ERR(buffer))
+ return PTR_ERR(buffer);
+ dma_obj = to_drm_gem_dma_obj(buffer->gem);
+
+ fb = buffer->fb;
+ if (drm_WARN_ON(dev, fb->funcs->dirty)) {
+ ret = -ENODEV; /* damage handling not supported; use generic emulation */
+ goto err_drm_client_buffer_delete;
+ }
+
+ ret = drm_client_buffer_vmap(buffer, &map);
+ if (ret) {
+ goto err_drm_client_buffer_delete;
+ } else if (drm_WARN_ON(dev, map.is_iomem)) {
+ ret = -ENODEV; /* I/O memory not supported; use generic emulation */
+ goto err_drm_client_buffer_delete;
+ }
+
+ fb_helper->buffer = buffer;
+ fb_helper->fb = buffer->fb;
+
+ info = drm_fb_helper_alloc_info(fb_helper);
+ if (IS_ERR(info)) {
+ ret = PTR_ERR(info);
+ goto err_drm_client_buffer_vunmap;
+ }
+
+ drm_fb_helper_fill_info(info, fb_helper, sizes);
+
+ info->fbops = &drm_fbdev_dma_fb_ops;
+ info->flags = FBINFO_DEFAULT;
+
+ /* screen */
+ info->flags |= FBINFO_VIRTFB; /* system memory */
+ if (dma_obj->map_noncoherent)
+ info->flags |= FBINFO_READS_FAST; /* signal caching */
+ info->screen_size = sizes->surface_height * fb->pitches[0];
+ info->screen_buffer = map.vaddr;
+ info->fix.smem_start = page_to_phys(virt_to_page(info->screen_buffer));
+ info->fix.smem_len = info->screen_size;
+
+ return 0;
+
+err_drm_client_buffer_vunmap:
+ fb_helper->fb = NULL;
+ fb_helper->buffer = NULL;
+ drm_client_buffer_vunmap(buffer);
+err_drm_client_buffer_delete:
+ drm_client_framebuffer_delete(buffer);
+ return ret;
+}
+
+static const struct drm_fb_helper_funcs drm_fbdev_dma_helper_funcs = {
+ .fb_probe = drm_fbdev_dma_helper_fb_probe,
+};
+
+/*
+ * struct drm_client_funcs
+ */
+
+static void drm_fbdev_dma_client_unregister(struct drm_client_dev *client)
+{
+ struct drm_fb_helper *fb_helper = drm_fb_helper_from_client(client);
+
+ if (fb_helper->info) {
+ drm_fb_helper_unregister_info(fb_helper);
+ } else {
+ drm_client_release(&fb_helper->client);
+ drm_fb_helper_unprepare(fb_helper);
+ kfree(fb_helper);
+ }
+}
+
+static int drm_fbdev_dma_client_restore(struct drm_client_dev *client)
+{
+ drm_fb_helper_lastclose(client->dev);
+
+ return 0;
+}
+
+static int drm_fbdev_dma_client_hotplug(struct drm_client_dev *client)
+{
+ struct drm_fb_helper *fb_helper = drm_fb_helper_from_client(client);
+ struct drm_device *dev = client->dev;
+ int ret;
+
+ if (dev->fb_helper)
+ return drm_fb_helper_hotplug_event(dev->fb_helper);
+
+ ret = drm_fb_helper_init(dev, fb_helper);
+ if (ret)
+ goto err_drm_err;
+
+ if (!drm_drv_uses_atomic_modeset(dev))
+ drm_helper_disable_unused_functions(dev);
+
+ ret = drm_fb_helper_initial_config(fb_helper);
+ if (ret)
+ goto err_drm_fb_helper_fini;
+
+ return 0;
+
+err_drm_fb_helper_fini:
+ drm_fb_helper_fini(fb_helper);
+err_drm_err:
+ drm_err(dev, "fbdev-dma: Failed to setup generic emulation (ret=%d)\n", ret);
+ return ret;
+}
+
+static const struct drm_client_funcs drm_fbdev_dma_client_funcs = {
+ .owner = THIS_MODULE,
+ .unregister = drm_fbdev_dma_client_unregister,
+ .restore = drm_fbdev_dma_client_restore,
+ .hotplug = drm_fbdev_dma_client_hotplug,
+};
+
+/**
+ * drm_fbdev_dma_setup() - Setup fbdev emulation for GEM DMA helpers
+ * @dev: DRM device
+ * @preferred_bpp: Preferred bits per pixel for the device.
+ * @dev->mode_config.preferred_depth is used if this is zero.
+ *
+ * This function sets up fbdev emulation for GEM DMA drivers that support
+ * dumb buffers with a virtual address and that can be mmap'ed.
+ * drm_fbdev_dma_setup() shall be called after the DRM driver registered
+ * the new DRM device with drm_dev_register().
+ *
+ * Restore, hotplug events and teardown are all taken care of. Drivers that do
+ * suspend/resume need to call drm_fb_helper_set_suspend_unlocked() themselves.
+ * Simple drivers might use drm_mode_config_helper_suspend().
+ *
+ * This function is safe to call even when there are no connectors present.
+ * Setup will be retried on the next hotplug event.
+ *
+ * The fbdev is destroyed by drm_dev_unregister().
+ */
+void drm_fbdev_dma_setup(struct drm_device *dev, unsigned int preferred_bpp)
+{
+ struct drm_fb_helper *fb_helper;
+ int ret;
+
+ drm_WARN(dev, !dev->registered, "Device has not been registered.\n");
+ drm_WARN(dev, dev->fb_helper, "fb_helper is already set!\n");
+
+ fb_helper = kzalloc(sizeof(*fb_helper), GFP_KERNEL);
+ if (!fb_helper)
+ return;
+ drm_fb_helper_prepare(dev, fb_helper, preferred_bpp, &drm_fbdev_dma_helper_funcs);
+
+ ret = drm_client_init(dev, &fb_helper->client, "fbdev", &drm_fbdev_dma_client_funcs);
+ if (ret) {
+ drm_err(dev, "Failed to register client: %d\n", ret);
+ goto err_drm_client_init;
+ }
+
+ ret = drm_fbdev_dma_client_hotplug(&fb_helper->client);
+ if (ret)
+ drm_dbg_kms(dev, "client hotplug ret=%d\n", ret);
+
+ drm_client_register(&fb_helper->client);
+
+ return;
+
+err_drm_client_init:
+ drm_fb_helper_unprepare(fb_helper);
+ kfree(fb_helper);
+}
+EXPORT_SYMBOL(drm_fbdev_dma_setup);
diff --git a/drivers/gpu/drm/drm_fbdev_generic.c b/drivers/gpu/drm/drm_fbdev_generic.c
new file mode 100644
index 000000000000..8e5148bf40bb
--- /dev/null
+++ b/drivers/gpu/drm/drm_fbdev_generic.c
@@ -0,0 +1,356 @@
+// SPDX-License-Identifier: MIT
+
+#include <linux/moduleparam.h>
+#include <linux/vmalloc.h>
+
+#include <drm/drm_crtc_helper.h>
+#include <drm/drm_drv.h>
+#include <drm/drm_fb_helper.h>
+#include <drm/drm_framebuffer.h>
+#include <drm/drm_gem.h>
+#include <drm/drm_print.h>
+
+#include <drm/drm_fbdev_generic.h>
+
+/* @user: 1=userspace, 0=fbcon */
+static int drm_fbdev_generic_fb_open(struct fb_info *info, int user)
+{
+ struct drm_fb_helper *fb_helper = info->par;
+
+ /* No need to take a ref for fbcon because it unbinds on unregister */
+ if (user && !try_module_get(fb_helper->dev->driver->fops->owner))
+ return -ENODEV;
+
+ return 0;
+}
+
+static int drm_fbdev_generic_fb_release(struct fb_info *info, int user)
+{
+ struct drm_fb_helper *fb_helper = info->par;
+
+ if (user)
+ module_put(fb_helper->dev->driver->fops->owner);
+
+ return 0;
+}
+
+static void drm_fbdev_generic_fb_destroy(struct fb_info *info)
+{
+ struct drm_fb_helper *fb_helper = info->par;
+ void *shadow = info->screen_buffer;
+
+ if (!fb_helper->dev)
+ return;
+
+ fb_deferred_io_cleanup(info);
+ drm_fb_helper_fini(fb_helper);
+ vfree(shadow);
+ drm_client_framebuffer_delete(fb_helper->buffer);
+
+ drm_client_release(&fb_helper->client);
+ drm_fb_helper_unprepare(fb_helper);
+ kfree(fb_helper);
+}
+
+static const struct fb_ops drm_fbdev_generic_fb_ops = {
+ .owner = THIS_MODULE,
+ .fb_open = drm_fbdev_generic_fb_open,
+ .fb_release = drm_fbdev_generic_fb_release,
+ .fb_read = drm_fb_helper_sys_read,
+ .fb_write = drm_fb_helper_sys_write,
+ DRM_FB_HELPER_DEFAULT_OPS,
+ .fb_fillrect = drm_fb_helper_sys_fillrect,
+ .fb_copyarea = drm_fb_helper_sys_copyarea,
+ .fb_imageblit = drm_fb_helper_sys_imageblit,
+ .fb_mmap = fb_deferred_io_mmap,
+ .fb_destroy = drm_fbdev_generic_fb_destroy,
+};
+
+/*
+ * This function uses the client API to create a framebuffer backed by a dumb buffer.
+ */
+static int drm_fbdev_generic_helper_fb_probe(struct drm_fb_helper *fb_helper,
+ struct drm_fb_helper_surface_size *sizes)
+{
+ struct drm_client_dev *client = &fb_helper->client;
+ struct drm_device *dev = fb_helper->dev;
+ struct drm_client_buffer *buffer;
+ struct fb_info *info;
+ size_t screen_size;
+ void *screen_buffer;
+ u32 format;
+ int ret;
+
+ drm_dbg_kms(dev, "surface width(%d), height(%d) and bpp(%d)\n",
+ sizes->surface_width, sizes->surface_height,
+ sizes->surface_bpp);
+
+ format = drm_mode_legacy_fb_format(sizes->surface_bpp, sizes->surface_depth);
+ buffer = drm_client_framebuffer_create(client, sizes->surface_width,
+ sizes->surface_height, format);
+ if (IS_ERR(buffer))
+ return PTR_ERR(buffer);
+
+ fb_helper->buffer = buffer;
+ fb_helper->fb = buffer->fb;
+
+ screen_size = buffer->gem->size;
+ screen_buffer = vzalloc(screen_size);
+ if (!screen_buffer) {
+ ret = -ENOMEM;
+ goto err_drm_client_framebuffer_delete;
+ }
+
+ info = drm_fb_helper_alloc_info(fb_helper);
+ if (IS_ERR(info)) {
+ ret = PTR_ERR(info);
+ goto err_vfree;
+ }
+
+ drm_fb_helper_fill_info(info, fb_helper, sizes);
+
+ info->fbops = &drm_fbdev_generic_fb_ops;
+ info->flags = FBINFO_DEFAULT;
+
+ /* screen */
+ info->flags |= FBINFO_VIRTFB | FBINFO_READS_FAST;
+ info->screen_buffer = screen_buffer;
+ info->fix.smem_start = page_to_phys(vmalloc_to_page(info->screen_buffer));
+ info->fix.smem_len = screen_size;
+
+ /* deferred I/O */
+ fb_helper->fbdefio.delay = HZ / 20;
+ fb_helper->fbdefio.deferred_io = drm_fb_helper_deferred_io;
+
+ info->fbdefio = &fb_helper->fbdefio;
+ ret = fb_deferred_io_init(info);
+ if (ret)
+ goto err_drm_fb_helper_release_info;
+
+ return 0;
+
+err_drm_fb_helper_release_info:
+ drm_fb_helper_release_info(fb_helper);
+err_vfree:
+ vfree(screen_buffer);
+err_drm_client_framebuffer_delete:
+ fb_helper->fb = NULL;
+ fb_helper->buffer = NULL;
+ drm_client_framebuffer_delete(buffer);
+ return ret;
+}
+
+static void drm_fbdev_generic_damage_blit_real(struct drm_fb_helper *fb_helper,
+ struct drm_clip_rect *clip,
+ struct iosys_map *dst)
+{
+ struct drm_framebuffer *fb = fb_helper->fb;
+ size_t offset = clip->y1 * fb->pitches[0];
+ size_t len = clip->x2 - clip->x1;
+ unsigned int y;
+ void *src;
+
+ switch (drm_format_info_bpp(fb->format, 0)) {
+ case 1:
+ offset += clip->x1 / 8;
+ len = DIV_ROUND_UP(len + clip->x1 % 8, 8);
+ break;
+ case 2:
+ offset += clip->x1 / 4;
+ len = DIV_ROUND_UP(len + clip->x1 % 4, 4);
+ break;
+ case 4:
+ offset += clip->x1 / 2;
+ len = DIV_ROUND_UP(len + clip->x1 % 2, 2);
+ break;
+ default:
+ offset += clip->x1 * fb->format->cpp[0];
+ len *= fb->format->cpp[0];
+ break;
+ }
+
+ src = fb_helper->info->screen_buffer + offset;
+ iosys_map_incr(dst, offset); /* go to first pixel within clip rect */
+
+ for (y = clip->y1; y < clip->y2; y++) {
+ iosys_map_memcpy_to(dst, 0, src, len);
+ iosys_map_incr(dst, fb->pitches[0]);
+ src += fb->pitches[0];
+ }
+}
+
+static int drm_fbdev_generic_damage_blit(struct drm_fb_helper *fb_helper,
+ struct drm_clip_rect *clip)
+{
+ struct drm_client_buffer *buffer = fb_helper->buffer;
+ struct iosys_map map, dst;
+ int ret;
+
+ /*
+ * We have to pin the client buffer to its current location while
+ * flushing the shadow buffer. In the general case, concurrent
+ * modesetting operations could try to move the buffer and would
+ * fail. The modeset has to be serialized by acquiring the reservation
+ * object of the underlying BO here.
+ *
+ * For fbdev emulation, we only have to protect against fbdev modeset
+ * operations. Nothing else will involve the client buffer's BO. So it
+ * is sufficient to acquire struct drm_fb_helper.lock here.
+ */
+ mutex_lock(&fb_helper->lock);
+
+ ret = drm_client_buffer_vmap(buffer, &map);
+ if (ret)
+ goto out;
+
+ dst = map;
+ drm_fbdev_generic_damage_blit_real(fb_helper, clip, &dst);
+
+ drm_client_buffer_vunmap(buffer);
+
+out:
+ mutex_unlock(&fb_helper->lock);
+
+ return ret;
+}
+
+static int drm_fbdev_generic_helper_fb_dirty(struct drm_fb_helper *helper,
+ struct drm_clip_rect *clip)
+{
+ struct drm_device *dev = helper->dev;
+ int ret;
+
+ /* Call damage handlers only if necessary */
+ if (!(clip->x1 < clip->x2 && clip->y1 < clip->y2))
+ return 0;
+
+ ret = drm_fbdev_generic_damage_blit(helper, clip);
+ if (drm_WARN_ONCE(dev, ret, "Damage blitter failed: ret=%d\n", ret))
+ return ret;
+
+ if (helper->fb->funcs->dirty) {
+ ret = helper->fb->funcs->dirty(helper->fb, NULL, 0, 0, clip, 1);
+ if (drm_WARN_ONCE(dev, ret, "Dirty helper failed: ret=%d\n", ret))
+ return ret;
+ }
+
+ return 0;
+}
+
+static const struct drm_fb_helper_funcs drm_fbdev_generic_helper_funcs = {
+ .fb_probe = drm_fbdev_generic_helper_fb_probe,
+ .fb_dirty = drm_fbdev_generic_helper_fb_dirty,
+};
+
+static void drm_fbdev_generic_client_unregister(struct drm_client_dev *client)
+{
+ struct drm_fb_helper *fb_helper = drm_fb_helper_from_client(client);
+
+ if (fb_helper->info) {
+ drm_fb_helper_unregister_info(fb_helper);
+ } else {
+ drm_client_release(&fb_helper->client);
+ drm_fb_helper_unprepare(fb_helper);
+ kfree(fb_helper);
+ }
+}
+
+static int drm_fbdev_generic_client_restore(struct drm_client_dev *client)
+{
+ drm_fb_helper_lastclose(client->dev);
+
+ return 0;
+}
+
+static int drm_fbdev_generic_client_hotplug(struct drm_client_dev *client)
+{
+ struct drm_fb_helper *fb_helper = drm_fb_helper_from_client(client);
+ struct drm_device *dev = client->dev;
+ int ret;
+
+ if (dev->fb_helper)
+ return drm_fb_helper_hotplug_event(dev->fb_helper);
+
+ ret = drm_fb_helper_init(dev, fb_helper);
+ if (ret)
+ goto err_drm_err;
+
+ if (!drm_drv_uses_atomic_modeset(dev))
+ drm_helper_disable_unused_functions(dev);
+
+ ret = drm_fb_helper_initial_config(fb_helper);
+ if (ret)
+ goto err_drm_fb_helper_fini;
+
+ return 0;
+
+err_drm_fb_helper_fini:
+ drm_fb_helper_fini(fb_helper);
+err_drm_err:
+ drm_err(dev, "fbdev: Failed to setup generic emulation (ret=%d)\n", ret);
+ return ret;
+}
+
+static const struct drm_client_funcs drm_fbdev_generic_client_funcs = {
+ .owner = THIS_MODULE,
+ .unregister = drm_fbdev_generic_client_unregister,
+ .restore = drm_fbdev_generic_client_restore,
+ .hotplug = drm_fbdev_generic_client_hotplug,
+};
+
+/**
+ * drm_fbdev_generic_setup() - Setup generic fbdev emulation
+ * @dev: DRM device
+ * @preferred_bpp: Preferred bits per pixel for the device.
+ *
+ * This function sets up generic fbdev emulation for drivers that supports
+ * dumb buffers with a virtual address and that can be mmap'ed.
+ * drm_fbdev_generic_setup() shall be called after the DRM driver registered
+ * the new DRM device with drm_dev_register().
+ *
+ * Restore, hotplug events and teardown are all taken care of. Drivers that do
+ * suspend/resume need to call drm_fb_helper_set_suspend_unlocked() themselves.
+ * Simple drivers might use drm_mode_config_helper_suspend().
+ *
+ * In order to provide fixed mmap-able memory ranges, generic fbdev emulation
+ * uses a shadow buffer in system memory. The implementation blits the shadow
+ * fbdev buffer onto the real buffer in regular intervals.
+ *
+ * This function is safe to call even when there are no connectors present.
+ * Setup will be retried on the next hotplug event.
+ *
+ * The fbdev is destroyed by drm_dev_unregister().
+ */
+void drm_fbdev_generic_setup(struct drm_device *dev, unsigned int preferred_bpp)
+{
+ struct drm_fb_helper *fb_helper;
+ int ret;
+
+ drm_WARN(dev, !dev->registered, "Device has not been registered.\n");
+ drm_WARN(dev, dev->fb_helper, "fb_helper is already set!\n");
+
+ fb_helper = kzalloc(sizeof(*fb_helper), GFP_KERNEL);
+ if (!fb_helper)
+ return;
+ drm_fb_helper_prepare(dev, fb_helper, preferred_bpp, &drm_fbdev_generic_helper_funcs);
+
+ ret = drm_client_init(dev, &fb_helper->client, "fbdev", &drm_fbdev_generic_client_funcs);
+ if (ret) {
+ drm_err(dev, "Failed to register client: %d\n", ret);
+ goto err_drm_client_init;
+ }
+
+ ret = drm_fbdev_generic_client_hotplug(&fb_helper->client);
+ if (ret)
+ drm_dbg_kms(dev, "client hotplug ret=%d\n", ret);
+
+ drm_client_register(&fb_helper->client);
+
+ return;
+
+err_drm_client_init:
+ drm_fb_helper_unprepare(fb_helper);
+ kfree(fb_helper);
+ return;
+}
+EXPORT_SYMBOL(drm_fbdev_generic_setup);
diff --git a/drivers/gpu/drm/drm_file.c b/drivers/gpu/drm/drm_file.c
index a8b4d918e9a3..c1018c470047 100644
--- a/drivers/gpu/drm/drm_file.c
+++ b/drivers/gpu/drm/drm_file.c
@@ -156,7 +156,7 @@ struct drm_file *drm_file_alloc(struct drm_minor *minor)
if (!file)
return ERR_PTR(-ENOMEM);
- file->pid = get_pid(task_pid(current));
+ file->pid = get_pid(task_tgid(current));
file->minor = minor;
/* for compatibility root is always authenticated */
@@ -245,10 +245,10 @@ void drm_file_free(struct drm_file *file)
dev = file->minor->dev;
- DRM_DEBUG("comm=\"%s\", pid=%d, dev=0x%lx, open_count=%d\n",
- current->comm, task_pid_nr(current),
- (long)old_encode_dev(file->minor->kdev->devt),
- atomic_read(&dev->open_count));
+ drm_dbg_core(dev, "comm=\"%s\", pid=%d, dev=0x%lx, open_count=%d\n",
+ current->comm, task_pid_nr(current),
+ (long)old_encode_dev(file->minor->kdev->devt),
+ atomic_read(&dev->open_count));
#ifdef CONFIG_DRM_LEGACY
if (drm_core_check_feature(dev, DRIVER_LEGACY) &&
@@ -326,7 +326,7 @@ static int drm_cpu_valid(void)
* Creates and initializes a drm_file structure for the file private data in \p
* filp and add it into the double linked list in \p dev.
*/
-static int drm_open_helper(struct file *filp, struct drm_minor *minor)
+int drm_open_helper(struct file *filp, struct drm_minor *minor)
{
struct drm_device *dev = minor->dev;
struct drm_file *priv;
@@ -340,8 +340,8 @@ static int drm_open_helper(struct file *filp, struct drm_minor *minor)
dev->switch_power_state != DRM_SWITCH_POWER_DYNAMIC_OFF)
return -EINVAL;
- DRM_DEBUG("comm=\"%s\", pid=%d, minor=%d\n", current->comm,
- task_pid_nr(current), minor->index);
+ drm_dbg_core(dev, "comm=\"%s\", pid=%d, minor=%d\n",
+ current->comm, task_pid_nr(current), minor->index);
priv = drm_file_alloc(minor);
if (IS_ERR(priv))
@@ -450,11 +450,11 @@ EXPORT_SYMBOL(drm_open);
void drm_lastclose(struct drm_device * dev)
{
- DRM_DEBUG("\n");
+ drm_dbg_core(dev, "\n");
if (dev->driver->lastclose)
dev->driver->lastclose(dev);
- DRM_DEBUG("driver lastclose completed\n");
+ drm_dbg_core(dev, "driver lastclose completed\n");
if (drm_core_check_feature(dev, DRIVER_LEGACY))
drm_legacy_dev_reinit(dev);
@@ -485,7 +485,7 @@ int drm_release(struct inode *inode, struct file *filp)
if (drm_dev_needs_global_mutex(dev))
mutex_lock(&drm_global_mutex);
- DRM_DEBUG("open_count = %d\n", atomic_read(&dev->open_count));
+ drm_dbg_core(dev, "open_count = %d\n", atomic_read(&dev->open_count));
drm_close_helper(filp);
diff --git a/drivers/gpu/drm/drm_format_helper.c b/drivers/gpu/drm/drm_format_helper.c
index 3ee59bae9d2f..f93a4efcee90 100644
--- a/drivers/gpu/drm/drm_format_helper.c
+++ b/drivers/gpu/drm/drm_format_helper.c
@@ -322,7 +322,7 @@ EXPORT_SYMBOL(drm_fb_xrgb8888_to_rgb332);
static void drm_fb_xrgb8888_to_rgb565_line(void *dbuf, const void *sbuf, unsigned int pixels)
{
- u16 *dbuf16 = dbuf;
+ __le16 *dbuf16 = dbuf;
const __le32 *sbuf32 = sbuf;
unsigned int x;
u16 val16;
@@ -333,14 +333,15 @@ static void drm_fb_xrgb8888_to_rgb565_line(void *dbuf, const void *sbuf, unsigne
val16 = ((pix & 0x00F80000) >> 8) |
((pix & 0x0000FC00) >> 5) |
((pix & 0x000000F8) >> 3);
- dbuf16[x] = val16;
+ dbuf16[x] = cpu_to_le16(val16);
}
}
+/* TODO: implement this helper as conversion to RGB565|BIG_ENDIAN */
static void drm_fb_xrgb8888_to_rgb565_swab_line(void *dbuf, const void *sbuf,
unsigned int pixels)
{
- u16 *dbuf16 = dbuf;
+ __le16 *dbuf16 = dbuf;
const __le32 *sbuf32 = sbuf;
unsigned int x;
u16 val16;
@@ -351,7 +352,7 @@ static void drm_fb_xrgb8888_to_rgb565_swab_line(void *dbuf, const void *sbuf,
val16 = ((pix & 0x00F80000) >> 8) |
((pix & 0x0000FC00) >> 5) |
((pix & 0x000000F8) >> 3);
- dbuf16[x] = swab16(val16);
+ dbuf16[x] = cpu_to_le16(swab16(val16));
}
}
@@ -395,6 +396,161 @@ void drm_fb_xrgb8888_to_rgb565(struct iosys_map *dst, const unsigned int *dst_pi
}
EXPORT_SYMBOL(drm_fb_xrgb8888_to_rgb565);
+static void drm_fb_xrgb8888_to_xrgb1555_line(void *dbuf, const void *sbuf, unsigned int pixels)
+{
+ __le16 *dbuf16 = dbuf;
+ const __le32 *sbuf32 = sbuf;
+ unsigned int x;
+ u16 val16;
+ u32 pix;
+
+ for (x = 0; x < pixels; x++) {
+ pix = le32_to_cpu(sbuf32[x]);
+ val16 = ((pix & 0x00f80000) >> 9) |
+ ((pix & 0x0000f800) >> 6) |
+ ((pix & 0x000000f8) >> 3);
+ dbuf16[x] = cpu_to_le16(val16);
+ }
+}
+
+/**
+ * drm_fb_xrgb8888_to_xrgb1555 - Convert XRGB8888 to XRGB1555 clip buffer
+ * @dst: Array of XRGB1555 destination buffers
+ * @dst_pitch: Array of numbers of bytes between the start of two consecutive scanlines
+ * within @dst; can be NULL if scanlines are stored next to each other.
+ * @src: Array of XRGB8888 source buffer
+ * @fb: DRM framebuffer
+ * @clip: Clip rectangle area to copy
+ *
+ * This function copies parts of a framebuffer to display memory and converts
+ * the color format during the process. The parameters @dst, @dst_pitch and
+ * @src refer to arrays. Each array must have at least as many entries as
+ * there are planes in @fb's format. Each entry stores the value for the
+ * format's respective color plane at the same index.
+ *
+ * This function does not apply clipping on @dst (i.e. the destination is at the
+ * top-left corner).
+ *
+ * Drivers can use this function for XRGB1555 devices that don't support
+ * XRGB8888 natively.
+ */
+void drm_fb_xrgb8888_to_xrgb1555(struct iosys_map *dst, const unsigned int *dst_pitch,
+ const struct iosys_map *src, const struct drm_framebuffer *fb,
+ const struct drm_rect *clip)
+{
+ static const u8 dst_pixsize[DRM_FORMAT_MAX_PLANES] = {
+ 2,
+ };
+
+ drm_fb_xfrm(dst, dst_pitch, dst_pixsize, src, fb, clip, false,
+ drm_fb_xrgb8888_to_xrgb1555_line);
+}
+EXPORT_SYMBOL(drm_fb_xrgb8888_to_xrgb1555);
+
+static void drm_fb_xrgb8888_to_argb1555_line(void *dbuf, const void *sbuf, unsigned int pixels)
+{
+ __le16 *dbuf16 = dbuf;
+ const __le32 *sbuf32 = sbuf;
+ unsigned int x;
+ u16 val16;
+ u32 pix;
+
+ for (x = 0; x < pixels; x++) {
+ pix = le32_to_cpu(sbuf32[x]);
+ val16 = BIT(15) | /* set alpha bit */
+ ((pix & 0x00f80000) >> 9) |
+ ((pix & 0x0000f800) >> 6) |
+ ((pix & 0x000000f8) >> 3);
+ dbuf16[x] = cpu_to_le16(val16);
+ }
+}
+
+/**
+ * drm_fb_xrgb8888_to_argb1555 - Convert XRGB8888 to ARGB1555 clip buffer
+ * @dst: Array of ARGB1555 destination buffers
+ * @dst_pitch: Array of numbers of bytes between the start of two consecutive scanlines
+ * within @dst; can be NULL if scanlines are stored next to each other.
+ * @src: Array of XRGB8888 source buffer
+ * @fb: DRM framebuffer
+ * @clip: Clip rectangle area to copy
+ *
+ * This function copies parts of a framebuffer to display memory and converts
+ * the color format during the process. The parameters @dst, @dst_pitch and
+ * @src refer to arrays. Each array must have at least as many entries as
+ * there are planes in @fb's format. Each entry stores the value for the
+ * format's respective color plane at the same index.
+ *
+ * This function does not apply clipping on @dst (i.e. the destination is at the
+ * top-left corner).
+ *
+ * Drivers can use this function for ARGB1555 devices that don't support
+ * XRGB8888 natively. It sets an opaque alpha channel as part of the conversion.
+ */
+void drm_fb_xrgb8888_to_argb1555(struct iosys_map *dst, const unsigned int *dst_pitch,
+ const struct iosys_map *src, const struct drm_framebuffer *fb,
+ const struct drm_rect *clip)
+{
+ static const u8 dst_pixsize[DRM_FORMAT_MAX_PLANES] = {
+ 2,
+ };
+
+ drm_fb_xfrm(dst, dst_pitch, dst_pixsize, src, fb, clip, false,
+ drm_fb_xrgb8888_to_argb1555_line);
+}
+EXPORT_SYMBOL(drm_fb_xrgb8888_to_argb1555);
+
+static void drm_fb_xrgb8888_to_rgba5551_line(void *dbuf, const void *sbuf, unsigned int pixels)
+{
+ __le16 *dbuf16 = dbuf;
+ const __le32 *sbuf32 = sbuf;
+ unsigned int x;
+ u16 val16;
+ u32 pix;
+
+ for (x = 0; x < pixels; x++) {
+ pix = le32_to_cpu(sbuf32[x]);
+ val16 = ((pix & 0x00f80000) >> 8) |
+ ((pix & 0x0000f800) >> 5) |
+ ((pix & 0x000000f8) >> 2) |
+ BIT(0); /* set alpha bit */
+ dbuf16[x] = cpu_to_le16(val16);
+ }
+}
+
+/**
+ * drm_fb_xrgb8888_to_rgba5551 - Convert XRGB8888 to RGBA5551 clip buffer
+ * @dst: Array of RGBA5551 destination buffers
+ * @dst_pitch: Array of numbers of bytes between the start of two consecutive scanlines
+ * within @dst; can be NULL if scanlines are stored next to each other.
+ * @src: Array of XRGB8888 source buffer
+ * @fb: DRM framebuffer
+ * @clip: Clip rectangle area to copy
+ *
+ * This function copies parts of a framebuffer to display memory and converts
+ * the color format during the process. The parameters @dst, @dst_pitch and
+ * @src refer to arrays. Each array must have at least as many entries as
+ * there are planes in @fb's format. Each entry stores the value for the
+ * format's respective color plane at the same index.
+ *
+ * This function does not apply clipping on @dst (i.e. the destination is at the
+ * top-left corner).
+ *
+ * Drivers can use this function for RGBA5551 devices that don't support
+ * XRGB8888 natively. It sets an opaque alpha channel as part of the conversion.
+ */
+void drm_fb_xrgb8888_to_rgba5551(struct iosys_map *dst, const unsigned int *dst_pitch,
+ const struct iosys_map *src, const struct drm_framebuffer *fb,
+ const struct drm_rect *clip)
+{
+ static const u8 dst_pixsize[DRM_FORMAT_MAX_PLANES] = {
+ 2,
+ };
+
+ drm_fb_xfrm(dst, dst_pitch, dst_pixsize, src, fb, clip, false,
+ drm_fb_xrgb8888_to_rgba5551_line);
+}
+EXPORT_SYMBOL(drm_fb_xrgb8888_to_rgba5551);
+
static void drm_fb_xrgb8888_to_rgb888_line(void *dbuf, const void *sbuf, unsigned int pixels)
{
u8 *dbuf8 = dbuf;
@@ -404,6 +560,7 @@ static void drm_fb_xrgb8888_to_rgb888_line(void *dbuf, const void *sbuf, unsigne
for (x = 0; x < pixels; x++) {
pix = le32_to_cpu(sbuf32[x]);
+ /* write blue-green-red to output in little endianness */
*dbuf8++ = (pix & 0x000000FF) >> 0;
*dbuf8++ = (pix & 0x0000FF00) >> 8;
*dbuf8++ = (pix & 0x00FF0000) >> 16;
@@ -444,63 +601,112 @@ void drm_fb_xrgb8888_to_rgb888(struct iosys_map *dst, const unsigned int *dst_pi
}
EXPORT_SYMBOL(drm_fb_xrgb8888_to_rgb888);
-static void drm_fb_rgb565_to_xrgb8888_line(void *dbuf, const void *sbuf, unsigned int pixels)
+static void drm_fb_xrgb8888_to_argb8888_line(void *dbuf, const void *sbuf, unsigned int pixels)
+{
+ __le32 *dbuf32 = dbuf;
+ const __le32 *sbuf32 = sbuf;
+ unsigned int x;
+ u32 pix;
+
+ for (x = 0; x < pixels; x++) {
+ pix = le32_to_cpu(sbuf32[x]);
+ pix |= GENMASK(31, 24); /* fill alpha bits */
+ dbuf32[x] = cpu_to_le32(pix);
+ }
+}
+
+/**
+ * drm_fb_xrgb8888_to_argb8888 - Convert XRGB8888 to ARGB8888 clip buffer
+ * @dst: Array of ARGB8888 destination buffers
+ * @dst_pitch: Array of numbers of bytes between the start of two consecutive scanlines
+ * within @dst; can be NULL if scanlines are stored next to each other.
+ * @src: Array of XRGB8888 source buffer
+ * @fb: DRM framebuffer
+ * @clip: Clip rectangle area to copy
+ *
+ * This function copies parts of a framebuffer to display memory and converts the
+ * color format during the process. The parameters @dst, @dst_pitch and @src refer
+ * to arrays. Each array must have at least as many entries as there are planes in
+ * @fb's format. Each entry stores the value for the format's respective color plane
+ * at the same index.
+ *
+ * This function does not apply clipping on @dst (i.e. the destination is at the
+ * top-left corner).
+ *
+ * Drivers can use this function for ARGB8888 devices that don't support XRGB8888
+ * natively. It sets an opaque alpha channel as part of the conversion.
+ */
+void drm_fb_xrgb8888_to_argb8888(struct iosys_map *dst, const unsigned int *dst_pitch,
+ const struct iosys_map *src, const struct drm_framebuffer *fb,
+ const struct drm_rect *clip)
+{
+ static const u8 dst_pixsize[DRM_FORMAT_MAX_PLANES] = {
+ 4,
+ };
+
+ drm_fb_xfrm(dst, dst_pitch, dst_pixsize, src, fb, clip, false,
+ drm_fb_xrgb8888_to_argb8888_line);
+}
+EXPORT_SYMBOL(drm_fb_xrgb8888_to_argb8888);
+
+static void drm_fb_xrgb8888_to_abgr8888_line(void *dbuf, const void *sbuf, unsigned int pixels)
{
__le32 *dbuf32 = dbuf;
- const __le16 *sbuf16 = sbuf;
+ const __le32 *sbuf32 = sbuf;
unsigned int x;
+ u32 pix;
for (x = 0; x < pixels; x++) {
- u16 val16 = le16_to_cpu(sbuf16[x]);
- u32 val32 = ((val16 & 0xf800) << 8) |
- ((val16 & 0x07e0) << 5) |
- ((val16 & 0x001f) << 3);
- val32 = 0xff000000 | val32 |
- ((val32 >> 3) & 0x00070007) |
- ((val32 >> 2) & 0x00000300);
- dbuf32[x] = cpu_to_le32(val32);
+ pix = le32_to_cpu(sbuf32[x]);
+ pix = ((pix & 0x00ff0000) >> 16) << 0 |
+ ((pix & 0x0000ff00) >> 8) << 8 |
+ ((pix & 0x000000ff) >> 0) << 16 |
+ GENMASK(31, 24); /* fill alpha bits */
+ *dbuf32++ = cpu_to_le32(pix);
}
}
-static void drm_fb_rgb565_to_xrgb8888(struct iosys_map *dst, const unsigned int *dst_pitch,
- const struct iosys_map *src,
- const struct drm_framebuffer *fb,
- const struct drm_rect *clip)
+static void drm_fb_xrgb8888_to_abgr8888(struct iosys_map *dst, const unsigned int *dst_pitch,
+ const struct iosys_map *src,
+ const struct drm_framebuffer *fb,
+ const struct drm_rect *clip)
{
static const u8 dst_pixsize[DRM_FORMAT_MAX_PLANES] = {
4,
};
drm_fb_xfrm(dst, dst_pitch, dst_pixsize, src, fb, clip, false,
- drm_fb_rgb565_to_xrgb8888_line);
+ drm_fb_xrgb8888_to_abgr8888_line);
}
-static void drm_fb_rgb888_to_xrgb8888_line(void *dbuf, const void *sbuf, unsigned int pixels)
+static void drm_fb_xrgb8888_to_xbgr8888_line(void *dbuf, const void *sbuf, unsigned int pixels)
{
__le32 *dbuf32 = dbuf;
- const u8 *sbuf8 = sbuf;
+ const __le32 *sbuf32 = sbuf;
unsigned int x;
+ u32 pix;
for (x = 0; x < pixels; x++) {
- u8 r = *sbuf8++;
- u8 g = *sbuf8++;
- u8 b = *sbuf8++;
- u32 pix = 0xff000000 | (r << 16) | (g << 8) | b;
- dbuf32[x] = cpu_to_le32(pix);
+ pix = le32_to_cpu(sbuf32[x]);
+ pix = ((pix & 0x00ff0000) >> 16) << 0 |
+ ((pix & 0x0000ff00) >> 8) << 8 |
+ ((pix & 0x000000ff) >> 0) << 16 |
+ ((pix & 0xff000000) >> 24) << 24;
+ *dbuf32++ = cpu_to_le32(pix);
}
}
-static void drm_fb_rgb888_to_xrgb8888(struct iosys_map *dst, const unsigned int *dst_pitch,
- const struct iosys_map *src,
- const struct drm_framebuffer *fb,
- const struct drm_rect *clip)
+static void drm_fb_xrgb8888_to_xbgr8888(struct iosys_map *dst, const unsigned int *dst_pitch,
+ const struct iosys_map *src,
+ const struct drm_framebuffer *fb,
+ const struct drm_rect *clip)
{
static const u8 dst_pixsize[DRM_FORMAT_MAX_PLANES] = {
4,
};
drm_fb_xfrm(dst, dst_pitch, dst_pixsize, src, fb, clip, false,
- drm_fb_rgb888_to_xrgb8888_line);
+ drm_fb_xrgb8888_to_xbgr8888_line);
}
static void drm_fb_xrgb8888_to_xrgb2101010_line(void *dbuf, const void *sbuf, unsigned int pixels)
@@ -555,6 +761,59 @@ void drm_fb_xrgb8888_to_xrgb2101010(struct iosys_map *dst, const unsigned int *d
}
EXPORT_SYMBOL(drm_fb_xrgb8888_to_xrgb2101010);
+static void drm_fb_xrgb8888_to_argb2101010_line(void *dbuf, const void *sbuf, unsigned int pixels)
+{
+ __le32 *dbuf32 = dbuf;
+ const __le32 *sbuf32 = sbuf;
+ unsigned int x;
+ u32 val32;
+ u32 pix;
+
+ for (x = 0; x < pixels; x++) {
+ pix = le32_to_cpu(sbuf32[x]);
+ val32 = ((pix & 0x000000ff) << 2) |
+ ((pix & 0x0000ff00) << 4) |
+ ((pix & 0x00ff0000) << 6);
+ pix = GENMASK(31, 30) | /* set alpha bits */
+ val32 | ((val32 >> 8) & 0x00300c03);
+ *dbuf32++ = cpu_to_le32(pix);
+ }
+}
+
+/**
+ * drm_fb_xrgb8888_to_argb2101010 - Convert XRGB8888 to ARGB2101010 clip buffer
+ * @dst: Array of ARGB2101010 destination buffers
+ * @dst_pitch: Array of numbers of bytes between the start of two consecutive scanlines
+ * within @dst; can be NULL if scanlines are stored next to each other.
+ * @src: Array of XRGB8888 source buffers
+ * @fb: DRM framebuffer
+ * @clip: Clip rectangle area to copy
+ *
+ * This function copies parts of a framebuffer to display memory and converts
+ * the color format during the process. The parameters @dst, @dst_pitch and
+ * @src refer to arrays. Each array must have at least as many entries as
+ * there are planes in @fb's format. Each entry stores the value for the
+ * format's respective color plane at the same index.
+ *
+ * This function does not apply clipping on @dst (i.e. the destination is at the
+ * top-left corner).
+ *
+ * Drivers can use this function for ARGB2101010 devices that don't support XRGB8888
+ * natively.
+ */
+void drm_fb_xrgb8888_to_argb2101010(struct iosys_map *dst, const unsigned int *dst_pitch,
+ const struct iosys_map *src, const struct drm_framebuffer *fb,
+ const struct drm_rect *clip)
+{
+ static const u8 dst_pixsize[DRM_FORMAT_MAX_PLANES] = {
+ 4,
+ };
+
+ drm_fb_xfrm(dst, dst_pitch, dst_pixsize, src, fb, clip, false,
+ drm_fb_xrgb8888_to_argb2101010_line);
+}
+EXPORT_SYMBOL(drm_fb_xrgb8888_to_argb2101010);
+
static void drm_fb_xrgb8888_to_gray8_line(void *dbuf, const void *sbuf, unsigned int pixels)
{
u8 *dbuf8 = dbuf;
@@ -641,42 +900,49 @@ int drm_fb_blit(struct iosys_map *dst, const unsigned int *dst_pitch, uint32_t d
{
uint32_t fb_format = fb->format->format;
- /* treat alpha channel like filler bits */
- if (fb_format == DRM_FORMAT_ARGB8888)
- fb_format = DRM_FORMAT_XRGB8888;
- if (dst_format == DRM_FORMAT_ARGB8888)
- dst_format = DRM_FORMAT_XRGB8888;
- if (fb_format == DRM_FORMAT_ARGB2101010)
- fb_format = DRM_FORMAT_XRGB2101010;
- if (dst_format == DRM_FORMAT_ARGB2101010)
- dst_format = DRM_FORMAT_XRGB2101010;
-
- if (dst_format == fb_format) {
+ if (fb_format == dst_format) {
drm_fb_memcpy(dst, dst_pitch, src, fb, clip);
return 0;
-
- } else if (dst_format == DRM_FORMAT_RGB565) {
- if (fb_format == DRM_FORMAT_XRGB8888) {
+ } else if (fb_format == (dst_format | DRM_FORMAT_BIG_ENDIAN)) {
+ drm_fb_swab(dst, dst_pitch, src, fb, clip, false);
+ return 0;
+ } else if (fb_format == (dst_format & ~DRM_FORMAT_BIG_ENDIAN)) {
+ drm_fb_swab(dst, dst_pitch, src, fb, clip, false);
+ return 0;
+ } else if (fb_format == DRM_FORMAT_XRGB8888) {
+ if (dst_format == DRM_FORMAT_RGB565) {
drm_fb_xrgb8888_to_rgb565(dst, dst_pitch, src, fb, clip, false);
return 0;
- }
- } else if (dst_format == DRM_FORMAT_RGB888) {
- if (fb_format == DRM_FORMAT_XRGB8888) {
+ } else if (dst_format == DRM_FORMAT_XRGB1555) {
+ drm_fb_xrgb8888_to_xrgb1555(dst, dst_pitch, src, fb, clip);
+ return 0;
+ } else if (dst_format == DRM_FORMAT_ARGB1555) {
+ drm_fb_xrgb8888_to_argb1555(dst, dst_pitch, src, fb, clip);
+ return 0;
+ } else if (dst_format == DRM_FORMAT_RGBA5551) {
+ drm_fb_xrgb8888_to_rgba5551(dst, dst_pitch, src, fb, clip);
+ return 0;
+ } else if (dst_format == DRM_FORMAT_RGB888) {
drm_fb_xrgb8888_to_rgb888(dst, dst_pitch, src, fb, clip);
return 0;
- }
- } else if (dst_format == DRM_FORMAT_XRGB8888) {
- if (fb_format == DRM_FORMAT_RGB888) {
- drm_fb_rgb888_to_xrgb8888(dst, dst_pitch, src, fb, clip);
+ } else if (dst_format == DRM_FORMAT_ARGB8888) {
+ drm_fb_xrgb8888_to_argb8888(dst, dst_pitch, src, fb, clip);
return 0;
- } else if (fb_format == DRM_FORMAT_RGB565) {
- drm_fb_rgb565_to_xrgb8888(dst, dst_pitch, src, fb, clip);
+ } else if (dst_format == DRM_FORMAT_XBGR8888) {
+ drm_fb_xrgb8888_to_xbgr8888(dst, dst_pitch, src, fb, clip);
return 0;
- }
- } else if (dst_format == DRM_FORMAT_XRGB2101010) {
- if (fb_format == DRM_FORMAT_XRGB8888) {
+ } else if (dst_format == DRM_FORMAT_ABGR8888) {
+ drm_fb_xrgb8888_to_abgr8888(dst, dst_pitch, src, fb, clip);
+ return 0;
+ } else if (dst_format == DRM_FORMAT_XRGB2101010) {
drm_fb_xrgb8888_to_xrgb2101010(dst, dst_pitch, src, fb, clip);
return 0;
+ } else if (dst_format == DRM_FORMAT_ARGB2101010) {
+ drm_fb_xrgb8888_to_argb2101010(dst, dst_pitch, src, fb, clip);
+ return 0;
+ } else if (dst_format == DRM_FORMAT_BGRX8888) {
+ drm_fb_swab(dst, dst_pitch, src, fb, clip, false);
+ return 0;
}
}
@@ -795,6 +1061,39 @@ void drm_fb_xrgb8888_to_mono(struct iosys_map *dst, const unsigned int *dst_pitc
}
EXPORT_SYMBOL(drm_fb_xrgb8888_to_mono);
+static uint32_t drm_fb_nonalpha_fourcc(uint32_t fourcc)
+{
+ /* only handle formats with depth != 0 and alpha channel */
+ switch (fourcc) {
+ case DRM_FORMAT_ARGB1555:
+ return DRM_FORMAT_XRGB1555;
+ case DRM_FORMAT_ABGR1555:
+ return DRM_FORMAT_XBGR1555;
+ case DRM_FORMAT_RGBA5551:
+ return DRM_FORMAT_RGBX5551;
+ case DRM_FORMAT_BGRA5551:
+ return DRM_FORMAT_BGRX5551;
+ case DRM_FORMAT_ARGB8888:
+ return DRM_FORMAT_XRGB8888;
+ case DRM_FORMAT_ABGR8888:
+ return DRM_FORMAT_XBGR8888;
+ case DRM_FORMAT_RGBA8888:
+ return DRM_FORMAT_RGBX8888;
+ case DRM_FORMAT_BGRA8888:
+ return DRM_FORMAT_BGRX8888;
+ case DRM_FORMAT_ARGB2101010:
+ return DRM_FORMAT_XRGB2101010;
+ case DRM_FORMAT_ABGR2101010:
+ return DRM_FORMAT_XBGR2101010;
+ case DRM_FORMAT_RGBA1010102:
+ return DRM_FORMAT_RGBX1010102;
+ case DRM_FORMAT_BGRA1010102:
+ return DRM_FORMAT_BGRX1010102;
+ }
+
+ return fourcc;
+}
+
static bool is_listed_fourcc(const uint32_t *fourccs, size_t nfourccs, uint32_t fourcc)
{
const uint32_t *fourccs_end = fourccs + nfourccs;
@@ -807,73 +1106,48 @@ static bool is_listed_fourcc(const uint32_t *fourccs, size_t nfourccs, uint32_t
return false;
}
-static const uint32_t conv_from_xrgb8888[] = {
- DRM_FORMAT_XRGB8888,
- DRM_FORMAT_ARGB8888,
- DRM_FORMAT_XRGB2101010,
- DRM_FORMAT_ARGB2101010,
- DRM_FORMAT_RGB565,
- DRM_FORMAT_RGB888,
-};
-
-static const uint32_t conv_from_rgb565_888[] = {
- DRM_FORMAT_XRGB8888,
- DRM_FORMAT_ARGB8888,
-};
-
-static bool is_conversion_supported(uint32_t from, uint32_t to)
-{
- switch (from) {
- case DRM_FORMAT_XRGB8888:
- case DRM_FORMAT_ARGB8888:
- return is_listed_fourcc(conv_from_xrgb8888, ARRAY_SIZE(conv_from_xrgb8888), to);
- case DRM_FORMAT_RGB565:
- case DRM_FORMAT_RGB888:
- return is_listed_fourcc(conv_from_rgb565_888, ARRAY_SIZE(conv_from_rgb565_888), to);
- case DRM_FORMAT_XRGB2101010:
- return to == DRM_FORMAT_ARGB2101010;
- case DRM_FORMAT_ARGB2101010:
- return to == DRM_FORMAT_XRGB2101010;
- default:
- return false;
- }
-}
-
/**
* drm_fb_build_fourcc_list - Filters a list of supported color formats against
* the device's native formats
* @dev: DRM device
* @native_fourccs: 4CC codes of natively supported color formats
* @native_nfourccs: The number of entries in @native_fourccs
- * @driver_fourccs: 4CC codes of all driver-supported color formats
- * @driver_nfourccs: The number of entries in @driver_fourccs
* @fourccs_out: Returns 4CC codes of supported color formats
* @nfourccs_out: The number of available entries in @fourccs_out
*
* This function create a list of supported color format from natively
- * supported formats and the emulated formats.
+ * supported formats and additional emulated formats.
* At a minimum, most userspace programs expect at least support for
* XRGB8888 on the primary plane. Devices that have to emulate the
* format, and possibly others, can use drm_fb_build_fourcc_list() to
* create a list of supported color formats. The returned list can
* be handed over to drm_universal_plane_init() et al. Native formats
- * will go before emulated formats. Other heuristics might be applied
+ * will go before emulated formats. Native formats with alpha channel
+ * will be replaced by such without, as primary planes usually don't
+ * support alpha. Other heuristics might be applied
* to optimize the order. Formats near the beginning of the list are
- * usually preferred over formats near the end of the list. Formats
- * without conversion helpers will be skipped. New drivers should only
- * pass in XRGB8888 and avoid exposing additional emulated formats.
+ * usually preferred over formats near the end of the list.
*
* Returns:
* The number of color-formats 4CC codes returned in @fourccs_out.
*/
size_t drm_fb_build_fourcc_list(struct drm_device *dev,
const u32 *native_fourccs, size_t native_nfourccs,
- const u32 *driver_fourccs, size_t driver_nfourccs,
u32 *fourccs_out, size_t nfourccs_out)
{
+ /*
+ * XRGB8888 is the default fallback format for most of userspace
+ * and it's currently the only format that should be emulated for
+ * the primary plane. Only if there's ever another default fallback,
+ * it should be added here.
+ */
+ static const uint32_t extra_fourccs[] = {
+ DRM_FORMAT_XRGB8888,
+ };
+ static const size_t extra_nfourccs = ARRAY_SIZE(extra_fourccs);
+
u32 *fourccs = fourccs_out;
const u32 *fourccs_end = fourccs_out + nfourccs_out;
- uint32_t native_format = 0;
size_t i;
/*
@@ -881,7 +1155,12 @@ size_t drm_fb_build_fourcc_list(struct drm_device *dev,
*/
for (i = 0; i < native_nfourccs; ++i) {
- u32 fourcc = native_fourccs[i];
+ /*
+ * Several DTs, boot loaders and firmware report native
+ * alpha formats that are non-alpha formats instead. So
+ * replace alpha formats by non-alpha formats.
+ */
+ u32 fourcc = drm_fb_nonalpha_fourcc(native_fourccs[i]);
if (is_listed_fourcc(fourccs_out, fourccs - fourccs_out, fourcc)) {
continue; /* skip duplicate entries */
@@ -892,14 +1171,6 @@ size_t drm_fb_build_fourcc_list(struct drm_device *dev,
drm_dbg_kms(dev, "adding native format %p4cc\n", &fourcc);
- /*
- * There should only be one native format with the current API.
- * This API needs to be refactored to correctly support arbitrary
- * sets of native formats, since it needs to report which native
- * format to use for each emulated format.
- */
- if (!native_format)
- native_format = fourcc;
*fourccs = fourcc;
++fourccs;
}
@@ -908,17 +1179,14 @@ size_t drm_fb_build_fourcc_list(struct drm_device *dev,
* The extra formats, emulated by the driver, go second.
*/
- for (i = 0; (i < driver_nfourccs) && (fourccs < fourccs_end); ++i) {
- u32 fourcc = driver_fourccs[i];
+ for (i = 0; (i < extra_nfourccs) && (fourccs < fourccs_end); ++i) {
+ u32 fourcc = extra_fourccs[i];
if (is_listed_fourcc(fourccs_out, fourccs - fourccs_out, fourcc)) {
continue; /* skip duplicate and native entries */
} else if (fourccs == fourccs_end) {
drm_warn(dev, "Ignoring emulated format %p4cc\n", &fourcc);
continue; /* end of available output buffer */
- } else if (!is_conversion_supported(fourcc, native_format)) {
- drm_dbg_kms(dev, "Unsupported emulated format %p4cc\n", &fourcc);
- continue; /* format is not supported for conversion */
}
drm_dbg_kms(dev, "adding emulated format %p4cc\n", &fourcc);
diff --git a/drivers/gpu/drm/drm_fourcc.c b/drivers/gpu/drm/drm_fourcc.c
index e09331bb3bc7..0f17dfa8702b 100644
--- a/drivers/gpu/drm/drm_fourcc.c
+++ b/drivers/gpu/drm/drm_fourcc.c
@@ -190,6 +190,10 @@ const struct drm_format_info *__drm_format_info(u32 format)
{ .format = DRM_FORMAT_BGRA5551, .depth = 15, .num_planes = 1, .cpp = { 2, 0, 0 }, .hsub = 1, .vsub = 1, .has_alpha = true },
{ .format = DRM_FORMAT_RGB565, .depth = 16, .num_planes = 1, .cpp = { 2, 0, 0 }, .hsub = 1, .vsub = 1 },
{ .format = DRM_FORMAT_BGR565, .depth = 16, .num_planes = 1, .cpp = { 2, 0, 0 }, .hsub = 1, .vsub = 1 },
+#ifdef __BIG_ENDIAN
+ { .format = DRM_FORMAT_XRGB1555 | DRM_FORMAT_BIG_ENDIAN, .depth = 15, .num_planes = 1, .cpp = { 2, 0, 0 }, .hsub = 1, .vsub = 1 },
+ { .format = DRM_FORMAT_RGB565 | DRM_FORMAT_BIG_ENDIAN, .depth = 16, .num_planes = 1, .cpp = { 2, 0, 0 }, .hsub = 1, .vsub = 1 },
+#endif
{ .format = DRM_FORMAT_RGB888, .depth = 24, .num_planes = 1, .cpp = { 3, 0, 0 }, .hsub = 1, .vsub = 1 },
{ .format = DRM_FORMAT_BGR888, .depth = 24, .num_planes = 1, .cpp = { 3, 0, 0 }, .hsub = 1, .vsub = 1 },
{ .format = DRM_FORMAT_XRGB8888, .depth = 24, .num_planes = 1, .cpp = { 4, 0, 0 }, .hsub = 1, .vsub = 1 },
@@ -297,12 +301,12 @@ const struct drm_format_info *__drm_format_info(u32 format)
.vsub = 2, .is_yuv = true },
{ .format = DRM_FORMAT_Q410, .depth = 0,
.num_planes = 3, .char_per_block = { 2, 2, 2 },
- .block_w = { 1, 1, 1 }, .block_h = { 1, 1, 1 }, .hsub = 0,
- .vsub = 0, .is_yuv = true },
+ .block_w = { 1, 1, 1 }, .block_h = { 1, 1, 1 }, .hsub = 1,
+ .vsub = 1, .is_yuv = true },
{ .format = DRM_FORMAT_Q401, .depth = 0,
.num_planes = 3, .char_per_block = { 2, 2, 2 },
- .block_w = { 1, 1, 1 }, .block_h = { 1, 1, 1 }, .hsub = 0,
- .vsub = 0, .is_yuv = true },
+ .block_w = { 1, 1, 1 }, .block_h = { 1, 1, 1 }, .hsub = 1,
+ .vsub = 1, .is_yuv = true },
{ .format = DRM_FORMAT_P030, .depth = 0, .num_planes = 2,
.char_per_block = { 4, 8, 0 }, .block_w = { 3, 3, 0 }, .block_h = { 1, 1, 0 },
.hsub = 2, .vsub = 2, .is_yuv = true},
diff --git a/drivers/gpu/drm/drm_framebuffer.c b/drivers/gpu/drm/drm_framebuffer.c
index 2dd97473ca10..aff3746dedfb 100644
--- a/drivers/gpu/drm/drm_framebuffer.c
+++ b/drivers/gpu/drm/drm_framebuffer.c
@@ -1203,8 +1203,8 @@ void drm_framebuffer_print_info(struct drm_printer *p, unsigned int indent,
#ifdef CONFIG_DEBUG_FS
static int drm_framebuffer_info(struct seq_file *m, void *data)
{
- struct drm_info_node *node = m->private;
- struct drm_device *dev = node->minor->dev;
+ struct drm_debugfs_entry *entry = m->private;
+ struct drm_device *dev = entry->dev;
struct drm_printer p = drm_seq_file_printer(m);
struct drm_framebuffer *fb;
@@ -1218,14 +1218,13 @@ static int drm_framebuffer_info(struct seq_file *m, void *data)
return 0;
}
-static const struct drm_info_list drm_framebuffer_debugfs_list[] = {
+static const struct drm_debugfs_info drm_framebuffer_debugfs_list[] = {
{ "framebuffer", drm_framebuffer_info, 0 },
};
void drm_framebuffer_debugfs_init(struct drm_minor *minor)
{
- drm_debugfs_create_files(drm_framebuffer_debugfs_list,
- ARRAY_SIZE(drm_framebuffer_debugfs_list),
- minor->debugfs_root, minor);
+ drm_debugfs_add_files(minor->dev, drm_framebuffer_debugfs_list,
+ ARRAY_SIZE(drm_framebuffer_debugfs_list));
}
#endif
diff --git a/drivers/gpu/drm/drm_gem.c b/drivers/gpu/drm/drm_gem.c
index 8b68a3c1e6ab..1a5a2cd0d4ec 100644
--- a/drivers/gpu/drm/drm_gem.c
+++ b/drivers/gpu/drm/drm_gem.c
@@ -170,6 +170,20 @@ void drm_gem_private_object_init(struct drm_device *dev,
EXPORT_SYMBOL(drm_gem_private_object_init);
/**
+ * drm_gem_private_object_fini - Finalize a failed drm_gem_object
+ * @obj: drm_gem_object
+ *
+ * Uninitialize an already allocated GEM object when it initialized failed
+ */
+void drm_gem_private_object_fini(struct drm_gem_object *obj)
+{
+ WARN_ON(obj->dma_buf);
+
+ dma_resv_fini(&obj->_resv);
+}
+EXPORT_SYMBOL(drm_gem_private_object_fini);
+
+/**
* drm_gem_object_handle_free - release resources bound to userspace handles
* @obj: GEM object to clean up.
*
@@ -322,13 +336,6 @@ out:
}
EXPORT_SYMBOL_GPL(drm_gem_dumb_map_offset);
-int drm_gem_dumb_destroy(struct drm_file *file,
- struct drm_device *dev,
- u32 handle)
-{
- return drm_gem_handle_delete(file, handle);
-}
-
/**
* drm_gem_handle_create_tail - internal functions to create a handle
* @file_priv: drm file-private structure to register the handle for
@@ -930,12 +937,11 @@ drm_gem_release(struct drm_device *dev, struct drm_file *file_private)
void
drm_gem_object_release(struct drm_gem_object *obj)
{
- WARN_ON(obj->dma_buf);
-
if (obj->filp)
fput(obj->filp);
- dma_resv_fini(&obj->_resv);
+ drm_gem_private_object_fini(obj);
+
drm_gem_free_mmap_offset(obj);
drm_gem_lru_remove(obj);
}
@@ -1047,7 +1053,7 @@ int drm_gem_mmap_obj(struct drm_gem_object *obj, unsigned long obj_size,
goto err_drm_gem_object_put;
}
- vma->vm_flags |= VM_IO | VM_PFNMAP | VM_DONTEXPAND | VM_DONTDUMP;
+ vm_flags_set(vma, VM_IO | VM_PFNMAP | VM_DONTEXPAND | VM_DONTDUMP);
vma->vm_page_prot = pgprot_writecombine(vm_get_page_prot(vma->vm_flags));
vma->vm_page_prot = pgprot_decrypted(vma->vm_page_prot);
}
@@ -1158,6 +1164,8 @@ int drm_gem_vmap(struct drm_gem_object *obj, struct iosys_map *map)
{
int ret;
+ dma_resv_assert_held(obj->resv);
+
if (!obj->funcs->vmap)
return -EOPNOTSUPP;
@@ -1173,6 +1181,8 @@ EXPORT_SYMBOL(drm_gem_vmap);
void drm_gem_vunmap(struct drm_gem_object *obj, struct iosys_map *map)
{
+ dma_resv_assert_held(obj->resv);
+
if (iosys_map_is_null(map))
return;
@@ -1184,6 +1194,26 @@ void drm_gem_vunmap(struct drm_gem_object *obj, struct iosys_map *map)
}
EXPORT_SYMBOL(drm_gem_vunmap);
+int drm_gem_vmap_unlocked(struct drm_gem_object *obj, struct iosys_map *map)
+{
+ int ret;
+
+ dma_resv_lock(obj->resv, NULL);
+ ret = drm_gem_vmap(obj, map);
+ dma_resv_unlock(obj->resv);
+
+ return ret;
+}
+EXPORT_SYMBOL(drm_gem_vmap_unlocked);
+
+void drm_gem_vunmap_unlocked(struct drm_gem_object *obj, struct iosys_map *map)
+{
+ dma_resv_lock(obj->resv, NULL);
+ drm_gem_vunmap(obj, map);
+ dma_resv_unlock(obj->resv);
+}
+EXPORT_SYMBOL(drm_gem_vunmap_unlocked);
+
/**
* drm_gem_lock_reservations - Sets up the ww context and acquires
* the lock on an array of GEM objects.
@@ -1307,7 +1337,15 @@ drm_gem_lru_remove(struct drm_gem_object *obj)
}
EXPORT_SYMBOL(drm_gem_lru_remove);
-static void
+/**
+ * drm_gem_lru_move_tail_locked - move the object to the tail of the LRU
+ *
+ * Like &drm_gem_lru_move_tail but lru lock must be held
+ *
+ * @lru: The LRU to move the object into.
+ * @obj: The GEM object to move into this LRU
+ */
+void
drm_gem_lru_move_tail_locked(struct drm_gem_lru *lru, struct drm_gem_object *obj)
{
lockdep_assert_held_once(lru->lock);
@@ -1319,6 +1357,7 @@ drm_gem_lru_move_tail_locked(struct drm_gem_lru *lru, struct drm_gem_object *obj
list_add_tail(&obj->lru_node, &lru->list);
obj->lru = lru;
}
+EXPORT_SYMBOL(drm_gem_lru_move_tail_locked);
/**
* drm_gem_lru_move_tail - move the object to the tail of the LRU
@@ -1351,10 +1390,13 @@ EXPORT_SYMBOL(drm_gem_lru_move_tail);
*
* @lru: The LRU to scan
* @nr_to_scan: The number of pages to try to reclaim
+ * @remaining: The number of pages left to reclaim, should be initialized by caller
* @shrink: Callback to try to shrink/reclaim the object.
*/
unsigned long
-drm_gem_lru_scan(struct drm_gem_lru *lru, unsigned nr_to_scan,
+drm_gem_lru_scan(struct drm_gem_lru *lru,
+ unsigned int nr_to_scan,
+ unsigned long *remaining,
bool (*shrink)(struct drm_gem_object *obj))
{
struct drm_gem_lru still_in_lru;
@@ -1393,8 +1435,10 @@ drm_gem_lru_scan(struct drm_gem_lru *lru, unsigned nr_to_scan,
* hit shrinker in response to trying to get backing pages
* for this obj (ie. while it's lock is already held)
*/
- if (!dma_resv_trylock(obj->resv))
+ if (!dma_resv_trylock(obj->resv)) {
+ *remaining += obj->size >> PAGE_SHIFT;
goto tail;
+ }
if (shrink(obj)) {
freed += obj->size >> PAGE_SHIFT;
@@ -1429,3 +1473,21 @@ tail:
return freed;
}
EXPORT_SYMBOL(drm_gem_lru_scan);
+
+/**
+ * drm_gem_evict - helper to evict backing pages for a GEM object
+ * @obj: obj in question
+ */
+int drm_gem_evict(struct drm_gem_object *obj)
+{
+ dma_resv_assert_held(obj->resv);
+
+ if (!dma_resv_test_signaled(obj->resv, DMA_RESV_USAGE_READ))
+ return -EBUSY;
+
+ if (obj->funcs->evict)
+ return obj->funcs->evict(obj);
+
+ return 0;
+}
+EXPORT_SYMBOL(drm_gem_evict);
diff --git a/drivers/gpu/drm/drm_gem_atomic_helper.c b/drivers/gpu/drm/drm_gem_atomic_helper.c
index b6a0110eb64a..5d4b9cd077f7 100644
--- a/drivers/gpu/drm/drm_gem_atomic_helper.c
+++ b/drivers/gpu/drm/drm_gem_atomic_helper.c
@@ -26,11 +26,8 @@
* call drm_gem_plane_helper_prepare_fb() from their implementation of
* struct &drm_plane_helper.prepare_fb . It sets the plane's fence from
* the framebuffer so that the DRM core can synchronize access automatically.
- *
* drm_gem_plane_helper_prepare_fb() can also be used directly as
- * implementation of prepare_fb. For drivers based on
- * struct drm_simple_display_pipe, drm_gem_simple_display_pipe_prepare_fb()
- * provides equivalent functionality.
+ * implementation of prepare_fb.
*
* .. code-block:: c
*
@@ -41,11 +38,6 @@
* . prepare_fb = drm_gem_plane_helper_prepare_fb,
* };
*
- * struct drm_simple_display_pipe_funcs driver_pipe_funcs = {
- * ...,
- * . prepare_fb = drm_gem_simple_display_pipe_prepare_fb,
- * };
- *
* A driver using a shadow buffer copies the content of the shadow buffers
* into the HW's framebuffer memory during an atomic update. This requires
* a mapping of the shadow buffer into kernel address space. The mappings
@@ -205,27 +197,6 @@ error:
}
EXPORT_SYMBOL_GPL(drm_gem_plane_helper_prepare_fb);
-/**
- * drm_gem_simple_display_pipe_prepare_fb - prepare_fb helper for &drm_simple_display_pipe
- * @pipe: Simple display pipe
- * @plane_state: Plane state
- *
- * This function uses drm_gem_plane_helper_prepare_fb() to extract the fences
- * from &drm_gem_object.resv and attaches them to the plane state for the atomic
- * helper to wait on. This is necessary to correctly implement implicit
- * synchronization for any buffers shared as a struct &dma_buf. Drivers can use
- * this as their &drm_simple_display_pipe_funcs.prepare_fb callback.
- *
- * See drm_gem_plane_helper_prepare_fb() for a discussion of implicit and
- * explicit fencing in atomic modeset updates.
- */
-int drm_gem_simple_display_pipe_prepare_fb(struct drm_simple_display_pipe *pipe,
- struct drm_plane_state *plane_state)
-{
- return drm_gem_plane_helper_prepare_fb(&pipe->plane, plane_state);
-}
-EXPORT_SYMBOL(drm_gem_simple_display_pipe_prepare_fb);
-
/*
* Shadow-buffered Planes
*/
@@ -360,48 +331,43 @@ void drm_gem_reset_shadow_plane(struct drm_plane *plane)
EXPORT_SYMBOL(drm_gem_reset_shadow_plane);
/**
- * drm_gem_prepare_shadow_fb - prepares shadow framebuffers
+ * drm_gem_begin_shadow_fb_access - prepares shadow framebuffers for CPU access
* @plane: the plane
* @plane_state: the plane state of type struct drm_shadow_plane_state
*
- * This function implements struct &drm_plane_helper_funcs.prepare_fb. It
+ * This function implements struct &drm_plane_helper_funcs.begin_fb_access. It
* maps all buffer objects of the plane's framebuffer into kernel address
- * space and stores them in &struct drm_shadow_plane_state.map. The
- * framebuffer will be synchronized as part of the atomic commit.
+ * space and stores them in struct &drm_shadow_plane_state.map. The first data
+ * bytes are available in struct &drm_shadow_plane_state.data.
*
- * See drm_gem_cleanup_shadow_fb() for cleanup.
+ * See drm_gem_end_shadow_fb_access() for cleanup.
*
* Returns:
* 0 on success, or a negative errno code otherwise.
*/
-int drm_gem_prepare_shadow_fb(struct drm_plane *plane, struct drm_plane_state *plane_state)
+int drm_gem_begin_shadow_fb_access(struct drm_plane *plane, struct drm_plane_state *plane_state)
{
struct drm_shadow_plane_state *shadow_plane_state = to_drm_shadow_plane_state(plane_state);
struct drm_framebuffer *fb = plane_state->fb;
- int ret;
if (!fb)
return 0;
- ret = drm_gem_plane_helper_prepare_fb(plane, plane_state);
- if (ret)
- return ret;
-
return drm_gem_fb_vmap(fb, shadow_plane_state->map, shadow_plane_state->data);
}
-EXPORT_SYMBOL(drm_gem_prepare_shadow_fb);
+EXPORT_SYMBOL(drm_gem_begin_shadow_fb_access);
/**
- * drm_gem_cleanup_shadow_fb - releases shadow framebuffers
+ * drm_gem_end_shadow_fb_access - releases shadow framebuffers from CPU access
* @plane: the plane
* @plane_state: the plane state of type struct drm_shadow_plane_state
*
- * This function implements struct &drm_plane_helper_funcs.cleanup_fb.
- * This function unmaps all buffer objects of the plane's framebuffer.
+ * This function implements struct &drm_plane_helper_funcs.end_fb_access. It
+ * undoes all effects of drm_gem_begin_shadow_fb_access() in reverse order.
*
- * See drm_gem_prepare_shadow_fb() for more information.
+ * See drm_gem_begin_shadow_fb_access() for more information.
*/
-void drm_gem_cleanup_shadow_fb(struct drm_plane *plane, struct drm_plane_state *plane_state)
+void drm_gem_end_shadow_fb_access(struct drm_plane *plane, struct drm_plane_state *plane_state)
{
struct drm_shadow_plane_state *shadow_plane_state = to_drm_shadow_plane_state(plane_state);
struct drm_framebuffer *fb = plane_state->fb;
@@ -411,46 +377,45 @@ void drm_gem_cleanup_shadow_fb(struct drm_plane *plane, struct drm_plane_state *
drm_gem_fb_vunmap(fb, shadow_plane_state->map);
}
-EXPORT_SYMBOL(drm_gem_cleanup_shadow_fb);
+EXPORT_SYMBOL(drm_gem_end_shadow_fb_access);
/**
- * drm_gem_simple_kms_prepare_shadow_fb - prepares shadow framebuffers
+ * drm_gem_simple_kms_begin_shadow_fb_access - prepares shadow framebuffers for CPU access
* @pipe: the simple display pipe
* @plane_state: the plane state of type struct drm_shadow_plane_state
*
- * This function implements struct drm_simple_display_funcs.prepare_fb. It
- * maps all buffer objects of the plane's framebuffer into kernel address
- * space and stores them in struct drm_shadow_plane_state.map. The
- * framebuffer will be synchronized as part of the atomic commit.
+ * This function implements struct drm_simple_display_funcs.begin_fb_access.
*
- * See drm_gem_simple_kms_cleanup_shadow_fb() for cleanup.
+ * See drm_gem_begin_shadow_fb_access() for details and
+ * drm_gem_simple_kms_cleanup_shadow_fb() for cleanup.
*
* Returns:
* 0 on success, or a negative errno code otherwise.
*/
-int drm_gem_simple_kms_prepare_shadow_fb(struct drm_simple_display_pipe *pipe,
- struct drm_plane_state *plane_state)
+int drm_gem_simple_kms_begin_shadow_fb_access(struct drm_simple_display_pipe *pipe,
+ struct drm_plane_state *plane_state)
{
- return drm_gem_prepare_shadow_fb(&pipe->plane, plane_state);
+ return drm_gem_begin_shadow_fb_access(&pipe->plane, plane_state);
}
-EXPORT_SYMBOL(drm_gem_simple_kms_prepare_shadow_fb);
+EXPORT_SYMBOL(drm_gem_simple_kms_begin_shadow_fb_access);
/**
- * drm_gem_simple_kms_cleanup_shadow_fb - releases shadow framebuffers
+ * drm_gem_simple_kms_end_shadow_fb_access - releases shadow framebuffers from CPU access
* @pipe: the simple display pipe
* @plane_state: the plane state of type struct drm_shadow_plane_state
*
- * This function implements struct drm_simple_display_funcs.cleanup_fb.
- * This function unmaps all buffer objects of the plane's framebuffer.
+ * This function implements struct drm_simple_display_funcs.end_fb_access.
+ * It undoes all effects of drm_gem_simple_kms_begin_shadow_fb_access() in
+ * reverse order.
*
- * See drm_gem_simple_kms_prepare_shadow_fb().
+ * See drm_gem_simple_kms_begin_shadow_fb_access().
*/
-void drm_gem_simple_kms_cleanup_shadow_fb(struct drm_simple_display_pipe *pipe,
- struct drm_plane_state *plane_state)
+void drm_gem_simple_kms_end_shadow_fb_access(struct drm_simple_display_pipe *pipe,
+ struct drm_plane_state *plane_state)
{
- drm_gem_cleanup_shadow_fb(&pipe->plane, plane_state);
+ drm_gem_end_shadow_fb_access(&pipe->plane, plane_state);
}
-EXPORT_SYMBOL(drm_gem_simple_kms_cleanup_shadow_fb);
+EXPORT_SYMBOL(drm_gem_simple_kms_end_shadow_fb_access);
/**
* drm_gem_simple_kms_reset_shadow_plane - resets a shadow-buffered plane
diff --git a/drivers/gpu/drm/drm_gem_dma_helper.c b/drivers/gpu/drm/drm_gem_dma_helper.c
index f6901ff97bbb..870b90b78bc4 100644
--- a/drivers/gpu/drm/drm_gem_dma_helper.c
+++ b/drivers/gpu/drm/drm_gem_dma_helper.c
@@ -230,7 +230,7 @@ void drm_gem_dma_free(struct drm_gem_dma_object *dma_obj)
if (gem_obj->import_attach) {
if (dma_obj->vaddr)
- dma_buf_vunmap(gem_obj->import_attach->dmabuf, &map);
+ dma_buf_vunmap_unlocked(gem_obj->import_attach->dmabuf, &map);
drm_prime_gem_destroy(gem_obj, dma_obj->sgt);
} else if (dma_obj->vaddr) {
if (dma_obj->map_noncoherent)
@@ -477,8 +477,8 @@ drm_gem_dma_prime_import_sg_table(struct drm_device *dev,
dma_obj->dma_addr = sg_dma_address(sgt->sgl);
dma_obj->sgt = sgt;
- DRM_DEBUG_PRIME("dma_addr = %pad, size = %zu\n", &dma_obj->dma_addr,
- attach->dmabuf->size);
+ drm_dbg_prime(dev, "dma_addr = %pad, size = %zu\n", &dma_obj->dma_addr,
+ attach->dmabuf->size);
return &dma_obj->base;
}
@@ -530,8 +530,7 @@ int drm_gem_dma_mmap(struct drm_gem_dma_object *dma_obj, struct vm_area_struct *
* the whole buffer.
*/
vma->vm_pgoff -= drm_vma_node_start(&obj->vma_node);
- vma->vm_flags &= ~VM_PFNMAP;
- vma->vm_flags |= VM_DONTEXPAND;
+ vm_flags_mod(vma, VM_DONTEXPAND, VM_PFNMAP);
if (dma_obj->map_noncoherent) {
vma->vm_page_prot = vm_get_page_prot(vma->vm_flags);
@@ -581,7 +580,7 @@ drm_gem_dma_prime_import_sg_table_vmap(struct drm_device *dev,
struct iosys_map map;
int ret;
- ret = dma_buf_vmap(attach->dmabuf, &map);
+ ret = dma_buf_vmap_unlocked(attach->dmabuf, &map);
if (ret) {
DRM_ERROR("Failed to vmap PRIME buffer\n");
return ERR_PTR(ret);
@@ -589,7 +588,7 @@ drm_gem_dma_prime_import_sg_table_vmap(struct drm_device *dev,
obj = drm_gem_dma_prime_import_sg_table(dev, attach, sgt);
if (IS_ERR(obj)) {
- dma_buf_vunmap(attach->dmabuf, &map);
+ dma_buf_vunmap_unlocked(attach->dmabuf, &map);
return obj;
}
diff --git a/drivers/gpu/drm/drm_gem_framebuffer_helper.c b/drivers/gpu/drm/drm_gem_framebuffer_helper.c
index 880a4975507f..e93533b86037 100644
--- a/drivers/gpu/drm/drm_gem_framebuffer_helper.c
+++ b/drivers/gpu/drm/drm_gem_framebuffer_helper.c
@@ -9,7 +9,6 @@
#include <linux/module.h>
#include <drm/drm_damage_helper.h>
-#include <drm/drm_fb_helper.h>
#include <drm/drm_fourcc.h>
#include <drm/drm_framebuffer.h>
#include <drm/drm_gem.h>
@@ -354,7 +353,7 @@ int drm_gem_fb_vmap(struct drm_framebuffer *fb, struct iosys_map *map,
ret = -EINVAL;
goto err_drm_gem_vunmap;
}
- ret = drm_gem_vmap(obj, &map[i]);
+ ret = drm_gem_vmap_unlocked(obj, &map[i]);
if (ret)
goto err_drm_gem_vunmap;
}
@@ -376,7 +375,7 @@ err_drm_gem_vunmap:
obj = drm_gem_fb_get_obj(fb, i);
if (!obj)
continue;
- drm_gem_vunmap(obj, &map[i]);
+ drm_gem_vunmap_unlocked(obj, &map[i]);
}
return ret;
}
@@ -403,7 +402,7 @@ void drm_gem_fb_vunmap(struct drm_framebuffer *fb, struct iosys_map *map)
continue;
if (iosys_map_is_null(&map[i]))
continue;
- drm_gem_vunmap(obj, &map[i]);
+ drm_gem_vunmap_unlocked(obj, &map[i]);
}
}
EXPORT_SYMBOL(drm_gem_fb_vunmap);
diff --git a/drivers/gpu/drm/drm_gem_shmem_helper.c b/drivers/gpu/drm/drm_gem_shmem_helper.c
index 35138f8a375c..4ea6507a77e5 100644
--- a/drivers/gpu/drm/drm_gem_shmem_helper.c
+++ b/drivers/gpu/drm/drm_gem_shmem_helper.c
@@ -79,8 +79,10 @@ __drm_gem_shmem_create(struct drm_device *dev, size_t size, bool private)
} else {
ret = drm_gem_object_init(dev, obj, size);
}
- if (ret)
+ if (ret) {
+ drm_gem_private_object_fini(obj);
goto err_free;
+ }
ret = drm_gem_create_mmap_offset(obj);
if (ret)
@@ -139,7 +141,7 @@ void drm_gem_shmem_free(struct drm_gem_shmem_object *shmem)
{
struct drm_gem_object *obj = &shmem->base;
- WARN_ON(shmem->vmap_use_count);
+ drm_WARN_ON(obj->dev, shmem->vmap_use_count);
if (obj->import_attach) {
drm_prime_gem_destroy(obj, shmem->sgt);
@@ -154,7 +156,7 @@ void drm_gem_shmem_free(struct drm_gem_shmem_object *shmem)
drm_gem_shmem_put_pages(shmem);
}
- WARN_ON(shmem->pages_use_count);
+ drm_WARN_ON(obj->dev, shmem->pages_use_count);
drm_gem_object_release(obj);
mutex_destroy(&shmem->pages_lock);
@@ -173,7 +175,8 @@ static int drm_gem_shmem_get_pages_locked(struct drm_gem_shmem_object *shmem)
pages = drm_gem_get_pages(obj);
if (IS_ERR(pages)) {
- DRM_DEBUG_KMS("Failed to get pages (%ld)\n", PTR_ERR(pages));
+ drm_dbg_kms(obj->dev, "Failed to get pages (%ld)\n",
+ PTR_ERR(pages));
shmem->pages_use_count = 0;
return PTR_ERR(pages);
}
@@ -205,9 +208,10 @@ static int drm_gem_shmem_get_pages_locked(struct drm_gem_shmem_object *shmem)
*/
int drm_gem_shmem_get_pages(struct drm_gem_shmem_object *shmem)
{
+ struct drm_gem_object *obj = &shmem->base;
int ret;
- WARN_ON(shmem->base.import_attach);
+ drm_WARN_ON(obj->dev, obj->import_attach);
ret = mutex_lock_interruptible(&shmem->pages_lock);
if (ret)
@@ -223,7 +227,7 @@ static void drm_gem_shmem_put_pages_locked(struct drm_gem_shmem_object *shmem)
{
struct drm_gem_object *obj = &shmem->base;
- if (WARN_ON_ONCE(!shmem->pages_use_count))
+ if (drm_WARN_ON_ONCE(obj->dev, !shmem->pages_use_count))
return;
if (--shmem->pages_use_count > 0)
@@ -266,7 +270,9 @@ EXPORT_SYMBOL(drm_gem_shmem_put_pages);
*/
int drm_gem_shmem_pin(struct drm_gem_shmem_object *shmem)
{
- WARN_ON(shmem->base.import_attach);
+ struct drm_gem_object *obj = &shmem->base;
+
+ drm_WARN_ON(obj->dev, obj->import_attach);
return drm_gem_shmem_get_pages(shmem);
}
@@ -281,7 +287,9 @@ EXPORT_SYMBOL(drm_gem_shmem_pin);
*/
void drm_gem_shmem_unpin(struct drm_gem_shmem_object *shmem)
{
- WARN_ON(shmem->base.import_attach);
+ struct drm_gem_object *obj = &shmem->base;
+
+ drm_WARN_ON(obj->dev, obj->import_attach);
drm_gem_shmem_put_pages(shmem);
}
@@ -293,24 +301,22 @@ static int drm_gem_shmem_vmap_locked(struct drm_gem_shmem_object *shmem,
struct drm_gem_object *obj = &shmem->base;
int ret = 0;
- if (shmem->vmap_use_count++ > 0) {
- iosys_map_set_vaddr(map, shmem->vaddr);
- return 0;
- }
-
if (obj->import_attach) {
ret = dma_buf_vmap(obj->import_attach->dmabuf, map);
if (!ret) {
- if (WARN_ON(map->is_iomem)) {
+ if (drm_WARN_ON(obj->dev, map->is_iomem)) {
dma_buf_vunmap(obj->import_attach->dmabuf, map);
- ret = -EIO;
- goto err_put_pages;
+ return -EIO;
}
- shmem->vaddr = map->vaddr;
}
} else {
pgprot_t prot = PAGE_KERNEL;
+ if (shmem->vmap_use_count++ > 0) {
+ iosys_map_set_vaddr(map, shmem->vaddr);
+ return 0;
+ }
+
ret = drm_gem_shmem_get_pages(shmem);
if (ret)
goto err_zero_use;
@@ -326,7 +332,7 @@ static int drm_gem_shmem_vmap_locked(struct drm_gem_shmem_object *shmem,
}
if (ret) {
- DRM_DEBUG_KMS("Failed to vmap pages, error %d\n", ret);
+ drm_dbg_kms(obj->dev, "Failed to vmap pages, error %d\n", ret);
goto err_put_pages;
}
@@ -376,15 +382,15 @@ static void drm_gem_shmem_vunmap_locked(struct drm_gem_shmem_object *shmem,
{
struct drm_gem_object *obj = &shmem->base;
- if (WARN_ON_ONCE(!shmem->vmap_use_count))
- return;
-
- if (--shmem->vmap_use_count > 0)
- return;
-
if (obj->import_attach) {
dma_buf_vunmap(obj->import_attach->dmabuf, map);
} else {
+ if (drm_WARN_ON_ONCE(obj->dev, !shmem->vmap_use_count))
+ return;
+
+ if (--shmem->vmap_use_count > 0)
+ return;
+
vunmap(shmem->vaddr);
drm_gem_shmem_put_pages(shmem);
}
@@ -413,7 +419,7 @@ void drm_gem_shmem_vunmap(struct drm_gem_shmem_object *shmem,
}
EXPORT_SYMBOL(drm_gem_shmem_vunmap);
-static struct drm_gem_shmem_object *
+static int
drm_gem_shmem_create_with_handle(struct drm_file *file_priv,
struct drm_device *dev, size_t size,
uint32_t *handle)
@@ -423,7 +429,7 @@ drm_gem_shmem_create_with_handle(struct drm_file *file_priv,
shmem = drm_gem_shmem_create(dev, size);
if (IS_ERR(shmem))
- return shmem;
+ return PTR_ERR(shmem);
/*
* Allocate an id of idr table where the obj is registered
@@ -432,10 +438,8 @@ drm_gem_shmem_create_with_handle(struct drm_file *file_priv,
ret = drm_gem_handle_create(file_priv, &shmem->base, handle);
/* drop reference from allocate - handle holds it now. */
drm_gem_object_put(&shmem->base);
- if (ret)
- return ERR_PTR(ret);
- return shmem;
+ return ret;
}
/* Update madvise status, returns true if not purged, else
@@ -461,7 +465,7 @@ void drm_gem_shmem_purge_locked(struct drm_gem_shmem_object *shmem)
struct drm_gem_object *obj = &shmem->base;
struct drm_device *dev = obj->dev;
- WARN_ON(!drm_gem_shmem_is_purgeable(shmem));
+ drm_WARN_ON(obj->dev, !drm_gem_shmem_is_purgeable(shmem));
dma_unmap_sgtable(dev->dev, shmem->sgt, DMA_BIDIRECTIONAL, 0);
sg_free_table(shmem->sgt);
@@ -518,7 +522,6 @@ int drm_gem_shmem_dumb_create(struct drm_file *file, struct drm_device *dev,
struct drm_mode_create_dumb *args)
{
u32 min_pitch = DIV_ROUND_UP(args->width * args->bpp, 8);
- struct drm_gem_shmem_object *shmem;
if (!args->pitch || !args->size) {
args->pitch = min_pitch;
@@ -531,9 +534,7 @@ int drm_gem_shmem_dumb_create(struct drm_file *file, struct drm_device *dev,
args->size = PAGE_ALIGN(args->pitch * args->height);
}
- shmem = drm_gem_shmem_create_with_handle(file, dev, args->size, &args->handle);
-
- return PTR_ERR_OR_ZERO(shmem);
+ return drm_gem_shmem_create_with_handle(file, dev, args->size, &args->handle);
}
EXPORT_SYMBOL_GPL(drm_gem_shmem_dumb_create);
@@ -553,7 +554,7 @@ static vm_fault_t drm_gem_shmem_fault(struct vm_fault *vmf)
mutex_lock(&shmem->pages_lock);
if (page_offset >= num_pages ||
- WARN_ON_ONCE(!shmem->pages) ||
+ drm_WARN_ON_ONCE(obj->dev, !shmem->pages) ||
shmem->madv < 0) {
ret = VM_FAULT_SIGBUS;
} else {
@@ -571,12 +572,20 @@ static void drm_gem_shmem_vm_open(struct vm_area_struct *vma)
{
struct drm_gem_object *obj = vma->vm_private_data;
struct drm_gem_shmem_object *shmem = to_drm_gem_shmem_obj(obj);
- int ret;
- WARN_ON(shmem->base.import_attach);
+ drm_WARN_ON(obj->dev, obj->import_attach);
- ret = drm_gem_shmem_get_pages(shmem);
- WARN_ON_ONCE(ret != 0);
+ mutex_lock(&shmem->pages_lock);
+
+ /*
+ * We should have already pinned the pages when the buffer was first
+ * mmap'd, vm_open() just grabs an additional reference for the new
+ * mm the vma is getting copied into (ie. on fork()).
+ */
+ if (!drm_WARN_ON_ONCE(obj->dev, !shmem->pages_use_count))
+ shmem->pages_use_count++;
+
+ mutex_unlock(&shmem->pages_lock);
drm_gem_vm_open(vma);
}
@@ -614,20 +623,21 @@ int drm_gem_shmem_mmap(struct drm_gem_shmem_object *shmem, struct vm_area_struct
int ret;
if (obj->import_attach) {
- /* Drop the reference drm_gem_mmap_obj() acquired.*/
- drm_gem_object_put(obj);
vma->vm_private_data = NULL;
+ ret = dma_buf_mmap(obj->dma_buf, vma, 0);
- return dma_buf_mmap(obj->dma_buf, vma, 0);
+ /* Drop the reference drm_gem_mmap_obj() acquired.*/
+ if (!ret)
+ drm_gem_object_put(obj);
+
+ return ret;
}
ret = drm_gem_shmem_get_pages(shmem);
- if (ret) {
- drm_gem_vm_close(vma);
+ if (ret)
return ret;
- }
- vma->vm_flags |= VM_PFNMAP | VM_DONTEXPAND | VM_DONTDUMP;
+ vm_flags_set(vma, VM_PFNMAP | VM_DONTEXPAND | VM_DONTDUMP);
vma->vm_page_prot = vm_get_page_prot(vma->vm_flags);
if (shmem->map_wc)
vma->vm_page_prot = pgprot_writecombine(vma->vm_page_prot);
@@ -645,6 +655,9 @@ EXPORT_SYMBOL_GPL(drm_gem_shmem_mmap);
void drm_gem_shmem_print_info(const struct drm_gem_shmem_object *shmem,
struct drm_printer *p, unsigned int indent)
{
+ if (shmem->base.import_attach)
+ return;
+
drm_printf_indent(p, indent, "pages_use_count=%u\n", shmem->pages_use_count);
drm_printf_indent(p, indent, "vmap_use_count=%u\n", shmem->vmap_use_count);
drm_printf_indent(p, indent, "vaddr=%p\n", shmem->vaddr);
@@ -669,29 +682,13 @@ struct sg_table *drm_gem_shmem_get_sg_table(struct drm_gem_shmem_object *shmem)
{
struct drm_gem_object *obj = &shmem->base;
- WARN_ON(shmem->base.import_attach);
+ drm_WARN_ON(obj->dev, obj->import_attach);
return drm_prime_pages_to_sg(obj->dev, shmem->pages, obj->size >> PAGE_SHIFT);
}
EXPORT_SYMBOL_GPL(drm_gem_shmem_get_sg_table);
-/**
- * drm_gem_shmem_get_pages_sgt - Pin pages, dma map them, and return a
- * scatter/gather table for a shmem GEM object.
- * @shmem: shmem GEM object
- *
- * This function returns a scatter/gather table suitable for driver usage. If
- * the sg table doesn't exist, the pages are pinned, dma-mapped, and a sg
- * table created.
- *
- * This is the main function for drivers to get at backing storage, and it hides
- * and difference between dma-buf imported and natively allocated objects.
- * drm_gem_shmem_get_sg_table() should not be directly called by drivers.
- *
- * Returns:
- * A pointer to the scatter/gather table of pinned pages or errno on failure.
- */
-struct sg_table *drm_gem_shmem_get_pages_sgt(struct drm_gem_shmem_object *shmem)
+static struct sg_table *drm_gem_shmem_get_pages_sgt_locked(struct drm_gem_shmem_object *shmem)
{
struct drm_gem_object *obj = &shmem->base;
int ret;
@@ -700,9 +697,9 @@ struct sg_table *drm_gem_shmem_get_pages_sgt(struct drm_gem_shmem_object *shmem)
if (shmem->sgt)
return shmem->sgt;
- WARN_ON(obj->import_attach);
+ drm_WARN_ON(obj->dev, obj->import_attach);
- ret = drm_gem_shmem_get_pages(shmem);
+ ret = drm_gem_shmem_get_pages_locked(shmem);
if (ret)
return ERR_PTR(ret);
@@ -724,9 +721,39 @@ err_free_sgt:
sg_free_table(sgt);
kfree(sgt);
err_put_pages:
- drm_gem_shmem_put_pages(shmem);
+ drm_gem_shmem_put_pages_locked(shmem);
return ERR_PTR(ret);
}
+
+/**
+ * drm_gem_shmem_get_pages_sgt - Pin pages, dma map them, and return a
+ * scatter/gather table for a shmem GEM object.
+ * @shmem: shmem GEM object
+ *
+ * This function returns a scatter/gather table suitable for driver usage. If
+ * the sg table doesn't exist, the pages are pinned, dma-mapped, and a sg
+ * table created.
+ *
+ * This is the main function for drivers to get at backing storage, and it hides
+ * and difference between dma-buf imported and natively allocated objects.
+ * drm_gem_shmem_get_sg_table() should not be directly called by drivers.
+ *
+ * Returns:
+ * A pointer to the scatter/gather table of pinned pages or errno on failure.
+ */
+struct sg_table *drm_gem_shmem_get_pages_sgt(struct drm_gem_shmem_object *shmem)
+{
+ int ret;
+ struct sg_table *sgt;
+
+ ret = mutex_lock_interruptible(&shmem->pages_lock);
+ if (ret)
+ return ERR_PTR(ret);
+ sgt = drm_gem_shmem_get_pages_sgt_locked(shmem);
+ mutex_unlock(&shmem->pages_lock);
+
+ return sgt;
+}
EXPORT_SYMBOL_GPL(drm_gem_shmem_get_pages_sgt);
/**
@@ -758,7 +785,7 @@ drm_gem_shmem_prime_import_sg_table(struct drm_device *dev,
shmem->sgt = sgt;
- DRM_DEBUG_PRIME("size = %zu\n", size);
+ drm_dbg_prime(dev, "size = %zu\n", size);
return &shmem->base;
}
diff --git a/drivers/gpu/drm/drm_gem_ttm_helper.c b/drivers/gpu/drm/drm_gem_ttm_helper.c
index e5fc875990c4..3734aa2d1c5b 100644
--- a/drivers/gpu/drm/drm_gem_ttm_helper.c
+++ b/drivers/gpu/drm/drm_gem_ttm_helper.c
@@ -3,6 +3,8 @@
#include <linux/module.h>
#include <drm/drm_gem_ttm_helper.h>
+#include <drm/ttm/ttm_placement.h>
+#include <drm/ttm/ttm_tt.h>
/**
* DOC: overview
@@ -64,13 +66,8 @@ int drm_gem_ttm_vmap(struct drm_gem_object *gem,
struct iosys_map *map)
{
struct ttm_buffer_object *bo = drm_gem_ttm_of_gem(gem);
- int ret;
-
- dma_resv_lock(gem->resv, NULL);
- ret = ttm_bo_vmap(bo, map);
- dma_resv_unlock(gem->resv);
- return ret;
+ return ttm_bo_vmap(bo, map);
}
EXPORT_SYMBOL(drm_gem_ttm_vmap);
@@ -87,9 +84,7 @@ void drm_gem_ttm_vunmap(struct drm_gem_object *gem,
{
struct ttm_buffer_object *bo = drm_gem_ttm_of_gem(gem);
- dma_resv_lock(gem->resv, NULL);
ttm_bo_vunmap(bo, map);
- dma_resv_unlock(gem->resv);
}
EXPORT_SYMBOL(drm_gem_ttm_vunmap);
diff --git a/drivers/gpu/drm/drm_gem_vram_helper.c b/drivers/gpu/drm/drm_gem_vram_helper.c
index 125160b534be..0bea3df2a16d 100644
--- a/drivers/gpu/drm/drm_gem_vram_helper.c
+++ b/drivers/gpu/drm/drm_gem_vram_helper.c
@@ -19,6 +19,7 @@
#include <drm/drm_simple_kms_helper.h>
#include <drm/ttm/ttm_range_manager.h>
+#include <drm/ttm/ttm_tt.h>
static const struct drm_gem_object_funcs drm_gem_vram_object_funcs;
@@ -433,25 +434,19 @@ int drm_gem_vram_vmap(struct drm_gem_vram_object *gbo, struct iosys_map *map)
{
int ret;
- ret = ttm_bo_reserve(&gbo->bo, true, false, NULL);
- if (ret)
- return ret;
+ dma_resv_assert_held(gbo->bo.base.resv);
ret = drm_gem_vram_pin_locked(gbo, 0);
if (ret)
- goto err_ttm_bo_unreserve;
+ return ret;
ret = drm_gem_vram_kmap_locked(gbo, map);
if (ret)
goto err_drm_gem_vram_unpin_locked;
- ttm_bo_unreserve(&gbo->bo);
-
return 0;
err_drm_gem_vram_unpin_locked:
drm_gem_vram_unpin_locked(gbo);
-err_ttm_bo_unreserve:
- ttm_bo_unreserve(&gbo->bo);
return ret;
}
EXPORT_SYMBOL(drm_gem_vram_vmap);
@@ -467,16 +462,10 @@ EXPORT_SYMBOL(drm_gem_vram_vmap);
void drm_gem_vram_vunmap(struct drm_gem_vram_object *gbo,
struct iosys_map *map)
{
- int ret;
-
- ret = ttm_bo_reserve(&gbo->bo, false, false, NULL);
- if (WARN_ONCE(ret, "ttm_bo_reserve_failed(): ret=%d\n", ret))
- return;
+ dma_resv_assert_held(gbo->bo.base.resv);
drm_gem_vram_kunmap_locked(gbo, map);
drm_gem_vram_unpin_locked(gbo);
-
- ttm_bo_unreserve(&gbo->bo);
}
EXPORT_SYMBOL(drm_gem_vram_vunmap);
@@ -927,6 +916,17 @@ static int bo_driver_move(struct ttm_buffer_object *bo,
{
struct drm_gem_vram_object *gbo;
+ if (!bo->resource) {
+ if (new_mem->mem_type != TTM_PL_SYSTEM) {
+ hop->mem_type = TTM_PL_SYSTEM;
+ hop->flags = TTM_PL_FLAG_TEMPORARY;
+ return -EMULTIHOP;
+ }
+
+ ttm_bo_move_null(bo, new_mem);
+ return 0;
+ }
+
gbo = drm_gem_vram_of_bo(bo);
return drm_gem_vram_bo_driver_move(gbo, evict, ctx, new_mem);
@@ -968,8 +968,8 @@ static struct ttm_device_funcs bo_driver = {
static int drm_vram_mm_debugfs(struct seq_file *m, void *data)
{
- struct drm_info_node *node = (struct drm_info_node *) m->private;
- struct drm_vram_mm *vmm = node->minor->dev->vram_mm;
+ struct drm_debugfs_entry *entry = m->private;
+ struct drm_vram_mm *vmm = entry->dev->vram_mm;
struct ttm_resource_manager *man = ttm_manager_type(&vmm->bdev, TTM_PL_VRAM);
struct drm_printer p = drm_seq_file_printer(m);
@@ -977,7 +977,7 @@ static int drm_vram_mm_debugfs(struct seq_file *m, void *data)
return 0;
}
-static const struct drm_info_list drm_vram_mm_debugfs_list[] = {
+static const struct drm_debugfs_info drm_vram_mm_debugfs_list[] = {
{ "vram-mm", drm_vram_mm_debugfs, 0, NULL },
};
@@ -989,9 +989,8 @@ static const struct drm_info_list drm_vram_mm_debugfs_list[] = {
*/
void drm_vram_mm_debugfs_init(struct drm_minor *minor)
{
- drm_debugfs_create_files(drm_vram_mm_debugfs_list,
- ARRAY_SIZE(drm_vram_mm_debugfs_list),
- minor->debugfs_root, minor);
+ drm_debugfs_add_files(minor->dev, drm_vram_mm_debugfs_list,
+ ARRAY_SIZE(drm_vram_mm_debugfs_list));
}
EXPORT_SYMBOL(drm_vram_mm_debugfs_init);
diff --git a/drivers/gpu/drm/drm_internal.h b/drivers/gpu/drm/drm_internal.h
index 7bb98e6a446d..d7e023bbb0d5 100644
--- a/drivers/gpu/drm/drm_internal.h
+++ b/drivers/gpu/drm/drm_internal.h
@@ -104,7 +104,8 @@ static inline void drm_vblank_flush_worker(struct drm_vblank_crtc *vblank)
static inline void drm_vblank_destroy_worker(struct drm_vblank_crtc *vblank)
{
- kthread_destroy_worker(vblank->worker);
+ if (vblank->worker)
+ kthread_destroy_worker(vblank->worker);
}
int drm_vblank_worker_init(struct drm_vblank_crtc *vblank);
@@ -177,14 +178,12 @@ void drm_gem_unpin(struct drm_gem_object *obj);
int drm_gem_vmap(struct drm_gem_object *obj, struct iosys_map *map);
void drm_gem_vunmap(struct drm_gem_object *obj, struct iosys_map *map);
-int drm_gem_dumb_destroy(struct drm_file *file, struct drm_device *dev,
- u32 handle);
-
/* drm_debugfs.c drm_debugfs_crc.c */
#if defined(CONFIG_DEBUG_FS)
int drm_debugfs_init(struct drm_minor *minor, int minor_id,
struct dentry *root);
void drm_debugfs_cleanup(struct drm_minor *minor);
+void drm_debugfs_late_register(struct drm_device *dev);
void drm_debugfs_connector_add(struct drm_connector *connector);
void drm_debugfs_connector_remove(struct drm_connector *connector);
void drm_debugfs_crtc_add(struct drm_crtc *crtc);
@@ -201,6 +200,10 @@ static inline void drm_debugfs_cleanup(struct drm_minor *minor)
{
}
+static inline void drm_debugfs_late_register(struct drm_device *dev)
+{
+}
+
static inline void drm_debugfs_connector_add(struct drm_connector *connector)
{
}
diff --git a/drivers/gpu/drm/drm_ioc32.c b/drivers/gpu/drm/drm_ioc32.c
index 5d82891c3222..49a743f62b4a 100644
--- a/drivers/gpu/drm/drm_ioc32.c
+++ b/drivers/gpu/drm/drm_ioc32.c
@@ -972,6 +972,7 @@ long drm_compat_ioctl(struct file *filp, unsigned int cmd, unsigned long arg)
{
unsigned int nr = DRM_IOCTL_NR(cmd);
struct drm_file *file_priv = filp->private_data;
+ struct drm_device *dev = file_priv->minor->dev;
drm_ioctl_compat_t *fn;
int ret;
@@ -986,14 +987,14 @@ long drm_compat_ioctl(struct file *filp, unsigned int cmd, unsigned long arg)
if (!fn)
return drm_ioctl(filp, cmd, arg);
- DRM_DEBUG("comm=\"%s\", pid=%d, dev=0x%lx, auth=%d, %s\n",
- current->comm, task_pid_nr(current),
- (long)old_encode_dev(file_priv->minor->kdev->devt),
- file_priv->authenticated,
- drm_compat_ioctls[nr].name);
+ drm_dbg_core(dev, "comm=\"%s\", pid=%d, dev=0x%lx, auth=%d, %s\n",
+ current->comm, task_pid_nr(current),
+ (long)old_encode_dev(file_priv->minor->kdev->devt),
+ file_priv->authenticated,
+ drm_compat_ioctls[nr].name);
ret = (*fn)(filp, cmd, arg);
if (ret)
- DRM_DEBUG("ret = %d\n", ret);
+ drm_dbg_core(dev, "ret = %d\n", ret);
return ret;
}
EXPORT_SYMBOL(drm_compat_ioctl);
diff --git a/drivers/gpu/drm/drm_ioctl.c b/drivers/gpu/drm/drm_ioctl.c
index ca2a6e6101dc..7c9d66ee917d 100644
--- a/drivers/gpu/drm/drm_ioctl.c
+++ b/drivers/gpu/drm/drm_ioctl.c
@@ -440,7 +440,7 @@ done:
int drm_noop(struct drm_device *dev, void *data,
struct drm_file *file_priv)
{
- DRM_DEBUG("\n");
+ drm_dbg_core(dev, "\n");
return 0;
}
EXPORT_SYMBOL(drm_noop);
@@ -856,16 +856,16 @@ long drm_ioctl(struct file *filp,
out_size = 0;
ksize = max(max(in_size, out_size), drv_size);
- DRM_DEBUG("comm=\"%s\" pid=%d, dev=0x%lx, auth=%d, %s\n",
- current->comm, task_pid_nr(current),
- (long)old_encode_dev(file_priv->minor->kdev->devt),
- file_priv->authenticated, ioctl->name);
+ drm_dbg_core(dev, "comm=\"%s\" pid=%d, dev=0x%lx, auth=%d, %s\n",
+ current->comm, task_pid_nr(current),
+ (long)old_encode_dev(file_priv->minor->kdev->devt),
+ file_priv->authenticated, ioctl->name);
/* Do not trust userspace, use our own definition */
func = ioctl->func;
if (unlikely(!func)) {
- DRM_DEBUG("no function\n");
+ drm_dbg_core(dev, "no function\n");
retcode = -EINVAL;
goto err_i1;
}
@@ -894,16 +894,17 @@ long drm_ioctl(struct file *filp,
err_i1:
if (!ioctl)
- DRM_DEBUG("invalid ioctl: comm=\"%s\", pid=%d, dev=0x%lx, auth=%d, cmd=0x%02x, nr=0x%02x\n",
- current->comm, task_pid_nr(current),
- (long)old_encode_dev(file_priv->minor->kdev->devt),
- file_priv->authenticated, cmd, nr);
+ drm_dbg_core(dev,
+ "invalid ioctl: comm=\"%s\", pid=%d, dev=0x%lx, auth=%d, cmd=0x%02x, nr=0x%02x\n",
+ current->comm, task_pid_nr(current),
+ (long)old_encode_dev(file_priv->minor->kdev->devt),
+ file_priv->authenticated, cmd, nr);
if (kdata != stack_kdata)
kfree(kdata);
if (retcode)
- DRM_DEBUG("comm=\"%s\", pid=%d, ret=%d\n", current->comm,
- task_pid_nr(current), retcode);
+ drm_dbg_core(dev, "comm=\"%s\", pid=%d, ret=%d\n",
+ current->comm, task_pid_nr(current), retcode);
return retcode;
}
EXPORT_SYMBOL(drm_ioctl);
diff --git a/drivers/gpu/drm/drm_lease.c b/drivers/gpu/drm/drm_lease.c
index d72c2fac0ff1..150fe1555068 100644
--- a/drivers/gpu/drm/drm_lease.c
+++ b/drivers/gpu/drm/drm_lease.c
@@ -6,7 +6,7 @@
#include <linux/uaccess.h>
#include <drm/drm_auth.h>
-#include <drm/drm_crtc_helper.h>
+#include <drm/drm_crtc.h>
#include <drm/drm_drv.h>
#include <drm/drm_file.h>
#include <drm/drm_lease.h>
@@ -213,11 +213,11 @@ static struct drm_master *drm_lease_create(struct drm_master *lessor, struct idr
int id;
void *entry;
- DRM_DEBUG_LEASE("lessor %d\n", lessor->lessee_id);
+ drm_dbg_lease(dev, "lessor %d\n", lessor->lessee_id);
lessee = drm_master_create(lessor->dev);
if (!lessee) {
- DRM_DEBUG_LEASE("drm_master_create failed\n");
+ drm_dbg_lease(dev, "drm_master_create failed\n");
return ERR_PTR(-ENOMEM);
}
@@ -231,7 +231,7 @@ static struct drm_master *drm_lease_create(struct drm_master *lessor, struct idr
error = -EBUSY;
if (error != 0) {
- DRM_DEBUG_LEASE("object %d failed %d\n", object, error);
+ drm_dbg_lease(dev, "object %d failed %d\n", object, error);
goto out_lessee;
}
}
@@ -249,7 +249,8 @@ static struct drm_master *drm_lease_create(struct drm_master *lessor, struct idr
/* Move the leases over */
lessee->leases = *leases;
- DRM_DEBUG_LEASE("new lessee %d %p, lessor %d %p\n", lessee->lessee_id, lessee, lessor->lessee_id, lessor);
+ drm_dbg_lease(dev, "new lessee %d %p, lessor %d %p\n",
+ lessee->lessee_id, lessee, lessor->lessee_id, lessor);
mutex_unlock(&dev->mode_config.idr_mutex);
return lessee;
@@ -268,7 +269,7 @@ void drm_lease_destroy(struct drm_master *master)
mutex_lock(&dev->mode_config.idr_mutex);
- DRM_DEBUG_LEASE("drm_lease_destroy %d\n", master->lessee_id);
+ drm_dbg_lease(dev, "drm_lease_destroy %d\n", master->lessee_id);
/* This master is referenced by all lessees, hence it cannot be destroyed
* until all of them have been
@@ -277,7 +278,8 @@ void drm_lease_destroy(struct drm_master *master)
/* Remove this master from the lessee idr in the owner */
if (master->lessee_id != 0) {
- DRM_DEBUG_LEASE("remove master %d from device list of lessees\n", master->lessee_id);
+ drm_dbg_lease(dev, "remove master %d from device list of lessees\n",
+ master->lessee_id);
idr_remove(&(drm_lease_owner(master)->lessee_idr), master->lessee_id);
}
@@ -292,7 +294,7 @@ void drm_lease_destroy(struct drm_master *master)
drm_master_put(&master->lessor);
}
- DRM_DEBUG_LEASE("drm_lease_destroy done %d\n", master->lessee_id);
+ drm_dbg_lease(dev, "drm_lease_destroy done %d\n", master->lessee_id);
}
static void _drm_lease_revoke(struct drm_master *top)
@@ -308,7 +310,8 @@ static void _drm_lease_revoke(struct drm_master *top)
* the tree is fully connected, we can do this without recursing
*/
for (;;) {
- DRM_DEBUG_LEASE("revoke leases for %p %d\n", master, master->lessee_id);
+ drm_dbg_lease(master->dev, "revoke leases for %p %d\n",
+ master, master->lessee_id);
/* Evacuate the lease */
idr_for_each_entry(&master->leases, entry, object)
@@ -408,7 +411,7 @@ static int fill_object_idr(struct drm_device *dev,
ret = validate_lease(dev, object_count, objects, universal_planes);
if (ret) {
- DRM_DEBUG_LEASE("lease validation failed\n");
+ drm_dbg_lease(dev, "lease validation failed\n");
goto out_free_objects;
}
@@ -418,7 +421,7 @@ static int fill_object_idr(struct drm_device *dev,
struct drm_mode_object *obj = objects[o];
u32 object_id = objects[o]->id;
- DRM_DEBUG_LEASE("Adding object %d to lease\n", object_id);
+ drm_dbg_lease(dev, "Adding object %d to lease\n", object_id);
/*
* We're using an IDR to hold the set of leased
@@ -430,8 +433,8 @@ static int fill_object_idr(struct drm_device *dev,
*/
ret = idr_alloc(leases, &drm_lease_idr_object , object_id, object_id + 1, GFP_KERNEL);
if (ret < 0) {
- DRM_DEBUG_LEASE("Object %d cannot be inserted into leases (%d)\n",
- object_id, ret);
+ drm_dbg_lease(dev, "Object %d cannot be inserted into leases (%d)\n",
+ object_id, ret);
goto out_free_objects;
}
if (obj->type == DRM_MODE_OBJECT_CRTC && !universal_planes) {
@@ -439,15 +442,15 @@ static int fill_object_idr(struct drm_device *dev,
ret = idr_alloc(leases, &drm_lease_idr_object, crtc->primary->base.id, crtc->primary->base.id + 1, GFP_KERNEL);
if (ret < 0) {
- DRM_DEBUG_LEASE("Object primary plane %d cannot be inserted into leases (%d)\n",
- object_id, ret);
+ drm_dbg_lease(dev, "Object primary plane %d cannot be inserted into leases (%d)\n",
+ object_id, ret);
goto out_free_objects;
}
if (crtc->cursor) {
ret = idr_alloc(leases, &drm_lease_idr_object, crtc->cursor->base.id, crtc->cursor->base.id + 1, GFP_KERNEL);
if (ret < 0) {
- DRM_DEBUG_LEASE("Object cursor plane %d cannot be inserted into leases (%d)\n",
- object_id, ret);
+ drm_dbg_lease(dev, "Object cursor plane %d cannot be inserted into leases (%d)\n",
+ object_id, ret);
goto out_free_objects;
}
}
@@ -490,14 +493,14 @@ int drm_mode_create_lease_ioctl(struct drm_device *dev,
return -EOPNOTSUPP;
if (cl->flags && (cl->flags & ~(O_CLOEXEC | O_NONBLOCK))) {
- DRM_DEBUG_LEASE("invalid flags\n");
+ drm_dbg_lease(dev, "invalid flags\n");
return -EINVAL;
}
lessor = drm_file_get_master(lessor_priv);
/* Do not allow sub-leases */
if (lessor->lessor) {
- DRM_DEBUG_LEASE("recursive leasing not allowed\n");
+ drm_dbg_lease(dev, "recursive leasing not allowed\n");
ret = -EINVAL;
goto out_lessor;
}
@@ -520,7 +523,7 @@ int drm_mode_create_lease_ioctl(struct drm_device *dev,
object_count, object_ids);
kfree(object_ids);
if (ret) {
- DRM_DEBUG_LEASE("lease object lookup failed: %i\n", ret);
+ drm_dbg_lease(dev, "lease object lookup failed: %i\n", ret);
idr_destroy(&leases);
goto out_lessor;
}
@@ -534,7 +537,7 @@ int drm_mode_create_lease_ioctl(struct drm_device *dev,
goto out_lessor;
}
- DRM_DEBUG_LEASE("Creating lease\n");
+ drm_dbg_lease(dev, "Creating lease\n");
/* lessee will take the ownership of leases */
lessee = drm_lease_create(lessor, &leases);
@@ -545,7 +548,7 @@ int drm_mode_create_lease_ioctl(struct drm_device *dev,
}
/* Clone the lessor file to create a new file for us */
- DRM_DEBUG_LEASE("Allocating lease file\n");
+ drm_dbg_lease(dev, "Allocating lease file\n");
lessee_file = file_clone_open(lessor_file);
if (IS_ERR(lessee_file)) {
ret = PTR_ERR(lessee_file);
@@ -560,7 +563,7 @@ int drm_mode_create_lease_ioctl(struct drm_device *dev,
lessee_priv->authenticated = 1;
/* Pass fd back to userspace */
- DRM_DEBUG_LEASE("Returning fd %d id %d\n", fd, lessee->lessee_id);
+ drm_dbg_lease(dev, "Returning fd %d id %d\n", fd, lessee->lessee_id);
cl->fd = fd;
cl->lessee_id = lessee->lessee_id;
@@ -568,7 +571,7 @@ int drm_mode_create_lease_ioctl(struct drm_device *dev,
fd_install(fd, lessee_file);
drm_master_put(&lessor);
- DRM_DEBUG_LEASE("drm_mode_create_lease_ioctl succeeded\n");
+ drm_dbg_lease(dev, "drm_mode_create_lease_ioctl succeeded\n");
return 0;
out_lessee:
@@ -579,7 +582,7 @@ out_leases:
out_lessor:
drm_master_put(&lessor);
- DRM_DEBUG_LEASE("drm_mode_create_lease_ioctl failed: %d\n", ret);
+ drm_dbg_lease(dev, "drm_mode_create_lease_ioctl failed: %d\n", ret);
return ret;
}
@@ -601,7 +604,7 @@ int drm_mode_list_lessees_ioctl(struct drm_device *dev,
return -EOPNOTSUPP;
lessor = drm_file_get_master(lessor_priv);
- DRM_DEBUG_LEASE("List lessees for %d\n", lessor->lessee_id);
+ drm_dbg_lease(dev, "List lessees for %d\n", lessor->lessee_id);
mutex_lock(&dev->mode_config.idr_mutex);
@@ -610,7 +613,8 @@ int drm_mode_list_lessees_ioctl(struct drm_device *dev,
/* Only list un-revoked leases */
if (!idr_is_empty(&lessee->leases)) {
if (count_lessees > count) {
- DRM_DEBUG_LEASE("Add lessee %d\n", lessee->lessee_id);
+ drm_dbg_lease(dev, "Add lessee %d\n",
+ lessee->lessee_id);
ret = put_user(lessee->lessee_id, lessee_ids + count);
if (ret)
break;
@@ -619,7 +623,7 @@ int drm_mode_list_lessees_ioctl(struct drm_device *dev,
}
}
- DRM_DEBUG_LEASE("Lessor leases to %d\n", count);
+ drm_dbg_lease(dev, "Lessor leases to %d\n", count);
if (ret == 0)
arg->count_lessees = count;
@@ -651,7 +655,7 @@ int drm_mode_get_lease_ioctl(struct drm_device *dev,
return -EOPNOTSUPP;
lessee = drm_file_get_master(lessee_priv);
- DRM_DEBUG_LEASE("get lease for %d\n", lessee->lessee_id);
+ drm_dbg_lease(dev, "get lease for %d\n", lessee->lessee_id);
mutex_lock(&dev->mode_config.idr_mutex);
@@ -665,7 +669,7 @@ int drm_mode_get_lease_ioctl(struct drm_device *dev,
count = 0;
idr_for_each_entry(object_idr, entry, object) {
if (count_objects > count) {
- DRM_DEBUG_LEASE("adding object %d\n", object);
+ drm_dbg_lease(dev, "adding object %d\n", object);
ret = put_user(object, object_ids + count);
if (ret)
break;
@@ -696,7 +700,7 @@ int drm_mode_revoke_lease_ioctl(struct drm_device *dev,
struct drm_master *lessee;
int ret = 0;
- DRM_DEBUG_LEASE("revoke lease for %d\n", arg->lessee_id);
+ drm_dbg_lease(dev, "revoke lease for %d\n", arg->lessee_id);
/* Can't lease without MODESET */
if (!drm_core_check_feature(dev, DRIVER_MODESET))
diff --git a/drivers/gpu/drm/drm_mipi_dbi.c b/drivers/gpu/drm/drm_mipi_dbi.c
index a6ac56580876..c871d9f096b8 100644
--- a/drivers/gpu/drm/drm_mipi_dbi.c
+++ b/drivers/gpu/drm/drm_mipi_dbi.c
@@ -21,6 +21,7 @@
#include <drm/drm_fourcc.h>
#include <drm/drm_framebuffer.h>
#include <drm/drm_gem.h>
+#include <drm/drm_gem_atomic_helper.h>
#include <drm/drm_gem_framebuffer_helper.h>
#include <drm/drm_mipi_dbi.h>
#include <drm/drm_modes.h>
@@ -192,6 +193,7 @@ EXPORT_SYMBOL(mipi_dbi_command_stackbuf);
/**
* mipi_dbi_buf_copy - Copy a framebuffer, transforming it if necessary
* @dst: The destination buffer
+ * @src: The source buffer
* @fb: The source framebuffer
* @clip: Clipping rectangle of the area to be copied
* @swap: When true, swap MSB/LSB of 16-bit values
@@ -199,12 +201,10 @@ EXPORT_SYMBOL(mipi_dbi_command_stackbuf);
* Returns:
* Zero on success, negative error code on failure.
*/
-int mipi_dbi_buf_copy(void *dst, struct drm_framebuffer *fb,
+int mipi_dbi_buf_copy(void *dst, struct iosys_map *src, struct drm_framebuffer *fb,
struct drm_rect *clip, bool swap)
{
struct drm_gem_object *gem = drm_gem_fb_get_obj(fb, 0);
- struct iosys_map map[DRM_FORMAT_MAX_PLANES];
- struct iosys_map data[DRM_FORMAT_MAX_PLANES];
struct iosys_map dst_map = IOSYS_MAP_INIT_VADDR(dst);
int ret;
@@ -212,19 +212,15 @@ int mipi_dbi_buf_copy(void *dst, struct drm_framebuffer *fb,
if (ret)
return ret;
- ret = drm_gem_fb_vmap(fb, map, data);
- if (ret)
- goto out_drm_gem_fb_end_cpu_access;
-
switch (fb->format->format) {
case DRM_FORMAT_RGB565:
if (swap)
- drm_fb_swab(&dst_map, NULL, data, fb, clip, !gem->import_attach);
+ drm_fb_swab(&dst_map, NULL, src, fb, clip, !gem->import_attach);
else
- drm_fb_memcpy(&dst_map, NULL, data, fb, clip);
+ drm_fb_memcpy(&dst_map, NULL, src, fb, clip);
break;
case DRM_FORMAT_XRGB8888:
- drm_fb_xrgb8888_to_rgb565(&dst_map, NULL, data, fb, clip, swap);
+ drm_fb_xrgb8888_to_rgb565(&dst_map, NULL, src, fb, clip, swap);
break;
default:
drm_err_once(fb->dev, "Format is not supported: %p4cc\n",
@@ -232,8 +228,6 @@ int mipi_dbi_buf_copy(void *dst, struct drm_framebuffer *fb,
ret = -EINVAL;
}
- drm_gem_fb_vunmap(fb, map);
-out_drm_gem_fb_end_cpu_access:
drm_gem_fb_end_cpu_access(fb, DMA_FROM_DEVICE);
return ret;
@@ -257,29 +251,18 @@ static void mipi_dbi_set_window_address(struct mipi_dbi_dev *dbidev,
ys & 0xff, (ye >> 8) & 0xff, ye & 0xff);
}
-static void mipi_dbi_fb_dirty(struct drm_framebuffer *fb, struct drm_rect *rect)
+static void mipi_dbi_fb_dirty(struct iosys_map *src, struct drm_framebuffer *fb,
+ struct drm_rect *rect)
{
- struct iosys_map map[DRM_FORMAT_MAX_PLANES];
- struct iosys_map data[DRM_FORMAT_MAX_PLANES];
struct mipi_dbi_dev *dbidev = drm_to_mipi_dbi_dev(fb->dev);
unsigned int height = rect->y2 - rect->y1;
unsigned int width = rect->x2 - rect->x1;
struct mipi_dbi *dbi = &dbidev->dbi;
bool swap = dbi->swap_bytes;
- int idx, ret = 0;
+ int ret = 0;
bool full;
void *tr;
- if (WARN_ON(!fb))
- return;
-
- if (!drm_dev_enter(fb->dev, &idx))
- return;
-
- ret = drm_gem_fb_vmap(fb, map, data);
- if (ret)
- goto err_drm_dev_exit;
-
full = width == fb->width && height == fb->height;
DRM_DEBUG_KMS("Flushing [FB:%d] " DRM_RECT_FMT "\n", fb->base.id, DRM_RECT_ARG(rect));
@@ -287,11 +270,11 @@ static void mipi_dbi_fb_dirty(struct drm_framebuffer *fb, struct drm_rect *rect)
if (!dbi->dc || !full || swap ||
fb->format->format == DRM_FORMAT_XRGB8888) {
tr = dbidev->tx_buf;
- ret = mipi_dbi_buf_copy(dbidev->tx_buf, fb, rect, swap);
+ ret = mipi_dbi_buf_copy(tr, src, fb, rect, swap);
if (ret)
goto err_msg;
} else {
- tr = data[0].vaddr; /* TODO: Use mapping abstraction properly */
+ tr = src->vaddr; /* TODO: Use mapping abstraction properly */
}
mipi_dbi_set_window_address(dbidev, rect->x1, rect->x2 - 1, rect->y1,
@@ -302,11 +285,6 @@ static void mipi_dbi_fb_dirty(struct drm_framebuffer *fb, struct drm_rect *rect)
err_msg:
if (ret)
drm_err_once(fb->dev, "Failed to update display %d\n", ret);
-
- drm_gem_fb_vunmap(fb, map);
-
-err_drm_dev_exit:
- drm_dev_exit(idx);
}
/**
@@ -339,13 +317,24 @@ void mipi_dbi_pipe_update(struct drm_simple_display_pipe *pipe,
struct drm_plane_state *old_state)
{
struct drm_plane_state *state = pipe->plane.state;
+ struct drm_shadow_plane_state *shadow_plane_state = to_drm_shadow_plane_state(state);
+ struct drm_framebuffer *fb = state->fb;
struct drm_rect rect;
+ int idx;
if (!pipe->crtc.state->active)
return;
+ if (WARN_ON(!fb))
+ return;
+
+ if (!drm_dev_enter(fb->dev, &idx))
+ return;
+
if (drm_atomic_helper_damage_merged(old_state, state, &rect))
- mipi_dbi_fb_dirty(state->fb, &rect);
+ mipi_dbi_fb_dirty(&shadow_plane_state->data[0], fb, &rect);
+
+ drm_dev_exit(idx);
}
EXPORT_SYMBOL(mipi_dbi_pipe_update);
@@ -366,6 +355,7 @@ void mipi_dbi_enable_flush(struct mipi_dbi_dev *dbidev,
struct drm_crtc_state *crtc_state,
struct drm_plane_state *plane_state)
{
+ struct drm_shadow_plane_state *shadow_plane_state = to_drm_shadow_plane_state(plane_state);
struct drm_framebuffer *fb = plane_state->fb;
struct drm_rect rect = {
.x1 = 0,
@@ -378,7 +368,7 @@ void mipi_dbi_enable_flush(struct mipi_dbi_dev *dbidev,
if (!drm_dev_enter(&dbidev->drm, &idx))
return;
- mipi_dbi_fb_dirty(fb, &rect);
+ mipi_dbi_fb_dirty(&shadow_plane_state->data[0], fb, &rect);
backlight_enable(dbidev->backlight);
drm_dev_exit(idx);
@@ -427,9 +417,95 @@ void mipi_dbi_pipe_disable(struct drm_simple_display_pipe *pipe)
if (dbidev->regulator)
regulator_disable(dbidev->regulator);
+ if (dbidev->io_regulator)
+ regulator_disable(dbidev->io_regulator);
}
EXPORT_SYMBOL(mipi_dbi_pipe_disable);
+/**
+ * mipi_dbi_pipe_begin_fb_access - MIPI DBI pipe begin-access helper
+ * @pipe: Display pipe
+ * @plane_state: Plane state
+ *
+ * This function implements struct &drm_simple_display_funcs.begin_fb_access.
+ *
+ * See drm_gem_begin_shadow_fb_access() for details and mipi_dbi_pipe_cleanup_fb()
+ * for cleanup.
+ *
+ * Returns:
+ * 0 on success, or a negative errno code otherwise.
+ */
+int mipi_dbi_pipe_begin_fb_access(struct drm_simple_display_pipe *pipe,
+ struct drm_plane_state *plane_state)
+{
+ return drm_gem_begin_shadow_fb_access(&pipe->plane, plane_state);
+}
+EXPORT_SYMBOL(mipi_dbi_pipe_begin_fb_access);
+
+/**
+ * mipi_dbi_pipe_end_fb_access - MIPI DBI pipe end-access helper
+ * @pipe: Display pipe
+ * @plane_state: Plane state
+ *
+ * This function implements struct &drm_simple_display_funcs.end_fb_access.
+ *
+ * See mipi_dbi_pipe_begin_fb_access().
+ */
+void mipi_dbi_pipe_end_fb_access(struct drm_simple_display_pipe *pipe,
+ struct drm_plane_state *plane_state)
+{
+ drm_gem_end_shadow_fb_access(&pipe->plane, plane_state);
+}
+EXPORT_SYMBOL(mipi_dbi_pipe_end_fb_access);
+
+/**
+ * mipi_dbi_pipe_reset_plane - MIPI DBI plane-reset helper
+ * @pipe: Display pipe
+ *
+ * This function implements struct &drm_simple_display_funcs.reset_plane
+ * for MIPI DBI planes.
+ */
+void mipi_dbi_pipe_reset_plane(struct drm_simple_display_pipe *pipe)
+{
+ drm_gem_reset_shadow_plane(&pipe->plane);
+}
+EXPORT_SYMBOL(mipi_dbi_pipe_reset_plane);
+
+/**
+ * mipi_dbi_pipe_duplicate_plane_state - duplicates MIPI DBI plane state
+ * @pipe: Display pipe
+ *
+ * This function implements struct &drm_simple_display_funcs.duplicate_plane_state
+ * for MIPI DBI planes.
+ *
+ * See drm_gem_duplicate_shadow_plane_state() for additional details.
+ *
+ * Returns:
+ * A pointer to a new plane state on success, or NULL otherwise.
+ */
+struct drm_plane_state *mipi_dbi_pipe_duplicate_plane_state(struct drm_simple_display_pipe *pipe)
+{
+ return drm_gem_duplicate_shadow_plane_state(&pipe->plane);
+}
+EXPORT_SYMBOL(mipi_dbi_pipe_duplicate_plane_state);
+
+/**
+ * mipi_dbi_pipe_destroy_plane_state - cleans up MIPI DBI plane state
+ * @pipe: Display pipe
+ * @plane_state: Plane state
+ *
+ * This function implements struct drm_simple_display_funcs.destroy_plane_state
+ * for MIPI DBI planes.
+ *
+ * See drm_gem_destroy_shadow_plane_state() for additional details.
+ */
+void mipi_dbi_pipe_destroy_plane_state(struct drm_simple_display_pipe *pipe,
+ struct drm_plane_state *plane_state)
+{
+ drm_gem_destroy_shadow_plane_state(&pipe->plane, plane_state);
+}
+EXPORT_SYMBOL(mipi_dbi_pipe_destroy_plane_state);
+
static int mipi_dbi_connector_get_modes(struct drm_connector *connector)
{
struct mipi_dbi_dev *dbidev = drm_to_mipi_dbi_dev(connector->dev);
@@ -652,6 +728,16 @@ static int mipi_dbi_poweron_reset_conditional(struct mipi_dbi_dev *dbidev, bool
}
}
+ if (dbidev->io_regulator) {
+ ret = regulator_enable(dbidev->io_regulator);
+ if (ret) {
+ DRM_DEV_ERROR(dev, "Failed to enable I/O regulator (%d)\n", ret);
+ if (dbidev->regulator)
+ regulator_disable(dbidev->regulator);
+ return ret;
+ }
+ }
+
if (cond && mipi_dbi_display_is_on(dbi))
return 1;
@@ -661,6 +747,8 @@ static int mipi_dbi_poweron_reset_conditional(struct mipi_dbi_dev *dbidev, bool
DRM_DEV_ERROR(dev, "Failed to send reset command (%d)\n", ret);
if (dbidev->regulator)
regulator_disable(dbidev->regulator);
+ if (dbidev->io_regulator)
+ regulator_disable(dbidev->io_regulator);
return ret;
}
diff --git a/drivers/gpu/drm/drm_mipi_dsi.c b/drivers/gpu/drm/drm_mipi_dsi.c
index 3ec02748d56f..3fd6c733ff4e 100644
--- a/drivers/gpu/drm/drm_mipi_dsi.c
+++ b/drivers/gpu/drm/drm_mipi_dsi.c
@@ -62,9 +62,9 @@ static int mipi_dsi_device_match(struct device *dev, struct device_driver *drv)
return 0;
}
-static int mipi_dsi_uevent(struct device *dev, struct kobj_uevent_env *env)
+static int mipi_dsi_uevent(const struct device *dev, struct kobj_uevent_env *env)
{
- struct mipi_dsi_device *dsi = to_mipi_dsi_device(dev);
+ const struct mipi_dsi_device *dsi = to_mipi_dsi_device(dev);
int err;
err = of_device_uevent_modalias(dev, env);
@@ -160,7 +160,7 @@ of_mipi_dsi_device_add(struct mipi_dsi_host *host, struct device_node *node)
int ret;
u32 reg;
- if (of_modalias_node(node, info.type, sizeof(info.type)) < 0) {
+ if (of_alias_from_compatible(node, info.type, sizeof(info.type)) < 0) {
drm_err(host, "modalias failure on %pOF\n", node);
return ERR_PTR(-EINVAL);
}
@@ -221,7 +221,7 @@ mipi_dsi_device_register_full(struct mipi_dsi_host *host,
return dsi;
}
- dsi->dev.of_node = info->node;
+ device_set_node(&dsi->dev, of_fwnode_handle(info->node));
dsi->channel = info->channel;
strlcpy(dsi->name, info->type, sizeof(dsi->name));
@@ -329,7 +329,7 @@ int mipi_dsi_host_register(struct mipi_dsi_host *host)
for_each_available_child_of_node(host->dev->of_node, node) {
/* skip nodes without reg property */
- if (!of_find_property(node, "reg", NULL))
+ if (!of_property_present(node, "reg"))
continue;
of_mipi_dsi_device_add(host, node);
}
@@ -606,7 +606,7 @@ int mipi_dsi_turn_on_peripheral(struct mipi_dsi_device *dsi)
EXPORT_SYMBOL(mipi_dsi_turn_on_peripheral);
/*
- * mipi_dsi_set_maximum_return_packet_size() - specify the maximum size of the
+ * mipi_dsi_set_maximum_return_packet_size() - specify the maximum size of
* the payload in a long packet transmitted from the peripheral back to the
* host processor
* @dsi: DSI peripheral device
@@ -1224,6 +1224,58 @@ int mipi_dsi_dcs_get_display_brightness(struct mipi_dsi_device *dsi,
}
EXPORT_SYMBOL(mipi_dsi_dcs_get_display_brightness);
+/**
+ * mipi_dsi_dcs_set_display_brightness_large() - sets the 16-bit brightness value
+ * of the display
+ * @dsi: DSI peripheral device
+ * @brightness: brightness value
+ *
+ * Return: 0 on success or a negative error code on failure.
+ */
+int mipi_dsi_dcs_set_display_brightness_large(struct mipi_dsi_device *dsi,
+ u16 brightness)
+{
+ u8 payload[2] = { brightness >> 8, brightness & 0xff };
+ ssize_t err;
+
+ err = mipi_dsi_dcs_write(dsi, MIPI_DCS_SET_DISPLAY_BRIGHTNESS,
+ payload, sizeof(payload));
+ if (err < 0)
+ return err;
+
+ return 0;
+}
+EXPORT_SYMBOL(mipi_dsi_dcs_set_display_brightness_large);
+
+/**
+ * mipi_dsi_dcs_get_display_brightness_large() - gets the current 16-bit
+ * brightness value of the display
+ * @dsi: DSI peripheral device
+ * @brightness: brightness value
+ *
+ * Return: 0 on success or a negative error code on failure.
+ */
+int mipi_dsi_dcs_get_display_brightness_large(struct mipi_dsi_device *dsi,
+ u16 *brightness)
+{
+ u8 brightness_be[2];
+ ssize_t err;
+
+ err = mipi_dsi_dcs_read(dsi, MIPI_DCS_GET_DISPLAY_BRIGHTNESS,
+ brightness_be, sizeof(brightness_be));
+ if (err <= 0) {
+ if (err == 0)
+ err = -ENODATA;
+
+ return err;
+ }
+
+ *brightness = (brightness_be[0] << 8) | brightness_be[1];
+
+ return 0;
+}
+EXPORT_SYMBOL(mipi_dsi_dcs_get_display_brightness_large);
+
static int mipi_dsi_drv_probe(struct device *dev)
{
struct mipi_dsi_driver *drv = to_mipi_dsi_driver(dev->driver);
diff --git a/drivers/gpu/drm/drm_mode_config.c b/drivers/gpu/drm/drm_mode_config.c
index 939d621c9ad4..87eb591fe9b5 100644
--- a/drivers/gpu/drm/drm_mode_config.c
+++ b/drivers/gpu/drm/drm_mode_config.c
@@ -54,6 +54,8 @@ int drm_modeset_register_all(struct drm_device *dev)
if (ret)
goto err_connector;
+ drm_debugfs_late_register(dev);
+
return 0;
err_connector:
@@ -151,9 +153,6 @@ int drm_mode_getresources(struct drm_device *dev, void *data,
count = 0;
connector_id = u64_to_user_ptr(card_res->connector_id_ptr);
drm_for_each_connector_iter(connector, &conn_iter) {
- if (connector->registration_state != DRM_CONNECTOR_REGISTERED)
- continue;
-
/* only expose writeback connectors if userspace understands them */
if (!file_priv->writeback_connectors &&
(connector->connector_type == DRM_MODE_CONNECTOR_WRITEBACK))
@@ -402,6 +401,8 @@ static void drm_mode_config_init_release(struct drm_device *dev, void *ptr)
*/
int drmm_mode_config_init(struct drm_device *dev)
{
+ int ret;
+
mutex_init(&dev->mode_config.mutex);
drm_modeset_lock_init(&dev->mode_config.connection_mutex);
mutex_init(&dev->mode_config.idr_mutex);
@@ -423,7 +424,11 @@ int drmm_mode_config_init(struct drm_device *dev)
init_llist_head(&dev->mode_config.connector_free_list);
INIT_WORK(&dev->mode_config.connector_free_work, drm_connector_free_work_fn);
- drm_mode_create_standard_properties(dev);
+ ret = drm_mode_create_standard_properties(dev);
+ if (ret) {
+ drm_mode_config_cleanup(dev);
+ return ret;
+ }
/* Just to be sure */
dev->mode_config.num_fb = 0;
diff --git a/drivers/gpu/drm/drm_modes.c b/drivers/gpu/drm/drm_modes.c
index 304004fb80aa..ac9a406250c5 100644
--- a/drivers/gpu/drm/drm_modes.c
+++ b/drivers/gpu/drm/drm_modes.c
@@ -31,10 +31,11 @@
*/
#include <linux/ctype.h>
+#include <linux/export.h>
+#include <linux/fb.h> /* for KHZ2PICOS() */
#include <linux/list.h>
#include <linux/list_sort.h>
-#include <linux/export.h>
-#include <linux/fb.h>
+#include <linux/of.h>
#include <video/of_display_timing.h>
#include <video/of_videomode.h>
@@ -116,6 +117,482 @@ void drm_mode_probed_add(struct drm_connector *connector,
}
EXPORT_SYMBOL(drm_mode_probed_add);
+enum drm_mode_analog {
+ DRM_MODE_ANALOG_NTSC, /* 525 lines, 60Hz */
+ DRM_MODE_ANALOG_PAL, /* 625 lines, 50Hz */
+};
+
+/*
+ * The timings come from:
+ * - https://web.archive.org/web/20220406232708/http://www.kolumbus.fi/pami1/video/pal_ntsc.html
+ * - https://web.archive.org/web/20220406124914/http://martin.hinner.info/vga/pal.html
+ * - https://web.archive.org/web/20220609202433/http://www.batsocks.co.uk/readme/video_timing.htm
+ */
+#define NTSC_LINE_DURATION_NS 63556U
+#define NTSC_LINES_NUMBER 525
+
+#define NTSC_HBLK_DURATION_TYP_NS 10900U
+#define NTSC_HBLK_DURATION_MIN_NS (NTSC_HBLK_DURATION_TYP_NS - 200)
+#define NTSC_HBLK_DURATION_MAX_NS (NTSC_HBLK_DURATION_TYP_NS + 200)
+
+#define NTSC_HACT_DURATION_TYP_NS (NTSC_LINE_DURATION_NS - NTSC_HBLK_DURATION_TYP_NS)
+#define NTSC_HACT_DURATION_MIN_NS (NTSC_LINE_DURATION_NS - NTSC_HBLK_DURATION_MAX_NS)
+#define NTSC_HACT_DURATION_MAX_NS (NTSC_LINE_DURATION_NS - NTSC_HBLK_DURATION_MIN_NS)
+
+#define NTSC_HFP_DURATION_TYP_NS 1500
+#define NTSC_HFP_DURATION_MIN_NS 1270
+#define NTSC_HFP_DURATION_MAX_NS 2220
+
+#define NTSC_HSLEN_DURATION_TYP_NS 4700
+#define NTSC_HSLEN_DURATION_MIN_NS (NTSC_HSLEN_DURATION_TYP_NS - 100)
+#define NTSC_HSLEN_DURATION_MAX_NS (NTSC_HSLEN_DURATION_TYP_NS + 100)
+
+#define NTSC_HBP_DURATION_TYP_NS 4700
+
+/*
+ * I couldn't find the actual tolerance for the back porch, so let's
+ * just reuse the sync length ones.
+ */
+#define NTSC_HBP_DURATION_MIN_NS (NTSC_HBP_DURATION_TYP_NS - 100)
+#define NTSC_HBP_DURATION_MAX_NS (NTSC_HBP_DURATION_TYP_NS + 100)
+
+#define PAL_LINE_DURATION_NS 64000U
+#define PAL_LINES_NUMBER 625
+
+#define PAL_HACT_DURATION_TYP_NS 51950U
+#define PAL_HACT_DURATION_MIN_NS (PAL_HACT_DURATION_TYP_NS - 100)
+#define PAL_HACT_DURATION_MAX_NS (PAL_HACT_DURATION_TYP_NS + 400)
+
+#define PAL_HBLK_DURATION_TYP_NS (PAL_LINE_DURATION_NS - PAL_HACT_DURATION_TYP_NS)
+#define PAL_HBLK_DURATION_MIN_NS (PAL_LINE_DURATION_NS - PAL_HACT_DURATION_MAX_NS)
+#define PAL_HBLK_DURATION_MAX_NS (PAL_LINE_DURATION_NS - PAL_HACT_DURATION_MIN_NS)
+
+#define PAL_HFP_DURATION_TYP_NS 1650
+#define PAL_HFP_DURATION_MIN_NS (PAL_HFP_DURATION_TYP_NS - 100)
+#define PAL_HFP_DURATION_MAX_NS (PAL_HFP_DURATION_TYP_NS + 400)
+
+#define PAL_HSLEN_DURATION_TYP_NS 4700
+#define PAL_HSLEN_DURATION_MIN_NS (PAL_HSLEN_DURATION_TYP_NS - 200)
+#define PAL_HSLEN_DURATION_MAX_NS (PAL_HSLEN_DURATION_TYP_NS + 200)
+
+#define PAL_HBP_DURATION_TYP_NS 5700
+#define PAL_HBP_DURATION_MIN_NS (PAL_HBP_DURATION_TYP_NS - 200)
+#define PAL_HBP_DURATION_MAX_NS (PAL_HBP_DURATION_TYP_NS + 200)
+
+struct analog_param_field {
+ unsigned int even, odd;
+};
+
+#define PARAM_FIELD(_odd, _even) \
+ { .even = _even, .odd = _odd }
+
+struct analog_param_range {
+ unsigned int min, typ, max;
+};
+
+#define PARAM_RANGE(_min, _typ, _max) \
+ { .min = _min, .typ = _typ, .max = _max }
+
+struct analog_parameters {
+ unsigned int num_lines;
+ unsigned int line_duration_ns;
+
+ struct analog_param_range hact_ns;
+ struct analog_param_range hfp_ns;
+ struct analog_param_range hslen_ns;
+ struct analog_param_range hbp_ns;
+ struct analog_param_range hblk_ns;
+
+ unsigned int bt601_hfp;
+
+ struct analog_param_field vfp_lines;
+ struct analog_param_field vslen_lines;
+ struct analog_param_field vbp_lines;
+};
+
+#define TV_MODE_PARAMETER(_mode, _lines, _line_dur, _hact, _hfp, \
+ _hslen, _hbp, _hblk, _bt601_hfp, _vfp, \
+ _vslen, _vbp) \
+ [_mode] = { \
+ .num_lines = _lines, \
+ .line_duration_ns = _line_dur, \
+ .hact_ns = _hact, \
+ .hfp_ns = _hfp, \
+ .hslen_ns = _hslen, \
+ .hbp_ns = _hbp, \
+ .hblk_ns = _hblk, \
+ .bt601_hfp = _bt601_hfp, \
+ .vfp_lines = _vfp, \
+ .vslen_lines = _vslen, \
+ .vbp_lines = _vbp, \
+ }
+
+static const struct analog_parameters tv_modes_parameters[] = {
+ TV_MODE_PARAMETER(DRM_MODE_ANALOG_NTSC,
+ NTSC_LINES_NUMBER,
+ NTSC_LINE_DURATION_NS,
+ PARAM_RANGE(NTSC_HACT_DURATION_MIN_NS,
+ NTSC_HACT_DURATION_TYP_NS,
+ NTSC_HACT_DURATION_MAX_NS),
+ PARAM_RANGE(NTSC_HFP_DURATION_MIN_NS,
+ NTSC_HFP_DURATION_TYP_NS,
+ NTSC_HFP_DURATION_MAX_NS),
+ PARAM_RANGE(NTSC_HSLEN_DURATION_MIN_NS,
+ NTSC_HSLEN_DURATION_TYP_NS,
+ NTSC_HSLEN_DURATION_MAX_NS),
+ PARAM_RANGE(NTSC_HBP_DURATION_MIN_NS,
+ NTSC_HBP_DURATION_TYP_NS,
+ NTSC_HBP_DURATION_MAX_NS),
+ PARAM_RANGE(NTSC_HBLK_DURATION_MIN_NS,
+ NTSC_HBLK_DURATION_TYP_NS,
+ NTSC_HBLK_DURATION_MAX_NS),
+ 16,
+ PARAM_FIELD(3, 3),
+ PARAM_FIELD(3, 3),
+ PARAM_FIELD(16, 17)),
+ TV_MODE_PARAMETER(DRM_MODE_ANALOG_PAL,
+ PAL_LINES_NUMBER,
+ PAL_LINE_DURATION_NS,
+ PARAM_RANGE(PAL_HACT_DURATION_MIN_NS,
+ PAL_HACT_DURATION_TYP_NS,
+ PAL_HACT_DURATION_MAX_NS),
+ PARAM_RANGE(PAL_HFP_DURATION_MIN_NS,
+ PAL_HFP_DURATION_TYP_NS,
+ PAL_HFP_DURATION_MAX_NS),
+ PARAM_RANGE(PAL_HSLEN_DURATION_MIN_NS,
+ PAL_HSLEN_DURATION_TYP_NS,
+ PAL_HSLEN_DURATION_MAX_NS),
+ PARAM_RANGE(PAL_HBP_DURATION_MIN_NS,
+ PAL_HBP_DURATION_TYP_NS,
+ PAL_HBP_DURATION_MAX_NS),
+ PARAM_RANGE(PAL_HBLK_DURATION_MIN_NS,
+ PAL_HBLK_DURATION_TYP_NS,
+ PAL_HBLK_DURATION_MAX_NS),
+ 12,
+
+ /*
+ * The front porch is actually 6 short sync
+ * pulses for the even field, and 5 for the
+ * odd field. Each sync takes half a life so
+ * the odd field front porch is shorter by
+ * half a line.
+ *
+ * In progressive, we're supposed to use 6
+ * pulses, so we're fine there
+ */
+ PARAM_FIELD(3, 2),
+
+ /*
+ * The vsync length is 5 long sync pulses,
+ * each field taking half a line. We're
+ * shorter for both fields by half a line.
+ *
+ * In progressive, we're supposed to use 5
+ * pulses, so we're off by half
+ * a line.
+ *
+ * In interlace, we're now off by half a line
+ * for the even field and one line for the odd
+ * field.
+ */
+ PARAM_FIELD(3, 3),
+
+ /*
+ * The back porch starts with post-equalizing
+ * pulses, consisting in 5 short sync pulses
+ * for the even field, 4 for the odd field. In
+ * progressive, it's 5 short syncs.
+ *
+ * In progressive, we thus have 2.5 lines,
+ * plus the 0.5 line we were missing
+ * previously, so we should use 3 lines.
+ *
+ * In interlace, the even field is in the
+ * exact same case than progressive. For the
+ * odd field, we should be using 2 lines but
+ * we're one line short, so we'll make up for
+ * it here by using 3.
+ *
+ * The entire blanking area is supposed to
+ * take 25 lines, so we also need to account
+ * for the rest of the blanking area that
+ * can't be in either the front porch or sync
+ * period.
+ */
+ PARAM_FIELD(19, 20)),
+};
+
+static int fill_analog_mode(struct drm_device *dev,
+ struct drm_display_mode *mode,
+ const struct analog_parameters *params,
+ unsigned long pixel_clock_hz,
+ unsigned int hactive,
+ unsigned int vactive,
+ bool interlace)
+{
+ unsigned long pixel_duration_ns = NSEC_PER_SEC / pixel_clock_hz;
+ unsigned int htotal, vtotal;
+ unsigned int max_hact, hact_duration_ns;
+ unsigned int hblk, hblk_duration_ns;
+ unsigned int hfp, hfp_duration_ns;
+ unsigned int hslen, hslen_duration_ns;
+ unsigned int hbp, hbp_duration_ns;
+ unsigned int porches, porches_duration_ns;
+ unsigned int vfp, vfp_min;
+ unsigned int vbp, vbp_min;
+ unsigned int vslen;
+ bool bt601 = false;
+ int porches_rem;
+ u64 result;
+
+ drm_dbg_kms(dev,
+ "Generating a %ux%u%c, %u-line mode with a %lu kHz clock\n",
+ hactive, vactive,
+ interlace ? 'i' : 'p',
+ params->num_lines,
+ pixel_clock_hz / 1000);
+
+ max_hact = params->hact_ns.max / pixel_duration_ns;
+ if (pixel_clock_hz == 13500000 && hactive > max_hact && hactive <= 720) {
+ drm_dbg_kms(dev, "Trying to generate a BT.601 mode. Disabling checks.\n");
+ bt601 = true;
+ }
+
+ /*
+ * Our pixel duration is going to be round down by the division,
+ * so rounding up is probably going to introduce even more
+ * deviation.
+ */
+ result = (u64)params->line_duration_ns * pixel_clock_hz;
+ do_div(result, NSEC_PER_SEC);
+ htotal = result;
+
+ drm_dbg_kms(dev, "Total Horizontal Number of Pixels: %u\n", htotal);
+
+ hact_duration_ns = hactive * pixel_duration_ns;
+ if (!bt601 &&
+ (hact_duration_ns < params->hact_ns.min ||
+ hact_duration_ns > params->hact_ns.max)) {
+ DRM_ERROR("Invalid horizontal active area duration: %uns (min: %u, max %u)\n",
+ hact_duration_ns, params->hact_ns.min, params->hact_ns.max);
+ return -EINVAL;
+ }
+
+ hblk = htotal - hactive;
+ drm_dbg_kms(dev, "Horizontal Blanking Period: %u\n", hblk);
+
+ hblk_duration_ns = hblk * pixel_duration_ns;
+ if (!bt601 &&
+ (hblk_duration_ns < params->hblk_ns.min ||
+ hblk_duration_ns > params->hblk_ns.max)) {
+ DRM_ERROR("Invalid horizontal blanking duration: %uns (min: %u, max %u)\n",
+ hblk_duration_ns, params->hblk_ns.min, params->hblk_ns.max);
+ return -EINVAL;
+ }
+
+ hslen = DIV_ROUND_UP(params->hslen_ns.typ, pixel_duration_ns);
+ drm_dbg_kms(dev, "Horizontal Sync Period: %u\n", hslen);
+
+ hslen_duration_ns = hslen * pixel_duration_ns;
+ if (!bt601 &&
+ (hslen_duration_ns < params->hslen_ns.min ||
+ hslen_duration_ns > params->hslen_ns.max)) {
+ DRM_ERROR("Invalid horizontal sync duration: %uns (min: %u, max %u)\n",
+ hslen_duration_ns, params->hslen_ns.min, params->hslen_ns.max);
+ return -EINVAL;
+ }
+
+ porches = hblk - hslen;
+ drm_dbg_kms(dev, "Remaining horizontal pixels for both porches: %u\n", porches);
+
+ porches_duration_ns = porches * pixel_duration_ns;
+ if (!bt601 &&
+ (porches_duration_ns > (params->hfp_ns.max + params->hbp_ns.max) ||
+ porches_duration_ns < (params->hfp_ns.min + params->hbp_ns.min))) {
+ DRM_ERROR("Invalid horizontal porches duration: %uns\n", porches_duration_ns);
+ return -EINVAL;
+ }
+
+ if (bt601) {
+ hfp = params->bt601_hfp;
+ } else {
+ unsigned int hfp_min = DIV_ROUND_UP(params->hfp_ns.min,
+ pixel_duration_ns);
+ unsigned int hbp_min = DIV_ROUND_UP(params->hbp_ns.min,
+ pixel_duration_ns);
+ int porches_rem = porches - hfp_min - hbp_min;
+
+ hfp = hfp_min + DIV_ROUND_UP(porches_rem, 2);
+ }
+
+ drm_dbg_kms(dev, "Horizontal Front Porch: %u\n", hfp);
+
+ hfp_duration_ns = hfp * pixel_duration_ns;
+ if (!bt601 &&
+ (hfp_duration_ns < params->hfp_ns.min ||
+ hfp_duration_ns > params->hfp_ns.max)) {
+ DRM_ERROR("Invalid horizontal front porch duration: %uns (min: %u, max %u)\n",
+ hfp_duration_ns, params->hfp_ns.min, params->hfp_ns.max);
+ return -EINVAL;
+ }
+
+ hbp = porches - hfp;
+ drm_dbg_kms(dev, "Horizontal Back Porch: %u\n", hbp);
+
+ hbp_duration_ns = hbp * pixel_duration_ns;
+ if (!bt601 &&
+ (hbp_duration_ns < params->hbp_ns.min ||
+ hbp_duration_ns > params->hbp_ns.max)) {
+ DRM_ERROR("Invalid horizontal back porch duration: %uns (min: %u, max %u)\n",
+ hbp_duration_ns, params->hbp_ns.min, params->hbp_ns.max);
+ return -EINVAL;
+ }
+
+ if (htotal != (hactive + hfp + hslen + hbp))
+ return -EINVAL;
+
+ mode->clock = pixel_clock_hz / 1000;
+ mode->hdisplay = hactive;
+ mode->hsync_start = mode->hdisplay + hfp;
+ mode->hsync_end = mode->hsync_start + hslen;
+ mode->htotal = mode->hsync_end + hbp;
+
+ if (interlace) {
+ vfp_min = params->vfp_lines.even + params->vfp_lines.odd;
+ vbp_min = params->vbp_lines.even + params->vbp_lines.odd;
+ vslen = params->vslen_lines.even + params->vslen_lines.odd;
+ } else {
+ /*
+ * By convention, NTSC (aka 525/60) systems start with
+ * the even field, but PAL (aka 625/50) systems start
+ * with the odd one.
+ *
+ * PAL systems also have asymmetric timings between the
+ * even and odd field, while NTSC is symmetric.
+ *
+ * Moreover, if we want to create a progressive mode for
+ * PAL, we need to use the odd field timings.
+ *
+ * Since odd == even for NTSC, we can just use the odd
+ * one all the time to simplify the code a bit.
+ */
+ vfp_min = params->vfp_lines.odd;
+ vbp_min = params->vbp_lines.odd;
+ vslen = params->vslen_lines.odd;
+ }
+
+ drm_dbg_kms(dev, "Vertical Sync Period: %u\n", vslen);
+
+ porches = params->num_lines - vactive - vslen;
+ drm_dbg_kms(dev, "Remaining vertical pixels for both porches: %u\n", porches);
+
+ porches_rem = porches - vfp_min - vbp_min;
+ vfp = vfp_min + (porches_rem / 2);
+ drm_dbg_kms(dev, "Vertical Front Porch: %u\n", vfp);
+
+ vbp = porches - vfp;
+ drm_dbg_kms(dev, "Vertical Back Porch: %u\n", vbp);
+
+ vtotal = vactive + vfp + vslen + vbp;
+ if (params->num_lines != vtotal) {
+ DRM_ERROR("Invalid vertical total: %upx (expected %upx)\n",
+ vtotal, params->num_lines);
+ return -EINVAL;
+ }
+
+ mode->vdisplay = vactive;
+ mode->vsync_start = mode->vdisplay + vfp;
+ mode->vsync_end = mode->vsync_start + vslen;
+ mode->vtotal = mode->vsync_end + vbp;
+
+ if (mode->vtotal != params->num_lines)
+ return -EINVAL;
+
+ mode->type = DRM_MODE_TYPE_DRIVER;
+ mode->flags = DRM_MODE_FLAG_NVSYNC | DRM_MODE_FLAG_NHSYNC;
+ if (interlace)
+ mode->flags |= DRM_MODE_FLAG_INTERLACE;
+
+ drm_mode_set_name(mode);
+
+ drm_dbg_kms(dev, "Generated mode " DRM_MODE_FMT "\n", DRM_MODE_ARG(mode));
+
+ return 0;
+}
+
+/**
+ * drm_analog_tv_mode - create a display mode for an analog TV
+ * @dev: drm device
+ * @tv_mode: TV Mode standard to create a mode for. See DRM_MODE_TV_MODE_*.
+ * @pixel_clock_hz: Pixel Clock Frequency, in Hertz
+ * @hdisplay: hdisplay size
+ * @vdisplay: vdisplay size
+ * @interlace: whether to compute an interlaced mode
+ *
+ * This function creates a struct drm_display_mode instance suited for
+ * an analog TV output, for one of the usual analog TV mode.
+ *
+ * Note that @hdisplay is larger than the usual constraints for the PAL
+ * and NTSC timings, and we'll choose to ignore most timings constraints
+ * to reach those resolutions.
+ *
+ * Returns:
+ *
+ * A pointer to the mode, allocated with drm_mode_create(). Returns NULL
+ * on error.
+ */
+struct drm_display_mode *drm_analog_tv_mode(struct drm_device *dev,
+ enum drm_connector_tv_mode tv_mode,
+ unsigned long pixel_clock_hz,
+ unsigned int hdisplay,
+ unsigned int vdisplay,
+ bool interlace)
+{
+ struct drm_display_mode *mode;
+ enum drm_mode_analog analog;
+ int ret;
+
+ switch (tv_mode) {
+ case DRM_MODE_TV_MODE_NTSC:
+ fallthrough;
+ case DRM_MODE_TV_MODE_NTSC_443:
+ fallthrough;
+ case DRM_MODE_TV_MODE_NTSC_J:
+ fallthrough;
+ case DRM_MODE_TV_MODE_PAL_M:
+ analog = DRM_MODE_ANALOG_NTSC;
+ break;
+
+ case DRM_MODE_TV_MODE_PAL:
+ fallthrough;
+ case DRM_MODE_TV_MODE_PAL_N:
+ fallthrough;
+ case DRM_MODE_TV_MODE_SECAM:
+ analog = DRM_MODE_ANALOG_PAL;
+ break;
+
+ default:
+ return NULL;
+ }
+
+ mode = drm_mode_create(dev);
+ if (!mode)
+ return NULL;
+
+ ret = fill_analog_mode(dev, mode,
+ &tv_modes_parameters[analog],
+ pixel_clock_hz, hdisplay, vdisplay, interlace);
+ if (ret)
+ goto err_free_mode;
+
+ return mode;
+
+err_free_mode:
+ drm_mode_destroy(dev, mode);
+ return NULL;
+}
+EXPORT_SYMBOL(drm_analog_tv_mode);
+
/**
* drm_cvt_mode -create a modeline based on the CVT algorithm
* @dev: drm device
@@ -1659,6 +2136,30 @@ static int drm_mode_parse_panel_orientation(const char *delim,
return 0;
}
+static int drm_mode_parse_tv_mode(const char *delim,
+ struct drm_cmdline_mode *mode)
+{
+ const char *value;
+ int ret;
+
+ if (*delim != '=')
+ return -EINVAL;
+
+ value = delim + 1;
+ delim = strchr(value, ',');
+ if (!delim)
+ delim = value + strlen(value);
+
+ ret = drm_get_tv_mode_from_name(value, delim - value);
+ if (ret < 0)
+ return ret;
+
+ mode->tv_mode_specified = true;
+ mode->tv_mode = ret;
+
+ return 0;
+}
+
static int drm_mode_parse_cmdline_options(const char *str,
bool freestanding,
const struct drm_connector *connector,
@@ -1728,6 +2229,9 @@ static int drm_mode_parse_cmdline_options(const char *str,
} else if (!strncmp(option, "panel_orientation", delim - option)) {
if (drm_mode_parse_panel_orientation(delim, mode))
return -EINVAL;
+ } else if (!strncmp(option, "tv_mode", delim - option)) {
+ if (drm_mode_parse_tv_mode(delim, mode))
+ return -EINVAL;
} else {
return -EINVAL;
}
@@ -1750,11 +2254,84 @@ static int drm_mode_parse_cmdline_options(const char *str,
return 0;
}
-static const char * const drm_named_modes_whitelist[] = {
- "NTSC",
- "PAL",
+struct drm_named_mode {
+ const char *name;
+ unsigned int pixel_clock_khz;
+ unsigned int xres;
+ unsigned int yres;
+ unsigned int flags;
+ unsigned int tv_mode;
};
+#define NAMED_MODE(_name, _pclk, _x, _y, _flags, _mode) \
+ { \
+ .name = _name, \
+ .pixel_clock_khz = _pclk, \
+ .xres = _x, \
+ .yres = _y, \
+ .flags = _flags, \
+ .tv_mode = _mode, \
+ }
+
+static const struct drm_named_mode drm_named_modes[] = {
+ NAMED_MODE("NTSC", 13500, 720, 480, DRM_MODE_FLAG_INTERLACE, DRM_MODE_TV_MODE_NTSC),
+ NAMED_MODE("NTSC-J", 13500, 720, 480, DRM_MODE_FLAG_INTERLACE, DRM_MODE_TV_MODE_NTSC_J),
+ NAMED_MODE("PAL", 13500, 720, 576, DRM_MODE_FLAG_INTERLACE, DRM_MODE_TV_MODE_PAL),
+ NAMED_MODE("PAL-M", 13500, 720, 480, DRM_MODE_FLAG_INTERLACE, DRM_MODE_TV_MODE_PAL_M),
+};
+
+static int drm_mode_parse_cmdline_named_mode(const char *name,
+ unsigned int name_end,
+ struct drm_cmdline_mode *cmdline_mode)
+{
+ unsigned int i;
+
+ if (!name_end)
+ return 0;
+
+ /* If the name starts with a digit, it's not a named mode */
+ if (isdigit(name[0]))
+ return 0;
+
+ /*
+ * If there's an equal sign in the name, the command-line
+ * contains only an option and no mode.
+ */
+ if (strnchr(name, name_end, '='))
+ return 0;
+
+ /* The connection status extras can be set without a mode. */
+ if (name_end == 1 &&
+ (name[0] == 'd' || name[0] == 'D' || name[0] == 'e'))
+ return 0;
+
+ /*
+ * We're sure we're a named mode at this point, iterate over the
+ * list of modes we're aware of.
+ */
+ for (i = 0; i < ARRAY_SIZE(drm_named_modes); i++) {
+ const struct drm_named_mode *mode = &drm_named_modes[i];
+ int ret;
+
+ ret = str_has_prefix(name, mode->name);
+ if (ret != name_end)
+ continue;
+
+ strscpy(cmdline_mode->name, mode->name, sizeof(cmdline_mode->name));
+ cmdline_mode->pixel_clock = mode->pixel_clock_khz;
+ cmdline_mode->xres = mode->xres;
+ cmdline_mode->yres = mode->yres;
+ cmdline_mode->interlace = !!(mode->flags & DRM_MODE_FLAG_INTERLACE);
+ cmdline_mode->tv_mode = mode->tv_mode;
+ cmdline_mode->tv_mode_specified = true;
+ cmdline_mode->specified = true;
+
+ return 1;
+ }
+
+ return -EINVAL;
+}
+
/**
* drm_mode_parse_command_line_for_connector - parse command line modeline for connector
* @mode_option: optional per connector mode option
@@ -1762,8 +2339,7 @@ static const char * const drm_named_modes_whitelist[] = {
* @mode: preallocated drm_cmdline_mode structure to fill out
*
* This parses @mode_option command line modeline for modes and options to
- * configure the connector. If @mode_option is NULL the default command line
- * modeline in fb_mode_option will be parsed instead.
+ * configure the connector.
*
* This uses the same parameters as the fb modedb.c, except for an extra
* force-enable, force-enable-digital and force-disable bit at the end::
@@ -1791,7 +2367,7 @@ bool drm_mode_parse_command_line_for_connector(const char *mode_option,
const char *bpp_ptr = NULL, *refresh_ptr = NULL, *extra_ptr = NULL;
const char *options_ptr = NULL;
char *bpp_end_ptr = NULL, *refresh_end_ptr = NULL;
- int i, len, ret;
+ int len, ret;
memset(mode, 0, sizeof(*mode));
mode->panel_orientation = DRM_MODE_PANEL_ORIENTATION_UNKNOWN;
@@ -1801,20 +2377,24 @@ bool drm_mode_parse_command_line_for_connector(const char *mode_option,
name = mode_option;
+ /* Locate the start of named options */
+ options_ptr = strchr(name, ',');
+ if (options_ptr)
+ options_off = options_ptr - name;
+ else
+ options_off = strlen(name);
+
/* Try to locate the bpp and refresh specifiers, if any */
- bpp_ptr = strchr(name, '-');
+ bpp_ptr = strnchr(name, options_off, '-');
+ while (bpp_ptr && !isdigit(bpp_ptr[1]))
+ bpp_ptr = strnchr(bpp_ptr + 1, options_off, '-');
if (bpp_ptr)
bpp_off = bpp_ptr - name;
- refresh_ptr = strchr(name, '@');
+ refresh_ptr = strnchr(name, options_off, '@');
if (refresh_ptr)
refresh_off = refresh_ptr - name;
- /* Locate the start of named options */
- options_ptr = strchr(name, ',');
- if (options_ptr)
- options_off = options_ptr - name;
-
/* Locate the end of the name / resolution, and parse it */
if (bpp_ptr) {
mode_end = bpp_off;
@@ -1828,18 +2408,19 @@ bool drm_mode_parse_command_line_for_connector(const char *mode_option,
parse_extras = true;
}
- /* First check for a named mode */
- for (i = 0; i < ARRAY_SIZE(drm_named_modes_whitelist); i++) {
- ret = str_has_prefix(name, drm_named_modes_whitelist[i]);
- if (ret == mode_end) {
- if (refresh_ptr)
- return false; /* named + refresh is invalid */
+ if (!mode_end)
+ return false;
- strcpy(mode->name, drm_named_modes_whitelist[i]);
- mode->specified = true;
- break;
- }
- }
+ ret = drm_mode_parse_cmdline_named_mode(name, mode_end, mode);
+ if (ret < 0)
+ return false;
+
+ /*
+ * Having a mode that starts by a letter (and thus is named) and
+ * an at-sign (used to specify a refresh rate) is disallowed.
+ */
+ if (ret && refresh_ptr)
+ return false;
/* No named mode? Check for a normal mode argument, e.g. 1024x768 */
if (!mode->specified && isdigit(name[0])) {
@@ -1920,6 +2501,31 @@ bool drm_mode_parse_command_line_for_connector(const char *mode_option,
}
EXPORT_SYMBOL(drm_mode_parse_command_line_for_connector);
+static struct drm_display_mode *drm_named_mode(struct drm_device *dev,
+ struct drm_cmdline_mode *cmd)
+{
+ unsigned int i;
+
+ for (i = 0; i < ARRAY_SIZE(drm_named_modes); i++) {
+ const struct drm_named_mode *named_mode = &drm_named_modes[i];
+
+ if (strcmp(cmd->name, named_mode->name))
+ continue;
+
+ if (!cmd->tv_mode_specified)
+ continue;
+
+ return drm_analog_tv_mode(dev,
+ named_mode->tv_mode,
+ named_mode->pixel_clock_khz * 1000,
+ named_mode->xres,
+ named_mode->yres,
+ named_mode->flags & DRM_MODE_FLAG_INTERLACE);
+ }
+
+ return NULL;
+}
+
/**
* drm_mode_create_from_cmdline_mode - convert a command line modeline into a DRM display mode
* @dev: DRM device to create the new mode for
@@ -1937,7 +2543,9 @@ drm_mode_create_from_cmdline_mode(struct drm_device *dev,
if (cmd->xres == 0 || cmd->yres == 0)
return NULL;
- if (cmd->cvt)
+ if (strlen(cmd->name))
+ mode = drm_named_mode(dev, cmd);
+ else if (cmd->cvt)
mode = drm_cvt_mode(dev,
cmd->xres, cmd->yres,
cmd->refresh_specified ? cmd->refresh : 60,
diff --git a/drivers/gpu/drm/drm_nomodeset.c b/drivers/gpu/drm/drm_nomodeset.c
deleted file mode 100644
index f3978d5bd3a1..000000000000
--- a/drivers/gpu/drm/drm_nomodeset.c
+++ /dev/null
@@ -1,24 +0,0 @@
-// SPDX-License-Identifier: GPL-2.0
-
-#include <linux/module.h>
-#include <linux/types.h>
-
-static bool drm_nomodeset;
-
-bool drm_firmware_drivers_only(void)
-{
- return drm_nomodeset;
-}
-EXPORT_SYMBOL(drm_firmware_drivers_only);
-
-static int __init disable_modeset(char *str)
-{
- drm_nomodeset = true;
-
- pr_warn("Booted with the nomodeset parameter. Only the system framebuffer will be available\n");
-
- return 1;
-}
-
-/* Disable kernel modesetting */
-__setup("nomodeset", disable_modeset);
diff --git a/drivers/gpu/drm/drm_of.c b/drivers/gpu/drm/drm_of.c
index 7bbcb999bb75..177b600895d3 100644
--- a/drivers/gpu/drm/drm_of.c
+++ b/drivers/gpu/drm/drm_of.c
@@ -10,6 +10,7 @@
#include <drm/drm_crtc.h>
#include <drm/drm_device.h>
#include <drm/drm_encoder.h>
+#include <drm/drm_mipi_dsi.h>
#include <drm/drm_of.h>
#include <drm/drm_panel.h>
@@ -493,3 +494,53 @@ int drm_of_get_data_lanes_count_ep(const struct device_node *port,
return ret;
}
EXPORT_SYMBOL_GPL(drm_of_get_data_lanes_count_ep);
+
+#if IS_ENABLED(CONFIG_DRM_MIPI_DSI)
+
+/**
+ * drm_of_get_dsi_bus - find the DSI bus for a given device
+ * @dev: parent device of display (SPI, I2C)
+ *
+ * Gets parent DSI bus for a DSI device controlled through a bus other
+ * than MIPI-DCS (SPI, I2C, etc.) using the Device Tree.
+ *
+ * Returns pointer to mipi_dsi_host if successful, -EINVAL if the
+ * request is unsupported, -EPROBE_DEFER if the DSI host is found but
+ * not available, or -ENODEV otherwise.
+ */
+struct mipi_dsi_host *drm_of_get_dsi_bus(struct device *dev)
+{
+ struct mipi_dsi_host *dsi_host;
+ struct device_node *endpoint, *dsi_host_node;
+
+ /*
+ * Get first endpoint child from device.
+ */
+ endpoint = of_graph_get_next_endpoint(dev->of_node, NULL);
+ if (!endpoint)
+ return ERR_PTR(-ENODEV);
+
+ /*
+ * Follow the first endpoint to get the DSI host node and then
+ * release the endpoint since we no longer need it.
+ */
+ dsi_host_node = of_graph_get_remote_port_parent(endpoint);
+ of_node_put(endpoint);
+ if (!dsi_host_node)
+ return ERR_PTR(-ENODEV);
+
+ /*
+ * Get the DSI host from the DSI host node. If we get an error
+ * or the return is null assume we're not ready to probe just
+ * yet. Release the DSI host node since we're done with it.
+ */
+ dsi_host = of_find_mipi_dsi_host_by_node(dsi_host_node);
+ of_node_put(dsi_host_node);
+ if (IS_ERR_OR_NULL(dsi_host))
+ return ERR_PTR(-EPROBE_DEFER);
+
+ return dsi_host;
+}
+EXPORT_SYMBOL_GPL(drm_of_get_dsi_bus);
+
+#endif /* CONFIG_DRM_MIPI_DSI */
diff --git a/drivers/gpu/drm/drm_panel_orientation_quirks.c b/drivers/gpu/drm/drm_panel_orientation_quirks.c
index 52d8800a8ab8..b1a38e6ce2f8 100644
--- a/drivers/gpu/drm/drm_panel_orientation_quirks.c
+++ b/drivers/gpu/drm/drm_panel_orientation_quirks.c
@@ -30,12 +30,6 @@ struct drm_dmi_panel_orientation_data {
int orientation;
};
-static const struct drm_dmi_panel_orientation_data asus_t100ha = {
- .width = 800,
- .height = 1280,
- .orientation = DRM_MODE_PANEL_ORIENTATION_LEFT_UP,
-};
-
static const struct drm_dmi_panel_orientation_data gpd_micropc = {
.width = 720,
.height = 1280,
@@ -97,6 +91,12 @@ static const struct drm_dmi_panel_orientation_data lcd720x1280_rightside_up = {
.orientation = DRM_MODE_PANEL_ORIENTATION_RIGHT_UP,
};
+static const struct drm_dmi_panel_orientation_data lcd800x1280_leftside_up = {
+ .width = 800,
+ .height = 1280,
+ .orientation = DRM_MODE_PANEL_ORIENTATION_LEFT_UP,
+};
+
static const struct drm_dmi_panel_orientation_data lcd800x1280_rightside_up = {
.width = 800,
.height = 1280,
@@ -127,6 +127,12 @@ static const struct drm_dmi_panel_orientation_data lcd1600x2560_leftside_up = {
.orientation = DRM_MODE_PANEL_ORIENTATION_LEFT_UP,
};
+static const struct drm_dmi_panel_orientation_data lcd1600x2560_rightside_up = {
+ .width = 1600,
+ .height = 2560,
+ .orientation = DRM_MODE_PANEL_ORIENTATION_RIGHT_UP,
+};
+
static const struct dmi_system_id orientation_data[] = {
{ /* Acer One 10 (S1003) */
.matches = {
@@ -151,7 +157,7 @@ static const struct dmi_system_id orientation_data[] = {
DMI_EXACT_MATCH(DMI_SYS_VENDOR, "ASUSTeK COMPUTER INC."),
DMI_EXACT_MATCH(DMI_PRODUCT_NAME, "T100HAN"),
},
- .driver_data = (void *)&asus_t100ha,
+ .driver_data = (void *)&lcd800x1280_leftside_up,
}, { /* Asus T101HA */
.matches = {
DMI_EXACT_MATCH(DMI_SYS_VENDOR, "ASUSTeK COMPUTER INC."),
@@ -196,6 +202,12 @@ static const struct dmi_system_id orientation_data[] = {
DMI_EXACT_MATCH(DMI_PRODUCT_NAME, "Hi10 pro tablet"),
},
.driver_data = (void *)&lcd1200x1920_rightside_up,
+ }, { /* Dynabook K50 */
+ .matches = {
+ DMI_EXACT_MATCH(DMI_SYS_VENDOR, "Dynabook Inc."),
+ DMI_EXACT_MATCH(DMI_PRODUCT_NAME, "dynabook K50/FR"),
+ },
+ .driver_data = (void *)&lcd800x1280_leftside_up,
}, { /* GPD MicroPC (generic strings, also match on bios date) */
.matches = {
DMI_EXACT_MATCH(DMI_SYS_VENDOR, "Default string"),
@@ -304,10 +316,29 @@ static const struct dmi_system_id orientation_data[] = {
DMI_EXACT_MATCH(DMI_PRODUCT_VERSION, "Lenovo ideapad D330-10IGM"),
},
.driver_data = (void *)&lcd1200x1920_rightside_up,
- }, { /* Lenovo Yoga Book X90F / X91F / X91L */
+ }, { /* Lenovo Ideapad D330-10IGL (HD) */
+ .matches = {
+ DMI_EXACT_MATCH(DMI_SYS_VENDOR, "LENOVO"),
+ DMI_EXACT_MATCH(DMI_PRODUCT_VERSION, "Lenovo ideapad D330-10IGL"),
+ },
+ .driver_data = (void *)&lcd800x1280_rightside_up,
+ }, { /* Lenovo IdeaPad Duet 3 10IGL5 */
.matches = {
- /* Non exact match to match all versions */
- DMI_MATCH(DMI_PRODUCT_NAME, "Lenovo YB1-X9"),
+ DMI_EXACT_MATCH(DMI_SYS_VENDOR, "LENOVO"),
+ DMI_EXACT_MATCH(DMI_PRODUCT_VERSION, "IdeaPad Duet 3 10IGL5"),
+ },
+ .driver_data = (void *)&lcd1200x1920_rightside_up,
+ }, { /* Lenovo Yoga Book X90F / X90L */
+ .matches = {
+ DMI_EXACT_MATCH(DMI_SYS_VENDOR, "Intel Corporation"),
+ DMI_EXACT_MATCH(DMI_PRODUCT_NAME, "CHERRYVIEW D1 PLATFORM"),
+ DMI_EXACT_MATCH(DMI_PRODUCT_VERSION, "YETI-11"),
+ },
+ .driver_data = (void *)&lcd1200x1920_rightside_up,
+ }, { /* Lenovo Yoga Book X91F / X91L */
+ .matches = {
+ /* Non exact match to match F + L versions */
+ DMI_MATCH(DMI_PRODUCT_NAME, "Lenovo YB1-X91"),
},
.driver_data = (void *)&lcd1200x1920_rightside_up,
}, { /* Lenovo Yoga Tablet 2 830F / 830L */
@@ -325,6 +356,13 @@ static const struct dmi_system_id orientation_data[] = {
DMI_MATCH(DMI_BIOS_VERSION, "BLADE_21"),
},
.driver_data = (void *)&lcd1200x1920_rightside_up,
+ }, { /* Lenovo Yoga Tab 3 X90F */
+ .matches = {
+ DMI_MATCH(DMI_SYS_VENDOR, "Intel Corporation"),
+ DMI_MATCH(DMI_PRODUCT_NAME, "CHERRYVIEW D1 PLATFORM"),
+ DMI_MATCH(DMI_PRODUCT_VERSION, "Blade3-10A-001"),
+ },
+ .driver_data = (void *)&lcd1600x2560_rightside_up,
}, { /* Nanote UMPC-01 */
.matches = {
DMI_MATCH(DMI_SYS_VENDOR, "RWC CO.,LTD"),
diff --git a/drivers/gpu/drm/drm_plane.c b/drivers/gpu/drm/drm_plane.c
index 33357629a7f5..24e7998d1731 100644
--- a/drivers/gpu/drm/drm_plane.c
+++ b/drivers/gpu/drm/drm_plane.c
@@ -46,6 +46,11 @@
* properties that specify how the pixels are positioned and blended, like
* rotation or Z-position. All these properties are stored in &drm_plane_state.
*
+ * Unless explicitly specified (via CRTC property or otherwise), the active area
+ * of a CRTC will be black by default. This means portions of the active area
+ * which are not covered by a plane will be black, and alpha blending of any
+ * planes with the CRTC background will blend with black at the lowest zpos.
+ *
* To create a plane, a KMS drivers allocates and zeroes an instances of
* &struct drm_plane (possibly as part of a larger structure) and registers it
* with a call to drm_universal_plane_init().
diff --git a/drivers/gpu/drm/drm_plane_helper.c b/drivers/gpu/drm/drm_plane_helper.c
index 865bd999b187..c91e454eba09 100644
--- a/drivers/gpu/drm/drm_plane_helper.c
+++ b/drivers/gpu/drm/drm_plane_helper.c
@@ -28,7 +28,6 @@
#include <drm/drm_atomic.h>
#include <drm/drm_atomic_helper.h>
#include <drm/drm_atomic_uapi.h>
-#include <drm/drm_crtc_helper.h>
#include <drm/drm_device.h>
#include <drm/drm_drv.h>
#include <drm/drm_encoder.h>
@@ -298,7 +297,9 @@ EXPORT_SYMBOL(drm_plane_helper_destroy);
* scale and positioning are not expected to change since the plane is always
* a fullscreen scanout buffer.
*
- * This is often the case for the primary plane of simple framebuffers.
+ * This is often the case for the primary plane of simple framebuffers. See
+ * also drm_crtc_helper_atomic_check() for the respective CRTC-state check
+ * helper function.
*
* RETURNS:
* Zero on success, or an errno code otherwise.
diff --git a/drivers/gpu/drm/drm_prime.c b/drivers/gpu/drm/drm_prime.c
index eb09e86044c6..d29dafce9bb0 100644
--- a/drivers/gpu/drm/drm_prime.c
+++ b/drivers/gpu/drm/drm_prime.c
@@ -285,7 +285,7 @@ EXPORT_SYMBOL(drm_gem_dmabuf_release);
/**
* drm_gem_prime_fd_to_handle - PRIME import function for GEM drivers
- * @dev: dev to export the buffer from
+ * @dev: drm_device to import into
* @file_priv: drm file-private structure
* @prime_fd: fd id of the dma-buf which should be imported
* @handle: pointer to storage for the handle of the imported buffer object
@@ -544,7 +544,8 @@ int drm_prime_handle_to_fd_ioctl(struct drm_device *dev, void *data,
* Optional pinning of buffers is handled at dma-buf attach and detach time in
* drm_gem_map_attach() and drm_gem_map_detach(). Backing storage itself is
* handled by drm_gem_map_dma_buf() and drm_gem_unmap_dma_buf(), which relies on
- * &drm_gem_object_funcs.get_sg_table.
+ * &drm_gem_object_funcs.get_sg_table. If &drm_gem_object_funcs.get_sg_table is
+ * unimplemented, exports into another device are rejected.
*
* For kernel-internal access there's drm_gem_dmabuf_vmap() and
* drm_gem_dmabuf_vunmap(). Userspace mmap support is provided by
@@ -583,6 +584,9 @@ int drm_gem_map_attach(struct dma_buf *dma_buf,
{
struct drm_gem_object *obj = dma_buf->priv;
+ if (!obj->funcs->get_sg_table)
+ return -ENOSYS;
+
return drm_gem_pin(obj);
}
EXPORT_SYMBOL(drm_gem_map_attach);
@@ -781,6 +785,8 @@ int drm_gem_dmabuf_mmap(struct dma_buf *dma_buf, struct vm_area_struct *vma)
struct drm_gem_object *obj = dma_buf->priv;
struct drm_device *dev = obj->dev;
+ dma_resv_assert_held(dma_buf->resv);
+
if (!dev->driver->gem_prime_mmap)
return -ENOSYS;
@@ -923,7 +929,7 @@ struct drm_gem_object *drm_gem_prime_import_dev(struct drm_device *dev,
obj = dma_buf->priv;
if (obj->dev == dev) {
/*
- * Importing dmabuf exported from out own gem increases
+ * Importing dmabuf exported from our own gem increases
* refcount on gem itself instead of f_count of dmabuf.
*/
drm_gem_object_get(obj);
@@ -940,7 +946,7 @@ struct drm_gem_object *drm_gem_prime_import_dev(struct drm_device *dev,
get_dma_buf(dma_buf);
- sgt = dma_buf_map_attachment(attach, DMA_BIDIRECTIONAL);
+ sgt = dma_buf_map_attachment_unlocked(attach, DMA_BIDIRECTIONAL);
if (IS_ERR(sgt)) {
ret = PTR_ERR(sgt);
goto fail_detach;
@@ -958,7 +964,7 @@ struct drm_gem_object *drm_gem_prime_import_dev(struct drm_device *dev,
return obj;
fail_unmap:
- dma_buf_unmap_attachment(attach, sgt, DMA_BIDIRECTIONAL);
+ dma_buf_unmap_attachment_unlocked(attach, sgt, DMA_BIDIRECTIONAL);
fail_detach:
dma_buf_detach(dma_buf, attach);
dma_buf_put(dma_buf);
@@ -1056,7 +1062,7 @@ void drm_prime_gem_destroy(struct drm_gem_object *obj, struct sg_table *sg)
attach = obj->import_attach;
if (sg)
- dma_buf_unmap_attachment(attach, sg, DMA_BIDIRECTIONAL);
+ dma_buf_unmap_attachment_unlocked(attach, sg, DMA_BIDIRECTIONAL);
dma_buf = attach->dmabuf;
dma_buf_detach(attach->dmabuf, attach);
/* remove the reference */
diff --git a/drivers/gpu/drm/drm_probe_helper.c b/drivers/gpu/drm/drm_probe_helper.c
index 69b0b2b9cc1c..2fb9bf901a2c 100644
--- a/drivers/gpu/drm/drm_probe_helper.c
+++ b/drivers/gpu/drm/drm_probe_helper.c
@@ -36,7 +36,6 @@
#include <drm/drm_client.h>
#include <drm/drm_crtc.h>
#include <drm/drm_edid.h>
-#include <drm/drm_fb_helper.h>
#include <drm/drm_fourcc.h>
#include <drm/drm_modeset_helper_vtables.h>
#include <drm/drm_print.h>
@@ -223,6 +222,45 @@ drm_connector_mode_valid(struct drm_connector *connector,
return ret;
}
+static void drm_kms_helper_disable_hpd(struct drm_device *dev)
+{
+ struct drm_connector *connector;
+ struct drm_connector_list_iter conn_iter;
+
+ drm_connector_list_iter_begin(dev, &conn_iter);
+ drm_for_each_connector_iter(connector, &conn_iter) {
+ const struct drm_connector_helper_funcs *funcs =
+ connector->helper_private;
+
+ if (funcs && funcs->disable_hpd)
+ funcs->disable_hpd(connector);
+ }
+ drm_connector_list_iter_end(&conn_iter);
+}
+
+static bool drm_kms_helper_enable_hpd(struct drm_device *dev)
+{
+ bool poll = false;
+ struct drm_connector *connector;
+ struct drm_connector_list_iter conn_iter;
+
+ drm_connector_list_iter_begin(dev, &conn_iter);
+ drm_for_each_connector_iter(connector, &conn_iter) {
+ const struct drm_connector_helper_funcs *funcs =
+ connector->helper_private;
+
+ if (funcs && funcs->enable_hpd)
+ funcs->enable_hpd(connector);
+
+ if (connector->polled & (DRM_CONNECTOR_POLL_CONNECT |
+ DRM_CONNECTOR_POLL_DISCONNECT))
+ poll = true;
+ }
+ drm_connector_list_iter_end(&conn_iter);
+
+ return poll;
+}
+
#define DRM_OUTPUT_POLL_PERIOD (10*HZ)
/**
* drm_kms_helper_poll_enable - re-enable output polling.
@@ -242,20 +280,13 @@ drm_connector_mode_valid(struct drm_connector *connector,
void drm_kms_helper_poll_enable(struct drm_device *dev)
{
bool poll = false;
- struct drm_connector *connector;
- struct drm_connector_list_iter conn_iter;
unsigned long delay = DRM_OUTPUT_POLL_PERIOD;
- if (!dev->mode_config.poll_enabled || !drm_kms_helper_poll)
+ if (!dev->mode_config.poll_enabled || !drm_kms_helper_poll ||
+ dev->mode_config.poll_running)
return;
- drm_connector_list_iter_begin(dev, &conn_iter);
- drm_for_each_connector_iter(connector, &conn_iter) {
- if (connector->polled & (DRM_CONNECTOR_POLL_CONNECT |
- DRM_CONNECTOR_POLL_DISCONNECT))
- poll = true;
- }
- drm_connector_list_iter_end(&conn_iter);
+ poll = drm_kms_helper_enable_hpd(dev);
if (dev->mode_config.delayed_event) {
/*
@@ -274,6 +305,8 @@ void drm_kms_helper_poll_enable(struct drm_device *dev)
if (poll)
schedule_delayed_work(&dev->mode_config.output_poll_work, delay);
+
+ dev->mode_config.poll_running = true;
}
EXPORT_SYMBOL(drm_kms_helper_poll_enable);
@@ -367,7 +400,7 @@ static int drm_helper_probe_get_modes(struct drm_connector *connector)
* override/firmware EDID.
*/
if (count == 0 && connector->status == connector_status_connected)
- count = drm_add_override_edid_modes(connector);
+ count = drm_edid_override_connector_update(connector);
return count;
}
@@ -557,15 +590,13 @@ retry:
*/
dev->mode_config.delayed_event = true;
if (dev->mode_config.poll_enabled)
- schedule_delayed_work(&dev->mode_config.output_poll_work,
- 0);
+ mod_delayed_work(system_wq,
+ &dev->mode_config.output_poll_work,
+ 0);
}
/* Re-enable polling in case the global poll config changed. */
- if (drm_kms_helper_poll != dev->mode_config.poll_running)
- drm_kms_helper_poll_enable(dev);
-
- dev->mode_config.poll_running = drm_kms_helper_poll;
+ drm_kms_helper_poll_enable(dev);
if (connector->status == connector_status_disconnected) {
DRM_DEBUG_KMS("[CONNECTOR:%d:%s] disconnected\n",
@@ -705,8 +736,11 @@ static void output_poll_execute(struct work_struct *work)
changed = dev->mode_config.delayed_event;
dev->mode_config.delayed_event = false;
- if (!drm_kms_helper_poll)
+ if (!drm_kms_helper_poll && dev->mode_config.poll_running) {
+ drm_kms_helper_disable_hpd(dev);
+ dev->mode_config.poll_running = false;
goto out;
+ }
if (!mutex_trylock(&dev->mode_config.mutex)) {
repoll = true;
@@ -819,9 +853,12 @@ EXPORT_SYMBOL(drm_kms_helper_is_poll_worker);
*/
void drm_kms_helper_poll_disable(struct drm_device *dev)
{
- if (!dev->mode_config.poll_enabled)
- return;
+ if (dev->mode_config.poll_running)
+ drm_kms_helper_disable_hpd(dev);
+
cancel_delayed_work_sync(&dev->mode_config.output_poll_work);
+
+ dev->mode_config.poll_running = false;
}
EXPORT_SYMBOL(drm_kms_helper_poll_disable);
@@ -862,8 +899,9 @@ void drm_kms_helper_poll_fini(struct drm_device *dev)
if (!dev->mode_config.poll_enabled)
return;
+ drm_kms_helper_poll_disable(dev);
+
dev->mode_config.poll_enabled = false;
- cancel_delayed_work_sync(&dev->mode_config.output_poll_work);
}
EXPORT_SYMBOL(drm_kms_helper_poll_fini);
@@ -1140,10 +1178,94 @@ int drm_connector_helper_get_modes(struct drm_connector *connector)
* EDID. Otherwise, if the EDID is NULL, clear the connector
* information.
*/
- count = drm_edid_connector_update(connector, drm_edid);
+ drm_edid_connector_update(connector, drm_edid);
+
+ count = drm_edid_connector_add_modes(connector);
drm_edid_free(drm_edid);
return count;
}
EXPORT_SYMBOL(drm_connector_helper_get_modes);
+
+/**
+ * drm_connector_helper_tv_get_modes - Fills the modes availables to a TV connector
+ * @connector: The connector
+ *
+ * Fills the available modes for a TV connector based on the supported
+ * TV modes, and the default mode expressed by the kernel command line.
+ *
+ * This can be used as the default TV connector helper .get_modes() hook
+ * if the driver does not need any special processing.
+ *
+ * Returns:
+ * The number of modes added to the connector.
+ */
+int drm_connector_helper_tv_get_modes(struct drm_connector *connector)
+{
+ struct drm_device *dev = connector->dev;
+ struct drm_property *tv_mode_property =
+ dev->mode_config.tv_mode_property;
+ struct drm_cmdline_mode *cmdline = &connector->cmdline_mode;
+ unsigned int ntsc_modes = BIT(DRM_MODE_TV_MODE_NTSC) |
+ BIT(DRM_MODE_TV_MODE_NTSC_443) |
+ BIT(DRM_MODE_TV_MODE_NTSC_J) |
+ BIT(DRM_MODE_TV_MODE_PAL_M);
+ unsigned int pal_modes = BIT(DRM_MODE_TV_MODE_PAL) |
+ BIT(DRM_MODE_TV_MODE_PAL_N) |
+ BIT(DRM_MODE_TV_MODE_SECAM);
+ unsigned int tv_modes[2] = { UINT_MAX, UINT_MAX };
+ unsigned int i, supported_tv_modes = 0;
+
+ if (!tv_mode_property)
+ return 0;
+
+ for (i = 0; i < tv_mode_property->num_values; i++)
+ supported_tv_modes |= BIT(tv_mode_property->values[i]);
+
+ if ((supported_tv_modes & ntsc_modes) &&
+ (supported_tv_modes & pal_modes)) {
+ uint64_t default_mode;
+
+ if (drm_object_property_get_default_value(&connector->base,
+ tv_mode_property,
+ &default_mode))
+ return 0;
+
+ if (cmdline->tv_mode_specified)
+ default_mode = cmdline->tv_mode;
+
+ if (BIT(default_mode) & ntsc_modes) {
+ tv_modes[0] = DRM_MODE_TV_MODE_NTSC;
+ tv_modes[1] = DRM_MODE_TV_MODE_PAL;
+ } else {
+ tv_modes[0] = DRM_MODE_TV_MODE_PAL;
+ tv_modes[1] = DRM_MODE_TV_MODE_NTSC;
+ }
+ } else if (supported_tv_modes & ntsc_modes) {
+ tv_modes[0] = DRM_MODE_TV_MODE_NTSC;
+ } else if (supported_tv_modes & pal_modes) {
+ tv_modes[0] = DRM_MODE_TV_MODE_PAL;
+ } else {
+ return 0;
+ }
+
+ for (i = 0; i < ARRAY_SIZE(tv_modes); i++) {
+ struct drm_display_mode *mode;
+
+ if (tv_modes[i] == DRM_MODE_TV_MODE_NTSC)
+ mode = drm_mode_analog_ntsc_480i(dev);
+ else if (tv_modes[i] == DRM_MODE_TV_MODE_PAL)
+ mode = drm_mode_analog_pal_576i(dev);
+ else
+ break;
+ if (!mode)
+ return i;
+ if (!i)
+ mode->type |= DRM_MODE_TYPE_PREFERRED;
+ drm_mode_probed_add(connector, mode);
+ }
+
+ return i;
+}
+EXPORT_SYMBOL(drm_connector_helper_tv_get_modes);
diff --git a/drivers/gpu/drm/drm_rect.c b/drivers/gpu/drm/drm_rect.c
index 0460e874896e..85c79a38c13a 100644
--- a/drivers/gpu/drm/drm_rect.c
+++ b/drivers/gpu/drm/drm_rect.c
@@ -80,7 +80,7 @@ static u32 clip_scaled(int src, int dst, int *clip)
* @dst: destination window rectangle
* @clip: clip rectangle
*
- * Clip rectangle @dst by rectangle @clip. Clip rectangle @src by the
+ * Clip rectangle @dst by rectangle @clip. Clip rectangle @src by
* the corresponding amounts, retaining the vertical and horizontal scaling
* factors from @src to @dst.
*
diff --git a/drivers/gpu/drm/drm_simple_kms_helper.c b/drivers/gpu/drm/drm_simple_kms_helper.c
index e9f782119d3d..270523ae36d4 100644
--- a/drivers/gpu/drm/drm_simple_kms_helper.c
+++ b/drivers/gpu/drm/drm_simple_kms_helper.c
@@ -102,10 +102,14 @@ static int drm_simple_kms_crtc_check(struct drm_crtc *crtc,
struct drm_crtc_state *crtc_state = drm_atomic_get_new_crtc_state(state, crtc);
int ret;
- ret = drm_atomic_helper_check_crtc_state(crtc_state, false);
+ if (!crtc_state->enable)
+ goto out;
+
+ ret = drm_atomic_helper_check_crtc_primary_plane(crtc_state);
if (ret)
return ret;
+out:
return drm_atomic_add_affected_planes(state, crtc);
}
@@ -263,7 +267,7 @@ static int drm_simple_kms_plane_prepare_fb(struct drm_plane *plane,
WARN_ON_ONCE(pipe->funcs && pipe->funcs->cleanup_fb);
- return drm_gem_simple_display_pipe_prepare_fb(pipe, state);
+ return drm_gem_plane_helper_prepare_fb(plane, state);
}
return pipe->funcs->prepare_fb(pipe, state);
@@ -281,6 +285,30 @@ static void drm_simple_kms_plane_cleanup_fb(struct drm_plane *plane,
pipe->funcs->cleanup_fb(pipe, state);
}
+static int drm_simple_kms_plane_begin_fb_access(struct drm_plane *plane,
+ struct drm_plane_state *new_plane_state)
+{
+ struct drm_simple_display_pipe *pipe;
+
+ pipe = container_of(plane, struct drm_simple_display_pipe, plane);
+ if (!pipe->funcs || !pipe->funcs->begin_fb_access)
+ return 0;
+
+ return pipe->funcs->begin_fb_access(pipe, new_plane_state);
+}
+
+static void drm_simple_kms_plane_end_fb_access(struct drm_plane *plane,
+ struct drm_plane_state *new_plane_state)
+{
+ struct drm_simple_display_pipe *pipe;
+
+ pipe = container_of(plane, struct drm_simple_display_pipe, plane);
+ if (!pipe->funcs || !pipe->funcs->end_fb_access)
+ return;
+
+ pipe->funcs->end_fb_access(pipe, new_plane_state);
+}
+
static bool drm_simple_kms_format_mod_supported(struct drm_plane *plane,
uint32_t format,
uint64_t modifier)
@@ -291,6 +319,8 @@ static bool drm_simple_kms_format_mod_supported(struct drm_plane *plane,
static const struct drm_plane_helper_funcs drm_simple_kms_plane_helper_funcs = {
.prepare_fb = drm_simple_kms_plane_prepare_fb,
.cleanup_fb = drm_simple_kms_plane_cleanup_fb,
+ .begin_fb_access = drm_simple_kms_plane_begin_fb_access,
+ .end_fb_access = drm_simple_kms_plane_end_fb_access,
.atomic_check = drm_simple_kms_plane_atomic_check,
.atomic_update = drm_simple_kms_plane_atomic_update,
};
diff --git a/drivers/gpu/drm/drm_suballoc.c b/drivers/gpu/drm/drm_suballoc.c
new file mode 100644
index 000000000000..38cc7a123819
--- /dev/null
+++ b/drivers/gpu/drm/drm_suballoc.c
@@ -0,0 +1,457 @@
+// SPDX-License-Identifier: GPL-2.0 OR MIT
+/*
+ * Copyright 2011 Red Hat Inc.
+ * Copyright 2023 Intel Corporation.
+ * All Rights Reserved.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the
+ * "Software"), to deal in the Software without restriction, including
+ * without limitation the rights to use, copy, modify, merge, publish,
+ * distribute, sub license, and/or sell copies of the Software, and to
+ * permit persons to whom the Software is furnished to do so, subject to
+ * the following conditions:
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDERS, AUTHORS AND/OR ITS SUPPLIERS BE LIABLE FOR ANY CLAIM,
+ * DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR
+ * OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE
+ * USE OR OTHER DEALINGS IN THE SOFTWARE.
+ *
+ * The above copyright notice and this permission notice (including the
+ * next paragraph) shall be included in all copies or substantial portions
+ * of the Software.
+ *
+ */
+/* Algorithm:
+ *
+ * We store the last allocated bo in "hole", we always try to allocate
+ * after the last allocated bo. Principle is that in a linear GPU ring
+ * progression was is after last is the oldest bo we allocated and thus
+ * the first one that should no longer be in use by the GPU.
+ *
+ * If it's not the case we skip over the bo after last to the closest
+ * done bo if such one exist. If none exist and we are not asked to
+ * block we report failure to allocate.
+ *
+ * If we are asked to block we wait on all the oldest fence of all
+ * rings. We just wait for any of those fence to complete.
+ */
+
+#include <drm/drm_suballoc.h>
+#include <drm/drm_print.h>
+#include <linux/slab.h>
+#include <linux/sched.h>
+#include <linux/wait.h>
+#include <linux/dma-fence.h>
+
+static void drm_suballoc_remove_locked(struct drm_suballoc *sa);
+static void drm_suballoc_try_free(struct drm_suballoc_manager *sa_manager);
+
+/**
+ * drm_suballoc_manager_init() - Initialise the drm_suballoc_manager
+ * @sa_manager: pointer to the sa_manager
+ * @size: number of bytes we want to suballocate
+ * @align: alignment for each suballocated chunk
+ *
+ * Prepares the suballocation manager for suballocations.
+ */
+void drm_suballoc_manager_init(struct drm_suballoc_manager *sa_manager,
+ size_t size, size_t align)
+{
+ unsigned int i;
+
+ BUILD_BUG_ON(!is_power_of_2(DRM_SUBALLOC_MAX_QUEUES));
+
+ if (!align)
+ align = 1;
+
+ /* alignment must be a power of 2 */
+ if (WARN_ON_ONCE(align & (align - 1)))
+ align = roundup_pow_of_two(align);
+
+ init_waitqueue_head(&sa_manager->wq);
+ sa_manager->size = size;
+ sa_manager->align = align;
+ sa_manager->hole = &sa_manager->olist;
+ INIT_LIST_HEAD(&sa_manager->olist);
+ for (i = 0; i < DRM_SUBALLOC_MAX_QUEUES; ++i)
+ INIT_LIST_HEAD(&sa_manager->flist[i]);
+}
+EXPORT_SYMBOL(drm_suballoc_manager_init);
+
+/**
+ * drm_suballoc_manager_fini() - Destroy the drm_suballoc_manager
+ * @sa_manager: pointer to the sa_manager
+ *
+ * Cleans up the suballocation manager after use. All fences added
+ * with drm_suballoc_free() must be signaled, or we cannot clean up
+ * the entire manager.
+ */
+void drm_suballoc_manager_fini(struct drm_suballoc_manager *sa_manager)
+{
+ struct drm_suballoc *sa, *tmp;
+
+ if (!sa_manager->size)
+ return;
+
+ if (!list_empty(&sa_manager->olist)) {
+ sa_manager->hole = &sa_manager->olist;
+ drm_suballoc_try_free(sa_manager);
+ if (!list_empty(&sa_manager->olist))
+ DRM_ERROR("sa_manager is not empty, clearing anyway\n");
+ }
+ list_for_each_entry_safe(sa, tmp, &sa_manager->olist, olist) {
+ drm_suballoc_remove_locked(sa);
+ }
+
+ sa_manager->size = 0;
+}
+EXPORT_SYMBOL(drm_suballoc_manager_fini);
+
+static void drm_suballoc_remove_locked(struct drm_suballoc *sa)
+{
+ struct drm_suballoc_manager *sa_manager = sa->manager;
+
+ if (sa_manager->hole == &sa->olist)
+ sa_manager->hole = sa->olist.prev;
+
+ list_del_init(&sa->olist);
+ list_del_init(&sa->flist);
+ dma_fence_put(sa->fence);
+ kfree(sa);
+}
+
+static void drm_suballoc_try_free(struct drm_suballoc_manager *sa_manager)
+{
+ struct drm_suballoc *sa, *tmp;
+
+ if (sa_manager->hole->next == &sa_manager->olist)
+ return;
+
+ sa = list_entry(sa_manager->hole->next, struct drm_suballoc, olist);
+ list_for_each_entry_safe_from(sa, tmp, &sa_manager->olist, olist) {
+ if (!sa->fence || !dma_fence_is_signaled(sa->fence))
+ return;
+
+ drm_suballoc_remove_locked(sa);
+ }
+}
+
+static size_t drm_suballoc_hole_soffset(struct drm_suballoc_manager *sa_manager)
+{
+ struct list_head *hole = sa_manager->hole;
+
+ if (hole != &sa_manager->olist)
+ return list_entry(hole, struct drm_suballoc, olist)->eoffset;
+
+ return 0;
+}
+
+static size_t drm_suballoc_hole_eoffset(struct drm_suballoc_manager *sa_manager)
+{
+ struct list_head *hole = sa_manager->hole;
+
+ if (hole->next != &sa_manager->olist)
+ return list_entry(hole->next, struct drm_suballoc, olist)->soffset;
+ return sa_manager->size;
+}
+
+static bool drm_suballoc_try_alloc(struct drm_suballoc_manager *sa_manager,
+ struct drm_suballoc *sa,
+ size_t size, size_t align)
+{
+ size_t soffset, eoffset, wasted;
+
+ soffset = drm_suballoc_hole_soffset(sa_manager);
+ eoffset = drm_suballoc_hole_eoffset(sa_manager);
+ wasted = round_up(soffset, align) - soffset;
+
+ if ((eoffset - soffset) >= (size + wasted)) {
+ soffset += wasted;
+
+ sa->manager = sa_manager;
+ sa->soffset = soffset;
+ sa->eoffset = soffset + size;
+ list_add(&sa->olist, sa_manager->hole);
+ INIT_LIST_HEAD(&sa->flist);
+ sa_manager->hole = &sa->olist;
+ return true;
+ }
+ return false;
+}
+
+static bool __drm_suballoc_event(struct drm_suballoc_manager *sa_manager,
+ size_t size, size_t align)
+{
+ size_t soffset, eoffset, wasted;
+ unsigned int i;
+
+ for (i = 0; i < DRM_SUBALLOC_MAX_QUEUES; ++i)
+ if (!list_empty(&sa_manager->flist[i]))
+ return true;
+
+ soffset = drm_suballoc_hole_soffset(sa_manager);
+ eoffset = drm_suballoc_hole_eoffset(sa_manager);
+ wasted = round_up(soffset, align) - soffset;
+
+ return ((eoffset - soffset) >= (size + wasted));
+}
+
+/**
+ * drm_suballoc_event() - Check if we can stop waiting
+ * @sa_manager: pointer to the sa_manager
+ * @size: number of bytes we want to allocate
+ * @align: alignment we need to match
+ *
+ * Return: true if either there is a fence we can wait for or
+ * enough free memory to satisfy the allocation directly.
+ * false otherwise.
+ */
+static bool drm_suballoc_event(struct drm_suballoc_manager *sa_manager,
+ size_t size, size_t align)
+{
+ bool ret;
+
+ spin_lock(&sa_manager->wq.lock);
+ ret = __drm_suballoc_event(sa_manager, size, align);
+ spin_unlock(&sa_manager->wq.lock);
+ return ret;
+}
+
+static bool drm_suballoc_next_hole(struct drm_suballoc_manager *sa_manager,
+ struct dma_fence **fences,
+ unsigned int *tries)
+{
+ struct drm_suballoc *best_bo = NULL;
+ unsigned int i, best_idx;
+ size_t soffset, best, tmp;
+
+ /* if hole points to the end of the buffer */
+ if (sa_manager->hole->next == &sa_manager->olist) {
+ /* try again with its beginning */
+ sa_manager->hole = &sa_manager->olist;
+ return true;
+ }
+
+ soffset = drm_suballoc_hole_soffset(sa_manager);
+ /* to handle wrap around we add sa_manager->size */
+ best = sa_manager->size * 2;
+ /* go over all fence list and try to find the closest sa
+ * of the current last
+ */
+ for (i = 0; i < DRM_SUBALLOC_MAX_QUEUES; ++i) {
+ struct drm_suballoc *sa;
+
+ fences[i] = NULL;
+
+ if (list_empty(&sa_manager->flist[i]))
+ continue;
+
+ sa = list_first_entry(&sa_manager->flist[i],
+ struct drm_suballoc, flist);
+
+ if (!dma_fence_is_signaled(sa->fence)) {
+ fences[i] = sa->fence;
+ continue;
+ }
+
+ /* limit the number of tries each freelist gets */
+ if (tries[i] > 2)
+ continue;
+
+ tmp = sa->soffset;
+ if (tmp < soffset) {
+ /* wrap around, pretend it's after */
+ tmp += sa_manager->size;
+ }
+ tmp -= soffset;
+ if (tmp < best) {
+ /* this sa bo is the closest one */
+ best = tmp;
+ best_idx = i;
+ best_bo = sa;
+ }
+ }
+
+ if (best_bo) {
+ ++tries[best_idx];
+ sa_manager->hole = best_bo->olist.prev;
+
+ /*
+ * We know that this one is signaled,
+ * so it's safe to remove it.
+ */
+ drm_suballoc_remove_locked(best_bo);
+ return true;
+ }
+ return false;
+}
+
+/**
+ * drm_suballoc_new() - Make a suballocation.
+ * @sa_manager: pointer to the sa_manager
+ * @size: number of bytes we want to suballocate.
+ * @gfp: gfp flags used for memory allocation. Typically GFP_KERNEL but
+ * the argument is provided for suballocations from reclaim context or
+ * where the caller wants to avoid pipelining rather than wait for
+ * reclaim.
+ * @intr: Whether to perform waits interruptible. This should typically
+ * always be true, unless the caller needs to propagate a
+ * non-interruptible context from above layers.
+ * @align: Alignment. Must not exceed the default manager alignment.
+ * If @align is zero, then the manager alignment is used.
+ *
+ * Try to make a suballocation of size @size, which will be rounded
+ * up to the alignment specified in specified in drm_suballoc_manager_init().
+ *
+ * Return: a new suballocated bo, or an ERR_PTR.
+ */
+struct drm_suballoc *
+drm_suballoc_new(struct drm_suballoc_manager *sa_manager, size_t size,
+ gfp_t gfp, bool intr, size_t align)
+{
+ struct dma_fence *fences[DRM_SUBALLOC_MAX_QUEUES];
+ unsigned int tries[DRM_SUBALLOC_MAX_QUEUES];
+ unsigned int count;
+ int i, r;
+ struct drm_suballoc *sa;
+
+ if (WARN_ON_ONCE(align > sa_manager->align))
+ return ERR_PTR(-EINVAL);
+ if (WARN_ON_ONCE(size > sa_manager->size || !size))
+ return ERR_PTR(-EINVAL);
+
+ if (!align)
+ align = sa_manager->align;
+
+ sa = kmalloc(sizeof(*sa), gfp);
+ if (!sa)
+ return ERR_PTR(-ENOMEM);
+ sa->manager = sa_manager;
+ sa->fence = NULL;
+ INIT_LIST_HEAD(&sa->olist);
+ INIT_LIST_HEAD(&sa->flist);
+
+ spin_lock(&sa_manager->wq.lock);
+ do {
+ for (i = 0; i < DRM_SUBALLOC_MAX_QUEUES; ++i)
+ tries[i] = 0;
+
+ do {
+ drm_suballoc_try_free(sa_manager);
+
+ if (drm_suballoc_try_alloc(sa_manager, sa,
+ size, align)) {
+ spin_unlock(&sa_manager->wq.lock);
+ return sa;
+ }
+
+ /* see if we can skip over some allocations */
+ } while (drm_suballoc_next_hole(sa_manager, fences, tries));
+
+ for (i = 0, count = 0; i < DRM_SUBALLOC_MAX_QUEUES; ++i)
+ if (fences[i])
+ fences[count++] = dma_fence_get(fences[i]);
+
+ if (count) {
+ long t;
+
+ spin_unlock(&sa_manager->wq.lock);
+ t = dma_fence_wait_any_timeout(fences, count, intr,
+ MAX_SCHEDULE_TIMEOUT,
+ NULL);
+ for (i = 0; i < count; ++i)
+ dma_fence_put(fences[i]);
+
+ r = (t > 0) ? 0 : t;
+ spin_lock(&sa_manager->wq.lock);
+ } else if (intr) {
+ /* if we have nothing to wait for block */
+ r = wait_event_interruptible_locked
+ (sa_manager->wq,
+ __drm_suballoc_event(sa_manager, size, align));
+ } else {
+ spin_unlock(&sa_manager->wq.lock);
+ wait_event(sa_manager->wq,
+ drm_suballoc_event(sa_manager, size, align));
+ r = 0;
+ spin_lock(&sa_manager->wq.lock);
+ }
+ } while (!r);
+
+ spin_unlock(&sa_manager->wq.lock);
+ kfree(sa);
+ return ERR_PTR(r);
+}
+EXPORT_SYMBOL(drm_suballoc_new);
+
+/**
+ * drm_suballoc_free - Free a suballocation
+ * @suballoc: pointer to the suballocation
+ * @fence: fence that signals when suballocation is idle
+ *
+ * Free the suballocation. The suballocation can be re-used after @fence signals.
+ */
+void drm_suballoc_free(struct drm_suballoc *suballoc,
+ struct dma_fence *fence)
+{
+ struct drm_suballoc_manager *sa_manager;
+
+ if (!suballoc)
+ return;
+
+ sa_manager = suballoc->manager;
+
+ spin_lock(&sa_manager->wq.lock);
+ if (fence && !dma_fence_is_signaled(fence)) {
+ u32 idx;
+
+ suballoc->fence = dma_fence_get(fence);
+ idx = fence->context & (DRM_SUBALLOC_MAX_QUEUES - 1);
+ list_add_tail(&suballoc->flist, &sa_manager->flist[idx]);
+ } else {
+ drm_suballoc_remove_locked(suballoc);
+ }
+ wake_up_all_locked(&sa_manager->wq);
+ spin_unlock(&sa_manager->wq.lock);
+}
+EXPORT_SYMBOL(drm_suballoc_free);
+
+#ifdef CONFIG_DEBUG_FS
+void drm_suballoc_dump_debug_info(struct drm_suballoc_manager *sa_manager,
+ struct drm_printer *p,
+ unsigned long long suballoc_base)
+{
+ struct drm_suballoc *i;
+
+ spin_lock(&sa_manager->wq.lock);
+ list_for_each_entry(i, &sa_manager->olist, olist) {
+ unsigned long long soffset = i->soffset;
+ unsigned long long eoffset = i->eoffset;
+
+ if (&i->olist == sa_manager->hole)
+ drm_puts(p, ">");
+ else
+ drm_puts(p, " ");
+
+ drm_printf(p, "[0x%010llx 0x%010llx] size %8lld",
+ suballoc_base + soffset, suballoc_base + eoffset,
+ eoffset - soffset);
+
+ if (i->fence)
+ drm_printf(p, " protected by 0x%016llx on context %llu",
+ (unsigned long long)i->fence->seqno,
+ (unsigned long long)i->fence->context);
+
+ drm_puts(p, "\n");
+ }
+ spin_unlock(&sa_manager->wq.lock);
+}
+EXPORT_SYMBOL(drm_suballoc_dump_debug_info);
+#endif
+MODULE_AUTHOR("Multiple");
+MODULE_DESCRIPTION("Range suballocator helper");
+MODULE_LICENSE("Dual MIT/GPL");
diff --git a/drivers/gpu/drm/drm_sysfs.c b/drivers/gpu/drm/drm_sysfs.c
index 430e00b16eec..3c22a803201d 100644
--- a/drivers/gpu/drm/drm_sysfs.c
+++ b/drivers/gpu/drm/drm_sysfs.c
@@ -19,6 +19,7 @@
#include <linux/kdev_t.h>
#include <linux/slab.h>
+#include <drm/drm_accel.h>
#include <drm/drm_connector.h>
#include <drm/drm_device.h>
#include <drm/drm_file.h>
@@ -90,7 +91,7 @@ static void drm_sysfs_acpi_register(void) { }
static void drm_sysfs_acpi_unregister(void) { }
#endif
-static char *drm_devnode(struct device *dev, umode_t *mode)
+static char *drm_devnode(const struct device *dev, umode_t *mode)
{
return kasprintf(GFP_KERNEL, "dri/%s", dev_name(dev));
}
@@ -111,7 +112,7 @@ int drm_sysfs_init(void)
{
int err;
- drm_class = class_create(THIS_MODULE, "drm");
+ drm_class = class_create("drm");
if (IS_ERR(drm_class))
return PTR_ERR(drm_class);
@@ -471,19 +472,26 @@ struct device *drm_sysfs_minor_alloc(struct drm_minor *minor)
struct device *kdev;
int r;
- if (minor->type == DRM_MINOR_RENDER)
- minor_str = "renderD%d";
- else
- minor_str = "card%d";
-
kdev = kzalloc(sizeof(*kdev), GFP_KERNEL);
if (!kdev)
return ERR_PTR(-ENOMEM);
device_initialize(kdev);
- kdev->devt = MKDEV(DRM_MAJOR, minor->index);
- kdev->class = drm_class;
- kdev->type = &drm_sysfs_device_minor;
+
+ if (minor->type == DRM_MINOR_ACCEL) {
+ minor_str = "accel%d";
+ accel_set_device_instance_params(kdev, minor->index);
+ } else {
+ if (minor->type == DRM_MINOR_RENDER)
+ minor_str = "renderD%d";
+ else
+ minor_str = "card%d";
+
+ kdev->devt = MKDEV(DRM_MAJOR, minor->index);
+ kdev->class = drm_class;
+ kdev->type = &drm_sysfs_device_minor;
+ }
+
kdev->parent = minor->dev->dev;
kdev->release = drm_sysfs_release;
dev_set_drvdata(kdev, minor);
diff --git a/drivers/gpu/drm/drm_vblank.c b/drivers/gpu/drm/drm_vblank.c
index 2ff31717a3de..877e2067534f 100644
--- a/drivers/gpu/drm/drm_vblank.c
+++ b/drivers/gpu/drm/drm_vblank.c
@@ -844,10 +844,9 @@ bool drm_crtc_vblank_helper_get_vblank_timestamp(struct drm_crtc *crtc,
EXPORT_SYMBOL(drm_crtc_vblank_helper_get_vblank_timestamp);
/**
- * drm_get_last_vbltimestamp - retrieve raw timestamp for the most recent
- * vblank interval
- * @dev: DRM device
- * @pipe: index of CRTC whose vblank timestamp to retrieve
+ * drm_crtc_get_last_vbltimestamp - retrieve raw timestamp for the most
+ * recent vblank interval
+ * @crtc: CRTC whose vblank timestamp to retrieve
* @tvblank: Pointer to target time which should receive the timestamp
* @in_vblank_irq:
* True when called from drm_crtc_handle_vblank(). Some drivers
@@ -865,10 +864,9 @@ EXPORT_SYMBOL(drm_crtc_vblank_helper_get_vblank_timestamp);
* True if timestamp is considered to be very precise, false otherwise.
*/
static bool
-drm_get_last_vbltimestamp(struct drm_device *dev, unsigned int pipe,
- ktime_t *tvblank, bool in_vblank_irq)
+drm_crtc_get_last_vbltimestamp(struct drm_crtc *crtc, ktime_t *tvblank,
+ bool in_vblank_irq)
{
- struct drm_crtc *crtc = drm_crtc_from_index(dev, pipe);
bool ret = false;
/* Define requested maximum error on timestamps (nanoseconds). */
@@ -876,8 +874,6 @@ drm_get_last_vbltimestamp(struct drm_device *dev, unsigned int pipe,
/* Query driver if possible and precision timestamping enabled. */
if (crtc && crtc->funcs->get_vblank_timestamp && max_error > 0) {
- struct drm_crtc *crtc = drm_crtc_from_index(dev, pipe);
-
ret = crtc->funcs->get_vblank_timestamp(crtc, &max_error,
tvblank, in_vblank_irq);
}
@@ -891,6 +887,15 @@ drm_get_last_vbltimestamp(struct drm_device *dev, unsigned int pipe,
return ret;
}
+static bool
+drm_get_last_vbltimestamp(struct drm_device *dev, unsigned int pipe,
+ ktime_t *tvblank, bool in_vblank_irq)
+{
+ struct drm_crtc *crtc = drm_crtc_from_index(dev, pipe);
+
+ return drm_crtc_get_last_vbltimestamp(crtc, tvblank, in_vblank_irq);
+}
+
/**
* drm_crtc_vblank_count - retrieve "cooked" vblank counter value
* @crtc: which counter to retrieve
@@ -980,6 +985,42 @@ u64 drm_crtc_vblank_count_and_time(struct drm_crtc *crtc,
}
EXPORT_SYMBOL(drm_crtc_vblank_count_and_time);
+/**
+ * drm_crtc_next_vblank_start - calculate the time of the next vblank
+ * @crtc: the crtc for which to calculate next vblank time
+ * @vblanktime: pointer to time to receive the next vblank timestamp.
+ *
+ * Calculate the expected time of the start of the next vblank period,
+ * based on time of previous vblank and frame duration
+ */
+int drm_crtc_next_vblank_start(struct drm_crtc *crtc, ktime_t *vblanktime)
+{
+ unsigned int pipe = drm_crtc_index(crtc);
+ struct drm_vblank_crtc *vblank;
+ struct drm_display_mode *mode;
+ u64 vblank_start;
+
+ if (!drm_dev_has_vblank(crtc->dev))
+ return -EINVAL;
+
+ vblank = &crtc->dev->vblank[pipe];
+ mode = &vblank->hwmode;
+
+ if (!vblank->framedur_ns || !vblank->linedur_ns)
+ return -EINVAL;
+
+ if (!drm_crtc_get_last_vbltimestamp(crtc, vblanktime, false))
+ return -EINVAL;
+
+ vblank_start = DIV_ROUND_DOWN_ULL(
+ (u64)vblank->framedur_ns * mode->crtc_vblank_start,
+ mode->crtc_vtotal);
+ *vblanktime = ktime_add(*vblanktime, ns_to_ktime(vblank_start));
+
+ return 0;
+}
+EXPORT_SYMBOL(drm_crtc_next_vblank_start);
+
static void send_vblank_event(struct drm_device *dev,
struct drm_pending_vblank_event *e,
u64 seq, ktime_t now)
diff --git a/drivers/gpu/drm/drm_vm.c b/drivers/gpu/drm/drm_vm.c
index f024dc93939e..87c9fe55dec7 100644
--- a/drivers/gpu/drm/drm_vm.c
+++ b/drivers/gpu/drm/drm_vm.c
@@ -476,7 +476,7 @@ static int drm_mmap_dma(struct file *filp, struct vm_area_struct *vma)
if (!capable(CAP_SYS_ADMIN) &&
(dma->flags & _DRM_DMA_USE_PCI_RO)) {
- vma->vm_flags &= ~(VM_WRITE | VM_MAYWRITE);
+ vm_flags_clear(vma, VM_WRITE | VM_MAYWRITE);
#if defined(__i386__) || defined(__x86_64__)
pgprot_val(vma->vm_page_prot) &= ~_PAGE_RW;
#else
@@ -492,7 +492,7 @@ static int drm_mmap_dma(struct file *filp, struct vm_area_struct *vma)
vma->vm_ops = &drm_vm_dma_ops;
- vma->vm_flags |= VM_DONTEXPAND | VM_DONTDUMP;
+ vm_flags_set(vma, VM_DONTEXPAND | VM_DONTDUMP);
drm_vm_open_locked(dev, vma);
return 0;
@@ -560,7 +560,7 @@ static int drm_mmap_locked(struct file *filp, struct vm_area_struct *vma)
return -EINVAL;
if (!capable(CAP_SYS_ADMIN) && (map->flags & _DRM_READ_ONLY)) {
- vma->vm_flags &= ~(VM_WRITE | VM_MAYWRITE);
+ vm_flags_clear(vma, VM_WRITE | VM_MAYWRITE);
#if defined(__i386__) || defined(__x86_64__)
pgprot_val(vma->vm_page_prot) &= ~_PAGE_RW;
#else
@@ -628,7 +628,7 @@ static int drm_mmap_locked(struct file *filp, struct vm_area_struct *vma)
default:
return -EINVAL; /* This should never happen. */
}
- vma->vm_flags |= VM_DONTEXPAND | VM_DONTDUMP;
+ vm_flags_set(vma, VM_DONTEXPAND | VM_DONTDUMP);
drm_vm_open_locked(dev, vma);
return 0;
diff --git a/drivers/gpu/drm/drm_vma_manager.c b/drivers/gpu/drm/drm_vma_manager.c
index 7de37f8c68fd..83229a031af0 100644
--- a/drivers/gpu/drm/drm_vma_manager.c
+++ b/drivers/gpu/drm/drm_vma_manager.c
@@ -240,27 +240,8 @@ void drm_vma_offset_remove(struct drm_vma_offset_manager *mgr,
}
EXPORT_SYMBOL(drm_vma_offset_remove);
-/**
- * drm_vma_node_allow - Add open-file to list of allowed users
- * @node: Node to modify
- * @tag: Tag of file to remove
- *
- * Add @tag to the list of allowed open-files for this node. If @tag is
- * already on this list, the ref-count is incremented.
- *
- * The list of allowed-users is preserved across drm_vma_offset_add() and
- * drm_vma_offset_remove() calls. You may even call it if the node is currently
- * not added to any offset-manager.
- *
- * You must remove all open-files the same number of times as you added them
- * before destroying the node. Otherwise, you will leak memory.
- *
- * This is locked against concurrent access internally.
- *
- * RETURNS:
- * 0 on success, negative error code on internal failure (out-of-mem)
- */
-int drm_vma_node_allow(struct drm_vma_offset_node *node, struct drm_file *tag)
+static int vma_node_allow(struct drm_vma_offset_node *node,
+ struct drm_file *tag, bool ref_counted)
{
struct rb_node **iter;
struct rb_node *parent = NULL;
@@ -282,7 +263,8 @@ int drm_vma_node_allow(struct drm_vma_offset_node *node, struct drm_file *tag)
entry = rb_entry(*iter, struct drm_vma_offset_file, vm_rb);
if (tag == entry->vm_tag) {
- entry->vm_count++;
+ if (ref_counted)
+ entry->vm_count++;
goto unlock;
} else if (tag > entry->vm_tag) {
iter = &(*iter)->rb_right;
@@ -307,9 +289,59 @@ unlock:
kfree(new);
return ret;
}
+
+/**
+ * drm_vma_node_allow - Add open-file to list of allowed users
+ * @node: Node to modify
+ * @tag: Tag of file to remove
+ *
+ * Add @tag to the list of allowed open-files for this node. If @tag is
+ * already on this list, the ref-count is incremented.
+ *
+ * The list of allowed-users is preserved across drm_vma_offset_add() and
+ * drm_vma_offset_remove() calls. You may even call it if the node is currently
+ * not added to any offset-manager.
+ *
+ * You must remove all open-files the same number of times as you added them
+ * before destroying the node. Otherwise, you will leak memory.
+ *
+ * This is locked against concurrent access internally.
+ *
+ * RETURNS:
+ * 0 on success, negative error code on internal failure (out-of-mem)
+ */
+int drm_vma_node_allow(struct drm_vma_offset_node *node, struct drm_file *tag)
+{
+ return vma_node_allow(node, tag, true);
+}
EXPORT_SYMBOL(drm_vma_node_allow);
/**
+ * drm_vma_node_allow_once - Add open-file to list of allowed users
+ * @node: Node to modify
+ * @tag: Tag of file to remove
+ *
+ * Add @tag to the list of allowed open-files for this node.
+ *
+ * The list of allowed-users is preserved across drm_vma_offset_add() and
+ * drm_vma_offset_remove() calls. You may even call it if the node is currently
+ * not added to any offset-manager.
+ *
+ * This is not ref-counted unlike drm_vma_node_allow() hence drm_vma_node_revoke()
+ * should only be called once after this.
+ *
+ * This is locked against concurrent access internally.
+ *
+ * RETURNS:
+ * 0 on success, negative error code on internal failure (out-of-mem)
+ */
+int drm_vma_node_allow_once(struct drm_vma_offset_node *node, struct drm_file *tag)
+{
+ return vma_node_allow(node, tag, false);
+}
+EXPORT_SYMBOL(drm_vma_node_allow_once);
+
+/**
* drm_vma_node_revoke - Remove open-file from list of allowed users
* @node: Node to modify
* @tag: Tag of file to remove
diff --git a/drivers/gpu/drm/etnaviv/etnaviv_drv.c b/drivers/gpu/drm/etnaviv/etnaviv_drv.c
index 1d2b4fb4bcf8..31a7f59ccb49 100644
--- a/drivers/gpu/drm/etnaviv/etnaviv_drv.c
+++ b/drivers/gpu/drm/etnaviv/etnaviv_drv.c
@@ -56,6 +56,11 @@ static int etnaviv_open(struct drm_device *dev, struct drm_file *file)
if (!ctx)
return -ENOMEM;
+ ret = xa_alloc_cyclic(&priv->active_contexts, &ctx->id, ctx,
+ xa_limit_32b, &priv->next_context_id, GFP_KERNEL);
+ if (ret < 0)
+ goto out_free;
+
ctx->mmu = etnaviv_iommu_context_init(priv->mmu_global,
priv->cmdbuf_suballoc);
if (!ctx->mmu) {
@@ -99,6 +104,8 @@ static void etnaviv_postclose(struct drm_device *dev, struct drm_file *file)
etnaviv_iommu_context_put(ctx->mmu);
+ xa_erase(&priv->active_contexts, ctx->id);
+
kfree(ctx);
}
@@ -514,6 +521,8 @@ static int etnaviv_bind(struct device *dev)
dma_set_max_seg_size(dev, SZ_2G);
+ xa_init_flags(&priv->active_contexts, XA_FLAGS_ALLOC);
+
mutex_init(&priv->gem_lock);
INIT_LIST_HEAD(&priv->gem_list);
priv->num_gpus = 0;
@@ -563,6 +572,8 @@ static void etnaviv_unbind(struct device *dev)
etnaviv_cmdbuf_suballoc_destroy(priv->cmdbuf_suballoc);
+ xa_destroy(&priv->active_contexts);
+
drm->dev_private = NULL;
kfree(priv);
diff --git a/drivers/gpu/drm/etnaviv/etnaviv_drv.h b/drivers/gpu/drm/etnaviv/etnaviv_drv.h
index f32f4771dada..b3eb1662e90c 100644
--- a/drivers/gpu/drm/etnaviv/etnaviv_drv.h
+++ b/drivers/gpu/drm/etnaviv/etnaviv_drv.h
@@ -6,13 +6,15 @@
#ifndef __ETNAVIV_DRV_H__
#define __ETNAVIV_DRV_H__
+#include <linux/io.h>
#include <linux/list.h>
#include <linux/mm_types.h>
#include <linux/sizes.h>
#include <linux/time64.h>
#include <linux/types.h>
+#include <linux/xarray.h>
-#include <drm/drm_fb_helper.h>
+#include <drm/drm_drv.h>
#include <drm/drm_gem.h>
#include <drm/etnaviv_drm.h>
#include <drm/gpu_scheduler.h>
@@ -27,6 +29,7 @@ struct etnaviv_iommu_global;
#define ETNAVIV_SOFTPIN_START_ADDRESS SZ_4M /* must be >= SUBALLOC_SIZE */
struct etnaviv_file_private {
+ int id;
struct etnaviv_iommu_context *mmu;
struct drm_sched_entity sched_entity[ETNA_MAX_PIPES];
};
@@ -39,6 +42,9 @@ struct etnaviv_drm_private {
struct etnaviv_cmdbuf_suballoc *cmdbuf_suballoc;
struct etnaviv_iommu_global *mmu_global;
+ struct xarray active_contexts;
+ u32 next_context_id;
+
/* list of GEM objects: */
struct mutex gem_lock;
struct list_head gem_list;
diff --git a/drivers/gpu/drm/etnaviv/etnaviv_dump.c b/drivers/gpu/drm/etnaviv/etnaviv_dump.c
index f418e0b75772..44b5f3c35aab 100644
--- a/drivers/gpu/drm/etnaviv/etnaviv_dump.c
+++ b/drivers/gpu/drm/etnaviv/etnaviv_dump.c
@@ -83,10 +83,15 @@ static void etnaviv_core_dump_registers(struct core_dump_iterator *iter,
{
struct etnaviv_dump_registers *reg = iter->data;
unsigned int i;
+ u32 read_addr;
for (i = 0; i < ARRAY_SIZE(etnaviv_dump_registers); i++, reg++) {
+ read_addr = etnaviv_dump_registers[i];
+ if (read_addr >= VIVS_PM_POWER_CONTROLS &&
+ read_addr <= VIVS_PM_PULSE_EATER)
+ read_addr = gpu_fix_power_address(gpu, read_addr);
reg->reg = cpu_to_le32(etnaviv_dump_registers[i]);
- reg->value = cpu_to_le32(gpu_read(gpu, etnaviv_dump_registers[i]));
+ reg->value = cpu_to_le32(gpu_read(gpu, read_addr));
}
etnaviv_core_dump_header(iter, ETDUMP_BUF_REG, reg);
diff --git a/drivers/gpu/drm/etnaviv/etnaviv_gem.c b/drivers/gpu/drm/etnaviv/etnaviv_gem.c
index cc386f8a7116..b5f73502e3dd 100644
--- a/drivers/gpu/drm/etnaviv/etnaviv_gem.c
+++ b/drivers/gpu/drm/etnaviv/etnaviv_gem.c
@@ -130,7 +130,7 @@ static int etnaviv_gem_mmap_obj(struct etnaviv_gem_object *etnaviv_obj,
{
pgprot_t vm_page_prot;
- vma->vm_flags |= VM_IO | VM_MIXEDMAP | VM_DONTEXPAND | VM_DONTDUMP;
+ vm_flags_set(vma, VM_PFNMAP | VM_DONTEXPAND | VM_DONTDUMP);
vm_page_prot = vm_get_page_prot(vma->vm_flags);
@@ -165,7 +165,8 @@ static vm_fault_t etnaviv_gem_fault(struct vm_fault *vmf)
struct vm_area_struct *vma = vmf->vma;
struct drm_gem_object *obj = vma->vm_private_data;
struct etnaviv_gem_object *etnaviv_obj = to_etnaviv_bo(obj);
- struct page **pages, *page;
+ struct page **pages;
+ unsigned long pfn;
pgoff_t pgoff;
int err;
@@ -189,12 +190,12 @@ static vm_fault_t etnaviv_gem_fault(struct vm_fault *vmf)
/* We don't use vmf->pgoff since that has the fake offset: */
pgoff = (vmf->address - vma->vm_start) >> PAGE_SHIFT;
- page = pages[pgoff];
+ pfn = page_to_pfn(pages[pgoff]);
VERB("Inserting %p pfn %lx, pa %lx", (void *)vmf->address,
- page_to_pfn(page), page_to_pfn(page) << PAGE_SHIFT);
+ pfn, pfn << PAGE_SHIFT);
- return vmf_insert_page(vma, vmf->address, page);
+ return vmf_insert_pfn(vma, vmf->address, pfn);
}
int etnaviv_gem_mmap_offset(struct drm_gem_object *obj, u64 *offset)
@@ -258,7 +259,12 @@ struct etnaviv_vram_mapping *etnaviv_gem_mapping_get(
if (mapping->use == 0) {
mutex_lock(&mmu_context->lock);
if (mapping->context == mmu_context)
- mapping->use += 1;
+ if (va && mapping->iova != va) {
+ etnaviv_iommu_reap_mapping(mapping);
+ mapping = NULL;
+ } else {
+ mapping->use += 1;
+ }
else
mapping = NULL;
mutex_unlock(&mmu_context->lock);
@@ -504,7 +510,6 @@ void etnaviv_gem_free_object(struct drm_gem_object *obj)
kfree(mapping);
}
- drm_gem_free_mmap_offset(obj);
etnaviv_obj->ops->release(etnaviv_obj);
drm_gem_object_release(obj);
@@ -638,6 +643,7 @@ static int etnaviv_gem_userptr_get_pages(struct etnaviv_gem_object *etnaviv_obj)
struct page **pvec = NULL;
struct etnaviv_gem_userptr *userptr = &etnaviv_obj->userptr;
int ret, pinned = 0, npages = etnaviv_obj->base.size >> PAGE_SHIFT;
+ unsigned int gup_flags = FOLL_LONGTERM;
might_lock_read(&current->mm->mmap_lock);
@@ -648,14 +654,15 @@ static int etnaviv_gem_userptr_get_pages(struct etnaviv_gem_object *etnaviv_obj)
if (!pvec)
return -ENOMEM;
+ if (!userptr->ro)
+ gup_flags |= FOLL_WRITE;
+
do {
unsigned num_pages = npages - pinned;
uint64_t ptr = userptr->ptr + pinned * PAGE_SIZE;
struct page **pages = pvec + pinned;
- ret = pin_user_pages_fast(ptr, num_pages,
- FOLL_WRITE | FOLL_FORCE | FOLL_LONGTERM,
- pages);
+ ret = pin_user_pages_fast(ptr, num_pages, gup_flags, pages);
if (ret < 0) {
unpin_user_pages(pvec, pinned);
kvfree(pvec);
diff --git a/drivers/gpu/drm/etnaviv/etnaviv_gem.h b/drivers/gpu/drm/etnaviv/etnaviv_gem.h
index 63688e6e4580..baa81cbf701a 100644
--- a/drivers/gpu/drm/etnaviv/etnaviv_gem.h
+++ b/drivers/gpu/drm/etnaviv/etnaviv_gem.h
@@ -96,6 +96,7 @@ struct etnaviv_gem_submit {
int out_fence_id;
struct list_head node; /* GPU active submit list */
struct etnaviv_cmdbuf cmdbuf;
+ struct pid *pid; /* submitting process */
bool runtime_resumed;
u32 exec_state;
u32 flags;
diff --git a/drivers/gpu/drm/etnaviv/etnaviv_gem_prime.c b/drivers/gpu/drm/etnaviv/etnaviv_gem_prime.c
index 3fa2da149639..3524b5811682 100644
--- a/drivers/gpu/drm/etnaviv/etnaviv_gem_prime.c
+++ b/drivers/gpu/drm/etnaviv/etnaviv_gem_prime.c
@@ -65,7 +65,7 @@ static void etnaviv_gem_prime_release(struct etnaviv_gem_object *etnaviv_obj)
struct iosys_map map = IOSYS_MAP_INIT_VADDR(etnaviv_obj->vaddr);
if (etnaviv_obj->vaddr)
- dma_buf_vunmap(etnaviv_obj->base.import_attach->dmabuf, &map);
+ dma_buf_vunmap_unlocked(etnaviv_obj->base.import_attach->dmabuf, &map);
/* Don't drop the pages for imported dmabuf, as they are not
* ours, just free the array we allocated:
@@ -91,7 +91,15 @@ static void *etnaviv_gem_prime_vmap_impl(struct etnaviv_gem_object *etnaviv_obj)
static int etnaviv_gem_prime_mmap_obj(struct etnaviv_gem_object *etnaviv_obj,
struct vm_area_struct *vma)
{
- return dma_buf_mmap(etnaviv_obj->base.dma_buf, vma, 0);
+ int ret;
+
+ ret = dma_buf_mmap(etnaviv_obj->base.dma_buf, vma, 0);
+ if (!ret) {
+ /* Drop the reference acquired by drm_gem_mmap_obj(). */
+ drm_gem_object_put(&etnaviv_obj->base);
+ }
+
+ return ret;
}
static const struct etnaviv_gem_ops etnaviv_gem_prime_ops = {
diff --git a/drivers/gpu/drm/etnaviv/etnaviv_gem_submit.c b/drivers/gpu/drm/etnaviv/etnaviv_gem_submit.c
index 1ac916b24891..45403ea38906 100644
--- a/drivers/gpu/drm/etnaviv/etnaviv_gem_submit.c
+++ b/drivers/gpu/drm/etnaviv/etnaviv_gem_submit.c
@@ -393,12 +393,16 @@ static void submit_cleanup(struct kref *kref)
wake_up_all(&submit->gpu->fence_event);
if (submit->out_fence) {
- /* first remove from IDR, so fence can not be found anymore */
- mutex_lock(&submit->gpu->fence_lock);
- idr_remove(&submit->gpu->fence_idr, submit->out_fence_id);
- mutex_unlock(&submit->gpu->fence_lock);
+ /*
+ * Remove from user fence array before dropping the reference,
+ * so fence can not be found in lookup anymore.
+ */
+ xa_erase(&submit->gpu->user_fences, submit->out_fence_id);
dma_fence_put(submit->out_fence);
}
+
+ put_pid(submit->pid);
+
kfree(submit->pmrs);
kfree(submit);
}
@@ -422,6 +426,7 @@ int etnaviv_ioctl_gem_submit(struct drm_device *dev, void *data,
struct sync_file *sync_file = NULL;
struct ww_acquire_ctx ticket;
int out_fence_fd = -1;
+ struct pid *pid = get_pid(task_pid(current));
void *stream;
int ret;
@@ -519,6 +524,8 @@ int etnaviv_ioctl_gem_submit(struct drm_device *dev, void *data,
goto err_submit_ww_acquire;
}
+ submit->pid = pid;
+
ret = etnaviv_cmdbuf_init(priv->cmdbuf_suballoc, &submit->cmdbuf,
ALIGN(args->stream_size, 8) + 8);
if (ret)
diff --git a/drivers/gpu/drm/etnaviv/etnaviv_gpu.c b/drivers/gpu/drm/etnaviv/etnaviv_gpu.c
index 37018bc55810..de8c9894967c 100644
--- a/drivers/gpu/drm/etnaviv/etnaviv_gpu.c
+++ b/drivers/gpu/drm/etnaviv/etnaviv_gpu.c
@@ -416,6 +416,12 @@ static void etnaviv_hw_identify(struct etnaviv_gpu *gpu)
if (gpu->identity.model == chipModel_GC700)
gpu->identity.features &= ~chipFeatures_FAST_CLEAR;
+ /* These models/revisions don't have the 2D pipe bit */
+ if ((gpu->identity.model == chipModel_GC500 &&
+ gpu->identity.revision <= 2) ||
+ gpu->identity.model == chipModel_GC300)
+ gpu->identity.features |= chipFeatures_PIPE_2D;
+
if ((gpu->identity.model == chipModel_GC500 &&
gpu->identity.revision < 2) ||
(gpu->identity.model == chipModel_GC300 &&
@@ -449,8 +455,9 @@ static void etnaviv_hw_identify(struct etnaviv_gpu *gpu)
gpu_read(gpu, VIVS_HI_CHIP_MINOR_FEATURE_5);
}
- /* GC600 idle register reports zero bits where modules aren't present */
- if (gpu->identity.model == chipModel_GC600)
+ /* GC600/300 idle register reports zero bits where modules aren't present */
+ if (gpu->identity.model == chipModel_GC600 ||
+ gpu->identity.model == chipModel_GC300)
gpu->idle_mask = VIVS_HI_IDLE_STATE_TX |
VIVS_HI_IDLE_STATE_RA |
VIVS_HI_IDLE_STATE_SE |
@@ -583,7 +590,7 @@ static void etnaviv_gpu_enable_mlcg(struct etnaviv_gpu *gpu)
u32 pmc, ppc;
/* enable clock gating */
- ppc = gpu_read(gpu, VIVS_PM_POWER_CONTROLS);
+ ppc = gpu_read_power(gpu, VIVS_PM_POWER_CONTROLS);
ppc |= VIVS_PM_POWER_CONTROLS_ENABLE_MODULE_CLOCK_GATING;
/* Disable stall module clock gating for 4.3.0.1 and 4.3.0.2 revs */
@@ -591,9 +598,9 @@ static void etnaviv_gpu_enable_mlcg(struct etnaviv_gpu *gpu)
gpu->identity.revision == 0x4302)
ppc |= VIVS_PM_POWER_CONTROLS_DISABLE_STALL_MODULE_CLOCK_GATING;
- gpu_write(gpu, VIVS_PM_POWER_CONTROLS, ppc);
+ gpu_write_power(gpu, VIVS_PM_POWER_CONTROLS, ppc);
- pmc = gpu_read(gpu, VIVS_PM_MODULE_CONTROLS);
+ pmc = gpu_read_power(gpu, VIVS_PM_MODULE_CONTROLS);
/* Disable PA clock gating for GC400+ without bugfix except for GC420 */
if (gpu->identity.model >= chipModel_GC400 &&
@@ -616,19 +623,20 @@ static void etnaviv_gpu_enable_mlcg(struct etnaviv_gpu *gpu)
/* Disable TX clock gating on affected core revisions. */
if (etnaviv_is_model_rev(gpu, GC4000, 0x5222) ||
- etnaviv_is_model_rev(gpu, GC2000, 0x5108))
+ etnaviv_is_model_rev(gpu, GC2000, 0x5108) ||
+ etnaviv_is_model_rev(gpu, GC2000, 0x6202) ||
+ etnaviv_is_model_rev(gpu, GC2000, 0x6203))
pmc |= VIVS_PM_MODULE_CONTROLS_DISABLE_MODULE_CLOCK_GATING_TX;
- /* Disable SE, RA and TX clock gating on affected core revisions. */
+ /* Disable SE and RA clock gating on affected core revisions. */
if (etnaviv_is_model_rev(gpu, GC7000, 0x6202))
pmc |= VIVS_PM_MODULE_CONTROLS_DISABLE_MODULE_CLOCK_GATING_SE |
- VIVS_PM_MODULE_CONTROLS_DISABLE_MODULE_CLOCK_GATING_RA |
- VIVS_PM_MODULE_CONTROLS_DISABLE_MODULE_CLOCK_GATING_TX;
+ VIVS_PM_MODULE_CONTROLS_DISABLE_MODULE_CLOCK_GATING_RA;
pmc |= VIVS_PM_MODULE_CONTROLS_DISABLE_MODULE_CLOCK_GATING_RA_HZ;
pmc |= VIVS_PM_MODULE_CONTROLS_DISABLE_MODULE_CLOCK_GATING_RA_EZ;
- gpu_write(gpu, VIVS_PM_MODULE_CONTROLS, pmc);
+ gpu_write_power(gpu, VIVS_PM_MODULE_CONTROLS, pmc);
}
void etnaviv_gpu_start_fe(struct etnaviv_gpu *gpu, u32 address, u16 prefetch)
@@ -688,11 +696,11 @@ static void etnaviv_gpu_setup_pulse_eater(struct etnaviv_gpu *gpu)
(gpu->identity.features & chipFeatures_PIPE_3D))
{
/* Performance fix: disable internal DFS */
- pulse_eater = gpu_read(gpu, VIVS_PM_PULSE_EATER);
+ pulse_eater = gpu_read_power(gpu, VIVS_PM_PULSE_EATER);
pulse_eater |= BIT(18);
}
- gpu_write(gpu, VIVS_PM_PULSE_EATER, pulse_eater);
+ gpu_write_power(gpu, VIVS_PM_PULSE_EATER, pulse_eater);
}
static void etnaviv_gpu_hw_init(struct etnaviv_gpu *gpu)
@@ -765,6 +773,10 @@ int etnaviv_gpu_init(struct etnaviv_gpu *gpu)
goto fail;
}
+ if (gpu->identity.nn_core_count > 0)
+ dev_warn(gpu->dev, "etnaviv has been instantiated on a NPU, "
+ "for which the UAPI is still experimental\n");
+
/* Exclude VG cores with FE2.0 */
if (gpu->identity.features & chipFeatures_PIPE_VG &&
gpu->identity.features & chipFeatures_FE20) {
@@ -949,6 +961,8 @@ int etnaviv_gpu_debugfs(struct etnaviv_gpu *gpu, struct seq_file *m)
gpu->identity.vertex_cache_size);
seq_printf(m, "\t shader_core_count: %d\n",
gpu->identity.shader_core_count);
+ seq_printf(m, "\t nn_core_count: %d\n",
+ gpu->identity.nn_core_count);
seq_printf(m, "\t pixel_pipes: %d\n",
gpu->identity.pixel_pipes);
seq_printf(m, "\t vertex_output_buffer_size: %d\n",
@@ -1045,12 +1059,28 @@ pm_put:
}
#endif
-void etnaviv_gpu_recover_hang(struct etnaviv_gpu *gpu)
+void etnaviv_gpu_recover_hang(struct etnaviv_gem_submit *submit)
{
+ struct etnaviv_gpu *gpu = submit->gpu;
+ char *comm = NULL, *cmd = NULL;
+ struct task_struct *task;
unsigned int i;
dev_err(gpu->dev, "recover hung GPU!\n");
+ task = get_pid_task(submit->pid, PIDTYPE_PID);
+ if (task) {
+ comm = kstrdup(task->comm, GFP_KERNEL);
+ cmd = kstrdup_quotable_cmdline(task, GFP_KERNEL);
+ put_task_struct(task);
+ }
+
+ if (comm && cmd)
+ dev_err(gpu->dev, "offending task: %s (%s)\n", comm, cmd);
+
+ kfree(cmd);
+ kfree(comm);
+
if (pm_runtime_get_sync(gpu->dev) < 0)
goto pm_put;
@@ -1216,7 +1246,7 @@ int etnaviv_gpu_wait_fence_interruptible(struct etnaviv_gpu *gpu,
* pretends we didn't find a fence in that case.
*/
rcu_read_lock();
- fence = idr_find(&gpu->fence_idr, id);
+ fence = xa_load(&gpu->user_fences, id);
if (fence)
fence = dma_fence_get_rcu(fence);
rcu_read_unlock();
@@ -1294,9 +1324,9 @@ static void sync_point_perfmon_sample_pre(struct etnaviv_gpu *gpu,
u32 val;
/* disable clock gating */
- val = gpu_read(gpu, VIVS_PM_POWER_CONTROLS);
+ val = gpu_read_power(gpu, VIVS_PM_POWER_CONTROLS);
val &= ~VIVS_PM_POWER_CONTROLS_ENABLE_MODULE_CLOCK_GATING;
- gpu_write(gpu, VIVS_PM_POWER_CONTROLS, val);
+ gpu_write_power(gpu, VIVS_PM_POWER_CONTROLS, val);
/* enable debug register */
val = gpu_read(gpu, VIVS_HI_CLOCK_CONTROL);
@@ -1327,9 +1357,9 @@ static void sync_point_perfmon_sample_post(struct etnaviv_gpu *gpu,
gpu_write(gpu, VIVS_HI_CLOCK_CONTROL, val);
/* enable clock gating */
- val = gpu_read(gpu, VIVS_PM_POWER_CONTROLS);
+ val = gpu_read_power(gpu, VIVS_PM_POWER_CONTROLS);
val |= VIVS_PM_POWER_CONTROLS_ENABLE_MODULE_CLOCK_GATING;
- gpu_write(gpu, VIVS_PM_POWER_CONTROLS, val);
+ gpu_write_power(gpu, VIVS_PM_POWER_CONTROLS, val);
}
@@ -1426,6 +1456,15 @@ static void sync_point_worker(struct work_struct *work)
static void dump_mmu_fault(struct etnaviv_gpu *gpu)
{
+ static const char *fault_reasons[] = {
+ "slave not present",
+ "page not present",
+ "write violation",
+ "out of bounds",
+ "read security violation",
+ "write security violation",
+ };
+
u32 status_reg, status;
int i;
@@ -1438,18 +1477,25 @@ static void dump_mmu_fault(struct etnaviv_gpu *gpu)
dev_err_ratelimited(gpu->dev, "MMU fault status 0x%08x\n", status);
for (i = 0; i < 4; i++) {
+ const char *reason = "unknown";
u32 address_reg;
+ u32 mmu_status;
- if (!(status & (VIVS_MMUv2_STATUS_EXCEPTION0__MASK << (i * 4))))
+ mmu_status = (status >> (i * 4)) & VIVS_MMUv2_STATUS_EXCEPTION0__MASK;
+ if (!mmu_status)
continue;
+ if ((mmu_status - 1) < ARRAY_SIZE(fault_reasons))
+ reason = fault_reasons[mmu_status - 1];
+
if (gpu->sec_mode == ETNA_SEC_NONE)
address_reg = VIVS_MMUv2_EXCEPTION_ADDR(i);
else
address_reg = VIVS_MMUv2_SEC_EXCEPTION_ADDR;
- dev_err_ratelimited(gpu->dev, "MMU %d fault addr 0x%08x\n", i,
- gpu_read(gpu, address_reg));
+ dev_err_ratelimited(gpu->dev,
+ "MMU %d fault (%s) addr 0x%08x\n",
+ i, reason, gpu_read(gpu, address_reg));
}
}
@@ -1605,7 +1651,6 @@ static int etnaviv_gpu_hw_suspend(struct etnaviv_gpu *gpu)
return etnaviv_gpu_clk_disable(gpu);
}
-#ifdef CONFIG_PM
static int etnaviv_gpu_hw_resume(struct etnaviv_gpu *gpu)
{
int ret;
@@ -1621,7 +1666,6 @@ static int etnaviv_gpu_hw_resume(struct etnaviv_gpu *gpu)
return 0;
}
-#endif
static int
etnaviv_gpu_cooling_get_max_state(struct thermal_cooling_device *cdev,
@@ -1689,18 +1733,17 @@ static int etnaviv_gpu_bind(struct device *dev, struct device *master,
if (ret)
goto out_workqueue;
-#ifdef CONFIG_PM
- ret = pm_runtime_get_sync(gpu->dev);
-#else
- ret = etnaviv_gpu_clk_enable(gpu);
-#endif
+ if (IS_ENABLED(CONFIG_PM))
+ ret = pm_runtime_get_sync(gpu->dev);
+ else
+ ret = etnaviv_gpu_clk_enable(gpu);
if (ret < 0)
goto out_sched;
gpu->drm = drm;
gpu->fence_context = dma_fence_context_alloc(1);
- idr_init(&gpu->fence_idr);
+ xa_init_flags(&gpu->user_fences, XA_FLAGS_ALLOC);
spin_lock_init(&gpu->fence_spinlock);
INIT_WORK(&gpu->sync_point_work, sync_point_worker);
@@ -1737,12 +1780,12 @@ static void etnaviv_gpu_unbind(struct device *dev, struct device *master,
etnaviv_sched_fini(gpu);
-#ifdef CONFIG_PM
- pm_runtime_get_sync(gpu->dev);
- pm_runtime_put_sync_suspend(gpu->dev);
-#else
- etnaviv_gpu_hw_suspend(gpu);
-#endif
+ if (IS_ENABLED(CONFIG_PM)) {
+ pm_runtime_get_sync(gpu->dev);
+ pm_runtime_put_sync_suspend(gpu->dev);
+ } else {
+ etnaviv_gpu_hw_suspend(gpu);
+ }
if (gpu->mmu_context)
etnaviv_iommu_context_put(gpu->mmu_context);
@@ -1754,7 +1797,7 @@ static void etnaviv_gpu_unbind(struct device *dev, struct device *master,
}
gpu->drm = NULL;
- idr_destroy(&gpu->fence_idr);
+ xa_destroy(&gpu->user_fences);
if (IS_ENABLED(CONFIG_DRM_ETNAVIV_THERMAL))
thermal_cooling_device_unregister(gpu->cooling);
@@ -1786,7 +1829,7 @@ static int etnaviv_gpu_platform_probe(struct platform_device *pdev)
gpu->dev = &pdev->dev;
mutex_init(&gpu->lock);
- mutex_init(&gpu->fence_lock);
+ mutex_init(&gpu->sched_lock);
/* Map registers: */
gpu->mmio = devm_platform_ioremap_resource(pdev, 0);
@@ -1856,7 +1899,6 @@ static int etnaviv_gpu_platform_remove(struct platform_device *pdev)
return 0;
}
-#ifdef CONFIG_PM
static int etnaviv_gpu_rpm_suspend(struct device *dev)
{
struct etnaviv_gpu *gpu = dev_get_drvdata(dev);
@@ -1899,18 +1941,16 @@ static int etnaviv_gpu_rpm_resume(struct device *dev)
return 0;
}
-#endif
static const struct dev_pm_ops etnaviv_gpu_pm_ops = {
- SET_RUNTIME_PM_OPS(etnaviv_gpu_rpm_suspend, etnaviv_gpu_rpm_resume,
- NULL)
+ RUNTIME_PM_OPS(etnaviv_gpu_rpm_suspend, etnaviv_gpu_rpm_resume, NULL)
};
struct platform_driver etnaviv_gpu_driver = {
.driver = {
.name = "etnaviv-gpu",
.owner = THIS_MODULE,
- .pm = &etnaviv_gpu_pm_ops,
+ .pm = pm_ptr(&etnaviv_gpu_pm_ops),
.of_match_table = etnaviv_gpu_match,
},
.probe = etnaviv_gpu_platform_probe,
diff --git a/drivers/gpu/drm/etnaviv/etnaviv_gpu.h b/drivers/gpu/drm/etnaviv/etnaviv_gpu.h
index 85eddd492774..98c6f9c320fc 100644
--- a/drivers/gpu/drm/etnaviv/etnaviv_gpu.h
+++ b/drivers/gpu/drm/etnaviv/etnaviv_gpu.h
@@ -10,6 +10,7 @@
#include "etnaviv_gem.h"
#include "etnaviv_mmu.h"
#include "etnaviv_drv.h"
+#include "common.xml.h"
struct etnaviv_gem_submit;
struct etnaviv_vram_mapping;
@@ -50,6 +51,9 @@ struct etnaviv_chip_identity {
/* Number of shader cores. */
u32 shader_core_count;
+ /* Number of Neural Network cores. */
+ u32 nn_core_count;
+
/* Size of the vertex cache. */
u32 vertex_cache_size;
@@ -99,6 +103,7 @@ struct etnaviv_gpu {
struct etnaviv_chip_identity identity;
enum etnaviv_sec_mode sec_mode;
struct workqueue_struct *wq;
+ struct mutex sched_lock;
struct drm_gpu_scheduler sched;
bool initialized;
bool fe_running;
@@ -116,8 +121,8 @@ struct etnaviv_gpu {
u32 idle_mask;
/* Fencing support */
- struct mutex fence_lock;
- struct idr fence_idr;
+ struct xarray user_fences;
+ u32 next_user_fence;
u32 next_fence;
u32 completed_fence;
wait_queue_head_t fence_event;
@@ -159,6 +164,26 @@ static inline u32 gpu_read(struct etnaviv_gpu *gpu, u32 reg)
return readl(gpu->mmio + reg);
}
+static inline u32 gpu_fix_power_address(struct etnaviv_gpu *gpu, u32 reg)
+{
+ /* Power registers in GC300 < 2.0 are offset by 0x100 */
+ if (gpu->identity.model == chipModel_GC300 &&
+ gpu->identity.revision < 0x2000)
+ reg += 0x100;
+
+ return reg;
+}
+
+static inline void gpu_write_power(struct etnaviv_gpu *gpu, u32 reg, u32 data)
+{
+ writel(data, gpu->mmio + gpu_fix_power_address(gpu, reg));
+}
+
+static inline u32 gpu_read_power(struct etnaviv_gpu *gpu, u32 reg)
+{
+ return readl(gpu->mmio + gpu_fix_power_address(gpu, reg));
+}
+
int etnaviv_gpu_get_param(struct etnaviv_gpu *gpu, u32 param, u64 *value);
int etnaviv_gpu_init(struct etnaviv_gpu *gpu);
@@ -168,7 +193,7 @@ bool etnaviv_fill_identity_from_hwdb(struct etnaviv_gpu *gpu);
int etnaviv_gpu_debugfs(struct etnaviv_gpu *gpu, struct seq_file *m);
#endif
-void etnaviv_gpu_recover_hang(struct etnaviv_gpu *gpu);
+void etnaviv_gpu_recover_hang(struct etnaviv_gem_submit *submit);
void etnaviv_gpu_retire(struct etnaviv_gpu *gpu);
int etnaviv_gpu_wait_fence_interruptible(struct etnaviv_gpu *gpu,
u32 fence, struct drm_etnaviv_timespec *timeout);
diff --git a/drivers/gpu/drm/etnaviv/etnaviv_hwdb.c b/drivers/gpu/drm/etnaviv/etnaviv_hwdb.c
index f2fc645c7956..2e63afa6c798 100644
--- a/drivers/gpu/drm/etnaviv/etnaviv_hwdb.c
+++ b/drivers/gpu/drm/etnaviv/etnaviv_hwdb.c
@@ -16,6 +16,7 @@ static const struct etnaviv_chip_identity etnaviv_chip_identities[] = {
.register_max = 64,
.thread_count = 128,
.shader_core_count = 1,
+ .nn_core_count = 0,
.vertex_cache_size = 8,
.vertex_output_buffer_size = 1024,
.pixel_pipes = 1,
@@ -47,6 +48,7 @@ static const struct etnaviv_chip_identity etnaviv_chip_identities[] = {
.register_max = 64,
.thread_count = 512,
.shader_core_count = 2,
+ .nn_core_count = 0,
.vertex_cache_size = 16,
.vertex_output_buffer_size = 1024,
.pixel_pipes = 1,
@@ -70,6 +72,38 @@ static const struct etnaviv_chip_identity etnaviv_chip_identities[] = {
},
{
.model = 0x7000,
+ .revision = 0x6203,
+ .product_id = 0x70003,
+ .customer_id = 0x4,
+ .eco_id = 0,
+ .stream_count = 16,
+ .register_max = 64,
+ .thread_count = 512,
+ .shader_core_count = 2,
+ .nn_core_count = 0,
+ .vertex_cache_size = 16,
+ .vertex_output_buffer_size = 1024,
+ .pixel_pipes = 1,
+ .instruction_count = 512,
+ .num_constants = 320,
+ .buffer_size = 0,
+ .varyings_count = 16,
+ .features = 0xe0287c8d,
+ .minor_features0 = 0xc1589eff,
+ .minor_features1 = 0xfefbfad9,
+ .minor_features2 = 0xeb9d4fbf,
+ .minor_features3 = 0xedfffced,
+ .minor_features4 = 0xdb0dafc7,
+ .minor_features5 = 0x3b5ac333,
+ .minor_features6 = 0xfcce6000,
+ .minor_features7 = 0xfffbfa6f,
+ .minor_features8 = 0x00e10ef3,
+ .minor_features9 = 0x00c8003c,
+ .minor_features10 = 0x00004040,
+ .minor_features11 = 0x00000024,
+ },
+ {
+ .model = 0x7000,
.revision = 0x6204,
.product_id = ~0U,
.customer_id = ~0U,
@@ -109,6 +143,7 @@ static const struct etnaviv_chip_identity etnaviv_chip_identities[] = {
.register_max = 64,
.thread_count = 1024,
.shader_core_count = 4,
+ .nn_core_count = 0,
.vertex_cache_size = 16,
.vertex_output_buffer_size = 1024,
.pixel_pipes = 2,
@@ -130,6 +165,38 @@ static const struct etnaviv_chip_identity etnaviv_chip_identities[] = {
.minor_features10 = 0x90044250,
.minor_features11 = 0x00000024,
},
+ {
+ .model = 0x8000,
+ .revision = 0x7120,
+ .product_id = 0x45080009,
+ .customer_id = 0x88,
+ .eco_id = 0,
+ .stream_count = 8,
+ .register_max = 64,
+ .thread_count = 256,
+ .shader_core_count = 1,
+ .nn_core_count = 8,
+ .vertex_cache_size = 16,
+ .vertex_output_buffer_size = 1024,
+ .pixel_pipes = 1,
+ .instruction_count = 512,
+ .num_constants = 320,
+ .buffer_size = 0,
+ .varyings_count = 16,
+ .features = 0xe0287cac,
+ .minor_features0 = 0xc1799eff,
+ .minor_features1 = 0xfefbfadb,
+ .minor_features2 = 0xeb9d6fbf,
+ .minor_features3 = 0xedfffced,
+ .minor_features4 = 0xd30dafc7,
+ .minor_features5 = 0x7b5ac333,
+ .minor_features6 = 0xfc8ee200,
+ .minor_features7 = 0x03fffa6f,
+ .minor_features8 = 0x00fe0ef0,
+ .minor_features9 = 0x0088003c,
+ .minor_features10 = 0x108048c0,
+ .minor_features11 = 0x00000010,
+ },
};
bool etnaviv_fill_identity_from_hwdb(struct etnaviv_gpu *gpu)
diff --git a/drivers/gpu/drm/etnaviv/etnaviv_mmu.c b/drivers/gpu/drm/etnaviv/etnaviv_mmu.c
index dc1aa738c4f1..67bdce5326c6 100644
--- a/drivers/gpu/drm/etnaviv/etnaviv_mmu.c
+++ b/drivers/gpu/drm/etnaviv/etnaviv_mmu.c
@@ -80,10 +80,10 @@ static int etnaviv_iommu_map(struct etnaviv_iommu_context *context, u32 iova,
return -EINVAL;
for_each_sgtable_dma_sg(sgt, sg, i) {
- u32 pa = sg_dma_address(sg) - sg->offset;
+ phys_addr_t pa = sg_dma_address(sg) - sg->offset;
size_t bytes = sg_dma_len(sg) + sg->offset;
- VERB("map[%d]: %08x %08x(%zx)", i, iova, pa, bytes);
+ VERB("map[%d]: %08x %pap(%zx)", i, iova, &pa, bytes);
ret = etnaviv_context_map(context, da, pa, bytes, prot);
if (ret)
@@ -135,6 +135,19 @@ static void etnaviv_iommu_remove_mapping(struct etnaviv_iommu_context *context,
drm_mm_remove_node(&mapping->vram_node);
}
+void etnaviv_iommu_reap_mapping(struct etnaviv_vram_mapping *mapping)
+{
+ struct etnaviv_iommu_context *context = mapping->context;
+
+ lockdep_assert_held(&context->lock);
+ WARN_ON(mapping->use);
+
+ etnaviv_iommu_remove_mapping(context, mapping);
+ etnaviv_iommu_context_put(mapping->context);
+ mapping->context = NULL;
+ list_del_init(&mapping->mmu_node);
+}
+
static int etnaviv_iommu_find_iova(struct etnaviv_iommu_context *context,
struct drm_mm_node *node, size_t size)
{
@@ -202,10 +215,7 @@ static int etnaviv_iommu_find_iova(struct etnaviv_iommu_context *context,
* this mapping.
*/
list_for_each_entry_safe(m, n, &list, scan_node) {
- etnaviv_iommu_remove_mapping(context, m);
- etnaviv_iommu_context_put(m->context);
- m->context = NULL;
- list_del_init(&m->mmu_node);
+ etnaviv_iommu_reap_mapping(m);
list_del_init(&m->scan_node);
}
@@ -257,10 +267,7 @@ static int etnaviv_iommu_insert_exact(struct etnaviv_iommu_context *context,
}
list_for_each_entry_safe(m, n, &scan_list, scan_node) {
- etnaviv_iommu_remove_mapping(context, m);
- etnaviv_iommu_context_put(m->context);
- m->context = NULL;
- list_del_init(&m->mmu_node);
+ etnaviv_iommu_reap_mapping(m);
list_del_init(&m->scan_node);
}
diff --git a/drivers/gpu/drm/etnaviv/etnaviv_mmu.h b/drivers/gpu/drm/etnaviv/etnaviv_mmu.h
index e4a0b7d09c2e..c01a147f0dfd 100644
--- a/drivers/gpu/drm/etnaviv/etnaviv_mmu.h
+++ b/drivers/gpu/drm/etnaviv/etnaviv_mmu.h
@@ -91,6 +91,7 @@ int etnaviv_iommu_map_gem(struct etnaviv_iommu_context *context,
struct etnaviv_vram_mapping *mapping, u64 va);
void etnaviv_iommu_unmap_gem(struct etnaviv_iommu_context *context,
struct etnaviv_vram_mapping *mapping);
+void etnaviv_iommu_reap_mapping(struct etnaviv_vram_mapping *mapping);
int etnaviv_iommu_get_suballoc_va(struct etnaviv_iommu_context *ctx,
struct etnaviv_vram_mapping *mapping,
diff --git a/drivers/gpu/drm/etnaviv/etnaviv_sched.c b/drivers/gpu/drm/etnaviv/etnaviv_sched.c
index 72e2553fbc98..1ae87dfd19c4 100644
--- a/drivers/gpu/drm/etnaviv/etnaviv_sched.c
+++ b/drivers/gpu/drm/etnaviv/etnaviv_sched.c
@@ -67,7 +67,7 @@ static enum drm_gpu_sched_stat etnaviv_sched_timedout_job(struct drm_sched_job
/* get the GPU back into the init state */
etnaviv_core_dump(submit);
- etnaviv_gpu_recover_hang(gpu);
+ etnaviv_gpu_recover_hang(submit);
drm_sched_resubmit_jobs(&gpu->sched);
@@ -97,24 +97,24 @@ static const struct drm_sched_backend_ops etnaviv_sched_ops = {
int etnaviv_sched_push_job(struct etnaviv_gem_submit *submit)
{
- int ret = 0;
+ struct etnaviv_gpu *gpu = submit->gpu;
+ int ret;
/*
- * Hold the fence lock across the whole operation to avoid jobs being
+ * Hold the sched lock across the whole operation to avoid jobs being
* pushed out of order with regard to their sched fence seqnos as
* allocated in drm_sched_job_arm.
*/
- mutex_lock(&submit->gpu->fence_lock);
+ mutex_lock(&gpu->sched_lock);
drm_sched_job_arm(&submit->sched_job);
submit->out_fence = dma_fence_get(&submit->sched_job.s_fence->finished);
- submit->out_fence_id = idr_alloc_cyclic(&submit->gpu->fence_idr,
- submit->out_fence, 0,
- INT_MAX, GFP_KERNEL);
- if (submit->out_fence_id < 0) {
+ ret = xa_alloc_cyclic(&gpu->user_fences, &submit->out_fence_id,
+ submit->out_fence, xa_limit_32b,
+ &gpu->next_user_fence, GFP_KERNEL);
+ if (ret < 0) {
drm_sched_job_cleanup(&submit->sched_job);
- ret = -ENOMEM;
goto out_unlock;
}
@@ -124,7 +124,7 @@ int etnaviv_sched_push_job(struct etnaviv_gem_submit *submit)
drm_sched_entity_push_job(&submit->sched_job);
out_unlock:
- mutex_unlock(&submit->gpu->fence_lock);
+ mutex_unlock(&gpu->sched_lock);
return ret;
}
diff --git a/drivers/gpu/drm/etnaviv/state_hi.xml.h b/drivers/gpu/drm/etnaviv/state_hi.xml.h
index deaaa99fa654..94d5f33b1fd6 100644
--- a/drivers/gpu/drm/etnaviv/state_hi.xml.h
+++ b/drivers/gpu/drm/etnaviv/state_hi.xml.h
@@ -8,17 +8,17 @@ http://0x04.net/cgit/index.cgi/rules-ng-ng
git clone git://0x04.net/rules-ng-ng
The rules-ng-ng source files this header was generated from are:
-- state.xml ( 26666 bytes, from 2019-12-20 21:20:35)
-- common.xml ( 35468 bytes, from 2018-02-10 13:09:26)
-- common_3d.xml ( 15058 bytes, from 2019-12-28 20:02:03)
-- state_hi.xml ( 30552 bytes, from 2019-12-28 20:02:48)
-- copyright.xml ( 1597 bytes, from 2018-02-10 13:09:26)
-- state_2d.xml ( 51552 bytes, from 2018-02-10 13:09:26)
-- state_3d.xml ( 83098 bytes, from 2019-12-28 20:02:03)
-- state_blt.xml ( 14252 bytes, from 2019-10-20 19:59:15)
-- state_vg.xml ( 5975 bytes, from 2018-02-10 13:09:26)
-
-Copyright (C) 2012-2019 by the following authors:
+- state.xml ( 27198 bytes, from 2022-04-22 10:35:24)
+- common.xml ( 35468 bytes, from 2020-10-28 12:56:03)
+- common_3d.xml ( 15058 bytes, from 2020-10-28 12:56:03)
+- state_hi.xml ( 34804 bytes, from 2022-12-02 09:06:28)
+- copyright.xml ( 1597 bytes, from 2020-10-28 12:56:03)
+- state_2d.xml ( 51552 bytes, from 2020-10-28 12:56:03)
+- state_3d.xml ( 84445 bytes, from 2022-11-15 15:59:38)
+- state_blt.xml ( 14424 bytes, from 2022-11-07 11:18:41)
+- state_vg.xml ( 5975 bytes, from 2020-10-28 12:56:03)
+
+Copyright (C) 2012-2022 by the following authors:
- Wladimir J. van der Laan <laanwj@gmail.com>
- Christian Gmeiner <christian.gmeiner@gmail.com>
- Lucas Stach <l.stach@pengutronix.de>
@@ -321,16 +321,16 @@ DEALINGS IN THE SOFTWARE.
#define VIVS_MMUv2_CONFIGURATION_ADDRESS(x) (((x) << VIVS_MMUv2_CONFIGURATION_ADDRESS__SHIFT) & VIVS_MMUv2_CONFIGURATION_ADDRESS__MASK)
#define VIVS_MMUv2_STATUS 0x00000188
-#define VIVS_MMUv2_STATUS_EXCEPTION0__MASK 0x00000003
+#define VIVS_MMUv2_STATUS_EXCEPTION0__MASK 0x0000000f
#define VIVS_MMUv2_STATUS_EXCEPTION0__SHIFT 0
#define VIVS_MMUv2_STATUS_EXCEPTION0(x) (((x) << VIVS_MMUv2_STATUS_EXCEPTION0__SHIFT) & VIVS_MMUv2_STATUS_EXCEPTION0__MASK)
-#define VIVS_MMUv2_STATUS_EXCEPTION1__MASK 0x00000030
+#define VIVS_MMUv2_STATUS_EXCEPTION1__MASK 0x000000f0
#define VIVS_MMUv2_STATUS_EXCEPTION1__SHIFT 4
#define VIVS_MMUv2_STATUS_EXCEPTION1(x) (((x) << VIVS_MMUv2_STATUS_EXCEPTION1__SHIFT) & VIVS_MMUv2_STATUS_EXCEPTION1__MASK)
-#define VIVS_MMUv2_STATUS_EXCEPTION2__MASK 0x00000300
+#define VIVS_MMUv2_STATUS_EXCEPTION2__MASK 0x00000f00
#define VIVS_MMUv2_STATUS_EXCEPTION2__SHIFT 8
#define VIVS_MMUv2_STATUS_EXCEPTION2(x) (((x) << VIVS_MMUv2_STATUS_EXCEPTION2__SHIFT) & VIVS_MMUv2_STATUS_EXCEPTION2__MASK)
-#define VIVS_MMUv2_STATUS_EXCEPTION3__MASK 0x00003000
+#define VIVS_MMUv2_STATUS_EXCEPTION3__MASK 0x0000f000
#define VIVS_MMUv2_STATUS_EXCEPTION3__SHIFT 12
#define VIVS_MMUv2_STATUS_EXCEPTION3(x) (((x) << VIVS_MMUv2_STATUS_EXCEPTION3__SHIFT) & VIVS_MMUv2_STATUS_EXCEPTION3__MASK)
@@ -465,7 +465,13 @@ DEALINGS IN THE SOFTWARE.
#define VIVS_MC_PROFILE_CONFIG0 0x00000470
#define VIVS_MC_PROFILE_CONFIG0_FE__MASK 0x000000ff
#define VIVS_MC_PROFILE_CONFIG0_FE__SHIFT 0
+#define VIVS_MC_PROFILE_CONFIG0_FE_DRAW_COUNT 0x0000000a
+#define VIVS_MC_PROFILE_CONFIG0_FE_OUT_VERTEX_COUNT 0x0000000b
+#define VIVS_MC_PROFILE_CONFIG0_FE_CACHE_MISS_COUNT 0x0000000c
#define VIVS_MC_PROFILE_CONFIG0_FE_RESET 0x0000000f
+#define VIVS_MC_PROFILE_CONFIG0_FE_CACHE_LK_COUNT 0x00000010
+#define VIVS_MC_PROFILE_CONFIG0_FE_STALL_COUNT 0x00000011
+#define VIVS_MC_PROFILE_CONFIG0_FE_PROCESS_COUNT 0x00000012
#define VIVS_MC_PROFILE_CONFIG0_DE__MASK 0x0000ff00
#define VIVS_MC_PROFILE_CONFIG0_DE__SHIFT 8
#define VIVS_MC_PROFILE_CONFIG0_DE_RESET 0x00000f00
@@ -499,11 +505,14 @@ DEALINGS IN THE SOFTWARE.
#define VIVS_MC_PROFILE_CONFIG1_PA_DEPTH_CLIPPED_COUNTER 0x00000006
#define VIVS_MC_PROFILE_CONFIG1_PA_TRIVIAL_REJECTED_COUNTER 0x00000007
#define VIVS_MC_PROFILE_CONFIG1_PA_CULLED_COUNTER 0x00000008
+#define VIVS_MC_PROFILE_CONFIG1_PA_DROPED_PRIM_COUNTER 0x00000009
+#define VIVS_MC_PROFILE_CONFIG1_PA_FRUSTUM_CLIPPED_PRIM_COUNTER 0x0000000a
#define VIVS_MC_PROFILE_CONFIG1_PA_RESET 0x0000000f
#define VIVS_MC_PROFILE_CONFIG1_SE__MASK 0x0000ff00
#define VIVS_MC_PROFILE_CONFIG1_SE__SHIFT 8
#define VIVS_MC_PROFILE_CONFIG1_SE_CULLED_TRIANGLE_COUNT 0x00000000
#define VIVS_MC_PROFILE_CONFIG1_SE_CULLED_LINES_COUNT 0x00000100
+#define VIVS_MC_PROFILE_CONFIG1_SE_TRIVIAL_REJECTED_LINE_COUNT 0x00000400
#define VIVS_MC_PROFILE_CONFIG1_SE_RESET 0x00000f00
#define VIVS_MC_PROFILE_CONFIG1_RA__MASK 0x00ff0000
#define VIVS_MC_PROFILE_CONFIG1_RA__SHIFT 16
@@ -515,6 +524,8 @@ DEALINGS IN THE SOFTWARE.
#define VIVS_MC_PROFILE_CONFIG1_RA_PREFETCH_CACHE_MISS_COUNTER 0x000a0000
#define VIVS_MC_PROFILE_CONFIG1_RA_CULLED_QUAD_COUNT 0x000b0000
#define VIVS_MC_PROFILE_CONFIG1_RA_RESET 0x000f0000
+#define VIVS_MC_PROFILE_CONFIG1_RA_PIPE_HZ_CACHE_MISS_COUNTER 0x00110000
+#define VIVS_MC_PROFILE_CONFIG1_RA_PREFETCH_HZ_CACHE_MISS_COUNTER 0x00120000
#define VIVS_MC_PROFILE_CONFIG1_TX__MASK 0xff000000
#define VIVS_MC_PROFILE_CONFIG1_TX__SHIFT 24
#define VIVS_MC_PROFILE_CONFIG1_TX_TOTAL_BILINEAR_REQUESTS 0x00000000
@@ -535,13 +546,48 @@ DEALINGS IN THE SOFTWARE.
#define VIVS_MC_PROFILE_CONFIG2_MC_TOTAL_READ_REQ_8B_FROM_PIPELINE 0x00000001
#define VIVS_MC_PROFILE_CONFIG2_MC_TOTAL_READ_REQ_8B_FROM_IP 0x00000002
#define VIVS_MC_PROFILE_CONFIG2_MC_TOTAL_WRITE_REQ_8B_FROM_PIPELINE 0x00000003
-#define VIVS_MC_PROFILE_CONFIG2_MC_RESET 0x0000000f
+#define VIVS_MC_PROFILE_CONFIG2_MC_TOTAL_READ_REQ_SENTOUT_FROM_COLORPIPE 0x00000004
+#define VIVS_MC_PROFILE_CONFIG2_MC_TOTAL_WRITE_REQ_FROM_COLORPIPE 0x00000005
+#define VIVS_MC_PROFILE_CONFIG2_MC_TOTAL_READ_REQ_8B_FROM_DEPTHPIPE 0x00000007
+#define VIVS_MC_PROFILE_CONFIG2_MC_TOTAL_READ_REQ_8B_SENTOUT_FROM_DEPTHPIPE 0x00000008
+#define VIVS_MC_PROFILE_CONFIG2_MC_TOTAL_WRITE_REQ_8B_FROM_DEPTHPIPE 0x00000009
+#define VIVS_MC_PROFILE_CONFIG2_MC_TOTAL_READ_REQ_SENTOUT_FROM_DEPTHPIPE 0x0000000a
+#define VIVS_MC_PROFILE_CONFIG2_MC_TOTAL_WRITE_REQ_FROM_DEPTHPIPE 0x0000000b
+#define VIVS_MC_PROFILE_CONFIG2_MC_TOTAL_READ_REQ_8B_FROM_OTHERS 0x0000000c
+#define VIVS_MC_PROFILE_CONFIG2_MC_TOTAL_WRITE_REQ_8B_FROM_OTHERS 0x0000000d
+#define VIVS_MC_PROFILE_CONFIG2_MC_TOTAL_READ_REQ_FROM_OTHERS 0x0000000e
+#define VIVS_MC_PROFILE_CONFIG2_MC_TOTAL_WRITE_REQ_FROM_OTHERS 0x0000000f
+#define VIVS_MC_PROFILE_CONFIG2_MC_FE_READ_BANDWIDTH 0x00000015
+#define VIVS_MC_PROFILE_CONFIG2_MC_MMU_READ_BANDWIDTH 0x00000016
+#define VIVS_MC_PROFILE_CONFIG2_MC_BLT_READ_BANDWIDTH 0x00000017
+#define VIVS_MC_PROFILE_CONFIG2_MC_SH0_READ_BANDWIDTH 0x00000018
+#define VIVS_MC_PROFILE_CONFIG2_MC_SH1_READ_BANDWIDTH 0x00000019
+#define VIVS_MC_PROFILE_CONFIG2_MC_PE_WRITE_BANDWIDTH 0x0000001a
+#define VIVS_MC_PROFILE_CONFIG2_MC_BLT_WRITE_BANDWIDTH 0x0000001b
+#define VIVS_MC_PROFILE_CONFIG2_MC_SH0_WRITE_BANDWIDTH 0x0000001c
+#define VIVS_MC_PROFILE_CONFIG2_MC_SH1_WRITE_BANDWIDTH 0x0000001d
#define VIVS_MC_PROFILE_CONFIG2_HI__MASK 0x0000ff00
#define VIVS_MC_PROFILE_CONFIG2_HI__SHIFT 8
#define VIVS_MC_PROFILE_CONFIG2_HI_AXI_CYCLES_READ_REQUEST_STALLED 0x00000000
#define VIVS_MC_PROFILE_CONFIG2_HI_AXI_CYCLES_WRITE_REQUEST_STALLED 0x00000100
#define VIVS_MC_PROFILE_CONFIG2_HI_AXI_CYCLES_WRITE_DATA_STALLED 0x00000200
#define VIVS_MC_PROFILE_CONFIG2_HI_RESET 0x00000f00
+#define VIVS_MC_PROFILE_CONFIG2_L2__MASK 0x00ff0000
+#define VIVS_MC_PROFILE_CONFIG2_L2__SHIFT 16
+#define VIVS_MC_PROFILE_CONFIG2_L2_TOTAL_AXI0_READ_REQUEST_COUNT 0x00000000
+#define VIVS_MC_PROFILE_CONFIG2_L2_TOTAL_AXI0_WRITE_REQUEST_COUNT 0x00040000
+#define VIVS_MC_PROFILE_CONFIG2_L2_TOTAL_AXI1_WRITE_REQUEST_COUNT 0x00050000
+#define VIVS_MC_PROFILE_CONFIG2_L2_TOTAL_READ_TRANSACTIONS_REQUEST_BY_AXI0 0x00080000
+#define VIVS_MC_PROFILE_CONFIG2_L2_TOTAL_READ_TRANSACTIONS_REQUEST_BY_AXI1 0x00090000
+#define VIVS_MC_PROFILE_CONFIG2_L2_TOTAL_WRITE_TRANSACTIONS_REQUEST_BY_AXI0 0x000c0000
+#define VIVS_MC_PROFILE_CONFIG2_L2_TOTAL_WRITE_TRANSACTIONS_REQUEST_BY_AXI1 0x000d0000
+#define VIVS_MC_PROFILE_CONFIG2_L2_RESET 0x000f0000
+#define VIVS_MC_PROFILE_CONFIG2_L2_AXI0_MINMAX_LATENCY 0x00100000
+#define VIVS_MC_PROFILE_CONFIG2_L2_AXI0_TOTAL_LATENCY 0x00110000
+#define VIVS_MC_PROFILE_CONFIG2_L2_AXI0_TOTAL_REQUEST_COUNT 0x00120000
+#define VIVS_MC_PROFILE_CONFIG2_L2_AXI1_MINMAX_LATENCY 0x00130000
+#define VIVS_MC_PROFILE_CONFIG2_L2_AXI1_TOTAL_LATENCY 0x00140000
+#define VIVS_MC_PROFILE_CONFIG2_L2_AXI1_TOTAL_REQUEST_COUNT 0x00150000
#define VIVS_MC_PROFILE_CONFIG2_BLT__MASK 0xff000000
#define VIVS_MC_PROFILE_CONFIG2_BLT__SHIFT 24
#define VIVS_MC_PROFILE_CONFIG2_BLT_UNK0 0x00000000
@@ -566,5 +612,13 @@ DEALINGS IN THE SOFTWARE.
#define VIVS_MC_PROFILE_L2_READ 0x00000564
+#define VIVS_MC_MC_LATENCY_RESET 0x00000568
+
+#define VIVS_MC_MC_AXI_MAX_MIN_LATENCY 0x0000056c
+
+#define VIVS_MC_MC_AXI_TOTAL_LATENCY 0x00000570
+
+#define VIVS_MC_MC_AXI_SAMPLE_COUNT 0x00000574
+
#endif /* STATE_HI_XML */
diff --git a/drivers/gpu/drm/exynos/Kconfig b/drivers/gpu/drm/exynos/Kconfig
index 3d2f025d4fd4..0cb92d651ff1 100644
--- a/drivers/gpu/drm/exynos/Kconfig
+++ b/drivers/gpu/drm/exynos/Kconfig
@@ -2,7 +2,7 @@
config DRM_EXYNOS
tristate "DRM Support for Samsung SoC Exynos Series"
depends on OF && DRM && COMMON_CLK
- depends on ARCH_S3C64XX || ARCH_S5PV210 || ARCH_EXYNOS || ARCH_MULTIPLATFORM || COMPILE_TEST
+ depends on ARCH_S3C64XX || ARCH_S5PV210 || ARCH_EXYNOS || COMPILE_TEST
depends on MMU
select DRM_DISPLAY_HELPER if DRM_EXYNOS_DP
select DRM_KMS_HELPER
@@ -59,6 +59,7 @@ config DRM_EXYNOS_DSI
depends on DRM_EXYNOS_FIMD || DRM_EXYNOS5433_DECON || DRM_EXYNOS7_DECON
select DRM_MIPI_DSI
select DRM_PANEL
+ select DRM_SAMSUNG_DSIM
default n
help
This enables support for Exynos MIPI-DSI device.
diff --git a/drivers/gpu/drm/exynos/exynos5433_drm_decon.c b/drivers/gpu/drm/exynos/exynos5433_drm_decon.c
index 8155d7e650f1..2867b39fa35e 100644
--- a/drivers/gpu/drm/exynos/exynos5433_drm_decon.c
+++ b/drivers/gpu/drm/exynos/exynos5433_drm_decon.c
@@ -710,7 +710,6 @@ static irqreturn_t decon_irq_handler(int irq, void *dev_id)
return IRQ_HANDLED;
}
-#ifdef CONFIG_PM
static int exynos5433_decon_suspend(struct device *dev)
{
struct decon_context *ctx = dev_get_drvdata(dev);
@@ -741,14 +740,10 @@ err:
return ret;
}
-#endif
-static const struct dev_pm_ops exynos5433_decon_pm_ops = {
- SET_RUNTIME_PM_OPS(exynos5433_decon_suspend, exynos5433_decon_resume,
- NULL)
- SET_SYSTEM_SLEEP_PM_OPS(pm_runtime_force_suspend,
- pm_runtime_force_resume)
-};
+static DEFINE_RUNTIME_DEV_PM_OPS(exynos5433_decon_pm_ops,
+ exynos5433_decon_suspend,
+ exynos5433_decon_resume, NULL);
static const struct of_device_id exynos5433_decon_driver_dt_match[] = {
{
@@ -881,7 +876,7 @@ struct platform_driver exynos5433_decon_driver = {
.remove = exynos5433_decon_remove,
.driver = {
.name = "exynos5433-decon",
- .pm = &exynos5433_decon_pm_ops,
+ .pm = pm_ptr(&exynos5433_decon_pm_ops),
.of_match_table = exynos5433_decon_driver_dt_match,
},
};
diff --git a/drivers/gpu/drm/exynos/exynos7_drm_decon.c b/drivers/gpu/drm/exynos/exynos7_drm_decon.c
index 7080cf7952ec..3126f735dedc 100644
--- a/drivers/gpu/drm/exynos/exynos7_drm_decon.c
+++ b/drivers/gpu/drm/exynos/exynos7_drm_decon.c
@@ -779,7 +779,6 @@ static int decon_remove(struct platform_device *pdev)
return 0;
}
-#ifdef CONFIG_PM
static int exynos7_decon_suspend(struct device *dev)
{
struct decon_context *ctx = dev_get_drvdata(dev);
@@ -836,21 +835,16 @@ err_aclk_enable:
err_pclk_enable:
return ret;
}
-#endif
-static const struct dev_pm_ops exynos7_decon_pm_ops = {
- SET_RUNTIME_PM_OPS(exynos7_decon_suspend, exynos7_decon_resume,
- NULL)
- SET_SYSTEM_SLEEP_PM_OPS(pm_runtime_force_suspend,
- pm_runtime_force_resume)
-};
+static DEFINE_RUNTIME_DEV_PM_OPS(exynos7_decon_pm_ops, exynos7_decon_suspend,
+ exynos7_decon_resume, NULL);
struct platform_driver decon_driver = {
.probe = decon_probe,
.remove = decon_remove,
.driver = {
.name = "exynos-decon",
- .pm = &exynos7_decon_pm_ops,
+ .pm = pm_ptr(&exynos7_decon_pm_ops),
.of_match_table = decon_driver_dt_match,
},
};
diff --git a/drivers/gpu/drm/exynos/exynos_dp.c b/drivers/gpu/drm/exynos/exynos_dp.c
index 4e3d3d5f6866..3404ec1367fb 100644
--- a/drivers/gpu/drm/exynos/exynos_dp.c
+++ b/drivers/gpu/drm/exynos/exynos_dp.c
@@ -260,7 +260,6 @@ static int exynos_dp_remove(struct platform_device *pdev)
return 0;
}
-#ifdef CONFIG_PM
static int exynos_dp_suspend(struct device *dev)
{
struct exynos_dp_device *dp = dev_get_drvdata(dev);
@@ -274,13 +273,9 @@ static int exynos_dp_resume(struct device *dev)
return analogix_dp_resume(dp->adp);
}
-#endif
-static const struct dev_pm_ops exynos_dp_pm_ops = {
- SET_RUNTIME_PM_OPS(exynos_dp_suspend, exynos_dp_resume, NULL)
- SET_SYSTEM_SLEEP_PM_OPS(pm_runtime_force_suspend,
- pm_runtime_force_resume)
-};
+static DEFINE_RUNTIME_DEV_PM_OPS(exynos_dp_pm_ops, exynos_dp_suspend,
+ exynos_dp_resume, NULL);
static const struct of_device_id exynos_dp_match[] = {
{ .compatible = "samsung,exynos5-dp" },
@@ -294,7 +289,7 @@ struct platform_driver dp_driver = {
.driver = {
.name = "exynos-dp",
.owner = THIS_MODULE,
- .pm = &exynos_dp_pm_ops,
+ .pm = pm_ptr(&exynos_dp_pm_ops),
.of_match_table = exynos_dp_match,
},
};
diff --git a/drivers/gpu/drm/exynos/exynos_drm_drv.c b/drivers/gpu/drm/exynos/exynos_drm_drv.c
index 16c539657f73..6b73fb7a83c3 100644
--- a/drivers/gpu/drm/exynos/exynos_drm_drv.c
+++ b/drivers/gpu/drm/exynos/exynos_drm_drv.c
@@ -16,7 +16,6 @@
#include <drm/drm_atomic.h>
#include <drm/drm_atomic_helper.h>
#include <drm/drm_drv.h>
-#include <drm/drm_fb_helper.h>
#include <drm/drm_file.h>
#include <drm/drm_fourcc.h>
#include <drm/drm_ioctl.h>
@@ -108,7 +107,6 @@ static const struct drm_driver exynos_drm_driver = {
.driver_features = DRIVER_MODESET | DRIVER_GEM
| DRIVER_ATOMIC | DRIVER_RENDER,
.open = exynos_drm_open,
- .lastclose = drm_fb_helper_lastclose,
.postclose = exynos_drm_postclose,
.dumb_create = exynos_drm_gem_dumb_create,
.prime_handle_to_fd = drm_gem_prime_handle_to_fd,
@@ -288,19 +286,15 @@ static int exynos_drm_bind(struct device *dev)
/* init kms poll for handling hpd */
drm_kms_helper_poll_init(drm);
- ret = exynos_drm_fbdev_init(drm);
- if (ret)
- goto err_cleanup_poll;
-
/* register the DRM device */
ret = drm_dev_register(drm, 0);
if (ret < 0)
- goto err_cleanup_fbdev;
+ goto err_cleanup_poll;
+
+ exynos_drm_fbdev_setup(drm);
return 0;
-err_cleanup_fbdev:
- exynos_drm_fbdev_fini(drm);
err_cleanup_poll:
drm_kms_helper_poll_fini(drm);
err_unbind_all:
@@ -321,7 +315,6 @@ static void exynos_drm_unbind(struct device *dev)
drm_dev_unregister(drm);
- exynos_drm_fbdev_fini(drm);
drm_kms_helper_poll_fini(drm);
component_unbind_all(drm->dev, drm);
diff --git a/drivers/gpu/drm/exynos/exynos_drm_drv.h b/drivers/gpu/drm/exynos/exynos_drm_drv.h
index 6ae9056e7a18..81d501efd013 100644
--- a/drivers/gpu/drm/exynos/exynos_drm_drv.h
+++ b/drivers/gpu/drm/exynos/exynos_drm_drv.h
@@ -197,8 +197,6 @@ struct drm_exynos_file_private {
* @wait: wait an atomic commit to finish
*/
struct exynos_drm_private {
- struct drm_fb_helper *fb_helper;
-
struct device *g2d_dev;
struct device *dma_dev;
void *mapping;
diff --git a/drivers/gpu/drm/exynos/exynos_drm_dsi.c b/drivers/gpu/drm/exynos/exynos_drm_dsi.c
index ec673223d6b7..fc81f728e6ba 100644
--- a/drivers/gpu/drm/exynos/exynos_drm_dsi.c
+++ b/drivers/gpu/drm/exynos/exynos_drm_dsi.c
@@ -1,1500 +1,56 @@
// SPDX-License-Identifier: GPL-2.0-only
/*
- * Samsung SoC MIPI DSI Master driver.
+ * Samsung MIPI DSIM glue for Exynos SoCs.
*
* Copyright (c) 2014 Samsung Electronics Co., Ltd
*
* Contacts: Tomasz Figa <t.figa@samsung.com>
-*/
+ */
-#include <linux/clk.h>
-#include <linux/delay.h>
#include <linux/component.h>
-#include <linux/gpio/consumer.h>
-#include <linux/irq.h>
#include <linux/of_device.h>
-#include <linux/of_graph.h>
-#include <linux/phy/phy.h>
-#include <linux/regulator/consumer.h>
-#include <asm/unaligned.h>
-
-#include <video/mipi_display.h>
-#include <video/videomode.h>
-
-#include <drm/drm_atomic_helper.h>
-#include <drm/drm_bridge.h>
-#include <drm/drm_mipi_dsi.h>
-#include <drm/drm_panel.h>
-#include <drm/drm_print.h>
+#include <drm/bridge/samsung-dsim.h>
#include <drm/drm_probe_helper.h>
#include <drm/drm_simple_kms_helper.h>
#include "exynos_drm_crtc.h"
#include "exynos_drm_drv.h"
-/* returns true iff both arguments logically differs */
-#define NEQV(a, b) (!(a) ^ !(b))
-
-/* DSIM_STATUS */
-#define DSIM_STOP_STATE_DAT(x) (((x) & 0xf) << 0)
-#define DSIM_STOP_STATE_CLK (1 << 8)
-#define DSIM_TX_READY_HS_CLK (1 << 10)
-#define DSIM_PLL_STABLE (1 << 31)
-
-/* DSIM_SWRST */
-#define DSIM_FUNCRST (1 << 16)
-#define DSIM_SWRST (1 << 0)
-
-/* DSIM_TIMEOUT */
-#define DSIM_LPDR_TIMEOUT(x) ((x) << 0)
-#define DSIM_BTA_TIMEOUT(x) ((x) << 16)
-
-/* DSIM_CLKCTRL */
-#define DSIM_ESC_PRESCALER(x) (((x) & 0xffff) << 0)
-#define DSIM_ESC_PRESCALER_MASK (0xffff << 0)
-#define DSIM_LANE_ESC_CLK_EN_CLK (1 << 19)
-#define DSIM_LANE_ESC_CLK_EN_DATA(x) (((x) & 0xf) << 20)
-#define DSIM_LANE_ESC_CLK_EN_DATA_MASK (0xf << 20)
-#define DSIM_BYTE_CLKEN (1 << 24)
-#define DSIM_BYTE_CLK_SRC(x) (((x) & 0x3) << 25)
-#define DSIM_BYTE_CLK_SRC_MASK (0x3 << 25)
-#define DSIM_PLL_BYPASS (1 << 27)
-#define DSIM_ESC_CLKEN (1 << 28)
-#define DSIM_TX_REQUEST_HSCLK (1 << 31)
-
-/* DSIM_CONFIG */
-#define DSIM_LANE_EN_CLK (1 << 0)
-#define DSIM_LANE_EN(x) (((x) & 0xf) << 1)
-#define DSIM_NUM_OF_DATA_LANE(x) (((x) & 0x3) << 5)
-#define DSIM_SUB_PIX_FORMAT(x) (((x) & 0x7) << 8)
-#define DSIM_MAIN_PIX_FORMAT_MASK (0x7 << 12)
-#define DSIM_MAIN_PIX_FORMAT_RGB888 (0x7 << 12)
-#define DSIM_MAIN_PIX_FORMAT_RGB666 (0x6 << 12)
-#define DSIM_MAIN_PIX_FORMAT_RGB666_P (0x5 << 12)
-#define DSIM_MAIN_PIX_FORMAT_RGB565 (0x4 << 12)
-#define DSIM_SUB_VC (((x) & 0x3) << 16)
-#define DSIM_MAIN_VC (((x) & 0x3) << 18)
-#define DSIM_HSA_MODE (1 << 20)
-#define DSIM_HBP_MODE (1 << 21)
-#define DSIM_HFP_MODE (1 << 22)
-#define DSIM_HSE_MODE (1 << 23)
-#define DSIM_AUTO_MODE (1 << 24)
-#define DSIM_VIDEO_MODE (1 << 25)
-#define DSIM_BURST_MODE (1 << 26)
-#define DSIM_SYNC_INFORM (1 << 27)
-#define DSIM_EOT_DISABLE (1 << 28)
-#define DSIM_MFLUSH_VS (1 << 29)
-/* This flag is valid only for exynos3250/3472/5260/5430 */
-#define DSIM_CLKLANE_STOP (1 << 30)
-
-/* DSIM_ESCMODE */
-#define DSIM_TX_TRIGGER_RST (1 << 4)
-#define DSIM_TX_LPDT_LP (1 << 6)
-#define DSIM_CMD_LPDT_LP (1 << 7)
-#define DSIM_FORCE_BTA (1 << 16)
-#define DSIM_FORCE_STOP_STATE (1 << 20)
-#define DSIM_STOP_STATE_CNT(x) (((x) & 0x7ff) << 21)
-#define DSIM_STOP_STATE_CNT_MASK (0x7ff << 21)
-
-/* DSIM_MDRESOL */
-#define DSIM_MAIN_STAND_BY (1 << 31)
-#define DSIM_MAIN_VRESOL(x, num_bits) (((x) & ((1 << (num_bits)) - 1)) << 16)
-#define DSIM_MAIN_HRESOL(x, num_bits) (((x) & ((1 << (num_bits)) - 1)) << 0)
-
-/* DSIM_MVPORCH */
-#define DSIM_CMD_ALLOW(x) ((x) << 28)
-#define DSIM_STABLE_VFP(x) ((x) << 16)
-#define DSIM_MAIN_VBP(x) ((x) << 0)
-#define DSIM_CMD_ALLOW_MASK (0xf << 28)
-#define DSIM_STABLE_VFP_MASK (0x7ff << 16)
-#define DSIM_MAIN_VBP_MASK (0x7ff << 0)
-
-/* DSIM_MHPORCH */
-#define DSIM_MAIN_HFP(x) ((x) << 16)
-#define DSIM_MAIN_HBP(x) ((x) << 0)
-#define DSIM_MAIN_HFP_MASK ((0xffff) << 16)
-#define DSIM_MAIN_HBP_MASK ((0xffff) << 0)
-
-/* DSIM_MSYNC */
-#define DSIM_MAIN_VSA(x) ((x) << 22)
-#define DSIM_MAIN_HSA(x) ((x) << 0)
-#define DSIM_MAIN_VSA_MASK ((0x3ff) << 22)
-#define DSIM_MAIN_HSA_MASK ((0xffff) << 0)
-
-/* DSIM_SDRESOL */
-#define DSIM_SUB_STANDY(x) ((x) << 31)
-#define DSIM_SUB_VRESOL(x) ((x) << 16)
-#define DSIM_SUB_HRESOL(x) ((x) << 0)
-#define DSIM_SUB_STANDY_MASK ((0x1) << 31)
-#define DSIM_SUB_VRESOL_MASK ((0x7ff) << 16)
-#define DSIM_SUB_HRESOL_MASK ((0x7ff) << 0)
-
-/* DSIM_INTSRC */
-#define DSIM_INT_PLL_STABLE (1 << 31)
-#define DSIM_INT_SW_RST_RELEASE (1 << 30)
-#define DSIM_INT_SFR_FIFO_EMPTY (1 << 29)
-#define DSIM_INT_SFR_HDR_FIFO_EMPTY (1 << 28)
-#define DSIM_INT_BTA (1 << 25)
-#define DSIM_INT_FRAME_DONE (1 << 24)
-#define DSIM_INT_RX_TIMEOUT (1 << 21)
-#define DSIM_INT_BTA_TIMEOUT (1 << 20)
-#define DSIM_INT_RX_DONE (1 << 18)
-#define DSIM_INT_RX_TE (1 << 17)
-#define DSIM_INT_RX_ACK (1 << 16)
-#define DSIM_INT_RX_ECC_ERR (1 << 15)
-#define DSIM_INT_RX_CRC_ERR (1 << 14)
-
-/* DSIM_FIFOCTRL */
-#define DSIM_RX_DATA_FULL (1 << 25)
-#define DSIM_RX_DATA_EMPTY (1 << 24)
-#define DSIM_SFR_HEADER_FULL (1 << 23)
-#define DSIM_SFR_HEADER_EMPTY (1 << 22)
-#define DSIM_SFR_PAYLOAD_FULL (1 << 21)
-#define DSIM_SFR_PAYLOAD_EMPTY (1 << 20)
-#define DSIM_I80_HEADER_FULL (1 << 19)
-#define DSIM_I80_HEADER_EMPTY (1 << 18)
-#define DSIM_I80_PAYLOAD_FULL (1 << 17)
-#define DSIM_I80_PAYLOAD_EMPTY (1 << 16)
-#define DSIM_SD_HEADER_FULL (1 << 15)
-#define DSIM_SD_HEADER_EMPTY (1 << 14)
-#define DSIM_SD_PAYLOAD_FULL (1 << 13)
-#define DSIM_SD_PAYLOAD_EMPTY (1 << 12)
-#define DSIM_MD_HEADER_FULL (1 << 11)
-#define DSIM_MD_HEADER_EMPTY (1 << 10)
-#define DSIM_MD_PAYLOAD_FULL (1 << 9)
-#define DSIM_MD_PAYLOAD_EMPTY (1 << 8)
-#define DSIM_RX_FIFO (1 << 4)
-#define DSIM_SFR_FIFO (1 << 3)
-#define DSIM_I80_FIFO (1 << 2)
-#define DSIM_SD_FIFO (1 << 1)
-#define DSIM_MD_FIFO (1 << 0)
-
-/* DSIM_PHYACCHR */
-#define DSIM_AFC_EN (1 << 14)
-#define DSIM_AFC_CTL(x) (((x) & 0x7) << 5)
-
-/* DSIM_PLLCTRL */
-#define DSIM_FREQ_BAND(x) ((x) << 24)
-#define DSIM_PLL_EN (1 << 23)
-#define DSIM_PLL_P(x) ((x) << 13)
-#define DSIM_PLL_M(x) ((x) << 4)
-#define DSIM_PLL_S(x) ((x) << 1)
-
-/* DSIM_PHYCTRL */
-#define DSIM_PHYCTRL_ULPS_EXIT(x) (((x) & 0x1ff) << 0)
-#define DSIM_PHYCTRL_B_DPHYCTL_VREG_LP (1 << 30)
-#define DSIM_PHYCTRL_B_DPHYCTL_SLEW_UP (1 << 14)
-
-/* DSIM_PHYTIMING */
-#define DSIM_PHYTIMING_LPX(x) ((x) << 8)
-#define DSIM_PHYTIMING_HS_EXIT(x) ((x) << 0)
-
-/* DSIM_PHYTIMING1 */
-#define DSIM_PHYTIMING1_CLK_PREPARE(x) ((x) << 24)
-#define DSIM_PHYTIMING1_CLK_ZERO(x) ((x) << 16)
-#define DSIM_PHYTIMING1_CLK_POST(x) ((x) << 8)
-#define DSIM_PHYTIMING1_CLK_TRAIL(x) ((x) << 0)
-
-/* DSIM_PHYTIMING2 */
-#define DSIM_PHYTIMING2_HS_PREPARE(x) ((x) << 16)
-#define DSIM_PHYTIMING2_HS_ZERO(x) ((x) << 8)
-#define DSIM_PHYTIMING2_HS_TRAIL(x) ((x) << 0)
-
-#define DSI_MAX_BUS_WIDTH 4
-#define DSI_NUM_VIRTUAL_CHANNELS 4
-#define DSI_TX_FIFO_SIZE 2048
-#define DSI_RX_FIFO_SIZE 256
-#define DSI_XFER_TIMEOUT_MS 100
-#define DSI_RX_FIFO_EMPTY 0x30800002
-
-#define OLD_SCLK_MIPI_CLK_NAME "pll_clk"
-
-static const char *const clk_names[5] = { "bus_clk", "sclk_mipi",
- "phyclk_mipidphy0_bitclkdiv8", "phyclk_mipidphy0_rxclkesc0",
- "sclk_rgb_vclk_to_dsim0" };
-
-enum exynos_dsi_transfer_type {
- EXYNOS_DSI_TX,
- EXYNOS_DSI_RX,
-};
-
-struct exynos_dsi_transfer {
- struct list_head list;
- struct completion completed;
- int result;
- struct mipi_dsi_packet packet;
- u16 flags;
- u16 tx_done;
-
- u8 *rx_payload;
- u16 rx_len;
- u16 rx_done;
-};
-
-#define DSIM_STATE_ENABLED BIT(0)
-#define DSIM_STATE_INITIALIZED BIT(1)
-#define DSIM_STATE_CMD_LPM BIT(2)
-#define DSIM_STATE_VIDOUT_AVAILABLE BIT(3)
-
-struct exynos_dsi_driver_data {
- const unsigned int *reg_ofs;
- unsigned int plltmr_reg;
- unsigned int has_freqband:1;
- unsigned int has_clklane_stop:1;
- unsigned int num_clks;
- unsigned int max_freq;
- unsigned int wait_for_reset;
- unsigned int num_bits_resol;
- const unsigned int *reg_values;
-};
-
struct exynos_dsi {
struct drm_encoder encoder;
- struct mipi_dsi_host dsi_host;
- struct drm_bridge bridge;
- struct drm_bridge *out_bridge;
- struct device *dev;
- struct drm_display_mode mode;
-
- void __iomem *reg_base;
- struct phy *phy;
- struct clk **clks;
- struct regulator_bulk_data supplies[2];
- int irq;
- struct gpio_desc *te_gpio;
-
- u32 pll_clk_rate;
- u32 burst_clk_rate;
- u32 esc_clk_rate;
- u32 lanes;
- u32 mode_flags;
- u32 format;
-
- int state;
- struct drm_property *brightness;
- struct completion completed;
-
- spinlock_t transfer_lock; /* protects transfer_list */
- struct list_head transfer_list;
-
- const struct exynos_dsi_driver_data *driver_data;
-};
-
-#define host_to_dsi(host) container_of(host, struct exynos_dsi, dsi_host)
-
-static inline struct exynos_dsi *bridge_to_dsi(struct drm_bridge *b)
-{
- return container_of(b, struct exynos_dsi, bridge);
-}
-
-enum reg_idx {
- DSIM_STATUS_REG, /* Status register */
- DSIM_SWRST_REG, /* Software reset register */
- DSIM_CLKCTRL_REG, /* Clock control register */
- DSIM_TIMEOUT_REG, /* Time out register */
- DSIM_CONFIG_REG, /* Configuration register */
- DSIM_ESCMODE_REG, /* Escape mode register */
- DSIM_MDRESOL_REG,
- DSIM_MVPORCH_REG, /* Main display Vporch register */
- DSIM_MHPORCH_REG, /* Main display Hporch register */
- DSIM_MSYNC_REG, /* Main display sync area register */
- DSIM_INTSRC_REG, /* Interrupt source register */
- DSIM_INTMSK_REG, /* Interrupt mask register */
- DSIM_PKTHDR_REG, /* Packet Header FIFO register */
- DSIM_PAYLOAD_REG, /* Payload FIFO register */
- DSIM_RXFIFO_REG, /* Read FIFO register */
- DSIM_FIFOCTRL_REG, /* FIFO status and control register */
- DSIM_PLLCTRL_REG, /* PLL control register */
- DSIM_PHYCTRL_REG,
- DSIM_PHYTIMING_REG,
- DSIM_PHYTIMING1_REG,
- DSIM_PHYTIMING2_REG,
- NUM_REGS
-};
-
-static inline void exynos_dsi_write(struct exynos_dsi *dsi, enum reg_idx idx,
- u32 val)
-{
-
- writel(val, dsi->reg_base + dsi->driver_data->reg_ofs[idx]);
-}
-
-static inline u32 exynos_dsi_read(struct exynos_dsi *dsi, enum reg_idx idx)
-{
- return readl(dsi->reg_base + dsi->driver_data->reg_ofs[idx]);
-}
-
-static const unsigned int exynos_reg_ofs[] = {
- [DSIM_STATUS_REG] = 0x00,
- [DSIM_SWRST_REG] = 0x04,
- [DSIM_CLKCTRL_REG] = 0x08,
- [DSIM_TIMEOUT_REG] = 0x0c,
- [DSIM_CONFIG_REG] = 0x10,
- [DSIM_ESCMODE_REG] = 0x14,
- [DSIM_MDRESOL_REG] = 0x18,
- [DSIM_MVPORCH_REG] = 0x1c,
- [DSIM_MHPORCH_REG] = 0x20,
- [DSIM_MSYNC_REG] = 0x24,
- [DSIM_INTSRC_REG] = 0x2c,
- [DSIM_INTMSK_REG] = 0x30,
- [DSIM_PKTHDR_REG] = 0x34,
- [DSIM_PAYLOAD_REG] = 0x38,
- [DSIM_RXFIFO_REG] = 0x3c,
- [DSIM_FIFOCTRL_REG] = 0x44,
- [DSIM_PLLCTRL_REG] = 0x4c,
- [DSIM_PHYCTRL_REG] = 0x5c,
- [DSIM_PHYTIMING_REG] = 0x64,
- [DSIM_PHYTIMING1_REG] = 0x68,
- [DSIM_PHYTIMING2_REG] = 0x6c,
-};
-
-static const unsigned int exynos5433_reg_ofs[] = {
- [DSIM_STATUS_REG] = 0x04,
- [DSIM_SWRST_REG] = 0x0C,
- [DSIM_CLKCTRL_REG] = 0x10,
- [DSIM_TIMEOUT_REG] = 0x14,
- [DSIM_CONFIG_REG] = 0x18,
- [DSIM_ESCMODE_REG] = 0x1C,
- [DSIM_MDRESOL_REG] = 0x20,
- [DSIM_MVPORCH_REG] = 0x24,
- [DSIM_MHPORCH_REG] = 0x28,
- [DSIM_MSYNC_REG] = 0x2C,
- [DSIM_INTSRC_REG] = 0x34,
- [DSIM_INTMSK_REG] = 0x38,
- [DSIM_PKTHDR_REG] = 0x3C,
- [DSIM_PAYLOAD_REG] = 0x40,
- [DSIM_RXFIFO_REG] = 0x44,
- [DSIM_FIFOCTRL_REG] = 0x4C,
- [DSIM_PLLCTRL_REG] = 0x94,
- [DSIM_PHYCTRL_REG] = 0xA4,
- [DSIM_PHYTIMING_REG] = 0xB4,
- [DSIM_PHYTIMING1_REG] = 0xB8,
- [DSIM_PHYTIMING2_REG] = 0xBC,
};
-enum reg_value_idx {
- RESET_TYPE,
- PLL_TIMER,
- STOP_STATE_CNT,
- PHYCTRL_ULPS_EXIT,
- PHYCTRL_VREG_LP,
- PHYCTRL_SLEW_UP,
- PHYTIMING_LPX,
- PHYTIMING_HS_EXIT,
- PHYTIMING_CLK_PREPARE,
- PHYTIMING_CLK_ZERO,
- PHYTIMING_CLK_POST,
- PHYTIMING_CLK_TRAIL,
- PHYTIMING_HS_PREPARE,
- PHYTIMING_HS_ZERO,
- PHYTIMING_HS_TRAIL
-};
-
-static const unsigned int reg_values[] = {
- [RESET_TYPE] = DSIM_SWRST,
- [PLL_TIMER] = 500,
- [STOP_STATE_CNT] = 0xf,
- [PHYCTRL_ULPS_EXIT] = DSIM_PHYCTRL_ULPS_EXIT(0x0af),
- [PHYCTRL_VREG_LP] = 0,
- [PHYCTRL_SLEW_UP] = 0,
- [PHYTIMING_LPX] = DSIM_PHYTIMING_LPX(0x06),
- [PHYTIMING_HS_EXIT] = DSIM_PHYTIMING_HS_EXIT(0x0b),
- [PHYTIMING_CLK_PREPARE] = DSIM_PHYTIMING1_CLK_PREPARE(0x07),
- [PHYTIMING_CLK_ZERO] = DSIM_PHYTIMING1_CLK_ZERO(0x27),
- [PHYTIMING_CLK_POST] = DSIM_PHYTIMING1_CLK_POST(0x0d),
- [PHYTIMING_CLK_TRAIL] = DSIM_PHYTIMING1_CLK_TRAIL(0x08),
- [PHYTIMING_HS_PREPARE] = DSIM_PHYTIMING2_HS_PREPARE(0x09),
- [PHYTIMING_HS_ZERO] = DSIM_PHYTIMING2_HS_ZERO(0x0d),
- [PHYTIMING_HS_TRAIL] = DSIM_PHYTIMING2_HS_TRAIL(0x0b),
-};
-
-static const unsigned int exynos5422_reg_values[] = {
- [RESET_TYPE] = DSIM_SWRST,
- [PLL_TIMER] = 500,
- [STOP_STATE_CNT] = 0xf,
- [PHYCTRL_ULPS_EXIT] = DSIM_PHYCTRL_ULPS_EXIT(0xaf),
- [PHYCTRL_VREG_LP] = 0,
- [PHYCTRL_SLEW_UP] = 0,
- [PHYTIMING_LPX] = DSIM_PHYTIMING_LPX(0x08),
- [PHYTIMING_HS_EXIT] = DSIM_PHYTIMING_HS_EXIT(0x0d),
- [PHYTIMING_CLK_PREPARE] = DSIM_PHYTIMING1_CLK_PREPARE(0x09),
- [PHYTIMING_CLK_ZERO] = DSIM_PHYTIMING1_CLK_ZERO(0x30),
- [PHYTIMING_CLK_POST] = DSIM_PHYTIMING1_CLK_POST(0x0e),
- [PHYTIMING_CLK_TRAIL] = DSIM_PHYTIMING1_CLK_TRAIL(0x0a),
- [PHYTIMING_HS_PREPARE] = DSIM_PHYTIMING2_HS_PREPARE(0x0c),
- [PHYTIMING_HS_ZERO] = DSIM_PHYTIMING2_HS_ZERO(0x11),
- [PHYTIMING_HS_TRAIL] = DSIM_PHYTIMING2_HS_TRAIL(0x0d),
-};
-
-static const unsigned int exynos5433_reg_values[] = {
- [RESET_TYPE] = DSIM_FUNCRST,
- [PLL_TIMER] = 22200,
- [STOP_STATE_CNT] = 0xa,
- [PHYCTRL_ULPS_EXIT] = DSIM_PHYCTRL_ULPS_EXIT(0x190),
- [PHYCTRL_VREG_LP] = DSIM_PHYCTRL_B_DPHYCTL_VREG_LP,
- [PHYCTRL_SLEW_UP] = DSIM_PHYCTRL_B_DPHYCTL_SLEW_UP,
- [PHYTIMING_LPX] = DSIM_PHYTIMING_LPX(0x07),
- [PHYTIMING_HS_EXIT] = DSIM_PHYTIMING_HS_EXIT(0x0c),
- [PHYTIMING_CLK_PREPARE] = DSIM_PHYTIMING1_CLK_PREPARE(0x09),
- [PHYTIMING_CLK_ZERO] = DSIM_PHYTIMING1_CLK_ZERO(0x2d),
- [PHYTIMING_CLK_POST] = DSIM_PHYTIMING1_CLK_POST(0x0e),
- [PHYTIMING_CLK_TRAIL] = DSIM_PHYTIMING1_CLK_TRAIL(0x09),
- [PHYTIMING_HS_PREPARE] = DSIM_PHYTIMING2_HS_PREPARE(0x0b),
- [PHYTIMING_HS_ZERO] = DSIM_PHYTIMING2_HS_ZERO(0x10),
- [PHYTIMING_HS_TRAIL] = DSIM_PHYTIMING2_HS_TRAIL(0x0c),
-};
-
-static const struct exynos_dsi_driver_data exynos3_dsi_driver_data = {
- .reg_ofs = exynos_reg_ofs,
- .plltmr_reg = 0x50,
- .has_freqband = 1,
- .has_clklane_stop = 1,
- .num_clks = 2,
- .max_freq = 1000,
- .wait_for_reset = 1,
- .num_bits_resol = 11,
- .reg_values = reg_values,
-};
-
-static const struct exynos_dsi_driver_data exynos4_dsi_driver_data = {
- .reg_ofs = exynos_reg_ofs,
- .plltmr_reg = 0x50,
- .has_freqband = 1,
- .has_clklane_stop = 1,
- .num_clks = 2,
- .max_freq = 1000,
- .wait_for_reset = 1,
- .num_bits_resol = 11,
- .reg_values = reg_values,
-};
-
-static const struct exynos_dsi_driver_data exynos5_dsi_driver_data = {
- .reg_ofs = exynos_reg_ofs,
- .plltmr_reg = 0x58,
- .num_clks = 2,
- .max_freq = 1000,
- .wait_for_reset = 1,
- .num_bits_resol = 11,
- .reg_values = reg_values,
-};
-
-static const struct exynos_dsi_driver_data exynos5433_dsi_driver_data = {
- .reg_ofs = exynos5433_reg_ofs,
- .plltmr_reg = 0xa0,
- .has_clklane_stop = 1,
- .num_clks = 5,
- .max_freq = 1500,
- .wait_for_reset = 0,
- .num_bits_resol = 12,
- .reg_values = exynos5433_reg_values,
-};
-
-static const struct exynos_dsi_driver_data exynos5422_dsi_driver_data = {
- .reg_ofs = exynos5433_reg_ofs,
- .plltmr_reg = 0xa0,
- .has_clklane_stop = 1,
- .num_clks = 2,
- .max_freq = 1500,
- .wait_for_reset = 1,
- .num_bits_resol = 12,
- .reg_values = exynos5422_reg_values,
-};
-
-static const struct of_device_id exynos_dsi_of_match[] = {
- { .compatible = "samsung,exynos3250-mipi-dsi",
- .data = &exynos3_dsi_driver_data },
- { .compatible = "samsung,exynos4210-mipi-dsi",
- .data = &exynos4_dsi_driver_data },
- { .compatible = "samsung,exynos5410-mipi-dsi",
- .data = &exynos5_dsi_driver_data },
- { .compatible = "samsung,exynos5422-mipi-dsi",
- .data = &exynos5422_dsi_driver_data },
- { .compatible = "samsung,exynos5433-mipi-dsi",
- .data = &exynos5433_dsi_driver_data },
- { }
-};
-
-static void exynos_dsi_wait_for_reset(struct exynos_dsi *dsi)
-{
- if (wait_for_completion_timeout(&dsi->completed, msecs_to_jiffies(300)))
- return;
-
- dev_err(dsi->dev, "timeout waiting for reset\n");
-}
-
-static void exynos_dsi_reset(struct exynos_dsi *dsi)
-{
- u32 reset_val = dsi->driver_data->reg_values[RESET_TYPE];
-
- reinit_completion(&dsi->completed);
- exynos_dsi_write(dsi, DSIM_SWRST_REG, reset_val);
-}
-
-#ifndef MHZ
-#define MHZ (1000*1000)
-#endif
-
-static unsigned long exynos_dsi_pll_find_pms(struct exynos_dsi *dsi,
- unsigned long fin, unsigned long fout, u8 *p, u16 *m, u8 *s)
-{
- const struct exynos_dsi_driver_data *driver_data = dsi->driver_data;
- unsigned long best_freq = 0;
- u32 min_delta = 0xffffffff;
- u8 p_min, p_max;
- u8 _p, best_p;
- u16 _m, best_m;
- u8 _s, best_s;
-
- p_min = DIV_ROUND_UP(fin, (12 * MHZ));
- p_max = fin / (6 * MHZ);
-
- for (_p = p_min; _p <= p_max; ++_p) {
- for (_s = 0; _s <= 5; ++_s) {
- u64 tmp;
- u32 delta;
-
- tmp = (u64)fout * (_p << _s);
- do_div(tmp, fin);
- _m = tmp;
- if (_m < 41 || _m > 125)
- continue;
-
- tmp = (u64)_m * fin;
- do_div(tmp, _p);
- if (tmp < 500 * MHZ ||
- tmp > driver_data->max_freq * MHZ)
- continue;
-
- tmp = (u64)_m * fin;
- do_div(tmp, _p << _s);
-
- delta = abs(fout - tmp);
- if (delta < min_delta) {
- best_p = _p;
- best_m = _m;
- best_s = _s;
- min_delta = delta;
- best_freq = tmp;
- }
- }
- }
-
- if (best_freq) {
- *p = best_p;
- *m = best_m;
- *s = best_s;
- }
-
- return best_freq;
-}
-
-static unsigned long exynos_dsi_set_pll(struct exynos_dsi *dsi,
- unsigned long freq)
-{
- const struct exynos_dsi_driver_data *driver_data = dsi->driver_data;
- unsigned long fin, fout;
- int timeout;
- u8 p, s;
- u16 m;
- u32 reg;
-
- fin = dsi->pll_clk_rate;
- fout = exynos_dsi_pll_find_pms(dsi, fin, freq, &p, &m, &s);
- if (!fout) {
- dev_err(dsi->dev,
- "failed to find PLL PMS for requested frequency\n");
- return 0;
- }
- dev_dbg(dsi->dev, "PLL freq %lu, (p %d, m %d, s %d)\n", fout, p, m, s);
-
- writel(driver_data->reg_values[PLL_TIMER],
- dsi->reg_base + driver_data->plltmr_reg);
-
- reg = DSIM_PLL_EN | DSIM_PLL_P(p) | DSIM_PLL_M(m) | DSIM_PLL_S(s);
-
- if (driver_data->has_freqband) {
- static const unsigned long freq_bands[] = {
- 100 * MHZ, 120 * MHZ, 160 * MHZ, 200 * MHZ,
- 270 * MHZ, 320 * MHZ, 390 * MHZ, 450 * MHZ,
- 510 * MHZ, 560 * MHZ, 640 * MHZ, 690 * MHZ,
- 770 * MHZ, 870 * MHZ, 950 * MHZ,
- };
- int band;
-
- for (band = 0; band < ARRAY_SIZE(freq_bands); ++band)
- if (fout < freq_bands[band])
- break;
-
- dev_dbg(dsi->dev, "band %d\n", band);
-
- reg |= DSIM_FREQ_BAND(band);
- }
-
- exynos_dsi_write(dsi, DSIM_PLLCTRL_REG, reg);
-
- timeout = 1000;
- do {
- if (timeout-- == 0) {
- dev_err(dsi->dev, "PLL failed to stabilize\n");
- return 0;
- }
- reg = exynos_dsi_read(dsi, DSIM_STATUS_REG);
- } while ((reg & DSIM_PLL_STABLE) == 0);
-
- return fout;
-}
-
-static int exynos_dsi_enable_clock(struct exynos_dsi *dsi)
-{
- unsigned long hs_clk, byte_clk, esc_clk;
- unsigned long esc_div;
- u32 reg;
-
- hs_clk = exynos_dsi_set_pll(dsi, dsi->burst_clk_rate);
- if (!hs_clk) {
- dev_err(dsi->dev, "failed to configure DSI PLL\n");
- return -EFAULT;
- }
-
- byte_clk = hs_clk / 8;
- esc_div = DIV_ROUND_UP(byte_clk, dsi->esc_clk_rate);
- esc_clk = byte_clk / esc_div;
-
- if (esc_clk > 20 * MHZ) {
- ++esc_div;
- esc_clk = byte_clk / esc_div;
- }
-
- dev_dbg(dsi->dev, "hs_clk = %lu, byte_clk = %lu, esc_clk = %lu\n",
- hs_clk, byte_clk, esc_clk);
-
- reg = exynos_dsi_read(dsi, DSIM_CLKCTRL_REG);
- reg &= ~(DSIM_ESC_PRESCALER_MASK | DSIM_LANE_ESC_CLK_EN_CLK
- | DSIM_LANE_ESC_CLK_EN_DATA_MASK | DSIM_PLL_BYPASS
- | DSIM_BYTE_CLK_SRC_MASK);
- reg |= DSIM_ESC_CLKEN | DSIM_BYTE_CLKEN
- | DSIM_ESC_PRESCALER(esc_div)
- | DSIM_LANE_ESC_CLK_EN_CLK
- | DSIM_LANE_ESC_CLK_EN_DATA(BIT(dsi->lanes) - 1)
- | DSIM_BYTE_CLK_SRC(0)
- | DSIM_TX_REQUEST_HSCLK;
- exynos_dsi_write(dsi, DSIM_CLKCTRL_REG, reg);
-
- return 0;
-}
-
-static void exynos_dsi_set_phy_ctrl(struct exynos_dsi *dsi)
-{
- const struct exynos_dsi_driver_data *driver_data = dsi->driver_data;
- const unsigned int *reg_values = driver_data->reg_values;
- u32 reg;
-
- if (driver_data->has_freqband)
- return;
-
- /* B D-PHY: D-PHY Master & Slave Analog Block control */
- reg = reg_values[PHYCTRL_ULPS_EXIT] | reg_values[PHYCTRL_VREG_LP] |
- reg_values[PHYCTRL_SLEW_UP];
- exynos_dsi_write(dsi, DSIM_PHYCTRL_REG, reg);
-
- /*
- * T LPX: Transmitted length of any Low-Power state period
- * T HS-EXIT: Time that the transmitter drives LP-11 following a HS
- * burst
- */
- reg = reg_values[PHYTIMING_LPX] | reg_values[PHYTIMING_HS_EXIT];
- exynos_dsi_write(dsi, DSIM_PHYTIMING_REG, reg);
-
- /*
- * T CLK-PREPARE: Time that the transmitter drives the Clock Lane LP-00
- * Line state immediately before the HS-0 Line state starting the
- * HS transmission
- * T CLK-ZERO: Time that the transmitter drives the HS-0 state prior to
- * transmitting the Clock.
- * T CLK_POST: Time that the transmitter continues to send HS clock
- * after the last associated Data Lane has transitioned to LP Mode
- * Interval is defined as the period from the end of T HS-TRAIL to
- * the beginning of T CLK-TRAIL
- * T CLK-TRAIL: Time that the transmitter drives the HS-0 state after
- * the last payload clock bit of a HS transmission burst
- */
- reg = reg_values[PHYTIMING_CLK_PREPARE] |
- reg_values[PHYTIMING_CLK_ZERO] |
- reg_values[PHYTIMING_CLK_POST] |
- reg_values[PHYTIMING_CLK_TRAIL];
-
- exynos_dsi_write(dsi, DSIM_PHYTIMING1_REG, reg);
-
- /*
- * T HS-PREPARE: Time that the transmitter drives the Data Lane LP-00
- * Line state immediately before the HS-0 Line state starting the
- * HS transmission
- * T HS-ZERO: Time that the transmitter drives the HS-0 state prior to
- * transmitting the Sync sequence.
- * T HS-TRAIL: Time that the transmitter drives the flipped differential
- * state after last payload data bit of a HS transmission burst
- */
- reg = reg_values[PHYTIMING_HS_PREPARE] | reg_values[PHYTIMING_HS_ZERO] |
- reg_values[PHYTIMING_HS_TRAIL];
- exynos_dsi_write(dsi, DSIM_PHYTIMING2_REG, reg);
-}
-
-static void exynos_dsi_disable_clock(struct exynos_dsi *dsi)
-{
- u32 reg;
-
- reg = exynos_dsi_read(dsi, DSIM_CLKCTRL_REG);
- reg &= ~(DSIM_LANE_ESC_CLK_EN_CLK | DSIM_LANE_ESC_CLK_EN_DATA_MASK
- | DSIM_ESC_CLKEN | DSIM_BYTE_CLKEN);
- exynos_dsi_write(dsi, DSIM_CLKCTRL_REG, reg);
-
- reg = exynos_dsi_read(dsi, DSIM_PLLCTRL_REG);
- reg &= ~DSIM_PLL_EN;
- exynos_dsi_write(dsi, DSIM_PLLCTRL_REG, reg);
-}
-
-static void exynos_dsi_enable_lane(struct exynos_dsi *dsi, u32 lane)
-{
- u32 reg = exynos_dsi_read(dsi, DSIM_CONFIG_REG);
- reg |= (DSIM_NUM_OF_DATA_LANE(dsi->lanes - 1) | DSIM_LANE_EN_CLK |
- DSIM_LANE_EN(lane));
- exynos_dsi_write(dsi, DSIM_CONFIG_REG, reg);
-}
-
-static int exynos_dsi_init_link(struct exynos_dsi *dsi)
-{
- const struct exynos_dsi_driver_data *driver_data = dsi->driver_data;
- int timeout;
- u32 reg;
- u32 lanes_mask;
-
- /* Initialize FIFO pointers */
- reg = exynos_dsi_read(dsi, DSIM_FIFOCTRL_REG);
- reg &= ~0x1f;
- exynos_dsi_write(dsi, DSIM_FIFOCTRL_REG, reg);
-
- usleep_range(9000, 11000);
-
- reg |= 0x1f;
- exynos_dsi_write(dsi, DSIM_FIFOCTRL_REG, reg);
- usleep_range(9000, 11000);
-
- /* DSI configuration */
- reg = 0;
-
- /*
- * The first bit of mode_flags specifies display configuration.
- * If this bit is set[= MIPI_DSI_MODE_VIDEO], dsi will support video
- * mode, otherwise it will support command mode.
- */
- if (dsi->mode_flags & MIPI_DSI_MODE_VIDEO) {
- reg |= DSIM_VIDEO_MODE;
-
- /*
- * The user manual describes that following bits are ignored in
- * command mode.
- */
- if (!(dsi->mode_flags & MIPI_DSI_MODE_VSYNC_FLUSH))
- reg |= DSIM_MFLUSH_VS;
- if (dsi->mode_flags & MIPI_DSI_MODE_VIDEO_SYNC_PULSE)
- reg |= DSIM_SYNC_INFORM;
- if (dsi->mode_flags & MIPI_DSI_MODE_VIDEO_BURST)
- reg |= DSIM_BURST_MODE;
- if (dsi->mode_flags & MIPI_DSI_MODE_VIDEO_AUTO_VERT)
- reg |= DSIM_AUTO_MODE;
- if (dsi->mode_flags & MIPI_DSI_MODE_VIDEO_HSE)
- reg |= DSIM_HSE_MODE;
- if (!(dsi->mode_flags & MIPI_DSI_MODE_VIDEO_NO_HFP))
- reg |= DSIM_HFP_MODE;
- if (!(dsi->mode_flags & MIPI_DSI_MODE_VIDEO_NO_HBP))
- reg |= DSIM_HBP_MODE;
- if (!(dsi->mode_flags & MIPI_DSI_MODE_VIDEO_NO_HSA))
- reg |= DSIM_HSA_MODE;
- }
-
- if (!(dsi->mode_flags & MIPI_DSI_MODE_NO_EOT_PACKET))
- reg |= DSIM_EOT_DISABLE;
-
- switch (dsi->format) {
- case MIPI_DSI_FMT_RGB888:
- reg |= DSIM_MAIN_PIX_FORMAT_RGB888;
- break;
- case MIPI_DSI_FMT_RGB666:
- reg |= DSIM_MAIN_PIX_FORMAT_RGB666;
- break;
- case MIPI_DSI_FMT_RGB666_PACKED:
- reg |= DSIM_MAIN_PIX_FORMAT_RGB666_P;
- break;
- case MIPI_DSI_FMT_RGB565:
- reg |= DSIM_MAIN_PIX_FORMAT_RGB565;
- break;
- default:
- dev_err(dsi->dev, "invalid pixel format\n");
- return -EINVAL;
- }
-
- /*
- * Use non-continuous clock mode if the periparal wants and
- * host controller supports
- *
- * In non-continous clock mode, host controller will turn off
- * the HS clock between high-speed transmissions to reduce
- * power consumption.
- */
- if (driver_data->has_clklane_stop &&
- dsi->mode_flags & MIPI_DSI_CLOCK_NON_CONTINUOUS) {
- reg |= DSIM_CLKLANE_STOP;
- }
- exynos_dsi_write(dsi, DSIM_CONFIG_REG, reg);
-
- lanes_mask = BIT(dsi->lanes) - 1;
- exynos_dsi_enable_lane(dsi, lanes_mask);
-
- /* Check clock and data lane state are stop state */
- timeout = 100;
- do {
- if (timeout-- == 0) {
- dev_err(dsi->dev, "waiting for bus lanes timed out\n");
- return -EFAULT;
- }
-
- reg = exynos_dsi_read(dsi, DSIM_STATUS_REG);
- if ((reg & DSIM_STOP_STATE_DAT(lanes_mask))
- != DSIM_STOP_STATE_DAT(lanes_mask))
- continue;
- } while (!(reg & (DSIM_STOP_STATE_CLK | DSIM_TX_READY_HS_CLK)));
-
- reg = exynos_dsi_read(dsi, DSIM_ESCMODE_REG);
- reg &= ~DSIM_STOP_STATE_CNT_MASK;
- reg |= DSIM_STOP_STATE_CNT(driver_data->reg_values[STOP_STATE_CNT]);
- exynos_dsi_write(dsi, DSIM_ESCMODE_REG, reg);
-
- reg = DSIM_BTA_TIMEOUT(0xff) | DSIM_LPDR_TIMEOUT(0xffff);
- exynos_dsi_write(dsi, DSIM_TIMEOUT_REG, reg);
-
- return 0;
-}
-
-static void exynos_dsi_set_display_mode(struct exynos_dsi *dsi)
-{
- struct drm_display_mode *m = &dsi->mode;
- unsigned int num_bits_resol = dsi->driver_data->num_bits_resol;
- u32 reg;
-
- if (dsi->mode_flags & MIPI_DSI_MODE_VIDEO) {
- reg = DSIM_CMD_ALLOW(0xf)
- | DSIM_STABLE_VFP(m->vsync_start - m->vdisplay)
- | DSIM_MAIN_VBP(m->vtotal - m->vsync_end);
- exynos_dsi_write(dsi, DSIM_MVPORCH_REG, reg);
-
- reg = DSIM_MAIN_HFP(m->hsync_start - m->hdisplay)
- | DSIM_MAIN_HBP(m->htotal - m->hsync_end);
- exynos_dsi_write(dsi, DSIM_MHPORCH_REG, reg);
-
- reg = DSIM_MAIN_VSA(m->vsync_end - m->vsync_start)
- | DSIM_MAIN_HSA(m->hsync_end - m->hsync_start);
- exynos_dsi_write(dsi, DSIM_MSYNC_REG, reg);
- }
- reg = DSIM_MAIN_HRESOL(m->hdisplay, num_bits_resol) |
- DSIM_MAIN_VRESOL(m->vdisplay, num_bits_resol);
-
- exynos_dsi_write(dsi, DSIM_MDRESOL_REG, reg);
-
- dev_dbg(dsi->dev, "LCD size = %dx%d\n", m->hdisplay, m->vdisplay);
-}
-
-static void exynos_dsi_set_display_enable(struct exynos_dsi *dsi, bool enable)
-{
- u32 reg;
-
- reg = exynos_dsi_read(dsi, DSIM_MDRESOL_REG);
- if (enable)
- reg |= DSIM_MAIN_STAND_BY;
- else
- reg &= ~DSIM_MAIN_STAND_BY;
- exynos_dsi_write(dsi, DSIM_MDRESOL_REG, reg);
-}
-
-static int exynos_dsi_wait_for_hdr_fifo(struct exynos_dsi *dsi)
-{
- int timeout = 2000;
-
- do {
- u32 reg = exynos_dsi_read(dsi, DSIM_FIFOCTRL_REG);
-
- if (!(reg & DSIM_SFR_HEADER_FULL))
- return 0;
-
- if (!cond_resched())
- usleep_range(950, 1050);
- } while (--timeout);
-
- return -ETIMEDOUT;
-}
-
-static void exynos_dsi_set_cmd_lpm(struct exynos_dsi *dsi, bool lpm)
-{
- u32 v = exynos_dsi_read(dsi, DSIM_ESCMODE_REG);
-
- if (lpm)
- v |= DSIM_CMD_LPDT_LP;
- else
- v &= ~DSIM_CMD_LPDT_LP;
-
- exynos_dsi_write(dsi, DSIM_ESCMODE_REG, v);
-}
-
-static void exynos_dsi_force_bta(struct exynos_dsi *dsi)
-{
- u32 v = exynos_dsi_read(dsi, DSIM_ESCMODE_REG);
- v |= DSIM_FORCE_BTA;
- exynos_dsi_write(dsi, DSIM_ESCMODE_REG, v);
-}
-
-static void exynos_dsi_send_to_fifo(struct exynos_dsi *dsi,
- struct exynos_dsi_transfer *xfer)
-{
- struct device *dev = dsi->dev;
- struct mipi_dsi_packet *pkt = &xfer->packet;
- const u8 *payload = pkt->payload + xfer->tx_done;
- u16 length = pkt->payload_length - xfer->tx_done;
- bool first = !xfer->tx_done;
- u32 reg;
-
- dev_dbg(dev, "< xfer %pK: tx len %u, done %u, rx len %u, done %u\n",
- xfer, length, xfer->tx_done, xfer->rx_len, xfer->rx_done);
-
- if (length > DSI_TX_FIFO_SIZE)
- length = DSI_TX_FIFO_SIZE;
-
- xfer->tx_done += length;
-
- /* Send payload */
- while (length >= 4) {
- reg = get_unaligned_le32(payload);
- exynos_dsi_write(dsi, DSIM_PAYLOAD_REG, reg);
- payload += 4;
- length -= 4;
- }
-
- reg = 0;
- switch (length) {
- case 3:
- reg |= payload[2] << 16;
- fallthrough;
- case 2:
- reg |= payload[1] << 8;
- fallthrough;
- case 1:
- reg |= payload[0];
- exynos_dsi_write(dsi, DSIM_PAYLOAD_REG, reg);
- break;
- }
-
- /* Send packet header */
- if (!first)
- return;
-
- reg = get_unaligned_le32(pkt->header);
- if (exynos_dsi_wait_for_hdr_fifo(dsi)) {
- dev_err(dev, "waiting for header FIFO timed out\n");
- return;
- }
-
- if (NEQV(xfer->flags & MIPI_DSI_MSG_USE_LPM,
- dsi->state & DSIM_STATE_CMD_LPM)) {
- exynos_dsi_set_cmd_lpm(dsi, xfer->flags & MIPI_DSI_MSG_USE_LPM);
- dsi->state ^= DSIM_STATE_CMD_LPM;
- }
-
- exynos_dsi_write(dsi, DSIM_PKTHDR_REG, reg);
-
- if (xfer->flags & MIPI_DSI_MSG_REQ_ACK)
- exynos_dsi_force_bta(dsi);
-}
-
-static void exynos_dsi_read_from_fifo(struct exynos_dsi *dsi,
- struct exynos_dsi_transfer *xfer)
-{
- u8 *payload = xfer->rx_payload + xfer->rx_done;
- bool first = !xfer->rx_done;
- struct device *dev = dsi->dev;
- u16 length;
- u32 reg;
-
- if (first) {
- reg = exynos_dsi_read(dsi, DSIM_RXFIFO_REG);
-
- switch (reg & 0x3f) {
- case MIPI_DSI_RX_GENERIC_SHORT_READ_RESPONSE_2BYTE:
- case MIPI_DSI_RX_DCS_SHORT_READ_RESPONSE_2BYTE:
- if (xfer->rx_len >= 2) {
- payload[1] = reg >> 16;
- ++xfer->rx_done;
- }
- fallthrough;
- case MIPI_DSI_RX_GENERIC_SHORT_READ_RESPONSE_1BYTE:
- case MIPI_DSI_RX_DCS_SHORT_READ_RESPONSE_1BYTE:
- payload[0] = reg >> 8;
- ++xfer->rx_done;
- xfer->rx_len = xfer->rx_done;
- xfer->result = 0;
- goto clear_fifo;
- case MIPI_DSI_RX_ACKNOWLEDGE_AND_ERROR_REPORT:
- dev_err(dev, "DSI Error Report: 0x%04x\n",
- (reg >> 8) & 0xffff);
- xfer->result = 0;
- goto clear_fifo;
- }
-
- length = (reg >> 8) & 0xffff;
- if (length > xfer->rx_len) {
- dev_err(dev,
- "response too long (%u > %u bytes), stripping\n",
- xfer->rx_len, length);
- length = xfer->rx_len;
- } else if (length < xfer->rx_len)
- xfer->rx_len = length;
- }
-
- length = xfer->rx_len - xfer->rx_done;
- xfer->rx_done += length;
-
- /* Receive payload */
- while (length >= 4) {
- reg = exynos_dsi_read(dsi, DSIM_RXFIFO_REG);
- payload[0] = (reg >> 0) & 0xff;
- payload[1] = (reg >> 8) & 0xff;
- payload[2] = (reg >> 16) & 0xff;
- payload[3] = (reg >> 24) & 0xff;
- payload += 4;
- length -= 4;
- }
-
- if (length) {
- reg = exynos_dsi_read(dsi, DSIM_RXFIFO_REG);
- switch (length) {
- case 3:
- payload[2] = (reg >> 16) & 0xff;
- fallthrough;
- case 2:
- payload[1] = (reg >> 8) & 0xff;
- fallthrough;
- case 1:
- payload[0] = reg & 0xff;
- }
- }
-
- if (xfer->rx_done == xfer->rx_len)
- xfer->result = 0;
-
-clear_fifo:
- length = DSI_RX_FIFO_SIZE / 4;
- do {
- reg = exynos_dsi_read(dsi, DSIM_RXFIFO_REG);
- if (reg == DSI_RX_FIFO_EMPTY)
- break;
- } while (--length);
-}
-
-static void exynos_dsi_transfer_start(struct exynos_dsi *dsi)
-{
- unsigned long flags;
- struct exynos_dsi_transfer *xfer;
- bool start = false;
-
-again:
- spin_lock_irqsave(&dsi->transfer_lock, flags);
-
- if (list_empty(&dsi->transfer_list)) {
- spin_unlock_irqrestore(&dsi->transfer_lock, flags);
- return;
- }
-
- xfer = list_first_entry(&dsi->transfer_list,
- struct exynos_dsi_transfer, list);
-
- spin_unlock_irqrestore(&dsi->transfer_lock, flags);
-
- if (xfer->packet.payload_length &&
- xfer->tx_done == xfer->packet.payload_length)
- /* waiting for RX */
- return;
-
- exynos_dsi_send_to_fifo(dsi, xfer);
-
- if (xfer->packet.payload_length || xfer->rx_len)
- return;
-
- xfer->result = 0;
- complete(&xfer->completed);
-
- spin_lock_irqsave(&dsi->transfer_lock, flags);
-
- list_del_init(&xfer->list);
- start = !list_empty(&dsi->transfer_list);
-
- spin_unlock_irqrestore(&dsi->transfer_lock, flags);
-
- if (start)
- goto again;
-}
-
-static bool exynos_dsi_transfer_finish(struct exynos_dsi *dsi)
-{
- struct exynos_dsi_transfer *xfer;
- unsigned long flags;
- bool start = true;
-
- spin_lock_irqsave(&dsi->transfer_lock, flags);
-
- if (list_empty(&dsi->transfer_list)) {
- spin_unlock_irqrestore(&dsi->transfer_lock, flags);
- return false;
- }
-
- xfer = list_first_entry(&dsi->transfer_list,
- struct exynos_dsi_transfer, list);
-
- spin_unlock_irqrestore(&dsi->transfer_lock, flags);
-
- dev_dbg(dsi->dev,
- "> xfer %pK, tx_len %zu, tx_done %u, rx_len %u, rx_done %u\n",
- xfer, xfer->packet.payload_length, xfer->tx_done, xfer->rx_len,
- xfer->rx_done);
-
- if (xfer->tx_done != xfer->packet.payload_length)
- return true;
-
- if (xfer->rx_done != xfer->rx_len)
- exynos_dsi_read_from_fifo(dsi, xfer);
-
- if (xfer->rx_done != xfer->rx_len)
- return true;
-
- spin_lock_irqsave(&dsi->transfer_lock, flags);
-
- list_del_init(&xfer->list);
- start = !list_empty(&dsi->transfer_list);
-
- spin_unlock_irqrestore(&dsi->transfer_lock, flags);
-
- if (!xfer->rx_len)
- xfer->result = 0;
- complete(&xfer->completed);
-
- return start;
-}
-
-static void exynos_dsi_remove_transfer(struct exynos_dsi *dsi,
- struct exynos_dsi_transfer *xfer)
-{
- unsigned long flags;
- bool start;
-
- spin_lock_irqsave(&dsi->transfer_lock, flags);
-
- if (!list_empty(&dsi->transfer_list) &&
- xfer == list_first_entry(&dsi->transfer_list,
- struct exynos_dsi_transfer, list)) {
- list_del_init(&xfer->list);
- start = !list_empty(&dsi->transfer_list);
- spin_unlock_irqrestore(&dsi->transfer_lock, flags);
- if (start)
- exynos_dsi_transfer_start(dsi);
- return;
- }
-
- list_del_init(&xfer->list);
-
- spin_unlock_irqrestore(&dsi->transfer_lock, flags);
-}
-
-static int exynos_dsi_transfer(struct exynos_dsi *dsi,
- struct exynos_dsi_transfer *xfer)
+static irqreturn_t exynos_dsi_te_irq_handler(struct samsung_dsim *dsim)
{
- unsigned long flags;
- bool stopped;
-
- xfer->tx_done = 0;
- xfer->rx_done = 0;
- xfer->result = -ETIMEDOUT;
- init_completion(&xfer->completed);
-
- spin_lock_irqsave(&dsi->transfer_lock, flags);
-
- stopped = list_empty(&dsi->transfer_list);
- list_add_tail(&xfer->list, &dsi->transfer_list);
-
- spin_unlock_irqrestore(&dsi->transfer_lock, flags);
-
- if (stopped)
- exynos_dsi_transfer_start(dsi);
-
- wait_for_completion_timeout(&xfer->completed,
- msecs_to_jiffies(DSI_XFER_TIMEOUT_MS));
- if (xfer->result == -ETIMEDOUT) {
- struct mipi_dsi_packet *pkt = &xfer->packet;
- exynos_dsi_remove_transfer(dsi, xfer);
- dev_err(dsi->dev, "xfer timed out: %*ph %*ph\n", 4, pkt->header,
- (int)pkt->payload_length, pkt->payload);
- return -ETIMEDOUT;
- }
-
- /* Also covers hardware timeout condition */
- return xfer->result;
-}
-
-static irqreturn_t exynos_dsi_irq(int irq, void *dev_id)
-{
- struct exynos_dsi *dsi = dev_id;
- u32 status;
-
- status = exynos_dsi_read(dsi, DSIM_INTSRC_REG);
- if (!status) {
- static unsigned long int j;
- if (printk_timed_ratelimit(&j, 500))
- dev_warn(dsi->dev, "spurious interrupt\n");
- return IRQ_HANDLED;
- }
- exynos_dsi_write(dsi, DSIM_INTSRC_REG, status);
-
- if (status & DSIM_INT_SW_RST_RELEASE) {
- u32 mask = ~(DSIM_INT_RX_DONE | DSIM_INT_SFR_FIFO_EMPTY |
- DSIM_INT_SFR_HDR_FIFO_EMPTY | DSIM_INT_RX_ECC_ERR |
- DSIM_INT_SW_RST_RELEASE);
- exynos_dsi_write(dsi, DSIM_INTMSK_REG, mask);
- complete(&dsi->completed);
- return IRQ_HANDLED;
- }
-
- if (!(status & (DSIM_INT_RX_DONE | DSIM_INT_SFR_FIFO_EMPTY |
- DSIM_INT_PLL_STABLE)))
- return IRQ_HANDLED;
-
- if (exynos_dsi_transfer_finish(dsi))
- exynos_dsi_transfer_start(dsi);
-
- return IRQ_HANDLED;
-}
-
-static irqreturn_t exynos_dsi_te_irq_handler(int irq, void *dev_id)
-{
- struct exynos_dsi *dsi = (struct exynos_dsi *)dev_id;
+ struct exynos_dsi *dsi = dsim->priv;
struct drm_encoder *encoder = &dsi->encoder;
- if (dsi->state & DSIM_STATE_VIDOUT_AVAILABLE)
+ if (dsim->state & DSIM_STATE_VIDOUT_AVAILABLE)
exynos_drm_crtc_te_handler(encoder->crtc);
return IRQ_HANDLED;
}
-static void exynos_dsi_enable_irq(struct exynos_dsi *dsi)
-{
- enable_irq(dsi->irq);
-
- if (dsi->te_gpio)
- enable_irq(gpiod_to_irq(dsi->te_gpio));
-}
-
-static void exynos_dsi_disable_irq(struct exynos_dsi *dsi)
-{
- if (dsi->te_gpio)
- disable_irq(gpiod_to_irq(dsi->te_gpio));
-
- disable_irq(dsi->irq);
-}
-
-static int exynos_dsi_init(struct exynos_dsi *dsi)
-{
- const struct exynos_dsi_driver_data *driver_data = dsi->driver_data;
-
- exynos_dsi_reset(dsi);
- exynos_dsi_enable_irq(dsi);
-
- if (driver_data->reg_values[RESET_TYPE] == DSIM_FUNCRST)
- exynos_dsi_enable_lane(dsi, BIT(dsi->lanes) - 1);
-
- exynos_dsi_enable_clock(dsi);
- if (driver_data->wait_for_reset)
- exynos_dsi_wait_for_reset(dsi);
- exynos_dsi_set_phy_ctrl(dsi);
- exynos_dsi_init_link(dsi);
-
- return 0;
-}
-
-static int exynos_dsi_register_te_irq(struct exynos_dsi *dsi,
- struct device *panel)
-{
- int ret;
- int te_gpio_irq;
-
- dsi->te_gpio = gpiod_get_optional(panel, "te", GPIOD_IN);
- if (!dsi->te_gpio) {
- return 0;
- } else if (IS_ERR(dsi->te_gpio)) {
- dev_err(dsi->dev, "gpio request failed with %ld\n",
- PTR_ERR(dsi->te_gpio));
- return PTR_ERR(dsi->te_gpio);
- }
-
- te_gpio_irq = gpiod_to_irq(dsi->te_gpio);
-
- ret = request_threaded_irq(te_gpio_irq, exynos_dsi_te_irq_handler, NULL,
- IRQF_TRIGGER_RISING | IRQF_NO_AUTOEN, "TE", dsi);
- if (ret) {
- dev_err(dsi->dev, "request interrupt failed with %d\n", ret);
- gpiod_put(dsi->te_gpio);
- return ret;
- }
-
- return 0;
-}
-
-static void exynos_dsi_unregister_te_irq(struct exynos_dsi *dsi)
-{
- if (dsi->te_gpio) {
- free_irq(gpiod_to_irq(dsi->te_gpio), dsi);
- gpiod_put(dsi->te_gpio);
- }
-}
-
-static void exynos_dsi_atomic_pre_enable(struct drm_bridge *bridge,
- struct drm_bridge_state *old_bridge_state)
-{
- struct exynos_dsi *dsi = bridge_to_dsi(bridge);
- int ret;
-
- if (dsi->state & DSIM_STATE_ENABLED)
- return;
-
- ret = pm_runtime_resume_and_get(dsi->dev);
- if (ret < 0) {
- dev_err(dsi->dev, "failed to enable DSI device.\n");
- return;
- }
-
- dsi->state |= DSIM_STATE_ENABLED;
-}
-
-static void exynos_dsi_atomic_enable(struct drm_bridge *bridge,
- struct drm_bridge_state *old_bridge_state)
-{
- struct exynos_dsi *dsi = bridge_to_dsi(bridge);
-
- exynos_dsi_set_display_mode(dsi);
- exynos_dsi_set_display_enable(dsi, true);
-
- dsi->state |= DSIM_STATE_VIDOUT_AVAILABLE;
-
- return;
-}
-
-static void exynos_dsi_atomic_disable(struct drm_bridge *bridge,
- struct drm_bridge_state *old_bridge_state)
-{
- struct exynos_dsi *dsi = bridge_to_dsi(bridge);
-
- if (!(dsi->state & DSIM_STATE_ENABLED))
- return;
-
- dsi->state &= ~DSIM_STATE_VIDOUT_AVAILABLE;
-}
-
-static void exynos_dsi_atomic_post_disable(struct drm_bridge *bridge,
- struct drm_bridge_state *old_bridge_state)
-{
- struct exynos_dsi *dsi = bridge_to_dsi(bridge);
-
- exynos_dsi_set_display_enable(dsi, false);
-
- dsi->state &= ~DSIM_STATE_ENABLED;
- pm_runtime_put_sync(dsi->dev);
-}
-
-static void exynos_dsi_mode_set(struct drm_bridge *bridge,
- const struct drm_display_mode *mode,
- const struct drm_display_mode *adjusted_mode)
-{
- struct exynos_dsi *dsi = bridge_to_dsi(bridge);
-
- drm_mode_copy(&dsi->mode, adjusted_mode);
-}
-
-static int exynos_dsi_attach(struct drm_bridge *bridge,
- enum drm_bridge_attach_flags flags)
-{
- struct exynos_dsi *dsi = bridge_to_dsi(bridge);
-
- return drm_bridge_attach(bridge->encoder, dsi->out_bridge, NULL, flags);
-}
-
-static const struct drm_bridge_funcs exynos_dsi_bridge_funcs = {
- .atomic_duplicate_state = drm_atomic_helper_bridge_duplicate_state,
- .atomic_destroy_state = drm_atomic_helper_bridge_destroy_state,
- .atomic_reset = drm_atomic_helper_bridge_reset,
- .atomic_pre_enable = exynos_dsi_atomic_pre_enable,
- .atomic_enable = exynos_dsi_atomic_enable,
- .atomic_disable = exynos_dsi_atomic_disable,
- .atomic_post_disable = exynos_dsi_atomic_post_disable,
- .mode_set = exynos_dsi_mode_set,
- .attach = exynos_dsi_attach,
-};
-
-MODULE_DEVICE_TABLE(of, exynos_dsi_of_match);
-
-static int exynos_dsi_host_attach(struct mipi_dsi_host *host,
+static int exynos_dsi_host_attach(struct samsung_dsim *dsim,
struct mipi_dsi_device *device)
{
- struct exynos_dsi *dsi = host_to_dsi(host);
- struct device *dev = dsi->dev;
+ struct exynos_dsi *dsi = dsim->priv;
struct drm_encoder *encoder = &dsi->encoder;
struct drm_device *drm = encoder->dev;
- struct drm_panel *panel;
- int ret;
-
- panel = of_drm_find_panel(device->dev.of_node);
- if (!IS_ERR(panel)) {
- dsi->out_bridge = devm_drm_panel_bridge_add(dev, panel);
- } else {
- dsi->out_bridge = of_drm_find_bridge(device->dev.of_node);
- if (!dsi->out_bridge)
- dsi->out_bridge = ERR_PTR(-EINVAL);
- }
-
- if (IS_ERR(dsi->out_bridge)) {
- ret = PTR_ERR(dsi->out_bridge);
- DRM_DEV_ERROR(dev, "failed to find the bridge: %d\n", ret);
- return ret;
- }
-
- DRM_DEV_INFO(dev, "Attached %s device\n", device->name);
-
- drm_bridge_add(&dsi->bridge);
- drm_bridge_attach(encoder, &dsi->bridge, NULL, 0);
-
- /*
- * This is a temporary solution and should be made by more generic way.
- *
- * If attached panel device is for command mode one, dsi should register
- * TE interrupt handler.
- */
- if (!(device->mode_flags & MIPI_DSI_MODE_VIDEO)) {
- ret = exynos_dsi_register_te_irq(dsi, &device->dev);
- if (ret)
- return ret;
- }
+ drm_bridge_attach(encoder, &dsim->bridge,
+ list_first_entry_or_null(&encoder->bridge_chain,
+ struct drm_bridge,
+ chain_node), 0);
mutex_lock(&drm->mode_config.mutex);
- dsi->lanes = device->lanes;
- dsi->format = device->format;
- dsi->mode_flags = device->mode_flags;
+ dsim->lanes = device->lanes;
+ dsim->format = device->format;
+ dsim->mode_flags = device->mode_flags;
exynos_drm_crtc_get_by_type(drm, EXYNOS_DISPLAY_TYPE_LCD)->i80_mode =
- !(dsi->mode_flags & MIPI_DSI_MODE_VIDEO);
+ !(dsim->mode_flags & MIPI_DSI_MODE_VIDEO);
mutex_unlock(&drm->mode_config.mutex);
@@ -1504,100 +60,20 @@ static int exynos_dsi_host_attach(struct mipi_dsi_host *host,
return 0;
}
-static int exynos_dsi_host_detach(struct mipi_dsi_host *host,
- struct mipi_dsi_device *device)
+static void exynos_dsi_host_detach(struct samsung_dsim *dsim,
+ struct mipi_dsi_device *device)
{
- struct exynos_dsi *dsi = host_to_dsi(host);
+ struct exynos_dsi *dsi = dsim->priv;
struct drm_device *drm = dsi->encoder.dev;
- if (dsi->out_bridge->funcs->detach)
- dsi->out_bridge->funcs->detach(dsi->out_bridge);
- dsi->out_bridge = NULL;
-
if (drm->mode_config.poll_enabled)
drm_kms_helper_hotplug_event(drm);
-
- exynos_dsi_unregister_te_irq(dsi);
-
- drm_bridge_remove(&dsi->bridge);
-
- return 0;
-}
-
-static ssize_t exynos_dsi_host_transfer(struct mipi_dsi_host *host,
- const struct mipi_dsi_msg *msg)
-{
- struct exynos_dsi *dsi = host_to_dsi(host);
- struct exynos_dsi_transfer xfer;
- int ret;
-
- if (!(dsi->state & DSIM_STATE_ENABLED))
- return -EINVAL;
-
- if (!(dsi->state & DSIM_STATE_INITIALIZED)) {
- ret = exynos_dsi_init(dsi);
- if (ret)
- return ret;
- dsi->state |= DSIM_STATE_INITIALIZED;
- }
-
- ret = mipi_dsi_create_packet(&xfer.packet, msg);
- if (ret < 0)
- return ret;
-
- xfer.rx_len = msg->rx_len;
- xfer.rx_payload = msg->rx_buf;
- xfer.flags = msg->flags;
-
- ret = exynos_dsi_transfer(dsi, &xfer);
- return (ret < 0) ? ret : xfer.rx_done;
-}
-
-static const struct mipi_dsi_host_ops exynos_dsi_ops = {
- .attach = exynos_dsi_host_attach,
- .detach = exynos_dsi_host_detach,
- .transfer = exynos_dsi_host_transfer,
-};
-
-static int exynos_dsi_of_read_u32(const struct device_node *np,
- const char *propname, u32 *out_value)
-{
- int ret = of_property_read_u32(np, propname, out_value);
-
- if (ret < 0)
- pr_err("%pOF: failed to get '%s' property\n", np, propname);
-
- return ret;
}
-static int exynos_dsi_parse_dt(struct exynos_dsi *dsi)
+static int exynos_dsi_bind(struct device *dev, struct device *master, void *data)
{
- struct device *dev = dsi->dev;
- struct device_node *node = dev->of_node;
- int ret;
-
- ret = exynos_dsi_of_read_u32(node, "samsung,pll-clock-frequency",
- &dsi->pll_clk_rate);
- if (ret < 0)
- return ret;
-
- ret = exynos_dsi_of_read_u32(node, "samsung,burst-clock-frequency",
- &dsi->burst_clk_rate);
- if (ret < 0)
- return ret;
-
- ret = exynos_dsi_of_read_u32(node, "samsung,esc-clock-frequency",
- &dsi->esc_clk_rate);
- if (ret < 0)
- return ret;
-
- return 0;
-}
-
-static int exynos_dsi_bind(struct device *dev, struct device *master,
- void *data)
-{
- struct exynos_dsi *dsi = dev_get_drvdata(dev);
+ struct samsung_dsim *dsim = dev_get_drvdata(dev);
+ struct exynos_dsi *dsi = dsim->priv;
struct drm_encoder *encoder = &dsi->encoder;
struct drm_device *drm_dev = data;
int ret;
@@ -1608,17 +84,16 @@ static int exynos_dsi_bind(struct device *dev, struct device *master,
if (ret < 0)
return ret;
- return mipi_dsi_host_register(&dsi->dsi_host);
+ return mipi_dsi_host_register(&dsim->dsi_host);
}
-static void exynos_dsi_unbind(struct device *dev, struct device *master,
- void *data)
+static void exynos_dsi_unbind(struct device *dev, struct device *master, void *data)
{
- struct exynos_dsi *dsi = dev_get_drvdata(dev);
+ struct samsung_dsim *dsim = dev_get_drvdata(dev);
- exynos_dsi_atomic_disable(&dsi->bridge, NULL);
+ dsim->bridge.funcs->atomic_disable(&dsim->bridge, NULL);
- mipi_dsi_host_unregister(&dsi->dsi_host);
+ mipi_dsi_host_unregister(&dsim->dsi_host);
}
static const struct component_ops exynos_dsi_component_ops = {
@@ -1626,188 +101,90 @@ static const struct component_ops exynos_dsi_component_ops = {
.unbind = exynos_dsi_unbind,
};
-static int exynos_dsi_probe(struct platform_device *pdev)
+static int exynos_dsi_register_host(struct samsung_dsim *dsim)
{
- struct device *dev = &pdev->dev;
struct exynos_dsi *dsi;
- int ret, i;
- dsi = devm_kzalloc(dev, sizeof(*dsi), GFP_KERNEL);
+ dsi = devm_kzalloc(dsim->dev, sizeof(*dsi), GFP_KERNEL);
if (!dsi)
return -ENOMEM;
- init_completion(&dsi->completed);
- spin_lock_init(&dsi->transfer_lock);
- INIT_LIST_HEAD(&dsi->transfer_list);
-
- dsi->dsi_host.ops = &exynos_dsi_ops;
- dsi->dsi_host.dev = dev;
-
- dsi->dev = dev;
- dsi->driver_data = of_device_get_match_data(dev);
-
- dsi->supplies[0].supply = "vddcore";
- dsi->supplies[1].supply = "vddio";
- ret = devm_regulator_bulk_get(dev, ARRAY_SIZE(dsi->supplies),
- dsi->supplies);
- if (ret)
- return dev_err_probe(dev, ret, "failed to get regulators\n");
-
- dsi->clks = devm_kcalloc(dev,
- dsi->driver_data->num_clks, sizeof(*dsi->clks),
- GFP_KERNEL);
- if (!dsi->clks)
- return -ENOMEM;
-
- for (i = 0; i < dsi->driver_data->num_clks; i++) {
- dsi->clks[i] = devm_clk_get(dev, clk_names[i]);
- if (IS_ERR(dsi->clks[i])) {
- if (strcmp(clk_names[i], "sclk_mipi") == 0) {
- dsi->clks[i] = devm_clk_get(dev,
- OLD_SCLK_MIPI_CLK_NAME);
- if (!IS_ERR(dsi->clks[i]))
- continue;
- }
-
- dev_info(dev, "failed to get the clock: %s\n",
- clk_names[i]);
- return PTR_ERR(dsi->clks[i]);
- }
- }
-
- dsi->reg_base = devm_platform_ioremap_resource(pdev, 0);
- if (IS_ERR(dsi->reg_base))
- return PTR_ERR(dsi->reg_base);
-
- dsi->phy = devm_phy_get(dev, "dsim");
- if (IS_ERR(dsi->phy)) {
- dev_info(dev, "failed to get dsim phy\n");
- return PTR_ERR(dsi->phy);
- }
-
- dsi->irq = platform_get_irq(pdev, 0);
- if (dsi->irq < 0)
- return dsi->irq;
-
- ret = devm_request_threaded_irq(dev, dsi->irq, NULL,
- exynos_dsi_irq,
- IRQF_ONESHOT | IRQF_NO_AUTOEN,
- dev_name(dev), dsi);
- if (ret) {
- dev_err(dev, "failed to request dsi irq\n");
- return ret;
- }
-
- ret = exynos_dsi_parse_dt(dsi);
- if (ret)
- return ret;
-
- platform_set_drvdata(pdev, dsi);
-
- pm_runtime_enable(dev);
-
- dsi->bridge.funcs = &exynos_dsi_bridge_funcs;
- dsi->bridge.of_node = dev->of_node;
- dsi->bridge.type = DRM_MODE_CONNECTOR_DSI;
-
- ret = component_add(dev, &exynos_dsi_component_ops);
- if (ret)
- goto err_disable_runtime;
+ dsim->priv = dsi;
+ dsim->bridge.pre_enable_prev_first = true;
- return 0;
-
-err_disable_runtime:
- pm_runtime_disable(dev);
-
- return ret;
+ return component_add(dsim->dev, &exynos_dsi_component_ops);
}
-static int exynos_dsi_remove(struct platform_device *pdev)
+static void exynos_dsi_unregister_host(struct samsung_dsim *dsim)
{
- pm_runtime_disable(&pdev->dev);
-
- component_del(&pdev->dev, &exynos_dsi_component_ops);
-
- return 0;
-}
-
-static int __maybe_unused exynos_dsi_suspend(struct device *dev)
-{
- struct exynos_dsi *dsi = dev_get_drvdata(dev);
- const struct exynos_dsi_driver_data *driver_data = dsi->driver_data;
- int ret, i;
-
- usleep_range(10000, 20000);
-
- if (dsi->state & DSIM_STATE_INITIALIZED) {
- dsi->state &= ~DSIM_STATE_INITIALIZED;
-
- exynos_dsi_disable_clock(dsi);
-
- exynos_dsi_disable_irq(dsi);
- }
-
- dsi->state &= ~DSIM_STATE_CMD_LPM;
-
- phy_power_off(dsi->phy);
-
- for (i = driver_data->num_clks - 1; i > -1; i--)
- clk_disable_unprepare(dsi->clks[i]);
-
- ret = regulator_bulk_disable(ARRAY_SIZE(dsi->supplies), dsi->supplies);
- if (ret < 0)
- dev_err(dsi->dev, "cannot disable regulators %d\n", ret);
-
- return 0;
+ component_del(dsim->dev, &exynos_dsi_component_ops);
}
-static int __maybe_unused exynos_dsi_resume(struct device *dev)
-{
- struct exynos_dsi *dsi = dev_get_drvdata(dev);
- const struct exynos_dsi_driver_data *driver_data = dsi->driver_data;
- int ret, i;
-
- ret = regulator_bulk_enable(ARRAY_SIZE(dsi->supplies), dsi->supplies);
- if (ret < 0) {
- dev_err(dsi->dev, "cannot enable regulators %d\n", ret);
- return ret;
- }
+static const struct samsung_dsim_host_ops exynos_dsi_exynos_host_ops = {
+ .register_host = exynos_dsi_register_host,
+ .unregister_host = exynos_dsi_unregister_host,
+ .attach = exynos_dsi_host_attach,
+ .detach = exynos_dsi_host_detach,
+ .te_irq_handler = exynos_dsi_te_irq_handler,
+};
- for (i = 0; i < driver_data->num_clks; i++) {
- ret = clk_prepare_enable(dsi->clks[i]);
- if (ret < 0)
- goto err_clk;
- }
+static const struct samsung_dsim_plat_data exynos3250_dsi_pdata = {
+ .hw_type = DSIM_TYPE_EXYNOS3250,
+ .host_ops = &exynos_dsi_exynos_host_ops,
+};
- ret = phy_power_on(dsi->phy);
- if (ret < 0) {
- dev_err(dsi->dev, "cannot enable phy %d\n", ret);
- goto err_clk;
- }
+static const struct samsung_dsim_plat_data exynos4210_dsi_pdata = {
+ .hw_type = DSIM_TYPE_EXYNOS4210,
+ .host_ops = &exynos_dsi_exynos_host_ops,
+};
- return 0;
+static const struct samsung_dsim_plat_data exynos5410_dsi_pdata = {
+ .hw_type = DSIM_TYPE_EXYNOS5410,
+ .host_ops = &exynos_dsi_exynos_host_ops,
+};
-err_clk:
- while (--i > -1)
- clk_disable_unprepare(dsi->clks[i]);
- regulator_bulk_disable(ARRAY_SIZE(dsi->supplies), dsi->supplies);
+static const struct samsung_dsim_plat_data exynos5422_dsi_pdata = {
+ .hw_type = DSIM_TYPE_EXYNOS5422,
+ .host_ops = &exynos_dsi_exynos_host_ops,
+};
- return ret;
-}
+static const struct samsung_dsim_plat_data exynos5433_dsi_pdata = {
+ .hw_type = DSIM_TYPE_EXYNOS5433,
+ .host_ops = &exynos_dsi_exynos_host_ops,
+};
-static const struct dev_pm_ops exynos_dsi_pm_ops = {
- SET_RUNTIME_PM_OPS(exynos_dsi_suspend, exynos_dsi_resume, NULL)
- SET_SYSTEM_SLEEP_PM_OPS(pm_runtime_force_suspend,
- pm_runtime_force_resume)
+static const struct of_device_id exynos_dsi_of_match[] = {
+ {
+ .compatible = "samsung,exynos3250-mipi-dsi",
+ .data = &exynos3250_dsi_pdata,
+ },
+ {
+ .compatible = "samsung,exynos4210-mipi-dsi",
+ .data = &exynos4210_dsi_pdata,
+ },
+ {
+ .compatible = "samsung,exynos5410-mipi-dsi",
+ .data = &exynos5410_dsi_pdata,
+ },
+ {
+ .compatible = "samsung,exynos5422-mipi-dsi",
+ .data = &exynos5422_dsi_pdata,
+ },
+ {
+ .compatible = "samsung,exynos5433-mipi-dsi",
+ .data = &exynos5433_dsi_pdata,
+ },
+ { /* sentinel. */ }
};
+MODULE_DEVICE_TABLE(of, exynos_dsi_of_match);
struct platform_driver dsi_driver = {
- .probe = exynos_dsi_probe,
- .remove = exynos_dsi_remove,
+ .probe = samsung_dsim_probe,
+ .remove = samsung_dsim_remove,
.driver = {
.name = "exynos-dsi",
.owner = THIS_MODULE,
- .pm = &exynos_dsi_pm_ops,
+ .pm = &samsung_dsim_pm_ops,
.of_match_table = exynos_dsi_of_match,
},
};
diff --git a/drivers/gpu/drm/exynos/exynos_drm_fb.c b/drivers/gpu/drm/exynos/exynos_drm_fb.c
index 97f2dee2db29..fc1c5608db96 100644
--- a/drivers/gpu/drm/exynos/exynos_drm_fb.c
+++ b/drivers/gpu/drm/exynos/exynos_drm_fb.c
@@ -11,7 +11,6 @@
#include <drm/drm_atomic.h>
#include <drm/drm_atomic_helper.h>
#include <drm/drm_crtc.h>
-#include <drm/drm_fb_helper.h>
#include <drm/drm_framebuffer.h>
#include <drm/drm_fourcc.h>
#include <drm/drm_gem_framebuffer_helper.h>
@@ -157,7 +156,6 @@ static struct drm_mode_config_helper_funcs exynos_drm_mode_config_helpers = {
static const struct drm_mode_config_funcs exynos_drm_mode_config_funcs = {
.fb_create = exynos_user_fb_create,
- .output_poll_changed = drm_fb_helper_output_poll_changed,
.atomic_check = drm_atomic_helper_check,
.atomic_commit = drm_atomic_helper_commit,
};
diff --git a/drivers/gpu/drm/exynos/exynos_drm_fbdev.c b/drivers/gpu/drm/exynos/exynos_drm_fbdev.c
index 767afd2bfa82..ea4b3d248aac 100644
--- a/drivers/gpu/drm/exynos/exynos_drm_fbdev.c
+++ b/drivers/gpu/drm/exynos/exynos_drm_fbdev.c
@@ -8,16 +8,12 @@
* Seung-Woo Kim <sw0312.kim@samsung.com>
*/
-#include <linux/console.h>
-#include <linux/dma-mapping.h>
-#include <linux/vmalloc.h>
-
-#include <drm/drm_crtc.h>
+#include <drm/drm_crtc_helper.h>
+#include <drm/drm_drv.h>
#include <drm/drm_fb_helper.h>
-#include <drm/drm_fourcc.h>
#include <drm/drm_framebuffer.h>
+#include <drm/drm_gem_framebuffer_helper.h>
#include <drm/drm_prime.h>
-#include <drm/drm_probe_helper.h>
#include <drm/exynos_drm.h>
#include "exynos_drm_drv.h"
@@ -27,31 +23,38 @@
#define MAX_CONNECTOR 4
#define PREFERRED_BPP 32
-#define to_exynos_fbdev(x) container_of(x, struct exynos_drm_fbdev,\
- drm_fb_helper)
+static int exynos_drm_fb_mmap(struct fb_info *info, struct vm_area_struct *vma)
+{
+ struct drm_fb_helper *helper = info->par;
+ struct drm_gem_object *obj = drm_gem_fb_get_obj(helper->fb, 0);
-struct exynos_drm_fbdev {
- struct drm_fb_helper drm_fb_helper;
- struct exynos_drm_gem *exynos_gem;
-};
+ return drm_gem_prime_mmap(obj, vma);
+}
-static int exynos_drm_fb_mmap(struct fb_info *info,
- struct vm_area_struct *vma)
+static void exynos_drm_fb_destroy(struct fb_info *info)
{
- struct drm_fb_helper *helper = info->par;
- struct exynos_drm_fbdev *exynos_fbd = to_exynos_fbdev(helper);
- struct exynos_drm_gem *exynos_gem = exynos_fbd->exynos_gem;
+ struct drm_fb_helper *fb_helper = info->par;
+ struct drm_framebuffer *fb = fb_helper->fb;
- return drm_gem_prime_mmap(&exynos_gem->base, vma);
+ drm_fb_helper_fini(fb_helper);
+
+ drm_framebuffer_remove(fb);
+
+ drm_client_release(&fb_helper->client);
+ drm_fb_helper_unprepare(fb_helper);
+ kfree(fb_helper);
}
static const struct fb_ops exynos_drm_fb_ops = {
.owner = THIS_MODULE,
DRM_FB_HELPER_DEFAULT_OPS,
.fb_mmap = exynos_drm_fb_mmap,
+ .fb_read = drm_fb_helper_cfb_read,
+ .fb_write = drm_fb_helper_cfb_write,
.fb_fillrect = drm_fb_helper_cfb_fillrect,
.fb_copyarea = drm_fb_helper_cfb_copyarea,
.fb_imageblit = drm_fb_helper_cfb_imageblit,
+ .fb_destroy = exynos_drm_fb_destroy,
};
static int exynos_drm_fbdev_update(struct drm_fb_helper *helper,
@@ -63,7 +66,7 @@ static int exynos_drm_fbdev_update(struct drm_fb_helper *helper,
unsigned int size = fb->width * fb->height * fb->format->cpp[0];
unsigned long offset;
- fbi = drm_fb_helper_alloc_fbi(helper);
+ fbi = drm_fb_helper_alloc_info(helper);
if (IS_ERR(fbi)) {
DRM_DEV_ERROR(to_dma_dev(helper->dev),
"failed to allocate fb info.\n");
@@ -87,7 +90,6 @@ static int exynos_drm_fbdev_update(struct drm_fb_helper *helper,
static int exynos_drm_fbdev_create(struct drm_fb_helper *helper,
struct drm_fb_helper_surface_size *sizes)
{
- struct exynos_drm_fbdev *exynos_fbdev = to_exynos_fbdev(helper);
struct exynos_drm_gem *exynos_gem;
struct drm_device *dev = helper->dev;
struct drm_mode_fb_cmd2 mode_cmd = { 0 };
@@ -111,8 +113,6 @@ static int exynos_drm_fbdev_create(struct drm_fb_helper *helper,
if (IS_ERR(exynos_gem))
return PTR_ERR(exynos_gem);
- exynos_fbdev->exynos_gem = exynos_gem;
-
helper->fb =
exynos_drm_framebuffer_init(dev, &mode_cmd, &exynos_gem, 1);
if (IS_ERR(helper->fb)) {
@@ -125,19 +125,13 @@ static int exynos_drm_fbdev_create(struct drm_fb_helper *helper,
if (ret < 0)
goto err_destroy_framebuffer;
- return ret;
+ return 0;
err_destroy_framebuffer:
drm_framebuffer_cleanup(helper->fb);
+ helper->fb = NULL;
err_destroy_gem:
exynos_drm_gem_destroy(exynos_gem);
-
- /*
- * if failed, all resources allocated above would be released by
- * drm_mode_config_cleanup() when drm_load() had been called prior
- * to any specific driver such as fimd or hdmi driver.
- */
-
return ret;
}
@@ -145,79 +139,92 @@ static const struct drm_fb_helper_funcs exynos_drm_fb_helper_funcs = {
.fb_probe = exynos_drm_fbdev_create,
};
-int exynos_drm_fbdev_init(struct drm_device *dev)
-{
- struct exynos_drm_fbdev *fbdev;
- struct exynos_drm_private *private = dev->dev_private;
- struct drm_fb_helper *helper;
- int ret;
+/*
+ * struct drm_client
+ */
- if (!dev->mode_config.num_crtc)
- return 0;
+static void exynos_drm_fbdev_client_unregister(struct drm_client_dev *client)
+{
+ struct drm_fb_helper *fb_helper = drm_fb_helper_from_client(client);
+
+ if (fb_helper->info) {
+ drm_fb_helper_unregister_info(fb_helper);
+ } else {
+ drm_client_release(&fb_helper->client);
+ drm_fb_helper_unprepare(fb_helper);
+ kfree(fb_helper);
+ }
+}
- fbdev = kzalloc(sizeof(*fbdev), GFP_KERNEL);
- if (!fbdev)
- return -ENOMEM;
+static int exynos_drm_fbdev_client_restore(struct drm_client_dev *client)
+{
+ drm_fb_helper_lastclose(client->dev);
- private->fb_helper = helper = &fbdev->drm_fb_helper;
+ return 0;
+}
- drm_fb_helper_prepare(dev, helper, &exynos_drm_fb_helper_funcs);
+static int exynos_drm_fbdev_client_hotplug(struct drm_client_dev *client)
+{
+ struct drm_fb_helper *fb_helper = drm_fb_helper_from_client(client);
+ struct drm_device *dev = client->dev;
+ int ret;
- ret = drm_fb_helper_init(dev, helper);
- if (ret < 0) {
- DRM_DEV_ERROR(dev->dev,
- "failed to initialize drm fb helper.\n");
- goto err_init;
- }
+ if (dev->fb_helper)
+ return drm_fb_helper_hotplug_event(dev->fb_helper);
- ret = drm_fb_helper_initial_config(helper, PREFERRED_BPP);
- if (ret < 0) {
- DRM_DEV_ERROR(dev->dev,
- "failed to set up hw configuration.\n");
- goto err_setup;
- }
+ ret = drm_fb_helper_init(dev, fb_helper);
+ if (ret)
+ goto err_drm_err;
- return 0;
+ if (!drm_drv_uses_atomic_modeset(dev))
+ drm_helper_disable_unused_functions(dev);
-err_setup:
- drm_fb_helper_fini(helper);
+ ret = drm_fb_helper_initial_config(fb_helper);
+ if (ret)
+ goto err_drm_fb_helper_fini;
-err_init:
- private->fb_helper = NULL;
- kfree(fbdev);
+ return 0;
+err_drm_fb_helper_fini:
+ drm_fb_helper_fini(fb_helper);
+err_drm_err:
+ drm_err(dev, "Failed to setup fbdev emulation (ret=%d)\n", ret);
return ret;
}
-static void exynos_drm_fbdev_destroy(struct drm_device *dev,
- struct drm_fb_helper *fb_helper)
+static const struct drm_client_funcs exynos_drm_fbdev_client_funcs = {
+ .owner = THIS_MODULE,
+ .unregister = exynos_drm_fbdev_client_unregister,
+ .restore = exynos_drm_fbdev_client_restore,
+ .hotplug = exynos_drm_fbdev_client_hotplug,
+};
+
+void exynos_drm_fbdev_setup(struct drm_device *dev)
{
- struct drm_framebuffer *fb;
+ struct drm_fb_helper *fb_helper;
+ int ret;
- /* release drm framebuffer and real buffer */
- if (fb_helper->fb && fb_helper->fb->funcs) {
- fb = fb_helper->fb;
- if (fb)
- drm_framebuffer_remove(fb);
- }
+ drm_WARN(dev, !dev->registered, "Device has not been registered.\n");
+ drm_WARN(dev, dev->fb_helper, "fb_helper is already set!\n");
- drm_fb_helper_unregister_fbi(fb_helper);
+ fb_helper = kzalloc(sizeof(*fb_helper), GFP_KERNEL);
+ if (!fb_helper)
+ return;
+ drm_fb_helper_prepare(dev, fb_helper, PREFERRED_BPP, &exynos_drm_fb_helper_funcs);
- drm_fb_helper_fini(fb_helper);
-}
+ ret = drm_client_init(dev, &fb_helper->client, "fbdev", &exynos_drm_fbdev_client_funcs);
+ if (ret)
+ goto err_drm_client_init;
-void exynos_drm_fbdev_fini(struct drm_device *dev)
-{
- struct exynos_drm_private *private = dev->dev_private;
- struct exynos_drm_fbdev *fbdev;
+ ret = exynos_drm_fbdev_client_hotplug(&fb_helper->client);
+ if (ret)
+ drm_dbg_kms(dev, "client hotplug ret=%d\n", ret);
- if (!private || !private->fb_helper)
- return;
+ drm_client_register(&fb_helper->client);
- fbdev = to_exynos_fbdev(private->fb_helper);
+ return;
- exynos_drm_fbdev_destroy(dev, private->fb_helper);
- kfree(fbdev);
- private->fb_helper = NULL;
+err_drm_client_init:
+ drm_fb_helper_unprepare(fb_helper);
+ kfree(fb_helper);
}
-
diff --git a/drivers/gpu/drm/exynos/exynos_drm_fbdev.h b/drivers/gpu/drm/exynos/exynos_drm_fbdev.h
index 3b1e98e84580..1e1dea627cd9 100644
--- a/drivers/gpu/drm/exynos/exynos_drm_fbdev.h
+++ b/drivers/gpu/drm/exynos/exynos_drm_fbdev.h
@@ -12,27 +12,11 @@
#define _EXYNOS_DRM_FBDEV_H_
#ifdef CONFIG_DRM_FBDEV_EMULATION
-
-int exynos_drm_fbdev_init(struct drm_device *dev);
-void exynos_drm_fbdev_fini(struct drm_device *dev);
-
+void exynos_drm_fbdev_setup(struct drm_device *dev);
#else
-
-static inline int exynos_drm_fbdev_init(struct drm_device *dev)
-{
- return 0;
-}
-
-static inline void exynos_drm_fbdev_fini(struct drm_device *dev)
+static inline void exynos_drm_fbdev_setup(struct drm_device *dev)
{
}
-
-static inline void exynos_drm_fbdev_restore_mode(struct drm_device *dev)
-{
-}
-
-#define exynos_drm_output_poll_changed (NULL)
-
#endif
#endif
diff --git a/drivers/gpu/drm/exynos/exynos_drm_fimc.c b/drivers/gpu/drm/exynos/exynos_drm_fimc.c
index 0ee32e4b1e43..8de2714599fc 100644
--- a/drivers/gpu/drm/exynos/exynos_drm_fimc.c
+++ b/drivers/gpu/drm/exynos/exynos_drm_fimc.c
@@ -1381,7 +1381,6 @@ static int fimc_remove(struct platform_device *pdev)
return 0;
}
-#ifdef CONFIG_PM
static int fimc_runtime_suspend(struct device *dev)
{
struct fimc_context *ctx = get_fimc_context(dev);
@@ -1398,13 +1397,9 @@ static int fimc_runtime_resume(struct device *dev)
DRM_DEV_DEBUG_KMS(dev, "id[%d]\n", ctx->id);
return clk_prepare_enable(ctx->clocks[FIMC_CLK_GATE]);
}
-#endif
-static const struct dev_pm_ops fimc_pm_ops = {
- SET_SYSTEM_SLEEP_PM_OPS(pm_runtime_force_suspend,
- pm_runtime_force_resume)
- SET_RUNTIME_PM_OPS(fimc_runtime_suspend, fimc_runtime_resume, NULL)
-};
+static DEFINE_RUNTIME_DEV_PM_OPS(fimc_pm_ops, fimc_runtime_suspend,
+ fimc_runtime_resume, NULL);
static const struct of_device_id fimc_of_match[] = {
{ .compatible = "samsung,exynos4210-fimc" },
@@ -1420,6 +1415,6 @@ struct platform_driver fimc_driver = {
.of_match_table = fimc_of_match,
.name = "exynos-drm-fimc",
.owner = THIS_MODULE,
- .pm = &fimc_pm_ops,
+ .pm = pm_ptr(&fimc_pm_ops),
},
};
diff --git a/drivers/gpu/drm/exynos/exynos_drm_fimd.c b/drivers/gpu/drm/exynos/exynos_drm_fimd.c
index ae6636e6658e..7f4a0be03dd1 100644
--- a/drivers/gpu/drm/exynos/exynos_drm_fimd.c
+++ b/drivers/gpu/drm/exynos/exynos_drm_fimd.c
@@ -1287,7 +1287,6 @@ static int fimd_remove(struct platform_device *pdev)
return 0;
}
-#ifdef CONFIG_PM
static int exynos_fimd_suspend(struct device *dev)
{
struct fimd_context *ctx = dev_get_drvdata(dev);
@@ -1321,13 +1320,9 @@ static int exynos_fimd_resume(struct device *dev)
return 0;
}
-#endif
-static const struct dev_pm_ops exynos_fimd_pm_ops = {
- SET_RUNTIME_PM_OPS(exynos_fimd_suspend, exynos_fimd_resume, NULL)
- SET_SYSTEM_SLEEP_PM_OPS(pm_runtime_force_suspend,
- pm_runtime_force_resume)
-};
+static DEFINE_RUNTIME_DEV_PM_OPS(exynos_fimd_pm_ops, exynos_fimd_suspend,
+ exynos_fimd_resume, NULL);
struct platform_driver fimd_driver = {
.probe = fimd_probe,
@@ -1335,7 +1330,7 @@ struct platform_driver fimd_driver = {
.driver = {
.name = "exynos4-fb",
.owner = THIS_MODULE,
- .pm = &exynos_fimd_pm_ops,
+ .pm = pm_ptr(&exynos_fimd_pm_ops),
.of_match_table = fimd_driver_dt_match,
},
};
diff --git a/drivers/gpu/drm/exynos/exynos_drm_g2d.c b/drivers/gpu/drm/exynos/exynos_drm_g2d.c
index 471fd6c8135f..ec784e58da5c 100644
--- a/drivers/gpu/drm/exynos/exynos_drm_g2d.c
+++ b/drivers/gpu/drm/exynos/exynos_drm_g2d.c
@@ -477,7 +477,7 @@ static dma_addr_t *g2d_userptr_get_dma_addr(struct g2d_data *g2d,
}
ret = pin_user_pages_fast(start, npages,
- FOLL_FORCE | FOLL_WRITE | FOLL_LONGTERM,
+ FOLL_WRITE | FOLL_LONGTERM,
g2d_userptr->pages);
if (ret != npages) {
DRM_DEV_ERROR(g2d->dev,
@@ -1549,7 +1549,6 @@ static int g2d_remove(struct platform_device *pdev)
return 0;
}
-#ifdef CONFIG_PM_SLEEP
static int g2d_suspend(struct device *dev)
{
struct g2d_data *g2d = dev_get_drvdata(dev);
@@ -1574,9 +1573,7 @@ static int g2d_resume(struct device *dev)
return 0;
}
-#endif
-#ifdef CONFIG_PM
static int g2d_runtime_suspend(struct device *dev)
{
struct g2d_data *g2d = dev_get_drvdata(dev);
@@ -1597,11 +1594,10 @@ static int g2d_runtime_resume(struct device *dev)
return ret;
}
-#endif
static const struct dev_pm_ops g2d_pm_ops = {
- SET_SYSTEM_SLEEP_PM_OPS(g2d_suspend, g2d_resume)
- SET_RUNTIME_PM_OPS(g2d_runtime_suspend, g2d_runtime_resume, NULL)
+ SYSTEM_SLEEP_PM_OPS(g2d_suspend, g2d_resume)
+ RUNTIME_PM_OPS(g2d_runtime_suspend, g2d_runtime_resume, NULL)
};
static const struct of_device_id exynos_g2d_match[] = {
@@ -1617,7 +1613,7 @@ struct platform_driver g2d_driver = {
.driver = {
.name = "exynos-drm-g2d",
.owner = THIS_MODULE,
- .pm = &g2d_pm_ops,
+ .pm = pm_ptr(&g2d_pm_ops),
.of_match_table = exynos_g2d_match,
},
};
diff --git a/drivers/gpu/drm/exynos/exynos_drm_gem.c b/drivers/gpu/drm/exynos/exynos_drm_gem.c
index 3e493f48e0d4..638ca96830e9 100644
--- a/drivers/gpu/drm/exynos/exynos_drm_gem.c
+++ b/drivers/gpu/drm/exynos/exynos_drm_gem.c
@@ -274,7 +274,7 @@ static int exynos_drm_gem_mmap_buffer(struct exynos_drm_gem *exynos_gem,
unsigned long vm_size;
int ret;
- vma->vm_flags &= ~VM_PFNMAP;
+ vm_flags_clear(vma, VM_PFNMAP);
vma->vm_pgoff = 0;
vm_size = vma->vm_end - vma->vm_start;
@@ -368,7 +368,7 @@ static int exynos_drm_gem_mmap(struct drm_gem_object *obj, struct vm_area_struct
if (obj->import_attach)
return dma_buf_mmap(obj->dma_buf, vma, 0);
- vma->vm_flags |= VM_IO | VM_DONTEXPAND | VM_DONTDUMP;
+ vm_flags_set(vma, VM_IO | VM_DONTEXPAND | VM_DONTDUMP);
DRM_DEV_DEBUG_KMS(to_dma_dev(obj->dev), "flags = 0x%x\n",
exynos_gem->flags);
diff --git a/drivers/gpu/drm/exynos/exynos_drm_mic.c b/drivers/gpu/drm/exynos/exynos_drm_mic.c
index 09ce28ee08d9..17bab5b1663f 100644
--- a/drivers/gpu/drm/exynos/exynos_drm_mic.c
+++ b/drivers/gpu/drm/exynos/exynos_drm_mic.c
@@ -340,7 +340,6 @@ static const struct component_ops exynos_mic_component_ops = {
.unbind = exynos_mic_unbind,
};
-#ifdef CONFIG_PM
static int exynos_mic_suspend(struct device *dev)
{
struct exynos_mic *mic = dev_get_drvdata(dev);
@@ -369,13 +368,9 @@ static int exynos_mic_resume(struct device *dev)
}
return 0;
}
-#endif
-static const struct dev_pm_ops exynos_mic_pm_ops = {
- SET_RUNTIME_PM_OPS(exynos_mic_suspend, exynos_mic_resume, NULL)
- SET_SYSTEM_SLEEP_PM_OPS(pm_runtime_force_suspend,
- pm_runtime_force_resume)
-};
+static DEFINE_RUNTIME_DEV_PM_OPS(exynos_mic_pm_ops, exynos_mic_suspend,
+ exynos_mic_resume, NULL);
static int exynos_mic_probe(struct platform_device *pdev)
{
@@ -470,7 +465,7 @@ struct platform_driver mic_driver = {
.remove = exynos_mic_remove,
.driver = {
.name = "exynos-mic",
- .pm = &exynos_mic_pm_ops,
+ .pm = pm_ptr(&exynos_mic_pm_ops),
.owner = THIS_MODULE,
.of_match_table = exynos_mic_of_match,
},
diff --git a/drivers/gpu/drm/exynos/exynos_drm_rotator.c b/drivers/gpu/drm/exynos/exynos_drm_rotator.c
index dec7df35baa9..8706f377c349 100644
--- a/drivers/gpu/drm/exynos/exynos_drm_rotator.c
+++ b/drivers/gpu/drm/exynos/exynos_drm_rotator.c
@@ -340,7 +340,6 @@ static int rotator_remove(struct platform_device *pdev)
return 0;
}
-#ifdef CONFIG_PM
static int rotator_runtime_suspend(struct device *dev)
{
struct rot_context *rot = dev_get_drvdata(dev);
@@ -355,7 +354,6 @@ static int rotator_runtime_resume(struct device *dev)
return clk_prepare_enable(rot->clock);
}
-#endif
static const struct drm_exynos_ipp_limit rotator_s5pv210_rbg888_limits[] = {
{ IPP_SIZE_LIMIT(BUFFER, .h = { 8, SZ_16K }, .v = { 8, SZ_16K }) },
@@ -450,12 +448,8 @@ static const struct of_device_id exynos_rotator_match[] = {
};
MODULE_DEVICE_TABLE(of, exynos_rotator_match);
-static const struct dev_pm_ops rotator_pm_ops = {
- SET_SYSTEM_SLEEP_PM_OPS(pm_runtime_force_suspend,
- pm_runtime_force_resume)
- SET_RUNTIME_PM_OPS(rotator_runtime_suspend, rotator_runtime_resume,
- NULL)
-};
+static DEFINE_RUNTIME_DEV_PM_OPS(rotator_pm_ops, rotator_runtime_suspend,
+ rotator_runtime_resume, NULL);
struct platform_driver rotator_driver = {
.probe = rotator_probe,
@@ -463,7 +457,7 @@ struct platform_driver rotator_driver = {
.driver = {
.name = "exynos-rotator",
.owner = THIS_MODULE,
- .pm = &rotator_pm_ops,
+ .pm = pm_ptr(&rotator_pm_ops),
.of_match_table = exynos_rotator_match,
},
};
diff --git a/drivers/gpu/drm/exynos/exynos_drm_scaler.c b/drivers/gpu/drm/exynos/exynos_drm_scaler.c
index 3c049fb658a3..20608e9780ce 100644
--- a/drivers/gpu/drm/exynos/exynos_drm_scaler.c
+++ b/drivers/gpu/drm/exynos/exynos_drm_scaler.c
@@ -550,8 +550,6 @@ static int scaler_remove(struct platform_device *pdev)
return 0;
}
-#ifdef CONFIG_PM
-
static int clk_disable_unprepare_wrapper(struct clk *clk)
{
clk_disable_unprepare(clk);
@@ -584,13 +582,9 @@ static int scaler_runtime_resume(struct device *dev)
return scaler_clk_ctrl(scaler, true);
}
-#endif
-static const struct dev_pm_ops scaler_pm_ops = {
- SET_SYSTEM_SLEEP_PM_OPS(pm_runtime_force_suspend,
- pm_runtime_force_resume)
- SET_RUNTIME_PM_OPS(scaler_runtime_suspend, scaler_runtime_resume, NULL)
-};
+static DEFINE_RUNTIME_DEV_PM_OPS(scaler_pm_ops, scaler_runtime_suspend,
+ scaler_runtime_resume, NULL);
static const struct drm_exynos_ipp_limit scaler_5420_two_pixel_hv_limits[] = {
{ IPP_SIZE_LIMIT(BUFFER, .h = { 16, SZ_8K }, .v = { 16, SZ_8K }) },
@@ -731,7 +725,7 @@ struct platform_driver scaler_driver = {
.driver = {
.name = "exynos-scaler",
.owner = THIS_MODULE,
- .pm = &scaler_pm_ops,
+ .pm = pm_ptr(&scaler_pm_ops),
.of_match_table = exynos_scaler_match,
},
};
diff --git a/drivers/gpu/drm/fsl-dcu/fsl_dcu_drm_drv.c b/drivers/gpu/drm/fsl-dcu/fsl_dcu_drm_drv.c
index b4acc3422ba4..c09ba019ba5e 100644
--- a/drivers/gpu/drm/fsl-dcu/fsl_dcu_drm_drv.c
+++ b/drivers/gpu/drm/fsl-dcu/fsl_dcu_drm_drv.c
@@ -20,7 +20,7 @@
#include <drm/drm_atomic_helper.h>
#include <drm/drm_drv.h>
-#include <drm/drm_fb_helper.h>
+#include <drm/drm_fbdev_dma.h>
#include <drm/drm_gem_dma_helper.h>
#include <drm/drm_modeset_helper.h>
#include <drm/drm_module.h>
@@ -333,7 +333,7 @@ static int fsl_dcu_drm_probe(struct platform_device *pdev)
if (ret < 0)
goto put;
- drm_fbdev_generic_setup(drm, legacyfb_depth);
+ drm_fbdev_dma_setup(drm, legacyfb_depth);
return 0;
diff --git a/drivers/gpu/drm/fsl-dcu/fsl_dcu_drm_rgb.c b/drivers/gpu/drm/fsl-dcu/fsl_dcu_drm_rgb.c
index 4d4a715b429d..2c2b92324a2e 100644
--- a/drivers/gpu/drm/fsl-dcu/fsl_dcu_drm_rgb.c
+++ b/drivers/gpu/drm/fsl-dcu/fsl_dcu_drm_rgb.c
@@ -60,8 +60,9 @@ static int fsl_dcu_drm_connector_get_modes(struct drm_connector *connector)
return drm_panel_get_modes(fsl_connector->panel, connector);
}
-static int fsl_dcu_drm_connector_mode_valid(struct drm_connector *connector,
- struct drm_display_mode *mode)
+static enum drm_mode_status
+fsl_dcu_drm_connector_mode_valid(struct drm_connector *connector,
+ struct drm_display_mode *mode)
{
if (mode->hdisplay & 0xf)
return MODE_ERROR;
diff --git a/drivers/gpu/drm/gma500/Kconfig b/drivers/gpu/drm/gma500/Kconfig
index 807b989e3c77..2efc0eb41c64 100644
--- a/drivers/gpu/drm/gma500/Kconfig
+++ b/drivers/gpu/drm/gma500/Kconfig
@@ -3,6 +3,8 @@ config DRM_GMA500
tristate "Intel GMA500/600/3600/3650 KMS Framebuffer"
depends on DRM && PCI && X86 && MMU
select DRM_KMS_HELPER
+ select I2C
+ select I2C_ALGOBIT
# GMA500 depends on ACPI_VIDEO when ACPI is enabled, just like i915
select ACPI_VIDEO if ACPI
select BACKLIGHT_CLASS_DEVICE if ACPI
diff --git a/drivers/gpu/drm/gma500/Makefile b/drivers/gpu/drm/gma500/Makefile
index 63012bf2485a..4f302cd5e1a6 100644
--- a/drivers/gpu/drm/gma500/Makefile
+++ b/drivers/gpu/drm/gma500/Makefile
@@ -38,5 +38,6 @@ gma500_gfx-y += \
psb_irq.o
gma500_gfx-$(CONFIG_ACPI) += opregion.o
+gma500_gfx-$(CONFIG_DRM_FBDEV_EMULATION) += fbdev.o
obj-$(CONFIG_DRM_GMA500) += gma500_gfx.o
diff --git a/drivers/gpu/drm/gma500/backlight.c b/drivers/gpu/drm/gma500/backlight.c
index 577a4987b193..8711a7a5b8da 100644
--- a/drivers/gpu/drm/gma500/backlight.c
+++ b/drivers/gpu/drm/gma500/backlight.c
@@ -7,6 +7,8 @@
* Authors: Eric Knopp
*/
+#include <linux/backlight.h>
+
#include <acpi/video.h>
#include "psb_drv.h"
diff --git a/drivers/gpu/drm/gma500/cdv_device.c b/drivers/gpu/drm/gma500/cdv_device.c
index 3065596257e9..3e83299113e3 100644
--- a/drivers/gpu/drm/gma500/cdv_device.c
+++ b/drivers/gpu/drm/gma500/cdv_device.c
@@ -8,6 +8,7 @@
#include <linux/delay.h>
#include <drm/drm.h>
+#include <drm/drm_crtc_helper.h>
#include "cdv_device.h"
#include "gma_device.h"
diff --git a/drivers/gpu/drm/gma500/cdv_intel_crt.c b/drivers/gpu/drm/gma500/cdv_intel_crt.c
index 7ff1e5141150..5a0acd914f76 100644
--- a/drivers/gpu/drm/gma500/cdv_intel_crt.c
+++ b/drivers/gpu/drm/gma500/cdv_intel_crt.c
@@ -28,6 +28,8 @@
#include <linux/i2c.h>
#include <linux/pm_runtime.h>
+#include <drm/drm_crtc_helper.h>
+#include <drm/drm_modeset_helper_vtables.h>
#include <drm/drm_simple_kms_helper.h>
#include "cdv_device.h"
diff --git a/drivers/gpu/drm/gma500/cdv_intel_display.c b/drivers/gpu/drm/gma500/cdv_intel_display.c
index 0c3ddcdc29dc..bbd0abdd8382 100644
--- a/drivers/gpu/drm/gma500/cdv_intel_display.c
+++ b/drivers/gpu/drm/gma500/cdv_intel_display.c
@@ -10,6 +10,7 @@
#include <linux/i2c.h>
#include <drm/drm_crtc.h>
+#include <drm/drm_modeset_helper_vtables.h>
#include "cdv_device.h"
#include "framebuffer.h"
diff --git a/drivers/gpu/drm/gma500/cdv_intel_dp.c b/drivers/gpu/drm/gma500/cdv_intel_dp.c
index 53b967282d6a..8992a95076f2 100644
--- a/drivers/gpu/drm/gma500/cdv_intel_dp.c
+++ b/drivers/gpu/drm/gma500/cdv_intel_dp.c
@@ -33,6 +33,7 @@
#include <drm/drm_crtc.h>
#include <drm/drm_crtc_helper.h>
#include <drm/drm_edid.h>
+#include <drm/drm_modeset_helper_vtables.h>
#include <drm/drm_simple_kms_helper.h>
#include "gma_display.h"
diff --git a/drivers/gpu/drm/gma500/cdv_intel_hdmi.c b/drivers/gpu/drm/gma500/cdv_intel_hdmi.c
index 29ef45f14169..2d95e0471291 100644
--- a/drivers/gpu/drm/gma500/cdv_intel_hdmi.c
+++ b/drivers/gpu/drm/gma500/cdv_intel_hdmi.c
@@ -28,7 +28,9 @@
#include <drm/drm.h>
#include <drm/drm_crtc.h>
+#include <drm/drm_crtc_helper.h>
#include <drm/drm_edid.h>
+#include <drm/drm_modeset_helper_vtables.h>
#include <drm/drm_simple_kms_helper.h>
#include "cdv_device.h"
diff --git a/drivers/gpu/drm/gma500/cdv_intel_lvds.c b/drivers/gpu/drm/gma500/cdv_intel_lvds.c
index be6efcaaa3b3..f08a6803dc18 100644
--- a/drivers/gpu/drm/gma500/cdv_intel_lvds.c
+++ b/drivers/gpu/drm/gma500/cdv_intel_lvds.c
@@ -12,6 +12,8 @@
#include <linux/i2c.h>
#include <linux/pm_runtime.h>
+#include <drm/drm_crtc_helper.h>
+#include <drm/drm_modeset_helper_vtables.h>
#include <drm/drm_simple_kms_helper.h>
#include "cdv_device.h"
diff --git a/drivers/gpu/drm/gma500/fbdev.c b/drivers/gpu/drm/gma500/fbdev.c
new file mode 100644
index 000000000000..62287407e717
--- /dev/null
+++ b/drivers/gpu/drm/gma500/fbdev.c
@@ -0,0 +1,344 @@
+// SPDX-License-Identifier: GPL-2.0-only
+/**************************************************************************
+ * Copyright (c) 2007-2011, Intel Corporation.
+ * All Rights Reserved.
+ *
+ **************************************************************************/
+
+#include <linux/pfn_t.h>
+
+#include <drm/drm_crtc_helper.h>
+#include <drm/drm_drv.h>
+#include <drm/drm_fb_helper.h>
+#include <drm/drm_framebuffer.h>
+
+#include "gem.h"
+#include "psb_drv.h"
+
+/*
+ * VM area struct
+ */
+
+static vm_fault_t psb_fbdev_vm_fault(struct vm_fault *vmf)
+{
+ struct vm_area_struct *vma = vmf->vma;
+ struct fb_info *info = vma->vm_private_data;
+ unsigned long address = vmf->address - (vmf->pgoff << PAGE_SHIFT);
+ unsigned long pfn = info->fix.smem_start >> PAGE_SHIFT;
+ vm_fault_t err = VM_FAULT_SIGBUS;
+ unsigned long page_num = vma_pages(vma);
+ unsigned long i;
+
+ vma->vm_page_prot = pgprot_noncached(vma->vm_page_prot);
+
+ for (i = 0; i < page_num; ++i) {
+ err = vmf_insert_mixed(vma, address, __pfn_to_pfn_t(pfn, PFN_DEV));
+ if (unlikely(err & VM_FAULT_ERROR))
+ break;
+ address += PAGE_SIZE;
+ ++pfn;
+ }
+
+ return err;
+}
+
+static const struct vm_operations_struct psb_fbdev_vm_ops = {
+ .fault = psb_fbdev_vm_fault,
+};
+
+/*
+ * struct fb_ops
+ */
+
+#define CMAP_TOHW(_val, _width) ((((_val) << (_width)) + 0x7FFF - (_val)) >> 16)
+
+static int psb_fbdev_fb_setcolreg(unsigned int regno,
+ unsigned int red, unsigned int green,
+ unsigned int blue, unsigned int transp,
+ struct fb_info *info)
+{
+ struct drm_fb_helper *fb_helper = info->par;
+ struct drm_framebuffer *fb = fb_helper->fb;
+ uint32_t v;
+
+ if (!fb)
+ return -ENOMEM;
+
+ if (regno > 255)
+ return 1;
+
+ red = CMAP_TOHW(red, info->var.red.length);
+ blue = CMAP_TOHW(blue, info->var.blue.length);
+ green = CMAP_TOHW(green, info->var.green.length);
+ transp = CMAP_TOHW(transp, info->var.transp.length);
+
+ v = (red << info->var.red.offset) |
+ (green << info->var.green.offset) |
+ (blue << info->var.blue.offset) |
+ (transp << info->var.transp.offset);
+
+ if (regno < 16) {
+ switch (fb->format->cpp[0] * 8) {
+ case 16:
+ ((uint32_t *) info->pseudo_palette)[regno] = v;
+ break;
+ case 24:
+ case 32:
+ ((uint32_t *) info->pseudo_palette)[regno] = v;
+ break;
+ }
+ }
+
+ return 0;
+}
+
+static int psb_fbdev_fb_mmap(struct fb_info *info, struct vm_area_struct *vma)
+{
+ if (vma->vm_pgoff != 0)
+ return -EINVAL;
+ if (vma->vm_pgoff > (~0UL >> PAGE_SHIFT))
+ return -EINVAL;
+
+ /*
+ * If this is a GEM object then info->screen_base is the virtual
+ * kernel remapping of the object. FIXME: Review if this is
+ * suitable for our mmap work
+ */
+ vma->vm_ops = &psb_fbdev_vm_ops;
+ vma->vm_private_data = info;
+ vm_flags_set(vma, VM_IO | VM_MIXEDMAP | VM_DONTEXPAND | VM_DONTDUMP);
+
+ return 0;
+}
+
+static void psb_fbdev_fb_destroy(struct fb_info *info)
+{
+ struct drm_fb_helper *fb_helper = info->par;
+ struct drm_framebuffer *fb = fb_helper->fb;
+ struct drm_gem_object *obj = fb->obj[0];
+
+ drm_fb_helper_fini(fb_helper);
+
+ drm_framebuffer_unregister_private(fb);
+ fb->obj[0] = NULL;
+ drm_framebuffer_cleanup(fb);
+ kfree(fb);
+
+ drm_gem_object_put(obj);
+
+ drm_client_release(&fb_helper->client);
+
+ drm_fb_helper_unprepare(fb_helper);
+ kfree(fb_helper);
+}
+
+static const struct fb_ops psb_fbdev_fb_ops = {
+ .owner = THIS_MODULE,
+ DRM_FB_HELPER_DEFAULT_OPS,
+ .fb_setcolreg = psb_fbdev_fb_setcolreg,
+ .fb_read = drm_fb_helper_cfb_read,
+ .fb_write = drm_fb_helper_cfb_write,
+ .fb_fillrect = drm_fb_helper_cfb_fillrect,
+ .fb_copyarea = drm_fb_helper_cfb_copyarea,
+ .fb_imageblit = drm_fb_helper_cfb_imageblit,
+ .fb_mmap = psb_fbdev_fb_mmap,
+ .fb_destroy = psb_fbdev_fb_destroy,
+};
+
+/*
+ * struct drm_fb_helper_funcs
+ */
+
+static int psb_fbdev_fb_probe(struct drm_fb_helper *fb_helper,
+ struct drm_fb_helper_surface_size *sizes)
+{
+ struct drm_device *dev = fb_helper->dev;
+ struct drm_psb_private *dev_priv = to_drm_psb_private(dev);
+ struct pci_dev *pdev = to_pci_dev(dev->dev);
+ struct fb_info *info;
+ struct drm_framebuffer *fb;
+ struct drm_mode_fb_cmd2 mode_cmd = { };
+ int size;
+ int ret;
+ struct psb_gem_object *backing;
+ struct drm_gem_object *obj;
+ u32 bpp, depth;
+
+ /* No 24-bit packed mode */
+ if (sizes->surface_bpp == 24) {
+ sizes->surface_bpp = 32;
+ sizes->surface_depth = 24;
+ }
+ bpp = sizes->surface_bpp;
+ depth = sizes->surface_depth;
+
+ /*
+ * If the mode does not fit in 32 bit then switch to 16 bit to get
+ * a console on full resolution. The X mode setting server will
+ * allocate its own 32-bit GEM framebuffer.
+ */
+ size = ALIGN(sizes->surface_width * DIV_ROUND_UP(bpp, 8), 64) *
+ sizes->surface_height;
+ size = ALIGN(size, PAGE_SIZE);
+
+ if (size > dev_priv->vram_stolen_size) {
+ sizes->surface_bpp = 16;
+ sizes->surface_depth = 16;
+ }
+ bpp = sizes->surface_bpp;
+ depth = sizes->surface_depth;
+
+ mode_cmd.width = sizes->surface_width;
+ mode_cmd.height = sizes->surface_height;
+ mode_cmd.pitches[0] = ALIGN(mode_cmd.width * DIV_ROUND_UP(bpp, 8), 64);
+ mode_cmd.pixel_format = drm_mode_legacy_fb_format(bpp, depth);
+
+ size = mode_cmd.pitches[0] * mode_cmd.height;
+ size = ALIGN(size, PAGE_SIZE);
+
+ /* Allocate the framebuffer in the GTT with stolen page backing */
+ backing = psb_gem_create(dev, size, "fb", true, PAGE_SIZE);
+ if (IS_ERR(backing))
+ return PTR_ERR(backing);
+ obj = &backing->base;
+
+ fb = psb_framebuffer_create(dev, &mode_cmd, obj);
+ if (IS_ERR(fb)) {
+ ret = PTR_ERR(fb);
+ goto err_drm_gem_object_put;
+ }
+
+ fb_helper->fb = fb;
+
+ info = drm_fb_helper_alloc_info(fb_helper);
+ if (IS_ERR(info)) {
+ ret = PTR_ERR(info);
+ goto err_drm_framebuffer_unregister_private;
+ }
+
+ info->fbops = &psb_fbdev_fb_ops;
+ info->flags = FBINFO_DEFAULT;
+ /* Accessed stolen memory directly */
+ info->screen_base = dev_priv->vram_addr + backing->offset;
+ info->screen_size = size;
+
+ drm_fb_helper_fill_info(info, fb_helper, sizes);
+
+ info->fix.smem_start = dev_priv->stolen_base + backing->offset;
+ info->fix.smem_len = size;
+ info->fix.ywrapstep = 0;
+ info->fix.ypanstep = 0;
+ info->fix.mmio_start = pci_resource_start(pdev, 0);
+ info->fix.mmio_len = pci_resource_len(pdev, 0);
+
+ memset(info->screen_base, 0, info->screen_size);
+
+ /* Use default scratch pixmap (info->pixmap.flags = FB_PIXMAP_SYSTEM) */
+
+ dev_dbg(dev->dev, "allocated %dx%d fb\n", fb->width, fb->height);
+
+ return 0;
+
+err_drm_framebuffer_unregister_private:
+ drm_framebuffer_unregister_private(fb);
+ fb->obj[0] = NULL;
+ drm_framebuffer_cleanup(fb);
+ kfree(fb);
+err_drm_gem_object_put:
+ drm_gem_object_put(obj);
+ return ret;
+}
+
+static const struct drm_fb_helper_funcs psb_fbdev_fb_helper_funcs = {
+ .fb_probe = psb_fbdev_fb_probe,
+};
+
+/*
+ * struct drm_client_funcs and setup code
+ */
+
+static void psb_fbdev_client_unregister(struct drm_client_dev *client)
+{
+ struct drm_fb_helper *fb_helper = drm_fb_helper_from_client(client);
+
+ if (fb_helper->info) {
+ drm_fb_helper_unregister_info(fb_helper);
+ } else {
+ drm_fb_helper_unprepare(fb_helper);
+ drm_client_release(&fb_helper->client);
+ kfree(fb_helper);
+ }
+}
+
+static int psb_fbdev_client_restore(struct drm_client_dev *client)
+{
+ drm_fb_helper_lastclose(client->dev);
+
+ return 0;
+}
+
+static int psb_fbdev_client_hotplug(struct drm_client_dev *client)
+{
+ struct drm_fb_helper *fb_helper = drm_fb_helper_from_client(client);
+ struct drm_device *dev = client->dev;
+ int ret;
+
+ if (dev->fb_helper)
+ return drm_fb_helper_hotplug_event(dev->fb_helper);
+
+ ret = drm_fb_helper_init(dev, fb_helper);
+ if (ret)
+ goto err_drm_err;
+
+ if (!drm_drv_uses_atomic_modeset(dev))
+ drm_helper_disable_unused_functions(dev);
+
+ ret = drm_fb_helper_initial_config(fb_helper);
+ if (ret)
+ goto err_drm_fb_helper_fini;
+
+ return 0;
+
+err_drm_fb_helper_fini:
+ drm_fb_helper_fini(fb_helper);
+err_drm_err:
+ drm_err(dev, "Failed to setup gma500 fbdev emulation (ret=%d)\n", ret);
+ return ret;
+}
+
+static const struct drm_client_funcs psb_fbdev_client_funcs = {
+ .owner = THIS_MODULE,
+ .unregister = psb_fbdev_client_unregister,
+ .restore = psb_fbdev_client_restore,
+ .hotplug = psb_fbdev_client_hotplug,
+};
+
+void psb_fbdev_setup(struct drm_psb_private *dev_priv)
+{
+ struct drm_device *dev = &dev_priv->dev;
+ struct drm_fb_helper *fb_helper;
+ int ret;
+
+ fb_helper = kzalloc(sizeof(*fb_helper), GFP_KERNEL);
+ if (!fb_helper)
+ return;
+ drm_fb_helper_prepare(dev, fb_helper, 32, &psb_fbdev_fb_helper_funcs);
+
+ ret = drm_client_init(dev, &fb_helper->client, "fbdev-gma500", &psb_fbdev_client_funcs);
+ if (ret) {
+ drm_err(dev, "Failed to register client: %d\n", ret);
+ goto err_drm_fb_helper_unprepare;
+ }
+
+ ret = psb_fbdev_client_hotplug(&fb_helper->client);
+ if (ret)
+ drm_dbg_kms(dev, "client hotplug ret=%d\n", ret);
+
+ drm_client_register(&fb_helper->client);
+
+ return;
+
+err_drm_fb_helper_unprepare:
+ drm_fb_helper_unprepare(fb_helper);
+ kfree(fb_helper);
+}
diff --git a/drivers/gpu/drm/gma500/framebuffer.c b/drivers/gpu/drm/gma500/framebuffer.c
index aa3ecf771fd3..1a374702b696 100644
--- a/drivers/gpu/drm/gma500/framebuffer.c
+++ b/drivers/gpu/drm/gma500/framebuffer.c
@@ -5,154 +5,18 @@
*
**************************************************************************/
-#include <linux/console.h>
-#include <linux/delay.h>
-#include <linux/errno.h>
-#include <linux/init.h>
-#include <linux/kernel.h>
-#include <linux/mm.h>
-#include <linux/module.h>
-#include <linux/pfn_t.h>
-#include <linux/slab.h>
-#include <linux/string.h>
-#include <linux/tty.h>
-
-#include <drm/drm.h>
-#include <drm/drm_crtc.h>
-#include <drm/drm_fb_helper.h>
-#include <drm/drm_fourcc.h>
#include <drm/drm_framebuffer.h>
#include <drm/drm_gem_framebuffer_helper.h>
+#include <drm/drm_modeset_helper.h>
#include "framebuffer.h"
-#include "gem.h"
#include "psb_drv.h"
-#include "psb_intel_drv.h"
-#include "psb_intel_reg.h"
static const struct drm_framebuffer_funcs psb_fb_funcs = {
.destroy = drm_gem_fb_destroy,
.create_handle = drm_gem_fb_create_handle,
};
-#define CMAP_TOHW(_val, _width) ((((_val) << (_width)) + 0x7FFF - (_val)) >> 16)
-
-static int psbfb_setcolreg(unsigned regno, unsigned red, unsigned green,
- unsigned blue, unsigned transp,
- struct fb_info *info)
-{
- struct drm_fb_helper *fb_helper = info->par;
- struct drm_framebuffer *fb = fb_helper->fb;
- uint32_t v;
-
- if (!fb)
- return -ENOMEM;
-
- if (regno > 255)
- return 1;
-
- red = CMAP_TOHW(red, info->var.red.length);
- blue = CMAP_TOHW(blue, info->var.blue.length);
- green = CMAP_TOHW(green, info->var.green.length);
- transp = CMAP_TOHW(transp, info->var.transp.length);
-
- v = (red << info->var.red.offset) |
- (green << info->var.green.offset) |
- (blue << info->var.blue.offset) |
- (transp << info->var.transp.offset);
-
- if (regno < 16) {
- switch (fb->format->cpp[0] * 8) {
- case 16:
- ((uint32_t *) info->pseudo_palette)[regno] = v;
- break;
- case 24:
- case 32:
- ((uint32_t *) info->pseudo_palette)[regno] = v;
- break;
- }
- }
-
- return 0;
-}
-
-static vm_fault_t psbfb_vm_fault(struct vm_fault *vmf)
-{
- struct vm_area_struct *vma = vmf->vma;
- struct drm_framebuffer *fb = vma->vm_private_data;
- struct drm_device *dev = fb->dev;
- struct drm_psb_private *dev_priv = to_drm_psb_private(dev);
- struct psb_gem_object *pobj = to_psb_gem_object(fb->obj[0]);
- int page_num;
- int i;
- unsigned long address;
- vm_fault_t ret = VM_FAULT_SIGBUS;
- unsigned long pfn;
- unsigned long phys_addr = (unsigned long)dev_priv->stolen_base + pobj->offset;
-
- page_num = vma_pages(vma);
- address = vmf->address - (vmf->pgoff << PAGE_SHIFT);
-
- vma->vm_page_prot = pgprot_noncached(vma->vm_page_prot);
-
- for (i = 0; i < page_num; i++) {
- pfn = (phys_addr >> PAGE_SHIFT);
-
- ret = vmf_insert_mixed(vma, address,
- __pfn_to_pfn_t(pfn, PFN_DEV));
- if (unlikely(ret & VM_FAULT_ERROR))
- break;
- address += PAGE_SIZE;
- phys_addr += PAGE_SIZE;
- }
- return ret;
-}
-
-static void psbfb_vm_open(struct vm_area_struct *vma)
-{
-}
-
-static void psbfb_vm_close(struct vm_area_struct *vma)
-{
-}
-
-static const struct vm_operations_struct psbfb_vm_ops = {
- .fault = psbfb_vm_fault,
- .open = psbfb_vm_open,
- .close = psbfb_vm_close
-};
-
-static int psbfb_mmap(struct fb_info *info, struct vm_area_struct *vma)
-{
- struct drm_fb_helper *fb_helper = info->par;
- struct drm_framebuffer *fb = fb_helper->fb;
-
- if (vma->vm_pgoff != 0)
- return -EINVAL;
- if (vma->vm_pgoff > (~0UL >> PAGE_SHIFT))
- return -EINVAL;
-
- /*
- * If this is a GEM object then info->screen_base is the virtual
- * kernel remapping of the object. FIXME: Review if this is
- * suitable for our mmap work
- */
- vma->vm_ops = &psbfb_vm_ops;
- vma->vm_private_data = (void *)fb;
- vma->vm_flags |= VM_IO | VM_MIXEDMAP | VM_DONTEXPAND | VM_DONTDUMP;
- return 0;
-}
-
-static const struct fb_ops psbfb_unaccel_ops = {
- .owner = THIS_MODULE,
- DRM_FB_HELPER_DEFAULT_OPS,
- .fb_setcolreg = psbfb_setcolreg,
- .fb_fillrect = drm_fb_helper_cfb_fillrect,
- .fb_copyarea = drm_fb_helper_cfb_copyarea,
- .fb_imageblit = drm_fb_helper_cfb_imageblit,
- .fb_mmap = psbfb_mmap,
-};
-
/**
* psb_framebuffer_init - initialize a framebuffer
* @dev: our DRM device
@@ -203,11 +67,9 @@ static int psb_framebuffer_init(struct drm_device *dev,
*
* TODO: review object references
*/
-
-static struct drm_framebuffer *psb_framebuffer_create
- (struct drm_device *dev,
- const struct drm_mode_fb_cmd2 *mode_cmd,
- struct drm_gem_object *obj)
+struct drm_framebuffer *psb_framebuffer_create(struct drm_device *dev,
+ const struct drm_mode_fb_cmd2 *mode_cmd,
+ struct drm_gem_object *obj)
{
struct drm_framebuffer *fb;
int ret;
@@ -225,98 +87,6 @@ static struct drm_framebuffer *psb_framebuffer_create
}
/**
- * psbfb_create - create a framebuffer
- * @fb_helper: the framebuffer helper
- * @sizes: specification of the layout
- *
- * Create a framebuffer to the specifications provided
- */
-static int psbfb_create(struct drm_fb_helper *fb_helper,
- struct drm_fb_helper_surface_size *sizes)
-{
- struct drm_device *dev = fb_helper->dev;
- struct drm_psb_private *dev_priv = to_drm_psb_private(dev);
- struct pci_dev *pdev = to_pci_dev(dev->dev);
- struct fb_info *info;
- struct drm_framebuffer *fb;
- struct drm_mode_fb_cmd2 mode_cmd;
- int size;
- int ret;
- struct psb_gem_object *backing;
- struct drm_gem_object *obj;
- u32 bpp, depth;
-
- mode_cmd.width = sizes->surface_width;
- mode_cmd.height = sizes->surface_height;
- bpp = sizes->surface_bpp;
- depth = sizes->surface_depth;
-
- /* No 24bit packed */
- if (bpp == 24)
- bpp = 32;
-
- mode_cmd.pitches[0] = ALIGN(mode_cmd.width * DIV_ROUND_UP(bpp, 8), 64);
-
- size = mode_cmd.pitches[0] * mode_cmd.height;
- size = ALIGN(size, PAGE_SIZE);
-
- /* Allocate the framebuffer in the GTT with stolen page backing */
- backing = psb_gem_create(dev, size, "fb", true, PAGE_SIZE);
- if (IS_ERR(backing))
- return PTR_ERR(backing);
- obj = &backing->base;
-
- memset(dev_priv->vram_addr + backing->offset, 0, size);
-
- info = drm_fb_helper_alloc_fbi(fb_helper);
- if (IS_ERR(info)) {
- ret = PTR_ERR(info);
- goto err_drm_gem_object_put;
- }
-
- mode_cmd.pixel_format = drm_mode_legacy_fb_format(bpp, depth);
-
- fb = psb_framebuffer_create(dev, &mode_cmd, obj);
- if (IS_ERR(fb)) {
- ret = PTR_ERR(fb);
- goto err_drm_gem_object_put;
- }
-
- fb_helper->fb = fb;
-
- info->fbops = &psbfb_unaccel_ops;
-
- info->fix.smem_start = dev->mode_config.fb_base;
- info->fix.smem_len = size;
- info->fix.ywrapstep = 0;
- info->fix.ypanstep = 0;
-
- /* Accessed stolen memory directly */
- info->screen_base = dev_priv->vram_addr + backing->offset;
- info->screen_size = size;
-
- if (dev_priv->gtt.stolen_size) {
- info->apertures->ranges[0].base = dev->mode_config.fb_base;
- info->apertures->ranges[0].size = dev_priv->gtt.stolen_size;
- }
-
- drm_fb_helper_fill_info(info, fb_helper, sizes);
-
- info->fix.mmio_start = pci_resource_start(pdev, 0);
- info->fix.mmio_len = pci_resource_len(pdev, 0);
-
- /* Use default scratch pixmap (info->pixmap.flags = FB_PIXMAP_SYSTEM) */
-
- dev_dbg(dev->dev, "allocated %dx%d fb\n", fb->width, fb->height);
-
- return 0;
-
-err_drm_gem_object_put:
- drm_gem_object_put(obj);
- return ret;
-}
-
-/**
* psb_user_framebuffer_create - create framebuffer
* @dev: our DRM device
* @filp: client file
@@ -347,106 +117,8 @@ static struct drm_framebuffer *psb_user_framebuffer_create
return fb;
}
-static int psbfb_probe(struct drm_fb_helper *fb_helper,
- struct drm_fb_helper_surface_size *sizes)
-{
- struct drm_device *dev = fb_helper->dev;
- struct drm_psb_private *dev_priv = to_drm_psb_private(dev);
- unsigned int fb_size;
- int bytespp;
-
- bytespp = sizes->surface_bpp / 8;
- if (bytespp == 3) /* no 24bit packed */
- bytespp = 4;
-
- /* If the mode will not fit in 32bit then switch to 16bit to get
- a console on full resolution. The X mode setting server will
- allocate its own 32bit GEM framebuffer */
- fb_size = ALIGN(sizes->surface_width * bytespp, 64) *
- sizes->surface_height;
- fb_size = ALIGN(fb_size, PAGE_SIZE);
-
- if (fb_size > dev_priv->vram_stolen_size) {
- sizes->surface_bpp = 16;
- sizes->surface_depth = 16;
- }
-
- return psbfb_create(fb_helper, sizes);
-}
-
-static const struct drm_fb_helper_funcs psb_fb_helper_funcs = {
- .fb_probe = psbfb_probe,
-};
-
-static int psb_fbdev_destroy(struct drm_device *dev,
- struct drm_fb_helper *fb_helper)
-{
- struct drm_framebuffer *fb = fb_helper->fb;
-
- drm_fb_helper_unregister_fbi(fb_helper);
-
- drm_fb_helper_fini(fb_helper);
- drm_framebuffer_unregister_private(fb);
- drm_framebuffer_cleanup(fb);
-
- if (fb->obj[0])
- drm_gem_object_put(fb->obj[0]);
- kfree(fb);
-
- return 0;
-}
-
-int psb_fbdev_init(struct drm_device *dev)
-{
- struct drm_fb_helper *fb_helper;
- struct drm_psb_private *dev_priv = to_drm_psb_private(dev);
- int ret;
-
- fb_helper = kzalloc(sizeof(*fb_helper), GFP_KERNEL);
- if (!fb_helper) {
- dev_err(dev->dev, "no memory\n");
- return -ENOMEM;
- }
-
- dev_priv->fb_helper = fb_helper;
-
- drm_fb_helper_prepare(dev, fb_helper, &psb_fb_helper_funcs);
-
- ret = drm_fb_helper_init(dev, fb_helper);
- if (ret)
- goto free;
-
- /* disable all the possible outputs/crtcs before entering KMS mode */
- drm_helper_disable_unused_functions(dev);
-
- ret = drm_fb_helper_initial_config(fb_helper, 32);
- if (ret)
- goto fini;
-
- return 0;
-
-fini:
- drm_fb_helper_fini(fb_helper);
-free:
- kfree(fb_helper);
- return ret;
-}
-
-static void psb_fbdev_fini(struct drm_device *dev)
-{
- struct drm_psb_private *dev_priv = to_drm_psb_private(dev);
-
- if (!dev_priv->fb_helper)
- return;
-
- psb_fbdev_destroy(dev, dev_priv->fb_helper);
- kfree(dev_priv->fb_helper);
- dev_priv->fb_helper = NULL;
-}
-
static const struct drm_mode_config_funcs psb_mode_funcs = {
.fb_create = psb_user_framebuffer_create,
- .output_poll_changed = drm_fb_helper_output_poll_changed,
};
static void psb_setup_outputs(struct drm_device *dev)
@@ -514,7 +186,6 @@ void psb_modeset_init(struct drm_device *dev)
{
struct drm_psb_private *dev_priv = to_drm_psb_private(dev);
struct psb_intel_mode_device *mode_dev = &dev_priv->mode_dev;
- struct pci_dev *pdev = to_pci_dev(dev->dev);
int i;
if (drmm_mode_config_init(dev))
@@ -525,10 +196,6 @@ void psb_modeset_init(struct drm_device *dev)
dev->mode_config.funcs = &psb_mode_funcs;
- /* set memory base */
- /* Oaktrail and Poulsbo should use BAR 2*/
- pci_read_config_dword(pdev, PSB_BSM, (u32 *)&(dev->mode_config.fb_base));
-
/* num pipes is 2 for PSB but 1 for Mrst */
for (i = 0; i < dev_priv->num_pipe; i++)
psb_intel_crtc_init(dev, i, mode_dev);
@@ -549,6 +216,5 @@ void psb_modeset_cleanup(struct drm_device *dev)
struct drm_psb_private *dev_priv = to_drm_psb_private(dev);
if (dev_priv->modeset) {
drm_kms_helper_poll_fini(dev);
- psb_fbdev_fini(dev);
}
}
diff --git a/drivers/gpu/drm/gma500/gma_display.c b/drivers/gpu/drm/gma500/gma_display.c
index fe7b8436f87a..f65e90d890f4 100644
--- a/drivers/gpu/drm/gma500/gma_display.c
+++ b/drivers/gpu/drm/gma500/gma_display.c
@@ -11,8 +11,10 @@
#include <linux/highmem.h>
#include <drm/drm_crtc.h>
+#include <drm/drm_crtc_helper.h>
#include <drm/drm_fourcc.h>
#include <drm/drm_framebuffer.h>
+#include <drm/drm_modeset_helper_vtables.h>
#include <drm/drm_vblank.h>
#include "framebuffer.h"
diff --git a/drivers/gpu/drm/gma500/oaktrail_crtc.c b/drivers/gpu/drm/gma500/oaktrail_crtc.c
index 64761f46b434..de8ccfe9890f 100644
--- a/drivers/gpu/drm/gma500/oaktrail_crtc.c
+++ b/drivers/gpu/drm/gma500/oaktrail_crtc.c
@@ -9,6 +9,7 @@
#include <drm/drm_fourcc.h>
#include <drm/drm_framebuffer.h>
+#include <drm/drm_modeset_helper_vtables.h>
#include "framebuffer.h"
#include "gem.h"
diff --git a/drivers/gpu/drm/gma500/oaktrail_hdmi.c b/drivers/gpu/drm/gma500/oaktrail_hdmi.c
index 95b7cb099e63..ed8626c73541 100644
--- a/drivers/gpu/drm/gma500/oaktrail_hdmi.c
+++ b/drivers/gpu/drm/gma500/oaktrail_hdmi.c
@@ -27,7 +27,9 @@
#include <linux/delay.h>
#include <drm/drm.h>
+#include <drm/drm_crtc_helper.h>
#include <drm/drm_edid.h>
+#include <drm/drm_modeset_helper_vtables.h>
#include <drm/drm_simple_kms_helper.h>
#include "psb_drv.h"
diff --git a/drivers/gpu/drm/gma500/oaktrail_lvds.c b/drivers/gpu/drm/gma500/oaktrail_lvds.c
index 75b4eb1c8884..d974d0c60d2a 100644
--- a/drivers/gpu/drm/gma500/oaktrail_lvds.c
+++ b/drivers/gpu/drm/gma500/oaktrail_lvds.c
@@ -14,6 +14,7 @@
#include <asm/intel-mid.h>
#include <drm/drm_edid.h>
+#include <drm/drm_modeset_helper_vtables.h>
#include <drm/drm_simple_kms_helper.h>
#include "intel_bios.h"
diff --git a/drivers/gpu/drm/gma500/psb_device.c b/drivers/gpu/drm/gma500/psb_device.c
index 3c294c38bdb4..dcfcd7b89d4a 100644
--- a/drivers/gpu/drm/gma500/psb_device.c
+++ b/drivers/gpu/drm/gma500/psb_device.c
@@ -6,6 +6,7 @@
**************************************************************************/
#include <drm/drm.h>
+#include <drm/drm_crtc_helper.h>
#include "gma_device.h"
#include "intel_bios.h"
diff --git a/drivers/gpu/drm/gma500/psb_drv.c b/drivers/gpu/drm/gma500/psb_drv.c
index cd9c73f5a64a..2ce96b1b9c74 100644
--- a/drivers/gpu/drm/gma500/psb_drv.c
+++ b/drivers/gpu/drm/gma500/psb_drv.c
@@ -21,7 +21,6 @@
#include <drm/drm.h>
#include <drm/drm_aperture.h>
#include <drm/drm_drv.h>
-#include <drm/drm_fb_helper.h>
#include <drm/drm_file.h>
#include <drm/drm_ioctl.h>
#include <drm/drm_pciids.h>
@@ -387,7 +386,6 @@ static int psb_driver_load(struct drm_device *dev, unsigned long flags)
dev->max_vblank_count = 0xffffff; /* only 24 bits of frame count */
psb_modeset_init(dev);
- psb_fbdev_init(dev);
drm_kms_helper_poll_init(dev);
/* Only add backlight support if we have LVDS or MIPI output */
@@ -452,6 +450,8 @@ static int psb_pci_probe(struct pci_dev *pdev, const struct pci_device_id *ent)
if (ret)
return ret;
+ psb_fbdev_setup(dev_priv);
+
return 0;
}
@@ -477,7 +477,6 @@ static const struct file_operations psb_gem_fops = {
static const struct drm_driver driver = {
.driver_features = DRIVER_MODESET | DRIVER_GEM,
- .lastclose = drm_fb_helper_lastclose,
.num_ioctls = ARRAY_SIZE(psb_ioctls),
diff --git a/drivers/gpu/drm/gma500/psb_drv.h b/drivers/gpu/drm/gma500/psb_drv.h
index ae544b69fc47..f7f709df99b4 100644
--- a/drivers/gpu/drm/gma500/psb_drv.h
+++ b/drivers/gpu/drm/gma500/psb_drv.h
@@ -193,8 +193,6 @@
#define KSEL_BYPASS_25 6
#define KSEL_BYPASS_83_100 7
-struct drm_fb_helper;
-
struct opregion_header;
struct opregion_acpi;
struct opregion_swsci;
@@ -522,8 +520,6 @@ struct drm_psb_private {
uint32_t blc_adj1;
uint32_t blc_adj2;
- struct drm_fb_helper *fb_helper;
-
bool dsr_enable;
u32 dsr_fb_update;
bool dpi_panel_on[3];
@@ -609,7 +605,19 @@ extern void psb_lid_timer_takedown(struct drm_psb_private *dev_priv);
/* modesetting */
extern void psb_modeset_init(struct drm_device *dev);
extern void psb_modeset_cleanup(struct drm_device *dev);
-extern int psb_fbdev_init(struct drm_device *dev);
+
+/* framebuffer */
+struct drm_framebuffer *psb_framebuffer_create(struct drm_device *dev,
+ const struct drm_mode_fb_cmd2 *mode_cmd,
+ struct drm_gem_object *obj);
+
+/* fbdev */
+#if defined(CONFIG_DRM_FBDEV_EMULATION)
+void psb_fbdev_setup(struct drm_psb_private *dev_priv);
+#else
+static inline void psb_fbdev_setup(struct drm_psb_private *dev_priv)
+{ }
+#endif
/* backlight.c */
int gma_backlight_init(struct drm_device *dev);
diff --git a/drivers/gpu/drm/gma500/psb_intel_display.c b/drivers/gpu/drm/gma500/psb_intel_display.c
index 531c1781a8fb..ff46e88c4768 100644
--- a/drivers/gpu/drm/gma500/psb_intel_display.c
+++ b/drivers/gpu/drm/gma500/psb_intel_display.c
@@ -9,6 +9,9 @@
#include <linux/delay.h>
#include <linux/i2c.h>
+#include <drm/drm_modeset_helper.h>
+#include <drm/drm_modeset_helper_vtables.h>
+
#include "framebuffer.h"
#include "gem.h"
#include "gma_display.h"
diff --git a/drivers/gpu/drm/gma500/psb_intel_drv.h b/drivers/gpu/drm/gma500/psb_intel_drv.h
index 8a1111fe714b..0bb85494e3da 100644
--- a/drivers/gpu/drm/gma500/psb_intel_drv.h
+++ b/drivers/gpu/drm/gma500/psb_intel_drv.h
@@ -9,7 +9,6 @@
#include <linux/i2c.h>
#include <linux/i2c-algo-bit.h>
#include <drm/drm_crtc.h>
-#include <drm/drm_crtc_helper.h>
#include <drm/drm_encoder.h>
#include <drm/drm_probe_helper.h>
#include <drm/drm_vblank.h>
diff --git a/drivers/gpu/drm/gma500/psb_intel_lvds.c b/drivers/gpu/drm/gma500/psb_intel_lvds.c
index 7ee6c8ce103b..8486de230ec9 100644
--- a/drivers/gpu/drm/gma500/psb_intel_lvds.c
+++ b/drivers/gpu/drm/gma500/psb_intel_lvds.c
@@ -11,6 +11,8 @@
#include <linux/i2c.h>
#include <linux/pm_runtime.h>
+#include <drm/drm_crtc_helper.h>
+#include <drm/drm_modeset_helper_vtables.h>
#include <drm/drm_simple_kms_helper.h>
#include "intel_bios.h"
diff --git a/drivers/gpu/drm/gma500/psb_intel_sdvo.c b/drivers/gpu/drm/gma500/psb_intel_sdvo.c
index bdced46dd333..d6fd5d726216 100644
--- a/drivers/gpu/drm/gma500/psb_intel_sdvo.c
+++ b/drivers/gpu/drm/gma500/psb_intel_sdvo.c
@@ -33,7 +33,9 @@
#include <linux/slab.h>
#include <drm/drm_crtc.h>
+#include <drm/drm_crtc_helper.h>
#include <drm/drm_edid.h>
+#include <drm/drm_modeset_helper_vtables.h>
#include "psb_drv.h"
#include "psb_intel_drv.h"
diff --git a/drivers/gpu/drm/gma500/psb_irq.c b/drivers/gpu/drm/gma500/psb_irq.c
index d421031462df..343c51250207 100644
--- a/drivers/gpu/drm/gma500/psb_irq.c
+++ b/drivers/gpu/drm/gma500/psb_irq.c
@@ -32,17 +32,6 @@ static inline u32 gma_pipestat(int pipe)
BUG();
}
-static inline u32 gma_pipe_event(int pipe)
-{
- if (pipe == 0)
- return _PSB_PIPEA_EVENT_FLAG;
- if (pipe == 1)
- return _MDFLD_PIPEB_EVENT_FLAG;
- if (pipe == 2)
- return _MDFLD_PIPEC_EVENT_FLAG;
- BUG();
-}
-
static inline u32 gma_pipeconf(int pipe)
{
if (pipe == 0)
diff --git a/drivers/gpu/drm/gud/gud_connector.c b/drivers/gpu/drm/gud/gud_connector.c
index d0addd478815..034e78360d4f 100644
--- a/drivers/gpu/drm/gud/gud_connector.c
+++ b/drivers/gpu/drm/gud/gud_connector.c
@@ -303,7 +303,7 @@ static int gud_connector_atomic_check(struct drm_connector *connector,
old_state->tv.margins.right != new_state->tv.margins.right ||
old_state->tv.margins.top != new_state->tv.margins.top ||
old_state->tv.margins.bottom != new_state->tv.margins.bottom ||
- old_state->tv.mode != new_state->tv.mode ||
+ old_state->tv.legacy_mode != new_state->tv.legacy_mode ||
old_state->tv.brightness != new_state->tv.brightness ||
old_state->tv.contrast != new_state->tv.contrast ||
old_state->tv.flicker_reduction != new_state->tv.flicker_reduction ||
@@ -355,7 +355,7 @@ static void gud_connector_reset(struct drm_connector *connector)
drm_atomic_helper_connector_reset(connector);
connector->state->tv = gconn->initial_tv_state;
/* Set margins from command line */
- drm_atomic_helper_connector_tv_reset(connector);
+ drm_atomic_helper_connector_tv_margins_reset(connector);
if (gconn->initial_brightness >= 0)
connector->state->tv.brightness = gconn->initial_brightness;
}
@@ -400,7 +400,7 @@ static int gud_connector_add_tv_mode(struct gud_device *gdrm, struct drm_connect
for (i = 0; i < num_modes; i++)
modes[i] = &buf[i * GUD_CONNECTOR_TV_MODE_NAME_LEN];
- ret = drm_mode_create_tv_properties(connector->dev, num_modes, modes);
+ ret = drm_mode_create_tv_properties_legacy(connector->dev, num_modes, modes);
free:
kfree(buf);
if (ret < 0)
@@ -424,7 +424,7 @@ gud_connector_property_lookup(struct drm_connector *connector, u16 prop)
case GUD_PROPERTY_TV_BOTTOM_MARGIN:
return config->tv_bottom_margin_property;
case GUD_PROPERTY_TV_MODE:
- return config->tv_mode_property;
+ return config->legacy_tv_mode_property;
case GUD_PROPERTY_TV_BRIGHTNESS:
return config->tv_brightness_property;
case GUD_PROPERTY_TV_CONTRAST:
@@ -454,7 +454,7 @@ static unsigned int *gud_connector_tv_state_val(u16 prop, struct drm_tv_connecto
case GUD_PROPERTY_TV_BOTTOM_MARGIN:
return &state->margins.bottom;
case GUD_PROPERTY_TV_MODE:
- return &state->mode;
+ return &state->legacy_mode;
case GUD_PROPERTY_TV_BRIGHTNESS:
return &state->brightness;
case GUD_PROPERTY_TV_CONTRAST:
@@ -539,7 +539,7 @@ static int gud_connector_add_properties(struct gud_device *gdrm, struct gud_conn
fallthrough;
case GUD_PROPERTY_TV_HUE:
/* This is a no-op if already added. */
- ret = drm_mode_create_tv_properties(drm, 0, NULL);
+ ret = drm_mode_create_tv_properties_legacy(drm, 0, NULL);
if (ret)
goto out;
break;
diff --git a/drivers/gpu/drm/gud/gud_drv.c b/drivers/gpu/drm/gud/gud_drv.c
index 8d1630b8edac..9d7bf8ee45f1 100644
--- a/drivers/gpu/drm/gud/gud_drv.c
+++ b/drivers/gpu/drm/gud/gud_drv.c
@@ -18,7 +18,7 @@
#include <drm/drm_damage_helper.h>
#include <drm/drm_debugfs.h>
#include <drm/drm_drv.h>
-#include <drm/drm_fb_helper.h>
+#include <drm/drm_fbdev_generic.h>
#include <drm/drm_fourcc.h>
#include <drm/drm_gem_atomic_helper.h>
#include <drm/drm_gem_framebuffer_helper.h>
@@ -325,8 +325,8 @@ static struct drm_gem_object *gud_gem_prime_import(struct drm_device *drm, struc
static int gud_stats_debugfs(struct seq_file *m, void *data)
{
- struct drm_info_node *node = m->private;
- struct gud_device *gdrm = to_gud_device(node->minor->dev);
+ struct drm_debugfs_entry *entry = m->private;
+ struct gud_device *gdrm = to_gud_device(entry->dev);
char buf[10];
string_get_size(gdrm->bulk_len, 1, STRING_UNITS_2, buf, sizeof(buf));
@@ -352,19 +352,10 @@ static int gud_stats_debugfs(struct seq_file *m, void *data)
return 0;
}
-static const struct drm_info_list gud_debugfs_list[] = {
- { "stats", gud_stats_debugfs, 0, NULL },
-};
-
-static void gud_debugfs_init(struct drm_minor *minor)
-{
- drm_debugfs_create_files(gud_debugfs_list, ARRAY_SIZE(gud_debugfs_list),
- minor->debugfs_root, minor);
-}
-
static const struct drm_simple_display_pipe_funcs gud_pipe_funcs = {
.check = gud_pipe_check,
.update = gud_pipe_update,
+ DRM_GEM_SIMPLE_DISPLAY_PIPE_SHADOW_PLANE_FUNCS
};
static const struct drm_mode_config_funcs gud_mode_config_funcs = {
@@ -385,7 +376,6 @@ static const struct drm_driver gud_drm_driver = {
.fops = &gud_fops,
DRM_GEM_SHMEM_DRIVER_OPS,
.gem_prime_import = gud_gem_prime_import,
- .debugfs_init = gud_debugfs_init,
.name = "gud",
.desc = "Generic USB Display",
@@ -622,6 +612,8 @@ static int gud_probe(struct usb_interface *intf, const struct usb_device_id *id)
if (!gdrm->dmadev)
dev_warn(dev, "buffer sharing not supported");
+ drm_debugfs_add_file(drm, "stats", gud_stats_debugfs, NULL);
+
ret = drm_dev_register(drm, 0);
if (ret) {
put_device(gdrm->dmadev);
diff --git a/drivers/gpu/drm/gud/gud_internal.h b/drivers/gpu/drm/gud/gud_internal.h
index e351a1f1420d..0d148a6f27aa 100644
--- a/drivers/gpu/drm/gud/gud_internal.h
+++ b/drivers/gpu/drm/gud/gud_internal.h
@@ -43,6 +43,7 @@ struct gud_device {
struct drm_framebuffer *fb;
struct drm_rect damage;
bool prev_flush_failed;
+ void *shadow_buf;
};
static inline struct gud_device *to_gud_device(struct drm_device *drm)
diff --git a/drivers/gpu/drm/gud/gud_pipe.c b/drivers/gpu/drm/gud/gud_pipe.c
index 7c6dc2bcd14a..dc16a92625d4 100644
--- a/drivers/gpu/drm/gud/gud_pipe.c
+++ b/drivers/gpu/drm/gud/gud_pipe.c
@@ -5,6 +5,7 @@
#include <linux/lz4.h>
#include <linux/usb.h>
+#include <linux/vmalloc.h>
#include <linux/workqueue.h>
#include <drm/drm_atomic.h>
@@ -15,6 +16,7 @@
#include <drm/drm_fourcc.h>
#include <drm/drm_framebuffer.h>
#include <drm/drm_gem.h>
+#include <drm/drm_gem_atomic_helper.h>
#include <drm/drm_gem_framebuffer_helper.h>
#include <drm/drm_print.h>
#include <drm/drm_rect.h>
@@ -24,17 +26,13 @@
#include "gud_internal.h"
/*
- * Some userspace rendering loops runs all displays in the same loop.
+ * Some userspace rendering loops run all displays in the same loop.
* This means that a fast display will have to wait for a slow one.
- * For this reason gud does flushing asynchronous by default.
- * The down side is that in e.g. a single display setup userspace thinks
- * the display is insanely fast since the driver reports back immediately
- * that the flush/pageflip is done. This wastes CPU and power.
- * Such users might want to set this module parameter to false.
+ * Such users might want to enable this module parameter.
*/
-static bool gud_async_flush = true;
+static bool gud_async_flush;
module_param_named(async_flush, gud_async_flush, bool, 0644);
-MODULE_PARM_DESC(async_flush, "Enable asynchronous flushing [default=true]");
+MODULE_PARM_DESC(async_flush, "Enable asynchronous flushing [default=0]");
/*
* FIXME: The driver is probably broken on Big Endian machines.
@@ -152,32 +150,21 @@ static size_t gud_xrgb8888_to_color(u8 *dst, const struct drm_format_info *forma
}
static int gud_prep_flush(struct gud_device *gdrm, struct drm_framebuffer *fb,
+ const struct iosys_map *src, bool cached_reads,
const struct drm_format_info *format, struct drm_rect *rect,
struct gud_set_buffer_req *req)
{
- struct dma_buf_attachment *import_attach = fb->obj[0]->import_attach;
u8 compression = gdrm->compression;
- struct iosys_map map[DRM_FORMAT_MAX_PLANES];
- struct iosys_map map_data[DRM_FORMAT_MAX_PLANES];
struct iosys_map dst;
void *vaddr, *buf;
size_t pitch, len;
- int ret = 0;
pitch = drm_format_info_min_pitch(format, 0, drm_rect_width(rect));
len = pitch * drm_rect_height(rect);
if (len > gdrm->bulk_len)
return -E2BIG;
- ret = drm_gem_fb_vmap(fb, map, map_data);
- if (ret)
- return ret;
-
- vaddr = map_data[0].vaddr;
-
- ret = drm_gem_fb_begin_cpu_access(fb, DMA_FROM_DEVICE);
- if (ret)
- goto vunmap;
+ vaddr = src[0].vaddr;
retry:
if (compression)
buf = gdrm->compress_buf;
@@ -192,29 +179,27 @@ retry:
if (format != fb->format) {
if (format->format == GUD_DRM_FORMAT_R1) {
len = gud_xrgb8888_to_r124(buf, format, vaddr, fb, rect);
- if (!len) {
- ret = -ENOMEM;
- goto end_cpu_access;
- }
+ if (!len)
+ return -ENOMEM;
} else if (format->format == DRM_FORMAT_R8) {
- drm_fb_xrgb8888_to_gray8(&dst, NULL, map_data, fb, rect);
+ drm_fb_xrgb8888_to_gray8(&dst, NULL, src, fb, rect);
} else if (format->format == DRM_FORMAT_RGB332) {
- drm_fb_xrgb8888_to_rgb332(&dst, NULL, map_data, fb, rect);
+ drm_fb_xrgb8888_to_rgb332(&dst, NULL, src, fb, rect);
} else if (format->format == DRM_FORMAT_RGB565) {
- drm_fb_xrgb8888_to_rgb565(&dst, NULL, map_data, fb, rect,
+ drm_fb_xrgb8888_to_rgb565(&dst, NULL, src, fb, rect,
gud_is_big_endian());
} else if (format->format == DRM_FORMAT_RGB888) {
- drm_fb_xrgb8888_to_rgb888(&dst, NULL, map_data, fb, rect);
+ drm_fb_xrgb8888_to_rgb888(&dst, NULL, src, fb, rect);
} else {
len = gud_xrgb8888_to_color(buf, format, vaddr, fb, rect);
}
} else if (gud_is_big_endian() && format->cpp[0] > 1) {
- drm_fb_swab(&dst, NULL, map_data, fb, rect, !import_attach);
- } else if (compression && !import_attach && pitch == fb->pitches[0]) {
+ drm_fb_swab(&dst, NULL, src, fb, rect, cached_reads);
+ } else if (compression && cached_reads && pitch == fb->pitches[0]) {
/* can compress directly from the framebuffer */
buf = vaddr + rect->y1 * pitch;
} else {
- drm_fb_memcpy(&dst, NULL, map_data, fb, rect);
+ drm_fb_memcpy(&dst, NULL, src, fb, rect);
}
memset(req, 0, sizeof(*req));
@@ -237,12 +222,7 @@ retry:
req->compressed_length = cpu_to_le32(complen);
}
-end_cpu_access:
- drm_gem_fb_end_cpu_access(fb, DMA_FROM_DEVICE);
-vunmap:
- drm_gem_fb_vunmap(fb, map);
-
- return ret;
+ return 0;
}
struct gud_usb_bulk_context {
@@ -285,6 +265,7 @@ static int gud_usb_bulk(struct gud_device *gdrm, size_t len)
}
static int gud_flush_rect(struct gud_device *gdrm, struct drm_framebuffer *fb,
+ const struct iosys_map *src, bool cached_reads,
const struct drm_format_info *format, struct drm_rect *rect)
{
struct gud_set_buffer_req req;
@@ -293,7 +274,7 @@ static int gud_flush_rect(struct gud_device *gdrm, struct drm_framebuffer *fb,
drm_dbg(&gdrm->drm, "Flushing [FB:%d] " DRM_RECT_FMT "\n", fb->base.id, DRM_RECT_ARG(rect));
- ret = gud_prep_flush(gdrm, fb, format, rect, &req);
+ ret = gud_prep_flush(gdrm, fb, src, cached_reads, format, rect, &req);
if (ret)
return ret;
@@ -333,46 +314,51 @@ void gud_clear_damage(struct gud_device *gdrm)
gdrm->damage.y2 = 0;
}
-static void gud_add_damage(struct gud_device *gdrm, struct drm_rect *damage)
+static void gud_flush_damage(struct gud_device *gdrm, struct drm_framebuffer *fb,
+ const struct iosys_map *src, bool cached_reads,
+ struct drm_rect *damage)
{
- gdrm->damage.x1 = min(gdrm->damage.x1, damage->x1);
- gdrm->damage.y1 = min(gdrm->damage.y1, damage->y1);
- gdrm->damage.x2 = max(gdrm->damage.x2, damage->x2);
- gdrm->damage.y2 = max(gdrm->damage.y2, damage->y2);
-}
+ const struct drm_format_info *format;
+ unsigned int i, lines;
+ size_t pitch;
+ int ret;
-static void gud_retry_failed_flush(struct gud_device *gdrm, struct drm_framebuffer *fb,
- struct drm_rect *damage)
-{
- /*
- * pipe_update waits for the worker when the display mode is going to change.
- * This ensures that the width and height is still the same making it safe to
- * add back the damage.
- */
+ format = fb->format;
+ if (format->format == DRM_FORMAT_XRGB8888 && gdrm->xrgb8888_emulation_format)
+ format = gdrm->xrgb8888_emulation_format;
- mutex_lock(&gdrm->damage_lock);
- if (!gdrm->fb) {
- drm_framebuffer_get(fb);
- gdrm->fb = fb;
- }
- gud_add_damage(gdrm, damage);
- mutex_unlock(&gdrm->damage_lock);
+ /* Split update if it's too big */
+ pitch = drm_format_info_min_pitch(format, 0, drm_rect_width(damage));
+ lines = drm_rect_height(damage);
+
+ if (gdrm->bulk_len < lines * pitch)
+ lines = gdrm->bulk_len / pitch;
+
+ for (i = 0; i < DIV_ROUND_UP(drm_rect_height(damage), lines); i++) {
+ struct drm_rect rect = *damage;
- /* Retry only once to avoid a possible storm in case of continues errors. */
- if (!gdrm->prev_flush_failed)
- queue_work(system_long_wq, &gdrm->work);
- gdrm->prev_flush_failed = true;
+ rect.y1 += i * lines;
+ rect.y2 = min_t(u32, rect.y1 + lines, damage->y2);
+
+ ret = gud_flush_rect(gdrm, fb, src, cached_reads, format, &rect);
+ if (ret) {
+ if (ret != -ENODEV && ret != -ECONNRESET &&
+ ret != -ESHUTDOWN && ret != -EPROTO)
+ dev_err_ratelimited(fb->dev->dev,
+ "Failed to flush framebuffer: error=%d\n", ret);
+ gdrm->prev_flush_failed = true;
+ break;
+ }
+ }
}
void gud_flush_work(struct work_struct *work)
{
struct gud_device *gdrm = container_of(work, struct gud_device, work);
- const struct drm_format_info *format;
+ struct iosys_map shadow_map;
struct drm_framebuffer *fb;
struct drm_rect damage;
- unsigned int i, lines;
- int idx, ret = 0;
- size_t pitch;
+ int idx;
if (!drm_dev_enter(&gdrm->drm, &idx))
return;
@@ -380,6 +366,7 @@ void gud_flush_work(struct work_struct *work)
mutex_lock(&gdrm->damage_lock);
fb = gdrm->fb;
gdrm->fb = NULL;
+ iosys_map_set_vaddr(&shadow_map, gdrm->shadow_buf);
damage = gdrm->damage;
gud_clear_damage(gdrm);
mutex_unlock(&gdrm->damage_lock);
@@ -387,59 +374,43 @@ void gud_flush_work(struct work_struct *work)
if (!fb)
goto out;
- format = fb->format;
- if (format->format == DRM_FORMAT_XRGB8888 && gdrm->xrgb8888_emulation_format)
- format = gdrm->xrgb8888_emulation_format;
-
- /* Split update if it's too big */
- pitch = drm_format_info_min_pitch(format, 0, drm_rect_width(&damage));
- lines = drm_rect_height(&damage);
-
- if (gdrm->bulk_len < lines * pitch)
- lines = gdrm->bulk_len / pitch;
-
- for (i = 0; i < DIV_ROUND_UP(drm_rect_height(&damage), lines); i++) {
- struct drm_rect rect = damage;
-
- rect.y1 += i * lines;
- rect.y2 = min_t(u32, rect.y1 + lines, damage.y2);
-
- ret = gud_flush_rect(gdrm, fb, format, &rect);
- if (ret) {
- if (ret != -ENODEV && ret != -ECONNRESET &&
- ret != -ESHUTDOWN && ret != -EPROTO) {
- bool prev_flush_failed = gdrm->prev_flush_failed;
-
- gud_retry_failed_flush(gdrm, fb, &damage);
- if (!prev_flush_failed)
- dev_err_ratelimited(fb->dev->dev,
- "Failed to flush framebuffer: error=%d\n", ret);
- }
- break;
- }
-
- gdrm->prev_flush_failed = false;
- }
+ gud_flush_damage(gdrm, fb, &shadow_map, true, &damage);
drm_framebuffer_put(fb);
out:
drm_dev_exit(idx);
}
-static void gud_fb_queue_damage(struct gud_device *gdrm, struct drm_framebuffer *fb,
- struct drm_rect *damage)
+static int gud_fb_queue_damage(struct gud_device *gdrm, struct drm_framebuffer *fb,
+ const struct iosys_map *src, struct drm_rect *damage)
{
struct drm_framebuffer *old_fb = NULL;
+ struct iosys_map shadow_map;
mutex_lock(&gdrm->damage_lock);
+ if (!gdrm->shadow_buf) {
+ gdrm->shadow_buf = vzalloc(fb->pitches[0] * fb->height);
+ if (!gdrm->shadow_buf) {
+ mutex_unlock(&gdrm->damage_lock);
+ return -ENOMEM;
+ }
+ }
+
+ iosys_map_set_vaddr(&shadow_map, gdrm->shadow_buf);
+ iosys_map_incr(&shadow_map, drm_fb_clip_offset(fb->pitches[0], fb->format, damage));
+ drm_fb_memcpy(&shadow_map, fb->pitches, src, fb, damage);
+
if (fb != gdrm->fb) {
old_fb = gdrm->fb;
drm_framebuffer_get(fb);
gdrm->fb = fb;
}
- gud_add_damage(gdrm, damage);
+ gdrm->damage.x1 = min(gdrm->damage.x1, damage->x1);
+ gdrm->damage.y1 = min(gdrm->damage.y1, damage->y1);
+ gdrm->damage.x2 = max(gdrm->damage.x2, damage->x2);
+ gdrm->damage.y2 = max(gdrm->damage.y2, damage->y2);
mutex_unlock(&gdrm->damage_lock);
@@ -447,6 +418,26 @@ static void gud_fb_queue_damage(struct gud_device *gdrm, struct drm_framebuffer
if (old_fb)
drm_framebuffer_put(old_fb);
+
+ return 0;
+}
+
+static void gud_fb_handle_damage(struct gud_device *gdrm, struct drm_framebuffer *fb,
+ const struct iosys_map *src, struct drm_rect *damage)
+{
+ int ret;
+
+ if (gdrm->flags & GUD_DISPLAY_FLAG_FULL_UPDATE)
+ drm_rect_init(damage, 0, 0, fb->width, fb->height);
+
+ if (gud_async_flush) {
+ ret = gud_fb_queue_damage(gdrm, fb, src, damage);
+ if (ret != -ENOMEM)
+ return;
+ }
+
+ /* Imported buffers are assumed to be WriteCombined with uncached reads */
+ gud_flush_damage(gdrm, fb, src, !fb->obj[0]->import_attach, damage);
}
int gud_pipe_check(struct drm_simple_display_pipe *pipe,
@@ -571,10 +562,11 @@ void gud_pipe_update(struct drm_simple_display_pipe *pipe,
struct drm_device *drm = pipe->crtc.dev;
struct gud_device *gdrm = to_gud_device(drm);
struct drm_plane_state *state = pipe->plane.state;
+ struct drm_shadow_plane_state *shadow_plane_state = to_drm_shadow_plane_state(state);
struct drm_framebuffer *fb = state->fb;
struct drm_crtc *crtc = &pipe->crtc;
struct drm_rect damage;
- int idx;
+ int ret, idx;
if (crtc->state->mode_changed || !crtc->state->enable) {
cancel_work_sync(&gdrm->work);
@@ -584,6 +576,8 @@ void gud_pipe_update(struct drm_simple_display_pipe *pipe,
gdrm->fb = NULL;
}
gud_clear_damage(gdrm);
+ vfree(gdrm->shadow_buf);
+ gdrm->shadow_buf = NULL;
mutex_unlock(&gdrm->damage_lock);
}
@@ -599,14 +593,19 @@ void gud_pipe_update(struct drm_simple_display_pipe *pipe,
if (crtc->state->active_changed)
gud_usb_set_u8(gdrm, GUD_REQ_SET_DISPLAY_ENABLE, crtc->state->active);
- if (drm_atomic_helper_damage_merged(old_state, state, &damage)) {
- if (gdrm->flags & GUD_DISPLAY_FLAG_FULL_UPDATE)
- drm_rect_init(&damage, 0, 0, fb->width, fb->height);
- gud_fb_queue_damage(gdrm, fb, &damage);
- if (!gud_async_flush)
- flush_work(&gdrm->work);
- }
+ if (!fb)
+ goto ctrl_disable;
+
+ ret = drm_gem_fb_begin_cpu_access(fb, DMA_FROM_DEVICE);
+ if (ret)
+ goto ctrl_disable;
+
+ if (drm_atomic_helper_damage_merged(old_state, state, &damage))
+ gud_fb_handle_damage(gdrm, fb, &shadow_plane_state->data[0], &damage);
+
+ drm_gem_fb_end_cpu_access(fb, DMA_FROM_DEVICE);
+ctrl_disable:
if (!crtc->state->enable)
gud_usb_set_u8(gdrm, GUD_REQ_SET_CONTROLLER_ENABLE, 0);
diff --git a/drivers/gpu/drm/hisilicon/hibmc/Kconfig b/drivers/gpu/drm/hisilicon/hibmc/Kconfig
index 4e41c144a290..126504318a4f 100644
--- a/drivers/gpu/drm/hisilicon/hibmc/Kconfig
+++ b/drivers/gpu/drm/hisilicon/hibmc/Kconfig
@@ -7,6 +7,8 @@ config DRM_HISI_HIBMC
select DRM_VRAM_HELPER
select DRM_TTM
select DRM_TTM_HELPER
+ select I2C
+ select I2C_ALGOBIT
help
Choose this option if you have a Hisilicon Hibmc soc chipset.
If M is selected the module will be called hibmc-drm.
diff --git a/drivers/gpu/drm/hisilicon/hibmc/hibmc_drm_drv.c b/drivers/gpu/drm/hisilicon/hibmc/hibmc_drm_drv.c
index fe4269c5aa0a..0c4aa4d9b0a7 100644
--- a/drivers/gpu/drm/hisilicon/hibmc/hibmc_drm_drv.c
+++ b/drivers/gpu/drm/hisilicon/hibmc/hibmc_drm_drv.c
@@ -17,6 +17,7 @@
#include <drm/drm_aperture.h>
#include <drm/drm_atomic_helper.h>
#include <drm/drm_drv.h>
+#include <drm/drm_fbdev_generic.h>
#include <drm/drm_gem_framebuffer_helper.h>
#include <drm/drm_gem_vram_helper.h>
#include <drm/drm_managed.h>
@@ -105,8 +106,7 @@ static int hibmc_kms_init(struct hibmc_drm_private *priv)
dev->mode_config.max_width = 1920;
dev->mode_config.max_height = 1200;
- dev->mode_config.fb_base = priv->fb_base;
- dev->mode_config.preferred_depth = 32;
+ dev->mode_config.preferred_depth = 24;
dev->mode_config.prefer_shadow = 1;
dev->mode_config.funcs = (void *)&hibmc_mode_funcs;
@@ -212,7 +212,7 @@ static int hibmc_hw_map(struct hibmc_drm_private *priv)
{
struct drm_device *dev = &priv->dev;
struct pci_dev *pdev = to_pci_dev(dev->dev);
- resource_size_t addr, size, ioaddr, iosize;
+ resource_size_t ioaddr, iosize;
ioaddr = pci_resource_start(pdev, 1);
iosize = pci_resource_len(pdev, 1);
@@ -222,16 +222,6 @@ static int hibmc_hw_map(struct hibmc_drm_private *priv)
return -ENOMEM;
}
- addr = pci_resource_start(pdev, 0);
- size = pci_resource_len(pdev, 0);
- priv->fb_map = devm_ioremap(dev->dev, addr, size);
- if (!priv->fb_map) {
- drm_err(dev, "Cannot map framebuffer\n");
- return -ENOMEM;
- }
- priv->fb_base = addr;
- priv->fb_size = size;
-
return 0;
}
@@ -271,7 +261,8 @@ static int hibmc_load(struct drm_device *dev)
if (ret)
goto err;
- ret = drmm_vram_helper_init(dev, pci_resource_start(pdev, 0), priv->fb_size);
+ ret = drmm_vram_helper_init(dev, pci_resource_start(pdev, 0),
+ pci_resource_len(pdev, 0));
if (ret) {
drm_err(dev, "Error initializing VRAM MM; %d\n", ret);
goto err;
@@ -349,7 +340,7 @@ static int hibmc_pci_probe(struct pci_dev *pdev,
goto err_unload;
}
- drm_fbdev_generic_setup(dev, dev->mode_config.preferred_depth);
+ drm_fbdev_generic_setup(dev, 32);
return 0;
diff --git a/drivers/gpu/drm/hisilicon/hibmc/hibmc_drm_drv.h b/drivers/gpu/drm/hisilicon/hibmc/hibmc_drm_drv.h
index 7d263f4d7078..f957552c6c50 100644
--- a/drivers/gpu/drm/hisilicon/hibmc/hibmc_drm_drv.h
+++ b/drivers/gpu/drm/hisilicon/hibmc/hibmc_drm_drv.h
@@ -19,7 +19,6 @@
#include <linux/i2c.h>
#include <drm/drm_edid.h>
-#include <drm/drm_fb_helper.h>
#include <drm/drm_framebuffer.h>
struct hibmc_connector {
@@ -32,9 +31,6 @@ struct hibmc_connector {
struct hibmc_drm_private {
/* hw */
void __iomem *mmio;
- void __iomem *fb_map;
- resource_size_t fb_base;
- resource_size_t fb_size;
/* drm */
struct drm_device dev;
diff --git a/drivers/gpu/drm/hisilicon/hibmc/hibmc_drm_vdac.c b/drivers/gpu/drm/hisilicon/hibmc/hibmc_drm_vdac.c
index c228091fb0e6..8c6d2ea2a472 100644
--- a/drivers/gpu/drm/hisilicon/hibmc/hibmc_drm_vdac.c
+++ b/drivers/gpu/drm/hisilicon/hibmc/hibmc_drm_vdac.c
@@ -11,6 +11,8 @@
* Jianhua Li <lijianhua@huawei.com>
*/
+#include <linux/io.h>
+
#include <drm/drm_atomic_helper.h>
#include <drm/drm_probe_helper.h>
#include <drm/drm_print.h>
diff --git a/drivers/gpu/drm/hisilicon/kirin/dw_drm_dsi.c b/drivers/gpu/drm/hisilicon/kirin/dw_drm_dsi.c
index a0d5aa727d58..d9978b79828c 100644
--- a/drivers/gpu/drm/hisilicon/kirin/dw_drm_dsi.c
+++ b/drivers/gpu/drm/hisilicon/kirin/dw_drm_dsi.c
@@ -658,7 +658,7 @@ static enum drm_mode_status dsi_encoder_mode_valid(struct drm_encoder *encoder,
* reset adj_mode to the mode value each time,
* so we don't adjust the mode twice
*/
- drm_mode_copy(&adj_mode, mode);
+ drm_mode_init(&adj_mode, mode);
crtc_funcs = crtc->helper_private;
if (crtc_funcs && crtc_funcs->mode_fixup)
diff --git a/drivers/gpu/drm/hisilicon/kirin/kirin_drm_drv.c b/drivers/gpu/drm/hisilicon/kirin/kirin_drm_drv.c
index 73ee7f25f734..9c5d49bf40c9 100644
--- a/drivers/gpu/drm/hisilicon/kirin/kirin_drm_drv.c
+++ b/drivers/gpu/drm/hisilicon/kirin/kirin_drm_drv.c
@@ -19,7 +19,7 @@
#include <drm/drm_atomic_helper.h>
#include <drm/drm_drv.h>
-#include <drm/drm_fb_helper.h>
+#include <drm/drm_fbdev_generic.h>
#include <drm/drm_gem_dma_helper.h>
#include <drm/drm_gem_framebuffer_helper.h>
#include <drm/drm_module.h>
diff --git a/drivers/gpu/drm/hyperv/hyperv_drm_drv.c b/drivers/gpu/drm/hyperv/hyperv_drm_drv.c
index ca127ff797f7..f830d62a5ce6 100644
--- a/drivers/gpu/drm/hyperv/hyperv_drm_drv.c
+++ b/drivers/gpu/drm/hyperv/hyperv_drm_drv.c
@@ -11,7 +11,7 @@
#include <drm/drm_aperture.h>
#include <drm/drm_atomic_helper.h>
#include <drm/drm_drv.h>
-#include <drm/drm_fb_helper.h>
+#include <drm/drm_fbdev_generic.h>
#include <drm/drm_gem_shmem_helper.h>
#include <drm/drm_simple_kms_helper.h>
@@ -165,7 +165,7 @@ err_hv_set_drv_data:
return ret;
}
-static int hyperv_vmbus_remove(struct hv_device *hdev)
+static void hyperv_vmbus_remove(struct hv_device *hdev)
{
struct drm_device *dev = hv_get_drvdata(hdev);
struct hyperv_drm_device *hv = to_hv(dev);
@@ -176,8 +176,6 @@ static int hyperv_vmbus_remove(struct hv_device *hdev)
hv_set_drvdata(hdev, NULL);
vmbus_free_mmio(hv->mem->start, hv->fb_size);
-
- return 0;
}
static int hyperv_vmbus_suspend(struct hv_device *hdev)
diff --git a/drivers/gpu/drm/hyperv/hyperv_drm_modeset.c b/drivers/gpu/drm/hyperv/hyperv_drm_modeset.c
index 28e732f94bf2..6c6b57298797 100644
--- a/drivers/gpu/drm/hyperv/hyperv_drm_modeset.c
+++ b/drivers/gpu/drm/hyperv/hyperv_drm_modeset.c
@@ -8,7 +8,6 @@
#include <drm/drm_damage_helper.h>
#include <drm/drm_drv.h>
#include <drm/drm_edid.h>
-#include <drm/drm_fb_helper.h>
#include <drm/drm_format_helper.h>
#include <drm/drm_fourcc.h>
#include <drm/drm_framebuffer.h>
diff --git a/drivers/gpu/drm/i2c/ch7006_drv.c b/drivers/gpu/drm/i2c/ch7006_drv.c
index 578b738859b9..521bdf656cca 100644
--- a/drivers/gpu/drm/i2c/ch7006_drv.c
+++ b/drivers/gpu/drm/i2c/ch7006_drv.c
@@ -26,6 +26,8 @@
#include <linux/module.h>
+#include <drm/drm_crtc_helper.h>
+
#include "ch7006_priv.h"
/* DRM encoder functions */
@@ -250,7 +252,7 @@ static int ch7006_encoder_create_resources(struct drm_encoder *encoder,
struct drm_device *dev = encoder->dev;
struct drm_mode_config *conf = &dev->mode_config;
- drm_mode_create_tv_properties(dev, NUM_TV_NORMS, ch7006_tv_norm_names);
+ drm_mode_create_tv_properties_legacy(dev, NUM_TV_NORMS, ch7006_tv_norm_names);
priv->scale_property = drm_property_create_range(dev, 0, "scale", 0, 2);
if (!priv->scale_property)
@@ -264,8 +266,8 @@ static int ch7006_encoder_create_resources(struct drm_encoder *encoder,
priv->hmargin);
drm_object_attach_property(&connector->base, conf->tv_bottom_margin_property,
priv->vmargin);
- drm_object_attach_property(&connector->base, conf->tv_mode_property,
- priv->norm);
+ drm_object_attach_property(&connector->base, conf->legacy_tv_mode_property,
+ priv->norm);
drm_object_attach_property(&connector->base, conf->tv_brightness_property,
priv->brightness);
drm_object_attach_property(&connector->base, conf->tv_contrast_property,
@@ -315,7 +317,7 @@ static int ch7006_encoder_set_property(struct drm_encoder *encoder,
ch7006_load_reg(client, state, CH7006_POV);
ch7006_load_reg(client, state, CH7006_VPOS);
- } else if (property == conf->tv_mode_property) {
+ } else if (property == conf->legacy_tv_mode_property) {
if (connector->dpms != DRM_MODE_DPMS_OFF)
return -EINVAL;
@@ -386,7 +388,7 @@ static const struct drm_encoder_slave_funcs ch7006_encoder_funcs = {
/* I2C driver functions */
-static int ch7006_probe(struct i2c_client *client, const struct i2c_device_id *id)
+static int ch7006_probe(struct i2c_client *client)
{
uint8_t addr = CH7006_VERSION_ID;
uint8_t val;
@@ -495,7 +497,7 @@ static const struct dev_pm_ops ch7006_pm_ops = {
static struct drm_i2c_encoder_driver ch7006_driver = {
.i2c_driver = {
- .probe = ch7006_probe,
+ .probe_new = ch7006_probe,
.remove = ch7006_remove,
.driver = {
diff --git a/drivers/gpu/drm/i2c/ch7006_priv.h b/drivers/gpu/drm/i2c/ch7006_priv.h
index 986b04599906..052bdc48a339 100644
--- a/drivers/gpu/drm/i2c/ch7006_priv.h
+++ b/drivers/gpu/drm/i2c/ch7006_priv.h
@@ -27,7 +27,6 @@
#ifndef __DRM_I2C_CH7006_PRIV_H__
#define __DRM_I2C_CH7006_PRIV_H__
-#include <drm/drm_crtc_helper.h>
#include <drm/drm_encoder_slave.h>
#include <drm/drm_probe_helper.h>
#include <drm/i2c/ch7006.h>
diff --git a/drivers/gpu/drm/i2c/sil164_drv.c b/drivers/gpu/drm/i2c/sil164_drv.c
index 1bc0b5de4499..f57f9a807542 100644
--- a/drivers/gpu/drm/i2c/sil164_drv.c
+++ b/drivers/gpu/drm/i2c/sil164_drv.c
@@ -350,7 +350,7 @@ static const struct drm_encoder_slave_funcs sil164_encoder_funcs = {
/* I2C driver functions */
static int
-sil164_probe(struct i2c_client *client, const struct i2c_device_id *id)
+sil164_probe(struct i2c_client *client)
{
int vendor = sil164_read(client, SIL164_VENDOR_HI) << 8 |
sil164_read(client, SIL164_VENDOR_LO);
@@ -420,7 +420,7 @@ MODULE_DEVICE_TABLE(i2c, sil164_ids);
static struct drm_i2c_encoder_driver sil164_driver = {
.i2c_driver = {
- .probe = sil164_probe,
+ .probe_new = sil164_probe,
.driver = {
.name = "sil164",
},
diff --git a/drivers/gpu/drm/i2c/tda9950.c b/drivers/gpu/drm/i2c/tda9950.c
index 9ed54e7ccff2..b8c143e573e0 100644
--- a/drivers/gpu/drm/i2c/tda9950.c
+++ b/drivers/gpu/drm/i2c/tda9950.c
@@ -375,8 +375,7 @@ static void tda9950_cec_del(void *data)
cec_delete_adapter(priv->adap);
}
-static int tda9950_probe(struct i2c_client *client,
- const struct i2c_device_id *id)
+static int tda9950_probe(struct i2c_client *client)
{
struct tda9950_glue *glue = client->dev.platform_data;
struct device *dev = &client->dev;
@@ -493,7 +492,7 @@ static struct i2c_device_id tda9950_ids[] = {
MODULE_DEVICE_TABLE(i2c, tda9950_ids);
static struct i2c_driver tda9950_driver = {
- .probe = tda9950_probe,
+ .probe_new = tda9950_probe,
.remove = tda9950_remove,
.driver = {
.name = "tda9950",
diff --git a/drivers/gpu/drm/i2c/tda998x_drv.c b/drivers/gpu/drm/i2c/tda998x_drv.c
index d444e7fffb54..db5c9343a3d2 100644
--- a/drivers/gpu/drm/i2c/tda998x_drv.c
+++ b/drivers/gpu/drm/i2c/tda998x_drv.c
@@ -1174,6 +1174,8 @@ static int tda998x_audio_codec_init(struct tda998x_priv *priv,
struct hdmi_codec_pdata codec_data = {
.ops = &audio_codec_ops,
.max_i2s_channels = 2,
+ .no_i2s_capture = 1,
+ .no_spdif_capture = 1,
};
if (priv->audio_port_enable[AUDIO_ROUTE_I2S])
@@ -2057,7 +2059,7 @@ static const struct component_ops tda998x_ops = {
};
static int
-tda998x_probe(struct i2c_client *client, const struct i2c_device_id *id)
+tda998x_probe(struct i2c_client *client)
{
int ret;
@@ -2097,7 +2099,7 @@ static const struct i2c_device_id tda998x_ids[] = {
MODULE_DEVICE_TABLE(i2c, tda998x_ids);
static struct i2c_driver tda998x_driver = {
- .probe = tda998x_probe,
+ .probe_new = tda998x_probe,
.remove = tda998x_remove,
.driver = {
.name = "tda998x",
diff --git a/drivers/gpu/drm/i810/Makefile b/drivers/gpu/drm/i810/Makefile
deleted file mode 100644
index c181f8528c5c..000000000000
--- a/drivers/gpu/drm/i810/Makefile
+++ /dev/null
@@ -1,8 +0,0 @@
-# SPDX-License-Identifier: GPL-2.0-only
-#
-# Makefile for the drm device driver. This driver provides support for the
-# Direct Rendering Infrastructure (DRI) in XFree86 4.1.0 and higher.
-
-i810-y := i810_drv.o i810_dma.o
-
-obj-$(CONFIG_DRM_I810) += i810.o
diff --git a/drivers/gpu/drm/i810/i810_dma.c b/drivers/gpu/drm/i810/i810_dma.c
deleted file mode 100644
index 9fb4dd63342f..000000000000
--- a/drivers/gpu/drm/i810/i810_dma.c
+++ /dev/null
@@ -1,1266 +0,0 @@
-/* i810_dma.c -- DMA support for the i810 -*- linux-c -*-
- * Created: Mon Dec 13 01:50:01 1999 by jhartmann@precisioninsight.com
- *
- * Copyright 1999 Precision Insight, Inc., Cedar Park, Texas.
- * Copyright 2000 VA Linux Systems, Inc., Sunnyvale, California.
- * All Rights Reserved.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice (including the next
- * paragraph) shall be included in all copies or substantial portions of the
- * Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * PRECISION INSIGHT AND/OR ITS SUPPLIERS BE LIABLE FOR ANY CLAIM, DAMAGES OR
- * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
- * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
- * DEALINGS IN THE SOFTWARE.
- *
- * Authors: Rickard E. (Rik) Faith <faith@valinux.com>
- * Jeff Hartmann <jhartmann@valinux.com>
- * Keith Whitwell <keith@tungstengraphics.com>
- *
- */
-
-#include <linux/delay.h>
-#include <linux/mman.h>
-#include <linux/pci.h>
-
-#include <drm/drm_device.h>
-#include <drm/drm_drv.h>
-#include <drm/drm_file.h>
-#include <drm/drm_ioctl.h>
-#include <drm/drm_print.h>
-#include <drm/i810_drm.h>
-
-#include "i810_drv.h"
-
-#define I810_BUF_FREE 2
-#define I810_BUF_CLIENT 1
-#define I810_BUF_HARDWARE 0
-
-#define I810_BUF_UNMAPPED 0
-#define I810_BUF_MAPPED 1
-
-static struct drm_buf *i810_freelist_get(struct drm_device * dev)
-{
- struct drm_device_dma *dma = dev->dma;
- int i;
- int used;
-
- /* Linear search might not be the best solution */
-
- for (i = 0; i < dma->buf_count; i++) {
- struct drm_buf *buf = dma->buflist[i];
- drm_i810_buf_priv_t *buf_priv = buf->dev_private;
- /* In use is already a pointer */
- used = cmpxchg(buf_priv->in_use, I810_BUF_FREE,
- I810_BUF_CLIENT);
- if (used == I810_BUF_FREE)
- return buf;
- }
- return NULL;
-}
-
-/* This should only be called if the buffer is not sent to the hardware
- * yet, the hardware updates in use for us once its on the ring buffer.
- */
-
-static int i810_freelist_put(struct drm_device *dev, struct drm_buf *buf)
-{
- drm_i810_buf_priv_t *buf_priv = buf->dev_private;
- int used;
-
- /* In use is already a pointer */
- used = cmpxchg(buf_priv->in_use, I810_BUF_CLIENT, I810_BUF_FREE);
- if (used != I810_BUF_CLIENT) {
- DRM_ERROR("Freeing buffer thats not in use : %d\n", buf->idx);
- return -EINVAL;
- }
-
- return 0;
-}
-
-static int i810_mmap_buffers(struct file *filp, struct vm_area_struct *vma)
-{
- struct drm_file *priv = filp->private_data;
- struct drm_device *dev;
- drm_i810_private_t *dev_priv;
- struct drm_buf *buf;
- drm_i810_buf_priv_t *buf_priv;
-
- dev = priv->minor->dev;
- dev_priv = dev->dev_private;
- buf = dev_priv->mmap_buffer;
- buf_priv = buf->dev_private;
-
- vma->vm_flags |= VM_DONTCOPY;
-
- buf_priv->currently_mapped = I810_BUF_MAPPED;
-
- if (io_remap_pfn_range(vma, vma->vm_start,
- vma->vm_pgoff,
- vma->vm_end - vma->vm_start, vma->vm_page_prot))
- return -EAGAIN;
- return 0;
-}
-
-static const struct file_operations i810_buffer_fops = {
- .open = drm_open,
- .release = drm_release,
- .unlocked_ioctl = drm_ioctl,
- .mmap = i810_mmap_buffers,
- .compat_ioctl = drm_compat_ioctl,
- .llseek = noop_llseek,
-};
-
-static int i810_map_buffer(struct drm_buf *buf, struct drm_file *file_priv)
-{
- struct drm_device *dev = file_priv->minor->dev;
- drm_i810_buf_priv_t *buf_priv = buf->dev_private;
- drm_i810_private_t *dev_priv = dev->dev_private;
- const struct file_operations *old_fops;
- int retcode = 0;
-
- if (buf_priv->currently_mapped == I810_BUF_MAPPED)
- return -EINVAL;
-
- /* This is all entirely broken */
- old_fops = file_priv->filp->f_op;
- file_priv->filp->f_op = &i810_buffer_fops;
- dev_priv->mmap_buffer = buf;
- buf_priv->virtual = (void *)vm_mmap(file_priv->filp, 0, buf->total,
- PROT_READ | PROT_WRITE,
- MAP_SHARED, buf->bus_address);
- dev_priv->mmap_buffer = NULL;
- file_priv->filp->f_op = old_fops;
- if (IS_ERR(buf_priv->virtual)) {
- /* Real error */
- DRM_ERROR("mmap error\n");
- retcode = PTR_ERR(buf_priv->virtual);
- buf_priv->virtual = NULL;
- }
-
- return retcode;
-}
-
-static int i810_unmap_buffer(struct drm_buf *buf)
-{
- drm_i810_buf_priv_t *buf_priv = buf->dev_private;
- int retcode = 0;
-
- if (buf_priv->currently_mapped != I810_BUF_MAPPED)
- return -EINVAL;
-
- retcode = vm_munmap((unsigned long)buf_priv->virtual,
- (size_t) buf->total);
-
- buf_priv->currently_mapped = I810_BUF_UNMAPPED;
- buf_priv->virtual = NULL;
-
- return retcode;
-}
-
-static int i810_dma_get_buffer(struct drm_device *dev, drm_i810_dma_t *d,
- struct drm_file *file_priv)
-{
- struct drm_buf *buf;
- drm_i810_buf_priv_t *buf_priv;
- int retcode = 0;
-
- buf = i810_freelist_get(dev);
- if (!buf) {
- retcode = -ENOMEM;
- DRM_DEBUG("retcode=%d\n", retcode);
- return retcode;
- }
-
- retcode = i810_map_buffer(buf, file_priv);
- if (retcode) {
- i810_freelist_put(dev, buf);
- DRM_ERROR("mapbuf failed, retcode %d\n", retcode);
- return retcode;
- }
- buf->file_priv = file_priv;
- buf_priv = buf->dev_private;
- d->granted = 1;
- d->request_idx = buf->idx;
- d->request_size = buf->total;
- d->virtual = buf_priv->virtual;
-
- return retcode;
-}
-
-static int i810_dma_cleanup(struct drm_device *dev)
-{
- struct drm_device_dma *dma = dev->dma;
-
- /* Make sure interrupts are disabled here because the uninstall ioctl
- * may not have been called from userspace and after dev_private
- * is freed, it's too late.
- */
- if (drm_core_check_feature(dev, DRIVER_HAVE_IRQ) && dev->irq_enabled)
- drm_legacy_irq_uninstall(dev);
-
- if (dev->dev_private) {
- int i;
- drm_i810_private_t *dev_priv =
- (drm_i810_private_t *) dev->dev_private;
-
- if (dev_priv->ring.virtual_start)
- drm_legacy_ioremapfree(&dev_priv->ring.map, dev);
- if (dev_priv->hw_status_page) {
- dma_free_coherent(dev->dev, PAGE_SIZE,
- dev_priv->hw_status_page,
- dev_priv->dma_status_page);
- }
- kfree(dev->dev_private);
- dev->dev_private = NULL;
-
- for (i = 0; i < dma->buf_count; i++) {
- struct drm_buf *buf = dma->buflist[i];
- drm_i810_buf_priv_t *buf_priv = buf->dev_private;
-
- if (buf_priv->kernel_virtual && buf->total)
- drm_legacy_ioremapfree(&buf_priv->map, dev);
- }
- }
- return 0;
-}
-
-static int i810_wait_ring(struct drm_device *dev, int n)
-{
- drm_i810_private_t *dev_priv = dev->dev_private;
- drm_i810_ring_buffer_t *ring = &(dev_priv->ring);
- int iters = 0;
- unsigned long end;
- unsigned int last_head = I810_READ(LP_RING + RING_HEAD) & HEAD_ADDR;
-
- end = jiffies + (HZ * 3);
- while (ring->space < n) {
- ring->head = I810_READ(LP_RING + RING_HEAD) & HEAD_ADDR;
- ring->space = ring->head - (ring->tail + 8);
- if (ring->space < 0)
- ring->space += ring->Size;
-
- if (ring->head != last_head) {
- end = jiffies + (HZ * 3);
- last_head = ring->head;
- }
-
- iters++;
- if (time_before(end, jiffies)) {
- DRM_ERROR("space: %d wanted %d\n", ring->space, n);
- DRM_ERROR("lockup\n");
- goto out_wait_ring;
- }
- udelay(1);
- }
-
-out_wait_ring:
- return iters;
-}
-
-static void i810_kernel_lost_context(struct drm_device *dev)
-{
- drm_i810_private_t *dev_priv = dev->dev_private;
- drm_i810_ring_buffer_t *ring = &(dev_priv->ring);
-
- ring->head = I810_READ(LP_RING + RING_HEAD) & HEAD_ADDR;
- ring->tail = I810_READ(LP_RING + RING_TAIL);
- ring->space = ring->head - (ring->tail + 8);
- if (ring->space < 0)
- ring->space += ring->Size;
-}
-
-static int i810_freelist_init(struct drm_device *dev, drm_i810_private_t *dev_priv)
-{
- struct drm_device_dma *dma = dev->dma;
- int my_idx = 24;
- u32 *hw_status = (u32 *) (dev_priv->hw_status_page + my_idx);
- int i;
-
- if (dma->buf_count > 1019) {
- /* Not enough space in the status page for the freelist */
- return -EINVAL;
- }
-
- for (i = 0; i < dma->buf_count; i++) {
- struct drm_buf *buf = dma->buflist[i];
- drm_i810_buf_priv_t *buf_priv = buf->dev_private;
-
- buf_priv->in_use = hw_status++;
- buf_priv->my_use_idx = my_idx;
- my_idx += 4;
-
- *buf_priv->in_use = I810_BUF_FREE;
-
- buf_priv->map.offset = buf->bus_address;
- buf_priv->map.size = buf->total;
- buf_priv->map.type = _DRM_AGP;
- buf_priv->map.flags = 0;
- buf_priv->map.mtrr = 0;
-
- drm_legacy_ioremap(&buf_priv->map, dev);
- buf_priv->kernel_virtual = buf_priv->map.handle;
-
- }
- return 0;
-}
-
-static int i810_dma_initialize(struct drm_device *dev,
- drm_i810_private_t *dev_priv,
- drm_i810_init_t *init)
-{
- struct drm_map_list *r_list;
- memset(dev_priv, 0, sizeof(drm_i810_private_t));
-
- list_for_each_entry(r_list, &dev->maplist, head) {
- if (r_list->map &&
- r_list->map->type == _DRM_SHM &&
- r_list->map->flags & _DRM_CONTAINS_LOCK) {
- dev_priv->sarea_map = r_list->map;
- break;
- }
- }
- if (!dev_priv->sarea_map) {
- dev->dev_private = (void *)dev_priv;
- i810_dma_cleanup(dev);
- DRM_ERROR("can not find sarea!\n");
- return -EINVAL;
- }
- dev_priv->mmio_map = drm_legacy_findmap(dev, init->mmio_offset);
- if (!dev_priv->mmio_map) {
- dev->dev_private = (void *)dev_priv;
- i810_dma_cleanup(dev);
- DRM_ERROR("can not find mmio map!\n");
- return -EINVAL;
- }
- dev->agp_buffer_token = init->buffers_offset;
- dev->agp_buffer_map = drm_legacy_findmap(dev, init->buffers_offset);
- if (!dev->agp_buffer_map) {
- dev->dev_private = (void *)dev_priv;
- i810_dma_cleanup(dev);
- DRM_ERROR("can not find dma buffer map!\n");
- return -EINVAL;
- }
-
- dev_priv->sarea_priv = (drm_i810_sarea_t *)
- ((u8 *) dev_priv->sarea_map->handle + init->sarea_priv_offset);
-
- dev_priv->ring.Start = init->ring_start;
- dev_priv->ring.End = init->ring_end;
- dev_priv->ring.Size = init->ring_size;
-
- dev_priv->ring.map.offset = dev->agp->base + init->ring_start;
- dev_priv->ring.map.size = init->ring_size;
- dev_priv->ring.map.type = _DRM_AGP;
- dev_priv->ring.map.flags = 0;
- dev_priv->ring.map.mtrr = 0;
-
- drm_legacy_ioremap(&dev_priv->ring.map, dev);
-
- if (dev_priv->ring.map.handle == NULL) {
- dev->dev_private = (void *)dev_priv;
- i810_dma_cleanup(dev);
- DRM_ERROR("can not ioremap virtual address for"
- " ring buffer\n");
- return -ENOMEM;
- }
-
- dev_priv->ring.virtual_start = dev_priv->ring.map.handle;
-
- dev_priv->ring.tail_mask = dev_priv->ring.Size - 1;
-
- dev_priv->w = init->w;
- dev_priv->h = init->h;
- dev_priv->pitch = init->pitch;
- dev_priv->back_offset = init->back_offset;
- dev_priv->depth_offset = init->depth_offset;
- dev_priv->front_offset = init->front_offset;
-
- dev_priv->overlay_offset = init->overlay_offset;
- dev_priv->overlay_physical = init->overlay_physical;
-
- dev_priv->front_di1 = init->front_offset | init->pitch_bits;
- dev_priv->back_di1 = init->back_offset | init->pitch_bits;
- dev_priv->zi1 = init->depth_offset | init->pitch_bits;
-
- /* Program Hardware Status Page */
- dev_priv->hw_status_page =
- dma_alloc_coherent(dev->dev, PAGE_SIZE,
- &dev_priv->dma_status_page, GFP_KERNEL);
- if (!dev_priv->hw_status_page) {
- dev->dev_private = (void *)dev_priv;
- i810_dma_cleanup(dev);
- DRM_ERROR("Can not allocate hardware status page\n");
- return -ENOMEM;
- }
- DRM_DEBUG("hw status page @ %p\n", dev_priv->hw_status_page);
-
- I810_WRITE(0x02080, dev_priv->dma_status_page);
- DRM_DEBUG("Enabled hardware status page\n");
-
- /* Now we need to init our freelist */
- if (i810_freelist_init(dev, dev_priv) != 0) {
- dev->dev_private = (void *)dev_priv;
- i810_dma_cleanup(dev);
- DRM_ERROR("Not enough space in the status page for"
- " the freelist\n");
- return -ENOMEM;
- }
- dev->dev_private = (void *)dev_priv;
-
- return 0;
-}
-
-static int i810_dma_init(struct drm_device *dev, void *data,
- struct drm_file *file_priv)
-{
- drm_i810_private_t *dev_priv;
- drm_i810_init_t *init = data;
- int retcode = 0;
-
- switch (init->func) {
- case I810_INIT_DMA_1_4:
- DRM_INFO("Using v1.4 init.\n");
- dev_priv = kmalloc(sizeof(drm_i810_private_t), GFP_KERNEL);
- if (dev_priv == NULL)
- return -ENOMEM;
- retcode = i810_dma_initialize(dev, dev_priv, init);
- break;
-
- case I810_CLEANUP_DMA:
- DRM_INFO("DMA Cleanup\n");
- retcode = i810_dma_cleanup(dev);
- break;
- default:
- return -EINVAL;
- }
-
- return retcode;
-}
-
-/* Most efficient way to verify state for the i810 is as it is
- * emitted. Non-conformant state is silently dropped.
- *
- * Use 'volatile' & local var tmp to force the emitted values to be
- * identical to the verified ones.
- */
-static void i810EmitContextVerified(struct drm_device *dev,
- volatile unsigned int *code)
-{
- drm_i810_private_t *dev_priv = dev->dev_private;
- int i, j = 0;
- unsigned int tmp;
- RING_LOCALS;
-
- BEGIN_LP_RING(I810_CTX_SETUP_SIZE);
-
- OUT_RING(GFX_OP_COLOR_FACTOR);
- OUT_RING(code[I810_CTXREG_CF1]);
-
- OUT_RING(GFX_OP_STIPPLE);
- OUT_RING(code[I810_CTXREG_ST1]);
-
- for (i = 4; i < I810_CTX_SETUP_SIZE; i++) {
- tmp = code[i];
-
- if ((tmp & (7 << 29)) == (3 << 29) &&
- (tmp & (0x1f << 24)) < (0x1d << 24)) {
- OUT_RING(tmp);
- j++;
- } else
- printk("constext state dropped!!!\n");
- }
-
- if (j & 1)
- OUT_RING(0);
-
- ADVANCE_LP_RING();
-}
-
-static void i810EmitTexVerified(struct drm_device *dev, volatile unsigned int *code)
-{
- drm_i810_private_t *dev_priv = dev->dev_private;
- int i, j = 0;
- unsigned int tmp;
- RING_LOCALS;
-
- BEGIN_LP_RING(I810_TEX_SETUP_SIZE);
-
- OUT_RING(GFX_OP_MAP_INFO);
- OUT_RING(code[I810_TEXREG_MI1]);
- OUT_RING(code[I810_TEXREG_MI2]);
- OUT_RING(code[I810_TEXREG_MI3]);
-
- for (i = 4; i < I810_TEX_SETUP_SIZE; i++) {
- tmp = code[i];
-
- if ((tmp & (7 << 29)) == (3 << 29) &&
- (tmp & (0x1f << 24)) < (0x1d << 24)) {
- OUT_RING(tmp);
- j++;
- } else
- printk("texture state dropped!!!\n");
- }
-
- if (j & 1)
- OUT_RING(0);
-
- ADVANCE_LP_RING();
-}
-
-/* Need to do some additional checking when setting the dest buffer.
- */
-static void i810EmitDestVerified(struct drm_device *dev,
- volatile unsigned int *code)
-{
- drm_i810_private_t *dev_priv = dev->dev_private;
- unsigned int tmp;
- RING_LOCALS;
-
- BEGIN_LP_RING(I810_DEST_SETUP_SIZE + 2);
-
- tmp = code[I810_DESTREG_DI1];
- if (tmp == dev_priv->front_di1 || tmp == dev_priv->back_di1) {
- OUT_RING(CMD_OP_DESTBUFFER_INFO);
- OUT_RING(tmp);
- } else
- DRM_DEBUG("bad di1 %x (allow %x or %x)\n",
- tmp, dev_priv->front_di1, dev_priv->back_di1);
-
- /* invarient:
- */
- OUT_RING(CMD_OP_Z_BUFFER_INFO);
- OUT_RING(dev_priv->zi1);
-
- OUT_RING(GFX_OP_DESTBUFFER_VARS);
- OUT_RING(code[I810_DESTREG_DV1]);
-
- OUT_RING(GFX_OP_DRAWRECT_INFO);
- OUT_RING(code[I810_DESTREG_DR1]);
- OUT_RING(code[I810_DESTREG_DR2]);
- OUT_RING(code[I810_DESTREG_DR3]);
- OUT_RING(code[I810_DESTREG_DR4]);
- OUT_RING(0);
-
- ADVANCE_LP_RING();
-}
-
-static void i810EmitState(struct drm_device *dev)
-{
- drm_i810_private_t *dev_priv = dev->dev_private;
- drm_i810_sarea_t *sarea_priv = dev_priv->sarea_priv;
- unsigned int dirty = sarea_priv->dirty;
-
- DRM_DEBUG("%x\n", dirty);
-
- if (dirty & I810_UPLOAD_BUFFERS) {
- i810EmitDestVerified(dev, sarea_priv->BufferState);
- sarea_priv->dirty &= ~I810_UPLOAD_BUFFERS;
- }
-
- if (dirty & I810_UPLOAD_CTX) {
- i810EmitContextVerified(dev, sarea_priv->ContextState);
- sarea_priv->dirty &= ~I810_UPLOAD_CTX;
- }
-
- if (dirty & I810_UPLOAD_TEX0) {
- i810EmitTexVerified(dev, sarea_priv->TexState[0]);
- sarea_priv->dirty &= ~I810_UPLOAD_TEX0;
- }
-
- if (dirty & I810_UPLOAD_TEX1) {
- i810EmitTexVerified(dev, sarea_priv->TexState[1]);
- sarea_priv->dirty &= ~I810_UPLOAD_TEX1;
- }
-}
-
-/* need to verify
- */
-static void i810_dma_dispatch_clear(struct drm_device *dev, int flags,
- unsigned int clear_color,
- unsigned int clear_zval)
-{
- drm_i810_private_t *dev_priv = dev->dev_private;
- drm_i810_sarea_t *sarea_priv = dev_priv->sarea_priv;
- int nbox = sarea_priv->nbox;
- struct drm_clip_rect *pbox = sarea_priv->boxes;
- int pitch = dev_priv->pitch;
- int cpp = 2;
- int i;
- RING_LOCALS;
-
- if (dev_priv->current_page == 1) {
- unsigned int tmp = flags;
-
- flags &= ~(I810_FRONT | I810_BACK);
- if (tmp & I810_FRONT)
- flags |= I810_BACK;
- if (tmp & I810_BACK)
- flags |= I810_FRONT;
- }
-
- i810_kernel_lost_context(dev);
-
- if (nbox > I810_NR_SAREA_CLIPRECTS)
- nbox = I810_NR_SAREA_CLIPRECTS;
-
- for (i = 0; i < nbox; i++, pbox++) {
- unsigned int x = pbox->x1;
- unsigned int y = pbox->y1;
- unsigned int width = (pbox->x2 - x) * cpp;
- unsigned int height = pbox->y2 - y;
- unsigned int start = y * pitch + x * cpp;
-
- if (pbox->x1 > pbox->x2 ||
- pbox->y1 > pbox->y2 ||
- pbox->x2 > dev_priv->w || pbox->y2 > dev_priv->h)
- continue;
-
- if (flags & I810_FRONT) {
- BEGIN_LP_RING(6);
- OUT_RING(BR00_BITBLT_CLIENT | BR00_OP_COLOR_BLT | 0x3);
- OUT_RING(BR13_SOLID_PATTERN | (0xF0 << 16) | pitch);
- OUT_RING((height << 16) | width);
- OUT_RING(start);
- OUT_RING(clear_color);
- OUT_RING(0);
- ADVANCE_LP_RING();
- }
-
- if (flags & I810_BACK) {
- BEGIN_LP_RING(6);
- OUT_RING(BR00_BITBLT_CLIENT | BR00_OP_COLOR_BLT | 0x3);
- OUT_RING(BR13_SOLID_PATTERN | (0xF0 << 16) | pitch);
- OUT_RING((height << 16) | width);
- OUT_RING(dev_priv->back_offset + start);
- OUT_RING(clear_color);
- OUT_RING(0);
- ADVANCE_LP_RING();
- }
-
- if (flags & I810_DEPTH) {
- BEGIN_LP_RING(6);
- OUT_RING(BR00_BITBLT_CLIENT | BR00_OP_COLOR_BLT | 0x3);
- OUT_RING(BR13_SOLID_PATTERN | (0xF0 << 16) | pitch);
- OUT_RING((height << 16) | width);
- OUT_RING(dev_priv->depth_offset + start);
- OUT_RING(clear_zval);
- OUT_RING(0);
- ADVANCE_LP_RING();
- }
- }
-}
-
-static void i810_dma_dispatch_swap(struct drm_device *dev)
-{
- drm_i810_private_t *dev_priv = dev->dev_private;
- drm_i810_sarea_t *sarea_priv = dev_priv->sarea_priv;
- int nbox = sarea_priv->nbox;
- struct drm_clip_rect *pbox = sarea_priv->boxes;
- int pitch = dev_priv->pitch;
- int cpp = 2;
- int i;
- RING_LOCALS;
-
- DRM_DEBUG("swapbuffers\n");
-
- i810_kernel_lost_context(dev);
-
- if (nbox > I810_NR_SAREA_CLIPRECTS)
- nbox = I810_NR_SAREA_CLIPRECTS;
-
- for (i = 0; i < nbox; i++, pbox++) {
- unsigned int w = pbox->x2 - pbox->x1;
- unsigned int h = pbox->y2 - pbox->y1;
- unsigned int dst = pbox->x1 * cpp + pbox->y1 * pitch;
- unsigned int start = dst;
-
- if (pbox->x1 > pbox->x2 ||
- pbox->y1 > pbox->y2 ||
- pbox->x2 > dev_priv->w || pbox->y2 > dev_priv->h)
- continue;
-
- BEGIN_LP_RING(6);
- OUT_RING(BR00_BITBLT_CLIENT | BR00_OP_SRC_COPY_BLT | 0x4);
- OUT_RING(pitch | (0xCC << 16));
- OUT_RING((h << 16) | (w * cpp));
- if (dev_priv->current_page == 0)
- OUT_RING(dev_priv->front_offset + start);
- else
- OUT_RING(dev_priv->back_offset + start);
- OUT_RING(pitch);
- if (dev_priv->current_page == 0)
- OUT_RING(dev_priv->back_offset + start);
- else
- OUT_RING(dev_priv->front_offset + start);
- ADVANCE_LP_RING();
- }
-}
-
-static void i810_dma_dispatch_vertex(struct drm_device *dev,
- struct drm_buf *buf, int discard, int used)
-{
- drm_i810_private_t *dev_priv = dev->dev_private;
- drm_i810_buf_priv_t *buf_priv = buf->dev_private;
- drm_i810_sarea_t *sarea_priv = dev_priv->sarea_priv;
- struct drm_clip_rect *box = sarea_priv->boxes;
- int nbox = sarea_priv->nbox;
- unsigned long address = (unsigned long)buf->bus_address;
- unsigned long start = address - dev->agp->base;
- int i = 0;
- RING_LOCALS;
-
- i810_kernel_lost_context(dev);
-
- if (nbox > I810_NR_SAREA_CLIPRECTS)
- nbox = I810_NR_SAREA_CLIPRECTS;
-
- if (used < 0 || used > 4 * 1024)
- used = 0;
-
- if (sarea_priv->dirty)
- i810EmitState(dev);
-
- if (buf_priv->currently_mapped == I810_BUF_MAPPED) {
- unsigned int prim = (sarea_priv->vertex_prim & PR_MASK);
-
- *(u32 *) buf_priv->kernel_virtual =
- ((GFX_OP_PRIMITIVE | prim | ((used / 4) - 2)));
-
- if (used & 4) {
- *(u32 *) ((char *) buf_priv->kernel_virtual + used) = 0;
- used += 4;
- }
-
- i810_unmap_buffer(buf);
- }
-
- if (used) {
- do {
- if (i < nbox) {
- BEGIN_LP_RING(4);
- OUT_RING(GFX_OP_SCISSOR | SC_UPDATE_SCISSOR |
- SC_ENABLE);
- OUT_RING(GFX_OP_SCISSOR_INFO);
- OUT_RING(box[i].x1 | (box[i].y1 << 16));
- OUT_RING((box[i].x2 -
- 1) | ((box[i].y2 - 1) << 16));
- ADVANCE_LP_RING();
- }
-
- BEGIN_LP_RING(4);
- OUT_RING(CMD_OP_BATCH_BUFFER);
- OUT_RING(start | BB1_PROTECTED);
- OUT_RING(start + used - 4);
- OUT_RING(0);
- ADVANCE_LP_RING();
-
- } while (++i < nbox);
- }
-
- if (discard) {
- dev_priv->counter++;
-
- (void)cmpxchg(buf_priv->in_use, I810_BUF_CLIENT,
- I810_BUF_HARDWARE);
-
- BEGIN_LP_RING(8);
- OUT_RING(CMD_STORE_DWORD_IDX);
- OUT_RING(20);
- OUT_RING(dev_priv->counter);
- OUT_RING(CMD_STORE_DWORD_IDX);
- OUT_RING(buf_priv->my_use_idx);
- OUT_RING(I810_BUF_FREE);
- OUT_RING(CMD_REPORT_HEAD);
- OUT_RING(0);
- ADVANCE_LP_RING();
- }
-}
-
-static void i810_dma_dispatch_flip(struct drm_device *dev)
-{
- drm_i810_private_t *dev_priv = dev->dev_private;
- int pitch = dev_priv->pitch;
- RING_LOCALS;
-
- DRM_DEBUG("page=%d pfCurrentPage=%d\n",
- dev_priv->current_page,
- dev_priv->sarea_priv->pf_current_page);
-
- i810_kernel_lost_context(dev);
-
- BEGIN_LP_RING(2);
- OUT_RING(INST_PARSER_CLIENT | INST_OP_FLUSH | INST_FLUSH_MAP_CACHE);
- OUT_RING(0);
- ADVANCE_LP_RING();
-
- BEGIN_LP_RING(I810_DEST_SETUP_SIZE + 2);
- /* On i815 at least ASYNC is buggy */
- /* pitch<<5 is from 11.2.8 p158,
- its the pitch / 8 then left shifted 8,
- so (pitch >> 3) << 8 */
- OUT_RING(CMD_OP_FRONTBUFFER_INFO | (pitch << 5) /*| ASYNC_FLIP */ );
- if (dev_priv->current_page == 0) {
- OUT_RING(dev_priv->back_offset);
- dev_priv->current_page = 1;
- } else {
- OUT_RING(dev_priv->front_offset);
- dev_priv->current_page = 0;
- }
- OUT_RING(0);
- ADVANCE_LP_RING();
-
- BEGIN_LP_RING(2);
- OUT_RING(CMD_OP_WAIT_FOR_EVENT | WAIT_FOR_PLANE_A_FLIP);
- OUT_RING(0);
- ADVANCE_LP_RING();
-
- /* Increment the frame counter. The client-side 3D driver must
- * throttle the framerate by waiting for this value before
- * performing the swapbuffer ioctl.
- */
- dev_priv->sarea_priv->pf_current_page = dev_priv->current_page;
-
-}
-
-static void i810_dma_quiescent(struct drm_device *dev)
-{
- drm_i810_private_t *dev_priv = dev->dev_private;
- RING_LOCALS;
-
- i810_kernel_lost_context(dev);
-
- BEGIN_LP_RING(4);
- OUT_RING(INST_PARSER_CLIENT | INST_OP_FLUSH | INST_FLUSH_MAP_CACHE);
- OUT_RING(CMD_REPORT_HEAD);
- OUT_RING(0);
- OUT_RING(0);
- ADVANCE_LP_RING();
-
- i810_wait_ring(dev, dev_priv->ring.Size - 8);
-}
-
-static void i810_flush_queue(struct drm_device *dev)
-{
- drm_i810_private_t *dev_priv = dev->dev_private;
- struct drm_device_dma *dma = dev->dma;
- int i;
- RING_LOCALS;
-
- i810_kernel_lost_context(dev);
-
- BEGIN_LP_RING(2);
- OUT_RING(CMD_REPORT_HEAD);
- OUT_RING(0);
- ADVANCE_LP_RING();
-
- i810_wait_ring(dev, dev_priv->ring.Size - 8);
-
- for (i = 0; i < dma->buf_count; i++) {
- struct drm_buf *buf = dma->buflist[i];
- drm_i810_buf_priv_t *buf_priv = buf->dev_private;
-
- int used = cmpxchg(buf_priv->in_use, I810_BUF_HARDWARE,
- I810_BUF_FREE);
-
- if (used == I810_BUF_HARDWARE)
- DRM_DEBUG("reclaimed from HARDWARE\n");
- if (used == I810_BUF_CLIENT)
- DRM_DEBUG("still on client\n");
- }
-
- return;
-}
-
-/* Must be called with the lock held */
-void i810_driver_reclaim_buffers(struct drm_device *dev,
- struct drm_file *file_priv)
-{
- struct drm_device_dma *dma = dev->dma;
- int i;
-
- if (!dma)
- return;
- if (!dev->dev_private)
- return;
- if (!dma->buflist)
- return;
-
- i810_flush_queue(dev);
-
- for (i = 0; i < dma->buf_count; i++) {
- struct drm_buf *buf = dma->buflist[i];
- drm_i810_buf_priv_t *buf_priv = buf->dev_private;
-
- if (buf->file_priv == file_priv && buf_priv) {
- int used = cmpxchg(buf_priv->in_use, I810_BUF_CLIENT,
- I810_BUF_FREE);
-
- if (used == I810_BUF_CLIENT)
- DRM_DEBUG("reclaimed from client\n");
- if (buf_priv->currently_mapped == I810_BUF_MAPPED)
- buf_priv->currently_mapped = I810_BUF_UNMAPPED;
- }
- }
-}
-
-static int i810_flush_ioctl(struct drm_device *dev, void *data,
- struct drm_file *file_priv)
-{
- LOCK_TEST_WITH_RETURN(dev, file_priv);
-
- i810_flush_queue(dev);
- return 0;
-}
-
-static int i810_dma_vertex(struct drm_device *dev, void *data,
- struct drm_file *file_priv)
-{
- struct drm_device_dma *dma = dev->dma;
- drm_i810_private_t *dev_priv = (drm_i810_private_t *) dev->dev_private;
- u32 *hw_status = dev_priv->hw_status_page;
- drm_i810_sarea_t *sarea_priv = (drm_i810_sarea_t *)
- dev_priv->sarea_priv;
- drm_i810_vertex_t *vertex = data;
-
- LOCK_TEST_WITH_RETURN(dev, file_priv);
-
- DRM_DEBUG("idx %d used %d discard %d\n",
- vertex->idx, vertex->used, vertex->discard);
-
- if (vertex->idx < 0 || vertex->idx >= dma->buf_count)
- return -EINVAL;
-
- i810_dma_dispatch_vertex(dev,
- dma->buflist[vertex->idx],
- vertex->discard, vertex->used);
-
- sarea_priv->last_enqueue = dev_priv->counter - 1;
- sarea_priv->last_dispatch = (int)hw_status[5];
-
- return 0;
-}
-
-static int i810_clear_bufs(struct drm_device *dev, void *data,
- struct drm_file *file_priv)
-{
- drm_i810_clear_t *clear = data;
-
- LOCK_TEST_WITH_RETURN(dev, file_priv);
-
- /* GH: Someone's doing nasty things... */
- if (!dev->dev_private)
- return -EINVAL;
-
- i810_dma_dispatch_clear(dev, clear->flags,
- clear->clear_color, clear->clear_depth);
- return 0;
-}
-
-static int i810_swap_bufs(struct drm_device *dev, void *data,
- struct drm_file *file_priv)
-{
- DRM_DEBUG("\n");
-
- LOCK_TEST_WITH_RETURN(dev, file_priv);
-
- i810_dma_dispatch_swap(dev);
- return 0;
-}
-
-static int i810_getage(struct drm_device *dev, void *data,
- struct drm_file *file_priv)
-{
- drm_i810_private_t *dev_priv = (drm_i810_private_t *) dev->dev_private;
- u32 *hw_status = dev_priv->hw_status_page;
- drm_i810_sarea_t *sarea_priv = (drm_i810_sarea_t *)
- dev_priv->sarea_priv;
-
- sarea_priv->last_dispatch = (int)hw_status[5];
- return 0;
-}
-
-static int i810_getbuf(struct drm_device *dev, void *data,
- struct drm_file *file_priv)
-{
- int retcode = 0;
- drm_i810_dma_t *d = data;
- drm_i810_private_t *dev_priv = (drm_i810_private_t *) dev->dev_private;
- u32 *hw_status = dev_priv->hw_status_page;
- drm_i810_sarea_t *sarea_priv = (drm_i810_sarea_t *)
- dev_priv->sarea_priv;
-
- LOCK_TEST_WITH_RETURN(dev, file_priv);
-
- d->granted = 0;
-
- retcode = i810_dma_get_buffer(dev, d, file_priv);
-
- DRM_DEBUG("i810_dma: %d returning %d, granted = %d\n",
- task_pid_nr(current), retcode, d->granted);
-
- sarea_priv->last_dispatch = (int)hw_status[5];
-
- return retcode;
-}
-
-static int i810_copybuf(struct drm_device *dev, void *data,
- struct drm_file *file_priv)
-{
- /* Never copy - 2.4.x doesn't need it */
- return 0;
-}
-
-static int i810_docopy(struct drm_device *dev, void *data,
- struct drm_file *file_priv)
-{
- /* Never copy - 2.4.x doesn't need it */
- return 0;
-}
-
-static void i810_dma_dispatch_mc(struct drm_device *dev, struct drm_buf *buf, int used,
- unsigned int last_render)
-{
- drm_i810_private_t *dev_priv = dev->dev_private;
- drm_i810_buf_priv_t *buf_priv = buf->dev_private;
- drm_i810_sarea_t *sarea_priv = dev_priv->sarea_priv;
- unsigned long address = (unsigned long)buf->bus_address;
- unsigned long start = address - dev->agp->base;
- int u;
- RING_LOCALS;
-
- i810_kernel_lost_context(dev);
-
- u = cmpxchg(buf_priv->in_use, I810_BUF_CLIENT, I810_BUF_HARDWARE);
- if (u != I810_BUF_CLIENT)
- DRM_DEBUG("MC found buffer that isn't mine!\n");
-
- if (used < 0 || used > 4 * 1024)
- used = 0;
-
- sarea_priv->dirty = 0x7f;
-
- DRM_DEBUG("addr 0x%lx, used 0x%x\n", address, used);
-
- dev_priv->counter++;
- DRM_DEBUG("dispatch counter : %ld\n", dev_priv->counter);
- DRM_DEBUG("start : %lx\n", start);
- DRM_DEBUG("used : %d\n", used);
- DRM_DEBUG("start + used - 4 : %ld\n", start + used - 4);
-
- if (buf_priv->currently_mapped == I810_BUF_MAPPED) {
- if (used & 4) {
- *(u32 *) ((char *) buf_priv->virtual + used) = 0;
- used += 4;
- }
-
- i810_unmap_buffer(buf);
- }
- BEGIN_LP_RING(4);
- OUT_RING(CMD_OP_BATCH_BUFFER);
- OUT_RING(start | BB1_PROTECTED);
- OUT_RING(start + used - 4);
- OUT_RING(0);
- ADVANCE_LP_RING();
-
- BEGIN_LP_RING(8);
- OUT_RING(CMD_STORE_DWORD_IDX);
- OUT_RING(buf_priv->my_use_idx);
- OUT_RING(I810_BUF_FREE);
- OUT_RING(0);
-
- OUT_RING(CMD_STORE_DWORD_IDX);
- OUT_RING(16);
- OUT_RING(last_render);
- OUT_RING(0);
- ADVANCE_LP_RING();
-}
-
-static int i810_dma_mc(struct drm_device *dev, void *data,
- struct drm_file *file_priv)
-{
- struct drm_device_dma *dma = dev->dma;
- drm_i810_private_t *dev_priv = (drm_i810_private_t *) dev->dev_private;
- u32 *hw_status = dev_priv->hw_status_page;
- drm_i810_sarea_t *sarea_priv = (drm_i810_sarea_t *)
- dev_priv->sarea_priv;
- drm_i810_mc_t *mc = data;
-
- LOCK_TEST_WITH_RETURN(dev, file_priv);
-
- if (mc->idx >= dma->buf_count || mc->idx < 0)
- return -EINVAL;
-
- i810_dma_dispatch_mc(dev, dma->buflist[mc->idx], mc->used,
- mc->last_render);
-
- sarea_priv->last_enqueue = dev_priv->counter - 1;
- sarea_priv->last_dispatch = (int)hw_status[5];
-
- return 0;
-}
-
-static int i810_rstatus(struct drm_device *dev, void *data,
- struct drm_file *file_priv)
-{
- drm_i810_private_t *dev_priv = (drm_i810_private_t *) dev->dev_private;
-
- return (int)(((u32 *) (dev_priv->hw_status_page))[4]);
-}
-
-static int i810_ov0_info(struct drm_device *dev, void *data,
- struct drm_file *file_priv)
-{
- drm_i810_private_t *dev_priv = (drm_i810_private_t *) dev->dev_private;
- drm_i810_overlay_t *ov = data;
-
- ov->offset = dev_priv->overlay_offset;
- ov->physical = dev_priv->overlay_physical;
-
- return 0;
-}
-
-static int i810_fstatus(struct drm_device *dev, void *data,
- struct drm_file *file_priv)
-{
- drm_i810_private_t *dev_priv = (drm_i810_private_t *) dev->dev_private;
-
- LOCK_TEST_WITH_RETURN(dev, file_priv);
- return I810_READ(0x30008);
-}
-
-static int i810_ov0_flip(struct drm_device *dev, void *data,
- struct drm_file *file_priv)
-{
- drm_i810_private_t *dev_priv = (drm_i810_private_t *) dev->dev_private;
-
- LOCK_TEST_WITH_RETURN(dev, file_priv);
-
- /* Tell the overlay to update */
- I810_WRITE(0x30000, dev_priv->overlay_physical | 0x80000000);
-
- return 0;
-}
-
-/* Not sure why this isn't set all the time:
- */
-static void i810_do_init_pageflip(struct drm_device *dev)
-{
- drm_i810_private_t *dev_priv = dev->dev_private;
-
- DRM_DEBUG("\n");
- dev_priv->page_flipping = 1;
- dev_priv->current_page = 0;
- dev_priv->sarea_priv->pf_current_page = dev_priv->current_page;
-}
-
-static int i810_do_cleanup_pageflip(struct drm_device *dev)
-{
- drm_i810_private_t *dev_priv = dev->dev_private;
-
- DRM_DEBUG("\n");
- if (dev_priv->current_page != 0)
- i810_dma_dispatch_flip(dev);
-
- dev_priv->page_flipping = 0;
- return 0;
-}
-
-static int i810_flip_bufs(struct drm_device *dev, void *data,
- struct drm_file *file_priv)
-{
- drm_i810_private_t *dev_priv = dev->dev_private;
-
- DRM_DEBUG("\n");
-
- LOCK_TEST_WITH_RETURN(dev, file_priv);
-
- if (!dev_priv->page_flipping)
- i810_do_init_pageflip(dev);
-
- i810_dma_dispatch_flip(dev);
- return 0;
-}
-
-int i810_driver_load(struct drm_device *dev, unsigned long flags)
-{
- struct pci_dev *pdev = to_pci_dev(dev->dev);
-
- dev->agp = drm_legacy_agp_init(dev);
- if (dev->agp) {
- dev->agp->agp_mtrr = arch_phys_wc_add(
- dev->agp->agp_info.aper_base,
- dev->agp->agp_info.aper_size *
- 1024 * 1024);
- }
-
- /* Our userspace depends upon the agp mapping support. */
- if (!dev->agp)
- return -EINVAL;
-
- pci_set_master(pdev);
-
- return 0;
-}
-
-void i810_driver_lastclose(struct drm_device *dev)
-{
- i810_dma_cleanup(dev);
-}
-
-void i810_driver_preclose(struct drm_device *dev, struct drm_file *file_priv)
-{
- if (dev->dev_private) {
- drm_i810_private_t *dev_priv = dev->dev_private;
- if (dev_priv->page_flipping)
- i810_do_cleanup_pageflip(dev);
- }
-
- if (file_priv->master && file_priv->master->lock.hw_lock) {
- drm_legacy_idlelock_take(&file_priv->master->lock);
- i810_driver_reclaim_buffers(dev, file_priv);
- drm_legacy_idlelock_release(&file_priv->master->lock);
- } else {
- /* master disappeared, clean up stuff anyway and hope nothing
- * goes wrong */
- i810_driver_reclaim_buffers(dev, file_priv);
- }
-
-}
-
-int i810_driver_dma_quiescent(struct drm_device *dev)
-{
- i810_dma_quiescent(dev);
- return 0;
-}
-
-const struct drm_ioctl_desc i810_ioctls[] = {
- DRM_IOCTL_DEF_DRV(I810_INIT, i810_dma_init, DRM_AUTH|DRM_MASTER|DRM_ROOT_ONLY|DRM_UNLOCKED),
- DRM_IOCTL_DEF_DRV(I810_VERTEX, i810_dma_vertex, DRM_AUTH|DRM_UNLOCKED),
- DRM_IOCTL_DEF_DRV(I810_CLEAR, i810_clear_bufs, DRM_AUTH|DRM_UNLOCKED),
- DRM_IOCTL_DEF_DRV(I810_FLUSH, i810_flush_ioctl, DRM_AUTH|DRM_UNLOCKED),
- DRM_IOCTL_DEF_DRV(I810_GETAGE, i810_getage, DRM_AUTH|DRM_UNLOCKED),
- DRM_IOCTL_DEF_DRV(I810_GETBUF, i810_getbuf, DRM_AUTH|DRM_UNLOCKED),
- DRM_IOCTL_DEF_DRV(I810_SWAP, i810_swap_bufs, DRM_AUTH|DRM_UNLOCKED),
- DRM_IOCTL_DEF_DRV(I810_COPY, i810_copybuf, DRM_AUTH|DRM_UNLOCKED),
- DRM_IOCTL_DEF_DRV(I810_DOCOPY, i810_docopy, DRM_AUTH|DRM_UNLOCKED),
- DRM_IOCTL_DEF_DRV(I810_OV0INFO, i810_ov0_info, DRM_AUTH|DRM_UNLOCKED),
- DRM_IOCTL_DEF_DRV(I810_FSTATUS, i810_fstatus, DRM_AUTH|DRM_UNLOCKED),
- DRM_IOCTL_DEF_DRV(I810_OV0FLIP, i810_ov0_flip, DRM_AUTH|DRM_UNLOCKED),
- DRM_IOCTL_DEF_DRV(I810_MC, i810_dma_mc, DRM_AUTH|DRM_MASTER|DRM_ROOT_ONLY|DRM_UNLOCKED),
- DRM_IOCTL_DEF_DRV(I810_RSTATUS, i810_rstatus, DRM_AUTH|DRM_UNLOCKED),
- DRM_IOCTL_DEF_DRV(I810_FLIP, i810_flip_bufs, DRM_AUTH|DRM_UNLOCKED),
-};
-
-int i810_max_ioctl = ARRAY_SIZE(i810_ioctls);
diff --git a/drivers/gpu/drm/i810/i810_drv.c b/drivers/gpu/drm/i810/i810_drv.c
deleted file mode 100644
index 0e53a066d4db..000000000000
--- a/drivers/gpu/drm/i810/i810_drv.c
+++ /dev/null
@@ -1,101 +0,0 @@
-/* i810_drv.c -- I810 driver -*- linux-c -*-
- * Created: Mon Dec 13 01:56:22 1999 by jhartmann@precisioninsight.com
- *
- * Copyright 1999 Precision Insight, Inc., Cedar Park, Texas.
- * Copyright 2000 VA Linux Systems, Inc., Sunnyvale, California.
- * All Rights Reserved.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice (including the next
- * paragraph) shall be included in all copies or substantial portions of the
- * Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * VA LINUX SYSTEMS AND/OR ITS SUPPLIERS BE LIABLE FOR ANY CLAIM, DAMAGES OR
- * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
- * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
- * OTHER DEALINGS IN THE SOFTWARE.
- *
- * Authors:
- * Rickard E. (Rik) Faith <faith@valinux.com>
- * Jeff Hartmann <jhartmann@valinux.com>
- * Gareth Hughes <gareth@valinux.com>
- */
-
-#include "i810_drv.h"
-
-#include <linux/module.h>
-#include <linux/pci.h>
-
-#include <drm/drm_drv.h>
-#include <drm/drm_file.h>
-#include <drm/drm_pciids.h>
-#include <drm/i810_drm.h>
-
-
-static struct pci_device_id pciidlist[] = {
- i810_PCI_IDS
-};
-
-static const struct file_operations i810_driver_fops = {
- .owner = THIS_MODULE,
- .open = drm_open,
- .release = drm_release,
- .unlocked_ioctl = drm_ioctl,
- .mmap = drm_legacy_mmap,
- .poll = drm_poll,
- .compat_ioctl = drm_compat_ioctl,
- .llseek = noop_llseek,
-};
-
-static struct drm_driver driver = {
- .driver_features = DRIVER_USE_AGP | DRIVER_HAVE_DMA | DRIVER_LEGACY,
- .dev_priv_size = sizeof(drm_i810_buf_priv_t),
- .load = i810_driver_load,
- .lastclose = i810_driver_lastclose,
- .preclose = i810_driver_preclose,
- .dma_quiescent = i810_driver_dma_quiescent,
- .ioctls = i810_ioctls,
- .fops = &i810_driver_fops,
- .name = DRIVER_NAME,
- .desc = DRIVER_DESC,
- .date = DRIVER_DATE,
- .major = DRIVER_MAJOR,
- .minor = DRIVER_MINOR,
- .patchlevel = DRIVER_PATCHLEVEL,
-};
-
-static struct pci_driver i810_pci_driver = {
- .name = DRIVER_NAME,
- .id_table = pciidlist,
-};
-
-static int __init i810_init(void)
-{
- if (num_possible_cpus() > 1) {
- pr_err("drm/i810 does not support SMP\n");
- return -EINVAL;
- }
- driver.num_ioctls = i810_max_ioctl;
- return drm_legacy_pci_init(&driver, &i810_pci_driver);
-}
-
-static void __exit i810_exit(void)
-{
- drm_legacy_pci_exit(&driver, &i810_pci_driver);
-}
-
-module_init(i810_init);
-module_exit(i810_exit);
-
-MODULE_AUTHOR(DRIVER_AUTHOR);
-MODULE_DESCRIPTION(DRIVER_DESC);
-MODULE_LICENSE("GPL and additional rights");
diff --git a/drivers/gpu/drm/i810/i810_drv.h b/drivers/gpu/drm/i810/i810_drv.h
deleted file mode 100644
index 9df3981ffc66..000000000000
--- a/drivers/gpu/drm/i810/i810_drv.h
+++ /dev/null
@@ -1,246 +0,0 @@
-/* i810_drv.h -- Private header for the Matrox g200/g400 driver -*- linux-c -*-
- * Created: Mon Dec 13 01:50:01 1999 by jhartmann@precisioninsight.com
- *
- * Copyright 1999 Precision Insight, Inc., Cedar Park, Texas.
- * Copyright 2000 VA Linux Systems, Inc., Sunnyvale, California.
- * All rights reserved.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice (including the next
- * paragraph) shall be included in all copies or substantial portions of the
- * Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * PRECISION INSIGHT AND/OR ITS SUPPLIERS BE LIABLE FOR ANY CLAIM, DAMAGES OR
- * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
- * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
- * DEALINGS IN THE SOFTWARE.
- *
- * Authors: Rickard E. (Rik) Faith <faith@valinux.com>
- * Jeff Hartmann <jhartmann@valinux.com>
- *
- */
-
-#ifndef _I810_DRV_H_
-#define _I810_DRV_H_
-
-#include <drm/drm_ioctl.h>
-#include <drm/drm_legacy.h>
-#include <drm/i810_drm.h>
-
-/* General customization:
- */
-
-#define DRIVER_AUTHOR "VA Linux Systems Inc."
-
-#define DRIVER_NAME "i810"
-#define DRIVER_DESC "Intel i810"
-#define DRIVER_DATE "20030605"
-
-/* Interface history
- *
- * 1.1 - XFree86 4.1
- * 1.2 - XvMC interfaces
- * - XFree86 4.2
- * 1.2.1 - Disable copying code (leave stub ioctls for backwards compatibility)
- * - Remove requirement for interrupt (leave stubs again)
- * 1.3 - Add page flipping.
- * 1.4 - fix DRM interface
- */
-#define DRIVER_MAJOR 1
-#define DRIVER_MINOR 4
-#define DRIVER_PATCHLEVEL 0
-
-typedef struct drm_i810_buf_priv {
- u32 *in_use;
- int my_use_idx;
- int currently_mapped;
- void *virtual;
- void *kernel_virtual;
- drm_local_map_t map;
-} drm_i810_buf_priv_t;
-
-typedef struct _drm_i810_ring_buffer {
- int tail_mask;
- unsigned long Start;
- unsigned long End;
- unsigned long Size;
- u8 *virtual_start;
- int head;
- int tail;
- int space;
- drm_local_map_t map;
-} drm_i810_ring_buffer_t;
-
-typedef struct drm_i810_private {
- struct drm_local_map *sarea_map;
- struct drm_local_map *mmio_map;
-
- drm_i810_sarea_t *sarea_priv;
- drm_i810_ring_buffer_t ring;
-
- void *hw_status_page;
- unsigned long counter;
-
- dma_addr_t dma_status_page;
-
- struct drm_buf *mmap_buffer;
-
- u32 front_di1, back_di1, zi1;
-
- int back_offset;
- int depth_offset;
- int overlay_offset;
- int overlay_physical;
- int w, h;
- int pitch;
- int back_pitch;
- int depth_pitch;
-
- int do_boxes;
- int dma_used;
-
- int current_page;
- int page_flipping;
-
- wait_queue_head_t irq_queue;
- atomic_t irq_received;
- atomic_t irq_emitted;
-
- int front_offset;
-} drm_i810_private_t;
-
- /* i810_dma.c */
-extern int i810_driver_dma_quiescent(struct drm_device *dev);
-void i810_driver_reclaim_buffers(struct drm_device *dev,
- struct drm_file *file_priv);
-extern int i810_driver_load(struct drm_device *, unsigned long flags);
-extern void i810_driver_lastclose(struct drm_device *dev);
-extern void i810_driver_preclose(struct drm_device *dev,
- struct drm_file *file_priv);
-
-extern long i810_ioctl(struct file *file, unsigned int cmd, unsigned long arg);
-extern const struct drm_ioctl_desc i810_ioctls[];
-extern int i810_max_ioctl;
-
-#define I810_BASE(reg) ((unsigned long) \
- dev_priv->mmio_map->handle)
-#define I810_ADDR(reg) (I810_BASE(reg) + reg)
-#define I810_DEREF(reg) (*(__volatile__ int *)I810_ADDR(reg))
-#define I810_READ(reg) I810_DEREF(reg)
-#define I810_WRITE(reg, val) do { I810_DEREF(reg) = val; } while (0)
-#define I810_DEREF16(reg) (*(__volatile__ u16 *)I810_ADDR(reg))
-#define I810_READ16(reg) I810_DEREF16(reg)
-#define I810_WRITE16(reg, val) do { I810_DEREF16(reg) = val; } while (0)
-
-#define I810_VERBOSE 0
-#define RING_LOCALS unsigned int outring, ringmask; \
- volatile char *virt;
-
-#define BEGIN_LP_RING(n) do { \
- if (I810_VERBOSE) \
- DRM_DEBUG("BEGIN_LP_RING(%d)\n", n); \
- if (dev_priv->ring.space < n*4) \
- i810_wait_ring(dev, n*4); \
- dev_priv->ring.space -= n*4; \
- outring = dev_priv->ring.tail; \
- ringmask = dev_priv->ring.tail_mask; \
- virt = dev_priv->ring.virtual_start; \
-} while (0)
-
-#define ADVANCE_LP_RING() do { \
- if (I810_VERBOSE) \
- DRM_DEBUG("ADVANCE_LP_RING\n"); \
- dev_priv->ring.tail = outring; \
- I810_WRITE(LP_RING + RING_TAIL, outring); \
-} while (0)
-
-#define OUT_RING(n) do { \
- if (I810_VERBOSE) \
- DRM_DEBUG(" OUT_RING %x\n", (int)(n)); \
- *(volatile unsigned int *)(virt + outring) = n; \
- outring += 4; \
- outring &= ringmask; \
-} while (0)
-
-#define GFX_OP_USER_INTERRUPT ((0<<29)|(2<<23))
-#define GFX_OP_BREAKPOINT_INTERRUPT ((0<<29)|(1<<23))
-#define CMD_REPORT_HEAD (7<<23)
-#define CMD_STORE_DWORD_IDX ((0x21<<23) | 0x1)
-#define CMD_OP_BATCH_BUFFER ((0x0<<29)|(0x30<<23)|0x1)
-
-#define INST_PARSER_CLIENT 0x00000000
-#define INST_OP_FLUSH 0x02000000
-#define INST_FLUSH_MAP_CACHE 0x00000001
-
-#define BB1_START_ADDR_MASK (~0x7)
-#define BB1_PROTECTED (1<<0)
-#define BB1_UNPROTECTED (0<<0)
-#define BB2_END_ADDR_MASK (~0x7)
-
-#define I810REG_HWSTAM 0x02098
-#define I810REG_INT_IDENTITY_R 0x020a4
-#define I810REG_INT_MASK_R 0x020a8
-#define I810REG_INT_ENABLE_R 0x020a0
-
-#define LP_RING 0x2030
-#define HP_RING 0x2040
-#define RING_TAIL 0x00
-#define TAIL_ADDR 0x000FFFF8
-#define RING_HEAD 0x04
-#define HEAD_WRAP_COUNT 0xFFE00000
-#define HEAD_WRAP_ONE 0x00200000
-#define HEAD_ADDR 0x001FFFFC
-#define RING_START 0x08
-#define START_ADDR 0x00FFFFF8
-#define RING_LEN 0x0C
-#define RING_NR_PAGES 0x000FF000
-#define RING_REPORT_MASK 0x00000006
-#define RING_REPORT_64K 0x00000002
-#define RING_REPORT_128K 0x00000004
-#define RING_NO_REPORT 0x00000000
-#define RING_VALID_MASK 0x00000001
-#define RING_VALID 0x00000001
-#define RING_INVALID 0x00000000
-
-#define GFX_OP_SCISSOR ((0x3<<29)|(0x1c<<24)|(0x10<<19))
-#define SC_UPDATE_SCISSOR (0x1<<1)
-#define SC_ENABLE_MASK (0x1<<0)
-#define SC_ENABLE (0x1<<0)
-
-#define GFX_OP_SCISSOR_INFO ((0x3<<29)|(0x1d<<24)|(0x81<<16)|(0x1))
-#define SCI_YMIN_MASK (0xffff<<16)
-#define SCI_XMIN_MASK (0xffff<<0)
-#define SCI_YMAX_MASK (0xffff<<16)
-#define SCI_XMAX_MASK (0xffff<<0)
-
-#define GFX_OP_COLOR_FACTOR ((0x3<<29)|(0x1d<<24)|(0x1<<16)|0x0)
-#define GFX_OP_STIPPLE ((0x3<<29)|(0x1d<<24)|(0x83<<16))
-#define GFX_OP_MAP_INFO ((0x3<<29)|(0x1d<<24)|0x2)
-#define GFX_OP_DESTBUFFER_VARS ((0x3<<29)|(0x1d<<24)|(0x85<<16)|0x0)
-#define GFX_OP_DRAWRECT_INFO ((0x3<<29)|(0x1d<<24)|(0x80<<16)|(0x3))
-#define GFX_OP_PRIMITIVE ((0x3<<29)|(0x1f<<24))
-
-#define CMD_OP_Z_BUFFER_INFO ((0x0<<29)|(0x16<<23))
-#define CMD_OP_DESTBUFFER_INFO ((0x0<<29)|(0x15<<23))
-#define CMD_OP_FRONTBUFFER_INFO ((0x0<<29)|(0x14<<23))
-#define CMD_OP_WAIT_FOR_EVENT ((0x0<<29)|(0x03<<23))
-
-#define BR00_BITBLT_CLIENT 0x40000000
-#define BR00_OP_COLOR_BLT 0x10000000
-#define BR00_OP_SRC_COPY_BLT 0x10C00000
-#define BR13_SOLID_PATTERN 0x80000000
-
-#define WAIT_FOR_PLANE_A_SCANLINES (1<<1)
-#define WAIT_FOR_PLANE_A_FLIP (1<<2)
-#define WAIT_FOR_VBLANK (1<<3)
-
-#endif
diff --git a/drivers/gpu/drm/i915/Kconfig b/drivers/gpu/drm/i915/Kconfig
index 3efce05d7b57..e4f4d2e3fdfe 100644
--- a/drivers/gpu/drm/i915/Kconfig
+++ b/drivers/gpu/drm/i915/Kconfig
@@ -18,6 +18,8 @@ config DRM_I915
select DRM_PANEL
select DRM_MIPI_DSI
select RELAY
+ select I2C
+ select I2C_ALGOBIT
select IRQ_WORK
# i915 depends on ACPI_VIDEO when ACPI is enabled
# but for select to work, need to select ACPI_VIDEO's dependencies, ick
@@ -54,23 +56,34 @@ config DRM_I915
If "M" is selected, the module will be called i915.
config DRM_I915_FORCE_PROBE
- string "Force probe driver for selected new Intel hardware"
+ string "Force probe i915 for selected Intel hardware IDs"
depends on DRM_I915
help
This is the default value for the i915.force_probe module
parameter. Using the module parameter overrides this option.
- Force probe the driver for new Intel graphics devices that are
- recognized but not properly supported by this kernel version. It is
- recommended to upgrade to a kernel version with proper support as soon
- as it is available.
+ Force probe the i915 driver for Intel graphics devices that are
+ recognized but not properly supported by this kernel version. Force
+ probing an unsupported device taints the kernel. It is recommended to
+ upgrade to a kernel version with proper support as soon as it is
+ available.
+
+ It can also be used to block the probe of recognized and fully
+ supported devices.
Use "" to disable force probe. If in doubt, use this.
- Use "<pci-id>[,<pci-id>,...]" to force probe the driver for listed
+ Use "<pci-id>[,<pci-id>,...]" to force probe the i915 for listed
devices. For example, "4500" or "4500,4571".
- Use "*" to force probe the driver for all known devices.
+ Use "*" to force probe the driver for all known devices. Not
+ recommended.
+
+ Use "!" right before the ID to block the probe of the device. For
+ example, "4500,!4571" forces the probe of 4500 and blocks the probe of
+ 4571.
+
+ Use "!*" to block the probe of the driver for all known devices.
config DRM_I915_CAPTURE_ERROR
bool "Enable capturing GPU state following a hang"
@@ -107,18 +120,16 @@ config DRM_I915_USERPTR
If in doubt, say "Y".
-config DRM_I915_GVT
- bool
-
config DRM_I915_GVT_KVMGT
tristate "Enable KVM host support Intel GVT-g graphics virtualization"
depends on DRM_I915
depends on X86
depends on 64BIT
depends on KVM
- depends on VFIO_MDEV
+ depends on VFIO
select DRM_I915_GVT
select KVM_EXTERNAL_WRITE_TRACKING
+ select VFIO_MDEV
help
Choose this option if you want to enable Intel GVT-g graphics
@@ -155,8 +166,5 @@ menu "drm/i915 Profile Guided Optimisation"
source "drivers/gpu/drm/i915/Kconfig.profile"
endmenu
-menu "drm/i915 Unstable Evolution"
- visible if EXPERT && STAGING && BROKEN
- depends on DRM_I915
- source "drivers/gpu/drm/i915/Kconfig.unstable"
-endmenu
+config DRM_I915_GVT
+ bool
diff --git a/drivers/gpu/drm/i915/Kconfig.profile b/drivers/gpu/drm/i915/Kconfig.profile
index 39328567c200..7cc38d25ee5c 100644
--- a/drivers/gpu/drm/i915/Kconfig.profile
+++ b/drivers/gpu/drm/i915/Kconfig.profile
@@ -57,10 +57,28 @@ config DRM_I915_PREEMPT_TIMEOUT
default 640 # milliseconds
help
How long to wait (in milliseconds) for a preemption event to occur
- when submitting a new context via execlists. If the current context
- does not hit an arbitration point and yield to HW before the timer
- expires, the HW will be reset to allow the more important context
- to execute.
+ when submitting a new context. If the current context does not hit
+ an arbitration point and yield to HW before the timer expires, the
+ HW will be reset to allow the more important context to execute.
+
+ This is adjustable via
+ /sys/class/drm/card?/engine/*/preempt_timeout_ms
+
+ May be 0 to disable the timeout.
+
+ The compiled in default may get overridden at driver probe time on
+ certain platforms and certain engines which will be reflected in the
+ sysfs control.
+
+config DRM_I915_PREEMPT_TIMEOUT_COMPUTE
+ int "Preempt timeout for compute engines (ms, jiffy granularity)"
+ default 7500 # milliseconds
+ help
+ How long to wait (in milliseconds) for a preemption event to occur
+ when submitting a new context to a compute capable engine. If the
+ current context does not hit an arbitration point and yield to HW
+ before the timer expires, the HW will be reset to allow the more
+ important context to execute.
This is adjustable via
/sys/class/drm/card?/engine/*/preempt_timeout_ms
diff --git a/drivers/gpu/drm/i915/Kconfig.unstable b/drivers/gpu/drm/i915/Kconfig.unstable
deleted file mode 100644
index cf151a297ed7..000000000000
--- a/drivers/gpu/drm/i915/Kconfig.unstable
+++ /dev/null
@@ -1,21 +0,0 @@
-# SPDX-License-Identifier: GPL-2.0-only
-config DRM_I915_UNSTABLE
- bool "Enable unstable API for early prototype development"
- depends on EXPERT
- depends on STAGING
- depends on BROKEN # should never be enabled by distros!
- # We use the dependency on !COMPILE_TEST to not be enabled in
- # allmodconfig or allyesconfig configurations
- depends on !COMPILE_TEST
- default n
- help
- Enable prototype uAPI under general discussion before they are
- finalized. Such prototypes may be withdrawn or substantially
- changed before release. They are only enabled here so that a wide
- number of interested parties (userspace driver developers) can
- verify that the uAPI meet their expectations. These uAPI should
- never be used in production.
-
- Recommended for driver developers _only_.
-
- If in the slightest bit of doubt, say "N".
diff --git a/drivers/gpu/drm/i915/Makefile b/drivers/gpu/drm/i915/Makefile
index cea00aaca04b..97b0d4ae221a 100644
--- a/drivers/gpu/drm/i915/Makefile
+++ b/drivers/gpu/drm/i915/Makefile
@@ -47,12 +47,10 @@ i915-y += i915_driver.o \
i915_switcheroo.o \
i915_sysfs.o \
i915_utils.o \
+ intel_clock_gating.o \
intel_device_info.o \
- intel_dram.o \
intel_memory_region.o \
- intel_pch.o \
intel_pcode.o \
- intel_pm.o \
intel_region_ttm.o \
intel_runtime_pm.o \
intel_sbi.o \
@@ -62,6 +60,12 @@ i915-y += i915_driver.o \
vlv_sideband.o \
vlv_suspend.o
+# core peripheral code
+i915-y += \
+ soc/intel_dram.o \
+ soc/intel_gmch.o \
+ soc/intel_pch.o
+
# core library code
i915-y += \
i915_memcpy.o \
@@ -127,9 +131,11 @@ gt-y += \
gt/intel_sseu.o \
gt/intel_sseu_debugfs.o \
gt/intel_timeline.o \
+ gt/intel_wopcm.o \
gt/intel_workarounds.o \
gt/shmem_utils.o \
gt/sysfs_engines.o
+
# x86 intel-gtt module support
gt-$(CONFIG_X86) += gt/intel_ggtt_gmch.o
# autogenerated null render state
@@ -183,13 +189,13 @@ i915-y += \
i915_trace_points.o \
i915_ttm_buddy_manager.o \
i915_vma.o \
- i915_vma_resource.o \
- intel_wopcm.o
+ i915_vma_resource.o
# general-purpose microcontroller (GuC) support
-i915-y += gt/uc/intel_uc.o \
- gt/uc/intel_uc_debugfs.o \
- gt/uc/intel_uc_fw.o \
+i915-y += \
+ gt/uc/intel_gsc_fw.o \
+ gt/uc/intel_gsc_uc.o \
+ gt/uc/intel_gsc_uc_heci_cmd_submit.o\
gt/uc/intel_guc.o \
gt/uc/intel_guc_ads.o \
gt/uc/intel_guc_capture.o \
@@ -204,11 +210,17 @@ i915-y += gt/uc/intel_uc.o \
gt/uc/intel_guc_submission.o \
gt/uc/intel_huc.o \
gt/uc/intel_huc_debugfs.o \
- gt/uc/intel_huc_fw.o
+ gt/uc/intel_huc_fw.o \
+ gt/uc/intel_uc.o \
+ gt/uc/intel_uc_debugfs.o \
+ gt/uc/intel_uc_fw.o
# graphics system controller (GSC) support
i915-y += gt/intel_gsc.o
+# graphics hardware monitoring (HWMON) support
+i915-$(CONFIG_HWMON) += i915_hwmon.o
+
# modesetting core code
i915-y += \
display/hsw_ips.o \
@@ -228,6 +240,7 @@ i915-y += \
display/intel_display_power.o \
display/intel_display_power_map.o \
display/intel_display_power_well.o \
+ display/intel_display_rps.o \
display/intel_dmc.o \
display/intel_dpio_phy.o \
display/intel_dpll.o \
@@ -243,7 +256,9 @@ i915-y += \
display/intel_frontbuffer.o \
display/intel_global_state.o \
display/intel_hdcp.o \
+ display/intel_hdcp_gsc.o \
display/intel_hotplug.o \
+ display/intel_hti.o \
display/intel_lpe_audio.o \
display/intel_modeset_verify.o \
display/intel_modeset_setup.o \
@@ -254,9 +269,13 @@ i915-y += \
display/intel_psr.o \
display/intel_quirks.o \
display/intel_sprite.o \
+ display/intel_sprite_uapi.o \
display/intel_tc.o \
+ display/intel_vblank.o \
display/intel_vga.o \
+ display/intel_wm.o \
display/i9xx_plane.o \
+ display/i9xx_wm.o \
display/skl_scaler.o \
display/skl_universal_plane.o \
display/skl_watermark.o
@@ -310,15 +329,18 @@ i915-y += \
i915-y += i915_perf.o
-# Protected execution platform (PXP) support
-i915-$(CONFIG_DRM_I915_PXP) += \
+# Protected execution platform (PXP) support. Base support is required for HuC
+i915-y += \
pxp/intel_pxp.o \
+ pxp/intel_pxp_tee.o \
+ pxp/intel_pxp_huc.o
+
+i915-$(CONFIG_DRM_I915_PXP) += \
pxp/intel_pxp_cmd.o \
pxp/intel_pxp_debugfs.o \
pxp/intel_pxp_irq.o \
pxp/intel_pxp_pm.o \
- pxp/intel_pxp_session.o \
- pxp/intel_pxp_tee.o
+ pxp/intel_pxp_session.o
# Post-mortem debug and GPU hang state capture
i915-$(CONFIG_DRM_I915_CAPTURE_ERROR) += i915_gpu_error.o
@@ -347,6 +369,13 @@ include $(src)/gvt/Makefile
obj-$(CONFIG_DRM_I915) += i915.o
obj-$(CONFIG_DRM_I915_GVT_KVMGT) += kvmgt.o
+# kernel-doc test
+#
+# Enable locally for CONFIG_DRM_I915_WERROR=y. See also scripts/Makefile.build
+ifdef CONFIG_DRM_I915_WERROR
+ cmd_checkdoc = $(srctree)/scripts/kernel-doc -none $<
+endif
+
# header test
# exclude some broken headers from the test coverage
@@ -358,7 +387,8 @@ always-$(CONFIG_DRM_I915_WERROR) += \
$(shell cd $(srctree)/$(src) && find * -name '*.h')))
quiet_cmd_hdrtest = HDRTEST $(patsubst %.hdrtest,%.h,$@)
- cmd_hdrtest = $(CC) $(filter-out $(CFLAGS_GCOV), $(c_flags)) -S -o /dev/null -x c /dev/null -include $<; touch $@
+ cmd_hdrtest = $(CC) $(filter-out $(CFLAGS_GCOV), $(c_flags)) -S -o /dev/null -x c /dev/null -include $<; \
+ $(srctree)/scripts/kernel-doc -none $<; touch $@
$(obj)/%.hdrtest: $(src)/%.h FORCE
$(call if_changed_dep,hdrtest)
diff --git a/drivers/gpu/drm/i915/display/dvo_ch7xxx.c b/drivers/gpu/drm/i915/display/dvo_ch7xxx.c
index 54f58ba44b9f..6d948520e9a6 100644
--- a/drivers/gpu/drm/i915/display/dvo_ch7xxx.c
+++ b/drivers/gpu/drm/i915/display/dvo_ch7xxx.c
@@ -50,15 +50,26 @@ SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
#define CH7xxx_INPUT_CLOCK 0x1d
#define CH7xxx_GPIO 0x1e
#define CH7xxx_GPIO_HPIR (1<<3)
-#define CH7xxx_IDF 0x1f
+#define CH7xxx_IDF 0x1f
+#define CH7xxx_IDF_IBS (1<<7)
+#define CH7xxx_IDF_DES (1<<6)
#define CH7xxx_IDF_HSP (1<<3)
#define CH7xxx_IDF_VSP (1<<4)
#define CH7xxx_CONNECTION_DETECT 0x20
#define CH7xxx_CDET_DVI (1<<5)
-#define CH7301_DAC_CNTL 0x21
+#define CH7xxx_DAC_CNTL 0x21
+#define CH7xxx_SYNCO_MASK (3 << 3)
+#define CH7xxx_SYNCO_VGA_HSYNC (1 << 3)
+
+#define CH7xxx_CLOCK_OUTPUT 0x22
+#define CH7xxx_BCOEN (1 << 4)
+#define CH7xxx_BCOP (1 << 3)
+#define CH7xxx_BCO_MASK (7 << 0)
+#define CH7xxx_BCO_VGA_VSYNC (6 << 0)
+
#define CH7301_HOTPLUG 0x23
#define CH7xxx_TCTL 0x31
#define CH7xxx_TVCO 0x32
@@ -301,6 +312,8 @@ static void ch7xxx_mode_set(struct intel_dvo_device *dvo,
ch7xxx_readb(dvo, CH7xxx_IDF, &idf);
+ idf |= CH7xxx_IDF_IBS;
+
idf &= ~(CH7xxx_IDF_HSP | CH7xxx_IDF_VSP);
if (mode->flags & DRM_MODE_FLAG_PHSYNC)
idf |= CH7xxx_IDF_HSP;
@@ -309,6 +322,11 @@ static void ch7xxx_mode_set(struct intel_dvo_device *dvo,
idf |= CH7xxx_IDF_VSP;
ch7xxx_writeb(dvo, CH7xxx_IDF, idf);
+
+ ch7xxx_writeb(dvo, CH7xxx_DAC_CNTL,
+ CH7xxx_SYNCO_VGA_HSYNC);
+ ch7xxx_writeb(dvo, CH7xxx_CLOCK_OUTPUT,
+ CH7xxx_BCOEN | CH7xxx_BCO_VGA_VSYNC);
}
/* set the CH7xxx power state */
diff --git a/drivers/gpu/drm/i915/display/dvo_sil164.c b/drivers/gpu/drm/i915/display/dvo_sil164.c
index 0dfa0a0209ff..4acc8ce29c0b 100644
--- a/drivers/gpu/drm/i915/display/dvo_sil164.c
+++ b/drivers/gpu/drm/i915/display/dvo_sil164.c
@@ -58,6 +58,10 @@ SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
#define SIL164_9_MDI (1<<0)
#define SIL164_REGC 0x0c
+#define SIL164_C_SCNT (1<<7)
+#define SIL164_C_PLLF_MASK (0xf<<1)
+#define SIL164_C_PLLF_REC (4<<1)
+#define SIL164_C_PFEN (1<<0)
struct sil164_priv {
//I2CDevRec d;
@@ -205,7 +209,13 @@ static void sil164_mode_set(struct intel_dvo_device *dvo,
sil164_writeb(sil, 0x0c, 0x89);
sil164_writeb(sil, 0x08, 0x31);*/
/* don't do much */
- return;
+
+ sil164_writeb(dvo, SIL164_REG8,
+ SIL164_8_VEN | SIL164_8_HEN);
+ sil164_writeb(dvo, SIL164_REG9,
+ SIL164_9_TSEL);
+ sil164_writeb(dvo, SIL164_REGC,
+ SIL164_C_PLLF_REC | SIL164_C_PFEN);
}
/* set the SIL164 power state */
@@ -224,7 +234,6 @@ static void sil164_dpms(struct intel_dvo_device *dvo, bool enable)
ch &= ~SIL164_8_PD;
sil164_writeb(dvo, SIL164_REG8, ch);
- return;
}
static bool sil164_get_hw_state(struct intel_dvo_device *dvo)
diff --git a/drivers/gpu/drm/i915/display/g4x_dp.c b/drivers/gpu/drm/i915/display/g4x_dp.c
index e3e3d27ffb53..920d570f7594 100644
--- a/drivers/gpu/drm/i915/display/g4x_dp.c
+++ b/drivers/gpu/drm/i915/display/g4x_dp.c
@@ -8,6 +8,7 @@
#include <linux/string_helpers.h>
#include "g4x_dp.h"
+#include "i915_reg.h"
#include "intel_audio.h"
#include "intel_backlight.h"
#include "intel_connector.h"
@@ -16,6 +17,7 @@
#include "intel_display_power.h"
#include "intel_display_types.h"
#include "intel_dp.h"
+#include "intel_dp_aux.h"
#include "intel_dp_link_training.h"
#include "intel_dpio_phy.h"
#include "intel_fifo_underrun.h"
@@ -135,16 +137,12 @@ static void intel_dp_prepare(struct intel_encoder *encoder,
intel_dp->DP |= DP_PIPE_SEL_IVB(crtc->pipe);
} else if (HAS_PCH_CPT(dev_priv) && port != PORT_A) {
- u32 trans_dp;
-
intel_dp->DP |= DP_LINK_TRAIN_OFF_CPT;
- trans_dp = intel_de_read(dev_priv, TRANS_DP_CTL(crtc->pipe));
- if (drm_dp_enhanced_frame_cap(intel_dp->dpcd))
- trans_dp |= TRANS_DP_ENH_FRAMING;
- else
- trans_dp &= ~TRANS_DP_ENH_FRAMING;
- intel_de_write(dev_priv, TRANS_DP_CTL(crtc->pipe), trans_dp);
+ intel_de_rmw(dev_priv, TRANS_DP_CTL(crtc->pipe),
+ TRANS_DP_ENH_FRAMING,
+ drm_dp_enhanced_frame_cap(intel_dp->dpcd) ?
+ TRANS_DP_ENH_FRAMING : 0);
} else {
if (IS_G4X(dev_priv) && pipe_config->limited_color_range)
intel_dp->DP |= DP_COLOR_RANGE_16_235;
@@ -397,6 +395,8 @@ static void intel_dp_get_config(struct intel_encoder *encoder,
if (intel_dp_is_edp(intel_dp))
intel_edp_fixup_vbt_bpp(encoder, pipe_config->pipe_bpp);
+
+ intel_audio_codec_get_config(encoder, pipe_config);
}
static void
@@ -672,8 +672,6 @@ static void intel_enable_dp(struct intel_atomic_state *state,
intel_dp_pcon_dsc_configure(intel_dp, pipe_config);
intel_dp_start_link_train(intel_dp, pipe_config);
intel_dp_stop_link_train(intel_dp, pipe_config);
-
- intel_audio_codec_enable(encoder, pipe_config, conn_state);
}
static void g4x_enable_dp(struct intel_atomic_state *state,
@@ -682,6 +680,7 @@ static void g4x_enable_dp(struct intel_atomic_state *state,
const struct drm_connector_state *conn_state)
{
intel_enable_dp(state, encoder, pipe_config, conn_state);
+ intel_audio_codec_enable(encoder, pipe_config, conn_state);
intel_edp_backlight_on(pipe_config, conn_state);
}
@@ -690,6 +689,7 @@ static void vlv_enable_dp(struct intel_atomic_state *state,
const struct intel_crtc_state *pipe_config,
const struct drm_connector_state *conn_state)
{
+ intel_audio_codec_enable(encoder, pipe_config, conn_state);
intel_edp_backlight_on(pipe_config, conn_state);
}
@@ -1197,29 +1197,6 @@ static bool g4x_digital_port_connected(struct intel_encoder *encoder)
return intel_de_read(dev_priv, PORT_HOTPLUG_STAT) & bit;
}
-static bool gm45_digital_port_connected(struct intel_encoder *encoder)
-{
- struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
- u32 bit;
-
- switch (encoder->hpd_pin) {
- case HPD_PORT_B:
- bit = PORTB_HOTPLUG_LIVE_STATUS_GM45;
- break;
- case HPD_PORT_C:
- bit = PORTC_HOTPLUG_LIVE_STATUS_GM45;
- break;
- case HPD_PORT_D:
- bit = PORTD_HOTPLUG_LIVE_STATUS_GM45;
- break;
- default:
- MISSING_CASE(encoder->hpd_pin);
- return false;
- }
-
- return intel_de_read(dev_priv, PORT_HOTPLUG_STAT) & bit;
-}
-
static bool ilk_digital_port_connected(struct intel_encoder *encoder)
{
struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
@@ -1276,11 +1253,19 @@ static const struct drm_encoder_funcs intel_dp_enc_funcs = {
bool g4x_dp_init(struct drm_i915_private *dev_priv,
i915_reg_t output_reg, enum port port)
{
+ const struct intel_bios_encoder_data *devdata;
struct intel_digital_port *dig_port;
struct intel_encoder *intel_encoder;
struct drm_encoder *encoder;
struct intel_connector *intel_connector;
+ devdata = intel_bios_encoder_data_lookup(dev_priv, port);
+
+ /* FIXME bail? */
+ if (!devdata)
+ drm_dbg_kms(&dev_priv->drm, "No VBT child device for DP-%c\n",
+ port_name(port));
+
dig_port = kzalloc(sizeof(*dig_port), GFP_KERNEL);
if (!dig_port)
return false;
@@ -1292,6 +1277,8 @@ bool g4x_dp_init(struct drm_i915_private *dev_priv,
intel_encoder = &dig_port->base;
encoder = &intel_encoder->base;
+ intel_encoder->devdata = devdata;
+
mutex_init(&dig_port->hdcp_mutex);
if (drm_encoder_init(&dev_priv->drm, &intel_encoder->base,
@@ -1374,10 +1361,7 @@ bool g4x_dp_init(struct drm_i915_private *dev_priv,
dig_port->hpd_pulse = intel_dp_hpd_pulse;
if (HAS_GMCH(dev_priv)) {
- if (IS_GM45(dev_priv))
- dig_port->connected = gm45_digital_port_connected;
- else
- dig_port->connected = g4x_digital_port_connected;
+ dig_port->connected = g4x_digital_port_connected;
} else {
if (port == PORT_A)
dig_port->connected = ilk_digital_port_connected;
@@ -1388,7 +1372,7 @@ bool g4x_dp_init(struct drm_i915_private *dev_priv,
if (port != PORT_A)
intel_infoframe_init(dig_port);
- dig_port->aux_ch = intel_bios_port_aux_ch(dev_priv, port);
+ dig_port->aux_ch = intel_dp_aux_ch(intel_encoder);
if (!intel_dp_init_connector(dig_port, intel_connector))
goto err_init_connector;
diff --git a/drivers/gpu/drm/i915/display/g4x_dp.h b/drivers/gpu/drm/i915/display/g4x_dp.h
index e1f50263a725..a38b3e1e01d3 100644
--- a/drivers/gpu/drm/i915/display/g4x_dp.h
+++ b/drivers/gpu/drm/i915/display/g4x_dp.h
@@ -8,7 +8,7 @@
#include <linux/types.h>
-#include "i915_reg.h"
+#include "i915_reg_defs.h"
enum pipe;
enum port;
diff --git a/drivers/gpu/drm/i915/display/g4x_hdmi.c b/drivers/gpu/drm/i915/display/g4x_hdmi.c
index 2b73f5ff0d02..448ea26786e0 100644
--- a/drivers/gpu/drm/i915/display/g4x_hdmi.c
+++ b/drivers/gpu/drm/i915/display/g4x_hdmi.c
@@ -6,12 +6,14 @@
*/
#include "g4x_hdmi.h"
+#include "i915_reg.h"
#include "intel_audio.h"
#include "intel_connector.h"
#include "intel_crtc.h"
#include "intel_de.h"
#include "intel_display_power.h"
#include "intel_display_types.h"
+#include "intel_dp_aux.h"
#include "intel_dpio_phy.h"
#include "intel_fifo_underrun.h"
#include "intel_hdmi.h"
@@ -78,6 +80,18 @@ static bool intel_hdmi_get_hw_state(struct intel_encoder *encoder,
return ret;
}
+static int g4x_hdmi_compute_config(struct intel_encoder *encoder,
+ struct intel_crtc_state *crtc_state,
+ struct drm_connector_state *conn_state)
+{
+ struct drm_i915_private *i915 = to_i915(encoder->base.dev);
+
+ if (HAS_PCH_SPLIT(i915))
+ crtc_state->has_pch_encoder = true;
+
+ return intel_hdmi_compute_config(encoder, crtc_state, conn_state);
+}
+
static void intel_hdmi_get_config(struct intel_encoder *encoder,
struct intel_crtc_state *pipe_config)
{
@@ -142,12 +156,12 @@ static void intel_hdmi_get_config(struct intel_encoder *encoder,
intel_read_infoframe(encoder, pipe_config,
HDMI_INFOFRAME_TYPE_VENDOR,
&pipe_config->infoframes.hdmi);
+
+ intel_audio_codec_get_config(encoder, pipe_config);
}
-static void g4x_enable_hdmi(struct intel_atomic_state *state,
- struct intel_encoder *encoder,
- const struct intel_crtc_state *pipe_config,
- const struct drm_connector_state *conn_state)
+static void g4x_hdmi_enable_port(struct intel_encoder *encoder,
+ const struct intel_crtc_state *pipe_config)
{
struct drm_device *dev = encoder->base.dev;
struct drm_i915_private *dev_priv = to_i915(dev);
@@ -162,6 +176,16 @@ static void g4x_enable_hdmi(struct intel_atomic_state *state,
intel_de_write(dev_priv, intel_hdmi->hdmi_reg, temp);
intel_de_posting_read(dev_priv, intel_hdmi->hdmi_reg);
+}
+
+static void g4x_enable_hdmi(struct intel_atomic_state *state,
+ struct intel_encoder *encoder,
+ const struct intel_crtc_state *pipe_config,
+ const struct drm_connector_state *conn_state)
+{
+ struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
+
+ g4x_hdmi_enable_port(encoder, pipe_config);
drm_WARN_ON(&dev_priv->drm, pipe_config->has_audio &&
!pipe_config->has_hdmi_sink);
@@ -250,8 +274,8 @@ static void cpt_enable_hdmi(struct intel_atomic_state *state,
*/
if (pipe_config->pipe_bpp > 24) {
- intel_de_write(dev_priv, TRANS_CHICKEN1(pipe),
- intel_de_read(dev_priv, TRANS_CHICKEN1(pipe)) | TRANS_CHICKEN1_HDMIUNIT_GC_DISABLE);
+ intel_de_rmw(dev_priv, TRANS_CHICKEN1(pipe),
+ 0, TRANS_CHICKEN1_HDMIUNIT_GC_DISABLE);
temp &= ~SDVO_COLOR_FORMAT_MASK;
temp |= SDVO_COLOR_FORMAT_8bpc;
@@ -267,8 +291,8 @@ static void cpt_enable_hdmi(struct intel_atomic_state *state,
intel_de_write(dev_priv, intel_hdmi->hdmi_reg, temp);
intel_de_posting_read(dev_priv, intel_hdmi->hdmi_reg);
- intel_de_write(dev_priv, TRANS_CHICKEN1(pipe),
- intel_de_read(dev_priv, TRANS_CHICKEN1(pipe)) & ~TRANS_CHICKEN1_HDMIUNIT_GC_DISABLE);
+ intel_de_rmw(dev_priv, TRANS_CHICKEN1(pipe),
+ TRANS_CHICKEN1_HDMIUNIT_GC_DISABLE, 0);
}
drm_WARN_ON(&dev_priv->drm, pipe_config->has_audio &&
@@ -281,6 +305,11 @@ static void vlv_enable_hdmi(struct intel_atomic_state *state,
const struct intel_crtc_state *pipe_config,
const struct drm_connector_state *conn_state)
{
+ struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
+
+ drm_WARN_ON(&dev_priv->drm, pipe_config->has_audio &&
+ !pipe_config->has_hdmi_sink);
+ intel_audio_codec_enable(encoder, pipe_config, conn_state);
}
static void intel_disable_hdmi(struct intel_atomic_state *state,
@@ -402,7 +431,7 @@ static void vlv_hdmi_pre_enable(struct intel_atomic_state *state,
pipe_config->has_infoframe,
pipe_config, conn_state);
- g4x_enable_hdmi(state, encoder, pipe_config, conn_state);
+ g4x_hdmi_enable_port(encoder, pipe_config);
vlv_wait_port_ready(dev_priv, dig_port, 0x0);
}
@@ -479,7 +508,7 @@ static void chv_hdmi_pre_enable(struct intel_atomic_state *state,
pipe_config->has_infoframe,
pipe_config, conn_state);
- g4x_enable_hdmi(state, encoder, pipe_config, conn_state);
+ g4x_hdmi_enable_port(encoder, pipe_config);
vlv_wait_port_ready(dev_priv, dig_port, 0x0);
@@ -520,10 +549,18 @@ intel_hdmi_hotplug(struct intel_encoder *encoder,
void g4x_hdmi_init(struct drm_i915_private *dev_priv,
i915_reg_t hdmi_reg, enum port port)
{
+ const struct intel_bios_encoder_data *devdata;
struct intel_digital_port *dig_port;
struct intel_encoder *intel_encoder;
struct intel_connector *intel_connector;
+ devdata = intel_bios_encoder_data_lookup(dev_priv, port);
+
+ /* FIXME bail? */
+ if (!devdata)
+ drm_dbg_kms(&dev_priv->drm, "No VBT child device for HDMI-%c\n",
+ port_name(port));
+
dig_port = kzalloc(sizeof(*dig_port), GFP_KERNEL);
if (!dig_port)
return;
@@ -536,6 +573,8 @@ void g4x_hdmi_init(struct drm_i915_private *dev_priv,
intel_encoder = &dig_port->base;
+ intel_encoder->devdata = devdata;
+
mutex_init(&dig_port->hdcp_mutex);
drm_encoder_init(&dev_priv->drm, &intel_encoder->base,
@@ -543,7 +582,7 @@ void g4x_hdmi_init(struct drm_i915_private *dev_priv,
"HDMI %c", port_name(port));
intel_encoder->hotplug = intel_hdmi_hotplug;
- intel_encoder->compute_config = intel_hdmi_compute_config;
+ intel_encoder->compute_config = g4x_hdmi_compute_config;
if (HAS_PCH_SPLIT(dev_priv)) {
intel_encoder->disable = pch_disable_hdmi;
intel_encoder->post_disable = pch_post_disable_hdmi;
@@ -585,7 +624,7 @@ void g4x_hdmi_init(struct drm_i915_private *dev_priv,
} else {
intel_encoder->pipe_mask = ~0;
}
- intel_encoder->cloneable = 1 << INTEL_OUTPUT_ANALOG;
+ intel_encoder->cloneable = BIT(INTEL_OUTPUT_ANALOG);
intel_encoder->hpd_pin = intel_hpd_pin_default(dev_priv, port);
/*
* BSpec is unclear about HDMI+HDMI cloning on g4x, but it seems
@@ -593,7 +632,7 @@ void g4x_hdmi_init(struct drm_i915_private *dev_priv,
* only one port anyway, nothing is lost by allowing it.
*/
if (IS_G4X(dev_priv))
- intel_encoder->cloneable |= 1 << INTEL_OUTPUT_HDMI;
+ intel_encoder->cloneable |= BIT(INTEL_OUTPUT_HDMI);
dig_port->hdmi.hdmi_reg = hdmi_reg;
dig_port->dp.output_reg = INVALID_MMIO_REG;
@@ -601,6 +640,6 @@ void g4x_hdmi_init(struct drm_i915_private *dev_priv,
intel_infoframe_init(dig_port);
- dig_port->aux_ch = intel_bios_port_aux_ch(dev_priv, port);
+ dig_port->aux_ch = intel_dp_aux_ch(intel_encoder);
intel_hdmi_init_connector(dig_port, intel_connector);
}
diff --git a/drivers/gpu/drm/i915/display/hsw_ips.c b/drivers/gpu/drm/i915/display/hsw_ips.c
index a5be4af792cb..8eca0de065b6 100644
--- a/drivers/gpu/drm/i915/display/hsw_ips.c
+++ b/drivers/gpu/drm/i915/display/hsw_ips.c
@@ -14,6 +14,7 @@ static void hsw_ips_enable(const struct intel_crtc_state *crtc_state)
{
struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
struct drm_i915_private *i915 = to_i915(crtc->base.dev);
+ u32 val;
if (!crtc_state->ips_enabled)
return;
@@ -26,10 +27,15 @@ static void hsw_ips_enable(const struct intel_crtc_state *crtc_state)
drm_WARN_ON(&i915->drm,
!(crtc_state->active_planes & ~BIT(PLANE_CURSOR)));
+ val = IPS_ENABLE;
+
+ if (i915->display.ips.false_color)
+ val |= IPS_FALSE_COLOR;
+
if (IS_BROADWELL(i915)) {
drm_WARN_ON(&i915->drm,
snb_pcode_write(&i915->uncore, DISPLAY_IPS_CONTROL,
- IPS_ENABLE | IPS_PCODE_CONTROL));
+ val | IPS_PCODE_CONTROL));
/*
* Quoting Art Runyan: "its not safe to expect any particular
* value in IPS_CTL bit 31 after enabling IPS through the
@@ -37,7 +43,7 @@ static void hsw_ips_enable(const struct intel_crtc_state *crtc_state)
* so we need to just enable it and continue on.
*/
} else {
- intel_de_write(i915, IPS_CTL, IPS_ENABLE);
+ intel_de_write(i915, IPS_CTL, val);
/*
* The bit only becomes 1 in the next vblank, so this wait here
* is essentially intel_wait_for_vblank. If we don't have this
@@ -104,8 +110,7 @@ static bool hsw_ips_need_disable(struct intel_atomic_state *state,
* Disable IPS before we program the LUT.
*/
if (IS_HASWELL(i915) &&
- (new_crtc_state->uapi.color_mgmt_changed ||
- new_crtc_state->update_pipe) &&
+ intel_crtc_needs_color_update(new_crtc_state) &&
new_crtc_state->gamma_mode == GAMMA_MODE_MODE_SPLIT)
return true;
@@ -146,8 +151,7 @@ static bool hsw_ips_need_enable(struct intel_atomic_state *state,
* Re-enable IPS after the LUT has been programmed.
*/
if (IS_HASWELL(i915) &&
- (new_crtc_state->uapi.color_mgmt_changed ||
- new_crtc_state->update_pipe) &&
+ intel_crtc_needs_color_update(new_crtc_state) &&
new_crtc_state->gamma_mode == GAMMA_MODE_MODE_SPLIT)
return true;
@@ -155,7 +159,7 @@ static bool hsw_ips_need_enable(struct intel_atomic_state *state,
* We can't read out IPS on broadwell, assume the worst and
* forcibly enable IPS on the first fastset.
*/
- if (new_crtc_state->update_pipe && old_crtc_state->inherited)
+ if (intel_crtc_needs_fastset(new_crtc_state) && old_crtc_state->inherited)
return true;
return !old_crtc_state->ips_enabled;
@@ -269,3 +273,87 @@ void hsw_ips_get_config(struct intel_crtc_state *crtc_state)
crtc_state->ips_enabled = true;
}
}
+
+static int hsw_ips_debugfs_false_color_get(void *data, u64 *val)
+{
+ struct intel_crtc *crtc = data;
+ struct drm_i915_private *i915 = to_i915(crtc->base.dev);
+
+ *val = i915->display.ips.false_color;
+
+ return 0;
+}
+
+static int hsw_ips_debugfs_false_color_set(void *data, u64 val)
+{
+ struct intel_crtc *crtc = data;
+ struct drm_i915_private *i915 = to_i915(crtc->base.dev);
+ struct intel_crtc_state *crtc_state;
+ int ret;
+
+ ret = drm_modeset_lock(&crtc->base.mutex, NULL);
+ if (ret)
+ return ret;
+
+ i915->display.ips.false_color = val;
+
+ crtc_state = to_intel_crtc_state(crtc->base.state);
+
+ if (!crtc_state->hw.active)
+ goto unlock;
+
+ if (crtc_state->uapi.commit &&
+ !try_wait_for_completion(&crtc_state->uapi.commit->hw_done))
+ goto unlock;
+
+ hsw_ips_enable(crtc_state);
+
+ unlock:
+ drm_modeset_unlock(&crtc->base.mutex);
+
+ return ret;
+}
+
+DEFINE_DEBUGFS_ATTRIBUTE(hsw_ips_debugfs_false_color_fops,
+ hsw_ips_debugfs_false_color_get,
+ hsw_ips_debugfs_false_color_set,
+ "%llu\n");
+
+static int hsw_ips_debugfs_status_show(struct seq_file *m, void *unused)
+{
+ struct intel_crtc *crtc = m->private;
+ struct drm_i915_private *i915 = to_i915(crtc->base.dev);
+ intel_wakeref_t wakeref;
+
+ wakeref = intel_runtime_pm_get(&i915->runtime_pm);
+
+ seq_printf(m, "Enabled by kernel parameter: %s\n",
+ str_yes_no(i915->params.enable_ips));
+
+ if (DISPLAY_VER(i915) >= 8) {
+ seq_puts(m, "Currently: unknown\n");
+ } else {
+ if (intel_de_read(i915, IPS_CTL) & IPS_ENABLE)
+ seq_puts(m, "Currently: enabled\n");
+ else
+ seq_puts(m, "Currently: disabled\n");
+ }
+
+ intel_runtime_pm_put(&i915->runtime_pm, wakeref);
+
+ return 0;
+}
+
+DEFINE_SHOW_ATTRIBUTE(hsw_ips_debugfs_status);
+
+void hsw_ips_crtc_debugfs_add(struct intel_crtc *crtc)
+{
+ if (!hsw_crtc_supports_ips(crtc))
+ return;
+
+ debugfs_create_file("i915_ips_false_color", 0644, crtc->base.debugfs_entry,
+ crtc, &hsw_ips_debugfs_false_color_fops);
+
+ debugfs_create_file("i915_ips_status", 0444, crtc->base.debugfs_entry,
+ crtc, &hsw_ips_debugfs_status_fops);
+}
diff --git a/drivers/gpu/drm/i915/display/hsw_ips.h b/drivers/gpu/drm/i915/display/hsw_ips.h
index 4564dee497d7..4eb83b350791 100644
--- a/drivers/gpu/drm/i915/display/hsw_ips.h
+++ b/drivers/gpu/drm/i915/display/hsw_ips.h
@@ -22,5 +22,6 @@ bool hsw_crtc_state_ips_capable(const struct intel_crtc_state *crtc_state);
int hsw_ips_compute_config(struct intel_atomic_state *state,
struct intel_crtc *crtc);
void hsw_ips_get_config(struct intel_crtc_state *crtc_state);
+void hsw_ips_crtc_debugfs_add(struct intel_crtc *crtc);
#endif /* __HSW_IPS_H__ */
diff --git a/drivers/gpu/drm/i915/display/i9xx_plane.c b/drivers/gpu/drm/i915/display/i9xx_plane.c
index 5afbe3e98ee8..ecaeb7dc196b 100644
--- a/drivers/gpu/drm/i915/display/i9xx_plane.c
+++ b/drivers/gpu/drm/i915/display/i9xx_plane.c
@@ -8,6 +8,9 @@
#include <drm/drm_blend.h>
#include <drm/drm_fourcc.h>
+#include "i915_irq.h"
+#include "i915_reg.h"
+#include "i9xx_plane.h"
#include "intel_atomic.h"
#include "intel_atomic_plane.h"
#include "intel_de.h"
@@ -15,7 +18,6 @@
#include "intel_fb.h"
#include "intel_fbc.h"
#include "intel_sprite.h"
-#include "i9xx_plane.h"
/* Primary plane formats for gen <= 3 */
static const u32 i8xx_primary_formats[] = {
diff --git a/drivers/gpu/drm/i915/intel_pm.c b/drivers/gpu/drm/i915/display/i9xx_wm.c
index 8f86f56e7ca4..caef72d38798 100644
--- a/drivers/gpu/drm/i915/intel_pm.c
+++ b/drivers/gpu/drm/i915/display/i9xx_wm.c
@@ -1,46 +1,18 @@
+// SPDX-License-Identifier: MIT
/*
- * Copyright © 2012 Intel Corporation
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice (including the next
- * paragraph) shall be included in all copies or substantial portions of the
- * Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
- * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
- * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS
- * IN THE SOFTWARE.
- *
- * Authors:
- * Eugeni Dodonov <eugeni.dodonov@intel.com>
- *
+ * Copyright © 2023 Intel Corporation
*/
-#include "display/intel_de.h"
-#include "display/intel_display_trace.h"
-#include "display/skl_watermark.h"
-
-#include "gt/intel_engine_regs.h"
-#include "gt/intel_gt_regs.h"
-
#include "i915_drv.h"
+#include "i9xx_wm.h"
+#include "intel_atomic.h"
+#include "intel_display.h"
+#include "intel_display_trace.h"
#include "intel_mchbar_regs.h"
-#include "intel_pm.h"
+#include "intel_wm.h"
+#include "skl_watermark.h"
#include "vlv_sideband.h"
-struct drm_i915_clock_gating_funcs {
- void (*init_clock_gating)(struct drm_i915_private *i915);
-};
-
/* used in computing the new watermarks state */
struct intel_wm_config {
unsigned int num_pipes_active;
@@ -48,190 +20,16 @@ struct intel_wm_config {
bool sprites_scaled;
};
-static void gen9_init_clock_gating(struct drm_i915_private *dev_priv)
-{
- if (HAS_LLC(dev_priv)) {
- /*
- * WaCompressedResourceDisplayNewHashMode:skl,kbl
- * Display WA #0390: skl,kbl
- *
- * Must match Sampler, Pixel Back End, and Media. See
- * WaCompressedResourceSamplerPbeMediaNewHashMode.
- */
- intel_uncore_write(&dev_priv->uncore, CHICKEN_PAR1_1,
- intel_uncore_read(&dev_priv->uncore, CHICKEN_PAR1_1) |
- SKL_DE_COMPRESSED_HASH_MODE);
- }
-
- /* See Bspec note for PSR2_CTL bit 31, Wa#828:skl,bxt,kbl,cfl */
- intel_uncore_write(&dev_priv->uncore, CHICKEN_PAR1_1,
- intel_uncore_read(&dev_priv->uncore, CHICKEN_PAR1_1) | SKL_EDP_PSR_FIX_RDWRAP);
-
- /* WaEnableChickenDCPR:skl,bxt,kbl,glk,cfl */
- intel_uncore_write(&dev_priv->uncore, GEN8_CHICKEN_DCPR_1,
- intel_uncore_read(&dev_priv->uncore, GEN8_CHICKEN_DCPR_1) | MASK_WAKEMEM);
-
- /*
- * WaFbcWakeMemOn:skl,bxt,kbl,glk,cfl
- * Display WA #0859: skl,bxt,kbl,glk,cfl
- */
- intel_uncore_write(&dev_priv->uncore, DISP_ARB_CTL, intel_uncore_read(&dev_priv->uncore, DISP_ARB_CTL) |
- DISP_FBC_MEMORY_WAKE);
-}
-
-static void bxt_init_clock_gating(struct drm_i915_private *dev_priv)
-{
- gen9_init_clock_gating(dev_priv);
-
- /* WaDisableSDEUnitClockGating:bxt */
- intel_uncore_write(&dev_priv->uncore, GEN8_UCGCTL6, intel_uncore_read(&dev_priv->uncore, GEN8_UCGCTL6) |
- GEN8_SDEUNIT_CLOCK_GATE_DISABLE);
-
- /*
- * FIXME:
- * GEN8_HDCUNIT_CLOCK_GATE_DISABLE_HDCREQ applies on 3x6 GT SKUs only.
- */
- intel_uncore_write(&dev_priv->uncore, GEN8_UCGCTL6, intel_uncore_read(&dev_priv->uncore, GEN8_UCGCTL6) |
- GEN8_HDCUNIT_CLOCK_GATE_DISABLE_HDCREQ);
-
- /*
- * Wa: Backlight PWM may stop in the asserted state, causing backlight
- * to stay fully on.
- */
- intel_uncore_write(&dev_priv->uncore, GEN9_CLKGATE_DIS_0, intel_uncore_read(&dev_priv->uncore, GEN9_CLKGATE_DIS_0) |
- PWM1_GATING_DIS | PWM2_GATING_DIS);
-
- /*
- * Lower the display internal timeout.
- * This is needed to avoid any hard hangs when DSI port PLL
- * is off and a MMIO access is attempted by any privilege
- * application, using batch buffers or any other means.
- */
- intel_uncore_write(&dev_priv->uncore, RM_TIMEOUT, MMIO_TIMEOUT_US(950));
-
- /*
- * WaFbcTurnOffFbcWatermark:bxt
- * Display WA #0562: bxt
- */
- intel_uncore_write(&dev_priv->uncore, DISP_ARB_CTL, intel_uncore_read(&dev_priv->uncore, DISP_ARB_CTL) |
- DISP_FBC_WM_DIS);
-
- /*
- * WaFbcHighMemBwCorruptionAvoidance:bxt
- * Display WA #0883: bxt
- */
- intel_uncore_write(&dev_priv->uncore, ILK_DPFC_CHICKEN(INTEL_FBC_A),
- intel_uncore_read(&dev_priv->uncore, ILK_DPFC_CHICKEN(INTEL_FBC_A)) |
- DPFC_DISABLE_DUMMY0);
-}
-
-static void glk_init_clock_gating(struct drm_i915_private *dev_priv)
-{
- gen9_init_clock_gating(dev_priv);
-
- /*
- * WaDisablePWMClockGating:glk
- * Backlight PWM may stop in the asserted state, causing backlight
- * to stay fully on.
- */
- intel_uncore_write(&dev_priv->uncore, GEN9_CLKGATE_DIS_0, intel_uncore_read(&dev_priv->uncore, GEN9_CLKGATE_DIS_0) |
- PWM1_GATING_DIS | PWM2_GATING_DIS);
-}
-
-static void pnv_get_mem_freq(struct drm_i915_private *dev_priv)
-{
- u32 tmp;
-
- tmp = intel_uncore_read(&dev_priv->uncore, CLKCFG);
-
- switch (tmp & CLKCFG_FSB_MASK) {
- case CLKCFG_FSB_533:
- dev_priv->fsb_freq = 533; /* 133*4 */
- break;
- case CLKCFG_FSB_800:
- dev_priv->fsb_freq = 800; /* 200*4 */
- break;
- case CLKCFG_FSB_667:
- dev_priv->fsb_freq = 667; /* 167*4 */
- break;
- case CLKCFG_FSB_400:
- dev_priv->fsb_freq = 400; /* 100*4 */
- break;
- }
-
- switch (tmp & CLKCFG_MEM_MASK) {
- case CLKCFG_MEM_533:
- dev_priv->mem_freq = 533;
- break;
- case CLKCFG_MEM_667:
- dev_priv->mem_freq = 667;
- break;
- case CLKCFG_MEM_800:
- dev_priv->mem_freq = 800;
- break;
- }
-
- /* detect pineview DDR3 setting */
- tmp = intel_uncore_read(&dev_priv->uncore, CSHRDDR3CTL);
- dev_priv->is_ddr3 = (tmp & CSHRDDR3CTL_DDR3) ? 1 : 0;
-}
-
-static void ilk_get_mem_freq(struct drm_i915_private *dev_priv)
-{
- u16 ddrpll, csipll;
-
- ddrpll = intel_uncore_read16(&dev_priv->uncore, DDRMPLL1);
- csipll = intel_uncore_read16(&dev_priv->uncore, CSIPLL0);
-
- switch (ddrpll & 0xff) {
- case 0xc:
- dev_priv->mem_freq = 800;
- break;
- case 0x10:
- dev_priv->mem_freq = 1066;
- break;
- case 0x14:
- dev_priv->mem_freq = 1333;
- break;
- case 0x18:
- dev_priv->mem_freq = 1600;
- break;
- default:
- drm_dbg(&dev_priv->drm, "unknown memory frequency 0x%02x\n",
- ddrpll & 0xff);
- dev_priv->mem_freq = 0;
- break;
- }
-
- switch (csipll & 0x3ff) {
- case 0x00c:
- dev_priv->fsb_freq = 3200;
- break;
- case 0x00e:
- dev_priv->fsb_freq = 3733;
- break;
- case 0x010:
- dev_priv->fsb_freq = 4266;
- break;
- case 0x012:
- dev_priv->fsb_freq = 4800;
- break;
- case 0x014:
- dev_priv->fsb_freq = 5333;
- break;
- case 0x016:
- dev_priv->fsb_freq = 5866;
- break;
- case 0x018:
- dev_priv->fsb_freq = 6400;
- break;
- default:
- drm_dbg(&dev_priv->drm, "unknown fsb frequency 0x%04x\n",
- csipll & 0x3ff);
- dev_priv->fsb_freq = 0;
- break;
- }
-}
+struct cxsr_latency {
+ bool is_desktop : 1;
+ bool is_ddr3 : 1;
+ u16 fsb_freq;
+ u16 mem_freq;
+ u16 display_sr;
+ u16 display_hpll_disable;
+ u16 cursor_sr;
+ u16 cursor_hpll_disable;
+};
static const struct cxsr_latency cxsr_latency_table[] = {
{1, 0, 800, 400, 3382, 33382, 3983, 33983}, /* DDR2-400 SC */
@@ -368,7 +166,7 @@ static bool _intel_set_memory_cxsr(struct drm_i915_private *dev_priv, bool enabl
} else if (IS_I915GM(dev_priv)) {
/*
* FIXME can't find a bit like this for 915G, and
- * and yet it does have the related watermark in
+ * yet it does have the related watermark in
* FW_BLC_SELF. What's going on?
*/
was_enabled = intel_uncore_read(&dev_priv->uncore, INSTPM) & INSTPM_SELF_EN;
@@ -614,7 +412,7 @@ static const struct intel_watermark_params i830_a_wm_info = {
static const struct intel_watermark_params i830_bc_wm_info = {
.fifo_size = I855GM_FIFO_SIZE,
- .max_wm = I915_MAX_WM/2,
+ .max_wm = I915_MAX_WM / 2,
.default_wm = 1,
.guard_size = 2,
.cacheline_size = I830_FIFO_LINE_SIZE,
@@ -794,34 +592,6 @@ static bool is_enabling(int old, int new, int threshold)
return old < threshold && new >= threshold;
}
-static int intel_wm_num_levels(struct drm_i915_private *dev_priv)
-{
- return dev_priv->display.wm.max_level + 1;
-}
-
-bool intel_wm_plane_visible(const struct intel_crtc_state *crtc_state,
- const struct intel_plane_state *plane_state)
-{
- struct intel_plane *plane = to_intel_plane(plane_state->uapi.plane);
-
- /* FIXME check the 'enable' instead */
- if (!crtc_state->hw.active)
- return false;
-
- /*
- * Treat cursor with fb as always visible since cursor updates
- * can happen faster than the vrefresh rate, and the current
- * watermark code doesn't handle that correctly. Cursor updates
- * which set/clear the fb or change the cursor size are going
- * to get throttled by intel_legacy_cursor_update() to work
- * around this problem with the watermark code.
- */
- if (plane->id == PLANE_CURSOR)
- return plane_state->hw.fb != NULL;
- else
- return plane_state->uapi.visible;
-}
-
static bool intel_crtc_active(struct intel_crtc *crtc)
{
/* Be paranoid as we can arrive here with only partial
@@ -895,19 +665,14 @@ static void pnv_update_wm(struct drm_i915_private *dev_priv)
wm = intel_calculate_wm(pixel_rate, &pnv_cursor_wm,
pnv_display_wm.fifo_size,
4, latency->cursor_sr);
- reg = intel_uncore_read(&dev_priv->uncore, DSPFW3);
- reg &= ~DSPFW_CURSOR_SR_MASK;
- reg |= FW_WM(wm, CURSOR_SR);
- intel_uncore_write(&dev_priv->uncore, DSPFW3, reg);
+ intel_uncore_rmw(&dev_priv->uncore, DSPFW3, DSPFW_CURSOR_SR_MASK,
+ FW_WM(wm, CURSOR_SR));
/* Display HPLL off SR */
wm = intel_calculate_wm(pixel_rate, &pnv_display_hplloff_wm,
pnv_display_hplloff_wm.fifo_size,
cpp, latency->display_hpll_disable);
- reg = intel_uncore_read(&dev_priv->uncore, DSPFW3);
- reg &= ~DSPFW_HPLL_SR_MASK;
- reg |= FW_WM(wm, HPLL_SR);
- intel_uncore_write(&dev_priv->uncore, DSPFW3, reg);
+ intel_uncore_rmw(&dev_priv->uncore, DSPFW3, DSPFW_HPLL_SR_MASK, FW_WM(wm, HPLL_SR));
/* cursor HPLL off SR */
wm = intel_calculate_wm(pixel_rate, &pnv_cursor_hplloff_wm,
@@ -951,22 +716,22 @@ static void g4x_write_wm_values(struct drm_i915_private *dev_priv,
trace_g4x_wm(intel_crtc_for_pipe(dev_priv, pipe), wm);
intel_uncore_write(&dev_priv->uncore, DSPFW1,
- FW_WM(wm->sr.plane, SR) |
- FW_WM(wm->pipe[PIPE_B].plane[PLANE_CURSOR], CURSORB) |
- FW_WM(wm->pipe[PIPE_B].plane[PLANE_PRIMARY], PLANEB) |
- FW_WM(wm->pipe[PIPE_A].plane[PLANE_PRIMARY], PLANEA));
+ FW_WM(wm->sr.plane, SR) |
+ FW_WM(wm->pipe[PIPE_B].plane[PLANE_CURSOR], CURSORB) |
+ FW_WM(wm->pipe[PIPE_B].plane[PLANE_PRIMARY], PLANEB) |
+ FW_WM(wm->pipe[PIPE_A].plane[PLANE_PRIMARY], PLANEA));
intel_uncore_write(&dev_priv->uncore, DSPFW2,
- (wm->fbc_en ? DSPFW_FBC_SR_EN : 0) |
- FW_WM(wm->sr.fbc, FBC_SR) |
- FW_WM(wm->hpll.fbc, FBC_HPLL_SR) |
- FW_WM(wm->pipe[PIPE_B].plane[PLANE_SPRITE0], SPRITEB) |
- FW_WM(wm->pipe[PIPE_A].plane[PLANE_CURSOR], CURSORA) |
- FW_WM(wm->pipe[PIPE_A].plane[PLANE_SPRITE0], SPRITEA));
+ (wm->fbc_en ? DSPFW_FBC_SR_EN : 0) |
+ FW_WM(wm->sr.fbc, FBC_SR) |
+ FW_WM(wm->hpll.fbc, FBC_HPLL_SR) |
+ FW_WM(wm->pipe[PIPE_B].plane[PLANE_SPRITE0], SPRITEB) |
+ FW_WM(wm->pipe[PIPE_A].plane[PLANE_CURSOR], CURSORA) |
+ FW_WM(wm->pipe[PIPE_A].plane[PLANE_SPRITE0], SPRITEA));
intel_uncore_write(&dev_priv->uncore, DSPFW3,
- (wm->hpll_en ? DSPFW_HPLL_SR_EN : 0) |
- FW_WM(wm->sr.cursor, CURSOR_SR) |
- FW_WM(wm->hpll.cursor, HPLL_CURSOR) |
- FW_WM(wm->hpll.plane, HPLL_SR));
+ (wm->hpll_en ? DSPFW_HPLL_SR_EN : 0) |
+ FW_WM(wm->sr.cursor, CURSOR_SR) |
+ FW_WM(wm->hpll.cursor, HPLL_CURSOR) |
+ FW_WM(wm->hpll.plane, HPLL_SR));
intel_uncore_posting_read(&dev_priv->uncore, DSPFW1);
}
@@ -983,10 +748,10 @@ static void vlv_write_wm_values(struct drm_i915_private *dev_priv,
trace_vlv_wm(intel_crtc_for_pipe(dev_priv, pipe), wm);
intel_uncore_write(&dev_priv->uncore, VLV_DDL(pipe),
- (wm->ddl[pipe].plane[PLANE_CURSOR] << DDL_CURSOR_SHIFT) |
- (wm->ddl[pipe].plane[PLANE_SPRITE1] << DDL_SPRITE_SHIFT(1)) |
- (wm->ddl[pipe].plane[PLANE_SPRITE0] << DDL_SPRITE_SHIFT(0)) |
- (wm->ddl[pipe].plane[PLANE_PRIMARY] << DDL_PLANE_SHIFT));
+ (wm->ddl[pipe].plane[PLANE_CURSOR] << DDL_CURSOR_SHIFT) |
+ (wm->ddl[pipe].plane[PLANE_SPRITE1] << DDL_SPRITE_SHIFT(1)) |
+ (wm->ddl[pipe].plane[PLANE_SPRITE0] << DDL_SPRITE_SHIFT(0)) |
+ (wm->ddl[pipe].plane[PLANE_PRIMARY] << DDL_PLANE_SHIFT));
}
/*
@@ -1001,50 +766,50 @@ static void vlv_write_wm_values(struct drm_i915_private *dev_priv,
intel_uncore_write(&dev_priv->uncore, DSPFW6, 0);
intel_uncore_write(&dev_priv->uncore, DSPFW1,
- FW_WM(wm->sr.plane, SR) |
- FW_WM(wm->pipe[PIPE_B].plane[PLANE_CURSOR], CURSORB) |
- FW_WM_VLV(wm->pipe[PIPE_B].plane[PLANE_PRIMARY], PLANEB) |
- FW_WM_VLV(wm->pipe[PIPE_A].plane[PLANE_PRIMARY], PLANEA));
+ FW_WM(wm->sr.plane, SR) |
+ FW_WM(wm->pipe[PIPE_B].plane[PLANE_CURSOR], CURSORB) |
+ FW_WM_VLV(wm->pipe[PIPE_B].plane[PLANE_PRIMARY], PLANEB) |
+ FW_WM_VLV(wm->pipe[PIPE_A].plane[PLANE_PRIMARY], PLANEA));
intel_uncore_write(&dev_priv->uncore, DSPFW2,
- FW_WM_VLV(wm->pipe[PIPE_A].plane[PLANE_SPRITE1], SPRITEB) |
- FW_WM(wm->pipe[PIPE_A].plane[PLANE_CURSOR], CURSORA) |
- FW_WM_VLV(wm->pipe[PIPE_A].plane[PLANE_SPRITE0], SPRITEA));
+ FW_WM_VLV(wm->pipe[PIPE_A].plane[PLANE_SPRITE1], SPRITEB) |
+ FW_WM(wm->pipe[PIPE_A].plane[PLANE_CURSOR], CURSORA) |
+ FW_WM_VLV(wm->pipe[PIPE_A].plane[PLANE_SPRITE0], SPRITEA));
intel_uncore_write(&dev_priv->uncore, DSPFW3,
- FW_WM(wm->sr.cursor, CURSOR_SR));
+ FW_WM(wm->sr.cursor, CURSOR_SR));
if (IS_CHERRYVIEW(dev_priv)) {
intel_uncore_write(&dev_priv->uncore, DSPFW7_CHV,
- FW_WM_VLV(wm->pipe[PIPE_B].plane[PLANE_SPRITE1], SPRITED) |
- FW_WM_VLV(wm->pipe[PIPE_B].plane[PLANE_SPRITE0], SPRITEC));
+ FW_WM_VLV(wm->pipe[PIPE_B].plane[PLANE_SPRITE1], SPRITED) |
+ FW_WM_VLV(wm->pipe[PIPE_B].plane[PLANE_SPRITE0], SPRITEC));
intel_uncore_write(&dev_priv->uncore, DSPFW8_CHV,
- FW_WM_VLV(wm->pipe[PIPE_C].plane[PLANE_SPRITE1], SPRITEF) |
- FW_WM_VLV(wm->pipe[PIPE_C].plane[PLANE_SPRITE0], SPRITEE));
+ FW_WM_VLV(wm->pipe[PIPE_C].plane[PLANE_SPRITE1], SPRITEF) |
+ FW_WM_VLV(wm->pipe[PIPE_C].plane[PLANE_SPRITE0], SPRITEE));
intel_uncore_write(&dev_priv->uncore, DSPFW9_CHV,
- FW_WM_VLV(wm->pipe[PIPE_C].plane[PLANE_PRIMARY], PLANEC) |
- FW_WM(wm->pipe[PIPE_C].plane[PLANE_CURSOR], CURSORC));
+ FW_WM_VLV(wm->pipe[PIPE_C].plane[PLANE_PRIMARY], PLANEC) |
+ FW_WM(wm->pipe[PIPE_C].plane[PLANE_CURSOR], CURSORC));
intel_uncore_write(&dev_priv->uncore, DSPHOWM,
- FW_WM(wm->sr.plane >> 9, SR_HI) |
- FW_WM(wm->pipe[PIPE_C].plane[PLANE_SPRITE1] >> 8, SPRITEF_HI) |
- FW_WM(wm->pipe[PIPE_C].plane[PLANE_SPRITE0] >> 8, SPRITEE_HI) |
- FW_WM(wm->pipe[PIPE_C].plane[PLANE_PRIMARY] >> 8, PLANEC_HI) |
- FW_WM(wm->pipe[PIPE_B].plane[PLANE_SPRITE1] >> 8, SPRITED_HI) |
- FW_WM(wm->pipe[PIPE_B].plane[PLANE_SPRITE0] >> 8, SPRITEC_HI) |
- FW_WM(wm->pipe[PIPE_B].plane[PLANE_PRIMARY] >> 8, PLANEB_HI) |
- FW_WM(wm->pipe[PIPE_A].plane[PLANE_SPRITE1] >> 8, SPRITEB_HI) |
- FW_WM(wm->pipe[PIPE_A].plane[PLANE_SPRITE0] >> 8, SPRITEA_HI) |
- FW_WM(wm->pipe[PIPE_A].plane[PLANE_PRIMARY] >> 8, PLANEA_HI));
+ FW_WM(wm->sr.plane >> 9, SR_HI) |
+ FW_WM(wm->pipe[PIPE_C].plane[PLANE_SPRITE1] >> 8, SPRITEF_HI) |
+ FW_WM(wm->pipe[PIPE_C].plane[PLANE_SPRITE0] >> 8, SPRITEE_HI) |
+ FW_WM(wm->pipe[PIPE_C].plane[PLANE_PRIMARY] >> 8, PLANEC_HI) |
+ FW_WM(wm->pipe[PIPE_B].plane[PLANE_SPRITE1] >> 8, SPRITED_HI) |
+ FW_WM(wm->pipe[PIPE_B].plane[PLANE_SPRITE0] >> 8, SPRITEC_HI) |
+ FW_WM(wm->pipe[PIPE_B].plane[PLANE_PRIMARY] >> 8, PLANEB_HI) |
+ FW_WM(wm->pipe[PIPE_A].plane[PLANE_SPRITE1] >> 8, SPRITEB_HI) |
+ FW_WM(wm->pipe[PIPE_A].plane[PLANE_SPRITE0] >> 8, SPRITEA_HI) |
+ FW_WM(wm->pipe[PIPE_A].plane[PLANE_PRIMARY] >> 8, PLANEA_HI));
} else {
intel_uncore_write(&dev_priv->uncore, DSPFW7,
- FW_WM_VLV(wm->pipe[PIPE_B].plane[PLANE_SPRITE1], SPRITED) |
- FW_WM_VLV(wm->pipe[PIPE_B].plane[PLANE_SPRITE0], SPRITEC));
+ FW_WM_VLV(wm->pipe[PIPE_B].plane[PLANE_SPRITE1], SPRITED) |
+ FW_WM_VLV(wm->pipe[PIPE_B].plane[PLANE_SPRITE0], SPRITEC));
intel_uncore_write(&dev_priv->uncore, DSPHOWM,
- FW_WM(wm->sr.plane >> 9, SR_HI) |
- FW_WM(wm->pipe[PIPE_B].plane[PLANE_SPRITE1] >> 8, SPRITED_HI) |
- FW_WM(wm->pipe[PIPE_B].plane[PLANE_SPRITE0] >> 8, SPRITEC_HI) |
- FW_WM(wm->pipe[PIPE_B].plane[PLANE_PRIMARY] >> 8, PLANEB_HI) |
- FW_WM(wm->pipe[PIPE_A].plane[PLANE_SPRITE1] >> 8, SPRITEB_HI) |
- FW_WM(wm->pipe[PIPE_A].plane[PLANE_SPRITE0] >> 8, SPRITEA_HI) |
- FW_WM(wm->pipe[PIPE_A].plane[PLANE_PRIMARY] >> 8, PLANEA_HI));
+ FW_WM(wm->sr.plane >> 9, SR_HI) |
+ FW_WM(wm->pipe[PIPE_B].plane[PLANE_SPRITE1] >> 8, SPRITED_HI) |
+ FW_WM(wm->pipe[PIPE_B].plane[PLANE_SPRITE0] >> 8, SPRITEC_HI) |
+ FW_WM(wm->pipe[PIPE_B].plane[PLANE_PRIMARY] >> 8, PLANEB_HI) |
+ FW_WM(wm->pipe[PIPE_A].plane[PLANE_SPRITE1] >> 8, SPRITEB_HI) |
+ FW_WM(wm->pipe[PIPE_A].plane[PLANE_SPRITE0] >> 8, SPRITEA_HI) |
+ FW_WM(wm->pipe[PIPE_A].plane[PLANE_PRIMARY] >> 8, PLANEA_HI));
}
intel_uncore_posting_read(&dev_priv->uncore, DSPFW1);
@@ -1059,7 +824,7 @@ static void g4x_setup_wm_latency(struct drm_i915_private *dev_priv)
dev_priv->display.wm.pri_latency[G4X_WM_LEVEL_SR] = 12;
dev_priv->display.wm.pri_latency[G4X_WM_LEVEL_HPLL] = 35;
- dev_priv->display.wm.max_level = G4X_WM_LEVEL_HPLL;
+ dev_priv->display.wm.num_levels = G4X_WM_LEVEL_HPLL + 1;
}
static int g4x_plane_fifo_size(enum plane_id plane_id, int level)
@@ -1166,7 +931,7 @@ static bool g4x_raw_plane_wm_set(struct intel_crtc_state *crtc_state,
struct drm_i915_private *dev_priv = to_i915(crtc_state->uapi.crtc->dev);
bool dirty = false;
- for (; level < intel_wm_num_levels(dev_priv); level++) {
+ for (; level < dev_priv->display.wm.num_levels; level++) {
struct g4x_pipe_wm *raw = &crtc_state->wm.g4x.raw[level];
dirty |= raw->plane[plane_id] != value;
@@ -1185,7 +950,7 @@ static bool g4x_raw_fbc_wm_set(struct intel_crtc_state *crtc_state,
/* NORMAL level doesn't have an FBC watermark */
level = max(level, G4X_WM_LEVEL_SR);
- for (; level < intel_wm_num_levels(dev_priv); level++) {
+ for (; level < dev_priv->display.wm.num_levels; level++) {
struct g4x_pipe_wm *raw = &crtc_state->wm.g4x.raw[level];
dirty |= raw->fbc != value;
@@ -1204,7 +969,6 @@ static bool g4x_raw_plane_wm_compute(struct intel_crtc_state *crtc_state,
{
struct intel_plane *plane = to_intel_plane(plane_state->uapi.plane);
struct drm_i915_private *dev_priv = to_i915(crtc_state->uapi.crtc->dev);
- int num_levels = intel_wm_num_levels(to_i915(plane->base.dev));
enum plane_id plane_id = plane->id;
bool dirty = false;
int level;
@@ -1216,7 +980,7 @@ static bool g4x_raw_plane_wm_compute(struct intel_crtc_state *crtc_state,
goto out;
}
- for (level = 0; level < num_levels; level++) {
+ for (level = 0; level < dev_priv->display.wm.num_levels; level++) {
struct g4x_pipe_wm *raw = &crtc_state->wm.g4x.raw[level];
int wm, max_wm;
@@ -1286,7 +1050,7 @@ static bool g4x_raw_crtc_wm_is_valid(const struct intel_crtc_state *crtc_state,
{
struct drm_i915_private *dev_priv = to_i915(crtc_state->uapi.crtc->dev);
- if (level > dev_priv->display.wm.max_level)
+ if (level >= dev_priv->display.wm.num_levels)
return false;
return g4x_raw_plane_wm_is_valid(crtc_state, PLANE_PRIMARY, level) &&
@@ -1337,34 +1101,14 @@ static bool g4x_compute_fbc_en(const struct g4x_wm_state *wm_state,
return true;
}
-static int g4x_compute_pipe_wm(struct intel_atomic_state *state,
- struct intel_crtc *crtc)
+static int _g4x_compute_pipe_wm(struct intel_crtc_state *crtc_state)
{
- struct intel_crtc_state *crtc_state =
- intel_atomic_get_new_crtc_state(state, crtc);
+ struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
struct g4x_wm_state *wm_state = &crtc_state->wm.g4x.optimal;
u8 active_planes = crtc_state->active_planes & ~BIT(PLANE_CURSOR);
const struct g4x_pipe_wm *raw;
- const struct intel_plane_state *old_plane_state;
- const struct intel_plane_state *new_plane_state;
- struct intel_plane *plane;
enum plane_id plane_id;
- int i, level;
- unsigned int dirty = 0;
-
- for_each_oldnew_intel_plane_in_state(state, plane,
- old_plane_state,
- new_plane_state, i) {
- if (new_plane_state->hw.crtc != &crtc->base &&
- old_plane_state->hw.crtc != &crtc->base)
- continue;
-
- if (g4x_raw_plane_wm_compute(crtc_state, new_plane_state))
- dirty |= BIT(plane->id);
- }
-
- if (!dirty)
- return 0;
+ int level;
level = G4X_WM_LEVEL_NORMAL;
if (!g4x_raw_crtc_wm_is_valid(crtc_state, level))
@@ -1417,6 +1161,34 @@ static int g4x_compute_pipe_wm(struct intel_atomic_state *state,
return 0;
}
+static int g4x_compute_pipe_wm(struct intel_atomic_state *state,
+ struct intel_crtc *crtc)
+{
+ struct intel_crtc_state *crtc_state =
+ intel_atomic_get_new_crtc_state(state, crtc);
+ const struct intel_plane_state *old_plane_state;
+ const struct intel_plane_state *new_plane_state;
+ struct intel_plane *plane;
+ unsigned int dirty = 0;
+ int i;
+
+ for_each_oldnew_intel_plane_in_state(state, plane,
+ old_plane_state,
+ new_plane_state, i) {
+ if (new_plane_state->hw.crtc != &crtc->base &&
+ old_plane_state->hw.crtc != &crtc->base)
+ continue;
+
+ if (g4x_raw_plane_wm_compute(crtc_state, new_plane_state))
+ dirty |= BIT(plane->id);
+ }
+
+ if (!dirty)
+ return 0;
+
+ return _g4x_compute_pipe_wm(crtc_state);
+}
+
static int g4x_compute_intermediate_wm(struct intel_atomic_state *state,
struct intel_crtc *crtc)
{
@@ -1431,7 +1203,7 @@ static int g4x_compute_intermediate_wm(struct intel_atomic_state *state,
enum plane_id plane_id;
if (!new_crtc_state->hw.active ||
- drm_atomic_crtc_needs_modeset(&new_crtc_state->uapi)) {
+ intel_crtc_needs_modeset(new_crtc_state)) {
*intermediate = *optimal;
intermediate->cxsr = false;
@@ -1614,13 +1386,13 @@ static void vlv_setup_wm_latency(struct drm_i915_private *dev_priv)
/* all latencies in usec */
dev_priv->display.wm.pri_latency[VLV_WM_LEVEL_PM2] = 3;
- dev_priv->display.wm.max_level = VLV_WM_LEVEL_PM2;
+ dev_priv->display.wm.num_levels = VLV_WM_LEVEL_PM2 + 1;
if (IS_CHERRYVIEW(dev_priv)) {
dev_priv->display.wm.pri_latency[VLV_WM_LEVEL_PM5] = 12;
dev_priv->display.wm.pri_latency[VLV_WM_LEVEL_DDR_DVFS] = 33;
- dev_priv->display.wm.max_level = VLV_WM_LEVEL_DDR_DVFS;
+ dev_priv->display.wm.num_levels = VLV_WM_LEVEL_DDR_DVFS + 1;
}
}
@@ -1756,7 +1528,7 @@ static void vlv_invalidate_wms(struct intel_crtc *crtc,
{
struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
- for (; level < intel_wm_num_levels(dev_priv); level++) {
+ for (; level < dev_priv->display.wm.num_levels; level++) {
enum plane_id plane_id;
for_each_plane_id_on_crtc(crtc, plane_id)
@@ -1783,10 +1555,9 @@ static bool vlv_raw_plane_wm_set(struct intel_crtc_state *crtc_state,
int level, enum plane_id plane_id, u16 value)
{
struct drm_i915_private *dev_priv = to_i915(crtc_state->uapi.crtc->dev);
- int num_levels = intel_wm_num_levels(dev_priv);
bool dirty = false;
- for (; level < num_levels; level++) {
+ for (; level < dev_priv->display.wm.num_levels; level++) {
struct g4x_pipe_wm *raw = &crtc_state->wm.vlv.raw[level];
dirty |= raw->plane[plane_id] != value;
@@ -1802,7 +1573,6 @@ static bool vlv_raw_plane_wm_compute(struct intel_crtc_state *crtc_state,
struct intel_plane *plane = to_intel_plane(plane_state->uapi.plane);
struct drm_i915_private *dev_priv = to_i915(crtc_state->uapi.crtc->dev);
enum plane_id plane_id = plane->id;
- int num_levels = intel_wm_num_levels(to_i915(plane->base.dev));
int level;
bool dirty = false;
@@ -1811,7 +1581,7 @@ static bool vlv_raw_plane_wm_compute(struct intel_crtc_state *crtc_state,
goto out;
}
- for (level = 0; level < num_levels; level++) {
+ for (level = 0; level < dev_priv->display.wm.num_levels; level++) {
struct g4x_pipe_wm *raw = &crtc_state->wm.vlv.raw[level];
int wm = vlv_compute_wm_level(crtc_state, plane_state, level);
int max_wm = plane_id == PLANE_CURSOR ? 63 : 511;
@@ -1857,67 +1627,20 @@ static bool vlv_raw_crtc_wm_is_valid(const struct intel_crtc_state *crtc_state,
vlv_raw_plane_wm_is_valid(crtc_state, PLANE_CURSOR, level);
}
-static int vlv_compute_pipe_wm(struct intel_atomic_state *state,
- struct intel_crtc *crtc)
+static int _vlv_compute_pipe_wm(struct intel_crtc_state *crtc_state)
{
+ struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
- struct intel_crtc_state *crtc_state =
- intel_atomic_get_new_crtc_state(state, crtc);
struct vlv_wm_state *wm_state = &crtc_state->wm.vlv.optimal;
const struct vlv_fifo_state *fifo_state =
&crtc_state->wm.vlv.fifo_state;
u8 active_planes = crtc_state->active_planes & ~BIT(PLANE_CURSOR);
int num_active_planes = hweight8(active_planes);
- bool needs_modeset = drm_atomic_crtc_needs_modeset(&crtc_state->uapi);
- const struct intel_plane_state *old_plane_state;
- const struct intel_plane_state *new_plane_state;
- struct intel_plane *plane;
enum plane_id plane_id;
- int level, ret, i;
- unsigned int dirty = 0;
-
- for_each_oldnew_intel_plane_in_state(state, plane,
- old_plane_state,
- new_plane_state, i) {
- if (new_plane_state->hw.crtc != &crtc->base &&
- old_plane_state->hw.crtc != &crtc->base)
- continue;
-
- if (vlv_raw_plane_wm_compute(crtc_state, new_plane_state))
- dirty |= BIT(plane->id);
- }
-
- /*
- * DSPARB registers may have been reset due to the
- * power well being turned off. Make sure we restore
- * them to a consistent state even if no primary/sprite
- * planes are initially active.
- */
- if (needs_modeset)
- crtc_state->fifo_changed = true;
-
- if (!dirty)
- return 0;
-
- /* cursor changes don't warrant a FIFO recompute */
- if (dirty & ~BIT(PLANE_CURSOR)) {
- const struct intel_crtc_state *old_crtc_state =
- intel_atomic_get_old_crtc_state(state, crtc);
- const struct vlv_fifo_state *old_fifo_state =
- &old_crtc_state->wm.vlv.fifo_state;
-
- ret = vlv_compute_fifo(crtc_state);
- if (ret)
- return ret;
-
- if (needs_modeset ||
- memcmp(old_fifo_state, fifo_state,
- sizeof(*fifo_state)) != 0)
- crtc_state->fifo_changed = true;
- }
+ int level;
/* initially allow all levels */
- wm_state->num_levels = intel_wm_num_levels(dev_priv);
+ wm_state->num_levels = dev_priv->display.wm.num_levels;
/*
* Note that enabling cxsr with no primary/sprite planes
* enabled can wedge the pipe. Hence we only allow cxsr
@@ -1961,6 +1684,66 @@ static int vlv_compute_pipe_wm(struct intel_atomic_state *state,
return 0;
}
+static int vlv_compute_pipe_wm(struct intel_atomic_state *state,
+ struct intel_crtc *crtc)
+{
+ struct intel_crtc_state *crtc_state =
+ intel_atomic_get_new_crtc_state(state, crtc);
+ const struct intel_plane_state *old_plane_state;
+ const struct intel_plane_state *new_plane_state;
+ struct intel_plane *plane;
+ unsigned int dirty = 0;
+ int i;
+
+ for_each_oldnew_intel_plane_in_state(state, plane,
+ old_plane_state,
+ new_plane_state, i) {
+ if (new_plane_state->hw.crtc != &crtc->base &&
+ old_plane_state->hw.crtc != &crtc->base)
+ continue;
+
+ if (vlv_raw_plane_wm_compute(crtc_state, new_plane_state))
+ dirty |= BIT(plane->id);
+ }
+
+ /*
+ * DSPARB registers may have been reset due to the
+ * power well being turned off. Make sure we restore
+ * them to a consistent state even if no primary/sprite
+ * planes are initially active. We also force a FIFO
+ * recomputation so that we are sure to sanitize the
+ * FIFO setting we took over from the BIOS even if there
+ * are no active planes on the crtc.
+ */
+ if (intel_crtc_needs_modeset(crtc_state))
+ dirty = ~0;
+
+ if (!dirty)
+ return 0;
+
+ /* cursor changes don't warrant a FIFO recompute */
+ if (dirty & ~BIT(PLANE_CURSOR)) {
+ const struct intel_crtc_state *old_crtc_state =
+ intel_atomic_get_old_crtc_state(state, crtc);
+ const struct vlv_fifo_state *old_fifo_state =
+ &old_crtc_state->wm.vlv.fifo_state;
+ const struct vlv_fifo_state *new_fifo_state =
+ &crtc_state->wm.vlv.fifo_state;
+ int ret;
+
+ ret = vlv_compute_fifo(crtc_state);
+ if (ret)
+ return ret;
+
+ if (intel_crtc_needs_modeset(crtc_state) ||
+ memcmp(old_fifo_state, new_fifo_state,
+ sizeof(*new_fifo_state)) != 0)
+ crtc_state->fifo_changed = true;
+ }
+
+ return _vlv_compute_pipe_wm(crtc_state);
+}
+
#define VLV_FIFO(plane, value) \
(((value) << DSPARB_ ## plane ## _SHIFT_VLV) & DSPARB_ ## plane ## _MASK_VLV)
@@ -2075,7 +1858,7 @@ static int vlv_compute_intermediate_wm(struct intel_atomic_state *state,
int level;
if (!new_crtc_state->hw.active ||
- drm_atomic_crtc_needs_modeset(&new_crtc_state->uapi)) {
+ intel_crtc_needs_modeset(new_crtc_state)) {
*intermediate = *optimal;
intermediate->cxsr = false;
@@ -2120,7 +1903,7 @@ static void vlv_merge_wm(struct drm_i915_private *dev_priv,
struct intel_crtc *crtc;
int num_active_pipes = 0;
- wm->level = dev_priv->display.wm.max_level;
+ wm->level = dev_priv->display.wm.num_levels - 1;
wm->cxsr = true;
for_each_intel_crtc(&dev_priv->drm, crtc) {
@@ -2827,6 +2610,8 @@ static void hsw_read_wm_latency(struct drm_i915_private *i915, u16 wm[])
{
u64 sskpd;
+ i915->display.wm.num_levels = 5;
+
sskpd = intel_uncore_read64(&i915->uncore, MCH_SSKPD);
wm[0] = REG_FIELD_GET64(SSKPD_NEW_WM0_MASK_HSW, sskpd);
@@ -2842,6 +2627,8 @@ static void snb_read_wm_latency(struct drm_i915_private *i915, u16 wm[])
{
u32 sskpd;
+ i915->display.wm.num_levels = 4;
+
sskpd = intel_uncore_read(&i915->uncore, MCH_SSKPD);
wm[0] = REG_FIELD_GET(SSKPD_WM0_MASK_SNB, sskpd);
@@ -2854,6 +2641,8 @@ static void ilk_read_wm_latency(struct drm_i915_private *i915, u16 wm[])
{
u32 mltr;
+ i915->display.wm.num_levels = 3;
+
mltr = intel_uncore_read(&i915->uncore, MLTR_ILK);
/* ILK primary LP0 latency is 700 ns */
@@ -2878,61 +2667,16 @@ static void intel_fixup_cur_wm_latency(struct drm_i915_private *dev_priv,
wm[0] = 13;
}
-int ilk_wm_max_level(const struct drm_i915_private *dev_priv)
-{
- /* how many WM levels are we expecting */
- if (HAS_HW_SAGV_WM(dev_priv))
- return 5;
- else if (DISPLAY_VER(dev_priv) >= 9)
- return 7;
- else if (IS_HASWELL(dev_priv) || IS_BROADWELL(dev_priv))
- return 4;
- else if (DISPLAY_VER(dev_priv) >= 6)
- return 3;
- else
- return 2;
-}
-
-void intel_print_wm_latency(struct drm_i915_private *dev_priv,
- const char *name, const u16 wm[])
-{
- int level, max_level = ilk_wm_max_level(dev_priv);
-
- for (level = 0; level <= max_level; level++) {
- unsigned int latency = wm[level];
-
- if (latency == 0) {
- drm_dbg_kms(&dev_priv->drm,
- "%s WM%d latency not provided\n",
- name, level);
- continue;
- }
-
- /*
- * - latencies are in us on gen9.
- * - before then, WM1+ latency values are in 0.5us units
- */
- if (DISPLAY_VER(dev_priv) >= 9)
- latency *= 10;
- else if (level > 0)
- latency *= 5;
-
- drm_dbg_kms(&dev_priv->drm,
- "%s WM%d latency %u (%u.%u usec)\n", name, level,
- wm[level], latency / 10, latency % 10);
- }
-}
-
static bool ilk_increase_wm_latency(struct drm_i915_private *dev_priv,
u16 wm[5], u16 min)
{
- int level, max_level = ilk_wm_max_level(dev_priv);
+ int level;
if (wm[0] >= min)
return false;
wm[0] = max(wm[0], min);
- for (level = 1; level <= max_level; level++)
+ for (level = 1; level < dev_priv->display.wm.num_levels; level++)
wm[level] = max_t(u16, wm[level], DIV_ROUND_UP(min, 5));
return true;
@@ -3052,8 +2796,8 @@ static int ilk_compute_pipe_wm(struct intel_atomic_state *state,
const struct intel_plane_state *pristate = NULL;
const struct intel_plane_state *sprstate = NULL;
const struct intel_plane_state *curstate = NULL;
- int level, max_level = ilk_wm_max_level(dev_priv), usable_level;
struct ilk_wm_maximums max;
+ int level, usable_level;
pipe_wm = &crtc_state->wm.ilk.optimal;
@@ -3070,7 +2814,7 @@ static int ilk_compute_pipe_wm(struct intel_atomic_state *state,
pipe_wm->sprites_enabled = crtc_state->active_planes & BIT(PLANE_SPRITE0);
pipe_wm->sprites_scaled = crtc_state->scaled_planes & BIT(PLANE_SPRITE0);
- usable_level = max_level;
+ usable_level = dev_priv->display.wm.num_levels - 1;
/* ILK/SNB: LP2+ watermarks only w/o sprites */
if (DISPLAY_VER(dev_priv) <= 6 && pipe_wm->sprites_enabled)
@@ -3124,7 +2868,7 @@ static int ilk_compute_intermediate_wm(struct intel_atomic_state *state,
intel_atomic_get_old_crtc_state(state, crtc);
struct intel_pipe_wm *a = &new_crtc_state->wm.ilk.intermediate;
const struct intel_pipe_wm *b = &old_crtc_state->wm.ilk.optimal;
- int level, max_level = ilk_wm_max_level(dev_priv);
+ int level;
/*
* Start with the final, target watermarks, then combine with the
@@ -3133,7 +2877,7 @@ static int ilk_compute_intermediate_wm(struct intel_atomic_state *state,
*/
*a = new_crtc_state->wm.ilk.optimal;
if (!new_crtc_state->hw.active ||
- drm_atomic_crtc_needs_modeset(&new_crtc_state->uapi) ||
+ intel_crtc_needs_modeset(new_crtc_state) ||
state->skip_intermediate_wm)
return 0;
@@ -3141,7 +2885,7 @@ static int ilk_compute_intermediate_wm(struct intel_atomic_state *state,
a->sprites_enabled |= b->sprites_enabled;
a->sprites_scaled |= b->sprites_scaled;
- for (level = 0; level <= max_level; level++) {
+ for (level = 0; level < dev_priv->display.wm.num_levels; level++) {
struct intel_wm_level *a_wm = &a->wm[level];
const struct intel_wm_level *b_wm = &b->wm[level];
@@ -3212,8 +2956,8 @@ static void ilk_wm_merge(struct drm_i915_private *dev_priv,
const struct ilk_wm_maximums *max,
struct intel_pipe_wm *merged)
{
- int level, max_level = ilk_wm_max_level(dev_priv);
- int last_enabled_level = max_level;
+ int level, num_levels = dev_priv->display.wm.num_levels;
+ int last_enabled_level = num_levels - 1;
/* ILK/SNB/IVB: LP1+ watermarks only w/ single pipe */
if ((DISPLAY_VER(dev_priv) <= 6 || IS_IVYBRIDGE(dev_priv)) &&
@@ -3224,7 +2968,7 @@ static void ilk_wm_merge(struct drm_i915_private *dev_priv,
merged->fbc_wm_enabled = DISPLAY_VER(dev_priv) >= 6;
/* merge each WM1+ level */
- for (level = 1; level <= max_level; level++) {
+ for (level = 1; level < num_levels; level++) {
struct intel_wm_level *wm = &merged->wm[level];
ilk_merge_wm_level(dev_priv, level, wm);
@@ -3249,7 +2993,7 @@ static void ilk_wm_merge(struct drm_i915_private *dev_priv,
/* ILK: LP2+ must be disabled when FBC WM is disabled but FBC enabled */
if (DISPLAY_VER(dev_priv) == 5 && HAS_FBC(dev_priv) &&
dev_priv->params.enable_fbc && !merged->fbc_wm_enabled) {
- for (level = 2; level <= max_level; level++) {
+ for (level = 2; level < num_levels; level++) {
struct intel_wm_level *wm = &merged->wm[level];
wm->enable = false;
@@ -3337,17 +3081,18 @@ static void ilk_compute_wm_results(struct drm_i915_private *dev_priv,
}
}
-/* Find the result with the highest level enabled. Check for enable_fbc_wm in
- * case both are at the same level. Prefer r1 in case they're the same. */
+/*
+ * Find the result with the highest level enabled. Check for enable_fbc_wm in
+ * case both are at the same level. Prefer r1 in case they're the same.
+ */
static struct intel_pipe_wm *
ilk_find_best_result(struct drm_i915_private *dev_priv,
struct intel_pipe_wm *r1,
struct intel_pipe_wm *r2)
{
- int level, max_level = ilk_wm_max_level(dev_priv);
- int level1 = 0, level2 = 0;
+ int level, level1 = 0, level2 = 0;
- for (level = 1; level <= max_level; level++) {
+ for (level = 1; level < dev_priv->display.wm.num_levels; level++) {
if (r1->wm[level].enable)
level1 = level;
if (r2->wm[level].enable)
@@ -3458,7 +3203,6 @@ static void ilk_write_wm_values(struct drm_i915_private *dev_priv,
{
struct ilk_wm_values *previous = &dev_priv->display.wm.hw;
unsigned int dirty;
- u32 val;
dirty = ilk_compute_wm_dirty(dev_priv, previous, results);
if (!dirty)
@@ -3474,32 +3218,20 @@ static void ilk_write_wm_values(struct drm_i915_private *dev_priv,
intel_uncore_write(&dev_priv->uncore, WM0_PIPE_ILK(PIPE_C), results->wm_pipe[2]);
if (dirty & WM_DIRTY_DDB) {
- if (IS_HASWELL(dev_priv) || IS_BROADWELL(dev_priv)) {
- val = intel_uncore_read(&dev_priv->uncore, WM_MISC);
- if (results->partitioning == INTEL_DDB_PART_1_2)
- val &= ~WM_MISC_DATA_PARTITION_5_6;
- else
- val |= WM_MISC_DATA_PARTITION_5_6;
- intel_uncore_write(&dev_priv->uncore, WM_MISC, val);
- } else {
- val = intel_uncore_read(&dev_priv->uncore, DISP_ARB_CTL2);
- if (results->partitioning == INTEL_DDB_PART_1_2)
- val &= ~DISP_DATA_PARTITION_5_6;
- else
- val |= DISP_DATA_PARTITION_5_6;
- intel_uncore_write(&dev_priv->uncore, DISP_ARB_CTL2, val);
- }
- }
-
- if (dirty & WM_DIRTY_FBC) {
- val = intel_uncore_read(&dev_priv->uncore, DISP_ARB_CTL);
- if (results->enable_fbc_wm)
- val &= ~DISP_FBC_WM_DIS;
+ if (IS_HASWELL(dev_priv) || IS_BROADWELL(dev_priv))
+ intel_uncore_rmw(&dev_priv->uncore, WM_MISC, WM_MISC_DATA_PARTITION_5_6,
+ results->partitioning == INTEL_DDB_PART_1_2 ? 0 :
+ WM_MISC_DATA_PARTITION_5_6);
else
- val |= DISP_FBC_WM_DIS;
- intel_uncore_write(&dev_priv->uncore, DISP_ARB_CTL, val);
+ intel_uncore_rmw(&dev_priv->uncore, DISP_ARB_CTL2, DISP_DATA_PARTITION_5_6,
+ results->partitioning == INTEL_DDB_PART_1_2 ? 0 :
+ DISP_DATA_PARTITION_5_6);
}
+ if (dirty & WM_DIRTY_FBC)
+ intel_uncore_rmw(&dev_priv->uncore, DISP_ARB_CTL, DISP_FBC_WM_DIS,
+ results->enable_fbc_wm ? 0 : DISP_FBC_WM_DIS);
+
if (dirty & WM_DIRTY_LP(1) &&
previous->wm_lp_spr[0] != results->wm_lp_spr[0])
intel_uncore_write(&dev_priv->uncore, WM1S_LP_ILK, results->wm_lp_spr[0]);
@@ -3634,20 +3366,141 @@ static void ilk_pipe_wm_get_hw_state(struct intel_crtc *crtc)
active->wm[0].spr_val = REG_FIELD_GET(WM0_PIPE_SPRITE_MASK, tmp);
active->wm[0].cur_val = REG_FIELD_GET(WM0_PIPE_CURSOR_MASK, tmp);
} else {
- int level, max_level = ilk_wm_max_level(dev_priv);
+ int level;
/*
* For inactive pipes, all watermark levels
* should be marked as enabled but zeroed,
* which is what we'd compute them to.
*/
- for (level = 0; level <= max_level; level++)
+ for (level = 0; level < dev_priv->display.wm.num_levels; level++)
active->wm[level].enable = true;
}
crtc->wm.active.ilk = *active;
}
+static int ilk_sanitize_watermarks_add_affected(struct drm_atomic_state *state)
+{
+ struct drm_plane *plane;
+ struct intel_crtc *crtc;
+
+ for_each_intel_crtc(state->dev, crtc) {
+ struct intel_crtc_state *crtc_state;
+
+ crtc_state = intel_atomic_get_crtc_state(state, crtc);
+ if (IS_ERR(crtc_state))
+ return PTR_ERR(crtc_state);
+
+ if (crtc_state->hw.active) {
+ /*
+ * Preserve the inherited flag to avoid
+ * taking the full modeset path.
+ */
+ crtc_state->inherited = true;
+ }
+ }
+
+ drm_for_each_plane(plane, state->dev) {
+ struct drm_plane_state *plane_state;
+
+ plane_state = drm_atomic_get_plane_state(state, plane);
+ if (IS_ERR(plane_state))
+ return PTR_ERR(plane_state);
+ }
+
+ return 0;
+}
+
+/*
+ * Calculate what we think the watermarks should be for the state we've read
+ * out of the hardware and then immediately program those watermarks so that
+ * we ensure the hardware settings match our internal state.
+ *
+ * We can calculate what we think WM's should be by creating a duplicate of the
+ * current state (which was constructed during hardware readout) and running it
+ * through the atomic check code to calculate new watermark values in the
+ * state object.
+ */
+void ilk_wm_sanitize(struct drm_i915_private *dev_priv)
+{
+ struct drm_atomic_state *state;
+ struct intel_atomic_state *intel_state;
+ struct intel_crtc *crtc;
+ struct intel_crtc_state *crtc_state;
+ struct drm_modeset_acquire_ctx ctx;
+ int ret;
+ int i;
+
+ /* Only supported on platforms that use atomic watermark design */
+ if (!dev_priv->display.funcs.wm->optimize_watermarks)
+ return;
+
+ if (drm_WARN_ON(&dev_priv->drm, DISPLAY_VER(dev_priv) >= 9))
+ return;
+
+ state = drm_atomic_state_alloc(&dev_priv->drm);
+ if (drm_WARN_ON(&dev_priv->drm, !state))
+ return;
+
+ intel_state = to_intel_atomic_state(state);
+
+ drm_modeset_acquire_init(&ctx, 0);
+
+retry:
+ state->acquire_ctx = &ctx;
+
+ /*
+ * Hardware readout is the only time we don't want to calculate
+ * intermediate watermarks (since we don't trust the current
+ * watermarks).
+ */
+ if (!HAS_GMCH(dev_priv))
+ intel_state->skip_intermediate_wm = true;
+
+ ret = ilk_sanitize_watermarks_add_affected(state);
+ if (ret)
+ goto fail;
+
+ ret = intel_atomic_check(&dev_priv->drm, state);
+ if (ret)
+ goto fail;
+
+ /* Write calculated watermark values back */
+ for_each_new_intel_crtc_in_state(intel_state, crtc, crtc_state, i) {
+ crtc_state->wm.need_postvbl_update = true;
+ intel_optimize_watermarks(intel_state, crtc);
+
+ to_intel_crtc_state(crtc->base.state)->wm = crtc_state->wm;
+ }
+
+fail:
+ if (ret == -EDEADLK) {
+ drm_atomic_state_clear(state);
+ drm_modeset_backoff(&ctx);
+ goto retry;
+ }
+
+ /*
+ * If we fail here, it means that the hardware appears to be
+ * programmed in a way that shouldn't be possible, given our
+ * understanding of watermark requirements. This might mean a
+ * mistake in the hardware readout code or a mistake in the
+ * watermark calculations for a given platform. Raise a WARN
+ * so that this is noticeable.
+ *
+ * If this actually happens, we'll have to just leave the
+ * BIOS-programmed watermarks untouched and hope for the best.
+ */
+ drm_WARN(&dev_priv->drm, ret,
+ "Could not determine valid watermarks for inherited state\n");
+
+ drm_atomic_state_put(state);
+
+ drm_modeset_drop_locks(&ctx);
+ drm_modeset_acquire_fini(&ctx);
+}
+
#define _FW_WM(value, plane) \
(((value) & DSPFW_ ## plane ## _MASK) >> DSPFW_ ## plane ## _SHIFT)
#define _FW_WM_VLV(value, plane) \
@@ -3755,7 +3608,7 @@ static void vlv_read_wm_values(struct drm_i915_private *dev_priv,
#undef _FW_WM
#undef _FW_WM_VLV
-void g4x_wm_get_hw_state(struct drm_i915_private *dev_priv)
+static void g4x_wm_get_hw_state(struct drm_i915_private *dev_priv)
{
struct g4x_wm_values *wm = &dev_priv->display.wm.g4x;
struct intel_crtc *crtc;
@@ -3824,6 +3677,8 @@ void g4x_wm_get_hw_state(struct drm_i915_private *dev_priv)
plane_id, USHRT_MAX);
g4x_raw_fbc_wm_set(crtc_state, level, USHRT_MAX);
+ g4x_invalidate_wms(crtc, active, level);
+
crtc_state->wm.g4x.optimal = *active;
crtc_state->wm.g4x.intermediate = *active;
@@ -3846,7 +3701,7 @@ void g4x_wm_get_hw_state(struct drm_i915_private *dev_priv)
str_yes_no(wm->fbc_en));
}
-void g4x_wm_sanitize(struct drm_i915_private *dev_priv)
+static void g4x_wm_sanitize(struct drm_i915_private *dev_priv)
{
struct intel_plane *plane;
struct intel_crtc *crtc;
@@ -3860,37 +3715,30 @@ void g4x_wm_sanitize(struct drm_i915_private *dev_priv)
to_intel_crtc_state(crtc->base.state);
struct intel_plane_state *plane_state =
to_intel_plane_state(plane->base.state);
- struct g4x_wm_state *wm_state = &crtc_state->wm.g4x.optimal;
enum plane_id plane_id = plane->id;
int level;
if (plane_state->uapi.visible)
continue;
- for (level = 0; level < 3; level++) {
+ for (level = 0; level < dev_priv->display.wm.num_levels; level++) {
struct g4x_pipe_wm *raw =
&crtc_state->wm.g4x.raw[level];
raw->plane[plane_id] = 0;
- wm_state->wm.plane[plane_id] = 0;
- }
- if (plane_id == PLANE_PRIMARY) {
- for (level = 0; level < 3; level++) {
- struct g4x_pipe_wm *raw =
- &crtc_state->wm.g4x.raw[level];
+ if (plane_id == PLANE_PRIMARY)
raw->fbc = 0;
- }
-
- wm_state->sr.fbc = 0;
- wm_state->hpll.fbc = 0;
- wm_state->fbc_en = false;
}
}
for_each_intel_crtc(&dev_priv->drm, crtc) {
struct intel_crtc_state *crtc_state =
to_intel_crtc_state(crtc->base.state);
+ int ret;
+
+ ret = _g4x_compute_pipe_wm(crtc_state);
+ drm_WARN_ON(&dev_priv->drm, ret);
crtc_state->wm.g4x.intermediate =
crtc_state->wm.g4x.optimal;
@@ -3902,7 +3750,13 @@ void g4x_wm_sanitize(struct drm_i915_private *dev_priv)
mutex_unlock(&dev_priv->display.wm.wm_mutex);
}
-void vlv_wm_get_hw_state(struct drm_i915_private *dev_priv)
+static void g4x_wm_get_hw_state_and_sanitize(struct drm_i915_private *i915)
+{
+ g4x_wm_get_hw_state(i915);
+ g4x_wm_sanitize(i915);
+}
+
+static void vlv_wm_get_hw_state(struct drm_i915_private *dev_priv)
{
struct vlv_wm_values *wm = &dev_priv->display.wm.vlv;
struct intel_crtc *crtc;
@@ -3938,7 +3792,7 @@ void vlv_wm_get_hw_state(struct drm_i915_private *dev_priv)
drm_dbg_kms(&dev_priv->drm,
"Punit not acking DDR DVFS request, "
"assuming DDR DVFS is disabled\n");
- dev_priv->display.wm.max_level = VLV_WM_LEVEL_PM5;
+ dev_priv->display.wm.num_levels = VLV_WM_LEVEL_PM5 + 1;
} else {
val = vlv_punit_read(dev_priv, PUNIT_REG_DDR_SETUP2);
if ((val & FORCE_DDR_HIGH_FREQ) == 0)
@@ -4002,7 +3856,7 @@ void vlv_wm_get_hw_state(struct drm_i915_private *dev_priv)
wm->sr.plane, wm->sr.cursor, wm->level, wm->cxsr);
}
-void vlv_wm_sanitize(struct drm_i915_private *dev_priv)
+static void vlv_wm_sanitize(struct drm_i915_private *dev_priv)
{
struct intel_plane *plane;
struct intel_crtc *crtc;
@@ -4016,30 +3870,27 @@ void vlv_wm_sanitize(struct drm_i915_private *dev_priv)
to_intel_crtc_state(crtc->base.state);
struct intel_plane_state *plane_state =
to_intel_plane_state(plane->base.state);
- struct vlv_wm_state *wm_state = &crtc_state->wm.vlv.optimal;
- const struct vlv_fifo_state *fifo_state =
- &crtc_state->wm.vlv.fifo_state;
enum plane_id plane_id = plane->id;
int level;
if (plane_state->uapi.visible)
continue;
- for (level = 0; level < wm_state->num_levels; level++) {
+ for (level = 0; level < dev_priv->display.wm.num_levels; level++) {
struct g4x_pipe_wm *raw =
&crtc_state->wm.vlv.raw[level];
raw->plane[plane_id] = 0;
-
- wm_state->wm[level].plane[plane_id] =
- vlv_invert_wm_value(raw->plane[plane_id],
- fifo_state->plane[plane_id]);
}
}
for_each_intel_crtc(&dev_priv->drm, crtc) {
struct intel_crtc_state *crtc_state =
to_intel_crtc_state(crtc->base.state);
+ int ret;
+
+ ret = _vlv_compute_pipe_wm(crtc_state);
+ drm_WARN_ON(&dev_priv->drm, ret);
crtc_state->wm.vlv.intermediate =
crtc_state->wm.vlv.optimal;
@@ -4051,15 +3902,21 @@ void vlv_wm_sanitize(struct drm_i915_private *dev_priv)
mutex_unlock(&dev_priv->display.wm.wm_mutex);
}
+static void vlv_wm_get_hw_state_and_sanitize(struct drm_i915_private *i915)
+{
+ vlv_wm_get_hw_state(i915);
+ vlv_wm_sanitize(i915);
+}
+
/*
* FIXME should probably kill this and improve
* the real watermark readout/sanitation instead
*/
static void ilk_init_lp_watermarks(struct drm_i915_private *dev_priv)
{
- intel_uncore_write(&dev_priv->uncore, WM3_LP_ILK, intel_uncore_read(&dev_priv->uncore, WM3_LP_ILK) & ~WM_LP_ENABLE);
- intel_uncore_write(&dev_priv->uncore, WM2_LP_ILK, intel_uncore_read(&dev_priv->uncore, WM2_LP_ILK) & ~WM_LP_ENABLE);
- intel_uncore_write(&dev_priv->uncore, WM1_LP_ILK, intel_uncore_read(&dev_priv->uncore, WM1_LP_ILK) & ~WM_LP_ENABLE);
+ intel_uncore_rmw(&dev_priv->uncore, WM3_LP_ILK, WM_LP_ENABLE, 0);
+ intel_uncore_rmw(&dev_priv->uncore, WM2_LP_ILK, WM_LP_ENABLE, 0);
+ intel_uncore_rmw(&dev_priv->uncore, WM1_LP_ILK, WM_LP_ENABLE, 0);
/*
* Don't touch WM_LP_SPRITE_ENABLE here.
@@ -4067,7 +3924,7 @@ static void ilk_init_lp_watermarks(struct drm_i915_private *dev_priv)
*/
}
-void ilk_wm_get_hw_state(struct drm_i915_private *dev_priv)
+static void ilk_wm_get_hw_state(struct drm_i915_private *dev_priv)
{
struct ilk_wm_values *hw = &dev_priv->display.wm.hw;
struct intel_crtc *crtc;
@@ -4088,860 +3945,24 @@ void ilk_wm_get_hw_state(struct drm_i915_private *dev_priv)
}
if (IS_HASWELL(dev_priv) || IS_BROADWELL(dev_priv))
- hw->partitioning = (intel_uncore_read(&dev_priv->uncore, WM_MISC) & WM_MISC_DATA_PARTITION_5_6) ?
+ hw->partitioning = (intel_uncore_read(&dev_priv->uncore, WM_MISC) &
+ WM_MISC_DATA_PARTITION_5_6) ?
INTEL_DDB_PART_5_6 : INTEL_DDB_PART_1_2;
else if (IS_IVYBRIDGE(dev_priv))
- hw->partitioning = (intel_uncore_read(&dev_priv->uncore, DISP_ARB_CTL2) & DISP_DATA_PARTITION_5_6) ?
+ hw->partitioning = (intel_uncore_read(&dev_priv->uncore, DISP_ARB_CTL2) &
+ DISP_DATA_PARTITION_5_6) ?
INTEL_DDB_PART_5_6 : INTEL_DDB_PART_1_2;
hw->enable_fbc_wm =
!(intel_uncore_read(&dev_priv->uncore, DISP_ARB_CTL) & DISP_FBC_WM_DIS);
}
-static void ibx_init_clock_gating(struct drm_i915_private *dev_priv)
-{
- /*
- * On Ibex Peak and Cougar Point, we need to disable clock
- * gating for the panel power sequencer or it will fail to
- * start up when no ports are active.
- */
- intel_uncore_write(&dev_priv->uncore, SOUTH_DSPCLK_GATE_D, PCH_DPLSUNIT_CLOCK_GATE_DISABLE);
-}
-
-static void g4x_disable_trickle_feed(struct drm_i915_private *dev_priv)
-{
- enum pipe pipe;
-
- for_each_pipe(dev_priv, pipe) {
- intel_uncore_write(&dev_priv->uncore, DSPCNTR(pipe),
- intel_uncore_read(&dev_priv->uncore, DSPCNTR(pipe)) |
- DISP_TRICKLE_FEED_DISABLE);
-
- intel_uncore_write(&dev_priv->uncore, DSPSURF(pipe), intel_uncore_read(&dev_priv->uncore, DSPSURF(pipe)));
- intel_uncore_posting_read(&dev_priv->uncore, DSPSURF(pipe));
- }
-}
-
-static void ilk_init_clock_gating(struct drm_i915_private *dev_priv)
-{
- u32 dspclk_gate = ILK_VRHUNIT_CLOCK_GATE_DISABLE;
-
- /*
- * Required for FBC
- * WaFbcDisableDpfcClockGating:ilk
- */
- dspclk_gate |= ILK_DPFCRUNIT_CLOCK_GATE_DISABLE |
- ILK_DPFCUNIT_CLOCK_GATE_DISABLE |
- ILK_DPFDUNIT_CLOCK_GATE_ENABLE;
-
- intel_uncore_write(&dev_priv->uncore, PCH_3DCGDIS0,
- MARIUNIT_CLOCK_GATE_DISABLE |
- SVSMUNIT_CLOCK_GATE_DISABLE);
- intel_uncore_write(&dev_priv->uncore, PCH_3DCGDIS1,
- VFMUNIT_CLOCK_GATE_DISABLE);
-
- /*
- * According to the spec the following bits should be set in
- * order to enable memory self-refresh
- * The bit 22/21 of 0x42004
- * The bit 5 of 0x42020
- * The bit 15 of 0x45000
- */
- intel_uncore_write(&dev_priv->uncore, ILK_DISPLAY_CHICKEN2,
- (intel_uncore_read(&dev_priv->uncore, ILK_DISPLAY_CHICKEN2) |
- ILK_DPARB_GATE | ILK_VSDPFD_FULL));
- dspclk_gate |= ILK_DPARBUNIT_CLOCK_GATE_ENABLE;
- intel_uncore_write(&dev_priv->uncore, DISP_ARB_CTL,
- (intel_uncore_read(&dev_priv->uncore, DISP_ARB_CTL) |
- DISP_FBC_WM_DIS));
-
- /*
- * Based on the document from hardware guys the following bits
- * should be set unconditionally in order to enable FBC.
- * The bit 22 of 0x42000
- * The bit 22 of 0x42004
- * The bit 7,8,9 of 0x42020.
- */
- if (IS_IRONLAKE_M(dev_priv)) {
- /* WaFbcAsynchFlipDisableFbcQueue:ilk */
- intel_uncore_write(&dev_priv->uncore, ILK_DISPLAY_CHICKEN1,
- intel_uncore_read(&dev_priv->uncore, ILK_DISPLAY_CHICKEN1) |
- ILK_FBCQ_DIS);
- intel_uncore_write(&dev_priv->uncore, ILK_DISPLAY_CHICKEN2,
- intel_uncore_read(&dev_priv->uncore, ILK_DISPLAY_CHICKEN2) |
- ILK_DPARB_GATE);
- }
-
- intel_uncore_write(&dev_priv->uncore, ILK_DSPCLK_GATE_D, dspclk_gate);
-
- intel_uncore_write(&dev_priv->uncore, ILK_DISPLAY_CHICKEN2,
- intel_uncore_read(&dev_priv->uncore, ILK_DISPLAY_CHICKEN2) |
- ILK_ELPIN_409_SELECT);
-
- g4x_disable_trickle_feed(dev_priv);
-
- ibx_init_clock_gating(dev_priv);
-}
-
-static void cpt_init_clock_gating(struct drm_i915_private *dev_priv)
-{
- enum pipe pipe;
- u32 val;
-
- /*
- * On Ibex Peak and Cougar Point, we need to disable clock
- * gating for the panel power sequencer or it will fail to
- * start up when no ports are active.
- */
- intel_uncore_write(&dev_priv->uncore, SOUTH_DSPCLK_GATE_D, PCH_DPLSUNIT_CLOCK_GATE_DISABLE |
- PCH_DPLUNIT_CLOCK_GATE_DISABLE |
- PCH_CPUNIT_CLOCK_GATE_DISABLE);
- intel_uncore_write(&dev_priv->uncore, SOUTH_CHICKEN2, intel_uncore_read(&dev_priv->uncore, SOUTH_CHICKEN2) |
- DPLS_EDP_PPS_FIX_DIS);
- /* The below fixes the weird display corruption, a few pixels shifted
- * downward, on (only) LVDS of some HP laptops with IVY.
- */
- for_each_pipe(dev_priv, pipe) {
- val = intel_uncore_read(&dev_priv->uncore, TRANS_CHICKEN2(pipe));
- val |= TRANS_CHICKEN2_TIMING_OVERRIDE;
- val &= ~TRANS_CHICKEN2_FDI_POLARITY_REVERSED;
- if (dev_priv->display.vbt.fdi_rx_polarity_inverted)
- val |= TRANS_CHICKEN2_FDI_POLARITY_REVERSED;
- val &= ~TRANS_CHICKEN2_DISABLE_DEEP_COLOR_COUNTER;
- val &= ~TRANS_CHICKEN2_DISABLE_DEEP_COLOR_MODESWITCH;
- intel_uncore_write(&dev_priv->uncore, TRANS_CHICKEN2(pipe), val);
- }
- /* WADP0ClockGatingDisable */
- for_each_pipe(dev_priv, pipe) {
- intel_uncore_write(&dev_priv->uncore, TRANS_CHICKEN1(pipe),
- TRANS_CHICKEN1_DP0UNIT_GC_DISABLE);
- }
-}
-
-static void gen6_check_mch_setup(struct drm_i915_private *dev_priv)
-{
- u32 tmp;
-
- tmp = intel_uncore_read(&dev_priv->uncore, MCH_SSKPD);
- if (REG_FIELD_GET(SSKPD_WM0_MASK_SNB, tmp) != 12)
- drm_dbg_kms(&dev_priv->drm,
- "Wrong MCH_SSKPD value: 0x%08x This can cause underruns.\n",
- tmp);
-}
-
-static void gen6_init_clock_gating(struct drm_i915_private *dev_priv)
-{
- u32 dspclk_gate = ILK_VRHUNIT_CLOCK_GATE_DISABLE;
-
- intel_uncore_write(&dev_priv->uncore, ILK_DSPCLK_GATE_D, dspclk_gate);
-
- intel_uncore_write(&dev_priv->uncore, ILK_DISPLAY_CHICKEN2,
- intel_uncore_read(&dev_priv->uncore, ILK_DISPLAY_CHICKEN2) |
- ILK_ELPIN_409_SELECT);
-
- intel_uncore_write(&dev_priv->uncore, GEN6_UCGCTL1,
- intel_uncore_read(&dev_priv->uncore, GEN6_UCGCTL1) |
- GEN6_BLBUNIT_CLOCK_GATE_DISABLE |
- GEN6_CSUNIT_CLOCK_GATE_DISABLE);
-
- /* According to the BSpec vol1g, bit 12 (RCPBUNIT) clock
- * gating disable must be set. Failure to set it results in
- * flickering pixels due to Z write ordering failures after
- * some amount of runtime in the Mesa "fire" demo, and Unigine
- * Sanctuary and Tropics, and apparently anything else with
- * alpha test or pixel discard.
- *
- * According to the spec, bit 11 (RCCUNIT) must also be set,
- * but we didn't debug actual testcases to find it out.
- *
- * WaDisableRCCUnitClockGating:snb
- * WaDisableRCPBUnitClockGating:snb
- */
- intel_uncore_write(&dev_priv->uncore, GEN6_UCGCTL2,
- GEN6_RCPBUNIT_CLOCK_GATE_DISABLE |
- GEN6_RCCUNIT_CLOCK_GATE_DISABLE);
-
- /*
- * According to the spec the following bits should be
- * set in order to enable memory self-refresh and fbc:
- * The bit21 and bit22 of 0x42000
- * The bit21 and bit22 of 0x42004
- * The bit5 and bit7 of 0x42020
- * The bit14 of 0x70180
- * The bit14 of 0x71180
- *
- * WaFbcAsynchFlipDisableFbcQueue:snb
- */
- intel_uncore_write(&dev_priv->uncore, ILK_DISPLAY_CHICKEN1,
- intel_uncore_read(&dev_priv->uncore, ILK_DISPLAY_CHICKEN1) |
- ILK_FBCQ_DIS | ILK_PABSTRETCH_DIS);
- intel_uncore_write(&dev_priv->uncore, ILK_DISPLAY_CHICKEN2,
- intel_uncore_read(&dev_priv->uncore, ILK_DISPLAY_CHICKEN2) |
- ILK_DPARB_GATE | ILK_VSDPFD_FULL);
- intel_uncore_write(&dev_priv->uncore, ILK_DSPCLK_GATE_D,
- intel_uncore_read(&dev_priv->uncore, ILK_DSPCLK_GATE_D) |
- ILK_DPARBUNIT_CLOCK_GATE_ENABLE |
- ILK_DPFDUNIT_CLOCK_GATE_ENABLE);
-
- g4x_disable_trickle_feed(dev_priv);
-
- cpt_init_clock_gating(dev_priv);
-
- gen6_check_mch_setup(dev_priv);
-}
-
-static void lpt_init_clock_gating(struct drm_i915_private *dev_priv)
-{
- /*
- * TODO: this bit should only be enabled when really needed, then
- * disabled when not needed anymore in order to save power.
- */
- if (HAS_PCH_LPT_LP(dev_priv))
- intel_uncore_write(&dev_priv->uncore, SOUTH_DSPCLK_GATE_D,
- intel_uncore_read(&dev_priv->uncore, SOUTH_DSPCLK_GATE_D) |
- PCH_LP_PARTITION_LEVEL_DISABLE);
-
- /* WADPOClockGatingDisable:hsw */
- intel_uncore_write(&dev_priv->uncore, TRANS_CHICKEN1(PIPE_A),
- intel_uncore_read(&dev_priv->uncore, TRANS_CHICKEN1(PIPE_A)) |
- TRANS_CHICKEN1_DP0UNIT_GC_DISABLE);
-}
-
-static void lpt_suspend_hw(struct drm_i915_private *dev_priv)
-{
- if (HAS_PCH_LPT_LP(dev_priv)) {
- u32 val = intel_uncore_read(&dev_priv->uncore, SOUTH_DSPCLK_GATE_D);
-
- val &= ~PCH_LP_PARTITION_LEVEL_DISABLE;
- intel_uncore_write(&dev_priv->uncore, SOUTH_DSPCLK_GATE_D, val);
- }
-}
-
-static void gen8_set_l3sqc_credits(struct drm_i915_private *dev_priv,
- int general_prio_credits,
- int high_prio_credits)
-{
- u32 misccpctl;
- u32 val;
-
- /* WaTempDisableDOPClkGating:bdw */
- misccpctl = intel_uncore_read(&dev_priv->uncore, GEN7_MISCCPCTL);
- intel_uncore_write(&dev_priv->uncore, GEN7_MISCCPCTL, misccpctl & ~GEN7_DOP_CLOCK_GATE_ENABLE);
-
- val = intel_uncore_read(&dev_priv->uncore, GEN8_L3SQCREG1);
- val &= ~L3_PRIO_CREDITS_MASK;
- val |= L3_GENERAL_PRIO_CREDITS(general_prio_credits);
- val |= L3_HIGH_PRIO_CREDITS(high_prio_credits);
- intel_uncore_write(&dev_priv->uncore, GEN8_L3SQCREG1, val);
-
- /*
- * Wait at least 100 clocks before re-enabling clock gating.
- * See the definition of L3SQCREG1 in BSpec.
- */
- intel_uncore_posting_read(&dev_priv->uncore, GEN8_L3SQCREG1);
- udelay(1);
- intel_uncore_write(&dev_priv->uncore, GEN7_MISCCPCTL, misccpctl);
-}
-
-static void icl_init_clock_gating(struct drm_i915_private *dev_priv)
-{
- /* Wa_1409120013:icl,ehl */
- intel_uncore_write(&dev_priv->uncore, ILK_DPFC_CHICKEN(INTEL_FBC_A),
- DPFC_CHICKEN_COMP_DUMMY_PIXEL);
-
- /*Wa_14010594013:icl, ehl */
- intel_uncore_rmw(&dev_priv->uncore, GEN8_CHICKEN_DCPR_1,
- 0, ICL_DELAY_PMRSP);
-}
-
-static void gen12lp_init_clock_gating(struct drm_i915_private *dev_priv)
-{
- /* Wa_1409120013 */
- if (DISPLAY_VER(dev_priv) == 12)
- intel_uncore_write(&dev_priv->uncore, ILK_DPFC_CHICKEN(INTEL_FBC_A),
- DPFC_CHICKEN_COMP_DUMMY_PIXEL);
-
- /* Wa_1409825376:tgl (pre-prod)*/
- if (IS_TGL_DISPLAY_STEP(dev_priv, STEP_A0, STEP_C0))
- intel_uncore_write(&dev_priv->uncore, GEN9_CLKGATE_DIS_3, intel_uncore_read(&dev_priv->uncore, GEN9_CLKGATE_DIS_3) |
- TGL_VRH_GATING_DIS);
-
- /* Wa_14013723622:tgl,rkl,dg1,adl-s */
- if (DISPLAY_VER(dev_priv) == 12)
- intel_uncore_rmw(&dev_priv->uncore, CLKREQ_POLICY,
- CLKREQ_POLICY_MEM_UP_OVRD, 0);
-}
-
-static void adlp_init_clock_gating(struct drm_i915_private *dev_priv)
-{
- gen12lp_init_clock_gating(dev_priv);
-
- /* Wa_22011091694:adlp */
- intel_de_rmw(dev_priv, GEN9_CLKGATE_DIS_5, 0, DPCE_GATING_DIS);
-
- /* Bspec/49189 Initialize Sequence */
- intel_de_rmw(dev_priv, GEN8_CHICKEN_DCPR_1, DDI_CLOCK_REG_ACCESS, 0);
-}
-
-static void dg1_init_clock_gating(struct drm_i915_private *dev_priv)
-{
- gen12lp_init_clock_gating(dev_priv);
-
- /* Wa_1409836686:dg1[a0] */
- if (IS_DG1_GRAPHICS_STEP(dev_priv, STEP_A0, STEP_B0))
- intel_uncore_write(&dev_priv->uncore, GEN9_CLKGATE_DIS_3, intel_uncore_read(&dev_priv->uncore, GEN9_CLKGATE_DIS_3) |
- DPT_GATING_DIS);
-}
-
-static void xehpsdv_init_clock_gating(struct drm_i915_private *dev_priv)
-{
- /* Wa_22010146351:xehpsdv */
- if (IS_XEHPSDV_GRAPHICS_STEP(dev_priv, STEP_A0, STEP_B0))
- intel_uncore_rmw(&dev_priv->uncore, XEHP_CLOCK_GATE_DIS, 0, SGR_DIS);
-}
-
-static void dg2_init_clock_gating(struct drm_i915_private *i915)
-{
- /* Wa_22010954014:dg2 */
- intel_uncore_rmw(&i915->uncore, XEHP_CLOCK_GATE_DIS, 0,
- SGSI_SIDECLK_DIS);
-
- /*
- * Wa_14010733611:dg2_g10
- * Wa_22010146351:dg2_g10
- */
- if (IS_DG2_GRAPHICS_STEP(i915, G10, STEP_A0, STEP_B0))
- intel_uncore_rmw(&i915->uncore, XEHP_CLOCK_GATE_DIS, 0,
- SGR_DIS | SGGI_DIS);
-}
-
-static void pvc_init_clock_gating(struct drm_i915_private *dev_priv)
-{
- /* Wa_14012385139:pvc */
- if (IS_PVC_BD_STEP(dev_priv, STEP_A0, STEP_B0))
- intel_uncore_rmw(&dev_priv->uncore, XEHP_CLOCK_GATE_DIS, 0, SGR_DIS);
-
- /* Wa_22010954014:pvc */
- if (IS_PVC_BD_STEP(dev_priv, STEP_A0, STEP_B0))
- intel_uncore_rmw(&dev_priv->uncore, XEHP_CLOCK_GATE_DIS, 0, SGSI_SIDECLK_DIS);
-}
-
-static void cnp_init_clock_gating(struct drm_i915_private *dev_priv)
-{
- if (!HAS_PCH_CNP(dev_priv))
- return;
-
- /* Display WA #1181 WaSouthDisplayDisablePWMCGEGating: cnp */
- intel_uncore_write(&dev_priv->uncore, SOUTH_DSPCLK_GATE_D, intel_uncore_read(&dev_priv->uncore, SOUTH_DSPCLK_GATE_D) |
- CNP_PWM_CGE_GATING_DISABLE);
-}
-
-static void cfl_init_clock_gating(struct drm_i915_private *dev_priv)
-{
- cnp_init_clock_gating(dev_priv);
- gen9_init_clock_gating(dev_priv);
-
- /* WAC6entrylatency:cfl */
- intel_uncore_write(&dev_priv->uncore, FBC_LLC_READ_CTRL, intel_uncore_read(&dev_priv->uncore, FBC_LLC_READ_CTRL) |
- FBC_LLC_FULLY_OPEN);
-
- /*
- * WaFbcTurnOffFbcWatermark:cfl
- * Display WA #0562: cfl
- */
- intel_uncore_write(&dev_priv->uncore, DISP_ARB_CTL, intel_uncore_read(&dev_priv->uncore, DISP_ARB_CTL) |
- DISP_FBC_WM_DIS);
-
- /*
- * WaFbcNukeOnHostModify:cfl
- * Display WA #0873: cfl
- */
- intel_uncore_write(&dev_priv->uncore, ILK_DPFC_CHICKEN(INTEL_FBC_A),
- intel_uncore_read(&dev_priv->uncore, ILK_DPFC_CHICKEN(INTEL_FBC_A)) |
- DPFC_NUKE_ON_ANY_MODIFICATION);
-}
-
-static void kbl_init_clock_gating(struct drm_i915_private *dev_priv)
-{
- gen9_init_clock_gating(dev_priv);
-
- /* WAC6entrylatency:kbl */
- intel_uncore_write(&dev_priv->uncore, FBC_LLC_READ_CTRL, intel_uncore_read(&dev_priv->uncore, FBC_LLC_READ_CTRL) |
- FBC_LLC_FULLY_OPEN);
-
- /* WaDisableSDEUnitClockGating:kbl */
- if (IS_KBL_GRAPHICS_STEP(dev_priv, 0, STEP_C0))
- intel_uncore_write(&dev_priv->uncore, GEN8_UCGCTL6, intel_uncore_read(&dev_priv->uncore, GEN8_UCGCTL6) |
- GEN8_SDEUNIT_CLOCK_GATE_DISABLE);
-
- /* WaDisableGamClockGating:kbl */
- if (IS_KBL_GRAPHICS_STEP(dev_priv, 0, STEP_C0))
- intel_uncore_write(&dev_priv->uncore, GEN6_UCGCTL1, intel_uncore_read(&dev_priv->uncore, GEN6_UCGCTL1) |
- GEN6_GAMUNIT_CLOCK_GATE_DISABLE);
-
- /*
- * WaFbcTurnOffFbcWatermark:kbl
- * Display WA #0562: kbl
- */
- intel_uncore_write(&dev_priv->uncore, DISP_ARB_CTL, intel_uncore_read(&dev_priv->uncore, DISP_ARB_CTL) |
- DISP_FBC_WM_DIS);
-
- /*
- * WaFbcNukeOnHostModify:kbl
- * Display WA #0873: kbl
- */
- intel_uncore_write(&dev_priv->uncore, ILK_DPFC_CHICKEN(INTEL_FBC_A),
- intel_uncore_read(&dev_priv->uncore, ILK_DPFC_CHICKEN(INTEL_FBC_A)) |
- DPFC_NUKE_ON_ANY_MODIFICATION);
-}
-
-static void skl_init_clock_gating(struct drm_i915_private *dev_priv)
-{
- gen9_init_clock_gating(dev_priv);
-
- /* WaDisableDopClockGating:skl */
- intel_uncore_write(&dev_priv->uncore, GEN7_MISCCPCTL, intel_uncore_read(&dev_priv->uncore, GEN7_MISCCPCTL) &
- ~GEN7_DOP_CLOCK_GATE_ENABLE);
-
- /* WAC6entrylatency:skl */
- intel_uncore_write(&dev_priv->uncore, FBC_LLC_READ_CTRL, intel_uncore_read(&dev_priv->uncore, FBC_LLC_READ_CTRL) |
- FBC_LLC_FULLY_OPEN);
-
- /*
- * WaFbcTurnOffFbcWatermark:skl
- * Display WA #0562: skl
- */
- intel_uncore_write(&dev_priv->uncore, DISP_ARB_CTL, intel_uncore_read(&dev_priv->uncore, DISP_ARB_CTL) |
- DISP_FBC_WM_DIS);
-
- /*
- * WaFbcNukeOnHostModify:skl
- * Display WA #0873: skl
- */
- intel_uncore_write(&dev_priv->uncore, ILK_DPFC_CHICKEN(INTEL_FBC_A),
- intel_uncore_read(&dev_priv->uncore, ILK_DPFC_CHICKEN(INTEL_FBC_A)) |
- DPFC_NUKE_ON_ANY_MODIFICATION);
-
- /*
- * WaFbcHighMemBwCorruptionAvoidance:skl
- * Display WA #0883: skl
- */
- intel_uncore_write(&dev_priv->uncore, ILK_DPFC_CHICKEN(INTEL_FBC_A),
- intel_uncore_read(&dev_priv->uncore, ILK_DPFC_CHICKEN(INTEL_FBC_A)) |
- DPFC_DISABLE_DUMMY0);
-}
-
-static void bdw_init_clock_gating(struct drm_i915_private *dev_priv)
-{
- enum pipe pipe;
-
- /* WaFbcAsynchFlipDisableFbcQueue:hsw,bdw */
- intel_uncore_write(&dev_priv->uncore, CHICKEN_PIPESL_1(PIPE_A),
- intel_uncore_read(&dev_priv->uncore, CHICKEN_PIPESL_1(PIPE_A)) |
- HSW_FBCQ_DIS);
-
- /* WaSwitchSolVfFArbitrationPriority:bdw */
- intel_uncore_write(&dev_priv->uncore, GAM_ECOCHK, intel_uncore_read(&dev_priv->uncore, GAM_ECOCHK) | HSW_ECOCHK_ARB_PRIO_SOL);
-
- /* WaPsrDPAMaskVBlankInSRD:bdw */
- intel_uncore_write(&dev_priv->uncore, CHICKEN_PAR1_1,
- intel_uncore_read(&dev_priv->uncore, CHICKEN_PAR1_1) | DPA_MASK_VBLANK_SRD);
-
- for_each_pipe(dev_priv, pipe) {
- /* WaPsrDPRSUnmaskVBlankInSRD:bdw */
- intel_uncore_write(&dev_priv->uncore, CHICKEN_PIPESL_1(pipe),
- intel_uncore_read(&dev_priv->uncore, CHICKEN_PIPESL_1(pipe)) |
- BDW_DPRS_MASK_VBLANK_SRD);
- }
-
- /* WaVSRefCountFullforceMissDisable:bdw */
- /* WaDSRefCountFullforceMissDisable:bdw */
- intel_uncore_write(&dev_priv->uncore, GEN7_FF_THREAD_MODE,
- intel_uncore_read(&dev_priv->uncore, GEN7_FF_THREAD_MODE) &
- ~(GEN8_FF_DS_REF_CNT_FFME | GEN7_FF_VS_REF_CNT_FFME));
-
- intel_uncore_write(&dev_priv->uncore, RING_PSMI_CTL(RENDER_RING_BASE),
- _MASKED_BIT_ENABLE(GEN8_RC_SEMA_IDLE_MSG_DISABLE));
-
- /* WaDisableSDEUnitClockGating:bdw */
- intel_uncore_write(&dev_priv->uncore, GEN8_UCGCTL6, intel_uncore_read(&dev_priv->uncore, GEN8_UCGCTL6) |
- GEN8_SDEUNIT_CLOCK_GATE_DISABLE);
-
- /* WaProgramL3SqcReg1Default:bdw */
- gen8_set_l3sqc_credits(dev_priv, 30, 2);
-
- /* WaKVMNotificationOnConfigChange:bdw */
- intel_uncore_write(&dev_priv->uncore, CHICKEN_PAR2_1, intel_uncore_read(&dev_priv->uncore, CHICKEN_PAR2_1)
- | KVM_CONFIG_CHANGE_NOTIFICATION_SELECT);
-
- lpt_init_clock_gating(dev_priv);
-
- /* WaDisableDopClockGating:bdw
- *
- * Also see the CHICKEN2 write in bdw_init_workarounds() to disable DOP
- * clock gating.
- */
- intel_uncore_write(&dev_priv->uncore, GEN6_UCGCTL1,
- intel_uncore_read(&dev_priv->uncore, GEN6_UCGCTL1) | GEN6_EU_TCUNIT_CLOCK_GATE_DISABLE);
-}
-
-static void hsw_init_clock_gating(struct drm_i915_private *dev_priv)
-{
- /* WaFbcAsynchFlipDisableFbcQueue:hsw,bdw */
- intel_uncore_write(&dev_priv->uncore, CHICKEN_PIPESL_1(PIPE_A),
- intel_uncore_read(&dev_priv->uncore, CHICKEN_PIPESL_1(PIPE_A)) |
- HSW_FBCQ_DIS);
-
- /* This is required by WaCatErrorRejectionIssue:hsw */
- intel_uncore_write(&dev_priv->uncore, GEN7_SQ_CHICKEN_MBCUNIT_CONFIG,
- intel_uncore_read(&dev_priv->uncore, GEN7_SQ_CHICKEN_MBCUNIT_CONFIG) |
- GEN7_SQ_CHICKEN_MBCUNIT_SQINTMOB);
-
- /* WaSwitchSolVfFArbitrationPriority:hsw */
- intel_uncore_write(&dev_priv->uncore, GAM_ECOCHK, intel_uncore_read(&dev_priv->uncore, GAM_ECOCHK) | HSW_ECOCHK_ARB_PRIO_SOL);
-
- lpt_init_clock_gating(dev_priv);
-}
-
-static void ivb_init_clock_gating(struct drm_i915_private *dev_priv)
-{
- u32 snpcr;
-
- intel_uncore_write(&dev_priv->uncore, ILK_DSPCLK_GATE_D, ILK_VRHUNIT_CLOCK_GATE_DISABLE);
-
- /* WaFbcAsynchFlipDisableFbcQueue:ivb */
- intel_uncore_write(&dev_priv->uncore, ILK_DISPLAY_CHICKEN1,
- intel_uncore_read(&dev_priv->uncore, ILK_DISPLAY_CHICKEN1) |
- ILK_FBCQ_DIS);
-
- /* WaDisableBackToBackFlipFix:ivb */
- intel_uncore_write(&dev_priv->uncore, IVB_CHICKEN3,
- CHICKEN3_DGMG_REQ_OUT_FIX_DISABLE |
- CHICKEN3_DGMG_DONE_FIX_DISABLE);
-
- if (IS_IVB_GT1(dev_priv))
- intel_uncore_write(&dev_priv->uncore, GEN7_ROW_CHICKEN2,
- _MASKED_BIT_ENABLE(DOP_CLOCK_GATING_DISABLE));
- else {
- /* must write both registers */
- intel_uncore_write(&dev_priv->uncore, GEN7_ROW_CHICKEN2,
- _MASKED_BIT_ENABLE(DOP_CLOCK_GATING_DISABLE));
- intel_uncore_write(&dev_priv->uncore, GEN7_ROW_CHICKEN2_GT2,
- _MASKED_BIT_ENABLE(DOP_CLOCK_GATING_DISABLE));
- }
-
- /*
- * According to the spec, bit 13 (RCZUNIT) must be set on IVB.
- * This implements the WaDisableRCZUnitClockGating:ivb workaround.
- */
- intel_uncore_write(&dev_priv->uncore, GEN6_UCGCTL2,
- GEN6_RCZUNIT_CLOCK_GATE_DISABLE);
-
- /* This is required by WaCatErrorRejectionIssue:ivb */
- intel_uncore_write(&dev_priv->uncore, GEN7_SQ_CHICKEN_MBCUNIT_CONFIG,
- intel_uncore_read(&dev_priv->uncore, GEN7_SQ_CHICKEN_MBCUNIT_CONFIG) |
- GEN7_SQ_CHICKEN_MBCUNIT_SQINTMOB);
-
- g4x_disable_trickle_feed(dev_priv);
-
- snpcr = intel_uncore_read(&dev_priv->uncore, GEN6_MBCUNIT_SNPCR);
- snpcr &= ~GEN6_MBC_SNPCR_MASK;
- snpcr |= GEN6_MBC_SNPCR_MED;
- intel_uncore_write(&dev_priv->uncore, GEN6_MBCUNIT_SNPCR, snpcr);
-
- if (!HAS_PCH_NOP(dev_priv))
- cpt_init_clock_gating(dev_priv);
-
- gen6_check_mch_setup(dev_priv);
-}
-
-static void vlv_init_clock_gating(struct drm_i915_private *dev_priv)
-{
- /* WaDisableBackToBackFlipFix:vlv */
- intel_uncore_write(&dev_priv->uncore, IVB_CHICKEN3,
- CHICKEN3_DGMG_REQ_OUT_FIX_DISABLE |
- CHICKEN3_DGMG_DONE_FIX_DISABLE);
-
- /* WaDisableDopClockGating:vlv */
- intel_uncore_write(&dev_priv->uncore, GEN7_ROW_CHICKEN2,
- _MASKED_BIT_ENABLE(DOP_CLOCK_GATING_DISABLE));
-
- /* This is required by WaCatErrorRejectionIssue:vlv */
- intel_uncore_write(&dev_priv->uncore, GEN7_SQ_CHICKEN_MBCUNIT_CONFIG,
- intel_uncore_read(&dev_priv->uncore, GEN7_SQ_CHICKEN_MBCUNIT_CONFIG) |
- GEN7_SQ_CHICKEN_MBCUNIT_SQINTMOB);
-
- /*
- * According to the spec, bit 13 (RCZUNIT) must be set on IVB.
- * This implements the WaDisableRCZUnitClockGating:vlv workaround.
- */
- intel_uncore_write(&dev_priv->uncore, GEN6_UCGCTL2,
- GEN6_RCZUNIT_CLOCK_GATE_DISABLE);
-
- /* WaDisableL3Bank2xClockGate:vlv
- * Disabling L3 clock gating- MMIO 940c[25] = 1
- * Set bit 25, to disable L3_BANK_2x_CLK_GATING */
- intel_uncore_write(&dev_priv->uncore, GEN7_UCGCTL4,
- intel_uncore_read(&dev_priv->uncore, GEN7_UCGCTL4) | GEN7_L3BANK2X_CLOCK_GATE_DISABLE);
-
- /*
- * WaDisableVLVClockGating_VBIIssue:vlv
- * Disable clock gating on th GCFG unit to prevent a delay
- * in the reporting of vblank events.
- */
- intel_uncore_write(&dev_priv->uncore, VLV_GUNIT_CLOCK_GATE, GCFG_DIS);
-}
-
-static void chv_init_clock_gating(struct drm_i915_private *dev_priv)
-{
- /* WaVSRefCountFullforceMissDisable:chv */
- /* WaDSRefCountFullforceMissDisable:chv */
- intel_uncore_write(&dev_priv->uncore, GEN7_FF_THREAD_MODE,
- intel_uncore_read(&dev_priv->uncore, GEN7_FF_THREAD_MODE) &
- ~(GEN8_FF_DS_REF_CNT_FFME | GEN7_FF_VS_REF_CNT_FFME));
-
- /* WaDisableSemaphoreAndSyncFlipWait:chv */
- intel_uncore_write(&dev_priv->uncore, RING_PSMI_CTL(RENDER_RING_BASE),
- _MASKED_BIT_ENABLE(GEN8_RC_SEMA_IDLE_MSG_DISABLE));
-
- /* WaDisableCSUnitClockGating:chv */
- intel_uncore_write(&dev_priv->uncore, GEN6_UCGCTL1, intel_uncore_read(&dev_priv->uncore, GEN6_UCGCTL1) |
- GEN6_CSUNIT_CLOCK_GATE_DISABLE);
-
- /* WaDisableSDEUnitClockGating:chv */
- intel_uncore_write(&dev_priv->uncore, GEN8_UCGCTL6, intel_uncore_read(&dev_priv->uncore, GEN8_UCGCTL6) |
- GEN8_SDEUNIT_CLOCK_GATE_DISABLE);
-
- /*
- * WaProgramL3SqcReg1Default:chv
- * See gfxspecs/Related Documents/Performance Guide/
- * LSQC Setting Recommendations.
- */
- gen8_set_l3sqc_credits(dev_priv, 38, 2);
-}
-
-static void g4x_init_clock_gating(struct drm_i915_private *dev_priv)
-{
- u32 dspclk_gate;
-
- intel_uncore_write(&dev_priv->uncore, RENCLK_GATE_D1, 0);
- intel_uncore_write(&dev_priv->uncore, RENCLK_GATE_D2, VF_UNIT_CLOCK_GATE_DISABLE |
- GS_UNIT_CLOCK_GATE_DISABLE |
- CL_UNIT_CLOCK_GATE_DISABLE);
- intel_uncore_write(&dev_priv->uncore, RAMCLK_GATE_D, 0);
- dspclk_gate = VRHUNIT_CLOCK_GATE_DISABLE |
- OVRUNIT_CLOCK_GATE_DISABLE |
- OVCUNIT_CLOCK_GATE_DISABLE;
- if (IS_GM45(dev_priv))
- dspclk_gate |= DSSUNIT_CLOCK_GATE_DISABLE;
- intel_uncore_write(&dev_priv->uncore, DSPCLK_GATE_D(dev_priv), dspclk_gate);
-
- g4x_disable_trickle_feed(dev_priv);
-}
-
-static void i965gm_init_clock_gating(struct drm_i915_private *dev_priv)
-{
- struct intel_uncore *uncore = &dev_priv->uncore;
-
- intel_uncore_write(uncore, RENCLK_GATE_D1, I965_RCC_CLOCK_GATE_DISABLE);
- intel_uncore_write(uncore, RENCLK_GATE_D2, 0);
- intel_uncore_write(uncore, DSPCLK_GATE_D(dev_priv), 0);
- intel_uncore_write(uncore, RAMCLK_GATE_D, 0);
- intel_uncore_write16(uncore, DEUC, 0);
- intel_uncore_write(uncore,
- MI_ARB_STATE,
- _MASKED_BIT_ENABLE(MI_ARB_DISPLAY_TRICKLE_FEED_DISABLE));
-}
-
-static void i965g_init_clock_gating(struct drm_i915_private *dev_priv)
-{
- intel_uncore_write(&dev_priv->uncore, RENCLK_GATE_D1, I965_RCZ_CLOCK_GATE_DISABLE |
- I965_RCC_CLOCK_GATE_DISABLE |
- I965_RCPB_CLOCK_GATE_DISABLE |
- I965_ISC_CLOCK_GATE_DISABLE |
- I965_FBC_CLOCK_GATE_DISABLE);
- intel_uncore_write(&dev_priv->uncore, RENCLK_GATE_D2, 0);
- intel_uncore_write(&dev_priv->uncore, MI_ARB_STATE,
- _MASKED_BIT_ENABLE(MI_ARB_DISPLAY_TRICKLE_FEED_DISABLE));
-}
-
-static void gen3_init_clock_gating(struct drm_i915_private *dev_priv)
-{
- u32 dstate = intel_uncore_read(&dev_priv->uncore, D_STATE);
-
- dstate |= DSTATE_PLL_D3_OFF | DSTATE_GFX_CLOCK_GATING |
- DSTATE_DOT_CLOCK_GATING;
- intel_uncore_write(&dev_priv->uncore, D_STATE, dstate);
-
- if (IS_PINEVIEW(dev_priv))
- intel_uncore_write(&dev_priv->uncore, ECOSKPD(RENDER_RING_BASE),
- _MASKED_BIT_ENABLE(ECO_GATING_CX_ONLY));
-
- /* IIR "flip pending" means done if this bit is set */
- intel_uncore_write(&dev_priv->uncore, ECOSKPD(RENDER_RING_BASE),
- _MASKED_BIT_DISABLE(ECO_FLIP_DONE));
-
- /* interrupts should cause a wake up from C3 */
- intel_uncore_write(&dev_priv->uncore, INSTPM, _MASKED_BIT_ENABLE(INSTPM_AGPBUSY_INT_EN));
-
- /* On GEN3 we really need to make sure the ARB C3 LP bit is set */
- intel_uncore_write(&dev_priv->uncore, MI_ARB_STATE, _MASKED_BIT_ENABLE(MI_ARB_C3_LP_WRITE_ENABLE));
-
- intel_uncore_write(&dev_priv->uncore, MI_ARB_STATE,
- _MASKED_BIT_ENABLE(MI_ARB_DISPLAY_TRICKLE_FEED_DISABLE));
-}
-
-static void i85x_init_clock_gating(struct drm_i915_private *dev_priv)
-{
- intel_uncore_write(&dev_priv->uncore, RENCLK_GATE_D1, SV_CLOCK_GATE_DISABLE);
-
- /* interrupts should cause a wake up from C3 */
- intel_uncore_write(&dev_priv->uncore, MI_STATE, _MASKED_BIT_ENABLE(MI_AGPBUSY_INT_EN) |
- _MASKED_BIT_DISABLE(MI_AGPBUSY_830_MODE));
-
- intel_uncore_write(&dev_priv->uncore, MEM_MODE,
- _MASKED_BIT_ENABLE(MEM_DISPLAY_TRICKLE_FEED_DISABLE));
-
- /*
- * Have FBC ignore 3D activity since we use software
- * render tracking, and otherwise a pure 3D workload
- * (even if it just renders a single frame and then does
- * abosultely nothing) would not allow FBC to recompress
- * until a 2D blit occurs.
- */
- intel_uncore_write(&dev_priv->uncore, SCPD0,
- _MASKED_BIT_ENABLE(SCPD_FBC_IGNORE_3D));
-}
-
-static void i830_init_clock_gating(struct drm_i915_private *dev_priv)
-{
- intel_uncore_write(&dev_priv->uncore, MEM_MODE,
- _MASKED_BIT_ENABLE(MEM_DISPLAY_A_TRICKLE_FEED_DISABLE) |
- _MASKED_BIT_ENABLE(MEM_DISPLAY_B_TRICKLE_FEED_DISABLE));
-}
-
-void intel_init_clock_gating(struct drm_i915_private *dev_priv)
-{
- dev_priv->clock_gating_funcs->init_clock_gating(dev_priv);
-}
-
-void intel_suspend_hw(struct drm_i915_private *dev_priv)
-{
- if (HAS_PCH_LPT(dev_priv))
- lpt_suspend_hw(dev_priv);
-}
-
-static void nop_init_clock_gating(struct drm_i915_private *dev_priv)
-{
- drm_dbg_kms(&dev_priv->drm,
- "No clock gating settings or workarounds applied.\n");
-}
-
-#define CG_FUNCS(platform) \
-static const struct drm_i915_clock_gating_funcs platform##_clock_gating_funcs = { \
- .init_clock_gating = platform##_init_clock_gating, \
-}
-
-CG_FUNCS(pvc);
-CG_FUNCS(dg2);
-CG_FUNCS(xehpsdv);
-CG_FUNCS(adlp);
-CG_FUNCS(dg1);
-CG_FUNCS(gen12lp);
-CG_FUNCS(icl);
-CG_FUNCS(cfl);
-CG_FUNCS(skl);
-CG_FUNCS(kbl);
-CG_FUNCS(bxt);
-CG_FUNCS(glk);
-CG_FUNCS(bdw);
-CG_FUNCS(chv);
-CG_FUNCS(hsw);
-CG_FUNCS(ivb);
-CG_FUNCS(vlv);
-CG_FUNCS(gen6);
-CG_FUNCS(ilk);
-CG_FUNCS(g4x);
-CG_FUNCS(i965gm);
-CG_FUNCS(i965g);
-CG_FUNCS(gen3);
-CG_FUNCS(i85x);
-CG_FUNCS(i830);
-CG_FUNCS(nop);
-#undef CG_FUNCS
-
-/**
- * intel_init_clock_gating_hooks - setup the clock gating hooks
- * @dev_priv: device private
- *
- * Setup the hooks that configure which clocks of a given platform can be
- * gated and also apply various GT and display specific workarounds for these
- * platforms. Note that some GT specific workarounds are applied separately
- * when GPU contexts or batchbuffers start their execution.
- */
-void intel_init_clock_gating_hooks(struct drm_i915_private *dev_priv)
-{
- if (IS_PONTEVECCHIO(dev_priv))
- dev_priv->clock_gating_funcs = &pvc_clock_gating_funcs;
- else if (IS_DG2(dev_priv))
- dev_priv->clock_gating_funcs = &dg2_clock_gating_funcs;
- else if (IS_XEHPSDV(dev_priv))
- dev_priv->clock_gating_funcs = &xehpsdv_clock_gating_funcs;
- else if (IS_ALDERLAKE_P(dev_priv))
- dev_priv->clock_gating_funcs = &adlp_clock_gating_funcs;
- else if (IS_DG1(dev_priv))
- dev_priv->clock_gating_funcs = &dg1_clock_gating_funcs;
- else if (GRAPHICS_VER(dev_priv) == 12)
- dev_priv->clock_gating_funcs = &gen12lp_clock_gating_funcs;
- else if (GRAPHICS_VER(dev_priv) == 11)
- dev_priv->clock_gating_funcs = &icl_clock_gating_funcs;
- else if (IS_COFFEELAKE(dev_priv) || IS_COMETLAKE(dev_priv))
- dev_priv->clock_gating_funcs = &cfl_clock_gating_funcs;
- else if (IS_SKYLAKE(dev_priv))
- dev_priv->clock_gating_funcs = &skl_clock_gating_funcs;
- else if (IS_KABYLAKE(dev_priv))
- dev_priv->clock_gating_funcs = &kbl_clock_gating_funcs;
- else if (IS_BROXTON(dev_priv))
- dev_priv->clock_gating_funcs = &bxt_clock_gating_funcs;
- else if (IS_GEMINILAKE(dev_priv))
- dev_priv->clock_gating_funcs = &glk_clock_gating_funcs;
- else if (IS_BROADWELL(dev_priv))
- dev_priv->clock_gating_funcs = &bdw_clock_gating_funcs;
- else if (IS_CHERRYVIEW(dev_priv))
- dev_priv->clock_gating_funcs = &chv_clock_gating_funcs;
- else if (IS_HASWELL(dev_priv))
- dev_priv->clock_gating_funcs = &hsw_clock_gating_funcs;
- else if (IS_IVYBRIDGE(dev_priv))
- dev_priv->clock_gating_funcs = &ivb_clock_gating_funcs;
- else if (IS_VALLEYVIEW(dev_priv))
- dev_priv->clock_gating_funcs = &vlv_clock_gating_funcs;
- else if (GRAPHICS_VER(dev_priv) == 6)
- dev_priv->clock_gating_funcs = &gen6_clock_gating_funcs;
- else if (GRAPHICS_VER(dev_priv) == 5)
- dev_priv->clock_gating_funcs = &ilk_clock_gating_funcs;
- else if (IS_G4X(dev_priv))
- dev_priv->clock_gating_funcs = &g4x_clock_gating_funcs;
- else if (IS_I965GM(dev_priv))
- dev_priv->clock_gating_funcs = &i965gm_clock_gating_funcs;
- else if (IS_I965G(dev_priv))
- dev_priv->clock_gating_funcs = &i965g_clock_gating_funcs;
- else if (GRAPHICS_VER(dev_priv) == 3)
- dev_priv->clock_gating_funcs = &gen3_clock_gating_funcs;
- else if (IS_I85X(dev_priv) || IS_I865G(dev_priv))
- dev_priv->clock_gating_funcs = &i85x_clock_gating_funcs;
- else if (GRAPHICS_VER(dev_priv) == 2)
- dev_priv->clock_gating_funcs = &i830_clock_gating_funcs;
- else {
- MISSING_CASE(INTEL_DEVID(dev_priv));
- dev_priv->clock_gating_funcs = &nop_clock_gating_funcs;
- }
-}
-
static const struct intel_wm_funcs ilk_wm_funcs = {
.compute_pipe_wm = ilk_compute_pipe_wm,
.compute_intermediate_wm = ilk_compute_intermediate_wm,
.initial_watermarks = ilk_initial_watermarks,
.optimize_watermarks = ilk_optimize_watermarks,
+ .get_hw_state = ilk_wm_get_hw_state,
};
static const struct intel_wm_funcs vlv_wm_funcs = {
@@ -4950,6 +3971,7 @@ static const struct intel_wm_funcs vlv_wm_funcs = {
.initial_watermarks = vlv_initial_watermarks,
.optimize_watermarks = vlv_optimize_watermarks,
.atomic_update_watermarks = vlv_atomic_update_fifo,
+ .get_hw_state = vlv_wm_get_hw_state_and_sanitize,
};
static const struct intel_wm_funcs g4x_wm_funcs = {
@@ -4957,6 +3979,7 @@ static const struct intel_wm_funcs g4x_wm_funcs = {
.compute_intermediate_wm = g4x_compute_intermediate_wm,
.initial_watermarks = g4x_initial_watermarks,
.optimize_watermarks = g4x_optimize_watermarks,
+ .get_hw_state = g4x_wm_get_hw_state_and_sanitize,
};
static const struct intel_wm_funcs pnv_wm_funcs = {
@@ -4978,35 +4001,12 @@ static const struct intel_wm_funcs i845_wm_funcs = {
static const struct intel_wm_funcs nop_funcs = {
};
-/* Set up chip specific power management-related functions */
-void intel_init_pm(struct drm_i915_private *dev_priv)
+void i9xx_wm_init(struct drm_i915_private *dev_priv)
{
- if (DISPLAY_VER(dev_priv) >= 9) {
- skl_wm_init(dev_priv);
- return;
- }
-
- /* For cxsr */
- if (IS_PINEVIEW(dev_priv))
- pnv_get_mem_freq(dev_priv);
- else if (GRAPHICS_VER(dev_priv) == 5)
- ilk_get_mem_freq(dev_priv);
-
/* For FIFO watermark updates */
if (HAS_PCH_SPLIT(dev_priv)) {
ilk_setup_wm_latency(dev_priv);
-
- if ((DISPLAY_VER(dev_priv) == 5 && dev_priv->display.wm.pri_latency[1] &&
- dev_priv->display.wm.spr_latency[1] && dev_priv->display.wm.cur_latency[1]) ||
- (DISPLAY_VER(dev_priv) != 5 && dev_priv->display.wm.pri_latency[0] &&
- dev_priv->display.wm.spr_latency[0] && dev_priv->display.wm.cur_latency[0])) {
- dev_priv->display.funcs.wm = &ilk_wm_funcs;
- } else {
- drm_dbg_kms(&dev_priv->drm,
- "Failed to read display plane latency. "
- "Disable CxSR\n");
- dev_priv->display.funcs.wm = &nop_funcs;
- }
+ dev_priv->display.funcs.wm = &ilk_wm_funcs;
} else if (IS_VALLEYVIEW(dev_priv) || IS_CHERRYVIEW(dev_priv)) {
vlv_setup_wm_latency(dev_priv);
dev_priv->display.funcs.wm = &vlv_wm_funcs;
@@ -5027,8 +4027,9 @@ void intel_init_pm(struct drm_i915_private *dev_priv)
/* Disable CxSR and never update its watermark again */
intel_set_memory_cxsr(dev_priv, false);
dev_priv->display.funcs.wm = &nop_funcs;
- } else
+ } else {
dev_priv->display.funcs.wm = &pnv_wm_funcs;
+ }
} else if (DISPLAY_VER(dev_priv) == 4) {
dev_priv->display.funcs.wm = &i965_wm_funcs;
} else if (DISPLAY_VER(dev_priv) == 3) {
@@ -5044,9 +4045,3 @@ void intel_init_pm(struct drm_i915_private *dev_priv)
dev_priv->display.funcs.wm = &nop_funcs;
}
}
-
-void intel_pm_setup(struct drm_i915_private *dev_priv)
-{
- dev_priv->runtime_pm.suspended = false;
- atomic_set(&dev_priv->runtime_pm.wakeref_count, 0);
-}
diff --git a/drivers/gpu/drm/i915/display/i9xx_wm.h b/drivers/gpu/drm/i915/display/i9xx_wm.h
new file mode 100644
index 000000000000..a7875cbcd05a
--- /dev/null
+++ b/drivers/gpu/drm/i915/display/i9xx_wm.h
@@ -0,0 +1,21 @@
+/* SPDX-License-Identifier: MIT */
+/*
+ * Copyright © 2023 Intel Corporation
+ */
+
+#ifndef __I9XX_WM_H__
+#define __I9XX_WM_H__
+
+#include <linux/types.h>
+
+struct drm_i915_private;
+struct intel_crtc_state;
+struct intel_plane_state;
+
+int ilk_wm_max_level(const struct drm_i915_private *i915);
+bool ilk_disable_lp_wm(struct drm_i915_private *i915);
+void ilk_wm_sanitize(struct drm_i915_private *i915);
+bool intel_set_memory_cxsr(struct drm_i915_private *i915, bool enable);
+void i9xx_wm_init(struct drm_i915_private *i915);
+
+#endif /* __I9XX_WM_H__ */
diff --git a/drivers/gpu/drm/i915/display/icl_dsi.c b/drivers/gpu/drm/i915/display/icl_dsi.c
index ed4d93942dbd..c9aeba0ecf91 100644
--- a/drivers/gpu/drm/i915/display/icl_dsi.c
+++ b/drivers/gpu/drm/i915/display/icl_dsi.c
@@ -29,6 +29,7 @@
#include <drm/drm_atomic_helper.h>
#include <drm/drm_mipi_dsi.h>
+#include "i915_reg.h"
#include "icl_dsi.h"
#include "icl_dsi_regs.h"
#include "intel_atomic.h"
@@ -44,6 +45,7 @@
#include "intel_dsi_vbt.h"
#include "intel_panel.h"
#include "intel_vdsc.h"
+#include "intel_vdsc_regs.h"
#include "skl_scaler.h"
#include "skl_universal_plane.h"
@@ -206,7 +208,7 @@ void icl_dsi_frame_update(struct intel_crtc_state *crtc_state)
{
struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
- u32 tmp, mode_flags;
+ u32 mode_flags;
enum port port;
mode_flags = crtc_state->mode_flags;
@@ -223,9 +225,7 @@ void icl_dsi_frame_update(struct intel_crtc_state *crtc_state)
else
return;
- tmp = intel_de_read(dev_priv, DSI_CMD_FRMCTL(port));
- tmp |= DSI_FRAME_UPDATE_REQUEST;
- intel_de_write(dev_priv, DSI_CMD_FRMCTL(port), tmp);
+ intel_de_rmw(dev_priv, DSI_CMD_FRMCTL(port), 0, DSI_FRAME_UPDATE_REQUEST);
}
static void dsi_program_swing_and_deemphasis(struct intel_encoder *encoder)
@@ -233,7 +233,7 @@ static void dsi_program_swing_and_deemphasis(struct intel_encoder *encoder)
struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
struct intel_dsi *intel_dsi = enc_to_intel_dsi(encoder);
enum phy phy;
- u32 tmp;
+ u32 tmp, mask, val;
int lane;
for_each_dsi_phy(phy, intel_dsi->phys) {
@@ -241,56 +241,35 @@ static void dsi_program_swing_and_deemphasis(struct intel_encoder *encoder)
* Program voltage swing and pre-emphasis level values as per
* table in BSPEC under DDI buffer programing
*/
+ mask = SCALING_MODE_SEL_MASK | RTERM_SELECT_MASK;
+ val = SCALING_MODE_SEL(0x2) | TAP2_DISABLE | TAP3_DISABLE |
+ RTERM_SELECT(0x6);
tmp = intel_de_read(dev_priv, ICL_PORT_TX_DW5_LN(0, phy));
- tmp &= ~(SCALING_MODE_SEL_MASK | RTERM_SELECT_MASK);
- tmp |= SCALING_MODE_SEL(0x2);
- tmp |= TAP2_DISABLE | TAP3_DISABLE;
- tmp |= RTERM_SELECT(0x6);
+ tmp &= ~mask;
+ tmp |= val;
intel_de_write(dev_priv, ICL_PORT_TX_DW5_GRP(phy), tmp);
+ intel_de_rmw(dev_priv, ICL_PORT_TX_DW5_AUX(phy), mask, val);
- tmp = intel_de_read(dev_priv, ICL_PORT_TX_DW5_AUX(phy));
- tmp &= ~(SCALING_MODE_SEL_MASK | RTERM_SELECT_MASK);
- tmp |= SCALING_MODE_SEL(0x2);
- tmp |= TAP2_DISABLE | TAP3_DISABLE;
- tmp |= RTERM_SELECT(0x6);
- intel_de_write(dev_priv, ICL_PORT_TX_DW5_AUX(phy), tmp);
-
+ mask = SWING_SEL_LOWER_MASK | SWING_SEL_UPPER_MASK |
+ RCOMP_SCALAR_MASK;
+ val = SWING_SEL_UPPER(0x2) | SWING_SEL_LOWER(0x2) |
+ RCOMP_SCALAR(0x98);
tmp = intel_de_read(dev_priv, ICL_PORT_TX_DW2_LN(0, phy));
- tmp &= ~(SWING_SEL_LOWER_MASK | SWING_SEL_UPPER_MASK |
- RCOMP_SCALAR_MASK);
- tmp |= SWING_SEL_UPPER(0x2);
- tmp |= SWING_SEL_LOWER(0x2);
- tmp |= RCOMP_SCALAR(0x98);
+ tmp &= ~mask;
+ tmp |= val;
intel_de_write(dev_priv, ICL_PORT_TX_DW2_GRP(phy), tmp);
+ intel_de_rmw(dev_priv, ICL_PORT_TX_DW2_AUX(phy), mask, val);
- tmp = intel_de_read(dev_priv, ICL_PORT_TX_DW2_AUX(phy));
- tmp &= ~(SWING_SEL_LOWER_MASK | SWING_SEL_UPPER_MASK |
- RCOMP_SCALAR_MASK);
- tmp |= SWING_SEL_UPPER(0x2);
- tmp |= SWING_SEL_LOWER(0x2);
- tmp |= RCOMP_SCALAR(0x98);
- intel_de_write(dev_priv, ICL_PORT_TX_DW2_AUX(phy), tmp);
-
- tmp = intel_de_read(dev_priv, ICL_PORT_TX_DW4_AUX(phy));
- tmp &= ~(POST_CURSOR_1_MASK | POST_CURSOR_2_MASK |
- CURSOR_COEFF_MASK);
- tmp |= POST_CURSOR_1(0x0);
- tmp |= POST_CURSOR_2(0x0);
- tmp |= CURSOR_COEFF(0x3f);
- intel_de_write(dev_priv, ICL_PORT_TX_DW4_AUX(phy), tmp);
-
- for (lane = 0; lane <= 3; lane++) {
- /* Bspec: must not use GRP register for write */
- tmp = intel_de_read(dev_priv,
- ICL_PORT_TX_DW4_LN(lane, phy));
- tmp &= ~(POST_CURSOR_1_MASK | POST_CURSOR_2_MASK |
- CURSOR_COEFF_MASK);
- tmp |= POST_CURSOR_1(0x0);
- tmp |= POST_CURSOR_2(0x0);
- tmp |= CURSOR_COEFF(0x3f);
- intel_de_write(dev_priv,
- ICL_PORT_TX_DW4_LN(lane, phy), tmp);
- }
+ mask = POST_CURSOR_1_MASK | POST_CURSOR_2_MASK |
+ CURSOR_COEFF_MASK;
+ val = POST_CURSOR_1(0x0) | POST_CURSOR_2(0x0) |
+ CURSOR_COEFF(0x3f);
+ intel_de_rmw(dev_priv, ICL_PORT_TX_DW4_AUX(phy), mask, val);
+
+ /* Bspec: must not use GRP register for write */
+ for (lane = 0; lane <= 3; lane++)
+ intel_de_rmw(dev_priv, ICL_PORT_TX_DW4_LN(lane, phy),
+ mask, val);
}
}
@@ -299,9 +278,21 @@ static void configure_dual_link_mode(struct intel_encoder *encoder,
{
struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
struct intel_dsi *intel_dsi = enc_to_intel_dsi(encoder);
+ i915_reg_t dss_ctl1_reg, dss_ctl2_reg;
u32 dss_ctl1;
- dss_ctl1 = intel_de_read(dev_priv, DSS_CTL1);
+ /* FIXME: Move all DSS handling to intel_vdsc.c */
+ if (DISPLAY_VER(dev_priv) >= 12) {
+ struct intel_crtc *crtc = to_intel_crtc(pipe_config->uapi.crtc);
+
+ dss_ctl1_reg = ICL_PIPE_DSS_CTL1(crtc->pipe);
+ dss_ctl2_reg = ICL_PIPE_DSS_CTL2(crtc->pipe);
+ } else {
+ dss_ctl1_reg = DSS_CTL1;
+ dss_ctl2_reg = DSS_CTL2;
+ }
+
+ dss_ctl1 = intel_de_read(dev_priv, dss_ctl1_reg);
dss_ctl1 |= SPLITTER_ENABLE;
dss_ctl1 &= ~OVERLAP_PIXELS_MASK;
dss_ctl1 |= OVERLAP_PIXELS(intel_dsi->pixel_overlap);
@@ -309,7 +300,6 @@ static void configure_dual_link_mode(struct intel_encoder *encoder,
if (intel_dsi->dual_link == DSI_DUAL_LINK_FRONT_BACK) {
const struct drm_display_mode *adjusted_mode =
&pipe_config->hw.adjusted_mode;
- u32 dss_ctl2;
u16 hactive = adjusted_mode->crtc_hdisplay;
u16 dl_buffer_depth;
@@ -322,16 +312,14 @@ static void configure_dual_link_mode(struct intel_encoder *encoder,
dss_ctl1 &= ~LEFT_DL_BUF_TARGET_DEPTH_MASK;
dss_ctl1 |= LEFT_DL_BUF_TARGET_DEPTH(dl_buffer_depth);
- dss_ctl2 = intel_de_read(dev_priv, DSS_CTL2);
- dss_ctl2 &= ~RIGHT_DL_BUF_TARGET_DEPTH_MASK;
- dss_ctl2 |= RIGHT_DL_BUF_TARGET_DEPTH(dl_buffer_depth);
- intel_de_write(dev_priv, DSS_CTL2, dss_ctl2);
+ intel_de_rmw(dev_priv, dss_ctl2_reg, RIGHT_DL_BUF_TARGET_DEPTH_MASK,
+ RIGHT_DL_BUF_TARGET_DEPTH(dl_buffer_depth));
} else {
/* Interleave */
dss_ctl1 |= DUAL_LINK_MODE_INTERLEAVE;
}
- intel_de_write(dev_priv, DSS_CTL1, dss_ctl1);
+ intel_de_write(dev_priv, dss_ctl1_reg, dss_ctl1);
}
/* aka DSI 8X clock */
@@ -411,13 +399,10 @@ static void gen11_dsi_enable_io_power(struct intel_encoder *encoder)
struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
struct intel_dsi *intel_dsi = enc_to_intel_dsi(encoder);
enum port port;
- u32 tmp;
- for_each_dsi_port(port, intel_dsi->ports) {
- tmp = intel_de_read(dev_priv, ICL_DSI_IO_MODECTL(port));
- tmp |= COMBO_PHY_MODE_DSI;
- intel_de_write(dev_priv, ICL_DSI_IO_MODECTL(port), tmp);
- }
+ for_each_dsi_port(port, intel_dsi->ports)
+ intel_de_rmw(dev_priv, ICL_DSI_IO_MODECTL(port),
+ 0, COMBO_PHY_MODE_DSI);
get_dsi_io_power_domains(dev_priv, intel_dsi);
}
@@ -443,26 +428,16 @@ static void gen11_dsi_config_phy_lanes_sequence(struct intel_encoder *encoder)
/* Step 4b(i) set loadgen select for transmit and aux lanes */
for_each_dsi_phy(phy, intel_dsi->phys) {
- tmp = intel_de_read(dev_priv, ICL_PORT_TX_DW4_AUX(phy));
- tmp &= ~LOADGEN_SELECT;
- intel_de_write(dev_priv, ICL_PORT_TX_DW4_AUX(phy), tmp);
- for (lane = 0; lane <= 3; lane++) {
- tmp = intel_de_read(dev_priv,
- ICL_PORT_TX_DW4_LN(lane, phy));
- tmp &= ~LOADGEN_SELECT;
- if (lane != 2)
- tmp |= LOADGEN_SELECT;
- intel_de_write(dev_priv,
- ICL_PORT_TX_DW4_LN(lane, phy), tmp);
- }
+ intel_de_rmw(dev_priv, ICL_PORT_TX_DW4_AUX(phy), LOADGEN_SELECT, 0);
+ for (lane = 0; lane <= 3; lane++)
+ intel_de_rmw(dev_priv, ICL_PORT_TX_DW4_LN(lane, phy),
+ LOADGEN_SELECT, lane != 2 ? LOADGEN_SELECT : 0);
}
/* Step 4b(ii) set latency optimization for transmit and aux lanes */
for_each_dsi_phy(phy, intel_dsi->phys) {
- tmp = intel_de_read(dev_priv, ICL_PORT_TX_DW2_AUX(phy));
- tmp &= ~FRC_LATENCY_OPTIM_MASK;
- tmp |= FRC_LATENCY_OPTIM_VAL(0x5);
- intel_de_write(dev_priv, ICL_PORT_TX_DW2_AUX(phy), tmp);
+ intel_de_rmw(dev_priv, ICL_PORT_TX_DW2_AUX(phy),
+ FRC_LATENCY_OPTIM_MASK, FRC_LATENCY_OPTIM_VAL(0x5));
tmp = intel_de_read(dev_priv, ICL_PORT_TX_DW2_LN(0, phy));
tmp &= ~FRC_LATENCY_OPTIM_MASK;
tmp |= FRC_LATENCY_OPTIM_VAL(0x5);
@@ -470,12 +445,8 @@ static void gen11_dsi_config_phy_lanes_sequence(struct intel_encoder *encoder)
/* For EHL, TGL, set latency optimization for PCS_DW1 lanes */
if (IS_JSL_EHL(dev_priv) || (DISPLAY_VER(dev_priv) >= 12)) {
- tmp = intel_de_read(dev_priv,
- ICL_PORT_PCS_DW1_AUX(phy));
- tmp &= ~LATENCY_OPTIM_MASK;
- tmp |= LATENCY_OPTIM_VAL(0);
- intel_de_write(dev_priv, ICL_PORT_PCS_DW1_AUX(phy),
- tmp);
+ intel_de_rmw(dev_priv, ICL_PORT_PCS_DW1_AUX(phy),
+ LATENCY_OPTIM_MASK, LATENCY_OPTIM_VAL(0));
tmp = intel_de_read(dev_priv,
ICL_PORT_PCS_DW1_LN(0, phy));
@@ -500,9 +471,7 @@ static void gen11_dsi_voltage_swing_program_seq(struct intel_encoder *encoder)
tmp = intel_de_read(dev_priv, ICL_PORT_PCS_DW1_LN(0, phy));
tmp &= ~COMMON_KEEPER_EN;
intel_de_write(dev_priv, ICL_PORT_PCS_DW1_GRP(phy), tmp);
- tmp = intel_de_read(dev_priv, ICL_PORT_PCS_DW1_AUX(phy));
- tmp &= ~COMMON_KEEPER_EN;
- intel_de_write(dev_priv, ICL_PORT_PCS_DW1_AUX(phy), tmp);
+ intel_de_rmw(dev_priv, ICL_PORT_PCS_DW1_AUX(phy), COMMON_KEEPER_EN, 0);
}
/*
@@ -510,20 +479,15 @@ static void gen11_dsi_voltage_swing_program_seq(struct intel_encoder *encoder)
* Note: loadgen select program is done
* as part of lane phy sequence configuration
*/
- for_each_dsi_phy(phy, intel_dsi->phys) {
- tmp = intel_de_read(dev_priv, ICL_PORT_CL_DW5(phy));
- tmp |= SUS_CLOCK_CONFIG;
- intel_de_write(dev_priv, ICL_PORT_CL_DW5(phy), tmp);
- }
+ for_each_dsi_phy(phy, intel_dsi->phys)
+ intel_de_rmw(dev_priv, ICL_PORT_CL_DW5(phy), 0, SUS_CLOCK_CONFIG);
/* Clear training enable to change swing values */
for_each_dsi_phy(phy, intel_dsi->phys) {
tmp = intel_de_read(dev_priv, ICL_PORT_TX_DW5_LN(0, phy));
tmp &= ~TX_TRAINING_EN;
intel_de_write(dev_priv, ICL_PORT_TX_DW5_GRP(phy), tmp);
- tmp = intel_de_read(dev_priv, ICL_PORT_TX_DW5_AUX(phy));
- tmp &= ~TX_TRAINING_EN;
- intel_de_write(dev_priv, ICL_PORT_TX_DW5_AUX(phy), tmp);
+ intel_de_rmw(dev_priv, ICL_PORT_TX_DW5_AUX(phy), TX_TRAINING_EN, 0);
}
/* Program swing and de-emphasis */
@@ -534,9 +498,7 @@ static void gen11_dsi_voltage_swing_program_seq(struct intel_encoder *encoder)
tmp = intel_de_read(dev_priv, ICL_PORT_TX_DW5_LN(0, phy));
tmp |= TX_TRAINING_EN;
intel_de_write(dev_priv, ICL_PORT_TX_DW5_GRP(phy), tmp);
- tmp = intel_de_read(dev_priv, ICL_PORT_TX_DW5_AUX(phy));
- tmp |= TX_TRAINING_EN;
- intel_de_write(dev_priv, ICL_PORT_TX_DW5_AUX(phy), tmp);
+ intel_de_rmw(dev_priv, ICL_PORT_TX_DW5_AUX(phy), 0, TX_TRAINING_EN);
}
}
@@ -544,13 +506,10 @@ static void gen11_dsi_enable_ddi_buffer(struct intel_encoder *encoder)
{
struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
struct intel_dsi *intel_dsi = enc_to_intel_dsi(encoder);
- u32 tmp;
enum port port;
for_each_dsi_port(port, intel_dsi->ports) {
- tmp = intel_de_read(dev_priv, DDI_BUF_CTL(port));
- tmp |= DDI_BUF_CTL_ENABLE;
- intel_de_write(dev_priv, DDI_BUF_CTL(port), tmp);
+ intel_de_rmw(dev_priv, DDI_BUF_CTL(port), 0, DDI_BUF_CTL_ENABLE);
if (wait_for_us(!(intel_de_read(dev_priv, DDI_BUF_CTL(port)) &
DDI_BUF_IS_IDLE),
@@ -566,17 +525,13 @@ gen11_dsi_setup_dphy_timings(struct intel_encoder *encoder,
{
struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
struct intel_dsi *intel_dsi = enc_to_intel_dsi(encoder);
- u32 tmp;
enum port port;
enum phy phy;
/* Program T-INIT master registers */
- for_each_dsi_port(port, intel_dsi->ports) {
- tmp = intel_de_read(dev_priv, ICL_DSI_T_INIT_MASTER(port));
- tmp &= ~DSI_T_INIT_MASTER_MASK;
- tmp |= intel_dsi->init_count;
- intel_de_write(dev_priv, ICL_DSI_T_INIT_MASTER(port), tmp);
- }
+ for_each_dsi_port(port, intel_dsi->ports)
+ intel_de_rmw(dev_priv, ICL_DSI_T_INIT_MASTER(port),
+ DSI_T_INIT_MASTER_MASK, intel_dsi->init_count);
/* Program DPHY clock lanes timings */
for_each_dsi_port(port, intel_dsi->ports) {
@@ -607,31 +562,22 @@ gen11_dsi_setup_dphy_timings(struct intel_encoder *encoder,
if (DISPLAY_VER(dev_priv) == 11) {
if (afe_clk(encoder, crtc_state) <= 800000) {
for_each_dsi_port(port, intel_dsi->ports) {
- tmp = intel_de_read(dev_priv,
- DPHY_TA_TIMING_PARAM(port));
- tmp &= ~TA_SURE_MASK;
- tmp |= TA_SURE_OVERRIDE | TA_SURE(0);
- intel_de_write(dev_priv,
- DPHY_TA_TIMING_PARAM(port),
- tmp);
+ intel_de_rmw(dev_priv, DPHY_TA_TIMING_PARAM(port),
+ TA_SURE_MASK,
+ TA_SURE_OVERRIDE | TA_SURE(0));
/* shadow register inside display core */
- tmp = intel_de_read(dev_priv,
- DSI_TA_TIMING_PARAM(port));
- tmp &= ~TA_SURE_MASK;
- tmp |= TA_SURE_OVERRIDE | TA_SURE(0);
- intel_de_write(dev_priv,
- DSI_TA_TIMING_PARAM(port), tmp);
+ intel_de_rmw(dev_priv, DSI_TA_TIMING_PARAM(port),
+ TA_SURE_MASK,
+ TA_SURE_OVERRIDE | TA_SURE(0));
}
}
}
if (IS_JSL_EHL(dev_priv)) {
- for_each_dsi_phy(phy, intel_dsi->phys) {
- tmp = intel_de_read(dev_priv, ICL_DPHY_CHKN(phy));
- tmp |= ICL_DPHY_CHKN_AFE_OVER_PPI_STRAP;
- intel_de_write(dev_priv, ICL_DPHY_CHKN(phy), tmp);
- }
+ for_each_dsi_phy(phy, intel_dsi->phys)
+ intel_de_rmw(dev_priv, ICL_DPHY_CHKN(phy),
+ 0, ICL_DPHY_CHKN_AFE_OVER_PPI_STRAP);
}
}
@@ -823,11 +769,8 @@ gen11_dsi_configure_transcoder(struct intel_encoder *encoder,
if (intel_dsi->dual_link) {
for_each_dsi_port(port, intel_dsi->ports) {
dsi_trans = dsi_port_to_transcoder(port);
- tmp = intel_de_read(dev_priv,
- TRANS_DDI_FUNC_CTL2(dsi_trans));
- tmp |= PORT_SYNC_MODE_ENABLE;
- intel_de_write(dev_priv,
- TRANS_DDI_FUNC_CTL2(dsi_trans), tmp);
+ intel_de_rmw(dev_priv, TRANS_DDI_FUNC_CTL2(dsi_trans),
+ 0, PORT_SYNC_MODE_ENABLE);
}
/* configure stream splitting */
@@ -957,8 +900,8 @@ gen11_dsi_set_transcoder_timings(struct intel_encoder *encoder,
/* program TRANS_HTOTAL register */
for_each_dsi_port(port, intel_dsi->ports) {
dsi_trans = dsi_port_to_transcoder(port);
- intel_de_write(dev_priv, HTOTAL(dsi_trans),
- (hactive - 1) | ((htotal - 1) << 16));
+ intel_de_write(dev_priv, TRANS_HTOTAL(dsi_trans),
+ HACTIVE(hactive - 1) | HTOTAL(htotal - 1));
}
/* TRANS_HSYNC register to be programmed only for video mode */
@@ -980,8 +923,8 @@ gen11_dsi_set_transcoder_timings(struct intel_encoder *encoder,
for_each_dsi_port(port, intel_dsi->ports) {
dsi_trans = dsi_port_to_transcoder(port);
- intel_de_write(dev_priv, HSYNC(dsi_trans),
- (hsync_start - 1) | ((hsync_end - 1) << 16));
+ intel_de_write(dev_priv, TRANS_HSYNC(dsi_trans),
+ HSYNC_START(hsync_start - 1) | HSYNC_END(hsync_end - 1));
}
}
@@ -994,8 +937,8 @@ gen11_dsi_set_transcoder_timings(struct intel_encoder *encoder,
* struct drm_display_mode.
* For interlace mode: program required pixel minus 2
*/
- intel_de_write(dev_priv, VTOTAL(dsi_trans),
- (vactive - 1) | ((vtotal - 1) << 16));
+ intel_de_write(dev_priv, TRANS_VTOTAL(dsi_trans),
+ VACTIVE(vactive - 1) | VTOTAL(vtotal - 1));
}
if (vsync_end < vsync_start || vsync_end > vtotal)
@@ -1008,8 +951,8 @@ gen11_dsi_set_transcoder_timings(struct intel_encoder *encoder,
if (is_vid_mode(intel_dsi)) {
for_each_dsi_port(port, intel_dsi->ports) {
dsi_trans = dsi_port_to_transcoder(port);
- intel_de_write(dev_priv, VSYNC(dsi_trans),
- (vsync_start - 1) | ((vsync_end - 1) << 16));
+ intel_de_write(dev_priv, TRANS_VSYNC(dsi_trans),
+ VSYNC_START(vsync_start - 1) | VSYNC_END(vsync_end - 1));
}
}
@@ -1022,17 +965,22 @@ gen11_dsi_set_transcoder_timings(struct intel_encoder *encoder,
if (is_vid_mode(intel_dsi)) {
for_each_dsi_port(port, intel_dsi->ports) {
dsi_trans = dsi_port_to_transcoder(port);
- intel_de_write(dev_priv, VSYNCSHIFT(dsi_trans),
+ intel_de_write(dev_priv, TRANS_VSYNCSHIFT(dsi_trans),
vsync_shift);
}
}
- /* program TRANS_VBLANK register, should be same as vtotal programmed */
+ /*
+ * program TRANS_VBLANK register, should be same as vtotal programmed
+ *
+ * FIXME get rid of these local hacks and do it right,
+ * this will not handle eg. delayed vblank correctly.
+ */
if (DISPLAY_VER(dev_priv) >= 12) {
for_each_dsi_port(port, intel_dsi->ports) {
dsi_trans = dsi_port_to_transcoder(port);
- intel_de_write(dev_priv, VBLANK(dsi_trans),
- (vactive - 1) | ((vtotal - 1) << 16));
+ intel_de_write(dev_priv, TRANS_VBLANK(dsi_trans),
+ VBLANK_START(vactive - 1) | VBLANK_END(vtotal - 1));
}
}
}
@@ -1043,17 +991,14 @@ static void gen11_dsi_enable_transcoder(struct intel_encoder *encoder)
struct intel_dsi *intel_dsi = enc_to_intel_dsi(encoder);
enum port port;
enum transcoder dsi_trans;
- u32 tmp;
for_each_dsi_port(port, intel_dsi->ports) {
dsi_trans = dsi_port_to_transcoder(port);
- tmp = intel_de_read(dev_priv, PIPECONF(dsi_trans));
- tmp |= PIPECONF_ENABLE;
- intel_de_write(dev_priv, PIPECONF(dsi_trans), tmp);
+ intel_de_rmw(dev_priv, TRANSCONF(dsi_trans), 0, TRANSCONF_ENABLE);
/* wait for transcoder to be enabled */
- if (intel_de_wait_for_set(dev_priv, PIPECONF(dsi_trans),
- PIPECONF_STATE_ENABLE, 10))
+ if (intel_de_wait_for_set(dev_priv, TRANSCONF(dsi_trans),
+ TRANSCONF_STATE_ENABLE, 10))
drm_err(&dev_priv->drm,
"DSI transcoder not enabled\n");
}
@@ -1066,7 +1011,7 @@ static void gen11_dsi_setup_timeouts(struct intel_encoder *encoder,
struct intel_dsi *intel_dsi = enc_to_intel_dsi(encoder);
enum port port;
enum transcoder dsi_trans;
- u32 tmp, hs_tx_timeout, lp_rx_timeout, ta_timeout, divisor, mul;
+ u32 hs_tx_timeout, lp_rx_timeout, ta_timeout, divisor, mul;
/*
* escape clock count calculation:
@@ -1086,26 +1031,23 @@ static void gen11_dsi_setup_timeouts(struct intel_encoder *encoder,
dsi_trans = dsi_port_to_transcoder(port);
/* program hst_tx_timeout */
- tmp = intel_de_read(dev_priv, DSI_HSTX_TO(dsi_trans));
- tmp &= ~HSTX_TIMEOUT_VALUE_MASK;
- tmp |= HSTX_TIMEOUT_VALUE(hs_tx_timeout);
- intel_de_write(dev_priv, DSI_HSTX_TO(dsi_trans), tmp);
+ intel_de_rmw(dev_priv, DSI_HSTX_TO(dsi_trans),
+ HSTX_TIMEOUT_VALUE_MASK,
+ HSTX_TIMEOUT_VALUE(hs_tx_timeout));
/* FIXME: DSI_CALIB_TO */
/* program lp_rx_host timeout */
- tmp = intel_de_read(dev_priv, DSI_LPRX_HOST_TO(dsi_trans));
- tmp &= ~LPRX_TIMEOUT_VALUE_MASK;
- tmp |= LPRX_TIMEOUT_VALUE(lp_rx_timeout);
- intel_de_write(dev_priv, DSI_LPRX_HOST_TO(dsi_trans), tmp);
+ intel_de_rmw(dev_priv, DSI_LPRX_HOST_TO(dsi_trans),
+ LPRX_TIMEOUT_VALUE_MASK,
+ LPRX_TIMEOUT_VALUE(lp_rx_timeout));
/* FIXME: DSI_PWAIT_TO */
/* program turn around timeout */
- tmp = intel_de_read(dev_priv, DSI_TA_TO(dsi_trans));
- tmp &= ~TA_TIMEOUT_VALUE_MASK;
- tmp |= TA_TIMEOUT_VALUE(ta_timeout);
- intel_de_write(dev_priv, DSI_TA_TO(dsi_trans), tmp);
+ intel_de_rmw(dev_priv, DSI_TA_TO(dsi_trans),
+ TA_TIMEOUT_VALUE_MASK,
+ TA_TIMEOUT_VALUE(ta_timeout));
}
}
@@ -1198,7 +1140,7 @@ static void gen11_dsi_powerup_panel(struct intel_encoder *encoder)
/* panel power on related mipi dsi vbt sequences */
intel_dsi_vbt_exec_sequence(intel_dsi, MIPI_SEQ_POWER_ON);
- intel_dsi_msleep(intel_dsi, intel_dsi->panel_on_delay);
+ msleep(intel_dsi->panel_on_delay);
intel_dsi_vbt_exec_sequence(intel_dsi, MIPI_SEQ_DEASSERT_RESET);
intel_dsi_vbt_exec_sequence(intel_dsi, MIPI_SEQ_INIT_OTP);
intel_dsi_vbt_exec_sequence(intel_dsi, MIPI_SEQ_DISPLAY_ON);
@@ -1309,19 +1251,16 @@ static void gen11_dsi_disable_transcoder(struct intel_encoder *encoder)
struct intel_dsi *intel_dsi = enc_to_intel_dsi(encoder);
enum port port;
enum transcoder dsi_trans;
- u32 tmp;
for_each_dsi_port(port, intel_dsi->ports) {
dsi_trans = dsi_port_to_transcoder(port);
/* disable transcoder */
- tmp = intel_de_read(dev_priv, PIPECONF(dsi_trans));
- tmp &= ~PIPECONF_ENABLE;
- intel_de_write(dev_priv, PIPECONF(dsi_trans), tmp);
+ intel_de_rmw(dev_priv, TRANSCONF(dsi_trans), TRANSCONF_ENABLE, 0);
/* wait for transcoder to be disabled */
- if (intel_de_wait_for_clear(dev_priv, PIPECONF(dsi_trans),
- PIPECONF_STATE_ENABLE, 50))
+ if (intel_de_wait_for_clear(dev_priv, TRANSCONF(dsi_trans),
+ TRANSCONF_STATE_ENABLE, 50))
drm_err(&dev_priv->drm,
"DSI trancoder not disabled\n");
}
@@ -1349,11 +1288,9 @@ static void gen11_dsi_deconfigure_trancoder(struct intel_encoder *encoder)
/* disable periodic update mode */
if (is_cmd_mode(intel_dsi)) {
- for_each_dsi_port(port, intel_dsi->ports) {
- tmp = intel_de_read(dev_priv, DSI_CMD_FRMCTL(port));
- tmp &= ~DSI_PERIODIC_FRAME_UPDATE_ENABLE;
- intel_de_write(dev_priv, DSI_CMD_FRMCTL(port), tmp);
- }
+ for_each_dsi_port(port, intel_dsi->ports)
+ intel_de_rmw(dev_priv, DSI_CMD_FRMCTL(port),
+ DSI_PERIODIC_FRAME_UPDATE_ENABLE, 0);
}
/* put dsi link in ULPS */
@@ -1373,20 +1310,16 @@ static void gen11_dsi_deconfigure_trancoder(struct intel_encoder *encoder)
/* disable ddi function */
for_each_dsi_port(port, intel_dsi->ports) {
dsi_trans = dsi_port_to_transcoder(port);
- tmp = intel_de_read(dev_priv, TRANS_DDI_FUNC_CTL(dsi_trans));
- tmp &= ~TRANS_DDI_FUNC_ENABLE;
- intel_de_write(dev_priv, TRANS_DDI_FUNC_CTL(dsi_trans), tmp);
+ intel_de_rmw(dev_priv, TRANS_DDI_FUNC_CTL(dsi_trans),
+ TRANS_DDI_FUNC_ENABLE, 0);
}
/* disable port sync mode if dual link */
if (intel_dsi->dual_link) {
for_each_dsi_port(port, intel_dsi->ports) {
dsi_trans = dsi_port_to_transcoder(port);
- tmp = intel_de_read(dev_priv,
- TRANS_DDI_FUNC_CTL2(dsi_trans));
- tmp &= ~PORT_SYNC_MODE_ENABLE;
- intel_de_write(dev_priv,
- TRANS_DDI_FUNC_CTL2(dsi_trans), tmp);
+ intel_de_rmw(dev_priv, TRANS_DDI_FUNC_CTL2(dsi_trans),
+ PORT_SYNC_MODE_ENABLE, 0);
}
}
}
@@ -1395,14 +1328,11 @@ static void gen11_dsi_disable_port(struct intel_encoder *encoder)
{
struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
struct intel_dsi *intel_dsi = enc_to_intel_dsi(encoder);
- u32 tmp;
enum port port;
gen11_dsi_ungate_clocks(encoder);
for_each_dsi_port(port, intel_dsi->ports) {
- tmp = intel_de_read(dev_priv, DDI_BUF_CTL(port));
- tmp &= ~DDI_BUF_CTL_ENABLE;
- intel_de_write(dev_priv, DDI_BUF_CTL(port), tmp);
+ intel_de_rmw(dev_priv, DDI_BUF_CTL(port), DDI_BUF_CTL_ENABLE, 0);
if (wait_for_us((intel_de_read(dev_priv, DDI_BUF_CTL(port)) &
DDI_BUF_IS_IDLE),
@@ -1419,7 +1349,6 @@ static void gen11_dsi_disable_io_power(struct intel_encoder *encoder)
struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
struct intel_dsi *intel_dsi = enc_to_intel_dsi(encoder);
enum port port;
- u32 tmp;
for_each_dsi_port(port, intel_dsi->ports) {
intel_wakeref_t wakeref;
@@ -1433,11 +1362,9 @@ static void gen11_dsi_disable_io_power(struct intel_encoder *encoder)
}
/* set mode to DDI */
- for_each_dsi_port(port, intel_dsi->ports) {
- tmp = intel_de_read(dev_priv, ICL_DSI_IO_MODECTL(port));
- tmp &= ~COMBO_PHY_MODE_DSI;
- intel_de_write(dev_priv, ICL_DSI_IO_MODECTL(port), tmp);
- }
+ for_each_dsi_port(port, intel_dsi->ports)
+ intel_de_rmw(dev_priv, ICL_DSI_IO_MODECTL(port),
+ COMBO_PHY_MODE_DSI, 0);
}
static void gen11_dsi_disable(struct intel_atomic_state *state,
@@ -1573,7 +1500,7 @@ static void gen11_dsi_get_config(struct intel_encoder *encoder,
gen11_dsi_get_timings(encoder, pipe_config);
pipe_config->output_types |= BIT(INTEL_OUTPUT_DSI);
- pipe_config->pipe_bpp = bdw_get_pipemisc_bpp(crtc);
+ pipe_config->pipe_bpp = bdw_get_pipe_misc_bpp(crtc);
/* Get the details on which TE should be enabled */
if (is_cmd_mode(intel_dsi))
@@ -1625,8 +1552,6 @@ static int gen11_dsi_dsc_compute_config(struct intel_encoder *encoder,
if (crtc_state->dsc.slice_count > 1)
crtc_state->dsc.dsc_split = true;
- vdsc_cfg->convert_rgb = true;
-
/* FIXME: initialize from VBT */
vdsc_cfg->rc_model_size = DSC_RC_MODEL_SIZE_CONST;
@@ -1753,8 +1678,8 @@ static bool gen11_dsi_get_hw_state(struct intel_encoder *encoder,
goto out;
}
- tmp = intel_de_read(dev_priv, PIPECONF(dsi_trans));
- ret = tmp & PIPECONF_ENABLE;
+ tmp = intel_de_read(dev_priv, TRANSCONF(dsi_trans));
+ ret = tmp & TRANSCONF_ENABLE;
}
out:
intel_display_power_put(dev_priv, encoder->power_domain, wakeref);
@@ -1974,16 +1899,8 @@ static void icl_dsi_add_properties(struct intel_connector *connector)
{
const struct drm_display_mode *fixed_mode =
intel_panel_preferred_fixed_mode(connector);
- u32 allowed_scalers;
-
- allowed_scalers = BIT(DRM_MODE_SCALE_ASPECT) |
- BIT(DRM_MODE_SCALE_FULLSCREEN) |
- BIT(DRM_MODE_SCALE_CENTER);
-
- drm_connector_attach_scaling_mode_property(&connector->base,
- allowed_scalers);
- connector->base.state->scaling_mode = DRM_MODE_SCALE_ASPECT;
+ intel_attach_scaling_mode_property(&connector->base);
drm_connector_set_panel_orientation_with_quirk(&connector->base,
intel_dsi_get_panel_orientation(connector),
@@ -1993,7 +1910,6 @@ static void icl_dsi_add_properties(struct intel_connector *connector)
void icl_dsi_init(struct drm_i915_private *dev_priv)
{
- struct drm_device *dev = &dev_priv->drm;
struct intel_dsi *intel_dsi;
struct intel_encoder *encoder;
struct intel_connector *intel_connector;
@@ -2018,7 +1934,7 @@ void icl_dsi_init(struct drm_i915_private *dev_priv)
connector = &intel_connector->base;
/* register DSI encoder with DRM subsystem */
- drm_encoder_init(dev, &encoder->base, &gen11_dsi_encoder_funcs,
+ drm_encoder_init(&dev_priv->drm, &encoder->base, &gen11_dsi_encoder_funcs,
DRM_MODE_ENCODER_DSI, "DSI %c", port_name(port));
encoder->pre_pll_enable = gen11_dsi_pre_pll_enable;
@@ -2042,29 +1958,28 @@ void icl_dsi_init(struct drm_i915_private *dev_priv)
encoder->is_clock_enabled = gen11_dsi_is_clock_enabled;
/* register DSI connector with DRM subsystem */
- drm_connector_init(dev, connector, &gen11_dsi_connector_funcs,
+ drm_connector_init(&dev_priv->drm, connector, &gen11_dsi_connector_funcs,
DRM_MODE_CONNECTOR_DSI);
drm_connector_helper_add(connector, &gen11_dsi_connector_helper_funcs);
connector->display_info.subpixel_order = SubPixelHorizontalRGB;
- connector->interlace_allowed = false;
- connector->doublescan_allowed = false;
intel_connector->get_hw_state = intel_connector_get_hw_state;
/* attach connector to encoder */
intel_connector_attach_encoder(intel_connector, encoder);
- intel_bios_init_panel(dev_priv, &intel_connector->panel, NULL, NULL);
+ encoder->devdata = intel_bios_encoder_data_lookup(dev_priv, port);
+ intel_bios_init_panel_late(dev_priv, &intel_connector->panel, encoder->devdata, NULL);
- mutex_lock(&dev->mode_config.mutex);
+ mutex_lock(&dev_priv->drm.mode_config.mutex);
intel_panel_add_vbt_lfp_fixed_mode(intel_connector);
- mutex_unlock(&dev->mode_config.mutex);
+ mutex_unlock(&dev_priv->drm.mode_config.mutex);
if (!intel_panel_preferred_fixed_mode(intel_connector)) {
drm_err(&dev_priv->drm, "DSI fixed mode info missing\n");
goto err;
}
- intel_panel_init(intel_connector);
+ intel_panel_init(intel_connector, NULL);
intel_backlight_setup(intel_connector, INVALID_PIPE);
diff --git a/drivers/gpu/drm/i915/display/icl_dsi_regs.h b/drivers/gpu/drm/i915/display/icl_dsi_regs.h
index f78f28b8dd94..d4845ac65acc 100644
--- a/drivers/gpu/drm/i915/display/icl_dsi_regs.h
+++ b/drivers/gpu/drm/i915/display/icl_dsi_regs.h
@@ -6,7 +6,7 @@
#ifndef __ICL_DSI_REGS_H__
#define __ICL_DSI_REGS_H__
-#include "i915_reg_defs.h"
+#include "intel_display_reg_defs.h"
/* Gen11 DSI */
#define _MMIO_DSI(tc, dsi0, dsi1) _MMIO_TRANS((tc) - TRANSCODER_DSI_0, \
diff --git a/drivers/gpu/drm/i915/display/intel_atomic.c b/drivers/gpu/drm/i915/display/intel_atomic.c
index 18f0a5ae3bac..a9a3f3715279 100644
--- a/drivers/gpu/drm/i915/display/intel_atomic.c
+++ b/drivers/gpu/drm/i915/display/intel_atomic.c
@@ -41,6 +41,7 @@
#include "intel_global_state.h"
#include "intel_hdcp.h"
#include "intel_psr.h"
+#include "intel_fb.h"
#include "skl_universal_plane.h"
/**
@@ -252,6 +253,11 @@ intel_crtc_duplicate_state(struct drm_crtc *crtc)
if (crtc_state->hw.gamma_lut)
drm_property_blob_get(crtc_state->hw.gamma_lut);
+ if (crtc_state->pre_csc_lut)
+ drm_property_blob_get(crtc_state->pre_csc_lut);
+ if (crtc_state->post_csc_lut)
+ drm_property_blob_get(crtc_state->post_csc_lut);
+
crtc_state->update_pipe = false;
crtc_state->disable_lp_wm = false;
crtc_state->disable_cxsr = false;
@@ -274,6 +280,9 @@ static void intel_crtc_put_color_blobs(struct intel_crtc_state *crtc_state)
drm_property_blob_put(crtc_state->hw.degamma_lut);
drm_property_blob_put(crtc_state->hw.gamma_lut);
drm_property_blob_put(crtc_state->hw.ctm);
+
+ drm_property_blob_put(crtc_state->pre_csc_lut);
+ drm_property_blob_put(crtc_state->post_csc_lut);
}
void intel_crtc_free_hw_state(struct intel_crtc_state *crtc_state)
@@ -302,11 +311,11 @@ intel_crtc_destroy_state(struct drm_crtc *crtc,
kfree(crtc_state);
}
-static void intel_atomic_setup_scaler(struct intel_crtc_scaler_state *scaler_state,
- int num_scalers_need, struct intel_crtc *intel_crtc,
- const char *name, int idx,
- struct intel_plane_state *plane_state,
- int *scaler_id)
+static int intel_atomic_setup_scaler(struct intel_crtc_scaler_state *scaler_state,
+ int num_scalers_need, struct intel_crtc *intel_crtc,
+ const char *name, int idx,
+ struct intel_plane_state *plane_state,
+ int *scaler_id)
{
struct drm_i915_private *dev_priv = to_i915(intel_crtc->base.dev);
int j;
@@ -326,7 +335,7 @@ static void intel_atomic_setup_scaler(struct intel_crtc_scaler_state *scaler_sta
if (drm_WARN(&dev_priv->drm, *scaler_id < 0,
"Cannot find scaler for %s:%d\n", name, idx))
- return;
+ return -EINVAL;
/* set scaler mode */
if (plane_state && plane_state->hw.fb &&
@@ -367,9 +376,71 @@ static void intel_atomic_setup_scaler(struct intel_crtc_scaler_state *scaler_sta
mode = SKL_PS_SCALER_MODE_DYN;
}
+ /*
+ * FIXME: we should also check the scaler factors for pfit, so
+ * this shouldn't be tied directly to planes.
+ */
+ if (plane_state && plane_state->hw.fb) {
+ const struct drm_framebuffer *fb = plane_state->hw.fb;
+ const struct drm_rect *src = &plane_state->uapi.src;
+ const struct drm_rect *dst = &plane_state->uapi.dst;
+ int hscale, vscale, max_vscale, max_hscale;
+
+ /*
+ * FIXME: When two scalers are needed, but only one of
+ * them needs to downscale, we should make sure that
+ * the one that needs downscaling support is assigned
+ * as the first scaler, so we don't reject downscaling
+ * unnecessarily.
+ */
+
+ if (DISPLAY_VER(dev_priv) >= 14) {
+ /*
+ * On versions 14 and up, only the first
+ * scaler supports a vertical scaling factor
+ * of more than 1.0, while a horizontal
+ * scaling factor of 3.0 is supported.
+ */
+ max_hscale = 0x30000 - 1;
+ if (*scaler_id == 0)
+ max_vscale = 0x30000 - 1;
+ else
+ max_vscale = 0x10000;
+
+ } else if (DISPLAY_VER(dev_priv) >= 10 ||
+ !intel_format_info_is_yuv_semiplanar(fb->format, fb->modifier)) {
+ max_hscale = 0x30000 - 1;
+ max_vscale = 0x30000 - 1;
+ } else {
+ max_hscale = 0x20000 - 1;
+ max_vscale = 0x20000 - 1;
+ }
+
+ /*
+ * FIXME: We should change the if-else block above to
+ * support HQ vs dynamic scaler properly.
+ */
+
+ /* Check if required scaling is within limits */
+ hscale = drm_rect_calc_hscale(src, dst, 1, max_hscale);
+ vscale = drm_rect_calc_vscale(src, dst, 1, max_vscale);
+
+ if (hscale < 0 || vscale < 0) {
+ drm_dbg_kms(&dev_priv->drm,
+ "Scaler %d doesn't support required plane scaling\n",
+ *scaler_id);
+ drm_rect_debug_print("src: ", src, true);
+ drm_rect_debug_print("dst: ", dst, false);
+
+ return -EINVAL;
+ }
+ }
+
drm_dbg_kms(&dev_priv->drm, "Attached scaler id %u.%u to %s:%d\n",
intel_crtc->pipe, *scaler_id, name, idx);
scaler_state->scalers[*scaler_id].mode = mode;
+
+ return 0;
}
/**
@@ -429,7 +500,7 @@ int intel_atomic_setup_scalers(struct drm_i915_private *dev_priv,
for (i = 0; i < sizeof(scaler_state->scaler_users) * 8; i++) {
int *scaler_id;
const char *name;
- int idx;
+ int idx, ret;
/* skip if scaler not required */
if (!(scaler_state->scaler_users & (1 << i)))
@@ -486,9 +557,11 @@ int intel_atomic_setup_scalers(struct drm_i915_private *dev_priv,
scaler_id = &plane_state->scaler_id;
}
- intel_atomic_setup_scaler(scaler_state, num_scalers_need,
- intel_crtc, name, idx,
- plane_state, scaler_id);
+ ret = intel_atomic_setup_scaler(scaler_state, num_scalers_need,
+ intel_crtc, name, idx,
+ plane_state, scaler_id);
+ if (ret < 0)
+ return ret;
}
return 0;
diff --git a/drivers/gpu/drm/i915/display/intel_atomic_plane.c b/drivers/gpu/drm/i915/display/intel_atomic_plane.c
index aaa6708256d5..f33164b10292 100644
--- a/drivers/gpu/drm/i915/display/intel_atomic_plane.c
+++ b/drivers/gpu/drm/i915/display/intel_atomic_plane.c
@@ -32,17 +32,17 @@
*/
#include <drm/drm_atomic_helper.h>
+#include <drm/drm_blend.h>
#include <drm/drm_fourcc.h>
-#include "gt/intel_rps.h"
-
+#include "i915_config.h"
#include "intel_atomic_plane.h"
#include "intel_cdclk.h"
+#include "intel_display_rps.h"
#include "intel_display_trace.h"
#include "intel_display_types.h"
#include "intel_fb.h"
#include "intel_fb_pin.h"
-#include "intel_sprite.h"
#include "skl_scaler.h"
#include "skl_watermark.h"
@@ -362,6 +362,7 @@ void intel_plane_set_invisible(struct intel_crtc_state *crtc_state,
crtc_state->scaled_planes &= ~BIT(plane->id);
crtc_state->nv12_planes &= ~BIT(plane->id);
crtc_state->c8_planes &= ~BIT(plane->id);
+ crtc_state->async_flip_planes &= ~BIT(plane->id);
crtc_state->data_rate[plane->id] = 0;
crtc_state->data_rate_y[plane->id] = 0;
crtc_state->rel_data_rate[plane->id] = 0;
@@ -425,6 +426,47 @@ static bool intel_plane_do_async_flip(struct intel_plane *plane,
return DISPLAY_VER(i915) < 13 || old_crtc_state->uapi.async_flip;
}
+static bool i9xx_must_disable_cxsr(const struct intel_crtc_state *new_crtc_state,
+ const struct intel_plane_state *old_plane_state,
+ const struct intel_plane_state *new_plane_state)
+{
+ struct intel_plane *plane = to_intel_plane(new_plane_state->uapi.plane);
+ bool old_visible = old_plane_state->uapi.visible;
+ bool new_visible = new_plane_state->uapi.visible;
+ u32 old_ctl = old_plane_state->ctl;
+ u32 new_ctl = new_plane_state->ctl;
+ bool modeset, turn_on, turn_off;
+
+ if (plane->id == PLANE_CURSOR)
+ return false;
+
+ modeset = intel_crtc_needs_modeset(new_crtc_state);
+ turn_off = old_visible && (!new_visible || modeset);
+ turn_on = new_visible && (!old_visible || modeset);
+
+ /* Must disable CxSR around plane enable/disable */
+ if (turn_on || turn_off)
+ return true;
+
+ if (!old_visible || !new_visible)
+ return false;
+
+ /*
+ * Most plane control register updates are blocked while in CxSR.
+ *
+ * Tiling mode is one exception where the primary plane can
+ * apparently handle it, whereas the sprites can not (the
+ * sprite issue being only relevant on VLV/CHV where CxSR
+ * is actually possible with a sprite enabled).
+ */
+ if (plane->id == PLANE_PRIMARY) {
+ old_ctl &= ~DISP_TILED;
+ new_ctl &= ~DISP_TILED;
+ }
+
+ return old_ctl != new_ctl;
+}
+
static int intel_plane_atomic_calc_changes(const struct intel_crtc_state *old_crtc_state,
struct intel_crtc_state *new_crtc_state,
const struct intel_plane_state *old_plane_state,
@@ -482,17 +524,9 @@ static int intel_plane_atomic_calc_changes(const struct intel_crtc_state *old_cr
if (turn_on) {
if (DISPLAY_VER(dev_priv) < 5 && !IS_G4X(dev_priv))
new_crtc_state->update_wm_pre = true;
-
- /* must disable cxsr around plane enable/disable */
- if (plane->id != PLANE_CURSOR)
- new_crtc_state->disable_cxsr = true;
} else if (turn_off) {
if (DISPLAY_VER(dev_priv) < 5 && !IS_G4X(dev_priv))
new_crtc_state->update_wm_post = true;
-
- /* must disable cxsr around plane enable/disable */
- if (plane->id != PLANE_CURSOR)
- new_crtc_state->disable_cxsr = true;
} else if (intel_wm_need_update(old_plane_state, new_plane_state)) {
if (DISPLAY_VER(dev_priv) < 5 && !IS_G4X(dev_priv)) {
/* FIXME bollocks */
@@ -504,6 +538,10 @@ static int intel_plane_atomic_calc_changes(const struct intel_crtc_state *old_cr
if (visible || was_visible)
new_crtc_state->fb_bits |= plane->frontbuffer_bit;
+ if (HAS_GMCH(dev_priv) &&
+ i9xx_must_disable_cxsr(new_crtc_state, old_plane_state, new_plane_state))
+ new_crtc_state->disable_cxsr = true;
+
/*
* ILK/SNB DVSACNTR/Sprite Enable
* IVB SPR_CTL/Sprite Enable
@@ -544,8 +582,10 @@ static int intel_plane_atomic_calc_changes(const struct intel_crtc_state *old_cr
intel_plane_is_scaled(new_plane_state))))
new_crtc_state->disable_lp_wm = true;
- if (intel_plane_do_async_flip(plane, old_crtc_state, new_crtc_state))
+ if (intel_plane_do_async_flip(plane, old_crtc_state, new_crtc_state)) {
new_crtc_state->do_async_flip = true;
+ new_crtc_state->async_flip_planes |= BIT(plane->id);
+ }
return 0;
}
@@ -720,7 +760,7 @@ void intel_plane_update_noarm(struct intel_plane *plane,
{
struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
- trace_intel_plane_update_noarm(&plane->base, crtc);
+ trace_intel_plane_update_noarm(plane, crtc);
if (plane->update_noarm)
plane->update_noarm(plane, crtc_state, plane_state);
@@ -732,7 +772,7 @@ void intel_plane_update_arm(struct intel_plane *plane,
{
struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
- trace_intel_plane_update_arm(&plane->base, crtc);
+ trace_intel_plane_update_arm(plane, crtc);
if (crtc_state->do_async_flip && plane->async_flip)
plane->async_flip(plane, crtc_state, plane_state, true);
@@ -745,7 +785,7 @@ void intel_plane_disable_arm(struct intel_plane *plane,
{
struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
- trace_intel_plane_disable_arm(&plane->base, crtc);
+ trace_intel_plane_disable_arm(plane, crtc);
plane->disable_arm(plane, crtc_state);
}
@@ -900,62 +940,62 @@ int intel_atomic_plane_check_clipping(struct intel_plane_state *plane_state,
return 0;
}
-struct wait_rps_boost {
- struct wait_queue_entry wait;
-
- struct drm_crtc *crtc;
- struct i915_request *request;
-};
-
-static int do_rps_boost(struct wait_queue_entry *_wait,
- unsigned mode, int sync, void *key)
+int intel_plane_check_src_coordinates(struct intel_plane_state *plane_state)
{
- struct wait_rps_boost *wait = container_of(_wait, typeof(*wait), wait);
- struct i915_request *rq = wait->request;
+ struct drm_i915_private *i915 = to_i915(plane_state->uapi.plane->dev);
+ const struct drm_framebuffer *fb = plane_state->hw.fb;
+ struct drm_rect *src = &plane_state->uapi.src;
+ u32 src_x, src_y, src_w, src_h, hsub, vsub;
+ bool rotated = drm_rotation_90_or_270(plane_state->hw.rotation);
/*
- * If we missed the vblank, but the request is already running it
- * is reasonable to assume that it will complete before the next
- * vblank without our intervention, so leave RPS alone.
+ * FIXME hsub/vsub vs. block size is a mess. Pre-tgl CCS
+ * abuses hsub/vsub so we can't use them here. But as they
+ * are limited to 32bpp RGB formats we don't actually need
+ * to check anything.
*/
- if (!i915_request_started(rq))
- intel_rps_boost(rq);
- i915_request_put(rq);
-
- drm_crtc_vblank_put(wait->crtc);
-
- list_del(&wait->wait.entry);
- kfree(wait);
- return 1;
-}
+ if (fb->modifier == I915_FORMAT_MOD_Y_TILED_CCS ||
+ fb->modifier == I915_FORMAT_MOD_Yf_TILED_CCS)
+ return 0;
-static void add_rps_boost_after_vblank(struct drm_crtc *crtc,
- struct dma_fence *fence)
-{
- struct wait_rps_boost *wait;
+ /*
+ * Hardware doesn't handle subpixel coordinates.
+ * Adjust to (macro)pixel boundary, but be careful not to
+ * increase the source viewport size, because that could
+ * push the downscaling factor out of bounds.
+ */
+ src_x = src->x1 >> 16;
+ src_w = drm_rect_width(src) >> 16;
+ src_y = src->y1 >> 16;
+ src_h = drm_rect_height(src) >> 16;
- if (!dma_fence_is_i915(fence))
- return;
+ drm_rect_init(src, src_x << 16, src_y << 16,
+ src_w << 16, src_h << 16);
- if (DISPLAY_VER(to_i915(crtc->dev)) < 6)
- return;
+ if (fb->format->format == DRM_FORMAT_RGB565 && rotated) {
+ hsub = 2;
+ vsub = 2;
+ } else {
+ hsub = fb->format->hsub;
+ vsub = fb->format->vsub;
+ }
- if (drm_crtc_vblank_get(crtc))
- return;
+ if (rotated)
+ hsub = vsub = max(hsub, vsub);
- wait = kmalloc(sizeof(*wait), GFP_KERNEL);
- if (!wait) {
- drm_crtc_vblank_put(crtc);
- return;
+ if (src_x % hsub || src_w % hsub) {
+ drm_dbg_kms(&i915->drm, "src x/w (%u, %u) must be a multiple of %u (rotated: %s)\n",
+ src_x, src_w, hsub, str_yes_no(rotated));
+ return -EINVAL;
}
- wait->request = to_request(dma_fence_get(fence));
- wait->crtc = crtc;
-
- wait->wait.func = do_rps_boost;
- wait->wait.flags = 0;
+ if (src_y % vsub || src_h % vsub) {
+ drm_dbg_kms(&i915->drm, "src y/h (%u, %u) must be a multiple of %u (rotated: %s)\n",
+ src_y, src_h, vsub, str_yes_no(rotated));
+ return -EINVAL;
+ }
- add_wait_queue(drm_crtc_vblank_waitqueue(crtc), &wait->wait);
+ return 0;
}
/**
@@ -988,7 +1028,7 @@ intel_prepare_plane_fb(struct drm_plane *_plane,
int ret;
if (old_obj) {
- const struct intel_crtc_state *crtc_state =
+ const struct intel_crtc_state *new_crtc_state =
intel_atomic_get_new_crtc_state(state,
to_intel_crtc(old_plane_state->hw.crtc));
@@ -1003,9 +1043,9 @@ intel_prepare_plane_fb(struct drm_plane *_plane,
* This should only fail upon a hung GPU, in which case we
* can safely continue.
*/
- if (intel_crtc_needs_modeset(crtc_state)) {
+ if (new_crtc_state && intel_crtc_needs_modeset(new_crtc_state)) {
ret = i915_sw_fence_await_reservation(&state->commit_ready,
- old_obj->base.resv, NULL,
+ old_obj->base.resv,
false, 0,
GFP_KERNEL);
if (ret < 0)
@@ -1039,8 +1079,7 @@ intel_prepare_plane_fb(struct drm_plane *_plane,
struct dma_fence *fence;
ret = i915_sw_fence_await_reservation(&state->commit_ready,
- obj->base.resv, NULL,
- false,
+ obj->base.resv, false,
i915_fence_timeout(dev_priv),
GFP_KERNEL);
if (ret < 0)
@@ -1049,13 +1088,13 @@ intel_prepare_plane_fb(struct drm_plane *_plane,
dma_resv_iter_begin(&cursor, obj->base.resv,
DMA_RESV_USAGE_WRITE);
dma_resv_for_each_fence_unlocked(&cursor, fence) {
- add_rps_boost_after_vblank(new_plane_state->hw.crtc,
- fence);
+ intel_display_rps_boost_after_vblank(new_plane_state->hw.crtc,
+ fence);
}
dma_resv_iter_end(&cursor);
} else {
- add_rps_boost_after_vblank(new_plane_state->hw.crtc,
- new_plane_state->uapi.fence);
+ intel_display_rps_boost_after_vblank(new_plane_state->hw.crtc,
+ new_plane_state->uapi.fence);
}
/*
@@ -1066,10 +1105,7 @@ intel_prepare_plane_fb(struct drm_plane *_plane,
* that are not quite steady state without resorting to forcing
* maximum clocks following a vblank miss (see do_rps_boost()).
*/
- if (!state->rps_interactive) {
- intel_rps_mark_interactive(&to_gt(dev_priv)->rps, true);
- state->rps_interactive = true;
- }
+ intel_display_rps_mark_interactive(dev_priv, state, true);
return 0;
@@ -1100,10 +1136,7 @@ intel_cleanup_plane_fb(struct drm_plane *plane,
if (!obj)
return;
- if (state->rps_interactive) {
- intel_rps_mark_interactive(&to_gt(dev_priv)->rps, false);
- state->rps_interactive = false;
- }
+ intel_display_rps_mark_interactive(dev_priv, state, false);
/* Should only be called after a successful intel_prepare_plane_fb()! */
intel_plane_unpin_fb(old_plane_state);
diff --git a/drivers/gpu/drm/i915/display/intel_atomic_plane.h b/drivers/gpu/drm/i915/display/intel_atomic_plane.h
index 74b6d3b169a7..191dad0efc8e 100644
--- a/drivers/gpu/drm/i915/display/intel_atomic_plane.h
+++ b/drivers/gpu/drm/i915/display/intel_atomic_plane.h
@@ -62,6 +62,7 @@ int intel_atomic_plane_check_clipping(struct intel_plane_state *plane_state,
struct intel_crtc_state *crtc_state,
int min_scale, int max_scale,
bool can_position);
+int intel_plane_check_src_coordinates(struct intel_plane_state *plane_state);
void intel_plane_set_invisible(struct intel_crtc_state *crtc_state,
struct intel_plane_state *plane_state);
void intel_plane_helper_add(struct intel_plane *plane);
diff --git a/drivers/gpu/drm/i915/display/intel_audio.c b/drivers/gpu/drm/i915/display/intel_audio.c
index aacbc6da84ef..3d5a9bbc6fde 100644
--- a/drivers/gpu/drm/i915/display/intel_audio.c
+++ b/drivers/gpu/drm/i915/display/intel_audio.c
@@ -71,6 +71,8 @@ struct intel_audio_funcs {
void (*audio_codec_disable)(struct intel_encoder *encoder,
const struct intel_crtc_state *old_crtc_state,
const struct drm_connector_state *old_conn_state);
+ void (*audio_codec_get_config)(struct intel_encoder *encoder,
+ struct intel_crtc_state *crtc_state);
};
/* DP N/M table */
@@ -250,7 +252,7 @@ static const struct hdmi_aud_ncts hdmi_aud_ncts_36bpp[] = {
/* get AUD_CONFIG_PIXEL_CLOCK_HDMI_* value for mode */
static u32 audio_config_hdmi_pixel_clock(const struct intel_crtc_state *crtc_state)
{
- struct drm_i915_private *dev_priv = to_i915(crtc_state->uapi.crtc->dev);
+ struct drm_i915_private *i915 = to_i915(crtc_state->uapi.crtc->dev);
const struct drm_display_mode *adjusted_mode =
&crtc_state->hw.adjusted_mode;
int i;
@@ -260,17 +262,17 @@ static u32 audio_config_hdmi_pixel_clock(const struct intel_crtc_state *crtc_sta
break;
}
- if (DISPLAY_VER(dev_priv) < 12 && adjusted_mode->crtc_clock > 148500)
+ if (DISPLAY_VER(i915) < 12 && adjusted_mode->crtc_clock > 148500)
i = ARRAY_SIZE(hdmi_audio_clock);
if (i == ARRAY_SIZE(hdmi_audio_clock)) {
- drm_dbg_kms(&dev_priv->drm,
+ drm_dbg_kms(&i915->drm,
"HDMI audio pixel clock setting for %d not found, falling back to defaults\n",
adjusted_mode->crtc_clock);
i = 1;
}
- drm_dbg_kms(&dev_priv->drm,
+ drm_dbg_kms(&i915->drm,
"Configuring HDMI audio for pixel clock %d (0x%08x)\n",
hdmi_audio_clock[i].clock,
hdmi_audio_clock[i].config);
@@ -304,96 +306,87 @@ static int audio_config_hdmi_get_n(const struct intel_crtc_state *crtc_state,
return 0;
}
-static bool intel_eld_uptodate(struct drm_connector *connector,
- i915_reg_t reg_eldv, u32 bits_eldv,
- i915_reg_t reg_elda, u32 bits_elda,
- i915_reg_t reg_edid)
+/* ELD buffer size in dwords */
+static int g4x_eld_buffer_size(struct drm_i915_private *i915)
{
- struct drm_i915_private *dev_priv = to_i915(connector->dev);
- const u8 *eld = connector->eld;
u32 tmp;
- int i;
- tmp = intel_de_read(dev_priv, reg_eldv);
- tmp &= bits_eldv;
+ tmp = intel_de_read(i915, G4X_AUD_CNTL_ST);
- if (!tmp)
- return false;
+ return REG_FIELD_GET(G4X_ELD_BUFFER_SIZE_MASK, tmp);
+}
- tmp = intel_de_read(dev_priv, reg_elda);
- tmp &= ~bits_elda;
- intel_de_write(dev_priv, reg_elda, tmp);
+static void g4x_audio_codec_get_config(struct intel_encoder *encoder,
+ struct intel_crtc_state *crtc_state)
+{
+ struct drm_i915_private *i915 = to_i915(encoder->base.dev);
+ u32 *eld = (u32 *)crtc_state->eld;
+ int eld_buffer_size, len, i;
+ u32 tmp;
+
+ tmp = intel_de_read(i915, G4X_AUD_CNTL_ST);
+ if ((tmp & G4X_ELD_VALID) == 0)
+ return;
- for (i = 0; i < drm_eld_size(eld) / 4; i++)
- if (intel_de_read(dev_priv, reg_edid) != *((const u32 *)eld + i))
- return false;
+ intel_de_rmw(i915, G4X_AUD_CNTL_ST, G4X_ELD_ADDRESS_MASK, 0);
- return true;
+ eld_buffer_size = g4x_eld_buffer_size(i915);
+ len = min_t(int, sizeof(crtc_state->eld) / 4, eld_buffer_size);
+
+ for (i = 0; i < len; i++)
+ eld[i] = intel_de_read(i915, G4X_HDMIW_HDMIEDID);
}
static void g4x_audio_codec_disable(struct intel_encoder *encoder,
const struct intel_crtc_state *old_crtc_state,
const struct drm_connector_state *old_conn_state)
{
- struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
- u32 eldv, tmp;
-
- tmp = intel_de_read(dev_priv, G4X_AUD_VID_DID);
- if (tmp == INTEL_AUDIO_DEVBLC || tmp == INTEL_AUDIO_DEVCL)
- eldv = G4X_ELDV_DEVCL_DEVBLC;
- else
- eldv = G4X_ELDV_DEVCTG;
+ struct drm_i915_private *i915 = to_i915(encoder->base.dev);
+ struct intel_crtc *crtc = to_intel_crtc(old_crtc_state->uapi.crtc);
/* Invalidate ELD */
- tmp = intel_de_read(dev_priv, G4X_AUD_CNTL_ST);
- tmp &= ~eldv;
- intel_de_write(dev_priv, G4X_AUD_CNTL_ST, tmp);
+ intel_de_rmw(i915, G4X_AUD_CNTL_ST,
+ G4X_ELD_VALID, 0);
+
+ intel_crtc_wait_for_next_vblank(crtc);
+ intel_crtc_wait_for_next_vblank(crtc);
}
static void g4x_audio_codec_enable(struct intel_encoder *encoder,
const struct intel_crtc_state *crtc_state,
const struct drm_connector_state *conn_state)
{
- struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
- struct drm_connector *connector = conn_state->connector;
- const u8 *eld = connector->eld;
- u32 eldv;
- u32 tmp;
- int len, i;
+ struct drm_i915_private *i915 = to_i915(encoder->base.dev);
+ struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
+ const u32 *eld = (const u32 *)crtc_state->eld;
+ int eld_buffer_size, len, i;
- tmp = intel_de_read(dev_priv, G4X_AUD_VID_DID);
- if (tmp == INTEL_AUDIO_DEVBLC || tmp == INTEL_AUDIO_DEVCL)
- eldv = G4X_ELDV_DEVCL_DEVBLC;
- else
- eldv = G4X_ELDV_DEVCTG;
+ intel_crtc_wait_for_next_vblank(crtc);
- if (intel_eld_uptodate(connector,
- G4X_AUD_CNTL_ST, eldv,
- G4X_AUD_CNTL_ST, G4X_ELD_ADDR_MASK,
- G4X_HDMIW_HDMIEDID))
- return;
+ intel_de_rmw(i915, G4X_AUD_CNTL_ST,
+ G4X_ELD_VALID | G4X_ELD_ADDRESS_MASK, 0);
- tmp = intel_de_read(dev_priv, G4X_AUD_CNTL_ST);
- tmp &= ~(eldv | G4X_ELD_ADDR_MASK);
- len = (tmp >> 9) & 0x1f; /* ELD buffer size */
- intel_de_write(dev_priv, G4X_AUD_CNTL_ST, tmp);
+ eld_buffer_size = g4x_eld_buffer_size(i915);
+ len = min(drm_eld_size(crtc_state->eld) / 4, eld_buffer_size);
- len = min(drm_eld_size(eld) / 4, len);
for (i = 0; i < len; i++)
- intel_de_write(dev_priv, G4X_HDMIW_HDMIEDID,
- *((const u32 *)eld + i));
+ intel_de_write(i915, G4X_HDMIW_HDMIEDID, eld[i]);
+ for (; i < eld_buffer_size; i++)
+ intel_de_write(i915, G4X_HDMIW_HDMIEDID, 0);
+
+ drm_WARN_ON(&i915->drm,
+ (intel_de_read(i915, G4X_AUD_CNTL_ST) & G4X_ELD_ADDRESS_MASK) != 0);
- tmp = intel_de_read(dev_priv, G4X_AUD_CNTL_ST);
- tmp |= eldv;
- intel_de_write(dev_priv, G4X_AUD_CNTL_ST, tmp);
+ intel_de_rmw(i915, G4X_AUD_CNTL_ST,
+ 0, G4X_ELD_VALID);
}
static void
hsw_dp_audio_config_update(struct intel_encoder *encoder,
const struct intel_crtc_state *crtc_state)
{
- struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
- struct i915_audio_component *acomp = dev_priv->display.audio.component;
+ struct drm_i915_private *i915 = to_i915(encoder->base.dev);
+ struct i915_audio_component *acomp = i915->display.audio.component;
enum transcoder cpu_transcoder = crtc_state->cpu_transcoder;
enum port port = encoder->port;
const struct dp_aud_n_m *nm;
@@ -403,12 +396,12 @@ hsw_dp_audio_config_update(struct intel_encoder *encoder,
rate = acomp ? acomp->aud_sample_rate[port] : 0;
nm = audio_config_dp_get_n_m(crtc_state, rate);
if (nm)
- drm_dbg_kms(&dev_priv->drm, "using Maud %u, Naud %u\n", nm->m,
+ drm_dbg_kms(&i915->drm, "using Maud %u, Naud %u\n", nm->m,
nm->n);
else
- drm_dbg_kms(&dev_priv->drm, "using automatic Maud, Naud\n");
+ drm_dbg_kms(&i915->drm, "using automatic Maud, Naud\n");
- tmp = intel_de_read(dev_priv, HSW_AUD_CFG(cpu_transcoder));
+ tmp = intel_de_read(i915, HSW_AUD_CFG(cpu_transcoder));
tmp &= ~AUD_CONFIG_N_VALUE_INDEX;
tmp &= ~AUD_CONFIG_PIXEL_CLOCK_HDMI_MASK;
tmp &= ~AUD_CONFIG_N_PROG_ENABLE;
@@ -420,9 +413,9 @@ hsw_dp_audio_config_update(struct intel_encoder *encoder,
tmp |= AUD_CONFIG_N_PROG_ENABLE;
}
- intel_de_write(dev_priv, HSW_AUD_CFG(cpu_transcoder), tmp);
+ intel_de_write(i915, HSW_AUD_CFG(cpu_transcoder), tmp);
- tmp = intel_de_read(dev_priv, HSW_AUD_M_CTS_ENABLE(cpu_transcoder));
+ tmp = intel_de_read(i915, HSW_AUD_M_CTS_ENABLE(cpu_transcoder));
tmp &= ~AUD_CONFIG_M_MASK;
tmp &= ~AUD_M_CTS_M_VALUE_INDEX;
tmp &= ~AUD_M_CTS_M_PROG_ENABLE;
@@ -433,15 +426,15 @@ hsw_dp_audio_config_update(struct intel_encoder *encoder,
tmp |= AUD_M_CTS_M_PROG_ENABLE;
}
- intel_de_write(dev_priv, HSW_AUD_M_CTS_ENABLE(cpu_transcoder), tmp);
+ intel_de_write(i915, HSW_AUD_M_CTS_ENABLE(cpu_transcoder), tmp);
}
static void
hsw_hdmi_audio_config_update(struct intel_encoder *encoder,
const struct intel_crtc_state *crtc_state)
{
- struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
- struct i915_audio_component *acomp = dev_priv->display.audio.component;
+ struct drm_i915_private *i915 = to_i915(encoder->base.dev);
+ struct i915_audio_component *acomp = i915->display.audio.component;
enum transcoder cpu_transcoder = crtc_state->cpu_transcoder;
enum port port = encoder->port;
int n, rate;
@@ -449,7 +442,7 @@ hsw_hdmi_audio_config_update(struct intel_encoder *encoder,
rate = acomp ? acomp->aud_sample_rate[port] : 0;
- tmp = intel_de_read(dev_priv, HSW_AUD_CFG(cpu_transcoder));
+ tmp = intel_de_read(i915, HSW_AUD_CFG(cpu_transcoder));
tmp &= ~AUD_CONFIG_N_VALUE_INDEX;
tmp &= ~AUD_CONFIG_PIXEL_CLOCK_HDMI_MASK;
tmp &= ~AUD_CONFIG_N_PROG_ENABLE;
@@ -457,25 +450,25 @@ hsw_hdmi_audio_config_update(struct intel_encoder *encoder,
n = audio_config_hdmi_get_n(crtc_state, rate);
if (n != 0) {
- drm_dbg_kms(&dev_priv->drm, "using N %d\n", n);
+ drm_dbg_kms(&i915->drm, "using N %d\n", n);
tmp &= ~AUD_CONFIG_N_MASK;
tmp |= AUD_CONFIG_N(n);
tmp |= AUD_CONFIG_N_PROG_ENABLE;
} else {
- drm_dbg_kms(&dev_priv->drm, "using automatic N\n");
+ drm_dbg_kms(&i915->drm, "using automatic N\n");
}
- intel_de_write(dev_priv, HSW_AUD_CFG(cpu_transcoder), tmp);
+ intel_de_write(i915, HSW_AUD_CFG(cpu_transcoder), tmp);
/*
* Let's disable "Enable CTS or M Prog bit"
* and let HW calculate the value
*/
- tmp = intel_de_read(dev_priv, HSW_AUD_M_CTS_ENABLE(cpu_transcoder));
+ tmp = intel_de_read(i915, HSW_AUD_M_CTS_ENABLE(cpu_transcoder));
tmp &= ~AUD_M_CTS_M_PROG_ENABLE;
tmp &= ~AUD_M_CTS_M_VALUE_INDEX;
- intel_de_write(dev_priv, HSW_AUD_M_CTS_ENABLE(cpu_transcoder), tmp);
+ intel_de_write(i915, HSW_AUD_M_CTS_ENABLE(cpu_transcoder), tmp);
}
static void
@@ -492,29 +485,33 @@ static void hsw_audio_codec_disable(struct intel_encoder *encoder,
const struct intel_crtc_state *old_crtc_state,
const struct drm_connector_state *old_conn_state)
{
- struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
+ struct drm_i915_private *i915 = to_i915(encoder->base.dev);
+ struct intel_crtc *crtc = to_intel_crtc(old_crtc_state->uapi.crtc);
enum transcoder cpu_transcoder = old_crtc_state->cpu_transcoder;
- u32 tmp;
- mutex_lock(&dev_priv->display.audio.mutex);
+ mutex_lock(&i915->display.audio.mutex);
/* Disable timestamps */
- tmp = intel_de_read(dev_priv, HSW_AUD_CFG(cpu_transcoder));
- tmp &= ~AUD_CONFIG_N_VALUE_INDEX;
- tmp |= AUD_CONFIG_N_PROG_ENABLE;
- tmp &= ~AUD_CONFIG_UPPER_N_MASK;
- tmp &= ~AUD_CONFIG_LOWER_N_MASK;
- if (intel_crtc_has_dp_encoder(old_crtc_state))
- tmp |= AUD_CONFIG_N_VALUE_INDEX;
- intel_de_write(dev_priv, HSW_AUD_CFG(cpu_transcoder), tmp);
+ intel_de_rmw(i915, HSW_AUD_CFG(cpu_transcoder),
+ AUD_CONFIG_N_VALUE_INDEX |
+ AUD_CONFIG_UPPER_N_MASK |
+ AUD_CONFIG_LOWER_N_MASK,
+ AUD_CONFIG_N_PROG_ENABLE |
+ (intel_crtc_has_dp_encoder(old_crtc_state) ?
+ AUD_CONFIG_N_VALUE_INDEX : 0));
/* Invalidate ELD */
- tmp = intel_de_read(dev_priv, HSW_AUD_PIN_ELD_CP_VLD);
- tmp &= ~AUDIO_ELD_VALID(cpu_transcoder);
- tmp &= ~AUDIO_OUTPUT_ENABLE(cpu_transcoder);
- intel_de_write(dev_priv, HSW_AUD_PIN_ELD_CP_VLD, tmp);
+ intel_de_rmw(i915, HSW_AUD_PIN_ELD_CP_VLD,
+ AUDIO_ELD_VALID(cpu_transcoder), 0);
+
+ intel_crtc_wait_for_next_vblank(crtc);
+ intel_crtc_wait_for_next_vblank(crtc);
- mutex_unlock(&dev_priv->display.audio.mutex);
+ /* Disable audio presence detect */
+ intel_de_rmw(i915, HSW_AUD_PIN_ELD_CP_VLD,
+ AUDIO_OUTPUT_ENABLE(cpu_transcoder), 0);
+
+ mutex_unlock(&i915->display.audio.mutex);
}
static unsigned int calc_hblank_early_prog(struct intel_encoder *encoder,
@@ -584,8 +581,7 @@ static void enable_audio_dsc_wa(struct intel_encoder *encoder,
const struct intel_crtc_state *crtc_state)
{
struct drm_i915_private *i915 = to_i915(encoder->base.dev);
- struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
- enum pipe pipe = crtc->pipe;
+ enum transcoder cpu_transcoder = crtc_state->cpu_transcoder;
unsigned int hblank_early_prog, samples_room;
unsigned int val;
@@ -595,209 +591,207 @@ static void enable_audio_dsc_wa(struct intel_encoder *encoder,
val = intel_de_read(i915, AUD_CONFIG_BE);
if (DISPLAY_VER(i915) == 11)
- val |= HBLANK_EARLY_ENABLE_ICL(pipe);
+ val |= HBLANK_EARLY_ENABLE_ICL(cpu_transcoder);
else if (DISPLAY_VER(i915) >= 12)
- val |= HBLANK_EARLY_ENABLE_TGL(pipe);
+ val |= HBLANK_EARLY_ENABLE_TGL(cpu_transcoder);
if (crtc_state->dsc.compression_enable &&
crtc_state->hw.adjusted_mode.hdisplay >= 3840 &&
crtc_state->hw.adjusted_mode.vdisplay >= 2160) {
/* Get hblank early enable value required */
- val &= ~HBLANK_START_COUNT_MASK(pipe);
+ val &= ~HBLANK_START_COUNT_MASK(cpu_transcoder);
hblank_early_prog = calc_hblank_early_prog(encoder, crtc_state);
if (hblank_early_prog < 32)
- val |= HBLANK_START_COUNT(pipe, HBLANK_START_COUNT_32);
+ val |= HBLANK_START_COUNT(cpu_transcoder, HBLANK_START_COUNT_32);
else if (hblank_early_prog < 64)
- val |= HBLANK_START_COUNT(pipe, HBLANK_START_COUNT_64);
+ val |= HBLANK_START_COUNT(cpu_transcoder, HBLANK_START_COUNT_64);
else if (hblank_early_prog < 96)
- val |= HBLANK_START_COUNT(pipe, HBLANK_START_COUNT_96);
+ val |= HBLANK_START_COUNT(cpu_transcoder, HBLANK_START_COUNT_96);
else
- val |= HBLANK_START_COUNT(pipe, HBLANK_START_COUNT_128);
+ val |= HBLANK_START_COUNT(cpu_transcoder, HBLANK_START_COUNT_128);
/* Get samples room value required */
- val &= ~NUMBER_SAMPLES_PER_LINE_MASK(pipe);
+ val &= ~NUMBER_SAMPLES_PER_LINE_MASK(cpu_transcoder);
samples_room = calc_samples_room(crtc_state);
if (samples_room < 3)
- val |= NUMBER_SAMPLES_PER_LINE(pipe, samples_room);
+ val |= NUMBER_SAMPLES_PER_LINE(cpu_transcoder, samples_room);
else /* Program 0 i.e "All Samples available in buffer" */
- val |= NUMBER_SAMPLES_PER_LINE(pipe, 0x0);
+ val |= NUMBER_SAMPLES_PER_LINE(cpu_transcoder, 0x0);
}
intel_de_write(i915, AUD_CONFIG_BE, val);
}
-#undef ROUNDING_FACTOR
-
static void hsw_audio_codec_enable(struct intel_encoder *encoder,
const struct intel_crtc_state *crtc_state,
const struct drm_connector_state *conn_state)
{
- struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
- struct drm_connector *connector = conn_state->connector;
+ struct drm_i915_private *i915 = to_i915(encoder->base.dev);
+ struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
enum transcoder cpu_transcoder = crtc_state->cpu_transcoder;
- const u8 *eld = connector->eld;
- u32 tmp;
- int len, i;
- mutex_lock(&dev_priv->display.audio.mutex);
+ mutex_lock(&i915->display.audio.mutex);
/* Enable Audio WA for 4k DSC usecases */
if (intel_crtc_has_type(crtc_state, INTEL_OUTPUT_DP))
enable_audio_dsc_wa(encoder, crtc_state);
- /* Enable audio presence detect, invalidate ELD */
- tmp = intel_de_read(dev_priv, HSW_AUD_PIN_ELD_CP_VLD);
- tmp |= AUDIO_OUTPUT_ENABLE(cpu_transcoder);
- tmp &= ~AUDIO_ELD_VALID(cpu_transcoder);
- intel_de_write(dev_priv, HSW_AUD_PIN_ELD_CP_VLD, tmp);
+ /* Enable audio presence detect */
+ intel_de_rmw(i915, HSW_AUD_PIN_ELD_CP_VLD,
+ 0, AUDIO_OUTPUT_ENABLE(cpu_transcoder));
- /*
- * FIXME: We're supposed to wait for vblank here, but we have vblanks
- * disabled during the mode set. The proper fix would be to push the
- * rest of the setup into a vblank work item, queued here, but the
- * infrastructure is not there yet.
- */
+ intel_crtc_wait_for_next_vblank(crtc);
- /* Reset ELD write address */
- tmp = intel_de_read(dev_priv, HSW_AUD_DIP_ELD_CTRL(cpu_transcoder));
- tmp &= ~IBX_ELD_ADDRESS_MASK;
- intel_de_write(dev_priv, HSW_AUD_DIP_ELD_CTRL(cpu_transcoder), tmp);
-
- /* Up to 84 bytes of hw ELD buffer */
- len = min(drm_eld_size(eld), 84);
- for (i = 0; i < len / 4; i++)
- intel_de_write(dev_priv, HSW_AUD_EDID_DATA(cpu_transcoder),
- *((const u32 *)eld + i));
+ /* Invalidate ELD */
+ intel_de_rmw(i915, HSW_AUD_PIN_ELD_CP_VLD,
+ AUDIO_ELD_VALID(cpu_transcoder), 0);
- /* ELD valid */
- tmp = intel_de_read(dev_priv, HSW_AUD_PIN_ELD_CP_VLD);
- tmp |= AUDIO_ELD_VALID(cpu_transcoder);
- intel_de_write(dev_priv, HSW_AUD_PIN_ELD_CP_VLD, tmp);
+ /*
+ * The audio componenent is used to convey the ELD
+ * instead using of the hardware ELD buffer.
+ */
/* Enable timestamps */
hsw_audio_config_update(encoder, crtc_state);
- mutex_unlock(&dev_priv->display.audio.mutex);
+ mutex_unlock(&i915->display.audio.mutex);
}
-static void ilk_audio_codec_disable(struct intel_encoder *encoder,
+struct ibx_audio_regs {
+ i915_reg_t hdmiw_hdmiedid, aud_config, aud_cntl_st, aud_cntrl_st2;
+};
+
+static void ibx_audio_regs_init(struct drm_i915_private *i915,
+ enum pipe pipe,
+ struct ibx_audio_regs *regs)
+{
+ if (IS_VALLEYVIEW(i915) || IS_CHERRYVIEW(i915)) {
+ regs->hdmiw_hdmiedid = VLV_HDMIW_HDMIEDID(pipe);
+ regs->aud_config = VLV_AUD_CFG(pipe);
+ regs->aud_cntl_st = VLV_AUD_CNTL_ST(pipe);
+ regs->aud_cntrl_st2 = VLV_AUD_CNTL_ST2;
+ } else if (HAS_PCH_CPT(i915)) {
+ regs->hdmiw_hdmiedid = CPT_HDMIW_HDMIEDID(pipe);
+ regs->aud_config = CPT_AUD_CFG(pipe);
+ regs->aud_cntl_st = CPT_AUD_CNTL_ST(pipe);
+ regs->aud_cntrl_st2 = CPT_AUD_CNTRL_ST2;
+ } else if (HAS_PCH_IBX(i915)) {
+ regs->hdmiw_hdmiedid = IBX_HDMIW_HDMIEDID(pipe);
+ regs->aud_config = IBX_AUD_CFG(pipe);
+ regs->aud_cntl_st = IBX_AUD_CNTL_ST(pipe);
+ regs->aud_cntrl_st2 = IBX_AUD_CNTL_ST2;
+ }
+}
+
+static void ibx_audio_codec_disable(struct intel_encoder *encoder,
const struct intel_crtc_state *old_crtc_state,
const struct drm_connector_state *old_conn_state)
{
- struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
+ struct drm_i915_private *i915 = to_i915(encoder->base.dev);
struct intel_crtc *crtc = to_intel_crtc(old_crtc_state->uapi.crtc);
- enum pipe pipe = crtc->pipe;
enum port port = encoder->port;
- u32 tmp, eldv;
- i915_reg_t aud_config, aud_cntrl_st2;
+ enum pipe pipe = crtc->pipe;
+ struct ibx_audio_regs regs;
- if (drm_WARN_ON(&dev_priv->drm, port == PORT_A))
+ if (drm_WARN_ON(&i915->drm, port == PORT_A))
return;
- if (HAS_PCH_IBX(dev_priv)) {
- aud_config = IBX_AUD_CFG(pipe);
- aud_cntrl_st2 = IBX_AUD_CNTL_ST2;
- } else if (IS_VALLEYVIEW(dev_priv) || IS_CHERRYVIEW(dev_priv)) {
- aud_config = VLV_AUD_CFG(pipe);
- aud_cntrl_st2 = VLV_AUD_CNTL_ST2;
- } else {
- aud_config = CPT_AUD_CFG(pipe);
- aud_cntrl_st2 = CPT_AUD_CNTRL_ST2;
- }
+ ibx_audio_regs_init(i915, pipe, &regs);
- /* Disable timestamps */
- tmp = intel_de_read(dev_priv, aud_config);
- tmp &= ~AUD_CONFIG_N_VALUE_INDEX;
- tmp |= AUD_CONFIG_N_PROG_ENABLE;
- tmp &= ~AUD_CONFIG_UPPER_N_MASK;
- tmp &= ~AUD_CONFIG_LOWER_N_MASK;
- if (intel_crtc_has_dp_encoder(old_crtc_state))
- tmp |= AUD_CONFIG_N_VALUE_INDEX;
- intel_de_write(dev_priv, aud_config, tmp);
+ mutex_lock(&i915->display.audio.mutex);
- eldv = IBX_ELD_VALID(port);
+ /* Disable timestamps */
+ intel_de_rmw(i915, regs.aud_config,
+ AUD_CONFIG_N_VALUE_INDEX |
+ AUD_CONFIG_UPPER_N_MASK |
+ AUD_CONFIG_LOWER_N_MASK,
+ AUD_CONFIG_N_PROG_ENABLE |
+ (intel_crtc_has_dp_encoder(old_crtc_state) ?
+ AUD_CONFIG_N_VALUE_INDEX : 0));
/* Invalidate ELD */
- tmp = intel_de_read(dev_priv, aud_cntrl_st2);
- tmp &= ~eldv;
- intel_de_write(dev_priv, aud_cntrl_st2, tmp);
+ intel_de_rmw(i915, regs.aud_cntrl_st2,
+ IBX_ELD_VALID(port), 0);
+
+ mutex_unlock(&i915->display.audio.mutex);
+
+ intel_crtc_wait_for_next_vblank(crtc);
+ intel_crtc_wait_for_next_vblank(crtc);
}
-static void ilk_audio_codec_enable(struct intel_encoder *encoder,
+static void ibx_audio_codec_enable(struct intel_encoder *encoder,
const struct intel_crtc_state *crtc_state,
const struct drm_connector_state *conn_state)
{
- struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
+ struct drm_i915_private *i915 = to_i915(encoder->base.dev);
struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
- struct drm_connector *connector = conn_state->connector;
- enum pipe pipe = crtc->pipe;
enum port port = encoder->port;
- const u8 *eld = connector->eld;
- u32 tmp, eldv;
- int len, i;
- i915_reg_t hdmiw_hdmiedid, aud_config, aud_cntl_st, aud_cntrl_st2;
+ enum pipe pipe = crtc->pipe;
+ struct ibx_audio_regs regs;
- if (drm_WARN_ON(&dev_priv->drm, port == PORT_A))
+ if (drm_WARN_ON(&i915->drm, port == PORT_A))
return;
+ intel_crtc_wait_for_next_vblank(crtc);
+
+ ibx_audio_regs_init(i915, pipe, &regs);
+
+ mutex_lock(&i915->display.audio.mutex);
+
+ /* Invalidate ELD */
+ intel_de_rmw(i915, regs.aud_cntrl_st2,
+ IBX_ELD_VALID(port), 0);
+
/*
- * FIXME: We're supposed to wait for vblank here, but we have vblanks
- * disabled during the mode set. The proper fix would be to push the
- * rest of the setup into a vblank work item, queued here, but the
- * infrastructure is not there yet.
+ * The audio componenent is used to convey the ELD
+ * instead using of the hardware ELD buffer.
*/
- if (HAS_PCH_IBX(dev_priv)) {
- hdmiw_hdmiedid = IBX_HDMIW_HDMIEDID(pipe);
- aud_config = IBX_AUD_CFG(pipe);
- aud_cntl_st = IBX_AUD_CNTL_ST(pipe);
- aud_cntrl_st2 = IBX_AUD_CNTL_ST2;
- } else if (IS_VALLEYVIEW(dev_priv) ||
- IS_CHERRYVIEW(dev_priv)) {
- hdmiw_hdmiedid = VLV_HDMIW_HDMIEDID(pipe);
- aud_config = VLV_AUD_CFG(pipe);
- aud_cntl_st = VLV_AUD_CNTL_ST(pipe);
- aud_cntrl_st2 = VLV_AUD_CNTL_ST2;
- } else {
- hdmiw_hdmiedid = CPT_HDMIW_HDMIEDID(pipe);
- aud_config = CPT_AUD_CFG(pipe);
- aud_cntl_st = CPT_AUD_CNTL_ST(pipe);
- aud_cntrl_st2 = CPT_AUD_CNTRL_ST2;
+ /* Enable timestamps */
+ intel_de_rmw(i915, regs.aud_config,
+ AUD_CONFIG_N_VALUE_INDEX |
+ AUD_CONFIG_N_PROG_ENABLE |
+ AUD_CONFIG_PIXEL_CLOCK_HDMI_MASK,
+ (intel_crtc_has_dp_encoder(crtc_state) ?
+ AUD_CONFIG_N_VALUE_INDEX :
+ audio_config_hdmi_pixel_clock(crtc_state)));
+
+ mutex_unlock(&i915->display.audio.mutex);
+}
+
+void intel_audio_sdp_split_update(struct intel_encoder *encoder,
+ const struct intel_crtc_state *crtc_state)
+{
+ struct drm_i915_private *i915 = to_i915(encoder->base.dev);
+ enum transcoder trans = crtc_state->cpu_transcoder;
+
+ if (HAS_DP20(i915))
+ intel_de_rmw(i915, AUD_DP_2DOT0_CTRL(trans), AUD_ENABLE_SDP_SPLIT,
+ crtc_state->sdp_split_enable ? AUD_ENABLE_SDP_SPLIT : 0);
+}
+
+bool intel_audio_compute_config(struct intel_encoder *encoder,
+ struct intel_crtc_state *crtc_state,
+ struct drm_connector_state *conn_state)
+{
+ struct drm_i915_private *i915 = to_i915(encoder->base.dev);
+ struct drm_connector *connector = conn_state->connector;
+ const struct drm_display_mode *adjusted_mode =
+ &crtc_state->hw.adjusted_mode;
+
+ if (!connector->eld[0]) {
+ drm_dbg_kms(&i915->drm,
+ "Bogus ELD on [CONNECTOR:%d:%s]\n",
+ connector->base.id, connector->name);
+ return false;
}
- eldv = IBX_ELD_VALID(port);
+ BUILD_BUG_ON(sizeof(crtc_state->eld) != sizeof(connector->eld));
+ memcpy(crtc_state->eld, connector->eld, sizeof(crtc_state->eld));
- /* Invalidate ELD */
- tmp = intel_de_read(dev_priv, aud_cntrl_st2);
- tmp &= ~eldv;
- intel_de_write(dev_priv, aud_cntrl_st2, tmp);
-
- /* Reset ELD write address */
- tmp = intel_de_read(dev_priv, aud_cntl_st);
- tmp &= ~IBX_ELD_ADDRESS_MASK;
- intel_de_write(dev_priv, aud_cntl_st, tmp);
-
- /* Up to 84 bytes of hw ELD buffer */
- len = min(drm_eld_size(eld), 84);
- for (i = 0; i < len / 4; i++)
- intel_de_write(dev_priv, hdmiw_hdmiedid,
- *((const u32 *)eld + i));
-
- /* ELD valid */
- tmp = intel_de_read(dev_priv, aud_cntrl_st2);
- tmp |= eldv;
- intel_de_write(dev_priv, aud_cntrl_st2, tmp);
+ crtc_state->eld[6] = drm_av_sync_delay(connector, adjusted_mode) / 2;
- /* Enable timestamps */
- tmp = intel_de_read(dev_priv, aud_config);
- tmp &= ~AUD_CONFIG_N_VALUE_INDEX;
- tmp &= ~AUD_CONFIG_N_PROG_ENABLE;
- tmp &= ~AUD_CONFIG_PIXEL_CLOCK_HDMI_MASK;
- if (intel_crtc_has_dp_encoder(crtc_state))
- tmp |= AUD_CONFIG_N_VALUE_INDEX;
- else
- tmp |= audio_config_hdmi_pixel_clock(crtc_state);
- intel_de_write(dev_priv, aud_config, tmp);
+ return true;
}
/**
@@ -813,53 +807,48 @@ void intel_audio_codec_enable(struct intel_encoder *encoder,
const struct intel_crtc_state *crtc_state,
const struct drm_connector_state *conn_state)
{
- struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
- struct i915_audio_component *acomp = dev_priv->display.audio.component;
+ struct drm_i915_private *i915 = to_i915(encoder->base.dev);
+ struct i915_audio_component *acomp = i915->display.audio.component;
struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
- struct drm_connector *connector = conn_state->connector;
- const struct drm_display_mode *adjusted_mode =
- &crtc_state->hw.adjusted_mode;
+ struct intel_connector *connector = to_intel_connector(conn_state->connector);
+ enum transcoder cpu_transcoder = crtc_state->cpu_transcoder;
+ struct intel_audio_state *audio_state;
enum port port = encoder->port;
- enum pipe pipe = crtc->pipe;
if (!crtc_state->has_audio)
return;
- drm_dbg_kms(&dev_priv->drm, "[CONNECTOR:%d:%s][ENCODER:%d:%s] Enable audio codec on pipe %c, %u bytes ELD\n",
- connector->base.id, connector->name,
+ drm_dbg_kms(&i915->drm, "[CONNECTOR:%d:%s][ENCODER:%d:%s] Enable audio codec on [CRTC:%d:%s], %u bytes ELD\n",
+ connector->base.base.id, connector->base.name,
encoder->base.base.id, encoder->base.name,
- pipe_name(pipe), drm_eld_size(connector->eld));
+ crtc->base.base.id, crtc->base.name,
+ drm_eld_size(crtc_state->eld));
- /* FIXME precompute the ELD in .compute_config() */
- if (!connector->eld[0])
- drm_dbg_kms(&dev_priv->drm,
- "Bogus ELD on [CONNECTOR:%d:%s]\n",
- connector->base.id, connector->name);
+ if (i915->display.funcs.audio)
+ i915->display.funcs.audio->audio_codec_enable(encoder,
+ crtc_state,
+ conn_state);
- connector->eld[6] = drm_av_sync_delay(connector, adjusted_mode) / 2;
+ mutex_lock(&i915->display.audio.mutex);
- if (dev_priv->display.funcs.audio)
- dev_priv->display.funcs.audio->audio_codec_enable(encoder,
- crtc_state,
- conn_state);
+ audio_state = &i915->display.audio.state[cpu_transcoder];
- mutex_lock(&dev_priv->display.audio.mutex);
- encoder->audio_connector = connector;
+ audio_state->encoder = encoder;
+ BUILD_BUG_ON(sizeof(audio_state->eld) != sizeof(crtc_state->eld));
+ memcpy(audio_state->eld, crtc_state->eld, sizeof(audio_state->eld));
- /* referred in audio callbacks */
- dev_priv->display.audio.encoder_map[pipe] = encoder;
- mutex_unlock(&dev_priv->display.audio.mutex);
+ mutex_unlock(&i915->display.audio.mutex);
if (acomp && acomp->base.audio_ops &&
acomp->base.audio_ops->pin_eld_notify) {
- /* audio drivers expect pipe = -1 to indicate Non-MST cases */
+ /* audio drivers expect cpu_transcoder = -1 to indicate Non-MST cases */
if (!intel_crtc_has_type(crtc_state, INTEL_OUTPUT_DP_MST))
- pipe = -1;
+ cpu_transcoder = -1;
acomp->base.audio_ops->pin_eld_notify(acomp->base.audio_ops->audio_ptr,
- (int) port, (int) pipe);
+ (int)port, (int)cpu_transcoder);
}
- intel_lpe_audio_notify(dev_priv, pipe, port, connector->eld,
+ intel_lpe_audio_notify(i915, cpu_transcoder, port, crtc_state->eld,
crtc_state->port_clock,
intel_crtc_has_dp_encoder(crtc_state));
}
@@ -877,72 +866,108 @@ void intel_audio_codec_disable(struct intel_encoder *encoder,
const struct intel_crtc_state *old_crtc_state,
const struct drm_connector_state *old_conn_state)
{
- struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
- struct i915_audio_component *acomp = dev_priv->display.audio.component;
+ struct drm_i915_private *i915 = to_i915(encoder->base.dev);
+ struct i915_audio_component *acomp = i915->display.audio.component;
struct intel_crtc *crtc = to_intel_crtc(old_crtc_state->uapi.crtc);
- struct drm_connector *connector = old_conn_state->connector;
+ struct intel_connector *connector = to_intel_connector(old_conn_state->connector);
+ enum transcoder cpu_transcoder = old_crtc_state->cpu_transcoder;
+ struct intel_audio_state *audio_state;
enum port port = encoder->port;
- enum pipe pipe = crtc->pipe;
if (!old_crtc_state->has_audio)
return;
- drm_dbg_kms(&dev_priv->drm, "[CONNECTOR:%d:%s][ENCODER:%d:%s] Disable audio codec on pipe %c\n",
- connector->base.id, connector->name,
- encoder->base.base.id, encoder->base.name, pipe_name(pipe));
+ drm_dbg_kms(&i915->drm, "[CONNECTOR:%d:%s][ENCODER:%d:%s] Disable audio codec on [CRTC:%d:%s]\n",
+ connector->base.base.id, connector->base.name,
+ encoder->base.base.id, encoder->base.name,
+ crtc->base.base.id, crtc->base.name);
+
+ if (i915->display.funcs.audio)
+ i915->display.funcs.audio->audio_codec_disable(encoder,
+ old_crtc_state,
+ old_conn_state);
+
+ mutex_lock(&i915->display.audio.mutex);
+
+ audio_state = &i915->display.audio.state[cpu_transcoder];
- if (dev_priv->display.funcs.audio)
- dev_priv->display.funcs.audio->audio_codec_disable(encoder,
- old_crtc_state,
- old_conn_state);
+ audio_state->encoder = NULL;
+ memset(audio_state->eld, 0, sizeof(audio_state->eld));
- mutex_lock(&dev_priv->display.audio.mutex);
- encoder->audio_connector = NULL;
- dev_priv->display.audio.encoder_map[pipe] = NULL;
- mutex_unlock(&dev_priv->display.audio.mutex);
+ mutex_unlock(&i915->display.audio.mutex);
if (acomp && acomp->base.audio_ops &&
acomp->base.audio_ops->pin_eld_notify) {
- /* audio drivers expect pipe = -1 to indicate Non-MST cases */
+ /* audio drivers expect cpu_transcoder = -1 to indicate Non-MST cases */
if (!intel_crtc_has_type(old_crtc_state, INTEL_OUTPUT_DP_MST))
- pipe = -1;
+ cpu_transcoder = -1;
acomp->base.audio_ops->pin_eld_notify(acomp->base.audio_ops->audio_ptr,
- (int) port, (int) pipe);
+ (int)port, (int)cpu_transcoder);
}
- intel_lpe_audio_notify(dev_priv, pipe, port, NULL, 0, false);
+ intel_lpe_audio_notify(i915, cpu_transcoder, port, NULL, 0, false);
+}
+
+static void intel_acomp_get_config(struct intel_encoder *encoder,
+ struct intel_crtc_state *crtc_state)
+{
+ struct drm_i915_private *i915 = to_i915(encoder->base.dev);
+ enum transcoder cpu_transcoder = crtc_state->cpu_transcoder;
+ struct intel_audio_state *audio_state;
+
+ mutex_lock(&i915->display.audio.mutex);
+
+ audio_state = &i915->display.audio.state[cpu_transcoder];
+
+ if (audio_state->encoder)
+ memcpy(crtc_state->eld, audio_state->eld, sizeof(audio_state->eld));
+
+ mutex_unlock(&i915->display.audio.mutex);
+}
+
+void intel_audio_codec_get_config(struct intel_encoder *encoder,
+ struct intel_crtc_state *crtc_state)
+{
+ struct drm_i915_private *i915 = to_i915(encoder->base.dev);
+
+ if (!crtc_state->has_audio)
+ return;
+
+ if (i915->display.funcs.audio)
+ i915->display.funcs.audio->audio_codec_get_config(encoder, crtc_state);
}
static const struct intel_audio_funcs g4x_audio_funcs = {
.audio_codec_enable = g4x_audio_codec_enable,
.audio_codec_disable = g4x_audio_codec_disable,
+ .audio_codec_get_config = g4x_audio_codec_get_config,
};
-static const struct intel_audio_funcs ilk_audio_funcs = {
- .audio_codec_enable = ilk_audio_codec_enable,
- .audio_codec_disable = ilk_audio_codec_disable,
+static const struct intel_audio_funcs ibx_audio_funcs = {
+ .audio_codec_enable = ibx_audio_codec_enable,
+ .audio_codec_disable = ibx_audio_codec_disable,
+ .audio_codec_get_config = intel_acomp_get_config,
};
static const struct intel_audio_funcs hsw_audio_funcs = {
.audio_codec_enable = hsw_audio_codec_enable,
.audio_codec_disable = hsw_audio_codec_disable,
+ .audio_codec_get_config = intel_acomp_get_config,
};
/**
* intel_audio_hooks_init - Set up chip specific audio hooks
- * @dev_priv: device private
+ * @i915: device private
*/
-void intel_audio_hooks_init(struct drm_i915_private *dev_priv)
+void intel_audio_hooks_init(struct drm_i915_private *i915)
{
- if (IS_G4X(dev_priv)) {
- dev_priv->display.funcs.audio = &g4x_audio_funcs;
- } else if (IS_VALLEYVIEW(dev_priv) || IS_CHERRYVIEW(dev_priv)) {
- dev_priv->display.funcs.audio = &ilk_audio_funcs;
- } else if (IS_HASWELL(dev_priv) || DISPLAY_VER(dev_priv) >= 8) {
- dev_priv->display.funcs.audio = &hsw_audio_funcs;
- } else if (HAS_PCH_SPLIT(dev_priv)) {
- dev_priv->display.funcs.audio = &ilk_audio_funcs;
- }
+ if (IS_G4X(i915))
+ i915->display.funcs.audio = &g4x_audio_funcs;
+ else if (IS_VALLEYVIEW(i915) || IS_CHERRYVIEW(i915) ||
+ HAS_PCH_CPT(i915) || HAS_PCH_IBX(i915))
+ i915->display.funcs.audio = &ibx_audio_funcs;
+ else if (IS_HASWELL(i915) || DISPLAY_VER(i915) >= 8)
+ i915->display.funcs.audio = &hsw_audio_funcs;
}
struct aud_ts_cdclk_m_n {
@@ -958,11 +983,7 @@ void intel_audio_cdclk_change_pre(struct drm_i915_private *i915)
static void get_aud_ts_cdclk_m_n(int refclk, int cdclk, struct aud_ts_cdclk_m_n *aud_ts)
{
- if (refclk == 24000)
- aud_ts->m = 12;
- else
- aud_ts->m = 15;
-
+ aud_ts->m = 60;
aud_ts->n = cdclk * aud_ts->m / 24000;
}
@@ -1000,7 +1021,7 @@ static int glk_force_audio_cdclk_commit(struct intel_atomic_state *state,
return drm_atomic_commit(&state->base);
}
-static void glk_force_audio_cdclk(struct drm_i915_private *dev_priv,
+static void glk_force_audio_cdclk(struct drm_i915_private *i915,
bool enable)
{
struct drm_modeset_acquire_ctx ctx;
@@ -1008,13 +1029,13 @@ static void glk_force_audio_cdclk(struct drm_i915_private *dev_priv,
struct intel_crtc *crtc;
int ret;
- crtc = intel_first_crtc(dev_priv);
+ crtc = intel_first_crtc(i915);
if (!crtc)
return;
drm_modeset_acquire_init(&ctx, 0);
- state = drm_atomic_state_alloc(&dev_priv->drm);
- if (drm_WARN_ON(&dev_priv->drm, !state))
+ state = drm_atomic_state_alloc(&i915->drm);
+ if (drm_WARN_ON(&i915->drm, !state))
return;
state->acquire_ctx = &ctx;
@@ -1028,7 +1049,7 @@ retry:
goto retry;
}
- drm_WARN_ON(&dev_priv->drm, ret);
+ drm_WARN_ON(&i915->drm, ret);
drm_atomic_state_put(state);
@@ -1038,30 +1059,30 @@ retry:
static unsigned long i915_audio_component_get_power(struct device *kdev)
{
- struct drm_i915_private *dev_priv = kdev_to_i915(kdev);
+ struct drm_i915_private *i915 = kdev_to_i915(kdev);
intel_wakeref_t ret;
/* Catch potential impedance mismatches before they occur! */
BUILD_BUG_ON(sizeof(intel_wakeref_t) > sizeof(unsigned long));
- ret = intel_display_power_get(dev_priv, POWER_DOMAIN_AUDIO_PLAYBACK);
+ ret = intel_display_power_get(i915, POWER_DOMAIN_AUDIO_PLAYBACK);
- if (dev_priv->display.audio.power_refcount++ == 0) {
- if (DISPLAY_VER(dev_priv) >= 9) {
- intel_de_write(dev_priv, AUD_FREQ_CNTRL,
- dev_priv->display.audio.freq_cntrl);
- drm_dbg_kms(&dev_priv->drm,
+ if (i915->display.audio.power_refcount++ == 0) {
+ if (DISPLAY_VER(i915) >= 9) {
+ intel_de_write(i915, AUD_FREQ_CNTRL,
+ i915->display.audio.freq_cntrl);
+ drm_dbg_kms(&i915->drm,
"restored AUD_FREQ_CNTRL to 0x%x\n",
- dev_priv->display.audio.freq_cntrl);
+ i915->display.audio.freq_cntrl);
}
/* Force CDCLK to 2*BCLK as long as we need audio powered. */
- if (IS_GEMINILAKE(dev_priv))
- glk_force_audio_cdclk(dev_priv, true);
+ if (IS_GEMINILAKE(i915))
+ glk_force_audio_cdclk(i915, true);
- if (DISPLAY_VER(dev_priv) >= 10)
- intel_de_write(dev_priv, AUD_PIN_BUF_CTL,
- (intel_de_read(dev_priv, AUD_PIN_BUF_CTL) | AUD_PIN_BUF_ENABLE));
+ if (DISPLAY_VER(i915) >= 10)
+ intel_de_rmw(i915, AUD_PIN_BUF_CTL,
+ 0, AUD_PIN_BUF_ENABLE);
}
return ret;
@@ -1070,24 +1091,23 @@ static unsigned long i915_audio_component_get_power(struct device *kdev)
static void i915_audio_component_put_power(struct device *kdev,
unsigned long cookie)
{
- struct drm_i915_private *dev_priv = kdev_to_i915(kdev);
+ struct drm_i915_private *i915 = kdev_to_i915(kdev);
/* Stop forcing CDCLK to 2*BCLK if no need for audio to be powered. */
- if (--dev_priv->display.audio.power_refcount == 0)
- if (IS_GEMINILAKE(dev_priv))
- glk_force_audio_cdclk(dev_priv, false);
+ if (--i915->display.audio.power_refcount == 0)
+ if (IS_GEMINILAKE(i915))
+ glk_force_audio_cdclk(i915, false);
- intel_display_power_put(dev_priv, POWER_DOMAIN_AUDIO_PLAYBACK, cookie);
+ intel_display_power_put(i915, POWER_DOMAIN_AUDIO_PLAYBACK, cookie);
}
static void i915_audio_component_codec_wake_override(struct device *kdev,
bool enable)
{
- struct drm_i915_private *dev_priv = kdev_to_i915(kdev);
+ struct drm_i915_private *i915 = kdev_to_i915(kdev);
unsigned long cookie;
- u32 tmp;
- if (DISPLAY_VER(dev_priv) < 9)
+ if (DISPLAY_VER(i915) < 9)
return;
cookie = i915_audio_component_get_power(kdev);
@@ -1096,15 +1116,13 @@ static void i915_audio_component_codec_wake_override(struct device *kdev,
* Enable/disable generating the codec wake signal, overriding the
* internal logic to generate the codec wake to controller.
*/
- tmp = intel_de_read(dev_priv, HSW_AUD_CHICKENBIT);
- tmp &= ~SKL_AUD_CODEC_WAKE_SIGNAL;
- intel_de_write(dev_priv, HSW_AUD_CHICKENBIT, tmp);
+ intel_de_rmw(i915, HSW_AUD_CHICKENBIT,
+ SKL_AUD_CODEC_WAKE_SIGNAL, 0);
usleep_range(1000, 1500);
if (enable) {
- tmp = intel_de_read(dev_priv, HSW_AUD_CHICKENBIT);
- tmp |= SKL_AUD_CODEC_WAKE_SIGNAL;
- intel_de_write(dev_priv, HSW_AUD_CHICKENBIT, tmp);
+ intel_de_rmw(i915, HSW_AUD_CHICKENBIT,
+ 0, SKL_AUD_CODEC_WAKE_SIGNAL);
usleep_range(1000, 1500);
}
@@ -1114,131 +1132,129 @@ static void i915_audio_component_codec_wake_override(struct device *kdev,
/* Get CDCLK in kHz */
static int i915_audio_component_get_cdclk_freq(struct device *kdev)
{
- struct drm_i915_private *dev_priv = kdev_to_i915(kdev);
+ struct drm_i915_private *i915 = kdev_to_i915(kdev);
- if (drm_WARN_ON_ONCE(&dev_priv->drm, !HAS_DDI(dev_priv)))
+ if (drm_WARN_ON_ONCE(&i915->drm, !HAS_DDI(i915)))
return -ENODEV;
- return dev_priv->display.cdclk.hw.cdclk;
+ return i915->display.cdclk.hw.cdclk;
}
/*
- * get the intel_encoder according to the parameter port and pipe
- * intel_encoder is saved by the index of pipe
- * MST & (pipe >= 0): return the audio.encoder_map[pipe],
+ * get the intel audio state according to the parameter port and cpu_transcoder
+ * MST & (cpu_transcoder >= 0): return the audio.state[cpu_transcoder].encoder],
* when port is matched
- * MST & (pipe < 0): this is invalid
- * Non-MST & (pipe >= 0): only pipe = 0 (the first device entry)
+ * MST & (cpu_transcoder < 0): this is invalid
+ * Non-MST & (cpu_transcoder >= 0): only cpu_transcoder = 0 (the first device entry)
* will get the right intel_encoder with port matched
- * Non-MST & (pipe < 0): get the right intel_encoder with port matched
+ * Non-MST & (cpu_transcoder < 0): get the right intel_encoder with port matched
*/
-static struct intel_encoder *get_saved_enc(struct drm_i915_private *dev_priv,
- int port, int pipe)
+static struct intel_audio_state *find_audio_state(struct drm_i915_private *i915,
+ int port, int cpu_transcoder)
{
- struct intel_encoder *encoder;
-
/* MST */
- if (pipe >= 0) {
- if (drm_WARN_ON(&dev_priv->drm,
- pipe >= ARRAY_SIZE(dev_priv->display.audio.encoder_map)))
+ if (cpu_transcoder >= 0) {
+ struct intel_audio_state *audio_state;
+ struct intel_encoder *encoder;
+
+ if (drm_WARN_ON(&i915->drm,
+ cpu_transcoder >= ARRAY_SIZE(i915->display.audio.state)))
return NULL;
- encoder = dev_priv->display.audio.encoder_map[pipe];
- /*
- * when bootup, audio driver may not know it is
- * MST or not. So it will poll all the port & pipe
- * combinations
- */
- if (encoder != NULL && encoder->port == port &&
+ audio_state = &i915->display.audio.state[cpu_transcoder];
+ encoder = audio_state->encoder;
+
+ if (encoder && encoder->port == port &&
encoder->type == INTEL_OUTPUT_DP_MST)
- return encoder;
+ return audio_state;
}
/* Non-MST */
- if (pipe > 0)
+ if (cpu_transcoder > 0)
return NULL;
- for_each_pipe(dev_priv, pipe) {
- encoder = dev_priv->display.audio.encoder_map[pipe];
- if (encoder == NULL)
- continue;
+ for_each_cpu_transcoder(i915, cpu_transcoder) {
+ struct intel_audio_state *audio_state;
+ struct intel_encoder *encoder;
- if (encoder->type == INTEL_OUTPUT_DP_MST)
- continue;
+ audio_state = &i915->display.audio.state[cpu_transcoder];
+ encoder = audio_state->encoder;
- if (port == encoder->port)
- return encoder;
+ if (encoder && encoder->port == port &&
+ encoder->type != INTEL_OUTPUT_DP_MST)
+ return audio_state;
}
return NULL;
}
static int i915_audio_component_sync_audio_rate(struct device *kdev, int port,
- int pipe, int rate)
+ int cpu_transcoder, int rate)
{
- struct drm_i915_private *dev_priv = kdev_to_i915(kdev);
- struct i915_audio_component *acomp = dev_priv->display.audio.component;
+ struct drm_i915_private *i915 = kdev_to_i915(kdev);
+ struct i915_audio_component *acomp = i915->display.audio.component;
+ const struct intel_audio_state *audio_state;
struct intel_encoder *encoder;
struct intel_crtc *crtc;
unsigned long cookie;
int err = 0;
- if (!HAS_DDI(dev_priv))
+ if (!HAS_DDI(i915))
return 0;
cookie = i915_audio_component_get_power(kdev);
- mutex_lock(&dev_priv->display.audio.mutex);
+ mutex_lock(&i915->display.audio.mutex);
- /* 1. get the pipe */
- encoder = get_saved_enc(dev_priv, port, pipe);
- if (!encoder || !encoder->base.crtc) {
- drm_dbg_kms(&dev_priv->drm, "Not valid for port %c\n",
- port_name(port));
+ audio_state = find_audio_state(i915, port, cpu_transcoder);
+ if (!audio_state) {
+ drm_dbg_kms(&i915->drm, "Not valid for port %c\n", port_name(port));
err = -ENODEV;
goto unlock;
}
+ encoder = audio_state->encoder;
+
+ /* FIXME stop using the legacy crtc pointer */
crtc = to_intel_crtc(encoder->base.crtc);
- /* port must be valid now, otherwise the pipe will be invalid */
+ /* port must be valid now, otherwise the cpu_transcoder will be invalid */
acomp->aud_sample_rate[port] = rate;
+ /* FIXME get rid of the crtc->config stuff */
hsw_audio_config_update(encoder, crtc->config);
unlock:
- mutex_unlock(&dev_priv->display.audio.mutex);
+ mutex_unlock(&i915->display.audio.mutex);
i915_audio_component_put_power(kdev, cookie);
return err;
}
static int i915_audio_component_get_eld(struct device *kdev, int port,
- int pipe, bool *enabled,
+ int cpu_transcoder, bool *enabled,
unsigned char *buf, int max_bytes)
{
- struct drm_i915_private *dev_priv = kdev_to_i915(kdev);
- struct intel_encoder *intel_encoder;
- const u8 *eld;
- int ret = -EINVAL;
-
- mutex_lock(&dev_priv->display.audio.mutex);
-
- intel_encoder = get_saved_enc(dev_priv, port, pipe);
- if (!intel_encoder) {
- drm_dbg_kms(&dev_priv->drm, "Not valid for port %c\n",
- port_name(port));
- mutex_unlock(&dev_priv->display.audio.mutex);
- return ret;
+ struct drm_i915_private *i915 = kdev_to_i915(kdev);
+ const struct intel_audio_state *audio_state;
+ int ret = 0;
+
+ mutex_lock(&i915->display.audio.mutex);
+
+ audio_state = find_audio_state(i915, port, cpu_transcoder);
+ if (!audio_state) {
+ drm_dbg_kms(&i915->drm, "Not valid for port %c\n", port_name(port));
+ mutex_unlock(&i915->display.audio.mutex);
+ return -EINVAL;
}
- ret = 0;
- *enabled = intel_encoder->audio_connector != NULL;
+ *enabled = audio_state->encoder != NULL;
if (*enabled) {
- eld = intel_encoder->audio_connector->eld;
+ const u8 *eld = audio_state->eld;
+
ret = drm_eld_size(eld);
memcpy(buf, eld, min(max_bytes, ret));
}
- mutex_unlock(&dev_priv->display.audio.mutex);
+ mutex_unlock(&i915->display.audio.mutex);
return ret;
}
@@ -1256,25 +1272,25 @@ static int i915_audio_component_bind(struct device *i915_kdev,
struct device *hda_kdev, void *data)
{
struct i915_audio_component *acomp = data;
- struct drm_i915_private *dev_priv = kdev_to_i915(i915_kdev);
+ struct drm_i915_private *i915 = kdev_to_i915(i915_kdev);
int i;
- if (drm_WARN_ON(&dev_priv->drm, acomp->base.ops || acomp->base.dev))
+ if (drm_WARN_ON(&i915->drm, acomp->base.ops || acomp->base.dev))
return -EEXIST;
- if (drm_WARN_ON(&dev_priv->drm,
+ if (drm_WARN_ON(&i915->drm,
!device_link_add(hda_kdev, i915_kdev,
DL_FLAG_STATELESS)))
return -ENOMEM;
- drm_modeset_lock_all(&dev_priv->drm);
+ drm_modeset_lock_all(&i915->drm);
acomp->base.ops = &i915_audio_component_ops;
acomp->base.dev = i915_kdev;
BUILD_BUG_ON(MAX_PORTS != I915_MAX_PORTS);
for (i = 0; i < ARRAY_SIZE(acomp->aud_sample_rate); i++)
acomp->aud_sample_rate[i] = 0;
- dev_priv->display.audio.component = acomp;
- drm_modeset_unlock_all(&dev_priv->drm);
+ i915->display.audio.component = acomp;
+ drm_modeset_unlock_all(&i915->drm);
return 0;
}
@@ -1283,19 +1299,19 @@ static void i915_audio_component_unbind(struct device *i915_kdev,
struct device *hda_kdev, void *data)
{
struct i915_audio_component *acomp = data;
- struct drm_i915_private *dev_priv = kdev_to_i915(i915_kdev);
+ struct drm_i915_private *i915 = kdev_to_i915(i915_kdev);
- drm_modeset_lock_all(&dev_priv->drm);
+ drm_modeset_lock_all(&i915->drm);
acomp->base.ops = NULL;
acomp->base.dev = NULL;
- dev_priv->display.audio.component = NULL;
- drm_modeset_unlock_all(&dev_priv->drm);
+ i915->display.audio.component = NULL;
+ drm_modeset_unlock_all(&i915->drm);
device_link_remove(hda_kdev, i915_kdev);
- if (dev_priv->display.audio.power_refcount)
- drm_err(&dev_priv->drm, "audio power refcount %d after unbind\n",
- dev_priv->display.audio.power_refcount);
+ if (i915->display.audio.power_refcount)
+ drm_err(&i915->drm, "audio power refcount %d after unbind\n",
+ i915->display.audio.power_refcount);
}
static const struct component_ops i915_audio_component_bind_ops = {
@@ -1314,7 +1330,7 @@ static const struct component_ops i915_audio_component_bind_ops = {
/**
* i915_audio_component_init - initialize and register the audio component
- * @dev_priv: i915 device instance
+ * @i915: i915 device instance
*
* This will register with the component framework a child component which
* will bind dynamically to the snd_hda_intel driver's corresponding master
@@ -1328,83 +1344,83 @@ static const struct component_ops i915_audio_component_bind_ops = {
* We ignore any error during registration and continue with reduced
* functionality (i.e. without HDMI audio).
*/
-static void i915_audio_component_init(struct drm_i915_private *dev_priv)
+static void i915_audio_component_init(struct drm_i915_private *i915)
{
u32 aud_freq, aud_freq_init;
int ret;
- ret = component_add_typed(dev_priv->drm.dev,
+ ret = component_add_typed(i915->drm.dev,
&i915_audio_component_bind_ops,
I915_COMPONENT_AUDIO);
if (ret < 0) {
- drm_err(&dev_priv->drm,
+ drm_err(&i915->drm,
"failed to add audio component (%d)\n", ret);
/* continue with reduced functionality */
return;
}
- if (DISPLAY_VER(dev_priv) >= 9) {
- aud_freq_init = intel_de_read(dev_priv, AUD_FREQ_CNTRL);
+ if (DISPLAY_VER(i915) >= 9) {
+ aud_freq_init = intel_de_read(i915, AUD_FREQ_CNTRL);
- if (DISPLAY_VER(dev_priv) >= 12)
+ if (DISPLAY_VER(i915) >= 12)
aud_freq = AUD_FREQ_GEN12;
else
aud_freq = aud_freq_init;
/* use BIOS provided value for TGL and RKL unless it is a known bad value */
- if ((IS_TIGERLAKE(dev_priv) || IS_ROCKETLAKE(dev_priv)) &&
+ if ((IS_TIGERLAKE(i915) || IS_ROCKETLAKE(i915)) &&
aud_freq_init != AUD_FREQ_TGL_BROKEN)
aud_freq = aud_freq_init;
- drm_dbg_kms(&dev_priv->drm, "use AUD_FREQ_CNTRL of 0x%x (init value 0x%x)\n",
+ drm_dbg_kms(&i915->drm, "use AUD_FREQ_CNTRL of 0x%x (init value 0x%x)\n",
aud_freq, aud_freq_init);
- dev_priv->display.audio.freq_cntrl = aud_freq;
+ i915->display.audio.freq_cntrl = aud_freq;
}
/* init with current cdclk */
- intel_audio_cdclk_change_post(dev_priv);
+ intel_audio_cdclk_change_post(i915);
- dev_priv->display.audio.component_registered = true;
+ i915->display.audio.component_registered = true;
}
/**
* i915_audio_component_cleanup - deregister the audio component
- * @dev_priv: i915 device instance
+ * @i915: i915 device instance
*
* Deregisters the audio component, breaking any existing binding to the
* corresponding snd_hda_intel driver's master component.
*/
-static void i915_audio_component_cleanup(struct drm_i915_private *dev_priv)
+static void i915_audio_component_cleanup(struct drm_i915_private *i915)
{
- if (!dev_priv->display.audio.component_registered)
+ if (!i915->display.audio.component_registered)
return;
- component_del(dev_priv->drm.dev, &i915_audio_component_bind_ops);
- dev_priv->display.audio.component_registered = false;
+ component_del(i915->drm.dev, &i915_audio_component_bind_ops);
+ i915->display.audio.component_registered = false;
}
/**
* intel_audio_init() - Initialize the audio driver either using
* component framework or using lpe audio bridge
- * @dev_priv: the i915 drm device private data
+ * @i915: the i915 drm device private data
*
*/
-void intel_audio_init(struct drm_i915_private *dev_priv)
+void intel_audio_init(struct drm_i915_private *i915)
{
- if (intel_lpe_audio_init(dev_priv) < 0)
- i915_audio_component_init(dev_priv);
+ if (intel_lpe_audio_init(i915) < 0)
+ i915_audio_component_init(i915);
}
/**
* intel_audio_deinit() - deinitialize the audio driver
- * @dev_priv: the i915 drm device private data
+ * @i915: the i915 drm device private data
*
*/
-void intel_audio_deinit(struct drm_i915_private *dev_priv)
+void intel_audio_deinit(struct drm_i915_private *i915)
{
- if (dev_priv->display.audio.lpe.platdev != NULL)
- intel_lpe_audio_teardown(dev_priv);
+ if (i915->display.audio.lpe.platdev != NULL)
+ intel_lpe_audio_teardown(i915);
else
- i915_audio_component_cleanup(dev_priv);
+ i915_audio_component_cleanup(i915);
}
diff --git a/drivers/gpu/drm/i915/display/intel_audio.h b/drivers/gpu/drm/i915/display/intel_audio.h
index 63b22131dc45..07d034a981e9 100644
--- a/drivers/gpu/drm/i915/display/intel_audio.h
+++ b/drivers/gpu/drm/i915/display/intel_audio.h
@@ -6,21 +6,30 @@
#ifndef __INTEL_AUDIO_H__
#define __INTEL_AUDIO_H__
+#include <linux/types.h>
+
struct drm_connector_state;
struct drm_i915_private;
struct intel_crtc_state;
struct intel_encoder;
void intel_audio_hooks_init(struct drm_i915_private *dev_priv);
+bool intel_audio_compute_config(struct intel_encoder *encoder,
+ struct intel_crtc_state *crtc_state,
+ struct drm_connector_state *conn_state);
void intel_audio_codec_enable(struct intel_encoder *encoder,
const struct intel_crtc_state *crtc_state,
const struct drm_connector_state *conn_state);
void intel_audio_codec_disable(struct intel_encoder *encoder,
const struct intel_crtc_state *old_crtc_state,
const struct drm_connector_state *old_conn_state);
+void intel_audio_codec_get_config(struct intel_encoder *encoder,
+ struct intel_crtc_state *crtc_state);
void intel_audio_cdclk_change_pre(struct drm_i915_private *dev_priv);
void intel_audio_cdclk_change_post(struct drm_i915_private *dev_priv);
void intel_audio_init(struct drm_i915_private *dev_priv);
void intel_audio_deinit(struct drm_i915_private *dev_priv);
+void intel_audio_sdp_split_update(struct intel_encoder *encoder,
+ const struct intel_crtc_state *crtc_state);
#endif /* __INTEL_AUDIO_H__ */
diff --git a/drivers/gpu/drm/i915/display/intel_audio_regs.h b/drivers/gpu/drm/i915/display/intel_audio_regs.h
index d1e5844e3484..616e7b1275c4 100644
--- a/drivers/gpu/drm/i915/display/intel_audio_regs.h
+++ b/drivers/gpu/drm/i915/display/intel_audio_regs.h
@@ -6,18 +6,13 @@
#ifndef __INTEL_AUDIO_REGS_H__
#define __INTEL_AUDIO_REGS_H__
-#include "i915_reg_defs.h"
-
-#define G4X_AUD_VID_DID _MMIO(DISPLAY_MMIO_BASE(dev_priv) + 0x62020)
-#define INTEL_AUDIO_DEVCL 0x808629FB
-#define INTEL_AUDIO_DEVBLC 0x80862801
-#define INTEL_AUDIO_DEVCTG 0x80862802
+#include "intel_display_reg_defs.h"
#define G4X_AUD_CNTL_ST _MMIO(0x620B4)
-#define G4X_ELDV_DEVCL_DEVBLC (1 << 13)
-#define G4X_ELDV_DEVCTG (1 << 14)
-#define G4X_ELD_ADDR_MASK (0xf << 5)
-#define G4X_ELD_ACK (1 << 4)
+#define G4X_ELD_VALID REG_BIT(14)
+#define G4X_ELD_BUFFER_SIZE_MASK REG_GENMASK(13, 9)
+#define G4X_ELD_ADDRESS_MASK REG_GENMASK(8, 5)
+#define G4X_ELD_ACK REG_BIT(4)
#define G4X_HDMIW_HDMIEDID _MMIO(0x6210C)
#define _IBX_HDMIW_HDMIEDID_A 0xE2050
@@ -28,12 +23,12 @@
#define _IBX_AUD_CNTL_ST_B 0xE21B4
#define IBX_AUD_CNTL_ST(pipe) _MMIO_PIPE(pipe, _IBX_AUD_CNTL_ST_A, \
_IBX_AUD_CNTL_ST_B)
-#define IBX_ELD_BUFFER_SIZE_MASK (0x1f << 10)
-#define IBX_ELD_ADDRESS_MASK (0x1f << 5)
-#define IBX_ELD_ACK (1 << 4)
+#define IBX_ELD_BUFFER_SIZE_MASK REG_GENMASK(14, 10)
+#define IBX_ELD_ADDRESS_MASK REG_GENMASK(9, 5)
+#define IBX_ELD_ACK REG_BIT(4)
#define IBX_AUD_CNTL_ST2 _MMIO(0xE20C0)
-#define IBX_CP_READY(port) ((1 << 1) << (((port) - 1) * 4))
-#define IBX_ELD_VALID(port) ((1 << 0) << (((port) - 1) * 4))
+#define IBX_CP_READY(port) REG_BIT(((port) - 1) * 4 + 1)
+#define IBX_ELD_VALID(port) REG_BIT(((port) - 1) * 4 + 0)
#define _CPT_HDMIW_HDMIEDID_A 0xE5050
#define _CPT_HDMIW_HDMIEDID_B 0xE5150
@@ -60,34 +55,30 @@
#define _VLV_AUD_CONFIG_A (VLV_DISPLAY_BASE + 0x62000)
#define _VLV_AUD_CONFIG_B (VLV_DISPLAY_BASE + 0x62100)
#define VLV_AUD_CFG(pipe) _MMIO_PIPE(pipe, _VLV_AUD_CONFIG_A, _VLV_AUD_CONFIG_B)
-
-#define AUD_CONFIG_N_VALUE_INDEX (1 << 29)
-#define AUD_CONFIG_N_PROG_ENABLE (1 << 28)
-#define AUD_CONFIG_UPPER_N_SHIFT 20
-#define AUD_CONFIG_UPPER_N_MASK (0xff << 20)
-#define AUD_CONFIG_LOWER_N_SHIFT 4
-#define AUD_CONFIG_LOWER_N_MASK (0xfff << 4)
-#define AUD_CONFIG_N_MASK (AUD_CONFIG_UPPER_N_MASK | AUD_CONFIG_LOWER_N_MASK)
-#define AUD_CONFIG_N(n) \
- (((((n) >> 12) & 0xff) << AUD_CONFIG_UPPER_N_SHIFT) | \
- (((n) & 0xfff) << AUD_CONFIG_LOWER_N_SHIFT))
-#define AUD_CONFIG_PIXEL_CLOCK_HDMI_SHIFT 16
-#define AUD_CONFIG_PIXEL_CLOCK_HDMI_MASK (0xf << 16)
-#define AUD_CONFIG_PIXEL_CLOCK_HDMI_25175 (0 << 16)
-#define AUD_CONFIG_PIXEL_CLOCK_HDMI_25200 (1 << 16)
-#define AUD_CONFIG_PIXEL_CLOCK_HDMI_27000 (2 << 16)
-#define AUD_CONFIG_PIXEL_CLOCK_HDMI_27027 (3 << 16)
-#define AUD_CONFIG_PIXEL_CLOCK_HDMI_54000 (4 << 16)
-#define AUD_CONFIG_PIXEL_CLOCK_HDMI_54054 (5 << 16)
-#define AUD_CONFIG_PIXEL_CLOCK_HDMI_74176 (6 << 16)
-#define AUD_CONFIG_PIXEL_CLOCK_HDMI_74250 (7 << 16)
-#define AUD_CONFIG_PIXEL_CLOCK_HDMI_148352 (8 << 16)
-#define AUD_CONFIG_PIXEL_CLOCK_HDMI_148500 (9 << 16)
-#define AUD_CONFIG_PIXEL_CLOCK_HDMI_296703 (10 << 16)
-#define AUD_CONFIG_PIXEL_CLOCK_HDMI_297000 (11 << 16)
-#define AUD_CONFIG_PIXEL_CLOCK_HDMI_593407 (12 << 16)
-#define AUD_CONFIG_PIXEL_CLOCK_HDMI_594000 (13 << 16)
-#define AUD_CONFIG_DISABLE_NCTS (1 << 3)
+#define AUD_CONFIG_N_VALUE_INDEX REG_BIT(29)
+#define AUD_CONFIG_N_PROG_ENABLE REG_BIT(28)
+#define AUD_CONFIG_UPPER_N_MASK REG_GENMASK(27, 20)
+#define AUD_CONFIG_LOWER_N_MASK REG_GENMASK(15, 4)
+#define AUD_CONFIG_N_MASK (AUD_CONFIG_UPPER_N_MASK | \
+ AUD_CONFIG_LOWER_N_MASK)
+#define AUD_CONFIG_N(n) (REG_FIELD_PREP(AUD_CONFIG_UPPER_N_MASK, (n) >> 12) | \
+ REG_FIELD_PREP(AUD_CONFIG_LOWER_N_MASK, (n) & 0xfff))
+#define AUD_CONFIG_PIXEL_CLOCK_HDMI_MASK REG_GENMASK(19, 16)
+#define AUD_CONFIG_PIXEL_CLOCK_HDMI_25175 REG_FIELD_PREP(AUD_CONFIG_PIXEL_CLOCK_HDMI_MASK, 0)
+#define AUD_CONFIG_PIXEL_CLOCK_HDMI_25200 REG_FIELD_PREP(AUD_CONFIG_PIXEL_CLOCK_HDMI_MASK, 1)
+#define AUD_CONFIG_PIXEL_CLOCK_HDMI_27000 REG_FIELD_PREP(AUD_CONFIG_PIXEL_CLOCK_HDMI_MASK, 2)
+#define AUD_CONFIG_PIXEL_CLOCK_HDMI_27027 REG_FIELD_PREP(AUD_CONFIG_PIXEL_CLOCK_HDMI_MASK, 3)
+#define AUD_CONFIG_PIXEL_CLOCK_HDMI_54000 REG_FIELD_PREP(AUD_CONFIG_PIXEL_CLOCK_HDMI_MASK, 4)
+#define AUD_CONFIG_PIXEL_CLOCK_HDMI_54054 REG_FIELD_PREP(AUD_CONFIG_PIXEL_CLOCK_HDMI_MASK, 5)
+#define AUD_CONFIG_PIXEL_CLOCK_HDMI_74176 REG_FIELD_PREP(AUD_CONFIG_PIXEL_CLOCK_HDMI_MASK, 6)
+#define AUD_CONFIG_PIXEL_CLOCK_HDMI_74250 REG_FIELD_PREP(AUD_CONFIG_PIXEL_CLOCK_HDMI_MASK, 7)
+#define AUD_CONFIG_PIXEL_CLOCK_HDMI_148352 REG_FIELD_PREP(AUD_CONFIG_PIXEL_CLOCK_HDMI_MASK, 8)
+#define AUD_CONFIG_PIXEL_CLOCK_HDMI_148500 REG_FIELD_PREP(AUD_CONFIG_PIXEL_CLOCK_HDMI_MASK, 9)
+#define AUD_CONFIG_PIXEL_CLOCK_HDMI_296703 REG_FIELD_PREP(AUD_CONFIG_PIXEL_CLOCK_HDMI_MASK, 10)
+#define AUD_CONFIG_PIXEL_CLOCK_HDMI_297000 REG_FIELD_PREP(AUD_CONFIG_PIXEL_CLOCK_HDMI_MASK, 11)
+#define AUD_CONFIG_PIXEL_CLOCK_HDMI_593407 REG_FIELD_PREP(AUD_CONFIG_PIXEL_CLOCK_HDMI_MASK, 12)
+#define AUD_CONFIG_PIXEL_CLOCK_HDMI_594000 REG_FIELD_PREP(AUD_CONFIG_PIXEL_CLOCK_HDMI_MASK, 13)
+#define AUD_CONFIG_DISABLE_NCTS REG_BIT(3)
#define _HSW_AUD_CONFIG_A 0x65000
#define _HSW_AUD_CONFIG_B 0x65100
@@ -100,9 +91,9 @@
#define _HSW_AUD_M_CTS_ENABLE_A 0x65028
#define _HSW_AUD_M_CTS_ENABLE_B 0x65128
#define HSW_AUD_M_CTS_ENABLE(trans) _MMIO_TRANS(trans, _HSW_AUD_M_CTS_ENABLE_A, _HSW_AUD_M_CTS_ENABLE_B)
-#define AUD_M_CTS_M_VALUE_INDEX (1 << 21)
-#define AUD_M_CTS_M_PROG_ENABLE (1 << 20)
-#define AUD_CONFIG_M_MASK 0xfffff
+#define AUD_M_CTS_M_VALUE_INDEX REG_BIT(21)
+#define AUD_M_CTS_M_PROG_ENABLE REG_BIT(20)
+#define AUD_CONFIG_M_MASK REG_GENMASK(19, 0)
#define _HSW_AUD_DIP_ELD_CTRL_ST_A 0x650b4
#define _HSW_AUD_DIP_ELD_CTRL_ST_B 0x651b4
@@ -130,11 +121,11 @@
#define AUD_DP_2DOT0_CTRL(trans) _MMIO_TRANS(trans, _AUD_TCA_DP_2DOT0_CTRL, _AUD_TCB_DP_2DOT0_CTRL)
#define AUD_ENABLE_SDP_SPLIT REG_BIT(31)
-#define HSW_AUD_CHICKENBIT _MMIO(0x65f10)
-#define SKL_AUD_CODEC_WAKE_SIGNAL (1 << 15)
+#define HSW_AUD_CHICKENBIT _MMIO(0x65f10)
+#define SKL_AUD_CODEC_WAKE_SIGNAL REG_BIT(15)
#define AUD_FREQ_CNTRL _MMIO(0x65900)
-#define AUD_PIN_BUF_CTL _MMIO(0x48414)
+#define AUD_PIN_BUF_CTL _MMIO(0x48414)
#define AUD_PIN_BUF_ENABLE REG_BIT(31)
#define AUD_TS_CDCLK_M _MMIO(0x65ea0)
diff --git a/drivers/gpu/drm/i915/display/intel_backlight.c b/drivers/gpu/drm/i915/display/intel_backlight.c
index beba39a38c87..2e8f17c04522 100644
--- a/drivers/gpu/drm/i915/display/intel_backlight.c
+++ b/drivers/gpu/drm/i915/display/intel_backlight.c
@@ -10,6 +10,7 @@
#include <acpi/video.h>
+#include "i915_reg.h"
#include "intel_backlight.h"
#include "intel_backlight_regs.h"
#include "intel_connector.h"
@@ -82,16 +83,16 @@ static u32 scale_hw_to_user(struct intel_connector *connector,
u32 intel_backlight_invert_pwm_level(struct intel_connector *connector, u32 val)
{
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
struct intel_panel *panel = &connector->panel;
- drm_WARN_ON(&dev_priv->drm, panel->backlight.pwm_level_max == 0);
+ drm_WARN_ON(&i915->drm, panel->backlight.pwm_level_max == 0);
- if (dev_priv->params.invert_brightness < 0)
+ if (i915->params.invert_brightness < 0)
return val;
- if (dev_priv->params.invert_brightness > 0 ||
- intel_has_quirk(dev_priv, QUIRK_INVERT_BRIGHTNESS)) {
+ if (i915->params.invert_brightness > 0 ||
+ intel_has_quirk(i915, QUIRK_INVERT_BRIGHTNESS)) {
return panel->backlight.pwm_level_max - val + panel->backlight.pwm_level_min;
}
@@ -104,16 +105,17 @@ void intel_backlight_set_pwm_level(const struct drm_connector_state *conn_state,
struct drm_i915_private *i915 = to_i915(connector->base.dev);
struct intel_panel *panel = &connector->panel;
- drm_dbg_kms(&i915->drm, "set backlight PWM = %d\n", val);
+ drm_dbg_kms(&i915->drm, "[CONNECTOR:%d:%s] set backlight PWM = %d\n",
+ connector->base.base.id, connector->base.name, val);
panel->backlight.pwm_funcs->set(conn_state, val);
}
u32 intel_backlight_level_to_pwm(struct intel_connector *connector, u32 val)
{
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
struct intel_panel *panel = &connector->panel;
- drm_WARN_ON_ONCE(&dev_priv->drm,
+ drm_WARN_ON_ONCE(&i915->drm,
panel->backlight.max == 0 || panel->backlight.pwm_level_max == 0);
val = scale(val, panel->backlight.min, panel->backlight.max,
@@ -124,14 +126,14 @@ u32 intel_backlight_level_to_pwm(struct intel_connector *connector, u32 val)
u32 intel_backlight_level_from_pwm(struct intel_connector *connector, u32 val)
{
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
struct intel_panel *panel = &connector->panel;
- drm_WARN_ON_ONCE(&dev_priv->drm,
+ drm_WARN_ON_ONCE(&i915->drm,
panel->backlight.max == 0 || panel->backlight.pwm_level_max == 0);
- if (dev_priv->params.invert_brightness > 0 ||
- (dev_priv->params.invert_brightness == 0 && intel_has_quirk(dev_priv, QUIRK_INVERT_BRIGHTNESS)))
+ if (i915->params.invert_brightness > 0 ||
+ (i915->params.invert_brightness == 0 && intel_has_quirk(i915, QUIRK_INVERT_BRIGHTNESS)))
val = panel->backlight.pwm_level_max - (val - panel->backlight.pwm_level_min);
return scale(val, panel->backlight.pwm_level_min, panel->backlight.pwm_level_max,
@@ -140,32 +142,32 @@ u32 intel_backlight_level_from_pwm(struct intel_connector *connector, u32 val)
static u32 lpt_get_backlight(struct intel_connector *connector, enum pipe unused)
{
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
- return intel_de_read(dev_priv, BLC_PWM_PCH_CTL2) & BACKLIGHT_DUTY_CYCLE_MASK;
+ return intel_de_read(i915, BLC_PWM_PCH_CTL2) & BACKLIGHT_DUTY_CYCLE_MASK;
}
static u32 pch_get_backlight(struct intel_connector *connector, enum pipe unused)
{
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
- return intel_de_read(dev_priv, BLC_PWM_CPU_CTL) & BACKLIGHT_DUTY_CYCLE_MASK;
+ return intel_de_read(i915, BLC_PWM_CPU_CTL) & BACKLIGHT_DUTY_CYCLE_MASK;
}
static u32 i9xx_get_backlight(struct intel_connector *connector, enum pipe unused)
{
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
struct intel_panel *panel = &connector->panel;
u32 val;
- val = intel_de_read(dev_priv, BLC_PWM_CTL) & BACKLIGHT_DUTY_CYCLE_MASK;
- if (DISPLAY_VER(dev_priv) < 4)
+ val = intel_de_read(i915, BLC_PWM_CTL) & BACKLIGHT_DUTY_CYCLE_MASK;
+ if (DISPLAY_VER(i915) < 4)
val >>= 1;
if (panel->backlight.combination_mode) {
u8 lbpc;
- pci_read_config_byte(to_pci_dev(dev_priv->drm.dev), LBPC, &lbpc);
+ pci_read_config_byte(to_pci_dev(i915->drm.dev), LBPC, &lbpc);
val *= lbpc;
}
@@ -174,21 +176,20 @@ static u32 i9xx_get_backlight(struct intel_connector *connector, enum pipe unuse
static u32 vlv_get_backlight(struct intel_connector *connector, enum pipe pipe)
{
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
- if (drm_WARN_ON(&dev_priv->drm, pipe != PIPE_A && pipe != PIPE_B))
+ if (drm_WARN_ON(&i915->drm, pipe != PIPE_A && pipe != PIPE_B))
return 0;
- return intel_de_read(dev_priv, VLV_BLC_PWM_CTL(pipe)) & BACKLIGHT_DUTY_CYCLE_MASK;
+ return intel_de_read(i915, VLV_BLC_PWM_CTL(pipe)) & BACKLIGHT_DUTY_CYCLE_MASK;
}
static u32 bxt_get_backlight(struct intel_connector *connector, enum pipe unused)
{
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
struct intel_panel *panel = &connector->panel;
- return intel_de_read(dev_priv,
- BXT_BLC_PWM_DUTY(panel->backlight.controller));
+ return intel_de_read(i915, BXT_BLC_PWM_DUTY(panel->backlight.controller));
}
static u32 ext_pwm_get_backlight(struct intel_connector *connector, enum pipe unused)
@@ -203,69 +204,69 @@ static u32 ext_pwm_get_backlight(struct intel_connector *connector, enum pipe un
static void lpt_set_backlight(const struct drm_connector_state *conn_state, u32 level)
{
struct intel_connector *connector = to_intel_connector(conn_state->connector);
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
+ u32 val;
- u32 val = intel_de_read(dev_priv, BLC_PWM_PCH_CTL2) & ~BACKLIGHT_DUTY_CYCLE_MASK;
- intel_de_write(dev_priv, BLC_PWM_PCH_CTL2, val | level);
+ val = intel_de_read(i915, BLC_PWM_PCH_CTL2) & ~BACKLIGHT_DUTY_CYCLE_MASK;
+ intel_de_write(i915, BLC_PWM_PCH_CTL2, val | level);
}
static void pch_set_backlight(const struct drm_connector_state *conn_state, u32 level)
{
struct intel_connector *connector = to_intel_connector(conn_state->connector);
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
u32 tmp;
- tmp = intel_de_read(dev_priv, BLC_PWM_CPU_CTL) & ~BACKLIGHT_DUTY_CYCLE_MASK;
- intel_de_write(dev_priv, BLC_PWM_CPU_CTL, tmp | level);
+ tmp = intel_de_read(i915, BLC_PWM_CPU_CTL) & ~BACKLIGHT_DUTY_CYCLE_MASK;
+ intel_de_write(i915, BLC_PWM_CPU_CTL, tmp | level);
}
static void i9xx_set_backlight(const struct drm_connector_state *conn_state, u32 level)
{
struct intel_connector *connector = to_intel_connector(conn_state->connector);
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
struct intel_panel *panel = &connector->panel;
u32 tmp, mask;
- drm_WARN_ON(&dev_priv->drm, panel->backlight.pwm_level_max == 0);
+ drm_WARN_ON(&i915->drm, panel->backlight.pwm_level_max == 0);
if (panel->backlight.combination_mode) {
u8 lbpc;
lbpc = level * 0xfe / panel->backlight.pwm_level_max + 1;
level /= lbpc;
- pci_write_config_byte(to_pci_dev(dev_priv->drm.dev), LBPC, lbpc);
+ pci_write_config_byte(to_pci_dev(i915->drm.dev), LBPC, lbpc);
}
- if (DISPLAY_VER(dev_priv) == 4) {
+ if (DISPLAY_VER(i915) == 4) {
mask = BACKLIGHT_DUTY_CYCLE_MASK;
} else {
level <<= 1;
mask = BACKLIGHT_DUTY_CYCLE_MASK_PNV;
}
- tmp = intel_de_read(dev_priv, BLC_PWM_CTL) & ~mask;
- intel_de_write(dev_priv, BLC_PWM_CTL, tmp | level);
+ tmp = intel_de_read(i915, BLC_PWM_CTL) & ~mask;
+ intel_de_write(i915, BLC_PWM_CTL, tmp | level);
}
static void vlv_set_backlight(const struct drm_connector_state *conn_state, u32 level)
{
struct intel_connector *connector = to_intel_connector(conn_state->connector);
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
enum pipe pipe = to_intel_crtc(conn_state->crtc)->pipe;
u32 tmp;
- tmp = intel_de_read(dev_priv, VLV_BLC_PWM_CTL(pipe)) & ~BACKLIGHT_DUTY_CYCLE_MASK;
- intel_de_write(dev_priv, VLV_BLC_PWM_CTL(pipe), tmp | level);
+ tmp = intel_de_read(i915, VLV_BLC_PWM_CTL(pipe)) & ~BACKLIGHT_DUTY_CYCLE_MASK;
+ intel_de_write(i915, VLV_BLC_PWM_CTL(pipe), tmp | level);
}
static void bxt_set_backlight(const struct drm_connector_state *conn_state, u32 level)
{
struct intel_connector *connector = to_intel_connector(conn_state->connector);
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
struct intel_panel *panel = &connector->panel;
- intel_de_write(dev_priv,
- BXT_BLC_PWM_DUTY(panel->backlight.controller), level);
+ intel_de_write(i915, BXT_BLC_PWM_DUTY(panel->backlight.controller), level);
}
static void ext_pwm_set_backlight(const struct drm_connector_state *conn_state, u32 level)
@@ -283,7 +284,8 @@ intel_panel_actually_set_backlight(const struct drm_connector_state *conn_state,
struct drm_i915_private *i915 = to_i915(connector->base.dev);
struct intel_panel *panel = &connector->panel;
- drm_dbg_kms(&i915->drm, "set backlight level = %d\n", level);
+ drm_dbg_kms(&i915->drm, "[CONNECTOR:%d:%s] set backlight level = %d\n",
+ connector->base.base.id, connector->base.name, level);
panel->backlight.funcs->set(conn_state, level);
}
@@ -295,7 +297,7 @@ void intel_backlight_set_acpi(const struct drm_connector_state *conn_state,
u32 user_level, u32 user_max)
{
struct intel_connector *connector = to_intel_connector(conn_state->connector);
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
struct intel_panel *panel = &connector->panel;
u32 hw_level;
@@ -308,9 +310,9 @@ void intel_backlight_set_acpi(const struct drm_connector_state *conn_state,
if (!panel->backlight.present || !conn_state->crtc)
return;
- mutex_lock(&dev_priv->display.backlight.lock);
+ mutex_lock(&i915->display.backlight.lock);
- drm_WARN_ON(&dev_priv->drm, panel->backlight.max == 0);
+ drm_WARN_ON(&i915->drm, panel->backlight.max == 0);
hw_level = clamp_user_to_hw(connector, user_level, user_max);
panel->backlight.level = hw_level;
@@ -324,13 +326,13 @@ void intel_backlight_set_acpi(const struct drm_connector_state *conn_state,
if (panel->backlight.enabled)
intel_panel_actually_set_backlight(conn_state, hw_level);
- mutex_unlock(&dev_priv->display.backlight.lock);
+ mutex_unlock(&i915->display.backlight.lock);
}
static void lpt_disable_backlight(const struct drm_connector_state *old_conn_state, u32 level)
{
struct intel_connector *connector = to_intel_connector(old_conn_state->connector);
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
u32 tmp;
intel_backlight_set_pwm_level(old_conn_state, level);
@@ -343,31 +345,26 @@ static void lpt_disable_backlight(const struct drm_connector_state *old_conn_sta
* This needs rework if we need to add support for CPU PWM on PCH split
* platforms.
*/
- tmp = intel_de_read(dev_priv, BLC_PWM_CPU_CTL2);
+ tmp = intel_de_read(i915, BLC_PWM_CPU_CTL2);
if (tmp & BLM_PWM_ENABLE) {
- drm_dbg_kms(&dev_priv->drm,
- "cpu backlight was enabled, disabling\n");
- intel_de_write(dev_priv, BLC_PWM_CPU_CTL2,
- tmp & ~BLM_PWM_ENABLE);
+ drm_dbg_kms(&i915->drm, "[CONNECTOR:%d:%s] CPU backlight was enabled, disabling\n",
+ connector->base.base.id, connector->base.name);
+ intel_de_write(i915, BLC_PWM_CPU_CTL2, tmp & ~BLM_PWM_ENABLE);
}
- tmp = intel_de_read(dev_priv, BLC_PWM_PCH_CTL1);
- intel_de_write(dev_priv, BLC_PWM_PCH_CTL1, tmp & ~BLM_PCH_PWM_ENABLE);
+ intel_de_rmw(i915, BLC_PWM_PCH_CTL1, BLM_PCH_PWM_ENABLE, 0);
}
static void pch_disable_backlight(const struct drm_connector_state *old_conn_state, u32 val)
{
struct intel_connector *connector = to_intel_connector(old_conn_state->connector);
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
- u32 tmp;
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
intel_backlight_set_pwm_level(old_conn_state, val);
- tmp = intel_de_read(dev_priv, BLC_PWM_CPU_CTL2);
- intel_de_write(dev_priv, BLC_PWM_CPU_CTL2, tmp & ~BLM_PWM_ENABLE);
+ intel_de_rmw(i915, BLC_PWM_CPU_CTL2, BLM_PWM_ENABLE, 0);
- tmp = intel_de_read(dev_priv, BLC_PWM_PCH_CTL1);
- intel_de_write(dev_priv, BLC_PWM_PCH_CTL1, tmp & ~BLM_PCH_PWM_ENABLE);
+ intel_de_rmw(i915, BLC_PWM_PCH_CTL1, BLM_PCH_PWM_ENABLE, 0);
}
static void i9xx_disable_backlight(const struct drm_connector_state *old_conn_state, u32 val)
@@ -377,63 +374,49 @@ static void i9xx_disable_backlight(const struct drm_connector_state *old_conn_st
static void i965_disable_backlight(const struct drm_connector_state *old_conn_state, u32 val)
{
- struct drm_i915_private *dev_priv = to_i915(old_conn_state->connector->dev);
- u32 tmp;
+ struct drm_i915_private *i915 = to_i915(old_conn_state->connector->dev);
intel_backlight_set_pwm_level(old_conn_state, val);
- tmp = intel_de_read(dev_priv, BLC_PWM_CTL2);
- intel_de_write(dev_priv, BLC_PWM_CTL2, tmp & ~BLM_PWM_ENABLE);
+ intel_de_rmw(i915, BLC_PWM_CTL2, BLM_PWM_ENABLE, 0);
}
static void vlv_disable_backlight(const struct drm_connector_state *old_conn_state, u32 val)
{
struct intel_connector *connector = to_intel_connector(old_conn_state->connector);
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
enum pipe pipe = to_intel_crtc(old_conn_state->crtc)->pipe;
- u32 tmp;
intel_backlight_set_pwm_level(old_conn_state, val);
- tmp = intel_de_read(dev_priv, VLV_BLC_PWM_CTL2(pipe));
- intel_de_write(dev_priv, VLV_BLC_PWM_CTL2(pipe),
- tmp & ~BLM_PWM_ENABLE);
+ intel_de_rmw(i915, VLV_BLC_PWM_CTL2(pipe), BLM_PWM_ENABLE, 0);
}
static void bxt_disable_backlight(const struct drm_connector_state *old_conn_state, u32 val)
{
struct intel_connector *connector = to_intel_connector(old_conn_state->connector);
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
struct intel_panel *panel = &connector->panel;
- u32 tmp;
intel_backlight_set_pwm_level(old_conn_state, val);
- tmp = intel_de_read(dev_priv,
- BXT_BLC_PWM_CTL(panel->backlight.controller));
- intel_de_write(dev_priv, BXT_BLC_PWM_CTL(panel->backlight.controller),
- tmp & ~BXT_BLC_PWM_ENABLE);
+ intel_de_rmw(i915, BXT_BLC_PWM_CTL(panel->backlight.controller),
+ BXT_BLC_PWM_ENABLE, 0);
- if (panel->backlight.controller == 1) {
- val = intel_de_read(dev_priv, UTIL_PIN_CTL);
- val &= ~UTIL_PIN_ENABLE;
- intel_de_write(dev_priv, UTIL_PIN_CTL, val);
- }
+ if (panel->backlight.controller == 1)
+ intel_de_rmw(i915, UTIL_PIN_CTL, UTIL_PIN_ENABLE, 0);
}
static void cnp_disable_backlight(const struct drm_connector_state *old_conn_state, u32 val)
{
struct intel_connector *connector = to_intel_connector(old_conn_state->connector);
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
struct intel_panel *panel = &connector->panel;
- u32 tmp;
intel_backlight_set_pwm_level(old_conn_state, val);
- tmp = intel_de_read(dev_priv,
- BXT_BLC_PWM_CTL(panel->backlight.controller));
- intel_de_write(dev_priv, BXT_BLC_PWM_CTL(panel->backlight.controller),
- tmp & ~BXT_BLC_PWM_ENABLE);
+ intel_de_rmw(i915, BXT_BLC_PWM_CTL(panel->backlight.controller),
+ BXT_BLC_PWM_ENABLE, 0);
}
static void ext_pwm_disable_backlight(const struct drm_connector_state *old_conn_state, u32 level)
@@ -450,7 +433,7 @@ static void ext_pwm_disable_backlight(const struct drm_connector_state *old_conn
void intel_backlight_disable(const struct drm_connector_state *old_conn_state)
{
struct intel_connector *connector = to_intel_connector(old_conn_state->connector);
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
struct intel_panel *panel = &connector->panel;
if (!panel->backlight.present)
@@ -462,68 +445,61 @@ void intel_backlight_disable(const struct drm_connector_state *old_conn_state)
* backlight. This will leave the backlight on unnecessarily when
* another client is not activated.
*/
- if (dev_priv->drm.switch_power_state == DRM_SWITCH_POWER_CHANGING) {
- drm_dbg_kms(&dev_priv->drm,
- "Skipping backlight disable on vga switch\n");
+ if (i915->drm.switch_power_state == DRM_SWITCH_POWER_CHANGING) {
+ drm_dbg_kms(&i915->drm, "[CONNECTOR:%d:%s] Skipping backlight disable on vga switch\n",
+ connector->base.base.id, connector->base.name);
return;
}
- mutex_lock(&dev_priv->display.backlight.lock);
+ mutex_lock(&i915->display.backlight.lock);
if (panel->backlight.device)
panel->backlight.device->props.power = FB_BLANK_POWERDOWN;
panel->backlight.enabled = false;
panel->backlight.funcs->disable(old_conn_state, 0);
- mutex_unlock(&dev_priv->display.backlight.lock);
+ mutex_unlock(&i915->display.backlight.lock);
}
static void lpt_enable_backlight(const struct intel_crtc_state *crtc_state,
const struct drm_connector_state *conn_state, u32 level)
{
struct intel_connector *connector = to_intel_connector(conn_state->connector);
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
struct intel_panel *panel = &connector->panel;
- u32 pch_ctl1, pch_ctl2, schicken;
+ u32 pch_ctl1, pch_ctl2;
- pch_ctl1 = intel_de_read(dev_priv, BLC_PWM_PCH_CTL1);
+ pch_ctl1 = intel_de_read(i915, BLC_PWM_PCH_CTL1);
if (pch_ctl1 & BLM_PCH_PWM_ENABLE) {
- drm_dbg_kms(&dev_priv->drm, "pch backlight already enabled\n");
+ drm_dbg_kms(&i915->drm, "[CONNECTOR:%d:%s] PCH backlight already enabled\n",
+ connector->base.base.id, connector->base.name);
pch_ctl1 &= ~BLM_PCH_PWM_ENABLE;
- intel_de_write(dev_priv, BLC_PWM_PCH_CTL1, pch_ctl1);
+ intel_de_write(i915, BLC_PWM_PCH_CTL1, pch_ctl1);
}
- if (HAS_PCH_LPT(dev_priv)) {
- schicken = intel_de_read(dev_priv, SOUTH_CHICKEN2);
- if (panel->backlight.alternate_pwm_increment)
- schicken |= LPT_PWM_GRANULARITY;
- else
- schicken &= ~LPT_PWM_GRANULARITY;
- intel_de_write(dev_priv, SOUTH_CHICKEN2, schicken);
- } else {
- schicken = intel_de_read(dev_priv, SOUTH_CHICKEN1);
- if (panel->backlight.alternate_pwm_increment)
- schicken |= SPT_PWM_GRANULARITY;
- else
- schicken &= ~SPT_PWM_GRANULARITY;
- intel_de_write(dev_priv, SOUTH_CHICKEN1, schicken);
- }
+ if (HAS_PCH_LPT(i915))
+ intel_de_rmw(i915, SOUTH_CHICKEN2, LPT_PWM_GRANULARITY,
+ panel->backlight.alternate_pwm_increment ?
+ LPT_PWM_GRANULARITY : 0);
+ else
+ intel_de_rmw(i915, SOUTH_CHICKEN1, SPT_PWM_GRANULARITY,
+ panel->backlight.alternate_pwm_increment ?
+ SPT_PWM_GRANULARITY : 0);
pch_ctl2 = panel->backlight.pwm_level_max << 16;
- intel_de_write(dev_priv, BLC_PWM_PCH_CTL2, pch_ctl2);
+ intel_de_write(i915, BLC_PWM_PCH_CTL2, pch_ctl2);
pch_ctl1 = 0;
if (panel->backlight.active_low_pwm)
pch_ctl1 |= BLM_PCH_POLARITY;
/* After LPT, override is the default. */
- if (HAS_PCH_LPT(dev_priv))
+ if (HAS_PCH_LPT(i915))
pch_ctl1 |= BLM_PCH_OVERRIDE_ENABLE;
- intel_de_write(dev_priv, BLC_PWM_PCH_CTL1, pch_ctl1);
- intel_de_posting_read(dev_priv, BLC_PWM_PCH_CTL1);
- intel_de_write(dev_priv, BLC_PWM_PCH_CTL1,
- pch_ctl1 | BLM_PCH_PWM_ENABLE);
+ intel_de_write(i915, BLC_PWM_PCH_CTL1, pch_ctl1);
+ intel_de_posting_read(i915, BLC_PWM_PCH_CTL1);
+ intel_de_write(i915, BLC_PWM_PCH_CTL1, pch_ctl1 | BLM_PCH_PWM_ENABLE);
/* This won't stick until the above enable. */
intel_backlight_set_pwm_level(conn_state, level);
@@ -533,61 +509,63 @@ static void pch_enable_backlight(const struct intel_crtc_state *crtc_state,
const struct drm_connector_state *conn_state, u32 level)
{
struct intel_connector *connector = to_intel_connector(conn_state->connector);
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
struct intel_panel *panel = &connector->panel;
enum transcoder cpu_transcoder = crtc_state->cpu_transcoder;
u32 cpu_ctl2, pch_ctl1, pch_ctl2;
- cpu_ctl2 = intel_de_read(dev_priv, BLC_PWM_CPU_CTL2);
+ cpu_ctl2 = intel_de_read(i915, BLC_PWM_CPU_CTL2);
if (cpu_ctl2 & BLM_PWM_ENABLE) {
- drm_dbg_kms(&dev_priv->drm, "cpu backlight already enabled\n");
+ drm_dbg_kms(&i915->drm, "[CONNECTOR:%d:%s] CPU backlight already enabled\n",
+ connector->base.base.id, connector->base.name);
cpu_ctl2 &= ~BLM_PWM_ENABLE;
- intel_de_write(dev_priv, BLC_PWM_CPU_CTL2, cpu_ctl2);
+ intel_de_write(i915, BLC_PWM_CPU_CTL2, cpu_ctl2);
}
- pch_ctl1 = intel_de_read(dev_priv, BLC_PWM_PCH_CTL1);
+ pch_ctl1 = intel_de_read(i915, BLC_PWM_PCH_CTL1);
if (pch_ctl1 & BLM_PCH_PWM_ENABLE) {
- drm_dbg_kms(&dev_priv->drm, "pch backlight already enabled\n");
+ drm_dbg_kms(&i915->drm, "[CONNECTOR:%d:%s] PCH backlight already enabled\n",
+ connector->base.base.id, connector->base.name);
pch_ctl1 &= ~BLM_PCH_PWM_ENABLE;
- intel_de_write(dev_priv, BLC_PWM_PCH_CTL1, pch_ctl1);
+ intel_de_write(i915, BLC_PWM_PCH_CTL1, pch_ctl1);
}
if (cpu_transcoder == TRANSCODER_EDP)
cpu_ctl2 = BLM_TRANSCODER_EDP;
else
cpu_ctl2 = BLM_PIPE(cpu_transcoder);
- intel_de_write(dev_priv, BLC_PWM_CPU_CTL2, cpu_ctl2);
- intel_de_posting_read(dev_priv, BLC_PWM_CPU_CTL2);
- intel_de_write(dev_priv, BLC_PWM_CPU_CTL2, cpu_ctl2 | BLM_PWM_ENABLE);
+ intel_de_write(i915, BLC_PWM_CPU_CTL2, cpu_ctl2);
+ intel_de_posting_read(i915, BLC_PWM_CPU_CTL2);
+ intel_de_write(i915, BLC_PWM_CPU_CTL2, cpu_ctl2 | BLM_PWM_ENABLE);
/* This won't stick until the above enable. */
intel_backlight_set_pwm_level(conn_state, level);
pch_ctl2 = panel->backlight.pwm_level_max << 16;
- intel_de_write(dev_priv, BLC_PWM_PCH_CTL2, pch_ctl2);
+ intel_de_write(i915, BLC_PWM_PCH_CTL2, pch_ctl2);
pch_ctl1 = 0;
if (panel->backlight.active_low_pwm)
pch_ctl1 |= BLM_PCH_POLARITY;
- intel_de_write(dev_priv, BLC_PWM_PCH_CTL1, pch_ctl1);
- intel_de_posting_read(dev_priv, BLC_PWM_PCH_CTL1);
- intel_de_write(dev_priv, BLC_PWM_PCH_CTL1,
- pch_ctl1 | BLM_PCH_PWM_ENABLE);
+ intel_de_write(i915, BLC_PWM_PCH_CTL1, pch_ctl1);
+ intel_de_posting_read(i915, BLC_PWM_PCH_CTL1);
+ intel_de_write(i915, BLC_PWM_PCH_CTL1, pch_ctl1 | BLM_PCH_PWM_ENABLE);
}
static void i9xx_enable_backlight(const struct intel_crtc_state *crtc_state,
const struct drm_connector_state *conn_state, u32 level)
{
struct intel_connector *connector = to_intel_connector(conn_state->connector);
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
struct intel_panel *panel = &connector->panel;
u32 ctl, freq;
- ctl = intel_de_read(dev_priv, BLC_PWM_CTL);
+ ctl = intel_de_read(i915, BLC_PWM_CTL);
if (ctl & BACKLIGHT_DUTY_CYCLE_MASK_PNV) {
- drm_dbg_kms(&dev_priv->drm, "backlight already enabled\n");
- intel_de_write(dev_priv, BLC_PWM_CTL, 0);
+ drm_dbg_kms(&i915->drm, "[CONNECTOR:%d:%s] backlight already enabled\n",
+ connector->base.base.id, connector->base.name);
+ intel_de_write(i915, BLC_PWM_CTL, 0);
}
freq = panel->backlight.pwm_level_max;
@@ -597,11 +575,11 @@ static void i9xx_enable_backlight(const struct intel_crtc_state *crtc_state,
ctl = freq << 17;
if (panel->backlight.combination_mode)
ctl |= BLM_LEGACY_MODE;
- if (IS_PINEVIEW(dev_priv) && panel->backlight.active_low_pwm)
+ if (IS_PINEVIEW(i915) && panel->backlight.active_low_pwm)
ctl |= BLM_POLARITY_PNV;
- intel_de_write(dev_priv, BLC_PWM_CTL, ctl);
- intel_de_posting_read(dev_priv, BLC_PWM_CTL);
+ intel_de_write(i915, BLC_PWM_CTL, ctl);
+ intel_de_posting_read(i915, BLC_PWM_CTL);
/* XXX: combine this into above write? */
intel_backlight_set_pwm_level(conn_state, level);
@@ -611,24 +589,25 @@ static void i9xx_enable_backlight(const struct intel_crtc_state *crtc_state,
* 855gm only, but checking for gen2 is safe, as 855gm is the only gen2
* that has backlight.
*/
- if (DISPLAY_VER(dev_priv) == 2)
- intel_de_write(dev_priv, BLC_HIST_CTL, BLM_HISTOGRAM_ENABLE);
+ if (DISPLAY_VER(i915) == 2)
+ intel_de_write(i915, BLC_HIST_CTL, BLM_HISTOGRAM_ENABLE);
}
static void i965_enable_backlight(const struct intel_crtc_state *crtc_state,
const struct drm_connector_state *conn_state, u32 level)
{
struct intel_connector *connector = to_intel_connector(conn_state->connector);
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
struct intel_panel *panel = &connector->panel;
enum pipe pipe = to_intel_crtc(conn_state->crtc)->pipe;
u32 ctl, ctl2, freq;
- ctl2 = intel_de_read(dev_priv, BLC_PWM_CTL2);
+ ctl2 = intel_de_read(i915, BLC_PWM_CTL2);
if (ctl2 & BLM_PWM_ENABLE) {
- drm_dbg_kms(&dev_priv->drm, "backlight already enabled\n");
+ drm_dbg_kms(&i915->drm, "[CONNECTOR:%d:%s] backlight already enabled\n",
+ connector->base.base.id, connector->base.name);
ctl2 &= ~BLM_PWM_ENABLE;
- intel_de_write(dev_priv, BLC_PWM_CTL2, ctl2);
+ intel_de_write(i915, BLC_PWM_CTL2, ctl2);
}
freq = panel->backlight.pwm_level_max;
@@ -636,16 +615,16 @@ static void i965_enable_backlight(const struct intel_crtc_state *crtc_state,
freq /= 0xff;
ctl = freq << 16;
- intel_de_write(dev_priv, BLC_PWM_CTL, ctl);
+ intel_de_write(i915, BLC_PWM_CTL, ctl);
ctl2 = BLM_PIPE(pipe);
if (panel->backlight.combination_mode)
ctl2 |= BLM_COMBINATION_MODE;
if (panel->backlight.active_low_pwm)
ctl2 |= BLM_POLARITY_I965;
- intel_de_write(dev_priv, BLC_PWM_CTL2, ctl2);
- intel_de_posting_read(dev_priv, BLC_PWM_CTL2);
- intel_de_write(dev_priv, BLC_PWM_CTL2, ctl2 | BLM_PWM_ENABLE);
+ intel_de_write(i915, BLC_PWM_CTL2, ctl2);
+ intel_de_posting_read(i915, BLC_PWM_CTL2);
+ intel_de_write(i915, BLC_PWM_CTL2, ctl2 | BLM_PWM_ENABLE);
intel_backlight_set_pwm_level(conn_state, level);
}
@@ -654,20 +633,21 @@ static void vlv_enable_backlight(const struct intel_crtc_state *crtc_state,
const struct drm_connector_state *conn_state, u32 level)
{
struct intel_connector *connector = to_intel_connector(conn_state->connector);
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
struct intel_panel *panel = &connector->panel;
enum pipe pipe = to_intel_crtc(crtc_state->uapi.crtc)->pipe;
u32 ctl, ctl2;
- ctl2 = intel_de_read(dev_priv, VLV_BLC_PWM_CTL2(pipe));
+ ctl2 = intel_de_read(i915, VLV_BLC_PWM_CTL2(pipe));
if (ctl2 & BLM_PWM_ENABLE) {
- drm_dbg_kms(&dev_priv->drm, "backlight already enabled\n");
+ drm_dbg_kms(&i915->drm, "[CONNECTOR:%d:%s] backlight already enabled\n",
+ connector->base.base.id, connector->base.name);
ctl2 &= ~BLM_PWM_ENABLE;
- intel_de_write(dev_priv, VLV_BLC_PWM_CTL2(pipe), ctl2);
+ intel_de_write(i915, VLV_BLC_PWM_CTL2(pipe), ctl2);
}
ctl = panel->backlight.pwm_level_max << 16;
- intel_de_write(dev_priv, VLV_BLC_PWM_CTL(pipe), ctl);
+ intel_de_write(i915, VLV_BLC_PWM_CTL(pipe), ctl);
/* XXX: combine this into above write? */
intel_backlight_set_pwm_level(conn_state, level);
@@ -675,50 +655,47 @@ static void vlv_enable_backlight(const struct intel_crtc_state *crtc_state,
ctl2 = 0;
if (panel->backlight.active_low_pwm)
ctl2 |= BLM_POLARITY_I965;
- intel_de_write(dev_priv, VLV_BLC_PWM_CTL2(pipe), ctl2);
- intel_de_posting_read(dev_priv, VLV_BLC_PWM_CTL2(pipe));
- intel_de_write(dev_priv, VLV_BLC_PWM_CTL2(pipe),
- ctl2 | BLM_PWM_ENABLE);
+ intel_de_write(i915, VLV_BLC_PWM_CTL2(pipe), ctl2);
+ intel_de_posting_read(i915, VLV_BLC_PWM_CTL2(pipe));
+ intel_de_write(i915, VLV_BLC_PWM_CTL2(pipe), ctl2 | BLM_PWM_ENABLE);
}
static void bxt_enable_backlight(const struct intel_crtc_state *crtc_state,
const struct drm_connector_state *conn_state, u32 level)
{
struct intel_connector *connector = to_intel_connector(conn_state->connector);
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
struct intel_panel *panel = &connector->panel;
enum pipe pipe = to_intel_crtc(crtc_state->uapi.crtc)->pipe;
u32 pwm_ctl, val;
/* Controller 1 uses the utility pin. */
if (panel->backlight.controller == 1) {
- val = intel_de_read(dev_priv, UTIL_PIN_CTL);
+ val = intel_de_read(i915, UTIL_PIN_CTL);
if (val & UTIL_PIN_ENABLE) {
- drm_dbg_kms(&dev_priv->drm,
- "util pin already enabled\n");
+ drm_dbg_kms(&i915->drm, "[CONNECTOR:%d:%s] utility pin already enabled\n",
+ connector->base.base.id, connector->base.name);
val &= ~UTIL_PIN_ENABLE;
- intel_de_write(dev_priv, UTIL_PIN_CTL, val);
+ intel_de_write(i915, UTIL_PIN_CTL, val);
}
val = 0;
if (panel->backlight.util_pin_active_low)
val |= UTIL_PIN_POLARITY;
- intel_de_write(dev_priv, UTIL_PIN_CTL,
+ intel_de_write(i915, UTIL_PIN_CTL,
val | UTIL_PIN_PIPE(pipe) | UTIL_PIN_MODE_PWM | UTIL_PIN_ENABLE);
}
- pwm_ctl = intel_de_read(dev_priv,
- BXT_BLC_PWM_CTL(panel->backlight.controller));
+ pwm_ctl = intel_de_read(i915, BXT_BLC_PWM_CTL(panel->backlight.controller));
if (pwm_ctl & BXT_BLC_PWM_ENABLE) {
- drm_dbg_kms(&dev_priv->drm, "backlight already enabled\n");
+ drm_dbg_kms(&i915->drm, "[CONNECTOR:%d:%s] backlight already enabled\n",
+ connector->base.base.id, connector->base.name);
pwm_ctl &= ~BXT_BLC_PWM_ENABLE;
- intel_de_write(dev_priv,
- BXT_BLC_PWM_CTL(panel->backlight.controller),
+ intel_de_write(i915, BXT_BLC_PWM_CTL(panel->backlight.controller),
pwm_ctl);
}
- intel_de_write(dev_priv,
- BXT_BLC_PWM_FREQ(panel->backlight.controller),
+ intel_de_write(i915, BXT_BLC_PWM_FREQ(panel->backlight.controller),
panel->backlight.pwm_level_max);
intel_backlight_set_pwm_level(conn_state, level);
@@ -727,11 +704,9 @@ static void bxt_enable_backlight(const struct intel_crtc_state *crtc_state,
if (panel->backlight.active_low_pwm)
pwm_ctl |= BXT_BLC_PWM_POLARITY;
- intel_de_write(dev_priv, BXT_BLC_PWM_CTL(panel->backlight.controller),
- pwm_ctl);
- intel_de_posting_read(dev_priv,
- BXT_BLC_PWM_CTL(panel->backlight.controller));
- intel_de_write(dev_priv, BXT_BLC_PWM_CTL(panel->backlight.controller),
+ intel_de_write(i915, BXT_BLC_PWM_CTL(panel->backlight.controller), pwm_ctl);
+ intel_de_posting_read(i915, BXT_BLC_PWM_CTL(panel->backlight.controller));
+ intel_de_write(i915, BXT_BLC_PWM_CTL(panel->backlight.controller),
pwm_ctl | BXT_BLC_PWM_ENABLE);
}
@@ -739,22 +714,19 @@ static void cnp_enable_backlight(const struct intel_crtc_state *crtc_state,
const struct drm_connector_state *conn_state, u32 level)
{
struct intel_connector *connector = to_intel_connector(conn_state->connector);
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
struct intel_panel *panel = &connector->panel;
u32 pwm_ctl;
- pwm_ctl = intel_de_read(dev_priv,
- BXT_BLC_PWM_CTL(panel->backlight.controller));
+ pwm_ctl = intel_de_read(i915, BXT_BLC_PWM_CTL(panel->backlight.controller));
if (pwm_ctl & BXT_BLC_PWM_ENABLE) {
- drm_dbg_kms(&dev_priv->drm, "backlight already enabled\n");
+ drm_dbg_kms(&i915->drm, "backlight already enabled\n");
pwm_ctl &= ~BXT_BLC_PWM_ENABLE;
- intel_de_write(dev_priv,
- BXT_BLC_PWM_CTL(panel->backlight.controller),
+ intel_de_write(i915, BXT_BLC_PWM_CTL(panel->backlight.controller),
pwm_ctl);
}
- intel_de_write(dev_priv,
- BXT_BLC_PWM_FREQ(panel->backlight.controller),
+ intel_de_write(i915, BXT_BLC_PWM_FREQ(panel->backlight.controller),
panel->backlight.pwm_level_max);
intel_backlight_set_pwm_level(conn_state, level);
@@ -763,11 +735,9 @@ static void cnp_enable_backlight(const struct intel_crtc_state *crtc_state,
if (panel->backlight.active_low_pwm)
pwm_ctl |= BXT_BLC_PWM_POLARITY;
- intel_de_write(dev_priv, BXT_BLC_PWM_CTL(panel->backlight.controller),
- pwm_ctl);
- intel_de_posting_read(dev_priv,
- BXT_BLC_PWM_CTL(panel->backlight.controller));
- intel_de_write(dev_priv, BXT_BLC_PWM_CTL(panel->backlight.controller),
+ intel_de_write(i915, BXT_BLC_PWM_CTL(panel->backlight.controller), pwm_ctl);
+ intel_de_posting_read(i915, BXT_BLC_PWM_CTL(panel->backlight.controller));
+ intel_de_write(i915, BXT_BLC_PWM_CTL(panel->backlight.controller),
pwm_ctl | BXT_BLC_PWM_ENABLE);
}
@@ -809,37 +779,37 @@ void intel_backlight_enable(const struct intel_crtc_state *crtc_state,
const struct drm_connector_state *conn_state)
{
struct intel_connector *connector = to_intel_connector(conn_state->connector);
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
struct intel_panel *panel = &connector->panel;
enum pipe pipe = to_intel_crtc(crtc_state->uapi.crtc)->pipe;
if (!panel->backlight.present)
return;
- drm_dbg_kms(&dev_priv->drm, "pipe %c\n", pipe_name(pipe));
+ drm_dbg_kms(&i915->drm, "pipe %c\n", pipe_name(pipe));
- mutex_lock(&dev_priv->display.backlight.lock);
+ mutex_lock(&i915->display.backlight.lock);
__intel_backlight_enable(crtc_state, conn_state);
- mutex_unlock(&dev_priv->display.backlight.lock);
+ mutex_unlock(&i915->display.backlight.lock);
}
#if IS_ENABLED(CONFIG_BACKLIGHT_CLASS_DEVICE)
static u32 intel_panel_get_backlight(struct intel_connector *connector)
{
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
struct intel_panel *panel = &connector->panel;
u32 val = 0;
- mutex_lock(&dev_priv->display.backlight.lock);
+ mutex_lock(&i915->display.backlight.lock);
if (panel->backlight.enabled)
val = panel->backlight.funcs->get(connector, intel_connector_get_pipe(connector));
- mutex_unlock(&dev_priv->display.backlight.lock);
+ mutex_unlock(&i915->display.backlight.lock);
- drm_dbg_kms(&dev_priv->drm, "get backlight PWM = %d\n", val);
+ drm_dbg_kms(&i915->drm, "get backlight PWM = %d\n", val);
return val;
}
@@ -858,16 +828,16 @@ static void intel_panel_set_backlight(const struct drm_connector_state *conn_sta
u32 user_level, u32 user_max)
{
struct intel_connector *connector = to_intel_connector(conn_state->connector);
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
struct intel_panel *panel = &connector->panel;
u32 hw_level;
if (!panel->backlight.present)
return;
- mutex_lock(&dev_priv->display.backlight.lock);
+ mutex_lock(&i915->display.backlight.lock);
- drm_WARN_ON(&dev_priv->drm, panel->backlight.max == 0);
+ drm_WARN_ON(&i915->drm, panel->backlight.max == 0);
hw_level = scale_user_to_hw(connector, user_level, user_max);
panel->backlight.level = hw_level;
@@ -875,18 +845,19 @@ static void intel_panel_set_backlight(const struct drm_connector_state *conn_sta
if (panel->backlight.enabled)
intel_panel_actually_set_backlight(conn_state, hw_level);
- mutex_unlock(&dev_priv->display.backlight.lock);
+ mutex_unlock(&i915->display.backlight.lock);
}
static int intel_backlight_device_update_status(struct backlight_device *bd)
{
struct intel_connector *connector = bl_get_data(bd);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
struct intel_panel *panel = &connector->panel;
- struct drm_device *dev = connector->base.dev;
- drm_modeset_lock(&dev->mode_config.connection_mutex, NULL);
- DRM_DEBUG_KMS("updating intel_backlight, brightness=%d/%d\n",
- bd->props.brightness, bd->props.max_brightness);
+ drm_modeset_lock(&i915->drm.mode_config.connection_mutex, NULL);
+
+ drm_dbg_kms(&i915->drm, "updating intel_backlight, brightness=%d/%d\n",
+ bd->props.brightness, bd->props.max_brightness);
intel_panel_set_backlight(connector->base.state, bd->props.brightness,
bd->props.max_brightness);
@@ -906,28 +877,28 @@ static int intel_backlight_device_update_status(struct backlight_device *bd)
bd->props.power = FB_BLANK_POWERDOWN;
}
- drm_modeset_unlock(&dev->mode_config.connection_mutex);
+ drm_modeset_unlock(&i915->drm.mode_config.connection_mutex);
+
return 0;
}
static int intel_backlight_device_get_brightness(struct backlight_device *bd)
{
struct intel_connector *connector = bl_get_data(bd);
- struct drm_device *dev = connector->base.dev;
- struct drm_i915_private *dev_priv = to_i915(dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
intel_wakeref_t wakeref;
int ret = 0;
- with_intel_runtime_pm(&dev_priv->runtime_pm, wakeref) {
+ with_intel_runtime_pm(&i915->runtime_pm, wakeref) {
u32 hw_level;
- drm_modeset_lock(&dev->mode_config.connection_mutex, NULL);
+ drm_modeset_lock(&i915->drm.mode_config.connection_mutex, NULL);
hw_level = intel_panel_get_backlight(connector);
ret = scale_hw_to_user(connector,
hw_level, bd->props.max_brightness);
- drm_modeset_unlock(&dev->mode_config.connection_mutex);
+ drm_modeset_unlock(&i915->drm.mode_config.connection_mutex);
}
return ret;
@@ -1037,9 +1008,9 @@ void intel_backlight_device_unregister(struct intel_connector *connector)
*/
static u32 cnp_hz_to_pwm(struct intel_connector *connector, u32 pwm_freq_hz)
{
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
- return DIV_ROUND_CLOSEST(KHz(RUNTIME_INFO(dev_priv)->rawclk_freq),
+ return DIV_ROUND_CLOSEST(KHz(RUNTIME_INFO(i915)->rawclk_freq),
pwm_freq_hz);
}
@@ -1076,7 +1047,7 @@ static u32 spt_hz_to_pwm(struct intel_connector *connector, u32 pwm_freq_hz)
*/
static u32 lpt_hz_to_pwm(struct intel_connector *connector, u32 pwm_freq_hz)
{
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
struct intel_panel *panel = &connector->panel;
u32 mul, clock;
@@ -1085,7 +1056,7 @@ static u32 lpt_hz_to_pwm(struct intel_connector *connector, u32 pwm_freq_hz)
else
mul = 128;
- if (HAS_PCH_LPT_H(dev_priv))
+ if (HAS_PCH_LPT_H(i915))
clock = MHz(135); /* LPT:H */
else
clock = MHz(24); /* LPT:LP */
@@ -1099,9 +1070,9 @@ static u32 lpt_hz_to_pwm(struct intel_connector *connector, u32 pwm_freq_hz)
*/
static u32 pch_hz_to_pwm(struct intel_connector *connector, u32 pwm_freq_hz)
{
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
- return DIV_ROUND_CLOSEST(KHz(RUNTIME_INFO(dev_priv)->rawclk_freq),
+ return DIV_ROUND_CLOSEST(KHz(RUNTIME_INFO(i915)->rawclk_freq),
pwm_freq_hz * 128);
}
@@ -1115,13 +1086,13 @@ static u32 pch_hz_to_pwm(struct intel_connector *connector, u32 pwm_freq_hz)
*/
static u32 i9xx_hz_to_pwm(struct intel_connector *connector, u32 pwm_freq_hz)
{
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
int clock;
- if (IS_PINEVIEW(dev_priv))
- clock = KHz(RUNTIME_INFO(dev_priv)->rawclk_freq);
+ if (IS_PINEVIEW(i915))
+ clock = KHz(RUNTIME_INFO(i915)->rawclk_freq);
else
- clock = KHz(dev_priv->display.cdclk.hw.cdclk);
+ clock = KHz(i915->display.cdclk.hw.cdclk);
return DIV_ROUND_CLOSEST(clock, pwm_freq_hz * 32);
}
@@ -1133,13 +1104,13 @@ static u32 i9xx_hz_to_pwm(struct intel_connector *connector, u32 pwm_freq_hz)
*/
static u32 i965_hz_to_pwm(struct intel_connector *connector, u32 pwm_freq_hz)
{
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
int clock;
- if (IS_G4X(dev_priv))
- clock = KHz(RUNTIME_INFO(dev_priv)->rawclk_freq);
+ if (IS_G4X(i915))
+ clock = KHz(RUNTIME_INFO(i915)->rawclk_freq);
else
- clock = KHz(dev_priv->display.cdclk.hw.cdclk);
+ clock = KHz(i915->display.cdclk.hw.cdclk);
return DIV_ROUND_CLOSEST(clock, pwm_freq_hz * 128);
}
@@ -1151,17 +1122,17 @@ static u32 i965_hz_to_pwm(struct intel_connector *connector, u32 pwm_freq_hz)
*/
static u32 vlv_hz_to_pwm(struct intel_connector *connector, u32 pwm_freq_hz)
{
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
int mul, clock;
- if ((intel_de_read(dev_priv, CBR1_VLV) & CBR_PWM_CLOCK_MUX_SELECT) == 0) {
- if (IS_CHERRYVIEW(dev_priv))
+ if ((intel_de_read(i915, CBR1_VLV) & CBR_PWM_CLOCK_MUX_SELECT) == 0) {
+ if (IS_CHERRYVIEW(i915))
clock = KHz(19200);
else
clock = MHz(25);
mul = 16;
} else {
- clock = KHz(RUNTIME_INFO(dev_priv)->rawclk_freq);
+ clock = KHz(RUNTIME_INFO(i915)->rawclk_freq);
mul = 128;
}
@@ -1170,16 +1141,16 @@ static u32 vlv_hz_to_pwm(struct intel_connector *connector, u32 pwm_freq_hz)
static u16 get_vbt_pwm_freq(struct intel_connector *connector)
{
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
u16 pwm_freq_hz = connector->panel.vbt.backlight.pwm_freq_hz;
if (pwm_freq_hz) {
- drm_dbg_kms(&dev_priv->drm,
+ drm_dbg_kms(&i915->drm,
"VBT defined backlight frequency %u Hz\n",
pwm_freq_hz);
} else {
pwm_freq_hz = 200;
- drm_dbg_kms(&dev_priv->drm,
+ drm_dbg_kms(&i915->drm,
"default backlight frequency %u Hz\n",
pwm_freq_hz);
}
@@ -1189,20 +1160,20 @@ static u16 get_vbt_pwm_freq(struct intel_connector *connector)
static u32 get_backlight_max_vbt(struct intel_connector *connector)
{
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
struct intel_panel *panel = &connector->panel;
u16 pwm_freq_hz = get_vbt_pwm_freq(connector);
u32 pwm;
if (!panel->backlight.pwm_funcs->hz_to_pwm) {
- drm_dbg_kms(&dev_priv->drm,
+ drm_dbg_kms(&i915->drm,
"backlight frequency conversion not supported\n");
return 0;
}
pwm = panel->backlight.pwm_funcs->hz_to_pwm(connector, pwm_freq_hz);
if (!pwm) {
- drm_dbg_kms(&dev_priv->drm,
+ drm_dbg_kms(&i915->drm,
"backlight frequency conversion failed\n");
return 0;
}
@@ -1215,11 +1186,11 @@ static u32 get_backlight_max_vbt(struct intel_connector *connector)
*/
static u32 get_backlight_min_vbt(struct intel_connector *connector)
{
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
struct intel_panel *panel = &connector->panel;
int min;
- drm_WARN_ON(&dev_priv->drm, panel->backlight.pwm_level_max == 0);
+ drm_WARN_ON(&i915->drm, panel->backlight.pwm_level_max == 0);
/*
* XXX: If the vbt value is 255, it makes min equal to max, which leads
@@ -1230,7 +1201,7 @@ static u32 get_backlight_min_vbt(struct intel_connector *connector)
*/
min = clamp_t(int, connector->panel.vbt.backlight.min_brightness, 0, 64);
if (min != connector->panel.vbt.backlight.min_brightness) {
- drm_dbg_kms(&dev_priv->drm,
+ drm_dbg_kms(&i915->drm,
"clamping VBT min backlight %d/255 to %d/255\n",
connector->panel.vbt.backlight.min_brightness, min);
}
@@ -1241,24 +1212,24 @@ static u32 get_backlight_min_vbt(struct intel_connector *connector)
static int lpt_setup_backlight(struct intel_connector *connector, enum pipe unused)
{
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
struct intel_panel *panel = &connector->panel;
u32 cpu_ctl2, pch_ctl1, pch_ctl2, val;
bool alt, cpu_mode;
- if (HAS_PCH_LPT(dev_priv))
- alt = intel_de_read(dev_priv, SOUTH_CHICKEN2) & LPT_PWM_GRANULARITY;
+ if (HAS_PCH_LPT(i915))
+ alt = intel_de_read(i915, SOUTH_CHICKEN2) & LPT_PWM_GRANULARITY;
else
- alt = intel_de_read(dev_priv, SOUTH_CHICKEN1) & SPT_PWM_GRANULARITY;
+ alt = intel_de_read(i915, SOUTH_CHICKEN1) & SPT_PWM_GRANULARITY;
panel->backlight.alternate_pwm_increment = alt;
- pch_ctl1 = intel_de_read(dev_priv, BLC_PWM_PCH_CTL1);
+ pch_ctl1 = intel_de_read(i915, BLC_PWM_PCH_CTL1);
panel->backlight.active_low_pwm = pch_ctl1 & BLM_PCH_POLARITY;
- pch_ctl2 = intel_de_read(dev_priv, BLC_PWM_PCH_CTL2);
+ pch_ctl2 = intel_de_read(i915, BLC_PWM_PCH_CTL2);
panel->backlight.pwm_level_max = pch_ctl2 >> 16;
- cpu_ctl2 = intel_de_read(dev_priv, BLC_PWM_CPU_CTL2);
+ cpu_ctl2 = intel_de_read(i915, BLC_PWM_CPU_CTL2);
if (!panel->backlight.pwm_level_max)
panel->backlight.pwm_level_max = get_backlight_max_vbt(connector);
@@ -1270,38 +1241,42 @@ static int lpt_setup_backlight(struct intel_connector *connector, enum pipe unus
panel->backlight.pwm_enabled = pch_ctl1 & BLM_PCH_PWM_ENABLE;
- cpu_mode = panel->backlight.pwm_enabled && HAS_PCH_LPT(dev_priv) &&
+ cpu_mode = panel->backlight.pwm_enabled && HAS_PCH_LPT(i915) &&
!(pch_ctl1 & BLM_PCH_OVERRIDE_ENABLE) &&
(cpu_ctl2 & BLM_PWM_ENABLE);
if (cpu_mode) {
val = pch_get_backlight(connector, unused);
- drm_dbg_kms(&dev_priv->drm,
+ drm_dbg_kms(&i915->drm,
"CPU backlight register was enabled, switching to PCH override\n");
/* Write converted CPU PWM value to PCH override register */
lpt_set_backlight(connector->base.state, val);
- intel_de_write(dev_priv, BLC_PWM_PCH_CTL1,
+ intel_de_write(i915, BLC_PWM_PCH_CTL1,
pch_ctl1 | BLM_PCH_OVERRIDE_ENABLE);
- intel_de_write(dev_priv, BLC_PWM_CPU_CTL2,
+ intel_de_write(i915, BLC_PWM_CPU_CTL2,
cpu_ctl2 & ~BLM_PWM_ENABLE);
}
+ drm_dbg_kms(&i915->drm,
+ "[CONNECTOR:%d:%s] Using native PCH PWM for backlight control\n",
+ connector->base.base.id, connector->base.name);
+
return 0;
}
static int pch_setup_backlight(struct intel_connector *connector, enum pipe unused)
{
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
struct intel_panel *panel = &connector->panel;
u32 cpu_ctl2, pch_ctl1, pch_ctl2;
- pch_ctl1 = intel_de_read(dev_priv, BLC_PWM_PCH_CTL1);
+ pch_ctl1 = intel_de_read(i915, BLC_PWM_PCH_CTL1);
panel->backlight.active_low_pwm = pch_ctl1 & BLM_PCH_POLARITY;
- pch_ctl2 = intel_de_read(dev_priv, BLC_PWM_PCH_CTL2);
+ pch_ctl2 = intel_de_read(i915, BLC_PWM_PCH_CTL2);
panel->backlight.pwm_level_max = pch_ctl2 >> 16;
if (!panel->backlight.pwm_level_max)
@@ -1312,25 +1287,29 @@ static int pch_setup_backlight(struct intel_connector *connector, enum pipe unus
panel->backlight.pwm_level_min = get_backlight_min_vbt(connector);
- cpu_ctl2 = intel_de_read(dev_priv, BLC_PWM_CPU_CTL2);
+ cpu_ctl2 = intel_de_read(i915, BLC_PWM_CPU_CTL2);
panel->backlight.pwm_enabled = (cpu_ctl2 & BLM_PWM_ENABLE) &&
(pch_ctl1 & BLM_PCH_PWM_ENABLE);
+ drm_dbg_kms(&i915->drm,
+ "[CONNECTOR:%d:%s] Using native PCH PWM for backlight control\n",
+ connector->base.base.id, connector->base.name);
+
return 0;
}
static int i9xx_setup_backlight(struct intel_connector *connector, enum pipe unused)
{
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
struct intel_panel *panel = &connector->panel;
u32 ctl, val;
- ctl = intel_de_read(dev_priv, BLC_PWM_CTL);
+ ctl = intel_de_read(i915, BLC_PWM_CTL);
- if (DISPLAY_VER(dev_priv) == 2 || IS_I915GM(dev_priv) || IS_I945GM(dev_priv))
+ if (DISPLAY_VER(i915) == 2 || IS_I915GM(i915) || IS_I945GM(i915))
panel->backlight.combination_mode = ctl & BLM_LEGACY_MODE;
- if (IS_PINEVIEW(dev_priv))
+ if (IS_PINEVIEW(i915))
panel->backlight.active_low_pwm = ctl & BLM_POLARITY_PNV;
panel->backlight.pwm_level_max = ctl >> 17;
@@ -1354,20 +1333,24 @@ static int i9xx_setup_backlight(struct intel_connector *connector, enum pipe unu
panel->backlight.pwm_enabled = val != 0;
+ drm_dbg_kms(&i915->drm,
+ "[CONNECTOR:%d:%s] Using native PWM for backlight control\n",
+ connector->base.base.id, connector->base.name);
+
return 0;
}
static int i965_setup_backlight(struct intel_connector *connector, enum pipe unused)
{
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
struct intel_panel *panel = &connector->panel;
u32 ctl, ctl2;
- ctl2 = intel_de_read(dev_priv, BLC_PWM_CTL2);
+ ctl2 = intel_de_read(i915, BLC_PWM_CTL2);
panel->backlight.combination_mode = ctl2 & BLM_COMBINATION_MODE;
panel->backlight.active_low_pwm = ctl2 & BLM_POLARITY_I965;
- ctl = intel_de_read(dev_priv, BLC_PWM_CTL);
+ ctl = intel_de_read(i915, BLC_PWM_CTL);
panel->backlight.pwm_level_max = ctl >> 16;
if (!panel->backlight.pwm_level_max)
@@ -1383,22 +1366,26 @@ static int i965_setup_backlight(struct intel_connector *connector, enum pipe unu
panel->backlight.pwm_enabled = ctl2 & BLM_PWM_ENABLE;
+ drm_dbg_kms(&i915->drm,
+ "[CONNECTOR:%d:%s] Using native PWM for backlight control\n",
+ connector->base.base.id, connector->base.name);
+
return 0;
}
static int vlv_setup_backlight(struct intel_connector *connector, enum pipe pipe)
{
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
struct intel_panel *panel = &connector->panel;
u32 ctl, ctl2;
- if (drm_WARN_ON(&dev_priv->drm, pipe != PIPE_A && pipe != PIPE_B))
+ if (drm_WARN_ON(&i915->drm, pipe != PIPE_A && pipe != PIPE_B))
return -ENODEV;
- ctl2 = intel_de_read(dev_priv, VLV_BLC_PWM_CTL2(pipe));
+ ctl2 = intel_de_read(i915, VLV_BLC_PWM_CTL2(pipe));
panel->backlight.active_low_pwm = ctl2 & BLM_POLARITY_I965;
- ctl = intel_de_read(dev_priv, VLV_BLC_PWM_CTL(pipe));
+ ctl = intel_de_read(i915, VLV_BLC_PWM_CTL(pipe));
panel->backlight.pwm_level_max = ctl >> 16;
if (!panel->backlight.pwm_level_max)
@@ -1411,31 +1398,35 @@ static int vlv_setup_backlight(struct intel_connector *connector, enum pipe pipe
panel->backlight.pwm_enabled = ctl2 & BLM_PWM_ENABLE;
+ drm_dbg_kms(&i915->drm,
+ "[CONNECTOR:%d:%s] Using native PWM for backlight control (on pipe %c)\n",
+ connector->base.base.id, connector->base.name, pipe_name(pipe));
+
return 0;
}
static int
bxt_setup_backlight(struct intel_connector *connector, enum pipe unused)
{
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
struct intel_panel *panel = &connector->panel;
u32 pwm_ctl, val;
panel->backlight.controller = connector->panel.vbt.backlight.controller;
- pwm_ctl = intel_de_read(dev_priv,
+ pwm_ctl = intel_de_read(i915,
BXT_BLC_PWM_CTL(panel->backlight.controller));
/* Controller 1 uses the utility pin. */
if (panel->backlight.controller == 1) {
- val = intel_de_read(dev_priv, UTIL_PIN_CTL);
+ val = intel_de_read(i915, UTIL_PIN_CTL);
panel->backlight.util_pin_active_low =
val & UTIL_PIN_POLARITY;
}
panel->backlight.active_low_pwm = pwm_ctl & BXT_BLC_PWM_POLARITY;
panel->backlight.pwm_level_max =
- intel_de_read(dev_priv, BXT_BLC_PWM_FREQ(panel->backlight.controller));
+ intel_de_read(i915, BXT_BLC_PWM_FREQ(panel->backlight.controller));
if (!panel->backlight.pwm_level_max)
panel->backlight.pwm_level_max = get_backlight_max_vbt(connector);
@@ -1447,29 +1438,63 @@ bxt_setup_backlight(struct intel_connector *connector, enum pipe unused)
panel->backlight.pwm_enabled = pwm_ctl & BXT_BLC_PWM_ENABLE;
+ drm_dbg_kms(&i915->drm,
+ "[CONNECTOR:%d:%s] Using native PWM for backlight control (controller=%d)\n",
+ connector->base.base.id, connector->base.name,
+ panel->backlight.controller);
+
return 0;
}
+static int cnp_num_backlight_controllers(struct drm_i915_private *i915)
+{
+ if (INTEL_PCH_TYPE(i915) >= PCH_DG1)
+ return 1;
+
+ if (INTEL_PCH_TYPE(i915) >= PCH_ICP)
+ return 2;
+
+ return 1;
+}
+
+static bool cnp_backlight_controller_is_valid(struct drm_i915_private *i915, int controller)
+{
+ if (controller < 0 || controller >= cnp_num_backlight_controllers(i915))
+ return false;
+
+ if (controller == 1 &&
+ INTEL_PCH_TYPE(i915) >= PCH_ICP &&
+ INTEL_PCH_TYPE(i915) < PCH_MTP)
+ return intel_de_read(i915, SOUTH_CHICKEN1) & ICP_SECOND_PPS_IO_SELECT;
+
+ return true;
+}
+
static int
cnp_setup_backlight(struct intel_connector *connector, enum pipe unused)
{
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
struct intel_panel *panel = &connector->panel;
u32 pwm_ctl;
/*
* CNP has the BXT implementation of backlight, but with only one
- * controller. TODO: ICP has multiple controllers but we only use
- * controller 0 for now.
+ * controller. ICP+ can have two controllers, depending on pin muxing.
*/
- panel->backlight.controller = 0;
+ panel->backlight.controller = connector->panel.vbt.backlight.controller;
+ if (!cnp_backlight_controller_is_valid(i915, panel->backlight.controller)) {
+ drm_dbg_kms(&i915->drm, "[CONNECTOR:%d:%s] Invalid backlight controller %d, assuming 0\n",
+ connector->base.base.id, connector->base.name,
+ panel->backlight.controller);
+ panel->backlight.controller = 0;
+ }
- pwm_ctl = intel_de_read(dev_priv,
+ pwm_ctl = intel_de_read(i915,
BXT_BLC_PWM_CTL(panel->backlight.controller));
panel->backlight.active_low_pwm = pwm_ctl & BXT_BLC_PWM_POLARITY;
panel->backlight.pwm_level_max =
- intel_de_read(dev_priv, BXT_BLC_PWM_FREQ(panel->backlight.controller));
+ intel_de_read(i915, BXT_BLC_PWM_FREQ(panel->backlight.controller));
if (!panel->backlight.pwm_level_max)
panel->backlight.pwm_level_max = get_backlight_max_vbt(connector);
@@ -1481,30 +1506,34 @@ cnp_setup_backlight(struct intel_connector *connector, enum pipe unused)
panel->backlight.pwm_enabled = pwm_ctl & BXT_BLC_PWM_ENABLE;
+ drm_dbg_kms(&i915->drm,
+ "[CONNECTOR:%d:%s] Using native PCH PWM for backlight control (controller=%d)\n",
+ connector->base.base.id, connector->base.name,
+ panel->backlight.controller);
+
return 0;
}
static int ext_pwm_setup_backlight(struct intel_connector *connector,
enum pipe pipe)
{
- struct drm_device *dev = connector->base.dev;
- struct drm_i915_private *dev_priv = to_i915(dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
struct intel_panel *panel = &connector->panel;
const char *desc;
u32 level;
/* Get the right PWM chip for DSI backlight according to VBT */
if (connector->panel.vbt.dsi.config->pwm_blc == PPS_BLC_PMIC) {
- panel->backlight.pwm = pwm_get(dev->dev, "pwm_pmic_backlight");
+ panel->backlight.pwm = pwm_get(i915->drm.dev, "pwm_pmic_backlight");
desc = "PMIC";
} else {
- panel->backlight.pwm = pwm_get(dev->dev, "pwm_soc_backlight");
+ panel->backlight.pwm = pwm_get(i915->drm.dev, "pwm_soc_backlight");
desc = "SoC";
}
if (IS_ERR(panel->backlight.pwm)) {
- drm_err(&dev_priv->drm, "Failed to get the %s PWM chip\n",
- desc);
+ drm_err(&i915->drm, "[CONNECTOR:%d:%s] Failed to get the %s PWM chip\n",
+ connector->base.base.id, connector->base.name, desc);
panel->backlight.pwm = NULL;
return -ENODEV;
}
@@ -1521,7 +1550,8 @@ static int ext_pwm_setup_backlight(struct intel_connector *connector,
level = intel_backlight_invert_pwm_level(connector, level);
panel->backlight.pwm_enabled = true;
- drm_dbg_kms(&dev_priv->drm, "PWM already enabled at freq %ld, VBT freq %d, level %d\n",
+ drm_dbg_kms(&i915->drm, "[CONNECTOR:%d:%s] PWM already enabled at freq %ld, VBT freq %d, level %d\n",
+ connector->base.base.id, connector->base.name,
NSEC_PER_SEC / (unsigned long)panel->backlight.pwm_state.period,
get_vbt_pwm_freq(connector), level);
} else {
@@ -1530,8 +1560,10 @@ static int ext_pwm_setup_backlight(struct intel_connector *connector,
NSEC_PER_SEC / get_vbt_pwm_freq(connector);
}
- drm_info(&dev_priv->drm, "Using %s PWM for LCD backlight control\n",
- desc);
+ drm_dbg_kms(&i915->drm,
+ "[CONNECTOR:%d:%s] Using %s PWM for backlight control\n",
+ connector->base.base.id, connector->base.name, desc);
+
return 0;
}
@@ -1574,8 +1606,9 @@ static void intel_pwm_disable_backlight(const struct drm_connector_state *conn_s
static int intel_pwm_setup_backlight(struct intel_connector *connector, enum pipe pipe)
{
struct intel_panel *panel = &connector->panel;
- int ret = panel->backlight.pwm_funcs->setup(connector, pipe);
+ int ret;
+ ret = panel->backlight.pwm_funcs->setup(connector, pipe);
if (ret < 0)
return ret;
@@ -1593,57 +1626,59 @@ void intel_backlight_update(struct intel_atomic_state *state,
const struct drm_connector_state *conn_state)
{
struct intel_connector *connector = to_intel_connector(conn_state->connector);
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
struct intel_panel *panel = &connector->panel;
if (!panel->backlight.present)
return;
- mutex_lock(&dev_priv->display.backlight.lock);
+ mutex_lock(&i915->display.backlight.lock);
if (!panel->backlight.enabled)
__intel_backlight_enable(crtc_state, conn_state);
- mutex_unlock(&dev_priv->display.backlight.lock);
+ mutex_unlock(&i915->display.backlight.lock);
}
int intel_backlight_setup(struct intel_connector *connector, enum pipe pipe)
{
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
struct intel_panel *panel = &connector->panel;
int ret;
if (!connector->panel.vbt.backlight.present) {
- if (intel_has_quirk(dev_priv, QUIRK_BACKLIGHT_PRESENT)) {
- drm_dbg_kms(&dev_priv->drm,
- "no backlight present per VBT, but present per quirk\n");
+ if (intel_has_quirk(i915, QUIRK_BACKLIGHT_PRESENT)) {
+ drm_dbg_kms(&i915->drm,
+ "[CONNECTOR:%d:%s] no backlight present per VBT, but present per quirk\n",
+ connector->base.base.id, connector->base.name);
} else {
- drm_dbg_kms(&dev_priv->drm,
- "no backlight present per VBT\n");
+ drm_dbg_kms(&i915->drm,
+ "[CONNECTOR:%d:%s] no backlight present per VBT\n",
+ connector->base.base.id, connector->base.name);
return 0;
}
}
/* ensure intel_panel has been initialized first */
- if (drm_WARN_ON(&dev_priv->drm, !panel->backlight.funcs))
+ if (drm_WARN_ON(&i915->drm, !panel->backlight.funcs))
return -ENODEV;
/* set level and max in panel struct */
- mutex_lock(&dev_priv->display.backlight.lock);
+ mutex_lock(&i915->display.backlight.lock);
ret = panel->backlight.funcs->setup(connector, pipe);
- mutex_unlock(&dev_priv->display.backlight.lock);
+ mutex_unlock(&i915->display.backlight.lock);
if (ret) {
- drm_dbg_kms(&dev_priv->drm,
- "failed to setup backlight for connector %s\n",
- connector->base.name);
+ drm_dbg_kms(&i915->drm,
+ "[CONNECTOR:%d:%s] failed to setup backlight\n",
+ connector->base.base.id, connector->base.name);
return ret;
}
panel->backlight.present = true;
- drm_dbg_kms(&dev_priv->drm,
- "Connector %s backlight initialized, %s, brightness %u/%u\n",
- connector->base.name,
+ drm_dbg_kms(&i915->drm,
+ "[CONNECTOR:%d:%s] backlight initialized, %s, brightness %u/%u\n",
+ connector->base.base.id, connector->base.name,
str_enabled_disabled(panel->backlight.enabled),
panel->backlight.level, panel->backlight.max);
@@ -1752,30 +1787,30 @@ void intel_backlight_init_funcs(struct intel_panel *panel)
{
struct intel_connector *connector =
container_of(panel, struct intel_connector, panel);
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
if (connector->base.connector_type == DRM_MODE_CONNECTOR_DSI &&
intel_dsi_dcs_init_backlight_funcs(connector) == 0)
return;
- if (IS_GEMINILAKE(dev_priv) || IS_BROXTON(dev_priv)) {
+ if (IS_GEMINILAKE(i915) || IS_BROXTON(i915)) {
panel->backlight.pwm_funcs = &bxt_pwm_funcs;
- } else if (INTEL_PCH_TYPE(dev_priv) >= PCH_CNP) {
+ } else if (INTEL_PCH_TYPE(i915) >= PCH_CNP) {
panel->backlight.pwm_funcs = &cnp_pwm_funcs;
- } else if (INTEL_PCH_TYPE(dev_priv) >= PCH_LPT) {
- if (HAS_PCH_LPT(dev_priv))
+ } else if (INTEL_PCH_TYPE(i915) >= PCH_LPT) {
+ if (HAS_PCH_LPT(i915))
panel->backlight.pwm_funcs = &lpt_pwm_funcs;
else
panel->backlight.pwm_funcs = &spt_pwm_funcs;
- } else if (HAS_PCH_SPLIT(dev_priv)) {
+ } else if (HAS_PCH_SPLIT(i915)) {
panel->backlight.pwm_funcs = &pch_pwm_funcs;
- } else if (IS_VALLEYVIEW(dev_priv) || IS_CHERRYVIEW(dev_priv)) {
+ } else if (IS_VALLEYVIEW(i915) || IS_CHERRYVIEW(i915)) {
if (connector->base.connector_type == DRM_MODE_CONNECTOR_DSI) {
panel->backlight.pwm_funcs = &ext_pwm_funcs;
} else {
panel->backlight.pwm_funcs = &vlv_pwm_funcs;
}
- } else if (DISPLAY_VER(dev_priv) == 4) {
+ } else if (DISPLAY_VER(i915) == 4) {
panel->backlight.pwm_funcs = &i965_pwm_funcs;
} else {
panel->backlight.pwm_funcs = &i9xx_pwm_funcs;
@@ -1785,7 +1820,7 @@ void intel_backlight_init_funcs(struct intel_panel *panel)
if (intel_dp_aux_init_backlight_funcs(connector) == 0)
return;
- if (!intel_has_quirk(dev_priv, QUIRK_NO_PPS_BACKLIGHT_POWER_HOOK))
+ if (!intel_has_quirk(i915, QUIRK_NO_PPS_BACKLIGHT_POWER_HOOK))
connector->panel.backlight.power = intel_pps_backlight_power;
}
diff --git a/drivers/gpu/drm/i915/display/intel_backlight_regs.h b/drivers/gpu/drm/i915/display/intel_backlight_regs.h
index 50c1210f6d5d..d0cdfd631d75 100644
--- a/drivers/gpu/drm/i915/display/intel_backlight_regs.h
+++ b/drivers/gpu/drm/i915/display/intel_backlight_regs.h
@@ -6,25 +6,22 @@
#ifndef __INTEL_BACKLIGHT_REGS_H__
#define __INTEL_BACKLIGHT_REGS_H__
-#include "i915_reg_defs.h"
+#include "intel_display_reg_defs.h"
-#define _VLV_BLC_PWM_CTL2_A (DISPLAY_MMIO_BASE(dev_priv) + 0x61250)
-#define _VLV_BLC_PWM_CTL2_B (DISPLAY_MMIO_BASE(dev_priv) + 0x61350)
-#define VLV_BLC_PWM_CTL2(pipe) _MMIO_PIPE(pipe, _VLV_BLC_PWM_CTL2_A, \
- _VLV_BLC_PWM_CTL2_B)
+#define _VLV_BLC_PWM_CTL2_A (VLV_DISPLAY_BASE + 0x61250)
+#define _VLV_BLC_PWM_CTL2_B (VLV_DISPLAY_BASE + 0x61350)
+#define VLV_BLC_PWM_CTL2(pipe) _MMIO_PIPE(pipe, _VLV_BLC_PWM_CTL2_A, _VLV_BLC_PWM_CTL2_B)
-#define _VLV_BLC_PWM_CTL_A (DISPLAY_MMIO_BASE(dev_priv) + 0x61254)
-#define _VLV_BLC_PWM_CTL_B (DISPLAY_MMIO_BASE(dev_priv) + 0x61354)
-#define VLV_BLC_PWM_CTL(pipe) _MMIO_PIPE(pipe, _VLV_BLC_PWM_CTL_A, \
- _VLV_BLC_PWM_CTL_B)
+#define _VLV_BLC_PWM_CTL_A (VLV_DISPLAY_BASE + 0x61254)
+#define _VLV_BLC_PWM_CTL_B (VLV_DISPLAY_BASE + 0x61354)
+#define VLV_BLC_PWM_CTL(pipe) _MMIO_PIPE(pipe, _VLV_BLC_PWM_CTL_A, _VLV_BLC_PWM_CTL_B)
-#define _VLV_BLC_HIST_CTL_A (DISPLAY_MMIO_BASE(dev_priv) + 0x61260)
-#define _VLV_BLC_HIST_CTL_B (DISPLAY_MMIO_BASE(dev_priv) + 0x61360)
-#define VLV_BLC_HIST_CTL(pipe) _MMIO_PIPE(pipe, _VLV_BLC_HIST_CTL_A, \
- _VLV_BLC_HIST_CTL_B)
+#define _VLV_BLC_HIST_CTL_A (VLV_DISPLAY_BASE + 0x61260)
+#define _VLV_BLC_HIST_CTL_B (VLV_DISPLAY_BASE + 0x61360)
+#define VLV_BLC_HIST_CTL(pipe) _MMIO_PIPE(pipe, _VLV_BLC_HIST_CTL_A, _VLV_BLC_HIST_CTL_B)
/* Backlight control */
-#define BLC_PWM_CTL2 _MMIO(DISPLAY_MMIO_BASE(dev_priv) + 0x61250) /* 965+ only */
+#define BLC_PWM_CTL2 _MMIO(0x61250) /* 965+ only */
#define BLM_PWM_ENABLE (1 << 31)
#define BLM_COMBINATION_MODE (1 << 30) /* gen4 only */
#define BLM_PIPE_SELECT (1 << 29)
@@ -47,7 +44,7 @@
#define BLM_PHASE_IN_COUNT_MASK (0xff << 8)
#define BLM_PHASE_IN_INCR_SHIFT (0)
#define BLM_PHASE_IN_INCR_MASK (0xff << 0)
-#define BLC_PWM_CTL _MMIO(DISPLAY_MMIO_BASE(dev_priv) + 0x61254)
+#define BLC_PWM_CTL _MMIO(0x61254)
/*
* This is the most significant 15 bits of the number of backlight cycles in a
* complete cycle of the modulated backlight control.
@@ -69,7 +66,7 @@
#define BACKLIGHT_DUTY_CYCLE_MASK_PNV (0xfffe)
#define BLM_POLARITY_PNV (1 << 0) /* pnv only */
-#define BLC_HIST_CTL _MMIO(DISPLAY_MMIO_BASE(dev_priv) + 0x61260)
+#define BLC_HIST_CTL _MMIO(0x61260)
#define BLM_HISTOGRAM_ENABLE (1 << 31)
/* New registers for PCH-split platforms. Safe where new bits show up, the
diff --git a/drivers/gpu/drm/i915/display/intel_bios.c b/drivers/gpu/drm/i915/display/intel_bios.c
index 28bdb936cd1f..75e69dffc5e9 100644
--- a/drivers/gpu/drm/i915/display/intel_bios.c
+++ b/drivers/gpu/drm/i915/display/intel_bios.c
@@ -25,16 +25,15 @@
*
*/
-#include <drm/drm_edid.h>
#include <drm/display/drm_dp_helper.h>
#include <drm/display/drm_dsc_helper.h>
-
-#include "display/intel_display.h"
-#include "display/intel_display_types.h"
-#include "display/intel_gmbus.h"
+#include <drm/drm_edid.h>
#include "i915_drv.h"
#include "i915_reg.h"
+#include "intel_display.h"
+#include "intel_display_types.h"
+#include "intel_gmbus.h"
#define _INTEL_BIOS_PRIVATE
#include "intel_vbt_defs.h"
@@ -142,8 +141,8 @@ struct bdb_block_entry {
};
static const void *
-find_section(struct drm_i915_private *i915,
- enum bdb_block_id section_id)
+bdb_find_section(struct drm_i915_private *i915,
+ enum bdb_block_id section_id)
{
struct bdb_block_entry *entry;
@@ -202,7 +201,7 @@ static size_t lfp_data_min_size(struct drm_i915_private *i915)
const struct bdb_lvds_lfp_data_ptrs *ptrs;
size_t size;
- ptrs = find_section(i915, BDB_LVDS_LFP_DATA_PTRS);
+ ptrs = bdb_find_section(i915, BDB_LVDS_LFP_DATA_PTRS);
if (!ptrs)
return 0;
@@ -414,7 +413,7 @@ static void *generate_lfp_data_ptrs(struct drm_i915_private *i915,
ptrs->lvds_entries++;
if (size != 0 || ptrs->lvds_entries != 3) {
- kfree(ptrs);
+ kfree(ptrs_block);
return NULL;
}
@@ -620,18 +619,18 @@ static void dump_pnp_id(struct drm_i915_private *i915,
static int opregion_get_panel_type(struct drm_i915_private *i915,
const struct intel_bios_encoder_data *devdata,
- const struct edid *edid)
+ const struct drm_edid *drm_edid, bool use_fallback)
{
return intel_opregion_get_panel_type(i915);
}
static int vbt_get_panel_type(struct drm_i915_private *i915,
const struct intel_bios_encoder_data *devdata,
- const struct edid *edid)
+ const struct drm_edid *drm_edid, bool use_fallback)
{
const struct bdb_lvds_options *lvds_options;
- lvds_options = find_section(i915, BDB_LVDS_OPTIONS);
+ lvds_options = bdb_find_section(i915, BDB_LVDS_OPTIONS);
if (!lvds_options)
return -1;
@@ -652,12 +651,13 @@ static int vbt_get_panel_type(struct drm_i915_private *i915,
static int pnpid_get_panel_type(struct drm_i915_private *i915,
const struct intel_bios_encoder_data *devdata,
- const struct edid *edid)
+ const struct drm_edid *drm_edid, bool use_fallback)
{
const struct bdb_lvds_lfp_data *data;
const struct bdb_lvds_lfp_data_ptrs *ptrs;
const struct lvds_pnp_id *edid_id;
struct lvds_pnp_id edid_id_nodate;
+ const struct edid *edid = drm_edid_raw(drm_edid); /* FIXME */
int i, best = -1;
if (!edid)
@@ -671,11 +671,11 @@ static int pnpid_get_panel_type(struct drm_i915_private *i915,
dump_pnp_id(i915, edid_id, "EDID");
- ptrs = find_section(i915, BDB_LVDS_LFP_DATA_PTRS);
+ ptrs = bdb_find_section(i915, BDB_LVDS_LFP_DATA_PTRS);
if (!ptrs)
return -1;
- data = find_section(i915, BDB_LVDS_LFP_DATA);
+ data = bdb_find_section(i915, BDB_LVDS_LFP_DATA);
if (!data)
return -1;
@@ -701,9 +701,9 @@ static int pnpid_get_panel_type(struct drm_i915_private *i915,
static int fallback_get_panel_type(struct drm_i915_private *i915,
const struct intel_bios_encoder_data *devdata,
- const struct edid *edid)
+ const struct drm_edid *drm_edid, bool use_fallback)
{
- return 0;
+ return use_fallback ? 0 : -1;
}
enum panel_type {
@@ -715,13 +715,13 @@ enum panel_type {
static int get_panel_type(struct drm_i915_private *i915,
const struct intel_bios_encoder_data *devdata,
- const struct edid *edid)
+ const struct drm_edid *drm_edid, bool use_fallback)
{
struct {
const char *name;
int (*get_panel_type)(struct drm_i915_private *i915,
const struct intel_bios_encoder_data *devdata,
- const struct edid *edid);
+ const struct drm_edid *drm_edid, bool use_fallback);
int panel_type;
} panel_types[] = {
[PANEL_TYPE_OPREGION] = {
@@ -744,7 +744,8 @@ static int get_panel_type(struct drm_i915_private *i915,
int i;
for (i = 0; i < ARRAY_SIZE(panel_types); i++) {
- panel_types[i].panel_type = panel_types[i].get_panel_type(i915, devdata, edid);
+ panel_types[i].panel_type = panel_types[i].get_panel_type(i915, devdata,
+ drm_edid, use_fallback);
drm_WARN_ON(&i915->drm, panel_types[i].panel_type > 0xf &&
panel_types[i].panel_type != 0xff);
@@ -790,7 +791,7 @@ parse_panel_options(struct drm_i915_private *i915,
int panel_type = panel->vbt.panel_type;
int drrs_mode;
- lvds_options = find_section(i915, BDB_LVDS_OPTIONS);
+ lvds_options = bdb_find_section(i915, BDB_LVDS_OPTIONS);
if (!lvds_options)
return;
@@ -880,11 +881,11 @@ parse_lfp_data(struct drm_i915_private *i915,
const struct lvds_pnp_id *pnp_id;
int panel_type = panel->vbt.panel_type;
- ptrs = find_section(i915, BDB_LVDS_LFP_DATA_PTRS);
+ ptrs = bdb_find_section(i915, BDB_LVDS_LFP_DATA_PTRS);
if (!ptrs)
return;
- data = find_section(i915, BDB_LVDS_LFP_DATA);
+ data = bdb_find_section(i915, BDB_LVDS_LFP_DATA);
if (!data)
return;
@@ -931,7 +932,7 @@ parse_generic_dtd(struct drm_i915_private *i915,
if (i915->display.vbt.version < 229)
return;
- generic_dtd = find_section(i915, BDB_GENERIC_DTD);
+ generic_dtd = bdb_find_section(i915, BDB_GENERIC_DTD);
if (!generic_dtd)
return;
@@ -1010,7 +1011,7 @@ parse_lfp_backlight(struct drm_i915_private *i915,
int panel_type = panel->vbt.panel_type;
u16 level;
- backlight_data = find_section(i915, BDB_LVDS_BACKLIGHT);
+ backlight_data = bdb_find_section(i915, BDB_LVDS_BACKLIGHT);
if (!backlight_data)
return;
@@ -1032,6 +1033,7 @@ parse_lfp_backlight(struct drm_i915_private *i915,
}
panel->vbt.backlight.type = INTEL_BACKLIGHT_DISPLAY_DDI;
+ panel->vbt.backlight.controller = 0;
if (i915->display.vbt.version >= 191) {
size_t exp_size;
@@ -1082,6 +1084,12 @@ parse_lfp_backlight(struct drm_i915_private *i915,
panel->vbt.backlight.min_brightness = entry->min_brightness;
}
+ if (i915->display.vbt.version >= 239)
+ panel->vbt.backlight.hdr_dpcd_refresh_timeout =
+ DIV_ROUND_UP(backlight_data->hdr_dpcd_refresh_timeout[panel_type], 100);
+ else
+ panel->vbt.backlight.hdr_dpcd_refresh_timeout = 30;
+
drm_dbg_kms(&i915->drm,
"VBT backlight PWM modulation frequency %u Hz, "
"active %s, min brightness %u, level %u, controller %u\n",
@@ -1111,14 +1119,14 @@ parse_sdvo_panel_data(struct drm_i915_private *i915,
if (index == -1) {
const struct bdb_sdvo_lvds_options *sdvo_lvds_options;
- sdvo_lvds_options = find_section(i915, BDB_SDVO_LVDS_OPTIONS);
+ sdvo_lvds_options = bdb_find_section(i915, BDB_SDVO_LVDS_OPTIONS);
if (!sdvo_lvds_options)
return;
index = sdvo_lvds_options->panel_type;
}
- dtds = find_section(i915, BDB_SDVO_PANEL_DTDS);
+ dtds = bdb_find_section(i915, BDB_SDVO_PANEL_DTDS);
if (!dtds)
return;
@@ -1154,7 +1162,7 @@ parse_general_features(struct drm_i915_private *i915)
{
const struct bdb_general_features *general;
- general = find_section(i915, BDB_GENERAL_FEATURES);
+ general = bdb_find_section(i915, BDB_GENERAL_FEATURES);
if (!general)
return;
@@ -1200,9 +1208,7 @@ child_device_ptr(const struct bdb_general_definitions *defs, int i)
static void
parse_sdvo_device_mapping(struct drm_i915_private *i915)
{
- struct sdvo_device_mapping *mapping;
const struct intel_bios_encoder_data *devdata;
- const struct child_device_config *child;
int count = 0;
/*
@@ -1215,7 +1221,8 @@ parse_sdvo_device_mapping(struct drm_i915_private *i915)
}
list_for_each_entry(devdata, &i915->display.vbt.display_devices, node) {
- child = &devdata->child;
+ const struct child_device_config *child = &devdata->child;
+ struct sdvo_device_mapping *mapping;
if (child->slave_addr != SLAVE_ADDR1 &&
child->slave_addr != SLAVE_ADDR2) {
@@ -1278,7 +1285,7 @@ parse_driver_features(struct drm_i915_private *i915)
{
const struct bdb_driver_features *driver;
- driver = find_section(i915, BDB_DRIVER_FEATURES);
+ driver = bdb_find_section(i915, BDB_DRIVER_FEATURES);
if (!driver)
return;
@@ -1315,7 +1322,7 @@ parse_panel_driver_features(struct drm_i915_private *i915,
{
const struct bdb_driver_features *driver;
- driver = find_section(i915, BDB_DRIVER_FEATURES);
+ driver = bdb_find_section(i915, BDB_DRIVER_FEATURES);
if (!driver)
return;
@@ -1355,7 +1362,7 @@ parse_power_conservation_features(struct drm_i915_private *i915,
if (i915->display.vbt.version < 228)
return;
- power = find_section(i915, BDB_LFP_POWER);
+ power = bdb_find_section(i915, BDB_LFP_POWER);
if (!power)
return;
@@ -1395,7 +1402,7 @@ parse_edp(struct drm_i915_private *i915,
const struct edp_fast_link_params *edp_link_params;
int panel_type = panel->vbt.panel_type;
- edp = find_section(i915, BDB_EDP);
+ edp = bdb_find_section(i915, BDB_EDP);
if (!edp)
return;
@@ -1525,7 +1532,7 @@ parse_psr(struct drm_i915_private *i915,
const struct psr_table *psr_table;
int panel_type = panel->vbt.panel_type;
- psr = find_section(i915, BDB_PSR);
+ psr = bdb_find_section(i915, BDB_PSR);
if (!psr) {
drm_dbg_kms(&i915->drm, "No PSR BDB found.\n");
return;
@@ -1686,7 +1693,7 @@ parse_mipi_config(struct drm_i915_private *i915,
/* Parse #52 for panel index used from panel_type already
* parsed
*/
- start = find_section(i915, BDB_MIPI_CONFIG);
+ start = bdb_find_section(i915, BDB_MIPI_CONFIG);
if (!start) {
drm_dbg_kms(&i915->drm, "No MIPI config BDB found");
return;
@@ -1998,7 +2005,7 @@ parse_mipi_sequence(struct drm_i915_private *i915,
if (panel->vbt.dsi.panel_id != MIPI_DSI_GENERIC_PANEL_ID)
return;
- sequence = find_section(i915, BDB_MIPI_SEQUENCE);
+ sequence = bdb_find_section(i915, BDB_MIPI_SEQUENCE);
if (!sequence) {
drm_dbg_kms(&i915->drm,
"No MIPI Sequence found, parsing complete\n");
@@ -2073,14 +2080,13 @@ parse_compression_parameters(struct drm_i915_private *i915)
{
const struct bdb_compression_parameters *params;
struct intel_bios_encoder_data *devdata;
- const struct child_device_config *child;
u16 block_size;
int index;
if (i915->display.vbt.version < 198)
return;
- params = find_section(i915, BDB_COMPRESSION_PARAMETERS);
+ params = bdb_find_section(i915, BDB_COMPRESSION_PARAMETERS);
if (params) {
/* Sanity checks */
if (params->entry_size != sizeof(params->data[0])) {
@@ -2098,7 +2104,7 @@ parse_compression_parameters(struct drm_i915_private *i915)
}
list_for_each_entry(devdata, &i915->display.vbt.display_devices, node) {
- child = &devdata->child;
+ const struct child_device_config *child = &devdata->child;
if (!child->compression_enable)
continue;
@@ -2188,7 +2194,7 @@ static u8 map_ddc_pin(struct drm_i915_private *i915, u8 vbt_pin)
const u8 *ddc_pin_map;
int n_entries;
- if (IS_ALDERLAKE_P(i915)) {
+ if (HAS_PCH_MTP(i915) || IS_ALDERLAKE_P(i915)) {
ddc_pin_map = adlp_ddc_pin_map;
n_entries = ARRAY_SIZE(adlp_ddc_pin_map);
} else if (IS_ALDERLAKE_S(i915)) {
@@ -2224,14 +2230,14 @@ static u8 map_ddc_pin(struct drm_i915_private *i915, u8 vbt_pin)
static enum port get_port_by_ddc_pin(struct drm_i915_private *i915, u8 ddc_pin)
{
- const struct intel_bios_encoder_data *devdata;
enum port port;
if (!ddc_pin)
return PORT_NONE;
for_each_port(port) {
- devdata = i915->display.vbt.ports[port];
+ const struct intel_bios_encoder_data *devdata =
+ i915->display.vbt.ports[port];
if (devdata && ddc_pin == devdata->child.ddc_pin)
return port;
@@ -2290,14 +2296,14 @@ static void sanitize_ddc_pin(struct intel_bios_encoder_data *devdata,
static enum port get_port_by_aux_ch(struct drm_i915_private *i915, u8 aux_ch)
{
- const struct intel_bios_encoder_data *devdata;
enum port port;
if (!aux_ch)
return PORT_NONE;
for_each_port(port) {
- devdata = i915->display.vbt.ports[port];
+ const struct intel_bios_encoder_data *devdata =
+ i915->display.vbt.ports[port];
if (devdata && aux_ch == devdata->child.aux_channel)
return port;
@@ -2466,6 +2472,22 @@ static enum port dvo_port_to_port(struct drm_i915_private *i915,
dvo_port);
}
+static enum port
+dsi_dvo_port_to_port(struct drm_i915_private *i915, u8 dvo_port)
+{
+ switch (dvo_port) {
+ case DVO_PORT_MIPIA:
+ return PORT_A;
+ case DVO_PORT_MIPIC:
+ if (DISPLAY_VER(i915) >= 11)
+ return PORT_B;
+ else
+ return PORT_C;
+ default:
+ return PORT_NONE;
+ }
+}
+
static int parse_bdb_230_dp_max_link_rate(const int vbt_max_link_rate)
{
switch (vbt_max_link_rate) {
@@ -2504,7 +2526,7 @@ static int parse_bdb_216_dp_max_link_rate(const int vbt_max_link_rate)
}
}
-static int _intel_bios_dp_max_link_rate(const struct intel_bios_encoder_data *devdata)
+int intel_bios_dp_max_link_rate(const struct intel_bios_encoder_data *devdata)
{
if (!devdata || devdata->i915->display.vbt.version < 216)
return 0;
@@ -2515,7 +2537,7 @@ static int _intel_bios_dp_max_link_rate(const struct intel_bios_encoder_data *de
return parse_bdb_216_dp_max_link_rate(devdata->child.dp_max_link_rate);
}
-static int _intel_bios_dp_max_lane_count(const struct intel_bios_encoder_data *devdata)
+int intel_bios_dp_max_lane_count(const struct intel_bios_encoder_data *devdata)
{
if (!devdata || devdata->i915->display.vbt.version < 244)
return 0;
@@ -2569,14 +2591,27 @@ intel_bios_encoder_supports_dp(const struct intel_bios_encoder_data *devdata)
return devdata->child.device_type & DEVICE_TYPE_DISPLAYPORT_OUTPUT;
}
-static bool
+bool
intel_bios_encoder_supports_edp(const struct intel_bios_encoder_data *devdata)
{
return intel_bios_encoder_supports_dp(devdata) &&
devdata->child.device_type & DEVICE_TYPE_INTERNAL_CONNECTOR;
}
-static int _intel_bios_hdmi_level_shift(const struct intel_bios_encoder_data *devdata)
+static bool
+intel_bios_encoder_supports_dsi(const struct intel_bios_encoder_data *devdata)
+{
+ return devdata->child.device_type & DEVICE_TYPE_MIPI_OUTPUT;
+}
+
+bool
+intel_bios_encoder_is_lspcon(const struct intel_bios_encoder_data *devdata)
+{
+ return devdata && HAS_LSPCON(devdata->i915) && devdata->child.lspcon;
+}
+
+/* This is an index in the HDMI/DVI DDI buffer translation table, or -1 */
+int intel_bios_hdmi_level_shift(const struct intel_bios_encoder_data *devdata)
{
if (!devdata || devdata->i915->display.vbt.version < 158)
return -1;
@@ -2584,7 +2619,7 @@ static int _intel_bios_hdmi_level_shift(const struct intel_bios_encoder_data *de
return devdata->child.hdmi_level_shifter_value;
}
-static int _intel_bios_max_tmds_clock(const struct intel_bios_encoder_data *devdata)
+int intel_bios_hdmi_max_tmds_clock(const struct intel_bios_encoder_data *devdata)
{
if (!devdata || devdata->i915->display.vbt.version < 204)
return 0;
@@ -2626,7 +2661,7 @@ static void print_ddi_port(const struct intel_bios_encoder_data *devdata,
{
struct drm_i915_private *i915 = devdata->i915;
const struct child_device_config *child = &devdata->child;
- bool is_dvi, is_hdmi, is_dp, is_edp, is_crt, supports_typec_usb, supports_tbt;
+ bool is_dvi, is_hdmi, is_dp, is_edp, is_dsi, is_crt, supports_typec_usb, supports_tbt;
int dp_boost_level, dp_max_link_rate, hdmi_boost_level, hdmi_level_shift, max_tmds_clock;
is_dvi = intel_bios_encoder_supports_dvi(devdata);
@@ -2634,48 +2669,57 @@ static void print_ddi_port(const struct intel_bios_encoder_data *devdata,
is_crt = intel_bios_encoder_supports_crt(devdata);
is_hdmi = intel_bios_encoder_supports_hdmi(devdata);
is_edp = intel_bios_encoder_supports_edp(devdata);
+ is_dsi = intel_bios_encoder_supports_dsi(devdata);
supports_typec_usb = intel_bios_encoder_supports_typec_usb(devdata);
supports_tbt = intel_bios_encoder_supports_tbt(devdata);
drm_dbg_kms(&i915->drm,
- "Port %c VBT info: CRT:%d DVI:%d HDMI:%d DP:%d eDP:%d LSPCON:%d USB-Type-C:%d TBT:%d DSC:%d\n",
- port_name(port), is_crt, is_dvi, is_hdmi, is_dp, is_edp,
- HAS_LSPCON(i915) && child->lspcon,
+ "Port %c VBT info: CRT:%d DVI:%d HDMI:%d DP:%d eDP:%d DSI:%d LSPCON:%d USB-Type-C:%d TBT:%d DSC:%d\n",
+ port_name(port), is_crt, is_dvi, is_hdmi, is_dp, is_edp, is_dsi,
+ intel_bios_encoder_is_lspcon(devdata),
supports_typec_usb, supports_tbt,
devdata->dsc != NULL);
- hdmi_level_shift = _intel_bios_hdmi_level_shift(devdata);
+ hdmi_level_shift = intel_bios_hdmi_level_shift(devdata);
if (hdmi_level_shift >= 0) {
drm_dbg_kms(&i915->drm,
"Port %c VBT HDMI level shift: %d\n",
port_name(port), hdmi_level_shift);
}
- max_tmds_clock = _intel_bios_max_tmds_clock(devdata);
+ max_tmds_clock = intel_bios_hdmi_max_tmds_clock(devdata);
if (max_tmds_clock)
drm_dbg_kms(&i915->drm,
"Port %c VBT HDMI max TMDS clock: %d kHz\n",
port_name(port), max_tmds_clock);
/* I_boost config for SKL and above */
- dp_boost_level = intel_bios_encoder_dp_boost_level(devdata);
+ dp_boost_level = intel_bios_dp_boost_level(devdata);
if (dp_boost_level)
drm_dbg_kms(&i915->drm,
"Port %c VBT (e)DP boost level: %d\n",
port_name(port), dp_boost_level);
- hdmi_boost_level = intel_bios_encoder_hdmi_boost_level(devdata);
+ hdmi_boost_level = intel_bios_hdmi_boost_level(devdata);
if (hdmi_boost_level)
drm_dbg_kms(&i915->drm,
"Port %c VBT HDMI boost level: %d\n",
port_name(port), hdmi_boost_level);
- dp_max_link_rate = _intel_bios_dp_max_link_rate(devdata);
+ dp_max_link_rate = intel_bios_dp_max_link_rate(devdata);
if (dp_max_link_rate)
drm_dbg_kms(&i915->drm,
"Port %c VBT DP max link rate: %d\n",
port_name(port), dp_max_link_rate);
+
+ /*
+ * FIXME need to implement support for VBT
+ * vswing/preemph tables should this ever trigger.
+ */
+ drm_WARN(&i915->drm, child->use_vbt_vswing,
+ "Port %c asks to use VBT vswing/preemph tables\n",
+ port_name(port));
}
static void parse_ddi_port(struct intel_bios_encoder_data *devdata)
@@ -2685,6 +2729,8 @@ static void parse_ddi_port(struct intel_bios_encoder_data *devdata)
enum port port;
port = dvo_port_to_port(i915, child->dvo_port);
+ if (port == PORT_NONE && DISPLAY_VER(i915) >= 11)
+ port = dsi_dvo_port_to_port(i915, child->dvo_port);
if (port == PORT_NONE)
return;
@@ -2746,7 +2792,7 @@ parse_general_definitions(struct drm_i915_private *i915)
u16 block_size;
int bus_pin;
- defs = find_section(i915, BDB_GENERAL_DEFINITIONS);
+ defs = bdb_find_section(i915, BDB_GENERAL_DEFINITIONS);
if (!defs) {
drm_dbg_kms(&i915->drm,
"No general definition block is found, no devices defined.\n");
@@ -2776,7 +2822,7 @@ parse_general_definitions(struct drm_i915_private *i915)
expected_size = 37;
} else if (i915->display.vbt.version <= 215) {
expected_size = 38;
- } else if (i915->display.vbt.version <= 237) {
+ } else if (i915->display.vbt.version <= 250) {
expected_size = 39;
} else {
expected_size = sizeof(*child);
@@ -3175,14 +3221,26 @@ out:
kfree(oprom_vbt);
}
-void intel_bios_init_panel(struct drm_i915_private *i915,
- struct intel_panel *panel,
- const struct intel_bios_encoder_data *devdata,
- const struct edid *edid)
+static void intel_bios_init_panel(struct drm_i915_private *i915,
+ struct intel_panel *panel,
+ const struct intel_bios_encoder_data *devdata,
+ const struct drm_edid *drm_edid,
+ bool use_fallback)
{
- init_vbt_panel_defaults(panel);
+ /* already have it? */
+ if (panel->vbt.panel_type >= 0) {
+ drm_WARN_ON(&i915->drm, !use_fallback);
+ return;
+ }
- panel->vbt.panel_type = get_panel_type(i915, devdata, edid);
+ panel->vbt.panel_type = get_panel_type(i915, devdata,
+ drm_edid, use_fallback);
+ if (panel->vbt.panel_type < 0) {
+ drm_WARN_ON(&i915->drm, use_fallback);
+ return;
+ }
+
+ init_vbt_panel_defaults(panel);
parse_panel_options(i915, panel);
parse_generic_dtd(i915, panel);
@@ -3197,6 +3255,21 @@ void intel_bios_init_panel(struct drm_i915_private *i915,
parse_mipi_sequence(i915, panel);
}
+void intel_bios_init_panel_early(struct drm_i915_private *i915,
+ struct intel_panel *panel,
+ const struct intel_bios_encoder_data *devdata)
+{
+ intel_bios_init_panel(i915, panel, devdata, NULL, false);
+}
+
+void intel_bios_init_panel_late(struct drm_i915_private *i915,
+ struct intel_panel *panel,
+ const struct intel_bios_encoder_data *devdata,
+ const struct drm_edid *drm_edid)
+{
+ intel_bios_init_panel(i915, panel, devdata, drm_edid, true);
+}
+
/**
* intel_bios_driver_remove - Free any resources allocated by intel_bios_init()
* @i915: i915 device instance
@@ -3244,7 +3317,6 @@ void intel_bios_fini_panel(struct intel_panel *panel)
bool intel_bios_is_tv_present(struct drm_i915_private *i915)
{
const struct intel_bios_encoder_data *devdata;
- const struct child_device_config *child;
if (!i915->display.vbt.int_tv_support)
return false;
@@ -3253,7 +3325,7 @@ bool intel_bios_is_tv_present(struct drm_i915_private *i915)
return true;
list_for_each_entry(devdata, &i915->display.vbt.display_devices, node) {
- child = &devdata->child;
+ const struct child_device_config *child = &devdata->child;
/*
* If the device type is not TV, continue.
@@ -3287,13 +3359,12 @@ bool intel_bios_is_tv_present(struct drm_i915_private *i915)
bool intel_bios_is_lvds_present(struct drm_i915_private *i915, u8 *i2c_pin)
{
const struct intel_bios_encoder_data *devdata;
- const struct child_device_config *child;
if (list_empty(&i915->display.vbt.display_devices))
return true;
list_for_each_entry(devdata, &i915->display.vbt.display_devices, node) {
- child = &devdata->child;
+ const struct child_device_config *child = &devdata->child;
/* If the device type is not LFP, continue.
* We have to check both the new identifiers as well as the
@@ -3335,25 +3406,22 @@ bool intel_bios_is_lvds_present(struct drm_i915_private *i915, u8 *i2c_pin)
*/
bool intel_bios_is_port_present(struct drm_i915_private *i915, enum port port)
{
+ const struct intel_bios_encoder_data *devdata;
+
if (WARN_ON(!has_ddi_port_info(i915)))
return true;
- return i915->display.vbt.ports[port];
-}
+ if (!is_port_valid(i915, port))
+ return false;
-/**
- * intel_bios_is_port_edp - is the device in given port eDP
- * @i915: i915 device instance
- * @port: port to check
- *
- * Return true if the device in %port is eDP.
- */
-bool intel_bios_is_port_edp(struct drm_i915_private *i915, enum port port)
-{
- const struct intel_bios_encoder_data *devdata =
- intel_bios_encoder_data_lookup(i915, port);
+ list_for_each_entry(devdata, &i915->display.vbt.display_devices, node) {
+ const struct child_device_config *child = &devdata->child;
- return devdata && intel_bios_encoder_supports_edp(devdata);
+ if (dvo_port_to_port(i915, child->dvo_port) == port)
+ return true;
+ }
+
+ return false;
}
static bool intel_bios_encoder_supports_dp_dual_mode(const struct intel_bios_encoder_data *devdata)
@@ -3395,30 +3463,24 @@ bool intel_bios_is_dsi_present(struct drm_i915_private *i915,
enum port *port)
{
const struct intel_bios_encoder_data *devdata;
- const struct child_device_config *child;
- u8 dvo_port;
list_for_each_entry(devdata, &i915->display.vbt.display_devices, node) {
- child = &devdata->child;
+ const struct child_device_config *child = &devdata->child;
+ u8 dvo_port = child->dvo_port;
if (!(child->device_type & DEVICE_TYPE_MIPI_OUTPUT))
continue;
- dvo_port = child->dvo_port;
-
- if (dvo_port == DVO_PORT_MIPIA ||
- (dvo_port == DVO_PORT_MIPIB && DISPLAY_VER(i915) >= 11) ||
- (dvo_port == DVO_PORT_MIPIC && DISPLAY_VER(i915) < 11)) {
- if (port)
- *port = dvo_port - DVO_PORT_MIPIA;
- return true;
- } else if (dvo_port == DVO_PORT_MIPIB ||
- dvo_port == DVO_PORT_MIPIC ||
- dvo_port == DVO_PORT_MIPID) {
+ if (dsi_dvo_port_to_port(i915, dvo_port) == PORT_NONE) {
drm_dbg_kms(&i915->drm,
"VBT has unsupported DSI port %c\n",
port_name(dvo_port - DVO_PORT_MIPIA));
+ continue;
}
+
+ if (port)
+ *port = dsi_dvo_port_to_port(i915, dvo_port);
+ return true;
}
return false;
@@ -3495,15 +3557,14 @@ bool intel_bios_get_dsc_params(struct intel_encoder *encoder,
{
struct drm_i915_private *i915 = to_i915(encoder->base.dev);
const struct intel_bios_encoder_data *devdata;
- const struct child_device_config *child;
list_for_each_entry(devdata, &i915->display.vbt.display_devices, node) {
- child = &devdata->child;
+ const struct child_device_config *child = &devdata->child;
if (!(child->device_type & DEVICE_TYPE_MIPI_OUTPUT))
continue;
- if (child->dvo_port - DVO_PORT_MIPIA == encoder->port) {
+ if (dsi_dvo_port_to_port(i915, child->dvo_port) == encoder->port) {
if (!devdata->dsc)
return false;
@@ -3517,73 +3578,10 @@ bool intel_bios_get_dsc_params(struct intel_encoder *encoder,
return false;
}
-/**
- * intel_bios_is_port_hpd_inverted - is HPD inverted for %port
- * @i915: i915 device instance
- * @port: port to check
- *
- * Return true if HPD should be inverted for %port.
- */
-bool
-intel_bios_is_port_hpd_inverted(const struct drm_i915_private *i915,
- enum port port)
+static enum aux_ch map_aux_ch(struct drm_i915_private *i915, u8 aux_channel)
{
- const struct intel_bios_encoder_data *devdata = i915->display.vbt.ports[port];
-
- if (drm_WARN_ON_ONCE(&i915->drm,
- !IS_GEMINILAKE(i915) && !IS_BROXTON(i915)))
- return false;
-
- return devdata && devdata->child.hpd_invert;
-}
-
-/**
- * intel_bios_is_lspcon_present - if LSPCON is attached on %port
- * @i915: i915 device instance
- * @port: port to check
- *
- * Return true if LSPCON is present on this port
- */
-bool
-intel_bios_is_lspcon_present(const struct drm_i915_private *i915,
- enum port port)
-{
- const struct intel_bios_encoder_data *devdata = i915->display.vbt.ports[port];
-
- return HAS_LSPCON(i915) && devdata && devdata->child.lspcon;
-}
-
-/**
- * intel_bios_is_lane_reversal_needed - if lane reversal needed on port
- * @i915: i915 device instance
- * @port: port to check
- *
- * Return true if port requires lane reversal
- */
-bool
-intel_bios_is_lane_reversal_needed(const struct drm_i915_private *i915,
- enum port port)
-{
- const struct intel_bios_encoder_data *devdata = i915->display.vbt.ports[port];
-
- return devdata && devdata->child.lane_reversal;
-}
-
-enum aux_ch intel_bios_port_aux_ch(struct drm_i915_private *i915,
- enum port port)
-{
- const struct intel_bios_encoder_data *devdata = i915->display.vbt.ports[port];
enum aux_ch aux_ch;
- if (!devdata || !devdata->child.aux_channel) {
- aux_ch = (enum aux_ch)port;
-
- drm_dbg_kms(&i915->drm,
- "using AUX %c for port %c (platform default)\n",
- aux_ch_name(aux_ch), port_name(port));
- return aux_ch;
- }
-
/*
* RKL/DG1 VBT uses PHY based mapping. Combo PHYs A,B,C,D
* map to DDI A,B,TC1,TC2 respectively.
@@ -3591,7 +3589,7 @@ enum aux_ch intel_bios_port_aux_ch(struct drm_i915_private *i915,
* ADL-S VBT uses PHY based mapping. Combo PHYs A,B,C,D,E
* map to DDI A,TC1,TC2,TC3,TC4 respectively.
*/
- switch (devdata->child.aux_channel) {
+ switch (aux_channel) {
case DP_AUX_A:
aux_ch = AUX_CH_A;
break;
@@ -3652,35 +3650,23 @@ enum aux_ch intel_bios_port_aux_ch(struct drm_i915_private *i915,
aux_ch = AUX_CH_I;
break;
default:
- MISSING_CASE(devdata->child.aux_channel);
+ MISSING_CASE(aux_channel);
aux_ch = AUX_CH_A;
break;
}
- drm_dbg_kms(&i915->drm, "using AUX %c for port %c (VBT)\n",
- aux_ch_name(aux_ch), port_name(port));
-
return aux_ch;
}
-int intel_bios_max_tmds_clock(struct intel_encoder *encoder)
+enum aux_ch intel_bios_dp_aux_ch(const struct intel_bios_encoder_data *devdata)
{
- struct drm_i915_private *i915 = to_i915(encoder->base.dev);
- const struct intel_bios_encoder_data *devdata = i915->display.vbt.ports[encoder->port];
+ if (!devdata || !devdata->child.aux_channel)
+ return AUX_CH_NONE;
- return _intel_bios_max_tmds_clock(devdata);
+ return map_aux_ch(devdata->i915, devdata->child.aux_channel);
}
-/* This is an index in the HDMI/DVI DDI buffer translation table, or -1 */
-int intel_bios_hdmi_level_shift(struct intel_encoder *encoder)
-{
- struct drm_i915_private *i915 = to_i915(encoder->base.dev);
- const struct intel_bios_encoder_data *devdata = i915->display.vbt.ports[encoder->port];
-
- return _intel_bios_hdmi_level_shift(devdata);
-}
-
-int intel_bios_encoder_dp_boost_level(const struct intel_bios_encoder_data *devdata)
+int intel_bios_dp_boost_level(const struct intel_bios_encoder_data *devdata)
{
if (!devdata || devdata->i915->display.vbt.version < 196 || !devdata->child.iboost)
return 0;
@@ -3688,7 +3674,7 @@ int intel_bios_encoder_dp_boost_level(const struct intel_bios_encoder_data *devd
return translate_iboost(devdata->child.dp_iboost_level);
}
-int intel_bios_encoder_hdmi_boost_level(const struct intel_bios_encoder_data *devdata)
+int intel_bios_hdmi_boost_level(const struct intel_bios_encoder_data *devdata)
{
if (!devdata || devdata->i915->display.vbt.version < 196 || !devdata->child.iboost)
return 0;
@@ -3696,31 +3682,12 @@ int intel_bios_encoder_hdmi_boost_level(const struct intel_bios_encoder_data *de
return translate_iboost(devdata->child.hdmi_iboost_level);
}
-int intel_bios_dp_max_link_rate(struct intel_encoder *encoder)
-{
- struct drm_i915_private *i915 = to_i915(encoder->base.dev);
- const struct intel_bios_encoder_data *devdata = i915->display.vbt.ports[encoder->port];
-
- return _intel_bios_dp_max_link_rate(devdata);
-}
-
-int intel_bios_dp_max_lane_count(struct intel_encoder *encoder)
+int intel_bios_hdmi_ddc_pin(const struct intel_bios_encoder_data *devdata)
{
- struct drm_i915_private *i915 = to_i915(encoder->base.dev);
- const struct intel_bios_encoder_data *devdata = i915->display.vbt.ports[encoder->port];
-
- return _intel_bios_dp_max_lane_count(devdata);
-}
-
-int intel_bios_alternate_ddc_pin(struct intel_encoder *encoder)
-{
- struct drm_i915_private *i915 = to_i915(encoder->base.dev);
- const struct intel_bios_encoder_data *devdata = i915->display.vbt.ports[encoder->port];
-
if (!devdata || !devdata->child.ddc_pin)
return 0;
- return map_ddc_pin(i915, devdata->child.ddc_pin);
+ return map_ddc_pin(devdata->i915, devdata->child.ddc_pin);
}
bool intel_bios_encoder_supports_typec_usb(const struct intel_bios_encoder_data *devdata)
@@ -3733,6 +3700,16 @@ bool intel_bios_encoder_supports_tbt(const struct intel_bios_encoder_data *devda
return devdata->i915->display.vbt.version >= 209 && devdata->child.tbt;
}
+bool intel_bios_encoder_lane_reversal(const struct intel_bios_encoder_data *devdata)
+{
+ return devdata && devdata->child.lane_reversal;
+}
+
+bool intel_bios_encoder_hpd_invert(const struct intel_bios_encoder_data *devdata)
+{
+ return devdata && devdata->child.hpd_invert;
+}
+
const struct intel_bios_encoder_data *
intel_bios_encoder_data_lookup(struct drm_i915_private *i915, enum port port)
{
diff --git a/drivers/gpu/drm/i915/display/intel_bios.h b/drivers/gpu/drm/i915/display/intel_bios.h
index e375405a7828..8a0730c9b48c 100644
--- a/drivers/gpu/drm/i915/display/intel_bios.h
+++ b/drivers/gpu/drm/i915/display/intel_bios.h
@@ -32,12 +32,13 @@
#include <linux/types.h>
+struct drm_edid;
struct drm_i915_private;
-struct edid;
struct intel_bios_encoder_data;
struct intel_crtc_state;
struct intel_encoder;
struct intel_panel;
+enum aux_ch;
enum port;
enum intel_backlight_type {
@@ -232,10 +233,13 @@ struct mipi_pps_data {
} __packed;
void intel_bios_init(struct drm_i915_private *dev_priv);
-void intel_bios_init_panel(struct drm_i915_private *dev_priv,
- struct intel_panel *panel,
- const struct intel_bios_encoder_data *devdata,
- const struct edid *edid);
+void intel_bios_init_panel_early(struct drm_i915_private *dev_priv,
+ struct intel_panel *panel,
+ const struct intel_bios_encoder_data *devdata);
+void intel_bios_init_panel_late(struct drm_i915_private *dev_priv,
+ struct intel_panel *panel,
+ const struct intel_bios_encoder_data *devdata,
+ const struct drm_edid *drm_edid);
void intel_bios_fini_panel(struct intel_panel *panel);
void intel_bios_driver_remove(struct drm_i915_private *dev_priv);
bool intel_bios_is_valid_vbt(const void *buf, size_t size);
@@ -245,21 +249,9 @@ bool intel_bios_is_port_present(struct drm_i915_private *dev_priv, enum port por
bool intel_bios_is_port_edp(struct drm_i915_private *dev_priv, enum port port);
bool intel_bios_is_port_dp_dual_mode(struct drm_i915_private *dev_priv, enum port port);
bool intel_bios_is_dsi_present(struct drm_i915_private *dev_priv, enum port *port);
-bool intel_bios_is_port_hpd_inverted(const struct drm_i915_private *i915,
- enum port port);
-bool intel_bios_is_lspcon_present(const struct drm_i915_private *i915,
- enum port port);
-bool intel_bios_is_lane_reversal_needed(const struct drm_i915_private *i915,
- enum port port);
-enum aux_ch intel_bios_port_aux_ch(struct drm_i915_private *dev_priv, enum port port);
bool intel_bios_get_dsc_params(struct intel_encoder *encoder,
struct intel_crtc_state *crtc_state,
int dsc_max_bpc);
-int intel_bios_max_tmds_clock(struct intel_encoder *encoder);
-int intel_bios_hdmi_level_shift(struct intel_encoder *encoder);
-int intel_bios_dp_max_link_rate(struct intel_encoder *encoder);
-int intel_bios_dp_max_lane_count(struct intel_encoder *encoder);
-int intel_bios_alternate_ddc_pin(struct intel_encoder *encoder);
bool intel_bios_port_supports_typec_usb(struct drm_i915_private *i915, enum port port);
bool intel_bios_port_supports_tbt(struct drm_i915_private *i915, enum port port);
@@ -269,9 +261,19 @@ intel_bios_encoder_data_lookup(struct drm_i915_private *i915, enum port port);
bool intel_bios_encoder_supports_dvi(const struct intel_bios_encoder_data *devdata);
bool intel_bios_encoder_supports_hdmi(const struct intel_bios_encoder_data *devdata);
bool intel_bios_encoder_supports_dp(const struct intel_bios_encoder_data *devdata);
+bool intel_bios_encoder_supports_edp(const struct intel_bios_encoder_data *devdata);
bool intel_bios_encoder_supports_typec_usb(const struct intel_bios_encoder_data *devdata);
bool intel_bios_encoder_supports_tbt(const struct intel_bios_encoder_data *devdata);
-int intel_bios_encoder_dp_boost_level(const struct intel_bios_encoder_data *devdata);
-int intel_bios_encoder_hdmi_boost_level(const struct intel_bios_encoder_data *devdata);
+bool intel_bios_encoder_is_lspcon(const struct intel_bios_encoder_data *devdata);
+bool intel_bios_encoder_lane_reversal(const struct intel_bios_encoder_data *devdata);
+bool intel_bios_encoder_hpd_invert(const struct intel_bios_encoder_data *devdata);
+enum aux_ch intel_bios_dp_aux_ch(const struct intel_bios_encoder_data *devdata);
+int intel_bios_dp_boost_level(const struct intel_bios_encoder_data *devdata);
+int intel_bios_dp_max_lane_count(const struct intel_bios_encoder_data *devdata);
+int intel_bios_dp_max_link_rate(const struct intel_bios_encoder_data *devdata);
+int intel_bios_hdmi_boost_level(const struct intel_bios_encoder_data *devdata);
+int intel_bios_hdmi_ddc_pin(const struct intel_bios_encoder_data *devdata);
+int intel_bios_hdmi_level_shift(const struct intel_bios_encoder_data *devdata);
+int intel_bios_hdmi_max_tmds_clock(const struct intel_bios_encoder_data *devdata);
#endif /* _INTEL_BIOS_H_ */
diff --git a/drivers/gpu/drm/i915/display/intel_bw.c b/drivers/gpu/drm/i915/display/intel_bw.c
index 4ace026b29bd..202321ffbe2a 100644
--- a/drivers/gpu/drm/i915/display/intel_bw.c
+++ b/drivers/gpu/drm/i915/display/intel_bw.c
@@ -119,6 +119,32 @@ static int adls_pcode_read_psf_gv_point_info(struct drm_i915_private *dev_priv,
return 0;
}
+static u16 icl_qgv_points_mask(struct drm_i915_private *i915)
+{
+ unsigned int num_psf_gv_points = i915->display.bw.max[0].num_psf_gv_points;
+ unsigned int num_qgv_points = i915->display.bw.max[0].num_qgv_points;
+ u16 qgv_points = 0, psf_points = 0;
+
+ /*
+ * We can _not_ use the whole ADLS_QGV_PT_MASK here, as PCode rejects
+ * it with failure if we try masking any unadvertised points.
+ * So need to operate only with those returned from PCode.
+ */
+ if (num_qgv_points > 0)
+ qgv_points = GENMASK(num_qgv_points - 1, 0);
+
+ if (num_psf_gv_points > 0)
+ psf_points = GENMASK(num_psf_gv_points - 1, 0);
+
+ return ICL_PCODE_REQ_QGV_PT(qgv_points) | ADLS_PCODE_REQ_PSF_PT(psf_points);
+}
+
+static bool is_sagv_enabled(struct drm_i915_private *i915, u16 points_mask)
+{
+ return !is_power_of_2(~points_mask & icl_qgv_points_mask(i915) &
+ ICL_PCODE_REQ_QGV_PT_MASK);
+}
+
int icl_pcode_restrict_qgv_points(struct drm_i915_private *dev_priv,
u32 points_mask)
{
@@ -136,6 +162,9 @@ int icl_pcode_restrict_qgv_points(struct drm_i915_private *dev_priv,
return ret;
}
+ dev_priv->display.sagv.status = is_sagv_enabled(dev_priv, points_mask) ?
+ I915_SAGV_ENABLED : I915_SAGV_DISABLED;
+
return 0;
}
@@ -439,7 +468,8 @@ static int tgl_get_bw_info(struct drm_i915_private *dev_priv, const struct intel
return ret;
}
- if (dram_info->type == INTEL_DRAM_LPDDR4 || dram_info->type == INTEL_DRAM_LPDDR5)
+ if (DISPLAY_VER(dev_priv) < 14 &&
+ (dram_info->type == INTEL_DRAM_LPDDR4 || dram_info->type == INTEL_DRAM_LPDDR5))
num_channels *= 2;
qi.deinterleave = qi.deinterleave ? : DIV_ROUND_UP(num_channels, is_y_tile ? 4 : 2);
@@ -964,26 +994,6 @@ int intel_bw_calc_min_cdclk(struct intel_atomic_state *state,
return 0;
}
-static u16 icl_qgv_points_mask(struct drm_i915_private *i915)
-{
- unsigned int num_psf_gv_points = i915->display.bw.max[0].num_psf_gv_points;
- unsigned int num_qgv_points = i915->display.bw.max[0].num_qgv_points;
- u16 qgv_points = 0, psf_points = 0;
-
- /*
- * We can _not_ use the whole ADLS_QGV_PT_MASK here, as PCode rejects
- * it with failure if we try masking any unadvertised points.
- * So need to operate only with those returned from PCode.
- */
- if (num_qgv_points > 0)
- qgv_points = GENMASK(num_qgv_points - 1, 0);
-
- if (num_psf_gv_points > 0)
- psf_points = GENMASK(num_psf_gv_points - 1, 0);
-
- return ICL_PCODE_REQ_QGV_PT(qgv_points) | ADLS_PCODE_REQ_PSF_PT(psf_points);
-}
-
static int intel_bw_check_data_rate(struct intel_atomic_state *state, bool *changed)
{
struct drm_i915_private *i915 = to_i915(state->base.dev);
diff --git a/drivers/gpu/drm/i915/display/intel_bw.h b/drivers/gpu/drm/i915/display/intel_bw.h
index cb7ee3a24a58..f20292143745 100644
--- a/drivers/gpu/drm/i915/display/intel_bw.h
+++ b/drivers/gpu/drm/i915/display/intel_bw.h
@@ -8,7 +8,7 @@
#include <drm/drm_atomic.h>
-#include "intel_display.h"
+#include "intel_display_limits.h"
#include "intel_display_power.h"
#include "intel_global_state.h"
diff --git a/drivers/gpu/drm/i915/display/intel_cdclk.c b/drivers/gpu/drm/i915/display/intel_cdclk.c
index ed05070b7307..084a483f9776 100644
--- a/drivers/gpu/drm/i915/display/intel_cdclk.c
+++ b/drivers/gpu/drm/i915/display/intel_cdclk.c
@@ -24,6 +24,7 @@
#include <linux/time.h>
#include "hsw_ips.h"
+#include "i915_reg.h"
#include "intel_atomic.h"
#include "intel_atomic_plane.h"
#include "intel_audio.h"
@@ -1220,11 +1221,6 @@ static void skl_cdclk_uninit_hw(struct drm_i915_private *dev_priv)
skl_set_cdclk(dev_priv, &cdclk_config, INVALID_PIPE);
}
-static bool has_cdclk_squasher(struct drm_i915_private *i915)
-{
- return IS_DG2(i915);
-}
-
struct intel_cdclk_vals {
u32 cdclk;
u16 refclk;
@@ -1323,7 +1319,7 @@ static const struct intel_cdclk_vals adlp_cdclk_table[] = {
{ .refclk = 24000, .cdclk = 192000, .divider = 2, .ratio = 16 },
{ .refclk = 24000, .cdclk = 312000, .divider = 2, .ratio = 26 },
{ .refclk = 24000, .cdclk = 552000, .divider = 2, .ratio = 46 },
- { .refclk = 24400, .cdclk = 648000, .divider = 2, .ratio = 54 },
+ { .refclk = 24000, .cdclk = 648000, .divider = 2, .ratio = 54 },
{ .refclk = 38400, .cdclk = 179200, .divider = 3, .ratio = 14 },
{ .refclk = 38400, .cdclk = 192000, .divider = 2, .ratio = 10 },
@@ -1333,6 +1329,30 @@ static const struct intel_cdclk_vals adlp_cdclk_table[] = {
{}
};
+static const struct intel_cdclk_vals rplu_cdclk_table[] = {
+ { .refclk = 19200, .cdclk = 172800, .divider = 3, .ratio = 27 },
+ { .refclk = 19200, .cdclk = 192000, .divider = 2, .ratio = 20 },
+ { .refclk = 19200, .cdclk = 307200, .divider = 2, .ratio = 32 },
+ { .refclk = 19200, .cdclk = 480000, .divider = 2, .ratio = 50 },
+ { .refclk = 19200, .cdclk = 556800, .divider = 2, .ratio = 58 },
+ { .refclk = 19200, .cdclk = 652800, .divider = 2, .ratio = 68 },
+
+ { .refclk = 24000, .cdclk = 176000, .divider = 3, .ratio = 22 },
+ { .refclk = 24000, .cdclk = 192000, .divider = 2, .ratio = 16 },
+ { .refclk = 24000, .cdclk = 312000, .divider = 2, .ratio = 26 },
+ { .refclk = 24000, .cdclk = 480000, .divider = 2, .ratio = 40 },
+ { .refclk = 24000, .cdclk = 552000, .divider = 2, .ratio = 46 },
+ { .refclk = 24000, .cdclk = 648000, .divider = 2, .ratio = 54 },
+
+ { .refclk = 38400, .cdclk = 179200, .divider = 3, .ratio = 14 },
+ { .refclk = 38400, .cdclk = 192000, .divider = 2, .ratio = 10 },
+ { .refclk = 38400, .cdclk = 307200, .divider = 2, .ratio = 16 },
+ { .refclk = 38400, .cdclk = 480000, .divider = 2, .ratio = 25 },
+ { .refclk = 38400, .cdclk = 556800, .divider = 2, .ratio = 29 },
+ { .refclk = 38400, .cdclk = 652800, .divider = 2, .ratio = 34 },
+ {}
+};
+
static const struct intel_cdclk_vals dg2_cdclk_table[] = {
{ .refclk = 38400, .cdclk = 163200, .divider = 2, .ratio = 34, .waveform = 0x8888 },
{ .refclk = 38400, .cdclk = 204000, .divider = 2, .ratio = 34, .waveform = 0x9248 },
@@ -1350,6 +1370,16 @@ static const struct intel_cdclk_vals dg2_cdclk_table[] = {
{}
};
+static const struct intel_cdclk_vals mtl_cdclk_table[] = {
+ { .refclk = 38400, .cdclk = 172800, .divider = 2, .ratio = 16, .waveform = 0xad5a },
+ { .refclk = 38400, .cdclk = 192000, .divider = 2, .ratio = 16, .waveform = 0xb6b6 },
+ { .refclk = 38400, .cdclk = 307200, .divider = 2, .ratio = 16, .waveform = 0x0000 },
+ { .refclk = 38400, .cdclk = 480000, .divider = 2, .ratio = 25, .waveform = 0x0000 },
+ { .refclk = 38400, .cdclk = 556800, .divider = 2, .ratio = 29, .waveform = 0x0000 },
+ { .refclk = 38400, .cdclk = 652800, .divider = 2, .ratio = 34, .waveform = 0x0000 },
+ {}
+};
+
static int bxt_calc_cdclk(struct drm_i915_private *dev_priv, int min_cdclk)
{
const struct intel_cdclk_vals *table = dev_priv->display.cdclk.table;
@@ -1520,7 +1550,7 @@ static void bxt_get_cdclk(struct drm_i915_private *dev_priv,
return;
}
- if (has_cdclk_squasher(dev_priv))
+ if (HAS_CDCLK_SQUASH(dev_priv))
squash_ctl = intel_de_read(dev_priv, CDCLK_SQUASH_CTL);
if (squash_ctl & CDCLK_SQUASH_ENABLE) {
@@ -1689,56 +1719,141 @@ static u32 cdclk_squash_waveform(struct drm_i915_private *dev_priv,
return 0xffff;
}
-static void bxt_set_cdclk(struct drm_i915_private *dev_priv,
- const struct intel_cdclk_config *cdclk_config,
- enum pipe pipe)
+static void icl_cdclk_pll_update(struct drm_i915_private *i915, int vco)
+{
+ if (i915->display.cdclk.hw.vco != 0 &&
+ i915->display.cdclk.hw.vco != vco)
+ icl_cdclk_pll_disable(i915);
+
+ if (i915->display.cdclk.hw.vco != vco)
+ icl_cdclk_pll_enable(i915, vco);
+}
+
+static void bxt_cdclk_pll_update(struct drm_i915_private *i915, int vco)
+{
+ if (i915->display.cdclk.hw.vco != 0 &&
+ i915->display.cdclk.hw.vco != vco)
+ bxt_de_pll_disable(i915);
+
+ if (i915->display.cdclk.hw.vco != vco)
+ bxt_de_pll_enable(i915, vco);
+}
+
+static void dg2_cdclk_squash_program(struct drm_i915_private *i915,
+ u16 waveform)
+{
+ u32 squash_ctl = 0;
+
+ if (waveform)
+ squash_ctl = CDCLK_SQUASH_ENABLE |
+ CDCLK_SQUASH_WINDOW_SIZE(0xf) | waveform;
+
+ intel_de_write(i915, CDCLK_SQUASH_CTL, squash_ctl);
+}
+
+static bool cdclk_pll_is_unknown(unsigned int vco)
+{
+ /*
+ * Ensure driver does not take the crawl path for the
+ * case when the vco is set to ~0 in the
+ * sanitize path.
+ */
+ return vco == ~0;
+}
+
+static int cdclk_squash_divider(u16 waveform)
+{
+ return hweight16(waveform ?: 0xffff);
+}
+
+static bool cdclk_compute_crawl_and_squash_midpoint(struct drm_i915_private *i915,
+ const struct intel_cdclk_config *old_cdclk_config,
+ const struct intel_cdclk_config *new_cdclk_config,
+ struct intel_cdclk_config *mid_cdclk_config)
+{
+ u16 old_waveform, new_waveform, mid_waveform;
+ int size = 16;
+ int div = 2;
+
+ /* Return if PLL is in an unknown state, force a complete disable and re-enable. */
+ if (cdclk_pll_is_unknown(old_cdclk_config->vco))
+ return false;
+
+ /* Return if both Squash and Crawl are not present */
+ if (!HAS_CDCLK_CRAWL(i915) || !HAS_CDCLK_SQUASH(i915))
+ return false;
+
+ old_waveform = cdclk_squash_waveform(i915, old_cdclk_config->cdclk);
+ new_waveform = cdclk_squash_waveform(i915, new_cdclk_config->cdclk);
+
+ /* Return if Squash only or Crawl only is the desired action */
+ if (old_cdclk_config->vco == 0 || new_cdclk_config->vco == 0 ||
+ old_cdclk_config->vco == new_cdclk_config->vco ||
+ old_waveform == new_waveform)
+ return false;
+
+ *mid_cdclk_config = *new_cdclk_config;
+
+ /*
+ * Populate the mid_cdclk_config accordingly.
+ * - If moving to a higher cdclk, the desired action is squashing.
+ * The mid cdclk config should have the new (squash) waveform.
+ * - If moving to a lower cdclk, the desired action is crawling.
+ * The mid cdclk config should have the new vco.
+ */
+
+ if (cdclk_squash_divider(new_waveform) > cdclk_squash_divider(old_waveform)) {
+ mid_cdclk_config->vco = old_cdclk_config->vco;
+ mid_waveform = new_waveform;
+ } else {
+ mid_cdclk_config->vco = new_cdclk_config->vco;
+ mid_waveform = old_waveform;
+ }
+
+ mid_cdclk_config->cdclk = DIV_ROUND_CLOSEST(cdclk_squash_divider(mid_waveform) *
+ mid_cdclk_config->vco, size * div);
+
+ /* make sure the mid clock came out sane */
+
+ drm_WARN_ON(&i915->drm, mid_cdclk_config->cdclk <
+ min(old_cdclk_config->cdclk, new_cdclk_config->cdclk));
+ drm_WARN_ON(&i915->drm, mid_cdclk_config->cdclk >
+ i915->display.cdclk.max_cdclk_freq);
+ drm_WARN_ON(&i915->drm, cdclk_squash_waveform(i915, mid_cdclk_config->cdclk) !=
+ mid_waveform);
+
+ return true;
+}
+
+static bool pll_enable_wa_needed(struct drm_i915_private *dev_priv)
+{
+ return ((IS_DG2(dev_priv) || IS_METEORLAKE(dev_priv)) &&
+ dev_priv->display.cdclk.hw.vco > 0 &&
+ HAS_CDCLK_SQUASH(dev_priv));
+}
+
+static void _bxt_set_cdclk(struct drm_i915_private *dev_priv,
+ const struct intel_cdclk_config *cdclk_config,
+ enum pipe pipe)
{
int cdclk = cdclk_config->cdclk;
int vco = cdclk_config->vco;
u32 val;
u16 waveform;
int clock;
- int ret;
- /* Inform power controller of upcoming frequency change. */
- if (DISPLAY_VER(dev_priv) >= 11)
- ret = skl_pcode_request(&dev_priv->uncore, SKL_PCODE_CDCLK_CONTROL,
- SKL_CDCLK_PREPARE_FOR_CHANGE,
- SKL_CDCLK_READY_FOR_CHANGE,
- SKL_CDCLK_READY_FOR_CHANGE, 3);
- else
- /*
- * BSpec requires us to wait up to 150usec, but that leads to
- * timeouts; the 2ms used here is based on experiment.
- */
- ret = snb_pcode_write_timeout(&dev_priv->uncore,
- HSW_PCODE_DE_WRITE_FREQ_REQ,
- 0x80000000, 150, 2);
- if (ret) {
- drm_err(&dev_priv->drm,
- "Failed to inform PCU about cdclk change (err %d, freq %d)\n",
- ret, cdclk);
- return;
- }
-
- if (HAS_CDCLK_CRAWL(dev_priv) && dev_priv->display.cdclk.hw.vco > 0 && vco > 0) {
+ if (HAS_CDCLK_CRAWL(dev_priv) && dev_priv->display.cdclk.hw.vco > 0 && vco > 0 &&
+ !cdclk_pll_is_unknown(dev_priv->display.cdclk.hw.vco)) {
if (dev_priv->display.cdclk.hw.vco != vco)
adlp_cdclk_pll_crawl(dev_priv, vco);
} else if (DISPLAY_VER(dev_priv) >= 11) {
- if (dev_priv->display.cdclk.hw.vco != 0 &&
- dev_priv->display.cdclk.hw.vco != vco)
- icl_cdclk_pll_disable(dev_priv);
-
- if (dev_priv->display.cdclk.hw.vco != vco)
- icl_cdclk_pll_enable(dev_priv, vco);
- } else {
- if (dev_priv->display.cdclk.hw.vco != 0 &&
- dev_priv->display.cdclk.hw.vco != vco)
- bxt_de_pll_disable(dev_priv);
+ /* wa_15010685871: dg2, mtl */
+ if (pll_enable_wa_needed(dev_priv))
+ dg2_cdclk_squash_program(dev_priv, 0);
- if (dev_priv->display.cdclk.hw.vco != vco)
- bxt_de_pll_enable(dev_priv, vco);
- }
+ icl_cdclk_pll_update(dev_priv, vco);
+ } else
+ bxt_cdclk_pll_update(dev_priv, vco);
waveform = cdclk_squash_waveform(dev_priv, cdclk);
@@ -1747,15 +1862,8 @@ static void bxt_set_cdclk(struct drm_i915_private *dev_priv,
else
clock = cdclk;
- if (has_cdclk_squasher(dev_priv)) {
- u32 squash_ctl = 0;
-
- if (waveform)
- squash_ctl = CDCLK_SQUASH_ENABLE |
- CDCLK_SQUASH_WINDOW_SIZE(0xf) | waveform;
-
- intel_de_write(dev_priv, CDCLK_SQUASH_CTL, squash_ctl);
- }
+ if (HAS_CDCLK_SQUASH(dev_priv))
+ dg2_cdclk_squash_program(dev_priv, waveform);
val = bxt_cdclk_cd2x_div_sel(dev_priv, clock, vco) |
bxt_cdclk_cd2x_pipe(dev_priv, pipe) |
@@ -1772,11 +1880,62 @@ static void bxt_set_cdclk(struct drm_i915_private *dev_priv,
if (pipe != INVALID_PIPE)
intel_crtc_wait_for_next_vblank(intel_crtc_for_pipe(dev_priv, pipe));
+}
+
+static void bxt_set_cdclk(struct drm_i915_private *dev_priv,
+ const struct intel_cdclk_config *cdclk_config,
+ enum pipe pipe)
+{
+ struct intel_cdclk_config mid_cdclk_config;
+ int cdclk = cdclk_config->cdclk;
+ int ret = 0;
+
+ /*
+ * Inform power controller of upcoming frequency change.
+ * Display versions 14 and beyond do not follow the PUnit
+ * mailbox communication, skip
+ * this step.
+ */
+ if (DISPLAY_VER(dev_priv) >= 14)
+ /* NOOP */;
+ else if (DISPLAY_VER(dev_priv) >= 11)
+ ret = skl_pcode_request(&dev_priv->uncore, SKL_PCODE_CDCLK_CONTROL,
+ SKL_CDCLK_PREPARE_FOR_CHANGE,
+ SKL_CDCLK_READY_FOR_CHANGE,
+ SKL_CDCLK_READY_FOR_CHANGE, 3);
+ else
+ /*
+ * BSpec requires us to wait up to 150usec, but that leads to
+ * timeouts; the 2ms used here is based on experiment.
+ */
+ ret = snb_pcode_write_timeout(&dev_priv->uncore,
+ HSW_PCODE_DE_WRITE_FREQ_REQ,
+ 0x80000000, 150, 2);
- if (DISPLAY_VER(dev_priv) >= 11) {
+ if (ret) {
+ drm_err(&dev_priv->drm,
+ "Failed to inform PCU about cdclk change (err %d, freq %d)\n",
+ ret, cdclk);
+ return;
+ }
+
+ if (cdclk_compute_crawl_and_squash_midpoint(dev_priv, &dev_priv->display.cdclk.hw,
+ cdclk_config, &mid_cdclk_config)) {
+ _bxt_set_cdclk(dev_priv, &mid_cdclk_config, pipe);
+ _bxt_set_cdclk(dev_priv, cdclk_config, pipe);
+ } else {
+ _bxt_set_cdclk(dev_priv, cdclk_config, pipe);
+ }
+
+ if (DISPLAY_VER(dev_priv) >= 14)
+ /*
+ * NOOP - No Pcode communication needed for
+ * Display versions 14 and beyond
+ */;
+ else if (DISPLAY_VER(dev_priv) >= 11)
ret = snb_pcode_write(&dev_priv->uncore, SKL_PCODE_CDCLK_CONTROL,
cdclk_config->voltage_level);
- } else {
+ else
/*
* The timeout isn't specified, the 2ms used here is based on
* experiment.
@@ -1787,7 +1946,6 @@ static void bxt_set_cdclk(struct drm_i915_private *dev_priv,
HSW_PCODE_DE_WRITE_FREQ_REQ,
cdclk_config->voltage_level,
150, 2);
- }
if (ret) {
drm_err(&dev_priv->drm,
@@ -1845,7 +2003,7 @@ static void bxt_sanitize_cdclk(struct drm_i915_private *dev_priv)
expected = skl_cdclk_decimal(cdclk);
/* Figure out what CD2X divider we should be using for this cdclk */
- if (has_cdclk_squasher(dev_priv))
+ if (HAS_CDCLK_SQUASH(dev_priv))
clock = dev_priv->display.cdclk.hw.vco / 2;
else
clock = dev_priv->display.cdclk.hw.cdclk;
@@ -1944,6 +2102,28 @@ void intel_cdclk_uninit_hw(struct drm_i915_private *i915)
skl_cdclk_uninit_hw(i915);
}
+static bool intel_cdclk_can_crawl_and_squash(struct drm_i915_private *i915,
+ const struct intel_cdclk_config *a,
+ const struct intel_cdclk_config *b)
+{
+ u16 old_waveform;
+ u16 new_waveform;
+
+ drm_WARN_ON(&i915->drm, cdclk_pll_is_unknown(a->vco));
+
+ if (a->vco == 0 || b->vco == 0)
+ return false;
+
+ if (!HAS_CDCLK_CRAWL(i915) || !HAS_CDCLK_SQUASH(i915))
+ return false;
+
+ old_waveform = cdclk_squash_waveform(i915, a->cdclk);
+ new_waveform = cdclk_squash_waveform(i915, b->cdclk);
+
+ return a->vco != b->vco &&
+ old_waveform != new_waveform;
+}
+
static bool intel_cdclk_can_crawl(struct drm_i915_private *dev_priv,
const struct intel_cdclk_config *a,
const struct intel_cdclk_config *b)
@@ -1976,7 +2156,7 @@ static bool intel_cdclk_can_squash(struct drm_i915_private *dev_priv,
* the moment all platforms with squasher use a fixed cd2x
* divider.
*/
- if (!has_cdclk_squasher(dev_priv))
+ if (!HAS_CDCLK_SQUASH(dev_priv))
return false;
return a->cdclk != b->cdclk &&
@@ -2028,7 +2208,7 @@ static bool intel_cdclk_can_cd2x_update(struct drm_i915_private *dev_priv,
* the moment all platforms with squasher use a fixed cd2x
* divider.
*/
- if (has_cdclk_squasher(dev_priv))
+ if (HAS_CDCLK_SQUASH(dev_priv))
return false;
return a->cdclk != b->cdclk &&
@@ -2464,10 +2644,6 @@ static int bdw_modeset_calc_cdclk(struct intel_cdclk_state *cdclk_state)
if (min_cdclk < 0)
return min_cdclk;
- /*
- * FIXME should also account for plane ratio
- * once 64bpp pixel formats are supported.
- */
cdclk = bdw_calc_cdclk(min_cdclk);
cdclk_state->logical.cdclk = cdclk;
@@ -2534,10 +2710,6 @@ static int skl_modeset_calc_cdclk(struct intel_cdclk_state *cdclk_state)
vco = skl_dpll0_vco(cdclk_state);
- /*
- * FIXME should also account for plane ratio
- * once 64bpp pixel formats are supported.
- */
cdclk = skl_calc_cdclk(min_cdclk, vco);
cdclk_state->logical.vco = vco;
@@ -2754,20 +2926,25 @@ int intel_modeset_calc_cdclk(struct intel_atomic_state *state)
if (IS_ERR(crtc_state))
return PTR_ERR(crtc_state);
- if (drm_atomic_crtc_needs_modeset(&crtc_state->uapi))
+ if (intel_crtc_needs_modeset(crtc_state))
pipe = INVALID_PIPE;
}
- if (intel_cdclk_can_squash(dev_priv,
- &old_cdclk_state->actual,
- &new_cdclk_state->actual)) {
+ if (intel_cdclk_can_crawl_and_squash(dev_priv,
+ &old_cdclk_state->actual,
+ &new_cdclk_state->actual)) {
drm_dbg_kms(&dev_priv->drm,
- "Can change cdclk via squasher\n");
+ "Can change cdclk via crawling and squashing\n");
+ } else if (intel_cdclk_can_squash(dev_priv,
+ &old_cdclk_state->actual,
+ &new_cdclk_state->actual)) {
+ drm_dbg_kms(&dev_priv->drm,
+ "Can change cdclk via squashing\n");
} else if (intel_cdclk_can_crawl(dev_priv,
&old_cdclk_state->actual,
&new_cdclk_state->actual)) {
drm_dbg_kms(&dev_priv->drm,
- "Can change cdclk via crawl\n");
+ "Can change cdclk via crawling\n");
} else if (pipe != INVALID_PIPE) {
new_cdclk_state->pipe = pipe;
@@ -2777,7 +2954,7 @@ int intel_modeset_calc_cdclk(struct intel_atomic_state *state)
} else if (intel_cdclk_needs_modeset(&old_cdclk_state->actual,
&new_cdclk_state->actual)) {
/* All pipes must be switched off while we change the cdclk. */
- ret = intel_modeset_all_pipes(state);
+ ret = intel_modeset_all_pipes(state, "CDCLK change");
if (ret)
return ret;
@@ -3058,6 +3235,13 @@ u32 intel_read_rawclk(struct drm_i915_private *dev_priv)
return freq;
}
+static const struct intel_cdclk_funcs mtl_cdclk_funcs = {
+ .get_cdclk = bxt_get_cdclk,
+ .set_cdclk = bxt_set_cdclk,
+ .modeset_calc_cdclk = bxt_modeset_calc_cdclk,
+ .calc_voltage_level = tgl_calc_voltage_level,
+};
+
static const struct intel_cdclk_funcs tgl_cdclk_funcs = {
.get_cdclk = bxt_get_cdclk,
.set_cdclk = bxt_set_cdclk,
@@ -3193,7 +3377,10 @@ static const struct intel_cdclk_funcs i830_cdclk_funcs = {
*/
void intel_init_cdclk_hooks(struct drm_i915_private *dev_priv)
{
- if (IS_DG2(dev_priv)) {
+ if (IS_METEORLAKE(dev_priv)) {
+ dev_priv->display.funcs.cdclk = &mtl_cdclk_funcs;
+ dev_priv->display.cdclk.table = mtl_cdclk_table;
+ } else if (IS_DG2(dev_priv)) {
dev_priv->display.funcs.cdclk = &tgl_cdclk_funcs;
dev_priv->display.cdclk.table = dg2_cdclk_table;
} else if (IS_ALDERLAKE_P(dev_priv)) {
@@ -3201,6 +3388,8 @@ void intel_init_cdclk_hooks(struct drm_i915_private *dev_priv)
/* Wa_22011320316:adl-p[a0] */
if (IS_ADLP_DISPLAY_STEP(dev_priv, STEP_A0, STEP_B0))
dev_priv->display.cdclk.table = adlp_a_step_cdclk_table;
+ else if (IS_ADLP_RPLU(dev_priv))
+ dev_priv->display.cdclk.table = rplu_cdclk_table;
else
dev_priv->display.cdclk.table = adlp_cdclk_table;
} else if (IS_ROCKETLAKE(dev_priv)) {
diff --git a/drivers/gpu/drm/i915/display/intel_cdclk.h b/drivers/gpu/drm/i915/display/intel_cdclk.h
index c674879a84a5..51e2f6a11ce4 100644
--- a/drivers/gpu/drm/i915/display/intel_cdclk.h
+++ b/drivers/gpu/drm/i915/display/intel_cdclk.h
@@ -8,7 +8,7 @@
#include <linux/types.h>
-#include "intel_display.h"
+#include "intel_display_limits.h"
#include "intel_global_state.h"
struct drm_i915_private;
diff --git a/drivers/gpu/drm/i915/display/intel_color.c b/drivers/gpu/drm/i915/display/intel_color.c
index 6bda4274eae9..36aac88143ac 100644
--- a/drivers/gpu/drm/i915/display/intel_color.c
+++ b/drivers/gpu/drm/i915/display/intel_color.c
@@ -22,12 +22,11 @@
*
*/
+#include "i915_reg.h"
#include "intel_color.h"
#include "intel_de.h"
#include "intel_display_types.h"
-#include "intel_dpll.h"
#include "intel_dsb.h"
-#include "vlv_dsi_pll.h"
struct intel_color_funcs {
int (*color_check)(struct intel_crtc_state *crtc_state);
@@ -48,13 +47,29 @@ struct intel_color_funcs {
*/
void (*color_commit_arm)(const struct intel_crtc_state *crtc_state);
/*
+ * Perform any extra tasks needed after all the
+ * double buffered registers have been latched.
+ */
+ void (*color_post_update)(const struct intel_crtc_state *crtc_state);
+ /*
* Load LUTs (and other single buffered color management
* registers). Will (hopefully) be called during the vblank
* following the latching of any double buffered registers
* involved with the same commit.
*/
void (*load_luts)(const struct intel_crtc_state *crtc_state);
+ /*
+ * Read out the LUTs from the hardware into the software state.
+ * Used by eg. the hardware state checker.
+ */
void (*read_luts)(struct intel_crtc_state *crtc_state);
+ /*
+ * Compare the LUTs
+ */
+ bool (*lut_equal)(const struct intel_crtc_state *crtc_state,
+ const struct drm_property_blob *blob1,
+ const struct drm_property_blob *blob2,
+ bool is_pre_csc_lut);
};
#define CTM_COEFF_SIGN (1ULL << 63)
@@ -144,15 +159,7 @@ static const u16 ilk_csc_postoff_rgb_to_ycbcr[3] = {
static bool lut_is_legacy(const struct drm_property_blob *lut)
{
- return drm_color_lut_size(lut) == LEGACY_LUT_LENGTH;
-}
-
-static bool crtc_state_is_legacy_gamma(const struct intel_crtc_state *crtc_state)
-{
- return !crtc_state->hw.degamma_lut &&
- !crtc_state->hw.ctm &&
- crtc_state->hw.gamma_lut &&
- lut_is_legacy(crtc_state->hw.gamma_lut);
+ return lut && drm_color_lut_size(lut) == LEGACY_LUT_LENGTH;
}
/*
@@ -186,31 +193,31 @@ static void ilk_update_pipe_csc(struct intel_crtc *crtc,
const u16 coeff[9],
const u16 postoff[3])
{
- struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
+ struct drm_i915_private *i915 = to_i915(crtc->base.dev);
enum pipe pipe = crtc->pipe;
- intel_de_write_fw(dev_priv, PIPE_CSC_PREOFF_HI(pipe), preoff[0]);
- intel_de_write_fw(dev_priv, PIPE_CSC_PREOFF_ME(pipe), preoff[1]);
- intel_de_write_fw(dev_priv, PIPE_CSC_PREOFF_LO(pipe), preoff[2]);
+ intel_de_write_fw(i915, PIPE_CSC_PREOFF_HI(pipe), preoff[0]);
+ intel_de_write_fw(i915, PIPE_CSC_PREOFF_ME(pipe), preoff[1]);
+ intel_de_write_fw(i915, PIPE_CSC_PREOFF_LO(pipe), preoff[2]);
- intel_de_write_fw(dev_priv, PIPE_CSC_COEFF_RY_GY(pipe),
+ intel_de_write_fw(i915, PIPE_CSC_COEFF_RY_GY(pipe),
coeff[0] << 16 | coeff[1]);
- intel_de_write_fw(dev_priv, PIPE_CSC_COEFF_BY(pipe), coeff[2] << 16);
+ intel_de_write_fw(i915, PIPE_CSC_COEFF_BY(pipe), coeff[2] << 16);
- intel_de_write_fw(dev_priv, PIPE_CSC_COEFF_RU_GU(pipe),
+ intel_de_write_fw(i915, PIPE_CSC_COEFF_RU_GU(pipe),
coeff[3] << 16 | coeff[4]);
- intel_de_write_fw(dev_priv, PIPE_CSC_COEFF_BU(pipe), coeff[5] << 16);
+ intel_de_write_fw(i915, PIPE_CSC_COEFF_BU(pipe), coeff[5] << 16);
- intel_de_write_fw(dev_priv, PIPE_CSC_COEFF_RV_GV(pipe),
+ intel_de_write_fw(i915, PIPE_CSC_COEFF_RV_GV(pipe),
coeff[6] << 16 | coeff[7]);
- intel_de_write_fw(dev_priv, PIPE_CSC_COEFF_BV(pipe), coeff[8] << 16);
+ intel_de_write_fw(i915, PIPE_CSC_COEFF_BV(pipe), coeff[8] << 16);
- if (DISPLAY_VER(dev_priv) >= 7) {
- intel_de_write_fw(dev_priv, PIPE_CSC_POSTOFF_HI(pipe),
+ if (DISPLAY_VER(i915) >= 7) {
+ intel_de_write_fw(i915, PIPE_CSC_POSTOFF_HI(pipe),
postoff[0]);
- intel_de_write_fw(dev_priv, PIPE_CSC_POSTOFF_ME(pipe),
+ intel_de_write_fw(i915, PIPE_CSC_POSTOFF_ME(pipe),
postoff[1]);
- intel_de_write_fw(dev_priv, PIPE_CSC_POSTOFF_LO(pipe),
+ intel_de_write_fw(i915, PIPE_CSC_POSTOFF_LO(pipe),
postoff[2]);
}
}
@@ -220,55 +227,82 @@ static void icl_update_output_csc(struct intel_crtc *crtc,
const u16 coeff[9],
const u16 postoff[3])
{
- struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
+ struct drm_i915_private *i915 = to_i915(crtc->base.dev);
enum pipe pipe = crtc->pipe;
- intel_de_write_fw(dev_priv, PIPE_CSC_OUTPUT_PREOFF_HI(pipe), preoff[0]);
- intel_de_write_fw(dev_priv, PIPE_CSC_OUTPUT_PREOFF_ME(pipe), preoff[1]);
- intel_de_write_fw(dev_priv, PIPE_CSC_OUTPUT_PREOFF_LO(pipe), preoff[2]);
+ intel_de_write_fw(i915, PIPE_CSC_OUTPUT_PREOFF_HI(pipe), preoff[0]);
+ intel_de_write_fw(i915, PIPE_CSC_OUTPUT_PREOFF_ME(pipe), preoff[1]);
+ intel_de_write_fw(i915, PIPE_CSC_OUTPUT_PREOFF_LO(pipe), preoff[2]);
- intel_de_write_fw(dev_priv, PIPE_CSC_OUTPUT_COEFF_RY_GY(pipe),
+ intel_de_write_fw(i915, PIPE_CSC_OUTPUT_COEFF_RY_GY(pipe),
coeff[0] << 16 | coeff[1]);
- intel_de_write_fw(dev_priv, PIPE_CSC_OUTPUT_COEFF_BY(pipe),
+ intel_de_write_fw(i915, PIPE_CSC_OUTPUT_COEFF_BY(pipe),
coeff[2] << 16);
- intel_de_write_fw(dev_priv, PIPE_CSC_OUTPUT_COEFF_RU_GU(pipe),
+ intel_de_write_fw(i915, PIPE_CSC_OUTPUT_COEFF_RU_GU(pipe),
coeff[3] << 16 | coeff[4]);
- intel_de_write_fw(dev_priv, PIPE_CSC_OUTPUT_COEFF_BU(pipe),
+ intel_de_write_fw(i915, PIPE_CSC_OUTPUT_COEFF_BU(pipe),
coeff[5] << 16);
- intel_de_write_fw(dev_priv, PIPE_CSC_OUTPUT_COEFF_RV_GV(pipe),
+ intel_de_write_fw(i915, PIPE_CSC_OUTPUT_COEFF_RV_GV(pipe),
coeff[6] << 16 | coeff[7]);
- intel_de_write_fw(dev_priv, PIPE_CSC_OUTPUT_COEFF_BV(pipe),
+ intel_de_write_fw(i915, PIPE_CSC_OUTPUT_COEFF_BV(pipe),
coeff[8] << 16);
- intel_de_write_fw(dev_priv, PIPE_CSC_OUTPUT_POSTOFF_HI(pipe), postoff[0]);
- intel_de_write_fw(dev_priv, PIPE_CSC_OUTPUT_POSTOFF_ME(pipe), postoff[1]);
- intel_de_write_fw(dev_priv, PIPE_CSC_OUTPUT_POSTOFF_LO(pipe), postoff[2]);
+ intel_de_write_fw(i915, PIPE_CSC_OUTPUT_POSTOFF_HI(pipe), postoff[0]);
+ intel_de_write_fw(i915, PIPE_CSC_OUTPUT_POSTOFF_ME(pipe), postoff[1]);
+ intel_de_write_fw(i915, PIPE_CSC_OUTPUT_POSTOFF_LO(pipe), postoff[2]);
+}
+
+static bool ilk_limited_range(const struct intel_crtc_state *crtc_state)
+{
+ struct drm_i915_private *i915 = to_i915(crtc_state->uapi.crtc->dev);
+
+ /* icl+ have dedicated output CSC */
+ if (DISPLAY_VER(i915) >= 11)
+ return false;
+
+ /* pre-hsw have TRANSCONF_COLOR_RANGE_SELECT */
+ if (DISPLAY_VER(i915) < 7 || IS_IVYBRIDGE(i915))
+ return false;
+
+ return crtc_state->limited_color_range;
+}
+
+static bool ilk_lut_limited_range(const struct intel_crtc_state *crtc_state)
+{
+ struct drm_i915_private *i915 = to_i915(crtc_state->uapi.crtc->dev);
+
+ if (!ilk_limited_range(crtc_state))
+ return false;
+
+ if (crtc_state->c8_planes)
+ return false;
+
+ if (DISPLAY_VER(i915) == 10)
+ return crtc_state->hw.gamma_lut;
+ else
+ return crtc_state->hw.gamma_lut &&
+ (crtc_state->hw.degamma_lut || crtc_state->hw.ctm);
}
static bool ilk_csc_limited_range(const struct intel_crtc_state *crtc_state)
{
- struct drm_i915_private *dev_priv = to_i915(crtc_state->uapi.crtc->dev);
+ if (!ilk_limited_range(crtc_state))
+ return false;
- /*
- * FIXME if there's a gamma LUT after the CSC, we should
- * do the range compression using the gamma LUT instead.
- */
- return crtc_state->limited_color_range &&
- (IS_HASWELL(dev_priv) || IS_BROADWELL(dev_priv) ||
- IS_DISPLAY_VER(dev_priv, 9, 10));
+ return !ilk_lut_limited_range(crtc_state);
}
static void ilk_csc_convert_ctm(const struct intel_crtc_state *crtc_state,
- u16 coeffs[9])
+ u16 coeffs[9], bool limited_color_range)
{
const struct drm_color_ctm *ctm = crtc_state->hw.ctm->data;
const u64 *input;
u64 temp[9];
int i;
- if (ilk_csc_limited_range(crtc_state))
+ if (limited_color_range)
input = ctm_mult_by_limited(temp, ctm->matrix);
else
input = ctm->matrix;
@@ -315,13 +349,13 @@ static void ilk_csc_convert_ctm(const struct intel_crtc_state *crtc_state,
static void ilk_load_csc_matrix(const struct intel_crtc_state *crtc_state)
{
struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
- struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
+ struct drm_i915_private *i915 = to_i915(crtc->base.dev);
bool limited_color_range = ilk_csc_limited_range(crtc_state);
if (crtc_state->hw.ctm) {
u16 coeff[9];
- ilk_csc_convert_ctm(crtc_state, coeff);
+ ilk_csc_convert_ctm(crtc_state, coeff, limited_color_range);
ilk_update_pipe_csc(crtc, ilk_csc_off_zero, coeff,
limited_color_range ?
ilk_csc_postoff_limited_range :
@@ -341,7 +375,7 @@ static void ilk_load_csc_matrix(const struct intel_crtc_state *crtc_state)
* LUT is needed but CSC is not we need to load an
* identity matrix.
*/
- drm_WARN_ON(&dev_priv->drm, !IS_GEMINILAKE(dev_priv));
+ drm_WARN_ON(&i915->drm, !IS_GEMINILAKE(i915));
ilk_update_pipe_csc(crtc, ilk_csc_off_zero,
ilk_csc_coeff_identity,
@@ -356,7 +390,7 @@ static void icl_load_csc_matrix(const struct intel_crtc_state *crtc_state)
if (crtc_state->hw.ctm) {
u16 coeff[9];
- ilk_csc_convert_ctm(crtc_state, coeff);
+ ilk_csc_convert_ctm(crtc_state, coeff, false);
ilk_update_pipe_csc(crtc, ilk_csc_off_zero,
coeff, ilk_csc_off_zero);
}
@@ -375,7 +409,7 @@ static void icl_load_csc_matrix(const struct intel_crtc_state *crtc_state)
static void chv_load_cgm_csc(struct intel_crtc *crtc,
const struct drm_property_blob *blob)
{
- struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
+ struct drm_i915_private *i915 = to_i915(crtc->base.dev);
const struct drm_color_ctm *ctm = blob->data;
enum pipe pipe = crtc->pipe;
u16 coeffs[9];
@@ -399,15 +433,15 @@ static void chv_load_cgm_csc(struct intel_crtc *crtc,
coeffs[i] |= (abs_coeff >> 20) & 0xfff;
}
- intel_de_write_fw(dev_priv, CGM_PIPE_CSC_COEFF01(pipe),
+ intel_de_write_fw(i915, CGM_PIPE_CSC_COEFF01(pipe),
coeffs[1] << 16 | coeffs[0]);
- intel_de_write_fw(dev_priv, CGM_PIPE_CSC_COEFF23(pipe),
+ intel_de_write_fw(i915, CGM_PIPE_CSC_COEFF23(pipe),
coeffs[3] << 16 | coeffs[2]);
- intel_de_write_fw(dev_priv, CGM_PIPE_CSC_COEFF45(pipe),
+ intel_de_write_fw(i915, CGM_PIPE_CSC_COEFF45(pipe),
coeffs[5] << 16 | coeffs[4]);
- intel_de_write_fw(dev_priv, CGM_PIPE_CSC_COEFF67(pipe),
+ intel_de_write_fw(i915, CGM_PIPE_CSC_COEFF67(pipe),
coeffs[7] << 16 | coeffs[6]);
- intel_de_write_fw(dev_priv, CGM_PIPE_CSC_COEFF8(pipe),
+ intel_de_write_fw(i915, CGM_PIPE_CSC_COEFF8(pipe),
coeffs[8]);
}
@@ -426,32 +460,105 @@ static u32 intel_color_lut_pack(u32 val, int bit_precision)
static u32 i9xx_lut_8(const struct drm_color_lut *color)
{
- return drm_color_lut_extract(color->red, 8) << 16 |
- drm_color_lut_extract(color->green, 8) << 8 |
- drm_color_lut_extract(color->blue, 8);
+ return REG_FIELD_PREP(PALETTE_RED_MASK, drm_color_lut_extract(color->red, 8)) |
+ REG_FIELD_PREP(PALETTE_GREEN_MASK, drm_color_lut_extract(color->green, 8)) |
+ REG_FIELD_PREP(PALETTE_BLUE_MASK, drm_color_lut_extract(color->blue, 8));
}
static void i9xx_lut_8_pack(struct drm_color_lut *entry, u32 val)
{
- entry->red = intel_color_lut_pack(REG_FIELD_GET(LGC_PALETTE_RED_MASK, val), 8);
- entry->green = intel_color_lut_pack(REG_FIELD_GET(LGC_PALETTE_GREEN_MASK, val), 8);
- entry->blue = intel_color_lut_pack(REG_FIELD_GET(LGC_PALETTE_BLUE_MASK, val), 8);
+ entry->red = intel_color_lut_pack(REG_FIELD_GET(PALETTE_RED_MASK, val), 8);
+ entry->green = intel_color_lut_pack(REG_FIELD_GET(PALETTE_GREEN_MASK, val), 8);
+ entry->blue = intel_color_lut_pack(REG_FIELD_GET(PALETTE_BLUE_MASK, val), 8);
+}
+
+/* i8xx/i9xx+ 10bit slope format "even DW" (low 8 bits) */
+static u32 _i9xx_lut_10_ldw(u16 a)
+{
+ return drm_color_lut_extract(a, 10) & 0xff;
+}
+
+static u32 i9xx_lut_10_ldw(const struct drm_color_lut *color)
+{
+ return REG_FIELD_PREP(PALETTE_RED_MASK, _i9xx_lut_10_ldw(color[0].red)) |
+ REG_FIELD_PREP(PALETTE_GREEN_MASK, _i9xx_lut_10_ldw(color[0].green)) |
+ REG_FIELD_PREP(PALETTE_BLUE_MASK, _i9xx_lut_10_ldw(color[0].blue));
+}
+
+/* i8xx/i9xx+ 10bit slope format "odd DW" (high 2 bits + slope) */
+static u32 _i9xx_lut_10_udw(u16 a, u16 b)
+{
+ unsigned int mantissa, exponent;
+
+ a = drm_color_lut_extract(a, 10);
+ b = drm_color_lut_extract(b, 10);
+
+ /* b = a + 8 * m * 2 ^ -e */
+ mantissa = clamp(b - a, 0, 0x7f);
+ exponent = 3;
+ while (mantissa > 0xf) {
+ mantissa >>= 1;
+ exponent--;
+ }
+
+ return (exponent << 6) |
+ (mantissa << 2) |
+ (a >> 8);
+}
+
+static u32 i9xx_lut_10_udw(const struct drm_color_lut *color)
+{
+ return REG_FIELD_PREP(PALETTE_RED_MASK, _i9xx_lut_10_udw(color[0].red, color[1].red)) |
+ REG_FIELD_PREP(PALETTE_GREEN_MASK, _i9xx_lut_10_udw(color[0].green, color[1].green)) |
+ REG_FIELD_PREP(PALETTE_BLUE_MASK, _i9xx_lut_10_udw(color[0].blue, color[1].blue));
+}
+
+static void i9xx_lut_10_pack(struct drm_color_lut *color,
+ u32 ldw, u32 udw)
+{
+ u16 red = REG_FIELD_GET(PALETTE_10BIT_RED_LDW_MASK, ldw) |
+ REG_FIELD_GET(PALETTE_10BIT_RED_UDW_MASK, udw) << 8;
+ u16 green = REG_FIELD_GET(PALETTE_10BIT_GREEN_LDW_MASK, ldw) |
+ REG_FIELD_GET(PALETTE_10BIT_GREEN_UDW_MASK, udw) << 8;
+ u16 blue = REG_FIELD_GET(PALETTE_10BIT_BLUE_LDW_MASK, ldw) |
+ REG_FIELD_GET(PALETTE_10BIT_BLUE_UDW_MASK, udw) << 8;
+
+ color->red = intel_color_lut_pack(red, 10);
+ color->green = intel_color_lut_pack(green, 10);
+ color->blue = intel_color_lut_pack(blue, 10);
+}
+
+static void i9xx_lut_10_pack_slope(struct drm_color_lut *color,
+ u32 ldw, u32 udw)
+{
+ int r_exp = REG_FIELD_GET(PALETTE_10BIT_RED_EXP_MASK, udw);
+ int r_mant = REG_FIELD_GET(PALETTE_10BIT_RED_MANT_MASK, udw);
+ int g_exp = REG_FIELD_GET(PALETTE_10BIT_GREEN_EXP_MASK, udw);
+ int g_mant = REG_FIELD_GET(PALETTE_10BIT_GREEN_MANT_MASK, udw);
+ int b_exp = REG_FIELD_GET(PALETTE_10BIT_BLUE_EXP_MASK, udw);
+ int b_mant = REG_FIELD_GET(PALETTE_10BIT_BLUE_MANT_MASK, udw);
+
+ i9xx_lut_10_pack(color, ldw, udw);
+
+ color->red += r_mant << (3 - r_exp);
+ color->green += g_mant << (3 - g_exp);
+ color->blue += b_mant << (3 - b_exp);
}
/* i965+ "10.6" bit interpolated format "even DW" (low 8 bits) */
static u32 i965_lut_10p6_ldw(const struct drm_color_lut *color)
{
- return (color->red & 0xff) << 16 |
- (color->green & 0xff) << 8 |
- (color->blue & 0xff);
+ return REG_FIELD_PREP(PALETTE_RED_MASK, color->red & 0xff) |
+ REG_FIELD_PREP(PALETTE_GREEN_MASK, color->green & 0xff) |
+ REG_FIELD_PREP(PALETTE_BLUE_MASK, color->blue & 0xff);
}
/* i965+ "10.6" interpolated format "odd DW" (high 8 bits) */
static u32 i965_lut_10p6_udw(const struct drm_color_lut *color)
{
- return (color->red >> 8) << 16 |
- (color->green >> 8) << 8 |
- (color->blue >> 8);
+ return REG_FIELD_PREP(PALETTE_RED_MASK, color->red >> 8) |
+ REG_FIELD_PREP(PALETTE_GREEN_MASK, color->green >> 8) |
+ REG_FIELD_PREP(PALETTE_BLUE_MASK, color->blue >> 8);
}
static void i965_lut_10p6_pack(struct drm_color_lut *entry, u32 ldw, u32 udw)
@@ -472,33 +579,73 @@ static u16 i965_lut_11p6_max_pack(u32 val)
static u32 ilk_lut_10(const struct drm_color_lut *color)
{
- return drm_color_lut_extract(color->red, 10) << 20 |
- drm_color_lut_extract(color->green, 10) << 10 |
- drm_color_lut_extract(color->blue, 10);
+ return REG_FIELD_PREP(PREC_PALETTE_10_RED_MASK, drm_color_lut_extract(color->red, 10)) |
+ REG_FIELD_PREP(PREC_PALETTE_10_GREEN_MASK, drm_color_lut_extract(color->green, 10)) |
+ REG_FIELD_PREP(PREC_PALETTE_10_BLUE_MASK, drm_color_lut_extract(color->blue, 10));
}
static void ilk_lut_10_pack(struct drm_color_lut *entry, u32 val)
{
- entry->red = intel_color_lut_pack(REG_FIELD_GET(PREC_PALETTE_RED_MASK, val), 10);
- entry->green = intel_color_lut_pack(REG_FIELD_GET(PREC_PALETTE_GREEN_MASK, val), 10);
- entry->blue = intel_color_lut_pack(REG_FIELD_GET(PREC_PALETTE_BLUE_MASK, val), 10);
+ entry->red = intel_color_lut_pack(REG_FIELD_GET(PREC_PALETTE_10_RED_MASK, val), 10);
+ entry->green = intel_color_lut_pack(REG_FIELD_GET(PREC_PALETTE_10_GREEN_MASK, val), 10);
+ entry->blue = intel_color_lut_pack(REG_FIELD_GET(PREC_PALETTE_10_BLUE_MASK, val), 10);
+}
+
+/* ilk+ "12.4" interpolated format (low 6 bits) */
+static u32 ilk_lut_12p4_ldw(const struct drm_color_lut *color)
+{
+ return REG_FIELD_PREP(PREC_PALETTE_12P4_RED_LDW_MASK, color->red & 0x3f) |
+ REG_FIELD_PREP(PREC_PALETTE_12P4_GREEN_LDW_MASK, color->green & 0x3f) |
+ REG_FIELD_PREP(PREC_PALETTE_12P4_BLUE_LDW_MASK, color->blue & 0x3f);
+}
+
+/* ilk+ "12.4" interpolated format (high 10 bits) */
+static u32 ilk_lut_12p4_udw(const struct drm_color_lut *color)
+{
+ return REG_FIELD_PREP(PREC_PALETTE_12P4_RED_UDW_MASK, color->red >> 6) |
+ REG_FIELD_PREP(PREC_PALETTE_12P4_GREEN_UDW_MASK, color->green >> 6) |
+ REG_FIELD_PREP(PREC_PALETTE_12P4_BLUE_UDW_MASK, color->blue >> 6);
}
-static void icl_lut_multi_seg_pack(struct drm_color_lut *entry, u32 ldw, u32 udw)
+static void ilk_lut_12p4_pack(struct drm_color_lut *entry, u32 ldw, u32 udw)
{
- entry->red = REG_FIELD_GET(PAL_PREC_MULTI_SEG_RED_UDW_MASK, udw) << 6 |
- REG_FIELD_GET(PAL_PREC_MULTI_SEG_RED_LDW_MASK, ldw);
- entry->green = REG_FIELD_GET(PAL_PREC_MULTI_SEG_GREEN_UDW_MASK, udw) << 6 |
- REG_FIELD_GET(PAL_PREC_MULTI_SEG_GREEN_LDW_MASK, ldw);
- entry->blue = REG_FIELD_GET(PAL_PREC_MULTI_SEG_BLUE_UDW_MASK, udw) << 6 |
- REG_FIELD_GET(PAL_PREC_MULTI_SEG_BLUE_LDW_MASK, ldw);
+ entry->red = REG_FIELD_GET(PREC_PALETTE_12P4_RED_UDW_MASK, udw) << 6 |
+ REG_FIELD_GET(PREC_PALETTE_12P4_RED_LDW_MASK, ldw);
+ entry->green = REG_FIELD_GET(PREC_PALETTE_12P4_GREEN_UDW_MASK, udw) << 6 |
+ REG_FIELD_GET(PREC_PALETTE_12P4_GREEN_LDW_MASK, ldw);
+ entry->blue = REG_FIELD_GET(PREC_PALETTE_12P4_BLUE_UDW_MASK, udw) << 6 |
+ REG_FIELD_GET(PREC_PALETTE_12P4_BLUE_LDW_MASK, ldw);
}
static void icl_color_commit_noarm(const struct intel_crtc_state *crtc_state)
{
+ /*
+ * Despite Wa_1406463849, ICL no longer suffers from the SKL
+ * DC5/PSR CSC black screen issue (see skl_color_commit_noarm()).
+ * Possibly due to the extra sticky CSC arming
+ * (see icl_color_post_update()).
+ *
+ * On TGL+ all CSC arming issues have been properly fixed.
+ */
icl_load_csc_matrix(crtc_state);
}
+static void skl_color_commit_noarm(const struct intel_crtc_state *crtc_state)
+{
+ /*
+ * Possibly related to display WA #1184, SKL CSC loses the latched
+ * CSC coeff/offset register values if the CSC registers are disarmed
+ * between DC5 exit and PSR exit. This will cause the plane(s) to
+ * output all black (until CSC_MODE is rearmed and properly latched).
+ * Once PSR exit (and proper register latching) has occurred the
+ * danger is over. Thus when PSR is enabled the CSC coeff/offset
+ * register programming will be peformed from skl_color_commit_arm()
+ * which is called after PSR exit.
+ */
+ if (!crtc_state->has_psr)
+ ilk_load_csc_matrix(crtc_state);
+}
+
static void ilk_color_commit_noarm(const struct intel_crtc_state *crtc_state)
{
ilk_load_csc_matrix(crtc_state);
@@ -506,41 +653,44 @@ static void ilk_color_commit_noarm(const struct intel_crtc_state *crtc_state)
static void i9xx_color_commit_arm(const struct intel_crtc_state *crtc_state)
{
- /* update PIPECONF GAMMA_MODE */
+ /* update TRANSCONF GAMMA_MODE */
i9xx_set_pipeconf(crtc_state);
}
static void ilk_color_commit_arm(const struct intel_crtc_state *crtc_state)
{
struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
- struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
+ struct drm_i915_private *i915 = to_i915(crtc->base.dev);
- /* update PIPECONF GAMMA_MODE */
+ /* update TRANSCONF GAMMA_MODE */
ilk_set_pipeconf(crtc_state);
- intel_de_write_fw(dev_priv, PIPE_CSC_MODE(crtc->pipe),
+ intel_de_write_fw(i915, PIPE_CSC_MODE(crtc->pipe),
crtc_state->csc_mode);
}
static void hsw_color_commit_arm(const struct intel_crtc_state *crtc_state)
{
struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
- struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
+ struct drm_i915_private *i915 = to_i915(crtc->base.dev);
- intel_de_write(dev_priv, GAMMA_MODE(crtc->pipe),
+ intel_de_write(i915, GAMMA_MODE(crtc->pipe),
crtc_state->gamma_mode);
- intel_de_write_fw(dev_priv, PIPE_CSC_MODE(crtc->pipe),
+ intel_de_write_fw(i915, PIPE_CSC_MODE(crtc->pipe),
crtc_state->csc_mode);
}
static void skl_color_commit_arm(const struct intel_crtc_state *crtc_state)
{
struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
- struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
+ struct drm_i915_private *i915 = to_i915(crtc->base.dev);
enum pipe pipe = crtc->pipe;
u32 val = 0;
+ if (crtc_state->has_psr)
+ ilk_load_csc_matrix(crtc_state);
+
/*
* We don't (yet) allow userspace to control the pipe background color,
* so force it to black, but apply pipe gamma and CSC appropriately
@@ -550,15 +700,125 @@ static void skl_color_commit_arm(const struct intel_crtc_state *crtc_state)
val |= SKL_BOTTOM_COLOR_GAMMA_ENABLE;
if (crtc_state->csc_enable)
val |= SKL_BOTTOM_COLOR_CSC_ENABLE;
- intel_de_write(dev_priv, SKL_BOTTOM_COLOR(pipe), val);
+ intel_de_write(i915, SKL_BOTTOM_COLOR(pipe), val);
+
+ intel_de_write(i915, GAMMA_MODE(crtc->pipe),
+ crtc_state->gamma_mode);
+
+ intel_de_write_fw(i915, PIPE_CSC_MODE(crtc->pipe),
+ crtc_state->csc_mode);
+}
- intel_de_write(dev_priv, GAMMA_MODE(crtc->pipe),
+static void icl_color_commit_arm(const struct intel_crtc_state *crtc_state)
+{
+ struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
+ struct drm_i915_private *i915 = to_i915(crtc->base.dev);
+ enum pipe pipe = crtc->pipe;
+
+ /*
+ * We don't (yet) allow userspace to control the pipe background color,
+ * so force it to black.
+ */
+ intel_de_write(i915, SKL_BOTTOM_COLOR(pipe), 0);
+
+ intel_de_write(i915, GAMMA_MODE(crtc->pipe),
crtc_state->gamma_mode);
- intel_de_write_fw(dev_priv, PIPE_CSC_MODE(crtc->pipe),
+ intel_de_write_fw(i915, PIPE_CSC_MODE(crtc->pipe),
crtc_state->csc_mode);
}
+static void icl_color_post_update(const struct intel_crtc_state *crtc_state)
+{
+ struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
+ struct drm_i915_private *i915 = to_i915(crtc->base.dev);
+
+ /*
+ * Despite Wa_1406463849, ICL CSC is no longer disarmed by
+ * coeff/offset register *writes*. Instead, once CSC_MODE
+ * is armed it stays armed, even after it has been latched.
+ * Afterwards the coeff/offset registers become effectively
+ * self-arming. That self-arming must be disabled before the
+ * next icl_color_commit_noarm() tries to write the next set
+ * of coeff/offset registers. Fortunately register *reads*
+ * do still disarm the CSC. Naturally this must not be done
+ * until the previously written CSC registers have actually
+ * been latched.
+ *
+ * TGL+ no longer need this workaround.
+ */
+ intel_de_read_fw(i915, PIPE_CSC_PREOFF_HI(crtc->pipe));
+}
+
+static struct drm_property_blob *
+create_linear_lut(struct drm_i915_private *i915, int lut_size)
+{
+ struct drm_property_blob *blob;
+ struct drm_color_lut *lut;
+ int i;
+
+ blob = drm_property_create_blob(&i915->drm,
+ sizeof(lut[0]) * lut_size,
+ NULL);
+ if (IS_ERR(blob))
+ return blob;
+
+ lut = blob->data;
+
+ for (i = 0; i < lut_size; i++) {
+ u16 val = 0xffff * i / (lut_size - 1);
+
+ lut[i].red = val;
+ lut[i].green = val;
+ lut[i].blue = val;
+ }
+
+ return blob;
+}
+
+static u16 lut_limited_range(unsigned int value)
+{
+ unsigned int min = 16 << 8;
+ unsigned int max = 235 << 8;
+
+ return value * (max - min) / 0xffff + min;
+}
+
+static struct drm_property_blob *
+create_resized_lut(struct drm_i915_private *i915,
+ const struct drm_property_blob *blob_in, int lut_out_size,
+ bool limited_color_range)
+{
+ int i, lut_in_size = drm_color_lut_size(blob_in);
+ struct drm_property_blob *blob_out;
+ const struct drm_color_lut *lut_in;
+ struct drm_color_lut *lut_out;
+
+ blob_out = drm_property_create_blob(&i915->drm,
+ sizeof(lut_out[0]) * lut_out_size,
+ NULL);
+ if (IS_ERR(blob_out))
+ return blob_out;
+
+ lut_in = blob_in->data;
+ lut_out = blob_out->data;
+
+ for (i = 0; i < lut_out_size; i++) {
+ const struct drm_color_lut *entry =
+ &lut_in[i * (lut_in_size - 1) / (lut_out_size - 1)];
+
+ if (limited_color_range) {
+ lut_out[i].red = lut_limited_range(entry->red);
+ lut_out[i].green = lut_limited_range(entry->green);
+ lut_out[i].blue = lut_limited_range(entry->blue);
+ } else {
+ lut_out[i] = *entry;
+ }
+ }
+
+ return blob_out;
+}
+
static void i9xx_load_lut_8(struct intel_crtc *crtc,
const struct drm_property_blob *blob)
{
@@ -577,15 +837,38 @@ static void i9xx_load_lut_8(struct intel_crtc *crtc,
i9xx_lut_8(&lut[i]));
}
-static void i9xx_load_luts(const struct intel_crtc_state *crtc_state)
+static void i9xx_load_lut_10(struct intel_crtc *crtc,
+ const struct drm_property_blob *blob)
{
- struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
- const struct drm_property_blob *gamma_lut = crtc_state->hw.gamma_lut;
+ const struct drm_color_lut *lut = blob->data;
+ int i, lut_size = drm_color_lut_size(blob);
+ enum pipe pipe = crtc->pipe;
- assert_pll_enabled(dev_priv, crtc->pipe);
+ for (i = 0; i < lut_size - 1; i++) {
+ intel_de_write_fw(dev_priv, PALETTE(pipe, 2 * i + 0),
+ i9xx_lut_10_ldw(&lut[i]));
+ intel_de_write_fw(dev_priv, PALETTE(pipe, 2 * i + 1),
+ i9xx_lut_10_udw(&lut[i]));
+ }
+}
- i9xx_load_lut_8(crtc, gamma_lut);
+static void i9xx_load_luts(const struct intel_crtc_state *crtc_state)
+{
+ struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
+ const struct drm_property_blob *post_csc_lut = crtc_state->post_csc_lut;
+
+ switch (crtc_state->gamma_mode) {
+ case GAMMA_MODE_MODE_8BIT:
+ i9xx_load_lut_8(crtc, post_csc_lut);
+ break;
+ case GAMMA_MODE_MODE_10BIT:
+ i9xx_load_lut_10(crtc, post_csc_lut);
+ break;
+ default:
+ MISSING_CASE(crtc_state->gamma_mode);
+ break;
+ }
}
static void i965_load_lut_10p6(struct intel_crtc *crtc,
@@ -611,24 +894,36 @@ static void i965_load_lut_10p6(struct intel_crtc *crtc,
static void i965_load_luts(const struct intel_crtc_state *crtc_state)
{
struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
- struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
- const struct drm_property_blob *gamma_lut = crtc_state->hw.gamma_lut;
+ const struct drm_property_blob *post_csc_lut = crtc_state->post_csc_lut;
- if (intel_crtc_has_type(crtc_state, INTEL_OUTPUT_DSI))
- assert_dsi_pll_enabled(dev_priv);
- else
- assert_pll_enabled(dev_priv, crtc->pipe);
+ switch (crtc_state->gamma_mode) {
+ case GAMMA_MODE_MODE_8BIT:
+ i9xx_load_lut_8(crtc, post_csc_lut);
+ break;
+ case GAMMA_MODE_MODE_10BIT:
+ i965_load_lut_10p6(crtc, post_csc_lut);
+ break;
+ default:
+ MISSING_CASE(crtc_state->gamma_mode);
+ break;
+ }
+}
- if (crtc_state->gamma_mode == GAMMA_MODE_MODE_8BIT)
- i9xx_load_lut_8(crtc, gamma_lut);
+static void ilk_lut_write(const struct intel_crtc_state *crtc_state,
+ i915_reg_t reg, u32 val)
+{
+ struct drm_i915_private *i915 = to_i915(crtc_state->uapi.crtc->dev);
+
+ if (crtc_state->dsb)
+ intel_dsb_reg_write(crtc_state->dsb, reg, val);
else
- i965_load_lut_10p6(crtc, gamma_lut);
+ intel_de_write_fw(i915, reg, val);
}
-static void ilk_load_lut_8(struct intel_crtc *crtc,
+static void ilk_load_lut_8(const struct intel_crtc_state *crtc_state,
const struct drm_property_blob *blob)
{
- struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
+ struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
const struct drm_color_lut *lut;
enum pipe pipe = crtc->pipe;
int i;
@@ -639,34 +934,35 @@ static void ilk_load_lut_8(struct intel_crtc *crtc,
lut = blob->data;
for (i = 0; i < 256; i++)
- intel_de_write_fw(dev_priv, LGC_PALETTE(pipe, i),
- i9xx_lut_8(&lut[i]));
+ ilk_lut_write(crtc_state, LGC_PALETTE(pipe, i),
+ i9xx_lut_8(&lut[i]));
}
-static void ilk_load_lut_10(struct intel_crtc *crtc,
+static void ilk_load_lut_10(const struct intel_crtc_state *crtc_state,
const struct drm_property_blob *blob)
{
- struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
+ struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
const struct drm_color_lut *lut = blob->data;
int i, lut_size = drm_color_lut_size(blob);
enum pipe pipe = crtc->pipe;
for (i = 0; i < lut_size; i++)
- intel_de_write_fw(dev_priv, PREC_PALETTE(pipe, i),
- ilk_lut_10(&lut[i]));
+ ilk_lut_write(crtc_state, PREC_PALETTE(pipe, i),
+ ilk_lut_10(&lut[i]));
}
static void ilk_load_luts(const struct intel_crtc_state *crtc_state)
{
- struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
- const struct drm_property_blob *gamma_lut = crtc_state->hw.gamma_lut;
+ const struct drm_property_blob *post_csc_lut = crtc_state->post_csc_lut;
+ const struct drm_property_blob *pre_csc_lut = crtc_state->pre_csc_lut;
+ const struct drm_property_blob *blob = post_csc_lut ?: pre_csc_lut;
switch (crtc_state->gamma_mode) {
case GAMMA_MODE_MODE_8BIT:
- ilk_load_lut_8(crtc, gamma_lut);
+ ilk_load_lut_8(crtc_state, blob);
break;
case GAMMA_MODE_MODE_10BIT:
- ilk_load_lut_10(crtc, gamma_lut);
+ ilk_load_lut_10(crtc_state, blob);
break;
default:
MISSING_CASE(crtc_state->gamma_mode);
@@ -687,109 +983,99 @@ static int ivb_lut_10_size(u32 prec_index)
* "Restriction : Index auto increment mode is not
* supported and must not be enabled."
*/
-static void ivb_load_lut_10(struct intel_crtc *crtc,
+static void ivb_load_lut_10(const struct intel_crtc_state *crtc_state,
const struct drm_property_blob *blob,
u32 prec_index)
{
- struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
- int hw_lut_size = ivb_lut_10_size(prec_index);
+ const struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
const struct drm_color_lut *lut = blob->data;
int i, lut_size = drm_color_lut_size(blob);
enum pipe pipe = crtc->pipe;
- for (i = 0; i < hw_lut_size; i++) {
- /* We discard half the user entries in split gamma mode */
- const struct drm_color_lut *entry =
- &lut[i * (lut_size - 1) / (hw_lut_size - 1)];
-
- intel_de_write_fw(dev_priv, PREC_PAL_INDEX(pipe), prec_index++);
- intel_de_write_fw(dev_priv, PREC_PAL_DATA(pipe),
- ilk_lut_10(entry));
+ for (i = 0; i < lut_size; i++) {
+ ilk_lut_write(crtc_state, PREC_PAL_INDEX(pipe),
+ prec_index + i);
+ ilk_lut_write(crtc_state, PREC_PAL_DATA(pipe),
+ ilk_lut_10(&lut[i]));
}
/*
* Reset the index, otherwise it prevents the legacy palette to be
* written properly.
*/
- intel_de_write_fw(dev_priv, PREC_PAL_INDEX(pipe), 0);
+ ilk_lut_write(crtc_state, PREC_PAL_INDEX(pipe),
+ PAL_PREC_INDEX_VALUE(0));
}
/* On BDW+ the index auto increment mode actually works */
-static void bdw_load_lut_10(struct intel_crtc *crtc,
+static void bdw_load_lut_10(const struct intel_crtc_state *crtc_state,
const struct drm_property_blob *blob,
u32 prec_index)
{
- struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
- int hw_lut_size = ivb_lut_10_size(prec_index);
+ struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
const struct drm_color_lut *lut = blob->data;
int i, lut_size = drm_color_lut_size(blob);
enum pipe pipe = crtc->pipe;
- intel_de_write_fw(dev_priv, PREC_PAL_INDEX(pipe),
- prec_index | PAL_PREC_AUTO_INCREMENT);
+ ilk_lut_write(crtc_state, PREC_PAL_INDEX(pipe),
+ prec_index);
+ ilk_lut_write(crtc_state, PREC_PAL_INDEX(pipe),
+ PAL_PREC_AUTO_INCREMENT |
+ prec_index);
- for (i = 0; i < hw_lut_size; i++) {
- /* We discard half the user entries in split gamma mode */
- const struct drm_color_lut *entry =
- &lut[i * (lut_size - 1) / (hw_lut_size - 1)];
-
- intel_de_write_fw(dev_priv, PREC_PAL_DATA(pipe),
- ilk_lut_10(entry));
- }
+ for (i = 0; i < lut_size; i++)
+ ilk_lut_write(crtc_state, PREC_PAL_DATA(pipe),
+ ilk_lut_10(&lut[i]));
/*
* Reset the index, otherwise it prevents the legacy palette to be
* written properly.
*/
- intel_de_write_fw(dev_priv, PREC_PAL_INDEX(pipe), 0);
+ ilk_lut_write(crtc_state, PREC_PAL_INDEX(pipe),
+ PAL_PREC_INDEX_VALUE(0));
}
static void ivb_load_lut_ext_max(const struct intel_crtc_state *crtc_state)
{
struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
- struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
enum pipe pipe = crtc->pipe;
/* Program the max register to clamp values > 1.0. */
- intel_dsb_reg_write(crtc_state, PREC_PAL_EXT_GC_MAX(pipe, 0), 1 << 16);
- intel_dsb_reg_write(crtc_state, PREC_PAL_EXT_GC_MAX(pipe, 1), 1 << 16);
- intel_dsb_reg_write(crtc_state, PREC_PAL_EXT_GC_MAX(pipe, 2), 1 << 16);
+ ilk_lut_write(crtc_state, PREC_PAL_EXT_GC_MAX(pipe, 0), 1 << 16);
+ ilk_lut_write(crtc_state, PREC_PAL_EXT_GC_MAX(pipe, 1), 1 << 16);
+ ilk_lut_write(crtc_state, PREC_PAL_EXT_GC_MAX(pipe, 2), 1 << 16);
+}
- /*
- * Program the gc max 2 register to clamp values > 1.0.
- * ToDo: Extend the ABI to be able to program values
- * from 3.0 to 7.0
- */
- if (DISPLAY_VER(dev_priv) >= 10) {
- intel_dsb_reg_write(crtc_state, PREC_PAL_EXT2_GC_MAX(pipe, 0),
- 1 << 16);
- intel_dsb_reg_write(crtc_state, PREC_PAL_EXT2_GC_MAX(pipe, 1),
- 1 << 16);
- intel_dsb_reg_write(crtc_state, PREC_PAL_EXT2_GC_MAX(pipe, 2),
- 1 << 16);
- }
+static void glk_load_lut_ext2_max(const struct intel_crtc_state *crtc_state)
+{
+ struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
+ enum pipe pipe = crtc->pipe;
+
+ /* Program the max register to clamp values > 1.0. */
+ ilk_lut_write(crtc_state, PREC_PAL_EXT2_GC_MAX(pipe, 0), 1 << 16);
+ ilk_lut_write(crtc_state, PREC_PAL_EXT2_GC_MAX(pipe, 1), 1 << 16);
+ ilk_lut_write(crtc_state, PREC_PAL_EXT2_GC_MAX(pipe, 2), 1 << 16);
}
static void ivb_load_luts(const struct intel_crtc_state *crtc_state)
{
- struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
- const struct drm_property_blob *gamma_lut = crtc_state->hw.gamma_lut;
- const struct drm_property_blob *degamma_lut = crtc_state->hw.degamma_lut;
- const struct drm_property_blob *blob = gamma_lut ?: degamma_lut;
+ const struct drm_property_blob *post_csc_lut = crtc_state->post_csc_lut;
+ const struct drm_property_blob *pre_csc_lut = crtc_state->pre_csc_lut;
+ const struct drm_property_blob *blob = post_csc_lut ?: pre_csc_lut;
switch (crtc_state->gamma_mode) {
case GAMMA_MODE_MODE_8BIT:
- ilk_load_lut_8(crtc, blob);
+ ilk_load_lut_8(crtc_state, blob);
break;
case GAMMA_MODE_MODE_SPLIT:
- ivb_load_lut_10(crtc, degamma_lut, PAL_PREC_SPLIT_MODE |
+ ivb_load_lut_10(crtc_state, pre_csc_lut, PAL_PREC_SPLIT_MODE |
PAL_PREC_INDEX_VALUE(0));
ivb_load_lut_ext_max(crtc_state);
- ivb_load_lut_10(crtc, gamma_lut, PAL_PREC_SPLIT_MODE |
+ ivb_load_lut_10(crtc_state, post_csc_lut, PAL_PREC_SPLIT_MODE |
PAL_PREC_INDEX_VALUE(512));
break;
case GAMMA_MODE_MODE_10BIT:
- ivb_load_lut_10(crtc, blob,
+ ivb_load_lut_10(crtc_state, blob,
PAL_PREC_INDEX_VALUE(0));
ivb_load_lut_ext_max(crtc_state);
break;
@@ -801,25 +1087,23 @@ static void ivb_load_luts(const struct intel_crtc_state *crtc_state)
static void bdw_load_luts(const struct intel_crtc_state *crtc_state)
{
- struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
- const struct drm_property_blob *gamma_lut = crtc_state->hw.gamma_lut;
- const struct drm_property_blob *degamma_lut = crtc_state->hw.degamma_lut;
- const struct drm_property_blob *blob = gamma_lut ?: degamma_lut;
+ const struct drm_property_blob *post_csc_lut = crtc_state->post_csc_lut;
+ const struct drm_property_blob *pre_csc_lut = crtc_state->pre_csc_lut;
+ const struct drm_property_blob *blob = post_csc_lut ?: pre_csc_lut;
switch (crtc_state->gamma_mode) {
case GAMMA_MODE_MODE_8BIT:
- ilk_load_lut_8(crtc, blob);
+ ilk_load_lut_8(crtc_state, blob);
break;
case GAMMA_MODE_MODE_SPLIT:
- bdw_load_lut_10(crtc, degamma_lut, PAL_PREC_SPLIT_MODE |
+ bdw_load_lut_10(crtc_state, pre_csc_lut, PAL_PREC_SPLIT_MODE |
PAL_PREC_INDEX_VALUE(0));
ivb_load_lut_ext_max(crtc_state);
- bdw_load_lut_10(crtc, gamma_lut, PAL_PREC_SPLIT_MODE |
+ bdw_load_lut_10(crtc_state, post_csc_lut, PAL_PREC_SPLIT_MODE |
PAL_PREC_INDEX_VALUE(512));
break;
case GAMMA_MODE_MODE_10BIT:
-
- bdw_load_lut_10(crtc, blob,
+ bdw_load_lut_10(crtc_state, blob,
PAL_PREC_INDEX_VALUE(0));
ivb_load_lut_ext_max(crtc_state);
break;
@@ -837,22 +1121,25 @@ static int glk_degamma_lut_size(struct drm_i915_private *i915)
return 35;
}
-static void glk_load_degamma_lut(const struct intel_crtc_state *crtc_state)
+static void glk_load_degamma_lut(const struct intel_crtc_state *crtc_state,
+ const struct drm_property_blob *blob)
{
struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
- struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
+ struct drm_i915_private *i915 = to_i915(crtc->base.dev);
+ const struct drm_color_lut *lut = blob->data;
+ int i, lut_size = drm_color_lut_size(blob);
enum pipe pipe = crtc->pipe;
- int i, lut_size = INTEL_INFO(dev_priv)->display.color.degamma_lut_size;
- const struct drm_color_lut *lut = crtc_state->hw.degamma_lut->data;
/*
* When setting the auto-increment bit, the hardware seems to
* ignore the index bits, so we need to reset it to index 0
* separately.
*/
- intel_de_write_fw(dev_priv, PRE_CSC_GAMC_INDEX(pipe), 0);
- intel_de_write_fw(dev_priv, PRE_CSC_GAMC_INDEX(pipe),
- PRE_CSC_GAMC_AUTO_INCREMENT);
+ ilk_lut_write(crtc_state, PRE_CSC_GAMC_INDEX(pipe),
+ PRE_CSC_GAMC_INDEX_VALUE(0));
+ ilk_lut_write(crtc_state, PRE_CSC_GAMC_INDEX(pipe),
+ PRE_CSC_GAMC_AUTO_INCREMENT |
+ PRE_CSC_GAMC_INDEX_VALUE(0));
for (i = 0; i < lut_size; i++) {
/*
@@ -868,71 +1155,33 @@ static void glk_load_degamma_lut(const struct intel_crtc_state *crtc_state)
* ToDo: Extend to max 7.0. Enable 32 bit input value
* as compared to just 16 to achieve this.
*/
- intel_de_write_fw(dev_priv, PRE_CSC_GAMC_DATA(pipe),
- lut[i].green);
+ ilk_lut_write(crtc_state, PRE_CSC_GAMC_DATA(pipe),
+ lut[i].green);
}
/* Clamp values > 1.0. */
- while (i++ < glk_degamma_lut_size(dev_priv))
- intel_de_write_fw(dev_priv, PRE_CSC_GAMC_DATA(pipe), 1 << 16);
+ while (i++ < glk_degamma_lut_size(i915))
+ ilk_lut_write(crtc_state, PRE_CSC_GAMC_DATA(pipe), 1 << 16);
- intel_de_write_fw(dev_priv, PRE_CSC_GAMC_INDEX(pipe), 0);
-}
-
-static void glk_load_degamma_lut_linear(const struct intel_crtc_state *crtc_state)
-{
- struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
- struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
- enum pipe pipe = crtc->pipe;
- int i, lut_size = INTEL_INFO(dev_priv)->display.color.degamma_lut_size;
-
- /*
- * When setting the auto-increment bit, the hardware seems to
- * ignore the index bits, so we need to reset it to index 0
- * separately.
- */
- intel_de_write_fw(dev_priv, PRE_CSC_GAMC_INDEX(pipe), 0);
- intel_de_write_fw(dev_priv, PRE_CSC_GAMC_INDEX(pipe),
- PRE_CSC_GAMC_AUTO_INCREMENT);
-
- for (i = 0; i < lut_size; i++) {
- u32 v = (i << 16) / (lut_size - 1);
-
- intel_de_write_fw(dev_priv, PRE_CSC_GAMC_DATA(pipe), v);
- }
-
- /* Clamp values > 1.0. */
- while (i++ < 35)
- intel_de_write_fw(dev_priv, PRE_CSC_GAMC_DATA(pipe), 1 << 16);
-
- intel_de_write_fw(dev_priv, PRE_CSC_GAMC_INDEX(pipe), 0);
+ ilk_lut_write(crtc_state, PRE_CSC_GAMC_INDEX(pipe), 0);
}
static void glk_load_luts(const struct intel_crtc_state *crtc_state)
{
- const struct drm_property_blob *gamma_lut = crtc_state->hw.gamma_lut;
- struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
+ const struct drm_property_blob *pre_csc_lut = crtc_state->pre_csc_lut;
+ const struct drm_property_blob *post_csc_lut = crtc_state->post_csc_lut;
- /*
- * On GLK+ both pipe CSC and degamma LUT are controlled
- * by csc_enable. Hence for the cases where the CSC is
- * needed but degamma LUT is not we need to load a
- * linear degamma LUT. In fact we'll just always load
- * the degama LUT so that we don't have to reload
- * it every time the pipe CSC is being enabled.
- */
- if (crtc_state->hw.degamma_lut)
- glk_load_degamma_lut(crtc_state);
- else
- glk_load_degamma_lut_linear(crtc_state);
+ if (pre_csc_lut)
+ glk_load_degamma_lut(crtc_state, pre_csc_lut);
switch (crtc_state->gamma_mode) {
case GAMMA_MODE_MODE_8BIT:
- ilk_load_lut_8(crtc, gamma_lut);
+ ilk_load_lut_8(crtc_state, post_csc_lut);
break;
case GAMMA_MODE_MODE_10BIT:
- bdw_load_lut_10(crtc, gamma_lut, PAL_PREC_INDEX_VALUE(0));
+ bdw_load_lut_10(crtc_state, post_csc_lut, PAL_PREC_INDEX_VALUE(0));
ivb_load_lut_ext_max(crtc_state);
+ glk_load_lut_ext2_max(crtc_state);
break;
default:
MISSING_CASE(crtc_state->gamma_mode);
@@ -940,38 +1189,24 @@ static void glk_load_luts(const struct intel_crtc_state *crtc_state)
}
}
-/* ilk+ "12.4" interpolated format (high 10 bits) */
-static u32 ilk_lut_12p4_udw(const struct drm_color_lut *color)
-{
- return (color->red >> 6) << 20 | (color->green >> 6) << 10 |
- (color->blue >> 6);
-}
-
-/* ilk+ "12.4" interpolated format (low 6 bits) */
-static u32 ilk_lut_12p4_ldw(const struct drm_color_lut *color)
-{
- return (color->red & 0x3f) << 24 | (color->green & 0x3f) << 14 |
- (color->blue & 0x3f) << 4;
-}
-
static void
-icl_load_gcmax(const struct intel_crtc_state *crtc_state,
- const struct drm_color_lut *color)
+ivb_load_lut_max(const struct intel_crtc_state *crtc_state,
+ const struct drm_color_lut *color)
{
struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
enum pipe pipe = crtc->pipe;
/* FIXME LUT entries are 16 bit only, so we can prog 0xFFFF max */
- intel_dsb_reg_write(crtc_state, PREC_PAL_GC_MAX(pipe, 0), color->red);
- intel_dsb_reg_write(crtc_state, PREC_PAL_GC_MAX(pipe, 1), color->green);
- intel_dsb_reg_write(crtc_state, PREC_PAL_GC_MAX(pipe, 2), color->blue);
+ ilk_lut_write(crtc_state, PREC_PAL_GC_MAX(pipe, 0), color->red);
+ ilk_lut_write(crtc_state, PREC_PAL_GC_MAX(pipe, 1), color->green);
+ ilk_lut_write(crtc_state, PREC_PAL_GC_MAX(pipe, 2), color->blue);
}
static void
icl_program_gamma_superfine_segment(const struct intel_crtc_state *crtc_state)
{
struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
- const struct drm_property_blob *blob = crtc_state->hw.gamma_lut;
+ const struct drm_property_blob *blob = crtc_state->post_csc_lut;
const struct drm_color_lut *lut = blob->data;
enum pipe pipe = crtc->pipe;
int i;
@@ -983,24 +1218,30 @@ icl_program_gamma_superfine_segment(const struct intel_crtc_state *crtc_state)
* 9 entries, corresponding to values 0, 1/(8 * 128 * 256),
* 2/(8 * 128 * 256) ... 8/(8 * 128 * 256).
*/
- intel_dsb_reg_write(crtc_state, PREC_PAL_MULTI_SEG_INDEX(pipe),
- PAL_PREC_AUTO_INCREMENT);
+ ilk_lut_write(crtc_state, PREC_PAL_MULTI_SEG_INDEX(pipe),
+ PAL_PREC_MULTI_SEG_INDEX_VALUE(0));
+ ilk_lut_write(crtc_state, PREC_PAL_MULTI_SEG_INDEX(pipe),
+ PAL_PREC_AUTO_INCREMENT |
+ PAL_PREC_MULTI_SEG_INDEX_VALUE(0));
for (i = 0; i < 9; i++) {
const struct drm_color_lut *entry = &lut[i];
- intel_dsb_indexed_reg_write(crtc_state, PREC_PAL_MULTI_SEG_DATA(pipe),
- ilk_lut_12p4_ldw(entry));
- intel_dsb_indexed_reg_write(crtc_state, PREC_PAL_MULTI_SEG_DATA(pipe),
- ilk_lut_12p4_udw(entry));
+ ilk_lut_write(crtc_state, PREC_PAL_MULTI_SEG_DATA(pipe),
+ ilk_lut_12p4_ldw(entry));
+ ilk_lut_write(crtc_state, PREC_PAL_MULTI_SEG_DATA(pipe),
+ ilk_lut_12p4_udw(entry));
}
+
+ ilk_lut_write(crtc_state, PREC_PAL_MULTI_SEG_INDEX(pipe),
+ PAL_PREC_MULTI_SEG_INDEX_VALUE(0));
}
static void
icl_program_gamma_multi_segment(const struct intel_crtc_state *crtc_state)
{
struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
- const struct drm_property_blob *blob = crtc_state->hw.gamma_lut;
+ const struct drm_property_blob *blob = crtc_state->post_csc_lut;
const struct drm_color_lut *lut = blob->data;
const struct drm_color_lut *entry;
enum pipe pipe = crtc->pipe;
@@ -1016,14 +1257,19 @@ icl_program_gamma_multi_segment(const struct intel_crtc_state *crtc_state)
* PAL_PREC_INDEX[0] and PAL_PREC_INDEX[1] map to seg2[1],
* seg2[0] being unused by the hardware.
*/
- intel_dsb_reg_write(crtc_state, PREC_PAL_INDEX(pipe),
- PAL_PREC_AUTO_INCREMENT);
+ ilk_lut_write(crtc_state, PREC_PAL_INDEX(pipe),
+ PAL_PREC_INDEX_VALUE(0));
+ ilk_lut_write(crtc_state, PREC_PAL_INDEX(pipe),
+ PAL_PREC_AUTO_INCREMENT |
+ PAL_PREC_INDEX_VALUE(0));
+
for (i = 1; i < 257; i++) {
entry = &lut[i * 8];
- intel_dsb_indexed_reg_write(crtc_state, PREC_PAL_DATA(pipe),
- ilk_lut_12p4_ldw(entry));
- intel_dsb_indexed_reg_write(crtc_state, PREC_PAL_DATA(pipe),
- ilk_lut_12p4_udw(entry));
+
+ ilk_lut_write(crtc_state, PREC_PAL_DATA(pipe),
+ ilk_lut_12p4_ldw(entry));
+ ilk_lut_write(crtc_state, PREC_PAL_DATA(pipe),
+ ilk_lut_12p4_udw(entry));
}
/*
@@ -1040,103 +1286,120 @@ icl_program_gamma_multi_segment(const struct intel_crtc_state *crtc_state)
*/
for (i = 0; i < 256; i++) {
entry = &lut[i * 8 * 128];
- intel_dsb_indexed_reg_write(crtc_state, PREC_PAL_DATA(pipe),
- ilk_lut_12p4_ldw(entry));
- intel_dsb_indexed_reg_write(crtc_state, PREC_PAL_DATA(pipe),
- ilk_lut_12p4_udw(entry));
+
+ ilk_lut_write(crtc_state, PREC_PAL_DATA(pipe),
+ ilk_lut_12p4_ldw(entry));
+ ilk_lut_write(crtc_state, PREC_PAL_DATA(pipe),
+ ilk_lut_12p4_udw(entry));
}
+ ilk_lut_write(crtc_state, PREC_PAL_INDEX(pipe),
+ PAL_PREC_INDEX_VALUE(0));
+
/* The last entry in the LUT is to be programmed in GCMAX */
entry = &lut[256 * 8 * 128];
- icl_load_gcmax(crtc_state, entry);
- ivb_load_lut_ext_max(crtc_state);
+ ivb_load_lut_max(crtc_state, entry);
}
static void icl_load_luts(const struct intel_crtc_state *crtc_state)
{
- const struct drm_property_blob *gamma_lut = crtc_state->hw.gamma_lut;
- struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
+ const struct drm_property_blob *pre_csc_lut = crtc_state->pre_csc_lut;
+ const struct drm_property_blob *post_csc_lut = crtc_state->post_csc_lut;
- if (crtc_state->hw.degamma_lut)
- glk_load_degamma_lut(crtc_state);
+ if (pre_csc_lut)
+ glk_load_degamma_lut(crtc_state, pre_csc_lut);
switch (crtc_state->gamma_mode & GAMMA_MODE_MODE_MASK) {
case GAMMA_MODE_MODE_8BIT:
- ilk_load_lut_8(crtc, gamma_lut);
+ ilk_load_lut_8(crtc_state, post_csc_lut);
break;
- case GAMMA_MODE_MODE_12BIT_MULTI_SEGMENTED:
+ case GAMMA_MODE_MODE_12BIT_MULTI_SEG:
icl_program_gamma_superfine_segment(crtc_state);
icl_program_gamma_multi_segment(crtc_state);
+ ivb_load_lut_ext_max(crtc_state);
+ glk_load_lut_ext2_max(crtc_state);
break;
case GAMMA_MODE_MODE_10BIT:
- bdw_load_lut_10(crtc, gamma_lut, PAL_PREC_INDEX_VALUE(0));
+ bdw_load_lut_10(crtc_state, post_csc_lut, PAL_PREC_INDEX_VALUE(0));
ivb_load_lut_ext_max(crtc_state);
+ glk_load_lut_ext2_max(crtc_state);
break;
default:
MISSING_CASE(crtc_state->gamma_mode);
break;
}
- intel_dsb_commit(crtc_state);
+ if (crtc_state->dsb) {
+ intel_dsb_finish(crtc_state->dsb);
+ intel_dsb_commit(crtc_state->dsb, false);
+ intel_dsb_wait(crtc_state->dsb);
+ }
}
static u32 chv_cgm_degamma_ldw(const struct drm_color_lut *color)
{
- return drm_color_lut_extract(color->green, 14) << 16 |
- drm_color_lut_extract(color->blue, 14);
+ return REG_FIELD_PREP(CGM_PIPE_DEGAMMA_GREEN_LDW_MASK, drm_color_lut_extract(color->green, 14)) |
+ REG_FIELD_PREP(CGM_PIPE_DEGAMMA_BLUE_LDW_MASK, drm_color_lut_extract(color->blue, 14));
}
static u32 chv_cgm_degamma_udw(const struct drm_color_lut *color)
{
- return drm_color_lut_extract(color->red, 14);
+ return REG_FIELD_PREP(CGM_PIPE_DEGAMMA_RED_UDW_MASK, drm_color_lut_extract(color->red, 14));
+}
+
+static void chv_cgm_degamma_pack(struct drm_color_lut *entry, u32 ldw, u32 udw)
+{
+ entry->green = intel_color_lut_pack(REG_FIELD_GET(CGM_PIPE_DEGAMMA_GREEN_LDW_MASK, ldw), 14);
+ entry->blue = intel_color_lut_pack(REG_FIELD_GET(CGM_PIPE_DEGAMMA_BLUE_LDW_MASK, ldw), 14);
+ entry->red = intel_color_lut_pack(REG_FIELD_GET(CGM_PIPE_DEGAMMA_RED_UDW_MASK, udw), 14);
}
static void chv_load_cgm_degamma(struct intel_crtc *crtc,
const struct drm_property_blob *blob)
{
- struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
+ struct drm_i915_private *i915 = to_i915(crtc->base.dev);
const struct drm_color_lut *lut = blob->data;
int i, lut_size = drm_color_lut_size(blob);
enum pipe pipe = crtc->pipe;
for (i = 0; i < lut_size; i++) {
- intel_de_write_fw(dev_priv, CGM_PIPE_DEGAMMA(pipe, i, 0),
+ intel_de_write_fw(i915, CGM_PIPE_DEGAMMA(pipe, i, 0),
chv_cgm_degamma_ldw(&lut[i]));
- intel_de_write_fw(dev_priv, CGM_PIPE_DEGAMMA(pipe, i, 1),
+ intel_de_write_fw(i915, CGM_PIPE_DEGAMMA(pipe, i, 1),
chv_cgm_degamma_udw(&lut[i]));
}
}
static u32 chv_cgm_gamma_ldw(const struct drm_color_lut *color)
{
- return drm_color_lut_extract(color->green, 10) << 16 |
- drm_color_lut_extract(color->blue, 10);
+ return REG_FIELD_PREP(CGM_PIPE_GAMMA_GREEN_LDW_MASK, drm_color_lut_extract(color->green, 10)) |
+ REG_FIELD_PREP(CGM_PIPE_GAMMA_BLUE_LDW_MASK, drm_color_lut_extract(color->blue, 10));
}
static u32 chv_cgm_gamma_udw(const struct drm_color_lut *color)
{
- return drm_color_lut_extract(color->red, 10);
+ return REG_FIELD_PREP(CGM_PIPE_GAMMA_RED_UDW_MASK, drm_color_lut_extract(color->red, 10));
}
static void chv_cgm_gamma_pack(struct drm_color_lut *entry, u32 ldw, u32 udw)
{
- entry->green = intel_color_lut_pack(REG_FIELD_GET(CGM_PIPE_GAMMA_GREEN_MASK, ldw), 10);
- entry->blue = intel_color_lut_pack(REG_FIELD_GET(CGM_PIPE_GAMMA_BLUE_MASK, ldw), 10);
- entry->red = intel_color_lut_pack(REG_FIELD_GET(CGM_PIPE_GAMMA_RED_MASK, udw), 10);
+ entry->green = intel_color_lut_pack(REG_FIELD_GET(CGM_PIPE_GAMMA_GREEN_LDW_MASK, ldw), 10);
+ entry->blue = intel_color_lut_pack(REG_FIELD_GET(CGM_PIPE_GAMMA_BLUE_LDW_MASK, ldw), 10);
+ entry->red = intel_color_lut_pack(REG_FIELD_GET(CGM_PIPE_GAMMA_RED_UDW_MASK, udw), 10);
}
static void chv_load_cgm_gamma(struct intel_crtc *crtc,
const struct drm_property_blob *blob)
{
- struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
+ struct drm_i915_private *i915 = to_i915(crtc->base.dev);
const struct drm_color_lut *lut = blob->data;
int i, lut_size = drm_color_lut_size(blob);
enum pipe pipe = crtc->pipe;
for (i = 0; i < lut_size; i++) {
- intel_de_write_fw(dev_priv, CGM_PIPE_GAMMA(pipe, i, 0),
+ intel_de_write_fw(i915, CGM_PIPE_GAMMA(pipe, i, 0),
chv_cgm_gamma_ldw(&lut[i]));
- intel_de_write_fw(dev_priv, CGM_PIPE_GAMMA(pipe, i, 1),
+ intel_de_write_fw(i915, CGM_PIPE_GAMMA(pipe, i, 1),
chv_cgm_gamma_udw(&lut[i]));
}
}
@@ -1144,46 +1407,76 @@ static void chv_load_cgm_gamma(struct intel_crtc *crtc,
static void chv_load_luts(const struct intel_crtc_state *crtc_state)
{
struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
- struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
- const struct drm_property_blob *degamma_lut = crtc_state->hw.degamma_lut;
- const struct drm_property_blob *gamma_lut = crtc_state->hw.gamma_lut;
+ struct drm_i915_private *i915 = to_i915(crtc->base.dev);
+ const struct drm_property_blob *pre_csc_lut = crtc_state->pre_csc_lut;
+ const struct drm_property_blob *post_csc_lut = crtc_state->post_csc_lut;
const struct drm_property_blob *ctm = crtc_state->hw.ctm;
if (crtc_state->cgm_mode & CGM_PIPE_MODE_CSC)
chv_load_cgm_csc(crtc, ctm);
if (crtc_state->cgm_mode & CGM_PIPE_MODE_DEGAMMA)
- chv_load_cgm_degamma(crtc, degamma_lut);
+ chv_load_cgm_degamma(crtc, pre_csc_lut);
if (crtc_state->cgm_mode & CGM_PIPE_MODE_GAMMA)
- chv_load_cgm_gamma(crtc, gamma_lut);
+ chv_load_cgm_gamma(crtc, post_csc_lut);
else
i965_load_luts(crtc_state);
- intel_de_write_fw(dev_priv, CGM_PIPE_MODE(crtc->pipe),
+ intel_de_write_fw(i915, CGM_PIPE_MODE(crtc->pipe),
crtc_state->cgm_mode);
}
void intel_color_load_luts(const struct intel_crtc_state *crtc_state)
{
- struct drm_i915_private *dev_priv = to_i915(crtc_state->uapi.crtc->dev);
+ struct drm_i915_private *i915 = to_i915(crtc_state->uapi.crtc->dev);
- dev_priv->display.funcs.color->load_luts(crtc_state);
+ i915->display.funcs.color->load_luts(crtc_state);
}
void intel_color_commit_noarm(const struct intel_crtc_state *crtc_state)
{
- struct drm_i915_private *dev_priv = to_i915(crtc_state->uapi.crtc->dev);
+ struct drm_i915_private *i915 = to_i915(crtc_state->uapi.crtc->dev);
- if (dev_priv->display.funcs.color->color_commit_noarm)
- dev_priv->display.funcs.color->color_commit_noarm(crtc_state);
+ if (i915->display.funcs.color->color_commit_noarm)
+ i915->display.funcs.color->color_commit_noarm(crtc_state);
}
void intel_color_commit_arm(const struct intel_crtc_state *crtc_state)
{
- struct drm_i915_private *dev_priv = to_i915(crtc_state->uapi.crtc->dev);
+ struct drm_i915_private *i915 = to_i915(crtc_state->uapi.crtc->dev);
- dev_priv->display.funcs.color->color_commit_arm(crtc_state);
+ i915->display.funcs.color->color_commit_arm(crtc_state);
+}
+
+void intel_color_post_update(const struct intel_crtc_state *crtc_state)
+{
+ struct drm_i915_private *i915 = to_i915(crtc_state->uapi.crtc->dev);
+
+ if (i915->display.funcs.color->color_post_update)
+ i915->display.funcs.color->color_post_update(crtc_state);
+}
+
+void intel_color_prepare_commit(struct intel_crtc_state *crtc_state)
+{
+ struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
+
+ /* FIXME DSB has issues loading LUTs, disable it for now */
+ return;
+
+ if (!crtc_state->pre_csc_lut && !crtc_state->post_csc_lut)
+ return;
+
+ crtc_state->dsb = intel_dsb_prepare(crtc, 1024);
+}
+
+void intel_color_cleanup_commit(struct intel_crtc_state *crtc_state)
+{
+ if (!crtc_state->dsb)
+ return;
+
+ intel_dsb_cleanup(crtc_state->dsb);
+ crtc_state->dsb = NULL;
}
static bool intel_can_preload_luts(const struct intel_crtc_state *new_crtc_state)
@@ -1194,8 +1487,8 @@ static bool intel_can_preload_luts(const struct intel_crtc_state *new_crtc_state
const struct intel_crtc_state *old_crtc_state =
intel_atomic_get_old_crtc_state(state, crtc);
- return !old_crtc_state->hw.gamma_lut &&
- !old_crtc_state->hw.degamma_lut;
+ return !old_crtc_state->post_csc_lut &&
+ !old_crtc_state->pre_csc_lut;
}
static bool chv_can_preload_luts(const struct intel_crtc_state *new_crtc_state)
@@ -1214,46 +1507,45 @@ static bool chv_can_preload_luts(const struct intel_crtc_state *new_crtc_state)
if (old_crtc_state->cgm_mode || new_crtc_state->cgm_mode)
return false;
- return !old_crtc_state->hw.gamma_lut;
+ return !old_crtc_state->post_csc_lut;
}
-static bool glk_can_preload_luts(const struct intel_crtc_state *new_crtc_state)
+int intel_color_check(struct intel_crtc_state *crtc_state)
{
- struct intel_crtc *crtc = to_intel_crtc(new_crtc_state->uapi.crtc);
- struct intel_atomic_state *state =
- to_intel_atomic_state(new_crtc_state->uapi.state);
- const struct intel_crtc_state *old_crtc_state =
- intel_atomic_get_old_crtc_state(state, crtc);
+ struct drm_i915_private *i915 = to_i915(crtc_state->uapi.crtc->dev);
- /*
- * The hardware degamma is active whenever the pipe
- * CSC is active. Thus even if the old state has no
- * software degamma we need to avoid clobbering the
- * linear hardware degamma mid scanout.
- */
- return !old_crtc_state->csc_enable &&
- !old_crtc_state->hw.gamma_lut;
+ return i915->display.funcs.color->color_check(crtc_state);
}
-int intel_color_check(struct intel_crtc_state *crtc_state)
+void intel_color_get_config(struct intel_crtc_state *crtc_state)
{
- struct drm_i915_private *dev_priv = to_i915(crtc_state->uapi.crtc->dev);
+ struct drm_i915_private *i915 = to_i915(crtc_state->uapi.crtc->dev);
- return dev_priv->display.funcs.color->color_check(crtc_state);
+ i915->display.funcs.color->read_luts(crtc_state);
}
-void intel_color_get_config(struct intel_crtc_state *crtc_state)
+bool intel_color_lut_equal(const struct intel_crtc_state *crtc_state,
+ const struct drm_property_blob *blob1,
+ const struct drm_property_blob *blob2,
+ bool is_pre_csc_lut)
{
- struct drm_i915_private *dev_priv = to_i915(crtc_state->uapi.crtc->dev);
+ struct drm_i915_private *i915 = to_i915(crtc_state->uapi.crtc->dev);
- if (dev_priv->display.funcs.color->read_luts)
- dev_priv->display.funcs.color->read_luts(crtc_state);
+ /*
+ * FIXME c8_planes readout missing thus
+ * .read_luts() doesn't read out post_csc_lut.
+ */
+ if (!is_pre_csc_lut && crtc_state->c8_planes)
+ return true;
+
+ return i915->display.funcs.color->lut_equal(crtc_state, blob1, blob2,
+ is_pre_csc_lut);
}
static bool need_plane_update(struct intel_plane *plane,
const struct intel_crtc_state *crtc_state)
{
- struct drm_i915_private *dev_priv = to_i915(plane->base.dev);
+ struct drm_i915_private *i915 = to_i915(plane->base.dev);
/*
* On pre-SKL the pipe gamma enable and pipe csc enable for
@@ -1261,7 +1553,7 @@ static bool need_plane_update(struct intel_plane *plane,
* We have to reconfigure that even if the plane is inactive.
*/
return crtc_state->active_planes & BIT(plane->id) ||
- (DISPLAY_VER(dev_priv) < 9 &&
+ (DISPLAY_VER(i915) < 9 &&
plane->id == PLANE_PRIMARY);
}
@@ -1269,7 +1561,7 @@ static int
intel_color_add_affected_planes(struct intel_crtc_state *new_crtc_state)
{
struct intel_crtc *crtc = to_intel_crtc(new_crtc_state->uapi.crtc);
- struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
+ struct drm_i915_private *i915 = to_i915(crtc->base.dev);
struct intel_atomic_state *state =
to_intel_atomic_state(new_crtc_state->uapi.state);
const struct intel_crtc_state *old_crtc_state =
@@ -1277,14 +1569,14 @@ intel_color_add_affected_planes(struct intel_crtc_state *new_crtc_state)
struct intel_plane *plane;
if (!new_crtc_state->hw.active ||
- drm_atomic_crtc_needs_modeset(&new_crtc_state->uapi))
+ intel_crtc_needs_modeset(new_crtc_state))
return 0;
if (new_crtc_state->gamma_enable == old_crtc_state->gamma_enable &&
new_crtc_state->csc_enable == old_crtc_state->csc_enable)
return 0;
- for_each_intel_plane_on_crtc(&dev_priv->drm, crtc, plane) {
+ for_each_intel_plane_on_crtc(&i915->drm, crtc, plane) {
struct intel_plane_state *plane_state;
if (!need_plane_update(plane, new_crtc_state))
@@ -1295,11 +1587,53 @@ intel_color_add_affected_planes(struct intel_crtc_state *new_crtc_state)
return PTR_ERR(plane_state);
new_crtc_state->update_planes |= BIT(plane->id);
+ new_crtc_state->async_flip_planes = 0;
+ new_crtc_state->do_async_flip = false;
+
+ /* plane control register changes blocked by CxSR */
+ if (HAS_GMCH(i915))
+ new_crtc_state->disable_cxsr = true;
}
return 0;
}
+static u32 intel_gamma_lut_tests(const struct intel_crtc_state *crtc_state)
+{
+ struct drm_i915_private *i915 = to_i915(crtc_state->uapi.crtc->dev);
+ const struct drm_property_blob *gamma_lut = crtc_state->hw.gamma_lut;
+
+ if (lut_is_legacy(gamma_lut))
+ return 0;
+
+ return INTEL_INFO(i915)->display.color.gamma_lut_tests;
+}
+
+static u32 intel_degamma_lut_tests(const struct intel_crtc_state *crtc_state)
+{
+ struct drm_i915_private *i915 = to_i915(crtc_state->uapi.crtc->dev);
+
+ return INTEL_INFO(i915)->display.color.degamma_lut_tests;
+}
+
+static int intel_gamma_lut_size(const struct intel_crtc_state *crtc_state)
+{
+ struct drm_i915_private *i915 = to_i915(crtc_state->uapi.crtc->dev);
+ const struct drm_property_blob *gamma_lut = crtc_state->hw.gamma_lut;
+
+ if (lut_is_legacy(gamma_lut))
+ return LEGACY_LUT_LENGTH;
+
+ return INTEL_INFO(i915)->display.color.gamma_lut_size;
+}
+
+static u32 intel_degamma_lut_size(const struct intel_crtc_state *crtc_state)
+{
+ struct drm_i915_private *i915 = to_i915(crtc_state->uapi.crtc->dev);
+
+ return INTEL_INFO(i915)->display.color.degamma_lut_size;
+}
+
static int check_lut_size(const struct drm_property_blob *lut, int expected)
{
int len;
@@ -1317,29 +1651,23 @@ static int check_lut_size(const struct drm_property_blob *lut, int expected)
return 0;
}
-static int check_luts(const struct intel_crtc_state *crtc_state)
+static int _check_luts(const struct intel_crtc_state *crtc_state,
+ u32 degamma_tests, u32 gamma_tests)
{
- struct drm_i915_private *dev_priv = to_i915(crtc_state->uapi.crtc->dev);
+ struct drm_i915_private *i915 = to_i915(crtc_state->uapi.crtc->dev);
const struct drm_property_blob *gamma_lut = crtc_state->hw.gamma_lut;
const struct drm_property_blob *degamma_lut = crtc_state->hw.degamma_lut;
int gamma_length, degamma_length;
- u32 gamma_tests, degamma_tests;
-
- /* Always allow legacy gamma LUT with no further checking. */
- if (crtc_state_is_legacy_gamma(crtc_state))
- return 0;
/* C8 relies on its palette being stored in the legacy LUT */
- if (crtc_state->c8_planes) {
- drm_dbg_kms(&dev_priv->drm,
+ if (crtc_state->c8_planes && !lut_is_legacy(crtc_state->hw.gamma_lut)) {
+ drm_dbg_kms(&i915->drm,
"C8 pixelformat requires the legacy LUT\n");
return -EINVAL;
}
- degamma_length = INTEL_INFO(dev_priv)->display.color.degamma_lut_size;
- gamma_length = INTEL_INFO(dev_priv)->display.color.gamma_lut_size;
- degamma_tests = INTEL_INFO(dev_priv)->display.color.degamma_lut_tests;
- gamma_tests = INTEL_INFO(dev_priv)->display.color.gamma_lut_tests;
+ degamma_length = intel_degamma_lut_size(crtc_state);
+ gamma_length = intel_gamma_lut_size(crtc_state);
if (check_lut_size(degamma_lut, degamma_length) ||
check_lut_size(gamma_lut, gamma_length))
@@ -1352,17 +1680,87 @@ static int check_luts(const struct intel_crtc_state *crtc_state)
return 0;
}
+static int check_luts(const struct intel_crtc_state *crtc_state)
+{
+ return _check_luts(crtc_state,
+ intel_degamma_lut_tests(crtc_state),
+ intel_gamma_lut_tests(crtc_state));
+}
+
static u32 i9xx_gamma_mode(struct intel_crtc_state *crtc_state)
{
if (!crtc_state->gamma_enable ||
- crtc_state_is_legacy_gamma(crtc_state))
+ lut_is_legacy(crtc_state->hw.gamma_lut))
return GAMMA_MODE_MODE_8BIT;
else
- return GAMMA_MODE_MODE_10BIT; /* i965+ only */
+ return GAMMA_MODE_MODE_10BIT;
+}
+
+static int i9xx_lut_10_diff(u16 a, u16 b)
+{
+ return drm_color_lut_extract(a, 10) -
+ drm_color_lut_extract(b, 10);
+}
+
+static int i9xx_check_lut_10(struct drm_i915_private *dev_priv,
+ const struct drm_property_blob *blob)
+{
+ const struct drm_color_lut *lut = blob->data;
+ int lut_size = drm_color_lut_size(blob);
+ const struct drm_color_lut *a = &lut[lut_size - 2];
+ const struct drm_color_lut *b = &lut[lut_size - 1];
+
+ if (i9xx_lut_10_diff(b->red, a->red) > 0x7f ||
+ i9xx_lut_10_diff(b->green, a->green) > 0x7f ||
+ i9xx_lut_10_diff(b->blue, a->blue) > 0x7f) {
+ drm_dbg_kms(&dev_priv->drm, "Last gamma LUT entry exceeds max slope\n");
+ return -EINVAL;
+ }
+
+ return 0;
+}
+
+void intel_color_assert_luts(const struct intel_crtc_state *crtc_state)
+{
+ struct drm_i915_private *i915 = to_i915(crtc_state->uapi.crtc->dev);
+
+ /* make sure {pre,post}_csc_lut were correctly assigned */
+ if (DISPLAY_VER(i915) >= 11 || HAS_GMCH(i915)) {
+ drm_WARN_ON(&i915->drm,
+ crtc_state->pre_csc_lut != crtc_state->hw.degamma_lut);
+ drm_WARN_ON(&i915->drm,
+ crtc_state->post_csc_lut != crtc_state->hw.gamma_lut);
+ } else if (DISPLAY_VER(i915) == 10) {
+ drm_WARN_ON(&i915->drm,
+ crtc_state->post_csc_lut == crtc_state->hw.gamma_lut &&
+ crtc_state->pre_csc_lut != crtc_state->hw.degamma_lut &&
+ crtc_state->pre_csc_lut != i915->display.color.glk_linear_degamma_lut);
+ drm_WARN_ON(&i915->drm,
+ !ilk_lut_limited_range(crtc_state) &&
+ crtc_state->post_csc_lut != NULL &&
+ crtc_state->post_csc_lut != crtc_state->hw.gamma_lut);
+ } else if (crtc_state->gamma_mode != GAMMA_MODE_MODE_SPLIT) {
+ drm_WARN_ON(&i915->drm,
+ crtc_state->pre_csc_lut != crtc_state->hw.degamma_lut &&
+ crtc_state->pre_csc_lut != crtc_state->hw.gamma_lut);
+ drm_WARN_ON(&i915->drm,
+ !ilk_lut_limited_range(crtc_state) &&
+ crtc_state->post_csc_lut != crtc_state->hw.degamma_lut &&
+ crtc_state->post_csc_lut != crtc_state->hw.gamma_lut);
+ }
+}
+
+static void intel_assign_luts(struct intel_crtc_state *crtc_state)
+{
+ drm_property_replace_blob(&crtc_state->pre_csc_lut,
+ crtc_state->hw.degamma_lut);
+ drm_property_replace_blob(&crtc_state->post_csc_lut,
+ crtc_state->hw.gamma_lut);
}
static int i9xx_color_check(struct intel_crtc_state *crtc_state)
{
+ struct drm_i915_private *i915 = to_i915(crtc_state->uapi.crtc->dev);
int ret;
ret = check_luts(crtc_state);
@@ -1375,10 +1773,19 @@ static int i9xx_color_check(struct intel_crtc_state *crtc_state)
crtc_state->gamma_mode = i9xx_gamma_mode(crtc_state);
+ if (DISPLAY_VER(i915) < 4 &&
+ crtc_state->gamma_mode == GAMMA_MODE_MODE_10BIT) {
+ ret = i9xx_check_lut_10(i915, crtc_state->hw.gamma_lut);
+ if (ret)
+ return ret;
+ }
+
ret = intel_color_add_affected_planes(crtc_state);
if (ret)
return ret;
+ intel_assign_luts(crtc_state);
+
crtc_state->preload_luts = intel_can_preload_luts(crtc_state);
return 0;
@@ -1388,14 +1795,12 @@ static u32 chv_cgm_mode(const struct intel_crtc_state *crtc_state)
{
u32 cgm_mode = 0;
- if (crtc_state_is_legacy_gamma(crtc_state))
- return 0;
-
if (crtc_state->hw.degamma_lut)
cgm_mode |= CGM_PIPE_MODE_DEGAMMA;
if (crtc_state->hw.ctm)
cgm_mode |= CGM_PIPE_MODE_CSC;
- if (crtc_state->hw.gamma_lut)
+ if (crtc_state->hw.gamma_lut &&
+ !lut_is_legacy(crtc_state->hw.gamma_lut))
cgm_mode |= CGM_PIPE_MODE_GAMMA;
return cgm_mode;
@@ -1422,7 +1827,7 @@ static int chv_color_check(struct intel_crtc_state *crtc_state)
* Otherwise we bypass it and use the CGM gamma instead.
*/
crtc_state->gamma_enable =
- crtc_state_is_legacy_gamma(crtc_state) &&
+ lut_is_legacy(crtc_state->hw.gamma_lut) &&
!crtc_state->c8_planes;
crtc_state->gamma_mode = GAMMA_MODE_MODE_8BIT;
@@ -1433,15 +1838,31 @@ static int chv_color_check(struct intel_crtc_state *crtc_state)
if (ret)
return ret;
+ intel_assign_luts(crtc_state);
+
crtc_state->preload_luts = chv_can_preload_luts(crtc_state);
return 0;
}
+static bool ilk_gamma_enable(const struct intel_crtc_state *crtc_state)
+{
+ return (crtc_state->hw.gamma_lut ||
+ crtc_state->hw.degamma_lut) &&
+ !crtc_state->c8_planes;
+}
+
+static bool ilk_csc_enable(const struct intel_crtc_state *crtc_state)
+{
+ return crtc_state->output_format != INTEL_OUTPUT_FORMAT_RGB ||
+ ilk_csc_limited_range(crtc_state) ||
+ crtc_state->hw.ctm;
+}
+
static u32 ilk_gamma_mode(const struct intel_crtc_state *crtc_state)
{
if (!crtc_state->gamma_enable ||
- crtc_state_is_legacy_gamma(crtc_state))
+ lut_is_legacy(crtc_state->hw.gamma_lut))
return GAMMA_MODE_MODE_8BIT;
else
return GAMMA_MODE_MODE_10BIT;
@@ -1458,28 +1879,76 @@ static u32 ilk_csc_mode(const struct intel_crtc_state *crtc_state)
if (crtc_state->output_format != INTEL_OUTPUT_FORMAT_RGB)
return CSC_BLACK_SCREEN_OFFSET;
+ if (crtc_state->hw.degamma_lut)
+ return CSC_MODE_YUV_TO_RGB;
+
return CSC_MODE_YUV_TO_RGB |
CSC_POSITION_BEFORE_GAMMA;
}
+static int ilk_assign_luts(struct intel_crtc_state *crtc_state)
+{
+ struct drm_i915_private *i915 = to_i915(crtc_state->uapi.crtc->dev);
+
+ if (ilk_lut_limited_range(crtc_state)) {
+ struct drm_property_blob *gamma_lut;
+
+ gamma_lut = create_resized_lut(i915, crtc_state->hw.gamma_lut,
+ drm_color_lut_size(crtc_state->hw.gamma_lut),
+ true);
+ if (IS_ERR(gamma_lut))
+ return PTR_ERR(gamma_lut);
+
+ drm_property_replace_blob(&crtc_state->post_csc_lut, gamma_lut);
+
+ drm_property_blob_put(gamma_lut);
+
+ drm_property_replace_blob(&crtc_state->pre_csc_lut, crtc_state->hw.degamma_lut);
+
+ return 0;
+ }
+
+ if (crtc_state->hw.degamma_lut ||
+ crtc_state->csc_mode & CSC_POSITION_BEFORE_GAMMA) {
+ drm_property_replace_blob(&crtc_state->pre_csc_lut,
+ crtc_state->hw.degamma_lut);
+ drm_property_replace_blob(&crtc_state->post_csc_lut,
+ crtc_state->hw.gamma_lut);
+ } else {
+ drm_property_replace_blob(&crtc_state->pre_csc_lut,
+ crtc_state->hw.gamma_lut);
+ drm_property_replace_blob(&crtc_state->post_csc_lut,
+ NULL);
+ }
+
+ return 0;
+}
+
static int ilk_color_check(struct intel_crtc_state *crtc_state)
{
+ struct drm_i915_private *i915 = to_i915(crtc_state->uapi.crtc->dev);
int ret;
ret = check_luts(crtc_state);
if (ret)
return ret;
- crtc_state->gamma_enable =
- crtc_state->hw.gamma_lut &&
- !crtc_state->c8_planes;
+ if (crtc_state->hw.degamma_lut && crtc_state->hw.gamma_lut) {
+ drm_dbg_kms(&i915->drm,
+ "Degamma and gamma together are not possible\n");
+ return -EINVAL;
+ }
- /*
- * We don't expose the ctm on ilk/snb currently, also RGB
- * limited range output is handled by the hw automagically.
- */
- crtc_state->csc_enable =
- crtc_state->output_format != INTEL_OUTPUT_FORMAT_RGB;
+ if (crtc_state->output_format != INTEL_OUTPUT_FORMAT_RGB &&
+ crtc_state->hw.ctm) {
+ drm_dbg_kms(&i915->drm,
+ "YCbCr and CTM together are not possible\n");
+ return -EINVAL;
+ }
+
+ crtc_state->gamma_enable = ilk_gamma_enable(crtc_state);
+
+ crtc_state->csc_enable = ilk_csc_enable(crtc_state);
crtc_state->gamma_mode = ilk_gamma_mode(crtc_state);
@@ -1489,6 +1958,10 @@ static int ilk_color_check(struct intel_crtc_state *crtc_state)
if (ret)
return ret;
+ ret = ilk_assign_luts(crtc_state);
+ if (ret)
+ return ret;
+
crtc_state->preload_luts = intel_can_preload_luts(crtc_state);
return 0;
@@ -1496,14 +1969,10 @@ static int ilk_color_check(struct intel_crtc_state *crtc_state)
static u32 ivb_gamma_mode(const struct intel_crtc_state *crtc_state)
{
- if (!crtc_state->gamma_enable ||
- crtc_state_is_legacy_gamma(crtc_state))
- return GAMMA_MODE_MODE_8BIT;
- else if (crtc_state->hw.gamma_lut &&
- crtc_state->hw.degamma_lut)
+ if (crtc_state->hw.degamma_lut && crtc_state->hw.gamma_lut)
return GAMMA_MODE_MODE_SPLIT;
- else
- return GAMMA_MODE_MODE_10BIT;
+
+ return ilk_gamma_mode(crtc_state);
}
static u32 ivb_csc_mode(const struct intel_crtc_state *crtc_state)
@@ -1522,31 +1991,70 @@ static u32 ivb_csc_mode(const struct intel_crtc_state *crtc_state)
return CSC_POSITION_BEFORE_GAMMA;
}
+static int ivb_assign_luts(struct intel_crtc_state *crtc_state)
+{
+ struct drm_i915_private *i915 = to_i915(crtc_state->uapi.crtc->dev);
+ struct drm_property_blob *degamma_lut, *gamma_lut;
+
+ if (crtc_state->gamma_mode != GAMMA_MODE_MODE_SPLIT)
+ return ilk_assign_luts(crtc_state);
+
+ drm_WARN_ON(&i915->drm, drm_color_lut_size(crtc_state->hw.degamma_lut) != 1024);
+ drm_WARN_ON(&i915->drm, drm_color_lut_size(crtc_state->hw.gamma_lut) != 1024);
+
+ degamma_lut = create_resized_lut(i915, crtc_state->hw.degamma_lut, 512,
+ false);
+ if (IS_ERR(degamma_lut))
+ return PTR_ERR(degamma_lut);
+
+ gamma_lut = create_resized_lut(i915, crtc_state->hw.gamma_lut, 512,
+ ilk_lut_limited_range(crtc_state));
+ if (IS_ERR(gamma_lut)) {
+ drm_property_blob_put(degamma_lut);
+ return PTR_ERR(gamma_lut);
+ }
+
+ drm_property_replace_blob(&crtc_state->pre_csc_lut, degamma_lut);
+ drm_property_replace_blob(&crtc_state->post_csc_lut, gamma_lut);
+
+ drm_property_blob_put(degamma_lut);
+ drm_property_blob_put(gamma_lut);
+
+ return 0;
+}
+
static int ivb_color_check(struct intel_crtc_state *crtc_state)
{
- struct drm_i915_private *dev_priv = to_i915(crtc_state->uapi.crtc->dev);
- bool limited_color_range = ilk_csc_limited_range(crtc_state);
+ struct drm_i915_private *i915 = to_i915(crtc_state->uapi.crtc->dev);
int ret;
ret = check_luts(crtc_state);
if (ret)
return ret;
+ if (crtc_state->c8_planes && crtc_state->hw.degamma_lut) {
+ drm_dbg_kms(&i915->drm,
+ "C8 pixelformat and degamma together are not possible\n");
+ return -EINVAL;
+ }
+
if (crtc_state->output_format != INTEL_OUTPUT_FORMAT_RGB &&
crtc_state->hw.ctm) {
- drm_dbg_kms(&dev_priv->drm,
- "YCBCR and CTM together are not possible\n");
+ drm_dbg_kms(&i915->drm,
+ "YCbCr and CTM together are not possible\n");
return -EINVAL;
}
- crtc_state->gamma_enable =
- (crtc_state->hw.gamma_lut ||
- crtc_state->hw.degamma_lut) &&
- !crtc_state->c8_planes;
+ if (crtc_state->output_format != INTEL_OUTPUT_FORMAT_RGB &&
+ crtc_state->hw.degamma_lut && crtc_state->hw.gamma_lut) {
+ drm_dbg_kms(&i915->drm,
+ "YCbCr and degamma+gamma together are not possible\n");
+ return -EINVAL;
+ }
- crtc_state->csc_enable =
- crtc_state->output_format != INTEL_OUTPUT_FORMAT_RGB ||
- crtc_state->hw.ctm || limited_color_range;
+ crtc_state->gamma_enable = ilk_gamma_enable(crtc_state);
+
+ crtc_state->csc_enable = ilk_csc_enable(crtc_state);
crtc_state->gamma_mode = ivb_gamma_mode(crtc_state);
@@ -1556,6 +2064,10 @@ static int ivb_color_check(struct intel_crtc_state *crtc_state)
if (ret)
return ret;
+ ret = ivb_assign_luts(crtc_state);
+ if (ret)
+ return ret;
+
crtc_state->preload_luts = intel_can_preload_luts(crtc_state);
return 0;
@@ -1564,37 +2076,116 @@ static int ivb_color_check(struct intel_crtc_state *crtc_state)
static u32 glk_gamma_mode(const struct intel_crtc_state *crtc_state)
{
if (!crtc_state->gamma_enable ||
- crtc_state_is_legacy_gamma(crtc_state))
+ lut_is_legacy(crtc_state->hw.gamma_lut))
return GAMMA_MODE_MODE_8BIT;
else
return GAMMA_MODE_MODE_10BIT;
}
+static bool glk_use_pre_csc_lut_for_gamma(const struct intel_crtc_state *crtc_state)
+{
+ return crtc_state->hw.gamma_lut &&
+ !crtc_state->c8_planes &&
+ crtc_state->output_format != INTEL_OUTPUT_FORMAT_RGB;
+}
+
+static int glk_assign_luts(struct intel_crtc_state *crtc_state)
+{
+ struct drm_i915_private *i915 = to_i915(crtc_state->uapi.crtc->dev);
+
+ if (glk_use_pre_csc_lut_for_gamma(crtc_state)) {
+ struct drm_property_blob *gamma_lut;
+
+ gamma_lut = create_resized_lut(i915, crtc_state->hw.gamma_lut,
+ INTEL_INFO(i915)->display.color.degamma_lut_size,
+ false);
+ if (IS_ERR(gamma_lut))
+ return PTR_ERR(gamma_lut);
+
+ drm_property_replace_blob(&crtc_state->pre_csc_lut, gamma_lut);
+ drm_property_replace_blob(&crtc_state->post_csc_lut, NULL);
+
+ drm_property_blob_put(gamma_lut);
+
+ return 0;
+ }
+
+ if (ilk_lut_limited_range(crtc_state)) {
+ struct drm_property_blob *gamma_lut;
+
+ gamma_lut = create_resized_lut(i915, crtc_state->hw.gamma_lut,
+ drm_color_lut_size(crtc_state->hw.gamma_lut),
+ true);
+ if (IS_ERR(gamma_lut))
+ return PTR_ERR(gamma_lut);
+
+ drm_property_replace_blob(&crtc_state->post_csc_lut, gamma_lut);
+
+ drm_property_blob_put(gamma_lut);
+ } else {
+ drm_property_replace_blob(&crtc_state->post_csc_lut, crtc_state->hw.gamma_lut);
+ }
+
+ drm_property_replace_blob(&crtc_state->pre_csc_lut, crtc_state->hw.degamma_lut);
+
+ /*
+ * On GLK+ both pipe CSC and degamma LUT are controlled
+ * by csc_enable. Hence for the cases where the CSC is
+ * needed but degamma LUT is not we need to load a
+ * linear degamma LUT.
+ */
+ if (crtc_state->csc_enable && !crtc_state->pre_csc_lut)
+ drm_property_replace_blob(&crtc_state->pre_csc_lut,
+ i915->display.color.glk_linear_degamma_lut);
+
+ return 0;
+}
+
+static int glk_check_luts(const struct intel_crtc_state *crtc_state)
+{
+ u32 degamma_tests = intel_degamma_lut_tests(crtc_state);
+ u32 gamma_tests = intel_gamma_lut_tests(crtc_state);
+
+ if (glk_use_pre_csc_lut_for_gamma(crtc_state))
+ gamma_tests |= degamma_tests;
+
+ return _check_luts(crtc_state, degamma_tests, gamma_tests);
+}
+
static int glk_color_check(struct intel_crtc_state *crtc_state)
{
- struct drm_i915_private *dev_priv = to_i915(crtc_state->uapi.crtc->dev);
+ struct drm_i915_private *i915 = to_i915(crtc_state->uapi.crtc->dev);
int ret;
- ret = check_luts(crtc_state);
+ ret = glk_check_luts(crtc_state);
if (ret)
return ret;
if (crtc_state->output_format != INTEL_OUTPUT_FORMAT_RGB &&
crtc_state->hw.ctm) {
- drm_dbg_kms(&dev_priv->drm,
- "YCBCR and CTM together are not possible\n");
+ drm_dbg_kms(&i915->drm,
+ "YCbCr and CTM together are not possible\n");
+ return -EINVAL;
+ }
+
+ if (crtc_state->output_format != INTEL_OUTPUT_FORMAT_RGB &&
+ crtc_state->hw.degamma_lut && crtc_state->hw.gamma_lut) {
+ drm_dbg_kms(&i915->drm,
+ "YCbCr and degamma+gamma together are not possible\n");
return -EINVAL;
}
crtc_state->gamma_enable =
+ !glk_use_pre_csc_lut_for_gamma(crtc_state) &&
crtc_state->hw.gamma_lut &&
!crtc_state->c8_planes;
/* On GLK+ degamma LUT is controlled by csc_enable */
crtc_state->csc_enable =
+ glk_use_pre_csc_lut_for_gamma(crtc_state) ||
crtc_state->hw.degamma_lut ||
crtc_state->output_format != INTEL_OUTPUT_FORMAT_RGB ||
- crtc_state->hw.ctm || crtc_state->limited_color_range;
+ crtc_state->hw.ctm || ilk_csc_limited_range(crtc_state);
crtc_state->gamma_mode = glk_gamma_mode(crtc_state);
@@ -1604,7 +2195,11 @@ static int glk_color_check(struct intel_crtc_state *crtc_state)
if (ret)
return ret;
- crtc_state->preload_luts = glk_can_preload_luts(crtc_state);
+ ret = glk_assign_luts(crtc_state);
+ if (ret)
+ return ret;
+
+ crtc_state->preload_luts = intel_can_preload_luts(crtc_state);
return 0;
}
@@ -1623,7 +2218,7 @@ static u32 icl_gamma_mode(const struct intel_crtc_state *crtc_state)
gamma_mode |= POST_CSC_GAMMA_ENABLE;
if (!crtc_state->hw.gamma_lut ||
- crtc_state_is_legacy_gamma(crtc_state))
+ lut_is_legacy(crtc_state->hw.gamma_lut))
gamma_mode |= GAMMA_MODE_MODE_8BIT;
/*
* Enable 10bit gamma for D13
@@ -1633,7 +2228,7 @@ static u32 icl_gamma_mode(const struct intel_crtc_state *crtc_state)
else if (DISPLAY_VER(i915) >= 13)
gamma_mode |= GAMMA_MODE_MODE_10BIT;
else
- gamma_mode |= GAMMA_MODE_MODE_12BIT_MULTI_SEGMENTED;
+ gamma_mode |= GAMMA_MODE_MODE_12BIT_MULTI_SEG;
return gamma_mode;
}
@@ -1664,73 +2259,160 @@ static int icl_color_check(struct intel_crtc_state *crtc_state)
crtc_state->csc_mode = icl_csc_mode(crtc_state);
+ intel_assign_luts(crtc_state);
+
crtc_state->preload_luts = intel_can_preload_luts(crtc_state);
return 0;
}
-static int i9xx_gamma_precision(const struct intel_crtc_state *crtc_state)
+static int i9xx_post_csc_lut_precision(const struct intel_crtc_state *crtc_state)
{
- if (!crtc_state->gamma_enable)
+ if (!crtc_state->gamma_enable && !crtc_state->c8_planes)
return 0;
switch (crtc_state->gamma_mode) {
case GAMMA_MODE_MODE_8BIT:
return 8;
case GAMMA_MODE_MODE_10BIT:
- return 16;
+ return 10;
default:
MISSING_CASE(crtc_state->gamma_mode);
return 0;
}
}
-static int ilk_gamma_precision(const struct intel_crtc_state *crtc_state)
+static int i9xx_pre_csc_lut_precision(const struct intel_crtc_state *crtc_state)
{
- if (!crtc_state->gamma_enable)
- return 0;
+ return 0;
+}
- if ((crtc_state->csc_mode & CSC_POSITION_BEFORE_GAMMA) == 0)
+static int i965_post_csc_lut_precision(const struct intel_crtc_state *crtc_state)
+{
+ if (!crtc_state->gamma_enable && !crtc_state->c8_planes)
return 0;
switch (crtc_state->gamma_mode) {
case GAMMA_MODE_MODE_8BIT:
return 8;
case GAMMA_MODE_MODE_10BIT:
- return 10;
+ return 16;
default:
MISSING_CASE(crtc_state->gamma_mode);
return 0;
}
}
-static int chv_gamma_precision(const struct intel_crtc_state *crtc_state)
+static int ilk_gamma_mode_precision(u32 gamma_mode)
{
- if (crtc_state->cgm_mode & CGM_PIPE_MODE_GAMMA)
+ switch (gamma_mode) {
+ case GAMMA_MODE_MODE_8BIT:
+ return 8;
+ case GAMMA_MODE_MODE_10BIT:
return 10;
- else
- return i9xx_gamma_precision(crtc_state);
+ default:
+ MISSING_CASE(gamma_mode);
+ return 0;
+ }
}
-static int glk_gamma_precision(const struct intel_crtc_state *crtc_state)
+static bool ilk_has_post_csc_lut(const struct intel_crtc_state *crtc_state)
{
- if (!crtc_state->gamma_enable)
+ if (crtc_state->c8_planes)
+ return true;
+
+ return crtc_state->gamma_enable &&
+ (crtc_state->csc_mode & CSC_POSITION_BEFORE_GAMMA) != 0;
+}
+
+static bool ilk_has_pre_csc_lut(const struct intel_crtc_state *crtc_state)
+{
+ return crtc_state->gamma_enable &&
+ (crtc_state->csc_mode & CSC_POSITION_BEFORE_GAMMA) == 0;
+}
+
+static int ilk_post_csc_lut_precision(const struct intel_crtc_state *crtc_state)
+{
+ if (!ilk_has_post_csc_lut(crtc_state))
return 0;
- switch (crtc_state->gamma_mode) {
- case GAMMA_MODE_MODE_8BIT:
- return 8;
- case GAMMA_MODE_MODE_10BIT:
+ return ilk_gamma_mode_precision(crtc_state->gamma_mode);
+}
+
+static int ilk_pre_csc_lut_precision(const struct intel_crtc_state *crtc_state)
+{
+ if (!ilk_has_pre_csc_lut(crtc_state))
+ return 0;
+
+ return ilk_gamma_mode_precision(crtc_state->gamma_mode);
+}
+
+static int ivb_post_csc_lut_precision(const struct intel_crtc_state *crtc_state)
+{
+ if (crtc_state->gamma_enable &&
+ crtc_state->gamma_mode == GAMMA_MODE_MODE_SPLIT)
return 10;
- default:
- MISSING_CASE(crtc_state->gamma_mode);
+
+ return ilk_post_csc_lut_precision(crtc_state);
+}
+
+static int ivb_pre_csc_lut_precision(const struct intel_crtc_state *crtc_state)
+{
+ if (crtc_state->gamma_enable &&
+ crtc_state->gamma_mode == GAMMA_MODE_MODE_SPLIT)
+ return 10;
+
+ return ilk_pre_csc_lut_precision(crtc_state);
+}
+
+static int chv_post_csc_lut_precision(const struct intel_crtc_state *crtc_state)
+{
+ if (crtc_state->cgm_mode & CGM_PIPE_MODE_GAMMA)
+ return 10;
+
+ return i965_post_csc_lut_precision(crtc_state);
+}
+
+static int chv_pre_csc_lut_precision(const struct intel_crtc_state *crtc_state)
+{
+ if (crtc_state->cgm_mode & CGM_PIPE_MODE_DEGAMMA)
+ return 14;
+
+ return 0;
+}
+
+static int glk_post_csc_lut_precision(const struct intel_crtc_state *crtc_state)
+{
+ if (!crtc_state->gamma_enable && !crtc_state->c8_planes)
return 0;
- }
+
+ return ilk_gamma_mode_precision(crtc_state->gamma_mode);
+}
+
+static int glk_pre_csc_lut_precision(const struct intel_crtc_state *crtc_state)
+{
+ if (!crtc_state->csc_enable)
+ return 0;
+
+ return 16;
}
-static int icl_gamma_precision(const struct intel_crtc_state *crtc_state)
+static bool icl_has_post_csc_lut(const struct intel_crtc_state *crtc_state)
{
- if ((crtc_state->gamma_mode & POST_CSC_GAMMA_ENABLE) == 0)
+ if (crtc_state->c8_planes)
+ return true;
+
+ return crtc_state->gamma_mode & POST_CSC_GAMMA_ENABLE;
+}
+
+static bool icl_has_pre_csc_lut(const struct intel_crtc_state *crtc_state)
+{
+ return crtc_state->gamma_mode & PRE_CSC_GAMMA_ENABLE;
+}
+
+static int icl_post_csc_lut_precision(const struct intel_crtc_state *crtc_state)
+{
+ if (!icl_has_post_csc_lut(crtc_state))
return 0;
switch (crtc_state->gamma_mode & GAMMA_MODE_MODE_MASK) {
@@ -1738,7 +2420,7 @@ static int icl_gamma_precision(const struct intel_crtc_state *crtc_state)
return 8;
case GAMMA_MODE_MODE_10BIT:
return 10;
- case GAMMA_MODE_MODE_12BIT_MULTI_SEGMENTED:
+ case GAMMA_MODE_MODE_12BIT_MULTI_SEG:
return 16;
default:
MISSING_CASE(crtc_state->gamma_mode);
@@ -1746,26 +2428,12 @@ static int icl_gamma_precision(const struct intel_crtc_state *crtc_state)
}
}
-int intel_color_get_gamma_bit_precision(const struct intel_crtc_state *crtc_state)
+static int icl_pre_csc_lut_precision(const struct intel_crtc_state *crtc_state)
{
- struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
- struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
-
- if (HAS_GMCH(dev_priv)) {
- if (IS_CHERRYVIEW(dev_priv))
- return chv_gamma_precision(crtc_state);
- else
- return i9xx_gamma_precision(crtc_state);
- } else {
- if (DISPLAY_VER(dev_priv) >= 11)
- return icl_gamma_precision(crtc_state);
- else if (DISPLAY_VER(dev_priv) == 10)
- return glk_gamma_precision(crtc_state);
- else if (IS_IRONLAKE(dev_priv))
- return ilk_gamma_precision(crtc_state);
- }
+ if (!icl_has_pre_csc_lut(crtc_state))
+ return 0;
- return 0;
+ return 16;
}
static bool err_check(struct drm_color_lut *lut1,
@@ -1776,9 +2444,9 @@ static bool err_check(struct drm_color_lut *lut1,
((abs((long)lut2->green - lut1->green)) <= err);
}
-static bool intel_color_lut_entries_equal(struct drm_color_lut *lut1,
- struct drm_color_lut *lut2,
- int lut_size, u32 err)
+static bool intel_lut_entries_equal(struct drm_color_lut *lut1,
+ struct drm_color_lut *lut2,
+ int lut_size, u32 err)
{
int i;
@@ -1790,9 +2458,9 @@ static bool intel_color_lut_entries_equal(struct drm_color_lut *lut1,
return true;
}
-bool intel_color_lut_equal(struct drm_property_blob *blob1,
- struct drm_property_blob *blob2,
- u32 gamma_mode, u32 bit_precision)
+static bool intel_lut_equal(const struct drm_property_blob *blob1,
+ const struct drm_property_blob *blob2,
+ int check_size, int precision)
{
struct drm_color_lut *lut1, *lut2;
int lut_size1, lut_size2;
@@ -1801,40 +2469,134 @@ bool intel_color_lut_equal(struct drm_property_blob *blob1,
if (!blob1 != !blob2)
return false;
+ if (!blob1 != !precision)
+ return false;
+
if (!blob1)
return true;
lut_size1 = drm_color_lut_size(blob1);
lut_size2 = drm_color_lut_size(blob2);
- /* check sw and hw lut size */
if (lut_size1 != lut_size2)
return false;
+ if (check_size > lut_size1)
+ return false;
+
lut1 = blob1->data;
lut2 = blob2->data;
- err = 0xffff >> bit_precision;
+ err = 0xffff >> precision;
- /* check sw and hw lut entry to be equal */
- switch (gamma_mode & GAMMA_MODE_MODE_MASK) {
- case GAMMA_MODE_MODE_8BIT:
- case GAMMA_MODE_MODE_10BIT:
- if (!intel_color_lut_entries_equal(lut1, lut2,
- lut_size2, err))
- return false;
- break;
- case GAMMA_MODE_MODE_12BIT_MULTI_SEGMENTED:
- if (!intel_color_lut_entries_equal(lut1, lut2,
- 9, err))
- return false;
- break;
- default:
- MISSING_CASE(gamma_mode);
- return false;
- }
+ if (!check_size)
+ check_size = lut_size1;
- return true;
+ return intel_lut_entries_equal(lut1, lut2, check_size, err);
+}
+
+static bool i9xx_lut_equal(const struct intel_crtc_state *crtc_state,
+ const struct drm_property_blob *blob1,
+ const struct drm_property_blob *blob2,
+ bool is_pre_csc_lut)
+{
+ int check_size = 0;
+
+ if (is_pre_csc_lut)
+ return intel_lut_equal(blob1, blob2, 0,
+ i9xx_pre_csc_lut_precision(crtc_state));
+
+ /* 10bit mode last entry is implicit, just skip it */
+ if (crtc_state->gamma_mode == GAMMA_MODE_MODE_10BIT)
+ check_size = 128;
+
+ return intel_lut_equal(blob1, blob2, check_size,
+ i9xx_post_csc_lut_precision(crtc_state));
+}
+
+static bool i965_lut_equal(const struct intel_crtc_state *crtc_state,
+ const struct drm_property_blob *blob1,
+ const struct drm_property_blob *blob2,
+ bool is_pre_csc_lut)
+{
+ if (is_pre_csc_lut)
+ return intel_lut_equal(blob1, blob2, 0,
+ i9xx_pre_csc_lut_precision(crtc_state));
+ else
+ return intel_lut_equal(blob1, blob2, 0,
+ i965_post_csc_lut_precision(crtc_state));
+}
+
+static bool chv_lut_equal(const struct intel_crtc_state *crtc_state,
+ const struct drm_property_blob *blob1,
+ const struct drm_property_blob *blob2,
+ bool is_pre_csc_lut)
+{
+ if (is_pre_csc_lut)
+ return intel_lut_equal(blob1, blob2, 0,
+ chv_pre_csc_lut_precision(crtc_state));
+ else
+ return intel_lut_equal(blob1, blob2, 0,
+ chv_post_csc_lut_precision(crtc_state));
+}
+
+static bool ilk_lut_equal(const struct intel_crtc_state *crtc_state,
+ const struct drm_property_blob *blob1,
+ const struct drm_property_blob *blob2,
+ bool is_pre_csc_lut)
+{
+ if (is_pre_csc_lut)
+ return intel_lut_equal(blob1, blob2, 0,
+ ilk_pre_csc_lut_precision(crtc_state));
+ else
+ return intel_lut_equal(blob1, blob2, 0,
+ ilk_post_csc_lut_precision(crtc_state));
+}
+
+static bool ivb_lut_equal(const struct intel_crtc_state *crtc_state,
+ const struct drm_property_blob *blob1,
+ const struct drm_property_blob *blob2,
+ bool is_pre_csc_lut)
+{
+ if (is_pre_csc_lut)
+ return intel_lut_equal(blob1, blob2, 0,
+ ivb_pre_csc_lut_precision(crtc_state));
+ else
+ return intel_lut_equal(blob1, blob2, 0,
+ ivb_post_csc_lut_precision(crtc_state));
+}
+
+static bool glk_lut_equal(const struct intel_crtc_state *crtc_state,
+ const struct drm_property_blob *blob1,
+ const struct drm_property_blob *blob2,
+ bool is_pre_csc_lut)
+{
+ if (is_pre_csc_lut)
+ return intel_lut_equal(blob1, blob2, 0,
+ glk_pre_csc_lut_precision(crtc_state));
+ else
+ return intel_lut_equal(blob1, blob2, 0,
+ glk_post_csc_lut_precision(crtc_state));
+}
+
+static bool icl_lut_equal(const struct intel_crtc_state *crtc_state,
+ const struct drm_property_blob *blob1,
+ const struct drm_property_blob *blob2,
+ bool is_pre_csc_lut)
+{
+ int check_size = 0;
+
+ if (is_pre_csc_lut)
+ return intel_lut_equal(blob1, blob2, 0,
+ icl_pre_csc_lut_precision(crtc_state));
+
+ /* hw readout broken except for the super fine segment :( */
+ if ((crtc_state->gamma_mode & GAMMA_MODE_MODE_MASK) ==
+ GAMMA_MODE_MODE_12BIT_MULTI_SEG)
+ check_size = 9;
+
+ return intel_lut_equal(blob1, blob2, check_size,
+ icl_post_csc_lut_precision(crtc_state));
}
static struct drm_property_blob *i9xx_read_lut_8(struct intel_crtc *crtc)
@@ -1846,7 +2608,7 @@ static struct drm_property_blob *i9xx_read_lut_8(struct intel_crtc *crtc)
int i;
blob = drm_property_create_blob(&dev_priv->drm,
- sizeof(struct drm_color_lut) * LEGACY_LUT_LENGTH,
+ sizeof(lut[0]) * LEGACY_LUT_LENGTH,
NULL);
if (IS_ERR(blob))
return NULL;
@@ -1862,14 +2624,53 @@ static struct drm_property_blob *i9xx_read_lut_8(struct intel_crtc *crtc)
return blob;
}
+static struct drm_property_blob *i9xx_read_lut_10(struct intel_crtc *crtc)
+{
+ struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
+ u32 lut_size = INTEL_INFO(dev_priv)->display.color.gamma_lut_size;
+ enum pipe pipe = crtc->pipe;
+ struct drm_property_blob *blob;
+ struct drm_color_lut *lut;
+ u32 ldw, udw;
+ int i;
+
+ blob = drm_property_create_blob(&dev_priv->drm,
+ lut_size * sizeof(lut[0]), NULL);
+ if (IS_ERR(blob))
+ return NULL;
+
+ lut = blob->data;
+
+ for (i = 0; i < lut_size - 1; i++) {
+ ldw = intel_de_read_fw(dev_priv, PALETTE(pipe, 2 * i + 0));
+ udw = intel_de_read_fw(dev_priv, PALETTE(pipe, 2 * i + 1));
+
+ i9xx_lut_10_pack(&lut[i], ldw, udw);
+ }
+
+ i9xx_lut_10_pack_slope(&lut[i], ldw, udw);
+
+ return blob;
+}
+
static void i9xx_read_luts(struct intel_crtc_state *crtc_state)
{
struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
- if (!crtc_state->gamma_enable)
+ if (!crtc_state->gamma_enable && !crtc_state->c8_planes)
return;
- crtc_state->hw.gamma_lut = i9xx_read_lut_8(crtc);
+ switch (crtc_state->gamma_mode) {
+ case GAMMA_MODE_MODE_8BIT:
+ crtc_state->post_csc_lut = i9xx_read_lut_8(crtc);
+ break;
+ case GAMMA_MODE_MODE_10BIT:
+ crtc_state->post_csc_lut = i9xx_read_lut_10(crtc);
+ break;
+ default:
+ MISSING_CASE(crtc_state->gamma_mode);
+ break;
+ }
}
static struct drm_property_blob *i965_read_lut_10p6(struct intel_crtc *crtc)
@@ -1881,7 +2682,7 @@ static struct drm_property_blob *i965_read_lut_10p6(struct intel_crtc *crtc)
struct drm_color_lut *lut;
blob = drm_property_create_blob(&dev_priv->drm,
- sizeof(struct drm_color_lut) * lut_size,
+ sizeof(lut[0]) * lut_size,
NULL);
if (IS_ERR(blob))
return NULL;
@@ -1906,25 +2707,32 @@ static void i965_read_luts(struct intel_crtc_state *crtc_state)
{
struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
- if (!crtc_state->gamma_enable)
+ if (!crtc_state->gamma_enable && !crtc_state->c8_planes)
return;
- if (crtc_state->gamma_mode == GAMMA_MODE_MODE_8BIT)
- crtc_state->hw.gamma_lut = i9xx_read_lut_8(crtc);
- else
- crtc_state->hw.gamma_lut = i965_read_lut_10p6(crtc);
+ switch (crtc_state->gamma_mode) {
+ case GAMMA_MODE_MODE_8BIT:
+ crtc_state->post_csc_lut = i9xx_read_lut_8(crtc);
+ break;
+ case GAMMA_MODE_MODE_10BIT:
+ crtc_state->post_csc_lut = i965_read_lut_10p6(crtc);
+ break;
+ default:
+ MISSING_CASE(crtc_state->gamma_mode);
+ break;
+ }
}
-static struct drm_property_blob *chv_read_cgm_gamma(struct intel_crtc *crtc)
+static struct drm_property_blob *chv_read_cgm_degamma(struct intel_crtc *crtc)
{
struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
- int i, lut_size = INTEL_INFO(dev_priv)->display.color.gamma_lut_size;
+ int i, lut_size = INTEL_INFO(dev_priv)->display.color.degamma_lut_size;
enum pipe pipe = crtc->pipe;
struct drm_property_blob *blob;
struct drm_color_lut *lut;
blob = drm_property_create_blob(&dev_priv->drm,
- sizeof(struct drm_color_lut) * lut_size,
+ sizeof(lut[0]) * lut_size,
NULL);
if (IS_ERR(blob))
return NULL;
@@ -1932,8 +2740,34 @@ static struct drm_property_blob *chv_read_cgm_gamma(struct intel_crtc *crtc)
lut = blob->data;
for (i = 0; i < lut_size; i++) {
- u32 ldw = intel_de_read_fw(dev_priv, CGM_PIPE_GAMMA(pipe, i, 0));
- u32 udw = intel_de_read_fw(dev_priv, CGM_PIPE_GAMMA(pipe, i, 1));
+ u32 ldw = intel_de_read_fw(dev_priv, CGM_PIPE_DEGAMMA(pipe, i, 0));
+ u32 udw = intel_de_read_fw(dev_priv, CGM_PIPE_DEGAMMA(pipe, i, 1));
+
+ chv_cgm_degamma_pack(&lut[i], ldw, udw);
+ }
+
+ return blob;
+}
+
+static struct drm_property_blob *chv_read_cgm_gamma(struct intel_crtc *crtc)
+{
+ struct drm_i915_private *i915 = to_i915(crtc->base.dev);
+ int i, lut_size = INTEL_INFO(i915)->display.color.gamma_lut_size;
+ enum pipe pipe = crtc->pipe;
+ struct drm_property_blob *blob;
+ struct drm_color_lut *lut;
+
+ blob = drm_property_create_blob(&i915->drm,
+ sizeof(lut[0]) * lut_size,
+ NULL);
+ if (IS_ERR(blob))
+ return NULL;
+
+ lut = blob->data;
+
+ for (i = 0; i < lut_size; i++) {
+ u32 ldw = intel_de_read_fw(i915, CGM_PIPE_GAMMA(pipe, i, 0));
+ u32 udw = intel_de_read_fw(i915, CGM_PIPE_GAMMA(pipe, i, 1));
chv_cgm_gamma_pack(&lut[i], ldw, udw);
}
@@ -1945,22 +2779,25 @@ static void chv_read_luts(struct intel_crtc_state *crtc_state)
{
struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
+ if (crtc_state->cgm_mode & CGM_PIPE_MODE_DEGAMMA)
+ crtc_state->pre_csc_lut = chv_read_cgm_degamma(crtc);
+
if (crtc_state->cgm_mode & CGM_PIPE_MODE_GAMMA)
- crtc_state->hw.gamma_lut = chv_read_cgm_gamma(crtc);
+ crtc_state->post_csc_lut = chv_read_cgm_gamma(crtc);
else
i965_read_luts(crtc_state);
}
static struct drm_property_blob *ilk_read_lut_8(struct intel_crtc *crtc)
{
- struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
+ struct drm_i915_private *i915 = to_i915(crtc->base.dev);
enum pipe pipe = crtc->pipe;
struct drm_property_blob *blob;
struct drm_color_lut *lut;
int i;
- blob = drm_property_create_blob(&dev_priv->drm,
- sizeof(struct drm_color_lut) * LEGACY_LUT_LENGTH,
+ blob = drm_property_create_blob(&i915->drm,
+ sizeof(lut[0]) * LEGACY_LUT_LENGTH,
NULL);
if (IS_ERR(blob))
return NULL;
@@ -1968,7 +2805,7 @@ static struct drm_property_blob *ilk_read_lut_8(struct intel_crtc *crtc)
lut = blob->data;
for (i = 0; i < LEGACY_LUT_LENGTH; i++) {
- u32 val = intel_de_read_fw(dev_priv, LGC_PALETTE(pipe, i));
+ u32 val = intel_de_read_fw(i915, LGC_PALETTE(pipe, i));
i9xx_lut_8_pack(&lut[i], val);
}
@@ -1978,14 +2815,14 @@ static struct drm_property_blob *ilk_read_lut_8(struct intel_crtc *crtc)
static struct drm_property_blob *ilk_read_lut_10(struct intel_crtc *crtc)
{
- struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
- int i, lut_size = INTEL_INFO(dev_priv)->display.color.gamma_lut_size;
+ struct drm_i915_private *i915 = to_i915(crtc->base.dev);
+ int i, lut_size = INTEL_INFO(i915)->display.color.gamma_lut_size;
enum pipe pipe = crtc->pipe;
struct drm_property_blob *blob;
struct drm_color_lut *lut;
- blob = drm_property_create_blob(&dev_priv->drm,
- sizeof(struct drm_color_lut) * lut_size,
+ blob = drm_property_create_blob(&i915->drm,
+ sizeof(lut[0]) * lut_size,
NULL);
if (IS_ERR(blob))
return NULL;
@@ -1993,7 +2830,7 @@ static struct drm_property_blob *ilk_read_lut_10(struct intel_crtc *crtc)
lut = blob->data;
for (i = 0; i < lut_size; i++) {
- u32 val = intel_de_read_fw(dev_priv, PREC_PALETTE(pipe, i));
+ u32 val = intel_de_read_fw(i915, PREC_PALETTE(pipe, i));
ilk_lut_10_pack(&lut[i], val);
}
@@ -2004,19 +2841,88 @@ static struct drm_property_blob *ilk_read_lut_10(struct intel_crtc *crtc)
static void ilk_read_luts(struct intel_crtc_state *crtc_state)
{
struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
+ struct drm_property_blob **blob =
+ ilk_has_post_csc_lut(crtc_state) ?
+ &crtc_state->post_csc_lut : &crtc_state->pre_csc_lut;
- if (!crtc_state->gamma_enable)
+ if (!crtc_state->gamma_enable && !crtc_state->c8_planes)
return;
- if ((crtc_state->csc_mode & CSC_POSITION_BEFORE_GAMMA) == 0)
+ switch (crtc_state->gamma_mode) {
+ case GAMMA_MODE_MODE_8BIT:
+ *blob = ilk_read_lut_8(crtc);
+ break;
+ case GAMMA_MODE_MODE_10BIT:
+ *blob = ilk_read_lut_10(crtc);
+ break;
+ default:
+ MISSING_CASE(crtc_state->gamma_mode);
+ break;
+ }
+}
+
+/*
+ * IVB/HSW Bspec / PAL_PREC_INDEX:
+ * "Restriction : Index auto increment mode is not
+ * supported and must not be enabled."
+ */
+static struct drm_property_blob *ivb_read_lut_10(struct intel_crtc *crtc,
+ u32 prec_index)
+{
+ struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
+ int i, lut_size = ivb_lut_10_size(prec_index);
+ enum pipe pipe = crtc->pipe;
+ struct drm_property_blob *blob;
+ struct drm_color_lut *lut;
+
+ blob = drm_property_create_blob(&dev_priv->drm,
+ sizeof(lut[0]) * lut_size,
+ NULL);
+ if (IS_ERR(blob))
+ return NULL;
+
+ lut = blob->data;
+
+ for (i = 0; i < lut_size; i++) {
+ u32 val;
+
+ intel_de_write_fw(dev_priv, PREC_PAL_INDEX(pipe),
+ prec_index + i);
+ val = intel_de_read_fw(dev_priv, PREC_PAL_DATA(pipe));
+
+ ilk_lut_10_pack(&lut[i], val);
+ }
+
+ intel_de_write_fw(dev_priv, PREC_PAL_INDEX(pipe),
+ PAL_PREC_INDEX_VALUE(0));
+
+ return blob;
+}
+
+static void ivb_read_luts(struct intel_crtc_state *crtc_state)
+{
+ struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
+ struct drm_property_blob **blob =
+ ilk_has_post_csc_lut(crtc_state) ?
+ &crtc_state->post_csc_lut : &crtc_state->pre_csc_lut;
+
+ if (!crtc_state->gamma_enable && !crtc_state->c8_planes)
return;
switch (crtc_state->gamma_mode) {
case GAMMA_MODE_MODE_8BIT:
- crtc_state->hw.gamma_lut = ilk_read_lut_8(crtc);
+ *blob = ilk_read_lut_8(crtc);
+ break;
+ case GAMMA_MODE_MODE_SPLIT:
+ crtc_state->pre_csc_lut =
+ ivb_read_lut_10(crtc, PAL_PREC_SPLIT_MODE |
+ PAL_PREC_INDEX_VALUE(0));
+ crtc_state->post_csc_lut =
+ ivb_read_lut_10(crtc, PAL_PREC_SPLIT_MODE |
+ PAL_PREC_INDEX_VALUE(512));
break;
case GAMMA_MODE_MODE_10BIT:
- crtc_state->hw.gamma_lut = ilk_read_lut_10(crtc);
+ *blob = ivb_read_lut_10(crtc, PAL_PREC_INDEX_VALUE(0));
break;
default:
MISSING_CASE(crtc_state->gamma_mode);
@@ -2028,33 +2934,106 @@ static void ilk_read_luts(struct intel_crtc_state *crtc_state)
static struct drm_property_blob *bdw_read_lut_10(struct intel_crtc *crtc,
u32 prec_index)
{
- struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
- int i, hw_lut_size = ivb_lut_10_size(prec_index);
- int lut_size = INTEL_INFO(dev_priv)->display.color.gamma_lut_size;
+ struct drm_i915_private *i915 = to_i915(crtc->base.dev);
+ int i, lut_size = ivb_lut_10_size(prec_index);
enum pipe pipe = crtc->pipe;
struct drm_property_blob *blob;
struct drm_color_lut *lut;
- drm_WARN_ON(&dev_priv->drm, lut_size != hw_lut_size);
+ blob = drm_property_create_blob(&i915->drm,
+ sizeof(lut[0]) * lut_size,
+ NULL);
+ if (IS_ERR(blob))
+ return NULL;
+
+ lut = blob->data;
+
+ intel_de_write_fw(i915, PREC_PAL_INDEX(pipe),
+ prec_index);
+ intel_de_write_fw(i915, PREC_PAL_INDEX(pipe),
+ PAL_PREC_AUTO_INCREMENT |
+ prec_index);
+
+ for (i = 0; i < lut_size; i++) {
+ u32 val = intel_de_read_fw(i915, PREC_PAL_DATA(pipe));
+
+ ilk_lut_10_pack(&lut[i], val);
+ }
+
+ intel_de_write_fw(i915, PREC_PAL_INDEX(pipe),
+ PAL_PREC_INDEX_VALUE(0));
+
+ return blob;
+}
+
+static void bdw_read_luts(struct intel_crtc_state *crtc_state)
+{
+ struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
+ struct drm_property_blob **blob =
+ ilk_has_post_csc_lut(crtc_state) ?
+ &crtc_state->post_csc_lut : &crtc_state->pre_csc_lut;
+
+ if (!crtc_state->gamma_enable && !crtc_state->c8_planes)
+ return;
+
+ switch (crtc_state->gamma_mode) {
+ case GAMMA_MODE_MODE_8BIT:
+ *blob = ilk_read_lut_8(crtc);
+ break;
+ case GAMMA_MODE_MODE_SPLIT:
+ crtc_state->pre_csc_lut =
+ bdw_read_lut_10(crtc, PAL_PREC_SPLIT_MODE |
+ PAL_PREC_INDEX_VALUE(0));
+ crtc_state->post_csc_lut =
+ bdw_read_lut_10(crtc, PAL_PREC_SPLIT_MODE |
+ PAL_PREC_INDEX_VALUE(512));
+ break;
+ case GAMMA_MODE_MODE_10BIT:
+ *blob = bdw_read_lut_10(crtc, PAL_PREC_INDEX_VALUE(0));
+ break;
+ default:
+ MISSING_CASE(crtc_state->gamma_mode);
+ break;
+ }
+}
+
+static struct drm_property_blob *glk_read_degamma_lut(struct intel_crtc *crtc)
+{
+ struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
+ int i, lut_size = INTEL_INFO(dev_priv)->display.color.degamma_lut_size;
+ enum pipe pipe = crtc->pipe;
+ struct drm_property_blob *blob;
+ struct drm_color_lut *lut;
blob = drm_property_create_blob(&dev_priv->drm,
- sizeof(struct drm_color_lut) * lut_size,
+ sizeof(lut[0]) * lut_size,
NULL);
if (IS_ERR(blob))
return NULL;
lut = blob->data;
- intel_de_write_fw(dev_priv, PREC_PAL_INDEX(pipe),
- prec_index | PAL_PREC_AUTO_INCREMENT);
+ /*
+ * When setting the auto-increment bit, the hardware seems to
+ * ignore the index bits, so we need to reset it to index 0
+ * separately.
+ */
+ intel_de_write_fw(dev_priv, PRE_CSC_GAMC_INDEX(pipe),
+ PRE_CSC_GAMC_INDEX_VALUE(0));
+ intel_de_write_fw(dev_priv, PRE_CSC_GAMC_INDEX(pipe),
+ PRE_CSC_GAMC_AUTO_INCREMENT |
+ PRE_CSC_GAMC_INDEX_VALUE(0));
for (i = 0; i < lut_size; i++) {
- u32 val = intel_de_read_fw(dev_priv, PREC_PAL_DATA(pipe));
+ u32 val = intel_de_read_fw(dev_priv, PRE_CSC_GAMC_DATA(pipe));
- ilk_lut_10_pack(&lut[i], val);
+ lut[i].red = val;
+ lut[i].green = val;
+ lut[i].blue = val;
}
- intel_de_write_fw(dev_priv, PREC_PAL_INDEX(pipe), 0);
+ intel_de_write_fw(dev_priv, PRE_CSC_GAMC_INDEX(pipe),
+ PRE_CSC_GAMC_INDEX_VALUE(0));
return blob;
}
@@ -2063,15 +3042,18 @@ static void glk_read_luts(struct intel_crtc_state *crtc_state)
{
struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
- if (!crtc_state->gamma_enable)
+ if (crtc_state->csc_enable)
+ crtc_state->pre_csc_lut = glk_read_degamma_lut(crtc);
+
+ if (!crtc_state->gamma_enable && !crtc_state->c8_planes)
return;
switch (crtc_state->gamma_mode) {
case GAMMA_MODE_MODE_8BIT:
- crtc_state->hw.gamma_lut = ilk_read_lut_8(crtc);
+ crtc_state->post_csc_lut = ilk_read_lut_8(crtc);
break;
case GAMMA_MODE_MODE_10BIT:
- crtc_state->hw.gamma_lut = bdw_read_lut_10(crtc, PAL_PREC_INDEX_VALUE(0));
+ crtc_state->post_csc_lut = bdw_read_lut_10(crtc, PAL_PREC_INDEX_VALUE(0));
break;
default:
MISSING_CASE(crtc_state->gamma_mode);
@@ -2082,31 +3064,35 @@ static void glk_read_luts(struct intel_crtc_state *crtc_state)
static struct drm_property_blob *
icl_read_lut_multi_segment(struct intel_crtc *crtc)
{
- struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
- int i, lut_size = INTEL_INFO(dev_priv)->display.color.gamma_lut_size;
+ struct drm_i915_private *i915 = to_i915(crtc->base.dev);
+ int i, lut_size = INTEL_INFO(i915)->display.color.gamma_lut_size;
enum pipe pipe = crtc->pipe;
struct drm_property_blob *blob;
struct drm_color_lut *lut;
- blob = drm_property_create_blob(&dev_priv->drm,
- sizeof(struct drm_color_lut) * lut_size,
+ blob = drm_property_create_blob(&i915->drm,
+ sizeof(lut[0]) * lut_size,
NULL);
if (IS_ERR(blob))
return NULL;
lut = blob->data;
- intel_de_write_fw(dev_priv, PREC_PAL_MULTI_SEG_INDEX(pipe),
- PAL_PREC_AUTO_INCREMENT);
+ intel_de_write_fw(i915, PREC_PAL_MULTI_SEG_INDEX(pipe),
+ PAL_PREC_MULTI_SEG_INDEX_VALUE(0));
+ intel_de_write_fw(i915, PREC_PAL_MULTI_SEG_INDEX(pipe),
+ PAL_PREC_MULTI_SEG_AUTO_INCREMENT |
+ PAL_PREC_MULTI_SEG_INDEX_VALUE(0));
for (i = 0; i < 9; i++) {
- u32 ldw = intel_de_read_fw(dev_priv, PREC_PAL_MULTI_SEG_DATA(pipe));
- u32 udw = intel_de_read_fw(dev_priv, PREC_PAL_MULTI_SEG_DATA(pipe));
+ u32 ldw = intel_de_read_fw(i915, PREC_PAL_MULTI_SEG_DATA(pipe));
+ u32 udw = intel_de_read_fw(i915, PREC_PAL_MULTI_SEG_DATA(pipe));
- icl_lut_multi_seg_pack(&lut[i], ldw, udw);
+ ilk_lut_12p4_pack(&lut[i], ldw, udw);
}
- intel_de_write_fw(dev_priv, PREC_PAL_MULTI_SEG_INDEX(pipe), 0);
+ intel_de_write_fw(i915, PREC_PAL_MULTI_SEG_INDEX(pipe),
+ PAL_PREC_MULTI_SEG_INDEX_VALUE(0));
/*
* FIXME readouts from PAL_PREC_DATA register aren't giving
@@ -2121,18 +3107,21 @@ static void icl_read_luts(struct intel_crtc_state *crtc_state)
{
struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
- if ((crtc_state->gamma_mode & POST_CSC_GAMMA_ENABLE) == 0)
+ if (icl_has_pre_csc_lut(crtc_state))
+ crtc_state->pre_csc_lut = glk_read_degamma_lut(crtc);
+
+ if (!icl_has_post_csc_lut(crtc_state))
return;
switch (crtc_state->gamma_mode & GAMMA_MODE_MODE_MASK) {
case GAMMA_MODE_MODE_8BIT:
- crtc_state->hw.gamma_lut = ilk_read_lut_8(crtc);
+ crtc_state->post_csc_lut = ilk_read_lut_8(crtc);
break;
case GAMMA_MODE_MODE_10BIT:
- crtc_state->hw.gamma_lut = bdw_read_lut_10(crtc, PAL_PREC_INDEX_VALUE(0));
+ crtc_state->post_csc_lut = bdw_read_lut_10(crtc, PAL_PREC_INDEX_VALUE(0));
break;
- case GAMMA_MODE_MODE_12BIT_MULTI_SEGMENTED:
- crtc_state->hw.gamma_lut = icl_read_lut_multi_segment(crtc);
+ case GAMMA_MODE_MODE_12BIT_MULTI_SEG:
+ crtc_state->post_csc_lut = icl_read_lut_multi_segment(crtc);
break;
default:
MISSING_CASE(crtc_state->gamma_mode);
@@ -2145,6 +3134,7 @@ static const struct intel_color_funcs chv_color_funcs = {
.color_commit_arm = i9xx_color_commit_arm,
.load_luts = chv_load_luts,
.read_luts = chv_read_luts,
+ .lut_equal = chv_lut_equal,
};
static const struct intel_color_funcs i965_color_funcs = {
@@ -2152,6 +3142,7 @@ static const struct intel_color_funcs i965_color_funcs = {
.color_commit_arm = i9xx_color_commit_arm,
.load_luts = i965_load_luts,
.read_luts = i965_read_luts,
+ .lut_equal = i965_lut_equal,
};
static const struct intel_color_funcs i9xx_color_funcs = {
@@ -2159,30 +3150,44 @@ static const struct intel_color_funcs i9xx_color_funcs = {
.color_commit_arm = i9xx_color_commit_arm,
.load_luts = i9xx_load_luts,
.read_luts = i9xx_read_luts,
+ .lut_equal = i9xx_lut_equal,
+};
+
+static const struct intel_color_funcs tgl_color_funcs = {
+ .color_check = icl_color_check,
+ .color_commit_noarm = icl_color_commit_noarm,
+ .color_commit_arm = icl_color_commit_arm,
+ .load_luts = icl_load_luts,
+ .read_luts = icl_read_luts,
+ .lut_equal = icl_lut_equal,
};
static const struct intel_color_funcs icl_color_funcs = {
.color_check = icl_color_check,
.color_commit_noarm = icl_color_commit_noarm,
- .color_commit_arm = skl_color_commit_arm,
+ .color_commit_arm = icl_color_commit_arm,
+ .color_post_update = icl_color_post_update,
.load_luts = icl_load_luts,
.read_luts = icl_read_luts,
+ .lut_equal = icl_lut_equal,
};
static const struct intel_color_funcs glk_color_funcs = {
.color_check = glk_color_check,
- .color_commit_noarm = ilk_color_commit_noarm,
+ .color_commit_noarm = skl_color_commit_noarm,
.color_commit_arm = skl_color_commit_arm,
.load_luts = glk_load_luts,
.read_luts = glk_read_luts,
+ .lut_equal = glk_lut_equal,
};
static const struct intel_color_funcs skl_color_funcs = {
.color_check = ivb_color_check,
- .color_commit_noarm = ilk_color_commit_noarm,
+ .color_commit_noarm = skl_color_commit_noarm,
.color_commit_arm = skl_color_commit_arm,
.load_luts = bdw_load_luts,
- .read_luts = NULL,
+ .read_luts = bdw_read_luts,
+ .lut_equal = ivb_lut_equal,
};
static const struct intel_color_funcs bdw_color_funcs = {
@@ -2190,7 +3195,8 @@ static const struct intel_color_funcs bdw_color_funcs = {
.color_commit_noarm = ilk_color_commit_noarm,
.color_commit_arm = hsw_color_commit_arm,
.load_luts = bdw_load_luts,
- .read_luts = NULL,
+ .read_luts = bdw_read_luts,
+ .lut_equal = ivb_lut_equal,
};
static const struct intel_color_funcs hsw_color_funcs = {
@@ -2198,7 +3204,8 @@ static const struct intel_color_funcs hsw_color_funcs = {
.color_commit_noarm = ilk_color_commit_noarm,
.color_commit_arm = hsw_color_commit_arm,
.load_luts = ivb_load_luts,
- .read_luts = NULL,
+ .read_luts = ivb_read_luts,
+ .lut_equal = ivb_lut_equal,
};
static const struct intel_color_funcs ivb_color_funcs = {
@@ -2206,7 +3213,8 @@ static const struct intel_color_funcs ivb_color_funcs = {
.color_commit_noarm = ilk_color_commit_noarm,
.color_commit_arm = ilk_color_commit_arm,
.load_luts = ivb_load_luts,
- .read_luts = NULL,
+ .read_luts = ivb_read_luts,
+ .lut_equal = ivb_lut_equal,
};
static const struct intel_color_funcs ilk_color_funcs = {
@@ -2215,43 +3223,77 @@ static const struct intel_color_funcs ilk_color_funcs = {
.color_commit_arm = ilk_color_commit_arm,
.load_luts = ilk_load_luts,
.read_luts = ilk_read_luts,
+ .lut_equal = ilk_lut_equal,
};
-void intel_color_init(struct intel_crtc *crtc)
+void intel_color_crtc_init(struct intel_crtc *crtc)
{
- struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
- bool has_ctm = INTEL_INFO(dev_priv)->display.color.degamma_lut_size != 0;
+ struct drm_i915_private *i915 = to_i915(crtc->base.dev);
+ int degamma_lut_size, gamma_lut_size;
+ bool has_ctm;
drm_mode_crtc_set_gamma_size(&crtc->base, 256);
- if (HAS_GMCH(dev_priv)) {
- if (IS_CHERRYVIEW(dev_priv)) {
- dev_priv->display.funcs.color = &chv_color_funcs;
- } else if (DISPLAY_VER(dev_priv) >= 4) {
- dev_priv->display.funcs.color = &i965_color_funcs;
- } else {
- dev_priv->display.funcs.color = &i9xx_color_funcs;
- }
+ gamma_lut_size = INTEL_INFO(i915)->display.color.gamma_lut_size;
+ degamma_lut_size = INTEL_INFO(i915)->display.color.degamma_lut_size;
+ has_ctm = degamma_lut_size != 0;
+
+ /*
+ * "DPALETTE_A: NOTE: The 8-bit (non-10-bit) mode is the
+ * only mode supported by Alviso and Grantsdale."
+ *
+ * Actually looks like this affects all of gen3.
+ * Confirmed on alv,cst,pnv. Mobile gen2 parts (alm,mgm)
+ * are confirmed not to suffer from this restriction.
+ */
+ if (DISPLAY_VER(i915) == 3 && crtc->pipe == PIPE_A)
+ gamma_lut_size = 256;
+
+ drm_crtc_enable_color_mgmt(&crtc->base, degamma_lut_size,
+ has_ctm, gamma_lut_size);
+}
+
+int intel_color_init(struct drm_i915_private *i915)
+{
+ struct drm_property_blob *blob;
+
+ if (DISPLAY_VER(i915) != 10)
+ return 0;
+
+ blob = create_linear_lut(i915, INTEL_INFO(i915)->display.color.degamma_lut_size);
+ if (IS_ERR(blob))
+ return PTR_ERR(blob);
+
+ i915->display.color.glk_linear_degamma_lut = blob;
+
+ return 0;
+}
+
+void intel_color_init_hooks(struct drm_i915_private *i915)
+{
+ if (HAS_GMCH(i915)) {
+ if (IS_CHERRYVIEW(i915))
+ i915->display.funcs.color = &chv_color_funcs;
+ else if (DISPLAY_VER(i915) >= 4)
+ i915->display.funcs.color = &i965_color_funcs;
+ else
+ i915->display.funcs.color = &i9xx_color_funcs;
} else {
- if (DISPLAY_VER(dev_priv) >= 11)
- dev_priv->display.funcs.color = &icl_color_funcs;
- else if (DISPLAY_VER(dev_priv) == 10)
- dev_priv->display.funcs.color = &glk_color_funcs;
- else if (DISPLAY_VER(dev_priv) == 9)
- dev_priv->display.funcs.color = &skl_color_funcs;
- else if (DISPLAY_VER(dev_priv) == 8)
- dev_priv->display.funcs.color = &bdw_color_funcs;
- else if (DISPLAY_VER(dev_priv) == 7) {
- if (IS_HASWELL(dev_priv))
- dev_priv->display.funcs.color = &hsw_color_funcs;
- else
- dev_priv->display.funcs.color = &ivb_color_funcs;
- } else
- dev_priv->display.funcs.color = &ilk_color_funcs;
- }
-
- drm_crtc_enable_color_mgmt(&crtc->base,
- INTEL_INFO(dev_priv)->display.color.degamma_lut_size,
- has_ctm,
- INTEL_INFO(dev_priv)->display.color.gamma_lut_size);
+ if (DISPLAY_VER(i915) >= 12)
+ i915->display.funcs.color = &tgl_color_funcs;
+ else if (DISPLAY_VER(i915) == 11)
+ i915->display.funcs.color = &icl_color_funcs;
+ else if (DISPLAY_VER(i915) == 10)
+ i915->display.funcs.color = &glk_color_funcs;
+ else if (DISPLAY_VER(i915) == 9)
+ i915->display.funcs.color = &skl_color_funcs;
+ else if (DISPLAY_VER(i915) == 8)
+ i915->display.funcs.color = &bdw_color_funcs;
+ else if (IS_HASWELL(i915))
+ i915->display.funcs.color = &hsw_color_funcs;
+ else if (DISPLAY_VER(i915) == 7)
+ i915->display.funcs.color = &ivb_color_funcs;
+ else
+ i915->display.funcs.color = &ilk_color_funcs;
+ }
}
diff --git a/drivers/gpu/drm/i915/display/intel_color.h b/drivers/gpu/drm/i915/display/intel_color.h
index fd873425e082..8002492be709 100644
--- a/drivers/gpu/drm/i915/display/intel_color.h
+++ b/drivers/gpu/drm/i915/display/intel_color.h
@@ -10,17 +10,24 @@
struct intel_crtc_state;
struct intel_crtc;
+struct drm_i915_private;
struct drm_property_blob;
-void intel_color_init(struct intel_crtc *crtc);
+void intel_color_init_hooks(struct drm_i915_private *i915);
+int intel_color_init(struct drm_i915_private *i915);
+void intel_color_crtc_init(struct intel_crtc *crtc);
int intel_color_check(struct intel_crtc_state *crtc_state);
+void intel_color_prepare_commit(struct intel_crtc_state *crtc_state);
+void intel_color_cleanup_commit(struct intel_crtc_state *crtc_state);
void intel_color_commit_noarm(const struct intel_crtc_state *crtc_state);
void intel_color_commit_arm(const struct intel_crtc_state *crtc_state);
+void intel_color_post_update(const struct intel_crtc_state *crtc_state);
void intel_color_load_luts(const struct intel_crtc_state *crtc_state);
void intel_color_get_config(struct intel_crtc_state *crtc_state);
-int intel_color_get_gamma_bit_precision(const struct intel_crtc_state *crtc_state);
-bool intel_color_lut_equal(struct drm_property_blob *blob1,
- struct drm_property_blob *blob2,
- u32 gamma_mode, u32 bit_precision);
+bool intel_color_lut_equal(const struct intel_crtc_state *crtc_state,
+ const struct drm_property_blob *blob1,
+ const struct drm_property_blob *blob2,
+ bool is_pre_csc_lut);
+void intel_color_assert_luts(const struct intel_crtc_state *crtc_state);
#endif /* __INTEL_COLOR_H__ */
diff --git a/drivers/gpu/drm/i915/display/intel_combo_phy.c b/drivers/gpu/drm/i915/display/intel_combo_phy.c
index 64890f39c3cc..922a6d87b553 100644
--- a/drivers/gpu/drm/i915/display/intel_combo_phy.c
+++ b/drivers/gpu/drm/i915/display/intel_combo_phy.c
@@ -3,6 +3,7 @@
* Copyright © 2018 Intel Corporation
*/
+#include "i915_reg.h"
#include "intel_combo_phy.h"
#include "intel_combo_phy_regs.h"
#include "intel_de.h"
@@ -53,7 +54,6 @@ static const struct icl_procmon {
static const struct icl_procmon *
icl_get_procmon_ref_values(struct drm_i915_private *dev_priv, enum phy phy)
{
- const struct icl_procmon *procmon;
u32 val;
val = intel_de_read(dev_priv, ICL_PORT_COMP_DW3(phy));
@@ -62,37 +62,27 @@ icl_get_procmon_ref_values(struct drm_i915_private *dev_priv, enum phy phy)
MISSING_CASE(val);
fallthrough;
case VOLTAGE_INFO_0_85V | PROCESS_INFO_DOT_0:
- procmon = &icl_procmon_values[PROCMON_0_85V_DOT_0];
- break;
+ return &icl_procmon_values[PROCMON_0_85V_DOT_0];
case VOLTAGE_INFO_0_95V | PROCESS_INFO_DOT_0:
- procmon = &icl_procmon_values[PROCMON_0_95V_DOT_0];
- break;
+ return &icl_procmon_values[PROCMON_0_95V_DOT_0];
case VOLTAGE_INFO_0_95V | PROCESS_INFO_DOT_1:
- procmon = &icl_procmon_values[PROCMON_0_95V_DOT_1];
- break;
+ return &icl_procmon_values[PROCMON_0_95V_DOT_1];
case VOLTAGE_INFO_1_05V | PROCESS_INFO_DOT_0:
- procmon = &icl_procmon_values[PROCMON_1_05V_DOT_0];
- break;
+ return &icl_procmon_values[PROCMON_1_05V_DOT_0];
case VOLTAGE_INFO_1_05V | PROCESS_INFO_DOT_1:
- procmon = &icl_procmon_values[PROCMON_1_05V_DOT_1];
- break;
+ return &icl_procmon_values[PROCMON_1_05V_DOT_1];
}
-
- return procmon;
}
static void icl_set_procmon_ref_values(struct drm_i915_private *dev_priv,
enum phy phy)
{
const struct icl_procmon *procmon;
- u32 val;
procmon = icl_get_procmon_ref_values(dev_priv, phy);
- val = intel_de_read(dev_priv, ICL_PORT_COMP_DW1(phy));
- val &= ~((0xff << 16) | 0xff);
- val |= procmon->dw1;
- intel_de_write(dev_priv, ICL_PORT_COMP_DW1(phy), val);
+ intel_de_rmw(dev_priv, ICL_PORT_COMP_DW1(phy),
+ (0xff << 16) | 0xff, procmon->dw1);
intel_de_write(dev_priv, ICL_PORT_COMP_DW9(phy), procmon->dw9);
intel_de_write(dev_priv, ICL_PORT_COMP_DW10(phy), procmon->dw10);
@@ -243,8 +233,7 @@ static bool icl_combo_phy_verify_state(struct drm_i915_private *dev_priv,
ICL_PORT_TX_DW8_ODCC_CLK_DIV_SEL_DIV2);
ret &= check_phy_reg(dev_priv, phy, ICL_PORT_PCS_DW1_LN(0, phy),
- DCC_MODE_SELECT_MASK,
- DCC_MODE_SELECT_CONTINUOSLY);
+ DCC_MODE_SELECT_MASK, RUN_DCC_ONCE);
}
ret &= icl_verify_procmon_ref_values(dev_priv, phy);
@@ -274,7 +263,6 @@ void intel_combo_phy_power_up_lanes(struct drm_i915_private *dev_priv,
int lane_count, bool lane_reversal)
{
u8 lane_mask;
- u32 val;
if (is_dsi) {
drm_WARN_ON(&dev_priv->drm, lane_reversal);
@@ -315,10 +303,8 @@ void intel_combo_phy_power_up_lanes(struct drm_i915_private *dev_priv,
}
}
- val = intel_de_read(dev_priv, ICL_PORT_CL_DW10(phy));
- val &= ~PWR_DOWN_LN_MASK;
- val |= lane_mask;
- intel_de_write(dev_priv, ICL_PORT_CL_DW10(phy), val);
+ intel_de_rmw(dev_priv, ICL_PORT_CL_DW10(phy),
+ PWR_DOWN_LN_MASK, lane_mask);
}
static void icl_combo_phys_init(struct drm_i915_private *dev_priv)
@@ -367,25 +353,19 @@ skip_phy_misc:
val = intel_de_read(dev_priv, ICL_PORT_PCS_DW1_LN(0, phy));
val &= ~DCC_MODE_SELECT_MASK;
- val |= DCC_MODE_SELECT_CONTINUOSLY;
+ val |= RUN_DCC_ONCE;
intel_de_write(dev_priv, ICL_PORT_PCS_DW1_GRP(phy), val);
}
icl_set_procmon_ref_values(dev_priv, phy);
- if (phy_is_master(dev_priv, phy)) {
- val = intel_de_read(dev_priv, ICL_PORT_COMP_DW8(phy));
- val |= IREFGEN;
- intel_de_write(dev_priv, ICL_PORT_COMP_DW8(phy), val);
- }
-
- val = intel_de_read(dev_priv, ICL_PORT_COMP_DW0(phy));
- val |= COMP_INIT;
- intel_de_write(dev_priv, ICL_PORT_COMP_DW0(phy), val);
+ if (phy_is_master(dev_priv, phy))
+ intel_de_rmw(dev_priv, ICL_PORT_COMP_DW8(phy),
+ 0, IREFGEN);
- val = intel_de_read(dev_priv, ICL_PORT_CL_DW5(phy));
- val |= CL_POWER_DOWN_ENABLE;
- intel_de_write(dev_priv, ICL_PORT_CL_DW5(phy), val);
+ intel_de_rmw(dev_priv, ICL_PORT_COMP_DW0(phy), 0, COMP_INIT);
+ intel_de_rmw(dev_priv, ICL_PORT_CL_DW5(phy),
+ 0, CL_POWER_DOWN_ENABLE);
}
}
@@ -394,8 +374,6 @@ static void icl_combo_phys_uninit(struct drm_i915_private *dev_priv)
enum phy phy;
for_each_combo_phy_reverse(dev_priv, phy) {
- u32 val;
-
if (phy == PHY_A &&
!icl_combo_phy_verify_state(dev_priv, phy)) {
if (IS_TIGERLAKE(dev_priv) || IS_DG1(dev_priv)) {
@@ -417,14 +395,11 @@ static void icl_combo_phys_uninit(struct drm_i915_private *dev_priv)
if (!has_phy_misc(dev_priv, phy))
goto skip_phy_misc;
- val = intel_de_read(dev_priv, ICL_PHY_MISC(phy));
- val |= ICL_PHY_MISC_DE_IO_COMP_PWR_DOWN;
- intel_de_write(dev_priv, ICL_PHY_MISC(phy), val);
+ intel_de_rmw(dev_priv, ICL_PHY_MISC(phy), 0,
+ ICL_PHY_MISC_DE_IO_COMP_PWR_DOWN);
skip_phy_misc:
- val = intel_de_read(dev_priv, ICL_PORT_COMP_DW0(phy));
- val &= ~COMP_INIT;
- intel_de_write(dev_priv, ICL_PORT_COMP_DW0(phy), val);
+ intel_de_rmw(dev_priv, ICL_PORT_COMP_DW0(phy), COMP_INIT, 0);
}
}
diff --git a/drivers/gpu/drm/i915/display/intel_combo_phy_regs.h b/drivers/gpu/drm/i915/display/intel_combo_phy_regs.h
index 2ed65193ca19..b0983edccf3f 100644
--- a/drivers/gpu/drm/i915/display/intel_combo_phy_regs.h
+++ b/drivers/gpu/drm/i915/display/intel_combo_phy_regs.h
@@ -90,8 +90,8 @@
#define ICL_PORT_PCS_DW1_AUX(phy) _MMIO(_ICL_PORT_PCS_DW_AUX(1, phy))
#define ICL_PORT_PCS_DW1_GRP(phy) _MMIO(_ICL_PORT_PCS_DW_GRP(1, phy))
#define ICL_PORT_PCS_DW1_LN(ln, phy) _MMIO(_ICL_PORT_PCS_DW_LN(1, ln, phy))
-#define DCC_MODE_SELECT_MASK (0x3 << 20)
-#define DCC_MODE_SELECT_CONTINUOSLY (0x3 << 20)
+#define DCC_MODE_SELECT_MASK REG_GENMASK(21, 20)
+#define RUN_DCC_ONCE REG_FIELD_PREP(DCC_MODE_SELECT_MASK, 0)
#define COMMON_KEEPER_EN (1 << 26)
#define LATENCY_OPTIM_MASK (0x3 << 2)
#define LATENCY_OPTIM_VAL(x) ((x) << 2)
diff --git a/drivers/gpu/drm/i915/display/intel_connector.c b/drivers/gpu/drm/i915/display/intel_connector.c
index 6d5cbeb8df4d..257afac34839 100644
--- a/drivers/gpu/drm/i915/display/intel_connector.c
+++ b/drivers/gpu/drm/i915/display/intel_connector.c
@@ -54,7 +54,7 @@ int intel_connector_init(struct intel_connector *connector)
__drm_atomic_helper_connector_reset(&connector->base,
&conn_state->base);
- INIT_LIST_HEAD(&connector->panel.fixed_modes);
+ intel_panel_init_alloc(connector);
return 0;
}
@@ -95,13 +95,10 @@ void intel_connector_destroy(struct drm_connector *connector)
{
struct intel_connector *intel_connector = to_intel_connector(connector);
- kfree(intel_connector->detect_edid);
+ drm_edid_free(intel_connector->detect_edid);
intel_hdcp_cleanup(intel_connector);
- if (!IS_ERR_OR_NULL(intel_connector->edid))
- kfree(intel_connector->edid);
-
intel_panel_fini(intel_connector);
drm_connector_cleanup(connector);
@@ -293,3 +290,21 @@ intel_attach_dp_colorspace_property(struct drm_connector *connector)
if (!drm_mode_create_dp_colorspace_property(connector))
drm_connector_attach_colorspace_property(connector);
}
+
+void
+intel_attach_scaling_mode_property(struct drm_connector *connector)
+{
+ struct drm_i915_private *i915 = to_i915(connector->dev);
+ u32 scaling_modes;
+
+ scaling_modes = BIT(DRM_MODE_SCALE_ASPECT) |
+ BIT(DRM_MODE_SCALE_FULLSCREEN);
+
+ /* On GMCH platforms borders are only possible on the LVDS port */
+ if (!HAS_GMCH(i915) || connector->connector_type == DRM_MODE_CONNECTOR_LVDS)
+ scaling_modes |= BIT(DRM_MODE_SCALE_CENTER);
+
+ drm_connector_attach_scaling_mode_property(connector, scaling_modes);
+
+ connector->state->scaling_mode = DRM_MODE_SCALE_ASPECT;
+}
diff --git a/drivers/gpu/drm/i915/display/intel_connector.h b/drivers/gpu/drm/i915/display/intel_connector.h
index 661a37a3c6d8..9d2bc261b204 100644
--- a/drivers/gpu/drm/i915/display/intel_connector.h
+++ b/drivers/gpu/drm/i915/display/intel_connector.h
@@ -6,7 +6,7 @@
#ifndef __INTEL_CONNECTOR_H__
#define __INTEL_CONNECTOR_H__
-#include "intel_display.h"
+#include <linux/types.h>
struct drm_connector;
struct edid;
@@ -32,5 +32,6 @@ void intel_attach_broadcast_rgb_property(struct drm_connector *connector);
void intel_attach_aspect_ratio_property(struct drm_connector *connector);
void intel_attach_hdmi_colorspace_property(struct drm_connector *connector);
void intel_attach_dp_colorspace_property(struct drm_connector *connector);
+void intel_attach_scaling_mode_property(struct drm_connector *connector);
#endif /* __INTEL_CONNECTOR_H__ */
diff --git a/drivers/gpu/drm/i915/display/intel_crt.c b/drivers/gpu/drm/i915/display/intel_crt.c
index 4a8ff2f97608..38e9c61c2344 100644
--- a/drivers/gpu/drm/i915/display/intel_crt.c
+++ b/drivers/gpu/drm/i915/display/intel_crt.c
@@ -34,6 +34,8 @@
#include <drm/drm_probe_helper.h>
#include "i915_drv.h"
+#include "i915_irq.h"
+#include "i915_reg.h"
#include "intel_connector.h"
#include "intel_crt.h"
#include "intel_crtc.h"
@@ -42,6 +44,7 @@
#include "intel_de.h"
#include "intel_display_types.h"
#include "intel_fdi.h"
+#include "intel_fdi_regs.h"
#include "intel_fifo_underrun.h"
#include "intel_gmbus.h"
#include "intel_hotplug.h"
@@ -258,7 +261,7 @@ static void hsw_post_disable_crt(struct intel_atomic_state *state,
ilk_pfit_disable(old_crtc_state);
- intel_ddi_disable_pipe_clock(old_crtc_state);
+ intel_ddi_disable_transcoder_clock(old_crtc_state);
pch_post_disable_crt(state, encoder, old_crtc_state, old_conn_state);
@@ -298,7 +301,7 @@ static void hsw_pre_enable_crt(struct intel_atomic_state *state,
hsw_fdi_link_train(encoder, crtc_state);
- intel_ddi_enable_pipe_clock(encoder, crtc_state);
+ intel_ddi_enable_transcoder_clock(encoder, crtc_state);
}
static void hsw_enable_crt(struct intel_atomic_state *state,
@@ -676,59 +679,50 @@ static bool intel_crt_detect_ddc(struct drm_connector *connector)
}
static enum drm_connector_status
-intel_crt_load_detect(struct intel_crt *crt, u32 pipe)
+intel_crt_load_detect(struct intel_crt *crt, enum pipe pipe)
{
struct drm_device *dev = crt->base.base.dev;
struct drm_i915_private *dev_priv = to_i915(dev);
- struct intel_uncore *uncore = &dev_priv->uncore;
+ enum transcoder cpu_transcoder = (enum transcoder)pipe;
u32 save_bclrpat;
u32 save_vtotal;
u32 vtotal, vactive;
u32 vsample;
u32 vblank, vblank_start, vblank_end;
u32 dsl;
- i915_reg_t bclrpat_reg, vtotal_reg,
- vblank_reg, vsync_reg, pipeconf_reg, pipe_dsl_reg;
u8 st00;
enum drm_connector_status status;
drm_dbg_kms(&dev_priv->drm, "starting load-detect on CRT\n");
- bclrpat_reg = BCLRPAT(pipe);
- vtotal_reg = VTOTAL(pipe);
- vblank_reg = VBLANK(pipe);
- vsync_reg = VSYNC(pipe);
- pipeconf_reg = PIPECONF(pipe);
- pipe_dsl_reg = PIPEDSL(pipe);
+ save_bclrpat = intel_de_read(dev_priv, BCLRPAT(cpu_transcoder));
+ save_vtotal = intel_de_read(dev_priv, TRANS_VTOTAL(cpu_transcoder));
+ vblank = intel_de_read(dev_priv, TRANS_VBLANK(cpu_transcoder));
- save_bclrpat = intel_uncore_read(uncore, bclrpat_reg);
- save_vtotal = intel_uncore_read(uncore, vtotal_reg);
- vblank = intel_uncore_read(uncore, vblank_reg);
+ vtotal = REG_FIELD_GET(VTOTAL_MASK, save_vtotal) + 1;
+ vactive = REG_FIELD_GET(VACTIVE_MASK, save_vtotal) + 1;
- vtotal = ((save_vtotal >> 16) & 0xfff) + 1;
- vactive = (save_vtotal & 0x7ff) + 1;
-
- vblank_start = (vblank & 0xfff) + 1;
- vblank_end = ((vblank >> 16) & 0xfff) + 1;
+ vblank_start = REG_FIELD_GET(VBLANK_START_MASK, vblank) + 1;
+ vblank_end = REG_FIELD_GET(VBLANK_END_MASK, vblank) + 1;
/* Set the border color to purple. */
- intel_uncore_write(uncore, bclrpat_reg, 0x500050);
+ intel_de_write(dev_priv, BCLRPAT(cpu_transcoder), 0x500050);
if (DISPLAY_VER(dev_priv) != 2) {
- u32 pipeconf = intel_uncore_read(uncore, pipeconf_reg);
- intel_uncore_write(uncore,
- pipeconf_reg,
- pipeconf | PIPECONF_FORCE_BORDER);
- intel_uncore_posting_read(uncore, pipeconf_reg);
+ u32 transconf = intel_de_read(dev_priv, TRANSCONF(cpu_transcoder));
+
+ intel_de_write(dev_priv, TRANSCONF(cpu_transcoder),
+ transconf | TRANSCONF_FORCE_BORDER);
+ intel_de_posting_read(dev_priv, TRANSCONF(cpu_transcoder));
/* Wait for next Vblank to substitue
* border color for Color info */
intel_crtc_wait_for_next_vblank(intel_crtc_for_pipe(dev_priv, pipe));
- st00 = intel_uncore_read8(uncore, _VGA_MSR_WRITE);
+ st00 = intel_de_read8(dev_priv, _VGA_MSR_WRITE);
status = ((st00 & (1 << 4)) != 0) ?
connector_status_connected :
connector_status_disconnected;
- intel_uncore_write(uncore, pipeconf_reg, pipeconf);
+ intel_de_write(dev_priv, TRANSCONF(cpu_transcoder), transconf);
} else {
bool restore_vblank = false;
int count, detect;
@@ -738,14 +732,13 @@ intel_crt_load_detect(struct intel_crt *crt, u32 pipe)
* Yes, this will flicker
*/
if (vblank_start <= vactive && vblank_end >= vtotal) {
- u32 vsync = intel_de_read(dev_priv, vsync_reg);
- u32 vsync_start = (vsync & 0xffff) + 1;
+ u32 vsync = intel_de_read(dev_priv, TRANS_VSYNC(cpu_transcoder));
+ u32 vsync_start = REG_FIELD_GET(VSYNC_START_MASK, vsync) + 1;
vblank_start = vsync_start;
- intel_uncore_write(uncore,
- vblank_reg,
- (vblank_start - 1) |
- ((vblank_end - 1) << 16));
+ intel_de_write(dev_priv, TRANS_VBLANK(cpu_transcoder),
+ VBLANK_START(vblank_start - 1) |
+ VBLANK_END(vblank_end - 1));
restore_vblank = true;
}
/* sample in the vertical border, selecting the larger one */
@@ -757,10 +750,9 @@ intel_crt_load_detect(struct intel_crt *crt, u32 pipe)
/*
* Wait for the border to be displayed
*/
- while (intel_uncore_read(uncore, pipe_dsl_reg) >= vactive)
+ while (intel_de_read(dev_priv, PIPEDSL(pipe)) >= vactive)
;
- while ((dsl = intel_uncore_read(uncore, pipe_dsl_reg)) <=
- vsample)
+ while ((dsl = intel_de_read(dev_priv, PIPEDSL(pipe))) <= vsample)
;
/*
* Watch ST00 for an entire scanline
@@ -770,14 +762,14 @@ intel_crt_load_detect(struct intel_crt *crt, u32 pipe)
do {
count++;
/* Read the ST00 VGA status register */
- st00 = intel_uncore_read8(uncore, _VGA_MSR_WRITE);
+ st00 = intel_de_read8(dev_priv, _VGA_MSR_WRITE);
if (st00 & (1 << 4))
detect++;
- } while ((intel_uncore_read(uncore, pipe_dsl_reg) == dsl));
+ } while ((intel_de_read(dev_priv, PIPEDSL(pipe)) == dsl));
/* restore vblank if necessary */
if (restore_vblank)
- intel_uncore_write(uncore, vblank_reg, vblank);
+ intel_de_write(dev_priv, TRANS_VBLANK(cpu_transcoder), vblank);
/*
* If more than 3/4 of the scanline detected a monitor,
* then it is assumed to be present. This works even on i830,
@@ -790,7 +782,7 @@ intel_crt_load_detect(struct intel_crt *crt, u32 pipe)
}
/* Restore previous settings */
- intel_uncore_write(uncore, bclrpat_reg, save_bclrpat);
+ intel_de_write(dev_priv, BCLRPAT(cpu_transcoder), save_bclrpat);
return status;
}
@@ -1044,17 +1036,14 @@ void intel_crt_init(struct drm_i915_private *dev_priv)
intel_connector_attach_encoder(intel_connector, &crt->base);
crt->base.type = INTEL_OUTPUT_ANALOG;
- crt->base.cloneable = (1 << INTEL_OUTPUT_DVO) | (1 << INTEL_OUTPUT_HDMI);
+ crt->base.cloneable = BIT(INTEL_OUTPUT_DVO) | BIT(INTEL_OUTPUT_HDMI);
if (IS_I830(dev_priv))
crt->base.pipe_mask = BIT(PIPE_A);
else
crt->base.pipe_mask = ~0;
- if (DISPLAY_VER(dev_priv) == 2)
- connector->interlace_allowed = 0;
- else
- connector->interlace_allowed = 1;
- connector->doublescan_allowed = 0;
+ if (DISPLAY_VER(dev_priv) != 2)
+ connector->interlace_allowed = true;
crt->adpa_reg = adpa_reg;
diff --git a/drivers/gpu/drm/i915/display/intel_crtc.c b/drivers/gpu/drm/i915/display/intel_crtc.c
index 6792a9056f46..ed45a6934854 100644
--- a/drivers/gpu/drm/i915/display/intel_crtc.c
+++ b/drivers/gpu/drm/i915/display/intel_crtc.c
@@ -25,9 +25,11 @@
#include "intel_display_types.h"
#include "intel_drrs.h"
#include "intel_dsi.h"
+#include "intel_fifo_underrun.h"
#include "intel_pipe_crc.h"
#include "intel_psr.h"
#include "intel_sprite.h"
+#include "intel_vblank.h"
#include "intel_vrr.h"
#include "skl_universal_plane.h"
@@ -210,7 +212,7 @@ static void intel_crtc_destroy(struct drm_crtc *_crtc)
static int intel_crtc_late_register(struct drm_crtc *crtc)
{
- intel_crtc_debugfs_add(crtc);
+ intel_crtc_debugfs_add(to_intel_crtc(crtc));
return 0;
}
@@ -313,6 +315,8 @@ int intel_crtc_init(struct drm_i915_private *dev_priv, enum pipe pipe)
}
crtc->plane_ids_mask |= BIT(primary->id);
+ intel_init_fifo_underrun_reporting(dev_priv, crtc, false);
+
for_each_sprite(dev_priv, pipe, sprite) {
struct intel_plane *plane;
@@ -365,9 +369,8 @@ int intel_crtc_init(struct drm_i915_private *dev_priv, enum pipe pipe)
BIT(DRM_SCALING_FILTER_DEFAULT) |
BIT(DRM_SCALING_FILTER_NEAREST_NEIGHBOR));
- intel_color_init(crtc);
-
- intel_crtc_drrs_init(crtc);
+ intel_color_crtc_init(crtc);
+ intel_drrs_crtc_init(crtc);
intel_crtc_crc_init(crtc);
cpu_latency_qos_add_request(&crtc->vblank_pm_qos, PM_QOS_DEFAULT_VALUE);
@@ -387,8 +390,7 @@ static bool intel_crtc_needs_vblank_work(const struct intel_crtc_state *crtc_sta
return crtc_state->hw.active &&
!intel_crtc_needs_modeset(crtc_state) &&
!crtc_state->preload_luts &&
- (crtc_state->uapi.color_mgmt_changed ||
- crtc_state->update_pipe);
+ intel_crtc_needs_color_update(crtc_state);
}
static void intel_crtc_vblank_work(struct kthread_work *base)
@@ -684,6 +686,14 @@ void intel_pipe_update_end(struct intel_crtc_state *new_crtc_state)
*/
intel_vrr_send_push(new_crtc_state);
+ /*
+ * Seamless M/N update may need to update frame timings.
+ *
+ * FIXME Should be synchronized with the start of vblank somehow...
+ */
+ if (new_crtc_state->seamless_m_n && intel_crtc_needs_fastset(new_crtc_state))
+ intel_crtc_update_active_timings(new_crtc_state);
+
local_irq_enable();
if (intel_vgpu_active(dev_priv))
diff --git a/drivers/gpu/drm/i915/display/intel_crtc_state_dump.c b/drivers/gpu/drm/i915/display/intel_crtc_state_dump.c
index e9212f69c360..54c8adc0702e 100644
--- a/drivers/gpu/drm/i915/display/intel_crtc_state_dump.c
+++ b/drivers/gpu/drm/i915/display/intel_crtc_state_dump.c
@@ -3,6 +3,8 @@
* Copyright © 2022 Intel Corporation
*/
+#include <drm/drm_edid.h>
+
#include "i915_drv.h"
#include "intel_crtc_state_dump.h"
#include "intel_display_types.h"
@@ -12,14 +14,16 @@
static void intel_dump_crtc_timings(struct drm_i915_private *i915,
const struct drm_display_mode *mode)
{
- drm_dbg_kms(&i915->drm, "crtc timings: %d %d %d %d %d %d %d %d %d, "
- "type: 0x%x flags: 0x%x\n",
+ drm_dbg_kms(&i915->drm, "crtc timings: clock=%d, "
+ "hd=%d hb=%d-%d hs=%d-%d ht=%d, "
+ "vd=%d vb=%d-%d vs=%d-%d vt=%d, "
+ "flags=0x%x\n",
mode->crtc_clock,
- mode->crtc_hdisplay, mode->crtc_hsync_start,
- mode->crtc_hsync_end, mode->crtc_htotal,
- mode->crtc_vdisplay, mode->crtc_vsync_start,
- mode->crtc_vsync_end, mode->crtc_vtotal,
- mode->type, mode->flags);
+ mode->crtc_hdisplay, mode->crtc_hblank_start, mode->crtc_hblank_end,
+ mode->crtc_hsync_start, mode->crtc_hsync_end, mode->crtc_htotal,
+ mode->crtc_vdisplay, mode->crtc_vblank_start, mode->crtc_vblank_end,
+ mode->crtc_vsync_start, mode->crtc_vsync_end, mode->crtc_vtotal,
+ mode->flags);
}
static void
@@ -56,6 +60,17 @@ intel_dump_dp_vsc_sdp(struct drm_i915_private *i915,
drm_dp_vsc_sdp_log(KERN_DEBUG, i915->drm.dev, vsc);
}
+static void
+intel_dump_buffer(struct drm_i915_private *i915,
+ const char *prefix, const u8 *buf, size_t len)
+{
+ if (!drm_debug_enabled(DRM_UT_KMS))
+ return;
+
+ print_hex_dump(KERN_DEBUG, prefix, DUMP_PREFIX_NONE,
+ 16, 0, buf, len, false);
+}
+
#define OUTPUT_TYPE(x) [INTEL_OUTPUT_ ## x] = #x
static const char * const output_type_str[] = {
@@ -108,7 +123,7 @@ static const char * const output_format_str[] = {
[INTEL_OUTPUT_FORMAT_YCBCR444] = "YCBCR4:4:4",
};
-static const char *output_formats(enum intel_output_format format)
+const char *intel_output_format_name(enum intel_output_format format)
{
if (format >= ARRAY_SIZE(output_format_str))
return "invalid";
@@ -166,7 +181,7 @@ void intel_crtc_state_dump(const struct intel_crtc_state *pipe_config,
"active: %s, output_types: %s (0x%x), output format: %s\n",
str_yes_no(pipe_config->hw.active),
buf, pipe_config->output_types,
- output_formats(pipe_config->output_format));
+ intel_output_format_name(pipe_config->output_format));
drm_dbg_kms(&i915->drm,
"cpu_transcoder: %s, pipe bpp: %i, dithering: %i\n",
@@ -236,6 +251,10 @@ void intel_crtc_state_dump(const struct intel_crtc_state *pipe_config,
intel_hdmi_infoframe_enable(DP_SDP_VSC))
intel_dump_dp_vsc_sdp(i915, &pipe_config->infoframes.vsc);
+ if (pipe_config->has_audio)
+ intel_dump_buffer(i915, "ELD: ", pipe_config->eld,
+ drm_eld_size(pipe_config->eld));
+
drm_dbg_kms(&i915->drm, "vrr: %s, vmin: %d, vmax: %d, pipeline full: %d, guardband: %d flipline: %d, vmin vblank: %d, vmax vblank: %d\n",
str_yes_no(pipe_config->vrr.enable),
pipe_config->vrr.vmin, pipe_config->vrr.vmax,
@@ -298,11 +317,13 @@ void intel_crtc_state_dump(const struct intel_crtc_state *pipe_config,
pipe_config->csc_mode, pipe_config->gamma_mode,
pipe_config->gamma_enable, pipe_config->csc_enable);
- drm_dbg_kms(&i915->drm, "degamma lut: %d entries, gamma lut: %d entries\n",
- pipe_config->hw.degamma_lut ?
- drm_color_lut_size(pipe_config->hw.degamma_lut) : 0,
- pipe_config->hw.gamma_lut ?
- drm_color_lut_size(pipe_config->hw.gamma_lut) : 0);
+ drm_dbg_kms(&i915->drm, "pre csc lut: %s%d entries, post csc lut: %d entries\n",
+ pipe_config->pre_csc_lut && pipe_config->pre_csc_lut ==
+ i915->display.color.glk_linear_degamma_lut ? "(linear) " : "",
+ pipe_config->pre_csc_lut ?
+ drm_color_lut_size(pipe_config->pre_csc_lut) : 0,
+ pipe_config->post_csc_lut ?
+ drm_color_lut_size(pipe_config->post_csc_lut) : 0);
dump_planes:
if (!state)
diff --git a/drivers/gpu/drm/i915/display/intel_crtc_state_dump.h b/drivers/gpu/drm/i915/display/intel_crtc_state_dump.h
index 9399c35b7e5e..780f3f1190d7 100644
--- a/drivers/gpu/drm/i915/display/intel_crtc_state_dump.h
+++ b/drivers/gpu/drm/i915/display/intel_crtc_state_dump.h
@@ -8,9 +8,11 @@
struct intel_crtc_state;
struct intel_atomic_state;
+enum intel_output_format;
void intel_crtc_state_dump(const struct intel_crtc_state *crtc_state,
struct intel_atomic_state *state,
const char *context);
+const char *intel_output_format_name(enum intel_output_format format);
#endif /* __INTEL_CRTC_STATE_H__ */
diff --git a/drivers/gpu/drm/i915/display/intel_cursor.c b/drivers/gpu/drm/i915/display/intel_cursor.c
index 87899e89b3a7..31bef0427377 100644
--- a/drivers/gpu/drm/i915/display/intel_cursor.c
+++ b/drivers/gpu/drm/i915/display/intel_cursor.c
@@ -10,17 +10,17 @@
#include <drm/drm_damage_helper.h>
#include <drm/drm_fourcc.h>
+#include "i915_reg.h"
#include "intel_atomic.h"
#include "intel_atomic_plane.h"
#include "intel_cursor.h"
#include "intel_de.h"
-#include "intel_display_types.h"
#include "intel_display.h"
+#include "intel_display_types.h"
#include "intel_fb.h"
#include "intel_fb_pin.h"
#include "intel_frontbuffer.h"
#include "intel_psr.h"
-#include "intel_sprite.h"
#include "skl_watermark.h"
/* Cursor formats */
@@ -531,9 +531,10 @@ static void i9xx_cursor_update_arm(struct intel_plane *plane,
skl_write_cursor_wm(plane, crtc_state);
if (plane_state)
- intel_psr2_program_plane_sel_fetch(plane, crtc_state, plane_state, 0);
+ intel_psr2_program_plane_sel_fetch_arm(plane, crtc_state,
+ plane_state);
else
- intel_psr2_disable_plane_sel_fetch(plane, crtc_state);
+ intel_psr2_disable_plane_sel_fetch_arm(plane, crtc_state);
if (plane->cursor.base != base ||
plane->cursor.size != fbc_ctl ||
@@ -631,8 +632,10 @@ intel_legacy_cursor_update(struct drm_plane *_plane,
*
* FIXME bigjoiner fastpath would be good
*/
- if (!crtc_state->hw.active || intel_crtc_needs_modeset(crtc_state) ||
- crtc_state->update_pipe || crtc_state->bigjoiner_pipes)
+ if (!crtc_state->hw.active ||
+ intel_crtc_needs_modeset(crtc_state) ||
+ intel_crtc_needs_fastset(crtc_state) ||
+ crtc_state->bigjoiner_pipes)
goto slow;
/*
diff --git a/drivers/gpu/drm/i915/display/intel_ddi.c b/drivers/gpu/drm/i915/display/intel_ddi.c
index 69ecf2a3d6c6..3a7b98837516 100644
--- a/drivers/gpu/drm/i915/display/intel_ddi.c
+++ b/drivers/gpu/drm/i915/display/intel_ddi.c
@@ -31,6 +31,7 @@
#include <drm/drm_privacy_screen_consumer.h>
#include "i915_drv.h"
+#include "i915_reg.h"
#include "intel_audio.h"
#include "intel_audio_regs.h"
#include "intel_backlight.h"
@@ -44,7 +45,9 @@
#include "intel_display_power.h"
#include "intel_display_types.h"
#include "intel_dkl_phy.h"
+#include "intel_dkl_phy_regs.h"
#include "intel_dp.h"
+#include "intel_dp_aux.h"
#include "intel_dp_link_training.h"
#include "intel_dp_mst.h"
#include "intel_dpio_phy.h"
@@ -55,15 +58,16 @@
#include "intel_hdcp.h"
#include "intel_hdmi.h"
#include "intel_hotplug.h"
+#include "intel_hti.h"
#include "intel_lspcon.h"
+#include "intel_mg_phy_regs.h"
#include "intel_pps.h"
#include "intel_psr.h"
#include "intel_quirks.h"
#include "intel_snps_phy.h"
-#include "intel_sprite.h"
#include "intel_tc.h"
-#include "intel_tc_phy_regs.h"
#include "intel_vdsc.h"
+#include "intel_vdsc_regs.h"
#include "intel_vrr.h"
#include "skl_scaler.h"
#include "skl_universal_plane.h"
@@ -86,7 +90,7 @@ static int intel_ddi_hdmi_level(struct intel_encoder *encoder,
{
int level;
- level = intel_bios_hdmi_level_shift(encoder);
+ level = intel_bios_hdmi_level_shift(encoder->devdata);
if (level < 0)
level = trans->hdmi_default_entry;
@@ -123,7 +127,7 @@ void hsw_prepare_dp_ddi_buffers(struct intel_encoder *encoder,
/* If we're boosting the current, set bit 31 of trans1 */
if (has_iboost(dev_priv) &&
- intel_bios_encoder_dp_boost_level(encoder->devdata))
+ intel_bios_dp_boost_level(encoder->devdata))
iboost_bit = DDI_BUF_BALANCE_LEG_ENABLE;
for (i = 0; i < n_entries; i++) {
@@ -155,7 +159,7 @@ static void hsw_prepare_hdmi_ddi_buffers(struct intel_encoder *encoder,
/* If we're boosting the current, set bit 31 of trans1 */
if (has_iboost(dev_priv) &&
- intel_bios_encoder_hdmi_boost_level(encoder->devdata))
+ intel_bios_hdmi_boost_level(encoder->devdata))
iboost_bit = DDI_BUF_BALANCE_LEG_ENABLE;
/* Entry 9 is for HDMI: */
@@ -182,6 +186,8 @@ void intel_wait_ddi_buf_idle(struct drm_i915_private *dev_priv,
static void intel_wait_ddi_buf_active(struct drm_i915_private *dev_priv,
enum port port)
{
+ enum phy phy = intel_port_to_phy(dev_priv, port);
+ int timeout_us;
int ret;
/* Wait > 518 usecs for DDI_BUF_CTL to be non idle */
@@ -190,8 +196,19 @@ static void intel_wait_ddi_buf_active(struct drm_i915_private *dev_priv,
return;
}
+ if (IS_DG2(dev_priv)) {
+ timeout_us = 1200;
+ } else if (DISPLAY_VER(dev_priv) >= 12) {
+ if (intel_phy_is_tc(dev_priv, phy))
+ timeout_us = 3000;
+ else
+ timeout_us = 1000;
+ } else {
+ timeout_us = 500;
+ }
+
ret = _wait_for(!(intel_de_read(dev_priv, DDI_BUF_CTL(port)) &
- DDI_BUF_IS_IDLE), IS_DG2(dev_priv) ? 1200 : 500, 10, 10);
+ DDI_BUF_IS_IDLE), timeout_us, 10, 10);
if (ret)
drm_err(&dev_priv->drm, "Timeout waiting for DDI BUF %c to get active\n",
@@ -628,19 +645,14 @@ int intel_ddi_toggle_hdcp_bits(struct intel_encoder *intel_encoder,
struct drm_i915_private *dev_priv = to_i915(dev);
intel_wakeref_t wakeref;
int ret = 0;
- u32 tmp;
wakeref = intel_display_power_get_if_enabled(dev_priv,
intel_encoder->power_domain);
if (drm_WARN_ON(dev, !wakeref))
return -ENXIO;
- tmp = intel_de_read(dev_priv, TRANS_DDI_FUNC_CTL(cpu_transcoder));
- if (enable)
- tmp |= hdcp_mask;
- else
- tmp &= ~hdcp_mask;
- intel_de_write(dev_priv, TRANS_DDI_FUNC_CTL(cpu_transcoder), tmp);
+ intel_de_rmw(dev_priv, TRANS_DDI_FUNC_CTL(cpu_transcoder),
+ hdcp_mask, enable ? hdcp_mask : 0);
intel_display_power_put(dev_priv, intel_encoder->power_domain, wakeref);
return ret;
}
@@ -845,22 +857,65 @@ bool intel_ddi_get_hw_state(struct intel_encoder *encoder,
}
static enum intel_display_power_domain
-intel_ddi_main_link_aux_domain(struct intel_digital_port *dig_port)
+intel_ddi_main_link_aux_domain(struct intel_digital_port *dig_port,
+ const struct intel_crtc_state *crtc_state)
{
- /* ICL+ HW requires corresponding AUX IOs to be powered up for PSR with
+ struct drm_i915_private *i915 = to_i915(dig_port->base.base.dev);
+ enum phy phy = intel_port_to_phy(i915, dig_port->base.port);
+
+ /*
+ * ICL+ HW requires corresponding AUX IOs to be powered up for PSR with
* DC states enabled at the same time, while for driver initiated AUX
* transfers we need the same AUX IOs to be powered but with DC states
- * disabled. Accordingly use the AUX power domain here which leaves DC
- * states enabled.
- * However, for non-A AUX ports the corresponding non-EDP transcoders
- * would have already enabled power well 2 and DC_OFF. This means we can
- * acquire a wider POWER_DOMAIN_AUX_{B,C,D,F} reference instead of a
- * specific AUX_IO reference without powering up any extra wells.
- * Note that PSR is enabled only on Port A even though this function
- * returns the correct domain for other ports too.
+ * disabled. Accordingly use the AUX_IO_<port> power domain here which
+ * leaves DC states enabled.
+ *
+ * Before MTL TypeC PHYs (in all TypeC modes and both DP/HDMI) also require
+ * AUX IO to be enabled, but all these require DC_OFF to be enabled as
+ * well, so we can acquire a wider AUX_<port> power domain reference
+ * instead of a specific AUX_IO_<port> reference without powering up any
+ * extra wells.
*/
- return dig_port->aux_ch == AUX_CH_A ? POWER_DOMAIN_AUX_IO_A :
- intel_aux_power_domain(dig_port);
+ if (intel_encoder_can_psr(&dig_port->base))
+ return intel_display_power_aux_io_domain(i915, dig_port->aux_ch);
+ else if (DISPLAY_VER(i915) < 14 &&
+ (intel_crtc_has_dp_encoder(crtc_state) ||
+ intel_phy_is_tc(i915, phy)))
+ return intel_aux_power_domain(dig_port);
+ else
+ return POWER_DOMAIN_INVALID;
+}
+
+static void
+main_link_aux_power_domain_get(struct intel_digital_port *dig_port,
+ const struct intel_crtc_state *crtc_state)
+{
+ struct drm_i915_private *i915 = to_i915(dig_port->base.base.dev);
+ enum intel_display_power_domain domain =
+ intel_ddi_main_link_aux_domain(dig_port, crtc_state);
+
+ drm_WARN_ON(&i915->drm, dig_port->aux_wakeref);
+
+ if (domain == POWER_DOMAIN_INVALID)
+ return;
+
+ dig_port->aux_wakeref = intel_display_power_get(i915, domain);
+}
+
+static void
+main_link_aux_power_domain_put(struct intel_digital_port *dig_port,
+ const struct intel_crtc_state *crtc_state)
+{
+ struct drm_i915_private *i915 = to_i915(dig_port->base.base.dev);
+ enum intel_display_power_domain domain =
+ intel_ddi_main_link_aux_domain(dig_port, crtc_state);
+ intel_wakeref_t wf;
+
+ wf = fetch_and_zero(&dig_port->aux_wakeref);
+ if (!wf)
+ return;
+
+ intel_display_power_put(i915, domain, wf);
}
static void intel_ddi_get_power_domains(struct intel_encoder *encoder,
@@ -868,7 +923,6 @@ static void intel_ddi_get_power_domains(struct intel_encoder *encoder,
{
struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
struct intel_digital_port *dig_port;
- enum phy phy = intel_port_to_phy(dev_priv, encoder->port);
/*
* TODO: Add support for MST encoders. Atm, the following should never
@@ -887,21 +941,11 @@ static void intel_ddi_get_power_domains(struct intel_encoder *encoder,
dig_port->ddi_io_power_domain);
}
- /*
- * AUX power is only needed for (e)DP mode, and for HDMI mode on TC
- * ports.
- */
- if (intel_crtc_has_dp_encoder(crtc_state) ||
- intel_phy_is_tc(dev_priv, phy)) {
- drm_WARN_ON(&dev_priv->drm, dig_port->aux_wakeref);
- dig_port->aux_wakeref =
- intel_display_power_get(dev_priv,
- intel_ddi_main_link_aux_domain(dig_port));
- }
+ main_link_aux_power_domain_get(dig_port, crtc_state);
}
-void intel_ddi_enable_pipe_clock(struct intel_encoder *encoder,
- const struct intel_crtc_state *crtc_state)
+void intel_ddi_enable_transcoder_clock(struct intel_encoder *encoder,
+ const struct intel_crtc_state *crtc_state)
{
struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
@@ -909,33 +953,34 @@ void intel_ddi_enable_pipe_clock(struct intel_encoder *encoder,
enum phy phy = intel_port_to_phy(dev_priv, encoder->port);
u32 val;
- if (cpu_transcoder != TRANSCODER_EDP) {
- if (DISPLAY_VER(dev_priv) >= 13)
- val = TGL_TRANS_CLK_SEL_PORT(phy);
- else if (DISPLAY_VER(dev_priv) >= 12)
- val = TGL_TRANS_CLK_SEL_PORT(encoder->port);
- else
- val = TRANS_CLK_SEL_PORT(encoder->port);
+ if (cpu_transcoder == TRANSCODER_EDP)
+ return;
- intel_de_write(dev_priv, TRANS_CLK_SEL(cpu_transcoder), val);
- }
+ if (DISPLAY_VER(dev_priv) >= 13)
+ val = TGL_TRANS_CLK_SEL_PORT(phy);
+ else if (DISPLAY_VER(dev_priv) >= 12)
+ val = TGL_TRANS_CLK_SEL_PORT(encoder->port);
+ else
+ val = TRANS_CLK_SEL_PORT(encoder->port);
+
+ intel_de_write(dev_priv, TRANS_CLK_SEL(cpu_transcoder), val);
}
-void intel_ddi_disable_pipe_clock(const struct intel_crtc_state *crtc_state)
+void intel_ddi_disable_transcoder_clock(const struct intel_crtc_state *crtc_state)
{
struct drm_i915_private *dev_priv = to_i915(crtc_state->uapi.crtc->dev);
enum transcoder cpu_transcoder = crtc_state->cpu_transcoder;
+ u32 val;
- if (cpu_transcoder != TRANSCODER_EDP) {
- if (DISPLAY_VER(dev_priv) >= 12)
- intel_de_write(dev_priv,
- TRANS_CLK_SEL(cpu_transcoder),
- TGL_TRANS_CLK_SEL_DISABLED);
- else
- intel_de_write(dev_priv,
- TRANS_CLK_SEL(cpu_transcoder),
- TRANS_CLK_SEL_DISABLED);
- }
+ if (cpu_transcoder == TRANSCODER_EDP)
+ return;
+
+ if (DISPLAY_VER(dev_priv) >= 12)
+ val = TGL_TRANS_CLK_SEL_DISABLED;
+ else
+ val = TRANS_CLK_SEL_DISABLED;
+
+ intel_de_write(dev_priv, TRANS_CLK_SEL(cpu_transcoder), val);
}
static void _skl_ddi_set_iboost(struct drm_i915_private *dev_priv,
@@ -961,9 +1006,9 @@ static void skl_ddi_set_iboost(struct intel_encoder *encoder,
u8 iboost;
if (intel_crtc_has_type(crtc_state, INTEL_OUTPUT_HDMI))
- iboost = intel_bios_encoder_hdmi_boost_level(encoder->devdata);
+ iboost = intel_bios_hdmi_boost_level(encoder->devdata);
else
- iboost = intel_bios_encoder_dp_boost_level(encoder->devdata);
+ iboost = intel_bios_dp_boost_level(encoder->devdata);
if (iboost == 0) {
const struct intel_ddi_buf_trans *trans;
@@ -1263,11 +1308,11 @@ static void tgl_dkl_phy_set_signal_levels(struct intel_encoder *encoder,
for (ln = 0; ln < 2; ln++) {
int level;
- intel_dkl_phy_write(dev_priv, DKL_TX_PMD_LANE_SUS(tc_port), ln, 0);
+ intel_dkl_phy_write(dev_priv, DKL_TX_PMD_LANE_SUS(tc_port, ln), 0);
level = intel_ddi_level(encoder, crtc_state, 2*ln+0);
- intel_dkl_phy_rmw(dev_priv, DKL_TX_DPCNTL0(tc_port), ln,
+ intel_dkl_phy_rmw(dev_priv, DKL_TX_DPCNTL0(tc_port, ln),
DKL_TX_PRESHOOT_COEFF_MASK |
DKL_TX_DE_EMPAHSIS_COEFF_MASK |
DKL_TX_VSWING_CONTROL_MASK,
@@ -1277,7 +1322,7 @@ static void tgl_dkl_phy_set_signal_levels(struct intel_encoder *encoder,
level = intel_ddi_level(encoder, crtc_state, 2*ln+1);
- intel_dkl_phy_rmw(dev_priv, DKL_TX_DPCNTL1(tc_port), ln,
+ intel_dkl_phy_rmw(dev_priv, DKL_TX_DPCNTL1(tc_port, ln),
DKL_TX_PRESHOOT_COEFF_MASK |
DKL_TX_DE_EMPAHSIS_COEFF_MASK |
DKL_TX_VSWING_CONTROL_MASK,
@@ -1285,7 +1330,7 @@ static void tgl_dkl_phy_set_signal_levels(struct intel_encoder *encoder,
DKL_TX_DE_EMPHASIS_COEFF(trans->entries[level].dkl.de_emphasis) |
DKL_TX_VSWING_CONTROL(trans->entries[level].dkl.vswing));
- intel_dkl_phy_rmw(dev_priv, DKL_TX_DPCNTL2(tc_port), ln,
+ intel_dkl_phy_rmw(dev_priv, DKL_TX_DPCNTL2(tc_port, ln),
DKL_TX_DP20BITMODE, 0);
if (IS_ALDERLAKE_P(dev_priv)) {
@@ -1304,7 +1349,7 @@ static void tgl_dkl_phy_set_signal_levels(struct intel_encoder *encoder,
val |= DKL_TX_DPCNTL2_CFG_LOADGENSELECT_TX2(0);
}
- intel_dkl_phy_rmw(dev_priv, DKL_TX_DPCNTL2(tc_port), ln,
+ intel_dkl_phy_rmw(dev_priv, DKL_TX_DPCNTL2(tc_port, ln),
DKL_TX_DPCNTL2_CFG_LOADGENSELECT_TX1_MASK |
DKL_TX_DPCNTL2_CFG_LOADGENSELECT_TX2_MASK,
val);
@@ -2017,8 +2062,8 @@ icl_program_mg_dp_mode(struct intel_digital_port *dig_port,
return;
if (DISPLAY_VER(dev_priv) >= 12) {
- ln0 = intel_dkl_phy_read(dev_priv, DKL_DP_MODE(tc_port), 0);
- ln1 = intel_dkl_phy_read(dev_priv, DKL_DP_MODE(tc_port), 1);
+ ln0 = intel_dkl_phy_read(dev_priv, DKL_DP_MODE(tc_port, 0));
+ ln1 = intel_dkl_phy_read(dev_priv, DKL_DP_MODE(tc_port, 1));
} else {
ln0 = intel_de_read(dev_priv, MG_DP_MODE(0, tc_port));
ln1 = intel_de_read(dev_priv, MG_DP_MODE(1, tc_port));
@@ -2079,8 +2124,8 @@ icl_program_mg_dp_mode(struct intel_digital_port *dig_port,
}
if (DISPLAY_VER(dev_priv) >= 12) {
- intel_dkl_phy_write(dev_priv, DKL_DP_MODE(tc_port), 0, ln0);
- intel_dkl_phy_write(dev_priv, DKL_DP_MODE(tc_port), 1, ln1);
+ intel_dkl_phy_write(dev_priv, DKL_DP_MODE(tc_port, 0), ln0);
+ intel_dkl_phy_write(dev_priv, DKL_DP_MODE(tc_port, 1), ln1);
} else {
intel_de_write(dev_priv, MG_DP_MODE(0, tc_port), ln0);
intel_de_write(dev_priv, MG_DP_MODE(1, tc_port), ln1);
@@ -2152,15 +2197,13 @@ static void intel_ddi_enable_fec(struct intel_encoder *encoder,
{
struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
struct intel_dp *intel_dp;
- u32 val;
if (!crtc_state->fec_enable)
return;
intel_dp = enc_to_intel_dp(encoder);
- val = intel_de_read(dev_priv, dp_tp_ctl_reg(encoder, crtc_state));
- val |= DP_TP_CTL_FEC_ENABLE;
- intel_de_write(dev_priv, dp_tp_ctl_reg(encoder, crtc_state), val);
+ intel_de_rmw(dev_priv, dp_tp_ctl_reg(encoder, crtc_state),
+ 0, DP_TP_CTL_FEC_ENABLE);
}
static void intel_ddi_disable_fec_state(struct intel_encoder *encoder,
@@ -2168,15 +2211,13 @@ static void intel_ddi_disable_fec_state(struct intel_encoder *encoder,
{
struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
struct intel_dp *intel_dp;
- u32 val;
if (!crtc_state->fec_enable)
return;
intel_dp = enc_to_intel_dp(encoder);
- val = intel_de_read(dev_priv, dp_tp_ctl_reg(encoder, crtc_state));
- val &= ~DP_TP_CTL_FEC_ENABLE;
- intel_de_write(dev_priv, dp_tp_ctl_reg(encoder, crtc_state), val);
+ intel_de_rmw(dev_priv, dp_tp_ctl_reg(encoder, crtc_state),
+ DP_TP_CTL_FEC_ENABLE, 0);
intel_de_posting_read(dev_priv, dp_tp_ctl_reg(encoder, crtc_state));
}
@@ -2339,7 +2380,7 @@ static void tgl_ddi_pre_enable_dp(struct intel_atomic_state *state,
* 7.a Configure Transcoder Clock Select to direct the Port clock to the
* Transcoder.
*/
- intel_ddi_enable_pipe_clock(encoder, crtc_state);
+ intel_ddi_enable_transcoder_clock(encoder, crtc_state);
if (HAS_DP20(dev_priv))
intel_ddi_config_transcoder_dp2(encoder, crtc_state);
@@ -2466,7 +2507,7 @@ static void hsw_ddi_pre_enable_dp(struct intel_atomic_state *state,
intel_ddi_enable_fec(encoder, crtc_state);
if (!is_mst)
- intel_ddi_enable_pipe_clock(encoder, crtc_state);
+ intel_ddi_enable_transcoder_clock(encoder, crtc_state);
intel_dsc_dp_pps_write(encoder, crtc_state);
}
@@ -2478,6 +2519,10 @@ static void intel_ddi_pre_enable_dp(struct intel_atomic_state *state,
{
struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
+ if (HAS_DP20(dev_priv))
+ intel_dp_128b132b_sdp_crc16(enc_to_intel_dp(encoder),
+ crtc_state);
+
if (DISPLAY_VER(dev_priv) >= 12)
tgl_ddi_pre_enable_dp(state, encoder, crtc_state, conn_state);
else
@@ -2508,7 +2553,7 @@ static void intel_ddi_pre_enable_hdmi(struct intel_atomic_state *state,
icl_program_mg_dp_mode(dig_port, crtc_state);
- intel_ddi_enable_pipe_clock(encoder, crtc_state);
+ intel_ddi_enable_transcoder_clock(encoder, crtc_state);
dig_port->set_infoframes(encoder,
crtc_state->has_infoframe,
@@ -2574,12 +2619,9 @@ static void intel_disable_ddi_buf(struct intel_encoder *encoder,
wait = true;
}
- if (intel_crtc_has_dp_encoder(crtc_state)) {
- val = intel_de_read(dev_priv, dp_tp_ctl_reg(encoder, crtc_state));
- val &= ~(DP_TP_CTL_ENABLE | DP_TP_CTL_LINK_TRAIN_MASK);
- val |= DP_TP_CTL_LINK_TRAIN_PAT1;
- intel_de_write(dev_priv, dp_tp_ctl_reg(encoder, crtc_state), val);
- }
+ if (intel_crtc_has_dp_encoder(crtc_state))
+ intel_de_rmw(dev_priv, dp_tp_ctl_reg(encoder, crtc_state),
+ DP_TP_CTL_ENABLE, 0);
/* Disable FEC in DP Sink */
intel_ddi_disable_fec_state(encoder, crtc_state);
@@ -2612,19 +2654,14 @@ static void intel_ddi_post_disable_dp(struct intel_atomic_state *state,
if (DISPLAY_VER(dev_priv) >= 12) {
if (is_mst) {
enum transcoder cpu_transcoder = old_crtc_state->cpu_transcoder;
- u32 val;
- val = intel_de_read(dev_priv,
- TRANS_DDI_FUNC_CTL(cpu_transcoder));
- val &= ~(TGL_TRANS_DDI_PORT_MASK |
- TRANS_DDI_MODE_SELECT_MASK);
- intel_de_write(dev_priv,
- TRANS_DDI_FUNC_CTL(cpu_transcoder),
- val);
+ intel_de_rmw(dev_priv, TRANS_DDI_FUNC_CTL(cpu_transcoder),
+ TGL_TRANS_DDI_PORT_MASK | TRANS_DDI_MODE_SELECT_MASK,
+ 0);
}
} else {
if (!is_mst)
- intel_ddi_disable_pipe_clock(old_crtc_state);
+ intel_ddi_disable_transcoder_clock(old_crtc_state);
}
intel_disable_ddi_buf(encoder, old_crtc_state);
@@ -2635,7 +2672,7 @@ static void intel_ddi_post_disable_dp(struct intel_atomic_state *state,
* transcoder"
*/
if (DISPLAY_VER(dev_priv) >= 12)
- intel_ddi_disable_pipe_clock(old_crtc_state);
+ intel_ddi_disable_transcoder_clock(old_crtc_state);
intel_pps_vdd_on(intel_dp);
intel_pps_off(intel_dp);
@@ -2661,12 +2698,12 @@ static void intel_ddi_post_disable_hdmi(struct intel_atomic_state *state,
old_crtc_state, old_conn_state);
if (DISPLAY_VER(dev_priv) < 12)
- intel_ddi_disable_pipe_clock(old_crtc_state);
+ intel_ddi_disable_transcoder_clock(old_crtc_state);
intel_disable_ddi_buf(encoder, old_crtc_state);
if (DISPLAY_VER(dev_priv) >= 12)
- intel_ddi_disable_pipe_clock(old_crtc_state);
+ intel_ddi_disable_transcoder_clock(old_crtc_state);
intel_display_power_put(dev_priv,
dig_port->ddi_io_power_domain,
@@ -2683,18 +2720,15 @@ static void intel_ddi_post_disable(struct intel_atomic_state *state,
const struct drm_connector_state *old_conn_state)
{
struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
- struct intel_digital_port *dig_port = enc_to_dig_port(encoder);
- enum phy phy = intel_port_to_phy(dev_priv, encoder->port);
- bool is_tc_port = intel_phy_is_tc(dev_priv, phy);
struct intel_crtc *slave_crtc;
if (!intel_crtc_has_type(old_crtc_state, INTEL_OUTPUT_DP_MST)) {
intel_crtc_vblank_off(old_crtc_state);
- intel_disable_transcoder(old_crtc_state);
-
intel_vrr_disable(old_crtc_state);
+ intel_disable_transcoder(old_crtc_state);
+
intel_ddi_disable_transcoder_func(old_crtc_state);
intel_dsc_disable(old_crtc_state);
@@ -2735,11 +2769,19 @@ static void intel_ddi_post_disable(struct intel_atomic_state *state,
else
intel_ddi_post_disable_dp(state, encoder, old_crtc_state,
old_conn_state);
+}
- if (intel_crtc_has_dp_encoder(old_crtc_state) || is_tc_port)
- intel_display_power_put(dev_priv,
- intel_ddi_main_link_aux_domain(dig_port),
- fetch_and_zero(&dig_port->aux_wakeref));
+static void intel_ddi_post_pll_disable(struct intel_atomic_state *state,
+ struct intel_encoder *encoder,
+ const struct intel_crtc_state *old_crtc_state,
+ const struct drm_connector_state *old_conn_state)
+{
+ struct drm_i915_private *i915 = to_i915(encoder->base.dev);
+ struct intel_digital_port *dig_port = enc_to_dig_port(encoder);
+ enum phy phy = intel_port_to_phy(i915, encoder->port);
+ bool is_tc_port = intel_phy_is_tc(i915, phy);
+
+ main_link_aux_power_domain_put(dig_port, old_crtc_state);
if (is_tc_port)
intel_tc_port_put_link(dig_port);
@@ -2901,6 +2943,8 @@ static void intel_enable_ddi_hdmi(struct intel_atomic_state *state,
}
intel_de_write(dev_priv, DDI_BUF_CTL(port), buf_ctl);
+ intel_wait_ddi_buf_active(dev_priv, port);
+
intel_audio_codec_enable(encoder, crtc_state, conn_state);
}
@@ -2914,10 +2958,13 @@ static void intel_enable_ddi(struct intel_atomic_state *state,
if (!intel_crtc_is_bigjoiner_slave(crtc_state))
intel_ddi_enable_transcoder_func(encoder, crtc_state);
- intel_vrr_enable(encoder, crtc_state);
+ /* Enable/Disable DP2.0 SDP split config before transcoder */
+ intel_audio_sdp_split_update(encoder, crtc_state);
intel_enable_transcoder(crtc_state);
+ intel_vrr_enable(encoder, crtc_state);
+
intel_crtc_vblank_on(crtc_state);
if (intel_crtc_has_type(crtc_state, INTEL_OUTPUT_HDMI))
@@ -3013,37 +3060,23 @@ void intel_ddi_update_pipe(struct intel_atomic_state *state,
intel_hdcp_update_pipe(state, encoder, crtc_state, conn_state);
}
-static void
-intel_ddi_update_prepare(struct intel_atomic_state *state,
- struct intel_encoder *encoder,
- struct intel_crtc *crtc)
+void intel_ddi_update_active_dpll(struct intel_atomic_state *state,
+ struct intel_encoder *encoder,
+ struct intel_crtc *crtc)
{
- struct drm_i915_private *i915 = to_i915(state->base.dev);
+ struct drm_i915_private *i915 = to_i915(encoder->base.dev);
struct intel_crtc_state *crtc_state =
- crtc ? intel_atomic_get_new_crtc_state(state, crtc) : NULL;
- int required_lanes = crtc_state ? crtc_state->lane_count : 1;
-
- drm_WARN_ON(state->base.dev, crtc && crtc->active);
-
- intel_tc_port_get_link(enc_to_dig_port(encoder),
- required_lanes);
- if (crtc_state && crtc_state->hw.active) {
- struct intel_crtc *slave_crtc;
+ intel_atomic_get_new_crtc_state(state, crtc);
+ struct intel_crtc *slave_crtc;
+ enum phy phy = intel_port_to_phy(i915, encoder->port);
- intel_update_active_dpll(state, crtc, encoder);
+ if (!intel_phy_is_tc(i915, phy))
+ return;
- for_each_intel_crtc_in_pipe_mask(&i915->drm, slave_crtc,
- intel_crtc_bigjoiner_slave_pipes(crtc_state))
- intel_update_active_dpll(state, slave_crtc, encoder);
- }
-}
-
-static void
-intel_ddi_update_complete(struct intel_atomic_state *state,
- struct intel_encoder *encoder,
- struct intel_crtc *crtc)
-{
- intel_tc_port_put_link(enc_to_dig_port(encoder));
+ intel_update_active_dpll(state, crtc, encoder);
+ for_each_intel_crtc_in_pipe_mask(&i915->drm, slave_crtc,
+ intel_crtc_bigjoiner_slave_pipes(crtc_state))
+ intel_update_active_dpll(state, slave_crtc, encoder);
}
static void
@@ -3057,16 +3090,16 @@ intel_ddi_pre_pll_enable(struct intel_atomic_state *state,
enum phy phy = intel_port_to_phy(dev_priv, encoder->port);
bool is_tc_port = intel_phy_is_tc(dev_priv, phy);
- if (is_tc_port)
- intel_tc_port_get_link(dig_port, crtc_state->lane_count);
+ if (is_tc_port) {
+ struct intel_crtc *master_crtc =
+ to_intel_crtc(crtc_state->uapi.crtc);
- if (intel_crtc_has_dp_encoder(crtc_state) || is_tc_port) {
- drm_WARN_ON(&dev_priv->drm, dig_port->aux_wakeref);
- dig_port->aux_wakeref =
- intel_display_power_get(dev_priv,
- intel_ddi_main_link_aux_domain(dig_port));
+ intel_tc_port_get_link(dig_port, crtc_state->lane_count);
+ intel_ddi_update_active_dpll(state, encoder, master_crtc);
}
+ main_link_aux_power_domain_get(dig_port, crtc_state);
+
if (is_tc_port && !intel_tc_port_in_tbt_alt_mode(dig_port))
/*
* Program the lane count for static/dynamic connections on
@@ -3085,7 +3118,7 @@ static void adlp_tbt_to_dp_alt_switch_wa(struct intel_encoder *encoder)
int ln;
for (ln = 0; ln < 2; ln++)
- intel_dkl_phy_rmw(i915, DKL_PCS_DW5(tc_port), ln, DKL_PCS_DW5_CORE_SOFTRESET, 0);
+ intel_dkl_phy_rmw(i915, DKL_PCS_DW5(tc_port, ln), DKL_PCS_DW5_CORE_SOFTRESET, 0);
}
static void intel_ddi_prepare_link_retrain(struct intel_dp *intel_dp,
@@ -3108,8 +3141,7 @@ static void intel_ddi_prepare_link_retrain(struct intel_dp *intel_dp,
wait = true;
}
- dp_tp_ctl &= ~(DP_TP_CTL_ENABLE | DP_TP_CTL_LINK_TRAIN_MASK);
- dp_tp_ctl |= DP_TP_CTL_LINK_TRAIN_PAT1;
+ dp_tp_ctl &= ~DP_TP_CTL_ENABLE;
intel_de_write(dev_priv, dp_tp_ctl_reg(encoder, crtc_state), dp_tp_ctl);
intel_de_posting_read(dev_priv, dp_tp_ctl_reg(encoder, crtc_state));
@@ -3177,12 +3209,9 @@ static void intel_ddi_set_idle_link_train(struct intel_dp *intel_dp,
struct intel_encoder *encoder = &dp_to_dig_port(intel_dp)->base;
struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
enum port port = encoder->port;
- u32 val;
- val = intel_de_read(dev_priv, dp_tp_ctl_reg(encoder, crtc_state));
- val &= ~DP_TP_CTL_LINK_TRAIN_MASK;
- val |= DP_TP_CTL_LINK_TRAIN_IDLE;
- intel_de_write(dev_priv, dp_tp_ctl_reg(encoder, crtc_state), val);
+ intel_de_rmw(dev_priv, dp_tp_ctl_reg(encoder, crtc_state),
+ DP_TP_CTL_LINK_TRAIN_MASK, DP_TP_CTL_LINK_TRAIN_IDLE);
/*
* Until TGL on PORT_A we can have only eDP in SST mode. There the only
@@ -3451,6 +3480,8 @@ static void intel_ddi_get_config(struct intel_encoder *encoder,
intel_read_dp_sdp(encoder, pipe_config, DP_SDP_VSC);
intel_psr_get_config(encoder, pipe_config);
+
+ intel_audio_codec_get_config(encoder, pipe_config);
}
void intel_ddi_get_clock(struct intel_encoder *encoder,
@@ -3512,6 +3543,37 @@ static void icl_ddi_combo_get_config(struct intel_encoder *encoder,
intel_ddi_get_config(encoder, crtc_state);
}
+static bool icl_ddi_tc_pll_is_tbt(const struct intel_shared_dpll *pll)
+{
+ return pll->info->id == DPLL_ID_ICL_TBTPLL;
+}
+
+static enum icl_port_dpll_id
+icl_ddi_tc_port_pll_type(struct intel_encoder *encoder,
+ const struct intel_crtc_state *crtc_state)
+{
+ struct drm_i915_private *i915 = to_i915(encoder->base.dev);
+ const struct intel_shared_dpll *pll = crtc_state->shared_dpll;
+
+ if (drm_WARN_ON(&i915->drm, !pll))
+ return ICL_PORT_DPLL_DEFAULT;
+
+ if (icl_ddi_tc_pll_is_tbt(pll))
+ return ICL_PORT_DPLL_DEFAULT;
+ else
+ return ICL_PORT_DPLL_MG_PHY;
+}
+
+enum icl_port_dpll_id
+intel_ddi_port_pll_type(struct intel_encoder *encoder,
+ const struct intel_crtc_state *crtc_state)
+{
+ if (!encoder->port_pll_type)
+ return ICL_PORT_DPLL_DEFAULT;
+
+ return encoder->port_pll_type(encoder, crtc_state);
+}
+
static void icl_ddi_tc_get_clock(struct intel_encoder *encoder,
struct intel_crtc_state *crtc_state,
struct intel_shared_dpll *pll)
@@ -3524,7 +3586,7 @@ static void icl_ddi_tc_get_clock(struct intel_encoder *encoder,
if (drm_WARN_ON(&i915->drm, !pll))
return;
- if (intel_get_shared_dpll_id(i915, pll) == DPLL_ID_ICL_TBTPLL)
+ if (icl_ddi_tc_pll_is_tbt(pll))
port_dpll_id = ICL_PORT_DPLL_DEFAULT;
else
port_dpll_id = ICL_PORT_DPLL_MG_PHY;
@@ -3537,7 +3599,7 @@ static void icl_ddi_tc_get_clock(struct intel_encoder *encoder,
icl_set_active_port_dpll(crtc_state, port_dpll_id);
- if (intel_get_shared_dpll_id(i915, crtc_state->shared_dpll) == DPLL_ID_ICL_TBTPLL)
+ if (icl_ddi_tc_pll_is_tbt(crtc_state->shared_dpll))
crtc_state->port_clock = icl_calc_tbt_pll_link(i915, encoder->port);
else
crtc_state->port_clock = intel_dpll_get_freq(i915, crtc_state->shared_dpll,
@@ -3579,7 +3641,8 @@ static void intel_ddi_sync_state(struct intel_encoder *encoder,
enum phy phy = intel_port_to_phy(i915, encoder->port);
if (intel_phy_is_tc(i915, phy))
- intel_tc_port_sanitize(enc_to_dig_port(encoder));
+ intel_tc_port_sanitize_mode(enc_to_dig_port(encoder),
+ crtc_state);
if (crtc_state && intel_crtc_has_dp_encoder(crtc_state))
intel_dp_sync_state(encoder, crtc_state);
@@ -3779,7 +3842,7 @@ static void intel_ddi_encoder_destroy(struct drm_encoder *encoder)
intel_dp_encoder_flush_work(encoder);
if (intel_phy_is_tc(i915, phy))
- intel_tc_port_flush_work(dig_port);
+ intel_tc_port_cleanup(dig_port);
intel_display_power_flush_work(i915);
drm_encoder_cleanup(encoder);
@@ -3789,11 +3852,17 @@ static void intel_ddi_encoder_destroy(struct drm_encoder *encoder)
static void intel_ddi_encoder_reset(struct drm_encoder *encoder)
{
+ struct drm_i915_private *i915 = to_i915(encoder->dev);
struct intel_dp *intel_dp = enc_to_intel_dp(to_intel_encoder(encoder));
+ struct intel_digital_port *dig_port = enc_to_dig_port(to_intel_encoder(encoder));
+ enum phy phy = intel_port_to_phy(i915, dig_port->base.port);
intel_dp->reset_link_params = true;
intel_pps_encoder_reset(intel_dp);
+
+ if (intel_phy_is_tc(i915, phy))
+ intel_tc_port_init_mode(dig_port);
}
static const struct drm_encoder_funcs intel_ddi_funcs = {
@@ -3918,8 +3987,8 @@ static int intel_hdmi_reset_link(struct intel_encoder *encoder,
ret = drm_scdc_readb(adapter, SCDC_TMDS_CONFIG, &config);
if (ret < 0) {
- drm_err(&dev_priv->drm, "Failed to read TMDS config: %d\n",
- ret);
+ drm_err(&dev_priv->drm, "[CONNECTOR:%d:%s] Failed to read TMDS config: %d\n",
+ connector->base.base.id, connector->base.name, ret);
return 0;
}
@@ -4106,12 +4175,6 @@ intel_ddi_max_lanes(struct intel_digital_port *dig_port)
return max_lanes;
}
-static bool hti_uses_phy(struct drm_i915_private *i915, enum phy phy)
-{
- return i915->hti_state & HDPORT_ENABLED &&
- i915->hti_state & HDPORT_DDI_USED(phy);
-}
-
static enum hpd_pin xelpd_hpd_pin(struct drm_i915_private *dev_priv,
enum port port)
{
@@ -4220,7 +4283,7 @@ static void intel_ddi_encoder_shutdown(struct intel_encoder *encoder)
if (!intel_phy_is_tc(i915, phy))
return;
- intel_tc_port_flush_work(dig_port);
+ intel_tc_port_cleanup(dig_port);
}
#define port_tc_name(port) ((port) - PORT_TC1 + '1')
@@ -4240,7 +4303,7 @@ void intel_ddi_init(struct drm_i915_private *dev_priv, enum port port)
* driver. In that case we should skip initializing the corresponding
* outputs.
*/
- if (hti_uses_phy(dev_priv, phy)) {
+ if (intel_hti_uses_phy(dev_priv, phy)) {
drm_dbg_kms(&dev_priv->drm, "PORT %c / PHY %c reserved by HTI\n",
port_name(port), phy_name(phy));
return;
@@ -4258,7 +4321,7 @@ void intel_ddi_init(struct drm_i915_private *dev_priv, enum port port)
intel_bios_encoder_supports_hdmi(devdata);
init_dp = intel_bios_encoder_supports_dp(devdata);
- if (intel_bios_is_lspcon_present(dev_priv, port)) {
+ if (intel_bios_encoder_is_lspcon(devdata)) {
/*
* Lspcon device needs to be driven with DP connector
* with special detection sequence. So make sure DP
@@ -4278,7 +4341,7 @@ void intel_ddi_init(struct drm_i915_private *dev_priv, enum port port)
}
if (intel_phy_is_snps(dev_priv, phy) &&
- dev_priv->snps_phy_failed_calibration & BIT(phy)) {
+ dev_priv->display.snps.phy_failed_calibration & BIT(phy)) {
drm_dbg_kms(&dev_priv->drm,
"SNPS PHY %c failed to calibrate, proceeding anyway\n",
phy_name(phy));
@@ -4334,6 +4397,7 @@ void intel_ddi_init(struct drm_i915_private *dev_priv, enum port port)
encoder->pre_pll_enable = intel_ddi_pre_pll_enable;
encoder->pre_enable = intel_ddi_pre_enable;
encoder->disable = intel_disable_ddi;
+ encoder->post_pll_disable = intel_ddi_post_pll_disable;
encoder->post_disable = intel_ddi_post_disable;
encoder->update_pipe = intel_ddi_update_pipe;
encoder->get_hw_state = intel_ddi_get_hw_state;
@@ -4373,6 +4437,7 @@ void intel_ddi_init(struct drm_i915_private *dev_priv, enum port port)
encoder->enable_clock = jsl_ddi_tc_enable_clock;
encoder->disable_clock = jsl_ddi_tc_disable_clock;
encoder->is_clock_enabled = jsl_ddi_tc_is_clock_enabled;
+ encoder->port_pll_type = icl_ddi_tc_port_pll_type;
encoder->get_config = icl_ddi_combo_get_config;
} else {
encoder->enable_clock = icl_ddi_combo_enable_clock;
@@ -4385,6 +4450,7 @@ void intel_ddi_init(struct drm_i915_private *dev_priv, enum port port)
encoder->enable_clock = icl_ddi_tc_enable_clock;
encoder->disable_clock = icl_ddi_tc_disable_clock;
encoder->is_clock_enabled = icl_ddi_tc_is_clock_enabled;
+ encoder->port_pll_type = icl_ddi_tc_port_pll_type;
encoder->get_config = icl_ddi_tc_get_config;
} else {
encoder->enable_clock = icl_ddi_combo_enable_clock;
@@ -4453,56 +4519,50 @@ void intel_ddi_init(struct drm_i915_private *dev_priv, enum port port)
intel_de_read(dev_priv, DDI_BUF_CTL(port))
& (DDI_BUF_PORT_REVERSAL | DDI_A_4_LANES);
- if (intel_bios_is_lane_reversal_needed(dev_priv, port))
+ if (intel_bios_encoder_lane_reversal(devdata))
dig_port->saved_port_bits |= DDI_BUF_PORT_REVERSAL;
dig_port->dp.output_reg = INVALID_MMIO_REG;
dig_port->max_lanes = intel_ddi_max_lanes(dig_port);
- dig_port->aux_ch = intel_bios_port_aux_ch(dev_priv, port);
+ dig_port->aux_ch = intel_dp_aux_ch(encoder);
if (intel_phy_is_tc(dev_priv, phy)) {
bool is_legacy =
!intel_bios_encoder_supports_typec_usb(devdata) &&
!intel_bios_encoder_supports_tbt(devdata);
- intel_tc_port_init(dig_port, is_legacy);
-
- encoder->update_prepare = intel_ddi_update_prepare;
- encoder->update_complete = intel_ddi_update_complete;
- }
+ if (!is_legacy && init_hdmi) {
+ is_legacy = !init_dp;
- drm_WARN_ON(&dev_priv->drm, port > PORT_I);
- dig_port->ddi_io_power_domain = intel_display_power_ddi_io_domain(dev_priv, port);
+ drm_dbg_kms(&dev_priv->drm,
+ "VBT says port %c is non-legacy TC and has HDMI (with DP: %s), assume it's %s\n",
+ port_name(port),
+ str_yes_no(init_dp),
+ is_legacy ? "legacy" : "non-legacy");
+ }
- if (init_dp) {
- if (!intel_ddi_init_dp_connector(dig_port))
+ if (intel_tc_port_init(dig_port, is_legacy) < 0)
goto err;
-
- dig_port->hpd_pulse = intel_dp_hpd_pulse;
-
- if (dig_port->dp.mso_link_count)
- encoder->pipe_mask = intel_ddi_splitter_pipe_mask(dev_priv);
}
- /* In theory we don't need the encoder->type check, but leave it just in
- * case we have some really bad VBTs... */
- if (encoder->type != INTEL_OUTPUT_EDP && init_hdmi) {
- if (!intel_ddi_init_hdmi_connector(dig_port))
- goto err;
- }
+ drm_WARN_ON(&dev_priv->drm, port > PORT_I);
+ dig_port->ddi_io_power_domain = intel_display_power_ddi_io_domain(dev_priv, port);
if (DISPLAY_VER(dev_priv) >= 11) {
if (intel_phy_is_tc(dev_priv, phy))
dig_port->connected = intel_tc_port_connected;
else
dig_port->connected = lpt_digital_port_connected;
- } else if (DISPLAY_VER(dev_priv) >= 8) {
- if (port == PORT_A || IS_GEMINILAKE(dev_priv) ||
- IS_BROXTON(dev_priv))
+ } else if (IS_GEMINILAKE(dev_priv) || IS_BROXTON(dev_priv)) {
+ dig_port->connected = bdw_digital_port_connected;
+ } else if (DISPLAY_VER(dev_priv) == 9) {
+ dig_port->connected = lpt_digital_port_connected;
+ } else if (IS_BROADWELL(dev_priv)) {
+ if (port == PORT_A)
dig_port->connected = bdw_digital_port_connected;
else
dig_port->connected = lpt_digital_port_connected;
- } else {
+ } else if (IS_HASWELL(dev_priv)) {
if (port == PORT_A)
dig_port->connected = hsw_digital_port_connected;
else
@@ -4511,6 +4571,25 @@ void intel_ddi_init(struct drm_i915_private *dev_priv, enum port port)
intel_infoframe_init(dig_port);
+ if (init_dp) {
+ if (!intel_ddi_init_dp_connector(dig_port))
+ goto err;
+
+ dig_port->hpd_pulse = intel_dp_hpd_pulse;
+
+ if (dig_port->dp.mso_link_count)
+ encoder->pipe_mask = intel_ddi_splitter_pipe_mask(dev_priv);
+ }
+
+ /*
+ * In theory we don't need the encoder->type check,
+ * but leave it just in case we have some really bad VBTs...
+ */
+ if (encoder->type != INTEL_OUTPUT_EDP && init_hdmi) {
+ if (!intel_ddi_init_hdmi_connector(dig_port))
+ goto err;
+ }
+
return;
err:
diff --git a/drivers/gpu/drm/i915/display/intel_ddi.h b/drivers/gpu/drm/i915/display/intel_ddi.h
index d39076facdce..2bc034042a93 100644
--- a/drivers/gpu/drm/i915/display/intel_ddi.h
+++ b/drivers/gpu/drm/i915/display/intel_ddi.h
@@ -40,6 +40,9 @@ void hsw_ddi_enable_clock(struct intel_encoder *encoder,
const struct intel_crtc_state *crtc_state);
void hsw_ddi_disable_clock(struct intel_encoder *encoder);
bool hsw_ddi_is_clock_enabled(struct intel_encoder *encoder);
+enum icl_port_dpll_id
+intel_ddi_port_pll_type(struct intel_encoder *encoder,
+ const struct intel_crtc_state *crtc_state);
void hsw_ddi_get_config(struct intel_encoder *encoder,
struct intel_crtc_state *crtc_state);
struct intel_shared_dpll *icl_ddi_combo_get_pll(struct intel_encoder *encoder);
@@ -52,9 +55,9 @@ bool intel_ddi_get_hw_state(struct intel_encoder *encoder, enum pipe *pipe);
void intel_ddi_enable_transcoder_func(struct intel_encoder *encoder,
const struct intel_crtc_state *crtc_state);
void intel_ddi_disable_transcoder_func(const struct intel_crtc_state *crtc_state);
-void intel_ddi_enable_pipe_clock(struct intel_encoder *encoder,
- const struct intel_crtc_state *crtc_state);
-void intel_ddi_disable_pipe_clock(const struct intel_crtc_state *crtc_state);
+void intel_ddi_enable_transcoder_clock(struct intel_encoder *encoder,
+ const struct intel_crtc_state *crtc_state);
+void intel_ddi_disable_transcoder_clock(const struct intel_crtc_state *crtc_state);
void intel_ddi_set_dp_msa(const struct intel_crtc_state *crtc_state,
const struct drm_connector_state *conn_state);
bool intel_ddi_connector_get_hw_state(struct intel_connector *intel_connector);
@@ -69,5 +72,8 @@ void intel_ddi_sanitize_encoder_pll_mapping(struct intel_encoder *encoder);
int intel_ddi_level(struct intel_encoder *encoder,
const struct intel_crtc_state *crtc_state,
int lane);
+void intel_ddi_update_active_dpll(struct intel_atomic_state *state,
+ struct intel_encoder *encoder,
+ struct intel_crtc *crtc);
#endif /* __INTEL_DDI_H__ */
diff --git a/drivers/gpu/drm/i915/display/intel_de.h b/drivers/gpu/drm/i915/display/intel_de.h
index 9c104f65e4c8..42552d8c151e 100644
--- a/drivers/gpu/drm/i915/display/intel_de.h
+++ b/drivers/gpu/drm/i915/display/intel_de.h
@@ -16,6 +16,19 @@ intel_de_read(struct drm_i915_private *i915, i915_reg_t reg)
return intel_uncore_read(&i915->uncore, reg);
}
+static inline u8
+intel_de_read8(struct drm_i915_private *i915, i915_reg_t reg)
+{
+ return intel_uncore_read8(&i915->uncore, reg);
+}
+
+static inline u64
+intel_de_read64_2x32(struct drm_i915_private *i915,
+ i915_reg_t lower_reg, i915_reg_t upper_reg)
+{
+ return intel_uncore_read64_2x32(&i915->uncore, lower_reg, upper_reg);
+}
+
static inline void
intel_de_posting_read(struct drm_i915_private *i915, i915_reg_t reg)
{
@@ -28,10 +41,10 @@ intel_de_write(struct drm_i915_private *i915, i915_reg_t reg, u32 val)
intel_uncore_write(&i915->uncore, reg, val);
}
-static inline void
+static inline u32
intel_de_rmw(struct drm_i915_private *i915, i915_reg_t reg, u32 clear, u32 set)
{
- intel_uncore_rmw(&i915->uncore, reg, clear, set);
+ return intel_uncore_rmw(&i915->uncore, reg, clear, set);
}
static inline int
@@ -42,6 +55,23 @@ intel_de_wait_for_register(struct drm_i915_private *i915, i915_reg_t reg,
}
static inline int
+intel_de_wait_for_register_fw(struct drm_i915_private *i915, i915_reg_t reg,
+ u32 mask, u32 value, unsigned int timeout)
+{
+ return intel_wait_for_register_fw(&i915->uncore, reg, mask, value, timeout);
+}
+
+static inline int
+__intel_de_wait_for_register(struct drm_i915_private *i915, i915_reg_t reg,
+ u32 mask, u32 value,
+ unsigned int fast_timeout_us,
+ unsigned int slow_timeout_ms, u32 *out_value)
+{
+ return __intel_wait_for_register(&i915->uncore, reg, mask, value,
+ fast_timeout_us, slow_timeout_ms, out_value);
+}
+
+static inline int
intel_de_wait_for_set(struct drm_i915_private *i915, i915_reg_t reg,
u32 mask, unsigned int timeout)
{
@@ -81,4 +111,16 @@ intel_de_write_fw(struct drm_i915_private *i915, i915_reg_t reg, u32 val)
intel_uncore_write_fw(&i915->uncore, reg, val);
}
+static inline u32
+intel_de_read_notrace(struct drm_i915_private *i915, i915_reg_t reg)
+{
+ return intel_uncore_read_notrace(&i915->uncore, reg);
+}
+
+static inline void
+intel_de_write_notrace(struct drm_i915_private *i915, i915_reg_t reg, u32 val)
+{
+ intel_uncore_write_notrace(&i915->uncore, reg, val);
+}
+
#endif /* __INTEL_DE_H__ */
diff --git a/drivers/gpu/drm/i915/display/intel_display.c b/drivers/gpu/drm/i915/display/intel_display.c
index 461c62c88413..3c29792137a5 100644
--- a/drivers/gpu/drm/i915/display/intel_display.c
+++ b/drivers/gpu/drm/i915/display/intel_display.c
@@ -24,15 +24,15 @@
* Eric Anholt <eric@anholt.net>
*/
-#include <acpi/video.h>
+#include <linux/dma-resv.h>
#include <linux/i2c.h>
#include <linux/input.h>
#include <linux/kernel.h>
#include <linux/module.h>
-#include <linux/dma-resv.h>
#include <linux/slab.h>
#include <linux/string_helpers.h>
#include <linux/vga_switcheroo.h>
+#include <acpi/video.h>
#include <drm/display/drm_dp_helper.h>
#include <drm/drm_atomic.h>
@@ -45,62 +45,60 @@
#include <drm/drm_probe_helper.h>
#include <drm/drm_rect.h>
-#include "display/intel_audio.h"
-#include "display/intel_crt.h"
-#include "display/intel_ddi.h"
-#include "display/intel_display_debugfs.h"
-#include "display/intel_display_power.h"
-#include "display/intel_dp.h"
-#include "display/intel_dp_mst.h"
-#include "display/intel_dpll.h"
-#include "display/intel_dpll_mgr.h"
-#include "display/intel_drrs.h"
-#include "display/intel_dsi.h"
-#include "display/intel_dvo.h"
-#include "display/intel_fb.h"
-#include "display/intel_gmbus.h"
-#include "display/intel_hdmi.h"
-#include "display/intel_lvds.h"
-#include "display/intel_sdvo.h"
-#include "display/intel_snps_phy.h"
-#include "display/intel_tv.h"
-#include "display/intel_vdsc.h"
-#include "display/intel_vrr.h"
-
#include "gem/i915_gem_lmem.h"
#include "gem/i915_gem_object.h"
-#include "gt/gen8_ppgtt.h"
-
#include "g4x_dp.h"
#include "g4x_hdmi.h"
#include "hsw_ips.h"
#include "i915_drv.h"
+#include "i915_reg.h"
#include "i915_utils.h"
+#include "i9xx_plane.h"
+#include "i9xx_wm.h"
#include "icl_dsi.h"
#include "intel_acpi.h"
#include "intel_atomic.h"
#include "intel_atomic_plane.h"
+#include "intel_audio.h"
#include "intel_bw.h"
#include "intel_cdclk.h"
+#include "intel_clock_gating.h"
#include "intel_color.h"
+#include "intel_crt.h"
#include "intel_crtc.h"
#include "intel_crtc_state_dump.h"
+#include "intel_ddi.h"
#include "intel_de.h"
+#include "intel_display_debugfs.h"
+#include "intel_display_power.h"
#include "intel_display_types.h"
#include "intel_dmc.h"
+#include "intel_dp.h"
#include "intel_dp_link_training.h"
+#include "intel_dp_mst.h"
+#include "intel_dpio_phy.h"
+#include "intel_dpll.h"
+#include "intel_dpll_mgr.h"
#include "intel_dpt.h"
-#include "intel_dsb.h"
+#include "intel_drrs.h"
+#include "intel_dsi.h"
+#include "intel_dvo.h"
+#include "intel_fb.h"
#include "intel_fbc.h"
#include "intel_fbdev.h"
#include "intel_fdi.h"
#include "intel_fifo_underrun.h"
#include "intel_frontbuffer.h"
+#include "intel_gmbus.h"
#include "intel_hdcp.h"
+#include "intel_hdmi.h"
#include "intel_hotplug.h"
-#include "intel_modeset_verify.h"
+#include "intel_hti.h"
+#include "intel_lvds.h"
+#include "intel_lvds_regs.h"
#include "intel_modeset_setup.h"
+#include "intel_modeset_verify.h"
#include "intel_overlay.h"
#include "intel_panel.h"
#include "intel_pch_display.h"
@@ -108,14 +106,19 @@
#include "intel_pcode.h"
#include "intel_pipe_crc.h"
#include "intel_plane_initial.h"
-#include "intel_pm.h"
#include "intel_pps.h"
#include "intel_psr.h"
#include "intel_quirks.h"
-#include "intel_sprite.h"
+#include "intel_sdvo.h"
+#include "intel_snps_phy.h"
#include "intel_tc.h"
+#include "intel_tv.h"
+#include "intel_vblank.h"
+#include "intel_vdsc.h"
+#include "intel_vdsc_regs.h"
#include "intel_vga.h"
-#include "i9xx_plane.h"
+#include "intel_vrr.h"
+#include "intel_wm.h"
#include "skl_scaler.h"
#include "skl_universal_plane.h"
#include "skl_watermark.h"
@@ -127,104 +130,9 @@
static void intel_set_transcoder_timings(const struct intel_crtc_state *crtc_state);
static void intel_set_pipe_src_size(const struct intel_crtc_state *crtc_state);
static void hsw_set_transconf(const struct intel_crtc_state *crtc_state);
-static void bdw_set_pipemisc(const struct intel_crtc_state *crtc_state);
+static void bdw_set_pipe_misc(const struct intel_crtc_state *crtc_state);
static void ilk_pfit_enable(const struct intel_crtc_state *crtc_state);
-/**
- * intel_update_watermarks - update FIFO watermark values based on current modes
- * @dev_priv: i915 device
- *
- * Calculate watermark values for the various WM regs based on current mode
- * and plane configuration.
- *
- * There are several cases to deal with here:
- * - normal (i.e. non-self-refresh)
- * - self-refresh (SR) mode
- * - lines are large relative to FIFO size (buffer can hold up to 2)
- * - lines are small relative to FIFO size (buffer can hold more than 2
- * lines), so need to account for TLB latency
- *
- * The normal calculation is:
- * watermark = dotclock * bytes per pixel * latency
- * where latency is platform & configuration dependent (we assume pessimal
- * values here).
- *
- * The SR calculation is:
- * watermark = (trunc(latency/line time)+1) * surface width *
- * bytes per pixel
- * where
- * line time = htotal / dotclock
- * surface width = hdisplay for normal plane and 64 for cursor
- * and latency is assumed to be high, as above.
- *
- * The final value programmed to the register should always be rounded up,
- * and include an extra 2 entries to account for clock crossings.
- *
- * We don't use the sprite, so we can ignore that. And on Crestline we have
- * to set the non-SR watermarks to 8.
- */
-void intel_update_watermarks(struct drm_i915_private *dev_priv)
-{
- if (dev_priv->display.funcs.wm->update_wm)
- dev_priv->display.funcs.wm->update_wm(dev_priv);
-}
-
-static int intel_compute_pipe_wm(struct intel_atomic_state *state,
- struct intel_crtc *crtc)
-{
- struct drm_i915_private *dev_priv = to_i915(state->base.dev);
- if (dev_priv->display.funcs.wm->compute_pipe_wm)
- return dev_priv->display.funcs.wm->compute_pipe_wm(state, crtc);
- return 0;
-}
-
-static int intel_compute_intermediate_wm(struct intel_atomic_state *state,
- struct intel_crtc *crtc)
-{
- struct drm_i915_private *dev_priv = to_i915(state->base.dev);
- if (!dev_priv->display.funcs.wm->compute_intermediate_wm)
- return 0;
- if (drm_WARN_ON(&dev_priv->drm,
- !dev_priv->display.funcs.wm->compute_pipe_wm))
- return 0;
- return dev_priv->display.funcs.wm->compute_intermediate_wm(state, crtc);
-}
-
-static bool intel_initial_watermarks(struct intel_atomic_state *state,
- struct intel_crtc *crtc)
-{
- struct drm_i915_private *dev_priv = to_i915(state->base.dev);
- if (dev_priv->display.funcs.wm->initial_watermarks) {
- dev_priv->display.funcs.wm->initial_watermarks(state, crtc);
- return true;
- }
- return false;
-}
-
-static void intel_atomic_update_watermarks(struct intel_atomic_state *state,
- struct intel_crtc *crtc)
-{
- struct drm_i915_private *dev_priv = to_i915(state->base.dev);
- if (dev_priv->display.funcs.wm->atomic_update_watermarks)
- dev_priv->display.funcs.wm->atomic_update_watermarks(state, crtc);
-}
-
-static void intel_optimize_watermarks(struct intel_atomic_state *state,
- struct intel_crtc *crtc)
-{
- struct drm_i915_private *dev_priv = to_i915(state->base.dev);
- if (dev_priv->display.funcs.wm->optimize_watermarks)
- dev_priv->display.funcs.wm->optimize_watermarks(state, crtc);
-}
-
-static int intel_compute_global_watermarks(struct intel_atomic_state *state)
-{
- struct drm_i915_private *dev_priv = to_i915(state->base.dev);
- if (dev_priv->display.funcs.wm->compute_global_watermarks)
- return dev_priv->display.funcs.wm->compute_global_watermarks(state);
- return 0;
-}
-
/* returns HPLL frequency in kHz */
int vlv_get_hpll_vco(struct drm_i915_private *dev_priv)
{
@@ -293,11 +201,11 @@ static void
skl_wa_827(struct drm_i915_private *dev_priv, enum pipe pipe, bool enable)
{
if (enable)
- intel_de_write(dev_priv, CLKGATE_DIS_PSL(pipe),
- intel_de_read(dev_priv, CLKGATE_DIS_PSL(pipe)) | DUPS1_GATING_DIS | DUPS2_GATING_DIS);
+ intel_de_rmw(dev_priv, CLKGATE_DIS_PSL(pipe),
+ 0, DUPS1_GATING_DIS | DUPS2_GATING_DIS);
else
- intel_de_write(dev_priv, CLKGATE_DIS_PSL(pipe),
- intel_de_read(dev_priv, CLKGATE_DIS_PSL(pipe)) & ~(DUPS1_GATING_DIS | DUPS2_GATING_DIS));
+ intel_de_rmw(dev_priv, CLKGATE_DIS_PSL(pipe),
+ DUPS1_GATING_DIS | DUPS2_GATING_DIS, 0);
}
/* Wa_2006604312:icl,ehl */
@@ -306,11 +214,9 @@ icl_wa_scalerclkgating(struct drm_i915_private *dev_priv, enum pipe pipe,
bool enable)
{
if (enable)
- intel_de_write(dev_priv, CLKGATE_DIS_PSL(pipe),
- intel_de_read(dev_priv, CLKGATE_DIS_PSL(pipe)) | DPFR_GATING_DIS);
+ intel_de_rmw(dev_priv, CLKGATE_DIS_PSL(pipe), 0, DPFR_GATING_DIS);
else
- intel_de_write(dev_priv, CLKGATE_DIS_PSL(pipe),
- intel_de_read(dev_priv, CLKGATE_DIS_PSL(pipe)) & ~DPFR_GATING_DIS);
+ intel_de_rmw(dev_priv, CLKGATE_DIS_PSL(pipe), DPFR_GATING_DIS, 0);
}
/* Wa_1604331009:icl,jsl,ehl */
@@ -385,41 +291,6 @@ struct intel_crtc *intel_master_crtc(const struct intel_crtc_state *crtc_state)
return to_intel_crtc(crtc_state->uapi.crtc);
}
-static bool pipe_scanline_is_moving(struct drm_i915_private *dev_priv,
- enum pipe pipe)
-{
- i915_reg_t reg = PIPEDSL(pipe);
- u32 line1, line2;
-
- line1 = intel_de_read(dev_priv, reg) & PIPEDSL_LINE_MASK;
- msleep(5);
- line2 = intel_de_read(dev_priv, reg) & PIPEDSL_LINE_MASK;
-
- return line1 != line2;
-}
-
-static void wait_for_pipe_scanline_moving(struct intel_crtc *crtc, bool state)
-{
- struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
- enum pipe pipe = crtc->pipe;
-
- /* Wait for the display line to settle/start moving */
- if (wait_for(pipe_scanline_is_moving(dev_priv, pipe) == state, 100))
- drm_err(&dev_priv->drm,
- "pipe %c scanline %s wait timed out\n",
- pipe_name(pipe), str_on_off(state));
-}
-
-static void intel_wait_for_pipe_scanline_stopped(struct intel_crtc *crtc)
-{
- wait_for_pipe_scanline_moving(crtc, false);
-}
-
-static void intel_wait_for_pipe_scanline_moving(struct intel_crtc *crtc)
-{
- wait_for_pipe_scanline_moving(crtc, true);
-}
-
static void
intel_wait_for_pipe_off(const struct intel_crtc_state *old_crtc_state)
{
@@ -430,8 +301,8 @@ intel_wait_for_pipe_off(const struct intel_crtc_state *old_crtc_state)
enum transcoder cpu_transcoder = old_crtc_state->cpu_transcoder;
/* Wait for the Pipe State to go off */
- if (intel_de_wait_for_clear(dev_priv, PIPECONF(cpu_transcoder),
- PIPECONF_STATE_ENABLE, 100))
+ if (intel_de_wait_for_clear(dev_priv, TRANSCONF(cpu_transcoder),
+ TRANSCONF_STATE_ENABLE, 100))
drm_WARN(&dev_priv->drm, 1, "pipe_off wait timed out\n");
} else {
intel_wait_for_pipe_scanline_stopped(crtc);
@@ -452,8 +323,8 @@ void assert_transcoder(struct drm_i915_private *dev_priv,
power_domain = POWER_DOMAIN_TRANSCODER(cpu_transcoder);
wakeref = intel_display_power_get_if_enabled(dev_priv, power_domain);
if (wakeref) {
- u32 val = intel_de_read(dev_priv, PIPECONF(cpu_transcoder));
- cur_state = !!(val & PIPECONF_ENABLE);
+ u32 val = intel_de_read(dev_priv, TRANSCONF(cpu_transcoder));
+ cur_state = !!(val & TRANSCONF_ENABLE);
intel_display_power_put(dev_priv, power_domain, wakeref);
} else {
@@ -565,15 +436,15 @@ void intel_enable_transcoder(const struct intel_crtc_state *new_crtc_state)
intel_de_rmw(dev_priv, PIPE_ARB_CTL(pipe),
0, PIPE_ARB_USE_PROG_SLOTS);
- reg = PIPECONF(cpu_transcoder);
+ reg = TRANSCONF(cpu_transcoder);
val = intel_de_read(dev_priv, reg);
- if (val & PIPECONF_ENABLE) {
+ if (val & TRANSCONF_ENABLE) {
/* we keep both pipes enabled on 830 */
drm_WARN_ON(&dev_priv->drm, !IS_I830(dev_priv));
return;
}
- intel_de_write(dev_priv, reg, val | PIPECONF_ENABLE);
+ intel_de_write(dev_priv, reg, val | TRANSCONF_ENABLE);
intel_de_posting_read(dev_priv, reg);
/*
@@ -604,9 +475,9 @@ void intel_disable_transcoder(const struct intel_crtc_state *old_crtc_state)
*/
assert_planes_disabled(crtc);
- reg = PIPECONF(cpu_transcoder);
+ reg = TRANSCONF(cpu_transcoder);
val = intel_de_read(dev_priv, reg);
- if ((val & PIPECONF_ENABLE) == 0)
+ if ((val & TRANSCONF_ENABLE) == 0)
return;
/*
@@ -614,11 +485,11 @@ void intel_disable_transcoder(const struct intel_crtc_state *old_crtc_state)
* so best keep it disabled when not needed.
*/
if (old_crtc_state->double_wide)
- val &= ~PIPECONF_DOUBLE_WIDE;
+ val &= ~TRANSCONF_DOUBLE_WIDE;
/* Don't disable pipe or pipe PLLs if needed */
if (!IS_I830(dev_priv))
- val &= ~PIPECONF_ENABLE;
+ val &= ~TRANSCONF_ENABLE;
if (DISPLAY_VER(dev_priv) >= 14)
intel_de_rmw(dev_priv, MTL_CHICKEN_TRANS(cpu_transcoder),
@@ -628,7 +499,7 @@ void intel_disable_transcoder(const struct intel_crtc_state *old_crtc_state)
FECSTALL_DIS_DPTSTREAM_DPTTG, 0);
intel_de_write(dev_priv, reg, val);
- if ((val & PIPECONF_ENABLE) == 0)
+ if ((val & TRANSCONF_ENABLE) == 0)
intel_wait_for_pipe_off(old_crtc_state);
}
@@ -831,13 +702,27 @@ intel_plane_fence_y_offset(const struct intel_plane_state *plane_state)
}
static int
+intel_display_commit_duplicated_state(struct intel_atomic_state *state,
+ struct drm_modeset_acquire_ctx *ctx)
+{
+ struct drm_i915_private *i915 = to_i915(state->base.dev);
+ int ret;
+
+ ret = drm_atomic_helper_commit_duplicated_state(&state->base, ctx);
+
+ drm_WARN_ON(&i915->drm, ret == -EDEADLK);
+
+ return ret;
+}
+
+static int
__intel_display_resume(struct drm_i915_private *i915,
struct drm_atomic_state *state,
struct drm_modeset_acquire_ctx *ctx)
{
struct drm_crtc_state *crtc_state;
struct drm_crtc *crtc;
- int i, ret;
+ int i;
intel_modeset_setup_hw_state(i915, ctx);
intel_vga_redisable(i915);
@@ -863,11 +748,7 @@ __intel_display_resume(struct drm_i915_private *i915,
if (!HAS_GMCH(i915))
to_intel_atomic_state(state)->skip_intermediate_wm = true;
- ret = drm_atomic_helper_commit_duplicated_state(state, ctx);
-
- drm_WARN_ON(&i915->drm, ret == -EDEADLK);
-
- return ret;
+ return intel_display_commit_duplicated_state(to_intel_atomic_state(state), ctx);
}
static bool gpu_reset_clobbers_display(struct drm_i915_private *dev_priv)
@@ -878,8 +759,7 @@ static bool gpu_reset_clobbers_display(struct drm_i915_private *dev_priv)
void intel_display_prepare_reset(struct drm_i915_private *dev_priv)
{
- struct drm_device *dev = &dev_priv->drm;
- struct drm_modeset_acquire_ctx *ctx = &dev_priv->reset_ctx;
+ struct drm_modeset_acquire_ctx *ctx = &dev_priv->display.restore.reset_ctx;
struct drm_atomic_state *state;
int ret;
@@ -906,10 +786,10 @@ void intel_display_prepare_reset(struct drm_i915_private *dev_priv)
* Need mode_config.mutex so that we don't
* trample ongoing ->detect() and whatnot.
*/
- mutex_lock(&dev->mode_config.mutex);
+ mutex_lock(&dev_priv->drm.mode_config.mutex);
drm_modeset_acquire_init(ctx, 0);
while (1) {
- ret = drm_modeset_lock_all_ctx(dev, ctx);
+ ret = drm_modeset_lock_all_ctx(&dev_priv->drm, ctx);
if (ret != -EDEADLK)
break;
@@ -919,7 +799,7 @@ void intel_display_prepare_reset(struct drm_i915_private *dev_priv)
* Disabling the crtcs gracefully seems nicer. Also the
* g33 docs say we should at least disable all the planes.
*/
- state = drm_atomic_helper_duplicate_state(dev, ctx);
+ state = drm_atomic_helper_duplicate_state(&dev_priv->drm, ctx);
if (IS_ERR(state)) {
ret = PTR_ERR(state);
drm_err(&dev_priv->drm, "Duplicating state failed with %i\n",
@@ -927,7 +807,7 @@ void intel_display_prepare_reset(struct drm_i915_private *dev_priv)
return;
}
- ret = drm_atomic_helper_disable_all(dev, ctx);
+ ret = drm_atomic_helper_disable_all(&dev_priv->drm, ctx);
if (ret) {
drm_err(&dev_priv->drm, "Suspending crtc's failed with %i\n",
ret);
@@ -935,13 +815,13 @@ void intel_display_prepare_reset(struct drm_i915_private *dev_priv)
return;
}
- dev_priv->modeset_restore_state = state;
+ dev_priv->display.restore.modeset_state = state;
state->acquire_ctx = ctx;
}
void intel_display_finish_reset(struct drm_i915_private *i915)
{
- struct drm_modeset_acquire_ctx *ctx = &i915->reset_ctx;
+ struct drm_modeset_acquire_ctx *ctx = &i915->display.restore.reset_ctx;
struct drm_atomic_state *state;
int ret;
@@ -952,14 +832,14 @@ void intel_display_finish_reset(struct drm_i915_private *i915)
if (!test_bit(I915_RESET_MODESET, &to_gt(i915)->reset.flags))
return;
- state = fetch_and_zero(&i915->modeset_restore_state);
+ state = fetch_and_zero(&i915->display.restore.modeset_state);
if (!state)
goto unlock;
/* reset doesn't touch the display */
if (!gpu_reset_clobbers_display(i915)) {
/* for testing only restore the display */
- ret = __intel_display_resume(i915, state, ctx);
+ ret = intel_display_commit_duplicated_state(to_intel_atomic_state(state), ctx);
if (ret)
drm_err(&i915->drm,
"Restoring old state failed with %i\n", ret);
@@ -970,7 +850,7 @@ void intel_display_finish_reset(struct drm_i915_private *i915)
*/
intel_pps_unlock_regs_wa(i915);
intel_modeset_init_hw(i915);
- intel_init_clock_gating(i915);
+ intel_clock_gating_init(i915);
intel_hpd_init(i915);
ret = __intel_display_resume(i915, state, ctx);
@@ -1079,29 +959,13 @@ intel_get_crtc_new_encoder(const struct intel_atomic_state *state,
num_encoders++;
}
- drm_WARN(encoder->base.dev, num_encoders != 1,
+ drm_WARN(state->base.dev, num_encoders != 1,
"%d encoders for pipe %c\n",
num_encoders, pipe_name(master_crtc->pipe));
return encoder;
}
-static void cpt_verify_modeset(struct drm_i915_private *dev_priv,
- enum pipe pipe)
-{
- i915_reg_t dslreg = PIPEDSL(pipe);
- u32 temp;
-
- temp = intel_de_read(dev_priv, dslreg);
- udelay(500);
- if (wait_for(intel_de_read(dev_priv, dslreg) != temp, 5)) {
- if (wait_for(intel_de_read(dev_priv, dslreg) != temp, 5))
- drm_err(&dev_priv->drm,
- "mode set failed: pipe %c stuck\n",
- pipe_name(pipe));
- }
-}
-
static void ilk_pfit_enable(const struct intel_crtc_state *crtc_state)
{
struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
@@ -1234,7 +1098,6 @@ static void intel_post_plane_update(struct intel_atomic_state *state,
if (new_crtc_state->update_wm_post && new_crtc_state->hw.active)
intel_update_watermarks(dev_priv);
- hsw_ips_post_update(state, crtc);
intel_fbc_post_update(state, crtc);
if (needs_async_flip_vtd_wa(old_crtc_state) &&
@@ -1253,7 +1116,8 @@ static void intel_post_plane_update(struct intel_atomic_state *state,
!needs_cursorclk_wa(new_crtc_state))
icl_wa_cursorclkgating(dev_priv, pipe, false);
- intel_drrs_activate(new_crtc_state);
+ if (intel_crtc_needs_color_update(new_crtc_state))
+ intel_color_post_update(new_crtc_state);
}
static void intel_crtc_enable_flip_done(struct intel_atomic_state *state,
@@ -1297,7 +1161,8 @@ static void intel_crtc_async_flip_disable_wa(struct intel_atomic_state *state,
intel_atomic_get_old_crtc_state(state, crtc);
const struct intel_crtc_state *new_crtc_state =
intel_atomic_get_new_crtc_state(state, crtc);
- u8 update_planes = new_crtc_state->update_planes;
+ u8 disable_async_flip_planes = old_crtc_state->async_flip_planes &
+ ~new_crtc_state->async_flip_planes;
const struct intel_plane_state *old_plane_state;
struct intel_plane *plane;
bool need_vbl_wait = false;
@@ -1306,7 +1171,7 @@ static void intel_crtc_async_flip_disable_wa(struct intel_atomic_state *state,
for_each_old_intel_plane_in_state(state, plane, old_plane_state, i) {
if (plane->need_async_flip_disable_wa &&
plane->pipe == crtc->pipe &&
- update_planes & BIT(plane->id)) {
+ disable_async_flip_planes & BIT(plane->id)) {
/*
* Apart from the async flip bit we want to
* preserve the old state for the plane.
@@ -1423,7 +1288,7 @@ static void intel_pre_plane_update(struct intel_atomic_state *state,
* WA for platforms where async address update enable bit
* is double buffered and only latched at start of vblank.
*/
- if (old_crtc_state->uapi.async_flip && !new_crtc_state->uapi.async_flip)
+ if (old_crtc_state->async_flip_planes & ~new_crtc_state->async_flip_planes)
intel_crtc_async_flip_disable_wa(state, crtc);
}
@@ -1455,36 +1320,11 @@ static void intel_crtc_disable_planes(struct intel_atomic_state *state,
intel_frontbuffer_flip(dev_priv, fb_bits);
}
-/*
- * intel_connector_primary_encoder - get the primary encoder for a connector
- * @connector: connector for which to return the encoder
- *
- * Returns the primary encoder for a connector. There is a 1:1 mapping from
- * all connectors to their encoder, except for DP-MST connectors which have
- * both a virtual and a primary encoder. These DP-MST primary encoders can be
- * pointed to by as many DP-MST connectors as there are pipes.
- */
-static struct intel_encoder *
-intel_connector_primary_encoder(struct intel_connector *connector)
-{
- struct intel_encoder *encoder;
-
- if (connector->mst_port)
- return &dp_to_dig_port(connector->mst_port)->base;
-
- encoder = intel_attached_encoder(connector);
- drm_WARN_ON(connector->base.dev, !encoder);
-
- return encoder;
-}
-
static void intel_encoders_update_prepare(struct intel_atomic_state *state)
{
struct drm_i915_private *i915 = to_i915(state->base.dev);
struct intel_crtc_state *new_crtc_state, *old_crtc_state;
struct intel_crtc *crtc;
- struct drm_connector_state *new_conn_state;
- struct drm_connector *connector;
int i;
/*
@@ -1500,57 +1340,6 @@ static void intel_encoders_update_prepare(struct intel_atomic_state *state)
new_crtc_state->dpll_hw_state = old_crtc_state->dpll_hw_state;
}
}
-
- if (!state->modeset)
- return;
-
- for_each_new_connector_in_state(&state->base, connector, new_conn_state,
- i) {
- struct intel_connector *intel_connector;
- struct intel_encoder *encoder;
- struct intel_crtc *crtc;
-
- if (!intel_connector_needs_modeset(state, connector))
- continue;
-
- intel_connector = to_intel_connector(connector);
- encoder = intel_connector_primary_encoder(intel_connector);
- if (!encoder->update_prepare)
- continue;
-
- crtc = new_conn_state->crtc ?
- to_intel_crtc(new_conn_state->crtc) : NULL;
- encoder->update_prepare(state, encoder, crtc);
- }
-}
-
-static void intel_encoders_update_complete(struct intel_atomic_state *state)
-{
- struct drm_connector_state *new_conn_state;
- struct drm_connector *connector;
- int i;
-
- if (!state->modeset)
- return;
-
- for_each_new_connector_in_state(&state->base, connector, new_conn_state,
- i) {
- struct intel_connector *intel_connector;
- struct intel_encoder *encoder;
- struct intel_crtc *crtc;
-
- if (!intel_connector_needs_modeset(state, connector))
- continue;
-
- intel_connector = to_intel_connector(connector);
- encoder = intel_connector_primary_encoder(intel_connector);
- if (!encoder->update_complete)
- continue;
-
- crtc = new_conn_state->crtc ?
- to_intel_crtc(new_conn_state->crtc) : NULL;
- encoder->update_complete(state, encoder, crtc);
- }
}
static void intel_encoders_pre_pll_enable(struct intel_atomic_state *state,
@@ -1799,7 +1588,7 @@ static void ilk_crtc_enable(struct intel_atomic_state *state,
intel_encoders_enable(state, crtc);
if (HAS_PCH_CPT(dev_priv))
- cpt_verify_modeset(dev_priv, pipe);
+ intel_wait_for_pipe_scanline_moving(crtc);
/*
* Must wait for vblank to avoid spurious PCH FIFO underruns.
@@ -1846,12 +1635,10 @@ static void hsw_set_frame_start_delay(const struct intel_crtc_state *crtc_state)
enum transcoder transcoder = crtc_state->cpu_transcoder;
i915_reg_t reg = DISPLAY_VER(dev_priv) >= 14 ? MTL_CHICKEN_TRANS(transcoder) :
CHICKEN_TRANS(transcoder);
- u32 val;
- val = intel_de_read(dev_priv, reg);
- val &= ~HSW_FRAME_START_DELAY_MASK;
- val |= HSW_FRAME_START_DELAY(crtc_state->framestart_delay - 1);
- intel_de_write(dev_priv, reg, val);
+ intel_de_rmw(dev_priv, reg,
+ HSW_FRAME_START_DELAY_MASK,
+ HSW_FRAME_START_DELAY(crtc_state->framestart_delay - 1));
}
static void icl_ddi_bigjoiner_pre_enable(struct intel_atomic_state *state,
@@ -1891,7 +1678,7 @@ static void hsw_configure_cpu_transcoder(const struct intel_crtc_state *crtc_sta
intel_set_transcoder_timings(crtc_state);
if (cpu_transcoder != TRANSCODER_EDP)
- intel_de_write(dev_priv, PIPE_MULT(cpu_transcoder),
+ intel_de_write(dev_priv, TRANS_MULT(cpu_transcoder),
crtc_state->pixel_multiplier - 1);
hsw_set_frame_start_delay(crtc_state);
@@ -1912,6 +1699,8 @@ static void hsw_crtc_enable(struct intel_atomic_state *state,
if (drm_WARN_ON(&dev_priv->drm, crtc->active))
return;
+ intel_dmc_enable_pipe(dev_priv, crtc->pipe);
+
if (!new_crtc_state->bigjoiner_pipes) {
intel_encoders_pre_pll_enable(state, crtc);
@@ -1930,7 +1719,7 @@ static void hsw_crtc_enable(struct intel_atomic_state *state,
intel_set_pipe_src_size(new_crtc_state);
if (DISPLAY_VER(dev_priv) >= 9 || IS_BROADWELL(dev_priv))
- bdw_set_pipemisc(new_crtc_state);
+ bdw_set_pipe_misc(new_crtc_state);
if (!intel_crtc_is_bigjoiner_slave(new_crtc_state) &&
!transcoder_is_dsi(cpu_transcoder))
@@ -2040,6 +1829,8 @@ static void ilk_crtc_disable(struct intel_atomic_state *state,
intel_set_cpu_fifo_underrun_reporting(dev_priv, pipe, true);
intel_set_pch_fifo_underrun_reporting(dev_priv, pipe, true);
+
+ intel_disable_shared_dpll(old_crtc_state);
}
static void hsw_crtc_disable(struct intel_atomic_state *state,
@@ -2047,6 +1838,7 @@ static void hsw_crtc_disable(struct intel_atomic_state *state,
{
const struct intel_crtc_state *old_crtc_state =
intel_atomic_get_old_crtc_state(state, crtc);
+ struct drm_i915_private *i915 = to_i915(crtc->base.dev);
/*
* FIXME collapse everything to one hook.
@@ -2056,6 +1848,12 @@ static void hsw_crtc_disable(struct intel_atomic_state *state,
intel_encoders_disable(state, crtc);
intel_encoders_post_disable(state, crtc);
}
+
+ intel_disable_shared_dpll(old_crtc_state);
+
+ intel_encoders_post_pll_disable(state, crtc);
+
+ intel_dmc_disable_pipe(i915, crtc->pipe);
}
static void i9xx_pfit_enable(const struct intel_crtc_state *crtc_state)
@@ -2273,6 +2071,8 @@ static void valleyview_crtc_enable(struct intel_atomic_state *state,
intel_set_pipe_src_size(new_crtc_state);
+ intel_de_write(dev_priv, VLV_PIPE_MSA_MISC(pipe), 0);
+
if (IS_CHERRYVIEW(dev_priv) && pipe == PIPE_B) {
intel_de_write(dev_priv, CHV_BLEND(pipe), CHV_BLEND_LEGACY);
intel_de_write(dev_priv, CHV_CANVAS(pipe), 0);
@@ -2434,7 +2234,7 @@ int intel_display_suspend(struct drm_device *dev)
drm_err(&dev_priv->drm, "Suspending crtc's failed with %i\n",
ret);
else
- dev_priv->modeset_restore_state = state;
+ dev_priv->display.restore.modeset_state = state;
return ret;
}
@@ -2859,12 +2659,14 @@ static void intel_set_transcoder_timings(const struct intel_crtc_state *crtc_sta
enum pipe pipe = crtc->pipe;
enum transcoder cpu_transcoder = crtc_state->cpu_transcoder;
const struct drm_display_mode *adjusted_mode = &crtc_state->hw.adjusted_mode;
- u32 crtc_vtotal, crtc_vblank_end;
+ u32 crtc_vdisplay, crtc_vtotal, crtc_vblank_start, crtc_vblank_end;
int vsyncshift = 0;
/* We need to be careful not to changed the adjusted mode, for otherwise
* the hw state checker will get angry at the mismatch. */
+ crtc_vdisplay = adjusted_mode->crtc_vdisplay;
crtc_vtotal = adjusted_mode->crtc_vtotal;
+ crtc_vblank_start = adjusted_mode->crtc_vblank_start;
crtc_vblank_end = adjusted_mode->crtc_vblank_end;
if (adjusted_mode->flags & DRM_MODE_FLAG_INTERLACE) {
@@ -2881,23 +2683,44 @@ static void intel_set_transcoder_timings(const struct intel_crtc_state *crtc_sta
vsyncshift += adjusted_mode->crtc_htotal;
}
+ /*
+ * VBLANK_START no longer works on ADL+, instead we must use
+ * TRANS_SET_CONTEXT_LATENCY to configure the pipe vblank start.
+ */
+ if (DISPLAY_VER(dev_priv) >= 13) {
+ intel_de_write(dev_priv, TRANS_SET_CONTEXT_LATENCY(cpu_transcoder),
+ crtc_vblank_start - crtc_vdisplay);
+
+ /*
+ * VBLANK_START not used by hw, just clear it
+ * to make it stand out in register dumps.
+ */
+ crtc_vblank_start = 1;
+ }
+
if (DISPLAY_VER(dev_priv) > 3)
- intel_de_write(dev_priv, VSYNCSHIFT(cpu_transcoder),
- vsyncshift);
-
- intel_de_write(dev_priv, HTOTAL(cpu_transcoder),
- (adjusted_mode->crtc_hdisplay - 1) | ((adjusted_mode->crtc_htotal - 1) << 16));
- intel_de_write(dev_priv, HBLANK(cpu_transcoder),
- (adjusted_mode->crtc_hblank_start - 1) | ((adjusted_mode->crtc_hblank_end - 1) << 16));
- intel_de_write(dev_priv, HSYNC(cpu_transcoder),
- (adjusted_mode->crtc_hsync_start - 1) | ((adjusted_mode->crtc_hsync_end - 1) << 16));
-
- intel_de_write(dev_priv, VTOTAL(cpu_transcoder),
- (adjusted_mode->crtc_vdisplay - 1) | ((crtc_vtotal - 1) << 16));
- intel_de_write(dev_priv, VBLANK(cpu_transcoder),
- (adjusted_mode->crtc_vblank_start - 1) | ((crtc_vblank_end - 1) << 16));
- intel_de_write(dev_priv, VSYNC(cpu_transcoder),
- (adjusted_mode->crtc_vsync_start - 1) | ((adjusted_mode->crtc_vsync_end - 1) << 16));
+ intel_de_write(dev_priv, TRANS_VSYNCSHIFT(cpu_transcoder),
+ vsyncshift);
+
+ intel_de_write(dev_priv, TRANS_HTOTAL(cpu_transcoder),
+ HACTIVE(adjusted_mode->crtc_hdisplay - 1) |
+ HTOTAL(adjusted_mode->crtc_htotal - 1));
+ intel_de_write(dev_priv, TRANS_HBLANK(cpu_transcoder),
+ HBLANK_START(adjusted_mode->crtc_hblank_start - 1) |
+ HBLANK_END(adjusted_mode->crtc_hblank_end - 1));
+ intel_de_write(dev_priv, TRANS_HSYNC(cpu_transcoder),
+ HSYNC_START(adjusted_mode->crtc_hsync_start - 1) |
+ HSYNC_END(adjusted_mode->crtc_hsync_end - 1));
+
+ intel_de_write(dev_priv, TRANS_VTOTAL(cpu_transcoder),
+ VACTIVE(crtc_vdisplay - 1) |
+ VTOTAL(crtc_vtotal - 1));
+ intel_de_write(dev_priv, TRANS_VBLANK(cpu_transcoder),
+ VBLANK_START(crtc_vblank_start - 1) |
+ VBLANK_END(crtc_vblank_end - 1));
+ intel_de_write(dev_priv, TRANS_VSYNC(cpu_transcoder),
+ VSYNC_START(adjusted_mode->crtc_vsync_start - 1) |
+ VSYNC_END(adjusted_mode->crtc_vsync_end - 1));
/* Workaround: when the EDP input selection is B, the VTOTAL_B must be
* programmed with the VTOTAL_EDP value. Same for VTOTAL_C. This is
@@ -2905,9 +2728,9 @@ static void intel_set_transcoder_timings(const struct intel_crtc_state *crtc_sta
* bits. */
if (IS_HASWELL(dev_priv) && cpu_transcoder == TRANSCODER_EDP &&
(pipe == PIPE_B || pipe == PIPE_C))
- intel_de_write(dev_priv, VTOTAL(pipe),
- intel_de_read(dev_priv, VTOTAL(cpu_transcoder)));
-
+ intel_de_write(dev_priv, TRANS_VTOTAL(pipe),
+ VACTIVE(crtc_vdisplay - 1) |
+ VTOTAL(crtc_vtotal - 1));
}
static void intel_set_pipe_src_size(const struct intel_crtc_state *crtc_state)
@@ -2935,9 +2758,9 @@ static bool intel_pipe_is_interlaced(const struct intel_crtc_state *crtc_state)
if (DISPLAY_VER(dev_priv) >= 9 ||
IS_BROADWELL(dev_priv) || IS_HASWELL(dev_priv))
- return intel_de_read(dev_priv, PIPECONF(cpu_transcoder)) & PIPECONF_INTERLACE_MASK_HSW;
+ return intel_de_read(dev_priv, TRANSCONF(cpu_transcoder)) & TRANSCONF_INTERLACE_MASK_HSW;
else
- return intel_de_read(dev_priv, PIPECONF(cpu_transcoder)) & PIPECONF_INTERLACE_MASK;
+ return intel_de_read(dev_priv, TRANSCONF(cpu_transcoder)) & TRANSCONF_INTERLACE_MASK;
}
static void intel_get_transcoder_timings(struct intel_crtc *crtc,
@@ -2946,43 +2769,47 @@ static void intel_get_transcoder_timings(struct intel_crtc *crtc,
struct drm_device *dev = crtc->base.dev;
struct drm_i915_private *dev_priv = to_i915(dev);
enum transcoder cpu_transcoder = pipe_config->cpu_transcoder;
+ struct drm_display_mode *adjusted_mode = &pipe_config->hw.adjusted_mode;
u32 tmp;
- tmp = intel_de_read(dev_priv, HTOTAL(cpu_transcoder));
- pipe_config->hw.adjusted_mode.crtc_hdisplay = (tmp & 0xffff) + 1;
- pipe_config->hw.adjusted_mode.crtc_htotal = ((tmp >> 16) & 0xffff) + 1;
+ tmp = intel_de_read(dev_priv, TRANS_HTOTAL(cpu_transcoder));
+ adjusted_mode->crtc_hdisplay = REG_FIELD_GET(HACTIVE_MASK, tmp) + 1;
+ adjusted_mode->crtc_htotal = REG_FIELD_GET(HTOTAL_MASK, tmp) + 1;
if (!transcoder_is_dsi(cpu_transcoder)) {
- tmp = intel_de_read(dev_priv, HBLANK(cpu_transcoder));
- pipe_config->hw.adjusted_mode.crtc_hblank_start =
- (tmp & 0xffff) + 1;
- pipe_config->hw.adjusted_mode.crtc_hblank_end =
- ((tmp >> 16) & 0xffff) + 1;
+ tmp = intel_de_read(dev_priv, TRANS_HBLANK(cpu_transcoder));
+ adjusted_mode->crtc_hblank_start = REG_FIELD_GET(HBLANK_START_MASK, tmp) + 1;
+ adjusted_mode->crtc_hblank_end = REG_FIELD_GET(HBLANK_END_MASK, tmp) + 1;
}
- tmp = intel_de_read(dev_priv, HSYNC(cpu_transcoder));
- pipe_config->hw.adjusted_mode.crtc_hsync_start = (tmp & 0xffff) + 1;
- pipe_config->hw.adjusted_mode.crtc_hsync_end = ((tmp >> 16) & 0xffff) + 1;
- tmp = intel_de_read(dev_priv, VTOTAL(cpu_transcoder));
- pipe_config->hw.adjusted_mode.crtc_vdisplay = (tmp & 0xffff) + 1;
- pipe_config->hw.adjusted_mode.crtc_vtotal = ((tmp >> 16) & 0xffff) + 1;
+ tmp = intel_de_read(dev_priv, TRANS_HSYNC(cpu_transcoder));
+ adjusted_mode->crtc_hsync_start = REG_FIELD_GET(HSYNC_START_MASK, tmp) + 1;
+ adjusted_mode->crtc_hsync_end = REG_FIELD_GET(HSYNC_END_MASK, tmp) + 1;
+
+ tmp = intel_de_read(dev_priv, TRANS_VTOTAL(cpu_transcoder));
+ adjusted_mode->crtc_vdisplay = REG_FIELD_GET(VACTIVE_MASK, tmp) + 1;
+ adjusted_mode->crtc_vtotal = REG_FIELD_GET(VTOTAL_MASK, tmp) + 1;
+ /* FIXME TGL+ DSI transcoders have this! */
if (!transcoder_is_dsi(cpu_transcoder)) {
- tmp = intel_de_read(dev_priv, VBLANK(cpu_transcoder));
- pipe_config->hw.adjusted_mode.crtc_vblank_start =
- (tmp & 0xffff) + 1;
- pipe_config->hw.adjusted_mode.crtc_vblank_end =
- ((tmp >> 16) & 0xffff) + 1;
+ tmp = intel_de_read(dev_priv, TRANS_VBLANK(cpu_transcoder));
+ adjusted_mode->crtc_vblank_start = REG_FIELD_GET(VBLANK_START_MASK, tmp) + 1;
+ adjusted_mode->crtc_vblank_end = REG_FIELD_GET(VBLANK_END_MASK, tmp) + 1;
}
- tmp = intel_de_read(dev_priv, VSYNC(cpu_transcoder));
- pipe_config->hw.adjusted_mode.crtc_vsync_start = (tmp & 0xffff) + 1;
- pipe_config->hw.adjusted_mode.crtc_vsync_end = ((tmp >> 16) & 0xffff) + 1;
+ tmp = intel_de_read(dev_priv, TRANS_VSYNC(cpu_transcoder));
+ adjusted_mode->crtc_vsync_start = REG_FIELD_GET(VSYNC_START_MASK, tmp) + 1;
+ adjusted_mode->crtc_vsync_end = REG_FIELD_GET(VSYNC_END_MASK, tmp) + 1;
if (intel_pipe_is_interlaced(pipe_config)) {
- pipe_config->hw.adjusted_mode.flags |= DRM_MODE_FLAG_INTERLACE;
- pipe_config->hw.adjusted_mode.crtc_vtotal += 1;
- pipe_config->hw.adjusted_mode.crtc_vblank_end += 1;
+ adjusted_mode->flags |= DRM_MODE_FLAG_INTERLACE;
+ adjusted_mode->crtc_vtotal += 1;
+ adjusted_mode->crtc_vblank_end += 1;
}
+
+ if (DISPLAY_VER(dev_priv) >= 13 && !transcoder_is_dsi(cpu_transcoder))
+ adjusted_mode->crtc_vblank_start =
+ adjusted_mode->crtc_vdisplay +
+ intel_de_read(dev_priv, TRANS_SET_CONTEXT_LATENCY(cpu_transcoder));
}
static void intel_bigjoiner_adjust_pipe_src(struct intel_crtc_state *crtc_state)
@@ -3022,7 +2849,8 @@ void i9xx_set_pipeconf(const struct intel_crtc_state *crtc_state)
{
struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
- u32 pipeconf = 0;
+ enum transcoder cpu_transcoder = crtc_state->cpu_transcoder;
+ u32 val = 0;
/*
* - We keep both pipes enabled on 830
@@ -3030,18 +2858,18 @@ void i9xx_set_pipeconf(const struct intel_crtc_state *crtc_state)
* - During fastset the pipe is already enabled and must remain so
*/
if (IS_I830(dev_priv) || !intel_crtc_needs_modeset(crtc_state))
- pipeconf |= PIPECONF_ENABLE;
+ val |= TRANSCONF_ENABLE;
if (crtc_state->double_wide)
- pipeconf |= PIPECONF_DOUBLE_WIDE;
+ val |= TRANSCONF_DOUBLE_WIDE;
/* only g4x and later have fancy bpc/dither controls */
if (IS_G4X(dev_priv) || IS_VALLEYVIEW(dev_priv) ||
IS_CHERRYVIEW(dev_priv)) {
/* Bspec claims that we can't use dithering for 30bpp pipes. */
if (crtc_state->dither && crtc_state->pipe_bpp != 30)
- pipeconf |= PIPECONF_DITHER_EN |
- PIPECONF_DITHER_TYPE_SP;
+ val |= TRANSCONF_DITHER_EN |
+ TRANSCONF_DITHER_TYPE_SP;
switch (crtc_state->pipe_bpp) {
default:
@@ -3049,13 +2877,13 @@ void i9xx_set_pipeconf(const struct intel_crtc_state *crtc_state)
MISSING_CASE(crtc_state->pipe_bpp);
fallthrough;
case 18:
- pipeconf |= PIPECONF_BPC_6;
+ val |= TRANSCONF_BPC_6;
break;
case 24:
- pipeconf |= PIPECONF_BPC_8;
+ val |= TRANSCONF_BPC_8;
break;
case 30:
- pipeconf |= PIPECONF_BPC_10;
+ val |= TRANSCONF_BPC_10;
break;
}
}
@@ -3063,23 +2891,23 @@ void i9xx_set_pipeconf(const struct intel_crtc_state *crtc_state)
if (crtc_state->hw.adjusted_mode.flags & DRM_MODE_FLAG_INTERLACE) {
if (DISPLAY_VER(dev_priv) < 4 ||
intel_crtc_has_type(crtc_state, INTEL_OUTPUT_SDVO))
- pipeconf |= PIPECONF_INTERLACE_W_FIELD_INDICATION;
+ val |= TRANSCONF_INTERLACE_W_FIELD_INDICATION;
else
- pipeconf |= PIPECONF_INTERLACE_W_SYNC_SHIFT;
+ val |= TRANSCONF_INTERLACE_W_SYNC_SHIFT;
} else {
- pipeconf |= PIPECONF_INTERLACE_PROGRESSIVE;
+ val |= TRANSCONF_INTERLACE_PROGRESSIVE;
}
if ((IS_VALLEYVIEW(dev_priv) || IS_CHERRYVIEW(dev_priv)) &&
crtc_state->limited_color_range)
- pipeconf |= PIPECONF_COLOR_RANGE_SELECT;
+ val |= TRANSCONF_COLOR_RANGE_SELECT;
- pipeconf |= PIPECONF_GAMMA_MODE(crtc_state->gamma_mode);
+ val |= TRANSCONF_GAMMA_MODE(crtc_state->gamma_mode);
- pipeconf |= PIPECONF_FRAME_START_DELAY(crtc_state->framestart_delay - 1);
+ val |= TRANSCONF_FRAME_START_DELAY(crtc_state->framestart_delay - 1);
- intel_de_write(dev_priv, PIPECONF(crtc->pipe), pipeconf);
- intel_de_posting_read(dev_priv, PIPECONF(crtc->pipe));
+ intel_de_write(dev_priv, TRANSCONF(cpu_transcoder), val);
+ intel_de_posting_read(dev_priv, TRANSCONF(cpu_transcoder));
}
static bool i9xx_has_pfit(struct drm_i915_private *dev_priv)
@@ -3180,20 +3008,20 @@ static void chv_crtc_clock_get(struct intel_crtc *crtc,
}
static enum intel_output_format
-bdw_get_pipemisc_output_format(struct intel_crtc *crtc)
+bdw_get_pipe_misc_output_format(struct intel_crtc *crtc)
{
struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
u32 tmp;
- tmp = intel_de_read(dev_priv, PIPEMISC(crtc->pipe));
+ tmp = intel_de_read(dev_priv, PIPE_MISC(crtc->pipe));
- if (tmp & PIPEMISC_YUV420_ENABLE) {
+ if (tmp & PIPE_MISC_YUV420_ENABLE) {
/* We support 4:2:0 in full blend mode only */
drm_WARN_ON(&dev_priv->drm,
- (tmp & PIPEMISC_YUV420_MODE_FULL_BLEND) == 0);
+ (tmp & PIPE_MISC_YUV420_MODE_FULL_BLEND) == 0);
return INTEL_OUTPUT_FORMAT_YCBCR420;
- } else if (tmp & PIPEMISC_OUTPUT_COLORSPACE_YUV) {
+ } else if (tmp & PIPE_MISC_OUTPUT_COLORSPACE_YUV) {
return INTEL_OUTPUT_FORMAT_YCBCR444;
} else {
return INTEL_OUTPUT_FORMAT_RGB;
@@ -3238,20 +3066,20 @@ static bool i9xx_get_pipe_config(struct intel_crtc *crtc,
ret = false;
- tmp = intel_de_read(dev_priv, PIPECONF(crtc->pipe));
- if (!(tmp & PIPECONF_ENABLE))
+ tmp = intel_de_read(dev_priv, TRANSCONF(pipe_config->cpu_transcoder));
+ if (!(tmp & TRANSCONF_ENABLE))
goto out;
if (IS_G4X(dev_priv) || IS_VALLEYVIEW(dev_priv) ||
IS_CHERRYVIEW(dev_priv)) {
- switch (tmp & PIPECONF_BPC_MASK) {
- case PIPECONF_BPC_6:
+ switch (tmp & TRANSCONF_BPC_MASK) {
+ case TRANSCONF_BPC_6:
pipe_config->pipe_bpp = 18;
break;
- case PIPECONF_BPC_8:
+ case TRANSCONF_BPC_8:
pipe_config->pipe_bpp = 24;
break;
- case PIPECONF_BPC_10:
+ case TRANSCONF_BPC_10:
pipe_config->pipe_bpp = 30;
break;
default:
@@ -3261,12 +3089,12 @@ static bool i9xx_get_pipe_config(struct intel_crtc *crtc,
}
if ((IS_VALLEYVIEW(dev_priv) || IS_CHERRYVIEW(dev_priv)) &&
- (tmp & PIPECONF_COLOR_RANGE_SELECT))
+ (tmp & TRANSCONF_COLOR_RANGE_SELECT))
pipe_config->limited_color_range = true;
- pipe_config->gamma_mode = REG_FIELD_GET(PIPECONF_GAMMA_MODE_MASK_I9XX, tmp);
+ pipe_config->gamma_mode = REG_FIELD_GET(TRANSCONF_GAMMA_MODE_MASK_I9XX, tmp);
- pipe_config->framestart_delay = REG_FIELD_GET(PIPECONF_FRAME_START_DELAY_MASK, tmp) + 1;
+ pipe_config->framestart_delay = REG_FIELD_GET(TRANSCONF_FRAME_START_DELAY_MASK, tmp) + 1;
if (IS_CHERRYVIEW(dev_priv))
pipe_config->cgm_mode = intel_de_read(dev_priv,
@@ -3276,7 +3104,7 @@ static bool i9xx_get_pipe_config(struct intel_crtc *crtc,
intel_color_get_config(pipe_config);
if (DISPLAY_VER(dev_priv) < 4)
- pipe_config->double_wide = tmp & PIPECONF_DOUBLE_WIDE;
+ pipe_config->double_wide = tmp & TRANSCONF_DOUBLE_WIDE;
intel_get_transcoder_timings(crtc, pipe_config);
intel_get_pipe_src_size(crtc, pipe_config);
@@ -3286,7 +3114,7 @@ static bool i9xx_get_pipe_config(struct intel_crtc *crtc,
if (DISPLAY_VER(dev_priv) >= 4) {
/* No way to read it out on pipes B and C */
if (IS_CHERRYVIEW(dev_priv) && crtc->pipe != PIPE_A)
- tmp = dev_priv->chv_dpll_md[crtc->pipe];
+ tmp = dev_priv->display.state.chv_dpll_md[crtc->pipe];
else
tmp = intel_de_read(dev_priv, DPLL_MD(crtc->pipe));
pipe_config->pixel_multiplier =
@@ -3346,7 +3174,7 @@ void ilk_set_pipeconf(const struct intel_crtc_state *crtc_state)
{
struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
- enum pipe pipe = crtc->pipe;
+ enum transcoder cpu_transcoder = crtc_state->cpu_transcoder;
u32 val = 0;
/*
@@ -3354,7 +3182,7 @@ void ilk_set_pipeconf(const struct intel_crtc_state *crtc_state)
* - During fastset the pipe is already enabled and must remain so
*/
if (!intel_crtc_needs_modeset(crtc_state))
- val |= PIPECONF_ENABLE;
+ val |= TRANSCONF_ENABLE;
switch (crtc_state->pipe_bpp) {
default:
@@ -3362,26 +3190,26 @@ void ilk_set_pipeconf(const struct intel_crtc_state *crtc_state)
MISSING_CASE(crtc_state->pipe_bpp);
fallthrough;
case 18:
- val |= PIPECONF_BPC_6;
+ val |= TRANSCONF_BPC_6;
break;
case 24:
- val |= PIPECONF_BPC_8;
+ val |= TRANSCONF_BPC_8;
break;
case 30:
- val |= PIPECONF_BPC_10;
+ val |= TRANSCONF_BPC_10;
break;
case 36:
- val |= PIPECONF_BPC_12;
+ val |= TRANSCONF_BPC_12;
break;
}
if (crtc_state->dither)
- val |= PIPECONF_DITHER_EN | PIPECONF_DITHER_TYPE_SP;
+ val |= TRANSCONF_DITHER_EN | TRANSCONF_DITHER_TYPE_SP;
if (crtc_state->hw.adjusted_mode.flags & DRM_MODE_FLAG_INTERLACE)
- val |= PIPECONF_INTERLACE_IF_ID_ILK;
+ val |= TRANSCONF_INTERLACE_IF_ID_ILK;
else
- val |= PIPECONF_INTERLACE_PF_PD_ILK;
+ val |= TRANSCONF_INTERLACE_PF_PD_ILK;
/*
* This would end up with an odd purple hue over
@@ -3392,18 +3220,18 @@ void ilk_set_pipeconf(const struct intel_crtc_state *crtc_state)
if (crtc_state->limited_color_range &&
!intel_crtc_has_type(crtc_state, INTEL_OUTPUT_SDVO))
- val |= PIPECONF_COLOR_RANGE_SELECT;
+ val |= TRANSCONF_COLOR_RANGE_SELECT;
if (crtc_state->output_format != INTEL_OUTPUT_FORMAT_RGB)
- val |= PIPECONF_OUTPUT_COLORSPACE_YUV709;
+ val |= TRANSCONF_OUTPUT_COLORSPACE_YUV709;
- val |= PIPECONF_GAMMA_MODE(crtc_state->gamma_mode);
+ val |= TRANSCONF_GAMMA_MODE(crtc_state->gamma_mode);
- val |= PIPECONF_FRAME_START_DELAY(crtc_state->framestart_delay - 1);
- val |= PIPECONF_MSA_TIMING_DELAY(crtc_state->msa_timing_delay);
+ val |= TRANSCONF_FRAME_START_DELAY(crtc_state->framestart_delay - 1);
+ val |= TRANSCONF_MSA_TIMING_DELAY(crtc_state->msa_timing_delay);
- intel_de_write(dev_priv, PIPECONF(pipe), val);
- intel_de_posting_read(dev_priv, PIPECONF(pipe));
+ intel_de_write(dev_priv, TRANSCONF(cpu_transcoder), val);
+ intel_de_posting_read(dev_priv, TRANSCONF(cpu_transcoder));
}
static void hsw_set_transconf(const struct intel_crtc_state *crtc_state)
@@ -3418,25 +3246,25 @@ static void hsw_set_transconf(const struct intel_crtc_state *crtc_state)
* - During fastset the pipe is already enabled and must remain so
*/
if (!intel_crtc_needs_modeset(crtc_state))
- val |= PIPECONF_ENABLE;
+ val |= TRANSCONF_ENABLE;
if (IS_HASWELL(dev_priv) && crtc_state->dither)
- val |= PIPECONF_DITHER_EN | PIPECONF_DITHER_TYPE_SP;
+ val |= TRANSCONF_DITHER_EN | TRANSCONF_DITHER_TYPE_SP;
if (crtc_state->hw.adjusted_mode.flags & DRM_MODE_FLAG_INTERLACE)
- val |= PIPECONF_INTERLACE_IF_ID_ILK;
+ val |= TRANSCONF_INTERLACE_IF_ID_ILK;
else
- val |= PIPECONF_INTERLACE_PF_PD_ILK;
+ val |= TRANSCONF_INTERLACE_PF_PD_ILK;
if (IS_HASWELL(dev_priv) &&
crtc_state->output_format != INTEL_OUTPUT_FORMAT_RGB)
- val |= PIPECONF_OUTPUT_COLORSPACE_YUV_HSW;
+ val |= TRANSCONF_OUTPUT_COLORSPACE_YUV_HSW;
- intel_de_write(dev_priv, PIPECONF(cpu_transcoder), val);
- intel_de_posting_read(dev_priv, PIPECONF(cpu_transcoder));
+ intel_de_write(dev_priv, TRANSCONF(cpu_transcoder), val);
+ intel_de_posting_read(dev_priv, TRANSCONF(cpu_transcoder));
}
-static void bdw_set_pipemisc(const struct intel_crtc_state *crtc_state)
+static void bdw_set_pipe_misc(const struct intel_crtc_state *crtc_state)
{
struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
@@ -3444,18 +3272,18 @@ static void bdw_set_pipemisc(const struct intel_crtc_state *crtc_state)
switch (crtc_state->pipe_bpp) {
case 18:
- val |= PIPEMISC_BPC_6;
+ val |= PIPE_MISC_BPC_6;
break;
case 24:
- val |= PIPEMISC_BPC_8;
+ val |= PIPE_MISC_BPC_8;
break;
case 30:
- val |= PIPEMISC_BPC_10;
+ val |= PIPE_MISC_BPC_10;
break;
case 36:
/* Port output 12BPC defined for ADLP+ */
if (DISPLAY_VER(dev_priv) > 12)
- val |= PIPEMISC_BPC_12_ADLP;
+ val |= PIPE_MISC_BPC_12_ADLP;
break;
default:
MISSING_CASE(crtc_state->pipe_bpp);
@@ -3463,38 +3291,38 @@ static void bdw_set_pipemisc(const struct intel_crtc_state *crtc_state)
}
if (crtc_state->dither)
- val |= PIPEMISC_DITHER_ENABLE | PIPEMISC_DITHER_TYPE_SP;
+ val |= PIPE_MISC_DITHER_ENABLE | PIPE_MISC_DITHER_TYPE_SP;
if (crtc_state->output_format == INTEL_OUTPUT_FORMAT_YCBCR420 ||
crtc_state->output_format == INTEL_OUTPUT_FORMAT_YCBCR444)
- val |= PIPEMISC_OUTPUT_COLORSPACE_YUV;
+ val |= PIPE_MISC_OUTPUT_COLORSPACE_YUV;
if (crtc_state->output_format == INTEL_OUTPUT_FORMAT_YCBCR420)
- val |= PIPEMISC_YUV420_ENABLE |
- PIPEMISC_YUV420_MODE_FULL_BLEND;
+ val |= PIPE_MISC_YUV420_ENABLE |
+ PIPE_MISC_YUV420_MODE_FULL_BLEND;
if (DISPLAY_VER(dev_priv) >= 11 && is_hdr_mode(crtc_state))
- val |= PIPEMISC_HDR_MODE_PRECISION;
+ val |= PIPE_MISC_HDR_MODE_PRECISION;
if (DISPLAY_VER(dev_priv) >= 12)
- val |= PIPEMISC_PIXEL_ROUNDING_TRUNC;
+ val |= PIPE_MISC_PIXEL_ROUNDING_TRUNC;
- intel_de_write(dev_priv, PIPEMISC(crtc->pipe), val);
+ intel_de_write(dev_priv, PIPE_MISC(crtc->pipe), val);
}
-int bdw_get_pipemisc_bpp(struct intel_crtc *crtc)
+int bdw_get_pipe_misc_bpp(struct intel_crtc *crtc)
{
struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
u32 tmp;
- tmp = intel_de_read(dev_priv, PIPEMISC(crtc->pipe));
+ tmp = intel_de_read(dev_priv, PIPE_MISC(crtc->pipe));
- switch (tmp & PIPEMISC_BPC_MASK) {
- case PIPEMISC_BPC_6:
+ switch (tmp & PIPE_MISC_BPC_MASK) {
+ case PIPE_MISC_BPC_6:
return 18;
- case PIPEMISC_BPC_8:
+ case PIPE_MISC_BPC_8:
return 24;
- case PIPEMISC_BPC_10:
+ case PIPE_MISC_BPC_10:
return 30;
/*
* PORT OUTPUT 12 BPC defined for ADLP+.
@@ -3506,7 +3334,7 @@ int bdw_get_pipemisc_bpp(struct intel_crtc *crtc)
* on older platforms, need to find a workaround for 12 BPC
* MIPI DSI HW readout.
*/
- case PIPEMISC_BPC_12_ADLP:
+ case PIPE_MISC_BPC_12_ADLP:
if (DISPLAY_VER(dev_priv) > 12)
return 36;
fallthrough;
@@ -3658,33 +3486,33 @@ static bool ilk_get_pipe_config(struct intel_crtc *crtc,
pipe_config->shared_dpll = NULL;
ret = false;
- tmp = intel_de_read(dev_priv, PIPECONF(crtc->pipe));
- if (!(tmp & PIPECONF_ENABLE))
+ tmp = intel_de_read(dev_priv, TRANSCONF(pipe_config->cpu_transcoder));
+ if (!(tmp & TRANSCONF_ENABLE))
goto out;
- switch (tmp & PIPECONF_BPC_MASK) {
- case PIPECONF_BPC_6:
+ switch (tmp & TRANSCONF_BPC_MASK) {
+ case TRANSCONF_BPC_6:
pipe_config->pipe_bpp = 18;
break;
- case PIPECONF_BPC_8:
+ case TRANSCONF_BPC_8:
pipe_config->pipe_bpp = 24;
break;
- case PIPECONF_BPC_10:
+ case TRANSCONF_BPC_10:
pipe_config->pipe_bpp = 30;
break;
- case PIPECONF_BPC_12:
+ case TRANSCONF_BPC_12:
pipe_config->pipe_bpp = 36;
break;
default:
break;
}
- if (tmp & PIPECONF_COLOR_RANGE_SELECT)
+ if (tmp & TRANSCONF_COLOR_RANGE_SELECT)
pipe_config->limited_color_range = true;
- switch (tmp & PIPECONF_OUTPUT_COLORSPACE_MASK) {
- case PIPECONF_OUTPUT_COLORSPACE_YUV601:
- case PIPECONF_OUTPUT_COLORSPACE_YUV709:
+ switch (tmp & TRANSCONF_OUTPUT_COLORSPACE_MASK) {
+ case TRANSCONF_OUTPUT_COLORSPACE_YUV601:
+ case TRANSCONF_OUTPUT_COLORSPACE_YUV709:
pipe_config->output_format = INTEL_OUTPUT_FORMAT_YCBCR444;
break;
default:
@@ -3692,11 +3520,11 @@ static bool ilk_get_pipe_config(struct intel_crtc *crtc,
break;
}
- pipe_config->gamma_mode = REG_FIELD_GET(PIPECONF_GAMMA_MODE_MASK_ILK, tmp);
+ pipe_config->gamma_mode = REG_FIELD_GET(TRANSCONF_GAMMA_MODE_MASK_ILK, tmp);
- pipe_config->framestart_delay = REG_FIELD_GET(PIPECONF_FRAME_START_DELAY_MASK, tmp) + 1;
+ pipe_config->framestart_delay = REG_FIELD_GET(TRANSCONF_FRAME_START_DELAY_MASK, tmp) + 1;
- pipe_config->msa_timing_delay = REG_FIELD_GET(PIPECONF_MSA_TIMING_DELAY_MASK, tmp);
+ pipe_config->msa_timing_delay = REG_FIELD_GET(TRANSCONF_MSA_TIMING_DELAY_MASK, tmp);
pipe_config->csc_mode = intel_de_read(dev_priv,
PIPE_CSC_MODE(crtc->pipe));
@@ -3723,12 +3551,16 @@ out:
static u8 bigjoiner_pipes(struct drm_i915_private *i915)
{
+ u8 pipes;
+
if (DISPLAY_VER(i915) >= 12)
- return BIT(PIPE_A) | BIT(PIPE_B) | BIT(PIPE_C) | BIT(PIPE_D);
+ pipes = BIT(PIPE_A) | BIT(PIPE_B) | BIT(PIPE_C) | BIT(PIPE_D);
else if (DISPLAY_VER(i915) >= 11)
- return BIT(PIPE_B) | BIT(PIPE_C);
+ pipes = BIT(PIPE_B) | BIT(PIPE_C);
else
- return 0;
+ pipes = 0;
+
+ return pipes & RUNTIME_INFO(i915)->pipe_mask;
}
static bool transcoder_ddi_func_is_enabled(struct drm_i915_private *dev_priv,
@@ -3969,9 +3801,9 @@ static bool hsw_get_transcoder_state(struct intel_crtc *crtc,
pipe_config->pch_pfit.force_thru = true;
}
- tmp = intel_de_read(dev_priv, PIPECONF(pipe_config->cpu_transcoder));
+ tmp = intel_de_read(dev_priv, TRANSCONF(pipe_config->cpu_transcoder));
- return tmp & PIPECONF_ENABLE;
+ return tmp & TRANSCONF_ENABLE;
}
static bool bxt_get_dsi_transcoder_state(struct intel_crtc *crtc,
@@ -4041,20 +3873,19 @@ static bool hsw_get_pipe_config(struct intel_crtc *crtc,
struct intel_crtc_state *pipe_config)
{
struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
- struct intel_display_power_domain_set power_domain_set = { };
bool active;
u32 tmp;
- if (!intel_display_power_get_in_set_if_enabled(dev_priv, &power_domain_set,
+ if (!intel_display_power_get_in_set_if_enabled(dev_priv, &crtc->hw_readout_power_domains,
POWER_DOMAIN_PIPE(crtc->pipe)))
return false;
pipe_config->shared_dpll = NULL;
- active = hsw_get_transcoder_state(crtc, pipe_config, &power_domain_set);
+ active = hsw_get_transcoder_state(crtc, pipe_config, &crtc->hw_readout_power_domains);
if ((IS_GEMINILAKE(dev_priv) || IS_BROXTON(dev_priv)) &&
- bxt_get_dsi_transcoder_state(crtc, pipe_config, &power_domain_set)) {
+ bxt_get_dsi_transcoder_state(crtc, pipe_config, &crtc->hw_readout_power_domains)) {
drm_WARN_ON(&dev_priv->drm, active);
active = true;
}
@@ -4076,15 +3907,15 @@ static bool hsw_get_pipe_config(struct intel_crtc *crtc,
if (IS_HASWELL(dev_priv)) {
u32 tmp = intel_de_read(dev_priv,
- PIPECONF(pipe_config->cpu_transcoder));
+ TRANSCONF(pipe_config->cpu_transcoder));
- if (tmp & PIPECONF_OUTPUT_COLORSPACE_YUV_HSW)
+ if (tmp & TRANSCONF_OUTPUT_COLORSPACE_YUV_HSW)
pipe_config->output_format = INTEL_OUTPUT_FORMAT_YCBCR444;
else
pipe_config->output_format = INTEL_OUTPUT_FORMAT_RGB;
} else {
pipe_config->output_format =
- bdw_get_pipemisc_output_format(crtc);
+ bdw_get_pipe_misc_output_format(crtc);
}
pipe_config->gamma_mode = intel_de_read(dev_priv,
@@ -4113,7 +3944,7 @@ static bool hsw_get_pipe_config(struct intel_crtc *crtc,
pipe_config->ips_linetime =
REG_FIELD_GET(HSW_IPS_LINETIME_MASK, tmp);
- if (intel_display_power_get_in_set_if_enabled(dev_priv, &power_domain_set,
+ if (intel_display_power_get_in_set_if_enabled(dev_priv, &crtc->hw_readout_power_domains,
POWER_DOMAIN_PIPE_PANEL_FITTER(crtc->pipe))) {
if (DISPLAY_VER(dev_priv) >= 9)
skl_get_pfit_config(pipe_config);
@@ -4127,7 +3958,7 @@ static bool hsw_get_pipe_config(struct intel_crtc *crtc,
!transcoder_is_dsi(pipe_config->cpu_transcoder)) {
pipe_config->pixel_multiplier =
intel_de_read(dev_priv,
- PIPE_MULT(pipe_config->cpu_transcoder)) + 1;
+ TRANS_MULT(pipe_config->cpu_transcoder)) + 1;
} else {
pipe_config->pixel_multiplier = 1;
}
@@ -4144,7 +3975,7 @@ static bool hsw_get_pipe_config(struct intel_crtc *crtc,
}
out:
- intel_display_power_put_all_in_set(dev_priv, &power_domain_set);
+ intel_display_power_put_all_in_set(dev_priv, &crtc->hw_readout_power_domains);
return active;
}
@@ -4572,8 +4403,8 @@ static bool encoders_cloneable(const struct intel_encoder *a,
const struct intel_encoder *b)
{
/* masks could be asymmetric, so check both ways */
- return a == b || (a->cloneable & (1 << b->type) &&
- b->cloneable & (1 << a->type));
+ return a == b || (a->cloneable & BIT(b->type) &&
+ b->cloneable & BIT(a->type));
}
static bool check_single_encoder_cloning(struct intel_atomic_state *state,
@@ -4824,14 +4655,14 @@ static int intel_crtc_atomic_check(struct intel_atomic_state *state,
struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
struct intel_crtc_state *crtc_state =
intel_atomic_get_new_crtc_state(state, crtc);
- bool mode_changed = intel_crtc_needs_modeset(crtc_state);
int ret;
if (DISPLAY_VER(dev_priv) < 5 && !IS_G4X(dev_priv) &&
- mode_changed && !crtc_state->hw.active)
+ intel_crtc_needs_modeset(crtc_state) &&
+ !crtc_state->hw.active)
crtc_state->update_wm_post = true;
- if (mode_changed) {
+ if (intel_crtc_needs_modeset(crtc_state)) {
ret = intel_dpll_crtc_get_shared_dpll(state, crtc);
if (ret)
return ret;
@@ -4844,8 +4675,7 @@ static int intel_crtc_atomic_check(struct intel_atomic_state *state,
if (c8_planes_changed(crtc_state))
crtc_state->uapi.color_mgmt_changed = true;
- if (mode_changed || crtc_state->update_pipe ||
- crtc_state->uapi.color_mgmt_changed) {
+ if (intel_crtc_needs_color_update(crtc_state)) {
ret = intel_color_check(crtc_state);
if (ret)
return ret;
@@ -4871,7 +4701,8 @@ static int intel_crtc_atomic_check(struct intel_atomic_state *state,
}
if (DISPLAY_VER(dev_priv) >= 9) {
- if (mode_changed || crtc_state->update_pipe) {
+ if (intel_crtc_needs_modeset(crtc_state) ||
+ intel_crtc_needs_fastset(crtc_state)) {
ret = skl_update_scaler_crtc(crtc_state);
if (ret)
return ret;
@@ -5182,6 +5013,7 @@ intel_crtc_prepare_cleared_state(struct intel_atomic_state *state,
* only fields that are know to not cause problems are preserved. */
saved_state->uapi = crtc_state->uapi;
+ saved_state->inherited = crtc_state->inherited;
saved_state->scaler_state = crtc_state->scaler_state;
saved_state->shared_dpll = crtc_state->shared_dpll;
saved_state->dpll_hw_state = crtc_state->dpll_hw_state;
@@ -5420,6 +5252,12 @@ intel_compare_dp_vsc_sdp(const struct drm_dp_vsc_sdp *a,
return memcmp(a, b, sizeof(*a)) == 0;
}
+static bool
+intel_compare_buffer(const u8 *a, const u8 *b, size_t len)
+{
+ return memcmp(a, b, len) == 0;
+}
+
static void
pipe_config_infoframe_mismatch(struct drm_i915_private *dev_priv,
bool fastset, const char *name,
@@ -5470,6 +5308,50 @@ pipe_config_dp_vsc_sdp_mismatch(struct drm_i915_private *dev_priv,
}
}
+/* Returns the length up to and including the last differing byte */
+static size_t
+memcmp_diff_len(const u8 *a, const u8 *b, size_t len)
+{
+ int i;
+
+ for (i = len - 1; i >= 0; i--) {
+ if (a[i] != b[i])
+ return i + 1;
+ }
+
+ return 0;
+}
+
+static void
+pipe_config_buffer_mismatch(struct drm_i915_private *dev_priv,
+ bool fastset, const char *name,
+ const u8 *a, const u8 *b, size_t len)
+{
+ if (fastset) {
+ if (!drm_debug_enabled(DRM_UT_KMS))
+ return;
+
+ /* only dump up to the last difference */
+ len = memcmp_diff_len(a, b, len);
+
+ drm_dbg_kms(&dev_priv->drm,
+ "fastset mismatch in %s buffer\n", name);
+ print_hex_dump(KERN_DEBUG, "expected: ", DUMP_PREFIX_NONE,
+ 16, 0, a, len, false);
+ print_hex_dump(KERN_DEBUG, "found: ", DUMP_PREFIX_NONE,
+ 16, 0, b, len, false);
+ } else {
+ /* only dump up to the last difference */
+ len = memcmp_diff_len(a, b, len);
+
+ drm_err(&dev_priv->drm, "mismatch in %s buffer\n", name);
+ print_hex_dump(KERN_ERR, "expected: ", DUMP_PREFIX_NONE,
+ 16, 0, a, len, false);
+ print_hex_dump(KERN_ERR, "found: ", DUMP_PREFIX_NONE,
+ 16, 0, b, len, false);
+ }
+}
+
static void __printf(4, 5)
pipe_config_mismatch(bool fastset, const struct intel_crtc *crtc,
const char *name, const char *format, ...)
@@ -5518,7 +5400,6 @@ intel_pipe_config_compare(const struct intel_crtc_state *current_config,
struct drm_i915_private *dev_priv = to_i915(current_config->uapi.crtc->dev);
struct intel_crtc *crtc = to_intel_crtc(pipe_config->uapi.crtc);
bool ret = true;
- u32 bp_gamma = 0;
bool fixup_inherited = fastset &&
current_config->inherited && !pipe_config->inherited;
@@ -5637,39 +5518,6 @@ intel_pipe_config_compare(const struct intel_crtc_state *current_config,
PIPE_CONF_CHECK_I(name.y2); \
} while (0)
-/* This is required for BDW+ where there is only one set of registers for
- * switching between high and low RR.
- * This macro can be used whenever a comparison has to be made between one
- * hw state and multiple sw state variables.
- */
-#define PIPE_CONF_CHECK_M_N_ALT(name, alt_name) do { \
- if (!intel_compare_link_m_n(&current_config->name, \
- &pipe_config->name) && \
- !intel_compare_link_m_n(&current_config->alt_name, \
- &pipe_config->name)) { \
- pipe_config_mismatch(fastset, crtc, __stringify(name), \
- "(expected tu %i data %i/%i link %i/%i, " \
- "or tu %i data %i/%i link %i/%i, " \
- "found tu %i, data %i/%i link %i/%i)", \
- current_config->name.tu, \
- current_config->name.data_m, \
- current_config->name.data_n, \
- current_config->name.link_m, \
- current_config->name.link_n, \
- current_config->alt_name.tu, \
- current_config->alt_name.data_m, \
- current_config->alt_name.data_n, \
- current_config->alt_name.link_m, \
- current_config->alt_name.link_n, \
- pipe_config->name.tu, \
- pipe_config->name.data_m, \
- pipe_config->name.data_n, \
- pipe_config->name.link_m, \
- pipe_config->name.link_n); \
- ret = false; \
- } \
-} while (0)
-
#define PIPE_CONF_CHECK_FLAGS(name, mask) do { \
if ((current_config->name ^ pipe_config->name) & (mask)) { \
pipe_config_mismatch(fastset, crtc, __stringify(name), \
@@ -5702,21 +5550,26 @@ intel_pipe_config_compare(const struct intel_crtc_state *current_config,
} \
} while (0)
-#define PIPE_CONF_CHECK_COLOR_LUT(name1, name2, bit_precision) do { \
- if (current_config->name1 != pipe_config->name1) { \
- pipe_config_mismatch(fastset, crtc, __stringify(name1), \
- "(expected %i, found %i, won't compare lut values)", \
- current_config->name1, \
- pipe_config->name1); \
- ret = false;\
- } else { \
- if (!intel_color_lut_equal(current_config->name2, \
- pipe_config->name2, pipe_config->name1, \
- bit_precision)) { \
- pipe_config_mismatch(fastset, crtc, __stringify(name2), \
- "hw_state doesn't match sw_state"); \
- ret = false; \
- } \
+#define PIPE_CONF_CHECK_BUFFER(name, len) do { \
+ BUILD_BUG_ON(sizeof(current_config->name) != (len)); \
+ BUILD_BUG_ON(sizeof(pipe_config->name) != (len)); \
+ if (!intel_compare_buffer(current_config->name, pipe_config->name, (len))) { \
+ pipe_config_buffer_mismatch(dev_priv, fastset, __stringify(name), \
+ current_config->name, \
+ pipe_config->name, \
+ (len)); \
+ ret = false; \
+ } \
+} while (0)
+
+#define PIPE_CONF_CHECK_COLOR_LUT(lut, is_pre_csc_lut) do { \
+ if (current_config->gamma_mode == pipe_config->gamma_mode && \
+ !intel_color_lut_equal(current_config, \
+ current_config->lut, pipe_config->lut, \
+ is_pre_csc_lut)) { \
+ pipe_config_mismatch(fastset, crtc, __stringify(lut), \
+ "hw_state doesn't match sw_state"); \
+ ret = false; \
} \
} while (0)
@@ -5738,7 +5591,7 @@ intel_pipe_config_compare(const struct intel_crtc_state *current_config,
if (HAS_DOUBLE_BUFFERED_M_N(dev_priv)) {
if (!fastset || !pipe_config->seamless_m_n)
- PIPE_CONF_CHECK_M_N_ALT(dp_m_n, dp_m2_n2);
+ PIPE_CONF_CHECK_M_N(dp_m_n);
} else {
PIPE_CONF_CHECK_M_N(dp_m_n);
PIPE_CONF_CHECK_M_N(dp_m2_n2);
@@ -5780,6 +5633,7 @@ intel_pipe_config_compare(const struct intel_crtc_state *current_config,
PIPE_CONF_CHECK_BOOL(fec_enable);
PIPE_CONF_CHECK_BOOL_INCOMPLETE(has_audio);
+ PIPE_CONF_CHECK_BUFFER(eld, MAX_ELD_BYTES);
PIPE_CONF_CHECK_X(gmch_pfit.control);
/* pfit ratios are autocomputed by the hw on gen4+ */
@@ -5813,9 +5667,8 @@ intel_pipe_config_compare(const struct intel_crtc_state *current_config,
PIPE_CONF_CHECK_I(linetime);
PIPE_CONF_CHECK_I(ips_linetime);
- bp_gamma = intel_color_get_gamma_bit_precision(pipe_config);
- if (bp_gamma)
- PIPE_CONF_CHECK_COLOR_LUT(gamma_mode, hw.gamma_lut, bp_gamma);
+ PIPE_CONF_CHECK_COLOR_LUT(pre_csc_lut, true);
+ PIPE_CONF_CHECK_COLOR_LUT(post_csc_lut, false);
if (current_config->active_planes) {
PIPE_CONF_CHECK_BOOL(has_psr);
@@ -5937,7 +5790,8 @@ intel_verify_planes(struct intel_atomic_state *state)
plane_state->uapi.visible);
}
-int intel_modeset_all_pipes(struct intel_atomic_state *state)
+int intel_modeset_all_pipes(struct intel_atomic_state *state,
+ const char *reason)
{
struct drm_i915_private *dev_priv = to_i915(state->base.dev);
struct intel_crtc *crtc;
@@ -5955,88 +5809,36 @@ int intel_modeset_all_pipes(struct intel_atomic_state *state)
return PTR_ERR(crtc_state);
if (!crtc_state->hw.active ||
- drm_atomic_crtc_needs_modeset(&crtc_state->uapi))
+ intel_crtc_needs_modeset(crtc_state))
continue;
+ drm_dbg_kms(&dev_priv->drm, "[CRTC:%d:%s] Full modeset due to %s\n",
+ crtc->base.base.id, crtc->base.name, reason);
+
crtc_state->uapi.mode_changed = true;
+ crtc_state->update_pipe = false;
ret = drm_atomic_add_affected_connectors(&state->base,
&crtc->base);
if (ret)
return ret;
+ ret = intel_dp_mst_add_topology_state_for_crtc(state, crtc);
+ if (ret)
+ return ret;
+
ret = intel_atomic_add_affected_planes(state, crtc);
if (ret)
return ret;
crtc_state->update_planes |= crtc_state->active_planes;
+ crtc_state->async_flip_planes = 0;
+ crtc_state->do_async_flip = false;
}
return 0;
}
-void intel_crtc_update_active_timings(const struct intel_crtc_state *crtc_state)
-{
- struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
- struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
- struct drm_display_mode adjusted_mode;
-
- drm_mode_init(&adjusted_mode, &crtc_state->hw.adjusted_mode);
-
- if (crtc_state->vrr.enable) {
- adjusted_mode.crtc_vtotal = crtc_state->vrr.vmax;
- adjusted_mode.crtc_vblank_end = crtc_state->vrr.vmax;
- adjusted_mode.crtc_vblank_start = intel_vrr_vmin_vblank_start(crtc_state);
- crtc->vmax_vblank_start = intel_vrr_vmax_vblank_start(crtc_state);
- }
-
- drm_calc_timestamping_constants(&crtc->base, &adjusted_mode);
-
- crtc->mode_flags = crtc_state->mode_flags;
-
- /*
- * The scanline counter increments at the leading edge of hsync.
- *
- * On most platforms it starts counting from vtotal-1 on the
- * first active line. That means the scanline counter value is
- * always one less than what we would expect. Ie. just after
- * start of vblank, which also occurs at start of hsync (on the
- * last active line), the scanline counter will read vblank_start-1.
- *
- * On gen2 the scanline counter starts counting from 1 instead
- * of vtotal-1, so we have to subtract one (or rather add vtotal-1
- * to keep the value positive), instead of adding one.
- *
- * On HSW+ the behaviour of the scanline counter depends on the output
- * type. For DP ports it behaves like most other platforms, but on HDMI
- * there's an extra 1 line difference. So we need to add two instead of
- * one to the value.
- *
- * On VLV/CHV DSI the scanline counter would appear to increment
- * approx. 1/3 of a scanline before start of vblank. Unfortunately
- * that means we can't tell whether we're in vblank or not while
- * we're on that particular line. We must still set scanline_offset
- * to 1 so that the vblank timestamps come out correct when we query
- * the scanline counter from within the vblank interrupt handler.
- * However if queried just before the start of vblank we'll get an
- * answer that's slightly in the future.
- */
- if (DISPLAY_VER(dev_priv) == 2) {
- int vtotal;
-
- vtotal = adjusted_mode.crtc_vtotal;
- if (adjusted_mode.flags & DRM_MODE_FLAG_INTERLACE)
- vtotal /= 2;
-
- crtc->scanline_offset = vtotal - 1;
- } else if (HAS_DDI(dev_priv) &&
- intel_crtc_has_type(crtc_state, INTEL_OUTPUT_HDMI)) {
- crtc->scanline_offset = 2;
- } else {
- crtc->scanline_offset = 1;
- }
-}
-
/*
* This implements the workaround described in the "notes" section of the mode
* set sequence documentation. When going from no pipes or single pipe to
@@ -6134,7 +5936,8 @@ static void intel_crtc_check_fastset(const struct intel_crtc_state *old_crtc_sta
return;
new_crtc_state->uapi.mode_changed = false;
- new_crtc_state->update_pipe = true;
+ if (!intel_crtc_needs_modeset(new_crtc_state))
+ new_crtc_state->update_pipe = true;
}
static int intel_crtc_add_planes_to_state(struct intel_atomic_state *state,
@@ -6721,8 +6524,8 @@ static int intel_bigjoiner_add_affected_crtcs(struct intel_atomic_state *state)
* @dev: drm device
* @_state: state to validate
*/
-static int intel_atomic_check(struct drm_device *dev,
- struct drm_atomic_state *_state)
+int intel_atomic_check(struct drm_device *dev,
+ struct drm_atomic_state *_state)
{
struct drm_i915_private *dev_priv = to_i915(dev);
struct intel_atomic_state *state = to_intel_atomic_state(_state);
@@ -6906,12 +6709,19 @@ static int intel_atomic_check(struct drm_device *dev,
for_each_oldnew_intel_crtc_in_state(state, crtc, old_crtc_state,
new_crtc_state, i) {
+ intel_color_assert_luts(new_crtc_state);
+
ret = intel_async_flip_check_hw(state, crtc);
if (ret)
goto fail;
+ /* Either full modeset or fastset (or neither), never both */
+ drm_WARN_ON(&dev_priv->drm,
+ intel_crtc_needs_modeset(new_crtc_state) &&
+ intel_crtc_needs_fastset(new_crtc_state));
+
if (!intel_crtc_needs_modeset(new_crtc_state) &&
- !new_crtc_state->update_pipe)
+ !intel_crtc_needs_fastset(new_crtc_state))
continue;
intel_crtc_state_dump(new_crtc_state, state,
@@ -6947,12 +6757,8 @@ static int intel_atomic_prepare_commit(struct intel_atomic_state *state)
return ret;
for_each_new_intel_crtc_in_state(state, crtc, crtc_state, i) {
- bool mode_changed = intel_crtc_needs_modeset(crtc_state);
-
- if (mode_changed || crtc_state->update_pipe ||
- crtc_state->uapi.color_mgmt_changed) {
- intel_dsb_prepare(crtc_state);
- }
+ if (intel_crtc_needs_color_update(crtc_state))
+ intel_color_prepare_commit(crtc_state);
}
return 0;
@@ -7033,14 +6839,13 @@ static void commit_pipe_pre_planes(struct intel_atomic_state *state,
* CRTC was enabled.
*/
if (!modeset) {
- if (new_crtc_state->uapi.color_mgmt_changed ||
- new_crtc_state->update_pipe)
+ if (intel_crtc_needs_color_update(new_crtc_state))
intel_color_commit_arm(new_crtc_state);
if (DISPLAY_VER(dev_priv) >= 9 || IS_BROADWELL(dev_priv))
- bdw_set_pipemisc(new_crtc_state);
+ bdw_set_pipe_misc(new_crtc_state);
- if (new_crtc_state->update_pipe)
+ if (intel_crtc_needs_fastset(new_crtc_state))
intel_pipe_fastset(old_crtc_state, new_crtc_state);
}
@@ -7097,27 +6902,33 @@ static void intel_update_crtc(struct intel_atomic_state *state,
intel_atomic_get_new_crtc_state(state, crtc);
bool modeset = intel_crtc_needs_modeset(new_crtc_state);
+ if (old_crtc_state->inherited ||
+ intel_crtc_needs_modeset(new_crtc_state)) {
+ if (HAS_DPT(i915))
+ intel_dpt_configure(crtc);
+ }
+
if (!modeset) {
if (new_crtc_state->preload_luts &&
- (new_crtc_state->uapi.color_mgmt_changed ||
- new_crtc_state->update_pipe))
+ intel_crtc_needs_color_update(new_crtc_state))
intel_color_load_luts(new_crtc_state);
intel_pre_plane_update(state, crtc);
- if (new_crtc_state->update_pipe)
+ if (intel_crtc_needs_fastset(new_crtc_state))
intel_encoders_update_pipe(state, crtc);
if (DISPLAY_VER(i915) >= 11 &&
- new_crtc_state->update_pipe)
+ intel_crtc_needs_fastset(new_crtc_state))
icl_set_pipe_chicken(new_crtc_state);
}
intel_fbc_update(state, crtc);
+ drm_WARN_ON(&i915->drm, !intel_display_power_is_enabled(i915, POWER_DOMAIN_DC_OFF));
+
if (!modeset &&
- (new_crtc_state->uapi.color_mgmt_changed ||
- new_crtc_state->update_pipe))
+ intel_crtc_needs_color_update(new_crtc_state))
intel_color_commit_noarm(new_crtc_state);
intel_crtc_planes_update_noarm(state, crtc);
@@ -7139,7 +6950,7 @@ static void intel_update_crtc(struct intel_atomic_state *state,
* valid pipe configuration from the BIOS we need to take care
* of enabling them on the CRTC's first fastset.
*/
- if (new_crtc_state->update_pipe && !modeset &&
+ if (intel_crtc_needs_fastset(new_crtc_state) && !modeset &&
old_crtc_state->inherited)
intel_crtc_arm_fifo_underrun(crtc, new_crtc_state);
}
@@ -7160,11 +6971,8 @@ static void intel_old_crtc_state_disables(struct intel_atomic_state *state,
dev_priv->display.funcs.display->crtc_disable(state, crtc);
crtc->active = false;
intel_fbc_disable(crtc);
- intel_disable_shared_dpll(old_crtc_state);
- /* FIXME unify this for all platforms */
- if (!new_crtc_state->hw.active &&
- !HAS_GMCH(dev_priv))
+ if (!new_crtc_state->hw.active)
intel_initial_watermarks(state, crtc);
}
@@ -7408,24 +7216,18 @@ static void intel_atomic_commit_fence_wait(struct intel_atomic_state *intel_stat
&wait_reset);
}
-static void intel_cleanup_dsbs(struct intel_atomic_state *state)
-{
- struct intel_crtc_state *old_crtc_state, *new_crtc_state;
- struct intel_crtc *crtc;
- int i;
-
- for_each_oldnew_intel_crtc_in_state(state, crtc, old_crtc_state,
- new_crtc_state, i)
- intel_dsb_cleanup(old_crtc_state);
-}
-
static void intel_atomic_cleanup_work(struct work_struct *work)
{
struct intel_atomic_state *state =
container_of(work, struct intel_atomic_state, base.commit_work);
struct drm_i915_private *i915 = to_i915(state->base.dev);
+ struct intel_crtc_state *old_crtc_state;
+ struct intel_crtc *crtc;
+ int i;
+
+ for_each_old_intel_crtc_in_state(state, crtc, old_crtc_state, i)
+ intel_color_cleanup_commit(old_crtc_state);
- intel_cleanup_dsbs(state);
drm_atomic_helper_cleanup_planes(&i915->drm, &state->base);
drm_atomic_helper_commit_cleanup_done(&state->base);
drm_atomic_state_put(&state->base);
@@ -7491,17 +7293,36 @@ static void intel_atomic_commit_tail(struct intel_atomic_state *state)
drm_atomic_helper_wait_for_dependencies(&state->base);
drm_dp_mst_atomic_wait_for_dependencies(&state->base);
- if (state->modeset)
- wakeref = intel_display_power_get(dev_priv, POWER_DOMAIN_MODESET);
+ /*
+ * During full modesets we write a lot of registers, wait
+ * for PLLs, etc. Doing that while DC states are enabled
+ * is not a good idea.
+ *
+ * During fastsets and other updates we also need to
+ * disable DC states due to the following scenario:
+ * 1. DC5 exit and PSR exit happen
+ * 2. Some or all _noarm() registers are written
+ * 3. Due to some long delay PSR is re-entered
+ * 4. DC5 entry -> DMC saves the already written new
+ * _noarm() registers and the old not yet written
+ * _arm() registers
+ * 5. DC5 exit -> DMC restores a mixture of old and
+ * new register values and arms the update
+ * 6. PSR exit -> hardware latches a mixture of old and
+ * new register values -> corrupted frame, or worse
+ * 7. New _arm() registers are finally written
+ * 8. Hardware finally latches a complete set of new
+ * register values, and subsequent frames will be OK again
+ */
+ wakeref = intel_display_power_get(dev_priv, POWER_DOMAIN_DC_OFF);
intel_atomic_prepare_plane_clear_colors(state);
for_each_oldnew_intel_crtc_in_state(state, crtc, old_crtc_state,
new_crtc_state, i) {
if (intel_crtc_needs_modeset(new_crtc_state) ||
- new_crtc_state->update_pipe) {
+ intel_crtc_needs_fastset(new_crtc_state))
intel_modeset_get_crtc_power_domains(new_crtc_state, &put_domains[crtc->pipe]);
- }
}
intel_commit_modeset_disables(state);
@@ -7548,8 +7369,6 @@ static void intel_atomic_commit_tail(struct intel_atomic_state *state)
/* Now enable the clocks, plane, pipe, and connectors that we set up. */
dev_priv->display.funcs.display->commit_modeset_enables(state);
- intel_encoders_update_complete(state);
-
if (state->modeset)
intel_set_cdclk_post_plane_update(state);
@@ -7604,10 +7423,21 @@ static void intel_atomic_commit_tail(struct intel_atomic_state *state)
intel_modeset_verify_crtc(crtc, state, old_crtc_state, new_crtc_state);
+ /* Must be done after gamma readout due to HSW split gamma vs. IPS w/a */
+ hsw_ips_post_update(state, crtc);
+
+ /*
+ * Activate DRRS after state readout to avoid
+ * dp_m_n vs. dp_m2_n2 confusion on BDW+.
+ */
+ intel_drrs_activate(new_crtc_state);
+
/*
* DSB cleanup is done in cleanup_work aligning with framebuffer
* cleanup. So copy and reset the dsb structure to sync with
* commit_done and later do dsb cleanup in cleanup_work.
+ *
+ * FIXME get rid of this funny new->old swapping
*/
old_crtc_state->dsb = fetch_and_zero(&new_crtc_state->dsb);
}
@@ -7631,8 +7461,8 @@ static void intel_atomic_commit_tail(struct intel_atomic_state *state)
* the culprit.
*/
intel_uncore_arm_unclaimed_mmio_detection(&dev_priv->uncore);
- intel_display_power_put(dev_priv, POWER_DOMAIN_MODESET, wakeref);
}
+ intel_display_power_put(dev_priv, POWER_DOMAIN_DC_OFF, wakeref);
intel_runtime_pm_put(&dev_priv->runtime_pm, state->wakeref);
/*
@@ -7758,7 +7588,7 @@ static int intel_atomic_commit(struct drm_device *dev,
i915_sw_fence_commit(&state->commit_ready);
for_each_new_intel_crtc_in_state(state, crtc, new_crtc_state, i)
- intel_dsb_cleanup(new_crtc_state);
+ intel_color_cleanup_commit(new_crtc_state);
drm_atomic_helper_cleanup_planes(dev, &state->base);
intel_runtime_pm_put(&dev_priv->runtime_pm, state->wakeref);
@@ -8344,6 +8174,7 @@ void intel_init_display_hooks(struct drm_i915_private *dev_priv)
if (!HAS_DISPLAY(dev_priv))
return;
+ intel_color_init_hooks(dev_priv);
intel_init_cdclk_hooks(dev_priv);
intel_audio_hooks_init(dev_priv);
@@ -8379,124 +8210,6 @@ void intel_modeset_init_hw(struct drm_i915_private *i915)
cdclk_state->logical = cdclk_state->actual = i915->display.cdclk.hw;
}
-static int sanitize_watermarks_add_affected(struct drm_atomic_state *state)
-{
- struct drm_plane *plane;
- struct intel_crtc *crtc;
-
- for_each_intel_crtc(state->dev, crtc) {
- struct intel_crtc_state *crtc_state;
-
- crtc_state = intel_atomic_get_crtc_state(state, crtc);
- if (IS_ERR(crtc_state))
- return PTR_ERR(crtc_state);
-
- if (crtc_state->hw.active) {
- /*
- * Preserve the inherited flag to avoid
- * taking the full modeset path.
- */
- crtc_state->inherited = true;
- }
- }
-
- drm_for_each_plane(plane, state->dev) {
- struct drm_plane_state *plane_state;
-
- plane_state = drm_atomic_get_plane_state(state, plane);
- if (IS_ERR(plane_state))
- return PTR_ERR(plane_state);
- }
-
- return 0;
-}
-
-/*
- * Calculate what we think the watermarks should be for the state we've read
- * out of the hardware and then immediately program those watermarks so that
- * we ensure the hardware settings match our internal state.
- *
- * We can calculate what we think WM's should be by creating a duplicate of the
- * current state (which was constructed during hardware readout) and running it
- * through the atomic check code to calculate new watermark values in the
- * state object.
- */
-static void sanitize_watermarks(struct drm_i915_private *dev_priv)
-{
- struct drm_atomic_state *state;
- struct intel_atomic_state *intel_state;
- struct intel_crtc *crtc;
- struct intel_crtc_state *crtc_state;
- struct drm_modeset_acquire_ctx ctx;
- int ret;
- int i;
-
- /* Only supported on platforms that use atomic watermark design */
- if (!dev_priv->display.funcs.wm->optimize_watermarks)
- return;
-
- state = drm_atomic_state_alloc(&dev_priv->drm);
- if (drm_WARN_ON(&dev_priv->drm, !state))
- return;
-
- intel_state = to_intel_atomic_state(state);
-
- drm_modeset_acquire_init(&ctx, 0);
-
-retry:
- state->acquire_ctx = &ctx;
-
- /*
- * Hardware readout is the only time we don't want to calculate
- * intermediate watermarks (since we don't trust the current
- * watermarks).
- */
- if (!HAS_GMCH(dev_priv))
- intel_state->skip_intermediate_wm = true;
-
- ret = sanitize_watermarks_add_affected(state);
- if (ret)
- goto fail;
-
- ret = intel_atomic_check(&dev_priv->drm, state);
- if (ret)
- goto fail;
-
- /* Write calculated watermark values back */
- for_each_new_intel_crtc_in_state(intel_state, crtc, crtc_state, i) {
- crtc_state->wm.need_postvbl_update = true;
- intel_optimize_watermarks(intel_state, crtc);
-
- to_intel_crtc_state(crtc->base.state)->wm = crtc_state->wm;
- }
-
-fail:
- if (ret == -EDEADLK) {
- drm_atomic_state_clear(state);
- drm_modeset_backoff(&ctx);
- goto retry;
- }
-
- /*
- * If we fail here, it means that the hardware appears to be
- * programmed in a way that shouldn't be possible, given our
- * understanding of watermark requirements. This might mean a
- * mistake in the hardware readout code or a mistake in the
- * watermark calculations for a given platform. Raise a WARN
- * so that this is noticeable.
- *
- * If this actually happens, we'll have to just leave the
- * BIOS-programmed watermarks untouched and hope for the best.
- */
- drm_WARN(&dev_priv->drm, ret,
- "Could not determine valid watermarks for inherited state\n");
-
- drm_atomic_state_put(state);
-
- drm_modeset_drop_locks(&ctx);
- drm_modeset_acquire_fini(&ctx);
-}
-
static int intel_initial_commit(struct drm_device *dev)
{
struct drm_atomic_state *state = NULL;
@@ -8585,7 +8298,7 @@ static void intel_mode_config_init(struct drm_i915_private *i915)
struct drm_mode_config *mode_config = &i915->drm.mode_config;
drm_mode_config_init(&i915->drm);
- INIT_LIST_HEAD(&i915->global_obj_list);
+ INIT_LIST_HEAD(&i915->display.global.obj_list);
mode_config->min_width = 0;
mode_config->min_height = 0;
@@ -8657,12 +8370,16 @@ int intel_modeset_init_noirq(struct drm_i915_private *i915)
goto cleanup_bios;
/* FIXME: completely on the wrong abstraction layer */
+ ret = intel_power_domains_init(i915);
+ if (ret < 0)
+ goto cleanup_vga;
+
intel_power_domains_init_hw(i915, false);
if (!HAS_DISPLAY(i915))
return 0;
- intel_dmc_ucode_init(i915);
+ intel_dmc_init(i915);
i915->display.wq.modeset = alloc_ordered_workqueue("i915_modeset", 0);
i915->display.wq.flip = alloc_workqueue("i915_flip", WQ_HIGHPRI |
@@ -8674,6 +8391,10 @@ int intel_modeset_init_noirq(struct drm_i915_private *i915)
if (ret)
goto cleanup_vga_client_pw_domain_dmc;
+ ret = intel_color_init(i915);
+ if (ret)
+ goto cleanup_vga_client_pw_domain_dmc;
+
ret = intel_dbuf_init(i915);
if (ret)
goto cleanup_vga_client_pw_domain_dmc;
@@ -8693,8 +8414,9 @@ int intel_modeset_init_noirq(struct drm_i915_private *i915)
return 0;
cleanup_vga_client_pw_domain_dmc:
- intel_dmc_ucode_fini(i915);
+ intel_dmc_fini(i915);
intel_power_domains_driver_remove(i915);
+cleanup_vga:
intel_vga_unregister(i915);
cleanup_bios:
intel_bios_driver_remove(i915);
@@ -8713,7 +8435,7 @@ int intel_modeset_init_nogem(struct drm_i915_private *i915)
if (!HAS_DISPLAY(i915))
return 0;
- intel_init_pm(i915);
+ intel_wm_init(i915);
intel_panel_sanitize_ssc(i915);
@@ -8746,12 +8468,7 @@ int intel_modeset_init_nogem(struct drm_i915_private *i915)
if (i915->display.cdclk.max_cdclk_freq == 0)
intel_update_max_cdclk(i915);
- /*
- * If the platform has HTI, we need to find out whether it has reserved
- * any display resources before we create our display outputs.
- */
- if (INTEL_INFO(i915)->display.has_hti)
- i915->hti_state = intel_de_read(i915, HDPORT_STATE);
+ intel_hti_init(i915);
/* Just disable it once at startup */
intel_vga_disable(i915);
@@ -8774,7 +8491,7 @@ int intel_modeset_init_nogem(struct drm_i915_private *i915)
* since the watermark calculation done here will use pstate->fb.
*/
if (!HAS_GMCH(i915))
- sanitize_watermarks(i915);
+ ilk_wm_sanitize(i915);
return 0;
}
@@ -8815,6 +8532,7 @@ int intel_modeset_init(struct drm_i915_private *i915)
void i830_enable_pipe(struct drm_i915_private *dev_priv, enum pipe pipe)
{
struct intel_crtc *crtc = intel_crtc_for_pipe(dev_priv, pipe);
+ enum transcoder cpu_transcoder = (enum transcoder)pipe;
/* 640x480@60Hz, ~25175 kHz */
struct dpll clock = {
.m1 = 18,
@@ -8841,13 +8559,20 @@ void i830_enable_pipe(struct drm_i915_private *dev_priv, enum pipe pipe)
PLL_REF_INPUT_DREFCLK |
DPLL_VCO_ENABLE;
- intel_de_write(dev_priv, HTOTAL(pipe), (640 - 1) | ((800 - 1) << 16));
- intel_de_write(dev_priv, HBLANK(pipe), (640 - 1) | ((800 - 1) << 16));
- intel_de_write(dev_priv, HSYNC(pipe), (656 - 1) | ((752 - 1) << 16));
- intel_de_write(dev_priv, VTOTAL(pipe), (480 - 1) | ((525 - 1) << 16));
- intel_de_write(dev_priv, VBLANK(pipe), (480 - 1) | ((525 - 1) << 16));
- intel_de_write(dev_priv, VSYNC(pipe), (490 - 1) | ((492 - 1) << 16));
- intel_de_write(dev_priv, PIPESRC(pipe), ((640 - 1) << 16) | (480 - 1));
+ intel_de_write(dev_priv, TRANS_HTOTAL(cpu_transcoder),
+ HACTIVE(640 - 1) | HTOTAL(800 - 1));
+ intel_de_write(dev_priv, TRANS_HBLANK(cpu_transcoder),
+ HBLANK_START(640 - 1) | HBLANK_END(800 - 1));
+ intel_de_write(dev_priv, TRANS_HSYNC(cpu_transcoder),
+ HSYNC_START(656 - 1) | HSYNC_END(752 - 1));
+ intel_de_write(dev_priv, TRANS_VTOTAL(cpu_transcoder),
+ VACTIVE(480 - 1) | VTOTAL(525 - 1));
+ intel_de_write(dev_priv, TRANS_VBLANK(cpu_transcoder),
+ VBLANK_START(480 - 1) | VBLANK_END(525 - 1));
+ intel_de_write(dev_priv, TRANS_VSYNC(cpu_transcoder),
+ VSYNC_START(490 - 1) | VSYNC_END(492 - 1));
+ intel_de_write(dev_priv, PIPESRC(pipe),
+ PIPESRC_WIDTH(640 - 1) | PIPESRC_HEIGHT(480 - 1));
intel_de_write(dev_priv, FP0(pipe), fp);
intel_de_write(dev_priv, FP1(pipe), fp);
@@ -8878,8 +8603,8 @@ void i830_enable_pipe(struct drm_i915_private *dev_priv, enum pipe pipe)
udelay(150); /* wait for warmup */
}
- intel_de_write(dev_priv, PIPECONF(pipe), PIPECONF_ENABLE);
- intel_de_posting_read(dev_priv, PIPECONF(pipe));
+ intel_de_write(dev_priv, TRANSCONF(pipe), TRANSCONF_ENABLE);
+ intel_de_posting_read(dev_priv, TRANSCONF(pipe));
intel_wait_for_pipe_scanline_moving(crtc);
}
@@ -8902,8 +8627,8 @@ void i830_disable_pipe(struct drm_i915_private *dev_priv, enum pipe pipe)
drm_WARN_ON(&dev_priv->drm,
intel_de_read(dev_priv, CURCNTR(PIPE_B)) & MCURSOR_MODE_MASK);
- intel_de_write(dev_priv, PIPECONF(pipe), 0);
- intel_de_posting_read(dev_priv, PIPECONF(pipe));
+ intel_de_write(dev_priv, TRANSCONF(pipe), 0);
+ intel_de_posting_read(dev_priv, TRANSCONF(pipe));
intel_wait_for_pipe_scanline_stopped(crtc);
@@ -8914,14 +8639,14 @@ void i830_disable_pipe(struct drm_i915_private *dev_priv, enum pipe pipe)
void intel_display_resume(struct drm_device *dev)
{
struct drm_i915_private *i915 = to_i915(dev);
- struct drm_atomic_state *state = i915->modeset_restore_state;
+ struct drm_atomic_state *state = i915->display.restore.modeset_state;
struct drm_modeset_acquire_ctx ctx;
int ret;
if (!HAS_DISPLAY(i915))
return;
- i915->modeset_restore_state = NULL;
+ i915->display.restore.modeset_state = NULL;
if (state)
state->acquire_ctx = &ctx;
@@ -9024,7 +8749,7 @@ void intel_modeset_driver_remove_noirq(struct drm_i915_private *i915)
/* part #3: call after gem init */
void intel_modeset_driver_remove_nogem(struct drm_i915_private *i915)
{
- intel_dmc_ucode_fini(i915);
+ intel_dmc_fini(i915);
intel_power_domains_driver_remove(i915);
@@ -9059,14 +8784,14 @@ void intel_display_driver_register(struct drm_i915_private *i915)
if (!HAS_DISPLAY(i915))
return;
- intel_display_debugfs_register(i915);
-
/* Must be done after probing outputs */
intel_opregion_register(i915);
intel_acpi_video_register(i915);
intel_audio_init(i915);
+ intel_display_debugfs_register(i915);
+
/*
* Some ports require correctly set-up hpd registers for
* detection to work properly (leading to ghost connected
@@ -9075,7 +8800,7 @@ void intel_display_driver_register(struct drm_i915_private *i915)
* enabled. We do it last so that the async config cannot run
* before the connectors are registered.
*/
- intel_fbdev_initial_config_async(&i915->drm);
+ intel_fbdev_initial_config_async(i915);
/*
* We need to coordinate the hotplugs with the asynchronous
diff --git a/drivers/gpu/drm/i915/display/intel_display.h b/drivers/gpu/drm/i915/display/intel_display.h
index 884e8e67b17c..287159bdeb0d 100644
--- a/drivers/gpu/drm/i915/display/intel_display.h
+++ b/drivers/gpu/drm/i915/display/intel_display.h
@@ -28,9 +28,11 @@
#include <drm/drm_util.h>
#include "i915_reg_defs.h"
+#include "intel_display_limits.h"
enum drm_scaling_filter;
struct dpll;
+struct drm_atomic_state;
struct drm_connector;
struct drm_device;
struct drm_display_mode;
@@ -53,6 +55,7 @@ struct intel_digital_port;
struct intel_dp;
struct intel_encoder;
struct intel_initial_plane_config;
+struct intel_link_m_n;
struct intel_load_detect_pipe;
struct intel_plane;
struct intel_plane_state;
@@ -61,69 +64,9 @@ struct intel_remapped_info;
struct intel_rotation_info;
struct pci_dev;
-enum i915_gpio {
- GPIOA,
- GPIOB,
- GPIOC,
- GPIOD,
- GPIOE,
- GPIOF,
- GPIOG,
- GPIOH,
- __GPIOI_UNUSED,
- GPIOJ,
- GPIOK,
- GPIOL,
- GPIOM,
- GPION,
- GPIOO,
-};
-
-/*
- * Keep the pipe enum values fixed: the code assumes that PIPE_A=0, the
- * rest have consecutive values and match the enum values of transcoders
- * with a 1:1 transcoder -> pipe mapping.
- */
-enum pipe {
- INVALID_PIPE = -1,
-
- PIPE_A = 0,
- PIPE_B,
- PIPE_C,
- PIPE_D,
- _PIPE_EDP,
-
- I915_MAX_PIPES = _PIPE_EDP
-};
#define pipe_name(p) ((p) + 'A')
-enum transcoder {
- INVALID_TRANSCODER = -1,
- /*
- * The following transcoders have a 1:1 transcoder -> pipe mapping,
- * keep their values fixed: the code assumes that TRANSCODER_A=0, the
- * rest have consecutive values and match the enum values of the pipes
- * they map to.
- */
- TRANSCODER_A = PIPE_A,
- TRANSCODER_B = PIPE_B,
- TRANSCODER_C = PIPE_C,
- TRANSCODER_D = PIPE_D,
-
- /*
- * The following transcoders can map to any pipe, their enum value
- * doesn't need to stay fixed.
- */
- TRANSCODER_EDP,
- TRANSCODER_DSI_0,
- TRANSCODER_DSI_1,
- TRANSCODER_DSI_A = TRANSCODER_DSI_0, /* legacy DSI */
- TRANSCODER_DSI_C = TRANSCODER_DSI_1, /* legacy DSI */
-
- I915_MAX_TRANSCODERS
-};
-
static inline const char *transcoder_name(enum transcoder transcoder)
{
switch (transcoder) {
@@ -164,29 +107,6 @@ enum i9xx_plane_id {
#define plane_name(p) ((p) + 'A')
#define sprite_name(p, s) ((p) * RUNTIME_INFO(dev_priv)->num_sprites[(p)] + (s) + 'A')
-/*
- * Per-pipe plane identifier.
- * I915_MAX_PLANES in the enum below is the maximum (across all platforms)
- * number of planes per CRTC. Not all platforms really have this many planes,
- * which means some arrays of size I915_MAX_PLANES may have unused entries
- * between the topmost sprite plane and the cursor plane.
- *
- * This is expected to be passed to various register macros
- * (eg. PLANE_CTL(), PS_PLANE_SEL(), etc.) so adjust with care.
- */
-enum plane_id {
- PLANE_PRIMARY,
- PLANE_SPRITE0,
- PLANE_SPRITE1,
- PLANE_SPRITE2,
- PLANE_SPRITE3,
- PLANE_SPRITE4,
- PLANE_SPRITE5,
- PLANE_CURSOR,
-
- I915_MAX_PLANES,
-};
-
#define for_each_plane_id_on_crtc(__crtc, __p) \
for ((__p) = PLANE_PRIMARY; (__p) < I915_MAX_PLANES; (__p)++) \
for_each_if((__crtc)->plane_ids_mask & BIT(__p))
@@ -199,34 +119,6 @@ enum plane_id {
for_each_dbuf_slice((__dev_priv), (__slice)) \
for_each_if((__mask) & BIT(__slice))
-enum port {
- PORT_NONE = -1,
-
- PORT_A = 0,
- PORT_B,
- PORT_C,
- PORT_D,
- PORT_E,
- PORT_F,
- PORT_G,
- PORT_H,
- PORT_I,
-
- /* tgl+ */
- PORT_TC1 = PORT_D,
- PORT_TC2,
- PORT_TC3,
- PORT_TC4,
- PORT_TC5,
- PORT_TC6,
-
- /* XE_LPD repositions D/E offsets and bitfields */
- PORT_D_XELPD = PORT_TC5,
- PORT_E_XELPD,
-
- I915_MAX_PORTS
-};
-
#define port_name(p) ((p) + 'A')
/*
@@ -272,25 +164,9 @@ enum tc_port {
I915_MAX_TC_PORTS
};
-enum tc_port_mode {
- TC_PORT_DISCONNECTED,
- TC_PORT_TBT_ALT,
- TC_PORT_DP_ALT,
- TC_PORT_LEGACY,
-};
-
-enum dpio_channel {
- DPIO_CH0,
- DPIO_CH1
-};
-
-enum dpio_phy {
- DPIO_PHY0,
- DPIO_PHY1,
- DPIO_PHY2,
-};
-
enum aux_ch {
+ AUX_CH_NONE = -1,
+
AUX_CH_A,
AUX_CH_B,
AUX_CH_C,
@@ -316,15 +192,6 @@ enum aux_ch {
#define aux_ch_name(a) ((a) + 'A')
-/* Used by dp and fdi links */
-struct intel_link_m_n {
- u32 tu;
- u32 data_m;
- u32 data_n;
- u32 link_m;
- u32 link_n;
-};
-
enum phy {
PHY_NONE = -1,
@@ -349,27 +216,6 @@ enum phy_fia {
FIA3,
};
-enum hpd_pin {
- HPD_NONE = 0,
- HPD_TV = HPD_NONE, /* TV is known to be unreliable */
- HPD_CRT,
- HPD_SDVO_B,
- HPD_SDVO_C,
- HPD_PORT_A,
- HPD_PORT_B,
- HPD_PORT_C,
- HPD_PORT_D,
- HPD_PORT_E,
- HPD_PORT_TC1,
- HPD_PORT_TC2,
- HPD_PORT_TC3,
- HPD_PORT_TC4,
- HPD_PORT_TC5,
- HPD_PORT_TC6,
-
- HPD_NUM_PINS
-};
-
#define for_each_hpd_pin(__pin) \
for ((__pin) = (HPD_NONE + 1); (__pin) < HPD_NUM_PINS; (__pin)++)
@@ -469,10 +315,6 @@ enum hpd_pin {
list_for_each_entry((intel_encoder), &(dev)->mode_config.encoder_list, base.head) \
for_each_if((intel_encoder)->base.crtc == (__crtc))
-#define for_each_connector_on_encoder(dev, __encoder, intel_connector) \
- list_for_each_entry((intel_connector), &(dev)->mode_config.connector_list, base.head) \
- for_each_if((intel_connector)->base.encoder == (__encoder))
-
#define for_each_old_intel_plane_in_state(__state, plane, old_plane_state, __i) \
for ((__i) = 0; \
(__i) < (__state)->base.dev->mode_config.num_total_plane && \
@@ -481,6 +323,14 @@ enum hpd_pin {
(__i)++) \
for_each_if(plane)
+#define for_each_old_intel_crtc_in_state(__state, crtc, old_crtc_state, __i) \
+ for ((__i) = 0; \
+ (__i) < (__state)->base.dev->mode_config.num_crtc && \
+ ((crtc) = to_intel_crtc((__state)->base.crtcs[__i].ptr), \
+ (old_crtc_state) = to_intel_crtc_state((__state)->base.crtcs[__i].old_state), 1); \
+ (__i)++) \
+ for_each_if(crtc)
+
#define for_each_new_intel_plane_in_state(__state, plane, new_plane_state, __i) \
for ((__i) = 0; \
(__i) < (__state)->base.dev->mode_config.num_total_plane && \
@@ -540,6 +390,7 @@ enum hpd_pin {
((connector) = to_intel_connector((__state)->base.connectors[__i].ptr), \
(new_connector_state) = to_intel_digital_connector_state((__state)->base.connectors[__i].new_state), 1))
+int intel_atomic_check(struct drm_device *dev, struct drm_atomic_state *state);
int intel_atomic_add_affected_planes(struct intel_atomic_state *state,
struct intel_crtc *crtc);
u8 intel_calc_active_pipes(struct intel_atomic_state *state,
@@ -564,7 +415,6 @@ bool intel_crtc_get_pipe_config(struct intel_crtc_state *crtc_state);
bool intel_pipe_config_compare(const struct intel_crtc_state *current_config,
const struct intel_crtc_state *pipe_config,
bool fastset);
-void intel_crtc_update_active_timings(const struct intel_crtc_state *crtc_state);
void intel_plane_destroy(struct drm_plane *plane);
void i9xx_set_pipeconf(const struct intel_crtc_state *crtc_state);
@@ -653,7 +503,7 @@ void intel_crtc_arm_fifo_underrun(struct intel_crtc *crtc,
struct intel_crtc_state *crtc_state);
void ilk_pfit_disable(const struct intel_crtc_state *old_crtc_state);
-int bdw_get_pipemisc_bpp(struct intel_crtc *crtc);
+int bdw_get_pipe_misc_bpp(struct intel_crtc *crtc);
unsigned int intel_plane_fence_y_offset(const struct intel_plane_state *plane_state);
bool intel_plane_uses_fence(const struct intel_plane_state *plane_state);
@@ -683,7 +533,8 @@ void intel_modeset_driver_remove(struct drm_i915_private *i915);
void intel_modeset_driver_remove_noirq(struct drm_i915_private *i915);
void intel_modeset_driver_remove_nogem(struct drm_i915_private *i915);
void intel_display_resume(struct drm_device *dev);
-int intel_modeset_all_pipes(struct intel_atomic_state *state);
+int intel_modeset_all_pipes(struct intel_atomic_state *state,
+ const char *reason);
void intel_modeset_get_crtc_power_domains(struct intel_crtc_state *crtc_state,
struct intel_power_domain_mask *old_domains);
void intel_modeset_put_crtc_power_domains(struct intel_crtc *crtc,
diff --git a/drivers/gpu/drm/i915/display/intel_display_core.h b/drivers/gpu/drm/i915/display/intel_display_core.h
index 9b51148e8ba5..e36f88a39b86 100644
--- a/drivers/gpu/drm/i915/display/intel_display_core.h
+++ b/drivers/gpu/drm/i915/display/intel_display_core.h
@@ -14,20 +14,21 @@
#include <linux/workqueue.h>
#include <drm/drm_connector.h>
+#include <drm/drm_modeset_lock.h>
#include "intel_cdclk.h"
-#include "intel_display.h"
+#include "intel_display_limits.h"
#include "intel_display_power.h"
-#include "intel_dmc.h"
#include "intel_dpll_mgr.h"
#include "intel_fbc.h"
#include "intel_global_state.h"
#include "intel_gmbus.h"
#include "intel_opregion.h"
-#include "intel_pm_types.h"
+#include "intel_wm_types.h"
struct drm_i915_private;
struct drm_property;
+struct drm_property_blob;
struct i915_audio_component;
struct i915_hdcp_comp_master;
struct intel_atomic_state;
@@ -38,6 +39,7 @@ struct intel_cdclk_vals;
struct intel_color_funcs;
struct intel_crtc;
struct intel_crtc_state;
+struct intel_dmc;
struct intel_dpll_funcs;
struct intel_dpll_mgr;
struct intel_fbdev;
@@ -83,6 +85,12 @@ struct intel_wm_funcs {
void (*optimize_watermarks)(struct intel_atomic_state *state,
struct intel_crtc *crtc);
int (*compute_global_watermarks)(struct intel_atomic_state *state);
+ void (*get_hw_state)(struct drm_i915_private *i915);
+};
+
+struct intel_audio_state {
+ struct intel_encoder *encoder;
+ u8 eld[MAX_ELD_BYTES];
};
struct intel_audio {
@@ -94,8 +102,8 @@ struct intel_audio {
int power_refcount;
u32 freq_cntrl;
- /* Used to save the pipe-to-encoder mapping for audio */
- struct intel_encoder *encoder_map[I915_MAX_PIPES];
+ /* current audio state for the audio component hooks */
+ struct intel_audio_state state[I915_MAX_TRANSCODERS];
/* necessary resource sharing with HDMI LPE audio driver. */
struct {
@@ -120,6 +128,11 @@ struct intel_dpll {
int nssc;
int ssc;
} ref_clks;
+
+ /*
+ * Bitmask of PLLs using the PCH SSC, indexed using enum intel_dpll_id.
+ */
+ u8 pch_ssc_use;
};
struct intel_frontbuffer_tracking {
@@ -170,6 +183,17 @@ struct intel_hotplug {
* blocked behind the non-DP one.
*/
struct workqueue_struct *dp_wq;
+
+ /*
+ * Flag to track if long HPDs need not to be processed
+ *
+ * Some panels generate long HPDs while keep connected to the port.
+ * This can cause issues with CI tests results. In CI systems we
+ * don't expect to disconnect the panels and could ignore the long
+ * HPDs generated from the faulty panels. This flag can be used as
+ * cue to ignore the long HPDs and can be set / unset using debugfs.
+ */
+ bool ignore_long_hpd;
};
struct intel_vbt_data {
@@ -231,7 +255,7 @@ struct intel_wm {
struct g4x_wm_values g4x;
};
- u8 max_level;
+ u8 num_levels;
/*
* Should be held around atomic WM register writing; also
@@ -309,6 +333,10 @@ struct intel_display {
} cdclk;
struct {
+ struct drm_property_blob *glk_linear_degamma_lut;
+ } color;
+
+ struct {
/* The current hardware dbuf configuration */
u8 enabled_slices;
@@ -324,6 +352,11 @@ struct intel_display {
} dkl;
struct {
+ struct intel_dmc *dmc;
+ intel_wakeref_t wakeref;
+ } dmc;
+
+ struct {
/* VLV/CHV/BXT/GLK DSI MMIO register base address */
u32 mmio_base;
} dsi;
@@ -340,6 +373,10 @@ struct intel_display {
} fdi;
struct {
+ struct list_head obj_list;
+ } global;
+
+ struct {
/*
* Base address of where the gmbus and gpio blocks are located
* (either on PCH or on SoC for platforms without PCH).
@@ -358,14 +395,34 @@ struct intel_display {
} gmbus;
struct {
- struct i915_hdcp_comp_master *master;
+ struct i915_hdcp_master *master;
bool comp_added;
+ /*
+ * HDCP message struct for allocation of memory which can be
+ * reused when sending message to gsc cs.
+ * this is only populated post Meteorlake
+ */
+ struct intel_hdcp_gsc_message *hdcp_message;
/* Mutex to protect the above hdcp component related values. */
struct mutex comp_mutex;
} hdcp;
struct {
+ /*
+ * HTI (aka HDPORT) state read during initial hw readout. Most
+ * platforms don't have HTI, so this will just stay 0. Those
+ * that do will use this later to figure out which PLLs and PHYs
+ * are unavailable for driver usage.
+ */
+ u32 state;
+ } hti;
+
+ struct {
+ bool false_color;
+ } ips;
+
+ struct {
struct i915_power_domains domains;
/* Shadow for DISPLAY_PHY_CONTROL which can't be safely read */
@@ -392,6 +449,12 @@ struct intel_display {
} quirks;
struct {
+ /* restore state for suspend/resume and display reset */
+ struct drm_atomic_state *modeset_state;
+ struct drm_modeset_acquire_ctx reset_ctx;
+ } restore;
+
+ struct {
enum {
I915_SAGV_UNKNOWN = 0,
I915_SAGV_DISABLED,
@@ -403,6 +466,24 @@ struct intel_display {
} sagv;
struct {
+ /*
+ * DG2: Mask of PHYs that were not calibrated by the firmware
+ * and should not be used.
+ */
+ u8 phy_failed_calibration;
+ } snps;
+
+ struct {
+ /*
+ * Shadows for CHV DPLL_MD regs to keep the state
+ * checker somewhat working in the presence hardware
+ * crappiness (can't read out DPLL_MD for pipes B & C).
+ */
+ u32 chv_dpll_md[I915_MAX_PIPES];
+ u32 bxt_phy_grc;
+ } state;
+
+ struct {
/* ordered wq for modesets */
struct workqueue_struct *modeset;
@@ -412,7 +493,6 @@ struct intel_display {
/* Grouping using named structs. Keep sorted. */
struct intel_audio audio;
- struct intel_dmc dmc;
struct intel_dpll dpll;
struct intel_fbc *fbc[I915_MAX_FBCS];
struct intel_frontbuffer_tracking fb_tracking;
diff --git a/drivers/gpu/drm/i915/display/intel_display_debugfs.c b/drivers/gpu/drm/i915/display/intel_display_debugfs.c
index 7c7253a2541c..45113ae107ba 100644
--- a/drivers/gpu/drm/i915/display/intel_display_debugfs.c
+++ b/drivers/gpu/drm/i915/display/intel_display_debugfs.c
@@ -8,8 +8,12 @@
#include <drm/drm_debugfs.h>
#include <drm/drm_fourcc.h>
+#include "hsw_ips.h"
#include "i915_debugfs.h"
+#include "i915_irq.h"
+#include "i915_reg.h"
#include "intel_de.h"
+#include "intel_crtc_state_dump.h"
#include "intel_display_debugfs.h"
#include "intel_display_power.h"
#include "intel_display_power_well.h"
@@ -22,11 +26,12 @@
#include "intel_fbdev.h"
#include "intel_hdcp.h"
#include "intel_hdmi.h"
+#include "intel_hotplug.h"
#include "intel_panel.h"
-#include "intel_pm.h"
#include "intel_psr.h"
+#include "intel_psr_regs.h"
#include "intel_sprite.h"
-#include "skl_watermark.h"
+#include "intel_wm.h"
static inline struct drm_i915_private *node_to_i915(struct drm_info_node *node)
{
@@ -46,33 +51,6 @@ static int i915_frontbuffer_tracking(struct seq_file *m, void *unused)
return 0;
}
-static int i915_ips_status(struct seq_file *m, void *unused)
-{
- struct drm_i915_private *dev_priv = node_to_i915(m->private);
- intel_wakeref_t wakeref;
-
- if (!HAS_IPS(dev_priv))
- return -ENODEV;
-
- wakeref = intel_runtime_pm_get(&dev_priv->runtime_pm);
-
- seq_printf(m, "Enabled by kernel parameter: %s\n",
- str_yes_no(dev_priv->params.enable_ips));
-
- if (DISPLAY_VER(dev_priv) >= 8) {
- seq_puts(m, "Currently: unknown\n");
- } else {
- if (intel_de_read(dev_priv, IPS_CTL) & IPS_ENABLE)
- seq_puts(m, "Currently: enabled\n");
- else
- seq_puts(m, "Currently: disabled\n");
- }
-
- intel_runtime_pm_put(&dev_priv->runtime_pm, wakeref);
-
- return 0;
-}
-
static int i915_sr_status(struct seq_file *m, void *unused)
{
struct drm_i915_private *dev_priv = node_to_i915(m->private);
@@ -127,7 +105,6 @@ static int i915_vbt(struct seq_file *m, void *unused)
static int i915_gem_framebuffer_info(struct seq_file *m, void *data)
{
struct drm_i915_private *dev_priv = node_to_i915(m->private);
- struct drm_device *dev = &dev_priv->drm;
struct intel_framebuffer *fbdev_fb = NULL;
struct drm_framebuffer *drm_fb;
@@ -146,8 +123,8 @@ static int i915_gem_framebuffer_info(struct seq_file *m, void *data)
}
#endif
- mutex_lock(&dev->mode_config.fb_lock);
- drm_for_each_fb(drm_fb, dev) {
+ mutex_lock(&dev_priv->drm.mode_config.fb_lock);
+ drm_for_each_fb(drm_fb, &dev_priv->drm) {
struct intel_framebuffer *fb = to_intel_framebuffer(drm_fb);
if (fb == fbdev_fb)
continue;
@@ -162,274 +139,11 @@ static int i915_gem_framebuffer_info(struct seq_file *m, void *data)
i915_debugfs_describe_obj(m, intel_fb_obj(&fb->base));
seq_putc(m, '\n');
}
- mutex_unlock(&dev->mode_config.fb_lock);
-
- return 0;
-}
-
-static int i915_psr_sink_status_show(struct seq_file *m, void *data)
-{
- u8 val;
- static const char * const sink_status[] = {
- "inactive",
- "transition to active, capture and display",
- "active, display from RFB",
- "active, capture and display on sink device timings",
- "transition to inactive, capture and display, timing re-sync",
- "reserved",
- "reserved",
- "sink internal error",
- };
- struct drm_connector *connector = m->private;
- struct intel_dp *intel_dp =
- intel_attached_dp(to_intel_connector(connector));
- int ret;
-
- if (!CAN_PSR(intel_dp)) {
- seq_puts(m, "PSR Unsupported\n");
- return -ENODEV;
- }
-
- if (connector->status != connector_status_connected)
- return -ENODEV;
-
- ret = drm_dp_dpcd_readb(&intel_dp->aux, DP_PSR_STATUS, &val);
-
- if (ret == 1) {
- const char *str = "unknown";
-
- val &= DP_PSR_SINK_STATE_MASK;
- if (val < ARRAY_SIZE(sink_status))
- str = sink_status[val];
- seq_printf(m, "Sink PSR status: 0x%x [%s]\n", val, str);
- } else {
- return ret;
- }
-
- return 0;
-}
-DEFINE_SHOW_ATTRIBUTE(i915_psr_sink_status);
-
-static void
-psr_source_status(struct intel_dp *intel_dp, struct seq_file *m)
-{
- struct drm_i915_private *dev_priv = dp_to_i915(intel_dp);
- const char *status = "unknown";
- u32 val, status_val;
-
- if (intel_dp->psr.psr2_enabled) {
- static const char * const live_status[] = {
- "IDLE",
- "CAPTURE",
- "CAPTURE_FS",
- "SLEEP",
- "BUFON_FW",
- "ML_UP",
- "SU_STANDBY",
- "FAST_SLEEP",
- "DEEP_SLEEP",
- "BUF_ON",
- "TG_ON"
- };
- val = intel_de_read(dev_priv,
- EDP_PSR2_STATUS(intel_dp->psr.transcoder));
- status_val = REG_FIELD_GET(EDP_PSR2_STATUS_STATE_MASK, val);
- if (status_val < ARRAY_SIZE(live_status))
- status = live_status[status_val];
- } else {
- static const char * const live_status[] = {
- "IDLE",
- "SRDONACK",
- "SRDENT",
- "BUFOFF",
- "BUFON",
- "AUXACK",
- "SRDOFFACK",
- "SRDENT_ON",
- };
- val = intel_de_read(dev_priv,
- EDP_PSR_STATUS(intel_dp->psr.transcoder));
- status_val = (val & EDP_PSR_STATUS_STATE_MASK) >>
- EDP_PSR_STATUS_STATE_SHIFT;
- if (status_val < ARRAY_SIZE(live_status))
- status = live_status[status_val];
- }
-
- seq_printf(m, "Source PSR status: %s [0x%08x]\n", status, val);
-}
-
-static int intel_psr_status(struct seq_file *m, struct intel_dp *intel_dp)
-{
- struct drm_i915_private *dev_priv = dp_to_i915(intel_dp);
- struct intel_psr *psr = &intel_dp->psr;
- intel_wakeref_t wakeref;
- const char *status;
- bool enabled;
- u32 val;
-
- seq_printf(m, "Sink support: %s", str_yes_no(psr->sink_support));
- if (psr->sink_support)
- seq_printf(m, " [0x%02x]", intel_dp->psr_dpcd[0]);
- seq_puts(m, "\n");
-
- if (!psr->sink_support)
- return 0;
-
- wakeref = intel_runtime_pm_get(&dev_priv->runtime_pm);
- mutex_lock(&psr->lock);
-
- if (psr->enabled)
- status = psr->psr2_enabled ? "PSR2 enabled" : "PSR1 enabled";
- else
- status = "disabled";
- seq_printf(m, "PSR mode: %s\n", status);
-
- if (!psr->enabled) {
- seq_printf(m, "PSR sink not reliable: %s\n",
- str_yes_no(psr->sink_not_reliable));
-
- goto unlock;
- }
-
- if (psr->psr2_enabled) {
- val = intel_de_read(dev_priv,
- EDP_PSR2_CTL(intel_dp->psr.transcoder));
- enabled = val & EDP_PSR2_ENABLE;
- } else {
- val = intel_de_read(dev_priv,
- EDP_PSR_CTL(intel_dp->psr.transcoder));
- enabled = val & EDP_PSR_ENABLE;
- }
- seq_printf(m, "Source PSR ctl: %s [0x%08x]\n",
- str_enabled_disabled(enabled), val);
- psr_source_status(intel_dp, m);
- seq_printf(m, "Busy frontbuffer bits: 0x%08x\n",
- psr->busy_frontbuffer_bits);
-
- /*
- * SKL+ Perf counter is reset to 0 everytime DC state is entered
- */
- if (IS_HASWELL(dev_priv) || IS_BROADWELL(dev_priv)) {
- val = intel_de_read(dev_priv,
- EDP_PSR_PERF_CNT(intel_dp->psr.transcoder));
- val &= EDP_PSR_PERF_CNT_MASK;
- seq_printf(m, "Performance counter: %u\n", val);
- }
-
- if (psr->debug & I915_PSR_DEBUG_IRQ) {
- seq_printf(m, "Last attempted entry at: %lld\n",
- psr->last_entry_attempt);
- seq_printf(m, "Last exit at: %lld\n", psr->last_exit);
- }
-
- if (psr->psr2_enabled) {
- u32 su_frames_val[3];
- int frame;
-
- /*
- * Reading all 3 registers before hand to minimize crossing a
- * frame boundary between register reads
- */
- for (frame = 0; frame < PSR2_SU_STATUS_FRAMES; frame += 3) {
- val = intel_de_read(dev_priv,
- PSR2_SU_STATUS(intel_dp->psr.transcoder, frame));
- su_frames_val[frame / 3] = val;
- }
-
- seq_puts(m, "Frame:\tPSR2 SU blocks:\n");
-
- for (frame = 0; frame < PSR2_SU_STATUS_FRAMES; frame++) {
- u32 su_blocks;
-
- su_blocks = su_frames_val[frame / 3] &
- PSR2_SU_STATUS_MASK(frame);
- su_blocks = su_blocks >> PSR2_SU_STATUS_SHIFT(frame);
- seq_printf(m, "%d\t%d\n", frame, su_blocks);
- }
-
- seq_printf(m, "PSR2 selective fetch: %s\n",
- str_enabled_disabled(psr->psr2_sel_fetch_enabled));
- }
-
-unlock:
- mutex_unlock(&psr->lock);
- intel_runtime_pm_put(&dev_priv->runtime_pm, wakeref);
+ mutex_unlock(&dev_priv->drm.mode_config.fb_lock);
return 0;
}
-static int i915_edp_psr_status(struct seq_file *m, void *data)
-{
- struct drm_i915_private *dev_priv = node_to_i915(m->private);
- struct intel_dp *intel_dp = NULL;
- struct intel_encoder *encoder;
-
- if (!HAS_PSR(dev_priv))
- return -ENODEV;
-
- /* Find the first EDP which supports PSR */
- for_each_intel_encoder_with_psr(&dev_priv->drm, encoder) {
- intel_dp = enc_to_intel_dp(encoder);
- break;
- }
-
- if (!intel_dp)
- return -ENODEV;
-
- return intel_psr_status(m, intel_dp);
-}
-
-static int
-i915_edp_psr_debug_set(void *data, u64 val)
-{
- struct drm_i915_private *dev_priv = data;
- struct intel_encoder *encoder;
- intel_wakeref_t wakeref;
- int ret = -ENODEV;
-
- if (!HAS_PSR(dev_priv))
- return ret;
-
- for_each_intel_encoder_with_psr(&dev_priv->drm, encoder) {
- struct intel_dp *intel_dp = enc_to_intel_dp(encoder);
-
- drm_dbg_kms(&dev_priv->drm, "Setting PSR debug to %llx\n", val);
-
- wakeref = intel_runtime_pm_get(&dev_priv->runtime_pm);
-
- // TODO: split to each transcoder's PSR debug state
- ret = intel_psr_debug_set(intel_dp, val);
-
- intel_runtime_pm_put(&dev_priv->runtime_pm, wakeref);
- }
-
- return ret;
-}
-
-static int
-i915_edp_psr_debug_get(void *data, u64 *val)
-{
- struct drm_i915_private *dev_priv = data;
- struct intel_encoder *encoder;
-
- if (!HAS_PSR(dev_priv))
- return -ENODEV;
-
- for_each_intel_encoder_with_psr(&dev_priv->drm, encoder) {
- struct intel_dp *intel_dp = enc_to_intel_dp(encoder);
-
- // TODO: split to each transcoder's PSR debug state
- *val = READ_ONCE(intel_dp->psr.debug);
- return 0;
- }
-
- return -ENODEV;
-}
-
-DEFINE_SIMPLE_ATTRIBUTE(i915_edp_psr_debug_fops,
- i915_edp_psr_debug_get, i915_edp_psr_debug_set,
- "%llu\n");
-
static int i915_power_domain_info(struct seq_file *m, void *unused)
{
struct drm_i915_private *i915 = node_to_i915(m->private);
@@ -830,10 +544,10 @@ static const struct file_operations crtc_updates_fops = {
.write = crtc_updates_write
};
-static void crtc_updates_add(struct drm_crtc *crtc)
+static void crtc_updates_add(struct intel_crtc *crtc)
{
- debugfs_create_file("i915_update_info", 0644, crtc->debugfs_entry,
- to_intel_crtc(crtc), &crtc_updates_fops);
+ debugfs_create_file("i915_update_info", 0644, crtc->base.debugfs_entry,
+ crtc, &crtc_updates_fops);
}
#else
@@ -843,7 +557,7 @@ static void crtc_updates_info(struct seq_file *m,
{
}
-static void crtc_updates_add(struct drm_crtc *crtc)
+static void crtc_updates_add(struct intel_crtc *crtc)
{
}
#endif
@@ -897,7 +611,6 @@ static void intel_crtc_info(struct seq_file *m, struct intel_crtc *crtc)
static int i915_display_info(struct seq_file *m, void *unused)
{
struct drm_i915_private *dev_priv = node_to_i915(m->private);
- struct drm_device *dev = &dev_priv->drm;
struct intel_crtc *crtc;
struct drm_connector *connector;
struct drm_connector_list_iter conn_iter;
@@ -905,22 +618,22 @@ static int i915_display_info(struct seq_file *m, void *unused)
wakeref = intel_runtime_pm_get(&dev_priv->runtime_pm);
- drm_modeset_lock_all(dev);
+ drm_modeset_lock_all(&dev_priv->drm);
seq_printf(m, "CRTC info\n");
seq_printf(m, "---------\n");
- for_each_intel_crtc(dev, crtc)
+ for_each_intel_crtc(&dev_priv->drm, crtc)
intel_crtc_info(m, crtc);
seq_printf(m, "\n");
seq_printf(m, "Connector info\n");
seq_printf(m, "--------------\n");
- drm_connector_list_iter_begin(dev, &conn_iter);
+ drm_connector_list_iter_begin(&dev_priv->drm, &conn_iter);
drm_for_each_connector_iter(connector, &conn_iter)
intel_connector_info(m, connector);
drm_connector_list_iter_end(&conn_iter);
- drm_modeset_unlock_all(dev);
+ drm_modeset_unlock_all(&dev_priv->drm);
intel_runtime_pm_put(&dev_priv->runtime_pm, wakeref);
@@ -930,10 +643,9 @@ static int i915_display_info(struct seq_file *m, void *unused)
static int i915_shared_dplls_info(struct seq_file *m, void *unused)
{
struct drm_i915_private *dev_priv = node_to_i915(m->private);
- struct drm_device *dev = &dev_priv->drm;
int i;
- drm_modeset_lock_all(dev);
+ drm_modeset_lock_all(&dev_priv->drm);
seq_printf(m, "PLL refclks: non-SSC: %d kHz, SSC: %d kHz\n",
dev_priv->display.dpll.ref_clks.nssc,
@@ -978,7 +690,7 @@ static int i915_shared_dplls_info(struct seq_file *m, void *unused)
seq_printf(m, " mg_pll_tdc_coldst_bias: 0x%08x\n",
pll->state.hw_state.mg_pll_tdc_coldst_bias);
}
- drm_modeset_unlock_all(dev);
+ drm_modeset_unlock_all(&dev_priv->drm);
return 0;
}
@@ -986,14 +698,13 @@ static int i915_shared_dplls_info(struct seq_file *m, void *unused)
static int i915_ddb_info(struct seq_file *m, void *unused)
{
struct drm_i915_private *dev_priv = node_to_i915(m->private);
- struct drm_device *dev = &dev_priv->drm;
struct skl_ddb_entry *entry;
struct intel_crtc *crtc;
if (DISPLAY_VER(dev_priv) < 9)
return -ENODEV;
- drm_modeset_lock_all(dev);
+ drm_modeset_lock_all(&dev_priv->drm);
seq_printf(m, "%-15s%8s%8s%8s\n", "", "Start", "End", "Size");
@@ -1017,53 +728,7 @@ static int i915_ddb_info(struct seq_file *m, void *unused)
entry->end, skl_ddb_entry_size(entry));
}
- drm_modeset_unlock_all(dev);
-
- return 0;
-}
-
-static int i915_drrs_status(struct seq_file *m, void *unused)
-{
- struct drm_i915_private *dev_priv = node_to_i915(m->private);
- struct drm_connector_list_iter conn_iter;
- struct intel_connector *connector;
- struct intel_crtc *crtc;
-
- drm_connector_list_iter_begin(&dev_priv->drm, &conn_iter);
- for_each_intel_connector_iter(connector, &conn_iter) {
- seq_printf(m, "[CONNECTOR:%d:%s] DRRS type: %s\n",
- connector->base.base.id, connector->base.name,
- intel_drrs_type_str(intel_panel_drrs_type(connector)));
- }
- drm_connector_list_iter_end(&conn_iter);
-
- seq_puts(m, "\n");
-
- for_each_intel_crtc(&dev_priv->drm, crtc) {
- const struct intel_crtc_state *crtc_state =
- to_intel_crtc_state(crtc->base.state);
-
- seq_printf(m, "[CRTC:%d:%s]:\n",
- crtc->base.base.id, crtc->base.name);
-
- mutex_lock(&crtc->drrs.mutex);
-
- /* DRRS Supported */
- seq_printf(m, "\tDRRS Enabled: %s\n",
- str_yes_no(crtc_state->has_drrs));
-
- seq_printf(m, "\tDRRS Active: %s\n",
- str_yes_no(intel_drrs_is_active(crtc)));
-
- seq_printf(m, "\tBusy_frontbuffer_bits: 0x%X\n",
- crtc->drrs.busy_frontbuffer_bits);
-
- seq_printf(m, "\tDRRS refresh rate: %s\n",
- crtc->drrs.refresh_rate == DRRS_REFRESH_RATE_LOW ?
- "low" : "high");
-
- mutex_unlock(&crtc->drrs.mutex);
- }
+ drm_modeset_unlock_all(&dev_priv->drm);
return 0;
}
@@ -1107,13 +772,12 @@ static int i915_lpsp_status(struct seq_file *m, void *unused)
static int i915_dp_mst_info(struct seq_file *m, void *unused)
{
struct drm_i915_private *dev_priv = node_to_i915(m->private);
- struct drm_device *dev = &dev_priv->drm;
struct intel_encoder *intel_encoder;
struct intel_digital_port *dig_port;
struct drm_connector *connector;
struct drm_connector_list_iter conn_iter;
- drm_connector_list_iter_begin(dev, &conn_iter);
+ drm_connector_list_iter_begin(&dev_priv->drm, &conn_iter);
drm_for_each_connector_iter(connector, &conn_iter) {
if (connector->connector_type != DRM_MODE_CONNECTOR_DisplayPort)
continue;
@@ -1200,12 +864,11 @@ static ssize_t i915_displayport_test_active_write(struct file *file,
static int i915_displayport_test_active_show(struct seq_file *m, void *data)
{
struct drm_i915_private *dev_priv = m->private;
- struct drm_device *dev = &dev_priv->drm;
struct drm_connector *connector;
struct drm_connector_list_iter conn_iter;
struct intel_dp *intel_dp;
- drm_connector_list_iter_begin(dev, &conn_iter);
+ drm_connector_list_iter_begin(&dev_priv->drm, &conn_iter);
drm_for_each_connector_iter(connector, &conn_iter) {
struct intel_encoder *encoder;
@@ -1250,12 +913,11 @@ static const struct file_operations i915_displayport_test_active_fops = {
static int i915_displayport_test_data_show(struct seq_file *m, void *data)
{
struct drm_i915_private *dev_priv = m->private;
- struct drm_device *dev = &dev_priv->drm;
struct drm_connector *connector;
struct drm_connector_list_iter conn_iter;
struct intel_dp *intel_dp;
- drm_connector_list_iter_begin(dev, &conn_iter);
+ drm_connector_list_iter_begin(&dev_priv->drm, &conn_iter);
drm_for_each_connector_iter(connector, &conn_iter) {
struct intel_encoder *encoder;
@@ -1304,12 +966,11 @@ DEFINE_SHOW_ATTRIBUTE(i915_displayport_test_data);
static int i915_displayport_test_type_show(struct seq_file *m, void *data)
{
struct drm_i915_private *dev_priv = m->private;
- struct drm_device *dev = &dev_priv->drm;
struct drm_connector *connector;
struct drm_connector_list_iter conn_iter;
struct intel_dp *intel_dp;
- drm_connector_list_iter_begin(dev, &conn_iter);
+ drm_connector_list_iter_begin(&dev_priv->drm, &conn_iter);
drm_for_each_connector_iter(connector, &conn_iter) {
struct intel_encoder *encoder;
@@ -1333,442 +994,6 @@ static int i915_displayport_test_type_show(struct seq_file *m, void *data)
}
DEFINE_SHOW_ATTRIBUTE(i915_displayport_test_type);
-static void wm_latency_show(struct seq_file *m, const u16 wm[8])
-{
- struct drm_i915_private *dev_priv = m->private;
- struct drm_device *dev = &dev_priv->drm;
- int level;
- int num_levels;
-
- if (IS_CHERRYVIEW(dev_priv))
- num_levels = 3;
- else if (IS_VALLEYVIEW(dev_priv))
- num_levels = 1;
- else if (IS_G4X(dev_priv))
- num_levels = 3;
- else
- num_levels = ilk_wm_max_level(dev_priv) + 1;
-
- drm_modeset_lock_all(dev);
-
- for (level = 0; level < num_levels; level++) {
- unsigned int latency = wm[level];
-
- /*
- * - WM1+ latency values in 0.5us units
- * - latencies are in us on gen9/vlv/chv
- */
- if (DISPLAY_VER(dev_priv) >= 9 ||
- IS_VALLEYVIEW(dev_priv) ||
- IS_CHERRYVIEW(dev_priv) ||
- IS_G4X(dev_priv))
- latency *= 10;
- else if (level > 0)
- latency *= 5;
-
- seq_printf(m, "WM%d %u (%u.%u usec)\n",
- level, wm[level], latency / 10, latency % 10);
- }
-
- drm_modeset_unlock_all(dev);
-}
-
-static int pri_wm_latency_show(struct seq_file *m, void *data)
-{
- struct drm_i915_private *dev_priv = m->private;
- const u16 *latencies;
-
- if (DISPLAY_VER(dev_priv) >= 9)
- latencies = dev_priv->display.wm.skl_latency;
- else
- latencies = dev_priv->display.wm.pri_latency;
-
- wm_latency_show(m, latencies);
-
- return 0;
-}
-
-static int spr_wm_latency_show(struct seq_file *m, void *data)
-{
- struct drm_i915_private *dev_priv = m->private;
- const u16 *latencies;
-
- if (DISPLAY_VER(dev_priv) >= 9)
- latencies = dev_priv->display.wm.skl_latency;
- else
- latencies = dev_priv->display.wm.spr_latency;
-
- wm_latency_show(m, latencies);
-
- return 0;
-}
-
-static int cur_wm_latency_show(struct seq_file *m, void *data)
-{
- struct drm_i915_private *dev_priv = m->private;
- const u16 *latencies;
-
- if (DISPLAY_VER(dev_priv) >= 9)
- latencies = dev_priv->display.wm.skl_latency;
- else
- latencies = dev_priv->display.wm.cur_latency;
-
- wm_latency_show(m, latencies);
-
- return 0;
-}
-
-static int pri_wm_latency_open(struct inode *inode, struct file *file)
-{
- struct drm_i915_private *dev_priv = inode->i_private;
-
- if (DISPLAY_VER(dev_priv) < 5 && !IS_G4X(dev_priv))
- return -ENODEV;
-
- return single_open(file, pri_wm_latency_show, dev_priv);
-}
-
-static int spr_wm_latency_open(struct inode *inode, struct file *file)
-{
- struct drm_i915_private *dev_priv = inode->i_private;
-
- if (HAS_GMCH(dev_priv))
- return -ENODEV;
-
- return single_open(file, spr_wm_latency_show, dev_priv);
-}
-
-static int cur_wm_latency_open(struct inode *inode, struct file *file)
-{
- struct drm_i915_private *dev_priv = inode->i_private;
-
- if (HAS_GMCH(dev_priv))
- return -ENODEV;
-
- return single_open(file, cur_wm_latency_show, dev_priv);
-}
-
-static ssize_t wm_latency_write(struct file *file, const char __user *ubuf,
- size_t len, loff_t *offp, u16 wm[8])
-{
- struct seq_file *m = file->private_data;
- struct drm_i915_private *dev_priv = m->private;
- struct drm_device *dev = &dev_priv->drm;
- u16 new[8] = { 0 };
- int num_levels;
- int level;
- int ret;
- char tmp[32];
-
- if (IS_CHERRYVIEW(dev_priv))
- num_levels = 3;
- else if (IS_VALLEYVIEW(dev_priv))
- num_levels = 1;
- else if (IS_G4X(dev_priv))
- num_levels = 3;
- else
- num_levels = ilk_wm_max_level(dev_priv) + 1;
-
- if (len >= sizeof(tmp))
- return -EINVAL;
-
- if (copy_from_user(tmp, ubuf, len))
- return -EFAULT;
-
- tmp[len] = '\0';
-
- ret = sscanf(tmp, "%hu %hu %hu %hu %hu %hu %hu %hu",
- &new[0], &new[1], &new[2], &new[3],
- &new[4], &new[5], &new[6], &new[7]);
- if (ret != num_levels)
- return -EINVAL;
-
- drm_modeset_lock_all(dev);
-
- for (level = 0; level < num_levels; level++)
- wm[level] = new[level];
-
- drm_modeset_unlock_all(dev);
-
- return len;
-}
-
-
-static ssize_t pri_wm_latency_write(struct file *file, const char __user *ubuf,
- size_t len, loff_t *offp)
-{
- struct seq_file *m = file->private_data;
- struct drm_i915_private *dev_priv = m->private;
- u16 *latencies;
-
- if (DISPLAY_VER(dev_priv) >= 9)
- latencies = dev_priv->display.wm.skl_latency;
- else
- latencies = dev_priv->display.wm.pri_latency;
-
- return wm_latency_write(file, ubuf, len, offp, latencies);
-}
-
-static ssize_t spr_wm_latency_write(struct file *file, const char __user *ubuf,
- size_t len, loff_t *offp)
-{
- struct seq_file *m = file->private_data;
- struct drm_i915_private *dev_priv = m->private;
- u16 *latencies;
-
- if (DISPLAY_VER(dev_priv) >= 9)
- latencies = dev_priv->display.wm.skl_latency;
- else
- latencies = dev_priv->display.wm.spr_latency;
-
- return wm_latency_write(file, ubuf, len, offp, latencies);
-}
-
-static ssize_t cur_wm_latency_write(struct file *file, const char __user *ubuf,
- size_t len, loff_t *offp)
-{
- struct seq_file *m = file->private_data;
- struct drm_i915_private *dev_priv = m->private;
- u16 *latencies;
-
- if (DISPLAY_VER(dev_priv) >= 9)
- latencies = dev_priv->display.wm.skl_latency;
- else
- latencies = dev_priv->display.wm.cur_latency;
-
- return wm_latency_write(file, ubuf, len, offp, latencies);
-}
-
-static const struct file_operations i915_pri_wm_latency_fops = {
- .owner = THIS_MODULE,
- .open = pri_wm_latency_open,
- .read = seq_read,
- .llseek = seq_lseek,
- .release = single_release,
- .write = pri_wm_latency_write
-};
-
-static const struct file_operations i915_spr_wm_latency_fops = {
- .owner = THIS_MODULE,
- .open = spr_wm_latency_open,
- .read = seq_read,
- .llseek = seq_lseek,
- .release = single_release,
- .write = spr_wm_latency_write
-};
-
-static const struct file_operations i915_cur_wm_latency_fops = {
- .owner = THIS_MODULE,
- .open = cur_wm_latency_open,
- .read = seq_read,
- .llseek = seq_lseek,
- .release = single_release,
- .write = cur_wm_latency_write
-};
-
-static int i915_hpd_storm_ctl_show(struct seq_file *m, void *data)
-{
- struct drm_i915_private *dev_priv = m->private;
- struct intel_hotplug *hotplug = &dev_priv->display.hotplug;
-
- /* Synchronize with everything first in case there's been an HPD
- * storm, but we haven't finished handling it in the kernel yet
- */
- intel_synchronize_irq(dev_priv);
- flush_work(&dev_priv->display.hotplug.dig_port_work);
- flush_delayed_work(&dev_priv->display.hotplug.hotplug_work);
-
- seq_printf(m, "Threshold: %d\n", hotplug->hpd_storm_threshold);
- seq_printf(m, "Detected: %s\n",
- str_yes_no(delayed_work_pending(&hotplug->reenable_work)));
-
- return 0;
-}
-
-static ssize_t i915_hpd_storm_ctl_write(struct file *file,
- const char __user *ubuf, size_t len,
- loff_t *offp)
-{
- struct seq_file *m = file->private_data;
- struct drm_i915_private *dev_priv = m->private;
- struct intel_hotplug *hotplug = &dev_priv->display.hotplug;
- unsigned int new_threshold;
- int i;
- char *newline;
- char tmp[16];
-
- if (len >= sizeof(tmp))
- return -EINVAL;
-
- if (copy_from_user(tmp, ubuf, len))
- return -EFAULT;
-
- tmp[len] = '\0';
-
- /* Strip newline, if any */
- newline = strchr(tmp, '\n');
- if (newline)
- *newline = '\0';
-
- if (strcmp(tmp, "reset") == 0)
- new_threshold = HPD_STORM_DEFAULT_THRESHOLD;
- else if (kstrtouint(tmp, 10, &new_threshold) != 0)
- return -EINVAL;
-
- if (new_threshold > 0)
- drm_dbg_kms(&dev_priv->drm,
- "Setting HPD storm detection threshold to %d\n",
- new_threshold);
- else
- drm_dbg_kms(&dev_priv->drm, "Disabling HPD storm detection\n");
-
- spin_lock_irq(&dev_priv->irq_lock);
- hotplug->hpd_storm_threshold = new_threshold;
- /* Reset the HPD storm stats so we don't accidentally trigger a storm */
- for_each_hpd_pin(i)
- hotplug->stats[i].count = 0;
- spin_unlock_irq(&dev_priv->irq_lock);
-
- /* Re-enable hpd immediately if we were in an irq storm */
- flush_delayed_work(&dev_priv->display.hotplug.reenable_work);
-
- return len;
-}
-
-static int i915_hpd_storm_ctl_open(struct inode *inode, struct file *file)
-{
- return single_open(file, i915_hpd_storm_ctl_show, inode->i_private);
-}
-
-static const struct file_operations i915_hpd_storm_ctl_fops = {
- .owner = THIS_MODULE,
- .open = i915_hpd_storm_ctl_open,
- .read = seq_read,
- .llseek = seq_lseek,
- .release = single_release,
- .write = i915_hpd_storm_ctl_write
-};
-
-static int i915_hpd_short_storm_ctl_show(struct seq_file *m, void *data)
-{
- struct drm_i915_private *dev_priv = m->private;
-
- seq_printf(m, "Enabled: %s\n",
- str_yes_no(dev_priv->display.hotplug.hpd_short_storm_enabled));
-
- return 0;
-}
-
-static int
-i915_hpd_short_storm_ctl_open(struct inode *inode, struct file *file)
-{
- return single_open(file, i915_hpd_short_storm_ctl_show,
- inode->i_private);
-}
-
-static ssize_t i915_hpd_short_storm_ctl_write(struct file *file,
- const char __user *ubuf,
- size_t len, loff_t *offp)
-{
- struct seq_file *m = file->private_data;
- struct drm_i915_private *dev_priv = m->private;
- struct intel_hotplug *hotplug = &dev_priv->display.hotplug;
- char *newline;
- char tmp[16];
- int i;
- bool new_state;
-
- if (len >= sizeof(tmp))
- return -EINVAL;
-
- if (copy_from_user(tmp, ubuf, len))
- return -EFAULT;
-
- tmp[len] = '\0';
-
- /* Strip newline, if any */
- newline = strchr(tmp, '\n');
- if (newline)
- *newline = '\0';
-
- /* Reset to the "default" state for this system */
- if (strcmp(tmp, "reset") == 0)
- new_state = !HAS_DP_MST(dev_priv);
- else if (kstrtobool(tmp, &new_state) != 0)
- return -EINVAL;
-
- drm_dbg_kms(&dev_priv->drm, "%sabling HPD short storm detection\n",
- new_state ? "En" : "Dis");
-
- spin_lock_irq(&dev_priv->irq_lock);
- hotplug->hpd_short_storm_enabled = new_state;
- /* Reset the HPD storm stats so we don't accidentally trigger a storm */
- for_each_hpd_pin(i)
- hotplug->stats[i].count = 0;
- spin_unlock_irq(&dev_priv->irq_lock);
-
- /* Re-enable hpd immediately if we were in an irq storm */
- flush_delayed_work(&dev_priv->display.hotplug.reenable_work);
-
- return len;
-}
-
-static const struct file_operations i915_hpd_short_storm_ctl_fops = {
- .owner = THIS_MODULE,
- .open = i915_hpd_short_storm_ctl_open,
- .read = seq_read,
- .llseek = seq_lseek,
- .release = single_release,
- .write = i915_hpd_short_storm_ctl_write,
-};
-
-static int i915_drrs_ctl_set(void *data, u64 val)
-{
- struct drm_i915_private *dev_priv = data;
- struct drm_device *dev = &dev_priv->drm;
- struct intel_crtc *crtc;
-
- for_each_intel_crtc(dev, crtc) {
- struct intel_crtc_state *crtc_state;
- struct drm_crtc_commit *commit;
- int ret;
-
- ret = drm_modeset_lock_single_interruptible(&crtc->base.mutex);
- if (ret)
- return ret;
-
- crtc_state = to_intel_crtc_state(crtc->base.state);
-
- if (!crtc_state->hw.active ||
- !crtc_state->has_drrs)
- goto out;
-
- commit = crtc_state->uapi.commit;
- if (commit) {
- ret = wait_for_completion_interruptible(&commit->hw_done);
- if (ret)
- goto out;
- }
-
- drm_dbg(&dev_priv->drm,
- "Manually %sactivating DRRS\n", val ? "" : "de");
-
- if (val)
- intel_drrs_activate(crtc_state);
- else
- intel_drrs_deactivate(crtc_state);
-
-out:
- drm_modeset_unlock(&crtc->base.mutex);
- if (ret)
- return ret;
- }
-
- return 0;
-}
-
-DEFINE_SIMPLE_ATTRIBUTE(i915_drrs_ctl_fops, NULL, i915_drrs_ctl_set, "%llu\n");
-
static ssize_t
i915_fifo_underrun_reset_write(struct file *filp,
const char __user *ubuf,
@@ -1776,7 +1001,6 @@ i915_fifo_underrun_reset_write(struct file *filp,
{
struct drm_i915_private *dev_priv = filp->private_data;
struct intel_crtc *crtc;
- struct drm_device *dev = &dev_priv->drm;
int ret;
bool reset;
@@ -1787,7 +1011,7 @@ i915_fifo_underrun_reset_write(struct file *filp,
if (!reset)
return cnt;
- for_each_intel_crtc(dev, crtc) {
+ for_each_intel_crtc(&dev_priv->drm, crtc) {
struct drm_crtc_commit *commit;
struct intel_crtc_state *crtc_state;
@@ -1831,18 +1055,15 @@ static const struct file_operations i915_fifo_underrun_reset_ops = {
static const struct drm_info_list intel_display_debugfs_list[] = {
{"i915_frontbuffer_tracking", i915_frontbuffer_tracking, 0},
- {"i915_ips_status", i915_ips_status, 0},
{"i915_sr_status", i915_sr_status, 0},
{"i915_opregion", i915_opregion, 0},
{"i915_vbt", i915_vbt, 0},
{"i915_gem_framebuffer", i915_gem_framebuffer_info, 0},
- {"i915_edp_psr_status", i915_edp_psr_status, 0},
{"i915_power_domain_info", i915_power_domain_info, 0},
{"i915_display_info", i915_display_info, 0},
{"i915_shared_dplls_info", i915_shared_dplls_info, 0},
{"i915_dp_mst_info", i915_dp_mst_info, 0},
{"i915_ddb_info", i915_ddb_info, 0},
- {"i915_drrs_status", i915_drrs_status, 0},
{"i915_lpsp_status", i915_lpsp_status, 0},
};
@@ -1851,16 +1072,9 @@ static const struct {
const struct file_operations *fops;
} intel_display_debugfs_files[] = {
{"i915_fifo_underrun_reset", &i915_fifo_underrun_reset_ops},
- {"i915_pri_wm_latency", &i915_pri_wm_latency_fops},
- {"i915_spr_wm_latency", &i915_spr_wm_latency_fops},
- {"i915_cur_wm_latency", &i915_cur_wm_latency_fops},
{"i915_dp_test_data", &i915_displayport_test_data_fops},
{"i915_dp_test_type", &i915_displayport_test_type_fops},
{"i915_dp_test_active", &i915_displayport_test_active_fops},
- {"i915_hpd_storm_ctl", &i915_hpd_storm_ctl_fops},
- {"i915_hpd_short_storm_ctl", &i915_hpd_short_storm_ctl_fops},
- {"i915_drrs_ctl", &i915_drrs_ctl_fops},
- {"i915_edp_psr_debug", &i915_edp_psr_debug_fops},
};
void intel_display_debugfs_register(struct drm_i915_private *i915)
@@ -1882,7 +1096,9 @@ void intel_display_debugfs_register(struct drm_i915_private *i915)
intel_dmc_debugfs_register(i915);
intel_fbc_debugfs_register(i915);
- skl_watermark_ipc_debugfs_register(i915);
+ intel_hpd_debugfs_register(i915);
+ intel_psr_debugfs_register(i915);
+ intel_wm_debugfs_register(i915);
}
static int i915_panel_show(struct seq_file *m, void *data)
@@ -1934,16 +1150,6 @@ out:
}
DEFINE_SHOW_ATTRIBUTE(i915_hdcp_sink_capability);
-static int i915_psr_status_show(struct seq_file *m, void *data)
-{
- struct drm_connector *connector = m->private;
- struct intel_dp *intel_dp =
- intel_attached_dp(to_intel_connector(connector));
-
- return intel_psr_status(m, intel_dp);
-}
-DEFINE_SHOW_ATTRIBUTE(i915_psr_status);
-
static int i915_lpsp_capability_show(struct seq_file *m, void *data)
{
struct drm_connector *connector = m->private;
@@ -2030,6 +1236,13 @@ static int i915_dsc_fec_support_show(struct seq_file *m, void *data)
str_yes_no(crtc_state->dsc.compression_enable));
seq_printf(m, "DSC_Sink_Support: %s\n",
str_yes_no(drm_dp_sink_supports_dsc(intel_dp->dsc_dpcd)));
+ seq_printf(m, "DSC_Output_Format_Sink_Support: RGB: %s YCBCR420: %s YCBCR444: %s\n",
+ str_yes_no(drm_dp_dsc_sink_supports_format(intel_dp->dsc_dpcd,
+ DP_DSC_RGB)),
+ str_yes_no(drm_dp_dsc_sink_supports_format(intel_dp->dsc_dpcd,
+ DP_DSC_YCbCr420_Native)),
+ str_yes_no(drm_dp_dsc_sink_supports_format(intel_dp->dsc_dpcd,
+ DP_DSC_YCbCr444)));
seq_printf(m, "Force_DSC_Enable: %s\n",
str_yes_no(intel_dp->force_dsc_en));
if (!intel_dp_is_edp(intel_dp))
@@ -2155,13 +1368,80 @@ static const struct file_operations i915_dsc_bpc_fops = {
.write = i915_dsc_bpc_write
};
+static int i915_dsc_output_format_show(struct seq_file *m, void *data)
+{
+ struct drm_connector *connector = m->private;
+ struct drm_device *dev = connector->dev;
+ struct drm_crtc *crtc;
+ struct intel_crtc_state *crtc_state;
+ struct intel_encoder *encoder = intel_attached_encoder(to_intel_connector(connector));
+ int ret;
+
+ if (!encoder)
+ return -ENODEV;
+
+ ret = drm_modeset_lock_single_interruptible(&dev->mode_config.connection_mutex);
+ if (ret)
+ return ret;
+
+ crtc = connector->state->crtc;
+ if (connector->status != connector_status_connected || !crtc) {
+ ret = -ENODEV;
+ goto out;
+ }
+
+ crtc_state = to_intel_crtc_state(crtc->state);
+ seq_printf(m, "DSC_Output_Format: %s\n",
+ intel_output_format_name(crtc_state->output_format));
+
+out: drm_modeset_unlock(&dev->mode_config.connection_mutex);
+
+ return ret;
+}
+
+static ssize_t i915_dsc_output_format_write(struct file *file,
+ const char __user *ubuf,
+ size_t len, loff_t *offp)
+{
+ struct drm_connector *connector =
+ ((struct seq_file *)file->private_data)->private;
+ struct intel_encoder *encoder = intel_attached_encoder(to_intel_connector(connector));
+ struct intel_dp *intel_dp = enc_to_intel_dp(encoder);
+ int dsc_output_format = 0;
+ int ret;
+
+ ret = kstrtoint_from_user(ubuf, len, 0, &dsc_output_format);
+ if (ret < 0)
+ return ret;
+
+ intel_dp->force_dsc_output_format = dsc_output_format;
+ *offp += len;
+
+ return len;
+}
+
+static int i915_dsc_output_format_open(struct inode *inode,
+ struct file *file)
+{
+ return single_open(file, i915_dsc_output_format_show, inode->i_private);
+}
+
+static const struct file_operations i915_dsc_output_format_fops = {
+ .owner = THIS_MODULE,
+ .open = i915_dsc_output_format_open,
+ .read = seq_read,
+ .llseek = seq_lseek,
+ .release = single_release,
+ .write = i915_dsc_output_format_write
+};
+
/*
* Returns the Current CRTC's bpc.
* Example usage: cat /sys/kernel/debug/dri/0/crtc-0/i915_current_bpc
*/
static int i915_current_bpc_show(struct seq_file *m, void *data)
{
- struct intel_crtc *crtc = to_intel_crtc(m->private);
+ struct intel_crtc *crtc = m->private;
struct intel_crtc_state *crtc_state;
int ret;
@@ -2178,9 +1458,20 @@ static int i915_current_bpc_show(struct seq_file *m, void *data)
}
DEFINE_SHOW_ATTRIBUTE(i915_current_bpc);
+/* Pipe may differ from crtc index if pipes are fused off */
+static int intel_crtc_pipe_show(struct seq_file *m, void *unused)
+{
+ struct intel_crtc *crtc = m->private;
+
+ seq_printf(m, "%c\n", pipe_name(crtc->pipe));
+
+ return 0;
+}
+DEFINE_SHOW_ATTRIBUTE(intel_crtc_pipe);
+
/**
* intel_connector_debugfs_add - add i915 specific connector debugfs files
- * @connector: pointer to a registered drm_connector
+ * @intel_connector: pointer to a registered drm_connector
*
* Cleanup will be done by drm_connector_unregister() through a call to
* drm_debugfs_connector_remove().
@@ -2195,18 +1486,12 @@ void intel_connector_debugfs_add(struct intel_connector *intel_connector)
if (!root)
return;
- if (connector->connector_type == DRM_MODE_CONNECTOR_eDP) {
+ intel_drrs_connector_debugfs_add(intel_connector);
+ intel_psr_connector_debugfs_add(intel_connector);
+
+ if (connector->connector_type == DRM_MODE_CONNECTOR_eDP)
debugfs_create_file("i915_panel_timings", S_IRUGO, root,
connector, &i915_panel_fops);
- debugfs_create_file("i915_psr_sink_status", S_IRUGO, root,
- connector, &i915_psr_sink_status_fops);
- }
-
- if (HAS_PSR(dev_priv) &&
- connector->connector_type == DRM_MODE_CONNECTOR_eDP) {
- debugfs_create_file("i915_psr_status", 0444, root,
- connector, &i915_psr_status_fops);
- }
if (connector->connector_type == DRM_MODE_CONNECTOR_DisplayPort ||
connector->connector_type == DRM_MODE_CONNECTOR_HDMIA ||
@@ -2224,6 +1509,9 @@ void intel_connector_debugfs_add(struct intel_connector *intel_connector)
debugfs_create_file("i915_dsc_bpc", 0644, root,
connector, &i915_dsc_bpc_fops);
+
+ debugfs_create_file("i915_dsc_output_format", 0644, root,
+ connector, &i915_dsc_output_format_fops);
}
if (connector->connector_type == DRM_MODE_CONNECTOR_DSI ||
@@ -2241,14 +1529,20 @@ void intel_connector_debugfs_add(struct intel_connector *intel_connector)
*
* Failure to add debugfs entries should generally be ignored.
*/
-void intel_crtc_debugfs_add(struct drm_crtc *crtc)
+void intel_crtc_debugfs_add(struct intel_crtc *crtc)
{
- if (!crtc->debugfs_entry)
+ struct dentry *root = crtc->base.debugfs_entry;
+
+ if (!root)
return;
crtc_updates_add(crtc);
- intel_fbc_crtc_debugfs_add(to_intel_crtc(crtc));
+ intel_drrs_crtc_debugfs_add(crtc);
+ intel_fbc_crtc_debugfs_add(crtc);
+ hsw_ips_crtc_debugfs_add(crtc);
- debugfs_create_file("i915_current_bpc", 0444, crtc->debugfs_entry, crtc,
+ debugfs_create_file("i915_current_bpc", 0444, root, crtc,
&i915_current_bpc_fops);
+ debugfs_create_file("i915_pipe", 0444, root, crtc,
+ &intel_crtc_pipe_fops);
}
diff --git a/drivers/gpu/drm/i915/display/intel_display_debugfs.h b/drivers/gpu/drm/i915/display/intel_display_debugfs.h
index d3a79c07c384..e1f479b7acd1 100644
--- a/drivers/gpu/drm/i915/display/intel_display_debugfs.h
+++ b/drivers/gpu/drm/i915/display/intel_display_debugfs.h
@@ -6,18 +6,18 @@
#ifndef __INTEL_DISPLAY_DEBUGFS_H__
#define __INTEL_DISPLAY_DEBUGFS_H__
-struct drm_crtc;
struct drm_i915_private;
struct intel_connector;
+struct intel_crtc;
#ifdef CONFIG_DEBUG_FS
void intel_display_debugfs_register(struct drm_i915_private *i915);
void intel_connector_debugfs_add(struct intel_connector *connector);
-void intel_crtc_debugfs_add(struct drm_crtc *crtc);
+void intel_crtc_debugfs_add(struct intel_crtc *crtc);
#else
static inline void intel_display_debugfs_register(struct drm_i915_private *i915) {}
static inline void intel_connector_debugfs_add(struct intel_connector *connector) {}
-static inline void intel_crtc_debugfs_add(struct drm_crtc *crtc) {}
+static inline void intel_crtc_debugfs_add(struct intel_crtc *crtc) {}
#endif
#endif /* __INTEL_DISPLAY_DEBUGFS_H__ */
diff --git a/drivers/gpu/drm/i915/display/intel_display_limits.h b/drivers/gpu/drm/i915/display/intel_display_limits.h
new file mode 100644
index 000000000000..5126d0b5ae5d
--- /dev/null
+++ b/drivers/gpu/drm/i915/display/intel_display_limits.h
@@ -0,0 +1,124 @@
+/* SPDX-License-Identifier: MIT */
+/*
+ * Copyright © 2022 Intel Corporation
+ */
+
+#ifndef __INTEL_DISPLAY_LIMITS_H__
+#define __INTEL_DISPLAY_LIMITS_H__
+
+/*
+ * Keep the pipe enum values fixed: the code assumes that PIPE_A=0, the
+ * rest have consecutive values and match the enum values of transcoders
+ * with a 1:1 transcoder -> pipe mapping.
+ */
+enum pipe {
+ INVALID_PIPE = -1,
+
+ PIPE_A = 0,
+ PIPE_B,
+ PIPE_C,
+ PIPE_D,
+ _PIPE_EDP,
+
+ I915_MAX_PIPES = _PIPE_EDP
+};
+
+enum transcoder {
+ INVALID_TRANSCODER = -1,
+ /*
+ * The following transcoders have a 1:1 transcoder -> pipe mapping,
+ * keep their values fixed: the code assumes that TRANSCODER_A=0, the
+ * rest have consecutive values and match the enum values of the pipes
+ * they map to.
+ */
+ TRANSCODER_A = PIPE_A,
+ TRANSCODER_B = PIPE_B,
+ TRANSCODER_C = PIPE_C,
+ TRANSCODER_D = PIPE_D,
+
+ /*
+ * The following transcoders can map to any pipe, their enum value
+ * doesn't need to stay fixed.
+ */
+ TRANSCODER_EDP,
+ TRANSCODER_DSI_0,
+ TRANSCODER_DSI_1,
+ TRANSCODER_DSI_A = TRANSCODER_DSI_0, /* legacy DSI */
+ TRANSCODER_DSI_C = TRANSCODER_DSI_1, /* legacy DSI */
+
+ I915_MAX_TRANSCODERS
+};
+
+/*
+ * Per-pipe plane identifier.
+ * I915_MAX_PLANES in the enum below is the maximum (across all platforms)
+ * number of planes per CRTC. Not all platforms really have this many planes,
+ * which means some arrays of size I915_MAX_PLANES may have unused entries
+ * between the topmost sprite plane and the cursor plane.
+ *
+ * This is expected to be passed to various register macros
+ * (eg. PLANE_CTL(), PS_PLANE_SEL(), etc.) so adjust with care.
+ */
+enum plane_id {
+ PLANE_PRIMARY,
+ PLANE_SPRITE0,
+ PLANE_SPRITE1,
+ PLANE_SPRITE2,
+ PLANE_SPRITE3,
+ PLANE_SPRITE4,
+ PLANE_SPRITE5,
+ PLANE_CURSOR,
+
+ I915_MAX_PLANES,
+};
+
+enum port {
+ PORT_NONE = -1,
+
+ PORT_A = 0,
+ PORT_B,
+ PORT_C,
+ PORT_D,
+ PORT_E,
+ PORT_F,
+ PORT_G,
+ PORT_H,
+ PORT_I,
+
+ /* tgl+ */
+ PORT_TC1 = PORT_D,
+ PORT_TC2,
+ PORT_TC3,
+ PORT_TC4,
+ PORT_TC5,
+ PORT_TC6,
+
+ /* XE_LPD repositions D/E offsets and bitfields */
+ PORT_D_XELPD = PORT_TC5,
+ PORT_E_XELPD,
+
+ I915_MAX_PORTS
+};
+
+enum hpd_pin {
+ HPD_NONE = 0,
+ HPD_TV = HPD_NONE, /* TV is known to be unreliable */
+ HPD_CRT,
+ HPD_SDVO_B,
+ HPD_SDVO_C,
+ HPD_PORT_A,
+ HPD_PORT_B,
+ HPD_PORT_C,
+ HPD_PORT_D,
+ HPD_PORT_E,
+ HPD_PORT_TC1,
+ HPD_PORT_TC2,
+ HPD_PORT_TC3,
+ HPD_PORT_TC4,
+ HPD_PORT_TC5,
+ HPD_PORT_TC6,
+
+ HPD_NUM_PINS
+};
+
+#endif /* __INTEL_DISPLAY_LIMITS_H__ */
diff --git a/drivers/gpu/drm/i915/display/intel_display_power.c b/drivers/gpu/drm/i915/display/intel_display_power.c
index 1e608b9e5055..7c9f4288329e 100644
--- a/drivers/gpu/drm/i915/display/intel_display_power.c
+++ b/drivers/gpu/drm/i915/display/intel_display_power.c
@@ -19,8 +19,10 @@
#include "intel_mchbar_regs.h"
#include "intel_pch_refclk.h"
#include "intel_pcode.h"
+#include "intel_pps_regs.h"
#include "intel_snps_phy.h"
#include "skl_watermark.h"
+#include "skl_watermark_regs.h"
#include "vlv_sideband.h"
#define for_each_power_domain_well(__dev_priv, __power_well, __domain) \
@@ -129,6 +131,18 @@ intel_display_power_domain_str(enum intel_display_power_domain domain)
return "AUDIO_MMIO";
case POWER_DOMAIN_AUDIO_PLAYBACK:
return "AUDIO_PLAYBACK";
+ case POWER_DOMAIN_AUX_IO_A:
+ return "AUX_IO_A";
+ case POWER_DOMAIN_AUX_IO_B:
+ return "AUX_IO_B";
+ case POWER_DOMAIN_AUX_IO_C:
+ return "AUX_IO_C";
+ case POWER_DOMAIN_AUX_IO_D:
+ return "AUX_IO_D";
+ case POWER_DOMAIN_AUX_IO_E:
+ return "AUX_IO_E";
+ case POWER_DOMAIN_AUX_IO_F:
+ return "AUX_IO_F";
case POWER_DOMAIN_AUX_A:
return "AUX_A";
case POWER_DOMAIN_AUX_B:
@@ -153,8 +167,6 @@ intel_display_power_domain_str(enum intel_display_power_domain domain)
return "AUX_USBC5";
case POWER_DOMAIN_AUX_USBC6:
return "AUX_USBC6";
- case POWER_DOMAIN_AUX_IO_A:
- return "AUX_IO_A";
case POWER_DOMAIN_AUX_TBT1:
return "AUX_TBT1";
case POWER_DOMAIN_AUX_TBT2:
@@ -254,9 +266,10 @@ bool intel_display_power_is_enabled(struct drm_i915_private *dev_priv,
}
static u32
-sanitize_target_dc_state(struct drm_i915_private *dev_priv,
+sanitize_target_dc_state(struct drm_i915_private *i915,
u32 target_dc_state)
{
+ struct i915_power_domains *power_domains = &i915->display.power.domains;
static const u32 states[] = {
DC_STATE_EN_UPTO_DC6,
DC_STATE_EN_UPTO_DC5,
@@ -269,7 +282,7 @@ sanitize_target_dc_state(struct drm_i915_private *dev_priv,
if (target_dc_state != states[i])
continue;
- if (dev_priv->display.dmc.allowed_dc_mask & target_dc_state)
+ if (power_domains->allowed_dc_mask & target_dc_state)
break;
target_dc_state = states[i + 1];
@@ -302,7 +315,7 @@ void intel_display_power_set_target_dc_state(struct drm_i915_private *dev_priv,
state = sanitize_target_dc_state(dev_priv, state);
- if (state == dev_priv->display.dmc.target_dc_state)
+ if (state == power_domains->target_dc_state)
goto unlock;
dc_off_enabled = intel_power_well_is_enabled(dev_priv, power_well);
@@ -313,7 +326,7 @@ void intel_display_power_set_target_dc_state(struct drm_i915_private *dev_priv,
if (!dc_off_enabled)
intel_power_well_enable(dev_priv, power_well);
- dev_priv->display.dmc.target_dc_state = state;
+ power_domains->target_dc_state = state;
if (!dc_off_enabled)
intel_power_well_disable(dev_priv, power_well);
@@ -686,7 +699,7 @@ out_verify:
}
/**
- * intel_display_power_put_async - release a power domain reference asynchronously
+ * __intel_display_power_put_async - release a power domain reference asynchronously
* @i915: i915 device instance
* @domain: power domain to reference
* @wakeref: wakeref acquired for the reference that is being released
@@ -982,10 +995,10 @@ int intel_power_domains_init(struct drm_i915_private *dev_priv)
dev_priv->params.disable_power_well =
sanitize_disable_power_well_option(dev_priv,
dev_priv->params.disable_power_well);
- dev_priv->display.dmc.allowed_dc_mask =
+ power_domains->allowed_dc_mask =
get_allowed_dc_mask(dev_priv, dev_priv->params.enable_dc);
- dev_priv->display.dmc.target_dc_state =
+ power_domains->target_dc_state =
sanitize_target_dc_state(dev_priv, DC_STATE_EN_UPTO_DC6);
mutex_init(&power_domains->lock);
@@ -1148,10 +1161,9 @@ static void hsw_assert_cdclk(struct drm_i915_private *dev_priv)
static void assert_can_disable_lcpll(struct drm_i915_private *dev_priv)
{
- struct drm_device *dev = &dev_priv->drm;
struct intel_crtc *crtc;
- for_each_intel_crtc(dev, crtc)
+ for_each_intel_crtc(&dev_priv->drm, crtc)
I915_STATE_WARN(crtc->active, "CRTC for pipe %c enabled\n",
pipe_name(crtc->pipe));
@@ -1172,8 +1184,10 @@ static void assert_can_disable_lcpll(struct drm_i915_private *dev_priv)
"CPU PWM2 enabled\n");
I915_STATE_WARN(intel_de_read(dev_priv, BLC_PWM_PCH_CTL1) & BLM_PCH_PWM_ENABLE,
"PCH PWM1 enabled\n");
- I915_STATE_WARN(intel_de_read(dev_priv, UTIL_PIN_CTL) & UTIL_PIN_ENABLE,
- "Utility pin enabled\n");
+ I915_STATE_WARN((intel_de_read(dev_priv, UTIL_PIN_CTL) &
+ (UTIL_PIN_ENABLE | UTIL_PIN_MODE_MASK)) ==
+ (UTIL_PIN_ENABLE | UTIL_PIN_MODE_PWM),
+ "Utility pin enabled in PWM mode\n");
I915_STATE_WARN(intel_de_read(dev_priv, PCH_GTC_CTL) & PCH_GTC_ENABLE,
"PCH GTC enabled\n");
@@ -1251,9 +1265,7 @@ static void hsw_disable_lcpll(struct drm_i915_private *dev_priv,
drm_err(&dev_priv->drm, "D_COMP RCOMP still in progress\n");
if (allow_power_down) {
- val = intel_de_read(dev_priv, LCPLL_CTL);
- val |= LCPLL_POWER_DOWN_ALLOW;
- intel_de_write(dev_priv, LCPLL_CTL, val);
+ intel_de_rmw(dev_priv, LCPLL_CTL, 0, LCPLL_POWER_DOWN_ALLOW);
intel_de_posting_read(dev_priv, LCPLL_CTL);
}
}
@@ -1297,9 +1309,7 @@ static void hsw_restore_lcpll(struct drm_i915_private *dev_priv)
drm_err(&dev_priv->drm, "LCPLL not locked yet\n");
if (val & LCPLL_CD_SOURCE_FCLK) {
- val = intel_de_read(dev_priv, LCPLL_CTL);
- val &= ~LCPLL_CD_SOURCE_FCLK;
- intel_de_write(dev_priv, LCPLL_CTL, val);
+ intel_de_rmw(dev_priv, LCPLL_CTL, LCPLL_CD_SOURCE_FCLK, 0);
if (wait_for_us((intel_de_read(dev_priv, LCPLL_CTL) &
LCPLL_CD_SOURCE_FCLK_DONE) == 0, 1))
@@ -1338,15 +1348,11 @@ static void hsw_restore_lcpll(struct drm_i915_private *dev_priv)
*/
static void hsw_enable_pc8(struct drm_i915_private *dev_priv)
{
- u32 val;
-
drm_dbg_kms(&dev_priv->drm, "Enabling package C8+\n");
- if (HAS_PCH_LPT_LP(dev_priv)) {
- val = intel_de_read(dev_priv, SOUTH_DSPCLK_GATE_D);
- val &= ~PCH_LP_PARTITION_LEVEL_DISABLE;
- intel_de_write(dev_priv, SOUTH_DSPCLK_GATE_D, val);
- }
+ if (HAS_PCH_LPT_LP(dev_priv))
+ intel_de_rmw(dev_priv, SOUTH_DSPCLK_GATE_D,
+ PCH_LP_PARTITION_LEVEL_DISABLE, 0);
lpt_disable_clkout_dp(dev_priv);
hsw_disable_lcpll(dev_priv, true, true);
@@ -1354,25 +1360,21 @@ static void hsw_enable_pc8(struct drm_i915_private *dev_priv)
static void hsw_disable_pc8(struct drm_i915_private *dev_priv)
{
- u32 val;
-
drm_dbg_kms(&dev_priv->drm, "Disabling package C8+\n");
hsw_restore_lcpll(dev_priv);
intel_init_pch_refclk(dev_priv);
- if (HAS_PCH_LPT_LP(dev_priv)) {
- val = intel_de_read(dev_priv, SOUTH_DSPCLK_GATE_D);
- val |= PCH_LP_PARTITION_LEVEL_DISABLE;
- intel_de_write(dev_priv, SOUTH_DSPCLK_GATE_D, val);
- }
+ if (HAS_PCH_LPT_LP(dev_priv))
+ intel_de_rmw(dev_priv, SOUTH_DSPCLK_GATE_D,
+ 0, PCH_LP_PARTITION_LEVEL_DISABLE);
}
static void intel_pch_reset_handshake(struct drm_i915_private *dev_priv,
bool enable)
{
i915_reg_t reg;
- u32 reset_bits, val;
+ u32 reset_bits;
if (IS_IVYBRIDGE(dev_priv)) {
reg = GEN7_MSG_CTL;
@@ -1385,14 +1387,7 @@ static void intel_pch_reset_handshake(struct drm_i915_private *dev_priv,
if (DISPLAY_VER(dev_priv) >= 14)
reset_bits |= MTL_RESET_PICA_HANDSHAKE_EN;
- val = intel_de_read(dev_priv, reg);
-
- if (enable)
- val |= reset_bits;
- else
- val &= ~reset_bits;
-
- intel_de_write(dev_priv, reg, val);
+ intel_de_rmw(dev_priv, reg, reset_bits, enable ? reset_bits : 0);
}
static void skl_display_core_init(struct drm_i915_private *dev_priv,
@@ -1571,10 +1566,8 @@ static void tgl_bw_buddy_init(struct drm_i915_private *dev_priv)
return;
if (IS_ALDERLAKE_S(dev_priv) ||
- IS_DG1_DISPLAY_STEP(dev_priv, STEP_A0, STEP_B0) ||
- IS_RKL_DISPLAY_STEP(dev_priv, STEP_A0, STEP_B0) ||
- IS_TGL_DISPLAY_STEP(dev_priv, STEP_A0, STEP_C0))
- /* Wa_1409767108:tgl,dg1,adl-s */
+ IS_RKL_DISPLAY_STEP(dev_priv, STEP_A0, STEP_B0))
+ /* Wa_1409767108 */
table = wa_1409767108_buddy_page_masks;
else
table = tgl_buddy_page_masks;
@@ -1609,7 +1602,6 @@ static void icl_display_core_init(struct drm_i915_private *dev_priv,
{
struct i915_power_domains *power_domains = &dev_priv->display.power.domains;
struct i915_power_well *well;
- u32 val;
gen9_set_dc_state(dev_priv, DC_STATE_DISABLE);
@@ -1637,6 +1629,10 @@ static void icl_display_core_init(struct drm_i915_private *dev_priv,
intel_power_well_enable(dev_priv, well);
mutex_unlock(&power_domains->lock);
+ if (DISPLAY_VER(dev_priv) == 14)
+ intel_de_rmw(dev_priv, DC_STATE_EN,
+ HOLD_PHY_PG1_LATCH | HOLD_PHY_CLKREQ_PG1_LATCH, 0);
+
/* 4. Enable CDCLK. */
intel_cdclk_init_hw(dev_priv);
@@ -1661,11 +1657,10 @@ static void icl_display_core_init(struct drm_i915_private *dev_priv,
intel_dmc_load_program(dev_priv);
/* Wa_14011508470:tgl,dg1,rkl,adl-s,adl-p */
- if (DISPLAY_VER(dev_priv) >= 12) {
- val = DCPR_CLEAR_MEMSTAT_DIS | DCPR_SEND_RESP_IMM |
- DCPR_MASK_LPMODE | DCPR_MASK_MAXLATENCY_MEMUP_CLR;
- intel_uncore_rmw(&dev_priv->uncore, GEN11_CHICKEN_DCPR_2, 0, val);
- }
+ if (DISPLAY_VER(dev_priv) >= 12)
+ intel_de_rmw(dev_priv, GEN11_CHICKEN_DCPR_2, 0,
+ DCPR_CLEAR_MEMSTAT_DIS | DCPR_SEND_RESP_IMM |
+ DCPR_MASK_LPMODE | DCPR_MASK_MAXLATENCY_MEMUP_CLR);
/* Wa_14011503030:xelpd */
if (DISPLAY_VER(dev_priv) >= 13)
@@ -1691,6 +1686,10 @@ static void icl_display_core_uninit(struct drm_i915_private *dev_priv)
/* 3. Disable CD clock */
intel_cdclk_uninit_hw(dev_priv);
+ if (DISPLAY_VER(dev_priv) == 14)
+ intel_de_rmw(dev_priv, DC_STATE_EN, 0,
+ HOLD_PHY_PG1_LATCH | HOLD_PHY_CLKREQ_PG1_LATCH);
+
/*
* 4. Disable Power Well 1 (PG1).
* The AUX IO power wells are toggled on demand, so they are already
@@ -2046,7 +2045,7 @@ void intel_power_domains_suspend(struct drm_i915_private *i915,
* resources as required and also enable deeper system power states
* that would be blocked if the firmware was inactive.
*/
- if (!(i915->display.dmc.allowed_dc_mask & DC_STATE_EN_DC9) &&
+ if (!(power_domains->allowed_dc_mask & DC_STATE_EN_DC9) &&
suspend_mode == I915_DRM_SUSPEND_IDLE &&
intel_dmc_has_payload(i915)) {
intel_display_power_flush_work(i915);
@@ -2235,22 +2234,22 @@ void intel_display_power_suspend(struct drm_i915_private *i915)
void intel_display_power_resume(struct drm_i915_private *i915)
{
+ struct i915_power_domains *power_domains = &i915->display.power.domains;
+
if (DISPLAY_VER(i915) >= 11) {
bxt_disable_dc9(i915);
icl_display_core_init(i915, true);
if (intel_dmc_has_payload(i915)) {
- if (i915->display.dmc.allowed_dc_mask &
- DC_STATE_EN_UPTO_DC6)
+ if (power_domains->allowed_dc_mask & DC_STATE_EN_UPTO_DC6)
skl_enable_dc6(i915);
- else if (i915->display.dmc.allowed_dc_mask &
- DC_STATE_EN_UPTO_DC5)
+ else if (power_domains->allowed_dc_mask & DC_STATE_EN_UPTO_DC5)
gen9_enable_dc5(i915);
}
} else if (IS_GEMINILAKE(i915) || IS_BROXTON(i915)) {
bxt_disable_dc9(i915);
bxt_display_core_init(i915, true);
if (intel_dmc_has_payload(i915) &&
- (i915->display.dmc.allowed_dc_mask & DC_STATE_EN_UPTO_DC5))
+ (power_domains->allowed_dc_mask & DC_STATE_EN_UPTO_DC5))
gen9_enable_dc5(i915);
} else if (IS_HASWELL(i915) || IS_BROADWELL(i915)) {
hsw_disable_pc8(i915);
@@ -2290,6 +2289,7 @@ struct intel_ddi_port_domains {
enum intel_display_power_domain ddi_lanes;
enum intel_display_power_domain ddi_io;
+ enum intel_display_power_domain aux_io;
enum intel_display_power_domain aux_legacy_usbc;
enum intel_display_power_domain aux_tbt;
};
@@ -2304,6 +2304,7 @@ i9xx_port_domains[] = {
.ddi_lanes = POWER_DOMAIN_PORT_DDI_LANES_A,
.ddi_io = POWER_DOMAIN_PORT_DDI_IO_A,
+ .aux_io = POWER_DOMAIN_AUX_IO_A,
.aux_legacy_usbc = POWER_DOMAIN_AUX_A,
.aux_tbt = POWER_DOMAIN_INVALID,
},
@@ -2319,6 +2320,7 @@ d11_port_domains[] = {
.ddi_lanes = POWER_DOMAIN_PORT_DDI_LANES_A,
.ddi_io = POWER_DOMAIN_PORT_DDI_IO_A,
+ .aux_io = POWER_DOMAIN_AUX_IO_A,
.aux_legacy_usbc = POWER_DOMAIN_AUX_A,
.aux_tbt = POWER_DOMAIN_INVALID,
}, {
@@ -2329,6 +2331,7 @@ d11_port_domains[] = {
.ddi_lanes = POWER_DOMAIN_PORT_DDI_LANES_C,
.ddi_io = POWER_DOMAIN_PORT_DDI_IO_C,
+ .aux_io = POWER_DOMAIN_AUX_IO_C,
.aux_legacy_usbc = POWER_DOMAIN_AUX_C,
.aux_tbt = POWER_DOMAIN_AUX_TBT1,
},
@@ -2344,6 +2347,7 @@ d12_port_domains[] = {
.ddi_lanes = POWER_DOMAIN_PORT_DDI_LANES_A,
.ddi_io = POWER_DOMAIN_PORT_DDI_IO_A,
+ .aux_io = POWER_DOMAIN_AUX_IO_A,
.aux_legacy_usbc = POWER_DOMAIN_AUX_A,
.aux_tbt = POWER_DOMAIN_INVALID,
}, {
@@ -2354,6 +2358,7 @@ d12_port_domains[] = {
.ddi_lanes = POWER_DOMAIN_PORT_DDI_LANES_TC1,
.ddi_io = POWER_DOMAIN_PORT_DDI_IO_TC1,
+ .aux_io = POWER_DOMAIN_INVALID,
.aux_legacy_usbc = POWER_DOMAIN_AUX_USBC1,
.aux_tbt = POWER_DOMAIN_AUX_TBT1,
},
@@ -2369,6 +2374,7 @@ d13_port_domains[] = {
.ddi_lanes = POWER_DOMAIN_PORT_DDI_LANES_A,
.ddi_io = POWER_DOMAIN_PORT_DDI_IO_A,
+ .aux_io = POWER_DOMAIN_AUX_IO_A,
.aux_legacy_usbc = POWER_DOMAIN_AUX_A,
.aux_tbt = POWER_DOMAIN_INVALID,
}, {
@@ -2379,6 +2385,7 @@ d13_port_domains[] = {
.ddi_lanes = POWER_DOMAIN_PORT_DDI_LANES_TC1,
.ddi_io = POWER_DOMAIN_PORT_DDI_IO_TC1,
+ .aux_io = POWER_DOMAIN_INVALID,
.aux_legacy_usbc = POWER_DOMAIN_AUX_USBC1,
.aux_tbt = POWER_DOMAIN_AUX_TBT1,
}, {
@@ -2389,6 +2396,7 @@ d13_port_domains[] = {
.ddi_lanes = POWER_DOMAIN_PORT_DDI_LANES_D,
.ddi_io = POWER_DOMAIN_PORT_DDI_IO_D,
+ .aux_io = POWER_DOMAIN_AUX_IO_D,
.aux_legacy_usbc = POWER_DOMAIN_AUX_D,
.aux_tbt = POWER_DOMAIN_INVALID,
},
@@ -2434,7 +2442,7 @@ intel_display_power_ddi_io_domain(struct drm_i915_private *i915, enum port port)
{
const struct intel_ddi_port_domains *domains = intel_port_domains_for_port(i915, port);
- if (drm_WARN_ON(&i915->drm, !domains) || domains->ddi_io == POWER_DOMAIN_INVALID)
+ if (drm_WARN_ON(&i915->drm, !domains || domains->ddi_io == POWER_DOMAIN_INVALID))
return POWER_DOMAIN_PORT_DDI_IO_A;
return domains->ddi_io + (int)(port - domains->port_start);
@@ -2445,7 +2453,7 @@ intel_display_power_ddi_lanes_domain(struct drm_i915_private *i915, enum port po
{
const struct intel_ddi_port_domains *domains = intel_port_domains_for_port(i915, port);
- if (drm_WARN_ON(&i915->drm, !domains) || domains->ddi_lanes == POWER_DOMAIN_INVALID)
+ if (drm_WARN_ON(&i915->drm, !domains || domains->ddi_lanes == POWER_DOMAIN_INVALID))
return POWER_DOMAIN_PORT_DDI_LANES_A;
return domains->ddi_lanes + (int)(port - domains->port_start);
@@ -2467,11 +2475,22 @@ intel_port_domains_for_aux_ch(struct drm_i915_private *i915, enum aux_ch aux_ch)
}
enum intel_display_power_domain
+intel_display_power_aux_io_domain(struct drm_i915_private *i915, enum aux_ch aux_ch)
+{
+ const struct intel_ddi_port_domains *domains = intel_port_domains_for_aux_ch(i915, aux_ch);
+
+ if (drm_WARN_ON(&i915->drm, !domains || domains->aux_io == POWER_DOMAIN_INVALID))
+ return POWER_DOMAIN_AUX_IO_A;
+
+ return domains->aux_io + (int)(aux_ch - domains->aux_ch_start);
+}
+
+enum intel_display_power_domain
intel_display_power_legacy_aux_domain(struct drm_i915_private *i915, enum aux_ch aux_ch)
{
const struct intel_ddi_port_domains *domains = intel_port_domains_for_aux_ch(i915, aux_ch);
- if (drm_WARN_ON(&i915->drm, !domains) || domains->aux_legacy_usbc == POWER_DOMAIN_INVALID)
+ if (drm_WARN_ON(&i915->drm, !domains || domains->aux_legacy_usbc == POWER_DOMAIN_INVALID))
return POWER_DOMAIN_AUX_A;
return domains->aux_legacy_usbc + (int)(aux_ch - domains->aux_ch_start);
@@ -2482,7 +2501,7 @@ intel_display_power_tbt_aux_domain(struct drm_i915_private *i915, enum aux_ch au
{
const struct intel_ddi_port_domains *domains = intel_port_domains_for_aux_ch(i915, aux_ch);
- if (drm_WARN_ON(&i915->drm, !domains) || domains->aux_tbt == POWER_DOMAIN_INVALID)
+ if (drm_WARN_ON(&i915->drm, !domains || domains->aux_tbt == POWER_DOMAIN_INVALID))
return POWER_DOMAIN_AUX_TBT1;
return domains->aux_tbt + (int)(aux_ch - domains->aux_ch_start);
diff --git a/drivers/gpu/drm/i915/display/intel_display_power.h b/drivers/gpu/drm/i915/display/intel_display_power.h
index 7136ea3f233e..8e96be8e6330 100644
--- a/drivers/gpu/drm/i915/display/intel_display_power.h
+++ b/drivers/gpu/drm/i915/display/intel_display_power.h
@@ -6,11 +6,12 @@
#ifndef __INTEL_DISPLAY_POWER_H__
#define __INTEL_DISPLAY_POWER_H__
-#include "intel_runtime_pm.h"
+#include "intel_wakeref.h"
enum aux_ch;
enum dpio_channel;
enum dpio_phy;
+enum i915_drm_suspend_mode;
enum port;
struct drm_i915_private;
struct i915_power_well;
@@ -76,6 +77,14 @@ enum intel_display_power_domain {
POWER_DOMAIN_VGA,
POWER_DOMAIN_AUDIO_MMIO,
POWER_DOMAIN_AUDIO_PLAYBACK,
+
+ POWER_DOMAIN_AUX_IO_A,
+ POWER_DOMAIN_AUX_IO_B,
+ POWER_DOMAIN_AUX_IO_C,
+ POWER_DOMAIN_AUX_IO_D,
+ POWER_DOMAIN_AUX_IO_E,
+ POWER_DOMAIN_AUX_IO_F,
+
POWER_DOMAIN_AUX_A,
POWER_DOMAIN_AUX_B,
POWER_DOMAIN_AUX_C,
@@ -90,8 +99,6 @@ enum intel_display_power_domain {
POWER_DOMAIN_AUX_USBC5,
POWER_DOMAIN_AUX_USBC6,
- POWER_DOMAIN_AUX_IO_A,
-
POWER_DOMAIN_AUX_TBT1,
POWER_DOMAIN_AUX_TBT2,
POWER_DOMAIN_AUX_TBT3,
@@ -130,6 +137,10 @@ struct i915_power_domains {
bool display_core_suspended;
int power_well_count;
+ u32 dc_state;
+ u32 target_dc_state;
+ u32 allowed_dc_mask;
+
intel_wakeref_t init_wakeref;
intel_wakeref_t disable_wakeref;
@@ -249,6 +260,8 @@ intel_display_power_ddi_lanes_domain(struct drm_i915_private *i915, enum port po
enum intel_display_power_domain
intel_display_power_ddi_io_domain(struct drm_i915_private *i915, enum port port);
enum intel_display_power_domain
+intel_display_power_aux_io_domain(struct drm_i915_private *i915, enum aux_ch aux_ch);
+enum intel_display_power_domain
intel_display_power_legacy_aux_domain(struct drm_i915_private *i915, enum aux_ch aux_ch);
enum intel_display_power_domain
intel_display_power_tbt_aux_domain(struct drm_i915_private *i915, enum aux_ch aux_ch);
diff --git a/drivers/gpu/drm/i915/display/intel_display_power_map.c b/drivers/gpu/drm/i915/display/intel_display_power_map.c
index dc04afc6cc8f..6645eb1911d8 100644
--- a/drivers/gpu/drm/i915/display/intel_display_power_map.c
+++ b/drivers/gpu/drm/i915/display/intel_display_power_map.c
@@ -10,6 +10,7 @@
#include "intel_display_power_map.h"
#include "intel_display_power_well.h"
+#include "intel_display_types.h"
#define __LIST_INLINE_ELEMS(__elem_type, ...) \
((__elem_type[]) { __VA_ARGS__ })
@@ -170,6 +171,8 @@ I915_DECL_PW_DOMAINS(vlv_pwdoms_display,
POWER_DOMAIN_VGA,
POWER_DOMAIN_AUDIO_MMIO,
POWER_DOMAIN_AUDIO_PLAYBACK,
+ POWER_DOMAIN_AUX_IO_B,
+ POWER_DOMAIN_AUX_IO_C,
POWER_DOMAIN_AUX_B,
POWER_DOMAIN_AUX_C,
POWER_DOMAIN_GMBUS,
@@ -179,6 +182,8 @@ I915_DECL_PW_DOMAINS(vlv_pwdoms_dpio_cmn_bc,
POWER_DOMAIN_PORT_DDI_LANES_B,
POWER_DOMAIN_PORT_DDI_LANES_C,
POWER_DOMAIN_PORT_CRT,
+ POWER_DOMAIN_AUX_IO_B,
+ POWER_DOMAIN_AUX_IO_C,
POWER_DOMAIN_AUX_B,
POWER_DOMAIN_AUX_C,
POWER_DOMAIN_INIT);
@@ -186,6 +191,8 @@ I915_DECL_PW_DOMAINS(vlv_pwdoms_dpio_cmn_bc,
I915_DECL_PW_DOMAINS(vlv_pwdoms_dpio_tx_bc_lanes,
POWER_DOMAIN_PORT_DDI_LANES_B,
POWER_DOMAIN_PORT_DDI_LANES_C,
+ POWER_DOMAIN_AUX_IO_B,
+ POWER_DOMAIN_AUX_IO_C,
POWER_DOMAIN_AUX_B,
POWER_DOMAIN_AUX_C,
POWER_DOMAIN_INIT);
@@ -243,6 +250,9 @@ I915_DECL_PW_DOMAINS(chv_pwdoms_display,
POWER_DOMAIN_VGA,
POWER_DOMAIN_AUDIO_MMIO,
POWER_DOMAIN_AUDIO_PLAYBACK,
+ POWER_DOMAIN_AUX_IO_B,
+ POWER_DOMAIN_AUX_IO_C,
+ POWER_DOMAIN_AUX_IO_D,
POWER_DOMAIN_AUX_B,
POWER_DOMAIN_AUX_C,
POWER_DOMAIN_AUX_D,
@@ -252,12 +262,15 @@ I915_DECL_PW_DOMAINS(chv_pwdoms_display,
I915_DECL_PW_DOMAINS(chv_pwdoms_dpio_cmn_bc,
POWER_DOMAIN_PORT_DDI_LANES_B,
POWER_DOMAIN_PORT_DDI_LANES_C,
+ POWER_DOMAIN_AUX_IO_B,
+ POWER_DOMAIN_AUX_IO_C,
POWER_DOMAIN_AUX_B,
POWER_DOMAIN_AUX_C,
POWER_DOMAIN_INIT);
I915_DECL_PW_DOMAINS(chv_pwdoms_dpio_cmn_d,
POWER_DOMAIN_PORT_DDI_LANES_D,
+ POWER_DOMAIN_AUX_IO_D,
POWER_DOMAIN_AUX_D,
POWER_DOMAIN_INIT);
@@ -305,6 +318,9 @@ static const struct i915_power_well_desc_list chv_power_wells[] = {
POWER_DOMAIN_VGA, \
POWER_DOMAIN_AUDIO_MMIO, \
POWER_DOMAIN_AUDIO_PLAYBACK, \
+ POWER_DOMAIN_AUX_IO_B, \
+ POWER_DOMAIN_AUX_IO_C, \
+ POWER_DOMAIN_AUX_IO_D, \
POWER_DOMAIN_AUX_B, \
POWER_DOMAIN_AUX_C, \
POWER_DOMAIN_AUX_D
@@ -318,6 +334,7 @@ I915_DECL_PW_DOMAINS(skl_pwdoms_dc_off,
POWER_DOMAIN_AUX_A,
POWER_DOMAIN_MODESET,
POWER_DOMAIN_GT_IRQ,
+ POWER_DOMAIN_DC_OFF,
POWER_DOMAIN_INIT);
I915_DECL_PW_DOMAINS(skl_pwdoms_ddi_io_a_e,
@@ -407,6 +424,8 @@ static const struct i915_power_well_desc_list skl_power_wells[] = {
POWER_DOMAIN_VGA, \
POWER_DOMAIN_AUDIO_MMIO, \
POWER_DOMAIN_AUDIO_PLAYBACK, \
+ POWER_DOMAIN_AUX_IO_B, \
+ POWER_DOMAIN_AUX_IO_C, \
POWER_DOMAIN_AUX_B, \
POWER_DOMAIN_AUX_C
@@ -420,16 +439,20 @@ I915_DECL_PW_DOMAINS(bxt_pwdoms_dc_off,
POWER_DOMAIN_GMBUS,
POWER_DOMAIN_MODESET,
POWER_DOMAIN_GT_IRQ,
+ POWER_DOMAIN_DC_OFF,
POWER_DOMAIN_INIT);
I915_DECL_PW_DOMAINS(bxt_pwdoms_dpio_cmn_a,
POWER_DOMAIN_PORT_DDI_LANES_A,
+ POWER_DOMAIN_AUX_IO_A,
POWER_DOMAIN_AUX_A,
POWER_DOMAIN_INIT);
I915_DECL_PW_DOMAINS(bxt_pwdoms_dpio_cmn_bc,
POWER_DOMAIN_PORT_DDI_LANES_B,
POWER_DOMAIN_PORT_DDI_LANES_C,
+ POWER_DOMAIN_AUX_IO_B,
+ POWER_DOMAIN_AUX_IO_C,
POWER_DOMAIN_AUX_B,
POWER_DOMAIN_AUX_C,
POWER_DOMAIN_INIT);
@@ -483,6 +506,8 @@ static const struct i915_power_well_desc_list bxt_power_wells[] = {
POWER_DOMAIN_VGA, \
POWER_DOMAIN_AUDIO_MMIO, \
POWER_DOMAIN_AUDIO_PLAYBACK, \
+ POWER_DOMAIN_AUX_IO_B, \
+ POWER_DOMAIN_AUX_IO_C, \
POWER_DOMAIN_AUX_B, \
POWER_DOMAIN_AUX_C
@@ -496,6 +521,7 @@ I915_DECL_PW_DOMAINS(glk_pwdoms_dc_off,
POWER_DOMAIN_GMBUS,
POWER_DOMAIN_MODESET,
POWER_DOMAIN_GT_IRQ,
+ POWER_DOMAIN_DC_OFF,
POWER_DOMAIN_INIT);
I915_DECL_PW_DOMAINS(glk_pwdoms_ddi_io_a, POWER_DOMAIN_PORT_DDI_IO_A);
@@ -504,29 +530,34 @@ I915_DECL_PW_DOMAINS(glk_pwdoms_ddi_io_c, POWER_DOMAIN_PORT_DDI_IO_C);
I915_DECL_PW_DOMAINS(glk_pwdoms_dpio_cmn_a,
POWER_DOMAIN_PORT_DDI_LANES_A,
+ POWER_DOMAIN_AUX_IO_A,
POWER_DOMAIN_AUX_A,
POWER_DOMAIN_INIT);
I915_DECL_PW_DOMAINS(glk_pwdoms_dpio_cmn_b,
POWER_DOMAIN_PORT_DDI_LANES_B,
+ POWER_DOMAIN_AUX_IO_B,
POWER_DOMAIN_AUX_B,
POWER_DOMAIN_INIT);
I915_DECL_PW_DOMAINS(glk_pwdoms_dpio_cmn_c,
POWER_DOMAIN_PORT_DDI_LANES_C,
+ POWER_DOMAIN_AUX_IO_C,
POWER_DOMAIN_AUX_C,
POWER_DOMAIN_INIT);
I915_DECL_PW_DOMAINS(glk_pwdoms_aux_a,
- POWER_DOMAIN_AUX_A,
POWER_DOMAIN_AUX_IO_A,
+ POWER_DOMAIN_AUX_A,
POWER_DOMAIN_INIT);
I915_DECL_PW_DOMAINS(glk_pwdoms_aux_b,
+ POWER_DOMAIN_AUX_IO_B,
POWER_DOMAIN_AUX_B,
POWER_DOMAIN_INIT);
I915_DECL_PW_DOMAINS(glk_pwdoms_aux_c,
+ POWER_DOMAIN_AUX_IO_C,
POWER_DOMAIN_AUX_C,
POWER_DOMAIN_INIT);
@@ -617,6 +648,11 @@ I915_DECL_PW_DOMAINS(icl_pwdoms_pw_4,
POWER_DOMAIN_VGA, \
POWER_DOMAIN_AUDIO_MMIO, \
POWER_DOMAIN_AUDIO_PLAYBACK, \
+ POWER_DOMAIN_AUX_IO_B, \
+ POWER_DOMAIN_AUX_IO_C, \
+ POWER_DOMAIN_AUX_IO_D, \
+ POWER_DOMAIN_AUX_IO_E, \
+ POWER_DOMAIN_AUX_IO_F, \
POWER_DOMAIN_AUX_B, \
POWER_DOMAIN_AUX_C, \
POWER_DOMAIN_AUX_D, \
@@ -658,13 +694,23 @@ I915_DECL_PW_DOMAINS(icl_pwdoms_ddi_io_e, POWER_DOMAIN_PORT_DDI_IO_E);
I915_DECL_PW_DOMAINS(icl_pwdoms_ddi_io_f, POWER_DOMAIN_PORT_DDI_IO_F);
I915_DECL_PW_DOMAINS(icl_pwdoms_aux_a,
- POWER_DOMAIN_AUX_A,
- POWER_DOMAIN_AUX_IO_A);
-I915_DECL_PW_DOMAINS(icl_pwdoms_aux_b, POWER_DOMAIN_AUX_B);
-I915_DECL_PW_DOMAINS(icl_pwdoms_aux_c, POWER_DOMAIN_AUX_C);
-I915_DECL_PW_DOMAINS(icl_pwdoms_aux_d, POWER_DOMAIN_AUX_D);
-I915_DECL_PW_DOMAINS(icl_pwdoms_aux_e, POWER_DOMAIN_AUX_E);
-I915_DECL_PW_DOMAINS(icl_pwdoms_aux_f, POWER_DOMAIN_AUX_F);
+ POWER_DOMAIN_AUX_IO_A,
+ POWER_DOMAIN_AUX_A);
+I915_DECL_PW_DOMAINS(icl_pwdoms_aux_b,
+ POWER_DOMAIN_AUX_IO_B,
+ POWER_DOMAIN_AUX_B);
+I915_DECL_PW_DOMAINS(icl_pwdoms_aux_c,
+ POWER_DOMAIN_AUX_IO_C,
+ POWER_DOMAIN_AUX_C);
+I915_DECL_PW_DOMAINS(icl_pwdoms_aux_d,
+ POWER_DOMAIN_AUX_IO_D,
+ POWER_DOMAIN_AUX_D);
+I915_DECL_PW_DOMAINS(icl_pwdoms_aux_e,
+ POWER_DOMAIN_AUX_IO_E,
+ POWER_DOMAIN_AUX_E);
+I915_DECL_PW_DOMAINS(icl_pwdoms_aux_f,
+ POWER_DOMAIN_AUX_IO_F,
+ POWER_DOMAIN_AUX_F);
I915_DECL_PW_DOMAINS(icl_pwdoms_aux_tbt1, POWER_DOMAIN_AUX_TBT1);
I915_DECL_PW_DOMAINS(icl_pwdoms_aux_tbt2, POWER_DOMAIN_AUX_TBT2);
I915_DECL_PW_DOMAINS(icl_pwdoms_aux_tbt3, POWER_DOMAIN_AUX_TBT3);
@@ -816,6 +862,7 @@ I915_DECL_PW_DOMAINS(tgl_pwdoms_dc_off,
POWER_DOMAIN_AUX_B,
POWER_DOMAIN_AUX_C,
POWER_DOMAIN_MODESET,
+ POWER_DOMAIN_DC_OFF,
POWER_DOMAIN_INIT);
I915_DECL_PW_DOMAINS(tgl_pwdoms_ddi_io_tc1, POWER_DOMAIN_PORT_DDI_IO_TC1);
@@ -1012,6 +1059,7 @@ I915_DECL_PW_DOMAINS(rkl_pwdoms_dc_off,
POWER_DOMAIN_AUX_A,
POWER_DOMAIN_AUX_B,
POWER_DOMAIN_MODESET,
+ POWER_DOMAIN_DC_OFF,
POWER_DOMAIN_INIT);
static const struct i915_power_well_desc rkl_power_wells_main[] = {
@@ -1094,6 +1142,7 @@ I915_DECL_PW_DOMAINS(dg1_pwdoms_dc_off,
POWER_DOMAIN_AUX_A,
POWER_DOMAIN_AUX_B,
POWER_DOMAIN_MODESET,
+ POWER_DOMAIN_DC_OFF,
POWER_DOMAIN_INIT);
I915_DECL_PW_DOMAINS(dg1_pwdoms_pw_2,
@@ -1215,6 +1264,9 @@ I915_DECL_PW_DOMAINS(xelpd_pwdoms_pw_a,
POWER_DOMAIN_PORT_DDI_LANES_TC4, \
POWER_DOMAIN_VGA, \
POWER_DOMAIN_AUDIO_PLAYBACK, \
+ POWER_DOMAIN_AUX_IO_C, \
+ POWER_DOMAIN_AUX_IO_D, \
+ POWER_DOMAIN_AUX_IO_E, \
POWER_DOMAIN_AUX_C, \
POWER_DOMAIN_AUX_D, \
POWER_DOMAIN_AUX_E, \
@@ -1255,6 +1307,7 @@ I915_DECL_PW_DOMAINS(xelpd_pwdoms_dc_off,
POWER_DOMAIN_AUX_A,
POWER_DOMAIN_AUX_B,
POWER_DOMAIN_MODESET,
+ POWER_DOMAIN_DC_OFF,
POWER_DOMAIN_INIT);
static const struct i915_power_well_desc xelpd_power_wells_main[] = {
@@ -1376,6 +1429,7 @@ I915_DECL_PW_DOMAINS(xelpdp_pwdoms_dc_off,
POWER_DOMAIN_MODESET,
POWER_DOMAIN_AUX_A,
POWER_DOMAIN_AUX_B,
+ POWER_DOMAIN_DC_OFF,
POWER_DOMAIN_INIT);
I915_DECL_PW_DOMAINS(xelpdp_pwdoms_aux_tc1,
diff --git a/drivers/gpu/drm/i915/display/intel_display_power_well.c b/drivers/gpu/drm/i915/display/intel_display_power_well.c
index 1d18eee56253..62bafcbc7937 100644
--- a/drivers/gpu/drm/i915/display/intel_display_power_well.c
+++ b/drivers/gpu/drm/i915/display/intel_display_power_well.c
@@ -13,7 +13,9 @@
#include "intel_display_power_well.h"
#include "intel_display_types.h"
#include "intel_dkl_phy.h"
+#include "intel_dkl_phy_regs.h"
#include "intel_dmc.h"
+#include "intel_dp_aux_regs.h"
#include "intel_dpio_phy.h"
#include "intel_dpll.h"
#include "intel_hotplug.h"
@@ -332,7 +334,6 @@ static void hsw_power_well_enable(struct drm_i915_private *dev_priv,
{
const struct i915_power_well_regs *regs = power_well->desc->ops->regs;
int pw_idx = i915_power_well_instance(power_well)->hsw.idx;
- u32 val;
if (power_well->desc->has_fuses) {
enum skl_power_gate pg;
@@ -355,9 +356,7 @@ static void hsw_power_well_enable(struct drm_i915_private *dev_priv,
gen9_wait_for_power_well_fuses(dev_priv, SKL_PG0);
}
- val = intel_de_read(dev_priv, regs->driver);
- intel_de_write(dev_priv, regs->driver,
- val | HSW_PWR_WELL_CTL_REQ(pw_idx));
+ intel_de_rmw(dev_priv, regs->driver, 0, HSW_PWR_WELL_CTL_REQ(pw_idx));
hsw_wait_for_power_well_enable(dev_priv, power_well, false);
@@ -379,17 +378,27 @@ static void hsw_power_well_disable(struct drm_i915_private *dev_priv,
{
const struct i915_power_well_regs *regs = power_well->desc->ops->regs;
int pw_idx = i915_power_well_instance(power_well)->hsw.idx;
- u32 val;
hsw_power_well_pre_disable(dev_priv,
power_well->desc->irq_pipe_mask);
- val = intel_de_read(dev_priv, regs->driver);
- intel_de_write(dev_priv, regs->driver,
- val & ~HSW_PWR_WELL_CTL_REQ(pw_idx));
+ intel_de_rmw(dev_priv, regs->driver, HSW_PWR_WELL_CTL_REQ(pw_idx), 0);
hsw_wait_for_power_well_disable(dev_priv, power_well);
}
+static bool intel_port_is_edp(struct drm_i915_private *i915, enum port port)
+{
+ struct intel_encoder *encoder;
+
+ for_each_intel_encoder(&i915->drm, encoder) {
+ if (encoder->type == INTEL_OUTPUT_EDP &&
+ encoder->port == port)
+ return true;
+ }
+
+ return false;
+}
+
static void
icl_combo_phy_aux_power_well_enable(struct drm_i915_private *dev_priv,
struct i915_power_well *power_well)
@@ -397,29 +406,22 @@ icl_combo_phy_aux_power_well_enable(struct drm_i915_private *dev_priv,
const struct i915_power_well_regs *regs = power_well->desc->ops->regs;
int pw_idx = i915_power_well_instance(power_well)->hsw.idx;
enum phy phy = icl_aux_pw_to_phy(dev_priv, power_well);
- u32 val;
drm_WARN_ON(&dev_priv->drm, !IS_ICELAKE(dev_priv));
- val = intel_de_read(dev_priv, regs->driver);
- intel_de_write(dev_priv, regs->driver,
- val | HSW_PWR_WELL_CTL_REQ(pw_idx));
+ intel_de_rmw(dev_priv, regs->driver, 0, HSW_PWR_WELL_CTL_REQ(pw_idx));
- if (DISPLAY_VER(dev_priv) < 12) {
- val = intel_de_read(dev_priv, ICL_PORT_CL_DW12(phy));
- intel_de_write(dev_priv, ICL_PORT_CL_DW12(phy),
- val | ICL_LANE_ENABLE_AUX);
- }
+ if (DISPLAY_VER(dev_priv) < 12)
+ intel_de_rmw(dev_priv, ICL_PORT_CL_DW12(phy),
+ 0, ICL_LANE_ENABLE_AUX);
hsw_wait_for_power_well_enable(dev_priv, power_well, false);
/* Display WA #1178: icl */
if (pw_idx >= ICL_PW_CTL_IDX_AUX_A && pw_idx <= ICL_PW_CTL_IDX_AUX_B &&
- !intel_bios_is_port_edp(dev_priv, (enum port)phy)) {
- val = intel_de_read(dev_priv, ICL_AUX_ANAOVRD1(pw_idx));
- val |= ICL_AUX_ANAOVRD1_ENABLE | ICL_AUX_ANAOVRD1_LDO_BYPASS;
- intel_de_write(dev_priv, ICL_AUX_ANAOVRD1(pw_idx), val);
- }
+ !intel_port_is_edp(dev_priv, (enum port)phy))
+ intel_de_rmw(dev_priv, ICL_AUX_ANAOVRD1(pw_idx),
+ 0, ICL_AUX_ANAOVRD1_ENABLE | ICL_AUX_ANAOVRD1_LDO_BYPASS);
}
static void
@@ -429,17 +431,12 @@ icl_combo_phy_aux_power_well_disable(struct drm_i915_private *dev_priv,
const struct i915_power_well_regs *regs = power_well->desc->ops->regs;
int pw_idx = i915_power_well_instance(power_well)->hsw.idx;
enum phy phy = icl_aux_pw_to_phy(dev_priv, power_well);
- u32 val;
drm_WARN_ON(&dev_priv->drm, !IS_ICELAKE(dev_priv));
- val = intel_de_read(dev_priv, ICL_PORT_CL_DW12(phy));
- intel_de_write(dev_priv, ICL_PORT_CL_DW12(phy),
- val & ~ICL_LANE_ENABLE_AUX);
+ intel_de_rmw(dev_priv, ICL_PORT_CL_DW12(phy), ICL_LANE_ENABLE_AUX, 0);
- val = intel_de_read(dev_priv, regs->driver);
- intel_de_write(dev_priv, regs->driver,
- val & ~HSW_PWR_WELL_CTL_REQ(pw_idx));
+ intel_de_rmw(dev_priv, regs->driver, HSW_PWR_WELL_CTL_REQ(pw_idx), 0);
hsw_wait_for_power_well_disable(dev_priv, power_well);
}
@@ -501,19 +498,15 @@ icl_tc_phy_aux_power_well_enable(struct drm_i915_private *dev_priv,
const struct i915_power_well_regs *regs = power_well->desc->ops->regs;
bool is_tbt = power_well->desc->is_tc_tbt;
bool timeout_expected;
- u32 val;
icl_tc_port_assert_ref_held(dev_priv, power_well, dig_port);
- val = intel_de_read(dev_priv, DP_AUX_CH_CTL(aux_ch));
- val &= ~DP_AUX_CH_CTL_TBT_IO;
- if (is_tbt)
- val |= DP_AUX_CH_CTL_TBT_IO;
- intel_de_write(dev_priv, DP_AUX_CH_CTL(aux_ch), val);
+ intel_de_rmw(dev_priv, DP_AUX_CH_CTL(aux_ch),
+ DP_AUX_CH_CTL_TBT_IO, is_tbt ? DP_AUX_CH_CTL_TBT_IO : 0);
- val = intel_de_read(dev_priv, regs->driver);
- intel_de_write(dev_priv, regs->driver,
- val | HSW_PWR_WELL_CTL_REQ(i915_power_well_instance(power_well)->hsw.idx));
+ intel_de_rmw(dev_priv, regs->driver,
+ 0,
+ HSW_PWR_WELL_CTL_REQ(i915_power_well_instance(power_well)->hsw.idx));
/*
* An AUX timeout is expected if the TBT DP tunnel is down,
@@ -531,7 +524,7 @@ icl_tc_phy_aux_power_well_enable(struct drm_i915_private *dev_priv,
tc_port = TGL_AUX_PW_TO_TC_PORT(i915_power_well_instance(power_well)->hsw.idx);
- if (wait_for(intel_dkl_phy_read(dev_priv, DKL_CMN_UC_DW_27(tc_port), 2) &
+ if (wait_for(intel_dkl_phy_read(dev_priv, DKL_CMN_UC_DW_27(tc_port)) &
DKL_CMN_UC_DW27_UC_HEALTH, 1))
drm_warn(&dev_priv->drm,
"Timeout waiting TC uC health\n");
@@ -699,19 +692,20 @@ static u32 gen9_dc_mask(struct drm_i915_private *dev_priv)
return mask;
}
-void gen9_sanitize_dc_state(struct drm_i915_private *dev_priv)
+void gen9_sanitize_dc_state(struct drm_i915_private *i915)
{
+ struct i915_power_domains *power_domains = &i915->display.power.domains;
u32 val;
- if (!HAS_DISPLAY(dev_priv))
+ if (!HAS_DISPLAY(i915))
return;
- val = intel_de_read(dev_priv, DC_STATE_EN) & gen9_dc_mask(dev_priv);
+ val = intel_de_read(i915, DC_STATE_EN) & gen9_dc_mask(i915);
- drm_dbg_kms(&dev_priv->drm,
+ drm_dbg_kms(&i915->drm,
"Resetting DC state tracking from %02x to %02x\n",
- dev_priv->display.dmc.dc_state, val);
- dev_priv->display.dmc.dc_state = val;
+ power_domains->dc_state, val);
+ power_domains->dc_state = val;
}
/**
@@ -739,6 +733,7 @@ void gen9_sanitize_dc_state(struct drm_i915_private *dev_priv)
*/
void gen9_set_dc_state(struct drm_i915_private *dev_priv, u32 state)
{
+ struct i915_power_domains *power_domains = &dev_priv->display.power.domains;
u32 val;
u32 mask;
@@ -746,8 +741,8 @@ void gen9_set_dc_state(struct drm_i915_private *dev_priv, u32 state)
return;
if (drm_WARN_ON_ONCE(&dev_priv->drm,
- state & ~dev_priv->display.dmc.allowed_dc_mask))
- state &= dev_priv->display.dmc.allowed_dc_mask;
+ state & ~power_domains->allowed_dc_mask))
+ state &= power_domains->allowed_dc_mask;
val = intel_de_read(dev_priv, DC_STATE_EN);
mask = gen9_dc_mask(dev_priv);
@@ -755,16 +750,16 @@ void gen9_set_dc_state(struct drm_i915_private *dev_priv, u32 state)
val & mask, state);
/* Check if DMC is ignoring our DC state requests */
- if ((val & mask) != dev_priv->display.dmc.dc_state)
+ if ((val & mask) != power_domains->dc_state)
drm_err(&dev_priv->drm, "DC state mismatch (0x%x -> 0x%x)\n",
- dev_priv->display.dmc.dc_state, val & mask);
+ power_domains->dc_state, val & mask);
val &= ~mask;
val |= state;
gen9_write_dc_state(dev_priv, val);
- dev_priv->display.dmc.dc_state = val & mask;
+ power_domains->dc_state = val & mask;
}
static void tgl_enable_dc3co(struct drm_i915_private *dev_priv)
@@ -775,12 +770,8 @@ static void tgl_enable_dc3co(struct drm_i915_private *dev_priv)
static void tgl_disable_dc3co(struct drm_i915_private *dev_priv)
{
- u32 val;
-
drm_dbg_kms(&dev_priv->drm, "Disabling DC3CO\n");
- val = intel_de_read(dev_priv, DC_STATE_EN);
- val &= ~DC_STATE_DC3CO_STATUS;
- intel_de_write(dev_priv, DC_STATE_EN, val);
+ intel_de_rmw(dev_priv, DC_STATE_EN, DC_STATE_DC3CO_STATUS, 0);
gen9_set_dc_state(dev_priv, DC_STATE_DISABLE);
/*
* Delay of 200us DC3CO Exit time B.Spec 49196
@@ -819,8 +810,8 @@ void gen9_enable_dc5(struct drm_i915_private *dev_priv)
/* Wa Display #1183: skl,kbl,cfl */
if (DISPLAY_VER(dev_priv) == 9 && !IS_BROXTON(dev_priv))
- intel_de_write(dev_priv, GEN8_CHICKEN_DCPR_1,
- intel_de_read(dev_priv, GEN8_CHICKEN_DCPR_1) | SKL_SELECT_ALTERNATE_DC_EXIT);
+ intel_de_rmw(dev_priv, GEN8_CHICKEN_DCPR_1,
+ 0, SKL_SELECT_ALTERNATE_DC_EXIT);
gen9_set_dc_state(dev_priv, DC_STATE_EN_UPTO_DC5);
}
@@ -828,8 +819,10 @@ void gen9_enable_dc5(struct drm_i915_private *dev_priv)
static void assert_can_enable_dc6(struct drm_i915_private *dev_priv)
{
drm_WARN_ONCE(&dev_priv->drm,
- intel_de_read(dev_priv, UTIL_PIN_CTL) & UTIL_PIN_ENABLE,
- "Backlight is not disabled.\n");
+ (intel_de_read(dev_priv, UTIL_PIN_CTL) &
+ (UTIL_PIN_ENABLE | UTIL_PIN_MODE_MASK)) ==
+ (UTIL_PIN_ENABLE | UTIL_PIN_MODE_PWM),
+ "Utility pin enabled in PWM mode\n");
drm_WARN_ONCE(&dev_priv->drm,
(intel_de_read(dev_priv, DC_STATE_EN) &
DC_STATE_EN_UPTO_DC6),
@@ -846,8 +839,8 @@ void skl_enable_dc6(struct drm_i915_private *dev_priv)
/* Wa Display #1183: skl,kbl,cfl */
if (DISPLAY_VER(dev_priv) == 9 && !IS_BROXTON(dev_priv))
- intel_de_write(dev_priv, GEN8_CHICKEN_DCPR_1,
- intel_de_read(dev_priv, GEN8_CHICKEN_DCPR_1) | SKL_SELECT_ALTERNATE_DC_EXIT);
+ intel_de_rmw(dev_priv, GEN8_CHICKEN_DCPR_1,
+ 0, SKL_SELECT_ALTERNATE_DC_EXIT);
gen9_set_dc_state(dev_priv, DC_STATE_EN_UPTO_DC6);
}
@@ -956,9 +949,10 @@ static void gen9_assert_dbuf_enabled(struct drm_i915_private *dev_priv)
void gen9_disable_dc_states(struct drm_i915_private *dev_priv)
{
+ struct i915_power_domains *power_domains = &dev_priv->display.power.domains;
struct intel_cdclk_config cdclk_config = {};
- if (dev_priv->display.dmc.target_dc_state == DC_STATE_EN_DC3CO) {
+ if (power_domains->target_dc_state == DC_STATE_EN_DC3CO) {
tgl_disable_dc3co(dev_priv);
return;
}
@@ -997,10 +991,12 @@ static void gen9_dc_off_power_well_enable(struct drm_i915_private *dev_priv,
static void gen9_dc_off_power_well_disable(struct drm_i915_private *dev_priv,
struct i915_power_well *power_well)
{
+ struct i915_power_domains *power_domains = &dev_priv->display.power.domains;
+
if (!intel_dmc_has_payload(dev_priv))
return;
- switch (dev_priv->display.dmc.target_dc_state) {
+ switch (power_domains->target_dc_state) {
case DC_STATE_EN_DC3CO:
tgl_enable_dc3co(dev_priv);
break;
@@ -1032,9 +1028,9 @@ static bool i9xx_always_on_power_well_enabled(struct drm_i915_private *dev_priv,
static void i830_pipes_power_well_enable(struct drm_i915_private *dev_priv,
struct i915_power_well *power_well)
{
- if ((intel_de_read(dev_priv, PIPECONF(PIPE_A)) & PIPECONF_ENABLE) == 0)
+ if ((intel_de_read(dev_priv, TRANSCONF(PIPE_A)) & TRANSCONF_ENABLE) == 0)
i830_enable_pipe(dev_priv, PIPE_A);
- if ((intel_de_read(dev_priv, PIPECONF(PIPE_B)) & PIPECONF_ENABLE) == 0)
+ if ((intel_de_read(dev_priv, TRANSCONF(PIPE_B)) & TRANSCONF_ENABLE) == 0)
i830_enable_pipe(dev_priv, PIPE_B);
}
@@ -1048,8 +1044,8 @@ static void i830_pipes_power_well_disable(struct drm_i915_private *dev_priv,
static bool i830_pipes_power_well_enabled(struct drm_i915_private *dev_priv,
struct i915_power_well *power_well)
{
- return intel_de_read(dev_priv, PIPECONF(PIPE_A)) & PIPECONF_ENABLE &&
- intel_de_read(dev_priv, PIPECONF(PIPE_B)) & PIPECONF_ENABLE;
+ return intel_de_read(dev_priv, TRANSCONF(PIPE_A)) & TRANSCONF_ENABLE &&
+ intel_de_read(dev_priv, TRANSCONF(PIPE_B)) & TRANSCONF_ENABLE;
}
static void i830_pipes_power_well_sync_hw(struct drm_i915_private *dev_priv,
@@ -1148,18 +1144,14 @@ static bool vlv_power_well_enabled(struct drm_i915_private *dev_priv,
static void vlv_init_display_clock_gating(struct drm_i915_private *dev_priv)
{
- u32 val;
-
/*
* On driver load, a pipe may be active and driving a DSI display.
* Preserve DPOUNIT_CLOCK_GATE_DISABLE to avoid the pipe getting stuck
* (and never recovering) in this case. intel_dsi_post_disable() will
* clear it when we turn off the display.
*/
- val = intel_de_read(dev_priv, DSPCLK_GATE_D(dev_priv));
- val &= DPOUNIT_CLOCK_GATE_DISABLE;
- val |= VRHUNIT_CLOCK_GATE_DISABLE;
- intel_de_write(dev_priv, DSPCLK_GATE_D(dev_priv), val);
+ intel_de_rmw(dev_priv, DSPCLK_GATE_D(dev_priv),
+ ~DPOUNIT_CLOCK_GATE_DISABLE, VRHUNIT_CLOCK_GATE_DISABLE);
/*
* Disable trickle feed and enable pnd deadline calculation
@@ -1275,8 +1267,7 @@ static void vlv_dpio_cmn_power_well_enable(struct drm_i915_private *dev_priv,
* both PLLs disabled, or we risk losing DPIO and PLL
* synchronization.
*/
- intel_de_write(dev_priv, DPIO_CTL,
- intel_de_read(dev_priv, DPIO_CTL) | DPIO_CMNRST);
+ intel_de_rmw(dev_priv, DPIO_CTL, 0, DPIO_CMNRST);
}
static void vlv_dpio_cmn_power_well_disable(struct drm_i915_private *dev_priv,
@@ -1288,8 +1279,7 @@ static void vlv_dpio_cmn_power_well_disable(struct drm_i915_private *dev_priv,
assert_pll_disabled(dev_priv, pipe);
/* Assert common reset */
- intel_de_write(dev_priv, DPIO_CTL,
- intel_de_read(dev_priv, DPIO_CTL) & ~DPIO_CMNRST);
+ intel_de_rmw(dev_priv, DPIO_CTL, DPIO_CMNRST, 0);
vlv_set_power_well(dev_priv, power_well, false);
}
diff --git a/drivers/gpu/drm/i915/display/intel_display_power_well.h b/drivers/gpu/drm/i915/display/intel_display_power_well.h
index e13b521e322a..ba7cb977e7c7 100644
--- a/drivers/gpu/drm/i915/display/intel_display_power_well.h
+++ b/drivers/gpu/drm/i915/display/intel_display_power_well.h
@@ -7,8 +7,8 @@
#include <linux/types.h>
-#include "intel_display.h"
#include "intel_display_power.h"
+#include "intel_dpio_phy.h"
struct drm_i915_private;
struct i915_power_well;
diff --git a/drivers/gpu/drm/i915/display/intel_display_reg_defs.h b/drivers/gpu/drm/i915/display/intel_display_reg_defs.h
new file mode 100644
index 000000000000..755c1ea8225c
--- /dev/null
+++ b/drivers/gpu/drm/i915/display/intel_display_reg_defs.h
@@ -0,0 +1,49 @@
+/* SPDX-License-Identifier: MIT */
+/*
+ * Copyright © 2022 Intel Corporation
+ */
+
+#ifndef __INTEL_DISPLAY_REG_DEFS_H__
+#define __INTEL_DISPLAY_REG_DEFS_H__
+
+#include "i915_reg_defs.h"
+
+#define DISPLAY_MMIO_BASE(dev_priv) (INTEL_INFO(dev_priv)->display.mmio_offset)
+
+#define VLV_DISPLAY_BASE 0x180000
+
+/*
+ * Named helper wrappers around _PICK_EVEN() and _PICK_EVEN_2RANGES().
+ */
+#define _PIPE(pipe, a, b) _PICK_EVEN(pipe, a, b)
+#define _PLANE(plane, a, b) _PICK_EVEN(plane, a, b)
+#define _TRANS(tran, a, b) _PICK_EVEN(tran, a, b)
+#define _PORT(port, a, b) _PICK_EVEN(port, a, b)
+#define _PLL(pll, a, b) _PICK_EVEN(pll, a, b)
+#define _PHY(phy, a, b) _PICK_EVEN(phy, a, b)
+
+#define _MMIO_PIPE(pipe, a, b) _MMIO(_PIPE(pipe, a, b))
+#define _MMIO_PLANE(plane, a, b) _MMIO(_PLANE(plane, a, b))
+#define _MMIO_TRANS(tran, a, b) _MMIO(_TRANS(tran, a, b))
+#define _MMIO_PORT(port, a, b) _MMIO(_PORT(port, a, b))
+#define _MMIO_PLL(pll, a, b) _MMIO(_PLL(pll, a, b))
+#define _MMIO_PHY(phy, a, b) _MMIO(_PHY(phy, a, b))
+
+#define _MMIO_PIPE3(pipe, a, b, c) _MMIO(_PICK_EVEN_2RANGES(pipe, 1, a, a, b, c))
+#define _MMIO_PORT3(pipe, a, b, c) _MMIO(_PICK_EVEN_2RANGES(pipe, 1, a, a, b, c))
+
+/*
+ * Device info offset array based helpers for groups of registers with unevenly
+ * spaced base offsets.
+ */
+#define _MMIO_PIPE2(pipe, reg) _MMIO(INTEL_INFO(dev_priv)->display.pipe_offsets[(pipe)] - \
+ INTEL_INFO(dev_priv)->display.pipe_offsets[PIPE_A] + \
+ DISPLAY_MMIO_BASE(dev_priv) + (reg))
+#define _MMIO_TRANS2(tran, reg) _MMIO(INTEL_INFO(dev_priv)->display.trans_offsets[(tran)] - \
+ INTEL_INFO(dev_priv)->display.trans_offsets[TRANSCODER_A] + \
+ DISPLAY_MMIO_BASE(dev_priv) + (reg))
+#define _MMIO_CURSOR2(pipe, reg) _MMIO(INTEL_INFO(dev_priv)->display.cursor_offsets[(pipe)] - \
+ INTEL_INFO(dev_priv)->display.cursor_offsets[PIPE_A] + \
+ DISPLAY_MMIO_BASE(dev_priv) + (reg))
+
+#endif /* __INTEL_DISPLAY_REG_DEFS_H__ */
diff --git a/drivers/gpu/drm/i915/display/intel_display_rps.c b/drivers/gpu/drm/i915/display/intel_display_rps.c
new file mode 100644
index 000000000000..918d0327169a
--- /dev/null
+++ b/drivers/gpu/drm/i915/display/intel_display_rps.c
@@ -0,0 +1,81 @@
+// SPDX-License-Identifier: MIT
+/*
+ * Copyright © 2023 Intel Corporation
+ */
+
+#include <drm/drm_crtc.h>
+#include <drm/drm_vblank.h>
+
+#include "gt/intel_rps.h"
+#include "i915_drv.h"
+#include "intel_display_rps.h"
+#include "intel_display_types.h"
+
+struct wait_rps_boost {
+ struct wait_queue_entry wait;
+
+ struct drm_crtc *crtc;
+ struct i915_request *request;
+};
+
+static int do_rps_boost(struct wait_queue_entry *_wait,
+ unsigned mode, int sync, void *key)
+{
+ struct wait_rps_boost *wait = container_of(_wait, typeof(*wait), wait);
+ struct i915_request *rq = wait->request;
+
+ /*
+ * If we missed the vblank, but the request is already running it
+ * is reasonable to assume that it will complete before the next
+ * vblank without our intervention, so leave RPS alone.
+ */
+ if (!i915_request_started(rq))
+ intel_rps_boost(rq);
+ i915_request_put(rq);
+
+ drm_crtc_vblank_put(wait->crtc);
+
+ list_del(&wait->wait.entry);
+ kfree(wait);
+ return 1;
+}
+
+void intel_display_rps_boost_after_vblank(struct drm_crtc *crtc,
+ struct dma_fence *fence)
+{
+ struct wait_rps_boost *wait;
+
+ if (!dma_fence_is_i915(fence))
+ return;
+
+ if (DISPLAY_VER(to_i915(crtc->dev)) < 6)
+ return;
+
+ if (drm_crtc_vblank_get(crtc))
+ return;
+
+ wait = kmalloc(sizeof(*wait), GFP_KERNEL);
+ if (!wait) {
+ drm_crtc_vblank_put(crtc);
+ return;
+ }
+
+ wait->request = to_request(dma_fence_get(fence));
+ wait->crtc = crtc;
+
+ wait->wait.func = do_rps_boost;
+ wait->wait.flags = 0;
+
+ add_wait_queue(drm_crtc_vblank_waitqueue(crtc), &wait->wait);
+}
+
+void intel_display_rps_mark_interactive(struct drm_i915_private *i915,
+ struct intel_atomic_state *state,
+ bool interactive)
+{
+ if (state->rps_interactive == interactive)
+ return;
+
+ intel_rps_mark_interactive(&to_gt(i915)->rps, interactive);
+ state->rps_interactive = interactive;
+}
diff --git a/drivers/gpu/drm/i915/display/intel_display_rps.h b/drivers/gpu/drm/i915/display/intel_display_rps.h
new file mode 100644
index 000000000000..e19009c2371a
--- /dev/null
+++ b/drivers/gpu/drm/i915/display/intel_display_rps.h
@@ -0,0 +1,22 @@
+/* SPDX-License-Identifier: MIT */
+/*
+ * Copyright © 2023 Intel Corporation
+ */
+
+#ifndef __INTEL_DISPLAY_RPS_H__
+#define __INTEL_DISPLAY_RPS_H__
+
+#include <linux/types.h>
+
+struct dma_fence;
+struct drm_crtc;
+struct drm_i915_private;
+struct intel_atomic_state;
+
+void intel_display_rps_boost_after_vblank(struct drm_crtc *crtc,
+ struct dma_fence *fence);
+void intel_display_rps_mark_interactive(struct drm_i915_private *i915,
+ struct intel_atomic_state *state,
+ bool interactive);
+
+#endif /* __INTEL_DISPLAY_RPS_H__ */
diff --git a/drivers/gpu/drm/i915/display/intel_display_trace.h b/drivers/gpu/drm/i915/display/intel_display_trace.h
index 2dd5a4b7f5d8..651ea8564e1b 100644
--- a/drivers/gpu/drm/i915/display/intel_display_trace.h
+++ b/drivers/gpu/drm/i915/display/intel_display_trace.h
@@ -17,12 +17,17 @@
#include "i915_irq.h"
#include "intel_crtc.h"
#include "intel_display_types.h"
+#include "intel_vblank.h"
+
+#define __dev_name_i915(i915) dev_name((i915)->drm.dev)
+#define __dev_name_kms(obj) dev_name((obj)->base.dev->dev)
TRACE_EVENT(intel_pipe_enable,
TP_PROTO(struct intel_crtc *crtc),
TP_ARGS(crtc),
TP_STRUCT__entry(
+ __string(dev, __dev_name_kms(crtc))
__array(u32, frame, 3)
__array(u32, scanline, 3)
__field(enum pipe, pipe)
@@ -30,6 +35,7 @@ TRACE_EVENT(intel_pipe_enable,
TP_fast_assign(
struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
struct intel_crtc *it__;
+ __assign_str(dev, __dev_name_kms(crtc));
for_each_intel_crtc(&dev_priv->drm, it__) {
__entry->frame[it__->pipe] = intel_crtc_get_vblank_counter(it__);
__entry->scanline[it__->pipe] = intel_get_crtc_scanline(it__);
@@ -37,8 +43,8 @@ TRACE_EVENT(intel_pipe_enable,
__entry->pipe = crtc->pipe;
),
- TP_printk("pipe %c enable, pipe A: frame=%u, scanline=%u, pipe B: frame=%u, scanline=%u, pipe C: frame=%u, scanline=%u",
- pipe_name(__entry->pipe),
+ TP_printk("dev %s, pipe %c enable, pipe A: frame=%u, scanline=%u, pipe B: frame=%u, scanline=%u, pipe C: frame=%u, scanline=%u",
+ __get_str(dev), pipe_name(__entry->pipe),
__entry->frame[PIPE_A], __entry->scanline[PIPE_A],
__entry->frame[PIPE_B], __entry->scanline[PIPE_B],
__entry->frame[PIPE_C], __entry->scanline[PIPE_C])
@@ -49,6 +55,7 @@ TRACE_EVENT(intel_pipe_disable,
TP_ARGS(crtc),
TP_STRUCT__entry(
+ __string(dev, __dev_name_kms(crtc))
__array(u32, frame, 3)
__array(u32, scanline, 3)
__field(enum pipe, pipe)
@@ -57,6 +64,7 @@ TRACE_EVENT(intel_pipe_disable,
TP_fast_assign(
struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
struct intel_crtc *it__;
+ __assign_str(dev, __dev_name_kms(crtc));
for_each_intel_crtc(&dev_priv->drm, it__) {
__entry->frame[it__->pipe] = intel_crtc_get_vblank_counter(it__);
__entry->scanline[it__->pipe] = intel_get_crtc_scanline(it__);
@@ -64,8 +72,8 @@ TRACE_EVENT(intel_pipe_disable,
__entry->pipe = crtc->pipe;
),
- TP_printk("pipe %c disable, pipe A: frame=%u, scanline=%u, pipe B: frame=%u, scanline=%u, pipe C: frame=%u, scanline=%u",
- pipe_name(__entry->pipe),
+ TP_printk("dev %s, pipe %c disable, pipe A: frame=%u, scanline=%u, pipe B: frame=%u, scanline=%u, pipe C: frame=%u, scanline=%u",
+ __get_str(dev), pipe_name(__entry->pipe),
__entry->frame[PIPE_A], __entry->scanline[PIPE_A],
__entry->frame[PIPE_B], __entry->scanline[PIPE_B],
__entry->frame[PIPE_C], __entry->scanline[PIPE_C])
@@ -76,6 +84,7 @@ TRACE_EVENT(intel_pipe_crc,
TP_ARGS(crtc, crcs),
TP_STRUCT__entry(
+ __string(dev, __dev_name_kms(crtc))
__field(enum pipe, pipe)
__field(u32, frame)
__field(u32, scanline)
@@ -83,16 +92,19 @@ TRACE_EVENT(intel_pipe_crc,
),
TP_fast_assign(
+ __assign_str(dev, __dev_name_kms(crtc));
__entry->pipe = crtc->pipe;
__entry->frame = intel_crtc_get_vblank_counter(crtc);
__entry->scanline = intel_get_crtc_scanline(crtc);
memcpy(__entry->crcs, crcs, sizeof(__entry->crcs));
),
- TP_printk("pipe %c, frame=%u, scanline=%u crc=%08x %08x %08x %08x %08x",
- pipe_name(__entry->pipe), __entry->frame, __entry->scanline,
- __entry->crcs[0], __entry->crcs[1], __entry->crcs[2],
- __entry->crcs[3], __entry->crcs[4])
+ TP_printk("dev %s, pipe %c, frame=%u, scanline=%u crc=%08x %08x %08x %08x %08x",
+ __get_str(dev), pipe_name(__entry->pipe),
+ __entry->frame, __entry->scanline,
+ __entry->crcs[0], __entry->crcs[1],
+ __entry->crcs[2], __entry->crcs[3],
+ __entry->crcs[4])
);
TRACE_EVENT(intel_cpu_fifo_underrun,
@@ -100,6 +112,7 @@ TRACE_EVENT(intel_cpu_fifo_underrun,
TP_ARGS(dev_priv, pipe),
TP_STRUCT__entry(
+ __string(dev, __dev_name_i915(dev_priv))
__field(enum pipe, pipe)
__field(u32, frame)
__field(u32, scanline)
@@ -107,13 +120,14 @@ TRACE_EVENT(intel_cpu_fifo_underrun,
TP_fast_assign(
struct intel_crtc *crtc = intel_crtc_for_pipe(dev_priv, pipe);
+ __assign_str(dev, __dev_name_kms(crtc));
__entry->pipe = pipe;
__entry->frame = intel_crtc_get_vblank_counter(crtc);
__entry->scanline = intel_get_crtc_scanline(crtc);
),
- TP_printk("pipe %c, frame=%u, scanline=%u",
- pipe_name(__entry->pipe),
+ TP_printk("dev %s, pipe %c, frame=%u, scanline=%u",
+ __get_str(dev), pipe_name(__entry->pipe),
__entry->frame, __entry->scanline)
);
@@ -122,6 +136,7 @@ TRACE_EVENT(intel_pch_fifo_underrun,
TP_ARGS(dev_priv, pch_transcoder),
TP_STRUCT__entry(
+ __string(dev, __dev_name_i915(dev_priv))
__field(enum pipe, pipe)
__field(u32, frame)
__field(u32, scanline)
@@ -130,13 +145,14 @@ TRACE_EVENT(intel_pch_fifo_underrun,
TP_fast_assign(
enum pipe pipe = pch_transcoder;
struct intel_crtc *crtc = intel_crtc_for_pipe(dev_priv, pipe);
+ __assign_str(dev, __dev_name_i915(dev_priv));
__entry->pipe = pipe;
__entry->frame = intel_crtc_get_vblank_counter(crtc);
__entry->scanline = intel_get_crtc_scanline(crtc);
),
- TP_printk("pch transcoder %c, frame=%u, scanline=%u",
- pipe_name(__entry->pipe),
+ TP_printk("dev %s, pch transcoder %c, frame=%u, scanline=%u",
+ __get_str(dev), pipe_name(__entry->pipe),
__entry->frame, __entry->scanline)
);
@@ -145,6 +161,7 @@ TRACE_EVENT(intel_memory_cxsr,
TP_ARGS(dev_priv, old, new),
TP_STRUCT__entry(
+ __string(dev, __dev_name_i915(dev_priv))
__array(u32, frame, 3)
__array(u32, scanline, 3)
__field(bool, old)
@@ -153,6 +170,7 @@ TRACE_EVENT(intel_memory_cxsr,
TP_fast_assign(
struct intel_crtc *crtc;
+ __assign_str(dev, __dev_name_i915(dev_priv));
for_each_intel_crtc(&dev_priv->drm, crtc) {
__entry->frame[crtc->pipe] = intel_crtc_get_vblank_counter(crtc);
__entry->scanline[crtc->pipe] = intel_get_crtc_scanline(crtc);
@@ -161,8 +179,8 @@ TRACE_EVENT(intel_memory_cxsr,
__entry->new = new;
),
- TP_printk("%s->%s, pipe A: frame=%u, scanline=%u, pipe B: frame=%u, scanline=%u, pipe C: frame=%u, scanline=%u",
- str_on_off(__entry->old), str_on_off(__entry->new),
+ TP_printk("dev %s, cxsr %s->%s, pipe A: frame=%u, scanline=%u, pipe B: frame=%u, scanline=%u, pipe C: frame=%u, scanline=%u",
+ __get_str(dev), str_on_off(__entry->old), str_on_off(__entry->new),
__entry->frame[PIPE_A], __entry->scanline[PIPE_A],
__entry->frame[PIPE_B], __entry->scanline[PIPE_B],
__entry->frame[PIPE_C], __entry->scanline[PIPE_C])
@@ -173,6 +191,7 @@ TRACE_EVENT(g4x_wm,
TP_ARGS(crtc, wm),
TP_STRUCT__entry(
+ __string(dev, __dev_name_kms(crtc))
__field(enum pipe, pipe)
__field(u32, frame)
__field(u32, scanline)
@@ -191,6 +210,7 @@ TRACE_EVENT(g4x_wm,
),
TP_fast_assign(
+ __assign_str(dev, __dev_name_kms(crtc));
__entry->pipe = crtc->pipe;
__entry->frame = intel_crtc_get_vblank_counter(crtc);
__entry->scanline = intel_get_crtc_scanline(crtc);
@@ -208,8 +228,9 @@ TRACE_EVENT(g4x_wm,
__entry->fbc = wm->fbc_en;
),
- TP_printk("pipe %c, frame=%u, scanline=%u, wm %d/%d/%d, sr %s/%d/%d/%d, hpll %s/%d/%d/%d, fbc %s",
- pipe_name(__entry->pipe), __entry->frame, __entry->scanline,
+ TP_printk("dev %s, pipe %c, frame=%u, scanline=%u, wm %d/%d/%d, sr %s/%d/%d/%d, hpll %s/%d/%d/%d, fbc %s",
+ __get_str(dev), pipe_name(__entry->pipe),
+ __entry->frame, __entry->scanline,
__entry->primary, __entry->sprite, __entry->cursor,
str_yes_no(__entry->cxsr), __entry->sr_plane, __entry->sr_cursor, __entry->sr_fbc,
str_yes_no(__entry->hpll), __entry->hpll_plane, __entry->hpll_cursor, __entry->hpll_fbc,
@@ -221,6 +242,7 @@ TRACE_EVENT(vlv_wm,
TP_ARGS(crtc, wm),
TP_STRUCT__entry(
+ __string(dev, __dev_name_kms(crtc))
__field(enum pipe, pipe)
__field(u32, frame)
__field(u32, scanline)
@@ -235,6 +257,7 @@ TRACE_EVENT(vlv_wm,
),
TP_fast_assign(
+ __assign_str(dev, __dev_name_kms(crtc));
__entry->pipe = crtc->pipe;
__entry->frame = intel_crtc_get_vblank_counter(crtc);
__entry->scanline = intel_get_crtc_scanline(crtc);
@@ -248,9 +271,10 @@ TRACE_EVENT(vlv_wm,
__entry->sr_cursor = wm->sr.cursor;
),
- TP_printk("pipe %c, frame=%u, scanline=%u, level=%d, cxsr=%d, wm %d/%d/%d/%d, sr %d/%d",
- pipe_name(__entry->pipe), __entry->frame,
- __entry->scanline, __entry->level, __entry->cxsr,
+ TP_printk("dev %s, pipe %c, frame=%u, scanline=%u, level=%d, cxsr=%d, wm %d/%d/%d/%d, sr %d/%d",
+ __get_str(dev), pipe_name(__entry->pipe),
+ __entry->frame, __entry->scanline,
+ __entry->level, __entry->cxsr,
__entry->primary, __entry->sprite0, __entry->sprite1, __entry->cursor,
__entry->sr_plane, __entry->sr_cursor)
);
@@ -260,6 +284,7 @@ TRACE_EVENT(vlv_fifo_size,
TP_ARGS(crtc, sprite0_start, sprite1_start, fifo_size),
TP_STRUCT__entry(
+ __string(dev, __dev_name_kms(crtc))
__field(enum pipe, pipe)
__field(u32, frame)
__field(u32, scanline)
@@ -269,6 +294,7 @@ TRACE_EVENT(vlv_fifo_size,
),
TP_fast_assign(
+ __assign_str(dev, __dev_name_kms(crtc));
__entry->pipe = crtc->pipe;
__entry->frame = intel_crtc_get_vblank_counter(crtc);
__entry->scanline = intel_get_crtc_scanline(crtc);
@@ -277,90 +303,96 @@ TRACE_EVENT(vlv_fifo_size,
__entry->fifo_size = fifo_size;
),
- TP_printk("pipe %c, frame=%u, scanline=%u, %d/%d/%d",
- pipe_name(__entry->pipe), __entry->frame,
- __entry->scanline, __entry->sprite0_start,
- __entry->sprite1_start, __entry->fifo_size)
+ TP_printk("dev %s, pipe %c, frame=%u, scanline=%u, %d/%d/%d",
+ __get_str(dev), pipe_name(__entry->pipe),
+ __entry->frame, __entry->scanline,
+ __entry->sprite0_start, __entry->sprite1_start, __entry->fifo_size)
);
TRACE_EVENT(intel_plane_update_noarm,
- TP_PROTO(struct drm_plane *plane, struct intel_crtc *crtc),
+ TP_PROTO(struct intel_plane *plane, struct intel_crtc *crtc),
TP_ARGS(plane, crtc),
TP_STRUCT__entry(
+ __string(dev, __dev_name_kms(plane))
__field(enum pipe, pipe)
__field(u32, frame)
__field(u32, scanline)
__array(int, src, 4)
__array(int, dst, 4)
- __string(name, plane->name)
+ __string(name, plane->base.name)
),
TP_fast_assign(
- __assign_str(name, plane->name);
+ __assign_str(dev, __dev_name_kms(plane));
+ __assign_str(name, plane->base.name);
__entry->pipe = crtc->pipe;
__entry->frame = intel_crtc_get_vblank_counter(crtc);
__entry->scanline = intel_get_crtc_scanline(crtc);
- memcpy(__entry->src, &plane->state->src, sizeof(__entry->src));
- memcpy(__entry->dst, &plane->state->dst, sizeof(__entry->dst));
+ memcpy(__entry->src, &plane->base.state->src, sizeof(__entry->src));
+ memcpy(__entry->dst, &plane->base.state->dst, sizeof(__entry->dst));
),
- TP_printk("pipe %c, plane %s, frame=%u, scanline=%u, " DRM_RECT_FP_FMT " -> " DRM_RECT_FMT,
- pipe_name(__entry->pipe), __get_str(name),
+ TP_printk("dev %s, pipe %c, plane %s, frame=%u, scanline=%u, " DRM_RECT_FP_FMT " -> " DRM_RECT_FMT,
+ __get_str(dev), pipe_name(__entry->pipe), __get_str(name),
__entry->frame, __entry->scanline,
DRM_RECT_FP_ARG((const struct drm_rect *)__entry->src),
DRM_RECT_ARG((const struct drm_rect *)__entry->dst))
);
TRACE_EVENT(intel_plane_update_arm,
- TP_PROTO(struct drm_plane *plane, struct intel_crtc *crtc),
+ TP_PROTO(struct intel_plane *plane, struct intel_crtc *crtc),
TP_ARGS(plane, crtc),
TP_STRUCT__entry(
+ __string(dev, __dev_name_kms(plane))
__field(enum pipe, pipe)
__field(u32, frame)
__field(u32, scanline)
__array(int, src, 4)
__array(int, dst, 4)
- __string(name, plane->name)
+ __string(name, plane->base.name)
),
TP_fast_assign(
- __assign_str(name, plane->name);
+ __assign_str(dev, __dev_name_kms(plane));
+ __assign_str(name, plane->base.name);
__entry->pipe = crtc->pipe;
__entry->frame = intel_crtc_get_vblank_counter(crtc);
__entry->scanline = intel_get_crtc_scanline(crtc);
- memcpy(__entry->src, &plane->state->src, sizeof(__entry->src));
- memcpy(__entry->dst, &plane->state->dst, sizeof(__entry->dst));
+ memcpy(__entry->src, &plane->base.state->src, sizeof(__entry->src));
+ memcpy(__entry->dst, &plane->base.state->dst, sizeof(__entry->dst));
),
- TP_printk("pipe %c, plane %s, frame=%u, scanline=%u, " DRM_RECT_FP_FMT " -> " DRM_RECT_FMT,
- pipe_name(__entry->pipe), __get_str(name),
+ TP_printk("dev %s, pipe %c, plane %s, frame=%u, scanline=%u, " DRM_RECT_FP_FMT " -> " DRM_RECT_FMT,
+ __get_str(dev), pipe_name(__entry->pipe), __get_str(name),
__entry->frame, __entry->scanline,
DRM_RECT_FP_ARG((const struct drm_rect *)__entry->src),
DRM_RECT_ARG((const struct drm_rect *)__entry->dst))
);
TRACE_EVENT(intel_plane_disable_arm,
- TP_PROTO(struct drm_plane *plane, struct intel_crtc *crtc),
+ TP_PROTO(struct intel_plane *plane, struct intel_crtc *crtc),
TP_ARGS(plane, crtc),
TP_STRUCT__entry(
+ __string(dev, __dev_name_kms(plane))
__field(enum pipe, pipe)
__field(u32, frame)
__field(u32, scanline)
- __string(name, plane->name)
+ __string(name, plane->base.name)
),
TP_fast_assign(
- __assign_str(name, plane->name);
+ __assign_str(dev, __dev_name_kms(plane));
+ __assign_str(name, plane->base.name);
__entry->pipe = crtc->pipe;
__entry->frame = intel_crtc_get_vblank_counter(crtc);
__entry->scanline = intel_get_crtc_scanline(crtc);
),
- TP_printk("pipe %c, plane %s, frame=%u, scanline=%u",
- pipe_name(__entry->pipe), __get_str(name),
+ TP_printk("dev %s, pipe %c, plane %s, frame=%u, scanline=%u",
+ __get_str(dev), pipe_name(__entry->pipe), __get_str(name),
__entry->frame, __entry->scanline)
);
@@ -369,6 +401,8 @@ TRACE_EVENT(intel_fbc_activate,
TP_ARGS(plane),
TP_STRUCT__entry(
+ __string(dev, __dev_name_kms(plane))
+ __string(name, plane->base.name)
__field(enum pipe, pipe)
__field(u32, frame)
__field(u32, scanline)
@@ -377,13 +411,16 @@ TRACE_EVENT(intel_fbc_activate,
TP_fast_assign(
struct intel_crtc *crtc = intel_crtc_for_pipe(to_i915(plane->base.dev),
plane->pipe);
+ __assign_str(dev, __dev_name_kms(plane));
+ __assign_str(name, plane->base.name)
__entry->pipe = crtc->pipe;
__entry->frame = intel_crtc_get_vblank_counter(crtc);
__entry->scanline = intel_get_crtc_scanline(crtc);
),
- TP_printk("pipe %c, frame=%u, scanline=%u",
- pipe_name(__entry->pipe), __entry->frame, __entry->scanline)
+ TP_printk("dev %s, pipe %c, plane %s, frame=%u, scanline=%u",
+ __get_str(dev), pipe_name(__entry->pipe), __get_str(name),
+ __entry->frame, __entry->scanline)
);
TRACE_EVENT(intel_fbc_deactivate,
@@ -391,6 +428,8 @@ TRACE_EVENT(intel_fbc_deactivate,
TP_ARGS(plane),
TP_STRUCT__entry(
+ __string(dev, __dev_name_kms(plane))
+ __string(name, plane->base.name)
__field(enum pipe, pipe)
__field(u32, frame)
__field(u32, scanline)
@@ -399,13 +438,16 @@ TRACE_EVENT(intel_fbc_deactivate,
TP_fast_assign(
struct intel_crtc *crtc = intel_crtc_for_pipe(to_i915(plane->base.dev),
plane->pipe);
+ __assign_str(dev, __dev_name_kms(plane));
+ __assign_str(name, plane->base.name)
__entry->pipe = crtc->pipe;
__entry->frame = intel_crtc_get_vblank_counter(crtc);
__entry->scanline = intel_get_crtc_scanline(crtc);
),
- TP_printk("pipe %c, frame=%u, scanline=%u",
- pipe_name(__entry->pipe), __entry->frame, __entry->scanline)
+ TP_printk("dev %s, pipe %c, plane %s, frame=%u, scanline=%u",
+ __get_str(dev), pipe_name(__entry->pipe), __get_str(name),
+ __entry->frame, __entry->scanline)
);
TRACE_EVENT(intel_fbc_nuke,
@@ -413,6 +455,8 @@ TRACE_EVENT(intel_fbc_nuke,
TP_ARGS(plane),
TP_STRUCT__entry(
+ __string(dev, __dev_name_kms(plane))
+ __string(name, plane->base.name)
__field(enum pipe, pipe)
__field(u32, frame)
__field(u32, scanline)
@@ -421,13 +465,16 @@ TRACE_EVENT(intel_fbc_nuke,
TP_fast_assign(
struct intel_crtc *crtc = intel_crtc_for_pipe(to_i915(plane->base.dev),
plane->pipe);
+ __assign_str(dev, __dev_name_kms(plane));
+ __assign_str(name, plane->base.name)
__entry->pipe = crtc->pipe;
__entry->frame = intel_crtc_get_vblank_counter(crtc);
__entry->scanline = intel_get_crtc_scanline(crtc);
),
- TP_printk("pipe %c, frame=%u, scanline=%u",
- pipe_name(__entry->pipe), __entry->frame, __entry->scanline)
+ TP_printk("dev %s, pipe %c, plane %s, frame=%u, scanline=%u",
+ __get_str(dev), pipe_name(__entry->pipe), __get_str(name),
+ __entry->frame, __entry->scanline)
);
TRACE_EVENT(intel_crtc_vblank_work_start,
@@ -435,20 +482,22 @@ TRACE_EVENT(intel_crtc_vblank_work_start,
TP_ARGS(crtc),
TP_STRUCT__entry(
+ __string(dev, __dev_name_kms(crtc))
__field(enum pipe, pipe)
__field(u32, frame)
__field(u32, scanline)
),
TP_fast_assign(
+ __assign_str(dev, __dev_name_kms(crtc));
__entry->pipe = crtc->pipe;
__entry->frame = intel_crtc_get_vblank_counter(crtc);
__entry->scanline = intel_get_crtc_scanline(crtc);
),
- TP_printk("pipe %c, frame=%u, scanline=%u",
- pipe_name(__entry->pipe), __entry->frame,
- __entry->scanline)
+ TP_printk("dev %s, pipe %c, frame=%u, scanline=%u",
+ __get_str(dev), pipe_name(__entry->pipe),
+ __entry->frame, __entry->scanline)
);
TRACE_EVENT(intel_crtc_vblank_work_end,
@@ -456,20 +505,22 @@ TRACE_EVENT(intel_crtc_vblank_work_end,
TP_ARGS(crtc),
TP_STRUCT__entry(
+ __string(dev, __dev_name_kms(crtc))
__field(enum pipe, pipe)
__field(u32, frame)
__field(u32, scanline)
),
TP_fast_assign(
+ __assign_str(dev, __dev_name_kms(crtc));
__entry->pipe = crtc->pipe;
__entry->frame = intel_crtc_get_vblank_counter(crtc);
__entry->scanline = intel_get_crtc_scanline(crtc);
),
- TP_printk("pipe %c, frame=%u, scanline=%u",
- pipe_name(__entry->pipe), __entry->frame,
- __entry->scanline)
+ TP_printk("dev %s, pipe %c, frame=%u, scanline=%u",
+ __get_str(dev), pipe_name(__entry->pipe),
+ __entry->frame, __entry->scanline)
);
TRACE_EVENT(intel_pipe_update_start,
@@ -477,6 +528,7 @@ TRACE_EVENT(intel_pipe_update_start,
TP_ARGS(crtc),
TP_STRUCT__entry(
+ __string(dev, __dev_name_kms(crtc))
__field(enum pipe, pipe)
__field(u32, frame)
__field(u32, scanline)
@@ -485,6 +537,7 @@ TRACE_EVENT(intel_pipe_update_start,
),
TP_fast_assign(
+ __assign_str(dev, __dev_name_kms(crtc));
__entry->pipe = crtc->pipe;
__entry->frame = intel_crtc_get_vblank_counter(crtc);
__entry->scanline = intel_get_crtc_scanline(crtc);
@@ -492,9 +545,10 @@ TRACE_EVENT(intel_pipe_update_start,
__entry->max = crtc->debug.max_vbl;
),
- TP_printk("pipe %c, frame=%u, scanline=%u, min=%u, max=%u",
- pipe_name(__entry->pipe), __entry->frame,
- __entry->scanline, __entry->min, __entry->max)
+ TP_printk("dev %s, pipe %c, frame=%u, scanline=%u, min=%u, max=%u",
+ __get_str(dev), pipe_name(__entry->pipe),
+ __entry->frame, __entry->scanline,
+ __entry->min, __entry->max)
);
TRACE_EVENT(intel_pipe_update_vblank_evaded,
@@ -502,6 +556,7 @@ TRACE_EVENT(intel_pipe_update_vblank_evaded,
TP_ARGS(crtc),
TP_STRUCT__entry(
+ __string(dev, __dev_name_kms(crtc))
__field(enum pipe, pipe)
__field(u32, frame)
__field(u32, scanline)
@@ -510,6 +565,7 @@ TRACE_EVENT(intel_pipe_update_vblank_evaded,
),
TP_fast_assign(
+ __assign_str(dev, __dev_name_kms(crtc));
__entry->pipe = crtc->pipe;
__entry->frame = crtc->debug.start_vbl_count;
__entry->scanline = crtc->debug.scanline_start;
@@ -517,9 +573,10 @@ TRACE_EVENT(intel_pipe_update_vblank_evaded,
__entry->max = crtc->debug.max_vbl;
),
- TP_printk("pipe %c, frame=%u, scanline=%u, min=%u, max=%u",
- pipe_name(__entry->pipe), __entry->frame,
- __entry->scanline, __entry->min, __entry->max)
+ TP_printk("dev %s, pipe %c, frame=%u, scanline=%u, min=%u, max=%u",
+ __get_str(dev), pipe_name(__entry->pipe),
+ __entry->frame, __entry->scanline,
+ __entry->min, __entry->max)
);
TRACE_EVENT(intel_pipe_update_end,
@@ -527,56 +584,64 @@ TRACE_EVENT(intel_pipe_update_end,
TP_ARGS(crtc, frame, scanline_end),
TP_STRUCT__entry(
+ __string(dev, __dev_name_kms(crtc))
__field(enum pipe, pipe)
__field(u32, frame)
__field(u32, scanline)
),
TP_fast_assign(
+ __assign_str(dev, __dev_name_kms(crtc));
__entry->pipe = crtc->pipe;
__entry->frame = frame;
__entry->scanline = scanline_end;
),
- TP_printk("pipe %c, frame=%u, scanline=%u",
- pipe_name(__entry->pipe), __entry->frame,
- __entry->scanline)
+ TP_printk("dev %s, pipe %c, frame=%u, scanline=%u",
+ __get_str(dev), pipe_name(__entry->pipe),
+ __entry->frame, __entry->scanline)
);
TRACE_EVENT(intel_frontbuffer_invalidate,
- TP_PROTO(unsigned int frontbuffer_bits, unsigned int origin),
- TP_ARGS(frontbuffer_bits, origin),
+ TP_PROTO(struct drm_i915_private *i915,
+ unsigned int frontbuffer_bits, unsigned int origin),
+ TP_ARGS(i915, frontbuffer_bits, origin),
TP_STRUCT__entry(
+ __string(dev, __dev_name_i915(i915))
__field(unsigned int, frontbuffer_bits)
__field(unsigned int, origin)
),
TP_fast_assign(
+ __assign_str(dev, __dev_name_i915(i915));
__entry->frontbuffer_bits = frontbuffer_bits;
__entry->origin = origin;
),
- TP_printk("frontbuffer_bits=0x%08x, origin=%u",
- __entry->frontbuffer_bits, __entry->origin)
+ TP_printk("dev %s, frontbuffer_bits=0x%08x, origin=%u",
+ __get_str(dev), __entry->frontbuffer_bits, __entry->origin)
);
TRACE_EVENT(intel_frontbuffer_flush,
- TP_PROTO(unsigned int frontbuffer_bits, unsigned int origin),
- TP_ARGS(frontbuffer_bits, origin),
+ TP_PROTO(struct drm_i915_private *i915,
+ unsigned int frontbuffer_bits, unsigned int origin),
+ TP_ARGS(i915, frontbuffer_bits, origin),
TP_STRUCT__entry(
+ __string(dev, __dev_name_i915(i915))
__field(unsigned int, frontbuffer_bits)
__field(unsigned int, origin)
),
TP_fast_assign(
+ __assign_str(dev, __dev_name_i915(i915));
__entry->frontbuffer_bits = frontbuffer_bits;
__entry->origin = origin;
),
- TP_printk("frontbuffer_bits=0x%08x, origin=%u",
- __entry->frontbuffer_bits, __entry->origin)
+ TP_printk("dev %s, frontbuffer_bits=0x%08x, origin=%u",
+ __get_str(dev), __entry->frontbuffer_bits, __entry->origin)
);
#endif /* __INTEL_DISPLAY_TRACE_H__ */
diff --git a/drivers/gpu/drm/i915/display/intel_display_types.h b/drivers/gpu/drm/i915/display/intel_display_types.h
index 298d00a11f47..47395b39c8f4 100644
--- a/drivers/gpu/drm/i915/display/intel_display_types.h
+++ b/drivers/gpu/drm/i915/display/intel_display_types.h
@@ -43,22 +43,24 @@
#include <drm/drm_rect.h>
#include <drm/drm_vblank.h>
#include <drm/drm_vblank_work.h>
-#include <drm/i915_mei_hdcp_interface.h>
+#include <drm/i915_hdcp_interface.h>
#include <media/cec-notifier.h>
#include "i915_vma.h"
#include "i915_vma_types.h"
#include "intel_bios.h"
#include "intel_display.h"
+#include "intel_display_limits.h"
#include "intel_display_power.h"
#include "intel_dpll_mgr.h"
-#include "intel_pm_types.h"
+#include "intel_wm_types.h"
struct drm_printer;
struct __intel_global_objs_state;
struct intel_ddi_buf_trans;
struct intel_fbc;
struct intel_connector;
+struct intel_tc_port;
/*
* Display related stuff
@@ -168,9 +170,6 @@ struct intel_encoder {
int (*compute_config_late)(struct intel_encoder *,
struct intel_crtc_state *,
struct drm_connector_state *);
- void (*update_prepare)(struct intel_atomic_state *,
- struct intel_encoder *,
- struct intel_crtc *);
void (*pre_pll_enable)(struct intel_atomic_state *,
struct intel_encoder *,
const struct intel_crtc_state *,
@@ -183,9 +182,6 @@ struct intel_encoder {
struct intel_encoder *,
const struct intel_crtc_state *,
const struct drm_connector_state *);
- void (*update_complete)(struct intel_atomic_state *,
- struct intel_encoder *,
- struct intel_crtc *);
void (*disable)(struct intel_atomic_state *,
struct intel_encoder *,
const struct intel_crtc_state *,
@@ -254,6 +250,11 @@ struct intel_encoder {
* Returns whether the port clock is enabled or not.
*/
bool (*is_clock_enabled)(struct intel_encoder *encoder);
+ /*
+ * Returns the PLL type the port uses.
+ */
+ enum icl_port_dpll_id (*port_pll_type)(struct intel_encoder *encoder,
+ const struct intel_crtc_state *crtc_state);
const struct intel_ddi_buf_trans *(*get_buf_trans)(struct intel_encoder *encoder,
const struct intel_crtc_state *crtc_state,
int *n_entries);
@@ -262,8 +263,6 @@ struct intel_encoder {
enum hpd_pin hpd_pin;
enum intel_display_power_domain power_domain;
- /* for communication with audio component; protected by av_mutex */
- const struct drm_connector *audio_connector;
/* VBT information for this encoder (may be NULL for older platforms) */
const struct intel_bios_encoder_data *devdata;
@@ -291,7 +290,7 @@ struct intel_vbt_panel_data {
struct drm_display_mode *sdvo_lvds_vbt_mode; /* if any */
/* Feature bits */
- unsigned int panel_type:4;
+ int panel_type;
unsigned int lvds_dither:1;
unsigned int bios_lvds_val; /* initial [PCH_]LVDS reg val in VBIOS */
@@ -327,10 +326,11 @@ struct intel_vbt_panel_data {
struct {
u16 pwm_freq_hz;
u16 brightness_precision_bits;
+ u16 hdr_dpcd_refresh_timeout;
bool present;
bool active_low_pwm;
u8 min_brightness; /* min_brightness/255 of max */
- u8 controller; /* brightness controller number */
+ s8 controller; /* brightness controller number */
enum intel_backlight_type type;
} backlight;
@@ -351,6 +351,9 @@ struct intel_vbt_panel_data {
};
struct intel_panel {
+ /* Fixed EDID for eDP and LVDS. May hold ERR_PTR for invalid EDID. */
+ const struct drm_edid *fixed_edid;
+
struct list_head fixed_modes;
/* backlight */
@@ -591,9 +594,8 @@ struct intel_connector {
/* Panel info for eDP and LVDS */
struct intel_panel panel;
- /* Cached EDID for eDP and LVDS. May hold ERR_PTR for invalid EDID. */
- struct edid *edid;
- struct edid *detect_edid;
+ /* Cached EDID for detect. */
+ const struct drm_edid *detect_edid;
/* Number of times hotplug detection was tried after an HPD interrupt */
int hotplug_retries;
@@ -969,6 +971,15 @@ struct intel_mpllb_state {
u32 mpllb_sscstep;
};
+/* Used by dp and fdi links */
+struct intel_link_m_n {
+ u32 tu;
+ u32 data_m;
+ u32 data_n;
+ u32 link_m;
+ u32 link_n;
+};
+
struct intel_crtc_state {
/*
* uapi (drm) state. This is the software state shown to userspace.
@@ -1001,11 +1012,15 @@ struct intel_crtc_state {
*/
struct {
bool active, enable;
+ /* logical state of LUTs */
struct drm_property_blob *degamma_lut, *gamma_lut, *ctm;
struct drm_display_mode mode, pipe_mode, adjusted_mode;
enum drm_scaling_filter scaling_filter;
} hw;
+ /* actual state of LUTs */
+ struct drm_property_blob *pre_csc_lut, *post_csc_lut;
+
/**
* quirks - bitfield with hw state readout quirks
*
@@ -1137,6 +1152,7 @@ struct intel_crtc_state {
bool has_psr2;
bool enable_psr2_sel_fetch;
bool req_psr2_sdp_prior_scanline;
+ bool wm_level_disabled;
u32 dc3co_exitline;
u16 su_y_granularity;
struct drm_dp_vsc_sdp psr_vsc;
@@ -1235,6 +1251,9 @@ struct intel_crtc_state {
/* bitmask of planes that will be updated during the commit */
u8 update_planes;
+ /* bitmask of planes with async flip active */
+ u8 async_flip_planes;
+
u8 framestart_delay; /* 1-4 */
u8 msa_timing_delay; /* 0-3 */
@@ -1248,6 +1267,8 @@ struct intel_crtc_state {
struct drm_dp_vsc_sdp vsc;
} infoframes;
+ u8 eld[MAX_ELD_BYTES];
+
/* HDMI scrambling status */
bool hdmi_scrambling;
@@ -1282,6 +1303,8 @@ struct intel_crtc_state {
/* Forward Error correction State */
bool fec_enable;
+ bool sdp_split_enable;
+
/* Pointer to master transcoder in case of tiled displays */
enum transcoder master_transcoder;
@@ -1362,6 +1385,7 @@ struct intel_crtc {
u16 vmax_vblank_start;
struct intel_display_power_domain_set enabled_power_domains;
+ struct intel_display_power_domain_set hw_readout_power_domains;
struct intel_overlay *overlay;
struct intel_crtc_state *config;
@@ -1483,17 +1507,6 @@ struct intel_watermark_params {
u8 cacheline_size;
};
-struct cxsr_latency {
- bool is_desktop : 1;
- bool is_ddr3 : 1;
- u16 fsb_freq;
- u16 mem_freq;
- u16 display_sr;
- u16 display_hpll_disable;
- u16 cursor_sr;
- u16 cursor_hpll_disable;
-};
-
#define to_intel_atomic_state(x) container_of(x, struct intel_atomic_state, base)
#define to_intel_crtc(x) container_of(x, struct intel_crtc, base)
#define to_intel_crtc_state(x) container_of(x, struct intel_crtc_state, uapi)
@@ -1554,11 +1567,19 @@ struct intel_pps {
ktime_t panel_power_off_time;
intel_wakeref_t vdd_wakeref;
- /*
- * Pipe whose power sequencer is currently locked into
- * this port. Only relevant on VLV/CHV.
- */
- enum pipe pps_pipe;
+ union {
+ /*
+ * Pipe whose power sequencer is currently locked into
+ * this port. Only relevant on VLV/CHV.
+ */
+ enum pipe pps_pipe;
+
+ /*
+ * Power sequencer index. Only relevant on BXT+.
+ */
+ int pps_idx;
+ };
+
/*
* Pipe currently driving the port. Used for preventing
* the use of the PPS for any pipe currentrly driving
@@ -1567,7 +1588,7 @@ struct intel_pps {
enum pipe active_pipe;
/*
* Set if the sequencer may be reset due to a power transition,
- * requiring a reinitialization. Only relevant on BXT.
+ * requiring a reinitialization. Only relevant on BXT+.
*/
bool pps_reset;
struct edp_power_seq pps_delays;
@@ -1604,6 +1625,8 @@ struct intel_psr {
bool psr2_sel_fetch_cff_enabled;
bool req_psr2_sdp_prior_scanline;
u8 sink_sync_latency;
+ u8 io_wake_lines;
+ u8 fast_wake_lines;
ktime_t last_entry_attempt;
ktime_t last_exit;
bool sink_not_reliable;
@@ -1713,6 +1736,7 @@ struct intel_dp {
/* Display stream compression testing */
bool force_dsc_en;
+ int force_dsc_output_format;
int force_dsc_bpc;
bool hobl_failed;
@@ -1753,16 +1777,7 @@ struct intel_digital_port {
intel_wakeref_t ddi_io_wakeref;
intel_wakeref_t aux_wakeref;
- struct mutex tc_lock; /* protects the TypeC port mode */
- intel_wakeref_t tc_lock_wakeref;
- enum intel_display_power_domain tc_lock_power_domain;
- struct delayed_work tc_disconnect_phy_work;
- int tc_link_refcount;
- bool tc_legacy_port:1;
- char tc_port_name[8];
- enum tc_port_mode tc_mode;
- enum phy_fia tc_phy_fia;
- u8 tc_phy_fia_idx;
+ struct intel_tc_port *tc;
/* protects num_hdcp_streams reference count, hdcp_port_data and hdcp_auth_status */
struct mutex hdcp_mutex;
@@ -1799,51 +1814,6 @@ struct intel_dp_mst_encoder {
struct intel_connector *connector;
};
-static inline enum dpio_channel
-vlv_dig_port_to_channel(struct intel_digital_port *dig_port)
-{
- switch (dig_port->base.port) {
- default:
- MISSING_CASE(dig_port->base.port);
- fallthrough;
- case PORT_B:
- case PORT_D:
- return DPIO_CH0;
- case PORT_C:
- return DPIO_CH1;
- }
-}
-
-static inline enum dpio_phy
-vlv_dig_port_to_phy(struct intel_digital_port *dig_port)
-{
- switch (dig_port->base.port) {
- default:
- MISSING_CASE(dig_port->base.port);
- fallthrough;
- case PORT_B:
- case PORT_C:
- return DPIO_PHY0;
- case PORT_D:
- return DPIO_PHY1;
- }
-}
-
-static inline enum dpio_channel
-vlv_pipe_to_channel(enum pipe pipe)
-{
- switch (pipe) {
- default:
- MISSING_CASE(pipe);
- fallthrough;
- case PIPE_A:
- case PIPE_C:
- return DPIO_CH0;
- case PIPE_B:
- return DPIO_CH1;
- }
-}
-
struct intel_load_detect_pipe {
struct drm_atomic_state *restore_state;
};
@@ -2040,15 +2010,16 @@ static inline bool
intel_crtc_has_type(const struct intel_crtc_state *crtc_state,
enum intel_output_type type)
{
- return crtc_state->output_types & (1 << type);
+ return crtc_state->output_types & BIT(type);
}
+
static inline bool
intel_crtc_has_dp_encoder(const struct intel_crtc_state *crtc_state)
{
return crtc_state->output_types &
- ((1 << INTEL_OUTPUT_DP) |
- (1 << INTEL_OUTPUT_DP_MST) |
- (1 << INTEL_OUTPUT_EDP));
+ (BIT(INTEL_OUTPUT_DP) |
+ BIT(INTEL_OUTPUT_DP_MST) |
+ BIT(INTEL_OUTPUT_EDP));
}
static inline bool
@@ -2057,6 +2028,20 @@ intel_crtc_needs_modeset(const struct intel_crtc_state *crtc_state)
return drm_atomic_crtc_needs_modeset(&crtc_state->uapi);
}
+static inline bool
+intel_crtc_needs_fastset(const struct intel_crtc_state *crtc_state)
+{
+ return crtc_state->update_pipe;
+}
+
+static inline bool
+intel_crtc_needs_color_update(const struct intel_crtc_state *crtc_state)
+{
+ return crtc_state->uapi.color_mgmt_changed ||
+ intel_crtc_needs_fastset(crtc_state) ||
+ intel_crtc_needs_modeset(crtc_state);
+}
+
static inline u32 intel_plane_ggtt_offset(const struct intel_plane_state *plane_state)
{
return i915_ggtt_offset(plane_state->ggtt_vma);
diff --git a/drivers/gpu/drm/i915/display/intel_dkl_phy.c b/drivers/gpu/drm/i915/display/intel_dkl_phy.c
index 710b030c7ed5..57cc3edba016 100644
--- a/drivers/gpu/drm/i915/display/intel_dkl_phy.c
+++ b/drivers/gpu/drm/i915/display/intel_dkl_phy.c
@@ -9,9 +9,10 @@
#include "intel_de.h"
#include "intel_display.h"
#include "intel_dkl_phy.h"
+#include "intel_dkl_phy_regs.h"
static void
-dkl_phy_set_hip_idx(struct drm_i915_private *i915, i915_reg_t reg, int idx)
+dkl_phy_set_hip_idx(struct drm_i915_private *i915, struct intel_dkl_phy_reg reg)
{
enum tc_port tc_port = DKL_REG_TC_PORT(reg);
@@ -19,28 +20,27 @@ dkl_phy_set_hip_idx(struct drm_i915_private *i915, i915_reg_t reg, int idx)
intel_de_write(i915,
HIP_INDEX_REG(tc_port),
- HIP_INDEX_VAL(tc_port, idx));
+ HIP_INDEX_VAL(tc_port, reg.bank_idx));
}
/**
* intel_dkl_phy_read - read a Dekel PHY register
* @i915: i915 device instance
* @reg: Dekel PHY register
- * @ln: lane instance of @reg
*
* Read the @reg Dekel PHY register.
*
* Returns the read value.
*/
u32
-intel_dkl_phy_read(struct drm_i915_private *i915, i915_reg_t reg, int ln)
+intel_dkl_phy_read(struct drm_i915_private *i915, struct intel_dkl_phy_reg reg)
{
u32 val;
spin_lock(&i915->display.dkl.phy_lock);
- dkl_phy_set_hip_idx(i915, reg, ln);
- val = intel_de_read(i915, reg);
+ dkl_phy_set_hip_idx(i915, reg);
+ val = intel_de_read(i915, DKL_REG_MMIO(reg));
spin_unlock(&i915->display.dkl.phy_lock);
@@ -51,18 +51,17 @@ intel_dkl_phy_read(struct drm_i915_private *i915, i915_reg_t reg, int ln)
* intel_dkl_phy_write - write a Dekel PHY register
* @i915: i915 device instance
* @reg: Dekel PHY register
- * @ln: lane instance of @reg
* @val: value to write
*
* Write @val to the @reg Dekel PHY register.
*/
void
-intel_dkl_phy_write(struct drm_i915_private *i915, i915_reg_t reg, int ln, u32 val)
+intel_dkl_phy_write(struct drm_i915_private *i915, struct intel_dkl_phy_reg reg, u32 val)
{
spin_lock(&i915->display.dkl.phy_lock);
- dkl_phy_set_hip_idx(i915, reg, ln);
- intel_de_write(i915, reg, val);
+ dkl_phy_set_hip_idx(i915, reg);
+ intel_de_write(i915, DKL_REG_MMIO(reg), val);
spin_unlock(&i915->display.dkl.phy_lock);
}
@@ -71,7 +70,6 @@ intel_dkl_phy_write(struct drm_i915_private *i915, i915_reg_t reg, int ln, u32 v
* intel_dkl_phy_rmw - read-modify-write a Dekel PHY register
* @i915: i915 device instance
* @reg: Dekel PHY register
- * @ln: lane instance of @reg
* @clear: mask to clear
* @set: mask to set
*
@@ -79,12 +77,12 @@ intel_dkl_phy_write(struct drm_i915_private *i915, i915_reg_t reg, int ln, u32 v
* this value back to the register if the value differs from the read one.
*/
void
-intel_dkl_phy_rmw(struct drm_i915_private *i915, i915_reg_t reg, int ln, u32 clear, u32 set)
+intel_dkl_phy_rmw(struct drm_i915_private *i915, struct intel_dkl_phy_reg reg, u32 clear, u32 set)
{
spin_lock(&i915->display.dkl.phy_lock);
- dkl_phy_set_hip_idx(i915, reg, ln);
- intel_de_rmw(i915, reg, clear, set);
+ dkl_phy_set_hip_idx(i915, reg);
+ intel_de_rmw(i915, DKL_REG_MMIO(reg), clear, set);
spin_unlock(&i915->display.dkl.phy_lock);
}
@@ -93,17 +91,16 @@ intel_dkl_phy_rmw(struct drm_i915_private *i915, i915_reg_t reg, int ln, u32 cle
* intel_dkl_phy_posting_read - do a posting read from a Dekel PHY register
* @i915: i915 device instance
* @reg: Dekel PHY register
- * @ln: lane instance of @reg
*
* Read the @reg Dekel PHY register without returning the read value.
*/
void
-intel_dkl_phy_posting_read(struct drm_i915_private *i915, i915_reg_t reg, int ln)
+intel_dkl_phy_posting_read(struct drm_i915_private *i915, struct intel_dkl_phy_reg reg)
{
spin_lock(&i915->display.dkl.phy_lock);
- dkl_phy_set_hip_idx(i915, reg, ln);
- intel_de_posting_read(i915, reg);
+ dkl_phy_set_hip_idx(i915, reg);
+ intel_de_posting_read(i915, DKL_REG_MMIO(reg));
spin_unlock(&i915->display.dkl.phy_lock);
}
diff --git a/drivers/gpu/drm/i915/display/intel_dkl_phy.h b/drivers/gpu/drm/i915/display/intel_dkl_phy.h
index 260ad121a0b1..570ee36f9386 100644
--- a/drivers/gpu/drm/i915/display/intel_dkl_phy.h
+++ b/drivers/gpu/drm/i915/display/intel_dkl_phy.h
@@ -8,17 +8,17 @@
#include <linux/types.h>
-#include "i915_reg_defs.h"
+#include "intel_dkl_phy_regs.h"
struct drm_i915_private;
u32
-intel_dkl_phy_read(struct drm_i915_private *i915, i915_reg_t reg, int ln);
+intel_dkl_phy_read(struct drm_i915_private *i915, struct intel_dkl_phy_reg reg);
void
-intel_dkl_phy_write(struct drm_i915_private *i915, i915_reg_t reg, int ln, u32 val);
+intel_dkl_phy_write(struct drm_i915_private *i915, struct intel_dkl_phy_reg reg, u32 val);
void
-intel_dkl_phy_rmw(struct drm_i915_private *i915, i915_reg_t reg, int ln, u32 clear, u32 set);
+intel_dkl_phy_rmw(struct drm_i915_private *i915, struct intel_dkl_phy_reg reg, u32 clear, u32 set);
void
-intel_dkl_phy_posting_read(struct drm_i915_private *i915, i915_reg_t reg, int ln);
+intel_dkl_phy_posting_read(struct drm_i915_private *i915, struct intel_dkl_phy_reg reg);
#endif /* __INTEL_DKL_PHY_H__ */
diff --git a/drivers/gpu/drm/i915/display/intel_dkl_phy_regs.h b/drivers/gpu/drm/i915/display/intel_dkl_phy_regs.h
new file mode 100644
index 000000000000..56085b32956d
--- /dev/null
+++ b/drivers/gpu/drm/i915/display/intel_dkl_phy_regs.h
@@ -0,0 +1,204 @@
+/* SPDX-License-Identifier: MIT */
+/*
+ * Copyright © 2022 Intel Corporation
+ */
+
+#ifndef __INTEL_DKL_PHY_REGS__
+#define __INTEL_DKL_PHY_REGS__
+
+#include <linux/types.h>
+
+struct intel_dkl_phy_reg {
+ u32 reg:24;
+ u32 bank_idx:4;
+};
+
+#define _DKL_PHY1_BASE 0x168000
+#define _DKL_PHY2_BASE 0x169000
+#define _DKL_PHY3_BASE 0x16A000
+#define _DKL_PHY4_BASE 0x16B000
+#define _DKL_PHY5_BASE 0x16C000
+#define _DKL_PHY6_BASE 0x16D000
+
+#define DKL_REG_TC_PORT(__reg) \
+ (TC_PORT_1 + ((__reg).reg - _DKL_PHY1_BASE) / (_DKL_PHY2_BASE - _DKL_PHY1_BASE))
+
+/* DEKEL PHY MMIO Address = Phy base + (internal address & ~index_mask) */
+#define DKL_REG_MMIO(__reg) _MMIO((__reg).reg)
+
+#define _DKL_REG_PHY_BASE(tc_port) _PORT(tc_port, \
+ _DKL_PHY1_BASE, \
+ _DKL_PHY2_BASE)
+
+#define _DKL_BANK_SHIFT 12
+#define _DKL_REG_BANK_OFFSET(phy_offset) \
+ ((phy_offset) & ((1 << _DKL_BANK_SHIFT) - 1))
+#define _DKL_REG_BANK_IDX(phy_offset) \
+ (((phy_offset) >> _DKL_BANK_SHIFT) & 0xf)
+
+#define _DKL_REG(tc_port, phy_offset) \
+ ((const struct intel_dkl_phy_reg) { \
+ .reg = _DKL_REG_PHY_BASE(tc_port) + \
+ _DKL_REG_BANK_OFFSET(phy_offset), \
+ .bank_idx = _DKL_REG_BANK_IDX(phy_offset), \
+ })
+
+#define _DKL_REG_LN(tc_port, ln_idx, ln0_offs, ln1_offs) \
+ _DKL_REG(tc_port, (ln0_offs) + (ln_idx) * ((ln1_offs) - (ln0_offs)))
+
+#define _DKL_PCS_DW5_LN0 0x0014
+#define _DKL_PCS_DW5_LN1 0x1014
+#define DKL_PCS_DW5(tc_port, ln) _DKL_REG_LN(tc_port, ln, \
+ _DKL_PCS_DW5_LN0, \
+ _DKL_PCS_DW5_LN1)
+#define DKL_PCS_DW5_CORE_SOFTRESET REG_BIT(11)
+
+#define _DKL_PLL_DIV0 0x2200
+#define DKL_PLL_DIV0(tc_port) _DKL_REG(tc_port, \
+ _DKL_PLL_DIV0)
+#define DKL_PLL_DIV0_AFC_STARTUP_MASK REG_GENMASK(27, 25)
+#define DKL_PLL_DIV0_AFC_STARTUP(val) REG_FIELD_PREP(DKL_PLL_DIV0_AFC_STARTUP_MASK, (val))
+#define DKL_PLL_DIV0_INTEG_COEFF(x) ((x) << 16)
+#define DKL_PLL_DIV0_INTEG_COEFF_MASK (0x1F << 16)
+#define DKL_PLL_DIV0_PROP_COEFF(x) ((x) << 12)
+#define DKL_PLL_DIV0_PROP_COEFF_MASK (0xF << 12)
+#define DKL_PLL_DIV0_FBPREDIV_SHIFT (8)
+#define DKL_PLL_DIV0_FBPREDIV(x) ((x) << DKL_PLL_DIV0_FBPREDIV_SHIFT)
+#define DKL_PLL_DIV0_FBPREDIV_MASK (0xF << DKL_PLL_DIV0_FBPREDIV_SHIFT)
+#define DKL_PLL_DIV0_FBDIV_INT(x) ((x) << 0)
+#define DKL_PLL_DIV0_FBDIV_INT_MASK (0xFF << 0)
+#define DKL_PLL_DIV0_MASK (DKL_PLL_DIV0_INTEG_COEFF_MASK | \
+ DKL_PLL_DIV0_PROP_COEFF_MASK | \
+ DKL_PLL_DIV0_FBPREDIV_MASK | \
+ DKL_PLL_DIV0_FBDIV_INT_MASK)
+
+#define _DKL_PLL_DIV1 0x2204
+#define DKL_PLL_DIV1(tc_port) _DKL_REG(tc_port, \
+ _DKL_PLL_DIV1)
+#define DKL_PLL_DIV1_IREF_TRIM(x) ((x) << 16)
+#define DKL_PLL_DIV1_IREF_TRIM_MASK (0x1F << 16)
+#define DKL_PLL_DIV1_TDC_TARGET_CNT(x) ((x) << 0)
+#define DKL_PLL_DIV1_TDC_TARGET_CNT_MASK (0xFF << 0)
+
+#define _DKL_PLL_SSC 0x2210
+#define DKL_PLL_SSC(tc_port) _DKL_REG(tc_port, \
+ _DKL_PLL_SSC)
+#define DKL_PLL_SSC_IREF_NDIV_RATIO(x) ((x) << 29)
+#define DKL_PLL_SSC_IREF_NDIV_RATIO_MASK (0x7 << 29)
+#define DKL_PLL_SSC_STEP_LEN(x) ((x) << 16)
+#define DKL_PLL_SSC_STEP_LEN_MASK (0xFF << 16)
+#define DKL_PLL_SSC_STEP_NUM(x) ((x) << 11)
+#define DKL_PLL_SSC_STEP_NUM_MASK (0x7 << 11)
+#define DKL_PLL_SSC_EN (1 << 9)
+
+#define _DKL_PLL_BIAS 0x2214
+#define DKL_PLL_BIAS(tc_port) _DKL_REG(tc_port, \
+ _DKL_PLL_BIAS)
+#define DKL_PLL_BIAS_FRAC_EN_H (1 << 30)
+#define DKL_PLL_BIAS_FBDIV_SHIFT (8)
+#define DKL_PLL_BIAS_FBDIV_FRAC(x) ((x) << DKL_PLL_BIAS_FBDIV_SHIFT)
+#define DKL_PLL_BIAS_FBDIV_FRAC_MASK (0x3FFFFF << DKL_PLL_BIAS_FBDIV_SHIFT)
+
+#define _DKL_PLL_TDC_COLDST_BIAS 0x2218
+#define DKL_PLL_TDC_COLDST_BIAS(tc_port) _DKL_REG(tc_port, \
+ _DKL_PLL_TDC_COLDST_BIAS)
+#define DKL_PLL_TDC_SSC_STEP_SIZE(x) ((x) << 8)
+#define DKL_PLL_TDC_SSC_STEP_SIZE_MASK (0xFF << 8)
+#define DKL_PLL_TDC_FEED_FWD_GAIN(x) ((x) << 0)
+#define DKL_PLL_TDC_FEED_FWD_GAIN_MASK (0xFF << 0)
+
+#define _DKL_REFCLKIN_CTL 0x212C
+#define DKL_REFCLKIN_CTL(tc_port) _DKL_REG(tc_port, \
+ _DKL_REFCLKIN_CTL)
+/* Bits are the same as MG_REFCLKIN_CTL */
+
+#define _DKL_CLKTOP2_HSCLKCTL 0x20D4
+#define DKL_CLKTOP2_HSCLKCTL(rc_port) _DKL_REG(tc_port, \
+ _DKL_CLKTOP2_HSCLKCTL)
+/* Bits are the same as MG_CLKTOP2_HSCLKCTL */
+
+#define _DKL_CLKTOP2_CORECLKCTL1 0x20D8
+#define DKL_CLKTOP2_CORECLKCTL1(tc_port) _DKL_REG(tc_port, \
+ _DKL_CLKTOP2_CORECLKCTL1)
+/* Bits are the same as MG_CLKTOP2_CORECLKCTL1 */
+
+#define _DKL_TX_DPCNTL0_LN0 0x02C0
+#define _DKL_TX_DPCNTL0_LN1 0x12C0
+#define DKL_TX_DPCNTL0(tc_port, ln) _DKL_REG_LN(tc_port, ln, \
+ _DKL_TX_DPCNTL0_LN0, \
+ _DKL_TX_DPCNTL0_LN1)
+#define DKL_TX_PRESHOOT_COEFF(x) ((x) << 13)
+#define DKL_TX_PRESHOOT_COEFF_MASK (0x1f << 13)
+#define DKL_TX_DE_EMPHASIS_COEFF(x) ((x) << 8)
+#define DKL_TX_DE_EMPAHSIS_COEFF_MASK (0x1f << 8)
+#define DKL_TX_VSWING_CONTROL(x) ((x) << 0)
+#define DKL_TX_VSWING_CONTROL_MASK (0x7 << 0)
+
+#define _DKL_TX_DPCNTL1_LN0 0x02C4
+#define _DKL_TX_DPCNTL1_LN1 0x12C4
+#define DKL_TX_DPCNTL1(tc_port, ln) _DKL_REG_LN(tc_port, ln, \
+ _DKL_TX_DPCNTL1_LN0, \
+ _DKL_TX_DPCNTL1_LN1)
+/* Bits are the same as DKL_TX_DPCNTRL0 */
+
+#define _DKL_TX_DPCNTL2_LN0 0x02C8
+#define _DKL_TX_DPCNTL2_LN1 0x12C8
+#define DKL_TX_DPCNTL2(tc_port, ln) _DKL_REG_LN(tc_port, ln, \
+ _DKL_TX_DPCNTL2_LN0, \
+ _DKL_TX_DPCNTL2_LN1)
+#define DKL_TX_DP20BITMODE REG_BIT(2)
+#define DKL_TX_DPCNTL2_CFG_LOADGENSELECT_TX1_MASK REG_GENMASK(4, 3)
+#define DKL_TX_DPCNTL2_CFG_LOADGENSELECT_TX1(val) REG_FIELD_PREP(DKL_TX_DPCNTL2_CFG_LOADGENSELECT_TX1_MASK, (val))
+#define DKL_TX_DPCNTL2_CFG_LOADGENSELECT_TX2_MASK REG_GENMASK(6, 5)
+#define DKL_TX_DPCNTL2_CFG_LOADGENSELECT_TX2(val) REG_FIELD_PREP(DKL_TX_DPCNTL2_CFG_LOADGENSELECT_TX2_MASK, (val))
+
+#define _DKL_TX_FW_CALIB_LN0 0x02F8
+#define _DKL_TX_FW_CALIB_LN1 0x12F8
+#define DKL_TX_FW_CALIB(tc_port, ln) _DKL_REG_LN(tc_port, ln, \
+ _DKL_TX_FW_CALIB_LN0, \
+ _DKL_TX_FW_CALIB_LN1)
+#define DKL_TX_CFG_DISABLE_WAIT_INIT (1 << 7)
+
+#define _DKL_TX_PMD_LANE_SUS_LN0 0x0D00
+#define _DKL_TX_PMD_LANE_SUS_LN1 0x1D00
+#define DKL_TX_PMD_LANE_SUS(tc_port, ln) _DKL_REG_LN(tc_port, ln, \
+ _DKL_TX_PMD_LANE_SUS_LN0, \
+ _DKL_TX_PMD_LANE_SUS_LN1)
+
+#define _DKL_TX_DW17_LN0 0x0DC4
+#define _DKL_TX_DW17_LN1 0x1DC4
+#define DKL_TX_DW17(tc_port, ln) _DKL_REG_LN(tc_port, ln, \
+ _DKL_TX_DW17_LN0, \
+ _DKL_TX_DW17_LN1)
+
+#define _DKL_TX_DW18_LN0 0x0DC8
+#define _DKL_TX_DW18_LN1 0x1DC8
+#define DKL_TX_DW18(tc_port, ln) _DKL_REG_LN(tc_port, ln, \
+ _DKL_TX_DW18_LN0, \
+ _DKL_TX_DW18_LN1)
+
+#define _DKL_DP_MODE_LN0 0x00A0
+#define _DKL_DP_MODE_LN1 0x10A0
+#define DKL_DP_MODE(tc_port, ln) _DKL_REG_LN(tc_port, ln, \
+ _DKL_DP_MODE_LN0, \
+ _DKL_DP_MODE_LN1)
+
+#define _DKL_CMN_UC_DW27 0x236C
+#define DKL_CMN_UC_DW_27(tc_port) _DKL_REG(tc_port, \
+ _DKL_CMN_UC_DW27)
+#define DKL_CMN_UC_DW27_UC_HEALTH (0x1 << 15)
+
+/*
+ * Each Dekel PHY is addressed through a 4KB aperture. Each PHY has more than
+ * 4KB of register space, so a separate index is programmed in HIP_INDEX_REG0
+ * or HIP_INDEX_REG1, based on the port number, to set the upper 2 address
+ * bits that point the 4KB window into the full PHY register space.
+ */
+#define _HIP_INDEX_REG0 0x1010A0
+#define _HIP_INDEX_REG1 0x1010A4
+#define HIP_INDEX_REG(tc_port) _MMIO((tc_port) < 4 ? _HIP_INDEX_REG0 \
+ : _HIP_INDEX_REG1)
+#define _HIP_INDEX_SHIFT(tc_port) (8 * ((tc_port) % 4))
+#define HIP_INDEX_VAL(tc_port, val) ((val) << _HIP_INDEX_SHIFT(tc_port))
+
+#endif /* __INTEL_DKL_PHY_REGS__ */
diff --git a/drivers/gpu/drm/i915/display/intel_dmc.c b/drivers/gpu/drm/i915/display/intel_dmc.c
index e52ecc0738a6..8a88de67ff0a 100644
--- a/drivers/gpu/drm/i915/display/intel_dmc.c
+++ b/drivers/gpu/drm/i915/display/intel_dmc.c
@@ -38,66 +38,101 @@
* low-power state and comes back to normal.
*/
+enum intel_dmc_id {
+ DMC_FW_MAIN = 0,
+ DMC_FW_PIPEA,
+ DMC_FW_PIPEB,
+ DMC_FW_PIPEC,
+ DMC_FW_PIPED,
+ DMC_FW_MAX
+};
+
+struct intel_dmc {
+ struct drm_i915_private *i915;
+ struct work_struct work;
+ const char *fw_path;
+ u32 max_fw_size; /* bytes */
+ u32 version;
+ struct dmc_fw_info {
+ u32 mmio_count;
+ i915_reg_t mmioaddr[20];
+ u32 mmiodata[20];
+ u32 dmc_offset;
+ u32 start_mmioaddr;
+ u32 dmc_fw_size; /*dwords */
+ u32 *payload;
+ bool present;
+ } dmc_info[DMC_FW_MAX];
+};
+
+/* Note: This may be NULL. */
+static struct intel_dmc *i915_to_dmc(struct drm_i915_private *i915)
+{
+ return i915->display.dmc.dmc;
+}
+
#define DMC_VERSION(major, minor) ((major) << 16 | (minor))
#define DMC_VERSION_MAJOR(version) ((version) >> 16)
#define DMC_VERSION_MINOR(version) ((version) & 0xffff)
-#define DMC_PATH(platform, major, minor) \
- "i915/" \
- __stringify(platform) "_dmc_ver" \
- __stringify(major) "_" \
+#define DMC_PATH(platform) \
+ "i915/" __stringify(platform) "_dmc.bin"
+
+/*
+ * New DMC additions should not use this. This is used solely to remain
+ * compatible with systems that have not yet updated DMC blobs to use
+ * unversioned file names.
+ */
+#define DMC_LEGACY_PATH(platform, major, minor) \
+ "i915/" \
+ __stringify(platform) "_dmc_ver" \
+ __stringify(major) "_" \
__stringify(minor) ".bin"
+#define XELPDP_DMC_MAX_FW_SIZE 0x7000
#define DISPLAY_VER13_DMC_MAX_FW_SIZE 0x20000
-
#define DISPLAY_VER12_DMC_MAX_FW_SIZE ICL_DMC_MAX_FW_SIZE
-#define DG2_DMC_PATH DMC_PATH(dg2, 2, 07)
-#define DG2_DMC_VERSION_REQUIRED DMC_VERSION(2, 07)
+#define MTL_DMC_PATH DMC_PATH(mtl)
+MODULE_FIRMWARE(MTL_DMC_PATH);
+
+#define DG2_DMC_PATH DMC_LEGACY_PATH(dg2, 2, 08)
MODULE_FIRMWARE(DG2_DMC_PATH);
-#define ADLP_DMC_PATH DMC_PATH(adlp, 2, 16)
-#define ADLP_DMC_VERSION_REQUIRED DMC_VERSION(2, 16)
+#define ADLP_DMC_PATH DMC_PATH(adlp)
+#define ADLP_DMC_FALLBACK_PATH DMC_LEGACY_PATH(adlp, 2, 16)
MODULE_FIRMWARE(ADLP_DMC_PATH);
+MODULE_FIRMWARE(ADLP_DMC_FALLBACK_PATH);
-#define ADLS_DMC_PATH DMC_PATH(adls, 2, 01)
-#define ADLS_DMC_VERSION_REQUIRED DMC_VERSION(2, 1)
+#define ADLS_DMC_PATH DMC_LEGACY_PATH(adls, 2, 01)
MODULE_FIRMWARE(ADLS_DMC_PATH);
-#define DG1_DMC_PATH DMC_PATH(dg1, 2, 02)
-#define DG1_DMC_VERSION_REQUIRED DMC_VERSION(2, 2)
+#define DG1_DMC_PATH DMC_LEGACY_PATH(dg1, 2, 02)
MODULE_FIRMWARE(DG1_DMC_PATH);
-#define RKL_DMC_PATH DMC_PATH(rkl, 2, 03)
-#define RKL_DMC_VERSION_REQUIRED DMC_VERSION(2, 3)
+#define RKL_DMC_PATH DMC_LEGACY_PATH(rkl, 2, 03)
MODULE_FIRMWARE(RKL_DMC_PATH);
-#define TGL_DMC_PATH DMC_PATH(tgl, 2, 12)
-#define TGL_DMC_VERSION_REQUIRED DMC_VERSION(2, 12)
+#define TGL_DMC_PATH DMC_LEGACY_PATH(tgl, 2, 12)
MODULE_FIRMWARE(TGL_DMC_PATH);
-#define ICL_DMC_PATH DMC_PATH(icl, 1, 09)
-#define ICL_DMC_VERSION_REQUIRED DMC_VERSION(1, 9)
+#define ICL_DMC_PATH DMC_LEGACY_PATH(icl, 1, 09)
#define ICL_DMC_MAX_FW_SIZE 0x6000
MODULE_FIRMWARE(ICL_DMC_PATH);
-#define GLK_DMC_PATH DMC_PATH(glk, 1, 04)
-#define GLK_DMC_VERSION_REQUIRED DMC_VERSION(1, 4)
+#define GLK_DMC_PATH DMC_LEGACY_PATH(glk, 1, 04)
#define GLK_DMC_MAX_FW_SIZE 0x4000
MODULE_FIRMWARE(GLK_DMC_PATH);
-#define KBL_DMC_PATH DMC_PATH(kbl, 1, 04)
-#define KBL_DMC_VERSION_REQUIRED DMC_VERSION(1, 4)
+#define KBL_DMC_PATH DMC_LEGACY_PATH(kbl, 1, 04)
#define KBL_DMC_MAX_FW_SIZE BXT_DMC_MAX_FW_SIZE
MODULE_FIRMWARE(KBL_DMC_PATH);
-#define SKL_DMC_PATH DMC_PATH(skl, 1, 27)
-#define SKL_DMC_VERSION_REQUIRED DMC_VERSION(1, 27)
+#define SKL_DMC_PATH DMC_LEGACY_PATH(skl, 1, 27)
#define SKL_DMC_MAX_FW_SIZE BXT_DMC_MAX_FW_SIZE
MODULE_FIRMWARE(SKL_DMC_PATH);
-#define BXT_DMC_PATH DMC_PATH(bxt, 1, 07)
-#define BXT_DMC_VERSION_REQUIRED DMC_VERSION(1, 7)
+#define BXT_DMC_PATH DMC_LEGACY_PATH(bxt, 1, 07)
#define BXT_DMC_MAX_FW_SIZE 0x3000
MODULE_FIRMWARE(BXT_DMC_PATH);
@@ -108,6 +143,8 @@ MODULE_FIRMWARE(BXT_DMC_PATH);
#define DMC_V3_MAX_MMIO_COUNT 20
#define DMC_V1_MMIO_START_RANGE 0x80000
+#define PIPE_TO_DMC_ID(pipe) (DMC_FW_PIPEA + ((pipe) - PIPE_A))
+
struct intel_css_header {
/* 0x09 for DMC */
u32 module_type;
@@ -248,9 +285,19 @@ struct stepping_info {
char substepping;
};
-static bool has_dmc_id_fw(struct drm_i915_private *i915, int dmc_id)
+#define for_each_dmc_id(__dmc_id) \
+ for ((__dmc_id) = DMC_FW_MAIN; (__dmc_id) < DMC_FW_MAX; (__dmc_id)++)
+
+static bool is_valid_dmc_id(enum intel_dmc_id dmc_id)
+{
+ return dmc_id >= DMC_FW_MAIN && dmc_id < DMC_FW_MAX;
+}
+
+static bool has_dmc_id_fw(struct drm_i915_private *i915, enum intel_dmc_id dmc_id)
{
- return i915->display.dmc.dmc_info[dmc_id].payload;
+ struct intel_dmc *dmc = i915_to_dmc(i915);
+
+ return dmc && dmc->dmc_info[dmc_id].payload;
}
bool intel_dmc_has_payload(struct drm_i915_private *i915)
@@ -269,12 +316,12 @@ intel_get_stepping_info(struct drm_i915_private *i915,
return si;
}
-static void gen9_set_dc_state_debugmask(struct drm_i915_private *dev_priv)
+static void gen9_set_dc_state_debugmask(struct drm_i915_private *i915)
{
/* The below bit doesn't need to be cleared ever afterwards */
- intel_de_rmw(dev_priv, DC_STATE_DEBUG, 0,
+ intel_de_rmw(i915, DC_STATE_DEBUG, 0,
DC_STATE_DEBUG_MASK_CORES | DC_STATE_DEBUG_MASK_MEMORY_UP);
- intel_de_posting_read(dev_priv, DC_STATE_DEBUG);
+ intel_de_posting_read(i915, DC_STATE_DEBUG);
}
static void disable_event_handler(struct drm_i915_private *i915,
@@ -314,26 +361,23 @@ disable_flip_queue_event(struct drm_i915_private *i915,
}
static bool
-get_flip_queue_event_regs(struct drm_i915_private *i915, int dmc_id,
+get_flip_queue_event_regs(struct drm_i915_private *i915, enum intel_dmc_id dmc_id,
i915_reg_t *ctl_reg, i915_reg_t *htp_reg)
{
- switch (dmc_id) {
- case DMC_FW_MAIN:
+ if (dmc_id == DMC_FW_MAIN) {
if (DISPLAY_VER(i915) == 12) {
*ctl_reg = DMC_EVT_CTL(i915, dmc_id, 3);
*htp_reg = DMC_EVT_HTP(i915, dmc_id, 3);
return true;
}
- break;
- case DMC_FW_PIPEA ... DMC_FW_PIPED:
+ } else if (dmc_id >= DMC_FW_PIPEA && dmc_id <= DMC_FW_PIPED) {
if (IS_DG2(i915)) {
*ctl_reg = DMC_EVT_CTL(i915, dmc_id, 2);
*htp_reg = DMC_EVT_HTP(i915, dmc_id, 2);
return true;
}
- break;
}
return false;
@@ -342,13 +386,13 @@ get_flip_queue_event_regs(struct drm_i915_private *i915, int dmc_id,
static void
disable_all_flip_queue_events(struct drm_i915_private *i915)
{
- int dmc_id;
+ enum intel_dmc_id dmc_id;
/* TODO: check if the following applies to all D13+ platforms. */
if (!IS_DG2(i915) && !IS_TIGERLAKE(i915))
return;
- for (dmc_id = 0; dmc_id < DMC_FW_MAX; dmc_id++) {
+ for_each_dmc_id(dmc_id) {
i915_reg_t ctl_reg;
i915_reg_t htp_reg;
@@ -364,32 +408,29 @@ disable_all_flip_queue_events(struct drm_i915_private *i915)
static void disable_all_event_handlers(struct drm_i915_private *i915)
{
- int id;
+ enum intel_dmc_id dmc_id;
/* TODO: disable the event handlers on pre-GEN12 platforms as well */
if (DISPLAY_VER(i915) < 12)
return;
- for (id = DMC_FW_MAIN; id < DMC_FW_MAX; id++) {
+ for_each_dmc_id(dmc_id) {
int handler;
- if (!has_dmc_id_fw(i915, id))
+ if (!has_dmc_id_fw(i915, dmc_id))
continue;
for (handler = 0; handler < DMC_EVENT_HANDLER_COUNT_GEN12; handler++)
disable_event_handler(i915,
- DMC_EVT_CTL(i915, id, handler),
- DMC_EVT_HTP(i915, id, handler));
+ DMC_EVT_CTL(i915, dmc_id, handler),
+ DMC_EVT_HTP(i915, dmc_id, handler));
}
}
-static void pipedmc_clock_gating_wa(struct drm_i915_private *i915, bool enable)
+static void adlp_pipedmc_clock_gating_wa(struct drm_i915_private *i915, bool enable)
{
enum pipe pipe;
- if (DISPLAY_VER(i915) != 13)
- return;
-
/*
* Wa_16015201720:adl-p,dg2
* The WA requires clock gating to be disabled all the time
@@ -407,59 +448,106 @@ static void pipedmc_clock_gating_wa(struct drm_i915_private *i915, bool enable)
PIPEDMC_GATING_DIS, 0);
}
+static void mtl_pipedmc_clock_gating_wa(struct drm_i915_private *i915)
+{
+ /*
+ * Wa_16015201720
+ * The WA requires clock gating to be disabled all the time
+ * for pipe A and B.
+ */
+ intel_de_rmw(i915, GEN9_CLKGATE_DIS_0, 0,
+ MTL_PIPEDMC_GATING_DIS_A | MTL_PIPEDMC_GATING_DIS_B);
+}
+
+static void pipedmc_clock_gating_wa(struct drm_i915_private *i915, bool enable)
+{
+ if (DISPLAY_VER(i915) >= 14 && enable)
+ mtl_pipedmc_clock_gating_wa(i915);
+ else if (DISPLAY_VER(i915) == 13)
+ adlp_pipedmc_clock_gating_wa(i915, enable);
+}
+
+void intel_dmc_enable_pipe(struct drm_i915_private *i915, enum pipe pipe)
+{
+ enum intel_dmc_id dmc_id = PIPE_TO_DMC_ID(pipe);
+
+ if (!is_valid_dmc_id(dmc_id) || !has_dmc_id_fw(i915, dmc_id))
+ return;
+
+ if (DISPLAY_VER(i915) >= 14)
+ intel_de_rmw(i915, MTL_PIPEDMC_CONTROL, 0, PIPEDMC_ENABLE_MTL(pipe));
+ else
+ intel_de_rmw(i915, PIPEDMC_CONTROL(pipe), 0, PIPEDMC_ENABLE);
+}
+
+void intel_dmc_disable_pipe(struct drm_i915_private *i915, enum pipe pipe)
+{
+ enum intel_dmc_id dmc_id = PIPE_TO_DMC_ID(pipe);
+
+ if (!is_valid_dmc_id(dmc_id) || !has_dmc_id_fw(i915, dmc_id))
+ return;
+
+ if (DISPLAY_VER(i915) >= 14)
+ intel_de_rmw(i915, MTL_PIPEDMC_CONTROL, PIPEDMC_ENABLE_MTL(pipe), 0);
+ else
+ intel_de_rmw(i915, PIPEDMC_CONTROL(pipe), PIPEDMC_ENABLE, 0);
+}
+
/**
* intel_dmc_load_program() - write the firmware from memory to register.
- * @dev_priv: i915 drm device.
+ * @i915: i915 drm device.
*
* DMC firmware is read from a .bin file and kept in internal memory one time.
* Everytime display comes back from low power state this function is called to
* copy the firmware from internal memory to registers.
*/
-void intel_dmc_load_program(struct drm_i915_private *dev_priv)
+void intel_dmc_load_program(struct drm_i915_private *i915)
{
- struct intel_dmc *dmc = &dev_priv->display.dmc;
- u32 id, i;
+ struct i915_power_domains *power_domains = &i915->display.power.domains;
+ struct intel_dmc *dmc = i915_to_dmc(i915);
+ enum intel_dmc_id dmc_id;
+ u32 i;
- if (!intel_dmc_has_payload(dev_priv))
+ if (!intel_dmc_has_payload(i915))
return;
- pipedmc_clock_gating_wa(dev_priv, true);
+ pipedmc_clock_gating_wa(i915, true);
- disable_all_event_handlers(dev_priv);
+ disable_all_event_handlers(i915);
- assert_rpm_wakelock_held(&dev_priv->runtime_pm);
+ assert_rpm_wakelock_held(&i915->runtime_pm);
preempt_disable();
- for (id = 0; id < DMC_FW_MAX; id++) {
- for (i = 0; i < dmc->dmc_info[id].dmc_fw_size; i++) {
- intel_uncore_write_fw(&dev_priv->uncore,
- DMC_PROGRAM(dmc->dmc_info[id].start_mmioaddr, i),
- dmc->dmc_info[id].payload[i]);
+ for_each_dmc_id(dmc_id) {
+ for (i = 0; i < dmc->dmc_info[dmc_id].dmc_fw_size; i++) {
+ intel_de_write_fw(i915,
+ DMC_PROGRAM(dmc->dmc_info[dmc_id].start_mmioaddr, i),
+ dmc->dmc_info[dmc_id].payload[i]);
}
}
preempt_enable();
- for (id = 0; id < DMC_FW_MAX; id++) {
- for (i = 0; i < dmc->dmc_info[id].mmio_count; i++) {
- intel_de_write(dev_priv, dmc->dmc_info[id].mmioaddr[i],
- dmc->dmc_info[id].mmiodata[i]);
+ for_each_dmc_id(dmc_id) {
+ for (i = 0; i < dmc->dmc_info[dmc_id].mmio_count; i++) {
+ intel_de_write(i915, dmc->dmc_info[dmc_id].mmioaddr[i],
+ dmc->dmc_info[dmc_id].mmiodata[i]);
}
}
- dev_priv->display.dmc.dc_state = 0;
+ power_domains->dc_state = 0;
- gen9_set_dc_state_debugmask(dev_priv);
+ gen9_set_dc_state_debugmask(i915);
/*
* Flip queue events need to be disabled before enabling DC5/6.
* i915 doesn't use the flip queue feature, so disable it already
* here.
*/
- disable_all_flip_queue_events(dev_priv);
+ disable_all_flip_queue_events(i915);
- pipedmc_clock_gating_wa(dev_priv, false);
+ pipedmc_clock_gating_wa(i915, false);
}
/**
@@ -481,8 +569,11 @@ void intel_dmc_disable_program(struct drm_i915_private *i915)
void assert_dmc_loaded(struct drm_i915_private *i915)
{
- drm_WARN_ONCE(&i915->drm,
- !intel_de_read(i915, DMC_PROGRAM(i915->display.dmc.dmc_info[DMC_FW_MAIN].start_mmioaddr, 0)),
+ struct intel_dmc *dmc = i915_to_dmc(i915);
+
+ drm_WARN_ONCE(&i915->drm, !dmc, "DMC not initialized\n");
+ drm_WARN_ONCE(&i915->drm, dmc &&
+ !intel_de_read(i915, DMC_PROGRAM(dmc->dmc_info[DMC_FW_MAIN].start_mmioaddr, 0)),
"DMC program storage start is NULL\n");
drm_WARN_ONCE(&i915->drm, !intel_de_read(i915, DMC_SSP_BASE),
"DMC SSP Base Not fine\n");
@@ -517,15 +608,15 @@ static void dmc_set_fw_offset(struct intel_dmc *dmc,
const struct stepping_info *si,
u8 package_ver)
{
- unsigned int i, id;
-
- struct drm_i915_private *i915 = container_of(dmc, typeof(*i915), display.dmc);
+ struct drm_i915_private *i915 = dmc->i915;
+ enum intel_dmc_id dmc_id;
+ unsigned int i;
for (i = 0; i < num_entries; i++) {
- id = package_ver <= 1 ? DMC_FW_MAIN : fw_info[i].dmc_id;
+ dmc_id = package_ver <= 1 ? DMC_FW_MAIN : fw_info[i].dmc_id;
- if (id >= DMC_FW_MAX) {
- drm_dbg(&i915->drm, "Unsupported firmware id: %u\n", id);
+ if (!is_valid_dmc_id(dmc_id)) {
+ drm_dbg(&i915->drm, "Unsupported firmware id: %u\n", dmc_id);
continue;
}
@@ -533,29 +624,24 @@ static void dmc_set_fw_offset(struct intel_dmc *dmc,
* check for the stepping since we already found a previous FW
* for this id.
*/
- if (dmc->dmc_info[id].present)
+ if (dmc->dmc_info[dmc_id].present)
continue;
if (fw_info_matches_stepping(&fw_info[i], si)) {
- dmc->dmc_info[id].present = true;
- dmc->dmc_info[id].dmc_offset = fw_info[i].offset;
+ dmc->dmc_info[dmc_id].present = true;
+ dmc->dmc_info[dmc_id].dmc_offset = fw_info[i].offset;
}
}
}
static bool dmc_mmio_addr_sanity_check(struct intel_dmc *dmc,
const u32 *mmioaddr, u32 mmio_count,
- int header_ver, u8 dmc_id)
+ int header_ver, enum intel_dmc_id dmc_id)
{
- struct drm_i915_private *i915 = container_of(dmc, typeof(*i915), display.dmc);
+ struct drm_i915_private *i915 = dmc->i915;
u32 start_range, end_range;
int i;
- if (dmc_id >= DMC_FW_MAX) {
- drm_warn(&i915->drm, "Unsupported firmware id %u\n", dmc_id);
- return false;
- }
-
if (header_ver == 1) {
start_range = DMC_MMIO_START_RANGE;
end_range = DMC_MMIO_END_RANGE;
@@ -583,9 +669,9 @@ static bool dmc_mmio_addr_sanity_check(struct intel_dmc *dmc,
static u32 parse_dmc_fw_header(struct intel_dmc *dmc,
const struct intel_dmc_header_base *dmc_header,
- size_t rem_size, u8 dmc_id)
+ size_t rem_size, enum intel_dmc_id dmc_id)
{
- struct drm_i915_private *i915 = container_of(dmc, typeof(*i915), display.dmc);
+ struct drm_i915_private *i915 = dmc->i915;
struct dmc_fw_info *dmc_info = &dmc->dmc_info[dmc_id];
unsigned int header_len_bytes, dmc_header_size, payload_size, i;
const u32 *mmioaddr, *mmiodata;
@@ -696,7 +782,7 @@ parse_dmc_fw_package(struct intel_dmc *dmc,
const struct stepping_info *si,
size_t rem_size)
{
- struct drm_i915_private *i915 = container_of(dmc, typeof(*i915), display.dmc);
+ struct drm_i915_private *i915 = dmc->i915;
u32 package_size = sizeof(struct intel_package_header);
u32 num_entries, max_entries;
const struct intel_fw_info *fw_info;
@@ -750,7 +836,7 @@ static u32 parse_dmc_fw_css(struct intel_dmc *dmc,
struct intel_css_header *css_header,
size_t rem_size)
{
- struct drm_i915_private *i915 = container_of(dmc, typeof(*i915), display.dmc);
+ struct drm_i915_private *i915 = dmc->i915;
if (rem_size < sizeof(struct intel_css_header)) {
drm_err(&i915->drm, "Truncated DMC firmware, refusing.\n");
@@ -765,34 +851,22 @@ static u32 parse_dmc_fw_css(struct intel_dmc *dmc,
return 0;
}
- if (dmc->required_version &&
- css_header->version != dmc->required_version) {
- drm_info(&i915->drm, "Refusing to load DMC firmware v%u.%u,"
- " please use v%u.%u\n",
- DMC_VERSION_MAJOR(css_header->version),
- DMC_VERSION_MINOR(css_header->version),
- DMC_VERSION_MAJOR(dmc->required_version),
- DMC_VERSION_MINOR(dmc->required_version));
- return 0;
- }
-
dmc->version = css_header->version;
return sizeof(struct intel_css_header);
}
-static void parse_dmc_fw(struct drm_i915_private *dev_priv,
- const struct firmware *fw)
+static void parse_dmc_fw(struct intel_dmc *dmc, const struct firmware *fw)
{
+ struct drm_i915_private *i915 = dmc->i915;
struct intel_css_header *css_header;
struct intel_package_header *package_header;
struct intel_dmc_header_base *dmc_header;
- struct intel_dmc *dmc = &dev_priv->display.dmc;
struct stepping_info display_info = { '*', '*'};
- const struct stepping_info *si = intel_get_stepping_info(dev_priv, &display_info);
+ const struct stepping_info *si = intel_get_stepping_info(i915, &display_info);
+ enum intel_dmc_id dmc_id;
u32 readcount = 0;
u32 r, offset;
- int id;
if (!fw)
return;
@@ -813,62 +887,79 @@ static void parse_dmc_fw(struct drm_i915_private *dev_priv,
readcount += r;
- for (id = 0; id < DMC_FW_MAX; id++) {
- if (!dev_priv->display.dmc.dmc_info[id].present)
+ for_each_dmc_id(dmc_id) {
+ if (!dmc->dmc_info[dmc_id].present)
continue;
- offset = readcount + dmc->dmc_info[id].dmc_offset * 4;
+ offset = readcount + dmc->dmc_info[dmc_id].dmc_offset * 4;
if (offset > fw->size) {
- drm_err(&dev_priv->drm, "Reading beyond the fw_size\n");
+ drm_err(&i915->drm, "Reading beyond the fw_size\n");
continue;
}
dmc_header = (struct intel_dmc_header_base *)&fw->data[offset];
- parse_dmc_fw_header(dmc, dmc_header, fw->size - offset, id);
+ parse_dmc_fw_header(dmc, dmc_header, fw->size - offset, dmc_id);
}
}
-static void intel_dmc_runtime_pm_get(struct drm_i915_private *dev_priv)
+static void intel_dmc_runtime_pm_get(struct drm_i915_private *i915)
{
- drm_WARN_ON(&dev_priv->drm, dev_priv->display.dmc.wakeref);
- dev_priv->display.dmc.wakeref =
- intel_display_power_get(dev_priv, POWER_DOMAIN_INIT);
+ drm_WARN_ON(&i915->drm, i915->display.dmc.wakeref);
+ i915->display.dmc.wakeref = intel_display_power_get(i915, POWER_DOMAIN_INIT);
}
-static void intel_dmc_runtime_pm_put(struct drm_i915_private *dev_priv)
+static void intel_dmc_runtime_pm_put(struct drm_i915_private *i915)
{
intel_wakeref_t wakeref __maybe_unused =
- fetch_and_zero(&dev_priv->display.dmc.wakeref);
+ fetch_and_zero(&i915->display.dmc.wakeref);
- intel_display_power_put(dev_priv, POWER_DOMAIN_INIT, wakeref);
+ intel_display_power_put(i915, POWER_DOMAIN_INIT, wakeref);
+}
+
+static const char *dmc_fallback_path(struct drm_i915_private *i915)
+{
+ if (IS_ALDERLAKE_P(i915))
+ return ADLP_DMC_FALLBACK_PATH;
+
+ return NULL;
}
static void dmc_load_work_fn(struct work_struct *work)
{
- struct drm_i915_private *dev_priv;
- struct intel_dmc *dmc;
+ struct intel_dmc *dmc = container_of(work, typeof(*dmc), work);
+ struct drm_i915_private *i915 = dmc->i915;
const struct firmware *fw = NULL;
+ const char *fallback_path;
+ int err;
+
+ err = request_firmware(&fw, dmc->fw_path, i915->drm.dev);
+
+ if (err == -ENOENT && !i915->params.dmc_firmware_path) {
+ fallback_path = dmc_fallback_path(i915);
+ if (fallback_path) {
+ drm_dbg_kms(&i915->drm, "%s not found, falling back to %s\n",
+ dmc->fw_path, fallback_path);
+ err = request_firmware(&fw, fallback_path, i915->drm.dev);
+ if (err == 0)
+ dmc->fw_path = fallback_path;
+ }
+ }
- dev_priv = container_of(work, typeof(*dev_priv), display.dmc.work);
- dmc = &dev_priv->display.dmc;
-
- request_firmware(&fw, dev_priv->display.dmc.fw_path, dev_priv->drm.dev);
- parse_dmc_fw(dev_priv, fw);
+ parse_dmc_fw(dmc, fw);
- if (intel_dmc_has_payload(dev_priv)) {
- intel_dmc_load_program(dev_priv);
- intel_dmc_runtime_pm_put(dev_priv);
+ if (intel_dmc_has_payload(i915)) {
+ intel_dmc_load_program(i915);
+ intel_dmc_runtime_pm_put(i915);
- drm_info(&dev_priv->drm,
- "Finished loading DMC firmware %s (v%u.%u)\n",
- dev_priv->display.dmc.fw_path, DMC_VERSION_MAJOR(dmc->version),
+ drm_info(&i915->drm, "Finished loading DMC firmware %s (v%u.%u)\n",
+ dmc->fw_path, DMC_VERSION_MAJOR(dmc->version),
DMC_VERSION_MINOR(dmc->version));
} else {
- drm_notice(&dev_priv->drm,
+ drm_notice(&i915->drm,
"Failed to load DMC firmware %s."
" Disabling runtime power management.\n",
dmc->fw_path);
- drm_notice(&dev_priv->drm, "DMC firmware homepage: %s",
+ drm_notice(&i915->drm, "DMC firmware homepage: %s",
INTEL_UC_FIRMWARE_URL);
}
@@ -876,19 +967,17 @@ static void dmc_load_work_fn(struct work_struct *work)
}
/**
- * intel_dmc_ucode_init() - initialize the firmware loading.
- * @dev_priv: i915 drm device.
+ * intel_dmc_init() - initialize the firmware loading.
+ * @i915: i915 drm device.
*
* This function is called at the time of loading the display driver to read
* firmware from a .bin file and copied into a internal memory.
*/
-void intel_dmc_ucode_init(struct drm_i915_private *dev_priv)
+void intel_dmc_init(struct drm_i915_private *i915)
{
- struct intel_dmc *dmc = &dev_priv->display.dmc;
-
- INIT_WORK(&dev_priv->display.dmc.work, dmc_load_work_fn);
+ struct intel_dmc *dmc;
- if (!HAS_DMC(dev_priv))
+ if (!HAS_DMC(i915))
return;
/*
@@ -899,180 +988,195 @@ void intel_dmc_ucode_init(struct drm_i915_private *dev_priv)
* suspend as runtime suspend *requires* a working DMC for whatever
* reason.
*/
- intel_dmc_runtime_pm_get(dev_priv);
+ intel_dmc_runtime_pm_get(i915);
+
+ dmc = kzalloc(sizeof(*dmc), GFP_KERNEL);
+ if (!dmc)
+ return;
+
+ dmc->i915 = i915;
+
+ INIT_WORK(&dmc->work, dmc_load_work_fn);
- if (IS_DG2(dev_priv)) {
+ if (IS_METEORLAKE(i915)) {
+ dmc->fw_path = MTL_DMC_PATH;
+ dmc->max_fw_size = XELPDP_DMC_MAX_FW_SIZE;
+ } else if (IS_DG2(i915)) {
dmc->fw_path = DG2_DMC_PATH;
- dmc->required_version = DG2_DMC_VERSION_REQUIRED;
dmc->max_fw_size = DISPLAY_VER13_DMC_MAX_FW_SIZE;
- } else if (IS_ALDERLAKE_P(dev_priv)) {
+ } else if (IS_ALDERLAKE_P(i915)) {
dmc->fw_path = ADLP_DMC_PATH;
- dmc->required_version = ADLP_DMC_VERSION_REQUIRED;
dmc->max_fw_size = DISPLAY_VER13_DMC_MAX_FW_SIZE;
- } else if (IS_ALDERLAKE_S(dev_priv)) {
+ } else if (IS_ALDERLAKE_S(i915)) {
dmc->fw_path = ADLS_DMC_PATH;
- dmc->required_version = ADLS_DMC_VERSION_REQUIRED;
dmc->max_fw_size = DISPLAY_VER12_DMC_MAX_FW_SIZE;
- } else if (IS_DG1(dev_priv)) {
+ } else if (IS_DG1(i915)) {
dmc->fw_path = DG1_DMC_PATH;
- dmc->required_version = DG1_DMC_VERSION_REQUIRED;
dmc->max_fw_size = DISPLAY_VER12_DMC_MAX_FW_SIZE;
- } else if (IS_ROCKETLAKE(dev_priv)) {
+ } else if (IS_ROCKETLAKE(i915)) {
dmc->fw_path = RKL_DMC_PATH;
- dmc->required_version = RKL_DMC_VERSION_REQUIRED;
dmc->max_fw_size = DISPLAY_VER12_DMC_MAX_FW_SIZE;
- } else if (IS_TIGERLAKE(dev_priv)) {
+ } else if (IS_TIGERLAKE(i915)) {
dmc->fw_path = TGL_DMC_PATH;
- dmc->required_version = TGL_DMC_VERSION_REQUIRED;
dmc->max_fw_size = DISPLAY_VER12_DMC_MAX_FW_SIZE;
- } else if (DISPLAY_VER(dev_priv) == 11) {
+ } else if (DISPLAY_VER(i915) == 11) {
dmc->fw_path = ICL_DMC_PATH;
- dmc->required_version = ICL_DMC_VERSION_REQUIRED;
dmc->max_fw_size = ICL_DMC_MAX_FW_SIZE;
- } else if (IS_GEMINILAKE(dev_priv)) {
+ } else if (IS_GEMINILAKE(i915)) {
dmc->fw_path = GLK_DMC_PATH;
- dmc->required_version = GLK_DMC_VERSION_REQUIRED;
dmc->max_fw_size = GLK_DMC_MAX_FW_SIZE;
- } else if (IS_KABYLAKE(dev_priv) ||
- IS_COFFEELAKE(dev_priv) ||
- IS_COMETLAKE(dev_priv)) {
+ } else if (IS_KABYLAKE(i915) ||
+ IS_COFFEELAKE(i915) ||
+ IS_COMETLAKE(i915)) {
dmc->fw_path = KBL_DMC_PATH;
- dmc->required_version = KBL_DMC_VERSION_REQUIRED;
dmc->max_fw_size = KBL_DMC_MAX_FW_SIZE;
- } else if (IS_SKYLAKE(dev_priv)) {
+ } else if (IS_SKYLAKE(i915)) {
dmc->fw_path = SKL_DMC_PATH;
- dmc->required_version = SKL_DMC_VERSION_REQUIRED;
dmc->max_fw_size = SKL_DMC_MAX_FW_SIZE;
- } else if (IS_BROXTON(dev_priv)) {
+ } else if (IS_BROXTON(i915)) {
dmc->fw_path = BXT_DMC_PATH;
- dmc->required_version = BXT_DMC_VERSION_REQUIRED;
dmc->max_fw_size = BXT_DMC_MAX_FW_SIZE;
}
- if (dev_priv->params.dmc_firmware_path) {
- if (strlen(dev_priv->params.dmc_firmware_path) == 0) {
- dmc->fw_path = NULL;
- drm_info(&dev_priv->drm,
+ if (i915->params.dmc_firmware_path) {
+ if (strlen(i915->params.dmc_firmware_path) == 0) {
+ drm_info(&i915->drm,
"Disabling DMC firmware and runtime PM\n");
- return;
+ goto out;
}
- dmc->fw_path = dev_priv->params.dmc_firmware_path;
- /* Bypass version check for firmware override. */
- dmc->required_version = 0;
+ dmc->fw_path = i915->params.dmc_firmware_path;
}
if (!dmc->fw_path) {
- drm_dbg_kms(&dev_priv->drm,
+ drm_dbg_kms(&i915->drm,
"No known DMC firmware for platform, disabling runtime PM\n");
- return;
+ goto out;
}
- drm_dbg_kms(&dev_priv->drm, "Loading %s\n", dmc->fw_path);
- schedule_work(&dev_priv->display.dmc.work);
+ i915->display.dmc.dmc = dmc;
+
+ drm_dbg_kms(&i915->drm, "Loading %s\n", dmc->fw_path);
+ schedule_work(&dmc->work);
+
+ return;
+
+out:
+ kfree(dmc);
}
/**
- * intel_dmc_ucode_suspend() - prepare DMC firmware before system suspend
- * @dev_priv: i915 drm device
+ * intel_dmc_suspend() - prepare DMC firmware before system suspend
+ * @i915: i915 drm device
*
* Prepare the DMC firmware before entering system suspend. This includes
* flushing pending work items and releasing any resources acquired during
* init.
*/
-void intel_dmc_ucode_suspend(struct drm_i915_private *dev_priv)
+void intel_dmc_suspend(struct drm_i915_private *i915)
{
- if (!HAS_DMC(dev_priv))
+ struct intel_dmc *dmc = i915_to_dmc(i915);
+
+ if (!HAS_DMC(i915))
return;
- flush_work(&dev_priv->display.dmc.work);
+ if (dmc)
+ flush_work(&dmc->work);
/* Drop the reference held in case DMC isn't loaded. */
- if (!intel_dmc_has_payload(dev_priv))
- intel_dmc_runtime_pm_put(dev_priv);
+ if (!intel_dmc_has_payload(i915))
+ intel_dmc_runtime_pm_put(i915);
}
/**
- * intel_dmc_ucode_resume() - init DMC firmware during system resume
- * @dev_priv: i915 drm device
+ * intel_dmc_resume() - init DMC firmware during system resume
+ * @i915: i915 drm device
*
* Reinitialize the DMC firmware during system resume, reacquiring any
- * resources released in intel_dmc_ucode_suspend().
+ * resources released in intel_dmc_suspend().
*/
-void intel_dmc_ucode_resume(struct drm_i915_private *dev_priv)
+void intel_dmc_resume(struct drm_i915_private *i915)
{
- if (!HAS_DMC(dev_priv))
+ if (!HAS_DMC(i915))
return;
/*
* Reacquire the reference to keep RPM disabled in case DMC isn't
* loaded.
*/
- if (!intel_dmc_has_payload(dev_priv))
- intel_dmc_runtime_pm_get(dev_priv);
+ if (!intel_dmc_has_payload(i915))
+ intel_dmc_runtime_pm_get(i915);
}
/**
- * intel_dmc_ucode_fini() - unload the DMC firmware.
- * @dev_priv: i915 drm device.
+ * intel_dmc_fini() - unload the DMC firmware.
+ * @i915: i915 drm device.
*
* Firmmware unloading includes freeing the internal memory and reset the
* firmware loading status.
*/
-void intel_dmc_ucode_fini(struct drm_i915_private *dev_priv)
+void intel_dmc_fini(struct drm_i915_private *i915)
{
- int id;
+ struct intel_dmc *dmc = i915_to_dmc(i915);
+ enum intel_dmc_id dmc_id;
- if (!HAS_DMC(dev_priv))
+ if (!HAS_DMC(i915))
return;
- intel_dmc_ucode_suspend(dev_priv);
- drm_WARN_ON(&dev_priv->drm, dev_priv->display.dmc.wakeref);
+ intel_dmc_suspend(i915);
+ drm_WARN_ON(&i915->drm, i915->display.dmc.wakeref);
- for (id = 0; id < DMC_FW_MAX; id++)
- kfree(dev_priv->display.dmc.dmc_info[id].payload);
+ if (dmc) {
+ for_each_dmc_id(dmc_id)
+ kfree(dmc->dmc_info[dmc_id].payload);
+
+ kfree(dmc);
+ i915->display.dmc.dmc = NULL;
+ }
}
void intel_dmc_print_error_state(struct drm_i915_error_state_buf *m,
struct drm_i915_private *i915)
{
- struct intel_dmc *dmc = &i915->display.dmc;
+ struct intel_dmc *dmc = i915_to_dmc(i915);
if (!HAS_DMC(i915))
return;
+ i915_error_printf(m, "DMC initialized: %s\n", str_yes_no(dmc));
i915_error_printf(m, "DMC loaded: %s\n",
str_yes_no(intel_dmc_has_payload(i915)));
- i915_error_printf(m, "DMC fw version: %d.%d\n",
- DMC_VERSION_MAJOR(dmc->version),
- DMC_VERSION_MINOR(dmc->version));
+ if (dmc)
+ i915_error_printf(m, "DMC fw version: %d.%d\n",
+ DMC_VERSION_MAJOR(dmc->version),
+ DMC_VERSION_MINOR(dmc->version));
}
static int intel_dmc_debugfs_status_show(struct seq_file *m, void *unused)
{
struct drm_i915_private *i915 = m->private;
+ struct intel_dmc *dmc = i915_to_dmc(i915);
intel_wakeref_t wakeref;
- struct intel_dmc *dmc;
i915_reg_t dc5_reg, dc6_reg = INVALID_MMIO_REG;
if (!HAS_DMC(i915))
return -ENODEV;
- dmc = &i915->display.dmc;
-
wakeref = intel_runtime_pm_get(&i915->runtime_pm);
+ seq_printf(m, "DMC initialized: %s\n", str_yes_no(dmc));
seq_printf(m, "fw loaded: %s\n",
str_yes_no(intel_dmc_has_payload(i915)));
- seq_printf(m, "path: %s\n", dmc->fw_path);
- seq_printf(m, "Pipe A fw support: %s\n",
+ seq_printf(m, "path: %s\n", dmc ? dmc->fw_path : "N/A");
+ seq_printf(m, "Pipe A fw needed: %s\n",
str_yes_no(GRAPHICS_VER(i915) >= 12));
seq_printf(m, "Pipe A fw loaded: %s\n",
- str_yes_no(dmc->dmc_info[DMC_FW_PIPEA].payload));
- seq_printf(m, "Pipe B fw support: %s\n",
- str_yes_no(IS_ALDERLAKE_P(i915)));
+ str_yes_no(has_dmc_id_fw(i915, DMC_FW_PIPEA)));
+ seq_printf(m, "Pipe B fw needed: %s\n",
+ str_yes_no(IS_ALDERLAKE_P(i915) ||
+ DISPLAY_VER(i915) >= 14));
seq_printf(m, "Pipe B fw loaded: %s\n",
- str_yes_no(dmc->dmc_info[DMC_FW_PIPEB].payload));
+ str_yes_no(has_dmc_id_fw(i915, DMC_FW_PIPEB)));
if (!intel_dmc_has_payload(i915))
goto out;
@@ -1081,22 +1185,19 @@ static int intel_dmc_debugfs_status_show(struct seq_file *m, void *unused)
DMC_VERSION_MINOR(dmc->version));
if (DISPLAY_VER(i915) >= 12) {
- if (IS_DGFX(i915)) {
+ i915_reg_t dc3co_reg;
+
+ if (IS_DGFX(i915) || DISPLAY_VER(i915) >= 14) {
+ dc3co_reg = DG1_DMC_DEBUG3;
dc5_reg = DG1_DMC_DEBUG_DC5_COUNT;
} else {
+ dc3co_reg = TGL_DMC_DEBUG3;
dc5_reg = TGL_DMC_DEBUG_DC5_COUNT;
dc6_reg = TGL_DMC_DEBUG_DC6_COUNT;
}
- /*
- * NOTE: DMC_DEBUG3 is a general purpose reg.
- * According to B.Specs:49196 DMC f/w reuses DC5/6 counter
- * reg for DC3CO debugging and validation,
- * but TGL DMC f/w is using DMC_DEBUG3 reg for DC3CO counter.
- */
seq_printf(m, "DC3CO count: %d\n",
- intel_de_read(i915, IS_DGFX(i915) ?
- DG1_DMC_DEBUG3 : TGL_DMC_DEBUG3));
+ intel_de_read(i915, dc3co_reg));
} else {
dc5_reg = IS_BROXTON(i915) ? BXT_DMC_DC3_DC5_COUNT :
SKL_DMC_DC3_DC5_COUNT;
@@ -1109,9 +1210,10 @@ static int intel_dmc_debugfs_status_show(struct seq_file *m, void *unused)
seq_printf(m, "DC5 -> DC6 count: %d\n",
intel_de_read(i915, dc6_reg));
-out:
seq_printf(m, "program base: 0x%08x\n",
intel_de_read(i915, DMC_PROGRAM(dmc->dmc_info[DMC_FW_MAIN].start_mmioaddr, 0)));
+
+out:
seq_printf(m, "ssp base: 0x%08x\n",
intel_de_read(i915, DMC_SSP_BASE));
seq_printf(m, "htp: 0x%08x\n", intel_de_read(i915, DMC_HTP_SKL));
diff --git a/drivers/gpu/drm/i915/display/intel_dmc.h b/drivers/gpu/drm/i915/display/intel_dmc.h
index 67e03315ef99..fd607afff2ef 100644
--- a/drivers/gpu/drm/i915/display/intel_dmc.h
+++ b/drivers/gpu/drm/i915/display/intel_dmc.h
@@ -6,51 +6,20 @@
#ifndef __INTEL_DMC_H__
#define __INTEL_DMC_H__
-#include "i915_reg_defs.h"
-#include "intel_wakeref.h"
-#include <linux/workqueue.h>
+#include <linux/types.h>
struct drm_i915_error_state_buf;
struct drm_i915_private;
+enum pipe;
-enum {
- DMC_FW_MAIN = 0,
- DMC_FW_PIPEA,
- DMC_FW_PIPEB,
- DMC_FW_PIPEC,
- DMC_FW_PIPED,
- DMC_FW_MAX
-};
-
-struct intel_dmc {
- struct work_struct work;
- const char *fw_path;
- u32 required_version;
- u32 max_fw_size; /* bytes */
- u32 version;
- struct dmc_fw_info {
- u32 mmio_count;
- i915_reg_t mmioaddr[20];
- u32 mmiodata[20];
- u32 dmc_offset;
- u32 start_mmioaddr;
- u32 dmc_fw_size; /*dwords */
- u32 *payload;
- bool present;
- } dmc_info[DMC_FW_MAX];
-
- u32 dc_state;
- u32 target_dc_state;
- u32 allowed_dc_mask;
- intel_wakeref_t wakeref;
-};
-
-void intel_dmc_ucode_init(struct drm_i915_private *i915);
+void intel_dmc_init(struct drm_i915_private *i915);
void intel_dmc_load_program(struct drm_i915_private *i915);
void intel_dmc_disable_program(struct drm_i915_private *i915);
-void intel_dmc_ucode_fini(struct drm_i915_private *i915);
-void intel_dmc_ucode_suspend(struct drm_i915_private *i915);
-void intel_dmc_ucode_resume(struct drm_i915_private *i915);
+void intel_dmc_enable_pipe(struct drm_i915_private *i915, enum pipe pipe);
+void intel_dmc_disable_pipe(struct drm_i915_private *i915, enum pipe pipe);
+void intel_dmc_fini(struct drm_i915_private *i915);
+void intel_dmc_suspend(struct drm_i915_private *i915);
+void intel_dmc_resume(struct drm_i915_private *i915);
bool intel_dmc_has_payload(struct drm_i915_private *i915);
void intel_dmc_debugfs_register(struct drm_i915_private *i915);
void intel_dmc_print_error_state(struct drm_i915_error_state_buf *m,
diff --git a/drivers/gpu/drm/i915/display/intel_dmc_regs.h b/drivers/gpu/drm/i915/display/intel_dmc_regs.h
index 5e5e41644ddf..cf10094acae3 100644
--- a/drivers/gpu/drm/i915/display/intel_dmc_regs.h
+++ b/drivers/gpu/drm/i915/display/intel_dmc_regs.h
@@ -11,6 +11,16 @@
#define DMC_PROGRAM(addr, i) _MMIO((addr) + (i) * 4)
#define DMC_SSP_BASE_ADDR_GEN9 0x00002FC0
+#define _PIPEDMC_CONTROL_A 0x45250
+#define _PIPEDMC_CONTROL_B 0x45254
+#define PIPEDMC_CONTROL(pipe) _MMIO_PIPE(pipe, \
+ _PIPEDMC_CONTROL_A, \
+ _PIPEDMC_CONTROL_B)
+#define PIPEDMC_ENABLE REG_BIT(0)
+
+#define MTL_PIPEDMC_CONTROL _MMIO(0x45250)
+#define PIPEDMC_ENABLE_MTL(pipe) REG_BIT(((pipe) - PIPE_A) * 4)
+
#define _ADLP_PIPEDMC_REG_MMIO_BASE_A 0x5f000
#define _TGL_PIPEDMC_REG_MMIO_BASE_A 0x92000
diff --git a/drivers/gpu/drm/i915/display/intel_dp.c b/drivers/gpu/drm/i915/display/intel_dp.c
index 2b5bc95a8b0d..529ee22be872 100644
--- a/drivers/gpu/drm/i915/display/intel_dp.c
+++ b/drivers/gpu/drm/i915/display/intel_dp.c
@@ -46,6 +46,7 @@
#include "g4x_dp.h"
#include "i915_debugfs.h"
#include "i915_drv.h"
+#include "i915_reg.h"
#include "intel_atomic.h"
#include "intel_audio.h"
#include "intel_backlight.h"
@@ -75,6 +76,7 @@
#include "intel_tc.h"
#include "intel_vdsc.h"
#include "intel_vrr.h"
+#include "intel_crtc_state_dump.h"
/* DP DSC throughput values used for slice count calculations KPixels/s */
#define DP_DSC_PEAK_PIXEL_RATE 2720000
@@ -116,7 +118,6 @@ bool intel_dp_is_edp(struct intel_dp *intel_dp)
}
static void intel_dp_unset_edid(struct intel_dp *intel_dp);
-static int intel_dp_dsc_compute_bpp(struct intel_dp *intel_dp, u8 dsc_max_bpc);
/* Is link rate UHBR and thus 128b/132b? */
bool intel_dp_is_uhbr(const struct intel_crtc_state *crtc_state)
@@ -288,7 +289,7 @@ static int intel_dp_max_common_rate(struct intel_dp *intel_dp)
static int intel_dp_max_source_lane_count(struct intel_digital_port *dig_port)
{
- int vbt_max_lanes = intel_bios_dp_max_lane_count(&dig_port->base);
+ int vbt_max_lanes = intel_bios_dp_max_lane_count(dig_port->base.devdata);
int max_lanes = dig_port->max_lanes;
if (vbt_max_lanes)
@@ -425,7 +426,7 @@ static int vbt_max_link_rate(struct intel_dp *intel_dp)
struct intel_encoder *encoder = &dp_to_dig_port(intel_dp)->base;
int max_rate;
- max_rate = intel_bios_dp_max_link_rate(encoder);
+ max_rate = intel_bios_dp_max_link_rate(encoder->devdata);
if (intel_dp_is_edp(intel_dp)) {
struct intel_connector *connector = intel_dp->attached_connector;
@@ -672,23 +673,75 @@ small_joiner_ram_size_bits(struct drm_i915_private *i915)
return 6144 * 8;
}
-static u16 intel_dp_dsc_get_output_bpp(struct drm_i915_private *i915,
- u32 link_clock, u32 lane_count,
- u32 mode_clock, u32 mode_hdisplay,
- bool bigjoiner,
- u32 pipe_bpp)
+u32 intel_dp_dsc_nearest_valid_bpp(struct drm_i915_private *i915, u32 bpp, u32 pipe_bpp)
{
- u32 bits_per_pixel, max_bpp_small_joiner_ram;
+ u32 bits_per_pixel = bpp;
int i;
+ /* Error out if the max bpp is less than smallest allowed valid bpp */
+ if (bits_per_pixel < valid_dsc_bpp[0]) {
+ drm_dbg_kms(&i915->drm, "Unsupported BPP %u, min %u\n",
+ bits_per_pixel, valid_dsc_bpp[0]);
+ return 0;
+ }
+
+ /* From XE_LPD onwards we support from bpc upto uncompressed bpp-1 BPPs */
+ if (DISPLAY_VER(i915) >= 13) {
+ bits_per_pixel = min(bits_per_pixel, pipe_bpp - 1);
+
+ /*
+ * According to BSpec, 27 is the max DSC output bpp,
+ * 8 is the min DSC output bpp
+ */
+ bits_per_pixel = clamp_t(u32, bits_per_pixel, 8, 27);
+ } else {
+ /* Find the nearest match in the array of known BPPs from VESA */
+ for (i = 0; i < ARRAY_SIZE(valid_dsc_bpp) - 1; i++) {
+ if (bits_per_pixel < valid_dsc_bpp[i + 1])
+ break;
+ }
+ drm_dbg_kms(&i915->drm, "Set dsc bpp from %d to VESA %d\n",
+ bits_per_pixel, valid_dsc_bpp[i]);
+
+ bits_per_pixel = valid_dsc_bpp[i];
+ }
+
+ return bits_per_pixel;
+}
+
+u16 intel_dp_dsc_get_output_bpp(struct drm_i915_private *i915,
+ u32 link_clock, u32 lane_count,
+ u32 mode_clock, u32 mode_hdisplay,
+ bool bigjoiner,
+ u32 pipe_bpp,
+ u32 timeslots)
+{
+ u32 bits_per_pixel, max_bpp_small_joiner_ram;
+
/*
* Available Link Bandwidth(Kbits/sec) = (NumberOfLanes)*
- * (LinkSymbolClock)* 8 * (TimeSlotsPerMTP)
- * for SST -> TimeSlotsPerMTP is 1,
- * for MST -> TimeSlotsPerMTP has to be calculated
+ * (LinkSymbolClock)* 8 * (TimeSlots / 64)
+ * for SST -> TimeSlots is 64(i.e all TimeSlots that are available)
+ * for MST -> TimeSlots has to be calculated, based on mode requirements
+ *
+ * Due to FEC overhead, the available bw is reduced to 97.2261%.
+ * To support the given mode:
+ * Bandwidth required should be <= Available link Bandwidth * FEC Overhead
+ * =>ModeClock * bits_per_pixel <= Available Link Bandwidth * FEC Overhead
+ * =>bits_per_pixel <= Available link Bandwidth * FEC Overhead / ModeClock
+ * =>bits_per_pixel <= (NumberOfLanes * LinkSymbolClock) * 8 (TimeSlots / 64) /
+ * (ModeClock / FEC Overhead)
+ * =>bits_per_pixel <= (NumberOfLanes * LinkSymbolClock * TimeSlots) /
+ * (ModeClock / FEC Overhead * 8)
*/
- bits_per_pixel = (link_clock * lane_count * 8) /
- intel_dp_mode_to_fec_clock(mode_clock);
+ bits_per_pixel = ((link_clock * lane_count) * timeslots) /
+ (intel_dp_mode_to_fec_clock(mode_clock) * 8);
+
+ drm_dbg_kms(&i915->drm, "Max link bpp is %u for %u timeslots "
+ "total bw %u pixel clock %u\n",
+ bits_per_pixel, timeslots,
+ (link_clock * lane_count * 8),
+ intel_dp_mode_to_fec_clock(mode_clock));
/* Small Joiner Check: output bpp <= joiner RAM (bits) / Horiz. width */
max_bpp_small_joiner_ram = small_joiner_ram_size_bits(i915) /
@@ -711,24 +764,7 @@ static u16 intel_dp_dsc_get_output_bpp(struct drm_i915_private *i915,
bits_per_pixel = min(bits_per_pixel, max_bpp_bigjoiner);
}
- /* Error out if the max bpp is less than smallest allowed valid bpp */
- if (bits_per_pixel < valid_dsc_bpp[0]) {
- drm_dbg_kms(&i915->drm, "Unsupported BPP %u, min %u\n",
- bits_per_pixel, valid_dsc_bpp[0]);
- return 0;
- }
-
- /* From XE_LPD onwards we support from bpc upto uncompressed bpp-1 BPPs */
- if (DISPLAY_VER(i915) >= 13) {
- bits_per_pixel = min(bits_per_pixel, pipe_bpp - 1);
- } else {
- /* Find the nearest match in the array of known BPPs from VESA */
- for (i = 0; i < ARRAY_SIZE(valid_dsc_bpp) - 1; i++) {
- if (bits_per_pixel < valid_dsc_bpp[i + 1])
- break;
- }
- bits_per_pixel = valid_dsc_bpp[i];
- }
+ bits_per_pixel = intel_dp_dsc_nearest_valid_bpp(i915, bits_per_pixel, pipe_bpp);
/*
* Compressed BPP in U6.4 format so multiply by 16, for Gen 11,
@@ -737,9 +773,9 @@ static u16 intel_dp_dsc_get_output_bpp(struct drm_i915_private *i915,
return bits_per_pixel << 4;
}
-static u8 intel_dp_dsc_get_slice_count(struct intel_dp *intel_dp,
- int mode_clock, int mode_hdisplay,
- bool bigjoiner)
+u8 intel_dp_dsc_get_slice_count(struct intel_dp *intel_dp,
+ int mode_clock, int mode_hdisplay,
+ bool bigjoiner)
{
struct drm_i915_private *i915 = dp_to_i915(intel_dp);
u8 min_slice_count, i;
@@ -752,6 +788,13 @@ static u8 intel_dp_dsc_get_slice_count(struct intel_dp *intel_dp,
min_slice_count = DIV_ROUND_UP(mode_clock,
DP_DSC_MAX_ENC_THROUGHPUT_1);
+ /*
+ * Due to some DSC engine BW limitations, we need to enable second
+ * slice and VDSC engine, whenever we approach close enough to max CDCLK
+ */
+ if (mode_clock >= ((i915->display.cdclk.max_cdclk_freq * 85) / 100))
+ min_slice_count = max_t(u8, min_slice_count, 2);
+
max_slice_width = drm_dp_dsc_sink_max_slice_width(intel_dp->dsc_dpcd);
if (max_slice_width < DP_DSC_MIN_SLICE_WIDTH_VALUE) {
drm_dbg_kms(&i915->drm,
@@ -791,6 +834,9 @@ intel_dp_output_format(struct intel_connector *connector,
{
struct intel_dp *intel_dp = intel_attached_dp(connector);
+ if (intel_dp->force_dsc_output_format)
+ return intel_dp->force_dsc_output_format;
+
if (!connector->base.ycbcr_420_allowed || !ycbcr_420_output)
return INTEL_OUTPUT_FORMAT_RGB;
@@ -946,8 +992,8 @@ intel_dp_mode_valid_downstream(struct intel_connector *connector,
return MODE_OK;
}
-static bool intel_dp_need_bigjoiner(struct intel_dp *intel_dp,
- int hdisplay, int clock)
+bool intel_dp_need_bigjoiner(struct intel_dp *intel_dp,
+ int hdisplay, int clock)
{
struct drm_i915_private *i915 = dp_to_i915(intel_dp);
@@ -973,9 +1019,6 @@ intel_dp_mode_valid(struct drm_connector *_connector,
enum drm_mode_status status;
bool dsc = false, bigjoiner = false;
- if (mode->flags & DRM_MODE_FLAG_DBLSCAN)
- return MODE_NO_DBLESCAN;
-
if (mode->flags & DRM_MODE_FLAG_DBLCLK)
return MODE_H_ILLEGAL;
@@ -1012,7 +1055,7 @@ intel_dp_mode_valid(struct drm_connector *_connector,
* Output bpp is stored in 6.4 format so right shift by 4 to get the
* integer value since we support only integer values of bpp.
*/
- if (DISPLAY_VER(dev_priv) >= 10 &&
+ if (HAS_DSC(dev_priv) &&
drm_dp_sink_supports_dsc(intel_dp->dsc_dpcd)) {
/*
* TBD pass the connector BPC,
@@ -1034,7 +1077,7 @@ intel_dp_mode_valid(struct drm_connector *_connector,
target_clock,
mode->hdisplay,
bigjoiner,
- pipe_bpp) >> 4;
+ pipe_bpp, 64) >> 4;
dsc_slice_count =
intel_dp_dsc_get_slice_count(intel_dp,
target_clock,
@@ -1363,7 +1406,7 @@ intel_dp_compute_link_config_wide(struct intel_dp *intel_dp,
return -EINVAL;
}
-static int intel_dp_dsc_compute_bpp(struct intel_dp *intel_dp, u8 max_req_bpc)
+int intel_dp_dsc_compute_bpp(struct intel_dp *intel_dp, u8 max_req_bpc)
{
struct drm_i915_private *i915 = dp_to_i915(intel_dp);
int i, num_bpc;
@@ -1399,6 +1442,28 @@ static int intel_dp_sink_dsc_version_minor(struct intel_dp *intel_dp)
DP_DSC_MINOR_SHIFT;
}
+static int intel_dp_get_slice_height(int vactive)
+{
+ int slice_height;
+
+ /*
+ * VDSC 1.2a spec in Section 3.8 Options for Slices implies that 108
+ * lines is an optimal slice height, but any size can be used as long as
+ * vertical active integer multiple and maximum vertical slice count
+ * requirements are met.
+ */
+ for (slice_height = 108; slice_height <= vactive; slice_height += 2)
+ if (vactive % slice_height == 0)
+ return slice_height;
+
+ /*
+ * Highly unlikely we reach here as most of the resolutions will end up
+ * finding appropriate slice_height in above loop but returning
+ * slice_height as 2 here as it should work with all resolutions.
+ */
+ return 2;
+}
+
static int intel_dp_dsc_compute_params(struct intel_encoder *encoder,
struct intel_crtc_state *crtc_state)
{
@@ -1417,17 +1482,7 @@ static int intel_dp_dsc_compute_params(struct intel_encoder *encoder,
vdsc_cfg->rc_model_size = DSC_RC_MODEL_SIZE_CONST;
vdsc_cfg->pic_height = crtc_state->hw.adjusted_mode.crtc_vdisplay;
- /*
- * Slice Height of 8 works for all currently available panels. So start
- * with that if pic_height is an integral multiple of 8. Eventually add
- * logic to try multiple slice heights.
- */
- if (vdsc_cfg->pic_height % 8 == 0)
- vdsc_cfg->slice_height = 8;
- else if (vdsc_cfg->pic_height % 4 == 0)
- vdsc_cfg->slice_height = 4;
- else
- vdsc_cfg->slice_height = 2;
+ vdsc_cfg->slice_height = intel_dp_get_slice_height(vdsc_cfg->pic_height);
ret = intel_dsc_compute_params(crtc_state);
if (ret)
@@ -1439,9 +1494,10 @@ static int intel_dp_dsc_compute_params(struct intel_encoder *encoder,
vdsc_cfg->dsc_version_minor =
min(intel_dp_source_dsc_version_minor(intel_dp),
intel_dp_sink_dsc_version_minor(intel_dp));
-
- vdsc_cfg->convert_rgb = intel_dp->dsc_dpcd[DP_DSC_DEC_COLOR_FORMAT_CAP - DP_DSC_SUPPORT] &
- DP_DSC_RGB;
+ if (vdsc_cfg->convert_rgb)
+ vdsc_cfg->convert_rgb =
+ intel_dp->dsc_dpcd[DP_DSC_DEC_COLOR_FORMAT_CAP - DP_DSC_SUPPORT] &
+ DP_DSC_RGB;
line_buf_depth = drm_dp_dsc_sink_line_buf_depth(intel_dp->dsc_dpcd);
if (!line_buf_depth) {
@@ -1464,10 +1520,37 @@ static int intel_dp_dsc_compute_params(struct intel_encoder *encoder,
return drm_dsc_compute_rc_parameters(vdsc_cfg);
}
-static int intel_dp_dsc_compute_config(struct intel_dp *intel_dp,
- struct intel_crtc_state *pipe_config,
- struct drm_connector_state *conn_state,
- struct link_config_limits *limits)
+static bool intel_dp_dsc_supports_format(struct intel_dp *intel_dp,
+ enum intel_output_format output_format)
+{
+ u8 sink_dsc_format;
+
+ switch (output_format) {
+ case INTEL_OUTPUT_FORMAT_RGB:
+ sink_dsc_format = DP_DSC_RGB;
+ break;
+ case INTEL_OUTPUT_FORMAT_YCBCR444:
+ sink_dsc_format = DP_DSC_YCbCr444;
+ break;
+ case INTEL_OUTPUT_FORMAT_YCBCR420:
+ if (min(intel_dp_source_dsc_version_minor(intel_dp),
+ intel_dp_sink_dsc_version_minor(intel_dp)) < 2)
+ return false;
+ sink_dsc_format = DP_DSC_YCbCr420_Native;
+ break;
+ default:
+ return false;
+ }
+
+ return drm_dp_dsc_sink_supports_format(intel_dp->dsc_dpcd, sink_dsc_format);
+}
+
+int intel_dp_dsc_compute_config(struct intel_dp *intel_dp,
+ struct intel_crtc_state *pipe_config,
+ struct drm_connector_state *conn_state,
+ struct link_config_limits *limits,
+ int timeslots,
+ bool compute_pipe_bpp)
{
struct intel_digital_port *dig_port = dp_to_dig_port(intel_dp);
struct drm_i915_private *dev_priv = to_i915(dig_port->base.base.dev);
@@ -1482,7 +1565,13 @@ static int intel_dp_dsc_compute_config(struct intel_dp *intel_dp,
if (!intel_dp_supports_dsc(intel_dp, pipe_config))
return -EINVAL;
- pipe_bpp = intel_dp_dsc_compute_bpp(intel_dp, conn_state->max_requested_bpc);
+ if (!intel_dp_dsc_supports_format(intel_dp, pipe_config->output_format))
+ return -EINVAL;
+
+ if (compute_pipe_bpp)
+ pipe_bpp = intel_dp_dsc_compute_bpp(intel_dp, conn_state->max_requested_bpc);
+ else
+ pipe_bpp = pipe_config->pipe_bpp;
if (intel_dp->force_dsc_bpc) {
pipe_bpp = intel_dp->force_dsc_bpc * 3;
@@ -1512,49 +1601,74 @@ static int intel_dp_dsc_compute_config(struct intel_dp *intel_dp,
pipe_config->dsc.slice_count =
drm_dp_dsc_sink_max_slice_count(intel_dp->dsc_dpcd,
true);
+ if (!pipe_config->dsc.slice_count) {
+ drm_dbg_kms(&dev_priv->drm, "Unsupported Slice Count %d\n",
+ pipe_config->dsc.slice_count);
+ return -EINVAL;
+ }
} else {
- u16 dsc_max_output_bpp;
+ u16 dsc_max_output_bpp = 0;
u8 dsc_dp_slice_count;
- dsc_max_output_bpp =
- intel_dp_dsc_get_output_bpp(dev_priv,
- pipe_config->port_clock,
- pipe_config->lane_count,
- adjusted_mode->crtc_clock,
- adjusted_mode->crtc_hdisplay,
- pipe_config->bigjoiner_pipes,
- pipe_bpp);
+ if (compute_pipe_bpp) {
+ dsc_max_output_bpp =
+ intel_dp_dsc_get_output_bpp(dev_priv,
+ pipe_config->port_clock,
+ pipe_config->lane_count,
+ adjusted_mode->crtc_clock,
+ adjusted_mode->crtc_hdisplay,
+ pipe_config->bigjoiner_pipes,
+ pipe_bpp,
+ timeslots);
+ /*
+ * According to DSC 1.2a Section 4.1.1 Table 4.1 the maximum
+ * supported PPS value can be 63.9375 and with the further
+ * mention that bpp should be programmed double the target bpp
+ * restricting our target bpp to be 31.9375 at max
+ */
+ if (pipe_config->output_format == INTEL_OUTPUT_FORMAT_YCBCR420)
+ dsc_max_output_bpp = min_t(u16, dsc_max_output_bpp, 31 << 4);
+
+ if (!dsc_max_output_bpp) {
+ drm_dbg_kms(&dev_priv->drm,
+ "Compressed BPP not supported\n");
+ return -EINVAL;
+ }
+ }
dsc_dp_slice_count =
intel_dp_dsc_get_slice_count(intel_dp,
adjusted_mode->crtc_clock,
adjusted_mode->crtc_hdisplay,
pipe_config->bigjoiner_pipes);
- if (!dsc_max_output_bpp || !dsc_dp_slice_count) {
+ if (!dsc_dp_slice_count) {
drm_dbg_kms(&dev_priv->drm,
- "Compressed BPP/Slice Count not supported\n");
+ "Compressed Slice Count not supported\n");
return -EINVAL;
}
- pipe_config->dsc.compressed_bpp = min_t(u16,
- dsc_max_output_bpp >> 4,
- pipe_config->pipe_bpp);
+
+ /*
+ * compute pipe bpp is set to false for DP MST DSC case
+ * and compressed_bpp is calculated same time once
+ * vpci timeslots are allocated, because overall bpp
+ * calculation procedure is bit different for MST case.
+ */
+ if (compute_pipe_bpp) {
+ pipe_config->dsc.compressed_bpp = min_t(u16,
+ dsc_max_output_bpp >> 4,
+ pipe_config->pipe_bpp);
+ }
pipe_config->dsc.slice_count = dsc_dp_slice_count;
+ drm_dbg_kms(&dev_priv->drm, "DSC: compressed bpp %d slice count %d\n",
+ pipe_config->dsc.compressed_bpp,
+ pipe_config->dsc.slice_count);
}
-
/*
* VDSC engine operates at 1 Pixel per clock, so if peak pixel rate
* is greater than the maximum Cdclock and if slice count is even
* then we need to use 2 VDSC instances.
*/
- if (adjusted_mode->crtc_clock > dev_priv->display.cdclk.max_cdclk_freq ||
- pipe_config->bigjoiner_pipes) {
- if (pipe_config->dsc.slice_count < 2) {
- drm_dbg_kms(&dev_priv->drm,
- "Cannot split stream to use 2 VDSC instances\n");
- return -EINVAL;
- }
-
+ if (pipe_config->bigjoiner_pipes || pipe_config->dsc.slice_count > 1)
pipe_config->dsc.dsc_split = true;
- }
ret = intel_dp_dsc_compute_params(&dig_port->base, pipe_config);
if (ret < 0) {
@@ -1642,7 +1756,7 @@ intel_dp_compute_link_config(struct intel_encoder *encoder,
str_yes_no(ret), str_yes_no(joiner_needs_dsc),
str_yes_no(intel_dp->force_dsc_en));
ret = intel_dp_dsc_compute_config(intel_dp, pipe_config,
- conn_state, &limits);
+ conn_state, &limits, 64, true);
if (ret < 0)
return ret;
}
@@ -1687,7 +1801,7 @@ bool intel_dp_limited_color_range(const struct intel_crtc_state *crtc_state,
* Our YCbCr output is always limited range.
* crtc_state->limited_color_range only applies to RGB,
* and it must never be set for YCbCr or we risk setting
- * some conflicting bits in PIPECONF which will mess up
+ * some conflicting bits in TRANSCONF which will mess up
* the colors on the monitor.
*/
if (crtc_state->output_format != INTEL_OUTPUT_FORMAT_RGB)
@@ -1951,7 +2065,6 @@ intel_dp_drrs_compute_config(struct intel_connector *connector,
}
static bool intel_dp_has_audio(struct intel_encoder *encoder,
- const struct intel_crtc_state *crtc_state,
const struct drm_connector_state *conn_state)
{
struct drm_i915_private *i915 = to_i915(encoder->base.dev);
@@ -2008,6 +2121,23 @@ intel_dp_compute_output_format(struct intel_encoder *encoder,
return ret;
}
+static void
+intel_dp_audio_compute_config(struct intel_encoder *encoder,
+ struct intel_crtc_state *pipe_config,
+ struct drm_connector_state *conn_state)
+{
+ struct drm_i915_private *i915 = to_i915(encoder->base.dev);
+ struct drm_connector *connector = conn_state->connector;
+
+ pipe_config->sdp_split_enable =
+ intel_dp_has_audio(encoder, conn_state) &&
+ intel_dp_is_uhbr(pipe_config);
+
+ drm_dbg_kms(&i915->drm, "[CONNECTOR:%d:%s] SDP split enable: %s\n",
+ connector->base.id, connector->name,
+ str_yes_no(pipe_config->sdp_split_enable));
+}
+
int
intel_dp_compute_config(struct intel_encoder *encoder,
struct intel_crtc_state *pipe_config,
@@ -2023,7 +2153,9 @@ intel_dp_compute_config(struct intel_encoder *encoder,
if (HAS_PCH_SPLIT(dev_priv) && !HAS_DDI(dev_priv) && encoder->port != PORT_A)
pipe_config->has_pch_encoder = true;
- pipe_config->has_audio = intel_dp_has_audio(encoder, pipe_config, conn_state);
+ pipe_config->has_audio =
+ intel_dp_has_audio(encoder, conn_state) &&
+ intel_audio_compute_config(encoder, pipe_config, conn_state);
fixed_mode = intel_panel_fixed_mode(connector, adjusted_mode);
if (intel_dp_is_edp(intel_dp) && fixed_mode) {
@@ -2035,7 +2167,7 @@ intel_dp_compute_config(struct intel_encoder *encoder,
if (adjusted_mode->flags & DRM_MODE_FLAG_DBLSCAN)
return -EINVAL;
- if (HAS_GMCH(dev_priv) &&
+ if (!connector->base.interlace_allowed &&
adjusted_mode->flags & DRM_MODE_FLAG_INTERLACE)
return -EINVAL;
@@ -2091,6 +2223,8 @@ intel_dp_compute_config(struct intel_encoder *encoder,
adjusted_mode->crtc_clock /= n;
}
+ intel_dp_audio_compute_config(encoder, pipe_config, conn_state);
+
intel_link_compute_m_n(output_bpp,
pipe_config->lane_count,
adjusted_mode->crtc_clock,
@@ -2220,10 +2354,15 @@ intel_edp_init_source_oui(struct intel_dp *intel_dp, bool careful)
void intel_dp_wait_source_oui(struct intel_dp *intel_dp)
{
+ struct intel_connector *connector = intel_dp->attached_connector;
struct drm_i915_private *i915 = dp_to_i915(intel_dp);
- drm_dbg_kms(&i915->drm, "Performing OUI wait\n");
- wait_remaining_ms_from_jiffies(intel_dp->last_oui_write, 30);
+ drm_dbg_kms(&i915->drm, "[CONNECTOR:%d:%s] Performing OUI wait (%u ms)\n",
+ connector->base.base.id, connector->base.name,
+ connector->panel.vbt.backlight.hdr_dpcd_refresh_timeout);
+
+ wait_remaining_ms_from_jiffies(intel_dp->last_oui_write,
+ connector->panel.vbt.backlight.hdr_dpcd_refresh_timeout);
}
/* If the device supports it, try to set the power state appropriately */
@@ -2306,6 +2445,7 @@ bool intel_dp_initial_fastset_check(struct intel_encoder *encoder,
{
struct drm_i915_private *i915 = to_i915(encoder->base.dev);
struct intel_dp *intel_dp = enc_to_intel_dp(encoder);
+ bool fastset = true;
/*
* If BIOS has set an unsupported or non-standard link rate for some
@@ -2313,9 +2453,10 @@ bool intel_dp_initial_fastset_check(struct intel_encoder *encoder,
*/
if (intel_dp_rate_index(intel_dp->source_rates, intel_dp->num_source_rates,
crtc_state->port_clock) < 0) {
- drm_dbg_kms(&i915->drm, "Forcing full modeset due to unsupported link rate\n");
+ drm_dbg_kms(&i915->drm, "[ENCODER:%d:%s] Forcing full modeset due to unsupported link rate\n",
+ encoder->base.base.id, encoder->base.name);
crtc_state->uapi.connectors_changed = true;
- return false;
+ fastset = false;
}
/*
@@ -2326,18 +2467,20 @@ bool intel_dp_initial_fastset_check(struct intel_encoder *encoder,
* Remove once we have readout for DSC.
*/
if (crtc_state->dsc.compression_enable) {
- drm_dbg_kms(&i915->drm, "Forcing full modeset due to DSC being enabled\n");
+ drm_dbg_kms(&i915->drm, "[ENCODER:%d:%s] Forcing full modeset due to DSC being enabled\n",
+ encoder->base.base.id, encoder->base.name);
crtc_state->uapi.mode_changed = true;
- return false;
+ fastset = false;
}
if (CAN_PSR(intel_dp)) {
- drm_dbg_kms(&i915->drm, "Forcing full modeset to compute PSR state\n");
+ drm_dbg_kms(&i915->drm, "[ENCODER:%d:%s] Forcing full modeset to compute PSR state\n",
+ encoder->base.base.id, encoder->base.name);
crtc_state->uapi.mode_changed = true;
- return false;
+ fastset = false;
}
- return true;
+ return fastset;
}
static void intel_dp_get_pcon_dsc_cap(struct intel_dp *intel_dp)
@@ -2686,7 +2829,6 @@ void intel_dp_configure_protocol_converter(struct intel_dp *intel_dp,
str_enable_disable(tmp));
}
-
bool intel_dp_get_colorimetry_status(struct intel_dp *intel_dp)
{
u8 dprx = 0;
@@ -2903,7 +3045,7 @@ intel_edp_init_dpcd(struct intel_dp *intel_dp)
intel_dp_set_max_sink_lane_count(intel_dp);
/* Read the eDP DSC DPCD registers */
- if (DISPLAY_VER(dev_priv) >= 10)
+ if (HAS_DSC(dev_priv))
intel_dp_get_dsc_sink_cap(intel_dp);
/*
@@ -3586,12 +3728,11 @@ static u8 intel_dp_autotest_edid(struct intel_dp *intel_dp)
intel_dp->aux.i2c_defer_count);
intel_dp->compliance.test_data.edid = INTEL_DP_RESOLUTION_FAILSAFE;
} else {
- struct edid *block = intel_connector->detect_edid;
+ /* FIXME: Get rid of drm_edid_raw() */
+ const struct edid *block = drm_edid_raw(intel_connector->detect_edid);
- /* We have to write the checksum
- * of the last block read
- */
- block += intel_connector->detect_edid->extensions;
+ /* We have to write the checksum of the last block read */
+ block += block->extensions;
if (drm_dp_dpcd_writeb(&intel_dp->aux, DP_TEST_EDID_CHECKSUM,
block->checksum) <= 0)
@@ -3675,61 +3816,6 @@ static void intel_dp_phy_pattern_update(struct intel_dp *intel_dp,
}
}
-static void
-intel_dp_autotest_phy_ddi_disable(struct intel_dp *intel_dp,
- const struct intel_crtc_state *crtc_state)
-{
- struct intel_digital_port *dig_port = dp_to_dig_port(intel_dp);
- struct drm_device *dev = dig_port->base.base.dev;
- struct drm_i915_private *dev_priv = to_i915(dev);
- struct intel_crtc *crtc = to_intel_crtc(dig_port->base.base.crtc);
- enum pipe pipe = crtc->pipe;
- u32 trans_ddi_func_ctl_value, trans_conf_value, dp_tp_ctl_value;
-
- trans_ddi_func_ctl_value = intel_de_read(dev_priv,
- TRANS_DDI_FUNC_CTL(pipe));
- trans_conf_value = intel_de_read(dev_priv, PIPECONF(pipe));
- dp_tp_ctl_value = intel_de_read(dev_priv, TGL_DP_TP_CTL(pipe));
-
- trans_ddi_func_ctl_value &= ~(TRANS_DDI_FUNC_ENABLE |
- TGL_TRANS_DDI_PORT_MASK);
- trans_conf_value &= ~PIPECONF_ENABLE;
- dp_tp_ctl_value &= ~DP_TP_CTL_ENABLE;
-
- intel_de_write(dev_priv, PIPECONF(pipe), trans_conf_value);
- intel_de_write(dev_priv, TRANS_DDI_FUNC_CTL(pipe),
- trans_ddi_func_ctl_value);
- intel_de_write(dev_priv, TGL_DP_TP_CTL(pipe), dp_tp_ctl_value);
-}
-
-static void
-intel_dp_autotest_phy_ddi_enable(struct intel_dp *intel_dp,
- const struct intel_crtc_state *crtc_state)
-{
- struct intel_digital_port *dig_port = dp_to_dig_port(intel_dp);
- struct drm_device *dev = dig_port->base.base.dev;
- struct drm_i915_private *dev_priv = to_i915(dev);
- enum port port = dig_port->base.port;
- struct intel_crtc *crtc = to_intel_crtc(dig_port->base.base.crtc);
- enum pipe pipe = crtc->pipe;
- u32 trans_ddi_func_ctl_value, trans_conf_value, dp_tp_ctl_value;
-
- trans_ddi_func_ctl_value = intel_de_read(dev_priv,
- TRANS_DDI_FUNC_CTL(pipe));
- trans_conf_value = intel_de_read(dev_priv, PIPECONF(pipe));
- dp_tp_ctl_value = intel_de_read(dev_priv, TGL_DP_TP_CTL(pipe));
-
- trans_ddi_func_ctl_value |= TRANS_DDI_FUNC_ENABLE |
- TGL_TRANS_DDI_SELECT_PORT(port);
- trans_conf_value |= PIPECONF_ENABLE;
- dp_tp_ctl_value |= DP_TP_CTL_ENABLE;
-
- intel_de_write(dev_priv, PIPECONF(pipe), trans_conf_value);
- intel_de_write(dev_priv, TGL_DP_TP_CTL(pipe), dp_tp_ctl_value);
- intel_de_write(dev_priv, TRANS_DDI_FUNC_CTL(pipe),
- trans_ddi_func_ctl_value);
-}
-
static void intel_dp_process_phy_request(struct intel_dp *intel_dp,
const struct intel_crtc_state *crtc_state)
{
@@ -3748,14 +3834,10 @@ static void intel_dp_process_phy_request(struct intel_dp *intel_dp,
intel_dp_get_adjust_train(intel_dp, crtc_state, DP_PHY_DPRX,
link_status);
- intel_dp_autotest_phy_ddi_disable(intel_dp, crtc_state);
-
intel_dp_set_signal_levels(intel_dp, crtc_state, DP_PHY_DPRX);
intel_dp_phy_pattern_update(intel_dp, crtc_state);
- intel_dp_autotest_phy_ddi_enable(intel_dp, crtc_state);
-
drm_dp_dpcd_write(&intel_dp->aux, DP_TRAINING_LANE0_SET,
intel_dp->train_set, crtc_state->lane_count);
@@ -4472,29 +4554,34 @@ bool intel_digital_port_connected(struct intel_encoder *encoder)
return is_connected;
}
-static struct edid *
+static const struct drm_edid *
intel_dp_get_edid(struct intel_dp *intel_dp)
{
- struct intel_connector *intel_connector = intel_dp->attached_connector;
+ struct intel_connector *connector = intel_dp->attached_connector;
+ const struct drm_edid *fixed_edid = connector->panel.fixed_edid;
- /* use cached edid if we have one */
- if (intel_connector->edid) {
+ /* Use panel fixed edid if we have one */
+ if (fixed_edid) {
/* invalid edid */
- if (IS_ERR(intel_connector->edid))
+ if (IS_ERR(fixed_edid))
return NULL;
- return drm_edid_duplicate(intel_connector->edid);
- } else
- return drm_get_edid(&intel_connector->base,
- &intel_dp->aux.ddc);
+ return drm_edid_dup(fixed_edid);
+ }
+
+ return drm_edid_read_ddc(&connector->base, &intel_dp->aux.ddc);
}
static void
intel_dp_update_dfp(struct intel_dp *intel_dp,
- const struct edid *edid)
+ const struct drm_edid *drm_edid)
{
struct drm_i915_private *i915 = dp_to_i915(intel_dp);
struct intel_connector *connector = intel_dp->attached_connector;
+ const struct edid *edid;
+
+ /* FIXME: Get rid of drm_edid_raw() */
+ edid = drm_edid_raw(drm_edid);
intel_dp->dfp.max_bpc =
drm_dp_downstream_max_bpc(intel_dp->dpcd,
@@ -4594,21 +4681,27 @@ intel_dp_set_edid(struct intel_dp *intel_dp)
{
struct drm_i915_private *i915 = dp_to_i915(intel_dp);
struct intel_connector *connector = intel_dp->attached_connector;
- struct edid *edid;
+ const struct drm_edid *drm_edid;
+ const struct edid *edid;
bool vrr_capable;
intel_dp_unset_edid(intel_dp);
- edid = intel_dp_get_edid(intel_dp);
- connector->detect_edid = edid;
+ drm_edid = intel_dp_get_edid(intel_dp);
+ connector->detect_edid = drm_edid;
+
+ /* Below we depend on display info having been updated */
+ drm_edid_connector_update(&connector->base, drm_edid);
vrr_capable = intel_vrr_is_capable(connector);
drm_dbg_kms(&i915->drm, "[CONNECTOR:%d:%s] VRR capable: %s\n",
connector->base.base.id, connector->base.name, str_yes_no(vrr_capable));
drm_connector_set_vrr_capable_property(&connector->base, vrr_capable);
- intel_dp_update_dfp(intel_dp, edid);
+ intel_dp_update_dfp(intel_dp, drm_edid);
intel_dp_update_420(intel_dp);
+ /* FIXME: Get rid of drm_edid_raw() */
+ edid = drm_edid_raw(drm_edid);
if (edid && edid->input & DRM_EDID_INPUT_DIGITAL) {
intel_dp->has_hdmi_sink = drm_detect_hdmi_monitor(edid);
intel_dp->has_audio = drm_detect_monitor_audio(edid);
@@ -4623,7 +4716,7 @@ intel_dp_unset_edid(struct intel_dp *intel_dp)
struct intel_connector *connector = intel_dp->attached_connector;
drm_dp_cec_unset_edid(&intel_dp->aux);
- kfree(connector->detect_edid);
+ drm_edid_free(connector->detect_edid);
connector->detect_edid = NULL;
intel_dp->has_hdmi_sink = false;
@@ -4688,7 +4781,7 @@ intel_dp_detect(struct drm_connector *connector,
}
/* Read DP Sink DSC Cap DPCD regs for DP v1.4 */
- if (DISPLAY_VER(dev_priv) >= 11)
+ if (HAS_DSC(dev_priv))
intel_dp_get_dsc_sink_cap(intel_dp);
intel_dp_configure_mst(intel_dp);
@@ -4787,12 +4880,10 @@ intel_dp_force(struct drm_connector *connector)
static int intel_dp_get_modes(struct drm_connector *connector)
{
struct intel_connector *intel_connector = to_intel_connector(connector);
- struct edid *edid;
- int num_modes = 0;
+ int num_modes;
- edid = intel_connector->detect_edid;
- if (edid)
- num_modes = intel_connector_update_modes(connector, edid);
+ /* drm_edid_connector_update() done in ->detect() or ->force() */
+ num_modes = drm_edid_connector_add_modes(connector);
/* Also add fixed mode, which may or may not be present in EDID */
if (intel_dp_is_edp(intel_attached_dp(intel_connector)))
@@ -4801,7 +4892,7 @@ static int intel_dp_get_modes(struct drm_connector *connector)
if (num_modes)
return num_modes;
- if (!edid) {
+ if (!intel_connector->detect_edid) {
struct intel_dp *intel_dp = intel_attached_dp(intel_connector);
struct drm_display_mode *mode;
@@ -4838,7 +4929,7 @@ intel_dp_connector_register(struct drm_connector *connector)
if (!ret)
drm_dp_cec_register_connector(&intel_dp->aux, connector);
- if (!intel_bios_is_lspcon_present(i915, dig_port->base.port))
+ if (!intel_bios_encoder_is_lspcon(dig_port->base.devdata))
return ret;
/*
@@ -4873,6 +4964,12 @@ void intel_dp_encoder_flush_work(struct drm_encoder *encoder)
intel_pps_vdd_off_sync(intel_dp);
+ /*
+ * Ensure power off delay is respected on module remove, so that we can
+ * reduce delays at driver probe. See pps_init_timestamps().
+ */
+ intel_pps_wait_power_cycle(intel_dp);
+
intel_dp_aux_fini(intel_dp);
}
@@ -5110,8 +5207,9 @@ intel_dp_hpd_pulse(struct intel_digital_port *dig_port, bool long_hpd)
return IRQ_HANDLED;
}
-/* check the VBT to see whether the eDP is on another port */
-bool intel_dp_is_port_edp(struct drm_i915_private *dev_priv, enum port port)
+static bool _intel_dp_is_port_edp(struct drm_i915_private *dev_priv,
+ const struct intel_bios_encoder_data *devdata,
+ enum port port)
{
/*
* eDP not supported on g4x. so bail out early just
@@ -5123,13 +5221,24 @@ bool intel_dp_is_port_edp(struct drm_i915_private *dev_priv, enum port port)
if (DISPLAY_VER(dev_priv) < 9 && port == PORT_A)
return true;
- return intel_bios_is_port_edp(dev_priv, port);
+ return devdata && intel_bios_encoder_supports_edp(devdata);
+}
+
+bool intel_dp_is_port_edp(struct drm_i915_private *i915, enum port port)
+{
+ const struct intel_bios_encoder_data *devdata =
+ intel_bios_encoder_data_lookup(i915, port);
+
+ return _intel_dp_is_port_edp(i915, devdata, port);
}
static bool
-has_gamut_metadata_dip(struct drm_i915_private *i915, enum port port)
+has_gamut_metadata_dip(struct intel_encoder *encoder)
{
- if (intel_bios_is_lspcon_present(i915, port))
+ struct drm_i915_private *i915 = to_i915(encoder->base.dev);
+ enum port port = encoder->port;
+
+ if (intel_bios_encoder_is_lspcon(encoder->devdata))
return false;
if (DISPLAY_VER(i915) >= 11)
@@ -5164,29 +5273,16 @@ intel_dp_add_properties(struct intel_dp *intel_dp, struct drm_connector *connect
drm_connector_attach_max_bpc_property(connector, 6, 12);
/* Register HDMI colorspace for case of lspcon */
- if (intel_bios_is_lspcon_present(dev_priv, port)) {
+ if (intel_bios_encoder_is_lspcon(dp_to_dig_port(intel_dp)->base.devdata)) {
drm_connector_attach_content_type_property(connector);
intel_attach_hdmi_colorspace_property(connector);
} else {
intel_attach_dp_colorspace_property(connector);
}
- if (has_gamut_metadata_dip(dev_priv, port))
+ if (has_gamut_metadata_dip(&dp_to_dig_port(intel_dp)->base))
drm_connector_attach_hdr_output_metadata_property(connector);
- if (intel_dp_is_edp(intel_dp)) {
- u32 allowed_scalers;
-
- allowed_scalers = BIT(DRM_MODE_SCALE_ASPECT) | BIT(DRM_MODE_SCALE_FULLSCREEN);
- if (!HAS_GMCH(dev_priv))
- allowed_scalers |= BIT(DRM_MODE_SCALE_CENTER);
-
- drm_connector_attach_scaling_mode_property(connector, allowed_scalers);
-
- connector->state->scaling_mode = DRM_MODE_SCALE_ASPECT;
-
- }
-
if (HAS_VRR(dev_priv))
drm_connector_attach_vrr_capable_property(connector);
}
@@ -5199,8 +5295,7 @@ intel_edp_add_properties(struct intel_dp *intel_dp)
const struct drm_display_mode *fixed_mode =
intel_panel_preferred_fixed_mode(connector);
- if (!fixed_mode)
- return;
+ intel_attach_scaling_mode_property(&connector->base);
drm_connector_set_panel_orientation_with_quirk(&connector->base,
i915->display.vbt.orientation,
@@ -5208,17 +5303,39 @@ intel_edp_add_properties(struct intel_dp *intel_dp)
fixed_mode->vdisplay);
}
+static void intel_edp_backlight_setup(struct intel_dp *intel_dp,
+ struct intel_connector *connector)
+{
+ struct drm_i915_private *i915 = dp_to_i915(intel_dp);
+ enum pipe pipe = INVALID_PIPE;
+
+ if (IS_VALLEYVIEW(i915) || IS_CHERRYVIEW(i915)) {
+ /*
+ * Figure out the current pipe for the initial backlight setup.
+ * If the current pipe isn't valid, try the PPS pipe, and if that
+ * fails just assume pipe A.
+ */
+ pipe = vlv_active_pipe(intel_dp);
+
+ if (pipe != PIPE_A && pipe != PIPE_B)
+ pipe = intel_dp->pps.pps_pipe;
+
+ if (pipe != PIPE_A && pipe != PIPE_B)
+ pipe = PIPE_A;
+ }
+
+ intel_backlight_setup(connector, pipe);
+}
+
static bool intel_edp_init_connector(struct intel_dp *intel_dp,
struct intel_connector *intel_connector)
{
struct drm_i915_private *dev_priv = dp_to_i915(intel_dp);
- struct drm_device *dev = &dev_priv->drm;
struct drm_connector *connector = &intel_connector->base;
struct drm_display_mode *fixed_mode;
struct intel_encoder *encoder = &dp_to_dig_port(intel_dp)->base;
bool has_dpcd;
- enum pipe pipe = INVALID_PIPE;
- struct edid *edid;
+ const struct drm_edid *drm_edid;
if (!intel_dp_is_edp(intel_dp))
return true;
@@ -5230,7 +5347,7 @@ static bool intel_edp_init_connector(struct intel_dp *intel_dp,
* with an already powered-on LVDS power sequencer.
*/
if (intel_get_lvds_encoder(dev_priv)) {
- drm_WARN_ON(dev,
+ drm_WARN_ON(&dev_priv->drm,
!(HAS_PCH_IBX(dev_priv) || HAS_PCH_CPT(dev_priv)));
drm_info(&dev_priv->drm,
"LVDS was detected, not registering eDP\n");
@@ -5238,7 +5355,20 @@ static bool intel_edp_init_connector(struct intel_dp *intel_dp,
return false;
}
- intel_pps_init(intel_dp);
+ intel_bios_init_panel_early(dev_priv, &intel_connector->panel,
+ encoder->devdata);
+
+ if (!intel_pps_init(intel_dp)) {
+ drm_info(&dev_priv->drm,
+ "[ENCODER:%d:%s] unusable PPS, disabling eDP\n",
+ encoder->base.base.id, encoder->base.name);
+ /*
+ * The BIOS may have still enabled VDD on the PPS even
+ * though it's unusable. Make sure we turn it back off
+ * and to release the power domain references/etc.
+ */
+ goto out_vdd_off;
+ }
/* Cache DPCD and EDID for edp. */
has_dpcd = intel_edp_init_dpcd(intel_dp);
@@ -5246,38 +5376,36 @@ static bool intel_edp_init_connector(struct intel_dp *intel_dp,
if (!has_dpcd) {
/* if this fails, presume the device is a ghost */
drm_info(&dev_priv->drm,
- "failed to retrieve link info, disabling eDP\n");
+ "[ENCODER:%d:%s] failed to retrieve link info, disabling eDP\n",
+ encoder->base.base.id, encoder->base.name);
goto out_vdd_off;
}
- mutex_lock(&dev->mode_config.mutex);
- edid = drm_get_edid(connector, &intel_dp->aux.ddc);
- if (!edid) {
+ mutex_lock(&dev_priv->drm.mode_config.mutex);
+ drm_edid = drm_edid_read_ddc(connector, &intel_dp->aux.ddc);
+ if (!drm_edid) {
/* Fallback to EDID from ACPI OpRegion, if any */
- edid = intel_opregion_get_edid(intel_connector);
- if (edid)
+ drm_edid = intel_opregion_get_edid(intel_connector);
+ if (drm_edid)
drm_dbg_kms(&dev_priv->drm,
"[CONNECTOR:%d:%s] Using OpRegion EDID\n",
connector->base.id, connector->name);
}
- if (edid) {
- if (drm_add_edid_modes(connector, edid)) {
- drm_connector_update_edid_property(connector, edid);
- } else {
- kfree(edid);
- edid = ERR_PTR(-EINVAL);
+ if (drm_edid) {
+ if (drm_edid_connector_update(connector, drm_edid) ||
+ !drm_edid_connector_add_modes(connector)) {
+ drm_edid_connector_update(connector, NULL);
+ drm_edid_free(drm_edid);
+ drm_edid = ERR_PTR(-EINVAL);
}
} else {
- edid = ERR_PTR(-ENOENT);
+ drm_edid = ERR_PTR(-ENOENT);
}
- intel_connector->edid = edid;
- intel_bios_init_panel(dev_priv, &intel_connector->panel,
- encoder->devdata, IS_ERR(edid) ? NULL : edid);
+ intel_bios_init_panel_late(dev_priv, &intel_connector->panel, encoder->devdata,
+ IS_ERR(drm_edid) ? NULL : drm_edid);
- intel_panel_add_edid_fixed_modes(intel_connector,
- intel_connector->panel.vbt.drrs_type != DRRS_TYPE_NONE ||
- intel_vrr_is_capable(intel_connector));
+ intel_panel_add_edid_fixed_modes(intel_connector, true);
/* MSO requires information from the EDID */
intel_edp_mso_init(intel_dp);
@@ -5290,30 +5418,18 @@ static bool intel_edp_init_connector(struct intel_dp *intel_dp,
if (!intel_panel_preferred_fixed_mode(intel_connector))
intel_panel_add_vbt_lfp_fixed_mode(intel_connector);
- mutex_unlock(&dev->mode_config.mutex);
-
- if (IS_VALLEYVIEW(dev_priv) || IS_CHERRYVIEW(dev_priv)) {
- /*
- * Figure out the current pipe for the initial backlight setup.
- * If the current pipe isn't valid, try the PPS pipe, and if that
- * fails just assume pipe A.
- */
- pipe = vlv_active_pipe(intel_dp);
-
- if (pipe != PIPE_A && pipe != PIPE_B)
- pipe = intel_dp->pps.pps_pipe;
+ mutex_unlock(&dev_priv->drm.mode_config.mutex);
- if (pipe != PIPE_A && pipe != PIPE_B)
- pipe = PIPE_A;
-
- drm_dbg_kms(&dev_priv->drm,
- "using pipe %c for initial backlight setup\n",
- pipe_name(pipe));
+ if (!intel_panel_preferred_fixed_mode(intel_connector)) {
+ drm_info(&dev_priv->drm,
+ "[ENCODER:%d:%s] failed to find fixed mode for the panel, disabling eDP\n",
+ encoder->base.base.id, encoder->base.name);
+ goto out_vdd_off;
}
- intel_panel_init(intel_connector);
+ intel_panel_init(intel_connector, drm_edid);
- intel_backlight_setup(intel_connector, pipe);
+ intel_edp_backlight_setup(intel_dp, intel_connector);
intel_edp_add_properties(intel_dp);
@@ -5381,7 +5497,7 @@ intel_dp_init_connector(struct intel_digital_port *dig_port,
intel_dp->DP = intel_de_read(dev_priv, intel_dp->output_reg);
intel_dp->attached_connector = intel_connector;
- if (intel_dp_is_port_edp(dev_priv, port)) {
+ if (_intel_dp_is_port_edp(dev_priv, intel_encoder->devdata, port)) {
/*
* Currently we don't support eDP on TypeC ports, although in
* theory it could work on TypeC legacy ports.
@@ -5413,9 +5529,8 @@ intel_dp_init_connector(struct intel_digital_port *dig_port,
drm_connector_init(dev, connector, &intel_dp_connector_funcs, type);
drm_connector_helper_add(connector, &intel_dp_connector_helper_funcs);
- if (!HAS_GMCH(dev_priv))
+ if (!HAS_GMCH(dev_priv) && DISPLAY_VER(dev_priv) < 12)
connector->interlace_allowed = true;
- connector->doublescan_allowed = 0;
intel_connector->polled = DRM_CONNECTOR_POLL_HPD;
diff --git a/drivers/gpu/drm/i915/display/intel_dp.h b/drivers/gpu/drm/i915/display/intel_dp.h
index a54902c713a3..ef39e4f7a329 100644
--- a/drivers/gpu/drm/i915/display/intel_dp.h
+++ b/drivers/gpu/drm/i915/display/intel_dp.h
@@ -56,6 +56,12 @@ void intel_dp_encoder_flush_work(struct drm_encoder *encoder);
int intel_dp_compute_config(struct intel_encoder *encoder,
struct intel_crtc_state *pipe_config,
struct drm_connector_state *conn_state);
+int intel_dp_dsc_compute_config(struct intel_dp *intel_dp,
+ struct intel_crtc_state *pipe_config,
+ struct drm_connector_state *conn_state,
+ struct link_config_limits *limits,
+ int timeslots,
+ bool recompute_pipe_bpp);
bool intel_dp_is_edp(struct intel_dp *intel_dp);
bool intel_dp_is_uhbr(const struct intel_crtc_state *crtc_state);
bool intel_dp_is_port_edp(struct drm_i915_private *dev_priv, enum port port);
@@ -96,6 +102,18 @@ void intel_read_dp_sdp(struct intel_encoder *encoder,
struct intel_crtc_state *crtc_state,
unsigned int type);
bool intel_digital_port_connected(struct intel_encoder *encoder);
+int intel_dp_dsc_compute_bpp(struct intel_dp *intel_dp, u8 dsc_max_bpc);
+u16 intel_dp_dsc_get_output_bpp(struct drm_i915_private *i915,
+ u32 link_clock, u32 lane_count,
+ u32 mode_clock, u32 mode_hdisplay,
+ bool bigjoiner,
+ u32 pipe_bpp,
+ u32 timeslots);
+u8 intel_dp_dsc_get_slice_count(struct intel_dp *intel_dp,
+ int mode_clock, int mode_hdisplay,
+ bool bigjoiner);
+bool intel_dp_need_bigjoiner(struct intel_dp *intel_dp,
+ int hdisplay, int clock);
static inline unsigned int intel_dp_unused_lane_mask(int lane_count)
{
@@ -103,6 +121,7 @@ static inline unsigned int intel_dp_unused_lane_mask(int lane_count)
}
u32 intel_dp_mode_to_fec_clock(u32 mode_clock);
+u32 intel_dp_dsc_nearest_valid_bpp(struct drm_i915_private *i915, u32 bpp, u32 pipe_bpp);
void intel_ddi_update_pipe(struct intel_atomic_state *state,
struct intel_encoder *encoder,
diff --git a/drivers/gpu/drm/i915/display/intel_dp_aux.c b/drivers/gpu/drm/i915/display/intel_dp_aux.c
index 48c375c65a41..705915d50565 100644
--- a/drivers/gpu/drm/i915/display/intel_dp_aux.c
+++ b/drivers/gpu/drm/i915/display/intel_dp_aux.c
@@ -4,9 +4,13 @@
*/
#include "i915_drv.h"
+#include "i915_reg.h"
#include "i915_trace.h"
+#include "intel_bios.h"
+#include "intel_de.h"
#include "intel_display_types.h"
#include "intel_dp_aux.h"
+#include "intel_dp_aux_regs.h"
#include "intel_pps.h"
#include "intel_tc.h"
@@ -39,20 +43,16 @@ intel_dp_aux_wait_done(struct intel_dp *intel_dp)
i915_reg_t ch_ctl = intel_dp->aux_ch_ctl_reg(intel_dp);
const unsigned int timeout_ms = 10;
u32 status;
- bool done;
-
-#define C (((status = intel_uncore_read_notrace(&i915->uncore, ch_ctl)) & DP_AUX_CH_CTL_SEND_BUSY) == 0)
- done = wait_event_timeout(i915->display.gmbus.wait_queue, C,
- msecs_to_jiffies_timeout(timeout_ms));
+ int ret;
- /* just trace the final value */
- trace_i915_reg_rw(false, ch_ctl, status, sizeof(status), true);
+ ret = __intel_de_wait_for_register(i915, ch_ctl,
+ DP_AUX_CH_CTL_SEND_BUSY, 0,
+ 2, timeout_ms, &status);
- if (!done)
+ if (ret == -ETIMEDOUT)
drm_err(&i915->drm,
"%s: did not complete or timeout within %ums (status 0x%08x)\n",
intel_dp->aux.name, timeout_ms, status);
-#undef C
return status;
}
@@ -119,6 +119,32 @@ static u32 skl_get_aux_clock_divider(struct intel_dp *intel_dp, int index)
return index ? 0 : 1;
}
+static int intel_dp_aux_sync_len(void)
+{
+ int precharge = 16; /* 10-16 */
+ int preamble = 16;
+
+ return precharge + preamble;
+}
+
+static int intel_dp_aux_fw_sync_len(void)
+{
+ int precharge = 16; /* 10-16 */
+ int preamble = 8;
+
+ return precharge + preamble;
+}
+
+static int g4x_dp_aux_precharge_len(void)
+{
+ int precharge_min = 10;
+ int preamble = 16;
+
+ /* HW wants the length of the extra precharge in 2us units */
+ return (intel_dp_aux_sync_len() -
+ precharge_min - preamble) / 2;
+}
+
static u32 g4x_get_aux_send_ctl(struct intel_dp *intel_dp,
int send_bytes,
u32 aux_clock_divider)
@@ -141,7 +167,7 @@ static u32 g4x_get_aux_send_ctl(struct intel_dp *intel_dp,
timeout |
DP_AUX_CH_CTL_RECEIVE_ERROR |
(send_bytes << DP_AUX_CH_CTL_MESSAGE_SIZE_SHIFT) |
- (3 << DP_AUX_CH_CTL_PRECHARGE_2US_SHIFT) |
+ (g4x_dp_aux_precharge_len() << DP_AUX_CH_CTL_PRECHARGE_2US_SHIFT) |
(aux_clock_divider << DP_AUX_CH_CTL_BIT_CLOCK_2X_SHIFT);
}
@@ -165,8 +191,8 @@ static u32 skl_get_aux_send_ctl(struct intel_dp *intel_dp,
DP_AUX_CH_CTL_TIME_OUT_MAX |
DP_AUX_CH_CTL_RECEIVE_ERROR |
(send_bytes << DP_AUX_CH_CTL_MESSAGE_SIZE_SHIFT) |
- DP_AUX_CH_CTL_FW_SYNC_PULSE_SKL(32) |
- DP_AUX_CH_CTL_SYNC_PULSE_SKL(32);
+ DP_AUX_CH_CTL_FW_SYNC_PULSE_SKL(intel_dp_aux_fw_sync_len()) |
+ DP_AUX_CH_CTL_SYNC_PULSE_SKL(intel_dp_aux_sync_len());
if (intel_tc_port_in_tbt_alt_mode(dig_port))
ret |= DP_AUX_CH_CTL_TBT_IO;
@@ -190,7 +216,6 @@ intel_dp_aux_xfer(struct intel_dp *intel_dp,
struct intel_digital_port *dig_port = dp_to_dig_port(intel_dp);
struct drm_i915_private *i915 =
to_i915(dig_port->base.base.dev);
- struct intel_uncore *uncore = &i915->uncore;
enum phy phy = intel_port_to_phy(i915, dig_port->base.port);
bool is_tc_port = intel_phy_is_tc(i915, phy);
i915_reg_t ch_ctl, ch_data[5];
@@ -207,8 +232,19 @@ intel_dp_aux_xfer(struct intel_dp *intel_dp,
for (i = 0; i < ARRAY_SIZE(ch_data); i++)
ch_data[i] = intel_dp->aux_ch_data_reg(intel_dp, i);
- if (is_tc_port)
+ if (is_tc_port) {
intel_tc_port_lock(dig_port);
+ /*
+ * Abort transfers on a disconnected port as required by
+ * DP 1.4a link CTS 4.2.1.5, also avoiding the long AUX
+ * timeouts that would otherwise happen.
+ * TODO: abort the transfer on non-TC ports as well.
+ */
+ if (!intel_tc_port_connected_locked(&dig_port->base)) {
+ ret = -ENXIO;
+ goto out_unlock;
+ }
+ }
aux_domain = intel_aux_power_domain(dig_port);
@@ -234,7 +270,7 @@ intel_dp_aux_xfer(struct intel_dp *intel_dp,
/* Try to wait for any previous AUX channel activity */
for (try = 0; try < 3; try++) {
- status = intel_uncore_read_notrace(uncore, ch_ctl);
+ status = intel_de_read_notrace(i915, ch_ctl);
if ((status & DP_AUX_CH_CTL_SEND_BUSY) == 0)
break;
msleep(1);
@@ -243,7 +279,7 @@ intel_dp_aux_xfer(struct intel_dp *intel_dp,
trace_i915_reg_rw(false, ch_ctl, status, sizeof(status), true);
if (try == 3) {
- const u32 status = intel_uncore_read(uncore, ch_ctl);
+ const u32 status = intel_de_read(i915, ch_ctl);
if (status != intel_dp->aux_busy_last_status) {
drm_WARN(&i915->drm, 1,
@@ -273,23 +309,20 @@ intel_dp_aux_xfer(struct intel_dp *intel_dp,
for (try = 0; try < 5; try++) {
/* Load the send data into the aux channel data registers */
for (i = 0; i < send_bytes; i += 4)
- intel_uncore_write(uncore,
- ch_data[i >> 2],
- intel_dp_aux_pack(send + i,
- send_bytes - i));
+ intel_de_write(i915, ch_data[i >> 2],
+ intel_dp_aux_pack(send + i,
+ send_bytes - i));
/* Send the command and wait for it to complete */
- intel_uncore_write(uncore, ch_ctl, send_ctl);
+ intel_de_write(i915, ch_ctl, send_ctl);
status = intel_dp_aux_wait_done(intel_dp);
/* Clear done status and any errors */
- intel_uncore_write(uncore,
- ch_ctl,
- status |
- DP_AUX_CH_CTL_DONE |
- DP_AUX_CH_CTL_TIME_OUT_ERROR |
- DP_AUX_CH_CTL_RECEIVE_ERROR);
+ intel_de_write(i915, ch_ctl,
+ status | DP_AUX_CH_CTL_DONE |
+ DP_AUX_CH_CTL_TIME_OUT_ERROR |
+ DP_AUX_CH_CTL_RECEIVE_ERROR);
/*
* DP CTS 1.2 Core Rev 1.1, 4.2.1.1 & 4.2.1.2
@@ -360,7 +393,7 @@ done:
recv_bytes = recv_size;
for (i = 0; i < recv_bytes; i += 4)
- intel_dp_aux_unpack(intel_uncore_read(uncore, ch_data[i >> 2]),
+ intel_dp_aux_unpack(intel_de_read(i915, ch_data[i >> 2]),
recv + i, recv_bytes - i);
ret = recv_bytes;
@@ -372,7 +405,7 @@ out:
intel_pps_unlock(intel_dp, pps_wakeref);
intel_display_power_put_async(i915, aux_domain, aux_wakeref);
-
+out_unlock:
if (is_tc_port)
intel_tc_port_unlock(dig_port);
@@ -743,3 +776,37 @@ void intel_dp_aux_init(struct intel_dp *intel_dp)
intel_dp->aux.transfer = intel_dp_aux_transfer;
cpu_latency_qos_add_request(&intel_dp->pm_qos, PM_QOS_DEFAULT_VALUE);
}
+
+static enum aux_ch default_aux_ch(struct intel_encoder *encoder)
+{
+ struct drm_i915_private *i915 = to_i915(encoder->base.dev);
+
+ /* SKL has DDI E but no AUX E */
+ if (DISPLAY_VER(i915) == 9 && encoder->port == PORT_E)
+ return AUX_CH_A;
+
+ return (enum aux_ch)encoder->port;
+}
+
+enum aux_ch intel_dp_aux_ch(struct intel_encoder *encoder)
+{
+ struct drm_i915_private *i915 = to_i915(encoder->base.dev);
+ enum aux_ch aux_ch;
+
+ aux_ch = intel_bios_dp_aux_ch(encoder->devdata);
+ if (aux_ch != AUX_CH_NONE) {
+ drm_dbg_kms(&i915->drm, "[ENCODER:%d:%s] using AUX %c (VBT)\n",
+ encoder->base.base.id, encoder->base.name,
+ aux_ch_name(aux_ch));
+ return aux_ch;
+ }
+
+ aux_ch = default_aux_ch(encoder);
+
+ drm_dbg_kms(&i915->drm,
+ "[ENCODER:%d:%s] using AUX %c (platform default)\n",
+ encoder->base.base.id, encoder->base.name,
+ aux_ch_name(aux_ch));
+
+ return aux_ch;
+}
diff --git a/drivers/gpu/drm/i915/display/intel_dp_aux.h b/drivers/gpu/drm/i915/display/intel_dp_aux.h
index 738577537bc7..138e340f94ee 100644
--- a/drivers/gpu/drm/i915/display/intel_dp_aux.h
+++ b/drivers/gpu/drm/i915/display/intel_dp_aux.h
@@ -6,9 +6,13 @@
#ifndef __INTEL_DP_AUX_H__
#define __INTEL_DP_AUX_H__
+enum aux_ch;
struct intel_dp;
+struct intel_encoder;
void intel_dp_aux_fini(struct intel_dp *intel_dp);
void intel_dp_aux_init(struct intel_dp *intel_dp);
+enum aux_ch intel_dp_aux_ch(struct intel_encoder *encoder);
+
#endif /* __INTEL_DP_AUX_H__ */
diff --git a/drivers/gpu/drm/i915/display/intel_dp_aux_backlight.c b/drivers/gpu/drm/i915/display/intel_dp_aux_backlight.c
index 83af95bce98d..95cc5251843e 100644
--- a/drivers/gpu/drm/i915/display/intel_dp_aux_backlight.c
+++ b/drivers/gpu/drm/i915/display/intel_dp_aux_backlight.c
@@ -105,6 +105,11 @@ enum intel_dp_aux_backlight_modparam {
INTEL_DP_AUX_BACKLIGHT_FORCE_INTEL = 3,
};
+static bool is_intel_tcon_cap(const u8 tcon_cap[4])
+{
+ return tcon_cap[0] >= 1;
+}
+
/* Intel EDP backlight callbacks */
static bool
intel_dp_aux_supports_hdr_backlight(struct intel_connector *connector)
@@ -125,14 +130,12 @@ intel_dp_aux_supports_hdr_backlight(struct intel_connector *connector)
if (!(tcon_cap[1] & INTEL_EDP_HDR_TCON_BRIGHTNESS_NITS_CAP))
return false;
- if (tcon_cap[0] >= 1) {
- drm_dbg_kms(&i915->drm, "Detected Intel HDR backlight interface version %d\n",
- tcon_cap[0]);
- } else {
- drm_dbg_kms(&i915->drm, "Detected unsupported HDR backlight interface version %d\n",
- tcon_cap[0]);
+ drm_dbg_kms(&i915->drm, "[CONNECTOR:%d:%s] Detected %s HDR backlight interface version %d\n",
+ connector->base.base.id, connector->base.name,
+ is_intel_tcon_cap(tcon_cap) ? "Intel" : "unsupported", tcon_cap[0]);
+
+ if (!is_intel_tcon_cap(tcon_cap))
return false;
- }
/*
* If we don't have HDR static metadata there is no way to
@@ -147,7 +150,8 @@ intel_dp_aux_supports_hdr_backlight(struct intel_connector *connector)
!(connector->base.hdr_sink_metadata.hdmi_type1.metadata_type &
BIT(HDMI_STATIC_METADATA_TYPE1))) {
drm_info(&i915->drm,
- "Panel is missing HDR static metadata. Possible support for Intel HDR backlight interface is not used. If your backlight controls don't work try booting with i915.enable_dpcd_backlight=%d. needs this, please file a _new_ bug report on drm/i915, see " FDO_BUG_URL " for details.\n",
+ "[CONNECTOR:%d:%s] Panel is missing HDR static metadata. Possible support for Intel HDR backlight interface is not used. If your backlight controls don't work try booting with i915.enable_dpcd_backlight=%d. needs this, please file a _new_ bug report on drm/i915, see " FDO_BUG_URL " for details.\n",
+ connector->base.base.id, connector->base.name,
INTEL_DP_AUX_BACKLIGHT_FORCE_INTEL);
return false;
}
@@ -168,7 +172,8 @@ intel_dp_aux_hdr_get_backlight(struct intel_connector *connector, enum pipe pipe
u8 buf[2] = { 0 };
if (drm_dp_dpcd_readb(&intel_dp->aux, INTEL_EDP_HDR_GETSET_CTRL_PARAMS, &tmp) != 1) {
- drm_err(&i915->drm, "Failed to read current backlight mode from DPCD\n");
+ drm_err(&i915->drm, "[CONNECTOR:%d:%s] Failed to read current backlight mode from DPCD\n",
+ connector->base.base.id, connector->base.name);
return 0;
}
@@ -185,7 +190,8 @@ intel_dp_aux_hdr_get_backlight(struct intel_connector *connector, enum pipe pipe
if (drm_dp_dpcd_read(&intel_dp->aux, INTEL_EDP_BRIGHTNESS_NITS_LSB, buf,
sizeof(buf)) != sizeof(buf)) {
- drm_err(&i915->drm, "Failed to read brightness from DPCD\n");
+ drm_err(&i915->drm, "[CONNECTOR:%d:%s] Failed to read brightness from DPCD\n",
+ connector->base.base.id, connector->base.name);
return 0;
}
@@ -205,7 +211,8 @@ intel_dp_aux_hdr_set_aux_backlight(const struct drm_connector_state *conn_state,
if (drm_dp_dpcd_write(&intel_dp->aux, INTEL_EDP_BRIGHTNESS_NITS_LSB, buf,
sizeof(buf)) != sizeof(buf))
- drm_err(dev, "Failed to write brightness level to DPCD\n");
+ drm_err(dev, "[CONNECTOR:%d:%s] Failed to write brightness level to DPCD\n",
+ connector->base.base.id, connector->base.name);
}
static void
@@ -238,7 +245,8 @@ intel_dp_aux_hdr_enable_backlight(const struct intel_crtc_state *crtc_state,
ret = drm_dp_dpcd_readb(&intel_dp->aux, INTEL_EDP_HDR_GETSET_CTRL_PARAMS, &old_ctrl);
if (ret != 1) {
- drm_err(&i915->drm, "Failed to read current backlight control mode: %d\n", ret);
+ drm_err(&i915->drm, "[CONNECTOR:%d:%s] Failed to read current backlight control mode: %d\n",
+ connector->base.base.id, connector->base.name, ret);
return;
}
@@ -254,9 +262,10 @@ intel_dp_aux_hdr_enable_backlight(const struct intel_crtc_state *crtc_state,
ctrl &= ~INTEL_EDP_HDR_TCON_BRIGHTNESS_AUX_ENABLE;
}
- if (ctrl != old_ctrl)
- if (drm_dp_dpcd_writeb(&intel_dp->aux, INTEL_EDP_HDR_GETSET_CTRL_PARAMS, ctrl) != 1)
- drm_err(&i915->drm, "Failed to configure DPCD brightness controls\n");
+ if (ctrl != old_ctrl &&
+ drm_dp_dpcd_writeb(&intel_dp->aux, INTEL_EDP_HDR_GETSET_CTRL_PARAMS, ctrl) != 1)
+ drm_err(&i915->drm, "[CONNECTOR:%d:%s] Failed to configure DPCD brightness controls\n",
+ connector->base.base.id, connector->base.name);
}
static void
@@ -273,6 +282,11 @@ intel_dp_aux_hdr_disable_backlight(const struct drm_connector_state *conn_state,
panel->backlight.pwm_funcs->disable(conn_state, intel_backlight_invert_pwm_level(connector, 0));
}
+static const char *dpcd_vs_pwm_str(bool aux)
+{
+ return aux ? "DPCD" : "PWM";
+}
+
static int
intel_dp_aux_hdr_setup_backlight(struct intel_connector *connector, enum pipe pipe)
{
@@ -282,15 +296,16 @@ intel_dp_aux_hdr_setup_backlight(struct intel_connector *connector, enum pipe pi
&connector->base.display_info.luminance_range;
int ret;
- if (panel->backlight.edp.intel.sdr_uses_aux) {
- drm_dbg_kms(&i915->drm, "SDR backlight is controlled through DPCD\n");
- } else {
- drm_dbg_kms(&i915->drm, "SDR backlight is controlled through PWM\n");
+ drm_dbg_kms(&i915->drm, "[CONNECTOR:%d:%s] SDR backlight is controlled through %s\n",
+ connector->base.base.id, connector->base.name,
+ dpcd_vs_pwm_str(panel->backlight.edp.intel.sdr_uses_aux));
+ if (!panel->backlight.edp.intel.sdr_uses_aux) {
ret = panel->backlight.pwm_funcs->setup(connector, pipe);
if (ret < 0) {
drm_err(&i915->drm,
- "Failed to setup SDR backlight controls through PWM: %d\n", ret);
+ "[CONNECTOR:%d:%s] Failed to setup SDR backlight controls through PWM: %d\n",
+ connector->base.base.id, connector->base.name, ret);
return ret;
}
}
@@ -303,8 +318,10 @@ intel_dp_aux_hdr_setup_backlight(struct intel_connector *connector, enum pipe pi
panel->backlight.min = 0;
}
- drm_dbg_kms(&i915->drm, "Using backlight range %d..%d\n", panel->backlight.min,
- panel->backlight.max);
+ drm_dbg_kms(&i915->drm, "[CONNECTOR:%d:%s] Using AUX HDR interface for backlight control (range %d..%d)\n",
+ connector->base.base.id, connector->base.name,
+ panel->backlight.min, panel->backlight.max);
+
panel->backlight.level = intel_dp_aux_hdr_get_backlight(connector, pipe);
panel->backlight.enabled = panel->backlight.level != 0;
@@ -386,12 +403,19 @@ static int intel_dp_aux_vesa_setup_backlight(struct intel_connector *connector,
if (ret < 0)
return ret;
+ drm_dbg_kms(&i915->drm, "[CONNECTOR:%d:%s] AUX VESA backlight enable is controlled through %s\n",
+ connector->base.base.id, connector->base.name,
+ dpcd_vs_pwm_str(panel->backlight.edp.vesa.info.aux_enable));
+ drm_dbg_kms(&i915->drm, "[CONNECTOR:%d:%s] AUX VESA backlight level is controlled through %s\n",
+ connector->base.base.id, connector->base.name,
+ dpcd_vs_pwm_str(panel->backlight.edp.vesa.info.aux_set));
+
if (!panel->backlight.edp.vesa.info.aux_set || !panel->backlight.edp.vesa.info.aux_enable) {
ret = panel->backlight.pwm_funcs->setup(connector, pipe);
if (ret < 0) {
drm_err(&i915->drm,
- "Failed to setup PWM backlight controls for eDP backlight: %d\n",
- ret);
+ "[CONNECTOR:%d:%s] Failed to setup PWM backlight controls for eDP backlight: %d\n",
+ connector->base.base.id, connector->base.name, ret);
return ret;
}
}
@@ -418,6 +442,9 @@ static int intel_dp_aux_vesa_setup_backlight(struct intel_connector *connector,
}
}
+ drm_dbg_kms(&i915->drm, "[CONNECTOR:%d:%s] Using AUX VESA interface for backlight control\n",
+ connector->base.base.id, connector->base.name);
+
return 0;
}
@@ -428,7 +455,8 @@ intel_dp_aux_supports_vesa_backlight(struct intel_connector *connector)
struct drm_i915_private *i915 = dp_to_i915(intel_dp);
if (drm_edp_backlight_supported(intel_dp->edp_dpcd)) {
- drm_dbg_kms(&i915->drm, "AUX Backlight Control Supported!\n");
+ drm_dbg_kms(&i915->drm, "[CONNECTOR:%d:%s] AUX Backlight Control Supported!\n",
+ connector->base.base.id, connector->base.name);
return true;
}
return false;
@@ -504,13 +532,15 @@ int intel_dp_aux_init_backlight_funcs(struct intel_connector *connector)
* interfaces is to probe for Intel's first, and VESA's second.
*/
if (try_intel_interface && intel_dp_aux_supports_hdr_backlight(connector)) {
- drm_dbg_kms(dev, "Using Intel proprietary eDP backlight controls\n");
+ drm_dbg_kms(dev, "[CONNECTOR:%d:%s] Using Intel proprietary eDP backlight controls\n",
+ connector->base.base.id, connector->base.name);
panel->backlight.funcs = &intel_dp_hdr_bl_funcs;
return 0;
}
if (try_vesa_interface && intel_dp_aux_supports_vesa_backlight(connector)) {
- drm_dbg_kms(dev, "Using VESA eDP backlight controls\n");
+ drm_dbg_kms(dev, "[CONNECTOR:%d:%s] Using VESA eDP backlight controls\n",
+ connector->base.base.id, connector->base.name);
panel->backlight.funcs = &intel_dp_vesa_bl_funcs;
return 0;
}
diff --git a/drivers/gpu/drm/i915/display/intel_dp_aux_regs.h b/drivers/gpu/drm/i915/display/intel_dp_aux_regs.h
new file mode 100644
index 000000000000..5702f318d537
--- /dev/null
+++ b/drivers/gpu/drm/i915/display/intel_dp_aux_regs.h
@@ -0,0 +1,84 @@
+/* SPDX-License-Identifier: MIT */
+/*
+ * Copyright © 2023 Intel Corporation
+ */
+
+#ifndef __INTEL_DP_AUX_REGS_H__
+#define __INTEL_DP_AUX_REGS_H__
+
+#include "intel_display_reg_defs.h"
+
+/*
+ * The aux channel provides a way to talk to the signal sink for DDC etc. Max
+ * packet size supported is 20 bytes in each direction, hence the 5 fixed data
+ * registers
+ */
+#define _DPA_AUX_CH_CTL (DISPLAY_MMIO_BASE(dev_priv) + 0x64010)
+#define _DPA_AUX_CH_DATA1 (DISPLAY_MMIO_BASE(dev_priv) + 0x64014)
+
+#define _DPB_AUX_CH_CTL (DISPLAY_MMIO_BASE(dev_priv) + 0x64110)
+#define _DPB_AUX_CH_DATA1 (DISPLAY_MMIO_BASE(dev_priv) + 0x64114)
+
+#define DP_AUX_CH_CTL(aux_ch) _MMIO_PORT(aux_ch, _DPA_AUX_CH_CTL, _DPB_AUX_CH_CTL)
+#define DP_AUX_CH_DATA(aux_ch, i) _MMIO(_PORT(aux_ch, _DPA_AUX_CH_DATA1, _DPB_AUX_CH_DATA1) + (i) * 4) /* 5 registers */
+
+#define _XELPDP_USBC1_AUX_CH_CTL 0x16F210
+#define _XELPDP_USBC2_AUX_CH_CTL 0x16F410
+#define _XELPDP_USBC3_AUX_CH_CTL 0x16F610
+#define _XELPDP_USBC4_AUX_CH_CTL 0x16F810
+
+#define XELPDP_DP_AUX_CH_CTL(aux_ch) _MMIO(_PICK(aux_ch, \
+ _DPA_AUX_CH_CTL, \
+ _DPB_AUX_CH_CTL, \
+ 0, /* port/aux_ch C is non-existent */ \
+ _XELPDP_USBC1_AUX_CH_CTL, \
+ _XELPDP_USBC2_AUX_CH_CTL, \
+ _XELPDP_USBC3_AUX_CH_CTL, \
+ _XELPDP_USBC4_AUX_CH_CTL))
+
+#define _XELPDP_USBC1_AUX_CH_DATA1 0x16F214
+#define _XELPDP_USBC2_AUX_CH_DATA1 0x16F414
+#define _XELPDP_USBC3_AUX_CH_DATA1 0x16F614
+#define _XELPDP_USBC4_AUX_CH_DATA1 0x16F814
+
+#define XELPDP_DP_AUX_CH_DATA(aux_ch, i) _MMIO(_PICK(aux_ch, \
+ _DPA_AUX_CH_DATA1, \
+ _DPB_AUX_CH_DATA1, \
+ 0, /* port/aux_ch C is non-existent */ \
+ _XELPDP_USBC1_AUX_CH_DATA1, \
+ _XELPDP_USBC2_AUX_CH_DATA1, \
+ _XELPDP_USBC3_AUX_CH_DATA1, \
+ _XELPDP_USBC4_AUX_CH_DATA1) + (i) * 4)
+
+#define DP_AUX_CH_CTL_SEND_BUSY (1 << 31)
+#define DP_AUX_CH_CTL_DONE (1 << 30)
+#define DP_AUX_CH_CTL_INTERRUPT (1 << 29)
+#define DP_AUX_CH_CTL_TIME_OUT_ERROR (1 << 28)
+#define DP_AUX_CH_CTL_TIME_OUT_400us (0 << 26)
+#define DP_AUX_CH_CTL_TIME_OUT_600us (1 << 26)
+#define DP_AUX_CH_CTL_TIME_OUT_800us (2 << 26)
+#define DP_AUX_CH_CTL_TIME_OUT_MAX (3 << 26) /* Varies per platform */
+#define DP_AUX_CH_CTL_TIME_OUT_MASK (3 << 26)
+#define DP_AUX_CH_CTL_RECEIVE_ERROR (1 << 25)
+#define DP_AUX_CH_CTL_MESSAGE_SIZE_MASK (0x1f << 20)
+#define DP_AUX_CH_CTL_MESSAGE_SIZE_SHIFT 20
+#define XELPDP_DP_AUX_CH_CTL_POWER_REQUEST REG_BIT(19)
+#define XELPDP_DP_AUX_CH_CTL_POWER_STATUS REG_BIT(18)
+#define DP_AUX_CH_CTL_PRECHARGE_2US_MASK (0xf << 16)
+#define DP_AUX_CH_CTL_PRECHARGE_2US_SHIFT 16
+#define DP_AUX_CH_CTL_AUX_AKSV_SELECT (1 << 15)
+#define DP_AUX_CH_CTL_MANCHESTER_TEST (1 << 14)
+#define DP_AUX_CH_CTL_SYNC_TEST (1 << 13)
+#define DP_AUX_CH_CTL_DEGLITCH_TEST (1 << 12)
+#define DP_AUX_CH_CTL_PRECHARGE_TEST (1 << 11)
+#define DP_AUX_CH_CTL_BIT_CLOCK_2X_MASK (0x7ff)
+#define DP_AUX_CH_CTL_BIT_CLOCK_2X_SHIFT 0
+#define DP_AUX_CH_CTL_PSR_DATA_AUX_REG_SKL (1 << 14)
+#define DP_AUX_CH_CTL_FS_DATA_AUX_REG_SKL (1 << 13)
+#define DP_AUX_CH_CTL_GTC_DATA_AUX_REG_SKL (1 << 12)
+#define DP_AUX_CH_CTL_TBT_IO (1 << 11)
+#define DP_AUX_CH_CTL_FW_SYNC_PULSE_SKL_MASK (0x1f << 5)
+#define DP_AUX_CH_CTL_FW_SYNC_PULSE_SKL(c) (((c) - 1) << 5)
+#define DP_AUX_CH_CTL_SYNC_PULSE_SKL(c) ((c) - 1)
+
+#endif /* __INTEL_DP_AUX_REGS_H__ */
diff --git a/drivers/gpu/drm/i915/display/intel_dp_hdcp.c b/drivers/gpu/drm/i915/display/intel_dp_hdcp.c
index 88689124c013..e0c177161407 100644
--- a/drivers/gpu/drm/i915/display/intel_dp_hdcp.c
+++ b/drivers/gpu/drm/i915/display/intel_dp_hdcp.c
@@ -11,6 +11,7 @@
#include <drm/display/drm_hdcp_helper.h>
#include <drm/drm_print.h>
+#include "i915_reg.h"
#include "intel_ddi.h"
#include "intel_de.h"
#include "intel_display_types.h"
@@ -19,28 +20,20 @@
#include "intel_hdcp.h"
#include "intel_hdcp_regs.h"
-static unsigned int transcoder_to_stream_enc_status(enum transcoder cpu_transcoder)
+static u32 transcoder_to_stream_enc_status(enum transcoder cpu_transcoder)
{
- u32 stream_enc_mask;
-
switch (cpu_transcoder) {
case TRANSCODER_A:
- stream_enc_mask = HDCP_STATUS_STREAM_A_ENC;
- break;
+ return HDCP_STATUS_STREAM_A_ENC;
case TRANSCODER_B:
- stream_enc_mask = HDCP_STATUS_STREAM_B_ENC;
- break;
+ return HDCP_STATUS_STREAM_B_ENC;
case TRANSCODER_C:
- stream_enc_mask = HDCP_STATUS_STREAM_C_ENC;
- break;
+ return HDCP_STATUS_STREAM_C_ENC;
case TRANSCODER_D:
- stream_enc_mask = HDCP_STATUS_STREAM_D_ENC;
- break;
+ return HDCP_STATUS_STREAM_D_ENC;
default:
- stream_enc_mask = 0;
+ return 0;
}
-
- return stream_enc_mask;
}
static void intel_dp_hdcp_wait_for_cp_irq(struct intel_hdcp *hdcp, int timeout)
diff --git a/drivers/gpu/drm/i915/display/intel_dp_link_training.c b/drivers/gpu/drm/i915/display/intel_dp_link_training.c
index 3d3efcf02011..d638054c74ac 100644
--- a/drivers/gpu/drm/i915/display/intel_dp_link_training.c
+++ b/drivers/gpu/drm/i915/display/intel_dp_link_training.c
@@ -1379,10 +1379,6 @@ intel_dp_128b132b_lane_cds(struct intel_dp *intel_dp,
}
}
- /* FIXME: Should DP_TRAINING_PATTERN_DISABLE be written first? */
- if (intel_dp->set_idle_link_train)
- intel_dp->set_idle_link_train(intel_dp, crtc_state);
-
return true;
}
@@ -1433,7 +1429,11 @@ intel_dp_128b132b_link_train(struct intel_dp *intel_dp,
void intel_dp_start_link_train(struct intel_dp *intel_dp,
const struct intel_crtc_state *crtc_state)
{
+ struct drm_i915_private *i915 = dp_to_i915(intel_dp);
+ struct intel_connector *connector = intel_dp->attached_connector;
+ struct intel_encoder *encoder = &dp_to_dig_port(intel_dp)->base;
bool passed;
+
/*
* TODO: Reiniting LTTPRs here won't be needed once proper connector
* HW state readout is added.
@@ -1451,6 +1451,46 @@ void intel_dp_start_link_train(struct intel_dp *intel_dp,
else
passed = intel_dp_link_train_all_phys(intel_dp, crtc_state, lttpr_count);
+ /*
+ * Ignore the link failure in CI
+ *
+ * In fixed enviroments like CI, sometimes unexpected long HPDs are
+ * generated by the displays. If ignore_long_hpd flag is set, such long
+ * HPDs are ignored. And probably as a consequence of these ignored
+ * long HPDs, subsequent link trainings are failed resulting into CI
+ * execution failures.
+ *
+ * For test cases which rely on the link training or processing of HPDs
+ * ignore_long_hpd flag can unset from the testcase.
+ */
+ if (!passed && i915->display.hotplug.ignore_long_hpd) {
+ drm_dbg_kms(&i915->drm,
+ "[CONNECTOR:%d:%s][ENCODER:%d:%s] Ignore the link failure\n",
+ connector->base.base.id, connector->base.name,
+ encoder->base.base.id, encoder->base.name);
+ return;
+ }
+
if (!passed)
intel_dp_schedule_fallback_link_training(intel_dp, crtc_state);
}
+
+void intel_dp_128b132b_sdp_crc16(struct intel_dp *intel_dp,
+ const struct intel_crtc_state *crtc_state)
+{
+ struct drm_i915_private *i915 = dp_to_i915(intel_dp);
+
+ /*
+ * VIDEO_DIP_CTL register bit 31 should be set to '0' to not
+ * disable SDP CRC. This is applicable for Display version 13.
+ * Default value of bit 31 is '0' hence discarding the write
+ * TODO: Corrective actions on SDP corruption yet to be defined
+ */
+ if (intel_dp_is_uhbr(crtc_state))
+ /* DP v2.0 SCR on SDP CRC16 for 128b/132b Link Layer */
+ drm_dp_dpcd_writeb(&intel_dp->aux,
+ DP_SDP_ERROR_DETECTION_CONFIGURATION,
+ DP_SDP_CRC16_128B132B_EN);
+
+ drm_dbg_kms(&i915->drm, "DP2.0 SDP CRC16 for 128b/132b enabled\n");
+}
diff --git a/drivers/gpu/drm/i915/display/intel_dp_link_training.h b/drivers/gpu/drm/i915/display/intel_dp_link_training.h
index 7fa1c0833096..2c8f2775891b 100644
--- a/drivers/gpu/drm/i915/display/intel_dp_link_training.h
+++ b/drivers/gpu/drm/i915/display/intel_dp_link_training.h
@@ -39,4 +39,6 @@ static inline u8 intel_dp_training_pattern_symbol(u8 pattern)
return pattern & ~DP_LINK_SCRAMBLING_DISABLE;
}
+void intel_dp_128b132b_sdp_crc16(struct intel_dp *intel_dp,
+ const struct intel_crtc_state *crtc_state);
#endif /* __INTEL_DP_LINK_TRAINING_H__ */
diff --git a/drivers/gpu/drm/i915/display/intel_dp_mst.c b/drivers/gpu/drm/i915/display/intel_dp_mst.c
index 03604a37931c..2c49d9ab86a2 100644
--- a/drivers/gpu/drm/i915/display/intel_dp_mst.c
+++ b/drivers/gpu/drm/i915/display/intel_dp_mst.c
@@ -29,6 +29,7 @@
#include <drm/drm_probe_helper.h>
#include "i915_drv.h"
+#include "i915_reg.h"
#include "intel_atomic.h"
#include "intel_audio.h"
#include "intel_connector.h"
@@ -44,10 +45,35 @@
#include "intel_hotplug.h"
#include "skl_scaler.h"
-static int intel_dp_mst_compute_link_config(struct intel_encoder *encoder,
- struct intel_crtc_state *crtc_state,
- struct drm_connector_state *conn_state,
- struct link_config_limits *limits)
+static int intel_dp_mst_check_constraints(struct drm_i915_private *i915, int bpp,
+ const struct drm_display_mode *adjusted_mode,
+ struct intel_crtc_state *crtc_state,
+ bool dsc)
+{
+ if (intel_dp_is_uhbr(crtc_state) && DISPLAY_VER(i915) <= 13 && dsc) {
+ int output_bpp = bpp;
+ /* DisplayPort 2 128b/132b, bits per lane is always 32 */
+ int symbol_clock = crtc_state->port_clock / 32;
+
+ if (output_bpp * adjusted_mode->crtc_clock >=
+ symbol_clock * 72) {
+ drm_dbg_kms(&i915->drm, "UHBR check failed(required bw %d available %d)\n",
+ output_bpp * adjusted_mode->crtc_clock, symbol_clock * 72);
+ return -EINVAL;
+ }
+ }
+
+ return 0;
+}
+
+static int intel_dp_mst_find_vcpi_slots_for_bpp(struct intel_encoder *encoder,
+ struct intel_crtc_state *crtc_state,
+ int max_bpp,
+ int min_bpp,
+ struct link_config_limits *limits,
+ struct drm_connector_state *conn_state,
+ int step,
+ bool dsc)
{
struct drm_atomic_state *state = crtc_state->uapi.state;
struct intel_dp_mst_encoder *intel_mst = enc_to_mst(encoder);
@@ -59,6 +85,7 @@ static int intel_dp_mst_compute_link_config(struct intel_encoder *encoder,
const struct drm_display_mode *adjusted_mode =
&crtc_state->hw.adjusted_mode;
int bpp, slots = -EINVAL;
+ int ret = 0;
mst_state = drm_atomic_get_mst_topology_state(state, &intel_dp->mst_mgr);
if (IS_ERR(mst_state))
@@ -70,30 +97,72 @@ static int intel_dp_mst_compute_link_config(struct intel_encoder *encoder,
// TODO: Handle pbn_div changes by adding a new MST helper
if (!mst_state->pbn_div) {
mst_state->pbn_div = drm_dp_get_vc_payload_bw(&intel_dp->mst_mgr,
- limits->max_rate,
- limits->max_lane_count);
+ crtc_state->port_clock,
+ crtc_state->lane_count);
}
- for (bpp = limits->max_bpp; bpp >= limits->min_bpp; bpp -= 2 * 3) {
- crtc_state->pipe_bpp = bpp;
+ for (bpp = max_bpp; bpp >= min_bpp; bpp -= step) {
+ drm_dbg_kms(&i915->drm, "Trying bpp %d\n", bpp);
+
+ ret = intel_dp_mst_check_constraints(i915, bpp, adjusted_mode, crtc_state, dsc);
+ if (ret)
+ continue;
crtc_state->pbn = drm_dp_calc_pbn_mode(adjusted_mode->crtc_clock,
- crtc_state->pipe_bpp,
- false);
+ dsc ? bpp << 4 : bpp,
+ dsc);
+
slots = drm_dp_atomic_find_time_slots(state, &intel_dp->mst_mgr,
- connector->port, crtc_state->pbn);
+ connector->port,
+ crtc_state->pbn);
if (slots == -EDEADLK)
return slots;
- if (slots >= 0)
- break;
+
+ if (slots >= 0) {
+ ret = drm_dp_mst_atomic_check(state);
+ /*
+ * If we got slots >= 0 and we can fit those based on check
+ * then we can exit the loop. Otherwise keep trying.
+ */
+ if (!ret)
+ break;
+ }
}
+ /* We failed to find a proper bpp/timeslots, return error */
+ if (ret)
+ slots = ret;
+
if (slots < 0) {
drm_dbg_kms(&i915->drm, "failed finding vcpi slots:%d\n",
slots);
- return slots;
+ } else {
+ if (!dsc)
+ crtc_state->pipe_bpp = bpp;
+ else
+ crtc_state->dsc.compressed_bpp = bpp;
+ drm_dbg_kms(&i915->drm, "Got %d slots for pipe bpp %d dsc %d\n", slots, bpp, dsc);
}
+ return slots;
+}
+
+static int intel_dp_mst_compute_link_config(struct intel_encoder *encoder,
+ struct intel_crtc_state *crtc_state,
+ struct drm_connector_state *conn_state,
+ struct link_config_limits *limits)
+{
+ const struct drm_display_mode *adjusted_mode =
+ &crtc_state->hw.adjusted_mode;
+ int slots = -EINVAL;
+
+ slots = intel_dp_mst_find_vcpi_slots_for_bpp(encoder, crtc_state, limits->max_bpp,
+ limits->min_bpp, limits,
+ conn_state, 2 * 3, false);
+
+ if (slots < 0)
+ return slots;
+
intel_link_compute_m_n(crtc_state->pipe_bpp,
crtc_state->lane_count,
adjusted_mode->crtc_clock,
@@ -105,6 +174,99 @@ static int intel_dp_mst_compute_link_config(struct intel_encoder *encoder,
return 0;
}
+static int intel_dp_dsc_mst_compute_link_config(struct intel_encoder *encoder,
+ struct intel_crtc_state *crtc_state,
+ struct drm_connector_state *conn_state,
+ struct link_config_limits *limits)
+{
+ struct intel_dp_mst_encoder *intel_mst = enc_to_mst(encoder);
+ struct intel_dp *intel_dp = &intel_mst->primary->dp;
+ struct intel_connector *connector =
+ to_intel_connector(conn_state->connector);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
+ const struct drm_display_mode *adjusted_mode =
+ &crtc_state->hw.adjusted_mode;
+ int slots = -EINVAL;
+ int i, num_bpc;
+ u8 dsc_bpc[3] = {0};
+ int min_bpp, max_bpp, sink_min_bpp, sink_max_bpp;
+ u8 dsc_max_bpc;
+ bool need_timeslot_recalc = false;
+ u32 last_compressed_bpp;
+
+ /* Max DSC Input BPC for ICL is 10 and for TGL+ is 12 */
+ if (DISPLAY_VER(i915) >= 12)
+ dsc_max_bpc = min_t(u8, 12, conn_state->max_requested_bpc);
+ else
+ dsc_max_bpc = min_t(u8, 10, conn_state->max_requested_bpc);
+
+ max_bpp = min_t(u8, dsc_max_bpc * 3, limits->max_bpp);
+ min_bpp = limits->min_bpp;
+
+ num_bpc = drm_dp_dsc_sink_supported_input_bpcs(intel_dp->dsc_dpcd,
+ dsc_bpc);
+
+ drm_dbg_kms(&i915->drm, "DSC Source supported min bpp %d max bpp %d\n",
+ min_bpp, max_bpp);
+
+ sink_max_bpp = dsc_bpc[0] * 3;
+ sink_min_bpp = sink_max_bpp;
+
+ for (i = 1; i < num_bpc; i++) {
+ if (sink_min_bpp > dsc_bpc[i] * 3)
+ sink_min_bpp = dsc_bpc[i] * 3;
+ if (sink_max_bpp < dsc_bpc[i] * 3)
+ sink_max_bpp = dsc_bpc[i] * 3;
+ }
+
+ drm_dbg_kms(&i915->drm, "DSC Sink supported min bpp %d max bpp %d\n",
+ sink_min_bpp, sink_max_bpp);
+
+ if (min_bpp < sink_min_bpp)
+ min_bpp = sink_min_bpp;
+
+ if (max_bpp > sink_max_bpp)
+ max_bpp = sink_max_bpp;
+
+ slots = intel_dp_mst_find_vcpi_slots_for_bpp(encoder, crtc_state, max_bpp,
+ min_bpp, limits,
+ conn_state, 2 * 3, true);
+
+ if (slots < 0)
+ return slots;
+
+ last_compressed_bpp = crtc_state->dsc.compressed_bpp;
+
+ crtc_state->dsc.compressed_bpp = intel_dp_dsc_nearest_valid_bpp(i915,
+ last_compressed_bpp,
+ crtc_state->pipe_bpp);
+
+ if (crtc_state->dsc.compressed_bpp != last_compressed_bpp)
+ need_timeslot_recalc = true;
+
+ /*
+ * Apparently some MST hubs dislike if vcpi slots are not matching precisely
+ * the actual compressed bpp we use.
+ */
+ if (need_timeslot_recalc) {
+ slots = intel_dp_mst_find_vcpi_slots_for_bpp(encoder, crtc_state,
+ crtc_state->dsc.compressed_bpp,
+ crtc_state->dsc.compressed_bpp,
+ limits, conn_state, 2 * 3, true);
+ if (slots < 0)
+ return slots;
+ }
+
+ intel_link_compute_m_n(crtc_state->dsc.compressed_bpp,
+ crtc_state->lane_count,
+ adjusted_mode->crtc_clock,
+ crtc_state->port_clock,
+ &crtc_state->dp_m_n,
+ crtc_state->fec_enable);
+ crtc_state->dp_m_n.tu = slots;
+
+ return 0;
+}
static int intel_dp_mst_update_slots(struct intel_encoder *encoder,
struct intel_crtc_state *crtc_state,
struct drm_connector_state *conn_state)
@@ -128,6 +290,19 @@ static int intel_dp_mst_update_slots(struct intel_encoder *encoder,
return 0;
}
+static bool intel_dp_mst_has_audio(const struct drm_connector_state *conn_state)
+{
+ const struct intel_digital_connector_state *intel_conn_state =
+ to_intel_digital_connector_state(conn_state);
+ struct intel_connector *connector =
+ to_intel_connector(conn_state->connector);
+
+ if (intel_conn_state->force_audio == HDMI_AUDIO_AUTO)
+ return connector->port->has_audio;
+ else
+ return intel_conn_state->force_audio == HDMI_AUDIO_ON;
+}
+
static int intel_dp_mst_compute_config(struct intel_encoder *encoder,
struct intel_crtc_state *pipe_config,
struct drm_connector_state *conn_state)
@@ -135,10 +310,6 @@ static int intel_dp_mst_compute_config(struct intel_encoder *encoder,
struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
struct intel_dp_mst_encoder *intel_mst = enc_to_mst(encoder);
struct intel_dp *intel_dp = &intel_mst->primary->dp;
- struct intel_connector *connector =
- to_intel_connector(conn_state->connector);
- struct intel_digital_connector_state *intel_conn_state =
- to_intel_digital_connector_state(conn_state);
const struct drm_display_mode *adjusted_mode =
&pipe_config->hw.adjusted_mode;
struct link_config_limits limits;
@@ -150,11 +321,9 @@ static int intel_dp_mst_compute_config(struct intel_encoder *encoder,
pipe_config->output_format = INTEL_OUTPUT_FORMAT_RGB;
pipe_config->has_pch_encoder = false;
- if (intel_conn_state->force_audio == HDMI_AUDIO_AUTO)
- pipe_config->has_audio = connector->port->has_audio;
- else
- pipe_config->has_audio =
- intel_conn_state->force_audio == HDMI_AUDIO_ON;
+ pipe_config->has_audio =
+ intel_dp_mst_has_audio(conn_state) &&
+ intel_audio_compute_config(encoder, pipe_config, conn_state);
/*
* for MST we always configure max link bw - the spec doesn't
@@ -181,6 +350,29 @@ static int intel_dp_mst_compute_config(struct intel_encoder *encoder,
ret = intel_dp_mst_compute_link_config(encoder, pipe_config,
conn_state, &limits);
+
+ if (ret == -EDEADLK)
+ return ret;
+
+ /* enable compression if the mode doesn't fit available BW */
+ drm_dbg_kms(&dev_priv->drm, "Force DSC en = %d\n", intel_dp->force_dsc_en);
+ if (ret || intel_dp->force_dsc_en) {
+ /*
+ * Try to get at least some timeslots and then see, if
+ * we can fit there with DSC.
+ */
+ drm_dbg_kms(&dev_priv->drm, "Trying to find VCPI slots in DSC mode\n");
+
+ ret = intel_dp_dsc_mst_compute_link_config(encoder, pipe_config,
+ conn_state, &limits);
+ if (ret < 0)
+ return ret;
+
+ ret = intel_dp_dsc_compute_config(intel_dp, pipe_config,
+ conn_state, &limits,
+ pipe_config->dp_m_n.tu, false);
+ }
+
if (ret)
return ret;
@@ -364,8 +556,14 @@ static void intel_mst_disable_dp(struct intel_atomic_state *state,
struct intel_dp *intel_dp = &dig_port->dp;
struct intel_connector *connector =
to_intel_connector(old_conn_state->connector);
- struct drm_dp_mst_topology_state *mst_state =
- drm_atomic_get_mst_topology_state(&state->base, &intel_dp->mst_mgr);
+ struct drm_dp_mst_topology_state *old_mst_state =
+ drm_atomic_get_old_mst_topology_state(&state->base, &intel_dp->mst_mgr);
+ struct drm_dp_mst_topology_state *new_mst_state =
+ drm_atomic_get_new_mst_topology_state(&state->base, &intel_dp->mst_mgr);
+ const struct drm_dp_mst_atomic_payload *old_payload =
+ drm_atomic_get_mst_payload_state(old_mst_state, connector->port);
+ struct drm_dp_mst_atomic_payload *new_payload =
+ drm_atomic_get_mst_payload_state(new_mst_state, connector->port);
struct drm_i915_private *i915 = to_i915(connector->base.dev);
drm_dbg_kms(&i915->drm, "active links %d\n",
@@ -373,8 +571,8 @@ static void intel_mst_disable_dp(struct intel_atomic_state *state,
intel_hdcp_disable(intel_mst->connector);
- drm_dp_remove_payload(&intel_dp->mst_mgr, mst_state,
- drm_atomic_get_mst_payload_state(mst_state, connector->port));
+ drm_dp_remove_payload(&intel_dp->mst_mgr, new_mst_state,
+ old_payload, new_payload);
intel_audio_codec_disable(encoder, old_crtc_state, old_conn_state);
}
@@ -438,7 +636,7 @@ static void intel_mst_post_disable_dp(struct intel_atomic_state *state,
* no clock to the transcoder"
*/
if (DISPLAY_VER(dev_priv) < 12 || !last_mst_stream)
- intel_ddi_disable_pipe_clock(old_crtc_state);
+ intel_ddi_disable_transcoder_clock(old_crtc_state);
intel_mst->connector = NULL;
@@ -450,6 +648,20 @@ static void intel_mst_post_disable_dp(struct intel_atomic_state *state,
intel_dp->active_mst_links);
}
+static void intel_mst_post_pll_disable_dp(struct intel_atomic_state *state,
+ struct intel_encoder *encoder,
+ const struct intel_crtc_state *old_crtc_state,
+ const struct drm_connector_state *old_conn_state)
+{
+ struct intel_dp_mst_encoder *intel_mst = enc_to_mst(encoder);
+ struct intel_digital_port *dig_port = intel_mst->primary;
+ struct intel_dp *intel_dp = &dig_port->dp;
+
+ if (intel_dp->active_mst_links == 0 &&
+ dig_port->base.post_pll_disable)
+ dig_port->base.post_pll_disable(state, encoder, old_crtc_state, old_conn_state);
+}
+
static void intel_mst_pre_pll_enable_dp(struct intel_atomic_state *state,
struct intel_encoder *encoder,
const struct intel_crtc_state *pipe_config,
@@ -462,6 +674,13 @@ static void intel_mst_pre_pll_enable_dp(struct intel_atomic_state *state,
if (intel_dp->active_mst_links == 0)
dig_port->base.pre_pll_enable(state, &dig_port->base,
pipe_config, NULL);
+ else
+ /*
+ * The port PLL state needs to get updated for secondary
+ * streams as for the primary stream.
+ */
+ intel_ddi_update_active_dpll(state, &dig_port->base,
+ to_intel_crtc(pipe_config->uapi.crtc));
}
static void intel_mst_pre_enable_dp(struct intel_atomic_state *state,
@@ -518,7 +737,7 @@ static void intel_mst_pre_enable_dp(struct intel_atomic_state *state,
* here for the following ones.
*/
if (DISPLAY_VER(dev_priv) < 12 || !first_mst_stream)
- intel_ddi_enable_pipe_clock(encoder, pipe_config);
+ intel_ddi_enable_transcoder_clock(encoder, pipe_config);
intel_ddi_set_dp_msa(pipe_config, conn_state);
}
@@ -691,6 +910,10 @@ intel_dp_mst_mode_valid_ctx(struct drm_connector *connector,
int max_dotclk = to_i915(connector->dev)->max_dotclk_freq;
int max_rate, mode_rate, max_lanes, max_link_clock;
int ret;
+ bool dsc = false, bigjoiner = false;
+ u16 dsc_max_output_bpp = 0;
+ u8 dsc_slice_count = 0;
+ int target_clock = mode->clock;
if (drm_connector_is_unregistered(connector)) {
*status = MODE_ERROR;
@@ -728,6 +951,48 @@ intel_dp_mst_mode_valid_ctx(struct drm_connector *connector,
return 0;
}
+ if (intel_dp_need_bigjoiner(intel_dp, mode->hdisplay, target_clock)) {
+ bigjoiner = true;
+ max_dotclk *= 2;
+ }
+
+ if (DISPLAY_VER(dev_priv) >= 10 &&
+ drm_dp_sink_supports_dsc(intel_dp->dsc_dpcd)) {
+ /*
+ * TBD pass the connector BPC,
+ * for now U8_MAX so that max BPC on that platform would be picked
+ */
+ int pipe_bpp = intel_dp_dsc_compute_bpp(intel_dp, U8_MAX);
+
+ if (drm_dp_sink_supports_fec(intel_dp->fec_capable)) {
+ dsc_max_output_bpp =
+ intel_dp_dsc_get_output_bpp(dev_priv,
+ max_link_clock,
+ max_lanes,
+ target_clock,
+ mode->hdisplay,
+ bigjoiner,
+ pipe_bpp, 64) >> 4;
+ dsc_slice_count =
+ intel_dp_dsc_get_slice_count(intel_dp,
+ target_clock,
+ mode->hdisplay,
+ bigjoiner);
+ }
+
+ dsc = dsc_max_output_bpp && dsc_slice_count;
+ }
+
+ /*
+ * Big joiner configuration needs DSC for TGL which is not true for
+ * XE_LPD where uncompressed joiner is supported.
+ */
+ if (DISPLAY_VER(dev_priv) < 13 && bigjoiner && !dsc)
+ return MODE_CLOCK_HIGH;
+
+ if (mode_rate > max_rate && !dsc)
+ return MODE_CLOCK_HIGH;
+
*status = intel_mode_valid_max_plane_size(dev_priv, mode, false);
return 0;
}
@@ -793,7 +1058,35 @@ static bool intel_dp_mst_get_hw_state(struct intel_connector *connector)
return false;
}
-static struct drm_connector *intel_dp_add_mst_connector(struct drm_dp_mst_topology_mgr *mgr, struct drm_dp_mst_port *port, const char *pathprop)
+static int intel_dp_mst_add_properties(struct intel_dp *intel_dp,
+ struct drm_connector *connector,
+ const char *pathprop)
+{
+ struct drm_i915_private *i915 = to_i915(connector->dev);
+
+ drm_object_attach_property(&connector->base,
+ i915->drm.mode_config.path_property, 0);
+ drm_object_attach_property(&connector->base,
+ i915->drm.mode_config.tile_property, 0);
+
+ intel_attach_force_audio_property(connector);
+ intel_attach_broadcast_rgb_property(connector);
+
+ /*
+ * Reuse the prop from the SST connector because we're
+ * not allowed to create new props after device registration.
+ */
+ connector->max_bpc_property =
+ intel_dp->attached_connector->base.max_bpc_property;
+ if (connector->max_bpc_property)
+ drm_connector_attach_max_bpc_property(connector, 6, 12);
+
+ return drm_connector_set_path_property(connector, pathprop);
+}
+
+static struct drm_connector *intel_dp_add_mst_connector(struct drm_dp_mst_topology_mgr *mgr,
+ struct drm_dp_mst_port *port,
+ const char *pathprop)
{
struct intel_dp *intel_dp = container_of(mgr, struct intel_dp, mst_mgr);
struct intel_digital_port *dig_port = dp_to_dig_port(intel_dp);
@@ -833,28 +1126,14 @@ static struct drm_connector *intel_dp_add_mst_connector(struct drm_dp_mst_topolo
goto err;
}
- drm_object_attach_property(&connector->base, dev->mode_config.path_property, 0);
- drm_object_attach_property(&connector->base, dev->mode_config.tile_property, 0);
-
- ret = drm_connector_set_path_property(connector, pathprop);
+ ret = intel_dp_mst_add_properties(intel_dp, connector, pathprop);
if (ret)
goto err;
- intel_attach_force_audio_property(connector);
- intel_attach_broadcast_rgb_property(connector);
-
ret = intel_dp_hdcp_init(dig_port, intel_connector);
if (ret)
drm_dbg_kms(&dev_priv->drm, "[%s:%d] HDCP MST init failed, skipping.\n",
connector->name, connector->base.id);
- /*
- * Reuse the prop from the SST connector because we're
- * not allowed to create new props after device registration.
- */
- connector->max_bpc_property =
- intel_dp->attached_connector->base.max_bpc_property;
- if (connector->max_bpc_property)
- drm_connector_attach_max_bpc_property(connector, 6, 12);
return connector;
@@ -913,6 +1192,7 @@ intel_dp_create_fake_mst_encoder(struct intel_digital_port *dig_port, enum pipe
intel_encoder->compute_config_late = intel_dp_mst_compute_config_late;
intel_encoder->disable = intel_mst_disable_dp;
intel_encoder->post_disable = intel_mst_post_disable_dp;
+ intel_encoder->post_pll_disable = intel_mst_post_pll_disable_dp;
intel_encoder->update_pipe = intel_ddi_update_pipe;
intel_encoder->pre_pll_enable = intel_mst_pre_pll_enable_dp;
intel_encoder->pre_enable = intel_mst_pre_enable_dp;
@@ -1003,3 +1283,64 @@ bool intel_dp_mst_is_slave_trans(const struct intel_crtc_state *crtc_state)
return crtc_state->mst_master_transcoder != INVALID_TRANSCODER &&
crtc_state->mst_master_transcoder != crtc_state->cpu_transcoder;
}
+
+/**
+ * intel_dp_mst_add_topology_state_for_connector - add MST topology state for a connector
+ * @state: atomic state
+ * @connector: connector to add the state for
+ * @crtc: the CRTC @connector is attached to
+ *
+ * Add the MST topology state for @connector to @state.
+ *
+ * Returns 0 on success, negative error code on failure.
+ */
+static int
+intel_dp_mst_add_topology_state_for_connector(struct intel_atomic_state *state,
+ struct intel_connector *connector,
+ struct intel_crtc *crtc)
+{
+ struct drm_dp_mst_topology_state *mst_state;
+
+ if (!connector->mst_port)
+ return 0;
+
+ mst_state = drm_atomic_get_mst_topology_state(&state->base,
+ &connector->mst_port->mst_mgr);
+ if (IS_ERR(mst_state))
+ return PTR_ERR(mst_state);
+
+ mst_state->pending_crtc_mask |= drm_crtc_mask(&crtc->base);
+
+ return 0;
+}
+
+/**
+ * intel_dp_mst_add_topology_state_for_crtc - add MST topology state for a CRTC
+ * @state: atomic state
+ * @crtc: CRTC to add the state for
+ *
+ * Add the MST topology state for @crtc to @state.
+ *
+ * Returns 0 on success, negative error code on failure.
+ */
+int intel_dp_mst_add_topology_state_for_crtc(struct intel_atomic_state *state,
+ struct intel_crtc *crtc)
+{
+ struct drm_connector *_connector;
+ struct drm_connector_state *conn_state;
+ int i;
+
+ for_each_new_connector_in_state(&state->base, _connector, conn_state, i) {
+ struct intel_connector *connector = to_intel_connector(_connector);
+ int ret;
+
+ if (conn_state->crtc != &crtc->base)
+ continue;
+
+ ret = intel_dp_mst_add_topology_state_for_connector(state, connector, crtc);
+ if (ret)
+ return ret;
+ }
+
+ return 0;
+}
diff --git a/drivers/gpu/drm/i915/display/intel_dp_mst.h b/drivers/gpu/drm/i915/display/intel_dp_mst.h
index f7301de6cdfb..f1815bb72267 100644
--- a/drivers/gpu/drm/i915/display/intel_dp_mst.h
+++ b/drivers/gpu/drm/i915/display/intel_dp_mst.h
@@ -8,6 +8,8 @@
#include <linux/types.h>
+struct intel_atomic_state;
+struct intel_crtc;
struct intel_crtc_state;
struct intel_digital_port;
struct intel_dp;
@@ -18,5 +20,7 @@ int intel_dp_mst_encoder_active_links(struct intel_digital_port *dig_port);
bool intel_dp_mst_is_master_trans(const struct intel_crtc_state *crtc_state);
bool intel_dp_mst_is_slave_trans(const struct intel_crtc_state *crtc_state);
bool intel_dp_mst_source_support(struct intel_dp *intel_dp);
+int intel_dp_mst_add_topology_state_for_crtc(struct intel_atomic_state *state,
+ struct intel_crtc *crtc);
#endif /* __INTEL_DP_MST_H__ */
diff --git a/drivers/gpu/drm/i915/display/intel_dpio_phy.c b/drivers/gpu/drm/i915/display/intel_dpio_phy.c
index 8732b8722ed7..62b93d097e44 100644
--- a/drivers/gpu/drm/i915/display/intel_dpio_phy.c
+++ b/drivers/gpu/drm/i915/display/intel_dpio_phy.c
@@ -21,6 +21,7 @@
* DEALINGS IN THE SOFTWARE.
*/
+#include "i915_reg.h"
#include "intel_ddi.h"
#include "intel_ddi_buf_trans.h"
#include "intel_de.h"
@@ -375,7 +376,7 @@ static void _bxt_ddi_phy_init(struct drm_i915_private *dev_priv,
if (bxt_ddi_phy_is_enabled(dev_priv, phy)) {
/* Still read out the GRC value for state verification */
if (phy_info->rcomp_phy != -1)
- dev_priv->bxt_phy_grc = bxt_get_grc(dev_priv, phy);
+ dev_priv->display.state.bxt_phy_grc = bxt_get_grc(dev_priv, phy);
if (bxt_ddi_phy_verify_state(dev_priv, phy)) {
drm_dbg(&dev_priv->drm, "DDI PHY %d already enabled, "
@@ -388,9 +389,7 @@ static void _bxt_ddi_phy_init(struct drm_i915_private *dev_priv,
"force reprogramming it\n", phy);
}
- val = intel_de_read(dev_priv, BXT_P_CR_GT_DISP_PWRON);
- val |= phy_info->pwron_mask;
- intel_de_write(dev_priv, BXT_P_CR_GT_DISP_PWRON, val);
+ intel_de_rmw(dev_priv, BXT_P_CR_GT_DISP_PWRON, 0, phy_info->pwron_mask);
/*
* The PHY registers start out inaccessible and respond to reads with
@@ -409,27 +408,19 @@ static void _bxt_ddi_phy_init(struct drm_i915_private *dev_priv,
phy);
/* Program PLL Rcomp code offset */
- val = intel_de_read(dev_priv, BXT_PORT_CL1CM_DW9(phy));
- val &= ~IREF0RC_OFFSET_MASK;
- val |= 0xE4 << IREF0RC_OFFSET_SHIFT;
- intel_de_write(dev_priv, BXT_PORT_CL1CM_DW9(phy), val);
+ intel_de_rmw(dev_priv, BXT_PORT_CL1CM_DW9(phy), IREF0RC_OFFSET_MASK,
+ 0xE4 << IREF0RC_OFFSET_SHIFT);
- val = intel_de_read(dev_priv, BXT_PORT_CL1CM_DW10(phy));
- val &= ~IREF1RC_OFFSET_MASK;
- val |= 0xE4 << IREF1RC_OFFSET_SHIFT;
- intel_de_write(dev_priv, BXT_PORT_CL1CM_DW10(phy), val);
+ intel_de_rmw(dev_priv, BXT_PORT_CL1CM_DW10(phy), IREF1RC_OFFSET_MASK,
+ 0xE4 << IREF1RC_OFFSET_SHIFT);
/* Program power gating */
- val = intel_de_read(dev_priv, BXT_PORT_CL1CM_DW28(phy));
- val |= OCL1_POWER_DOWN_EN | DW28_OLDO_DYN_PWR_DOWN_EN |
- SUS_CLK_CONFIG;
- intel_de_write(dev_priv, BXT_PORT_CL1CM_DW28(phy), val);
-
- if (phy_info->dual_channel) {
- val = intel_de_read(dev_priv, BXT_PORT_CL2CM_DW6(phy));
- val |= DW6_OLDO_DYN_PWR_DOWN_EN;
- intel_de_write(dev_priv, BXT_PORT_CL2CM_DW6(phy), val);
- }
+ intel_de_rmw(dev_priv, BXT_PORT_CL1CM_DW28(phy), 0,
+ OCL1_POWER_DOWN_EN | DW28_OLDO_DYN_PWR_DOWN_EN | SUS_CLK_CONFIG);
+
+ if (phy_info->dual_channel)
+ intel_de_rmw(dev_priv, BXT_PORT_CL2CM_DW6(phy), 0,
+ DW6_OLDO_DYN_PWR_DOWN_EN);
if (phy_info->rcomp_phy != -1) {
u32 grc_code;
@@ -441,40 +432,32 @@ static void _bxt_ddi_phy_init(struct drm_i915_private *dev_priv,
* the corresponding calibrated value from PHY1, and disable
* the automatic calibration on PHY0.
*/
- val = dev_priv->bxt_phy_grc = bxt_get_grc(dev_priv,
- phy_info->rcomp_phy);
+ val = bxt_get_grc(dev_priv, phy_info->rcomp_phy);
+ dev_priv->display.state.bxt_phy_grc = val;
+
grc_code = val << GRC_CODE_FAST_SHIFT |
val << GRC_CODE_SLOW_SHIFT |
val;
intel_de_write(dev_priv, BXT_PORT_REF_DW6(phy), grc_code);
-
- val = intel_de_read(dev_priv, BXT_PORT_REF_DW8(phy));
- val |= GRC_DIS | GRC_RDY_OVRD;
- intel_de_write(dev_priv, BXT_PORT_REF_DW8(phy), val);
+ intel_de_rmw(dev_priv, BXT_PORT_REF_DW8(phy),
+ 0, GRC_DIS | GRC_RDY_OVRD);
}
if (phy_info->reset_delay)
udelay(phy_info->reset_delay);
- val = intel_de_read(dev_priv, BXT_PHY_CTL_FAMILY(phy));
- val |= COMMON_RESET_DIS;
- intel_de_write(dev_priv, BXT_PHY_CTL_FAMILY(phy), val);
+ intel_de_rmw(dev_priv, BXT_PHY_CTL_FAMILY(phy), 0, COMMON_RESET_DIS);
}
void bxt_ddi_phy_uninit(struct drm_i915_private *dev_priv, enum dpio_phy phy)
{
const struct bxt_ddi_phy_info *phy_info;
- u32 val;
phy_info = bxt_get_phy_info(dev_priv, phy);
- val = intel_de_read(dev_priv, BXT_PHY_CTL_FAMILY(phy));
- val &= ~COMMON_RESET_DIS;
- intel_de_write(dev_priv, BXT_PHY_CTL_FAMILY(phy), val);
+ intel_de_rmw(dev_priv, BXT_PHY_CTL_FAMILY(phy), COMMON_RESET_DIS, 0);
- val = intel_de_read(dev_priv, BXT_P_CR_GT_DISP_PWRON);
- val &= ~phy_info->pwron_mask;
- intel_de_write(dev_priv, BXT_P_CR_GT_DISP_PWRON, val);
+ intel_de_rmw(dev_priv, BXT_P_CR_GT_DISP_PWRON, phy_info->pwron_mask, 0);
}
void bxt_ddi_phy_init(struct drm_i915_private *dev_priv, enum dpio_phy phy)
@@ -567,7 +550,7 @@ bool bxt_ddi_phy_verify_state(struct drm_i915_private *dev_priv,
"BXT_PORT_CL2CM_DW6(%d)", phy);
if (phy_info->rcomp_phy != -1) {
- u32 grc_code = dev_priv->bxt_phy_grc;
+ u32 grc_code = dev_priv->display.state.bxt_phy_grc;
grc_code = grc_code << GRC_CODE_FAST_SHIFT |
grc_code << GRC_CODE_SLOW_SHIFT |
@@ -655,6 +638,48 @@ bxt_ddi_phy_get_lane_lat_optim_mask(struct intel_encoder *encoder)
return mask;
}
+enum dpio_channel vlv_dig_port_to_channel(struct intel_digital_port *dig_port)
+{
+ switch (dig_port->base.port) {
+ default:
+ MISSING_CASE(dig_port->base.port);
+ fallthrough;
+ case PORT_B:
+ case PORT_D:
+ return DPIO_CH0;
+ case PORT_C:
+ return DPIO_CH1;
+ }
+}
+
+enum dpio_phy vlv_dig_port_to_phy(struct intel_digital_port *dig_port)
+{
+ switch (dig_port->base.port) {
+ default:
+ MISSING_CASE(dig_port->base.port);
+ fallthrough;
+ case PORT_B:
+ case PORT_C:
+ return DPIO_PHY0;
+ case PORT_D:
+ return DPIO_PHY1;
+ }
+}
+
+enum dpio_channel vlv_pipe_to_channel(enum pipe pipe)
+{
+ switch (pipe) {
+ default:
+ MISSING_CASE(pipe);
+ fallthrough;
+ case PIPE_A:
+ case PIPE_C:
+ return DPIO_CH0;
+ case PIPE_B:
+ return DPIO_CH1;
+ }
+}
+
void chv_set_phy_signal_level(struct intel_encoder *encoder,
const struct intel_crtc_state *crtc_state,
u32 deemph_reg_value, u32 margin_reg_value,
diff --git a/drivers/gpu/drm/i915/display/intel_dpio_phy.h b/drivers/gpu/drm/i915/display/intel_dpio_phy.h
index 9c3d008e8e1a..9c7725dacb47 100644
--- a/drivers/gpu/drm/i915/display/intel_dpio_phy.h
+++ b/drivers/gpu/drm/i915/display/intel_dpio_phy.h
@@ -8,13 +8,24 @@
#include <linux/types.h>
-enum dpio_channel;
-enum dpio_phy;
+enum pipe;
enum port;
struct drm_i915_private;
struct intel_crtc_state;
+struct intel_digital_port;
struct intel_encoder;
+enum dpio_channel {
+ DPIO_CH0,
+ DPIO_CH1,
+};
+
+enum dpio_phy {
+ DPIO_PHY0,
+ DPIO_PHY1,
+ DPIO_PHY2,
+};
+
void bxt_port_to_phy_channel(struct drm_i915_private *dev_priv, enum port port,
enum dpio_phy *phy, enum dpio_channel *ch);
void bxt_ddi_phy_set_signal_levels(struct intel_encoder *encoder,
@@ -30,6 +41,10 @@ void bxt_ddi_phy_set_lane_optim_mask(struct intel_encoder *encoder,
u8 lane_lat_optim_mask);
u8 bxt_ddi_phy_get_lane_lat_optim_mask(struct intel_encoder *encoder);
+enum dpio_channel vlv_dig_port_to_channel(struct intel_digital_port *dig_port);
+enum dpio_phy vlv_dig_port_to_phy(struct intel_digital_port *dig_port);
+enum dpio_channel vlv_pipe_to_channel(enum pipe pipe);
+
void chv_set_phy_signal_level(struct intel_encoder *encoder,
const struct intel_crtc_state *crtc_state,
u32 deemph_reg_value, u32 margin_reg_value,
diff --git a/drivers/gpu/drm/i915/display/intel_dpll.c b/drivers/gpu/drm/i915/display/intel_dpll.c
index b15ba78d64d6..4e9c18be7e1f 100644
--- a/drivers/gpu/drm/i915/display/intel_dpll.c
+++ b/drivers/gpu/drm/i915/display/intel_dpll.c
@@ -6,10 +6,12 @@
#include <linux/kernel.h>
#include <linux/string_helpers.h>
+#include "i915_reg.h"
#include "intel_crtc.h"
#include "intel_de.h"
#include "intel_display.h"
#include "intel_display_types.h"
+#include "intel_dpio_phy.h"
#include "intel_dpll.h"
#include "intel_lvds.h"
#include "intel_panel.h"
@@ -1908,7 +1910,7 @@ void chv_enable_pll(const struct intel_crtc_state *crtc_state)
intel_de_write(dev_priv, DPLL_MD(PIPE_B),
crtc_state->dpll_hw_state.dpll_md);
intel_de_write(dev_priv, CBR4_VLV, 0);
- dev_priv->chv_dpll_md[pipe] = crtc_state->dpll_hw_state.dpll_md;
+ dev_priv->display.state.chv_dpll_md[pipe] = crtc_state->dpll_hw_state.dpll_md;
/*
* DPLLB VGA mode also seems to cause problems.
diff --git a/drivers/gpu/drm/i915/display/intel_dpll_mgr.c b/drivers/gpu/drm/i915/display/intel_dpll_mgr.c
index 64dd603dc69a..22fc908b7e5d 100644
--- a/drivers/gpu/drm/i915/display/intel_dpll_mgr.c
+++ b/drivers/gpu/drm/i915/display/intel_dpll_mgr.c
@@ -23,15 +23,18 @@
#include <linux/string_helpers.h>
+#include "i915_reg.h"
#include "intel_de.h"
#include "intel_display_types.h"
#include "intel_dkl_phy.h"
+#include "intel_dkl_phy_regs.h"
#include "intel_dpio_phy.h"
#include "intel_dpll.h"
#include "intel_dpll_mgr.h"
+#include "intel_hti.h"
+#include "intel_mg_phy_regs.h"
#include "intel_pch_refclk.h"
#include "intel_tc.h"
-#include "intel_tc_phy_regs.h"
/**
* DOC: Display PLLs
@@ -153,28 +156,6 @@ intel_get_shared_dpll_by_id(struct drm_i915_private *dev_priv,
return &dev_priv->display.dpll.shared_dplls[id];
}
-/**
- * intel_get_shared_dpll_id - get the id of a DPLL
- * @dev_priv: i915 device instance
- * @pll: the DPLL
- *
- * Returns:
- * The id of @pll
- */
-enum intel_dpll_id
-intel_get_shared_dpll_id(struct drm_i915_private *dev_priv,
- struct intel_shared_dpll *pll)
-{
- long pll_idx = pll - dev_priv->display.dpll.shared_dplls;
-
- if (drm_WARN_ON(&dev_priv->drm,
- pll_idx < 0 ||
- pll_idx >= dev_priv->display.dpll.num_shared_dpll))
- return -1;
-
- return pll_idx;
-}
-
/* For ILK+ */
void assert_shared_dpll(struct drm_i915_private *dev_priv,
struct intel_shared_dpll *pll,
@@ -385,20 +366,30 @@ intel_reference_shared_dpll(struct intel_atomic_state *state,
if (shared_dpll[id].pipe_mask == 0)
shared_dpll[id].hw_state = *pll_state;
- drm_dbg(&i915->drm, "using %s for pipe %c\n", pll->info->name,
- pipe_name(crtc->pipe));
+ drm_WARN_ON(&i915->drm, (shared_dpll[id].pipe_mask & BIT(crtc->pipe)) != 0);
shared_dpll[id].pipe_mask |= BIT(crtc->pipe);
+
+ drm_dbg_kms(&i915->drm, "[CRTC:%d:%s] reserving %s\n",
+ crtc->base.base.id, crtc->base.name, pll->info->name);
}
static void intel_unreference_shared_dpll(struct intel_atomic_state *state,
const struct intel_crtc *crtc,
const struct intel_shared_dpll *pll)
{
+ struct drm_i915_private *i915 = to_i915(state->base.dev);
struct intel_shared_dpll_state *shared_dpll;
+ const enum intel_dpll_id id = pll->info->id;
shared_dpll = intel_atomic_get_shared_dpll_state(&state->base);
- shared_dpll[pll->info->id].pipe_mask &= ~BIT(crtc->pipe);
+
+ drm_WARN_ON(&i915->drm, (shared_dpll[id].pipe_mask & BIT(crtc->pipe)) == 0);
+
+ shared_dpll[id].pipe_mask &= ~BIT(crtc->pipe);
+
+ drm_dbg_kms(&i915->drm, "[CRTC:%d:%s] releasing %s\n",
+ crtc->base.base.id, crtc->base.name, pll->info->name);
}
static void intel_put_dpll(struct intel_atomic_state *state,
@@ -617,17 +608,15 @@ static void hsw_ddi_wrpll_disable(struct drm_i915_private *dev_priv,
struct intel_shared_dpll *pll)
{
const enum intel_dpll_id id = pll->info->id;
- u32 val;
- val = intel_de_read(dev_priv, WRPLL_CTL(id));
- intel_de_write(dev_priv, WRPLL_CTL(id), val & ~WRPLL_PLL_ENABLE);
+ intel_de_rmw(dev_priv, WRPLL_CTL(id), WRPLL_PLL_ENABLE, 0);
intel_de_posting_read(dev_priv, WRPLL_CTL(id));
/*
* Try to set up the PCH reference clock once all DPLLs
* that depend on it have been shut down.
*/
- if (dev_priv->pch_ssc_use & BIT(id))
+ if (dev_priv->display.dpll.pch_ssc_use & BIT(id))
intel_init_pch_refclk(dev_priv);
}
@@ -635,17 +624,15 @@ static void hsw_ddi_spll_disable(struct drm_i915_private *dev_priv,
struct intel_shared_dpll *pll)
{
enum intel_dpll_id id = pll->info->id;
- u32 val;
- val = intel_de_read(dev_priv, SPLL_CTL);
- intel_de_write(dev_priv, SPLL_CTL, val & ~SPLL_PLL_ENABLE);
+ intel_de_rmw(dev_priv, SPLL_CTL, SPLL_PLL_ENABLE, 0);
intel_de_posting_read(dev_priv, SPLL_CTL);
/*
* Try to set up the PCH reference clock once all DPLLs
* that depend on it have been shut down.
*/
- if (dev_priv->pch_ssc_use & BIT(id))
+ if (dev_priv->display.dpll.pch_ssc_use & BIT(id))
intel_init_pch_refclk(dev_priv);
}
@@ -709,8 +696,6 @@ struct hsw_wrpll_rnp {
static unsigned hsw_wrpll_get_budget_for_freq(int clock)
{
- unsigned budget;
-
switch (clock) {
case 25175000:
case 25200000:
@@ -743,21 +728,18 @@ static unsigned hsw_wrpll_get_budget_for_freq(int clock)
case 222750000:
case 296703000:
case 297000000:
- budget = 0;
- break;
+ return 0;
case 233500000:
case 245250000:
case 247750000:
case 253250000:
case 298000000:
- budget = 1500;
- break;
+ return 1500;
case 169128000:
case 169500000:
case 179500000:
case 202000000:
- budget = 2000;
- break;
+ return 2000;
case 256250000:
case 262500000:
case 270000000:
@@ -767,18 +749,13 @@ static unsigned hsw_wrpll_get_budget_for_freq(int clock)
case 281250000:
case 286000000:
case 291750000:
- budget = 4000;
- break;
+ return 4000;
case 267250000:
case 268500000:
- budget = 5000;
- break;
+ return 5000;
default:
- budget = 1000;
- break;
+ return 1000;
}
-
- return budget;
}
static void hsw_wrpll_update_rnp(u64 freq2k, unsigned int budget,
@@ -1257,16 +1234,10 @@ static void skl_ddi_pll_write_ctrl1(struct drm_i915_private *dev_priv,
struct intel_shared_dpll *pll)
{
const enum intel_dpll_id id = pll->info->id;
- u32 val;
-
- val = intel_de_read(dev_priv, DPLL_CTRL1);
-
- val &= ~(DPLL_CTRL1_HDMI_MODE(id) |
- DPLL_CTRL1_SSC(id) |
- DPLL_CTRL1_LINK_RATE_MASK(id));
- val |= pll->state.hw_state.ctrl1 << (id * 6);
- intel_de_write(dev_priv, DPLL_CTRL1, val);
+ intel_de_rmw(dev_priv, DPLL_CTRL1,
+ DPLL_CTRL1_HDMI_MODE(id) | DPLL_CTRL1_SSC(id) | DPLL_CTRL1_LINK_RATE_MASK(id),
+ pll->state.hw_state.ctrl1 << (id * 6));
intel_de_posting_read(dev_priv, DPLL_CTRL1);
}
@@ -1284,8 +1255,7 @@ static void skl_ddi_pll_enable(struct drm_i915_private *dev_priv,
intel_de_posting_read(dev_priv, regs[id].cfgcr2);
/* the enable bit is always bit 31 */
- intel_de_write(dev_priv, regs[id].ctl,
- intel_de_read(dev_priv, regs[id].ctl) | LCPLL_PLL_ENABLE);
+ intel_de_rmw(dev_priv, regs[id].ctl, 0, LCPLL_PLL_ENABLE);
if (intel_de_wait_for_set(dev_priv, DPLL_STATUS, DPLL_LOCK(id), 5))
drm_err(&dev_priv->drm, "DPLL %d not locked\n", id);
@@ -1304,8 +1274,7 @@ static void skl_ddi_pll_disable(struct drm_i915_private *dev_priv,
const enum intel_dpll_id id = pll->info->id;
/* the enable bit is always bit 31 */
- intel_de_write(dev_priv, regs[id].ctl,
- intel_de_read(dev_priv, regs[id].ctl) & ~LCPLL_PLL_ENABLE);
+ intel_de_rmw(dev_priv, regs[id].ctl, LCPLL_PLL_ENABLE, 0);
intel_de_posting_read(dev_priv, regs[id].ctl);
}
@@ -1921,14 +1890,11 @@ static void bxt_ddi_pll_enable(struct drm_i915_private *dev_priv,
bxt_port_to_phy_channel(dev_priv, port, &phy, &ch);
/* Non-SSC reference */
- temp = intel_de_read(dev_priv, BXT_PORT_PLL_ENABLE(port));
- temp |= PORT_PLL_REF_SEL;
- intel_de_write(dev_priv, BXT_PORT_PLL_ENABLE(port), temp);
+ intel_de_rmw(dev_priv, BXT_PORT_PLL_ENABLE(port), 0, PORT_PLL_REF_SEL);
if (IS_GEMINILAKE(dev_priv)) {
- temp = intel_de_read(dev_priv, BXT_PORT_PLL_ENABLE(port));
- temp |= PORT_PLL_POWER_ENABLE;
- intel_de_write(dev_priv, BXT_PORT_PLL_ENABLE(port), temp);
+ intel_de_rmw(dev_priv, BXT_PORT_PLL_ENABLE(port),
+ 0, PORT_PLL_POWER_ENABLE);
if (wait_for_us((intel_de_read(dev_priv, BXT_PORT_PLL_ENABLE(port)) &
PORT_PLL_POWER_STATE), 200))
@@ -1937,39 +1903,28 @@ static void bxt_ddi_pll_enable(struct drm_i915_private *dev_priv,
}
/* Disable 10 bit clock */
- temp = intel_de_read(dev_priv, BXT_PORT_PLL_EBB_4(phy, ch));
- temp &= ~PORT_PLL_10BIT_CLK_ENABLE;
- intel_de_write(dev_priv, BXT_PORT_PLL_EBB_4(phy, ch), temp);
+ intel_de_rmw(dev_priv, BXT_PORT_PLL_EBB_4(phy, ch),
+ PORT_PLL_10BIT_CLK_ENABLE, 0);
/* Write P1 & P2 */
- temp = intel_de_read(dev_priv, BXT_PORT_PLL_EBB_0(phy, ch));
- temp &= ~(PORT_PLL_P1_MASK | PORT_PLL_P2_MASK);
- temp |= pll->state.hw_state.ebb0;
- intel_de_write(dev_priv, BXT_PORT_PLL_EBB_0(phy, ch), temp);
+ intel_de_rmw(dev_priv, BXT_PORT_PLL_EBB_0(phy, ch),
+ PORT_PLL_P1_MASK | PORT_PLL_P2_MASK, pll->state.hw_state.ebb0);
/* Write M2 integer */
- temp = intel_de_read(dev_priv, BXT_PORT_PLL(phy, ch, 0));
- temp &= ~PORT_PLL_M2_INT_MASK;
- temp |= pll->state.hw_state.pll0;
- intel_de_write(dev_priv, BXT_PORT_PLL(phy, ch, 0), temp);
+ intel_de_rmw(dev_priv, BXT_PORT_PLL(phy, ch, 0),
+ PORT_PLL_M2_INT_MASK, pll->state.hw_state.pll0);
/* Write N */
- temp = intel_de_read(dev_priv, BXT_PORT_PLL(phy, ch, 1));
- temp &= ~PORT_PLL_N_MASK;
- temp |= pll->state.hw_state.pll1;
- intel_de_write(dev_priv, BXT_PORT_PLL(phy, ch, 1), temp);
+ intel_de_rmw(dev_priv, BXT_PORT_PLL(phy, ch, 1),
+ PORT_PLL_N_MASK, pll->state.hw_state.pll1);
/* Write M2 fraction */
- temp = intel_de_read(dev_priv, BXT_PORT_PLL(phy, ch, 2));
- temp &= ~PORT_PLL_M2_FRAC_MASK;
- temp |= pll->state.hw_state.pll2;
- intel_de_write(dev_priv, BXT_PORT_PLL(phy, ch, 2), temp);
+ intel_de_rmw(dev_priv, BXT_PORT_PLL(phy, ch, 2),
+ PORT_PLL_M2_FRAC_MASK, pll->state.hw_state.pll2);
/* Write M2 fraction enable */
- temp = intel_de_read(dev_priv, BXT_PORT_PLL(phy, ch, 3));
- temp &= ~PORT_PLL_M2_FRAC_ENABLE;
- temp |= pll->state.hw_state.pll3;
- intel_de_write(dev_priv, BXT_PORT_PLL(phy, ch, 3), temp);
+ intel_de_rmw(dev_priv, BXT_PORT_PLL(phy, ch, 3),
+ PORT_PLL_M2_FRAC_ENABLE, pll->state.hw_state.pll3);
/* Write coeff */
temp = intel_de_read(dev_priv, BXT_PORT_PLL(phy, ch, 6));
@@ -1980,15 +1935,11 @@ static void bxt_ddi_pll_enable(struct drm_i915_private *dev_priv,
intel_de_write(dev_priv, BXT_PORT_PLL(phy, ch, 6), temp);
/* Write calibration val */
- temp = intel_de_read(dev_priv, BXT_PORT_PLL(phy, ch, 8));
- temp &= ~PORT_PLL_TARGET_CNT_MASK;
- temp |= pll->state.hw_state.pll8;
- intel_de_write(dev_priv, BXT_PORT_PLL(phy, ch, 8), temp);
+ intel_de_rmw(dev_priv, BXT_PORT_PLL(phy, ch, 8),
+ PORT_PLL_TARGET_CNT_MASK, pll->state.hw_state.pll8);
- temp = intel_de_read(dev_priv, BXT_PORT_PLL(phy, ch, 9));
- temp &= ~PORT_PLL_LOCK_THRESHOLD_MASK;
- temp |= pll->state.hw_state.pll9;
- intel_de_write(dev_priv, BXT_PORT_PLL(phy, ch, 9), temp);
+ intel_de_rmw(dev_priv, BXT_PORT_PLL(phy, ch, 9),
+ PORT_PLL_LOCK_THRESHOLD_MASK, pll->state.hw_state.pll9);
temp = intel_de_read(dev_priv, BXT_PORT_PLL(phy, ch, 10));
temp &= ~PORT_PLL_DCO_AMP_OVR_EN_H;
@@ -2005,9 +1956,7 @@ static void bxt_ddi_pll_enable(struct drm_i915_private *dev_priv,
intel_de_write(dev_priv, BXT_PORT_PLL_EBB_4(phy, ch), temp);
/* Enable PLL */
- temp = intel_de_read(dev_priv, BXT_PORT_PLL_ENABLE(port));
- temp |= PORT_PLL_ENABLE;
- intel_de_write(dev_priv, BXT_PORT_PLL_ENABLE(port), temp);
+ intel_de_rmw(dev_priv, BXT_PORT_PLL_ENABLE(port), 0, PORT_PLL_ENABLE);
intel_de_posting_read(dev_priv, BXT_PORT_PLL_ENABLE(port));
if (wait_for_us((intel_de_read(dev_priv, BXT_PORT_PLL_ENABLE(port)) & PORT_PLL_LOCK),
@@ -2035,17 +1984,13 @@ static void bxt_ddi_pll_disable(struct drm_i915_private *dev_priv,
struct intel_shared_dpll *pll)
{
enum port port = (enum port)pll->info->id; /* 1:1 port->PLL mapping */
- u32 temp;
- temp = intel_de_read(dev_priv, BXT_PORT_PLL_ENABLE(port));
- temp &= ~PORT_PLL_ENABLE;
- intel_de_write(dev_priv, BXT_PORT_PLL_ENABLE(port), temp);
+ intel_de_rmw(dev_priv, BXT_PORT_PLL_ENABLE(port), PORT_PLL_ENABLE, 0);
intel_de_posting_read(dev_priv, BXT_PORT_PLL_ENABLE(port));
if (IS_GEMINILAKE(dev_priv)) {
- temp = intel_de_read(dev_priv, BXT_PORT_PLL_ENABLE(port));
- temp &= ~PORT_PLL_POWER_ENABLE;
- intel_de_write(dev_priv, BXT_PORT_PLL_ENABLE(port), temp);
+ intel_de_rmw(dev_priv, BXT_PORT_PLL_ENABLE(port),
+ PORT_PLL_POWER_ENABLE, 0);
if (wait_for_us(!(intel_de_read(dev_priv, BXT_PORT_PLL_ENABLE(port)) &
PORT_PLL_POWER_STATE), 200))
@@ -3184,14 +3129,6 @@ static void icl_update_active_dpll(struct intel_atomic_state *state,
icl_set_active_port_dpll(crtc_state, port_dpll_id);
}
-static u32 intel_get_hti_plls(struct drm_i915_private *i915)
-{
- if (!(i915->hti_state & HDPORT_ENABLED))
- return 0;
-
- return REG_FIELD_GET(HDPORT_DPLL_USED_MASK, i915->hti_state);
-}
-
static int icl_compute_combo_phy_dpll(struct intel_atomic_state *state,
struct intel_crtc *crtc)
{
@@ -3266,7 +3203,7 @@ static int icl_get_combo_phy_dpll(struct intel_atomic_state *state,
}
/* Eliminate DPLLs from consideration if reserved by HTI */
- dpll_mask &= ~intel_get_hti_plls(dev_priv);
+ dpll_mask &= ~intel_hti_dpll_mask(dev_priv);
port_dpll->pll = intel_find_shared_dpll(state, crtc,
&port_dpll->hw_state,
@@ -3510,11 +3447,11 @@ static bool dkl_pll_get_hw_state(struct drm_i915_private *dev_priv,
* they are on different building blocks
*/
hw_state->mg_refclkin_ctl = intel_dkl_phy_read(dev_priv,
- DKL_REFCLKIN_CTL(tc_port), 2);
+ DKL_REFCLKIN_CTL(tc_port));
hw_state->mg_refclkin_ctl &= MG_REFCLKIN_CTL_OD_2_MUX_MASK;
hw_state->mg_clktop2_hsclkctl =
- intel_dkl_phy_read(dev_priv, DKL_CLKTOP2_HSCLKCTL(tc_port), 2);
+ intel_dkl_phy_read(dev_priv, DKL_CLKTOP2_HSCLKCTL(tc_port));
hw_state->mg_clktop2_hsclkctl &=
MG_CLKTOP2_HSCLKCTL_TLINEDRV_CLKSEL_MASK |
MG_CLKTOP2_HSCLKCTL_CORE_INPUTSEL_MASK |
@@ -3522,32 +3459,32 @@ static bool dkl_pll_get_hw_state(struct drm_i915_private *dev_priv,
MG_CLKTOP2_HSCLKCTL_DSDIV_RATIO_MASK;
hw_state->mg_clktop2_coreclkctl1 =
- intel_dkl_phy_read(dev_priv, DKL_CLKTOP2_CORECLKCTL1(tc_port), 2);
+ intel_dkl_phy_read(dev_priv, DKL_CLKTOP2_CORECLKCTL1(tc_port));
hw_state->mg_clktop2_coreclkctl1 &=
MG_CLKTOP2_CORECLKCTL1_A_DIVRATIO_MASK;
- hw_state->mg_pll_div0 = intel_dkl_phy_read(dev_priv, DKL_PLL_DIV0(tc_port), 2);
+ hw_state->mg_pll_div0 = intel_dkl_phy_read(dev_priv, DKL_PLL_DIV0(tc_port));
val = DKL_PLL_DIV0_MASK;
if (dev_priv->display.vbt.override_afc_startup)
val |= DKL_PLL_DIV0_AFC_STARTUP_MASK;
hw_state->mg_pll_div0 &= val;
- hw_state->mg_pll_div1 = intel_dkl_phy_read(dev_priv, DKL_PLL_DIV1(tc_port), 2);
+ hw_state->mg_pll_div1 = intel_dkl_phy_read(dev_priv, DKL_PLL_DIV1(tc_port));
hw_state->mg_pll_div1 &= (DKL_PLL_DIV1_IREF_TRIM_MASK |
DKL_PLL_DIV1_TDC_TARGET_CNT_MASK);
- hw_state->mg_pll_ssc = intel_dkl_phy_read(dev_priv, DKL_PLL_SSC(tc_port), 2);
+ hw_state->mg_pll_ssc = intel_dkl_phy_read(dev_priv, DKL_PLL_SSC(tc_port));
hw_state->mg_pll_ssc &= (DKL_PLL_SSC_IREF_NDIV_RATIO_MASK |
DKL_PLL_SSC_STEP_LEN_MASK |
DKL_PLL_SSC_STEP_NUM_MASK |
DKL_PLL_SSC_EN);
- hw_state->mg_pll_bias = intel_dkl_phy_read(dev_priv, DKL_PLL_BIAS(tc_port), 2);
+ hw_state->mg_pll_bias = intel_dkl_phy_read(dev_priv, DKL_PLL_BIAS(tc_port));
hw_state->mg_pll_bias &= (DKL_PLL_BIAS_FRAC_EN_H |
DKL_PLL_BIAS_FBDIV_FRAC_MASK);
hw_state->mg_pll_tdc_coldst_bias =
- intel_dkl_phy_read(dev_priv, DKL_PLL_TDC_COLDST_BIAS(tc_port), 2);
+ intel_dkl_phy_read(dev_priv, DKL_PLL_TDC_COLDST_BIAS(tc_port));
hw_state->mg_pll_tdc_coldst_bias &= (DKL_PLL_TDC_SSC_STEP_SIZE_MASK |
DKL_PLL_TDC_FEED_FWD_GAIN_MASK);
@@ -3668,8 +3605,8 @@ static void icl_dpll_write(struct drm_i915_private *dev_priv,
!i915_mmio_reg_valid(div0_reg));
if (dev_priv->display.vbt.override_afc_startup &&
i915_mmio_reg_valid(div0_reg))
- intel_de_rmw(dev_priv, div0_reg, TGL_DPLL0_DIV0_AFC_STARTUP_MASK,
- hw_state->div0);
+ intel_de_rmw(dev_priv, div0_reg,
+ TGL_DPLL0_DIV0_AFC_STARTUP_MASK, hw_state->div0);
intel_de_posting_read(dev_priv, cfgcr1_reg);
}
@@ -3678,7 +3615,6 @@ static void icl_mg_pll_write(struct drm_i915_private *dev_priv,
{
struct intel_dpll_hw_state *hw_state = &pll->state.hw_state;
enum tc_port tc_port = icl_pll_id_to_tc_port(pll->info->id);
- u32 val;
/*
* Some of the following registers have reserved fields, so program
@@ -3686,23 +3622,19 @@ static void icl_mg_pll_write(struct drm_i915_private *dev_priv,
* during the calc/readout phase if the mask depends on some other HW
* state like refclk, see icl_calc_mg_pll_state().
*/
- val = intel_de_read(dev_priv, MG_REFCLKIN_CTL(tc_port));
- val &= ~MG_REFCLKIN_CTL_OD_2_MUX_MASK;
- val |= hw_state->mg_refclkin_ctl;
- intel_de_write(dev_priv, MG_REFCLKIN_CTL(tc_port), val);
+ intel_de_rmw(dev_priv, MG_REFCLKIN_CTL(tc_port),
+ MG_REFCLKIN_CTL_OD_2_MUX_MASK, hw_state->mg_refclkin_ctl);
- val = intel_de_read(dev_priv, MG_CLKTOP2_CORECLKCTL1(tc_port));
- val &= ~MG_CLKTOP2_CORECLKCTL1_A_DIVRATIO_MASK;
- val |= hw_state->mg_clktop2_coreclkctl1;
- intel_de_write(dev_priv, MG_CLKTOP2_CORECLKCTL1(tc_port), val);
+ intel_de_rmw(dev_priv, MG_CLKTOP2_CORECLKCTL1(tc_port),
+ MG_CLKTOP2_CORECLKCTL1_A_DIVRATIO_MASK,
+ hw_state->mg_clktop2_coreclkctl1);
- val = intel_de_read(dev_priv, MG_CLKTOP2_HSCLKCTL(tc_port));
- val &= ~(MG_CLKTOP2_HSCLKCTL_TLINEDRV_CLKSEL_MASK |
- MG_CLKTOP2_HSCLKCTL_CORE_INPUTSEL_MASK |
- MG_CLKTOP2_HSCLKCTL_HSDIV_RATIO_MASK |
- MG_CLKTOP2_HSCLKCTL_DSDIV_RATIO_MASK);
- val |= hw_state->mg_clktop2_hsclkctl;
- intel_de_write(dev_priv, MG_CLKTOP2_HSCLKCTL(tc_port), val);
+ intel_de_rmw(dev_priv, MG_CLKTOP2_HSCLKCTL(tc_port),
+ MG_CLKTOP2_HSCLKCTL_TLINEDRV_CLKSEL_MASK |
+ MG_CLKTOP2_HSCLKCTL_CORE_INPUTSEL_MASK |
+ MG_CLKTOP2_HSCLKCTL_HSDIV_RATIO_MASK |
+ MG_CLKTOP2_HSCLKCTL_DSDIV_RATIO_MASK,
+ hw_state->mg_clktop2_hsclkctl);
intel_de_write(dev_priv, MG_PLL_DIV0(tc_port), hw_state->mg_pll_div0);
intel_de_write(dev_priv, MG_PLL_DIV1(tc_port), hw_state->mg_pll_div1);
@@ -3711,15 +3643,12 @@ static void icl_mg_pll_write(struct drm_i915_private *dev_priv,
hw_state->mg_pll_frac_lock);
intel_de_write(dev_priv, MG_PLL_SSC(tc_port), hw_state->mg_pll_ssc);
- val = intel_de_read(dev_priv, MG_PLL_BIAS(tc_port));
- val &= ~hw_state->mg_pll_bias_mask;
- val |= hw_state->mg_pll_bias;
- intel_de_write(dev_priv, MG_PLL_BIAS(tc_port), val);
+ intel_de_rmw(dev_priv, MG_PLL_BIAS(tc_port),
+ hw_state->mg_pll_bias_mask, hw_state->mg_pll_bias);
- val = intel_de_read(dev_priv, MG_PLL_TDC_COLDST_BIAS(tc_port));
- val &= ~hw_state->mg_pll_tdc_coldst_bias_mask;
- val |= hw_state->mg_pll_tdc_coldst_bias;
- intel_de_write(dev_priv, MG_PLL_TDC_COLDST_BIAS(tc_port), val);
+ intel_de_rmw(dev_priv, MG_PLL_TDC_COLDST_BIAS(tc_port),
+ hw_state->mg_pll_tdc_coldst_bias_mask,
+ hw_state->mg_pll_tdc_coldst_bias);
intel_de_posting_read(dev_priv, MG_PLL_TDC_COLDST_BIAS(tc_port));
}
@@ -3736,68 +3665,64 @@ static void dkl_pll_write(struct drm_i915_private *dev_priv,
* though on different building block
*/
/* All the registers are RMW */
- val = intel_dkl_phy_read(dev_priv, DKL_REFCLKIN_CTL(tc_port), 2);
+ val = intel_dkl_phy_read(dev_priv, DKL_REFCLKIN_CTL(tc_port));
val &= ~MG_REFCLKIN_CTL_OD_2_MUX_MASK;
val |= hw_state->mg_refclkin_ctl;
- intel_dkl_phy_write(dev_priv, DKL_REFCLKIN_CTL(tc_port), 2, val);
+ intel_dkl_phy_write(dev_priv, DKL_REFCLKIN_CTL(tc_port), val);
- val = intel_dkl_phy_read(dev_priv, DKL_CLKTOP2_CORECLKCTL1(tc_port), 2);
+ val = intel_dkl_phy_read(dev_priv, DKL_CLKTOP2_CORECLKCTL1(tc_port));
val &= ~MG_CLKTOP2_CORECLKCTL1_A_DIVRATIO_MASK;
val |= hw_state->mg_clktop2_coreclkctl1;
- intel_dkl_phy_write(dev_priv, DKL_CLKTOP2_CORECLKCTL1(tc_port), 2, val);
+ intel_dkl_phy_write(dev_priv, DKL_CLKTOP2_CORECLKCTL1(tc_port), val);
- val = intel_dkl_phy_read(dev_priv, DKL_CLKTOP2_HSCLKCTL(tc_port), 2);
+ val = intel_dkl_phy_read(dev_priv, DKL_CLKTOP2_HSCLKCTL(tc_port));
val &= ~(MG_CLKTOP2_HSCLKCTL_TLINEDRV_CLKSEL_MASK |
MG_CLKTOP2_HSCLKCTL_CORE_INPUTSEL_MASK |
MG_CLKTOP2_HSCLKCTL_HSDIV_RATIO_MASK |
MG_CLKTOP2_HSCLKCTL_DSDIV_RATIO_MASK);
val |= hw_state->mg_clktop2_hsclkctl;
- intel_dkl_phy_write(dev_priv, DKL_CLKTOP2_HSCLKCTL(tc_port), 2, val);
+ intel_dkl_phy_write(dev_priv, DKL_CLKTOP2_HSCLKCTL(tc_port), val);
val = DKL_PLL_DIV0_MASK;
if (dev_priv->display.vbt.override_afc_startup)
val |= DKL_PLL_DIV0_AFC_STARTUP_MASK;
- intel_dkl_phy_rmw(dev_priv, DKL_PLL_DIV0(tc_port), 2, val,
+ intel_dkl_phy_rmw(dev_priv, DKL_PLL_DIV0(tc_port), val,
hw_state->mg_pll_div0);
- val = intel_dkl_phy_read(dev_priv, DKL_PLL_DIV1(tc_port), 2);
+ val = intel_dkl_phy_read(dev_priv, DKL_PLL_DIV1(tc_port));
val &= ~(DKL_PLL_DIV1_IREF_TRIM_MASK |
DKL_PLL_DIV1_TDC_TARGET_CNT_MASK);
val |= hw_state->mg_pll_div1;
- intel_dkl_phy_write(dev_priv, DKL_PLL_DIV1(tc_port), 2, val);
+ intel_dkl_phy_write(dev_priv, DKL_PLL_DIV1(tc_port), val);
- val = intel_dkl_phy_read(dev_priv, DKL_PLL_SSC(tc_port), 2);
+ val = intel_dkl_phy_read(dev_priv, DKL_PLL_SSC(tc_port));
val &= ~(DKL_PLL_SSC_IREF_NDIV_RATIO_MASK |
DKL_PLL_SSC_STEP_LEN_MASK |
DKL_PLL_SSC_STEP_NUM_MASK |
DKL_PLL_SSC_EN);
val |= hw_state->mg_pll_ssc;
- intel_dkl_phy_write(dev_priv, DKL_PLL_SSC(tc_port), 2, val);
+ intel_dkl_phy_write(dev_priv, DKL_PLL_SSC(tc_port), val);
- val = intel_dkl_phy_read(dev_priv, DKL_PLL_BIAS(tc_port), 2);
+ val = intel_dkl_phy_read(dev_priv, DKL_PLL_BIAS(tc_port));
val &= ~(DKL_PLL_BIAS_FRAC_EN_H |
DKL_PLL_BIAS_FBDIV_FRAC_MASK);
val |= hw_state->mg_pll_bias;
- intel_dkl_phy_write(dev_priv, DKL_PLL_BIAS(tc_port), 2, val);
+ intel_dkl_phy_write(dev_priv, DKL_PLL_BIAS(tc_port), val);
- val = intel_dkl_phy_read(dev_priv, DKL_PLL_TDC_COLDST_BIAS(tc_port), 2);
+ val = intel_dkl_phy_read(dev_priv, DKL_PLL_TDC_COLDST_BIAS(tc_port));
val &= ~(DKL_PLL_TDC_SSC_STEP_SIZE_MASK |
DKL_PLL_TDC_FEED_FWD_GAIN_MASK);
val |= hw_state->mg_pll_tdc_coldst_bias;
- intel_dkl_phy_write(dev_priv, DKL_PLL_TDC_COLDST_BIAS(tc_port), 2, val);
+ intel_dkl_phy_write(dev_priv, DKL_PLL_TDC_COLDST_BIAS(tc_port), val);
- intel_dkl_phy_posting_read(dev_priv, DKL_PLL_TDC_COLDST_BIAS(tc_port), 2);
+ intel_dkl_phy_posting_read(dev_priv, DKL_PLL_TDC_COLDST_BIAS(tc_port));
}
static void icl_pll_power_enable(struct drm_i915_private *dev_priv,
struct intel_shared_dpll *pll,
i915_reg_t enable_reg)
{
- u32 val;
-
- val = intel_de_read(dev_priv, enable_reg);
- val |= PLL_POWER_ENABLE;
- intel_de_write(dev_priv, enable_reg, val);
+ intel_de_rmw(dev_priv, enable_reg, 0, PLL_POWER_ENABLE);
/*
* The spec says we need to "wait" but it also says it should be
@@ -3812,11 +3737,7 @@ static void icl_pll_enable(struct drm_i915_private *dev_priv,
struct intel_shared_dpll *pll,
i915_reg_t enable_reg)
{
- u32 val;
-
- val = intel_de_read(dev_priv, enable_reg);
- val |= PLL_ENABLE;
- intel_de_write(dev_priv, enable_reg, val);
+ intel_de_rmw(dev_priv, enable_reg, 0, PLL_ENABLE);
/* Timeout is actually 600us. */
if (intel_de_wait_for_set(dev_priv, enable_reg, PLL_LOCK, 1))
@@ -3842,8 +3763,7 @@ static void adlp_cmtg_clock_gating_wa(struct drm_i915_private *i915, struct inte
* since TRANS_CMTG_CHICKEN is only accessible while DPLL0 is enabled.
*/
val = intel_de_read(i915, TRANS_CMTG_CHICKEN);
- val = intel_de_read(i915, TRANS_CMTG_CHICKEN);
- intel_de_write(i915, TRANS_CMTG_CHICKEN, DISABLE_DPT_CLK_GATING);
+ val = intel_de_rmw(i915, TRANS_CMTG_CHICKEN, ~0, DISABLE_DPT_CLK_GATING);
if (drm_WARN_ON(&i915->drm, val & ~DISABLE_DPT_CLK_GATING))
drm_dbg_kms(&i915->drm, "Unexpected flags in TRANS_CMTG_CHICKEN: %08x\n", val);
}
@@ -3927,8 +3847,6 @@ static void icl_pll_disable(struct drm_i915_private *dev_priv,
struct intel_shared_dpll *pll,
i915_reg_t enable_reg)
{
- u32 val;
-
/* The first steps are done by intel_ddi_post_disable(). */
/*
@@ -3937,9 +3855,7 @@ static void icl_pll_disable(struct drm_i915_private *dev_priv,
* nothing here.
*/
- val = intel_de_read(dev_priv, enable_reg);
- val &= ~PLL_ENABLE;
- intel_de_write(dev_priv, enable_reg, val);
+ intel_de_rmw(dev_priv, enable_reg, PLL_ENABLE, 0);
/* Timeout is actually 1us. */
if (intel_de_wait_for_clear(dev_priv, enable_reg, PLL_LOCK, 1))
@@ -3947,9 +3863,7 @@ static void icl_pll_disable(struct drm_i915_private *dev_priv,
/* DVFS post sequence would be here. See the comment above. */
- val = intel_de_read(dev_priv, enable_reg);
- val &= ~PLL_POWER_ENABLE;
- intel_de_write(dev_priv, enable_reg, val);
+ intel_de_rmw(dev_priv, enable_reg, PLL_POWER_ENABLE, 0);
/*
* The spec says we need to "wait" but it also says it should be
@@ -4188,6 +4102,8 @@ void intel_shared_dpll_init(struct drm_i915_private *dev_priv)
const struct dpll_info *dpll_info;
int i;
+ mutex_init(&dev_priv->display.dpll.lock);
+
if (IS_DG2(dev_priv))
/* No shared DPLLs on DG2; port PLLs are part of the PHY */
dpll_mgr = NULL;
@@ -4232,7 +4148,6 @@ void intel_shared_dpll_init(struct drm_i915_private *dev_priv)
dev_priv->display.dpll.mgr = dpll_mgr;
dev_priv->display.dpll.num_shared_dpll = i;
- mutex_init(&dev_priv->display.dpll.lock);
}
/**
diff --git a/drivers/gpu/drm/i915/display/intel_dpll_mgr.h b/drivers/gpu/drm/i915/display/intel_dpll_mgr.h
index 3247dc300ae4..3854f1b4299a 100644
--- a/drivers/gpu/drm/i915/display/intel_dpll_mgr.h
+++ b/drivers/gpu/drm/i915/display/intel_dpll_mgr.h
@@ -328,9 +328,6 @@ struct intel_shared_dpll {
struct intel_shared_dpll *
intel_get_shared_dpll_by_id(struct drm_i915_private *dev_priv,
enum intel_dpll_id id);
-enum intel_dpll_id
-intel_get_shared_dpll_id(struct drm_i915_private *dev_priv,
- struct intel_shared_dpll *pll);
void assert_shared_dpll(struct drm_i915_private *dev_priv,
struct intel_shared_dpll *pll,
bool state);
diff --git a/drivers/gpu/drm/i915/display/intel_dpt.c b/drivers/gpu/drm/i915/display/intel_dpt.c
index ac587647e1f5..b8027392144d 100644
--- a/drivers/gpu/drm/i915/display/intel_dpt.c
+++ b/drivers/gpu/drm/i915/display/intel_dpt.c
@@ -5,9 +5,12 @@
#include "gem/i915_gem_domain.h"
#include "gem/i915_gem_internal.h"
+#include "gem/i915_gem_lmem.h"
#include "gt/gen8_ppgtt.h"
#include "i915_drv.h"
+#include "i915_reg.h"
+#include "intel_de.h"
#include "intel_display_types.h"
#include "intel_dpt.h"
#include "intel_fb.h"
@@ -300,6 +303,7 @@ intel_dpt_create(struct intel_framebuffer *fb)
vm->pte_encode = gen8_ggtt_pte_encode;
dpt->obj = dpt_obj;
+ dpt->obj->is_dpt = true;
return &dpt->vm;
}
@@ -308,5 +312,29 @@ void intel_dpt_destroy(struct i915_address_space *vm)
{
struct i915_dpt *dpt = i915_vm_to_dpt(vm);
+ dpt->obj->is_dpt = false;
i915_vm_put(&dpt->vm);
}
+
+void intel_dpt_configure(struct intel_crtc *crtc)
+{
+ struct drm_i915_private *i915 = to_i915(crtc->base.dev);
+
+ if (DISPLAY_VER(i915) == 14) {
+ enum pipe pipe = crtc->pipe;
+ enum plane_id plane_id;
+
+ for_each_plane_id_on_crtc(crtc, plane_id) {
+ if (plane_id == PLANE_CURSOR)
+ continue;
+
+ intel_de_rmw(i915, PLANE_CHICKEN(pipe, plane_id),
+ PLANE_CHICKEN_DISABLE_DPT,
+ i915->params.enable_dpt ? 0 : PLANE_CHICKEN_DISABLE_DPT);
+ }
+ } else if (DISPLAY_VER(i915) == 13) {
+ intel_de_rmw(i915, CHICKEN_MISC_2,
+ CHICKEN_MISC_DISABLE_DPT,
+ i915->params.enable_dpt ? 0 : CHICKEN_MISC_DISABLE_DPT);
+ }
+}
diff --git a/drivers/gpu/drm/i915/display/intel_dpt.h b/drivers/gpu/drm/i915/display/intel_dpt.h
index e18a9f767b11..d9a166550185 100644
--- a/drivers/gpu/drm/i915/display/intel_dpt.h
+++ b/drivers/gpu/drm/i915/display/intel_dpt.h
@@ -10,6 +10,7 @@ struct drm_i915_private;
struct i915_address_space;
struct i915_vma;
+struct intel_crtc;
struct intel_framebuffer;
void intel_dpt_destroy(struct i915_address_space *vm);
@@ -19,5 +20,6 @@ void intel_dpt_suspend(struct drm_i915_private *i915);
void intel_dpt_resume(struct drm_i915_private *i915);
struct i915_address_space *
intel_dpt_create(struct intel_framebuffer *fb);
+void intel_dpt_configure(struct intel_crtc *crtc);
#endif /* __INTEL_DPT_H__ */
diff --git a/drivers/gpu/drm/i915/display/intel_drrs.c b/drivers/gpu/drm/i915/display/intel_drrs.c
index 7da4a9cbe4ba..760e63cdc0c8 100644
--- a/drivers/gpu/drm/i915/display/intel_drrs.c
+++ b/drivers/gpu/drm/i915/display/intel_drrs.c
@@ -4,6 +4,7 @@
*/
#include "i915_drv.h"
+#include "i915_reg.h"
#include "intel_atomic.h"
#include "intel_de.h"
#include "intel_display_types.h"
@@ -67,21 +68,15 @@ intel_drrs_set_refresh_rate_pipeconf(struct intel_crtc *crtc,
{
struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
enum transcoder cpu_transcoder = crtc->drrs.cpu_transcoder;
- u32 val, bit;
+ u32 bit;
if (IS_VALLEYVIEW(dev_priv) || IS_CHERRYVIEW(dev_priv))
- bit = PIPECONF_REFRESH_RATE_ALT_VLV;
+ bit = TRANSCONF_REFRESH_RATE_ALT_VLV;
else
- bit = PIPECONF_REFRESH_RATE_ALT_ILK;
+ bit = TRANSCONF_REFRESH_RATE_ALT_ILK;
- val = intel_de_read(dev_priv, PIPECONF(cpu_transcoder));
-
- if (refresh_rate == DRRS_REFRESH_RATE_LOW)
- val |= bit;
- else
- val &= ~bit;
-
- intel_de_write(dev_priv, PIPECONF(cpu_transcoder), val);
+ intel_de_rmw(dev_priv, TRANSCONF(cpu_transcoder),
+ bit, refresh_rate == DRRS_REFRESH_RATE_LOW ? bit : 0);
}
static void
@@ -284,16 +279,124 @@ void intel_drrs_flush(struct drm_i915_private *dev_priv,
}
/**
- * intel_crtc_drrs_init - Init DRRS for CRTC
+ * intel_drrs_crtc_init - Init DRRS for CRTC
* @crtc: crtc
*
* This function is called only once at driver load to initialize basic
* DRRS stuff.
*
*/
-void intel_crtc_drrs_init(struct intel_crtc *crtc)
+void intel_drrs_crtc_init(struct intel_crtc *crtc)
{
INIT_DELAYED_WORK(&crtc->drrs.work, intel_drrs_downclock_work);
mutex_init(&crtc->drrs.mutex);
crtc->drrs.cpu_transcoder = INVALID_TRANSCODER;
}
+
+static int intel_drrs_debugfs_status_show(struct seq_file *m, void *unused)
+{
+ struct intel_crtc *crtc = m->private;
+ const struct intel_crtc_state *crtc_state;
+ int ret;
+
+ ret = drm_modeset_lock_single_interruptible(&crtc->base.mutex);
+ if (ret)
+ return ret;
+
+ crtc_state = to_intel_crtc_state(crtc->base.state);
+
+ mutex_lock(&crtc->drrs.mutex);
+
+ seq_printf(m, "DRRS enabled: %s\n",
+ str_yes_no(crtc_state->has_drrs));
+
+ seq_printf(m, "DRRS active: %s\n",
+ str_yes_no(intel_drrs_is_active(crtc)));
+
+ seq_printf(m, "DRRS refresh rate: %s\n",
+ crtc->drrs.refresh_rate == DRRS_REFRESH_RATE_LOW ?
+ "low" : "high");
+
+ seq_printf(m, "DRRS busy frontbuffer bits: 0x%x\n",
+ crtc->drrs.busy_frontbuffer_bits);
+
+ mutex_unlock(&crtc->drrs.mutex);
+
+ drm_modeset_unlock(&crtc->base.mutex);
+
+ return 0;
+}
+
+DEFINE_SHOW_ATTRIBUTE(intel_drrs_debugfs_status);
+
+static int intel_drrs_debugfs_ctl_set(void *data, u64 val)
+{
+ struct intel_crtc *crtc = data;
+ struct drm_i915_private *i915 = to_i915(crtc->base.dev);
+ struct intel_crtc_state *crtc_state;
+ struct drm_crtc_commit *commit;
+ int ret;
+
+ ret = drm_modeset_lock_single_interruptible(&crtc->base.mutex);
+ if (ret)
+ return ret;
+
+ crtc_state = to_intel_crtc_state(crtc->base.state);
+
+ if (!crtc_state->hw.active ||
+ !crtc_state->has_drrs)
+ goto out;
+
+ commit = crtc_state->uapi.commit;
+ if (commit) {
+ ret = wait_for_completion_interruptible(&commit->hw_done);
+ if (ret)
+ goto out;
+ }
+
+ drm_dbg(&i915->drm,
+ "Manually %sactivating DRRS\n", val ? "" : "de");
+
+ if (val)
+ intel_drrs_activate(crtc_state);
+ else
+ intel_drrs_deactivate(crtc_state);
+
+out:
+ drm_modeset_unlock(&crtc->base.mutex);
+
+ return ret;
+}
+
+DEFINE_DEBUGFS_ATTRIBUTE(intel_drrs_debugfs_ctl_fops,
+ NULL, intel_drrs_debugfs_ctl_set, "%llu\n");
+
+void intel_drrs_crtc_debugfs_add(struct intel_crtc *crtc)
+{
+ debugfs_create_file("i915_drrs_status", 0444, crtc->base.debugfs_entry,
+ crtc, &intel_drrs_debugfs_status_fops);
+
+ debugfs_create_file_unsafe("i915_drrs_ctl", 0644, crtc->base.debugfs_entry,
+ crtc, &intel_drrs_debugfs_ctl_fops);
+}
+
+static int intel_drrs_debugfs_type_show(struct seq_file *m, void *unused)
+{
+ struct intel_connector *connector = m->private;
+
+ seq_printf(m, "DRRS type: %s\n",
+ intel_drrs_type_str(intel_panel_drrs_type(connector)));
+
+ return 0;
+}
+
+DEFINE_SHOW_ATTRIBUTE(intel_drrs_debugfs_type);
+
+void intel_drrs_connector_debugfs_add(struct intel_connector *connector)
+{
+ if (intel_panel_drrs_type(connector) == DRRS_TYPE_NONE)
+ return;
+
+ debugfs_create_file("i915_drrs_type", 0444, connector->base.debugfs_entry,
+ connector, &intel_drrs_debugfs_type_fops);
+}
diff --git a/drivers/gpu/drm/i915/display/intel_drrs.h b/drivers/gpu/drm/i915/display/intel_drrs.h
index 3ad1be1ad9c1..8ef5f93a80ff 100644
--- a/drivers/gpu/drm/i915/display/intel_drrs.h
+++ b/drivers/gpu/drm/i915/display/intel_drrs.h
@@ -23,6 +23,8 @@ void intel_drrs_invalidate(struct drm_i915_private *dev_priv,
unsigned int frontbuffer_bits);
void intel_drrs_flush(struct drm_i915_private *dev_priv,
unsigned int frontbuffer_bits);
-void intel_crtc_drrs_init(struct intel_crtc *crtc);
+void intel_drrs_crtc_init(struct intel_crtc *crtc);
+void intel_drrs_crtc_debugfs_add(struct intel_crtc *crtc);
+void intel_drrs_connector_debugfs_add(struct intel_connector *connector);
#endif /* __INTEL_DRRS_H__ */
diff --git a/drivers/gpu/drm/i915/display/intel_dsb.c b/drivers/gpu/drm/i915/display/intel_dsb.c
index fc9c3e41c333..bed058d2c3ac 100644
--- a/drivers/gpu/drm/i915/display/intel_dsb.c
+++ b/drivers/gpu/drm/i915/display/intel_dsb.c
@@ -7,9 +7,11 @@
#include "gem/i915_gem_internal.h"
#include "i915_drv.h"
+#include "i915_reg.h"
#include "intel_de.h"
#include "intel_display_types.h"
#include "intel_dsb.h"
+#include "intel_dsb_regs.h"
struct i915_vma;
@@ -23,25 +25,30 @@ enum dsb_id {
struct intel_dsb {
enum dsb_id id;
+
u32 *cmd_buf;
struct i915_vma *vma;
+ struct intel_crtc *crtc;
+
+ /*
+ * maximum number of dwords the buffer will hold.
+ */
+ unsigned int size;
/*
- * free_pos will point the first free entry position
- * and help in calculating tail of command buffer.
+ * free_pos will point the first free dword and
+ * help in calculating tail of command buffer.
*/
- int free_pos;
+ unsigned int free_pos;
/*
- * ins_start_offset will help to store start address of the dsb
+ * ins_start_offset will help to store start dword of the dsb
* instuction and help in identifying the batch of auto-increment
* register.
*/
- u32 ins_start_offset;
+ unsigned int ins_start_offset;
};
-#define DSB_BUF_SIZE (2 * PAGE_SIZE)
-
/**
* DOC: DSB
*
@@ -61,86 +68,87 @@ struct intel_dsb {
/* DSB opcodes. */
#define DSB_OPCODE_SHIFT 24
+#define DSB_OPCODE_NOOP 0x0
#define DSB_OPCODE_MMIO_WRITE 0x1
+#define DSB_OPCODE_WAIT_USEC 0x2
+#define DSB_OPCODE_WAIT_LINES 0x3
+#define DSB_OPCODE_WAIT_VBLANKS 0x4
+#define DSB_OPCODE_WAIT_DSL_IN 0x5
+#define DSB_OPCODE_WAIT_DSL_OUT 0x6
+#define DSB_OPCODE_INTERRUPT 0x7
#define DSB_OPCODE_INDEXED_WRITE 0x9
+#define DSB_OPCODE_POLL 0xA
#define DSB_BYTE_EN 0xF
#define DSB_BYTE_EN_SHIFT 20
#define DSB_REG_VALUE_MASK 0xfffff
+static bool assert_dsb_has_room(struct intel_dsb *dsb)
+{
+ struct intel_crtc *crtc = dsb->crtc;
+ struct drm_i915_private *i915 = to_i915(crtc->base.dev);
+
+ /* each instruction is 2 dwords */
+ return !drm_WARN(&i915->drm, dsb->free_pos > dsb->size - 2,
+ "[CRTC:%d:%s] DSB %d buffer overflow\n",
+ crtc->base.base.id, crtc->base.name, dsb->id);
+}
+
static bool is_dsb_busy(struct drm_i915_private *i915, enum pipe pipe,
enum dsb_id id)
{
- return DSB_STATUS & intel_de_read(i915, DSB_CTRL(pipe, id));
+ return intel_de_read(i915, DSB_CTRL(pipe, id)) & DSB_STATUS_BUSY;
}
-static bool intel_dsb_enable_engine(struct drm_i915_private *i915,
- enum pipe pipe, enum dsb_id id)
+static void intel_dsb_emit(struct intel_dsb *dsb, u32 ldw, u32 udw)
{
- u32 dsb_ctrl;
+ u32 *buf = dsb->cmd_buf;
- dsb_ctrl = intel_de_read(i915, DSB_CTRL(pipe, id));
- if (DSB_STATUS & dsb_ctrl) {
- drm_dbg_kms(&i915->drm, "DSB engine is busy.\n");
- return false;
- }
+ if (!assert_dsb_has_room(dsb))
+ return;
- dsb_ctrl |= DSB_ENABLE;
- intel_de_write(i915, DSB_CTRL(pipe, id), dsb_ctrl);
+ /* Every instruction should be 8 byte aligned. */
+ dsb->free_pos = ALIGN(dsb->free_pos, 2);
- intel_de_posting_read(i915, DSB_CTRL(pipe, id));
- return true;
+ dsb->ins_start_offset = dsb->free_pos;
+
+ buf[dsb->free_pos++] = ldw;
+ buf[dsb->free_pos++] = udw;
}
-static bool intel_dsb_disable_engine(struct drm_i915_private *i915,
- enum pipe pipe, enum dsb_id id)
+static bool intel_dsb_prev_ins_is_write(struct intel_dsb *dsb,
+ u32 opcode, i915_reg_t reg)
{
- u32 dsb_ctrl;
+ const u32 *buf = dsb->cmd_buf;
+ u32 prev_opcode, prev_reg;
- dsb_ctrl = intel_de_read(i915, DSB_CTRL(pipe, id));
- if (DSB_STATUS & dsb_ctrl) {
- drm_dbg_kms(&i915->drm, "DSB engine is busy.\n");
- return false;
- }
+ prev_opcode = buf[dsb->ins_start_offset + 1] >> DSB_OPCODE_SHIFT;
+ prev_reg = buf[dsb->ins_start_offset + 1] & DSB_REG_VALUE_MASK;
+
+ return prev_opcode == opcode && prev_reg == i915_mmio_reg_offset(reg);
+}
- dsb_ctrl &= ~DSB_ENABLE;
- intel_de_write(i915, DSB_CTRL(pipe, id), dsb_ctrl);
+static bool intel_dsb_prev_ins_is_mmio_write(struct intel_dsb *dsb, i915_reg_t reg)
+{
+ return intel_dsb_prev_ins_is_write(dsb, DSB_OPCODE_MMIO_WRITE, reg);
+}
- intel_de_posting_read(i915, DSB_CTRL(pipe, id));
- return true;
+static bool intel_dsb_prev_ins_is_indexed_write(struct intel_dsb *dsb, i915_reg_t reg)
+{
+ return intel_dsb_prev_ins_is_write(dsb, DSB_OPCODE_INDEXED_WRITE, reg);
}
/**
- * intel_dsb_indexed_reg_write() -Write to the DSB context for auto
- * increment register.
- * @crtc_state: intel_crtc_state structure
+ * intel_dsb_reg_write() - Emit register wriite to the DSB context
+ * @dsb: DSB context
* @reg: register address.
* @val: value.
*
* This function is used for writing register-value pair in command
- * buffer of DSB for auto-increment register. During command buffer overflow,
- * a warning is thrown and rest all erroneous condition register programming
- * is done through mmio write.
+ * buffer of DSB.
*/
-
-void intel_dsb_indexed_reg_write(const struct intel_crtc_state *crtc_state,
- i915_reg_t reg, u32 val)
+void intel_dsb_reg_write(struct intel_dsb *dsb,
+ i915_reg_t reg, u32 val)
{
- struct intel_dsb *dsb = crtc_state->dsb;
- struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
- struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
- u32 *buf;
- u32 reg_val;
-
- if (!dsb) {
- intel_de_write_fw(dev_priv, reg, val);
- return;
- }
- buf = dsb->cmd_buf;
- if (drm_WARN_ON(&dev_priv->drm, dsb->free_pos >= DSB_BUF_SIZE)) {
- drm_dbg_kms(&dev_priv->drm, "DSB buffer overflow\n");
- return;
- }
-
/*
* For example the buffer will look like below for 3 dwords for auto
* increment register:
@@ -157,207 +165,192 @@ void intel_dsb_indexed_reg_write(const struct intel_crtc_state *crtc_state,
* we are writing odd no of dwords, Zeros will be added in the end for
* padding.
*/
- reg_val = buf[dsb->ins_start_offset + 1] & DSB_REG_VALUE_MASK;
- if (reg_val != i915_mmio_reg_offset(reg)) {
- /* Every instruction should be 8 byte aligned. */
- dsb->free_pos = ALIGN(dsb->free_pos, 2);
+ if (!intel_dsb_prev_ins_is_mmio_write(dsb, reg) &&
+ !intel_dsb_prev_ins_is_indexed_write(dsb, reg)) {
+ intel_dsb_emit(dsb, val,
+ (DSB_OPCODE_MMIO_WRITE << DSB_OPCODE_SHIFT) |
+ (DSB_BYTE_EN << DSB_BYTE_EN_SHIFT) |
+ i915_mmio_reg_offset(reg));
+ } else {
+ u32 *buf = dsb->cmd_buf;
- dsb->ins_start_offset = dsb->free_pos;
+ if (!assert_dsb_has_room(dsb))
+ return;
- /* Update the size. */
- buf[dsb->free_pos++] = 1;
+ /* convert to indexed write? */
+ if (intel_dsb_prev_ins_is_mmio_write(dsb, reg)) {
+ u32 prev_val = buf[dsb->ins_start_offset + 0];
- /* Update the opcode and reg. */
- buf[dsb->free_pos++] = (DSB_OPCODE_INDEXED_WRITE <<
- DSB_OPCODE_SHIFT) |
- i915_mmio_reg_offset(reg);
+ buf[dsb->ins_start_offset + 0] = 1; /* count */
+ buf[dsb->ins_start_offset + 1] =
+ (DSB_OPCODE_INDEXED_WRITE << DSB_OPCODE_SHIFT) |
+ i915_mmio_reg_offset(reg);
+ buf[dsb->ins_start_offset + 2] = prev_val;
- /* Update the value. */
- buf[dsb->free_pos++] = val;
- } else {
- /* Update the new value. */
- buf[dsb->free_pos++] = val;
+ dsb->free_pos++;
+ }
- /* Update the size. */
+ buf[dsb->free_pos++] = val;
+ /* Update the count */
buf[dsb->ins_start_offset]++;
- }
- /* if number of data words is odd, then the last dword should be 0.*/
- if (dsb->free_pos & 0x1)
- buf[dsb->free_pos] = 0;
+ /* if number of data words is odd, then the last dword should be 0.*/
+ if (dsb->free_pos & 0x1)
+ buf[dsb->free_pos] = 0;
+ }
}
-/**
- * intel_dsb_reg_write() -Write to the DSB context for normal
- * register.
- * @crtc_state: intel_crtc_state structure
- * @reg: register address.
- * @val: value.
- *
- * This function is used for writing register-value pair in command
- * buffer of DSB. During command buffer overflow, a warning is thrown
- * and rest all erroneous condition register programming is done
- * through mmio write.
- */
-void intel_dsb_reg_write(const struct intel_crtc_state *crtc_state,
- i915_reg_t reg, u32 val)
+static void intel_dsb_align_tail(struct intel_dsb *dsb)
{
- struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
- struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
- struct intel_dsb *dsb;
- u32 *buf;
+ u32 aligned_tail, tail;
- dsb = crtc_state->dsb;
- if (!dsb) {
- intel_de_write_fw(dev_priv, reg, val);
- return;
- }
+ tail = dsb->free_pos * 4;
+ aligned_tail = ALIGN(tail, CACHELINE_BYTES);
- buf = dsb->cmd_buf;
- if (drm_WARN_ON(&dev_priv->drm, dsb->free_pos >= DSB_BUF_SIZE)) {
- drm_dbg_kms(&dev_priv->drm, "DSB buffer overflow\n");
- return;
- }
+ if (aligned_tail > tail)
+ memset(&dsb->cmd_buf[dsb->free_pos], 0,
+ aligned_tail - tail);
- dsb->ins_start_offset = dsb->free_pos;
- buf[dsb->free_pos++] = val;
- buf[dsb->free_pos++] = (DSB_OPCODE_MMIO_WRITE << DSB_OPCODE_SHIFT) |
- (DSB_BYTE_EN << DSB_BYTE_EN_SHIFT) |
- i915_mmio_reg_offset(reg);
+ dsb->free_pos = aligned_tail / 4;
+}
+
+void intel_dsb_finish(struct intel_dsb *dsb)
+{
+ intel_dsb_align_tail(dsb);
}
/**
* intel_dsb_commit() - Trigger workload execution of DSB.
- * @crtc_state: intel_crtc_state structure
+ * @dsb: DSB context
+ * @wait_for_vblank: wait for vblank before executing
*
* This function is used to do actual write to hardware using DSB.
- * On errors, fall back to MMIO. Also this function help to reset the context.
*/
-void intel_dsb_commit(const struct intel_crtc_state *crtc_state)
+void intel_dsb_commit(struct intel_dsb *dsb, bool wait_for_vblank)
{
- struct intel_dsb *dsb = crtc_state->dsb;
- struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
- struct drm_device *dev = crtc->base.dev;
- struct drm_i915_private *dev_priv = to_i915(dev);
+ struct intel_crtc *crtc = dsb->crtc;
+ struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
enum pipe pipe = crtc->pipe;
u32 tail;
- if (!(dsb && dsb->free_pos))
+ tail = dsb->free_pos * 4;
+ if (drm_WARN_ON(&dev_priv->drm, !IS_ALIGNED(tail, CACHELINE_BYTES)))
return;
- if (!intel_dsb_enable_engine(dev_priv, pipe, dsb->id))
- goto reset;
-
if (is_dsb_busy(dev_priv, pipe, dsb->id)) {
- drm_err(&dev_priv->drm,
- "HEAD_PTR write failed - dsb engine is busy.\n");
- goto reset;
+ drm_err(&dev_priv->drm, "[CRTC:%d:%s] DSB %d is busy\n",
+ crtc->base.base.id, crtc->base.name, dsb->id);
+ return;
}
+
+ intel_de_write(dev_priv, DSB_CTRL(pipe, dsb->id),
+ (wait_for_vblank ? DSB_WAIT_FOR_VBLANK : 0) |
+ DSB_ENABLE);
intel_de_write(dev_priv, DSB_HEAD(pipe, dsb->id),
i915_ggtt_offset(dsb->vma));
-
- tail = ALIGN(dsb->free_pos * 4, CACHELINE_BYTES);
- if (tail > dsb->free_pos * 4)
- memset(&dsb->cmd_buf[dsb->free_pos], 0,
- (tail - dsb->free_pos * 4));
-
- if (is_dsb_busy(dev_priv, pipe, dsb->id)) {
- drm_err(&dev_priv->drm,
- "TAIL_PTR write failed - dsb engine is busy.\n");
- goto reset;
- }
- drm_dbg_kms(&dev_priv->drm,
- "DSB execution started - head 0x%x, tail 0x%x\n",
- i915_ggtt_offset(dsb->vma), tail);
intel_de_write(dev_priv, DSB_TAIL(pipe, dsb->id),
i915_ggtt_offset(dsb->vma) + tail);
- if (wait_for(!is_dsb_busy(dev_priv, pipe, dsb->id), 1)) {
+}
+
+void intel_dsb_wait(struct intel_dsb *dsb)
+{
+ struct intel_crtc *crtc = dsb->crtc;
+ struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
+ enum pipe pipe = crtc->pipe;
+
+ if (wait_for(!is_dsb_busy(dev_priv, pipe, dsb->id), 1))
drm_err(&dev_priv->drm,
- "Timed out waiting for DSB workload completion.\n");
- goto reset;
- }
+ "[CRTC:%d:%s] DSB %d timed out waiting for idle\n",
+ crtc->base.base.id, crtc->base.name, dsb->id);
-reset:
+ /* Attempt to reset it */
dsb->free_pos = 0;
dsb->ins_start_offset = 0;
- intel_dsb_disable_engine(dev_priv, pipe, dsb->id);
+ intel_de_write(dev_priv, DSB_CTRL(pipe, dsb->id), 0);
}
/**
* intel_dsb_prepare() - Allocate, pin and map the DSB command buffer.
- * @crtc_state: intel_crtc_state structure to prepare associated dsb instance.
+ * @crtc: the CRTC
+ * @max_cmds: number of commands we need to fit into command buffer
*
* This function prepare the command buffer which is used to store dsb
* instructions with data.
+ *
+ * Returns:
+ * DSB context, NULL on failure
*/
-void intel_dsb_prepare(struct intel_crtc_state *crtc_state)
+struct intel_dsb *intel_dsb_prepare(struct intel_crtc *crtc,
+ unsigned int max_cmds)
{
- struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
struct drm_i915_private *i915 = to_i915(crtc->base.dev);
- struct intel_dsb *dsb;
struct drm_i915_gem_object *obj;
+ intel_wakeref_t wakeref;
+ struct intel_dsb *dsb;
struct i915_vma *vma;
+ unsigned int size;
u32 *buf;
- intel_wakeref_t wakeref;
if (!HAS_DSB(i915))
- return;
+ return NULL;
- dsb = kmalloc(sizeof(*dsb), GFP_KERNEL);
- if (!dsb) {
- drm_err(&i915->drm, "DSB object creation failed\n");
- return;
- }
+ dsb = kzalloc(sizeof(*dsb), GFP_KERNEL);
+ if (!dsb)
+ goto out;
wakeref = intel_runtime_pm_get(&i915->runtime_pm);
- obj = i915_gem_object_create_internal(i915, DSB_BUF_SIZE);
- if (IS_ERR(obj)) {
- kfree(dsb);
- goto out;
- }
+ /* ~1 qword per instruction, full cachelines */
+ size = ALIGN(max_cmds * 8, CACHELINE_BYTES);
+
+ obj = i915_gem_object_create_internal(i915, PAGE_ALIGN(size));
+ if (IS_ERR(obj))
+ goto out_put_rpm;
vma = i915_gem_object_ggtt_pin(obj, NULL, 0, 0, 0);
if (IS_ERR(vma)) {
i915_gem_object_put(obj);
- kfree(dsb);
- goto out;
+ goto out_put_rpm;
}
buf = i915_gem_object_pin_map_unlocked(vma->obj, I915_MAP_WC);
if (IS_ERR(buf)) {
i915_vma_unpin_and_release(&vma, I915_VMA_RELEASE_MAP);
- kfree(dsb);
- goto out;
+ goto out_put_rpm;
}
+ intel_runtime_pm_put(&i915->runtime_pm, wakeref);
+
dsb->id = DSB1;
dsb->vma = vma;
+ dsb->crtc = crtc;
dsb->cmd_buf = buf;
+ dsb->size = size / 4; /* in dwords */
dsb->free_pos = 0;
dsb->ins_start_offset = 0;
- crtc_state->dsb = dsb;
-out:
- if (!crtc_state->dsb)
- drm_info(&i915->drm,
- "DSB queue setup failed, will fallback to MMIO for display HW programming\n");
+ return dsb;
+
+out_put_rpm:
intel_runtime_pm_put(&i915->runtime_pm, wakeref);
+ kfree(dsb);
+out:
+ drm_info_once(&i915->drm,
+ "[CRTC:%d:%s] DSB %d queue setup failed, will fallback to MMIO for display HW programming\n",
+ crtc->base.base.id, crtc->base.name, DSB1);
+
+ return NULL;
}
/**
* intel_dsb_cleanup() - To cleanup DSB context.
- * @crtc_state: intel_crtc_state structure to cleanup associated dsb instance.
+ * @dsb: DSB context
*
* This function cleanup the DSB context by unpinning and releasing
* the VMA object associated with it.
*/
-void intel_dsb_cleanup(struct intel_crtc_state *crtc_state)
+void intel_dsb_cleanup(struct intel_dsb *dsb)
{
- if (!crtc_state->dsb)
- return;
-
- i915_vma_unpin_and_release(&crtc_state->dsb->vma, I915_VMA_RELEASE_MAP);
- kfree(crtc_state->dsb);
- crtc_state->dsb = NULL;
+ i915_vma_unpin_and_release(&dsb->vma, I915_VMA_RELEASE_MAP);
+ kfree(dsb);
}
diff --git a/drivers/gpu/drm/i915/display/intel_dsb.h b/drivers/gpu/drm/i915/display/intel_dsb.h
index 74dd2b3343bb..b8148b47022d 100644
--- a/drivers/gpu/drm/i915/display/intel_dsb.h
+++ b/drivers/gpu/drm/i915/display/intel_dsb.h
@@ -10,14 +10,17 @@
#include "i915_reg_defs.h"
-struct intel_crtc_state;
+struct intel_crtc;
+struct intel_dsb;
-void intel_dsb_prepare(struct intel_crtc_state *crtc_state);
-void intel_dsb_cleanup(struct intel_crtc_state *crtc_state);
-void intel_dsb_reg_write(const struct intel_crtc_state *crtc_state,
+struct intel_dsb *intel_dsb_prepare(struct intel_crtc *crtc,
+ unsigned int max_cmds);
+void intel_dsb_finish(struct intel_dsb *dsb);
+void intel_dsb_cleanup(struct intel_dsb *dsb);
+void intel_dsb_reg_write(struct intel_dsb *dsb,
i915_reg_t reg, u32 val);
-void intel_dsb_indexed_reg_write(const struct intel_crtc_state *crtc_state,
- i915_reg_t reg, u32 val);
-void intel_dsb_commit(const struct intel_crtc_state *crtc_state);
+void intel_dsb_commit(struct intel_dsb *dsb,
+ bool wait_for_vblank);
+void intel_dsb_wait(struct intel_dsb *dsb);
#endif
diff --git a/drivers/gpu/drm/i915/display/intel_dsb_regs.h b/drivers/gpu/drm/i915/display/intel_dsb_regs.h
new file mode 100644
index 000000000000..12535d478775
--- /dev/null
+++ b/drivers/gpu/drm/i915/display/intel_dsb_regs.h
@@ -0,0 +1,67 @@
+/* SPDX-License-Identifier: MIT */
+/*
+ * Copyright © 2023 Intel Corporation
+ */
+
+#ifndef __INTEL_DSB_REGS_H__
+#define __INTEL_DSB_REGS_H__
+
+#include "intel_display_reg_defs.h"
+
+/* This register controls the Display State Buffer (DSB) engines. */
+#define _DSBSL_INSTANCE_BASE 0x70B00
+#define DSBSL_INSTANCE(pipe, id) (_DSBSL_INSTANCE_BASE + \
+ (pipe) * 0x1000 + (id) * 0x100)
+#define DSB_HEAD(pipe, id) _MMIO(DSBSL_INSTANCE(pipe, id) + 0x0)
+#define DSB_TAIL(pipe, id) _MMIO(DSBSL_INSTANCE(pipe, id) + 0x4)
+#define DSB_CTRL(pipe, id) _MMIO(DSBSL_INSTANCE(pipe, id) + 0x8)
+#define DSB_ENABLE REG_BIT(31)
+#define DSB_BUF_REITERATE REG_BIT(29)
+#define DSB_WAIT_FOR_VBLANK REG_BIT(28)
+#define DSB_WAIT_FOR_LINE_IN REG_BIT(27)
+#define DSB_HALT REG_BIT(16)
+#define DSB_NON_POSTED REG_BIT(8)
+#define DSB_STATUS_BUSY REG_BIT(0)
+#define DSB_MMIOCTRL(pipe, id) _MMIO(DSBSL_INSTANCE(pipe, id) + 0xc)
+#define DSB_MMIO_DEAD_CLOCKS_ENABLE REG_BIT(31)
+#define DSB_MMIO_DEAD_CLOCKS_COUNT_MASK REG_GENMASK(15, 8)
+#define DSB_MMIO_DEAD_CLOCKS_COUNT(x) REG_FIELD_PREP(DSB_MMIO_DEAD_CLOCK_COUNT_MASK, (x))
+#define DSB_MMIO_CYCLES_MASK REG_GENMASK(7, 0)
+#define DSB_MMIO_CYCLES(x) REG_FIELD_PREP(DSB_MMIO_CYCLES_MASK, (x))
+#define DSB_POLLFUNC(pipe, id) _MMIO(DSBSL_INSTANCE(pipe, id) + 0x10)
+#define DSB_POLL_ENABLE REG_BIT(31)
+#define DSB_POLL_WAIT_MASK REG_GENMASK(30, 23)
+#define DSB_POLL_WAIT(x) REG_FIELD_PREP(DSB_POLL_WAIT_MASK, (x)) /* usec */
+#define DSB_POLL_COUNT_MASK REG_GENMASK(22, 15)
+#define DSB_POLL_COUNT(x) REG_FIELD_PREP(DSB_POLL_COUNT_MASK, (x))
+#define DSB_DEBUG(pipe, id) _MMIO(DSBSL_INSTANCE(pipe, id) + 0x14)
+#define DSB_POLLMASK(pipe, id) _MMIO(DSBSL_INSTANCE(pipe, id) + 0x1c)
+#define DSB_STATUS(pipe, id) _MMIO(DSBSL_INSTANCE(pipe, id) + 0x24)
+#define DSB_INTERRUPT(pipe, id) _MMIO(DSBSL_INSTANCE(pipe, id) + 0x28)
+#define DSB_ATS_FAULT_INT_EN REG_BIT(20)
+#define DSB_GTT_FAULT_INT_EN REG_BIT(19)
+#define DSB_RSPTIMEOUT_INT_EN REG_BIT(18)
+#define DSB_POLL_ERR_INT_EN REG_BIT(17)
+#define DSB_PROG_INT_EN REG_BIT(16)
+#define DSB_ATS_FAULT_INT_STATUS REG_BIT(4)
+#define DSB_GTT_FAULT_INT_STATUS REG_BIT(3)
+#define DSB_RSPTIMEOUT_INT_STATUS REG_BIT(2)
+#define DSB_POLL_ERR_INT_STATUS REG_BIT(1)
+#define DSB_PROG_INT_STATUS REG_BIT(0)
+#define DSB_CURRENT_HEAD(pipe, id) _MMIO(DSBSL_INSTANCE(pipe, id) + 0x2c)
+#define DSB_RM_TIMEOUT(pipe, id) _MMIO(DSBSL_INSTANCE(pipe, id) + 0x30)
+#define DSB_RM_CLAIM_TIMEOUT REG_BIT(31)
+#define DSB_RM_READY_TIMEOUT REG_BIT(30)
+#define DSB_RM_CLAIM_TIMEOUT_COUNT_MASK REG_GENMASK(23, 16)
+#define DSB_RM_CLAIM_TIMEOUT_COUNT(x) REG_FIELD_PREP(DSB_RM_CLAIM_TIMEOUT_COUNT_MASK, (x)) /* clocks */
+#define DSB_RM_READY_TIMEOUT_VALUE_MASK REG_GENMASK(15, 0)
+#define DSB_RM_READY_TIMEOUT_VALUE(x) REG_FIELD_PREP(DSB_RM_READY_TIMEOUT_VALUE, (x)) /* usec */
+#define DSB_RMTIMEOUTREG_CAPTURE(pipe, id) _MMIO(DSBSL_INSTANCE(pipe, id) + 0x34)
+#define DSB_PMCTRL(pipe, id) _MMIO(DSBSL_INSTANCE(pipe, id) + 0x38)
+#define DSB_PMCTRL_2(pipe, id) _MMIO(DSBSL_INSTANCE(pipe, id) + 0x3c)
+#define DSB_PF_LN_LOWER(pipe, id) _MMIO(DSBSL_INSTANCE(pipe, id) + 0x40)
+#define DSB_PF_LN_UPPER(pipe, id) _MMIO(DSBSL_INSTANCE(pipe, id) + 0x44)
+#define DSB_BUFRPT_CNT(pipe, id) _MMIO(DSBSL_INSTANCE(pipe, id) + 0x48)
+#define DSB_CHICKEN(pipe, id) _MMIO(DSBSL_INSTANCE(pipe, id) + 0xf0)
+
+#endif /* __INTEL_DSB_REGS_H__ */
diff --git a/drivers/gpu/drm/i915/display/intel_dsi_dcs_backlight.c b/drivers/gpu/drm/i915/display/intel_dsi_dcs_backlight.c
index 20e466d843ce..049443245310 100644
--- a/drivers/gpu/drm/i915/display/intel_dsi_dcs_backlight.c
+++ b/drivers/gpu/drm/i915/display/intel_dsi_dcs_backlight.c
@@ -162,6 +162,7 @@ static void dcs_enable_backlight(const struct intel_crtc_state *crtc_state,
static int dcs_setup_backlight(struct intel_connector *connector,
enum pipe unused)
{
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
struct intel_panel *panel = &connector->panel;
if (panel->vbt.backlight.brightness_precision_bits > 8)
@@ -171,6 +172,10 @@ static int dcs_setup_backlight(struct intel_connector *connector,
panel->backlight.level = panel->backlight.max;
+ drm_dbg_kms(&i915->drm,
+ "[CONNECTOR:%d:%s] Using DCS for backlight control\n",
+ connector->base.base.id, connector->base.name);
+
return 0;
}
diff --git a/drivers/gpu/drm/i915/display/intel_dsi_vbt.c b/drivers/gpu/drm/i915/display/intel_dsi_vbt.c
index 75e8cc4337c9..c7935ea498c4 100644
--- a/drivers/gpu/drm/i915/display/intel_dsi_vbt.c
+++ b/drivers/gpu/drm/i915/display/intel_dsi_vbt.c
@@ -41,9 +41,12 @@
#include "i915_drv.h"
#include "i915_reg.h"
+#include "intel_de.h"
#include "intel_display_types.h"
#include "intel_dsi.h"
#include "intel_dsi_vbt.h"
+#include "intel_gmbus_regs.h"
+#include "intel_pps_regs.h"
#include "vlv_dsi.h"
#include "vlv_dsi_regs.h"
#include "vlv_sideband.h"
@@ -137,9 +140,9 @@ static enum port intel_dsi_seq_port_to_port(struct intel_dsi *intel_dsi,
return ffs(intel_dsi->ports) - 1;
if (seq_port) {
- if (intel_dsi->ports & PORT_B)
+ if (intel_dsi->ports & BIT(PORT_B))
return PORT_B;
- else if (intel_dsi->ports & PORT_C)
+ else if (intel_dsi->ports & BIT(PORT_C))
return PORT_C;
}
@@ -377,6 +380,85 @@ static void icl_exec_gpio(struct intel_connector *connector,
drm_dbg_kms(&dev_priv->drm, "Skipping ICL GPIO element execution\n");
}
+enum {
+ MIPI_RESET_1 = 0,
+ MIPI_AVDD_EN_1,
+ MIPI_BKLT_EN_1,
+ MIPI_AVEE_EN_1,
+ MIPI_VIO_EN_1,
+ MIPI_RESET_2,
+ MIPI_AVDD_EN_2,
+ MIPI_BKLT_EN_2,
+ MIPI_AVEE_EN_2,
+ MIPI_VIO_EN_2,
+};
+
+static void icl_native_gpio_set_value(struct drm_i915_private *dev_priv,
+ int gpio, bool value)
+{
+ int index;
+
+ if (drm_WARN_ON(&dev_priv->drm, DISPLAY_VER(dev_priv) == 11 && gpio >= MIPI_RESET_2))
+ return;
+
+ switch (gpio) {
+ case MIPI_RESET_1:
+ case MIPI_RESET_2:
+ index = gpio == MIPI_RESET_1 ? HPD_PORT_A : HPD_PORT_B;
+
+ /*
+ * Disable HPD to set the pin to output, and set output
+ * value. The HPD pin should not be enabled for DSI anyway,
+ * assuming the board design and VBT are sane, and the pin isn't
+ * used by a non-DSI encoder.
+ *
+ * The locking protects against concurrent SHOTPLUG_CTL_DDI
+ * modifications in irq setup and handling.
+ */
+ spin_lock_irq(&dev_priv->irq_lock);
+ intel_de_rmw(dev_priv, SHOTPLUG_CTL_DDI,
+ SHOTPLUG_CTL_DDI_HPD_ENABLE(index) |
+ SHOTPLUG_CTL_DDI_HPD_OUTPUT_DATA(index),
+ value ? SHOTPLUG_CTL_DDI_HPD_OUTPUT_DATA(index) : 0);
+ spin_unlock_irq(&dev_priv->irq_lock);
+ break;
+ case MIPI_AVDD_EN_1:
+ case MIPI_AVDD_EN_2:
+ index = gpio == MIPI_AVDD_EN_1 ? 0 : 1;
+
+ intel_de_rmw(dev_priv, PP_CONTROL(index), PANEL_POWER_ON,
+ value ? PANEL_POWER_ON : 0);
+ break;
+ case MIPI_BKLT_EN_1:
+ case MIPI_BKLT_EN_2:
+ index = gpio == MIPI_BKLT_EN_1 ? 0 : 1;
+
+ intel_de_rmw(dev_priv, PP_CONTROL(index), EDP_BLC_ENABLE,
+ value ? EDP_BLC_ENABLE : 0);
+ break;
+ case MIPI_AVEE_EN_1:
+ case MIPI_AVEE_EN_2:
+ index = gpio == MIPI_AVEE_EN_1 ? 1 : 2;
+
+ intel_de_rmw(dev_priv, GPIO(dev_priv, index),
+ GPIO_CLOCK_VAL_OUT,
+ GPIO_CLOCK_DIR_MASK | GPIO_CLOCK_DIR_OUT |
+ GPIO_CLOCK_VAL_MASK | (value ? GPIO_CLOCK_VAL_OUT : 0));
+ break;
+ case MIPI_VIO_EN_1:
+ case MIPI_VIO_EN_2:
+ index = gpio == MIPI_VIO_EN_1 ? 1 : 2;
+
+ intel_de_rmw(dev_priv, GPIO(dev_priv, index),
+ GPIO_DATA_VAL_OUT,
+ GPIO_DATA_DIR_MASK | GPIO_DATA_DIR_OUT |
+ GPIO_DATA_VAL_MASK | (value ? GPIO_DATA_VAL_OUT : 0));
+ break;
+ default:
+ MISSING_CASE(gpio);
+ }
+}
+
static const u8 *mipi_exec_gpio(struct intel_dsi *intel_dsi, const u8 *data)
{
struct drm_device *dev = intel_dsi->base.base.dev;
@@ -384,8 +466,7 @@ static const u8 *mipi_exec_gpio(struct intel_dsi *intel_dsi, const u8 *data)
struct intel_connector *connector = intel_dsi->attached_connector;
u8 gpio_source, gpio_index = 0, gpio_number;
bool value;
-
- drm_dbg_kms(&dev_priv->drm, "\n");
+ bool native = DISPLAY_VER(dev_priv) >= 11;
if (connector->panel.vbt.dsi.seq_version >= 3)
gpio_index = *data++;
@@ -398,10 +479,18 @@ static const u8 *mipi_exec_gpio(struct intel_dsi *intel_dsi, const u8 *data)
else
gpio_source = 0;
+ if (connector->panel.vbt.dsi.seq_version >= 4 && *data & BIT(1))
+ native = false;
+
/* pull up/down */
value = *data++ & 1;
- if (DISPLAY_VER(dev_priv) >= 11)
+ drm_dbg_kms(&dev_priv->drm, "GPIO index %u, number %u, source %u, native %s, set to %s\n",
+ gpio_index, gpio_number, gpio_source, str_yes_no(native), str_on_off(value));
+
+ if (native)
+ icl_native_gpio_set_value(dev_priv, gpio_number, value);
+ else if (DISPLAY_VER(dev_priv) >= 11)
icl_exec_gpio(connector, gpio_source, gpio_index, value);
else if (IS_VALLEYVIEW(dev_priv))
vlv_exec_gpio(connector, gpio_source, gpio_number, value);
@@ -674,17 +763,6 @@ void intel_dsi_vbt_exec_sequence(struct intel_dsi *intel_dsi,
gpiod_set_value_cansleep(intel_dsi->gpio_backlight, 0);
}
-void intel_dsi_msleep(struct intel_dsi *intel_dsi, int msec)
-{
- struct intel_connector *connector = intel_dsi->attached_connector;
-
- /* For v3 VBTs in vid-mode the delays are part of the VBT sequences */
- if (is_vid_mode(intel_dsi) && connector->panel.vbt.dsi.seq_version >= 3)
- return;
-
- msleep(msec);
-}
-
void intel_dsi_log_params(struct intel_dsi *intel_dsi)
{
struct drm_i915_private *i915 = to_i915(intel_dsi->base.base.dev);
diff --git a/drivers/gpu/drm/i915/display/intel_dsi_vbt.h b/drivers/gpu/drm/i915/display/intel_dsi_vbt.h
index dc642c1fe7ef..468d873fab1a 100644
--- a/drivers/gpu/drm/i915/display/intel_dsi_vbt.h
+++ b/drivers/gpu/drm/i915/display/intel_dsi_vbt.h
@@ -16,7 +16,6 @@ void intel_dsi_vbt_gpio_init(struct intel_dsi *intel_dsi, bool panel_is_on);
void intel_dsi_vbt_gpio_cleanup(struct intel_dsi *intel_dsi);
void intel_dsi_vbt_exec_sequence(struct intel_dsi *intel_dsi,
enum mipi_seq seq_id);
-void intel_dsi_msleep(struct intel_dsi *intel_dsi, int msec);
void intel_dsi_log_params(struct intel_dsi *intel_dsi);
#endif /* __INTEL_DSI_VBT_H__ */
diff --git a/drivers/gpu/drm/i915/display/intel_dvo.c b/drivers/gpu/drm/i915/display/intel_dvo.c
index 5572e43026e4..eb2dcd866cc8 100644
--- a/drivers/gpu/drm/i915/display/intel_dvo.c
+++ b/drivers/gpu/drm/i915/display/intel_dvo.c
@@ -32,11 +32,13 @@
#include <drm/drm_crtc.h>
#include "i915_drv.h"
+#include "i915_reg.h"
#include "intel_connector.h"
#include "intel_de.h"
#include "intel_display_types.h"
#include "intel_dvo.h"
#include "intel_dvo_dev.h"
+#include "intel_dvo_regs.h"
#include "intel_gmbus.h"
#include "intel_panel.h"
@@ -55,48 +57,42 @@ static const struct intel_dvo_device intel_dvo_devices[] = {
{
.type = INTEL_DVO_CHIP_TMDS,
.name = "sil164",
- .dvo_reg = DVOC,
- .dvo_srcdim_reg = DVOC_SRCDIM,
+ .port = PORT_C,
.slave_addr = SIL164_ADDR,
.dev_ops = &sil164_ops,
},
{
.type = INTEL_DVO_CHIP_TMDS,
.name = "ch7xxx",
- .dvo_reg = DVOC,
- .dvo_srcdim_reg = DVOC_SRCDIM,
+ .port = PORT_C,
.slave_addr = CH7xxx_ADDR,
.dev_ops = &ch7xxx_ops,
},
{
.type = INTEL_DVO_CHIP_TMDS,
.name = "ch7xxx",
- .dvo_reg = DVOC,
- .dvo_srcdim_reg = DVOC_SRCDIM,
+ .port = PORT_C,
.slave_addr = 0x75, /* For some ch7010 */
.dev_ops = &ch7xxx_ops,
},
{
.type = INTEL_DVO_CHIP_LVDS,
.name = "ivch",
- .dvo_reg = DVOA,
- .dvo_srcdim_reg = DVOA_SRCDIM,
+ .port = PORT_A,
.slave_addr = 0x02, /* Might also be 0x44, 0x84, 0xc4 */
.dev_ops = &ivch_ops,
},
{
.type = INTEL_DVO_CHIP_TMDS,
.name = "tfp410",
- .dvo_reg = DVOC,
- .dvo_srcdim_reg = DVOC_SRCDIM,
+ .port = PORT_C,
.slave_addr = TFP410_ADDR,
.dev_ops = &tfp410_ops,
},
{
.type = INTEL_DVO_CHIP_LVDS,
.name = "ch7017",
- .dvo_reg = DVOC,
- .dvo_srcdim_reg = DVOC_SRCDIM,
+ .port = PORT_C,
.slave_addr = 0x75,
.gpio = GMBUS_PIN_DPB,
.dev_ops = &ch7017_ops,
@@ -104,8 +100,7 @@ static const struct intel_dvo_device intel_dvo_devices[] = {
{
.type = INTEL_DVO_CHIP_LVDS_NO_FIXED,
.name = "ns2501",
- .dvo_reg = DVOB,
- .dvo_srcdim_reg = DVOB_SRCDIM,
+ .port = PORT_B,
.slave_addr = NS2501_ADDR,
.dev_ops = &ns2501_ops,
},
@@ -117,8 +112,6 @@ struct intel_dvo {
struct intel_dvo_device dev;
struct intel_connector *attached_connector;
-
- bool panel_wants_dither;
};
static struct intel_dvo *enc_to_dvo(struct intel_encoder *encoder)
@@ -133,12 +126,13 @@ static struct intel_dvo *intel_attached_dvo(struct intel_connector *connector)
static bool intel_dvo_connector_get_hw_state(struct intel_connector *connector)
{
- struct drm_device *dev = connector->base.dev;
- struct drm_i915_private *dev_priv = to_i915(dev);
- struct intel_dvo *intel_dvo = intel_attached_dvo(connector);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
+ struct intel_encoder *encoder = intel_attached_encoder(connector);
+ struct intel_dvo *intel_dvo = enc_to_dvo(encoder);
+ enum port port = encoder->port;
u32 tmp;
- tmp = intel_de_read(dev_priv, intel_dvo->dev.dvo_reg);
+ tmp = intel_de_read(i915, DVO(port));
if (!(tmp & DVO_ENABLE))
return false;
@@ -149,13 +143,13 @@ static bool intel_dvo_connector_get_hw_state(struct intel_connector *connector)
static bool intel_dvo_get_hw_state(struct intel_encoder *encoder,
enum pipe *pipe)
{
- struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
- struct intel_dvo *intel_dvo = enc_to_dvo(encoder);
+ struct drm_i915_private *i915 = to_i915(encoder->base.dev);
+ enum port port = encoder->port;
u32 tmp;
- tmp = intel_de_read(dev_priv, intel_dvo->dev.dvo_reg);
+ tmp = intel_de_read(i915, DVO(port));
- *pipe = (tmp & DVO_PIPE_SEL_MASK) >> DVO_PIPE_SEL_SHIFT;
+ *pipe = REG_FIELD_GET(DVO_PIPE_SEL_MASK, tmp);
return tmp & DVO_ENABLE;
}
@@ -163,13 +157,13 @@ static bool intel_dvo_get_hw_state(struct intel_encoder *encoder,
static void intel_dvo_get_config(struct intel_encoder *encoder,
struct intel_crtc_state *pipe_config)
{
- struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
- struct intel_dvo *intel_dvo = enc_to_dvo(encoder);
+ struct drm_i915_private *i915 = to_i915(encoder->base.dev);
+ enum port port = encoder->port;
u32 tmp, flags = 0;
pipe_config->output_types |= BIT(INTEL_OUTPUT_DVO);
- tmp = intel_de_read(dev_priv, intel_dvo->dev.dvo_reg);
+ tmp = intel_de_read(i915, DVO(port));
if (tmp & DVO_HSYNC_ACTIVE_HIGH)
flags |= DRM_MODE_FLAG_PHSYNC;
else
@@ -189,14 +183,14 @@ static void intel_disable_dvo(struct intel_atomic_state *state,
const struct intel_crtc_state *old_crtc_state,
const struct drm_connector_state *old_conn_state)
{
- struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
+ struct drm_i915_private *i915 = to_i915(encoder->base.dev);
struct intel_dvo *intel_dvo = enc_to_dvo(encoder);
- i915_reg_t dvo_reg = intel_dvo->dev.dvo_reg;
- u32 temp = intel_de_read(dev_priv, dvo_reg);
+ enum port port = encoder->port;
intel_dvo->dev.dev_ops->dpms(&intel_dvo->dev, false);
- intel_de_write(dev_priv, dvo_reg, temp & ~DVO_ENABLE);
- intel_de_read(dev_priv, dvo_reg);
+
+ intel_de_rmw(i915, DVO(port), DVO_ENABLE, 0);
+ intel_de_posting_read(i915, DVO(port));
}
static void intel_enable_dvo(struct intel_atomic_state *state,
@@ -204,30 +198,29 @@ static void intel_enable_dvo(struct intel_atomic_state *state,
const struct intel_crtc_state *pipe_config,
const struct drm_connector_state *conn_state)
{
- struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
+ struct drm_i915_private *i915 = to_i915(encoder->base.dev);
struct intel_dvo *intel_dvo = enc_to_dvo(encoder);
- i915_reg_t dvo_reg = intel_dvo->dev.dvo_reg;
- u32 temp = intel_de_read(dev_priv, dvo_reg);
+ enum port port = encoder->port;
intel_dvo->dev.dev_ops->mode_set(&intel_dvo->dev,
&pipe_config->hw.mode,
&pipe_config->hw.adjusted_mode);
- intel_de_write(dev_priv, dvo_reg, temp | DVO_ENABLE);
- intel_de_read(dev_priv, dvo_reg);
+ intel_de_rmw(i915, DVO(port), 0, DVO_ENABLE);
+ intel_de_posting_read(i915, DVO(port));
intel_dvo->dev.dev_ops->dpms(&intel_dvo->dev, true);
}
static enum drm_mode_status
-intel_dvo_mode_valid(struct drm_connector *connector,
+intel_dvo_mode_valid(struct drm_connector *_connector,
struct drm_display_mode *mode)
{
- struct intel_connector *intel_connector = to_intel_connector(connector);
- struct intel_dvo *intel_dvo = intel_attached_dvo(intel_connector);
+ struct intel_connector *connector = to_intel_connector(_connector);
+ struct intel_dvo *intel_dvo = intel_attached_dvo(connector);
const struct drm_display_mode *fixed_mode =
- intel_panel_fixed_mode(intel_connector, mode);
- int max_dotclk = to_i915(connector->dev)->max_dotclk_freq;
+ intel_panel_fixed_mode(connector, mode);
+ int max_dotclk = to_i915(connector->base.dev)->max_dotclk_freq;
int target_clock = mode->clock;
if (mode->flags & DRM_MODE_FLAG_DBLSCAN)
@@ -238,7 +231,7 @@ intel_dvo_mode_valid(struct drm_connector *connector,
if (fixed_mode) {
enum drm_mode_status status;
- status = intel_panel_mode_valid(intel_connector, mode);
+ status = intel_panel_mode_valid(connector, mode);
if (status != MODE_OK)
return status;
@@ -288,18 +281,17 @@ static void intel_dvo_pre_enable(struct intel_atomic_state *state,
const struct intel_crtc_state *pipe_config,
const struct drm_connector_state *conn_state)
{
- struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
+ struct drm_i915_private *i915 = to_i915(encoder->base.dev);
struct intel_crtc *crtc = to_intel_crtc(pipe_config->uapi.crtc);
const struct drm_display_mode *adjusted_mode = &pipe_config->hw.adjusted_mode;
- struct intel_dvo *intel_dvo = enc_to_dvo(encoder);
+ enum port port = encoder->port;
enum pipe pipe = crtc->pipe;
u32 dvo_val;
- i915_reg_t dvo_reg = intel_dvo->dev.dvo_reg;
- i915_reg_t dvo_srcdim_reg = intel_dvo->dev.dvo_srcdim_reg;
- /* Save the data order, since I don't know what it should be set to. */
- dvo_val = intel_de_read(dev_priv, dvo_reg) &
- (DVO_PRESERVE_MASK | DVO_DATA_ORDER_GBRG);
+ /* Save the active data order, since I don't know what it should be set to. */
+ dvo_val = intel_de_read(i915, DVO(port)) &
+ (DVO_DEDICATED_INT_ENABLE |
+ DVO_PRESERVE_MASK | DVO_ACT_DATA_ORDER_MASK);
dvo_val |= DVO_DATA_ORDER_FP | DVO_BORDER_ENABLE |
DVO_BLANK_ACTIVE_HIGH;
@@ -310,19 +302,21 @@ static void intel_dvo_pre_enable(struct intel_atomic_state *state,
if (adjusted_mode->flags & DRM_MODE_FLAG_PVSYNC)
dvo_val |= DVO_VSYNC_ACTIVE_HIGH;
- intel_de_write(dev_priv, dvo_srcdim_reg,
- (adjusted_mode->crtc_hdisplay << DVO_SRCDIM_HORIZONTAL_SHIFT) | (adjusted_mode->crtc_vdisplay << DVO_SRCDIM_VERTICAL_SHIFT));
- intel_de_write(dev_priv, dvo_reg, dvo_val);
+ intel_de_write(i915, DVO_SRCDIM(port),
+ DVO_SRCDIM_HORIZONTAL(adjusted_mode->crtc_hdisplay) |
+ DVO_SRCDIM_VERTICAL(adjusted_mode->crtc_vdisplay));
+ intel_de_write(i915, DVO(port), dvo_val);
}
static enum drm_connector_status
-intel_dvo_detect(struct drm_connector *connector, bool force)
+intel_dvo_detect(struct drm_connector *_connector, bool force)
{
- struct drm_i915_private *i915 = to_i915(connector->dev);
- struct intel_dvo *intel_dvo = intel_attached_dvo(to_intel_connector(connector));
+ struct intel_connector *connector = to_intel_connector(_connector);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
+ struct intel_dvo *intel_dvo = intel_attached_dvo(connector);
- DRM_DEBUG_KMS("[CONNECTOR:%d:%s]\n",
- connector->base.id, connector->name);
+ drm_dbg_kms(&i915->drm, "[CONNECTOR:%d:%s]\n",
+ connector->base.base.id, connector->base.name);
if (!INTEL_DISPLAY_ENABLED(i915))
return connector_status_disconnected;
@@ -330,9 +324,10 @@ intel_dvo_detect(struct drm_connector *connector, bool force)
return intel_dvo->dev.dev_ops->detect(&intel_dvo->dev);
}
-static int intel_dvo_get_modes(struct drm_connector *connector)
+static int intel_dvo_get_modes(struct drm_connector *_connector)
{
- struct drm_i915_private *dev_priv = to_i915(connector->dev);
+ struct intel_connector *connector = to_intel_connector(_connector);
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
int num_modes;
/*
@@ -341,12 +336,12 @@ static int intel_dvo_get_modes(struct drm_connector *connector)
* (TV-out, for example), but for now with just TMDS and LVDS,
* that's not the case.
*/
- num_modes = intel_ddc_get_modes(connector,
- intel_gmbus_get_adapter(dev_priv, GMBUS_PIN_DPC));
+ num_modes = intel_ddc_get_modes(&connector->base,
+ intel_gmbus_get_adapter(i915, GMBUS_PIN_DPC));
if (num_modes)
return num_modes;
- return intel_panel_get_modes(to_intel_connector(connector));
+ return intel_panel_get_modes(connector);
}
static const struct drm_connector_funcs intel_dvo_connector_funcs = {
@@ -378,167 +373,184 @@ static const struct drm_encoder_funcs intel_dvo_enc_funcs = {
.destroy = intel_dvo_enc_destroy,
};
-static enum port intel_dvo_port(i915_reg_t dvo_reg)
+static int intel_dvo_encoder_type(const struct intel_dvo_device *dvo)
+{
+ switch (dvo->type) {
+ case INTEL_DVO_CHIP_TMDS:
+ return DRM_MODE_ENCODER_TMDS;
+ case INTEL_DVO_CHIP_LVDS_NO_FIXED:
+ case INTEL_DVO_CHIP_LVDS:
+ return DRM_MODE_ENCODER_LVDS;
+ default:
+ MISSING_CASE(dvo->type);
+ return DRM_MODE_ENCODER_NONE;
+ }
+}
+
+static int intel_dvo_connector_type(const struct intel_dvo_device *dvo)
{
- if (i915_mmio_reg_equal(dvo_reg, DVOA))
- return PORT_A;
- else if (i915_mmio_reg_equal(dvo_reg, DVOB))
- return PORT_B;
+ switch (dvo->type) {
+ case INTEL_DVO_CHIP_TMDS:
+ return DRM_MODE_CONNECTOR_DVII;
+ case INTEL_DVO_CHIP_LVDS_NO_FIXED:
+ case INTEL_DVO_CHIP_LVDS:
+ return DRM_MODE_CONNECTOR_LVDS;
+ default:
+ MISSING_CASE(dvo->type);
+ return DRM_MODE_CONNECTOR_Unknown;
+ }
+}
+
+static bool intel_dvo_init_dev(struct drm_i915_private *dev_priv,
+ struct intel_dvo *intel_dvo,
+ const struct intel_dvo_device *dvo)
+{
+ struct i2c_adapter *i2c;
+ u32 dpll[I915_MAX_PIPES];
+ enum pipe pipe;
+ int gpio;
+ bool ret;
+
+ /*
+ * Allow the I2C driver info to specify the GPIO to be used in
+ * special cases, but otherwise default to what's defined
+ * in the spec.
+ */
+ if (intel_gmbus_is_valid_pin(dev_priv, dvo->gpio))
+ gpio = dvo->gpio;
+ else if (dvo->type == INTEL_DVO_CHIP_LVDS)
+ gpio = GMBUS_PIN_SSC;
else
- return PORT_C;
+ gpio = GMBUS_PIN_DPB;
+
+ /*
+ * Set up the I2C bus necessary for the chip we're probing.
+ * It appears that everything is on GPIOE except for panels
+ * on i830 laptops, which are on GPIOB (DVOA).
+ */
+ i2c = intel_gmbus_get_adapter(dev_priv, gpio);
+
+ intel_dvo->dev = *dvo;
+
+ /*
+ * GMBUS NAK handling seems to be unstable, hence let the
+ * transmitter detection run in bit banging mode for now.
+ */
+ intel_gmbus_force_bit(i2c, true);
+
+ /*
+ * ns2501 requires the DVO 2x clock before it will
+ * respond to i2c accesses, so make sure we have
+ * the clock enabled before we attempt to initialize
+ * the device.
+ */
+ for_each_pipe(dev_priv, pipe)
+ dpll[pipe] = intel_de_rmw(dev_priv, DPLL(pipe), 0, DPLL_DVO_2X_MODE);
+
+ ret = dvo->dev_ops->init(&intel_dvo->dev, i2c);
+
+ /* restore the DVO 2x clock state to original */
+ for_each_pipe(dev_priv, pipe) {
+ intel_de_write(dev_priv, DPLL(pipe), dpll[pipe]);
+ }
+
+ intel_gmbus_force_bit(i2c, false);
+
+ return ret;
}
-void intel_dvo_init(struct drm_i915_private *dev_priv)
+static bool intel_dvo_probe(struct drm_i915_private *i915,
+ struct intel_dvo *intel_dvo)
{
- struct intel_encoder *intel_encoder;
- struct intel_dvo *intel_dvo;
- struct intel_connector *intel_connector;
int i;
- int encoder_type = DRM_MODE_ENCODER_NONE;
+
+ /* Now, try to find a controller */
+ for (i = 0; i < ARRAY_SIZE(intel_dvo_devices); i++) {
+ if (intel_dvo_init_dev(i915, intel_dvo,
+ &intel_dvo_devices[i]))
+ return true;
+ }
+
+ return false;
+}
+
+void intel_dvo_init(struct drm_i915_private *i915)
+{
+ struct intel_connector *connector;
+ struct intel_encoder *encoder;
+ struct intel_dvo *intel_dvo;
intel_dvo = kzalloc(sizeof(*intel_dvo), GFP_KERNEL);
if (!intel_dvo)
return;
- intel_connector = intel_connector_alloc();
- if (!intel_connector) {
+ connector = intel_connector_alloc();
+ if (!connector) {
kfree(intel_dvo);
return;
}
- intel_dvo->attached_connector = intel_connector;
+ intel_dvo->attached_connector = connector;
- intel_encoder = &intel_dvo->base;
+ encoder = &intel_dvo->base;
- intel_encoder->disable = intel_disable_dvo;
- intel_encoder->enable = intel_enable_dvo;
- intel_encoder->get_hw_state = intel_dvo_get_hw_state;
- intel_encoder->get_config = intel_dvo_get_config;
- intel_encoder->compute_config = intel_dvo_compute_config;
- intel_encoder->pre_enable = intel_dvo_pre_enable;
- intel_connector->get_hw_state = intel_dvo_connector_get_hw_state;
+ encoder->disable = intel_disable_dvo;
+ encoder->enable = intel_enable_dvo;
+ encoder->get_hw_state = intel_dvo_get_hw_state;
+ encoder->get_config = intel_dvo_get_config;
+ encoder->compute_config = intel_dvo_compute_config;
+ encoder->pre_enable = intel_dvo_pre_enable;
+ connector->get_hw_state = intel_dvo_connector_get_hw_state;
- /* Now, try to find a controller */
- for (i = 0; i < ARRAY_SIZE(intel_dvo_devices); i++) {
- struct drm_connector *connector = &intel_connector->base;
- const struct intel_dvo_device *dvo = &intel_dvo_devices[i];
- struct i2c_adapter *i2c;
- int gpio;
- bool dvoinit;
- enum pipe pipe;
- u32 dpll[I915_MAX_PIPES];
- enum port port;
+ if (!intel_dvo_probe(i915, intel_dvo)) {
+ kfree(intel_dvo);
+ intel_connector_free(connector);
+ return;
+ }
- /*
- * Allow the I2C driver info to specify the GPIO to be used in
- * special cases, but otherwise default to what's defined
- * in the spec.
- */
- if (intel_gmbus_is_valid_pin(dev_priv, dvo->gpio))
- gpio = dvo->gpio;
- else if (dvo->type == INTEL_DVO_CHIP_LVDS)
- gpio = GMBUS_PIN_SSC;
- else
- gpio = GMBUS_PIN_DPB;
+ encoder->type = INTEL_OUTPUT_DVO;
+ encoder->power_domain = POWER_DOMAIN_PORT_OTHER;
+ encoder->port = intel_dvo->dev.port;
+ encoder->pipe_mask = ~0;
- /*
- * Set up the I2C bus necessary for the chip we're probing.
- * It appears that everything is on GPIOE except for panels
- * on i830 laptops, which are on GPIOB (DVOA).
- */
- i2c = intel_gmbus_get_adapter(dev_priv, gpio);
+ if (intel_dvo->dev.type != INTEL_DVO_CHIP_LVDS)
+ encoder->cloneable = BIT(INTEL_OUTPUT_ANALOG) |
+ BIT(INTEL_OUTPUT_DVO);
- intel_dvo->dev = *dvo;
+ drm_encoder_init(&i915->drm, &encoder->base,
+ &intel_dvo_enc_funcs,
+ intel_dvo_encoder_type(&intel_dvo->dev),
+ "DVO %c", port_name(encoder->port));
- /*
- * GMBUS NAK handling seems to be unstable, hence let the
- * transmitter detection run in bit banging mode for now.
- */
- intel_gmbus_force_bit(i2c, true);
+ drm_dbg_kms(&i915->drm, "[ENCODER:%d:%s] detected %s\n",
+ encoder->base.base.id, encoder->base.name,
+ intel_dvo->dev.name);
+
+ if (intel_dvo->dev.type == INTEL_DVO_CHIP_TMDS)
+ connector->polled = DRM_CONNECTOR_POLL_CONNECT |
+ DRM_CONNECTOR_POLL_DISCONNECT;
+
+ drm_connector_init(&i915->drm, &connector->base,
+ &intel_dvo_connector_funcs,
+ intel_dvo_connector_type(&intel_dvo->dev));
+
+ drm_connector_helper_add(&connector->base,
+ &intel_dvo_connector_helper_funcs);
+ connector->base.display_info.subpixel_order = SubPixelHorizontalRGB;
+ intel_connector_attach_encoder(connector, encoder);
+
+ if (intel_dvo->dev.type == INTEL_DVO_CHIP_LVDS) {
/*
- * ns2501 requires the DVO 2x clock before it will
- * respond to i2c accesses, so make sure we have
- * have the clock enabled before we attempt to
- * initialize the device.
+ * For our LVDS chipsets, we should hopefully be able
+ * to dig the fixed panel mode out of the BIOS data.
+ * However, it's in a different format from the BIOS
+ * data on chipsets with integrated LVDS (stored in AIM
+ * headers, likely), so for now, just get the current
+ * mode being output through DVO.
*/
- for_each_pipe(dev_priv, pipe) {
- dpll[pipe] = intel_de_read(dev_priv, DPLL(pipe));
- intel_de_write(dev_priv, DPLL(pipe),
- dpll[pipe] | DPLL_DVO_2X_MODE);
- }
-
- dvoinit = dvo->dev_ops->init(&intel_dvo->dev, i2c);
-
- /* restore the DVO 2x clock state to original */
- for_each_pipe(dev_priv, pipe) {
- intel_de_write(dev_priv, DPLL(pipe), dpll[pipe]);
- }
-
- intel_gmbus_force_bit(i2c, false);
-
- if (!dvoinit)
- continue;
-
- port = intel_dvo_port(dvo->dvo_reg);
- drm_encoder_init(&dev_priv->drm, &intel_encoder->base,
- &intel_dvo_enc_funcs, encoder_type,
- "DVO %c", port_name(port));
-
- intel_encoder->type = INTEL_OUTPUT_DVO;
- intel_encoder->power_domain = POWER_DOMAIN_PORT_OTHER;
- intel_encoder->port = port;
- intel_encoder->pipe_mask = ~0;
-
- if (dvo->type != INTEL_DVO_CHIP_LVDS)
- intel_encoder->cloneable = (1 << INTEL_OUTPUT_ANALOG) |
- (1 << INTEL_OUTPUT_DVO);
-
- switch (dvo->type) {
- case INTEL_DVO_CHIP_TMDS:
- intel_connector->polled = DRM_CONNECTOR_POLL_CONNECT |
- DRM_CONNECTOR_POLL_DISCONNECT;
- drm_connector_init(&dev_priv->drm, connector,
- &intel_dvo_connector_funcs,
- DRM_MODE_CONNECTOR_DVII);
- encoder_type = DRM_MODE_ENCODER_TMDS;
- break;
- case INTEL_DVO_CHIP_LVDS_NO_FIXED:
- case INTEL_DVO_CHIP_LVDS:
- drm_connector_init(&dev_priv->drm, connector,
- &intel_dvo_connector_funcs,
- DRM_MODE_CONNECTOR_LVDS);
- encoder_type = DRM_MODE_ENCODER_LVDS;
- break;
- }
-
- drm_connector_helper_add(connector,
- &intel_dvo_connector_helper_funcs);
- connector->display_info.subpixel_order = SubPixelHorizontalRGB;
- connector->interlace_allowed = false;
- connector->doublescan_allowed = false;
-
- intel_connector_attach_encoder(intel_connector, intel_encoder);
- if (dvo->type == INTEL_DVO_CHIP_LVDS) {
- /*
- * For our LVDS chipsets, we should hopefully be able
- * to dig the fixed panel mode out of the BIOS data.
- * However, it's in a different format from the BIOS
- * data on chipsets with integrated LVDS (stored in AIM
- * headers, likely), so for now, just get the current
- * mode being output through DVO.
- */
- intel_panel_add_encoder_fixed_mode(intel_connector,
- intel_encoder);
-
- intel_panel_init(intel_connector);
-
- intel_dvo->panel_wants_dither = true;
- }
+ intel_panel_add_encoder_fixed_mode(connector, encoder);
- return;
+ intel_panel_init(connector, NULL);
}
-
- kfree(intel_dvo);
- kfree(intel_connector);
}
diff --git a/drivers/gpu/drm/i915/display/intel_dvo_dev.h b/drivers/gpu/drm/i915/display/intel_dvo_dev.h
index 50205f064d93..f7e98e1c6470 100644
--- a/drivers/gpu/drm/i915/display/intel_dvo_dev.h
+++ b/drivers/gpu/drm/i915/display/intel_dvo_dev.h
@@ -23,18 +23,19 @@
#ifndef __INTEL_DVO_DEV_H__
#define __INTEL_DVO_DEV_H__
-#include <linux/i2c.h>
+#include "i915_reg_defs.h"
-#include <drm/drm_crtc.h>
+#include "intel_display_limits.h"
-#include "i915_reg_defs.h"
+enum drm_connector_status;
+struct drm_display_mode;
+struct i2c_adapter;
struct intel_dvo_device {
const char *name;
int type;
- /* DVOA/B/C output register */
- i915_reg_t dvo_reg;
- i915_reg_t dvo_srcdim_reg;
+ /* DVOA/B/C */
+ enum port port;
/* GPIO register used for i2c bus to control this device */
u32 gpio;
int slave_addr;
diff --git a/drivers/gpu/drm/i915/display/intel_dvo_regs.h b/drivers/gpu/drm/i915/display/intel_dvo_regs.h
new file mode 100644
index 000000000000..6f9058462850
--- /dev/null
+++ b/drivers/gpu/drm/i915/display/intel_dvo_regs.h
@@ -0,0 +1,54 @@
+/* SPDX-License-Identifier: MIT */
+/*
+ * Copyright © 2022 Intel Corporation
+ */
+
+#ifndef __INTEL_DVO_REGS_H__
+#define __INTEL_DVO_REGS_H__
+
+#include "intel_display_reg_defs.h"
+
+#define _DVOA 0x61120
+#define _DVOB 0x61140
+#define _DVOC 0x61160
+#define DVO(port) _MMIO_PORT((port), _DVOA, _DVOB)
+#define DVO_ENABLE REG_BIT(31)
+#define DVO_PIPE_SEL_MASK REG_BIT(30)
+#define DVO_PIPE_SEL(pipe) REG_FIELD_PREP(DVO_PIPE_SEL_MASK, (pipe))
+#define DVO_PIPE_STALL_MASK REG_GENMASK(29, 28)
+#define DVO_PIPE_STALL_UNUSED REG_FIELD_PREP(DVO_PIPE_STALL_MASK, 0)
+#define DVO_PIPE_STALL REG_FIELD_PREP(DVO_PIPE_STALL_MASK, 1)
+#define DVO_PIPE_STALL_TV REG_FIELD_PREP(DVO_PIPE_STALL_MASK, 2)
+#define DVO_INTERRUPT_SELECT REG_BIT(27)
+#define DVO_DEDICATED_INT_ENABLE REG_BIT(26)
+#define DVO_PRESERVE_MASK REG_GENMASK(25, 24)
+#define DVO_USE_VGA_SYNC REG_BIT(15)
+#define DVO_DATA_ORDER_MASK REG_BIT(14)
+#define DVO_DATA_ORDER_I740 REG_FIELD_PREP(DVO_DATA_ORDER_MASK, 0)
+#define DVO_DATA_ORDER_FP REG_FIELD_PREP(DVO_DATA_ORDER_MASK, 1)
+#define DVO_VSYNC_DISABLE REG_BIT(11)
+#define DVO_HSYNC_DISABLE REG_BIT(10)
+#define DVO_VSYNC_TRISTATE REG_BIT(9)
+#define DVO_HSYNC_TRISTATE REG_BIT(8)
+#define DVO_BORDER_ENABLE REG_BIT(7)
+#define DVO_ACT_DATA_ORDER_MASK REG_BIT(6)
+#define DVO_ACT_DATA_ORDER_RGGB REG_FIELD_PREP(DVO_ACT_DATA_ORDER_MASK, 0)
+#define DVO_ACT_DATA_ORDER_GBRG REG_FIELD_PREP(DVO_ACT_DATA_ORDER_MASK, 1)
+#define DVO_ACT_DATA_ORDER_GBRG_ERRATA REG_FIELD_PREP(DVO_ACT_DATA_ORDER_MASK, 0)
+#define DVO_ACT_DATA_ORDER_RGGB_ERRATA REG_FIELD_PREP(DVO_ACT_DATA_ORDER_MASK, 1)
+#define DVO_VSYNC_ACTIVE_HIGH REG_BIT(4)
+#define DVO_HSYNC_ACTIVE_HIGH REG_BIT(3)
+#define DVO_BLANK_ACTIVE_HIGH REG_BIT(2)
+#define DVO_OUTPUT_CSTATE_PIXELS REG_BIT(1) /* SDG only */
+#define DVO_OUTPUT_SOURCE_SIZE_PIXELS REG_BIT(0) /* SDG only */
+
+#define _DVOA_SRCDIM 0x61124
+#define _DVOB_SRCDIM 0x61144
+#define _DVOC_SRCDIM 0x61164
+#define DVO_SRCDIM(port) _MMIO_PORT((port), _DVOA_SRCDIM, _DVOB_SRCDIM)
+#define DVO_SRCDIM_HORIZONTAL_MASK REG_GENMASK(22, 12)
+#define DVO_SRCDIM_HORIZONTAL(x) REG_FIELD_PREP(DVO_SRCDIM_HORIZONTAL_MASK, (x))
+#define DVO_SRCDIM_VERTICAL_MASK REG_GENMASK(10, 0)
+#define DVO_SRCDIM_VERTICAL(x) REG_FIELD_PREP(DVO_SRCDIM_VERTICAL_MASK, (x))
+
+#endif /* __INTEL_DVO_REGS_H__ */
diff --git a/drivers/gpu/drm/i915/display/intel_fb.c b/drivers/gpu/drm/i915/display/intel_fb.c
index eefa33c555ac..e5f637897b5e 100644
--- a/drivers/gpu/drm/i915/display/intel_fb.c
+++ b/drivers/gpu/drm/i915/display/intel_fb.c
@@ -174,7 +174,7 @@ static const struct intel_modifier_desc intel_modifiers[] = {
.plane_caps = INTEL_PLANE_CAP_TILING_4 | INTEL_PLANE_CAP_CCS_RC,
}, {
.modifier = I915_FORMAT_MOD_4_TILED,
- .display_ver = { 13, 13 },
+ .display_ver = { 13, -1 },
.plane_caps = INTEL_PLANE_CAP_TILING_4,
}, {
.modifier = I915_FORMAT_MOD_Y_TILED_GEN12_MC_CCS,
@@ -301,6 +301,19 @@ static bool plane_caps_contain_all(u8 caps, u8 mask)
}
/**
+ * intel_fb_is_tiled_modifier: Check if a modifier is a tiled modifier type
+ * @modifier: Modifier to check
+ *
+ * Returns:
+ * Returns %true if @modifier is a tiled modifier.
+ */
+bool intel_fb_is_tiled_modifier(u64 modifier)
+{
+ return plane_caps_contain_any(lookup_modifier(modifier)->plane_caps,
+ INTEL_PLANE_CAP_TILING_MASK);
+}
+
+/**
* intel_fb_is_ccs_modifier: Check if a modifier is a CCS modifier type
* @modifier: Modifier to check
*
@@ -703,14 +716,15 @@ static unsigned int intel_fb_modifier_to_tiling(u64 fb_modifier)
}
}
-static bool intel_modifier_uses_dpt(struct drm_i915_private *i915, u64 modifier)
+bool intel_fb_modifier_uses_dpt(struct drm_i915_private *i915, u64 modifier)
{
- return DISPLAY_VER(i915) >= 13 && modifier != DRM_FORMAT_MOD_LINEAR;
+ return HAS_DPT(i915) && modifier != DRM_FORMAT_MOD_LINEAR;
}
bool intel_fb_uses_dpt(const struct drm_framebuffer *fb)
{
- return fb && intel_modifier_uses_dpt(to_i915(fb->dev), fb->modifier);
+ return fb && to_i915(fb->dev)->params.enable_dpt &&
+ intel_fb_modifier_uses_dpt(to_i915(fb->dev), fb->modifier);
}
unsigned int intel_cursor_alignment(const struct drm_i915_private *i915)
@@ -1176,7 +1190,7 @@ bool intel_fb_needs_pot_stride_remap(const struct intel_framebuffer *fb)
{
struct drm_i915_private *i915 = to_i915(fb->base.dev);
- return IS_ALDERLAKE_P(i915) && fb->base.modifier != DRM_FORMAT_MOD_LINEAR;
+ return IS_ALDERLAKE_P(i915) && intel_fb_uses_dpt(&fb->base);
}
static int intel_fb_pitch(const struct intel_framebuffer *fb, int color_plane, unsigned int rotation)
@@ -1692,7 +1706,7 @@ u32 intel_fb_max_stride(struct drm_i915_private *dev_priv,
* The new CCS hash mode makes remapping impossible
*/
if (DISPLAY_VER(dev_priv) < 4 || intel_fb_is_ccs_modifier(modifier) ||
- intel_modifier_uses_dpt(dev_priv, modifier))
+ intel_fb_modifier_uses_dpt(dev_priv, modifier))
return intel_plane_fb_max_stride(dev_priv, pixel_format, modifier);
else if (DISPLAY_VER(dev_priv) >= 7)
return 256 * 1024;
@@ -1994,6 +2008,7 @@ int intel_framebuffer_init(struct intel_framebuffer *intel_fb,
vm = intel_dpt_create(intel_fb);
if (IS_ERR(vm)) {
+ drm_dbg_kms(&dev_priv->drm, "failed to create DPT\n");
ret = PTR_ERR(vm);
goto err;
}
@@ -2004,11 +2019,14 @@ int intel_framebuffer_init(struct intel_framebuffer *intel_fb,
ret = drm_framebuffer_init(&dev_priv->drm, fb, &intel_fb_funcs);
if (ret) {
drm_err(&dev_priv->drm, "framebuffer init failed %d\n", ret);
- goto err;
+ goto err_free_dpt;
}
return 0;
+err_free_dpt:
+ if (intel_fb_uses_dpt(fb))
+ intel_dpt_destroy(intel_fb->dpt_vm);
err:
intel_frontbuffer_put(intel_fb->frontbuffer);
return ret;
@@ -2033,6 +2051,7 @@ intel_user_framebuffer_create(struct drm_device *dev,
if (HAS_LMEM(i915) && !i915_gem_object_can_migrate(obj, INTEL_REGION_LMEM_0)) {
/* object is "remote", not in local memory */
i915_gem_object_put(obj);
+ drm_dbg_kms(&i915->drm, "framebuffer must reside in local memory\n");
return ERR_PTR(-EREMOTE);
}
diff --git a/drivers/gpu/drm/i915/display/intel_fb.h b/drivers/gpu/drm/i915/display/intel_fb.h
index 12386f13a4e0..e85167d6bc34 100644
--- a/drivers/gpu/drm/i915/display/intel_fb.h
+++ b/drivers/gpu/drm/i915/display/intel_fb.h
@@ -29,6 +29,7 @@ struct intel_plane_state;
#define INTEL_PLANE_CAP_TILING_Yf BIT(5)
#define INTEL_PLANE_CAP_TILING_4 BIT(6)
+bool intel_fb_is_tiled_modifier(u64 modifier);
bool intel_fb_is_ccs_modifier(u64 modifier);
bool intel_fb_is_rc_ccs_cc_modifier(u64 modifier);
bool intel_fb_is_mc_ccs_modifier(u64 modifier);
@@ -91,6 +92,7 @@ intel_user_framebuffer_create(struct drm_device *dev,
struct drm_file *filp,
const struct drm_mode_fb_cmd2 *user_mode_cmd);
+bool intel_fb_modifier_uses_dpt(struct drm_i915_private *i915, u64 modifier);
bool intel_fb_uses_dpt(const struct drm_framebuffer *fb);
#endif /* __INTEL_FB_H__ */
diff --git a/drivers/gpu/drm/i915/display/intel_fb_pin.c b/drivers/gpu/drm/i915/display/intel_fb_pin.c
index 1dddd6abd77b..1aca7552a85d 100644
--- a/drivers/gpu/drm/i915/display/intel_fb_pin.c
+++ b/drivers/gpu/drm/i915/display/intel_fb_pin.c
@@ -91,7 +91,7 @@ intel_pin_fb_obj_dpt(struct drm_framebuffer *fb,
goto err;
}
- vma->display_alignment = max_t(u64, vma->display_alignment, alignment);
+ vma->display_alignment = max(vma->display_alignment, alignment);
i915_gem_object_flush_if_display(obj);
@@ -167,7 +167,6 @@ retry:
ret = i915_gem_object_attach_phys(obj, alignment);
else if (!ret && HAS_LMEM(dev_priv))
ret = i915_gem_object_migrate(obj, &ww, INTEL_REGION_LMEM_0);
- /* TODO: Do we need to sync when migration becomes async? */
if (!ret)
ret = i915_gem_object_pin_pages(obj);
if (ret)
diff --git a/drivers/gpu/drm/i915/display/intel_fbc.c b/drivers/gpu/drm/i915/display/intel_fbc.c
index f38175304928..b507ff944864 100644
--- a/drivers/gpu/drm/i915/display/intel_fbc.c
+++ b/drivers/gpu/drm/i915/display/intel_fbc.c
@@ -323,25 +323,23 @@ static void i8xx_fbc_nuke(struct intel_fbc *fbc)
enum i9xx_plane_id i9xx_plane = fbc_state->plane->i9xx_plane;
struct drm_i915_private *dev_priv = fbc->i915;
- spin_lock_irq(&dev_priv->uncore.lock);
intel_de_write_fw(dev_priv, DSPADDR(i9xx_plane),
intel_de_read_fw(dev_priv, DSPADDR(i9xx_plane)));
- spin_unlock_irq(&dev_priv->uncore.lock);
}
static void i8xx_fbc_program_cfb(struct intel_fbc *fbc)
{
struct drm_i915_private *i915 = fbc->i915;
- GEM_BUG_ON(range_overflows_end_t(u64, i915->dsm.start,
+ GEM_BUG_ON(range_overflows_end_t(u64, i915->dsm.stolen.start,
fbc->compressed_fb.start, U32_MAX));
- GEM_BUG_ON(range_overflows_end_t(u64, i915->dsm.start,
+ GEM_BUG_ON(range_overflows_end_t(u64, i915->dsm.stolen.start,
fbc->compressed_llb.start, U32_MAX));
intel_de_write(i915, FBC_CFB_BASE,
- i915->dsm.start + fbc->compressed_fb.start);
+ i915->dsm.stolen.start + fbc->compressed_fb.start);
intel_de_write(i915, FBC_LL_BASE,
- i915->dsm.start + fbc->compressed_llb.start);
+ i915->dsm.stolen.start + fbc->compressed_llb.start);
}
static const struct intel_fbc_funcs i8xx_fbc_funcs = {
@@ -359,10 +357,8 @@ static void i965_fbc_nuke(struct intel_fbc *fbc)
enum i9xx_plane_id i9xx_plane = fbc_state->plane->i9xx_plane;
struct drm_i915_private *dev_priv = fbc->i915;
- spin_lock_irq(&dev_priv->uncore.lock);
intel_de_write_fw(dev_priv, DSPSURF(i9xx_plane),
intel_de_read_fw(dev_priv, DSPSURF(i9xx_plane)));
- spin_unlock_irq(&dev_priv->uncore.lock);
}
static const struct intel_fbc_funcs i965_fbc_funcs = {
@@ -670,6 +666,7 @@ static void intel_fbc_nuke(struct intel_fbc *fbc)
{
struct drm_i915_private *i915 = fbc->i915;
+ lockdep_assert_held(&fbc->lock);
drm_WARN_ON(&i915->drm, fbc->flip_pending);
trace_intel_fbc_nuke(fbc->state.plane);
@@ -679,6 +676,8 @@ static void intel_fbc_nuke(struct intel_fbc *fbc)
static void intel_fbc_activate(struct intel_fbc *fbc)
{
+ lockdep_assert_held(&fbc->lock);
+
intel_fbc_hw_activate(fbc);
intel_fbc_nuke(fbc);
@@ -687,9 +686,7 @@ static void intel_fbc_activate(struct intel_fbc *fbc)
static void intel_fbc_deactivate(struct intel_fbc *fbc, const char *reason)
{
- struct drm_i915_private *i915 = fbc->i915;
-
- drm_WARN_ON(&i915->drm, !mutex_is_locked(&fbc->lock));
+ lockdep_assert_held(&fbc->lock);
if (fbc->active)
intel_fbc_hw_deactivate(fbc);
@@ -715,7 +712,7 @@ static u64 intel_fbc_stolen_end(struct drm_i915_private *i915)
* underruns, even if that range is not reserved by the BIOS. */
if (IS_BROADWELL(i915) ||
(DISPLAY_VER(i915) == 9 && !IS_BROXTON(i915)))
- end = resource_size(&i915->dsm) - 8 * 1024 * 1024;
+ end = resource_size(&i915->dsm.stolen) - 8 * 1024 * 1024;
else
end = U64_MAX;
@@ -814,7 +811,7 @@ static void intel_fbc_program_cfb(struct intel_fbc *fbc)
static void intel_fbc_program_workarounds(struct intel_fbc *fbc)
{
- /* Wa_22014263786:icl,jsl,tgl,dg1,rkl,adls,adlp */
+ /* Wa_22014263786:icl,jsl,tgl,dg1,rkl,adls,adlp,mtl */
if (DISPLAY_VER(fbc->i915) >= 11 && !IS_DG2(fbc->i915))
intel_de_rmw(fbc->i915, ILK_DPFC_CHICKEN(fbc->id), 0,
DPFC_CHICKEN_FORCE_SLB_INVALIDATION);
@@ -1009,7 +1006,8 @@ static bool intel_fbc_is_fence_ok(const struct intel_plane_state *plane_state)
{
struct drm_i915_private *i915 = to_i915(plane_state->uapi.plane->dev);
- /* The use of a CPU fence is one of two ways to detect writes by the
+ /*
+ * The use of a CPU fence is one of two ways to detect writes by the
* CPU to the scanout and trigger updates to the FBC.
*
* The other method is by software tracking (see
@@ -1019,12 +1017,6 @@ static bool intel_fbc_is_fence_ok(const struct intel_plane_state *plane_state)
* Note that is possible for a tiled surface to be unmappable (and
* so have no fence associated with it) due to aperture constraints
* at the time of pinning.
- *
- * FIXME with 90/270 degree rotation we should use the fence on
- * the normal GTT view (the rotated view doesn't even have a
- * fence). Would need changes to the FBC fence Y offset as well.
- * For now this will effectively disable FBC with 90/270 degree
- * rotation.
*/
return DISPLAY_VER(i915) >= 9 ||
(plane_state->flags & PLANE_HAS_FENCE &&
@@ -1099,7 +1091,9 @@ static int intel_fbc_check_plane(struct intel_atomic_state *state,
}
/* Wa_14016291713 */
- if (IS_DISPLAY_VER(i915, 12, 13) && crtc_state->has_psr) {
+ if ((IS_DISPLAY_VER(i915, 12, 13) ||
+ IS_MTL_DISPLAY_STEP(i915, STEP_A0, STEP_C0)) &&
+ crtc_state->has_psr) {
plane_state->no_fbc_reason = "PSR1 enabled (Wa_14016291713)";
return 0;
}
@@ -1187,7 +1181,7 @@ static bool intel_fbc_can_flip_nuke(struct intel_atomic_state *state,
const struct drm_framebuffer *old_fb = old_plane_state->hw.fb;
const struct drm_framebuffer *new_fb = new_plane_state->hw.fb;
- if (drm_atomic_crtc_needs_modeset(&new_crtc_state->uapi))
+ if (intel_crtc_needs_modeset(new_crtc_state))
return false;
if (!intel_fbc_is_ok(old_plane_state) ||
@@ -1227,6 +1221,8 @@ static bool __intel_fbc_pre_update(struct intel_atomic_state *state,
struct intel_fbc *fbc = plane->fbc;
bool need_vblank_wait = false;
+ lockdep_assert_held(&fbc->lock);
+
fbc->flip_pending = true;
if (intel_fbc_can_flip_nuke(state, crtc, plane))
@@ -1284,7 +1280,7 @@ static void __intel_fbc_disable(struct intel_fbc *fbc)
struct drm_i915_private *i915 = fbc->i915;
struct intel_plane *plane = fbc->state.plane;
- drm_WARN_ON(&i915->drm, !mutex_is_locked(&fbc->lock));
+ lockdep_assert_held(&fbc->lock);
drm_WARN_ON(&i915->drm, fbc->active);
drm_dbg_kms(&i915->drm, "Disabling FBC on [PLANE:%d:%s]\n",
@@ -1299,9 +1295,9 @@ static void __intel_fbc_disable(struct intel_fbc *fbc)
static void __intel_fbc_post_update(struct intel_fbc *fbc)
{
- struct drm_i915_private *i915 = fbc->i915;
+ lockdep_assert_held(&fbc->lock);
- drm_WARN_ON(&i915->drm, !mutex_is_locked(&fbc->lock));
+ fbc->flip_pending = false;
if (!fbc->busy_bits)
intel_fbc_activate(fbc);
@@ -1324,10 +1320,8 @@ void intel_fbc_post_update(struct intel_atomic_state *state,
mutex_lock(&fbc->lock);
- if (fbc->state.plane == plane) {
- fbc->flip_pending = false;
+ if (fbc->state.plane == plane)
__intel_fbc_post_update(fbc);
- }
mutex_unlock(&fbc->lock);
}
@@ -1437,6 +1431,8 @@ static void __intel_fbc_enable(struct intel_atomic_state *state,
intel_atomic_get_new_plane_state(state, plane);
struct intel_fbc *fbc = plane->fbc;
+ lockdep_assert_held(&fbc->lock);
+
if (fbc->state.plane) {
if (fbc->state.plane != plane)
return;
@@ -1522,7 +1518,8 @@ void intel_fbc_update(struct intel_atomic_state *state,
mutex_lock(&fbc->lock);
- if (crtc_state->update_pipe && plane_state->no_fbc_reason) {
+ if (intel_crtc_needs_fastset(crtc_state) &&
+ plane_state->no_fbc_reason) {
if (fbc->state.plane == plane)
__intel_fbc_disable(fbc);
} else {
@@ -1810,10 +1807,10 @@ static int intel_fbc_debugfs_false_color_set(void *data, u64 val)
return 0;
}
-DEFINE_SIMPLE_ATTRIBUTE(intel_fbc_debugfs_false_color_fops,
- intel_fbc_debugfs_false_color_get,
- intel_fbc_debugfs_false_color_set,
- "%llu\n");
+DEFINE_DEBUGFS_ATTRIBUTE(intel_fbc_debugfs_false_color_fops,
+ intel_fbc_debugfs_false_color_get,
+ intel_fbc_debugfs_false_color_set,
+ "%llu\n");
static void intel_fbc_debugfs_add(struct intel_fbc *fbc,
struct dentry *parent)
@@ -1822,8 +1819,8 @@ static void intel_fbc_debugfs_add(struct intel_fbc *fbc,
fbc, &intel_fbc_debugfs_status_fops);
if (fbc->funcs->set_false_color)
- debugfs_create_file("i915_fbc_false_color", 0644, parent,
- fbc, &intel_fbc_debugfs_false_color_fops);
+ debugfs_create_file_unsafe("i915_fbc_false_color", 0644, parent,
+ fbc, &intel_fbc_debugfs_false_color_fops);
}
void intel_fbc_crtc_debugfs_add(struct intel_crtc *crtc)
diff --git a/drivers/gpu/drm/i915/display/intel_fbdev.c b/drivers/gpu/drm/i915/display/intel_fbdev.c
index 112aa0447a0d..673bcdfb7ff6 100644
--- a/drivers/gpu/drm/i915/display/intel_fbdev.c
+++ b/drivers/gpu/drm/i915/display/intel_fbdev.c
@@ -124,6 +124,8 @@ static const struct fb_ops intelfb_ops = {
.owner = THIS_MODULE,
DRM_FB_HELPER_DEFAULT_OPS,
.fb_set_par = intel_fbdev_set_par,
+ .fb_read = drm_fb_helper_cfb_read,
+ .fb_write = drm_fb_helper_cfb_write,
.fb_fillrect = drm_fb_helper_cfb_fillrect,
.fb_copyarea = drm_fb_helper_cfb_copyarea,
.fb_imageblit = drm_fb_helper_cfb_imageblit,
@@ -168,14 +170,14 @@ static int intelfb_alloc(struct drm_fb_helper *helper,
* important and we should probably use that space with FBC or other
* features.
*/
- if (size * 2 < dev_priv->stolen_usable_size)
+ if (size * 2 < dev_priv->dsm.usable_size)
obj = i915_gem_object_create_stolen(dev_priv, size);
if (IS_ERR(obj))
obj = i915_gem_object_create_shmem(dev_priv, size);
}
if (IS_ERR(obj)) {
- drm_err(&dev_priv->drm, "failed to allocate framebuffer\n");
+ drm_err(&dev_priv->drm, "failed to allocate framebuffer (%pe)\n", obj);
return PTR_ERR(obj);
}
@@ -208,6 +210,7 @@ static int intelfb_create(struct drm_fb_helper *helper,
bool prealloc = false;
void __iomem *vaddr;
struct drm_i915_gem_object *obj;
+ struct i915_gem_ww_ctx ww;
int ret;
mutex_lock(&ifbdev->hpd_lock);
@@ -254,9 +257,9 @@ static int intelfb_create(struct drm_fb_helper *helper,
goto out_unlock;
}
- info = drm_fb_helper_alloc_fbi(helper);
+ info = drm_fb_helper_alloc_info(helper);
if (IS_ERR(info)) {
- drm_err(&dev_priv->drm, "Failed to allocate fb_info\n");
+ drm_err(&dev_priv->drm, "Failed to allocate fb_info (%pe)\n", info);
ret = PTR_ERR(info);
goto out_unpin;
}
@@ -265,36 +268,40 @@ static int intelfb_create(struct drm_fb_helper *helper,
info->fbops = &intelfb_ops;
- /* setup aperture base/size for vesafb takeover */
obj = intel_fb_obj(&intel_fb->base);
if (i915_gem_object_is_lmem(obj)) {
struct intel_memory_region *mem = obj->mm.region;
- info->apertures->ranges[0].base = mem->io_start;
- info->apertures->ranges[0].size = mem->io_size;
-
/* Use fbdev's framebuffer from lmem for discrete */
info->fix.smem_start =
(unsigned long)(mem->io_start +
i915_gem_object_get_dma_address(obj, 0));
info->fix.smem_len = obj->base.size;
} else {
- info->apertures->ranges[0].base = ggtt->gmadr.start;
- info->apertures->ranges[0].size = ggtt->mappable_end;
-
/* Our framebuffer is the entirety of fbdev's system memory */
info->fix.smem_start =
- (unsigned long)(ggtt->gmadr.start + vma->node.start);
+ (unsigned long)(ggtt->gmadr.start + i915_ggtt_offset(vma));
info->fix.smem_len = vma->size;
}
- vaddr = i915_vma_pin_iomap(vma);
- if (IS_ERR(vaddr)) {
- drm_err(&dev_priv->drm,
- "Failed to remap framebuffer into virtual memory\n");
- ret = PTR_ERR(vaddr);
- goto out_unpin;
+ for_i915_gem_ww(&ww, ret, false) {
+ ret = i915_gem_object_lock(vma->obj, &ww);
+
+ if (ret)
+ continue;
+
+ vaddr = i915_vma_pin_iomap(vma);
+ if (IS_ERR(vaddr)) {
+ drm_err(&dev_priv->drm,
+ "Failed to remap framebuffer into virtual memory (%pe)\n", vaddr);
+ ret = PTR_ERR(vaddr);
+ continue;
+ }
}
+
+ if (ret)
+ goto out_unpin;
+
info->screen_base = vaddr;
info->screen_size = vma->size;
@@ -326,8 +333,20 @@ out_unlock:
return ret;
}
+static int intelfb_dirty(struct drm_fb_helper *helper, struct drm_clip_rect *clip)
+{
+ if (!(clip->x1 < clip->x2 && clip->y1 < clip->y2))
+ return 0;
+
+ if (helper->fb->funcs->dirty)
+ return helper->fb->funcs->dirty(helper->fb, NULL, 0, 0, clip, 1);
+
+ return 0;
+}
+
static const struct drm_fb_helper_funcs intel_fb_helper_funcs = {
.fb_probe = intelfb_create,
+ .fb_dirty = intelfb_dirty,
};
static void intel_fbdev_destroy(struct intel_fbdev *ifbdev)
@@ -345,6 +364,7 @@ static void intel_fbdev_destroy(struct intel_fbdev *ifbdev)
if (ifbdev->fb)
drm_framebuffer_remove(&ifbdev->fb->base);
+ drm_fb_helper_unprepare(&ifbdev->helper);
kfree(ifbdev);
}
@@ -525,10 +545,12 @@ int intel_fbdev_init(struct drm_device *dev)
return -ENOMEM;
mutex_init(&ifbdev->hpd_lock);
- drm_fb_helper_prepare(dev, &ifbdev->helper, &intel_fb_helper_funcs);
+ drm_fb_helper_prepare(dev, &ifbdev->helper, 32, &intel_fb_helper_funcs);
- if (!intel_fbdev_init_bios(dev, ifbdev))
- ifbdev->preferred_bpp = 32;
+ if (intel_fbdev_init_bios(dev, ifbdev))
+ ifbdev->helper.preferred_bpp = ifbdev->preferred_bpp;
+ else
+ ifbdev->preferred_bpp = ifbdev->helper.preferred_bpp;
ret = drm_fb_helper_init(dev, &ifbdev->helper);
if (ret) {
@@ -547,14 +569,13 @@ static void intel_fbdev_initial_config(void *data, async_cookie_t cookie)
struct intel_fbdev *ifbdev = data;
/* Due to peculiar init order wrt to hpd handling this is separate. */
- if (drm_fb_helper_initial_config(&ifbdev->helper,
- ifbdev->preferred_bpp))
+ if (drm_fb_helper_initial_config(&ifbdev->helper))
intel_fbdev_unregister(to_i915(ifbdev->helper.dev));
}
-void intel_fbdev_initial_config_async(struct drm_device *dev)
+void intel_fbdev_initial_config_async(struct drm_i915_private *dev_priv)
{
- struct intel_fbdev *ifbdev = to_i915(dev)->display.fbdev.fbdev;
+ struct intel_fbdev *ifbdev = dev_priv->display.fbdev.fbdev;
if (!ifbdev)
return;
@@ -584,7 +605,7 @@ void intel_fbdev_unregister(struct drm_i915_private *dev_priv)
if (!current_is_async())
intel_fbdev_sync(ifbdev);
- drm_fb_helper_unregister_fbi(&ifbdev->helper);
+ drm_fb_helper_unregister_info(&ifbdev->helper);
}
void intel_fbdev_fini(struct drm_i915_private *dev_priv)
@@ -624,10 +645,16 @@ void intel_fbdev_set_suspend(struct drm_device *dev, int state, bool synchronous
struct intel_fbdev *ifbdev = dev_priv->display.fbdev.fbdev;
struct fb_info *info;
- if (!ifbdev || !ifbdev->vma)
+ if (!ifbdev)
+ return;
+
+ if (drm_WARN_ON(&dev_priv->drm, !HAS_DISPLAY(dev_priv)))
+ return;
+
+ if (!ifbdev->vma)
goto set_suspend;
- info = ifbdev->helper.fbdev;
+ info = ifbdev->helper.info;
if (synchronous) {
/* Flush any pending work to turn the console on, and then
@@ -691,9 +718,9 @@ void intel_fbdev_output_poll_changed(struct drm_device *dev)
drm_fb_helper_hotplug_event(&ifbdev->helper);
}
-void intel_fbdev_restore_mode(struct drm_device *dev)
+void intel_fbdev_restore_mode(struct drm_i915_private *dev_priv)
{
- struct intel_fbdev *ifbdev = to_i915(dev)->display.fbdev.fbdev;
+ struct intel_fbdev *ifbdev = dev_priv->display.fbdev.fbdev;
if (!ifbdev)
return;
diff --git a/drivers/gpu/drm/i915/display/intel_fbdev.h b/drivers/gpu/drm/i915/display/intel_fbdev.h
index 0e95e9472fa3..04fd523a5023 100644
--- a/drivers/gpu/drm/i915/display/intel_fbdev.h
+++ b/drivers/gpu/drm/i915/display/intel_fbdev.h
@@ -15,12 +15,12 @@ struct intel_framebuffer;
#ifdef CONFIG_DRM_FBDEV_EMULATION
int intel_fbdev_init(struct drm_device *dev);
-void intel_fbdev_initial_config_async(struct drm_device *dev);
+void intel_fbdev_initial_config_async(struct drm_i915_private *dev_priv);
void intel_fbdev_unregister(struct drm_i915_private *dev_priv);
void intel_fbdev_fini(struct drm_i915_private *dev_priv);
void intel_fbdev_set_suspend(struct drm_device *dev, int state, bool synchronous);
void intel_fbdev_output_poll_changed(struct drm_device *dev);
-void intel_fbdev_restore_mode(struct drm_device *dev);
+void intel_fbdev_restore_mode(struct drm_i915_private *dev_priv);
struct intel_framebuffer *intel_fbdev_framebuffer(struct intel_fbdev *fbdev);
#else
static inline int intel_fbdev_init(struct drm_device *dev)
@@ -28,7 +28,7 @@ static inline int intel_fbdev_init(struct drm_device *dev)
return 0;
}
-static inline void intel_fbdev_initial_config_async(struct drm_device *dev)
+static inline void intel_fbdev_initial_config_async(struct drm_i915_private *dev_priv)
{
}
@@ -48,7 +48,7 @@ static inline void intel_fbdev_output_poll_changed(struct drm_device *dev)
{
}
-static inline void intel_fbdev_restore_mode(struct drm_device *dev)
+static inline void intel_fbdev_restore_mode(struct drm_i915_private *i915)
{
}
static inline struct intel_framebuffer *intel_fbdev_framebuffer(struct intel_fbdev *fbdev)
diff --git a/drivers/gpu/drm/i915/display/intel_fdi.c b/drivers/gpu/drm/i915/display/intel_fdi.c
index 7f47e5c85c81..55283677c45a 100644
--- a/drivers/gpu/drm/i915/display/intel_fdi.c
+++ b/drivers/gpu/drm/i915/display/intel_fdi.c
@@ -5,12 +5,14 @@
#include <linux/string_helpers.h>
+#include "i915_reg.h"
#include "intel_atomic.h"
#include "intel_crtc.h"
#include "intel_ddi.h"
#include "intel_de.h"
#include "intel_display_types.h"
#include "intel_fdi.h"
+#include "intel_fdi_regs.h"
struct intel_fdi_funcs {
void (*fdi_link_train)(struct intel_crtc *crtc,
@@ -365,8 +367,7 @@ void intel_fdi_normal_train(struct intel_crtc *crtc)
/* IVB wants error correction enabled */
if (IS_IVYBRIDGE(dev_priv))
- intel_de_write(dev_priv, reg,
- intel_de_read(dev_priv, reg) | FDI_FS_ERRC_ENABLE | FDI_FE_ERRC_ENABLE);
+ intel_de_rmw(dev_priv, reg, 0, FDI_FS_ERRC_ENABLE | FDI_FE_ERRC_ENABLE);
}
/* The FDI link training functions for ILK/Ibexpeak. */
@@ -438,19 +439,11 @@ static void ilk_fdi_link_train(struct intel_crtc *crtc,
drm_err(&dev_priv->drm, "FDI train 1 fail!\n");
/* Train 2 */
- reg = FDI_TX_CTL(pipe);
- temp = intel_de_read(dev_priv, reg);
- temp &= ~FDI_LINK_TRAIN_NONE;
- temp |= FDI_LINK_TRAIN_PATTERN_2;
- intel_de_write(dev_priv, reg, temp);
-
- reg = FDI_RX_CTL(pipe);
- temp = intel_de_read(dev_priv, reg);
- temp &= ~FDI_LINK_TRAIN_NONE;
- temp |= FDI_LINK_TRAIN_PATTERN_2;
- intel_de_write(dev_priv, reg, temp);
-
- intel_de_posting_read(dev_priv, reg);
+ intel_de_rmw(dev_priv, FDI_TX_CTL(pipe),
+ FDI_LINK_TRAIN_NONE, FDI_LINK_TRAIN_PATTERN_2);
+ intel_de_rmw(dev_priv, FDI_RX_CTL(pipe),
+ FDI_LINK_TRAIN_NONE, FDI_LINK_TRAIN_PATTERN_2);
+ intel_de_posting_read(dev_priv, FDI_RX_CTL(pipe));
udelay(150);
reg = FDI_RX_IIR(pipe);
@@ -537,13 +530,9 @@ static void gen6_fdi_link_train(struct intel_crtc *crtc,
udelay(150);
for (i = 0; i < 4; i++) {
- reg = FDI_TX_CTL(pipe);
- temp = intel_de_read(dev_priv, reg);
- temp &= ~FDI_LINK_TRAIN_VOL_EMP_MASK;
- temp |= snb_b_fdi_train_param[i];
- intel_de_write(dev_priv, reg, temp);
-
- intel_de_posting_read(dev_priv, reg);
+ intel_de_rmw(dev_priv, FDI_TX_CTL(pipe),
+ FDI_LINK_TRAIN_VOL_EMP_MASK, snb_b_fdi_train_param[i]);
+ intel_de_posting_read(dev_priv, FDI_TX_CTL(pipe));
udelay(500);
for (retry = 0; retry < 5; retry++) {
@@ -592,13 +581,9 @@ static void gen6_fdi_link_train(struct intel_crtc *crtc,
udelay(150);
for (i = 0; i < 4; i++) {
- reg = FDI_TX_CTL(pipe);
- temp = intel_de_read(dev_priv, reg);
- temp &= ~FDI_LINK_TRAIN_VOL_EMP_MASK;
- temp |= snb_b_fdi_train_param[i];
- intel_de_write(dev_priv, reg, temp);
-
- intel_de_posting_read(dev_priv, reg);
+ intel_de_rmw(dev_priv, FDI_TX_CTL(pipe),
+ FDI_LINK_TRAIN_VOL_EMP_MASK, snb_b_fdi_train_param[i]);
+ intel_de_posting_read(dev_priv, FDI_TX_CTL(pipe));
udelay(500);
for (retry = 0; retry < 5; retry++) {
@@ -718,19 +703,13 @@ static void ivb_manual_fdi_link_train(struct intel_crtc *crtc,
}
/* Train 2 */
- reg = FDI_TX_CTL(pipe);
- temp = intel_de_read(dev_priv, reg);
- temp &= ~FDI_LINK_TRAIN_NONE_IVB;
- temp |= FDI_LINK_TRAIN_PATTERN_2_IVB;
- intel_de_write(dev_priv, reg, temp);
-
- reg = FDI_RX_CTL(pipe);
- temp = intel_de_read(dev_priv, reg);
- temp &= ~FDI_LINK_TRAIN_PATTERN_MASK_CPT;
- temp |= FDI_LINK_TRAIN_PATTERN_2_CPT;
- intel_de_write(dev_priv, reg, temp);
-
- intel_de_posting_read(dev_priv, reg);
+ intel_de_rmw(dev_priv, FDI_TX_CTL(pipe),
+ FDI_LINK_TRAIN_NONE_IVB,
+ FDI_LINK_TRAIN_PATTERN_2_IVB);
+ intel_de_rmw(dev_priv, FDI_RX_CTL(pipe),
+ FDI_LINK_TRAIN_PATTERN_MASK_CPT,
+ FDI_LINK_TRAIN_PATTERN_2_CPT);
+ intel_de_posting_read(dev_priv, FDI_RX_CTL(pipe));
udelay(2); /* should be 1.5us */
for (i = 0; i < 4; i++) {
@@ -836,9 +815,8 @@ void hsw_fdi_link_train(struct intel_encoder *encoder,
udelay(30);
/* Unset FDI_RX_MISC pwrdn lanes */
- temp = intel_de_read(dev_priv, FDI_RX_MISC(PIPE_A));
- temp &= ~(FDI_RX_PWRDN_LANE1_MASK | FDI_RX_PWRDN_LANE0_MASK);
- intel_de_write(dev_priv, FDI_RX_MISC(PIPE_A), temp);
+ intel_de_rmw(dev_priv, FDI_RX_MISC(PIPE_A),
+ FDI_RX_PWRDN_LANE1_MASK | FDI_RX_PWRDN_LANE0_MASK, 0);
intel_de_posting_read(dev_priv, FDI_RX_MISC(PIPE_A));
/* Wait for FDI auto training time */
@@ -864,25 +842,19 @@ void hsw_fdi_link_train(struct intel_encoder *encoder,
intel_de_write(dev_priv, FDI_RX_CTL(PIPE_A), rx_ctl_val);
intel_de_posting_read(dev_priv, FDI_RX_CTL(PIPE_A));
- temp = intel_de_read(dev_priv, DDI_BUF_CTL(PORT_E));
- temp &= ~DDI_BUF_CTL_ENABLE;
- intel_de_write(dev_priv, DDI_BUF_CTL(PORT_E), temp);
+ intel_de_rmw(dev_priv, DDI_BUF_CTL(PORT_E), DDI_BUF_CTL_ENABLE, 0);
intel_de_posting_read(dev_priv, DDI_BUF_CTL(PORT_E));
/* Disable DP_TP_CTL and FDI_RX_CTL and retry */
- temp = intel_de_read(dev_priv, DP_TP_CTL(PORT_E));
- temp &= ~(DP_TP_CTL_ENABLE | DP_TP_CTL_LINK_TRAIN_MASK);
- temp |= DP_TP_CTL_LINK_TRAIN_PAT1;
- intel_de_write(dev_priv, DP_TP_CTL(PORT_E), temp);
+ intel_de_rmw(dev_priv, DP_TP_CTL(PORT_E), DP_TP_CTL_ENABLE, 0);
intel_de_posting_read(dev_priv, DP_TP_CTL(PORT_E));
intel_wait_ddi_buf_idle(dev_priv, PORT_E);
/* Reset FDI_RX_MISC pwrdn lanes */
- temp = intel_de_read(dev_priv, FDI_RX_MISC(PIPE_A));
- temp &= ~(FDI_RX_PWRDN_LANE1_MASK | FDI_RX_PWRDN_LANE0_MASK);
- temp |= FDI_RX_PWRDN_LANE1_VAL(2) | FDI_RX_PWRDN_LANE0_VAL(2);
- intel_de_write(dev_priv, FDI_RX_MISC(PIPE_A), temp);
+ intel_de_rmw(dev_priv, FDI_RX_MISC(PIPE_A),
+ FDI_RX_PWRDN_LANE1_MASK | FDI_RX_PWRDN_LANE0_MASK,
+ FDI_RX_PWRDN_LANE1_VAL(2) | FDI_RX_PWRDN_LANE0_VAL(2));
intel_de_posting_read(dev_priv, FDI_RX_MISC(PIPE_A));
}
@@ -897,7 +869,6 @@ void hsw_fdi_link_train(struct intel_encoder *encoder,
void hsw_fdi_disable(struct intel_encoder *encoder)
{
struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
- u32 val;
/*
* Bspec lists this as both step 13 (before DDI_BUF_CTL disable)
@@ -905,30 +876,15 @@ void hsw_fdi_disable(struct intel_encoder *encoder)
* step 13 is the correct place for it. Step 18 is where it was
* originally before the BUN.
*/
- val = intel_de_read(dev_priv, FDI_RX_CTL(PIPE_A));
- val &= ~FDI_RX_ENABLE;
- intel_de_write(dev_priv, FDI_RX_CTL(PIPE_A), val);
-
- val = intel_de_read(dev_priv, DDI_BUF_CTL(PORT_E));
- val &= ~DDI_BUF_CTL_ENABLE;
- intel_de_write(dev_priv, DDI_BUF_CTL(PORT_E), val);
-
+ intel_de_rmw(dev_priv, FDI_RX_CTL(PIPE_A), FDI_RX_ENABLE, 0);
+ intel_de_rmw(dev_priv, DDI_BUF_CTL(PORT_E), DDI_BUF_CTL_ENABLE, 0);
intel_wait_ddi_buf_idle(dev_priv, PORT_E);
-
intel_ddi_disable_clock(encoder);
-
- val = intel_de_read(dev_priv, FDI_RX_MISC(PIPE_A));
- val &= ~(FDI_RX_PWRDN_LANE1_MASK | FDI_RX_PWRDN_LANE0_MASK);
- val |= FDI_RX_PWRDN_LANE1_VAL(2) | FDI_RX_PWRDN_LANE0_VAL(2);
- intel_de_write(dev_priv, FDI_RX_MISC(PIPE_A), val);
-
- val = intel_de_read(dev_priv, FDI_RX_CTL(PIPE_A));
- val &= ~FDI_PCDCLK;
- intel_de_write(dev_priv, FDI_RX_CTL(PIPE_A), val);
-
- val = intel_de_read(dev_priv, FDI_RX_CTL(PIPE_A));
- val &= ~FDI_RX_PLL_ENABLE;
- intel_de_write(dev_priv, FDI_RX_CTL(PIPE_A), val);
+ intel_de_rmw(dev_priv, FDI_RX_MISC(PIPE_A),
+ FDI_RX_PWRDN_LANE1_MASK | FDI_RX_PWRDN_LANE0_MASK,
+ FDI_RX_PWRDN_LANE1_VAL(2) | FDI_RX_PWRDN_LANE0_VAL(2));
+ intel_de_rmw(dev_priv, FDI_RX_CTL(PIPE_A), FDI_PCDCLK, 0);
+ intel_de_rmw(dev_priv, FDI_RX_CTL(PIPE_A), FDI_RX_PLL_ENABLE, 0);
}
void ilk_fdi_pll_enable(const struct intel_crtc_state *crtc_state)
@@ -944,16 +900,14 @@ void ilk_fdi_pll_enable(const struct intel_crtc_state *crtc_state)
temp = intel_de_read(dev_priv, reg);
temp &= ~(FDI_DP_PORT_WIDTH_MASK | (0x7 << 16));
temp |= FDI_DP_PORT_WIDTH(crtc_state->fdi_lanes);
- temp |= (intel_de_read(dev_priv, PIPECONF(pipe)) & PIPECONF_BPC_MASK) << 11;
+ temp |= (intel_de_read(dev_priv, TRANSCONF(pipe)) & TRANSCONF_BPC_MASK) << 11;
intel_de_write(dev_priv, reg, temp | FDI_RX_PLL_ENABLE);
intel_de_posting_read(dev_priv, reg);
udelay(200);
/* Switch from Rawclk to PCDclk */
- temp = intel_de_read(dev_priv, reg);
- intel_de_write(dev_priv, reg, temp | FDI_PCDCLK);
-
+ intel_de_rmw(dev_priv, reg, 0, FDI_PCDCLK);
intel_de_posting_read(dev_priv, reg);
udelay(200);
@@ -973,28 +927,18 @@ void ilk_fdi_pll_disable(struct intel_crtc *crtc)
struct drm_device *dev = crtc->base.dev;
struct drm_i915_private *dev_priv = to_i915(dev);
enum pipe pipe = crtc->pipe;
- i915_reg_t reg;
- u32 temp;
/* Switch from PCDclk to Rawclk */
- reg = FDI_RX_CTL(pipe);
- temp = intel_de_read(dev_priv, reg);
- intel_de_write(dev_priv, reg, temp & ~FDI_PCDCLK);
+ intel_de_rmw(dev_priv, FDI_RX_CTL(pipe), FDI_PCDCLK, 0);
/* Disable CPU FDI TX PLL */
- reg = FDI_TX_CTL(pipe);
- temp = intel_de_read(dev_priv, reg);
- intel_de_write(dev_priv, reg, temp & ~FDI_TX_PLL_ENABLE);
-
- intel_de_posting_read(dev_priv, reg);
+ intel_de_rmw(dev_priv, FDI_TX_CTL(pipe), FDI_TX_PLL_ENABLE, 0);
+ intel_de_posting_read(dev_priv, FDI_TX_CTL(pipe));
udelay(100);
- reg = FDI_RX_CTL(pipe);
- temp = intel_de_read(dev_priv, reg);
- intel_de_write(dev_priv, reg, temp & ~FDI_RX_PLL_ENABLE);
-
/* Wait for the clocks to turn off. */
- intel_de_posting_read(dev_priv, reg);
+ intel_de_rmw(dev_priv, FDI_RX_CTL(pipe), FDI_RX_PLL_ENABLE, 0);
+ intel_de_posting_read(dev_priv, FDI_RX_CTL(pipe));
udelay(100);
}
@@ -1006,15 +950,13 @@ void ilk_fdi_disable(struct intel_crtc *crtc)
u32 temp;
/* disable CPU FDI tx and PCH FDI rx */
- reg = FDI_TX_CTL(pipe);
- temp = intel_de_read(dev_priv, reg);
- intel_de_write(dev_priv, reg, temp & ~FDI_TX_ENABLE);
- intel_de_posting_read(dev_priv, reg);
+ intel_de_rmw(dev_priv, FDI_TX_CTL(pipe), FDI_TX_ENABLE, 0);
+ intel_de_posting_read(dev_priv, FDI_TX_CTL(pipe));
reg = FDI_RX_CTL(pipe);
temp = intel_de_read(dev_priv, reg);
temp &= ~(0x7 << 16);
- temp |= (intel_de_read(dev_priv, PIPECONF(pipe)) & PIPECONF_BPC_MASK) << 11;
+ temp |= (intel_de_read(dev_priv, TRANSCONF(pipe)) & TRANSCONF_BPC_MASK) << 11;
intel_de_write(dev_priv, reg, temp & ~FDI_RX_ENABLE);
intel_de_posting_read(dev_priv, reg);
@@ -1026,11 +968,8 @@ void ilk_fdi_disable(struct intel_crtc *crtc)
FDI_RX_PHASE_SYNC_POINTER_OVR);
/* still set train pattern 1 */
- reg = FDI_TX_CTL(pipe);
- temp = intel_de_read(dev_priv, reg);
- temp &= ~FDI_LINK_TRAIN_NONE;
- temp |= FDI_LINK_TRAIN_PATTERN_1;
- intel_de_write(dev_priv, reg, temp);
+ intel_de_rmw(dev_priv, FDI_TX_CTL(pipe),
+ FDI_LINK_TRAIN_NONE, FDI_LINK_TRAIN_PATTERN_1);
reg = FDI_RX_CTL(pipe);
temp = intel_de_read(dev_priv, reg);
@@ -1041,9 +980,9 @@ void ilk_fdi_disable(struct intel_crtc *crtc)
temp &= ~FDI_LINK_TRAIN_NONE;
temp |= FDI_LINK_TRAIN_PATTERN_1;
}
- /* BPC in FDI rx is consistent with that in PIPECONF */
+ /* BPC in FDI rx is consistent with that in TRANSCONF */
temp &= ~(0x07 << 16);
- temp |= (intel_de_read(dev_priv, PIPECONF(pipe)) & PIPECONF_BPC_MASK) << 11;
+ temp |= (intel_de_read(dev_priv, TRANSCONF(pipe)) & TRANSCONF_BPC_MASK) << 11;
intel_de_write(dev_priv, reg, temp);
intel_de_posting_read(dev_priv, reg);
diff --git a/drivers/gpu/drm/i915/display/intel_fdi_regs.h b/drivers/gpu/drm/i915/display/intel_fdi_regs.h
new file mode 100644
index 000000000000..853b834c35a9
--- /dev/null
+++ b/drivers/gpu/drm/i915/display/intel_fdi_regs.h
@@ -0,0 +1,151 @@
+/* SPDX-License-Identifier: MIT */
+/*
+ * Copyright © 2023 Intel Corporation
+ */
+
+#ifndef __INTEL_FDI_REGS_H__
+#define __INTEL_FDI_REGS_H__
+
+#include "intel_display_reg_defs.h"
+
+#define FDI_PLL_BIOS_0 _MMIO(0x46000)
+#define FDI_PLL_FB_CLOCK_MASK 0xff
+#define FDI_PLL_BIOS_1 _MMIO(0x46004)
+#define FDI_PLL_BIOS_2 _MMIO(0x46008)
+#define DISPLAY_PORT_PLL_BIOS_0 _MMIO(0x4600c)
+#define DISPLAY_PORT_PLL_BIOS_1 _MMIO(0x46010)
+#define DISPLAY_PORT_PLL_BIOS_2 _MMIO(0x46014)
+
+#define FDI_PLL_FREQ_CTL _MMIO(0x46030)
+#define FDI_PLL_FREQ_CHANGE_REQUEST (1 << 24)
+#define FDI_PLL_FREQ_LOCK_LIMIT_MASK 0xfff00
+#define FDI_PLL_FREQ_DISABLE_COUNT_LIMIT_MASK 0xff
+
+#define _FDI_RXA_CHICKEN 0xc200c
+#define _FDI_RXB_CHICKEN 0xc2010
+#define FDI_RX_PHASE_SYNC_POINTER_OVR (1 << 1)
+#define FDI_RX_PHASE_SYNC_POINTER_EN (1 << 0)
+#define FDI_RX_CHICKEN(pipe) _MMIO_PIPE(pipe, _FDI_RXA_CHICKEN, _FDI_RXB_CHICKEN)
+
+/* CPU: FDI_TX */
+#define _FDI_TXA_CTL 0x60100
+#define _FDI_TXB_CTL 0x61100
+#define FDI_TX_CTL(pipe) _MMIO_PIPE(pipe, _FDI_TXA_CTL, _FDI_TXB_CTL)
+#define FDI_TX_DISABLE (0 << 31)
+#define FDI_TX_ENABLE (1 << 31)
+#define FDI_LINK_TRAIN_PATTERN_1 (0 << 28)
+#define FDI_LINK_TRAIN_PATTERN_2 (1 << 28)
+#define FDI_LINK_TRAIN_PATTERN_IDLE (2 << 28)
+#define FDI_LINK_TRAIN_NONE (3 << 28)
+#define FDI_LINK_TRAIN_VOLTAGE_0_4V (0 << 25)
+#define FDI_LINK_TRAIN_VOLTAGE_0_6V (1 << 25)
+#define FDI_LINK_TRAIN_VOLTAGE_0_8V (2 << 25)
+#define FDI_LINK_TRAIN_VOLTAGE_1_2V (3 << 25)
+#define FDI_LINK_TRAIN_PRE_EMPHASIS_NONE (0 << 22)
+#define FDI_LINK_TRAIN_PRE_EMPHASIS_1_5X (1 << 22)
+#define FDI_LINK_TRAIN_PRE_EMPHASIS_2X (2 << 22)
+#define FDI_LINK_TRAIN_PRE_EMPHASIS_3X (3 << 22)
+/* ILK always use 400mV 0dB for voltage swing and pre-emphasis level.
+ SNB has different settings. */
+/* SNB A-stepping */
+#define FDI_LINK_TRAIN_400MV_0DB_SNB_A (0x38 << 22)
+#define FDI_LINK_TRAIN_400MV_6DB_SNB_A (0x02 << 22)
+#define FDI_LINK_TRAIN_600MV_3_5DB_SNB_A (0x01 << 22)
+#define FDI_LINK_TRAIN_800MV_0DB_SNB_A (0x0 << 22)
+/* SNB B-stepping */
+#define FDI_LINK_TRAIN_400MV_0DB_SNB_B (0x0 << 22)
+#define FDI_LINK_TRAIN_400MV_6DB_SNB_B (0x3a << 22)
+#define FDI_LINK_TRAIN_600MV_3_5DB_SNB_B (0x39 << 22)
+#define FDI_LINK_TRAIN_800MV_0DB_SNB_B (0x38 << 22)
+#define FDI_LINK_TRAIN_VOL_EMP_MASK (0x3f << 22)
+#define FDI_DP_PORT_WIDTH_SHIFT 19
+#define FDI_DP_PORT_WIDTH_MASK (7 << FDI_DP_PORT_WIDTH_SHIFT)
+#define FDI_DP_PORT_WIDTH(width) (((width) - 1) << FDI_DP_PORT_WIDTH_SHIFT)
+#define FDI_TX_ENHANCE_FRAME_ENABLE (1 << 18)
+/* Ironlake: hardwired to 1 */
+#define FDI_TX_PLL_ENABLE (1 << 14)
+
+/* Ivybridge has different bits for lolz */
+#define FDI_LINK_TRAIN_PATTERN_1_IVB (0 << 8)
+#define FDI_LINK_TRAIN_PATTERN_2_IVB (1 << 8)
+#define FDI_LINK_TRAIN_PATTERN_IDLE_IVB (2 << 8)
+#define FDI_LINK_TRAIN_NONE_IVB (3 << 8)
+
+/* both Tx and Rx */
+#define FDI_COMPOSITE_SYNC (1 << 11)
+#define FDI_LINK_TRAIN_AUTO (1 << 10)
+#define FDI_SCRAMBLING_ENABLE (0 << 7)
+#define FDI_SCRAMBLING_DISABLE (1 << 7)
+
+/* FDI_RX, FDI_X is hard-wired to Transcoder_X */
+#define _FDI_RXA_CTL 0xf000c
+#define _FDI_RXB_CTL 0xf100c
+#define FDI_RX_CTL(pipe) _MMIO_PIPE(pipe, _FDI_RXA_CTL, _FDI_RXB_CTL)
+#define FDI_RX_ENABLE (1 << 31)
+/* train, dp width same as FDI_TX */
+#define FDI_FS_ERRC_ENABLE (1 << 27)
+#define FDI_FE_ERRC_ENABLE (1 << 26)
+#define FDI_RX_POLARITY_REVERSED_LPT (1 << 16)
+#define FDI_8BPC (0 << 16)
+#define FDI_10BPC (1 << 16)
+#define FDI_6BPC (2 << 16)
+#define FDI_12BPC (3 << 16)
+#define FDI_RX_LINK_REVERSAL_OVERRIDE (1 << 15)
+#define FDI_DMI_LINK_REVERSE_MASK (1 << 14)
+#define FDI_RX_PLL_ENABLE (1 << 13)
+#define FDI_FS_ERR_CORRECT_ENABLE (1 << 11)
+#define FDI_FE_ERR_CORRECT_ENABLE (1 << 10)
+#define FDI_FS_ERR_REPORT_ENABLE (1 << 9)
+#define FDI_FE_ERR_REPORT_ENABLE (1 << 8)
+#define FDI_RX_ENHANCE_FRAME_ENABLE (1 << 6)
+#define FDI_PCDCLK (1 << 4)
+/* CPT */
+#define FDI_AUTO_TRAINING (1 << 10)
+#define FDI_LINK_TRAIN_PATTERN_1_CPT (0 << 8)
+#define FDI_LINK_TRAIN_PATTERN_2_CPT (1 << 8)
+#define FDI_LINK_TRAIN_PATTERN_IDLE_CPT (2 << 8)
+#define FDI_LINK_TRAIN_NORMAL_CPT (3 << 8)
+#define FDI_LINK_TRAIN_PATTERN_MASK_CPT (3 << 8)
+
+#define _FDI_RXA_MISC 0xf0010
+#define _FDI_RXB_MISC 0xf1010
+#define FDI_RX_PWRDN_LANE1_MASK (3 << 26)
+#define FDI_RX_PWRDN_LANE1_VAL(x) ((x) << 26)
+#define FDI_RX_PWRDN_LANE0_MASK (3 << 24)
+#define FDI_RX_PWRDN_LANE0_VAL(x) ((x) << 24)
+#define FDI_RX_TP1_TO_TP2_48 (2 << 20)
+#define FDI_RX_TP1_TO_TP2_64 (3 << 20)
+#define FDI_RX_FDI_DELAY_90 (0x90 << 0)
+#define FDI_RX_MISC(pipe) _MMIO_PIPE(pipe, _FDI_RXA_MISC, _FDI_RXB_MISC)
+
+#define _FDI_RXA_TUSIZE1 0xf0030
+#define _FDI_RXA_TUSIZE2 0xf0038
+#define _FDI_RXB_TUSIZE1 0xf1030
+#define _FDI_RXB_TUSIZE2 0xf1038
+#define FDI_RX_TUSIZE1(pipe) _MMIO_PIPE(pipe, _FDI_RXA_TUSIZE1, _FDI_RXB_TUSIZE1)
+#define FDI_RX_TUSIZE2(pipe) _MMIO_PIPE(pipe, _FDI_RXA_TUSIZE2, _FDI_RXB_TUSIZE2)
+
+/* FDI_RX interrupt register format */
+#define FDI_RX_INTER_LANE_ALIGN (1 << 10)
+#define FDI_RX_SYMBOL_LOCK (1 << 9) /* train 2 */
+#define FDI_RX_BIT_LOCK (1 << 8) /* train 1 */
+#define FDI_RX_TRAIN_PATTERN_2_FAIL (1 << 7)
+#define FDI_RX_FS_CODE_ERR (1 << 6)
+#define FDI_RX_FE_CODE_ERR (1 << 5)
+#define FDI_RX_SYMBOL_ERR_RATE_ABOVE (1 << 4)
+#define FDI_RX_HDCP_LINK_FAIL (1 << 3)
+#define FDI_RX_PIXEL_FIFO_OVERFLOW (1 << 2)
+#define FDI_RX_CROSS_CLOCK_OVERFLOW (1 << 1)
+#define FDI_RX_SYMBOL_QUEUE_OVERFLOW (1 << 0)
+
+#define _FDI_RXA_IIR 0xf0014
+#define _FDI_RXA_IMR 0xf0018
+#define _FDI_RXB_IIR 0xf1014
+#define _FDI_RXB_IMR 0xf1018
+#define FDI_RX_IIR(pipe) _MMIO_PIPE(pipe, _FDI_RXA_IIR, _FDI_RXB_IIR)
+#define FDI_RX_IMR(pipe) _MMIO_PIPE(pipe, _FDI_RXA_IMR, _FDI_RXB_IMR)
+
+#define FDI_PLL_CTL_1 _MMIO(0xfe000)
+#define FDI_PLL_CTL_2 _MMIO(0xfe004)
+
+#endif /* __INTEL_FDI_REGS_H__ */
diff --git a/drivers/gpu/drm/i915/display/intel_fifo_underrun.c b/drivers/gpu/drm/i915/display/intel_fifo_underrun.c
index d636d21fa9ce..b708a62e509a 100644
--- a/drivers/gpu/drm/i915/display/intel_fifo_underrun.c
+++ b/drivers/gpu/drm/i915/display/intel_fifo_underrun.c
@@ -31,6 +31,7 @@
#include "intel_display_types.h"
#include "intel_fbc.h"
#include "intel_fifo_underrun.h"
+#include "intel_pch_display.h"
/**
* DOC: fifo underrun handling
@@ -509,3 +510,22 @@ void intel_check_pch_fifo_underruns(struct drm_i915_private *dev_priv)
spin_unlock_irq(&dev_priv->irq_lock);
}
+
+void intel_init_fifo_underrun_reporting(struct drm_i915_private *i915,
+ struct intel_crtc *crtc,
+ bool enable)
+{
+ crtc->cpu_fifo_underrun_disabled = !enable;
+
+ /*
+ * We track the PCH trancoder underrun reporting state
+ * within the crtc. With crtc for pipe A housing the underrun
+ * reporting state for PCH transcoder A, crtc for pipe B housing
+ * it for PCH transcoder B, etc. LPT-H has only PCH transcoder A,
+ * and marking underrun reporting as disabled for the non-existing
+ * PCH transcoders B and C would prevent enabling the south
+ * error interrupt (see cpt_can_enable_serr_int()).
+ */
+ if (intel_has_pch_trancoder(i915, crtc->pipe))
+ crtc->pch_fifo_underrun_disabled = !enable;
+}
diff --git a/drivers/gpu/drm/i915/display/intel_fifo_underrun.h b/drivers/gpu/drm/i915/display/intel_fifo_underrun.h
index e04f22ac1f49..b00d8abebcf9 100644
--- a/drivers/gpu/drm/i915/display/intel_fifo_underrun.h
+++ b/drivers/gpu/drm/i915/display/intel_fifo_underrun.h
@@ -8,10 +8,12 @@
#include <linux/types.h>
-#include "intel_display.h"
-
struct drm_i915_private;
+struct intel_crtc;
+enum pipe;
+void intel_init_fifo_underrun_reporting(struct drm_i915_private *i915,
+ struct intel_crtc *crtc, bool enable);
bool intel_set_cpu_fifo_underrun_reporting(struct drm_i915_private *dev_priv,
enum pipe pipe, bool enable);
bool intel_set_pch_fifo_underrun_reporting(struct drm_i915_private *dev_priv,
diff --git a/drivers/gpu/drm/i915/display/intel_frontbuffer.c b/drivers/gpu/drm/i915/display/intel_frontbuffer.c
index d80e3e8a9b01..17a7aa8b28c2 100644
--- a/drivers/gpu/drm/i915/display/intel_frontbuffer.c
+++ b/drivers/gpu/drm/i915/display/intel_frontbuffer.c
@@ -88,7 +88,7 @@ static void frontbuffer_flush(struct drm_i915_private *i915,
if (!frontbuffer_bits)
return;
- trace_intel_frontbuffer_flush(frontbuffer_bits, origin);
+ trace_intel_frontbuffer_flush(i915, frontbuffer_bits, origin);
might_sleep();
intel_drrs_flush(i915, frontbuffer_bits);
@@ -176,7 +176,7 @@ void __intel_fb_invalidate(struct intel_frontbuffer *front,
spin_unlock(&i915->display.fb_tracking.lock);
}
- trace_intel_frontbuffer_invalidate(frontbuffer_bits, origin);
+ trace_intel_frontbuffer_invalidate(i915, frontbuffer_bits, origin);
might_sleep();
intel_psr_invalidate(i915, frontbuffer_bits, origin);
diff --git a/drivers/gpu/drm/i915/display/intel_global_state.c b/drivers/gpu/drm/i915/display/intel_global_state.c
index 7a19215ad844..02b593b1e2ea 100644
--- a/drivers/gpu/drm/i915/display/intel_global_state.c
+++ b/drivers/gpu/drm/i915/display/intel_global_state.c
@@ -45,14 +45,14 @@ void intel_atomic_global_obj_init(struct drm_i915_private *dev_priv,
obj->state = state;
obj->funcs = funcs;
- list_add_tail(&obj->head, &dev_priv->global_obj_list);
+ list_add_tail(&obj->head, &dev_priv->display.global.obj_list);
}
void intel_atomic_global_obj_cleanup(struct drm_i915_private *dev_priv)
{
struct intel_global_obj *obj, *next;
- list_for_each_entry_safe(obj, next, &dev_priv->global_obj_list, head) {
+ list_for_each_entry_safe(obj, next, &dev_priv->display.global.obj_list, head) {
list_del(&obj->head);
drm_WARN_ON(&dev_priv->drm, kref_read(&obj->state->ref) != 1);
diff --git a/drivers/gpu/drm/i915/display/intel_global_state.h b/drivers/gpu/drm/i915/display/intel_global_state.h
index 1f16fa3073c9..f01ee0bb3e5a 100644
--- a/drivers/gpu/drm/i915/display/intel_global_state.h
+++ b/drivers/gpu/drm/i915/display/intel_global_state.h
@@ -27,7 +27,7 @@ struct intel_global_obj {
};
#define intel_for_each_global_obj(obj, dev_priv) \
- list_for_each_entry(obj, &(dev_priv)->global_obj_list, head)
+ list_for_each_entry(obj, &(dev_priv)->display.global.obj_list, head)
#define for_each_new_global_obj_in_state(__state, obj, new_obj_state, __i) \
for ((__i) = 0; \
diff --git a/drivers/gpu/drm/i915/display/intel_gmbus.c b/drivers/gpu/drm/i915/display/intel_gmbus.c
index 74443f57f62d..3ddfc8080ee8 100644
--- a/drivers/gpu/drm/i915/display/intel_gmbus.c
+++ b/drivers/gpu/drm/i915/display/intel_gmbus.c
@@ -34,6 +34,8 @@
#include <drm/display/drm_hdcp_helper.h>
#include "i915_drv.h"
+#include "i915_irq.h"
+#include "i915_reg.h"
#include "intel_de.h"
#include "intel_display_types.h"
#include "intel_gmbus.h"
@@ -49,9 +51,27 @@ struct intel_gmbus {
struct drm_i915_private *i915;
};
+enum gmbus_gpio {
+ GPIOA,
+ GPIOB,
+ GPIOC,
+ GPIOD,
+ GPIOE,
+ GPIOF,
+ GPIOG,
+ GPIOH,
+ __GPIOI_UNUSED,
+ GPIOJ,
+ GPIOK,
+ GPIOL,
+ GPIOM,
+ GPION,
+ GPIOO,
+};
+
struct gmbus_pin {
const char *name;
- enum i915_gpio gpio;
+ enum gmbus_gpio gpio;
};
/* Map gmbus pin pairs to names and registers. */
@@ -195,54 +215,34 @@ intel_gmbus_reset(struct drm_i915_private *i915)
static void pnv_gmbus_clock_gating(struct drm_i915_private *i915,
bool enable)
{
- u32 val;
-
/* When using bit bashing for I2C, this bit needs to be set to 1 */
- val = intel_de_read(i915, DSPCLK_GATE_D(i915));
- if (!enable)
- val |= PNV_GMBUSUNIT_CLOCK_GATE_DISABLE;
- else
- val &= ~PNV_GMBUSUNIT_CLOCK_GATE_DISABLE;
- intel_de_write(i915, DSPCLK_GATE_D(i915), val);
+ intel_de_rmw(i915, DSPCLK_GATE_D(i915), PNV_GMBUSUNIT_CLOCK_GATE_DISABLE,
+ !enable ? PNV_GMBUSUNIT_CLOCK_GATE_DISABLE : 0);
}
static void pch_gmbus_clock_gating(struct drm_i915_private *i915,
bool enable)
{
- u32 val;
-
- val = intel_de_read(i915, SOUTH_DSPCLK_GATE_D);
- if (!enable)
- val |= PCH_GMBUSUNIT_CLOCK_GATE_DISABLE;
- else
- val &= ~PCH_GMBUSUNIT_CLOCK_GATE_DISABLE;
- intel_de_write(i915, SOUTH_DSPCLK_GATE_D, val);
+ intel_de_rmw(i915, SOUTH_DSPCLK_GATE_D, PCH_GMBUSUNIT_CLOCK_GATE_DISABLE,
+ !enable ? PCH_GMBUSUNIT_CLOCK_GATE_DISABLE : 0);
}
static void bxt_gmbus_clock_gating(struct drm_i915_private *i915,
bool enable)
{
- u32 val;
-
- val = intel_de_read(i915, GEN9_CLKGATE_DIS_4);
- if (!enable)
- val |= BXT_GMBUS_GATING_DIS;
- else
- val &= ~BXT_GMBUS_GATING_DIS;
- intel_de_write(i915, GEN9_CLKGATE_DIS_4, val);
+ intel_de_rmw(i915, GEN9_CLKGATE_DIS_4, BXT_GMBUS_GATING_DIS,
+ !enable ? BXT_GMBUS_GATING_DIS : 0);
}
static u32 get_reserved(struct intel_gmbus *bus)
{
struct drm_i915_private *i915 = bus->i915;
- struct intel_uncore *uncore = &i915->uncore;
u32 reserved = 0;
/* On most chips, these bits must be preserved in software. */
if (!IS_I830(i915) && !IS_I845G(i915))
- reserved = intel_uncore_read_notrace(uncore, bus->gpio_reg) &
- (GPIO_DATA_PULLUP_DISABLE |
- GPIO_CLOCK_PULLUP_DISABLE);
+ reserved = intel_de_read_notrace(i915, bus->gpio_reg) &
+ (GPIO_DATA_PULLUP_DISABLE | GPIO_CLOCK_PULLUP_DISABLE);
return reserved;
}
@@ -250,37 +250,31 @@ static u32 get_reserved(struct intel_gmbus *bus)
static int get_clock(void *data)
{
struct intel_gmbus *bus = data;
- struct intel_uncore *uncore = &bus->i915->uncore;
+ struct drm_i915_private *i915 = bus->i915;
u32 reserved = get_reserved(bus);
- intel_uncore_write_notrace(uncore,
- bus->gpio_reg,
- reserved | GPIO_CLOCK_DIR_MASK);
- intel_uncore_write_notrace(uncore, bus->gpio_reg, reserved);
+ intel_de_write_notrace(i915, bus->gpio_reg, reserved | GPIO_CLOCK_DIR_MASK);
+ intel_de_write_notrace(i915, bus->gpio_reg, reserved);
- return (intel_uncore_read_notrace(uncore, bus->gpio_reg) &
- GPIO_CLOCK_VAL_IN) != 0;
+ return (intel_de_read_notrace(i915, bus->gpio_reg) & GPIO_CLOCK_VAL_IN) != 0;
}
static int get_data(void *data)
{
struct intel_gmbus *bus = data;
- struct intel_uncore *uncore = &bus->i915->uncore;
+ struct drm_i915_private *i915 = bus->i915;
u32 reserved = get_reserved(bus);
- intel_uncore_write_notrace(uncore,
- bus->gpio_reg,
- reserved | GPIO_DATA_DIR_MASK);
- intel_uncore_write_notrace(uncore, bus->gpio_reg, reserved);
+ intel_de_write_notrace(i915, bus->gpio_reg, reserved | GPIO_DATA_DIR_MASK);
+ intel_de_write_notrace(i915, bus->gpio_reg, reserved);
- return (intel_uncore_read_notrace(uncore, bus->gpio_reg) &
- GPIO_DATA_VAL_IN) != 0;
+ return (intel_de_read_notrace(i915, bus->gpio_reg) & GPIO_DATA_VAL_IN) != 0;
}
static void set_clock(void *data, int state_high)
{
struct intel_gmbus *bus = data;
- struct intel_uncore *uncore = &bus->i915->uncore;
+ struct drm_i915_private *i915 = bus->i915;
u32 reserved = get_reserved(bus);
u32 clock_bits;
@@ -290,16 +284,14 @@ static void set_clock(void *data, int state_high)
clock_bits = GPIO_CLOCK_DIR_OUT | GPIO_CLOCK_DIR_MASK |
GPIO_CLOCK_VAL_MASK;
- intel_uncore_write_notrace(uncore,
- bus->gpio_reg,
- reserved | clock_bits);
- intel_uncore_posting_read(uncore, bus->gpio_reg);
+ intel_de_write_notrace(i915, bus->gpio_reg, reserved | clock_bits);
+ intel_de_posting_read(i915, bus->gpio_reg);
}
static void set_data(void *data, int state_high)
{
struct intel_gmbus *bus = data;
- struct intel_uncore *uncore = &bus->i915->uncore;
+ struct drm_i915_private *i915 = bus->i915;
u32 reserved = get_reserved(bus);
u32 data_bits;
@@ -309,8 +301,8 @@ static void set_data(void *data, int state_high)
data_bits = GPIO_DATA_DIR_OUT | GPIO_DATA_DIR_MASK |
GPIO_DATA_VAL_MASK;
- intel_uncore_write_notrace(uncore, bus->gpio_reg, reserved | data_bits);
- intel_uncore_posting_read(uncore, bus->gpio_reg);
+ intel_de_write_notrace(i915, bus->gpio_reg, reserved | data_bits);
+ intel_de_posting_read(i915, bus->gpio_reg);
}
static int
@@ -419,9 +411,7 @@ gmbus_wait_idle(struct drm_i915_private *i915)
add_wait_queue(&i915->display.gmbus.wait_queue, &wait);
intel_de_write_fw(i915, GMBUS4(i915), irq_enable);
- ret = intel_wait_for_register_fw(&i915->uncore,
- GMBUS2(i915), GMBUS_ACTIVE, 0,
- 10);
+ ret = intel_de_wait_for_register_fw(i915, GMBUS2(i915), GMBUS_ACTIVE, 0, 10);
intel_de_write_fw(i915, GMBUS4(i915), 0);
remove_wait_queue(&i915->display.gmbus.wait_queue, &wait);
diff --git a/drivers/gpu/drm/i915/display/intel_hdcp.c b/drivers/gpu/drm/i915/display/intel_hdcp.c
index 6406fd487ee5..650232c4892b 100644
--- a/drivers/gpu/drm/i915/display/intel_hdcp.c
+++ b/drivers/gpu/drm/i915/display/intel_hdcp.c
@@ -23,6 +23,7 @@
#include "intel_display_power_well.h"
#include "intel_display_types.h"
#include "intel_hdcp.h"
+#include "intel_hdcp_gsc.h"
#include "intel_hdcp_regs.h"
#include "intel_pcode.h"
@@ -203,13 +204,20 @@ bool intel_hdcp2_capable(struct intel_connector *connector)
struct intel_digital_port *dig_port = intel_attached_dig_port(connector);
struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
struct intel_hdcp *hdcp = &connector->hdcp;
+ struct intel_gt *gt = dev_priv->media_gt;
+ struct intel_gsc_uc *gsc = &gt->uc.gsc;
bool capable = false;
/* I915 support for HDCP2.2 */
if (!hdcp->hdcp2_supported)
return false;
- /* MEI interface is solid */
+ /* If MTL+ make sure gsc is loaded and proxy is setup */
+ if (intel_hdcp_gsc_cs_required(dev_priv))
+ if (!intel_uc_fw_is_running(&gsc->fw))
+ return false;
+
+ /* MEI/GSC interface is solid depending on which is used */
mutex_lock(&dev_priv->display.hdcp.comp_mutex);
if (!dev_priv->display.hdcp.comp_added || !dev_priv->display.hdcp.master) {
mutex_unlock(&dev_priv->display.hdcp.comp_mutex);
@@ -943,8 +951,7 @@ static int _intel_hdcp_disable(struct intel_connector *connector)
repeater_ctl = intel_hdcp_get_repeater_ctl(dev_priv, cpu_transcoder,
port);
- intel_de_write(dev_priv, HDCP_REP_CTL,
- intel_de_read(dev_priv, HDCP_REP_CTL) & ~repeater_ctl);
+ intel_de_rmw(dev_priv, HDCP_REP_CTL, repeater_ctl, 0);
ret = hdcp->shim->toggle_signalling(dig_port, cpu_transcoder, false);
if (ret) {
@@ -1143,18 +1150,18 @@ hdcp2_prepare_ake_init(struct intel_connector *connector,
struct intel_digital_port *dig_port = intel_attached_dig_port(connector);
struct hdcp_port_data *data = &dig_port->hdcp_port_data;
struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
- struct i915_hdcp_comp_master *comp;
+ struct i915_hdcp_master *arbiter;
int ret;
mutex_lock(&dev_priv->display.hdcp.comp_mutex);
- comp = dev_priv->display.hdcp.master;
+ arbiter = dev_priv->display.hdcp.master;
- if (!comp || !comp->ops) {
+ if (!arbiter || !arbiter->ops) {
mutex_unlock(&dev_priv->display.hdcp.comp_mutex);
return -EINVAL;
}
- ret = comp->ops->initiate_hdcp2_session(comp->mei_dev, data, ake_data);
+ ret = arbiter->ops->initiate_hdcp2_session(arbiter->hdcp_dev, data, ake_data);
if (ret)
drm_dbg_kms(&dev_priv->drm, "Prepare_ake_init failed. %d\n",
ret);
@@ -1173,18 +1180,18 @@ hdcp2_verify_rx_cert_prepare_km(struct intel_connector *connector,
struct intel_digital_port *dig_port = intel_attached_dig_port(connector);
struct hdcp_port_data *data = &dig_port->hdcp_port_data;
struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
- struct i915_hdcp_comp_master *comp;
+ struct i915_hdcp_master *arbiter;
int ret;
mutex_lock(&dev_priv->display.hdcp.comp_mutex);
- comp = dev_priv->display.hdcp.master;
+ arbiter = dev_priv->display.hdcp.master;
- if (!comp || !comp->ops) {
+ if (!arbiter || !arbiter->ops) {
mutex_unlock(&dev_priv->display.hdcp.comp_mutex);
return -EINVAL;
}
- ret = comp->ops->verify_receiver_cert_prepare_km(comp->mei_dev, data,
+ ret = arbiter->ops->verify_receiver_cert_prepare_km(arbiter->hdcp_dev, data,
rx_cert, paired,
ek_pub_km, msg_sz);
if (ret < 0)
@@ -1201,18 +1208,18 @@ static int hdcp2_verify_hprime(struct intel_connector *connector,
struct intel_digital_port *dig_port = intel_attached_dig_port(connector);
struct hdcp_port_data *data = &dig_port->hdcp_port_data;
struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
- struct i915_hdcp_comp_master *comp;
+ struct i915_hdcp_master *arbiter;
int ret;
mutex_lock(&dev_priv->display.hdcp.comp_mutex);
- comp = dev_priv->display.hdcp.master;
+ arbiter = dev_priv->display.hdcp.master;
- if (!comp || !comp->ops) {
+ if (!arbiter || !arbiter->ops) {
mutex_unlock(&dev_priv->display.hdcp.comp_mutex);
return -EINVAL;
}
- ret = comp->ops->verify_hprime(comp->mei_dev, data, rx_hprime);
+ ret = arbiter->ops->verify_hprime(arbiter->hdcp_dev, data, rx_hprime);
if (ret < 0)
drm_dbg_kms(&dev_priv->drm, "Verify hprime failed. %d\n", ret);
mutex_unlock(&dev_priv->display.hdcp.comp_mutex);
@@ -1227,18 +1234,18 @@ hdcp2_store_pairing_info(struct intel_connector *connector,
struct intel_digital_port *dig_port = intel_attached_dig_port(connector);
struct hdcp_port_data *data = &dig_port->hdcp_port_data;
struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
- struct i915_hdcp_comp_master *comp;
+ struct i915_hdcp_master *arbiter;
int ret;
mutex_lock(&dev_priv->display.hdcp.comp_mutex);
- comp = dev_priv->display.hdcp.master;
+ arbiter = dev_priv->display.hdcp.master;
- if (!comp || !comp->ops) {
+ if (!arbiter || !arbiter->ops) {
mutex_unlock(&dev_priv->display.hdcp.comp_mutex);
return -EINVAL;
}
- ret = comp->ops->store_pairing_info(comp->mei_dev, data, pairing_info);
+ ret = arbiter->ops->store_pairing_info(arbiter->hdcp_dev, data, pairing_info);
if (ret < 0)
drm_dbg_kms(&dev_priv->drm, "Store pairing info failed. %d\n",
ret);
@@ -1254,18 +1261,18 @@ hdcp2_prepare_lc_init(struct intel_connector *connector,
struct intel_digital_port *dig_port = intel_attached_dig_port(connector);
struct hdcp_port_data *data = &dig_port->hdcp_port_data;
struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
- struct i915_hdcp_comp_master *comp;
+ struct i915_hdcp_master *arbiter;
int ret;
mutex_lock(&dev_priv->display.hdcp.comp_mutex);
- comp = dev_priv->display.hdcp.master;
+ arbiter = dev_priv->display.hdcp.master;
- if (!comp || !comp->ops) {
+ if (!arbiter || !arbiter->ops) {
mutex_unlock(&dev_priv->display.hdcp.comp_mutex);
return -EINVAL;
}
- ret = comp->ops->initiate_locality_check(comp->mei_dev, data, lc_init);
+ ret = arbiter->ops->initiate_locality_check(arbiter->hdcp_dev, data, lc_init);
if (ret < 0)
drm_dbg_kms(&dev_priv->drm, "Prepare lc_init failed. %d\n",
ret);
@@ -1281,18 +1288,18 @@ hdcp2_verify_lprime(struct intel_connector *connector,
struct intel_digital_port *dig_port = intel_attached_dig_port(connector);
struct hdcp_port_data *data = &dig_port->hdcp_port_data;
struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
- struct i915_hdcp_comp_master *comp;
+ struct i915_hdcp_master *arbiter;
int ret;
mutex_lock(&dev_priv->display.hdcp.comp_mutex);
- comp = dev_priv->display.hdcp.master;
+ arbiter = dev_priv->display.hdcp.master;
- if (!comp || !comp->ops) {
+ if (!arbiter || !arbiter->ops) {
mutex_unlock(&dev_priv->display.hdcp.comp_mutex);
return -EINVAL;
}
- ret = comp->ops->verify_lprime(comp->mei_dev, data, rx_lprime);
+ ret = arbiter->ops->verify_lprime(arbiter->hdcp_dev, data, rx_lprime);
if (ret < 0)
drm_dbg_kms(&dev_priv->drm, "Verify L_Prime failed. %d\n",
ret);
@@ -1307,18 +1314,18 @@ static int hdcp2_prepare_skey(struct intel_connector *connector,
struct intel_digital_port *dig_port = intel_attached_dig_port(connector);
struct hdcp_port_data *data = &dig_port->hdcp_port_data;
struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
- struct i915_hdcp_comp_master *comp;
+ struct i915_hdcp_master *arbiter;
int ret;
mutex_lock(&dev_priv->display.hdcp.comp_mutex);
- comp = dev_priv->display.hdcp.master;
+ arbiter = dev_priv->display.hdcp.master;
- if (!comp || !comp->ops) {
+ if (!arbiter || !arbiter->ops) {
mutex_unlock(&dev_priv->display.hdcp.comp_mutex);
return -EINVAL;
}
- ret = comp->ops->get_session_key(comp->mei_dev, data, ske_data);
+ ret = arbiter->ops->get_session_key(arbiter->hdcp_dev, data, ske_data);
if (ret < 0)
drm_dbg_kms(&dev_priv->drm, "Get session key failed. %d\n",
ret);
@@ -1336,20 +1343,21 @@ hdcp2_verify_rep_topology_prepare_ack(struct intel_connector *connector,
struct intel_digital_port *dig_port = intel_attached_dig_port(connector);
struct hdcp_port_data *data = &dig_port->hdcp_port_data;
struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
- struct i915_hdcp_comp_master *comp;
+ struct i915_hdcp_master *arbiter;
int ret;
mutex_lock(&dev_priv->display.hdcp.comp_mutex);
- comp = dev_priv->display.hdcp.master;
+ arbiter = dev_priv->display.hdcp.master;
- if (!comp || !comp->ops) {
+ if (!arbiter || !arbiter->ops) {
mutex_unlock(&dev_priv->display.hdcp.comp_mutex);
return -EINVAL;
}
- ret = comp->ops->repeater_check_flow_prepare_ack(comp->mei_dev, data,
- rep_topology,
- rep_send_ack);
+ ret = arbiter->ops->repeater_check_flow_prepare_ack(arbiter->hdcp_dev,
+ data,
+ rep_topology,
+ rep_send_ack);
if (ret < 0)
drm_dbg_kms(&dev_priv->drm,
"Verify rep topology failed. %d\n", ret);
@@ -1365,18 +1373,18 @@ hdcp2_verify_mprime(struct intel_connector *connector,
struct intel_digital_port *dig_port = intel_attached_dig_port(connector);
struct hdcp_port_data *data = &dig_port->hdcp_port_data;
struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
- struct i915_hdcp_comp_master *comp;
+ struct i915_hdcp_master *arbiter;
int ret;
mutex_lock(&dev_priv->display.hdcp.comp_mutex);
- comp = dev_priv->display.hdcp.master;
+ arbiter = dev_priv->display.hdcp.master;
- if (!comp || !comp->ops) {
+ if (!arbiter || !arbiter->ops) {
mutex_unlock(&dev_priv->display.hdcp.comp_mutex);
return -EINVAL;
}
- ret = comp->ops->verify_mprime(comp->mei_dev, data, stream_ready);
+ ret = arbiter->ops->verify_mprime(arbiter->hdcp_dev, data, stream_ready);
if (ret < 0)
drm_dbg_kms(&dev_priv->drm, "Verify mprime failed. %d\n", ret);
mutex_unlock(&dev_priv->display.hdcp.comp_mutex);
@@ -1389,18 +1397,18 @@ static int hdcp2_authenticate_port(struct intel_connector *connector)
struct intel_digital_port *dig_port = intel_attached_dig_port(connector);
struct hdcp_port_data *data = &dig_port->hdcp_port_data;
struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
- struct i915_hdcp_comp_master *comp;
+ struct i915_hdcp_master *arbiter;
int ret;
mutex_lock(&dev_priv->display.hdcp.comp_mutex);
- comp = dev_priv->display.hdcp.master;
+ arbiter = dev_priv->display.hdcp.master;
- if (!comp || !comp->ops) {
+ if (!arbiter || !arbiter->ops) {
mutex_unlock(&dev_priv->display.hdcp.comp_mutex);
return -EINVAL;
}
- ret = comp->ops->enable_hdcp_authentication(comp->mei_dev, data);
+ ret = arbiter->ops->enable_hdcp_authentication(arbiter->hdcp_dev, data);
if (ret < 0)
drm_dbg_kms(&dev_priv->drm, "Enable hdcp auth failed. %d\n",
ret);
@@ -1409,22 +1417,22 @@ static int hdcp2_authenticate_port(struct intel_connector *connector)
return ret;
}
-static int hdcp2_close_mei_session(struct intel_connector *connector)
+static int hdcp2_close_session(struct intel_connector *connector)
{
struct intel_digital_port *dig_port = intel_attached_dig_port(connector);
struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
- struct i915_hdcp_comp_master *comp;
+ struct i915_hdcp_master *arbiter;
int ret;
mutex_lock(&dev_priv->display.hdcp.comp_mutex);
- comp = dev_priv->display.hdcp.master;
+ arbiter = dev_priv->display.hdcp.master;
- if (!comp || !comp->ops) {
+ if (!arbiter || !arbiter->ops) {
mutex_unlock(&dev_priv->display.hdcp.comp_mutex);
return -EINVAL;
}
- ret = comp->ops->close_hdcp_session(comp->mei_dev,
+ ret = arbiter->ops->close_hdcp_session(arbiter->hdcp_dev,
&dig_port->hdcp_port_data);
mutex_unlock(&dev_priv->display.hdcp.comp_mutex);
@@ -1433,7 +1441,7 @@ static int hdcp2_close_mei_session(struct intel_connector *connector)
static int hdcp2_deauthenticate_port(struct intel_connector *connector)
{
- return hdcp2_close_mei_session(connector);
+ return hdcp2_close_session(connector);
}
/* Authentication flow starts from here */
@@ -1819,12 +1827,10 @@ static int hdcp2_enable_encryption(struct intel_connector *connector)
}
if (intel_de_read(dev_priv, HDCP2_STATUS(dev_priv, cpu_transcoder, port)) &
- LINK_AUTH_STATUS) {
+ LINK_AUTH_STATUS)
/* Link is Authenticated. Now set for Encryption */
- intel_de_write(dev_priv,
- HDCP2_CTL(dev_priv, cpu_transcoder, port),
- intel_de_read(dev_priv, HDCP2_CTL(dev_priv, cpu_transcoder, port)) | CTL_LINK_ENCRYPTION_REQ);
- }
+ intel_de_rmw(dev_priv, HDCP2_CTL(dev_priv, cpu_transcoder, port),
+ 0, CTL_LINK_ENCRYPTION_REQ);
ret = intel_de_wait_for_set(dev_priv,
HDCP2_STATUS(dev_priv, cpu_transcoder,
@@ -1848,8 +1854,8 @@ static int hdcp2_disable_encryption(struct intel_connector *connector)
drm_WARN_ON(&dev_priv->drm, !(intel_de_read(dev_priv, HDCP2_STATUS(dev_priv, cpu_transcoder, port)) &
LINK_ENCRYPTION_STATUS));
- intel_de_write(dev_priv, HDCP2_CTL(dev_priv, cpu_transcoder, port),
- intel_de_read(dev_priv, HDCP2_CTL(dev_priv, cpu_transcoder, port)) & ~CTL_LINK_ENCRYPTION_REQ);
+ intel_de_rmw(dev_priv, HDCP2_CTL(dev_priv, cpu_transcoder, port),
+ CTL_LINK_ENCRYPTION_REQ, 0);
ret = intel_de_wait_for_clear(dev_priv,
HDCP2_STATUS(dev_priv, cpu_transcoder,
@@ -2145,8 +2151,8 @@ static int i915_hdcp_component_bind(struct device *i915_kdev,
drm_dbg(&dev_priv->drm, "I915 HDCP comp bind\n");
mutex_lock(&dev_priv->display.hdcp.comp_mutex);
- dev_priv->display.hdcp.master = (struct i915_hdcp_comp_master *)data;
- dev_priv->display.hdcp.master->mei_dev = mei_kdev;
+ dev_priv->display.hdcp.master = (struct i915_hdcp_master *)data;
+ dev_priv->display.hdcp.master->hdcp_dev = mei_kdev;
mutex_unlock(&dev_priv->display.hdcp.comp_mutex);
return 0;
@@ -2163,30 +2169,30 @@ static void i915_hdcp_component_unbind(struct device *i915_kdev,
mutex_unlock(&dev_priv->display.hdcp.comp_mutex);
}
-static const struct component_ops i915_hdcp_component_ops = {
+static const struct component_ops i915_hdcp_ops = {
.bind = i915_hdcp_component_bind,
.unbind = i915_hdcp_component_unbind,
};
-static enum mei_fw_ddi intel_get_mei_fw_ddi_index(enum port port)
+static enum hdcp_ddi intel_get_hdcp_ddi_index(enum port port)
{
switch (port) {
case PORT_A:
- return MEI_DDI_A;
+ return HDCP_DDI_A;
case PORT_B ... PORT_F:
- return (enum mei_fw_ddi)port;
+ return (enum hdcp_ddi)port;
default:
- return MEI_DDI_INVALID_PORT;
+ return HDCP_DDI_INVALID_PORT;
}
}
-static enum mei_fw_tc intel_get_mei_fw_tc(enum transcoder cpu_transcoder)
+static enum hdcp_transcoder intel_get_hdcp_transcoder(enum transcoder cpu_transcoder)
{
switch (cpu_transcoder) {
case TRANSCODER_A ... TRANSCODER_D:
- return (enum mei_fw_tc)(cpu_transcoder | 0x10);
+ return (enum hdcp_transcoder)(cpu_transcoder | 0x10);
default: /* eDP, DSI TRANSCODERS are non HDCP capable */
- return MEI_INVALID_TRANSCODER;
+ return HDCP_INVALID_TRANSCODER;
}
}
@@ -2200,20 +2206,20 @@ static int initialize_hdcp_port_data(struct intel_connector *connector,
enum port port = dig_port->base.port;
if (DISPLAY_VER(dev_priv) < 12)
- data->fw_ddi = intel_get_mei_fw_ddi_index(port);
+ data->hdcp_ddi = intel_get_hdcp_ddi_index(port);
else
/*
- * As per ME FW API expectation, for GEN 12+, fw_ddi is filled
+ * As per ME FW API expectation, for GEN 12+, hdcp_ddi is filled
* with zero(INVALID PORT index).
*/
- data->fw_ddi = MEI_DDI_INVALID_PORT;
+ data->hdcp_ddi = HDCP_DDI_INVALID_PORT;
/*
- * As associated transcoder is set and modified at modeset, here fw_tc
+ * As associated transcoder is set and modified at modeset, here hdcp_transcoder
* is initialized to zero (invalid transcoder index). This will be
* retained for <Gen12 forever.
*/
- data->fw_tc = MEI_INVALID_TRANSCODER;
+ data->hdcp_transcoder = HDCP_INVALID_TRANSCODER;
data->port_type = (u8)HDCP_PORT_TYPE_INTEGRATED;
data->protocol = (u8)shim->protocol;
@@ -2235,6 +2241,9 @@ static int initialize_hdcp_port_data(struct intel_connector *connector,
static bool is_hdcp2_supported(struct drm_i915_private *dev_priv)
{
+ if (intel_hdcp_gsc_cs_required(dev_priv))
+ return true;
+
if (!IS_ENABLED(CONFIG_INTEL_MEI_HDCP))
return false;
@@ -2256,10 +2265,14 @@ void intel_hdcp_component_init(struct drm_i915_private *dev_priv)
dev_priv->display.hdcp.comp_added = true;
mutex_unlock(&dev_priv->display.hdcp.comp_mutex);
- ret = component_add_typed(dev_priv->drm.dev, &i915_hdcp_component_ops,
- I915_COMPONENT_HDCP);
+ if (intel_hdcp_gsc_cs_required(dev_priv))
+ ret = intel_hdcp_gsc_init(dev_priv);
+ else
+ ret = component_add_typed(dev_priv->drm.dev, &i915_hdcp_ops,
+ I915_COMPONENT_HDCP);
+
if (ret < 0) {
- drm_dbg_kms(&dev_priv->drm, "Failed at component add(%d)\n",
+ drm_dbg_kms(&dev_priv->drm, "Failed at fw component add(%d)\n",
ret);
mutex_lock(&dev_priv->display.hdcp.comp_mutex);
dev_priv->display.hdcp.comp_added = false;
@@ -2350,7 +2363,8 @@ int intel_hdcp_enable(struct intel_connector *connector,
}
if (DISPLAY_VER(dev_priv) >= 12)
- dig_port->hdcp_port_data.fw_tc = intel_get_mei_fw_tc(hdcp->cpu_transcoder);
+ dig_port->hdcp_port_data.hdcp_transcoder =
+ intel_get_hdcp_transcoder(hdcp->cpu_transcoder);
/*
* Considering that HDCP2.2 is more secure than HDCP1.4, If the setup
@@ -2485,7 +2499,10 @@ void intel_hdcp_component_fini(struct drm_i915_private *dev_priv)
dev_priv->display.hdcp.comp_added = false;
mutex_unlock(&dev_priv->display.hdcp.comp_mutex);
- component_del(dev_priv->drm.dev, &i915_hdcp_component_ops);
+ if (intel_hdcp_gsc_cs_required(dev_priv))
+ intel_hdcp_gsc_fini(dev_priv);
+ else
+ component_del(dev_priv->drm.dev, &i915_hdcp_ops);
}
void intel_hdcp_cleanup(struct intel_connector *connector)
diff --git a/drivers/gpu/drm/i915/display/intel_hdcp_gsc.c b/drivers/gpu/drm/i915/display/intel_hdcp_gsc.c
new file mode 100644
index 000000000000..7e52aea6aa17
--- /dev/null
+++ b/drivers/gpu/drm/i915/display/intel_hdcp_gsc.c
@@ -0,0 +1,831 @@
+// SPDX-License-Identifier: MIT
+/*
+ * Copyright 2023, Intel Corporation.
+ */
+
+#include <drm/i915_hdcp_interface.h>
+
+#include "display/intel_hdcp_gsc.h"
+#include "gem/i915_gem_region.h"
+#include "gt/uc/intel_gsc_uc_heci_cmd_submit.h"
+#include "i915_drv.h"
+#include "i915_utils.h"
+
+bool intel_hdcp_gsc_cs_required(struct drm_i915_private *i915)
+{
+ return DISPLAY_VER(i915) >= 14;
+}
+
+static int
+gsc_hdcp_initiate_session(struct device *dev, struct hdcp_port_data *data,
+ struct hdcp2_ake_init *ake_data)
+{
+ struct wired_cmd_initiate_hdcp2_session_in session_init_in = { { 0 } };
+ struct wired_cmd_initiate_hdcp2_session_out
+ session_init_out = { { 0 } };
+ struct drm_i915_private *i915;
+ ssize_t byte;
+
+ if (!dev || !data || !ake_data)
+ return -EINVAL;
+
+ i915 = kdev_to_i915(dev);
+ if (!i915) {
+ dev_err(dev, "DRM not initialized, aborting HDCP.\n");
+ return -ENODEV;
+ }
+
+ session_init_in.header.api_version = HDCP_API_VERSION;
+ session_init_in.header.command_id = WIRED_INITIATE_HDCP2_SESSION;
+ session_init_in.header.status = FW_HDCP_STATUS_SUCCESS;
+ session_init_in.header.buffer_len =
+ WIRED_CMD_BUF_LEN_INITIATE_HDCP2_SESSION_IN;
+
+ session_init_in.port.integrated_port_type = data->port_type;
+ session_init_in.port.physical_port = (u8)data->hdcp_ddi;
+ session_init_in.port.attached_transcoder = (u8)data->hdcp_transcoder;
+ session_init_in.protocol = data->protocol;
+
+ byte = intel_hdcp_gsc_msg_send(i915, (u8 *)&session_init_in,
+ sizeof(session_init_in),
+ (u8 *)&session_init_out,
+ sizeof(session_init_out));
+ if (byte < 0) {
+ drm_dbg_kms(&i915->drm, "intel_hdcp_gsc_msg_send failed. %zd\n", byte);
+ return byte;
+ }
+
+ if (session_init_out.header.status != FW_HDCP_STATUS_SUCCESS) {
+ drm_dbg_kms(&i915->drm, "FW cmd 0x%08X Failed. Status: 0x%X\n",
+ WIRED_INITIATE_HDCP2_SESSION,
+ session_init_out.header.status);
+ return -EIO;
+ }
+
+ ake_data->msg_id = HDCP_2_2_AKE_INIT;
+ ake_data->tx_caps = session_init_out.tx_caps;
+ memcpy(ake_data->r_tx, session_init_out.r_tx, HDCP_2_2_RTX_LEN);
+
+ return 0;
+}
+
+static int
+gsc_hdcp_verify_receiver_cert_prepare_km(struct device *dev,
+ struct hdcp_port_data *data,
+ struct hdcp2_ake_send_cert *rx_cert,
+ bool *km_stored,
+ struct hdcp2_ake_no_stored_km
+ *ek_pub_km,
+ size_t *msg_sz)
+{
+ struct wired_cmd_verify_receiver_cert_in verify_rxcert_in = { { 0 } };
+ struct wired_cmd_verify_receiver_cert_out verify_rxcert_out = { { 0 } };
+ struct drm_i915_private *i915;
+ ssize_t byte;
+
+ if (!dev || !data || !rx_cert || !km_stored || !ek_pub_km || !msg_sz)
+ return -EINVAL;
+
+ i915 = kdev_to_i915(dev);
+ if (!i915) {
+ dev_err(dev, "DRM not initialized, aborting HDCP.\n");
+ return -ENODEV;
+ }
+
+ verify_rxcert_in.header.api_version = HDCP_API_VERSION;
+ verify_rxcert_in.header.command_id = WIRED_VERIFY_RECEIVER_CERT;
+ verify_rxcert_in.header.status = FW_HDCP_STATUS_SUCCESS;
+ verify_rxcert_in.header.buffer_len =
+ WIRED_CMD_BUF_LEN_VERIFY_RECEIVER_CERT_IN;
+
+ verify_rxcert_in.port.integrated_port_type = data->port_type;
+ verify_rxcert_in.port.physical_port = (u8)data->hdcp_ddi;
+ verify_rxcert_in.port.attached_transcoder = (u8)data->hdcp_transcoder;
+
+ verify_rxcert_in.cert_rx = rx_cert->cert_rx;
+ memcpy(verify_rxcert_in.r_rx, &rx_cert->r_rx, HDCP_2_2_RRX_LEN);
+ memcpy(verify_rxcert_in.rx_caps, rx_cert->rx_caps, HDCP_2_2_RXCAPS_LEN);
+
+ byte = intel_hdcp_gsc_msg_send(i915, (u8 *)&verify_rxcert_in,
+ sizeof(verify_rxcert_in),
+ (u8 *)&verify_rxcert_out,
+ sizeof(verify_rxcert_out));
+ if (byte < 0) {
+ drm_dbg_kms(&i915->drm, "intel_hdcp_gsc_msg_send failed: %zd\n", byte);
+ return byte;
+ }
+
+ if (verify_rxcert_out.header.status != FW_HDCP_STATUS_SUCCESS) {
+ drm_dbg_kms(&i915->drm, "FW cmd 0x%08X Failed. Status: 0x%X\n",
+ WIRED_VERIFY_RECEIVER_CERT,
+ verify_rxcert_out.header.status);
+ return -EIO;
+ }
+
+ *km_stored = !!verify_rxcert_out.km_stored;
+ if (verify_rxcert_out.km_stored) {
+ ek_pub_km->msg_id = HDCP_2_2_AKE_STORED_KM;
+ *msg_sz = sizeof(struct hdcp2_ake_stored_km);
+ } else {
+ ek_pub_km->msg_id = HDCP_2_2_AKE_NO_STORED_KM;
+ *msg_sz = sizeof(struct hdcp2_ake_no_stored_km);
+ }
+
+ memcpy(ek_pub_km->e_kpub_km, &verify_rxcert_out.ekm_buff,
+ sizeof(verify_rxcert_out.ekm_buff));
+
+ return 0;
+}
+
+static int
+gsc_hdcp_verify_hprime(struct device *dev, struct hdcp_port_data *data,
+ struct hdcp2_ake_send_hprime *rx_hprime)
+{
+ struct wired_cmd_ake_send_hprime_in send_hprime_in = { { 0 } };
+ struct wired_cmd_ake_send_hprime_out send_hprime_out = { { 0 } };
+ struct drm_i915_private *i915;
+ ssize_t byte;
+
+ if (!dev || !data || !rx_hprime)
+ return -EINVAL;
+
+ i915 = kdev_to_i915(dev);
+ if (!i915) {
+ dev_err(dev, "DRM not initialized, aborting HDCP.\n");
+ return -ENODEV;
+ }
+
+ send_hprime_in.header.api_version = HDCP_API_VERSION;
+ send_hprime_in.header.command_id = WIRED_AKE_SEND_HPRIME;
+ send_hprime_in.header.status = FW_HDCP_STATUS_SUCCESS;
+ send_hprime_in.header.buffer_len = WIRED_CMD_BUF_LEN_AKE_SEND_HPRIME_IN;
+
+ send_hprime_in.port.integrated_port_type = data->port_type;
+ send_hprime_in.port.physical_port = (u8)data->hdcp_ddi;
+ send_hprime_in.port.attached_transcoder = (u8)data->hdcp_transcoder;
+
+ memcpy(send_hprime_in.h_prime, rx_hprime->h_prime,
+ HDCP_2_2_H_PRIME_LEN);
+
+ byte = intel_hdcp_gsc_msg_send(i915, (u8 *)&send_hprime_in,
+ sizeof(send_hprime_in),
+ (u8 *)&send_hprime_out,
+ sizeof(send_hprime_out));
+ if (byte < 0) {
+ drm_dbg_kms(&i915->drm, "intel_hdcp_gsc_msg_send failed. %zd\n", byte);
+ return byte;
+ }
+
+ if (send_hprime_out.header.status != FW_HDCP_STATUS_SUCCESS) {
+ drm_dbg_kms(&i915->drm, "FW cmd 0x%08X Failed. Status: 0x%X\n",
+ WIRED_AKE_SEND_HPRIME, send_hprime_out.header.status);
+ return -EIO;
+ }
+
+ return 0;
+}
+
+static int
+gsc_hdcp_store_pairing_info(struct device *dev, struct hdcp_port_data *data,
+ struct hdcp2_ake_send_pairing_info *pairing_info)
+{
+ struct wired_cmd_ake_send_pairing_info_in pairing_info_in = { { 0 } };
+ struct wired_cmd_ake_send_pairing_info_out pairing_info_out = { { 0 } };
+ struct drm_i915_private *i915;
+ ssize_t byte;
+
+ if (!dev || !data || !pairing_info)
+ return -EINVAL;
+
+ i915 = kdev_to_i915(dev);
+ if (!i915) {
+ dev_err(dev, "DRM not initialized, aborting HDCP.\n");
+ return -ENODEV;
+ }
+
+ pairing_info_in.header.api_version = HDCP_API_VERSION;
+ pairing_info_in.header.command_id = WIRED_AKE_SEND_PAIRING_INFO;
+ pairing_info_in.header.status = FW_HDCP_STATUS_SUCCESS;
+ pairing_info_in.header.buffer_len =
+ WIRED_CMD_BUF_LEN_SEND_PAIRING_INFO_IN;
+
+ pairing_info_in.port.integrated_port_type = data->port_type;
+ pairing_info_in.port.physical_port = (u8)data->hdcp_ddi;
+ pairing_info_in.port.attached_transcoder = (u8)data->hdcp_transcoder;
+
+ memcpy(pairing_info_in.e_kh_km, pairing_info->e_kh_km,
+ HDCP_2_2_E_KH_KM_LEN);
+
+ byte = intel_hdcp_gsc_msg_send(i915, (u8 *)&pairing_info_in,
+ sizeof(pairing_info_in),
+ (u8 *)&pairing_info_out,
+ sizeof(pairing_info_out));
+ if (byte < 0) {
+ drm_dbg_kms(&i915->drm, "intel_hdcp_gsc_msg_send failed. %zd\n", byte);
+ return byte;
+ }
+
+ if (pairing_info_out.header.status != FW_HDCP_STATUS_SUCCESS) {
+ drm_dbg_kms(&i915->drm, "FW cmd 0x%08X failed. Status: 0x%X\n",
+ WIRED_AKE_SEND_PAIRING_INFO,
+ pairing_info_out.header.status);
+ return -EIO;
+ }
+
+ return 0;
+}
+
+static int
+gsc_hdcp_initiate_locality_check(struct device *dev,
+ struct hdcp_port_data *data,
+ struct hdcp2_lc_init *lc_init_data)
+{
+ struct wired_cmd_init_locality_check_in lc_init_in = { { 0 } };
+ struct wired_cmd_init_locality_check_out lc_init_out = { { 0 } };
+ struct drm_i915_private *i915;
+ ssize_t byte;
+
+ if (!dev || !data || !lc_init_data)
+ return -EINVAL;
+
+ i915 = kdev_to_i915(dev);
+ if (!i915) {
+ dev_err(dev, "DRM not initialized, aborting HDCP.\n");
+ return -ENODEV;
+ }
+
+ lc_init_in.header.api_version = HDCP_API_VERSION;
+ lc_init_in.header.command_id = WIRED_INIT_LOCALITY_CHECK;
+ lc_init_in.header.status = FW_HDCP_STATUS_SUCCESS;
+ lc_init_in.header.buffer_len = WIRED_CMD_BUF_LEN_INIT_LOCALITY_CHECK_IN;
+
+ lc_init_in.port.integrated_port_type = data->port_type;
+ lc_init_in.port.physical_port = (u8)data->hdcp_ddi;
+ lc_init_in.port.attached_transcoder = (u8)data->hdcp_transcoder;
+
+ byte = intel_hdcp_gsc_msg_send(i915, (u8 *)&lc_init_in, sizeof(lc_init_in),
+ (u8 *)&lc_init_out, sizeof(lc_init_out));
+ if (byte < 0) {
+ drm_dbg_kms(&i915->drm, "intel_hdcp_gsc_msg_send failed. %zd\n", byte);
+ return byte;
+ }
+
+ if (lc_init_out.header.status != FW_HDCP_STATUS_SUCCESS) {
+ drm_dbg_kms(&i915->drm, "FW cmd 0x%08X Failed. status: 0x%X\n",
+ WIRED_INIT_LOCALITY_CHECK, lc_init_out.header.status);
+ return -EIO;
+ }
+
+ lc_init_data->msg_id = HDCP_2_2_LC_INIT;
+ memcpy(lc_init_data->r_n, lc_init_out.r_n, HDCP_2_2_RN_LEN);
+
+ return 0;
+}
+
+static int
+gsc_hdcp_verify_lprime(struct device *dev, struct hdcp_port_data *data,
+ struct hdcp2_lc_send_lprime *rx_lprime)
+{
+ struct wired_cmd_validate_locality_in verify_lprime_in = { { 0 } };
+ struct wired_cmd_validate_locality_out verify_lprime_out = { { 0 } };
+ struct drm_i915_private *i915;
+ ssize_t byte;
+
+ if (!dev || !data || !rx_lprime)
+ return -EINVAL;
+
+ i915 = kdev_to_i915(dev);
+ if (!i915) {
+ dev_err(dev, "DRM not initialized, aborting HDCP.\n");
+ return -ENODEV;
+ }
+
+ verify_lprime_in.header.api_version = HDCP_API_VERSION;
+ verify_lprime_in.header.command_id = WIRED_VALIDATE_LOCALITY;
+ verify_lprime_in.header.status = FW_HDCP_STATUS_SUCCESS;
+ verify_lprime_in.header.buffer_len =
+ WIRED_CMD_BUF_LEN_VALIDATE_LOCALITY_IN;
+
+ verify_lprime_in.port.integrated_port_type = data->port_type;
+ verify_lprime_in.port.physical_port = (u8)data->hdcp_ddi;
+ verify_lprime_in.port.attached_transcoder = (u8)data->hdcp_transcoder;
+
+ memcpy(verify_lprime_in.l_prime, rx_lprime->l_prime,
+ HDCP_2_2_L_PRIME_LEN);
+
+ byte = intel_hdcp_gsc_msg_send(i915, (u8 *)&verify_lprime_in,
+ sizeof(verify_lprime_in),
+ (u8 *)&verify_lprime_out,
+ sizeof(verify_lprime_out));
+ if (byte < 0) {
+ drm_dbg_kms(&i915->drm, "intel_hdcp_gsc_msg_send failed. %zd\n", byte);
+ return byte;
+ }
+
+ if (verify_lprime_out.header.status != FW_HDCP_STATUS_SUCCESS) {
+ drm_dbg_kms(&i915->drm, "FW cmd 0x%08X failed. status: 0x%X\n",
+ WIRED_VALIDATE_LOCALITY,
+ verify_lprime_out.header.status);
+ return -EIO;
+ }
+
+ return 0;
+}
+
+static int gsc_hdcp_get_session_key(struct device *dev,
+ struct hdcp_port_data *data,
+ struct hdcp2_ske_send_eks *ske_data)
+{
+ struct wired_cmd_get_session_key_in get_skey_in = { { 0 } };
+ struct wired_cmd_get_session_key_out get_skey_out = { { 0 } };
+ struct drm_i915_private *i915;
+ ssize_t byte;
+
+ if (!dev || !data || !ske_data)
+ return -EINVAL;
+
+ i915 = kdev_to_i915(dev);
+ if (!i915) {
+ dev_err(dev, "DRM not initialized, aborting HDCP.\n");
+ return -ENODEV;
+ }
+
+ get_skey_in.header.api_version = HDCP_API_VERSION;
+ get_skey_in.header.command_id = WIRED_GET_SESSION_KEY;
+ get_skey_in.header.status = FW_HDCP_STATUS_SUCCESS;
+ get_skey_in.header.buffer_len = WIRED_CMD_BUF_LEN_GET_SESSION_KEY_IN;
+
+ get_skey_in.port.integrated_port_type = data->port_type;
+ get_skey_in.port.physical_port = (u8)data->hdcp_ddi;
+ get_skey_in.port.attached_transcoder = (u8)data->hdcp_transcoder;
+
+ byte = intel_hdcp_gsc_msg_send(i915, (u8 *)&get_skey_in, sizeof(get_skey_in),
+ (u8 *)&get_skey_out, sizeof(get_skey_out));
+ if (byte < 0) {
+ drm_dbg_kms(&i915->drm, "intel_hdcp_gsc_msg_send failed. %zd\n", byte);
+ return byte;
+ }
+
+ if (get_skey_out.header.status != FW_HDCP_STATUS_SUCCESS) {
+ drm_dbg_kms(&i915->drm, "FW cmd 0x%08X failed. status: 0x%X\n",
+ WIRED_GET_SESSION_KEY, get_skey_out.header.status);
+ return -EIO;
+ }
+
+ ske_data->msg_id = HDCP_2_2_SKE_SEND_EKS;
+ memcpy(ske_data->e_dkey_ks, get_skey_out.e_dkey_ks,
+ HDCP_2_2_E_DKEY_KS_LEN);
+ memcpy(ske_data->riv, get_skey_out.r_iv, HDCP_2_2_RIV_LEN);
+
+ return 0;
+}
+
+static int
+gsc_hdcp_repeater_check_flow_prepare_ack(struct device *dev,
+ struct hdcp_port_data *data,
+ struct hdcp2_rep_send_receiverid_list
+ *rep_topology,
+ struct hdcp2_rep_send_ack
+ *rep_send_ack)
+{
+ struct wired_cmd_verify_repeater_in verify_repeater_in = { { 0 } };
+ struct wired_cmd_verify_repeater_out verify_repeater_out = { { 0 } };
+ struct drm_i915_private *i915;
+ ssize_t byte;
+
+ if (!dev || !rep_topology || !rep_send_ack || !data)
+ return -EINVAL;
+
+ i915 = kdev_to_i915(dev);
+ if (!i915) {
+ dev_err(dev, "DRM not initialized, aborting HDCP.\n");
+ return -ENODEV;
+ }
+
+ verify_repeater_in.header.api_version = HDCP_API_VERSION;
+ verify_repeater_in.header.command_id = WIRED_VERIFY_REPEATER;
+ verify_repeater_in.header.status = FW_HDCP_STATUS_SUCCESS;
+ verify_repeater_in.header.buffer_len =
+ WIRED_CMD_BUF_LEN_VERIFY_REPEATER_IN;
+
+ verify_repeater_in.port.integrated_port_type = data->port_type;
+ verify_repeater_in.port.physical_port = (u8)data->hdcp_ddi;
+ verify_repeater_in.port.attached_transcoder = (u8)data->hdcp_transcoder;
+
+ memcpy(verify_repeater_in.rx_info, rep_topology->rx_info,
+ HDCP_2_2_RXINFO_LEN);
+ memcpy(verify_repeater_in.seq_num_v, rep_topology->seq_num_v,
+ HDCP_2_2_SEQ_NUM_LEN);
+ memcpy(verify_repeater_in.v_prime, rep_topology->v_prime,
+ HDCP_2_2_V_PRIME_HALF_LEN);
+ memcpy(verify_repeater_in.receiver_ids, rep_topology->receiver_ids,
+ HDCP_2_2_RECEIVER_IDS_MAX_LEN);
+
+ byte = intel_hdcp_gsc_msg_send(i915, (u8 *)&verify_repeater_in,
+ sizeof(verify_repeater_in),
+ (u8 *)&verify_repeater_out,
+ sizeof(verify_repeater_out));
+ if (byte < 0) {
+ drm_dbg_kms(&i915->drm, "intel_hdcp_gsc_msg_send failed. %zd\n", byte);
+ return byte;
+ }
+
+ if (verify_repeater_out.header.status != FW_HDCP_STATUS_SUCCESS) {
+ drm_dbg_kms(&i915->drm, "FW cmd 0x%08X failed. status: 0x%X\n",
+ WIRED_VERIFY_REPEATER,
+ verify_repeater_out.header.status);
+ return -EIO;
+ }
+
+ memcpy(rep_send_ack->v, verify_repeater_out.v,
+ HDCP_2_2_V_PRIME_HALF_LEN);
+ rep_send_ack->msg_id = HDCP_2_2_REP_SEND_ACK;
+
+ return 0;
+}
+
+static int gsc_hdcp_verify_mprime(struct device *dev,
+ struct hdcp_port_data *data,
+ struct hdcp2_rep_stream_ready *stream_ready)
+{
+ struct wired_cmd_repeater_auth_stream_req_in *verify_mprime_in;
+ struct wired_cmd_repeater_auth_stream_req_out
+ verify_mprime_out = { { 0 } };
+ struct drm_i915_private *i915;
+ ssize_t byte;
+ size_t cmd_size;
+
+ if (!dev || !stream_ready || !data)
+ return -EINVAL;
+
+ i915 = kdev_to_i915(dev);
+ if (!i915) {
+ dev_err(dev, "DRM not initialized, aborting HDCP.\n");
+ return -ENODEV;
+ }
+
+ cmd_size = struct_size(verify_mprime_in, streams, data->k);
+ if (cmd_size == SIZE_MAX)
+ return -EINVAL;
+
+ verify_mprime_in = kzalloc(cmd_size, GFP_KERNEL);
+ if (!verify_mprime_in)
+ return -ENOMEM;
+
+ verify_mprime_in->header.api_version = HDCP_API_VERSION;
+ verify_mprime_in->header.command_id = WIRED_REPEATER_AUTH_STREAM_REQ;
+ verify_mprime_in->header.status = FW_HDCP_STATUS_SUCCESS;
+ verify_mprime_in->header.buffer_len = cmd_size - sizeof(verify_mprime_in->header);
+
+ verify_mprime_in->port.integrated_port_type = data->port_type;
+ verify_mprime_in->port.physical_port = (u8)data->hdcp_ddi;
+ verify_mprime_in->port.attached_transcoder = (u8)data->hdcp_transcoder;
+
+ memcpy(verify_mprime_in->m_prime, stream_ready->m_prime, HDCP_2_2_MPRIME_LEN);
+ drm_hdcp_cpu_to_be24(verify_mprime_in->seq_num_m, data->seq_num_m);
+
+ memcpy(verify_mprime_in->streams, data->streams,
+ array_size(data->k, sizeof(*data->streams)));
+
+ verify_mprime_in->k = cpu_to_be16(data->k);
+
+ byte = intel_hdcp_gsc_msg_send(i915, (u8 *)verify_mprime_in, cmd_size,
+ (u8 *)&verify_mprime_out,
+ sizeof(verify_mprime_out));
+ kfree(verify_mprime_in);
+ if (byte < 0) {
+ drm_dbg_kms(&i915->drm, "intel_hdcp_gsc_msg_send failed. %zd\n", byte);
+ return byte;
+ }
+
+ if (verify_mprime_out.header.status != FW_HDCP_STATUS_SUCCESS) {
+ drm_dbg_kms(&i915->drm, "FW cmd 0x%08X failed. status: 0x%X\n",
+ WIRED_REPEATER_AUTH_STREAM_REQ,
+ verify_mprime_out.header.status);
+ return -EIO;
+ }
+
+ return 0;
+}
+
+static int gsc_hdcp_enable_authentication(struct device *dev,
+ struct hdcp_port_data *data)
+{
+ struct wired_cmd_enable_auth_in enable_auth_in = { { 0 } };
+ struct wired_cmd_enable_auth_out enable_auth_out = { { 0 } };
+ struct drm_i915_private *i915;
+ ssize_t byte;
+
+ if (!dev || !data)
+ return -EINVAL;
+
+ i915 = kdev_to_i915(dev);
+ if (!i915) {
+ dev_err(dev, "DRM not initialized, aborting HDCP.\n");
+ return -ENODEV;
+ }
+
+ enable_auth_in.header.api_version = HDCP_API_VERSION;
+ enable_auth_in.header.command_id = WIRED_ENABLE_AUTH;
+ enable_auth_in.header.status = FW_HDCP_STATUS_SUCCESS;
+ enable_auth_in.header.buffer_len = WIRED_CMD_BUF_LEN_ENABLE_AUTH_IN;
+
+ enable_auth_in.port.integrated_port_type = data->port_type;
+ enable_auth_in.port.physical_port = (u8)data->hdcp_ddi;
+ enable_auth_in.port.attached_transcoder = (u8)data->hdcp_transcoder;
+ enable_auth_in.stream_type = data->streams[0].stream_type;
+
+ byte = intel_hdcp_gsc_msg_send(i915, (u8 *)&enable_auth_in,
+ sizeof(enable_auth_in),
+ (u8 *)&enable_auth_out,
+ sizeof(enable_auth_out));
+ if (byte < 0) {
+ drm_dbg_kms(&i915->drm, "intel_hdcp_gsc_msg_send failed. %zd\n", byte);
+ return byte;
+ }
+
+ if (enable_auth_out.header.status != FW_HDCP_STATUS_SUCCESS) {
+ drm_dbg_kms(&i915->drm, "FW cmd 0x%08X failed. status: 0x%X\n",
+ WIRED_ENABLE_AUTH, enable_auth_out.header.status);
+ return -EIO;
+ }
+
+ return 0;
+}
+
+static int
+gsc_hdcp_close_session(struct device *dev, struct hdcp_port_data *data)
+{
+ struct wired_cmd_close_session_in session_close_in = { { 0 } };
+ struct wired_cmd_close_session_out session_close_out = { { 0 } };
+ struct drm_i915_private *i915;
+ ssize_t byte;
+
+ if (!dev || !data)
+ return -EINVAL;
+
+ i915 = kdev_to_i915(dev);
+ if (!i915) {
+ dev_err(dev, "DRM not initialized, aborting HDCP.\n");
+ return -ENODEV;
+ }
+
+ session_close_in.header.api_version = HDCP_API_VERSION;
+ session_close_in.header.command_id = WIRED_CLOSE_SESSION;
+ session_close_in.header.status = FW_HDCP_STATUS_SUCCESS;
+ session_close_in.header.buffer_len =
+ WIRED_CMD_BUF_LEN_CLOSE_SESSION_IN;
+
+ session_close_in.port.integrated_port_type = data->port_type;
+ session_close_in.port.physical_port = (u8)data->hdcp_ddi;
+ session_close_in.port.attached_transcoder = (u8)data->hdcp_transcoder;
+
+ byte = intel_hdcp_gsc_msg_send(i915, (u8 *)&session_close_in,
+ sizeof(session_close_in),
+ (u8 *)&session_close_out,
+ sizeof(session_close_out));
+ if (byte < 0) {
+ drm_dbg_kms(&i915->drm, "intel_hdcp_gsc_msg_send failed. %zd\n", byte);
+ return byte;
+ }
+
+ if (session_close_out.header.status != FW_HDCP_STATUS_SUCCESS) {
+ drm_dbg_kms(&i915->drm, "Session Close Failed. status: 0x%X\n",
+ session_close_out.header.status);
+ return -EIO;
+ }
+
+ return 0;
+}
+
+static const struct i915_hdcp_ops gsc_hdcp_ops = {
+ .initiate_hdcp2_session = gsc_hdcp_initiate_session,
+ .verify_receiver_cert_prepare_km =
+ gsc_hdcp_verify_receiver_cert_prepare_km,
+ .verify_hprime = gsc_hdcp_verify_hprime,
+ .store_pairing_info = gsc_hdcp_store_pairing_info,
+ .initiate_locality_check = gsc_hdcp_initiate_locality_check,
+ .verify_lprime = gsc_hdcp_verify_lprime,
+ .get_session_key = gsc_hdcp_get_session_key,
+ .repeater_check_flow_prepare_ack =
+ gsc_hdcp_repeater_check_flow_prepare_ack,
+ .verify_mprime = gsc_hdcp_verify_mprime,
+ .enable_hdcp_authentication = gsc_hdcp_enable_authentication,
+ .close_hdcp_session = gsc_hdcp_close_session,
+};
+
+/*This function helps allocate memory for the command that we will send to gsc cs */
+static int intel_hdcp_gsc_initialize_message(struct drm_i915_private *i915,
+ struct intel_hdcp_gsc_message *hdcp_message)
+{
+ struct intel_gt *gt = i915->media_gt;
+ struct drm_i915_gem_object *obj = NULL;
+ struct i915_vma *vma = NULL;
+ void *cmd;
+ int err;
+
+ /* allocate object of one page for HDCP command memory and store it */
+ obj = i915_gem_object_create_shmem(i915, PAGE_SIZE);
+
+ if (IS_ERR(obj)) {
+ drm_err(&i915->drm, "Failed to allocate HDCP streaming command!\n");
+ return PTR_ERR(obj);
+ }
+
+ cmd = i915_gem_object_pin_map_unlocked(obj, i915_coherent_map_type(i915, obj, true));
+ if (IS_ERR(cmd)) {
+ drm_err(&i915->drm, "Failed to map gsc message page!\n");
+ err = PTR_ERR(cmd);
+ goto out_unpin;
+ }
+
+ vma = i915_vma_instance(obj, &gt->ggtt->vm, NULL);
+ if (IS_ERR(vma)) {
+ err = PTR_ERR(vma);
+ goto out_unmap;
+ }
+
+ err = i915_vma_pin(vma, 0, 0, PIN_GLOBAL);
+ if (err)
+ goto out_unmap;
+
+ memset(cmd, 0, obj->base.size);
+
+ hdcp_message->hdcp_cmd = cmd;
+ hdcp_message->vma = vma;
+
+ return 0;
+
+out_unmap:
+ i915_gem_object_unpin_map(obj);
+out_unpin:
+ i915_gem_object_put(obj);
+ return err;
+}
+
+static int intel_hdcp_gsc_hdcp2_init(struct drm_i915_private *i915)
+{
+ struct intel_hdcp_gsc_message *hdcp_message;
+ int ret;
+
+ hdcp_message = kzalloc(sizeof(*hdcp_message), GFP_KERNEL);
+
+ if (!hdcp_message)
+ return -ENOMEM;
+
+ /*
+ * NOTE: No need to lock the comp mutex here as it is already
+ * going to be taken before this function called
+ */
+ i915->display.hdcp.hdcp_message = hdcp_message;
+ ret = intel_hdcp_gsc_initialize_message(i915, hdcp_message);
+
+ if (ret)
+ drm_err(&i915->drm, "Could not initialize hdcp_message\n");
+
+ return ret;
+}
+
+static void intel_hdcp_gsc_free_message(struct drm_i915_private *i915)
+{
+ struct intel_hdcp_gsc_message *hdcp_message =
+ i915->display.hdcp.hdcp_message;
+
+ i915_vma_unpin_and_release(&hdcp_message->vma, I915_VMA_RELEASE_MAP);
+ kfree(hdcp_message);
+}
+
+int intel_hdcp_gsc_init(struct drm_i915_private *i915)
+{
+ struct i915_hdcp_master *data;
+ int ret;
+
+ data = kzalloc(sizeof(struct i915_hdcp_master), GFP_KERNEL);
+ if (!data)
+ return -ENOMEM;
+
+ mutex_lock(&i915->display.hdcp.comp_mutex);
+ i915->display.hdcp.master = data;
+ i915->display.hdcp.master->hdcp_dev = i915->drm.dev;
+ i915->display.hdcp.master->ops = &gsc_hdcp_ops;
+ ret = intel_hdcp_gsc_hdcp2_init(i915);
+ mutex_unlock(&i915->display.hdcp.comp_mutex);
+
+ return ret;
+}
+
+void intel_hdcp_gsc_fini(struct drm_i915_private *i915)
+{
+ intel_hdcp_gsc_free_message(i915);
+ kfree(i915->display.hdcp.master);
+}
+
+static int intel_gsc_send_sync(struct drm_i915_private *i915,
+ struct intel_gsc_mtl_header *header, u64 addr,
+ size_t msg_out_len)
+{
+ struct intel_gt *gt = i915->media_gt;
+ int ret;
+
+ header->flags = 0;
+ ret = intel_gsc_uc_heci_cmd_submit_packet(&gt->uc.gsc, addr,
+ header->message_size,
+ addr,
+ msg_out_len + sizeof(*header));
+ if (ret) {
+ drm_err(&i915->drm, "failed to send gsc HDCP msg (%d)\n", ret);
+ return ret;
+ }
+
+ /*
+ * Checking validity marker for memory sanity
+ */
+ if (header->validity_marker != GSC_HECI_VALIDITY_MARKER) {
+ drm_err(&i915->drm, "invalid validity marker\n");
+ return -EINVAL;
+ }
+
+ if (header->status != 0) {
+ drm_err(&i915->drm, "header status indicates error %d\n",
+ header->status);
+ return -EINVAL;
+ }
+
+ if (header->flags & GSC_OUTFLAG_MSG_PENDING)
+ return -EAGAIN;
+
+ return 0;
+}
+
+/*
+ * This function can now be used for sending requests and will also handle
+ * receipt of reply messages hence no different function of message retrieval
+ * is required. We will initialize intel_hdcp_gsc_message structure then add
+ * gsc cs memory header as stated in specs after which the normal HDCP payload
+ * will follow
+ */
+ssize_t intel_hdcp_gsc_msg_send(struct drm_i915_private *i915, u8 *msg_in,
+ size_t msg_in_len, u8 *msg_out,
+ size_t msg_out_len)
+{
+ struct intel_gt *gt = i915->media_gt;
+ struct intel_gsc_mtl_header *header;
+ const size_t max_msg_size = PAGE_SIZE - sizeof(*header);
+ struct intel_hdcp_gsc_message *hdcp_message;
+ u64 addr, host_session_id;
+ u32 reply_size, msg_size;
+ int ret, tries = 0;
+
+ if (!intel_uc_uses_gsc_uc(&gt->uc))
+ return -ENODEV;
+
+ if (msg_in_len > max_msg_size || msg_out_len > max_msg_size)
+ return -ENOSPC;
+
+ hdcp_message = i915->display.hdcp.hdcp_message;
+ header = hdcp_message->hdcp_cmd;
+ addr = i915_ggtt_offset(hdcp_message->vma);
+
+ msg_size = msg_in_len + sizeof(*header);
+ memset(header, 0, msg_size);
+ get_random_bytes(&host_session_id, sizeof(u64));
+ intel_gsc_uc_heci_cmd_emit_mtl_header(header, HECI_MEADDRESS_HDCP,
+ msg_size, host_session_id);
+ memcpy(hdcp_message->hdcp_cmd + sizeof(*header), msg_in, msg_in_len);
+
+ /*
+ * Keep sending request in case the pending bit is set no need to add
+ * message handle as we are using same address hence loc. of header is
+ * same and it will contain the message handle. we will send the message
+ * 20 times each message 50 ms apart
+ */
+ do {
+ ret = intel_gsc_send_sync(i915, header, addr, msg_out_len);
+
+ /* Only try again if gsc says so */
+ if (ret != -EAGAIN)
+ break;
+
+ msleep(50);
+
+ } while (++tries < 20);
+
+ if (ret)
+ goto err;
+
+ /* we use the same mem for the reply, so header is in the same loc */
+ reply_size = header->message_size - sizeof(*header);
+ if (reply_size > msg_out_len) {
+ drm_warn(&i915->drm, "caller with insufficient HDCP reply size %u (%d)\n",
+ reply_size, (u32)msg_out_len);
+ reply_size = msg_out_len;
+ } else if (reply_size != msg_out_len) {
+ drm_dbg_kms(&i915->drm, "caller unexpected HCDP reply size %u (%d)\n",
+ reply_size, (u32)msg_out_len);
+ }
+
+ memcpy(msg_out, hdcp_message->hdcp_cmd + sizeof(*header), msg_out_len);
+
+err:
+ return ret;
+}
diff --git a/drivers/gpu/drm/i915/display/intel_hdcp_gsc.h b/drivers/gpu/drm/i915/display/intel_hdcp_gsc.h
new file mode 100644
index 000000000000..5cc9fd2e88f6
--- /dev/null
+++ b/drivers/gpu/drm/i915/display/intel_hdcp_gsc.h
@@ -0,0 +1,26 @@
+/* SPDX-License-Identifier: MIT */
+/*
+ * Copyright © 2023 Intel Corporation
+ */
+
+#ifndef __INTEL_HDCP_GSC_H__
+#define __INTEL_HDCP_GSC_H__
+
+#include <linux/err.h>
+#include <linux/types.h>
+
+struct drm_i915_private;
+
+struct intel_hdcp_gsc_message {
+ struct i915_vma *vma;
+ void *hdcp_cmd;
+};
+
+bool intel_hdcp_gsc_cs_required(struct drm_i915_private *i915);
+ssize_t intel_hdcp_gsc_msg_send(struct drm_i915_private *i915, u8 *msg_in,
+ size_t msg_in_len, u8 *msg_out,
+ size_t msg_out_len);
+int intel_hdcp_gsc_init(struct drm_i915_private *i915);
+void intel_hdcp_gsc_fini(struct drm_i915_private *i915);
+
+#endif /* __INTEL_HDCP_GCS_H__ */
diff --git a/drivers/gpu/drm/i915/display/intel_hdcp_regs.h b/drivers/gpu/drm/i915/display/intel_hdcp_regs.h
index 2a3733e8966c..8023c85c7fa0 100644
--- a/drivers/gpu/drm/i915/display/intel_hdcp_regs.h
+++ b/drivers/gpu/drm/i915/display/intel_hdcp_regs.h
@@ -6,7 +6,7 @@
#ifndef __INTEL_HDCP_REGS_H__
#define __INTEL_HDCP_REGS_H__
-#include "i915_reg_defs.h"
+#include "intel_display_reg_defs.h"
/* HDCP Key Registers */
#define HDCP_KEY_CONF _MMIO(0x66c00)
diff --git a/drivers/gpu/drm/i915/display/intel_hdmi.c b/drivers/gpu/drm/i915/display/intel_hdmi.c
index 7816b2a33fee..a690a5616506 100644
--- a/drivers/gpu/drm/i915/display/intel_hdmi.c
+++ b/drivers/gpu/drm/i915/display/intel_hdmi.c
@@ -42,7 +42,9 @@
#include "i915_debugfs.h"
#include "i915_drv.h"
+#include "i915_reg.h"
#include "intel_atomic.h"
+#include "intel_audio.h"
#include "intel_connector.h"
#include "intel_ddi.h"
#include "intel_de.h"
@@ -236,15 +238,11 @@ static void g4x_read_infoframe(struct intel_encoder *encoder,
void *frame, ssize_t len)
{
struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
- u32 val, *data = frame;
+ u32 *data = frame;
int i;
- val = intel_de_read(dev_priv, VIDEO_DIP_CTL);
-
- val &= ~(VIDEO_DIP_SELECT_MASK | 0xf); /* clear DIP data offset */
- val |= g4x_infoframe_index(type);
-
- intel_de_write(dev_priv, VIDEO_DIP_CTL, val);
+ intel_de_rmw(dev_priv, VIDEO_DIP_CTL,
+ VIDEO_DIP_SELECT_MASK | 0xf, g4x_infoframe_index(type));
for (i = 0; i < len; i += 4)
*data++ = intel_de_read(dev_priv, VIDEO_DIP_DATA);
@@ -312,15 +310,11 @@ static void ibx_read_infoframe(struct intel_encoder *encoder,
{
struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
- u32 val, *data = frame;
+ u32 *data = frame;
int i;
- val = intel_de_read(dev_priv, TVIDEO_DIP_CTL(crtc->pipe));
-
- val &= ~(VIDEO_DIP_SELECT_MASK | 0xf); /* clear DIP data offset */
- val |= g4x_infoframe_index(type);
-
- intel_de_write(dev_priv, TVIDEO_DIP_CTL(crtc->pipe), val);
+ intel_de_rmw(dev_priv, TVIDEO_DIP_CTL(crtc->pipe),
+ VIDEO_DIP_SELECT_MASK | 0xf, g4x_infoframe_index(type));
for (i = 0; i < len; i += 4)
*data++ = intel_de_read(dev_priv, TVIDEO_DIP_DATA(crtc->pipe));
@@ -394,15 +388,11 @@ static void cpt_read_infoframe(struct intel_encoder *encoder,
{
struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
- u32 val, *data = frame;
+ u32 *data = frame;
int i;
- val = intel_de_read(dev_priv, TVIDEO_DIP_CTL(crtc->pipe));
-
- val &= ~(VIDEO_DIP_SELECT_MASK | 0xf); /* clear DIP data offset */
- val |= g4x_infoframe_index(type);
-
- intel_de_write(dev_priv, TVIDEO_DIP_CTL(crtc->pipe), val);
+ intel_de_rmw(dev_priv, TVIDEO_DIP_CTL(crtc->pipe),
+ VIDEO_DIP_SELECT_MASK | 0xf, g4x_infoframe_index(type));
for (i = 0; i < len; i += 4)
*data++ = intel_de_read(dev_priv, TVIDEO_DIP_DATA(crtc->pipe));
@@ -470,15 +460,11 @@ static void vlv_read_infoframe(struct intel_encoder *encoder,
{
struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
- u32 val, *data = frame;
+ u32 *data = frame;
int i;
- val = intel_de_read(dev_priv, VLV_TVIDEO_DIP_CTL(crtc->pipe));
-
- val &= ~(VIDEO_DIP_SELECT_MASK | 0xf); /* clear DIP data offset */
- val |= g4x_infoframe_index(type);
-
- intel_de_write(dev_priv, VLV_TVIDEO_DIP_CTL(crtc->pipe), val);
+ intel_de_rmw(dev_priv, VLV_TVIDEO_DIP_CTL(crtc->pipe),
+ VIDEO_DIP_SELECT_MASK | 0xf, g4x_infoframe_index(type));
for (i = 0; i < len; i += 4)
*data++ = intel_de_read(dev_priv,
@@ -536,8 +522,7 @@ void hsw_write_infoframe(struct intel_encoder *encoder,
0);
/* Wa_14013475917 */
- if (DISPLAY_VER(dev_priv) == 13 && crtc_state->has_psr &&
- type == DP_SDP_VSC)
+ if (IS_DISPLAY_VER(dev_priv, 13, 14) && crtc_state->has_psr && type == DP_SDP_VSC)
return;
val |= hsw_infoframe_enable(type);
@@ -766,6 +751,7 @@ intel_hdmi_compute_spd_infoframe(struct intel_encoder *encoder,
struct intel_crtc_state *crtc_state,
struct drm_connector_state *conn_state)
{
+ struct drm_i915_private *i915 = to_i915(encoder->base.dev);
struct hdmi_spd_infoframe *frame = &crtc_state->infoframes.spd.spd;
int ret;
@@ -775,7 +761,11 @@ intel_hdmi_compute_spd_infoframe(struct intel_encoder *encoder,
crtc_state->infoframes.enable |=
intel_hdmi_infoframe_enable(HDMI_INFOFRAME_TYPE_SPD);
- ret = hdmi_spd_infoframe_init(frame, "Intel", "Integrated gfx");
+ if (IS_DGFX(i915))
+ ret = hdmi_spd_infoframe_init(frame, "Intel", "Discrete gfx");
+ else
+ ret = hdmi_spd_infoframe_init(frame, "Intel", "Integrated gfx");
+
if (drm_WARN_ON(encoder->base.dev, ret))
return false;
@@ -1789,7 +1779,7 @@ static int intel_hdmi_source_max_tmds_clock(struct intel_encoder *encoder)
else
max_tmds_clock = 165000;
- vbt_max_tmds_clock = intel_bios_max_tmds_clock(encoder);
+ vbt_max_tmds_clock = intel_bios_hdmi_max_tmds_clock(encoder->devdata);
if (vbt_max_tmds_clock)
max_tmds_clock = min(max_tmds_clock, vbt_max_tmds_clock);
@@ -1987,9 +1977,6 @@ intel_hdmi_mode_valid(struct drm_connector *connector,
bool has_hdmi_sink = intel_has_hdmi_sink(hdmi, connector->state);
bool ycbcr_420_only;
- if (mode->flags & DRM_MODE_FLAG_DBLSCAN)
- return MODE_NO_DBLESCAN;
-
if ((mode->flags & DRM_MODE_FLAG_3D_MASK) == DRM_MODE_FLAG_3D_FRAME_PACKING)
clock *= 2;
@@ -2057,13 +2044,6 @@ static bool hdmi_bpc_possible(const struct intel_crtc_state *crtc_state, int bpc
if (!intel_hdmi_source_bpc_possible(dev_priv, bpc))
return false;
- /*
- * HDMI deep color affects the clocks, so it's only possible
- * when not cloning with other encoder types.
- */
- if (bpc > 8 && crtc_state->output_types != BIT(INTEL_OUTPUT_HDMI))
- return false;
-
/* Display Wa_1405510057:icl,ehl */
if (intel_hdmi_is_ycbcr420(crtc_state) &&
bpc == 10 && DISPLAY_VER(dev_priv) == 11 &&
@@ -2156,7 +2136,7 @@ bool intel_hdmi_limited_color_range(const struct intel_crtc_state *crtc_state,
* Our YCbCr output is always limited range.
* crtc_state->limited_color_range only applies to RGB,
* and it must never be set for YCbCr or we risk setting
- * some conflicting bits in PIPECONF which will mess up
+ * some conflicting bits in TRANSCONF which will mess up
* the colors on the monitor.
*/
if (crtc_state->output_format != INTEL_OUTPUT_FORMAT_RGB)
@@ -2190,9 +2170,13 @@ static bool intel_hdmi_has_audio(struct intel_encoder *encoder,
}
static enum intel_output_format
-intel_hdmi_output_format(struct intel_connector *connector,
+intel_hdmi_output_format(const struct intel_crtc_state *crtc_state,
+ struct intel_connector *connector,
bool ycbcr_420_output)
{
+ if (!crtc_state->has_hdmi_sink)
+ return INTEL_OUTPUT_FORMAT_RGB;
+
if (connector->base.ycbcr_420_allowed && ycbcr_420_output)
return INTEL_OUTPUT_FORMAT_YCBCR420;
else
@@ -2211,7 +2195,8 @@ static int intel_hdmi_compute_output_format(struct intel_encoder *encoder,
bool ycbcr_420_only = drm_mode_is_420_only(info, adjusted_mode);
int ret;
- crtc_state->output_format = intel_hdmi_output_format(connector, ycbcr_420_only);
+ crtc_state->output_format =
+ intel_hdmi_output_format(crtc_state, connector, ycbcr_420_only);
if (ycbcr_420_only && !intel_hdmi_is_ycbcr420(crtc_state)) {
drm_dbg_kms(&i915->drm,
@@ -2226,13 +2211,38 @@ static int intel_hdmi_compute_output_format(struct intel_encoder *encoder,
!drm_mode_is_420_also(info, adjusted_mode))
return ret;
- crtc_state->output_format = intel_hdmi_output_format(connector, true);
+ crtc_state->output_format = intel_hdmi_output_format(crtc_state, connector, true);
ret = intel_hdmi_compute_clock(encoder, crtc_state, respect_downstream_limits);
}
return ret;
}
+static bool intel_hdmi_is_cloned(const struct intel_crtc_state *crtc_state)
+{
+ return crtc_state->uapi.encoder_mask &&
+ !is_power_of_2(crtc_state->uapi.encoder_mask);
+}
+
+static bool source_supports_scrambling(struct intel_encoder *encoder)
+{
+ /*
+ * Gen 10+ support HDMI 2.0 : the max tmds clock is 594MHz, and
+ * scrambling is supported.
+ * But there seem to be cases where certain platforms that support
+ * HDMI 2.0, have an HDMI1.4 retimer chip, and the max tmds clock is
+ * capped by VBT to less than 340MHz.
+ *
+ * In such cases when an HDMI2.0 sink is connected, it creates a
+ * problem : the platform and the sink both support scrambling but the
+ * HDMI 1.4 retimer chip doesn't.
+ *
+ * So go for scrambling, based on the max tmds clock taking into account,
+ * restrictions coming from VBT.
+ */
+ return intel_hdmi_source_max_tmds_clock(encoder) > 340000;
+}
+
int intel_hdmi_compute_config(struct intel_encoder *encoder,
struct intel_crtc_state *pipe_config,
struct drm_connector_state *conn_state)
@@ -2247,9 +2257,14 @@ int intel_hdmi_compute_config(struct intel_encoder *encoder,
if (adjusted_mode->flags & DRM_MODE_FLAG_DBLSCAN)
return -EINVAL;
+ if (!connector->interlace_allowed &&
+ adjusted_mode->flags & DRM_MODE_FLAG_INTERLACE)
+ return -EINVAL;
+
pipe_config->output_format = INTEL_OUTPUT_FORMAT_RGB;
- pipe_config->has_hdmi_sink = intel_has_hdmi_sink(intel_hdmi,
- conn_state);
+ pipe_config->has_hdmi_sink =
+ intel_has_hdmi_sink(intel_hdmi, conn_state) &&
+ !intel_hdmi_is_cloned(pipe_config);
if (pipe_config->has_hdmi_sink)
pipe_config->has_infoframe = true;
@@ -2257,11 +2272,9 @@ int intel_hdmi_compute_config(struct intel_encoder *encoder,
if (adjusted_mode->flags & DRM_MODE_FLAG_DBLCLK)
pipe_config->pixel_multiplier = 2;
- if (HAS_PCH_SPLIT(dev_priv) && !HAS_DDI(dev_priv))
- pipe_config->has_pch_encoder = true;
-
pipe_config->has_audio =
- intel_hdmi_has_audio(encoder, pipe_config, conn_state);
+ intel_hdmi_has_audio(encoder, pipe_config, conn_state) &&
+ intel_audio_compute_config(encoder, pipe_config, conn_state);
/*
* Try to respect downstream TMDS clock limits first, if
@@ -2292,7 +2305,7 @@ int intel_hdmi_compute_config(struct intel_encoder *encoder,
pipe_config->lane_count = 4;
- if (scdc->scrambling.supported && DISPLAY_VER(dev_priv) >= 10) {
+ if (scdc->scrambling.supported && source_supports_scrambling(encoder)) {
if (scdc->scrambling.low_rates)
pipe_config->hdmi_scrambling = true;
@@ -2350,12 +2363,12 @@ intel_hdmi_unset_edid(struct drm_connector *connector)
intel_hdmi->dp_dual_mode.type = DRM_DP_DUAL_MODE_NONE;
intel_hdmi->dp_dual_mode.max_tmds_clock = 0;
- kfree(to_intel_connector(connector)->detect_edid);
+ drm_edid_free(to_intel_connector(connector)->detect_edid);
to_intel_connector(connector)->detect_edid = NULL;
}
static void
-intel_hdmi_dp_dual_mode_detect(struct drm_connector *connector, bool has_edid)
+intel_hdmi_dp_dual_mode_detect(struct drm_connector *connector)
{
struct drm_i915_private *dev_priv = to_i915(connector->dev);
struct intel_hdmi *hdmi = intel_attached_hdmi(to_intel_connector(connector));
@@ -2371,16 +2384,10 @@ intel_hdmi_dp_dual_mode_detect(struct drm_connector *connector, bool has_edid)
* CONFIG1 pin, but no such luck on our hardware.
*
* The only method left to us is to check the VBT to see
- * if the port is a dual mode capable DP port. But let's
- * only do that when we sucesfully read the EDID, to avoid
- * confusing log messages about DP dual mode adaptors when
- * there's nothing connected to the port.
+ * if the port is a dual mode capable DP port.
*/
if (type == DRM_DP_DUAL_MODE_UNKNOWN) {
- /* An overridden EDID imply that we want this port for testing.
- * Make sure not to set limits for that port.
- */
- if (has_edid && !connector->override_edid &&
+ if (!connector->force &&
intel_bios_is_port_dp_dual_mode(dev_priv, port)) {
drm_dbg_kms(&dev_priv->drm,
"Assuming DP dual mode adaptor presence based on VBT\n");
@@ -2417,7 +2424,8 @@ intel_hdmi_set_edid(struct drm_connector *connector)
struct drm_i915_private *dev_priv = to_i915(connector->dev);
struct intel_hdmi *intel_hdmi = intel_attached_hdmi(to_intel_connector(connector));
intel_wakeref_t wakeref;
- struct edid *edid;
+ const struct drm_edid *drm_edid;
+ const struct edid *edid;
bool connected = false;
struct i2c_adapter *i2c;
@@ -2425,28 +2433,34 @@ intel_hdmi_set_edid(struct drm_connector *connector)
i2c = intel_gmbus_get_adapter(dev_priv, intel_hdmi->ddc_bus);
- edid = drm_get_edid(connector, i2c);
+ drm_edid = drm_edid_read_ddc(connector, i2c);
- if (!edid && !intel_gmbus_is_forced_bit(i2c)) {
+ if (!drm_edid && !intel_gmbus_is_forced_bit(i2c)) {
drm_dbg_kms(&dev_priv->drm,
"HDMI GMBUS EDID read failed, retry using GPIO bit-banging\n");
intel_gmbus_force_bit(i2c, true);
- edid = drm_get_edid(connector, i2c);
+ drm_edid = drm_edid_read_ddc(connector, i2c);
intel_gmbus_force_bit(i2c, false);
}
- intel_hdmi_dp_dual_mode_detect(connector, edid != NULL);
+ /* Below we depend on display info having been updated */
+ drm_edid_connector_update(connector, drm_edid);
- intel_display_power_put(dev_priv, POWER_DOMAIN_GMBUS, wakeref);
+ to_intel_connector(connector)->detect_edid = drm_edid;
- to_intel_connector(connector)->detect_edid = edid;
+ /* FIXME: Get rid of drm_edid_raw() */
+ edid = drm_edid_raw(drm_edid);
if (edid && edid->input & DRM_EDID_INPUT_DIGITAL) {
intel_hdmi->has_audio = drm_detect_monitor_audio(edid);
intel_hdmi->has_hdmi_sink = drm_detect_hdmi_monitor(edid);
+ intel_hdmi_dp_dual_mode_detect(connector);
+
connected = true;
}
+ intel_display_power_put(dev_priv, POWER_DOMAIN_GMBUS, wakeref);
+
cec_notifier_set_phys_addr_from_edid(intel_hdmi->cec_notifier, edid);
return connected;
@@ -2511,13 +2525,8 @@ intel_hdmi_force(struct drm_connector *connector)
static int intel_hdmi_get_modes(struct drm_connector *connector)
{
- struct edid *edid;
-
- edid = to_intel_connector(connector)->detect_edid;
- if (edid == NULL)
- return 0;
-
- return intel_connector_update_modes(connector, edid);
+ /* drm_edid_connector_update() done in ->detect() or ->force() */
+ return drm_edid_connector_add_modes(connector);
}
static struct i2c_adapter *
@@ -2637,11 +2646,8 @@ bool intel_hdmi_handle_sink_scrambling(struct intel_encoder *encoder,
bool scrambling)
{
struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
- struct intel_hdmi *intel_hdmi = enc_to_intel_hdmi(encoder);
struct drm_scrambling *sink_scrambling =
&connector->display_info.hdmi.scdc.scrambling;
- struct i2c_adapter *adapter =
- intel_gmbus_get_adapter(dev_priv, intel_hdmi->ddc_bus);
if (!sink_scrambling->supported)
return true;
@@ -2652,9 +2658,8 @@ bool intel_hdmi_handle_sink_scrambling(struct intel_encoder *encoder,
str_yes_no(scrambling), high_tmds_clock_ratio ? 40 : 10);
/* Set TMDS bit clock ratio to 1/40 or 1/10, and enable/disable scrambling */
- return drm_scdc_set_high_tmds_clock_ratio(adapter,
- high_tmds_clock_ratio) &&
- drm_scdc_set_scrambling(adapter, scrambling);
+ return drm_scdc_set_high_tmds_clock_ratio(connector, high_tmds_clock_ratio) &&
+ drm_scdc_set_scrambling(connector, scrambling);
}
static u8 chv_port_to_ddc_pin(struct drm_i915_private *dev_priv, enum port port)
@@ -2846,11 +2851,12 @@ static u8 intel_hdmi_ddc_pin(struct intel_encoder *encoder)
enum port port = encoder->port;
u8 ddc_pin;
- ddc_pin = intel_bios_alternate_ddc_pin(encoder);
+ ddc_pin = intel_bios_hdmi_ddc_pin(encoder->devdata);
if (ddc_pin) {
drm_dbg_kms(&dev_priv->drm,
- "Using DDC pin 0x%x for port %c (VBT)\n",
- ddc_pin, port_name(port));
+ "[ENCODER:%d:%s] Using DDC pin 0x%x (VBT)\n",
+ encoder->base.base.id, encoder->base.name,
+ ddc_pin);
return ddc_pin;
}
@@ -2876,8 +2882,9 @@ static u8 intel_hdmi_ddc_pin(struct intel_encoder *encoder)
ddc_pin = g4x_port_to_ddc_pin(dev_priv, port);
drm_dbg_kms(&dev_priv->drm,
- "Using DDC pin 0x%x for port %c (platform default)\n",
- ddc_pin, port_name(port));
+ "[ENCODER:%d:%s] Using DDC pin 0x%x (platform default)\n",
+ encoder->base.base.id, encoder->base.name,
+ ddc_pin);
return ddc_pin;
}
@@ -2898,7 +2905,7 @@ void intel_infoframe_init(struct intel_digital_port *dig_port)
dig_port->set_infoframes = g4x_set_infoframes;
dig_port->infoframes_enabled = g4x_infoframes_enabled;
} else if (HAS_DDI(dev_priv)) {
- if (intel_bios_is_lspcon_present(dev_priv, dig_port->base.port)) {
+ if (intel_bios_encoder_is_lspcon(dig_port->base.devdata)) {
dig_port->write_infoframe = lspcon_write_infoframe;
dig_port->read_infoframe = lspcon_read_infoframe;
dig_port->set_infoframes = lspcon_set_infoframes;
@@ -2956,9 +2963,10 @@ void intel_hdmi_init_connector(struct intel_digital_port *dig_port,
ddc);
drm_connector_helper_add(connector, &intel_hdmi_connector_helper_funcs);
- connector->interlace_allowed = 1;
- connector->doublescan_allowed = 0;
- connector->stereo_allowed = 1;
+ if (DISPLAY_VER(dev_priv) < 12)
+ connector->interlace_allowed = true;
+
+ connector->stereo_allowed = true;
if (DISPLAY_VER(dev_priv) >= 10)
connector->ycbcr_420_allowed = true;
diff --git a/drivers/gpu/drm/i915/display/intel_hdmi.h b/drivers/gpu/drm/i915/display/intel_hdmi.h
index 93f65a917c36..774dda2376ed 100644
--- a/drivers/gpu/drm/i915/display/intel_hdmi.h
+++ b/drivers/gpu/drm/i915/display/intel_hdmi.h
@@ -6,20 +6,20 @@
#ifndef __INTEL_HDMI_H__
#define __INTEL_HDMI_H__
-#include <linux/hdmi.h>
#include <linux/types.h>
+enum hdmi_infoframe_type;
+enum port;
struct drm_connector;
+struct drm_connector_state;
struct drm_encoder;
struct drm_i915_private;
struct intel_connector;
+struct intel_crtc_state;
struct intel_digital_port;
struct intel_encoder;
-struct intel_crtc_state;
struct intel_hdmi;
-struct drm_connector_state;
union hdmi_infoframe;
-enum port;
void intel_hdmi_init_connector(struct intel_digital_port *dig_port,
struct intel_connector *intel_connector);
diff --git a/drivers/gpu/drm/i915/display/intel_hotplug.c b/drivers/gpu/drm/i915/display/intel_hotplug.c
index f7a2f485b177..b12900446828 100644
--- a/drivers/gpu/drm/i915/display/intel_hotplug.c
+++ b/drivers/gpu/drm/i915/display/intel_hotplug.c
@@ -90,6 +90,9 @@ enum hpd_pin intel_hpd_pin_default(struct drm_i915_private *dev_priv,
return HPD_PORT_A + port - PORT_A;
}
+/* Threshold == 5 for long IRQs, 50 for short */
+#define HPD_STORM_DEFAULT_THRESHOLD 50
+
#define HPD_STORM_DETECT_PERIOD 1000
#define HPD_STORM_REENABLE_DELAY (2 * 60 * 1000)
#define HPD_RETRY_DELAY 1000
@@ -175,14 +178,13 @@ static bool intel_hpd_irq_storm_detect(struct drm_i915_private *dev_priv,
static void
intel_hpd_irq_storm_switch_to_polling(struct drm_i915_private *dev_priv)
{
- struct drm_device *dev = &dev_priv->drm;
struct drm_connector_list_iter conn_iter;
struct intel_connector *connector;
bool hpd_disabled = false;
lockdep_assert_held(&dev_priv->irq_lock);
- drm_connector_list_iter_begin(dev, &conn_iter);
+ drm_connector_list_iter_begin(&dev_priv->drm, &conn_iter);
for_each_intel_connector_iter(connector, &conn_iter) {
enum hpd_pin pin;
@@ -208,7 +210,7 @@ intel_hpd_irq_storm_switch_to_polling(struct drm_i915_private *dev_priv)
/* Enable polling and queue hotplug re-enabling. */
if (hpd_disabled) {
- drm_kms_helper_poll_enable(dev);
+ drm_kms_helper_poll_enable(&dev_priv->drm);
mod_delayed_work(system_wq, &dev_priv->display.hotplug.reenable_work,
msecs_to_jiffies(HPD_STORM_REENABLE_DELAY));
}
@@ -219,7 +221,6 @@ static void intel_hpd_irq_storm_reenable_work(struct work_struct *work)
struct drm_i915_private *dev_priv =
container_of(work, typeof(*dev_priv),
display.hotplug.reenable_work.work);
- struct drm_device *dev = &dev_priv->drm;
struct drm_connector_list_iter conn_iter;
struct intel_connector *connector;
intel_wakeref_t wakeref;
@@ -229,7 +230,7 @@ static void intel_hpd_irq_storm_reenable_work(struct work_struct *work)
spin_lock_irq(&dev_priv->irq_lock);
- drm_connector_list_iter_begin(dev, &conn_iter);
+ drm_connector_list_iter_begin(&dev_priv->drm, &conn_iter);
for_each_intel_connector_iter(connector, &conn_iter) {
pin = intel_connector_hpd_pin(connector);
if (pin == HPD_NONE ||
@@ -367,14 +368,13 @@ static void i915_hotplug_work_func(struct work_struct *work)
struct drm_i915_private *dev_priv =
container_of(work, struct drm_i915_private,
display.hotplug.hotplug_work.work);
- struct drm_device *dev = &dev_priv->drm;
struct drm_connector_list_iter conn_iter;
struct intel_connector *connector;
u32 changed = 0, retry = 0;
u32 hpd_event_bits;
u32 hpd_retry_bits;
- mutex_lock(&dev->mode_config.mutex);
+ mutex_lock(&dev_priv->drm.mode_config.mutex);
drm_dbg_kms(&dev_priv->drm, "running encoder hotplug functions\n");
spin_lock_irq(&dev_priv->irq_lock);
@@ -389,7 +389,14 @@ static void i915_hotplug_work_func(struct work_struct *work)
spin_unlock_irq(&dev_priv->irq_lock);
- drm_connector_list_iter_begin(dev, &conn_iter);
+ /* Skip calling encode hotplug handlers if ignore long HPD set*/
+ if (dev_priv->display.hotplug.ignore_long_hpd) {
+ drm_dbg_kms(&dev_priv->drm, "Ignore HPD flag on - skip encoder hotplug handlers\n");
+ mutex_unlock(&dev_priv->drm.mode_config.mutex);
+ return;
+ }
+
+ drm_connector_list_iter_begin(&dev_priv->drm, &conn_iter);
for_each_intel_connector_iter(connector, &conn_iter) {
enum hpd_pin pin;
u32 hpd_bit;
@@ -426,10 +433,10 @@ static void i915_hotplug_work_func(struct work_struct *work)
}
}
drm_connector_list_iter_end(&conn_iter);
- mutex_unlock(&dev->mode_config.mutex);
+ mutex_unlock(&dev_priv->drm.mode_config.mutex);
if (changed)
- drm_kms_helper_hotplug_event(dev);
+ drm_kms_helper_hotplug_event(&dev_priv->drm);
/* Remove shared HPD pins that have changed */
retry &= ~changed;
@@ -612,16 +619,15 @@ static void i915_hpd_poll_init_work(struct work_struct *work)
struct drm_i915_private *dev_priv =
container_of(work, struct drm_i915_private,
display.hotplug.poll_init_work);
- struct drm_device *dev = &dev_priv->drm;
struct drm_connector_list_iter conn_iter;
struct intel_connector *connector;
bool enabled;
- mutex_lock(&dev->mode_config.mutex);
+ mutex_lock(&dev_priv->drm.mode_config.mutex);
enabled = READ_ONCE(dev_priv->display.hotplug.poll_enabled);
- drm_connector_list_iter_begin(dev, &conn_iter);
+ drm_connector_list_iter_begin(&dev_priv->drm, &conn_iter);
for_each_intel_connector_iter(connector, &conn_iter) {
enum hpd_pin pin;
@@ -638,16 +644,16 @@ static void i915_hpd_poll_init_work(struct work_struct *work)
drm_connector_list_iter_end(&conn_iter);
if (enabled)
- drm_kms_helper_poll_enable(dev);
+ drm_kms_helper_poll_enable(&dev_priv->drm);
- mutex_unlock(&dev->mode_config.mutex);
+ mutex_unlock(&dev_priv->drm.mode_config.mutex);
/*
* We might have missed any hotplugs that happened while we were
* in the middle of disabling polling
*/
if (!enabled)
- drm_helper_hpd_irq_event(dev);
+ drm_helper_hpd_irq_event(&dev_priv->drm);
}
/**
@@ -711,14 +717,23 @@ void intel_hpd_poll_disable(struct drm_i915_private *dev_priv)
schedule_work(&dev_priv->display.hotplug.poll_init_work);
}
-void intel_hpd_init_work(struct drm_i915_private *dev_priv)
+void intel_hpd_init_early(struct drm_i915_private *i915)
{
- INIT_DELAYED_WORK(&dev_priv->display.hotplug.hotplug_work,
+ INIT_DELAYED_WORK(&i915->display.hotplug.hotplug_work,
i915_hotplug_work_func);
- INIT_WORK(&dev_priv->display.hotplug.dig_port_work, i915_digport_work_func);
- INIT_WORK(&dev_priv->display.hotplug.poll_init_work, i915_hpd_poll_init_work);
- INIT_DELAYED_WORK(&dev_priv->display.hotplug.reenable_work,
+ INIT_WORK(&i915->display.hotplug.dig_port_work, i915_digport_work_func);
+ INIT_WORK(&i915->display.hotplug.poll_init_work, i915_hpd_poll_init_work);
+ INIT_DELAYED_WORK(&i915->display.hotplug.reenable_work,
intel_hpd_irq_storm_reenable_work);
+
+ i915->display.hotplug.hpd_storm_threshold = HPD_STORM_DEFAULT_THRESHOLD;
+ /* If we have MST support, we want to avoid doing short HPD IRQ storm
+ * detection, as short HPD storms will occur as a natural part of
+ * sideband messaging with MST.
+ * On older platforms however, IRQ storms can occur with both long and
+ * short pulses, as seen on some G4x systems.
+ */
+ i915->display.hotplug.hpd_short_storm_enabled = !HAS_DP_MST(i915);
}
void intel_hpd_cancel_work(struct drm_i915_private *dev_priv)
@@ -767,3 +782,171 @@ void intel_hpd_enable(struct drm_i915_private *dev_priv, enum hpd_pin pin)
dev_priv->display.hotplug.stats[pin].state = HPD_ENABLED;
spin_unlock_irq(&dev_priv->irq_lock);
}
+
+static int i915_hpd_storm_ctl_show(struct seq_file *m, void *data)
+{
+ struct drm_i915_private *dev_priv = m->private;
+ struct intel_hotplug *hotplug = &dev_priv->display.hotplug;
+
+ /* Synchronize with everything first in case there's been an HPD
+ * storm, but we haven't finished handling it in the kernel yet
+ */
+ intel_synchronize_irq(dev_priv);
+ flush_work(&dev_priv->display.hotplug.dig_port_work);
+ flush_delayed_work(&dev_priv->display.hotplug.hotplug_work);
+
+ seq_printf(m, "Threshold: %d\n", hotplug->hpd_storm_threshold);
+ seq_printf(m, "Detected: %s\n",
+ str_yes_no(delayed_work_pending(&hotplug->reenable_work)));
+
+ return 0;
+}
+
+static ssize_t i915_hpd_storm_ctl_write(struct file *file,
+ const char __user *ubuf, size_t len,
+ loff_t *offp)
+{
+ struct seq_file *m = file->private_data;
+ struct drm_i915_private *dev_priv = m->private;
+ struct intel_hotplug *hotplug = &dev_priv->display.hotplug;
+ unsigned int new_threshold;
+ int i;
+ char *newline;
+ char tmp[16];
+
+ if (len >= sizeof(tmp))
+ return -EINVAL;
+
+ if (copy_from_user(tmp, ubuf, len))
+ return -EFAULT;
+
+ tmp[len] = '\0';
+
+ /* Strip newline, if any */
+ newline = strchr(tmp, '\n');
+ if (newline)
+ *newline = '\0';
+
+ if (strcmp(tmp, "reset") == 0)
+ new_threshold = HPD_STORM_DEFAULT_THRESHOLD;
+ else if (kstrtouint(tmp, 10, &new_threshold) != 0)
+ return -EINVAL;
+
+ if (new_threshold > 0)
+ drm_dbg_kms(&dev_priv->drm,
+ "Setting HPD storm detection threshold to %d\n",
+ new_threshold);
+ else
+ drm_dbg_kms(&dev_priv->drm, "Disabling HPD storm detection\n");
+
+ spin_lock_irq(&dev_priv->irq_lock);
+ hotplug->hpd_storm_threshold = new_threshold;
+ /* Reset the HPD storm stats so we don't accidentally trigger a storm */
+ for_each_hpd_pin(i)
+ hotplug->stats[i].count = 0;
+ spin_unlock_irq(&dev_priv->irq_lock);
+
+ /* Re-enable hpd immediately if we were in an irq storm */
+ flush_delayed_work(&dev_priv->display.hotplug.reenable_work);
+
+ return len;
+}
+
+static int i915_hpd_storm_ctl_open(struct inode *inode, struct file *file)
+{
+ return single_open(file, i915_hpd_storm_ctl_show, inode->i_private);
+}
+
+static const struct file_operations i915_hpd_storm_ctl_fops = {
+ .owner = THIS_MODULE,
+ .open = i915_hpd_storm_ctl_open,
+ .read = seq_read,
+ .llseek = seq_lseek,
+ .release = single_release,
+ .write = i915_hpd_storm_ctl_write
+};
+
+static int i915_hpd_short_storm_ctl_show(struct seq_file *m, void *data)
+{
+ struct drm_i915_private *dev_priv = m->private;
+
+ seq_printf(m, "Enabled: %s\n",
+ str_yes_no(dev_priv->display.hotplug.hpd_short_storm_enabled));
+
+ return 0;
+}
+
+static int
+i915_hpd_short_storm_ctl_open(struct inode *inode, struct file *file)
+{
+ return single_open(file, i915_hpd_short_storm_ctl_show,
+ inode->i_private);
+}
+
+static ssize_t i915_hpd_short_storm_ctl_write(struct file *file,
+ const char __user *ubuf,
+ size_t len, loff_t *offp)
+{
+ struct seq_file *m = file->private_data;
+ struct drm_i915_private *dev_priv = m->private;
+ struct intel_hotplug *hotplug = &dev_priv->display.hotplug;
+ char *newline;
+ char tmp[16];
+ int i;
+ bool new_state;
+
+ if (len >= sizeof(tmp))
+ return -EINVAL;
+
+ if (copy_from_user(tmp, ubuf, len))
+ return -EFAULT;
+
+ tmp[len] = '\0';
+
+ /* Strip newline, if any */
+ newline = strchr(tmp, '\n');
+ if (newline)
+ *newline = '\0';
+
+ /* Reset to the "default" state for this system */
+ if (strcmp(tmp, "reset") == 0)
+ new_state = !HAS_DP_MST(dev_priv);
+ else if (kstrtobool(tmp, &new_state) != 0)
+ return -EINVAL;
+
+ drm_dbg_kms(&dev_priv->drm, "%sabling HPD short storm detection\n",
+ new_state ? "En" : "Dis");
+
+ spin_lock_irq(&dev_priv->irq_lock);
+ hotplug->hpd_short_storm_enabled = new_state;
+ /* Reset the HPD storm stats so we don't accidentally trigger a storm */
+ for_each_hpd_pin(i)
+ hotplug->stats[i].count = 0;
+ spin_unlock_irq(&dev_priv->irq_lock);
+
+ /* Re-enable hpd immediately if we were in an irq storm */
+ flush_delayed_work(&dev_priv->display.hotplug.reenable_work);
+
+ return len;
+}
+
+static const struct file_operations i915_hpd_short_storm_ctl_fops = {
+ .owner = THIS_MODULE,
+ .open = i915_hpd_short_storm_ctl_open,
+ .read = seq_read,
+ .llseek = seq_lseek,
+ .release = single_release,
+ .write = i915_hpd_short_storm_ctl_write,
+};
+
+void intel_hpd_debugfs_register(struct drm_i915_private *i915)
+{
+ struct drm_minor *minor = i915->drm.primary;
+
+ debugfs_create_file("i915_hpd_storm_ctl", 0644, minor->debugfs_root,
+ i915, &i915_hpd_storm_ctl_fops);
+ debugfs_create_file("i915_hpd_short_storm_ctl", 0644, minor->debugfs_root,
+ i915, &i915_hpd_short_storm_ctl_fops);
+ debugfs_create_bool("i915_ignore_long_hpd", 0644, minor->debugfs_root,
+ &i915->display.hotplug.ignore_long_hpd);
+}
diff --git a/drivers/gpu/drm/i915/display/intel_hotplug.h b/drivers/gpu/drm/i915/display/intel_hotplug.h
index b87e95d606e6..424ae5dbf5a0 100644
--- a/drivers/gpu/drm/i915/display/intel_hotplug.h
+++ b/drivers/gpu/drm/i915/display/intel_hotplug.h
@@ -22,11 +22,12 @@ void intel_hpd_irq_handler(struct drm_i915_private *dev_priv,
u32 pin_mask, u32 long_mask);
void intel_hpd_trigger_irq(struct intel_digital_port *dig_port);
void intel_hpd_init(struct drm_i915_private *dev_priv);
-void intel_hpd_init_work(struct drm_i915_private *dev_priv);
+void intel_hpd_init_early(struct drm_i915_private *i915);
void intel_hpd_cancel_work(struct drm_i915_private *dev_priv);
enum hpd_pin intel_hpd_pin_default(struct drm_i915_private *dev_priv,
enum port port);
bool intel_hpd_disable(struct drm_i915_private *dev_priv, enum hpd_pin pin);
void intel_hpd_enable(struct drm_i915_private *dev_priv, enum hpd_pin pin);
+void intel_hpd_debugfs_register(struct drm_i915_private *i915);
#endif /* __INTEL_HOTPLUG_H__ */
diff --git a/drivers/gpu/drm/i915/display/intel_hti.c b/drivers/gpu/drm/i915/display/intel_hti.c
new file mode 100644
index 000000000000..c518efebdf77
--- /dev/null
+++ b/drivers/gpu/drm/i915/display/intel_hti.c
@@ -0,0 +1,41 @@
+// SPDX-License-Identifier: MIT
+/*
+ * Copyright © 2022 Intel Corporation
+ */
+
+#include "i915_drv.h"
+#include "intel_de.h"
+#include "intel_display.h"
+#include "intel_hti.h"
+#include "intel_hti_regs.h"
+
+void intel_hti_init(struct drm_i915_private *i915)
+{
+ /*
+ * If the platform has HTI, we need to find out whether it has reserved
+ * any display resources before we create our display outputs.
+ */
+ if (INTEL_INFO(i915)->display.has_hti)
+ i915->display.hti.state = intel_de_read(i915, HDPORT_STATE);
+}
+
+bool intel_hti_uses_phy(struct drm_i915_private *i915, enum phy phy)
+{
+ if (drm_WARN_ON(&i915->drm, phy == PHY_NONE))
+ return false;
+
+ return i915->display.hti.state & HDPORT_ENABLED &&
+ i915->display.hti.state & HDPORT_DDI_USED(phy);
+}
+
+u32 intel_hti_dpll_mask(struct drm_i915_private *i915)
+{
+ if (!(i915->display.hti.state & HDPORT_ENABLED))
+ return 0;
+
+ /*
+ * Note: This is subtle. The values must coincide with what's defined
+ * for the platform.
+ */
+ return REG_FIELD_GET(HDPORT_DPLL_USED_MASK, i915->display.hti.state);
+}
diff --git a/drivers/gpu/drm/i915/display/intel_hti.h b/drivers/gpu/drm/i915/display/intel_hti.h
new file mode 100644
index 000000000000..2893d6668657
--- /dev/null
+++ b/drivers/gpu/drm/i915/display/intel_hti.h
@@ -0,0 +1,18 @@
+/* SPDX-License-Identifier: MIT */
+/*
+ * Copyright © 2022 Intel Corporation
+ */
+
+#ifndef __INTEL_HTI_H__
+#define __INTEL_HTI_H__
+
+#include <linux/types.h>
+
+struct drm_i915_private;
+enum phy;
+
+void intel_hti_init(struct drm_i915_private *i915);
+bool intel_hti_uses_phy(struct drm_i915_private *i915, enum phy phy);
+u32 intel_hti_dpll_mask(struct drm_i915_private *i915);
+
+#endif /* __INTEL_HTI_H__ */
diff --git a/drivers/gpu/drm/i915/display/intel_hti_regs.h b/drivers/gpu/drm/i915/display/intel_hti_regs.h
new file mode 100644
index 000000000000..e206f2837fc8
--- /dev/null
+++ b/drivers/gpu/drm/i915/display/intel_hti_regs.h
@@ -0,0 +1,16 @@
+/* SPDX-License-Identifier: MIT */
+/*
+ * Copyright © 2022 Intel Corporation
+ */
+
+#ifndef __INTEL_HTI_REGS_H__
+#define __INTEL_HTI_REGS_H__
+
+#include "i915_reg_defs.h"
+
+#define HDPORT_STATE _MMIO(0x45050)
+#define HDPORT_DPLL_USED_MASK REG_GENMASK(15, 12)
+#define HDPORT_DDI_USED(phy) REG_BIT(2 * (phy) + 1)
+#define HDPORT_ENABLED REG_BIT(0)
+
+#endif /* __INTEL_HTI_REGS_H__ */
diff --git a/drivers/gpu/drm/i915/display/intel_lpe_audio.c b/drivers/gpu/drm/i915/display/intel_lpe_audio.c
index dca6003ccac8..5863763de530 100644
--- a/drivers/gpu/drm/i915/display/intel_lpe_audio.c
+++ b/drivers/gpu/drm/i915/display/intel_lpe_audio.c
@@ -71,6 +71,8 @@
#include <drm/intel_lpe_audio.h>
#include "i915_drv.h"
+#include "i915_irq.h"
+#include "i915_reg.h"
#include "intel_de.h"
#include "intel_lpe_audio.h"
#include "intel_pci_config.h"
@@ -80,8 +82,7 @@
static struct platform_device *
lpe_audio_platdev_create(struct drm_i915_private *dev_priv)
{
- struct drm_device *dev = &dev_priv->drm;
- struct pci_dev *pdev = to_pci_dev(dev->dev);
+ struct pci_dev *pdev = to_pci_dev(dev_priv->drm.dev);
struct platform_device_info pinfo = {};
struct resource *rsc;
struct platform_device *platdev;
@@ -101,14 +102,14 @@ lpe_audio_platdev_create(struct drm_i915_private *dev_priv)
rsc[0].flags = IORESOURCE_IRQ;
rsc[0].name = "hdmi-lpe-audio-irq";
- rsc[1].start = pci_resource_start(pdev, GTTMMADR_BAR) +
+ rsc[1].start = pci_resource_start(pdev, GEN4_GTTMMADR_BAR) +
I915_HDMI_LPE_AUDIO_BASE;
- rsc[1].end = pci_resource_start(pdev, GTTMMADR_BAR) +
+ rsc[1].end = pci_resource_start(pdev, GEN4_GTTMMADR_BAR) +
I915_HDMI_LPE_AUDIO_BASE + I915_HDMI_LPE_AUDIO_SIZE - 1;
rsc[1].flags = IORESOURCE_MEM;
rsc[1].name = "hdmi-lpe-audio-mmio";
- pinfo.parent = dev->dev;
+ pinfo.parent = dev_priv->drm.dev;
pinfo.name = "hdmi-lpe-audio";
pinfo.id = -1;
pinfo.res = rsc;
@@ -314,7 +315,7 @@ void intel_lpe_audio_teardown(struct drm_i915_private *dev_priv)
* intel_lpe_audio_notify() - notify lpe audio event
* audio driver and i915
* @dev_priv: the i915 drm device private data
- * @pipe: pipe
+ * @cpu_transcoder: CPU transcoder
* @port: port
* @eld : ELD data
* @ls_clock: Link symbol clock in kHz
@@ -323,7 +324,7 @@ void intel_lpe_audio_teardown(struct drm_i915_private *dev_priv)
* Notify lpe audio driver of eld change.
*/
void intel_lpe_audio_notify(struct drm_i915_private *dev_priv,
- enum pipe pipe, enum port port,
+ enum transcoder cpu_transcoder, enum port port,
const void *eld, int ls_clock, bool dp_output)
{
unsigned long irqflags;
@@ -343,7 +344,7 @@ void intel_lpe_audio_notify(struct drm_i915_private *dev_priv,
if (eld != NULL) {
memcpy(ppdata->eld, eld, HDMI_MAX_ELD_BYTES);
- ppdata->pipe = pipe;
+ ppdata->pipe = cpu_transcoder;
ppdata->ls_clock = ls_clock;
ppdata->dp_output = dp_output;
diff --git a/drivers/gpu/drm/i915/display/intel_lpe_audio.h b/drivers/gpu/drm/i915/display/intel_lpe_audio.h
index f848c5038714..0beecac267ae 100644
--- a/drivers/gpu/drm/i915/display/intel_lpe_audio.h
+++ b/drivers/gpu/drm/i915/display/intel_lpe_audio.h
@@ -8,15 +8,15 @@
#include <linux/types.h>
-enum pipe;
enum port;
+enum transcoder;
struct drm_i915_private;
int intel_lpe_audio_init(struct drm_i915_private *dev_priv);
void intel_lpe_audio_teardown(struct drm_i915_private *dev_priv);
void intel_lpe_audio_irq_handler(struct drm_i915_private *dev_priv);
void intel_lpe_audio_notify(struct drm_i915_private *dev_priv,
- enum pipe pipe, enum port port,
+ enum transcoder cpu_transcoder, enum port port,
const void *eld, int ls_clock, bool dp_output);
#endif /* __INTEL_LPE_AUDIO_H__ */
diff --git a/drivers/gpu/drm/i915/display/intel_lspcon.c b/drivers/gpu/drm/i915/display/intel_lspcon.c
index 15d59de8810e..bb3b5355a0d9 100644
--- a/drivers/gpu/drm/i915/display/intel_lspcon.c
+++ b/drivers/gpu/drm/i915/display/intel_lspcon.c
@@ -28,6 +28,7 @@
#include <drm/drm_atomic_helper.h>
#include <drm/drm_edid.h>
+#include "i915_reg.h"
#include "intel_de.h"
#include "intel_display_types.h"
#include "intel_dp.h"
@@ -688,7 +689,7 @@ void lspcon_resume(struct intel_digital_port *dig_port)
struct drm_i915_private *i915 = to_i915(dev);
enum drm_lspcon_mode expected_mode;
- if (!intel_bios_is_lspcon_present(i915, dig_port->base.port))
+ if (!intel_bios_encoder_is_lspcon(dig_port->base.devdata))
return;
if (!lspcon->active) {
diff --git a/drivers/gpu/drm/i915/display/intel_lvds.c b/drivers/gpu/drm/i915/display/intel_lvds.c
index e5352239b2a2..0de44b3631cd 100644
--- a/drivers/gpu/drm/i915/display/intel_lvds.c
+++ b/drivers/gpu/drm/i915/display/intel_lvds.c
@@ -39,6 +39,7 @@
#include <drm/drm_edid.h>
#include "i915_drv.h"
+#include "i915_reg.h"
#include "intel_atomic.h"
#include "intel_backlight.h"
#include "intel_connector.h"
@@ -48,7 +49,9 @@
#include "intel_fdi.h"
#include "intel_gmbus.h"
#include "intel_lvds.h"
+#include "intel_lvds_regs.h"
#include "intel_panel.h"
+#include "intel_pps_regs.h"
/* Private structure for the integrated LVDS support */
struct intel_lvds_pps {
@@ -78,23 +81,23 @@ struct intel_lvds_encoder {
struct intel_connector *attached_connector;
};
-static struct intel_lvds_encoder *to_lvds_encoder(struct drm_encoder *encoder)
+static struct intel_lvds_encoder *to_lvds_encoder(struct intel_encoder *encoder)
{
- return container_of(encoder, struct intel_lvds_encoder, base.base);
+ return container_of(encoder, struct intel_lvds_encoder, base);
}
-bool intel_lvds_port_enabled(struct drm_i915_private *dev_priv,
+bool intel_lvds_port_enabled(struct drm_i915_private *i915,
i915_reg_t lvds_reg, enum pipe *pipe)
{
u32 val;
- val = intel_de_read(dev_priv, lvds_reg);
+ val = intel_de_read(i915, lvds_reg);
/* asserts want to know the pipe even if the port is disabled */
- if (HAS_PCH_CPT(dev_priv))
- *pipe = (val & LVDS_PIPE_SEL_MASK_CPT) >> LVDS_PIPE_SEL_SHIFT_CPT;
+ if (HAS_PCH_CPT(i915))
+ *pipe = REG_FIELD_GET(LVDS_PIPE_SEL_MASK_CPT, val);
else
- *pipe = (val & LVDS_PIPE_SEL_MASK) >> LVDS_PIPE_SEL_SHIFT;
+ *pipe = REG_FIELD_GET(LVDS_PIPE_SEL_MASK, val);
return val & LVDS_PORT_EN;
}
@@ -102,31 +105,30 @@ bool intel_lvds_port_enabled(struct drm_i915_private *dev_priv,
static bool intel_lvds_get_hw_state(struct intel_encoder *encoder,
enum pipe *pipe)
{
- struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
- struct intel_lvds_encoder *lvds_encoder = to_lvds_encoder(&encoder->base);
+ struct drm_i915_private *i915 = to_i915(encoder->base.dev);
+ struct intel_lvds_encoder *lvds_encoder = to_lvds_encoder(encoder);
intel_wakeref_t wakeref;
bool ret;
- wakeref = intel_display_power_get_if_enabled(dev_priv,
- encoder->power_domain);
+ wakeref = intel_display_power_get_if_enabled(i915, encoder->power_domain);
if (!wakeref)
return false;
- ret = intel_lvds_port_enabled(dev_priv, lvds_encoder->reg, pipe);
+ ret = intel_lvds_port_enabled(i915, lvds_encoder->reg, pipe);
- intel_display_power_put(dev_priv, encoder->power_domain, wakeref);
+ intel_display_power_put(i915, encoder->power_domain, wakeref);
return ret;
}
static void intel_lvds_get_config(struct intel_encoder *encoder,
- struct intel_crtc_state *pipe_config)
+ struct intel_crtc_state *crtc_state)
{
struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
- struct intel_lvds_encoder *lvds_encoder = to_lvds_encoder(&encoder->base);
+ struct intel_lvds_encoder *lvds_encoder = to_lvds_encoder(encoder);
u32 tmp, flags = 0;
- pipe_config->output_types |= BIT(INTEL_OUTPUT_LVDS);
+ crtc_state->output_types |= BIT(INTEL_OUTPUT_LVDS);
tmp = intel_de_read(dev_priv, lvds_encoder->reg);
if (tmp & LVDS_HSYNC_POLARITY)
@@ -138,20 +140,20 @@ static void intel_lvds_get_config(struct intel_encoder *encoder,
else
flags |= DRM_MODE_FLAG_PVSYNC;
- pipe_config->hw.adjusted_mode.flags |= flags;
+ crtc_state->hw.adjusted_mode.flags |= flags;
if (DISPLAY_VER(dev_priv) < 5)
- pipe_config->gmch_pfit.lvds_border_bits =
+ crtc_state->gmch_pfit.lvds_border_bits =
tmp & LVDS_BORDER_ENABLE;
/* gen2/3 store dither state in pfit control, needs to match */
if (DISPLAY_VER(dev_priv) < 4) {
tmp = intel_de_read(dev_priv, PFIT_CONTROL);
- pipe_config->gmch_pfit.control |= tmp & PANEL_8TO6_DITHER_ENABLE;
+ crtc_state->gmch_pfit.control |= tmp & PANEL_8TO6_DITHER_ENABLE;
}
- pipe_config->hw.adjusted_mode.crtc_clock = pipe_config->port_clock;
+ crtc_state->hw.adjusted_mode.crtc_clock = crtc_state->port_clock;
}
static void intel_lvds_pps_get_hw_state(struct drm_i915_private *dev_priv,
@@ -215,41 +217,44 @@ static void intel_lvds_pps_init_hw(struct drm_i915_private *dev_priv,
intel_de_write(dev_priv, PP_CONTROL(0), val);
intel_de_write(dev_priv, PP_ON_DELAYS(0),
- REG_FIELD_PREP(PANEL_PORT_SELECT_MASK, pps->port) | REG_FIELD_PREP(PANEL_POWER_UP_DELAY_MASK, pps->t1_t2) | REG_FIELD_PREP(PANEL_LIGHT_ON_DELAY_MASK, pps->t5));
+ REG_FIELD_PREP(PANEL_PORT_SELECT_MASK, pps->port) |
+ REG_FIELD_PREP(PANEL_POWER_UP_DELAY_MASK, pps->t1_t2) |
+ REG_FIELD_PREP(PANEL_LIGHT_ON_DELAY_MASK, pps->t5));
intel_de_write(dev_priv, PP_OFF_DELAYS(0),
- REG_FIELD_PREP(PANEL_POWER_DOWN_DELAY_MASK, pps->t3) | REG_FIELD_PREP(PANEL_LIGHT_OFF_DELAY_MASK, pps->tx));
+ REG_FIELD_PREP(PANEL_POWER_DOWN_DELAY_MASK, pps->t3) |
+ REG_FIELD_PREP(PANEL_LIGHT_OFF_DELAY_MASK, pps->tx));
intel_de_write(dev_priv, PP_DIVISOR(0),
- REG_FIELD_PREP(PP_REFERENCE_DIVIDER_MASK, pps->divider) | REG_FIELD_PREP(PANEL_POWER_CYCLE_DELAY_MASK, DIV_ROUND_UP(pps->t4, 1000) + 1));
+ REG_FIELD_PREP(PP_REFERENCE_DIVIDER_MASK, pps->divider) |
+ REG_FIELD_PREP(PANEL_POWER_CYCLE_DELAY_MASK, DIV_ROUND_UP(pps->t4, 1000) + 1));
}
static void intel_pre_enable_lvds(struct intel_atomic_state *state,
struct intel_encoder *encoder,
- const struct intel_crtc_state *pipe_config,
+ const struct intel_crtc_state *crtc_state,
const struct drm_connector_state *conn_state)
{
- struct intel_lvds_encoder *lvds_encoder = to_lvds_encoder(&encoder->base);
- struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
- struct intel_crtc *crtc = to_intel_crtc(pipe_config->uapi.crtc);
- const struct drm_display_mode *adjusted_mode = &pipe_config->hw.adjusted_mode;
+ struct intel_lvds_encoder *lvds_encoder = to_lvds_encoder(encoder);
+ struct drm_i915_private *i915 = to_i915(encoder->base.dev);
+ struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
+ const struct drm_display_mode *adjusted_mode = &crtc_state->hw.adjusted_mode;
enum pipe pipe = crtc->pipe;
u32 temp;
- if (HAS_PCH_SPLIT(dev_priv)) {
- assert_fdi_rx_pll_disabled(dev_priv, pipe);
- assert_shared_dpll_disabled(dev_priv,
- pipe_config->shared_dpll);
+ if (HAS_PCH_SPLIT(i915)) {
+ assert_fdi_rx_pll_disabled(i915, pipe);
+ assert_shared_dpll_disabled(i915, crtc_state->shared_dpll);
} else {
- assert_pll_disabled(dev_priv, pipe);
+ assert_pll_disabled(i915, pipe);
}
- intel_lvds_pps_init_hw(dev_priv, &lvds_encoder->init_pps);
+ intel_lvds_pps_init_hw(i915, &lvds_encoder->init_pps);
temp = lvds_encoder->init_lvds_val;
temp |= LVDS_PORT_EN | LVDS_A0A2_CLKA_POWER_UP;
- if (HAS_PCH_CPT(dev_priv)) {
+ if (HAS_PCH_CPT(i915)) {
temp &= ~LVDS_PIPE_SEL_MASK_CPT;
temp |= LVDS_PIPE_SEL_CPT(pipe);
} else {
@@ -259,7 +264,7 @@ static void intel_pre_enable_lvds(struct intel_atomic_state *state,
/* set the corresponsding LVDS_BORDER bit */
temp &= ~LVDS_BORDER_ENABLE;
- temp |= pipe_config->gmch_pfit.lvds_border_bits;
+ temp |= crtc_state->gmch_pfit.lvds_border_bits;
/*
* Set the B0-B3 data pairs corresponding to whether we're going to
@@ -282,14 +287,14 @@ static void intel_pre_enable_lvds(struct intel_atomic_state *state,
/*
* Set the dithering flag on LVDS as needed, note that there is no
* special lvds dither control bit on pch-split platforms, dithering is
- * only controlled through the PIPECONF reg.
+ * only controlled through the TRANSCONF reg.
*/
- if (DISPLAY_VER(dev_priv) == 4) {
+ if (DISPLAY_VER(i915) == 4) {
/*
* Bspec wording suggests that LVDS port dithering only exists
* for 18bpp panels.
*/
- if (pipe_config->dither && pipe_config->pipe_bpp == 18)
+ if (crtc_state->dither && crtc_state->pipe_bpp == 18)
temp |= LVDS_ENABLE_DITHER;
else
temp &= ~LVDS_ENABLE_DITHER;
@@ -300,7 +305,7 @@ static void intel_pre_enable_lvds(struct intel_atomic_state *state,
if (adjusted_mode->flags & DRM_MODE_FLAG_NVSYNC)
temp |= LVDS_VSYNC_POLARITY;
- intel_de_write(dev_priv, lvds_encoder->reg, temp);
+ intel_de_write(i915, lvds_encoder->reg, temp);
}
/*
@@ -308,25 +313,22 @@ static void intel_pre_enable_lvds(struct intel_atomic_state *state,
*/
static void intel_enable_lvds(struct intel_atomic_state *state,
struct intel_encoder *encoder,
- const struct intel_crtc_state *pipe_config,
+ const struct intel_crtc_state *crtc_state,
const struct drm_connector_state *conn_state)
{
- struct drm_device *dev = encoder->base.dev;
- struct intel_lvds_encoder *lvds_encoder = to_lvds_encoder(&encoder->base);
- struct drm_i915_private *dev_priv = to_i915(dev);
+ struct intel_lvds_encoder *lvds_encoder = to_lvds_encoder(encoder);
+ struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
- intel_de_write(dev_priv, lvds_encoder->reg,
- intel_de_read(dev_priv, lvds_encoder->reg) | LVDS_PORT_EN);
+ intel_de_rmw(dev_priv, lvds_encoder->reg, 0, LVDS_PORT_EN);
- intel_de_write(dev_priv, PP_CONTROL(0),
- intel_de_read(dev_priv, PP_CONTROL(0)) | PANEL_POWER_ON);
+ intel_de_rmw(dev_priv, PP_CONTROL(0), 0, PANEL_POWER_ON);
intel_de_posting_read(dev_priv, lvds_encoder->reg);
if (intel_de_wait_for_set(dev_priv, PP_STATUS(0), PP_ON, 5000))
drm_err(&dev_priv->drm,
"timed out waiting for panel to power on\n");
- intel_backlight_enable(pipe_config, conn_state);
+ intel_backlight_enable(crtc_state, conn_state);
}
static void intel_disable_lvds(struct intel_atomic_state *state,
@@ -334,17 +336,15 @@ static void intel_disable_lvds(struct intel_atomic_state *state,
const struct intel_crtc_state *old_crtc_state,
const struct drm_connector_state *old_conn_state)
{
- struct intel_lvds_encoder *lvds_encoder = to_lvds_encoder(&encoder->base);
+ struct intel_lvds_encoder *lvds_encoder = to_lvds_encoder(encoder);
struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
- intel_de_write(dev_priv, PP_CONTROL(0),
- intel_de_read(dev_priv, PP_CONTROL(0)) & ~PANEL_POWER_ON);
+ intel_de_rmw(dev_priv, PP_CONTROL(0), PANEL_POWER_ON, 0);
if (intel_de_wait_for_clear(dev_priv, PP_STATUS(0), PP_ON, 1000))
drm_err(&dev_priv->drm,
"timed out waiting for panel to power off\n");
- intel_de_write(dev_priv, lvds_encoder->reg,
- intel_de_read(dev_priv, lvds_encoder->reg) & ~LVDS_PORT_EN);
+ intel_de_rmw(dev_priv, lvds_encoder->reg, LVDS_PORT_EN, 0);
intel_de_posting_read(dev_priv, lvds_encoder->reg);
}
@@ -385,19 +385,19 @@ static void intel_lvds_shutdown(struct intel_encoder *encoder)
}
static enum drm_mode_status
-intel_lvds_mode_valid(struct drm_connector *connector,
+intel_lvds_mode_valid(struct drm_connector *_connector,
struct drm_display_mode *mode)
{
- struct intel_connector *intel_connector = to_intel_connector(connector);
+ struct intel_connector *connector = to_intel_connector(_connector);
const struct drm_display_mode *fixed_mode =
- intel_panel_fixed_mode(intel_connector, mode);
- int max_pixclk = to_i915(connector->dev)->max_dotclk_freq;
+ intel_panel_fixed_mode(connector, mode);
+ int max_pixclk = to_i915(connector->base.dev)->max_dotclk_freq;
enum drm_mode_status status;
if (mode->flags & DRM_MODE_FLAG_DBLSCAN)
return MODE_NO_DBLESCAN;
- status = intel_panel_mode_valid(intel_connector, mode);
+ status = intel_panel_mode_valid(connector, mode);
if (status != MODE_OK)
return status;
@@ -407,23 +407,21 @@ intel_lvds_mode_valid(struct drm_connector *connector,
return MODE_OK;
}
-static int intel_lvds_compute_config(struct intel_encoder *intel_encoder,
- struct intel_crtc_state *pipe_config,
+static int intel_lvds_compute_config(struct intel_encoder *encoder,
+ struct intel_crtc_state *crtc_state,
struct drm_connector_state *conn_state)
{
- struct drm_i915_private *dev_priv = to_i915(intel_encoder->base.dev);
- struct intel_lvds_encoder *lvds_encoder =
- to_lvds_encoder(&intel_encoder->base);
- struct intel_connector *intel_connector =
- lvds_encoder->attached_connector;
- struct drm_display_mode *adjusted_mode = &pipe_config->hw.adjusted_mode;
- struct intel_crtc *crtc = to_intel_crtc(pipe_config->uapi.crtc);
+ struct drm_i915_private *i915 = to_i915(encoder->base.dev);
+ struct intel_lvds_encoder *lvds_encoder = to_lvds_encoder(encoder);
+ struct intel_connector *connector = lvds_encoder->attached_connector;
+ struct drm_display_mode *adjusted_mode = &crtc_state->hw.adjusted_mode;
+ struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
unsigned int lvds_bpp;
int ret;
/* Should never happen!! */
- if (DISPLAY_VER(dev_priv) < 4 && crtc->pipe == 0) {
- drm_err(&dev_priv->drm, "Can't support LVDS on pipe A\n");
+ if (DISPLAY_VER(i915) < 4 && crtc->pipe == 0) {
+ drm_err(&i915->drm, "Can't support LVDS on pipe A\n");
return -EINVAL;
}
@@ -432,14 +430,14 @@ static int intel_lvds_compute_config(struct intel_encoder *intel_encoder,
else
lvds_bpp = 6*3;
- if (lvds_bpp != pipe_config->pipe_bpp && !pipe_config->bw_constrained) {
- drm_dbg_kms(&dev_priv->drm,
+ if (lvds_bpp != crtc_state->pipe_bpp && !crtc_state->bw_constrained) {
+ drm_dbg_kms(&i915->drm,
"forcing display bpp (was %d) to LVDS (%d)\n",
- pipe_config->pipe_bpp, lvds_bpp);
- pipe_config->pipe_bpp = lvds_bpp;
+ crtc_state->pipe_bpp, lvds_bpp);
+ crtc_state->pipe_bpp = lvds_bpp;
}
- pipe_config->output_format = INTEL_OUTPUT_FORMAT_RGB;
+ crtc_state->output_format = INTEL_OUTPUT_FORMAT_RGB;
/*
* We have timings from the BIOS for the panel, put them in
@@ -447,17 +445,17 @@ static int intel_lvds_compute_config(struct intel_encoder *intel_encoder,
* with the panel scaling set up to source from the H/VDisplay
* of the original mode.
*/
- ret = intel_panel_compute_config(intel_connector, adjusted_mode);
+ ret = intel_panel_compute_config(connector, adjusted_mode);
if (ret)
return ret;
if (adjusted_mode->flags & DRM_MODE_FLAG_DBLSCAN)
return -EINVAL;
- if (HAS_PCH_SPLIT(dev_priv))
- pipe_config->has_pch_encoder = true;
+ if (HAS_PCH_SPLIT(i915))
+ crtc_state->has_pch_encoder = true;
- ret = intel_panel_fitting(pipe_config, conn_state);
+ ret = intel_panel_fitting(crtc_state, conn_state);
if (ret)
return ret;
@@ -473,15 +471,19 @@ static int intel_lvds_compute_config(struct intel_encoder *intel_encoder,
/*
* Return the list of DDC modes if available, or the BIOS fixed mode otherwise.
*/
-static int intel_lvds_get_modes(struct drm_connector *connector)
+static int intel_lvds_get_modes(struct drm_connector *_connector)
{
- struct intel_connector *intel_connector = to_intel_connector(connector);
+ struct intel_connector *connector = to_intel_connector(_connector);
+ const struct drm_edid *fixed_edid = connector->panel.fixed_edid;
+
+ /* Use panel fixed edid if we have one */
+ if (!IS_ERR_OR_NULL(fixed_edid)) {
+ drm_edid_connector_update(&connector->base, fixed_edid);
- /* use cached edid if we have one */
- if (!IS_ERR_OR_NULL(intel_connector->edid))
- return drm_add_edid_modes(connector, intel_connector->edid);
+ return drm_edid_connector_add_modes(&connector->base);
+ }
- return intel_panel_get_modes(intel_connector);
+ return intel_panel_get_modes(connector);
}
static const struct drm_connector_helper_funcs intel_lvds_connector_helper_funcs = {
@@ -580,12 +582,12 @@ static const struct dmi_system_id intel_no_lvds[] = {
},
{
.callback = intel_no_lvds_dmi_callback,
- .ident = "AOpen i45GMx-I",
- .matches = {
- DMI_MATCH(DMI_BOARD_VENDOR, "AOpen"),
- DMI_MATCH(DMI_BOARD_NAME, "i45GMx-I"),
- },
- },
+ .ident = "AOpen i45GMx-I",
+ .matches = {
+ DMI_MATCH(DMI_BOARD_VENDOR, "AOpen"),
+ DMI_MATCH(DMI_BOARD_NAME, "i45GMx-I"),
+ },
+ },
{
.callback = intel_no_lvds_dmi_callback,
.ident = "Aopen i945GTt-VFA",
@@ -602,14 +604,14 @@ static const struct dmi_system_id intel_no_lvds[] = {
},
},
{
- .callback = intel_no_lvds_dmi_callback,
- .ident = "Clientron E830",
- .matches = {
- DMI_MATCH(DMI_SYS_VENDOR, "Clientron"),
- DMI_MATCH(DMI_PRODUCT_NAME, "E830"),
- },
- },
- {
+ .callback = intel_no_lvds_dmi_callback,
+ .ident = "Clientron E830",
+ .matches = {
+ DMI_MATCH(DMI_SYS_VENDOR, "Clientron"),
+ DMI_MATCH(DMI_PRODUCT_NAME, "E830"),
+ },
+ },
+ {
.callback = intel_no_lvds_dmi_callback,
.ident = "Asus EeeBox PC EB1007",
.matches = {
@@ -759,11 +761,11 @@ static const struct dmi_system_id intel_dual_link_lvds[] = {
{ } /* terminating entry */
};
-struct intel_encoder *intel_get_lvds_encoder(struct drm_i915_private *dev_priv)
+struct intel_encoder *intel_get_lvds_encoder(struct drm_i915_private *i915)
{
struct intel_encoder *encoder;
- for_each_intel_encoder(&dev_priv->drm, encoder) {
+ for_each_intel_encoder(&i915->drm, encoder) {
if (encoder->type == INTEL_OUTPUT_LVDS)
return encoder;
}
@@ -771,24 +773,24 @@ struct intel_encoder *intel_get_lvds_encoder(struct drm_i915_private *dev_priv)
return NULL;
}
-bool intel_is_dual_link_lvds(struct drm_i915_private *dev_priv)
+bool intel_is_dual_link_lvds(struct drm_i915_private *i915)
{
- struct intel_encoder *encoder = intel_get_lvds_encoder(dev_priv);
+ struct intel_encoder *encoder = intel_get_lvds_encoder(i915);
- return encoder && to_lvds_encoder(&encoder->base)->is_dual_link;
+ return encoder && to_lvds_encoder(encoder)->is_dual_link;
}
static bool compute_is_dual_link_lvds(struct intel_lvds_encoder *lvds_encoder)
{
- struct drm_i915_private *dev_priv = to_i915(lvds_encoder->base.base.dev);
+ struct drm_i915_private *i915 = to_i915(lvds_encoder->base.base.dev);
struct intel_connector *connector = lvds_encoder->attached_connector;
const struct drm_display_mode *fixed_mode =
intel_panel_preferred_fixed_mode(connector);
unsigned int val;
/* use the module option value if specified */
- if (dev_priv->params.lvds_channel_mode > 0)
- return dev_priv->params.lvds_channel_mode == 2;
+ if (i915->params.lvds_channel_mode > 0)
+ return i915->params.lvds_channel_mode == 2;
/* single channel LVDS is limited to 112 MHz */
if (fixed_mode->clock > 112999)
@@ -803,8 +805,8 @@ static bool compute_is_dual_link_lvds(struct intel_lvds_encoder *lvds_encoder)
* we need to check "the value to be set" in VBT when LVDS
* register is uninitialized.
*/
- val = intel_de_read(dev_priv, lvds_encoder->reg);
- if (HAS_PCH_CPT(dev_priv))
+ val = intel_de_read(i915, lvds_encoder->reg);
+ if (HAS_PCH_CPT(i915))
val &= ~(LVDS_DETECTED | LVDS_PIPE_SEL_MASK_CPT);
else
val &= ~(LVDS_DETECTED | LVDS_PIPE_SEL_MASK);
@@ -814,60 +816,61 @@ static bool compute_is_dual_link_lvds(struct intel_lvds_encoder *lvds_encoder)
return (val & LVDS_CLKB_POWER_MASK) == LVDS_CLKB_POWER_UP;
}
+static void intel_lvds_add_properties(struct drm_connector *connector)
+{
+ intel_attach_scaling_mode_property(connector);
+}
+
/**
* intel_lvds_init - setup LVDS connectors on this device
- * @dev_priv: i915 device
+ * @i915: i915 device
*
* Create the connector, register the LVDS DDC bus, and try to figure out what
* modes we can display on the LVDS panel (if present).
*/
-void intel_lvds_init(struct drm_i915_private *dev_priv)
+void intel_lvds_init(struct drm_i915_private *i915)
{
- struct drm_device *dev = &dev_priv->drm;
struct intel_lvds_encoder *lvds_encoder;
- struct intel_encoder *intel_encoder;
- struct intel_connector *intel_connector;
- struct drm_connector *connector;
- struct drm_encoder *encoder;
- struct edid *edid;
+ struct intel_connector *connector;
+ const struct drm_edid *drm_edid;
+ struct intel_encoder *encoder;
i915_reg_t lvds_reg;
u32 lvds;
u8 pin;
- u32 allowed_scalers;
/* Skip init on machines we know falsely report LVDS */
if (dmi_check_system(intel_no_lvds)) {
- drm_WARN(dev, !dev_priv->display.vbt.int_lvds_support,
+ drm_WARN(&i915->drm, !i915->display.vbt.int_lvds_support,
"Useless DMI match. Internal LVDS support disabled by VBT\n");
return;
}
- if (!dev_priv->display.vbt.int_lvds_support) {
- drm_dbg_kms(&dev_priv->drm,
+ if (!i915->display.vbt.int_lvds_support) {
+ drm_dbg_kms(&i915->drm,
"Internal LVDS support disabled by VBT\n");
return;
}
- if (HAS_PCH_SPLIT(dev_priv))
+ if (HAS_PCH_SPLIT(i915))
lvds_reg = PCH_LVDS;
else
lvds_reg = LVDS;
- lvds = intel_de_read(dev_priv, lvds_reg);
+ lvds = intel_de_read(i915, lvds_reg);
- if (HAS_PCH_SPLIT(dev_priv)) {
+ if (HAS_PCH_SPLIT(i915)) {
if ((lvds & LVDS_DETECTED) == 0)
return;
}
pin = GMBUS_PIN_PANEL;
- if (!intel_bios_is_lvds_present(dev_priv, &pin)) {
+ if (!intel_bios_is_lvds_present(i915, &pin)) {
if ((lvds & LVDS_PORT_EN) == 0) {
- drm_dbg_kms(&dev_priv->drm,
+ drm_dbg_kms(&i915->drm,
"LVDS is not present in VBT\n");
return;
}
- drm_dbg_kms(&dev_priv->drm,
+ drm_dbg_kms(&i915->drm,
"LVDS is not present in VBT, but enabled anyway\n");
}
@@ -875,64 +878,55 @@ void intel_lvds_init(struct drm_i915_private *dev_priv)
if (!lvds_encoder)
return;
- intel_connector = intel_connector_alloc();
- if (!intel_connector) {
+ connector = intel_connector_alloc();
+ if (!connector) {
kfree(lvds_encoder);
return;
}
- lvds_encoder->attached_connector = intel_connector;
+ lvds_encoder->attached_connector = connector;
+ encoder = &lvds_encoder->base;
- intel_encoder = &lvds_encoder->base;
- encoder = &intel_encoder->base;
- connector = &intel_connector->base;
- drm_connector_init(dev, &intel_connector->base, &intel_lvds_connector_funcs,
+ drm_connector_init(&i915->drm, &connector->base, &intel_lvds_connector_funcs,
DRM_MODE_CONNECTOR_LVDS);
- drm_encoder_init(dev, &intel_encoder->base, &intel_lvds_enc_funcs,
+ drm_encoder_init(&i915->drm, &encoder->base, &intel_lvds_enc_funcs,
DRM_MODE_ENCODER_LVDS, "LVDS");
- intel_encoder->enable = intel_enable_lvds;
- intel_encoder->pre_enable = intel_pre_enable_lvds;
- intel_encoder->compute_config = intel_lvds_compute_config;
- if (HAS_PCH_SPLIT(dev_priv)) {
- intel_encoder->disable = pch_disable_lvds;
- intel_encoder->post_disable = pch_post_disable_lvds;
+ encoder->enable = intel_enable_lvds;
+ encoder->pre_enable = intel_pre_enable_lvds;
+ encoder->compute_config = intel_lvds_compute_config;
+ if (HAS_PCH_SPLIT(i915)) {
+ encoder->disable = pch_disable_lvds;
+ encoder->post_disable = pch_post_disable_lvds;
} else {
- intel_encoder->disable = gmch_disable_lvds;
+ encoder->disable = gmch_disable_lvds;
}
- intel_encoder->get_hw_state = intel_lvds_get_hw_state;
- intel_encoder->get_config = intel_lvds_get_config;
- intel_encoder->update_pipe = intel_backlight_update;
- intel_encoder->shutdown = intel_lvds_shutdown;
- intel_connector->get_hw_state = intel_connector_get_hw_state;
-
- intel_connector_attach_encoder(intel_connector, intel_encoder);
-
- intel_encoder->type = INTEL_OUTPUT_LVDS;
- intel_encoder->power_domain = POWER_DOMAIN_PORT_OTHER;
- intel_encoder->port = PORT_NONE;
- intel_encoder->cloneable = 0;
- if (DISPLAY_VER(dev_priv) < 4)
- intel_encoder->pipe_mask = BIT(PIPE_B);
+ encoder->get_hw_state = intel_lvds_get_hw_state;
+ encoder->get_config = intel_lvds_get_config;
+ encoder->update_pipe = intel_backlight_update;
+ encoder->shutdown = intel_lvds_shutdown;
+ connector->get_hw_state = intel_connector_get_hw_state;
+
+ intel_connector_attach_encoder(connector, encoder);
+
+ encoder->type = INTEL_OUTPUT_LVDS;
+ encoder->power_domain = POWER_DOMAIN_PORT_OTHER;
+ encoder->port = PORT_NONE;
+ encoder->cloneable = 0;
+ if (DISPLAY_VER(i915) < 4)
+ encoder->pipe_mask = BIT(PIPE_B);
else
- intel_encoder->pipe_mask = ~0;
+ encoder->pipe_mask = ~0;
- drm_connector_helper_add(connector, &intel_lvds_connector_helper_funcs);
- connector->display_info.subpixel_order = SubPixelHorizontalRGB;
- connector->interlace_allowed = false;
- connector->doublescan_allowed = false;
+ drm_connector_helper_add(&connector->base, &intel_lvds_connector_helper_funcs);
+ connector->base.display_info.subpixel_order = SubPixelHorizontalRGB;
lvds_encoder->reg = lvds_reg;
- /* create the scaling mode property */
- allowed_scalers = BIT(DRM_MODE_SCALE_ASPECT);
- allowed_scalers |= BIT(DRM_MODE_SCALE_FULLSCREEN);
- allowed_scalers |= BIT(DRM_MODE_SCALE_CENTER);
- drm_connector_attach_scaling_mode_property(connector, allowed_scalers);
- connector->state->scaling_mode = DRM_MODE_SCALE_ASPECT;
+ intel_lvds_add_properties(&connector->base);
- intel_lvds_pps_get_hw_state(dev_priv, &lvds_encoder->init_pps);
+ intel_lvds_pps_get_hw_state(i915, &lvds_encoder->init_pps);
lvds_encoder->init_lvds_val = lvds;
/*
@@ -947,57 +941,63 @@ void intel_lvds_init(struct drm_i915_private *dev_priv)
* Attempt to get the fixed panel mode from DDC. Assume that the
* preferred mode is the right one.
*/
- mutex_lock(&dev->mode_config.mutex);
- if (vga_switcheroo_handler_flags() & VGA_SWITCHEROO_CAN_SWITCH_DDC)
- edid = drm_get_edid_switcheroo(connector,
- intel_gmbus_get_adapter(dev_priv, pin));
- else
- edid = drm_get_edid(connector,
- intel_gmbus_get_adapter(dev_priv, pin));
- if (edid) {
- if (drm_add_edid_modes(connector, edid)) {
- drm_connector_update_edid_property(connector,
- edid);
- } else {
+ mutex_lock(&i915->drm.mode_config.mutex);
+ if (vga_switcheroo_handler_flags() & VGA_SWITCHEROO_CAN_SWITCH_DDC) {
+ const struct edid *edid;
+
+ /* FIXME: Make drm_get_edid_switcheroo() return drm_edid */
+ edid = drm_get_edid_switcheroo(&connector->base,
+ intel_gmbus_get_adapter(i915, pin));
+ if (edid) {
+ drm_edid = drm_edid_alloc(edid, (edid->extensions + 1) * EDID_LENGTH);
kfree(edid);
- edid = ERR_PTR(-EINVAL);
+ } else {
+ drm_edid = NULL;
}
} else {
- edid = ERR_PTR(-ENOENT);
+ drm_edid = drm_edid_read_ddc(&connector->base,
+ intel_gmbus_get_adapter(i915, pin));
}
- intel_connector->edid = edid;
-
- intel_bios_init_panel(dev_priv, &intel_connector->panel, NULL,
- IS_ERR(edid) ? NULL : edid);
+ if (drm_edid) {
+ if (drm_edid_connector_update(&connector->base, drm_edid) ||
+ !drm_edid_connector_add_modes(&connector->base)) {
+ drm_edid_connector_update(&connector->base, NULL);
+ drm_edid_free(drm_edid);
+ drm_edid = ERR_PTR(-EINVAL);
+ }
+ } else {
+ drm_edid = ERR_PTR(-ENOENT);
+ }
+ intel_bios_init_panel_late(i915, &connector->panel, NULL,
+ IS_ERR(drm_edid) ? NULL : drm_edid);
/* Try EDID first */
- intel_panel_add_edid_fixed_modes(intel_connector,
- intel_connector->panel.vbt.drrs_type != DRRS_TYPE_NONE);
+ intel_panel_add_edid_fixed_modes(connector, true);
/* Failed to get EDID, what about VBT? */
- if (!intel_panel_preferred_fixed_mode(intel_connector))
- intel_panel_add_vbt_lfp_fixed_mode(intel_connector);
+ if (!intel_panel_preferred_fixed_mode(connector))
+ intel_panel_add_vbt_lfp_fixed_mode(connector);
/*
* If we didn't get a fixed mode from EDID or VBT, try checking
* if the panel is already turned on. If so, assume that
* whatever is currently programmed is the correct mode.
*/
- if (!intel_panel_preferred_fixed_mode(intel_connector))
- intel_panel_add_encoder_fixed_mode(intel_connector, intel_encoder);
+ if (!intel_panel_preferred_fixed_mode(connector))
+ intel_panel_add_encoder_fixed_mode(connector, encoder);
- mutex_unlock(&dev->mode_config.mutex);
+ mutex_unlock(&i915->drm.mode_config.mutex);
/* If we still don't have a mode after all that, give up. */
- if (!intel_panel_preferred_fixed_mode(intel_connector))
+ if (!intel_panel_preferred_fixed_mode(connector))
goto failed;
- intel_panel_init(intel_connector);
+ intel_panel_init(connector, drm_edid);
- intel_backlight_setup(intel_connector, INVALID_PIPE);
+ intel_backlight_setup(connector, INVALID_PIPE);
lvds_encoder->is_dual_link = compute_is_dual_link_lvds(lvds_encoder);
- drm_dbg_kms(&dev_priv->drm, "detected %s-link lvds configuration\n",
+ drm_dbg_kms(&i915->drm, "detected %s-link lvds configuration\n",
lvds_encoder->is_dual_link ? "dual" : "single");
lvds_encoder->a3_power = lvds & LVDS_A3_POWER_MASK;
@@ -1005,10 +1005,10 @@ void intel_lvds_init(struct drm_i915_private *dev_priv)
return;
failed:
- drm_dbg_kms(&dev_priv->drm, "No LVDS modes found, disabling.\n");
- drm_connector_cleanup(connector);
- drm_encoder_cleanup(encoder);
+ drm_dbg_kms(&i915->drm, "No LVDS modes found, disabling.\n");
+ drm_connector_cleanup(&connector->base);
+ drm_encoder_cleanup(&encoder->base);
kfree(lvds_encoder);
- intel_connector_free(intel_connector);
+ intel_connector_free(connector);
return;
}
diff --git a/drivers/gpu/drm/i915/display/intel_lvds_regs.h b/drivers/gpu/drm/i915/display/intel_lvds_regs.h
new file mode 100644
index 000000000000..47c1832819ee
--- /dev/null
+++ b/drivers/gpu/drm/i915/display/intel_lvds_regs.h
@@ -0,0 +1,65 @@
+/* SPDX-License-Identifier: MIT */
+/*
+ * Copyright © 2023 Intel Corporation
+ */
+
+#ifndef __INTEL_LVDS_REGS_H__
+#define __INTEL_LVDS_REGS_H__
+
+#include "intel_display_reg_defs.h"
+
+/* LVDS port control */
+#define LVDS _MMIO(0x61180)
+/*
+ * Enables the LVDS port. This bit must be set before DPLLs are enabled, as
+ * the DPLL semantics change when the LVDS is assigned to that pipe.
+ */
+#define LVDS_PORT_EN REG_BIT(31)
+/* Selects pipe B for LVDS data. Must be set on pre-965. */
+#define LVDS_PIPE_SEL_MASK REG_BIT(30)
+#define LVDS_PIPE_SEL(pipe) REG_FIELD_PREP(LVDS_PIPE_SEL_MASK, (pipe))
+#define LVDS_PIPE_SEL_MASK_CPT REG_GENMASK(30, 29)
+#define LVDS_PIPE_SEL_CPT(pipe) REG_FIELD_PREP(LVDS_PIPE_SEL_MASK_CPT, (pipe))
+/* LVDS dithering flag on 965/g4x platform */
+#define LVDS_ENABLE_DITHER REG_BIT(25)
+/* LVDS sync polarity flags. Set to invert (i.e. negative) */
+#define LVDS_VSYNC_POLARITY REG_BIT(21)
+#define LVDS_HSYNC_POLARITY REG_BIT(20)
+
+/* Enable border for unscaled (or aspect-scaled) display */
+#define LVDS_BORDER_ENABLE REG_BIT(15)
+/*
+ * Enables the A0-A2 data pairs and CLKA, containing 18 bits of color data per
+ * pixel.
+ */
+#define LVDS_A0A2_CLKA_POWER_MASK REG_GENMASK(9, 8)
+#define LVDS_A0A2_CLKA_POWER_DOWN REG_FIELD_PREP(LVDS_A0A2_CLKA_POWER_MASK, 0)
+#define LVDS_A0A2_CLKA_POWER_UP REG_FIELD_PREP(LVDS_A0A2_CLKA_POWER_MASK, 3)
+/*
+ * Controls the A3 data pair, which contains the additional LSBs for 24 bit
+ * mode. Only enabled if LVDS_A0A2_CLKA_POWER_UP also indicates it should be
+ * on.
+ */
+#define LVDS_A3_POWER_MASK REG_GENMASK(7, 6)
+#define LVDS_A3_POWER_DOWN REG_FIELD_PREP(LVDS_A3_POWER_MASK, 0)
+#define LVDS_A3_POWER_UP REG_FIELD_PREP(LVDS_A3_POWER_MASK, 3)
+/*
+ * Controls the CLKB pair. This should only be set when LVDS_B0B3_POWER_UP
+ * is set.
+ */
+#define LVDS_CLKB_POWER_MASK REG_GENMASK(5, 4)
+#define LVDS_CLKB_POWER_DOWN REG_FIELD_PREP(LVDS_CLKB_POWER_MASK, 0)
+#define LVDS_CLKB_POWER_UP REG_FIELD_PREP(LVDS_CLKB_POWER_MASK, 3)
+/*
+ * Controls the B0-B3 data pairs. This must be set to match the DPLL p2
+ * setting for whether we are in dual-channel mode. The B3 pair will
+ * additionally only be powered up when LVDS_A3_POWER_UP is set.
+ */
+#define LVDS_B0B3_POWER_MASK REG_GENMASK(3, 2)
+#define LVDS_B0B3_POWER_DOWN REG_FIELD_PREP(LVDS_B0B3_POWER_MASK, 0)
+#define LVDS_B0B3_POWER_UP REG_FIELD_PREP(LVDS_B0B3_POWER_MASK, 3)
+
+#define PCH_LVDS _MMIO(0xe1180)
+#define LVDS_DETECTED REG_BIT(1)
+
+#endif /* __INTEL_LVDS_REGS_H__ */
diff --git a/drivers/gpu/drm/i915/display/intel_tc_phy_regs.h b/drivers/gpu/drm/i915/display/intel_mg_phy_regs.h
index 5a545086f959..0306ade2bc30 100644
--- a/drivers/gpu/drm/i915/display/intel_tc_phy_regs.h
+++ b/drivers/gpu/drm/i915/display/intel_mg_phy_regs.h
@@ -3,10 +3,10 @@
* Copyright © 2022 Intel Corporation
*/
-#ifndef __INTEL_TC_PHY_REGS__
-#define __INTEL_TC_PHY_REGS__
+#ifndef __INTEL_MG_PHY_REGS__
+#define __INTEL_MG_PHY_REGS__
-#include "i915_reg_defs.h"
+#include "intel_display_reg_defs.h"
#define MG_PHY_PORT_LN(ln, tc_port, ln0p1, ln0p2, ln1p1) \
_MMIO(_PORT(tc_port, ln0p1, ln0p2) + (ln) * ((ln1p1) - (ln0p1)))
@@ -142,7 +142,9 @@
#define FIA1_BASE 0x163000
#define FIA2_BASE 0x16E000
#define FIA3_BASE 0x16F000
-#define _FIA(fia) _PICK((fia), FIA1_BASE, FIA2_BASE, FIA3_BASE)
+#define _FIA(fia) _PICK_EVEN_2RANGES((fia), 1, \
+ FIA1_BASE, FIA1_BASE,\
+ FIA2_BASE, FIA3_BASE)
#define _MMIO_FIA(fia, off) _MMIO(_FIA(fia) + (off))
/* ICL PHY DFLEX registers */
@@ -277,4 +279,4 @@
_MG_PLL_TDC_COLDST_BIAS_PORT1, \
_MG_PLL_TDC_COLDST_BIAS_PORT2)
-#endif /* __INTEL_TC_PHY_REGS__ */
+#endif /* __INTEL_MG_PHY_REGS__ */
diff --git a/drivers/gpu/drm/i915/display/intel_modeset_setup.c b/drivers/gpu/drm/i915/display/intel_modeset_setup.c
index cbfabd58b75a..134b943f1953 100644
--- a/drivers/gpu/drm/i915/display/intel_modeset_setup.c
+++ b/drivers/gpu/drm/i915/display/intel_modeset_setup.c
@@ -10,6 +10,8 @@
#include <drm/drm_atomic_state_helper.h>
#include "i915_drv.h"
+#include "i915_reg.h"
+#include "i9xx_wm.h"
#include "intel_atomic.h"
#include "intel_bw.h"
#include "intel_color.h"
@@ -20,9 +22,12 @@
#include "intel_display.h"
#include "intel_display_power.h"
#include "intel_display_types.h"
+#include "intel_dmc.h"
+#include "intel_fifo_underrun.h"
#include "intel_modeset_setup.h"
#include "intel_pch_display.h"
-#include "intel_pm.h"
+#include "intel_vblank.h"
+#include "intel_wm.h"
#include "skl_watermark.h"
static void intel_crtc_disable_noatomic(struct intel_crtc *crtc,
@@ -95,7 +100,6 @@ static void intel_crtc_disable_noatomic(struct intel_crtc *crtc,
intel_fbc_disable(crtc);
intel_update_watermarks(i915);
- intel_disable_shared_dpll(crtc_state);
intel_display_power_put_all_in_set(i915, &crtc->enabled_power_domains);
@@ -155,6 +159,12 @@ static void intel_crtc_copy_hw_to_uapi_state(struct intel_crtc_state *crtc_state
crtc_state->uapi.adjusted_mode = crtc_state->hw.adjusted_mode;
crtc_state->uapi.scaling_filter = crtc_state->hw.scaling_filter;
+ /* assume 1:1 mapping */
+ drm_property_replace_blob(&crtc_state->hw.degamma_lut,
+ crtc_state->pre_csc_lut);
+ drm_property_replace_blob(&crtc_state->hw.gamma_lut,
+ crtc_state->post_csc_lut);
+
drm_property_replace_blob(&crtc_state->uapi.degamma_lut,
crtc_state->hw.degamma_lut);
drm_property_replace_blob(&crtc_state->uapi.gamma_lut,
@@ -205,13 +215,21 @@ static bool intel_crtc_has_encoders(struct intel_crtc *crtc)
static struct intel_connector *intel_encoder_find_connector(struct intel_encoder *encoder)
{
- struct drm_device *dev = encoder->base.dev;
+ struct drm_i915_private *i915 = to_i915(encoder->base.dev);
+ struct drm_connector_list_iter conn_iter;
struct intel_connector *connector;
+ struct intel_connector *found_connector = NULL;
- for_each_connector_on_encoder(dev, &encoder->base, connector)
- return connector;
+ drm_connector_list_iter_begin(&i915->drm, &conn_iter);
+ for_each_intel_connector_iter(connector, &conn_iter) {
+ if (&encoder->base == connector->base.encoder) {
+ found_connector = connector;
+ break;
+ }
+ }
+ drm_connector_list_iter_end(&conn_iter);
- return NULL;
+ return found_connector;
}
static void intel_sanitize_fifo_underrun_reporting(const struct intel_crtc_state *crtc_state)
@@ -219,12 +237,9 @@ static void intel_sanitize_fifo_underrun_reporting(const struct intel_crtc_state
struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
struct drm_i915_private *i915 = to_i915(crtc->base.dev);
- if (!crtc_state->hw.active && !HAS_GMCH(i915))
- return;
-
/*
- * We start out with underrun reporting disabled to avoid races.
- * For correct bookkeeping mark this on active crtcs.
+ * We start out with underrun reporting disabled on active
+ * pipes to avoid races.
*
* Also on gmch platforms we dont have any hardware bits to
* disable the underrun reporting. Which means we need to start
@@ -235,19 +250,9 @@ static void intel_sanitize_fifo_underrun_reporting(const struct intel_crtc_state
* No protection against concurrent access is required - at
* worst a fifo underrun happens which also sets this to false.
*/
- crtc->cpu_fifo_underrun_disabled = true;
-
- /*
- * We track the PCH trancoder underrun reporting state
- * within the crtc. With crtc for pipe A housing the underrun
- * reporting state for PCH transcoder A, crtc for pipe B housing
- * it for PCH transcoder B, etc. LPT-H has only PCH transcoder A,
- * and marking underrun reporting as disabled for the non-existing
- * PCH transcoders B and C would prevent enabling the south
- * error interrupt (see cpt_can_enable_serr_int()).
- */
- if (intel_has_pch_trancoder(i915, crtc->pipe))
- crtc->pch_fifo_underrun_disabled = true;
+ intel_init_fifo_underrun_reporting(i915, crtc,
+ !crtc_state->hw.active &&
+ !HAS_GMCH(i915));
}
static void intel_sanitize_crtc(struct intel_crtc *crtc,
@@ -632,17 +637,14 @@ static void intel_early_display_was(struct drm_i915_private *i915)
* Also known as Wa_14010480278.
*/
if (IS_DISPLAY_VER(i915, 10, 12))
- intel_de_write(i915, GEN9_CLKGATE_DIS_0,
- intel_de_read(i915, GEN9_CLKGATE_DIS_0) | DARBF_GATING_DIS);
+ intel_de_rmw(i915, GEN9_CLKGATE_DIS_0, 0, DARBF_GATING_DIS);
- if (IS_HASWELL(i915)) {
- /*
- * WaRsPkgCStateDisplayPMReq:hsw
- * System hang if this isn't done before disabling all planes!
- */
- intel_de_write(i915, CHICKEN_PAR1_1,
- intel_de_read(i915, CHICKEN_PAR1_1) | FORCE_ARB_IDLE_PLANES);
- }
+ /*
+ * WaRsPkgCStateDisplayPMReq:hsw
+ * System hang if this isn't done before disabling all planes!
+ */
+ if (IS_HASWELL(i915))
+ intel_de_rmw(i915, CHICKEN_PAR1_1, 0, FORCE_ARB_IDLE_PLANES);
if (IS_KABYLAKE(i915) || IS_COFFEELAKE(i915) || IS_COMETLAKE(i915)) {
/* Display WA #1142:kbl,cfl,cml */
@@ -683,8 +685,10 @@ void intel_modeset_setup_hw_state(struct drm_i915_private *i915,
drm_crtc_vblank_reset(&crtc->base);
- if (crtc_state->hw.active)
+ if (crtc_state->hw.active) {
+ intel_dmc_enable_pipe(i915, crtc->pipe);
intel_crtc_vblank_on(crtc_state);
+ }
}
intel_fbc_sanitize(i915);
@@ -706,18 +710,7 @@ void intel_modeset_setup_hw_state(struct drm_i915_private *i915,
intel_dpll_sanitize_state(i915);
- if (IS_G4X(i915)) {
- g4x_wm_get_hw_state(i915);
- g4x_wm_sanitize(i915);
- } else if (IS_VALLEYVIEW(i915) || IS_CHERRYVIEW(i915)) {
- vlv_wm_get_hw_state(i915);
- vlv_wm_sanitize(i915);
- } else if (DISPLAY_VER(i915) >= 9) {
- skl_wm_get_hw_state(i915);
- skl_wm_sanitize(i915);
- } else if (HAS_PCH_SPLIT(i915)) {
- ilk_wm_get_hw_state(i915);
- }
+ intel_wm_get_hw_state(i915);
for_each_intel_crtc(&i915->drm, crtc) {
struct intel_crtc_state *crtc_state =
diff --git a/drivers/gpu/drm/i915/display/intel_modeset_verify.c b/drivers/gpu/drm/i915/display/intel_modeset_verify.c
index 0fdcf2e6d57f..842d70f0dfd2 100644
--- a/drivers/gpu/drm/i915/display/intel_modeset_verify.c
+++ b/drivers/gpu/drm/i915/display/intel_modeset_verify.c
@@ -227,7 +227,8 @@ void intel_modeset_verify_crtc(struct intel_crtc *crtc,
struct intel_crtc_state *old_crtc_state,
struct intel_crtc_state *new_crtc_state)
{
- if (!intel_crtc_needs_modeset(new_crtc_state) && !new_crtc_state->update_pipe)
+ if (!intel_crtc_needs_modeset(new_crtc_state) &&
+ !intel_crtc_needs_fastset(new_crtc_state))
return;
intel_wm_state_verify(crtc, new_crtc_state);
diff --git a/drivers/gpu/drm/i915/display/intel_opregion.c b/drivers/gpu/drm/i915/display/intel_opregion.c
index caa07ef34f21..b7973a05d022 100644
--- a/drivers/gpu/drm/i915/display/intel_opregion.c
+++ b/drivers/gpu/drm/i915/display/intel_opregion.c
@@ -463,7 +463,6 @@ static u32 asle_set_backlight(struct drm_i915_private *dev_priv, u32 bclp)
struct intel_connector *connector;
struct drm_connector_list_iter conn_iter;
struct opregion_asle *asle = dev_priv->display.opregion.asle;
- struct drm_device *dev = &dev_priv->drm;
drm_dbg(&dev_priv->drm, "bclp = 0x%08x\n", bclp);
@@ -480,7 +479,7 @@ static u32 asle_set_backlight(struct drm_i915_private *dev_priv, u32 bclp)
if (bclp > 255)
return ASLC_BACKLIGHT_FAILED;
- drm_modeset_lock(&dev->mode_config.connection_mutex, NULL);
+ drm_modeset_lock(&dev_priv->drm.mode_config.connection_mutex, NULL);
/*
* Update backlight on all connectors that support backlight (usually
@@ -488,13 +487,13 @@ static u32 asle_set_backlight(struct drm_i915_private *dev_priv, u32 bclp)
*/
drm_dbg_kms(&dev_priv->drm, "updating opregion backlight %d/255\n",
bclp);
- drm_connector_list_iter_begin(dev, &conn_iter);
+ drm_connector_list_iter_begin(&dev_priv->drm, &conn_iter);
for_each_intel_connector_iter(connector, &conn_iter)
intel_backlight_set_acpi(connector->base.state, bclp, 255);
drm_connector_list_iter_end(&conn_iter);
asle->cblv = DIV_ROUND_UP(bclp * 100, 255) | ASLE_CBLV_VALID;
- drm_modeset_unlock(&dev->mode_config.connection_mutex);
+ drm_modeset_unlock(&dev_priv->drm.mode_config.connection_mutex);
return 0;
@@ -1102,41 +1101,34 @@ intel_opregion_get_panel_type(struct drm_i915_private *dev_priv)
* The EDID in the OpRegion, or NULL if there is none or it's invalid.
*
*/
-struct edid *intel_opregion_get_edid(struct intel_connector *intel_connector)
+const struct drm_edid *intel_opregion_get_edid(struct intel_connector *intel_connector)
{
struct drm_connector *connector = &intel_connector->base;
struct drm_i915_private *i915 = to_i915(connector->dev);
struct intel_opregion *opregion = &i915->display.opregion;
- const void *in_edid;
- const struct edid *edid;
- struct edid *new_edid;
+ const struct drm_edid *drm_edid;
+ const void *edid;
int len;
if (!opregion->asle_ext)
return NULL;
- in_edid = opregion->asle_ext->bddc;
+ edid = opregion->asle_ext->bddc;
/* Validity corresponds to number of 128-byte blocks */
len = (opregion->asle_ext->phed & ASLE_PHED_EDID_VALID_MASK) * 128;
- if (!len || !memchr_inv(in_edid, 0, len))
+ if (!len || !memchr_inv(edid, 0, len))
return NULL;
- edid = in_edid;
+ drm_edid = drm_edid_alloc(edid, len);
- if (len < EDID_LENGTH * (1 + edid->extensions)) {
- drm_dbg_kms(&i915->drm, "Invalid EDID in ACPI OpRegion (Mailbox #5): too short\n");
- return NULL;
- }
- new_edid = drm_edid_duplicate(edid);
- if (!new_edid)
- return NULL;
- if (!drm_edid_is_valid(new_edid)) {
- kfree(new_edid);
+ if (!drm_edid_valid(drm_edid)) {
drm_dbg_kms(&i915->drm, "Invalid EDID in ACPI OpRegion (Mailbox #5)\n");
- return NULL;
+ drm_edid_free(drm_edid);
+ drm_edid = NULL;
}
- return new_edid;
+
+ return drm_edid;
}
bool intel_opregion_headless_sku(struct drm_i915_private *i915)
@@ -1167,13 +1159,10 @@ void intel_opregion_register(struct drm_i915_private *i915)
intel_opregion_resume(i915);
}
-void intel_opregion_resume(struct drm_i915_private *i915)
+static void intel_opregion_resume_display(struct drm_i915_private *i915)
{
struct intel_opregion *opregion = &i915->display.opregion;
- if (!opregion->header)
- return;
-
if (opregion->acpi) {
intel_didl_outputs(i915);
intel_setup_cadls(i915);
@@ -1194,18 +1183,24 @@ void intel_opregion_resume(struct drm_i915_private *i915)
/* Some platforms abuse the _DSM to enable MUX */
intel_dsm_get_bios_data_funcs_supported(i915);
-
- intel_opregion_notify_adapter(i915, PCI_D0);
}
-void intel_opregion_suspend(struct drm_i915_private *i915, pci_power_t state)
+void intel_opregion_resume(struct drm_i915_private *i915)
{
struct intel_opregion *opregion = &i915->display.opregion;
if (!opregion->header)
return;
- intel_opregion_notify_adapter(i915, state);
+ if (HAS_DISPLAY(i915))
+ intel_opregion_resume_display(i915);
+
+ intel_opregion_notify_adapter(i915, PCI_D0);
+}
+
+static void intel_opregion_suspend_display(struct drm_i915_private *i915)
+{
+ struct intel_opregion *opregion = &i915->display.opregion;
if (opregion->asle)
opregion->asle->ardy = ASLE_ARDY_NOT_READY;
@@ -1216,6 +1211,19 @@ void intel_opregion_suspend(struct drm_i915_private *i915, pci_power_t state)
opregion->acpi->drdy = 0;
}
+void intel_opregion_suspend(struct drm_i915_private *i915, pci_power_t state)
+{
+ struct intel_opregion *opregion = &i915->display.opregion;
+
+ if (!opregion->header)
+ return;
+
+ intel_opregion_notify_adapter(i915, state);
+
+ if (HAS_DISPLAY(i915))
+ intel_opregion_suspend_display(i915);
+}
+
void intel_opregion_unregister(struct drm_i915_private *i915)
{
struct intel_opregion *opregion = &i915->display.opregion;
@@ -1229,6 +1237,14 @@ void intel_opregion_unregister(struct drm_i915_private *i915)
unregister_acpi_notifier(&opregion->acpi_notifier);
opregion->acpi_notifier.notifier_call = NULL;
}
+}
+
+void intel_opregion_cleanup(struct drm_i915_private *i915)
+{
+ struct intel_opregion *opregion = &i915->display.opregion;
+
+ if (!opregion->header)
+ return;
/* just clear all opregion memory pointers now */
memunmap(opregion->header);
diff --git a/drivers/gpu/drm/i915/display/intel_opregion.h b/drivers/gpu/drm/i915/display/intel_opregion.h
index 2f261f985400..fd2ea8ef0fa2 100644
--- a/drivers/gpu/drm/i915/display/intel_opregion.h
+++ b/drivers/gpu/drm/i915/display/intel_opregion.h
@@ -60,6 +60,7 @@ struct intel_opregion {
#ifdef CONFIG_ACPI
int intel_opregion_setup(struct drm_i915_private *dev_priv);
+void intel_opregion_cleanup(struct drm_i915_private *i915);
void intel_opregion_register(struct drm_i915_private *dev_priv);
void intel_opregion_unregister(struct drm_i915_private *dev_priv);
@@ -74,7 +75,7 @@ int intel_opregion_notify_encoder(struct intel_encoder *intel_encoder,
int intel_opregion_notify_adapter(struct drm_i915_private *dev_priv,
pci_power_t state);
int intel_opregion_get_panel_type(struct drm_i915_private *dev_priv);
-struct edid *intel_opregion_get_edid(struct intel_connector *connector);
+const struct drm_edid *intel_opregion_get_edid(struct intel_connector *connector);
bool intel_opregion_headless_sku(struct drm_i915_private *i915);
@@ -85,6 +86,10 @@ static inline int intel_opregion_setup(struct drm_i915_private *dev_priv)
return 0;
}
+static inline void intel_opregion_cleanup(struct drm_i915_private *i915)
+{
+}
+
static inline void intel_opregion_register(struct drm_i915_private *dev_priv)
{
}
@@ -123,7 +128,7 @@ static inline int intel_opregion_get_panel_type(struct drm_i915_private *dev)
return -ENODEV;
}
-static inline struct edid *
+static inline const struct drm_edid *
intel_opregion_get_edid(struct intel_connector *connector)
{
return NULL;
diff --git a/drivers/gpu/drm/i915/display/intel_panel.c b/drivers/gpu/drm/i915/display/intel_panel.c
index 41cec9dc4223..ce2a34a25211 100644
--- a/drivers/gpu/drm/i915/display/intel_panel.c
+++ b/drivers/gpu/drm/i915/display/intel_panel.c
@@ -31,11 +31,15 @@
#include <linux/kernel.h>
#include <linux/pwm.h>
+#include <drm/drm_edid.h>
+
+#include "i915_reg.h"
#include "intel_backlight.h"
#include "intel_connector.h"
#include "intel_de.h"
#include "intel_display_types.h"
#include "intel_drrs.h"
+#include "intel_lvds_regs.h"
#include "intel_panel.h"
#include "intel_quirks.h"
@@ -85,9 +89,10 @@ static bool is_alt_drrs_mode(const struct drm_display_mode *mode,
static bool is_alt_fixed_mode(const struct drm_display_mode *mode,
const struct drm_display_mode *preferred_mode)
{
- return drm_mode_match(mode, preferred_mode,
- DRM_MODE_MATCH_FLAGS |
- DRM_MODE_MATCH_3D_FLAGS) &&
+ u32 sync_flags = DRM_MODE_FLAG_PHSYNC | DRM_MODE_FLAG_NHSYNC |
+ DRM_MODE_FLAG_PVSYNC | DRM_MODE_FLAG_NVSYNC;
+
+ return (mode->flags & ~sync_flags) == (preferred_mode->flags & ~sync_flags) &&
mode->hdisplay == preferred_mode->hdisplay &&
mode->vdisplay == preferred_mode->vdisplay;
}
@@ -147,12 +152,24 @@ int intel_panel_get_modes(struct intel_connector *connector)
return num_modes;
}
-enum drrs_type intel_panel_drrs_type(struct intel_connector *connector)
+static bool has_drrs_modes(struct intel_connector *connector)
{
- if (list_empty(&connector->panel.fixed_modes) ||
- list_is_singular(&connector->panel.fixed_modes))
- return DRRS_TYPE_NONE;
+ const struct drm_display_mode *mode1;
+
+ list_for_each_entry(mode1, &connector->panel.fixed_modes, head) {
+ const struct drm_display_mode *mode2 = mode1;
+
+ list_for_each_entry_continue(mode2, &connector->panel.fixed_modes, head) {
+ if (is_alt_drrs_mode(mode1, mode2))
+ return true;
+ }
+ }
+
+ return false;
+}
+enum drrs_type intel_panel_drrs_type(struct intel_connector *connector)
+{
return connector->panel.vbt.drrs_type;
}
@@ -647,12 +664,27 @@ intel_panel_mode_valid(struct intel_connector *connector,
return MODE_OK;
}
-int intel_panel_init(struct intel_connector *connector)
+void intel_panel_init_alloc(struct intel_connector *connector)
{
struct intel_panel *panel = &connector->panel;
+ connector->panel.vbt.panel_type = -1;
+ connector->panel.vbt.backlight.controller = -1;
+ INIT_LIST_HEAD(&panel->fixed_modes);
+}
+
+int intel_panel_init(struct intel_connector *connector,
+ const struct drm_edid *fixed_edid)
+{
+ struct intel_panel *panel = &connector->panel;
+
+ panel->fixed_edid = fixed_edid;
+
intel_backlight_init_funcs(panel);
+ if (!has_drrs_modes(connector))
+ connector->panel.vbt.drrs_type = DRRS_TYPE_NONE;
+
drm_dbg_kms(connector->base.dev,
"[CONNECTOR:%d:%s] DRRS type: %s\n",
connector->base.base.id, connector->base.name,
@@ -666,6 +698,9 @@ void intel_panel_fini(struct intel_connector *connector)
struct intel_panel *panel = &connector->panel;
struct drm_display_mode *fixed_mode, *next;
+ if (!IS_ERR_OR_NULL(panel->fixed_edid))
+ drm_edid_free(panel->fixed_edid);
+
intel_backlight_destroy(panel);
intel_bios_fini_panel(panel);
diff --git a/drivers/gpu/drm/i915/display/intel_panel.h b/drivers/gpu/drm/i915/display/intel_panel.h
index 5c5b5b7f95b6..15a8c897b33f 100644
--- a/drivers/gpu/drm/i915/display/intel_panel.h
+++ b/drivers/gpu/drm/i915/display/intel_panel.h
@@ -13,12 +13,15 @@ enum drrs_type;
struct drm_connector;
struct drm_connector_state;
struct drm_display_mode;
+struct drm_edid;
struct drm_i915_private;
struct intel_connector;
struct intel_crtc_state;
struct intel_encoder;
-int intel_panel_init(struct intel_connector *connector);
+void intel_panel_init_alloc(struct intel_connector *connector);
+int intel_panel_init(struct intel_connector *connector,
+ const struct drm_edid *fixed_edid);
void intel_panel_fini(struct intel_connector *connector);
enum drm_connector_status
intel_panel_detect(struct drm_connector *connector, bool force);
diff --git a/drivers/gpu/drm/i915/display/intel_pch_display.c b/drivers/gpu/drm/i915/display/intel_pch_display.c
index 837152dca063..2411fe4dee8b 100644
--- a/drivers/gpu/drm/i915/display/intel_pch_display.c
+++ b/drivers/gpu/drm/i915/display/intel_pch_display.c
@@ -4,11 +4,14 @@
*/
#include "g4x_dp.h"
+#include "i915_reg.h"
#include "intel_crt.h"
#include "intel_de.h"
#include "intel_display_types.h"
#include "intel_fdi.h"
+#include "intel_fdi_regs.h"
#include "intel_lvds.h"
+#include "intel_lvds_regs.h"
#include "intel_pch_display.h"
#include "intel_pch_refclk.h"
#include "intel_pps.h"
@@ -218,20 +221,20 @@ static void ilk_pch_transcoder_set_timings(const struct intel_crtc_state *crtc_s
enum transcoder cpu_transcoder = crtc_state->cpu_transcoder;
intel_de_write(dev_priv, PCH_TRANS_HTOTAL(pch_transcoder),
- intel_de_read(dev_priv, HTOTAL(cpu_transcoder)));
+ intel_de_read(dev_priv, TRANS_HTOTAL(cpu_transcoder)));
intel_de_write(dev_priv, PCH_TRANS_HBLANK(pch_transcoder),
- intel_de_read(dev_priv, HBLANK(cpu_transcoder)));
+ intel_de_read(dev_priv, TRANS_HBLANK(cpu_transcoder)));
intel_de_write(dev_priv, PCH_TRANS_HSYNC(pch_transcoder),
- intel_de_read(dev_priv, HSYNC(cpu_transcoder)));
+ intel_de_read(dev_priv, TRANS_HSYNC(cpu_transcoder)));
intel_de_write(dev_priv, PCH_TRANS_VTOTAL(pch_transcoder),
- intel_de_read(dev_priv, VTOTAL(cpu_transcoder)));
+ intel_de_read(dev_priv, TRANS_VTOTAL(cpu_transcoder)));
intel_de_write(dev_priv, PCH_TRANS_VBLANK(pch_transcoder),
- intel_de_read(dev_priv, VBLANK(cpu_transcoder)));
+ intel_de_read(dev_priv, TRANS_VBLANK(cpu_transcoder)));
intel_de_write(dev_priv, PCH_TRANS_VSYNC(pch_transcoder),
- intel_de_read(dev_priv, VSYNC(cpu_transcoder)));
+ intel_de_read(dev_priv, TRANS_VSYNC(cpu_transcoder)));
intel_de_write(dev_priv, PCH_TRANS_VSYNCSHIFT(pch_transcoder),
- intel_de_read(dev_priv, VSYNCSHIFT(cpu_transcoder)));
+ intel_de_read(dev_priv, TRANS_VSYNCSHIFT(cpu_transcoder)));
}
static void ilk_enable_pch_transcoder(const struct intel_crtc_state *crtc_state)
@@ -265,7 +268,7 @@ static void ilk_enable_pch_transcoder(const struct intel_crtc_state *crtc_state)
reg = PCH_TRANSCONF(pipe);
val = intel_de_read(dev_priv, reg);
- pipeconf_val = intel_de_read(dev_priv, PIPECONF(pipe));
+ pipeconf_val = intel_de_read(dev_priv, TRANSCONF(pipe));
if (HAS_PCH_IBX(dev_priv)) {
/* Configure frame start delay to match the CPU */
@@ -277,15 +280,15 @@ static void ilk_enable_pch_transcoder(const struct intel_crtc_state *crtc_state)
* that in pipeconf reg. For HDMI we must use 8bpc
* here for both 8bpc and 12bpc.
*/
- val &= ~PIPECONF_BPC_MASK;
+ val &= ~TRANSCONF_BPC_MASK;
if (intel_crtc_has_type(crtc_state, INTEL_OUTPUT_HDMI))
- val |= PIPECONF_BPC_8;
+ val |= TRANSCONF_BPC_8;
else
- val |= pipeconf_val & PIPECONF_BPC_MASK;
+ val |= pipeconf_val & TRANSCONF_BPC_MASK;
}
val &= ~TRANS_INTERLACE_MASK;
- if ((pipeconf_val & PIPECONF_INTERLACE_MASK_ILK) == PIPECONF_INTERLACE_IF_ID_ILK) {
+ if ((pipeconf_val & TRANSCONF_INTERLACE_MASK_ILK) == TRANSCONF_INTERLACE_IF_ID_ILK) {
if (HAS_PCH_IBX(dev_priv) &&
intel_crtc_has_type(crtc_state, INTEL_OUTPUT_SDVO))
val |= TRANS_INTERLACE_LEGACY_VSYNC_IBX;
@@ -306,7 +309,6 @@ static void ilk_disable_pch_transcoder(struct intel_crtc *crtc)
struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
enum pipe pipe = crtc->pipe;
i915_reg_t reg;
- u32 val;
/* FDI relies on the transcoder */
assert_fdi_tx_disabled(dev_priv, pipe);
@@ -316,21 +318,16 @@ static void ilk_disable_pch_transcoder(struct intel_crtc *crtc)
assert_pch_ports_disabled(dev_priv, pipe);
reg = PCH_TRANSCONF(pipe);
- val = intel_de_read(dev_priv, reg);
- val &= ~TRANS_ENABLE;
- intel_de_write(dev_priv, reg, val);
+ intel_de_rmw(dev_priv, reg, TRANS_ENABLE, 0);
/* wait for PCH transcoder off, transcoder state */
if (intel_de_wait_for_clear(dev_priv, reg, TRANS_STATE_ENABLE, 50))
drm_err(&dev_priv->drm, "failed to disable transcoder %c\n",
pipe_name(pipe));
- if (HAS_PCH_CPT(dev_priv)) {
+ if (HAS_PCH_CPT(dev_priv))
/* Workaround: Clear the timing override chicken bit again. */
- reg = TRANS_CHICKEN2(pipe);
- val = intel_de_read(dev_priv, reg);
- val &= ~TRANS_CHICKEN2_TIMING_OVERRIDE;
- intel_de_write(dev_priv, reg, val);
- }
+ intel_de_rmw(dev_priv, TRANS_CHICKEN2(pipe),
+ TRANS_CHICKEN2_TIMING_OVERRIDE, 0);
}
void ilk_pch_pre_enable(struct intel_atomic_state *state,
@@ -413,7 +410,7 @@ void ilk_pch_enable(struct intel_atomic_state *state,
intel_crtc_has_dp_encoder(crtc_state)) {
const struct drm_display_mode *adjusted_mode =
&crtc_state->hw.adjusted_mode;
- u32 bpc = (intel_de_read(dev_priv, PIPECONF(pipe)) & PIPECONF_BPC_MASK) >> 5;
+ u32 bpc = (intel_de_read(dev_priv, TRANSCONF(pipe)) & TRANSCONF_BPC_MASK) >> 5;
i915_reg_t reg = TRANS_DP_CTL(pipe);
enum port port;
@@ -455,21 +452,14 @@ void ilk_pch_post_disable(struct intel_atomic_state *state,
ilk_disable_pch_transcoder(crtc);
if (HAS_PCH_CPT(dev_priv)) {
- i915_reg_t reg;
- u32 temp;
-
/* disable TRANS_DP_CTL */
- reg = TRANS_DP_CTL(pipe);
- temp = intel_de_read(dev_priv, reg);
- temp &= ~(TRANS_DP_OUTPUT_ENABLE |
- TRANS_DP_PORT_SEL_MASK);
- temp |= TRANS_DP_PORT_SEL_NONE;
- intel_de_write(dev_priv, reg, temp);
+ intel_de_rmw(dev_priv, TRANS_DP_CTL(pipe),
+ TRANS_DP_OUTPUT_ENABLE | TRANS_DP_PORT_SEL_MASK,
+ TRANS_DP_PORT_SEL_NONE);
/* disable DPLL_SEL */
- temp = intel_de_read(dev_priv, PCH_DPLL_SEL);
- temp &= ~(TRANS_DPLL_ENABLE(pipe) | TRANS_DPLLB_SEL(pipe));
- intel_de_write(dev_priv, PCH_DPLL_SEL, temp);
+ intel_de_rmw(dev_priv, PCH_DPLL_SEL,
+ TRANS_DPLL_ENABLE(pipe) | TRANS_DPLLB_SEL(pipe), 0);
}
ilk_fdi_pll_disable(crtc);
@@ -564,9 +554,9 @@ static void lpt_enable_pch_transcoder(const struct intel_crtc_state *crtc_state)
intel_de_write(dev_priv, TRANS_CHICKEN2(PIPE_A), val);
val = TRANS_ENABLE;
- pipeconf_val = intel_de_read(dev_priv, PIPECONF(cpu_transcoder));
+ pipeconf_val = intel_de_read(dev_priv, TRANSCONF(cpu_transcoder));
- if ((pipeconf_val & PIPECONF_INTERLACE_MASK_HSW) == PIPECONF_INTERLACE_IF_ID_ILK)
+ if ((pipeconf_val & TRANSCONF_INTERLACE_MASK_HSW) == TRANSCONF_INTERLACE_IF_ID_ILK)
val |= TRANS_INTERLACE_INTERLACED;
else
val |= TRANS_INTERLACE_PROGRESSIVE;
@@ -579,20 +569,14 @@ static void lpt_enable_pch_transcoder(const struct intel_crtc_state *crtc_state)
static void lpt_disable_pch_transcoder(struct drm_i915_private *dev_priv)
{
- u32 val;
-
- val = intel_de_read(dev_priv, LPT_TRANSCONF);
- val &= ~TRANS_ENABLE;
- intel_de_write(dev_priv, LPT_TRANSCONF, val);
+ intel_de_rmw(dev_priv, LPT_TRANSCONF, TRANS_ENABLE, 0);
/* wait for PCH transcoder off, transcoder state */
if (intel_de_wait_for_clear(dev_priv, LPT_TRANSCONF,
TRANS_STATE_ENABLE, 50))
drm_err(&dev_priv->drm, "Failed to disable PCH transcoder\n");
/* Workaround: clear timing override bit. */
- val = intel_de_read(dev_priv, TRANS_CHICKEN2(PIPE_A));
- val &= ~TRANS_CHICKEN2_TIMING_OVERRIDE;
- intel_de_write(dev_priv, TRANS_CHICKEN2(PIPE_A), val);
+ intel_de_rmw(dev_priv, TRANS_CHICKEN2(PIPE_A), TRANS_CHICKEN2_TIMING_OVERRIDE, 0);
}
void lpt_pch_enable(struct intel_atomic_state *state,
diff --git a/drivers/gpu/drm/i915/display/intel_pch_refclk.c b/drivers/gpu/drm/i915/display/intel_pch_refclk.c
index a66097cdc1e0..f4c09cc37a5e 100644
--- a/drivers/gpu/drm/i915/display/intel_pch_refclk.c
+++ b/drivers/gpu/drm/i915/display/intel_pch_refclk.c
@@ -3,6 +3,7 @@
* Copyright © 2021 Intel Corporation
*/
+#include "i915_reg.h"
#include "intel_de.h"
#include "intel_display_types.h"
#include "intel_panel.h"
@@ -11,19 +12,13 @@
static void lpt_fdi_reset_mphy(struct drm_i915_private *dev_priv)
{
- u32 tmp;
-
- tmp = intel_de_read(dev_priv, SOUTH_CHICKEN2);
- tmp |= FDI_MPHY_IOSFSB_RESET_CTL;
- intel_de_write(dev_priv, SOUTH_CHICKEN2, tmp);
+ intel_de_rmw(dev_priv, SOUTH_CHICKEN2, 0, FDI_MPHY_IOSFSB_RESET_CTL);
if (wait_for_us(intel_de_read(dev_priv, SOUTH_CHICKEN2) &
FDI_MPHY_IOSFSB_RESET_STATUS, 100))
drm_err(&dev_priv->drm, "FDI mPHY reset assert timeout\n");
- tmp = intel_de_read(dev_priv, SOUTH_CHICKEN2);
- tmp &= ~FDI_MPHY_IOSFSB_RESET_CTL;
- intel_de_write(dev_priv, SOUTH_CHICKEN2, tmp);
+ intel_de_rmw(dev_priv, SOUTH_CHICKEN2, FDI_MPHY_IOSFSB_RESET_CTL, 0);
if (wait_for_us((intel_de_read(dev_priv, SOUTH_CHICKEN2) &
FDI_MPHY_IOSFSB_RESET_STATUS) == 0, 100))
@@ -466,24 +461,24 @@ static void lpt_init_pch_refclk(struct drm_i915_private *dev_priv)
* clock hierarchy. That would also allow us to do
* clock bending finally.
*/
- dev_priv->pch_ssc_use = 0;
+ dev_priv->display.dpll.pch_ssc_use = 0;
if (spll_uses_pch_ssc(dev_priv)) {
drm_dbg_kms(&dev_priv->drm, "SPLL using PCH SSC\n");
- dev_priv->pch_ssc_use |= BIT(DPLL_ID_SPLL);
+ dev_priv->display.dpll.pch_ssc_use |= BIT(DPLL_ID_SPLL);
}
if (wrpll_uses_pch_ssc(dev_priv, DPLL_ID_WRPLL1)) {
drm_dbg_kms(&dev_priv->drm, "WRPLL1 using PCH SSC\n");
- dev_priv->pch_ssc_use |= BIT(DPLL_ID_WRPLL1);
+ dev_priv->display.dpll.pch_ssc_use |= BIT(DPLL_ID_WRPLL1);
}
if (wrpll_uses_pch_ssc(dev_priv, DPLL_ID_WRPLL2)) {
drm_dbg_kms(&dev_priv->drm, "WRPLL2 using PCH SSC\n");
- dev_priv->pch_ssc_use |= BIT(DPLL_ID_WRPLL2);
+ dev_priv->display.dpll.pch_ssc_use |= BIT(DPLL_ID_WRPLL2);
}
- if (dev_priv->pch_ssc_use)
+ if (dev_priv->display.dpll.pch_ssc_use)
return;
if (has_fdi) {
diff --git a/drivers/gpu/drm/i915/display/intel_pipe_crc.c b/drivers/gpu/drm/i915/display/intel_pipe_crc.c
index 8ac263f471be..8d3ea8d7b737 100644
--- a/drivers/gpu/drm/i915/display/intel_pipe_crc.c
+++ b/drivers/gpu/drm/i915/display/intel_pipe_crc.c
@@ -24,11 +24,12 @@
*
*/
-#include <linux/circ_buf.h>
#include <linux/ctype.h>
#include <linux/debugfs.h>
#include <linux/seq_file.h>
+#include "i915_irq.h"
+#include "i915_reg.h"
#include "intel_atomic.h"
#include "intel_de.h"
#include "intel_display_types.h"
@@ -71,20 +72,18 @@ static int i8xx_pipe_crc_ctl_reg(enum intel_pipe_crc_source *source,
return 0;
}
-static int i9xx_pipe_crc_auto_source(struct drm_i915_private *dev_priv,
- enum pipe pipe,
- enum intel_pipe_crc_source *source)
+static void i9xx_pipe_crc_auto_source(struct drm_i915_private *dev_priv,
+ enum pipe pipe,
+ enum intel_pipe_crc_source *source)
{
- struct drm_device *dev = &dev_priv->drm;
struct intel_encoder *encoder;
struct intel_crtc *crtc;
struct intel_digital_port *dig_port;
- int ret = 0;
*source = INTEL_PIPE_CRC_SOURCE_PIPE;
- drm_modeset_lock_all(dev);
- for_each_intel_encoder(dev, encoder) {
+ drm_modeset_lock_all(&dev_priv->drm);
+ for_each_intel_encoder(&dev_priv->drm, encoder) {
if (!encoder->base.crtc)
continue;
@@ -111,7 +110,7 @@ static int i9xx_pipe_crc_auto_source(struct drm_i915_private *dev_priv,
*source = INTEL_PIPE_CRC_SOURCE_DP_D;
break;
default:
- drm_WARN(dev, 1, "nonexisting DP port %c\n",
+ drm_WARN(&dev_priv->drm, 1, "nonexisting DP port %c\n",
port_name(dig_port->base.port));
break;
}
@@ -120,9 +119,7 @@ static int i9xx_pipe_crc_auto_source(struct drm_i915_private *dev_priv,
break;
}
}
- drm_modeset_unlock_all(dev);
-
- return ret;
+ drm_modeset_unlock_all(&dev_priv->drm);
}
static int vlv_pipe_crc_ctl_reg(struct drm_i915_private *dev_priv,
@@ -132,11 +129,8 @@ static int vlv_pipe_crc_ctl_reg(struct drm_i915_private *dev_priv,
{
bool need_stable_symbols = false;
- if (*source == INTEL_PIPE_CRC_SOURCE_AUTO) {
- int ret = i9xx_pipe_crc_auto_source(dev_priv, pipe, source);
- if (ret)
- return ret;
- }
+ if (*source == INTEL_PIPE_CRC_SOURCE_AUTO)
+ i9xx_pipe_crc_auto_source(dev_priv, pipe, source);
switch (*source) {
case INTEL_PIPE_CRC_SOURCE_PIPE:
@@ -200,11 +194,8 @@ static int i9xx_pipe_crc_ctl_reg(struct drm_i915_private *dev_priv,
enum intel_pipe_crc_source *source,
u32 *val)
{
- if (*source == INTEL_PIPE_CRC_SOURCE_AUTO) {
- int ret = i9xx_pipe_crc_auto_source(dev_priv, pipe, source);
- if (ret)
- return ret;
- }
+ if (*source == INTEL_PIPE_CRC_SOURCE_AUTO)
+ i9xx_pipe_crc_auto_source(dev_priv, pipe, source);
switch (*source) {
case INTEL_PIPE_CRC_SOURCE_PIPE:
diff --git a/drivers/gpu/drm/i915/display/intel_plane_initial.c b/drivers/gpu/drm/i915/display/intel_plane_initial.c
index 76be796df255..bb6ea7de5c61 100644
--- a/drivers/gpu/drm/i915/display/intel_plane_initial.c
+++ b/drivers/gpu/drm/i915/display/intel_plane_initial.c
@@ -107,7 +107,7 @@ initial_plane_vma(struct drm_i915_private *i915,
*/
if (IS_ENABLED(CONFIG_FRAMEBUFFER_CONSOLE) &&
mem == i915->mm.stolen_region &&
- size * 2 > i915->stolen_usable_size)
+ size * 2 > i915->dsm.usable_size)
return NULL;
obj = i915_gem_object_create_region_at(mem, phys_base, size, 0);
diff --git a/drivers/gpu/drm/i915/display/intel_pps.c b/drivers/gpu/drm/i915/display/intel_pps.c
index 21944f5bf3a8..7f9926672a6a 100644
--- a/drivers/gpu/drm/i915/display/intel_pps.c
+++ b/drivers/gpu/drm/i915/display/intel_pps.c
@@ -5,13 +5,17 @@
#include "g4x_dp.h"
#include "i915_drv.h"
+#include "i915_reg.h"
#include "intel_de.h"
#include "intel_display_power_well.h"
#include "intel_display_types.h"
#include "intel_dp.h"
+#include "intel_dpio_phy.h"
#include "intel_dpll.h"
#include "intel_lvds.h"
+#include "intel_lvds_regs.h"
#include "intel_pps.h"
+#include "intel_pps_regs.h"
#include "intel_quirks.h"
static void vlv_steal_power_sequencer(struct drm_i915_private *dev_priv,
@@ -20,6 +24,40 @@ static void vlv_steal_power_sequencer(struct drm_i915_private *dev_priv,
static void pps_init_delays(struct intel_dp *intel_dp);
static void pps_init_registers(struct intel_dp *intel_dp, bool force_disable_vdd);
+static const char *pps_name(struct drm_i915_private *i915,
+ struct intel_pps *pps)
+{
+ if (IS_VALLEYVIEW(i915) || IS_CHERRYVIEW(i915)) {
+ switch (pps->pps_pipe) {
+ case INVALID_PIPE:
+ /*
+ * FIXME would be nice if we can guarantee
+ * to always have a valid PPS when calling this.
+ */
+ return "PPS <none>";
+ case PIPE_A:
+ return "PPS A";
+ case PIPE_B:
+ return "PPS B";
+ default:
+ MISSING_CASE(pps->pps_pipe);
+ break;
+ }
+ } else {
+ switch (pps->pps_idx) {
+ case 0:
+ return "PPS 0";
+ case 1:
+ return "PPS 1";
+ default:
+ MISSING_CASE(pps->pps_idx);
+ break;
+ }
+ }
+
+ return "PPS <invalid>";
+}
+
intel_wakeref_t intel_pps_lock(struct intel_dp *intel_dp)
{
struct drm_i915_private *dev_priv = dp_to_i915(intel_dp);
@@ -58,15 +96,15 @@ vlv_power_sequencer_kick(struct intel_dp *intel_dp)
if (drm_WARN(&dev_priv->drm,
intel_de_read(dev_priv, intel_dp->output_reg) & DP_PORT_EN,
- "skipping pipe %c power sequencer kick due to [ENCODER:%d:%s] being active\n",
- pipe_name(pipe), dig_port->base.base.base.id,
- dig_port->base.base.name))
+ "skipping %s kick due to [ENCODER:%d:%s] being active\n",
+ pps_name(dev_priv, &intel_dp->pps),
+ dig_port->base.base.base.id, dig_port->base.base.name))
return;
drm_dbg_kms(&dev_priv->drm,
- "kicking pipe %c power sequencer for [ENCODER:%d:%s]\n",
- pipe_name(pipe), dig_port->base.base.base.id,
- dig_port->base.base.name);
+ "kicking %s for [ENCODER:%d:%s]\n",
+ pps_name(dev_priv, &intel_dp->pps),
+ dig_port->base.base.base.id, dig_port->base.base.name);
/* Preserve the BIOS-computed detected bit. This is
* supposed to be read-only.
@@ -93,7 +131,7 @@ vlv_power_sequencer_kick(struct intel_dp *intel_dp)
if (vlv_force_pll_on(dev_priv, pipe, vlv_get_dpll(dev_priv))) {
drm_err(&dev_priv->drm,
- "Failed to force on pll for pipe %c!\n",
+ "Failed to force on PLL for pipe %c!\n",
pipe_name(pipe));
return;
}
@@ -188,10 +226,9 @@ vlv_power_sequencer_pipe(struct intel_dp *intel_dp)
intel_dp->pps.pps_pipe = pipe;
drm_dbg_kms(&dev_priv->drm,
- "picked pipe %c power sequencer for [ENCODER:%d:%s]\n",
- pipe_name(intel_dp->pps.pps_pipe),
- dig_port->base.base.base.id,
- dig_port->base.base.name);
+ "picked %s for [ENCODER:%d:%s]\n",
+ pps_name(dev_priv, &intel_dp->pps),
+ dig_port->base.base.base.id, dig_port->base.base.name);
/* init power sequencer on this pipe and port */
pps_init_delays(intel_dp);
@@ -210,8 +247,7 @@ static int
bxt_power_sequencer_idx(struct intel_dp *intel_dp)
{
struct drm_i915_private *dev_priv = dp_to_i915(intel_dp);
- struct intel_connector *connector = intel_dp->attached_connector;
- int backlight_controller = connector->panel.vbt.backlight.controller;
+ int pps_idx = intel_dp->pps.pps_idx;
lockdep_assert_held(&dev_priv->display.pps.mutex);
@@ -219,7 +255,7 @@ bxt_power_sequencer_idx(struct intel_dp *intel_dp)
drm_WARN_ON(&dev_priv->drm, !intel_dp_is_edp(intel_dp));
if (!intel_dp->pps.pps_reset)
- return backlight_controller;
+ return pps_idx;
intel_dp->pps.pps_reset = false;
@@ -229,34 +265,29 @@ bxt_power_sequencer_idx(struct intel_dp *intel_dp)
*/
pps_init_registers(intel_dp, false);
- return backlight_controller;
+ return pps_idx;
}
-typedef bool (*vlv_pipe_check)(struct drm_i915_private *dev_priv,
- enum pipe pipe);
+typedef bool (*pps_check)(struct drm_i915_private *dev_priv, int pps_idx);
-static bool vlv_pipe_has_pp_on(struct drm_i915_private *dev_priv,
- enum pipe pipe)
+static bool pps_has_pp_on(struct drm_i915_private *dev_priv, int pps_idx)
{
- return intel_de_read(dev_priv, PP_STATUS(pipe)) & PP_ON;
+ return intel_de_read(dev_priv, PP_STATUS(pps_idx)) & PP_ON;
}
-static bool vlv_pipe_has_vdd_on(struct drm_i915_private *dev_priv,
- enum pipe pipe)
+static bool pps_has_vdd_on(struct drm_i915_private *dev_priv, int pps_idx)
{
- return intel_de_read(dev_priv, PP_CONTROL(pipe)) & EDP_FORCE_VDD;
+ return intel_de_read(dev_priv, PP_CONTROL(pps_idx)) & EDP_FORCE_VDD;
}
-static bool vlv_pipe_any(struct drm_i915_private *dev_priv,
- enum pipe pipe)
+static bool pps_any(struct drm_i915_private *dev_priv, int pps_idx)
{
return true;
}
static enum pipe
vlv_initial_pps_pipe(struct drm_i915_private *dev_priv,
- enum port port,
- vlv_pipe_check pipe_check)
+ enum port port, pps_check check)
{
enum pipe pipe;
@@ -267,7 +298,7 @@ vlv_initial_pps_pipe(struct drm_i915_private *dev_priv,
if (port_sel != PANEL_PORT_SELECT_VLV(port))
continue;
- if (!pipe_check(dev_priv, pipe))
+ if (!check(dev_priv, pipe))
continue;
return pipe;
@@ -288,30 +319,117 @@ vlv_initial_power_sequencer_setup(struct intel_dp *intel_dp)
/* try to find a pipe with this port selected */
/* first pick one where the panel is on */
intel_dp->pps.pps_pipe = vlv_initial_pps_pipe(dev_priv, port,
- vlv_pipe_has_pp_on);
+ pps_has_pp_on);
/* didn't find one? pick one where vdd is on */
if (intel_dp->pps.pps_pipe == INVALID_PIPE)
intel_dp->pps.pps_pipe = vlv_initial_pps_pipe(dev_priv, port,
- vlv_pipe_has_vdd_on);
+ pps_has_vdd_on);
/* didn't find one? pick one with just the correct port */
if (intel_dp->pps.pps_pipe == INVALID_PIPE)
intel_dp->pps.pps_pipe = vlv_initial_pps_pipe(dev_priv, port,
- vlv_pipe_any);
+ pps_any);
/* didn't find one? just let vlv_power_sequencer_pipe() pick one when needed */
if (intel_dp->pps.pps_pipe == INVALID_PIPE) {
drm_dbg_kms(&dev_priv->drm,
- "no initial power sequencer for [ENCODER:%d:%s]\n",
- dig_port->base.base.base.id,
- dig_port->base.base.name);
+ "[ENCODER:%d:%s] no initial power sequencer\n",
+ dig_port->base.base.base.id, dig_port->base.base.name);
return;
}
drm_dbg_kms(&dev_priv->drm,
- "initial power sequencer for [ENCODER:%d:%s]: pipe %c\n",
- dig_port->base.base.base.id,
- dig_port->base.base.name,
- pipe_name(intel_dp->pps.pps_pipe));
+ "[ENCODER:%d:%s] initial power sequencer: %s\n",
+ dig_port->base.base.base.id, dig_port->base.base.name,
+ pps_name(dev_priv, &intel_dp->pps));
+}
+
+static int intel_num_pps(struct drm_i915_private *i915)
+{
+ if (IS_VALLEYVIEW(i915) || IS_CHERRYVIEW(i915))
+ return 2;
+
+ if (IS_GEMINILAKE(i915) || IS_BROXTON(i915))
+ return 2;
+
+ if (INTEL_PCH_TYPE(i915) >= PCH_DG1)
+ return 1;
+
+ if (INTEL_PCH_TYPE(i915) >= PCH_ICP)
+ return 2;
+
+ return 1;
+}
+
+static bool intel_pps_is_valid(struct intel_dp *intel_dp)
+{
+ struct drm_i915_private *i915 = dp_to_i915(intel_dp);
+
+ if (intel_dp->pps.pps_idx == 1 &&
+ INTEL_PCH_TYPE(i915) >= PCH_ICP &&
+ INTEL_PCH_TYPE(i915) < PCH_MTP)
+ return intel_de_read(i915, SOUTH_CHICKEN1) & ICP_SECOND_PPS_IO_SELECT;
+
+ return true;
+}
+
+static int
+bxt_initial_pps_idx(struct drm_i915_private *i915, pps_check check)
+{
+ int pps_idx, pps_num = intel_num_pps(i915);
+
+ for (pps_idx = 0; pps_idx < pps_num; pps_idx++) {
+ if (check(i915, pps_idx))
+ return pps_idx;
+ }
+
+ return -1;
+}
+
+static bool
+pps_initial_setup(struct intel_dp *intel_dp)
+{
+ struct intel_encoder *encoder = &dp_to_dig_port(intel_dp)->base;
+ struct intel_connector *connector = intel_dp->attached_connector;
+ struct drm_i915_private *i915 = to_i915(encoder->base.dev);
+
+ lockdep_assert_held(&i915->display.pps.mutex);
+
+ if (IS_VALLEYVIEW(i915) || IS_CHERRYVIEW(i915)) {
+ vlv_initial_power_sequencer_setup(intel_dp);
+ return true;
+ }
+
+ /* first ask the VBT */
+ if (intel_num_pps(i915) > 1)
+ intel_dp->pps.pps_idx = connector->panel.vbt.backlight.controller;
+ else
+ intel_dp->pps.pps_idx = 0;
+
+ if (drm_WARN_ON(&i915->drm, intel_dp->pps.pps_idx >= intel_num_pps(i915)))
+ intel_dp->pps.pps_idx = -1;
+
+ /* VBT wasn't parsed yet? pick one where the panel is on */
+ if (intel_dp->pps.pps_idx < 0)
+ intel_dp->pps.pps_idx = bxt_initial_pps_idx(i915, pps_has_pp_on);
+ /* didn't find one? pick one where vdd is on */
+ if (intel_dp->pps.pps_idx < 0)
+ intel_dp->pps.pps_idx = bxt_initial_pps_idx(i915, pps_has_vdd_on);
+ /* didn't find one? pick any */
+ if (intel_dp->pps.pps_idx < 0) {
+ intel_dp->pps.pps_idx = bxt_initial_pps_idx(i915, pps_any);
+
+ drm_dbg_kms(&i915->drm,
+ "[ENCODER:%d:%s] no initial power sequencer, assuming %s\n",
+ encoder->base.base.id, encoder->base.name,
+ pps_name(i915, &intel_dp->pps));
+ } else {
+ drm_dbg_kms(&i915->drm,
+ "[ENCODER:%d:%s] initial power sequencer: %s\n",
+ encoder->base.base.id, encoder->base.name,
+ pps_name(i915, &intel_dp->pps));
+ }
+
+ return intel_pps_is_valid(intel_dp);
}
void intel_pps_reset_all(struct drm_i915_private *dev_priv)
@@ -362,14 +480,16 @@ static void intel_pps_get_registers(struct intel_dp *intel_dp,
struct pps_registers *regs)
{
struct drm_i915_private *dev_priv = dp_to_i915(intel_dp);
- int pps_idx = 0;
+ int pps_idx;
memset(regs, 0, sizeof(*regs));
- if (IS_GEMINILAKE(dev_priv) || IS_BROXTON(dev_priv))
- pps_idx = bxt_power_sequencer_idx(intel_dp);
- else if (IS_VALLEYVIEW(dev_priv) || IS_CHERRYVIEW(dev_priv))
+ if (IS_VALLEYVIEW(dev_priv) || IS_CHERRYVIEW(dev_priv))
pps_idx = vlv_power_sequencer_pipe(intel_dp);
+ else if (IS_GEMINILAKE(dev_priv) || IS_BROXTON(dev_priv))
+ pps_idx = bxt_power_sequencer_idx(intel_dp);
+ else
+ pps_idx = intel_dp->pps.pps_idx;
regs->pp_ctrl = PP_CONTROL(pps_idx);
regs->pp_stat = PP_STATUS(pps_idx);
@@ -433,21 +553,27 @@ static bool edp_have_panel_vdd(struct intel_dp *intel_dp)
void intel_pps_check_power_unlocked(struct intel_dp *intel_dp)
{
struct drm_i915_private *dev_priv = dp_to_i915(intel_dp);
+ struct intel_digital_port *dig_port = dp_to_dig_port(intel_dp);
if (!intel_dp_is_edp(intel_dp))
return;
if (!edp_have_panel_power(intel_dp) && !edp_have_panel_vdd(intel_dp)) {
drm_WARN(&dev_priv->drm, 1,
- "eDP powered off while attempting aux channel communication.\n");
- drm_dbg_kms(&dev_priv->drm, "Status 0x%08x Control 0x%08x\n",
+ "[ENCODER:%d:%s] %s powered off while attempting AUX CH communication.\n",
+ dig_port->base.base.base.id, dig_port->base.base.name,
+ pps_name(dev_priv, &intel_dp->pps));
+ drm_dbg_kms(&dev_priv->drm,
+ "[ENCODER:%d:%s] %s PP_STATUS: 0x%08x PP_CONTROL: 0x%08x\n",
+ dig_port->base.base.base.id, dig_port->base.base.name,
+ pps_name(dev_priv, &intel_dp->pps),
intel_de_read(dev_priv, _pp_stat_reg(intel_dp)),
intel_de_read(dev_priv, _pp_ctrl_reg(intel_dp)));
}
}
#define IDLE_ON_MASK (PP_ON | PP_SEQUENCE_MASK | 0 | PP_SEQUENCE_STATE_MASK)
-#define IDLE_ON_VALUE (PP_ON | PP_SEQUENCE_NONE | 0 | PP_SEQUENCE_STATE_ON_IDLE)
+#define IDLE_ON_VALUE (PP_ON | PP_SEQUENCE_NONE | 0 | PP_SEQUENCE_STATE_ON_IDLE)
#define IDLE_OFF_MASK (PP_ON | PP_SEQUENCE_MASK | 0 | 0)
#define IDLE_OFF_VALUE (0 | PP_SEQUENCE_NONE | 0 | 0)
@@ -458,10 +584,10 @@ void intel_pps_check_power_unlocked(struct intel_dp *intel_dp)
static void intel_pps_verify_state(struct intel_dp *intel_dp);
static void wait_panel_status(struct intel_dp *intel_dp,
- u32 mask,
- u32 value)
+ u32 mask, u32 value)
{
struct drm_i915_private *dev_priv = dp_to_i915(intel_dp);
+ struct intel_digital_port *dig_port = dp_to_dig_port(intel_dp);
i915_reg_t pp_stat_reg, pp_ctrl_reg;
lockdep_assert_held(&dev_priv->display.pps.mutex);
@@ -472,7 +598,9 @@ static void wait_panel_status(struct intel_dp *intel_dp,
pp_ctrl_reg = _pp_ctrl_reg(intel_dp);
drm_dbg_kms(&dev_priv->drm,
- "mask %08x value %08x status %08x control %08x\n",
+ "[ENCODER:%d:%s] %s mask: 0x%08x value: 0x%08x PP_STATUS: 0x%08x PP_CONTROL: 0x%08x\n",
+ dig_port->base.base.base.id, dig_port->base.base.name,
+ pps_name(dev_priv, &intel_dp->pps),
mask, value,
intel_de_read(dev_priv, pp_stat_reg),
intel_de_read(dev_priv, pp_ctrl_reg));
@@ -480,7 +608,9 @@ static void wait_panel_status(struct intel_dp *intel_dp,
if (intel_de_wait_for_register(dev_priv, pp_stat_reg,
mask, value, 5000))
drm_err(&dev_priv->drm,
- "Panel status timeout: status %08x control %08x\n",
+ "[ENCODER:%d:%s] %s panel status timeout: PP_STATUS: 0x%08x PP_CONTROL: 0x%08x\n",
+ dig_port->base.base.base.id, dig_port->base.base.name,
+ pps_name(dev_priv, &intel_dp->pps),
intel_de_read(dev_priv, pp_stat_reg),
intel_de_read(dev_priv, pp_ctrl_reg));
@@ -490,26 +620,35 @@ static void wait_panel_status(struct intel_dp *intel_dp,
static void wait_panel_on(struct intel_dp *intel_dp)
{
struct drm_i915_private *i915 = dp_to_i915(intel_dp);
+ struct intel_digital_port *dig_port = dp_to_dig_port(intel_dp);
- drm_dbg_kms(&i915->drm, "Wait for panel power on\n");
+ drm_dbg_kms(&i915->drm, "[ENCODER:%d:%s] %s wait for panel power on\n",
+ dig_port->base.base.base.id, dig_port->base.base.name,
+ pps_name(i915, &intel_dp->pps));
wait_panel_status(intel_dp, IDLE_ON_MASK, IDLE_ON_VALUE);
}
static void wait_panel_off(struct intel_dp *intel_dp)
{
struct drm_i915_private *i915 = dp_to_i915(intel_dp);
+ struct intel_digital_port *dig_port = dp_to_dig_port(intel_dp);
- drm_dbg_kms(&i915->drm, "Wait for panel power off time\n");
+ drm_dbg_kms(&i915->drm, "[ENCODER:%d:%s] %s wait for panel power off time\n",
+ dig_port->base.base.base.id, dig_port->base.base.name,
+ pps_name(i915, &intel_dp->pps));
wait_panel_status(intel_dp, IDLE_OFF_MASK, IDLE_OFF_VALUE);
}
static void wait_panel_power_cycle(struct intel_dp *intel_dp)
{
struct drm_i915_private *i915 = dp_to_i915(intel_dp);
+ struct intel_digital_port *dig_port = dp_to_dig_port(intel_dp);
ktime_t panel_power_on_time;
s64 panel_power_off_duration;
- drm_dbg_kms(&i915->drm, "Wait for panel power cycle\n");
+ drm_dbg_kms(&i915->drm, "[ENCODER:%d:%s] %s wait for panel power cycle\n",
+ dig_port->base.base.base.id, dig_port->base.base.name,
+ pps_name(i915, &intel_dp->pps));
/* take the difference of current time and panel power off time
* and then make panel wait for t11_t12 if needed. */
@@ -596,9 +735,12 @@ bool intel_pps_vdd_on_unlocked(struct intel_dp *intel_dp)
intel_dp->pps.vdd_wakeref = intel_display_power_get(dev_priv,
intel_aux_power_domain(dig_port));
- drm_dbg_kms(&dev_priv->drm, "Turning [ENCODER:%d:%s] VDD on\n",
- dig_port->base.base.base.id,
- dig_port->base.base.name);
+ pp_stat_reg = _pp_stat_reg(intel_dp);
+ pp_ctrl_reg = _pp_ctrl_reg(intel_dp);
+
+ drm_dbg_kms(&dev_priv->drm, "[ENCODER:%d:%s] %s turning VDD on\n",
+ dig_port->base.base.base.id, dig_port->base.base.name,
+ pps_name(dev_priv, &intel_dp->pps));
if (!edp_have_panel_power(intel_dp))
wait_panel_power_cycle(intel_dp);
@@ -606,12 +748,11 @@ bool intel_pps_vdd_on_unlocked(struct intel_dp *intel_dp)
pp = ilk_get_pp_control(intel_dp);
pp |= EDP_FORCE_VDD;
- pp_stat_reg = _pp_stat_reg(intel_dp);
- pp_ctrl_reg = _pp_ctrl_reg(intel_dp);
-
intel_de_write(dev_priv, pp_ctrl_reg, pp);
intel_de_posting_read(dev_priv, pp_ctrl_reg);
- drm_dbg_kms(&dev_priv->drm, "PP_STATUS: 0x%08x PP_CONTROL: 0x%08x\n",
+ drm_dbg_kms(&dev_priv->drm, "[ENCODER:%d:%s] %s PP_STATUS: 0x%08x PP_CONTROL: 0x%08x\n",
+ dig_port->base.base.base.id, dig_port->base.base.name,
+ pps_name(dev_priv, &intel_dp->pps),
intel_de_read(dev_priv, pp_stat_reg),
intel_de_read(dev_priv, pp_ctrl_reg));
/*
@@ -619,9 +760,9 @@ bool intel_pps_vdd_on_unlocked(struct intel_dp *intel_dp)
*/
if (!edp_have_panel_power(intel_dp)) {
drm_dbg_kms(&dev_priv->drm,
- "[ENCODER:%d:%s] panel power wasn't enabled\n",
- dig_port->base.base.base.id,
- dig_port->base.base.name);
+ "[ENCODER:%d:%s] %s panel power wasn't enabled\n",
+ dig_port->base.base.base.id, dig_port->base.base.name,
+ pps_name(dev_priv, &intel_dp->pps));
msleep(intel_dp->pps.panel_power_up_delay);
}
@@ -636,6 +777,7 @@ bool intel_pps_vdd_on_unlocked(struct intel_dp *intel_dp)
*/
void intel_pps_vdd_on(struct intel_dp *intel_dp)
{
+ struct drm_i915_private *i915 = dp_to_i915(intel_dp);
intel_wakeref_t wakeref;
bool vdd;
@@ -645,9 +787,10 @@ void intel_pps_vdd_on(struct intel_dp *intel_dp)
vdd = false;
with_intel_pps_lock(intel_dp, wakeref)
vdd = intel_pps_vdd_on_unlocked(intel_dp);
- I915_STATE_WARN(!vdd, "[ENCODER:%d:%s] VDD already requested on\n",
+ I915_STATE_WARN(!vdd, "[ENCODER:%d:%s] %s VDD already requested on\n",
dp_to_dig_port(intel_dp)->base.base.base.id,
- dp_to_dig_port(intel_dp)->base.base.name);
+ dp_to_dig_port(intel_dp)->base.base.name,
+ pps_name(i915, &intel_dp->pps));
}
static void intel_pps_vdd_off_sync_unlocked(struct intel_dp *intel_dp)
@@ -665,9 +808,9 @@ static void intel_pps_vdd_off_sync_unlocked(struct intel_dp *intel_dp)
if (!edp_have_panel_vdd(intel_dp))
return;
- drm_dbg_kms(&dev_priv->drm, "Turning [ENCODER:%d:%s] VDD off\n",
- dig_port->base.base.base.id,
- dig_port->base.base.name);
+ drm_dbg_kms(&dev_priv->drm, "[ENCODER:%d:%s] %s turning VDD off\n",
+ dig_port->base.base.base.id, dig_port->base.base.name,
+ pps_name(dev_priv, &intel_dp->pps));
pp = ilk_get_pp_control(intel_dp);
pp &= ~EDP_FORCE_VDD;
@@ -679,7 +822,9 @@ static void intel_pps_vdd_off_sync_unlocked(struct intel_dp *intel_dp)
intel_de_posting_read(dev_priv, pp_ctrl_reg);
/* Make sure sequencer is idle before allowing subsequent activity */
- drm_dbg_kms(&dev_priv->drm, "PP_STATUS: 0x%08x PP_CONTROL: 0x%08x\n",
+ drm_dbg_kms(&dev_priv->drm, "[ENCODER:%d:%s] %s PP_STATUS: 0x%08x PP_CONTROL: 0x%08x\n",
+ dig_port->base.base.base.id, dig_port->base.base.name,
+ pps_name(dev_priv, &intel_dp->pps),
intel_de_read(dev_priv, pp_stat_reg),
intel_de_read(dev_priv, pp_ctrl_reg));
@@ -754,9 +899,10 @@ void intel_pps_vdd_off_unlocked(struct intel_dp *intel_dp, bool sync)
if (!intel_dp_is_edp(intel_dp))
return;
- I915_STATE_WARN(!intel_dp->pps.want_panel_vdd, "[ENCODER:%d:%s] VDD not forced on",
+ I915_STATE_WARN(!intel_dp->pps.want_panel_vdd, "[ENCODER:%d:%s] %s VDD not forced on",
dp_to_dig_port(intel_dp)->base.base.base.id,
- dp_to_dig_port(intel_dp)->base.base.name);
+ dp_to_dig_port(intel_dp)->base.base.name,
+ pps_name(dev_priv, &intel_dp->pps));
intel_dp->pps.want_panel_vdd = false;
@@ -777,14 +923,16 @@ void intel_pps_on_unlocked(struct intel_dp *intel_dp)
if (!intel_dp_is_edp(intel_dp))
return;
- drm_dbg_kms(&dev_priv->drm, "Turn [ENCODER:%d:%s] panel power on\n",
+ drm_dbg_kms(&dev_priv->drm, "[ENCODER:%d:%s] %s turn panel power on\n",
dp_to_dig_port(intel_dp)->base.base.base.id,
- dp_to_dig_port(intel_dp)->base.base.name);
+ dp_to_dig_port(intel_dp)->base.base.name,
+ pps_name(dev_priv, &intel_dp->pps));
if (drm_WARN(&dev_priv->drm, edp_have_panel_power(intel_dp),
- "[ENCODER:%d:%s] panel power already on\n",
+ "[ENCODER:%d:%s] %s panel power already on\n",
dp_to_dig_port(intel_dp)->base.base.base.id,
- dp_to_dig_port(intel_dp)->base.base.name))
+ dp_to_dig_port(intel_dp)->base.base.name,
+ pps_name(dev_priv, &intel_dp->pps)))
return;
wait_panel_power_cycle(intel_dp);
@@ -838,12 +986,14 @@ void intel_pps_off_unlocked(struct intel_dp *intel_dp)
if (!intel_dp_is_edp(intel_dp))
return;
- drm_dbg_kms(&dev_priv->drm, "Turn [ENCODER:%d:%s] panel power off\n",
- dig_port->base.base.base.id, dig_port->base.base.name);
+ drm_dbg_kms(&dev_priv->drm, "[ENCODER:%d:%s] %s turn panel power off\n",
+ dig_port->base.base.base.id, dig_port->base.base.name,
+ pps_name(dev_priv, &intel_dp->pps));
drm_WARN(&dev_priv->drm, !intel_dp->pps.want_panel_vdd,
- "Need [ENCODER:%d:%s] VDD to turn off panel\n",
- dig_port->base.base.base.id, dig_port->base.base.name);
+ "[ENCODER:%d:%s] %s need VDD to turn off panel\n",
+ dig_port->base.base.base.id, dig_port->base.base.name,
+ pps_name(dev_priv, &intel_dp->pps));
pp = ilk_get_pp_control(intel_dp);
/* We need to switch off panel power _and_ force vdd, for otherwise some
@@ -978,9 +1128,9 @@ static void vlv_detach_power_sequencer(struct intel_dp *intel_dp)
* from a port.
*/
drm_dbg_kms(&dev_priv->drm,
- "detaching pipe %c power sequencer from [ENCODER:%d:%s]\n",
- pipe_name(pipe), dig_port->base.base.base.id,
- dig_port->base.base.name);
+ "detaching %s from [ENCODER:%d:%s]\n",
+ pps_name(dev_priv, &intel_dp->pps),
+ dig_port->base.base.base.id, dig_port->base.base.name);
intel_de_write(dev_priv, pp_on_reg, 0);
intel_de_posting_read(dev_priv, pp_on_reg);
@@ -998,7 +1148,7 @@ static void vlv_steal_power_sequencer(struct drm_i915_private *dev_priv,
struct intel_dp *intel_dp = enc_to_intel_dp(encoder);
drm_WARN(&dev_priv->drm, intel_dp->pps.active_pipe == pipe,
- "stealing pipe %c power sequencer from active [ENCODER:%d:%s]\n",
+ "stealing PPS %c from active [ENCODER:%d:%s]\n",
pipe_name(pipe), encoder->base.base.id,
encoder->base.name);
@@ -1006,7 +1156,7 @@ static void vlv_steal_power_sequencer(struct drm_i915_private *dev_priv,
continue;
drm_dbg_kms(&dev_priv->drm,
- "stealing pipe %c power sequencer from [ENCODER:%d:%s]\n",
+ "stealing PPS %c from [ENCODER:%d:%s]\n",
pipe_name(pipe), encoder->base.base.id,
encoder->base.name);
@@ -1051,9 +1201,9 @@ void vlv_pps_init(struct intel_encoder *encoder,
intel_dp->pps.pps_pipe = crtc->pipe;
drm_dbg_kms(&dev_priv->drm,
- "initializing pipe %c power sequencer for [ENCODER:%d:%s]\n",
- pipe_name(intel_dp->pps.pps_pipe), encoder->base.base.id,
- encoder->base.name);
+ "initializing %s for [ENCODER:%d:%s]\n",
+ pps_name(dev_priv, &intel_dp->pps),
+ encoder->base.base.id, encoder->base.name);
/* init power sequencer on this pipe and port */
pps_init_delays(intel_dp);
@@ -1077,7 +1227,9 @@ static void pps_vdd_init(struct intel_dp *intel_dp)
* indefinitely.
*/
drm_dbg_kms(&dev_priv->drm,
- "VDD left on by BIOS, adjusting state tracking\n");
+ "[ENCODER:%d:%s] %s VDD left on by BIOS, adjusting state tracking\n",
+ dig_port->base.base.base.id, dig_port->base.base.name,
+ pps_name(dev_priv, &intel_dp->pps));
drm_WARN_ON(&dev_priv->drm, intel_dp->pps.vdd_wakeref);
intel_dp->pps.vdd_wakeref = intel_display_power_get(dev_priv,
intel_aux_power_domain(dig_port));
@@ -1098,7 +1250,13 @@ bool intel_pps_have_panel_power_or_vdd(struct intel_dp *intel_dp)
static void pps_init_timestamps(struct intel_dp *intel_dp)
{
- intel_dp->pps.panel_power_off_time = ktime_get_boottime();
+ /*
+ * Initialize panel power off time to 0, assuming panel power could have
+ * been toggled between kernel boot and now only by a previously loaded
+ * and removed i915, which has already ensured sufficient power off
+ * delay at module remove.
+ */
+ intel_dp->pps.panel_power_off_time = 0;
intel_dp->pps.last_power_on = jiffies;
intel_dp->pps.last_backlight_off = jiffies;
}
@@ -1378,17 +1536,13 @@ static void pps_init_registers(struct intel_dp *intel_dp, bool force_disable_vdd
/*
* Compute the divisor for the pp clock, simply match the Bspec formula.
*/
- if (i915_mmio_reg_valid(regs.pp_div)) {
+ if (i915_mmio_reg_valid(regs.pp_div))
intel_de_write(dev_priv, regs.pp_div,
REG_FIELD_PREP(PP_REFERENCE_DIVIDER_MASK, (100 * div) / 2 - 1) | REG_FIELD_PREP(PANEL_POWER_CYCLE_DELAY_MASK, DIV_ROUND_UP(seq->t11_t12, 1000)));
- } else {
- u32 pp_ctl;
-
- pp_ctl = intel_de_read(dev_priv, regs.pp_ctrl);
- pp_ctl &= ~BXT_POWER_CYCLE_DELAY_MASK;
- pp_ctl |= REG_FIELD_PREP(BXT_POWER_CYCLE_DELAY_MASK, DIV_ROUND_UP(seq->t11_t12, 1000));
- intel_de_write(dev_priv, regs.pp_ctrl, pp_ctl);
- }
+ else
+ intel_de_rmw(dev_priv, regs.pp_ctrl, BXT_POWER_CYCLE_DELAY_MASK,
+ REG_FIELD_PREP(BXT_POWER_CYCLE_DELAY_MASK,
+ DIV_ROUND_UP(seq->t11_t12, 1000)));
drm_dbg_kms(&dev_priv->drm,
"panel power sequencer register settings: PP_ON %#x, PP_OFF %#x, PP_DIV %#x\n",
@@ -1424,10 +1578,10 @@ void intel_pps_encoder_reset(struct intel_dp *intel_dp)
}
}
-void intel_pps_init(struct intel_dp *intel_dp)
+bool intel_pps_init(struct intel_dp *intel_dp)
{
- struct drm_i915_private *i915 = dp_to_i915(intel_dp);
intel_wakeref_t wakeref;
+ bool ret;
intel_dp->pps.initializing = true;
INIT_DELAYED_WORK(&intel_dp->pps.panel_vdd_work, edp_panel_vdd_work);
@@ -1435,13 +1589,36 @@ void intel_pps_init(struct intel_dp *intel_dp)
pps_init_timestamps(intel_dp);
with_intel_pps_lock(intel_dp, wakeref) {
- if (IS_VALLEYVIEW(i915) || IS_CHERRYVIEW(i915))
- vlv_initial_power_sequencer_setup(intel_dp);
+ ret = pps_initial_setup(intel_dp);
pps_init_delays(intel_dp);
pps_init_registers(intel_dp, false);
pps_vdd_init(intel_dp);
}
+
+ return ret;
+}
+
+static void pps_init_late(struct intel_dp *intel_dp)
+{
+ struct drm_i915_private *i915 = dp_to_i915(intel_dp);
+ struct intel_encoder *encoder = &dp_to_dig_port(intel_dp)->base;
+ struct intel_connector *connector = intel_dp->attached_connector;
+
+ if (IS_VALLEYVIEW(i915) || IS_CHERRYVIEW(i915))
+ return;
+
+ if (intel_num_pps(i915) < 2)
+ return;
+
+ drm_WARN(&i915->drm, connector->panel.vbt.backlight.controller >= 0 &&
+ intel_dp->pps.pps_idx != connector->panel.vbt.backlight.controller,
+ "[ENCODER:%d:%s] power sequencer mismatch: %d (initial) vs. %d (VBT)\n",
+ encoder->base.base.id, encoder->base.name,
+ intel_dp->pps.pps_idx, connector->panel.vbt.backlight.controller);
+
+ if (connector->panel.vbt.backlight.controller >= 0)
+ intel_dp->pps.pps_idx = connector->panel.vbt.backlight.controller;
}
void intel_pps_init_late(struct intel_dp *intel_dp)
@@ -1450,6 +1627,8 @@ void intel_pps_init_late(struct intel_dp *intel_dp)
with_intel_pps_lock(intel_dp, wakeref) {
/* Reinit delays after per-panel info has been parsed from VBT */
+ pps_init_late(intel_dp);
+
memset(&intel_dp->pps.pps_delays, 0, sizeof(intel_dp->pps.pps_delays));
pps_init_delays(intel_dp);
pps_init_registers(intel_dp, false);
@@ -1472,10 +1651,7 @@ void intel_pps_unlock_regs_wa(struct drm_i915_private *dev_priv)
* This w/a is needed at least on CPT/PPT, but to be sure apply it
* everywhere where registers can be write protected.
*/
- if (IS_VALLEYVIEW(dev_priv) || IS_CHERRYVIEW(dev_priv))
- pps_num = 2;
- else
- pps_num = 1;
+ pps_num = intel_num_pps(dev_priv);
for (pps_idx = 0; pps_idx < pps_num; pps_idx++) {
u32 val = intel_de_read(dev_priv, PP_CONTROL(pps_idx));
diff --git a/drivers/gpu/drm/i915/display/intel_pps.h b/drivers/gpu/drm/i915/display/intel_pps.h
index a3a56f903f26..a2c2467e3c22 100644
--- a/drivers/gpu/drm/i915/display/intel_pps.h
+++ b/drivers/gpu/drm/i915/display/intel_pps.h
@@ -40,7 +40,7 @@ void intel_pps_vdd_off_sync(struct intel_dp *intel_dp);
bool intel_pps_have_panel_power_or_vdd(struct intel_dp *intel_dp);
void intel_pps_wait_power_cycle(struct intel_dp *intel_dp);
-void intel_pps_init(struct intel_dp *intel_dp);
+bool intel_pps_init(struct intel_dp *intel_dp);
void intel_pps_init_late(struct intel_dp *intel_dp);
void intel_pps_encoder_reset(struct intel_dp *intel_dp);
void intel_pps_reset_all(struct drm_i915_private *i915);
diff --git a/drivers/gpu/drm/i915/display/intel_pps_regs.h b/drivers/gpu/drm/i915/display/intel_pps_regs.h
new file mode 100644
index 000000000000..60edd2a27100
--- /dev/null
+++ b/drivers/gpu/drm/i915/display/intel_pps_regs.h
@@ -0,0 +1,78 @@
+/* SPDX-License-Identifier: MIT */
+/*
+ * Copyright © 2023 Intel Corporation
+ */
+
+#ifndef __INTEL_PPS_REGS_H__
+#define __INTEL_PPS_REGS_H__
+
+#include "intel_display_reg_defs.h"
+
+/* Panel power sequencing */
+#define PPS_BASE 0x61200
+#define VLV_PPS_BASE (VLV_DISPLAY_BASE + PPS_BASE)
+#define PCH_PPS_BASE 0xC7200
+
+#define _MMIO_PPS(pps_idx, reg) _MMIO(dev_priv->display.pps.mmio_base - \
+ PPS_BASE + (reg) + \
+ (pps_idx) * 0x100)
+
+#define _PP_STATUS 0x61200
+#define PP_STATUS(pps_idx) _MMIO_PPS(pps_idx, _PP_STATUS)
+#define PP_ON REG_BIT(31)
+/*
+ * Indicates that all dependencies of the panel are on:
+ *
+ * - PLL enabled
+ * - pipe enabled
+ * - LVDS/DVOB/DVOC on
+ */
+#define PP_READY REG_BIT(30)
+#define PP_SEQUENCE_MASK REG_GENMASK(29, 28)
+#define PP_SEQUENCE_NONE REG_FIELD_PREP(PP_SEQUENCE_MASK, 0)
+#define PP_SEQUENCE_POWER_UP REG_FIELD_PREP(PP_SEQUENCE_MASK, 1)
+#define PP_SEQUENCE_POWER_DOWN REG_FIELD_PREP(PP_SEQUENCE_MASK, 2)
+#define PP_CYCLE_DELAY_ACTIVE REG_BIT(27)
+#define PP_SEQUENCE_STATE_MASK REG_GENMASK(3, 0)
+#define PP_SEQUENCE_STATE_OFF_IDLE REG_FIELD_PREP(PP_SEQUENCE_STATE_MASK, 0x0)
+#define PP_SEQUENCE_STATE_OFF_S0_1 REG_FIELD_PREP(PP_SEQUENCE_STATE_MASK, 0x1)
+#define PP_SEQUENCE_STATE_OFF_S0_2 REG_FIELD_PREP(PP_SEQUENCE_STATE_MASK, 0x2)
+#define PP_SEQUENCE_STATE_OFF_S0_3 REG_FIELD_PREP(PP_SEQUENCE_STATE_MASK, 0x3)
+#define PP_SEQUENCE_STATE_ON_IDLE REG_FIELD_PREP(PP_SEQUENCE_STATE_MASK, 0x8)
+#define PP_SEQUENCE_STATE_ON_S1_1 REG_FIELD_PREP(PP_SEQUENCE_STATE_MASK, 0x9)
+#define PP_SEQUENCE_STATE_ON_S1_2 REG_FIELD_PREP(PP_SEQUENCE_STATE_MASK, 0xa)
+#define PP_SEQUENCE_STATE_ON_S1_3 REG_FIELD_PREP(PP_SEQUENCE_STATE_MASK, 0xb)
+#define PP_SEQUENCE_STATE_RESET REG_FIELD_PREP(PP_SEQUENCE_STATE_MASK, 0xf)
+
+#define _PP_CONTROL 0x61204
+#define PP_CONTROL(pps_idx) _MMIO_PPS(pps_idx, _PP_CONTROL)
+#define PANEL_UNLOCK_MASK REG_GENMASK(31, 16)
+#define PANEL_UNLOCK_REGS REG_FIELD_PREP(PANEL_UNLOCK_MASK, 0xabcd)
+#define BXT_POWER_CYCLE_DELAY_MASK REG_GENMASK(8, 4)
+#define EDP_FORCE_VDD REG_BIT(3)
+#define EDP_BLC_ENABLE REG_BIT(2)
+#define PANEL_POWER_RESET REG_BIT(1)
+#define PANEL_POWER_ON REG_BIT(0)
+
+#define _PP_ON_DELAYS 0x61208
+#define PP_ON_DELAYS(pps_idx) _MMIO_PPS(pps_idx, _PP_ON_DELAYS)
+#define PANEL_PORT_SELECT_MASK REG_GENMASK(31, 30)
+#define PANEL_PORT_SELECT_LVDS REG_FIELD_PREP(PANEL_PORT_SELECT_MASK, 0)
+#define PANEL_PORT_SELECT_DPA REG_FIELD_PREP(PANEL_PORT_SELECT_MASK, 1)
+#define PANEL_PORT_SELECT_DPC REG_FIELD_PREP(PANEL_PORT_SELECT_MASK, 2)
+#define PANEL_PORT_SELECT_DPD REG_FIELD_PREP(PANEL_PORT_SELECT_MASK, 3)
+#define PANEL_PORT_SELECT_VLV(port) REG_FIELD_PREP(PANEL_PORT_SELECT_MASK, port)
+#define PANEL_POWER_UP_DELAY_MASK REG_GENMASK(28, 16)
+#define PANEL_LIGHT_ON_DELAY_MASK REG_GENMASK(12, 0)
+
+#define _PP_OFF_DELAYS 0x6120C
+#define PP_OFF_DELAYS(pps_idx) _MMIO_PPS(pps_idx, _PP_OFF_DELAYS)
+#define PANEL_POWER_DOWN_DELAY_MASK REG_GENMASK(28, 16)
+#define PANEL_LIGHT_OFF_DELAY_MASK REG_GENMASK(12, 0)
+
+#define _PP_DIVISOR 0x61210
+#define PP_DIVISOR(pps_idx) _MMIO_PPS(pps_idx, _PP_DIVISOR)
+#define PP_REFERENCE_DIVIDER_MASK REG_GENMASK(31, 8)
+#define PANEL_POWER_CYCLE_DELAY_MASK REG_GENMASK(4, 0)
+
+#endif /* __INTEL_PPS_REGS_H__ */
diff --git a/drivers/gpu/drm/i915/display/intel_psr.c b/drivers/gpu/drm/i915/display/intel_psr.c
index 15c3e448aa0e..6badfff2b4a2 100644
--- a/drivers/gpu/drm/i915/display/intel_psr.c
+++ b/drivers/gpu/drm/i915/display/intel_psr.c
@@ -24,16 +24,17 @@
#include <drm/drm_atomic_helper.h>
#include <drm/drm_damage_helper.h>
-#include "display/intel_dp.h"
-
#include "i915_drv.h"
+#include "i915_reg.h"
#include "intel_atomic.h"
#include "intel_crtc.h"
#include "intel_de.h"
#include "intel_display_types.h"
+#include "intel_dp.h"
#include "intel_dp_aux.h"
#include "intel_hdmi.h"
#include "intel_psr.h"
+#include "intel_psr_regs.h"
#include "intel_snps_phy.h"
#include "skl_universal_plane.h"
@@ -152,7 +153,7 @@ static void psr_irq_control(struct intel_dp *intel_dp)
{
struct drm_i915_private *dev_priv = dp_to_i915(intel_dp);
i915_reg_t imr_reg;
- u32 mask, val;
+ u32 mask;
if (DISPLAY_VER(dev_priv) >= 12)
imr_reg = TRANS_PSR_IMR(intel_dp->psr.transcoder);
@@ -164,10 +165,7 @@ static void psr_irq_control(struct intel_dp *intel_dp)
mask |= psr_irq_post_exit_bit_get(intel_dp) |
psr_irq_pre_entry_bit_get(intel_dp);
- val = intel_de_read(dev_priv, imr_reg);
- val &= ~psr_irq_mask_get(intel_dp);
- val |= ~mask;
- intel_de_write(dev_priv, imr_reg, val);
+ intel_de_rmw(dev_priv, imr_reg, psr_irq_mask_get(intel_dp), ~mask);
}
static void psr_event_print(struct drm_i915_private *i915,
@@ -245,8 +243,6 @@ void intel_psr_irq_handler(struct intel_dp *intel_dp, u32 psr_iir)
}
if (psr_iir & psr_irq_psr_error_bit_get(intel_dp)) {
- u32 val;
-
drm_warn(&dev_priv->drm, "[transcoder %s] PSR aux error\n",
transcoder_name(cpu_transcoder));
@@ -260,9 +256,7 @@ void intel_psr_irq_handler(struct intel_dp *intel_dp, u32 psr_iir)
* again so we don't care about unmask the interruption
* or unset irq_aux_error.
*/
- val = intel_de_read(dev_priv, imr_reg);
- val |= psr_irq_psr_error_bit_get(intel_dp);
- intel_de_write(dev_priv, imr_reg, val);
+ intel_de_rmw(dev_priv, imr_reg, 0, psr_irq_psr_error_bit_get(intel_dp));
schedule_work(&intel_dp->psr.work);
}
@@ -526,6 +520,17 @@ static u32 intel_psr2_get_tp_time(struct intel_dp *intel_dp)
return val;
}
+static int psr2_block_count_lines(struct intel_dp *intel_dp)
+{
+ return intel_dp->psr.io_wake_lines < 9 &&
+ intel_dp->psr.fast_wake_lines < 9 ? 8 : 12;
+}
+
+static int psr2_block_count(struct intel_dp *intel_dp)
+{
+ return psr2_block_count_lines(intel_dp) / 4;
+}
+
static void hsw_activate_psr2(struct intel_dp *intel_dp)
{
struct drm_i915_private *dev_priv = dp_to_i915(intel_dp);
@@ -533,7 +538,7 @@ static void hsw_activate_psr2(struct intel_dp *intel_dp)
val |= psr_compute_idle_frames(intel_dp) << EDP_PSR2_IDLE_FRAME_SHIFT;
- if (!IS_ALDERLAKE_P(dev_priv))
+ if (DISPLAY_VER(dev_priv) <= 13 && !IS_ALDERLAKE_P(dev_priv))
val |= EDP_SU_TRACK_ENABLE;
if (DISPLAY_VER(dev_priv) >= 10 && DISPLAY_VER(dev_priv) <= 12)
@@ -542,6 +547,13 @@ static void hsw_activate_psr2(struct intel_dp *intel_dp)
val |= EDP_PSR2_FRAME_BEFORE_SU(max_t(u8, intel_dp->psr.sink_sync_latency + 1, 2));
val |= intel_psr2_get_tp_time(intel_dp);
+ if (DISPLAY_VER(dev_priv) >= 12) {
+ if (psr2_block_count(intel_dp) > 2)
+ val |= TGL_EDP_PSR2_BLOCK_COUNT_NUM_3;
+ else
+ val |= TGL_EDP_PSR2_BLOCK_COUNT_NUM_2;
+ }
+
/* Wa_22012278275:adl-p */
if (IS_ADLP_DISPLAY_STEP(dev_priv, STEP_A0, STEP_E0)) {
static const u8 map[] = {
@@ -558,31 +570,21 @@ static void hsw_activate_psr2(struct intel_dp *intel_dp)
* Still using the default IO_BUFFER_WAKE and FAST_WAKE, see
* comments bellow for more information
*/
- u32 tmp, lines = 7;
-
- val |= TGL_EDP_PSR2_BLOCK_COUNT_NUM_2;
+ u32 tmp;
- tmp = map[lines - TGL_EDP_PSR2_IO_BUFFER_WAKE_MIN_LINES];
+ tmp = map[intel_dp->psr.io_wake_lines - TGL_EDP_PSR2_IO_BUFFER_WAKE_MIN_LINES];
tmp = tmp << TGL_EDP_PSR2_IO_BUFFER_WAKE_SHIFT;
val |= tmp;
- tmp = map[lines - TGL_EDP_PSR2_FAST_WAKE_MIN_LINES];
+ tmp = map[intel_dp->psr.fast_wake_lines - TGL_EDP_PSR2_FAST_WAKE_MIN_LINES];
tmp = tmp << TGL_EDP_PSR2_FAST_WAKE_MIN_SHIFT;
val |= tmp;
} else if (DISPLAY_VER(dev_priv) >= 12) {
- /*
- * TODO: 7 lines of IO_BUFFER_WAKE and FAST_WAKE are default
- * values from BSpec. In order to setting an optimal power
- * consumption, lower than 4k resolution mode needs to decrease
- * IO_BUFFER_WAKE and FAST_WAKE. And higher than 4K resolution
- * mode needs to increase IO_BUFFER_WAKE and FAST_WAKE.
- */
- val |= TGL_EDP_PSR2_BLOCK_COUNT_NUM_2;
- val |= TGL_EDP_PSR2_IO_BUFFER_WAKE(7);
- val |= TGL_EDP_PSR2_FAST_WAKE(7);
+ val |= TGL_EDP_PSR2_IO_BUFFER_WAKE(intel_dp->psr.io_wake_lines);
+ val |= TGL_EDP_PSR2_FAST_WAKE(intel_dp->psr.fast_wake_lines);
} else if (DISPLAY_VER(dev_priv) >= 9) {
- val |= EDP_PSR2_IO_BUFFER_WAKE(7);
- val |= EDP_PSR2_FAST_WAKE(7);
+ val |= EDP_PSR2_IO_BUFFER_WAKE(intel_dp->psr.io_wake_lines);
+ val |= EDP_PSR2_FAST_WAKE(intel_dp->psr.fast_wake_lines);
}
if (intel_dp->psr.req_psr2_sdp_prior_scanline)
@@ -591,12 +593,6 @@ static void hsw_activate_psr2(struct intel_dp *intel_dp)
if (intel_dp->psr.psr2_sel_fetch_enabled) {
u32 tmp;
- /* Wa_1408330847 */
- if (IS_TGL_DISPLAY_STEP(dev_priv, STEP_A0, STEP_B0))
- intel_de_rmw(dev_priv, CHICKEN_PAR1_1,
- DIS_RAM_BYPASS_PSR2_MAN_TRACK,
- DIS_RAM_BYPASS_PSR2_MAN_TRACK);
-
tmp = intel_de_read(dev_priv, PSR2_MAN_TRK_CTL(intel_dp->psr.transcoder));
drm_WARN_ON(&dev_priv->drm, !(tmp & PSR2_MAN_TRK_CTL_ENABLE));
} else if (HAS_PSR2_SEL_FETCH(dev_priv)) {
@@ -616,7 +612,7 @@ static void hsw_activate_psr2(struct intel_dp *intel_dp)
static bool
transcoder_has_psr2(struct drm_i915_private *dev_priv, enum transcoder trans)
{
- if (IS_ALDERLAKE_P(dev_priv))
+ if (IS_ALDERLAKE_P(dev_priv) || DISPLAY_VER(dev_priv) >= 14)
return trans == TRANSCODER_A || trans == TRANSCODER_B;
else if (DISPLAY_VER(dev_priv) >= 12)
return trans == TRANSCODER_A;
@@ -637,13 +633,10 @@ static void psr2_program_idle_frames(struct intel_dp *intel_dp,
u32 idle_frames)
{
struct drm_i915_private *dev_priv = dp_to_i915(intel_dp);
- u32 val;
idle_frames <<= EDP_PSR2_IDLE_FRAME_SHIFT;
- val = intel_de_read(dev_priv, EDP_PSR2_CTL(intel_dp->psr.transcoder));
- val &= ~EDP_PSR2_IDLE_FRAME_MASK;
- val |= idle_frames;
- intel_de_write(dev_priv, EDP_PSR2_CTL(intel_dp->psr.transcoder), val);
+ intel_de_rmw(dev_priv, EDP_PSR2_CTL(intel_dp->psr.transcoder),
+ EDP_PSR2_IDLE_FRAME_MASK, idle_frames);
}
static void tgl_psr2_enable_dc3co(struct intel_dp *intel_dp)
@@ -696,7 +689,7 @@ dc3co_is_pipe_port_compatible(struct intel_dp *intel_dp,
struct drm_i915_private *dev_priv = dp_to_i915(intel_dp);
enum port port = dig_port->base.port;
- if (IS_ALDERLAKE_P(dev_priv))
+ if (IS_ALDERLAKE_P(dev_priv) || DISPLAY_VER(dev_priv) >= 14)
return pipe <= PIPE_B && port <= PORT_B;
else
return pipe == PIPE_A && port == PORT_A;
@@ -708,6 +701,7 @@ tgl_dc3co_exitline_compute_config(struct intel_dp *intel_dp,
{
const u32 crtc_vdisplay = crtc_state->uapi.adjusted_mode.crtc_vdisplay;
struct drm_i915_private *dev_priv = dp_to_i915(intel_dp);
+ struct i915_power_domains *power_domains = &dev_priv->display.power.domains;
u32 exit_scanlines;
/*
@@ -724,7 +718,7 @@ tgl_dc3co_exitline_compute_config(struct intel_dp *intel_dp,
if (crtc_state->enable_psr2_sel_fetch)
return;
- if (!(dev_priv->display.dmc.allowed_dc_mask & DC_STATE_EN_DC3CO))
+ if (!(power_domains->allowed_dc_mask & DC_STATE_EN_DC3CO))
return;
if (!dc3co_is_pipe_port_compatible(intel_dp, crtc_state))
@@ -765,13 +759,6 @@ static bool intel_psr2_sel_fetch_config_valid(struct intel_dp *intel_dp,
return false;
}
- /* Wa_14010254185 Wa_14010103792 */
- if (IS_TGL_DISPLAY_STEP(dev_priv, STEP_A0, STEP_C0)) {
- drm_dbg_kms(&dev_priv->drm,
- "PSR2 sel fetch not enabled, missing the implementation of WAs\n");
- return false;
- }
-
return crtc_state->enable_psr2_sel_fetch = true;
}
@@ -779,6 +766,7 @@ static bool psr2_granularity_check(struct intel_dp *intel_dp,
struct intel_crtc_state *crtc_state)
{
struct drm_i915_private *dev_priv = dp_to_i915(intel_dp);
+ const struct drm_dsc_config *vdsc_cfg = &crtc_state->dsc.config;
const int crtc_hdisplay = crtc_state->hw.adjusted_mode.crtc_hdisplay;
const int crtc_vdisplay = crtc_state->hw.adjusted_mode.crtc_vdisplay;
u16 y_granularity = 0;
@@ -795,11 +783,11 @@ static bool psr2_granularity_check(struct intel_dp *intel_dp,
return intel_dp->psr.su_y_granularity == 4;
/*
- * adl_p has 1 line granularity. For other platforms with SW tracking we
- * can adjust the y coordinates to match sink requirement if multiple of
- * 4.
+ * adl_p and mtl platforms have 1 line granularity.
+ * For other platforms with SW tracking we can adjust the y coordinates
+ * to match sink requirement if multiple of 4.
*/
- if (IS_ALDERLAKE_P(dev_priv))
+ if (IS_ALDERLAKE_P(dev_priv) || DISPLAY_VER(dev_priv) >= 14)
y_granularity = intel_dp->psr.su_y_granularity;
else if (intel_dp->psr.su_y_granularity <= 2)
y_granularity = 4;
@@ -809,6 +797,10 @@ static bool psr2_granularity_check(struct intel_dp *intel_dp,
if (y_granularity == 0 || crtc_vdisplay % y_granularity)
return false;
+ if (crtc_state->dsc.compression_enable &&
+ vdsc_cfg->slice_height % y_granularity)
+ return false;
+
crtc_state->su_y_granularity = y_granularity;
return true;
}
@@ -837,6 +829,46 @@ static bool _compute_psr2_sdp_prior_scanline_indication(struct intel_dp *intel_d
return true;
}
+static bool _compute_psr2_wake_times(struct intel_dp *intel_dp,
+ struct intel_crtc_state *crtc_state)
+{
+ struct drm_i915_private *i915 = dp_to_i915(intel_dp);
+ int io_wake_lines, io_wake_time, fast_wake_lines, fast_wake_time;
+ u8 max_wake_lines;
+
+ if (DISPLAY_VER(i915) >= 12) {
+ io_wake_time = 42;
+ /*
+ * According to Bspec it's 42us, but based on testing
+ * it is not enough -> use 45 us.
+ */
+ fast_wake_time = 45;
+ max_wake_lines = 12;
+ } else {
+ io_wake_time = 50;
+ fast_wake_time = 32;
+ max_wake_lines = 8;
+ }
+
+ io_wake_lines = intel_usecs_to_scanlines(
+ &crtc_state->uapi.adjusted_mode, io_wake_time);
+ fast_wake_lines = intel_usecs_to_scanlines(
+ &crtc_state->uapi.adjusted_mode, fast_wake_time);
+
+ if (io_wake_lines > max_wake_lines ||
+ fast_wake_lines > max_wake_lines)
+ return false;
+
+ if (i915->params.psr_safest_params)
+ io_wake_lines = fast_wake_lines = max_wake_lines;
+
+ /* According to Bspec lower limit should be set as 7 lines. */
+ intel_dp->psr.io_wake_lines = max(io_wake_lines, 7);
+ intel_dp->psr.fast_wake_lines = max(fast_wake_lines, 7);
+
+ return true;
+}
+
static bool intel_psr2_config_valid(struct intel_dp *intel_dp,
struct intel_crtc_state *crtc_state)
{
@@ -883,7 +915,8 @@ static bool intel_psr2_config_valid(struct intel_dp *intel_dp,
* resolution requires DSC to be enabled, priority is given to DSC
* over PSR2.
*/
- if (crtc_state->dsc.compression_enable) {
+ if (crtc_state->dsc.compression_enable &&
+ (DISPLAY_VER(dev_priv) <= 13 && !IS_ALDERLAKE_P(dev_priv))) {
drm_dbg_kms(&dev_priv->drm,
"PSR2 cannot be enabled since DSC is enabled\n");
return false;
@@ -930,6 +963,21 @@ static bool intel_psr2_config_valid(struct intel_dp *intel_dp,
return false;
}
+ if (!_compute_psr2_wake_times(intel_dp, crtc_state)) {
+ drm_dbg_kms(&dev_priv->drm,
+ "PSR2 not enabled, Unable to use long enough wake times\n");
+ return false;
+ }
+
+ /* Vblank >= PSR2_CTL Block Count Number maximum line count */
+ if (crtc_state->hw.adjusted_mode.crtc_vblank_end -
+ crtc_state->hw.adjusted_mode.crtc_vblank_start <
+ psr2_block_count_lines(intel_dp)) {
+ drm_dbg_kms(&dev_priv->drm,
+ "PSR2 not enabled, too short vblank time\n");
+ return false;
+ }
+
if (HAS_PSR2_SEL_FETCH(dev_priv)) {
if (!intel_psr2_sel_fetch_config_valid(intel_dp, crtc_state) &&
!HAS_PSR_HW_TRACKING(dev_priv)) {
@@ -939,13 +987,6 @@ static bool intel_psr2_config_valid(struct intel_dp *intel_dp,
}
}
- /* Wa_2209313811 */
- if (!crtc_state->enable_psr2_sel_fetch &&
- IS_TGL_DISPLAY_STEP(dev_priv, STEP_A0, STEP_C0)) {
- drm_dbg_kms(&dev_priv->drm, "PSR2 HW tracking is not supported this Display stepping\n");
- goto unsupported;
- }
-
if (!psr2_granularity_check(intel_dp, crtc_state)) {
drm_dbg_kms(&dev_priv->drm, "PSR2 not enabled, SU granularity not compatible\n");
goto unsupported;
@@ -1065,7 +1106,7 @@ void intel_psr_get_config(struct intel_encoder *encoder,
}
if (DISPLAY_VER(dev_priv) >= 12) {
- val = intel_de_read(dev_priv, EXITLINE(intel_dp->psr.transcoder));
+ val = intel_de_read(dev_priv, TRANS_EXITLINE(intel_dp->psr.transcoder));
val &= EXITLINE_MASK;
pipe_config->dc3co_exitline = val;
}
@@ -1105,12 +1146,42 @@ static u32 wa_16013835468_bit_get(struct intel_dp *intel_dp)
return LATENCY_REPORTING_REMOVED_PIPE_B;
case PIPE_C:
return LATENCY_REPORTING_REMOVED_PIPE_C;
+ case PIPE_D:
+ return LATENCY_REPORTING_REMOVED_PIPE_D;
default:
MISSING_CASE(intel_dp->psr.pipe);
return 0;
}
}
+/*
+ * Wa_16013835468
+ * Wa_14015648006
+ */
+static void wm_optimization_wa(struct intel_dp *intel_dp,
+ const struct intel_crtc_state *crtc_state)
+{
+ struct drm_i915_private *dev_priv = dp_to_i915(intel_dp);
+ bool set_wa_bit = false;
+
+ /* Wa_14015648006 */
+ if (IS_MTL_DISPLAY_STEP(dev_priv, STEP_A0, STEP_B0) ||
+ IS_DISPLAY_VER(dev_priv, 11, 13))
+ set_wa_bit |= crtc_state->wm_level_disabled;
+
+ /* Wa_16013835468 */
+ if (DISPLAY_VER(dev_priv) == 12)
+ set_wa_bit |= crtc_state->hw.adjusted_mode.crtc_vblank_start !=
+ crtc_state->hw.adjusted_mode.crtc_vdisplay;
+
+ if (set_wa_bit)
+ intel_de_rmw(dev_priv, GEN8_CHICKEN_DCPR_1,
+ 0, wa_16013835468_bit_get(intel_dp));
+ else
+ intel_de_rmw(dev_priv, GEN8_CHICKEN_DCPR_1,
+ wa_16013835468_bit_get(intel_dp), 0);
+}
+
static void intel_psr_enable_source(struct intel_dp *intel_dp,
const struct intel_crtc_state *crtc_state)
{
@@ -1137,25 +1208,25 @@ static void intel_psr_enable_source(struct intel_dp *intel_dp,
psr_irq_control(intel_dp);
- if (intel_dp->psr.dc3co_exitline) {
- u32 val;
-
- /*
- * TODO: if future platforms supports DC3CO in more than one
- * transcoder, EXITLINE will need to be unset when disabling PSR
- */
- val = intel_de_read(dev_priv, EXITLINE(cpu_transcoder));
- val &= ~EXITLINE_MASK;
- val |= intel_dp->psr.dc3co_exitline << EXITLINE_SHIFT;
- val |= EXITLINE_ENABLE;
- intel_de_write(dev_priv, EXITLINE(cpu_transcoder), val);
- }
+ /*
+ * TODO: if future platforms supports DC3CO in more than one
+ * transcoder, EXITLINE will need to be unset when disabling PSR
+ */
+ if (intel_dp->psr.dc3co_exitline)
+ intel_de_rmw(dev_priv, TRANS_EXITLINE(cpu_transcoder), EXITLINE_MASK,
+ intel_dp->psr.dc3co_exitline << EXITLINE_SHIFT | EXITLINE_ENABLE);
if (HAS_PSR_HW_TRACKING(dev_priv) && HAS_PSR2_SEL_FETCH(dev_priv))
intel_de_rmw(dev_priv, CHICKEN_PAR1_1, IGNORE_PSR2_HW_TRACKING,
intel_dp->psr.psr2_sel_fetch_enabled ?
IGNORE_PSR2_HW_TRACKING : 0);
+ /*
+ * Wa_16013835468
+ * Wa_14015648006
+ */
+ wm_optimization_wa(intel_dp, crtc_state);
+
if (intel_dp->psr.psr2_enabled) {
if (DISPLAY_VER(dev_priv) == 9)
intel_de_rmw(dev_priv, CHICKEN_TRANS(cpu_transcoder), 0,
@@ -1163,39 +1234,25 @@ static void intel_psr_enable_source(struct intel_dp *intel_dp,
PSR2_ADD_VERTICAL_LINE_COUNT);
/*
- * Wa_16014451276:adlp
+ * Wa_16014451276:adlp,mtl[a0,b0]
* All supported adlp panels have 1-based X granularity, this may
* cause issues if non-supported panels are used.
*/
- if (IS_ALDERLAKE_P(dev_priv))
+ if (IS_MTL_DISPLAY_STEP(dev_priv, STEP_A0, STEP_B0))
+ intel_de_rmw(dev_priv, MTL_CHICKEN_TRANS(cpu_transcoder), 0,
+ ADLP_1_BASED_X_GRANULARITY);
+ else if (IS_ALDERLAKE_P(dev_priv))
intel_de_rmw(dev_priv, CHICKEN_TRANS(cpu_transcoder), 0,
ADLP_1_BASED_X_GRANULARITY);
- /* Wa_16011168373:adl-p */
- if (IS_ADLP_DISPLAY_STEP(dev_priv, STEP_A0, STEP_B0))
+ /* Wa_16012604467:adlp,mtl[a0,b0] */
+ if (IS_MTL_DISPLAY_STEP(dev_priv, STEP_A0, STEP_B0))
intel_de_rmw(dev_priv,
- TRANS_SET_CONTEXT_LATENCY(intel_dp->psr.transcoder),
- TRANS_SET_CONTEXT_LATENCY_MASK,
- TRANS_SET_CONTEXT_LATENCY_VALUE(1));
-
- /* Wa_16012604467:adlp */
- if (IS_ALDERLAKE_P(dev_priv))
+ MTL_CLKGATE_DIS_TRANS(cpu_transcoder), 0,
+ MTL_CLKGATE_DIS_TRANS_DMASC_GATING_DIS);
+ else if (IS_ALDERLAKE_P(dev_priv))
intel_de_rmw(dev_priv, CLKGATE_DIS_MISC, 0,
CLKGATE_DIS_MISC_DMASC_GATING_DIS);
-
- /* Wa_16013835468:tgl[b0+], dg1 */
- if (IS_TGL_DISPLAY_STEP(dev_priv, STEP_B0, STEP_FOREVER) ||
- IS_DG1(dev_priv)) {
- u16 vtotal, vblank;
-
- vtotal = crtc_state->uapi.adjusted_mode.crtc_vtotal -
- crtc_state->uapi.adjusted_mode.crtc_vdisplay;
- vblank = crtc_state->uapi.adjusted_mode.crtc_vblank_end -
- crtc_state->uapi.adjusted_mode.crtc_vblank_start;
- if (vblank > vtotal)
- intel_de_rmw(dev_priv, GEN8_CHICKEN_DCPR_1, 0,
- wa_16013835468_bit_get(intel_dp));
- }
}
}
@@ -1342,29 +1399,23 @@ static void intel_psr_disable_locked(struct intel_dp *intel_dp)
intel_psr_exit(intel_dp);
intel_psr_wait_exit_locked(intel_dp);
- /* Wa_1408330847 */
- if (intel_dp->psr.psr2_sel_fetch_enabled &&
- IS_TGL_DISPLAY_STEP(dev_priv, STEP_A0, STEP_B0))
- intel_de_rmw(dev_priv, CHICKEN_PAR1_1,
- DIS_RAM_BYPASS_PSR2_MAN_TRACK, 0);
+ /*
+ * Wa_16013835468
+ * Wa_14015648006
+ */
+ if (DISPLAY_VER(dev_priv) >= 11)
+ intel_de_rmw(dev_priv, GEN8_CHICKEN_DCPR_1,
+ wa_16013835468_bit_get(intel_dp), 0);
if (intel_dp->psr.psr2_enabled) {
- /* Wa_16011168373:adl-p */
- if (IS_ADLP_DISPLAY_STEP(dev_priv, STEP_A0, STEP_B0))
+ /* Wa_16012604467:adlp,mtl[a0,b0] */
+ if (IS_MTL_DISPLAY_STEP(dev_priv, STEP_A0, STEP_B0))
intel_de_rmw(dev_priv,
- TRANS_SET_CONTEXT_LATENCY(intel_dp->psr.transcoder),
- TRANS_SET_CONTEXT_LATENCY_MASK, 0);
-
- /* Wa_16012604467:adlp */
- if (IS_ALDERLAKE_P(dev_priv))
+ MTL_CLKGATE_DIS_TRANS(intel_dp->psr.transcoder),
+ MTL_CLKGATE_DIS_TRANS_DMASC_GATING_DIS, 0);
+ else if (IS_ALDERLAKE_P(dev_priv))
intel_de_rmw(dev_priv, CLKGATE_DIS_MISC,
CLKGATE_DIS_MISC_DMASC_GATING_DIS, 0);
-
- /* Wa_16013835468:tgl[b0+], dg1 */
- if (IS_TGL_DISPLAY_STEP(dev_priv, STEP_B0, STEP_FOREVER) ||
- IS_DG1(dev_priv))
- intel_de_rmw(dev_priv, GEN8_CHICKEN_DCPR_1,
- wa_16013835468_bit_get(intel_dp), 0);
}
intel_snps_phy_update_psr_power_state(dev_priv, phy, false);
@@ -1469,26 +1520,27 @@ unlock:
static u32 man_trk_ctl_enable_bit_get(struct drm_i915_private *dev_priv)
{
- return IS_ALDERLAKE_P(dev_priv) ? 0 : PSR2_MAN_TRK_CTL_ENABLE;
+ return IS_ALDERLAKE_P(dev_priv) || DISPLAY_VER(dev_priv) >= 14 ? 0 :
+ PSR2_MAN_TRK_CTL_ENABLE;
}
static u32 man_trk_ctl_single_full_frame_bit_get(struct drm_i915_private *dev_priv)
{
- return IS_ALDERLAKE_P(dev_priv) ?
+ return IS_ALDERLAKE_P(dev_priv) || DISPLAY_VER(dev_priv) >= 14 ?
ADLP_PSR2_MAN_TRK_CTL_SF_SINGLE_FULL_FRAME :
PSR2_MAN_TRK_CTL_SF_SINGLE_FULL_FRAME;
}
static u32 man_trk_ctl_partial_frame_bit_get(struct drm_i915_private *dev_priv)
{
- return IS_ALDERLAKE_P(dev_priv) ?
+ return IS_ALDERLAKE_P(dev_priv) || DISPLAY_VER(dev_priv) >= 14 ?
ADLP_PSR2_MAN_TRK_CTL_SF_PARTIAL_FRAME_UPDATE :
PSR2_MAN_TRK_CTL_SF_PARTIAL_FRAME_UPDATE;
}
static u32 man_trk_ctl_continuos_full_frame(struct drm_i915_private *dev_priv)
{
- return IS_ALDERLAKE_P(dev_priv) ?
+ return IS_ALDERLAKE_P(dev_priv) || DISPLAY_VER(dev_priv) >= 14 ?
ADLP_PSR2_MAN_TRK_CTL_SF_CONTINUOS_FULL_FRAME :
PSR2_MAN_TRK_CTL_SF_CONTINUOS_FULL_FRAME;
}
@@ -1502,7 +1554,8 @@ static void psr_force_hw_tracking_exit(struct intel_dp *intel_dp)
PSR2_MAN_TRK_CTL(intel_dp->psr.transcoder),
man_trk_ctl_enable_bit_get(dev_priv) |
man_trk_ctl_partial_frame_bit_get(dev_priv) |
- man_trk_ctl_single_full_frame_bit_get(dev_priv));
+ man_trk_ctl_single_full_frame_bit_get(dev_priv) |
+ man_trk_ctl_continuos_full_frame(dev_priv));
/*
* Display WA #0884: skl+
@@ -1520,8 +1573,8 @@ static void psr_force_hw_tracking_exit(struct intel_dp *intel_dp)
intel_de_write(dev_priv, CURSURFLIVE(intel_dp->psr.pipe), 0);
}
-void intel_psr2_disable_plane_sel_fetch(struct intel_plane *plane,
- const struct intel_crtc_state *crtc_state)
+void intel_psr2_disable_plane_sel_fetch_arm(struct intel_plane *plane,
+ const struct intel_crtc_state *crtc_state)
{
struct drm_i915_private *dev_priv = to_i915(plane->base.dev);
enum pipe pipe = plane->pipe;
@@ -1532,10 +1585,28 @@ void intel_psr2_disable_plane_sel_fetch(struct intel_plane *plane,
intel_de_write_fw(dev_priv, PLANE_SEL_FETCH_CTL(pipe, plane->id), 0);
}
-void intel_psr2_program_plane_sel_fetch(struct intel_plane *plane,
- const struct intel_crtc_state *crtc_state,
- const struct intel_plane_state *plane_state,
- int color_plane)
+void intel_psr2_program_plane_sel_fetch_arm(struct intel_plane *plane,
+ const struct intel_crtc_state *crtc_state,
+ const struct intel_plane_state *plane_state)
+{
+ struct drm_i915_private *i915 = to_i915(plane->base.dev);
+ enum pipe pipe = plane->pipe;
+
+ if (!crtc_state->enable_psr2_sel_fetch)
+ return;
+
+ if (plane->id == PLANE_CURSOR)
+ intel_de_write_fw(i915, PLANE_SEL_FETCH_CTL(pipe, plane->id),
+ plane_state->ctl);
+ else
+ intel_de_write_fw(i915, PLANE_SEL_FETCH_CTL(pipe, plane->id),
+ PLANE_SEL_FETCH_CTL_ENABLE);
+}
+
+void intel_psr2_program_plane_sel_fetch_noarm(struct intel_plane *plane,
+ const struct intel_crtc_state *crtc_state,
+ const struct intel_plane_state *plane_state,
+ int color_plane)
{
struct drm_i915_private *dev_priv = to_i915(plane->base.dev);
enum pipe pipe = plane->pipe;
@@ -1546,11 +1617,8 @@ void intel_psr2_program_plane_sel_fetch(struct intel_plane *plane,
if (!crtc_state->enable_psr2_sel_fetch)
return;
- if (plane->id == PLANE_CURSOR) {
- intel_de_write_fw(dev_priv, PLANE_SEL_FETCH_CTL(pipe, plane->id),
- plane_state->ctl);
+ if (plane->id == PLANE_CURSOR)
return;
- }
clip = &plane_state->psr2_sel_fetch_area;
@@ -1578,9 +1646,6 @@ void intel_psr2_program_plane_sel_fetch(struct intel_plane *plane,
val = (drm_rect_height(clip) - 1) << 16;
val |= (drm_rect_width(&plane_state->uapi.src) >> 16) - 1;
intel_de_write_fw(dev_priv, PLANE_SEL_FETCH_SIZE(pipe, plane->id), val);
-
- intel_de_write_fw(dev_priv, PLANE_SEL_FETCH_CTL(pipe, plane->id),
- PLANE_SEL_FETCH_CTL_ENABLE);
}
void intel_psr2_program_trans_man_trk_ctl(const struct intel_crtc_state *crtc_state)
@@ -1616,18 +1681,15 @@ static void psr2_man_trk_ctl_calc(struct intel_crtc_state *crtc_state,
val |= man_trk_ctl_partial_frame_bit_get(dev_priv);
if (full_update) {
- /*
- * Not applying Wa_14014971508:adlp as we do not support the
- * feature that requires this workaround.
- */
val |= man_trk_ctl_single_full_frame_bit_get(dev_priv);
+ val |= man_trk_ctl_continuos_full_frame(dev_priv);
goto exit;
}
if (clip->y1 == -1)
goto exit;
- if (IS_ALDERLAKE_P(dev_priv)) {
+ if (IS_ALDERLAKE_P(dev_priv) || DISPLAY_VER(dev_priv) >= 14) {
val |= ADLP_PSR2_MAN_TRK_CTL_SU_REGION_START_ADDR(clip->y1);
val |= ADLP_PSR2_MAN_TRK_CTL_SU_REGION_END_ADDR(clip->y2 - 1);
} else {
@@ -1664,14 +1726,19 @@ static void intel_psr2_sel_fetch_pipe_alignment(const struct intel_crtc_state *c
struct drm_rect *pipe_clip)
{
struct drm_i915_private *dev_priv = to_i915(crtc_state->uapi.crtc->dev);
- const u16 y_alignment = crtc_state->su_y_granularity;
+ const struct drm_dsc_config *vdsc_cfg = &crtc_state->dsc.config;
+ u16 y_alignment;
+
+ /* ADLP aligns the SU region to vdsc slice height in case dsc is enabled */
+ if (crtc_state->dsc.compression_enable &&
+ (IS_ALDERLAKE_P(dev_priv) || DISPLAY_VER(dev_priv) >= 14))
+ y_alignment = vdsc_cfg->slice_height;
+ else
+ y_alignment = crtc_state->su_y_granularity;
pipe_clip->y1 -= pipe_clip->y1 % y_alignment;
if (pipe_clip->y2 % y_alignment)
pipe_clip->y2 = ((pipe_clip->y2 / y_alignment) + 1) * y_alignment;
-
- if (IS_ALDERLAKE_P(dev_priv) && crtc_state->dsc.compression_enable)
- drm_warn(&dev_priv->drm, "Missing PSR2 sel fetch alignment with DSC\n");
}
/*
@@ -1813,6 +1880,12 @@ int intel_psr2_sel_fetch_update(struct intel_atomic_state *state,
if (full_update)
goto skip_sel_fetch_set_loop;
+ /* Wa_14014971492 */
+ if ((IS_MTL_DISPLAY_STEP(dev_priv, STEP_A0, STEP_B0) ||
+ IS_ALDERLAKE_P(dev_priv) || IS_TIGERLAKE(dev_priv)) &&
+ crtc_state->splitter.enable)
+ pipe_clip.y1 = 0;
+
ret = drm_atomic_add_affected_planes(&state->base, &crtc->base);
if (ret)
return ret;
@@ -1896,14 +1969,20 @@ void intel_psr_pre_plane_update(struct intel_atomic_state *state,
* - PSR disabled in new state
* - All planes will go inactive
* - Changing between PSR versions
+ * - Display WA #1136: skl, bxt
*/
needs_to_disable |= intel_crtc_needs_modeset(new_crtc_state);
needs_to_disable |= !new_crtc_state->has_psr;
needs_to_disable |= !new_crtc_state->active_planes;
needs_to_disable |= new_crtc_state->has_psr2 != psr->psr2_enabled;
+ needs_to_disable |= DISPLAY_VER(i915) < 11 &&
+ new_crtc_state->wm_level_disabled;
if (psr->enabled && needs_to_disable)
intel_psr_disable_locked(intel_dp);
+ else if (psr->enabled && new_crtc_state->wm_level_disabled)
+ /* Wa_14015648006 */
+ wm_optimization_wa(intel_dp, new_crtc_state);
mutex_unlock(&psr->lock);
}
@@ -1922,23 +2001,29 @@ static void _intel_psr_post_plane_update(const struct intel_atomic_state *state,
crtc_state->uapi.encoder_mask) {
struct intel_dp *intel_dp = enc_to_intel_dp(encoder);
struct intel_psr *psr = &intel_dp->psr;
+ bool keep_disabled = false;
mutex_lock(&psr->lock);
- if (psr->sink_not_reliable)
- goto exit;
-
drm_WARN_ON(&dev_priv->drm, psr->enabled && !crtc_state->active_planes);
- /* Only enable if there is active planes */
- if (!psr->enabled && crtc_state->active_planes)
+ keep_disabled |= psr->sink_not_reliable;
+ keep_disabled |= !crtc_state->active_planes;
+
+ /* Display WA #1136: skl, bxt */
+ keep_disabled |= DISPLAY_VER(dev_priv) < 11 &&
+ crtc_state->wm_level_disabled;
+
+ if (!psr->enabled && !keep_disabled)
intel_psr_enable_locked(intel_dp, crtc_state);
+ else if (psr->enabled && !crtc_state->wm_level_disabled)
+ /* Wa_14015648006 */
+ wm_optimization_wa(intel_dp, crtc_state);
/* Force a PSR exit when enabling CRC to avoid CRC timeouts */
if (crtc_state->crc_enabled && psr->enabled)
psr_force_hw_tracking_exit(intel_dp);
-exit:
mutex_unlock(&psr->lock);
}
}
@@ -2054,13 +2139,12 @@ static bool __psr_wait_for_idle_locked(struct intel_dp *intel_dp)
static int intel_psr_fastset_force(struct drm_i915_private *dev_priv)
{
struct drm_connector_list_iter conn_iter;
- struct drm_device *dev = &dev_priv->drm;
struct drm_modeset_acquire_ctx ctx;
struct drm_atomic_state *state;
struct drm_connector *conn;
int err = 0;
- state = drm_atomic_state_alloc(dev);
+ state = drm_atomic_state_alloc(&dev_priv->drm);
if (!state)
return -ENOMEM;
@@ -2069,7 +2153,7 @@ static int intel_psr_fastset_force(struct drm_i915_private *dev_priv)
retry:
- drm_connector_list_iter_begin(dev, &conn_iter);
+ drm_connector_list_iter_begin(&dev_priv->drm, &conn_iter);
drm_for_each_connector_iter(conn, &conn_iter) {
struct drm_connector_state *conn_state;
struct drm_crtc_state *crtc_state;
@@ -2295,12 +2379,15 @@ static void _psr_flush_handle(struct intel_dp *intel_dp)
/* can we turn CFF off? */
if (intel_dp->psr.busy_frontbuffer_bits == 0) {
u32 val = man_trk_ctl_enable_bit_get(dev_priv) |
- man_trk_ctl_partial_frame_bit_get(dev_priv) |
- man_trk_ctl_single_full_frame_bit_get(dev_priv);
+ man_trk_ctl_partial_frame_bit_get(dev_priv) |
+ man_trk_ctl_single_full_frame_bit_get(dev_priv) |
+ man_trk_ctl_continuos_full_frame(dev_priv);
/*
- * turn continuous full frame off and do a single
- * full frame
+ * Set psr2_sel_fetch_cff_enabled as false to allow selective
+ * updates. Still keep cff bit enabled as we don't have proper
+ * SU configuration in case update is sent for any reason after
+ * sff bit gets cleared by the HW on next vblank.
*/
intel_de_write(dev_priv, PSR2_MAN_TRK_CTL(intel_dp->psr.transcoder),
val);
@@ -2610,3 +2697,302 @@ void intel_psr_unlock(const struct intel_crtc_state *crtc_state)
break;
}
}
+
+static void
+psr_source_status(struct intel_dp *intel_dp, struct seq_file *m)
+{
+ struct drm_i915_private *dev_priv = dp_to_i915(intel_dp);
+ const char *status = "unknown";
+ u32 val, status_val;
+
+ if (intel_dp->psr.psr2_enabled) {
+ static const char * const live_status[] = {
+ "IDLE",
+ "CAPTURE",
+ "CAPTURE_FS",
+ "SLEEP",
+ "BUFON_FW",
+ "ML_UP",
+ "SU_STANDBY",
+ "FAST_SLEEP",
+ "DEEP_SLEEP",
+ "BUF_ON",
+ "TG_ON"
+ };
+ val = intel_de_read(dev_priv,
+ EDP_PSR2_STATUS(intel_dp->psr.transcoder));
+ status_val = REG_FIELD_GET(EDP_PSR2_STATUS_STATE_MASK, val);
+ if (status_val < ARRAY_SIZE(live_status))
+ status = live_status[status_val];
+ } else {
+ static const char * const live_status[] = {
+ "IDLE",
+ "SRDONACK",
+ "SRDENT",
+ "BUFOFF",
+ "BUFON",
+ "AUXACK",
+ "SRDOFFACK",
+ "SRDENT_ON",
+ };
+ val = intel_de_read(dev_priv,
+ EDP_PSR_STATUS(intel_dp->psr.transcoder));
+ status_val = (val & EDP_PSR_STATUS_STATE_MASK) >>
+ EDP_PSR_STATUS_STATE_SHIFT;
+ if (status_val < ARRAY_SIZE(live_status))
+ status = live_status[status_val];
+ }
+
+ seq_printf(m, "Source PSR status: %s [0x%08x]\n", status, val);
+}
+
+static int intel_psr_status(struct seq_file *m, struct intel_dp *intel_dp)
+{
+ struct drm_i915_private *dev_priv = dp_to_i915(intel_dp);
+ struct intel_psr *psr = &intel_dp->psr;
+ intel_wakeref_t wakeref;
+ const char *status;
+ bool enabled;
+ u32 val;
+
+ seq_printf(m, "Sink support: %s", str_yes_no(psr->sink_support));
+ if (psr->sink_support)
+ seq_printf(m, " [0x%02x]", intel_dp->psr_dpcd[0]);
+ seq_puts(m, "\n");
+
+ if (!psr->sink_support)
+ return 0;
+
+ wakeref = intel_runtime_pm_get(&dev_priv->runtime_pm);
+ mutex_lock(&psr->lock);
+
+ if (psr->enabled)
+ status = psr->psr2_enabled ? "PSR2 enabled" : "PSR1 enabled";
+ else
+ status = "disabled";
+ seq_printf(m, "PSR mode: %s\n", status);
+
+ if (!psr->enabled) {
+ seq_printf(m, "PSR sink not reliable: %s\n",
+ str_yes_no(psr->sink_not_reliable));
+
+ goto unlock;
+ }
+
+ if (psr->psr2_enabled) {
+ val = intel_de_read(dev_priv,
+ EDP_PSR2_CTL(intel_dp->psr.transcoder));
+ enabled = val & EDP_PSR2_ENABLE;
+ } else {
+ val = intel_de_read(dev_priv,
+ EDP_PSR_CTL(intel_dp->psr.transcoder));
+ enabled = val & EDP_PSR_ENABLE;
+ }
+ seq_printf(m, "Source PSR ctl: %s [0x%08x]\n",
+ str_enabled_disabled(enabled), val);
+ psr_source_status(intel_dp, m);
+ seq_printf(m, "Busy frontbuffer bits: 0x%08x\n",
+ psr->busy_frontbuffer_bits);
+
+ /*
+ * SKL+ Perf counter is reset to 0 everytime DC state is entered
+ */
+ if (IS_HASWELL(dev_priv) || IS_BROADWELL(dev_priv)) {
+ val = intel_de_read(dev_priv,
+ EDP_PSR_PERF_CNT(intel_dp->psr.transcoder));
+ val &= EDP_PSR_PERF_CNT_MASK;
+ seq_printf(m, "Performance counter: %u\n", val);
+ }
+
+ if (psr->debug & I915_PSR_DEBUG_IRQ) {
+ seq_printf(m, "Last attempted entry at: %lld\n",
+ psr->last_entry_attempt);
+ seq_printf(m, "Last exit at: %lld\n", psr->last_exit);
+ }
+
+ if (psr->psr2_enabled) {
+ u32 su_frames_val[3];
+ int frame;
+
+ /*
+ * Reading all 3 registers before hand to minimize crossing a
+ * frame boundary between register reads
+ */
+ for (frame = 0; frame < PSR2_SU_STATUS_FRAMES; frame += 3) {
+ val = intel_de_read(dev_priv,
+ PSR2_SU_STATUS(intel_dp->psr.transcoder, frame));
+ su_frames_val[frame / 3] = val;
+ }
+
+ seq_puts(m, "Frame:\tPSR2 SU blocks:\n");
+
+ for (frame = 0; frame < PSR2_SU_STATUS_FRAMES; frame++) {
+ u32 su_blocks;
+
+ su_blocks = su_frames_val[frame / 3] &
+ PSR2_SU_STATUS_MASK(frame);
+ su_blocks = su_blocks >> PSR2_SU_STATUS_SHIFT(frame);
+ seq_printf(m, "%d\t%d\n", frame, su_blocks);
+ }
+
+ seq_printf(m, "PSR2 selective fetch: %s\n",
+ str_enabled_disabled(psr->psr2_sel_fetch_enabled));
+ }
+
+unlock:
+ mutex_unlock(&psr->lock);
+ intel_runtime_pm_put(&dev_priv->runtime_pm, wakeref);
+
+ return 0;
+}
+
+static int i915_edp_psr_status_show(struct seq_file *m, void *data)
+{
+ struct drm_i915_private *dev_priv = m->private;
+ struct intel_dp *intel_dp = NULL;
+ struct intel_encoder *encoder;
+
+ if (!HAS_PSR(dev_priv))
+ return -ENODEV;
+
+ /* Find the first EDP which supports PSR */
+ for_each_intel_encoder_with_psr(&dev_priv->drm, encoder) {
+ intel_dp = enc_to_intel_dp(encoder);
+ break;
+ }
+
+ if (!intel_dp)
+ return -ENODEV;
+
+ return intel_psr_status(m, intel_dp);
+}
+DEFINE_SHOW_ATTRIBUTE(i915_edp_psr_status);
+
+static int
+i915_edp_psr_debug_set(void *data, u64 val)
+{
+ struct drm_i915_private *dev_priv = data;
+ struct intel_encoder *encoder;
+ intel_wakeref_t wakeref;
+ int ret = -ENODEV;
+
+ if (!HAS_PSR(dev_priv))
+ return ret;
+
+ for_each_intel_encoder_with_psr(&dev_priv->drm, encoder) {
+ struct intel_dp *intel_dp = enc_to_intel_dp(encoder);
+
+ drm_dbg_kms(&dev_priv->drm, "Setting PSR debug to %llx\n", val);
+
+ wakeref = intel_runtime_pm_get(&dev_priv->runtime_pm);
+
+ // TODO: split to each transcoder's PSR debug state
+ ret = intel_psr_debug_set(intel_dp, val);
+
+ intel_runtime_pm_put(&dev_priv->runtime_pm, wakeref);
+ }
+
+ return ret;
+}
+
+static int
+i915_edp_psr_debug_get(void *data, u64 *val)
+{
+ struct drm_i915_private *dev_priv = data;
+ struct intel_encoder *encoder;
+
+ if (!HAS_PSR(dev_priv))
+ return -ENODEV;
+
+ for_each_intel_encoder_with_psr(&dev_priv->drm, encoder) {
+ struct intel_dp *intel_dp = enc_to_intel_dp(encoder);
+
+ // TODO: split to each transcoder's PSR debug state
+ *val = READ_ONCE(intel_dp->psr.debug);
+ return 0;
+ }
+
+ return -ENODEV;
+}
+
+DEFINE_SIMPLE_ATTRIBUTE(i915_edp_psr_debug_fops,
+ i915_edp_psr_debug_get, i915_edp_psr_debug_set,
+ "%llu\n");
+
+void intel_psr_debugfs_register(struct drm_i915_private *i915)
+{
+ struct drm_minor *minor = i915->drm.primary;
+
+ debugfs_create_file("i915_edp_psr_debug", 0644, minor->debugfs_root,
+ i915, &i915_edp_psr_debug_fops);
+
+ debugfs_create_file("i915_edp_psr_status", 0444, minor->debugfs_root,
+ i915, &i915_edp_psr_status_fops);
+}
+
+static int i915_psr_sink_status_show(struct seq_file *m, void *data)
+{
+ struct intel_connector *connector = m->private;
+ struct intel_dp *intel_dp = intel_attached_dp(connector);
+ static const char * const sink_status[] = {
+ "inactive",
+ "transition to active, capture and display",
+ "active, display from RFB",
+ "active, capture and display on sink device timings",
+ "transition to inactive, capture and display, timing re-sync",
+ "reserved",
+ "reserved",
+ "sink internal error",
+ };
+ const char *str;
+ int ret;
+ u8 val;
+
+ if (!CAN_PSR(intel_dp)) {
+ seq_puts(m, "PSR Unsupported\n");
+ return -ENODEV;
+ }
+
+ if (connector->base.status != connector_status_connected)
+ return -ENODEV;
+
+ ret = drm_dp_dpcd_readb(&intel_dp->aux, DP_PSR_STATUS, &val);
+ if (ret != 1)
+ return ret < 0 ? ret : -EIO;
+
+ val &= DP_PSR_SINK_STATE_MASK;
+ if (val < ARRAY_SIZE(sink_status))
+ str = sink_status[val];
+ else
+ str = "unknown";
+
+ seq_printf(m, "Sink PSR status: 0x%x [%s]\n", val, str);
+
+ return 0;
+}
+DEFINE_SHOW_ATTRIBUTE(i915_psr_sink_status);
+
+static int i915_psr_status_show(struct seq_file *m, void *data)
+{
+ struct intel_connector *connector = m->private;
+ struct intel_dp *intel_dp = intel_attached_dp(connector);
+
+ return intel_psr_status(m, intel_dp);
+}
+DEFINE_SHOW_ATTRIBUTE(i915_psr_status);
+
+void intel_psr_connector_debugfs_add(struct intel_connector *connector)
+{
+ struct drm_i915_private *i915 = to_i915(connector->base.dev);
+ struct dentry *root = connector->base.debugfs_entry;
+
+ if (connector->base.connector_type != DRM_MODE_CONNECTOR_eDP)
+ return;
+
+ debugfs_create_file("i915_psr_sink_status", 0444, root,
+ connector, &i915_psr_sink_status_fops);
+
+ if (HAS_PSR(i915))
+ debugfs_create_file("i915_psr_status", 0444, root,
+ connector, &i915_psr_status_fops);
+}
diff --git a/drivers/gpu/drm/i915/display/intel_psr.h b/drivers/gpu/drm/i915/display/intel_psr.h
index 2ac3a46cccc5..0b95e8aa615f 100644
--- a/drivers/gpu/drm/i915/display/intel_psr.h
+++ b/drivers/gpu/drm/i915/display/intel_psr.h
@@ -13,6 +13,7 @@ struct drm_connector;
struct drm_connector_state;
struct drm_i915_private;
struct intel_atomic_state;
+struct intel_connector;
struct intel_crtc;
struct intel_crtc_state;
struct intel_dp;
@@ -46,16 +47,22 @@ bool intel_psr_enabled(struct intel_dp *intel_dp);
int intel_psr2_sel_fetch_update(struct intel_atomic_state *state,
struct intel_crtc *crtc);
void intel_psr2_program_trans_man_trk_ctl(const struct intel_crtc_state *crtc_state);
-void intel_psr2_program_plane_sel_fetch(struct intel_plane *plane,
- const struct intel_crtc_state *crtc_state,
- const struct intel_plane_state *plane_state,
- int color_plane);
-void intel_psr2_disable_plane_sel_fetch(struct intel_plane *plane,
- const struct intel_crtc_state *crtc_state);
+void intel_psr2_program_plane_sel_fetch_noarm(struct intel_plane *plane,
+ const struct intel_crtc_state *crtc_state,
+ const struct intel_plane_state *plane_state,
+ int color_plane);
+void intel_psr2_program_plane_sel_fetch_arm(struct intel_plane *plane,
+ const struct intel_crtc_state *crtc_state,
+ const struct intel_plane_state *plane_state);
+
+void intel_psr2_disable_plane_sel_fetch_arm(struct intel_plane *plane,
+ const struct intel_crtc_state *crtc_state);
void intel_psr_pause(struct intel_dp *intel_dp);
void intel_psr_resume(struct intel_dp *intel_dp);
void intel_psr_lock(const struct intel_crtc_state *crtc_state);
void intel_psr_unlock(const struct intel_crtc_state *crtc_state);
+void intel_psr_connector_debugfs_add(struct intel_connector *connector);
+void intel_psr_debugfs_register(struct drm_i915_private *i915);
#endif /* __INTEL_PSR_H__ */
diff --git a/drivers/gpu/drm/i915/display/intel_psr_regs.h b/drivers/gpu/drm/i915/display/intel_psr_regs.h
new file mode 100644
index 000000000000..958d8cabc44b
--- /dev/null
+++ b/drivers/gpu/drm/i915/display/intel_psr_regs.h
@@ -0,0 +1,260 @@
+/* SPDX-License-Identifier: MIT */
+/*
+ * Copyright © 2023 Intel Corporation
+ */
+
+#ifndef __INTEL_PSR_REGS_H__
+#define __INTEL_PSR_REGS_H__
+
+#include "intel_display_reg_defs.h"
+
+#define TRANS_EXITLINE(trans) _MMIO_TRANS2((trans), _TRANS_EXITLINE_A)
+#define EXITLINE_ENABLE REG_BIT(31)
+#define EXITLINE_MASK REG_GENMASK(12, 0)
+#define EXITLINE_SHIFT 0
+
+/*
+ * HSW+ eDP PSR registers
+ *
+ * HSW PSR registers are relative to DDIA(_DDI_BUF_CTL_A + 0x800) with just one
+ * instance of it
+ */
+#define _SRD_CTL_A 0x60800
+#define _SRD_CTL_EDP 0x6f800
+#define EDP_PSR_CTL(tran) _MMIO_TRANS2(tran, _SRD_CTL_A)
+#define EDP_PSR_ENABLE (1 << 31)
+#define BDW_PSR_SINGLE_FRAME (1 << 30)
+#define EDP_PSR_RESTORE_PSR_ACTIVE_CTX_MASK (1 << 29) /* SW can't modify */
+#define EDP_PSR_LINK_STANDBY (1 << 27)
+#define EDP_PSR_MIN_LINK_ENTRY_TIME_MASK (3 << 25)
+#define EDP_PSR_MIN_LINK_ENTRY_TIME_8_LINES (0 << 25)
+#define EDP_PSR_MIN_LINK_ENTRY_TIME_4_LINES (1 << 25)
+#define EDP_PSR_MIN_LINK_ENTRY_TIME_2_LINES (2 << 25)
+#define EDP_PSR_MIN_LINK_ENTRY_TIME_0_LINES (3 << 25)
+#define EDP_PSR_MAX_SLEEP_TIME_SHIFT 20
+#define EDP_PSR_SKIP_AUX_EXIT (1 << 12)
+#define EDP_PSR_TP1_TP2_SEL (0 << 11)
+#define EDP_PSR_TP1_TP3_SEL (1 << 11)
+#define EDP_PSR_CRC_ENABLE (1 << 10) /* BDW+ */
+#define EDP_PSR_TP2_TP3_TIME_500us (0 << 8)
+#define EDP_PSR_TP2_TP3_TIME_100us (1 << 8)
+#define EDP_PSR_TP2_TP3_TIME_2500us (2 << 8)
+#define EDP_PSR_TP2_TP3_TIME_0us (3 << 8)
+#define EDP_PSR_TP4_TIME_0US (3 << 6) /* ICL+ */
+#define EDP_PSR_TP1_TIME_500us (0 << 4)
+#define EDP_PSR_TP1_TIME_100us (1 << 4)
+#define EDP_PSR_TP1_TIME_2500us (2 << 4)
+#define EDP_PSR_TP1_TIME_0us (3 << 4)
+#define EDP_PSR_IDLE_FRAME_SHIFT 0
+
+/*
+ * Until TGL, IMR/IIR are fixed at 0x648xx. On TGL+ those registers are relative
+ * to transcoder and bits defined for each one as if using no shift (i.e. as if
+ * it was for TRANSCODER_EDP)
+ */
+#define EDP_PSR_IMR _MMIO(0x64834)
+#define EDP_PSR_IIR _MMIO(0x64838)
+#define _PSR_IMR_A 0x60814
+#define _PSR_IIR_A 0x60818
+#define TRANS_PSR_IMR(tran) _MMIO_TRANS2(tran, _PSR_IMR_A)
+#define TRANS_PSR_IIR(tran) _MMIO_TRANS2(tran, _PSR_IIR_A)
+#define _EDP_PSR_TRANS_SHIFT(trans) ((trans) == TRANSCODER_EDP ? \
+ 0 : ((trans) - TRANSCODER_A + 1) * 8)
+#define TGL_PSR_MASK REG_GENMASK(2, 0)
+#define TGL_PSR_ERROR REG_BIT(2)
+#define TGL_PSR_POST_EXIT REG_BIT(1)
+#define TGL_PSR_PRE_ENTRY REG_BIT(0)
+#define EDP_PSR_MASK(trans) (TGL_PSR_MASK << \
+ _EDP_PSR_TRANS_SHIFT(trans))
+#define EDP_PSR_ERROR(trans) (TGL_PSR_ERROR << \
+ _EDP_PSR_TRANS_SHIFT(trans))
+#define EDP_PSR_POST_EXIT(trans) (TGL_PSR_POST_EXIT << \
+ _EDP_PSR_TRANS_SHIFT(trans))
+#define EDP_PSR_PRE_ENTRY(trans) (TGL_PSR_PRE_ENTRY << \
+ _EDP_PSR_TRANS_SHIFT(trans))
+
+#define _SRD_AUX_DATA_A 0x60814
+#define _SRD_AUX_DATA_EDP 0x6f814
+#define EDP_PSR_AUX_DATA(tran, i) _MMIO_TRANS2(tran, _SRD_AUX_DATA_A + (i) + 4) /* 5 registers */
+
+#define _SRD_STATUS_A 0x60840
+#define _SRD_STATUS_EDP 0x6f840
+#define EDP_PSR_STATUS(tran) _MMIO_TRANS2(tran, _SRD_STATUS_A)
+#define EDP_PSR_STATUS_STATE_MASK (7 << 29)
+#define EDP_PSR_STATUS_STATE_SHIFT 29
+#define EDP_PSR_STATUS_STATE_IDLE (0 << 29)
+#define EDP_PSR_STATUS_STATE_SRDONACK (1 << 29)
+#define EDP_PSR_STATUS_STATE_SRDENT (2 << 29)
+#define EDP_PSR_STATUS_STATE_BUFOFF (3 << 29)
+#define EDP_PSR_STATUS_STATE_BUFON (4 << 29)
+#define EDP_PSR_STATUS_STATE_AUXACK (5 << 29)
+#define EDP_PSR_STATUS_STATE_SRDOFFACK (6 << 29)
+#define EDP_PSR_STATUS_LINK_MASK (3 << 26)
+#define EDP_PSR_STATUS_LINK_FULL_OFF (0 << 26)
+#define EDP_PSR_STATUS_LINK_FULL_ON (1 << 26)
+#define EDP_PSR_STATUS_LINK_STANDBY (2 << 26)
+#define EDP_PSR_STATUS_MAX_SLEEP_TIMER_SHIFT 20
+#define EDP_PSR_STATUS_MAX_SLEEP_TIMER_MASK 0x1f
+#define EDP_PSR_STATUS_COUNT_SHIFT 16
+#define EDP_PSR_STATUS_COUNT_MASK 0xf
+#define EDP_PSR_STATUS_AUX_ERROR (1 << 15)
+#define EDP_PSR_STATUS_AUX_SENDING (1 << 12)
+#define EDP_PSR_STATUS_SENDING_IDLE (1 << 9)
+#define EDP_PSR_STATUS_SENDING_TP2_TP3 (1 << 8)
+#define EDP_PSR_STATUS_SENDING_TP1 (1 << 4)
+#define EDP_PSR_STATUS_IDLE_MASK 0xf
+
+#define _SRD_PERF_CNT_A 0x60844
+#define _SRD_PERF_CNT_EDP 0x6f844
+#define EDP_PSR_PERF_CNT(tran) _MMIO_TRANS2(tran, _SRD_PERF_CNT_A)
+#define EDP_PSR_PERF_CNT_MASK 0xffffff
+
+/* PSR_MASK on SKL+ */
+#define _SRD_DEBUG_A 0x60860
+#define _SRD_DEBUG_EDP 0x6f860
+#define EDP_PSR_DEBUG(tran) _MMIO_TRANS2(tran, _SRD_DEBUG_A)
+#define EDP_PSR_DEBUG_MASK_MAX_SLEEP (1 << 28)
+#define EDP_PSR_DEBUG_MASK_LPSP (1 << 27)
+#define EDP_PSR_DEBUG_MASK_MEMUP (1 << 26)
+#define EDP_PSR_DEBUG_MASK_HPD (1 << 25)
+#define EDP_PSR_DEBUG_MASK_DISP_REG_WRITE (1 << 16) /* Reserved in ICL+ */
+#define EDP_PSR_DEBUG_EXIT_ON_PIXEL_UNDERRUN (1 << 15) /* SKL+ */
+
+#define _PSR2_CTL_A 0x60900
+#define _PSR2_CTL_EDP 0x6f900
+#define EDP_PSR2_CTL(tran) _MMIO_TRANS2(tran, _PSR2_CTL_A)
+#define EDP_PSR2_ENABLE (1 << 31)
+#define EDP_SU_TRACK_ENABLE (1 << 30) /* up to adl-p */
+#define TGL_EDP_PSR2_BLOCK_COUNT_NUM_2 (0 << 28)
+#define TGL_EDP_PSR2_BLOCK_COUNT_NUM_3 (1 << 28)
+#define EDP_Y_COORDINATE_ENABLE REG_BIT(25) /* display 10, 11 and 12 */
+#define EDP_PSR2_SU_SDP_SCANLINE REG_BIT(25) /* display 13+ */
+#define EDP_MAX_SU_DISABLE_TIME(t) ((t) << 20)
+#define EDP_MAX_SU_DISABLE_TIME_MASK (0x1f << 20)
+#define EDP_PSR2_IO_BUFFER_WAKE_MAX_LINES 8
+#define EDP_PSR2_IO_BUFFER_WAKE(lines) ((EDP_PSR2_IO_BUFFER_WAKE_MAX_LINES - (lines)) << 13)
+#define EDP_PSR2_IO_BUFFER_WAKE_MASK (3 << 13)
+#define TGL_EDP_PSR2_IO_BUFFER_WAKE_MIN_LINES 5
+#define TGL_EDP_PSR2_IO_BUFFER_WAKE_SHIFT 13
+#define TGL_EDP_PSR2_IO_BUFFER_WAKE(lines) (((lines) - TGL_EDP_PSR2_IO_BUFFER_WAKE_MIN_LINES) << TGL_EDP_PSR2_IO_BUFFER_WAKE_SHIFT)
+#define TGL_EDP_PSR2_IO_BUFFER_WAKE_MASK (7 << 13)
+#define EDP_PSR2_FAST_WAKE_MAX_LINES 8
+#define EDP_PSR2_FAST_WAKE(lines) ((EDP_PSR2_FAST_WAKE_MAX_LINES - (lines)) << 11)
+#define EDP_PSR2_FAST_WAKE_MASK (3 << 11)
+#define TGL_EDP_PSR2_FAST_WAKE_MIN_LINES 5
+#define TGL_EDP_PSR2_FAST_WAKE_MIN_SHIFT 10
+#define TGL_EDP_PSR2_FAST_WAKE(lines) (((lines) - TGL_EDP_PSR2_FAST_WAKE_MIN_LINES) << TGL_EDP_PSR2_FAST_WAKE_MIN_SHIFT)
+#define TGL_EDP_PSR2_FAST_WAKE_MASK (7 << 10)
+#define EDP_PSR2_TP2_TIME_500us (0 << 8)
+#define EDP_PSR2_TP2_TIME_100us (1 << 8)
+#define EDP_PSR2_TP2_TIME_2500us (2 << 8)
+#define EDP_PSR2_TP2_TIME_50us (3 << 8)
+#define EDP_PSR2_TP2_TIME_MASK (3 << 8)
+#define EDP_PSR2_FRAME_BEFORE_SU_SHIFT 4
+#define EDP_PSR2_FRAME_BEFORE_SU_MASK (0xf << 4)
+#define EDP_PSR2_FRAME_BEFORE_SU(a) ((a) << 4)
+#define EDP_PSR2_IDLE_FRAME_MASK 0xf
+#define EDP_PSR2_IDLE_FRAME_SHIFT 0
+
+#define _PSR_EVENT_TRANS_A 0x60848
+#define _PSR_EVENT_TRANS_B 0x61848
+#define _PSR_EVENT_TRANS_C 0x62848
+#define _PSR_EVENT_TRANS_D 0x63848
+#define _PSR_EVENT_TRANS_EDP 0x6f848
+#define PSR_EVENT(tran) _MMIO_TRANS2(tran, _PSR_EVENT_TRANS_A)
+#define PSR_EVENT_PSR2_WD_TIMER_EXPIRE (1 << 17)
+#define PSR_EVENT_PSR2_DISABLED (1 << 16)
+#define PSR_EVENT_SU_DIRTY_FIFO_UNDERRUN (1 << 15)
+#define PSR_EVENT_SU_CRC_FIFO_UNDERRUN (1 << 14)
+#define PSR_EVENT_GRAPHICS_RESET (1 << 12)
+#define PSR_EVENT_PCH_INTERRUPT (1 << 11)
+#define PSR_EVENT_MEMORY_UP (1 << 10)
+#define PSR_EVENT_FRONT_BUFFER_MODIFY (1 << 9)
+#define PSR_EVENT_WD_TIMER_EXPIRE (1 << 8)
+#define PSR_EVENT_PIPE_REGISTERS_UPDATE (1 << 6)
+#define PSR_EVENT_REGISTER_UPDATE (1 << 5) /* Reserved in ICL+ */
+#define PSR_EVENT_HDCP_ENABLE (1 << 4)
+#define PSR_EVENT_KVMR_SESSION_ENABLE (1 << 3)
+#define PSR_EVENT_VBI_ENABLE (1 << 2)
+#define PSR_EVENT_LPSP_MODE_EXIT (1 << 1)
+#define PSR_EVENT_PSR_DISABLE (1 << 0)
+
+#define _PSR2_STATUS_A 0x60940
+#define _PSR2_STATUS_EDP 0x6f940
+#define EDP_PSR2_STATUS(tran) _MMIO_TRANS2(tran, _PSR2_STATUS_A)
+#define EDP_PSR2_STATUS_STATE_MASK REG_GENMASK(31, 28)
+#define EDP_PSR2_STATUS_STATE_DEEP_SLEEP REG_FIELD_PREP(EDP_PSR2_STATUS_STATE_MASK, 0x8)
+
+#define _PSR2_SU_STATUS_A 0x60914
+#define _PSR2_SU_STATUS_EDP 0x6f914
+#define _PSR2_SU_STATUS(tran, index) _MMIO_TRANS2(tran, _PSR2_SU_STATUS_A + (index) * 4)
+#define PSR2_SU_STATUS(tran, frame) (_PSR2_SU_STATUS(tran, (frame) / 3))
+#define PSR2_SU_STATUS_SHIFT(frame) (((frame) % 3) * 10)
+#define PSR2_SU_STATUS_MASK(frame) (0x3ff << PSR2_SU_STATUS_SHIFT(frame))
+#define PSR2_SU_STATUS_FRAMES 8
+
+#define _PSR2_MAN_TRK_CTL_A 0x60910
+#define _PSR2_MAN_TRK_CTL_EDP 0x6f910
+#define PSR2_MAN_TRK_CTL(tran) _MMIO_TRANS2(tran, _PSR2_MAN_TRK_CTL_A)
+#define PSR2_MAN_TRK_CTL_ENABLE REG_BIT(31)
+#define PSR2_MAN_TRK_CTL_SU_REGION_START_ADDR_MASK REG_GENMASK(30, 21)
+#define PSR2_MAN_TRK_CTL_SU_REGION_START_ADDR(val) REG_FIELD_PREP(PSR2_MAN_TRK_CTL_SU_REGION_START_ADDR_MASK, val)
+#define PSR2_MAN_TRK_CTL_SU_REGION_END_ADDR_MASK REG_GENMASK(20, 11)
+#define PSR2_MAN_TRK_CTL_SU_REGION_END_ADDR(val) REG_FIELD_PREP(PSR2_MAN_TRK_CTL_SU_REGION_END_ADDR_MASK, val)
+#define PSR2_MAN_TRK_CTL_SF_SINGLE_FULL_FRAME REG_BIT(3)
+#define PSR2_MAN_TRK_CTL_SF_CONTINUOS_FULL_FRAME REG_BIT(2)
+#define PSR2_MAN_TRK_CTL_SF_PARTIAL_FRAME_UPDATE REG_BIT(1)
+#define ADLP_PSR2_MAN_TRK_CTL_SU_REGION_START_ADDR_MASK REG_GENMASK(28, 16)
+#define ADLP_PSR2_MAN_TRK_CTL_SU_REGION_START_ADDR(val) REG_FIELD_PREP(ADLP_PSR2_MAN_TRK_CTL_SU_REGION_START_ADDR_MASK, val)
+#define ADLP_PSR2_MAN_TRK_CTL_SU_REGION_END_ADDR_MASK REG_GENMASK(12, 0)
+#define ADLP_PSR2_MAN_TRK_CTL_SU_REGION_END_ADDR(val) REG_FIELD_PREP(ADLP_PSR2_MAN_TRK_CTL_SU_REGION_END_ADDR_MASK, val)
+#define ADLP_PSR2_MAN_TRK_CTL_SF_PARTIAL_FRAME_UPDATE REG_BIT(31)
+#define ADLP_PSR2_MAN_TRK_CTL_SF_SINGLE_FULL_FRAME REG_BIT(14)
+#define ADLP_PSR2_MAN_TRK_CTL_SF_CONTINUOS_FULL_FRAME REG_BIT(13)
+
+#define _SEL_FETCH_PLANE_BASE_1_A 0x70890
+#define _SEL_FETCH_PLANE_BASE_2_A 0x708B0
+#define _SEL_FETCH_PLANE_BASE_3_A 0x708D0
+#define _SEL_FETCH_PLANE_BASE_4_A 0x708F0
+#define _SEL_FETCH_PLANE_BASE_5_A 0x70920
+#define _SEL_FETCH_PLANE_BASE_6_A 0x70940
+#define _SEL_FETCH_PLANE_BASE_7_A 0x70960
+#define _SEL_FETCH_PLANE_BASE_CUR_A 0x70880
+#define _SEL_FETCH_PLANE_BASE_1_B 0x71890
+
+#define _SEL_FETCH_PLANE_BASE_A(plane) _PICK(plane, \
+ _SEL_FETCH_PLANE_BASE_1_A, \
+ _SEL_FETCH_PLANE_BASE_2_A, \
+ _SEL_FETCH_PLANE_BASE_3_A, \
+ _SEL_FETCH_PLANE_BASE_4_A, \
+ _SEL_FETCH_PLANE_BASE_5_A, \
+ _SEL_FETCH_PLANE_BASE_6_A, \
+ _SEL_FETCH_PLANE_BASE_7_A, \
+ _SEL_FETCH_PLANE_BASE_CUR_A)
+#define _SEL_FETCH_PLANE_BASE_1(pipe) _PIPE(pipe, _SEL_FETCH_PLANE_BASE_1_A, _SEL_FETCH_PLANE_BASE_1_B)
+#define _SEL_FETCH_PLANE_BASE(pipe, plane) (_SEL_FETCH_PLANE_BASE_1(pipe) - \
+ _SEL_FETCH_PLANE_BASE_1_A + \
+ _SEL_FETCH_PLANE_BASE_A(plane))
+
+#define _SEL_FETCH_PLANE_CTL_1_A 0x70890
+#define PLANE_SEL_FETCH_CTL(pipe, plane) _MMIO(_SEL_FETCH_PLANE_BASE(pipe, plane) + \
+ _SEL_FETCH_PLANE_CTL_1_A - \
+ _SEL_FETCH_PLANE_BASE_1_A)
+#define PLANE_SEL_FETCH_CTL_ENABLE REG_BIT(31)
+
+#define _SEL_FETCH_PLANE_POS_1_A 0x70894
+#define PLANE_SEL_FETCH_POS(pipe, plane) _MMIO(_SEL_FETCH_PLANE_BASE(pipe, plane) + \
+ _SEL_FETCH_PLANE_POS_1_A - \
+ _SEL_FETCH_PLANE_BASE_1_A)
+
+#define _SEL_FETCH_PLANE_SIZE_1_A 0x70898
+#define PLANE_SEL_FETCH_SIZE(pipe, plane) _MMIO(_SEL_FETCH_PLANE_BASE(pipe, plane) + \
+ _SEL_FETCH_PLANE_SIZE_1_A - \
+ _SEL_FETCH_PLANE_BASE_1_A)
+
+#define _SEL_FETCH_PLANE_OFFSET_1_A 0x7089C
+#define PLANE_SEL_FETCH_OFFSET(pipe, plane) _MMIO(_SEL_FETCH_PLANE_BASE(pipe, plane) + \
+ _SEL_FETCH_PLANE_OFFSET_1_A - \
+ _SEL_FETCH_PLANE_BASE_1_A)
+
+#endif /* __INTEL_PSR_REGS_H__ */
diff --git a/drivers/gpu/drm/i915/display/intel_qp_tables.c b/drivers/gpu/drm/i915/display/intel_qp_tables.c
index 6f8e4ec5c0fb..6e86c0971d24 100644
--- a/drivers/gpu/drm/i915/display/intel_qp_tables.c
+++ b/drivers/gpu/drm/i915/display/intel_qp_tables.c
@@ -17,6 +17,15 @@
/* from BPP 6 to 36 in steps of 0.5 */
#define RC_RANGE_QP444_12BPC_MAX_NUM_BPP 61
+/* from BPP 6 to 24 in steps of 0.5 */
+#define RC_RANGE_QP420_8BPC_MAX_NUM_BPP 17
+
+/* from BPP 6 to 30 in steps of 0.5 */
+#define RC_RANGE_QP420_10BPC_MAX_NUM_BPP 23
+
+/* from BPP 6 to 36 in steps of 0.5 */
+#define RC_RANGE_QP420_12BPC_MAX_NUM_BPP 29
+
/*
* These qp tables are as per the C model
* and it has the rows pointing to bpps which increment
@@ -283,26 +292,182 @@ static const u8 rc_range_maxqp444_12bpc[DSC_NUM_BUF_RANGES][RC_RANGE_QP444_12BPC
11, 11, 10, 10, 10, 10, 10, 9, 9, 8, 8, 8, 8, 8, 7, 7, 6, 6, 6, 6, 5, 5, 4 }
};
-#define PARAM_TABLE(_minmax, _bpc, _row, _col) do { \
- if (bpc == (_bpc)) \
- return rc_range_##_minmax##qp444_##_bpc##bpc[_row][_col]; \
+static const u8 rc_range_minqp420_8bpc[DSC_NUM_BUF_RANGES][RC_RANGE_QP420_8BPC_MAX_NUM_BPP] = {
+ { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },
+ { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },
+ { 1, 1, 1, 1, 1, 1, 1, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },
+ { 1, 1, 1, 1, 1, 1, 1, 1, 0, 0, 0, 0, 0, 0, 0, 0, 0 },
+ { 3, 3, 3, 3, 3, 2, 1, 1, 1, 1, 1, 1, 1, 0, 0, 0, 0 },
+ { 3, 3, 3, 3, 3, 2, 2, 1, 1, 1, 1, 1, 1, 1, 0, 0, 0 },
+ { 3, 3, 3, 3, 3, 3, 2, 2, 1, 1, 1, 1, 1, 1, 1, 0, 0 },
+ { 3, 3, 3, 3, 3, 3, 2, 2, 2, 2, 2, 2, 2, 1, 1, 1, 0 },
+ { 3, 3, 3, 3, 3, 3, 2, 2, 2, 2, 2, 2, 2, 2, 1, 1, 0 },
+ { 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 2, 2, 1, 1 },
+ { 5, 5, 5, 5, 5, 4, 4, 4, 4, 4, 3, 3, 3, 3, 2, 1, 1 },
+ { 5, 5, 5, 5, 5, 5, 5, 4, 4, 4, 4, 4, 4, 3, 2, 2, 1 },
+ { 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 4, 4, 3, 3, 2, 1 },
+ { 9, 8, 8, 7, 7, 7, 7, 7, 7, 6, 5, 5, 4, 3, 3, 3, 2 },
+ { 13, 12, 12, 11, 10, 10, 9, 8, 8, 7, 6, 6, 5, 5, 4, 4, 3 }
+};
+
+static const u8 rc_range_maxqp420_8bpc[DSC_NUM_BUF_RANGES][RC_RANGE_QP420_8BPC_MAX_NUM_BPP] = {
+ { 4, 4, 3, 3, 2, 2, 1, 1, 0, 0, 0, 0, 0, 0, 0, 0, 0 },
+ { 4, 4, 4, 4, 4, 3, 2, 2, 1, 1, 1, 1, 0, 0, 0, 0, 0 },
+ { 5, 5, 5, 5, 5, 4, 3, 2, 1, 1, 1, 1, 1, 1, 0, 0, 0 },
+ { 6, 6, 6, 6, 6, 5, 4, 3, 2, 2, 2, 1, 1, 1, 1, 0, 0 },
+ { 7, 7, 7, 7, 7, 5, 4, 3, 2, 2, 2, 2, 2, 1, 1, 1, 0 },
+ { 7, 7, 7, 7, 7, 6, 5, 4, 3, 3, 3, 2, 2, 2, 1, 1, 0 },
+ { 7, 7, 7, 7, 7, 6, 5, 4, 3, 3, 3, 3, 2, 2, 2, 1, 1 },
+ { 8, 8, 8, 8, 8, 7, 6, 5, 4, 4, 4, 3, 3, 2, 2, 2, 1 },
+ { 9, 9, 9, 8, 8, 7, 6, 6, 5, 5, 4, 4, 3, 3, 2, 2, 1 },
+ { 10, 10, 9, 9, 9, 8, 7, 6, 5, 5, 5, 4, 4, 3, 3, 2, 2 },
+ { 10, 10, 10, 9, 9, 8, 8, 7, 6, 6, 5, 5, 4, 4, 3, 2, 2 },
+ { 11, 11, 10, 10, 9, 9, 8, 7, 7, 6, 6, 5, 5, 4, 3, 3, 2 },
+ { 11, 11, 11, 10, 9, 9, 9, 8, 7, 7, 6, 5, 5, 4, 4, 3, 2 },
+ { 13, 12, 12, 11, 10, 10, 9, 8, 8, 7, 6, 6, 5, 4, 4, 4, 3 },
+ { 14, 13, 13, 12, 11, 11, 10, 9, 9, 8, 7, 7, 6, 6, 5, 5, 4 }
+};
+
+static const u8 rc_range_minqp420_10bpc[DSC_NUM_BUF_RANGES][RC_RANGE_QP420_10BPC_MAX_NUM_BPP] = {
+ { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },
+ { 4, 4, 4, 3, 2, 2, 2, 2, 2, 2, 2, 2, 1, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },
+ { 4, 4, 4, 3, 3, 3, 3, 3, 3, 2, 2, 2, 2, 2, 1, 0, 0, 0, 0, 0, 0, 0, 0 },
+ { 5, 5, 5, 4, 4, 4, 4, 4, 4, 3, 3, 2, 2, 2, 2, 1, 0, 0, 0, 0, 0, 0, 0 },
+ { 7, 7, 7, 6, 6, 5, 5, 4, 4, 3, 3, 3, 3, 2, 2, 2, 1, 1, 1, 0, 0, 0, 0 },
+ { 7, 7, 7, 7, 7, 6, 5, 5, 5, 5, 5, 4, 3, 3, 2, 2, 1, 1, 1, 1, 1, 0, 0 },
+ { 7, 7, 7, 7, 7, 6, 6, 5, 5, 5, 5, 4, 4, 4, 3, 2, 2, 2, 2, 1, 1, 1, 0 },
+ { 7, 7, 7, 7, 7, 7, 6, 6, 6, 6, 6, 5, 4, 4, 4, 3, 2, 2, 2, 1, 1, 1, 0 },
+ { 7, 7, 7, 7, 7, 7, 7, 7, 6, 6, 6, 6, 5, 5, 4, 4, 3, 3, 2, 2, 2, 1, 1 },
+ { 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 6, 6, 5, 5, 4, 4, 3, 3, 2, 2, 1, 1 },
+ { 9, 9, 9, 9, 9, 8, 8, 8, 8, 8, 7, 7, 6, 6, 5, 5, 4, 4, 3, 3, 2, 2, 1 },
+ { 9, 9, 9, 9, 9, 9, 8, 8, 8, 8, 8, 8, 8, 7, 6, 6, 5, 4, 4, 3, 3, 2, 1 },
+ { 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 8, 8, 7, 7, 6, 5, 4, 4, 3, 3, 2, 1 },
+ { 13, 12, 12, 11, 11, 11, 11, 11, 11, 10, 9, 9, 8, 7, 7, 6, 5, 5, 4, 3, 3,
+ 2, 2 },
+ { 17, 16, 16, 15, 14, 14, 13, 12, 12, 11, 10, 10, 10, 9, 8, 8, 7, 6, 6, 5,
+ 5, 4, 4 }
+};
+
+static const u8 rc_range_maxqp420_10bpc[DSC_NUM_BUF_RANGES][RC_RANGE_QP420_10BPC_MAX_NUM_BPP] = {
+ { 8, 8, 7, 6, 4, 4, 3, 3, 2, 1, 1, 1, 1, 1, 0, 0, 0, 0, 0, 0, 0, 0, 0 },
+ { 8, 8, 8, 7, 6, 5, 4, 4, 3, 3, 3, 3, 2, 1, 1, 1, 0, 0, 0, 0, 0, 0, 0 },
+ { 9, 9, 9, 8, 8, 7, 6, 5, 4, 3, 3, 3, 3, 3, 2, 1, 1, 1, 0, 0, 0, 0, 0 },
+ { 10, 10, 10, 9, 9, 8, 7, 6, 5, 4, 4, 3, 3, 3, 3, 2, 1, 1, 1, 1, 1, 0,
+ 0 },
+ { 11, 11, 11, 10, 10, 8, 7, 6, 5, 4, 4, 4, 4, 3, 3, 3, 2, 2, 2, 1, 1, 1,
+ 0 },
+ { 11, 11, 11, 10, 10, 9, 8, 7, 6, 6, 6, 5, 4, 4, 3, 3, 2, 2, 2, 2, 2, 1,
+ 1 },
+ { 11, 11, 11, 11, 11, 10, 9, 8, 7, 7, 7, 6, 5, 5, 4, 3, 3, 3, 3, 2, 2, 2,
+ 1 },
+ { 12, 12, 12, 12, 12, 11, 10, 9, 8, 8, 8, 7, 6, 5, 5, 4, 3, 3, 3, 2, 2,
+ 2, 1 },
+ { 13, 13, 13, 12, 12, 11, 10, 10, 9, 9, 8, 8, 7, 7, 6, 5, 4, 4, 3, 3, 3,
+ 2, 2 },
+ { 14, 14, 13, 13, 13, 12, 11, 10, 9, 9, 9, 8, 8, 7, 7, 6, 5, 4, 4, 3, 3,
+ 2, 2 },
+ { 14, 14, 14, 13, 13, 12, 12, 11, 10, 10, 9, 9, 8, 8, 7, 6, 5, 5, 4, 4,
+ 3, 3, 2 },
+ { 15, 15, 14, 14, 13, 13, 12, 11, 11, 10, 10, 9, 9, 8, 7, 7, 6, 5, 5, 4,
+ 4, 3, 2 },
+ { 15, 15, 15, 14, 13, 13, 13, 12, 11, 11, 10, 9, 9, 8, 8, 7, 6, 5, 5, 4,
+ 4, 3, 2 },
+ { 17, 16, 16, 15, 14, 14, 13, 12, 12, 11, 10, 10, 9, 8, 8, 7, 6, 6, 5, 4,
+ 4, 3, 3 },
+ { 18, 17, 17, 16, 15, 15, 14, 13, 13, 12, 11, 11, 11, 10, 9, 9, 8, 7, 7,
+ 6, 6, 5, 5 }
+};
+
+static const u8 rc_range_minqp420_12bpc[DSC_NUM_BUF_RANGES][RC_RANGE_QP420_12BPC_MAX_NUM_BPP] = {
+ { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
+ 0, 0, 0, 0, 0 },
+ { 4, 4, 4, 4, 4, 4, 3, 3, 2, 2, 2, 2, 2, 2, 2, 1, 0, 0, 0, 0, 0, 0, 0, 0,
+ 0, 0, 0, 0, 0 },
+ { 9, 8, 8, 7, 7, 6, 5, 5, 4, 4, 4, 4, 3, 3, 3, 2, 2, 1, 0, 0, 0, 0, 0, 0,
+ 0, 0, 0, 0, 0 },
+ { 10, 9, 9, 8, 8, 8, 7, 7, 6, 6, 6, 5, 5, 4, 4, 3, 2, 2, 1, 1, 1, 0, 0, 0,
+ 0, 0, 0, 0, 0 },
+ { 11, 10, 10, 10, 10, 9, 9, 8, 7, 6, 6, 6, 6, 5, 5, 4, 3, 3, 3, 2, 2, 1,
+ 0, 0, 0, 0, 0, 0, 0 },
+ { 11, 11, 11, 11, 11, 10, 10, 9, 9, 9, 9, 8, 7, 6, 5, 5, 4, 4, 3, 3, 3, 2,
+ 1, 1, 0, 0, 0, 0, 0 },
+ { 11, 11, 11, 11, 11, 11, 10, 10, 9, 9, 9, 8, 8, 7, 6, 5, 5, 5, 5, 4, 3, 3,
+ 2, 1, 1, 1, 1, 1, 0 },
+ { 11, 11, 11, 11, 11, 11, 11, 10, 10, 10, 10, 9, 8, 8, 8, 7, 6, 6, 5, 4, 4,
+ 3, 2, 2, 1, 1, 1, 1, 1 },
+ { 11, 11, 11, 11, 11, 11, 11, 11, 11, 11, 10, 10, 9, 9, 8, 8, 7, 7, 6, 5,
+ 5, 4, 4, 2, 2, 1, 1, 1, 1 },
+ { 11, 11, 11, 11, 11, 11, 11, 11, 11, 11, 11, 10, 10, 9, 9, 8, 8, 7, 7, 6,
+ 5, 4, 4, 3, 2, 2, 1, 1, 1 },
+ { 13, 13, 13, 13, 13, 13, 13, 12, 12, 12, 11, 11, 10, 10, 9, 9, 8, 8, 7, 7,
+ 6, 5, 4, 3, 3, 2, 2, 1, 1 },
+ { 13, 13, 13, 13, 13, 13, 13, 13, 13, 12, 12, 12, 12, 11, 10, 10, 9, 8, 8,
+ 7, 7, 6, 5, 4, 3, 3, 2, 2, 1 },
+ { 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 12, 12, 11, 11, 10, 9, 8, 8,
+ 7, 7, 6, 5, 4, 4, 3, 2, 2, 1 },
+ { 15, 15, 15, 15, 15, 15, 15, 15, 15, 14, 13, 13, 12, 11, 11, 10, 9, 9, 8,
+ 8, 7, 6, 6, 5, 4, 4, 3, 3, 2 },
+ { 21, 20, 20, 19, 18, 18, 17, 16, 16, 15, 14, 14, 14, 13, 12, 12, 11, 10,
+ 10, 10, 9, 8, 8, 7, 6, 6, 5, 5, 4 }
+};
+
+static const u8 rc_range_maxqp420_12bpc[DSC_NUM_BUF_RANGES][RC_RANGE_QP420_12BPC_MAX_NUM_BPP] = {
+ { 11, 10, 9, 8, 6, 6, 5, 5, 4, 3, 3, 2, 2, 2, 1, 1, 1, 1, 1, 1, 1, 0, 0,
+ 0, 0, 0, 0, 0, 0 },
+ { 12, 11, 11, 10, 9, 8, 7, 7, 6, 6, 5, 5, 4, 3, 3, 2, 1, 1, 1, 1, 1, 1,
+ 1, 0, 0, 0, 0, 0, 0 },
+ { 13, 12, 12, 11, 11, 10, 9, 8, 7, 6, 6, 6, 5, 5, 4, 3, 3, 2, 1, 1, 1, 1,
+ 1, 0, 0, 0, 0, 0, 0 },
+ { 14, 13, 13, 12, 12, 11, 10, 9, 8, 7, 7, 6, 6, 5, 5, 4, 3, 3, 2, 2, 2, 1,
+ 1, 1, 0, 0, 0, 0, 0 },
+ { 15, 14, 14, 13, 13, 11, 10, 9, 8, 7, 7, 7, 7, 6, 6, 5, 4, 4, 4, 3, 3, 2,
+ 1, 1, 1, 0, 0, 0, 0 },
+ { 15, 15, 15, 14, 14, 13, 12, 11, 10, 10, 10, 9, 8, 7, 6, 6, 5, 5, 4, 4,
+ 4, 3, 2, 2, 1, 1, 0, 0, 0 },
+ { 15, 15, 15, 15, 15, 14, 13, 12, 11, 11, 11, 10, 9, 8, 7, 6, 6, 6, 6, 5,
+ 4, 4, 3, 2, 2, 2, 1, 1, 0 },
+ { 16, 16, 16, 16, 16, 15, 14, 13, 12, 12, 12, 11, 10, 9, 9, 8, 7, 7, 6, 5,
+ 5, 4, 3, 3, 2, 2, 2, 1, 1 },
+ { 17, 17, 17, 16, 16, 15, 14, 14, 13, 13, 12, 12, 11, 11, 10, 9, 8, 8, 7,
+ 6, 6, 5, 5, 3, 3, 2, 2, 1, 1 },
+ { 18, 18, 17, 17, 17, 16, 15, 14, 13, 13, 13, 12, 12, 11, 11, 10, 9, 8, 8,
+ 7, 6, 5, 5, 4, 3, 3, 2, 2, 1 },
+ { 18, 18, 18, 17, 17, 16, 16, 15, 14, 14, 13, 13, 12, 12, 11, 10, 9, 9, 8,
+ 8, 7, 6, 5, 4, 4, 3, 3, 2, 2 },
+ { 19, 19, 18, 18, 17, 17, 16, 15, 15, 14, 14, 13, 13, 12, 11, 11, 10, 9,
+ 9, 8, 8, 7, 6, 5, 4, 4, 3, 3, 2 },
+ { 19, 19, 19, 18, 17, 17, 17, 16, 15, 15, 14, 13, 13, 12, 12, 11, 10, 9,
+ 9, 8, 8, 7, 6, 5, 5, 4, 3, 3, 2 },
+ { 21, 20, 20, 19, 18, 18, 17, 16, 16, 15, 14, 14, 13, 12, 12, 11, 10, 10,
+ 9, 9, 8, 7, 7, 6, 5, 5, 4, 4, 3 },
+ { 22, 21, 21, 20, 19, 19, 18, 17, 17, 16, 15, 15, 15, 14, 13, 13, 12, 11,
+ 11, 11, 10, 9, 9, 8, 7, 7, 6, 6, 5 }
+};
+
+#define PARAM_TABLE(_minmax, _bpc, _row, _col, _is_420) do { \
+ if (bpc == (_bpc)) { \
+ if (_is_420) \
+ return rc_range_##_minmax##qp420_##_bpc##bpc[_row][_col]; \
+ else \
+ return rc_range_##_minmax##qp444_##_bpc##bpc[_row][_col]; \
+ } \
} while (0)
-u8 intel_lookup_range_min_qp(int bpc, int buf_i, int bpp_i)
+u8 intel_lookup_range_min_qp(int bpc, int buf_i, int bpp_i, bool is_420)
{
- PARAM_TABLE(min, 8, buf_i, bpp_i);
- PARAM_TABLE(min, 10, buf_i, bpp_i);
- PARAM_TABLE(min, 12, buf_i, bpp_i);
+ PARAM_TABLE(min, 8, buf_i, bpp_i, is_420);
+ PARAM_TABLE(min, 10, buf_i, bpp_i, is_420);
+ PARAM_TABLE(min, 12, buf_i, bpp_i, is_420);
MISSING_CASE(bpc);
return 0;
}
-u8 intel_lookup_range_max_qp(int bpc, int buf_i, int bpp_i)
+u8 intel_lookup_range_max_qp(int bpc, int buf_i, int bpp_i, bool is_420)
{
- PARAM_TABLE(max, 8, buf_i, bpp_i);
- PARAM_TABLE(max, 10, buf_i, bpp_i);
- PARAM_TABLE(max, 12, buf_i, bpp_i);
+ PARAM_TABLE(max, 8, buf_i, bpp_i, is_420);
+ PARAM_TABLE(max, 10, buf_i, bpp_i, is_420);
+ PARAM_TABLE(max, 12, buf_i, bpp_i, is_420);
MISSING_CASE(bpc);
return 0;
diff --git a/drivers/gpu/drm/i915/display/intel_qp_tables.h b/drivers/gpu/drm/i915/display/intel_qp_tables.h
index 9fb3c36bd7c6..a9ff9ca29938 100644
--- a/drivers/gpu/drm/i915/display/intel_qp_tables.h
+++ b/drivers/gpu/drm/i915/display/intel_qp_tables.h
@@ -8,7 +8,7 @@
#include <linux/types.h>
-u8 intel_lookup_range_min_qp(int bpc, int buf_i, int bpp_i);
-u8 intel_lookup_range_max_qp(int bpc, int buf_i, int bpp_i);
+u8 intel_lookup_range_min_qp(int bpc, int buf_i, int bpp_i, bool is_420);
+u8 intel_lookup_range_max_qp(int bpc, int buf_i, int bpp_i, bool is_420);
#endif
diff --git a/drivers/gpu/drm/i915/display/intel_quirks.c b/drivers/gpu/drm/i915/display/intel_quirks.c
index 6e48d3bcdfec..a280448df771 100644
--- a/drivers/gpu/drm/i915/display/intel_quirks.c
+++ b/drivers/gpu/drm/i915/display/intel_quirks.c
@@ -199,6 +199,8 @@ static struct intel_quirk intel_quirks[] = {
/* ECS Liva Q2 */
{ 0x3185, 0x1019, 0xa94d, quirk_increase_ddi_disabled_time },
{ 0x3184, 0x1019, 0xa94d, quirk_increase_ddi_disabled_time },
+ /* HP Notebook - 14-r206nv */
+ { 0x0f31, 0x103c, 0x220f, quirk_invert_brightness },
};
void intel_init_quirks(struct drm_i915_private *i915)
diff --git a/drivers/gpu/drm/i915/display/intel_sdvo.c b/drivers/gpu/drm/i915/display/intel_sdvo.c
index 774c1dc31a52..e12ba458636c 100644
--- a/drivers/gpu/drm/i915/display/intel_sdvo.c
+++ b/drivers/gpu/drm/i915/display/intel_sdvo.c
@@ -37,7 +37,9 @@
#include <drm/drm_edid.h>
#include "i915_drv.h"
+#include "i915_reg.h"
#include "intel_atomic.h"
+#include "intel_audio.h"
#include "intel_connector.h"
#include "intel_crtc.h"
#include "intel_de.h"
@@ -199,7 +201,7 @@ to_intel_sdvo_connector(struct drm_connector *connector)
container_of((conn_state), struct intel_sdvo_connector_state, base.base)
static bool
-intel_sdvo_output_setup(struct intel_sdvo *intel_sdvo, u16 flags);
+intel_sdvo_output_setup(struct intel_sdvo *intel_sdvo);
static bool
intel_sdvo_tv_create_property(struct intel_sdvo *intel_sdvo,
struct intel_sdvo_connector *intel_sdvo_connector,
@@ -1067,7 +1069,8 @@ static ssize_t intel_sdvo_read_infoframe(struct intel_sdvo *intel_sdvo,
&tx_rate, 1))
return -ENXIO;
- if (tx_rate == SDVO_HBUF_TX_DISABLED)
+ /* TX_DISABLED doesn't mean disabled for ELD */
+ if (if_index != SDVO_HBUF_INDEX_ELD && tx_rate == SDVO_HBUF_TX_DISABLED)
return 0;
if (!intel_sdvo_get_hbuf_size(intel_sdvo, &hbuf_size))
@@ -1184,6 +1187,28 @@ static void intel_sdvo_get_avi_infoframe(struct intel_sdvo *intel_sdvo,
frame->any.type, HDMI_INFOFRAME_TYPE_AVI);
}
+static void intel_sdvo_get_eld(struct intel_sdvo *intel_sdvo,
+ struct intel_crtc_state *crtc_state)
+{
+ struct drm_i915_private *i915 = to_i915(intel_sdvo->base.base.dev);
+ ssize_t len;
+ u8 val;
+
+ if (!crtc_state->has_audio)
+ return;
+
+ if (!intel_sdvo_get_value(intel_sdvo, SDVO_CMD_GET_AUDIO_STAT, &val, 1))
+ return;
+
+ if ((val & SDVO_AUDIO_ELD_VALID) == 0)
+ return;
+
+ len = intel_sdvo_read_infoframe(intel_sdvo, SDVO_HBUF_INDEX_ELD,
+ crtc_state->eld, sizeof(crtc_state->eld));
+ if (len < 0)
+ drm_dbg_kms(&i915->drm, "failed to read ELD\n");
+}
+
static bool intel_sdvo_set_tv_format(struct intel_sdvo *intel_sdvo,
const struct drm_connector_state *conn_state)
{
@@ -1297,13 +1322,28 @@ static bool intel_sdvo_limited_color_range(struct intel_encoder *encoder,
return intel_hdmi_limited_color_range(crtc_state, conn_state);
}
+static bool intel_sdvo_has_audio(struct intel_encoder *encoder,
+ const struct intel_crtc_state *crtc_state,
+ const struct drm_connector_state *conn_state)
+{
+ struct intel_sdvo *intel_sdvo = to_sdvo(encoder);
+ const struct intel_digital_connector_state *intel_conn_state =
+ to_intel_digital_connector_state(conn_state);
+
+ if (!crtc_state->has_hdmi_sink)
+ return false;
+
+ if (intel_conn_state->force_audio == HDMI_AUDIO_AUTO)
+ return intel_sdvo->has_hdmi_audio;
+ else
+ return intel_conn_state->force_audio == HDMI_AUDIO_ON;
+}
+
static int intel_sdvo_compute_config(struct intel_encoder *encoder,
struct intel_crtc_state *pipe_config,
struct drm_connector_state *conn_state)
{
struct intel_sdvo *intel_sdvo = to_sdvo(encoder);
- struct intel_sdvo_connector_state *intel_sdvo_state =
- to_intel_sdvo_connector_state(conn_state);
struct intel_sdvo_connector *intel_sdvo_connector =
to_intel_sdvo_connector(conn_state->connector);
struct drm_display_mode *adjusted_mode = &pipe_config->hw.adjusted_mode;
@@ -1362,13 +1402,9 @@ static int intel_sdvo_compute_config(struct intel_encoder *encoder,
pipe_config->has_hdmi_sink = intel_has_hdmi_sink(intel_sdvo, conn_state);
- if (pipe_config->has_hdmi_sink) {
- if (intel_sdvo_state->base.force_audio == HDMI_AUDIO_AUTO)
- pipe_config->has_audio = intel_sdvo->has_hdmi_audio;
- else
- pipe_config->has_audio =
- intel_sdvo_state->base.force_audio == HDMI_AUDIO_ON;
- }
+ pipe_config->has_audio =
+ intel_sdvo_has_audio(encoder, pipe_config, conn_state) &&
+ intel_audio_compute_config(encoder, pipe_config, conn_state);
pipe_config->limited_color_range =
intel_sdvo_limited_color_range(encoder, pipe_config,
@@ -1719,9 +1755,7 @@ static void intel_sdvo_get_config(struct intel_encoder *encoder,
if (intel_sdvo_get_value(intel_sdvo, SDVO_CMD_GET_AUDIO_STAT,
&val, 1)) {
- u8 mask = SDVO_AUDIO_ELD_VALID | SDVO_AUDIO_PRESENCE_DETECT;
-
- if ((val & mask) == mask)
+ if (val & SDVO_AUDIO_PRESENCE_DETECT)
pipe_config->has_audio = true;
}
@@ -1732,6 +1766,8 @@ static void intel_sdvo_get_config(struct intel_encoder *encoder,
}
intel_sdvo_get_avi_infoframe(intel_sdvo, pipe_config);
+
+ intel_sdvo_get_eld(intel_sdvo, pipe_config);
}
static void intel_sdvo_disable_audio(struct intel_sdvo *intel_sdvo)
@@ -1743,12 +1779,7 @@ static void intel_sdvo_enable_audio(struct intel_sdvo *intel_sdvo,
const struct intel_crtc_state *crtc_state,
const struct drm_connector_state *conn_state)
{
- const struct drm_display_mode *adjusted_mode =
- &crtc_state->hw.adjusted_mode;
- struct drm_connector *connector = conn_state->connector;
- u8 *eld = connector->eld;
-
- eld[6] = drm_av_sync_delay(connector, adjusted_mode) / 2;
+ const u8 *eld = crtc_state->eld;
intel_sdvo_set_audio_state(intel_sdvo, 0);
@@ -2290,17 +2321,12 @@ static int intel_sdvo_get_tv_modes(struct drm_connector *connector)
static int intel_sdvo_get_lvds_modes(struct drm_connector *connector)
{
- struct intel_sdvo *intel_sdvo = intel_attached_sdvo(to_intel_connector(connector));
struct drm_i915_private *dev_priv = to_i915(connector->dev);
- int num_modes = 0;
drm_dbg_kms(&dev_priv->drm, "[CONNECTOR:%d:%s]\n",
connector->base.id, connector->name);
- num_modes += intel_panel_get_modes(to_intel_connector(connector));
- num_modes += intel_ddc_get_modes(connector, &intel_sdvo->ddc);
-
- return num_modes;
+ return intel_panel_get_modes(to_intel_connector(connector));
}
static int intel_sdvo_get_modes(struct drm_connector *connector)
@@ -2627,7 +2653,7 @@ intel_sdvo_unselect_i2c_bus(struct intel_sdvo *sdvo)
}
static bool
-intel_sdvo_is_hdmi_connector(struct intel_sdvo *intel_sdvo, int device)
+intel_sdvo_is_hdmi_connector(struct intel_sdvo *intel_sdvo)
{
return intel_sdvo_check_supp_encode(intel_sdvo);
}
@@ -2689,9 +2715,8 @@ intel_sdvo_connector_init(struct intel_sdvo_connector *connector,
drm_connector_helper_add(drm_connector,
&intel_sdvo_connector_helper_funcs);
- connector->base.base.interlace_allowed = 1;
- connector->base.base.doublescan_allowed = 0;
connector->base.base.display_info.subpixel_order = SubPixelHorizontalRGB;
+ connector->base.base.interlace_allowed = true;
connector->base.get_hw_state = intel_sdvo_connector_get_hw_state;
intel_connector_attach_encoder(&connector->base, &encoder->base);
@@ -2733,7 +2758,7 @@ static struct intel_sdvo_connector *intel_sdvo_connector_alloc(void)
}
static bool
-intel_sdvo_dvi_init(struct intel_sdvo *intel_sdvo, int device)
+intel_sdvo_dvi_init(struct intel_sdvo *intel_sdvo, u16 type)
{
struct drm_encoder *encoder = &intel_sdvo->base.base;
struct drm_connector *connector;
@@ -2741,16 +2766,13 @@ intel_sdvo_dvi_init(struct intel_sdvo *intel_sdvo, int device)
struct intel_connector *intel_connector;
struct intel_sdvo_connector *intel_sdvo_connector;
- DRM_DEBUG_KMS("initialising DVI device %d\n", device);
+ DRM_DEBUG_KMS("initialising DVI type 0x%x\n", type);
intel_sdvo_connector = intel_sdvo_connector_alloc();
if (!intel_sdvo_connector)
return false;
- if (device == 0)
- intel_sdvo_connector->output_flag = SDVO_OUTPUT_TMDS0;
- else if (device == 1)
- intel_sdvo_connector->output_flag = SDVO_OUTPUT_TMDS1;
+ intel_sdvo_connector->output_flag = type;
intel_connector = &intel_sdvo_connector->base;
connector = &intel_connector->base;
@@ -2770,7 +2792,7 @@ intel_sdvo_dvi_init(struct intel_sdvo *intel_sdvo, int device)
encoder->encoder_type = DRM_MODE_ENCODER_TMDS;
connector->connector_type = DRM_MODE_CONNECTOR_DVID;
- if (intel_sdvo_is_hdmi_connector(intel_sdvo, device)) {
+ if (intel_sdvo_is_hdmi_connector(intel_sdvo)) {
connector->connector_type = DRM_MODE_CONNECTOR_HDMIA;
intel_sdvo_connector->is_hdmi = true;
}
@@ -2787,14 +2809,14 @@ intel_sdvo_dvi_init(struct intel_sdvo *intel_sdvo, int device)
}
static bool
-intel_sdvo_tv_init(struct intel_sdvo *intel_sdvo, int type)
+intel_sdvo_tv_init(struct intel_sdvo *intel_sdvo, u16 type)
{
struct drm_encoder *encoder = &intel_sdvo->base.base;
struct drm_connector *connector;
struct intel_connector *intel_connector;
struct intel_sdvo_connector *intel_sdvo_connector;
- DRM_DEBUG_KMS("initialising TV type %d\n", type);
+ DRM_DEBUG_KMS("initialising TV type 0x%x\n", type);
intel_sdvo_connector = intel_sdvo_connector_alloc();
if (!intel_sdvo_connector)
@@ -2826,14 +2848,14 @@ err:
}
static bool
-intel_sdvo_analog_init(struct intel_sdvo *intel_sdvo, int device)
+intel_sdvo_analog_init(struct intel_sdvo *intel_sdvo, u16 type)
{
struct drm_encoder *encoder = &intel_sdvo->base.base;
struct drm_connector *connector;
struct intel_connector *intel_connector;
struct intel_sdvo_connector *intel_sdvo_connector;
- DRM_DEBUG_KMS("initialising analog device %d\n", device);
+ DRM_DEBUG_KMS("initialising analog type 0x%x\n", type);
intel_sdvo_connector = intel_sdvo_connector_alloc();
if (!intel_sdvo_connector)
@@ -2845,10 +2867,7 @@ intel_sdvo_analog_init(struct intel_sdvo *intel_sdvo, int device)
encoder->encoder_type = DRM_MODE_ENCODER_DAC;
connector->connector_type = DRM_MODE_CONNECTOR_VGA;
- if (device == 0)
- intel_sdvo_connector->output_flag = SDVO_OUTPUT_RGB0;
- else if (device == 1)
- intel_sdvo_connector->output_flag = SDVO_OUTPUT_RGB1;
+ intel_sdvo_connector->output_flag = type;
if (intel_sdvo_connector_init(intel_sdvo_connector, intel_sdvo) < 0) {
kfree(intel_sdvo_connector);
@@ -2859,7 +2878,7 @@ intel_sdvo_analog_init(struct intel_sdvo *intel_sdvo, int device)
}
static bool
-intel_sdvo_lvds_init(struct intel_sdvo *intel_sdvo, int device)
+intel_sdvo_lvds_init(struct intel_sdvo *intel_sdvo, u16 type)
{
struct drm_encoder *encoder = &intel_sdvo->base.base;
struct drm_i915_private *i915 = to_i915(encoder->dev);
@@ -2867,7 +2886,7 @@ intel_sdvo_lvds_init(struct intel_sdvo *intel_sdvo, int device)
struct intel_connector *intel_connector;
struct intel_sdvo_connector *intel_sdvo_connector;
- DRM_DEBUG_KMS("initialising LVDS device %d\n", device);
+ DRM_DEBUG_KMS("initialising LVDS type 0x%x\n", type);
intel_sdvo_connector = intel_sdvo_connector_alloc();
if (!intel_sdvo_connector)
@@ -2878,10 +2897,7 @@ intel_sdvo_lvds_init(struct intel_sdvo *intel_sdvo, int device)
encoder->encoder_type = DRM_MODE_ENCODER_LVDS;
connector->connector_type = DRM_MODE_CONNECTOR_LVDS;
- if (device == 0)
- intel_sdvo_connector->output_flag = SDVO_OUTPUT_LVDS0;
- else if (device == 1)
- intel_sdvo_connector->output_flag = SDVO_OUTPUT_LVDS1;
+ intel_sdvo_connector->output_flag = type;
if (intel_sdvo_connector_init(intel_sdvo_connector, intel_sdvo) < 0) {
kfree(intel_sdvo_connector);
@@ -2891,7 +2907,7 @@ intel_sdvo_lvds_init(struct intel_sdvo *intel_sdvo, int device)
if (!intel_sdvo_create_enhance_property(intel_sdvo, intel_sdvo_connector))
goto err;
- intel_bios_init_panel(i915, &intel_connector->panel, NULL, NULL);
+ intel_bios_init_panel_late(i915, &intel_connector->panel, NULL, NULL);
/*
* Fetch modes from VBT. For SDVO prefer the VBT mode since some
@@ -2908,7 +2924,7 @@ intel_sdvo_lvds_init(struct intel_sdvo *intel_sdvo, int device)
mutex_unlock(&i915->drm.mode_config.mutex);
}
- intel_panel_init(intel_connector);
+ intel_panel_init(intel_connector, NULL);
if (!intel_panel_preferred_fixed_mode(intel_connector))
goto err;
@@ -2937,63 +2953,61 @@ static u16 intel_sdvo_filter_output_flags(u16 flags)
return flags;
}
-static bool
-intel_sdvo_output_setup(struct intel_sdvo *intel_sdvo, u16 flags)
+static bool intel_sdvo_output_init(struct intel_sdvo *sdvo, u16 type)
{
+ if (type & SDVO_TMDS_MASK)
+ return intel_sdvo_dvi_init(sdvo, type);
+ else if (type & SDVO_TV_MASK)
+ return intel_sdvo_tv_init(sdvo, type);
+ else if (type & SDVO_RGB_MASK)
+ return intel_sdvo_analog_init(sdvo, type);
+ else if (type & SDVO_LVDS_MASK)
+ return intel_sdvo_lvds_init(sdvo, type);
+ else
+ return false;
+}
+
+static bool
+intel_sdvo_output_setup(struct intel_sdvo *intel_sdvo)
+{
+ static const u16 probe_order[] = {
+ SDVO_OUTPUT_TMDS0,
+ SDVO_OUTPUT_TMDS1,
+ /* TV has no XXX1 function block */
+ SDVO_OUTPUT_SVID0,
+ SDVO_OUTPUT_CVBS0,
+ SDVO_OUTPUT_YPRPB0,
+ SDVO_OUTPUT_RGB0,
+ SDVO_OUTPUT_RGB1,
+ SDVO_OUTPUT_LVDS0,
+ SDVO_OUTPUT_LVDS1,
+ };
struct drm_i915_private *i915 = to_i915(intel_sdvo->base.base.dev);
+ u16 flags;
+ int i;
- flags = intel_sdvo_filter_output_flags(flags);
+ flags = intel_sdvo_filter_output_flags(intel_sdvo->caps.output_flags);
+
+ if (flags == 0) {
+ DRM_DEBUG_KMS("%s: Unknown SDVO output type (0x%04x)\n",
+ SDVO_NAME(intel_sdvo), intel_sdvo->caps.output_flags);
+ return false;
+ }
intel_sdvo->controlled_output = flags;
intel_sdvo_select_ddc_bus(i915, intel_sdvo);
- if (flags & SDVO_OUTPUT_TMDS0)
- if (!intel_sdvo_dvi_init(intel_sdvo, 0))
- return false;
-
- if (flags & SDVO_OUTPUT_TMDS1)
- if (!intel_sdvo_dvi_init(intel_sdvo, 1))
- return false;
+ for (i = 0; i < ARRAY_SIZE(probe_order); i++) {
+ u16 type = flags & probe_order[i];
- /* TV has no XXX1 function block */
- if (flags & SDVO_OUTPUT_SVID0)
- if (!intel_sdvo_tv_init(intel_sdvo, SDVO_OUTPUT_SVID0))
- return false;
+ if (!type)
+ continue;
- if (flags & SDVO_OUTPUT_CVBS0)
- if (!intel_sdvo_tv_init(intel_sdvo, SDVO_OUTPUT_CVBS0))
+ if (!intel_sdvo_output_init(intel_sdvo, type))
return false;
-
- if (flags & SDVO_OUTPUT_YPRPB0)
- if (!intel_sdvo_tv_init(intel_sdvo, SDVO_OUTPUT_YPRPB0))
- return false;
-
- if (flags & SDVO_OUTPUT_RGB0)
- if (!intel_sdvo_analog_init(intel_sdvo, 0))
- return false;
-
- if (flags & SDVO_OUTPUT_RGB1)
- if (!intel_sdvo_analog_init(intel_sdvo, 1))
- return false;
-
- if (flags & SDVO_OUTPUT_LVDS0)
- if (!intel_sdvo_lvds_init(intel_sdvo, 0))
- return false;
-
- if (flags & SDVO_OUTPUT_LVDS1)
- if (!intel_sdvo_lvds_init(intel_sdvo, 1))
- return false;
-
- if (flags == 0) {
- unsigned char bytes[2];
-
- memcpy(bytes, &intel_sdvo->caps.output_flags, 2);
- DRM_DEBUG_KMS("%s: Unknown SDVO output type (0x%02x%02x)\n",
- SDVO_NAME(intel_sdvo),
- bytes[0], bytes[1]);
- return false;
}
+
intel_sdvo->base.pipe_mask = ~0;
return true;
@@ -3369,8 +3383,7 @@ bool intel_sdvo_init(struct drm_i915_private *dev_priv,
intel_sdvo->colorimetry_cap =
intel_sdvo_get_colorimetry_cap(intel_sdvo);
- if (intel_sdvo_output_setup(intel_sdvo,
- intel_sdvo->caps.output_flags) != true) {
+ if (!intel_sdvo_output_setup(intel_sdvo)) {
drm_dbg_kms(&dev_priv->drm,
"SDVO output failed to setup on %s\n",
SDVO_NAME(intel_sdvo));
@@ -3421,9 +3434,12 @@ bool intel_sdvo_init(struct drm_i915_private *dev_priv,
(intel_sdvo->caps.sdvo_inputs_mask & 0x2) ? 'Y' : 'N',
/* check currently supported outputs */
intel_sdvo->caps.output_flags &
- (SDVO_OUTPUT_TMDS0 | SDVO_OUTPUT_RGB0) ? 'Y' : 'N',
+ (SDVO_OUTPUT_TMDS0 | SDVO_OUTPUT_RGB0 |
+ SDVO_OUTPUT_LVDS0 | SDVO_OUTPUT_SVID0 |
+ SDVO_OUTPUT_CVBS0 | SDVO_OUTPUT_YPRPB0) ? 'Y' : 'N',
intel_sdvo->caps.output_flags &
- (SDVO_OUTPUT_TMDS1 | SDVO_OUTPUT_RGB1) ? 'Y' : 'N');
+ (SDVO_OUTPUT_TMDS1 | SDVO_OUTPUT_RGB1 |
+ SDVO_OUTPUT_LVDS1) ? 'Y' : 'N');
return true;
err_output:
diff --git a/drivers/gpu/drm/i915/display/intel_snps_phy.c b/drivers/gpu/drm/i915/display/intel_snps_phy.c
index 937cefd6f78f..1cfb94b5cedb 100644
--- a/drivers/gpu/drm/i915/display/intel_snps_phy.c
+++ b/drivers/gpu/drm/i915/display/intel_snps_phy.c
@@ -5,6 +5,7 @@
#include <linux/util_macros.h>
+#include "i915_reg.h"
#include "intel_ddi.h"
#include "intel_ddi_buf_trans.h"
#include "intel_de.h"
@@ -39,22 +40,22 @@ void intel_snps_phy_wait_for_calibration(struct drm_i915_private *i915)
*/
if (intel_de_wait_for_clear(i915, DG2_PHY_MISC(phy),
DG2_PHY_DP_TX_ACK_MASK, 25))
- i915->snps_phy_failed_calibration |= BIT(phy);
+ i915->display.snps.phy_failed_calibration |= BIT(phy);
}
}
-void intel_snps_phy_update_psr_power_state(struct drm_i915_private *dev_priv,
+void intel_snps_phy_update_psr_power_state(struct drm_i915_private *i915,
enum phy phy, bool enable)
{
u32 val;
- if (!intel_phy_is_snps(dev_priv, phy))
+ if (!intel_phy_is_snps(i915, phy))
return;
val = REG_FIELD_PREP(SNPS_PHY_TX_REQ_LN_DIS_PWR_STATE_PSR,
enable ? 2 : 3);
- intel_uncore_rmw(&dev_priv->uncore, SNPS_PHY_TX_REQ(phy),
- SNPS_PHY_TX_REQ_LN_DIS_PWR_STATE_PSR, val);
+ intel_de_rmw(i915, SNPS_PHY_TX_REQ(phy),
+ SNPS_PHY_TX_REQ_LN_DIS_PWR_STATE_PSR, val);
}
void intel_snps_phy_set_signal_levels(struct intel_encoder *encoder,
@@ -1418,6 +1419,36 @@ static const struct intel_mpllb_state dg2_hdmi_262750 = {
REG_FIELD_PREP(SNPS_PHY_MPLLB_SSC_UP_SPREAD, 1),
};
+static const struct intel_mpllb_state dg2_hdmi_267300 = {
+ .clock = 267300,
+ .ref_control =
+ REG_FIELD_PREP(SNPS_PHY_REF_CONTROL_REF_RANGE, 3),
+ .mpllb_cp =
+ REG_FIELD_PREP(SNPS_PHY_MPLLB_CP_INT, 7) |
+ REG_FIELD_PREP(SNPS_PHY_MPLLB_CP_PROP, 14) |
+ REG_FIELD_PREP(SNPS_PHY_MPLLB_CP_INT_GS, 64) |
+ REG_FIELD_PREP(SNPS_PHY_MPLLB_CP_PROP_GS, 124),
+ .mpllb_div =
+ REG_FIELD_PREP(SNPS_PHY_MPLLB_DIV5_CLK_EN, 1) |
+ REG_FIELD_PREP(SNPS_PHY_MPLLB_TX_CLK_DIV, 1) |
+ REG_FIELD_PREP(SNPS_PHY_MPLLB_PMIX_EN, 1) |
+ REG_FIELD_PREP(SNPS_PHY_MPLLB_V2I, 2) |
+ REG_FIELD_PREP(SNPS_PHY_MPLLB_FREQ_VCO, 3),
+ .mpllb_div2 =
+ REG_FIELD_PREP(SNPS_PHY_MPLLB_REF_CLK_DIV, 1) |
+ REG_FIELD_PREP(SNPS_PHY_MPLLB_MULTIPLIER, 74) |
+ REG_FIELD_PREP(SNPS_PHY_MPLLB_HDMI_DIV, 1),
+ .mpllb_fracn1 =
+ REG_FIELD_PREP(SNPS_PHY_MPLLB_FRACN_CGG_UPDATE_EN, 1) |
+ REG_FIELD_PREP(SNPS_PHY_MPLLB_FRACN_EN, 1) |
+ REG_FIELD_PREP(SNPS_PHY_MPLLB_FRACN_DEN, 65535),
+ .mpllb_fracn2 =
+ REG_FIELD_PREP(SNPS_PHY_MPLLB_FRACN_QUOT, 30146) |
+ REG_FIELD_PREP(SNPS_PHY_MPLLB_FRACN_REM, 36699),
+ .mpllb_sscen =
+ REG_FIELD_PREP(SNPS_PHY_MPLLB_SSC_UP_SPREAD, 1),
+};
+
static const struct intel_mpllb_state dg2_hdmi_268500 = {
.clock = 268500,
.ref_control =
@@ -1508,6 +1539,36 @@ static const struct intel_mpllb_state dg2_hdmi_241500 = {
REG_FIELD_PREP(SNPS_PHY_MPLLB_SSC_UP_SPREAD, 1),
};
+static const struct intel_mpllb_state dg2_hdmi_319890 = {
+ .clock = 319890,
+ .ref_control =
+ REG_FIELD_PREP(SNPS_PHY_REF_CONTROL_REF_RANGE, 3),
+ .mpllb_cp =
+ REG_FIELD_PREP(SNPS_PHY_MPLLB_CP_INT, 6) |
+ REG_FIELD_PREP(SNPS_PHY_MPLLB_CP_PROP, 14) |
+ REG_FIELD_PREP(SNPS_PHY_MPLLB_CP_INT_GS, 64) |
+ REG_FIELD_PREP(SNPS_PHY_MPLLB_CP_PROP_GS, 124),
+ .mpllb_div =
+ REG_FIELD_PREP(SNPS_PHY_MPLLB_DIV5_CLK_EN, 1) |
+ REG_FIELD_PREP(SNPS_PHY_MPLLB_TX_CLK_DIV, 1) |
+ REG_FIELD_PREP(SNPS_PHY_MPLLB_PMIX_EN, 1) |
+ REG_FIELD_PREP(SNPS_PHY_MPLLB_V2I, 2) |
+ REG_FIELD_PREP(SNPS_PHY_MPLLB_FREQ_VCO, 2),
+ .mpllb_div2 =
+ REG_FIELD_PREP(SNPS_PHY_MPLLB_REF_CLK_DIV, 1) |
+ REG_FIELD_PREP(SNPS_PHY_MPLLB_MULTIPLIER, 94) |
+ REG_FIELD_PREP(SNPS_PHY_MPLLB_HDMI_DIV, 1),
+ .mpllb_fracn1 =
+ REG_FIELD_PREP(SNPS_PHY_MPLLB_FRACN_CGG_UPDATE_EN, 1) |
+ REG_FIELD_PREP(SNPS_PHY_MPLLB_FRACN_EN, 1) |
+ REG_FIELD_PREP(SNPS_PHY_MPLLB_FRACN_DEN, 65535),
+ .mpllb_fracn2 =
+ REG_FIELD_PREP(SNPS_PHY_MPLLB_FRACN_QUOT, 64094) |
+ REG_FIELD_PREP(SNPS_PHY_MPLLB_FRACN_REM, 13631),
+ .mpllb_sscen =
+ REG_FIELD_PREP(SNPS_PHY_MPLLB_SSC_UP_SPREAD, 1),
+};
+
static const struct intel_mpllb_state dg2_hdmi_497750 = {
.clock = 497750,
.ref_control =
@@ -1695,8 +1756,10 @@ static const struct intel_mpllb_state * const dg2_hdmi_tables[] = {
&dg2_hdmi_209800,
&dg2_hdmi_241500,
&dg2_hdmi_262750,
+ &dg2_hdmi_267300,
&dg2_hdmi_268500,
&dg2_hdmi_296703,
+ &dg2_hdmi_319890,
&dg2_hdmi_497750,
&dg2_hdmi_592000,
&dg2_hdmi_593407,
@@ -1784,7 +1847,7 @@ void intel_mpllb_enable(struct intel_encoder *encoder,
*/
/* 5. Software sets DPLL_ENABLE [PLL Enable] to "1". */
- intel_uncore_rmw(&dev_priv->uncore, enable_reg, 0, PLL_ENABLE);
+ intel_de_rmw(dev_priv, enable_reg, 0, PLL_ENABLE);
/*
* 9. Software sets SNPS_PHY_MPLLB_DIV dp_mpllb_force_en to "1". This
@@ -1829,14 +1892,13 @@ void intel_mpllb_disable(struct intel_encoder *encoder)
*/
/* 2. Software programs DPLL_ENABLE [PLL Enable] to "0" */
- intel_uncore_rmw(&i915->uncore, enable_reg, PLL_ENABLE, 0);
+ intel_de_rmw(i915, enable_reg, PLL_ENABLE, 0);
/*
* 4. Software programs SNPS_PHY_MPLLB_DIV dp_mpllb_force_en to "0".
* This will allow the PLL to stop running.
*/
- intel_uncore_rmw(&i915->uncore, SNPS_PHY_MPLLB_DIV(phy),
- SNPS_PHY_MPLLB_FORCE_EN, 0);
+ intel_de_rmw(i915, SNPS_PHY_MPLLB_DIV(phy), SNPS_PHY_MPLLB_FORCE_EN, 0);
/*
* 5. Software polls DPLL_ENABLE [PLL Lock] for PHY acknowledgment
diff --git a/drivers/gpu/drm/i915/display/intel_snps_phy_regs.h b/drivers/gpu/drm/i915/display/intel_snps_phy_regs.h
index 0543465aaf14..a04d692169d4 100644
--- a/drivers/gpu/drm/i915/display/intel_snps_phy_regs.h
+++ b/drivers/gpu/drm/i915/display/intel_snps_phy_regs.h
@@ -6,7 +6,7 @@
#ifndef __INTEL_SNPS_PHY_REGS__
#define __INTEL_SNPS_PHY_REGS__
-#include "i915_reg_defs.h"
+#include "intel_display_reg_defs.h"
#define _SNPS_PHY_A_BASE 0x168000
#define _SNPS_PHY_B_BASE 0x169000
diff --git a/drivers/gpu/drm/i915/display/intel_sprite.c b/drivers/gpu/drm/i915/display/intel_sprite.c
index 7649c50b5445..25034bbf1445 100644
--- a/drivers/gpu/drm/i915/display/intel_sprite.c
+++ b/drivers/gpu/drm/i915/display/intel_sprite.c
@@ -32,84 +32,20 @@
#include <linux/string_helpers.h>
-#include <drm/drm_atomic.h>
#include <drm/drm_atomic_helper.h>
#include <drm/drm_blend.h>
#include <drm/drm_color_mgmt.h>
-#include <drm/drm_crtc.h>
-#include <drm/drm_damage_helper.h>
#include <drm/drm_fourcc.h>
#include <drm/drm_rect.h>
#include "i915_drv.h"
-#include "i915_vgpu.h"
+#include "i915_reg.h"
#include "i9xx_plane.h"
#include "intel_atomic_plane.h"
-#include "intel_crtc.h"
#include "intel_de.h"
#include "intel_display_types.h"
#include "intel_fb.h"
-#include "intel_frontbuffer.h"
#include "intel_sprite.h"
-#include "intel_vrr.h"
-
-int intel_plane_check_src_coordinates(struct intel_plane_state *plane_state)
-{
- struct drm_i915_private *i915 = to_i915(plane_state->uapi.plane->dev);
- const struct drm_framebuffer *fb = plane_state->hw.fb;
- struct drm_rect *src = &plane_state->uapi.src;
- u32 src_x, src_y, src_w, src_h, hsub, vsub;
- bool rotated = drm_rotation_90_or_270(plane_state->hw.rotation);
-
- /*
- * FIXME hsub/vsub vs. block size is a mess. Pre-tgl CCS
- * abuses hsub/vsub so we can't use them here. But as they
- * are limited to 32bpp RGB formats we don't actually need
- * to check anything.
- */
- if (fb->modifier == I915_FORMAT_MOD_Y_TILED_CCS ||
- fb->modifier == I915_FORMAT_MOD_Yf_TILED_CCS)
- return 0;
-
- /*
- * Hardware doesn't handle subpixel coordinates.
- * Adjust to (macro)pixel boundary, but be careful not to
- * increase the source viewport size, because that could
- * push the downscaling factor out of bounds.
- */
- src_x = src->x1 >> 16;
- src_w = drm_rect_width(src) >> 16;
- src_y = src->y1 >> 16;
- src_h = drm_rect_height(src) >> 16;
-
- drm_rect_init(src, src_x << 16, src_y << 16,
- src_w << 16, src_h << 16);
-
- if (fb->format->format == DRM_FORMAT_RGB565 && rotated) {
- hsub = 2;
- vsub = 2;
- } else {
- hsub = fb->format->hsub;
- vsub = fb->format->vsub;
- }
-
- if (rotated)
- hsub = vsub = max(hsub, vsub);
-
- if (src_x % hsub || src_w % hsub) {
- drm_dbg_kms(&i915->drm, "src x/w (%u, %u) must be a multiple of %u (rotated: %s)\n",
- src_x, src_w, hsub, str_yes_no(rotated));
- return -EINVAL;
- }
-
- if (src_y % vsub || src_h % vsub) {
- drm_dbg_kms(&i915->drm, "src y/h (%u, %u) must be a multiple of %u (rotated: %s)\n",
- src_y, src_h, vsub, str_yes_no(rotated));
- return -EINVAL;
- }
-
- return 0;
-}
static void i9xx_plane_linear_gamma(u16 gamma[8])
{
@@ -1216,7 +1152,8 @@ g4x_sprite_update_arm(struct intel_plane *plane,
}
intel_de_write_fw(dev_priv, DVSLINOFF(pipe), linear_offset);
- intel_de_write_fw(dev_priv, DVSTILEOFF(pipe), (y << 16) | x);
+ intel_de_write_fw(dev_priv, DVSTILEOFF(pipe),
+ DVS_OFFSET_Y(y) | DVS_OFFSET_X(x));
/*
* The control register self-arms if the plane was previously
@@ -1447,124 +1384,6 @@ vlv_sprite_check(struct intel_crtc_state *crtc_state,
return 0;
}
-static bool has_dst_key_in_primary_plane(struct drm_i915_private *dev_priv)
-{
- return DISPLAY_VER(dev_priv) >= 9;
-}
-
-static void intel_plane_set_ckey(struct intel_plane_state *plane_state,
- const struct drm_intel_sprite_colorkey *set)
-{
- struct intel_plane *plane = to_intel_plane(plane_state->uapi.plane);
- struct drm_i915_private *dev_priv = to_i915(plane->base.dev);
- struct drm_intel_sprite_colorkey *key = &plane_state->ckey;
-
- *key = *set;
-
- /*
- * We want src key enabled on the
- * sprite and not on the primary.
- */
- if (plane->id == PLANE_PRIMARY &&
- set->flags & I915_SET_COLORKEY_SOURCE)
- key->flags = 0;
-
- /*
- * On SKL+ we want dst key enabled on
- * the primary and not on the sprite.
- */
- if (DISPLAY_VER(dev_priv) >= 9 && plane->id != PLANE_PRIMARY &&
- set->flags & I915_SET_COLORKEY_DESTINATION)
- key->flags = 0;
-}
-
-int intel_sprite_set_colorkey_ioctl(struct drm_device *dev, void *data,
- struct drm_file *file_priv)
-{
- struct drm_i915_private *dev_priv = to_i915(dev);
- struct drm_intel_sprite_colorkey *set = data;
- struct drm_plane *plane;
- struct drm_plane_state *plane_state;
- struct drm_atomic_state *state;
- struct drm_modeset_acquire_ctx ctx;
- int ret = 0;
-
- /* ignore the pointless "none" flag */
- set->flags &= ~I915_SET_COLORKEY_NONE;
-
- if (set->flags & ~(I915_SET_COLORKEY_DESTINATION | I915_SET_COLORKEY_SOURCE))
- return -EINVAL;
-
- /* Make sure we don't try to enable both src & dest simultaneously */
- if ((set->flags & (I915_SET_COLORKEY_DESTINATION | I915_SET_COLORKEY_SOURCE)) == (I915_SET_COLORKEY_DESTINATION | I915_SET_COLORKEY_SOURCE))
- return -EINVAL;
-
- if ((IS_VALLEYVIEW(dev_priv) || IS_CHERRYVIEW(dev_priv)) &&
- set->flags & I915_SET_COLORKEY_DESTINATION)
- return -EINVAL;
-
- plane = drm_plane_find(dev, file_priv, set->plane_id);
- if (!plane || plane->type != DRM_PLANE_TYPE_OVERLAY)
- return -ENOENT;
-
- /*
- * SKL+ only plane 2 can do destination keying against plane 1.
- * Also multiple planes can't do destination keying on the same
- * pipe simultaneously.
- */
- if (DISPLAY_VER(dev_priv) >= 9 &&
- to_intel_plane(plane)->id >= PLANE_SPRITE1 &&
- set->flags & I915_SET_COLORKEY_DESTINATION)
- return -EINVAL;
-
- drm_modeset_acquire_init(&ctx, 0);
-
- state = drm_atomic_state_alloc(plane->dev);
- if (!state) {
- ret = -ENOMEM;
- goto out;
- }
- state->acquire_ctx = &ctx;
-
- while (1) {
- plane_state = drm_atomic_get_plane_state(state, plane);
- ret = PTR_ERR_OR_ZERO(plane_state);
- if (!ret)
- intel_plane_set_ckey(to_intel_plane_state(plane_state), set);
-
- /*
- * On some platforms we have to configure
- * the dst colorkey on the primary plane.
- */
- if (!ret && has_dst_key_in_primary_plane(dev_priv)) {
- struct intel_crtc *crtc =
- intel_crtc_for_pipe(dev_priv,
- to_intel_plane(plane)->pipe);
-
- plane_state = drm_atomic_get_plane_state(state,
- crtc->base.primary);
- ret = PTR_ERR_OR_ZERO(plane_state);
- if (!ret)
- intel_plane_set_ckey(to_intel_plane_state(plane_state), set);
- }
-
- if (!ret)
- ret = drm_atomic_commit(state);
-
- if (ret != -EDEADLK)
- break;
-
- drm_atomic_state_clear(state);
- drm_modeset_backoff(&ctx);
- }
-
- drm_atomic_state_put(state);
-out:
- drm_modeset_drop_locks(&ctx);
- drm_modeset_acquire_fini(&ctx);
- return ret;
-}
-
static const u32 g4x_sprite_formats[] = {
DRM_FORMAT_XRGB8888,
DRM_FORMAT_YUYV,
diff --git a/drivers/gpu/drm/i915/display/intel_sprite.h b/drivers/gpu/drm/i915/display/intel_sprite.h
index 4f63e4967731..4635c7ad23f9 100644
--- a/drivers/gpu/drm/i915/display/intel_sprite.h
+++ b/drivers/gpu/drm/i915/display/intel_sprite.h
@@ -8,14 +8,13 @@
#include <linux/types.h>
-#include "intel_display.h"
-
struct drm_device;
struct drm_display_mode;
struct drm_file;
struct drm_i915_private;
struct intel_crtc_state;
struct intel_plane_state;
+enum pipe;
/*
* FIXME: We should instead only take spinlocks once for the entire update
@@ -34,12 +33,6 @@ int intel_sprite_set_colorkey_ioctl(struct drm_device *dev, void *data,
int intel_plane_check_src_coordinates(struct intel_plane_state *plane_state);
int chv_plane_check_rotation(const struct intel_plane_state *plane_state);
-static inline u8 icl_hdr_plane_mask(void)
-{
- return BIT(PLANE_PRIMARY) |
- BIT(PLANE_SPRITE0) | BIT(PLANE_SPRITE1);
-}
-
int ivb_plane_min_cdclk(const struct intel_crtc_state *crtc_state,
const struct intel_plane_state *plane_state);
int hsw_plane_min_cdclk(const struct intel_crtc_state *crtc_state,
diff --git a/drivers/gpu/drm/i915/display/intel_sprite_uapi.c b/drivers/gpu/drm/i915/display/intel_sprite_uapi.c
new file mode 100644
index 000000000000..70a391083751
--- /dev/null
+++ b/drivers/gpu/drm/i915/display/intel_sprite_uapi.c
@@ -0,0 +1,127 @@
+// SPDX-License-Identifier: MIT
+/*
+ * Copyright © 2023 Intel Corporation
+ */
+
+#include "i915_drv.h"
+#include "intel_crtc.h"
+#include "intel_display_types.h"
+#include "intel_sprite_uapi.h"
+
+static bool has_dst_key_in_primary_plane(struct drm_i915_private *dev_priv)
+{
+ return DISPLAY_VER(dev_priv) >= 9;
+}
+
+static void intel_plane_set_ckey(struct intel_plane_state *plane_state,
+ const struct drm_intel_sprite_colorkey *set)
+{
+ struct intel_plane *plane = to_intel_plane(plane_state->uapi.plane);
+ struct drm_i915_private *dev_priv = to_i915(plane->base.dev);
+ struct drm_intel_sprite_colorkey *key = &plane_state->ckey;
+
+ *key = *set;
+
+ /*
+ * We want src key enabled on the
+ * sprite and not on the primary.
+ */
+ if (plane->id == PLANE_PRIMARY &&
+ set->flags & I915_SET_COLORKEY_SOURCE)
+ key->flags = 0;
+
+ /*
+ * On SKL+ we want dst key enabled on
+ * the primary and not on the sprite.
+ */
+ if (DISPLAY_VER(dev_priv) >= 9 && plane->id != PLANE_PRIMARY &&
+ set->flags & I915_SET_COLORKEY_DESTINATION)
+ key->flags = 0;
+}
+
+int intel_sprite_set_colorkey_ioctl(struct drm_device *dev, void *data,
+ struct drm_file *file_priv)
+{
+ struct drm_i915_private *dev_priv = to_i915(dev);
+ struct drm_intel_sprite_colorkey *set = data;
+ struct drm_plane *plane;
+ struct drm_plane_state *plane_state;
+ struct drm_atomic_state *state;
+ struct drm_modeset_acquire_ctx ctx;
+ int ret = 0;
+
+ /* ignore the pointless "none" flag */
+ set->flags &= ~I915_SET_COLORKEY_NONE;
+
+ if (set->flags & ~(I915_SET_COLORKEY_DESTINATION | I915_SET_COLORKEY_SOURCE))
+ return -EINVAL;
+
+ /* Make sure we don't try to enable both src & dest simultaneously */
+ if ((set->flags & (I915_SET_COLORKEY_DESTINATION | I915_SET_COLORKEY_SOURCE)) == (I915_SET_COLORKEY_DESTINATION | I915_SET_COLORKEY_SOURCE))
+ return -EINVAL;
+
+ if ((IS_VALLEYVIEW(dev_priv) || IS_CHERRYVIEW(dev_priv)) &&
+ set->flags & I915_SET_COLORKEY_DESTINATION)
+ return -EINVAL;
+
+ plane = drm_plane_find(dev, file_priv, set->plane_id);
+ if (!plane || plane->type != DRM_PLANE_TYPE_OVERLAY)
+ return -ENOENT;
+
+ /*
+ * SKL+ only plane 2 can do destination keying against plane 1.
+ * Also multiple planes can't do destination keying on the same
+ * pipe simultaneously.
+ */
+ if (DISPLAY_VER(dev_priv) >= 9 &&
+ to_intel_plane(plane)->id >= PLANE_SPRITE1 &&
+ set->flags & I915_SET_COLORKEY_DESTINATION)
+ return -EINVAL;
+
+ drm_modeset_acquire_init(&ctx, 0);
+
+ state = drm_atomic_state_alloc(plane->dev);
+ if (!state) {
+ ret = -ENOMEM;
+ goto out;
+ }
+ state->acquire_ctx = &ctx;
+
+ while (1) {
+ plane_state = drm_atomic_get_plane_state(state, plane);
+ ret = PTR_ERR_OR_ZERO(plane_state);
+ if (!ret)
+ intel_plane_set_ckey(to_intel_plane_state(plane_state), set);
+
+ /*
+ * On some platforms we have to configure
+ * the dst colorkey on the primary plane.
+ */
+ if (!ret && has_dst_key_in_primary_plane(dev_priv)) {
+ struct intel_crtc *crtc =
+ intel_crtc_for_pipe(dev_priv,
+ to_intel_plane(plane)->pipe);
+
+ plane_state = drm_atomic_get_plane_state(state,
+ crtc->base.primary);
+ ret = PTR_ERR_OR_ZERO(plane_state);
+ if (!ret)
+ intel_plane_set_ckey(to_intel_plane_state(plane_state), set);
+ }
+
+ if (!ret)
+ ret = drm_atomic_commit(state);
+
+ if (ret != -EDEADLK)
+ break;
+
+ drm_atomic_state_clear(state);
+ drm_modeset_backoff(&ctx);
+ }
+
+ drm_atomic_state_put(state);
+out:
+ drm_modeset_drop_locks(&ctx);
+ drm_modeset_acquire_fini(&ctx);
+ return ret;
+}
diff --git a/drivers/gpu/drm/i915/display/intel_sprite_uapi.h b/drivers/gpu/drm/i915/display/intel_sprite_uapi.h
new file mode 100644
index 000000000000..3eb50025acaf
--- /dev/null
+++ b/drivers/gpu/drm/i915/display/intel_sprite_uapi.h
@@ -0,0 +1,15 @@
+/* SPDX-License-Identifier: MIT */
+/*
+ * Copyright © 2023 Intel Corporation
+ */
+
+#ifndef __INTEL_SPRITE_UAPI_H__
+#define __INTEL_SPRITE_UAPI_H__
+
+struct drm_device;
+struct drm_file;
+
+int intel_sprite_set_colorkey_ioctl(struct drm_device *dev, void *data,
+ struct drm_file *file_priv);
+
+#endif /* __INTEL_SPRITE_UAPI_H__ */
diff --git a/drivers/gpu/drm/i915/display/intel_tc.c b/drivers/gpu/drm/i915/display/intel_tc.c
index e5af955b5600..3b60995e9dfb 100644
--- a/drivers/gpu/drm/i915/display/intel_tc.c
+++ b/drivers/gpu/drm/i915/display/intel_tc.c
@@ -5,12 +5,61 @@
#include "i915_drv.h"
#include "i915_reg.h"
+#include "intel_ddi.h"
+#include "intel_de.h"
#include "intel_display.h"
#include "intel_display_power_map.h"
#include "intel_display_types.h"
+#include "intel_dkl_phy_regs.h"
#include "intel_dp_mst.h"
+#include "intel_mg_phy_regs.h"
#include "intel_tc.h"
-#include "intel_tc_phy_regs.h"
+
+enum tc_port_mode {
+ TC_PORT_DISCONNECTED,
+ TC_PORT_TBT_ALT,
+ TC_PORT_DP_ALT,
+ TC_PORT_LEGACY,
+};
+
+struct intel_tc_port;
+
+struct intel_tc_phy_ops {
+ enum intel_display_power_domain (*cold_off_domain)(struct intel_tc_port *tc);
+ u32 (*hpd_live_status)(struct intel_tc_port *tc);
+ bool (*is_ready)(struct intel_tc_port *tc);
+ bool (*is_owned)(struct intel_tc_port *tc);
+ void (*get_hw_state)(struct intel_tc_port *tc);
+ bool (*connect)(struct intel_tc_port *tc, int required_lanes);
+ void (*disconnect)(struct intel_tc_port *tc);
+ void (*init)(struct intel_tc_port *tc);
+};
+
+struct intel_tc_port {
+ struct intel_digital_port *dig_port;
+
+ const struct intel_tc_phy_ops *phy_ops;
+
+ struct mutex lock; /* protects the TypeC port mode */
+ intel_wakeref_t lock_wakeref;
+#if IS_ENABLED(CONFIG_DRM_I915_DEBUG_RUNTIME_PM)
+ enum intel_display_power_domain lock_power_domain;
+#endif
+ struct delayed_work disconnect_phy_work;
+ int link_refcount;
+ bool legacy_port:1;
+ char port_name[8];
+ enum tc_port_mode mode;
+ enum tc_port_mode init_mode;
+ enum phy_fia phy_fia;
+ u8 phy_fia_idx;
+};
+
+static enum intel_display_power_domain
+tc_phy_cold_off_domain(struct intel_tc_port *);
+static u32 tc_phy_hpd_live_status(struct intel_tc_port *tc);
+static bool tc_phy_is_ready(struct intel_tc_port *tc);
+static enum tc_port_mode tc_phy_get_current_mode(struct intel_tc_port *tc);
static const char *tc_port_mode_name(enum tc_port_mode mode)
{
@@ -27,13 +76,24 @@ static const char *tc_port_mode_name(enum tc_port_mode mode)
return names[mode];
}
+static struct intel_tc_port *to_tc_port(struct intel_digital_port *dig_port)
+{
+ return dig_port->tc;
+}
+
+static struct drm_i915_private *tc_to_i915(struct intel_tc_port *tc)
+{
+ return to_i915(tc->dig_port->base.base.dev);
+}
+
static bool intel_tc_port_in_mode(struct intel_digital_port *dig_port,
enum tc_port_mode mode)
{
struct drm_i915_private *i915 = to_i915(dig_port->base.base.dev);
enum phy phy = intel_port_to_phy(i915, dig_port->base.port);
+ struct intel_tc_port *tc = to_tc_port(dig_port);
- return intel_phy_is_tc(i915, phy) && dig_port->tc_mode == mode;
+ return intel_phy_is_tc(i915, phy) && tc->mode == mode;
}
bool intel_tc_port_in_tbt_alt_mode(struct intel_digital_port *dig_port)
@@ -51,113 +111,178 @@ bool intel_tc_port_in_legacy_mode(struct intel_digital_port *dig_port)
return intel_tc_port_in_mode(dig_port, TC_PORT_LEGACY);
}
+/*
+ * The display power domains used for TC ports depending on the
+ * platform and TC mode (legacy, DP-alt, TBT):
+ *
+ * POWER_DOMAIN_DISPLAY_CORE:
+ * --------------------------
+ * ADLP/all modes:
+ * - TCSS/IOM access for PHY ready state.
+ * ADLP+/all modes:
+ * - DE/north-,south-HPD ISR access for HPD live state.
+ *
+ * POWER_DOMAIN_PORT_DDI_LANES_<port>:
+ * -----------------------------------
+ * ICL+/all modes:
+ * - DE/DDI_BUF access for port enabled state.
+ * ADLP/all modes:
+ * - DE/DDI_BUF access for PHY owned state.
+ *
+ * POWER_DOMAIN_AUX_USBC<TC port index>:
+ * -------------------------------------
+ * ICL/legacy mode:
+ * - TCSS/IOM,FIA access for PHY ready, owned and HPD live state
+ * - TCSS/PHY: block TC-cold power state for using the PHY AUX and
+ * main lanes.
+ * ADLP/legacy, DP-alt modes:
+ * - TCSS/PHY: block TC-cold power state for using the PHY AUX and
+ * main lanes.
+ *
+ * POWER_DOMAIN_TC_COLD_OFF:
+ * -------------------------
+ * TGL/legacy, DP-alt modes:
+ * - TCSS/IOM,FIA access for PHY ready, owned and HPD live state
+ * - TCSS/PHY: block TC-cold power state for using the PHY AUX and
+ * main lanes.
+ *
+ * ICL, TGL, ADLP/TBT mode:
+ * - TCSS/IOM,FIA access for HPD live state
+ * - TCSS/TBT: block TC-cold power state for using the (TBT DP-IN)
+ * AUX and main lanes.
+ */
bool intel_tc_cold_requires_aux_pw(struct intel_digital_port *dig_port)
{
struct drm_i915_private *i915 = to_i915(dig_port->base.base.dev);
+ struct intel_tc_port *tc = to_tc_port(dig_port);
- return (DISPLAY_VER(i915) == 11 && dig_port->tc_legacy_port) ||
- IS_ALDERLAKE_P(i915);
+ return tc_phy_cold_off_domain(tc) ==
+ intel_display_power_legacy_aux_domain(i915, dig_port->aux_ch);
}
-static enum intel_display_power_domain
-tc_cold_get_power_domain(struct intel_digital_port *dig_port, enum tc_port_mode mode)
+static intel_wakeref_t
+__tc_cold_block(struct intel_tc_port *tc, enum intel_display_power_domain *domain)
{
- struct drm_i915_private *i915 = to_i915(dig_port->base.base.dev);
+ struct drm_i915_private *i915 = tc_to_i915(tc);
- if (mode == TC_PORT_TBT_ALT || !intel_tc_cold_requires_aux_pw(dig_port))
- return POWER_DOMAIN_TC_COLD_OFF;
+ *domain = tc_phy_cold_off_domain(tc);
- return intel_display_power_legacy_aux_domain(i915, dig_port->aux_ch);
+ return intel_display_power_get(i915, *domain);
}
static intel_wakeref_t
-tc_cold_block_in_mode(struct intel_digital_port *dig_port, enum tc_port_mode mode,
- enum intel_display_power_domain *domain)
+tc_cold_block(struct intel_tc_port *tc)
{
- struct drm_i915_private *i915 = to_i915(dig_port->base.base.dev);
-
- *domain = tc_cold_get_power_domain(dig_port, mode);
+ enum intel_display_power_domain domain;
+ intel_wakeref_t wakeref;
- return intel_display_power_get(i915, *domain);
+ wakeref = __tc_cold_block(tc, &domain);
+#if IS_ENABLED(CONFIG_DRM_I915_DEBUG_RUNTIME_PM)
+ tc->lock_power_domain = domain;
+#endif
+ return wakeref;
}
-static intel_wakeref_t
-tc_cold_block(struct intel_digital_port *dig_port, enum intel_display_power_domain *domain)
+static void
+__tc_cold_unblock(struct intel_tc_port *tc, enum intel_display_power_domain domain,
+ intel_wakeref_t wakeref)
{
- return tc_cold_block_in_mode(dig_port, dig_port->tc_mode, domain);
+ struct drm_i915_private *i915 = tc_to_i915(tc);
+
+ intel_display_power_put(i915, domain, wakeref);
}
static void
-tc_cold_unblock(struct intel_digital_port *dig_port, enum intel_display_power_domain domain,
- intel_wakeref_t wakeref)
+tc_cold_unblock(struct intel_tc_port *tc, intel_wakeref_t wakeref)
{
- struct drm_i915_private *i915 = to_i915(dig_port->base.base.dev);
+ enum intel_display_power_domain domain = tc_phy_cold_off_domain(tc);
- /*
- * wakeref == -1, means some error happened saving save_depot_stack but
- * power should still be put down and 0 is a invalid save_depot_stack
- * id so can be used to skip it for non TC legacy ports.
- */
- if (wakeref == 0)
- return;
+#if IS_ENABLED(CONFIG_DRM_I915_DEBUG_RUNTIME_PM)
+ drm_WARN_ON(&tc_to_i915(tc)->drm, tc->lock_power_domain != domain);
+#endif
+ __tc_cold_unblock(tc, domain, wakeref);
+}
- intel_display_power_put(i915, domain, wakeref);
+static void
+assert_display_core_power_enabled(struct intel_tc_port *tc)
+{
+ struct drm_i915_private *i915 = tc_to_i915(tc);
+
+ drm_WARN_ON(&i915->drm,
+ !intel_display_power_is_enabled(i915, POWER_DOMAIN_DISPLAY_CORE));
}
static void
-assert_tc_cold_blocked(struct intel_digital_port *dig_port)
+assert_tc_cold_blocked(struct intel_tc_port *tc)
{
- struct drm_i915_private *i915 = to_i915(dig_port->base.base.dev);
+ struct drm_i915_private *i915 = tc_to_i915(tc);
bool enabled;
enabled = intel_display_power_is_enabled(i915,
- tc_cold_get_power_domain(dig_port,
- dig_port->tc_mode));
+ tc_phy_cold_off_domain(tc));
drm_WARN_ON(&i915->drm, !enabled);
}
+static enum intel_display_power_domain
+tc_port_power_domain(struct intel_tc_port *tc)
+{
+ struct drm_i915_private *i915 = tc_to_i915(tc);
+ enum tc_port tc_port = intel_port_to_tc(i915, tc->dig_port->base.port);
+
+ return POWER_DOMAIN_PORT_DDI_LANES_TC1 + tc_port - TC_PORT_1;
+}
+
+static void
+assert_tc_port_power_enabled(struct intel_tc_port *tc)
+{
+ struct drm_i915_private *i915 = tc_to_i915(tc);
+
+ drm_WARN_ON(&i915->drm,
+ !intel_display_power_is_enabled(i915, tc_port_power_domain(tc)));
+}
+
u32 intel_tc_port_get_lane_mask(struct intel_digital_port *dig_port)
{
struct drm_i915_private *i915 = to_i915(dig_port->base.base.dev);
- struct intel_uncore *uncore = &i915->uncore;
+ struct intel_tc_port *tc = to_tc_port(dig_port);
u32 lane_mask;
- lane_mask = intel_uncore_read(uncore,
- PORT_TX_DFLEXDPSP(dig_port->tc_phy_fia));
+ lane_mask = intel_de_read(i915, PORT_TX_DFLEXDPSP(tc->phy_fia));
drm_WARN_ON(&i915->drm, lane_mask == 0xffffffff);
- assert_tc_cold_blocked(dig_port);
+ assert_tc_cold_blocked(tc);
- lane_mask &= DP_LANE_ASSIGNMENT_MASK(dig_port->tc_phy_fia_idx);
- return lane_mask >> DP_LANE_ASSIGNMENT_SHIFT(dig_port->tc_phy_fia_idx);
+ lane_mask &= DP_LANE_ASSIGNMENT_MASK(tc->phy_fia_idx);
+ return lane_mask >> DP_LANE_ASSIGNMENT_SHIFT(tc->phy_fia_idx);
}
u32 intel_tc_port_get_pin_assignment_mask(struct intel_digital_port *dig_port)
{
struct drm_i915_private *i915 = to_i915(dig_port->base.base.dev);
- struct intel_uncore *uncore = &i915->uncore;
+ struct intel_tc_port *tc = to_tc_port(dig_port);
u32 pin_mask;
- pin_mask = intel_uncore_read(uncore,
- PORT_TX_DFLEXPA1(dig_port->tc_phy_fia));
+ pin_mask = intel_de_read(i915, PORT_TX_DFLEXPA1(tc->phy_fia));
drm_WARN_ON(&i915->drm, pin_mask == 0xffffffff);
- assert_tc_cold_blocked(dig_port);
+ assert_tc_cold_blocked(tc);
- return (pin_mask & DP_PIN_ASSIGNMENT_MASK(dig_port->tc_phy_fia_idx)) >>
- DP_PIN_ASSIGNMENT_SHIFT(dig_port->tc_phy_fia_idx);
+ return (pin_mask & DP_PIN_ASSIGNMENT_MASK(tc->phy_fia_idx)) >>
+ DP_PIN_ASSIGNMENT_SHIFT(tc->phy_fia_idx);
}
int intel_tc_port_fia_max_lane_count(struct intel_digital_port *dig_port)
{
struct drm_i915_private *i915 = to_i915(dig_port->base.base.dev);
+ struct intel_tc_port *tc = to_tc_port(dig_port);
+ enum phy phy = intel_port_to_phy(i915, dig_port->base.port);
intel_wakeref_t wakeref;
u32 lane_mask;
- if (dig_port->tc_mode != TC_PORT_DP_ALT)
+ if (!intel_phy_is_tc(i915, phy) || tc->mode != TC_PORT_DP_ALT)
return 4;
- assert_tc_cold_blocked(dig_port);
+ assert_tc_cold_blocked(tc);
lane_mask = 0;
with_intel_display_power(i915, POWER_DOMAIN_DISPLAY_CORE, wakeref)
@@ -184,48 +309,51 @@ void intel_tc_port_set_fia_lane_count(struct intel_digital_port *dig_port,
int required_lanes)
{
struct drm_i915_private *i915 = to_i915(dig_port->base.base.dev);
+ struct intel_tc_port *tc = to_tc_port(dig_port);
bool lane_reversal = dig_port->saved_port_bits & DDI_BUF_PORT_REVERSAL;
- struct intel_uncore *uncore = &i915->uncore;
u32 val;
drm_WARN_ON(&i915->drm,
- lane_reversal && dig_port->tc_mode != TC_PORT_LEGACY);
+ lane_reversal && tc->mode != TC_PORT_LEGACY);
- assert_tc_cold_blocked(dig_port);
+ assert_tc_cold_blocked(tc);
- val = intel_uncore_read(uncore,
- PORT_TX_DFLEXDPMLE1(dig_port->tc_phy_fia));
- val &= ~DFLEXDPMLE1_DPMLETC_MASK(dig_port->tc_phy_fia_idx);
+ val = intel_de_read(i915, PORT_TX_DFLEXDPMLE1(tc->phy_fia));
+ val &= ~DFLEXDPMLE1_DPMLETC_MASK(tc->phy_fia_idx);
switch (required_lanes) {
case 1:
val |= lane_reversal ?
- DFLEXDPMLE1_DPMLETC_ML3(dig_port->tc_phy_fia_idx) :
- DFLEXDPMLE1_DPMLETC_ML0(dig_port->tc_phy_fia_idx);
+ DFLEXDPMLE1_DPMLETC_ML3(tc->phy_fia_idx) :
+ DFLEXDPMLE1_DPMLETC_ML0(tc->phy_fia_idx);
break;
case 2:
val |= lane_reversal ?
- DFLEXDPMLE1_DPMLETC_ML3_2(dig_port->tc_phy_fia_idx) :
- DFLEXDPMLE1_DPMLETC_ML1_0(dig_port->tc_phy_fia_idx);
+ DFLEXDPMLE1_DPMLETC_ML3_2(tc->phy_fia_idx) :
+ DFLEXDPMLE1_DPMLETC_ML1_0(tc->phy_fia_idx);
break;
case 4:
- val |= DFLEXDPMLE1_DPMLETC_ML3_0(dig_port->tc_phy_fia_idx);
+ val |= DFLEXDPMLE1_DPMLETC_ML3_0(tc->phy_fia_idx);
break;
default:
MISSING_CASE(required_lanes);
}
- intel_uncore_write(uncore,
- PORT_TX_DFLEXDPMLE1(dig_port->tc_phy_fia), val);
+ intel_de_write(i915, PORT_TX_DFLEXDPMLE1(tc->phy_fia), val);
}
-static void tc_port_fixup_legacy_flag(struct intel_digital_port *dig_port,
+static void tc_port_fixup_legacy_flag(struct intel_tc_port *tc,
u32 live_status_mask)
{
- struct drm_i915_private *i915 = to_i915(dig_port->base.base.dev);
+ struct drm_i915_private *i915 = tc_to_i915(tc);
u32 valid_hpd_mask;
- if (dig_port->tc_legacy_port)
+ drm_WARN_ON(&i915->drm, tc->mode != TC_PORT_DISCONNECTED);
+
+ if (hweight32(live_status_mask) != 1)
+ return;
+
+ if (tc->legacy_port)
valid_hpd_mask = BIT(TC_PORT_LEGACY);
else
valid_hpd_mask = BIT(TC_PORT_DP_ALT) |
@@ -237,83 +365,79 @@ static void tc_port_fixup_legacy_flag(struct intel_digital_port *dig_port,
/* If live status mismatches the VBT flag, trust the live status. */
drm_dbg_kms(&i915->drm,
"Port %s: live status %08x mismatches the legacy port flag %08x, fixing flag\n",
- dig_port->tc_port_name, live_status_mask, valid_hpd_mask);
+ tc->port_name, live_status_mask, valid_hpd_mask);
- dig_port->tc_legacy_port = !dig_port->tc_legacy_port;
+ tc->legacy_port = !tc->legacy_port;
}
-static u32 icl_tc_port_live_status_mask(struct intel_digital_port *dig_port)
+static void tc_phy_load_fia_params(struct intel_tc_port *tc, bool modular_fia)
{
- struct drm_i915_private *i915 = to_i915(dig_port->base.base.dev);
- struct intel_uncore *uncore = &i915->uncore;
- u32 isr_bit = i915->display.hotplug.pch_hpd[dig_port->base.hpd_pin];
- u32 mask = 0;
- u32 val;
-
- val = intel_uncore_read(uncore,
- PORT_TX_DFLEXDPSP(dig_port->tc_phy_fia));
+ struct drm_i915_private *i915 = tc_to_i915(tc);
+ enum port port = tc->dig_port->base.port;
+ enum tc_port tc_port = intel_port_to_tc(i915, port);
- if (val == 0xffffffff) {
- drm_dbg_kms(&i915->drm,
- "Port %s: PHY in TCCOLD, nothing connected\n",
- dig_port->tc_port_name);
- return mask;
+ /*
+ * Each Modular FIA instance houses 2 TC ports. In SOC that has more
+ * than two TC ports, there are multiple instances of Modular FIA.
+ */
+ if (modular_fia) {
+ tc->phy_fia = tc_port / 2;
+ tc->phy_fia_idx = tc_port % 2;
+ } else {
+ tc->phy_fia = FIA1;
+ tc->phy_fia_idx = tc_port;
}
+}
- if (val & TC_LIVE_STATE_TBT(dig_port->tc_phy_fia_idx))
- mask |= BIT(TC_PORT_TBT_ALT);
- if (val & TC_LIVE_STATE_TC(dig_port->tc_phy_fia_idx))
- mask |= BIT(TC_PORT_DP_ALT);
-
- if (intel_uncore_read(uncore, SDEISR) & isr_bit)
- mask |= BIT(TC_PORT_LEGACY);
+/*
+ * ICL TC PHY handlers
+ * -------------------
+ */
+static enum intel_display_power_domain
+icl_tc_phy_cold_off_domain(struct intel_tc_port *tc)
+{
+ struct drm_i915_private *i915 = tc_to_i915(tc);
+ struct intel_digital_port *dig_port = tc->dig_port;
- /* The sink can be connected only in a single mode. */
- if (!drm_WARN_ON_ONCE(&i915->drm, hweight32(mask) > 1))
- tc_port_fixup_legacy_flag(dig_port, mask);
+ if (tc->legacy_port)
+ return intel_display_power_legacy_aux_domain(i915, dig_port->aux_ch);
- return mask;
+ return POWER_DOMAIN_TC_COLD_OFF;
}
-static u32 adl_tc_port_live_status_mask(struct intel_digital_port *dig_port)
+static u32 icl_tc_phy_hpd_live_status(struct intel_tc_port *tc)
{
- struct drm_i915_private *i915 = to_i915(dig_port->base.base.dev);
- enum tc_port tc_port = intel_port_to_tc(i915, dig_port->base.port);
+ struct drm_i915_private *i915 = tc_to_i915(tc);
+ struct intel_digital_port *dig_port = tc->dig_port;
u32 isr_bit = i915->display.hotplug.pch_hpd[dig_port->base.hpd_pin];
- struct intel_uncore *uncore = &i915->uncore;
- u32 val, mask = 0;
+ intel_wakeref_t wakeref;
+ u32 fia_isr;
+ u32 pch_isr;
+ u32 mask = 0;
- /*
- * On ADL-P HW/FW will wake from TCCOLD to complete the read access of
- * registers in IOM. Note that this doesn't apply to PHY and FIA
- * registers.
- */
- val = intel_uncore_read(uncore, TCSS_DDI_STATUS(tc_port));
- if (val & TCSS_DDI_STATUS_HPD_LIVE_STATUS_ALT)
- mask |= BIT(TC_PORT_DP_ALT);
- if (val & TCSS_DDI_STATUS_HPD_LIVE_STATUS_TBT)
+ with_intel_display_power(i915, tc_phy_cold_off_domain(tc), wakeref) {
+ fia_isr = intel_de_read(i915, PORT_TX_DFLEXDPSP(tc->phy_fia));
+ pch_isr = intel_de_read(i915, SDEISR);
+ }
+
+ if (fia_isr == 0xffffffff) {
+ drm_dbg_kms(&i915->drm,
+ "Port %s: PHY in TCCOLD, nothing connected\n",
+ tc->port_name);
+ return mask;
+ }
+
+ if (fia_isr & TC_LIVE_STATE_TBT(tc->phy_fia_idx))
mask |= BIT(TC_PORT_TBT_ALT);
+ if (fia_isr & TC_LIVE_STATE_TC(tc->phy_fia_idx))
+ mask |= BIT(TC_PORT_DP_ALT);
- if (intel_uncore_read(uncore, SDEISR) & isr_bit)
+ if (pch_isr & isr_bit)
mask |= BIT(TC_PORT_LEGACY);
- /* The sink can be connected only in a single mode. */
- if (!drm_WARN_ON(&i915->drm, hweight32(mask) > 1))
- tc_port_fixup_legacy_flag(dig_port, mask);
-
return mask;
}
-static u32 tc_port_live_status_mask(struct intel_digital_port *dig_port)
-{
- struct drm_i915_private *i915 = to_i915(dig_port->base.base.dev);
-
- if (IS_ALDERLAKE_P(i915))
- return adl_tc_port_live_status_mask(dig_port);
-
- return icl_tc_port_live_status_mask(dig_port);
-}
-
/*
* Return the PHY status complete flag indicating that display can acquire the
* PHY ownership. The IOM firmware sets this flag when a DP-alt or legacy sink
@@ -322,151 +446,80 @@ static u32 tc_port_live_status_mask(struct intel_digital_port *dig_port)
* owned by the TBT subsystem and so switching the ownership to display is not
* required.
*/
-static bool icl_tc_phy_status_complete(struct intel_digital_port *dig_port)
+static bool icl_tc_phy_is_ready(struct intel_tc_port *tc)
{
- struct drm_i915_private *i915 = to_i915(dig_port->base.base.dev);
- struct intel_uncore *uncore = &i915->uncore;
+ struct drm_i915_private *i915 = tc_to_i915(tc);
u32 val;
- val = intel_uncore_read(uncore,
- PORT_TX_DFLEXDPPMS(dig_port->tc_phy_fia));
- if (val == 0xffffffff) {
- drm_dbg_kms(&i915->drm,
- "Port %s: PHY in TCCOLD, assuming not complete\n",
- dig_port->tc_port_name);
- return false;
- }
-
- return val & DP_PHY_MODE_STATUS_COMPLETED(dig_port->tc_phy_fia_idx);
-}
-
-/*
- * Return the PHY status complete flag indicating that display can acquire the
- * PHY ownership. The IOM firmware sets this flag when it's ready to switch
- * the ownership to display, regardless of what sink is connected (TBT-alt,
- * DP-alt, legacy or nothing). For TBT-alt sinks the PHY is owned by the TBT
- * subsystem and so switching the ownership to display is not required.
- */
-static bool adl_tc_phy_status_complete(struct intel_digital_port *dig_port)
-{
- struct drm_i915_private *i915 = to_i915(dig_port->base.base.dev);
- enum tc_port tc_port = intel_port_to_tc(i915, dig_port->base.port);
- struct intel_uncore *uncore = &i915->uncore;
- u32 val;
+ assert_tc_cold_blocked(tc);
- val = intel_uncore_read(uncore, TCSS_DDI_STATUS(tc_port));
+ val = intel_de_read(i915, PORT_TX_DFLEXDPPMS(tc->phy_fia));
if (val == 0xffffffff) {
drm_dbg_kms(&i915->drm,
- "Port %s: PHY in TCCOLD, assuming not complete\n",
- dig_port->tc_port_name);
+ "Port %s: PHY in TCCOLD, assuming not ready\n",
+ tc->port_name);
return false;
}
- return val & TCSS_DDI_STATUS_READY;
-}
-
-static bool tc_phy_status_complete(struct intel_digital_port *dig_port)
-{
- struct drm_i915_private *i915 = to_i915(dig_port->base.base.dev);
-
- if (IS_ALDERLAKE_P(i915))
- return adl_tc_phy_status_complete(dig_port);
-
- return icl_tc_phy_status_complete(dig_port);
+ return val & DP_PHY_MODE_STATUS_COMPLETED(tc->phy_fia_idx);
}
-static bool icl_tc_phy_take_ownership(struct intel_digital_port *dig_port,
+static bool icl_tc_phy_take_ownership(struct intel_tc_port *tc,
bool take)
{
- struct drm_i915_private *i915 = to_i915(dig_port->base.base.dev);
- struct intel_uncore *uncore = &i915->uncore;
+ struct drm_i915_private *i915 = tc_to_i915(tc);
u32 val;
- val = intel_uncore_read(uncore,
- PORT_TX_DFLEXDPCSSS(dig_port->tc_phy_fia));
+ assert_tc_cold_blocked(tc);
+
+ val = intel_de_read(i915, PORT_TX_DFLEXDPCSSS(tc->phy_fia));
if (val == 0xffffffff) {
drm_dbg_kms(&i915->drm,
"Port %s: PHY in TCCOLD, can't %s ownership\n",
- dig_port->tc_port_name, take ? "take" : "release");
+ tc->port_name, take ? "take" : "release");
return false;
}
- val &= ~DP_PHY_MODE_STATUS_NOT_SAFE(dig_port->tc_phy_fia_idx);
+ val &= ~DP_PHY_MODE_STATUS_NOT_SAFE(tc->phy_fia_idx);
if (take)
- val |= DP_PHY_MODE_STATUS_NOT_SAFE(dig_port->tc_phy_fia_idx);
+ val |= DP_PHY_MODE_STATUS_NOT_SAFE(tc->phy_fia_idx);
- intel_uncore_write(uncore,
- PORT_TX_DFLEXDPCSSS(dig_port->tc_phy_fia), val);
+ intel_de_write(i915, PORT_TX_DFLEXDPCSSS(tc->phy_fia), val);
return true;
}
-static bool adl_tc_phy_take_ownership(struct intel_digital_port *dig_port,
- bool take)
+static bool icl_tc_phy_is_owned(struct intel_tc_port *tc)
{
- struct drm_i915_private *i915 = to_i915(dig_port->base.base.dev);
- struct intel_uncore *uncore = &i915->uncore;
- enum port port = dig_port->base.port;
+ struct drm_i915_private *i915 = tc_to_i915(tc);
u32 val;
- val = intel_uncore_read(uncore, DDI_BUF_CTL(port));
- if (take)
- val |= DDI_BUF_CTL_TC_PHY_OWNERSHIP;
- else
- val &= ~DDI_BUF_CTL_TC_PHY_OWNERSHIP;
- intel_uncore_write(uncore, DDI_BUF_CTL(port), val);
+ assert_tc_cold_blocked(tc);
- return true;
-}
-
-static bool tc_phy_take_ownership(struct intel_digital_port *dig_port, bool take)
-{
- struct drm_i915_private *i915 = to_i915(dig_port->base.base.dev);
-
- if (IS_ALDERLAKE_P(i915))
- return adl_tc_phy_take_ownership(dig_port, take);
-
- return icl_tc_phy_take_ownership(dig_port, take);
-}
-
-static bool icl_tc_phy_is_owned(struct intel_digital_port *dig_port)
-{
- struct drm_i915_private *i915 = to_i915(dig_port->base.base.dev);
- struct intel_uncore *uncore = &i915->uncore;
- u32 val;
-
- val = intel_uncore_read(uncore,
- PORT_TX_DFLEXDPCSSS(dig_port->tc_phy_fia));
+ val = intel_de_read(i915, PORT_TX_DFLEXDPCSSS(tc->phy_fia));
if (val == 0xffffffff) {
drm_dbg_kms(&i915->drm,
- "Port %s: PHY in TCCOLD, assume safe mode\n",
- dig_port->tc_port_name);
- return true;
+ "Port %s: PHY in TCCOLD, assume not owned\n",
+ tc->port_name);
+ return false;
}
- return val & DP_PHY_MODE_STATUS_NOT_SAFE(dig_port->tc_phy_fia_idx);
+ return val & DP_PHY_MODE_STATUS_NOT_SAFE(tc->phy_fia_idx);
}
-static bool adl_tc_phy_is_owned(struct intel_digital_port *dig_port)
+static void icl_tc_phy_get_hw_state(struct intel_tc_port *tc)
{
- struct drm_i915_private *i915 = to_i915(dig_port->base.base.dev);
- struct intel_uncore *uncore = &i915->uncore;
- enum port port = dig_port->base.port;
- u32 val;
-
- val = intel_uncore_read(uncore, DDI_BUF_CTL(port));
- return val & DDI_BUF_CTL_TC_PHY_OWNERSHIP;
-}
+ enum intel_display_power_domain domain;
+ intel_wakeref_t tc_cold_wref;
-static bool tc_phy_is_owned(struct intel_digital_port *dig_port)
-{
- struct drm_i915_private *i915 = to_i915(dig_port->base.base.dev);
+ tc_cold_wref = __tc_cold_block(tc, &domain);
- if (IS_ALDERLAKE_P(i915))
- return adl_tc_phy_is_owned(dig_port);
+ tc->mode = tc_phy_get_current_mode(tc);
+ if (tc->mode != TC_PORT_DISCONNECTED)
+ tc->lock_wakeref = tc_cold_block(tc);
- return icl_tc_phy_is_owned(dig_port);
+ __tc_cold_unblock(tc, domain, tc_cold_wref);
}
/*
@@ -480,151 +533,590 @@ static bool tc_phy_is_owned(struct intel_digital_port *dig_port)
* connect and disconnect to cleanly transfer ownership with the controller and
* set the type-C power state.
*/
-static void icl_tc_phy_connect(struct intel_digital_port *dig_port,
- int required_lanes)
+static bool tc_phy_verify_legacy_or_dp_alt_mode(struct intel_tc_port *tc,
+ int required_lanes)
{
- struct drm_i915_private *i915 = to_i915(dig_port->base.base.dev);
- u32 live_status_mask;
+ struct drm_i915_private *i915 = tc_to_i915(tc);
+ struct intel_digital_port *dig_port = tc->dig_port;
int max_lanes;
- if (!tc_phy_status_complete(dig_port)) {
- drm_dbg_kms(&i915->drm, "Port %s: PHY not ready\n",
- dig_port->tc_port_name);
- goto out_set_tbt_alt_mode;
- }
-
- live_status_mask = tc_port_live_status_mask(dig_port);
- if (!(live_status_mask & (BIT(TC_PORT_DP_ALT) | BIT(TC_PORT_LEGACY))) &&
- !dig_port->tc_legacy_port) {
- drm_dbg_kms(&i915->drm, "Port %s: PHY ownership not required (live status %02x)\n",
- dig_port->tc_port_name, live_status_mask);
- goto out_set_tbt_alt_mode;
- }
-
- if (!tc_phy_take_ownership(dig_port, true) &&
- !drm_WARN_ON(&i915->drm, dig_port->tc_legacy_port))
- goto out_set_tbt_alt_mode;
-
max_lanes = intel_tc_port_fia_max_lane_count(dig_port);
- if (dig_port->tc_legacy_port) {
+ if (tc->mode == TC_PORT_LEGACY) {
drm_WARN_ON(&i915->drm, max_lanes != 4);
- dig_port->tc_mode = TC_PORT_LEGACY;
-
- return;
+ return true;
}
+ drm_WARN_ON(&i915->drm, tc->mode != TC_PORT_DP_ALT);
+
/*
* Now we have to re-check the live state, in case the port recently
* became disconnected. Not necessary for legacy mode.
*/
- if (!(tc_port_live_status_mask(dig_port) & BIT(TC_PORT_DP_ALT))) {
+ if (!(tc_phy_hpd_live_status(tc) & BIT(TC_PORT_DP_ALT))) {
drm_dbg_kms(&i915->drm, "Port %s: PHY sudden disconnect\n",
- dig_port->tc_port_name);
- goto out_release_phy;
+ tc->port_name);
+ return false;
}
if (max_lanes < required_lanes) {
drm_dbg_kms(&i915->drm,
"Port %s: PHY max lanes %d < required lanes %d\n",
- dig_port->tc_port_name,
+ tc->port_name,
max_lanes, required_lanes);
- goto out_release_phy;
+ return false;
+ }
+
+ return true;
+}
+
+static bool icl_tc_phy_connect(struct intel_tc_port *tc,
+ int required_lanes)
+{
+ struct drm_i915_private *i915 = tc_to_i915(tc);
+
+ tc->lock_wakeref = tc_cold_block(tc);
+
+ if (tc->mode == TC_PORT_TBT_ALT)
+ return true;
+
+ if ((!tc_phy_is_ready(tc) ||
+ !icl_tc_phy_take_ownership(tc, true)) &&
+ !drm_WARN_ON(&i915->drm, tc->mode == TC_PORT_LEGACY)) {
+ drm_dbg_kms(&i915->drm, "Port %s: can't take PHY ownership (ready %s)\n",
+ tc->port_name,
+ str_yes_no(tc_phy_is_ready(tc)));
+ goto out_unblock_tc_cold;
}
- dig_port->tc_mode = TC_PORT_DP_ALT;
- return;
+ if (!tc_phy_verify_legacy_or_dp_alt_mode(tc, required_lanes))
+ goto out_release_phy;
+
+ return true;
out_release_phy:
- tc_phy_take_ownership(dig_port, false);
-out_set_tbt_alt_mode:
- dig_port->tc_mode = TC_PORT_TBT_ALT;
+ icl_tc_phy_take_ownership(tc, false);
+out_unblock_tc_cold:
+ tc_cold_unblock(tc, fetch_and_zero(&tc->lock_wakeref));
+
+ return false;
}
/*
* See the comment at the connect function. This implements the Disconnect
* Flow.
*/
-static void icl_tc_phy_disconnect(struct intel_digital_port *dig_port)
+static void icl_tc_phy_disconnect(struct intel_tc_port *tc)
{
- switch (dig_port->tc_mode) {
+ switch (tc->mode) {
case TC_PORT_LEGACY:
case TC_PORT_DP_ALT:
- tc_phy_take_ownership(dig_port, false);
+ icl_tc_phy_take_ownership(tc, false);
fallthrough;
case TC_PORT_TBT_ALT:
- dig_port->tc_mode = TC_PORT_DISCONNECTED;
- fallthrough;
- case TC_PORT_DISCONNECTED:
+ tc_cold_unblock(tc, fetch_and_zero(&tc->lock_wakeref));
break;
default:
- MISSING_CASE(dig_port->tc_mode);
+ MISSING_CASE(tc->mode);
}
}
-static bool icl_tc_phy_is_connected(struct intel_digital_port *dig_port)
+static void icl_tc_phy_init(struct intel_tc_port *tc)
{
- struct drm_i915_private *i915 = to_i915(dig_port->base.base.dev);
+ tc_phy_load_fia_params(tc, false);
+}
+
+static const struct intel_tc_phy_ops icl_tc_phy_ops = {
+ .cold_off_domain = icl_tc_phy_cold_off_domain,
+ .hpd_live_status = icl_tc_phy_hpd_live_status,
+ .is_ready = icl_tc_phy_is_ready,
+ .is_owned = icl_tc_phy_is_owned,
+ .get_hw_state = icl_tc_phy_get_hw_state,
+ .connect = icl_tc_phy_connect,
+ .disconnect = icl_tc_phy_disconnect,
+ .init = icl_tc_phy_init,
+};
+
+/*
+ * TGL TC PHY handlers
+ * -------------------
+ */
+static enum intel_display_power_domain
+tgl_tc_phy_cold_off_domain(struct intel_tc_port *tc)
+{
+ return POWER_DOMAIN_TC_COLD_OFF;
+}
- if (!tc_phy_status_complete(dig_port)) {
- drm_dbg_kms(&i915->drm, "Port %s: PHY status not complete\n",
- dig_port->tc_port_name);
- return dig_port->tc_mode == TC_PORT_TBT_ALT;
+static void tgl_tc_phy_init(struct intel_tc_port *tc)
+{
+ struct drm_i915_private *i915 = tc_to_i915(tc);
+ intel_wakeref_t wakeref;
+ u32 val;
+
+ with_intel_display_power(i915, tc_phy_cold_off_domain(tc), wakeref)
+ val = intel_de_read(i915, PORT_TX_DFLEXDPSP(FIA1));
+
+ drm_WARN_ON(&i915->drm, val == 0xffffffff);
+
+ tc_phy_load_fia_params(tc, val & MODULAR_FIA_MASK);
+}
+
+static const struct intel_tc_phy_ops tgl_tc_phy_ops = {
+ .cold_off_domain = tgl_tc_phy_cold_off_domain,
+ .hpd_live_status = icl_tc_phy_hpd_live_status,
+ .is_ready = icl_tc_phy_is_ready,
+ .is_owned = icl_tc_phy_is_owned,
+ .get_hw_state = icl_tc_phy_get_hw_state,
+ .connect = icl_tc_phy_connect,
+ .disconnect = icl_tc_phy_disconnect,
+ .init = tgl_tc_phy_init,
+};
+
+/*
+ * ADLP TC PHY handlers
+ * --------------------
+ */
+static enum intel_display_power_domain
+adlp_tc_phy_cold_off_domain(struct intel_tc_port *tc)
+{
+ struct drm_i915_private *i915 = tc_to_i915(tc);
+ struct intel_digital_port *dig_port = tc->dig_port;
+
+ if (tc->mode != TC_PORT_TBT_ALT)
+ return intel_display_power_legacy_aux_domain(i915, dig_port->aux_ch);
+
+ return POWER_DOMAIN_TC_COLD_OFF;
+}
+
+static u32 adlp_tc_phy_hpd_live_status(struct intel_tc_port *tc)
+{
+ struct drm_i915_private *i915 = tc_to_i915(tc);
+ struct intel_digital_port *dig_port = tc->dig_port;
+ enum hpd_pin hpd_pin = dig_port->base.hpd_pin;
+ u32 cpu_isr_bits = i915->display.hotplug.hpd[hpd_pin];
+ u32 pch_isr_bit = i915->display.hotplug.pch_hpd[hpd_pin];
+ intel_wakeref_t wakeref;
+ u32 cpu_isr;
+ u32 pch_isr;
+ u32 mask = 0;
+
+ with_intel_display_power(i915, POWER_DOMAIN_DISPLAY_CORE, wakeref) {
+ cpu_isr = intel_de_read(i915, GEN11_DE_HPD_ISR);
+ pch_isr = intel_de_read(i915, SDEISR);
}
- /* On ADL-P the PHY complete flag is set in TBT mode as well. */
- if (IS_ALDERLAKE_P(i915) && dig_port->tc_mode == TC_PORT_TBT_ALT)
- return true;
+ if (cpu_isr & (cpu_isr_bits & GEN11_DE_TC_HOTPLUG_MASK))
+ mask |= BIT(TC_PORT_DP_ALT);
+ if (cpu_isr & (cpu_isr_bits & GEN11_DE_TBT_HOTPLUG_MASK))
+ mask |= BIT(TC_PORT_TBT_ALT);
+
+ if (pch_isr & pch_isr_bit)
+ mask |= BIT(TC_PORT_LEGACY);
+
+ return mask;
+}
+
+/*
+ * Return the PHY status complete flag indicating that display can acquire the
+ * PHY ownership. The IOM firmware sets this flag when it's ready to switch
+ * the ownership to display, regardless of what sink is connected (TBT-alt,
+ * DP-alt, legacy or nothing). For TBT-alt sinks the PHY is owned by the TBT
+ * subsystem and so switching the ownership to display is not required.
+ */
+static bool adlp_tc_phy_is_ready(struct intel_tc_port *tc)
+{
+ struct drm_i915_private *i915 = tc_to_i915(tc);
+ enum tc_port tc_port = intel_port_to_tc(i915, tc->dig_port->base.port);
+ u32 val;
- if (!tc_phy_is_owned(dig_port)) {
- drm_dbg_kms(&i915->drm, "Port %s: PHY not owned\n",
- dig_port->tc_port_name);
+ assert_display_core_power_enabled(tc);
+ val = intel_de_read(i915, TCSS_DDI_STATUS(tc_port));
+ if (val == 0xffffffff) {
+ drm_dbg_kms(&i915->drm,
+ "Port %s: PHY in TCCOLD, assuming not ready\n",
+ tc->port_name);
return false;
}
- return dig_port->tc_mode == TC_PORT_DP_ALT ||
- dig_port->tc_mode == TC_PORT_LEGACY;
+ return val & TCSS_DDI_STATUS_READY;
+}
+
+static bool adlp_tc_phy_take_ownership(struct intel_tc_port *tc,
+ bool take)
+{
+ struct drm_i915_private *i915 = tc_to_i915(tc);
+ enum port port = tc->dig_port->base.port;
+
+ assert_tc_port_power_enabled(tc);
+
+ intel_de_rmw(i915, DDI_BUF_CTL(port), DDI_BUF_CTL_TC_PHY_OWNERSHIP,
+ take ? DDI_BUF_CTL_TC_PHY_OWNERSHIP : 0);
+
+ return true;
+}
+
+static bool adlp_tc_phy_is_owned(struct intel_tc_port *tc)
+{
+ struct drm_i915_private *i915 = tc_to_i915(tc);
+ enum port port = tc->dig_port->base.port;
+ u32 val;
+
+ assert_tc_port_power_enabled(tc);
+
+ val = intel_de_read(i915, DDI_BUF_CTL(port));
+ return val & DDI_BUF_CTL_TC_PHY_OWNERSHIP;
+}
+
+static void adlp_tc_phy_get_hw_state(struct intel_tc_port *tc)
+{
+ struct drm_i915_private *i915 = tc_to_i915(tc);
+ enum intel_display_power_domain port_power_domain =
+ tc_port_power_domain(tc);
+ intel_wakeref_t port_wakeref;
+
+ port_wakeref = intel_display_power_get(i915, port_power_domain);
+
+ tc->mode = tc_phy_get_current_mode(tc);
+ if (tc->mode != TC_PORT_DISCONNECTED)
+ tc->lock_wakeref = tc_cold_block(tc);
+
+ intel_display_power_put(i915, port_power_domain, port_wakeref);
+}
+
+static bool adlp_tc_phy_connect(struct intel_tc_port *tc, int required_lanes)
+{
+ struct drm_i915_private *i915 = tc_to_i915(tc);
+ enum intel_display_power_domain port_power_domain =
+ tc_port_power_domain(tc);
+ intel_wakeref_t port_wakeref;
+
+ if (tc->mode == TC_PORT_TBT_ALT) {
+ tc->lock_wakeref = tc_cold_block(tc);
+ return true;
+ }
+
+ port_wakeref = intel_display_power_get(i915, port_power_domain);
+
+ if (!adlp_tc_phy_take_ownership(tc, true) &&
+ !drm_WARN_ON(&i915->drm, tc->mode == TC_PORT_LEGACY)) {
+ drm_dbg_kms(&i915->drm, "Port %s: can't take PHY ownership\n",
+ tc->port_name);
+ goto out_put_port_power;
+ }
+
+ if (!tc_phy_is_ready(tc) &&
+ !drm_WARN_ON(&i915->drm, tc->mode == TC_PORT_LEGACY)) {
+ drm_dbg_kms(&i915->drm, "Port %s: PHY not ready\n",
+ tc->port_name);
+ goto out_release_phy;
+ }
+
+ tc->lock_wakeref = tc_cold_block(tc);
+
+ if (!tc_phy_verify_legacy_or_dp_alt_mode(tc, required_lanes))
+ goto out_unblock_tc_cold;
+
+ intel_display_power_put(i915, port_power_domain, port_wakeref);
+
+ return true;
+
+out_unblock_tc_cold:
+ tc_cold_unblock(tc, fetch_and_zero(&tc->lock_wakeref));
+out_release_phy:
+ adlp_tc_phy_take_ownership(tc, false);
+out_put_port_power:
+ intel_display_power_put(i915, port_power_domain, port_wakeref);
+
+ return false;
+}
+
+static void adlp_tc_phy_disconnect(struct intel_tc_port *tc)
+{
+ struct drm_i915_private *i915 = tc_to_i915(tc);
+ enum intel_display_power_domain port_power_domain =
+ tc_port_power_domain(tc);
+ intel_wakeref_t port_wakeref;
+
+ port_wakeref = intel_display_power_get(i915, port_power_domain);
+
+ tc_cold_unblock(tc, fetch_and_zero(&tc->lock_wakeref));
+
+ switch (tc->mode) {
+ case TC_PORT_LEGACY:
+ case TC_PORT_DP_ALT:
+ adlp_tc_phy_take_ownership(tc, false);
+ fallthrough;
+ case TC_PORT_TBT_ALT:
+ break;
+ default:
+ MISSING_CASE(tc->mode);
+ }
+
+ intel_display_power_put(i915, port_power_domain, port_wakeref);
+}
+
+static void adlp_tc_phy_init(struct intel_tc_port *tc)
+{
+ tc_phy_load_fia_params(tc, true);
+}
+
+static const struct intel_tc_phy_ops adlp_tc_phy_ops = {
+ .cold_off_domain = adlp_tc_phy_cold_off_domain,
+ .hpd_live_status = adlp_tc_phy_hpd_live_status,
+ .is_ready = adlp_tc_phy_is_ready,
+ .is_owned = adlp_tc_phy_is_owned,
+ .get_hw_state = adlp_tc_phy_get_hw_state,
+ .connect = adlp_tc_phy_connect,
+ .disconnect = adlp_tc_phy_disconnect,
+ .init = adlp_tc_phy_init,
+};
+
+/*
+ * Generic TC PHY handlers
+ * -----------------------
+ */
+static enum intel_display_power_domain
+tc_phy_cold_off_domain(struct intel_tc_port *tc)
+{
+ return tc->phy_ops->cold_off_domain(tc);
+}
+
+static u32 tc_phy_hpd_live_status(struct intel_tc_port *tc)
+{
+ struct drm_i915_private *i915 = tc_to_i915(tc);
+ u32 mask;
+
+ mask = tc->phy_ops->hpd_live_status(tc);
+
+ /* The sink can be connected only in a single mode. */
+ drm_WARN_ON_ONCE(&i915->drm, hweight32(mask) > 1);
+
+ return mask;
+}
+
+static bool tc_phy_is_ready(struct intel_tc_port *tc)
+{
+ return tc->phy_ops->is_ready(tc);
+}
+
+static bool tc_phy_is_owned(struct intel_tc_port *tc)
+{
+ return tc->phy_ops->is_owned(tc);
+}
+
+static void tc_phy_get_hw_state(struct intel_tc_port *tc)
+{
+ tc->phy_ops->get_hw_state(tc);
+}
+
+static bool tc_phy_is_ready_and_owned(struct intel_tc_port *tc,
+ bool phy_is_ready, bool phy_is_owned)
+{
+ struct drm_i915_private *i915 = tc_to_i915(tc);
+
+ drm_WARN_ON(&i915->drm, phy_is_owned && !phy_is_ready);
+
+ return phy_is_ready && phy_is_owned;
+}
+
+static bool tc_phy_is_connected(struct intel_tc_port *tc,
+ enum icl_port_dpll_id port_pll_type)
+{
+ struct intel_encoder *encoder = &tc->dig_port->base;
+ struct drm_i915_private *i915 = to_i915(encoder->base.dev);
+ bool phy_is_ready = tc_phy_is_ready(tc);
+ bool phy_is_owned = tc_phy_is_owned(tc);
+ bool is_connected;
+
+ if (tc_phy_is_ready_and_owned(tc, phy_is_ready, phy_is_owned))
+ is_connected = port_pll_type == ICL_PORT_DPLL_MG_PHY;
+ else
+ is_connected = port_pll_type == ICL_PORT_DPLL_DEFAULT;
+
+ drm_dbg_kms(&i915->drm,
+ "Port %s: PHY connected: %s (ready: %s, owned: %s, pll_type: %s)\n",
+ tc->port_name,
+ str_yes_no(is_connected),
+ str_yes_no(phy_is_ready),
+ str_yes_no(phy_is_owned),
+ port_pll_type == ICL_PORT_DPLL_DEFAULT ? "tbt" : "non-tbt");
+
+ return is_connected;
+}
+
+static void tc_phy_wait_for_ready(struct intel_tc_port *tc)
+{
+ struct drm_i915_private *i915 = tc_to_i915(tc);
+
+ if (wait_for(tc_phy_is_ready(tc), 100))
+ drm_err(&i915->drm, "Port %s: timeout waiting for PHY ready\n",
+ tc->port_name);
}
static enum tc_port_mode
-intel_tc_port_get_current_mode(struct intel_digital_port *dig_port)
+hpd_mask_to_tc_mode(u32 live_status_mask)
{
- struct drm_i915_private *i915 = to_i915(dig_port->base.base.dev);
- u32 live_status_mask = tc_port_live_status_mask(dig_port);
- enum tc_port_mode mode;
+ if (live_status_mask)
+ return fls(live_status_mask) - 1;
+
+ return TC_PORT_DISCONNECTED;
+}
- if (!tc_phy_is_owned(dig_port) ||
- drm_WARN_ON(&i915->drm, !tc_phy_status_complete(dig_port)))
+static enum tc_port_mode
+tc_phy_hpd_live_mode(struct intel_tc_port *tc)
+{
+ u32 live_status_mask = tc_phy_hpd_live_status(tc);
+
+ return hpd_mask_to_tc_mode(live_status_mask);
+}
+
+static enum tc_port_mode
+get_tc_mode_in_phy_owned_state(struct intel_tc_port *tc,
+ enum tc_port_mode live_mode)
+{
+ switch (live_mode) {
+ case TC_PORT_LEGACY:
+ case TC_PORT_DP_ALT:
+ return live_mode;
+ default:
+ MISSING_CASE(live_mode);
+ fallthrough;
+ case TC_PORT_TBT_ALT:
+ case TC_PORT_DISCONNECTED:
+ if (tc->legacy_port)
+ return TC_PORT_LEGACY;
+ else
+ return TC_PORT_DP_ALT;
+ }
+}
+
+static enum tc_port_mode
+get_tc_mode_in_phy_not_owned_state(struct intel_tc_port *tc,
+ enum tc_port_mode live_mode)
+{
+ switch (live_mode) {
+ case TC_PORT_LEGACY:
+ return TC_PORT_DISCONNECTED;
+ case TC_PORT_DP_ALT:
+ case TC_PORT_TBT_ALT:
return TC_PORT_TBT_ALT;
+ default:
+ MISSING_CASE(live_mode);
+ fallthrough;
+ case TC_PORT_DISCONNECTED:
+ if (tc->legacy_port)
+ return TC_PORT_DISCONNECTED;
+ else
+ return TC_PORT_TBT_ALT;
+ }
+}
+
+static enum tc_port_mode
+tc_phy_get_current_mode(struct intel_tc_port *tc)
+{
+ struct drm_i915_private *i915 = tc_to_i915(tc);
+ enum tc_port_mode live_mode = tc_phy_hpd_live_mode(tc);
+ bool phy_is_ready;
+ bool phy_is_owned;
+ enum tc_port_mode mode;
+
+ /*
+ * For legacy ports the IOM firmware initializes the PHY during boot-up
+ * and system resume whether or not a sink is connected. Wait here for
+ * the initialization to get ready.
+ */
+ if (tc->legacy_port)
+ tc_phy_wait_for_ready(tc);
- mode = dig_port->tc_legacy_port ? TC_PORT_LEGACY : TC_PORT_DP_ALT;
- if (live_status_mask) {
- enum tc_port_mode live_mode = fls(live_status_mask) - 1;
+ phy_is_ready = tc_phy_is_ready(tc);
+ phy_is_owned = tc_phy_is_owned(tc);
- if (!drm_WARN_ON(&i915->drm, live_mode == TC_PORT_TBT_ALT))
- mode = live_mode;
+ if (!tc_phy_is_ready_and_owned(tc, phy_is_ready, phy_is_owned)) {
+ mode = get_tc_mode_in_phy_not_owned_state(tc, live_mode);
+ } else {
+ drm_WARN_ON(&i915->drm, live_mode == TC_PORT_TBT_ALT);
+ mode = get_tc_mode_in_phy_owned_state(tc, live_mode);
}
+ drm_dbg_kms(&i915->drm,
+ "Port %s: PHY mode: %s (ready: %s, owned: %s, HPD: %s)\n",
+ tc->port_name,
+ tc_port_mode_name(mode),
+ str_yes_no(phy_is_ready),
+ str_yes_no(phy_is_owned),
+ tc_port_mode_name(live_mode));
+
return mode;
}
+static enum tc_port_mode default_tc_mode(struct intel_tc_port *tc)
+{
+ if (tc->legacy_port)
+ return TC_PORT_LEGACY;
+
+ return TC_PORT_TBT_ALT;
+}
+
static enum tc_port_mode
-intel_tc_port_get_target_mode(struct intel_digital_port *dig_port)
+hpd_mask_to_target_mode(struct intel_tc_port *tc, u32 live_status_mask)
{
- u32 live_status_mask = tc_port_live_status_mask(dig_port);
+ enum tc_port_mode mode = hpd_mask_to_tc_mode(live_status_mask);
- if (live_status_mask)
- return fls(live_status_mask) - 1;
+ if (mode != TC_PORT_DISCONNECTED)
+ return mode;
- return TC_PORT_TBT_ALT;
+ return default_tc_mode(tc);
}
-static void intel_tc_port_reset_mode(struct intel_digital_port *dig_port,
+static enum tc_port_mode
+tc_phy_get_target_mode(struct intel_tc_port *tc)
+{
+ u32 live_status_mask = tc_phy_hpd_live_status(tc);
+
+ return hpd_mask_to_target_mode(tc, live_status_mask);
+}
+
+static void tc_phy_connect(struct intel_tc_port *tc, int required_lanes)
+{
+ struct drm_i915_private *i915 = tc_to_i915(tc);
+ u32 live_status_mask = tc_phy_hpd_live_status(tc);
+ bool connected;
+
+ tc_port_fixup_legacy_flag(tc, live_status_mask);
+
+ tc->mode = hpd_mask_to_target_mode(tc, live_status_mask);
+
+ connected = tc->phy_ops->connect(tc, required_lanes);
+ if (!connected && tc->mode != default_tc_mode(tc)) {
+ tc->mode = default_tc_mode(tc);
+ connected = tc->phy_ops->connect(tc, required_lanes);
+ }
+
+ drm_WARN_ON(&i915->drm, !connected);
+}
+
+static void tc_phy_disconnect(struct intel_tc_port *tc)
+{
+ if (tc->mode != TC_PORT_DISCONNECTED) {
+ tc->phy_ops->disconnect(tc);
+ tc->mode = TC_PORT_DISCONNECTED;
+ }
+}
+
+static void tc_phy_init(struct intel_tc_port *tc)
+{
+ mutex_lock(&tc->lock);
+ tc->phy_ops->init(tc);
+ mutex_unlock(&tc->lock);
+}
+
+static void intel_tc_port_reset_mode(struct intel_tc_port *tc,
int required_lanes, bool force_disconnect)
{
- struct drm_i915_private *i915 = to_i915(dig_port->base.base.dev);
- enum tc_port_mode old_tc_mode = dig_port->tc_mode;
+ struct drm_i915_private *i915 = tc_to_i915(tc);
+ struct intel_digital_port *dig_port = tc->dig_port;
+ enum tc_port_mode old_tc_mode = tc->mode;
intel_display_power_flush_work(i915);
if (!intel_tc_cold_requires_aux_pw(dig_port)) {
@@ -636,115 +1128,173 @@ static void intel_tc_port_reset_mode(struct intel_digital_port *dig_port,
drm_WARN_ON(&i915->drm, aux_powered);
}
- icl_tc_phy_disconnect(dig_port);
+ tc_phy_disconnect(tc);
if (!force_disconnect)
- icl_tc_phy_connect(dig_port, required_lanes);
+ tc_phy_connect(tc, required_lanes);
drm_dbg_kms(&i915->drm, "Port %s: TC port mode reset (%s -> %s)\n",
- dig_port->tc_port_name,
+ tc->port_name,
tc_port_mode_name(old_tc_mode),
- tc_port_mode_name(dig_port->tc_mode));
+ tc_port_mode_name(tc->mode));
}
-static bool intel_tc_port_needs_reset(struct intel_digital_port *dig_port)
+static bool intel_tc_port_needs_reset(struct intel_tc_port *tc)
{
- return intel_tc_port_get_target_mode(dig_port) != dig_port->tc_mode;
+ return tc_phy_get_target_mode(tc) != tc->mode;
}
-static void intel_tc_port_update_mode(struct intel_digital_port *dig_port,
+static void intel_tc_port_update_mode(struct intel_tc_port *tc,
int required_lanes, bool force_disconnect)
{
- enum intel_display_power_domain domain;
- intel_wakeref_t wref;
- bool needs_reset = force_disconnect;
-
- if (!needs_reset) {
- /* Get power domain required to check the hotplug live status. */
- wref = tc_cold_block(dig_port, &domain);
- needs_reset = intel_tc_port_needs_reset(dig_port);
- tc_cold_unblock(dig_port, domain, wref);
- }
+ if (force_disconnect ||
+ intel_tc_port_needs_reset(tc))
+ intel_tc_port_reset_mode(tc, required_lanes, force_disconnect);
+}
- if (!needs_reset)
- return;
+static void __intel_tc_port_get_link(struct intel_tc_port *tc)
+{
+ tc->link_refcount++;
+}
- /* Get power domain required for resetting the mode. */
- wref = tc_cold_block_in_mode(dig_port, TC_PORT_DISCONNECTED, &domain);
+static void __intel_tc_port_put_link(struct intel_tc_port *tc)
+{
+ tc->link_refcount--;
+}
- intel_tc_port_reset_mode(dig_port, required_lanes, force_disconnect);
+static bool tc_port_is_enabled(struct intel_tc_port *tc)
+{
+ struct drm_i915_private *i915 = tc_to_i915(tc);
+ struct intel_digital_port *dig_port = tc->dig_port;
- /* Get power domain matching the new mode after reset. */
- tc_cold_unblock(dig_port, dig_port->tc_lock_power_domain,
- fetch_and_zero(&dig_port->tc_lock_wakeref));
- if (dig_port->tc_mode != TC_PORT_DISCONNECTED)
- dig_port->tc_lock_wakeref = tc_cold_block(dig_port,
- &dig_port->tc_lock_power_domain);
+ assert_tc_port_power_enabled(tc);
- tc_cold_unblock(dig_port, domain, wref);
+ return intel_de_read(i915, DDI_BUF_CTL(dig_port->base.port)) &
+ DDI_BUF_CTL_ENABLE;
}
-static void
-intel_tc_port_link_init_refcount(struct intel_digital_port *dig_port,
- int refcount)
+/**
+ * intel_tc_port_init_mode: Read out HW state and init the given port's TypeC mode
+ * @dig_port: digital port
+ *
+ * Read out the HW state and initialize the TypeC mode of @dig_port. The mode
+ * will be locked until intel_tc_port_sanitize_mode() is called.
+ */
+void intel_tc_port_init_mode(struct intel_digital_port *dig_port)
{
struct drm_i915_private *i915 = to_i915(dig_port->base.base.dev);
+ struct intel_tc_port *tc = to_tc_port(dig_port);
+ bool update_mode = false;
+
+ mutex_lock(&tc->lock);
+
+ drm_WARN_ON(&i915->drm, tc->mode != TC_PORT_DISCONNECTED);
+ drm_WARN_ON(&i915->drm, tc->lock_wakeref);
+ drm_WARN_ON(&i915->drm, tc->link_refcount);
+
+ tc_phy_get_hw_state(tc);
+ /*
+ * Save the initial mode for the state check in
+ * intel_tc_port_sanitize_mode().
+ */
+ tc->init_mode = tc->mode;
+
+ /*
+ * The PHY needs to be connected for AUX to work during HW readout and
+ * MST topology resume, but the PHY mode can only be changed if the
+ * port is disabled.
+ *
+ * An exception is the case where BIOS leaves the PHY incorrectly
+ * disconnected on an enabled legacy port. Work around that by
+ * connecting the PHY even though the port is enabled. This doesn't
+ * cause a problem as the PHY ownership state is ignored by the
+ * IOM/TCSS firmware (only display can own the PHY in that case).
+ */
+ if (!tc_port_is_enabled(tc)) {
+ update_mode = true;
+ } else if (tc->mode == TC_PORT_DISCONNECTED) {
+ drm_WARN_ON(&i915->drm, !tc->legacy_port);
+ drm_err(&i915->drm,
+ "Port %s: PHY disconnected on enabled port, connecting it\n",
+ tc->port_name);
+ update_mode = true;
+ }
+
+ if (update_mode)
+ intel_tc_port_update_mode(tc, 1, false);
- drm_WARN_ON(&i915->drm, dig_port->tc_link_refcount);
- dig_port->tc_link_refcount = refcount;
+ /* Prevent changing tc->mode until intel_tc_port_sanitize_mode() is called. */
+ __intel_tc_port_get_link(tc);
+
+ mutex_unlock(&tc->lock);
}
-void intel_tc_port_sanitize(struct intel_digital_port *dig_port)
+static bool tc_port_has_active_links(struct intel_tc_port *tc,
+ const struct intel_crtc_state *crtc_state)
{
- struct drm_i915_private *i915 = to_i915(dig_port->base.base.dev);
- struct intel_encoder *encoder = &dig_port->base;
- intel_wakeref_t tc_cold_wref;
- enum intel_display_power_domain domain;
+ struct drm_i915_private *i915 = tc_to_i915(tc);
+ struct intel_digital_port *dig_port = tc->dig_port;
+ enum icl_port_dpll_id pll_type = ICL_PORT_DPLL_DEFAULT;
int active_links = 0;
- mutex_lock(&dig_port->tc_lock);
-
- if (dig_port->dp.is_mst)
+ if (dig_port->dp.is_mst) {
+ /* TODO: get the PLL type for MST, once HW readout is done for it. */
active_links = intel_dp_mst_encoder_active_links(dig_port);
- else if (encoder->base.crtc)
- active_links = to_intel_crtc(encoder->base.crtc)->active;
+ } else if (crtc_state && crtc_state->hw.active) {
+ pll_type = intel_ddi_port_pll_type(&dig_port->base, crtc_state);
+ active_links = 1;
+ }
- drm_WARN_ON(&i915->drm, dig_port->tc_mode != TC_PORT_DISCONNECTED);
- drm_WARN_ON(&i915->drm, dig_port->tc_lock_wakeref);
+ if (active_links && !tc_phy_is_connected(tc, pll_type))
+ drm_err(&i915->drm,
+ "Port %s: PHY disconnected with %d active link(s)\n",
+ tc->port_name, active_links);
- tc_cold_wref = tc_cold_block(dig_port, &domain);
+ return active_links;
+}
- dig_port->tc_mode = intel_tc_port_get_current_mode(dig_port);
- if (active_links) {
- if (!icl_tc_phy_is_connected(dig_port))
- drm_dbg_kms(&i915->drm,
- "Port %s: PHY disconnected with %d active link(s)\n",
- dig_port->tc_port_name, active_links);
- intel_tc_port_link_init_refcount(dig_port, active_links);
+/**
+ * intel_tc_port_sanitize_mode: Sanitize the given port's TypeC mode
+ * @dig_port: digital port
+ * @crtc_state: atomic state of CRTC connected to @dig_port
+ *
+ * Sanitize @dig_port's TypeC mode wrt. the encoder's state right after driver
+ * loading and system resume:
+ * If the encoder is enabled keep the TypeC mode/PHY connected state locked until
+ * the encoder is disabled.
+ * If the encoder is disabled make sure the PHY is disconnected.
+ * @crtc_state is valid if @dig_port is enabled, NULL otherwise.
+ */
+void intel_tc_port_sanitize_mode(struct intel_digital_port *dig_port,
+ const struct intel_crtc_state *crtc_state)
+{
+ struct drm_i915_private *i915 = to_i915(dig_port->base.base.dev);
+ struct intel_tc_port *tc = to_tc_port(dig_port);
- dig_port->tc_lock_wakeref = tc_cold_block(dig_port,
- &dig_port->tc_lock_power_domain);
- } else {
+ mutex_lock(&tc->lock);
+
+ drm_WARN_ON(&i915->drm, tc->link_refcount != 1);
+ if (!tc_port_has_active_links(tc, crtc_state)) {
/*
* TBT-alt is the default mode in any case the PHY ownership is not
* held (regardless of the sink's connected live state), so
* we'll just switch to disconnected mode from it here without
* a note.
*/
- if (dig_port->tc_mode != TC_PORT_TBT_ALT)
+ if (tc->init_mode != TC_PORT_TBT_ALT &&
+ tc->init_mode != TC_PORT_DISCONNECTED)
drm_dbg_kms(&i915->drm,
"Port %s: PHY left in %s mode on disabled port, disconnecting it\n",
- dig_port->tc_port_name,
- tc_port_mode_name(dig_port->tc_mode));
- icl_tc_phy_disconnect(dig_port);
+ tc->port_name,
+ tc_port_mode_name(tc->init_mode));
+ tc_phy_disconnect(tc);
+ __intel_tc_port_put_link(tc);
}
- tc_cold_unblock(dig_port, domain, tc_cold_wref);
-
drm_dbg_kms(&i915->drm, "Port %s: sanitize mode (%s)\n",
- dig_port->tc_port_name,
- tc_port_mode_name(dig_port->tc_mode));
+ tc->port_name,
+ tc_port_mode_name(tc->mode));
- mutex_unlock(&dig_port->tc_lock);
+ mutex_unlock(&tc->lock);
}
/*
@@ -757,63 +1307,73 @@ void intel_tc_port_sanitize(struct intel_digital_port *dig_port)
* connected ports are usable, and avoids exposing to the users objects they
* can't really use.
*/
-bool intel_tc_port_connected(struct intel_encoder *encoder)
+bool intel_tc_port_connected_locked(struct intel_encoder *encoder)
{
struct intel_digital_port *dig_port = enc_to_dig_port(encoder);
- bool is_connected;
+ struct drm_i915_private *i915 = to_i915(dig_port->base.base.dev);
+ struct intel_tc_port *tc = to_tc_port(dig_port);
+ u32 mask = ~0;
- intel_tc_port_lock(dig_port);
+ drm_WARN_ON(&i915->drm, !intel_tc_port_ref_held(dig_port));
- is_connected = tc_port_live_status_mask(dig_port) &
- BIT(dig_port->tc_mode);
+ if (tc->mode != TC_PORT_DISCONNECTED)
+ mask = BIT(tc->mode);
- intel_tc_port_unlock(dig_port);
+ return tc_phy_hpd_live_status(tc) & mask;
+}
+
+bool intel_tc_port_connected(struct intel_encoder *encoder)
+{
+ struct intel_digital_port *dig_port = enc_to_dig_port(encoder);
+ struct intel_tc_port *tc = to_tc_port(dig_port);
+ bool is_connected;
+
+ mutex_lock(&tc->lock);
+ is_connected = intel_tc_port_connected_locked(encoder);
+ mutex_unlock(&tc->lock);
return is_connected;
}
-static void __intel_tc_port_lock(struct intel_digital_port *dig_port,
+static void __intel_tc_port_lock(struct intel_tc_port *tc,
int required_lanes)
{
- struct drm_i915_private *i915 = to_i915(dig_port->base.base.dev);
+ struct drm_i915_private *i915 = tc_to_i915(tc);
- mutex_lock(&dig_port->tc_lock);
+ mutex_lock(&tc->lock);
- cancel_delayed_work(&dig_port->tc_disconnect_phy_work);
+ cancel_delayed_work(&tc->disconnect_phy_work);
- if (!dig_port->tc_link_refcount)
- intel_tc_port_update_mode(dig_port, required_lanes,
+ if (!tc->link_refcount)
+ intel_tc_port_update_mode(tc, required_lanes,
false);
- drm_WARN_ON(&i915->drm, dig_port->tc_mode == TC_PORT_DISCONNECTED);
- drm_WARN_ON(&i915->drm, dig_port->tc_mode != TC_PORT_TBT_ALT &&
- !tc_phy_is_owned(dig_port));
+ drm_WARN_ON(&i915->drm, tc->mode == TC_PORT_DISCONNECTED);
+ drm_WARN_ON(&i915->drm, tc->mode != TC_PORT_TBT_ALT &&
+ !tc_phy_is_owned(tc));
}
void intel_tc_port_lock(struct intel_digital_port *dig_port)
{
- __intel_tc_port_lock(dig_port, 1);
+ __intel_tc_port_lock(to_tc_port(dig_port), 1);
}
-/**
- * intel_tc_port_disconnect_phy_work: disconnect TypeC PHY from display port
- * @dig_port: digital port
- *
+/*
* Disconnect the given digital port from its TypeC PHY (handing back the
* control of the PHY to the TypeC subsystem). This will happen in a delayed
* manner after each aux transactions and modeset disables.
*/
static void intel_tc_port_disconnect_phy_work(struct work_struct *work)
{
- struct intel_digital_port *dig_port =
- container_of(work, struct intel_digital_port, tc_disconnect_phy_work.work);
+ struct intel_tc_port *tc =
+ container_of(work, struct intel_tc_port, disconnect_phy_work.work);
- mutex_lock(&dig_port->tc_lock);
+ mutex_lock(&tc->lock);
- if (!dig_port->tc_link_refcount)
- intel_tc_port_update_mode(dig_port, 1, true);
+ if (!tc->link_refcount)
+ intel_tc_port_update_mode(tc, 1, true);
- mutex_unlock(&dig_port->tc_lock);
+ mutex_unlock(&tc->lock);
}
/**
@@ -824,103 +1384,91 @@ static void intel_tc_port_disconnect_phy_work(struct work_struct *work)
*/
void intel_tc_port_flush_work(struct intel_digital_port *dig_port)
{
- flush_delayed_work(&dig_port->tc_disconnect_phy_work);
+ flush_delayed_work(&to_tc_port(dig_port)->disconnect_phy_work);
}
void intel_tc_port_unlock(struct intel_digital_port *dig_port)
{
- if (!dig_port->tc_link_refcount && dig_port->tc_mode != TC_PORT_DISCONNECTED)
- queue_delayed_work(system_unbound_wq, &dig_port->tc_disconnect_phy_work,
+ struct intel_tc_port *tc = to_tc_port(dig_port);
+
+ if (!tc->link_refcount && tc->mode != TC_PORT_DISCONNECTED)
+ queue_delayed_work(system_unbound_wq, &tc->disconnect_phy_work,
msecs_to_jiffies(1000));
- mutex_unlock(&dig_port->tc_lock);
+ mutex_unlock(&tc->lock);
}
bool intel_tc_port_ref_held(struct intel_digital_port *dig_port)
{
- return mutex_is_locked(&dig_port->tc_lock) ||
- dig_port->tc_link_refcount;
+ struct intel_tc_port *tc = to_tc_port(dig_port);
+
+ return mutex_is_locked(&tc->lock) ||
+ tc->link_refcount;
}
void intel_tc_port_get_link(struct intel_digital_port *dig_port,
int required_lanes)
{
- __intel_tc_port_lock(dig_port, required_lanes);
- dig_port->tc_link_refcount++;
+ struct intel_tc_port *tc = to_tc_port(dig_port);
+
+ __intel_tc_port_lock(tc, required_lanes);
+ __intel_tc_port_get_link(tc);
intel_tc_port_unlock(dig_port);
}
void intel_tc_port_put_link(struct intel_digital_port *dig_port)
{
+ struct intel_tc_port *tc = to_tc_port(dig_port);
+
intel_tc_port_lock(dig_port);
- --dig_port->tc_link_refcount;
+ __intel_tc_port_put_link(tc);
intel_tc_port_unlock(dig_port);
-
- /*
- * Disconnecting the PHY after the PHY's PLL gets disabled may
- * hang the system on ADL-P, so disconnect the PHY here synchronously.
- * TODO: remove this once the root cause of the ordering requirement
- * is found/fixed.
- */
- intel_tc_port_flush_work(dig_port);
}
-static bool
-tc_has_modular_fia(struct drm_i915_private *i915, struct intel_digital_port *dig_port)
+int intel_tc_port_init(struct intel_digital_port *dig_port, bool is_legacy)
{
- enum intel_display_power_domain domain;
- intel_wakeref_t wakeref;
- u32 val;
+ struct drm_i915_private *i915 = to_i915(dig_port->base.base.dev);
+ struct intel_tc_port *tc;
+ enum port port = dig_port->base.port;
+ enum tc_port tc_port = intel_port_to_tc(i915, port);
- if (!INTEL_INFO(i915)->display.has_modular_fia)
- return false;
+ if (drm_WARN_ON(&i915->drm, tc_port == TC_PORT_NONE))
+ return -EINVAL;
- mutex_lock(&dig_port->tc_lock);
- wakeref = tc_cold_block(dig_port, &domain);
- val = intel_uncore_read(&i915->uncore, PORT_TX_DFLEXDPSP(FIA1));
- tc_cold_unblock(dig_port, domain, wakeref);
- mutex_unlock(&dig_port->tc_lock);
+ tc = kzalloc(sizeof(*tc), GFP_KERNEL);
+ if (!tc)
+ return -ENOMEM;
- drm_WARN_ON(&i915->drm, val == 0xffffffff);
+ dig_port->tc = tc;
+ tc->dig_port = dig_port;
- return val & MODULAR_FIA_MASK;
-}
+ if (DISPLAY_VER(i915) >= 13)
+ tc->phy_ops = &adlp_tc_phy_ops;
+ else if (DISPLAY_VER(i915) >= 12)
+ tc->phy_ops = &tgl_tc_phy_ops;
+ else
+ tc->phy_ops = &icl_tc_phy_ops;
-static void
-tc_port_load_fia_params(struct drm_i915_private *i915, struct intel_digital_port *dig_port)
-{
- enum port port = dig_port->base.port;
- enum tc_port tc_port = intel_port_to_tc(i915, port);
+ snprintf(tc->port_name, sizeof(tc->port_name),
+ "%c/TC#%d", port_name(port), tc_port + 1);
- /*
- * Each Modular FIA instance houses 2 TC ports. In SOC that has more
- * than two TC ports, there are multiple instances of Modular FIA.
- */
- if (tc_has_modular_fia(i915, dig_port)) {
- dig_port->tc_phy_fia = tc_port / 2;
- dig_port->tc_phy_fia_idx = tc_port % 2;
- } else {
- dig_port->tc_phy_fia = FIA1;
- dig_port->tc_phy_fia_idx = tc_port;
- }
-}
+ mutex_init(&tc->lock);
+ INIT_DELAYED_WORK(&tc->disconnect_phy_work, intel_tc_port_disconnect_phy_work);
+ tc->legacy_port = is_legacy;
+ tc->mode = TC_PORT_DISCONNECTED;
+ tc->link_refcount = 0;
-void intel_tc_port_init(struct intel_digital_port *dig_port, bool is_legacy)
-{
- struct drm_i915_private *i915 = to_i915(dig_port->base.base.dev);
- enum port port = dig_port->base.port;
- enum tc_port tc_port = intel_port_to_tc(i915, port);
+ tc_phy_init(tc);
- if (drm_WARN_ON(&i915->drm, tc_port == TC_PORT_NONE))
- return;
+ intel_tc_port_init_mode(dig_port);
- snprintf(dig_port->tc_port_name, sizeof(dig_port->tc_port_name),
- "%c/TC#%d", port_name(port), tc_port + 1);
+ return 0;
+}
+
+void intel_tc_port_cleanup(struct intel_digital_port *dig_port)
+{
+ intel_tc_port_flush_work(dig_port);
- mutex_init(&dig_port->tc_lock);
- INIT_DELAYED_WORK(&dig_port->tc_disconnect_phy_work, intel_tc_port_disconnect_phy_work);
- dig_port->tc_legacy_port = is_legacy;
- dig_port->tc_mode = TC_PORT_DISCONNECTED;
- dig_port->tc_link_refcount = 0;
- tc_port_load_fia_params(i915, dig_port);
+ kfree(dig_port->tc);
+ dig_port->tc = NULL;
}
diff --git a/drivers/gpu/drm/i915/display/intel_tc.h b/drivers/gpu/drm/i915/display/intel_tc.h
index 6b47b29f551c..dd0810f9ea95 100644
--- a/drivers/gpu/drm/i915/display/intel_tc.h
+++ b/drivers/gpu/drm/i915/display/intel_tc.h
@@ -6,9 +6,9 @@
#ifndef __INTEL_TC_H__
#define __INTEL_TC_H__
-#include <linux/mutex.h>
#include <linux/types.h>
+struct intel_crtc_state;
struct intel_digital_port;
struct intel_encoder;
@@ -17,6 +17,7 @@ bool intel_tc_port_in_dp_alt_mode(struct intel_digital_port *dig_port);
bool intel_tc_port_in_legacy_mode(struct intel_digital_port *dig_port);
bool intel_tc_port_connected(struct intel_encoder *encoder);
+bool intel_tc_port_connected_locked(struct intel_encoder *encoder);
u32 intel_tc_port_get_lane_mask(struct intel_digital_port *dig_port);
u32 intel_tc_port_get_pin_assignment_mask(struct intel_digital_port *dig_port);
@@ -24,7 +25,9 @@ int intel_tc_port_fia_max_lane_count(struct intel_digital_port *dig_port);
void intel_tc_port_set_fia_lane_count(struct intel_digital_port *dig_port,
int required_lanes);
-void intel_tc_port_sanitize(struct intel_digital_port *dig_port);
+void intel_tc_port_init_mode(struct intel_digital_port *dig_port);
+void intel_tc_port_sanitize_mode(struct intel_digital_port *dig_port,
+ const struct intel_crtc_state *crtc_state);
void intel_tc_port_lock(struct intel_digital_port *dig_port);
void intel_tc_port_unlock(struct intel_digital_port *dig_port);
void intel_tc_port_flush_work(struct intel_digital_port *dig_port);
@@ -33,7 +36,8 @@ void intel_tc_port_get_link(struct intel_digital_port *dig_port,
void intel_tc_port_put_link(struct intel_digital_port *dig_port);
bool intel_tc_port_ref_held(struct intel_digital_port *dig_port);
-void intel_tc_port_init(struct intel_digital_port *dig_port, bool is_legacy);
+int intel_tc_port_init(struct intel_digital_port *dig_port, bool is_legacy);
+void intel_tc_port_cleanup(struct intel_digital_port *dig_port);
bool intel_tc_cold_requires_aux_pw(struct intel_digital_port *dig_port);
diff --git a/drivers/gpu/drm/i915/display/intel_tv.c b/drivers/gpu/drm/i915/display/intel_tv.c
index dcf89d701f0f..557ec5b62afa 100644
--- a/drivers/gpu/drm/i915/display/intel_tv.c
+++ b/drivers/gpu/drm/i915/display/intel_tv.c
@@ -35,6 +35,8 @@
#include <drm/drm_edid.h>
#include "i915_drv.h"
+#include "i915_irq.h"
+#include "i915_reg.h"
#include "intel_connector.h"
#include "intel_crtc.h"
#include "intel_de.h"
@@ -42,6 +44,7 @@
#include "intel_dpll.h"
#include "intel_hotplug.h"
#include "intel_tv.h"
+#include "intel_tv_regs.h"
enum tv_margin {
TV_MARGIN_LEFT, TV_MARGIN_TOP,
@@ -928,8 +931,7 @@ intel_enable_tv(struct intel_atomic_state *state,
/* Prevents vblank waits from timing out in intel_tv_detect_type() */
intel_crtc_wait_for_next_vblank(to_intel_crtc(pipe_config->uapi.crtc));
- intel_de_write(dev_priv, TV_CTL,
- intel_de_read(dev_priv, TV_CTL) | TV_ENC_ENABLE);
+ intel_de_rmw(dev_priv, TV_CTL, 0, TV_ENC_ENABLE);
}
static void
@@ -941,8 +943,7 @@ intel_disable_tv(struct intel_atomic_state *state,
struct drm_device *dev = encoder->base.dev;
struct drm_i915_private *dev_priv = to_i915(dev);
- intel_de_write(dev_priv, TV_CTL,
- intel_de_read(dev_priv, TV_CTL) & ~TV_ENC_ENABLE);
+ intel_de_rmw(dev_priv, TV_CTL, TV_ENC_ENABLE, 0);
}
static const struct tv_mode *intel_tv_mode_find(const struct drm_connector_state *conn_state)
@@ -1880,18 +1881,56 @@ static const struct drm_encoder_funcs intel_tv_enc_funcs = {
.destroy = intel_encoder_destroy,
};
+static void intel_tv_add_properties(struct drm_connector *connector)
+{
+ struct drm_i915_private *i915 = to_i915(connector->dev);
+ struct drm_connector_state *conn_state = connector->state;
+ const char *tv_format_names[ARRAY_SIZE(tv_modes)];
+ int i;
+
+ /* BIOS margin values */
+ conn_state->tv.margins.left = 54;
+ conn_state->tv.margins.top = 36;
+ conn_state->tv.margins.right = 46;
+ conn_state->tv.margins.bottom = 37;
+
+ conn_state->tv.mode = 0;
+
+ /* Create TV properties then attach current values */
+ for (i = 0; i < ARRAY_SIZE(tv_modes); i++) {
+ /* 1080p50/1080p60 not supported on gen3 */
+ if (DISPLAY_VER(i915) == 3 && tv_modes[i].oversample == 1)
+ break;
+
+ tv_format_names[i] = tv_modes[i].name;
+ }
+ drm_mode_create_tv_properties_legacy(&i915->drm, i, tv_format_names);
+
+ drm_object_attach_property(&connector->base,
+ i915->drm.mode_config.legacy_tv_mode_property,
+ conn_state->tv.mode);
+ drm_object_attach_property(&connector->base,
+ i915->drm.mode_config.tv_left_margin_property,
+ conn_state->tv.margins.left);
+ drm_object_attach_property(&connector->base,
+ i915->drm.mode_config.tv_top_margin_property,
+ conn_state->tv.margins.top);
+ drm_object_attach_property(&connector->base,
+ i915->drm.mode_config.tv_right_margin_property,
+ conn_state->tv.margins.right);
+ drm_object_attach_property(&connector->base,
+ i915->drm.mode_config.tv_bottom_margin_property,
+ conn_state->tv.margins.bottom);
+}
+
void
intel_tv_init(struct drm_i915_private *dev_priv)
{
- struct drm_device *dev = &dev_priv->drm;
struct drm_connector *connector;
struct intel_tv *intel_tv;
struct intel_encoder *intel_encoder;
struct intel_connector *intel_connector;
u32 tv_dac_on, tv_dac_off, save_tv_dac;
- const char *tv_format_names[ARRAY_SIZE(tv_modes)];
- int i, initial_mode = 0;
- struct drm_connector_state *state;
if ((intel_de_read(dev_priv, TV_CTL) & TV_FUSE_STATE_MASK) == TV_FUSE_STATE_DISABLED)
return;
@@ -1937,7 +1976,6 @@ intel_tv_init(struct drm_i915_private *dev_priv)
intel_encoder = &intel_tv->base;
connector = &intel_connector->base;
- state = connector->state;
/*
* The documentation, for the older chipsets at least, recommend
@@ -1951,10 +1989,10 @@ intel_tv_init(struct drm_i915_private *dev_priv)
*/
intel_connector->polled = DRM_CONNECTOR_POLL_CONNECT;
- drm_connector_init(dev, connector, &intel_tv_connector_funcs,
+ drm_connector_init(&dev_priv->drm, connector, &intel_tv_connector_funcs,
DRM_MODE_CONNECTOR_SVIDEO);
- drm_encoder_init(dev, &intel_encoder->base, &intel_tv_enc_funcs,
+ drm_encoder_init(&dev_priv->drm, &intel_encoder->base, &intel_tv_enc_funcs,
DRM_MODE_ENCODER_TVDAC, "TV");
intel_encoder->compute_config = intel_tv_compute_config;
@@ -1974,41 +2012,7 @@ intel_tv_init(struct drm_i915_private *dev_priv)
intel_encoder->cloneable = 0;
intel_tv->type = DRM_MODE_CONNECTOR_Unknown;
- /* BIOS margin values */
- state->tv.margins.left = 54;
- state->tv.margins.top = 36;
- state->tv.margins.right = 46;
- state->tv.margins.bottom = 37;
-
- state->tv.mode = initial_mode;
-
drm_connector_helper_add(connector, &intel_tv_connector_helper_funcs);
- connector->interlace_allowed = false;
- connector->doublescan_allowed = false;
- /* Create TV properties then attach current values */
- for (i = 0; i < ARRAY_SIZE(tv_modes); i++) {
- /* 1080p50/1080p60 not supported on gen3 */
- if (DISPLAY_VER(dev_priv) == 3 &&
- tv_modes[i].oversample == 1)
- break;
-
- tv_format_names[i] = tv_modes[i].name;
- }
- drm_mode_create_tv_properties(dev, i, tv_format_names);
-
- drm_object_attach_property(&connector->base, dev->mode_config.tv_mode_property,
- state->tv.mode);
- drm_object_attach_property(&connector->base,
- dev->mode_config.tv_left_margin_property,
- state->tv.margins.left);
- drm_object_attach_property(&connector->base,
- dev->mode_config.tv_top_margin_property,
- state->tv.margins.top);
- drm_object_attach_property(&connector->base,
- dev->mode_config.tv_right_margin_property,
- state->tv.margins.right);
- drm_object_attach_property(&connector->base,
- dev->mode_config.tv_bottom_margin_property,
- state->tv.margins.bottom);
+ intel_tv_add_properties(connector);
}
diff --git a/drivers/gpu/drm/i915/display/intel_tv_regs.h b/drivers/gpu/drm/i915/display/intel_tv_regs.h
new file mode 100644
index 000000000000..ab25aeb3c423
--- /dev/null
+++ b/drivers/gpu/drm/i915/display/intel_tv_regs.h
@@ -0,0 +1,490 @@
+/* SPDX-License-Identifier: MIT */
+/*
+ * Copyright © 2023 Intel Corporation
+ */
+
+#ifndef __INTEL_TV_REGS_H__
+#define __INTEL_TV_REGS_H__
+
+#include "intel_display_reg_defs.h"
+
+/* TV port control */
+#define TV_CTL _MMIO(0x68000)
+/* Enables the TV encoder */
+# define TV_ENC_ENABLE (1 << 31)
+/* Sources the TV encoder input from pipe B instead of A. */
+# define TV_ENC_PIPE_SEL_SHIFT 30
+# define TV_ENC_PIPE_SEL_MASK (1 << 30)
+# define TV_ENC_PIPE_SEL(pipe) ((pipe) << 30)
+/* Outputs composite video (DAC A only) */
+# define TV_ENC_OUTPUT_COMPOSITE (0 << 28)
+/* Outputs SVideo video (DAC B/C) */
+# define TV_ENC_OUTPUT_SVIDEO (1 << 28)
+/* Outputs Component video (DAC A/B/C) */
+# define TV_ENC_OUTPUT_COMPONENT (2 << 28)
+/* Outputs Composite and SVideo (DAC A/B/C) */
+# define TV_ENC_OUTPUT_SVIDEO_COMPOSITE (3 << 28)
+# define TV_TRILEVEL_SYNC (1 << 21)
+/* Enables slow sync generation (945GM only) */
+# define TV_SLOW_SYNC (1 << 20)
+/* Selects 4x oversampling for 480i and 576p */
+# define TV_OVERSAMPLE_4X (0 << 18)
+/* Selects 2x oversampling for 720p and 1080i */
+# define TV_OVERSAMPLE_2X (1 << 18)
+/* Selects no oversampling for 1080p */
+# define TV_OVERSAMPLE_NONE (2 << 18)
+/* Selects 8x oversampling */
+# define TV_OVERSAMPLE_8X (3 << 18)
+# define TV_OVERSAMPLE_MASK (3 << 18)
+/* Selects progressive mode rather than interlaced */
+# define TV_PROGRESSIVE (1 << 17)
+/* Sets the colorburst to PAL mode. Required for non-M PAL modes. */
+# define TV_PAL_BURST (1 << 16)
+/* Field for setting delay of Y compared to C */
+# define TV_YC_SKEW_MASK (7 << 12)
+/* Enables a fix for 480p/576p standard definition modes on the 915GM only */
+# define TV_ENC_SDP_FIX (1 << 11)
+/*
+ * Enables a fix for the 915GM only.
+ *
+ * Not sure what it does.
+ */
+# define TV_ENC_C0_FIX (1 << 10)
+/* Bits that must be preserved by software */
+# define TV_CTL_SAVE ((1 << 11) | (3 << 9) | (7 << 6) | 0xf)
+# define TV_FUSE_STATE_MASK (3 << 4)
+/* Read-only state that reports all features enabled */
+# define TV_FUSE_STATE_ENABLED (0 << 4)
+/* Read-only state that reports that Macrovision is disabled in hardware*/
+# define TV_FUSE_STATE_NO_MACROVISION (1 << 4)
+/* Read-only state that reports that TV-out is disabled in hardware. */
+# define TV_FUSE_STATE_DISABLED (2 << 4)
+/* Normal operation */
+# define TV_TEST_MODE_NORMAL (0 << 0)
+/* Encoder test pattern 1 - combo pattern */
+# define TV_TEST_MODE_PATTERN_1 (1 << 0)
+/* Encoder test pattern 2 - full screen vertical 75% color bars */
+# define TV_TEST_MODE_PATTERN_2 (2 << 0)
+/* Encoder test pattern 3 - full screen horizontal 75% color bars */
+# define TV_TEST_MODE_PATTERN_3 (3 << 0)
+/* Encoder test pattern 4 - random noise */
+# define TV_TEST_MODE_PATTERN_4 (4 << 0)
+/* Encoder test pattern 5 - linear color ramps */
+# define TV_TEST_MODE_PATTERN_5 (5 << 0)
+/*
+ * This test mode forces the DACs to 50% of full output.
+ *
+ * This is used for load detection in combination with TVDAC_SENSE_MASK
+ */
+# define TV_TEST_MODE_MONITOR_DETECT (7 << 0)
+# define TV_TEST_MODE_MASK (7 << 0)
+
+#define TV_DAC _MMIO(0x68004)
+# define TV_DAC_SAVE 0x00ffff00
+/*
+ * Reports that DAC state change logic has reported change (RO).
+ *
+ * This gets cleared when TV_DAC_STATE_EN is cleared
+*/
+# define TVDAC_STATE_CHG (1 << 31)
+# define TVDAC_SENSE_MASK (7 << 28)
+/* Reports that DAC A voltage is above the detect threshold */
+# define TVDAC_A_SENSE (1 << 30)
+/* Reports that DAC B voltage is above the detect threshold */
+# define TVDAC_B_SENSE (1 << 29)
+/* Reports that DAC C voltage is above the detect threshold */
+# define TVDAC_C_SENSE (1 << 28)
+/*
+ * Enables DAC state detection logic, for load-based TV detection.
+ *
+ * The PLL of the chosen pipe (in TV_CTL) must be running, and the encoder set
+ * to off, for load detection to work.
+ */
+# define TVDAC_STATE_CHG_EN (1 << 27)
+/* Sets the DAC A sense value to high */
+# define TVDAC_A_SENSE_CTL (1 << 26)
+/* Sets the DAC B sense value to high */
+# define TVDAC_B_SENSE_CTL (1 << 25)
+/* Sets the DAC C sense value to high */
+# define TVDAC_C_SENSE_CTL (1 << 24)
+/* Overrides the ENC_ENABLE and DAC voltage levels */
+# define DAC_CTL_OVERRIDE (1 << 7)
+/* Sets the slew rate. Must be preserved in software */
+# define ENC_TVDAC_SLEW_FAST (1 << 6)
+# define DAC_A_1_3_V (0 << 4)
+# define DAC_A_1_1_V (1 << 4)
+# define DAC_A_0_7_V (2 << 4)
+# define DAC_A_MASK (3 << 4)
+# define DAC_B_1_3_V (0 << 2)
+# define DAC_B_1_1_V (1 << 2)
+# define DAC_B_0_7_V (2 << 2)
+# define DAC_B_MASK (3 << 2)
+# define DAC_C_1_3_V (0 << 0)
+# define DAC_C_1_1_V (1 << 0)
+# define DAC_C_0_7_V (2 << 0)
+# define DAC_C_MASK (3 << 0)
+
+/*
+ * CSC coefficients are stored in a floating point format with 9 bits of
+ * mantissa and 2 or 3 bits of exponent. The exponent is represented as 2**-n,
+ * where 2-bit exponents are unsigned n, and 3-bit exponents are signed n with
+ * -1 (0x3) being the only legal negative value.
+ */
+#define TV_CSC_Y _MMIO(0x68010)
+# define TV_RY_MASK 0x07ff0000
+# define TV_RY_SHIFT 16
+# define TV_GY_MASK 0x00000fff
+# define TV_GY_SHIFT 0
+
+#define TV_CSC_Y2 _MMIO(0x68014)
+# define TV_BY_MASK 0x07ff0000
+# define TV_BY_SHIFT 16
+/*
+ * Y attenuation for component video.
+ *
+ * Stored in 1.9 fixed point.
+ */
+# define TV_AY_MASK 0x000003ff
+# define TV_AY_SHIFT 0
+
+#define TV_CSC_U _MMIO(0x68018)
+# define TV_RU_MASK 0x07ff0000
+# define TV_RU_SHIFT 16
+# define TV_GU_MASK 0x000007ff
+# define TV_GU_SHIFT 0
+
+#define TV_CSC_U2 _MMIO(0x6801c)
+# define TV_BU_MASK 0x07ff0000
+# define TV_BU_SHIFT 16
+/*
+ * U attenuation for component video.
+ *
+ * Stored in 1.9 fixed point.
+ */
+# define TV_AU_MASK 0x000003ff
+# define TV_AU_SHIFT 0
+
+#define TV_CSC_V _MMIO(0x68020)
+# define TV_RV_MASK 0x0fff0000
+# define TV_RV_SHIFT 16
+# define TV_GV_MASK 0x000007ff
+# define TV_GV_SHIFT 0
+
+#define TV_CSC_V2 _MMIO(0x68024)
+# define TV_BV_MASK 0x07ff0000
+# define TV_BV_SHIFT 16
+/*
+ * V attenuation for component video.
+ *
+ * Stored in 1.9 fixed point.
+ */
+# define TV_AV_MASK 0x000007ff
+# define TV_AV_SHIFT 0
+
+#define TV_CLR_KNOBS _MMIO(0x68028)
+/* 2s-complement brightness adjustment */
+# define TV_BRIGHTNESS_MASK 0xff000000
+# define TV_BRIGHTNESS_SHIFT 24
+/* Contrast adjustment, as a 2.6 unsigned floating point number */
+# define TV_CONTRAST_MASK 0x00ff0000
+# define TV_CONTRAST_SHIFT 16
+/* Saturation adjustment, as a 2.6 unsigned floating point number */
+# define TV_SATURATION_MASK 0x0000ff00
+# define TV_SATURATION_SHIFT 8
+/* Hue adjustment, as an integer phase angle in degrees */
+# define TV_HUE_MASK 0x000000ff
+# define TV_HUE_SHIFT 0
+
+#define TV_CLR_LEVEL _MMIO(0x6802c)
+/* Controls the DAC level for black */
+# define TV_BLACK_LEVEL_MASK 0x01ff0000
+# define TV_BLACK_LEVEL_SHIFT 16
+/* Controls the DAC level for blanking */
+# define TV_BLANK_LEVEL_MASK 0x000001ff
+# define TV_BLANK_LEVEL_SHIFT 0
+
+#define TV_H_CTL_1 _MMIO(0x68030)
+/* Number of pixels in the hsync. */
+# define TV_HSYNC_END_MASK 0x1fff0000
+# define TV_HSYNC_END_SHIFT 16
+/* Total number of pixels minus one in the line (display and blanking). */
+# define TV_HTOTAL_MASK 0x00001fff
+# define TV_HTOTAL_SHIFT 0
+
+#define TV_H_CTL_2 _MMIO(0x68034)
+/* Enables the colorburst (needed for non-component color) */
+# define TV_BURST_ENA (1 << 31)
+/* Offset of the colorburst from the start of hsync, in pixels minus one. */
+# define TV_HBURST_START_SHIFT 16
+# define TV_HBURST_START_MASK 0x1fff0000
+/* Length of the colorburst */
+# define TV_HBURST_LEN_SHIFT 0
+# define TV_HBURST_LEN_MASK 0x0001fff
+
+#define TV_H_CTL_3 _MMIO(0x68038)
+/* End of hblank, measured in pixels minus one from start of hsync */
+# define TV_HBLANK_END_SHIFT 16
+# define TV_HBLANK_END_MASK 0x1fff0000
+/* Start of hblank, measured in pixels minus one from start of hsync */
+# define TV_HBLANK_START_SHIFT 0
+# define TV_HBLANK_START_MASK 0x0001fff
+
+#define TV_V_CTL_1 _MMIO(0x6803c)
+/* XXX */
+# define TV_NBR_END_SHIFT 16
+# define TV_NBR_END_MASK 0x07ff0000
+/* XXX */
+# define TV_VI_END_F1_SHIFT 8
+# define TV_VI_END_F1_MASK 0x00003f00
+/* XXX */
+# define TV_VI_END_F2_SHIFT 0
+# define TV_VI_END_F2_MASK 0x0000003f
+
+#define TV_V_CTL_2 _MMIO(0x68040)
+/* Length of vsync, in half lines */
+# define TV_VSYNC_LEN_MASK 0x07ff0000
+# define TV_VSYNC_LEN_SHIFT 16
+/* Offset of the start of vsync in field 1, measured in one less than the
+ * number of half lines.
+ */
+# define TV_VSYNC_START_F1_MASK 0x00007f00
+# define TV_VSYNC_START_F1_SHIFT 8
+/*
+ * Offset of the start of vsync in field 2, measured in one less than the
+ * number of half lines.
+ */
+# define TV_VSYNC_START_F2_MASK 0x0000007f
+# define TV_VSYNC_START_F2_SHIFT 0
+
+#define TV_V_CTL_3 _MMIO(0x68044)
+/* Enables generation of the equalization signal */
+# define TV_EQUAL_ENA (1 << 31)
+/* Length of vsync, in half lines */
+# define TV_VEQ_LEN_MASK 0x007f0000
+# define TV_VEQ_LEN_SHIFT 16
+/* Offset of the start of equalization in field 1, measured in one less than
+ * the number of half lines.
+ */
+# define TV_VEQ_START_F1_MASK 0x0007f00
+# define TV_VEQ_START_F1_SHIFT 8
+/*
+ * Offset of the start of equalization in field 2, measured in one less than
+ * the number of half lines.
+ */
+# define TV_VEQ_START_F2_MASK 0x000007f
+# define TV_VEQ_START_F2_SHIFT 0
+
+#define TV_V_CTL_4 _MMIO(0x68048)
+/*
+ * Offset to start of vertical colorburst, measured in one less than the
+ * number of lines from vertical start.
+ */
+# define TV_VBURST_START_F1_MASK 0x003f0000
+# define TV_VBURST_START_F1_SHIFT 16
+/*
+ * Offset to the end of vertical colorburst, measured in one less than the
+ * number of lines from the start of NBR.
+ */
+# define TV_VBURST_END_F1_MASK 0x000000ff
+# define TV_VBURST_END_F1_SHIFT 0
+
+#define TV_V_CTL_5 _MMIO(0x6804c)
+/*
+ * Offset to start of vertical colorburst, measured in one less than the
+ * number of lines from vertical start.
+ */
+# define TV_VBURST_START_F2_MASK 0x003f0000
+# define TV_VBURST_START_F2_SHIFT 16
+/*
+ * Offset to the end of vertical colorburst, measured in one less than the
+ * number of lines from the start of NBR.
+ */
+# define TV_VBURST_END_F2_MASK 0x000000ff
+# define TV_VBURST_END_F2_SHIFT 0
+
+#define TV_V_CTL_6 _MMIO(0x68050)
+/*
+ * Offset to start of vertical colorburst, measured in one less than the
+ * number of lines from vertical start.
+ */
+# define TV_VBURST_START_F3_MASK 0x003f0000
+# define TV_VBURST_START_F3_SHIFT 16
+/*
+ * Offset to the end of vertical colorburst, measured in one less than the
+ * number of lines from the start of NBR.
+ */
+# define TV_VBURST_END_F3_MASK 0x000000ff
+# define TV_VBURST_END_F3_SHIFT 0
+
+#define TV_V_CTL_7 _MMIO(0x68054)
+/*
+ * Offset to start of vertical colorburst, measured in one less than the
+ * number of lines from vertical start.
+ */
+# define TV_VBURST_START_F4_MASK 0x003f0000
+# define TV_VBURST_START_F4_SHIFT 16
+/*
+ * Offset to the end of vertical colorburst, measured in one less than the
+ * number of lines from the start of NBR.
+ */
+# define TV_VBURST_END_F4_MASK 0x000000ff
+# define TV_VBURST_END_F4_SHIFT 0
+
+#define TV_SC_CTL_1 _MMIO(0x68060)
+/* Turns on the first subcarrier phase generation DDA */
+# define TV_SC_DDA1_EN (1 << 31)
+/* Turns on the first subcarrier phase generation DDA */
+# define TV_SC_DDA2_EN (1 << 30)
+/* Turns on the first subcarrier phase generation DDA */
+# define TV_SC_DDA3_EN (1 << 29)
+/* Sets the subcarrier DDA to reset frequency every other field */
+# define TV_SC_RESET_EVERY_2 (0 << 24)
+/* Sets the subcarrier DDA to reset frequency every fourth field */
+# define TV_SC_RESET_EVERY_4 (1 << 24)
+/* Sets the subcarrier DDA to reset frequency every eighth field */
+# define TV_SC_RESET_EVERY_8 (2 << 24)
+/* Sets the subcarrier DDA to never reset the frequency */
+# define TV_SC_RESET_NEVER (3 << 24)
+/* Sets the peak amplitude of the colorburst.*/
+# define TV_BURST_LEVEL_MASK 0x00ff0000
+# define TV_BURST_LEVEL_SHIFT 16
+/* Sets the increment of the first subcarrier phase generation DDA */
+# define TV_SCDDA1_INC_MASK 0x00000fff
+# define TV_SCDDA1_INC_SHIFT 0
+
+#define TV_SC_CTL_2 _MMIO(0x68064)
+/* Sets the rollover for the second subcarrier phase generation DDA */
+# define TV_SCDDA2_SIZE_MASK 0x7fff0000
+# define TV_SCDDA2_SIZE_SHIFT 16
+/* Sets the increent of the second subcarrier phase generation DDA */
+# define TV_SCDDA2_INC_MASK 0x00007fff
+# define TV_SCDDA2_INC_SHIFT 0
+
+#define TV_SC_CTL_3 _MMIO(0x68068)
+/* Sets the rollover for the third subcarrier phase generation DDA */
+# define TV_SCDDA3_SIZE_MASK 0x7fff0000
+# define TV_SCDDA3_SIZE_SHIFT 16
+/* Sets the increent of the third subcarrier phase generation DDA */
+# define TV_SCDDA3_INC_MASK 0x00007fff
+# define TV_SCDDA3_INC_SHIFT 0
+
+#define TV_WIN_POS _MMIO(0x68070)
+/* X coordinate of the display from the start of horizontal active */
+# define TV_XPOS_MASK 0x1fff0000
+# define TV_XPOS_SHIFT 16
+/* Y coordinate of the display from the start of vertical active (NBR) */
+# define TV_YPOS_MASK 0x00000fff
+# define TV_YPOS_SHIFT 0
+
+#define TV_WIN_SIZE _MMIO(0x68074)
+/* Horizontal size of the display window, measured in pixels*/
+# define TV_XSIZE_MASK 0x1fff0000
+# define TV_XSIZE_SHIFT 16
+/*
+ * Vertical size of the display window, measured in pixels.
+ *
+ * Must be even for interlaced modes.
+ */
+# define TV_YSIZE_MASK 0x00000fff
+# define TV_YSIZE_SHIFT 0
+
+#define TV_FILTER_CTL_1 _MMIO(0x68080)
+/*
+ * Enables automatic scaling calculation.
+ *
+ * If set, the rest of the registers are ignored, and the calculated values can
+ * be read back from the register.
+ */
+# define TV_AUTO_SCALE (1 << 31)
+/*
+ * Disables the vertical filter.
+ *
+ * This is required on modes more than 1024 pixels wide */
+# define TV_V_FILTER_BYPASS (1 << 29)
+/* Enables adaptive vertical filtering */
+# define TV_VADAPT (1 << 28)
+# define TV_VADAPT_MODE_MASK (3 << 26)
+/* Selects the least adaptive vertical filtering mode */
+# define TV_VADAPT_MODE_LEAST (0 << 26)
+/* Selects the moderately adaptive vertical filtering mode */
+# define TV_VADAPT_MODE_MODERATE (1 << 26)
+/* Selects the most adaptive vertical filtering mode */
+# define TV_VADAPT_MODE_MOST (3 << 26)
+/*
+ * Sets the horizontal scaling factor.
+ *
+ * This should be the fractional part of the horizontal scaling factor divided
+ * by the oversampling rate. TV_HSCALE should be less than 1, and set to:
+ *
+ * (src width - 1) / ((oversample * dest width) - 1)
+ */
+# define TV_HSCALE_FRAC_MASK 0x00003fff
+# define TV_HSCALE_FRAC_SHIFT 0
+
+#define TV_FILTER_CTL_2 _MMIO(0x68084)
+/*
+ * Sets the integer part of the 3.15 fixed-point vertical scaling factor.
+ *
+ * TV_VSCALE should be (src height - 1) / ((interlace * dest height) - 1)
+ */
+# define TV_VSCALE_INT_MASK 0x00038000
+# define TV_VSCALE_INT_SHIFT 15
+/*
+ * Sets the fractional part of the 3.15 fixed-point vertical scaling factor.
+ *
+ * \sa TV_VSCALE_INT_MASK
+ */
+# define TV_VSCALE_FRAC_MASK 0x00007fff
+# define TV_VSCALE_FRAC_SHIFT 0
+
+#define TV_FILTER_CTL_3 _MMIO(0x68088)
+/*
+ * Sets the integer part of the 3.15 fixed-point vertical scaling factor.
+ *
+ * TV_VSCALE should be (src height - 1) / (1/4 * (dest height - 1))
+ *
+ * For progressive modes, TV_VSCALE_IP_INT should be set to zeroes.
+ */
+# define TV_VSCALE_IP_INT_MASK 0x00038000
+# define TV_VSCALE_IP_INT_SHIFT 15
+/*
+ * Sets the fractional part of the 3.15 fixed-point vertical scaling factor.
+ *
+ * For progressive modes, TV_VSCALE_IP_INT should be set to zeroes.
+ *
+ * \sa TV_VSCALE_IP_INT_MASK
+ */
+# define TV_VSCALE_IP_FRAC_MASK 0x00007fff
+# define TV_VSCALE_IP_FRAC_SHIFT 0
+
+#define TV_CC_CONTROL _MMIO(0x68090)
+# define TV_CC_ENABLE (1 << 31)
+/*
+ * Specifies which field to send the CC data in.
+ *
+ * CC data is usually sent in field 0.
+ */
+# define TV_CC_FID_MASK (1 << 27)
+# define TV_CC_FID_SHIFT 27
+/* Sets the horizontal position of the CC data. Usually 135. */
+# define TV_CC_HOFF_MASK 0x03ff0000
+# define TV_CC_HOFF_SHIFT 16
+/* Sets the vertical position of the CC data. Usually 21 */
+# define TV_CC_LINE_MASK 0x0000003f
+# define TV_CC_LINE_SHIFT 0
+
+#define TV_CC_DATA _MMIO(0x68094)
+# define TV_CC_RDY (1 << 31)
+/* Second word of CC data to be transmitted. */
+# define TV_CC_DATA_2_MASK 0x007f0000
+# define TV_CC_DATA_2_SHIFT 16
+/* First word of CC data to be transmitted. */
+# define TV_CC_DATA_1_MASK 0x0000007f
+# define TV_CC_DATA_1_SHIFT 0
+
+#define TV_H_LUMA(i) _MMIO(0x68100 + (i) * 4) /* 60 registers */
+#define TV_H_CHROMA(i) _MMIO(0x68200 + (i) * 4) /* 60 registers */
+#define TV_V_LUMA(i) _MMIO(0x68300 + (i) * 4) /* 43 registers */
+#define TV_V_CHROMA(i) _MMIO(0x68400 + (i) * 4) /* 43 registers */
+
+#endif /* __INTEL_TV_REGS_H__ */
diff --git a/drivers/gpu/drm/i915/display/intel_vblank.c b/drivers/gpu/drm/i915/display/intel_vblank.c
new file mode 100644
index 000000000000..f8bf9810527d
--- /dev/null
+++ b/drivers/gpu/drm/i915/display/intel_vblank.c
@@ -0,0 +1,533 @@
+// SPDX-License-Identifier: MIT
+/*
+ * Copyright © 2022-2023 Intel Corporation
+ */
+
+#include "i915_drv.h"
+#include "i915_reg.h"
+#include "intel_de.h"
+#include "intel_display_types.h"
+#include "intel_vblank.h"
+#include "intel_vrr.h"
+
+/*
+ * This timing diagram depicts the video signal in and
+ * around the vertical blanking period.
+ *
+ * Assumptions about the fictitious mode used in this example:
+ * vblank_start >= 3
+ * vsync_start = vblank_start + 1
+ * vsync_end = vblank_start + 2
+ * vtotal = vblank_start + 3
+ *
+ * start of vblank:
+ * latch double buffered registers
+ * increment frame counter (ctg+)
+ * generate start of vblank interrupt (gen4+)
+ * |
+ * | frame start:
+ * | generate frame start interrupt (aka. vblank interrupt) (gmch)
+ * | may be shifted forward 1-3 extra lines via TRANSCONF
+ * | |
+ * | | start of vsync:
+ * | | generate vsync interrupt
+ * | | |
+ * ___xxxx___ ___xxxx___ ___xxxx___ ___xxxx___ ___xxxx___ ___xxxx
+ * . \hs/ . \hs/ \hs/ \hs/ . \hs/
+ * ----va---> <-----------------vb--------------------> <--------va-------------
+ * | | <----vs-----> |
+ * -vbs-----> <---vbs+1---> <---vbs+2---> <-----0-----> <-----1-----> <-----2--- (scanline counter gen2)
+ * -vbs-2---> <---vbs-1---> <---vbs-----> <---vbs+1---> <---vbs+2---> <-----0--- (scanline counter gen3+)
+ * -vbs-2---> <---vbs-2---> <---vbs-1---> <---vbs-----> <---vbs+1---> <---vbs+2- (scanline counter hsw+ hdmi)
+ * | | |
+ * last visible pixel first visible pixel
+ * | increment frame counter (gen3/4)
+ * pixel counter = vblank_start * htotal pixel counter = 0 (gen3/4)
+ *
+ * x = horizontal active
+ * _ = horizontal blanking
+ * hs = horizontal sync
+ * va = vertical active
+ * vb = vertical blanking
+ * vs = vertical sync
+ * vbs = vblank_start (number)
+ *
+ * Summary:
+ * - most events happen at the start of horizontal sync
+ * - frame start happens at the start of horizontal blank, 1-4 lines
+ * (depending on TRANSCONF settings) after the start of vblank
+ * - gen3/4 pixel and frame counter are synchronized with the start
+ * of horizontal active on the first line of vertical active
+ */
+
+/*
+ * Called from drm generic code, passed a 'crtc', which we use as a pipe index.
+ */
+u32 i915_get_vblank_counter(struct drm_crtc *crtc)
+{
+ struct drm_i915_private *dev_priv = to_i915(crtc->dev);
+ struct drm_vblank_crtc *vblank = &dev_priv->drm.vblank[drm_crtc_index(crtc)];
+ const struct drm_display_mode *mode = &vblank->hwmode;
+ enum pipe pipe = to_intel_crtc(crtc)->pipe;
+ u32 pixel, vbl_start, hsync_start, htotal;
+ u64 frame;
+
+ /*
+ * On i965gm TV output the frame counter only works up to
+ * the point when we enable the TV encoder. After that the
+ * frame counter ceases to work and reads zero. We need a
+ * vblank wait before enabling the TV encoder and so we
+ * have to enable vblank interrupts while the frame counter
+ * is still in a working state. However the core vblank code
+ * does not like us returning non-zero frame counter values
+ * when we've told it that we don't have a working frame
+ * counter. Thus we must stop non-zero values leaking out.
+ */
+ if (!vblank->max_vblank_count)
+ return 0;
+
+ htotal = mode->crtc_htotal;
+ hsync_start = mode->crtc_hsync_start;
+ vbl_start = mode->crtc_vblank_start;
+ if (mode->flags & DRM_MODE_FLAG_INTERLACE)
+ vbl_start = DIV_ROUND_UP(vbl_start, 2);
+
+ /* Convert to pixel count */
+ vbl_start *= htotal;
+
+ /* Start of vblank event occurs at start of hsync */
+ vbl_start -= htotal - hsync_start;
+
+ /*
+ * High & low register fields aren't synchronized, so make sure
+ * we get a low value that's stable across two reads of the high
+ * register.
+ */
+ frame = intel_de_read64_2x32(dev_priv, PIPEFRAMEPIXEL(pipe), PIPEFRAME(pipe));
+
+ pixel = frame & PIPE_PIXEL_MASK;
+ frame = (frame >> PIPE_FRAME_LOW_SHIFT) & 0xffffff;
+
+ /*
+ * The frame counter increments at beginning of active.
+ * Cook up a vblank counter by also checking the pixel
+ * counter against vblank start.
+ */
+ return (frame + (pixel >= vbl_start)) & 0xffffff;
+}
+
+u32 g4x_get_vblank_counter(struct drm_crtc *crtc)
+{
+ struct drm_i915_private *dev_priv = to_i915(crtc->dev);
+ struct drm_vblank_crtc *vblank = &dev_priv->drm.vblank[drm_crtc_index(crtc)];
+ enum pipe pipe = to_intel_crtc(crtc)->pipe;
+
+ if (!vblank->max_vblank_count)
+ return 0;
+
+ return intel_de_read(dev_priv, PIPE_FRMCOUNT_G4X(pipe));
+}
+
+static u32 intel_crtc_scanlines_since_frame_timestamp(struct intel_crtc *crtc)
+{
+ struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
+ struct drm_vblank_crtc *vblank =
+ &crtc->base.dev->vblank[drm_crtc_index(&crtc->base)];
+ const struct drm_display_mode *mode = &vblank->hwmode;
+ u32 htotal = mode->crtc_htotal;
+ u32 clock = mode->crtc_clock;
+ u32 scan_prev_time, scan_curr_time, scan_post_time;
+
+ /*
+ * To avoid the race condition where we might cross into the
+ * next vblank just between the PIPE_FRMTMSTMP and TIMESTAMP_CTR
+ * reads. We make sure we read PIPE_FRMTMSTMP and TIMESTAMP_CTR
+ * during the same frame.
+ */
+ do {
+ /*
+ * This field provides read back of the display
+ * pipe frame time stamp. The time stamp value
+ * is sampled at every start of vertical blank.
+ */
+ scan_prev_time = intel_de_read_fw(dev_priv,
+ PIPE_FRMTMSTMP(crtc->pipe));
+
+ /*
+ * The TIMESTAMP_CTR register has the current
+ * time stamp value.
+ */
+ scan_curr_time = intel_de_read_fw(dev_priv, IVB_TIMESTAMP_CTR);
+
+ scan_post_time = intel_de_read_fw(dev_priv,
+ PIPE_FRMTMSTMP(crtc->pipe));
+ } while (scan_post_time != scan_prev_time);
+
+ return div_u64(mul_u32_u32(scan_curr_time - scan_prev_time,
+ clock), 1000 * htotal);
+}
+
+/*
+ * On certain encoders on certain platforms, pipe
+ * scanline register will not work to get the scanline,
+ * since the timings are driven from the PORT or issues
+ * with scanline register updates.
+ * This function will use Framestamp and current
+ * timestamp registers to calculate the scanline.
+ */
+static u32 __intel_get_crtc_scanline_from_timestamp(struct intel_crtc *crtc)
+{
+ struct drm_vblank_crtc *vblank =
+ &crtc->base.dev->vblank[drm_crtc_index(&crtc->base)];
+ const struct drm_display_mode *mode = &vblank->hwmode;
+ u32 vblank_start = mode->crtc_vblank_start;
+ u32 vtotal = mode->crtc_vtotal;
+ u32 scanline;
+
+ scanline = intel_crtc_scanlines_since_frame_timestamp(crtc);
+ scanline = min(scanline, vtotal - 1);
+ scanline = (scanline + vblank_start) % vtotal;
+
+ return scanline;
+}
+
+/*
+ * intel_de_read_fw(), only for fast reads of display block, no need for
+ * forcewake etc.
+ */
+static int __intel_get_crtc_scanline(struct intel_crtc *crtc)
+{
+ struct drm_device *dev = crtc->base.dev;
+ struct drm_i915_private *dev_priv = to_i915(dev);
+ const struct drm_display_mode *mode;
+ struct drm_vblank_crtc *vblank;
+ enum pipe pipe = crtc->pipe;
+ int position, vtotal;
+
+ if (!crtc->active)
+ return 0;
+
+ vblank = &crtc->base.dev->vblank[drm_crtc_index(&crtc->base)];
+ mode = &vblank->hwmode;
+
+ if (crtc->mode_flags & I915_MODE_FLAG_GET_SCANLINE_FROM_TIMESTAMP)
+ return __intel_get_crtc_scanline_from_timestamp(crtc);
+
+ vtotal = mode->crtc_vtotal;
+ if (mode->flags & DRM_MODE_FLAG_INTERLACE)
+ vtotal /= 2;
+
+ position = intel_de_read_fw(dev_priv, PIPEDSL(pipe)) & PIPEDSL_LINE_MASK;
+
+ /*
+ * On HSW, the DSL reg (0x70000) appears to return 0 if we
+ * read it just before the start of vblank. So try it again
+ * so we don't accidentally end up spanning a vblank frame
+ * increment, causing the pipe_update_end() code to squak at us.
+ *
+ * The nature of this problem means we can't simply check the ISR
+ * bit and return the vblank start value; nor can we use the scanline
+ * debug register in the transcoder as it appears to have the same
+ * problem. We may need to extend this to include other platforms,
+ * but so far testing only shows the problem on HSW.
+ */
+ if (HAS_DDI(dev_priv) && !position) {
+ int i, temp;
+
+ for (i = 0; i < 100; i++) {
+ udelay(1);
+ temp = intel_de_read_fw(dev_priv, PIPEDSL(pipe)) & PIPEDSL_LINE_MASK;
+ if (temp != position) {
+ position = temp;
+ break;
+ }
+ }
+ }
+
+ /*
+ * See update_scanline_offset() for the details on the
+ * scanline_offset adjustment.
+ */
+ return (position + crtc->scanline_offset) % vtotal;
+}
+
+static bool i915_get_crtc_scanoutpos(struct drm_crtc *_crtc,
+ bool in_vblank_irq,
+ int *vpos, int *hpos,
+ ktime_t *stime, ktime_t *etime,
+ const struct drm_display_mode *mode)
+{
+ struct drm_device *dev = _crtc->dev;
+ struct drm_i915_private *dev_priv = to_i915(dev);
+ struct intel_crtc *crtc = to_intel_crtc(_crtc);
+ enum pipe pipe = crtc->pipe;
+ int position;
+ int vbl_start, vbl_end, hsync_start, htotal, vtotal;
+ unsigned long irqflags;
+ bool use_scanline_counter = DISPLAY_VER(dev_priv) >= 5 ||
+ IS_G4X(dev_priv) || DISPLAY_VER(dev_priv) == 2 ||
+ crtc->mode_flags & I915_MODE_FLAG_USE_SCANLINE_COUNTER;
+
+ if (drm_WARN_ON(&dev_priv->drm, !mode->crtc_clock)) {
+ drm_dbg(&dev_priv->drm,
+ "trying to get scanoutpos for disabled pipe %c\n",
+ pipe_name(pipe));
+ return false;
+ }
+
+ htotal = mode->crtc_htotal;
+ hsync_start = mode->crtc_hsync_start;
+ vtotal = mode->crtc_vtotal;
+ vbl_start = mode->crtc_vblank_start;
+ vbl_end = mode->crtc_vblank_end;
+
+ if (mode->flags & DRM_MODE_FLAG_INTERLACE) {
+ vbl_start = DIV_ROUND_UP(vbl_start, 2);
+ vbl_end /= 2;
+ vtotal /= 2;
+ }
+
+ /*
+ * Lock uncore.lock, as we will do multiple timing critical raw
+ * register reads, potentially with preemption disabled, so the
+ * following code must not block on uncore.lock.
+ */
+ spin_lock_irqsave(&dev_priv->uncore.lock, irqflags);
+
+ /* preempt_disable_rt() should go right here in PREEMPT_RT patchset. */
+
+ /* Get optional system timestamp before query. */
+ if (stime)
+ *stime = ktime_get();
+
+ if (crtc->mode_flags & I915_MODE_FLAG_VRR) {
+ int scanlines = intel_crtc_scanlines_since_frame_timestamp(crtc);
+
+ position = __intel_get_crtc_scanline(crtc);
+
+ /*
+ * Already exiting vblank? If so, shift our position
+ * so it looks like we're already apporaching the full
+ * vblank end. This should make the generated timestamp
+ * more or less match when the active portion will start.
+ */
+ if (position >= vbl_start && scanlines < position)
+ position = min(crtc->vmax_vblank_start + scanlines, vtotal - 1);
+ } else if (use_scanline_counter) {
+ /* No obvious pixelcount register. Only query vertical
+ * scanout position from Display scan line register.
+ */
+ position = __intel_get_crtc_scanline(crtc);
+ } else {
+ /*
+ * Have access to pixelcount since start of frame.
+ * We can split this into vertical and horizontal
+ * scanout position.
+ */
+ position = (intel_de_read_fw(dev_priv, PIPEFRAMEPIXEL(pipe)) & PIPE_PIXEL_MASK) >> PIPE_PIXEL_SHIFT;
+
+ /* convert to pixel counts */
+ vbl_start *= htotal;
+ vbl_end *= htotal;
+ vtotal *= htotal;
+
+ /*
+ * In interlaced modes, the pixel counter counts all pixels,
+ * so one field will have htotal more pixels. In order to avoid
+ * the reported position from jumping backwards when the pixel
+ * counter is beyond the length of the shorter field, just
+ * clamp the position the length of the shorter field. This
+ * matches how the scanline counter based position works since
+ * the scanline counter doesn't count the two half lines.
+ */
+ if (position >= vtotal)
+ position = vtotal - 1;
+
+ /*
+ * Start of vblank interrupt is triggered at start of hsync,
+ * just prior to the first active line of vblank. However we
+ * consider lines to start at the leading edge of horizontal
+ * active. So, should we get here before we've crossed into
+ * the horizontal active of the first line in vblank, we would
+ * not set the DRM_SCANOUTPOS_INVBL flag. In order to fix that,
+ * always add htotal-hsync_start to the current pixel position.
+ */
+ position = (position + htotal - hsync_start) % vtotal;
+ }
+
+ /* Get optional system timestamp after query. */
+ if (etime)
+ *etime = ktime_get();
+
+ /* preempt_enable_rt() should go right here in PREEMPT_RT patchset. */
+
+ spin_unlock_irqrestore(&dev_priv->uncore.lock, irqflags);
+
+ /*
+ * While in vblank, position will be negative
+ * counting up towards 0 at vbl_end. And outside
+ * vblank, position will be positive counting
+ * up since vbl_end.
+ */
+ if (position >= vbl_start)
+ position -= vbl_end;
+ else
+ position += vtotal - vbl_end;
+
+ if (use_scanline_counter) {
+ *vpos = position;
+ *hpos = 0;
+ } else {
+ *vpos = position / htotal;
+ *hpos = position - (*vpos * htotal);
+ }
+
+ return true;
+}
+
+bool intel_crtc_get_vblank_timestamp(struct drm_crtc *crtc, int *max_error,
+ ktime_t *vblank_time, bool in_vblank_irq)
+{
+ return drm_crtc_vblank_helper_get_vblank_timestamp_internal(
+ crtc, max_error, vblank_time, in_vblank_irq,
+ i915_get_crtc_scanoutpos);
+}
+
+int intel_get_crtc_scanline(struct intel_crtc *crtc)
+{
+ struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
+ unsigned long irqflags;
+ int position;
+
+ spin_lock_irqsave(&dev_priv->uncore.lock, irqflags);
+ position = __intel_get_crtc_scanline(crtc);
+ spin_unlock_irqrestore(&dev_priv->uncore.lock, irqflags);
+
+ return position;
+}
+
+static bool pipe_scanline_is_moving(struct drm_i915_private *dev_priv,
+ enum pipe pipe)
+{
+ i915_reg_t reg = PIPEDSL(pipe);
+ u32 line1, line2;
+
+ line1 = intel_de_read(dev_priv, reg) & PIPEDSL_LINE_MASK;
+ msleep(5);
+ line2 = intel_de_read(dev_priv, reg) & PIPEDSL_LINE_MASK;
+
+ return line1 != line2;
+}
+
+static void wait_for_pipe_scanline_moving(struct intel_crtc *crtc, bool state)
+{
+ struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
+ enum pipe pipe = crtc->pipe;
+
+ /* Wait for the display line to settle/start moving */
+ if (wait_for(pipe_scanline_is_moving(dev_priv, pipe) == state, 100))
+ drm_err(&dev_priv->drm,
+ "pipe %c scanline %s wait timed out\n",
+ pipe_name(pipe), str_on_off(state));
+}
+
+void intel_wait_for_pipe_scanline_stopped(struct intel_crtc *crtc)
+{
+ wait_for_pipe_scanline_moving(crtc, false);
+}
+
+void intel_wait_for_pipe_scanline_moving(struct intel_crtc *crtc)
+{
+ wait_for_pipe_scanline_moving(crtc, true);
+}
+
+static int intel_crtc_scanline_offset(const struct intel_crtc_state *crtc_state)
+{
+ struct drm_i915_private *i915 = to_i915(crtc_state->uapi.crtc->dev);
+ const struct drm_display_mode *adjusted_mode = &crtc_state->hw.adjusted_mode;
+
+ /*
+ * The scanline counter increments at the leading edge of hsync.
+ *
+ * On most platforms it starts counting from vtotal-1 on the
+ * first active line. That means the scanline counter value is
+ * always one less than what we would expect. Ie. just after
+ * start of vblank, which also occurs at start of hsync (on the
+ * last active line), the scanline counter will read vblank_start-1.
+ *
+ * On gen2 the scanline counter starts counting from 1 instead
+ * of vtotal-1, so we have to subtract one (or rather add vtotal-1
+ * to keep the value positive), instead of adding one.
+ *
+ * On HSW+ the behaviour of the scanline counter depends on the output
+ * type. For DP ports it behaves like most other platforms, but on HDMI
+ * there's an extra 1 line difference. So we need to add two instead of
+ * one to the value.
+ *
+ * On VLV/CHV DSI the scanline counter would appear to increment
+ * approx. 1/3 of a scanline before start of vblank. Unfortunately
+ * that means we can't tell whether we're in vblank or not while
+ * we're on that particular line. We must still set scanline_offset
+ * to 1 so that the vblank timestamps come out correct when we query
+ * the scanline counter from within the vblank interrupt handler.
+ * However if queried just before the start of vblank we'll get an
+ * answer that's slightly in the future.
+ */
+ if (DISPLAY_VER(i915) == 2) {
+ int vtotal;
+
+ vtotal = adjusted_mode->crtc_vtotal;
+ if (adjusted_mode->flags & DRM_MODE_FLAG_INTERLACE)
+ vtotal /= 2;
+
+ return vtotal - 1;
+ } else if (HAS_DDI(i915) && intel_crtc_has_type(crtc_state, INTEL_OUTPUT_HDMI)) {
+ return 2;
+ } else {
+ return 1;
+ }
+}
+
+void intel_crtc_update_active_timings(const struct intel_crtc_state *crtc_state)
+{
+ struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
+ struct drm_i915_private *i915 = to_i915(crtc->base.dev);
+ struct drm_display_mode adjusted_mode;
+ int vmax_vblank_start = 0;
+ unsigned long irqflags;
+
+ drm_mode_init(&adjusted_mode, &crtc_state->hw.adjusted_mode);
+
+ if (crtc_state->vrr.enable) {
+ adjusted_mode.crtc_vtotal = crtc_state->vrr.vmax;
+ adjusted_mode.crtc_vblank_end = crtc_state->vrr.vmax;
+ adjusted_mode.crtc_vblank_start = intel_vrr_vmin_vblank_start(crtc_state);
+ vmax_vblank_start = intel_vrr_vmax_vblank_start(crtc_state);
+ }
+
+ /*
+ * Belts and suspenders locking to guarantee everyone sees 100%
+ * consistent state during fastset seamless refresh rate changes.
+ *
+ * vblank_time_lock takes care of all drm_vblank.c stuff, and
+ * uncore.lock takes care of __intel_get_crtc_scanline() which
+ * may get called elsewhere as well.
+ *
+ * TODO maybe just protect everything (including
+ * __intel_get_crtc_scanline()) with vblank_time_lock?
+ * Need to audit everything to make sure it's safe.
+ */
+ spin_lock_irqsave(&i915->drm.vblank_time_lock, irqflags);
+ spin_lock(&i915->uncore.lock);
+
+ drm_calc_timestamping_constants(&crtc->base, &adjusted_mode);
+
+ crtc->vmax_vblank_start = vmax_vblank_start;
+
+ crtc->mode_flags = crtc_state->mode_flags;
+
+ crtc->scanline_offset = intel_crtc_scanline_offset(crtc_state);
+
+ spin_unlock(&i915->uncore.lock);
+ spin_unlock_irqrestore(&i915->drm.vblank_time_lock, irqflags);
+}
diff --git a/drivers/gpu/drm/i915/display/intel_vblank.h b/drivers/gpu/drm/i915/display/intel_vblank.h
new file mode 100644
index 000000000000..0884db7e76ae
--- /dev/null
+++ b/drivers/gpu/drm/i915/display/intel_vblank.h
@@ -0,0 +1,25 @@
+/* SPDX-License-Identifier: MIT */
+/*
+ * Copyright © 2022-2023 Intel Corporation
+ */
+
+#ifndef __INTEL_VBLANK_H__
+#define __INTEL_VBLANK_H__
+
+#include <linux/ktime.h>
+#include <linux/types.h>
+
+struct drm_crtc;
+struct intel_crtc;
+struct intel_crtc_state;
+
+u32 i915_get_vblank_counter(struct drm_crtc *crtc);
+u32 g4x_get_vblank_counter(struct drm_crtc *crtc);
+bool intel_crtc_get_vblank_timestamp(struct drm_crtc *crtc, int *max_error,
+ ktime_t *vblank_time, bool in_vblank_irq);
+int intel_get_crtc_scanline(struct intel_crtc *crtc);
+void intel_wait_for_pipe_scanline_stopped(struct intel_crtc *crtc);
+void intel_wait_for_pipe_scanline_moving(struct intel_crtc *crtc);
+void intel_crtc_update_active_timings(const struct intel_crtc_state *crtc_state);
+
+#endif /* __INTEL_VBLANK_H__ */
diff --git a/drivers/gpu/drm/i915/display/intel_vdsc.c b/drivers/gpu/drm/i915/display/intel_vdsc.c
index 269f9792390d..8e787c13d26d 100644
--- a/drivers/gpu/drm/i915/display/intel_vdsc.c
+++ b/drivers/gpu/drm/i915/display/intel_vdsc.c
@@ -10,12 +10,14 @@
#include <drm/display/drm_dsc_helper.h>
#include "i915_drv.h"
+#include "i915_reg.h"
#include "intel_crtc.h"
#include "intel_de.h"
#include "intel_display_types.h"
#include "intel_dsi.h"
#include "intel_qp_tables.h"
#include "intel_vdsc.h"
+#include "intel_vdsc_regs.h"
enum ROW_INDEX_BPP {
ROW_INDEX_6BPP = 0,
@@ -344,16 +346,13 @@ bool intel_dsc_source_support(const struct intel_crtc_state *crtc_state)
struct drm_i915_private *i915 = to_i915(crtc->base.dev);
enum transcoder cpu_transcoder = crtc_state->cpu_transcoder;
- if (!RUNTIME_INFO(i915)->has_dsc)
+ if (!HAS_DSC(i915))
return false;
- if (DISPLAY_VER(i915) >= 12)
- return true;
-
- if (DISPLAY_VER(i915) >= 11 && cpu_transcoder != TRANSCODER_A)
- return true;
+ if (DISPLAY_VER(i915) == 11 && cpu_transcoder == TRANSCODER_A)
+ return false;
- return false;
+ return true;
}
static bool is_pipe_dsc(struct intel_crtc *crtc, enum transcoder cpu_transcoder)
@@ -424,9 +423,9 @@ calculate_rc_params(struct rc_parameters *rc,
for (buf_i = 0; buf_i < DSC_NUM_BUF_RANGES; buf_i++) {
/* Read range_minqp and range_max_qp from qp tables */
rc->rc_range_params[buf_i].range_min_qp =
- intel_lookup_range_min_qp(bpc, buf_i, bpp_i);
+ intel_lookup_range_min_qp(bpc, buf_i, bpp_i, vdsc_cfg->native_420);
rc->rc_range_params[buf_i].range_max_qp =
- intel_lookup_range_max_qp(bpc, buf_i, bpp_i);
+ intel_lookup_range_max_qp(bpc, buf_i, bpp_i, vdsc_cfg->native_420);
/* Calculate range_bgp_offset */
if (bpp <= 6) {
@@ -449,6 +448,29 @@ calculate_rc_params(struct rc_parameters *rc,
}
}
+static int intel_dsc_slice_dimensions_valid(struct intel_crtc_state *pipe_config,
+ struct drm_dsc_config *vdsc_cfg)
+{
+ if (pipe_config->output_format == INTEL_OUTPUT_FORMAT_RGB ||
+ pipe_config->output_format == INTEL_OUTPUT_FORMAT_YCBCR444) {
+ if (vdsc_cfg->slice_height > 4095)
+ return -EINVAL;
+ if (vdsc_cfg->slice_height * vdsc_cfg->slice_width < 15000)
+ return -EINVAL;
+ } else if (pipe_config->output_format == INTEL_OUTPUT_FORMAT_YCBCR420) {
+ if (vdsc_cfg->slice_width % 2)
+ return -EINVAL;
+ if (vdsc_cfg->slice_height % 2)
+ return -EINVAL;
+ if (vdsc_cfg->slice_height > 4094)
+ return -EINVAL;
+ if (vdsc_cfg->slice_height * vdsc_cfg->slice_width < 30000)
+ return -EINVAL;
+ }
+
+ return 0;
+}
+
int intel_dsc_compute_params(struct intel_crtc_state *pipe_config)
{
struct intel_crtc *crtc = to_intel_crtc(pipe_config->uapi.crtc);
@@ -457,19 +479,64 @@ int intel_dsc_compute_params(struct intel_crtc_state *pipe_config)
u16 compressed_bpp = pipe_config->dsc.compressed_bpp;
const struct rc_parameters *rc_params;
struct rc_parameters *rc = NULL;
+ int err;
u8 i = 0;
vdsc_cfg->pic_width = pipe_config->hw.adjusted_mode.crtc_hdisplay;
vdsc_cfg->slice_width = DIV_ROUND_UP(vdsc_cfg->pic_width,
pipe_config->dsc.slice_count);
- /* Gen 11 does not support YCbCr */
+ err = intel_dsc_slice_dimensions_valid(pipe_config, vdsc_cfg);
+
+ if (err) {
+ drm_dbg_kms(&dev_priv->drm, "Slice dimension requirements not met\n");
+ return err;
+ }
+
+ /*
+ * According to DSC 1.2 specs if colorspace is YCbCr then convert_rgb is 0
+ * else 1
+ */
+ vdsc_cfg->convert_rgb = pipe_config->output_format != INTEL_OUTPUT_FORMAT_YCBCR420 &&
+ pipe_config->output_format != INTEL_OUTPUT_FORMAT_YCBCR444;
+
+ if (DISPLAY_VER(dev_priv) >= 14 &&
+ pipe_config->output_format == INTEL_OUTPUT_FORMAT_YCBCR420)
+ vdsc_cfg->native_420 = true;
+ /* We do not support YcBCr422 as of now */
+ vdsc_cfg->native_422 = false;
vdsc_cfg->simple_422 = false;
/* Gen 11 does not support VBR */
vdsc_cfg->vbr_enable = false;
/* Gen 11 only supports integral values of bpp */
vdsc_cfg->bits_per_pixel = compressed_bpp << 4;
+
+ /*
+ * According to DSC 1.2 specs in Section 4.1 if native_420 is set:
+ * -We need to double the current bpp.
+ * -second_line_bpg_offset is 12 in general and equal to 2*(slice_height-1) if slice
+ * height < 8.
+ * -second_line_offset_adj is 512 as shown by emperical values to yeild best chroma
+ * preservation in second line.
+ * -nsl_bpg_offset is calculated as second_line_offset/slice_height -1 then rounded
+ * up to 16 fractional bits, we left shift second line offset by 11 to preserve 11
+ * fractional bits.
+ */
+ if (vdsc_cfg->native_420) {
+ vdsc_cfg->bits_per_pixel <<= 1;
+
+ if (vdsc_cfg->slice_height >= 8)
+ vdsc_cfg->second_line_bpg_offset = 12;
+ else
+ vdsc_cfg->second_line_bpg_offset =
+ 2 * (vdsc_cfg->slice_height - 1);
+
+ vdsc_cfg->second_line_offset_adj = 512;
+ vdsc_cfg->nsl_bpg_offset = DIV_ROUND_UP(vdsc_cfg->second_line_bpg_offset << 11,
+ vdsc_cfg->slice_height - 1);
+ }
+
vdsc_cfg->bits_per_component = pipe_config->pipe_bpp / 3;
for (i = 0; i < DSC_NUM_BUF_RANGES - 1; i++) {
@@ -596,8 +663,13 @@ static void intel_dsc_pps_configure(const struct intel_crtc_state *crtc_state)
DSC_VER_MIN_SHIFT |
vdsc_cfg->bits_per_component << DSC_BPC_SHIFT |
vdsc_cfg->line_buf_depth << DSC_LINE_BUF_DEPTH_SHIFT;
- if (vdsc_cfg->dsc_version_minor == 2)
+ if (vdsc_cfg->dsc_version_minor == 2) {
pps_val |= DSC_ALT_ICH_SEL;
+ if (vdsc_cfg->native_420)
+ pps_val |= DSC_NATIVE_420_ENABLE;
+ if (vdsc_cfg->native_422)
+ pps_val |= DSC_NATIVE_422_ENABLE;
+ }
if (vdsc_cfg->block_pred_enable)
pps_val |= DSC_BLOCK_PREDICTION;
if (vdsc_cfg->convert_rgb)
@@ -908,6 +980,33 @@ static void intel_dsc_pps_configure(const struct intel_crtc_state *crtc_state)
pps_val);
}
+ if (DISPLAY_VER(dev_priv) >= 14) {
+ /* Populate PICTURE_PARAMETER_SET_17 registers */
+ pps_val = 0;
+ pps_val |= DSC_SL_BPG_OFFSET(vdsc_cfg->second_line_bpg_offset);
+ drm_dbg_kms(&dev_priv->drm, "PPS17 = 0x%08x\n", pps_val);
+ intel_de_write(dev_priv,
+ MTL_DSC0_PICTURE_PARAMETER_SET_17(pipe),
+ pps_val);
+ if (crtc_state->dsc.dsc_split)
+ intel_de_write(dev_priv,
+ MTL_DSC1_PICTURE_PARAMETER_SET_17(pipe),
+ pps_val);
+
+ /* Populate PICTURE_PARAMETER_SET_18 registers */
+ pps_val = 0;
+ pps_val |= DSC_NSL_BPG_OFFSET(vdsc_cfg->nsl_bpg_offset) |
+ DSC_SL_OFFSET_ADJ(vdsc_cfg->second_line_offset_adj);
+ drm_dbg_kms(&dev_priv->drm, "PPS18 = 0x%08x\n", pps_val);
+ intel_de_write(dev_priv,
+ MTL_DSC0_PICTURE_PARAMETER_SET_18(pipe),
+ pps_val);
+ if (crtc_state->dsc.dsc_split)
+ intel_de_write(dev_priv,
+ MTL_DSC1_PICTURE_PARAMETER_SET_18(pipe),
+ pps_val);
+ }
+
/* Populate the RC_BUF_THRESH registers */
memset(rc_buf_thresh_dword, 0, sizeof(rc_buf_thresh_dword));
for (i = 0; i < DSC_NUM_BUF_RANGES - 1; i++) {
@@ -1182,7 +1281,7 @@ void intel_dsc_get_config(struct intel_crtc_state *crtc_state)
enum pipe pipe = crtc->pipe;
enum intel_display_power_domain power_domain;
intel_wakeref_t wakeref;
- u32 dss_ctl1, dss_ctl2, val;
+ u32 dss_ctl1, dss_ctl2, pps0 = 0, pps1 = 0;
if (!intel_dsc_source_support(crtc_state))
return;
@@ -1205,13 +1304,21 @@ void intel_dsc_get_config(struct intel_crtc_state *crtc_state)
/* FIXME: add more state readout as needed */
- /* PPS1 */
- if (!is_pipe_dsc(crtc, cpu_transcoder))
- val = intel_de_read(dev_priv, DSCA_PICTURE_PARAMETER_SET_1);
- else
- val = intel_de_read(dev_priv,
- ICL_DSC0_PICTURE_PARAMETER_SET_1(pipe));
- vdsc_cfg->bits_per_pixel = val;
+ /* PPS0 & PPS1 */
+ if (!is_pipe_dsc(crtc, cpu_transcoder)) {
+ pps1 = intel_de_read(dev_priv, DSCA_PICTURE_PARAMETER_SET_1);
+ } else {
+ pps0 = intel_de_read(dev_priv,
+ ICL_DSC0_PICTURE_PARAMETER_SET_0(pipe));
+ pps1 = intel_de_read(dev_priv,
+ ICL_DSC0_PICTURE_PARAMETER_SET_1(pipe));
+ }
+
+ vdsc_cfg->bits_per_pixel = pps1;
+
+ if (pps0 & DSC_NATIVE_420_ENABLE)
+ vdsc_cfg->bits_per_pixel >>= 1;
+
crtc_state->dsc.compressed_bpp = vdsc_cfg->bits_per_pixel >> 4;
out:
intel_display_power_put(dev_priv, power_domain, wakeref);
diff --git a/drivers/gpu/drm/i915/display/intel_vdsc_regs.h b/drivers/gpu/drm/i915/display/intel_vdsc_regs.h
new file mode 100644
index 000000000000..b71f00b5c761
--- /dev/null
+++ b/drivers/gpu/drm/i915/display/intel_vdsc_regs.h
@@ -0,0 +1,489 @@
+/* SPDX-License-Identifier: MIT */
+/*
+ * Copyright © 2023 Intel Corporation
+ */
+
+#ifndef __INTEL_VDSC_REGS_H__
+#define __INTEL_VDSC_REGS_H__
+
+#include "intel_display_reg_defs.h"
+
+/* Display Stream Splitter Control */
+#define DSS_CTL1 _MMIO(0x67400)
+#define SPLITTER_ENABLE (1 << 31)
+#define JOINER_ENABLE (1 << 30)
+#define DUAL_LINK_MODE_INTERLEAVE (1 << 24)
+#define DUAL_LINK_MODE_FRONTBACK (0 << 24)
+#define OVERLAP_PIXELS_MASK (0xf << 16)
+#define OVERLAP_PIXELS(pixels) ((pixels) << 16)
+#define LEFT_DL_BUF_TARGET_DEPTH_MASK (0xfff << 0)
+#define LEFT_DL_BUF_TARGET_DEPTH(pixels) ((pixels) << 0)
+#define MAX_DL_BUFFER_TARGET_DEPTH 0x5a0
+
+#define DSS_CTL2 _MMIO(0x67404)
+#define LEFT_BRANCH_VDSC_ENABLE (1 << 31)
+#define RIGHT_BRANCH_VDSC_ENABLE (1 << 15)
+#define RIGHT_DL_BUF_TARGET_DEPTH_MASK (0xfff << 0)
+#define RIGHT_DL_BUF_TARGET_DEPTH(pixels) ((pixels) << 0)
+
+#define _ICL_PIPE_DSS_CTL1_PB 0x78200
+#define _ICL_PIPE_DSS_CTL1_PC 0x78400
+#define ICL_PIPE_DSS_CTL1(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_PIPE_DSS_CTL1_PB, \
+ _ICL_PIPE_DSS_CTL1_PC)
+#define BIG_JOINER_ENABLE (1 << 29)
+#define MASTER_BIG_JOINER_ENABLE (1 << 28)
+#define VGA_CENTERING_ENABLE (1 << 27)
+#define SPLITTER_CONFIGURATION_MASK REG_GENMASK(26, 25)
+#define SPLITTER_CONFIGURATION_2_SEGMENT REG_FIELD_PREP(SPLITTER_CONFIGURATION_MASK, 0)
+#define SPLITTER_CONFIGURATION_4_SEGMENT REG_FIELD_PREP(SPLITTER_CONFIGURATION_MASK, 1)
+#define UNCOMPRESSED_JOINER_MASTER (1 << 21)
+#define UNCOMPRESSED_JOINER_SLAVE (1 << 20)
+
+#define _ICL_PIPE_DSS_CTL2_PB 0x78204
+#define _ICL_PIPE_DSS_CTL2_PC 0x78404
+#define ICL_PIPE_DSS_CTL2(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_PIPE_DSS_CTL2_PB, \
+ _ICL_PIPE_DSS_CTL2_PC)
+
+/* MTL Display Stream Compression registers */
+#define _MTL_DSC0_PICTURE_PARAMETER_SET_17_PB 0x782B4
+#define _MTL_DSC1_PICTURE_PARAMETER_SET_17_PB 0x783B4
+#define _MTL_DSC0_PICTURE_PARAMETER_SET_17_PC 0x784B4
+#define _MTL_DSC1_PICTURE_PARAMETER_SET_17_PC 0x785B4
+#define MTL_DSC0_PICTURE_PARAMETER_SET_17(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _MTL_DSC0_PICTURE_PARAMETER_SET_17_PB, \
+ _MTL_DSC0_PICTURE_PARAMETER_SET_17_PC)
+#define MTL_DSC1_PICTURE_PARAMETER_SET_17(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _MTL_DSC1_PICTURE_PARAMETER_SET_17_PB, \
+ _MTL_DSC1_PICTURE_PARAMETER_SET_17_PC)
+#define DSC_SL_BPG_OFFSET(offset) ((offset) << 27)
+
+#define _MTL_DSC0_PICTURE_PARAMETER_SET_18_PB 0x782B8
+#define _MTL_DSC1_PICTURE_PARAMETER_SET_18_PB 0x783B8
+#define _MTL_DSC0_PICTURE_PARAMETER_SET_18_PC 0x784B8
+#define _MTL_DSC1_PICTURE_PARAMETER_SET_18_PC 0x785B8
+#define MTL_DSC0_PICTURE_PARAMETER_SET_18(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _MTL_DSC0_PICTURE_PARAMETER_SET_18_PB, \
+ _MTL_DSC0_PICTURE_PARAMETER_SET_18_PC)
+#define MTL_DSC1_PICTURE_PARAMETER_SET_18(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _MTL_DSC1_PICTURE_PARAMETER_SET_18_PB, \
+ _MTL_DSC1_PICTURE_PARAMETER_SET_18_PC)
+#define DSC_NSL_BPG_OFFSET(offset) ((offset) << 16)
+#define DSC_SL_OFFSET_ADJ(offset) ((offset) << 0)
+
+/* Icelake Display Stream Compression Registers */
+#define DSCA_PICTURE_PARAMETER_SET_0 _MMIO(0x6B200)
+#define DSCC_PICTURE_PARAMETER_SET_0 _MMIO(0x6BA00)
+#define _ICL_DSC0_PICTURE_PARAMETER_SET_0_PB 0x78270
+#define _ICL_DSC1_PICTURE_PARAMETER_SET_0_PB 0x78370
+#define _ICL_DSC0_PICTURE_PARAMETER_SET_0_PC 0x78470
+#define _ICL_DSC1_PICTURE_PARAMETER_SET_0_PC 0x78570
+#define ICL_DSC0_PICTURE_PARAMETER_SET_0(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC0_PICTURE_PARAMETER_SET_0_PB, \
+ _ICL_DSC0_PICTURE_PARAMETER_SET_0_PC)
+#define ICL_DSC1_PICTURE_PARAMETER_SET_0(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC1_PICTURE_PARAMETER_SET_0_PB, \
+ _ICL_DSC1_PICTURE_PARAMETER_SET_0_PC)
+#define DSC_NATIVE_422_ENABLE BIT(23)
+#define DSC_NATIVE_420_ENABLE BIT(22)
+#define DSC_ALT_ICH_SEL (1 << 20)
+#define DSC_VBR_ENABLE (1 << 19)
+#define DSC_422_ENABLE (1 << 18)
+#define DSC_COLOR_SPACE_CONVERSION (1 << 17)
+#define DSC_BLOCK_PREDICTION (1 << 16)
+#define DSC_LINE_BUF_DEPTH_SHIFT 12
+#define DSC_BPC_SHIFT 8
+#define DSC_VER_MIN_SHIFT 4
+#define DSC_VER_MAJ (0x1 << 0)
+
+#define DSCA_PICTURE_PARAMETER_SET_1 _MMIO(0x6B204)
+#define DSCC_PICTURE_PARAMETER_SET_1 _MMIO(0x6BA04)
+#define _ICL_DSC0_PICTURE_PARAMETER_SET_1_PB 0x78274
+#define _ICL_DSC1_PICTURE_PARAMETER_SET_1_PB 0x78374
+#define _ICL_DSC0_PICTURE_PARAMETER_SET_1_PC 0x78474
+#define _ICL_DSC1_PICTURE_PARAMETER_SET_1_PC 0x78574
+#define ICL_DSC0_PICTURE_PARAMETER_SET_1(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC0_PICTURE_PARAMETER_SET_1_PB, \
+ _ICL_DSC0_PICTURE_PARAMETER_SET_1_PC)
+#define ICL_DSC1_PICTURE_PARAMETER_SET_1(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC1_PICTURE_PARAMETER_SET_1_PB, \
+ _ICL_DSC1_PICTURE_PARAMETER_SET_1_PC)
+#define DSC_BPP(bpp) ((bpp) << 0)
+
+#define DSCA_PICTURE_PARAMETER_SET_2 _MMIO(0x6B208)
+#define DSCC_PICTURE_PARAMETER_SET_2 _MMIO(0x6BA08)
+#define _ICL_DSC0_PICTURE_PARAMETER_SET_2_PB 0x78278
+#define _ICL_DSC1_PICTURE_PARAMETER_SET_2_PB 0x78378
+#define _ICL_DSC0_PICTURE_PARAMETER_SET_2_PC 0x78478
+#define _ICL_DSC1_PICTURE_PARAMETER_SET_2_PC 0x78578
+#define ICL_DSC0_PICTURE_PARAMETER_SET_2(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC0_PICTURE_PARAMETER_SET_2_PB, \
+ _ICL_DSC0_PICTURE_PARAMETER_SET_2_PC)
+#define ICL_DSC1_PICTURE_PARAMETER_SET_2(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC1_PICTURE_PARAMETER_SET_2_PB, \
+ _ICL_DSC1_PICTURE_PARAMETER_SET_2_PC)
+#define DSC_PIC_WIDTH(pic_width) ((pic_width) << 16)
+#define DSC_PIC_HEIGHT(pic_height) ((pic_height) << 0)
+
+#define DSCA_PICTURE_PARAMETER_SET_3 _MMIO(0x6B20C)
+#define DSCC_PICTURE_PARAMETER_SET_3 _MMIO(0x6BA0C)
+#define _ICL_DSC0_PICTURE_PARAMETER_SET_3_PB 0x7827C
+#define _ICL_DSC1_PICTURE_PARAMETER_SET_3_PB 0x7837C
+#define _ICL_DSC0_PICTURE_PARAMETER_SET_3_PC 0x7847C
+#define _ICL_DSC1_PICTURE_PARAMETER_SET_3_PC 0x7857C
+#define ICL_DSC0_PICTURE_PARAMETER_SET_3(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC0_PICTURE_PARAMETER_SET_3_PB, \
+ _ICL_DSC0_PICTURE_PARAMETER_SET_3_PC)
+#define ICL_DSC1_PICTURE_PARAMETER_SET_3(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC1_PICTURE_PARAMETER_SET_3_PB, \
+ _ICL_DSC1_PICTURE_PARAMETER_SET_3_PC)
+#define DSC_SLICE_WIDTH(slice_width) ((slice_width) << 16)
+#define DSC_SLICE_HEIGHT(slice_height) ((slice_height) << 0)
+
+#define DSCA_PICTURE_PARAMETER_SET_4 _MMIO(0x6B210)
+#define DSCC_PICTURE_PARAMETER_SET_4 _MMIO(0x6BA10)
+#define _ICL_DSC0_PICTURE_PARAMETER_SET_4_PB 0x78280
+#define _ICL_DSC1_PICTURE_PARAMETER_SET_4_PB 0x78380
+#define _ICL_DSC0_PICTURE_PARAMETER_SET_4_PC 0x78480
+#define _ICL_DSC1_PICTURE_PARAMETER_SET_4_PC 0x78580
+#define ICL_DSC0_PICTURE_PARAMETER_SET_4(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC0_PICTURE_PARAMETER_SET_4_PB, \
+ _ICL_DSC0_PICTURE_PARAMETER_SET_4_PC)
+#define ICL_DSC1_PICTURE_PARAMETER_SET_4(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC1_PICTURE_PARAMETER_SET_4_PB, \
+ _ICL_DSC1_PICTURE_PARAMETER_SET_4_PC)
+#define DSC_INITIAL_DEC_DELAY(dec_delay) ((dec_delay) << 16)
+#define DSC_INITIAL_XMIT_DELAY(xmit_delay) ((xmit_delay) << 0)
+
+#define DSCA_PICTURE_PARAMETER_SET_5 _MMIO(0x6B214)
+#define DSCC_PICTURE_PARAMETER_SET_5 _MMIO(0x6BA14)
+#define _ICL_DSC0_PICTURE_PARAMETER_SET_5_PB 0x78284
+#define _ICL_DSC1_PICTURE_PARAMETER_SET_5_PB 0x78384
+#define _ICL_DSC0_PICTURE_PARAMETER_SET_5_PC 0x78484
+#define _ICL_DSC1_PICTURE_PARAMETER_SET_5_PC 0x78584
+#define ICL_DSC0_PICTURE_PARAMETER_SET_5(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC0_PICTURE_PARAMETER_SET_5_PB, \
+ _ICL_DSC0_PICTURE_PARAMETER_SET_5_PC)
+#define ICL_DSC1_PICTURE_PARAMETER_SET_5(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC1_PICTURE_PARAMETER_SET_5_PB, \
+ _ICL_DSC1_PICTURE_PARAMETER_SET_5_PC)
+#define DSC_SCALE_DEC_INT(scale_dec) ((scale_dec) << 16)
+#define DSC_SCALE_INC_INT(scale_inc) ((scale_inc) << 0)
+
+#define DSCA_PICTURE_PARAMETER_SET_6 _MMIO(0x6B218)
+#define DSCC_PICTURE_PARAMETER_SET_6 _MMIO(0x6BA18)
+#define _ICL_DSC0_PICTURE_PARAMETER_SET_6_PB 0x78288
+#define _ICL_DSC1_PICTURE_PARAMETER_SET_6_PB 0x78388
+#define _ICL_DSC0_PICTURE_PARAMETER_SET_6_PC 0x78488
+#define _ICL_DSC1_PICTURE_PARAMETER_SET_6_PC 0x78588
+#define ICL_DSC0_PICTURE_PARAMETER_SET_6(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC0_PICTURE_PARAMETER_SET_6_PB, \
+ _ICL_DSC0_PICTURE_PARAMETER_SET_6_PC)
+#define ICL_DSC1_PICTURE_PARAMETER_SET_6(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC1_PICTURE_PARAMETER_SET_6_PB, \
+ _ICL_DSC1_PICTURE_PARAMETER_SET_6_PC)
+#define DSC_FLATNESS_MAX_QP(max_qp) ((max_qp) << 24)
+#define DSC_FLATNESS_MIN_QP(min_qp) ((min_qp) << 16)
+#define DSC_FIRST_LINE_BPG_OFFSET(offset) ((offset) << 8)
+#define DSC_INITIAL_SCALE_VALUE(value) ((value) << 0)
+
+#define DSCA_PICTURE_PARAMETER_SET_7 _MMIO(0x6B21C)
+#define DSCC_PICTURE_PARAMETER_SET_7 _MMIO(0x6BA1C)
+#define _ICL_DSC0_PICTURE_PARAMETER_SET_7_PB 0x7828C
+#define _ICL_DSC1_PICTURE_PARAMETER_SET_7_PB 0x7838C
+#define _ICL_DSC0_PICTURE_PARAMETER_SET_7_PC 0x7848C
+#define _ICL_DSC1_PICTURE_PARAMETER_SET_7_PC 0x7858C
+#define ICL_DSC0_PICTURE_PARAMETER_SET_7(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC0_PICTURE_PARAMETER_SET_7_PB, \
+ _ICL_DSC0_PICTURE_PARAMETER_SET_7_PC)
+#define ICL_DSC1_PICTURE_PARAMETER_SET_7(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC1_PICTURE_PARAMETER_SET_7_PB, \
+ _ICL_DSC1_PICTURE_PARAMETER_SET_7_PC)
+#define DSC_NFL_BPG_OFFSET(bpg_offset) ((bpg_offset) << 16)
+#define DSC_SLICE_BPG_OFFSET(bpg_offset) ((bpg_offset) << 0)
+
+#define DSCA_PICTURE_PARAMETER_SET_8 _MMIO(0x6B220)
+#define DSCC_PICTURE_PARAMETER_SET_8 _MMIO(0x6BA20)
+#define _ICL_DSC0_PICTURE_PARAMETER_SET_8_PB 0x78290
+#define _ICL_DSC1_PICTURE_PARAMETER_SET_8_PB 0x78390
+#define _ICL_DSC0_PICTURE_PARAMETER_SET_8_PC 0x78490
+#define _ICL_DSC1_PICTURE_PARAMETER_SET_8_PC 0x78590
+#define ICL_DSC0_PICTURE_PARAMETER_SET_8(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC0_PICTURE_PARAMETER_SET_8_PB, \
+ _ICL_DSC0_PICTURE_PARAMETER_SET_8_PC)
+#define ICL_DSC1_PICTURE_PARAMETER_SET_8(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC1_PICTURE_PARAMETER_SET_8_PB, \
+ _ICL_DSC1_PICTURE_PARAMETER_SET_8_PC)
+#define DSC_INITIAL_OFFSET(initial_offset) ((initial_offset) << 16)
+#define DSC_FINAL_OFFSET(final_offset) ((final_offset) << 0)
+
+#define DSCA_PICTURE_PARAMETER_SET_9 _MMIO(0x6B224)
+#define DSCC_PICTURE_PARAMETER_SET_9 _MMIO(0x6BA24)
+#define _ICL_DSC0_PICTURE_PARAMETER_SET_9_PB 0x78294
+#define _ICL_DSC1_PICTURE_PARAMETER_SET_9_PB 0x78394
+#define _ICL_DSC0_PICTURE_PARAMETER_SET_9_PC 0x78494
+#define _ICL_DSC1_PICTURE_PARAMETER_SET_9_PC 0x78594
+#define ICL_DSC0_PICTURE_PARAMETER_SET_9(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC0_PICTURE_PARAMETER_SET_9_PB, \
+ _ICL_DSC0_PICTURE_PARAMETER_SET_9_PC)
+#define ICL_DSC1_PICTURE_PARAMETER_SET_9(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC1_PICTURE_PARAMETER_SET_9_PB, \
+ _ICL_DSC1_PICTURE_PARAMETER_SET_9_PC)
+#define DSC_RC_EDGE_FACTOR(rc_edge_fact) ((rc_edge_fact) << 16)
+#define DSC_RC_MODEL_SIZE(rc_model_size) ((rc_model_size) << 0)
+
+#define DSCA_PICTURE_PARAMETER_SET_10 _MMIO(0x6B228)
+#define DSCC_PICTURE_PARAMETER_SET_10 _MMIO(0x6BA28)
+#define _ICL_DSC0_PICTURE_PARAMETER_SET_10_PB 0x78298
+#define _ICL_DSC1_PICTURE_PARAMETER_SET_10_PB 0x78398
+#define _ICL_DSC0_PICTURE_PARAMETER_SET_10_PC 0x78498
+#define _ICL_DSC1_PICTURE_PARAMETER_SET_10_PC 0x78598
+#define ICL_DSC0_PICTURE_PARAMETER_SET_10(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC0_PICTURE_PARAMETER_SET_10_PB, \
+ _ICL_DSC0_PICTURE_PARAMETER_SET_10_PC)
+#define ICL_DSC1_PICTURE_PARAMETER_SET_10(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC1_PICTURE_PARAMETER_SET_10_PB, \
+ _ICL_DSC1_PICTURE_PARAMETER_SET_10_PC)
+#define DSC_RC_TARGET_OFF_LOW(rc_tgt_off_low) ((rc_tgt_off_low) << 20)
+#define DSC_RC_TARGET_OFF_HIGH(rc_tgt_off_high) ((rc_tgt_off_high) << 16)
+#define DSC_RC_QUANT_INC_LIMIT1(lim) ((lim) << 8)
+#define DSC_RC_QUANT_INC_LIMIT0(lim) ((lim) << 0)
+
+#define DSCA_PICTURE_PARAMETER_SET_11 _MMIO(0x6B22C)
+#define DSCC_PICTURE_PARAMETER_SET_11 _MMIO(0x6BA2C)
+#define _ICL_DSC0_PICTURE_PARAMETER_SET_11_PB 0x7829C
+#define _ICL_DSC1_PICTURE_PARAMETER_SET_11_PB 0x7839C
+#define _ICL_DSC0_PICTURE_PARAMETER_SET_11_PC 0x7849C
+#define _ICL_DSC1_PICTURE_PARAMETER_SET_11_PC 0x7859C
+#define ICL_DSC0_PICTURE_PARAMETER_SET_11(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC0_PICTURE_PARAMETER_SET_11_PB, \
+ _ICL_DSC0_PICTURE_PARAMETER_SET_11_PC)
+#define ICL_DSC1_PICTURE_PARAMETER_SET_11(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC1_PICTURE_PARAMETER_SET_11_PB, \
+ _ICL_DSC1_PICTURE_PARAMETER_SET_11_PC)
+
+#define DSCA_PICTURE_PARAMETER_SET_12 _MMIO(0x6B260)
+#define DSCC_PICTURE_PARAMETER_SET_12 _MMIO(0x6BA60)
+#define _ICL_DSC0_PICTURE_PARAMETER_SET_12_PB 0x782A0
+#define _ICL_DSC1_PICTURE_PARAMETER_SET_12_PB 0x783A0
+#define _ICL_DSC0_PICTURE_PARAMETER_SET_12_PC 0x784A0
+#define _ICL_DSC1_PICTURE_PARAMETER_SET_12_PC 0x785A0
+#define ICL_DSC0_PICTURE_PARAMETER_SET_12(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC0_PICTURE_PARAMETER_SET_12_PB, \
+ _ICL_DSC0_PICTURE_PARAMETER_SET_12_PC)
+#define ICL_DSC1_PICTURE_PARAMETER_SET_12(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC1_PICTURE_PARAMETER_SET_12_PB, \
+ _ICL_DSC1_PICTURE_PARAMETER_SET_12_PC)
+
+#define DSCA_PICTURE_PARAMETER_SET_13 _MMIO(0x6B264)
+#define DSCC_PICTURE_PARAMETER_SET_13 _MMIO(0x6BA64)
+#define _ICL_DSC0_PICTURE_PARAMETER_SET_13_PB 0x782A4
+#define _ICL_DSC1_PICTURE_PARAMETER_SET_13_PB 0x783A4
+#define _ICL_DSC0_PICTURE_PARAMETER_SET_13_PC 0x784A4
+#define _ICL_DSC1_PICTURE_PARAMETER_SET_13_PC 0x785A4
+#define ICL_DSC0_PICTURE_PARAMETER_SET_13(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC0_PICTURE_PARAMETER_SET_13_PB, \
+ _ICL_DSC0_PICTURE_PARAMETER_SET_13_PC)
+#define ICL_DSC1_PICTURE_PARAMETER_SET_13(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC1_PICTURE_PARAMETER_SET_13_PB, \
+ _ICL_DSC1_PICTURE_PARAMETER_SET_13_PC)
+
+#define DSCA_PICTURE_PARAMETER_SET_14 _MMIO(0x6B268)
+#define DSCC_PICTURE_PARAMETER_SET_14 _MMIO(0x6BA68)
+#define _ICL_DSC0_PICTURE_PARAMETER_SET_14_PB 0x782A8
+#define _ICL_DSC1_PICTURE_PARAMETER_SET_14_PB 0x783A8
+#define _ICL_DSC0_PICTURE_PARAMETER_SET_14_PC 0x784A8
+#define _ICL_DSC1_PICTURE_PARAMETER_SET_14_PC 0x785A8
+#define ICL_DSC0_PICTURE_PARAMETER_SET_14(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC0_PICTURE_PARAMETER_SET_14_PB, \
+ _ICL_DSC0_PICTURE_PARAMETER_SET_14_PC)
+#define ICL_DSC1_PICTURE_PARAMETER_SET_14(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC1_PICTURE_PARAMETER_SET_14_PB, \
+ _ICL_DSC1_PICTURE_PARAMETER_SET_14_PC)
+
+#define DSCA_PICTURE_PARAMETER_SET_15 _MMIO(0x6B26C)
+#define DSCC_PICTURE_PARAMETER_SET_15 _MMIO(0x6BA6C)
+#define _ICL_DSC0_PICTURE_PARAMETER_SET_15_PB 0x782AC
+#define _ICL_DSC1_PICTURE_PARAMETER_SET_15_PB 0x783AC
+#define _ICL_DSC0_PICTURE_PARAMETER_SET_15_PC 0x784AC
+#define _ICL_DSC1_PICTURE_PARAMETER_SET_15_PC 0x785AC
+#define ICL_DSC0_PICTURE_PARAMETER_SET_15(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC0_PICTURE_PARAMETER_SET_15_PB, \
+ _ICL_DSC0_PICTURE_PARAMETER_SET_15_PC)
+#define ICL_DSC1_PICTURE_PARAMETER_SET_15(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC1_PICTURE_PARAMETER_SET_15_PB, \
+ _ICL_DSC1_PICTURE_PARAMETER_SET_15_PC)
+
+#define DSCA_PICTURE_PARAMETER_SET_16 _MMIO(0x6B270)
+#define DSCC_PICTURE_PARAMETER_SET_16 _MMIO(0x6BA70)
+#define _ICL_DSC0_PICTURE_PARAMETER_SET_16_PB 0x782B0
+#define _ICL_DSC1_PICTURE_PARAMETER_SET_16_PB 0x783B0
+#define _ICL_DSC0_PICTURE_PARAMETER_SET_16_PC 0x784B0
+#define _ICL_DSC1_PICTURE_PARAMETER_SET_16_PC 0x785B0
+#define ICL_DSC0_PICTURE_PARAMETER_SET_16(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC0_PICTURE_PARAMETER_SET_16_PB, \
+ _ICL_DSC0_PICTURE_PARAMETER_SET_16_PC)
+#define ICL_DSC1_PICTURE_PARAMETER_SET_16(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC1_PICTURE_PARAMETER_SET_16_PB, \
+ _ICL_DSC1_PICTURE_PARAMETER_SET_16_PC)
+#define DSC_SLICE_ROW_PER_FRAME(slice_row_per_frame) ((slice_row_per_frame) << 20)
+#define DSC_SLICE_PER_LINE(slice_per_line) ((slice_per_line) << 16)
+#define DSC_SLICE_CHUNK_SIZE(slice_chunk_size) ((slice_chunk_size) << 0)
+
+/* Icelake Rate Control Buffer Threshold Registers */
+#define DSCA_RC_BUF_THRESH_0 _MMIO(0x6B230)
+#define DSCA_RC_BUF_THRESH_0_UDW _MMIO(0x6B230 + 4)
+#define DSCC_RC_BUF_THRESH_0 _MMIO(0x6BA30)
+#define DSCC_RC_BUF_THRESH_0_UDW _MMIO(0x6BA30 + 4)
+#define _ICL_DSC0_RC_BUF_THRESH_0_PB (0x78254)
+#define _ICL_DSC0_RC_BUF_THRESH_0_UDW_PB (0x78254 + 4)
+#define _ICL_DSC1_RC_BUF_THRESH_0_PB (0x78354)
+#define _ICL_DSC1_RC_BUF_THRESH_0_UDW_PB (0x78354 + 4)
+#define _ICL_DSC0_RC_BUF_THRESH_0_PC (0x78454)
+#define _ICL_DSC0_RC_BUF_THRESH_0_UDW_PC (0x78454 + 4)
+#define _ICL_DSC1_RC_BUF_THRESH_0_PC (0x78554)
+#define _ICL_DSC1_RC_BUF_THRESH_0_UDW_PC (0x78554 + 4)
+#define ICL_DSC0_RC_BUF_THRESH_0(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC0_RC_BUF_THRESH_0_PB, \
+ _ICL_DSC0_RC_BUF_THRESH_0_PC)
+#define ICL_DSC0_RC_BUF_THRESH_0_UDW(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC0_RC_BUF_THRESH_0_UDW_PB, \
+ _ICL_DSC0_RC_BUF_THRESH_0_UDW_PC)
+#define ICL_DSC1_RC_BUF_THRESH_0(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC1_RC_BUF_THRESH_0_PB, \
+ _ICL_DSC1_RC_BUF_THRESH_0_PC)
+#define ICL_DSC1_RC_BUF_THRESH_0_UDW(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC1_RC_BUF_THRESH_0_UDW_PB, \
+ _ICL_DSC1_RC_BUF_THRESH_0_UDW_PC)
+
+#define DSCA_RC_BUF_THRESH_1 _MMIO(0x6B238)
+#define DSCA_RC_BUF_THRESH_1_UDW _MMIO(0x6B238 + 4)
+#define DSCC_RC_BUF_THRESH_1 _MMIO(0x6BA38)
+#define DSCC_RC_BUF_THRESH_1_UDW _MMIO(0x6BA38 + 4)
+#define _ICL_DSC0_RC_BUF_THRESH_1_PB (0x7825C)
+#define _ICL_DSC0_RC_BUF_THRESH_1_UDW_PB (0x7825C + 4)
+#define _ICL_DSC1_RC_BUF_THRESH_1_PB (0x7835C)
+#define _ICL_DSC1_RC_BUF_THRESH_1_UDW_PB (0x7835C + 4)
+#define _ICL_DSC0_RC_BUF_THRESH_1_PC (0x7845C)
+#define _ICL_DSC0_RC_BUF_THRESH_1_UDW_PC (0x7845C + 4)
+#define _ICL_DSC1_RC_BUF_THRESH_1_PC (0x7855C)
+#define _ICL_DSC1_RC_BUF_THRESH_1_UDW_PC (0x7855C + 4)
+#define ICL_DSC0_RC_BUF_THRESH_1(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC0_RC_BUF_THRESH_1_PB, \
+ _ICL_DSC0_RC_BUF_THRESH_1_PC)
+#define ICL_DSC0_RC_BUF_THRESH_1_UDW(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC0_RC_BUF_THRESH_1_UDW_PB, \
+ _ICL_DSC0_RC_BUF_THRESH_1_UDW_PC)
+#define ICL_DSC1_RC_BUF_THRESH_1(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC1_RC_BUF_THRESH_1_PB, \
+ _ICL_DSC1_RC_BUF_THRESH_1_PC)
+#define ICL_DSC1_RC_BUF_THRESH_1_UDW(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC1_RC_BUF_THRESH_1_UDW_PB, \
+ _ICL_DSC1_RC_BUF_THRESH_1_UDW_PC)
+
+/* Icelake DSC Rate Control Range Parameter Registers */
+#define DSCA_RC_RANGE_PARAMETERS_0 _MMIO(0x6B240)
+#define DSCA_RC_RANGE_PARAMETERS_0_UDW _MMIO(0x6B240 + 4)
+#define DSCC_RC_RANGE_PARAMETERS_0 _MMIO(0x6BA40)
+#define DSCC_RC_RANGE_PARAMETERS_0_UDW _MMIO(0x6BA40 + 4)
+#define _ICL_DSC0_RC_RANGE_PARAMETERS_0_PB (0x78208)
+#define _ICL_DSC0_RC_RANGE_PARAMETERS_0_UDW_PB (0x78208 + 4)
+#define _ICL_DSC1_RC_RANGE_PARAMETERS_0_PB (0x78308)
+#define _ICL_DSC1_RC_RANGE_PARAMETERS_0_UDW_PB (0x78308 + 4)
+#define _ICL_DSC0_RC_RANGE_PARAMETERS_0_PC (0x78408)
+#define _ICL_DSC0_RC_RANGE_PARAMETERS_0_UDW_PC (0x78408 + 4)
+#define _ICL_DSC1_RC_RANGE_PARAMETERS_0_PC (0x78508)
+#define _ICL_DSC1_RC_RANGE_PARAMETERS_0_UDW_PC (0x78508 + 4)
+#define ICL_DSC0_RC_RANGE_PARAMETERS_0(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC0_RC_RANGE_PARAMETERS_0_PB, \
+ _ICL_DSC0_RC_RANGE_PARAMETERS_0_PC)
+#define ICL_DSC0_RC_RANGE_PARAMETERS_0_UDW(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC0_RC_RANGE_PARAMETERS_0_UDW_PB, \
+ _ICL_DSC0_RC_RANGE_PARAMETERS_0_UDW_PC)
+#define ICL_DSC1_RC_RANGE_PARAMETERS_0(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC1_RC_RANGE_PARAMETERS_0_PB, \
+ _ICL_DSC1_RC_RANGE_PARAMETERS_0_PC)
+#define ICL_DSC1_RC_RANGE_PARAMETERS_0_UDW(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC1_RC_RANGE_PARAMETERS_0_UDW_PB, \
+ _ICL_DSC1_RC_RANGE_PARAMETERS_0_UDW_PC)
+#define RC_BPG_OFFSET_SHIFT 10
+#define RC_MAX_QP_SHIFT 5
+#define RC_MIN_QP_SHIFT 0
+
+#define DSCA_RC_RANGE_PARAMETERS_1 _MMIO(0x6B248)
+#define DSCA_RC_RANGE_PARAMETERS_1_UDW _MMIO(0x6B248 + 4)
+#define DSCC_RC_RANGE_PARAMETERS_1 _MMIO(0x6BA48)
+#define DSCC_RC_RANGE_PARAMETERS_1_UDW _MMIO(0x6BA48 + 4)
+#define _ICL_DSC0_RC_RANGE_PARAMETERS_1_PB (0x78210)
+#define _ICL_DSC0_RC_RANGE_PARAMETERS_1_UDW_PB (0x78210 + 4)
+#define _ICL_DSC1_RC_RANGE_PARAMETERS_1_PB (0x78310)
+#define _ICL_DSC1_RC_RANGE_PARAMETERS_1_UDW_PB (0x78310 + 4)
+#define _ICL_DSC0_RC_RANGE_PARAMETERS_1_PC (0x78410)
+#define _ICL_DSC0_RC_RANGE_PARAMETERS_1_UDW_PC (0x78410 + 4)
+#define _ICL_DSC1_RC_RANGE_PARAMETERS_1_PC (0x78510)
+#define _ICL_DSC1_RC_RANGE_PARAMETERS_1_UDW_PC (0x78510 + 4)
+#define ICL_DSC0_RC_RANGE_PARAMETERS_1(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC0_RC_RANGE_PARAMETERS_1_PB, \
+ _ICL_DSC0_RC_RANGE_PARAMETERS_1_PC)
+#define ICL_DSC0_RC_RANGE_PARAMETERS_1_UDW(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC0_RC_RANGE_PARAMETERS_1_UDW_PB, \
+ _ICL_DSC0_RC_RANGE_PARAMETERS_1_UDW_PC)
+#define ICL_DSC1_RC_RANGE_PARAMETERS_1(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC1_RC_RANGE_PARAMETERS_1_PB, \
+ _ICL_DSC1_RC_RANGE_PARAMETERS_1_PC)
+#define ICL_DSC1_RC_RANGE_PARAMETERS_1_UDW(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC1_RC_RANGE_PARAMETERS_1_UDW_PB, \
+ _ICL_DSC1_RC_RANGE_PARAMETERS_1_UDW_PC)
+
+#define DSCA_RC_RANGE_PARAMETERS_2 _MMIO(0x6B250)
+#define DSCA_RC_RANGE_PARAMETERS_2_UDW _MMIO(0x6B250 + 4)
+#define DSCC_RC_RANGE_PARAMETERS_2 _MMIO(0x6BA50)
+#define DSCC_RC_RANGE_PARAMETERS_2_UDW _MMIO(0x6BA50 + 4)
+#define _ICL_DSC0_RC_RANGE_PARAMETERS_2_PB (0x78218)
+#define _ICL_DSC0_RC_RANGE_PARAMETERS_2_UDW_PB (0x78218 + 4)
+#define _ICL_DSC1_RC_RANGE_PARAMETERS_2_PB (0x78318)
+#define _ICL_DSC1_RC_RANGE_PARAMETERS_2_UDW_PB (0x78318 + 4)
+#define _ICL_DSC0_RC_RANGE_PARAMETERS_2_PC (0x78418)
+#define _ICL_DSC0_RC_RANGE_PARAMETERS_2_UDW_PC (0x78418 + 4)
+#define _ICL_DSC1_RC_RANGE_PARAMETERS_2_PC (0x78518)
+#define _ICL_DSC1_RC_RANGE_PARAMETERS_2_UDW_PC (0x78518 + 4)
+#define ICL_DSC0_RC_RANGE_PARAMETERS_2(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC0_RC_RANGE_PARAMETERS_2_PB, \
+ _ICL_DSC0_RC_RANGE_PARAMETERS_2_PC)
+#define ICL_DSC0_RC_RANGE_PARAMETERS_2_UDW(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC0_RC_RANGE_PARAMETERS_2_UDW_PB, \
+ _ICL_DSC0_RC_RANGE_PARAMETERS_2_UDW_PC)
+#define ICL_DSC1_RC_RANGE_PARAMETERS_2(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC1_RC_RANGE_PARAMETERS_2_PB, \
+ _ICL_DSC1_RC_RANGE_PARAMETERS_2_PC)
+#define ICL_DSC1_RC_RANGE_PARAMETERS_2_UDW(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC1_RC_RANGE_PARAMETERS_2_UDW_PB, \
+ _ICL_DSC1_RC_RANGE_PARAMETERS_2_UDW_PC)
+
+#define DSCA_RC_RANGE_PARAMETERS_3 _MMIO(0x6B258)
+#define DSCA_RC_RANGE_PARAMETERS_3_UDW _MMIO(0x6B258 + 4)
+#define DSCC_RC_RANGE_PARAMETERS_3 _MMIO(0x6BA58)
+#define DSCC_RC_RANGE_PARAMETERS_3_UDW _MMIO(0x6BA58 + 4)
+#define _ICL_DSC0_RC_RANGE_PARAMETERS_3_PB (0x78220)
+#define _ICL_DSC0_RC_RANGE_PARAMETERS_3_UDW_PB (0x78220 + 4)
+#define _ICL_DSC1_RC_RANGE_PARAMETERS_3_PB (0x78320)
+#define _ICL_DSC1_RC_RANGE_PARAMETERS_3_UDW_PB (0x78320 + 4)
+#define _ICL_DSC0_RC_RANGE_PARAMETERS_3_PC (0x78420)
+#define _ICL_DSC0_RC_RANGE_PARAMETERS_3_UDW_PC (0x78420 + 4)
+#define _ICL_DSC1_RC_RANGE_PARAMETERS_3_PC (0x78520)
+#define _ICL_DSC1_RC_RANGE_PARAMETERS_3_UDW_PC (0x78520 + 4)
+#define ICL_DSC0_RC_RANGE_PARAMETERS_3(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC0_RC_RANGE_PARAMETERS_3_PB, \
+ _ICL_DSC0_RC_RANGE_PARAMETERS_3_PC)
+#define ICL_DSC0_RC_RANGE_PARAMETERS_3_UDW(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC0_RC_RANGE_PARAMETERS_3_UDW_PB, \
+ _ICL_DSC0_RC_RANGE_PARAMETERS_3_UDW_PC)
+#define ICL_DSC1_RC_RANGE_PARAMETERS_3(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC1_RC_RANGE_PARAMETERS_3_PB, \
+ _ICL_DSC1_RC_RANGE_PARAMETERS_3_PC)
+#define ICL_DSC1_RC_RANGE_PARAMETERS_3_UDW(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
+ _ICL_DSC1_RC_RANGE_PARAMETERS_3_UDW_PB, \
+ _ICL_DSC1_RC_RANGE_PARAMETERS_3_UDW_PC)
+
+#endif /* __INTEL_VDSC_REGS_H__ */
diff --git a/drivers/gpu/drm/i915/display/intel_vga.c b/drivers/gpu/drm/i915/display/intel_vga.c
index b5d058404c14..286a0bdd28c6 100644
--- a/drivers/gpu/drm/i915/display/intel_vga.c
+++ b/drivers/gpu/drm/i915/display/intel_vga.c
@@ -6,10 +6,12 @@
#include <linux/pci.h>
#include <linux/vgaarb.h>
-#include <drm/i915_drm.h>
#include <video/vga.h>
+#include "soc/intel_gmch.h"
+
#include "i915_drv.h"
+#include "i915_reg.h"
#include "intel_de.h"
#include "intel_vga.h"
@@ -97,39 +99,12 @@ void intel_vga_reset_io_mem(struct drm_i915_private *i915)
vga_put(pdev, VGA_RSRC_LEGACY_IO);
}
-static int
-intel_vga_set_state(struct drm_i915_private *i915, bool enable_decode)
-{
- unsigned int reg = DISPLAY_VER(i915) >= 6 ? SNB_GMCH_CTRL : INTEL_GMCH_CTRL;
- u16 gmch_ctrl;
-
- if (pci_read_config_word(i915->bridge_dev, reg, &gmch_ctrl)) {
- drm_err(&i915->drm, "failed to read control word\n");
- return -EIO;
- }
-
- if (!!(gmch_ctrl & INTEL_GMCH_VGA_DISABLE) == !enable_decode)
- return 0;
-
- if (enable_decode)
- gmch_ctrl &= ~INTEL_GMCH_VGA_DISABLE;
- else
- gmch_ctrl |= INTEL_GMCH_VGA_DISABLE;
-
- if (pci_write_config_word(i915->bridge_dev, reg, gmch_ctrl)) {
- drm_err(&i915->drm, "failed to write control word\n");
- return -EIO;
- }
-
- return 0;
-}
-
static unsigned int
intel_vga_set_decode(struct pci_dev *pdev, bool enable_decode)
{
struct drm_i915_private *i915 = pdev_to_i915(pdev);
- intel_vga_set_state(i915, enable_decode);
+ intel_gmch_vga_set_state(i915, enable_decode);
if (enable_decode)
return VGA_RSRC_LEGACY_IO | VGA_RSRC_LEGACY_MEM |
diff --git a/drivers/gpu/drm/i915/display/intel_vrr.c b/drivers/gpu/drm/i915/display/intel_vrr.c
index 5eac99021875..4228f26b4c11 100644
--- a/drivers/gpu/drm/i915/display/intel_vrr.c
+++ b/drivers/gpu/drm/i915/display/intel_vrr.c
@@ -5,6 +5,7 @@
*/
#include "i915_drv.h"
+#include "i915_reg.h"
#include "intel_de.h"
#include "intel_display_types.h"
#include "intel_vrr.h"
@@ -77,10 +78,10 @@ static int intel_vrr_vblank_exit_length(const struct intel_crtc_state *crtc_stat
struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
struct drm_i915_private *i915 = to_i915(crtc->base.dev);
- /* The hw imposes the extra scanline before frame start */
if (DISPLAY_VER(i915) >= 13)
- return crtc_state->vrr.guardband + crtc_state->framestart_delay + 1;
+ return crtc_state->vrr.guardband;
else
+ /* The hw imposes the extra scanline before frame start */
return crtc_state->vrr.pipeline_full + crtc_state->framestart_delay + 1;
}
@@ -143,57 +144,47 @@ intel_vrr_compute_config(struct intel_crtc_state *crtc_state,
* is deprecated.
*/
if (DISPLAY_VER(i915) >= 13) {
- /*
- * FIXME: Subtract Window2 delay from below value.
- *
- * Window2 specifies time required to program DSB (Window2) in
- * number of scan lines. Assuming 0 for no DSB.
- */
crtc_state->vrr.guardband =
- crtc_state->vrr.vmin - adjusted_mode->crtc_vdisplay;
+ crtc_state->vrr.vmin + 1 - adjusted_mode->crtc_vblank_start;
} else {
- /*
- * FIXME: s/4/framestart_delay/ to get consistent
- * earliest/latest points for register latching regardless
- * of the framestart_delay used?
- *
- * FIXME: this really needs the extra scanline to provide consistent
- * behaviour for all framestart_delay values. Otherwise with
- * framestart_delay==4 we will end up extending the min vblank by
- * one extra line.
- */
crtc_state->vrr.pipeline_full =
- min(255, crtc_state->vrr.vmin - adjusted_mode->crtc_vdisplay - 4 - 1);
+ min(255, crtc_state->vrr.vmin - adjusted_mode->crtc_vblank_start -
+ crtc_state->framestart_delay - 1);
}
crtc_state->mode_flags |= I915_MODE_FLAG_VRR;
}
+static u32 trans_vrr_ctl(const struct intel_crtc_state *crtc_state)
+{
+ struct drm_i915_private *i915 = to_i915(crtc_state->uapi.crtc->dev);
+
+ if (DISPLAY_VER(i915) >= 13)
+ return VRR_CTL_IGN_MAX_SHIFT | VRR_CTL_FLIP_LINE_EN |
+ XELPD_VRR_CTL_VRR_GUARDBAND(crtc_state->vrr.guardband);
+ else
+ return VRR_CTL_IGN_MAX_SHIFT | VRR_CTL_FLIP_LINE_EN |
+ VRR_CTL_PIPELINE_FULL(crtc_state->vrr.pipeline_full) |
+ VRR_CTL_PIPELINE_FULL_OVERRIDE;
+}
+
void intel_vrr_enable(struct intel_encoder *encoder,
const struct intel_crtc_state *crtc_state)
{
struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
enum transcoder cpu_transcoder = crtc_state->cpu_transcoder;
- u32 trans_vrr_ctl;
if (!crtc_state->vrr.enable)
return;
- if (DISPLAY_VER(dev_priv) >= 13)
- trans_vrr_ctl = VRR_CTL_VRR_ENABLE |
- VRR_CTL_IGN_MAX_SHIFT | VRR_CTL_FLIP_LINE_EN |
- XELPD_VRR_CTL_VRR_GUARDBAND(crtc_state->vrr.guardband);
- else
- trans_vrr_ctl = VRR_CTL_VRR_ENABLE |
- VRR_CTL_IGN_MAX_SHIFT | VRR_CTL_FLIP_LINE_EN |
- VRR_CTL_PIPELINE_FULL(crtc_state->vrr.pipeline_full) |
- VRR_CTL_PIPELINE_FULL_OVERRIDE;
-
intel_de_write(dev_priv, TRANS_VRR_VMIN(cpu_transcoder), crtc_state->vrr.vmin - 1);
intel_de_write(dev_priv, TRANS_VRR_VMAX(cpu_transcoder), crtc_state->vrr.vmax - 1);
- intel_de_write(dev_priv, TRANS_VRR_CTL(cpu_transcoder), trans_vrr_ctl);
+ intel_de_write(dev_priv, TRANS_VRR_CTL(cpu_transcoder), trans_vrr_ctl(crtc_state));
intel_de_write(dev_priv, TRANS_VRR_FLIPLINE(cpu_transcoder), crtc_state->vrr.flipline - 1);
intel_de_write(dev_priv, TRANS_PUSH(cpu_transcoder), TRANS_PUSH_EN);
+
+ intel_de_write(dev_priv, TRANS_VRR_CTL(cpu_transcoder),
+ VRR_CTL_VRR_ENABLE | trans_vrr_ctl(crtc_state));
}
void intel_vrr_send_push(const struct intel_crtc_state *crtc_state)
@@ -230,8 +221,13 @@ void intel_vrr_disable(const struct intel_crtc_state *old_crtc_state)
if (!old_crtc_state->vrr.enable)
return;
- intel_de_write(dev_priv, TRANS_VRR_CTL(cpu_transcoder), 0);
+ intel_de_write(dev_priv, TRANS_VRR_CTL(cpu_transcoder),
+ trans_vrr_ctl(old_crtc_state));
+ intel_de_wait_for_clear(dev_priv, TRANS_VRR_STATUS(cpu_transcoder),
+ VRR_STATUS_VRR_EN_LIVE, 1000);
+
intel_de_write(dev_priv, TRANS_PUSH(cpu_transcoder), 0);
+ intel_de_write(dev_priv, TRANS_VRR_CTL(cpu_transcoder), 0);
}
void intel_vrr_get_config(struct intel_crtc *crtc,
diff --git a/drivers/gpu/drm/i915/display/intel_wm.c b/drivers/gpu/drm/i915/display/intel_wm.c
new file mode 100644
index 000000000000..b615449e70b4
--- /dev/null
+++ b/drivers/gpu/drm/i915/display/intel_wm.c
@@ -0,0 +1,408 @@
+// SPDX-License-Identifier: MIT
+/*
+ * Copyright © 2023 Intel Corporation
+ */
+
+#include "i915_drv.h"
+#include "i9xx_wm.h"
+#include "intel_display_types.h"
+#include "intel_wm.h"
+#include "skl_watermark.h"
+
+/**
+ * intel_update_watermarks - update FIFO watermark values based on current modes
+ * @i915: i915 device
+ *
+ * Calculate watermark values for the various WM regs based on current mode
+ * and plane configuration.
+ *
+ * There are several cases to deal with here:
+ * - normal (i.e. non-self-refresh)
+ * - self-refresh (SR) mode
+ * - lines are large relative to FIFO size (buffer can hold up to 2)
+ * - lines are small relative to FIFO size (buffer can hold more than 2
+ * lines), so need to account for TLB latency
+ *
+ * The normal calculation is:
+ * watermark = dotclock * bytes per pixel * latency
+ * where latency is platform & configuration dependent (we assume pessimal
+ * values here).
+ *
+ * The SR calculation is:
+ * watermark = (trunc(latency/line time)+1) * surface width *
+ * bytes per pixel
+ * where
+ * line time = htotal / dotclock
+ * surface width = hdisplay for normal plane and 64 for cursor
+ * and latency is assumed to be high, as above.
+ *
+ * The final value programmed to the register should always be rounded up,
+ * and include an extra 2 entries to account for clock crossings.
+ *
+ * We don't use the sprite, so we can ignore that. And on Crestline we have
+ * to set the non-SR watermarks to 8.
+ */
+void intel_update_watermarks(struct drm_i915_private *i915)
+{
+ if (i915->display.funcs.wm->update_wm)
+ i915->display.funcs.wm->update_wm(i915);
+}
+
+int intel_compute_pipe_wm(struct intel_atomic_state *state,
+ struct intel_crtc *crtc)
+{
+ struct drm_i915_private *i915 = to_i915(state->base.dev);
+
+ if (i915->display.funcs.wm->compute_pipe_wm)
+ return i915->display.funcs.wm->compute_pipe_wm(state, crtc);
+
+ return 0;
+}
+
+int intel_compute_intermediate_wm(struct intel_atomic_state *state,
+ struct intel_crtc *crtc)
+{
+ struct drm_i915_private *i915 = to_i915(state->base.dev);
+
+ if (!i915->display.funcs.wm->compute_intermediate_wm)
+ return 0;
+
+ if (drm_WARN_ON(&i915->drm, !i915->display.funcs.wm->compute_pipe_wm))
+ return 0;
+
+ return i915->display.funcs.wm->compute_intermediate_wm(state, crtc);
+}
+
+bool intel_initial_watermarks(struct intel_atomic_state *state,
+ struct intel_crtc *crtc)
+{
+ struct drm_i915_private *i915 = to_i915(state->base.dev);
+
+ if (i915->display.funcs.wm->initial_watermarks) {
+ i915->display.funcs.wm->initial_watermarks(state, crtc);
+ return true;
+ }
+
+ return false;
+}
+
+void intel_atomic_update_watermarks(struct intel_atomic_state *state,
+ struct intel_crtc *crtc)
+{
+ struct drm_i915_private *i915 = to_i915(state->base.dev);
+
+ if (i915->display.funcs.wm->atomic_update_watermarks)
+ i915->display.funcs.wm->atomic_update_watermarks(state, crtc);
+}
+
+void intel_optimize_watermarks(struct intel_atomic_state *state,
+ struct intel_crtc *crtc)
+{
+ struct drm_i915_private *i915 = to_i915(state->base.dev);
+
+ if (i915->display.funcs.wm->optimize_watermarks)
+ i915->display.funcs.wm->optimize_watermarks(state, crtc);
+}
+
+int intel_compute_global_watermarks(struct intel_atomic_state *state)
+{
+ struct drm_i915_private *i915 = to_i915(state->base.dev);
+
+ if (i915->display.funcs.wm->compute_global_watermarks)
+ return i915->display.funcs.wm->compute_global_watermarks(state);
+
+ return 0;
+}
+
+void intel_wm_get_hw_state(struct drm_i915_private *i915)
+{
+ if (i915->display.funcs.wm->get_hw_state)
+ return i915->display.funcs.wm->get_hw_state(i915);
+}
+
+bool intel_wm_plane_visible(const struct intel_crtc_state *crtc_state,
+ const struct intel_plane_state *plane_state)
+{
+ struct intel_plane *plane = to_intel_plane(plane_state->uapi.plane);
+
+ /* FIXME check the 'enable' instead */
+ if (!crtc_state->hw.active)
+ return false;
+
+ /*
+ * Treat cursor with fb as always visible since cursor updates
+ * can happen faster than the vrefresh rate, and the current
+ * watermark code doesn't handle that correctly. Cursor updates
+ * which set/clear the fb or change the cursor size are going
+ * to get throttled by intel_legacy_cursor_update() to work
+ * around this problem with the watermark code.
+ */
+ if (plane->id == PLANE_CURSOR)
+ return plane_state->hw.fb != NULL;
+ else
+ return plane_state->uapi.visible;
+}
+
+void intel_print_wm_latency(struct drm_i915_private *dev_priv,
+ const char *name, const u16 wm[])
+{
+ int level;
+
+ for (level = 0; level < dev_priv->display.wm.num_levels; level++) {
+ unsigned int latency = wm[level];
+
+ if (latency == 0) {
+ drm_dbg_kms(&dev_priv->drm,
+ "%s WM%d latency not provided\n",
+ name, level);
+ continue;
+ }
+
+ /*
+ * - latencies are in us on gen9.
+ * - before then, WM1+ latency values are in 0.5us units
+ */
+ if (DISPLAY_VER(dev_priv) >= 9)
+ latency *= 10;
+ else if (level > 0)
+ latency *= 5;
+
+ drm_dbg_kms(&dev_priv->drm,
+ "%s WM%d latency %u (%u.%u usec)\n", name, level,
+ wm[level], latency / 10, latency % 10);
+ }
+}
+
+void intel_wm_init(struct drm_i915_private *i915)
+{
+ if (DISPLAY_VER(i915) >= 9)
+ skl_wm_init(i915);
+ else
+ i9xx_wm_init(i915);
+}
+
+static void wm_latency_show(struct seq_file *m, const u16 wm[8])
+{
+ struct drm_i915_private *dev_priv = m->private;
+ int level;
+
+ drm_modeset_lock_all(&dev_priv->drm);
+
+ for (level = 0; level < dev_priv->display.wm.num_levels; level++) {
+ unsigned int latency = wm[level];
+
+ /*
+ * - WM1+ latency values in 0.5us units
+ * - latencies are in us on gen9/vlv/chv
+ */
+ if (DISPLAY_VER(dev_priv) >= 9 ||
+ IS_VALLEYVIEW(dev_priv) ||
+ IS_CHERRYVIEW(dev_priv) ||
+ IS_G4X(dev_priv))
+ latency *= 10;
+ else if (level > 0)
+ latency *= 5;
+
+ seq_printf(m, "WM%d %u (%u.%u usec)\n",
+ level, wm[level], latency / 10, latency % 10);
+ }
+
+ drm_modeset_unlock_all(&dev_priv->drm);
+}
+
+static int pri_wm_latency_show(struct seq_file *m, void *data)
+{
+ struct drm_i915_private *dev_priv = m->private;
+ const u16 *latencies;
+
+ if (DISPLAY_VER(dev_priv) >= 9)
+ latencies = dev_priv->display.wm.skl_latency;
+ else
+ latencies = dev_priv->display.wm.pri_latency;
+
+ wm_latency_show(m, latencies);
+
+ return 0;
+}
+
+static int spr_wm_latency_show(struct seq_file *m, void *data)
+{
+ struct drm_i915_private *dev_priv = m->private;
+ const u16 *latencies;
+
+ if (DISPLAY_VER(dev_priv) >= 9)
+ latencies = dev_priv->display.wm.skl_latency;
+ else
+ latencies = dev_priv->display.wm.spr_latency;
+
+ wm_latency_show(m, latencies);
+
+ return 0;
+}
+
+static int cur_wm_latency_show(struct seq_file *m, void *data)
+{
+ struct drm_i915_private *dev_priv = m->private;
+ const u16 *latencies;
+
+ if (DISPLAY_VER(dev_priv) >= 9)
+ latencies = dev_priv->display.wm.skl_latency;
+ else
+ latencies = dev_priv->display.wm.cur_latency;
+
+ wm_latency_show(m, latencies);
+
+ return 0;
+}
+
+static int pri_wm_latency_open(struct inode *inode, struct file *file)
+{
+ struct drm_i915_private *dev_priv = inode->i_private;
+
+ if (DISPLAY_VER(dev_priv) < 5 && !IS_G4X(dev_priv))
+ return -ENODEV;
+
+ return single_open(file, pri_wm_latency_show, dev_priv);
+}
+
+static int spr_wm_latency_open(struct inode *inode, struct file *file)
+{
+ struct drm_i915_private *dev_priv = inode->i_private;
+
+ if (HAS_GMCH(dev_priv))
+ return -ENODEV;
+
+ return single_open(file, spr_wm_latency_show, dev_priv);
+}
+
+static int cur_wm_latency_open(struct inode *inode, struct file *file)
+{
+ struct drm_i915_private *dev_priv = inode->i_private;
+
+ if (HAS_GMCH(dev_priv))
+ return -ENODEV;
+
+ return single_open(file, cur_wm_latency_show, dev_priv);
+}
+
+static ssize_t wm_latency_write(struct file *file, const char __user *ubuf,
+ size_t len, loff_t *offp, u16 wm[8])
+{
+ struct seq_file *m = file->private_data;
+ struct drm_i915_private *dev_priv = m->private;
+ u16 new[8] = { 0 };
+ int level;
+ int ret;
+ char tmp[32];
+
+ if (len >= sizeof(tmp))
+ return -EINVAL;
+
+ if (copy_from_user(tmp, ubuf, len))
+ return -EFAULT;
+
+ tmp[len] = '\0';
+
+ ret = sscanf(tmp, "%hu %hu %hu %hu %hu %hu %hu %hu",
+ &new[0], &new[1], &new[2], &new[3],
+ &new[4], &new[5], &new[6], &new[7]);
+ if (ret != dev_priv->display.wm.num_levels)
+ return -EINVAL;
+
+ drm_modeset_lock_all(&dev_priv->drm);
+
+ for (level = 0; level < dev_priv->display.wm.num_levels; level++)
+ wm[level] = new[level];
+
+ drm_modeset_unlock_all(&dev_priv->drm);
+
+ return len;
+}
+
+static ssize_t pri_wm_latency_write(struct file *file, const char __user *ubuf,
+ size_t len, loff_t *offp)
+{
+ struct seq_file *m = file->private_data;
+ struct drm_i915_private *dev_priv = m->private;
+ u16 *latencies;
+
+ if (DISPLAY_VER(dev_priv) >= 9)
+ latencies = dev_priv->display.wm.skl_latency;
+ else
+ latencies = dev_priv->display.wm.pri_latency;
+
+ return wm_latency_write(file, ubuf, len, offp, latencies);
+}
+
+static ssize_t spr_wm_latency_write(struct file *file, const char __user *ubuf,
+ size_t len, loff_t *offp)
+{
+ struct seq_file *m = file->private_data;
+ struct drm_i915_private *dev_priv = m->private;
+ u16 *latencies;
+
+ if (DISPLAY_VER(dev_priv) >= 9)
+ latencies = dev_priv->display.wm.skl_latency;
+ else
+ latencies = dev_priv->display.wm.spr_latency;
+
+ return wm_latency_write(file, ubuf, len, offp, latencies);
+}
+
+static ssize_t cur_wm_latency_write(struct file *file, const char __user *ubuf,
+ size_t len, loff_t *offp)
+{
+ struct seq_file *m = file->private_data;
+ struct drm_i915_private *dev_priv = m->private;
+ u16 *latencies;
+
+ if (DISPLAY_VER(dev_priv) >= 9)
+ latencies = dev_priv->display.wm.skl_latency;
+ else
+ latencies = dev_priv->display.wm.cur_latency;
+
+ return wm_latency_write(file, ubuf, len, offp, latencies);
+}
+
+static const struct file_operations i915_pri_wm_latency_fops = {
+ .owner = THIS_MODULE,
+ .open = pri_wm_latency_open,
+ .read = seq_read,
+ .llseek = seq_lseek,
+ .release = single_release,
+ .write = pri_wm_latency_write
+};
+
+static const struct file_operations i915_spr_wm_latency_fops = {
+ .owner = THIS_MODULE,
+ .open = spr_wm_latency_open,
+ .read = seq_read,
+ .llseek = seq_lseek,
+ .release = single_release,
+ .write = spr_wm_latency_write
+};
+
+static const struct file_operations i915_cur_wm_latency_fops = {
+ .owner = THIS_MODULE,
+ .open = cur_wm_latency_open,
+ .read = seq_read,
+ .llseek = seq_lseek,
+ .release = single_release,
+ .write = cur_wm_latency_write
+};
+
+void intel_wm_debugfs_register(struct drm_i915_private *i915)
+{
+ struct drm_minor *minor = i915->drm.primary;
+
+ debugfs_create_file("i915_pri_wm_latency", 0644, minor->debugfs_root,
+ i915, &i915_pri_wm_latency_fops);
+
+ debugfs_create_file("i915_spr_wm_latency", 0644, minor->debugfs_root,
+ i915, &i915_spr_wm_latency_fops);
+
+ debugfs_create_file("i915_cur_wm_latency", 0644, minor->debugfs_root,
+ i915, &i915_cur_wm_latency_fops);
+
+ skl_watermark_debugfs_register(i915);
+}
diff --git a/drivers/gpu/drm/i915/display/intel_wm.h b/drivers/gpu/drm/i915/display/intel_wm.h
new file mode 100644
index 000000000000..48429ac140d2
--- /dev/null
+++ b/drivers/gpu/drm/i915/display/intel_wm.h
@@ -0,0 +1,37 @@
+/* SPDX-License-Identifier: MIT */
+/*
+ * Copyright © 2023 Intel Corporation
+ */
+
+#ifndef __INTEL_WM_H__
+#define __INTEL_WM_H__
+
+#include <linux/types.h>
+
+struct drm_i915_private;
+struct intel_atomic_state;
+struct intel_crtc;
+struct intel_crtc_state;
+struct intel_plane_state;
+
+void intel_update_watermarks(struct drm_i915_private *i915);
+int intel_compute_pipe_wm(struct intel_atomic_state *state,
+ struct intel_crtc *crtc);
+int intel_compute_intermediate_wm(struct intel_atomic_state *state,
+ struct intel_crtc *crtc);
+bool intel_initial_watermarks(struct intel_atomic_state *state,
+ struct intel_crtc *crtc);
+void intel_atomic_update_watermarks(struct intel_atomic_state *state,
+ struct intel_crtc *crtc);
+void intel_optimize_watermarks(struct intel_atomic_state *state,
+ struct intel_crtc *crtc);
+int intel_compute_global_watermarks(struct intel_atomic_state *state);
+void intel_wm_get_hw_state(struct drm_i915_private *i915);
+bool intel_wm_plane_visible(const struct intel_crtc_state *crtc_state,
+ const struct intel_plane_state *plane_state);
+void intel_print_wm_latency(struct drm_i915_private *i915,
+ const char *name, const u16 wm[]);
+void intel_wm_init(struct drm_i915_private *i915);
+void intel_wm_debugfs_register(struct drm_i915_private *i915);
+
+#endif /* __INTEL_WM_H__ */
diff --git a/drivers/gpu/drm/i915/intel_pm_types.h b/drivers/gpu/drm/i915/display/intel_wm_types.h
index 211632f58751..628b7c0ce484 100644
--- a/drivers/gpu/drm/i915/intel_pm_types.h
+++ b/drivers/gpu/drm/i915/display/intel_wm_types.h
@@ -3,12 +3,12 @@
* Copyright © 2021 Intel Corporation
*/
-#ifndef __INTEL_PM_TYPES_H__
-#define __INTEL_PM_TYPES_H__
+#ifndef __INTEL_WM_TYPES_H__
+#define __INTEL_WM_TYPES_H__
#include <linux/types.h>
-#include "display/intel_display.h"
+#include "intel_display_limits.h"
enum intel_ddb_partitioning {
INTEL_DDB_PART_1_2,
@@ -73,4 +73,4 @@ static inline bool skl_ddb_entry_equal(const struct skl_ddb_entry *e1,
return false;
}
-#endif /* __INTEL_PM_TYPES_H__ */
+#endif /* __INTEL_WM_TYPES_H__ */
diff --git a/drivers/gpu/drm/i915/display/skl_scaler.c b/drivers/gpu/drm/i915/display/skl_scaler.c
index 4092679be21e..0e7e014fcc71 100644
--- a/drivers/gpu/drm/i915/display/skl_scaler.c
+++ b/drivers/gpu/drm/i915/display/skl_scaler.c
@@ -2,6 +2,8 @@
/*
* Copyright © 2020 Intel Corporation
*/
+
+#include "i915_reg.h"
#include "intel_de.h"
#include "intel_display_types.h"
#include "intel_fb.h"
@@ -85,6 +87,14 @@ static u16 skl_scaler_calc_phase(int sub, int scale, bool chroma_cosited)
#define ICL_MAX_SRC_H 4096
#define ICL_MAX_DST_W 5120
#define ICL_MAX_DST_H 4096
+#define TGL_MAX_SRC_W 5120
+#define TGL_MAX_SRC_H 8192
+#define TGL_MAX_DST_W 8192
+#define TGL_MAX_DST_H 8192
+#define MTL_MAX_SRC_W 4096
+#define MTL_MAX_SRC_H 8192
+#define MTL_MAX_DST_W 8192
+#define MTL_MAX_DST_H 8192
#define SKL_MIN_YUV_420_SRC_W 16
#define SKL_MIN_YUV_420_SRC_H 16
@@ -101,6 +111,10 @@ skl_update_scaler(struct intel_crtc_state *crtc_state, bool force_detach,
struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
const struct drm_display_mode *adjusted_mode =
&crtc_state->hw.adjusted_mode;
+ int pipe_src_w = drm_rect_width(&crtc_state->pipe_src);
+ int pipe_src_h = drm_rect_height(&crtc_state->pipe_src);
+ int min_src_w, min_src_h, min_dst_w, min_dst_h;
+ int max_src_w, max_src_h, max_dst_w, max_dst_h;
/*
* Src coordinates are already rotated by 270 degrees for
@@ -155,15 +169,38 @@ skl_update_scaler(struct intel_crtc_state *crtc_state, bool force_detach,
return -EINVAL;
}
+ min_src_w = SKL_MIN_SRC_W;
+ min_src_h = SKL_MIN_SRC_H;
+ min_dst_w = SKL_MIN_DST_W;
+ min_dst_h = SKL_MIN_DST_H;
+
+ if (DISPLAY_VER(dev_priv) < 11) {
+ max_src_w = SKL_MAX_SRC_W;
+ max_src_h = SKL_MAX_SRC_H;
+ max_dst_w = SKL_MAX_DST_W;
+ max_dst_h = SKL_MAX_DST_H;
+ } else if (DISPLAY_VER(dev_priv) < 12) {
+ max_src_w = ICL_MAX_SRC_W;
+ max_src_h = ICL_MAX_SRC_H;
+ max_dst_w = ICL_MAX_DST_W;
+ max_dst_h = ICL_MAX_DST_H;
+ } else if (DISPLAY_VER(dev_priv) < 14) {
+ max_src_w = TGL_MAX_SRC_W;
+ max_src_h = TGL_MAX_SRC_H;
+ max_dst_w = TGL_MAX_DST_W;
+ max_dst_h = TGL_MAX_DST_H;
+ } else {
+ max_src_w = MTL_MAX_SRC_W;
+ max_src_h = MTL_MAX_SRC_H;
+ max_dst_w = MTL_MAX_DST_W;
+ max_dst_h = MTL_MAX_DST_H;
+ }
+
/* range checks */
- if (src_w < SKL_MIN_SRC_W || src_h < SKL_MIN_SRC_H ||
- dst_w < SKL_MIN_DST_W || dst_h < SKL_MIN_DST_H ||
- (DISPLAY_VER(dev_priv) >= 11 &&
- (src_w > ICL_MAX_SRC_W || src_h > ICL_MAX_SRC_H ||
- dst_w > ICL_MAX_DST_W || dst_h > ICL_MAX_DST_H)) ||
- (DISPLAY_VER(dev_priv) < 11 &&
- (src_w > SKL_MAX_SRC_W || src_h > SKL_MAX_SRC_H ||
- dst_w > SKL_MAX_DST_W || dst_h > SKL_MAX_DST_H))) {
+ if (src_w < min_src_w || src_h < min_src_h ||
+ dst_w < min_dst_w || dst_h < min_dst_h ||
+ src_w > max_src_w || src_h > max_src_h ||
+ dst_w > max_dst_w || dst_h > max_dst_h) {
drm_dbg_kms(&dev_priv->drm,
"scaler_user index %u.%u: src %ux%u dst %ux%u "
"size is out of scaler range\n",
@@ -172,6 +209,21 @@ skl_update_scaler(struct intel_crtc_state *crtc_state, bool force_detach,
return -EINVAL;
}
+ /*
+ * The pipe scaler does not use all the bits of PIPESRC, at least
+ * on the earlier platforms. So even when we're scaling a plane
+ * the *pipe* source size must not be too large. For simplicity
+ * we assume the limits match the scaler source size limits. Might
+ * not be 100% accurate on all platforms, but good enough for now.
+ */
+ if (pipe_src_w > max_src_w || pipe_src_h > max_src_h) {
+ drm_dbg_kms(&dev_priv->drm,
+ "scaler_user index %u.%u: pipe src size %ux%u "
+ "is out of scaler range\n",
+ crtc->pipe, scaler_user, pipe_src_w, pipe_src_h);
+ return -EINVAL;
+ }
+
/* mark this plane as a scaler user in crtc_state */
scaler_state->scaler_users |= (1 << scaler_user);
drm_dbg_kms(&dev_priv->drm, "scaler_user index %u.%u: "
diff --git a/drivers/gpu/drm/i915/display/skl_universal_plane.c b/drivers/gpu/drm/i915/display/skl_universal_plane.c
index 7cb713043408..8ea0598a5a07 100644
--- a/drivers/gpu/drm/i915/display/skl_universal_plane.c
+++ b/drivers/gpu/drm/i915/display/skl_universal_plane.c
@@ -9,13 +9,14 @@
#include <drm/drm_fourcc.h>
#include "i915_drv.h"
+#include "i915_irq.h"
+#include "i915_reg.h"
#include "intel_atomic_plane.h"
#include "intel_de.h"
#include "intel_display_types.h"
#include "intel_fb.h"
#include "intel_fbc.h"
#include "intel_psr.h"
-#include "intel_sprite.h"
#include "skl_scaler.h"
#include "skl_universal_plane.h"
#include "skl_watermark.h"
@@ -246,6 +247,11 @@ bool icl_is_nv12_y_plane(struct drm_i915_private *dev_priv,
icl_nv12_y_plane_mask(dev_priv) & BIT(plane_id);
}
+u8 icl_hdr_plane_mask(void)
+{
+ return BIT(PLANE_PRIMARY) | BIT(PLANE_SPRITE0) | BIT(PLANE_SPRITE1);
+}
+
bool icl_is_hdr_plane(struct drm_i915_private *dev_priv, enum plane_id plane_id)
{
return DISPLAY_VER(dev_priv) >= 11 &&
@@ -635,7 +641,7 @@ icl_plane_disable_arm(struct intel_plane *plane,
skl_write_plane_wm(plane, crtc_state);
- intel_psr2_disable_plane_sel_fetch(plane, crtc_state);
+ intel_psr2_disable_plane_sel_fetch_arm(plane, crtc_state);
intel_de_write_fw(dev_priv, PLANE_CTL(pipe, plane_id), 0);
intel_de_write_fw(dev_priv, PLANE_SURF(pipe, plane_id), 0);
}
@@ -1253,7 +1259,7 @@ icl_plane_update_noarm(struct intel_plane *plane,
if (plane_state->force_black)
icl_plane_csc_load_black(plane);
- intel_psr2_program_plane_sel_fetch(plane, crtc_state, plane_state, color_plane);
+ intel_psr2_program_plane_sel_fetch_noarm(plane, crtc_state, plane_state, color_plane);
}
static void
@@ -1280,6 +1286,8 @@ icl_plane_update_arm(struct intel_plane *plane,
if (plane_state->scaler_id >= 0)
skl_program_plane_scaler(plane, crtc_state, plane_state);
+ intel_psr2_program_plane_sel_fetch_arm(plane, crtc_state, plane_state);
+
/*
* The control register self-arms if the plane was previously
* disabled. Try to make the plane enable atomic by writing
@@ -1620,7 +1628,7 @@ static int skl_check_main_surface(struct intel_plane_state *plane_state)
u32 offset;
int ret;
- if (w > max_width || w < min_width || h > max_height) {
+ if (w > max_width || w < min_width || h > max_height || h < 1) {
drm_dbg_kms(&dev_priv->drm,
"requested Y/RGB source size %dx%d outside limits (min: %dx1 max: %dx%d)\n",
w, h, min_width, max_width, max_height);
@@ -1841,7 +1849,7 @@ static bool bo_has_valid_encryption(struct drm_i915_gem_object *obj)
{
struct drm_i915_private *i915 = to_i915(obj->base.dev);
- return intel_pxp_key_check(&to_gt(i915)->pxp, obj, false) == 0;
+ return intel_pxp_key_check(i915->pxp, obj, false) == 0;
}
static bool pxp_is_borked(struct drm_i915_gem_object *obj)
@@ -2173,7 +2181,7 @@ static bool gen12_plane_has_mc_ccs(struct drm_i915_private *i915,
if (DISPLAY_VER(i915) < 12)
return false;
- /* Wa_14010477008:tgl[a0..c0],rkl[all],dg1[all] */
+ /* Wa_14010477008 */
if (IS_DG1(i915) || IS_ROCKETLAKE(i915) ||
IS_TGL_DISPLAY_STEP(i915, STEP_A0, STEP_D0))
return false;
@@ -2467,6 +2475,12 @@ skl_get_initial_plane_config(struct intel_crtc *crtc,
goto error;
}
+ if (!dev_priv->params.enable_dpt &&
+ intel_fb_modifier_uses_dpt(dev_priv, fb->modifier)) {
+ drm_dbg_kms(&dev_priv->drm, "DPT disabled, skipping initial FB\n");
+ goto error;
+ }
+
/*
* DRM_MODE_ROTATE_ is counter clockwise to stay compatible with Xrandr
* while i915 HW rotation is clockwise, thats why this swapping.
diff --git a/drivers/gpu/drm/i915/display/skl_universal_plane.h b/drivers/gpu/drm/i915/display/skl_universal_plane.h
index 351040b64dc7..be64c201f9b3 100644
--- a/drivers/gpu/drm/i915/display/skl_universal_plane.h
+++ b/drivers/gpu/drm/i915/display/skl_universal_plane.h
@@ -30,6 +30,7 @@ int skl_calc_main_surface_offset(const struct intel_plane_state *plane_state,
bool icl_is_nv12_y_plane(struct drm_i915_private *dev_priv,
enum plane_id plane_id);
+u8 icl_hdr_plane_mask(void);
bool icl_is_hdr_plane(struct drm_i915_private *dev_priv, enum plane_id plane_id);
#endif
diff --git a/drivers/gpu/drm/i915/display/skl_watermark.c b/drivers/gpu/drm/i915/display/skl_watermark.c
index 18178b01375e..1c7e6468f3e3 100644
--- a/drivers/gpu/drm/i915/display/skl_watermark.c
+++ b/drivers/gpu/drm/i915/display/skl_watermark.c
@@ -5,21 +5,23 @@
#include <drm/drm_blend.h>
+#include "i915_drv.h"
+#include "i915_fixed.h"
+#include "i915_reg.h"
+#include "i9xx_wm.h"
#include "intel_atomic.h"
#include "intel_atomic_plane.h"
#include "intel_bw.h"
+#include "intel_crtc.h"
#include "intel_de.h"
#include "intel_display.h"
#include "intel_display_power.h"
#include "intel_display_types.h"
#include "intel_fb.h"
-#include "skl_watermark.h"
-
-#include "i915_drv.h"
-#include "i915_fixed.h"
-#include "i915_reg.h"
#include "intel_pcode.h"
-#include "intel_pm.h"
+#include "intel_wm.h"
+#include "skl_watermark.h"
+#include "skl_watermark_regs.h"
static void skl_sagv_disable(struct drm_i915_private *i915);
@@ -45,8 +47,7 @@ u8 intel_enabled_dbuf_slices_mask(struct drm_i915_private *i915)
enum dbuf_slice slice;
for_each_dbuf_slice(i915, slice) {
- if (intel_uncore_read(&i915->uncore,
- DBUF_CTL_S(slice)) & DBUF_POWER_STATE)
+ if (intel_de_read(i915, DBUF_CTL_S(slice)) & DBUF_POWER_STATE)
enabled_slices |= BIT(slice);
}
@@ -65,7 +66,7 @@ static bool skl_needs_memory_bw_wa(struct drm_i915_private *i915)
static bool
intel_has_sagv(struct drm_i915_private *i915)
{
- return DISPLAY_VER(i915) >= 9 && !IS_LP(i915) &&
+ return HAS_SAGV(i915) &&
i915->display.sagv.status != I915_SAGV_NOT_CONTROLLED;
}
@@ -75,7 +76,7 @@ intel_sagv_block_time(struct drm_i915_private *i915)
if (DISPLAY_VER(i915) >= 14) {
u32 val;
- val = intel_uncore_read(&i915->uncore, MTL_LATENCY_SAGV);
+ val = intel_de_read(i915, MTL_LATENCY_SAGV);
return REG_FIELD_GET(MTL_LATENCY_QCLK_SAGV, val);
} else if (DISPLAY_VER(i915) >= 12) {
@@ -93,7 +94,7 @@ intel_sagv_block_time(struct drm_i915_private *i915)
return val;
} else if (DISPLAY_VER(i915) == 11) {
return 10;
- } else if (DISPLAY_VER(i915) == 9 && !IS_LP(i915)) {
+ } else if (HAS_SAGV(i915)) {
return 30;
} else {
return 0;
@@ -102,7 +103,7 @@ intel_sagv_block_time(struct drm_i915_private *i915)
static void intel_sagv_init(struct drm_i915_private *i915)
{
- if (!intel_has_sagv(i915))
+ if (!HAS_SAGV(i915))
i915->display.sagv.status = I915_SAGV_NOT_CONTROLLED;
/*
@@ -360,7 +361,7 @@ static bool skl_crtc_can_enable_sagv(const struct intel_crtc_state *crtc_state)
continue;
/* Find the highest enabled wm level for this plane */
- for (level = ilk_wm_max_level(i915);
+ for (level = i915->display.wm.num_levels - 1;
!wm->wm[level].enable; --level)
{ }
@@ -411,6 +412,9 @@ static bool intel_crtc_can_enable_sagv(const struct intel_crtc_state *crtc_state
struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
struct drm_i915_private *i915 = to_i915(crtc->base.dev);
+ if (!i915->params.enable_sagv)
+ return false;
+
if (DISPLAY_VER(i915) >= 12)
return tgl_crtc_can_enable_sagv(crtc_state);
else
@@ -705,16 +709,38 @@ static void skl_compute_plane_wm(const struct intel_crtc_state *crtc_state,
const struct skl_wm_level *result_prev,
struct skl_wm_level *result /* out */);
+static unsigned int skl_wm_latency(struct drm_i915_private *i915, int level,
+ const struct skl_wm_params *wp)
+{
+ unsigned int latency = i915->display.wm.skl_latency[level];
+
+ if (latency == 0)
+ return 0;
+
+ /*
+ * WaIncreaseLatencyIPCEnabled: kbl,cfl
+ * Display WA #1141: kbl,cfl
+ */
+ if ((IS_KABYLAKE(i915) || IS_COFFEELAKE(i915) || IS_COMETLAKE(i915)) &&
+ skl_watermark_ipc_enabled(i915))
+ latency += 4;
+
+ if (skl_needs_memory_bw_wa(i915) && wp && wp->x_tiled)
+ latency += 15;
+
+ return latency;
+}
+
static unsigned int
skl_cursor_allocation(const struct intel_crtc_state *crtc_state,
int num_active)
{
struct intel_plane *plane = to_intel_plane(crtc_state->uapi.crtc->cursor);
struct drm_i915_private *i915 = to_i915(crtc_state->uapi.crtc->dev);
- int level, max_level = ilk_wm_max_level(i915);
struct skl_wm_level wm = {};
int ret, min_ddb_alloc = 0;
struct skl_wm_params wp;
+ int level;
ret = skl_compute_wm_params(crtc_state, 256,
drm_format_info(DRM_FORMAT_ARGB8888),
@@ -723,8 +749,8 @@ skl_cursor_allocation(const struct intel_crtc_state *crtc_state,
crtc_state->pixel_rate, &wp, 0);
drm_WARN_ON(&i915->drm, ret);
- for (level = 0; level <= max_level; level++) {
- unsigned int latency = i915->display.wm.skl_latency[level];
+ for (level = 0; level < i915->display.wm.num_levels; level++) {
+ unsigned int latency = skl_wm_latency(i915, level, &wp);
skl_compute_plane_wm(crtc_state, plane, level, latency, &wp, &wm, &wm);
if (wm.min_ddb_alloc == U16_MAX)
@@ -756,18 +782,18 @@ skl_ddb_get_hw_plane_state(struct drm_i915_private *i915,
/* Cursor doesn't support NV12/planar, so no extra calculation needed */
if (plane_id == PLANE_CURSOR) {
- val = intel_uncore_read(&i915->uncore, CUR_BUF_CFG(pipe));
+ val = intel_de_read(i915, CUR_BUF_CFG(pipe));
skl_ddb_entry_init_from_hw(ddb, val);
return;
}
- val = intel_uncore_read(&i915->uncore, PLANE_BUF_CFG(pipe, plane_id));
+ val = intel_de_read(i915, PLANE_BUF_CFG(pipe, plane_id));
skl_ddb_entry_init_from_hw(ddb, val);
if (DISPLAY_VER(i915) >= 11)
return;
- val = intel_uncore_read(&i915->uncore, PLANE_NV12_BUF_CFG(pipe, plane_id));
+ val = intel_de_read(i915, PLANE_NV12_BUF_CFG(pipe, plane_id));
skl_ddb_entry_init_from_hw(ddb_y, val);
}
@@ -1408,16 +1434,22 @@ skl_check_nv12_wm_level(struct skl_wm_level *wm, struct skl_wm_level *uv_wm,
}
}
-static bool icl_need_wm1_wa(struct drm_i915_private *i915,
- enum plane_id plane_id)
+static bool skl_need_wm_copy_wa(struct drm_i915_private *i915, int level,
+ const struct skl_plane_wm *wm)
{
/*
* Wa_1408961008:icl, ehl
* Wa_14012656716:tgl, adl
- * Underruns with WM1+ disabled
+ * Wa_14017887344:icl
+ * Wa_14017868169:adl, tgl
+ * Due to some power saving optimizations, different subsystems
+ * like PSR, might still use even disabled wm level registers,
+ * for "reference", so lets keep at least the values sane.
+ * Considering amount of WA requiring us to do similar things, was
+ * decided to simply do it for all of the platforms, as those wm
+ * levels are disabled, this isn't going to do harm anyway.
*/
- return DISPLAY_VER(i915) == 11 ||
- (IS_DISPLAY_VER(i915, 12, 13) && plane_id == PLANE_CURSOR);
+ return level > 0 && !wm->wm[level].enable;
}
struct skl_plane_ddb_iter {
@@ -1493,7 +1525,7 @@ skl_crtc_allocate_plane_ddb(struct intel_atomic_state *state,
* Find the highest watermark level for which we can satisfy the block
* requirement of active planes.
*/
- for (level = ilk_wm_max_level(i915); level >= 0; level--) {
+ for (level = i915->display.wm.num_levels - 1; level >= 0; level--) {
blocks = 0;
for_each_plane_id_on_crtc(crtc, plane_id) {
const struct skl_plane_wm *wm =
@@ -1569,7 +1601,7 @@ skl_crtc_allocate_plane_ddb(struct intel_atomic_state *state,
* all levels as "enabled." Go back now and disable the ones
* that aren't actually possible.
*/
- for (level++; level <= ilk_wm_max_level(i915); level++) {
+ for (level++; level < i915->display.wm.num_levels; level++) {
for_each_plane_id_on_crtc(crtc, plane_id) {
const struct skl_ddb_entry *ddb =
&crtc_state->wm.skl.plane_ddb[plane_id];
@@ -1586,11 +1618,10 @@ skl_crtc_allocate_plane_ddb(struct intel_atomic_state *state,
else
skl_check_wm_level(&wm->wm[level], ddb);
- if (icl_need_wm1_wa(i915, plane_id) &&
- level == 1 && wm->wm[0].enable) {
- wm->wm[level].blocks = wm->wm[0].blocks;
- wm->wm[level].lines = wm->wm[0].lines;
- wm->wm[level].ignore_lines = wm->wm[0].ignore_lines;
+ if (skl_need_wm_copy_wa(i915, level, wm)) {
+ wm->wm[level].blocks = wm->wm[level - 1].blocks;
+ wm->wm[level].lines = wm->wm[level - 1].lines;
+ wm->wm[level].ignore_lines = wm->wm[level - 1].ignore_lines;
}
}
}
@@ -1706,26 +1737,10 @@ skl_compute_wm_params(const struct intel_crtc_state *crtc_state,
return -EINVAL;
}
- wp->y_tiled = modifier == I915_FORMAT_MOD_Y_TILED ||
- modifier == I915_FORMAT_MOD_4_TILED ||
- modifier == I915_FORMAT_MOD_Yf_TILED ||
- modifier == I915_FORMAT_MOD_Y_TILED_CCS ||
- modifier == I915_FORMAT_MOD_Yf_TILED_CCS ||
- modifier == I915_FORMAT_MOD_Y_TILED_GEN12_RC_CCS ||
- modifier == I915_FORMAT_MOD_Y_TILED_GEN12_MC_CCS ||
- modifier == I915_FORMAT_MOD_Y_TILED_GEN12_RC_CCS_CC ||
- modifier == I915_FORMAT_MOD_4_TILED_DG2_RC_CCS ||
- modifier == I915_FORMAT_MOD_4_TILED_DG2_MC_CCS ||
- modifier == I915_FORMAT_MOD_4_TILED_DG2_RC_CCS_CC;
wp->x_tiled = modifier == I915_FORMAT_MOD_X_TILED;
- wp->rc_surface = modifier == I915_FORMAT_MOD_Y_TILED_CCS ||
- modifier == I915_FORMAT_MOD_Yf_TILED_CCS ||
- modifier == I915_FORMAT_MOD_Y_TILED_GEN12_RC_CCS ||
- modifier == I915_FORMAT_MOD_Y_TILED_GEN12_MC_CCS ||
- modifier == I915_FORMAT_MOD_Y_TILED_GEN12_RC_CCS_CC ||
- modifier == I915_FORMAT_MOD_4_TILED_DG2_RC_CCS ||
- modifier == I915_FORMAT_MOD_4_TILED_DG2_MC_CCS ||
- modifier == I915_FORMAT_MOD_4_TILED_DG2_RC_CCS_CC;
+ wp->y_tiled = modifier != I915_FORMAT_MOD_X_TILED &&
+ intel_fb_is_tiled_modifier(modifier);
+ wp->rc_surface = intel_fb_is_ccs_modifier(modifier);
wp->is_planar = intel_format_info_is_yuv_semiplanar(format, modifier);
wp->width = width;
@@ -1851,17 +1866,6 @@ static void skl_compute_plane_wm(const struct intel_crtc_state *crtc_state,
return;
}
- /*
- * WaIncreaseLatencyIPCEnabled: kbl,cfl
- * Display WA #1141: kbl,cfl
- */
- if ((IS_KABYLAKE(i915) || IS_COFFEELAKE(i915) || IS_COMETLAKE(i915)) &&
- skl_watermark_ipc_enabled(i915))
- latency += 4;
-
- if (skl_needs_memory_bw_wa(i915) && wp->x_tiled)
- latency += 15;
-
method1 = skl_wm_method1(i915, wp->plane_pixel_rate,
wp->cpp, latency, wp->dbuf_block_size);
method2 = skl_wm_method2(wp->plane_pixel_rate,
@@ -1983,12 +1987,12 @@ skl_compute_wm_levels(const struct intel_crtc_state *crtc_state,
struct skl_wm_level *levels)
{
struct drm_i915_private *i915 = to_i915(crtc_state->uapi.crtc->dev);
- int level, max_level = ilk_wm_max_level(i915);
struct skl_wm_level *result_prev = &levels[0];
+ int level;
- for (level = 0; level <= max_level; level++) {
+ for (level = 0; level < i915->display.wm.num_levels; level++) {
struct skl_wm_level *result = &levels[level];
- unsigned int latency = i915->display.wm.skl_latency[level];
+ unsigned int latency = skl_wm_latency(i915, level, wm_params);
skl_compute_plane_wm(crtc_state, plane, level, latency,
wm_params, result_prev, result);
@@ -2008,7 +2012,8 @@ static void tgl_compute_sagv_wm(const struct intel_crtc_state *crtc_state,
unsigned int latency = 0;
if (i915->display.sagv.block_time_us)
- latency = i915->display.sagv.block_time_us + i915->display.wm.skl_latency[0];
+ latency = i915->display.sagv.block_time_us +
+ skl_wm_latency(i915, 0, wm_params);
skl_compute_plane_wm(crtc_state, plane, 0, latency,
wm_params, &levels[0],
@@ -2200,6 +2205,117 @@ static int icl_build_plane_wm(struct intel_crtc_state *crtc_state,
return 0;
}
+static bool
+skl_is_vblank_too_short(const struct intel_crtc_state *crtc_state,
+ int wm0_lines, int latency)
+{
+ const struct drm_display_mode *adjusted_mode =
+ &crtc_state->hw.adjusted_mode;
+
+ /* FIXME missing scaler and DSC pre-fill time */
+ return crtc_state->framestart_delay +
+ intel_usecs_to_scanlines(adjusted_mode, latency) +
+ wm0_lines >
+ adjusted_mode->crtc_vtotal - adjusted_mode->crtc_vblank_start;
+}
+
+static int skl_max_wm0_lines(const struct intel_crtc_state *crtc_state)
+{
+ struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
+ enum plane_id plane_id;
+ int wm0_lines = 0;
+
+ for_each_plane_id_on_crtc(crtc, plane_id) {
+ const struct skl_plane_wm *wm = &crtc_state->wm.skl.optimal.planes[plane_id];
+
+ /* FIXME what about !skl_wm_has_lines() platforms? */
+ wm0_lines = max_t(int, wm0_lines, wm->wm[0].lines);
+ }
+
+ return wm0_lines;
+}
+
+static int skl_max_wm_level_for_vblank(struct intel_crtc_state *crtc_state,
+ int wm0_lines)
+{
+ struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
+ struct drm_i915_private *i915 = to_i915(crtc->base.dev);
+ int level;
+
+ for (level = i915->display.wm.num_levels - 1; level >= 0; level--) {
+ int latency;
+
+ /* FIXME should we care about the latency w/a's? */
+ latency = skl_wm_latency(i915, level, NULL);
+ if (latency == 0)
+ continue;
+
+ /* FIXME is it correct to use 0 latency for wm0 here? */
+ if (level == 0)
+ latency = 0;
+
+ if (!skl_is_vblank_too_short(crtc_state, wm0_lines, latency))
+ return level;
+ }
+
+ return -EINVAL;
+}
+
+static int skl_wm_check_vblank(struct intel_crtc_state *crtc_state)
+{
+ struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
+ struct drm_i915_private *i915 = to_i915(crtc->base.dev);
+ int wm0_lines, level;
+
+ if (!crtc_state->hw.active)
+ return 0;
+
+ wm0_lines = skl_max_wm0_lines(crtc_state);
+
+ level = skl_max_wm_level_for_vblank(crtc_state, wm0_lines);
+ if (level < 0)
+ return level;
+
+ /*
+ * PSR needs to toggle LATENCY_REPORTING_REMOVED_PIPE_*
+ * based on whether we're limited by the vblank duration.
+ */
+ crtc_state->wm_level_disabled = level < i915->display.wm.num_levels - 1;
+
+ for (level++; level < i915->display.wm.num_levels; level++) {
+ enum plane_id plane_id;
+
+ for_each_plane_id_on_crtc(crtc, plane_id) {
+ struct skl_plane_wm *wm =
+ &crtc_state->wm.skl.optimal.planes[plane_id];
+
+ /*
+ * FIXME just clear enable or flag the entire
+ * thing as bad via min_ddb_alloc=U16_MAX?
+ */
+ wm->wm[level].enable = false;
+ wm->uv_wm[level].enable = false;
+ }
+ }
+
+ if (DISPLAY_VER(i915) >= 12 &&
+ i915->display.sagv.block_time_us &&
+ skl_is_vblank_too_short(crtc_state, wm0_lines,
+ i915->display.sagv.block_time_us)) {
+ enum plane_id plane_id;
+
+ for_each_plane_id_on_crtc(crtc, plane_id) {
+ struct skl_plane_wm *wm =
+ &crtc_state->wm.skl.optimal.planes[plane_id];
+
+ wm->sagv.wm0.enable = false;
+ wm->sagv.trans_wm.enable = false;
+ }
+ }
+
+ return 0;
+}
+
static int skl_build_pipe_wm(struct intel_atomic_state *state,
struct intel_crtc *crtc)
{
@@ -2229,7 +2345,7 @@ static int skl_build_pipe_wm(struct intel_atomic_state *state,
crtc_state->wm.skl.optimal = crtc_state->wm.skl.raw;
- return 0;
+ return skl_wm_check_vblank(crtc_state);
}
static void skl_ddb_entry_write(struct drm_i915_private *i915,
@@ -2264,7 +2380,6 @@ void skl_write_plane_wm(struct intel_plane *plane,
const struct intel_crtc_state *crtc_state)
{
struct drm_i915_private *i915 = to_i915(plane->base.dev);
- int level, max_level = ilk_wm_max_level(i915);
enum plane_id plane_id = plane->id;
enum pipe pipe = plane->pipe;
const struct skl_pipe_wm *pipe_wm = &crtc_state->wm.skl.optimal;
@@ -2272,8 +2387,9 @@ void skl_write_plane_wm(struct intel_plane *plane,
&crtc_state->wm.skl.plane_ddb[plane_id];
const struct skl_ddb_entry *ddb_y =
&crtc_state->wm.skl.plane_ddb_y[plane_id];
+ int level;
- for (level = 0; level <= max_level; level++)
+ for (level = 0; level < i915->display.wm.num_levels; level++)
skl_write_wm_level(i915, PLANE_WM(pipe, plane_id, level),
skl_plane_wm_level(pipe_wm, plane_id, level));
@@ -2301,14 +2417,14 @@ void skl_write_cursor_wm(struct intel_plane *plane,
const struct intel_crtc_state *crtc_state)
{
struct drm_i915_private *i915 = to_i915(plane->base.dev);
- int level, max_level = ilk_wm_max_level(i915);
enum plane_id plane_id = plane->id;
enum pipe pipe = plane->pipe;
const struct skl_pipe_wm *pipe_wm = &crtc_state->wm.skl.optimal;
const struct skl_ddb_entry *ddb =
&crtc_state->wm.skl.plane_ddb[plane_id];
+ int level;
- for (level = 0; level <= max_level; level++)
+ for (level = 0; level < i915->display.wm.num_levels; level++)
skl_write_wm_level(i915, CUR_WM(pipe, level),
skl_plane_wm_level(pipe_wm, plane_id, level));
@@ -2340,9 +2456,9 @@ static bool skl_plane_wm_equals(struct drm_i915_private *i915,
const struct skl_plane_wm *wm1,
const struct skl_plane_wm *wm2)
{
- int level, max_level = ilk_wm_max_level(i915);
+ int level;
- for (level = 0; level <= max_level; level++) {
+ for (level = 0; level < i915->display.wm.num_levels; level++) {
/*
* We don't check uv_wm as the hardware doesn't actually
* use it. It only gets used for calculating the required
@@ -2414,6 +2530,8 @@ skl_ddb_add_affected_planes(const struct intel_crtc_state *old_crtc_state,
return PTR_ERR(plane_state);
new_crtc_state->update_planes |= BIT(plane_id);
+ new_crtc_state->async_flip_planes = 0;
+ new_crtc_state->do_async_flip = false;
}
return 0;
@@ -2498,7 +2616,7 @@ skl_compute_ddb(struct intel_atomic_state *state)
if (old_dbuf_state->joined_mbus != new_dbuf_state->joined_mbus) {
/* TODO: Implement vblank synchronized MBUS joining changes */
- ret = intel_modeset_all_pipes(state);
+ ret = intel_modeset_all_pipes(state, "MBUS joining change");
if (ret)
return ret;
}
@@ -2690,9 +2808,9 @@ static bool skl_plane_selected_wm_equals(struct intel_plane *plane,
const struct skl_pipe_wm *new_pipe_wm)
{
struct drm_i915_private *i915 = to_i915(plane->base.dev);
- int level, max_level = ilk_wm_max_level(i915);
+ int level;
- for (level = 0; level <= max_level; level++) {
+ for (level = 0; level < i915->display.wm.num_levels; level++) {
/*
* We don't check uv_wm as the hardware doesn't actually
* use it. It only gets used for calculating the required
@@ -2760,7 +2878,7 @@ static int skl_wm_add_affected_planes(struct intel_atomic_state *state,
* power well the hardware state will go out of sync
* with the software state.
*/
- if (!drm_atomic_crtc_needs_modeset(&new_crtc_state->uapi) &&
+ if (!intel_crtc_needs_modeset(new_crtc_state) &&
skl_plane_selected_wm_equals(plane,
&old_crtc_state->wm.skl.optimal,
&new_crtc_state->wm.skl.optimal))
@@ -2771,6 +2889,8 @@ static int skl_wm_add_affected_planes(struct intel_atomic_state *state,
return PTR_ERR(plane_state);
new_crtc_state->update_planes |= BIT(plane_id);
+ new_crtc_state->async_flip_planes = 0;
+ new_crtc_state->do_async_flip = false;
}
return 0;
@@ -2826,47 +2946,41 @@ static void skl_pipe_wm_get_hw_state(struct intel_crtc *crtc,
{
struct drm_i915_private *i915 = to_i915(crtc->base.dev);
enum pipe pipe = crtc->pipe;
- int level, max_level;
enum plane_id plane_id;
+ int level;
u32 val;
- max_level = ilk_wm_max_level(i915);
-
for_each_plane_id_on_crtc(crtc, plane_id) {
struct skl_plane_wm *wm = &out->planes[plane_id];
- for (level = 0; level <= max_level; level++) {
+ for (level = 0; level < i915->display.wm.num_levels; level++) {
if (plane_id != PLANE_CURSOR)
- val = intel_uncore_read(&i915->uncore, PLANE_WM(pipe, plane_id, level));
+ val = intel_de_read(i915, PLANE_WM(pipe, plane_id, level));
else
- val = intel_uncore_read(&i915->uncore, CUR_WM(pipe, level));
+ val = intel_de_read(i915, CUR_WM(pipe, level));
skl_wm_level_from_reg_val(val, &wm->wm[level]);
}
if (plane_id != PLANE_CURSOR)
- val = intel_uncore_read(&i915->uncore, PLANE_WM_TRANS(pipe, plane_id));
+ val = intel_de_read(i915, PLANE_WM_TRANS(pipe, plane_id));
else
- val = intel_uncore_read(&i915->uncore, CUR_WM_TRANS(pipe));
+ val = intel_de_read(i915, CUR_WM_TRANS(pipe));
skl_wm_level_from_reg_val(val, &wm->trans_wm);
if (HAS_HW_SAGV_WM(i915)) {
if (plane_id != PLANE_CURSOR)
- val = intel_uncore_read(&i915->uncore,
- PLANE_WM_SAGV(pipe, plane_id));
+ val = intel_de_read(i915, PLANE_WM_SAGV(pipe, plane_id));
else
- val = intel_uncore_read(&i915->uncore,
- CUR_WM_SAGV(pipe));
+ val = intel_de_read(i915, CUR_WM_SAGV(pipe));
skl_wm_level_from_reg_val(val, &wm->sagv.wm0);
if (plane_id != PLANE_CURSOR)
- val = intel_uncore_read(&i915->uncore,
- PLANE_WM_SAGV_TRANS(pipe, plane_id));
+ val = intel_de_read(i915, PLANE_WM_SAGV_TRANS(pipe, plane_id));
else
- val = intel_uncore_read(&i915->uncore,
- CUR_WM_SAGV_TRANS(pipe));
+ val = intel_de_read(i915, CUR_WM_SAGV_TRANS(pipe));
skl_wm_level_from_reg_val(val, &wm->sagv.trans_wm);
} else if (DISPLAY_VER(i915) >= 12) {
@@ -2876,7 +2990,7 @@ static void skl_pipe_wm_get_hw_state(struct intel_crtc *crtc,
}
}
-void skl_wm_get_hw_state(struct drm_i915_private *i915)
+static void skl_wm_get_hw_state(struct drm_i915_private *i915)
{
struct intel_dbuf_state *dbuf_state =
to_intel_dbuf_state(i915->display.dbuf.obj.state);
@@ -2976,7 +3090,7 @@ static bool skl_dbuf_is_misconfigured(struct drm_i915_private *i915)
return false;
}
-void skl_wm_sanitize(struct drm_i915_private *i915)
+static void skl_wm_sanitize(struct drm_i915_private *i915)
{
struct intel_crtc *crtc;
@@ -3012,6 +3126,12 @@ void skl_wm_sanitize(struct drm_i915_private *i915)
}
}
+static void skl_wm_get_hw_state_and_sanitize(struct drm_i915_private *i915)
+{
+ skl_wm_get_hw_state(i915);
+ skl_wm_sanitize(i915);
+}
+
void intel_wm_state_verify(struct intel_crtc *crtc,
struct intel_crtc_state *new_crtc_state)
{
@@ -3022,9 +3142,9 @@ void intel_wm_state_verify(struct intel_crtc *crtc,
struct skl_pipe_wm wm;
} *hw;
const struct skl_pipe_wm *sw_wm = &new_crtc_state->wm.skl.optimal;
- int level, max_level = ilk_wm_max_level(i915);
struct intel_plane *plane;
u8 hw_enabled_slices;
+ int level;
if (DISPLAY_VER(i915) < 9 || !new_crtc_state->hw.active)
return;
@@ -3051,7 +3171,7 @@ void intel_wm_state_verify(struct intel_crtc *crtc,
const struct skl_wm_level *hw_wm_level, *sw_wm_level;
/* Watermarks */
- for (level = 0; level <= max_level; level++) {
+ for (level = 0; level < i915->display.wm.num_levels; level++) {
hw_wm_level = &hw->wm.planes[plane->id].wm[level];
sw_wm_level = skl_plane_wm_level(sw_wm, plane->id, level);
@@ -3142,8 +3262,8 @@ void skl_watermark_ipc_update(struct drm_i915_private *i915)
if (!HAS_IPC(i915))
return;
- intel_uncore_rmw(&i915->uncore, DISP_ARB_CTL2, DISP_IPC_ENABLE,
- skl_watermark_ipc_enabled(i915) ? DISP_IPC_ENABLE : 0);
+ intel_de_rmw(i915, DISP_ARB_CTL2, DISP_IPC_ENABLE,
+ skl_watermark_ipc_enabled(i915) ? DISP_IPC_ENABLE : 0);
}
static bool skl_watermark_ipc_can_enable(struct drm_i915_private *i915)
@@ -3173,7 +3293,7 @@ void skl_watermark_ipc_init(struct drm_i915_private *i915)
static void
adjust_wm_latency(struct drm_i915_private *i915,
- u16 wm[], int max_level, int read_latency)
+ u16 wm[], int num_levels, int read_latency)
{
bool wm_lv_0_adjust_needed = i915->dram_info.wm_lv_0_adjust_needed;
int i, level;
@@ -3183,12 +3303,12 @@ adjust_wm_latency(struct drm_i915_private *i915,
* need to be disabled. We make sure to sanitize the values out
* of the punit to satisfy this requirement.
*/
- for (level = 1; level <= max_level; level++) {
+ for (level = 1; level < num_levels; level++) {
if (wm[level] == 0) {
- for (i = level + 1; i <= max_level; i++)
+ for (i = level + 1; i < num_levels; i++)
wm[i] = 0;
- max_level = level - 1;
+ num_levels = level;
break;
}
}
@@ -3201,7 +3321,7 @@ adjust_wm_latency(struct drm_i915_private *i915,
* from the punit when level 0 response data is 0us.
*/
if (wm[0] == 0) {
- for (level = 0; level <= max_level; level++)
+ for (level = 0; level < num_levels; level++)
wm[level] += read_latency;
}
@@ -3217,28 +3337,27 @@ adjust_wm_latency(struct drm_i915_private *i915,
static void mtl_read_wm_latency(struct drm_i915_private *i915, u16 wm[])
{
- struct intel_uncore *uncore = &i915->uncore;
- int max_level = ilk_wm_max_level(i915);
+ int num_levels = i915->display.wm.num_levels;
u32 val;
- val = intel_uncore_read(uncore, MTL_LATENCY_LP0_LP1);
+ val = intel_de_read(i915, MTL_LATENCY_LP0_LP1);
wm[0] = REG_FIELD_GET(MTL_LATENCY_LEVEL_EVEN_MASK, val);
wm[1] = REG_FIELD_GET(MTL_LATENCY_LEVEL_ODD_MASK, val);
- val = intel_uncore_read(uncore, MTL_LATENCY_LP2_LP3);
+ val = intel_de_read(i915, MTL_LATENCY_LP2_LP3);
wm[2] = REG_FIELD_GET(MTL_LATENCY_LEVEL_EVEN_MASK, val);
wm[3] = REG_FIELD_GET(MTL_LATENCY_LEVEL_ODD_MASK, val);
- val = intel_uncore_read(uncore, MTL_LATENCY_LP4_LP5);
+ val = intel_de_read(i915, MTL_LATENCY_LP4_LP5);
wm[4] = REG_FIELD_GET(MTL_LATENCY_LEVEL_EVEN_MASK, val);
wm[5] = REG_FIELD_GET(MTL_LATENCY_LEVEL_ODD_MASK, val);
- adjust_wm_latency(i915, wm, max_level, 6);
+ adjust_wm_latency(i915, wm, num_levels, 6);
}
static void skl_read_wm_latency(struct drm_i915_private *i915, u16 wm[])
{
- int max_level = ilk_wm_max_level(i915);
+ int num_levels = i915->display.wm.num_levels;
int read_latency = DISPLAY_VER(i915) >= 12 ? 3 : 2;
int mult = IS_DG2(i915) ? 2 : 1;
u32 val;
@@ -3270,11 +3389,16 @@ static void skl_read_wm_latency(struct drm_i915_private *i915, u16 wm[])
wm[6] = REG_FIELD_GET(GEN9_MEM_LATENCY_LEVEL_2_6_MASK, val) * mult;
wm[7] = REG_FIELD_GET(GEN9_MEM_LATENCY_LEVEL_3_7_MASK, val) * mult;
- adjust_wm_latency(i915, wm, max_level, read_latency);
+ adjust_wm_latency(i915, wm, num_levels, read_latency);
}
static void skl_setup_wm_latency(struct drm_i915_private *i915)
{
+ if (HAS_HW_SAGV_WM(i915))
+ i915->display.wm.num_levels = 6;
+ else
+ i915->display.wm.num_levels = 8;
+
if (DISPLAY_VER(i915) >= 14)
mtl_read_wm_latency(i915, i915->display.wm.skl_latency);
else
@@ -3285,6 +3409,7 @@ static void skl_setup_wm_latency(struct drm_i915_private *i915)
static const struct intel_wm_funcs skl_wm_funcs = {
.compute_global_watermarks = skl_compute_wm,
+ .get_hw_state = skl_wm_get_hw_state_and_sanitize,
};
void skl_wm_init(struct drm_i915_private *i915)
@@ -3562,13 +3687,35 @@ static const struct file_operations skl_watermark_ipc_status_fops = {
.write = skl_watermark_ipc_status_write
};
-void skl_watermark_ipc_debugfs_register(struct drm_i915_private *i915)
+static int intel_sagv_status_show(struct seq_file *m, void *unused)
+{
+ struct drm_i915_private *i915 = m->private;
+ static const char * const sagv_status[] = {
+ [I915_SAGV_UNKNOWN] = "unknown",
+ [I915_SAGV_DISABLED] = "disabled",
+ [I915_SAGV_ENABLED] = "enabled",
+ [I915_SAGV_NOT_CONTROLLED] = "not controlled",
+ };
+
+ seq_printf(m, "SAGV available: %s\n", str_yes_no(intel_has_sagv(i915)));
+ seq_printf(m, "SAGV modparam: %s\n", str_enabled_disabled(i915->params.enable_sagv));
+ seq_printf(m, "SAGV status: %s\n", sagv_status[i915->display.sagv.status]);
+ seq_printf(m, "SAGV block time: %d usec\n", i915->display.sagv.block_time_us);
+
+ return 0;
+}
+
+DEFINE_SHOW_ATTRIBUTE(intel_sagv_status);
+
+void skl_watermark_debugfs_register(struct drm_i915_private *i915)
{
struct drm_minor *minor = i915->drm.primary;
- if (!HAS_IPC(i915))
- return;
+ if (HAS_IPC(i915))
+ debugfs_create_file("i915_ipc_status", 0644, minor->debugfs_root, i915,
+ &skl_watermark_ipc_status_fops);
- debugfs_create_file("i915_ipc_status", 0644, minor->debugfs_root, i915,
- &skl_watermark_ipc_status_fops);
+ if (HAS_SAGV(i915))
+ debugfs_create_file("i915_sagv_status", 0444, minor->debugfs_root, i915,
+ &intel_sagv_status_fops);
}
diff --git a/drivers/gpu/drm/i915/display/skl_watermark.h b/drivers/gpu/drm/i915/display/skl_watermark.h
index 7a5a4e67cd73..f91a3d4ddc07 100644
--- a/drivers/gpu/drm/i915/display/skl_watermark.h
+++ b/drivers/gpu/drm/i915/display/skl_watermark.h
@@ -8,9 +8,9 @@
#include <linux/types.h>
-#include "intel_display.h"
+#include "intel_display_limits.h"
#include "intel_global_state.h"
-#include "intel_pm_types.h"
+#include "intel_wm_types.h"
struct drm_i915_private;
struct intel_atomic_state;
@@ -38,16 +38,13 @@ bool skl_ddb_allocation_overlaps(const struct skl_ddb_entry *ddb,
const struct skl_ddb_entry *entries,
int num_entries, int ignore_idx);
-void skl_wm_get_hw_state(struct drm_i915_private *i915);
-void skl_wm_sanitize(struct drm_i915_private *i915);
-
void intel_wm_state_verify(struct intel_crtc *crtc,
struct intel_crtc_state *new_crtc_state);
void skl_watermark_ipc_init(struct drm_i915_private *i915);
void skl_watermark_ipc_update(struct drm_i915_private *i915);
bool skl_watermark_ipc_enabled(struct drm_i915_private *i915);
-void skl_watermark_ipc_debugfs_register(struct drm_i915_private *i915);
+void skl_watermark_debugfs_register(struct drm_i915_private *i915);
void skl_wm_init(struct drm_i915_private *i915);
diff --git a/drivers/gpu/drm/i915/display/skl_watermark_regs.h b/drivers/gpu/drm/i915/display/skl_watermark_regs.h
new file mode 100644
index 000000000000..628c5920ad49
--- /dev/null
+++ b/drivers/gpu/drm/i915/display/skl_watermark_regs.h
@@ -0,0 +1,160 @@
+/* SPDX-License-Identifier: MIT */
+/*
+ * Copyright © 2023 Intel Corporation
+ */
+
+#ifndef __SKL_WATERMARK_REGS_H__
+#define __SKL_WATERMARK_REGS_H__
+
+#include "intel_display_reg_defs.h"
+
+#define _PIPEA_MBUS_DBOX_CTL 0x7003C
+#define _PIPEB_MBUS_DBOX_CTL 0x7103C
+#define PIPE_MBUS_DBOX_CTL(pipe) _MMIO_PIPE(pipe, _PIPEA_MBUS_DBOX_CTL, \
+ _PIPEB_MBUS_DBOX_CTL)
+#define MBUS_DBOX_B2B_TRANSACTIONS_MAX_MASK REG_GENMASK(24, 20) /* tgl+ */
+#define MBUS_DBOX_B2B_TRANSACTIONS_MAX(x) REG_FIELD_PREP(MBUS_DBOX_B2B_TRANSACTIONS_MAX_MASK, x)
+#define MBUS_DBOX_B2B_TRANSACTIONS_DELAY_MASK REG_GENMASK(19, 17) /* tgl+ */
+#define MBUS_DBOX_B2B_TRANSACTIONS_DELAY(x) REG_FIELD_PREP(MBUS_DBOX_B2B_TRANSACTIONS_DELAY_MASK, x)
+#define MBUS_DBOX_REGULATE_B2B_TRANSACTIONS_EN REG_BIT(16) /* tgl+ */
+#define MBUS_DBOX_BW_CREDIT_MASK REG_GENMASK(15, 14)
+#define MBUS_DBOX_BW_CREDIT(x) REG_FIELD_PREP(MBUS_DBOX_BW_CREDIT_MASK, x)
+#define MBUS_DBOX_BW_4CREDITS_MTL REG_FIELD_PREP(MBUS_DBOX_BW_CREDIT_MASK, 0x2)
+#define MBUS_DBOX_BW_8CREDITS_MTL REG_FIELD_PREP(MBUS_DBOX_BW_CREDIT_MASK, 0x3)
+#define MBUS_DBOX_B_CREDIT_MASK REG_GENMASK(12, 8)
+#define MBUS_DBOX_B_CREDIT(x) REG_FIELD_PREP(MBUS_DBOX_B_CREDIT_MASK, x)
+#define MBUS_DBOX_I_CREDIT_MASK REG_GENMASK(7, 5)
+#define MBUS_DBOX_I_CREDIT(x) REG_FIELD_PREP(MBUS_DBOX_I_CREDIT_MASK, x)
+#define MBUS_DBOX_A_CREDIT_MASK REG_GENMASK(3, 0)
+#define MBUS_DBOX_A_CREDIT(x) REG_FIELD_PREP(MBUS_DBOX_A_CREDIT_MASK, x)
+
+#define MBUS_UBOX_CTL _MMIO(0x4503C)
+#define MBUS_BBOX_CTL_S1 _MMIO(0x45040)
+#define MBUS_BBOX_CTL_S2 _MMIO(0x45044)
+
+#define MBUS_CTL _MMIO(0x4438C)
+#define MBUS_JOIN REG_BIT(31)
+#define MBUS_HASHING_MODE_MASK REG_BIT(30)
+#define MBUS_HASHING_MODE_2x2 REG_FIELD_PREP(MBUS_HASHING_MODE_MASK, 0)
+#define MBUS_HASHING_MODE_1x4 REG_FIELD_PREP(MBUS_HASHING_MODE_MASK, 1)
+#define MBUS_JOIN_PIPE_SELECT_MASK REG_GENMASK(28, 26)
+#define MBUS_JOIN_PIPE_SELECT(pipe) REG_FIELD_PREP(MBUS_JOIN_PIPE_SELECT_MASK, pipe)
+#define MBUS_JOIN_PIPE_SELECT_NONE MBUS_JOIN_PIPE_SELECT(7)
+
+/* Watermark register definitions for SKL */
+#define _CUR_WM_A_0 0x70140
+#define _CUR_WM_B_0 0x71140
+#define _CUR_WM_SAGV_A 0x70158
+#define _CUR_WM_SAGV_B 0x71158
+#define _CUR_WM_SAGV_TRANS_A 0x7015C
+#define _CUR_WM_SAGV_TRANS_B 0x7115C
+#define _CUR_WM_TRANS_A 0x70168
+#define _CUR_WM_TRANS_B 0x71168
+#define _PLANE_WM_1_A_0 0x70240
+#define _PLANE_WM_1_B_0 0x71240
+#define _PLANE_WM_2_A_0 0x70340
+#define _PLANE_WM_2_B_0 0x71340
+#define _PLANE_WM_SAGV_1_A 0x70258
+#define _PLANE_WM_SAGV_1_B 0x71258
+#define _PLANE_WM_SAGV_2_A 0x70358
+#define _PLANE_WM_SAGV_2_B 0x71358
+#define _PLANE_WM_SAGV_TRANS_1_A 0x7025C
+#define _PLANE_WM_SAGV_TRANS_1_B 0x7125C
+#define _PLANE_WM_SAGV_TRANS_2_A 0x7035C
+#define _PLANE_WM_SAGV_TRANS_2_B 0x7135C
+#define _PLANE_WM_TRANS_1_A 0x70268
+#define _PLANE_WM_TRANS_1_B 0x71268
+#define _PLANE_WM_TRANS_2_A 0x70368
+#define _PLANE_WM_TRANS_2_B 0x71368
+#define PLANE_WM_EN (1 << 31)
+#define PLANE_WM_IGNORE_LINES (1 << 30)
+#define PLANE_WM_LINES_MASK REG_GENMASK(26, 14)
+#define PLANE_WM_BLOCKS_MASK REG_GENMASK(11, 0)
+
+#define _CUR_WM_0(pipe) _PIPE(pipe, _CUR_WM_A_0, _CUR_WM_B_0)
+#define CUR_WM(pipe, level) _MMIO(_CUR_WM_0(pipe) + ((4) * (level)))
+#define CUR_WM_SAGV(pipe) _MMIO_PIPE(pipe, _CUR_WM_SAGV_A, _CUR_WM_SAGV_B)
+#define CUR_WM_SAGV_TRANS(pipe) _MMIO_PIPE(pipe, _CUR_WM_SAGV_TRANS_A, _CUR_WM_SAGV_TRANS_B)
+#define CUR_WM_TRANS(pipe) _MMIO_PIPE(pipe, _CUR_WM_TRANS_A, _CUR_WM_TRANS_B)
+#define _PLANE_WM_1(pipe) _PIPE(pipe, _PLANE_WM_1_A_0, _PLANE_WM_1_B_0)
+#define _PLANE_WM_2(pipe) _PIPE(pipe, _PLANE_WM_2_A_0, _PLANE_WM_2_B_0)
+#define _PLANE_WM_BASE(pipe, plane) \
+ _PLANE(plane, _PLANE_WM_1(pipe), _PLANE_WM_2(pipe))
+#define PLANE_WM(pipe, plane, level) \
+ _MMIO(_PLANE_WM_BASE(pipe, plane) + ((4) * (level)))
+#define _PLANE_WM_SAGV_1(pipe) \
+ _PIPE(pipe, _PLANE_WM_SAGV_1_A, _PLANE_WM_SAGV_1_B)
+#define _PLANE_WM_SAGV_2(pipe) \
+ _PIPE(pipe, _PLANE_WM_SAGV_2_A, _PLANE_WM_SAGV_2_B)
+#define PLANE_WM_SAGV(pipe, plane) \
+ _MMIO(_PLANE(plane, _PLANE_WM_SAGV_1(pipe), _PLANE_WM_SAGV_2(pipe)))
+#define _PLANE_WM_SAGV_TRANS_1(pipe) \
+ _PIPE(pipe, _PLANE_WM_SAGV_TRANS_1_A, _PLANE_WM_SAGV_TRANS_1_B)
+#define _PLANE_WM_SAGV_TRANS_2(pipe) \
+ _PIPE(pipe, _PLANE_WM_SAGV_TRANS_2_A, _PLANE_WM_SAGV_TRANS_2_B)
+#define PLANE_WM_SAGV_TRANS(pipe, plane) \
+ _MMIO(_PLANE(plane, _PLANE_WM_SAGV_TRANS_1(pipe), _PLANE_WM_SAGV_TRANS_2(pipe)))
+#define _PLANE_WM_TRANS_1(pipe) \
+ _PIPE(pipe, _PLANE_WM_TRANS_1_A, _PLANE_WM_TRANS_1_B)
+#define _PLANE_WM_TRANS_2(pipe) \
+ _PIPE(pipe, _PLANE_WM_TRANS_2_A, _PLANE_WM_TRANS_2_B)
+#define PLANE_WM_TRANS(pipe, plane) \
+ _MMIO(_PLANE(plane, _PLANE_WM_TRANS_1(pipe), _PLANE_WM_TRANS_2(pipe)))
+
+#define _PLANE_BUF_CFG_1_B 0x7127c
+#define _PLANE_BUF_CFG_2_B 0x7137c
+#define _PLANE_BUF_CFG_1(pipe) \
+ _PIPE(pipe, _PLANE_BUF_CFG_1_A, _PLANE_BUF_CFG_1_B)
+#define _PLANE_BUF_CFG_2(pipe) \
+ _PIPE(pipe, _PLANE_BUF_CFG_2_A, _PLANE_BUF_CFG_2_B)
+#define PLANE_BUF_CFG(pipe, plane) \
+ _MMIO_PLANE(plane, _PLANE_BUF_CFG_1(pipe), _PLANE_BUF_CFG_2(pipe))
+
+#define _PLANE_NV12_BUF_CFG_1_B 0x71278
+#define _PLANE_NV12_BUF_CFG_2_B 0x71378
+#define _PLANE_NV12_BUF_CFG_1(pipe) \
+ _PIPE(pipe, _PLANE_NV12_BUF_CFG_1_A, _PLANE_NV12_BUF_CFG_1_B)
+#define _PLANE_NV12_BUF_CFG_2(pipe) \
+ _PIPE(pipe, _PLANE_NV12_BUF_CFG_2_A, _PLANE_NV12_BUF_CFG_2_B)
+#define PLANE_NV12_BUF_CFG(pipe, plane) \
+ _MMIO_PLANE(plane, _PLANE_NV12_BUF_CFG_1(pipe), _PLANE_NV12_BUF_CFG_2(pipe))
+
+/* SKL new cursor registers */
+#define _CUR_BUF_CFG_A 0x7017c
+#define _CUR_BUF_CFG_B 0x7117c
+#define CUR_BUF_CFG(pipe) _MMIO_PIPE(pipe, _CUR_BUF_CFG_A, _CUR_BUF_CFG_B)
+
+/*
+ * The below are numbered starting from "S1" on gen11/gen12, but starting
+ * with display 13, the bspec switches to a 0-based numbering scheme
+ * (although the addresses stay the same so new S0 = old S1, new S1 = old S2).
+ * We'll just use the 0-based numbering here for all platforms since it's the
+ * way things will be named by the hardware team going forward, plus it's more
+ * consistent with how most of the rest of our registers are named.
+ */
+#define _DBUF_CTL_S0 0x45008
+#define _DBUF_CTL_S1 0x44FE8
+#define _DBUF_CTL_S2 0x44300
+#define _DBUF_CTL_S3 0x44304
+#define DBUF_CTL_S(slice) _MMIO(_PICK(slice, \
+ _DBUF_CTL_S0, \
+ _DBUF_CTL_S1, \
+ _DBUF_CTL_S2, \
+ _DBUF_CTL_S3))
+#define DBUF_POWER_REQUEST REG_BIT(31)
+#define DBUF_POWER_STATE REG_BIT(30)
+#define DBUF_TRACKER_STATE_SERVICE_MASK REG_GENMASK(23, 19)
+#define DBUF_TRACKER_STATE_SERVICE(x) REG_FIELD_PREP(DBUF_TRACKER_STATE_SERVICE_MASK, x)
+#define DBUF_MIN_TRACKER_STATE_SERVICE_MASK REG_GENMASK(18, 16) /* ADL-P+ */
+#define DBUF_MIN_TRACKER_STATE_SERVICE(x) REG_FIELD_PREP(DBUF_MIN_TRACKER_STATE_SERVICE_MASK, x) /* ADL-P+ */
+
+#define MTL_LATENCY_LP0_LP1 _MMIO(0x45780)
+#define MTL_LATENCY_LP2_LP3 _MMIO(0x45784)
+#define MTL_LATENCY_LP4_LP5 _MMIO(0x45788)
+#define MTL_LATENCY_LEVEL_EVEN_MASK REG_GENMASK(12, 0)
+#define MTL_LATENCY_LEVEL_ODD_MASK REG_GENMASK(28, 16)
+
+#define MTL_LATENCY_SAGV _MMIO(0x4578c)
+#define MTL_LATENCY_QCLK_SAGV REG_GENMASK(12, 0)
+
+#endif /* __SKL_WATERMARK_REGS_H__ */
diff --git a/drivers/gpu/drm/i915/display/vlv_dsi.c b/drivers/gpu/drm/i915/display/vlv_dsi.c
index b3f5ca280ef2..61d008d4e5f1 100644
--- a/drivers/gpu/drm/i915/display/vlv_dsi.c
+++ b/drivers/gpu/drm/i915/display/vlv_dsi.c
@@ -31,6 +31,7 @@
#include <drm/drm_mipi_dsi.h>
#include "i915_drv.h"
+#include "i915_reg.h"
#include "intel_atomic.h"
#include "intel_backlight.h"
#include "intel_connector.h"
@@ -330,32 +331,23 @@ static bool glk_dsi_enable_io(struct intel_encoder *encoder)
struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
struct intel_dsi *intel_dsi = enc_to_intel_dsi(encoder);
enum port port;
- u32 tmp;
bool cold_boot = false;
/* Set the MIPI mode
* If MIPI_Mode is off, then writing to LP_Wake bit is not reflecting.
* Power ON MIPI IO first and then write into IO reset and LP wake bits
*/
- for_each_dsi_port(port, intel_dsi->ports) {
- tmp = intel_de_read(dev_priv, MIPI_CTRL(port));
- intel_de_write(dev_priv, MIPI_CTRL(port),
- tmp | GLK_MIPIIO_ENABLE);
- }
+ for_each_dsi_port(port, intel_dsi->ports)
+ intel_de_rmw(dev_priv, MIPI_CTRL(port), 0, GLK_MIPIIO_ENABLE);
/* Put the IO into reset */
- tmp = intel_de_read(dev_priv, MIPI_CTRL(PORT_A));
- tmp &= ~GLK_MIPIIO_RESET_RELEASED;
- intel_de_write(dev_priv, MIPI_CTRL(PORT_A), tmp);
+ intel_de_rmw(dev_priv, MIPI_CTRL(PORT_A), GLK_MIPIIO_RESET_RELEASED, 0);
/* Program LP Wake */
for_each_dsi_port(port, intel_dsi->ports) {
- tmp = intel_de_read(dev_priv, MIPI_CTRL(port));
- if (!(intel_de_read(dev_priv, MIPI_DEVICE_READY(port)) & DEVICE_READY))
- tmp &= ~GLK_LP_WAKE;
- else
- tmp |= GLK_LP_WAKE;
- intel_de_write(dev_priv, MIPI_CTRL(port), tmp);
+ u32 tmp = intel_de_read(dev_priv, MIPI_DEVICE_READY(port));
+ intel_de_rmw(dev_priv, MIPI_CTRL(port),
+ GLK_LP_WAKE, (tmp & DEVICE_READY) ? GLK_LP_WAKE : 0);
}
/* Wait for Pwr ACK */
@@ -379,7 +371,6 @@ static void glk_dsi_device_ready(struct intel_encoder *encoder)
struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
struct intel_dsi *intel_dsi = enc_to_intel_dsi(encoder);
enum port port;
- u32 val;
/* Wait for MIPI PHY status bit to set */
for_each_dsi_port(port, intel_dsi->ports) {
@@ -389,24 +380,18 @@ static void glk_dsi_device_ready(struct intel_encoder *encoder)
}
/* Get IO out of reset */
- val = intel_de_read(dev_priv, MIPI_CTRL(PORT_A));
- intel_de_write(dev_priv, MIPI_CTRL(PORT_A),
- val | GLK_MIPIIO_RESET_RELEASED);
+ intel_de_rmw(dev_priv, MIPI_CTRL(PORT_A), 0, GLK_MIPIIO_RESET_RELEASED);
/* Get IO out of Low power state*/
for_each_dsi_port(port, intel_dsi->ports) {
if (!(intel_de_read(dev_priv, MIPI_DEVICE_READY(port)) & DEVICE_READY)) {
- val = intel_de_read(dev_priv, MIPI_DEVICE_READY(port));
- val &= ~ULPS_STATE_MASK;
- val |= DEVICE_READY;
- intel_de_write(dev_priv, MIPI_DEVICE_READY(port), val);
+ intel_de_rmw(dev_priv, MIPI_DEVICE_READY(port),
+ ULPS_STATE_MASK, DEVICE_READY);
usleep_range(10, 15);
} else {
/* Enter ULPS */
- val = intel_de_read(dev_priv, MIPI_DEVICE_READY(port));
- val &= ~ULPS_STATE_MASK;
- val |= (ULPS_STATE_ENTER | DEVICE_READY);
- intel_de_write(dev_priv, MIPI_DEVICE_READY(port), val);
+ intel_de_rmw(dev_priv, MIPI_DEVICE_READY(port),
+ ULPS_STATE_MASK, ULPS_STATE_ENTER | DEVICE_READY);
/* Wait for ULPS active */
if (intel_de_wait_for_clear(dev_priv, MIPI_CTRL(port),
@@ -414,20 +399,15 @@ static void glk_dsi_device_ready(struct intel_encoder *encoder)
drm_err(&dev_priv->drm, "ULPS not active\n");
/* Exit ULPS */
- val = intel_de_read(dev_priv, MIPI_DEVICE_READY(port));
- val &= ~ULPS_STATE_MASK;
- val |= (ULPS_STATE_EXIT | DEVICE_READY);
- intel_de_write(dev_priv, MIPI_DEVICE_READY(port), val);
+ intel_de_rmw(dev_priv, MIPI_DEVICE_READY(port),
+ ULPS_STATE_MASK, ULPS_STATE_EXIT | DEVICE_READY);
/* Enter Normal Mode */
- val = intel_de_read(dev_priv, MIPI_DEVICE_READY(port));
- val &= ~ULPS_STATE_MASK;
- val |= (ULPS_STATE_NORMAL_OPERATION | DEVICE_READY);
- intel_de_write(dev_priv, MIPI_DEVICE_READY(port), val);
-
- val = intel_de_read(dev_priv, MIPI_CTRL(port));
- val &= ~GLK_LP_WAKE;
- intel_de_write(dev_priv, MIPI_CTRL(port), val);
+ intel_de_rmw(dev_priv, MIPI_DEVICE_READY(port),
+ ULPS_STATE_MASK,
+ ULPS_STATE_NORMAL_OPERATION | DEVICE_READY);
+
+ intel_de_rmw(dev_priv, MIPI_CTRL(port), GLK_LP_WAKE, 0);
}
}
@@ -459,9 +439,7 @@ static void bxt_dsi_device_ready(struct intel_encoder *encoder)
/* Enable MIPI PHY transparent latch */
for_each_dsi_port(port, intel_dsi->ports) {
- val = intel_de_read(dev_priv, BXT_MIPI_PORT_CTRL(port));
- intel_de_write(dev_priv, BXT_MIPI_PORT_CTRL(port),
- val | LP_OUTPUT_HOLD);
+ intel_de_rmw(dev_priv, BXT_MIPI_PORT_CTRL(port), 0, LP_OUTPUT_HOLD);
usleep_range(2000, 2500);
}
@@ -481,7 +459,6 @@ static void vlv_dsi_device_ready(struct intel_encoder *encoder)
struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
struct intel_dsi *intel_dsi = enc_to_intel_dsi(encoder);
enum port port;
- u32 val;
drm_dbg_kms(&dev_priv->drm, "\n");
@@ -504,9 +481,7 @@ static void vlv_dsi_device_ready(struct intel_encoder *encoder)
* Common bit for both MIPI Port A & MIPI Port C
* No similar bit in MIPI Port C reg
*/
- val = intel_de_read(dev_priv, MIPI_PORT_CTRL(PORT_A));
- intel_de_write(dev_priv, MIPI_PORT_CTRL(PORT_A),
- val | LP_OUTPUT_HOLD);
+ intel_de_rmw(dev_priv, MIPI_PORT_CTRL(PORT_A), 0, LP_OUTPUT_HOLD);
usleep_range(1000, 1500);
intel_de_write(dev_priv, MIPI_DEVICE_READY(port),
@@ -536,15 +511,11 @@ static void glk_dsi_enter_low_power_mode(struct intel_encoder *encoder)
struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
struct intel_dsi *intel_dsi = enc_to_intel_dsi(encoder);
enum port port;
- u32 val;
/* Enter ULPS */
- for_each_dsi_port(port, intel_dsi->ports) {
- val = intel_de_read(dev_priv, MIPI_DEVICE_READY(port));
- val &= ~ULPS_STATE_MASK;
- val |= (ULPS_STATE_ENTER | DEVICE_READY);
- intel_de_write(dev_priv, MIPI_DEVICE_READY(port), val);
- }
+ for_each_dsi_port(port, intel_dsi->ports)
+ intel_de_rmw(dev_priv, MIPI_DEVICE_READY(port),
+ ULPS_STATE_MASK, ULPS_STATE_ENTER | DEVICE_READY);
/* Wait for MIPI PHY status bit to unset */
for_each_dsi_port(port, intel_dsi->ports) {
@@ -567,12 +538,9 @@ static void glk_dsi_disable_mipi_io(struct intel_encoder *encoder)
struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
struct intel_dsi *intel_dsi = enc_to_intel_dsi(encoder);
enum port port;
- u32 tmp;
/* Put the IO into reset */
- tmp = intel_de_read(dev_priv, MIPI_CTRL(PORT_A));
- tmp &= ~GLK_MIPIIO_RESET_RELEASED;
- intel_de_write(dev_priv, MIPI_CTRL(PORT_A), tmp);
+ intel_de_rmw(dev_priv, MIPI_CTRL(PORT_A), GLK_MIPIIO_RESET_RELEASED, 0);
/* Wait for MIPI PHY status bit to unset */
for_each_dsi_port(port, intel_dsi->ports) {
@@ -582,11 +550,8 @@ static void glk_dsi_disable_mipi_io(struct intel_encoder *encoder)
}
/* Clear MIPI mode */
- for_each_dsi_port(port, intel_dsi->ports) {
- tmp = intel_de_read(dev_priv, MIPI_CTRL(port));
- tmp &= ~GLK_MIPIIO_ENABLE;
- intel_de_write(dev_priv, MIPI_CTRL(port), tmp);
- }
+ for_each_dsi_port(port, intel_dsi->ports)
+ intel_de_rmw(dev_priv, MIPI_CTRL(port), GLK_MIPIIO_ENABLE, 0);
}
static void glk_dsi_clear_device_ready(struct intel_encoder *encoder)
@@ -606,7 +571,6 @@ static void vlv_dsi_clear_device_ready(struct intel_encoder *encoder)
/* Common bit for both MIPI Port A & MIPI Port C on VLV/CHV */
i915_reg_t port_ctrl = IS_GEMINILAKE(dev_priv) || IS_BROXTON(dev_priv) ?
BXT_MIPI_PORT_CTRL(port) : MIPI_PORT_CTRL(PORT_A);
- u32 val;
intel_de_write(dev_priv, MIPI_DEVICE_READY(port),
DEVICE_READY | ULPS_STATE_ENTER);
@@ -630,8 +594,7 @@ static void vlv_dsi_clear_device_ready(struct intel_encoder *encoder)
drm_err(&dev_priv->drm, "DSI LP not going Low\n");
/* Disable MIPI PHY transparent latch */
- val = intel_de_read(dev_priv, port_ctrl);
- intel_de_write(dev_priv, port_ctrl, val & ~LP_OUTPUT_HOLD);
+ intel_de_rmw(dev_priv, port_ctrl, LP_OUTPUT_HOLD, 0);
usleep_range(1000, 1500);
intel_de_write(dev_priv, MIPI_DEVICE_READY(port), 0x00);
@@ -648,23 +611,17 @@ static void intel_dsi_port_enable(struct intel_encoder *encoder,
enum port port;
if (intel_dsi->dual_link == DSI_DUAL_LINK_FRONT_BACK) {
- u32 temp;
+ u32 temp = intel_dsi->pixel_overlap;
+
if (IS_GEMINILAKE(dev_priv) || IS_BROXTON(dev_priv)) {
- for_each_dsi_port(port, intel_dsi->ports) {
- temp = intel_de_read(dev_priv,
- MIPI_CTRL(port));
- temp &= ~BXT_PIXEL_OVERLAP_CNT_MASK |
- intel_dsi->pixel_overlap <<
- BXT_PIXEL_OVERLAP_CNT_SHIFT;
- intel_de_write(dev_priv, MIPI_CTRL(port),
- temp);
- }
+ for_each_dsi_port(port, intel_dsi->ports)
+ intel_de_rmw(dev_priv, MIPI_CTRL(port),
+ BXT_PIXEL_OVERLAP_CNT_MASK,
+ temp << BXT_PIXEL_OVERLAP_CNT_SHIFT);
} else {
- temp = intel_de_read(dev_priv, VLV_CHICKEN_3);
- temp &= ~PIXEL_OVERLAP_CNT_MASK |
- intel_dsi->pixel_overlap <<
- PIXEL_OVERLAP_CNT_SHIFT;
- intel_de_write(dev_priv, VLV_CHICKEN_3, temp);
+ intel_de_rmw(dev_priv, VLV_CHICKEN_3,
+ PIXEL_OVERLAP_CNT_MASK,
+ temp << PIXEL_OVERLAP_CNT_SHIFT);
}
}
@@ -708,11 +665,9 @@ static void intel_dsi_port_disable(struct intel_encoder *encoder)
for_each_dsi_port(port, intel_dsi->ports) {
i915_reg_t port_ctrl = IS_GEMINILAKE(dev_priv) || IS_BROXTON(dev_priv) ?
BXT_MIPI_PORT_CTRL(port) : MIPI_PORT_CTRL(port);
- u32 temp;
/* de-assert ip_tg_enable signal */
- temp = intel_de_read(dev_priv, port_ctrl);
- intel_de_write(dev_priv, port_ctrl, temp & ~DPI_ENABLE);
+ intel_de_rmw(dev_priv, port_ctrl, DPI_ENABLE, 0);
intel_de_posting_read(dev_priv, port_ctrl);
}
}
@@ -782,11 +737,9 @@ static void intel_dsi_pre_enable(struct intel_atomic_state *state,
{
struct intel_dsi *intel_dsi = enc_to_intel_dsi(encoder);
struct intel_crtc *crtc = to_intel_crtc(pipe_config->uapi.crtc);
- struct intel_connector *connector = to_intel_connector(conn_state->connector);
struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
enum pipe pipe = crtc->pipe;
enum port port;
- u32 val;
bool glk_cold_boot = false;
drm_dbg_kms(&dev_priv->drm, "\n");
@@ -809,9 +762,7 @@ static void intel_dsi_pre_enable(struct intel_atomic_state *state,
if (IS_BROXTON(dev_priv)) {
/* Add MIPI IO reset programming for modeset */
- val = intel_de_read(dev_priv, BXT_P_CR_GT_DISP_PWRON);
- intel_de_write(dev_priv, BXT_P_CR_GT_DISP_PWRON,
- val | MIPIO_RST_CTRL);
+ intel_de_rmw(dev_priv, BXT_P_CR_GT_DISP_PWRON, 0, MIPIO_RST_CTRL);
/* Power up DSI regulator */
intel_de_write(dev_priv, BXT_P_DSI_REGULATOR_CFG, STAP_SELECT);
@@ -819,32 +770,18 @@ static void intel_dsi_pre_enable(struct intel_atomic_state *state,
}
if (IS_VALLEYVIEW(dev_priv) || IS_CHERRYVIEW(dev_priv)) {
- u32 val;
-
/* Disable DPOunit clock gating, can stall pipe */
- val = intel_de_read(dev_priv, DSPCLK_GATE_D(dev_priv));
- val |= DPOUNIT_CLOCK_GATE_DISABLE;
- intel_de_write(dev_priv, DSPCLK_GATE_D(dev_priv), val);
+ intel_de_rmw(dev_priv, DSPCLK_GATE_D(dev_priv),
+ 0, DPOUNIT_CLOCK_GATE_DISABLE);
}
if (!IS_GEMINILAKE(dev_priv))
intel_dsi_prepare(encoder, pipe_config);
+ /* Give the panel time to power-on and then deassert its reset */
intel_dsi_vbt_exec_sequence(intel_dsi, MIPI_SEQ_POWER_ON);
-
- /*
- * Give the panel time to power-on and then deassert its reset.
- * Depending on the VBT MIPI sequences version the deassert-seq
- * may contain the necessary delay, intel_dsi_msleep() will skip
- * the delay in that case. If there is no deassert-seq, then an
- * unconditional msleep is used to give the panel time to power-on.
- */
- if (connector->panel.vbt.dsi.sequence[MIPI_SEQ_DEASSERT_RESET]) {
- intel_dsi_msleep(intel_dsi, intel_dsi->panel_on_delay);
- intel_dsi_vbt_exec_sequence(intel_dsi, MIPI_SEQ_DEASSERT_RESET);
- } else {
- msleep(intel_dsi->panel_on_delay);
- }
+ msleep(intel_dsi->panel_on_delay);
+ intel_dsi_vbt_exec_sequence(intel_dsi, MIPI_SEQ_DEASSERT_RESET);
if (IS_GEMINILAKE(dev_priv)) {
glk_cold_boot = glk_dsi_enable_io(encoder);
@@ -878,7 +815,7 @@ static void intel_dsi_pre_enable(struct intel_atomic_state *state,
msleep(20); /* XXX */
for_each_dsi_port(port, intel_dsi->ports)
dpi_send_cmd(intel_dsi, TURN_ON, false, port);
- intel_dsi_msleep(intel_dsi, 100);
+ msleep(100);
intel_dsi_vbt_exec_sequence(intel_dsi, MIPI_SEQ_DISPLAY_ON);
@@ -948,7 +885,6 @@ static void intel_dsi_post_disable(struct intel_atomic_state *state,
struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
struct intel_dsi *intel_dsi = enc_to_intel_dsi(encoder);
enum port port;
- u32 val;
drm_dbg_kms(&dev_priv->drm, "\n");
@@ -986,27 +922,22 @@ static void intel_dsi_post_disable(struct intel_atomic_state *state,
HS_IO_CTRL_SELECT);
/* Add MIPI IO reset programming for modeset */
- val = intel_de_read(dev_priv, BXT_P_CR_GT_DISP_PWRON);
- intel_de_write(dev_priv, BXT_P_CR_GT_DISP_PWRON,
- val & ~MIPIO_RST_CTRL);
+ intel_de_rmw(dev_priv, BXT_P_CR_GT_DISP_PWRON, MIPIO_RST_CTRL, 0);
}
if (IS_GEMINILAKE(dev_priv) || IS_BROXTON(dev_priv)) {
bxt_dsi_pll_disable(encoder);
} else {
- u32 val;
-
vlv_dsi_pll_disable(encoder);
- val = intel_de_read(dev_priv, DSPCLK_GATE_D(dev_priv));
- val &= ~DPOUNIT_CLOCK_GATE_DISABLE;
- intel_de_write(dev_priv, DSPCLK_GATE_D(dev_priv), val);
+ intel_de_rmw(dev_priv, DSPCLK_GATE_D(dev_priv),
+ DPOUNIT_CLOCK_GATE_DISABLE, 0);
}
/* Assert reset */
intel_dsi_vbt_exec_sequence(intel_dsi, MIPI_SEQ_ASSERT_RESET);
- intel_dsi_msleep(intel_dsi, intel_dsi->panel_off_delay);
+ msleep(intel_dsi->panel_off_delay);
intel_dsi_vbt_exec_sequence(intel_dsi, MIPI_SEQ_POWER_OFF);
intel_dsi->panel_power_off_time = ktime_get_boottime();
@@ -1057,7 +988,7 @@ static bool intel_dsi_get_hw_state(struct intel_encoder *encoder,
*/
if ((IS_VALLEYVIEW(dev_priv) || IS_CHERRYVIEW(dev_priv)) &&
port == PORT_C)
- enabled = intel_de_read(dev_priv, PIPECONF(PIPE_B)) & PIPECONF_ENABLE;
+ enabled = intel_de_read(dev_priv, TRANSCONF(PIPE_B)) & TRANSCONF_ENABLE;
/* Try command mode if video mode not enabled */
if (!enabled) {
@@ -1129,7 +1060,7 @@ static void bxt_dsi_get_pipe_config(struct intel_encoder *encoder,
bpp = mipi_dsi_pixel_format_to_bpp(
pixel_format_from_register_bits(fmt));
- pipe_config->pipe_bpp = bdw_get_pipemisc_bpp(crtc);
+ pipe_config->pipe_bpp = bdw_get_pipe_misc_bpp(crtc);
/* Enable Frame time stamo based scanline reporting */
pipe_config->mode_flags |=
@@ -1431,11 +1362,8 @@ static void intel_dsi_prepare(struct intel_encoder *intel_encoder,
} else if (IS_GEMINILAKE(dev_priv) || IS_BROXTON(dev_priv)) {
enum pipe pipe = crtc->pipe;
- tmp = intel_de_read(dev_priv, MIPI_CTRL(port));
- tmp &= ~BXT_PIPE_SELECT_MASK;
-
- tmp |= BXT_PIPE_SELECT(pipe);
- intel_de_write(dev_priv, MIPI_CTRL(port), tmp);
+ intel_de_rmw(dev_priv, MIPI_CTRL(port),
+ BXT_PIPE_SELECT_MASK, BXT_PIPE_SELECT(pipe));
}
/* XXX: why here, why like this? handling in irq handler?! */
@@ -1604,7 +1532,6 @@ static void intel_dsi_unprepare(struct intel_encoder *encoder)
struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
struct intel_dsi *intel_dsi = enc_to_intel_dsi(encoder);
enum port port;
- u32 val;
if (IS_GEMINILAKE(dev_priv))
return;
@@ -1619,9 +1546,7 @@ static void intel_dsi_unprepare(struct intel_encoder *encoder)
vlv_dsi_reset_clocks(encoder, port);
intel_de_write(dev_priv, MIPI_EOT_DISABLE(port), CLOCKSTOP);
- val = intel_de_read(dev_priv, MIPI_DSI_FUNC_PRG(port));
- val &= ~VID_MODE_FORMAT_MASK;
- intel_de_write(dev_priv, MIPI_DSI_FUNC_PRG(port), val);
+ intel_de_rmw(dev_priv, MIPI_DSI_FUNC_PRG(port), VID_MODE_FORMAT_MASK, 0);
intel_de_write(dev_priv, MIPI_DEVICE_READY(port), 0x1);
}
@@ -1659,19 +1584,10 @@ static const struct drm_connector_funcs intel_dsi_connector_funcs = {
static void vlv_dsi_add_properties(struct intel_connector *connector)
{
- struct drm_i915_private *dev_priv = to_i915(connector->base.dev);
const struct drm_display_mode *fixed_mode =
intel_panel_preferred_fixed_mode(connector);
- u32 allowed_scalers;
-
- allowed_scalers = BIT(DRM_MODE_SCALE_ASPECT) | BIT(DRM_MODE_SCALE_FULLSCREEN);
- if (!HAS_GMCH(dev_priv))
- allowed_scalers |= BIT(DRM_MODE_SCALE_CENTER);
-
- drm_connector_attach_scaling_mode_property(&connector->base,
- allowed_scalers);
- connector->base.state->scaling_mode = DRM_MODE_SCALE_ASPECT;
+ intel_attach_scaling_mode_property(&connector->base);
drm_connector_set_panel_orientation_with_quirk(&connector->base,
intel_dsi_get_panel_orientation(connector),
@@ -1854,7 +1770,6 @@ static void vlv_dphy_param_init(struct intel_dsi *intel_dsi)
void vlv_dsi_init(struct drm_i915_private *dev_priv)
{
- struct drm_device *dev = &dev_priv->drm;
struct intel_dsi *intel_dsi;
struct intel_encoder *intel_encoder;
struct drm_encoder *encoder;
@@ -1891,7 +1806,7 @@ void vlv_dsi_init(struct drm_i915_private *dev_priv)
connector = &intel_connector->base;
- drm_encoder_init(dev, encoder, &intel_dsi_funcs, DRM_MODE_ENCODER_DSI,
+ drm_encoder_init(&dev_priv->drm, encoder, &intel_dsi_funcs, DRM_MODE_ENCODER_DSI,
"DSI %c", port_name(port));
intel_encoder->compute_config = intel_dsi_compute_config;
@@ -1925,7 +1840,7 @@ void vlv_dsi_init(struct drm_i915_private *dev_priv)
intel_dsi->panel_power_off_time = ktime_get_boottime();
- intel_bios_init_panel(dev_priv, &intel_connector->panel, NULL, NULL);
+ intel_bios_init_panel_late(dev_priv, &intel_connector->panel, NULL, NULL);
if (intel_connector->panel.vbt.dsi.config->dual_link)
intel_dsi->ports = BIT(PORT_A) | BIT(PORT_C);
@@ -1974,27 +1889,25 @@ void vlv_dsi_init(struct drm_i915_private *dev_priv)
intel_dsi_vbt_gpio_init(intel_dsi,
intel_dsi_get_hw_state(intel_encoder, &pipe));
- drm_connector_init(dev, connector, &intel_dsi_connector_funcs,
+ drm_connector_init(&dev_priv->drm, connector, &intel_dsi_connector_funcs,
DRM_MODE_CONNECTOR_DSI);
drm_connector_helper_add(connector, &intel_dsi_connector_helper_funcs);
connector->display_info.subpixel_order = SubPixelHorizontalRGB; /*XXX*/
- connector->interlace_allowed = false;
- connector->doublescan_allowed = false;
intel_connector_attach_encoder(intel_connector, intel_encoder);
- mutex_lock(&dev->mode_config.mutex);
+ mutex_lock(&dev_priv->drm.mode_config.mutex);
intel_panel_add_vbt_lfp_fixed_mode(intel_connector);
- mutex_unlock(&dev->mode_config.mutex);
+ mutex_unlock(&dev_priv->drm.mode_config.mutex);
if (!intel_panel_preferred_fixed_mode(intel_connector)) {
drm_dbg_kms(&dev_priv->drm, "no fixed mode\n");
goto err_cleanup_connector;
}
- intel_panel_init(intel_connector);
+ intel_panel_init(intel_connector, NULL);
intel_backlight_setup(intel_connector, INVALID_PIPE);
diff --git a/drivers/gpu/drm/i915/display/vlv_dsi_pll.c b/drivers/gpu/drm/i915/display/vlv_dsi_pll.c
index af7402127cd9..b697badbbe71 100644
--- a/drivers/gpu/drm/i915/display/vlv_dsi_pll.c
+++ b/drivers/gpu/drm/i915/display/vlv_dsi_pll.c
@@ -302,13 +302,10 @@ bool bxt_dsi_pll_is_enabled(struct drm_i915_private *dev_priv)
void bxt_dsi_pll_disable(struct intel_encoder *encoder)
{
struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
- u32 val;
drm_dbg_kms(&dev_priv->drm, "\n");
- val = intel_de_read(dev_priv, BXT_DSI_PLL_ENABLE);
- val &= ~BXT_DSI_PLL_DO_ENABLE;
- intel_de_write(dev_priv, BXT_DSI_PLL_ENABLE, val);
+ intel_de_rmw(dev_priv, BXT_DSI_PLL_ENABLE, BXT_DSI_PLL_DO_ENABLE, 0);
/*
* PLL lock should deassert within 200us.
@@ -542,7 +539,6 @@ void bxt_dsi_pll_enable(struct intel_encoder *encoder,
struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
struct intel_dsi *intel_dsi = enc_to_intel_dsi(encoder);
enum port port;
- u32 val;
drm_dbg_kms(&dev_priv->drm, "\n");
@@ -559,9 +555,7 @@ void bxt_dsi_pll_enable(struct intel_encoder *encoder,
}
/* Enable DSI PLL */
- val = intel_de_read(dev_priv, BXT_DSI_PLL_ENABLE);
- val |= BXT_DSI_PLL_DO_ENABLE;
- intel_de_write(dev_priv, BXT_DSI_PLL_ENABLE, val);
+ intel_de_rmw(dev_priv, BXT_DSI_PLL_ENABLE, 0, BXT_DSI_PLL_DO_ENABLE);
/* Timeout and fail if PLL not locked */
if (intel_de_wait_for_set(dev_priv, BXT_DSI_PLL_ENABLE,
@@ -589,13 +583,9 @@ void bxt_dsi_reset_clocks(struct intel_encoder *encoder, enum port port)
tmp &= ~(BXT_MIPI_RX_ESCLK_LOWER_FIXDIV_MASK(port));
intel_de_write(dev_priv, BXT_MIPI_CLOCK_CTL, tmp);
} else {
- tmp = intel_de_read(dev_priv, MIPIO_TXESC_CLK_DIV1);
- tmp &= ~GLK_TX_ESC_CLK_DIV1_MASK;
- intel_de_write(dev_priv, MIPIO_TXESC_CLK_DIV1, tmp);
+ intel_de_rmw(dev_priv, MIPIO_TXESC_CLK_DIV1, GLK_TX_ESC_CLK_DIV1_MASK, 0);
- tmp = intel_de_read(dev_priv, MIPIO_TXESC_CLK_DIV2);
- tmp &= ~GLK_TX_ESC_CLK_DIV2_MASK;
- intel_de_write(dev_priv, MIPIO_TXESC_CLK_DIV2, tmp);
+ intel_de_rmw(dev_priv, MIPIO_TXESC_CLK_DIV2, GLK_TX_ESC_CLK_DIV2_MASK, 0);
}
intel_de_write(dev_priv, MIPI_EOT_DISABLE(port), CLOCKSTOP);
}
diff --git a/drivers/gpu/drm/i915/display/vlv_dsi_regs.h b/drivers/gpu/drm/i915/display/vlv_dsi_regs.h
index e065b8f2ee08..abbe427e462e 100644
--- a/drivers/gpu/drm/i915/display/vlv_dsi_regs.h
+++ b/drivers/gpu/drm/i915/display/vlv_dsi_regs.h
@@ -6,7 +6,7 @@
#ifndef __VLV_DSI_REGS_H__
#define __VLV_DSI_REGS_H__
-#include "i915_reg_defs.h"
+#include "intel_display_reg_defs.h"
#define VLV_MIPI_BASE VLV_DISPLAY_BASE
#define BXT_MIPI_BASE 0x60000
diff --git a/drivers/gpu/drm/i915/gem/i915_gem_clflush.c b/drivers/gpu/drm/i915/gem/i915_gem_clflush.c
index 0512afdd20d8..385ffc575b48 100644
--- a/drivers/gpu/drm/i915/gem/i915_gem_clflush.c
+++ b/drivers/gpu/drm/i915/gem/i915_gem_clflush.c
@@ -8,6 +8,7 @@
#include "display/intel_frontbuffer.h"
+#include "i915_config.h"
#include "i915_drv.h"
#include "i915_gem_clflush.h"
#include "i915_sw_fence_work.h"
@@ -113,7 +114,7 @@ bool i915_gem_clflush_object(struct drm_i915_gem_object *obj,
clflush = clflush_work_create(obj);
if (clflush) {
i915_sw_fence_await_reservation(&clflush->base.chain,
- obj->base.resv, NULL, true,
+ obj->base.resv, true,
i915_fence_timeout(i915),
I915_FENCE_GFP);
dma_resv_add_fence(obj->base.resv, &clflush->base.dma,
diff --git a/drivers/gpu/drm/i915/gem/i915_gem_context.c b/drivers/gpu/drm/i915/gem/i915_gem_context.c
index 1e29b1e6d186..5402a7bbcb1d 100644
--- a/drivers/gpu/drm/i915/gem/i915_gem_context.c
+++ b/drivers/gpu/drm/i915/gem/i915_gem_context.c
@@ -257,7 +257,7 @@ static int proto_context_set_protected(struct drm_i915_private *i915,
if (!protected) {
pc->uses_protected_content = false;
- } else if (!intel_pxp_is_enabled(&to_gt(i915)->pxp)) {
+ } else if (!intel_pxp_is_enabled(i915->pxp)) {
ret = -ENODEV;
} else if ((pc->user_flags & BIT(UCONTEXT_RECOVERABLE)) ||
!(pc->user_flags & BIT(UCONTEXT_BANNABLE))) {
@@ -271,8 +271,8 @@ static int proto_context_set_protected(struct drm_i915_private *i915,
*/
pc->pxp_wakeref = intel_runtime_pm_get(&i915->runtime_pm);
- if (!intel_pxp_is_active(&to_gt(i915)->pxp))
- ret = intel_pxp_start(&to_gt(i915)->pxp);
+ if (!intel_pxp_is_active(i915->pxp))
+ ret = intel_pxp_start(i915->pxp);
}
return ret;
@@ -364,7 +364,7 @@ static int set_proto_ctx_vm(struct drm_i915_file_private *fpriv,
struct i915_gem_proto_context *pc,
const struct drm_i915_gem_context_param *args)
{
- struct drm_i915_private *i915 = fpriv->dev_priv;
+ struct drm_i915_private *i915 = fpriv->i915;
struct i915_address_space *vm;
if (args->size)
@@ -546,7 +546,7 @@ set_proto_ctx_engines_bond(struct i915_user_extension __user *base, void *data)
}
if (intel_engine_uses_guc(master)) {
- DRM_DEBUG("bonding extension not supported with GuC submission");
+ drm_dbg(&i915->drm, "bonding extension not supported with GuC submission");
return -ENODEV;
}
@@ -733,7 +733,7 @@ static int set_proto_ctx_engines(struct drm_i915_file_private *fpriv,
struct i915_gem_proto_context *pc,
const struct drm_i915_gem_context_param *args)
{
- struct drm_i915_private *i915 = fpriv->dev_priv;
+ struct drm_i915_private *i915 = fpriv->i915;
struct set_proto_ctx_engines set = { .i915 = i915 };
struct i915_context_param_engines __user *user =
u64_to_user_ptr(args->value);
@@ -813,7 +813,7 @@ static int set_proto_ctx_sseu(struct drm_i915_file_private *fpriv,
struct i915_gem_proto_context *pc,
struct drm_i915_gem_context_param *args)
{
- struct drm_i915_private *i915 = fpriv->dev_priv;
+ struct drm_i915_private *i915 = fpriv->i915;
struct drm_i915_gem_context_param_sseu user_sseu;
struct intel_sseu *sseu;
int ret;
@@ -913,7 +913,7 @@ static int set_proto_ctx_param(struct drm_i915_file_private *fpriv,
break;
case I915_CONTEXT_PARAM_PRIORITY:
- ret = validate_priority(fpriv->dev_priv, args);
+ ret = validate_priority(fpriv->i915, args);
if (!ret)
pc->sched.priority = args->value;
break;
@@ -934,12 +934,12 @@ static int set_proto_ctx_param(struct drm_i915_file_private *fpriv,
if (args->size)
ret = -EINVAL;
else
- ret = proto_context_set_persistence(fpriv->dev_priv, pc,
+ ret = proto_context_set_persistence(fpriv->i915, pc,
args->value);
break;
case I915_CONTEXT_PARAM_PROTECTED_CONTENT:
- ret = proto_context_set_protected(fpriv->dev_priv, pc,
+ ret = proto_context_set_protected(fpriv->i915, pc,
args->value);
break;
@@ -1096,16 +1096,15 @@ static struct i915_gem_engines *alloc_engines(unsigned int count)
static struct i915_gem_engines *default_engines(struct i915_gem_context *ctx,
struct intel_sseu rcs_sseu)
{
- const struct intel_gt *gt = to_gt(ctx->i915);
+ const unsigned int max = I915_NUM_ENGINES;
struct intel_engine_cs *engine;
struct i915_gem_engines *e, *err;
- enum intel_engine_id id;
- e = alloc_engines(I915_NUM_ENGINES);
+ e = alloc_engines(max);
if (!e)
return ERR_PTR(-ENOMEM);
- for_each_engine(engine, gt, id) {
+ for_each_uabi_engine(engine, ctx->i915) {
struct intel_context *ce;
struct intel_sseu sseu = {};
int ret;
@@ -1113,7 +1112,7 @@ static struct i915_gem_engines *default_engines(struct i915_gem_context *ctx,
if (engine->legacy_idx == INVALID_ENGINE)
continue;
- GEM_BUG_ON(engine->legacy_idx >= I915_NUM_ENGINES);
+ GEM_BUG_ON(engine->legacy_idx >= max);
GEM_BUG_ON(e->engines[engine->legacy_idx]);
ce = intel_context_create(engine);
@@ -1452,7 +1451,7 @@ static void engines_idle_release(struct i915_gem_context *ctx,
int err;
/* serialises with execbuf */
- set_bit(CONTEXT_CLOSED_BIT, &ce->flags);
+ intel_context_close(ce);
if (!intel_context_pin_if_active(ce))
continue;
@@ -1688,6 +1687,10 @@ void i915_gem_init__contexts(struct drm_i915_private *i915)
init_contexts(&i915->gem.contexts);
}
+/*
+ * Note that this implicitly consumes the ctx reference, by placing
+ * the ctx in the context_xa.
+ */
static void gem_context_register(struct i915_gem_context *ctx,
struct drm_i915_file_private *fpriv,
u32 id)
@@ -1703,10 +1706,6 @@ static void gem_context_register(struct i915_gem_context *ctx,
snprintf(ctx->name, sizeof(ctx->name), "%s[%d]",
current->comm, pid_nr(ctx->pid));
- /* And finally expose ourselves to userspace via the idr */
- old = xa_store(&fpriv->context_xa, id, ctx, GFP_KERNEL);
- WARN_ON(old);
-
spin_lock(&ctx->client->ctx_lock);
list_add_tail_rcu(&ctx->client_link, &ctx->client->ctx_list);
spin_unlock(&ctx->client->ctx_lock);
@@ -1714,6 +1713,10 @@ static void gem_context_register(struct i915_gem_context *ctx,
spin_lock(&i915->gem.contexts.lock);
list_add_tail(&ctx->link, &i915->gem.contexts.list);
spin_unlock(&i915->gem.contexts.lock);
+
+ /* And finally expose ourselves to userspace via the idr */
+ old = xa_store(&fpriv->context_xa, id, ctx, GFP_KERNEL);
+ WARN_ON(old);
}
int i915_gem_context_open(struct drm_i915_private *i915,
@@ -1767,7 +1770,7 @@ void i915_gem_context_close(struct drm_file *file)
unsigned long idx;
xa_for_each(&file_priv->proto_context_xa, idx, pc)
- proto_context_close(file_priv->dev_priv, pc);
+ proto_context_close(file_priv->i915, pc);
xa_destroy(&file_priv->proto_context_xa);
mutex_destroy(&file_priv->proto_context_lock);
@@ -1857,11 +1860,19 @@ static int get_ppgtt(struct drm_i915_file_private *file_priv,
vm = ctx->vm;
GEM_BUG_ON(!vm);
+ /*
+ * Get a reference for the allocated handle. Once the handle is
+ * visible in the vm_xa table, userspace could try to close it
+ * from under our feet, so we need to hold the extra reference
+ * first.
+ */
+ i915_vm_get(vm);
+
err = xa_alloc(&file_priv->vm_xa, &id, vm, xa_limit_32b, GFP_KERNEL);
- if (err)
+ if (err) {
+ i915_vm_put(vm);
return err;
-
- i915_vm_get(vm);
+ }
GEM_BUG_ON(id == 0); /* reserved for invalid/unassigned ppgtt */
args->value = id;
@@ -2195,18 +2206,26 @@ finalize_create_context_locked(struct drm_i915_file_private *file_priv,
lockdep_assert_held(&file_priv->proto_context_lock);
- ctx = i915_gem_create_context(file_priv->dev_priv, pc);
+ ctx = i915_gem_create_context(file_priv->i915, pc);
if (IS_ERR(ctx))
return ctx;
+ /*
+ * One for the xarray and one for the caller. We need to grab
+ * the reference *prior* to making the ctx visble to userspace
+ * in gem_context_register(), as at any point after that
+ * userspace can try to race us with another thread destroying
+ * the context under our feet.
+ */
+ i915_gem_context_get(ctx);
+
gem_context_register(ctx, file_priv, id);
old = xa_erase(&file_priv->proto_context_xa, id);
GEM_BUG_ON(old != pc);
- proto_context_close(file_priv->dev_priv, pc);
+ proto_context_close(file_priv->i915, pc);
- /* One for the xarray and one for the caller */
- return i915_gem_context_get(ctx);
+ return ctx;
}
struct i915_gem_context *
@@ -2298,7 +2317,6 @@ int i915_gem_context_create_ioctl(struct drm_device *dev, void *data,
}
args->ctx_id = id;
- drm_dbg(&i915->drm, "HW context %d created\n", args->ctx_id);
return 0;
@@ -2334,7 +2352,7 @@ int i915_gem_context_destroy_ioctl(struct drm_device *dev, void *data,
GEM_WARN_ON(ctx && pc);
if (pc)
- proto_context_close(file_priv->dev_priv, pc);
+ proto_context_close(file_priv->i915, pc);
if (ctx)
context_close(ctx);
@@ -2487,7 +2505,7 @@ int i915_gem_context_setparam_ioctl(struct drm_device *dev, void *data,
* GEM_CONTEXT_CREATE starting with graphics
* version 13.
*/
- WARN_ON(GRAPHICS_VER(file_priv->dev_priv) > 12);
+ WARN_ON(GRAPHICS_VER(file_priv->i915) > 12);
ret = set_proto_ctx_param(file_priv, pc, args);
} else {
ret = -ENOENT;
diff --git a/drivers/gpu/drm/i915/gem/i915_gem_create.c b/drivers/gpu/drm/i915/gem/i915_gem_create.c
index 33673fe7ee0a..bfe1dbda4cb7 100644
--- a/drivers/gpu/drm/i915/gem/i915_gem_create.c
+++ b/drivers/gpu/drm/i915/gem/i915_gem_create.c
@@ -5,6 +5,7 @@
#include <drm/drm_fourcc.h>
+#include "display/intel_display.h"
#include "gem/i915_gem_ioctls.h"
#include "gem/i915_gem_lmem.h"
#include "gem/i915_gem_region.h"
@@ -143,7 +144,8 @@ object_free:
}
/**
- * Creates a new object using the same path as DRM_I915_GEM_CREATE_EXT
+ * __i915_gem_object_create_user - Creates a new object using the same path as
+ * DRM_I915_GEM_CREATE_EXT
* @i915: i915 private
* @size: size of the buffer, in bytes
* @placements: possible placement regions, in priority order
@@ -214,7 +216,7 @@ i915_gem_dumb_create(struct drm_file *file,
}
/**
- * Creates a new mm object and returns a handle to it.
+ * i915_gem_create_ioctl - Creates a new mm object and returns a handle to it.
* @dev: drm device pointer
* @data: ioctl data blob
* @file: drm file pointer
@@ -384,7 +386,7 @@ static int ext_set_protected(struct i915_user_extension __user *base, void *data
if (ext.flags)
return -EINVAL;
- if (!intel_pxp_is_enabled(&to_gt(ext_data->i915)->pxp))
+ if (!intel_pxp_is_enabled(ext_data->i915->pxp))
return -ENODEV;
ext_data->flags |= I915_BO_PROTECTED;
@@ -398,7 +400,7 @@ static const i915_user_extension_fn create_extensions[] = {
};
/**
- * Creates a new mm object and returns a handle to it.
+ * i915_gem_create_ext_ioctl - Creates a new mm object and returns a handle to it.
* @dev: drm device pointer
* @data: ioctl data blob
* @file: drm file pointer
diff --git a/drivers/gpu/drm/i915/gem/i915_gem_dmabuf.c b/drivers/gpu/drm/i915/gem/i915_gem_dmabuf.c
index 824971a1ceec..fd556a076d05 100644
--- a/drivers/gpu/drm/i915/gem/i915_gem_dmabuf.c
+++ b/drivers/gpu/drm/i915/gem/i915_gem_dmabuf.c
@@ -25,43 +25,44 @@ static struct drm_i915_gem_object *dma_buf_to_obj(struct dma_buf *buf)
return to_intel_bo(buf->priv);
}
-static struct sg_table *i915_gem_map_dma_buf(struct dma_buf_attachment *attachment,
+static struct sg_table *i915_gem_map_dma_buf(struct dma_buf_attachment *attach,
enum dma_data_direction dir)
{
- struct drm_i915_gem_object *obj = dma_buf_to_obj(attachment->dmabuf);
- struct sg_table *st;
+ struct drm_i915_gem_object *obj = dma_buf_to_obj(attach->dmabuf);
+ struct sg_table *sgt;
struct scatterlist *src, *dst;
int ret, i;
- /* Copy sg so that we make an independent mapping */
- st = kmalloc(sizeof(struct sg_table), GFP_KERNEL);
- if (st == NULL) {
+ /*
+ * Make a copy of the object's sgt, so that we can make an independent
+ * mapping
+ */
+ sgt = kmalloc(sizeof(*sgt), GFP_KERNEL);
+ if (!sgt) {
ret = -ENOMEM;
goto err;
}
- ret = sg_alloc_table(st, obj->mm.pages->orig_nents, GFP_KERNEL);
+ ret = sg_alloc_table(sgt, obj->mm.pages->orig_nents, GFP_KERNEL);
if (ret)
goto err_free;
- src = obj->mm.pages->sgl;
- dst = st->sgl;
- for (i = 0; i < obj->mm.pages->orig_nents; i++) {
+ dst = sgt->sgl;
+ for_each_sg(obj->mm.pages->sgl, src, obj->mm.pages->orig_nents, i) {
sg_set_page(dst, sg_page(src), src->length, 0);
dst = sg_next(dst);
- src = sg_next(src);
}
- ret = dma_map_sgtable(attachment->dev, st, dir, DMA_ATTR_SKIP_CPU_SYNC);
+ ret = dma_map_sgtable(attach->dev, sgt, dir, DMA_ATTR_SKIP_CPU_SYNC);
if (ret)
goto err_free_sg;
- return st;
+ return sgt;
err_free_sg:
- sg_free_table(st);
+ sg_free_table(sgt);
err_free:
- kfree(st);
+ kfree(sgt);
err:
return ERR_PTR(ret);
}
@@ -72,7 +73,7 @@ static int i915_gem_dmabuf_vmap(struct dma_buf *dma_buf,
struct drm_i915_gem_object *obj = dma_buf_to_obj(dma_buf);
void *vaddr;
- vaddr = i915_gem_object_pin_map_unlocked(obj, I915_MAP_WB);
+ vaddr = i915_gem_object_pin_map(obj, I915_MAP_WB);
if (IS_ERR(vaddr))
return PTR_ERR(vaddr);
@@ -96,6 +97,8 @@ static int i915_gem_dmabuf_mmap(struct dma_buf *dma_buf, struct vm_area_struct *
struct drm_i915_private *i915 = to_i915(obj->base.dev);
int ret;
+ dma_resv_assert_held(dma_buf->resv);
+
if (obj->base.size < vma->vm_end - vma->vm_start)
return -EINVAL;
@@ -236,15 +239,14 @@ struct dma_buf *i915_gem_prime_export(struct drm_gem_object *gem_obj, int flags)
static int i915_gem_object_get_pages_dmabuf(struct drm_i915_gem_object *obj)
{
struct drm_i915_private *i915 = to_i915(obj->base.dev);
- struct sg_table *pages;
- unsigned int sg_page_sizes;
+ struct sg_table *sgt;
assert_object_held(obj);
- pages = dma_buf_map_attachment(obj->base.import_attach,
- DMA_BIDIRECTIONAL);
- if (IS_ERR(pages))
- return PTR_ERR(pages);
+ sgt = dma_buf_map_attachment(obj->base.import_attach,
+ DMA_BIDIRECTIONAL);
+ if (IS_ERR(sgt))
+ return PTR_ERR(sgt);
/*
* DG1 is special here since it still snoops transactions even with
@@ -261,16 +263,15 @@ static int i915_gem_object_get_pages_dmabuf(struct drm_i915_gem_object *obj)
(!HAS_LLC(i915) && !IS_DG1(i915)))
wbinvd_on_all_cpus();
- sg_page_sizes = i915_sg_dma_sizes(pages->sgl);
- __i915_gem_object_set_pages(obj, pages, sg_page_sizes);
+ __i915_gem_object_set_pages(obj, sgt);
return 0;
}
static void i915_gem_object_put_pages_dmabuf(struct drm_i915_gem_object *obj,
- struct sg_table *pages)
+ struct sg_table *sgt)
{
- dma_buf_unmap_attachment(obj->base.import_attach, pages,
+ dma_buf_unmap_attachment(obj->base.import_attach, sgt,
DMA_BIDIRECTIONAL);
}
@@ -313,7 +314,7 @@ struct drm_gem_object *i915_gem_prime_import(struct drm_device *dev,
get_dma_buf(dma_buf);
obj = i915_gem_object_alloc();
- if (obj == NULL) {
+ if (!obj) {
ret = -ENOMEM;
goto fail_detach;
}
diff --git a/drivers/gpu/drm/i915/gem/i915_gem_domain.c b/drivers/gpu/drm/i915/gem/i915_gem_domain.c
index d44a152ce680..d2d5a24301b2 100644
--- a/drivers/gpu/drm/i915/gem/i915_gem_domain.c
+++ b/drivers/gpu/drm/i915/gem/i915_gem_domain.c
@@ -4,6 +4,7 @@
* Copyright © 2014-2016 Intel Corporation
*/
+#include "display/intel_display.h"
#include "display/intel_frontbuffer.h"
#include "gt/intel_gt.h"
@@ -17,6 +18,8 @@
#include "i915_gem_object.h"
#include "i915_vma.h"
+#define VTD_GUARD (168u * I915_GTT_PAGE_SIZE) /* 168 or tile-row PTE padding */
+
static bool gpu_write_needs_clflush(struct drm_i915_gem_object *obj)
{
struct drm_i915_private *i915 = to_i915(obj->base.dev);
@@ -113,7 +116,8 @@ void i915_gem_object_flush_if_display_locked(struct drm_i915_gem_object *obj)
}
/**
- * Moves a single object to the WC read, and possibly write domain.
+ * i915_gem_object_set_to_wc_domain - Moves a single object to the WC read, and
+ * possibly write domain.
* @obj: object to act on
* @write: ask for write access or read only
*
@@ -174,7 +178,8 @@ i915_gem_object_set_to_wc_domain(struct drm_i915_gem_object *obj, bool write)
}
/**
- * Moves a single object to the GTT read, and possibly write domain.
+ * i915_gem_object_set_to_gtt_domain - Moves a single object to the GTT read,
+ * and possibly write domain.
* @obj: object to act on
* @write: ask for write access or read only
*
@@ -243,7 +248,7 @@ i915_gem_object_set_to_gtt_domain(struct drm_i915_gem_object *obj, bool write)
}
/**
- * Changes the cache-level of an object across all VMA.
+ * i915_gem_object_set_cache_level - Changes the cache-level of an object across all VMA.
* @obj: object to act on
* @cache_level: new cache level to set for the object
*
@@ -424,6 +429,17 @@ i915_gem_object_pin_to_display_plane(struct drm_i915_gem_object *obj,
if (ret)
return ERR_PTR(ret);
+ /* VT-d may overfetch before/after the vma, so pad with scratch */
+ if (intel_scanout_needs_vtd_wa(i915)) {
+ unsigned int guard = VTD_GUARD;
+
+ if (i915_gem_object_is_tiled(obj))
+ guard = max(guard,
+ i915_gem_object_get_tile_row_size(obj));
+
+ flags |= PIN_OFFSET_GUARD | guard;
+ }
+
/*
* As the user may map the buffer once pinned in the display plane
* (e.g. libkms for the bootup splash), we have to ensure that we
@@ -444,7 +460,7 @@ i915_gem_object_pin_to_display_plane(struct drm_i915_gem_object *obj,
if (IS_ERR(vma))
return vma;
- vma->display_alignment = max_t(u64, vma->display_alignment, alignment);
+ vma->display_alignment = max(vma->display_alignment, alignment);
i915_vma_mark_scanout(vma);
i915_gem_object_flush_if_display_locked(obj);
@@ -453,7 +469,8 @@ i915_gem_object_pin_to_display_plane(struct drm_i915_gem_object *obj,
}
/**
- * Moves a single object to the CPU read, and possibly write domain.
+ * i915_gem_object_set_to_cpu_domain - Moves a single object to the CPU read,
+ * and possibly write domain.
* @obj: object to act on
* @write: requesting write or read-only access
*
@@ -497,7 +514,8 @@ i915_gem_object_set_to_cpu_domain(struct drm_i915_gem_object *obj, bool write)
}
/**
- * Called when user space prepares to use an object with the CPU, either
+ * i915_gem_set_domain_ioctl - Called when user space prepares to use an
+ * object with the CPU, either
* through the mmap ioctl's mapping or a GTT mapping.
* @dev: drm device
* @data: ioctl data blob
diff --git a/drivers/gpu/drm/i915/gem/i915_gem_execbuffer.c b/drivers/gpu/drm/i915/gem/i915_gem_execbuffer.c
index 29d2459bcc90..3aeede6aee4d 100644
--- a/drivers/gpu/drm/i915/gem/i915_gem_execbuffer.c
+++ b/drivers/gpu/drm/i915/gem/i915_gem_execbuffer.c
@@ -30,6 +30,7 @@
#include "i915_gem_context.h"
#include "i915_gem_evict.h"
#include "i915_gem_ioctls.h"
+#include "i915_reg.h"
#include "i915_trace.h"
#include "i915_user_extensions.h"
@@ -53,13 +54,13 @@ enum {
#define DBG_FORCE_RELOC 0 /* choose one of the above! */
};
-/* __EXEC_OBJECT_NO_RESERVE is BIT(31), defined in i915_vma.h */
-#define __EXEC_OBJECT_HAS_PIN BIT(30)
-#define __EXEC_OBJECT_HAS_FENCE BIT(29)
-#define __EXEC_OBJECT_USERPTR_INIT BIT(28)
-#define __EXEC_OBJECT_NEEDS_MAP BIT(27)
-#define __EXEC_OBJECT_NEEDS_BIAS BIT(26)
-#define __EXEC_OBJECT_INTERNAL_FLAGS (~0u << 26) /* all of the above + */
+/* __EXEC_OBJECT_ flags > BIT(29) defined in i915_vma.h */
+#define __EXEC_OBJECT_HAS_PIN BIT(29)
+#define __EXEC_OBJECT_HAS_FENCE BIT(28)
+#define __EXEC_OBJECT_USERPTR_INIT BIT(27)
+#define __EXEC_OBJECT_NEEDS_MAP BIT(26)
+#define __EXEC_OBJECT_NEEDS_BIAS BIT(25)
+#define __EXEC_OBJECT_INTERNAL_FLAGS (~0u << 25) /* all of the above + */
#define __EXEC_OBJECT_RESERVED (__EXEC_OBJECT_HAS_PIN | __EXEC_OBJECT_HAS_FENCE)
#define __EXEC_HAS_RELOC BIT(31)
@@ -378,22 +379,25 @@ eb_vma_misplaced(const struct drm_i915_gem_exec_object2 *entry,
const struct i915_vma *vma,
unsigned int flags)
{
- if (vma->node.size < entry->pad_to_size)
+ const u64 start = i915_vma_offset(vma);
+ const u64 size = i915_vma_size(vma);
+
+ if (size < entry->pad_to_size)
return true;
- if (entry->alignment && !IS_ALIGNED(vma->node.start, entry->alignment))
+ if (entry->alignment && !IS_ALIGNED(start, entry->alignment))
return true;
if (flags & EXEC_OBJECT_PINNED &&
- vma->node.start != entry->offset)
+ start != entry->offset)
return true;
if (flags & __EXEC_OBJECT_NEEDS_BIAS &&
- vma->node.start < BATCH_OFFSET_BIAS)
+ start < BATCH_OFFSET_BIAS)
return true;
if (!(flags & EXEC_OBJECT_SUPPORTS_48B_ADDRESS) &&
- (vma->node.start + vma->node.size + 4095) >> 32)
+ (start + size + 4095) >> 32)
return true;
if (flags & __EXEC_OBJECT_NEEDS_MAP &&
@@ -439,7 +443,7 @@ eb_pin_vma(struct i915_execbuffer *eb,
int err;
if (vma->node.size)
- pin_flags = vma->node.start;
+ pin_flags = __i915_vma_offset(vma);
else
pin_flags = entry->offset & PIN_OFFSET_MASK;
@@ -662,8 +666,8 @@ static int eb_reserve_vma(struct i915_execbuffer *eb,
if (err)
return err;
- if (entry->offset != vma->node.start) {
- entry->offset = vma->node.start | UPDATE;
+ if (entry->offset != i915_vma_offset(vma)) {
+ entry->offset = i915_vma_offset(vma) | UPDATE;
eb->args->flags |= __EXEC_HAS_RELOC;
}
@@ -729,32 +733,69 @@ static int eb_reserve(struct i915_execbuffer *eb)
bool unpinned;
/*
- * Attempt to pin all of the buffers into the GTT.
- * This is done in 2 phases:
+ * We have one more buffers that we couldn't bind, which could be due to
+ * various reasons. To resolve this we have 4 passes, with every next
+ * level turning the screws tighter:
+ *
+ * 0. Unbind all objects that do not match the GTT constraints for the
+ * execbuffer (fenceable, mappable, alignment etc). Bind all new
+ * objects. This avoids unnecessary unbinding of later objects in order
+ * to make room for the earlier objects *unless* we need to defragment.
*
- * 1. Unbind all objects that do not match the GTT constraints for
- * the execbuffer (fenceable, mappable, alignment etc).
- * 2. Bind new objects.
+ * 1. Reorder the buffers, where objects with the most restrictive
+ * placement requirements go first (ignoring fixed location buffers for
+ * now). For example, objects needing the mappable aperture (the first
+ * 256M of GTT), should go first vs objects that can be placed just
+ * about anywhere. Repeat the previous pass.
*
- * This avoid unnecessary unbinding of later objects in order to make
- * room for the earlier objects *unless* we need to defragment.
+ * 2. Consider buffers that are pinned at a fixed location. Also try to
+ * evict the entire VM this time, leaving only objects that we were
+ * unable to lock. Try again to bind the buffers. (still using the new
+ * buffer order).
*
- * Defragmenting is skipped if all objects are pinned at a fixed location.
+ * 3. We likely have object lock contention for one or more stubborn
+ * objects in the VM, for which we need to evict to make forward
+ * progress (perhaps we are fighting the shrinker?). When evicting the
+ * VM this time around, anything that we can't lock we now track using
+ * the busy_bo, using the full lock (after dropping the vm->mutex to
+ * prevent deadlocks), instead of trylock. We then continue to evict the
+ * VM, this time with the stubborn object locked, which we can now
+ * hopefully unbind (if still bound in the VM). Repeat until the VM is
+ * evicted. Finally we should be able bind everything.
*/
- for (pass = 0; pass <= 2; pass++) {
+ for (pass = 0; pass <= 3; pass++) {
int pin_flags = PIN_USER | PIN_VALIDATE;
if (pass == 0)
pin_flags |= PIN_NONBLOCK;
if (pass >= 1)
- unpinned = eb_unbind(eb, pass == 2);
+ unpinned = eb_unbind(eb, pass >= 2);
if (pass == 2) {
err = mutex_lock_interruptible(&eb->context->vm->mutex);
if (!err) {
- err = i915_gem_evict_vm(eb->context->vm, &eb->ww);
+ err = i915_gem_evict_vm(eb->context->vm, &eb->ww, NULL);
+ mutex_unlock(&eb->context->vm->mutex);
+ }
+ if (err)
+ return err;
+ }
+
+ if (pass == 3) {
+retry:
+ err = mutex_lock_interruptible(&eb->context->vm->mutex);
+ if (!err) {
+ struct drm_i915_gem_object *busy_bo = NULL;
+
+ err = i915_gem_evict_vm(eb->context->vm, &eb->ww, &busy_bo);
mutex_unlock(&eb->context->vm->mutex);
+ if (err && busy_bo) {
+ err = i915_gem_object_lock(busy_bo, &eb->ww);
+ i915_gem_object_put(busy_bo);
+ if (!err)
+ goto retry;
+ }
}
if (err)
return err;
@@ -868,7 +909,7 @@ static struct i915_vma *eb_lookup_vma(struct i915_execbuffer *eb, u32 handle)
*/
if (i915_gem_context_uses_protected_content(eb->gem_context) &&
i915_gem_object_is_protected(obj)) {
- err = intel_pxp_key_check(&vm->gt->pxp, obj, true);
+ err = intel_pxp_key_check(eb->i915->pxp, obj, true);
if (err) {
i915_gem_object_put(obj);
return ERR_PTR(err);
@@ -983,8 +1024,8 @@ static int eb_validate_vmas(struct i915_execbuffer *eb)
return err;
if (!err) {
- if (entry->offset != vma->node.start) {
- entry->offset = vma->node.start | UPDATE;
+ if (entry->offset != i915_vma_offset(vma)) {
+ entry->offset = i915_vma_offset(vma) | UPDATE;
eb->args->flags |= __EXEC_HAS_RELOC;
}
} else {
@@ -1065,7 +1106,7 @@ static inline u64
relocation_target(const struct drm_i915_gem_relocation_entry *reloc,
const struct i915_vma *target)
{
- return gen8_canonical_addr((int)reloc->delta + target->node.start);
+ return gen8_canonical_addr((int)reloc->delta + i915_vma_offset(target));
}
static void reloc_cache_init(struct reloc_cache *cache,
@@ -1274,7 +1315,7 @@ static void *reloc_iomap(struct i915_vma *batch,
if (err) /* no inactive aperture space, use cpu reloc */
return NULL;
} else {
- cache->node.start = vma->node.start;
+ cache->node.start = i915_ggtt_offset(vma);
cache->node.mm = (void *)vma;
}
}
@@ -1437,7 +1478,7 @@ eb_relocate_entry(struct i915_execbuffer *eb,
* more work needs to be done.
*/
if (!DBG_FORCE_RELOC &&
- gen8_canonical_addr(target->vma->node.start) == reloc->presumed_offset)
+ gen8_canonical_addr(i915_vma_offset(target->vma)) == reloc->presumed_offset)
return 0;
/* Check that the relocation address is valid... */
@@ -2101,7 +2142,8 @@ static int eb_move_to_gpu(struct i915_execbuffer *eb)
eb->composite_fence ?
eb->composite_fence :
&eb->requests[j]->fence,
- flags | __EXEC_OBJECT_NO_RESERVE);
+ flags | __EXEC_OBJECT_NO_RESERVE |
+ __EXEC_OBJECT_NO_REQUEST_AWAIT);
}
}
@@ -2148,7 +2190,8 @@ err_skip:
return err;
}
-static int i915_gem_check_execbuffer(struct drm_i915_gem_execbuffer2 *exec)
+static int i915_gem_check_execbuffer(struct drm_i915_private *i915,
+ struct drm_i915_gem_execbuffer2 *exec)
{
if (exec->flags & __I915_EXEC_ILLEGAL_FLAGS)
return -EINVAL;
@@ -2161,7 +2204,7 @@ static int i915_gem_check_execbuffer(struct drm_i915_gem_execbuffer2 *exec)
}
if (exec->DR4 == 0xffffffff) {
- DRM_DEBUG("UXA submitting garbage DR4, fixing up\n");
+ drm_dbg(&i915->drm, "UXA submitting garbage DR4, fixing up\n");
exec->DR4 = 0;
}
if (exec->DR1 || exec->DR4)
@@ -2365,7 +2408,7 @@ static int eb_request_submit(struct i915_execbuffer *eb,
}
err = rq->context->engine->emit_bb_start(rq,
- batch->node.start +
+ i915_vma_offset(batch) +
eb->batch_start_offset,
batch_len,
eb->batch_flags);
@@ -2376,7 +2419,7 @@ static int eb_request_submit(struct i915_execbuffer *eb,
GEM_BUG_ON(intel_context_is_parallel(rq->context));
GEM_BUG_ON(eb->batch_start_offset);
err = rq->context->engine->emit_bb_start(rq,
- eb->trampoline->node.start +
+ i915_vma_offset(eb->trampoline) +
batch_len, 0, 0);
if (err)
return err;
@@ -2406,11 +2449,6 @@ static int eb_submit(struct i915_execbuffer *eb)
return err;
}
-static int num_vcs_engines(struct drm_i915_private *i915)
-{
- return hweight_long(VDBOX_MASK(to_gt(i915)));
-}
-
/*
* Find one BSD ring to dispatch the corresponding BSD command.
* The engine index is returned.
@@ -2424,7 +2462,7 @@ gen8_dispatch_bsd_engine(struct drm_i915_private *dev_priv,
/* Check whether the file_priv has already selected one ring. */
if ((int)file_priv->bsd_engine < 0)
file_priv->bsd_engine =
- get_random_u32_below(num_vcs_engines(dev_priv));
+ get_random_u32_below(dev_priv->engine_uabi_class_count[I915_ENGINE_CLASS_VIDEO]);
return file_priv->bsd_engine;
}
@@ -2612,7 +2650,8 @@ eb_select_legacy_ring(struct i915_execbuffer *eb)
return -1;
}
- if (user_ring_id == I915_EXEC_BSD && num_vcs_engines(i915) > 1) {
+ if (user_ring_id == I915_EXEC_BSD &&
+ i915->engine_uabi_class_count[I915_ENGINE_CLASS_VIDEO] > 1) {
unsigned int bsd_idx = args->flags & I915_EXEC_BSD_MASK;
if (bsd_idx == I915_EXEC_BSD_DEFAULT) {
@@ -2799,7 +2838,8 @@ add_timeline_fence_array(struct i915_execbuffer *eb,
syncobj = drm_syncobj_find(eb->file, user_fence.handle);
if (!syncobj) {
- DRM_DEBUG("Invalid syncobj handle provided\n");
+ drm_dbg(&eb->i915->drm,
+ "Invalid syncobj handle provided\n");
return -ENOENT;
}
@@ -2807,7 +2847,8 @@ add_timeline_fence_array(struct i915_execbuffer *eb,
if (!fence && user_fence.flags &&
!(user_fence.flags & I915_EXEC_FENCE_SIGNAL)) {
- DRM_DEBUG("Syncobj handle has no fence\n");
+ drm_dbg(&eb->i915->drm,
+ "Syncobj handle has no fence\n");
drm_syncobj_put(syncobj);
return -EINVAL;
}
@@ -2816,7 +2857,9 @@ add_timeline_fence_array(struct i915_execbuffer *eb,
err = dma_fence_chain_find_seqno(&fence, point);
if (err && !(user_fence.flags & I915_EXEC_FENCE_SIGNAL)) {
- DRM_DEBUG("Syncobj handle missing requested point %llu\n", point);
+ drm_dbg(&eb->i915->drm,
+ "Syncobj handle missing requested point %llu\n",
+ point);
dma_fence_put(fence);
drm_syncobj_put(syncobj);
return err;
@@ -2842,7 +2885,8 @@ add_timeline_fence_array(struct i915_execbuffer *eb,
* 0) would break the timeline.
*/
if (user_fence.flags & I915_EXEC_FENCE_WAIT) {
- DRM_DEBUG("Trying to wait & signal the same timeline point.\n");
+ drm_dbg(&eb->i915->drm,
+ "Trying to wait & signal the same timeline point.\n");
dma_fence_put(fence);
drm_syncobj_put(syncobj);
return -EINVAL;
@@ -2913,14 +2957,16 @@ static int add_fence_array(struct i915_execbuffer *eb)
syncobj = drm_syncobj_find(eb->file, user_fence.handle);
if (!syncobj) {
- DRM_DEBUG("Invalid syncobj handle provided\n");
+ drm_dbg(&eb->i915->drm,
+ "Invalid syncobj handle provided\n");
return -ENOENT;
}
if (user_fence.flags & I915_EXEC_FENCE_WAIT) {
fence = drm_syncobj_fence_get(syncobj);
if (!fence) {
- DRM_DEBUG("Syncobj handle has no fence\n");
+ drm_dbg(&eb->i915->drm,
+ "Syncobj handle has no fence\n");
drm_syncobj_put(syncobj);
return -EINVAL;
}
@@ -2954,11 +3000,6 @@ await_fence_array(struct i915_execbuffer *eb,
int err;
for (n = 0; n < eb->num_fences; n++) {
- struct drm_syncobj *syncobj;
- unsigned int flags;
-
- syncobj = ptr_unpack_bits(eb->fences[n].syncobj, &flags, 2);
-
if (!eb->fences[n].dma_fence)
continue;
@@ -3441,6 +3482,13 @@ err_request:
eb.composite_fence :
&eb.requests[0]->fence);
+ if (unlikely(eb.gem_context->syncobj)) {
+ drm_syncobj_replace_fence(eb.gem_context->syncobj,
+ eb.composite_fence ?
+ eb.composite_fence :
+ &eb.requests[0]->fence);
+ }
+
if (out_fence) {
if (err == 0) {
fd_install(out_fence_fd, out_fence->file);
@@ -3452,13 +3500,6 @@ err_request:
}
}
- if (unlikely(eb.gem_context->syncobj)) {
- drm_syncobj_replace_fence(eb.gem_context->syncobj,
- eb.composite_fence ?
- eb.composite_fence :
- &eb.requests[0]->fence);
- }
-
if (!out_fence && eb.composite_fence)
dma_fence_put(eb.composite_fence);
@@ -3520,7 +3561,7 @@ i915_gem_execbuffer2_ioctl(struct drm_device *dev, void *data,
return -EINVAL;
}
- err = i915_gem_check_execbuffer(args);
+ err = i915_gem_check_execbuffer(i915, args);
if (err)
return err;
diff --git a/drivers/gpu/drm/i915/gem/i915_gem_internal.c b/drivers/gpu/drm/i915/gem/i915_gem_internal.c
index 629acb403a2c..6bc26b4b06b8 100644
--- a/drivers/gpu/drm/i915/gem/i915_gem_internal.c
+++ b/drivers/gpu/drm/i915/gem/i915_gem_internal.c
@@ -35,12 +35,15 @@ static int i915_gem_object_get_pages_internal(struct drm_i915_gem_object *obj)
struct drm_i915_private *i915 = to_i915(obj->base.dev);
struct sg_table *st;
struct scatterlist *sg;
- unsigned int sg_page_sizes;
- unsigned int npages;
+ unsigned int npages; /* restricted by sg_alloc_table */
int max_order = MAX_ORDER;
unsigned int max_segment;
gfp_t gfp;
+ if (overflows_type(obj->base.size >> PAGE_SHIFT, npages))
+ return -E2BIG;
+
+ npages = obj->base.size >> PAGE_SHIFT;
max_segment = i915_sg_segment_size(i915->drm.dev) >> PAGE_SHIFT;
max_order = min(max_order, get_order(max_segment));
@@ -56,7 +59,6 @@ create_st:
if (!st)
return -ENOMEM;
- npages = obj->base.size / PAGE_SIZE;
if (sg_alloc_table(st, npages, GFP_KERNEL)) {
kfree(st);
return -ENOMEM;
@@ -64,7 +66,6 @@ create_st:
sg = st->sgl;
st->nents = 0;
- sg_page_sizes = 0;
do {
int order = min(fls(npages) - 1, max_order);
@@ -83,7 +84,6 @@ create_st:
} while (1);
sg_set_page(sg, page, PAGE_SIZE << order, 0);
- sg_page_sizes |= PAGE_SIZE << order;
st->nents++;
npages -= 1 << order;
@@ -105,7 +105,7 @@ create_st:
goto err;
}
- __i915_gem_object_set_pages(obj, st, sg_page_sizes);
+ __i915_gem_object_set_pages(obj, st);
return 0;
diff --git a/drivers/gpu/drm/i915/gem/i915_gem_lmem.c b/drivers/gpu/drm/i915/gem/i915_gem_lmem.c
index 8949fb0a944f..3198b64ad7db 100644
--- a/drivers/gpu/drm/i915/gem/i915_gem_lmem.c
+++ b/drivers/gpu/drm/i915/gem/i915_gem_lmem.c
@@ -127,7 +127,8 @@ i915_gem_object_create_lmem_from_data(struct drm_i915_private *i915,
memcpy(map, data, size);
- i915_gem_object_unpin_map(obj);
+ i915_gem_object_flush_map(obj);
+ __i915_gem_object_release_map(obj);
return obj;
}
diff --git a/drivers/gpu/drm/i915/gem/i915_gem_mman.c b/drivers/gpu/drm/i915/gem/i915_gem_mman.c
index 73d9eda1d6b7..d3c1dee16af2 100644
--- a/drivers/gpu/drm/i915/gem/i915_gem_mman.c
+++ b/drivers/gpu/drm/i915/gem/i915_gem_mman.c
@@ -330,7 +330,7 @@ retry:
if (ret)
goto err_rpm;
- ret = intel_gt_reset_trylock(ggtt->vm.gt, &srcu);
+ ret = intel_gt_reset_lock_interruptible(ggtt->vm.gt, &srcu);
if (ret)
goto err_pages;
@@ -369,7 +369,7 @@ retry:
if (vma == ERR_PTR(-ENOSPC)) {
ret = mutex_lock_interruptible(&ggtt->vm.mutex);
if (!ret) {
- ret = i915_gem_evict_vm(&ggtt->vm, &ww);
+ ret = i915_gem_evict_vm(&ggtt->vm, &ww, NULL);
mutex_unlock(&ggtt->vm.mutex);
}
if (ret)
@@ -395,7 +395,7 @@ retry:
/* Finally, remap it using the new GTT offset */
ret = remap_io_mapping(area,
area->vm_start + (vma->gtt_view.partial.offset << PAGE_SHIFT),
- (ggtt->gmadr.start + vma->node.start) >> PAGE_SHIFT,
+ (ggtt->gmadr.start + i915_ggtt_offset(vma)) >> PAGE_SHIFT,
min_t(u64, vma->size, area->vm_end - area->vm_start),
&ggtt->iomap);
if (ret)
@@ -413,7 +413,7 @@ retry:
vma->mmo = mmo;
if (CONFIG_DRM_I915_USERFAULT_AUTOSUSPEND)
- intel_wakeref_auto(&to_gt(i915)->userfault_wakeref,
+ intel_wakeref_auto(&i915->runtime_pm.userfault_wakeref,
msecs_to_jiffies_timeout(CONFIG_DRM_I915_USERFAULT_AUTOSUSPEND));
if (write) {
@@ -557,11 +557,13 @@ void i915_gem_object_runtime_pm_release_mmap_offset(struct drm_i915_gem_object *
drm_vma_node_unmap(&bo->base.vma_node, bdev->dev_mapping);
- if (obj->userfault_count) {
- /* rpm wakeref provide exclusive access */
- list_del(&obj->userfault_link);
- obj->userfault_count = 0;
- }
+ /*
+ * We have exclusive access here via runtime suspend. All other callers
+ * must first grab the rpm wakeref.
+ */
+ GEM_BUG_ON(!obj->userfault_count);
+ list_del(&obj->userfault_link);
+ obj->userfault_count = 0;
}
void i915_gem_object_release_mmap_offset(struct drm_i915_gem_object *obj)
@@ -587,13 +589,6 @@ void i915_gem_object_release_mmap_offset(struct drm_i915_gem_object *obj)
spin_lock(&obj->mmo.lock);
}
spin_unlock(&obj->mmo.lock);
-
- if (obj->userfault_count) {
- mutex_lock(&to_gt(to_i915(obj->base.dev))->lmem_userfault_lock);
- list_del(&obj->userfault_link);
- mutex_unlock(&to_gt(to_i915(obj->base.dev))->lmem_userfault_lock);
- obj->userfault_count = 0;
- }
}
static struct i915_mmap_offset *
@@ -702,7 +697,7 @@ insert:
GEM_BUG_ON(lookup_mmo(obj, mmap_type) != mmo);
out:
if (file)
- drm_vma_node_allow(&mmo->vma_node, file);
+ drm_vma_node_allow_once(&mmo->vma_node, file);
return mmo;
err:
@@ -984,7 +979,7 @@ int i915_gem_mmap(struct file *filp, struct vm_area_struct *vma)
i915_gem_object_put(obj);
return -EINVAL;
}
- vma->vm_flags &= ~VM_MAYWRITE;
+ vm_flags_clear(vma, VM_MAYWRITE);
}
anon = mmap_singleton(to_i915(dev));
@@ -993,7 +988,7 @@ int i915_gem_mmap(struct file *filp, struct vm_area_struct *vma)
return PTR_ERR(anon);
}
- vma->vm_flags |= VM_PFNMAP | VM_DONTEXPAND | VM_DONTDUMP | VM_IO;
+ vm_flags_set(vma, VM_PFNMAP | VM_DONTEXPAND | VM_DONTDUMP | VM_IO);
/*
* We keep the ref on mmo->obj, not vm_file, but we require
diff --git a/drivers/gpu/drm/i915/gem/i915_gem_object.c b/drivers/gpu/drm/i915/gem/i915_gem_object.c
index 369006c5317f..4666bb82f312 100644
--- a/drivers/gpu/drm/i915/gem/i915_gem_object.c
+++ b/drivers/gpu/drm/i915/gem/i915_gem_object.c
@@ -290,7 +290,21 @@ void __i915_gem_object_pages_fini(struct drm_i915_gem_object *obj)
__i915_gem_object_free_mmaps(obj);
atomic_set(&obj->mm.pages_pin_count, 0);
+
+ /*
+ * dma_buf_unmap_attachment() requires reservation to be
+ * locked. The imported GEM shouldn't share reservation lock
+ * and ttm_bo_cleanup_memtype_use() shouldn't be invoked for
+ * dma-buf, so it's safe to take the lock.
+ */
+ if (obj->base.import_attach)
+ i915_gem_object_lock(obj, NULL);
+
__i915_gem_object_put_pages(obj);
+
+ if (obj->base.import_attach)
+ i915_gem_object_unlock(obj);
+
GEM_BUG_ON(i915_gem_object_has_pages(obj));
}
@@ -413,10 +427,11 @@ void __i915_gem_object_invalidate_frontbuffer(struct drm_i915_gem_object *obj,
static void
i915_gem_object_read_from_page_kmap(struct drm_i915_gem_object *obj, u64 offset, void *dst, int size)
{
+ pgoff_t idx = offset >> PAGE_SHIFT;
void *src_map;
void *src_ptr;
- src_map = kmap_atomic(i915_gem_object_get_page(obj, offset >> PAGE_SHIFT));
+ src_map = kmap_atomic(i915_gem_object_get_page(obj, idx));
src_ptr = src_map + offset_in_page(offset);
if (!(obj->cache_coherent & I915_BO_CACHE_COHERENT_FOR_READ))
@@ -429,9 +444,10 @@ i915_gem_object_read_from_page_kmap(struct drm_i915_gem_object *obj, u64 offset,
static void
i915_gem_object_read_from_page_iomap(struct drm_i915_gem_object *obj, u64 offset, void *dst, int size)
{
+ pgoff_t idx = offset >> PAGE_SHIFT;
+ dma_addr_t dma = i915_gem_object_get_dma_address(obj, idx);
void __iomem *src_map;
void __iomem *src_ptr;
- dma_addr_t dma = i915_gem_object_get_dma_address(obj, offset >> PAGE_SHIFT);
src_map = io_mapping_map_wc(&obj->mm.region->iomap,
dma - obj->mm.region->region.start,
@@ -444,6 +460,16 @@ i915_gem_object_read_from_page_iomap(struct drm_i915_gem_object *obj, u64 offset
io_mapping_unmap(src_map);
}
+static bool object_has_mappable_iomem(struct drm_i915_gem_object *obj)
+{
+ GEM_BUG_ON(!i915_gem_object_has_iomem(obj));
+
+ if (IS_DGFX(to_i915(obj->base.dev)))
+ return i915_ttm_resource_mappable(i915_gem_to_ttm(obj)->resource);
+
+ return true;
+}
+
/**
* i915_gem_object_read_from_page - read data from the page of a GEM object
* @obj: GEM object to read from
@@ -460,13 +486,14 @@ i915_gem_object_read_from_page_iomap(struct drm_i915_gem_object *obj, u64 offset
*/
int i915_gem_object_read_from_page(struct drm_i915_gem_object *obj, u64 offset, void *dst, int size)
{
+ GEM_BUG_ON(overflows_type(offset >> PAGE_SHIFT, pgoff_t));
GEM_BUG_ON(offset >= obj->base.size);
GEM_BUG_ON(offset_in_page(offset) > PAGE_SIZE - size);
GEM_BUG_ON(!i915_gem_object_has_pinned_pages(obj));
if (i915_gem_object_has_struct_page(obj))
i915_gem_object_read_from_page_kmap(obj, offset, dst, size);
- else if (i915_gem_object_has_iomem(obj))
+ else if (i915_gem_object_has_iomem(obj) && object_has_mappable_iomem(obj))
i915_gem_object_read_from_page_iomap(obj, offset, dst, size);
else
return -ENODEV;
@@ -761,6 +788,9 @@ bool i915_gem_object_needs_ccs_pages(struct drm_i915_gem_object *obj)
if (!HAS_FLAT_CCS(to_i915(obj->base.dev)))
return false;
+ if (obj->flags & I915_BO_ALLOC_CCS_AUX)
+ return true;
+
for (i = 0; i < obj->mm.n_placements; i++) {
/* Compression is not allowed for the objects with smem placement */
if (obj->mm.placements[i]->type == INTEL_MEMORY_SYSTEM)
@@ -845,7 +875,7 @@ int i915_gem_object_wait_moving_fence(struct drm_i915_gem_object *obj,
return ret < 0 ? ret : 0;
}
-/**
+/*
* i915_gem_object_has_unknown_state - Return true if the object backing pages are
* in an unknown_state. This means that userspace must NEVER be allowed to touch
* the pages, with either the GPU or CPU.
diff --git a/drivers/gpu/drm/i915/gem/i915_gem_object.h b/drivers/gpu/drm/i915/gem/i915_gem_object.h
index 1723af9b0f6a..885ccde9dc3c 100644
--- a/drivers/gpu/drm/i915/gem/i915_gem_object.h
+++ b/drivers/gpu/drm/i915/gem/i915_gem_object.h
@@ -20,26 +20,10 @@
enum intel_region_id;
-/*
- * XXX: There is a prevalence of the assumption that we fit the
- * object's page count inside a 32bit _signed_ variable. Let's document
- * this and catch if we ever need to fix it. In the meantime, if you do
- * spot such a local variable, please consider fixing!
- *
- * Aside from our own locals (for which we have no excuse!):
- * - sg_table embeds unsigned int for num_pages
- * - get_user_pages*() mixed ints with longs
- */
-#define GEM_CHECK_SIZE_OVERFLOW(sz) \
- GEM_WARN_ON((sz) >> PAGE_SHIFT > INT_MAX)
-
static inline bool i915_gem_object_size_2big(u64 size)
{
struct drm_i915_gem_object *obj;
- if (GEM_CHECK_SIZE_OVERFLOW(size))
- return true;
-
if (overflows_type(size, obj->base.size))
return true;
@@ -319,7 +303,7 @@ i915_gem_object_never_mmap(const struct drm_i915_gem_object *obj)
static inline bool
i915_gem_object_is_framebuffer(const struct drm_i915_gem_object *obj)
{
- return READ_ONCE(obj->frontbuffer);
+ return READ_ONCE(obj->frontbuffer) || obj->is_dpt;
}
static inline unsigned int
@@ -363,48 +347,292 @@ i915_gem_object_get_tile_row_size(const struct drm_i915_gem_object *obj)
int i915_gem_object_set_tiling(struct drm_i915_gem_object *obj,
unsigned int tiling, unsigned int stride);
+/**
+ * __i915_gem_object_page_iter_get_sg - helper to find the target scatterlist
+ * pointer and the target page position using pgoff_t n input argument and
+ * i915_gem_object_page_iter
+ * @obj: i915 GEM buffer object
+ * @iter: i915 GEM buffer object page iterator
+ * @n: page offset
+ * @offset: searched physical offset,
+ * it will be used for returning physical page offset value
+ *
+ * Context: Takes and releases the mutex lock of the i915_gem_object_page_iter.
+ * Takes and releases the RCU lock to search the radix_tree of
+ * i915_gem_object_page_iter.
+ *
+ * Returns:
+ * The target scatterlist pointer and the target page position.
+ *
+ * Recommended to use wrapper macro: i915_gem_object_page_iter_get_sg()
+ */
struct scatterlist *
-__i915_gem_object_get_sg(struct drm_i915_gem_object *obj,
- struct i915_gem_object_page_iter *iter,
- unsigned int n,
- unsigned int *offset, bool dma);
+__i915_gem_object_page_iter_get_sg(struct drm_i915_gem_object *obj,
+ struct i915_gem_object_page_iter *iter,
+ pgoff_t n,
+ unsigned int *offset);
+/**
+ * i915_gem_object_page_iter_get_sg - wrapper macro for
+ * __i915_gem_object_page_iter_get_sg()
+ * @obj: i915 GEM buffer object
+ * @it: i915 GEM buffer object page iterator
+ * @n: page offset
+ * @offset: searched physical offset,
+ * it will be used for returning physical page offset value
+ *
+ * Context: Takes and releases the mutex lock of the i915_gem_object_page_iter.
+ * Takes and releases the RCU lock to search the radix_tree of
+ * i915_gem_object_page_iter.
+ *
+ * Returns:
+ * The target scatterlist pointer and the target page position.
+ *
+ * In order to avoid the truncation of the input parameter, it checks the page
+ * offset n's type from the input parameter before calling
+ * __i915_gem_object_page_iter_get_sg().
+ */
+#define i915_gem_object_page_iter_get_sg(obj, it, n, offset) ({ \
+ static_assert(castable_to_type(n, pgoff_t)); \
+ __i915_gem_object_page_iter_get_sg(obj, it, n, offset); \
+})
+
+/**
+ * __i915_gem_object_get_sg - helper to find the target scatterlist
+ * pointer and the target page position using pgoff_t n input argument and
+ * drm_i915_gem_object. It uses an internal shmem scatterlist lookup function.
+ * @obj: i915 GEM buffer object
+ * @n: page offset
+ * @offset: searched physical offset,
+ * it will be used for returning physical page offset value
+ *
+ * It uses drm_i915_gem_object's internal shmem scatterlist lookup function as
+ * i915_gem_object_page_iter and calls __i915_gem_object_page_iter_get_sg().
+ *
+ * Returns:
+ * The target scatterlist pointer and the target page position.
+ *
+ * Recommended to use wrapper macro: i915_gem_object_get_sg()
+ * See also __i915_gem_object_page_iter_get_sg()
+ */
static inline struct scatterlist *
-i915_gem_object_get_sg(struct drm_i915_gem_object *obj,
- unsigned int n,
- unsigned int *offset)
+__i915_gem_object_get_sg(struct drm_i915_gem_object *obj, pgoff_t n,
+ unsigned int *offset)
{
- return __i915_gem_object_get_sg(obj, &obj->mm.get_page, n, offset, false);
+ return __i915_gem_object_page_iter_get_sg(obj, &obj->mm.get_page, n, offset);
}
+/**
+ * i915_gem_object_get_sg - wrapper macro for __i915_gem_object_get_sg()
+ * @obj: i915 GEM buffer object
+ * @n: page offset
+ * @offset: searched physical offset,
+ * it will be used for returning physical page offset value
+ *
+ * Returns:
+ * The target scatterlist pointer and the target page position.
+ *
+ * In order to avoid the truncation of the input parameter, it checks the page
+ * offset n's type from the input parameter before calling
+ * __i915_gem_object_get_sg().
+ * See also __i915_gem_object_page_iter_get_sg()
+ */
+#define i915_gem_object_get_sg(obj, n, offset) ({ \
+ static_assert(castable_to_type(n, pgoff_t)); \
+ __i915_gem_object_get_sg(obj, n, offset); \
+})
+
+/**
+ * __i915_gem_object_get_sg_dma - helper to find the target scatterlist
+ * pointer and the target page position using pgoff_t n input argument and
+ * drm_i915_gem_object. It uses an internal DMA mapped scatterlist lookup function
+ * @obj: i915 GEM buffer object
+ * @n: page offset
+ * @offset: searched physical offset,
+ * it will be used for returning physical page offset value
+ *
+ * It uses drm_i915_gem_object's internal DMA mapped scatterlist lookup function
+ * as i915_gem_object_page_iter and calls __i915_gem_object_page_iter_get_sg().
+ *
+ * Returns:
+ * The target scatterlist pointer and the target page position.
+ *
+ * Recommended to use wrapper macro: i915_gem_object_get_sg_dma()
+ * See also __i915_gem_object_page_iter_get_sg()
+ */
static inline struct scatterlist *
-i915_gem_object_get_sg_dma(struct drm_i915_gem_object *obj,
- unsigned int n,
- unsigned int *offset)
+__i915_gem_object_get_sg_dma(struct drm_i915_gem_object *obj, pgoff_t n,
+ unsigned int *offset)
{
- return __i915_gem_object_get_sg(obj, &obj->mm.get_dma_page, n, offset, true);
+ return __i915_gem_object_page_iter_get_sg(obj, &obj->mm.get_dma_page, n, offset);
}
+/**
+ * i915_gem_object_get_sg_dma - wrapper macro for __i915_gem_object_get_sg_dma()
+ * @obj: i915 GEM buffer object
+ * @n: page offset
+ * @offset: searched physical offset,
+ * it will be used for returning physical page offset value
+ *
+ * Returns:
+ * The target scatterlist pointer and the target page position.
+ *
+ * In order to avoid the truncation of the input parameter, it checks the page
+ * offset n's type from the input parameter before calling
+ * __i915_gem_object_get_sg_dma().
+ * See also __i915_gem_object_page_iter_get_sg()
+ */
+#define i915_gem_object_get_sg_dma(obj, n, offset) ({ \
+ static_assert(castable_to_type(n, pgoff_t)); \
+ __i915_gem_object_get_sg_dma(obj, n, offset); \
+})
+
+/**
+ * __i915_gem_object_get_page - helper to find the target page with a page offset
+ * @obj: i915 GEM buffer object
+ * @n: page offset
+ *
+ * It uses drm_i915_gem_object's internal shmem scatterlist lookup function as
+ * i915_gem_object_page_iter and calls __i915_gem_object_page_iter_get_sg()
+ * internally.
+ *
+ * Returns:
+ * The target page pointer.
+ *
+ * Recommended to use wrapper macro: i915_gem_object_get_page()
+ * See also __i915_gem_object_page_iter_get_sg()
+ */
struct page *
-i915_gem_object_get_page(struct drm_i915_gem_object *obj,
- unsigned int n);
+__i915_gem_object_get_page(struct drm_i915_gem_object *obj, pgoff_t n);
+/**
+ * i915_gem_object_get_page - wrapper macro for __i915_gem_object_get_page
+ * @obj: i915 GEM buffer object
+ * @n: page offset
+ *
+ * Returns:
+ * The target page pointer.
+ *
+ * In order to avoid the truncation of the input parameter, it checks the page
+ * offset n's type from the input parameter before calling
+ * __i915_gem_object_get_page().
+ * See also __i915_gem_object_page_iter_get_sg()
+ */
+#define i915_gem_object_get_page(obj, n) ({ \
+ static_assert(castable_to_type(n, pgoff_t)); \
+ __i915_gem_object_get_page(obj, n); \
+})
+
+/**
+ * __i915_gem_object_get_dirty_page - helper to find the target page with a page
+ * offset
+ * @obj: i915 GEM buffer object
+ * @n: page offset
+ *
+ * It works like i915_gem_object_get_page(), but it marks the returned page dirty.
+ *
+ * Returns:
+ * The target page pointer.
+ *
+ * Recommended to use wrapper macro: i915_gem_object_get_dirty_page()
+ * See also __i915_gem_object_page_iter_get_sg() and __i915_gem_object_get_page()
+ */
struct page *
-i915_gem_object_get_dirty_page(struct drm_i915_gem_object *obj,
- unsigned int n);
+__i915_gem_object_get_dirty_page(struct drm_i915_gem_object *obj, pgoff_t n);
+/**
+ * i915_gem_object_get_dirty_page - wrapper macro for __i915_gem_object_get_dirty_page
+ * @obj: i915 GEM buffer object
+ * @n: page offset
+ *
+ * Returns:
+ * The target page pointer.
+ *
+ * In order to avoid the truncation of the input parameter, it checks the page
+ * offset n's type from the input parameter before calling
+ * __i915_gem_object_get_dirty_page().
+ * See also __i915_gem_object_page_iter_get_sg() and __i915_gem_object_get_page()
+ */
+#define i915_gem_object_get_dirty_page(obj, n) ({ \
+ static_assert(castable_to_type(n, pgoff_t)); \
+ __i915_gem_object_get_dirty_page(obj, n); \
+})
+
+/**
+ * __i915_gem_object_get_dma_address_len - helper to get bus addresses of
+ * targeted DMA mapped scatterlist from i915 GEM buffer object and it's length
+ * @obj: i915 GEM buffer object
+ * @n: page offset
+ * @len: DMA mapped scatterlist's DMA bus addresses length to return
+ *
+ * Returns:
+ * Bus addresses of targeted DMA mapped scatterlist
+ *
+ * Recommended to use wrapper macro: i915_gem_object_get_dma_address_len()
+ * See also __i915_gem_object_page_iter_get_sg() and __i915_gem_object_get_sg_dma()
+ */
dma_addr_t
-i915_gem_object_get_dma_address_len(struct drm_i915_gem_object *obj,
- unsigned long n,
- unsigned int *len);
+__i915_gem_object_get_dma_address_len(struct drm_i915_gem_object *obj, pgoff_t n,
+ unsigned int *len);
+/**
+ * i915_gem_object_get_dma_address_len - wrapper macro for
+ * __i915_gem_object_get_dma_address_len
+ * @obj: i915 GEM buffer object
+ * @n: page offset
+ * @len: DMA mapped scatterlist's DMA bus addresses length to return
+ *
+ * Returns:
+ * Bus addresses of targeted DMA mapped scatterlist
+ *
+ * In order to avoid the truncation of the input parameter, it checks the page
+ * offset n's type from the input parameter before calling
+ * __i915_gem_object_get_dma_address_len().
+ * See also __i915_gem_object_page_iter_get_sg() and
+ * __i915_gem_object_get_dma_address_len()
+ */
+#define i915_gem_object_get_dma_address_len(obj, n, len) ({ \
+ static_assert(castable_to_type(n, pgoff_t)); \
+ __i915_gem_object_get_dma_address_len(obj, n, len); \
+})
+
+/**
+ * __i915_gem_object_get_dma_address - helper to get bus addresses of
+ * targeted DMA mapped scatterlist from i915 GEM buffer object
+ * @obj: i915 GEM buffer object
+ * @n: page offset
+ *
+ * Returns:
+ * Bus addresses of targeted DMA mapped scatterlis
+ *
+ * Recommended to use wrapper macro: i915_gem_object_get_dma_address()
+ * See also __i915_gem_object_page_iter_get_sg() and __i915_gem_object_get_sg_dma()
+ */
dma_addr_t
-i915_gem_object_get_dma_address(struct drm_i915_gem_object *obj,
- unsigned long n);
+__i915_gem_object_get_dma_address(struct drm_i915_gem_object *obj, pgoff_t n);
+
+/**
+ * i915_gem_object_get_dma_address - wrapper macro for
+ * __i915_gem_object_get_dma_address
+ * @obj: i915 GEM buffer object
+ * @n: page offset
+ *
+ * Returns:
+ * Bus addresses of targeted DMA mapped scatterlist
+ *
+ * In order to avoid the truncation of the input parameter, it checks the page
+ * offset n's type from the input parameter before calling
+ * __i915_gem_object_get_dma_address().
+ * See also __i915_gem_object_page_iter_get_sg() and
+ * __i915_gem_object_get_dma_address()
+ */
+#define i915_gem_object_get_dma_address(obj, n) ({ \
+ static_assert(castable_to_type(n, pgoff_t)); \
+ __i915_gem_object_get_dma_address(obj, n); \
+})
void __i915_gem_object_set_pages(struct drm_i915_gem_object *obj,
- struct sg_table *pages,
- unsigned int sg_page_sizes);
+ struct sg_table *pages);
int ____i915_gem_object_get_pages(struct drm_i915_gem_object *obj);
int __i915_gem_object_get_pages(struct drm_i915_gem_object *obj);
@@ -482,6 +710,10 @@ void *__must_check i915_gem_object_pin_map(struct drm_i915_gem_object *obj,
void *__must_check i915_gem_object_pin_map_unlocked(struct drm_i915_gem_object *obj,
enum i915_map_type type);
+enum i915_map_type i915_coherent_map_type(struct drm_i915_private *i915,
+ struct drm_i915_gem_object *obj,
+ bool always_coherent);
+
void __i915_gem_object_flush_map(struct drm_i915_gem_object *obj,
unsigned long offset,
unsigned long size);
diff --git a/drivers/gpu/drm/i915/gem/i915_gem_object_types.h b/drivers/gpu/drm/i915/gem/i915_gem_object_types.h
index d0d6772e6f36..5dcbbef31d44 100644
--- a/drivers/gpu/drm/i915/gem/i915_gem_object_types.h
+++ b/drivers/gpu/drm/i915/gem/i915_gem_object_types.h
@@ -10,7 +10,7 @@
#include <linux/mmu_notifier.h>
#include <drm/drm_gem.h>
-#include <drm/ttm/ttm_bo_api.h>
+#include <drm/ttm/ttm_bo.h>
#include <uapi/drm/i915_drm.h>
#include "i915_active.h"
@@ -327,16 +327,18 @@ struct drm_i915_gem_object {
* dealing with userspace objects the CPU fault handler is free to ignore this.
*/
#define I915_BO_ALLOC_GPU_ONLY BIT(6)
+#define I915_BO_ALLOC_CCS_AUX BIT(7)
#define I915_BO_ALLOC_FLAGS (I915_BO_ALLOC_CONTIGUOUS | \
I915_BO_ALLOC_VOLATILE | \
I915_BO_ALLOC_CPU_CLEAR | \
I915_BO_ALLOC_USER | \
I915_BO_ALLOC_PM_VOLATILE | \
I915_BO_ALLOC_PM_EARLY | \
- I915_BO_ALLOC_GPU_ONLY)
-#define I915_BO_READONLY BIT(7)
-#define I915_TILING_QUIRK_BIT 8 /* unknown swizzling; do not release! */
-#define I915_BO_PROTECTED BIT(9)
+ I915_BO_ALLOC_GPU_ONLY | \
+ I915_BO_ALLOC_CCS_AUX)
+#define I915_BO_READONLY BIT(8)
+#define I915_TILING_QUIRK_BIT 9 /* unknown swizzling; do not release! */
+#define I915_BO_PROTECTED BIT(10)
/**
* @mem_flags - Mutable placement-related flags
*
@@ -489,6 +491,9 @@ struct drm_i915_gem_object {
*/
unsigned int cache_dirty:1;
+ /* @is_dpt: Object houses a display page table (DPT) */
+ unsigned int is_dpt:1;
+
/**
* @read_domains: Read memory domains.
*
diff --git a/drivers/gpu/drm/i915/gem/i915_gem_pages.c b/drivers/gpu/drm/i915/gem/i915_gem_pages.c
index 4df50b049cea..ecd86130b74f 100644
--- a/drivers/gpu/drm/i915/gem/i915_gem_pages.c
+++ b/drivers/gpu/drm/i915/gem/i915_gem_pages.c
@@ -16,8 +16,7 @@
#include "i915_gem_mman.h"
void __i915_gem_object_set_pages(struct drm_i915_gem_object *obj,
- struct sg_table *pages,
- unsigned int sg_page_sizes)
+ struct sg_table *pages)
{
struct drm_i915_private *i915 = to_i915(obj->base.dev);
unsigned long supported = RUNTIME_INFO(i915)->page_sizes;
@@ -45,8 +44,8 @@ void __i915_gem_object_set_pages(struct drm_i915_gem_object *obj,
obj->mm.pages = pages;
- GEM_BUG_ON(!sg_page_sizes);
- obj->mm.page_sizes.phys = sg_page_sizes;
+ obj->mm.page_sizes.phys = i915_sg_dma_sizes(pages->sgl);
+ GEM_BUG_ON(!obj->mm.page_sizes.phys);
/*
* Calculate the supported page-sizes which fit into the given
@@ -466,6 +465,18 @@ void *i915_gem_object_pin_map_unlocked(struct drm_i915_gem_object *obj,
return ret;
}
+enum i915_map_type i915_coherent_map_type(struct drm_i915_private *i915,
+ struct drm_i915_gem_object *obj,
+ bool always_coherent)
+{
+ if (i915_gem_object_is_lmem(obj))
+ return I915_MAP_WC;
+ if (HAS_LLC(i915) || always_coherent)
+ return I915_MAP_WB;
+ else
+ return I915_MAP_WC;
+}
+
void __i915_gem_object_flush_map(struct drm_i915_gem_object *obj,
unsigned long offset,
unsigned long size)
@@ -510,14 +521,16 @@ void __i915_gem_object_release_map(struct drm_i915_gem_object *obj)
}
struct scatterlist *
-__i915_gem_object_get_sg(struct drm_i915_gem_object *obj,
- struct i915_gem_object_page_iter *iter,
- unsigned int n,
- unsigned int *offset,
- bool dma)
+__i915_gem_object_page_iter_get_sg(struct drm_i915_gem_object *obj,
+ struct i915_gem_object_page_iter *iter,
+ pgoff_t n,
+ unsigned int *offset)
+
{
- struct scatterlist *sg;
+ const bool dma = iter == &obj->mm.get_dma_page ||
+ iter == &obj->ttm.get_io_page;
unsigned int idx, count;
+ struct scatterlist *sg;
might_sleep();
GEM_BUG_ON(n >= obj->base.size >> PAGE_SHIFT);
@@ -625,7 +638,7 @@ lookup:
}
struct page *
-i915_gem_object_get_page(struct drm_i915_gem_object *obj, unsigned int n)
+__i915_gem_object_get_page(struct drm_i915_gem_object *obj, pgoff_t n)
{
struct scatterlist *sg;
unsigned int offset;
@@ -638,8 +651,7 @@ i915_gem_object_get_page(struct drm_i915_gem_object *obj, unsigned int n)
/* Like i915_gem_object_get_page(), but mark the returned page dirty */
struct page *
-i915_gem_object_get_dirty_page(struct drm_i915_gem_object *obj,
- unsigned int n)
+__i915_gem_object_get_dirty_page(struct drm_i915_gem_object *obj, pgoff_t n)
{
struct page *page;
@@ -651,9 +663,8 @@ i915_gem_object_get_dirty_page(struct drm_i915_gem_object *obj,
}
dma_addr_t
-i915_gem_object_get_dma_address_len(struct drm_i915_gem_object *obj,
- unsigned long n,
- unsigned int *len)
+__i915_gem_object_get_dma_address_len(struct drm_i915_gem_object *obj,
+ pgoff_t n, unsigned int *len)
{
struct scatterlist *sg;
unsigned int offset;
@@ -667,8 +678,7 @@ i915_gem_object_get_dma_address_len(struct drm_i915_gem_object *obj,
}
dma_addr_t
-i915_gem_object_get_dma_address(struct drm_i915_gem_object *obj,
- unsigned long n)
+__i915_gem_object_get_dma_address(struct drm_i915_gem_object *obj, pgoff_t n)
{
return i915_gem_object_get_dma_address_len(obj, n, NULL);
}
diff --git a/drivers/gpu/drm/i915/gem/i915_gem_phys.c b/drivers/gpu/drm/i915/gem/i915_gem_phys.c
index 0d0e46dae559..76efe98eaa14 100644
--- a/drivers/gpu/drm/i915/gem/i915_gem_phys.c
+++ b/drivers/gpu/drm/i915/gem/i915_gem_phys.c
@@ -28,6 +28,10 @@ static int i915_gem_object_get_pages_phys(struct drm_i915_gem_object *obj)
void *dst;
int i;
+ /* Contiguous chunk, with a single scatterlist element */
+ if (overflows_type(obj->base.size, sg->length))
+ return -E2BIG;
+
if (GEM_WARN_ON(i915_gem_object_needs_bit17_swizzle(obj)))
return -EINVAL;
@@ -79,7 +83,7 @@ static int i915_gem_object_get_pages_phys(struct drm_i915_gem_object *obj)
/* We're no longer struct page backed */
obj->mem_flags &= ~I915_BO_FLAG_STRUCT_PAGE;
- __i915_gem_object_set_pages(obj, st, sg->length);
+ __i915_gem_object_set_pages(obj, st);
return 0;
@@ -209,11 +213,8 @@ static int i915_gem_object_shmem_to_phys(struct drm_i915_gem_object *obj)
return 0;
err_xfer:
- if (!IS_ERR_OR_NULL(pages)) {
- unsigned int sg_page_sizes = i915_sg_dma_sizes(pages->sgl);
-
- __i915_gem_object_set_pages(obj, pages, sg_page_sizes);
- }
+ if (!IS_ERR_OR_NULL(pages))
+ __i915_gem_object_set_pages(obj, pages);
return err;
}
diff --git a/drivers/gpu/drm/i915/gem/i915_gem_pm.c b/drivers/gpu/drm/i915/gem/i915_gem_pm.c
index 3428f735e786..0d812f4d787d 100644
--- a/drivers/gpu/drm/i915/gem/i915_gem_pm.c
+++ b/drivers/gpu/drm/i915/gem/i915_gem_pm.c
@@ -22,9 +22,12 @@
void i915_gem_suspend(struct drm_i915_private *i915)
{
+ struct intel_gt *gt;
+ unsigned int i;
+
GEM_TRACE("%s\n", dev_name(i915->drm.dev));
- intel_wakeref_auto(&to_gt(i915)->userfault_wakeref, 0);
+ intel_wakeref_auto(&i915->runtime_pm.userfault_wakeref, 0);
flush_workqueue(i915->wq);
/*
@@ -36,7 +39,8 @@ void i915_gem_suspend(struct drm_i915_private *i915)
* state. Fortunately, the kernel_context is disposable and we do
* not rely on its state.
*/
- intel_gt_suspend_prepare(to_gt(i915));
+ for_each_gt(gt, i915, i)
+ intel_gt_suspend_prepare(gt);
i915_gem_drain_freed_objects(i915);
}
@@ -131,7 +135,9 @@ void i915_gem_suspend_late(struct drm_i915_private *i915)
&i915->mm.purge_list,
NULL
}, **phase;
+ struct intel_gt *gt;
unsigned long flags;
+ unsigned int i;
bool flush = false;
/*
@@ -154,7 +160,8 @@ void i915_gem_suspend_late(struct drm_i915_private *i915)
* machine in an unusable condition.
*/
- intel_gt_suspend_late(to_gt(i915));
+ for_each_gt(gt, i915, i)
+ intel_gt_suspend_late(gt);
spin_lock_irqsave(&i915->mm.obj_lock, flags);
for (phase = phases; *phase; phase++) {
@@ -212,7 +219,8 @@ int i915_gem_freeze_late(struct drm_i915_private *i915)
void i915_gem_resume(struct drm_i915_private *i915)
{
- int ret;
+ struct intel_gt *gt;
+ int ret, i, j;
GEM_TRACE("%s\n", dev_name(i915->drm.dev));
@@ -224,8 +232,25 @@ void i915_gem_resume(struct drm_i915_private *i915)
* guarantee that the context image is complete. So let's just reset
* it and start again.
*/
- intel_gt_resume(to_gt(i915));
+ for_each_gt(gt, i915, i)
+ if (intel_gt_resume(gt))
+ goto err_wedged;
ret = lmem_restore(i915, I915_TTM_BACKUP_ALLOW_GPU);
GEM_WARN_ON(ret);
+
+ return;
+
+err_wedged:
+ for_each_gt(gt, i915, j) {
+ if (!intel_gt_is_wedged(gt)) {
+ dev_err(i915->drm.dev,
+ "Failed to re-initialize GPU[%u], declaring it wedged!\n",
+ j);
+ intel_gt_set_wedged(gt);
+ }
+
+ if (j == i)
+ break;
+ }
}
diff --git a/drivers/gpu/drm/i915/gem/i915_gem_shmem.c b/drivers/gpu/drm/i915/gem/i915_gem_shmem.c
index 2f7804492cd5..37d1efcd3ca6 100644
--- a/drivers/gpu/drm/i915/gem/i915_gem_shmem.c
+++ b/drivers/gpu/drm/i915/gem/i915_gem_shmem.c
@@ -60,7 +60,7 @@ int shmem_sg_alloc_table(struct drm_i915_private *i915, struct sg_table *st,
struct address_space *mapping,
unsigned int max_segment)
{
- const unsigned long page_count = size / PAGE_SIZE;
+ unsigned int page_count; /* restricted by sg_alloc_table */
unsigned long i;
struct scatterlist *sg;
struct page *page;
@@ -68,6 +68,10 @@ int shmem_sg_alloc_table(struct drm_i915_private *i915, struct sg_table *st,
gfp_t noreclaim;
int ret;
+ if (overflows_type(size / PAGE_SIZE, page_count))
+ return -E2BIG;
+
+ page_count = size / PAGE_SIZE;
/*
* If there's no chance of allocating enough pages for the whole
* object, bail early.
@@ -193,7 +197,6 @@ static int shmem_get_pages(struct drm_i915_gem_object *obj)
struct drm_i915_private *i915 = to_i915(obj->base.dev);
struct intel_memory_region *mem = obj->mm.region;
struct address_space *mapping = obj->base.filp->f_mapping;
- const unsigned long page_count = obj->base.size / PAGE_SIZE;
unsigned int max_segment = i915_sg_segment_size(i915->drm.dev);
struct sg_table *st;
struct sgt_iter sgt_iter;
@@ -235,8 +238,8 @@ rebuild_st:
goto rebuild_st;
} else {
dev_warn(i915->drm.dev,
- "Failed to DMA remap %lu pages\n",
- page_count);
+ "Failed to DMA remap %zu pages\n",
+ obj->base.size >> PAGE_SHIFT);
goto err_pages;
}
}
@@ -247,7 +250,7 @@ rebuild_st:
if (i915_gem_object_can_bypass_llc(obj))
obj->cache_dirty = true;
- __i915_gem_object_set_pages(obj, st, i915_sg_dma_sizes(st->sgl));
+ __i915_gem_object_set_pages(obj, st);
return 0;
@@ -538,6 +541,20 @@ static int __create_shmem(struct drm_i915_private *i915,
drm_gem_private_object_init(&i915->drm, obj, size);
+ /* XXX: The __shmem_file_setup() function returns -EINVAL if size is
+ * greater than MAX_LFS_FILESIZE.
+ * To handle the same error as other code that returns -E2BIG when
+ * the size is too large, we add a code that returns -E2BIG when the
+ * size is larger than the size that can be handled.
+ * If BITS_PER_LONG is 32, size > MAX_LFS_FILESIZE is always false,
+ * so we only needs to check when BITS_PER_LONG is 64.
+ * If BITS_PER_LONG is 32, E2BIG checks are processed when
+ * i915_gem_object_size_2big() is called before init_object() callback
+ * is called.
+ */
+ if (BITS_PER_LONG == 64 && size > MAX_LFS_FILESIZE)
+ return -E2BIG;
+
if (i915->mm.gemfs)
filp = shmem_file_setup_with_mnt(i915->mm.gemfs, "i915", size,
flags);
@@ -579,7 +596,7 @@ static int shmem_object_init(struct intel_memory_region *mem,
mapping_set_gfp_mask(mapping, mask);
GEM_BUG_ON(!(mapping_gfp_mask(mapping) & __GFP_RECLAIM));
- i915_gem_object_init(obj, &i915_gem_shmem_ops, &lock_class, 0);
+ i915_gem_object_init(obj, &i915_gem_shmem_ops, &lock_class, flags);
obj->mem_flags |= I915_BO_FLAG_STRUCT_PAGE;
obj->write_domain = I915_GEM_DOMAIN_CPU;
obj->read_domains = I915_GEM_DOMAIN_CPU;
diff --git a/drivers/gpu/drm/i915/gem/i915_gem_shrinker.c b/drivers/gpu/drm/i915/gem/i915_gem_shrinker.c
index 8dc5c8874d8a..b1672e054b21 100644
--- a/drivers/gpu/drm/i915/gem/i915_gem_shrinker.c
+++ b/drivers/gpu/drm/i915/gem/i915_gem_shrinker.c
@@ -400,7 +400,7 @@ i915_gem_shrinker_vmap(struct notifier_block *nb, unsigned long event, void *ptr
mutex_lock(&to_gt(i915)->ggtt->vm.mutex);
list_for_each_entry_safe(vma, next,
&to_gt(i915)->ggtt->vm.bound_list, vm_link) {
- unsigned long count = vma->node.size >> PAGE_SHIFT;
+ unsigned long count = i915_vma_size(vma) >> PAGE_SHIFT;
struct drm_i915_gem_object *obj = vma->obj;
if (!vma->iomap || i915_vma_is_active(vma))
diff --git a/drivers/gpu/drm/i915/gem/i915_gem_stolen.c b/drivers/gpu/drm/i915/gem/i915_gem_stolen.c
index acc561c0f0aa..8ac376c24aa2 100644
--- a/drivers/gpu/drm/i915/gem/i915_gem_stolen.c
+++ b/drivers/gpu/drm/i915/gem/i915_gem_stolen.c
@@ -77,22 +77,26 @@ void i915_gem_stolen_remove_node(struct drm_i915_private *i915,
mutex_unlock(&i915->mm.stolen_lock);
}
-static int i915_adjust_stolen(struct drm_i915_private *i915,
- struct resource *dsm)
+static bool valid_stolen_size(struct drm_i915_private *i915, struct resource *dsm)
+{
+ return (dsm->start != 0 || HAS_LMEMBAR_SMEM_STOLEN(i915)) && dsm->end > dsm->start;
+}
+
+static int adjust_stolen(struct drm_i915_private *i915,
+ struct resource *dsm)
{
struct i915_ggtt *ggtt = to_gt(i915)->ggtt;
struct intel_uncore *uncore = ggtt->vm.gt->uncore;
- struct resource *r;
- if (dsm->start == 0 || dsm->end <= dsm->start)
+ if (!valid_stolen_size(i915, dsm))
return -EINVAL;
/*
+ * Make sure we don't clobber the GTT if it's within stolen memory
+ *
* TODO: We have yet too encounter the case where the GTT wasn't at the
* end of stolen. With that assumption we could simplify this.
*/
-
- /* Make sure we don't clobber the GTT if it's within stolen memory */
if (GRAPHICS_VER(i915) <= 4 &&
!IS_G33(i915) && !IS_PINEVIEW(i915) && !IS_G4X(i915)) {
struct resource stolen[2] = {*dsm, *dsm};
@@ -106,9 +110,7 @@ static int i915_adjust_stolen(struct drm_i915_private *i915,
else
ggtt_start &= PGTBL_ADDRESS_LO_MASK;
- ggtt_res =
- (struct resource) DEFINE_RES_MEM(ggtt_start,
- ggtt_total_entries(ggtt) * 4);
+ ggtt_res = DEFINE_RES_MEM(ggtt_start, ggtt_total_entries(ggtt) * 4);
if (ggtt_res.start >= stolen[0].start && ggtt_res.start < stolen[0].end)
stolen[0].end = ggtt_res.start;
@@ -131,12 +133,25 @@ static int i915_adjust_stolen(struct drm_i915_private *i915,
}
}
+ if (!valid_stolen_size(i915, dsm))
+ return -EINVAL;
+
+ return 0;
+}
+
+static int request_smem_stolen(struct drm_i915_private *i915,
+ struct resource *dsm)
+{
+ struct resource *r;
+
/*
- * With stolen lmem, we don't need to check if the address range
- * overlaps with the non-stolen system memory range, since lmem is local
- * to the gpu.
+ * With stolen lmem, we don't need to request system memory for the
+ * address range since it's local to the gpu.
+ *
+ * Starting MTL, in IGFX devices the stolen memory is exposed via
+ * LMEMBAR and shall be considered similar to stolen lmem.
*/
- if (HAS_LMEM(i915))
+ if (HAS_LMEM(i915) || HAS_LMEMBAR_SMEM_STOLEN(i915))
return 0;
/*
@@ -194,7 +209,7 @@ static void g4x_get_stolen_reserved(struct drm_i915_private *i915,
IS_GM45(i915) ?
CTG_STOLEN_RESERVED :
ELK_STOLEN_RESERVED);
- resource_size_t stolen_top = i915->dsm.end + 1;
+ resource_size_t stolen_top = i915->dsm.stolen.end + 1;
drm_dbg(&i915->drm, "%s_STOLEN_RESERVED = %08x\n",
IS_GM45(i915) ? "CTG" : "ELK", reg_val);
@@ -259,7 +274,7 @@ static void vlv_get_stolen_reserved(struct drm_i915_private *i915,
resource_size_t *size)
{
u32 reg_val = intel_uncore_read(uncore, GEN6_STOLEN_RESERVED);
- resource_size_t stolen_top = i915->dsm.end + 1;
+ resource_size_t stolen_top = i915->dsm.stolen.end + 1;
drm_dbg(&i915->drm, "GEN6_STOLEN_RESERVED = %08x\n", reg_val);
@@ -348,7 +363,7 @@ static void bdw_get_stolen_reserved(struct drm_i915_private *i915,
resource_size_t *size)
{
u32 reg_val = intel_uncore_read(uncore, GEN6_STOLEN_RESERVED);
- resource_size_t stolen_top = i915->dsm.end + 1;
+ resource_size_t stolen_top = i915->dsm.stolen.end + 1;
drm_dbg(&i915->drm, "GEN6_STOLEN_RESERVED = %08x\n", reg_val);
@@ -371,8 +386,6 @@ static void icl_get_stolen_reserved(struct drm_i915_private *i915,
drm_dbg(&i915->drm, "GEN6_STOLEN_RESERVED = 0x%016llx\n", reg_val);
- *base = reg_val & GEN11_STOLEN_RESERVED_ADDR_MASK;
-
switch (reg_val & GEN8_STOLEN_RESERVED_SIZE_MASK) {
case GEN8_STOLEN_RESERVED_1M:
*size = 1024 * 1024;
@@ -390,43 +403,32 @@ static void icl_get_stolen_reserved(struct drm_i915_private *i915,
*size = 8 * 1024 * 1024;
MISSING_CASE(reg_val & GEN8_STOLEN_RESERVED_SIZE_MASK);
}
+
+ if (HAS_LMEMBAR_SMEM_STOLEN(i915))
+ /* the base is initialized to stolen top so subtract size to get base */
+ *base -= *size;
+ else
+ *base = reg_val & GEN11_STOLEN_RESERVED_ADDR_MASK;
}
-static int i915_gem_init_stolen(struct intel_memory_region *mem)
+/*
+ * Initialize i915->dsm.reserved to contain the reserved space within the Data
+ * Stolen Memory. This is a range on the top of DSM that is reserved, not to
+ * be used by driver, so must be excluded from the region passed to the
+ * allocator later. In the spec this is also called as WOPCM.
+ *
+ * Our expectation is that the reserved space is at the top of the stolen
+ * region, as it has been the case for every platform, and *never* at the
+ * bottom, so the calculation here can be simplified.
+ */
+static int init_reserved_stolen(struct drm_i915_private *i915)
{
- struct drm_i915_private *i915 = mem->i915;
struct intel_uncore *uncore = &i915->uncore;
resource_size_t reserved_base, stolen_top;
- resource_size_t reserved_total, reserved_size;
-
- mutex_init(&i915->mm.stolen_lock);
-
- if (intel_vgpu_active(i915)) {
- drm_notice(&i915->drm,
- "%s, disabling use of stolen memory\n",
- "iGVT-g active");
- return 0;
- }
-
- if (i915_vtd_active(i915) && GRAPHICS_VER(i915) < 8) {
- drm_notice(&i915->drm,
- "%s, disabling use of stolen memory\n",
- "DMAR active");
- return 0;
- }
-
- if (resource_size(&mem->region) == 0)
- return 0;
-
- i915->dsm = mem->region;
-
- if (i915_adjust_stolen(i915, &i915->dsm))
- return 0;
-
- GEM_BUG_ON(i915->dsm.start == 0);
- GEM_BUG_ON(i915->dsm.end <= i915->dsm.start);
+ resource_size_t reserved_size;
+ int ret = 0;
- stolen_top = i915->dsm.end + 1;
+ stolen_top = i915->dsm.stolen.end + 1;
reserved_base = stolen_top;
reserved_size = 0;
@@ -455,50 +457,83 @@ static int i915_gem_init_stolen(struct intel_memory_region *mem)
&reserved_base, &reserved_size);
}
- /*
- * Our expectation is that the reserved space is at the top of the
- * stolen region and *never* at the bottom. If we see !reserved_base,
- * it likely means we failed to read the registers correctly.
- */
+ /* No reserved stolen */
+ if (reserved_base == stolen_top)
+ goto bail_out;
+
if (!reserved_base) {
drm_err(&i915->drm,
"inconsistent reservation %pa + %pa; ignoring\n",
&reserved_base, &reserved_size);
- reserved_base = stolen_top;
- reserved_size = 0;
+ ret = -EINVAL;
+ goto bail_out;
}
- i915->dsm_reserved =
- (struct resource)DEFINE_RES_MEM(reserved_base, reserved_size);
+ i915->dsm.reserved = DEFINE_RES_MEM(reserved_base, reserved_size);
- if (!resource_contains(&i915->dsm, &i915->dsm_reserved)) {
+ if (!resource_contains(&i915->dsm.stolen, &i915->dsm.reserved)) {
drm_err(&i915->drm,
"Stolen reserved area %pR outside stolen memory %pR\n",
- &i915->dsm_reserved, &i915->dsm);
- return 0;
+ &i915->dsm.reserved, &i915->dsm.stolen);
+ ret = -EINVAL;
+ goto bail_out;
+ }
+
+ return 0;
+
+bail_out:
+ i915->dsm.reserved = DEFINE_RES_MEM(reserved_base, 0);
+
+ return ret;
+}
+
+static int i915_gem_init_stolen(struct intel_memory_region *mem)
+{
+ struct drm_i915_private *i915 = mem->i915;
+
+ mutex_init(&i915->mm.stolen_lock);
+
+ if (intel_vgpu_active(i915)) {
+ drm_notice(&i915->drm,
+ "%s, disabling use of stolen memory\n",
+ "iGVT-g active");
+ return -ENOSPC;
+ }
+
+ if (i915_vtd_active(i915) && GRAPHICS_VER(i915) < 8) {
+ drm_notice(&i915->drm,
+ "%s, disabling use of stolen memory\n",
+ "DMAR active");
+ return -ENOSPC;
}
+ if (adjust_stolen(i915, &mem->region))
+ return -ENOSPC;
+
+ if (request_smem_stolen(i915, &mem->region))
+ return -ENOSPC;
+
+ i915->dsm.stolen = mem->region;
+
+ if (init_reserved_stolen(i915))
+ return -ENOSPC;
+
/* Exclude the reserved region from driver use */
- mem->region.end = reserved_base - 1;
+ mem->region.end = i915->dsm.reserved.start - 1;
mem->io_size = min(mem->io_size, resource_size(&mem->region));
- /* It is possible for the reserved area to end before the end of stolen
- * memory, so just consider the start. */
- reserved_total = stolen_top - reserved_base;
-
- i915->stolen_usable_size =
- resource_size(&i915->dsm) - reserved_total;
+ i915->dsm.usable_size = resource_size(&mem->region);
drm_dbg(&i915->drm,
"Memory reserved for graphics device: %lluK, usable: %lluK\n",
- (u64)resource_size(&i915->dsm) >> 10,
- (u64)i915->stolen_usable_size >> 10);
+ (u64)resource_size(&i915->dsm.stolen) >> 10,
+ (u64)i915->dsm.usable_size >> 10);
- if (i915->stolen_usable_size == 0)
- return 0;
+ if (i915->dsm.usable_size == 0)
+ return -ENOSPC;
/* Basic memrange allocator for stolen space. */
- drm_mm_init(&i915->mm.stolen, 0, i915->stolen_usable_size);
+ drm_mm_init(&i915->mm.stolen, 0, i915->dsm.usable_size);
return 0;
}
@@ -548,7 +583,7 @@ i915_pages_create_for_stolen(struct drm_device *dev,
struct sg_table *st;
struct scatterlist *sg;
- GEM_BUG_ON(range_overflows(offset, size, resource_size(&i915->dsm)));
+ GEM_BUG_ON(range_overflows(offset, size, resource_size(&i915->dsm.stolen)));
/* We hide that we have no struct page backing our stolen object
* by wrapping the contiguous physical allocation with a fake
@@ -568,7 +603,7 @@ i915_pages_create_for_stolen(struct drm_device *dev,
sg->offset = 0;
sg->length = size;
- sg_dma_address(sg) = (dma_addr_t)i915->dsm.start + offset;
+ sg_dma_address(sg) = (dma_addr_t)i915->dsm.stolen.start + offset;
sg_dma_len(sg) = size;
return st;
@@ -589,7 +624,7 @@ static int i915_gem_object_get_pages_stolen(struct drm_i915_gem_object *obj)
sg_dma_len(pages->sgl),
POISON_INUSE);
- __i915_gem_object_set_pages(obj, pages, obj->stolen->size);
+ __i915_gem_object_set_pages(obj, pages);
return 0;
}
@@ -733,11 +768,17 @@ i915_gem_object_create_stolen(struct drm_i915_private *i915,
static int init_stolen_smem(struct intel_memory_region *mem)
{
+ int err;
+
/*
* Initialise stolen early so that we may reserve preallocated
* objects for the BIOS to KMS transition.
*/
- return i915_gem_init_stolen(mem);
+ err = i915_gem_init_stolen(mem);
+ if (err)
+ drm_dbg(&mem->i915->drm, "Skip stolen region: failed to setup\n");
+
+ return 0;
}
static int release_stolen_smem(struct intel_memory_region *mem)
@@ -754,26 +795,25 @@ static const struct intel_memory_region_ops i915_region_stolen_smem_ops = {
static int init_stolen_lmem(struct intel_memory_region *mem)
{
+ struct drm_i915_private *i915 = mem->i915;
int err;
if (GEM_WARN_ON(resource_size(&mem->region) == 0))
- return -ENODEV;
+ return 0;
- /*
- * TODO: For stolen lmem we mostly just care about populating the dsm
- * related bits and setting up the drm_mm allocator for the range.
- * Perhaps split up i915_gem_init_stolen() for this.
- */
err = i915_gem_init_stolen(mem);
- if (err)
- return err;
+ if (err) {
+ drm_dbg(&mem->i915->drm, "Skip stolen region: failed to setup\n");
+ return 0;
+ }
- if (mem->io_size && !io_mapping_init_wc(&mem->iomap,
- mem->io_start,
- mem->io_size)) {
- err = -EIO;
+ if (mem->io_size &&
+ !io_mapping_init_wc(&mem->iomap, mem->io_start, mem->io_size))
goto err_cleanup;
- }
+
+ drm_dbg(&i915->drm, "Stolen Local memory IO start: %pa\n",
+ &mem->io_start);
+ drm_dbg(&i915->drm, "Stolen Local DSM base: %pa\n", &mem->region.start);
return 0;
@@ -796,6 +836,29 @@ static const struct intel_memory_region_ops i915_region_stolen_lmem_ops = {
.init_object = _i915_gem_object_stolen_init,
};
+static int mtl_get_gms_size(struct intel_uncore *uncore)
+{
+ u16 ggc, gms;
+
+ ggc = intel_uncore_read16(uncore, GGC);
+
+ /* check GGMS, should be fixed 0x3 (8MB) */
+ if ((ggc & GGMS_MASK) != GGMS_MASK)
+ return -EIO;
+
+ /* return valid GMS value, -EIO if invalid */
+ gms = REG_FIELD_GET(GMS_MASK, ggc);
+ switch (gms) {
+ case 0x0 ... 0x04:
+ return gms * 32;
+ case 0xf0 ... 0xfe:
+ return (gms - 0xf0 + 1) * 4;
+ default:
+ MISSING_CASE(gms);
+ return -EIO;
+ }
+}
+
struct intel_memory_region *
i915_gem_stolen_lmem_setup(struct drm_i915_private *i915, u16 type,
u16 instance)
@@ -806,6 +869,7 @@ i915_gem_stolen_lmem_setup(struct drm_i915_private *i915, u16 type,
struct intel_memory_region *mem;
resource_size_t io_start, io_size;
resource_size_t min_page_size;
+ int ret;
if (WARN_ON_ONCE(instance))
return ERR_PTR(-ENODEV);
@@ -813,12 +877,8 @@ i915_gem_stolen_lmem_setup(struct drm_i915_private *i915, u16 type,
if (!i915_pci_resource_valid(pdev, GEN12_LMEM_BAR))
return ERR_PTR(-ENXIO);
- /* Use DSM base address instead for stolen memory */
- dsm_base = intel_uncore_read64(uncore, GEN12_DSMBASE);
- if (IS_DG1(uncore->i915)) {
+ if (HAS_LMEMBAR_SMEM_STOLEN(i915) || IS_DG1(i915)) {
lmem_size = pci_resource_len(pdev, GEN12_LMEM_BAR);
- if (WARN_ON(lmem_size < dsm_base))
- return ERR_PTR(-ENODEV);
} else {
resource_size_t lmem_range;
@@ -827,7 +887,32 @@ i915_gem_stolen_lmem_setup(struct drm_i915_private *i915, u16 type,
lmem_size *= SZ_1G;
}
- dsm_size = lmem_size - dsm_base;
+ if (HAS_LMEMBAR_SMEM_STOLEN(i915)) {
+ /*
+ * MTL dsm size is in GGC register.
+ * Also MTL uses offset to GSMBASE in ptes, so i915
+ * uses dsm_base = 8MBs to setup stolen region, since
+ * DSMBASE = GSMBASE + 8MB.
+ */
+ ret = mtl_get_gms_size(uncore);
+ if (ret < 0) {
+ drm_err(&i915->drm, "invalid MTL GGC register setting\n");
+ return ERR_PTR(ret);
+ }
+
+ dsm_base = SZ_8M;
+ dsm_size = (resource_size_t)(ret * SZ_1M);
+
+ GEM_BUG_ON(pci_resource_len(pdev, GEN12_LMEM_BAR) != SZ_256M);
+ GEM_BUG_ON((dsm_base + dsm_size) > lmem_size);
+ } else {
+ /* Use DSM base address instead for stolen memory */
+ dsm_base = intel_uncore_read64(uncore, GEN12_DSMBASE) & GEN12_BDSM_MASK;
+ if (WARN_ON(lmem_size < dsm_base))
+ return ERR_PTR(-ENODEV);
+ dsm_size = ALIGN_DOWN(lmem_size - dsm_base, SZ_1M);
+ }
+
if (pci_resource_len(pdev, GEN12_LMEM_BAR) < lmem_size) {
io_start = 0;
io_size = 0;
@@ -847,16 +932,6 @@ i915_gem_stolen_lmem_setup(struct drm_i915_private *i915, u16 type,
if (IS_ERR(mem))
return mem;
- /*
- * TODO: consider creating common helper to just print all the
- * interesting stuff from intel_memory_region, which we can use for all
- * our probed regions.
- */
-
- drm_dbg(&i915->drm, "Stolen Local memory IO start: %pa\n",
- &mem->io_start);
- drm_dbg(&i915->drm, "Stolen Local DSM base: %pa\n", &dsm_base);
-
intel_memory_region_set_name(mem, "stolen-local");
mem->private = true;
@@ -881,6 +956,7 @@ i915_gem_stolen_smem_setup(struct drm_i915_private *i915, u16 type,
intel_memory_region_set_name(mem, "stolen-system");
mem->private = true;
+
return mem;
}
diff --git a/drivers/gpu/drm/i915/gem/i915_gem_tiling.c b/drivers/gpu/drm/i915/gem/i915_gem_tiling.c
index fd42b89b7162..a049ca0b7980 100644
--- a/drivers/gpu/drm/i915/gem/i915_gem_tiling.c
+++ b/drivers/gpu/drm/i915/gem/i915_gem_tiling.c
@@ -168,11 +168,11 @@ static bool i915_vma_fence_prepare(struct i915_vma *vma,
return true;
size = i915_gem_fence_size(i915, vma->size, tiling_mode, stride);
- if (vma->node.size < size)
+ if (i915_vma_size(vma) < size)
return false;
alignment = i915_gem_fence_alignment(i915, vma->size, tiling_mode, stride);
- if (!IS_ALIGNED(vma->node.start, alignment))
+ if (!IS_ALIGNED(i915_ggtt_offset(vma), alignment))
return false;
return true;
@@ -305,10 +305,6 @@ i915_gem_object_set_tiling(struct drm_i915_gem_object *obj,
spin_unlock(&obj->vma.lock);
obj->tiling_and_stride = tiling | stride;
- i915_gem_object_unlock(obj);
-
- /* Force the fence to be reacquired for GTT access */
- i915_gem_object_release_mmap_gtt(obj);
/* Try to preallocate memory required to save swizzling on put-pages */
if (i915_gem_object_needs_bit17_swizzle(obj)) {
@@ -321,6 +317,11 @@ i915_gem_object_set_tiling(struct drm_i915_gem_object *obj,
obj->bit_17 = NULL;
}
+ i915_gem_object_unlock(obj);
+
+ /* Force the fence to be reacquired for GTT access */
+ i915_gem_object_release_mmap_gtt(obj);
+
return 0;
}
diff --git a/drivers/gpu/drm/i915/gem/i915_gem_ttm.c b/drivers/gpu/drm/i915/gem/i915_gem_ttm.c
index a4aa9500fa17..9227f8146a58 100644
--- a/drivers/gpu/drm/i915/gem/i915_gem_ttm.c
+++ b/drivers/gpu/drm/i915/gem/i915_gem_ttm.c
@@ -5,8 +5,8 @@
#include <linux/shmem_fs.h>
-#include <drm/ttm/ttm_bo_driver.h>
#include <drm/ttm/ttm_placement.h>
+#include <drm/ttm/ttm_tt.h>
#include <drm/drm_buddy.h>
#include "i915_drv.h"
@@ -140,13 +140,16 @@ i915_ttm_place_from_region(const struct intel_memory_region *mr,
if (flags & I915_BO_ALLOC_CONTIGUOUS)
place->flags |= TTM_PL_FLAG_CONTIGUOUS;
if (offset != I915_BO_INVALID_OFFSET) {
+ WARN_ON(overflows_type(offset >> PAGE_SHIFT, place->fpfn));
place->fpfn = offset >> PAGE_SHIFT;
+ WARN_ON(overflows_type(place->fpfn + (size >> PAGE_SHIFT), place->lpfn));
place->lpfn = place->fpfn + (size >> PAGE_SHIFT);
} else if (mr->io_size && mr->io_size < mr->total) {
if (flags & I915_BO_ALLOC_GPU_ONLY) {
place->flags |= TTM_PL_FLAG_TOPDOWN;
} else {
place->fpfn = 0;
+ WARN_ON(overflows_type(mr->io_size >> PAGE_SHIFT, place->lpfn));
place->lpfn = mr->io_size >> PAGE_SHIFT;
}
}
@@ -271,23 +274,21 @@ static struct ttm_tt *i915_ttm_tt_create(struct ttm_buffer_object *bo,
{
struct drm_i915_private *i915 = container_of(bo->bdev, typeof(*i915),
bdev);
- struct ttm_resource_manager *man =
- ttm_manager_type(bo->bdev, bo->resource->mem_type);
struct drm_i915_gem_object *obj = i915_ttm_to_gem(bo);
unsigned long ccs_pages = 0;
enum ttm_caching caching;
struct i915_ttm_tt *i915_tt;
int ret;
- if (!obj)
+ if (i915_ttm_is_ghost_object(bo))
return NULL;
i915_tt = kzalloc(sizeof(*i915_tt), GFP_KERNEL);
if (!i915_tt)
return NULL;
- if (obj->flags & I915_BO_ALLOC_CPU_CLEAR &&
- man->use_tt)
+ if (obj->flags & I915_BO_ALLOC_CPU_CLEAR && (!bo->resource ||
+ ttm_manager_type(bo->bdev, bo->resource->mem_type)->use_tt))
page_flags |= TTM_TT_FLAG_ZERO_ALLOC;
caching = i915_ttm_select_tt_caching(obj);
@@ -362,7 +363,7 @@ static bool i915_ttm_eviction_valuable(struct ttm_buffer_object *bo,
{
struct drm_i915_gem_object *obj = i915_ttm_to_gem(bo);
- if (!obj)
+ if (i915_ttm_is_ghost_object(bo))
return false;
/*
@@ -471,7 +472,7 @@ static int i915_ttm_shrink(struct drm_i915_gem_object *obj, unsigned int flags)
struct ttm_placement place = {};
int ret;
- if (!bo->ttm || bo->resource->mem_type != TTM_PL_SYSTEM)
+ if (!bo->ttm || i915_ttm_cpu_maps_iomem(bo->resource))
return 0;
GEM_BUG_ON(!i915_tt->is_shmem);
@@ -509,18 +510,15 @@ static int i915_ttm_shrink(struct drm_i915_gem_object *obj, unsigned int flags)
static void i915_ttm_delete_mem_notify(struct ttm_buffer_object *bo)
{
struct drm_i915_gem_object *obj = i915_ttm_to_gem(bo);
- intel_wakeref_t wakeref = 0;
-
- if (bo->resource && likely(obj)) {
- /* ttm_bo_release() already has dma_resv_lock */
- if (i915_ttm_cpu_maps_iomem(bo->resource))
- wakeref = intel_runtime_pm_get(&to_i915(obj->base.dev)->runtime_pm);
+ /*
+ * This gets called twice by ttm, so long as we have a ttm resource or
+ * ttm_tt then we can still safely call this. Due to pipeline-gutting,
+ * we maybe have NULL bo->resource, but in that case we should always
+ * have a ttm alive (like if the pages are swapped out).
+ */
+ if ((bo->resource || bo->ttm) && !i915_ttm_is_ghost_object(bo)) {
__i915_gem_object_pages_fini(obj);
-
- if (wakeref)
- intel_runtime_pm_put(&to_i915(obj->base.dev)->runtime_pm, wakeref);
-
i915_ttm_free_cached_io_rsgt(obj);
}
}
@@ -608,10 +606,17 @@ i915_ttm_resource_get_st(struct drm_i915_gem_object *obj,
static int i915_ttm_truncate(struct drm_i915_gem_object *obj)
{
struct ttm_buffer_object *bo = i915_gem_to_ttm(obj);
- int err;
+ long err;
WARN_ON_ONCE(obj->mm.madv == I915_MADV_WILLNEED);
+ err = dma_resv_wait_timeout(bo->base.resv, DMA_RESV_USAGE_BOOKKEEP,
+ true, 15 * HZ);
+ if (err < 0)
+ return err;
+ if (err == 0)
+ return -EBUSY;
+
err = i915_ttm_move_notify(bo);
if (err)
return err;
@@ -624,7 +629,7 @@ static void i915_ttm_swap_notify(struct ttm_buffer_object *bo)
struct drm_i915_gem_object *obj = i915_ttm_to_gem(bo);
int ret;
- if (!obj)
+ if (i915_ttm_is_ghost_object(bo))
return;
ret = i915_ttm_move_notify(bo);
@@ -649,7 +654,7 @@ bool i915_ttm_resource_mappable(struct ttm_resource *res)
if (!i915_ttm_cpu_maps_iomem(res))
return true;
- return bman_res->used_visible_size == bman_res->base.num_pages;
+ return bman_res->used_visible_size == PFN_UP(bman_res->base.size);
}
static int i915_ttm_io_mem_reserve(struct ttm_device *bdev, struct ttm_resource *mem)
@@ -657,7 +662,7 @@ static int i915_ttm_io_mem_reserve(struct ttm_device *bdev, struct ttm_resource
struct drm_i915_gem_object *obj = i915_ttm_to_gem(mem->bo);
bool unknown_state;
- if (!obj)
+ if (i915_ttm_is_ghost_object(mem->bo))
return -EINVAL;
if (!kref_get_unless_zero(&obj->base.refcount))
@@ -690,15 +695,59 @@ static unsigned long i915_ttm_io_mem_pfn(struct ttm_buffer_object *bo,
unsigned long base;
unsigned int ofs;
- GEM_BUG_ON(!obj);
+ GEM_BUG_ON(i915_ttm_is_ghost_object(bo));
GEM_WARN_ON(bo->ttm);
base = obj->mm.region->iomap.base - obj->mm.region->region.start;
- sg = __i915_gem_object_get_sg(obj, &obj->ttm.get_io_page, page_offset, &ofs, true);
+ sg = i915_gem_object_page_iter_get_sg(obj, &obj->ttm.get_io_page, page_offset, &ofs);
return ((base + sg_dma_address(sg)) >> PAGE_SHIFT) + ofs;
}
+static int i915_ttm_access_memory(struct ttm_buffer_object *bo,
+ unsigned long offset, void *buf,
+ int len, int write)
+{
+ struct drm_i915_gem_object *obj = i915_ttm_to_gem(bo);
+ resource_size_t iomap = obj->mm.region->iomap.base -
+ obj->mm.region->region.start;
+ unsigned long page = offset >> PAGE_SHIFT;
+ unsigned long bytes_left = len;
+
+ /*
+ * TODO: For now just let it fail if the resource is non-mappable,
+ * otherwise we need to perform the memcpy from the gpu here, without
+ * interfering with the object (like moving the entire thing).
+ */
+ if (!i915_ttm_resource_mappable(bo->resource))
+ return -EIO;
+
+ offset -= page << PAGE_SHIFT;
+ do {
+ unsigned long bytes = min(bytes_left, PAGE_SIZE - offset);
+ void __iomem *ptr;
+ dma_addr_t daddr;
+
+ daddr = i915_gem_object_get_dma_address(obj, page);
+ ptr = ioremap_wc(iomap + daddr + offset, bytes);
+ if (!ptr)
+ return -EIO;
+
+ if (write)
+ memcpy_toio(ptr, buf, bytes);
+ else
+ memcpy_fromio(buf, ptr, bytes);
+ iounmap(ptr);
+
+ page++;
+ buf += bytes;
+ bytes_left -= bytes;
+ offset = 0;
+ } while (bytes_left);
+
+ return len;
+}
+
/*
* All callbacks need to take care not to downcast a struct ttm_buffer_object
* without checking its subclass, since it might be a TTM ghost object.
@@ -715,6 +764,7 @@ static struct ttm_device_funcs i915_ttm_bo_driver = {
.delete_mem_notify = i915_ttm_delete_mem_notify,
.io_mem_reserve = i915_ttm_io_mem_reserve,
.io_mem_pfn = i915_ttm_io_mem_pfn,
+ .access_memory = i915_ttm_access_memory,
};
/**
@@ -779,8 +829,7 @@ static int __i915_ttm_get_pages(struct drm_i915_gem_object *obj,
GEM_BUG_ON(obj->mm.rsgt);
obj->mm.rsgt = rsgt;
- __i915_gem_object_set_pages(obj, &rsgt->table,
- i915_sg_dma_sizes(rsgt->table.sgl));
+ __i915_gem_object_set_pages(obj, &rsgt->table);
}
GEM_BUG_ON(bo->ttm && ((obj->base.size >> PAGE_SHIFT) < bo->ttm->num_pages));
@@ -793,6 +842,10 @@ static int i915_ttm_get_pages(struct drm_i915_gem_object *obj)
struct ttm_place requested, busy[I915_TTM_MAX_PLACEMENTS];
struct ttm_placement placement;
+ /* restricted by sg_alloc_table */
+ if (overflows_type(obj->base.size >> PAGE_SHIFT, unsigned int))
+ return -E2BIG;
+
GEM_BUG_ON(obj->mm.n_placements > I915_TTM_MAX_PLACEMENTS);
/* Move to the requested placement. */
@@ -990,15 +1043,11 @@ static vm_fault_t vm_fault_ttm(struct vm_fault *vmf)
struct vm_area_struct *area = vmf->vma;
struct ttm_buffer_object *bo = area->vm_private_data;
struct drm_device *dev = bo->base.dev;
- struct drm_i915_gem_object *obj;
+ struct drm_i915_gem_object *obj = i915_ttm_to_gem(bo);
intel_wakeref_t wakeref = 0;
vm_fault_t ret;
int idx;
- obj = i915_ttm_to_gem(bo);
- if (!obj)
- return VM_FAULT_SIGBUS;
-
/* Sanity check that we allow writing into this object */
if (unlikely(i915_gem_object_is_readonly(obj) &&
area->vm_flags & VM_WRITE))
@@ -1013,10 +1062,27 @@ static vm_fault_t vm_fault_ttm(struct vm_fault *vmf)
return VM_FAULT_SIGBUS;
}
- if (i915_ttm_cpu_maps_iomem(bo->resource))
- wakeref = intel_runtime_pm_get(&to_i915(obj->base.dev)->runtime_pm);
+ /*
+ * This must be swapped out with shmem ttm_tt (pipeline-gutting).
+ * Calling ttm_bo_validate() here with TTM_PL_SYSTEM should only go as
+ * far as far doing a ttm_bo_move_null(), which should skip all the
+ * other junk.
+ */
+ if (!bo->resource) {
+ struct ttm_operation_ctx ctx = {
+ .interruptible = true,
+ .no_wait_gpu = true, /* should be idle already */
+ };
+ int err;
+
+ GEM_BUG_ON(!bo->ttm || !(bo->ttm->page_flags & TTM_TT_FLAG_SWAPPED));
- if (!i915_ttm_resource_mappable(bo->resource)) {
+ err = ttm_bo_validate(bo, i915_ttm_sys_placement(), &ctx);
+ if (err) {
+ dma_resv_unlock(bo->base.resv);
+ return VM_FAULT_SIGBUS;
+ }
+ } else if (!i915_ttm_resource_mappable(bo->resource)) {
int err = -ENODEV;
int i;
@@ -1035,13 +1101,17 @@ static vm_fault_t vm_fault_ttm(struct vm_fault *vmf)
}
if (err) {
- drm_dbg(dev, "Unable to make resource CPU accessible\n");
+ drm_dbg(dev, "Unable to make resource CPU accessible(err = %pe)\n",
+ ERR_PTR(err));
dma_resv_unlock(bo->base.resv);
ret = VM_FAULT_SIGBUS;
goto out_rpm;
}
}
+ if (i915_ttm_cpu_maps_iomem(bo->resource))
+ wakeref = intel_runtime_pm_get(&to_i915(obj->base.dev)->runtime_pm);
+
if (drm_dev_enter(dev, &idx)) {
ret = ttm_bo_vm_fault_reserved(vmf, vmf->vma->vm_page_prot,
TTM_BO_VM_NUM_PREFAULT);
@@ -1053,16 +1123,21 @@ static vm_fault_t vm_fault_ttm(struct vm_fault *vmf)
if (ret == VM_FAULT_RETRY && !(vmf->flags & FAULT_FLAG_RETRY_NOWAIT))
goto out_rpm;
- /* ttm_bo_vm_reserve() already has dma_resv_lock */
+ /*
+ * ttm_bo_vm_reserve() already has dma_resv_lock.
+ * userfault_count is protected by dma_resv lock and rpm wakeref.
+ */
if (ret == VM_FAULT_NOPAGE && wakeref && !obj->userfault_count) {
obj->userfault_count = 1;
- mutex_lock(&to_gt(to_i915(obj->base.dev))->lmem_userfault_lock);
- list_add(&obj->userfault_link, &to_gt(to_i915(obj->base.dev))->lmem_userfault_list);
- mutex_unlock(&to_gt(to_i915(obj->base.dev))->lmem_userfault_lock);
+ spin_lock(&to_i915(obj->base.dev)->runtime_pm.lmem_userfault_lock);
+ list_add(&obj->userfault_link, &to_i915(obj->base.dev)->runtime_pm.lmem_userfault_list);
+ spin_unlock(&to_i915(obj->base.dev)->runtime_pm.lmem_userfault_lock);
+
+ GEM_WARN_ON(!i915_ttm_cpu_maps_iomem(bo->resource));
}
if (wakeref & CONFIG_DRM_I915_USERFAULT_AUTOSUSPEND)
- intel_wakeref_auto(&to_gt(to_i915(obj->base.dev))->userfault_wakeref,
+ intel_wakeref_auto(&to_i915(obj->base.dev)->runtime_pm.userfault_wakeref,
msecs_to_jiffies_timeout(CONFIG_DRM_I915_USERFAULT_AUTOSUSPEND));
i915_ttm_adjust_lru(obj);
@@ -1094,7 +1169,7 @@ static void ttm_vm_open(struct vm_area_struct *vma)
struct drm_i915_gem_object *obj =
i915_ttm_to_gem(vma->vm_private_data);
- GEM_BUG_ON(!obj);
+ GEM_BUG_ON(i915_ttm_is_ghost_object(vma->vm_private_data));
i915_gem_object_get(obj);
}
@@ -1103,7 +1178,7 @@ static void ttm_vm_close(struct vm_area_struct *vma)
struct drm_i915_gem_object *obj =
i915_ttm_to_gem(vma->vm_private_data);
- GEM_BUG_ON(!obj);
+ GEM_BUG_ON(i915_ttm_is_ghost_object(vma->vm_private_data));
i915_gem_object_put(obj);
}
@@ -1124,7 +1199,29 @@ static u64 i915_ttm_mmap_offset(struct drm_i915_gem_object *obj)
static void i915_ttm_unmap_virtual(struct drm_i915_gem_object *obj)
{
+ struct ttm_buffer_object *bo = i915_gem_to_ttm(obj);
+ intel_wakeref_t wakeref = 0;
+
+ assert_object_held_shared(obj);
+
+ if (i915_ttm_cpu_maps_iomem(bo->resource)) {
+ wakeref = intel_runtime_pm_get(&to_i915(obj->base.dev)->runtime_pm);
+
+ /* userfault_count is protected by obj lock and rpm wakeref. */
+ if (obj->userfault_count) {
+ spin_lock(&to_i915(obj->base.dev)->runtime_pm.lmem_userfault_lock);
+ list_del(&obj->userfault_link);
+ spin_unlock(&to_i915(obj->base.dev)->runtime_pm.lmem_userfault_lock);
+ obj->userfault_count = 0;
+ }
+ }
+
+ GEM_WARN_ON(obj->userfault_count);
+
ttm_bo_unmap_virtual(i915_gem_to_ttm(obj));
+
+ if (wakeref)
+ intel_runtime_pm_put(&to_i915(obj->base.dev)->runtime_pm, wakeref);
}
static const struct drm_i915_gem_object_ops i915_gem_ttm_obj_ops = {
@@ -1177,7 +1274,7 @@ void i915_ttm_bo_destroy(struct ttm_buffer_object *bo)
}
}
-/**
+/*
* __i915_gem_ttm_object_init - Initialize a ttm-backed i915 gem object
* @mem: The initial memory region for the object.
* @obj: The gem object.
@@ -1239,6 +1336,17 @@ int __i915_gem_ttm_object_init(struct intel_memory_region *mem,
ret = ttm_bo_init_reserved(&i915->bdev, i915_gem_to_ttm(obj), bo_type,
&i915_sys_placement, page_size >> PAGE_SHIFT,
&ctx, NULL, NULL, i915_ttm_bo_destroy);
+
+ /*
+ * XXX: The ttm_bo_init_reserved() functions returns -ENOSPC if the size
+ * is too big to add vma. The direct function that returns -ENOSPC is
+ * drm_mm_insert_node_in_range(). To handle the same error as other code
+ * that returns -E2BIG when the size is too large, it converts -ENOSPC to
+ * -E2BIG.
+ */
+ if (size >> PAGE_SHIFT > INT_MAX && ret == -ENOSPC)
+ ret = -E2BIG;
+
if (ret)
return i915_ttm_err_to_gem(ret);
diff --git a/drivers/gpu/drm/i915/gem/i915_gem_ttm.h b/drivers/gpu/drm/i915/gem/i915_gem_ttm.h
index e4842b4296fc..f8f6bed1b297 100644
--- a/drivers/gpu/drm/i915/gem/i915_gem_ttm.h
+++ b/drivers/gpu/drm/i915/gem/i915_gem_ttm.h
@@ -28,18 +28,26 @@ i915_gem_to_ttm(struct drm_i915_gem_object *obj)
void i915_ttm_bo_destroy(struct ttm_buffer_object *bo);
/**
+ * i915_ttm_is_ghost_object - Check if the ttm bo is a ghost object.
+ * @bo: Pointer to the ttm buffer object
+ *
+ * Return: True if the ttm bo is not a i915 object but a ghost ttm object,
+ * False otherwise.
+ */
+static inline bool i915_ttm_is_ghost_object(struct ttm_buffer_object *bo)
+{
+ return bo->destroy != i915_ttm_bo_destroy;
+}
+
+/**
* i915_ttm_to_gem - Convert a struct ttm_buffer_object to an embedding
* struct drm_i915_gem_object.
*
- * Return: Pointer to the embedding struct ttm_buffer_object, or NULL
- * if the object was not an i915 ttm object.
+ * Return: Pointer to the embedding struct ttm_buffer_object.
*/
static inline struct drm_i915_gem_object *
i915_ttm_to_gem(struct ttm_buffer_object *bo)
{
- if (bo->destroy != i915_ttm_bo_destroy)
- return NULL;
-
return container_of(bo, struct drm_i915_gem_object, __do_not_access);
}
@@ -90,7 +98,7 @@ static inline bool i915_ttm_gtt_binds_lmem(struct ttm_resource *mem)
static inline bool i915_ttm_cpu_maps_iomem(struct ttm_resource *mem)
{
/* Once / if we support GGTT, this is also false for cached ttm_tts */
- return mem->mem_type != I915_PL_SYSTEM;
+ return mem && mem->mem_type != I915_PL_SYSTEM;
}
bool i915_ttm_resource_mappable(struct ttm_resource *res);
diff --git a/drivers/gpu/drm/i915/gem/i915_gem_ttm_move.c b/drivers/gpu/drm/i915/gem/i915_gem_ttm_move.c
index 9a7e50534b84..dd188dfcc423 100644
--- a/drivers/gpu/drm/i915/gem/i915_gem_ttm_move.c
+++ b/drivers/gpu/drm/i915/gem/i915_gem_ttm_move.c
@@ -3,7 +3,7 @@
* Copyright © 2021 Intel Corporation
*/
-#include <drm/ttm/ttm_bo_driver.h>
+#include <drm/ttm/ttm_tt.h>
#include "i915_deps.h"
#include "i915_drv.h"
@@ -103,7 +103,27 @@ void i915_ttm_adjust_gem_after_move(struct drm_i915_gem_object *obj)
{
struct ttm_buffer_object *bo = i915_gem_to_ttm(obj);
unsigned int cache_level;
+ unsigned int mem_flags;
unsigned int i;
+ int mem_type;
+
+ /*
+ * We might have been purged (or swapped out) if the resource is NULL,
+ * in which case the SYSTEM placement is the closest match to describe
+ * the current domain. If the object is ever used in this state then we
+ * will require moving it again.
+ */
+ if (!bo->resource) {
+ mem_flags = I915_BO_FLAG_STRUCT_PAGE;
+ mem_type = I915_PL_SYSTEM;
+ cache_level = I915_CACHE_NONE;
+ } else {
+ mem_flags = i915_ttm_cpu_maps_iomem(bo->resource) ? I915_BO_FLAG_IOMEM :
+ I915_BO_FLAG_STRUCT_PAGE;
+ mem_type = bo->resource->mem_type;
+ cache_level = i915_ttm_cache_level(to_i915(bo->base.dev), bo->resource,
+ bo->ttm);
+ }
/*
* If object was moved to an allowable region, update the object
@@ -111,11 +131,11 @@ void i915_ttm_adjust_gem_after_move(struct drm_i915_gem_object *obj)
* in an allowable region, it's evicted and we don't update the
* object region.
*/
- if (intel_region_to_ttm_type(obj->mm.region) != bo->resource->mem_type) {
+ if (intel_region_to_ttm_type(obj->mm.region) != mem_type) {
for (i = 0; i < obj->mm.n_placements; ++i) {
struct intel_memory_region *mr = obj->mm.placements[i];
- if (intel_region_to_ttm_type(mr) == bo->resource->mem_type &&
+ if (intel_region_to_ttm_type(mr) == mem_type &&
mr != obj->mm.region) {
i915_gem_object_release_memory_region(obj);
i915_gem_object_init_memory_region(obj, mr);
@@ -125,12 +145,8 @@ void i915_ttm_adjust_gem_after_move(struct drm_i915_gem_object *obj)
}
obj->mem_flags &= ~(I915_BO_FLAG_STRUCT_PAGE | I915_BO_FLAG_IOMEM);
+ obj->mem_flags |= mem_flags;
- obj->mem_flags |= i915_ttm_cpu_maps_iomem(bo->resource) ? I915_BO_FLAG_IOMEM :
- I915_BO_FLAG_STRUCT_PAGE;
-
- cache_level = i915_ttm_cache_level(to_i915(bo->base.dev), bo->resource,
- bo->ttm);
i915_gem_object_set_cache_coherency(obj, cache_level);
}
@@ -237,6 +253,7 @@ static struct dma_fence *i915_ttm_accel_move(struct ttm_buffer_object *bo,
* @_src_iter: Storage space for the source kmap iterator.
* @dst_iter: Pointer to the destination kmap iterator.
* @src_iter: Pointer to the source kmap iterator.
+ * @num_pages: Number of pages
* @clear: Whether to clear instead of copy.
* @src_rsgt: Refcounted scatter-gather list of source memory.
* @dst_rsgt: Refcounted scatter-gather list of destination memory.
@@ -541,6 +558,8 @@ out:
* i915_ttm_move - The TTM move callback used by i915.
* @bo: The buffer object.
* @evict: Whether this is an eviction.
+ * @ctx: Pointer to a struct ttm_operation_ctx indicating how the waits should be
+ * performed if waiting
* @dst_mem: The destination ttm resource.
* @hop: If we need multihop, what temporary memory type to move to.
*
@@ -560,7 +579,33 @@ int i915_ttm_move(struct ttm_buffer_object *bo, bool evict,
bool clear;
int ret;
- if (GEM_WARN_ON(!obj)) {
+ if (GEM_WARN_ON(i915_ttm_is_ghost_object(bo))) {
+ ttm_bo_move_null(bo, dst_mem);
+ return 0;
+ }
+
+ if (!bo->resource) {
+ if (dst_mem->mem_type != TTM_PL_SYSTEM) {
+ hop->mem_type = TTM_PL_SYSTEM;
+ hop->flags = TTM_PL_FLAG_TEMPORARY;
+ return -EMULTIHOP;
+ }
+
+ /*
+ * This is only reached when first creating the object, or if
+ * the object was purged or swapped out (pipeline-gutting). For
+ * the former we can safely skip all of the below since we are
+ * only using a dummy SYSTEM placement here. And with the latter
+ * we will always re-enter here with bo->resource set correctly
+ * (as per the above), since this is part of a multi-hop
+ * sequence, where at the end we can do the move for real.
+ *
+ * The special case here is when the dst_mem is TTM_PL_SYSTEM,
+ * which doens't require any kind of move, so it should be safe
+ * to skip all the below and call ttm_bo_move_null() here, where
+ * the caller in __i915_ttm_get_pages() will take care of the
+ * rest, since we should have a valid ttm_tt.
+ */
ttm_bo_move_null(bo, dst_mem);
return 0;
}
@@ -669,6 +714,10 @@ int i915_gem_obj_copy_ttm(struct drm_i915_gem_object *dst,
assert_object_held(dst);
assert_object_held(src);
+
+ if (GEM_WARN_ON(!src_bo->resource || !dst_bo->resource))
+ return -EINVAL;
+
i915_deps_init(&deps, GFP_KERNEL | __GFP_NORETRY | __GFP_NOWARN);
ret = dma_resv_reserve_fences(src_bo->base.resv, 1);
diff --git a/drivers/gpu/drm/i915/gem/i915_gem_ttm_pm.c b/drivers/gpu/drm/i915/gem/i915_gem_ttm_pm.c
index 07e49f22f2de..ad649523d5e0 100644
--- a/drivers/gpu/drm/i915/gem/i915_gem_ttm_pm.c
+++ b/drivers/gpu/drm/i915/gem/i915_gem_ttm_pm.c
@@ -50,9 +50,10 @@ static int i915_ttm_backup(struct i915_gem_apply_to_region *apply,
container_of(bo->bdev, typeof(*i915), bdev);
struct drm_i915_gem_object *backup;
struct ttm_operation_ctx ctx = {};
+ unsigned int flags;
int err = 0;
- if (bo->resource->mem_type == I915_PL_SYSTEM || obj->ttm.backup)
+ if (!i915_ttm_cpu_maps_iomem(bo->resource) || obj->ttm.backup)
return 0;
if (pm_apply->allow_gpu && i915_gem_object_evictable(obj))
@@ -65,7 +66,22 @@ static int i915_ttm_backup(struct i915_gem_apply_to_region *apply,
if (obj->flags & I915_BO_ALLOC_PM_VOLATILE)
return 0;
- backup = i915_gem_object_create_shmem(i915, obj->base.size);
+ /*
+ * It seems that we might have some framebuffers still pinned at this
+ * stage, but for such objects we might also need to deal with the CCS
+ * aux state. Make sure we force the save/restore of the CCS state,
+ * otherwise we might observe display corruption, when returning from
+ * suspend.
+ */
+ flags = 0;
+ if (i915_gem_object_needs_ccs_pages(obj)) {
+ WARN_ON_ONCE(!i915_gem_object_is_framebuffer(obj));
+ WARN_ON_ONCE(!pm_apply->allow_gpu);
+
+ flags = I915_BO_ALLOC_CCS_AUX;
+ }
+ backup = i915_gem_object_create_region(i915->mm.regions[INTEL_REGION_SMEM],
+ obj->base.size, 0, flags);
if (IS_ERR(backup))
return PTR_ERR(backup);
@@ -128,8 +144,7 @@ void i915_ttm_recover_region(struct intel_memory_region *mr)
/**
* i915_ttm_backup_region - Back up all objects of a region to smem.
* @mr: The memory region
- * @allow_gpu: Whether to allow the gpu blitter for this backup.
- * @backup_pinned: Backup also pinned objects.
+ * @flags: TTM backup flags
*
* Loops over all objects of a region and either evicts them if they are
* evictable or backs them up using a backup object if they are pinned.
@@ -171,7 +186,10 @@ static int i915_ttm_restore(struct i915_gem_apply_to_region *apply,
return err;
/* Content may have been swapped. */
- err = ttm_tt_populate(backup_bo->bdev, backup_bo->ttm, &ctx);
+ if (!backup_bo->resource)
+ err = ttm_bo_validate(backup_bo, i915_ttm_sys_placement(), &ctx);
+ if (!err)
+ err = ttm_tt_populate(backup_bo->bdev, backup_bo->ttm, &ctx);
if (!err) {
err = i915_gem_obj_copy_ttm(obj, backup, pm_apply->allow_gpu,
false);
@@ -193,7 +211,7 @@ static int i915_ttm_restore(struct i915_gem_apply_to_region *apply,
/**
* i915_ttm_restore_region - Restore backed-up objects of a region from smem.
* @mr: The memory region
- * @allow_gpu: Whether to allow the gpu blitter to recover.
+ * @flags: TTM backup flags
*
* Loops over all objects of a region and if they are backed-up, restores
* them from smem.
diff --git a/drivers/gpu/drm/i915/gem/i915_gem_userptr.c b/drivers/gpu/drm/i915/gem/i915_gem_userptr.c
index ba14b18d65f3..1d3ebdf4069b 100644
--- a/drivers/gpu/drm/i915/gem/i915_gem_userptr.c
+++ b/drivers/gpu/drm/i915/gem/i915_gem_userptr.c
@@ -128,13 +128,16 @@ static void i915_gem_object_userptr_drop_ref(struct drm_i915_gem_object *obj)
static int i915_gem_userptr_get_pages(struct drm_i915_gem_object *obj)
{
- const unsigned long num_pages = obj->base.size >> PAGE_SHIFT;
unsigned int max_segment = i915_sg_segment_size(obj->base.dev->dev);
struct sg_table *st;
- unsigned int sg_page_sizes;
struct page **pvec;
+ unsigned int num_pages; /* limited by sg_alloc_table_from_pages_segment */
int ret;
+ if (overflows_type(obj->base.size >> PAGE_SHIFT, num_pages))
+ return -E2BIG;
+
+ num_pages = obj->base.size >> PAGE_SHIFT;
st = kmalloc(sizeof(*st), GFP_KERNEL);
if (!st)
return -ENOMEM;
@@ -170,8 +173,7 @@ alloc_table:
if (i915_gem_object_can_bypass_llc(obj))
obj->cache_dirty = true;
- sg_page_sizes = i915_sg_dma_sizes(st->sgl);
- __i915_gem_object_set_pages(obj, st, sg_page_sizes);
+ __i915_gem_object_set_pages(obj, st);
return 0;
@@ -292,7 +294,7 @@ int i915_gem_object_userptr_submit_init(struct drm_i915_gem_object *obj)
if (!i915_gem_object_is_readonly(obj))
gup_flags |= FOLL_WRITE;
- pinned = ret = 0;
+ pinned = 0;
while (pinned < num_pages) {
ret = pin_user_pages_fast(obj->userptr.ptr + pinned * PAGE_SIZE,
num_pages - pinned, gup_flags,
@@ -302,7 +304,6 @@ int i915_gem_object_userptr_submit_init(struct drm_i915_gem_object *obj)
pinned += ret;
}
- ret = 0;
ret = i915_gem_object_lock_interruptible(obj, NULL);
if (ret)
diff --git a/drivers/gpu/drm/i915/gem/i915_gem_wait.c b/drivers/gpu/drm/i915/gem/i915_gem_wait.c
index e6e01c2a74a6..4a33ad2d122b 100644
--- a/drivers/gpu/drm/i915/gem/i915_gem_wait.c
+++ b/drivers/gpu/drm/i915/gem/i915_gem_wait.c
@@ -161,7 +161,7 @@ i915_gem_object_wait_priority(struct drm_i915_gem_object *obj,
}
/**
- * Waits for rendering to the object to be completed
+ * i915_gem_object_wait - Waits for rendering to the object to be completed
* @obj: i915 gem object
* @flags: how to wait (under a lock, for all rendering or just for writes etc)
* @timeout: how long to wait
diff --git a/drivers/gpu/drm/i915/gem/selftests/huge_gem_object.c b/drivers/gpu/drm/i915/gem/selftests/huge_gem_object.c
index f963b8e1e37b..bac957755068 100644
--- a/drivers/gpu/drm/i915/gem/selftests/huge_gem_object.c
+++ b/drivers/gpu/drm/i915/gem/selftests/huge_gem_object.c
@@ -29,11 +29,15 @@ static int huge_get_pages(struct drm_i915_gem_object *obj)
{
#define GFP (GFP_KERNEL | __GFP_NOWARN | __GFP_RETRY_MAYFAIL)
const unsigned long nreal = obj->scratch / PAGE_SIZE;
- const unsigned long npages = obj->base.size / PAGE_SIZE;
+ unsigned int npages; /* restricted by sg_alloc_table */
struct scatterlist *sg, *src, *end;
struct sg_table *pages;
unsigned long n;
+ if (overflows_type(obj->base.size / PAGE_SIZE, npages))
+ return -E2BIG;
+
+ npages = obj->base.size / PAGE_SIZE;
pages = kmalloc(sizeof(*pages), GFP);
if (!pages)
return -ENOMEM;
@@ -68,7 +72,7 @@ static int huge_get_pages(struct drm_i915_gem_object *obj)
if (i915_gem_gtt_prepare_pages(obj, pages))
goto err;
- __i915_gem_object_set_pages(obj, pages, PAGE_SIZE);
+ __i915_gem_object_set_pages(obj, pages);
return 0;
diff --git a/drivers/gpu/drm/i915/gem/selftests/huge_pages.c b/drivers/gpu/drm/i915/gem/selftests/huge_pages.c
index c570cf780079..99f39a5feca1 100644
--- a/drivers/gpu/drm/i915/gem/selftests/huge_pages.c
+++ b/drivers/gpu/drm/i915/gem/selftests/huge_pages.c
@@ -84,6 +84,10 @@ static int get_huge_pages(struct drm_i915_gem_object *obj)
unsigned int sg_page_sizes;
u64 rem;
+ /* restricted by sg_alloc_table */
+ if (overflows_type(obj->base.size >> PAGE_SHIFT, unsigned int))
+ return -E2BIG;
+
st = kmalloc(sizeof(*st), GFP);
if (!st)
return -ENOMEM;
@@ -111,7 +115,7 @@ static int get_huge_pages(struct drm_i915_gem_object *obj)
do {
struct page *page;
- GEM_BUG_ON(order >= MAX_ORDER);
+ GEM_BUG_ON(order > MAX_ORDER);
page = alloc_pages(GFP | __GFP_ZERO, order);
if (!page)
goto err;
@@ -136,7 +140,7 @@ static int get_huge_pages(struct drm_i915_gem_object *obj)
goto err;
GEM_BUG_ON(sg_page_sizes != obj->mm.page_mask);
- __i915_gem_object_set_pages(obj, st, sg_page_sizes);
+ __i915_gem_object_set_pages(obj, st);
return 0;
@@ -210,9 +214,12 @@ static int fake_get_huge_pages(struct drm_i915_gem_object *obj)
const u64 max_len = rounddown_pow_of_two(UINT_MAX);
struct sg_table *st;
struct scatterlist *sg;
- unsigned int sg_page_sizes;
u64 rem;
+ /* restricted by sg_alloc_table */
+ if (overflows_type(obj->base.size >> PAGE_SHIFT, unsigned int))
+ return -E2BIG;
+
st = kmalloc(sizeof(*st), GFP);
if (!st)
return -ENOMEM;
@@ -226,7 +233,6 @@ static int fake_get_huge_pages(struct drm_i915_gem_object *obj)
rem = obj->base.size;
sg = st->sgl;
st->nents = 0;
- sg_page_sizes = 0;
do {
unsigned int page_size = get_largest_page_size(i915, rem);
unsigned int len = min(page_size * div_u64(rem, page_size),
@@ -239,8 +245,6 @@ static int fake_get_huge_pages(struct drm_i915_gem_object *obj)
sg_dma_len(sg) = len;
sg_dma_address(sg) = page_size;
- sg_page_sizes |= len;
-
st->nents++;
rem -= len;
@@ -254,7 +258,7 @@ static int fake_get_huge_pages(struct drm_i915_gem_object *obj)
i915_sg_trim(st);
- __i915_gem_object_set_pages(obj, st, sg_page_sizes);
+ __i915_gem_object_set_pages(obj, st);
return 0;
}
@@ -286,7 +290,7 @@ static int fake_get_huge_pages_single(struct drm_i915_gem_object *obj)
sg_dma_len(sg) = obj->base.size;
sg_dma_address(sg) = page_size;
- __i915_gem_object_set_pages(obj, st, sg->length);
+ __i915_gem_object_set_pages(obj, st);
return 0;
#undef GFP
@@ -404,7 +408,7 @@ static int igt_check_page_sizes(struct i915_vma *vma)
* Maintaining alignment is required to utilise huge pages in the ppGGT.
*/
if (i915_gem_object_is_lmem(obj) &&
- IS_ALIGNED(vma->node.start, SZ_2M) &&
+ IS_ALIGNED(i915_vma_offset(vma), SZ_2M) &&
vma->page_sizes.sg & SZ_2M &&
vma->resource->page_sizes_gtt < SZ_2M) {
pr_err("gtt pages mismatch for LMEM, expected 2M GTT pages, sg(%u), gtt(%u)\n",
@@ -1161,7 +1165,8 @@ static int igt_write_huge(struct drm_i915_private *i915,
GEM_BUG_ON(!i915_gem_object_has_pinned_pages(obj));
size = obj->base.size;
- if (obj->mm.page_sizes.sg & I915_GTT_PAGE_SIZE_64K)
+ if (obj->mm.page_sizes.sg & I915_GTT_PAGE_SIZE_64K &&
+ !HAS_64K_PAGES(i915))
size = round_up(size, I915_GTT_PAGE_SIZE_2M);
n = 0;
@@ -1214,6 +1219,10 @@ static int igt_write_huge(struct drm_i915_private *i915,
* size and ensure the vma offset is at the start of the pt
* boundary, however to improve coverage we opt for testing both
* aligned and unaligned offsets.
+ *
+ * With PS64 this is no longer the case, but to ensure we
+ * sometimes get the compact layout for smaller objects, apply
+ * the round_up anyway.
*/
if (obj->mm.page_sizes.sg & I915_GTT_PAGE_SIZE_64K)
offset_low = round_down(offset_low,
@@ -1411,6 +1420,7 @@ static int igt_ppgtt_sanity_check(void *arg)
{ SZ_2M + SZ_4K, SZ_64K | SZ_4K },
{ SZ_2M + SZ_4K, SZ_2M | SZ_4K },
{ SZ_2M + SZ_64K, SZ_2M | SZ_64K },
+ { SZ_2M + SZ_64K, SZ_64K },
};
int i, j;
int err;
@@ -1540,6 +1550,154 @@ out_put:
return err;
}
+static int igt_ppgtt_mixed(void *arg)
+{
+ struct drm_i915_private *i915 = arg;
+ const unsigned long flags = PIN_OFFSET_FIXED | PIN_USER;
+ struct drm_i915_gem_object *obj, *on;
+ struct i915_gem_engines *engines;
+ struct i915_gem_engines_iter it;
+ struct i915_address_space *vm;
+ struct i915_gem_context *ctx;
+ struct intel_context *ce;
+ struct file *file;
+ I915_RND_STATE(prng);
+ LIST_HEAD(objects);
+ struct intel_memory_region *mr;
+ struct i915_vma *vma;
+ unsigned int count;
+ u32 i, addr;
+ int *order;
+ int n, err;
+
+ /*
+ * Sanity check mixing 4K and 64K pages within the same page-table via
+ * the new PS64 TLB hint.
+ */
+
+ if (!HAS_64K_PAGES(i915)) {
+ pr_info("device lacks PS64, skipping\n");
+ return 0;
+ }
+
+ file = mock_file(i915);
+ if (IS_ERR(file))
+ return PTR_ERR(file);
+
+ ctx = hugepage_ctx(i915, file);
+ if (IS_ERR(ctx)) {
+ err = PTR_ERR(ctx);
+ goto out;
+ }
+ vm = i915_gem_context_get_eb_vm(ctx);
+
+ i = 0;
+ addr = 0;
+ do {
+ u32 sz;
+
+ sz = i915_prandom_u32_max_state(SZ_4M, &prng);
+ sz = max_t(u32, sz, SZ_4K);
+
+ mr = i915->mm.regions[INTEL_REGION_LMEM_0];
+ if (i & 1)
+ mr = i915->mm.regions[INTEL_REGION_SMEM];
+
+ obj = i915_gem_object_create_region(mr, sz, 0, 0);
+ if (IS_ERR(obj)) {
+ err = PTR_ERR(obj);
+ goto out_vm;
+ }
+
+ list_add_tail(&obj->st_link, &objects);
+
+ vma = i915_vma_instance(obj, vm, NULL);
+ if (IS_ERR(vma)) {
+ err = PTR_ERR(vma);
+ goto err_put;
+ }
+
+ addr = round_up(addr, mr->min_page_size);
+ err = i915_vma_pin(vma, 0, 0, addr | flags);
+ if (err)
+ goto err_put;
+
+ if (mr->type == INTEL_MEMORY_LOCAL &&
+ (vma->resource->page_sizes_gtt & I915_GTT_PAGE_SIZE_4K)) {
+ err = -EINVAL;
+ goto err_put;
+ }
+
+ addr += obj->base.size;
+ i++;
+ } while (addr <= SZ_16M);
+
+ n = 0;
+ count = 0;
+ for_each_gem_engine(ce, i915_gem_context_lock_engines(ctx), it) {
+ count++;
+ if (!intel_engine_can_store_dword(ce->engine))
+ continue;
+
+ n++;
+ }
+ i915_gem_context_unlock_engines(ctx);
+ if (!n)
+ goto err_put;
+
+ order = i915_random_order(count * count, &prng);
+ if (!order) {
+ err = -ENOMEM;
+ goto err_put;
+ }
+
+ i = 0;
+ addr = 0;
+ engines = i915_gem_context_lock_engines(ctx);
+ list_for_each_entry(obj, &objects, st_link) {
+ u32 rnd = i915_prandom_u32_max_state(UINT_MAX, &prng);
+
+ addr = round_up(addr, obj->mm.region->min_page_size);
+
+ ce = engines->engines[order[i] % engines->num_engines];
+ i = (i + 1) % (count * count);
+ if (!ce || !intel_engine_can_store_dword(ce->engine))
+ continue;
+
+ err = __igt_write_huge(ce, obj, obj->base.size, addr, 0, rnd);
+ if (err)
+ break;
+
+ err = __igt_write_huge(ce, obj, obj->base.size, addr,
+ offset_in_page(rnd) / sizeof(u32), rnd + 1);
+ if (err)
+ break;
+
+ err = __igt_write_huge(ce, obj, obj->base.size, addr,
+ (PAGE_SIZE / sizeof(u32)) - 1,
+ rnd + 2);
+ if (err)
+ break;
+
+ addr += obj->base.size;
+
+ cond_resched();
+ }
+
+ i915_gem_context_unlock_engines(ctx);
+ kfree(order);
+err_put:
+ list_for_each_entry_safe(obj, on, &objects, st_link) {
+ list_del(&obj->st_link);
+ i915_gem_object_put(obj);
+ }
+out_vm:
+ i915_vm_put(vm);
+out:
+ fput(file);
+ return err;
+}
+
static int igt_tmpfs_fallback(void *arg)
{
struct drm_i915_private *i915 = arg;
@@ -1697,7 +1855,7 @@ static int igt_shrink_thp(void *arg)
I915_SHRINK_ACTIVE);
i915_vma_unpin(vma);
if (err)
- goto out_put;
+ goto out_wf;
/*
* Now that the pages are *unpinned* shrinking should invoke
@@ -1713,19 +1871,19 @@ static int igt_shrink_thp(void *arg)
pr_err("unexpected pages mismatch, should_swap=%s\n",
str_yes_no(should_swap));
err = -EINVAL;
- goto out_put;
+ goto out_wf;
}
if (should_swap == (obj->mm.page_sizes.sg || obj->mm.page_sizes.phys)) {
pr_err("unexpected residual page-size bits, should_swap=%s\n",
str_yes_no(should_swap));
err = -EINVAL;
- goto out_put;
+ goto out_wf;
}
err = i915_vma_pin(vma, 0, 0, flags);
if (err)
- goto out_put;
+ goto out_wf;
while (n--) {
err = cpu_check(obj, n, 0xdeadbeaf);
@@ -1803,6 +1961,7 @@ int i915_gem_huge_page_live_selftests(struct drm_i915_private *i915)
SUBTEST(igt_ppgtt_smoke_huge),
SUBTEST(igt_ppgtt_sanity_check),
SUBTEST(igt_ppgtt_compact),
+ SUBTEST(igt_ppgtt_mixed),
};
if (!HAS_PPGTT(i915)) {
diff --git a/drivers/gpu/drm/i915/gem/selftests/i915_gem_client_blt.c b/drivers/gpu/drm/i915/gem/selftests/i915_gem_client_blt.c
index 9a6a6b5b722b..ff81af4c8202 100644
--- a/drivers/gpu/drm/i915/gem/selftests/i915_gem_client_blt.c
+++ b/drivers/gpu/drm/i915/gem/selftests/i915_gem_client_blt.c
@@ -13,6 +13,7 @@
#include "gt/intel_gt_regs.h"
#include "gem/i915_gem_lmem.h"
+#include "gem/selftests/igt_gem_utils.h"
#include "selftests/igt_flush_test.h"
#include "selftests/mock_drm.h"
#include "selftests/i915_random.h"
@@ -107,31 +108,30 @@ struct tiled_blits {
u32 height;
};
-static bool supports_x_tiling(const struct drm_i915_private *i915)
+static bool fastblit_supports_x_tiling(const struct drm_i915_private *i915)
{
int gen = GRAPHICS_VER(i915);
+ /* XY_FAST_COPY_BLT does not exist on pre-gen9 platforms */
+ drm_WARN_ON(&i915->drm, gen < 9);
+
if (gen < 12)
return true;
- if (!HAS_LMEM(i915) || IS_DG1(i915))
+ if (GRAPHICS_VER_FULL(i915) < IP_VER(12, 50))
return false;
- return true;
+ return HAS_DISPLAY(i915);
}
static bool fast_blit_ok(const struct blit_buffer *buf)
{
- int gen = GRAPHICS_VER(buf->vma->vm->i915);
-
- if (gen < 9)
+ /* XY_FAST_COPY_BLT does not exist on pre-gen9 platforms */
+ if (GRAPHICS_VER(buf->vma->vm->i915) < 9)
return false;
- if (gen < 12)
- return true;
-
/* filter out platforms with unsupported X-tile support in fastblit */
- if (buf->tiling == CLIENT_TILING_X && !supports_x_tiling(buf->vma->vm->i915))
+ if (buf->tiling == CLIENT_TILING_X && !fastblit_supports_x_tiling(buf->vma->vm->i915))
return false;
return true;
@@ -193,12 +193,12 @@ static int prepare_blit(const struct tiled_blits *t,
*cs++ = src_4t | dst_4t | BLT_DEPTH_32 | dst_pitch;
*cs++ = 0;
*cs++ = t->height << 16 | t->width;
- *cs++ = lower_32_bits(dst->vma->node.start);
- *cs++ = upper_32_bits(dst->vma->node.start);
+ *cs++ = lower_32_bits(i915_vma_offset(dst->vma));
+ *cs++ = upper_32_bits(i915_vma_offset(dst->vma));
*cs++ = 0;
*cs++ = src_pitch;
- *cs++ = lower_32_bits(src->vma->node.start);
- *cs++ = upper_32_bits(src->vma->node.start);
+ *cs++ = lower_32_bits(i915_vma_offset(src->vma));
+ *cs++ = upper_32_bits(i915_vma_offset(src->vma));
} else {
if (ver >= 6) {
*cs++ = MI_LOAD_REGISTER_IMM(1);
@@ -239,14 +239,14 @@ static int prepare_blit(const struct tiled_blits *t,
*cs++ = BLT_DEPTH_32 | BLT_ROP_SRC_COPY | dst_pitch;
*cs++ = 0;
*cs++ = t->height << 16 | t->width;
- *cs++ = lower_32_bits(dst->vma->node.start);
+ *cs++ = lower_32_bits(i915_vma_offset(dst->vma));
if (use_64b_reloc)
- *cs++ = upper_32_bits(dst->vma->node.start);
+ *cs++ = upper_32_bits(i915_vma_offset(dst->vma));
*cs++ = 0;
*cs++ = src_pitch;
- *cs++ = lower_32_bits(src->vma->node.start);
+ *cs++ = lower_32_bits(i915_vma_offset(src->vma));
if (use_64b_reloc)
- *cs++ = upper_32_bits(src->vma->node.start);
+ *cs++ = upper_32_bits(i915_vma_offset(src->vma));
}
*cs++ = MI_BATCH_BUFFER_END;
@@ -457,26 +457,11 @@ static int verify_buffer(const struct tiled_blits *t,
return ret;
}
-static int move_to_active(struct i915_vma *vma,
- struct i915_request *rq,
- unsigned int flags)
-{
- int err;
-
- i915_vma_lock(vma);
- err = i915_request_await_object(rq, vma->obj, false);
- if (err == 0)
- err = i915_vma_move_to_active(vma, rq, flags);
- i915_vma_unlock(vma);
-
- return err;
-}
-
static int pin_buffer(struct i915_vma *vma, u64 addr)
{
int err;
- if (drm_mm_node_allocated(&vma->node) && vma->node.start != addr) {
+ if (drm_mm_node_allocated(&vma->node) && i915_vma_offset(vma) != addr) {
err = i915_vma_unbind_unlocked(vma);
if (err)
return err;
@@ -486,6 +471,7 @@ static int pin_buffer(struct i915_vma *vma, u64 addr)
if (err)
return err;
+ GEM_BUG_ON(i915_vma_offset(vma) != addr);
return 0;
}
@@ -525,15 +511,15 @@ tiled_blit(struct tiled_blits *t,
goto err_bb;
}
- err = move_to_active(t->batch, rq, 0);
+ err = igt_vma_move_to_active_unlocked(t->batch, rq, 0);
if (!err)
- err = move_to_active(src->vma, rq, 0);
+ err = igt_vma_move_to_active_unlocked(src->vma, rq, 0);
if (!err)
- err = move_to_active(dst->vma, rq, 0);
+ err = igt_vma_move_to_active_unlocked(dst->vma, rq, 0);
if (!err)
err = rq->engine->emit_bb_start(rq,
- t->batch->node.start,
- t->batch->node.size,
+ i915_vma_offset(t->batch),
+ i915_vma_size(t->batch),
0);
i915_request_get(rq);
i915_request_add(rq);
diff --git a/drivers/gpu/drm/i915/gem/selftests/i915_gem_coherency.c b/drivers/gpu/drm/i915/gem/selftests/i915_gem_coherency.c
index a666d7e610f5..3bef1beec7cb 100644
--- a/drivers/gpu/drm/i915/gem/selftests/i915_gem_coherency.c
+++ b/drivers/gpu/drm/i915/gem/selftests/i915_gem_coherency.c
@@ -222,7 +222,7 @@ static int gpu_set(struct context *ctx, unsigned long offset, u32 v)
}
if (GRAPHICS_VER(ctx->engine->i915) >= 8) {
- *cs++ = MI_STORE_DWORD_IMM_GEN4 | 1 << 22;
+ *cs++ = MI_STORE_DWORD_IMM_GEN4 | MI_USE_GGTT;
*cs++ = lower_32_bits(i915_ggtt_offset(vma) + offset);
*cs++ = upper_32_bits(i915_ggtt_offset(vma) + offset);
*cs++ = v;
@@ -239,9 +239,7 @@ static int gpu_set(struct context *ctx, unsigned long offset, u32 v)
}
intel_ring_advance(rq, cs);
- err = i915_request_await_object(rq, vma->obj, true);
- if (err == 0)
- err = i915_vma_move_to_active(vma, rq, EXEC_OBJECT_WRITE);
+ err = i915_vma_move_to_active(vma, rq, EXEC_OBJECT_WRITE);
out_rq:
i915_request_add(rq);
diff --git a/drivers/gpu/drm/i915/gem/selftests/i915_gem_context.c b/drivers/gpu/drm/i915/gem/selftests/i915_gem_context.c
index c6ad67b90e8a..a81fa6a20f5a 100644
--- a/drivers/gpu/drm/i915/gem/selftests/i915_gem_context.c
+++ b/drivers/gpu/drm/i915/gem/selftests/i915_gem_context.c
@@ -179,97 +179,108 @@ out_file:
}
struct parallel_switch {
- struct task_struct *tsk;
+ struct kthread_worker *worker;
+ struct kthread_work work;
struct intel_context *ce[2];
+ int result;
};
-static int __live_parallel_switch1(void *data)
+static void __live_parallel_switch1(struct kthread_work *work)
{
- struct parallel_switch *arg = data;
+ struct parallel_switch *arg =
+ container_of(work, typeof(*arg), work);
IGT_TIMEOUT(end_time);
unsigned long count;
count = 0;
+ arg->result = 0;
do {
struct i915_request *rq = NULL;
- int err, n;
+ int n;
- err = 0;
- for (n = 0; !err && n < ARRAY_SIZE(arg->ce); n++) {
+ for (n = 0; !arg->result && n < ARRAY_SIZE(arg->ce); n++) {
struct i915_request *prev = rq;
rq = i915_request_create(arg->ce[n]);
if (IS_ERR(rq)) {
i915_request_put(prev);
- return PTR_ERR(rq);
+ arg->result = PTR_ERR(rq);
+ break;
}
i915_request_get(rq);
if (prev) {
- err = i915_request_await_dma_fence(rq, &prev->fence);
+ arg->result =
+ i915_request_await_dma_fence(rq,
+ &prev->fence);
i915_request_put(prev);
}
i915_request_add(rq);
}
+
+ if (IS_ERR_OR_NULL(rq))
+ break;
+
if (i915_request_wait(rq, 0, HZ) < 0)
- err = -ETIME;
+ arg->result = -ETIME;
+
i915_request_put(rq);
- if (err)
- return err;
count++;
- } while (!__igt_timeout(end_time, NULL));
+ } while (!arg->result && !__igt_timeout(end_time, NULL));
- pr_info("%s: %lu switches (sync)\n", arg->ce[0]->engine->name, count);
- return 0;
+ pr_info("%s: %lu switches (sync) <%d>\n",
+ arg->ce[0]->engine->name, count, arg->result);
}
-static int __live_parallel_switchN(void *data)
+static void __live_parallel_switchN(struct kthread_work *work)
{
- struct parallel_switch *arg = data;
+ struct parallel_switch *arg =
+ container_of(work, typeof(*arg), work);
struct i915_request *rq = NULL;
IGT_TIMEOUT(end_time);
unsigned long count;
int n;
count = 0;
+ arg->result = 0;
do {
- for (n = 0; n < ARRAY_SIZE(arg->ce); n++) {
+ for (n = 0; !arg->result && n < ARRAY_SIZE(arg->ce); n++) {
struct i915_request *prev = rq;
- int err = 0;
rq = i915_request_create(arg->ce[n]);
if (IS_ERR(rq)) {
i915_request_put(prev);
- return PTR_ERR(rq);
+ arg->result = PTR_ERR(rq);
+ break;
}
i915_request_get(rq);
if (prev) {
- err = i915_request_await_dma_fence(rq, &prev->fence);
+ arg->result =
+ i915_request_await_dma_fence(rq,
+ &prev->fence);
i915_request_put(prev);
}
i915_request_add(rq);
- if (err) {
- i915_request_put(rq);
- return err;
- }
}
count++;
- } while (!__igt_timeout(end_time, NULL));
- i915_request_put(rq);
+ } while (!arg->result && !__igt_timeout(end_time, NULL));
- pr_info("%s: %lu switches (many)\n", arg->ce[0]->engine->name, count);
- return 0;
+ if (!IS_ERR_OR_NULL(rq))
+ i915_request_put(rq);
+
+ pr_info("%s: %lu switches (many) <%d>\n",
+ arg->ce[0]->engine->name, count, arg->result);
}
static int live_parallel_switch(void *arg)
{
struct drm_i915_private *i915 = arg;
- static int (* const func[])(void *arg) = {
+ static void (* const func[])(struct kthread_work *) = {
__live_parallel_switch1,
__live_parallel_switchN,
NULL,
@@ -277,7 +288,7 @@ static int live_parallel_switch(void *arg)
struct parallel_switch *data = NULL;
struct i915_gem_engines *engines;
struct i915_gem_engines_iter it;
- int (* const *fn)(void *arg);
+ void (* const *fn)(struct kthread_work *);
struct i915_gem_context *ctx;
struct intel_context *ce;
struct file *file;
@@ -348,9 +359,22 @@ static int live_parallel_switch(void *arg)
}
}
+ for (n = 0; n < count; n++) {
+ struct kthread_worker *worker;
+
+ if (!data[n].ce[0])
+ continue;
+
+ worker = kthread_create_worker(0, "igt/parallel:%s",
+ data[n].ce[0]->engine->name);
+ if (IS_ERR(worker))
+ goto out;
+
+ data[n].worker = worker;
+ }
+
for (fn = func; !err && *fn; fn++) {
struct igt_live_test t;
- int n;
err = igt_live_test_begin(&t, i915, __func__, "");
if (err)
@@ -360,30 +384,17 @@ static int live_parallel_switch(void *arg)
if (!data[n].ce[0])
continue;
- data[n].tsk = kthread_run(*fn, &data[n],
- "igt/parallel:%s",
- data[n].ce[0]->engine->name);
- if (IS_ERR(data[n].tsk)) {
- err = PTR_ERR(data[n].tsk);
- break;
- }
- get_task_struct(data[n].tsk);
+ data[n].result = 0;
+ kthread_init_work(&data[n].work, *fn);
+ kthread_queue_work(data[n].worker, &data[n].work);
}
- yield(); /* start all threads before we kthread_stop() */
-
for (n = 0; n < count; n++) {
- int status;
-
- if (IS_ERR_OR_NULL(data[n].tsk))
- continue;
-
- status = kthread_stop(data[n].tsk);
- if (status && !err)
- err = status;
-
- put_task_struct(data[n].tsk);
- data[n].tsk = NULL;
+ if (data[n].ce[0]) {
+ kthread_flush_work(&data[n].work);
+ if (data[n].result && !err)
+ err = data[n].result;
+ }
}
if (igt_live_test_end(&t))
@@ -399,6 +410,9 @@ out:
intel_context_unpin(data[n].ce[m]);
intel_context_put(data[n].ce[m]);
}
+
+ if (data[n].worker)
+ kthread_destroy_worker(data[n].worker);
}
kfree(data);
out_file:
@@ -455,7 +469,8 @@ static int gpu_fill(struct intel_context *ce,
static int cpu_fill(struct drm_i915_gem_object *obj, u32 value)
{
const bool has_llc = HAS_LLC(to_i915(obj->base.dev));
- unsigned int n, m, need_flush;
+ unsigned int need_flush;
+ unsigned long n, m;
int err;
i915_gem_object_lock(obj, NULL);
@@ -485,7 +500,8 @@ out:
static noinline int cpu_check(struct drm_i915_gem_object *obj,
unsigned int idx, unsigned int max)
{
- unsigned int n, m, needs_flush;
+ unsigned int needs_flush;
+ unsigned long n;
int err;
i915_gem_object_lock(obj, NULL);
@@ -494,7 +510,7 @@ static noinline int cpu_check(struct drm_i915_gem_object *obj,
goto out_unlock;
for (n = 0; n < real_page_count(obj); n++) {
- u32 *map;
+ u32 *map, m;
map = kmap_atomic(i915_gem_object_get_page(obj, n));
if (needs_flush & CLFLUSH_BEFORE)
@@ -502,7 +518,7 @@ static noinline int cpu_check(struct drm_i915_gem_object *obj,
for (m = 0; m < max; m++) {
if (map[m] != m) {
- pr_err("%pS: Invalid value at object %d page %d/%ld, offset %d/%d: found %x expected %x\n",
+ pr_err("%pS: Invalid value at object %d page %ld/%ld, offset %d/%d: found %x expected %x\n",
__builtin_return_address(0), idx,
n, real_page_count(obj), m, max,
map[m], m);
@@ -513,7 +529,7 @@ static noinline int cpu_check(struct drm_i915_gem_object *obj,
for (; m < DW_PER_PAGE; m++) {
if (map[m] != STACK_MAGIC) {
- pr_err("%pS: Invalid value at object %d page %d, offset %d: found %x expected %x (uninitialised)\n",
+ pr_err("%pS: Invalid value at object %d page %ld, offset %d: found %x expected %x (uninitialised)\n",
__builtin_return_address(0), idx, n, m,
map[m], STACK_MAGIC);
err = -EINVAL;
@@ -900,8 +916,8 @@ static int rpcs_query_batch(struct drm_i915_gem_object *rpcs,
*cmd++ = MI_STORE_REGISTER_MEM_GEN8;
*cmd++ = i915_mmio_reg_offset(GEN8_R_PWR_CLK_STATE(engine->mmio_base));
- *cmd++ = lower_32_bits(vma->node.start);
- *cmd++ = upper_32_bits(vma->node.start);
+ *cmd++ = lower_32_bits(i915_vma_offset(vma));
+ *cmd++ = upper_32_bits(i915_vma_offset(vma));
*cmd = MI_BATCH_BUFFER_END;
__i915_gem_object_flush_map(rpcs, 0, 64);
@@ -970,15 +986,11 @@ retry:
goto err_batch;
}
- err = i915_request_await_object(rq, batch->obj, false);
- if (err == 0)
- err = i915_vma_move_to_active(batch, rq, 0);
+ err = i915_vma_move_to_active(batch, rq, 0);
if (err)
goto skip_request;
- err = i915_request_await_object(rq, vma->obj, true);
- if (err == 0)
- err = i915_vma_move_to_active(vma, rq, EXEC_OBJECT_WRITE);
+ err = i915_vma_move_to_active(vma, rq, EXEC_OBJECT_WRITE);
if (err)
goto skip_request;
@@ -989,7 +1001,8 @@ retry:
}
err = rq->engine->emit_bb_start(rq,
- batch->node.start, batch->node.size,
+ i915_vma_offset(batch),
+ i915_vma_size(batch),
0);
if (err)
goto skip_request;
@@ -1538,11 +1551,7 @@ static int write_to_scratch(struct i915_gem_context *ctx,
goto err_unpin;
}
- i915_vma_lock(vma);
- err = i915_request_await_object(rq, vma->obj, false);
- if (err == 0)
- err = i915_vma_move_to_active(vma, rq, 0);
- i915_vma_unlock(vma);
+ err = igt_vma_move_to_active_unlocked(vma, rq, 0);
if (err)
goto skip_request;
@@ -1552,7 +1561,8 @@ static int write_to_scratch(struct i915_gem_context *ctx,
goto skip_request;
}
- err = engine->emit_bb_start(rq, vma->node.start, vma->node.size, 0);
+ err = engine->emit_bb_start(rq, i915_vma_offset(vma),
+ i915_vma_size(vma), 0);
if (err)
goto skip_request;
@@ -1657,7 +1667,7 @@ static int read_from_scratch(struct i915_gem_context *ctx,
*cmd++ = offset;
*cmd++ = MI_STORE_REGISTER_MEM | MI_USE_GGTT;
*cmd++ = reg;
- *cmd++ = vma->node.start + result;
+ *cmd++ = i915_vma_offset(vma) + result;
*cmd = MI_BATCH_BUFFER_END;
i915_gem_object_flush_map(obj);
@@ -1674,11 +1684,7 @@ static int read_from_scratch(struct i915_gem_context *ctx,
goto err_unpin;
}
- i915_vma_lock(vma);
- err = i915_request_await_object(rq, vma->obj, true);
- if (err == 0)
- err = i915_vma_move_to_active(vma, rq, EXEC_OBJECT_WRITE);
- i915_vma_unlock(vma);
+ err = igt_vma_move_to_active_unlocked(vma, rq, EXEC_OBJECT_WRITE);
if (err)
goto skip_request;
@@ -1688,7 +1694,8 @@ static int read_from_scratch(struct i915_gem_context *ctx,
goto skip_request;
}
- err = engine->emit_bb_start(rq, vma->node.start, vma->node.size, flags);
+ err = engine->emit_bb_start(rq, i915_vma_offset(vma),
+ i915_vma_size(vma), flags);
if (err)
goto skip_request;
diff --git a/drivers/gpu/drm/i915/gem/selftests/i915_gem_dmabuf.c b/drivers/gpu/drm/i915/gem/selftests/i915_gem_dmabuf.c
index 51ed824b020c..e57f9390076c 100644
--- a/drivers/gpu/drm/i915/gem/selftests/i915_gem_dmabuf.c
+++ b/drivers/gpu/drm/i915/gem/selftests/i915_gem_dmabuf.c
@@ -6,8 +6,12 @@
#include "i915_drv.h"
#include "i915_selftest.h"
+#include "gem/i915_gem_context.h"
+#include "mock_context.h"
#include "mock_dmabuf.h"
+#include "igt_gem_utils.h"
+#include "selftests/mock_drm.h"
#include "selftests/mock_gem_device.h"
static int igt_dmabuf_export(void *arg)
@@ -140,6 +144,75 @@ out_ret:
return err;
}
+static int verify_access(struct drm_i915_private *i915,
+ struct drm_i915_gem_object *native_obj,
+ struct drm_i915_gem_object *import_obj)
+{
+ struct i915_gem_engines_iter it;
+ struct i915_gem_context *ctx;
+ struct intel_context *ce;
+ struct i915_vma *vma;
+ struct file *file;
+ u32 *vaddr;
+ int err = 0, i;
+
+ file = mock_file(i915);
+ if (IS_ERR(file))
+ return PTR_ERR(file);
+
+ ctx = live_context(i915, file);
+ if (IS_ERR(ctx)) {
+ err = PTR_ERR(ctx);
+ goto out_file;
+ }
+
+ for_each_gem_engine(ce, i915_gem_context_lock_engines(ctx), it) {
+ if (intel_engine_can_store_dword(ce->engine))
+ break;
+ }
+ i915_gem_context_unlock_engines(ctx);
+ if (!ce)
+ goto out_file;
+
+ vma = i915_vma_instance(import_obj, ce->vm, NULL);
+ if (IS_ERR(vma)) {
+ err = PTR_ERR(vma);
+ goto out_file;
+ }
+
+ err = i915_vma_pin(vma, 0, 0, PIN_USER);
+ if (err)
+ goto out_file;
+
+ err = igt_gpu_fill_dw(ce, vma, 0,
+ vma->size >> PAGE_SHIFT, 0xdeadbeaf);
+ i915_vma_unpin(vma);
+ if (err)
+ goto out_file;
+
+ err = i915_gem_object_wait(import_obj, 0, MAX_SCHEDULE_TIMEOUT);
+ if (err)
+ goto out_file;
+
+ vaddr = i915_gem_object_pin_map_unlocked(native_obj, I915_MAP_WB);
+ if (IS_ERR(vaddr)) {
+ err = PTR_ERR(vaddr);
+ goto out_file;
+ }
+
+ for (i = 0; i < native_obj->base.size / sizeof(u32); i += PAGE_SIZE / sizeof(u32)) {
+ if (vaddr[i] != 0xdeadbeaf) {
+ pr_err("Data mismatch [%d]=%u\n", i, vaddr[i]);
+ err = -EINVAL;
+ goto out_file;
+ }
+ }
+
+out_file:
+ fput(file);
+ return err;
+}
+
static int igt_dmabuf_import_same_driver(struct drm_i915_private *i915,
struct intel_memory_region **regions,
unsigned int num_regions)
@@ -154,7 +227,7 @@ static int igt_dmabuf_import_same_driver(struct drm_i915_private *i915,
force_different_devices = true;
- obj = __i915_gem_object_create_user(i915, PAGE_SIZE,
+ obj = __i915_gem_object_create_user(i915, SZ_8M,
regions, num_regions);
if (IS_ERR(obj)) {
pr_err("__i915_gem_object_create_user failed with err=%ld\n",
@@ -206,6 +279,10 @@ static int igt_dmabuf_import_same_driver(struct drm_i915_private *i915,
i915_gem_object_unlock(import_obj);
+ err = verify_access(i915, obj, import_obj);
+ if (err)
+ goto out_import;
+
/* Now try a fake an importer */
import_attach = dma_buf_attach(dmabuf, obj->base.dev->dev);
if (IS_ERR(import_attach)) {
@@ -213,7 +290,7 @@ static int igt_dmabuf_import_same_driver(struct drm_i915_private *i915,
goto out_import;
}
- st = dma_buf_map_attachment(import_attach, DMA_BIDIRECTIONAL);
+ st = dma_buf_map_attachment_unlocked(import_attach, DMA_BIDIRECTIONAL);
if (IS_ERR(st)) {
err = PTR_ERR(st);
goto out_detach;
@@ -226,7 +303,7 @@ static int igt_dmabuf_import_same_driver(struct drm_i915_private *i915,
timeout = -ETIME;
}
err = timeout > 0 ? 0 : timeout;
- dma_buf_unmap_attachment(import_attach, st, DMA_BIDIRECTIONAL);
+ dma_buf_unmap_attachment_unlocked(import_attach, st, DMA_BIDIRECTIONAL);
out_detach:
dma_buf_detach(dmabuf, import_attach);
out_import:
@@ -296,7 +373,7 @@ static int igt_dmabuf_import(void *arg)
goto out_obj;
}
- err = dma_buf_vmap(dmabuf, &map);
+ err = dma_buf_vmap_unlocked(dmabuf, &map);
dma_map = err ? NULL : map.vaddr;
if (!dma_map) {
pr_err("dma_buf_vmap failed\n");
@@ -337,7 +414,7 @@ static int igt_dmabuf_import(void *arg)
err = 0;
out_dma_map:
- dma_buf_vunmap(dmabuf, &map);
+ dma_buf_vunmap_unlocked(dmabuf, &map);
out_obj:
i915_gem_object_put(obj);
out_dmabuf:
@@ -358,7 +435,7 @@ static int igt_dmabuf_import_ownership(void *arg)
if (IS_ERR(dmabuf))
return PTR_ERR(dmabuf);
- err = dma_buf_vmap(dmabuf, &map);
+ err = dma_buf_vmap_unlocked(dmabuf, &map);
ptr = err ? NULL : map.vaddr;
if (!ptr) {
pr_err("dma_buf_vmap failed\n");
@@ -367,7 +444,7 @@ static int igt_dmabuf_import_ownership(void *arg)
}
memset(ptr, 0xc5, PAGE_SIZE);
- dma_buf_vunmap(dmabuf, &map);
+ dma_buf_vunmap_unlocked(dmabuf, &map);
obj = to_intel_bo(i915_gem_prime_import(&i915->drm, dmabuf));
if (IS_ERR(obj)) {
@@ -418,7 +495,7 @@ static int igt_dmabuf_export_vmap(void *arg)
}
i915_gem_object_put(obj);
- err = dma_buf_vmap(dmabuf, &map);
+ err = dma_buf_vmap_unlocked(dmabuf, &map);
ptr = err ? NULL : map.vaddr;
if (!ptr) {
pr_err("dma_buf_vmap failed\n");
@@ -435,7 +512,7 @@ static int igt_dmabuf_export_vmap(void *arg)
memset(ptr, 0xc5, dmabuf->size);
err = 0;
- dma_buf_vunmap(dmabuf, &map);
+ dma_buf_vunmap_unlocked(dmabuf, &map);
out:
dma_buf_put(dmabuf);
return err;
diff --git a/drivers/gpu/drm/i915/gem/selftests/i915_gem_mman.c b/drivers/gpu/drm/i915/gem/selftests/i915_gem_mman.c
index b73c91aa5450..56279908ed30 100644
--- a/drivers/gpu/drm/i915/gem/selftests/i915_gem_mman.c
+++ b/drivers/gpu/drm/i915/gem/selftests/i915_gem_mman.c
@@ -8,6 +8,7 @@
#include <linux/prime_numbers.h>
#include "gem/i915_gem_internal.h"
+#include "gem/i915_gem_lmem.h"
#include "gem/i915_gem_region.h"
#include "gem/i915_gem_ttm.h"
#include "gem/i915_gem_ttm_move.h"
@@ -16,6 +17,7 @@
#include "gt/intel_gt.h"
#include "gt/intel_gt_pm.h"
#include "gt/intel_migrate.h"
+#include "i915_reg.h"
#include "i915_ttm_buddy_manager.h"
#include "huge_gem_object.h"
@@ -95,11 +97,11 @@ static int check_partial_mapping(struct drm_i915_gem_object *obj,
struct drm_i915_private *i915 = to_i915(obj->base.dev);
struct i915_gtt_view view;
struct i915_vma *vma;
+ unsigned long offset;
unsigned long page;
u32 __iomem *io;
struct page *p;
unsigned int n;
- u64 offset;
u32 *cpu;
int err;
@@ -156,7 +158,7 @@ static int check_partial_mapping(struct drm_i915_gem_object *obj,
cpu = kmap(p) + offset_in_page(offset);
drm_clflush_virt_range(cpu, sizeof(*cpu));
if (*cpu != (u32)page) {
- pr_err("Partial view for %lu [%u] (offset=%llu, size=%u [%llu, row size %u], fence=%d, tiling=%d, stride=%d) misalignment, expected write to page (%llu + %u [0x%llx]) of 0x%x, found 0x%x\n",
+ pr_err("Partial view for %lu [%u] (offset=%llu, size=%u [%llu, row size %u], fence=%d, tiling=%d, stride=%d) misalignment, expected write to page (%lu + %u [0x%lx]) of 0x%x, found 0x%x\n",
page, n,
view.partial.offset,
view.partial.size,
@@ -212,10 +214,10 @@ static int check_partial_mappings(struct drm_i915_gem_object *obj,
for_each_prime_number_from(page, 1, npages) {
struct i915_gtt_view view =
compute_partial_view(obj, page, MIN_CHUNK_PAGES);
+ unsigned long offset;
u32 __iomem *io;
struct page *p;
unsigned int n;
- u64 offset;
u32 *cpu;
GEM_BUG_ON(view.partial.size > nreal);
@@ -252,7 +254,7 @@ static int check_partial_mappings(struct drm_i915_gem_object *obj,
cpu = kmap(p) + offset_in_page(offset);
drm_clflush_virt_range(cpu, sizeof(*cpu));
if (*cpu != (u32)page) {
- pr_err("Partial view for %lu [%u] (offset=%llu, size=%u [%llu, row size %u], fence=%d, tiling=%d, stride=%d) misalignment, expected write to page (%llu + %u [0x%llx]) of 0x%x, found 0x%x\n",
+ pr_err("Partial view for %lu [%u] (offset=%llu, size=%u [%llu, row size %u], fence=%d, tiling=%d, stride=%d) misalignment, expected write to page (%lu + %u [0x%lx]) of 0x%x, found 0x%x\n",
page, n,
view.partial.offset,
view.partial.size,
@@ -564,10 +566,8 @@ retry:
goto err_unpin;
}
- err = i915_request_await_object(rq, vma->obj, true);
- if (err == 0)
- err = i915_vma_move_to_active(vma, rq,
- EXEC_OBJECT_WRITE);
+ err = i915_vma_move_to_active(vma, rq,
+ EXEC_OBJECT_WRITE);
i915_request_add(rq);
err_unpin:
@@ -1607,11 +1607,9 @@ retry:
goto out_unpin;
}
- err = i915_request_await_object(rq, vma->obj, false);
- if (err == 0)
- err = i915_vma_move_to_active(vma, rq, 0);
+ err = i915_vma_move_to_active(vma, rq, 0);
- err = engine->emit_bb_start(rq, vma->node.start, 0, 0);
+ err = engine->emit_bb_start(rq, i915_vma_offset(vma), 0, 0);
i915_request_get(rq);
i915_request_add(rq);
diff --git a/drivers/gpu/drm/i915/gem/selftests/i915_gem_object.c b/drivers/gpu/drm/i915/gem/selftests/i915_gem_object.c
index bdf5bb40ccf1..19e374f68ff7 100644
--- a/drivers/gpu/drm/i915/gem/selftests/i915_gem_object.c
+++ b/drivers/gpu/drm/i915/gem/selftests/i915_gem_object.c
@@ -33,10 +33,10 @@ out:
static int igt_gem_huge(void *arg)
{
- const unsigned int nreal = 509; /* just to be awkward */
+ const unsigned long nreal = 509; /* just to be awkward */
struct drm_i915_private *i915 = arg;
struct drm_i915_gem_object *obj;
- unsigned int n;
+ unsigned long n;
int err;
/* Basic sanitycheck of our huge fake object allocation */
@@ -49,7 +49,7 @@ static int igt_gem_huge(void *arg)
err = i915_gem_object_pin_pages_unlocked(obj);
if (err) {
- pr_err("Failed to allocate %u pages (%lu total), err=%d\n",
+ pr_err("Failed to allocate %lu pages (%lu total), err=%d\n",
nreal, obj->base.size / PAGE_SIZE, err);
goto out;
}
@@ -57,7 +57,7 @@ static int igt_gem_huge(void *arg)
for (n = 0; n < obj->base.size / PAGE_SIZE; n++) {
if (i915_gem_object_get_page(obj, n) !=
i915_gem_object_get_page(obj, n % nreal)) {
- pr_err("Page lookup mismatch at index %u [%u]\n",
+ pr_err("Page lookup mismatch at index %lu [%lu]\n",
n, n % nreal);
err = -EINVAL;
goto out_unpin;
diff --git a/drivers/gpu/drm/i915/gem/selftests/igt_gem_utils.c b/drivers/gpu/drm/i915/gem/selftests/igt_gem_utils.c
index 3c55e77b0f1b..20a232a140b0 100644
--- a/drivers/gpu/drm/i915/gem/selftests/igt_gem_utils.c
+++ b/drivers/gpu/drm/i915/gem/selftests/igt_gem_utils.c
@@ -62,8 +62,8 @@ igt_emit_store_dw(struct i915_vma *vma,
goto err;
}
- GEM_BUG_ON(offset + (count - 1) * PAGE_SIZE > vma->node.size);
- offset += vma->node.start;
+ GEM_BUG_ON(offset + (count - 1) * PAGE_SIZE > i915_vma_size(vma));
+ offset += i915_vma_offset(vma);
for (n = 0; n < count; n++) {
if (ver >= 8) {
@@ -130,19 +130,11 @@ int igt_gpu_fill_dw(struct intel_context *ce,
goto err_batch;
}
- i915_vma_lock(batch);
- err = i915_request_await_object(rq, batch->obj, false);
- if (err == 0)
- err = i915_vma_move_to_active(batch, rq, 0);
- i915_vma_unlock(batch);
+ err = igt_vma_move_to_active_unlocked(batch, rq, 0);
if (err)
goto skip_request;
- i915_vma_lock(vma);
- err = i915_request_await_object(rq, vma->obj, true);
- if (err == 0)
- err = i915_vma_move_to_active(vma, rq, EXEC_OBJECT_WRITE);
- i915_vma_unlock(vma);
+ err = igt_vma_move_to_active_unlocked(vma, rq, EXEC_OBJECT_WRITE);
if (err)
goto skip_request;
@@ -151,7 +143,8 @@ int igt_gpu_fill_dw(struct intel_context *ce,
flags |= I915_DISPATCH_SECURE;
err = rq->engine->emit_bb_start(rq,
- batch->node.start, batch->node.size,
+ i915_vma_offset(batch),
+ i915_vma_size(batch),
flags);
skip_request:
diff --git a/drivers/gpu/drm/i915/gem/selftests/igt_gem_utils.h b/drivers/gpu/drm/i915/gem/selftests/igt_gem_utils.h
index 4221cf84d175..71a3ca8a8865 100644
--- a/drivers/gpu/drm/i915/gem/selftests/igt_gem_utils.h
+++ b/drivers/gpu/drm/i915/gem/selftests/igt_gem_utils.h
@@ -9,6 +9,8 @@
#include <linux/types.h>
+#include "i915_vma.h"
+
struct i915_request;
struct i915_gem_context;
struct i915_vma;
@@ -29,4 +31,16 @@ int igt_gpu_fill_dw(struct intel_context *ce,
struct i915_vma *vma, u64 offset,
unsigned long count, u32 val);
+static inline int __must_check
+igt_vma_move_to_active_unlocked(struct i915_vma *vma, struct i915_request *rq,
+ unsigned int flags)
+{
+ int err;
+
+ i915_vma_lock(vma);
+ err = i915_vma_move_to_active(vma, rq, flags);
+ i915_vma_unlock(vma);
+ return err;
+}
+
#endif /* __IGT_GEM_UTILS_H__ */
diff --git a/drivers/gpu/drm/i915/gt/gen7_renderclear.c b/drivers/gpu/drm/i915/gt/gen7_renderclear.c
index 317efb145787..d38b914d1206 100644
--- a/drivers/gpu/drm/i915/gt/gen7_renderclear.c
+++ b/drivers/gpu/drm/i915/gt/gen7_renderclear.c
@@ -106,7 +106,7 @@ static u32 batch_offset(const struct batch_chunk *bc, u32 *cs)
static u32 batch_addr(const struct batch_chunk *bc)
{
- return bc->vma->node.start;
+ return i915_vma_offset(bc->vma);
}
static void batch_add(struct batch_chunk *bc, const u32 d)
diff --git a/drivers/gpu/drm/i915/gt/gen8_engine_cs.c b/drivers/gpu/drm/i915/gt/gen8_engine_cs.c
index e49fa6fa6aee..e1c76e5bfa82 100644
--- a/drivers/gpu/drm/i915/gt/gen8_engine_cs.c
+++ b/drivers/gpu/drm/i915/gt/gen8_engine_cs.c
@@ -396,15 +396,17 @@ int gen8_emit_init_breadcrumb(struct i915_request *rq)
return 0;
}
-static int __gen125_emit_bb_start(struct i915_request *rq,
- u64 offset, u32 len,
- const unsigned int flags,
- u32 arb)
+static int __xehp_emit_bb_start(struct i915_request *rq,
+ u64 offset, u32 len,
+ const unsigned int flags,
+ u32 arb)
{
struct intel_context *ce = rq->context;
u32 wa_offset = lrc_indirect_bb(ce);
u32 *cs;
+ GEM_BUG_ON(!ce->wa_bb_page);
+
cs = intel_ring_begin(rq, 12);
if (IS_ERR(cs))
return PTR_ERR(cs);
@@ -435,18 +437,18 @@ static int __gen125_emit_bb_start(struct i915_request *rq,
return 0;
}
-int gen125_emit_bb_start_noarb(struct i915_request *rq,
- u64 offset, u32 len,
- const unsigned int flags)
+int xehp_emit_bb_start_noarb(struct i915_request *rq,
+ u64 offset, u32 len,
+ const unsigned int flags)
{
- return __gen125_emit_bb_start(rq, offset, len, flags, MI_ARB_DISABLE);
+ return __xehp_emit_bb_start(rq, offset, len, flags, MI_ARB_DISABLE);
}
-int gen125_emit_bb_start(struct i915_request *rq,
- u64 offset, u32 len,
- const unsigned int flags)
+int xehp_emit_bb_start(struct i915_request *rq,
+ u64 offset, u32 len,
+ const unsigned int flags)
{
- return __gen125_emit_bb_start(rq, offset, len, flags, MI_ARB_ENABLE);
+ return __xehp_emit_bb_start(rq, offset, len, flags, MI_ARB_ENABLE);
}
int gen8_emit_bb_start_noarb(struct i915_request *rq,
@@ -583,6 +585,8 @@ u32 *gen8_emit_fini_breadcrumb_xcs(struct i915_request *rq, u32 *cs)
u32 *gen8_emit_fini_breadcrumb_rcs(struct i915_request *rq, u32 *cs)
{
cs = gen8_emit_pipe_control(cs,
+ PIPE_CONTROL_CS_STALL |
+ PIPE_CONTROL_TLB_INVALIDATE |
PIPE_CONTROL_RENDER_TARGET_CACHE_FLUSH |
PIPE_CONTROL_DEPTH_CACHE_FLUSH |
PIPE_CONTROL_DC_FLUSH_ENABLE,
@@ -600,15 +604,21 @@ u32 *gen8_emit_fini_breadcrumb_rcs(struct i915_request *rq, u32 *cs)
u32 *gen11_emit_fini_breadcrumb_rcs(struct i915_request *rq, u32 *cs)
{
+ cs = gen8_emit_pipe_control(cs,
+ PIPE_CONTROL_CS_STALL |
+ PIPE_CONTROL_TLB_INVALIDATE |
+ PIPE_CONTROL_TILE_CACHE_FLUSH |
+ PIPE_CONTROL_RENDER_TARGET_CACHE_FLUSH |
+ PIPE_CONTROL_DEPTH_CACHE_FLUSH |
+ PIPE_CONTROL_DC_FLUSH_ENABLE,
+ 0);
+
+ /*XXX: Look at gen8_emit_fini_breadcrumb_rcs */
cs = gen8_emit_ggtt_write_rcs(cs,
rq->fence.seqno,
hwsp_offset(rq),
- PIPE_CONTROL_CS_STALL |
- PIPE_CONTROL_TILE_CACHE_FLUSH |
- PIPE_CONTROL_RENDER_TARGET_CACHE_FLUSH |
- PIPE_CONTROL_DEPTH_CACHE_FLUSH |
- PIPE_CONTROL_DC_FLUSH_ENABLE |
- PIPE_CONTROL_FLUSH_ENABLE);
+ PIPE_CONTROL_FLUSH_ENABLE |
+ PIPE_CONTROL_CS_STALL);
return gen8_emit_fini_breadcrumb_tail(rq, cs);
}
@@ -715,6 +725,7 @@ u32 *gen12_emit_fini_breadcrumb_rcs(struct i915_request *rq, u32 *cs)
{
struct drm_i915_private *i915 = rq->engine->i915;
u32 flags = (PIPE_CONTROL_CS_STALL |
+ PIPE_CONTROL_TLB_INVALIDATE |
PIPE_CONTROL_TILE_CACHE_FLUSH |
PIPE_CONTROL_FLUSH_L3 |
PIPE_CONTROL_RENDER_TARGET_CACHE_FLUSH |
@@ -731,11 +742,15 @@ u32 *gen12_emit_fini_breadcrumb_rcs(struct i915_request *rq, u32 *cs)
else if (rq->engine->class == COMPUTE_CLASS)
flags &= ~PIPE_CONTROL_3D_ENGINE_FLAGS;
+ cs = gen12_emit_pipe_control(cs, PIPE_CONTROL0_HDC_PIPELINE_FLUSH, flags, 0);
+
+ /*XXX: Look at gen8_emit_fini_breadcrumb_rcs */
cs = gen12_emit_ggtt_write_rcs(cs,
rq->fence.seqno,
hwsp_offset(rq),
- PIPE_CONTROL0_HDC_PIPELINE_FLUSH,
- flags);
+ 0,
+ PIPE_CONTROL_FLUSH_ENABLE |
+ PIPE_CONTROL_CS_STALL);
return gen12_emit_fini_breadcrumb_tail(rq, cs);
}
diff --git a/drivers/gpu/drm/i915/gt/gen8_engine_cs.h b/drivers/gpu/drm/i915/gt/gen8_engine_cs.h
index e4d24c811dd6..655e5c00ddc2 100644
--- a/drivers/gpu/drm/i915/gt/gen8_engine_cs.h
+++ b/drivers/gpu/drm/i915/gt/gen8_engine_cs.h
@@ -32,12 +32,12 @@ int gen8_emit_bb_start(struct i915_request *rq,
u64 offset, u32 len,
const unsigned int flags);
-int gen125_emit_bb_start_noarb(struct i915_request *rq,
- u64 offset, u32 len,
- const unsigned int flags);
-int gen125_emit_bb_start(struct i915_request *rq,
- u64 offset, u32 len,
- const unsigned int flags);
+int xehp_emit_bb_start_noarb(struct i915_request *rq,
+ u64 offset, u32 len,
+ const unsigned int flags);
+int xehp_emit_bb_start(struct i915_request *rq,
+ u64 offset, u32 len,
+ const unsigned int flags);
u32 *gen8_emit_fini_breadcrumb_xcs(struct i915_request *rq, u32 *cs);
u32 *gen12_emit_fini_breadcrumb_xcs(struct i915_request *rq, u32 *cs);
diff --git a/drivers/gpu/drm/i915/gt/gen8_ppgtt.c b/drivers/gpu/drm/i915/gt/gen8_ppgtt.c
index 2128b7a72a25..4daaa6f55668 100644
--- a/drivers/gpu/drm/i915/gt/gen8_ppgtt.c
+++ b/drivers/gpu/drm/i915/gt/gen8_ppgtt.c
@@ -476,6 +476,7 @@ xehpsdv_ppgtt_insert_huge(struct i915_address_space *vm,
const gen8_pte_t pte_encode = vm->pte_encode(0, cache_level, flags);
unsigned int rem = sg_dma_len(iter->sg);
u64 start = vma_res->start;
+ u64 end = start + vma_res->vma_size;
GEM_BUG_ON(!i915_vm_is_4lvl(vm));
@@ -489,9 +490,10 @@ xehpsdv_ppgtt_insert_huge(struct i915_address_space *vm,
gen8_pte_t encode = pte_encode;
unsigned int page_size;
gen8_pte_t *vaddr;
- u16 index, max;
+ u16 index, max, nent, i;
max = I915_PDES;
+ nent = 1;
if (vma_res->bi.page_sizes.sg & I915_GTT_PAGE_SIZE_2M &&
IS_ALIGNED(iter->dma, I915_GTT_PAGE_SIZE_2M) &&
@@ -503,25 +505,37 @@ xehpsdv_ppgtt_insert_huge(struct i915_address_space *vm,
vaddr = px_vaddr(pd);
} else {
- if (encode & GEN12_PPGTT_PTE_LM) {
- GEM_BUG_ON(__gen8_pte_index(start, 0) % 16);
- GEM_BUG_ON(rem < I915_GTT_PAGE_SIZE_64K);
- GEM_BUG_ON(!IS_ALIGNED(iter->dma,
- I915_GTT_PAGE_SIZE_64K));
-
- index = __gen8_pte_index(start, 0) / 16;
- page_size = I915_GTT_PAGE_SIZE_64K;
-
- max /= 16;
-
- vaddr = px_vaddr(pd);
- vaddr[__gen8_pte_index(start, 1)] |= GEN12_PDE_64K;
+ index = __gen8_pte_index(start, 0);
+ page_size = I915_GTT_PAGE_SIZE;
- pt->is_compact = true;
- } else {
- GEM_BUG_ON(pt->is_compact);
- index = __gen8_pte_index(start, 0);
- page_size = I915_GTT_PAGE_SIZE;
+ if (vma_res->bi.page_sizes.sg & I915_GTT_PAGE_SIZE_64K) {
+ /*
+ * Device local-memory on these platforms should
+ * always use 64K pages or larger (including GTT
+ * alignment), therefore if we know the whole
+ * page-table needs to be filled we can always
+ * safely use the compact-layout. Otherwise fall
+ * back to the TLB hint with PS64. If this is
+ * system memory we only bother with PS64.
+ */
+ if ((encode & GEN12_PPGTT_PTE_LM) &&
+ end - start >= SZ_2M && !index) {
+ index = __gen8_pte_index(start, 0) / 16;
+ page_size = I915_GTT_PAGE_SIZE_64K;
+
+ max /= 16;
+
+ vaddr = px_vaddr(pd);
+ vaddr[__gen8_pte_index(start, 1)] |= GEN12_PDE_64K;
+
+ pt->is_compact = true;
+ } else if (IS_ALIGNED(iter->dma, I915_GTT_PAGE_SIZE_64K) &&
+ rem >= I915_GTT_PAGE_SIZE_64K &&
+ !(index % 16)) {
+ encode |= GEN12_PTE_PS64;
+ page_size = I915_GTT_PAGE_SIZE_64K;
+ nent = 16;
+ }
}
vaddr = px_vaddr(pt);
@@ -529,7 +543,12 @@ xehpsdv_ppgtt_insert_huge(struct i915_address_space *vm,
do {
GEM_BUG_ON(rem < page_size);
- vaddr[index++] = encode | iter->dma;
+
+ for (i = 0; i < nent; i++) {
+ vaddr[index++] =
+ encode | (iter->dma + i *
+ I915_GTT_PAGE_SIZE);
+ }
start += page_size;
iter->dma += page_size;
@@ -745,6 +764,8 @@ static void __xehpsdv_ppgtt_insert_entry_lm(struct i915_address_space *vm,
GEM_BUG_ON(!IS_ALIGNED(addr, SZ_64K));
GEM_BUG_ON(!IS_ALIGNED(offset, SZ_64K));
+ /* XXX: we don't strictly need to use this layout */
+
if (!pt->is_compact) {
vaddr = px_vaddr(pd);
vaddr[gen8_pd_index(idx, 1)] |= GEN12_PDE_64K;
@@ -929,29 +950,18 @@ struct i915_ppgtt *gen8_ppgtt_create(struct intel_gt *gt,
*/
ppgtt->vm.has_read_only = !IS_GRAPHICS_VER(gt->i915, 11, 12);
- if (HAS_LMEM(gt->i915)) {
+ if (HAS_LMEM(gt->i915))
ppgtt->vm.alloc_pt_dma = alloc_pt_lmem;
-
- /*
- * On some platforms the hw has dropped support for 4K GTT pages
- * when dealing with LMEM, and due to the design of 64K GTT
- * pages in the hw, we can only mark the *entire* page-table as
- * operating in 64K GTT mode, since the enable bit is still on
- * the pde, and not the pte. And since we still need to allow
- * 4K GTT pages for SMEM objects, we can't have a "normal" 4K
- * page-table with scratch pointing to LMEM, since that's
- * undefined from the hw pov. The simplest solution is to just
- * move the 64K scratch page to SMEM on such platforms and call
- * it a day, since that should work for all configurations.
- */
- if (HAS_64K_PAGES(gt->i915))
- ppgtt->vm.alloc_scratch_dma = alloc_pt_dma;
- else
- ppgtt->vm.alloc_scratch_dma = alloc_pt_lmem;
- } else {
+ else
ppgtt->vm.alloc_pt_dma = alloc_pt_dma;
- ppgtt->vm.alloc_scratch_dma = alloc_pt_dma;
- }
+
+ /*
+ * Using SMEM here instead of LMEM has the advantage of not reserving
+ * high performance memory for a "never" used filler page. It also
+ * removes the device access that would be required to initialise the
+ * scratch page, reducing pressure on an even scarcer resource.
+ */
+ ppgtt->vm.alloc_scratch_dma = alloc_pt_dma;
ppgtt->vm.pte_encode = gen8_pte_encode;
diff --git a/drivers/gpu/drm/i915/gt/intel_context.c b/drivers/gpu/drm/i915/gt/intel_context.c
index e94365b08f1e..2aa63ec521b8 100644
--- a/drivers/gpu/drm/i915/gt/intel_context.c
+++ b/drivers/gpu/drm/i915/gt/intel_context.c
@@ -528,7 +528,7 @@ retry:
return rq;
}
-struct i915_request *intel_context_find_active_request(struct intel_context *ce)
+struct i915_request *intel_context_get_active_request(struct intel_context *ce)
{
struct intel_context *parent = intel_context_to_parent(ce);
struct i915_request *rq, *active = NULL;
@@ -552,6 +552,8 @@ struct i915_request *intel_context_find_active_request(struct intel_context *ce)
active = rq;
}
+ if (active)
+ active = i915_request_get_rcu(active);
spin_unlock_irqrestore(&parent->guc_state.lock, flags);
return active;
diff --git a/drivers/gpu/drm/i915/gt/intel_context.h b/drivers/gpu/drm/i915/gt/intel_context.h
index be09fb2e883a..48f888c3da08 100644
--- a/drivers/gpu/drm/i915/gt/intel_context.h
+++ b/drivers/gpu/drm/i915/gt/intel_context.h
@@ -14,6 +14,7 @@
#include "i915_drv.h"
#include "intel_context_types.h"
#include "intel_engine_types.h"
+#include "intel_gt_pm.h"
#include "intel_ring_types.h"
#include "intel_timeline_types.h"
#include "i915_trace.h"
@@ -207,8 +208,11 @@ void intel_context_exit_engine(struct intel_context *ce);
static inline void intel_context_enter(struct intel_context *ce)
{
lockdep_assert_held(&ce->timeline->mutex);
- if (!ce->active_count++)
- ce->ops->enter(ce);
+ if (ce->active_count++)
+ return;
+
+ ce->ops->enter(ce);
+ intel_gt_pm_get(ce->vm->gt);
}
static inline void intel_context_mark_active(struct intel_context *ce)
@@ -222,8 +226,11 @@ static inline void intel_context_exit(struct intel_context *ce)
{
lockdep_assert_held(&ce->timeline->mutex);
GEM_BUG_ON(!ce->active_count);
- if (!--ce->active_count)
- ce->ops->exit(ce);
+ if (--ce->active_count)
+ return;
+
+ intel_gt_pm_put_async(ce->vm->gt);
+ ce->ops->exit(ce);
}
static inline struct intel_context *intel_context_get(struct intel_context *ce)
@@ -268,14 +275,21 @@ int intel_context_prepare_remote_request(struct intel_context *ce,
struct i915_request *intel_context_create_request(struct intel_context *ce);
-struct i915_request *
-intel_context_find_active_request(struct intel_context *ce);
+struct i915_request *intel_context_get_active_request(struct intel_context *ce);
static inline bool intel_context_is_barrier(const struct intel_context *ce)
{
return test_bit(CONTEXT_BARRIER_BIT, &ce->flags);
}
+static inline void intel_context_close(struct intel_context *ce)
+{
+ set_bit(CONTEXT_CLOSED_BIT, &ce->flags);
+
+ if (ce->ops->close)
+ ce->ops->close(ce);
+}
+
static inline bool intel_context_is_closed(const struct intel_context *ce)
{
return test_bit(CONTEXT_CLOSED_BIT, &ce->flags);
diff --git a/drivers/gpu/drm/i915/gt/intel_context_types.h b/drivers/gpu/drm/i915/gt/intel_context_types.h
index 04eacae1aca5..e36670f2e626 100644
--- a/drivers/gpu/drm/i915/gt/intel_context_types.h
+++ b/drivers/gpu/drm/i915/gt/intel_context_types.h
@@ -43,6 +43,8 @@ struct intel_context_ops {
void (*revoke)(struct intel_context *ce, struct i915_request *rq,
unsigned int preempt_timeout_ms);
+ void (*close)(struct intel_context *ce);
+
int (*pre_pin)(struct intel_context *ce, struct i915_gem_ww_ctx *ww, void **vaddr);
int (*pin)(struct intel_context *ce, void *vaddr);
void (*unpin)(struct intel_context *ce);
@@ -197,8 +199,6 @@ struct intel_context {
* context's submissions is complete.
*/
struct i915_sw_fence blocked;
- /** @number_committed_requests: number of committed requests */
- int number_committed_requests;
/** @requests: list of active requests on this context */
struct list_head requests;
/** @prio: the context's current guc priority */
@@ -208,6 +208,11 @@ struct intel_context {
* each priority bucket
*/
u32 prio_count[GUC_CLIENT_PRIORITY_NUM];
+ /**
+ * @sched_disable_delay_work: worker to disable scheduling on this
+ * context
+ */
+ struct delayed_work sched_disable_delay_work;
} guc_state;
struct {
diff --git a/drivers/gpu/drm/i915/gt/intel_engine.h b/drivers/gpu/drm/i915/gt/intel_engine.h
index 04e435bce79b..b58c30ac8ef0 100644
--- a/drivers/gpu/drm/i915/gt/intel_engine.h
+++ b/drivers/gpu/drm/i915/gt/intel_engine.h
@@ -172,6 +172,8 @@ intel_write_status_page(struct intel_engine_cs *engine, int reg, u32 value)
#define I915_GEM_HWS_MIGRATE (0x42 * sizeof(u32))
#define I915_GEM_HWS_PXP 0x60
#define I915_GEM_HWS_PXP_ADDR (I915_GEM_HWS_PXP * sizeof(u32))
+#define I915_GEM_HWS_GSC 0x62
+#define I915_GEM_HWS_GSC_ADDR (I915_GEM_HWS_GSC * sizeof(u32))
#define I915_GEM_HWS_SCRATCH 0x80
#define I915_HWS_CSB_BUF0_INDEX 0x10
@@ -248,8 +250,8 @@ void intel_engine_dump_active_requests(struct list_head *requests,
ktime_t intel_engine_get_busy_time(struct intel_engine_cs *engine,
ktime_t *now);
-struct i915_request *
-intel_engine_execlist_find_hung_request(struct intel_engine_cs *engine);
+void intel_engine_get_hung_entity(struct intel_engine_cs *engine,
+ struct intel_context **ce, struct i915_request **rq);
u32 intel_engine_context_size(struct intel_gt *gt, u8 class);
struct intel_context *
@@ -348,4 +350,10 @@ intel_engine_get_hung_context(struct intel_engine_cs *engine)
return engine->hung_ce;
}
+u64 intel_clamp_heartbeat_interval_ms(struct intel_engine_cs *engine, u64 value);
+u64 intel_clamp_max_busywait_duration_ns(struct intel_engine_cs *engine, u64 value);
+u64 intel_clamp_preempt_timeout_ms(struct intel_engine_cs *engine, u64 value);
+u64 intel_clamp_stop_timeout_ms(struct intel_engine_cs *engine, u64 value);
+u64 intel_clamp_timeslice_duration_ms(struct intel_engine_cs *engine, u64 value);
+
#endif /* _INTEL_RINGBUFFER_H_ */
diff --git a/drivers/gpu/drm/i915/gt/intel_engine_cs.c b/drivers/gpu/drm/i915/gt/intel_engine_cs.c
index 1f7188129cd1..5c6c9a6d469c 100644
--- a/drivers/gpu/drm/i915/gt/intel_engine_cs.c
+++ b/drivers/gpu/drm/i915/gt/intel_engine_cs.c
@@ -9,10 +9,13 @@
#include "gem/i915_gem_context.h"
#include "gem/i915_gem_internal.h"
+#include "gt/intel_gt_print.h"
#include "gt/intel_gt_regs.h"
#include "i915_cmd_parser.h"
#include "i915_drv.h"
+#include "i915_irq.h"
+#include "i915_reg.h"
#include "intel_breadcrumbs.h"
#include "intel_context.h"
#include "intel_engine.h"
@@ -244,6 +247,13 @@ static const struct engine_info intel_engines[] = {
{ .graphics_ver = 12, .base = GEN12_COMPUTE3_RING_BASE }
}
},
+ [GSC0] = {
+ .class = OTHER_CLASS,
+ .instance = OTHER_GSC_INSTANCE,
+ .mmio_bases = {
+ { .graphics_ver = 12, .base = MTL_GSC_RING_BASE }
+ }
+ },
};
/**
@@ -324,6 +334,7 @@ u32 intel_engine_context_size(struct intel_gt *gt, u8 class)
case VIDEO_DECODE_CLASS:
case VIDEO_ENHANCEMENT_CLASS:
case COPY_ENGINE_CLASS:
+ case OTHER_CLASS:
if (GRAPHICS_VER(gt->i915) < 8)
return 0;
return GEN8_LR_CONTEXT_OTHER_SIZE;
@@ -415,6 +426,7 @@ static u32 get_reset_domain(u8 ver, enum intel_engine_id id)
[CCS1] = GEN11_GRDOM_RENDER,
[CCS2] = GEN11_GRDOM_RENDER,
[CCS3] = GEN11_GRDOM_RENDER,
+ [GSC0] = GEN12_GRDOM_GSC,
};
GEM_BUG_ON(id >= ARRAY_SIZE(engine_reset_domains) ||
!engine_reset_domains[id]);
@@ -486,6 +498,17 @@ static int intel_engine_setup(struct intel_gt *gt, enum intel_engine_id id,
engine->logical_mask = BIT(logical_instance);
__sprint_engine_name(engine);
+ if ((engine->class == COMPUTE_CLASS && !RCS_MASK(engine->gt) &&
+ __ffs(CCS_MASK(engine->gt)) == engine->instance) ||
+ engine->class == RENDER_CLASS)
+ engine->flags |= I915_ENGINE_FIRST_RENDER_COMPUTE;
+
+ /* features common between engines sharing EUs */
+ if (engine->class == RENDER_CLASS || engine->class == COMPUTE_CLASS) {
+ engine->flags |= I915_ENGINE_HAS_RCS_REG_STATE;
+ engine->flags |= I915_ENGINE_HAS_EU_PRIORITY;
+ }
+
engine->props.heartbeat_interval_ms =
CONFIG_DRM_I915_HEARTBEAT_INTERVAL;
engine->props.max_busywait_duration_ns =
@@ -497,20 +520,34 @@ static int intel_engine_setup(struct intel_gt *gt, enum intel_engine_id id,
engine->props.timeslice_duration_ms =
CONFIG_DRM_I915_TIMESLICE_DURATION;
- /* Override to uninterruptible for OpenCL workloads. */
- if (GRAPHICS_VER(i915) == 12 && engine->class == RENDER_CLASS)
- engine->props.preempt_timeout_ms = 0;
-
- if ((engine->class == COMPUTE_CLASS && !RCS_MASK(engine->gt) &&
- __ffs(CCS_MASK(engine->gt)) == engine->instance) ||
- engine->class == RENDER_CLASS)
- engine->flags |= I915_ENGINE_FIRST_RENDER_COMPUTE;
-
- /* features common between engines sharing EUs */
- if (engine->class == RENDER_CLASS || engine->class == COMPUTE_CLASS) {
- engine->flags |= I915_ENGINE_HAS_RCS_REG_STATE;
- engine->flags |= I915_ENGINE_HAS_EU_PRIORITY;
- }
+ /*
+ * Mid-thread pre-emption is not available in Gen12. Unfortunately,
+ * some compute workloads run quite long threads. That means they get
+ * reset due to not pre-empting in a timely manner. So, bump the
+ * pre-emption timeout value to be much higher for compute engines.
+ */
+ if (GRAPHICS_VER(i915) == 12 && (engine->flags & I915_ENGINE_HAS_RCS_REG_STATE))
+ engine->props.preempt_timeout_ms = CONFIG_DRM_I915_PREEMPT_TIMEOUT_COMPUTE;
+
+ /* Cap properties according to any system limits */
+#define CLAMP_PROP(field) \
+ do { \
+ u64 clamp = intel_clamp_##field(engine, engine->props.field); \
+ if (clamp != engine->props.field) { \
+ drm_notice(&engine->i915->drm, \
+ "Warning, clamping %s to %lld to prevent overflow\n", \
+ #field, clamp); \
+ engine->props.field = clamp; \
+ } \
+ } while (0)
+
+ CLAMP_PROP(heartbeat_interval_ms);
+ CLAMP_PROP(max_busywait_duration_ns);
+ CLAMP_PROP(preempt_timeout_ms);
+ CLAMP_PROP(stop_timeout_ms);
+ CLAMP_PROP(timeslice_duration_ms);
+
+#undef CLAMP_PROP
engine->defaults = engine->props; /* never to change again */
@@ -534,6 +571,55 @@ static int intel_engine_setup(struct intel_gt *gt, enum intel_engine_id id,
return 0;
}
+u64 intel_clamp_heartbeat_interval_ms(struct intel_engine_cs *engine, u64 value)
+{
+ value = min_t(u64, value, jiffies_to_msecs(MAX_SCHEDULE_TIMEOUT));
+
+ return value;
+}
+
+u64 intel_clamp_max_busywait_duration_ns(struct intel_engine_cs *engine, u64 value)
+{
+ value = min(value, jiffies_to_nsecs(2));
+
+ return value;
+}
+
+u64 intel_clamp_preempt_timeout_ms(struct intel_engine_cs *engine, u64 value)
+{
+ /*
+ * NB: The GuC API only supports 32bit values. However, the limit is further
+ * reduced due to internal calculations which would otherwise overflow.
+ */
+ if (intel_guc_submission_is_wanted(&engine->gt->uc.guc))
+ value = min_t(u64, value, guc_policy_max_preempt_timeout_ms());
+
+ value = min_t(u64, value, jiffies_to_msecs(MAX_SCHEDULE_TIMEOUT));
+
+ return value;
+}
+
+u64 intel_clamp_stop_timeout_ms(struct intel_engine_cs *engine, u64 value)
+{
+ value = min_t(u64, value, jiffies_to_msecs(MAX_SCHEDULE_TIMEOUT));
+
+ return value;
+}
+
+u64 intel_clamp_timeslice_duration_ms(struct intel_engine_cs *engine, u64 value)
+{
+ /*
+ * NB: The GuC API only supports 32bit values. However, the limit is further
+ * reduced due to internal calculations which would otherwise overflow.
+ */
+ if (intel_guc_submission_is_wanted(&engine->gt->uc.guc))
+ value = min_t(u64, value, guc_policy_max_exec_quantum_ms());
+
+ value = min_t(u64, value, jiffies_to_msecs(MAX_SCHEDULE_TIMEOUT));
+
+ return value;
+}
+
static void __setup_engine_capabilities(struct intel_engine_cs *engine)
{
struct drm_i915_private *i915 = engine->i915;
@@ -809,6 +895,24 @@ static intel_engine_mask_t init_engine_mask(struct intel_gt *gt)
engine_mask_apply_compute_fuses(gt);
engine_mask_apply_copy_fuses(gt);
+ /*
+ * The only use of the GSC CS is to load and communicate with the GSC
+ * FW, so we have no use for it if we don't have the FW.
+ *
+ * IMPORTANT: in cases where we don't have the GSC FW, we have a
+ * catch-22 situation that breaks media C6 due to 2 requirements:
+ * 1) once turned on, the GSC power well will not go to sleep unless the
+ * GSC FW is loaded.
+ * 2) to enable idling (which is required for media C6) we need to
+ * initialize the IDLE_MSG register for the GSC CS and do at least 1
+ * submission, which will wake up the GSC power well.
+ */
+ if (__HAS_ENGINE(info->engine_mask, GSC0) && !intel_uc_wants_gsc_uc(&gt->uc)) {
+ drm_notice(&gt->i915->drm,
+ "No GSC FW selected, disabling GSC CS and media C6\n");
+ info->engine_mask &= ~BIT(GSC0);
+ }
+
return info->engine_mask;
}
@@ -1040,12 +1144,130 @@ err_put:
return ret;
}
+static int intel_engine_init_tlb_invalidation(struct intel_engine_cs *engine)
+{
+ static const union intel_engine_tlb_inv_reg gen8_regs[] = {
+ [RENDER_CLASS].reg = GEN8_RTCR,
+ [VIDEO_DECODE_CLASS].reg = GEN8_M1TCR, /* , GEN8_M2TCR */
+ [VIDEO_ENHANCEMENT_CLASS].reg = GEN8_VTCR,
+ [COPY_ENGINE_CLASS].reg = GEN8_BTCR,
+ };
+ static const union intel_engine_tlb_inv_reg gen12_regs[] = {
+ [RENDER_CLASS].reg = GEN12_GFX_TLB_INV_CR,
+ [VIDEO_DECODE_CLASS].reg = GEN12_VD_TLB_INV_CR,
+ [VIDEO_ENHANCEMENT_CLASS].reg = GEN12_VE_TLB_INV_CR,
+ [COPY_ENGINE_CLASS].reg = GEN12_BLT_TLB_INV_CR,
+ [COMPUTE_CLASS].reg = GEN12_COMPCTX_TLB_INV_CR,
+ };
+ static const union intel_engine_tlb_inv_reg xehp_regs[] = {
+ [RENDER_CLASS].mcr_reg = XEHP_GFX_TLB_INV_CR,
+ [VIDEO_DECODE_CLASS].mcr_reg = XEHP_VD_TLB_INV_CR,
+ [VIDEO_ENHANCEMENT_CLASS].mcr_reg = XEHP_VE_TLB_INV_CR,
+ [COPY_ENGINE_CLASS].mcr_reg = XEHP_BLT_TLB_INV_CR,
+ [COMPUTE_CLASS].mcr_reg = XEHP_COMPCTX_TLB_INV_CR,
+ };
+ static const union intel_engine_tlb_inv_reg xelpmp_regs[] = {
+ [VIDEO_DECODE_CLASS].reg = GEN12_VD_TLB_INV_CR,
+ [VIDEO_ENHANCEMENT_CLASS].reg = GEN12_VE_TLB_INV_CR,
+ [OTHER_CLASS].reg = XELPMP_GSC_TLB_INV_CR,
+ };
+ struct drm_i915_private *i915 = engine->i915;
+ const unsigned int instance = engine->instance;
+ const unsigned int class = engine->class;
+ const union intel_engine_tlb_inv_reg *regs;
+ union intel_engine_tlb_inv_reg reg;
+ unsigned int num = 0;
+ u32 val;
+
+ /*
+ * New platforms should not be added with catch-all-newer (>=)
+ * condition so that any later platform added triggers the below warning
+ * and in turn mandates a human cross-check of whether the invalidation
+ * flows have compatible semantics.
+ *
+ * For instance with the 11.00 -> 12.00 transition three out of five
+ * respective engine registers were moved to masked type. Then after the
+ * 12.00 -> 12.50 transition multi cast handling is required too.
+ */
+
+ if (engine->gt->type == GT_MEDIA) {
+ if (MEDIA_VER_FULL(i915) == IP_VER(13, 0)) {
+ regs = xelpmp_regs;
+ num = ARRAY_SIZE(xelpmp_regs);
+ }
+ } else {
+ if (GRAPHICS_VER_FULL(i915) == IP_VER(12, 71) ||
+ GRAPHICS_VER_FULL(i915) == IP_VER(12, 70) ||
+ GRAPHICS_VER_FULL(i915) == IP_VER(12, 50) ||
+ GRAPHICS_VER_FULL(i915) == IP_VER(12, 55)) {
+ regs = xehp_regs;
+ num = ARRAY_SIZE(xehp_regs);
+ } else if (GRAPHICS_VER_FULL(i915) == IP_VER(12, 0) ||
+ GRAPHICS_VER_FULL(i915) == IP_VER(12, 10)) {
+ regs = gen12_regs;
+ num = ARRAY_SIZE(gen12_regs);
+ } else if (GRAPHICS_VER(i915) >= 8 && GRAPHICS_VER(i915) <= 11) {
+ regs = gen8_regs;
+ num = ARRAY_SIZE(gen8_regs);
+ } else if (GRAPHICS_VER(i915) < 8) {
+ return 0;
+ }
+ }
+
+ if (gt_WARN_ONCE(engine->gt, !num,
+ "Platform does not implement TLB invalidation!"))
+ return -ENODEV;
+
+ if (gt_WARN_ON_ONCE(engine->gt,
+ class >= num ||
+ (!regs[class].reg.reg &&
+ !regs[class].mcr_reg.reg)))
+ return -ERANGE;
+
+ reg = regs[class];
+
+ if (regs == xelpmp_regs && class == OTHER_CLASS) {
+ /*
+ * There's only a single GSC instance, but it uses register bit
+ * 1 instead of either 0 or OTHER_GSC_INSTANCE.
+ */
+ GEM_WARN_ON(instance != OTHER_GSC_INSTANCE);
+ val = 1;
+ } else if (regs == gen8_regs && class == VIDEO_DECODE_CLASS && instance == 1) {
+ reg.reg = GEN8_M2TCR;
+ val = 0;
+ } else {
+ val = instance;
+ }
+
+ val = BIT(val);
+
+ engine->tlb_inv.mcr = regs == xehp_regs;
+ engine->tlb_inv.reg = reg;
+ engine->tlb_inv.done = val;
+
+ if (GRAPHICS_VER(i915) >= 12 &&
+ (engine->class == VIDEO_DECODE_CLASS ||
+ engine->class == VIDEO_ENHANCEMENT_CLASS ||
+ engine->class == COMPUTE_CLASS ||
+ engine->class == OTHER_CLASS))
+ engine->tlb_inv.request = _MASKED_BIT_ENABLE(val);
+ else
+ engine->tlb_inv.request = val;
+
+ return 0;
+}
+
static int engine_setup_common(struct intel_engine_cs *engine)
{
int err;
init_llist_head(&engine->barrier_tasks);
+ err = intel_engine_init_tlb_invalidation(engine);
+ if (err)
+ return err;
+
err = init_status_page(engine);
if (err)
return err;
@@ -1206,8 +1428,8 @@ create_kernel_context(struct intel_engine_cs *engine)
&kernel, "kernel_context");
}
-/**
- * intel_engines_init_common - initialize cengine state which might require hw access
+/*
+ * engine_init_common - initialize engine state which might require hw access
* @engine: Engine to initialize.
*
* Initializes @engine@ structure members shared between legacy and execlists
@@ -1274,8 +1496,13 @@ int intel_engines_init(struct intel_gt *gt)
return err;
err = setup(engine);
- if (err)
+ if (err) {
+ intel_engine_cleanup_common(engine);
return err;
+ }
+
+ /* The backend should now be responsible for cleanup */
+ GEM_BUG_ON(engine->release == NULL);
err = engine_init_common(engine);
if (err)
@@ -1386,10 +1613,12 @@ static int __intel_engine_stop_cs(struct intel_engine_cs *engine,
intel_uncore_write_fw(uncore, mode, _MASKED_BIT_ENABLE(STOP_RING));
/*
- * Wa_22011802037 : gen11, gen12, Prior to doing a reset, ensure CS is
+ * Wa_22011802037: Prior to doing a reset, ensure CS is
* stopped, set ring stop bit and prefetch disable bit to halt CS
*/
- if (IS_GRAPHICS_VER(engine->i915, 11, 12))
+ if (IS_MTL_GRAPHICS_STEP(engine->i915, M, STEP_A0, STEP_B0) ||
+ (GRAPHICS_VER(engine->i915) >= 11 &&
+ GRAPHICS_VER_FULL(engine->i915) < IP_VER(12, 70)))
intel_uncore_write_fw(uncore, RING_MODE_GEN7(engine->mmio_base),
_MASKED_BIT_ENABLE(GEN12_GFX_PREFETCH_DISABLE));
@@ -1474,11 +1703,8 @@ static u32 __cs_pending_mi_force_wakes(struct intel_engine_cs *engine)
};
u32 val;
- if (!_reg[engine->id].reg) {
- drm_err(&engine->i915->drm,
- "MSG IDLE undefined for engine id %u\n", engine->id);
+ if (!_reg[engine->id].reg)
return 0;
- }
val = intel_uncore_read(engine->uncore, _reg[engine->id]);
@@ -1554,11 +1780,11 @@ void intel_engine_get_instdone(const struct intel_engine_cs *engine,
for_each_ss_steering(iter, engine->gt, slice, subslice) {
instdone->sampler[slice][subslice] =
intel_gt_mcr_read(engine->gt,
- GEN7_SAMPLER_INSTDONE,
+ GEN8_SAMPLER_INSTDONE,
slice, subslice);
instdone->row[slice][subslice] =
intel_gt_mcr_read(engine->gt,
- GEN7_ROW_INSTDONE,
+ GEN8_ROW_INSTDONE,
slice, subslice);
}
@@ -1832,13 +2058,13 @@ static const char *repr_timer(const struct timer_list *t)
static void intel_engine_print_registers(struct intel_engine_cs *engine,
struct drm_printer *m)
{
- struct drm_i915_private *dev_priv = engine->i915;
+ struct drm_i915_private *i915 = engine->i915;
struct intel_engine_execlists * const execlists = &engine->execlists;
u64 addr;
- if (engine->id == RENDER_CLASS && IS_GRAPHICS_VER(dev_priv, 4, 7))
+ if (engine->id == RENDER_CLASS && IS_GRAPHICS_VER(i915, 4, 7))
drm_printf(m, "\tCCID: 0x%08x\n", ENGINE_READ(engine, CCID));
- if (HAS_EXECLISTS(dev_priv)) {
+ if (HAS_EXECLISTS(i915)) {
drm_printf(m, "\tEL_STAT_HI: 0x%08x\n",
ENGINE_READ(engine, RING_EXECLIST_STATUS_HI));
drm_printf(m, "\tEL_STAT_LO: 0x%08x\n",
@@ -1859,7 +2085,7 @@ static void intel_engine_print_registers(struct intel_engine_cs *engine,
ENGINE_READ(engine, RING_MI_MODE) & (MODE_IDLE) ? " [idle]" : "");
}
- if (GRAPHICS_VER(dev_priv) >= 6) {
+ if (GRAPHICS_VER(i915) >= 6) {
drm_printf(m, "\tRING_IMR: 0x%08x\n",
ENGINE_READ(engine, RING_IMR));
drm_printf(m, "\tRING_ESR: 0x%08x\n",
@@ -1876,15 +2102,15 @@ static void intel_engine_print_registers(struct intel_engine_cs *engine,
addr = intel_engine_get_last_batch_head(engine);
drm_printf(m, "\tBBADDR: 0x%08x_%08x\n",
upper_32_bits(addr), lower_32_bits(addr));
- if (GRAPHICS_VER(dev_priv) >= 8)
+ if (GRAPHICS_VER(i915) >= 8)
addr = ENGINE_READ64(engine, RING_DMA_FADD, RING_DMA_FADD_UDW);
- else if (GRAPHICS_VER(dev_priv) >= 4)
+ else if (GRAPHICS_VER(i915) >= 4)
addr = ENGINE_READ(engine, RING_DMA_FADD);
else
addr = ENGINE_READ(engine, DMA_FADD_I8XX);
drm_printf(m, "\tDMA_FADDR: 0x%08x_%08x\n",
upper_32_bits(addr), lower_32_bits(addr));
- if (GRAPHICS_VER(dev_priv) >= 4) {
+ if (GRAPHICS_VER(i915) >= 4) {
drm_printf(m, "\tIPEIR: 0x%08x\n",
ENGINE_READ(engine, RING_IPEIR));
drm_printf(m, "\tIPEHR: 0x%08x\n",
@@ -1894,7 +2120,7 @@ static void intel_engine_print_registers(struct intel_engine_cs *engine,
drm_printf(m, "\tIPEHR: 0x%08x\n", ENGINE_READ(engine, IPEHR));
}
- if (HAS_EXECLISTS(dev_priv) && !intel_engine_uses_guc(engine)) {
+ if (HAS_EXECLISTS(i915) && !intel_engine_uses_guc(engine)) {
struct i915_request * const *port, *rq;
const u32 *hws =
&engine->status_page.addr[I915_HWS_CSB_BUF0_INDEX];
@@ -1960,7 +2186,7 @@ static void intel_engine_print_registers(struct intel_engine_cs *engine,
}
rcu_read_unlock();
i915_sched_engine_active_unlock_bh(engine->sched_engine);
- } else if (GRAPHICS_VER(dev_priv) > 6) {
+ } else if (GRAPHICS_VER(i915) > 6) {
drm_printf(m, "\tPP_DIR_BASE: 0x%08x\n",
ENGINE_READ(engine, RING_PP_DIR_BASE));
drm_printf(m, "\tPP_DIR_BASE_READ: 0x%08x\n",
@@ -2004,17 +2230,6 @@ static void print_request_ring(struct drm_printer *m, struct i915_request *rq)
}
}
-static unsigned long list_count(struct list_head *list)
-{
- struct list_head *pos;
- unsigned long count = 0;
-
- list_for_each(pos, list)
- count++;
-
- return count;
-}
-
static unsigned long read_ul(void *p, size_t x)
{
return *(unsigned long *)(p + x);
@@ -2106,11 +2321,11 @@ void intel_engine_dump_active_requests(struct list_head *requests,
}
}
-static void engine_dump_active_requests(struct intel_engine_cs *engine, struct drm_printer *m)
+static void engine_dump_active_requests(struct intel_engine_cs *engine,
+ struct drm_printer *m)
{
+ struct intel_context *hung_ce = NULL;
struct i915_request *hung_rq = NULL;
- struct intel_context *ce;
- bool guc;
/*
* No need for an engine->irq_seqno_barrier() before the seqno reads.
@@ -2119,27 +2334,22 @@ static void engine_dump_active_requests(struct intel_engine_cs *engine, struct d
* But the intention here is just to report an instantaneous snapshot
* so that's fine.
*/
- lockdep_assert_held(&engine->sched_engine->lock);
+ intel_engine_get_hung_entity(engine, &hung_ce, &hung_rq);
drm_printf(m, "\tRequests:\n");
- guc = intel_uc_uses_guc_submission(&engine->gt->uc);
- if (guc) {
- ce = intel_engine_get_hung_context(engine);
- if (ce)
- hung_rq = intel_context_find_active_request(ce);
- } else {
- hung_rq = intel_engine_execlist_find_hung_request(engine);
- }
-
if (hung_rq)
engine_dump_request(hung_rq, m, "\t\thung");
+ else if (hung_ce)
+ drm_printf(m, "\t\tGot hung ce but no hung rq!\n");
- if (guc)
+ if (intel_uc_uses_guc_submission(&engine->gt->uc))
intel_guc_dump_active_requests(engine, hung_rq, m);
else
- intel_engine_dump_active_requests(&engine->sched_engine->requests,
- hung_rq, m);
+ intel_execlists_dump_active_requests(engine, hung_rq, m);
+
+ if (hung_rq)
+ i915_request_put(hung_rq);
}
void intel_engine_dump(struct intel_engine_cs *engine,
@@ -2149,7 +2359,6 @@ void intel_engine_dump(struct intel_engine_cs *engine,
struct i915_gpu_error * const error = &engine->i915->gpu_error;
struct i915_request *rq;
intel_wakeref_t wakeref;
- unsigned long flags;
ktime_t dummy;
if (header) {
@@ -2186,13 +2395,8 @@ void intel_engine_dump(struct intel_engine_cs *engine,
i915_reset_count(error));
print_properties(engine, m);
- spin_lock_irqsave(&engine->sched_engine->lock, flags);
engine_dump_active_requests(engine, m);
- drm_printf(m, "\tOn hold?: %lu\n",
- list_count(&engine->sched_engine->hold));
- spin_unlock_irqrestore(&engine->sched_engine->lock, flags);
-
drm_printf(m, "\tMMIO base: 0x%08x\n", engine->mmio_base);
wakeref = intel_runtime_pm_get_if_in_use(engine->uncore->rpm);
if (wakeref) {
@@ -2238,8 +2442,7 @@ intel_engine_create_virtual(struct intel_engine_cs **siblings,
return siblings[0]->cops->create_virtual(siblings, count, flags);
}
-struct i915_request *
-intel_engine_execlist_find_hung_request(struct intel_engine_cs *engine)
+static struct i915_request *engine_execlist_find_hung_request(struct intel_engine_cs *engine)
{
struct i915_request *request, *active = NULL;
@@ -2291,6 +2494,33 @@ intel_engine_execlist_find_hung_request(struct intel_engine_cs *engine)
return active;
}
+void intel_engine_get_hung_entity(struct intel_engine_cs *engine,
+ struct intel_context **ce, struct i915_request **rq)
+{
+ unsigned long flags;
+
+ *ce = intel_engine_get_hung_context(engine);
+ if (*ce) {
+ intel_engine_clear_hung_context(engine);
+
+ *rq = intel_context_get_active_request(*ce);
+ return;
+ }
+
+ /*
+ * Getting here with GuC enabled means it is a forced error capture
+ * with no actual hang. So, no need to attempt the execlist search.
+ */
+ if (intel_uc_uses_guc_submission(&engine->gt->uc))
+ return;
+
+ spin_lock_irqsave(&engine->sched_engine->lock, flags);
+ *rq = engine_execlist_find_hung_request(engine);
+ if (*rq)
+ *rq = i915_request_get_rcu(*rq);
+ spin_unlock_irqrestore(&engine->sched_engine->lock, flags);
+}
+
void xehp_enable_ccs_engines(struct intel_engine_cs *engine)
{
/*
diff --git a/drivers/gpu/drm/i915/gt/intel_engine_heartbeat.c b/drivers/gpu/drm/i915/gt/intel_engine_heartbeat.c
index a3698f611f45..9a527e1f5be6 100644
--- a/drivers/gpu/drm/i915/gt/intel_engine_heartbeat.c
+++ b/drivers/gpu/drm/i915/gt/intel_engine_heartbeat.c
@@ -22,9 +22,37 @@
static bool next_heartbeat(struct intel_engine_cs *engine)
{
+ struct i915_request *rq;
long delay;
delay = READ_ONCE(engine->props.heartbeat_interval_ms);
+
+ rq = engine->heartbeat.systole;
+
+ /*
+ * FIXME: The final period extension is disabled if the period has been
+ * modified from the default. This is to prevent issues with certain
+ * selftests which override the value and expect specific behaviour.
+ * Once the selftests have been updated to either cope with variable
+ * heartbeat periods (or to override the pre-emption timeout as well,
+ * or just to add a selftest specific override of the extension), the
+ * generic override can be removed.
+ */
+ if (rq && rq->sched.attr.priority >= I915_PRIORITY_BARRIER &&
+ delay == engine->defaults.heartbeat_interval_ms) {
+ long longer;
+
+ /*
+ * The final try is at the highest priority possible. Up until now
+ * a pre-emption might not even have been attempted. So make sure
+ * this last attempt allows enough time for a pre-emption to occur.
+ */
+ longer = READ_ONCE(engine->props.preempt_timeout_ms) * 2;
+ longer = intel_clamp_heartbeat_interval_ms(engine, longer);
+ if (longer > delay)
+ delay = longer;
+ }
+
if (!delay)
return false;
@@ -288,6 +316,17 @@ int intel_engine_set_heartbeat(struct intel_engine_cs *engine,
if (!delay && !intel_engine_has_preempt_reset(engine))
return -ENODEV;
+ /* FIXME: Remove together with equally marked hack in next_heartbeat. */
+ if (delay != engine->defaults.heartbeat_interval_ms &&
+ delay < 2 * engine->props.preempt_timeout_ms) {
+ if (intel_engine_uses_guc(engine))
+ drm_notice(&engine->i915->drm, "%s heartbeat interval adjusted to a non-default value which may downgrade individual engine resets to full GPU resets!\n",
+ engine->name);
+ else
+ drm_notice(&engine->i915->drm, "%s heartbeat interval adjusted to a non-default value which may cause engine resets to target innocent contexts!\n",
+ engine->name);
+ }
+
intel_engine_pm_get(engine);
err = mutex_lock_interruptible(&ce->timeline->mutex);
diff --git a/drivers/gpu/drm/i915/gt/intel_engine_pm.c b/drivers/gpu/drm/i915/gt/intel_engine_pm.c
index b0a4a2dbe3ee..ee531a5c142c 100644
--- a/drivers/gpu/drm/i915/gt/intel_engine_pm.c
+++ b/drivers/gpu/drm/i915/gt/intel_engine_pm.c
@@ -15,6 +15,22 @@
#include "intel_rc6.h"
#include "intel_ring.h"
#include "shmem_utils.h"
+#include "intel_gt_regs.h"
+
+static void intel_gsc_idle_msg_enable(struct intel_engine_cs *engine)
+{
+ struct drm_i915_private *i915 = engine->i915;
+
+ if (IS_METEORLAKE(i915) && engine->id == GSC0) {
+ intel_uncore_write(engine->gt->uncore,
+ RC_PSMI_CTRL_GSCCS,
+ _MASKED_BIT_DISABLE(IDLE_MSG_DISABLE));
+ /* hysteresis 0xA=5us as recommended in spec*/
+ intel_uncore_write(engine->gt->uncore,
+ PWRCTX_MAXCNT_GSCCS,
+ 0xA);
+ }
+}
static void dbg_poison_ce(struct intel_context *ce)
{
@@ -99,6 +115,15 @@ __queue_and_release_pm(struct i915_request *rq,
ENGINE_TRACE(engine, "parking\n");
/*
+ * Open coded one half of intel_context_enter, which we have to omit
+ * here (see the large comment below) and because the other part must
+ * not be called due constructing directly with __i915_request_create
+ * which increments active count via intel_context_mark_active.
+ */
+ GEM_BUG_ON(rq->context->active_count != 1);
+ __intel_gt_pm_get(engine->gt);
+
+ /*
* We have to serialise all potential retirement paths with our
* submission, as we don't want to underflow either the
* engine->wakeref.counter or our timeline->active_count.
@@ -275,6 +300,8 @@ void intel_engine_init__pm(struct intel_engine_cs *engine)
intel_wakeref_init(&engine->wakeref, rpm, &wf_ops);
intel_engine_init_heartbeat(engine);
+
+ intel_gsc_idle_msg_enable(engine);
}
/**
diff --git a/drivers/gpu/drm/i915/gt/intel_engine_regs.h b/drivers/gpu/drm/i915/gt/intel_engine_regs.h
index fe1a0d5fd4b1..6b9d9f837669 100644
--- a/drivers/gpu/drm/i915/gt/intel_engine_regs.h
+++ b/drivers/gpu/drm/i915/gt/intel_engine_regs.h
@@ -81,6 +81,7 @@
#define RING_EIR(base) _MMIO((base) + 0xb0)
#define RING_EMR(base) _MMIO((base) + 0xb4)
#define RING_ESR(base) _MMIO((base) + 0xb8)
+#define GEN12_STATE_ACK_DEBUG(base) _MMIO((base) + 0xbc)
#define RING_INSTPM(base) _MMIO((base) + 0xc0)
#define RING_CMD_CCTL(base) _MMIO((base) + 0xc4)
#define ACTHD(base) _MMIO((base) + 0xc8)
@@ -201,6 +202,7 @@
#define RING_CONTEXT_STATUS_PTR(base) _MMIO((base) + 0x3a0)
#define RING_CTX_TIMESTAMP(base) _MMIO((base) + 0x3a8) /* gen8+ */
#define RING_PREDICATE_RESULT(base) _MMIO((base) + 0x3b8)
+#define MI_PREDICATE_RESULT_2_ENGINE(base) _MMIO((base) + 0x3bc)
#define RING_FORCE_TO_NONPRIV(base, i) _MMIO(((base) + 0x4D0) + (i) * 4)
#define RING_FORCE_TO_NONPRIV_DENY REG_BIT(30)
#define RING_FORCE_TO_NONPRIV_ADDRESS_MASK REG_GENMASK(25, 2)
diff --git a/drivers/gpu/drm/i915/gt/intel_engine_types.h b/drivers/gpu/drm/i915/gt/intel_engine_types.h
index 6b5d4ea22b67..960291f88fd6 100644
--- a/drivers/gpu/drm/i915/gt/intel_engine_types.h
+++ b/drivers/gpu/drm/i915/gt/intel_engine_types.h
@@ -53,6 +53,8 @@ struct intel_gt;
struct intel_ring;
struct intel_uncore;
struct intel_breadcrumbs;
+struct intel_engine_cs;
+struct i915_perf_group;
typedef u32 intel_engine_mask_t;
#define ALL_ENGINES ((intel_engine_mask_t)~0ul)
@@ -136,6 +138,7 @@ enum intel_engine_id {
CCS2,
CCS3,
#define _CCS(n) (CCS0 + (n))
+ GSC0,
I915_NUM_ENGINES
#define INVALID_ENGINE ((enum intel_engine_id)-1)
};
@@ -340,6 +343,18 @@ struct intel_engine_guc_stats {
u64 start_gt_clk;
};
+union intel_engine_tlb_inv_reg {
+ i915_reg_t reg;
+ i915_mcr_reg_t mcr_reg;
+};
+
+struct intel_engine_tlb_inv {
+ bool mcr;
+ union intel_engine_tlb_inv_reg reg;
+ u32 request;
+ u32 done;
+};
+
struct intel_engine_cs {
struct drm_i915_private *i915;
struct intel_gt *gt;
@@ -371,6 +386,8 @@ struct intel_engine_cs {
u32 context_size;
u32 mmio_base;
+ struct intel_engine_tlb_inv tlb_inv;
+
/*
* Some w/a require forcewake to be held (which prevents RC6) while
* a particular engine is active. If so, we set fw_domain to which
@@ -602,6 +619,14 @@ struct intel_engine_cs {
} props, defaults;
I915_SELFTEST_DECLARE(struct fault_attr reset_timeout);
+
+ /*
+ * The perf group maps to one OA unit which controls one OA buffer. All
+ * reports corresponding to this engine will be reported to this OA
+ * buffer. An engine will map to a single OA unit, but a single OA unit
+ * can generate reports for multiple engines.
+ */
+ struct i915_perf_group *oa_group;
};
static inline bool
diff --git a/drivers/gpu/drm/i915/gt/intel_engine_user.c b/drivers/gpu/drm/i915/gt/intel_engine_user.c
index 46a174f8aa00..cd4f1b126f75 100644
--- a/drivers/gpu/drm/i915/gt/intel_engine_user.c
+++ b/drivers/gpu/drm/i915/gt/intel_engine_user.c
@@ -140,6 +140,7 @@ const char *intel_engine_class_repr(u8 class)
[COPY_ENGINE_CLASS] = "bcs",
[VIDEO_DECODE_CLASS] = "vcs",
[VIDEO_ENHANCEMENT_CLASS] = "vecs",
+ [OTHER_CLASS] = "other",
[COMPUTE_CLASS] = "ccs",
};
@@ -190,6 +191,15 @@ static void add_legacy_ring(struct legacy_ring *ring,
ring->instance++;
}
+static void engine_rename(struct intel_engine_cs *engine, const char *name, u16 instance)
+{
+ char old[sizeof(engine->name)];
+
+ memcpy(old, engine->name, sizeof(engine->name));
+ scnprintf(engine->name, sizeof(engine->name), "%s%u", name, instance);
+ drm_dbg(&engine->i915->drm, "renamed %s to %s\n", old, engine->name);
+}
+
void intel_engines_driver_register(struct drm_i915_private *i915)
{
struct legacy_ring ring = {};
@@ -205,11 +215,19 @@ void intel_engines_driver_register(struct drm_i915_private *i915)
struct intel_engine_cs *engine =
container_of((struct rb_node *)it, typeof(*engine),
uabi_node);
- char old[sizeof(engine->name)];
if (intel_gt_has_unrecoverable_error(engine->gt))
continue; /* ignore incomplete engines */
+ /*
+ * We don't want to expose the GSC engine to the users, but we
+ * still rename it so it is easier to identify in the debug logs
+ */
+ if (engine->id == GSC0) {
+ engine_rename(engine, "gsc", 0);
+ continue;
+ }
+
GEM_BUG_ON(engine->class >= ARRAY_SIZE(uabi_classes));
engine->uabi_class = uabi_classes[engine->class];
@@ -219,11 +237,9 @@ void intel_engines_driver_register(struct drm_i915_private *i915)
i915->engine_uabi_class_count[engine->uabi_class]++;
/* Replace the internal name with the final user facing name */
- memcpy(old, engine->name, sizeof(engine->name));
- scnprintf(engine->name, sizeof(engine->name), "%s%u",
- intel_engine_class_repr(engine->class),
- engine->uabi_instance);
- DRM_DEBUG_DRIVER("renamed %s to %s\n", old, engine->name);
+ engine_rename(engine,
+ intel_engine_class_repr(engine->class),
+ engine->uabi_instance);
rb_link_node(&engine->uabi_node, prev, p);
rb_insert_color(&engine->uabi_node, &i915->uabi_engines);
diff --git a/drivers/gpu/drm/i915/gt/intel_execlists_submission.c b/drivers/gpu/drm/i915/gt/intel_execlists_submission.c
index 45b605e32c87..750326434677 100644
--- a/drivers/gpu/drm/i915/gt/intel_execlists_submission.c
+++ b/drivers/gpu/drm/i915/gt/intel_execlists_submission.c
@@ -110,6 +110,7 @@
#include <linux/string_helpers.h>
#include "i915_drv.h"
+#include "i915_reg.h"
#include "i915_trace.h"
#include "i915_vgpu.h"
#include "gen8_engine_cs.h"
@@ -2017,6 +2018,8 @@ process_csb(struct intel_engine_cs *engine, struct i915_request **inactive)
* inspecting the queue to see if we need to resumbit.
*/
if (*prev != *execlists->active) { /* elide lite-restores */
+ struct intel_context *prev_ce = NULL, *active_ce = NULL;
+
/*
* Note the inherent discrepancy between the HW runtime,
* recorded as part of the context switch, and the CPU
@@ -2028,9 +2031,15 @@ process_csb(struct intel_engine_cs *engine, struct i915_request **inactive)
* and correct overselves later when updating from HW.
*/
if (*prev)
- lrc_runtime_stop((*prev)->context);
+ prev_ce = (*prev)->context;
if (*execlists->active)
- lrc_runtime_start((*execlists->active)->context);
+ active_ce = (*execlists->active)->context;
+ if (prev_ce != active_ce) {
+ if (prev_ce)
+ lrc_runtime_stop(prev_ce);
+ if (active_ce)
+ lrc_runtime_start(active_ce);
+ }
new_timeslice(execlists);
}
@@ -2988,10 +2997,12 @@ static void execlists_reset_prepare(struct intel_engine_cs *engine)
intel_engine_stop_cs(engine);
/*
- * Wa_22011802037:gen11/gen12: In addition to stopping the cs, we need
+ * Wa_22011802037: In addition to stopping the cs, we need
* to wait for any pending mi force wakeups
*/
- if (IS_GRAPHICS_VER(engine->i915, 11, 12))
+ if (IS_MTL_GRAPHICS_STEP(engine->i915, M, STEP_A0, STEP_B0) ||
+ (GRAPHICS_VER(engine->i915) >= 11 &&
+ GRAPHICS_VER_FULL(engine->i915) < IP_VER(12, 70)))
intel_engine_wait_for_pending_mi_fw(engine);
engine->execlists.reset_ccid = active_ccid(engine);
@@ -3471,9 +3482,9 @@ logical_ring_default_vfuncs(struct intel_engine_cs *engine)
if (GRAPHICS_VER_FULL(engine->i915) >= IP_VER(12, 50)) {
if (intel_engine_has_preemption(engine))
- engine->emit_bb_start = gen125_emit_bb_start;
+ engine->emit_bb_start = xehp_emit_bb_start;
else
- engine->emit_bb_start = gen125_emit_bb_start_noarb;
+ engine->emit_bb_start = xehp_emit_bb_start_noarb;
} else {
if (intel_engine_has_preemption(engine))
engine->emit_bb_start = gen8_emit_bb_start;
@@ -3921,6 +3932,7 @@ static struct intel_context *
execlists_create_virtual(struct intel_engine_cs **siblings, unsigned int count,
unsigned long flags)
{
+ struct drm_i915_private *i915 = siblings[0]->i915;
struct virtual_engine *ve;
unsigned int n;
int err;
@@ -3929,7 +3941,7 @@ execlists_create_virtual(struct intel_engine_cs **siblings, unsigned int count,
if (!ve)
return ERR_PTR(-ENOMEM);
- ve->base.i915 = siblings[0]->i915;
+ ve->base.i915 = i915;
ve->base.gt = siblings[0]->gt;
ve->base.uncore = siblings[0]->uncore;
ve->base.id = -1;
@@ -3988,8 +4000,9 @@ execlists_create_virtual(struct intel_engine_cs **siblings, unsigned int count,
GEM_BUG_ON(!is_power_of_2(sibling->mask));
if (sibling->mask & ve->base.mask) {
- DRM_DEBUG("duplicate %s entry in load balancer\n",
- sibling->name);
+ drm_dbg(&i915->drm,
+ "duplicate %s entry in load balancer\n",
+ sibling->name);
err = -EINVAL;
goto err_put;
}
@@ -4023,8 +4036,9 @@ execlists_create_virtual(struct intel_engine_cs **siblings, unsigned int count,
*/
if (ve->base.class != OTHER_CLASS) {
if (ve->base.class != sibling->class) {
- DRM_DEBUG("invalid mixing of engine class, sibling %d, already %d\n",
- sibling->class, ve->base.class);
+ drm_dbg(&i915->drm,
+ "invalid mixing of engine class, sibling %d, already %d\n",
+ sibling->class, ve->base.class);
err = -EINVAL;
goto err_put;
}
@@ -4144,6 +4158,22 @@ void intel_execlists_show_requests(struct intel_engine_cs *engine,
spin_unlock_irqrestore(&sched_engine->lock, flags);
}
+void intel_execlists_dump_active_requests(struct intel_engine_cs *engine,
+ struct i915_request *hung_rq,
+ struct drm_printer *m)
+{
+ unsigned long flags;
+
+ spin_lock_irqsave(&engine->sched_engine->lock, flags);
+
+ intel_engine_dump_active_requests(&engine->sched_engine->requests, hung_rq, m);
+
+ drm_printf(m, "\tOn hold?: %zu\n",
+ list_count_nodes(&engine->sched_engine->hold));
+
+ spin_unlock_irqrestore(&engine->sched_engine->lock, flags);
+}
+
#if IS_ENABLED(CONFIG_DRM_I915_SELFTEST)
#include "selftest_execlists.c"
#endif
diff --git a/drivers/gpu/drm/i915/gt/intel_execlists_submission.h b/drivers/gpu/drm/i915/gt/intel_execlists_submission.h
index a1aa92c983a5..d2c7d45ea062 100644
--- a/drivers/gpu/drm/i915/gt/intel_execlists_submission.h
+++ b/drivers/gpu/drm/i915/gt/intel_execlists_submission.h
@@ -32,6 +32,10 @@ void intel_execlists_show_requests(struct intel_engine_cs *engine,
int indent),
unsigned int max);
+void intel_execlists_dump_active_requests(struct intel_engine_cs *engine,
+ struct i915_request *hung_rq,
+ struct drm_printer *m);
+
bool
intel_engine_in_execlists_submission_mode(const struct intel_engine_cs *engine);
diff --git a/drivers/gpu/drm/i915/gt/intel_ggtt.c b/drivers/gpu/drm/i915/gt/intel_ggtt.c
index 2049a00417af..3c7f1ed92f5b 100644
--- a/drivers/gpu/drm/i915/gt/intel_ggtt.c
+++ b/drivers/gpu/drm/i915/gt/intel_ggtt.c
@@ -8,9 +8,11 @@
#include <linux/types.h>
#include <linux/stop_machine.h>
+#include <drm/drm_managed.h>
#include <drm/i915_drm.h>
#include <drm/intel-gtt.h>
+#include "display/intel_display.h"
#include "gem/i915_gem_lmem.h"
#include "intel_ggtt_gmch.h"
@@ -26,13 +28,6 @@
#include "intel_gtt.h"
#include "gen8_ppgtt.h"
-static inline bool suspend_retains_ptes(struct i915_address_space *vm)
-{
- return GRAPHICS_VER(vm->i915) >= 8 &&
- !HAS_LMEM(vm->i915) &&
- vm->is_ggtt;
-}
-
static void i915_ggtt_color_adjust(const struct drm_mm_node *node,
unsigned long color,
u64 *start,
@@ -104,23 +99,6 @@ int i915_ggtt_init_hw(struct drm_i915_private *i915)
return 0;
}
-/*
- * Return the value of the last GGTT pte cast to an u64, if
- * the system is supposed to retain ptes across resume. 0 otherwise.
- */
-static u64 read_last_pte(struct i915_address_space *vm)
-{
- struct i915_ggtt *ggtt = i915_vm_to_ggtt(vm);
- gen8_pte_t __iomem *ptep;
-
- if (!suspend_retains_ptes(vm))
- return 0;
-
- GEM_BUG_ON(GRAPHICS_VER(vm->i915) < 8);
- ptep = (typeof(ptep))ggtt->gsm + (ggtt_total_entries(ggtt) - 1);
- return readq(ptep);
-}
-
/**
* i915_ggtt_suspend_vm - Suspend the memory mappings for a GGTT or DPT VM
* @vm: The VM to suspend the mappings for
@@ -184,10 +162,7 @@ retry:
i915_gem_object_unlock(obj);
}
- if (!suspend_retains_ptes(vm))
- vm->clear_range(vm, 0, vm->total);
- else
- i915_vm_to_ggtt(vm)->probed_pte = read_last_pte(vm);
+ vm->clear_range(vm, 0, vm->total);
vm->skip_pte_rewrite = save_skip_rewrite;
@@ -196,10 +171,13 @@ retry:
void i915_ggtt_suspend(struct i915_ggtt *ggtt)
{
+ struct intel_gt *gt;
+
i915_ggtt_suspend_vm(&ggtt->vm);
ggtt->invalidate(ggtt);
- intel_gt_check_and_clear_faults(ggtt->vm.gt);
+ list_for_each_entry(gt, &ggtt->gt_list, ggtt_link)
+ intel_gt_check_and_clear_faults(gt);
}
void gen6_ggtt_invalidate(struct i915_ggtt *ggtt)
@@ -225,16 +203,21 @@ static void gen8_ggtt_invalidate(struct i915_ggtt *ggtt)
static void guc_ggtt_invalidate(struct i915_ggtt *ggtt)
{
- struct intel_uncore *uncore = ggtt->vm.gt->uncore;
struct drm_i915_private *i915 = ggtt->vm.i915;
gen8_ggtt_invalidate(ggtt);
- if (GRAPHICS_VER(i915) >= 12)
- intel_uncore_write_fw(uncore, GEN12_GUC_TLB_INV_CR,
- GEN12_GUC_TLB_INV_CR_INVALIDATE);
- else
- intel_uncore_write_fw(uncore, GEN8_GTCR, GEN8_GTCR_INVALIDATE);
+ if (GRAPHICS_VER(i915) >= 12) {
+ struct intel_gt *gt;
+
+ list_for_each_entry(gt, &ggtt->gt_list, ggtt_link)
+ intel_uncore_write_fw(gt->uncore,
+ GEN12_GUC_TLB_INV_CR,
+ GEN12_GUC_TLB_INV_CR_INVALIDATE);
+ } else {
+ intel_uncore_write_fw(ggtt->vm.gt->uncore,
+ GEN8_GTCR, GEN8_GTCR_INVALIDATE);
+ }
}
u64 gen8_ggtt_pte_encode(dma_addr_t addr,
@@ -287,8 +270,11 @@ static void gen8_ggtt_insert_entries(struct i915_address_space *vm,
*/
gte = (gen8_pte_t __iomem *)ggtt->gsm;
- gte += vma_res->start / I915_GTT_PAGE_SIZE;
- end = gte + vma_res->node_size / I915_GTT_PAGE_SIZE;
+ gte += (vma_res->start - vma_res->guard) / I915_GTT_PAGE_SIZE;
+ end = gte + vma_res->guard / I915_GTT_PAGE_SIZE;
+ while (gte < end)
+ gen8_set_pte(gte++, vm->scratch[0]->encode);
+ end += (vma_res->node_size + vma_res->guard) / I915_GTT_PAGE_SIZE;
for_each_sgt_daddr(addr, iter, vma_res->bi.pages)
gen8_set_pte(gte++, pte_encode | addr);
@@ -305,6 +291,27 @@ static void gen8_ggtt_insert_entries(struct i915_address_space *vm,
ggtt->invalidate(ggtt);
}
+static void gen8_ggtt_clear_range(struct i915_address_space *vm,
+ u64 start, u64 length)
+{
+ struct i915_ggtt *ggtt = i915_vm_to_ggtt(vm);
+ unsigned int first_entry = start / I915_GTT_PAGE_SIZE;
+ unsigned int num_entries = length / I915_GTT_PAGE_SIZE;
+ const gen8_pte_t scratch_pte = vm->scratch[0]->encode;
+ gen8_pte_t __iomem *gtt_base =
+ (gen8_pte_t __iomem *)ggtt->gsm + first_entry;
+ const int max_entries = ggtt_total_entries(ggtt) - first_entry;
+ int i;
+
+ if (WARN(num_entries > max_entries,
+ "First entry = %d; Num entries = %d (max=%d)\n",
+ first_entry, num_entries, max_entries))
+ num_entries = max_entries;
+
+ for (i = 0; i < num_entries; i++)
+ gen8_set_pte(&gtt_base[i], scratch_pte);
+}
+
static void gen6_ggtt_insert_page(struct i915_address_space *vm,
dma_addr_t addr,
u64 offset,
@@ -338,9 +345,12 @@ static void gen6_ggtt_insert_entries(struct i915_address_space *vm,
dma_addr_t addr;
gte = (gen6_pte_t __iomem *)ggtt->gsm;
- gte += vma_res->start / I915_GTT_PAGE_SIZE;
- end = gte + vma_res->node_size / I915_GTT_PAGE_SIZE;
+ gte += (vma_res->start - vma_res->guard) / I915_GTT_PAGE_SIZE;
+ end = gte + vma_res->guard / I915_GTT_PAGE_SIZE;
+ while (gte < end)
+ iowrite32(vm->scratch[0]->encode, gte++);
+ end += (vma_res->node_size + vma_res->guard) / I915_GTT_PAGE_SIZE;
for_each_sgt_daddr(addr, iter, vma_res->bi.pages)
iowrite32(vm->pte_encode(addr, level, flags), gte++);
GEM_BUG_ON(gte > end);
@@ -361,27 +371,6 @@ static void nop_clear_range(struct i915_address_space *vm,
{
}
-static void gen8_ggtt_clear_range(struct i915_address_space *vm,
- u64 start, u64 length)
-{
- struct i915_ggtt *ggtt = i915_vm_to_ggtt(vm);
- unsigned int first_entry = start / I915_GTT_PAGE_SIZE;
- unsigned int num_entries = length / I915_GTT_PAGE_SIZE;
- const gen8_pte_t scratch_pte = vm->scratch[0]->encode;
- gen8_pte_t __iomem *gtt_base =
- (gen8_pte_t __iomem *)ggtt->gsm + first_entry;
- const int max_entries = ggtt_total_entries(ggtt) - first_entry;
- int i;
-
- if (WARN(num_entries > max_entries,
- "First entry = %d; Num entries = %d (max=%d)\n",
- first_entry, num_entries, max_entries))
- num_entries = max_entries;
-
- for (i = 0; i < num_entries; i++)
- gen8_set_pte(&gtt_base[i], scratch_pte);
-}
-
static void bxt_vtd_ggtt_wa(struct i915_address_space *vm)
{
/*
@@ -551,8 +540,6 @@ static int init_ggtt(struct i915_ggtt *ggtt)
struct drm_mm_node *entry;
int ret;
- ggtt->pte_lost = true;
-
/*
* GuC requires all resources that we're sharing with it to be placed in
* non-WOPCM memory. If GuC is not present or not in use we still need a
@@ -560,7 +547,7 @@ static int init_ggtt(struct i915_ggtt *ggtt)
* why.
*/
ggtt->pin_bias = max_t(u32, I915_GTT_PAGE_SIZE,
- intel_wopcm_guc_size(&ggtt->vm.i915->wopcm));
+ intel_wopcm_guc_size(&ggtt->vm.gt->wopcm));
ret = intel_vgt_balloon(ggtt);
if (ret)
@@ -585,8 +572,12 @@ static int init_ggtt(struct i915_ggtt *ggtt)
* paths, and we trust that 0 will remain reserved. However,
* the only likely reason for failure to insert is a driver
* bug, which we expect to cause other failures...
+ *
+ * Since CPU can perform speculative reads on error capture
+ * (write-combining allows it) add scratch page after error
+ * capture to avoid DMAR errors.
*/
- ggtt->error_capture.size = I915_GTT_PAGE_SIZE;
+ ggtt->error_capture.size = 2 * I915_GTT_PAGE_SIZE;
ggtt->error_capture.color = I915_COLOR_UNEVICTABLE;
if (drm_mm_reserve_node(&ggtt->vm.mm, &ggtt->error_capture))
drm_mm_insert_node_in_range(&ggtt->vm.mm,
@@ -596,11 +587,15 @@ static int init_ggtt(struct i915_ggtt *ggtt)
0, ggtt->mappable_end,
DRM_MM_INSERT_LOW);
}
- if (drm_mm_node_allocated(&ggtt->error_capture))
+ if (drm_mm_node_allocated(&ggtt->error_capture)) {
+ u64 start = ggtt->error_capture.start;
+ u64 size = ggtt->error_capture.size;
+
+ ggtt->vm.scratch_range(&ggtt->vm, start, size);
drm_dbg(&ggtt->vm.i915->drm,
"Reserved GGTT:[%llx, %llx] for use by error capture\n",
- ggtt->error_capture.start,
- ggtt->error_capture.start + ggtt->error_capture.size);
+ start, start + size);
+ }
/*
* The upper portion of the GuC address space has a sizeable hole
@@ -871,8 +866,8 @@ static int ggtt_probe_common(struct i915_ggtt *ggtt, u64 size)
u32 pte_flags;
int ret;
- GEM_WARN_ON(pci_resource_len(pdev, GTTMMADR_BAR) != gen6_gttmmadr_size(i915));
- phys_addr = pci_resource_start(pdev, GTTMMADR_BAR) + gen6_gttadr_offset(i915);
+ GEM_WARN_ON(pci_resource_len(pdev, GEN4_GTTMMADR_BAR) != gen6_gttmmadr_size(i915));
+ phys_addr = pci_resource_start(pdev, GEN4_GTTMMADR_BAR) + gen6_gttadr_offset(i915);
/*
* On BXT+/ICL+ writes larger than 64 bit to the GTT pagetable range
@@ -920,8 +915,8 @@ static void gen6_gmch_remove(struct i915_address_space *vm)
static struct resource pci_resource(struct pci_dev *pdev, int bar)
{
- return (struct resource)DEFINE_RES_MEM(pci_resource_start(pdev, bar),
- pci_resource_len(pdev, bar));
+ return DEFINE_RES_MEM(pci_resource_start(pdev, bar),
+ pci_resource_len(pdev, bar));
}
static int gen8_gmch_probe(struct i915_ggtt *ggtt)
@@ -931,11 +926,11 @@ static int gen8_gmch_probe(struct i915_ggtt *ggtt)
unsigned int size;
u16 snb_gmch_ctl;
- if (!HAS_LMEM(i915)) {
- if (!i915_pci_resource_valid(pdev, GTT_APERTURE_BAR))
+ if (!HAS_LMEM(i915) && !HAS_LMEMBAR_SMEM_STOLEN(i915)) {
+ if (!i915_pci_resource_valid(pdev, GEN4_GMADR_BAR))
return -ENXIO;
- ggtt->gmadr = pci_resource(pdev, GTT_APERTURE_BAR);
+ ggtt->gmadr = pci_resource(pdev, GEN4_GMADR_BAR);
ggtt->mappable_end = resource_size(&ggtt->gmadr);
}
@@ -953,8 +948,7 @@ static int gen8_gmch_probe(struct i915_ggtt *ggtt)
ggtt->vm.cleanup = gen6_gmch_remove;
ggtt->vm.insert_page = gen8_ggtt_insert_page;
ggtt->vm.clear_range = nop_clear_range;
- if (intel_scanout_needs_vtd_wa(i915))
- ggtt->vm.clear_range = gen8_ggtt_clear_range;
+ ggtt->vm.scratch_range = gen8_ggtt_clear_range;
ggtt->vm.insert_entries = gen8_ggtt_insert_entries;
@@ -979,15 +973,16 @@ static int gen8_gmch_probe(struct i915_ggtt *ggtt)
I915_VMA_GLOBAL_BIND | I915_VMA_LOCAL_BIND;
}
- ggtt->invalidate = gen8_ggtt_invalidate;
+ if (intel_uc_wants_guc(&ggtt->vm.gt->uc))
+ ggtt->invalidate = guc_ggtt_invalidate;
+ else
+ ggtt->invalidate = gen8_ggtt_invalidate;
ggtt->vm.vma_ops.bind_vma = intel_ggtt_bind_vma;
ggtt->vm.vma_ops.unbind_vma = intel_ggtt_unbind_vma;
ggtt->vm.pte_encode = gen8_ggtt_pte_encode;
- setup_private_pat(ggtt->vm.gt->uncore);
-
return ggtt_probe_common(ggtt, size);
}
@@ -1089,10 +1084,10 @@ static int gen6_gmch_probe(struct i915_ggtt *ggtt)
unsigned int size;
u16 snb_gmch_ctl;
- if (!i915_pci_resource_valid(pdev, GTT_APERTURE_BAR))
+ if (!i915_pci_resource_valid(pdev, GEN4_GMADR_BAR))
return -ENXIO;
- ggtt->gmadr = pci_resource(pdev, GTT_APERTURE_BAR);
+ ggtt->gmadr = pci_resource(pdev, GEN4_GMADR_BAR);
ggtt->mappable_end = resource_size(&ggtt->gmadr);
/*
@@ -1115,8 +1110,9 @@ static int gen6_gmch_probe(struct i915_ggtt *ggtt)
ggtt->vm.alloc_scratch_dma = alloc_pt_dma;
ggtt->vm.clear_range = nop_clear_range;
- if (!HAS_FULL_PPGTT(i915) || intel_scanout_needs_vtd_wa(i915))
+ if (!HAS_FULL_PPGTT(i915))
ggtt->vm.clear_range = gen6_ggtt_clear_range;
+ ggtt->vm.scratch_range = gen6_ggtt_clear_range;
ggtt->vm.insert_page = gen6_ggtt_insert_page;
ggtt->vm.insert_entries = gen6_ggtt_insert_entries;
ggtt->vm.cleanup = gen6_gmch_remove;
@@ -1196,7 +1192,14 @@ static int ggtt_probe_hw(struct i915_ggtt *ggtt, struct intel_gt *gt)
*/
int i915_ggtt_probe_hw(struct drm_i915_private *i915)
{
- int ret;
+ struct intel_gt *gt;
+ int ret, i;
+
+ for_each_gt(gt, i915, i) {
+ ret = intel_gt_assign_ggtt(gt);
+ if (ret)
+ return ret;
+ }
ret = ggtt_probe_hw(to_gt(i915)->ggtt, to_gt(i915));
if (ret)
@@ -1208,35 +1211,25 @@ int i915_ggtt_probe_hw(struct drm_i915_private *i915)
return 0;
}
-int i915_ggtt_enable_hw(struct drm_i915_private *i915)
+struct i915_ggtt *i915_ggtt_create(struct drm_i915_private *i915)
{
- if (GRAPHICS_VER(i915) < 6)
- return intel_ggtt_gmch_enable_hw(i915);
+ struct i915_ggtt *ggtt;
- return 0;
-}
+ ggtt = drmm_kzalloc(&i915->drm, sizeof(*ggtt), GFP_KERNEL);
+ if (!ggtt)
+ return ERR_PTR(-ENOMEM);
-void i915_ggtt_enable_guc(struct i915_ggtt *ggtt)
-{
- GEM_BUG_ON(ggtt->invalidate != gen8_ggtt_invalidate);
+ INIT_LIST_HEAD(&ggtt->gt_list);
- ggtt->invalidate = guc_ggtt_invalidate;
-
- ggtt->invalidate(ggtt);
+ return ggtt;
}
-void i915_ggtt_disable_guc(struct i915_ggtt *ggtt)
+int i915_ggtt_enable_hw(struct drm_i915_private *i915)
{
- /* XXX Temporary pardon for error unload */
- if (ggtt->invalidate == gen8_ggtt_invalidate)
- return;
-
- /* We should only be called after i915_ggtt_enable_guc() */
- GEM_BUG_ON(ggtt->invalidate != guc_ggtt_invalidate);
-
- ggtt->invalidate = gen8_ggtt_invalidate;
+ if (GRAPHICS_VER(i915) < 6)
+ return intel_ggtt_gmch_enable_hw(i915);
- ggtt->invalidate(ggtt);
+ return 0;
}
/**
@@ -1253,20 +1246,11 @@ bool i915_ggtt_resume_vm(struct i915_address_space *vm)
{
struct i915_vma *vma;
bool write_domain_objs = false;
- bool retained_ptes;
drm_WARN_ON(&vm->i915->drm, !vm->is_ggtt && !vm->is_dpt);
- /*
- * First fill our portion of the GTT with scratch pages if
- * they were not retained across suspend.
- */
- retained_ptes = suspend_retains_ptes(vm) &&
- !i915_vm_to_ggtt(vm)->pte_lost &&
- !GEM_WARN_ON(i915_vm_to_ggtt(vm)->probed_pte != read_last_pte(vm));
-
- if (!retained_ptes)
- vm->clear_range(vm, 0, vm->total);
+ /* First fill our portion of the GTT with scratch pages */
+ vm->clear_range(vm, 0, vm->total);
/* clflush objects bound into the GGTT and rebind them. */
list_for_each_entry(vma, &vm->bound_list, vm_link) {
@@ -1275,16 +1259,16 @@ bool i915_ggtt_resume_vm(struct i915_address_space *vm)
atomic_read(&vma->flags) & I915_VMA_BIND_MASK;
GEM_BUG_ON(!was_bound);
- if (!retained_ptes) {
- /*
- * Clear the bound flags of the vma resource to allow
- * ptes to be repopulated.
- */
- vma->resource->bound_flags = 0;
- vma->ops->bind_vma(vm, NULL, vma->resource,
- obj ? obj->cache_level : 0,
- was_bound);
- }
+
+ /*
+ * Clear the bound flags of the vma resource to allow
+ * ptes to be repopulated.
+ */
+ vma->resource->bound_flags = 0;
+ vma->ops->bind_vma(vm, NULL, vma->resource,
+ obj ? obj->cache_level : 0,
+ was_bound);
+
if (obj) { /* only used during resume => exclusive access */
write_domain_objs |= fetch_and_zero(&obj->write_domain);
obj->read_domains |= I915_GEM_DOMAIN_GTT;
@@ -1296,24 +1280,22 @@ bool i915_ggtt_resume_vm(struct i915_address_space *vm)
void i915_ggtt_resume(struct i915_ggtt *ggtt)
{
+ struct intel_gt *gt;
bool flush;
- intel_gt_check_and_clear_faults(ggtt->vm.gt);
+ list_for_each_entry(gt, &ggtt->gt_list, ggtt_link)
+ intel_gt_check_and_clear_faults(gt);
flush = i915_ggtt_resume_vm(&ggtt->vm);
+ if (drm_mm_node_allocated(&ggtt->error_capture))
+ ggtt->vm.scratch_range(&ggtt->vm, ggtt->error_capture.start,
+ ggtt->error_capture.size);
+
ggtt->invalidate(ggtt);
if (flush)
wbinvd_on_all_cpus();
- if (GRAPHICS_VER(ggtt->vm.i915) >= 8)
- setup_private_pat(ggtt->vm.gt->uncore);
-
intel_ggtt_restore_fences(ggtt);
}
-
-void i915_ggtt_mark_pte_lost(struct drm_i915_private *i915, bool val)
-{
- to_gt(i915)->ggtt->pte_lost = val;
-}
diff --git a/drivers/gpu/drm/i915/gt/intel_ggtt_fencing.c b/drivers/gpu/drm/i915/gt/intel_ggtt_fencing.c
index ea775e601686..37d0b0fe791d 100644
--- a/drivers/gpu/drm/i915/gt/intel_ggtt_fencing.c
+++ b/drivers/gpu/drm/i915/gt/intel_ggtt_fencing.c
@@ -5,6 +5,7 @@
#include <linux/highmem.h>
+#include "display/intel_display.h"
#include "i915_drv.h"
#include "i915_reg.h"
#include "i915_scatterlist.h"
@@ -220,7 +221,8 @@ static int fence_update(struct i915_fence_reg *fence,
return ret;
}
- fence->start = vma->node.start;
+ GEM_BUG_ON(vma->fence_size > i915_vma_size(vma));
+ fence->start = i915_ggtt_offset(vma);
fence->size = vma->fence_size;
fence->stride = i915_gem_object_get_stride(vma->obj);
fence->tiling = i915_gem_object_get_tiling(vma->obj);
@@ -816,8 +818,8 @@ i915_gem_object_save_bit_17_swizzle(struct drm_i915_gem_object *obj,
if (obj->bit_17 == NULL) {
obj->bit_17 = bitmap_zalloc(page_count, GFP_KERNEL);
if (obj->bit_17 == NULL) {
- DRM_ERROR("Failed to allocate memory for bit 17 "
- "record\n");
+ drm_err(&to_i915(obj->base.dev)->drm,
+ "Failed to allocate memory for bit 17 record\n");
return;
}
}
diff --git a/drivers/gpu/drm/i915/gt/intel_ggtt_gmch.c b/drivers/gpu/drm/i915/gt/intel_ggtt_gmch.c
index 4e2163a1aa46..d6a74ae2527b 100644
--- a/drivers/gpu/drm/i915/gt/intel_ggtt_gmch.c
+++ b/drivers/gpu/drm/i915/gt/intel_ggtt_gmch.c
@@ -6,7 +6,6 @@
#include "intel_ggtt_gmch.h"
#include <drm/intel-gtt.h>
-#include <drm/i915_drm.h>
#include <linux/agp_backend.h>
@@ -81,7 +80,7 @@ int intel_ggtt_gmch_probe(struct i915_ggtt *ggtt)
phys_addr_t gmadr_base;
int ret;
- ret = intel_gmch_probe(i915->bridge_dev, to_pci_dev(i915->drm.dev), NULL);
+ ret = intel_gmch_probe(i915->gmch.pdev, to_pci_dev(i915->drm.dev), NULL);
if (!ret) {
drm_err(&i915->drm, "failed to set up gmch\n");
return -EIO;
@@ -89,8 +88,7 @@ int intel_ggtt_gmch_probe(struct i915_ggtt *ggtt)
intel_gmch_gtt_get(&ggtt->vm.total, &gmadr_base, &ggtt->mappable_end);
- ggtt->gmadr =
- (struct resource)DEFINE_RES_MEM(gmadr_base, ggtt->mappable_end);
+ ggtt->gmadr = DEFINE_RES_MEM(gmadr_base, ggtt->mappable_end);
ggtt->vm.alloc_pt_dma = alloc_pt_dma;
ggtt->vm.alloc_scratch_dma = alloc_pt_dma;
@@ -104,6 +102,7 @@ int intel_ggtt_gmch_probe(struct i915_ggtt *ggtt)
ggtt->vm.insert_page = gmch_ggtt_insert_page;
ggtt->vm.insert_entries = gmch_ggtt_insert_entries;
ggtt->vm.clear_range = gmch_ggtt_clear_range;
+ ggtt->vm.scratch_range = gmch_ggtt_clear_range;
ggtt->vm.cleanup = gmch_ggtt_remove;
ggtt->invalidate = gmch_ggtt_invalidate;
diff --git a/drivers/gpu/drm/i915/gt/intel_gpu_commands.h b/drivers/gpu/drm/i915/gt/intel_gpu_commands.h
index d4e9702d3c8e..5d143e2a8db0 100644
--- a/drivers/gpu/drm/i915/gt/intel_gpu_commands.h
+++ b/drivers/gpu/drm/i915/gt/intel_gpu_commands.h
@@ -21,6 +21,7 @@
#define INSTR_CLIENT_SHIFT 29
#define INSTR_MI_CLIENT 0x0
#define INSTR_BC_CLIENT 0x2
+#define INSTR_GSC_CLIENT 0x2 /* MTL+ */
#define INSTR_RC_CLIENT 0x3
#define INSTR_SUBCLIENT_SHIFT 27
#define INSTR_SUBCLIENT_MASK 0x18000000
@@ -187,6 +188,10 @@
#define MI_BATCH_RESOURCE_STREAMER REG_BIT(10)
#define MI_BATCH_PREDICATE REG_BIT(15) /* HSW+ on RCS only*/
+#define MI_OPCODE(x) (((x) >> 23) & 0x3f)
+#define IS_MI_LRI_CMD(x) (MI_OPCODE(x) == MI_OPCODE(MI_INSTR(0x22, 0)))
+#define MI_LRI_LEN(x) (((x) & 0xff) + 1)
+
/*
* 3D instructions used by the kernel
*/
@@ -389,6 +394,7 @@
#define MI_LOAD_URB_MEM MI_INSTR(0x2C, 0)
#define MI_STORE_URB_MEM MI_INSTR(0x2D, 0)
#define MI_CONDITIONAL_BATCH_BUFFER_END MI_INSTR(0x36, 0)
+#define MI_DO_COMPARE REG_BIT(21)
#define STATE_BASE_ADDRESS \
((0x3 << 29) | (0x0 << 27) | (0x1 << 24) | (0x1 << 16))
@@ -428,6 +434,14 @@
#define COLOR_BLT ((0x2<<29)|(0x40<<22))
#define SRC_COPY_BLT ((0x2<<29)|(0x43<<22))
+#define GSC_INSTR(opcode, data, flags) \
+ (__INSTR(INSTR_GSC_CLIENT) | (opcode) << 22 | (data) << 9 | (flags))
+
+#define GSC_FW_LOAD GSC_INSTR(1, 0, 2)
+#define HECI1_FW_LIMIT_VALID (1 << 31)
+
+#define GSC_HECI_CMD_PKT GSC_INSTR(0, 0, 6)
+
/*
* Used to convert any address to canonical form.
* Starting from gen8, some commands (e.g. STATE_BASE_ADDRESS,
diff --git a/drivers/gpu/drm/i915/gt/intel_gsc.c b/drivers/gpu/drm/i915/gt/intel_gsc.c
index 7af6db3194dd..bcc3605158db 100644
--- a/drivers/gpu/drm/i915/gt/intel_gsc.c
+++ b/drivers/gpu/drm/i915/gt/intel_gsc.c
@@ -7,6 +7,7 @@
#include <linux/mei_aux.h>
#include "i915_drv.h"
#include "i915_reg.h"
+#include "gem/i915_gem_lmem.h"
#include "gem/i915_gem_region.h"
#include "gt/intel_gsc.h"
#include "gt/intel_gt.h"
@@ -142,8 +143,14 @@ static void gsc_destroy_one(struct drm_i915_private *i915,
struct intel_gsc_intf *intf = &gsc->intf[intf_id];
if (intf->adev) {
- auxiliary_device_delete(&intf->adev->aux_dev);
- auxiliary_device_uninit(&intf->adev->aux_dev);
+ struct auxiliary_device *aux_dev = &intf->adev->aux_dev;
+
+ if (intf_id == 0)
+ intel_huc_unregister_gsc_notifier(&gsc_to_gt(gsc)->uc.huc,
+ aux_dev->dev.bus);
+
+ auxiliary_device_delete(aux_dev);
+ auxiliary_device_uninit(aux_dev);
intf->adev = NULL;
}
@@ -167,6 +174,14 @@ static void gsc_init_one(struct drm_i915_private *i915, struct intel_gsc *gsc,
intf->irq = -1;
intf->id = intf_id;
+ /*
+ * On the multi-tile setups the GSC is functional on the first tile only
+ */
+ if (gsc_to_gt(gsc)->info.id != 0) {
+ drm_dbg(&i915->drm, "Not initializing gsc for remote tiles\n");
+ return;
+ }
+
if (intf_id == 0 && !HAS_HECI_PXP(i915))
return;
@@ -242,14 +257,24 @@ add_device:
goto fail;
}
+ intf->adev = adev; /* needed by the notifier */
+
+ if (intf_id == 0)
+ intel_huc_register_gsc_notifier(&gsc_to_gt(gsc)->uc.huc,
+ aux_dev->dev.bus);
+
ret = auxiliary_device_add(aux_dev);
if (ret < 0) {
drm_err(&i915->drm, "gsc aux add failed %d\n", ret);
+ if (intf_id == 0)
+ intel_huc_unregister_gsc_notifier(&gsc_to_gt(gsc)->uc.huc,
+ aux_dev->dev.bus);
+ intf->adev = NULL;
+
/* adev will be freed with the put_device() and .release sequence */
auxiliary_device_uninit(aux_dev);
goto fail;
}
- intf->adev = adev;
return;
fail:
diff --git a/drivers/gpu/drm/i915/gt/intel_gsc.h b/drivers/gpu/drm/i915/gt/intel_gsc.h
index fcac1775e9c3..7ab3ca0f9f26 100644
--- a/drivers/gpu/drm/i915/gt/intel_gsc.h
+++ b/drivers/gpu/drm/i915/gt/intel_gsc.h
@@ -33,7 +33,7 @@ struct intel_gsc {
} intf[INTEL_GSC_NUM_INTERFACES];
};
-void intel_gsc_init(struct intel_gsc *gsc, struct drm_i915_private *dev_priv);
+void intel_gsc_init(struct intel_gsc *gsc, struct drm_i915_private *i915);
void intel_gsc_fini(struct intel_gsc *gsc);
void intel_gsc_irq_handler(struct intel_gt *gt, u32 iir);
diff --git a/drivers/gpu/drm/i915/gt/intel_gt.c b/drivers/gpu/drm/i915/gt/intel_gt.c
index d0b03a928b9a..7a008e829d4d 100644
--- a/drivers/gpu/drm/i915/gt/intel_gt.c
+++ b/drivers/gpu/drm/i915/gt/intel_gt.c
@@ -8,10 +8,10 @@
#include "gem/i915_gem_internal.h"
#include "gem/i915_gem_lmem.h"
-#include "pxp/intel_pxp.h"
#include "i915_drv.h"
#include "i915_perf_oa_regs.h"
+#include "i915_reg.h"
#include "intel_context.h"
#include "intel_engine_pm.h"
#include "intel_engine_regs.h"
@@ -22,12 +22,12 @@
#include "intel_gt_debugfs.h"
#include "intel_gt_mcr.h"
#include "intel_gt_pm.h"
+#include "intel_gt_print.h"
#include "intel_gt_regs.h"
#include "intel_gt_requests.h"
#include "intel_migrate.h"
#include "intel_mocs.h"
#include "intel_pci_config.h"
-#include "intel_pm.h"
#include "intel_rc6.h"
#include "intel_renderstate.h"
#include "intel_rps.h"
@@ -40,8 +40,6 @@ void intel_gt_common_init_early(struct intel_gt *gt)
{
spin_lock_init(gt->irq_lock);
- INIT_LIST_HEAD(&gt->lmem_userfault_list);
- mutex_init(&gt->lmem_userfault_lock);
INIT_LIST_HEAD(&gt->closed_vma);
spin_lock_init(&gt->closed_lock);
@@ -56,6 +54,7 @@ void intel_gt_common_init_early(struct intel_gt *gt)
seqcount_mutex_init(&gt->tlb.seqno, &gt->tlb.invalidate_lock);
intel_gt_pm_init_early(gt);
+ intel_wopcm_init_early(&gt->wopcm);
intel_uc_init_early(&gt->uc);
intel_rps_init_early(&gt->rps);
}
@@ -90,9 +89,8 @@ static int intel_gt_probe_lmem(struct intel_gt *gt)
if (err == -ENODEV)
return 0;
- drm_err(&i915->drm,
- "Failed to setup region(%d) type=%d\n",
- err, INTEL_MEMORY_LOCAL);
+ gt_err(gt, "Failed to setup region(%d) type=%d\n",
+ err, INTEL_MEMORY_LOCAL);
return err;
}
@@ -110,9 +108,18 @@ static int intel_gt_probe_lmem(struct intel_gt *gt)
int intel_gt_assign_ggtt(struct intel_gt *gt)
{
- gt->ggtt = drmm_kzalloc(&gt->i915->drm, sizeof(*gt->ggtt), GFP_KERNEL);
+ /* Media GT shares primary GT's GGTT */
+ if (gt->type == GT_MEDIA) {
+ gt->ggtt = to_gt(gt->i915)->ggtt;
+ } else {
+ gt->ggtt = i915_ggtt_create(gt->i915);
+ if (IS_ERR(gt->ggtt))
+ return PTR_ERR(gt->ggtt);
+ }
- return gt->ggtt ? 0 : -ENOMEM;
+ list_add_tail(&gt->ggtt_link, &gt->ggtt->gt_list);
+
+ return 0;
}
int intel_gt_init_mmio(struct intel_gt *gt)
@@ -192,14 +199,14 @@ int intel_gt_init_hw(struct intel_gt *gt)
ret = i915_ppgtt_init_hw(gt);
if (ret) {
- DRM_ERROR("Enabling PPGTT failed (%d)\n", ret);
+ gt_err(gt, "Enabling PPGTT failed (%d)\n", ret);
goto out;
}
/* We can't enable contexts until all firmware is loaded */
ret = intel_uc_init_hw(&gt->uc);
if (ret) {
- i915_probe_error(i915, "Enabling uc failed (%d)\n", ret);
+ gt_probe_error(gt, "Enabling uc failed (%d)\n", ret);
goto out;
}
@@ -210,25 +217,20 @@ out:
return ret;
}
-static void rmw_set(struct intel_uncore *uncore, i915_reg_t reg, u32 set)
-{
- intel_uncore_rmw(uncore, reg, 0, set);
-}
-
-static void rmw_clear(struct intel_uncore *uncore, i915_reg_t reg, u32 clr)
+static void gen6_clear_engine_error_register(struct intel_engine_cs *engine)
{
- intel_uncore_rmw(uncore, reg, clr, 0);
+ GEN6_RING_FAULT_REG_RMW(engine, RING_FAULT_VALID, 0);
+ GEN6_RING_FAULT_REG_POSTING_READ(engine);
}
-static void clear_register(struct intel_uncore *uncore, i915_reg_t reg)
+i915_reg_t intel_gt_perf_limit_reasons_reg(struct intel_gt *gt)
{
- intel_uncore_rmw(uncore, reg, 0, 0);
-}
+ /* GT0_PERF_LIMIT_REASONS is available only for Gen11+ */
+ if (GRAPHICS_VER(gt->i915) < 11)
+ return INVALID_MMIO_REG;
-static void gen6_clear_engine_error_register(struct intel_engine_cs *engine)
-{
- GEN6_RING_FAULT_REG_RMW(engine, RING_FAULT_VALID, 0);
- GEN6_RING_FAULT_REG_POSTING_READ(engine);
+ return gt->type == GT_MEDIA ?
+ MTL_MEDIA_PERF_LIMIT_REASONS : GT0_PERF_LIMIT_REASONS;
}
void
@@ -240,31 +242,35 @@ intel_gt_clear_error_registers(struct intel_gt *gt,
u32 eir;
if (GRAPHICS_VER(i915) != 2)
- clear_register(uncore, PGTBL_ER);
+ intel_uncore_write(uncore, PGTBL_ER, 0);
if (GRAPHICS_VER(i915) < 4)
- clear_register(uncore, IPEIR(RENDER_RING_BASE));
+ intel_uncore_write(uncore, IPEIR(RENDER_RING_BASE), 0);
else
- clear_register(uncore, IPEIR_I965);
+ intel_uncore_write(uncore, IPEIR_I965, 0);
- clear_register(uncore, EIR);
+ intel_uncore_write(uncore, EIR, 0);
eir = intel_uncore_read(uncore, EIR);
if (eir) {
/*
* some errors might have become stuck,
* mask them.
*/
- DRM_DEBUG_DRIVER("EIR stuck: 0x%08x, masking\n", eir);
- rmw_set(uncore, EMR, eir);
+ gt_dbg(gt, "EIR stuck: 0x%08x, masking\n", eir);
+ intel_uncore_rmw(uncore, EMR, 0, eir);
intel_uncore_write(uncore, GEN2_IIR,
I915_MASTER_ERROR_INTERRUPT);
}
- if (GRAPHICS_VER(i915) >= 12) {
- rmw_clear(uncore, GEN12_RING_FAULT_REG, RING_FAULT_VALID);
+ if (GRAPHICS_VER_FULL(i915) >= IP_VER(12, 50)) {
+ intel_gt_mcr_multicast_rmw(gt, XEHP_RING_FAULT_REG,
+ RING_FAULT_VALID, 0);
+ intel_gt_mcr_read_any(gt, XEHP_RING_FAULT_REG);
+ } else if (GRAPHICS_VER(i915) >= 12) {
+ intel_uncore_rmw(uncore, GEN12_RING_FAULT_REG, RING_FAULT_VALID, 0);
intel_uncore_posting_read(uncore, GEN12_RING_FAULT_REG);
} else if (GRAPHICS_VER(i915) >= 8) {
- rmw_clear(uncore, GEN8_RING_FAULT_REG, RING_FAULT_VALID);
+ intel_uncore_rmw(uncore, GEN8_RING_FAULT_REG, RING_FAULT_VALID, 0);
intel_uncore_posting_read(uncore, GEN8_RING_FAULT_REG);
} else if (GRAPHICS_VER(i915) >= 6) {
struct intel_engine_cs *engine;
@@ -284,20 +290,56 @@ static void gen6_check_faults(struct intel_gt *gt)
for_each_engine(engine, gt, id) {
fault = GEN6_RING_FAULT_REG_READ(engine);
if (fault & RING_FAULT_VALID) {
- drm_dbg(&engine->i915->drm, "Unexpected fault\n"
- "\tAddr: 0x%08lx\n"
- "\tAddress space: %s\n"
- "\tSource ID: %d\n"
- "\tType: %d\n",
- fault & PAGE_MASK,
- fault & RING_FAULT_GTTSEL_MASK ?
- "GGTT" : "PPGTT",
- RING_FAULT_SRCID(fault),
- RING_FAULT_FAULT_TYPE(fault));
+ gt_dbg(gt, "Unexpected fault\n"
+ "\tAddr: 0x%08lx\n"
+ "\tAddress space: %s\n"
+ "\tSource ID: %d\n"
+ "\tType: %d\n",
+ fault & PAGE_MASK,
+ fault & RING_FAULT_GTTSEL_MASK ?
+ "GGTT" : "PPGTT",
+ RING_FAULT_SRCID(fault),
+ RING_FAULT_FAULT_TYPE(fault));
}
}
}
+static void xehp_check_faults(struct intel_gt *gt)
+{
+ u32 fault;
+
+ /*
+ * Although the fault register now lives in an MCR register range,
+ * the GAM registers are special and we only truly need to read
+ * the "primary" GAM instance rather than handling each instance
+ * individually. intel_gt_mcr_read_any() will automatically steer
+ * toward the primary instance.
+ */
+ fault = intel_gt_mcr_read_any(gt, XEHP_RING_FAULT_REG);
+ if (fault & RING_FAULT_VALID) {
+ u32 fault_data0, fault_data1;
+ u64 fault_addr;
+
+ fault_data0 = intel_gt_mcr_read_any(gt, XEHP_FAULT_TLB_DATA0);
+ fault_data1 = intel_gt_mcr_read_any(gt, XEHP_FAULT_TLB_DATA1);
+
+ fault_addr = ((u64)(fault_data1 & FAULT_VA_HIGH_BITS) << 44) |
+ ((u64)fault_data0 << 12);
+
+ gt_dbg(gt, "Unexpected fault\n"
+ "\tAddr: 0x%08x_%08x\n"
+ "\tAddress space: %s\n"
+ "\tEngine ID: %d\n"
+ "\tSource ID: %d\n"
+ "\tType: %d\n",
+ upper_32_bits(fault_addr), lower_32_bits(fault_addr),
+ fault_data1 & FAULT_GTT_SEL ? "GGTT" : "PPGTT",
+ GEN8_RING_FAULT_ENGINE_ID(fault),
+ RING_FAULT_SRCID(fault),
+ RING_FAULT_FAULT_TYPE(fault));
+ }
+}
+
static void gen8_check_faults(struct intel_gt *gt)
{
struct intel_uncore *uncore = gt->uncore;
@@ -325,17 +367,17 @@ static void gen8_check_faults(struct intel_gt *gt)
fault_addr = ((u64)(fault_data1 & FAULT_VA_HIGH_BITS) << 44) |
((u64)fault_data0 << 12);
- drm_dbg(&uncore->i915->drm, "Unexpected fault\n"
- "\tAddr: 0x%08x_%08x\n"
- "\tAddress space: %s\n"
- "\tEngine ID: %d\n"
- "\tSource ID: %d\n"
- "\tType: %d\n",
- upper_32_bits(fault_addr), lower_32_bits(fault_addr),
- fault_data1 & FAULT_GTT_SEL ? "GGTT" : "PPGTT",
- GEN8_RING_FAULT_ENGINE_ID(fault),
- RING_FAULT_SRCID(fault),
- RING_FAULT_FAULT_TYPE(fault));
+ gt_dbg(gt, "Unexpected fault\n"
+ "\tAddr: 0x%08x_%08x\n"
+ "\tAddress space: %s\n"
+ "\tEngine ID: %d\n"
+ "\tSource ID: %d\n"
+ "\tType: %d\n",
+ upper_32_bits(fault_addr), lower_32_bits(fault_addr),
+ fault_data1 & FAULT_GTT_SEL ? "GGTT" : "PPGTT",
+ GEN8_RING_FAULT_ENGINE_ID(fault),
+ RING_FAULT_SRCID(fault),
+ RING_FAULT_FAULT_TYPE(fault));
}
}
@@ -344,7 +386,9 @@ void intel_gt_check_and_clear_faults(struct intel_gt *gt)
struct drm_i915_private *i915 = gt->i915;
/* From GEN8 onwards we only have one 'All Engine Fault Register' */
- if (GRAPHICS_VER(i915) >= 8)
+ if (GRAPHICS_VER_FULL(i915) >= IP_VER(12, 50))
+ xehp_check_faults(gt);
+ else if (GRAPHICS_VER(i915) >= 8)
gen8_check_faults(gt);
else if (GRAPHICS_VER(i915) >= 6)
gen6_check_faults(gt);
@@ -427,7 +471,7 @@ static int intel_gt_init_scratch(struct intel_gt *gt, unsigned int size)
if (IS_ERR(obj))
obj = i915_gem_object_create_internal(i915, size);
if (IS_ERR(obj)) {
- drm_err(&i915->drm, "Failed to allocate scratch page\n");
+ gt_err(gt, "Failed to allocate scratch page\n");
return PTR_ERR(obj);
}
@@ -625,8 +669,13 @@ int intel_gt_wait_for_idle(struct intel_gt *gt, long timeout)
return -EINTR;
}
- return timeout ? timeout : intel_uc_wait_for_idle(&gt->uc,
- remaining_timeout);
+ if (timeout)
+ return timeout;
+
+ if (remaining_timeout < 0)
+ remaining_timeout = 0;
+
+ return intel_uc_wait_for_idle(&gt->uc, remaining_timeout);
}
int intel_gt_init(struct intel_gt *gt)
@@ -677,8 +726,7 @@ int intel_gt_init(struct intel_gt *gt)
err = intel_gt_init_hwconfig(gt);
if (err)
- drm_err(&gt->i915->drm, "Failed to retrieve hwconfig table: %pe\n",
- ERR_PTR(err));
+ gt_err(gt, "Failed to retrieve hwconfig table: %pe\n", ERR_PTR(err));
err = __engines_record_defaults(gt);
if (err)
@@ -688,15 +736,13 @@ int intel_gt_init(struct intel_gt *gt)
if (err)
goto err_gt;
- intel_uc_init_late(&gt->uc);
-
err = i915_inject_probe_error(gt->i915, -EIO);
if (err)
goto err_gt;
- intel_migrate_init(&gt->migrate, gt);
+ intel_uc_init_late(&gt->uc);
- intel_pxp_init(&gt->pxp);
+ intel_migrate_init(&gt->migrate, gt);
goto out_fw;
err_gt:
@@ -737,7 +783,28 @@ void intel_gt_driver_unregister(struct intel_gt *gt)
intel_rps_driver_unregister(&gt->rps);
intel_gsc_fini(&gt->gsc);
- intel_pxp_fini(&gt->pxp);
+ /*
+ * If we unload the driver and wedge before the GSC worker is complete,
+ * the worker will hit an error on its submission to the GSC engine and
+ * then exit. This is hard to hit for a user, but it is reproducible
+ * with skipping selftests. The error is handled gracefully by the
+ * worker, so there are no functional issues, but we still end up with
+ * an error message in dmesg, which is something we want to avoid as
+ * this is a supported scenario. We could modify the worker to better
+ * handle a wedging occurring during its execution, but that gets
+ * complicated for a couple of reasons:
+ * - We do want the error on runtime wedging, because there are
+ * implications for subsystems outside of GT (i.e., PXP, HDCP), it's
+ * only the error on driver unload that we want to silence.
+ * - The worker is responsible for multiple submissions (GSC FW load,
+ * HuC auth, SW proxy), so all of those will have to be adapted to
+ * handle the wedged_on_fini scenario.
+ * Therefore, it's much simpler to just wait for the worker to be done
+ * before wedging on driver removal, also considering that the worker
+ * will likely already be idle in the great majority of non-selftest
+ * scenarios.
+ */
+ intel_gsc_uc_flush_work(&gt->uc.gsc);
/*
* Upon unregistering the device to prevent any new users, cancel
@@ -807,7 +874,6 @@ static int intel_gt_tile_setup(struct intel_gt *gt, phys_addr_t phys_addr)
}
intel_uncore_init_early(gt->uncore, gt);
- intel_wakeref_auto_init(&gt->userfault_wakeref, gt->uncore->rpm);
ret = intel_uncore_setup_mmio(gt->uncore, phys_addr);
if (ret)
@@ -828,7 +894,7 @@ int intel_gt_probe_all(struct drm_i915_private *i915)
unsigned int i;
int ret;
- mmio_bar = GRAPHICS_VER(i915) == 2 ? GEN2_GTTMMADR_BAR : GTTMMADR_BAR;
+ mmio_bar = intel_mmio_bar(GRAPHICS_VER(i915));
phys_addr = pci_resource_start(pdev, mmio_bar);
/*
@@ -840,7 +906,7 @@ int intel_gt_probe_all(struct drm_i915_private *i915)
gt->name = "Primary GT";
gt->info.engine_mask = RUNTIME_INFO(i915)->platform_engine_mask;
- drm_dbg(&i915->drm, "Setting up %s\n", gt->name);
+ gt_dbg(gt, "Setting up %s\n", gt->name);
ret = intel_gt_tile_setup(gt, phys_addr);
if (ret)
return ret;
@@ -865,7 +931,7 @@ int intel_gt_probe_all(struct drm_i915_private *i915)
gt->info.engine_mask = gtdef->engine_mask;
gt->info.id = i;
- drm_dbg(&i915->drm, "Setting up %s\n", gt->name);
+ gt_dbg(gt, "Setting up %s\n", gt->name);
if (GEM_WARN_ON(range_overflows_t(resource_size_t,
gtdef->mapping_base,
SZ_16M,
@@ -938,86 +1004,69 @@ void intel_gt_info_print(const struct intel_gt_info *info,
intel_sseu_dump(&info->sseu, p);
}
-struct reg_and_bit {
- i915_reg_t reg;
- u32 bit;
-};
+/*
+ * HW architecture suggest typical invalidation time at 40us,
+ * with pessimistic cases up to 100us and a recommendation to
+ * cap at 1ms. We go a bit higher just in case.
+ */
+#define TLB_INVAL_TIMEOUT_US 100
+#define TLB_INVAL_TIMEOUT_MS 4
-static struct reg_and_bit
-get_reg_and_bit(const struct intel_engine_cs *engine, const bool gen8,
- const i915_reg_t *regs, const unsigned int num)
+/*
+ * On Xe_HP the TLB invalidation registers are located at the same MMIO offsets
+ * but are now considered MCR registers. Since they exist within a GAM range,
+ * the primary instance of the register rolls up the status from each unit.
+ */
+static int wait_for_invalidate(struct intel_engine_cs *engine)
{
- const unsigned int class = engine->class;
- struct reg_and_bit rb = { };
-
- if (drm_WARN_ON_ONCE(&engine->i915->drm,
- class >= num || !regs[class].reg))
- return rb;
-
- rb.reg = regs[class];
- if (gen8 && class == VIDEO_DECODE_CLASS)
- rb.reg.reg += 4 * engine->instance; /* GEN8_M2TCR */
+ if (engine->tlb_inv.mcr)
+ return intel_gt_mcr_wait_for_reg(engine->gt,
+ engine->tlb_inv.reg.mcr_reg,
+ engine->tlb_inv.done,
+ 0,
+ TLB_INVAL_TIMEOUT_US,
+ TLB_INVAL_TIMEOUT_MS);
else
- rb.bit = engine->instance;
-
- rb.bit = BIT(rb.bit);
-
- return rb;
+ return __intel_wait_for_register_fw(engine->gt->uncore,
+ engine->tlb_inv.reg.reg,
+ engine->tlb_inv.done,
+ 0,
+ TLB_INVAL_TIMEOUT_US,
+ TLB_INVAL_TIMEOUT_MS,
+ NULL);
}
static void mmio_invalidate_full(struct intel_gt *gt)
{
- static const i915_reg_t gen8_regs[] = {
- [RENDER_CLASS] = GEN8_RTCR,
- [VIDEO_DECODE_CLASS] = GEN8_M1TCR, /* , GEN8_M2TCR */
- [VIDEO_ENHANCEMENT_CLASS] = GEN8_VTCR,
- [COPY_ENGINE_CLASS] = GEN8_BTCR,
- };
- static const i915_reg_t gen12_regs[] = {
- [RENDER_CLASS] = GEN12_GFX_TLB_INV_CR,
- [VIDEO_DECODE_CLASS] = GEN12_VD_TLB_INV_CR,
- [VIDEO_ENHANCEMENT_CLASS] = GEN12_VE_TLB_INV_CR,
- [COPY_ENGINE_CLASS] = GEN12_BLT_TLB_INV_CR,
- [COMPUTE_CLASS] = GEN12_COMPCTX_TLB_INV_CR,
- };
struct drm_i915_private *i915 = gt->i915;
struct intel_uncore *uncore = gt->uncore;
struct intel_engine_cs *engine;
intel_engine_mask_t awake, tmp;
enum intel_engine_id id;
- const i915_reg_t *regs;
- unsigned int num = 0;
-
- if (GRAPHICS_VER(i915) == 12) {
- regs = gen12_regs;
- num = ARRAY_SIZE(gen12_regs);
- } else if (GRAPHICS_VER(i915) >= 8 && GRAPHICS_VER(i915) <= 11) {
- regs = gen8_regs;
- num = ARRAY_SIZE(gen8_regs);
- } else if (GRAPHICS_VER(i915) < 8) {
- return;
- }
+ unsigned long flags;
- if (drm_WARN_ONCE(&i915->drm, !num,
- "Platform does not implement TLB invalidation!"))
+ if (GRAPHICS_VER(i915) < 8)
return;
intel_uncore_forcewake_get(uncore, FORCEWAKE_ALL);
- spin_lock_irq(&uncore->lock); /* serialise invalidate with GT reset */
+ intel_gt_mcr_lock(gt, &flags);
+ spin_lock(&uncore->lock); /* serialise invalidate with GT reset */
awake = 0;
for_each_engine(engine, gt, id) {
- struct reg_and_bit rb;
-
if (!intel_engine_pm_is_awake(engine))
continue;
- rb = get_reg_and_bit(engine, regs == gen8_regs, regs, num);
- if (!i915_mmio_reg_offset(rb.reg))
- continue;
+ if (engine->tlb_inv.mcr)
+ intel_gt_mcr_multicast_write_fw(gt,
+ engine->tlb_inv.reg.mcr_reg,
+ engine->tlb_inv.request);
+ else
+ intel_uncore_write_fw(uncore,
+ engine->tlb_inv.reg.reg,
+ engine->tlb_inv.request);
- intel_uncore_write_fw(uncore, rb.reg, rb.bit);
awake |= engine->mask;
}
@@ -1032,27 +1081,14 @@ static void mmio_invalidate_full(struct intel_gt *gt)
IS_ALDERLAKE_P(i915)))
intel_uncore_write_fw(uncore, GEN12_OA_TLB_INV_CR, 1);
- spin_unlock_irq(&uncore->lock);
+ spin_unlock(&uncore->lock);
+ intel_gt_mcr_unlock(gt, flags);
for_each_engine_masked(engine, gt, awake, tmp) {
- struct reg_and_bit rb;
-
- /*
- * HW architecture suggest typical invalidation time at 40us,
- * with pessimistic cases up to 100us and a recommendation to
- * cap at 1ms. We go a bit higher just in case.
- */
- const unsigned int timeout_us = 100;
- const unsigned int timeout_ms = 4;
-
- rb = get_reg_and_bit(engine, regs == gen8_regs, regs, num);
- if (__intel_wait_for_register_fw(uncore,
- rb.reg, rb.bit, 0,
- timeout_us, timeout_ms,
- NULL))
- drm_err_ratelimited(&gt->i915->drm,
- "%s TLB invalidation did not complete in %ums!\n",
- engine->name, timeout_ms);
+ if (wait_for_invalidate(engine))
+ gt_err_ratelimited(gt,
+ "%s TLB invalidation did not complete in %ums!\n",
+ engine->name, TLB_INVAL_TIMEOUT_MS);
}
/*
@@ -1097,3 +1133,7 @@ unlock:
mutex_unlock(&gt->tlb.invalidate_lock);
}
}
+
+#if IS_ENABLED(CONFIG_DRM_I915_SELFTEST)
+#include "selftest_tlb.c"
+#endif
diff --git a/drivers/gpu/drm/i915/gt/intel_gt.h b/drivers/gpu/drm/i915/gt/intel_gt.h
index 2ee582e287c8..d2f4fbde5f9f 100644
--- a/drivers/gpu/drm/i915/gt/intel_gt.h
+++ b/drivers/gpu/drm/i915/gt/intel_gt.h
@@ -39,6 +39,11 @@ static inline struct intel_gt *huc_to_gt(struct intel_huc *huc)
return container_of(huc, struct intel_gt, uc.huc);
}
+static inline struct intel_gt *gsc_uc_to_gt(struct intel_gsc_uc *gsc_uc)
+{
+ return container_of(gsc_uc, struct intel_gt, uc.gsc);
+}
+
static inline struct intel_gt *gsc_to_gt(struct intel_gsc *gsc)
{
return container_of(gsc, struct intel_gt, gsc);
@@ -60,6 +65,7 @@ void intel_gt_driver_late_release_all(struct drm_i915_private *i915);
int intel_gt_wait_for_idle(struct intel_gt *gt, long timeout);
void intel_gt_check_and_clear_faults(struct intel_gt *gt);
+i915_reg_t intel_gt_perf_limit_reasons_reg(struct intel_gt *gt);
void intel_gt_clear_error_registers(struct intel_gt *gt,
intel_engine_mask_t engine_mask);
diff --git a/drivers/gpu/drm/i915/gt/intel_gt_clock_utils.c b/drivers/gpu/drm/i915/gt/intel_gt_clock_utils.c
index 3f656d3dba9a..7c9be4fd1c8c 100644
--- a/drivers/gpu/drm/i915/gt/intel_gt_clock_utils.c
+++ b/drivers/gpu/drm/i915/gt/intel_gt_clock_utils.c
@@ -7,6 +7,7 @@
#include "i915_reg.h"
#include "intel_gt.h"
#include "intel_gt_clock_utils.h"
+#include "intel_gt_print.h"
#include "intel_gt_regs.h"
static u32 read_reference_ts_freq(struct intel_uncore *uncore)
@@ -107,7 +108,7 @@ static u32 gen9_read_clock_frequency(struct intel_uncore *uncore)
return freq;
}
-static u32 gen5_read_clock_frequency(struct intel_uncore *uncore)
+static u32 gen6_read_clock_frequency(struct intel_uncore *uncore)
{
/*
* PRMs say:
@@ -119,7 +120,27 @@ static u32 gen5_read_clock_frequency(struct intel_uncore *uncore)
return 12500000;
}
-static u32 gen2_read_clock_frequency(struct intel_uncore *uncore)
+static u32 gen5_read_clock_frequency(struct intel_uncore *uncore)
+{
+ /*
+ * 63:32 increments every 1000 ns
+ * 31:0 mbz
+ */
+ return 1000000000 / 1000;
+}
+
+static u32 g4x_read_clock_frequency(struct intel_uncore *uncore)
+{
+ /*
+ * 63:20 increments every 1/4 ns
+ * 19:0 mbz
+ *
+ * -> 63:32 increments every 1024 ns
+ */
+ return 1000000000 / 1024;
+}
+
+static u32 gen4_read_clock_frequency(struct intel_uncore *uncore)
{
/*
* PRMs say:
@@ -127,8 +148,10 @@ static u32 gen2_read_clock_frequency(struct intel_uncore *uncore)
* "The value in this register increments once every 16
* hclks." (through the “Clocking Configuration”
* (“CLKCFG”) MCHBAR register)
+ *
+ * Testing on actual hardware has shown there is no /16.
*/
- return RUNTIME_INFO(uncore->i915)->rawclk_freq * 1000 / 16;
+ return RUNTIME_INFO(uncore->i915)->rawclk_freq * 1000;
}
static u32 read_clock_frequency(struct intel_uncore *uncore)
@@ -137,10 +160,16 @@ static u32 read_clock_frequency(struct intel_uncore *uncore)
return gen11_read_clock_frequency(uncore);
else if (GRAPHICS_VER(uncore->i915) >= 9)
return gen9_read_clock_frequency(uncore);
- else if (GRAPHICS_VER(uncore->i915) >= 5)
+ else if (GRAPHICS_VER(uncore->i915) >= 6)
+ return gen6_read_clock_frequency(uncore);
+ else if (GRAPHICS_VER(uncore->i915) == 5)
return gen5_read_clock_frequency(uncore);
+ else if (IS_G4X(uncore->i915))
+ return g4x_read_clock_frequency(uncore);
+ else if (GRAPHICS_VER(uncore->i915) == 4)
+ return gen4_read_clock_frequency(uncore);
else
- return gen2_read_clock_frequency(uncore);
+ return 0;
}
void intel_gt_init_clock_frequency(struct intel_gt *gt)
@@ -165,10 +194,9 @@ void intel_gt_init_clock_frequency(struct intel_gt *gt)
void intel_gt_check_clock_frequency(const struct intel_gt *gt)
{
if (gt->clock_frequency != read_clock_frequency(gt->uncore)) {
- dev_err(gt->i915->drm.dev,
- "GT clock frequency changed, was %uHz, now %uHz!\n",
- gt->clock_frequency,
- read_clock_frequency(gt->uncore));
+ gt_err(gt, "GT clock frequency changed, was %uHz, now %uHz!\n",
+ gt->clock_frequency,
+ read_clock_frequency(gt->uncore));
}
}
#endif
diff --git a/drivers/gpu/drm/i915/gt/intel_gt_debugfs.c b/drivers/gpu/drm/i915/gt/intel_gt_debugfs.c
index dd53641f3637..4dc23b8d3aa2 100644
--- a/drivers/gpu/drm/i915/gt/intel_gt_debugfs.c
+++ b/drivers/gpu/drm/i915/gt/intel_gt_debugfs.c
@@ -12,7 +12,6 @@
#include "intel_gt_mcr.h"
#include "intel_gt_pm_debugfs.h"
#include "intel_sseu_debugfs.h"
-#include "pxp/intel_pxp_debugfs.h"
#include "uc/intel_uc_debugfs.h"
int intel_gt_debugfs_reset_show(struct intel_gt *gt, u64 *val)
@@ -84,11 +83,13 @@ static void gt_debugfs_register(struct intel_gt *gt, struct dentry *root)
void intel_gt_debugfs_register(struct intel_gt *gt)
{
struct dentry *root;
+ char gtname[4];
if (!gt->i915->drm.primary->debugfs_root)
return;
- root = debugfs_create_dir("gt", gt->i915->drm.primary->debugfs_root);
+ snprintf(gtname, sizeof(gtname), "gt%u", gt->info.id);
+ root = debugfs_create_dir(gtname, gt->i915->drm.primary->debugfs_root);
if (IS_ERR(root))
return;
@@ -99,7 +100,6 @@ void intel_gt_debugfs_register(struct intel_gt *gt)
intel_sseu_debugfs_register(gt, root);
intel_uc_debugfs_register(&gt->uc, root);
- intel_pxp_debugfs_register(&gt->pxp, root);
}
void intel_gt_debugfs_register_files(struct dentry *root,
diff --git a/drivers/gpu/drm/i915/gt/intel_gt_irq.c b/drivers/gpu/drm/i915/gt/intel_gt_irq.c
index f26882fdc24c..1b25a6039152 100644
--- a/drivers/gpu/drm/i915/gt/intel_gt_irq.c
+++ b/drivers/gpu/drm/i915/gt/intel_gt_irq.c
@@ -10,6 +10,7 @@
#include "intel_breadcrumbs.h"
#include "intel_gt.h"
#include "intel_gt_irq.h"
+#include "intel_gt_print.h"
#include "intel_gt_regs.h"
#include "intel_uncore.h"
#include "intel_rps.h"
@@ -17,6 +18,9 @@
static void guc_irq_handler(struct intel_guc *guc, u16 iir)
{
+ if (unlikely(!guc->interrupts.enabled))
+ return;
+
if (iir & GUC_INTR_GUC2HOST)
intel_guc_to_host_event_handler(guc);
}
@@ -44,8 +48,8 @@ gen11_gt_engine_identity(struct intel_gt *gt,
!time_after32(local_clock() >> 10, timeout_ts));
if (unlikely(!(ident & GEN11_INTR_DATA_VALID))) {
- DRM_ERROR("INTR_IDENTITY_REG%u:%u 0x%08x not valid!\n",
- bank, bit, ident);
+ gt_err(gt, "INTR_IDENTITY_REG%u:%u 0x%08x not valid!\n",
+ bank, bit, ident);
return 0;
}
@@ -72,7 +76,7 @@ gen11_other_irq_handler(struct intel_gt *gt, const u8 instance,
return gen11_rps_irq_handler(&media_gt->rps, iir);
if (instance == OTHER_KCR_INSTANCE)
- return intel_pxp_irq_handler(&gt->pxp, iir);
+ return intel_pxp_irq_handler(gt->i915->pxp, iir);
if (instance == OTHER_GSC_INSTANCE)
return intel_gsc_irq_handler(gt, iir);
@@ -81,35 +85,27 @@ gen11_other_irq_handler(struct intel_gt *gt, const u8 instance,
instance, iir);
}
-static void
-gen11_engine_irq_handler(struct intel_gt *gt, const u8 class,
- const u8 instance, const u16 iir)
+static struct intel_gt *pick_gt(struct intel_gt *gt, u8 class, u8 instance)
{
- struct intel_engine_cs *engine;
-
- /*
- * Platforms with standalone media have their media engines in another
- * GT.
- */
- if (MEDIA_VER(gt->i915) >= 13 &&
- (class == VIDEO_DECODE_CLASS || class == VIDEO_ENHANCEMENT_CLASS)) {
- if (!gt->i915->media_gt)
- goto err;
+ struct intel_gt *media_gt = gt->i915->media_gt;
- gt = gt->i915->media_gt;
+ /* we expect the non-media gt to be passed in */
+ GEM_BUG_ON(gt == media_gt);
+
+ if (!media_gt)
+ return gt;
+
+ switch (class) {
+ case VIDEO_DECODE_CLASS:
+ case VIDEO_ENHANCEMENT_CLASS:
+ return media_gt;
+ case OTHER_CLASS:
+ if (instance == OTHER_GSC_INSTANCE && HAS_ENGINE(media_gt, GSC0))
+ return media_gt;
+ fallthrough;
+ default:
+ return gt;
}
-
- if (instance <= MAX_ENGINE_INSTANCE)
- engine = gt->engine_class[class][instance];
- else
- engine = NULL;
-
- if (likely(engine))
- return intel_engine_cs_irq(engine, iir);
-
-err:
- WARN_ONCE(1, "unhandled engine interrupt class=0x%x, instance=0x%x\n",
- class, instance);
}
static void
@@ -122,8 +118,17 @@ gen11_gt_identity_handler(struct intel_gt *gt, const u32 identity)
if (unlikely(!intr))
return;
- if (class <= COPY_ENGINE_CLASS || class == COMPUTE_CLASS)
- return gen11_engine_irq_handler(gt, class, instance, intr);
+ /*
+ * Platforms with standalone media have the media and GSC engines in
+ * another GT.
+ */
+ gt = pick_gt(gt, class, instance);
+
+ if (class <= MAX_ENGINE_CLASS && instance <= MAX_ENGINE_INSTANCE) {
+ struct intel_engine_cs *engine = gt->engine_class[class][instance];
+ if (engine)
+ return intel_engine_cs_irq(engine, intr);
+ }
if (class == OTHER_CLASS)
return gen11_other_irq_handler(gt, instance, intr);
@@ -206,7 +211,7 @@ void gen11_gt_irq_reset(struct intel_gt *gt)
intel_uncore_write(uncore, GEN11_VCS_VECS_INTR_ENABLE, 0);
if (CCS_MASK(gt))
intel_uncore_write(uncore, GEN12_CCS_RSVD_INTR_ENABLE, 0);
- if (HAS_HECI_GSC(gt->i915))
+ if (HAS_HECI_GSC(gt->i915) || HAS_ENGINE(gt, GSC0))
intel_uncore_write(uncore, GEN11_GUNIT_CSME_INTR_ENABLE, 0);
/* Restore masks irqs on RCS, BCS, VCS and VECS engines. */
@@ -233,7 +238,7 @@ void gen11_gt_irq_reset(struct intel_gt *gt)
intel_uncore_write(uncore, GEN12_CCS0_CCS1_INTR_MASK, ~0);
if (HAS_ENGINE(gt, CCS2) || HAS_ENGINE(gt, CCS3))
intel_uncore_write(uncore, GEN12_CCS2_CCS3_INTR_MASK, ~0);
- if (HAS_HECI_GSC(gt->i915))
+ if (HAS_HECI_GSC(gt->i915) || HAS_ENGINE(gt, GSC0))
intel_uncore_write(uncore, GEN11_GUNIT_CSME_INTR_MASK, ~0);
intel_uncore_write(uncore, GEN11_GPM_WGBOXPERF_INTR_ENABLE, 0);
@@ -249,7 +254,8 @@ void gen11_gt_irq_postinstall(struct intel_gt *gt)
{
struct intel_uncore *uncore = gt->uncore;
u32 irqs = GT_RENDER_USER_INTERRUPT;
- const u32 gsc_mask = GSC_IRQ_INTF(0) | GSC_IRQ_INTF(1);
+ u32 guc_mask = intel_uc_wants_guc(&gt->uc) ? GUC_INTR_GUC2HOST : 0;
+ u32 gsc_mask = 0;
u32 dmask;
u32 smask;
@@ -261,6 +267,11 @@ void gen11_gt_irq_postinstall(struct intel_gt *gt)
dmask = irqs << 16 | irqs;
smask = irqs << 16;
+ if (HAS_ENGINE(gt, GSC0))
+ gsc_mask = irqs;
+ else if (HAS_HECI_GSC(gt->i915))
+ gsc_mask = GSC_IRQ_INTF(0) | GSC_IRQ_INTF(1);
+
BUILD_BUG_ON(irqs & 0xffff0000);
/* Enable RCS, BCS, VCS and VECS class interrupts. */
@@ -268,9 +279,8 @@ void gen11_gt_irq_postinstall(struct intel_gt *gt)
intel_uncore_write(uncore, GEN11_VCS_VECS_INTR_ENABLE, dmask);
if (CCS_MASK(gt))
intel_uncore_write(uncore, GEN12_CCS_RSVD_INTR_ENABLE, smask);
- if (HAS_HECI_GSC(gt->i915))
- intel_uncore_write(uncore, GEN11_GUNIT_CSME_INTR_ENABLE,
- gsc_mask);
+ if (gsc_mask)
+ intel_uncore_write(uncore, GEN11_GUNIT_CSME_INTR_ENABLE, gsc_mask);
/* Unmask irqs on RCS, BCS, VCS and VECS engines. */
intel_uncore_write(uncore, GEN11_RCS0_RSVD_INTR_MASK, ~smask);
@@ -296,9 +306,22 @@ void gen11_gt_irq_postinstall(struct intel_gt *gt)
intel_uncore_write(uncore, GEN12_CCS0_CCS1_INTR_MASK, ~dmask);
if (HAS_ENGINE(gt, CCS2) || HAS_ENGINE(gt, CCS3))
intel_uncore_write(uncore, GEN12_CCS2_CCS3_INTR_MASK, ~dmask);
- if (HAS_HECI_GSC(gt->i915))
+ if (gsc_mask)
intel_uncore_write(uncore, GEN11_GUNIT_CSME_INTR_MASK, ~gsc_mask);
+ if (guc_mask) {
+ /* the enable bit is common for both GTs but the masks are separate */
+ u32 mask = gt->type == GT_MEDIA ?
+ REG_FIELD_PREP(ENGINE0_MASK, guc_mask) :
+ REG_FIELD_PREP(ENGINE1_MASK, guc_mask);
+
+ intel_uncore_write(uncore, GEN11_GUC_SG_INTR_ENABLE,
+ REG_FIELD_PREP(ENGINE1_MASK, guc_mask));
+
+ /* we might not be the first GT to write this reg */
+ intel_uncore_rmw(uncore, MTL_GUC_MGUC_INTR_MASK, mask, 0);
+ }
+
/*
* RPS interrupts will get enabled/disabled on demand when RPS itself
* is enabled/disabled.
@@ -307,10 +330,6 @@ void gen11_gt_irq_postinstall(struct intel_gt *gt)
gt->pm_imr = ~gt->pm_ier;
intel_uncore_write(uncore, GEN11_GPM_WGBOXPERF_INTR_ENABLE, 0);
intel_uncore_write(uncore, GEN11_GPM_WGBOXPERF_INTR_MASK, ~0);
-
- /* Same thing for GuC interrupts */
- intel_uncore_write(uncore, GEN11_GUC_SG_INTR_ENABLE, 0);
- intel_uncore_write(uncore, GEN11_GUC_SG_INTR_MASK, ~0);
}
void gen5_gt_irq_handler(struct intel_gt *gt, u32 gt_iir)
@@ -359,7 +378,7 @@ void gen6_gt_irq_handler(struct intel_gt *gt, u32 gt_iir)
if (gt_iir & (GT_BLT_CS_ERROR_INTERRUPT |
GT_BSD_CS_ERROR_INTERRUPT |
GT_CS_MASTER_ERROR_INTERRUPT))
- DRM_DEBUG("Command parser error, gt_iir 0x%08x\n", gt_iir);
+ gt_dbg(gt, "Command parser error, gt_iir 0x%08x\n", gt_iir);
if (gt_iir & GT_PARITY_ERROR(gt->i915))
gen7_parity_error_irq_handler(gt, gt_iir);
diff --git a/drivers/gpu/drm/i915/gt/intel_gt_mcr.c b/drivers/gpu/drm/i915/gt/intel_gt_mcr.c
index e79405a45312..0b414eae1683 100644
--- a/drivers/gpu/drm/i915/gt/intel_gt_mcr.c
+++ b/drivers/gpu/drm/i915/gt/intel_gt_mcr.c
@@ -6,6 +6,7 @@
#include "i915_drv.h"
#include "intel_gt_mcr.h"
+#include "intel_gt_print.h"
#include "intel_gt_regs.h"
/**
@@ -34,12 +35,15 @@
* ignored.
*/
-#define HAS_MSLICE_STEERING(dev_priv) (INTEL_INFO(dev_priv)->has_mslice_steering)
+#define HAS_MSLICE_STEERING(i915) (INTEL_INFO(i915)->has_mslice_steering)
static const char * const intel_steering_types[] = {
"L3BANK",
"MSLICE",
"LNCF",
+ "GAM",
+ "DSS",
+ "OADDRM",
"INSTANCE 0",
};
@@ -48,14 +52,23 @@ static const struct intel_mmio_range icl_l3bank_steering_table[] = {
{},
};
+/*
+ * Although the bspec lists more "MSLICE" ranges than shown here, some of those
+ * are of a "GAM" subclass that has special rules. Thus we use a separate
+ * GAM table farther down for those.
+ */
static const struct intel_mmio_range xehpsdv_mslice_steering_table[] = {
- { 0x004000, 0x004AFF },
- { 0x00C800, 0x00CFFF },
{ 0x00DD00, 0x00DDFF },
{ 0x00E900, 0x00FFFF }, /* 0xEA00 - OxEFFF is unused */
{},
};
+static const struct intel_mmio_range xehpsdv_gam_steering_table[] = {
+ { 0x004000, 0x004AFF },
+ { 0x00C800, 0x00CFFF },
+ {},
+};
+
static const struct intel_mmio_range xehpsdv_lncf_steering_table[] = {
{ 0x00B000, 0x00B0FF },
{ 0x00D800, 0x00D8FF },
@@ -89,9 +102,49 @@ static const struct intel_mmio_range pvc_instance0_steering_table[] = {
{},
};
+static const struct intel_mmio_range xelpg_instance0_steering_table[] = {
+ { 0x000B00, 0x000BFF }, /* SQIDI */
+ { 0x001000, 0x001FFF }, /* SQIDI */
+ { 0x004000, 0x0048FF }, /* GAM */
+ { 0x008700, 0x0087FF }, /* SQIDI */
+ { 0x00B000, 0x00B0FF }, /* NODE */
+ { 0x00C800, 0x00CFFF }, /* GAM */
+ { 0x00D880, 0x00D8FF }, /* NODE */
+ { 0x00DD00, 0x00DDFF }, /* OAAL2 */
+ {},
+};
+
+static const struct intel_mmio_range xelpg_l3bank_steering_table[] = {
+ { 0x00B100, 0x00B3FF },
+ {},
+};
+
+/* DSS steering is used for SLICE ranges as well */
+static const struct intel_mmio_range xelpg_dss_steering_table[] = {
+ { 0x005200, 0x0052FF }, /* SLICE */
+ { 0x005500, 0x007FFF }, /* SLICE */
+ { 0x008140, 0x00815F }, /* SLICE (0x8140-0x814F), DSS (0x8150-0x815F) */
+ { 0x0094D0, 0x00955F }, /* SLICE (0x94D0-0x951F), DSS (0x9520-0x955F) */
+ { 0x009680, 0x0096FF }, /* DSS */
+ { 0x00D800, 0x00D87F }, /* SLICE */
+ { 0x00DC00, 0x00DCFF }, /* SLICE */
+ { 0x00DE80, 0x00E8FF }, /* DSS (0xE000-0xE0FF reserved) */
+ {},
+};
+
+static const struct intel_mmio_range xelpmp_oaddrm_steering_table[] = {
+ { 0x393200, 0x39323F },
+ { 0x393400, 0x3934FF },
+ {},
+};
+
void intel_gt_mcr_init(struct intel_gt *gt)
{
struct drm_i915_private *i915 = gt->i915;
+ unsigned long fuse;
+ int i;
+
+ spin_lock_init(&gt->mcr_lock);
/*
* An mslice is unavailable only if both the meml3 for the slice is
@@ -106,17 +159,46 @@ void intel_gt_mcr_init(struct intel_gt *gt)
GEN12_MEML3_EN_MASK);
if (!gt->info.mslice_mask) /* should be impossible! */
- drm_warn(&i915->drm, "mslice mask all zero!\n");
+ gt_warn(gt, "mslice mask all zero!\n");
}
- if (IS_PONTEVECCHIO(i915)) {
+ if (MEDIA_VER(i915) >= 13 && gt->type == GT_MEDIA) {
+ gt->steering_table[OADDRM] = xelpmp_oaddrm_steering_table;
+ } else if (GRAPHICS_VER_FULL(i915) >= IP_VER(12, 70)) {
+ /* Wa_14016747170 */
+ if (IS_MTL_GRAPHICS_STEP(i915, M, STEP_A0, STEP_B0) ||
+ IS_MTL_GRAPHICS_STEP(i915, P, STEP_A0, STEP_B0))
+ fuse = REG_FIELD_GET(MTL_GT_L3_EXC_MASK,
+ intel_uncore_read(gt->uncore,
+ MTL_GT_ACTIVITY_FACTOR));
+ else
+ fuse = REG_FIELD_GET(GT_L3_EXC_MASK,
+ intel_uncore_read(gt->uncore, XEHP_FUSE4));
+
+ /*
+ * Despite the register field being named "exclude mask" the
+ * bits actually represent enabled banks (two banks per bit).
+ */
+ for_each_set_bit(i, &fuse, 3)
+ gt->info.l3bank_mask |= 0x3 << 2 * i;
+
+ gt->steering_table[INSTANCE0] = xelpg_instance0_steering_table;
+ gt->steering_table[L3BANK] = xelpg_l3bank_steering_table;
+ gt->steering_table[DSS] = xelpg_dss_steering_table;
+ } else if (IS_PONTEVECCHIO(i915)) {
gt->steering_table[INSTANCE0] = pvc_instance0_steering_table;
} else if (IS_DG2(i915)) {
gt->steering_table[MSLICE] = xehpsdv_mslice_steering_table;
gt->steering_table[LNCF] = dg2_lncf_steering_table;
+ /*
+ * No need to hook up the GAM table since it has a dedicated
+ * steering control register on DG2 and can use implicit
+ * steering.
+ */
} else if (IS_XEHPSDV(i915)) {
gt->steering_table[MSLICE] = xehpsdv_mslice_steering_table;
gt->steering_table[LNCF] = xehpsdv_lncf_steering_table;
+ gt->steering_table[GAM] = xehpsdv_gam_steering_table;
} else if (GRAPHICS_VER(i915) >= 11 &&
GRAPHICS_VER_FULL(i915) < IP_VER(12, 50)) {
gt->steering_table[L3BANK] = icl_l3bank_steering_table;
@@ -124,7 +206,7 @@ void intel_gt_mcr_init(struct intel_gt *gt)
~intel_uncore_read(gt->uncore, GEN10_MIRROR_FUSE3) &
GEN10_L3BANK_MASK;
if (!gt->info.l3bank_mask) /* should be impossible! */
- drm_warn(&i915->drm, "L3 bank mask is all zero!\n");
+ gt_warn(gt, "L3 bank mask is all zero!\n");
} else if (GRAPHICS_VER(i915) >= 11) {
/*
* We expect all modern platforms to have at least some
@@ -135,27 +217,54 @@ void intel_gt_mcr_init(struct intel_gt *gt)
}
/*
+ * Although the rest of the driver should use MCR-specific functions to
+ * read/write MCR registers, we still use the regular intel_uncore_* functions
+ * internally to implement those, so we need a way for the functions in this
+ * file to "cast" an i915_mcr_reg_t into an i915_reg_t.
+ */
+static i915_reg_t mcr_reg_cast(const i915_mcr_reg_t mcr)
+{
+ i915_reg_t r = { .reg = mcr.reg };
+
+ return r;
+}
+
+/*
* rw_with_mcr_steering_fw - Access a register with specific MCR steering
- * @uncore: pointer to struct intel_uncore
+ * @gt: GT to read register from
* @reg: register being accessed
* @rw_flag: FW_REG_READ for read access or FW_REG_WRITE for write access
* @group: group number (documented as "sliceid" on older platforms)
* @instance: instance number (documented as "subsliceid" on older platforms)
* @value: register value to be written (ignored for read)
*
+ * Context: The caller must hold the MCR lock
* Return: 0 for write access. register value for read access.
*
* Caller needs to make sure the relevant forcewake wells are up.
*/
-static u32 rw_with_mcr_steering_fw(struct intel_uncore *uncore,
- i915_reg_t reg, u8 rw_flag,
+static u32 rw_with_mcr_steering_fw(struct intel_gt *gt,
+ i915_mcr_reg_t reg, u8 rw_flag,
int group, int instance, u32 value)
{
+ struct intel_uncore *uncore = gt->uncore;
u32 mcr_mask, mcr_ss, mcr, old_mcr, val = 0;
- lockdep_assert_held(&uncore->lock);
+ lockdep_assert_held(&gt->mcr_lock);
- if (GRAPHICS_VER(uncore->i915) >= 11) {
+ if (GRAPHICS_VER_FULL(uncore->i915) >= IP_VER(12, 70)) {
+ /*
+ * Always leave the hardware in multicast mode when doing reads
+ * (see comment about Wa_22013088509 below) and only change it
+ * to unicast mode when doing writes of a specific instance.
+ *
+ * No need to save old steering reg value.
+ */
+ intel_uncore_write_fw(uncore, MTL_MCR_SELECTOR,
+ REG_FIELD_PREP(MTL_MCR_GROUPID, group) |
+ REG_FIELD_PREP(MTL_MCR_INSTANCEID, instance) |
+ (rw_flag == FW_REG_READ ? GEN11_MCR_MULTICAST : 0));
+ } else if (GRAPHICS_VER(uncore->i915) >= 11) {
mcr_mask = GEN11_MCR_SLICE_MASK | GEN11_MCR_SUBSLICE_MASK;
mcr_ss = GEN11_MCR_SLICE(group) | GEN11_MCR_SUBSLICE(instance);
@@ -173,70 +282,160 @@ static u32 rw_with_mcr_steering_fw(struct intel_uncore *uncore,
*/
if (rw_flag == FW_REG_WRITE)
mcr_mask |= GEN11_MCR_MULTICAST;
+
+ mcr = intel_uncore_read_fw(uncore, GEN8_MCR_SELECTOR);
+ old_mcr = mcr;
+
+ mcr &= ~mcr_mask;
+ mcr |= mcr_ss;
+ intel_uncore_write_fw(uncore, GEN8_MCR_SELECTOR, mcr);
} else {
mcr_mask = GEN8_MCR_SLICE_MASK | GEN8_MCR_SUBSLICE_MASK;
mcr_ss = GEN8_MCR_SLICE(group) | GEN8_MCR_SUBSLICE(instance);
- }
- old_mcr = mcr = intel_uncore_read_fw(uncore, GEN8_MCR_SELECTOR);
+ mcr = intel_uncore_read_fw(uncore, GEN8_MCR_SELECTOR);
+ old_mcr = mcr;
- mcr &= ~mcr_mask;
- mcr |= mcr_ss;
- intel_uncore_write_fw(uncore, GEN8_MCR_SELECTOR, mcr);
+ mcr &= ~mcr_mask;
+ mcr |= mcr_ss;
+ intel_uncore_write_fw(uncore, GEN8_MCR_SELECTOR, mcr);
+ }
if (rw_flag == FW_REG_READ)
- val = intel_uncore_read_fw(uncore, reg);
+ val = intel_uncore_read_fw(uncore, mcr_reg_cast(reg));
else
- intel_uncore_write_fw(uncore, reg, value);
-
- mcr &= ~mcr_mask;
- mcr |= old_mcr & mcr_mask;
+ intel_uncore_write_fw(uncore, mcr_reg_cast(reg), value);
- intel_uncore_write_fw(uncore, GEN8_MCR_SELECTOR, mcr);
+ /*
+ * For pre-MTL platforms, we need to restore the old value of the
+ * steering control register to ensure that implicit steering continues
+ * to behave as expected. For MTL and beyond, we need only reinstate
+ * the 'multicast' bit (and only if we did a write that cleared it).
+ */
+ if (GRAPHICS_VER_FULL(uncore->i915) >= IP_VER(12, 70) && rw_flag == FW_REG_WRITE)
+ intel_uncore_write_fw(uncore, MTL_MCR_SELECTOR, GEN11_MCR_MULTICAST);
+ else if (GRAPHICS_VER_FULL(uncore->i915) < IP_VER(12, 70))
+ intel_uncore_write_fw(uncore, GEN8_MCR_SELECTOR, old_mcr);
return val;
}
-static u32 rw_with_mcr_steering(struct intel_uncore *uncore,
- i915_reg_t reg, u8 rw_flag,
+static u32 rw_with_mcr_steering(struct intel_gt *gt,
+ i915_mcr_reg_t reg, u8 rw_flag,
int group, int instance,
u32 value)
{
+ struct intel_uncore *uncore = gt->uncore;
enum forcewake_domains fw_domains;
+ unsigned long flags;
u32 val;
- fw_domains = intel_uncore_forcewake_for_reg(uncore, reg,
+ fw_domains = intel_uncore_forcewake_for_reg(uncore, mcr_reg_cast(reg),
rw_flag);
fw_domains |= intel_uncore_forcewake_for_reg(uncore,
GEN8_MCR_SELECTOR,
FW_REG_READ | FW_REG_WRITE);
- spin_lock_irq(&uncore->lock);
+ intel_gt_mcr_lock(gt, &flags);
+ spin_lock(&uncore->lock);
intel_uncore_forcewake_get__locked(uncore, fw_domains);
- val = rw_with_mcr_steering_fw(uncore, reg, rw_flag, group, instance, value);
+ val = rw_with_mcr_steering_fw(gt, reg, rw_flag, group, instance, value);
intel_uncore_forcewake_put__locked(uncore, fw_domains);
- spin_unlock_irq(&uncore->lock);
+ spin_unlock(&uncore->lock);
+ intel_gt_mcr_unlock(gt, flags);
return val;
}
/**
+ * intel_gt_mcr_lock - Acquire MCR steering lock
+ * @gt: GT structure
+ * @flags: storage to save IRQ flags to
+ *
+ * Performs locking to protect the steering for the duration of an MCR
+ * operation. On MTL and beyond, a hardware lock will also be taken to
+ * serialize access not only for the driver, but also for external hardware and
+ * firmware agents.
+ *
+ * Context: Takes gt->mcr_lock. uncore->lock should *not* be held when this
+ * function is called, although it may be acquired after this
+ * function call.
+ */
+void intel_gt_mcr_lock(struct intel_gt *gt, unsigned long *flags)
+ __acquires(&gt->mcr_lock)
+{
+ unsigned long __flags;
+ int err = 0;
+
+ lockdep_assert_not_held(&gt->uncore->lock);
+
+ /*
+ * Starting with MTL, we need to coordinate not only with other
+ * driver threads, but also with hardware/firmware agents. A dedicated
+ * locking register is used.
+ */
+ if (GRAPHICS_VER_FULL(gt->i915) >= IP_VER(12, 70))
+ err = wait_for(intel_uncore_read_fw(gt->uncore,
+ MTL_STEER_SEMAPHORE) == 0x1, 100);
+
+ /*
+ * Even on platforms with a hardware lock, we'll continue to grab
+ * a software spinlock too for lockdep purposes. If the hardware lock
+ * was already acquired, there should never be contention on the
+ * software lock.
+ */
+ spin_lock_irqsave(&gt->mcr_lock, __flags);
+
+ *flags = __flags;
+
+ /*
+ * In theory we should never fail to acquire the HW semaphore; this
+ * would indicate some hardware/firmware is misbehaving and not
+ * releasing it properly.
+ */
+ if (err == -ETIMEDOUT) {
+ gt_err_ratelimited(gt, "hardware MCR steering semaphore timed out");
+ add_taint_for_CI(gt->i915, TAINT_WARN); /* CI is now unreliable */
+ }
+}
+
+/**
+ * intel_gt_mcr_unlock - Release MCR steering lock
+ * @gt: GT structure
+ * @flags: IRQ flags to restore
+ *
+ * Releases the lock acquired by intel_gt_mcr_lock().
+ *
+ * Context: Releases gt->mcr_lock
+ */
+void intel_gt_mcr_unlock(struct intel_gt *gt, unsigned long flags)
+ __releases(&gt->mcr_lock)
+{
+ spin_unlock_irqrestore(&gt->mcr_lock, flags);
+
+ if (GRAPHICS_VER_FULL(gt->i915) >= IP_VER(12, 70))
+ intel_uncore_write_fw(gt->uncore, MTL_STEER_SEMAPHORE, 0x1);
+}
+
+/**
* intel_gt_mcr_read - read a specific instance of an MCR register
* @gt: GT structure
* @reg: the MCR register to read
* @group: the MCR group
* @instance: the MCR instance
*
+ * Context: Takes and releases gt->mcr_lock
+ *
* Returns the value read from an MCR register after steering toward a specific
* group/instance.
*/
u32 intel_gt_mcr_read(struct intel_gt *gt,
- i915_reg_t reg,
+ i915_mcr_reg_t reg,
int group, int instance)
{
- return rw_with_mcr_steering(gt->uncore, reg, FW_REG_READ, group, instance, 0);
+ return rw_with_mcr_steering(gt, reg, FW_REG_READ, group, instance, 0);
}
/**
@@ -249,11 +448,13 @@ u32 intel_gt_mcr_read(struct intel_gt *gt,
*
* Write an MCR register in unicast mode after steering toward a specific
* group/instance.
+ *
+ * Context: Calls a function that takes and releases gt->mcr_lock
*/
-void intel_gt_mcr_unicast_write(struct intel_gt *gt, i915_reg_t reg, u32 value,
+void intel_gt_mcr_unicast_write(struct intel_gt *gt, i915_mcr_reg_t reg, u32 value,
int group, int instance)
{
- rw_with_mcr_steering(gt->uncore, reg, FW_REG_WRITE, group, instance, value);
+ rw_with_mcr_steering(gt, reg, FW_REG_WRITE, group, instance, value);
}
/**
@@ -263,11 +464,26 @@ void intel_gt_mcr_unicast_write(struct intel_gt *gt, i915_reg_t reg, u32 value,
* @value: value to write
*
* Write an MCR register in multicast mode to update all instances.
+ *
+ * Context: Takes and releases gt->mcr_lock
*/
void intel_gt_mcr_multicast_write(struct intel_gt *gt,
- i915_reg_t reg, u32 value)
+ i915_mcr_reg_t reg, u32 value)
{
- intel_uncore_write(gt->uncore, reg, value);
+ unsigned long flags;
+
+ intel_gt_mcr_lock(gt, &flags);
+
+ /*
+ * Ensure we have multicast behavior, just in case some non-i915 agent
+ * left the hardware in unicast mode.
+ */
+ if (GRAPHICS_VER_FULL(gt->i915) >= IP_VER(12, 70))
+ intel_uncore_write_fw(gt->uncore, MTL_MCR_SELECTOR, GEN11_MCR_MULTICAST);
+
+ intel_uncore_write(gt->uncore, mcr_reg_cast(reg), value);
+
+ intel_gt_mcr_unlock(gt, flags);
}
/**
@@ -280,10 +496,51 @@ void intel_gt_mcr_multicast_write(struct intel_gt *gt,
* function assumes the caller is already holding any necessary forcewake
* domains; use intel_gt_mcr_multicast_write() in cases where forcewake should
* be obtained automatically.
+ *
+ * Context: The caller must hold gt->mcr_lock.
+ */
+void intel_gt_mcr_multicast_write_fw(struct intel_gt *gt, i915_mcr_reg_t reg, u32 value)
+{
+ lockdep_assert_held(&gt->mcr_lock);
+
+ /*
+ * Ensure we have multicast behavior, just in case some non-i915 agent
+ * left the hardware in unicast mode.
+ */
+ if (GRAPHICS_VER_FULL(gt->i915) >= IP_VER(12, 70))
+ intel_uncore_write_fw(gt->uncore, MTL_MCR_SELECTOR, GEN11_MCR_MULTICAST);
+
+ intel_uncore_write_fw(gt->uncore, mcr_reg_cast(reg), value);
+}
+
+/**
+ * intel_gt_mcr_multicast_rmw - Performs a multicast RMW operations
+ * @gt: GT structure
+ * @reg: the MCR register to read and write
+ * @clear: bits to clear during RMW
+ * @set: bits to set during RMW
+ *
+ * Performs a read-modify-write on an MCR register in a multicast manner.
+ * This operation only makes sense on MCR registers where all instances are
+ * expected to have the same value. The read will target any non-terminated
+ * instance and the write will be applied to all instances.
+ *
+ * This function assumes the caller is already holding any necessary forcewake
+ * domains; use intel_gt_mcr_multicast_rmw() in cases where forcewake should
+ * be obtained automatically.
+ *
+ * Context: Calls functions that take and release gt->mcr_lock
+ *
+ * Returns the old (unmodified) value read.
*/
-void intel_gt_mcr_multicast_write_fw(struct intel_gt *gt, i915_reg_t reg, u32 value)
+u32 intel_gt_mcr_multicast_rmw(struct intel_gt *gt, i915_mcr_reg_t reg,
+ u32 clear, u32 set)
{
- intel_uncore_write_fw(gt->uncore, reg, value);
+ u32 val = intel_gt_mcr_read_any(gt, reg);
+
+ intel_gt_mcr_multicast_write(gt, reg, (val & ~clear) | set);
+
+ return val;
}
/*
@@ -301,15 +558,18 @@ void intel_gt_mcr_multicast_write_fw(struct intel_gt *gt, i915_reg_t reg, u32 va
* for @type steering too.
*/
static bool reg_needs_read_steering(struct intel_gt *gt,
- i915_reg_t reg,
+ i915_mcr_reg_t reg,
enum intel_steering_type type)
{
- const u32 offset = i915_mmio_reg_offset(reg);
+ u32 offset = i915_mmio_reg_offset(reg);
const struct intel_mmio_range *entry;
if (likely(!gt->steering_table[type]))
return false;
+ if (IS_GSI_REG(offset))
+ offset += gt->uncore->gsi_offset;
+
for (entry = gt->steering_table[type]; entry->end; entry++) {
if (offset >= entry->start && offset <= entry->end)
return true;
@@ -332,6 +592,8 @@ static void get_nonterminated_steering(struct intel_gt *gt,
enum intel_steering_type type,
u8 *group, u8 *instance)
{
+ u32 dss;
+
switch (type) {
case L3BANK:
*group = 0; /* unused */
@@ -351,6 +613,15 @@ static void get_nonterminated_steering(struct intel_gt *gt,
*group = __ffs(gt->info.mslice_mask) << 1;
*instance = 0; /* unused */
break;
+ case GAM:
+ *group = IS_DG2(gt->i915) ? 1 : 0;
+ *instance = 0;
+ break;
+ case DSS:
+ dss = intel_sseu_find_first_xehp_dss(&gt->info.sseu, 0, 0);
+ *group = dss / GEN_DSS_PER_GSLICE;
+ *instance = dss % GEN_DSS_PER_GSLICE;
+ break;
case INSTANCE0:
/*
* There are a lot of MCR types for which instance (0, 0)
@@ -359,6 +630,13 @@ static void get_nonterminated_steering(struct intel_gt *gt,
*group = 0;
*instance = 0;
break;
+ case OADDRM:
+ if ((VDBOX_MASK(gt) | VEBOX_MASK(gt) | gt->info.sfc_mask) & BIT(0))
+ *group = 0;
+ else
+ *group = 1;
+ *instance = 0;
+ break;
default:
MISSING_CASE(type);
*group = 0;
@@ -380,7 +658,7 @@ static void get_nonterminated_steering(struct intel_gt *gt,
* steering.
*/
void intel_gt_mcr_get_nonterminated_steering(struct intel_gt *gt,
- i915_reg_t reg,
+ i915_mcr_reg_t reg,
u8 *group, u8 *instance)
{
int type;
@@ -407,23 +685,27 @@ void intel_gt_mcr_get_nonterminated_steering(struct intel_gt *gt,
* domains; use intel_gt_mcr_read_any() in cases where forcewake should be
* obtained automatically.
*
+ * Context: The caller must hold gt->mcr_lock.
+ *
* Returns the value from a non-terminated instance of @reg.
*/
-u32 intel_gt_mcr_read_any_fw(struct intel_gt *gt, i915_reg_t reg)
+u32 intel_gt_mcr_read_any_fw(struct intel_gt *gt, i915_mcr_reg_t reg)
{
int type;
u8 group, instance;
+ lockdep_assert_held(&gt->mcr_lock);
+
for (type = 0; type < NUM_STEERING_TYPES; type++) {
if (reg_needs_read_steering(gt, reg, type)) {
get_nonterminated_steering(gt, type, &group, &instance);
- return rw_with_mcr_steering_fw(gt->uncore, reg,
+ return rw_with_mcr_steering_fw(gt, reg,
FW_REG_READ,
group, instance, 0);
}
}
- return intel_uncore_read_fw(gt->uncore, reg);
+ return intel_uncore_read_fw(gt->uncore, mcr_reg_cast(reg));
}
/**
@@ -434,9 +716,11 @@ u32 intel_gt_mcr_read_any_fw(struct intel_gt *gt, i915_reg_t reg)
* Reads a GT MCR register. The read will be steered to a non-terminated
* instance (i.e., one that isn't fused off or powered down by power gating).
*
+ * Context: Calls a function that takes and releases gt->mcr_lock.
+ *
* Returns the value from a non-terminated instance of @reg.
*/
-u32 intel_gt_mcr_read_any(struct intel_gt *gt, i915_reg_t reg)
+u32 intel_gt_mcr_read_any(struct intel_gt *gt, i915_mcr_reg_t reg)
{
int type;
u8 group, instance;
@@ -444,13 +728,13 @@ u32 intel_gt_mcr_read_any(struct intel_gt *gt, i915_reg_t reg)
for (type = 0; type < NUM_STEERING_TYPES; type++) {
if (reg_needs_read_steering(gt, reg, type)) {
get_nonterminated_steering(gt, type, &group, &instance);
- return rw_with_mcr_steering(gt->uncore, reg,
+ return rw_with_mcr_steering(gt, reg,
FW_REG_READ,
group, instance, 0);
}
}
- return intel_uncore_read(gt->uncore, reg);
+ return intel_uncore_read(gt->uncore, mcr_reg_cast(reg));
}
static void report_steering_type(struct drm_printer *p,
@@ -483,11 +767,20 @@ static void report_steering_type(struct drm_printer *p,
void intel_gt_mcr_report_steering(struct drm_printer *p, struct intel_gt *gt,
bool dump_table)
{
- drm_printf(p, "Default steering: group=0x%x, instance=0x%x\n",
- gt->default_steering.groupid,
- gt->default_steering.instanceid);
-
- if (IS_PONTEVECCHIO(gt->i915)) {
+ /*
+ * Starting with MTL we no longer have default steering;
+ * all ranges are explicitly steered.
+ */
+ if (GRAPHICS_VER_FULL(gt->i915) < IP_VER(12, 70))
+ drm_printf(p, "Default steering: group=0x%x, instance=0x%x\n",
+ gt->default_steering.groupid,
+ gt->default_steering.instanceid);
+
+ if (GRAPHICS_VER_FULL(gt->i915) >= IP_VER(12, 70)) {
+ for (int i = 0; i < NUM_STEERING_TYPES; i++)
+ if (gt->steering_table[i])
+ report_steering_type(p, gt, i, dump_table);
+ } else if (IS_PONTEVECCHIO(gt->i915)) {
report_steering_type(p, gt, INSTANCE0, dump_table);
} else if (HAS_MSLICE_STEERING(gt->i915)) {
report_steering_type(p, gt, MSLICE, dump_table);
@@ -520,3 +813,61 @@ void intel_gt_mcr_get_ss_steering(struct intel_gt *gt, unsigned int dss,
return;
}
}
+
+/**
+ * intel_gt_mcr_wait_for_reg - wait until MCR register matches expected state
+ * @gt: GT structure
+ * @reg: the register to read
+ * @mask: mask to apply to register value
+ * @value: value to wait for
+ * @fast_timeout_us: fast timeout in microsecond for atomic/tight wait
+ * @slow_timeout_ms: slow timeout in millisecond
+ *
+ * This routine waits until the target register @reg contains the expected
+ * @value after applying the @mask, i.e. it waits until ::
+ *
+ * (intel_gt_mcr_read_any_fw(gt, reg) & mask) == value
+ *
+ * Otherwise, the wait will timeout after @slow_timeout_ms milliseconds.
+ * For atomic context @slow_timeout_ms must be zero and @fast_timeout_us
+ * must be not larger than 20,0000 microseconds.
+ *
+ * This function is basically an MCR-friendly version of
+ * __intel_wait_for_register_fw(). Generally this function will only be used
+ * on GAM registers which are a bit special --- although they're MCR registers,
+ * reads (e.g., waiting for status updates) are always directed to the primary
+ * instance.
+ *
+ * Note that this routine assumes the caller holds forcewake asserted, it is
+ * not suitable for very long waits.
+ *
+ * Context: Calls a function that takes and releases gt->mcr_lock
+ * Return: 0 if the register matches the desired condition, or -ETIMEDOUT.
+ */
+int intel_gt_mcr_wait_for_reg(struct intel_gt *gt,
+ i915_mcr_reg_t reg,
+ u32 mask,
+ u32 value,
+ unsigned int fast_timeout_us,
+ unsigned int slow_timeout_ms)
+{
+ int ret;
+
+ lockdep_assert_not_held(&gt->mcr_lock);
+
+#define done ((intel_gt_mcr_read_any(gt, reg) & mask) == value)
+
+ /* Catch any overuse of this function */
+ might_sleep_if(slow_timeout_ms);
+ GEM_BUG_ON(fast_timeout_us > 20000);
+ GEM_BUG_ON(!fast_timeout_us && !slow_timeout_ms);
+
+ ret = -ETIMEDOUT;
+ if (fast_timeout_us && fast_timeout_us <= 20000)
+ ret = _wait_for_atomic(done, fast_timeout_us, 0);
+ if (ret && slow_timeout_ms)
+ ret = wait_for(done, slow_timeout_ms);
+
+ return ret;
+#undef done
+}
diff --git a/drivers/gpu/drm/i915/gt/intel_gt_mcr.h b/drivers/gpu/drm/i915/gt/intel_gt_mcr.h
index 77a8b11c287d..41684495b7da 100644
--- a/drivers/gpu/drm/i915/gt/intel_gt_mcr.h
+++ b/drivers/gpu/drm/i915/gt/intel_gt_mcr.h
@@ -9,23 +9,28 @@
#include "intel_gt_types.h"
void intel_gt_mcr_init(struct intel_gt *gt);
+void intel_gt_mcr_lock(struct intel_gt *gt, unsigned long *flags);
+void intel_gt_mcr_unlock(struct intel_gt *gt, unsigned long flags);
u32 intel_gt_mcr_read(struct intel_gt *gt,
- i915_reg_t reg,
+ i915_mcr_reg_t reg,
int group, int instance);
-u32 intel_gt_mcr_read_any_fw(struct intel_gt *gt, i915_reg_t reg);
-u32 intel_gt_mcr_read_any(struct intel_gt *gt, i915_reg_t reg);
+u32 intel_gt_mcr_read_any_fw(struct intel_gt *gt, i915_mcr_reg_t reg);
+u32 intel_gt_mcr_read_any(struct intel_gt *gt, i915_mcr_reg_t reg);
void intel_gt_mcr_unicast_write(struct intel_gt *gt,
- i915_reg_t reg, u32 value,
+ i915_mcr_reg_t reg, u32 value,
int group, int instance);
void intel_gt_mcr_multicast_write(struct intel_gt *gt,
- i915_reg_t reg, u32 value);
+ i915_mcr_reg_t reg, u32 value);
void intel_gt_mcr_multicast_write_fw(struct intel_gt *gt,
- i915_reg_t reg, u32 value);
+ i915_mcr_reg_t reg, u32 value);
+
+u32 intel_gt_mcr_multicast_rmw(struct intel_gt *gt, i915_mcr_reg_t reg,
+ u32 clear, u32 set);
void intel_gt_mcr_get_nonterminated_steering(struct intel_gt *gt,
- i915_reg_t reg,
+ i915_mcr_reg_t reg,
u8 *group, u8 *instance);
void intel_gt_mcr_report_steering(struct drm_printer *p, struct intel_gt *gt,
@@ -34,6 +39,13 @@ void intel_gt_mcr_report_steering(struct drm_printer *p, struct intel_gt *gt,
void intel_gt_mcr_get_ss_steering(struct intel_gt *gt, unsigned int dss,
unsigned int *group, unsigned int *instance);
+int intel_gt_mcr_wait_for_reg(struct intel_gt *gt,
+ i915_mcr_reg_t reg,
+ u32 mask,
+ u32 value,
+ unsigned int fast_timeout_us,
+ unsigned int slow_timeout_ms);
+
/*
* Helper for for_each_ss_steering loop. On pre-Xe_HP platforms, subslice
* presence is determined by using the group/instance as direct lookups in the
diff --git a/drivers/gpu/drm/i915/gt/intel_gt_pm.c b/drivers/gpu/drm/i915/gt/intel_gt_pm.c
index f553e2173bda..e02cb90723ae 100644
--- a/drivers/gpu/drm/i915/gt/intel_gt_pm.c
+++ b/drivers/gpu/drm/i915/gt/intel_gt_pm.c
@@ -7,15 +7,16 @@
#include <linux/suspend.h>
#include "i915_drv.h"
+#include "i915_irq.h"
#include "i915_params.h"
#include "intel_context.h"
#include "intel_engine_pm.h"
#include "intel_gt.h"
#include "intel_gt_clock_utils.h"
#include "intel_gt_pm.h"
+#include "intel_gt_print.h"
#include "intel_gt_requests.h"
#include "intel_llc.h"
-#include "intel_pm.h"
#include "intel_rc6.h"
#include "intel_rps.h"
#include "intel_wakeref.h"
@@ -247,8 +248,7 @@ int intel_gt_resume(struct intel_gt *gt)
/* Only when the HW is re-initialised, can we replay the requests */
err = intel_gt_init_hw(gt);
if (err) {
- i915_probe_error(gt->i915,
- "Failed to initialize GPU, declaring it wedged!\n");
+ gt_probe_error(gt, "Failed to initialize GPU, declaring it wedged!\n");
goto err_wedged;
}
@@ -265,9 +265,8 @@ int intel_gt_resume(struct intel_gt *gt)
intel_engine_pm_put(engine);
if (err) {
- drm_err(&gt->i915->drm,
- "Failed to restart %s (%d)\n",
- engine->name, err);
+ gt_err(gt, "Failed to restart %s (%d)\n",
+ engine->name, err);
goto err_wedged;
}
}
@@ -276,8 +275,6 @@ int intel_gt_resume(struct intel_gt *gt)
intel_uc_resume(&gt->uc);
- intel_pxp_resume(&gt->pxp);
-
user_forcewake(gt, false);
out_fw:
@@ -311,8 +308,6 @@ void intel_gt_suspend_prepare(struct intel_gt *gt)
{
user_forcewake(gt, true);
wait_for_suspend(gt);
-
- intel_pxp_suspend_prepare(&gt->pxp);
}
static suspend_state_t pm_suspend_target(void)
@@ -337,7 +332,6 @@ void intel_gt_suspend_late(struct intel_gt *gt)
GEM_BUG_ON(gt->awake);
intel_uc_suspend(&gt->uc);
- intel_pxp_suspend(&gt->pxp);
/*
* On disabling the device, we want to turn off HW access to memory
@@ -365,7 +359,6 @@ void intel_gt_suspend_late(struct intel_gt *gt)
void intel_gt_runtime_suspend(struct intel_gt *gt)
{
- intel_pxp_runtime_suspend(&gt->pxp);
intel_uc_runtime_suspend(&gt->uc);
GT_TRACE(gt, "\n");
@@ -383,8 +376,6 @@ int intel_gt_runtime_resume(struct intel_gt *gt)
if (ret)
return ret;
- intel_pxp_runtime_resume(&gt->pxp);
-
return 0;
}
diff --git a/drivers/gpu/drm/i915/gt/intel_gt_pm_debugfs.c b/drivers/gpu/drm/i915/gt/intel_gt_pm_debugfs.c
index 108b9e76c32e..80dbbef86b1d 100644
--- a/drivers/gpu/drm/i915/gt/intel_gt_pm_debugfs.c
+++ b/drivers/gpu/drm/i915/gt/intel_gt_pm_debugfs.c
@@ -83,19 +83,6 @@ static int fw_domains_show(struct seq_file *m, void *data)
}
DEFINE_INTEL_GT_DEBUGFS_ATTRIBUTE(fw_domains);
-static void print_rc6_res(struct seq_file *m,
- const char *title,
- const i915_reg_t reg)
-{
- struct intel_gt *gt = m->private;
- intel_wakeref_t wakeref;
-
- with_intel_runtime_pm(gt->uncore->rpm, wakeref)
- seq_printf(m, "%s %u (%llu us)\n", title,
- intel_uncore_read(gt->uncore, reg),
- intel_rc6_residency_us(&gt->rc6, reg));
-}
-
static int vlv_drpc(struct seq_file *m)
{
struct intel_gt *gt = m->private;
@@ -115,8 +102,8 @@ static int vlv_drpc(struct seq_file *m)
seq_printf(m, "Media Power Well: %s\n",
(pw_status & VLV_GTLC_PW_MEDIA_STATUS_MASK) ? "Up" : "Down");
- print_rc6_res(m, "Render RC6 residency since boot:", GEN6_GT_GFX_RC6);
- print_rc6_res(m, "Media RC6 residency since boot:", VLV_GT_MEDIA_RC6);
+ intel_rc6_print_residency(m, "Render RC6 residency since boot:", INTEL_RC6_RES_RC6);
+ intel_rc6_print_residency(m, "Media RC6 residency since boot:", INTEL_RC6_RES_VLV_MEDIA);
return fw_domains_show(m, NULL);
}
@@ -192,11 +179,11 @@ static int gen6_drpc(struct seq_file *m)
}
/* Not exactly sure what this is */
- print_rc6_res(m, "RC6 \"Locked to RPn\" residency since boot:",
- GEN6_GT_GFX_RC6_LOCKED);
- print_rc6_res(m, "RC6 residency since boot:", GEN6_GT_GFX_RC6);
- print_rc6_res(m, "RC6+ residency since boot:", GEN6_GT_GFX_RC6p);
- print_rc6_res(m, "RC6++ residency since boot:", GEN6_GT_GFX_RC6pp);
+ intel_rc6_print_residency(m, "RC6 \"Locked to RPn\" residency since boot:",
+ INTEL_RC6_RES_RC6_LOCKED);
+ intel_rc6_print_residency(m, "RC6 residency since boot:", INTEL_RC6_RES_RC6);
+ intel_rc6_print_residency(m, "RC6+ residency since boot:", INTEL_RC6_RES_RC6p);
+ intel_rc6_print_residency(m, "RC6++ residency since boot:", INTEL_RC6_RES_RC6pp);
if (GRAPHICS_VER(i915) <= 7) {
seq_printf(m, "RC6 voltage: %dmV\n",
@@ -269,6 +256,61 @@ static int ilk_drpc(struct seq_file *m)
return 0;
}
+static int mtl_drpc(struct seq_file *m)
+{
+ struct intel_gt *gt = m->private;
+ struct intel_uncore *uncore = gt->uncore;
+ u32 gt_core_status, rcctl1, mt_fwake_req;
+ u32 mtl_powergate_enable = 0, mtl_powergate_status = 0;
+
+ mt_fwake_req = intel_uncore_read_fw(uncore, FORCEWAKE_MT);
+ gt_core_status = intel_uncore_read(uncore, MTL_MIRROR_TARGET_WP1);
+
+ rcctl1 = intel_uncore_read(uncore, GEN6_RC_CONTROL);
+ mtl_powergate_enable = intel_uncore_read(uncore, GEN9_PG_ENABLE);
+ mtl_powergate_status = intel_uncore_read(uncore,
+ GEN9_PWRGT_DOMAIN_STATUS);
+
+ seq_printf(m, "RC6 Enabled: %s\n",
+ str_yes_no(rcctl1 & GEN6_RC_CTL_RC6_ENABLE));
+ if (gt->type == GT_MEDIA) {
+ seq_printf(m, "Media Well Gating Enabled: %s\n",
+ str_yes_no(mtl_powergate_enable & GEN9_MEDIA_PG_ENABLE));
+ } else {
+ seq_printf(m, "Render Well Gating Enabled: %s\n",
+ str_yes_no(mtl_powergate_enable & GEN9_RENDER_PG_ENABLE));
+ }
+
+ seq_puts(m, "Current RC state: ");
+ switch (REG_FIELD_GET(MTL_CC_MASK, gt_core_status)) {
+ case MTL_CC0:
+ seq_puts(m, "RC0\n");
+ break;
+ case MTL_CC6:
+ seq_puts(m, "RC6\n");
+ break;
+ default:
+ MISSING_CASE(REG_FIELD_GET(MTL_CC_MASK, gt_core_status));
+ seq_puts(m, "Unknown\n");
+ break;
+ }
+
+ seq_printf(m, "Multi-threaded Forcewake Request: 0x%x\n", mt_fwake_req);
+ if (gt->type == GT_MEDIA)
+ seq_printf(m, "Media Power Well: %s\n",
+ (mtl_powergate_status &
+ GEN9_PWRGT_MEDIA_STATUS_MASK) ? "Up" : "Down");
+ else
+ seq_printf(m, "Render Power Well: %s\n",
+ (mtl_powergate_status &
+ GEN9_PWRGT_RENDER_STATUS_MASK) ? "Up" : "Down");
+
+ /* Works for both render and media gt's */
+ intel_rc6_print_residency(m, "RC6 residency since boot:", INTEL_RC6_RES_RC6);
+
+ return fw_domains_show(m, NULL);
+}
+
static int drpc_show(struct seq_file *m, void *unused)
{
struct intel_gt *gt = m->private;
@@ -277,7 +319,9 @@ static int drpc_show(struct seq_file *m, void *unused)
int err = -ENODEV;
with_intel_runtime_pm(gt->uncore->rpm, wakeref) {
- if (IS_VALLEYVIEW(i915) || IS_CHERRYVIEW(i915))
+ if (GRAPHICS_VER_FULL(i915) >= IP_VER(12, 70))
+ err = mtl_drpc(m);
+ else if (IS_VALLEYVIEW(i915) || IS_CHERRYVIEW(i915))
err = vlv_drpc(m);
else if (GRAPHICS_VER(i915) >= 6)
err = gen6_drpc(m);
@@ -307,7 +351,7 @@ void intel_gt_pm_frequency_dump(struct intel_gt *gt, struct drm_printer *p)
drm_printf(p, "Current VID: %d\n", (rgvstat & MEMSTAT_VID_MASK) >>
MEMSTAT_VID_SHIFT);
drm_printf(p, "Current P-state: %d\n",
- (rgvstat & MEMSTAT_PSTATE_MASK) >> MEMSTAT_PSTATE_SHIFT);
+ REG_FIELD_GET(MEMSTAT_PSTATE_MASK, rgvstat));
} else if (IS_VALLEYVIEW(i915) || IS_CHERRYVIEW(i915)) {
u32 rpmodectl, freq_sts;
@@ -344,162 +388,7 @@ void intel_gt_pm_frequency_dump(struct intel_gt *gt, struct drm_printer *p)
drm_printf(p, "efficient (RPe) frequency: %d MHz\n",
intel_gpu_freq(rps, rps->efficient_freq));
} else if (GRAPHICS_VER(i915) >= 6) {
- u32 rp_state_limits;
- u32 gt_perf_status;
- struct intel_rps_freq_caps caps;
- u32 rpmodectl, rpinclimit, rpdeclimit;
- u32 rpstat, cagf, reqf;
- u32 rpcurupei, rpcurup, rpprevup;
- u32 rpcurdownei, rpcurdown, rpprevdown;
- u32 rpupei, rpupt, rpdownei, rpdownt;
- u32 pm_ier, pm_imr, pm_isr, pm_iir, pm_mask;
-
- rp_state_limits = intel_uncore_read(uncore, GEN6_RP_STATE_LIMITS);
- gen6_rps_get_freq_caps(rps, &caps);
- if (IS_GEN9_LP(i915))
- gt_perf_status = intel_uncore_read(uncore, BXT_GT_PERF_STATUS);
- else
- gt_perf_status = intel_uncore_read(uncore, GEN6_GT_PERF_STATUS);
-
- /* RPSTAT1 is in the GT power well */
- intel_uncore_forcewake_get(uncore, FORCEWAKE_ALL);
-
- reqf = intel_uncore_read(uncore, GEN6_RPNSWREQ);
- if (GRAPHICS_VER(i915) >= 9) {
- reqf >>= 23;
- } else {
- reqf &= ~GEN6_TURBO_DISABLE;
- if (IS_HASWELL(i915) || IS_BROADWELL(i915))
- reqf >>= 24;
- else
- reqf >>= 25;
- }
- reqf = intel_gpu_freq(rps, reqf);
-
- rpmodectl = intel_uncore_read(uncore, GEN6_RP_CONTROL);
- rpinclimit = intel_uncore_read(uncore, GEN6_RP_UP_THRESHOLD);
- rpdeclimit = intel_uncore_read(uncore, GEN6_RP_DOWN_THRESHOLD);
-
- rpstat = intel_uncore_read(uncore, GEN6_RPSTAT1);
- rpcurupei = intel_uncore_read(uncore, GEN6_RP_CUR_UP_EI) & GEN6_CURICONT_MASK;
- rpcurup = intel_uncore_read(uncore, GEN6_RP_CUR_UP) & GEN6_CURBSYTAVG_MASK;
- rpprevup = intel_uncore_read(uncore, GEN6_RP_PREV_UP) & GEN6_CURBSYTAVG_MASK;
- rpcurdownei = intel_uncore_read(uncore, GEN6_RP_CUR_DOWN_EI) & GEN6_CURIAVG_MASK;
- rpcurdown = intel_uncore_read(uncore, GEN6_RP_CUR_DOWN) & GEN6_CURBSYTAVG_MASK;
- rpprevdown = intel_uncore_read(uncore, GEN6_RP_PREV_DOWN) & GEN6_CURBSYTAVG_MASK;
-
- rpupei = intel_uncore_read(uncore, GEN6_RP_UP_EI);
- rpupt = intel_uncore_read(uncore, GEN6_RP_UP_THRESHOLD);
-
- rpdownei = intel_uncore_read(uncore, GEN6_RP_DOWN_EI);
- rpdownt = intel_uncore_read(uncore, GEN6_RP_DOWN_THRESHOLD);
-
- cagf = intel_rps_read_actual_frequency(rps);
-
- intel_uncore_forcewake_put(uncore, FORCEWAKE_ALL);
-
- if (GRAPHICS_VER(i915) >= 11) {
- pm_ier = intel_uncore_read(uncore, GEN11_GPM_WGBOXPERF_INTR_ENABLE);
- pm_imr = intel_uncore_read(uncore, GEN11_GPM_WGBOXPERF_INTR_MASK);
- /*
- * The equivalent to the PM ISR & IIR cannot be read
- * without affecting the current state of the system
- */
- pm_isr = 0;
- pm_iir = 0;
- } else if (GRAPHICS_VER(i915) >= 8) {
- pm_ier = intel_uncore_read(uncore, GEN8_GT_IER(2));
- pm_imr = intel_uncore_read(uncore, GEN8_GT_IMR(2));
- pm_isr = intel_uncore_read(uncore, GEN8_GT_ISR(2));
- pm_iir = intel_uncore_read(uncore, GEN8_GT_IIR(2));
- } else {
- pm_ier = intel_uncore_read(uncore, GEN6_PMIER);
- pm_imr = intel_uncore_read(uncore, GEN6_PMIMR);
- pm_isr = intel_uncore_read(uncore, GEN6_PMISR);
- pm_iir = intel_uncore_read(uncore, GEN6_PMIIR);
- }
- pm_mask = intel_uncore_read(uncore, GEN6_PMINTRMSK);
-
- drm_printf(p, "Video Turbo Mode: %s\n",
- str_yes_no(rpmodectl & GEN6_RP_MEDIA_TURBO));
- drm_printf(p, "HW control enabled: %s\n",
- str_yes_no(rpmodectl & GEN6_RP_ENABLE));
- drm_printf(p, "SW control enabled: %s\n",
- str_yes_no((rpmodectl & GEN6_RP_MEDIA_MODE_MASK) == GEN6_RP_MEDIA_SW_MODE));
-
- drm_printf(p, "PM IER=0x%08x IMR=0x%08x, MASK=0x%08x\n",
- pm_ier, pm_imr, pm_mask);
- if (GRAPHICS_VER(i915) <= 10)
- drm_printf(p, "PM ISR=0x%08x IIR=0x%08x\n",
- pm_isr, pm_iir);
- drm_printf(p, "pm_intrmsk_mbz: 0x%08x\n",
- rps->pm_intrmsk_mbz);
- drm_printf(p, "GT_PERF_STATUS: 0x%08x\n", gt_perf_status);
- drm_printf(p, "Render p-state ratio: %d\n",
- (gt_perf_status & (GRAPHICS_VER(i915) >= 9 ? 0x1ff00 : 0xff00)) >> 8);
- drm_printf(p, "Render p-state VID: %d\n",
- gt_perf_status & 0xff);
- drm_printf(p, "Render p-state limit: %d\n",
- rp_state_limits & 0xff);
- drm_printf(p, "RPSTAT1: 0x%08x\n", rpstat);
- drm_printf(p, "RPMODECTL: 0x%08x\n", rpmodectl);
- drm_printf(p, "RPINCLIMIT: 0x%08x\n", rpinclimit);
- drm_printf(p, "RPDECLIMIT: 0x%08x\n", rpdeclimit);
- drm_printf(p, "RPNSWREQ: %dMHz\n", reqf);
- drm_printf(p, "CAGF: %dMHz\n", cagf);
- drm_printf(p, "RP CUR UP EI: %d (%lldns)\n",
- rpcurupei,
- intel_gt_pm_interval_to_ns(gt, rpcurupei));
- drm_printf(p, "RP CUR UP: %d (%lldns)\n",
- rpcurup, intel_gt_pm_interval_to_ns(gt, rpcurup));
- drm_printf(p, "RP PREV UP: %d (%lldns)\n",
- rpprevup, intel_gt_pm_interval_to_ns(gt, rpprevup));
- drm_printf(p, "Up threshold: %d%%\n",
- rps->power.up_threshold);
- drm_printf(p, "RP UP EI: %d (%lldns)\n",
- rpupei, intel_gt_pm_interval_to_ns(gt, rpupei));
- drm_printf(p, "RP UP THRESHOLD: %d (%lldns)\n",
- rpupt, intel_gt_pm_interval_to_ns(gt, rpupt));
-
- drm_printf(p, "RP CUR DOWN EI: %d (%lldns)\n",
- rpcurdownei,
- intel_gt_pm_interval_to_ns(gt, rpcurdownei));
- drm_printf(p, "RP CUR DOWN: %d (%lldns)\n",
- rpcurdown,
- intel_gt_pm_interval_to_ns(gt, rpcurdown));
- drm_printf(p, "RP PREV DOWN: %d (%lldns)\n",
- rpprevdown,
- intel_gt_pm_interval_to_ns(gt, rpprevdown));
- drm_printf(p, "Down threshold: %d%%\n",
- rps->power.down_threshold);
- drm_printf(p, "RP DOWN EI: %d (%lldns)\n",
- rpdownei, intel_gt_pm_interval_to_ns(gt, rpdownei));
- drm_printf(p, "RP DOWN THRESHOLD: %d (%lldns)\n",
- rpdownt, intel_gt_pm_interval_to_ns(gt, rpdownt));
-
- drm_printf(p, "Lowest (RPN) frequency: %dMHz\n",
- intel_gpu_freq(rps, caps.min_freq));
- drm_printf(p, "Nominal (RP1) frequency: %dMHz\n",
- intel_gpu_freq(rps, caps.rp1_freq));
- drm_printf(p, "Max non-overclocked (RP0) frequency: %dMHz\n",
- intel_gpu_freq(rps, caps.rp0_freq));
- drm_printf(p, "Max overclocked frequency: %dMHz\n",
- intel_gpu_freq(rps, rps->max_freq));
-
- drm_printf(p, "Current freq: %d MHz\n",
- intel_gpu_freq(rps, rps->cur_freq));
- drm_printf(p, "Actual freq: %d MHz\n", cagf);
- drm_printf(p, "Idle freq: %d MHz\n",
- intel_gpu_freq(rps, rps->idle_freq));
- drm_printf(p, "Min freq: %d MHz\n",
- intel_gpu_freq(rps, rps->min_freq));
- drm_printf(p, "Boost freq: %d MHz\n",
- intel_gpu_freq(rps, rps->boost_freq));
- drm_printf(p, "Max freq: %d MHz\n",
- intel_gpu_freq(rps, rps->max_freq));
- drm_printf(p,
- "efficient (RPe) frequency: %d MHz\n",
- intel_gpu_freq(rps, rps->efficient_freq));
+ gen6_rps_frequency_dump(rps, p);
} else {
drm_puts(p, "no P-state info available\n");
}
@@ -655,6 +544,44 @@ static bool rps_eval(void *data)
DEFINE_INTEL_GT_DEBUGFS_ATTRIBUTE(rps_boost);
+static int perf_limit_reasons_get(void *data, u64 *val)
+{
+ struct intel_gt *gt = data;
+ intel_wakeref_t wakeref;
+
+ with_intel_runtime_pm(gt->uncore->rpm, wakeref)
+ *val = intel_uncore_read(gt->uncore, intel_gt_perf_limit_reasons_reg(gt));
+
+ return 0;
+}
+
+static int perf_limit_reasons_clear(void *data, u64 val)
+{
+ struct intel_gt *gt = data;
+ intel_wakeref_t wakeref;
+
+ /*
+ * Clear the upper 16 "log" bits, the lower 16 "status" bits are
+ * read-only. The upper 16 "log" bits are identical to the lower 16
+ * "status" bits except that the "log" bits remain set until cleared.
+ */
+ with_intel_runtime_pm(gt->uncore->rpm, wakeref)
+ intel_uncore_rmw(gt->uncore, intel_gt_perf_limit_reasons_reg(gt),
+ GT0_PERF_LIMIT_REASONS_LOG_MASK, 0);
+
+ return 0;
+}
+
+static bool perf_limit_reasons_eval(void *data)
+{
+ struct intel_gt *gt = data;
+
+ return i915_mmio_reg_valid(intel_gt_perf_limit_reasons_reg(gt));
+}
+
+DEFINE_SIMPLE_ATTRIBUTE(perf_limit_reasons_fops, perf_limit_reasons_get,
+ perf_limit_reasons_clear, "0x%llx\n");
+
void intel_gt_pm_debugfs_register(struct intel_gt *gt, struct dentry *root)
{
static const struct intel_gt_debugfs_file files[] = {
@@ -664,6 +591,7 @@ void intel_gt_pm_debugfs_register(struct intel_gt *gt, struct dentry *root)
{ "forcewake_user", &forcewake_user_fops, NULL},
{ "llc", &llc_fops, llc_eval },
{ "rps_boost", &rps_boost_fops, rps_eval },
+ { "perf_limit_reasons", &perf_limit_reasons_fops, perf_limit_reasons_eval },
};
intel_gt_debugfs_register_files(root, files, ARRAY_SIZE(files), gt);
diff --git a/drivers/gpu/drm/i915/gt/intel_gt_print.h b/drivers/gpu/drm/i915/gt/intel_gt_print.h
new file mode 100644
index 000000000000..55a336a9ff06
--- /dev/null
+++ b/drivers/gpu/drm/i915/gt/intel_gt_print.h
@@ -0,0 +1,54 @@
+/* SPDX-License-Identifier: MIT */
+/*
+ * Copyright © 2023 Intel Corporation
+ */
+
+#ifndef __INTEL_GT_PRINT__
+#define __INTEL_GT_PRINT__
+
+#include <drm/drm_print.h>
+#include "intel_gt_types.h"
+#include "i915_utils.h"
+
+#define gt_err(_gt, _fmt, ...) \
+ drm_err(&(_gt)->i915->drm, "GT%u: " _fmt, (_gt)->info.id, ##__VA_ARGS__)
+
+#define gt_warn(_gt, _fmt, ...) \
+ drm_warn(&(_gt)->i915->drm, "GT%u: " _fmt, (_gt)->info.id, ##__VA_ARGS__)
+
+#define gt_notice(_gt, _fmt, ...) \
+ drm_notice(&(_gt)->i915->drm, "GT%u: " _fmt, (_gt)->info.id, ##__VA_ARGS__)
+
+#define gt_info(_gt, _fmt, ...) \
+ drm_info(&(_gt)->i915->drm, "GT%u: " _fmt, (_gt)->info.id, ##__VA_ARGS__)
+
+#define gt_dbg(_gt, _fmt, ...) \
+ drm_dbg(&(_gt)->i915->drm, "GT%u: " _fmt, (_gt)->info.id, ##__VA_ARGS__)
+
+#define gt_err_ratelimited(_gt, _fmt, ...) \
+ drm_err_ratelimited(&(_gt)->i915->drm, "GT%u: " _fmt, (_gt)->info.id, ##__VA_ARGS__)
+
+#define gt_notice_ratelimited(_gt, _fmt, ...) \
+ dev_notice_ratelimited((_gt)->i915->drm.dev, "GT%u: " _fmt, (_gt)->info.id, ##__VA_ARGS__)
+
+#define gt_probe_error(_gt, _fmt, ...) \
+ do { \
+ if (i915_error_injected()) \
+ gt_dbg(_gt, _fmt, ##__VA_ARGS__); \
+ else \
+ gt_err(_gt, _fmt, ##__VA_ARGS__); \
+ } while (0)
+
+#define gt_WARN(_gt, _condition, _fmt, ...) \
+ drm_WARN(&(_gt)->i915->drm, _condition, "GT%u: " _fmt, (_gt)->info.id, ##__VA_ARGS__)
+
+#define gt_WARN_ONCE(_gt, _condition, _fmt, ...) \
+ drm_WARN_ONCE(&(_gt)->i915->drm, _condition, "GT%u: " _fmt, (_gt)->info.id, ##__VA_ARGS__)
+
+#define gt_WARN_ON(_gt, _condition) \
+ gt_WARN(_gt, _condition, "%s", "gt_WARN_ON(" __stringify(_condition) ")")
+
+#define gt_WARN_ON_ONCE(_gt, _condition) \
+ gt_WARN_ONCE(_gt, _condition, "%s", "gt_WARN_ONCE(" __stringify(_condition) ")")
+
+#endif /* __INTEL_GT_PRINT_H__ */
diff --git a/drivers/gpu/drm/i915/gt/intel_gt_regs.h b/drivers/gpu/drm/i915/gt/intel_gt_regs.h
index 2275ee47da95..fd1f9cd35e9d 100644
--- a/drivers/gpu/drm/i915/gt/intel_gt_regs.h
+++ b/drivers/gpu/drm/i915/gt/intel_gt_regs.h
@@ -7,6 +7,25 @@
#define __INTEL_GT_REGS__
#include "i915_reg_defs.h"
+#include "display/intel_display_reg_defs.h" /* VLV_DISPLAY_BASE */
+
+/*
+ * The perf control registers are technically multicast registers, but the
+ * driver never needs to read/write them directly; we only use them to build
+ * lists of registers (where they're mixed in with other non-MCR registers)
+ * and then operate on the offset directly. For now we'll just define them
+ * as non-multicast so we can place them on the same list, but we may want
+ * to try to come up with a better way to handle heterogeneous lists of
+ * registers in the future.
+ */
+#define PERF_REG(offset) _MMIO(offset)
+
+/* MTL workpoint reg to get core C state and actual freq of 3D, SAMedia */
+#define MTL_MIRROR_TARGET_WP1 _MMIO(0xc60)
+#define MTL_CAGF_MASK REG_GENMASK(8, 0)
+#define MTL_CC0 0x0
+#define MTL_CC6 0x3
+#define MTL_CC_MASK REG_GENMASK(12, 9)
/* RPM unit config (Gen8+) */
#define RPM_CONFIG0 _MMIO(0xd00)
@@ -39,9 +58,18 @@
#define FORCEWAKE_ACK_RENDER_GEN9 _MMIO(0xd84)
#define FORCEWAKE_ACK_MEDIA_GEN9 _MMIO(0xd88)
+#define FORCEWAKE_ACK_GSC _MMIO(0xdf8)
+#define FORCEWAKE_ACK_GT_MTL _MMIO(0xdfc)
+
+#define GMD_ID_GRAPHICS _MMIO(0xd8c)
+#define GMD_ID_MEDIA _MMIO(MTL_MEDIA_GSI_BASE + 0xd8c)
+
#define MCFG_MCR_SELECTOR _MMIO(0xfd0)
+#define MTL_STEER_SEMAPHORE _MMIO(0xfd0)
+#define MTL_MCR_SELECTOR _MMIO(0xfd4)
#define SF_MCR_SELECTOR _MMIO(0xfd8)
#define GEN8_MCR_SELECTOR _MMIO(0xfdc)
+#define GAM_MCR_SELECTOR _MMIO(0xfe0)
#define GEN8_MCR_SLICE(slice) (((slice) & 3) << 26)
#define GEN8_MCR_SLICE_MASK GEN8_MCR_SLICE(3)
#define GEN8_MCR_SUBSLICE(subslice) (((subslice) & 3) << 24)
@@ -51,6 +79,8 @@
#define GEN11_MCR_SLICE_MASK GEN11_MCR_SLICE(0xf)
#define GEN11_MCR_SUBSLICE(subslice) (((subslice) & 0x7) << 24)
#define GEN11_MCR_SUBSLICE_MASK GEN11_MCR_SUBSLICE(0x7)
+#define MTL_MCR_GROUPID REG_GENMASK(11, 8)
+#define MTL_MCR_INSTANCEID REG_GENMASK(3, 0)
#define IPEIR_I965 _MMIO(0x2064)
#define IPEHR_I965 _MMIO(0x2068)
@@ -326,11 +356,12 @@
#define GEN7_TLB_RD_ADDR _MMIO(0x4700)
#define GEN12_PAT_INDEX(index) _MMIO(0x4800 + (index) * 4)
+#define XEHP_PAT_INDEX(index) MCR_REG(0x4800 + (index) * 4)
-#define XEHP_TILE0_ADDR_RANGE _MMIO(0x4900)
+#define XEHP_TILE0_ADDR_RANGE MCR_REG(0x4900)
#define XEHP_TILE_LMEM_RANGE_SHIFT 8
-#define XEHP_FLAT_CCS_BASE_ADDR _MMIO(0x4910)
+#define XEHP_FLAT_CCS_BASE_ADDR MCR_REG(0x4910)
#define XEHP_CCS_BASE_SHIFT 8
#define GAMTARBMODE _MMIO(0x4a08)
@@ -374,31 +405,36 @@
#define GEN9_WM_CHICKEN3 _MMIO(0x5588)
#define GEN9_FACTOR_IN_CLR_VAL_HIZ (1 << 9)
-#define CHICKEN_RASTER_1 _MMIO(0x6204)
+#define XEHP_CULLBIT1 MCR_REG(0x6100)
+
+#define CHICKEN_RASTER_1 MCR_REG(0x6204)
#define DIS_SF_ROUND_NEAREST_EVEN REG_BIT(8)
-#define CHICKEN_RASTER_2 _MMIO(0x6208)
+#define CHICKEN_RASTER_2 MCR_REG(0x6208)
#define TBIMR_FAST_CLIP REG_BIT(5)
-#define VFLSKPD _MMIO(0x62a8)
+#define VFLSKPD MCR_REG(0x62a8)
+#define VF_PREFETCH_TLB_DIS REG_BIT(5)
#define DIS_OVER_FETCH_CACHE REG_BIT(1)
#define DIS_MULT_MISS_RD_SQUASH REG_BIT(0)
-#define FF_MODE2 _MMIO(0x6604)
+#define GEN12_FF_MODE2 _MMIO(0x6604)
+#define XEHP_FF_MODE2 MCR_REG(0x6604)
#define FF_MODE2_GS_TIMER_MASK REG_GENMASK(31, 24)
#define FF_MODE2_GS_TIMER_224 REG_FIELD_PREP(FF_MODE2_GS_TIMER_MASK, 224)
#define FF_MODE2_TDS_TIMER_MASK REG_GENMASK(23, 16)
#define FF_MODE2_TDS_TIMER_128 REG_FIELD_PREP(FF_MODE2_TDS_TIMER_MASK, 4)
-#define XEHPG_INSTDONE_GEOM_SVG _MMIO(0x666c)
+#define XEHPG_INSTDONE_GEOM_SVG MCR_REG(0x666c)
#define CACHE_MODE_0_GEN7 _MMIO(0x7000) /* IVB+ */
#define RC_OP_FLUSH_ENABLE (1 << 0)
#define HIZ_RAW_STALL_OPT_DISABLE (1 << 2)
#define CACHE_MODE_1 _MMIO(0x7004) /* IVB+ */
-#define PIXEL_SUBSPAN_COLLECT_OPT_DISABLE (1 << 6)
-#define GEN8_4x4_STC_OPTIMIZATION_DISABLE (1 << 6)
-#define GEN9_PARTIAL_RESOLVE_IN_VC_DISABLE (1 << 1)
+#define MSAA_OPTIMIZATION_REDUC_DISABLE REG_BIT(11)
+#define PIXEL_SUBSPAN_COLLECT_OPT_DISABLE REG_BIT(6)
+#define GEN8_4x4_STC_OPTIMIZATION_DISABLE REG_BIT(6)
+#define GEN9_PARTIAL_RESOLVE_IN_VC_DISABLE REG_BIT(1)
#define GEN7_GT_MODE _MMIO(0x7008)
#define GEN9_IZ_HASHING_MASK(slice) (0x3 << ((slice) * 2))
@@ -418,11 +454,17 @@
#define HIZ_CHICKEN _MMIO(0x7018)
#define CHV_HZ_8X8_MODE_IN_1X REG_BIT(15)
#define DG1_HZ_READ_SUPPRESSION_OPTIMIZATION_DISABLE REG_BIT(14)
+#define HZ_DEPTH_TEST_LE_GE_OPT_DISABLE REG_BIT(13)
#define BDW_HIZ_POWER_COMPILER_CLOCK_GATING_DISABLE REG_BIT(3)
+#define XEHP_CULLBIT2 MCR_REG(0x7030)
+
#define GEN8_L3CNTLREG _MMIO(0x7034)
#define GEN8_ERRDETBCTRL (1 << 9)
+#define XEHP_PSS_MODE2 MCR_REG(0x703c)
+#define SCOREBOARD_STALL_FLUSH_CONTROL REG_BIT(5)
+
#define GEN7_SC_INSTDONE _MMIO(0x7100)
#define GEN12_SC_INSTDONE_EXTRA _MMIO(0x7104)
#define GEN12_SC_INSTDONE_EXTRA2 _MMIO(0x7108)
@@ -436,26 +478,22 @@
#define HDC_FORCE_NON_COHERENT (1 << 4)
#define HDC_BARRIER_PERFORMANCE_DISABLE (1 << 10)
+#define COMMON_SLICE_CHICKEN4 _MMIO(0x7300)
+#define DISABLE_TDC_LOAD_BALANCING_CALC REG_BIT(6)
+
#define GEN8_HDC_CHICKEN1 _MMIO(0x7304)
#define GEN11_COMMON_SLICE_CHICKEN3 _MMIO(0x7304)
+#define XEHP_COMMON_SLICE_CHICKEN3 MCR_REG(0x7304)
#define DG1_FLOAT_POINT_BLEND_OPT_STRICT_MODE_EN REG_BIT(12)
#define XEHP_DUAL_SIMD8_SEQ_MERGE_DISABLE REG_BIT(12)
#define GEN11_BLEND_EMB_FIX_DISABLE_IN_RCC REG_BIT(11)
#define GEN12_DISABLE_CPS_AWARE_COLOR_PIPE REG_BIT(9)
-/* GEN9 chicken */
-#define SLICE_ECO_CHICKEN0 _MMIO(0x7308)
-#define PIXEL_MASK_CAMMING_DISABLE (1 << 14)
-
-#define GEN9_SLICE_COMMON_ECO_CHICKEN0 _MMIO(0x7308)
-#define DISABLE_PIXEL_MASK_CAMMING (1 << 14)
-
#define GEN9_SLICE_COMMON_ECO_CHICKEN1 _MMIO(0x731c)
-#define GEN11_STATE_CACHE_REDIRECT_TO_CS (1 << 11)
-
-#define SLICE_COMMON_ECO_CHICKEN1 _MMIO(0x731c)
+#define XEHP_SLICE_COMMON_ECO_CHICKEN1 MCR_REG(0x731c)
#define MSC_MSAA_REODER_BUF_BYPASS_DISABLE REG_BIT(14)
+#define GEN11_STATE_CACHE_REDIRECT_TO_CS (1 << 11)
#define GEN9_SLICE_PGCTL_ACK(slice) _MMIO(0x804c + (slice) * 0x4)
#define GEN10_SLICE_PGCTL_ACK(slice) _MMIO(0x804c + ((slice) / 3) * 0x34 + \
@@ -482,9 +520,12 @@
#define VF_PREEMPTION _MMIO(0x83a4)
#define PREEMPTION_VERTEX_COUNT REG_GENMASK(15, 0)
+#define VFG_PREEMPTION_CHICKEN _MMIO(0x83b4)
+#define POLYGON_TRIFAN_LINELOOP_DISABLE REG_BIT(4)
+
#define GEN8_RC6_CTX_INFO _MMIO(0x8504)
-#define GEN12_SQCM _MMIO(0x8724)
+#define XEHP_SQCM MCR_REG(0x8724)
#define EN_32B_ACCESS REG_BIT(30)
#define HSW_IDICR _MMIO(0x9008)
@@ -516,6 +557,8 @@
#define GEN6_MBCTL_BOOT_FETCH_MECH (1 << 0)
/* Fuse readout registers for GT */
+#define XEHP_FUSE4 _MMIO(0x9114)
+#define GT_L3_EXC_MASK REG_GENMASK(6, 4)
#define GEN10_MIRROR_FUSE3 _MMIO(0x9118)
#define GEN10_L3BANK_PAIR_COUNT 4
#define GEN10_L3BANK_MASK 0x0F
@@ -619,6 +662,7 @@
#define XEHPC_GRDOM_BLT3 REG_BIT(26)
#define XEHPC_GRDOM_BLT2 REG_BIT(25)
#define XEHPC_GRDOM_BLT1 REG_BIT(24)
+#define GEN12_GRDOM_GSC REG_BIT(21)
#define GEN11_GRDOM_SFC3 REG_BIT(20)
#define GEN11_GRDOM_SFC2 REG_BIT(19)
#define GEN11_GRDOM_SFC1 REG_BIT(18)
@@ -643,7 +687,7 @@
#define GEN6_RSTCTL _MMIO(0x9420)
#define GEN7_MISCCPCTL _MMIO(0x9424)
-#define GEN7_DOP_CLOCK_GATE_ENABLE (1 << 0)
+#define GEN7_DOP_CLOCK_GATE_ENABLE REG_BIT(0)
#define GEN12_DOP_CLOCK_GATE_RENDER_ENABLE REG_BIT(1)
#define GEN8_DOP_CLOCK_GATE_CFCLK_ENABLE (1 << 2)
#define GEN8_DOP_CLOCK_GATE_GUC_ENABLE (1 << 4)
@@ -697,7 +741,8 @@
#define GAMTLBVEBOX0_CLKGATE_DIS REG_BIT(16)
#define LTCDD_CLKGATE_DIS REG_BIT(10)
-#define SLICE_UNIT_LEVEL_CLKGATE _MMIO(0x94d4)
+#define GEN11_SLICE_UNIT_LEVEL_CLKGATE _MMIO(0x94d4)
+#define XEHP_SLICE_UNIT_LEVEL_CLKGATE MCR_REG(0x94d4)
#define SARBUNIT_CLKGATE_DIS (1 << 5)
#define RCCUNIT_CLKGATE_DIS (1 << 7)
#define MSCUNIT_CLKGATE_DIS (1 << 10)
@@ -705,29 +750,26 @@
#define L3_CLKGATE_DIS REG_BIT(16)
#define L3_CR2X_CLKGATE_DIS REG_BIT(17)
-#define SCCGCTL94DC _MMIO(0x94dc)
+#define SCCGCTL94DC MCR_REG(0x94dc)
#define CG3DDISURB REG_BIT(14)
#define UNSLICE_UNIT_LEVEL_CLKGATE2 _MMIO(0x94e4)
#define VSUNIT_CLKGATE_DIS_TGL REG_BIT(19)
#define PSDUNIT_CLKGATE_DIS REG_BIT(5)
-#define SUBSLICE_UNIT_LEVEL_CLKGATE _MMIO(0x9524)
+#define GEN11_SUBSLICE_UNIT_LEVEL_CLKGATE MCR_REG(0x9524)
#define DSS_ROUTER_CLKGATE_DIS REG_BIT(28)
#define GWUNIT_CLKGATE_DIS REG_BIT(16)
-#define SUBSLICE_UNIT_LEVEL_CLKGATE2 _MMIO(0x9528)
+#define SUBSLICE_UNIT_LEVEL_CLKGATE2 MCR_REG(0x9528)
#define CPSSUNIT_CLKGATE_DIS REG_BIT(9)
-#define SSMCGCTL9530 _MMIO(0x9530)
+#define SSMCGCTL9530 MCR_REG(0x9530)
#define RTFUNIT_CLKGATE_DIS REG_BIT(18)
-#define GEN10_DFR_RATIO_EN_AND_CHICKEN _MMIO(0x9550)
+#define GEN10_DFR_RATIO_EN_AND_CHICKEN MCR_REG(0x9550)
#define DFR_DISABLE (1 << 9)
-#define INF_UNIT_LEVEL_CLKGATE _MMIO(0x9560)
-#define CGPSF_CLKGATE_DIS (1 << 3)
-
#define MICRO_BP0_0 _MMIO(0x9800)
#define MICRO_BP0_2 _MMIO(0x9804)
#define MICRO_BP0_1 _MMIO(0x9808)
@@ -770,12 +812,9 @@
#define GEN6_RP_DOWN_TIMEOUT _MMIO(0xa010)
#define GEN6_RP_INTERRUPT_LIMITS _MMIO(0xa014)
#define GEN6_RPSTAT1 _MMIO(0xa01c)
-#define GEN6_CAGF_SHIFT 8
-#define HSW_CAGF_SHIFT 7
-#define GEN9_CAGF_SHIFT 23
-#define GEN6_CAGF_MASK (0x7f << GEN6_CAGF_SHIFT)
-#define HSW_CAGF_MASK (0x7f << HSW_CAGF_SHIFT)
-#define GEN9_CAGF_MASK (0x1ff << GEN9_CAGF_SHIFT)
+#define GEN6_CAGF_MASK REG_GENMASK(14, 8)
+#define HSW_CAGF_MASK REG_GENMASK(13, 7)
+#define GEN9_CAGF_MASK REG_GENMASK(31, 23)
#define GEN6_RP_CONTROL _MMIO(0xa024)
#define GEN6_RP_MEDIA_TURBO (1 << 11)
#define GEN6_RP_MEDIA_MODE_MASK (3 << 9)
@@ -883,6 +922,10 @@
#define MSG_IDLE_FW_MASK REG_GENMASK(13, 9)
#define MSG_IDLE_FW_SHIFT 9
+#define RC_PSMI_CTRL_GSCCS _MMIO(0x11a050)
+#define IDLE_MSG_DISABLE REG_BIT(0)
+#define PWRCTX_MAXCNT_GSCCS _MMIO(0x11a054)
+
#define FORCEWAKE_MEDIA_GEN9 _MMIO(0xa270)
#define FORCEWAKE_RENDER_GEN9 _MMIO(0xa278)
@@ -898,6 +941,8 @@
#define FORCEWAKE_MEDIA_VDBOX_GEN11(n) _MMIO(0xa540 + (n) * 4)
#define FORCEWAKE_MEDIA_VEBOX_GEN11(n) _MMIO(0xa560 + (n) * 4)
+#define FORCEWAKE_REQ_GSC _MMIO(0xa618)
+
#define CHV_POWER_SS0_SIG1 _MMIO(0xa720)
#define CHV_POWER_SS0_SIG2 _MMIO(0xa724)
#define CHV_POWER_SS1_SIG1 _MMIO(0xa728)
@@ -913,10 +958,11 @@
#define GEN7_DISABLE_SAMPLER_PREFETCH (1 << 30)
#define GEN8_GARBCNTL _MMIO(0xb004)
-#define GEN9_GAPS_TSV_CREDIT_DISABLE (1 << 7)
-#define GEN11_ARBITRATION_PRIO_ORDER_MASK (0x3f << 22)
-#define GEN11_HASH_CTRL_EXCL_MASK (0x7f << 0)
-#define GEN11_HASH_CTRL_EXCL_BIT0 (1 << 0)
+#define GEN11_ARBITRATION_PRIO_ORDER_MASK REG_GENMASK(27, 22)
+#define GEN12_BUS_HASH_CTL_BIT_EXC REG_BIT(7)
+#define GEN9_GAPS_TSV_CREDIT_DISABLE REG_BIT(7)
+#define GEN11_HASH_CTRL_EXCL_MASK REG_GENMASK(6, 0)
+#define GEN11_HASH_CTRL_EXCL_BIT0 REG_FIELD_PREP(GEN11_HASH_CTRL_EXCL_MASK, 0x1)
#define GEN9_SCRATCH_LNCF1 _MMIO(0xb008)
#define GEN9_LNCF_NONIA_COHERENT_ATOMICS_ENABLE REG_BIT(0)
@@ -928,14 +974,16 @@
#define GEN7_WA_FOR_GEN7_L3_CONTROL 0x3C47FF8C
#define GEN7_L3AGDIS (1 << 19)
-#define XEHPC_LNCFMISCCFGREG0 _MMIO(0xb01c)
+#define XEHPC_LNCFMISCCFGREG0 MCR_REG(0xb01c)
+#define XEHPC_HOSTCACHEEN REG_BIT(1)
#define XEHPC_OVRLSCCC REG_BIT(0)
#define GEN7_L3CNTLREG2 _MMIO(0xb020)
/* MOCS (Memory Object Control State) registers */
#define GEN9_LNCFCMOCS(i) _MMIO(0xb020 + (i) * 4) /* L3 Cache Control */
-#define GEN9_LNCFCMOCS_REG_COUNT 32
+#define XEHP_LNCFCMOCS(i) MCR_REG(0xb020 + (i) * 4)
+#define LNCFCMOCS_REG_COUNT 32
#define GEN7_L3CNTLREG3 _MMIO(0xb024)
@@ -951,15 +999,10 @@
#define GEN7_L3LOG(slice, i) _MMIO(0xb070 + (slice) * 0x200 + (i) * 4)
#define GEN7_L3LOG_SIZE 0x80
-#define GEN10_SCRATCH_LNCF2 _MMIO(0xb0a0)
-#define PMFLUSHDONE_LNICRSDROP (1 << 20)
-#define PMFLUSH_GAPL3UNBLOCK (1 << 21)
-#define PMFLUSHDONE_LNEBLK (1 << 22)
-
-#define XEHP_L3NODEARBCFG _MMIO(0xb0b4)
+#define XEHP_L3NODEARBCFG MCR_REG(0xb0b4)
#define XEHP_LNESPARE REG_BIT(19)
-#define GEN8_L3SQCREG1 _MMIO(0xb100)
+#define GEN8_L3SQCREG1 MCR_REG(0xb100)
/*
* Note that on CHV the following has an off-by-one error wrt. to BSpec.
* Using the formula in BSpec leads to a hang, while the formula here works
@@ -970,39 +1013,36 @@
#define L3_HIGH_PRIO_CREDITS(x) (((x) >> 1) << 14)
#define L3_PRIO_CREDITS_MASK ((0x1f << 19) | (0x1f << 14))
-#define GEN10_L3_CHICKEN_MODE_REGISTER _MMIO(0xb114)
-#define GEN11_I2M_WRITE_DISABLE (1 << 28)
-
-#define GEN8_L3SQCREG4 _MMIO(0xb118)
+#define GEN8_L3SQCREG4 MCR_REG(0xb118)
#define GEN11_LQSC_CLEAN_EVICT_DISABLE (1 << 6)
#define GEN8_LQSC_RO_PERF_DIS (1 << 27)
#define GEN8_LQSC_FLUSH_COHERENT_LINES (1 << 21)
#define GEN8_LQSQ_NONIA_COHERENT_ATOMICS_ENABLE REG_BIT(22)
-#define GEN9_SCRATCH1 _MMIO(0xb11c)
+#define GEN9_SCRATCH1 MCR_REG(0xb11c)
#define EVICTION_PERF_FIX_ENABLE REG_BIT(8)
-#define BDW_SCRATCH1 _MMIO(0xb11c)
+#define BDW_SCRATCH1 MCR_REG(0xb11c)
#define GEN9_LBS_SLA_RETRY_TIMER_DECREMENT_ENABLE (1 << 2)
-#define GEN11_SCRATCH2 _MMIO(0xb140)
+#define GEN11_SCRATCH2 MCR_REG(0xb140)
#define GEN11_COHERENT_PARTIAL_WRITE_MERGE_ENABLE (1 << 19)
-#define GEN11_L3SQCREG5 _MMIO(0xb158)
+#define XEHP_L3SQCREG5 MCR_REG(0xb158)
#define L3_PWM_TIMER_INIT_VAL_MASK REG_GENMASK(9, 0)
-#define MLTICTXCTL _MMIO(0xb170)
+#define MLTICTXCTL MCR_REG(0xb170)
#define TDONRENDER REG_BIT(2)
-#define XEHP_L3SCQREG7 _MMIO(0xb188)
+#define XEHP_L3SCQREG7 MCR_REG(0xb188)
#define BLEND_FILL_CACHING_OPT_DIS REG_BIT(3)
-#define XEHPC_L3SCRUB _MMIO(0xb18c)
+#define XEHPC_L3SCRUB MCR_REG(0xb18c)
#define SCRUB_CL_DWNGRADE_SHARED REG_BIT(12)
#define SCRUB_RATE_PER_BANK_MASK REG_GENMASK(2, 0)
#define SCRUB_RATE_4B_PER_CLK REG_FIELD_PREP(SCRUB_RATE_PER_BANK_MASK, 0x6)
-#define L3SQCREG1_CCS0 _MMIO(0xb200)
+#define L3SQCREG1_CCS0 MCR_REG(0xb200)
#define FLUSHALLNONCOH REG_BIT(5)
#define GEN11_GLBLINVL _MMIO(0xb404)
@@ -1027,11 +1067,14 @@
#define GEN9_BLT_MOCS(i) _MMIO(__GEN9_BCS0_MOCS0 + (i) * 4)
#define GEN12_FAULT_TLB_DATA0 _MMIO(0xceb8)
+#define XEHP_FAULT_TLB_DATA0 MCR_REG(0xceb8)
#define GEN12_FAULT_TLB_DATA1 _MMIO(0xcebc)
+#define XEHP_FAULT_TLB_DATA1 MCR_REG(0xcebc)
#define FAULT_VA_HIGH_BITS (0xf << 0)
#define FAULT_GTT_SEL (1 << 4)
#define GEN12_RING_FAULT_REG _MMIO(0xcec4)
+#define XEHP_RING_FAULT_REG MCR_REG(0xcec4)
#define GEN8_RING_FAULT_ENGINE_ID(x) (((x) >> 12) & 0x7)
#define RING_FAULT_GTTSEL_MASK (1 << 11)
#define RING_FAULT_SRCID(x) (((x) >> 3) & 0xff)
@@ -1039,72 +1082,93 @@
#define RING_FAULT_VALID (1 << 0)
#define GEN12_GFX_TLB_INV_CR _MMIO(0xced8)
+#define XEHP_GFX_TLB_INV_CR MCR_REG(0xced8)
#define GEN12_VD_TLB_INV_CR _MMIO(0xcedc)
+#define XEHP_VD_TLB_INV_CR MCR_REG(0xcedc)
#define GEN12_VE_TLB_INV_CR _MMIO(0xcee0)
+#define XEHP_VE_TLB_INV_CR MCR_REG(0xcee0)
#define GEN12_BLT_TLB_INV_CR _MMIO(0xcee4)
+#define XEHP_BLT_TLB_INV_CR MCR_REG(0xcee4)
#define GEN12_COMPCTX_TLB_INV_CR _MMIO(0xcf04)
-
-#define GEN12_MERT_MOD_CTRL _MMIO(0xcf28)
-#define RENDER_MOD_CTRL _MMIO(0xcf2c)
-#define COMP_MOD_CTRL _MMIO(0xcf30)
-#define VDBX_MOD_CTRL _MMIO(0xcf34)
-#define VEBX_MOD_CTRL _MMIO(0xcf38)
+#define XEHP_COMPCTX_TLB_INV_CR MCR_REG(0xcf04)
+#define XELPMP_GSC_TLB_INV_CR _MMIO(0xcf04) /* media GT only */
+
+#define XEHP_MERT_MOD_CTRL MCR_REG(0xcf28)
+#define RENDER_MOD_CTRL MCR_REG(0xcf2c)
+#define COMP_MOD_CTRL MCR_REG(0xcf30)
+#define XELPMP_GSC_MOD_CTRL _MMIO(0xcf30) /* media GT only */
+#define XEHP_VDBX_MOD_CTRL MCR_REG(0xcf34)
+#define XELPMP_VDBX_MOD_CTRL _MMIO(0xcf34)
+#define XEHP_VEBX_MOD_CTRL MCR_REG(0xcf38)
+#define XELPMP_VEBX_MOD_CTRL _MMIO(0xcf38)
#define FORCE_MISS_FTLB REG_BIT(3)
-#define GEN12_GAMSTLB_CTRL _MMIO(0xcf4c)
+#define XEHP_GAMSTLB_CTRL MCR_REG(0xcf4c)
#define CONTROL_BLOCK_CLKGATE_DIS REG_BIT(12)
#define EGRESS_BLOCK_CLKGATE_DIS REG_BIT(11)
#define TAG_BLOCK_CLKGATE_DIS REG_BIT(7)
-#define GEN12_GAMCNTRL_CTRL _MMIO(0xcf54)
+#define XEHP_GAMCNTRL_CTRL MCR_REG(0xcf54)
#define INVALIDATION_BROADCAST_MODE_DIS REG_BIT(12)
#define GLOBAL_INVALIDATION_MODE REG_BIT(2)
#define GEN12_GAM_DONE _MMIO(0xcf68)
#define GEN7_HALF_SLICE_CHICKEN1 _MMIO(0xe100) /* IVB GT1 + VLV */
+#define GEN8_HALF_SLICE_CHICKEN1 MCR_REG(0xe100)
#define GEN7_MAX_PS_THREAD_DEP (8 << 12)
#define GEN7_SINGLE_SUBSCAN_DISPATCH_ENABLE (1 << 10)
#define GEN7_SBE_SS_CACHE_DISPATCH_PORT_SHARING_DISABLE (1 << 4)
#define GEN7_PSD_SINGLE_PORT_DISPATCH_ENABLE (1 << 3)
#define GEN7_SAMPLER_INSTDONE _MMIO(0xe160)
+#define GEN8_SAMPLER_INSTDONE MCR_REG(0xe160)
#define GEN7_ROW_INSTDONE _MMIO(0xe164)
+#define GEN8_ROW_INSTDONE MCR_REG(0xe164)
-#define HALF_SLICE_CHICKEN2 _MMIO(0xe180)
+#define HALF_SLICE_CHICKEN2 MCR_REG(0xe180)
#define GEN8_ST_PO_DISABLE (1 << 13)
-#define HALF_SLICE_CHICKEN3 _MMIO(0xe184)
+#define HSW_HALF_SLICE_CHICKEN3 _MMIO(0xe184)
+#define GEN8_HALF_SLICE_CHICKEN3 MCR_REG(0xe184)
#define HSW_SAMPLE_C_PERFORMANCE (1 << 9)
#define GEN8_CENTROID_PIXEL_OPT_DIS (1 << 8)
#define GEN9_DISABLE_OCL_OOB_SUPPRESS_LOGIC (1 << 5)
#define GEN8_SAMPLER_POWER_BYPASS_DIS (1 << 1)
-#define GEN9_HALF_SLICE_CHICKEN5 _MMIO(0xe188)
+#define GEN9_HALF_SLICE_CHICKEN5 MCR_REG(0xe188)
#define GEN9_DG_MIRROR_FIX_ENABLE (1 << 5)
#define GEN9_CCS_TLB_PREFETCH_ENABLE (1 << 3)
-#define GEN10_SAMPLER_MODE _MMIO(0xe18c)
+#define GEN10_SAMPLER_MODE MCR_REG(0xe18c)
#define ENABLE_SMALLPL REG_BIT(15)
#define SC_DISABLE_POWER_OPTIMIZATION_EBB REG_BIT(9)
#define GEN11_SAMPLER_ENABLE_HEADLESS_MSG REG_BIT(5)
+#define MTL_DISABLE_SAMPLER_SC_OOO REG_BIT(3)
+#define GEN11_INDIRECT_STATE_BASE_ADDR_OVERRIDE REG_BIT(0)
-#define GEN9_HALF_SLICE_CHICKEN7 _MMIO(0xe194)
+#define GEN9_HALF_SLICE_CHICKEN7 MCR_REG(0xe194)
#define DG2_DISABLE_ROUND_ENABLE_ALLOW_FOR_SSLA REG_BIT(15)
#define GEN9_SAMPLER_HASH_COMPRESSED_READ_ADDR REG_BIT(8)
#define GEN9_ENABLE_YV12_BUGFIX REG_BIT(4)
#define GEN9_ENABLE_GPGPU_PREEMPTION REG_BIT(2)
-#define GEN10_CACHE_MODE_SS _MMIO(0xe420)
+#define GEN10_CACHE_MODE_SS MCR_REG(0xe420)
#define ENABLE_EU_COUNT_FOR_TDL_FLUSH REG_BIT(10)
#define DISABLE_ECC REG_BIT(5)
#define FLOAT_BLEND_OPTIMIZATION_ENABLE REG_BIT(4)
+/*
+ * We have both ENABLE and DISABLE defines below using the same bit because the
+ * meaning depends on the target platform. There are no platform prefix for them
+ * because different steppings of DG2 pick one or the other semantics.
+ */
#define ENABLE_PREFETCH_INTO_IC REG_BIT(3)
+#define DISABLE_PREFETCH_INTO_IC REG_BIT(3)
-#define EU_PERF_CNTL0 _MMIO(0xe458)
-#define EU_PERF_CNTL4 _MMIO(0xe45c)
+#define EU_PERF_CNTL0 PERF_REG(0xe458)
+#define EU_PERF_CNTL4 PERF_REG(0xe45c)
-#define GEN9_ROW_CHICKEN4 _MMIO(0xe48c)
+#define GEN9_ROW_CHICKEN4 MCR_REG(0xe48c)
#define GEN12_DISABLE_GRF_CLEAR REG_BIT(13)
#define XEHP_DIS_BBL_SYSPIPE REG_BIT(11)
#define GEN12_DISABLE_TDL_PUSH REG_BIT(9)
@@ -1114,9 +1178,11 @@
#define THREAD_EX_ARB_MODE_RR_AFTER_DEP REG_FIELD_PREP(THREAD_EX_ARB_MODE, 0x2)
#define HSW_ROW_CHICKEN3 _MMIO(0xe49c)
+#define GEN9_ROW_CHICKEN3 MCR_REG(0xe49c)
#define HSW_ROW_CHICKEN3_L3_GLOBAL_ATOMICS_DISABLE (1 << 6)
+#define MTL_DISABLE_FIX_FOR_EOT_FLUSH REG_BIT(9)
-#define GEN8_ROW_CHICKEN _MMIO(0xe4f0)
+#define GEN8_ROW_CHICKEN MCR_REG(0xe4f0)
#define FLOW_CONTROL_ENABLE REG_BIT(15)
#define UGM_BACKUP_MODE REG_BIT(13)
#define MDQ_ARBITRATION_MODE REG_BIT(12)
@@ -1127,42 +1193,43 @@
#define DISABLE_EARLY_EOT REG_BIT(1)
#define GEN7_ROW_CHICKEN2 _MMIO(0xe4f4)
+
+#define GEN8_ROW_CHICKEN2 MCR_REG(0xe4f4)
#define GEN12_DISABLE_READ_SUPPRESSION REG_BIT(15)
#define GEN12_DISABLE_EARLY_READ REG_BIT(14)
#define GEN12_ENABLE_LARGE_GRF_MODE REG_BIT(12)
#define GEN12_PUSH_CONST_DEREF_HOLD_DIS REG_BIT(8)
+#define GEN12_DISABLE_DOP_GATING REG_BIT(0)
-#define RT_CTRL _MMIO(0xe530)
+#define RT_CTRL MCR_REG(0xe530)
#define DIS_NULL_QUERY REG_BIT(10)
#define STACKID_CTRL REG_GENMASK(6, 5)
#define STACKID_CTRL_512 REG_FIELD_PREP(STACKID_CTRL, 0x2)
-#define EU_PERF_CNTL1 _MMIO(0xe558)
-#define EU_PERF_CNTL5 _MMIO(0xe55c)
+#define EU_PERF_CNTL1 PERF_REG(0xe558)
+#define EU_PERF_CNTL5 PERF_REG(0xe55c)
-#define GEN12_HDC_CHICKEN0 _MMIO(0xe5f0)
+#define XEHP_HDC_CHICKEN0 MCR_REG(0xe5f0)
#define LSC_L1_FLUSH_CTL_3D_DATAPORT_FLUSH_EVENTS_MASK REG_GENMASK(13, 11)
-#define ICL_HDC_MODE _MMIO(0xe5f4)
+#define ICL_HDC_MODE MCR_REG(0xe5f4)
-#define EU_PERF_CNTL2 _MMIO(0xe658)
-#define EU_PERF_CNTL6 _MMIO(0xe65c)
-#define EU_PERF_CNTL3 _MMIO(0xe758)
+#define EU_PERF_CNTL2 PERF_REG(0xe658)
+#define EU_PERF_CNTL6 PERF_REG(0xe65c)
+#define EU_PERF_CNTL3 PERF_REG(0xe758)
-#define LSC_CHICKEN_BIT_0 _MMIO(0xe7c8)
+#define LSC_CHICKEN_BIT_0 MCR_REG(0xe7c8)
#define DISABLE_D8_D16_COASLESCE REG_BIT(30)
#define FORCE_1_SUB_MESSAGE_PER_FRAGMENT REG_BIT(15)
-#define LSC_CHICKEN_BIT_0_UDW _MMIO(0xe7c8 + 4)
+#define LSC_CHICKEN_BIT_0_UDW MCR_REG(0xe7c8 + 4)
#define DIS_CHAIN_2XSIMD8 REG_BIT(55 - 32)
#define FORCE_SLM_FENCE_SCOPE_TO_TILE REG_BIT(42 - 32)
#define FORCE_UGM_FENCE_SCOPE_TO_TILE REG_BIT(41 - 32)
#define MAXREQS_PER_BANK REG_GENMASK(39 - 32, 37 - 32)
#define DISABLE_128B_EVICTION_COMMAND_UDW REG_BIT(36 - 32)
-#define SARB_CHICKEN1 _MMIO(0xe90c)
+#define SARB_CHICKEN1 MCR_REG(0xe90c)
#define COMP_CKN_IN REG_GENMASK(30, 29)
-#define GEN7_HALF_SLICE_CHICKEN1_GT2 _MMIO(0xf100)
-
#define GEN7_ROW_CHICKEN2_GT2 _MMIO(0xf4f4)
#define DOP_CLOCK_GATING_DISABLE (1 << 0)
#define PUSH_CONSTANT_DEREF_DISABLE (1 << 8)
@@ -1339,8 +1406,7 @@
#define MEMSTAT_ILK _MMIO(0x111f8)
#define MEMSTAT_VID_MASK 0x7f00
#define MEMSTAT_VID_SHIFT 8
-#define MEMSTAT_PSTATE_MASK 0x00f8
-#define MEMSTAT_PSTATE_SHIFT 3
+#define MEMSTAT_PSTATE_MASK REG_GENMASK(7, 3)
#define MEMSTAT_MON_ACTV (1 << 2)
#define MEMSTAT_SRC_CTL_MASK 0x0003
#define MEMSTAT_SRC_CTL_CORE 0
@@ -1481,6 +1547,11 @@
#define FORCEWAKE_MEDIA_VLV _MMIO(0x1300b8)
#define FORCEWAKE_ACK_MEDIA_VLV _MMIO(0x1300bc)
+#define MTL_MEDIA_MC6 _MMIO(0x138048)
+
+#define MTL_GT_ACTIVITY_FACTOR _MMIO(0x138010)
+#define MTL_GT_L3_EXC_MASK REG_GENMASK(5, 3)
+
#define GEN6_GT_THREAD_STATUS_REG _MMIO(0x13805c)
#define GEN6_GT_THREAD_STATUS_CORE_MASK 0x7
@@ -1510,10 +1581,15 @@
#define VLV_RENDER_C0_COUNT _MMIO(0x138118)
#define VLV_MEDIA_C0_COUNT _MMIO(0x13811c)
+#define GEN12_RPSTAT1 _MMIO(0x1381b4)
+#define GEN12_VOLTAGE_MASK REG_GENMASK(10, 0)
+#define GEN12_CAGF_MASK REG_GENMASK(19, 11)
+
#define GEN11_GT_INTR_DW(x) _MMIO(0x190018 + ((x) * 4))
#define GEN11_CSME (31)
#define GEN11_GUNIT (28)
#define GEN11_GUC (25)
+#define MTL_MGUC (24)
#define GEN11_WDPERF (20)
#define GEN11_KCR (19)
#define GEN11_GTPM (16)
@@ -1568,6 +1644,7 @@
#define GEN11_VECS0_VECS1_INTR_MASK _MMIO(0x1900d0)
#define GEN12_VECS2_VECS3_INTR_MASK _MMIO(0x1900d4)
#define GEN11_GUC_SG_INTR_MASK _MMIO(0x1900e8)
+#define MTL_GUC_MGUC_INTR_MASK _MMIO(0x1900e8) /* MTL+ */
#define GEN11_GPM_WGBOXPERF_INTR_MASK _MMIO(0x1900ec)
#define GEN11_CRYPTO_RSVD_INTR_MASK _MMIO(0x1900f0)
#define GEN11_GUNIT_CSME_INTR_MASK _MMIO(0x1900f4)
@@ -1580,6 +1657,11 @@
#define GEN12_SFC_DONE(n) _MMIO(0x1cc000 + (n) * 0x1000)
+#define GT0_PACKAGE_ENERGY_STATUS _MMIO(0x250004)
+#define GT0_PACKAGE_RAPL_LIMIT _MMIO(0x250008)
+#define GT0_PACKAGE_POWER_SKU_UNIT _MMIO(0x250068)
+#define GT0_PLATFORM_ENERGY_STATUS _MMIO(0x25006c)
+
/*
* Standalone Media's non-engine GT registers are located at their regular GT
* offsets plus 0x380000. This extra offset is stored inside the intel_uncore
diff --git a/drivers/gpu/drm/i915/gt/intel_gt_requests.c b/drivers/gpu/drm/i915/gt/intel_gt_requests.c
index edb881d75630..1dfd01668c79 100644
--- a/drivers/gpu/drm/i915/gt/intel_gt_requests.c
+++ b/drivers/gpu/drm/i915/gt/intel_gt_requests.c
@@ -199,7 +199,7 @@ out_active: spin_lock(&timelines->lock);
if (remaining_timeout)
*remaining_timeout = timeout;
- return active_count ? timeout : 0;
+ return active_count ? timeout ?: -ETIME : 0;
}
static void retire_work_handler(struct work_struct *work)
diff --git a/drivers/gpu/drm/i915/gt/intel_gt_sysfs.c b/drivers/gpu/drm/i915/gt/intel_gt_sysfs.c
index d651ccd0ab20..33cba406b569 100644
--- a/drivers/gpu/drm/i915/gt/intel_gt_sysfs.c
+++ b/drivers/gpu/drm/i915/gt/intel_gt_sysfs.c
@@ -12,6 +12,7 @@
#include "i915_drv.h"
#include "i915_sysfs.h"
#include "intel_gt.h"
+#include "intel_gt_print.h"
#include "intel_gt_sysfs.h"
#include "intel_gt_sysfs_pm.h"
#include "intel_gt_types.h"
@@ -22,11 +23,9 @@ bool is_object_gt(struct kobject *kobj)
return !strncmp(kobj->name, "gt", 2);
}
-struct intel_gt *intel_gt_sysfs_get_drvdata(struct device *dev,
+struct intel_gt *intel_gt_sysfs_get_drvdata(struct kobject *kobj,
const char *name)
{
- struct kobject *kobj = &dev->kobj;
-
/*
* We are interested at knowing from where the interface
* has been called, whether it's called from gt/ or from
@@ -38,6 +37,7 @@ struct intel_gt *intel_gt_sysfs_get_drvdata(struct device *dev,
* "struct drm_i915_private *" type.
*/
if (!is_object_gt(kobj)) {
+ struct device *dev = kobj_to_dev(kobj);
struct drm_i915_private *i915 = kdev_minor_to_i915(dev);
return to_gt(i915);
@@ -51,18 +51,18 @@ static struct kobject *gt_get_parent_obj(struct intel_gt *gt)
return &gt->i915->drm.primary->kdev->kobj;
}
-static ssize_t id_show(struct device *dev,
- struct device_attribute *attr,
+static ssize_t id_show(struct kobject *kobj,
+ struct kobj_attribute *attr,
char *buf)
{
- struct intel_gt *gt = intel_gt_sysfs_get_drvdata(dev, attr->attr.name);
+ struct intel_gt *gt = intel_gt_sysfs_get_drvdata(kobj, attr->attr.name);
return sysfs_emit(buf, "%u\n", gt->info.id);
}
-static DEVICE_ATTR_RO(id);
+static struct kobj_attribute attr_id = __ATTR_RO(id);
static struct attribute *id_attrs[] = {
- &dev_attr_id.attr,
+ &attr_id.attr,
NULL,
};
ATTRIBUTE_GROUPS(id);
@@ -72,7 +72,7 @@ static void kobj_gt_release(struct kobject *kobj)
{
}
-static struct kobj_type kobj_gt_type = {
+static const struct kobj_type kobj_gt_type = {
.release = kobj_gt_release,
.sysfs_ops = &kobj_sysfs_ops,
.default_groups = id_groups,
@@ -106,8 +106,7 @@ void intel_gt_sysfs_register(struct intel_gt *gt)
exit_fail:
kobject_put(&gt->sysfs_gt);
- drm_warn(&gt->i915->drm,
- "failed to initialize gt%d sysfs root\n", gt->info.id);
+ gt_warn(gt, "failed to initialize sysfs root\n");
}
void intel_gt_sysfs_unregister(struct intel_gt *gt)
diff --git a/drivers/gpu/drm/i915/gt/intel_gt_sysfs.h b/drivers/gpu/drm/i915/gt/intel_gt_sysfs.h
index 6232923a420d..18bab835be02 100644
--- a/drivers/gpu/drm/i915/gt/intel_gt_sysfs.h
+++ b/drivers/gpu/drm/i915/gt/intel_gt_sysfs.h
@@ -18,11 +18,6 @@ bool is_object_gt(struct kobject *kobj);
struct drm_i915_private *kobj_to_i915(struct kobject *kobj);
-struct kobject *
-intel_gt_create_kobj(struct intel_gt *gt,
- struct kobject *dir,
- const char *name);
-
static inline struct intel_gt *kobj_to_gt(struct kobject *kobj)
{
return container_of(kobj, struct intel_gt, sysfs_gt);
@@ -30,7 +25,7 @@ static inline struct intel_gt *kobj_to_gt(struct kobject *kobj)
void intel_gt_sysfs_register(struct intel_gt *gt);
void intel_gt_sysfs_unregister(struct intel_gt *gt);
-struct intel_gt *intel_gt_sysfs_get_drvdata(struct device *dev,
+struct intel_gt *intel_gt_sysfs_get_drvdata(struct kobject *kobj,
const char *name);
#endif /* SYSFS_GT_H */
diff --git a/drivers/gpu/drm/i915/gt/intel_gt_sysfs_pm.c b/drivers/gpu/drm/i915/gt/intel_gt_sysfs_pm.c
index 180dd6f3ef57..28f27091cd3b 100644
--- a/drivers/gpu/drm/i915/gt/intel_gt_sysfs_pm.c
+++ b/drivers/gpu/drm/i915/gt/intel_gt_sysfs_pm.c
@@ -11,6 +11,7 @@
#include "i915_reg.h"
#include "i915_sysfs.h"
#include "intel_gt.h"
+#include "intel_gt_print.h"
#include "intel_gt_regs.h"
#include "intel_gt_sysfs.h"
#include "intel_gt_sysfs_pm.h"
@@ -24,14 +25,15 @@ enum intel_gt_sysfs_op {
};
static int
-sysfs_gt_attribute_w_func(struct device *dev, struct device_attribute *attr,
+sysfs_gt_attribute_w_func(struct kobject *kobj, struct attribute *attr,
int (func)(struct intel_gt *gt, u32 val), u32 val)
{
struct intel_gt *gt;
int ret;
- if (!is_object_gt(&dev->kobj)) {
+ if (!is_object_gt(kobj)) {
int i;
+ struct device *dev = kobj_to_dev(kobj);
struct drm_i915_private *i915 = kdev_minor_to_i915(dev);
for_each_gt(gt, i915, i) {
@@ -40,7 +42,7 @@ sysfs_gt_attribute_w_func(struct device *dev, struct device_attribute *attr,
break;
}
} else {
- gt = intel_gt_sysfs_get_drvdata(dev, attr->attr.name);
+ gt = intel_gt_sysfs_get_drvdata(kobj, attr->name);
ret = func(gt, val);
}
@@ -48,7 +50,7 @@ sysfs_gt_attribute_w_func(struct device *dev, struct device_attribute *attr,
}
static u32
-sysfs_gt_attribute_r_func(struct device *dev, struct device_attribute *attr,
+sysfs_gt_attribute_r_func(struct kobject *kobj, struct attribute *attr,
u32 (func)(struct intel_gt *gt),
enum intel_gt_sysfs_op op)
{
@@ -57,8 +59,9 @@ sysfs_gt_attribute_r_func(struct device *dev, struct device_attribute *attr,
ret = (op == INTEL_GT_SYSFS_MAX) ? 0 : (u32) -1;
- if (!is_object_gt(&dev->kobj)) {
+ if (!is_object_gt(kobj)) {
int i;
+ struct device *dev = kobj_to_dev(kobj);
struct drm_i915_private *i915 = kdev_minor_to_i915(dev);
for_each_gt(gt, i915, i) {
@@ -77,7 +80,7 @@ sysfs_gt_attribute_r_func(struct device *dev, struct device_attribute *attr,
}
}
} else {
- gt = intel_gt_sysfs_get_drvdata(dev, attr->attr.name);
+ gt = intel_gt_sysfs_get_drvdata(kobj, attr->name);
ret = func(gt);
}
@@ -92,23 +95,89 @@ sysfs_gt_attribute_r_func(struct device *dev, struct device_attribute *attr,
#define sysfs_gt_attribute_r_max_func(d, a, f) \
sysfs_gt_attribute_r_func(d, a, f, INTEL_GT_SYSFS_MAX)
-#ifdef CONFIG_PM
-static u32 get_residency(struct intel_gt *gt, i915_reg_t reg)
+#define INTEL_GT_SYSFS_SHOW(_name, _attr_type) \
+ static ssize_t _name##_show_common(struct kobject *kobj, \
+ struct attribute *attr, char *buff) \
+ { \
+ u32 val = sysfs_gt_attribute_r_##_attr_type##_func(kobj, attr, \
+ __##_name##_show); \
+ \
+ return sysfs_emit(buff, "%u\n", val); \
+ } \
+ static ssize_t _name##_show(struct kobject *kobj, \
+ struct kobj_attribute *attr, char *buff) \
+ { \
+ return _name ##_show_common(kobj, &attr->attr, buff); \
+ } \
+ static ssize_t _name##_dev_show(struct device *dev, \
+ struct device_attribute *attr, char *buff) \
+ { \
+ return _name##_show_common(&dev->kobj, &attr->attr, buff); \
+ }
+
+#define INTEL_GT_SYSFS_STORE(_name, _func) \
+ static ssize_t _name##_store_common(struct kobject *kobj, \
+ struct attribute *attr, \
+ const char *buff, size_t count) \
+ { \
+ int ret; \
+ u32 val; \
+ \
+ ret = kstrtou32(buff, 0, &val); \
+ if (ret) \
+ return ret; \
+ \
+ ret = sysfs_gt_attribute_w_func(kobj, attr, _func, val); \
+ \
+ return ret ?: count; \
+ } \
+ static ssize_t _name##_store(struct kobject *kobj, \
+ struct kobj_attribute *attr, const char *buff, \
+ size_t count) \
+ { \
+ return _name##_store_common(kobj, &attr->attr, buff, count); \
+ } \
+ static ssize_t _name##_dev_store(struct device *dev, \
+ struct device_attribute *attr, \
+ const char *buff, size_t count) \
+ { \
+ return _name##_store_common(&dev->kobj, &attr->attr, buff, count); \
+ }
+
+#define INTEL_GT_SYSFS_SHOW_MAX(_name) INTEL_GT_SYSFS_SHOW(_name, max)
+#define INTEL_GT_SYSFS_SHOW_MIN(_name) INTEL_GT_SYSFS_SHOW(_name, min)
+
+#define INTEL_GT_ATTR_RW(_name) \
+ static struct kobj_attribute attr_##_name = __ATTR_RW(_name)
+
+#define INTEL_GT_ATTR_RO(_name) \
+ static struct kobj_attribute attr_##_name = __ATTR_RO(_name)
+
+#define INTEL_GT_DUAL_ATTR_RW(_name) \
+ static struct device_attribute dev_attr_##_name = __ATTR(_name, 0644, \
+ _name##_dev_show, \
+ _name##_dev_store); \
+ INTEL_GT_ATTR_RW(_name)
+
+#define INTEL_GT_DUAL_ATTR_RO(_name) \
+ static struct device_attribute dev_attr_##_name = __ATTR(_name, 0444, \
+ _name##_dev_show, \
+ NULL); \
+ INTEL_GT_ATTR_RO(_name)
+
+static u32 get_residency(struct intel_gt *gt, enum intel_rc6_res_type id)
{
intel_wakeref_t wakeref;
u64 res = 0;
with_intel_runtime_pm(gt->uncore->rpm, wakeref)
- res = intel_rc6_residency_us(&gt->rc6, reg);
+ res = intel_rc6_residency_us(&gt->rc6, id);
return DIV_ROUND_CLOSEST_ULL(res, 1000);
}
-static ssize_t rc6_enable_show(struct device *dev,
- struct device_attribute *attr,
- char *buff)
+static u8 get_rc6_mask(struct intel_gt *gt)
{
- struct intel_gt *gt = intel_gt_sysfs_get_drvdata(dev, attr->attr.name);
u8 mask = 0;
if (HAS_RC6(gt->i915))
@@ -118,105 +187,105 @@ static ssize_t rc6_enable_show(struct device *dev,
if (HAS_RC6pp(gt->i915))
mask |= BIT(2);
- return sysfs_emit(buff, "%x\n", mask);
+ return mask;
}
-static u32 __rc6_residency_ms_show(struct intel_gt *gt)
+static ssize_t rc6_enable_show(struct kobject *kobj,
+ struct kobj_attribute *attr,
+ char *buff)
{
- return get_residency(gt, GEN6_GT_GFX_RC6);
+ struct intel_gt *gt = intel_gt_sysfs_get_drvdata(kobj, attr->attr.name);
+
+ return sysfs_emit(buff, "%x\n", get_rc6_mask(gt));
}
-static ssize_t rc6_residency_ms_show(struct device *dev,
- struct device_attribute *attr,
- char *buff)
+static ssize_t rc6_enable_dev_show(struct device *dev,
+ struct device_attribute *attr,
+ char *buff)
{
- u32 rc6_residency = sysfs_gt_attribute_r_min_func(dev, attr,
- __rc6_residency_ms_show);
+ struct intel_gt *gt = intel_gt_sysfs_get_drvdata(&dev->kobj, attr->attr.name);
- return sysfs_emit(buff, "%u\n", rc6_residency);
+ return sysfs_emit(buff, "%x\n", get_rc6_mask(gt));
}
-static u32 __rc6p_residency_ms_show(struct intel_gt *gt)
+static u32 __rc6_residency_ms_show(struct intel_gt *gt)
{
- return get_residency(gt, GEN6_GT_GFX_RC6p);
+ return get_residency(gt, INTEL_RC6_RES_RC6);
}
-static ssize_t rc6p_residency_ms_show(struct device *dev,
- struct device_attribute *attr,
- char *buff)
+static u32 __rc6p_residency_ms_show(struct intel_gt *gt)
{
- u32 rc6p_residency = sysfs_gt_attribute_r_min_func(dev, attr,
- __rc6p_residency_ms_show);
-
- return sysfs_emit(buff, "%u\n", rc6p_residency);
+ return get_residency(gt, INTEL_RC6_RES_RC6p);
}
static u32 __rc6pp_residency_ms_show(struct intel_gt *gt)
{
- return get_residency(gt, GEN6_GT_GFX_RC6pp);
-}
-
-static ssize_t rc6pp_residency_ms_show(struct device *dev,
- struct device_attribute *attr,
- char *buff)
-{
- u32 rc6pp_residency = sysfs_gt_attribute_r_min_func(dev, attr,
- __rc6pp_residency_ms_show);
-
- return sysfs_emit(buff, "%u\n", rc6pp_residency);
+ return get_residency(gt, INTEL_RC6_RES_RC6pp);
}
static u32 __media_rc6_residency_ms_show(struct intel_gt *gt)
{
- return get_residency(gt, VLV_GT_MEDIA_RC6);
+ return get_residency(gt, INTEL_RC6_RES_VLV_MEDIA);
}
-static ssize_t media_rc6_residency_ms_show(struct device *dev,
- struct device_attribute *attr,
- char *buff)
-{
- u32 rc6_residency = sysfs_gt_attribute_r_min_func(dev, attr,
- __media_rc6_residency_ms_show);
+INTEL_GT_SYSFS_SHOW_MIN(rc6_residency_ms);
+INTEL_GT_SYSFS_SHOW_MIN(rc6p_residency_ms);
+INTEL_GT_SYSFS_SHOW_MIN(rc6pp_residency_ms);
+INTEL_GT_SYSFS_SHOW_MIN(media_rc6_residency_ms);
- return sysfs_emit(buff, "%u\n", rc6_residency);
-}
-
-static DEVICE_ATTR_RO(rc6_enable);
-static DEVICE_ATTR_RO(rc6_residency_ms);
-static DEVICE_ATTR_RO(rc6p_residency_ms);
-static DEVICE_ATTR_RO(rc6pp_residency_ms);
-static DEVICE_ATTR_RO(media_rc6_residency_ms);
+INTEL_GT_DUAL_ATTR_RO(rc6_enable);
+INTEL_GT_DUAL_ATTR_RO(rc6_residency_ms);
+INTEL_GT_DUAL_ATTR_RO(rc6p_residency_ms);
+INTEL_GT_DUAL_ATTR_RO(rc6pp_residency_ms);
+INTEL_GT_DUAL_ATTR_RO(media_rc6_residency_ms);
static struct attribute *rc6_attrs[] = {
+ &attr_rc6_enable.attr,
+ &attr_rc6_residency_ms.attr,
+ NULL
+};
+
+static struct attribute *rc6p_attrs[] = {
+ &attr_rc6p_residency_ms.attr,
+ &attr_rc6pp_residency_ms.attr,
+ NULL
+};
+
+static struct attribute *media_rc6_attrs[] = {
+ &attr_media_rc6_residency_ms.attr,
+ NULL
+};
+
+static struct attribute *rc6_dev_attrs[] = {
&dev_attr_rc6_enable.attr,
&dev_attr_rc6_residency_ms.attr,
NULL
};
-static struct attribute *rc6p_attrs[] = {
+static struct attribute *rc6p_dev_attrs[] = {
&dev_attr_rc6p_residency_ms.attr,
&dev_attr_rc6pp_residency_ms.attr,
NULL
};
-static struct attribute *media_rc6_attrs[] = {
+static struct attribute *media_rc6_dev_attrs[] = {
&dev_attr_media_rc6_residency_ms.attr,
NULL
};
static const struct attribute_group rc6_attr_group[] = {
{ .attrs = rc6_attrs, },
- { .name = power_group_name, .attrs = rc6_attrs, },
+ { .name = power_group_name, .attrs = rc6_dev_attrs, },
};
static const struct attribute_group rc6p_attr_group[] = {
{ .attrs = rc6p_attrs, },
- { .name = power_group_name, .attrs = rc6p_attrs, },
+ { .name = power_group_name, .attrs = rc6p_dev_attrs, },
};
static const struct attribute_group media_rc6_attr_group[] = {
{ .attrs = media_rc6_attrs, },
- { .name = power_group_name, .attrs = media_rc6_attrs, },
+ { .name = power_group_name, .attrs = media_rc6_dev_attrs, },
};
static int __intel_gt_sysfs_create_group(struct kobject *kobj,
@@ -231,14 +300,12 @@ static void intel_sysfs_rc6_init(struct intel_gt *gt, struct kobject *kobj)
{
int ret;
- if (!HAS_RC6(gt->i915))
+ if (!IS_ENABLED(CONFIG_PM) || !HAS_RC6(gt->i915))
return;
ret = __intel_gt_sysfs_create_group(kobj, rc6_attr_group);
if (ret)
- drm_warn(&gt->i915->drm,
- "failed to create gt%u RC6 sysfs files (%pe)\n",
- gt->info.id, ERR_PTR(ret));
+ gt_warn(gt, "failed to create RC6 sysfs files (%pe)\n", ERR_PTR(ret));
/*
* cannot use the is_visible() attribute because
@@ -247,128 +314,49 @@ static void intel_sysfs_rc6_init(struct intel_gt *gt, struct kobject *kobj)
if (HAS_RC6p(gt->i915)) {
ret = __intel_gt_sysfs_create_group(kobj, rc6p_attr_group);
if (ret)
- drm_warn(&gt->i915->drm,
- "failed to create gt%u RC6p sysfs files (%pe)\n",
- gt->info.id, ERR_PTR(ret));
+ gt_warn(gt, "failed to create RC6p sysfs files (%pe)\n", ERR_PTR(ret));
}
if (IS_VALLEYVIEW(gt->i915) || IS_CHERRYVIEW(gt->i915)) {
ret = __intel_gt_sysfs_create_group(kobj, media_rc6_attr_group);
if (ret)
- drm_warn(&gt->i915->drm,
- "failed to create media %u RC6 sysfs files (%pe)\n",
- gt->info.id, ERR_PTR(ret));
+ gt_warn(gt, "failed to create media RC6 sysfs files (%pe)\n", ERR_PTR(ret));
}
}
-#else
-static void intel_sysfs_rc6_init(struct intel_gt *gt, struct kobject *kobj)
-{
-}
-#endif /* CONFIG_PM */
static u32 __act_freq_mhz_show(struct intel_gt *gt)
{
return intel_rps_read_actual_frequency(&gt->rps);
}
-static ssize_t act_freq_mhz_show(struct device *dev,
- struct device_attribute *attr, char *buff)
-{
- u32 actual_freq = sysfs_gt_attribute_r_max_func(dev, attr,
- __act_freq_mhz_show);
-
- return sysfs_emit(buff, "%u\n", actual_freq);
-}
-
static u32 __cur_freq_mhz_show(struct intel_gt *gt)
{
return intel_rps_get_requested_frequency(&gt->rps);
}
-static ssize_t cur_freq_mhz_show(struct device *dev,
- struct device_attribute *attr, char *buff)
-{
- u32 cur_freq = sysfs_gt_attribute_r_max_func(dev, attr,
- __cur_freq_mhz_show);
-
- return sysfs_emit(buff, "%u\n", cur_freq);
-}
-
static u32 __boost_freq_mhz_show(struct intel_gt *gt)
{
return intel_rps_get_boost_frequency(&gt->rps);
}
-static ssize_t boost_freq_mhz_show(struct device *dev,
- struct device_attribute *attr,
- char *buff)
-{
- u32 boost_freq = sysfs_gt_attribute_r_max_func(dev, attr,
- __boost_freq_mhz_show);
-
- return sysfs_emit(buff, "%u\n", boost_freq);
-}
-
static int __boost_freq_mhz_store(struct intel_gt *gt, u32 val)
{
return intel_rps_set_boost_frequency(&gt->rps, val);
}
-static ssize_t boost_freq_mhz_store(struct device *dev,
- struct device_attribute *attr,
- const char *buff, size_t count)
-{
- ssize_t ret;
- u32 val;
-
- ret = kstrtou32(buff, 0, &val);
- if (ret)
- return ret;
-
- return sysfs_gt_attribute_w_func(dev, attr,
- __boost_freq_mhz_store, val) ?: count;
-}
-
-static u32 __rp0_freq_mhz_show(struct intel_gt *gt)
+static u32 __RP0_freq_mhz_show(struct intel_gt *gt)
{
return intel_rps_get_rp0_frequency(&gt->rps);
}
-static ssize_t RP0_freq_mhz_show(struct device *dev,
- struct device_attribute *attr, char *buff)
-{
- u32 rp0_freq = sysfs_gt_attribute_r_max_func(dev, attr,
- __rp0_freq_mhz_show);
-
- return sysfs_emit(buff, "%u\n", rp0_freq);
-}
-
-static u32 __rp1_freq_mhz_show(struct intel_gt *gt)
-{
- return intel_rps_get_rp1_frequency(&gt->rps);
-}
-
-static ssize_t RP1_freq_mhz_show(struct device *dev,
- struct device_attribute *attr, char *buff)
-{
- u32 rp1_freq = sysfs_gt_attribute_r_max_func(dev, attr,
- __rp1_freq_mhz_show);
-
- return sysfs_emit(buff, "%u\n", rp1_freq);
-}
-
-static u32 __rpn_freq_mhz_show(struct intel_gt *gt)
+static u32 __RPn_freq_mhz_show(struct intel_gt *gt)
{
return intel_rps_get_rpn_frequency(&gt->rps);
}
-static ssize_t RPn_freq_mhz_show(struct device *dev,
- struct device_attribute *attr, char *buff)
+static u32 __RP1_freq_mhz_show(struct intel_gt *gt)
{
- u32 rpn_freq = sysfs_gt_attribute_r_max_func(dev, attr,
- __rpn_freq_mhz_show);
-
- return sysfs_emit(buff, "%u\n", rpn_freq);
+ return intel_rps_get_rp1_frequency(&gt->rps);
}
static u32 __max_freq_mhz_show(struct intel_gt *gt)
@@ -376,71 +364,21 @@ static u32 __max_freq_mhz_show(struct intel_gt *gt)
return intel_rps_get_max_frequency(&gt->rps);
}
-static ssize_t max_freq_mhz_show(struct device *dev,
- struct device_attribute *attr, char *buff)
-{
- u32 max_freq = sysfs_gt_attribute_r_max_func(dev, attr,
- __max_freq_mhz_show);
-
- return sysfs_emit(buff, "%u\n", max_freq);
-}
-
static int __set_max_freq(struct intel_gt *gt, u32 val)
{
return intel_rps_set_max_frequency(&gt->rps, val);
}
-static ssize_t max_freq_mhz_store(struct device *dev,
- struct device_attribute *attr,
- const char *buff, size_t count)
-{
- int ret;
- u32 val;
-
- ret = kstrtou32(buff, 0, &val);
- if (ret)
- return ret;
-
- ret = sysfs_gt_attribute_w_func(dev, attr, __set_max_freq, val);
-
- return ret ?: count;
-}
-
static u32 __min_freq_mhz_show(struct intel_gt *gt)
{
return intel_rps_get_min_frequency(&gt->rps);
}
-static ssize_t min_freq_mhz_show(struct device *dev,
- struct device_attribute *attr, char *buff)
-{
- u32 min_freq = sysfs_gt_attribute_r_min_func(dev, attr,
- __min_freq_mhz_show);
-
- return sysfs_emit(buff, "%u\n", min_freq);
-}
-
static int __set_min_freq(struct intel_gt *gt, u32 val)
{
return intel_rps_set_min_frequency(&gt->rps, val);
}
-static ssize_t min_freq_mhz_store(struct device *dev,
- struct device_attribute *attr,
- const char *buff, size_t count)
-{
- int ret;
- u32 val;
-
- ret = kstrtou32(buff, 0, &val);
- if (ret)
- return ret;
-
- ret = sysfs_gt_attribute_w_func(dev, attr, __set_min_freq, val);
-
- return ret ?: count;
-}
-
static u32 __vlv_rpe_freq_mhz_show(struct intel_gt *gt)
{
struct intel_rps *rps = &gt->rps;
@@ -448,23 +386,31 @@ static u32 __vlv_rpe_freq_mhz_show(struct intel_gt *gt)
return intel_gpu_freq(rps, rps->efficient_freq);
}
-static ssize_t vlv_rpe_freq_mhz_show(struct device *dev,
- struct device_attribute *attr, char *buff)
-{
- u32 rpe_freq = sysfs_gt_attribute_r_max_func(dev, attr,
- __vlv_rpe_freq_mhz_show);
-
- return sysfs_emit(buff, "%u\n", rpe_freq);
-}
-
-#define INTEL_GT_RPS_SYSFS_ATTR(_name, _mode, _show, _store) \
- static struct device_attribute dev_attr_gt_##_name = __ATTR(gt_##_name, _mode, _show, _store); \
- static struct device_attribute dev_attr_rps_##_name = __ATTR(rps_##_name, _mode, _show, _store)
-
-#define INTEL_GT_RPS_SYSFS_ATTR_RO(_name) \
- INTEL_GT_RPS_SYSFS_ATTR(_name, 0444, _name##_show, NULL)
-#define INTEL_GT_RPS_SYSFS_ATTR_RW(_name) \
- INTEL_GT_RPS_SYSFS_ATTR(_name, 0644, _name##_show, _name##_store)
+INTEL_GT_SYSFS_SHOW_MAX(act_freq_mhz);
+INTEL_GT_SYSFS_SHOW_MAX(boost_freq_mhz);
+INTEL_GT_SYSFS_SHOW_MAX(cur_freq_mhz);
+INTEL_GT_SYSFS_SHOW_MAX(RP0_freq_mhz);
+INTEL_GT_SYSFS_SHOW_MAX(RP1_freq_mhz);
+INTEL_GT_SYSFS_SHOW_MAX(RPn_freq_mhz);
+INTEL_GT_SYSFS_SHOW_MAX(max_freq_mhz);
+INTEL_GT_SYSFS_SHOW_MIN(min_freq_mhz);
+INTEL_GT_SYSFS_SHOW_MAX(vlv_rpe_freq_mhz);
+INTEL_GT_SYSFS_STORE(boost_freq_mhz, __boost_freq_mhz_store);
+INTEL_GT_SYSFS_STORE(max_freq_mhz, __set_max_freq);
+INTEL_GT_SYSFS_STORE(min_freq_mhz, __set_min_freq);
+
+#define INTEL_GT_RPS_SYSFS_ATTR(_name, _mode, _show, _store, _show_dev, _store_dev) \
+ static struct device_attribute dev_attr_gt_##_name = __ATTR(gt_##_name, _mode, \
+ _show_dev, _store_dev); \
+ static struct kobj_attribute attr_rps_##_name = __ATTR(rps_##_name, _mode, \
+ _show, _store)
+
+#define INTEL_GT_RPS_SYSFS_ATTR_RO(_name) \
+ INTEL_GT_RPS_SYSFS_ATTR(_name, 0444, _name##_show, NULL, \
+ _name##_dev_show, NULL)
+#define INTEL_GT_RPS_SYSFS_ATTR_RW(_name) \
+ INTEL_GT_RPS_SYSFS_ATTR(_name, 0644, _name##_show, _name##_store, \
+ _name##_dev_show, _name##_dev_store)
/* The below macros generate static structures */
INTEL_GT_RPS_SYSFS_ATTR_RO(act_freq_mhz);
@@ -475,32 +421,31 @@ INTEL_GT_RPS_SYSFS_ATTR_RO(RP1_freq_mhz);
INTEL_GT_RPS_SYSFS_ATTR_RO(RPn_freq_mhz);
INTEL_GT_RPS_SYSFS_ATTR_RW(max_freq_mhz);
INTEL_GT_RPS_SYSFS_ATTR_RW(min_freq_mhz);
-
-static DEVICE_ATTR_RO(vlv_rpe_freq_mhz);
-
-#define GEN6_ATTR(s) { \
- &dev_attr_##s##_act_freq_mhz.attr, \
- &dev_attr_##s##_cur_freq_mhz.attr, \
- &dev_attr_##s##_boost_freq_mhz.attr, \
- &dev_attr_##s##_max_freq_mhz.attr, \
- &dev_attr_##s##_min_freq_mhz.attr, \
- &dev_attr_##s##_RP0_freq_mhz.attr, \
- &dev_attr_##s##_RP1_freq_mhz.attr, \
- &dev_attr_##s##_RPn_freq_mhz.attr, \
+INTEL_GT_RPS_SYSFS_ATTR_RO(vlv_rpe_freq_mhz);
+
+#define GEN6_ATTR(p, s) { \
+ &p##attr_##s##_act_freq_mhz.attr, \
+ &p##attr_##s##_cur_freq_mhz.attr, \
+ &p##attr_##s##_boost_freq_mhz.attr, \
+ &p##attr_##s##_max_freq_mhz.attr, \
+ &p##attr_##s##_min_freq_mhz.attr, \
+ &p##attr_##s##_RP0_freq_mhz.attr, \
+ &p##attr_##s##_RP1_freq_mhz.attr, \
+ &p##attr_##s##_RPn_freq_mhz.attr, \
NULL, \
}
-#define GEN6_RPS_ATTR GEN6_ATTR(rps)
-#define GEN6_GT_ATTR GEN6_ATTR(gt)
+#define GEN6_RPS_ATTR GEN6_ATTR(, rps)
+#define GEN6_GT_ATTR GEN6_ATTR(dev_, gt)
static const struct attribute * const gen6_rps_attrs[] = GEN6_RPS_ATTR;
static const struct attribute * const gen6_gt_attrs[] = GEN6_GT_ATTR;
-static ssize_t punit_req_freq_mhz_show(struct device *dev,
- struct device_attribute *attr,
+static ssize_t punit_req_freq_mhz_show(struct kobject *kobj,
+ struct kobj_attribute *attr,
char *buff)
{
- struct intel_gt *gt = intel_gt_sysfs_get_drvdata(dev, attr->attr.name);
+ struct intel_gt *gt = intel_gt_sysfs_get_drvdata(kobj, attr->attr.name);
u32 preq = intel_rps_read_punit_req_frequency(&gt->rps);
return sysfs_emit(buff, "%u\n", preq);
@@ -508,20 +453,20 @@ static ssize_t punit_req_freq_mhz_show(struct device *dev,
struct intel_gt_bool_throttle_attr {
struct attribute attr;
- ssize_t (*show)(struct device *dev, struct device_attribute *attr,
+ ssize_t (*show)(struct kobject *kobj, struct kobj_attribute *attr,
char *buf);
- i915_reg_t reg32;
+ i915_reg_t (*reg32)(struct intel_gt *gt);
u32 mask;
};
-static ssize_t throttle_reason_bool_show(struct device *dev,
- struct device_attribute *attr,
+static ssize_t throttle_reason_bool_show(struct kobject *kobj,
+ struct kobj_attribute *attr,
char *buff)
{
- struct intel_gt *gt = intel_gt_sysfs_get_drvdata(dev, attr->attr.name);
+ struct intel_gt *gt = intel_gt_sysfs_get_drvdata(kobj, attr->attr.name);
struct intel_gt_bool_throttle_attr *t_attr =
(struct intel_gt_bool_throttle_attr *) attr;
- bool val = rps_read_mask_mmio(&gt->rps, t_attr->reg32, t_attr->mask);
+ bool val = rps_read_mask_mmio(&gt->rps, t_attr->reg32(gt), t_attr->mask);
return sysfs_emit(buff, "%u\n", val);
}
@@ -530,11 +475,11 @@ static ssize_t throttle_reason_bool_show(struct device *dev,
struct intel_gt_bool_throttle_attr attr_##sysfs_func__ = { \
.attr = { .name = __stringify(sysfs_func__), .mode = 0444 }, \
.show = throttle_reason_bool_show, \
- .reg32 = GT0_PERF_LIMIT_REASONS, \
+ .reg32 = intel_gt_perf_limit_reasons_reg, \
.mask = mask__, \
}
-static DEVICE_ATTR_RO(punit_req_freq_mhz);
+INTEL_GT_ATTR_RO(punit_req_freq_mhz);
static INTEL_GT_RPS_BOOL_ATTR_RO(throttle_reason_status, GT0_PERF_LIMIT_REASONS_MASK);
static INTEL_GT_RPS_BOOL_ATTR_RO(throttle_reason_pl1, POWER_LIMIT_1_MASK);
static INTEL_GT_RPS_BOOL_ATTR_RO(throttle_reason_pl2, POWER_LIMIT_2_MASK);
@@ -597,8 +542,8 @@ static const struct attribute *throttle_reason_attrs[] = {
#define U8_8_VAL_MASK 0xffff
#define U8_8_SCALE_TO_VALUE "0.00390625"
-static ssize_t freq_factor_scale_show(struct device *dev,
- struct device_attribute *attr,
+static ssize_t freq_factor_scale_show(struct kobject *kobj,
+ struct kobj_attribute *attr,
char *buff)
{
return sysfs_emit(buff, "%s\n", U8_8_SCALE_TO_VALUE);
@@ -610,11 +555,11 @@ static u32 media_ratio_mode_to_factor(u32 mode)
return !mode ? mode : 256 / mode;
}
-static ssize_t media_freq_factor_show(struct device *dev,
- struct device_attribute *attr,
+static ssize_t media_freq_factor_show(struct kobject *kobj,
+ struct kobj_attribute *attr,
char *buff)
{
- struct intel_gt *gt = intel_gt_sysfs_get_drvdata(dev, attr->attr.name);
+ struct intel_gt *gt = intel_gt_sysfs_get_drvdata(kobj, attr->attr.name);
struct intel_guc_slpc *slpc = &gt->uc.guc.slpc;
intel_wakeref_t wakeref;
u32 mode;
@@ -641,11 +586,11 @@ static ssize_t media_freq_factor_show(struct device *dev,
return sysfs_emit(buff, "%u\n", media_ratio_mode_to_factor(mode));
}
-static ssize_t media_freq_factor_store(struct device *dev,
- struct device_attribute *attr,
+static ssize_t media_freq_factor_store(struct kobject *kobj,
+ struct kobj_attribute *attr,
const char *buff, size_t count)
{
- struct intel_gt *gt = intel_gt_sysfs_get_drvdata(dev, attr->attr.name);
+ struct intel_gt *gt = intel_gt_sysfs_get_drvdata(kobj, attr->attr.name);
struct intel_guc_slpc *slpc = &gt->uc.guc.slpc;
u32 factor, mode;
int err;
@@ -670,11 +615,11 @@ static ssize_t media_freq_factor_store(struct device *dev,
return err ?: count;
}
-static ssize_t media_RP0_freq_mhz_show(struct device *dev,
- struct device_attribute *attr,
+static ssize_t media_RP0_freq_mhz_show(struct kobject *kobj,
+ struct kobj_attribute *attr,
char *buff)
{
- struct intel_gt *gt = intel_gt_sysfs_get_drvdata(dev, attr->attr.name);
+ struct intel_gt *gt = intel_gt_sysfs_get_drvdata(kobj, attr->attr.name);
u32 val;
int err;
@@ -691,11 +636,11 @@ static ssize_t media_RP0_freq_mhz_show(struct device *dev,
return sysfs_emit(buff, "%u\n", val);
}
-static ssize_t media_RPn_freq_mhz_show(struct device *dev,
- struct device_attribute *attr,
+static ssize_t media_RPn_freq_mhz_show(struct kobject *kobj,
+ struct kobj_attribute *attr,
char *buff)
{
- struct intel_gt *gt = intel_gt_sysfs_get_drvdata(dev, attr->attr.name);
+ struct intel_gt *gt = intel_gt_sysfs_get_drvdata(kobj, attr->attr.name);
u32 val;
int err;
@@ -712,17 +657,17 @@ static ssize_t media_RPn_freq_mhz_show(struct device *dev,
return sysfs_emit(buff, "%u\n", val);
}
-static DEVICE_ATTR_RW(media_freq_factor);
-static struct device_attribute dev_attr_media_freq_factor_scale =
+INTEL_GT_ATTR_RW(media_freq_factor);
+static struct kobj_attribute attr_media_freq_factor_scale =
__ATTR(media_freq_factor.scale, 0444, freq_factor_scale_show, NULL);
-static DEVICE_ATTR_RO(media_RP0_freq_mhz);
-static DEVICE_ATTR_RO(media_RPn_freq_mhz);
+INTEL_GT_ATTR_RO(media_RP0_freq_mhz);
+INTEL_GT_ATTR_RO(media_RPn_freq_mhz);
static const struct attribute *media_perf_power_attrs[] = {
- &dev_attr_media_freq_factor.attr,
- &dev_attr_media_freq_factor_scale.attr,
- &dev_attr_media_RP0_freq_mhz.attr,
- &dev_attr_media_RPn_freq_mhz.attr,
+ &attr_media_freq_factor.attr,
+ &attr_media_freq_factor_scale.attr,
+ &attr_media_RP0_freq_mhz.attr,
+ &attr_media_RPn_freq_mhz.attr,
NULL
};
@@ -754,20 +699,29 @@ static const struct attribute * const rps_defaults_attrs[] = {
NULL
};
-static int intel_sysfs_rps_init(struct intel_gt *gt, struct kobject *kobj,
- const struct attribute * const *attrs)
+static int intel_sysfs_rps_init(struct intel_gt *gt, struct kobject *kobj)
{
+ const struct attribute * const *attrs;
+ struct attribute *vlv_attr;
int ret;
if (GRAPHICS_VER(gt->i915) < 6)
return 0;
+ if (is_object_gt(kobj)) {
+ attrs = gen6_rps_attrs;
+ vlv_attr = &attr_rps_vlv_rpe_freq_mhz.attr;
+ } else {
+ attrs = gen6_gt_attrs;
+ vlv_attr = &dev_attr_gt_vlv_rpe_freq_mhz.attr;
+ }
+
ret = sysfs_create_files(kobj, attrs);
if (ret)
return ret;
if (IS_VALLEYVIEW(gt->i915) || IS_CHERRYVIEW(gt->i915))
- ret = sysfs_create_file(kobj, &dev_attr_vlv_rpe_freq_mhz.attr);
+ ret = sysfs_create_file(kobj, vlv_attr);
return ret;
}
@@ -778,43 +732,32 @@ void intel_gt_sysfs_pm_init(struct intel_gt *gt, struct kobject *kobj)
intel_sysfs_rc6_init(gt, kobj);
- ret = is_object_gt(kobj) ?
- intel_sysfs_rps_init(gt, kobj, gen6_rps_attrs) :
- intel_sysfs_rps_init(gt, kobj, gen6_gt_attrs);
+ ret = intel_sysfs_rps_init(gt, kobj);
if (ret)
- drm_warn(&gt->i915->drm,
- "failed to create gt%u RPS sysfs files (%pe)",
- gt->info.id, ERR_PTR(ret));
+ gt_warn(gt, "failed to create RPS sysfs files (%pe)", ERR_PTR(ret));
/* end of the legacy interfaces */
if (!is_object_gt(kobj))
return;
- ret = sysfs_create_file(kobj, &dev_attr_punit_req_freq_mhz.attr);
+ ret = sysfs_create_file(kobj, &attr_punit_req_freq_mhz.attr);
if (ret)
- drm_warn(&gt->i915->drm,
- "failed to create gt%u punit_req_freq_mhz sysfs (%pe)",
- gt->info.id, ERR_PTR(ret));
+ gt_warn(gt, "failed to create punit_req_freq_mhz sysfs (%pe)", ERR_PTR(ret));
- if (GRAPHICS_VER(gt->i915) >= 11) {
+ if (i915_mmio_reg_valid(intel_gt_perf_limit_reasons_reg(gt))) {
ret = sysfs_create_files(kobj, throttle_reason_attrs);
if (ret)
- drm_warn(&gt->i915->drm,
- "failed to create gt%u throttle sysfs files (%pe)",
- gt->info.id, ERR_PTR(ret));
+ gt_warn(gt, "failed to create throttle sysfs files (%pe)", ERR_PTR(ret));
}
if (HAS_MEDIA_RATIO_MODE(gt->i915) && intel_uc_uses_guc_slpc(&gt->uc)) {
ret = sysfs_create_files(kobj, media_perf_power_attrs);
if (ret)
- drm_warn(&gt->i915->drm,
- "failed to create gt%u media_perf_power_attrs sysfs (%pe)\n",
- gt->info.id, ERR_PTR(ret));
+ gt_warn(gt, "failed to create media_perf_power_attrs sysfs (%pe)\n",
+ ERR_PTR(ret));
}
ret = sysfs_create_files(gt->sysfs_defaults, rps_defaults_attrs);
if (ret)
- drm_warn(&gt->i915->drm,
- "failed to add gt%u rps defaults (%pe)\n",
- gt->info.id, ERR_PTR(ret));
+ gt_warn(gt, "failed to add rps defaults (%pe)\n", ERR_PTR(ret));
}
diff --git a/drivers/gpu/drm/i915/gt/intel_gt_types.h b/drivers/gpu/drm/i915/gt/intel_gt_types.h
index f19c2de77ff6..f08c2556aa25 100644
--- a/drivers/gpu/drm/i915/gt/intel_gt_types.h
+++ b/drivers/gpu/drm/i915/gt/intel_gt_types.h
@@ -20,6 +20,7 @@
#include "intel_gsc.h"
#include "i915_vma.h"
+#include "i915_perf_types.h"
#include "intel_engine_types.h"
#include "intel_gt_buffer_pool_types.h"
#include "intel_hwconfig.h"
@@ -29,7 +30,7 @@
#include "intel_rps_types.h"
#include "intel_migrate_types.h"
#include "intel_wakeref.h"
-#include "pxp/intel_pxp_types.h"
+#include "intel_wopcm.h"
struct drm_i915_private;
struct i915_ggtt;
@@ -59,6 +60,9 @@ enum intel_steering_type {
L3BANK,
MSLICE,
LNCF,
+ GAM,
+ DSS,
+ OADDRM,
/*
* On some platforms there are multiple types of MCR registers that
@@ -97,6 +101,7 @@ struct intel_gt {
struct intel_uc uc;
struct intel_gsc gsc;
+ struct intel_wopcm wopcm;
struct {
/* Serialize global tlb invalidations */
@@ -141,20 +146,6 @@ struct intel_gt {
struct intel_wakeref wakeref;
atomic_t user_wakeref;
- /**
- * Protects access to lmem usefault list.
- * It is required, if we are outside of the runtime suspend path,
- * access to @lmem_userfault_list requires always first grabbing the
- * runtime pm, to ensure we can't race against runtime suspend.
- * Once we have that we also need to grab @lmem_userfault_lock,
- * at which point we have exclusive access.
- * The runtime suspend path is special since it doesn't really hold any locks,
- * but instead has exclusive access by virtue of all other accesses requiring
- * holding the runtime pm wakeref.
- */
- struct mutex lmem_userfault_lock;
- struct list_head lmem_userfault_list;
-
struct list_head closed_vma;
spinlock_t closed_lock; /* guards the list of closed_vma */
@@ -170,9 +161,6 @@ struct intel_gt {
*/
intel_wakeref_t awake;
- /* Manual runtime pm autosuspend delay for user GGTT/lmem mmaps */
- struct intel_wakeref_auto userfault_wakeref;
-
u32 clock_frequency;
u32 clock_period_ns;
@@ -244,6 +232,14 @@ struct intel_gt {
u8 instanceid;
} default_steering;
+ /**
+ * @mcr_lock: Protects the MCR steering register
+ *
+ * Protects the MCR steering register (e.g., GEN8_MCR_SELECTOR).
+ * Should be taken before uncore->lock in cases where both are desired.
+ */
+ spinlock_t mcr_lock;
+
/*
* Base of per-tile GTTMMADR where we can derive the MMIO and the GGTT.
*/
@@ -278,14 +274,17 @@ struct intel_gt {
u8 wb_index; /* Only used on HAS_L3_CCS_READ() platforms */
} mocs;
- struct intel_pxp pxp;
-
/* gt/gtN sysfs */
struct kobject sysfs_gt;
/* sysfs defaults per gt */
struct gt_defaults defaults;
struct kobject *sysfs_defaults;
+
+ struct i915_perf_gt perf;
+
+ /** link: &ggtt.gt_list */
+ struct list_head ggtt_link;
};
struct intel_gt_definition {
@@ -305,12 +304,6 @@ enum intel_gt_scratch_field {
/* 8 bytes */
INTEL_GT_SCRATCH_FIELD_COHERENTL3_WA = 256,
-
- /* 6 * 8 bytes */
- INTEL_GT_SCRATCH_FIELD_PERF_CS_GPR = 2048,
-
- /* 4 bytes */
- INTEL_GT_SCRATCH_FIELD_PERF_PREDICATE_RESULT_1 = 2096,
};
#endif /* __INTEL_GT_TYPES_H__ */
diff --git a/drivers/gpu/drm/i915/gt/intel_gtt.c b/drivers/gpu/drm/i915/gt/intel_gtt.c
index 2eaeba14319e..4f436ba7a3c8 100644
--- a/drivers/gpu/drm/i915/gt/intel_gtt.c
+++ b/drivers/gpu/drm/i915/gt/intel_gtt.c
@@ -12,9 +12,12 @@
#include "gem/i915_gem_internal.h"
#include "gem/i915_gem_lmem.h"
+#include "i915_reg.h"
#include "i915_trace.h"
#include "i915_utils.h"
#include "intel_gt.h"
+#include "intel_gt_mcr.h"
+#include "intel_gt_print.h"
#include "intel_gt_regs.h"
#include "intel_gtt.h"
@@ -269,11 +272,7 @@ void i915_address_space_init(struct i915_address_space *vm, int subclass)
memset64(vm->min_alignment, I915_GTT_MIN_ALIGNMENT,
ARRAY_SIZE(vm->min_alignment));
- if (HAS_64K_PAGES(vm->i915) && NEEDS_COMPACT_PT(vm->i915) &&
- subclass == VM_CLASS_PPGTT) {
- vm->min_alignment[INTEL_MEMORY_LOCAL] = I915_GTT_PAGE_SIZE_2M;
- vm->min_alignment[INTEL_MEMORY_STOLEN_LOCAL] = I915_GTT_PAGE_SIZE_2M;
- } else if (HAS_64K_PAGES(vm->i915)) {
+ if (HAS_64K_PAGES(vm->i915)) {
vm->min_alignment[INTEL_MEMORY_LOCAL] = I915_GTT_PAGE_SIZE_64K;
vm->min_alignment[INTEL_MEMORY_STOLEN_LOCAL] = I915_GTT_PAGE_SIZE_64K;
}
@@ -343,7 +342,8 @@ int setup_scratch_page(struct i915_address_space *vm)
*/
size = I915_GTT_PAGE_SIZE_4K;
if (i915_vm_is_4lvl(vm) &&
- HAS_PAGE_SIZES(vm->i915, I915_GTT_PAGE_SIZE_64K))
+ HAS_PAGE_SIZES(vm->i915, I915_GTT_PAGE_SIZE_64K) &&
+ !HAS_64K_PAGES(vm->i915))
size = I915_GTT_PAGE_SIZE_64K;
do {
@@ -385,18 +385,6 @@ skip:
if (size == I915_GTT_PAGE_SIZE_4K)
return -ENOMEM;
- /*
- * If we need 64K minimum GTT pages for device local-memory,
- * like on XEHPSDV, then we need to fail the allocation here,
- * otherwise we can't safely support the insertion of
- * local-memory pages for this vm, since the HW expects the
- * correct physical alignment and size when the page-table is
- * operating in 64K GTT mode, which includes any scratch PTEs,
- * since userspace can still touch them.
- */
- if (HAS_64K_PAGES(vm->i915))
- return -ENOMEM;
-
size = I915_GTT_PAGE_SIZE_4K;
} while (1);
}
@@ -474,9 +462,9 @@ void gtt_write_workarounds(struct intel_gt *gt)
intel_uncore_write(uncore,
HSW_GTT_CACHE_EN,
can_use_gtt_cache ? GTT_CACHE_EN_ALL : 0);
- drm_WARN_ON_ONCE(&i915->drm, can_use_gtt_cache &&
- intel_uncore_read(uncore,
- HSW_GTT_CACHE_EN) == 0);
+ gt_WARN_ON_ONCE(gt, can_use_gtt_cache &&
+ intel_uncore_read(uncore,
+ HSW_GTT_CACHE_EN) == 0);
}
}
@@ -493,6 +481,29 @@ static void tgl_setup_private_ppat(struct intel_uncore *uncore)
intel_uncore_write(uncore, GEN12_PAT_INDEX(7), GEN8_PPAT_WB);
}
+static void xehp_setup_private_ppat(struct intel_gt *gt)
+{
+ enum forcewake_domains fw;
+ unsigned long flags;
+
+ fw = intel_uncore_forcewake_for_reg(gt->uncore, _MMIO(XEHP_PAT_INDEX(0).reg),
+ FW_REG_WRITE);
+ intel_uncore_forcewake_get(gt->uncore, fw);
+
+ intel_gt_mcr_lock(gt, &flags);
+ intel_gt_mcr_multicast_write_fw(gt, XEHP_PAT_INDEX(0), GEN8_PPAT_WB);
+ intel_gt_mcr_multicast_write_fw(gt, XEHP_PAT_INDEX(1), GEN8_PPAT_WC);
+ intel_gt_mcr_multicast_write_fw(gt, XEHP_PAT_INDEX(2), GEN8_PPAT_WT);
+ intel_gt_mcr_multicast_write_fw(gt, XEHP_PAT_INDEX(3), GEN8_PPAT_UC);
+ intel_gt_mcr_multicast_write_fw(gt, XEHP_PAT_INDEX(4), GEN8_PPAT_WB);
+ intel_gt_mcr_multicast_write_fw(gt, XEHP_PAT_INDEX(5), GEN8_PPAT_WB);
+ intel_gt_mcr_multicast_write_fw(gt, XEHP_PAT_INDEX(6), GEN8_PPAT_WB);
+ intel_gt_mcr_multicast_write_fw(gt, XEHP_PAT_INDEX(7), GEN8_PPAT_WB);
+ intel_gt_mcr_unlock(gt, flags);
+
+ intel_uncore_forcewake_put(gt->uncore, fw);
+}
+
static void icl_setup_private_ppat(struct intel_uncore *uncore)
{
intel_uncore_write(uncore,
@@ -585,13 +596,16 @@ static void chv_setup_private_ppat(struct intel_uncore *uncore)
intel_uncore_write(uncore, GEN8_PRIVATE_PAT_HI, upper_32_bits(pat));
}
-void setup_private_pat(struct intel_uncore *uncore)
+void setup_private_pat(struct intel_gt *gt)
{
- struct drm_i915_private *i915 = uncore->i915;
+ struct intel_uncore *uncore = gt->uncore;
+ struct drm_i915_private *i915 = gt->i915;
GEM_BUG_ON(GRAPHICS_VER(i915) < 8);
- if (GRAPHICS_VER(i915) >= 12)
+ if (GRAPHICS_VER_FULL(i915) >= IP_VER(12, 50))
+ xehp_setup_private_ppat(gt);
+ else if (GRAPHICS_VER(i915) >= 12)
tgl_setup_private_ppat(uncore);
else if (GRAPHICS_VER(i915) >= 11)
icl_setup_private_ppat(uncore);
diff --git a/drivers/gpu/drm/i915/gt/intel_gtt.h b/drivers/gpu/drm/i915/gt/intel_gtt.h
index c0ca53cba9f0..69ce55f517f5 100644
--- a/drivers/gpu/drm/i915/gt/intel_gtt.h
+++ b/drivers/gpu/drm/i915/gt/intel_gtt.h
@@ -93,6 +93,7 @@ typedef u64 gen8_pte_t;
#define GEN12_GGTT_PTE_LM BIT_ULL(1)
#define GEN12_PDE_64K BIT(6)
+#define GEN12_PTE_PS64 BIT(8)
/*
* Cacheability Control is a 4-bit value. The low three bits are stored in bits
@@ -297,6 +298,8 @@ struct i915_address_space {
u64 start, u64 length);
void (*clear_range)(struct i915_address_space *vm,
u64 start, u64 length);
+ void (*scratch_range)(struct i915_address_space *vm,
+ u64 start, u64 length);
void (*insert_page)(struct i915_address_space *vm,
dma_addr_t addr,
u64 offset,
@@ -354,19 +357,6 @@ struct i915_ggtt {
bool do_idle_maps;
- /**
- * @pte_lost: Are ptes lost on resume?
- *
- * Whether the system was recently restored from hibernate and
- * thus may have lost pte content.
- */
- bool pte_lost;
-
- /**
- * @probed_pte: Probed pte value on suspend. Re-checked on resume.
- */
- u64 probed_pte;
-
int mtrr;
/** Bit 6 swizzling required for X tiling */
@@ -389,6 +379,9 @@ struct i915_ggtt {
struct mutex error_mutex;
struct drm_mm_node error_capture;
struct drm_mm_node uc_fw;
+
+ /** List of GTs mapping this GGTT */
+ struct list_head gt_list;
};
struct i915_ppgtt {
@@ -578,11 +571,10 @@ void intel_ggtt_unbind_vma(struct i915_address_space *vm,
int i915_ggtt_probe_hw(struct drm_i915_private *i915);
int i915_ggtt_init_hw(struct drm_i915_private *i915);
int i915_ggtt_enable_hw(struct drm_i915_private *i915);
-void i915_ggtt_enable_guc(struct i915_ggtt *ggtt);
-void i915_ggtt_disable_guc(struct i915_ggtt *ggtt);
int i915_init_ggtt(struct drm_i915_private *i915);
void i915_ggtt_driver_release(struct drm_i915_private *i915);
void i915_ggtt_driver_late_release(struct drm_i915_private *i915);
+struct i915_ggtt *i915_ggtt_create(struct drm_i915_private *i915);
static inline bool i915_ggtt_has_aperture(const struct i915_ggtt *ggtt)
{
@@ -599,17 +591,6 @@ bool i915_ggtt_resume_vm(struct i915_address_space *vm);
void i915_ggtt_suspend(struct i915_ggtt *gtt);
void i915_ggtt_resume(struct i915_ggtt *ggtt);
-/**
- * i915_ggtt_mark_pte_lost - Mark ggtt ptes as lost or clear such a marking
- * @i915 The device private.
- * @val whether the ptes should be marked as lost.
- *
- * In some cases pte content is retained across suspend, but typically lost
- * across hibernate. Typically they should be marked as lost on
- * hibernation restore and such marking cleared on suspend.
- */
-void i915_ggtt_mark_pte_lost(struct drm_i915_private *i915, bool val);
-
void
fill_page_dma(struct drm_i915_gem_object *p, const u64 val, unsigned int count);
@@ -667,7 +648,7 @@ void ppgtt_unbind_vma(struct i915_address_space *vm,
void gtt_write_workarounds(struct intel_gt *gt);
-void setup_private_pat(struct intel_uncore *uncore);
+void setup_private_pat(struct intel_gt *gt);
int i915_vm_alloc_pt_stash(struct i915_address_space *vm,
struct i915_vm_pt_stash *stash,
diff --git a/drivers/gpu/drm/i915/gt/intel_lrc.c b/drivers/gpu/drm/i915/gt/intel_lrc.c
index 3955292483a6..81a96c52a92b 100644
--- a/drivers/gpu/drm/i915/gt/intel_lrc.c
+++ b/drivers/gpu/drm/i915/gt/intel_lrc.c
@@ -20,6 +20,30 @@
#include "intel_ring.h"
#include "shmem_utils.h"
+/*
+ * The per-platform tables are u8-encoded in @data. Decode @data and set the
+ * addresses' offset and commands in @regs. The following encoding is used
+ * for each byte. There are 2 steps: decoding commands and decoding addresses.
+ *
+ * Commands:
+ * [7]: create NOPs - number of NOPs are set in lower bits
+ * [6]: When creating MI_LOAD_REGISTER_IMM command, allow to set
+ * MI_LRI_FORCE_POSTED
+ * [5:0]: Number of NOPs or registers to set values to in case of
+ * MI_LOAD_REGISTER_IMM
+ *
+ * Addresses: these are decoded after a MI_LOAD_REGISTER_IMM command by "count"
+ * number of registers. They are set by using the REG/REG16 macros: the former
+ * is used for offsets smaller than 0x200 while the latter is for values bigger
+ * than that. Those macros already set all the bits documented below correctly:
+ *
+ * [7]: When a register offset needs more than 6 bits, use additional bytes, to
+ * follow, for the lower bits
+ * [6:0]: Register offset, without considering the engine base.
+ *
+ * This function only tweaks the commands and register offsets. Values are not
+ * filled out.
+ */
static void set_offsets(u32 *regs,
const u8 *data,
const struct intel_engine_cs *engine,
@@ -606,6 +630,49 @@ static const u8 dg2_rcs_offsets[] = {
END
};
+static const u8 mtl_rcs_offsets[] = {
+ NOP(1),
+ LRI(15, POSTED),
+ REG16(0x244),
+ REG(0x034),
+ REG(0x030),
+ REG(0x038),
+ REG(0x03c),
+ REG(0x168),
+ REG(0x140),
+ REG(0x110),
+ REG(0x1c0),
+ REG(0x1c4),
+ REG(0x1c8),
+ REG(0x180),
+ REG16(0x2b4),
+ REG(0x120),
+ REG(0x124),
+
+ NOP(1),
+ LRI(9, POSTED),
+ REG16(0x3a8),
+ REG16(0x28c),
+ REG16(0x288),
+ REG16(0x284),
+ REG16(0x280),
+ REG16(0x27c),
+ REG16(0x278),
+ REG16(0x274),
+ REG16(0x270),
+
+ NOP(2),
+ LRI(2, POSTED),
+ REG16(0x5a8),
+ REG16(0x5ac),
+
+ NOP(6),
+ LRI(1, 0),
+ REG(0x0c8),
+
+ END
+};
+
#undef END
#undef REG16
#undef REG
@@ -624,7 +691,9 @@ static const u8 *reg_offsets(const struct intel_engine_cs *engine)
!intel_engine_has_relative_mmio(engine));
if (engine->flags & I915_ENGINE_HAS_RCS_REG_STATE) {
- if (GRAPHICS_VER_FULL(engine->i915) >= IP_VER(12, 55))
+ if (GRAPHICS_VER_FULL(engine->i915) >= IP_VER(12, 70))
+ return mtl_rcs_offsets;
+ else if (GRAPHICS_VER_FULL(engine->i915) >= IP_VER(12, 55))
return dg2_rcs_offsets;
else if (GRAPHICS_VER_FULL(engine->i915) >= IP_VER(12, 50))
return xehp_rcs_offsets;
@@ -745,19 +814,18 @@ static int lrc_ring_cmd_buf_cctl(const struct intel_engine_cs *engine)
static u32
lrc_ring_indirect_offset_default(const struct intel_engine_cs *engine)
{
- switch (GRAPHICS_VER(engine->i915)) {
- default:
- MISSING_CASE(GRAPHICS_VER(engine->i915));
- fallthrough;
- case 12:
+ if (GRAPHICS_VER(engine->i915) >= 12)
return GEN12_CTX_RCS_INDIRECT_CTX_OFFSET_DEFAULT;
- case 11:
+ else if (GRAPHICS_VER(engine->i915) >= 11)
return GEN11_CTX_RCS_INDIRECT_CTX_OFFSET_DEFAULT;
- case 9:
+ else if (GRAPHICS_VER(engine->i915) >= 9)
return GEN9_CTX_RCS_INDIRECT_CTX_OFFSET_DEFAULT;
- case 8:
+ else if (GRAPHICS_VER(engine->i915) >= 8)
return GEN8_CTX_RCS_INDIRECT_CTX_OFFSET_DEFAULT;
- }
+
+ GEM_BUG_ON(GRAPHICS_VER(engine->i915) < 8);
+
+ return 0;
}
static void
@@ -1012,7 +1080,7 @@ __lrc_alloc_state(struct intel_context *ce, struct intel_engine_cs *engine)
if (IS_ENABLED(CONFIG_DRM_I915_DEBUG_GEM))
context_size += I915_GTT_PAGE_SIZE; /* for redzone */
- if (GRAPHICS_VER(engine->i915) == 12) {
+ if (GRAPHICS_VER(engine->i915) >= 12) {
ce->wa_bb_page = context_size / PAGE_SIZE;
context_size += PAGE_SIZE;
}
@@ -1248,16 +1316,16 @@ static u32 *
dg2_emit_rcs_hang_wabb(const struct intel_context *ce, u32 *cs)
{
*cs++ = MI_LOAD_REGISTER_IMM(1);
- *cs++ = i915_mmio_reg_offset(GEN12_STATE_ACK_DEBUG);
+ *cs++ = i915_mmio_reg_offset(GEN12_STATE_ACK_DEBUG(ce->engine->mmio_base));
*cs++ = 0x21;
*cs++ = MI_LOAD_REGISTER_REG;
*cs++ = i915_mmio_reg_offset(RING_NOPID(ce->engine->mmio_base));
- *cs++ = i915_mmio_reg_offset(GEN12_CULLBIT1);
+ *cs++ = i915_mmio_reg_offset(XEHP_CULLBIT1);
*cs++ = MI_LOAD_REGISTER_REG;
*cs++ = i915_mmio_reg_offset(RING_NOPID(ce->engine->mmio_base));
- *cs++ = i915_mmio_reg_offset(GEN12_CULLBIT2);
+ *cs++ = i915_mmio_reg_offset(XEHP_CULLBIT2);
return cs;
}
@@ -1718,24 +1786,16 @@ void lrc_init_wa_ctx(struct intel_engine_cs *engine)
unsigned int i;
int err;
- if (!(engine->flags & I915_ENGINE_HAS_RCS_REG_STATE))
+ if (GRAPHICS_VER(engine->i915) >= 11 ||
+ !(engine->flags & I915_ENGINE_HAS_RCS_REG_STATE))
return;
- switch (GRAPHICS_VER(engine->i915)) {
- case 12:
- case 11:
- return;
- case 9:
+ if (GRAPHICS_VER(engine->i915) == 9) {
wa_bb_fn[0] = gen9_init_indirectctx_bb;
wa_bb_fn[1] = NULL;
- break;
- case 8:
+ } else if (GRAPHICS_VER(engine->i915) == 8) {
wa_bb_fn[0] = gen8_init_indirectctx_bb;
wa_bb_fn[1] = NULL;
- break;
- default:
- MISSING_CASE(GRAPHICS_VER(engine->i915));
- return;
}
err = lrc_create_wa_ctx(engine);
diff --git a/drivers/gpu/drm/i915/gt/intel_lrc.h b/drivers/gpu/drm/i915/gt/intel_lrc.h
index a390f0813c8b..7111bae759f3 100644
--- a/drivers/gpu/drm/i915/gt/intel_lrc.h
+++ b/drivers/gpu/drm/i915/gt/intel_lrc.h
@@ -110,6 +110,8 @@ enum {
#define XEHP_SW_CTX_ID_WIDTH 16
#define XEHP_SW_COUNTER_SHIFT 58
#define XEHP_SW_COUNTER_WIDTH 6
+#define GEN12_GUC_SW_CTX_ID_SHIFT 39
+#define GEN12_GUC_SW_CTX_ID_WIDTH 16
static inline void lrc_runtime_start(struct intel_context *ce)
{
diff --git a/drivers/gpu/drm/i915/gt/intel_migrate.c b/drivers/gpu/drm/i915/gt/intel_migrate.c
index aaaf1906026c..3f638f198796 100644
--- a/drivers/gpu/drm/i915/gt/intel_migrate.c
+++ b/drivers/gpu/drm/i915/gt/intel_migrate.c
@@ -10,6 +10,7 @@
#include "intel_gtt.h"
#include "intel_migrate.h"
#include "intel_ring.h"
+#include "gem/i915_gem_lmem.h"
struct insert_pte_data {
u64 offset;
@@ -341,6 +342,18 @@ static int emit_no_arbitration(struct i915_request *rq)
return 0;
}
+static int max_pte_pkt_size(struct i915_request *rq, int pkt)
+{
+ struct intel_ring *ring = rq->ring;
+
+ pkt = min_t(int, pkt, (ring->space - rq->reserved_space) / sizeof(u32) + 5);
+ pkt = min_t(int, pkt, (ring->size - ring->emit) / sizeof(u32) + 5);
+
+ return pkt;
+}
+
+#define I915_EMIT_PTE_NUM_DWORDS 6
+
static int emit_pte(struct i915_request *rq,
struct sgt_dma *it,
enum i915_cache_level cache_level,
@@ -382,13 +395,12 @@ static int emit_pte(struct i915_request *rq,
offset += (u64)rq->engine->instance << 32;
- cs = intel_ring_begin(rq, 6);
+ cs = intel_ring_begin(rq, I915_EMIT_PTE_NUM_DWORDS);
if (IS_ERR(cs))
return PTR_ERR(cs);
/* Pack as many PTE updates as possible into a single MI command */
- pkt = min_t(int, dword_length, ring->space / sizeof(u32) + 5);
- pkt = min_t(int, pkt, (ring->size - ring->emit) / sizeof(u32) + 5);
+ pkt = max_pte_pkt_size(rq, dword_length);
hdr = cs;
*cs++ = MI_STORE_DATA_IMM | REG_BIT(21); /* as qword elements */
@@ -406,7 +418,7 @@ static int emit_pte(struct i915_request *rq,
intel_ring_advance(rq, cs);
intel_ring_update_space(ring);
- cs = intel_ring_begin(rq, 6);
+ cs = intel_ring_begin(rq, I915_EMIT_PTE_NUM_DWORDS);
if (IS_ERR(cs))
return PTR_ERR(cs);
@@ -421,8 +433,7 @@ static int emit_pte(struct i915_request *rq,
}
}
- pkt = min_t(int, dword_rem, ring->space / sizeof(u32) + 5);
- pkt = min_t(int, pkt, (ring->size - ring->emit) / sizeof(u32) + 5);
+ pkt = max_pte_pkt_size(rq, dword_rem);
hdr = cs;
*cs++ = MI_STORE_DATA_IMM | REG_BIT(21);
@@ -828,14 +839,35 @@ intel_context_migrate_copy(struct intel_context *ce,
if (err)
goto out_rq;
- /*
- * While we can't always restore/manage the CCS state,
- * we still need to ensure we don't leak the CCS state
- * from the previous user, so make sure we overwrite it
- * with something.
- */
- err = emit_copy_ccs(rq, dst_offset, INDIRECT_ACCESS,
- dst_offset, DIRECT_ACCESS, len);
+ if (src_is_lmem) {
+ /*
+ * If the src is already in lmem, then we must
+ * be doing an lmem -> lmem transfer, and so
+ * should be safe to directly copy the CCS
+ * state. In this case we have either
+ * initialised the CCS aux state when first
+ * clearing the pages (since it is already
+ * allocated in lmem), or the user has
+ * potentially populated it, in which case we
+ * need to copy the CCS state as-is.
+ */
+ err = emit_copy_ccs(rq,
+ dst_offset, INDIRECT_ACCESS,
+ src_offset, INDIRECT_ACCESS,
+ len);
+ } else {
+ /*
+ * While we can't always restore/manage the CCS
+ * state, we still need to ensure we don't leak
+ * the CCS state from the previous user, so make
+ * sure we overwrite it with something.
+ */
+ err = emit_copy_ccs(rq,
+ dst_offset, INDIRECT_ACCESS,
+ dst_offset, DIRECT_ACCESS,
+ len);
+ }
+
if (err)
goto out_rq;
diff --git a/drivers/gpu/drm/i915/gt/intel_mocs.c b/drivers/gpu/drm/i915/gt/intel_mocs.c
index 152244d7f62a..69b489e8dfed 100644
--- a/drivers/gpu/drm/i915/gt/intel_mocs.c
+++ b/drivers/gpu/drm/i915/gt/intel_mocs.c
@@ -7,6 +7,7 @@
#include "intel_engine.h"
#include "intel_gt.h"
+#include "intel_gt_mcr.h"
#include "intel_gt_regs.h"
#include "intel_mocs.h"
#include "intel_ring.h"
@@ -609,14 +610,20 @@ static u32 l3cc_combine(u16 low, u16 high)
0; \
i++)
-static void init_l3cc_table(struct intel_uncore *uncore,
+static void init_l3cc_table(struct intel_gt *gt,
const struct drm_i915_mocs_table *table)
{
+ unsigned long flags;
unsigned int i;
u32 l3cc;
+ intel_gt_mcr_lock(gt, &flags);
for_each_l3cc(l3cc, table, i)
- intel_uncore_write_fw(uncore, GEN9_LNCFCMOCS(i), l3cc);
+ if (GRAPHICS_VER_FULL(gt->i915) >= IP_VER(12, 50))
+ intel_gt_mcr_multicast_write_fw(gt, XEHP_LNCFCMOCS(i), l3cc);
+ else
+ intel_uncore_write_fw(gt->uncore, GEN9_LNCFCMOCS(i), l3cc);
+ intel_gt_mcr_unlock(gt, flags);
}
void intel_mocs_init_engine(struct intel_engine_cs *engine)
@@ -636,7 +643,7 @@ void intel_mocs_init_engine(struct intel_engine_cs *engine)
init_mocs_table(engine, &table);
if (flags & HAS_RENDER_L3CC && engine->class == RENDER_CLASS)
- init_l3cc_table(engine->uncore, &table);
+ init_l3cc_table(engine->gt, &table);
}
static u32 global_mocs_offset(void)
@@ -672,7 +679,7 @@ void intel_mocs_init(struct intel_gt *gt)
* memory transactions including guc transactions
*/
if (flags & HAS_RENDER_L3CC)
- init_l3cc_table(gt->uncore, &table);
+ init_l3cc_table(gt, &table);
}
#if IS_ENABLED(CONFIG_DRM_I915_SELFTEST)
diff --git a/drivers/gpu/drm/i915/gt/intel_rc6.c b/drivers/gpu/drm/i915/gt/intel_rc6.c
index f8d0523f4c18..8f3cd68d14f8 100644
--- a/drivers/gpu/drm/i915/gt/intel_rc6.c
+++ b/drivers/gpu/drm/i915/gt/intel_rc6.c
@@ -301,7 +301,7 @@ static int chv_rc6_init(struct intel_rc6 *rc6)
pcbr = intel_uncore_read(uncore, VLV_PCBR);
if ((pcbr >> VLV_PCBR_ADDR_SHIFT) == 0) {
drm_dbg(&i915->drm, "BIOS didn't set up PCBR, fixing up\n");
- paddr = i915->dsm.end + 1 - pctx_size;
+ paddr = i915->dsm.stolen.end + 1 - pctx_size;
GEM_BUG_ON(paddr > U32_MAX);
pctx_paddr = (paddr & ~4095);
@@ -325,7 +325,7 @@ static int vlv_rc6_init(struct intel_rc6 *rc6)
/* BIOS set it up already, grab the pre-alloc'd space */
resource_size_t pcbr_offset;
- pcbr_offset = (pcbr & ~4095) - i915->dsm.start;
+ pcbr_offset = (pcbr & ~4095) - i915->dsm.stolen.start;
pctx = i915_gem_object_create_region_at(i915->mm.stolen_region,
pcbr_offset,
pctx_size,
@@ -354,10 +354,10 @@ static int vlv_rc6_init(struct intel_rc6 *rc6)
}
GEM_BUG_ON(range_overflows_end_t(u64,
- i915->dsm.start,
+ i915->dsm.stolen.start,
pctx->stolen->start,
U32_MAX));
- pctx_paddr = i915->dsm.start + pctx->stolen->start;
+ pctx_paddr = i915->dsm.stolen.start + pctx->stolen->start;
intel_uncore_write(uncore, VLV_PCBR, pctx_paddr);
out:
@@ -420,6 +420,21 @@ static void vlv_rc6_enable(struct intel_rc6 *rc6)
GEN7_RC_CTL_TO_MODE | VLV_RC_CTL_CTX_RST_PARALLEL;
}
+bool intel_check_bios_c6_setup(struct intel_rc6 *rc6)
+{
+ if (!rc6->bios_state_captured) {
+ struct intel_uncore *uncore = rc6_to_uncore(rc6);
+ intel_wakeref_t wakeref;
+
+ with_intel_runtime_pm(uncore->rpm, wakeref)
+ rc6->bios_rc_state = intel_uncore_read(uncore, GEN6_RC_STATE);
+
+ rc6->bios_state_captured = true;
+ }
+
+ return rc6->bios_rc_state & RC_SW_TARGET_STATE_MASK;
+}
+
static bool bxt_check_bios_rc6_setup(struct intel_rc6 *rc6)
{
struct intel_uncore *uncore = rc6_to_uncore(rc6);
@@ -448,8 +463,8 @@ static bool bxt_check_bios_rc6_setup(struct intel_rc6 *rc6)
*/
rc6_ctx_base =
intel_uncore_read(uncore, RC6_CTX_BASE) & RC6_CTX_BASE_MASK;
- if (!(rc6_ctx_base >= i915->dsm_reserved.start &&
- rc6_ctx_base + PAGE_SIZE < i915->dsm_reserved.end)) {
+ if (!(rc6_ctx_base >= i915->dsm.reserved.start &&
+ rc6_ctx_base + PAGE_SIZE < i915->dsm.reserved.end)) {
drm_dbg(&i915->drm, "RC6 Base address not as expected.\n");
enable_rc6 = false;
}
@@ -486,6 +501,7 @@ static bool bxt_check_bios_rc6_setup(struct intel_rc6 *rc6)
static bool rc6_supported(struct intel_rc6 *rc6)
{
struct drm_i915_private *i915 = rc6_to_i915(rc6);
+ struct intel_gt *gt = rc6_to_gt(rc6);
if (!HAS_RC6(i915))
return false;
@@ -502,6 +518,20 @@ static bool rc6_supported(struct intel_rc6 *rc6)
return false;
}
+ if (IS_METEORLAKE(gt->i915) &&
+ !intel_check_bios_c6_setup(rc6)) {
+ drm_notice(&i915->drm,
+ "C6 disabled by BIOS\n");
+ return false;
+ }
+
+ if (IS_MTL_MEDIA_STEP(gt->i915, STEP_A0, STEP_B0) &&
+ gt->type == GT_MEDIA) {
+ drm_notice(&i915->drm,
+ "Media RC6 disabled on A step\n");
+ return false;
+ }
+
return true;
}
@@ -551,6 +581,23 @@ static void __intel_rc6_disable(struct intel_rc6 *rc6)
intel_uncore_forcewake_put(uncore, FORCEWAKE_ALL);
}
+static void rc6_res_reg_init(struct intel_rc6 *rc6)
+{
+ memset(rc6->res_reg, INVALID_MMIO_REG.reg, sizeof(rc6->res_reg));
+
+ switch (rc6_to_gt(rc6)->type) {
+ case GT_MEDIA:
+ rc6->res_reg[INTEL_RC6_RES_RC6] = MTL_MEDIA_MC6;
+ break;
+ default:
+ rc6->res_reg[INTEL_RC6_RES_RC6_LOCKED] = GEN6_GT_GFX_RC6_LOCKED;
+ rc6->res_reg[INTEL_RC6_RES_RC6] = GEN6_GT_GFX_RC6;
+ rc6->res_reg[INTEL_RC6_RES_RC6p] = GEN6_GT_GFX_RC6p;
+ rc6->res_reg[INTEL_RC6_RES_RC6pp] = GEN6_GT_GFX_RC6pp;
+ break;
+ }
+}
+
void intel_rc6_init(struct intel_rc6 *rc6)
{
struct drm_i915_private *i915 = rc6_to_i915(rc6);
@@ -562,6 +609,8 @@ void intel_rc6_init(struct intel_rc6 *rc6)
if (!rc6_supported(rc6))
return;
+ rc6_res_reg_init(rc6);
+
if (IS_CHERRYVIEW(i915))
err = chv_rc6_init(rc6);
else if (IS_VALLEYVIEW(i915))
@@ -680,9 +729,14 @@ void intel_rc6_disable(struct intel_rc6 *rc6)
void intel_rc6_fini(struct intel_rc6 *rc6)
{
struct drm_i915_gem_object *pctx;
+ struct intel_uncore *uncore = rc6_to_uncore(rc6);
intel_rc6_disable(rc6);
+ /* We want the BIOS C6 state preserved across loads for MTL */
+ if (IS_METEORLAKE(rc6_to_i915(rc6)) && rc6->bios_state_captured)
+ set(uncore, GEN6_RC_STATE, rc6->bios_rc_state);
+
pctx = fetch_and_zero(&rc6->pctx);
if (pctx)
i915_gem_object_put(pctx);
@@ -736,31 +790,19 @@ static u64 vlv_residency_raw(struct intel_uncore *uncore, const i915_reg_t reg)
return lower | (u64)upper << 8;
}
-u64 intel_rc6_residency_ns(struct intel_rc6 *rc6, const i915_reg_t reg)
+u64 intel_rc6_residency_ns(struct intel_rc6 *rc6, enum intel_rc6_res_type id)
{
struct drm_i915_private *i915 = rc6_to_i915(rc6);
struct intel_uncore *uncore = rc6_to_uncore(rc6);
u64 time_hw, prev_hw, overflow_hw;
+ i915_reg_t reg = rc6->res_reg[id];
unsigned int fw_domains;
unsigned long flags;
- unsigned int i;
u32 mul, div;
if (!rc6->supported)
return 0;
- /*
- * Store previous hw counter values for counter wrap-around handling.
- *
- * There are only four interesting registers and they live next to each
- * other so we can use the relative address, compared to the smallest
- * one as the index into driver storage.
- */
- i = (i915_mmio_reg_offset(reg) -
- i915_mmio_reg_offset(GEN6_GT_GFX_RC6_LOCKED)) / sizeof(u32);
- if (drm_WARN_ON_ONCE(&i915->drm, i >= ARRAY_SIZE(rc6->cur_residency)))
- return 0;
-
fw_domains = intel_uncore_forcewake_for_reg(uncore, reg, FW_REG_READ);
spin_lock_irqsave(&uncore->lock, flags);
@@ -789,11 +831,11 @@ u64 intel_rc6_residency_ns(struct intel_rc6 *rc6, const i915_reg_t reg)
/*
* Counter wrap handling.
*
- * But relying on a sufficient frequency of queries otherwise counters
- * can still wrap.
+ * Store previous hw counter values for counter wrap-around handling. But
+ * relying on a sufficient frequency of queries otherwise counters can still wrap.
*/
- prev_hw = rc6->prev_hw_residency[i];
- rc6->prev_hw_residency[i] = time_hw;
+ prev_hw = rc6->prev_hw_residency[id];
+ rc6->prev_hw_residency[id] = time_hw;
/* RC6 delta from last sample. */
if (time_hw >= prev_hw)
@@ -802,8 +844,8 @@ u64 intel_rc6_residency_ns(struct intel_rc6 *rc6, const i915_reg_t reg)
time_hw += overflow_hw - prev_hw;
/* Add delta to RC6 extended raw driver copy. */
- time_hw += rc6->cur_residency[i];
- rc6->cur_residency[i] = time_hw;
+ time_hw += rc6->cur_residency[id];
+ rc6->cur_residency[id] = time_hw;
intel_uncore_forcewake_put__locked(uncore, fw_domains);
spin_unlock_irqrestore(&uncore->lock, flags);
@@ -811,9 +853,22 @@ u64 intel_rc6_residency_ns(struct intel_rc6 *rc6, const i915_reg_t reg)
return mul_u64_u32_div(time_hw, mul, div);
}
-u64 intel_rc6_residency_us(struct intel_rc6 *rc6, i915_reg_t reg)
+u64 intel_rc6_residency_us(struct intel_rc6 *rc6, enum intel_rc6_res_type id)
+{
+ return DIV_ROUND_UP_ULL(intel_rc6_residency_ns(rc6, id), 1000);
+}
+
+void intel_rc6_print_residency(struct seq_file *m, const char *title,
+ enum intel_rc6_res_type id)
{
- return DIV_ROUND_UP_ULL(intel_rc6_residency_ns(rc6, reg), 1000);
+ struct intel_gt *gt = m->private;
+ i915_reg_t reg = gt->rc6.res_reg[id];
+ intel_wakeref_t wakeref;
+
+ with_intel_runtime_pm(gt->uncore->rpm, wakeref)
+ seq_printf(m, "%s %u (%llu us)\n", title,
+ intel_uncore_read(gt->uncore, reg),
+ intel_rc6_residency_us(&gt->rc6, id));
}
#if IS_ENABLED(CONFIG_DRM_I915_SELFTEST)
diff --git a/drivers/gpu/drm/i915/gt/intel_rc6.h b/drivers/gpu/drm/i915/gt/intel_rc6.h
index b6fea71afc22..e137c2c397c2 100644
--- a/drivers/gpu/drm/i915/gt/intel_rc6.h
+++ b/drivers/gpu/drm/i915/gt/intel_rc6.h
@@ -6,10 +6,11 @@
#ifndef INTEL_RC6_H
#define INTEL_RC6_H
-#include "i915_reg_defs.h"
+#include <linux/types.h>
-struct intel_engine_cs;
+enum intel_rc6_res_type;
struct intel_rc6;
+struct seq_file;
void intel_rc6_init(struct intel_rc6 *rc6);
void intel_rc6_fini(struct intel_rc6 *rc6);
@@ -21,7 +22,11 @@ void intel_rc6_sanitize(struct intel_rc6 *rc6);
void intel_rc6_enable(struct intel_rc6 *rc6);
void intel_rc6_disable(struct intel_rc6 *rc6);
-u64 intel_rc6_residency_ns(struct intel_rc6 *rc6, i915_reg_t reg);
-u64 intel_rc6_residency_us(struct intel_rc6 *rc6, i915_reg_t reg);
+u64 intel_rc6_residency_ns(struct intel_rc6 *rc6, enum intel_rc6_res_type id);
+u64 intel_rc6_residency_us(struct intel_rc6 *rc6, enum intel_rc6_res_type id);
+void intel_rc6_print_residency(struct seq_file *m, const char *title,
+ enum intel_rc6_res_type id);
+
+bool intel_check_bios_c6_setup(struct intel_rc6 *rc6);
#endif /* INTEL_RC6_H */
diff --git a/drivers/gpu/drm/i915/gt/intel_rc6_types.h b/drivers/gpu/drm/i915/gt/intel_rc6_types.h
index e747492b2f46..cd4587098162 100644
--- a/drivers/gpu/drm/i915/gt/intel_rc6_types.h
+++ b/drivers/gpu/drm/i915/gt/intel_rc6_types.h
@@ -13,11 +13,23 @@
struct drm_i915_gem_object;
+/* RC6 residency types */
+enum intel_rc6_res_type {
+ INTEL_RC6_RES_RC6_LOCKED,
+ INTEL_RC6_RES_RC6,
+ INTEL_RC6_RES_RC6p,
+ INTEL_RC6_RES_RC6pp,
+ INTEL_RC6_RES_MAX,
+ INTEL_RC6_RES_VLV_MEDIA = INTEL_RC6_RES_RC6p,
+};
+
struct intel_rc6 {
- u64 prev_hw_residency[4];
- u64 cur_residency[4];
+ i915_reg_t res_reg[INTEL_RC6_RES_MAX];
+ u64 prev_hw_residency[INTEL_RC6_RES_MAX];
+ u64 cur_residency[INTEL_RC6_RES_MAX];
u32 ctl_enable;
+ u32 bios_rc_state;
struct drm_i915_gem_object *pctx;
@@ -25,6 +37,7 @@ struct intel_rc6 {
bool enabled : 1;
bool manual : 1;
bool wakeref : 1;
+ bool bios_state_captured : 1;
};
#endif /* INTEL_RC6_TYPES_H */
diff --git a/drivers/gpu/drm/i915/gt/intel_region_lmem.c b/drivers/gpu/drm/i915/gt/intel_region_lmem.c
index f3ad93db0b21..2a3217e2890f 100644
--- a/drivers/gpu/drm/i915/gt/intel_region_lmem.c
+++ b/drivers/gpu/drm/i915/gt/intel_region_lmem.c
@@ -54,6 +54,7 @@ static void i915_resize_lmem_bar(struct drm_i915_private *i915, resource_size_t
struct resource *root_res;
resource_size_t rebar_size;
resource_size_t current_size;
+ intel_wakeref_t wakeref;
u32 pci_cmd;
int i;
@@ -102,15 +103,25 @@ static void i915_resize_lmem_bar(struct drm_i915_private *i915, resource_size_t
return;
}
- /* First disable PCI memory decoding references */
- pci_read_config_dword(pdev, PCI_COMMAND, &pci_cmd);
- pci_write_config_dword(pdev, PCI_COMMAND,
- pci_cmd & ~PCI_COMMAND_MEMORY);
+ /*
+ * Releasing forcewake during BAR resizing results in later forcewake
+ * ack timeouts and former can happen any time - it is asynchronous.
+ * Grabbing all forcewakes prevents it.
+ */
+ with_intel_runtime_pm(i915->uncore.rpm, wakeref) {
+ intel_uncore_forcewake_get(&i915->uncore, FORCEWAKE_ALL);
- _resize_bar(i915, GEN12_LMEM_BAR, rebar_size);
+ /* First disable PCI memory decoding references */
+ pci_read_config_dword(pdev, PCI_COMMAND, &pci_cmd);
+ pci_write_config_dword(pdev, PCI_COMMAND,
+ pci_cmd & ~PCI_COMMAND_MEMORY);
- pci_assign_unassigned_bus_resources(pdev->bus);
- pci_write_config_dword(pdev, PCI_COMMAND, pci_cmd);
+ _resize_bar(i915, GEN12_LMEM_BAR, rebar_size);
+
+ pci_assign_unassigned_bus_resources(pdev->bus);
+ pci_write_config_dword(pdev, PCI_COMMAND, pci_cmd);
+ intel_uncore_forcewake_put(&i915->uncore, FORCEWAKE_ALL);
+ }
}
#else
static void i915_resize_lmem_bar(struct drm_i915_private *i915, resource_size_t lmem_size) {}
@@ -158,7 +169,7 @@ static const struct intel_memory_region_ops intel_region_lmem_ops = {
static bool get_legacy_lowmem_region(struct intel_uncore *uncore,
u64 *start, u32 *size)
{
- if (!IS_DG1_GRAPHICS_STEP(uncore->i915, STEP_A0, STEP_C0))
+ if (!IS_DG1(uncore->i915))
return false;
*start = 0;
diff --git a/drivers/gpu/drm/i915/gt/intel_renderstate.c b/drivers/gpu/drm/i915/gt/intel_renderstate.c
index 5121e6dc2fa5..4b56ec3743cf 100644
--- a/drivers/gpu/drm/i915/gt/intel_renderstate.c
+++ b/drivers/gpu/drm/i915/gt/intel_renderstate.c
@@ -63,7 +63,7 @@ static int render_state_setup(struct intel_renderstate *so,
u32 s = rodata->batch[i];
if (i * 4 == rodata->reloc[reloc_index]) {
- u64 r = s + so->vma->node.start;
+ u64 r = s + i915_vma_offset(so->vma);
s = lower_32_bits(r);
if (HAS_64BIT_RELOC(i915)) {
@@ -215,9 +215,7 @@ int intel_renderstate_emit(struct intel_renderstate *so,
if (!so->vma)
return 0;
- err = i915_request_await_object(rq, so->vma->obj, false);
- if (err == 0)
- err = i915_vma_move_to_active(so->vma, rq, 0);
+ err = i915_vma_move_to_active(so->vma, rq, 0);
if (err)
return err;
diff --git a/drivers/gpu/drm/i915/gt/intel_reset.c b/drivers/gpu/drm/i915/gt/intel_reset.c
index b36674356986..797ea8340467 100644
--- a/drivers/gpu/drm/i915/gt/intel_reset.c
+++ b/drivers/gpu/drm/i915/gt/intel_reset.c
@@ -14,6 +14,8 @@
#include "gt/intel_gt_regs.h"
+#include "gt/uc/intel_gsc_fw.h"
+
#include "i915_drv.h"
#include "i915_file_private.h"
#include "i915_gpu_error.h"
@@ -35,16 +37,6 @@
/* XXX How to handle concurrent GGTT updates using tiling registers? */
#define RESET_UNDER_STOP_MACHINE 0
-static void rmw_set_fw(struct intel_uncore *uncore, i915_reg_t reg, u32 set)
-{
- intel_uncore_rmw_fw(uncore, reg, 0, set);
-}
-
-static void rmw_clear_fw(struct intel_uncore *uncore, i915_reg_t reg, u32 clr)
-{
- intel_uncore_rmw_fw(uncore, reg, clr, 0);
-}
-
static void client_mark_guilty(struct i915_gem_context *ctx, bool banned)
{
struct drm_i915_file_private *file_priv = ctx->file_priv;
@@ -212,7 +204,7 @@ static int g4x_do_reset(struct intel_gt *gt,
int ret;
/* WaVcpClkGateDisableForMediaReset:ctg,elk */
- rmw_set_fw(uncore, VDECCLK_GATE_D, VCP_UNIT_CLOCK_GATE_DISABLE);
+ intel_uncore_rmw_fw(uncore, VDECCLK_GATE_D, 0, VCP_UNIT_CLOCK_GATE_DISABLE);
intel_uncore_posting_read_fw(uncore, VDECCLK_GATE_D);
pci_write_config_byte(pdev, I915_GDRST,
@@ -234,7 +226,7 @@ static int g4x_do_reset(struct intel_gt *gt,
out:
pci_write_config_byte(pdev, I915_GDRST, 0);
- rmw_clear_fw(uncore, VDECCLK_GATE_D, VCP_UNIT_CLOCK_GATE_DISABLE);
+ intel_uncore_rmw_fw(uncore, VDECCLK_GATE_D, VCP_UNIT_CLOCK_GATE_DISABLE, 0);
intel_uncore_posting_read_fw(uncore, VDECCLK_GATE_D);
return ret;
@@ -278,25 +270,52 @@ out:
static int gen6_hw_domain_reset(struct intel_gt *gt, u32 hw_domain_mask)
{
struct intel_uncore *uncore = gt->uncore;
+ int loops;
int err;
/*
+ * On some platforms, e.g. Jasperlake, we see that the engine register
+ * state is not cleared until shortly after GDRST reports completion,
+ * causing a failure as we try to immediately resume while the internal
+ * state is still in flux. If we immediately repeat the reset, the
+ * second reset appears to serialise with the first, and since it is a
+ * no-op, the registers should retain their reset value. However, there
+ * is still a concern that upon leaving the second reset, the internal
+ * engine state is still in flux and not ready for resuming.
+ *
+ * Starting on MTL, there are some prep steps that we need to do when
+ * resetting some engines that need to be applied every time we write to
+ * GEN6_GDRST. As those are time consuming (tens of ms), we don't want
+ * to perform that twice, so, since the Jasperlake issue hasn't been
+ * observed on MTL, we avoid repeating the reset on newer platforms.
+ */
+ loops = GRAPHICS_VER_FULL(gt->i915) < IP_VER(12, 70) ? 2 : 1;
+
+ /*
* GEN6_GDRST is not in the gt power well, no need to check
* for fifo space for the write or forcewake the chip for
* the read
*/
- intel_uncore_write_fw(uncore, GEN6_GDRST, hw_domain_mask);
-
- /* Wait for the device to ack the reset requests */
- err = __intel_wait_for_register_fw(uncore,
- GEN6_GDRST, hw_domain_mask, 0,
- 500, 0,
- NULL);
+ do {
+ intel_uncore_write_fw(uncore, GEN6_GDRST, hw_domain_mask);
+
+ /* Wait for the device to ack the reset requests. */
+ err = __intel_wait_for_register_fw(uncore, GEN6_GDRST,
+ hw_domain_mask, 0,
+ 2000, 0,
+ NULL);
+ } while (err == 0 && --loops);
if (err)
GT_TRACE(gt,
"Wait for 0x%08x engines reset failed\n",
hw_domain_mask);
+ /*
+ * As we have observed that the engine state is still volatile
+ * after GDRST is acked, impose a small delay to let everything settle.
+ */
+ udelay(50);
+
return err;
}
@@ -448,7 +467,7 @@ static int gen11_lock_sfc(struct intel_engine_cs *engine,
* to reset it as well (we will unlock it once the reset sequence is
* completed).
*/
- rmw_set_fw(uncore, sfc_lock.lock_reg, sfc_lock.lock_bit);
+ intel_uncore_rmw_fw(uncore, sfc_lock.lock_reg, 0, sfc_lock.lock_bit);
ret = __intel_wait_for_register_fw(uncore,
sfc_lock.ack_reg,
@@ -498,7 +517,7 @@ static void gen11_unlock_sfc(struct intel_engine_cs *engine)
get_sfc_forced_lock_data(engine, &sfc_lock);
- rmw_clear_fw(uncore, sfc_lock.lock_reg, sfc_lock.lock_bit);
+ intel_uncore_rmw_fw(uncore, sfc_lock.lock_reg, sfc_lock.lock_bit, 0);
}
static int __gen11_reset_engines(struct intel_gt *gt,
@@ -678,6 +697,74 @@ static reset_func intel_get_gpu_reset(const struct intel_gt *gt)
return NULL;
}
+static int __reset_guc(struct intel_gt *gt)
+{
+ u32 guc_domain =
+ GRAPHICS_VER(gt->i915) >= 11 ? GEN11_GRDOM_GUC : GEN9_GRDOM_GUC;
+
+ return gen6_hw_domain_reset(gt, guc_domain);
+}
+
+static bool needs_wa_14015076503(struct intel_gt *gt, intel_engine_mask_t engine_mask)
+{
+ if (!IS_METEORLAKE(gt->i915) || !HAS_ENGINE(gt, GSC0))
+ return false;
+
+ if (!__HAS_ENGINE(engine_mask, GSC0))
+ return false;
+
+ return intel_gsc_uc_fw_init_done(&gt->uc.gsc);
+}
+
+static intel_engine_mask_t
+wa_14015076503_start(struct intel_gt *gt, intel_engine_mask_t engine_mask, bool first)
+{
+ if (!needs_wa_14015076503(gt, engine_mask))
+ return engine_mask;
+
+ /*
+ * wa_14015076503: if the GSC FW is loaded, we need to alert it that
+ * we're going to do a GSC engine reset and then wait for 200ms for the
+ * FW to get ready for it. However, if this is the first ALL_ENGINES
+ * reset attempt and the GSC is not busy, we can try to instead reset
+ * the GuC and all the other engines individually to avoid the 200ms
+ * wait.
+ * Skipping the GSC engine is safe because, differently from other
+ * engines, the GSCCS only role is to forward the commands to the GSC
+ * FW, so it doesn't have any HW outside of the CS itself and therefore
+ * it has no state that we don't explicitly re-init on resume or on
+ * context switch LRC or power context). The HW for the GSC uC is
+ * managed by the GSC FW so we don't need to care about that.
+ */
+ if (engine_mask == ALL_ENGINES && first && intel_engine_is_idle(gt->engine[GSC0])) {
+ __reset_guc(gt);
+ engine_mask = gt->info.engine_mask & ~BIT(GSC0);
+ } else {
+ intel_uncore_rmw(gt->uncore,
+ HECI_H_GS1(MTL_GSC_HECI2_BASE),
+ 0, HECI_H_GS1_ER_PREP);
+
+ /* make sure the reset bit is clear when writing the CSR reg */
+ intel_uncore_rmw(gt->uncore,
+ HECI_H_CSR(MTL_GSC_HECI2_BASE),
+ HECI_H_CSR_RST, HECI_H_CSR_IG);
+ msleep(200);
+ }
+
+ return engine_mask;
+}
+
+static void
+wa_14015076503_end(struct intel_gt *gt, intel_engine_mask_t engine_mask)
+{
+ if (!needs_wa_14015076503(gt, engine_mask))
+ return;
+
+ intel_uncore_rmw(gt->uncore,
+ HECI_H_GS1(MTL_GSC_HECI2_BASE),
+ HECI_H_GS1_ER_PREP, 0);
+}
+
int __intel_gt_reset(struct intel_gt *gt, intel_engine_mask_t engine_mask)
{
const int retries = engine_mask == ALL_ENGINES ? RESET_MAX_RETRIES : 1;
@@ -695,10 +782,16 @@ int __intel_gt_reset(struct intel_gt *gt, intel_engine_mask_t engine_mask)
*/
intel_uncore_forcewake_get(gt->uncore, FORCEWAKE_ALL);
for (retry = 0; ret == -ETIMEDOUT && retry < retries; retry++) {
- GT_TRACE(gt, "engine_mask=%x\n", engine_mask);
+ intel_engine_mask_t reset_mask;
+
+ reset_mask = wa_14015076503_start(gt, engine_mask, !retry);
+
+ GT_TRACE(gt, "engine_mask=%x\n", reset_mask);
preempt_disable();
- ret = reset(gt, engine_mask, retry);
+ ret = reset(gt, reset_mask, retry);
preempt_enable();
+
+ wa_14015076503_end(gt, reset_mask);
}
intel_uncore_forcewake_put(gt->uncore, FORCEWAKE_ALL);
@@ -723,14 +816,12 @@ bool intel_has_reset_engine(const struct intel_gt *gt)
int intel_reset_guc(struct intel_gt *gt)
{
- u32 guc_domain =
- GRAPHICS_VER(gt->i915) >= 11 ? GEN11_GRDOM_GUC : GEN9_GRDOM_GUC;
int ret;
GEM_BUG_ON(!HAS_GT_UC(gt->i915));
intel_uncore_forcewake_get(gt->uncore, FORCEWAKE_ALL);
- ret = gen6_hw_domain_reset(gt, guc_domain);
+ ret = __reset_guc(gt);
intel_uncore_forcewake_put(gt->uncore, FORCEWAKE_ALL);
return ret;
@@ -1278,7 +1369,7 @@ static void intel_gt_reset_global(struct intel_gt *gt,
kobject_uevent_env(kobj, KOBJ_CHANGE, reset_event);
/* Use a watchdog to ensure that our reset completes */
- intel_wedge_on_timeout(&w, gt, 5 * HZ) {
+ intel_wedge_on_timeout(&w, gt, 60 * HZ) {
intel_display_prepare_reset(gt->i915);
intel_gt_reset(gt, engine_mask, reason);
@@ -1407,15 +1498,19 @@ out:
intel_runtime_pm_put(gt->uncore->rpm, wakeref);
}
-int intel_gt_reset_trylock(struct intel_gt *gt, int *srcu)
+static int _intel_gt_reset_lock(struct intel_gt *gt, int *srcu, bool retry)
{
might_lock(&gt->reset.backoff_srcu);
- might_sleep();
+ if (retry)
+ might_sleep();
rcu_read_lock();
while (test_bit(I915_RESET_BACKOFF, &gt->reset.flags)) {
rcu_read_unlock();
+ if (!retry)
+ return -EBUSY;
+
if (wait_event_interruptible(gt->reset.queue,
!test_bit(I915_RESET_BACKOFF,
&gt->reset.flags)))
@@ -1429,6 +1524,16 @@ int intel_gt_reset_trylock(struct intel_gt *gt, int *srcu)
return 0;
}
+int intel_gt_reset_trylock(struct intel_gt *gt, int *srcu)
+{
+ return _intel_gt_reset_lock(gt, srcu, false);
+}
+
+int intel_gt_reset_lock_interruptible(struct intel_gt *gt, int *srcu)
+{
+ return _intel_gt_reset_lock(gt, srcu, true);
+}
+
void intel_gt_reset_unlock(struct intel_gt *gt, int tag)
__releases(&gt->reset.backoff_srcu)
{
diff --git a/drivers/gpu/drm/i915/gt/intel_reset.h b/drivers/gpu/drm/i915/gt/intel_reset.h
index adc734e67387..25c975b6e8fc 100644
--- a/drivers/gpu/drm/i915/gt/intel_reset.h
+++ b/drivers/gpu/drm/i915/gt/intel_reset.h
@@ -39,6 +39,7 @@ int __intel_engine_reset_bh(struct intel_engine_cs *engine,
void __i915_request_reset(struct i915_request *rq, bool guilty);
int __must_check intel_gt_reset_trylock(struct intel_gt *gt, int *srcu);
+int __must_check intel_gt_reset_lock_interruptible(struct intel_gt *gt, int *srcu);
void intel_gt_reset_unlock(struct intel_gt *gt, int tag);
void intel_gt_set_wedged(struct intel_gt *gt);
diff --git a/drivers/gpu/drm/i915/gt/intel_reset_types.h b/drivers/gpu/drm/i915/gt/intel_reset_types.h
index 9312b29f5a97..80351f0a856c 100644
--- a/drivers/gpu/drm/i915/gt/intel_reset_types.h
+++ b/drivers/gpu/drm/i915/gt/intel_reset_types.h
@@ -51,7 +51,7 @@ struct intel_reset {
/**
* Waitqueue to signal when the reset has completed. Used by clients
- * that wait for dev_priv->mm.wedged to settle.
+ * that wait for i915->mm.wedged to settle.
*/
wait_queue_head_t queue;
diff --git a/drivers/gpu/drm/i915/gt/intel_ring.c b/drivers/gpu/drm/i915/gt/intel_ring.c
index 15ec64d881c4..fb99143be98e 100644
--- a/drivers/gpu/drm/i915/gt/intel_ring.c
+++ b/drivers/gpu/drm/i915/gt/intel_ring.c
@@ -53,7 +53,7 @@ int intel_ring_pin(struct intel_ring *ring, struct i915_gem_ww_ctx *ww)
if (unlikely(ret))
goto err_unpin;
- if (i915_vma_is_map_and_fenceable(vma)) {
+ if (i915_vma_is_map_and_fenceable(vma) && !HAS_LLC(vma->vm->i915)) {
addr = (void __force *)i915_vma_pin_iomap(vma);
} else {
int type = i915_coherent_map_type(vma->vm->i915, vma->obj, false);
@@ -98,7 +98,7 @@ void intel_ring_unpin(struct intel_ring *ring)
return;
i915_vma_unset_ggtt_write(vma);
- if (i915_vma_is_map_and_fenceable(vma))
+ if (i915_vma_is_map_and_fenceable(vma) && !HAS_LLC(vma->vm->i915))
i915_vma_unpin_iomap(vma);
else
i915_gem_object_unpin_map(vma->obj);
@@ -116,7 +116,7 @@ static struct i915_vma *create_ring_vma(struct i915_ggtt *ggtt, int size)
obj = i915_gem_object_create_lmem(i915, size, I915_BO_ALLOC_VOLATILE |
I915_BO_ALLOC_PM_VOLATILE);
- if (IS_ERR(obj) && i915_ggtt_has_aperture(ggtt))
+ if (IS_ERR(obj) && i915_ggtt_has_aperture(ggtt) && !HAS_LLC(i915))
obj = i915_gem_object_create_stolen(i915, size);
if (IS_ERR(obj))
obj = i915_gem_object_create_internal(i915, size);
diff --git a/drivers/gpu/drm/i915/gt/intel_ring_submission.c b/drivers/gpu/drm/i915/gt/intel_ring_submission.c
index d5d6f1fadcae..3fd795c3263f 100644
--- a/drivers/gpu/drm/i915/gt/intel_ring_submission.c
+++ b/drivers/gpu/drm/i915/gt/intel_ring_submission.c
@@ -12,7 +12,9 @@
#include "gen6_ppgtt.h"
#include "gen7_renderclear.h"
#include "i915_drv.h"
+#include "i915_irq.h"
#include "i915_mitigations.h"
+#include "i915_reg.h"
#include "intel_breadcrumbs.h"
#include "intel_context.h"
#include "intel_engine_regs.h"
@@ -895,7 +897,7 @@ static int clear_residuals(struct i915_request *rq)
}
ret = engine->emit_bb_start(rq,
- engine->wa_ctx.vma->node.start, 0,
+ i915_vma_offset(engine->wa_ctx.vma), 0,
0);
if (ret)
return ret;
@@ -1050,9 +1052,9 @@ static void gen6_bsd_set_default_submission(struct intel_engine_cs *engine)
static void ring_release(struct intel_engine_cs *engine)
{
- struct drm_i915_private *dev_priv = engine->i915;
+ struct drm_i915_private *i915 = engine->i915;
- drm_WARN_ON(&dev_priv->drm, GRAPHICS_VER(dev_priv) > 2 &&
+ drm_WARN_ON(&i915->drm, GRAPHICS_VER(i915) > 2 &&
(ENGINE_READ(engine, RING_MI_MODE) & MODE_IDLE) == 0);
intel_engine_cleanup_common(engine);
diff --git a/drivers/gpu/drm/i915/gt/intel_rps.c b/drivers/gpu/drm/i915/gt/intel_rps.c
index 6b86250c31ab..b2671ac59dc0 100644
--- a/drivers/gpu/drm/i915/gt/intel_rps.c
+++ b/drivers/gpu/drm/i915/gt/intel_rps.c
@@ -7,6 +7,7 @@
#include <drm/i915_drm.h>
+#include "display/intel_display.h"
#include "i915_drv.h"
#include "i915_irq.h"
#include "intel_breadcrumbs.h"
@@ -430,7 +431,8 @@ static int __gen5_rps_set(struct intel_rps *rps, u8 val)
rgvswctl = intel_uncore_read16(uncore, MEMSWCTL);
if (rgvswctl & MEMCTL_CMD_STS) {
- DRM_DEBUG("gpu busy, RCS change rejected\n");
+ drm_dbg(&rps_to_i915(rps)->drm,
+ "gpu busy, RCS change rejected\n");
return -EBUSY; /* still busy with another command */
}
@@ -625,9 +627,7 @@ static void gen5_rps_disable(struct intel_rps *rps)
rgvswctl = intel_uncore_read16(uncore, MEMSWCTL);
/* Ack interrupts, disable EFC interrupt */
- intel_uncore_write(uncore, MEMINTREN,
- intel_uncore_read(uncore, MEMINTREN) &
- ~MEMINT_EVAL_CHG_EN);
+ intel_uncore_rmw(uncore, MEMINTREN, MEMINT_EVAL_CHG_EN, 0);
intel_uncore_write(uncore, MEMINTRSTS, MEMINT_EVAL_CHG);
/* Go back to the starting frequency */
@@ -1016,9 +1016,15 @@ void intel_rps_boost(struct i915_request *rq)
if (rps_uses_slpc(rps)) {
slpc = rps_to_slpc(rps);
+ if (slpc->min_freq_softlimit >= slpc->boost_freq)
+ return;
+
/* Return if old value is non zero */
- if (!atomic_fetch_inc(&slpc->num_waiters))
+ if (!atomic_fetch_inc(&slpc->num_waiters)) {
+ GT_TRACE(rps_to_gt(rps), "boost fence:%llx:%llx\n",
+ rq->fence.context, rq->fence.seqno);
schedule_work(&slpc->boost_work);
+ }
return;
}
@@ -1085,15 +1091,25 @@ static u32 intel_rps_read_state_cap(struct intel_rps *rps)
return intel_uncore_read(uncore, GEN6_RP_STATE_CAP);
}
-/**
- * gen6_rps_get_freq_caps - Get freq caps exposed by HW
- * @rps: the intel_rps structure
- * @caps: returned freq caps
- *
- * Returned "caps" frequencies should be converted to MHz using
- * intel_gpu_freq()
- */
-void gen6_rps_get_freq_caps(struct intel_rps *rps, struct intel_rps_freq_caps *caps)
+static void
+mtl_get_freq_caps(struct intel_rps *rps, struct intel_rps_freq_caps *caps)
+{
+ struct intel_uncore *uncore = rps_to_uncore(rps);
+ u32 rp_state_cap = rps_to_gt(rps)->type == GT_MEDIA ?
+ intel_uncore_read(uncore, MTL_MEDIAP_STATE_CAP) :
+ intel_uncore_read(uncore, MTL_RP_STATE_CAP);
+ u32 rpe = rps_to_gt(rps)->type == GT_MEDIA ?
+ intel_uncore_read(uncore, MTL_MPE_FREQUENCY) :
+ intel_uncore_read(uncore, MTL_GT_RPE_FREQUENCY);
+
+ /* MTL values are in units of 16.67 MHz */
+ caps->rp0_freq = REG_FIELD_GET(MTL_RP0_CAP_MASK, rp_state_cap);
+ caps->min_freq = REG_FIELD_GET(MTL_RPN_CAP_MASK, rp_state_cap);
+ caps->rp1_freq = REG_FIELD_GET(MTL_RPE_MASK, rpe);
+}
+
+static void
+__gen6_rps_get_freq_caps(struct intel_rps *rps, struct intel_rps_freq_caps *caps)
{
struct drm_i915_private *i915 = rps_to_i915(rps);
u32 rp_state_cap;
@@ -1128,6 +1144,24 @@ void gen6_rps_get_freq_caps(struct intel_rps *rps, struct intel_rps_freq_caps *c
}
}
+/**
+ * gen6_rps_get_freq_caps - Get freq caps exposed by HW
+ * @rps: the intel_rps structure
+ * @caps: returned freq caps
+ *
+ * Returned "caps" frequencies should be converted to MHz using
+ * intel_gpu_freq()
+ */
+void gen6_rps_get_freq_caps(struct intel_rps *rps, struct intel_rps_freq_caps *caps)
+{
+ struct drm_i915_private *i915 = rps_to_i915(rps);
+
+ if (IS_METEORLAKE(i915))
+ return mtl_get_freq_caps(rps, caps);
+ else
+ return __gen6_rps_get_freq_caps(rps, caps);
+}
+
static void gen6_rps_init(struct intel_rps *rps)
{
struct drm_i915_private *i915 = rps_to_i915(rps);
@@ -1643,7 +1677,6 @@ static void vlv_init_gpll_ref_freq(struct intel_rps *rps)
static void vlv_rps_init(struct intel_rps *rps)
{
struct drm_i915_private *i915 = rps_to_i915(rps);
- u32 val;
vlv_iosf_sb_get(i915,
BIT(VLV_IOSF_SB_PUNIT) |
@@ -1652,21 +1685,6 @@ static void vlv_rps_init(struct intel_rps *rps)
vlv_init_gpll_ref_freq(rps);
- val = vlv_punit_read(i915, PUNIT_REG_GPU_FREQ_STS);
- switch ((val >> 6) & 3) {
- case 0:
- case 1:
- i915->mem_freq = 800;
- break;
- case 2:
- i915->mem_freq = 1066;
- break;
- case 3:
- i915->mem_freq = 1333;
- break;
- }
- drm_dbg(&i915->drm, "DDR speed: %d MHz\n", i915->mem_freq);
-
rps->max_freq = vlv_rps_max_freq(rps);
rps->rp0_freq = rps->max_freq;
drm_dbg(&i915->drm, "max GPU freq: %d MHz (%u)\n",
@@ -1693,7 +1711,6 @@ static void vlv_rps_init(struct intel_rps *rps)
static void chv_rps_init(struct intel_rps *rps)
{
struct drm_i915_private *i915 = rps_to_i915(rps);
- u32 val;
vlv_iosf_sb_get(i915,
BIT(VLV_IOSF_SB_PUNIT) |
@@ -1702,18 +1719,6 @@ static void chv_rps_init(struct intel_rps *rps)
vlv_init_gpll_ref_freq(rps);
- val = vlv_cck_read(i915, CCK_FUSE_REG);
-
- switch ((val >> 2) & 0x7) {
- case 3:
- i915->mem_freq = 2000;
- break;
- default:
- i915->mem_freq = 1600;
- break;
- }
- drm_dbg(&i915->drm, "DDR speed: %d MHz\n", i915->mem_freq);
-
rps->max_freq = chv_rps_max_freq(rps);
rps->rp0_freq = rps->max_freq;
drm_dbg(&i915->drm, "max GPU freq: %d MHz (%u)\n",
@@ -1921,7 +1926,8 @@ void gen6_rps_irq_handler(struct intel_rps *rps, u32 pm_iir)
intel_engine_cs_irq(gt->engine[VECS0], pm_iir >> 10);
if (pm_iir & PM_VEBOX_CS_ERROR_INTERRUPT)
- DRM_DEBUG("Command parser error, pm_iir 0x%08x\n", pm_iir);
+ drm_dbg(&rps_to_i915(rps)->drm,
+ "Command parser error, pm_iir 0x%08x\n", pm_iir);
}
void gen5_rps_irq_handler(struct intel_rps *rps)
@@ -2040,45 +2046,75 @@ void intel_rps_sanitize(struct intel_rps *rps)
rps_disable_interrupts(rps);
}
-u32 intel_rps_get_cagf(struct intel_rps *rps, u32 rpstat)
+u32 intel_rps_read_rpstat(struct intel_rps *rps)
+{
+ struct drm_i915_private *i915 = rps_to_i915(rps);
+ i915_reg_t rpstat;
+
+ rpstat = (GRAPHICS_VER(i915) >= 12) ? GEN12_RPSTAT1 : GEN6_RPSTAT1;
+
+ return intel_uncore_read(rps_to_gt(rps)->uncore, rpstat);
+}
+
+static u32 intel_rps_get_cagf(struct intel_rps *rps, u32 rpstat)
{
struct drm_i915_private *i915 = rps_to_i915(rps);
u32 cagf;
- if (IS_VALLEYVIEW(i915) || IS_CHERRYVIEW(i915))
- cagf = (rpstat >> 8) & 0xff;
+ if (GRAPHICS_VER_FULL(i915) >= IP_VER(12, 70))
+ cagf = REG_FIELD_GET(MTL_CAGF_MASK, rpstat);
+ else if (GRAPHICS_VER(i915) >= 12)
+ cagf = REG_FIELD_GET(GEN12_CAGF_MASK, rpstat);
+ else if (IS_VALLEYVIEW(i915) || IS_CHERRYVIEW(i915))
+ cagf = REG_FIELD_GET(RPE_MASK, rpstat);
else if (GRAPHICS_VER(i915) >= 9)
- cagf = (rpstat & GEN9_CAGF_MASK) >> GEN9_CAGF_SHIFT;
+ cagf = REG_FIELD_GET(GEN9_CAGF_MASK, rpstat);
else if (IS_HASWELL(i915) || IS_BROADWELL(i915))
- cagf = (rpstat & HSW_CAGF_MASK) >> HSW_CAGF_SHIFT;
+ cagf = REG_FIELD_GET(HSW_CAGF_MASK, rpstat);
else if (GRAPHICS_VER(i915) >= 6)
- cagf = (rpstat & GEN6_CAGF_MASK) >> GEN6_CAGF_SHIFT;
+ cagf = REG_FIELD_GET(GEN6_CAGF_MASK, rpstat);
else
- cagf = gen5_invert_freq(rps, (rpstat & MEMSTAT_PSTATE_MASK) >>
- MEMSTAT_PSTATE_SHIFT);
+ cagf = gen5_invert_freq(rps, REG_FIELD_GET(MEMSTAT_PSTATE_MASK, rpstat));
return cagf;
}
-static u32 read_cagf(struct intel_rps *rps)
+static u32 __read_cagf(struct intel_rps *rps, bool take_fw)
{
struct drm_i915_private *i915 = rps_to_i915(rps);
struct intel_uncore *uncore = rps_to_uncore(rps);
+ i915_reg_t r = INVALID_MMIO_REG;
u32 freq;
- if (IS_VALLEYVIEW(i915) || IS_CHERRYVIEW(i915)) {
+ /*
+ * For Gen12+ reading freq from HW does not need a forcewake and
+ * registers will return 0 freq when GT is in RC6
+ */
+ if (GRAPHICS_VER_FULL(i915) >= IP_VER(12, 70)) {
+ r = MTL_MIRROR_TARGET_WP1;
+ } else if (GRAPHICS_VER(i915) >= 12) {
+ r = GEN12_RPSTAT1;
+ } else if (IS_VALLEYVIEW(i915) || IS_CHERRYVIEW(i915)) {
vlv_punit_get(i915);
freq = vlv_punit_read(i915, PUNIT_REG_GPU_FREQ_STS);
vlv_punit_put(i915);
} else if (GRAPHICS_VER(i915) >= 6) {
- freq = intel_uncore_read(uncore, GEN6_RPSTAT1);
+ r = GEN6_RPSTAT1;
} else {
- freq = intel_uncore_read(uncore, MEMSTAT_ILK);
+ r = MEMSTAT_ILK;
}
+ if (i915_mmio_reg_valid(r))
+ freq = take_fw ? intel_uncore_read(uncore, r) : intel_uncore_read_fw(uncore, r);
+
return intel_rps_get_cagf(rps, freq);
}
+static u32 read_cagf(struct intel_rps *rps)
+{
+ return __read_cagf(rps, true);
+}
+
u32 intel_rps_read_actual_frequency(struct intel_rps *rps)
{
struct intel_runtime_pm *rpm = rps_to_uncore(rps)->rpm;
@@ -2091,7 +2127,12 @@ u32 intel_rps_read_actual_frequency(struct intel_rps *rps)
return freq;
}
-u32 intel_rps_read_punit_req(struct intel_rps *rps)
+u32 intel_rps_read_actual_frequency_fw(struct intel_rps *rps)
+{
+ return intel_gpu_freq(rps, __read_cagf(rps, false));
+}
+
+static u32 intel_rps_read_punit_req(struct intel_rps *rps)
{
struct intel_uncore *uncore = rps_to_uncore(rps);
struct intel_runtime_pm *rpm = rps_to_uncore(rps)->rpm;
@@ -2191,6 +2232,213 @@ u32 intel_rps_get_rpn_frequency(struct intel_rps *rps)
return intel_gpu_freq(rps, rps->min_freq);
}
+static void rps_frequency_dump(struct intel_rps *rps, struct drm_printer *p)
+{
+ struct intel_gt *gt = rps_to_gt(rps);
+ struct drm_i915_private *i915 = gt->i915;
+ struct intel_uncore *uncore = gt->uncore;
+ struct intel_rps_freq_caps caps;
+ u32 rp_state_limits;
+ u32 gt_perf_status;
+ u32 rpmodectl, rpinclimit, rpdeclimit;
+ u32 rpstat, cagf, reqf;
+ u32 rpcurupei, rpcurup, rpprevup;
+ u32 rpcurdownei, rpcurdown, rpprevdown;
+ u32 rpupei, rpupt, rpdownei, rpdownt;
+ u32 pm_ier, pm_imr, pm_isr, pm_iir, pm_mask;
+
+ rp_state_limits = intel_uncore_read(uncore, GEN6_RP_STATE_LIMITS);
+ gen6_rps_get_freq_caps(rps, &caps);
+ if (IS_GEN9_LP(i915))
+ gt_perf_status = intel_uncore_read(uncore, BXT_GT_PERF_STATUS);
+ else
+ gt_perf_status = intel_uncore_read(uncore, GEN6_GT_PERF_STATUS);
+
+ /* RPSTAT1 is in the GT power well */
+ intel_uncore_forcewake_get(uncore, FORCEWAKE_ALL);
+
+ reqf = intel_uncore_read(uncore, GEN6_RPNSWREQ);
+ if (GRAPHICS_VER(i915) >= 9) {
+ reqf >>= 23;
+ } else {
+ reqf &= ~GEN6_TURBO_DISABLE;
+ if (IS_HASWELL(i915) || IS_BROADWELL(i915))
+ reqf >>= 24;
+ else
+ reqf >>= 25;
+ }
+ reqf = intel_gpu_freq(rps, reqf);
+
+ rpmodectl = intel_uncore_read(uncore, GEN6_RP_CONTROL);
+ rpinclimit = intel_uncore_read(uncore, GEN6_RP_UP_THRESHOLD);
+ rpdeclimit = intel_uncore_read(uncore, GEN6_RP_DOWN_THRESHOLD);
+
+ rpstat = intel_rps_read_rpstat(rps);
+ rpcurupei = intel_uncore_read(uncore, GEN6_RP_CUR_UP_EI) & GEN6_CURICONT_MASK;
+ rpcurup = intel_uncore_read(uncore, GEN6_RP_CUR_UP) & GEN6_CURBSYTAVG_MASK;
+ rpprevup = intel_uncore_read(uncore, GEN6_RP_PREV_UP) & GEN6_CURBSYTAVG_MASK;
+ rpcurdownei = intel_uncore_read(uncore, GEN6_RP_CUR_DOWN_EI) & GEN6_CURIAVG_MASK;
+ rpcurdown = intel_uncore_read(uncore, GEN6_RP_CUR_DOWN) & GEN6_CURBSYTAVG_MASK;
+ rpprevdown = intel_uncore_read(uncore, GEN6_RP_PREV_DOWN) & GEN6_CURBSYTAVG_MASK;
+
+ rpupei = intel_uncore_read(uncore, GEN6_RP_UP_EI);
+ rpupt = intel_uncore_read(uncore, GEN6_RP_UP_THRESHOLD);
+
+ rpdownei = intel_uncore_read(uncore, GEN6_RP_DOWN_EI);
+ rpdownt = intel_uncore_read(uncore, GEN6_RP_DOWN_THRESHOLD);
+
+ cagf = intel_rps_read_actual_frequency(rps);
+
+ intel_uncore_forcewake_put(uncore, FORCEWAKE_ALL);
+
+ if (GRAPHICS_VER(i915) >= 11) {
+ pm_ier = intel_uncore_read(uncore, GEN11_GPM_WGBOXPERF_INTR_ENABLE);
+ pm_imr = intel_uncore_read(uncore, GEN11_GPM_WGBOXPERF_INTR_MASK);
+ /*
+ * The equivalent to the PM ISR & IIR cannot be read
+ * without affecting the current state of the system
+ */
+ pm_isr = 0;
+ pm_iir = 0;
+ } else if (GRAPHICS_VER(i915) >= 8) {
+ pm_ier = intel_uncore_read(uncore, GEN8_GT_IER(2));
+ pm_imr = intel_uncore_read(uncore, GEN8_GT_IMR(2));
+ pm_isr = intel_uncore_read(uncore, GEN8_GT_ISR(2));
+ pm_iir = intel_uncore_read(uncore, GEN8_GT_IIR(2));
+ } else {
+ pm_ier = intel_uncore_read(uncore, GEN6_PMIER);
+ pm_imr = intel_uncore_read(uncore, GEN6_PMIMR);
+ pm_isr = intel_uncore_read(uncore, GEN6_PMISR);
+ pm_iir = intel_uncore_read(uncore, GEN6_PMIIR);
+ }
+ pm_mask = intel_uncore_read(uncore, GEN6_PMINTRMSK);
+
+ drm_printf(p, "Video Turbo Mode: %s\n",
+ str_yes_no(rpmodectl & GEN6_RP_MEDIA_TURBO));
+ drm_printf(p, "HW control enabled: %s\n",
+ str_yes_no(rpmodectl & GEN6_RP_ENABLE));
+ drm_printf(p, "SW control enabled: %s\n",
+ str_yes_no((rpmodectl & GEN6_RP_MEDIA_MODE_MASK) == GEN6_RP_MEDIA_SW_MODE));
+
+ drm_printf(p, "PM IER=0x%08x IMR=0x%08x, MASK=0x%08x\n",
+ pm_ier, pm_imr, pm_mask);
+ if (GRAPHICS_VER(i915) <= 10)
+ drm_printf(p, "PM ISR=0x%08x IIR=0x%08x\n",
+ pm_isr, pm_iir);
+ drm_printf(p, "pm_intrmsk_mbz: 0x%08x\n",
+ rps->pm_intrmsk_mbz);
+ drm_printf(p, "GT_PERF_STATUS: 0x%08x\n", gt_perf_status);
+ drm_printf(p, "Render p-state ratio: %d\n",
+ (gt_perf_status & (GRAPHICS_VER(i915) >= 9 ? 0x1ff00 : 0xff00)) >> 8);
+ drm_printf(p, "Render p-state VID: %d\n",
+ gt_perf_status & 0xff);
+ drm_printf(p, "Render p-state limit: %d\n",
+ rp_state_limits & 0xff);
+ drm_printf(p, "RPSTAT1: 0x%08x\n", rpstat);
+ drm_printf(p, "RPMODECTL: 0x%08x\n", rpmodectl);
+ drm_printf(p, "RPINCLIMIT: 0x%08x\n", rpinclimit);
+ drm_printf(p, "RPDECLIMIT: 0x%08x\n", rpdeclimit);
+ drm_printf(p, "RPNSWREQ: %dMHz\n", reqf);
+ drm_printf(p, "CAGF: %dMHz\n", cagf);
+ drm_printf(p, "RP CUR UP EI: %d (%lldns)\n",
+ rpcurupei,
+ intel_gt_pm_interval_to_ns(gt, rpcurupei));
+ drm_printf(p, "RP CUR UP: %d (%lldns)\n",
+ rpcurup, intel_gt_pm_interval_to_ns(gt, rpcurup));
+ drm_printf(p, "RP PREV UP: %d (%lldns)\n",
+ rpprevup, intel_gt_pm_interval_to_ns(gt, rpprevup));
+ drm_printf(p, "Up threshold: %d%%\n",
+ rps->power.up_threshold);
+ drm_printf(p, "RP UP EI: %d (%lldns)\n",
+ rpupei, intel_gt_pm_interval_to_ns(gt, rpupei));
+ drm_printf(p, "RP UP THRESHOLD: %d (%lldns)\n",
+ rpupt, intel_gt_pm_interval_to_ns(gt, rpupt));
+
+ drm_printf(p, "RP CUR DOWN EI: %d (%lldns)\n",
+ rpcurdownei,
+ intel_gt_pm_interval_to_ns(gt, rpcurdownei));
+ drm_printf(p, "RP CUR DOWN: %d (%lldns)\n",
+ rpcurdown,
+ intel_gt_pm_interval_to_ns(gt, rpcurdown));
+ drm_printf(p, "RP PREV DOWN: %d (%lldns)\n",
+ rpprevdown,
+ intel_gt_pm_interval_to_ns(gt, rpprevdown));
+ drm_printf(p, "Down threshold: %d%%\n",
+ rps->power.down_threshold);
+ drm_printf(p, "RP DOWN EI: %d (%lldns)\n",
+ rpdownei, intel_gt_pm_interval_to_ns(gt, rpdownei));
+ drm_printf(p, "RP DOWN THRESHOLD: %d (%lldns)\n",
+ rpdownt, intel_gt_pm_interval_to_ns(gt, rpdownt));
+
+ drm_printf(p, "Lowest (RPN) frequency: %dMHz\n",
+ intel_gpu_freq(rps, caps.min_freq));
+ drm_printf(p, "Nominal (RP1) frequency: %dMHz\n",
+ intel_gpu_freq(rps, caps.rp1_freq));
+ drm_printf(p, "Max non-overclocked (RP0) frequency: %dMHz\n",
+ intel_gpu_freq(rps, caps.rp0_freq));
+ drm_printf(p, "Max overclocked frequency: %dMHz\n",
+ intel_gpu_freq(rps, rps->max_freq));
+
+ drm_printf(p, "Current freq: %d MHz\n",
+ intel_gpu_freq(rps, rps->cur_freq));
+ drm_printf(p, "Actual freq: %d MHz\n", cagf);
+ drm_printf(p, "Idle freq: %d MHz\n",
+ intel_gpu_freq(rps, rps->idle_freq));
+ drm_printf(p, "Min freq: %d MHz\n",
+ intel_gpu_freq(rps, rps->min_freq));
+ drm_printf(p, "Boost freq: %d MHz\n",
+ intel_gpu_freq(rps, rps->boost_freq));
+ drm_printf(p, "Max freq: %d MHz\n",
+ intel_gpu_freq(rps, rps->max_freq));
+ drm_printf(p,
+ "efficient (RPe) frequency: %d MHz\n",
+ intel_gpu_freq(rps, rps->efficient_freq));
+}
+
+static void slpc_frequency_dump(struct intel_rps *rps, struct drm_printer *p)
+{
+ struct intel_gt *gt = rps_to_gt(rps);
+ struct intel_uncore *uncore = gt->uncore;
+ struct intel_rps_freq_caps caps;
+ u32 pm_mask;
+
+ gen6_rps_get_freq_caps(rps, &caps);
+ pm_mask = intel_uncore_read(uncore, GEN6_PMINTRMSK);
+
+ drm_printf(p, "PM MASK=0x%08x\n", pm_mask);
+ drm_printf(p, "pm_intrmsk_mbz: 0x%08x\n",
+ rps->pm_intrmsk_mbz);
+ drm_printf(p, "RPSTAT1: 0x%08x\n", intel_rps_read_rpstat(rps));
+ drm_printf(p, "RPNSWREQ: %dMHz\n", intel_rps_get_requested_frequency(rps));
+ drm_printf(p, "Lowest (RPN) frequency: %dMHz\n",
+ intel_gpu_freq(rps, caps.min_freq));
+ drm_printf(p, "Nominal (RP1) frequency: %dMHz\n",
+ intel_gpu_freq(rps, caps.rp1_freq));
+ drm_printf(p, "Max non-overclocked (RP0) frequency: %dMHz\n",
+ intel_gpu_freq(rps, caps.rp0_freq));
+ drm_printf(p, "Current freq: %d MHz\n",
+ intel_rps_get_requested_frequency(rps));
+ drm_printf(p, "Actual freq: %d MHz\n",
+ intel_rps_read_actual_frequency(rps));
+ drm_printf(p, "Min freq: %d MHz\n",
+ intel_rps_get_min_frequency(rps));
+ drm_printf(p, "Boost freq: %d MHz\n",
+ intel_rps_get_boost_frequency(rps));
+ drm_printf(p, "Max freq: %d MHz\n",
+ intel_rps_get_max_frequency(rps));
+ drm_printf(p,
+ "efficient (RPe) frequency: %d MHz\n",
+ intel_gpu_freq(rps, caps.rp1_freq));
+}
+
+void gen6_rps_frequency_dump(struct intel_rps *rps, struct drm_printer *p)
+{
+ if (rps_uses_slpc(rps))
+ return slpc_frequency_dump(rps, p);
+ else
+ return rps_frequency_dump(rps, p);
+}
+
static int set_max_freq(struct intel_rps *rps, u32 val)
{
struct drm_i915_private *i915 = rps_to_i915(rps);
@@ -2398,7 +2646,7 @@ bool rps_read_mask_mmio(struct intel_rps *rps,
static struct drm_i915_private __rcu *ips_mchdev;
-/**
+/*
* Tells the intel_ips driver that the i915 driver is now loaded, if
* IPS got loaded first.
*
diff --git a/drivers/gpu/drm/i915/gt/intel_rps.h b/drivers/gpu/drm/i915/gt/intel_rps.h
index 4509dfdc52e0..a3fa987aa91f 100644
--- a/drivers/gpu/drm/i915/gt/intel_rps.h
+++ b/drivers/gpu/drm/i915/gt/intel_rps.h
@@ -10,6 +10,10 @@
#include "i915_reg_defs.h"
struct i915_request;
+struct drm_printer;
+
+#define GT_FREQUENCY_MULTIPLIER 50
+#define GEN9_FREQ_SCALER 3
void intel_rps_init_early(struct intel_rps *rps);
void intel_rps_init(struct intel_rps *rps);
@@ -33,8 +37,8 @@ void intel_rps_mark_interactive(struct intel_rps *rps, bool interactive);
int intel_gpu_freq(struct intel_rps *rps, int val);
int intel_freq_opcode(struct intel_rps *rps, int val);
-u32 intel_rps_get_cagf(struct intel_rps *rps, u32 rpstat1);
u32 intel_rps_read_actual_frequency(struct intel_rps *rps);
+u32 intel_rps_read_actual_frequency_fw(struct intel_rps *rps);
u32 intel_rps_get_requested_frequency(struct intel_rps *rps);
u32 intel_rps_get_min_frequency(struct intel_rps *rps);
u32 intel_rps_get_min_raw_freq(struct intel_rps *rps);
@@ -45,8 +49,8 @@ int intel_rps_set_max_frequency(struct intel_rps *rps, u32 val);
u32 intel_rps_get_rp0_frequency(struct intel_rps *rps);
u32 intel_rps_get_rp1_frequency(struct intel_rps *rps);
u32 intel_rps_get_rpn_frequency(struct intel_rps *rps);
-u32 intel_rps_read_punit_req(struct intel_rps *rps);
u32 intel_rps_read_punit_req_frequency(struct intel_rps *rps);
+u32 intel_rps_read_rpstat(struct intel_rps *rps);
void gen6_rps_get_freq_caps(struct intel_rps *rps, struct intel_rps_freq_caps *caps);
void intel_rps_raise_unslice(struct intel_rps *rps);
void intel_rps_lower_unslice(struct intel_rps *rps);
@@ -54,6 +58,8 @@ void intel_rps_lower_unslice(struct intel_rps *rps);
u32 intel_rps_read_throttle_reason(struct intel_rps *rps);
bool rps_read_mask_mmio(struct intel_rps *rps, i915_reg_t reg32, u32 mask);
+void gen6_rps_frequency_dump(struct intel_rps *rps, struct drm_printer *p);
+
void gen5_rps_irq_handler(struct intel_rps *rps);
void gen6_rps_irq_handler(struct intel_rps *rps, u32 pm_iir);
void gen11_rps_irq_handler(struct intel_rps *rps, u32 pm_iir);
diff --git a/drivers/gpu/drm/i915/gt/intel_rps_types.h b/drivers/gpu/drm/i915/gt/intel_rps_types.h
index 9173ec75f2b8..6507fa3f6d1e 100644
--- a/drivers/gpu/drm/i915/gt/intel_rps_types.h
+++ b/drivers/gpu/drm/i915/gt/intel_rps_types.h
@@ -57,7 +57,7 @@ struct intel_rps {
/*
* work, interrupts_enabled and pm_iir are protected by
- * dev_priv->irq_lock
+ * i915->irq_lock
*/
struct timer_list timer;
struct work_struct work;
diff --git a/drivers/gpu/drm/i915/gt/intel_sseu.c b/drivers/gpu/drm/i915/gt/intel_sseu.c
index 66f21c735d54..1141f875f5bd 100644
--- a/drivers/gpu/drm/i915/gt/intel_sseu.c
+++ b/drivers/gpu/drm/i915/gt/intel_sseu.c
@@ -6,6 +6,7 @@
#include <linux/string_helpers.h>
#include "i915_drv.h"
+#include "i915_perf_types.h"
#include "intel_engine_regs.h"
#include "intel_gt_regs.h"
#include "intel_sseu.h"
@@ -677,8 +678,8 @@ u32 intel_sseu_make_rpcs(struct intel_gt *gt,
* If i915/perf is active, we want a stable powergating configuration
* on the system. Use the configuration pinned by i915/perf.
*/
- if (i915->perf.exclusive_stream)
- req_sseu = &i915->perf.sseu;
+ if (gt->perf.group && gt->perf.group[PERF_GROUP_OAG].exclusive_stream)
+ req_sseu = &gt->perf.sseu;
slices = hweight8(req_sseu->slice_mask);
subslices = hweight8(req_sseu->subslice_mask);
diff --git a/drivers/gpu/drm/i915/gt/intel_sseu.h b/drivers/gpu/drm/i915/gt/intel_sseu.h
index aa87d3832d60..d7e8c374f153 100644
--- a/drivers/gpu/drm/i915/gt/intel_sseu.h
+++ b/drivers/gpu/drm/i915/gt/intel_sseu.h
@@ -27,7 +27,7 @@ struct drm_printer;
* is only relevant to pre-Xe_HP platforms (Xe_HP and beyond use the
* I915_MAX_SS_FUSE_BITS value below).
*/
-#define GEN_MAX_SS_PER_HSW_SLICE 6
+#define GEN_MAX_SS_PER_HSW_SLICE 8
/*
* Maximum number of 32-bit registers used by hardware to express the
diff --git a/drivers/gpu/drm/i915/intel_wopcm.c b/drivers/gpu/drm/i915/gt/intel_wopcm.c
index 322fb9eeb880..7ebbcc191c2d 100644
--- a/drivers/gpu/drm/i915/intel_wopcm.c
+++ b/drivers/gpu/drm/i915/gt/intel_wopcm.c
@@ -64,9 +64,9 @@
#define GEN9_GUC_FW_RESERVED SZ_128K
#define GEN9_GUC_WOPCM_OFFSET (GUC_WOPCM_RESERVED + GEN9_GUC_FW_RESERVED)
-static inline struct drm_i915_private *wopcm_to_i915(struct intel_wopcm *wopcm)
+static inline struct intel_gt *wopcm_to_gt(struct intel_wopcm *wopcm)
{
- return container_of(wopcm, struct drm_i915_private, wopcm);
+ return container_of(wopcm, struct intel_gt, wopcm);
}
/**
@@ -77,7 +77,8 @@ static inline struct drm_i915_private *wopcm_to_i915(struct intel_wopcm *wopcm)
*/
void intel_wopcm_init_early(struct intel_wopcm *wopcm)
{
- struct drm_i915_private *i915 = wopcm_to_i915(wopcm);
+ struct intel_gt *gt = wopcm_to_gt(wopcm);
+ struct drm_i915_private *i915 = gt->i915;
if (!HAS_GT_UC(i915))
return;
@@ -157,10 +158,11 @@ static bool check_hw_restrictions(struct drm_i915_private *i915,
return true;
}
-static bool __check_layout(struct drm_i915_private *i915, u32 wopcm_size,
+static bool __check_layout(struct intel_gt *gt, u32 wopcm_size,
u32 guc_wopcm_base, u32 guc_wopcm_size,
u32 guc_fw_size, u32 huc_fw_size)
{
+ struct drm_i915_private *i915 = gt->i915;
const u32 ctx_rsvd = context_reserved_size(i915);
u32 size;
@@ -181,12 +183,14 @@ static bool __check_layout(struct drm_i915_private *i915, u32 wopcm_size,
return false;
}
- size = huc_fw_size + WOPCM_RESERVED_SIZE;
- if (unlikely(guc_wopcm_base < size)) {
- drm_err(&i915->drm, "WOPCM: no space for %s: %uK < %uK\n",
- intel_uc_fw_type_repr(INTEL_UC_FW_TYPE_HUC),
- guc_wopcm_base / SZ_1K, size / SZ_1K);
- return false;
+ if (intel_uc_supports_huc(&gt->uc)) {
+ size = huc_fw_size + WOPCM_RESERVED_SIZE;
+ if (unlikely(guc_wopcm_base < size)) {
+ drm_err(&i915->drm, "WOPCM: no space for %s: %uK < %uK\n",
+ intel_uc_fw_type_repr(INTEL_UC_FW_TYPE_HUC),
+ guc_wopcm_base / SZ_1K, size / SZ_1K);
+ return false;
+ }
}
return check_hw_restrictions(i915, guc_wopcm_base, guc_wopcm_size,
@@ -228,8 +232,8 @@ static bool __wopcm_regs_writable(struct intel_uncore *uncore)
*/
void intel_wopcm_init(struct intel_wopcm *wopcm)
{
- struct drm_i915_private *i915 = wopcm_to_i915(wopcm);
- struct intel_gt *gt = to_gt(i915);
+ struct intel_gt *gt = wopcm_to_gt(wopcm);
+ struct drm_i915_private *i915 = gt->i915;
u32 guc_fw_size = intel_uc_fw_get_upload_size(&gt->uc.guc.fw);
u32 huc_fw_size = intel_uc_fw_get_upload_size(&gt->uc.huc.fw);
u32 ctx_rsvd = context_reserved_size(i915);
@@ -275,6 +279,19 @@ void intel_wopcm_init(struct intel_wopcm *wopcm)
}
/*
+ * On platforms with a media GT, the WOPCM is partitioned between the
+ * two GTs, so we would have to take that into account when doing the
+ * math below. There is also a new section reserved for the GSC context
+ * that would have to be factored in. However, all platforms with a
+ * media GT also have GuC depriv enabled, so the WOPCM regs are
+ * pre-locked and therefore we don't have to do the math ourselves.
+ */
+ if (unlikely(i915->media_gt)) {
+ drm_err(&i915->drm, "Unlocked WOPCM regs with media GT\n");
+ return;
+ }
+
+ /*
* Aligned value of guc_wopcm_base will determine available WOPCM space
* for HuC firmware and mandatory reserved area.
*/
@@ -295,7 +312,7 @@ void intel_wopcm_init(struct intel_wopcm *wopcm)
guc_wopcm_base / SZ_1K, guc_wopcm_size / SZ_1K);
check:
- if (__check_layout(i915, wopcm_size, guc_wopcm_base, guc_wopcm_size,
+ if (__check_layout(gt, wopcm_size, guc_wopcm_base, guc_wopcm_size,
guc_fw_size, huc_fw_size)) {
wopcm->guc.base = guc_wopcm_base;
wopcm->guc.size = guc_wopcm_size;
diff --git a/drivers/gpu/drm/i915/intel_wopcm.h b/drivers/gpu/drm/i915/gt/intel_wopcm.h
index 17d6aa86008a..17d6aa86008a 100644
--- a/drivers/gpu/drm/i915/intel_wopcm.h
+++ b/drivers/gpu/drm/i915/gt/intel_wopcm.h
diff --git a/drivers/gpu/drm/i915/gt/intel_workarounds.c b/drivers/gpu/drm/i915/gt/intel_workarounds.c
index a821e3d405db..b925ef47304b 100644
--- a/drivers/gpu/drm/i915/gt/intel_workarounds.c
+++ b/drivers/gpu/drm/i915/gt/intel_workarounds.c
@@ -4,6 +4,7 @@
*/
#include "i915_drv.h"
+#include "i915_reg.h"
#include "intel_context.h"
#include "intel_engine_pm.h"
#include "intel_engine_regs.h"
@@ -17,46 +18,84 @@
/**
* DOC: Hardware workarounds
*
- * This file is intended as a central place to implement most [1]_ of the
- * required workarounds for hardware to work as originally intended. They fall
- * in five basic categories depending on how/when they are applied:
+ * Hardware workarounds are register programming documented to be executed in
+ * the driver that fall outside of the normal programming sequences for a
+ * platform. There are some basic categories of workarounds, depending on
+ * how/when they are applied:
*
- * - Workarounds that touch registers that are saved/restored to/from the HW
- * context image. The list is emitted (via Load Register Immediate commands)
- * everytime a new context is created.
- * - GT workarounds. The list of these WAs is applied whenever these registers
- * revert to default values (on GPU reset, suspend/resume [2]_, etc..).
- * - Display workarounds. The list is applied during display clock-gating
- * initialization.
- * - Workarounds that whitelist a privileged register, so that UMDs can manage
- * them directly. This is just a special case of a MMMIO workaround (as we
- * write the list of these to/be-whitelisted registers to some special HW
- * registers).
- * - Workaround batchbuffers, that get executed automatically by the hardware
- * on every HW context restore.
+ * - Context workarounds: workarounds that touch registers that are
+ * saved/restored to/from the HW context image. The list is emitted (via Load
+ * Register Immediate commands) once when initializing the device and saved in
+ * the default context. That default context is then used on every context
+ * creation to have a "primed golden context", i.e. a context image that
+ * already contains the changes needed to all the registers.
*
- * .. [1] Please notice that there are other WAs that, due to their nature,
- * cannot be applied from a central place. Those are peppered around the rest
- * of the code, as needed.
+ * Context workarounds should be implemented in the \*_ctx_workarounds_init()
+ * variants respective to the targeted platforms.
*
- * .. [2] Technically, some registers are powercontext saved & restored, so they
- * survive a suspend/resume. In practice, writing them again is not too
- * costly and simplifies things. We can revisit this in the future.
+ * - Engine workarounds: the list of these WAs is applied whenever the specific
+ * engine is reset. It's also possible that a set of engine classes share a
+ * common power domain and they are reset together. This happens on some
+ * platforms with render and compute engines. In this case (at least) one of
+ * them need to keeep the workaround programming: the approach taken in the
+ * driver is to tie those workarounds to the first compute/render engine that
+ * is registered. When executing with GuC submission, engine resets are
+ * outside of kernel driver control, hence the list of registers involved in
+ * written once, on engine initialization, and then passed to GuC, that
+ * saves/restores their values before/after the reset takes place. See
+ * ``drivers/gpu/drm/i915/gt/uc/intel_guc_ads.c`` for reference.
+ *
+ * Workarounds for registers specific to RCS and CCS should be implemented in
+ * rcs_engine_wa_init() and ccs_engine_wa_init(), respectively; those for
+ * registers belonging to BCS, VCS or VECS should be implemented in
+ * xcs_engine_wa_init(). Workarounds for registers not belonging to a specific
+ * engine's MMIO range but that are part of of the common RCS/CCS reset domain
+ * should be implemented in general_render_compute_wa_init().
+ *
+ * - GT workarounds: the list of these WAs is applied whenever these registers
+ * revert to their default values: on GPU reset, suspend/resume [1]_, etc.
+ *
+ * GT workarounds should be implemented in the \*_gt_workarounds_init()
+ * variants respective to the targeted platforms.
+ *
+ * - Register whitelist: some workarounds need to be implemented in userspace,
+ * but need to touch privileged registers. The whitelist in the kernel
+ * instructs the hardware to allow the access to happen. From the kernel side,
+ * this is just a special case of a MMIO workaround (as we write the list of
+ * these to/be-whitelisted registers to some special HW registers).
+ *
+ * Register whitelisting should be done in the \*_whitelist_build() variants
+ * respective to the targeted platforms.
*
- * Layout
- * ~~~~~~
+ * - Workaround batchbuffers: buffers that get executed automatically by the
+ * hardware on every HW context restore. These buffers are created and
+ * programmed in the default context so the hardware always go through those
+ * programming sequences when switching contexts. The support for workaround
+ * batchbuffers is enabled these hardware mechanisms:
*
- * Keep things in this file ordered by WA type, as per the above (context, GT,
- * display, register whitelist, batchbuffer). Then, inside each type, keep the
- * following order:
+ * #. INDIRECT_CTX: A batchbuffer and an offset are provided in the default
+ * context, pointing the hardware to jump to that location when that offset
+ * is reached in the context restore. Workaround batchbuffer in the driver
+ * currently uses this mechanism for all platforms.
*
- * - Infrastructure functions and macros
- * - WAs per platform in standard gen/chrono order
- * - Public functions to init or apply the given workaround type.
+ * #. BB_PER_CTX_PTR: A batchbuffer is provided in the default context,
+ * pointing the hardware to a buffer to continue executing after the
+ * engine registers are restored in a context restore sequence. This is
+ * currently not used in the driver.
+ *
+ * - Other: There are WAs that, due to their nature, cannot be applied from a
+ * central place. Those are peppered around the rest of the code, as needed.
+ * Workarounds related to the display IP are the main example.
+ *
+ * .. [1] Technically, some registers are powercontext saved & restored, so they
+ * survive a suspend/resume. In practice, writing them again is not too
+ * costly and simplifies things, so it's the approach taken in the driver.
*/
-static void wa_init_start(struct i915_wa_list *wal, const char *name, const char *engine_name)
+static void wa_init_start(struct i915_wa_list *wal, struct intel_gt *gt,
+ const char *name, const char *engine_name)
{
+ wal->gt = gt;
wal->name = name;
wal->engine_name = engine_name;
}
@@ -80,13 +119,14 @@ static void wa_init_finish(struct i915_wa_list *wal)
if (!wal->count)
return;
- DRM_DEBUG_DRIVER("Initialized %u %s workarounds on %s\n",
- wal->wa_count, wal->name, wal->engine_name);
+ drm_dbg(&wal->gt->i915->drm, "Initialized %u %s workarounds on %s\n",
+ wal->wa_count, wal->name, wal->engine_name);
}
static void _wa_add(struct i915_wa_list *wal, const struct i915_wa *wa)
{
unsigned int addr = i915_mmio_reg_offset(wa->reg);
+ struct drm_i915_private *i915 = wal->gt->i915;
unsigned int start = 0, end = wal->count;
const unsigned int grow = WA_LIST_CHUNK;
struct i915_wa *wa_;
@@ -99,7 +139,7 @@ static void _wa_add(struct i915_wa_list *wal, const struct i915_wa *wa)
list = kmalloc_array(ALIGN(wal->count + 1, grow), sizeof(*wa),
GFP_KERNEL);
if (!list) {
- DRM_ERROR("No space for workaround init!\n");
+ drm_err(&i915->drm, "No space for workaround init!\n");
return;
}
@@ -122,9 +162,10 @@ static void _wa_add(struct i915_wa_list *wal, const struct i915_wa *wa)
wa_ = &wal->list[mid];
if ((wa->clr | wa_->clr) && !(wa->clr & ~wa_->clr)) {
- DRM_ERROR("Discarding overwritten w/a for reg %04x (clear: %08x, set: %08x)\n",
- i915_mmio_reg_offset(wa_->reg),
- wa_->clr, wa_->set);
+ drm_err(&i915->drm,
+ "Discarding overwritten w/a for reg %04x (clear: %08x, set: %08x)\n",
+ i915_mmio_reg_offset(wa_->reg),
+ wa_->clr, wa_->set);
wa_->set &= ~wa->clr;
}
@@ -166,6 +207,21 @@ static void wa_add(struct i915_wa_list *wal, i915_reg_t reg,
_wa_add(wal, &wa);
}
+static void wa_mcr_add(struct i915_wa_list *wal, i915_mcr_reg_t reg,
+ u32 clear, u32 set, u32 read_mask, bool masked_reg)
+{
+ struct i915_wa wa = {
+ .mcr_reg = reg,
+ .clr = clear,
+ .set = set,
+ .read = read_mask,
+ .masked_reg = masked_reg,
+ .is_mcr = 1,
+ };
+
+ _wa_add(wal, &wa);
+}
+
static void
wa_write_clr_set(struct i915_wa_list *wal, i915_reg_t reg, u32 clear, u32 set)
{
@@ -173,23 +229,47 @@ wa_write_clr_set(struct i915_wa_list *wal, i915_reg_t reg, u32 clear, u32 set)
}
static void
+wa_mcr_write_clr_set(struct i915_wa_list *wal, i915_mcr_reg_t reg, u32 clear, u32 set)
+{
+ wa_mcr_add(wal, reg, clear, set, clear, false);
+}
+
+static void
wa_write(struct i915_wa_list *wal, i915_reg_t reg, u32 set)
{
wa_write_clr_set(wal, reg, ~0, set);
}
static void
+wa_mcr_write(struct i915_wa_list *wal, i915_mcr_reg_t reg, u32 set)
+{
+ wa_mcr_write_clr_set(wal, reg, ~0, set);
+}
+
+static void
wa_write_or(struct i915_wa_list *wal, i915_reg_t reg, u32 set)
{
wa_write_clr_set(wal, reg, set, set);
}
static void
+wa_mcr_write_or(struct i915_wa_list *wal, i915_mcr_reg_t reg, u32 set)
+{
+ wa_mcr_write_clr_set(wal, reg, set, set);
+}
+
+static void
wa_write_clr(struct i915_wa_list *wal, i915_reg_t reg, u32 clr)
{
wa_write_clr_set(wal, reg, clr, 0);
}
+static void
+wa_mcr_write_clr(struct i915_wa_list *wal, i915_mcr_reg_t reg, u32 clr)
+{
+ wa_mcr_write_clr_set(wal, reg, clr, 0);
+}
+
/*
* WA operations on "masked register". A masked register has the upper 16 bits
* documented as "masked" in b-spec. Its purpose is to allow writing to just a
@@ -208,18 +288,37 @@ wa_masked_en(struct i915_wa_list *wal, i915_reg_t reg, u32 val)
}
static void
+wa_mcr_masked_en(struct i915_wa_list *wal, i915_mcr_reg_t reg, u32 val)
+{
+ wa_mcr_add(wal, reg, 0, _MASKED_BIT_ENABLE(val), val, true);
+}
+
+static void
wa_masked_dis(struct i915_wa_list *wal, i915_reg_t reg, u32 val)
{
wa_add(wal, reg, 0, _MASKED_BIT_DISABLE(val), val, true);
}
static void
+wa_mcr_masked_dis(struct i915_wa_list *wal, i915_mcr_reg_t reg, u32 val)
+{
+ wa_mcr_add(wal, reg, 0, _MASKED_BIT_DISABLE(val), val, true);
+}
+
+static void
wa_masked_field_set(struct i915_wa_list *wal, i915_reg_t reg,
u32 mask, u32 val)
{
wa_add(wal, reg, 0, _MASKED_FIELD(mask, val), mask, true);
}
+static void
+wa_mcr_masked_field_set(struct i915_wa_list *wal, i915_mcr_reg_t reg,
+ u32 mask, u32 val)
+{
+ wa_mcr_add(wal, reg, 0, _MASKED_FIELD(mask, val), mask, true);
+}
+
static void gen6_ctx_workarounds_init(struct intel_engine_cs *engine,
struct i915_wa_list *wal)
{
@@ -241,8 +340,8 @@ static void gen8_ctx_workarounds_init(struct intel_engine_cs *engine,
wa_masked_en(wal, RING_MI_MODE(RENDER_RING_BASE), ASYNC_FLIP_PERF_DISABLE);
/* WaDisablePartialInstShootdown:bdw,chv */
- wa_masked_en(wal, GEN8_ROW_CHICKEN,
- PARTIAL_INSTRUCTION_SHOOTDOWN_DISABLE);
+ wa_mcr_masked_en(wal, GEN8_ROW_CHICKEN,
+ PARTIAL_INSTRUCTION_SHOOTDOWN_DISABLE);
/* Use Force Non-Coherent whenever executing a 3D context. This is a
* workaround for a possible hang in the unlikely event a TLB
@@ -288,18 +387,18 @@ static void bdw_ctx_workarounds_init(struct intel_engine_cs *engine,
gen8_ctx_workarounds_init(engine, wal);
/* WaDisableThreadStallDopClockGating:bdw (pre-production) */
- wa_masked_en(wal, GEN8_ROW_CHICKEN, STALL_DOP_GATING_DISABLE);
+ wa_mcr_masked_en(wal, GEN8_ROW_CHICKEN, STALL_DOP_GATING_DISABLE);
/* WaDisableDopClockGating:bdw
*
* Also see the related UCGTCL1 write in bdw_init_clock_gating()
* to disable EUTC clock gating.
*/
- wa_masked_en(wal, GEN7_ROW_CHICKEN2,
- DOP_CLOCK_GATING_DISABLE);
+ wa_mcr_masked_en(wal, GEN8_ROW_CHICKEN2,
+ DOP_CLOCK_GATING_DISABLE);
- wa_masked_en(wal, HALF_SLICE_CHICKEN3,
- GEN8_SAMPLER_POWER_BYPASS_DIS);
+ wa_mcr_masked_en(wal, GEN8_HALF_SLICE_CHICKEN3,
+ GEN8_SAMPLER_POWER_BYPASS_DIS);
wa_masked_en(wal, HDC_CHICKEN0,
/* WaForceContextSaveRestoreNonCoherent:bdw */
@@ -314,7 +413,7 @@ static void chv_ctx_workarounds_init(struct intel_engine_cs *engine,
gen8_ctx_workarounds_init(engine, wal);
/* WaDisableThreadStallDopClockGating:chv */
- wa_masked_en(wal, GEN8_ROW_CHICKEN, STALL_DOP_GATING_DISABLE);
+ wa_mcr_masked_en(wal, GEN8_ROW_CHICKEN, STALL_DOP_GATING_DISABLE);
/* Improve HiZ throughput on CHV. */
wa_masked_en(wal, HIZ_CHICKEN, CHV_HZ_8X8_MODE_IN_1X);
@@ -333,21 +432,21 @@ static void gen9_ctx_workarounds_init(struct intel_engine_cs *engine,
*/
wa_masked_en(wal, COMMON_SLICE_CHICKEN2,
GEN9_PBE_COMPRESSED_HASH_SELECTION);
- wa_masked_en(wal, GEN9_HALF_SLICE_CHICKEN7,
- GEN9_SAMPLER_HASH_COMPRESSED_READ_ADDR);
+ wa_mcr_masked_en(wal, GEN9_HALF_SLICE_CHICKEN7,
+ GEN9_SAMPLER_HASH_COMPRESSED_READ_ADDR);
}
/* WaClearFlowControlGpgpuContextSave:skl,bxt,kbl,glk,cfl */
/* WaDisablePartialInstShootdown:skl,bxt,kbl,glk,cfl */
- wa_masked_en(wal, GEN8_ROW_CHICKEN,
- FLOW_CONTROL_ENABLE |
- PARTIAL_INSTRUCTION_SHOOTDOWN_DISABLE);
+ wa_mcr_masked_en(wal, GEN8_ROW_CHICKEN,
+ FLOW_CONTROL_ENABLE |
+ PARTIAL_INSTRUCTION_SHOOTDOWN_DISABLE);
/* WaEnableYV12BugFixInHalfSliceChicken7:skl,bxt,kbl,glk,cfl */
/* WaEnableSamplerGPGPUPreemptionSupport:skl,bxt,kbl,cfl */
- wa_masked_en(wal, GEN9_HALF_SLICE_CHICKEN7,
- GEN9_ENABLE_YV12_BUGFIX |
- GEN9_ENABLE_GPGPU_PREEMPTION);
+ wa_mcr_masked_en(wal, GEN9_HALF_SLICE_CHICKEN7,
+ GEN9_ENABLE_YV12_BUGFIX |
+ GEN9_ENABLE_GPGPU_PREEMPTION);
/* Wa4x4STCOptimizationDisable:skl,bxt,kbl,glk,cfl */
/* WaDisablePartialResolveInVc:skl,bxt,kbl,cfl */
@@ -356,8 +455,8 @@ static void gen9_ctx_workarounds_init(struct intel_engine_cs *engine,
GEN9_PARTIAL_RESOLVE_IN_VC_DISABLE);
/* WaCcsTlbPrefetchDisable:skl,bxt,kbl,glk,cfl */
- wa_masked_dis(wal, GEN9_HALF_SLICE_CHICKEN5,
- GEN9_CCS_TLB_PREFETCH_ENABLE);
+ wa_mcr_masked_dis(wal, GEN9_HALF_SLICE_CHICKEN5,
+ GEN9_CCS_TLB_PREFETCH_ENABLE);
/* WaForceContextSaveRestoreNonCoherent:skl,bxt,kbl,cfl */
wa_masked_en(wal, HDC_CHICKEN0,
@@ -386,11 +485,11 @@ static void gen9_ctx_workarounds_init(struct intel_engine_cs *engine,
IS_KABYLAKE(i915) ||
IS_COFFEELAKE(i915) ||
IS_COMETLAKE(i915))
- wa_masked_en(wal, HALF_SLICE_CHICKEN3,
- GEN8_SAMPLER_POWER_BYPASS_DIS);
+ wa_mcr_masked_en(wal, GEN8_HALF_SLICE_CHICKEN3,
+ GEN8_SAMPLER_POWER_BYPASS_DIS);
/* WaDisableSTUnitPowerOptimization:skl,bxt,kbl,glk,cfl */
- wa_masked_en(wal, HALF_SLICE_CHICKEN2, GEN8_ST_PO_DISABLE);
+ wa_mcr_masked_en(wal, HALF_SLICE_CHICKEN2, GEN8_ST_PO_DISABLE);
/*
* Supporting preemption with fine-granularity requires changes in the
@@ -469,8 +568,8 @@ static void bxt_ctx_workarounds_init(struct intel_engine_cs *engine,
gen9_ctx_workarounds_init(engine, wal);
/* WaDisableThreadStallDopClockGating:bxt */
- wa_masked_en(wal, GEN8_ROW_CHICKEN,
- STALL_DOP_GATING_DISABLE);
+ wa_mcr_masked_en(wal, GEN8_ROW_CHICKEN,
+ STALL_DOP_GATING_DISABLE);
/* WaToEnableHwFixForPushConstHWBug:bxt */
wa_masked_en(wal, COMMON_SLICE_CHICKEN2,
@@ -490,8 +589,8 @@ static void kbl_ctx_workarounds_init(struct intel_engine_cs *engine,
GEN8_SBE_DISABLE_REPLAY_BUF_OPTIMIZATION);
/* WaDisableSbeCacheDispatchPortSharing:kbl */
- wa_masked_en(wal, GEN7_HALF_SLICE_CHICKEN1,
- GEN7_SBE_SS_CACHE_DISPATCH_PORT_SHARING_DISABLE);
+ wa_mcr_masked_en(wal, GEN8_HALF_SLICE_CHICKEN1,
+ GEN7_SBE_SS_CACHE_DISPATCH_PORT_SHARING_DISABLE);
}
static void glk_ctx_workarounds_init(struct intel_engine_cs *engine,
@@ -514,8 +613,8 @@ static void cfl_ctx_workarounds_init(struct intel_engine_cs *engine,
GEN8_SBE_DISABLE_REPLAY_BUF_OPTIMIZATION);
/* WaDisableSbeCacheDispatchPortSharing:cfl */
- wa_masked_en(wal, GEN7_HALF_SLICE_CHICKEN1,
- GEN7_SBE_SS_CACHE_DISPATCH_PORT_SHARING_DISABLE);
+ wa_mcr_masked_en(wal, GEN8_HALF_SLICE_CHICKEN1,
+ GEN7_SBE_SS_CACHE_DISPATCH_PORT_SHARING_DISABLE);
}
static void icl_ctx_workarounds_init(struct intel_engine_cs *engine,
@@ -534,13 +633,13 @@ static void icl_ctx_workarounds_init(struct intel_engine_cs *engine,
* (the register is whitelisted in hardware now, so UMDs can opt in
* for coherency if they have a good reason).
*/
- wa_masked_en(wal, ICL_HDC_MODE, HDC_FORCE_NON_COHERENT);
+ wa_mcr_masked_en(wal, ICL_HDC_MODE, HDC_FORCE_NON_COHERENT);
/* WaEnableFloatBlendOptimization:icl */
- wa_add(wal, GEN10_CACHE_MODE_SS, 0,
- _MASKED_BIT_ENABLE(FLOAT_BLEND_OPTIMIZATION_ENABLE),
- 0 /* write-only, so skip validation */,
- true);
+ wa_mcr_add(wal, GEN10_CACHE_MODE_SS, 0,
+ _MASKED_BIT_ENABLE(FLOAT_BLEND_OPTIMIZATION_ENABLE),
+ 0 /* write-only, so skip validation */,
+ true);
/* WaDisableGPGPUMidThreadPreemption:icl */
wa_masked_field_set(wal, GEN8_CS_CHICKEN1,
@@ -548,8 +647,8 @@ static void icl_ctx_workarounds_init(struct intel_engine_cs *engine,
GEN9_PREEMPT_GPGPU_THREAD_GROUP_LEVEL);
/* allow headerless messages for preemptible GPGPU context */
- wa_masked_en(wal, GEN10_SAMPLER_MODE,
- GEN11_SAMPLER_ENABLE_HEADLESS_MSG);
+ wa_mcr_masked_en(wal, GEN10_SAMPLER_MODE,
+ GEN11_SAMPLER_ENABLE_HEADLESS_MSG);
/* Wa_1604278689:icl,ehl */
wa_write(wal, IVB_FBC_RT_BASE, 0xFFFFFFFF & ~ILK_FBC_RT_VALID);
@@ -558,7 +657,7 @@ static void icl_ctx_workarounds_init(struct intel_engine_cs *engine,
0xFFFFFFFF);
/* Wa_1406306137:icl,ehl */
- wa_masked_en(wal, GEN9_ROW_CHICKEN4, GEN11_DIS_PICK_2ND_EU);
+ wa_mcr_masked_en(wal, GEN9_ROW_CHICKEN4, GEN11_DIS_PICK_2ND_EU);
}
/*
@@ -568,14 +667,14 @@ static void icl_ctx_workarounds_init(struct intel_engine_cs *engine,
static void dg2_ctx_gt_tuning_init(struct intel_engine_cs *engine,
struct i915_wa_list *wal)
{
- wa_masked_en(wal, CHICKEN_RASTER_2, TBIMR_FAST_CLIP);
- wa_write_clr_set(wal, GEN11_L3SQCREG5, L3_PWM_TIMER_INIT_VAL_MASK,
- REG_FIELD_PREP(L3_PWM_TIMER_INIT_VAL_MASK, 0x7f));
- wa_add(wal,
- FF_MODE2,
- FF_MODE2_TDS_TIMER_MASK,
- FF_MODE2_TDS_TIMER_128,
- 0, false);
+ wa_mcr_masked_en(wal, CHICKEN_RASTER_2, TBIMR_FAST_CLIP);
+ wa_mcr_write_clr_set(wal, XEHP_L3SQCREG5, L3_PWM_TIMER_INIT_VAL_MASK,
+ REG_FIELD_PREP(L3_PWM_TIMER_INIT_VAL_MASK, 0x7f));
+ wa_mcr_add(wal,
+ XEHP_FF_MODE2,
+ FF_MODE2_TDS_TIMER_MASK,
+ FF_MODE2_TDS_TIMER_128,
+ 0, false);
}
/*
@@ -599,7 +698,7 @@ static void gen12_ctx_gt_tuning_init(struct intel_engine_cs *engine,
* verification is ignored.
*/
wa_add(wal,
- FF_MODE2,
+ GEN12_FF_MODE2,
FF_MODE2_TDS_TIMER_MASK,
FF_MODE2_TDS_TIMER_128,
0, false);
@@ -608,6 +707,8 @@ static void gen12_ctx_gt_tuning_init(struct intel_engine_cs *engine,
static void gen12_ctx_workarounds_init(struct intel_engine_cs *engine,
struct i915_wa_list *wal)
{
+ struct drm_i915_private *i915 = engine->i915;
+
gen12_ctx_gt_tuning_init(engine, wal);
/*
@@ -637,10 +738,18 @@ static void gen12_ctx_workarounds_init(struct intel_engine_cs *engine,
* to Wa_1608008084.
*/
wa_add(wal,
- FF_MODE2,
+ GEN12_FF_MODE2,
FF_MODE2_GS_TIMER_MASK,
FF_MODE2_GS_TIMER_224,
0, false);
+
+ if (!IS_DG1(i915)) {
+ /* Wa_1806527549 */
+ wa_masked_en(wal, HIZ_CHICKEN, HZ_DEPTH_TEST_LE_GE_OPT_DISABLE);
+
+ /* Wa_1606376872 */
+ wa_masked_en(wal, COMMON_SLICE_CHICKEN4, DISABLE_TDC_LOAD_BALANCING_CALC);
+ }
}
static void dg1_ctx_workarounds_init(struct intel_engine_cs *engine,
@@ -664,35 +773,69 @@ static void dg2_ctx_workarounds_init(struct intel_engine_cs *engine,
/* Wa_16011186671:dg2_g11 */
if (IS_DG2_GRAPHICS_STEP(engine->i915, G11, STEP_A0, STEP_B0)) {
- wa_masked_dis(wal, VFLSKPD, DIS_MULT_MISS_RD_SQUASH);
- wa_masked_en(wal, VFLSKPD, DIS_OVER_FETCH_CACHE);
+ wa_mcr_masked_dis(wal, VFLSKPD, DIS_MULT_MISS_RD_SQUASH);
+ wa_mcr_masked_en(wal, VFLSKPD, DIS_OVER_FETCH_CACHE);
}
if (IS_DG2_GRAPHICS_STEP(engine->i915, G10, STEP_A0, STEP_B0)) {
/* Wa_14010469329:dg2_g10 */
- wa_masked_en(wal, GEN11_COMMON_SLICE_CHICKEN3,
- XEHP_DUAL_SIMD8_SEQ_MERGE_DISABLE);
+ wa_mcr_masked_en(wal, XEHP_COMMON_SLICE_CHICKEN3,
+ XEHP_DUAL_SIMD8_SEQ_MERGE_DISABLE);
/*
* Wa_22010465075:dg2_g10
* Wa_22010613112:dg2_g10
* Wa_14010698770:dg2_g10
*/
- wa_masked_en(wal, GEN11_COMMON_SLICE_CHICKEN3,
- GEN12_DISABLE_CPS_AWARE_COLOR_PIPE);
+ wa_mcr_masked_en(wal, XEHP_COMMON_SLICE_CHICKEN3,
+ GEN12_DISABLE_CPS_AWARE_COLOR_PIPE);
}
/* Wa_16013271637:dg2 */
- wa_masked_en(wal, SLICE_COMMON_ECO_CHICKEN1,
- MSC_MSAA_REODER_BUF_BYPASS_DISABLE);
+ wa_mcr_masked_en(wal, XEHP_SLICE_COMMON_ECO_CHICKEN1,
+ MSC_MSAA_REODER_BUF_BYPASS_DISABLE);
/* Wa_14014947963:dg2 */
if (IS_DG2_GRAPHICS_STEP(engine->i915, G10, STEP_B0, STEP_FOREVER) ||
- IS_DG2_G11(engine->i915) || IS_DG2_G12(engine->i915))
+ IS_DG2_G11(engine->i915) || IS_DG2_G12(engine->i915))
wa_masked_field_set(wal, VF_PREEMPTION, PREEMPTION_VERTEX_COUNT, 0x4000);
+ /* Wa_18018764978:dg2 */
+ if (IS_DG2_GRAPHICS_STEP(engine->i915, G10, STEP_C0, STEP_FOREVER) ||
+ IS_DG2_G11(engine->i915) || IS_DG2_G12(engine->i915))
+ wa_mcr_masked_en(wal, XEHP_PSS_MODE2, SCOREBOARD_STALL_FLUSH_CONTROL);
+
/* Wa_15010599737:dg2 */
- wa_masked_en(wal, CHICKEN_RASTER_1, DIS_SF_ROUND_NEAREST_EVEN);
+ wa_mcr_masked_en(wal, CHICKEN_RASTER_1, DIS_SF_ROUND_NEAREST_EVEN);
+
+ /* Wa_18019271663:dg2 */
+ wa_masked_en(wal, CACHE_MODE_1, MSAA_OPTIMIZATION_REDUC_DISABLE);
+}
+
+static void mtl_ctx_workarounds_init(struct intel_engine_cs *engine,
+ struct i915_wa_list *wal)
+{
+ struct drm_i915_private *i915 = engine->i915;
+
+ if (IS_MTL_GRAPHICS_STEP(i915, M, STEP_A0, STEP_B0) ||
+ IS_MTL_GRAPHICS_STEP(i915, P, STEP_A0, STEP_B0)) {
+ /* Wa_14014947963 */
+ wa_masked_field_set(wal, VF_PREEMPTION,
+ PREEMPTION_VERTEX_COUNT, 0x4000);
+
+ /* Wa_16013271637 */
+ wa_mcr_masked_en(wal, XEHP_SLICE_COMMON_ECO_CHICKEN1,
+ MSC_MSAA_REODER_BUF_BYPASS_DISABLE);
+
+ /* Wa_18019627453 */
+ wa_mcr_masked_en(wal, VFLSKPD, VF_PREFETCH_TLB_DIS);
+
+ /* Wa_18018764978 */
+ wa_mcr_masked_en(wal, XEHP_PSS_MODE2, SCOREBOARD_STALL_FLUSH_CONTROL);
+ }
+
+ /* Wa_18019271663 */
+ wa_masked_en(wal, CACHE_MODE_1, MSAA_OPTIMIZATION_REDUC_DISABLE);
}
static void fakewa_disable_nestedbb_mode(struct intel_engine_cs *engine,
@@ -768,7 +911,7 @@ __intel_engine_init_ctx_wa(struct intel_engine_cs *engine,
{
struct drm_i915_private *i915 = engine->i915;
- wa_init_start(wal, name, engine->name);
+ wa_init_start(wal, engine->gt, name, engine->name);
/* Applies to all engines */
/*
@@ -781,7 +924,9 @@ __intel_engine_init_ctx_wa(struct intel_engine_cs *engine,
if (engine->class != RENDER_CLASS)
goto done;
- if (IS_PONTEVECCHIO(i915))
+ if (IS_METEORLAKE(i915))
+ mtl_ctx_workarounds_init(engine, wal);
+ else if (IS_PONTEVECCHIO(i915))
; /* noop; none at this time */
else if (IS_DG2(i915))
dg2_ctx_workarounds_init(engine, wal);
@@ -1076,18 +1221,23 @@ static void __set_mcr_steering(struct i915_wa_list *wal,
wa_write_clr_set(wal, steering_reg, mcr_mask, mcr);
}
-static void __add_mcr_wa(struct intel_gt *gt, struct i915_wa_list *wal,
- unsigned int slice, unsigned int subslice)
+static void debug_dump_steering(struct intel_gt *gt)
{
struct drm_printer p = drm_debug_printer("MCR Steering:");
+ if (drm_debug_enabled(DRM_UT_DRIVER))
+ intel_gt_mcr_report_steering(&p, gt, false);
+}
+
+static void __add_mcr_wa(struct intel_gt *gt, struct i915_wa_list *wal,
+ unsigned int slice, unsigned int subslice)
+{
__set_mcr_steering(wal, GEN8_MCR_SELECTOR, slice, subslice);
gt->default_steering.groupid = slice;
gt->default_steering.instanceid = subslice;
- if (drm_debug_enabled(DRM_UT_DRIVER))
- intel_gt_mcr_report_steering(&p, gt, false);
+ debug_dump_steering(gt);
}
static void
@@ -1181,6 +1331,9 @@ xehp_init_mcr(struct intel_gt *gt, struct i915_wa_list *wal)
gt->steering_table[MSLICE] = NULL;
}
+ if (IS_XEHPSDV(gt->i915) && slice_mask & BIT(0))
+ gt->steering_table[GAM] = NULL;
+
slice = __ffs(slice_mask);
subslice = intel_sseu_find_first_xehp_dss(sseu, GEN_DSS_PER_GSLICE, slice) %
GEN_DSS_PER_GSLICE;
@@ -1198,6 +1351,13 @@ xehp_init_mcr(struct intel_gt *gt, struct i915_wa_list *wal)
*/
__set_mcr_steering(wal, MCFG_MCR_SELECTOR, 0, 2);
__set_mcr_steering(wal, SF_MCR_SELECTOR, 0, 2);
+
+ /*
+ * On DG2, GAM registers have a dedicated steering control register
+ * and must always be programmed to a hardcoded groupid of "1."
+ */
+ if (IS_DG2(gt->i915))
+ __set_mcr_steering(wal, GAM_MCR_SELECTOR, 1, 0);
}
static void
@@ -1249,27 +1409,34 @@ icl_gt_workarounds_init(struct intel_gt *gt, struct i915_wa_list *wal)
GAMT_CHKN_BIT_REG,
GAMT_CHKN_DISABLE_L3_COH_PIPE);
+ /*
+ * Wa_1408615072:icl,ehl (vsunit)
+ * Wa_1407596294:icl,ehl (hsunit)
+ */
+ wa_write_or(wal, UNSLICE_UNIT_LEVEL_CLKGATE,
+ VSUNIT_CLKGATE_DIS | HSUNIT_CLKGATE_DIS);
+
/* Wa_1407352427:icl,ehl */
wa_write_or(wal, UNSLICE_UNIT_LEVEL_CLKGATE2,
PSDUNIT_CLKGATE_DIS);
/* Wa_1406680159:icl,ehl */
- wa_write_or(wal,
- SUBSLICE_UNIT_LEVEL_CLKGATE,
- GWUNIT_CLKGATE_DIS);
+ wa_mcr_write_or(wal,
+ GEN11_SUBSLICE_UNIT_LEVEL_CLKGATE,
+ GWUNIT_CLKGATE_DIS);
/* Wa_1607087056:icl,ehl,jsl */
if (IS_ICELAKE(i915) ||
IS_JSL_EHL_GRAPHICS_STEP(i915, STEP_A0, STEP_B0))
wa_write_or(wal,
- SLICE_UNIT_LEVEL_CLKGATE,
+ GEN11_SLICE_UNIT_LEVEL_CLKGATE,
L3_CLKGATE_DIS | L3_CR2X_CLKGATE_DIS);
/*
* This is not a documented workaround, but rather an optimization
* to reduce sampler power.
*/
- wa_write_clr(wal, GEN10_DFR_RATIO_EN_AND_CHICKEN, DFR_DISABLE);
+ wa_mcr_write_clr(wal, GEN10_DFR_RATIO_EN_AND_CHICKEN, DFR_DISABLE);
}
/*
@@ -1303,58 +1470,21 @@ gen12_gt_workarounds_init(struct intel_gt *gt, struct i915_wa_list *wal)
wa_14011060649(gt, wal);
/* Wa_14011059788:tgl,rkl,adl-s,dg1,adl-p */
- wa_write_or(wal, GEN10_DFR_RATIO_EN_AND_CHICKEN, DFR_DISABLE);
-}
-
-static void
-tgl_gt_workarounds_init(struct intel_gt *gt, struct i915_wa_list *wal)
-{
- struct drm_i915_private *i915 = gt->i915;
-
- gen12_gt_workarounds_init(gt, wal);
-
- /* Wa_1409420604:tgl */
- if (IS_TGL_UY_GRAPHICS_STEP(i915, STEP_A0, STEP_B0))
- wa_write_or(wal,
- SUBSLICE_UNIT_LEVEL_CLKGATE2,
- CPSSUNIT_CLKGATE_DIS);
-
- /* Wa_1607087056:tgl also know as BUG:1409180338 */
- if (IS_TGL_UY_GRAPHICS_STEP(i915, STEP_A0, STEP_B0))
- wa_write_or(wal,
- SLICE_UNIT_LEVEL_CLKGATE,
- L3_CLKGATE_DIS | L3_CR2X_CLKGATE_DIS);
-
- /* Wa_1408615072:tgl[a0] */
- if (IS_TGL_UY_GRAPHICS_STEP(i915, STEP_A0, STEP_B0))
- wa_write_or(wal, UNSLICE_UNIT_LEVEL_CLKGATE2,
- VSUNIT_CLKGATE_DIS_TGL);
+ wa_mcr_write_or(wal, GEN10_DFR_RATIO_EN_AND_CHICKEN, DFR_DISABLE);
}
static void
dg1_gt_workarounds_init(struct intel_gt *gt, struct i915_wa_list *wal)
{
- struct drm_i915_private *i915 = gt->i915;
-
gen12_gt_workarounds_init(gt, wal);
- /* Wa_1607087056:dg1 */
- if (IS_DG1_GRAPHICS_STEP(i915, STEP_A0, STEP_B0))
- wa_write_or(wal,
- SLICE_UNIT_LEVEL_CLKGATE,
- L3_CLKGATE_DIS | L3_CR2X_CLKGATE_DIS);
-
/* Wa_1409420604:dg1 */
- if (IS_DG1(i915))
- wa_write_or(wal,
- SUBSLICE_UNIT_LEVEL_CLKGATE2,
- CPSSUNIT_CLKGATE_DIS);
+ wa_mcr_write_or(wal, SUBSLICE_UNIT_LEVEL_CLKGATE2,
+ CPSSUNIT_CLKGATE_DIS);
/* Wa_1408615072:dg1 */
/* Empirical testing shows this register is unaffected by engine reset. */
- if (IS_DG1(i915))
- wa_write_or(wal, UNSLICE_UNIT_LEVEL_CLKGATE2,
- VSUNIT_CLKGATE_DIS_TGL);
+ wa_write_or(wal, UNSLICE_UNIT_LEVEL_CLKGATE2, VSUNIT_CLKGATE_DIS_TGL);
}
static void
@@ -1365,7 +1495,13 @@ xehpsdv_gt_workarounds_init(struct intel_gt *gt, struct i915_wa_list *wal)
xehp_init_mcr(gt, wal);
/* Wa_1409757795:xehpsdv */
- wa_write_or(wal, SCCGCTL94DC, CG3DDISURB);
+ wa_mcr_write_or(wal, SCCGCTL94DC, CG3DDISURB);
+
+ /* Wa_18011725039:xehpsdv */
+ if (IS_XEHPSDV_GRAPHICS_STEP(i915, STEP_A1, STEP_B0)) {
+ wa_mcr_masked_dis(wal, MLTICTXCTL, TDONRENDER);
+ wa_mcr_write_or(wal, L3SQCREG1_CCS0, FLUSHALLNONCOH);
+ }
/* Wa_16011155590:xehpsdv */
if (IS_XEHPSDV_GRAPHICS_STEP(i915, STEP_A0, STEP_B0))
@@ -1409,6 +1545,16 @@ xehpsdv_gt_workarounds_init(struct intel_gt *gt, struct i915_wa_list *wal)
/* Wa_14011060649:xehpsdv */
wa_14011060649(gt, wal);
+
+ /* Wa_14012362059:xehpsdv */
+ wa_mcr_write_or(wal, XEHP_MERT_MOD_CTRL, FORCE_MISS_FTLB);
+
+ /* Wa_14014368820:xehpsdv */
+ wa_mcr_write_or(wal, XEHP_GAMCNTRL_CTRL,
+ INVALIDATION_BROADCAST_MODE_DIS | GLOBAL_INVALIDATION_MODE);
+
+ /* Wa_14010670810:xehpsdv */
+ wa_mcr_write_or(wal, XEHP_L3NODEARBCFG, XEHP_LNESPARE);
}
static void
@@ -1445,8 +1591,14 @@ dg2_gt_workarounds_init(struct intel_gt *gt, struct i915_wa_list *wal)
CG3DDISCFEG_CLKGATE_DIS);
/* Wa_14011006942:dg2 */
- wa_write_or(wal, SUBSLICE_UNIT_LEVEL_CLKGATE,
- DSS_ROUTER_CLKGATE_DIS);
+ wa_mcr_write_or(wal, GEN11_SUBSLICE_UNIT_LEVEL_CLKGATE,
+ DSS_ROUTER_CLKGATE_DIS);
+ }
+
+ if (IS_DG2_GRAPHICS_STEP(gt->i915, G10, STEP_A0, STEP_B0) ||
+ IS_DG2_GRAPHICS_STEP(gt->i915, G11, STEP_A0, STEP_B0)) {
+ /* Wa_14012362059:dg2 */
+ wa_mcr_write_or(wal, XEHP_MERT_MOD_CTRL, FORCE_MISS_FTLB);
}
if (IS_DG2_GRAPHICS_STEP(gt->i915, G10, STEP_A0, STEP_B0)) {
@@ -1457,7 +1609,7 @@ dg2_gt_workarounds_init(struct intel_gt *gt, struct i915_wa_list *wal)
wa_write_or(wal, UNSLCGCTL9444, LTCDD_CLKGATE_DIS);
/* Wa_14011371254:dg2_g10 */
- wa_write_or(wal, SLICE_UNIT_LEVEL_CLKGATE, NODEDSS_CLKGATE_DIS);
+ wa_mcr_write_or(wal, XEHP_SLICE_UNIT_LEVEL_CLKGATE, NODEDSS_CLKGATE_DIS);
/* Wa_14011431319:dg2_g10 */
wa_write_or(wal, UNSLCGCTL9440, GAMTLBOACS_CLKGATE_DIS |
@@ -1493,21 +1645,33 @@ dg2_gt_workarounds_init(struct intel_gt *gt, struct i915_wa_list *wal)
GAMEDIA_CLKGATE_DIS);
/* Wa_14011028019:dg2_g10 */
- wa_write_or(wal, SSMCGCTL9530, RTFUNIT_CLKGATE_DIS);
+ wa_mcr_write_or(wal, SSMCGCTL9530, RTFUNIT_CLKGATE_DIS);
+
+ /* Wa_14010680813:dg2_g10 */
+ wa_mcr_write_or(wal, XEHP_GAMSTLB_CTRL,
+ CONTROL_BLOCK_CLKGATE_DIS |
+ EGRESS_BLOCK_CLKGATE_DIS |
+ TAG_BLOCK_CLKGATE_DIS);
}
/* Wa_14014830051:dg2 */
- wa_write_clr(wal, SARB_CHICKEN1, COMP_CKN_IN);
-
- /*
- * The following are not actually "workarounds" but rather
- * recommended tuning settings documented in the bspec's
- * performance guide section.
- */
- wa_write_or(wal, GEN12_SQCM, EN_32B_ACCESS);
+ wa_mcr_write_clr(wal, SARB_CHICKEN1, COMP_CKN_IN);
/* Wa_14015795083 */
wa_write_clr(wal, GEN7_MISCCPCTL, GEN12_DOP_CLOCK_GATE_RENDER_ENABLE);
+
+ /* Wa_18018781329 */
+ wa_mcr_write_or(wal, RENDER_MOD_CTRL, FORCE_MISS_FTLB);
+ wa_mcr_write_or(wal, COMP_MOD_CTRL, FORCE_MISS_FTLB);
+ wa_mcr_write_or(wal, XEHP_VDBX_MOD_CTRL, FORCE_MISS_FTLB);
+ wa_mcr_write_or(wal, XEHP_VEBX_MOD_CTRL, FORCE_MISS_FTLB);
+
+ /* Wa_1509235366:dg2 */
+ wa_mcr_write_or(wal, XEHP_GAMCNTRL_CTRL,
+ INVALIDATION_BROADCAST_MODE_DIS | GLOBAL_INVALIDATION_MODE);
+
+ /* Wa_14010648519:dg2 */
+ wa_mcr_write_or(wal, XEHP_L3NODEARBCFG, XEHP_LNESPARE);
}
static void
@@ -1517,6 +1681,78 @@ pvc_gt_workarounds_init(struct intel_gt *gt, struct i915_wa_list *wal)
/* Wa_14015795083 */
wa_write_clr(wal, GEN7_MISCCPCTL, GEN12_DOP_CLOCK_GATE_RENDER_ENABLE);
+
+ /* Wa_18018781329 */
+ wa_mcr_write_or(wal, RENDER_MOD_CTRL, FORCE_MISS_FTLB);
+ wa_mcr_write_or(wal, COMP_MOD_CTRL, FORCE_MISS_FTLB);
+ wa_mcr_write_or(wal, XEHP_VDBX_MOD_CTRL, FORCE_MISS_FTLB);
+ wa_mcr_write_or(wal, XEHP_VEBX_MOD_CTRL, FORCE_MISS_FTLB);
+
+ /* Wa_16016694945 */
+ wa_mcr_masked_en(wal, XEHPC_LNCFMISCCFGREG0, XEHPC_OVRLSCCC);
+}
+
+static void
+xelpg_gt_workarounds_init(struct intel_gt *gt, struct i915_wa_list *wal)
+{
+ if (IS_MTL_GRAPHICS_STEP(gt->i915, M, STEP_A0, STEP_B0) ||
+ IS_MTL_GRAPHICS_STEP(gt->i915, P, STEP_A0, STEP_B0)) {
+ /* Wa_14014830051 */
+ wa_mcr_write_clr(wal, SARB_CHICKEN1, COMP_CKN_IN);
+
+ /* Wa_18018781329 */
+ wa_mcr_write_or(wal, RENDER_MOD_CTRL, FORCE_MISS_FTLB);
+ wa_mcr_write_or(wal, COMP_MOD_CTRL, FORCE_MISS_FTLB);
+ }
+
+ /*
+ * Unlike older platforms, we no longer setup implicit steering here;
+ * all MCR accesses are explicitly steered.
+ */
+ debug_dump_steering(gt);
+}
+
+static void
+xelpmp_gt_workarounds_init(struct intel_gt *gt, struct i915_wa_list *wal)
+{
+ if (IS_MTL_MEDIA_STEP(gt->i915, STEP_A0, STEP_B0)) {
+ /*
+ * Wa_18018781329
+ *
+ * Note that although these registers are MCR on the primary
+ * GT, the media GT's versions are regular singleton registers.
+ */
+ wa_write_or(wal, XELPMP_GSC_MOD_CTRL, FORCE_MISS_FTLB);
+ wa_write_or(wal, XELPMP_VDBX_MOD_CTRL, FORCE_MISS_FTLB);
+ wa_write_or(wal, XELPMP_VEBX_MOD_CTRL, FORCE_MISS_FTLB);
+ }
+
+ debug_dump_steering(gt);
+}
+
+/*
+ * The bspec performance guide has recommended MMIO tuning settings. These
+ * aren't truly "workarounds" but we want to program them through the
+ * workaround infrastructure to make sure they're (re)applied at the proper
+ * times.
+ *
+ * The programming in this function is for settings that persist through
+ * engine resets and also are not part of any engine's register state context.
+ * I.e., settings that only need to be re-applied in the event of a full GT
+ * reset.
+ */
+static void gt_tuning_settings(struct intel_gt *gt, struct i915_wa_list *wal)
+{
+ if (IS_PONTEVECCHIO(gt->i915)) {
+ wa_mcr_write(wal, XEHPC_L3SCRUB,
+ SCRUB_CL_DWNGRADE_SHARED | SCRUB_RATE_4B_PER_CLK);
+ wa_mcr_masked_en(wal, XEHPC_LNCFMISCCFGREG0, XEHPC_HOSTCACHEEN);
+ }
+
+ if (IS_DG2(gt->i915)) {
+ wa_mcr_write_or(wal, XEHP_L3SCQREG7, BLEND_FILL_CACHING_OPT_DIS);
+ wa_mcr_write_or(wal, XEHP_SQCM, EN_32B_ACCESS);
+ }
}
static void
@@ -1524,7 +1760,20 @@ gt_init_workarounds(struct intel_gt *gt, struct i915_wa_list *wal)
{
struct drm_i915_private *i915 = gt->i915;
- if (IS_PONTEVECCHIO(i915))
+ gt_tuning_settings(gt, wal);
+
+ if (gt->type == GT_MEDIA) {
+ if (MEDIA_VER(i915) >= 13)
+ xelpmp_gt_workarounds_init(gt, wal);
+ else
+ MISSING_CASE(MEDIA_VER(i915));
+
+ return;
+ }
+
+ if (GRAPHICS_VER_FULL(i915) >= IP_VER(12, 70))
+ xelpg_gt_workarounds_init(gt, wal);
+ else if (IS_PONTEVECCHIO(i915))
pvc_gt_workarounds_init(gt, wal);
else if (IS_DG2(i915))
dg2_gt_workarounds_init(gt, wal);
@@ -1532,8 +1781,6 @@ gt_init_workarounds(struct intel_gt *gt, struct i915_wa_list *wal)
xehpsdv_gt_workarounds_init(gt, wal);
else if (IS_DG1(i915))
dg1_gt_workarounds_init(gt, wal);
- else if (IS_TIGERLAKE(i915))
- tgl_gt_workarounds_init(gt, wal);
else if (GRAPHICS_VER(i915) == 12)
gen12_gt_workarounds_init(gt, wal);
else if (GRAPHICS_VER(i915) == 11)
@@ -1572,7 +1819,7 @@ void intel_gt_init_workarounds(struct intel_gt *gt)
{
struct i915_wa_list *wal = &gt->wa_list;
- wa_init_start(wal, "GT", "global");
+ wa_init_start(wal, gt, "GT", "global");
gt_init_workarounds(gt, wal);
wa_init_finish(wal);
}
@@ -1594,12 +1841,14 @@ wal_get_fw_for_rmw(struct intel_uncore *uncore, const struct i915_wa_list *wal)
}
static bool
-wa_verify(const struct i915_wa *wa, u32 cur, const char *name, const char *from)
+wa_verify(struct intel_gt *gt, const struct i915_wa *wa, u32 cur,
+ const char *name, const char *from)
{
if ((cur ^ wa->set) & wa->read) {
- DRM_ERROR("%s workaround lost on %s! (reg[%x]=0x%x, relevant bits were 0x%x vs expected 0x%x)\n",
- name, from, i915_mmio_reg_offset(wa->reg),
- cur, cur & wa->read, wa->set & wa->read);
+ drm_err(&gt->i915->drm,
+ "%s workaround lost on %s! (reg[%x]=0x%x, relevant bits were 0x%x vs expected 0x%x)\n",
+ name, from, i915_mmio_reg_offset(wa->reg),
+ cur, cur & wa->read, wa->set & wa->read);
return false;
}
@@ -1607,9 +1856,9 @@ wa_verify(const struct i915_wa *wa, u32 cur, const char *name, const char *from)
return true;
}
-static void
-wa_list_apply(struct intel_gt *gt, const struct i915_wa_list *wal)
+static void wa_list_apply(const struct i915_wa_list *wal)
{
+ struct intel_gt *gt = wal->gt;
struct intel_uncore *uncore = gt->uncore;
enum forcewake_domains fw;
unsigned long flags;
@@ -1621,30 +1870,43 @@ wa_list_apply(struct intel_gt *gt, const struct i915_wa_list *wal)
fw = wal_get_fw_for_rmw(uncore, wal);
- spin_lock_irqsave(&uncore->lock, flags);
+ intel_gt_mcr_lock(gt, &flags);
+ spin_lock(&uncore->lock);
intel_uncore_forcewake_get__locked(uncore, fw);
for (i = 0, wa = wal->list; i < wal->count; i++, wa++) {
u32 val, old = 0;
/* open-coded rmw due to steering */
- old = wa->clr ? intel_gt_mcr_read_any_fw(gt, wa->reg) : 0;
+ if (wa->clr)
+ old = wa->is_mcr ?
+ intel_gt_mcr_read_any_fw(gt, wa->mcr_reg) :
+ intel_uncore_read_fw(uncore, wa->reg);
val = (old & ~wa->clr) | wa->set;
- if (val != old || !wa->clr)
- intel_uncore_write_fw(uncore, wa->reg, val);
+ if (val != old || !wa->clr) {
+ if (wa->is_mcr)
+ intel_gt_mcr_multicast_write_fw(gt, wa->mcr_reg, val);
+ else
+ intel_uncore_write_fw(uncore, wa->reg, val);
+ }
+
+ if (IS_ENABLED(CONFIG_DRM_I915_DEBUG_GEM)) {
+ u32 val = wa->is_mcr ?
+ intel_gt_mcr_read_any_fw(gt, wa->mcr_reg) :
+ intel_uncore_read_fw(uncore, wa->reg);
- if (IS_ENABLED(CONFIG_DRM_I915_DEBUG_GEM))
- wa_verify(wa, intel_gt_mcr_read_any_fw(gt, wa->reg),
- wal->name, "application");
+ wa_verify(gt, wa, val, wal->name, "application");
+ }
}
intel_uncore_forcewake_put__locked(uncore, fw);
- spin_unlock_irqrestore(&uncore->lock, flags);
+ spin_unlock(&uncore->lock);
+ intel_gt_mcr_unlock(gt, flags);
}
void intel_gt_apply_workarounds(struct intel_gt *gt)
{
- wa_list_apply(gt, &gt->wa_list);
+ wa_list_apply(&gt->wa_list);
}
static bool wa_list_verify(struct intel_gt *gt,
@@ -1660,16 +1922,19 @@ static bool wa_list_verify(struct intel_gt *gt,
fw = wal_get_fw_for_rmw(uncore, wal);
- spin_lock_irqsave(&uncore->lock, flags);
+ intel_gt_mcr_lock(gt, &flags);
+ spin_lock(&uncore->lock);
intel_uncore_forcewake_get__locked(uncore, fw);
for (i = 0, wa = wal->list; i < wal->count; i++, wa++)
- ok &= wa_verify(wa,
- intel_gt_mcr_read_any_fw(gt, wa->reg),
+ ok &= wa_verify(wal->gt, wa, wa->is_mcr ?
+ intel_gt_mcr_read_any_fw(gt, wa->mcr_reg) :
+ intel_uncore_read_fw(uncore, wa->reg),
wal->name, from);
intel_uncore_forcewake_put__locked(uncore, fw);
- spin_unlock_irqrestore(&uncore->lock, flags);
+ spin_unlock(&uncore->lock);
+ intel_gt_mcr_unlock(gt, flags);
return ok;
}
@@ -1712,11 +1977,35 @@ whitelist_reg_ext(struct i915_wa_list *wal, i915_reg_t reg, u32 flags)
}
static void
+whitelist_mcr_reg_ext(struct i915_wa_list *wal, i915_mcr_reg_t reg, u32 flags)
+{
+ struct i915_wa wa = {
+ .mcr_reg = reg,
+ .is_mcr = 1,
+ };
+
+ if (GEM_DEBUG_WARN_ON(wal->count >= RING_MAX_NONPRIV_SLOTS))
+ return;
+
+ if (GEM_DEBUG_WARN_ON(!is_nonpriv_flags_valid(flags)))
+ return;
+
+ wa.mcr_reg.reg |= flags;
+ _wa_add(wal, &wa);
+}
+
+static void
whitelist_reg(struct i915_wa_list *wal, i915_reg_t reg)
{
whitelist_reg_ext(wal, reg, RING_FORCE_TO_NONPRIV_ACCESS_RW);
}
+static void
+whitelist_mcr_reg(struct i915_wa_list *wal, i915_mcr_reg_t reg)
+{
+ whitelist_mcr_reg_ext(wal, reg, RING_FORCE_TO_NONPRIV_ACCESS_RW);
+}
+
static void gen9_whitelist_build(struct i915_wa_list *w)
{
/* WaVFEStateAfterPipeControlwithMediaStateClear:skl,bxt,glk,cfl */
@@ -1742,7 +2031,7 @@ static void skl_whitelist_build(struct intel_engine_cs *engine)
gen9_whitelist_build(w);
/* WaDisableLSQCROPERFforOCL:skl */
- whitelist_reg(w, GEN8_L3SQCREG4);
+ whitelist_mcr_reg(w, GEN8_L3SQCREG4);
}
static void bxt_whitelist_build(struct intel_engine_cs *engine)
@@ -1763,7 +2052,7 @@ static void kbl_whitelist_build(struct intel_engine_cs *engine)
gen9_whitelist_build(w);
/* WaDisableLSQCROPERFforOCL:kbl */
- whitelist_reg(w, GEN8_L3SQCREG4);
+ whitelist_mcr_reg(w, GEN8_L3SQCREG4);
}
static void glk_whitelist_build(struct intel_engine_cs *engine)
@@ -1828,10 +2117,10 @@ static void icl_whitelist_build(struct intel_engine_cs *engine)
switch (engine->class) {
case RENDER_CLASS:
/* WaAllowUMDToModifyHalfSliceChicken7:icl */
- whitelist_reg(w, GEN9_HALF_SLICE_CHICKEN7);
+ whitelist_mcr_reg(w, GEN9_HALF_SLICE_CHICKEN7);
/* WaAllowUMDToModifySamplerMode:icl */
- whitelist_reg(w, GEN10_SAMPLER_MODE);
+ whitelist_mcr_reg(w, GEN10_SAMPLER_MODE);
/* WaEnableStateCacheRedirectToCS:icl */
whitelist_reg(w, GEN9_SLICE_COMMON_ECO_CHICKEN1);
@@ -1898,37 +2187,20 @@ static void tgl_whitelist_build(struct intel_engine_cs *engine)
/* Wa_1806527549:tgl */
whitelist_reg(w, HIZ_CHICKEN);
+
+ /* Required by recommended tuning setting (not a workaround) */
+ whitelist_reg(w, GEN11_COMMON_SLICE_CHICKEN3);
+
break;
default:
break;
}
}
-static void dg1_whitelist_build(struct intel_engine_cs *engine)
-{
- struct i915_wa_list *w = &engine->whitelist;
-
- tgl_whitelist_build(engine);
-
- /* GEN:BUG:1409280441:dg1 */
- if (IS_DG1_GRAPHICS_STEP(engine->i915, STEP_A0, STEP_B0) &&
- (engine->class == RENDER_CLASS ||
- engine->class == COPY_ENGINE_CLASS))
- whitelist_reg_ext(w, RING_ID(engine->mmio_base),
- RING_FORCE_TO_NONPRIV_ACCESS_RD);
-}
-
-static void xehpsdv_whitelist_build(struct intel_engine_cs *engine)
-{
- allow_read_ctx_timestamp(engine);
-}
-
static void dg2_whitelist_build(struct intel_engine_cs *engine)
{
struct i915_wa_list *w = &engine->whitelist;
- allow_read_ctx_timestamp(engine);
-
switch (engine->class) {
case RENDER_CLASS:
/*
@@ -1945,6 +2217,9 @@ static void dg2_whitelist_build(struct intel_engine_cs *engine)
RING_FORCE_TO_NONPRIV_ACCESS_RD |
RING_FORCE_TO_NONPRIV_RANGE_4);
+ /* Required by recommended tuning setting (not a workaround) */
+ whitelist_mcr_reg(w, XEHP_COMMON_SLICE_CHICKEN3);
+
break;
case COMPUTE_CLASS:
/* Wa_16011157294:dg2_g10 */
@@ -1976,27 +2251,40 @@ static void blacklist_trtt(struct intel_engine_cs *engine)
static void pvc_whitelist_build(struct intel_engine_cs *engine)
{
- allow_read_ctx_timestamp(engine);
-
/* Wa_16014440446:pvc */
blacklist_trtt(engine);
}
+static void mtl_whitelist_build(struct intel_engine_cs *engine)
+{
+ struct i915_wa_list *w = &engine->whitelist;
+
+ switch (engine->class) {
+ case RENDER_CLASS:
+ /* Required by recommended tuning setting (not a workaround) */
+ whitelist_mcr_reg(w, XEHP_COMMON_SLICE_CHICKEN3);
+
+ break;
+ default:
+ break;
+ }
+}
+
void intel_engine_init_whitelist(struct intel_engine_cs *engine)
{
struct drm_i915_private *i915 = engine->i915;
struct i915_wa_list *w = &engine->whitelist;
- wa_init_start(w, "whitelist", engine->name);
+ wa_init_start(w, engine->gt, "whitelist", engine->name);
- if (IS_PONTEVECCHIO(i915))
+ if (IS_METEORLAKE(i915))
+ mtl_whitelist_build(engine);
+ else if (IS_PONTEVECCHIO(i915))
pvc_whitelist_build(engine);
else if (IS_DG2(i915))
dg2_whitelist_build(engine);
else if (IS_XEHPSDV(i915))
- xehpsdv_whitelist_build(engine);
- else if (IS_DG1(i915))
- dg1_whitelist_build(engine);
+ ; /* none needed */
else if (GRAPHICS_VER(i915) == 12)
tgl_whitelist_build(engine);
else if (GRAPHICS_VER(i915) == 11)
@@ -2099,47 +2387,40 @@ rcs_engine_wa_init(struct intel_engine_cs *engine, struct i915_wa_list *wal)
{
struct drm_i915_private *i915 = engine->i915;
- if (IS_DG2(i915)) {
- /* Wa_1509235366:dg2 */
- wa_write_or(wal, GEN12_GAMCNTRL_CTRL, INVALIDATION_BROADCAST_MODE_DIS |
- GLOBAL_INVALIDATION_MODE);
+ if (IS_MTL_GRAPHICS_STEP(i915, M, STEP_A0, STEP_B0) ||
+ IS_MTL_GRAPHICS_STEP(i915, P, STEP_A0, STEP_B0)) {
+ /* Wa_22014600077 */
+ wa_mcr_masked_en(wal, GEN10_CACHE_MODE_SS,
+ ENABLE_EU_COUNT_FOR_TDL_FLUSH);
}
- if (IS_DG2_GRAPHICS_STEP(i915, G11, STEP_A0, STEP_B0)) {
- /* Wa_14013392000:dg2_g11 */
- wa_masked_en(wal, GEN7_ROW_CHICKEN2, GEN12_ENABLE_LARGE_GRF_MODE);
-
- /* Wa_16011620976:dg2_g11 */
- wa_write_or(wal, LSC_CHICKEN_BIT_0_UDW, DIS_CHAIN_2XSIMD8);
+ if (IS_MTL_GRAPHICS_STEP(i915, M, STEP_A0, STEP_B0) ||
+ IS_MTL_GRAPHICS_STEP(i915, P, STEP_A0, STEP_B0) ||
+ IS_DG2_GRAPHICS_STEP(i915, G10, STEP_B0, STEP_FOREVER) ||
+ IS_DG2_G11(i915) || IS_DG2_G12(i915)) {
+ /* Wa_1509727124 */
+ wa_mcr_masked_en(wal, GEN10_SAMPLER_MODE,
+ SC_DISABLE_POWER_OPTIMIZATION_EBB);
}
if (IS_DG2_GRAPHICS_STEP(i915, G10, STEP_B0, STEP_FOREVER) ||
- IS_DG2_G11(i915) || IS_DG2_G12(i915)) {
- /* Wa_1509727124:dg2 */
- wa_masked_en(wal, GEN10_SAMPLER_MODE,
- SC_DISABLE_POWER_OPTIMIZATION_EBB);
+ IS_DG2_G11(i915) || IS_DG2_G12(i915) ||
+ IS_MTL_GRAPHICS_STEP(i915, M, STEP_A0, STEP_B0)) {
+ /* Wa_22012856258 */
+ wa_mcr_masked_en(wal, GEN8_ROW_CHICKEN2,
+ GEN12_DISABLE_READ_SUPPRESSION);
+ }
+
+ if (IS_DG2_GRAPHICS_STEP(i915, G11, STEP_A0, STEP_B0)) {
+ /* Wa_14013392000:dg2_g11 */
+ wa_mcr_masked_en(wal, GEN8_ROW_CHICKEN2, GEN12_ENABLE_LARGE_GRF_MODE);
}
if (IS_DG2_GRAPHICS_STEP(i915, G10, STEP_A0, STEP_B0) ||
IS_DG2_GRAPHICS_STEP(i915, G11, STEP_A0, STEP_B0)) {
/* Wa_14012419201:dg2 */
- wa_masked_en(wal, GEN9_ROW_CHICKEN4,
- GEN12_DISABLE_HDR_PAST_PAYLOAD_HOLD_FIX);
- }
-
- if (IS_DG2_GRAPHICS_STEP(i915, G10, STEP_B0, STEP_C0) ||
- IS_DG2_G11(i915)) {
- /*
- * Wa_22012826095:dg2
- * Wa_22013059131:dg2
- */
- wa_write_clr_set(wal, LSC_CHICKEN_BIT_0_UDW,
- MAXREQS_PER_BANK,
- REG_FIELD_PREP(MAXREQS_PER_BANK, 2));
-
- /* Wa_22013059131:dg2 */
- wa_write_or(wal, LSC_CHICKEN_BIT_0,
- FORCE_1_SUB_MESSAGE_PER_FRAGMENT);
+ wa_mcr_masked_en(wal, GEN9_ROW_CHICKEN4,
+ GEN12_DISABLE_HDR_PAST_PAYLOAD_HOLD_FIX);
}
/* Wa_1308578152:dg2_g10 when first gslice is fused off */
@@ -2151,20 +2432,12 @@ rcs_engine_wa_init(struct intel_engine_cs *engine, struct i915_wa_list *wal)
if (IS_DG2_GRAPHICS_STEP(i915, G10, STEP_B0, STEP_FOREVER) ||
IS_DG2_G11(i915) || IS_DG2_G12(i915)) {
- /* Wa_22013037850:dg2 */
- wa_write_or(wal, LSC_CHICKEN_BIT_0_UDW,
- DISABLE_128B_EVICTION_COMMAND_UDW);
-
- /* Wa_22012856258:dg2 */
- wa_masked_en(wal, GEN7_ROW_CHICKEN2,
- GEN12_DISABLE_READ_SUPPRESSION);
-
/*
* Wa_22010960976:dg2
* Wa_14013347512:dg2
*/
- wa_masked_dis(wal, GEN12_HDC_CHICKEN0,
- LSC_L1_FLUSH_CTL_3D_DATAPORT_FLUSH_EVENTS_MASK);
+ wa_mcr_masked_dis(wal, XEHP_HDC_CHICKEN0,
+ LSC_L1_FLUSH_CTL_3D_DATAPORT_FLUSH_EVENTS_MASK);
}
if (IS_DG2_GRAPHICS_STEP(i915, G10, STEP_A0, STEP_B0)) {
@@ -2172,88 +2445,40 @@ rcs_engine_wa_init(struct intel_engine_cs *engine, struct i915_wa_list *wal)
* Wa_1608949956:dg2_g10
* Wa_14010198302:dg2_g10
*/
- wa_masked_en(wal, GEN8_ROW_CHICKEN,
- MDQ_ARBITRATION_MODE | UGM_BACKUP_MODE);
-
- /*
- * Wa_14010918519:dg2_g10
- *
- * LSC_CHICKEN_BIT_0 always reads back as 0 is this stepping,
- * so ignoring verification.
- */
- wa_add(wal, LSC_CHICKEN_BIT_0_UDW, 0,
- FORCE_SLM_FENCE_SCOPE_TO_TILE | FORCE_UGM_FENCE_SCOPE_TO_TILE,
- 0, false);
+ wa_mcr_masked_en(wal, GEN8_ROW_CHICKEN,
+ MDQ_ARBITRATION_MODE | UGM_BACKUP_MODE);
}
- if (IS_DG2_GRAPHICS_STEP(i915, G10, STEP_A0, STEP_B0)) {
+ if (IS_DG2_GRAPHICS_STEP(i915, G10, STEP_A0, STEP_B0))
/* Wa_22010430635:dg2 */
- wa_masked_en(wal,
- GEN9_ROW_CHICKEN4,
- GEN12_DISABLE_GRF_CLEAR);
-
- /* Wa_14010648519:dg2 */
- wa_write_or(wal, XEHP_L3NODEARBCFG, XEHP_LNESPARE);
- }
+ wa_mcr_masked_en(wal,
+ GEN9_ROW_CHICKEN4,
+ GEN12_DISABLE_GRF_CLEAR);
/* Wa_14013202645:dg2 */
if (IS_DG2_GRAPHICS_STEP(i915, G10, STEP_B0, STEP_C0) ||
IS_DG2_GRAPHICS_STEP(i915, G11, STEP_A0, STEP_B0))
- wa_write_or(wal, RT_CTRL, DIS_NULL_QUERY);
+ wa_mcr_write_or(wal, RT_CTRL, DIS_NULL_QUERY);
/* Wa_22012532006:dg2 */
if (IS_DG2_GRAPHICS_STEP(engine->i915, G10, STEP_A0, STEP_C0) ||
IS_DG2_GRAPHICS_STEP(engine->i915, G11, STEP_A0, STEP_B0))
- wa_masked_en(wal, GEN9_HALF_SLICE_CHICKEN7,
- DG2_DISABLE_ROUND_ENABLE_ALLOW_FOR_SSLA);
-
- if (IS_DG2_GRAPHICS_STEP(engine->i915, G10, STEP_A0, STEP_B0)) {
- /* Wa_14010680813:dg2_g10 */
- wa_write_or(wal, GEN12_GAMSTLB_CTRL, CONTROL_BLOCK_CLKGATE_DIS |
- EGRESS_BLOCK_CLKGATE_DIS | TAG_BLOCK_CLKGATE_DIS);
- }
-
- if (IS_DG2_GRAPHICS_STEP(engine->i915, G10, STEP_A0, STEP_B0) ||
- IS_DG2_GRAPHICS_STEP(engine->i915, G11, STEP_A0, STEP_B0)) {
- /* Wa_14012362059:dg2 */
- wa_write_or(wal, GEN12_MERT_MOD_CTRL, FORCE_MISS_FTLB);
- }
+ wa_mcr_masked_en(wal, GEN9_HALF_SLICE_CHICKEN7,
+ DG2_DISABLE_ROUND_ENABLE_ALLOW_FOR_SSLA);
if (IS_DG2_GRAPHICS_STEP(i915, G11, STEP_B0, STEP_FOREVER) ||
IS_DG2_G10(i915)) {
/* Wa_22014600077:dg2 */
- wa_add(wal, GEN10_CACHE_MODE_SS, 0,
- _MASKED_BIT_ENABLE(ENABLE_EU_COUNT_FOR_TDL_FLUSH),
- 0 /* Wa_14012342262 :write-only reg, so skip
- verification */,
- true);
- }
-
- if (IS_DG1_GRAPHICS_STEP(i915, STEP_A0, STEP_B0) ||
- IS_TGL_UY_GRAPHICS_STEP(i915, STEP_A0, STEP_B0)) {
- /*
- * Wa_1607138336:tgl[a0],dg1[a0]
- * Wa_1607063988:tgl[a0],dg1[a0]
- */
- wa_write_or(wal,
- GEN9_CTX_PREEMPT_REG,
- GEN12_DISABLE_POSH_BUSY_FF_DOP_CG);
- }
-
- if (IS_TGL_UY_GRAPHICS_STEP(i915, STEP_A0, STEP_B0)) {
- /*
- * Wa_1606679103:tgl
- * (see also Wa_1606682166:icl)
- */
- wa_write_or(wal,
- GEN7_SARCHKMD,
- GEN7_DISABLE_SAMPLER_PREFETCH);
+ wa_mcr_add(wal, GEN10_CACHE_MODE_SS, 0,
+ _MASKED_BIT_ENABLE(ENABLE_EU_COUNT_FOR_TDL_FLUSH),
+ 0 /* Wa_14012342262 write-only reg, so skip verification */,
+ true);
}
if (IS_ALDERLAKE_P(i915) || IS_ALDERLAKE_S(i915) || IS_DG1(i915) ||
IS_ROCKETLAKE(i915) || IS_TIGERLAKE(i915)) {
/* Wa_1606931601:tgl,rkl,dg1,adl-s,adl-p */
- wa_masked_en(wal, GEN7_ROW_CHICKEN2, GEN12_DISABLE_EARLY_READ);
+ wa_mcr_masked_en(wal, GEN8_ROW_CHICKEN2, GEN12_DISABLE_EARLY_READ);
/*
* Wa_1407928979:tgl A*
@@ -2279,30 +2504,22 @@ rcs_engine_wa_init(struct intel_engine_cs *engine, struct i915_wa_list *wal)
}
if (IS_ALDERLAKE_P(i915) || IS_ALDERLAKE_S(i915) ||
- IS_DG1_GRAPHICS_STEP(i915, STEP_A0, STEP_B0) ||
IS_ROCKETLAKE(i915) || IS_TIGERLAKE(i915)) {
- /* Wa_1409804808:tgl,rkl,dg1[a0],adl-s,adl-p */
- wa_masked_en(wal, GEN7_ROW_CHICKEN2,
- GEN12_PUSH_CONST_DEREF_HOLD_DIS);
+ /* Wa_1409804808 */
+ wa_mcr_masked_en(wal, GEN8_ROW_CHICKEN2,
+ GEN12_PUSH_CONST_DEREF_HOLD_DIS);
- /*
- * Wa_1409085225:tgl
- * Wa_14010229206:tgl,rkl,dg1[a0],adl-s,adl-p
- */
- wa_masked_en(wal, GEN9_ROW_CHICKEN4, GEN12_DISABLE_TDL_PUSH);
+ /* Wa_14010229206 */
+ wa_mcr_masked_en(wal, GEN9_ROW_CHICKEN4, GEN12_DISABLE_TDL_PUSH);
}
- if (IS_DG1_GRAPHICS_STEP(i915, STEP_A0, STEP_B0) ||
- IS_ROCKETLAKE(i915) || IS_TIGERLAKE(i915) || IS_ALDERLAKE_P(i915)) {
+ if (IS_ROCKETLAKE(i915) || IS_TIGERLAKE(i915) || IS_ALDERLAKE_P(i915)) {
/*
- * Wa_1607030317:tgl
- * Wa_1607186500:tgl
- * Wa_1607297627:tgl,rkl,dg1[a0],adlp
+ * Wa_1607297627
*
* On TGL and RKL there are multiple entries for this WA in the
* BSpec; some indicate this is an A0-only WA, others indicate
* it applies to all steppings so we trust the "all steppings."
- * For DG1 this only applies to A0.
*/
wa_masked_en(wal,
RING_PSMI_CTL(RENDER_RING_BASE),
@@ -2313,9 +2530,9 @@ rcs_engine_wa_init(struct intel_engine_cs *engine, struct i915_wa_list *wal)
if (IS_DG1(i915) || IS_ROCKETLAKE(i915) || IS_TIGERLAKE(i915) ||
IS_ALDERLAKE_S(i915) || IS_ALDERLAKE_P(i915)) {
/* Wa_1406941453:tgl,rkl,dg1,adl-s,adl-p */
- wa_masked_en(wal,
- GEN10_SAMPLER_MODE,
- ENABLE_SMALLPL);
+ wa_mcr_masked_en(wal,
+ GEN10_SAMPLER_MODE,
+ ENABLE_SMALLPL);
}
if (GRAPHICS_VER(i915) == 11) {
@@ -2349,9 +2566,9 @@ rcs_engine_wa_init(struct intel_engine_cs *engine, struct i915_wa_list *wal)
* Wa_1405733216:icl
* Formerly known as WaDisableCleanEvicts
*/
- wa_write_or(wal,
- GEN8_L3SQCREG4,
- GEN11_LQSC_CLEAN_EVICT_DISABLE);
+ wa_mcr_write_or(wal,
+ GEN8_L3SQCREG4,
+ GEN11_LQSC_CLEAN_EVICT_DISABLE);
/* Wa_1606682166:icl */
wa_write_or(wal,
@@ -2359,23 +2576,16 @@ rcs_engine_wa_init(struct intel_engine_cs *engine, struct i915_wa_list *wal)
GEN7_DISABLE_SAMPLER_PREFETCH);
/* Wa_1409178092:icl */
- wa_write_clr_set(wal,
- GEN11_SCRATCH2,
- GEN11_COHERENT_PARTIAL_WRITE_MERGE_ENABLE,
- 0);
+ wa_mcr_write_clr_set(wal,
+ GEN11_SCRATCH2,
+ GEN11_COHERENT_PARTIAL_WRITE_MERGE_ENABLE,
+ 0);
/* WaEnable32PlaneMode:icl */
wa_masked_en(wal, GEN9_CSFE_CHICKEN1_RCS,
GEN11_ENABLE_32_PLANE_MODE);
/*
- * Wa_1408615072:icl,ehl (vsunit)
- * Wa_1407596294:icl,ehl (hsunit)
- */
- wa_write_or(wal, UNSLICE_UNIT_LEVEL_CLKGATE,
- VSUNIT_CLKGATE_DIS | HSUNIT_CLKGATE_DIS);
-
- /*
* Wa_1408767742:icl[a2..forever],ehl[all]
* Wa_1605460711:icl[a0..c0]
*/
@@ -2389,12 +2599,64 @@ rcs_engine_wa_init(struct intel_engine_cs *engine, struct i915_wa_list *wal)
FF_DOP_CLOCK_GATE_DISABLE);
}
- if (IS_GRAPHICS_VER(i915, 9, 12)) {
- /* FtrPerCtxtPreemptionGranularityControl:skl,bxt,kbl,cfl,cnl,icl,tgl */
+ /*
+ * Intel platforms that support fine-grained preemption (i.e., gen9 and
+ * beyond) allow the kernel-mode driver to choose between two different
+ * options for controlling preemption granularity and behavior.
+ *
+ * Option 1 (hardware default):
+ * Preemption settings are controlled in a global manner via
+ * kernel-only register CS_DEBUG_MODE1 (0x20EC). Any granularity
+ * and settings chosen by the kernel-mode driver will apply to all
+ * userspace clients.
+ *
+ * Option 2:
+ * Preemption settings are controlled on a per-context basis via
+ * register CS_CHICKEN1 (0x2580). CS_CHICKEN1 is saved/restored on
+ * context switch and is writable by userspace (e.g., via
+ * MI_LOAD_REGISTER_IMMEDIATE instructions placed in a batch buffer)
+ * which allows different userspace drivers/clients to select
+ * different settings, or to change those settings on the fly in
+ * response to runtime needs. This option was known by name
+ * "FtrPerCtxtPreemptionGranularityControl" at one time, although
+ * that name is somewhat misleading as other non-granularity
+ * preemption settings are also impacted by this decision.
+ *
+ * On Linux, our policy has always been to let userspace drivers
+ * control preemption granularity/settings (Option 2). This was
+ * originally mandatory on gen9 to prevent ABI breakage (old gen9
+ * userspace developed before object-level preemption was enabled would
+ * not behave well if i915 were to go with Option 1 and enable that
+ * preemption in a global manner). On gen9 each context would have
+ * object-level preemption disabled by default (see
+ * WaDisable3DMidCmdPreemption in gen9_ctx_workarounds_init), but
+ * userspace drivers could opt-in to object-level preemption as they
+ * saw fit. For post-gen9 platforms, we continue to utilize Option 2;
+ * even though it is no longer necessary for ABI compatibility when
+ * enabling a new platform, it does ensure that userspace will be able
+ * to implement any workarounds that show up requiring temporary
+ * adjustments to preemption behavior at runtime.
+ *
+ * Notes/Workarounds:
+ * - Wa_14015141709: On DG2 and early steppings of MTL,
+ * CS_CHICKEN1[0] does not disable object-level preemption as
+ * it is supposed to (nor does CS_DEBUG_MODE1[0] if we had been
+ * using Option 1). Effectively this means userspace is unable
+ * to disable object-level preemption on these platforms/steppings
+ * despite the setting here.
+ *
+ * - Wa_16013994831: May require that userspace program
+ * CS_CHICKEN1[10] when certain runtime conditions are true.
+ * Userspace requires Option 2 to be in effect for their update of
+ * CS_CHICKEN1[10] to be effective.
+ *
+ * Other workarounds may appear in the future that will also require
+ * Option 2 behavior to allow proper userspace implementation.
+ */
+ if (GRAPHICS_VER(i915) >= 9)
wa_masked_en(wal,
GEN7_FF_SLICE_CS_CHICKEN1,
GEN9_FFSC_PERCTX_PREEMPT_CTRL);
- }
if (IS_SKYLAKE(i915) ||
IS_KABYLAKE(i915) ||
@@ -2420,36 +2682,36 @@ rcs_engine_wa_init(struct intel_engine_cs *engine, struct i915_wa_list *wal)
GEN9_PREEMPT_GPGPU_SYNC_SWITCH_DISABLE);
/* WaEnableLbsSlaRetryTimerDecrement:skl,bxt,kbl,glk,cfl */
- wa_write_or(wal,
- BDW_SCRATCH1,
- GEN9_LBS_SLA_RETRY_TIMER_DECREMENT_ENABLE);
+ wa_mcr_write_or(wal,
+ BDW_SCRATCH1,
+ GEN9_LBS_SLA_RETRY_TIMER_DECREMENT_ENABLE);
/* WaProgramL3SqcReg1DefaultForPerf:bxt,glk */
if (IS_GEN9_LP(i915))
- wa_write_clr_set(wal,
- GEN8_L3SQCREG1,
- L3_PRIO_CREDITS_MASK,
- L3_GENERAL_PRIO_CREDITS(62) |
- L3_HIGH_PRIO_CREDITS(2));
+ wa_mcr_write_clr_set(wal,
+ GEN8_L3SQCREG1,
+ L3_PRIO_CREDITS_MASK,
+ L3_GENERAL_PRIO_CREDITS(62) |
+ L3_HIGH_PRIO_CREDITS(2));
/* WaOCLCoherentLineFlush:skl,bxt,kbl,cfl */
- wa_write_or(wal,
- GEN8_L3SQCREG4,
- GEN8_LQSC_FLUSH_COHERENT_LINES);
+ wa_mcr_write_or(wal,
+ GEN8_L3SQCREG4,
+ GEN8_LQSC_FLUSH_COHERENT_LINES);
/* Disable atomics in L3 to prevent unrecoverable hangs */
wa_write_clr_set(wal, GEN9_SCRATCH_LNCF1,
GEN9_LNCF_NONIA_COHERENT_ATOMICS_ENABLE, 0);
- wa_write_clr_set(wal, GEN8_L3SQCREG4,
- GEN8_LQSQ_NONIA_COHERENT_ATOMICS_ENABLE, 0);
- wa_write_clr_set(wal, GEN9_SCRATCH1,
- EVICTION_PERF_FIX_ENABLE, 0);
+ wa_mcr_write_clr_set(wal, GEN8_L3SQCREG4,
+ GEN8_LQSQ_NONIA_COHERENT_ATOMICS_ENABLE, 0);
+ wa_mcr_write_clr_set(wal, GEN9_SCRATCH1,
+ EVICTION_PERF_FIX_ENABLE, 0);
}
if (IS_HASWELL(i915)) {
/* WaSampleCChickenBitEnable:hsw */
wa_masked_en(wal,
- HALF_SLICE_CHICKEN3, HSW_SAMPLE_C_PERFORMANCE);
+ HSW_HALF_SLICE_CHICKEN3, HSW_SAMPLE_C_PERFORMANCE);
wa_masked_dis(wal,
CACHE_MODE_0_GEN7,
@@ -2657,7 +2919,7 @@ ccs_engine_wa_init(struct intel_engine_cs *engine, struct i915_wa_list *wal)
{
if (IS_PVC_CT_STEP(engine->i915, STEP_A0, STEP_C0)) {
/* Wa_14014999345:pvc */
- wa_masked_en(wal, GEN10_CACHE_MODE_SS, DISABLE_ECC);
+ wa_mcr_masked_en(wal, GEN10_CACHE_MODE_SS, DISABLE_ECC);
}
}
@@ -2677,29 +2939,8 @@ static void
add_render_compute_tuning_settings(struct drm_i915_private *i915,
struct i915_wa_list *wal)
{
- if (IS_PONTEVECCHIO(i915)) {
- wa_write(wal, XEHPC_L3SCRUB,
- SCRUB_CL_DWNGRADE_SHARED | SCRUB_RATE_4B_PER_CLK);
- }
-
- if (IS_DG2(i915)) {
- wa_write_or(wal, XEHP_L3SCQREG7, BLEND_FILL_CACHING_OPT_DIS);
- wa_write_clr_set(wal, RT_CTRL, STACKID_CTRL, STACKID_CTRL_512);
-
- /*
- * This is also listed as Wa_22012654132 for certain DG2
- * steppings, but the tuning setting programming is a superset
- * since it applies to all DG2 variants and steppings.
- *
- * Note that register 0xE420 is write-only and cannot be read
- * back for verification on DG2 (due to Wa_14012342262), so
- * we need to explicitly skip the readback.
- */
- wa_add(wal, GEN10_CACHE_MODE_SS, 0,
- _MASKED_BIT_ENABLE(ENABLE_PREFETCH_INTO_IC),
- 0 /* write-only, so skip validation */,
- true);
- }
+ if (IS_DG2(i915))
+ wa_mcr_write_clr_set(wal, RT_CTRL, STACKID_CTRL, STACKID_CTRL_512);
/*
* This tuning setting proves beneficial only on ATS-M designs; the
@@ -2707,8 +2948,11 @@ add_render_compute_tuning_settings(struct drm_i915_private *i915,
* platforms.
*/
if (INTEL_INFO(i915)->tuning_thread_rr_after_dep)
- wa_masked_field_set(wal, GEN9_ROW_CHICKEN4, THREAD_EX_ARB_MODE,
- THREAD_EX_ARB_MODE_RR_AFTER_DEP);
+ wa_mcr_masked_field_set(wal, GEN9_ROW_CHICKEN4, THREAD_EX_ARB_MODE,
+ THREAD_EX_ARB_MODE_RR_AFTER_DEP);
+
+ if (GRAPHICS_VER(i915) == 12 && GRAPHICS_VER_FULL(i915) < IP_VER(12, 50))
+ wa_write_clr(wal, GEN8_GARBCNTL, GEN12_BUS_HASH_CTL_BIT_EXC);
}
/*
@@ -2727,65 +2971,145 @@ general_render_compute_wa_init(struct intel_engine_cs *engine, struct i915_wa_li
add_render_compute_tuning_settings(i915, wal);
- if (IS_PONTEVECCHIO(i915)) {
- /* Wa_16016694945 */
- wa_masked_en(wal, XEHPC_LNCFMISCCFGREG0, XEHPC_OVRLSCCC);
+ if (GRAPHICS_VER(i915) >= 11) {
+ /* This is not a Wa (although referred to as
+ * WaSetInidrectStateOverride in places), this allows
+ * applications that reference sampler states through
+ * the BindlessSamplerStateBaseAddress to have their
+ * border color relative to DynamicStateBaseAddress
+ * rather than BindlessSamplerStateBaseAddress.
+ *
+ * Otherwise SAMPLER_STATE border colors have to be
+ * copied in multiple heaps (DynamicStateBaseAddress &
+ * BindlessSamplerStateBaseAddress)
+ *
+ * BSpec: 46052
+ */
+ wa_mcr_masked_en(wal,
+ GEN10_SAMPLER_MODE,
+ GEN11_INDIRECT_STATE_BASE_ADDR_OVERRIDE);
}
- if (IS_XEHPSDV(i915)) {
- /* Wa_1409954639 */
- wa_masked_en(wal,
- GEN8_ROW_CHICKEN,
- SYSTOLIC_DOP_CLOCK_GATING_DIS);
+ if (IS_MTL_GRAPHICS_STEP(i915, M, STEP_B0, STEP_FOREVER) ||
+ IS_MTL_GRAPHICS_STEP(i915, P, STEP_B0, STEP_FOREVER))
+ /* Wa_14017856879 */
+ wa_mcr_masked_en(wal, GEN9_ROW_CHICKEN3, MTL_DISABLE_FIX_FOR_EOT_FLUSH);
- /* Wa_1607196519 */
- wa_masked_en(wal,
- GEN9_ROW_CHICKEN4,
- GEN12_DISABLE_GRF_CLEAR);
+ if (IS_MTL_GRAPHICS_STEP(i915, M, STEP_A0, STEP_B0) ||
+ IS_MTL_GRAPHICS_STEP(i915, P, STEP_A0, STEP_B0))
+ /*
+ * Wa_14017066071
+ * Wa_14017654203
+ */
+ wa_mcr_masked_en(wal, GEN10_SAMPLER_MODE,
+ MTL_DISABLE_SAMPLER_SC_OOO);
- /* Wa_14010670810:xehpsdv */
- wa_write_or(wal, XEHP_L3NODEARBCFG, XEHP_LNESPARE);
+ if (IS_MTL_GRAPHICS_STEP(i915, P, STEP_A0, STEP_B0))
+ /* Wa_22015279794 */
+ wa_mcr_masked_en(wal, GEN10_CACHE_MODE_SS,
+ DISABLE_PREFETCH_INTO_IC);
- /* Wa_14010449647:xehpsdv */
- wa_masked_en(wal, GEN7_HALF_SLICE_CHICKEN1,
- GEN7_PSD_SINGLE_PORT_DISPATCH_ENABLE);
+ if (IS_MTL_GRAPHICS_STEP(i915, M, STEP_A0, STEP_B0) ||
+ IS_MTL_GRAPHICS_STEP(i915, P, STEP_A0, STEP_B0) ||
+ IS_DG2_GRAPHICS_STEP(i915, G10, STEP_B0, STEP_FOREVER) ||
+ IS_DG2_G11(i915) || IS_DG2_G12(i915)) {
+ /* Wa_22013037850 */
+ wa_mcr_write_or(wal, LSC_CHICKEN_BIT_0_UDW,
+ DISABLE_128B_EVICTION_COMMAND_UDW);
+ }
- /* Wa_18011725039:xehpsdv */
- if (IS_XEHPSDV_GRAPHICS_STEP(i915, STEP_A1, STEP_B0)) {
- wa_masked_dis(wal, MLTICTXCTL, TDONRENDER);
- wa_write_or(wal, L3SQCREG1_CCS0, FLUSHALLNONCOH);
- }
+ if (IS_MTL_GRAPHICS_STEP(i915, M, STEP_A0, STEP_B0) ||
+ IS_MTL_GRAPHICS_STEP(i915, P, STEP_A0, STEP_B0) ||
+ IS_PONTEVECCHIO(i915) ||
+ IS_DG2(i915)) {
+ /* Wa_22014226127 */
+ wa_mcr_write_or(wal, LSC_CHICKEN_BIT_0, DISABLE_D8_D16_COASLESCE);
+ }
+
+ if (IS_MTL_GRAPHICS_STEP(i915, M, STEP_A0, STEP_B0) ||
+ IS_MTL_GRAPHICS_STEP(i915, P, STEP_A0, STEP_B0) ||
+ IS_DG2(i915)) {
+ /* Wa_18017747507 */
+ wa_masked_en(wal, VFG_PREEMPTION_CHICKEN, POLYGON_TRIFAN_LINELOOP_DISABLE);
+ }
+
+ if (IS_DG2_GRAPHICS_STEP(i915, G10, STEP_B0, STEP_C0) ||
+ IS_DG2_G11(i915)) {
+ /*
+ * Wa_22012826095:dg2
+ * Wa_22013059131:dg2
+ */
+ wa_mcr_write_clr_set(wal, LSC_CHICKEN_BIT_0_UDW,
+ MAXREQS_PER_BANK,
+ REG_FIELD_PREP(MAXREQS_PER_BANK, 2));
+
+ /* Wa_22013059131:dg2 */
+ wa_mcr_write_or(wal, LSC_CHICKEN_BIT_0,
+ FORCE_1_SUB_MESSAGE_PER_FRAGMENT);
+ }
+
+ if (IS_DG2_GRAPHICS_STEP(i915, G10, STEP_A0, STEP_B0)) {
+ /*
+ * Wa_14010918519:dg2_g10
+ *
+ * LSC_CHICKEN_BIT_0 always reads back as 0 is this stepping,
+ * so ignoring verification.
+ */
+ wa_mcr_add(wal, LSC_CHICKEN_BIT_0_UDW, 0,
+ FORCE_SLM_FENCE_SCOPE_TO_TILE | FORCE_UGM_FENCE_SCOPE_TO_TILE,
+ 0, false);
+ }
- /* Wa_14012362059:xehpsdv */
- wa_write_or(wal, GEN12_MERT_MOD_CTRL, FORCE_MISS_FTLB);
+ if (IS_XEHPSDV(i915)) {
+ /* Wa_1409954639 */
+ wa_mcr_masked_en(wal,
+ GEN8_ROW_CHICKEN,
+ SYSTOLIC_DOP_CLOCK_GATING_DIS);
+
+ /* Wa_1607196519 */
+ wa_mcr_masked_en(wal,
+ GEN9_ROW_CHICKEN4,
+ GEN12_DISABLE_GRF_CLEAR);
- /* Wa_14014368820:xehpsdv */
- wa_write_or(wal, GEN12_GAMCNTRL_CTRL, INVALIDATION_BROADCAST_MODE_DIS |
- GLOBAL_INVALIDATION_MODE);
+ /* Wa_14010449647:xehpsdv */
+ wa_mcr_masked_en(wal, GEN8_HALF_SLICE_CHICKEN1,
+ GEN7_PSD_SINGLE_PORT_DISPATCH_ENABLE);
}
if (IS_DG2(i915) || IS_PONTEVECCHIO(i915)) {
/* Wa_14015227452:dg2,pvc */
- wa_masked_en(wal, GEN9_ROW_CHICKEN4, XEHP_DIS_BBL_SYSPIPE);
-
- /* Wa_22014226127:dg2,pvc */
- wa_write_or(wal, LSC_CHICKEN_BIT_0, DISABLE_D8_D16_COASLESCE);
+ wa_mcr_masked_en(wal, GEN9_ROW_CHICKEN4, XEHP_DIS_BBL_SYSPIPE);
/* Wa_16015675438:dg2,pvc */
wa_masked_en(wal, FF_SLICE_CS_CHICKEN2, GEN12_PERF_FIX_BALANCING_CFE_DISABLE);
+ }
- /* Wa_18018781329:dg2,pvc */
- wa_write_or(wal, RENDER_MOD_CTRL, FORCE_MISS_FTLB);
- wa_write_or(wal, COMP_MOD_CTRL, FORCE_MISS_FTLB);
- wa_write_or(wal, VDBX_MOD_CTRL, FORCE_MISS_FTLB);
- wa_write_or(wal, VEBX_MOD_CTRL, FORCE_MISS_FTLB);
+ if (IS_DG2(i915)) {
+ /*
+ * Wa_16011620976:dg2_g11
+ * Wa_22015475538:dg2
+ */
+ wa_mcr_write_or(wal, LSC_CHICKEN_BIT_0_UDW, DIS_CHAIN_2XSIMD8);
}
+
+ if (IS_DG2_GRAPHICS_STEP(i915, G10, STEP_A0, STEP_C0) || IS_DG2_G11(i915))
+ /*
+ * Wa_22012654132
+ *
+ * Note that register 0xE420 is write-only and cannot be read
+ * back for verification on DG2 (due to Wa_14012342262), so
+ * we need to explicitly skip the readback.
+ */
+ wa_mcr_add(wal, GEN10_CACHE_MODE_SS, 0,
+ _MASKED_BIT_ENABLE(ENABLE_PREFETCH_INTO_IC),
+ 0 /* write-only, so skip validation */,
+ true);
}
static void
engine_init_workarounds(struct intel_engine_cs *engine, struct i915_wa_list *wal)
{
- if (I915_SELFTEST_ONLY(GRAPHICS_VER(engine->i915) < 4))
+ if (GRAPHICS_VER(engine->i915) < 4)
return;
engine_fake_wa_init(engine, wal);
@@ -2810,17 +3134,14 @@ void intel_engine_init_workarounds(struct intel_engine_cs *engine)
{
struct i915_wa_list *wal = &engine->wa_list;
- if (GRAPHICS_VER(engine->i915) < 4)
- return;
-
- wa_init_start(wal, "engine", engine->name);
+ wa_init_start(wal, engine->gt, "engine", engine->name);
engine_init_workarounds(engine, wal);
wa_init_finish(wal);
}
void intel_engine_apply_workarounds(struct intel_engine_cs *engine)
{
- wa_list_apply(engine->gt, &engine->wa_list);
+ wa_list_apply(&engine->wa_list);
}
static const struct i915_range mcr_ranges_gen8[] = {
@@ -2964,9 +3285,7 @@ retry:
goto err_vma;
}
- err = i915_request_await_object(rq, vma->obj, true);
- if (err == 0)
- err = i915_vma_move_to_active(vma, rq, EXEC_OBJECT_WRITE);
+ err = i915_vma_move_to_active(vma, rq, EXEC_OBJECT_WRITE);
if (err == 0)
err = wa_list_srm(rq, wal, vma);
@@ -2994,7 +3313,7 @@ retry:
if (mcr_range(rq->engine->i915, i915_mmio_reg_offset(wa->reg)))
continue;
- if (!wa_verify(wa, results[i], wal->name, from))
+ if (!wa_verify(wal->gt, wa, results[i], wal->name, from))
err = -ENXIO;
}
diff --git a/drivers/gpu/drm/i915/gt/intel_workarounds_types.h b/drivers/gpu/drm/i915/gt/intel_workarounds_types.h
index 8a4b6de4e754..e14188120e66 100644
--- a/drivers/gpu/drm/i915/gt/intel_workarounds_types.h
+++ b/drivers/gpu/drm/i915/gt/intel_workarounds_types.h
@@ -10,15 +10,23 @@
#include "i915_reg_defs.h"
+struct intel_gt;
+
struct i915_wa {
- i915_reg_t reg;
+ union {
+ i915_reg_t reg;
+ i915_mcr_reg_t mcr_reg;
+ };
u32 clr;
u32 set;
u32 read;
- bool masked_reg;
+
+ u32 masked_reg:1;
+ u32 is_mcr:1;
};
struct i915_wa_list {
+ struct intel_gt *gt;
const char *name;
const char *engine_name;
struct i915_wa *list;
diff --git a/drivers/gpu/drm/i915/gt/selftest_engine_cs.c b/drivers/gpu/drm/i915/gt/selftest_engine_cs.c
index 1b75f478d1b8..542ce6d2de19 100644
--- a/drivers/gpu/drm/i915/gt/selftest_engine_cs.c
+++ b/drivers/gpu/drm/i915/gt/selftest_engine_cs.c
@@ -39,6 +39,16 @@ static int perf_end(struct intel_gt *gt)
return igt_flush_test(gt->i915);
}
+static i915_reg_t timestamp_reg(struct intel_engine_cs *engine)
+{
+ struct drm_i915_private *i915 = engine->i915;
+
+ if (GRAPHICS_VER(i915) == 5 || IS_G4X(i915))
+ return RING_TIMESTAMP_UDW(engine->mmio_base);
+ else
+ return RING_TIMESTAMP(engine->mmio_base);
+}
+
static int write_timestamp(struct i915_request *rq, int slot)
{
struct intel_timeline *tl =
@@ -55,7 +65,7 @@ static int write_timestamp(struct i915_request *rq, int slot)
if (GRAPHICS_VER(rq->engine->i915) >= 8)
cmd++;
*cs++ = cmd;
- *cs++ = i915_mmio_reg_offset(RING_TIMESTAMP(rq->engine->mmio_base));
+ *cs++ = i915_mmio_reg_offset(timestamp_reg(rq->engine));
*cs++ = tl->hwsp_offset + slot * sizeof(u32);
*cs++ = 0;
@@ -125,7 +135,7 @@ static int perf_mi_bb_start(void *arg)
enum intel_engine_id id;
int err = 0;
- if (GRAPHICS_VER(gt->i915) < 7) /* for per-engine CS_TIMESTAMP */
+ if (GRAPHICS_VER(gt->i915) < 4) /* Any CS_TIMESTAMP? */
return 0;
perf_begin(gt);
@@ -135,6 +145,9 @@ static int perf_mi_bb_start(void *arg)
u32 cycles[COUNT];
int i;
+ if (GRAPHICS_VER(engine->i915) < 7 && engine->id != RCS0)
+ continue;
+
intel_engine_pm_get(engine);
batch = create_empty_batch(ce);
@@ -165,7 +178,7 @@ static int perf_mi_bb_start(void *arg)
goto out;
err = rq->engine->emit_bb_start(rq,
- batch->node.start, 8,
+ i915_vma_offset(batch), 8,
0);
if (err)
goto out;
@@ -249,7 +262,7 @@ static int perf_mi_noop(void *arg)
enum intel_engine_id id;
int err = 0;
- if (GRAPHICS_VER(gt->i915) < 7) /* for per-engine CS_TIMESTAMP */
+ if (GRAPHICS_VER(gt->i915) < 4) /* Any CS_TIMESTAMP? */
return 0;
perf_begin(gt);
@@ -259,6 +272,9 @@ static int perf_mi_noop(void *arg)
u32 cycles[COUNT];
int i;
+ if (GRAPHICS_VER(engine->i915) < 7 && engine->id != RCS0)
+ continue;
+
intel_engine_pm_get(engine);
base = create_empty_batch(ce);
@@ -305,7 +321,7 @@ static int perf_mi_noop(void *arg)
goto out;
err = rq->engine->emit_bb_start(rq,
- base->node.start, 8,
+ i915_vma_offset(base), 8,
0);
if (err)
goto out;
@@ -315,8 +331,8 @@ static int perf_mi_noop(void *arg)
goto out;
err = rq->engine->emit_bb_start(rq,
- nop->node.start,
- nop->node.size,
+ i915_vma_offset(nop),
+ i915_vma_size(nop),
0);
if (err)
goto out;
diff --git a/drivers/gpu/drm/i915/gt/selftest_engine_pm.c b/drivers/gpu/drm/i915/gt/selftest_engine_pm.c
index 0dcb3ed44a73..87c94314cf67 100644
--- a/drivers/gpu/drm/i915/gt/selftest_engine_pm.c
+++ b/drivers/gpu/drm/i915/gt/selftest_engine_pm.c
@@ -317,7 +317,7 @@ static int live_engine_busy_stats(void *arg)
ENGINE_TRACE(engine, "measuring busy time\n");
preempt_disable();
de = intel_engine_get_busy_time(engine, &t[0]);
- mdelay(10);
+ mdelay(100);
de = ktime_sub(intel_engine_get_busy_time(engine, &t[1]), de);
preempt_enable();
dt = ktime_sub(t[1], t[0]);
diff --git a/drivers/gpu/drm/i915/gt/selftest_execlists.c b/drivers/gpu/drm/i915/gt/selftest_execlists.c
index 1e08b2473b99..736b89a8ecf5 100644
--- a/drivers/gpu/drm/i915/gt/selftest_execlists.c
+++ b/drivers/gpu/drm/i915/gt/selftest_execlists.c
@@ -85,8 +85,6 @@ static int wait_for_reset(struct intel_engine_cs *engine,
break;
} while (time_before(jiffies, timeout));
- flush_scheduled_work();
-
if (rq->fence.error != -EIO) {
pr_err("%s: hanging request %llx:%lld not reset\n",
engine->name,
@@ -2739,11 +2737,11 @@ static int create_gang(struct intel_engine_cs *engine,
MI_SEMAPHORE_POLL |
MI_SEMAPHORE_SAD_EQ_SDD;
*cs++ = 0;
- *cs++ = lower_32_bits(vma->node.start);
- *cs++ = upper_32_bits(vma->node.start);
+ *cs++ = lower_32_bits(i915_vma_offset(vma));
+ *cs++ = upper_32_bits(i915_vma_offset(vma));
if (*prev) {
- u64 offset = (*prev)->batch->node.start;
+ u64 offset = i915_vma_offset((*prev)->batch);
/* Terminate the spinner in the next lower priority batch. */
*cs++ = MI_STORE_DWORD_IMM_GEN4;
@@ -2765,15 +2763,11 @@ static int create_gang(struct intel_engine_cs *engine,
rq->batch = i915_vma_get(vma);
i915_request_get(rq);
- i915_vma_lock(vma);
- err = i915_request_await_object(rq, vma->obj, false);
- if (!err)
- err = i915_vma_move_to_active(vma, rq, 0);
+ err = igt_vma_move_to_active_unlocked(vma, rq, 0);
if (!err)
err = rq->engine->emit_bb_start(rq,
- vma->node.start,
+ i915_vma_offset(vma),
PAGE_SIZE, 0);
- i915_vma_unlock(vma);
i915_request_add(rq);
if (err)
goto err_rq;
@@ -3099,7 +3093,7 @@ create_gpr_user(struct intel_engine_cs *engine,
*cs++ = MI_MATH_ADD;
*cs++ = MI_MATH_STORE(MI_MATH_REG(i), MI_MATH_REG_ACCU);
- addr = result->node.start + offset + i * sizeof(*cs);
+ addr = i915_vma_offset(result) + offset + i * sizeof(*cs);
*cs++ = MI_STORE_REGISTER_MEM_GEN8;
*cs++ = CS_GPR(engine, 2 * i);
*cs++ = lower_32_bits(addr);
@@ -3109,8 +3103,8 @@ create_gpr_user(struct intel_engine_cs *engine,
MI_SEMAPHORE_POLL |
MI_SEMAPHORE_SAD_GTE_SDD;
*cs++ = i;
- *cs++ = lower_32_bits(result->node.start);
- *cs++ = upper_32_bits(result->node.start);
+ *cs++ = lower_32_bits(i915_vma_offset(result));
+ *cs++ = upper_32_bits(i915_vma_offset(result));
}
*cs++ = MI_BATCH_BUFFER_END;
@@ -3181,20 +3175,14 @@ create_gpr_client(struct intel_engine_cs *engine,
goto out_batch;
}
- i915_vma_lock(vma);
- err = i915_request_await_object(rq, vma->obj, false);
- if (!err)
- err = i915_vma_move_to_active(vma, rq, 0);
- i915_vma_unlock(vma);
+ err = igt_vma_move_to_active_unlocked(vma, rq, 0);
i915_vma_lock(batch);
if (!err)
- err = i915_request_await_object(rq, batch->obj, false);
- if (!err)
err = i915_vma_move_to_active(batch, rq, 0);
if (!err)
err = rq->engine->emit_bb_start(rq,
- batch->node.start,
+ i915_vma_offset(batch),
PAGE_SIZE, 0);
i915_vma_unlock(batch);
i915_vma_unpin(batch);
@@ -3475,12 +3463,14 @@ static int random_priority(struct rnd_state *rnd)
struct preempt_smoke {
struct intel_gt *gt;
+ struct kthread_work work;
struct i915_gem_context **contexts;
struct intel_engine_cs *engine;
struct drm_i915_gem_object *batch;
unsigned int ncontext;
struct rnd_state prng;
unsigned long count;
+ int result;
};
static struct i915_gem_context *smoke_context(struct preempt_smoke *smoke)
@@ -3520,15 +3510,11 @@ static int smoke_submit(struct preempt_smoke *smoke,
}
if (vma) {
- i915_vma_lock(vma);
- err = i915_request_await_object(rq, vma->obj, false);
- if (!err)
- err = i915_vma_move_to_active(vma, rq, 0);
+ err = igt_vma_move_to_active_unlocked(vma, rq, 0);
if (!err)
err = rq->engine->emit_bb_start(rq,
- vma->node.start,
+ i915_vma_offset(vma),
PAGE_SIZE, 0);
- i915_vma_unlock(vma);
}
i915_request_add(rq);
@@ -3540,34 +3526,31 @@ unpin:
return err;
}
-static int smoke_crescendo_thread(void *arg)
+static void smoke_crescendo_work(struct kthread_work *work)
{
- struct preempt_smoke *smoke = arg;
+ struct preempt_smoke *smoke = container_of(work, typeof(*smoke), work);
IGT_TIMEOUT(end_time);
unsigned long count;
count = 0;
do {
struct i915_gem_context *ctx = smoke_context(smoke);
- int err;
- err = smoke_submit(smoke,
- ctx, count % I915_PRIORITY_MAX,
- smoke->batch);
- if (err)
- return err;
+ smoke->result = smoke_submit(smoke, ctx,
+ count % I915_PRIORITY_MAX,
+ smoke->batch);
count++;
- } while (count < smoke->ncontext && !__igt_timeout(end_time, NULL));
+ } while (!smoke->result && count < smoke->ncontext &&
+ !__igt_timeout(end_time, NULL));
smoke->count = count;
- return 0;
}
static int smoke_crescendo(struct preempt_smoke *smoke, unsigned int flags)
#define BATCH BIT(0)
{
- struct task_struct *tsk[I915_NUM_ENGINES] = {};
+ struct kthread_worker *worker[I915_NUM_ENGINES] = {};
struct preempt_smoke *arg;
struct intel_engine_cs *engine;
enum intel_engine_id id;
@@ -3578,6 +3561,8 @@ static int smoke_crescendo(struct preempt_smoke *smoke, unsigned int flags)
if (!arg)
return -ENOMEM;
+ memset(arg, 0, I915_NUM_ENGINES * sizeof(*arg));
+
for_each_engine(engine, smoke->gt, id) {
arg[id] = *smoke;
arg[id].engine = engine;
@@ -3585,31 +3570,28 @@ static int smoke_crescendo(struct preempt_smoke *smoke, unsigned int flags)
arg[id].batch = NULL;
arg[id].count = 0;
- tsk[id] = kthread_run(smoke_crescendo_thread, arg,
- "igt/smoke:%d", id);
- if (IS_ERR(tsk[id])) {
- err = PTR_ERR(tsk[id]);
+ worker[id] = kthread_create_worker(0, "igt/smoke:%d", id);
+ if (IS_ERR(worker[id])) {
+ err = PTR_ERR(worker[id]);
break;
}
- get_task_struct(tsk[id]);
- }
- yield(); /* start all threads before we kthread_stop() */
+ kthread_init_work(&arg[id].work, smoke_crescendo_work);
+ kthread_queue_work(worker[id], &arg[id].work);
+ }
count = 0;
for_each_engine(engine, smoke->gt, id) {
- int status;
-
- if (IS_ERR_OR_NULL(tsk[id]))
+ if (IS_ERR_OR_NULL(worker[id]))
continue;
- status = kthread_stop(tsk[id]);
- if (status && !err)
- err = status;
+ kthread_flush_work(&arg[id].work);
+ if (arg[id].result && !err)
+ err = arg[id].result;
count += arg[id].count;
- put_task_struct(tsk[id]);
+ kthread_destroy_worker(worker[id]);
}
pr_info("Submitted %lu crescendo:%x requests across %d engines and %d contexts\n",
diff --git a/drivers/gpu/drm/i915/gt/selftest_gt_pm.c b/drivers/gpu/drm/i915/gt/selftest_gt_pm.c
index be94f863bdef..0971241707ce 100644
--- a/drivers/gpu/drm/i915/gt/selftest_gt_pm.c
+++ b/drivers/gpu/drm/i915/gt/selftest_gt_pm.c
@@ -36,6 +36,19 @@ static int cmp_u32(const void *A, const void *B)
return 0;
}
+static u32 read_timestamp(struct intel_engine_cs *engine)
+{
+ struct drm_i915_private *i915 = engine->i915;
+
+ /* On i965 the first read tends to give a stale value */
+ ENGINE_READ_FW(engine, RING_TIMESTAMP);
+
+ if (GRAPHICS_VER(i915) == 5 || IS_G4X(i915))
+ return ENGINE_READ_FW(engine, RING_TIMESTAMP_UDW);
+ else
+ return ENGINE_READ_FW(engine, RING_TIMESTAMP);
+}
+
static void measure_clocks(struct intel_engine_cs *engine,
u32 *out_cycles, ktime_t *out_dt)
{
@@ -45,13 +58,13 @@ static void measure_clocks(struct intel_engine_cs *engine,
for (i = 0; i < 5; i++) {
local_irq_disable();
- cycles[i] = -ENGINE_READ_FW(engine, RING_TIMESTAMP);
+ cycles[i] = -read_timestamp(engine);
dt[i] = ktime_get();
udelay(1000);
+ cycles[i] += read_timestamp(engine);
dt[i] = ktime_sub(ktime_get(), dt[i]);
- cycles[i] += ENGINE_READ_FW(engine, RING_TIMESTAMP);
local_irq_enable();
}
@@ -78,25 +91,6 @@ static int live_gt_clocks(void *arg)
if (GRAPHICS_VER(gt->i915) < 4) /* Any CS_TIMESTAMP? */
return 0;
- if (GRAPHICS_VER(gt->i915) == 5)
- /*
- * XXX CS_TIMESTAMP low dword is dysfunctional?
- *
- * Ville's experiments indicate the high dword still works,
- * but at a correspondingly reduced frequency.
- */
- return 0;
-
- if (GRAPHICS_VER(gt->i915) == 4)
- /*
- * XXX CS_TIMESTAMP appears gibberish
- *
- * Ville's experiments indicate that it mostly appears 'stuck'
- * in that we see the register report the same cycle count
- * for a couple of reads.
- */
- return 0;
-
intel_gt_pm_get(gt);
intel_uncore_forcewake_get(gt->uncore, FORCEWAKE_ALL);
diff --git a/drivers/gpu/drm/i915/gt/selftest_hangcheck.c b/drivers/gpu/drm/i915/gt/selftest_hangcheck.c
index 7f3bb1d34dfb..8b0d84f2aad2 100644
--- a/drivers/gpu/drm/i915/gt/selftest_hangcheck.c
+++ b/drivers/gpu/drm/i915/gt/selftest_hangcheck.c
@@ -96,23 +96,8 @@ err_ctx:
static u64 hws_address(const struct i915_vma *hws,
const struct i915_request *rq)
{
- return hws->node.start + offset_in_page(sizeof(u32)*rq->fence.context);
-}
-
-static int move_to_active(struct i915_vma *vma,
- struct i915_request *rq,
- unsigned int flags)
-{
- int err;
-
- i915_vma_lock(vma);
- err = i915_request_await_object(rq, vma->obj,
- flags & EXEC_OBJECT_WRITE);
- if (err == 0)
- err = i915_vma_move_to_active(vma, rq, flags);
- i915_vma_unlock(vma);
-
- return err;
+ return i915_vma_offset(hws) +
+ offset_in_page(sizeof(u32) * rq->fence.context);
}
static struct i915_request *
@@ -175,11 +160,11 @@ hang_create_request(struct hang *h, struct intel_engine_cs *engine)
goto unpin_hws;
}
- err = move_to_active(vma, rq, 0);
+ err = igt_vma_move_to_active_unlocked(vma, rq, 0);
if (err)
goto cancel_rq;
- err = move_to_active(hws, rq, 0);
+ err = igt_vma_move_to_active_unlocked(hws, rq, 0);
if (err)
goto cancel_rq;
@@ -196,8 +181,8 @@ hang_create_request(struct hang *h, struct intel_engine_cs *engine)
*batch++ = MI_NOOP;
*batch++ = MI_BATCH_BUFFER_START | 1 << 8 | 1;
- *batch++ = lower_32_bits(vma->node.start);
- *batch++ = upper_32_bits(vma->node.start);
+ *batch++ = lower_32_bits(i915_vma_offset(vma));
+ *batch++ = upper_32_bits(i915_vma_offset(vma));
} else if (GRAPHICS_VER(gt->i915) >= 6) {
*batch++ = MI_STORE_DWORD_IMM_GEN4;
*batch++ = 0;
@@ -210,7 +195,7 @@ hang_create_request(struct hang *h, struct intel_engine_cs *engine)
*batch++ = MI_NOOP;
*batch++ = MI_BATCH_BUFFER_START | 1 << 8;
- *batch++ = lower_32_bits(vma->node.start);
+ *batch++ = lower_32_bits(i915_vma_offset(vma));
} else if (GRAPHICS_VER(gt->i915) >= 4) {
*batch++ = MI_STORE_DWORD_IMM_GEN4 | MI_USE_GGTT;
*batch++ = 0;
@@ -223,7 +208,7 @@ hang_create_request(struct hang *h, struct intel_engine_cs *engine)
*batch++ = MI_NOOP;
*batch++ = MI_BATCH_BUFFER_START | 2 << 6;
- *batch++ = lower_32_bits(vma->node.start);
+ *batch++ = lower_32_bits(i915_vma_offset(vma));
} else {
*batch++ = MI_STORE_DWORD_IMM | MI_MEM_VIRTUAL;
*batch++ = lower_32_bits(hws_address(hws, rq));
@@ -235,7 +220,7 @@ hang_create_request(struct hang *h, struct intel_engine_cs *engine)
*batch++ = MI_NOOP;
*batch++ = MI_BATCH_BUFFER_START | 2 << 6;
- *batch++ = lower_32_bits(vma->node.start);
+ *batch++ = lower_32_bits(i915_vma_offset(vma));
}
*batch++ = MI_BATCH_BUFFER_END; /* not reached */
intel_gt_chipset_flush(engine->gt);
@@ -250,7 +235,7 @@ hang_create_request(struct hang *h, struct intel_engine_cs *engine)
if (GRAPHICS_VER(gt->i915) <= 5)
flags |= I915_DISPATCH_SECURE;
- err = rq->engine->emit_bb_start(rq, vma->node.start, PAGE_SIZE, flags);
+ err = rq->engine->emit_bb_start(rq, i915_vma_offset(vma), PAGE_SIZE, flags);
cancel_rq:
if (err) {
@@ -866,10 +851,13 @@ static int igt_reset_active_engine(void *arg)
}
struct active_engine {
- struct task_struct *task;
+ struct kthread_worker *worker;
+ struct kthread_work work;
struct intel_engine_cs *engine;
unsigned long resets;
unsigned int flags;
+ bool stop;
+ int result;
};
#define TEST_ACTIVE BIT(0)
@@ -900,10 +888,10 @@ static int active_request_put(struct i915_request *rq)
return err;
}
-static int active_engine(void *data)
+static void active_engine(struct kthread_work *work)
{
I915_RND_STATE(prng);
- struct active_engine *arg = data;
+ struct active_engine *arg = container_of(work, typeof(*arg), work);
struct intel_engine_cs *engine = arg->engine;
struct i915_request *rq[8] = {};
struct intel_context *ce[ARRAY_SIZE(rq)];
@@ -913,16 +901,17 @@ static int active_engine(void *data)
for (count = 0; count < ARRAY_SIZE(ce); count++) {
ce[count] = intel_context_create(engine);
if (IS_ERR(ce[count])) {
- err = PTR_ERR(ce[count]);
- pr_err("[%s] Create context #%ld failed: %d!\n", engine->name, count, err);
+ arg->result = PTR_ERR(ce[count]);
+ pr_err("[%s] Create context #%ld failed: %d!\n",
+ engine->name, count, arg->result);
while (--count)
intel_context_put(ce[count]);
- return err;
+ return;
}
}
count = 0;
- while (!kthread_should_stop()) {
+ while (!READ_ONCE(arg->stop)) {
unsigned int idx = count++ & (ARRAY_SIZE(rq) - 1);
struct i915_request *old = rq[idx];
struct i915_request *new;
@@ -967,7 +956,7 @@ static int active_engine(void *data)
intel_context_put(ce[count]);
}
- return err;
+ arg->result = err;
}
static int __igt_reset_engines(struct intel_gt *gt,
@@ -1022,7 +1011,7 @@ static int __igt_reset_engines(struct intel_gt *gt,
memset(threads, 0, sizeof(*threads) * I915_NUM_ENGINES);
for_each_engine(other, gt, tmp) {
- struct task_struct *tsk;
+ struct kthread_worker *worker;
threads[tmp].resets =
i915_reset_engine_count(global, other);
@@ -1036,19 +1025,21 @@ static int __igt_reset_engines(struct intel_gt *gt,
threads[tmp].engine = other;
threads[tmp].flags = flags;
- tsk = kthread_run(active_engine, &threads[tmp],
- "igt/%s", other->name);
- if (IS_ERR(tsk)) {
- err = PTR_ERR(tsk);
- pr_err("[%s] Thread spawn failed: %d!\n", engine->name, err);
+ worker = kthread_create_worker(0, "igt/%s",
+ other->name);
+ if (IS_ERR(worker)) {
+ err = PTR_ERR(worker);
+ pr_err("[%s] Worker create failed: %d!\n",
+ engine->name, err);
goto unwind;
}
- threads[tmp].task = tsk;
- get_task_struct(tsk);
- }
+ threads[tmp].worker = worker;
- yield(); /* start all threads before we begin */
+ kthread_init_work(&threads[tmp].work, active_engine);
+ kthread_queue_work(threads[tmp].worker,
+ &threads[tmp].work);
+ }
st_engine_heartbeat_disable_no_pm(engine);
GEM_BUG_ON(test_and_set_bit(I915_RESET_ENGINE + id,
@@ -1197,17 +1188,20 @@ unwind:
for_each_engine(other, gt, tmp) {
int ret;
- if (!threads[tmp].task)
+ if (!threads[tmp].worker)
continue;
- ret = kthread_stop(threads[tmp].task);
+ WRITE_ONCE(threads[tmp].stop, true);
+ kthread_flush_work(&threads[tmp].work);
+ ret = READ_ONCE(threads[tmp].result);
if (ret) {
pr_err("kthread for other engine %s failed, err=%d\n",
other->name, ret);
if (!err)
err = ret;
}
- put_task_struct(threads[tmp].task);
+
+ kthread_destroy_worker(threads[tmp].worker);
/* GuC based resets are not logged per engine */
if (!using_guc) {
@@ -1510,18 +1504,9 @@ static int __igt_reset_evict_vma(struct intel_gt *gt,
}
}
- i915_vma_lock(arg.vma);
- err = i915_request_await_object(rq, arg.vma->obj,
- flags & EXEC_OBJECT_WRITE);
- if (err == 0) {
- err = i915_vma_move_to_active(arg.vma, rq, flags);
- if (err)
- pr_err("[%s] Move to active failed: %d!\n", engine->name, err);
- } else {
- pr_err("[%s] Request await failed: %d!\n", engine->name, err);
- }
-
- i915_vma_unlock(arg.vma);
+ err = igt_vma_move_to_active_unlocked(arg.vma, rq, flags);
+ if (err)
+ pr_err("[%s] Move to active failed: %d!\n", engine->name, err);
if (flags & EXEC_OBJECT_NEEDS_FENCE)
i915_vma_unpin_fence(arg.vma);
diff --git a/drivers/gpu/drm/i915/gt/selftest_llc.c b/drivers/gpu/drm/i915/gt/selftest_llc.c
index cfd736d88939..779fadcec7c4 100644
--- a/drivers/gpu/drm/i915/gt/selftest_llc.c
+++ b/drivers/gpu/drm/i915/gt/selftest_llc.c
@@ -3,7 +3,6 @@
* Copyright © 2019 Intel Corporation
*/
-#include "intel_pm.h" /* intel_gpu_freq() */
#include "selftest_llc.h"
#include "intel_rps.h"
diff --git a/drivers/gpu/drm/i915/gt/selftest_lrc.c b/drivers/gpu/drm/i915/gt/selftest_lrc.c
index 82d3f8058995..a78a3d2c2e16 100644
--- a/drivers/gpu/drm/i915/gt/selftest_lrc.c
+++ b/drivers/gpu/drm/i915/gt/selftest_lrc.c
@@ -452,9 +452,7 @@ retry:
*cs++ = i915_ggtt_offset(scratch) + RING_TAIL_IDX * sizeof(u32);
*cs++ = 0;
- err = i915_request_await_object(rq, scratch->obj, true);
- if (!err)
- err = i915_vma_move_to_active(scratch, rq, EXEC_OBJECT_WRITE);
+ err = i915_vma_move_to_active(scratch, rq, EXEC_OBJECT_WRITE);
i915_request_get(rq);
i915_request_add(rq);
@@ -601,11 +599,7 @@ __gpr_read(struct intel_context *ce, struct i915_vma *scratch, u32 *slot)
*cs++ = 0;
}
- i915_vma_lock(scratch);
- err = i915_request_await_object(rq, scratch->obj, true);
- if (!err)
- err = i915_vma_move_to_active(scratch, rq, EXEC_OBJECT_WRITE);
- i915_vma_unlock(scratch);
+ err = igt_vma_move_to_active_unlocked(scratch, rq, EXEC_OBJECT_WRITE);
i915_request_get(rq);
i915_request_add(rq);
@@ -1034,8 +1028,8 @@ store_context(struct intel_context *ce, struct i915_vma *scratch)
while (len--) {
*cs++ = MI_STORE_REGISTER_MEM_GEN8;
*cs++ = hw[dw];
- *cs++ = lower_32_bits(scratch->node.start + x);
- *cs++ = upper_32_bits(scratch->node.start + x);
+ *cs++ = lower_32_bits(i915_vma_offset(scratch) + x);
+ *cs++ = upper_32_bits(i915_vma_offset(scratch) + x);
dw += 2;
x += 4;
@@ -1053,21 +1047,6 @@ store_context(struct intel_context *ce, struct i915_vma *scratch)
return batch;
}
-static int move_to_active(struct i915_request *rq,
- struct i915_vma *vma,
- unsigned int flags)
-{
- int err;
-
- i915_vma_lock(vma);
- err = i915_request_await_object(rq, vma->obj, flags);
- if (!err)
- err = i915_vma_move_to_active(vma, rq, flags);
- i915_vma_unlock(vma);
-
- return err;
-}
-
static struct i915_request *
record_registers(struct intel_context *ce,
struct i915_vma *before,
@@ -1093,19 +1072,19 @@ record_registers(struct intel_context *ce,
if (IS_ERR(rq))
goto err_after;
- err = move_to_active(rq, before, EXEC_OBJECT_WRITE);
+ err = igt_vma_move_to_active_unlocked(before, rq, EXEC_OBJECT_WRITE);
if (err)
goto err_rq;
- err = move_to_active(rq, b_before, 0);
+ err = igt_vma_move_to_active_unlocked(b_before, rq, 0);
if (err)
goto err_rq;
- err = move_to_active(rq, after, EXEC_OBJECT_WRITE);
+ err = igt_vma_move_to_active_unlocked(after, rq, EXEC_OBJECT_WRITE);
if (err)
goto err_rq;
- err = move_to_active(rq, b_after, 0);
+ err = igt_vma_move_to_active_unlocked(b_after, rq, 0);
if (err)
goto err_rq;
@@ -1117,8 +1096,8 @@ record_registers(struct intel_context *ce,
*cs++ = MI_ARB_ON_OFF | MI_ARB_DISABLE;
*cs++ = MI_BATCH_BUFFER_START_GEN8 | BIT(8);
- *cs++ = lower_32_bits(b_before->node.start);
- *cs++ = upper_32_bits(b_before->node.start);
+ *cs++ = lower_32_bits(i915_vma_offset(b_before));
+ *cs++ = upper_32_bits(i915_vma_offset(b_before));
*cs++ = MI_ARB_ON_OFF | MI_ARB_ENABLE;
*cs++ = MI_SEMAPHORE_WAIT |
@@ -1133,8 +1112,8 @@ record_registers(struct intel_context *ce,
*cs++ = MI_ARB_ON_OFF | MI_ARB_DISABLE;
*cs++ = MI_BATCH_BUFFER_START_GEN8 | BIT(8);
- *cs++ = lower_32_bits(b_after->node.start);
- *cs++ = upper_32_bits(b_after->node.start);
+ *cs++ = lower_32_bits(i915_vma_offset(b_after));
+ *cs++ = upper_32_bits(i915_vma_offset(b_after));
intel_ring_advance(rq, cs);
@@ -1243,7 +1222,7 @@ static int poison_registers(struct intel_context *ce, u32 poison, u32 *sema)
goto err_batch;
}
- err = move_to_active(rq, batch, 0);
+ err = igt_vma_move_to_active_unlocked(batch, rq, 0);
if (err)
goto err_rq;
@@ -1255,8 +1234,8 @@ static int poison_registers(struct intel_context *ce, u32 poison, u32 *sema)
*cs++ = MI_ARB_ON_OFF | MI_ARB_DISABLE;
*cs++ = MI_BATCH_BUFFER_START_GEN8 | BIT(8);
- *cs++ = lower_32_bits(batch->node.start);
- *cs++ = upper_32_bits(batch->node.start);
+ *cs++ = lower_32_bits(i915_vma_offset(batch));
+ *cs++ = upper_32_bits(i915_vma_offset(batch));
*cs++ = MI_STORE_DWORD_IMM_GEN4 | MI_USE_GGTT;
*cs++ = i915_ggtt_offset(ce->engine->status_page.vma) +
diff --git a/drivers/gpu/drm/i915/gt/selftest_migrate.c b/drivers/gpu/drm/i915/gt/selftest_migrate.c
index 2b0c87999949..e677f2da093d 100644
--- a/drivers/gpu/drm/i915/gt/selftest_migrate.c
+++ b/drivers/gpu/drm/i915/gt/selftest_migrate.c
@@ -6,7 +6,9 @@
#include <linux/sort.h>
#include "gem/i915_gem_internal.h"
+#include "gem/i915_gem_lmem.h"
+#include "selftests/igt_spinner.h"
#include "selftests/i915_random.h"
static const unsigned int sizes[] = {
@@ -485,7 +487,8 @@ global_clear(struct intel_migrate *migrate, u32 sz, struct rnd_state *prng)
static int live_migrate_copy(void *arg)
{
- struct intel_migrate *migrate = arg;
+ struct intel_gt *gt = arg;
+ struct intel_migrate *migrate = &gt->migrate;
struct drm_i915_private *i915 = migrate->context->engine->i915;
I915_RND_STATE(prng);
int i;
@@ -506,7 +509,8 @@ static int live_migrate_copy(void *arg)
static int live_migrate_clear(void *arg)
{
- struct intel_migrate *migrate = arg;
+ struct intel_gt *gt = arg;
+ struct intel_migrate *migrate = &gt->migrate;
struct drm_i915_private *i915 = migrate->context->engine->i915;
I915_RND_STATE(prng);
int i;
@@ -526,6 +530,149 @@ static int live_migrate_clear(void *arg)
return 0;
}
+struct spinner_timer {
+ struct timer_list timer;
+ struct igt_spinner spin;
+};
+
+static void spinner_kill(struct timer_list *timer)
+{
+ struct spinner_timer *st = from_timer(st, timer, timer);
+
+ igt_spinner_end(&st->spin);
+ pr_info("%s\n", __func__);
+}
+
+static int live_emit_pte_full_ring(void *arg)
+{
+ struct intel_gt *gt = arg;
+ struct intel_migrate *migrate = &gt->migrate;
+ struct drm_i915_private *i915 = migrate->context->engine->i915;
+ struct drm_i915_gem_object *obj;
+ struct intel_context *ce;
+ struct i915_request *rq, *prev;
+ struct spinner_timer st;
+ struct sgt_dma it;
+ int len, sz, err;
+ u32 *cs;
+
+ /*
+ * Simple regression test to check that we don't trample the
+ * rq->reserved_space when returning from emit_pte(), if the ring is
+ * nearly full.
+ */
+
+ if (igt_spinner_init(&st.spin, to_gt(i915)))
+ return -ENOMEM;
+
+ obj = i915_gem_object_create_internal(i915, 2 * PAGE_SIZE);
+ if (IS_ERR(obj)) {
+ err = PTR_ERR(obj);
+ goto out_spinner;
+ }
+
+ err = i915_gem_object_pin_pages_unlocked(obj);
+ if (err)
+ goto out_obj;
+
+ ce = intel_migrate_create_context(migrate);
+ if (IS_ERR(ce)) {
+ err = PTR_ERR(ce);
+ goto out_obj;
+ }
+
+ ce->ring_size = SZ_4K; /* Not too big */
+
+ err = intel_context_pin(ce);
+ if (err)
+ goto out_put;
+
+ rq = igt_spinner_create_request(&st.spin, ce, MI_ARB_CHECK);
+ if (IS_ERR(rq)) {
+ err = PTR_ERR(rq);
+ goto out_unpin;
+ }
+
+ i915_request_add(rq);
+ if (!igt_wait_for_spinner(&st.spin, rq)) {
+ err = -EIO;
+ goto out_unpin;
+ }
+
+ /*
+ * Fill the rest of the ring leaving I915_EMIT_PTE_NUM_DWORDS +
+ * ring->reserved_space at the end. To actually emit the PTEs we require
+ * slightly more than I915_EMIT_PTE_NUM_DWORDS, since our object size is
+ * greater than PAGE_SIZE. The correct behaviour is to wait for more
+ * ring space in emit_pte(), otherwise we trample on the reserved_space
+ * resulting in crashes when later submitting the rq.
+ */
+
+ prev = NULL;
+ do {
+ if (prev)
+ i915_request_add(rq);
+
+ rq = i915_request_create(ce);
+ if (IS_ERR(rq)) {
+ err = PTR_ERR(rq);
+ goto out_unpin;
+ }
+
+ sz = (rq->ring->space - rq->reserved_space) / sizeof(u32) -
+ I915_EMIT_PTE_NUM_DWORDS;
+ sz = min_t(u32, sz, (SZ_1K - rq->reserved_space) / sizeof(u32) -
+ I915_EMIT_PTE_NUM_DWORDS);
+ cs = intel_ring_begin(rq, sz);
+ if (IS_ERR(cs)) {
+ err = PTR_ERR(cs);
+ goto out_rq;
+ }
+
+ memset32(cs, MI_NOOP, sz);
+ cs += sz;
+ intel_ring_advance(rq, cs);
+
+ pr_info("%s emit=%u sz=%d\n", __func__, rq->ring->emit, sz);
+
+ prev = rq;
+ } while (rq->ring->space > (rq->reserved_space +
+ I915_EMIT_PTE_NUM_DWORDS * sizeof(u32)));
+
+ timer_setup_on_stack(&st.timer, spinner_kill, 0);
+ mod_timer(&st.timer, jiffies + 2 * HZ);
+
+ /*
+ * This should wait for the spinner to be killed, otherwise we should go
+ * down in flames when doing i915_request_add().
+ */
+ pr_info("%s emite_pte ring space=%u\n", __func__, rq->ring->space);
+ it = sg_sgt(obj->mm.pages->sgl);
+ len = emit_pte(rq, &it, obj->cache_level, false, 0, CHUNK_SZ);
+ if (!len) {
+ err = -EINVAL;
+ goto out_rq;
+ }
+ if (len < 0) {
+ err = len;
+ goto out_rq;
+ }
+
+out_rq:
+ i915_request_add(rq); /* GEM_BUG_ON(rq->reserved_space > ring->space)? */
+ del_timer_sync(&st.timer);
+ destroy_timer_on_stack(&st.timer);
+out_unpin:
+ intel_context_unpin(ce);
+out_put:
+ intel_context_put(ce);
+out_obj:
+ i915_gem_object_put(obj);
+out_spinner:
+ igt_spinner_fini(&st.spin);
+ return err;
+}
+
struct threaded_migrate {
struct intel_migrate *migrate;
struct task_struct *tsk;
@@ -592,7 +739,10 @@ static int __thread_migrate_copy(void *arg)
static int thread_migrate_copy(void *arg)
{
- return threaded_migrate(arg, __thread_migrate_copy, 0);
+ struct intel_gt *gt = arg;
+ struct intel_migrate *migrate = &gt->migrate;
+
+ return threaded_migrate(migrate, __thread_migrate_copy, 0);
}
static int __thread_global_copy(void *arg)
@@ -604,7 +754,10 @@ static int __thread_global_copy(void *arg)
static int thread_global_copy(void *arg)
{
- return threaded_migrate(arg, __thread_global_copy, 0);
+ struct intel_gt *gt = arg;
+ struct intel_migrate *migrate = &gt->migrate;
+
+ return threaded_migrate(migrate, __thread_global_copy, 0);
}
static int __thread_migrate_clear(void *arg)
@@ -623,12 +776,18 @@ static int __thread_global_clear(void *arg)
static int thread_migrate_clear(void *arg)
{
- return threaded_migrate(arg, __thread_migrate_clear, 0);
+ struct intel_gt *gt = arg;
+ struct intel_migrate *migrate = &gt->migrate;
+
+ return threaded_migrate(migrate, __thread_migrate_clear, 0);
}
static int thread_global_clear(void *arg)
{
- return threaded_migrate(arg, __thread_global_clear, 0);
+ struct intel_gt *gt = arg;
+ struct intel_migrate *migrate = &gt->migrate;
+
+ return threaded_migrate(migrate, __thread_global_clear, 0);
}
int intel_migrate_live_selftests(struct drm_i915_private *i915)
@@ -636,6 +795,7 @@ int intel_migrate_live_selftests(struct drm_i915_private *i915)
static const struct i915_subtest tests[] = {
SUBTEST(live_migrate_copy),
SUBTEST(live_migrate_clear),
+ SUBTEST(live_emit_pte_full_ring),
SUBTEST(thread_migrate_copy),
SUBTEST(thread_migrate_clear),
SUBTEST(thread_global_copy),
@@ -646,7 +806,7 @@ int intel_migrate_live_selftests(struct drm_i915_private *i915)
if (!gt->migrate.context)
return 0;
- return i915_subtests(tests, &gt->migrate);
+ return intel_gt_live_subtests(tests, gt);
}
static struct drm_i915_gem_object *
diff --git a/drivers/gpu/drm/i915/gt/selftest_mocs.c b/drivers/gpu/drm/i915/gt/selftest_mocs.c
index c1d861333c44..ca009a6a13bd 100644
--- a/drivers/gpu/drm/i915/gt/selftest_mocs.c
+++ b/drivers/gpu/drm/i915/gt/selftest_mocs.c
@@ -7,6 +7,7 @@
#include "gt/intel_gpu_commands.h"
#include "i915_selftest.h"
+#include "gem/selftests/igt_gem_utils.h"
#include "gem/selftests/mock_context.h"
#include "selftests/igt_reset.h"
#include "selftests/igt_spinner.h"
@@ -227,11 +228,7 @@ static int check_mocs_engine(struct live_mocs *arg,
if (IS_ERR(rq))
return PTR_ERR(rq);
- i915_vma_lock(vma);
- err = i915_request_await_object(rq, vma->obj, true);
- if (!err)
- err = i915_vma_move_to_active(vma, rq, EXEC_OBJECT_WRITE);
- i915_vma_unlock(vma);
+ err = igt_vma_move_to_active_unlocked(vma, rq, EXEC_OBJECT_WRITE);
/* Read the mocs tables back using SRM */
offset = i915_ggtt_offset(vma);
diff --git a/drivers/gpu/drm/i915/gt/selftest_rc6.c b/drivers/gpu/drm/i915/gt/selftest_rc6.c
index 8c70b7e12074..2ceeadecc639 100644
--- a/drivers/gpu/drm/i915/gt/selftest_rc6.c
+++ b/drivers/gpu/drm/i915/gt/selftest_rc6.c
@@ -19,11 +19,11 @@ static u64 rc6_residency(struct intel_rc6 *rc6)
/* XXX VLV_GT_MEDIA_RC6? */
- result = intel_rc6_residency_ns(rc6, GEN6_GT_GFX_RC6);
+ result = intel_rc6_residency_ns(rc6, INTEL_RC6_RES_RC6);
if (HAS_RC6p(rc6_to_i915(rc6)))
- result += intel_rc6_residency_ns(rc6, GEN6_GT_GFX_RC6p);
+ result += intel_rc6_residency_ns(rc6, INTEL_RC6_RES_RC6p);
if (HAS_RC6pp(rc6_to_i915(rc6)))
- result += intel_rc6_residency_ns(rc6, GEN6_GT_GFX_RC6pp);
+ result += intel_rc6_residency_ns(rc6, INTEL_RC6_RES_RC6pp);
return result;
}
diff --git a/drivers/gpu/drm/i915/gt/selftest_reset.c b/drivers/gpu/drm/i915/gt/selftest_reset.c
index 37c38bdd5f47..a9e0a91bc0e0 100644
--- a/drivers/gpu/drm/i915/gt/selftest_reset.c
+++ b/drivers/gpu/drm/i915/gt/selftest_reset.c
@@ -20,7 +20,7 @@ __igt_reset_stolen(struct intel_gt *gt,
const char *msg)
{
struct i915_ggtt *ggtt = gt->ggtt;
- const struct resource *dsm = &gt->i915->dsm;
+ const struct resource *dsm = &gt->i915->dsm.stolen;
resource_size_t num_pages, page;
struct intel_engine_cs *engine;
intel_wakeref_t wakeref;
diff --git a/drivers/gpu/drm/i915/gt/selftest_ring_submission.c b/drivers/gpu/drm/i915/gt/selftest_ring_submission.c
index 70f9ac1ec2c7..87ceb0f374b6 100644
--- a/drivers/gpu/drm/i915/gt/selftest_ring_submission.c
+++ b/drivers/gpu/drm/i915/gt/selftest_ring_submission.c
@@ -50,7 +50,7 @@ static struct i915_vma *create_wally(struct intel_engine_cs *engine)
} else {
*cs++ = MI_STORE_DWORD_IMM | MI_MEM_VIRTUAL;
}
- *cs++ = vma->node.start + 4000;
+ *cs++ = i915_vma_offset(vma) + 4000;
*cs++ = STACK_MAGIC;
*cs++ = MI_BATCH_BUFFER_END;
diff --git a/drivers/gpu/drm/i915/gt/selftest_rps.c b/drivers/gpu/drm/i915/gt/selftest_rps.c
index cfb4708dd62e..84e77e8dbba1 100644
--- a/drivers/gpu/drm/i915/gt/selftest_rps.c
+++ b/drivers/gpu/drm/i915/gt/selftest_rps.c
@@ -122,14 +122,14 @@ create_spin_counter(struct intel_engine_cs *engine,
if (srm) {
*cs++ = MI_STORE_REGISTER_MEM_GEN8;
*cs++ = i915_mmio_reg_offset(CS_GPR(COUNT));
- *cs++ = lower_32_bits(vma->node.start + end * sizeof(*cs));
- *cs++ = upper_32_bits(vma->node.start + end * sizeof(*cs));
+ *cs++ = lower_32_bits(i915_vma_offset(vma) + end * sizeof(*cs));
+ *cs++ = upper_32_bits(i915_vma_offset(vma) + end * sizeof(*cs));
}
}
*cs++ = MI_BATCH_BUFFER_START_GEN8;
- *cs++ = lower_32_bits(vma->node.start + loop * sizeof(*cs));
- *cs++ = upper_32_bits(vma->node.start + loop * sizeof(*cs));
+ *cs++ = lower_32_bits(i915_vma_offset(vma) + loop * sizeof(*cs));
+ *cs++ = upper_32_bits(i915_vma_offset(vma) + loop * sizeof(*cs));
GEM_BUG_ON(cs - base > end);
i915_gem_object_flush_map(obj);
@@ -299,13 +299,13 @@ int live_rps_clock_interval(void *arg)
for (i = 0; i < 5; i++) {
preempt_disable();
- dt_[i] = ktime_get();
cycles_[i] = -intel_uncore_read_fw(gt->uncore, GEN6_RP_CUR_UP_EI);
+ dt_[i] = ktime_get();
udelay(1000);
- dt_[i] = ktime_sub(ktime_get(), dt_[i]);
cycles_[i] += intel_uncore_read_fw(gt->uncore, GEN6_RP_CUR_UP_EI);
+ dt_[i] = ktime_sub(ktime_get(), dt_[i]);
preempt_enable();
}
@@ -537,8 +537,8 @@ static u64 __measure_frequency(u32 *cntr, int duration_ms)
{
u64 dc, dt;
- dt = ktime_get();
dc = READ_ONCE(*cntr);
+ dt = ktime_get();
usleep_range(1000 * duration_ms, 2000 * duration_ms);
dc = READ_ONCE(*cntr) - dc;
dt = ktime_get() - dt;
@@ -566,8 +566,8 @@ static u64 __measure_cs_frequency(struct intel_engine_cs *engine,
{
u64 dc, dt;
- dt = ktime_get();
dc = intel_uncore_read_fw(engine->uncore, CS_GPR(0));
+ dt = ktime_get();
usleep_range(1000 * duration_ms, 2000 * duration_ms);
dc = intel_uncore_read_fw(engine->uncore, CS_GPR(0)) - dc;
dt = ktime_get() - dt;
@@ -652,12 +652,10 @@ int live_rps_frequency_cs(void *arg)
goto err_vma;
}
- err = i915_request_await_object(rq, vma->obj, false);
- if (!err)
- err = i915_vma_move_to_active(vma, rq, 0);
+ err = i915_vma_move_to_active(vma, rq, 0);
if (!err)
err = rq->engine->emit_bb_start(rq,
- vma->node.start,
+ i915_vma_offset(vma),
PAGE_SIZE, 0);
i915_request_add(rq);
if (err)
@@ -793,12 +791,10 @@ int live_rps_frequency_srm(void *arg)
goto err_vma;
}
- err = i915_request_await_object(rq, vma->obj, false);
- if (!err)
- err = i915_vma_move_to_active(vma, rq, 0);
+ err = i915_vma_move_to_active(vma, rq, 0);
if (!err)
err = rq->engine->emit_bb_start(rq,
- vma->node.start,
+ i915_vma_offset(vma),
PAGE_SIZE, 0);
i915_request_add(rq);
if (err)
@@ -1098,8 +1094,8 @@ static u64 __measure_power(int duration_ms)
{
u64 dE, dt;
- dt = ktime_get();
dE = librapl_energy_uJ();
+ dt = ktime_get();
usleep_range(1000 * duration_ms, 2000 * duration_ms);
dE = librapl_energy_uJ() - dE;
dt = ktime_get() - dt;
@@ -1107,21 +1103,27 @@ static u64 __measure_power(int duration_ms)
return div64_u64(1000 * 1000 * dE, dt);
}
-static u64 measure_power_at(struct intel_rps *rps, int *freq)
+static u64 measure_power(struct intel_rps *rps, int *freq)
{
u64 x[5];
int i;
- *freq = rps_set_check(rps, *freq);
for (i = 0; i < 5; i++)
x[i] = __measure_power(5);
- *freq = (*freq + read_cagf(rps)) / 2;
+
+ *freq = (*freq + intel_rps_read_actual_frequency(rps)) / 2;
/* A simple triangle filter for better result stability */
sort(x, 5, sizeof(*x), cmp_u64, NULL);
return div_u64(x[1] + 2 * x[2] + x[3], 4);
}
+static u64 measure_power_at(struct intel_rps *rps, int *freq)
+{
+ *freq = rps_set_check(rps, *freq);
+ return measure_power(rps, freq);
+}
+
int live_rps_power(void *arg)
{
struct intel_gt *gt = arg;
diff --git a/drivers/gpu/drm/i915/gt/selftest_slpc.c b/drivers/gpu/drm/i915/gt/selftest_slpc.c
index f8a1d27df272..bd44ce73a504 100644
--- a/drivers/gpu/drm/i915/gt/selftest_slpc.c
+++ b/drivers/gpu/drm/i915/gt/selftest_slpc.c
@@ -11,7 +11,16 @@
enum test_type {
VARY_MIN,
VARY_MAX,
- MAX_GRANTED
+ MAX_GRANTED,
+ SLPC_POWER,
+ TILE_INTERACTION,
+};
+
+struct slpc_thread {
+ struct kthread_worker *worker;
+ struct kthread_work work;
+ struct intel_gt *gt;
+ int result;
};
static int slpc_set_min_freq(struct intel_guc_slpc *slpc, u32 freq)
@@ -41,6 +50,39 @@ static int slpc_set_max_freq(struct intel_guc_slpc *slpc, u32 freq)
return ret;
}
+static int slpc_set_freq(struct intel_gt *gt, u32 freq)
+{
+ int err;
+ struct intel_guc_slpc *slpc = &gt->uc.guc.slpc;
+
+ err = slpc_set_max_freq(slpc, freq);
+ if (err) {
+ pr_err("Unable to update max freq");
+ return err;
+ }
+
+ err = slpc_set_min_freq(slpc, freq);
+ if (err) {
+ pr_err("Unable to update min freq");
+ return err;
+ }
+
+ return err;
+}
+
+static u64 measure_power_at_freq(struct intel_gt *gt, int *freq, u64 *power)
+{
+ int err = 0;
+
+ err = slpc_set_freq(gt, *freq);
+ if (err)
+ return err;
+ *freq = intel_rps_read_actual_frequency(&gt->rps);
+ *power = measure_power(&gt->rps, freq);
+
+ return err;
+}
+
static int vary_max_freq(struct intel_guc_slpc *slpc, struct intel_rps *rps,
u32 *max_act_freq)
{
@@ -113,6 +155,58 @@ static int vary_min_freq(struct intel_guc_slpc *slpc, struct intel_rps *rps,
return err;
}
+static int slpc_power(struct intel_gt *gt, struct intel_engine_cs *engine)
+{
+ struct intel_guc_slpc *slpc = &gt->uc.guc.slpc;
+ struct {
+ u64 power;
+ int freq;
+ } min, max;
+ int err = 0;
+
+ /*
+ * Our fundamental assumption is that running at lower frequency
+ * actually saves power. Let's see if our RAPL measurement supports
+ * that theory.
+ */
+ if (!librapl_supported(gt->i915))
+ return 0;
+
+ min.freq = slpc->min_freq;
+ err = measure_power_at_freq(gt, &min.freq, &min.power);
+
+ if (err)
+ return err;
+
+ max.freq = slpc->rp0_freq;
+ err = measure_power_at_freq(gt, &max.freq, &max.power);
+
+ if (err)
+ return err;
+
+ pr_info("%s: min:%llumW @ %uMHz, max:%llumW @ %uMHz\n",
+ engine->name,
+ min.power, min.freq,
+ max.power, max.freq);
+
+ if (10 * min.freq >= 9 * max.freq) {
+ pr_notice("Could not control frequency, ran at [%uMHz, %uMhz]\n",
+ min.freq, max.freq);
+ }
+
+ if (11 * min.power > 10 * max.power) {
+ pr_err("%s: did not conserve power when setting lower frequency!\n",
+ engine->name);
+ err = -EINVAL;
+ }
+
+ /* Restore min/max frequencies */
+ slpc_set_max_freq(slpc, slpc->rp0_freq);
+ slpc_set_min_freq(slpc, slpc->min_freq);
+
+ return err;
+}
+
static int max_granted_freq(struct intel_guc_slpc *slpc, struct intel_rps *rps, u32 *max_act_freq)
{
struct intel_gt *gt = rps_to_gt(rps);
@@ -126,7 +220,8 @@ static int max_granted_freq(struct intel_guc_slpc *slpc, struct intel_rps *rps,
*max_act_freq = intel_rps_read_actual_frequency(rps);
if (*max_act_freq != slpc->rp0_freq) {
/* Check if there was some throttling by pcode */
- perf_limit_reasons = intel_uncore_read(gt->uncore, GT0_PERF_LIMIT_REASONS);
+ perf_limit_reasons = intel_uncore_read(gt->uncore,
+ intel_gt_perf_limit_reasons_reg(gt));
/* If not, this is an error */
if (!(perf_limit_reasons & GT0_PERF_LIMIT_REASONS_MASK)) {
@@ -153,6 +248,11 @@ static int run_test(struct intel_gt *gt, int test_type)
if (!intel_uc_uses_guc_slpc(&gt->uc))
return 0;
+ if (slpc->min_freq == slpc->rp0_freq) {
+ pr_err("Min/Max are fused to the same value\n");
+ return -EINVAL;
+ }
+
if (igt_spinner_init(&spin, gt))
return -ENOMEM;
@@ -167,17 +267,14 @@ static int run_test(struct intel_gt *gt, int test_type)
}
/*
- * FIXME: With efficient frequency enabled, GuC can request
- * frequencies higher than the SLPC max. While this is fixed
- * in GuC, we level set these tests with RPn as min.
+ * Set min frequency to RPn so that we can test the whole
+ * range of RPn-RP0. This also turns off efficient freq
+ * usage and makes results more predictable.
*/
err = slpc_set_min_freq(slpc, slpc->min_freq);
- if (err)
+ if (err) {
+ pr_err("Unable to update min freq!");
return err;
-
- if (slpc->min_freq == slpc->rp0_freq) {
- pr_err("Min/Max are fused to the same value\n");
- return -EINVAL;
}
intel_gt_pm_wait_for_idle(gt);
@@ -222,9 +319,10 @@ static int run_test(struct intel_gt *gt, int test_type)
break;
case MAX_GRANTED:
+ case TILE_INTERACTION:
/* Media engines have a different RP0 */
- if (engine->class == VIDEO_DECODE_CLASS ||
- engine->class == VIDEO_ENHANCEMENT_CLASS) {
+ if (gt->type != GT_MEDIA && (engine->class == VIDEO_DECODE_CLASS ||
+ engine->class == VIDEO_ENHANCEMENT_CLASS)) {
igt_spinner_end(&spin);
st_engine_heartbeat_enable(engine);
err = 0;
@@ -233,17 +331,24 @@ static int run_test(struct intel_gt *gt, int test_type)
err = max_granted_freq(slpc, rps, &max_act_freq);
break;
- }
- pr_info("Max actual frequency for %s was %d\n",
- engine->name, max_act_freq);
+ case SLPC_POWER:
+ err = slpc_power(gt, engine);
+ break;
+ }
- /* Actual frequency should rise above min */
- if (max_act_freq <= slpc_min_freq) {
- pr_err("Actual freq did not rise above min\n");
- pr_err("Perf Limit Reasons: 0x%x\n",
- intel_uncore_read(gt->uncore, GT0_PERF_LIMIT_REASONS));
- err = -EINVAL;
+ if (test_type != SLPC_POWER) {
+ pr_info("Max actual frequency for %s was %d\n",
+ engine->name, max_act_freq);
+
+ /* Actual frequency should rise above min */
+ if (max_act_freq <= slpc->min_freq) {
+ pr_err("Actual freq did not rise above min\n");
+ pr_err("Perf Limit Reasons: 0x%x\n",
+ intel_uncore_read(gt->uncore,
+ intel_gt_perf_limit_reasons_reg(gt)));
+ err = -EINVAL;
+ }
}
igt_spinner_end(&spin);
@@ -270,26 +375,116 @@ static int run_test(struct intel_gt *gt, int test_type)
static int live_slpc_vary_min(void *arg)
{
struct drm_i915_private *i915 = arg;
- struct intel_gt *gt = to_gt(i915);
+ struct intel_gt *gt;
+ unsigned int i;
+ int ret;
+
+ for_each_gt(gt, i915, i) {
+ ret = run_test(gt, VARY_MIN);
+ if (ret)
+ return ret;
+ }
- return run_test(gt, VARY_MIN);
+ return ret;
}
static int live_slpc_vary_max(void *arg)
{
struct drm_i915_private *i915 = arg;
- struct intel_gt *gt = to_gt(i915);
+ struct intel_gt *gt;
+ unsigned int i;
+ int ret;
+
+ for_each_gt(gt, i915, i) {
+ ret = run_test(gt, VARY_MAX);
+ if (ret)
+ return ret;
+ }
- return run_test(gt, VARY_MAX);
+ return ret;
}
/* check if pcode can grant RP0 */
static int live_slpc_max_granted(void *arg)
{
struct drm_i915_private *i915 = arg;
- struct intel_gt *gt = to_gt(i915);
+ struct intel_gt *gt;
+ unsigned int i;
+ int ret;
+
+ for_each_gt(gt, i915, i) {
+ ret = run_test(gt, MAX_GRANTED);
+ if (ret)
+ return ret;
+ }
+
+ return ret;
+}
+
+static int live_slpc_power(void *arg)
+{
+ struct drm_i915_private *i915 = arg;
+ struct intel_gt *gt;
+ unsigned int i;
+ int ret;
+
+ for_each_gt(gt, i915, i) {
+ ret = run_test(gt, SLPC_POWER);
+ if (ret)
+ return ret;
+ }
+
+ return ret;
+}
+
+static void slpc_spinner_thread(struct kthread_work *work)
+{
+ struct slpc_thread *thread = container_of(work, typeof(*thread), work);
+
+ thread->result = run_test(thread->gt, TILE_INTERACTION);
+}
+
+static int live_slpc_tile_interaction(void *arg)
+{
+ struct drm_i915_private *i915 = arg;
+ struct intel_gt *gt;
+ struct slpc_thread *threads;
+ int i = 0, ret = 0;
+
+ threads = kcalloc(I915_MAX_GT, sizeof(*threads), GFP_KERNEL);
+ if (!threads)
+ return -ENOMEM;
+
+ for_each_gt(gt, i915, i) {
+ threads[i].worker = kthread_create_worker(0, "igt/slpc_parallel:%d", gt->info.id);
+
+ if (IS_ERR(threads[i].worker)) {
+ ret = PTR_ERR(threads[i].worker);
+ break;
+ }
+
+ threads[i].gt = gt;
+ kthread_init_work(&threads[i].work, slpc_spinner_thread);
+ kthread_queue_work(threads[i].worker, &threads[i].work);
+ }
+
+ for_each_gt(gt, i915, i) {
+ int status;
+
+ if (IS_ERR_OR_NULL(threads[i].worker))
+ continue;
- return run_test(gt, MAX_GRANTED);
+ kthread_flush_work(&threads[i].work);
+ status = READ_ONCE(threads[i].result);
+ if (status && !ret) {
+ pr_err("%s GT %d failed ", __func__, gt->info.id);
+ ret = status;
+ }
+ kthread_destroy_worker(threads[i].worker);
+ }
+
+ kfree(threads);
+ return ret;
}
int intel_slpc_live_selftests(struct drm_i915_private *i915)
@@ -298,10 +493,17 @@ int intel_slpc_live_selftests(struct drm_i915_private *i915)
SUBTEST(live_slpc_vary_max),
SUBTEST(live_slpc_vary_min),
SUBTEST(live_slpc_max_granted),
+ SUBTEST(live_slpc_power),
+ SUBTEST(live_slpc_tile_interaction),
};
- if (intel_gt_is_wedged(to_gt(i915)))
- return 0;
+ struct intel_gt *gt;
+ unsigned int i;
+
+ for_each_gt(gt, i915, i) {
+ if (intel_gt_is_wedged(gt))
+ return 0;
+ }
return i915_live_subtests(tests, i915);
}
diff --git a/drivers/gpu/drm/i915/gt/selftest_timeline.c b/drivers/gpu/drm/i915/gt/selftest_timeline.c
index 522d0190509c..9f536c251179 100644
--- a/drivers/gpu/drm/i915/gt/selftest_timeline.c
+++ b/drivers/gpu/drm/i915/gt/selftest_timeline.c
@@ -825,7 +825,8 @@ static bool cmp_gte(u32 a, u32 b)
return a >= b;
}
-static int setup_watcher(struct hwsp_watcher *w, struct intel_gt *gt)
+static int setup_watcher(struct hwsp_watcher *w, struct intel_gt *gt,
+ struct intel_timeline *tl)
{
struct drm_i915_gem_object *obj;
struct i915_vma *vma;
@@ -834,7 +835,10 @@ static int setup_watcher(struct hwsp_watcher *w, struct intel_gt *gt)
if (IS_ERR(obj))
return PTR_ERR(obj);
- w->map = i915_gem_object_pin_map_unlocked(obj, I915_MAP_WB);
+ /* keep the same cache settings as timeline */
+ i915_gem_object_set_cache_coherency(obj, tl->hwsp_ggtt->obj->cache_level);
+ w->map = i915_gem_object_pin_map_unlocked(obj,
+ page_unmask_bits(tl->hwsp_ggtt->obj->mm.mapping));
if (IS_ERR(w->map)) {
i915_gem_object_put(obj);
return PTR_ERR(w->map);
@@ -1004,8 +1008,10 @@ static int live_hwsp_read(void *arg)
if (!tl->has_initial_breadcrumb)
goto out_free;
+ selftest_tl_pin(tl);
+
for (i = 0; i < ARRAY_SIZE(watcher); i++) {
- err = setup_watcher(&watcher[i], gt);
+ err = setup_watcher(&watcher[i], gt, tl);
if (err)
goto out;
}
@@ -1160,6 +1166,8 @@ out:
for (i = 0; i < ARRAY_SIZE(watcher); i++)
cleanup_watcher(&watcher[i]);
+ intel_timeline_unpin(tl);
+
if (igt_flush_test(gt->i915))
err = -EIO;
diff --git a/drivers/gpu/drm/i915/gt/selftest_tlb.c b/drivers/gpu/drm/i915/gt/selftest_tlb.c
new file mode 100644
index 000000000000..e6cac1f15d6e
--- /dev/null
+++ b/drivers/gpu/drm/i915/gt/selftest_tlb.c
@@ -0,0 +1,388 @@
+// SPDX-License-Identifier: MIT
+/*
+ * Copyright © 2022 Intel Corporation
+ */
+
+#include "i915_selftest.h"
+
+#include "gem/i915_gem_internal.h"
+#include "gem/i915_gem_region.h"
+
+#include "gen8_engine_cs.h"
+#include "i915_gem_ww.h"
+#include "intel_engine_regs.h"
+#include "intel_gpu_commands.h"
+#include "intel_context.h"
+#include "intel_gt.h"
+#include "intel_ring.h"
+
+#include "selftests/igt_flush_test.h"
+#include "selftests/i915_random.h"
+
+static void vma_set_qw(struct i915_vma *vma, u64 addr, u64 val)
+{
+ GEM_BUG_ON(addr < i915_vma_offset(vma));
+ GEM_BUG_ON(addr >= i915_vma_offset(vma) + i915_vma_size(vma) + sizeof(val));
+ memset64(page_mask_bits(vma->obj->mm.mapping) +
+ (addr - i915_vma_offset(vma)), val, 1);
+}
+
+static int
+pte_tlbinv(struct intel_context *ce,
+ struct i915_vma *va,
+ struct i915_vma *vb,
+ u64 align,
+ void (*tlbinv)(struct i915_address_space *vm, u64 addr, u64 length),
+ u64 length,
+ struct rnd_state *prng)
+{
+ struct drm_i915_gem_object *batch;
+ struct drm_mm_node vb_node;
+ struct i915_request *rq;
+ struct i915_vma *vma;
+ u64 addr;
+ int err;
+ u32 *cs;
+
+ batch = i915_gem_object_create_internal(ce->vm->i915, 4096);
+ if (IS_ERR(batch))
+ return PTR_ERR(batch);
+
+ vma = i915_vma_instance(batch, ce->vm, NULL);
+ if (IS_ERR(vma)) {
+ err = PTR_ERR(vma);
+ goto out;
+ }
+
+ err = i915_vma_pin(vma, 0, 0, PIN_USER);
+ if (err)
+ goto out;
+
+ /* Pin va at random but aligned offset after vma */
+ addr = round_up(vma->node.start + vma->node.size, align);
+ /* MI_CONDITIONAL_BATCH_BUFFER_END limits address to 48b */
+ addr = igt_random_offset(prng, addr, min(ce->vm->total, BIT_ULL(48)),
+ va->size, align);
+ err = i915_vma_pin(va, 0, 0, addr | PIN_OFFSET_FIXED | PIN_USER);
+ if (err) {
+ pr_err("Cannot pin at %llx+%llx\n", addr, va->size);
+ goto out;
+ }
+ GEM_BUG_ON(i915_vma_offset(va) != addr);
+ if (vb != va) {
+ vb_node = vb->node;
+ vb->node = va->node; /* overwrites the _same_ PTE */
+ }
+
+ /*
+ * Now choose random dword at the 1st pinned page.
+ *
+ * SZ_64K pages on dg1 require that the whole PT be marked
+ * containing 64KiB entries. So we make sure that vma
+ * covers the whole PT, despite being randomly aligned to 64KiB
+ * and restrict our sampling to the 2MiB PT within where
+ * we know that we will be using 64KiB pages.
+ */
+ if (align == SZ_64K)
+ addr = round_up(addr, SZ_2M);
+ addr = igt_random_offset(prng, addr, addr + align, 8, 8);
+
+ if (va != vb)
+ pr_info("%s(%s): Sampling %llx, with alignment %llx, using PTE size %x (phys %x, sg %x), invalidate:%llx+%llx\n",
+ ce->engine->name, va->obj->mm.region->name ?: "smem",
+ addr, align, va->resource->page_sizes_gtt,
+ va->page_sizes.phys, va->page_sizes.sg,
+ addr & -length, length);
+
+ cs = i915_gem_object_pin_map_unlocked(batch, I915_MAP_WC);
+ *cs++ = MI_NOOP; /* for later termination */
+ /*
+ * Sample the target to see if we spot the updated backing store.
+ * Gen8 VCS compares immediate value with bitwise-and of two
+ * consecutive DWORDS pointed by addr, other gen/engines compare value
+ * with DWORD pointed by addr. Moreover we want to exercise DWORD size
+ * invalidations. To fulfill all these requirements below values
+ * have been chosen.
+ */
+ *cs++ = MI_CONDITIONAL_BATCH_BUFFER_END | MI_DO_COMPARE | 2;
+ *cs++ = 0; /* break if *addr == 0 */
+ *cs++ = lower_32_bits(addr);
+ *cs++ = upper_32_bits(addr);
+ vma_set_qw(va, addr, -1);
+ vma_set_qw(vb, addr, 0);
+
+ /* Keep sampling until we get bored */
+ *cs++ = MI_BATCH_BUFFER_START | BIT(8) | 1;
+ *cs++ = lower_32_bits(i915_vma_offset(vma));
+ *cs++ = upper_32_bits(i915_vma_offset(vma));
+
+ i915_gem_object_flush_map(batch);
+
+ rq = i915_request_create(ce);
+ if (IS_ERR(rq)) {
+ err = PTR_ERR(rq);
+ goto out_va;
+ }
+
+ err = rq->engine->emit_bb_start(rq, i915_vma_offset(vma), 0, 0);
+ if (err) {
+ i915_request_add(rq);
+ goto out_va;
+ }
+
+ i915_request_get(rq);
+ i915_request_add(rq);
+
+ /* Short sleep to sanitycheck the batch is spinning before we begin */
+ msleep(10);
+ if (va == vb) {
+ if (!i915_request_completed(rq)) {
+ pr_err("%s(%s): Semaphore sanitycheck failed %llx, with alignment %llx, using PTE size %x (phys %x, sg %x)\n",
+ ce->engine->name, va->obj->mm.region->name ?: "smem",
+ addr, align, va->resource->page_sizes_gtt,
+ va->page_sizes.phys, va->page_sizes.sg);
+ err = -EIO;
+ }
+ } else if (!i915_request_completed(rq)) {
+ struct i915_vma_resource vb_res = {
+ .bi.pages = vb->obj->mm.pages,
+ .bi.page_sizes = vb->obj->mm.page_sizes,
+ .start = i915_vma_offset(vb),
+ .vma_size = i915_vma_size(vb)
+ };
+ unsigned int pte_flags = 0;
+
+ /* Flip the PTE between A and B */
+ if (i915_gem_object_is_lmem(vb->obj))
+ pte_flags |= PTE_LM;
+ ce->vm->insert_entries(ce->vm, &vb_res, 0, pte_flags);
+
+ /* Flush the PTE update to concurrent HW */
+ tlbinv(ce->vm, addr & -length, length);
+
+ if (wait_for(i915_request_completed(rq), HZ / 2)) {
+ pr_err("%s: Request did not complete; the COND_BBE did not read the updated PTE\n",
+ ce->engine->name);
+ err = -EINVAL;
+ }
+ } else {
+ pr_err("Spinner ended unexpectedly\n");
+ err = -EIO;
+ }
+ i915_request_put(rq);
+
+ cs = page_mask_bits(batch->mm.mapping);
+ *cs = MI_BATCH_BUFFER_END;
+ wmb();
+
+out_va:
+ if (vb != va)
+ vb->node = vb_node;
+ i915_vma_unpin(va);
+ if (i915_vma_unbind_unlocked(va))
+ err = -EIO;
+out:
+ i915_gem_object_put(batch);
+ return err;
+}
+
+static struct drm_i915_gem_object *create_lmem(struct intel_gt *gt)
+{
+ /*
+ * Allocation of largest possible page size allows to test all types
+ * of pages.
+ */
+ return i915_gem_object_create_lmem(gt->i915, SZ_1G, I915_BO_ALLOC_CONTIGUOUS);
+}
+
+static struct drm_i915_gem_object *create_smem(struct intel_gt *gt)
+{
+ /*
+ * SZ_64K pages require covering the whole 2M PT (gen8 to tgl/dg1).
+ * While that does not require the whole 2M block to be contiguous
+ * it is easier to make it so, since we need that for SZ_2M pagees.
+ * Since we randomly offset the start of the vma, we need a 4M object
+ * so that there is a 2M range within it is suitable for SZ_64K PTE.
+ */
+ return i915_gem_object_create_internal(gt->i915, SZ_4M);
+}
+
+static int
+mem_tlbinv(struct intel_gt *gt,
+ struct drm_i915_gem_object *(*create_fn)(struct intel_gt *),
+ void (*tlbinv)(struct i915_address_space *vm, u64 addr, u64 length))
+{
+ unsigned int ppgtt_size = RUNTIME_INFO(gt->i915)->ppgtt_size;
+ struct intel_engine_cs *engine;
+ struct drm_i915_gem_object *A, *B;
+ struct i915_ppgtt *ppgtt;
+ struct i915_vma *va, *vb;
+ enum intel_engine_id id;
+ I915_RND_STATE(prng);
+ void *vaddr;
+ int err;
+
+ /*
+ * Check that the TLB invalidate is able to revoke an active
+ * page. We load a page into a spinning COND_BBE loop and then
+ * remap that page to a new physical address. The old address, and
+ * so the loop keeps spinning, is retained in the TLB cache until
+ * we issue an invalidate.
+ */
+
+ A = create_fn(gt);
+ if (IS_ERR(A))
+ return PTR_ERR(A);
+
+ vaddr = i915_gem_object_pin_map_unlocked(A, I915_MAP_WC);
+ if (IS_ERR(vaddr)) {
+ err = PTR_ERR(vaddr);
+ goto out_a;
+ }
+
+ B = create_fn(gt);
+ if (IS_ERR(B)) {
+ err = PTR_ERR(B);
+ goto out_a;
+ }
+
+ vaddr = i915_gem_object_pin_map_unlocked(B, I915_MAP_WC);
+ if (IS_ERR(vaddr)) {
+ err = PTR_ERR(vaddr);
+ goto out_b;
+ }
+
+ GEM_BUG_ON(A->base.size != B->base.size);
+ if ((A->mm.page_sizes.phys | B->mm.page_sizes.phys) & (A->base.size - 1))
+ pr_warn("Failed to allocate contiguous pages for size %zx\n",
+ A->base.size);
+
+ ppgtt = i915_ppgtt_create(gt, 0);
+ if (IS_ERR(ppgtt)) {
+ err = PTR_ERR(ppgtt);
+ goto out_b;
+ }
+
+ va = i915_vma_instance(A, &ppgtt->vm, NULL);
+ if (IS_ERR(va)) {
+ err = PTR_ERR(va);
+ goto out_vm;
+ }
+
+ vb = i915_vma_instance(B, &ppgtt->vm, NULL);
+ if (IS_ERR(vb)) {
+ err = PTR_ERR(vb);
+ goto out_vm;
+ }
+
+ err = 0;
+ for_each_engine(engine, gt, id) {
+ struct i915_gem_ww_ctx ww;
+ struct intel_context *ce;
+ int bit;
+
+ ce = intel_context_create(engine);
+ if (IS_ERR(ce)) {
+ err = PTR_ERR(ce);
+ break;
+ }
+
+ i915_vm_put(ce->vm);
+ ce->vm = i915_vm_get(&ppgtt->vm);
+
+ for_i915_gem_ww(&ww, err, true)
+ err = intel_context_pin_ww(ce, &ww);
+ if (err)
+ goto err_put;
+
+ for_each_set_bit(bit,
+ (unsigned long *)&RUNTIME_INFO(gt->i915)->page_sizes,
+ BITS_PER_TYPE(RUNTIME_INFO(gt->i915)->page_sizes)) {
+ unsigned int len;
+
+ if (BIT_ULL(bit) < i915_vm_obj_min_alignment(va->vm, va->obj))
+ continue;
+
+ /* sanitycheck the semaphore wake up */
+ err = pte_tlbinv(ce, va, va,
+ BIT_ULL(bit),
+ NULL, SZ_4K,
+ &prng);
+ if (err)
+ goto err_unpin;
+
+ for (len = 2; len <= ppgtt_size; len = min(2 * len, ppgtt_size)) {
+ err = pte_tlbinv(ce, va, vb,
+ BIT_ULL(bit),
+ tlbinv,
+ BIT_ULL(len),
+ &prng);
+ if (err)
+ goto err_unpin;
+ if (len == ppgtt_size)
+ break;
+ }
+ }
+err_unpin:
+ intel_context_unpin(ce);
+err_put:
+ intel_context_put(ce);
+ if (err)
+ break;
+ }
+
+ if (igt_flush_test(gt->i915))
+ err = -EIO;
+
+out_vm:
+ i915_vm_put(&ppgtt->vm);
+out_b:
+ i915_gem_object_put(B);
+out_a:
+ i915_gem_object_put(A);
+ return err;
+}
+
+static void tlbinv_full(struct i915_address_space *vm, u64 addr, u64 length)
+{
+ intel_gt_invalidate_tlb(vm->gt, intel_gt_tlb_seqno(vm->gt) | 1);
+}
+
+static int invalidate_full(void *arg)
+{
+ struct intel_gt *gt = arg;
+ int err;
+
+ if (GRAPHICS_VER(gt->i915) < 8)
+ return 0; /* TLB invalidate not implemented */
+
+ err = mem_tlbinv(gt, create_smem, tlbinv_full);
+ if (err == 0)
+ err = mem_tlbinv(gt, create_lmem, tlbinv_full);
+ if (err == -ENODEV || err == -ENXIO)
+ err = 0;
+
+ return err;
+}
+
+int intel_tlb_live_selftests(struct drm_i915_private *i915)
+{
+ static const struct i915_subtest tests[] = {
+ SUBTEST(invalidate_full),
+ };
+ struct intel_gt *gt;
+ unsigned int i;
+
+ for_each_gt(gt, i915, i) {
+ int err;
+
+ if (intel_gt_is_wedged(gt))
+ continue;
+
+ err = intel_gt_live_subtests(tests, gt);
+ if (err)
+ return err;
+ }
+
+ return 0;
+}
diff --git a/drivers/gpu/drm/i915/gt/selftest_workarounds.c b/drivers/gpu/drm/i915/gt/selftest_workarounds.c
index 67a9aab801dd..14a8b25b6204 100644
--- a/drivers/gpu/drm/i915/gt/selftest_workarounds.c
+++ b/drivers/gpu/drm/i915/gt/selftest_workarounds.c
@@ -66,14 +66,14 @@ reference_lists_init(struct intel_gt *gt, struct wa_lists *lists)
memset(lists, 0, sizeof(*lists));
- wa_init_start(&lists->gt_wa_list, "GT_REF", "global");
+ wa_init_start(&lists->gt_wa_list, gt, "GT_REF", "global");
gt_init_workarounds(gt, &lists->gt_wa_list);
wa_init_finish(&lists->gt_wa_list);
for_each_engine(engine, gt, id) {
struct i915_wa_list *wal = &lists->engine[id].wa_list;
- wa_init_start(wal, "REF", engine->name);
+ wa_init_start(wal, gt, "REF", engine->name);
engine_init_workarounds(engine, wal);
wa_init_finish(wal);
@@ -138,11 +138,7 @@ read_nonprivs(struct intel_context *ce)
goto err_pin;
}
- i915_vma_lock(vma);
- err = i915_request_await_object(rq, vma->obj, true);
- if (err == 0)
- err = i915_vma_move_to_active(vma, rq, EXEC_OBJECT_WRITE);
- i915_vma_unlock(vma);
+ err = igt_vma_move_to_active_unlocked(vma, rq, EXEC_OBJECT_WRITE);
if (err)
goto err_req;
@@ -523,7 +519,7 @@ static int check_dirty_whitelist(struct intel_context *ce)
for (i = 0; i < engine->whitelist.count; i++) {
u32 reg = i915_mmio_reg_offset(engine->whitelist.list[i].reg);
struct i915_gem_ww_ctx ww;
- u64 addr = scratch->node.start;
+ u64 addr = i915_vma_offset(scratch);
struct i915_request *rq;
u32 srm, lrm, rsvd;
u32 expect;
@@ -632,21 +628,17 @@ retry:
goto err_request;
}
- err = i915_request_await_object(rq, batch->obj, false);
- if (err == 0)
- err = i915_vma_move_to_active(batch, rq, 0);
+ err = i915_vma_move_to_active(batch, rq, 0);
if (err)
goto err_request;
- err = i915_request_await_object(rq, scratch->obj, true);
- if (err == 0)
- err = i915_vma_move_to_active(scratch, rq,
- EXEC_OBJECT_WRITE);
+ err = i915_vma_move_to_active(scratch, rq,
+ EXEC_OBJECT_WRITE);
if (err)
goto err_request;
err = engine->emit_bb_start(rq,
- batch->node.start, PAGE_SIZE,
+ i915_vma_offset(batch), PAGE_SIZE,
0);
if (err)
goto err_request;
@@ -859,11 +851,7 @@ static int read_whitelisted_registers(struct intel_context *ce,
if (IS_ERR(rq))
return PTR_ERR(rq);
- i915_vma_lock(results);
- err = i915_request_await_object(rq, results->obj, true);
- if (err == 0)
- err = i915_vma_move_to_active(results, rq, EXEC_OBJECT_WRITE);
- i915_vma_unlock(results);
+ err = igt_vma_move_to_active_unlocked(results, rq, EXEC_OBJECT_WRITE);
if (err)
goto err_req;
@@ -878,7 +866,7 @@ static int read_whitelisted_registers(struct intel_context *ce,
}
for (i = 0; i < engine->whitelist.count; i++) {
- u64 offset = results->node.start + sizeof(u32) * i;
+ u64 offset = i915_vma_offset(results) + sizeof(u32) * i;
u32 reg = i915_mmio_reg_offset(engine->whitelist.list[i].reg);
/* Clear non priv flags */
@@ -943,16 +931,12 @@ static int scrub_whitelisted_registers(struct intel_context *ce)
goto err_request;
}
- i915_vma_lock(batch);
- err = i915_request_await_object(rq, batch->obj, false);
- if (err == 0)
- err = i915_vma_move_to_active(batch, rq, 0);
- i915_vma_unlock(batch);
+ err = igt_vma_move_to_active_unlocked(batch, rq, 0);
if (err)
goto err_request;
/* Perform the writes from an unprivileged "user" batch */
- err = engine->emit_bb_start(rq, batch->node.start, 0, 0);
+ err = engine->emit_bb_start(rq, i915_vma_offset(batch), 0, 0);
err_request:
err = request_add_sync(rq, err);
@@ -991,7 +975,7 @@ static bool pardon_reg(struct drm_i915_private *i915, i915_reg_t reg)
/* Alas, we must pardon some whitelists. Mistakes already made */
static const struct regmask pardon[] = {
{ GEN9_CTX_PREEMPT_REG, 9 },
- { GEN8_L3SQCREG4, 9 },
+ { _MMIO(0xb118), 9 }, /* GEN8_L3SQCREG4 */
};
return find_reg(i915, reg, pardon, ARRAY_SIZE(pardon));
diff --git a/drivers/gpu/drm/i915/gt/shmem_utils.c b/drivers/gpu/drm/i915/gt/shmem_utils.c
index 402f085f3a02..449c9ed44382 100644
--- a/drivers/gpu/drm/i915/gt/shmem_utils.c
+++ b/drivers/gpu/drm/i915/gt/shmem_utils.c
@@ -8,6 +8,7 @@
#include <linux/pagemap.h>
#include <linux/shmem_fs.h>
+#include "i915_drv.h"
#include "gem/i915_gem_object.h"
#include "gem/i915_gem_lmem.h"
#include "shmem_utils.h"
@@ -32,6 +33,8 @@ struct file *shmem_create_from_data(const char *name, void *data, size_t len)
struct file *shmem_create_from_object(struct drm_i915_gem_object *obj)
{
+ struct drm_i915_private *i915 = to_i915(obj->base.dev);
+ enum i915_map_type map_type;
struct file *file;
void *ptr;
@@ -41,8 +44,8 @@ struct file *shmem_create_from_object(struct drm_i915_gem_object *obj)
return file;
}
- ptr = i915_gem_object_pin_map_unlocked(obj, i915_gem_object_is_lmem(obj) ?
- I915_MAP_WC : I915_MAP_WB);
+ map_type = i915_coherent_map_type(i915, obj, true);
+ ptr = i915_gem_object_pin_map_unlocked(obj, map_type);
if (IS_ERR(ptr))
return ERR_CAST(ptr);
diff --git a/drivers/gpu/drm/i915/gt/sysfs_engines.c b/drivers/gpu/drm/i915/gt/sysfs_engines.c
index 967031056202..021f51d9b456 100644
--- a/drivers/gpu/drm/i915/gt/sysfs_engines.c
+++ b/drivers/gpu/drm/i915/gt/sysfs_engines.c
@@ -24,37 +24,37 @@ static struct intel_engine_cs *kobj_to_engine(struct kobject *kobj)
static ssize_t
name_show(struct kobject *kobj, struct kobj_attribute *attr, char *buf)
{
- return sprintf(buf, "%s\n", kobj_to_engine(kobj)->name);
+ return sysfs_emit(buf, "%s\n", kobj_to_engine(kobj)->name);
}
-static struct kobj_attribute name_attr =
+static const struct kobj_attribute name_attr =
__ATTR(name, 0444, name_show, NULL);
static ssize_t
class_show(struct kobject *kobj, struct kobj_attribute *attr, char *buf)
{
- return sprintf(buf, "%d\n", kobj_to_engine(kobj)->uabi_class);
+ return sysfs_emit(buf, "%d\n", kobj_to_engine(kobj)->uabi_class);
}
-static struct kobj_attribute class_attr =
+static const struct kobj_attribute class_attr =
__ATTR(class, 0444, class_show, NULL);
static ssize_t
inst_show(struct kobject *kobj, struct kobj_attribute *attr, char *buf)
{
- return sprintf(buf, "%d\n", kobj_to_engine(kobj)->uabi_instance);
+ return sysfs_emit(buf, "%d\n", kobj_to_engine(kobj)->uabi_instance);
}
-static struct kobj_attribute inst_attr =
+static const struct kobj_attribute inst_attr =
__ATTR(instance, 0444, inst_show, NULL);
static ssize_t
mmio_show(struct kobject *kobj, struct kobj_attribute *attr, char *buf)
{
- return sprintf(buf, "0x%x\n", kobj_to_engine(kobj)->mmio_base);
+ return sysfs_emit(buf, "0x%x\n", kobj_to_engine(kobj)->mmio_base);
}
-static struct kobj_attribute mmio_attr =
+static const struct kobj_attribute mmio_attr =
__ATTR(mmio_base, 0444, mmio_show, NULL);
static const char * const vcs_caps[] = {
@@ -107,11 +107,9 @@ __caps_show(struct intel_engine_cs *engine,
for_each_set_bit(n, &caps, show_unknown ? BITS_PER_LONG : count) {
if (n >= count || !repr[n]) {
if (GEM_WARN_ON(show_unknown))
- len += snprintf(buf + len, PAGE_SIZE - len,
- "[%x] ", n);
+ len += sysfs_emit_at(buf, len, "[%x] ", n);
} else {
- len += snprintf(buf + len, PAGE_SIZE - len,
- "%s ", repr[n]);
+ len += sysfs_emit_at(buf, len, "%s ", repr[n]);
}
if (GEM_WARN_ON(len >= PAGE_SIZE))
break;
@@ -127,7 +125,7 @@ caps_show(struct kobject *kobj, struct kobj_attribute *attr, char *buf)
return __caps_show(engine, engine->uabi_capabilities, buf, true);
}
-static struct kobj_attribute caps_attr =
+static const struct kobj_attribute caps_attr =
__ATTR(capabilities, 0444, caps_show, NULL);
static ssize_t
@@ -136,7 +134,7 @@ all_caps_show(struct kobject *kobj, struct kobj_attribute *attr, char *buf)
return __caps_show(kobj_to_engine(kobj), -1, buf, false);
}
-static struct kobj_attribute all_caps_attr =
+static const struct kobj_attribute all_caps_attr =
__ATTR(known_capabilities, 0444, all_caps_show, NULL);
static ssize_t
@@ -144,7 +142,7 @@ max_spin_store(struct kobject *kobj, struct kobj_attribute *attr,
const char *buf, size_t count)
{
struct intel_engine_cs *engine = kobj_to_engine(kobj);
- unsigned long long duration;
+ unsigned long long duration, clamped;
int err;
/*
@@ -168,7 +166,8 @@ max_spin_store(struct kobject *kobj, struct kobj_attribute *attr,
if (err)
return err;
- if (duration > jiffies_to_nsecs(2))
+ clamped = intel_clamp_max_busywait_duration_ns(engine, duration);
+ if (duration != clamped)
return -EINVAL;
WRITE_ONCE(engine->props.max_busywait_duration_ns, duration);
@@ -181,10 +180,10 @@ max_spin_show(struct kobject *kobj, struct kobj_attribute *attr, char *buf)
{
struct intel_engine_cs *engine = kobj_to_engine(kobj);
- return sprintf(buf, "%lu\n", engine->props.max_busywait_duration_ns);
+ return sysfs_emit(buf, "%lu\n", engine->props.max_busywait_duration_ns);
}
-static struct kobj_attribute max_spin_attr =
+static const struct kobj_attribute max_spin_attr =
__ATTR(max_busywait_duration_ns, 0644, max_spin_show, max_spin_store);
static ssize_t
@@ -192,10 +191,10 @@ max_spin_default(struct kobject *kobj, struct kobj_attribute *attr, char *buf)
{
struct intel_engine_cs *engine = kobj_to_engine(kobj);
- return sprintf(buf, "%lu\n", engine->defaults.max_busywait_duration_ns);
+ return sysfs_emit(buf, "%lu\n", engine->defaults.max_busywait_duration_ns);
}
-static struct kobj_attribute max_spin_def =
+static const struct kobj_attribute max_spin_def =
__ATTR(max_busywait_duration_ns, 0444, max_spin_default, NULL);
static ssize_t
@@ -203,7 +202,7 @@ timeslice_store(struct kobject *kobj, struct kobj_attribute *attr,
const char *buf, size_t count)
{
struct intel_engine_cs *engine = kobj_to_engine(kobj);
- unsigned long long duration;
+ unsigned long long duration, clamped;
int err;
/*
@@ -218,7 +217,8 @@ timeslice_store(struct kobject *kobj, struct kobj_attribute *attr,
if (err)
return err;
- if (duration > jiffies_to_msecs(MAX_SCHEDULE_TIMEOUT))
+ clamped = intel_clamp_timeslice_duration_ms(engine, duration);
+ if (duration != clamped)
return -EINVAL;
WRITE_ONCE(engine->props.timeslice_duration_ms, duration);
@@ -234,10 +234,10 @@ timeslice_show(struct kobject *kobj, struct kobj_attribute *attr, char *buf)
{
struct intel_engine_cs *engine = kobj_to_engine(kobj);
- return sprintf(buf, "%lu\n", engine->props.timeslice_duration_ms);
+ return sysfs_emit(buf, "%lu\n", engine->props.timeslice_duration_ms);
}
-static struct kobj_attribute timeslice_duration_attr =
+static const struct kobj_attribute timeslice_duration_attr =
__ATTR(timeslice_duration_ms, 0644, timeslice_show, timeslice_store);
static ssize_t
@@ -245,10 +245,10 @@ timeslice_default(struct kobject *kobj, struct kobj_attribute *attr, char *buf)
{
struct intel_engine_cs *engine = kobj_to_engine(kobj);
- return sprintf(buf, "%lu\n", engine->defaults.timeslice_duration_ms);
+ return sysfs_emit(buf, "%lu\n", engine->defaults.timeslice_duration_ms);
}
-static struct kobj_attribute timeslice_duration_def =
+static const struct kobj_attribute timeslice_duration_def =
__ATTR(timeslice_duration_ms, 0444, timeslice_default, NULL);
static ssize_t
@@ -256,7 +256,7 @@ stop_store(struct kobject *kobj, struct kobj_attribute *attr,
const char *buf, size_t count)
{
struct intel_engine_cs *engine = kobj_to_engine(kobj);
- unsigned long long duration;
+ unsigned long long duration, clamped;
int err;
/*
@@ -272,7 +272,8 @@ stop_store(struct kobject *kobj, struct kobj_attribute *attr,
if (err)
return err;
- if (duration > jiffies_to_msecs(MAX_SCHEDULE_TIMEOUT))
+ clamped = intel_clamp_stop_timeout_ms(engine, duration);
+ if (duration != clamped)
return -EINVAL;
WRITE_ONCE(engine->props.stop_timeout_ms, duration);
@@ -284,10 +285,10 @@ stop_show(struct kobject *kobj, struct kobj_attribute *attr, char *buf)
{
struct intel_engine_cs *engine = kobj_to_engine(kobj);
- return sprintf(buf, "%lu\n", engine->props.stop_timeout_ms);
+ return sysfs_emit(buf, "%lu\n", engine->props.stop_timeout_ms);
}
-static struct kobj_attribute stop_timeout_attr =
+static const struct kobj_attribute stop_timeout_attr =
__ATTR(stop_timeout_ms, 0644, stop_show, stop_store);
static ssize_t
@@ -295,10 +296,10 @@ stop_default(struct kobject *kobj, struct kobj_attribute *attr, char *buf)
{
struct intel_engine_cs *engine = kobj_to_engine(kobj);
- return sprintf(buf, "%lu\n", engine->defaults.stop_timeout_ms);
+ return sysfs_emit(buf, "%lu\n", engine->defaults.stop_timeout_ms);
}
-static struct kobj_attribute stop_timeout_def =
+static const struct kobj_attribute stop_timeout_def =
__ATTR(stop_timeout_ms, 0444, stop_default, NULL);
static ssize_t
@@ -306,7 +307,7 @@ preempt_timeout_store(struct kobject *kobj, struct kobj_attribute *attr,
const char *buf, size_t count)
{
struct intel_engine_cs *engine = kobj_to_engine(kobj);
- unsigned long long timeout;
+ unsigned long long timeout, clamped;
int err;
/*
@@ -322,7 +323,8 @@ preempt_timeout_store(struct kobject *kobj, struct kobj_attribute *attr,
if (err)
return err;
- if (timeout > jiffies_to_msecs(MAX_SCHEDULE_TIMEOUT))
+ clamped = intel_clamp_preempt_timeout_ms(engine, timeout);
+ if (timeout != clamped)
return -EINVAL;
WRITE_ONCE(engine->props.preempt_timeout_ms, timeout);
@@ -339,10 +341,10 @@ preempt_timeout_show(struct kobject *kobj, struct kobj_attribute *attr,
{
struct intel_engine_cs *engine = kobj_to_engine(kobj);
- return sprintf(buf, "%lu\n", engine->props.preempt_timeout_ms);
+ return sysfs_emit(buf, "%lu\n", engine->props.preempt_timeout_ms);
}
-static struct kobj_attribute preempt_timeout_attr =
+static const struct kobj_attribute preempt_timeout_attr =
__ATTR(preempt_timeout_ms, 0644, preempt_timeout_show, preempt_timeout_store);
static ssize_t
@@ -351,10 +353,10 @@ preempt_timeout_default(struct kobject *kobj, struct kobj_attribute *attr,
{
struct intel_engine_cs *engine = kobj_to_engine(kobj);
- return sprintf(buf, "%lu\n", engine->defaults.preempt_timeout_ms);
+ return sysfs_emit(buf, "%lu\n", engine->defaults.preempt_timeout_ms);
}
-static struct kobj_attribute preempt_timeout_def =
+static const struct kobj_attribute preempt_timeout_def =
__ATTR(preempt_timeout_ms, 0444, preempt_timeout_default, NULL);
static ssize_t
@@ -362,7 +364,7 @@ heartbeat_store(struct kobject *kobj, struct kobj_attribute *attr,
const char *buf, size_t count)
{
struct intel_engine_cs *engine = kobj_to_engine(kobj);
- unsigned long long delay;
+ unsigned long long delay, clamped;
int err;
/*
@@ -379,7 +381,8 @@ heartbeat_store(struct kobject *kobj, struct kobj_attribute *attr,
if (err)
return err;
- if (delay >= jiffies_to_msecs(MAX_SCHEDULE_TIMEOUT))
+ clamped = intel_clamp_heartbeat_interval_ms(engine, delay);
+ if (delay != clamped)
return -EINVAL;
err = intel_engine_set_heartbeat(engine, delay);
@@ -394,10 +397,10 @@ heartbeat_show(struct kobject *kobj, struct kobj_attribute *attr, char *buf)
{
struct intel_engine_cs *engine = kobj_to_engine(kobj);
- return sprintf(buf, "%lu\n", engine->props.heartbeat_interval_ms);
+ return sysfs_emit(buf, "%lu\n", engine->props.heartbeat_interval_ms);
}
-static struct kobj_attribute heartbeat_interval_attr =
+static const struct kobj_attribute heartbeat_interval_attr =
__ATTR(heartbeat_interval_ms, 0644, heartbeat_show, heartbeat_store);
static ssize_t
@@ -405,10 +408,10 @@ heartbeat_default(struct kobject *kobj, struct kobj_attribute *attr, char *buf)
{
struct intel_engine_cs *engine = kobj_to_engine(kobj);
- return sprintf(buf, "%lu\n", engine->defaults.heartbeat_interval_ms);
+ return sysfs_emit(buf, "%lu\n", engine->defaults.heartbeat_interval_ms);
}
-static struct kobj_attribute heartbeat_interval_def =
+static const struct kobj_attribute heartbeat_interval_def =
__ATTR(heartbeat_interval_ms, 0444, heartbeat_default, NULL);
static void kobj_engine_release(struct kobject *kobj)
@@ -416,7 +419,7 @@ static void kobj_engine_release(struct kobject *kobj)
kfree(kobj);
}
-static struct kobj_type kobj_engine_type = {
+static const struct kobj_type kobj_engine_type = {
.release = kobj_engine_release,
.sysfs_ops = &kobj_sysfs_ops
};
@@ -444,7 +447,7 @@ kobj_engine(struct kobject *dir, struct intel_engine_cs *engine)
static void add_defaults(struct kobj_engine *parent)
{
- static const struct attribute *files[] = {
+ static const struct attribute * const files[] = {
&max_spin_def.attr,
&stop_timeout_def.attr,
#if CONFIG_DRM_I915_HEARTBEAT_INTERVAL
@@ -480,7 +483,7 @@ static void add_defaults(struct kobj_engine *parent)
void intel_engines_add_sysfs(struct drm_i915_private *i915)
{
- static const struct attribute *files[] = {
+ static const struct attribute * const files[] = {
&name_attr.attr,
&class_attr.attr,
&inst_attr.attr,
diff --git a/drivers/gpu/drm/i915/gt/uc/abi/guc_actions_abi.h b/drivers/gpu/drm/i915/gt/uc/abi/guc_actions_abi.h
index 29ef8afc8c2e..f359bef046e0 100644
--- a/drivers/gpu/drm/i915/gt/uc/abi/guc_actions_abi.h
+++ b/drivers/gpu/drm/i915/gt/uc/abi/guc_actions_abi.h
@@ -117,6 +117,7 @@ enum intel_guc_action {
INTEL_GUC_ACTION_ENTER_S_STATE = 0x501,
INTEL_GUC_ACTION_EXIT_S_STATE = 0x502,
INTEL_GUC_ACTION_GLOBAL_SCHED_POLICY_CHANGE = 0x506,
+ INTEL_GUC_ACTION_UPDATE_SCHEDULING_POLICIES_KLV = 0x509,
INTEL_GUC_ACTION_SCHED_CONTEXT = 0x1000,
INTEL_GUC_ACTION_SCHED_CONTEXT_MODE_SET = 0x1001,
INTEL_GUC_ACTION_SCHED_CONTEXT_MODE_DONE = 0x1002,
diff --git a/drivers/gpu/drm/i915/gt/uc/abi/guc_actions_slpc_abi.h b/drivers/gpu/drm/i915/gt/uc/abi/guc_actions_slpc_abi.h
index 4c840a2639dc..811add10c30d 100644
--- a/drivers/gpu/drm/i915/gt/uc/abi/guc_actions_slpc_abi.h
+++ b/drivers/gpu/drm/i915/gt/uc/abi/guc_actions_slpc_abi.h
@@ -128,6 +128,15 @@ enum slpc_media_ratio_mode {
SLPC_MEDIA_RATIO_MODE_FIXED_ONE_TO_TWO = 2,
};
+enum slpc_gucrc_mode {
+ SLPC_GUCRC_MODE_HW = 0,
+ SLPC_GUCRC_MODE_GUCRC_NO_RC6 = 1,
+ SLPC_GUCRC_MODE_GUCRC_STATIC_TIMEOUT = 2,
+ SLPC_GUCRC_MODE_GUCRC_DYNAMIC_HYSTERESIS = 3,
+
+ SLPC_GUCRC_MODE_MAX,
+};
+
enum slpc_event_id {
SLPC_EVENT_RESET = 0,
SLPC_EVENT_SHUTDOWN = 1,
diff --git a/drivers/gpu/drm/i915/gt/uc/abi/guc_errors_abi.h b/drivers/gpu/drm/i915/gt/uc/abi/guc_errors_abi.h
index 8085fb181274..bcb1129b3610 100644
--- a/drivers/gpu/drm/i915/gt/uc/abi/guc_errors_abi.h
+++ b/drivers/gpu/drm/i915/gt/uc/abi/guc_errors_abi.h
@@ -21,6 +21,9 @@ enum intel_guc_load_status {
INTEL_GUC_LOAD_STATUS_ERROR_DEVID_BUILD_MISMATCH = 0x02,
INTEL_GUC_LOAD_STATUS_GUC_PREPROD_BUILD_MISMATCH = 0x03,
INTEL_GUC_LOAD_STATUS_ERROR_DEVID_INVALID_GUCTYPE = 0x04,
+ INTEL_GUC_LOAD_STATUS_HWCONFIG_START = 0x05,
+ INTEL_GUC_LOAD_STATUS_HWCONFIG_DONE = 0x06,
+ INTEL_GUC_LOAD_STATUS_HWCONFIG_ERROR = 0x07,
INTEL_GUC_LOAD_STATUS_GDT_DONE = 0x10,
INTEL_GUC_LOAD_STATUS_IDT_DONE = 0x20,
INTEL_GUC_LOAD_STATUS_LAPIC_DONE = 0x30,
@@ -38,4 +41,18 @@ enum intel_guc_load_status {
INTEL_GUC_LOAD_STATUS_READY = 0xF0,
};
+enum intel_bootrom_load_status {
+ INTEL_BOOTROM_STATUS_NO_KEY_FOUND = 0x13,
+ INTEL_BOOTROM_STATUS_AES_PROD_KEY_FOUND = 0x1A,
+ INTEL_BOOTROM_STATUS_RSA_FAILED = 0x50,
+ INTEL_BOOTROM_STATUS_PAVPC_FAILED = 0x73,
+ INTEL_BOOTROM_STATUS_WOPCM_FAILED = 0x74,
+ INTEL_BOOTROM_STATUS_LOADLOC_FAILED = 0x75,
+ INTEL_BOOTROM_STATUS_JUMP_PASSED = 0x76,
+ INTEL_BOOTROM_STATUS_JUMP_FAILED = 0x77,
+ INTEL_BOOTROM_STATUS_RC6CTXCONFIG_FAILED = 0x79,
+ INTEL_BOOTROM_STATUS_MPUMAP_INCORRECT = 0x7A,
+ INTEL_BOOTROM_STATUS_EXCEPTION = 0x7E,
+};
+
#endif /* _ABI_GUC_ERRORS_ABI_H */
diff --git a/drivers/gpu/drm/i915/gt/uc/abi/guc_klvs_abi.h b/drivers/gpu/drm/i915/gt/uc/abi/guc_klvs_abi.h
index 4a59478c3b5c..58012edd4eb0 100644
--- a/drivers/gpu/drm/i915/gt/uc/abi/guc_klvs_abi.h
+++ b/drivers/gpu/drm/i915/gt/uc/abi/guc_klvs_abi.h
@@ -82,9 +82,16 @@
#define GUC_KLV_SELF_CFG_G2H_CTB_SIZE_LEN 1u
/*
+ * Global scheduling policy update keys.
+ */
+enum {
+ GUC_SCHEDULING_POLICIES_KLV_ID_RENDER_COMPUTE_YIELD = 0x1001,
+};
+
+/*
* Per context scheduling policy update keys.
*/
-enum {
+enum {
GUC_CONTEXT_POLICIES_KLV_ID_EXECUTION_QUANTUM = 0x2001,
GUC_CONTEXT_POLICIES_KLV_ID_PREEMPTION_TIMEOUT = 0x2002,
GUC_CONTEXT_POLICIES_KLV_ID_SCHEDULING_PRIORITY = 0x2003,
diff --git a/drivers/gpu/drm/i915/gt/uc/guc_capture_fwif.h b/drivers/gpu/drm/i915/gt/uc/guc_capture_fwif.h
index 3624abfd22d1..9d589c28f40f 100644
--- a/drivers/gpu/drm/i915/gt/uc/guc_capture_fwif.h
+++ b/drivers/gpu/drm/i915/gt/uc/guc_capture_fwif.h
@@ -73,7 +73,7 @@ struct guc_debug_capture_list_header {
struct guc_debug_capture_list {
struct guc_debug_capture_list_header header;
- struct guc_mmio_reg regs[0];
+ struct guc_mmio_reg regs[];
} __packed;
/**
@@ -125,7 +125,7 @@ struct guc_state_capture_header_t {
struct guc_state_capture_t {
struct guc_state_capture_header_t header;
- struct guc_mmio_reg mmio_entries[0];
+ struct guc_mmio_reg mmio_entries[];
} __packed;
enum guc_capture_group_types {
@@ -145,7 +145,7 @@ struct guc_state_capture_group_header_t {
/* this is the top level structure where an error-capture dump starts */
struct guc_state_capture_group_t {
struct guc_state_capture_group_header_t grp_header;
- struct guc_state_capture_t capture_entries[0];
+ struct guc_state_capture_t capture_entries[];
} __packed;
/**
diff --git a/drivers/gpu/drm/i915/gt/uc/intel_gsc_fw.c b/drivers/gpu/drm/i915/gt/uc/intel_gsc_fw.c
new file mode 100644
index 000000000000..1d9fdfb11268
--- /dev/null
+++ b/drivers/gpu/drm/i915/gt/uc/intel_gsc_fw.c
@@ -0,0 +1,209 @@
+// SPDX-License-Identifier: MIT
+/*
+ * Copyright © 2022 Intel Corporation
+ */
+
+#include "gt/intel_engine_pm.h"
+#include "gt/intel_gpu_commands.h"
+#include "gt/intel_gt.h"
+#include "gt/intel_gt_print.h"
+#include "gt/intel_ring.h"
+#include "intel_gsc_fw.h"
+
+#define GSC_FW_STATUS_REG _MMIO(0x116C40)
+#define GSC_FW_CURRENT_STATE REG_GENMASK(3, 0)
+#define GSC_FW_CURRENT_STATE_RESET 0
+#define GSC_FW_INIT_COMPLETE_BIT REG_BIT(9)
+
+static bool gsc_is_in_reset(struct intel_uncore *uncore)
+{
+ u32 fw_status = intel_uncore_read(uncore, GSC_FW_STATUS_REG);
+
+ return REG_FIELD_GET(GSC_FW_CURRENT_STATE, fw_status) ==
+ GSC_FW_CURRENT_STATE_RESET;
+}
+
+bool intel_gsc_uc_fw_init_done(struct intel_gsc_uc *gsc)
+{
+ struct intel_uncore *uncore = gsc_uc_to_gt(gsc)->uncore;
+ u32 fw_status = intel_uncore_read(uncore, GSC_FW_STATUS_REG);
+
+ return fw_status & GSC_FW_INIT_COMPLETE_BIT;
+}
+
+static int emit_gsc_fw_load(struct i915_request *rq, struct intel_gsc_uc *gsc)
+{
+ u32 offset = i915_ggtt_offset(gsc->local);
+ u32 *cs;
+
+ cs = intel_ring_begin(rq, 4);
+ if (IS_ERR(cs))
+ return PTR_ERR(cs);
+
+ *cs++ = GSC_FW_LOAD;
+ *cs++ = lower_32_bits(offset);
+ *cs++ = upper_32_bits(offset);
+ *cs++ = (gsc->local->size / SZ_4K) | HECI1_FW_LIMIT_VALID;
+
+ intel_ring_advance(rq, cs);
+
+ return 0;
+}
+
+static int gsc_fw_load(struct intel_gsc_uc *gsc)
+{
+ struct intel_context *ce = gsc->ce;
+ struct i915_request *rq;
+ int err;
+
+ if (!ce)
+ return -ENODEV;
+
+ rq = i915_request_create(ce);
+ if (IS_ERR(rq))
+ return PTR_ERR(rq);
+
+ if (ce->engine->emit_init_breadcrumb) {
+ err = ce->engine->emit_init_breadcrumb(rq);
+ if (err)
+ goto out_rq;
+ }
+
+ err = emit_gsc_fw_load(rq, gsc);
+ if (err)
+ goto out_rq;
+
+ err = ce->engine->emit_flush(rq, 0);
+
+out_rq:
+ i915_request_get(rq);
+
+ if (unlikely(err))
+ i915_request_set_error_once(rq, err);
+
+ i915_request_add(rq);
+
+ if (!err && i915_request_wait(rq, 0, msecs_to_jiffies(500)) < 0)
+ err = -ETIME;
+
+ i915_request_put(rq);
+
+ if (err)
+ gt_err(gsc_uc_to_gt(gsc), "Request submission for GSC load failed %pe\n",
+ ERR_PTR(err));
+
+ return err;
+}
+
+static int gsc_fw_load_prepare(struct intel_gsc_uc *gsc)
+{
+ struct intel_gt *gt = gsc_uc_to_gt(gsc);
+ struct drm_i915_private *i915 = gt->i915;
+ struct drm_i915_gem_object *obj;
+ void *src, *dst;
+
+ if (!gsc->local)
+ return -ENODEV;
+
+ obj = gsc->local->obj;
+
+ if (obj->base.size < gsc->fw.size)
+ return -ENOSPC;
+
+ dst = i915_gem_object_pin_map_unlocked(obj,
+ i915_coherent_map_type(i915, obj, true));
+ if (IS_ERR(dst))
+ return PTR_ERR(dst);
+
+ src = i915_gem_object_pin_map_unlocked(gsc->fw.obj,
+ i915_coherent_map_type(i915, gsc->fw.obj, true));
+ if (IS_ERR(src)) {
+ i915_gem_object_unpin_map(obj);
+ return PTR_ERR(src);
+ }
+
+ memset(dst, 0, obj->base.size);
+ memcpy(dst, src, gsc->fw.size);
+
+ i915_gem_object_unpin_map(gsc->fw.obj);
+ i915_gem_object_unpin_map(obj);
+
+ return 0;
+}
+
+static int gsc_fw_wait(struct intel_gt *gt)
+{
+ return intel_wait_for_register(gt->uncore,
+ GSC_FW_STATUS_REG,
+ GSC_FW_INIT_COMPLETE_BIT,
+ GSC_FW_INIT_COMPLETE_BIT,
+ 500);
+}
+
+int intel_gsc_uc_fw_upload(struct intel_gsc_uc *gsc)
+{
+ struct intel_gt *gt = gsc_uc_to_gt(gsc);
+ struct intel_uc_fw *gsc_fw = &gsc->fw;
+ int err;
+
+ /* check current fw status */
+ if (intel_gsc_uc_fw_init_done(gsc)) {
+ if (GEM_WARN_ON(!intel_uc_fw_is_loaded(gsc_fw)))
+ intel_uc_fw_change_status(gsc_fw, INTEL_UC_FIRMWARE_TRANSFERRED);
+ return -EEXIST;
+ }
+
+ if (!intel_uc_fw_is_loadable(gsc_fw))
+ return -ENOEXEC;
+
+ /* FW blob is ok, so clean the status */
+ intel_uc_fw_sanitize(&gsc->fw);
+
+ if (!gsc_is_in_reset(gt->uncore))
+ return -EIO;
+
+ err = gsc_fw_load_prepare(gsc);
+ if (err)
+ goto fail;
+
+ /*
+ * GSC is only killed by an FLR, so we need to trigger one on unload to
+ * make sure we stop it. This is because we assign a chunk of memory to
+ * the GSC as part of the FW load , so we need to make sure it stops
+ * using it when we release it to the system on driver unload. Note that
+ * this is not a problem of the unload per-se, because the GSC will not
+ * touch that memory unless there are requests for it coming from the
+ * driver; therefore, no accesses will happen while i915 is not loaded,
+ * but if we re-load the driver then the GSC might wake up and try to
+ * access that old memory location again.
+ * Given that an FLR is a very disruptive action (see the FLR function
+ * for details), we want to do it as the last action before releasing
+ * the access to the MMIO bar, which means we need to do it as part of
+ * the primary uncore cleanup.
+ * An alternative approach to the FLR would be to use a memory location
+ * that survives driver unload, like e.g. stolen memory, and keep the
+ * GSC loaded across reloads. However, this requires us to make sure we
+ * preserve that memory location on unload and then determine and
+ * reserve its offset on each subsequent load, which is not trivial, so
+ * it is easier to just kill everything and start fresh.
+ */
+ intel_uncore_set_flr_on_fini(&gt->i915->uncore);
+
+ err = gsc_fw_load(gsc);
+ if (err)
+ goto fail;
+
+ err = gsc_fw_wait(gt);
+ if (err)
+ goto fail;
+
+ /* FW is not fully operational until we enable SW proxy */
+ intel_uc_fw_change_status(gsc_fw, INTEL_UC_FIRMWARE_TRANSFERRED);
+
+ gt_info(gt, "Loaded GSC firmware %s\n", gsc_fw->file_selected.path);
+
+ return 0;
+
+fail:
+ return intel_uc_fw_mark_load_failed(gsc_fw, err);
+}
diff --git a/drivers/gpu/drm/i915/gt/uc/intel_gsc_fw.h b/drivers/gpu/drm/i915/gt/uc/intel_gsc_fw.h
new file mode 100644
index 000000000000..f4c1106bb2a9
--- /dev/null
+++ b/drivers/gpu/drm/i915/gt/uc/intel_gsc_fw.h
@@ -0,0 +1,17 @@
+/* SPDX-License-Identifier: MIT */
+/*
+ * Copyright © 2022 Intel Corporation
+ */
+
+#ifndef _INTEL_GSC_FW_H_
+#define _INTEL_GSC_FW_H_
+
+#include <linux/types.h>
+
+struct intel_gsc_uc;
+struct intel_uncore;
+
+int intel_gsc_uc_fw_upload(struct intel_gsc_uc *gsc);
+bool intel_gsc_uc_fw_init_done(struct intel_gsc_uc *gsc);
+
+#endif
diff --git a/drivers/gpu/drm/i915/gt/uc/intel_gsc_uc.c b/drivers/gpu/drm/i915/gt/uc/intel_gsc_uc.c
new file mode 100644
index 000000000000..2d5b70b3384c
--- /dev/null
+++ b/drivers/gpu/drm/i915/gt/uc/intel_gsc_uc.c
@@ -0,0 +1,155 @@
+// SPDX-License-Identifier: MIT
+/*
+ * Copyright © 2022 Intel Corporation
+ */
+
+#include <linux/types.h>
+
+#include "gt/intel_gt.h"
+#include "gt/intel_gt_print.h"
+#include "intel_gsc_uc.h"
+#include "intel_gsc_fw.h"
+#include "i915_drv.h"
+
+static void gsc_work(struct work_struct *work)
+{
+ struct intel_gsc_uc *gsc = container_of(work, typeof(*gsc), work);
+ struct intel_gt *gt = gsc_uc_to_gt(gsc);
+ intel_wakeref_t wakeref;
+
+ with_intel_runtime_pm(gt->uncore->rpm, wakeref)
+ intel_gsc_uc_fw_upload(gsc);
+}
+
+static bool gsc_engine_supported(struct intel_gt *gt)
+{
+ intel_engine_mask_t mask;
+
+ /*
+ * We reach here from i915_driver_early_probe for the primary GT before
+ * its engine mask is set, so we use the device info engine mask for it.
+ * For other GTs we expect the GT-specific mask to be set before we
+ * call this function.
+ */
+ GEM_BUG_ON(!gt_is_root(gt) && !gt->info.engine_mask);
+
+ if (gt_is_root(gt))
+ mask = RUNTIME_INFO(gt->i915)->platform_engine_mask;
+ else
+ mask = gt->info.engine_mask;
+
+ return __HAS_ENGINE(mask, GSC0);
+}
+
+void intel_gsc_uc_init_early(struct intel_gsc_uc *gsc)
+{
+ intel_uc_fw_init_early(&gsc->fw, INTEL_UC_FW_TYPE_GSC);
+ INIT_WORK(&gsc->work, gsc_work);
+
+ /* we can arrive here from i915_driver_early_probe for primary
+ * GT with it being not fully setup hence check device info's
+ * engine mask
+ */
+ if (!gsc_engine_supported(gsc_uc_to_gt(gsc))) {
+ intel_uc_fw_change_status(&gsc->fw, INTEL_UC_FIRMWARE_NOT_SUPPORTED);
+ return;
+ }
+}
+
+int intel_gsc_uc_init(struct intel_gsc_uc *gsc)
+{
+ static struct lock_class_key gsc_lock;
+ struct intel_gt *gt = gsc_uc_to_gt(gsc);
+ struct intel_engine_cs *engine = gt->engine[GSC0];
+ struct intel_context *ce;
+ struct i915_vma *vma;
+ int err;
+
+ err = intel_uc_fw_init(&gsc->fw);
+ if (err)
+ goto out;
+
+ vma = intel_guc_allocate_vma(&gt->uc.guc, SZ_8M);
+ if (IS_ERR(vma)) {
+ err = PTR_ERR(vma);
+ goto out_fw;
+ }
+
+ gsc->local = vma;
+
+ ce = intel_engine_create_pinned_context(engine, engine->gt->vm, SZ_4K,
+ I915_GEM_HWS_GSC_ADDR,
+ &gsc_lock, "gsc_context");
+ if (IS_ERR(ce)) {
+ gt_err(gt, "failed to create GSC CS ctx for FW communication\n");
+ err = PTR_ERR(ce);
+ goto out_vma;
+ }
+
+ gsc->ce = ce;
+
+ intel_uc_fw_change_status(&gsc->fw, INTEL_UC_FIRMWARE_LOADABLE);
+
+ return 0;
+
+out_vma:
+ i915_vma_unpin_and_release(&gsc->local, 0);
+out_fw:
+ intel_uc_fw_fini(&gsc->fw);
+out:
+ gt_probe_error(gt, "GSC init failed %pe\n", ERR_PTR(err));
+ return err;
+}
+
+void intel_gsc_uc_fini(struct intel_gsc_uc *gsc)
+{
+ if (!intel_uc_fw_is_loadable(&gsc->fw))
+ return;
+
+ flush_work(&gsc->work);
+
+ if (gsc->ce)
+ intel_engine_destroy_pinned_context(fetch_and_zero(&gsc->ce));
+
+ i915_vma_unpin_and_release(&gsc->local, 0);
+
+ intel_uc_fw_fini(&gsc->fw);
+}
+
+void intel_gsc_uc_flush_work(struct intel_gsc_uc *gsc)
+{
+ if (!intel_uc_fw_is_loadable(&gsc->fw))
+ return;
+
+ flush_work(&gsc->work);
+}
+
+void intel_gsc_uc_resume(struct intel_gsc_uc *gsc)
+{
+ if (!intel_uc_fw_is_loadable(&gsc->fw))
+ return;
+
+ /*
+ * we only want to start the GSC worker from here in the actual resume
+ * flow and not during driver load. This is because GSC load is slow and
+ * therefore we want to make sure that the default state init completes
+ * first to not slow down the init thread. A separate call to
+ * intel_gsc_uc_load_start will ensure that the GSC is loaded during
+ * driver load.
+ */
+ if (!gsc_uc_to_gt(gsc)->engine[GSC0]->default_state)
+ return;
+
+ intel_gsc_uc_load_start(gsc);
+}
+
+void intel_gsc_uc_load_start(struct intel_gsc_uc *gsc)
+{
+ if (!intel_uc_fw_is_loadable(&gsc->fw))
+ return;
+
+ if (intel_gsc_uc_fw_init_done(gsc))
+ return;
+
+ queue_work(system_unbound_wq, &gsc->work);
+}
diff --git a/drivers/gpu/drm/i915/gt/uc/intel_gsc_uc.h b/drivers/gpu/drm/i915/gt/uc/intel_gsc_uc.h
new file mode 100644
index 000000000000..5f50fa1ff8b9
--- /dev/null
+++ b/drivers/gpu/drm/i915/gt/uc/intel_gsc_uc.h
@@ -0,0 +1,49 @@
+/* SPDX-License-Identifier: MIT */
+/*
+ * Copyright © 2022 Intel Corporation
+ */
+
+#ifndef _INTEL_GSC_UC_H_
+#define _INTEL_GSC_UC_H_
+
+#include "intel_uc_fw.h"
+
+struct i915_vma;
+struct intel_context;
+
+struct intel_gsc_uc {
+ /* Generic uC firmware management */
+ struct intel_uc_fw fw;
+
+ /* GSC-specific additions */
+ struct i915_vma *local; /* private memory for GSC usage */
+ struct intel_context *ce; /* for submission to GSC FW via GSC engine */
+
+ struct work_struct work; /* for delayed load */
+};
+
+void intel_gsc_uc_init_early(struct intel_gsc_uc *gsc);
+int intel_gsc_uc_init(struct intel_gsc_uc *gsc);
+void intel_gsc_uc_fini(struct intel_gsc_uc *gsc);
+void intel_gsc_uc_suspend(struct intel_gsc_uc *gsc);
+void intel_gsc_uc_resume(struct intel_gsc_uc *gsc);
+void intel_gsc_uc_flush_work(struct intel_gsc_uc *gsc);
+void intel_gsc_uc_load_start(struct intel_gsc_uc *gsc);
+
+static inline bool intel_gsc_uc_is_supported(struct intel_gsc_uc *gsc)
+{
+ return intel_uc_fw_is_supported(&gsc->fw);
+}
+
+static inline bool intel_gsc_uc_is_wanted(struct intel_gsc_uc *gsc)
+{
+ return intel_uc_fw_is_enabled(&gsc->fw);
+}
+
+static inline bool intel_gsc_uc_is_used(struct intel_gsc_uc *gsc)
+{
+ GEM_BUG_ON(__intel_uc_fw_status(&gsc->fw) == INTEL_UC_FIRMWARE_SELECTED);
+ return intel_uc_fw_is_available(&gsc->fw);
+}
+
+#endif
diff --git a/drivers/gpu/drm/i915/gt/uc/intel_gsc_uc_heci_cmd_submit.c b/drivers/gpu/drm/i915/gt/uc/intel_gsc_uc_heci_cmd_submit.c
new file mode 100644
index 000000000000..ea0da06e2f39
--- /dev/null
+++ b/drivers/gpu/drm/i915/gt/uc/intel_gsc_uc_heci_cmd_submit.c
@@ -0,0 +1,109 @@
+// SPDX-License-Identifier: MIT
+/*
+ * Copyright © 2023 Intel Corporation
+ */
+
+#include "gt/intel_engine_pm.h"
+#include "gt/intel_gpu_commands.h"
+#include "gt/intel_gt.h"
+#include "gt/intel_ring.h"
+#include "intel_gsc_uc_heci_cmd_submit.h"
+
+struct gsc_heci_pkt {
+ u64 addr_in;
+ u32 size_in;
+ u64 addr_out;
+ u32 size_out;
+};
+
+static int emit_gsc_heci_pkt(struct i915_request *rq, struct gsc_heci_pkt *pkt)
+{
+ u32 *cs;
+
+ cs = intel_ring_begin(rq, 8);
+ if (IS_ERR(cs))
+ return PTR_ERR(cs);
+
+ *cs++ = GSC_HECI_CMD_PKT;
+ *cs++ = lower_32_bits(pkt->addr_in);
+ *cs++ = upper_32_bits(pkt->addr_in);
+ *cs++ = pkt->size_in;
+ *cs++ = lower_32_bits(pkt->addr_out);
+ *cs++ = upper_32_bits(pkt->addr_out);
+ *cs++ = pkt->size_out;
+ *cs++ = 0;
+
+ intel_ring_advance(rq, cs);
+
+ return 0;
+}
+
+int intel_gsc_uc_heci_cmd_submit_packet(struct intel_gsc_uc *gsc, u64 addr_in,
+ u32 size_in, u64 addr_out,
+ u32 size_out)
+{
+ struct intel_context *ce = gsc->ce;
+ struct i915_request *rq;
+ struct gsc_heci_pkt pkt = {
+ .addr_in = addr_in,
+ .size_in = size_in,
+ .addr_out = addr_out,
+ .size_out = size_out
+ };
+ int err;
+
+ if (!ce)
+ return -ENODEV;
+
+ rq = i915_request_create(ce);
+ if (IS_ERR(rq))
+ return PTR_ERR(rq);
+
+ if (ce->engine->emit_init_breadcrumb) {
+ err = ce->engine->emit_init_breadcrumb(rq);
+ if (err)
+ goto out_rq;
+ }
+
+ err = emit_gsc_heci_pkt(rq, &pkt);
+
+ if (err)
+ goto out_rq;
+
+ err = ce->engine->emit_flush(rq, 0);
+
+out_rq:
+ i915_request_get(rq);
+
+ if (unlikely(err))
+ i915_request_set_error_once(rq, err);
+
+ i915_request_add(rq);
+
+ if (!err && i915_request_wait(rq, 0, msecs_to_jiffies(500)) < 0)
+ err = -ETIME;
+
+ i915_request_put(rq);
+
+ if (err)
+ drm_err(&gsc_uc_to_gt(gsc)->i915->drm,
+ "Request submission for GSC heci cmd failed (%d)\n",
+ err);
+
+ return err;
+}
+
+void intel_gsc_uc_heci_cmd_emit_mtl_header(struct intel_gsc_mtl_header *header,
+ u8 heci_client_id, u32 message_size,
+ u64 host_session_id)
+{
+ host_session_id &= ~HOST_SESSION_MASK;
+ if (heci_client_id == HECI_MEADDRESS_PXP)
+ host_session_id |= HOST_SESSION_PXP_SINGLE;
+
+ header->validity_marker = GSC_HECI_VALIDITY_MARKER;
+ header->heci_client_id = heci_client_id;
+ header->host_session_handle = host_session_id;
+ header->header_version = MTL_GSC_HEADER_VERSION;
+ header->message_size = message_size;
+}
diff --git a/drivers/gpu/drm/i915/gt/uc/intel_gsc_uc_heci_cmd_submit.h b/drivers/gpu/drm/i915/gt/uc/intel_gsc_uc_heci_cmd_submit.h
new file mode 100644
index 000000000000..3d56ae501991
--- /dev/null
+++ b/drivers/gpu/drm/i915/gt/uc/intel_gsc_uc_heci_cmd_submit.h
@@ -0,0 +1,61 @@
+/* SPDX-License-Identifier: MIT */
+/*
+ * Copyright © 2023 Intel Corporation
+ */
+
+#ifndef _INTEL_GSC_UC_HECI_CMD_SUBMIT_H_
+#define _INTEL_GSC_UC_HECI_CMD_SUBMIT_H_
+
+#include <linux/types.h>
+
+struct intel_gsc_uc;
+struct intel_gsc_mtl_header {
+ u32 validity_marker;
+#define GSC_HECI_VALIDITY_MARKER 0xA578875A
+
+ u8 heci_client_id;
+#define HECI_MEADDRESS_PXP 17
+#define HECI_MEADDRESS_HDCP 18
+
+ u8 reserved1;
+
+ u16 header_version;
+#define MTL_GSC_HEADER_VERSION 1
+
+ /*
+ * FW allows host to decide host_session handle
+ * as it sees fit.
+ * For intertracebility reserving select bits(60-63)
+ * to differentiate caller-target subsystem
+ * 0000 - HDCP
+ * 0001 - PXP Single Session
+ */
+ u64 host_session_handle;
+#define HOST_SESSION_MASK REG_GENMASK64(63, 60)
+#define HOST_SESSION_PXP_SINGLE BIT_ULL(60)
+ u64 gsc_message_handle;
+
+ u32 message_size; /* lower 20 bits only, upper 12 are reserved */
+
+ /*
+ * Flags mask:
+ * Bit 0: Pending
+ * Bit 1: Session Cleanup;
+ * Bits 2-15: Flags
+ * Bits 16-31: Extension Size
+ * According to internal spec flags are either input or output
+ * we distinguish the flags using OUTFLAG or INFLAG
+ */
+ u32 flags;
+#define GSC_OUTFLAG_MSG_PENDING 1
+
+ u32 status;
+} __packed;
+
+int intel_gsc_uc_heci_cmd_submit_packet(struct intel_gsc_uc *gsc,
+ u64 addr_in, u32 size_in,
+ u64 addr_out, u32 size_out);
+void intel_gsc_uc_heci_cmd_emit_mtl_header(struct intel_gsc_mtl_header *header,
+ u8 heci_client_id, u32 message_size,
+ u64 host_session_id);
+#endif
diff --git a/drivers/gpu/drm/i915/gt/uc/intel_guc.c b/drivers/gpu/drm/i915/gt/uc/intel_guc.c
index bac06e3d6f2c..d76508fa3af7 100644
--- a/drivers/gpu/drm/i915/gt/uc/intel_guc.c
+++ b/drivers/gpu/drm/i915/gt/uc/intel_guc.c
@@ -11,6 +11,7 @@
#include "intel_guc.h"
#include "intel_guc_ads.h"
#include "intel_guc_capture.h"
+#include "intel_guc_print.h"
#include "intel_guc_slpc.h"
#include "intel_guc_submission.h"
#include "i915_drv.h"
@@ -94,10 +95,12 @@ static void gen9_enable_guc_interrupts(struct intel_guc *guc)
assert_rpm_wakelock_held(&gt->i915->runtime_pm);
spin_lock_irq(gt->irq_lock);
- WARN_ON_ONCE(intel_uncore_read(gt->uncore, GEN8_GT_IIR(2)) &
- gt->pm_guc_events);
+ guc_WARN_ON_ONCE(guc, intel_uncore_read(gt->uncore, GEN8_GT_IIR(2)) &
+ gt->pm_guc_events);
gen6_gt_pm_enable_irq(gt, gt->pm_guc_events);
spin_unlock_irq(gt->irq_lock);
+
+ guc->interrupts.enabled = true;
}
static void gen9_disable_guc_interrupts(struct intel_guc *guc)
@@ -105,6 +108,7 @@ static void gen9_disable_guc_interrupts(struct intel_guc *guc)
struct intel_gt *gt = guc_to_gt(guc);
assert_rpm_wakelock_held(&gt->i915->runtime_pm);
+ guc->interrupts.enabled = false;
spin_lock_irq(gt->irq_lock);
@@ -116,39 +120,39 @@ static void gen9_disable_guc_interrupts(struct intel_guc *guc)
gen9_reset_guc_interrupts(guc);
}
+static bool __gen11_reset_guc_interrupts(struct intel_gt *gt)
+{
+ u32 irq = gt->type == GT_MEDIA ? MTL_MGUC : GEN11_GUC;
+
+ lockdep_assert_held(gt->irq_lock);
+ return gen11_gt_reset_one_iir(gt, 0, irq);
+}
+
static void gen11_reset_guc_interrupts(struct intel_guc *guc)
{
struct intel_gt *gt = guc_to_gt(guc);
spin_lock_irq(gt->irq_lock);
- gen11_gt_reset_one_iir(gt, 0, GEN11_GUC);
+ __gen11_reset_guc_interrupts(gt);
spin_unlock_irq(gt->irq_lock);
}
static void gen11_enable_guc_interrupts(struct intel_guc *guc)
{
struct intel_gt *gt = guc_to_gt(guc);
- u32 events = REG_FIELD_PREP(ENGINE1_MASK, GUC_INTR_GUC2HOST);
spin_lock_irq(gt->irq_lock);
- WARN_ON_ONCE(gen11_gt_reset_one_iir(gt, 0, GEN11_GUC));
- intel_uncore_write(gt->uncore,
- GEN11_GUC_SG_INTR_ENABLE, events);
- intel_uncore_write(gt->uncore,
- GEN11_GUC_SG_INTR_MASK, ~events);
+ __gen11_reset_guc_interrupts(gt);
spin_unlock_irq(gt->irq_lock);
+
+ guc->interrupts.enabled = true;
}
static void gen11_disable_guc_interrupts(struct intel_guc *guc)
{
struct intel_gt *gt = guc_to_gt(guc);
- spin_lock_irq(gt->irq_lock);
-
- intel_uncore_write(gt->uncore, GEN11_GUC_SG_INTR_MASK, ~0);
- intel_uncore_write(gt->uncore, GEN11_GUC_SG_INTR_ENABLE, 0);
-
- spin_unlock_irq(gt->irq_lock);
+ guc->interrupts.enabled = false;
intel_synchronize_irq(gt->i915);
gen11_reset_guc_interrupts(guc);
@@ -156,7 +160,8 @@ static void gen11_disable_guc_interrupts(struct intel_guc *guc)
void intel_guc_init_early(struct intel_guc *guc)
{
- struct drm_i915_private *i915 = guc_to_gt(guc)->i915;
+ struct intel_gt *gt = guc_to_gt(guc);
+ struct drm_i915_private *i915 = gt->i915;
intel_uc_fw_init_early(&guc->fw, INTEL_UC_FW_TYPE_GUC);
intel_guc_ct_init_early(&guc->ct);
@@ -168,12 +173,17 @@ void intel_guc_init_early(struct intel_guc *guc)
mutex_init(&guc->send_mutex);
spin_lock_init(&guc->irq_lock);
if (GRAPHICS_VER(i915) >= 11) {
- guc->notify_reg = GEN11_GUC_HOST_INTERRUPT;
guc->interrupts.reset = gen11_reset_guc_interrupts;
guc->interrupts.enable = gen11_enable_guc_interrupts;
guc->interrupts.disable = gen11_disable_guc_interrupts;
- guc->send_regs.base =
- i915_mmio_reg_offset(GEN11_SOFT_SCRATCH(0));
+ if (gt->type == GT_MEDIA) {
+ guc->notify_reg = MEDIA_GUC_HOST_INTERRUPT;
+ guc->send_regs.base = i915_mmio_reg_offset(MEDIA_SOFT_SCRATCH(0));
+ } else {
+ guc->notify_reg = GEN11_GUC_HOST_INTERRUPT;
+ guc->send_regs.base = i915_mmio_reg_offset(GEN11_SOFT_SCRATCH(0));
+ }
+
guc->send_regs.count = GEN11_SOFT_SCRATCH_COUNT;
} else {
@@ -265,8 +275,9 @@ static u32 guc_ctl_wa_flags(struct intel_guc *guc)
if (IS_DG2_GRAPHICS_STEP(gt->i915, G10, STEP_A0, STEP_B0))
flags |= GUC_WA_GAM_CREDITS;
- /* Wa_14014475959:dg2 */
- if (IS_DG2(gt->i915))
+ /* Wa_14014475959 */
+ if (IS_MTL_GRAPHICS_STEP(gt->i915, M, STEP_A0, STEP_B0) ||
+ IS_DG2(gt->i915))
flags |= GUC_WA_HOLD_CCS_SWITCHOUT;
/*
@@ -280,7 +291,9 @@ static u32 guc_ctl_wa_flags(struct intel_guc *guc)
flags |= GUC_WA_DUAL_QUEUE;
/* Wa_22011802037: graphics version 11/12 */
- if (IS_GRAPHICS_VER(gt->i915, 11, 12))
+ if (IS_MTL_GRAPHICS_STEP(gt->i915, M, STEP_A0, STEP_B0) ||
+ (GRAPHICS_VER(gt->i915) >= 11 &&
+ GRAPHICS_VER_FULL(gt->i915) < IP_VER(12, 70)))
flags |= GUC_WA_PRE_PARSER;
/* Wa_16011777198:dg2 */
@@ -330,7 +343,7 @@ static void guc_init_params(struct intel_guc *guc)
params[GUC_CTL_DEVID] = guc_ctl_devid(guc);
for (i = 0; i < GUC_CTL_MAX_DWORDS; i++)
- DRM_DEBUG_DRIVER("param[%2d] = %#x\n", i, params[i]);
+ guc_dbg(guc, "param[%2d] = %#x\n", i, params[i]);
}
/*
@@ -377,7 +390,6 @@ void intel_guc_dump_time_info(struct intel_guc *guc, struct drm_printer *p)
int intel_guc_init(struct intel_guc *guc)
{
- struct intel_gt *gt = guc_to_gt(guc);
int ret;
ret = intel_uc_fw_init(&guc->fw);
@@ -421,9 +433,6 @@ int intel_guc_init(struct intel_guc *guc)
/* now that everything is perma-pinned, initialize the parameters */
guc_init_params(guc);
- /* We need to notify the guc whenever we change the GGTT */
- i915_ggtt_enable_guc(gt->ggtt);
-
intel_uc_fw_change_status(&guc->fw, INTEL_UC_FIRMWARE_LOADABLE);
return 0;
@@ -441,19 +450,16 @@ err_log:
err_fw:
intel_uc_fw_fini(&guc->fw);
out:
- i915_probe_error(gt->i915, "failed with %d\n", ret);
+ intel_uc_fw_change_status(&guc->fw, INTEL_UC_FIRMWARE_INIT_FAIL);
+ guc_probe_error(guc, "failed with %pe\n", ERR_PTR(ret));
return ret;
}
void intel_guc_fini(struct intel_guc *guc)
{
- struct intel_gt *gt = guc_to_gt(guc);
-
if (!intel_uc_fw_is_loadable(&guc->fw))
return;
- i915_ggtt_disable_guc(gt->ggtt);
-
if (intel_guc_slpc_is_used(guc))
intel_guc_slpc_fini(&guc->slpc);
@@ -474,7 +480,6 @@ void intel_guc_fini(struct intel_guc *guc)
int intel_guc_send_mmio(struct intel_guc *guc, const u32 *request, u32 len,
u32 *response_buf, u32 response_buf_size)
{
- struct drm_i915_private *i915 = guc_to_gt(guc)->i915;
struct intel_uncore *uncore = guc_to_gt(guc)->uncore;
u32 header;
int i;
@@ -509,7 +514,7 @@ retry:
10, 10, &header);
if (unlikely(ret)) {
timeout:
- drm_err(&i915->drm, "mmio request %#x: no reply %x\n",
+ guc_err(guc, "mmio request %#x: no reply %x\n",
request[0], header);
goto out;
}
@@ -531,7 +536,7 @@ timeout:
if (FIELD_GET(GUC_HXG_MSG_0_TYPE, header) == GUC_HXG_TYPE_NO_RESPONSE_RETRY) {
u32 reason = FIELD_GET(GUC_HXG_RETRY_MSG_0_REASON, header);
- drm_dbg(&i915->drm, "mmio request %#x: retrying, reason %u\n",
+ guc_dbg(guc, "mmio request %#x: retrying, reason %u\n",
request[0], reason);
goto retry;
}
@@ -540,7 +545,7 @@ timeout:
u32 hint = FIELD_GET(GUC_HXG_FAILURE_MSG_0_HINT, header);
u32 error = FIELD_GET(GUC_HXG_FAILURE_MSG_0_ERROR, header);
- drm_err(&i915->drm, "mmio request %#x: failure %x/%u\n",
+ guc_err(guc, "mmio request %#x: failure %x/%u\n",
request[0], error, hint);
ret = -ENXIO;
goto out;
@@ -548,7 +553,7 @@ timeout:
if (FIELD_GET(GUC_HXG_MSG_0_TYPE, header) != GUC_HXG_TYPE_RESPONSE_SUCCESS) {
proto:
- drm_err(&i915->drm, "mmio request %#x: unexpected reply %#x\n",
+ guc_err(guc, "mmio request %#x: unexpected reply %#x\n",
request[0], header);
ret = -EPROTO;
goto out;
@@ -591,9 +596,9 @@ int intel_guc_to_host_process_recv_msg(struct intel_guc *guc,
msg = payload[0] & guc->msg_enabled_mask;
if (msg & INTEL_GUC_RECV_MSG_CRASH_DUMP_POSTED)
- drm_err(&guc_to_gt(guc)->i915->drm, "Received early GuC crash dump notification!\n");
+ guc_err(guc, "Received early crash dump notification!\n");
if (msg & INTEL_GUC_RECV_MSG_EXCEPTION)
- drm_err(&guc_to_gt(guc)->i915->drm, "Received early GuC exception notification!\n");
+ guc_err(guc, "Received early exception notification!\n");
return 0;
}
@@ -647,7 +652,8 @@ int intel_guc_suspend(struct intel_guc *guc)
*/
ret = intel_guc_send_mmio(guc, action, ARRAY_SIZE(action), NULL, 0);
if (ret)
- DRM_ERROR("GuC suspend: RESET_CLIENT action failed with error %d!\n", ret);
+ guc_err(guc, "suspend: RESET_CLIENT action failed with %pe\n",
+ ERR_PTR(ret));
}
/* Signal that the GuC isn't running. */
@@ -822,12 +828,11 @@ static int __guc_action_self_cfg(struct intel_guc *guc, u16 key, u16 len, u64 va
static int __guc_self_cfg(struct intel_guc *guc, u16 key, u16 len, u64 value)
{
- struct drm_i915_private *i915 = guc_to_gt(guc)->i915;
int err = __guc_action_self_cfg(guc, key, len, value);
if (unlikely(err))
- i915_probe_error(i915, "Unsuccessful self-config (%pe) key %#hx value %#llx\n",
- ERR_PTR(err), key, value);
+ guc_probe_error(guc, "Unsuccessful self-config (%pe) key %#hx value %#llx\n",
+ ERR_PTR(err), key, value);
return err;
}
@@ -870,14 +875,14 @@ void intel_guc_load_status(struct intel_guc *guc, struct drm_printer *p)
u32 status = intel_uncore_read(uncore, GUC_STATUS);
u32 i;
- drm_printf(p, "\nGuC status 0x%08x:\n", status);
+ drm_printf(p, "GuC status 0x%08x:\n", status);
drm_printf(p, "\tBootrom status = 0x%x\n",
(status & GS_BOOTROM_MASK) >> GS_BOOTROM_SHIFT);
drm_printf(p, "\tuKernel status = 0x%x\n",
(status & GS_UKERNEL_MASK) >> GS_UKERNEL_SHIFT);
drm_printf(p, "\tMIA Core status = 0x%x\n",
(status & GS_MIA_MASK) >> GS_MIA_SHIFT);
- drm_puts(p, "\nScratch registers:\n");
+ drm_puts(p, "Scratch registers:\n");
for (i = 0; i < 16; i++) {
drm_printf(p, "\t%2d: \t0x%x\n",
i, intel_uncore_read(uncore, SOFT_SCRATCH(i)));
diff --git a/drivers/gpu/drm/i915/gt/uc/intel_guc.h b/drivers/gpu/drm/i915/gt/uc/intel_guc.h
index 804133df1ac9..e46aac1a41e6 100644
--- a/drivers/gpu/drm/i915/gt/uc/intel_guc.h
+++ b/drivers/gpu/drm/i915/gt/uc/intel_guc.h
@@ -42,6 +42,8 @@ struct intel_guc {
/** @capture: the error-state-capture module's data and objects */
struct intel_guc_state_capture *capture;
+ struct dentry *dbgfs_node;
+
/** @sched_engine: Global engine used to submit requests to GuC */
struct i915_sched_engine *sched_engine;
/**
@@ -78,6 +80,7 @@ struct intel_guc {
/** @interrupts: pointers to GuC interrupt-managing functions. */
struct {
+ bool enabled;
void (*reset)(struct intel_guc *guc);
void (*enable)(struct intel_guc *guc);
void (*disable)(struct intel_guc *guc);
@@ -113,6 +116,10 @@ struct intel_guc {
*/
struct list_head guc_id_list;
/**
+ * @guc_ids_in_use: Number single-lrc guc_ids in use
+ */
+ unsigned int guc_ids_in_use;
+ /**
* @destroyed_contexts: list of contexts waiting to be destroyed
* (deregistered with the GuC)
*/
@@ -132,6 +139,16 @@ struct intel_guc {
* @reset_fail_mask: mask of engines that failed to reset
*/
intel_engine_mask_t reset_fail_mask;
+ /**
+ * @sched_disable_delay_ms: schedule disable delay, in ms, for
+ * contexts
+ */
+ unsigned int sched_disable_delay_ms;
+ /**
+ * @sched_disable_gucid_threshold: threshold of min remaining available
+ * guc_ids before we start bypassing the schedule disable delay
+ */
+ unsigned int sched_disable_gucid_threshold;
} submission_state;
/**
@@ -143,6 +160,9 @@ struct intel_guc {
bool submission_selected;
/** @submission_initialized: tracks whether GuC submission has been initialised */
bool submission_initialized;
+ /** @submission_version: Submission API version of the currently loaded firmware */
+ struct intel_uc_fw_ver submission_version;
+
/**
* @rc_supported: tracks whether we support GuC rc on the current platform
*/
@@ -253,6 +273,14 @@ struct intel_guc {
#endif
};
+/*
+ * GuC version number components are only 8-bit, so converting to a 32bit 8.8.8
+ * integer works.
+ */
+#define MAKE_GUC_VER(maj, min, pat) (((maj) << 16) | ((min) << 8) | (pat))
+#define MAKE_GUC_VER_STRUCT(ver) MAKE_GUC_VER((ver).major, (ver).minor, (ver).patch)
+#define GUC_SUBMIT_VER(guc) MAKE_GUC_VER_STRUCT((guc)->submission_version)
+
static inline struct intel_guc *log_to_guc(struct intel_guc_log *log)
{
return container_of(log, struct intel_guc, log);
@@ -316,9 +344,11 @@ retry:
return err;
}
+/* Only call this from the interrupt handler code */
static inline void intel_guc_to_host_event_handler(struct intel_guc *guc)
{
- intel_guc_ct_event_handler(&guc->ct);
+ if (guc->interrupts.enabled)
+ intel_guc_ct_event_handler(&guc->ct);
}
/* GuC addresses above GUC_GGTT_TOP also don't map through the GTT */
@@ -466,4 +496,6 @@ void intel_guc_write_barrier(struct intel_guc *guc);
void intel_guc_dump_time_info(struct intel_guc *guc, struct drm_printer *p);
+int intel_guc_sched_disable_gucid_threshold_max(struct intel_guc *guc);
+
#endif
diff --git a/drivers/gpu/drm/i915/gt/uc/intel_guc_ads.c b/drivers/gpu/drm/i915/gt/uc/intel_guc_ads.c
index 74cbe8eaf531..69ce06faf8cd 100644
--- a/drivers/gpu/drm/i915/gt/uc/intel_guc_ads.c
+++ b/drivers/gpu/drm/i915/gt/uc/intel_guc_ads.c
@@ -5,6 +5,7 @@
#include <linux/bsearch.h>
+#include "gem/i915_gem_lmem.h"
#include "gt/intel_engine_regs.h"
#include "gt/intel_gt.h"
#include "gt/intel_gt_mcr.h"
@@ -14,6 +15,7 @@
#include "intel_guc_ads.h"
#include "intel_guc_capture.h"
#include "intel_guc_fwif.h"
+#include "intel_guc_print.h"
#include "intel_uc.h"
#include "i915_drv.h"
@@ -277,24 +279,16 @@ __mmio_reg_add(struct temp_regset *regset, struct guc_mmio_reg *reg)
return slot;
}
-#define GUC_REGSET_STEERING(group, instance) ( \
- FIELD_PREP(GUC_REGSET_STEERING_GROUP, (group)) | \
- FIELD_PREP(GUC_REGSET_STEERING_INSTANCE, (instance)) | \
- GUC_REGSET_NEEDS_STEERING \
-)
-
static long __must_check guc_mmio_reg_add(struct intel_gt *gt,
struct temp_regset *regset,
- i915_reg_t reg, u32 flags)
+ u32 offset, u32 flags)
{
u32 count = regset->storage_used - (regset->registers - regset->storage);
- u32 offset = i915_mmio_reg_offset(reg);
struct guc_mmio_reg entry = {
.offset = offset,
.flags = flags,
};
struct guc_mmio_reg *slot;
- u8 group, inst;
/*
* The mmio list is built using separate lists within the driver.
@@ -306,17 +300,6 @@ static long __must_check guc_mmio_reg_add(struct intel_gt *gt,
sizeof(entry), guc_mmio_reg_cmp))
return 0;
- /*
- * The GuC doesn't have a default steering, so we need to explicitly
- * steer all registers that need steering. However, we do not keep track
- * of all the steering ranges, only of those that have a chance of using
- * a non-default steering from the i915 pov. Instead of adding such
- * tracking, it is easier to just program the default steering for all
- * regs that don't need a non-default one.
- */
- intel_gt_mcr_get_nonterminated_steering(gt, reg, &group, &inst);
- entry.flags |= GUC_REGSET_STEERING(group, inst);
-
slot = __mmio_reg_add(regset, &entry);
if (IS_ERR(slot))
return PTR_ERR(slot);
@@ -335,6 +318,38 @@ static long __must_check guc_mmio_reg_add(struct intel_gt *gt,
#define GUC_MMIO_REG_ADD(gt, regset, reg, masked) \
guc_mmio_reg_add(gt, \
regset, \
+ i915_mmio_reg_offset(reg), \
+ (masked) ? GUC_REGSET_MASKED : 0)
+
+#define GUC_REGSET_STEERING(group, instance) ( \
+ FIELD_PREP(GUC_REGSET_STEERING_GROUP, (group)) | \
+ FIELD_PREP(GUC_REGSET_STEERING_INSTANCE, (instance)) | \
+ GUC_REGSET_NEEDS_STEERING \
+)
+
+static long __must_check guc_mcr_reg_add(struct intel_gt *gt,
+ struct temp_regset *regset,
+ i915_mcr_reg_t reg, u32 flags)
+{
+ u8 group, inst;
+
+ /*
+ * The GuC doesn't have a default steering, so we need to explicitly
+ * steer all registers that need steering. However, we do not keep track
+ * of all the steering ranges, only of those that have a chance of using
+ * a non-default steering from the i915 pov. Instead of adding such
+ * tracking, it is easier to just program the default steering for all
+ * regs that don't need a non-default one.
+ */
+ intel_gt_mcr_get_nonterminated_steering(gt, reg, &group, &inst);
+ flags |= GUC_REGSET_STEERING(group, inst);
+
+ return guc_mmio_reg_add(gt, regset, i915_mmio_reg_offset(reg), flags);
+}
+
+#define GUC_MCR_REG_ADD(gt, regset, reg, masked) \
+ guc_mcr_reg_add(gt, \
+ regset, \
(reg), \
(masked) ? GUC_REGSET_MASKED : 0)
@@ -372,8 +387,21 @@ static int guc_mmio_regset_init(struct temp_regset *regset,
false);
/* add in local MOCS registers */
- for (i = 0; i < GEN9_LNCFCMOCS_REG_COUNT; i++)
- ret |= GUC_MMIO_REG_ADD(gt, regset, GEN9_LNCFCMOCS(i), false);
+ for (i = 0; i < LNCFCMOCS_REG_COUNT; i++)
+ if (GRAPHICS_VER_FULL(engine->i915) >= IP_VER(12, 50))
+ ret |= GUC_MCR_REG_ADD(gt, regset, XEHP_LNCFCMOCS(i), false);
+ else
+ ret |= GUC_MMIO_REG_ADD(gt, regset, GEN9_LNCFCMOCS(i), false);
+
+ if (GRAPHICS_VER(engine->i915) >= 12) {
+ ret |= GUC_MMIO_REG_ADD(gt, regset, EU_PERF_CNTL0, false);
+ ret |= GUC_MMIO_REG_ADD(gt, regset, EU_PERF_CNTL1, false);
+ ret |= GUC_MMIO_REG_ADD(gt, regset, EU_PERF_CNTL2, false);
+ ret |= GUC_MMIO_REG_ADD(gt, regset, EU_PERF_CNTL3, false);
+ ret |= GUC_MMIO_REG_ADD(gt, regset, EU_PERF_CNTL4, false);
+ ret |= GUC_MMIO_REG_ADD(gt, regset, EU_PERF_CNTL5, false);
+ ret |= GUC_MMIO_REG_ADD(gt, regset, EU_PERF_CNTL6, false);
+ }
return ret ? -1 : 0;
}
@@ -400,7 +428,7 @@ static long guc_mmio_reg_state_create(struct intel_guc *guc)
guc->ads_regset = temp_set.storage;
- drm_dbg(&guc_to_gt(guc)->i915->drm, "Used %zu KB for temporary ADS regset\n",
+ guc_dbg(guc, "Used %zu KB for temporary ADS regset\n",
(temp_set.storage_max * sizeof(struct guc_mmio_reg)) >> 10);
return total * sizeof(struct guc_mmio_reg);
@@ -461,6 +489,11 @@ static void fill_engine_enable_masks(struct intel_gt *gt,
info_map_write(info_map, engine_enabled_masks[GUC_BLITTER_CLASS], BCS_MASK(gt));
info_map_write(info_map, engine_enabled_masks[GUC_VIDEO_CLASS], VDBOX_MASK(gt));
info_map_write(info_map, engine_enabled_masks[GUC_VIDEOENHANCE_CLASS], VEBOX_MASK(gt));
+
+ /* The GSC engine is an instance (6) of OTHER_CLASS */
+ if (gt->engine[GSC0])
+ info_map_write(info_map, engine_enabled_masks[GUC_GSC_OTHER_CLASS],
+ BIT(gt->engine[GSC0]->instance));
}
#define LR_HW_CONTEXT_SIZE (80 * sizeof(u32))
@@ -502,9 +535,6 @@ static int guc_prep_golden_context(struct intel_guc *guc)
}
for (engine_class = 0; engine_class <= MAX_ENGINE_CLASS; ++engine_class) {
- if (engine_class == OTHER_CLASS)
- continue;
-
guc_class = engine_class_to_guc_class(engine_class);
if (!info_map_read(&info_map, engine_enabled_masks[guc_class]))
@@ -582,9 +612,6 @@ static void guc_init_golden_context(struct intel_guc *guc)
addr_ggtt = intel_guc_ggtt_offset(guc, guc->ads_vma) + offset;
for (engine_class = 0; engine_class <= MAX_ENGINE_CLASS; ++engine_class) {
- if (engine_class == OTHER_CLASS)
- continue;
-
guc_class = engine_class_to_guc_class(engine_class);
if (!ads_blob_read(guc, system_info.engine_enabled_masks[guc_class]))
continue;
@@ -595,7 +622,7 @@ static void guc_init_golden_context(struct intel_guc *guc)
engine = find_engine_state(gt, engine_class);
if (!engine) {
- drm_err(&gt->i915->drm, "No engine state recorded for class %d!\n",
+ guc_err(guc, "No engine state recorded for class %d!\n",
engine_class);
ads_blob_write(guc, ads.eng_state_size[guc_class], 0);
ads_blob_write(guc, ads.golden_context_lrca[guc_class], 0);
@@ -620,7 +647,6 @@ static int
guc_capture_prep_lists(struct intel_guc *guc)
{
struct intel_gt *gt = guc_to_gt(guc);
- struct drm_i915_private *i915 = guc_to_gt(guc)->i915;
u32 ads_ggtt, capture_offset, null_ggtt, total_size = 0;
struct guc_gt_system_info local_info;
struct iosys_map info_map;
@@ -725,7 +751,7 @@ engine_instance_list:
}
if (guc->ads_capture_size && guc->ads_capture_size != PAGE_ALIGN(total_size))
- drm_warn(&i915->drm, "GuC->ADS->Capture alloc size changed from %d to %d\n",
+ guc_warn(guc, "ADS capture alloc size changed from %d to %d\n",
guc->ads_capture_size, PAGE_ALIGN(total_size));
return PAGE_ALIGN(total_size);
diff --git a/drivers/gpu/drm/i915/gt/uc/intel_guc_capture.c b/drivers/gpu/drm/i915/gt/uc/intel_guc_capture.c
index 8f1165146013..e0e793167d61 100644
--- a/drivers/gpu/drm/i915/gt/uc/intel_guc_capture.c
+++ b/drivers/gpu/drm/i915/gt/uc/intel_guc_capture.c
@@ -15,6 +15,7 @@
#include "guc_capture_fwif.h"
#include "intel_guc_capture.h"
#include "intel_guc_fwif.h"
+#include "intel_guc_print.h"
#include "i915_drv.h"
#include "i915_gpu_error.h"
#include "i915_irq.h"
@@ -30,12 +31,14 @@
{ FORCEWAKE_MT, 0, 0, "FORCEWAKE" }
#define COMMON_GEN9BASE_GLOBAL \
- { GEN8_FAULT_TLB_DATA0, 0, 0, "GEN8_FAULT_TLB_DATA0" }, \
- { GEN8_FAULT_TLB_DATA1, 0, 0, "GEN8_FAULT_TLB_DATA1" }, \
{ ERROR_GEN6, 0, 0, "ERROR_GEN6" }, \
{ DONE_REG, 0, 0, "DONE_REG" }, \
{ HSW_GTT_CACHE_EN, 0, 0, "HSW_GTT_CACHE_EN" }
+#define GEN9_GLOBAL \
+ { GEN8_FAULT_TLB_DATA0, 0, 0, "GEN8_FAULT_TLB_DATA0" }, \
+ { GEN8_FAULT_TLB_DATA1, 0, 0, "GEN8_FAULT_TLB_DATA1" }
+
#define COMMON_GEN12BASE_GLOBAL \
{ GEN12_FAULT_TLB_DATA0, 0, 0, "GEN12_FAULT_TLB_DATA0" }, \
{ GEN12_FAULT_TLB_DATA1, 0, 0, "GEN12_FAULT_TLB_DATA1" }, \
@@ -132,10 +135,16 @@ static const struct __guc_mmio_reg_descr xe_lpd_blt_inst_regs[] = {
COMMON_BASE_ENGINE_INSTANCE,
};
+/* XE_LPD - GSC Per-Engine-Instance */
+static const struct __guc_mmio_reg_descr xe_lpd_gsc_inst_regs[] = {
+ COMMON_BASE_ENGINE_INSTANCE,
+};
+
/* GEN9 - Global */
static const struct __guc_mmio_reg_descr default_global_regs[] = {
COMMON_BASE_GLOBAL,
COMMON_GEN9BASE_GLOBAL,
+ GEN9_GLOBAL,
};
static const struct __guc_mmio_reg_descr default_rc_class_regs[] = {
@@ -165,16 +174,20 @@ static const struct __guc_mmio_reg_descr empty_regs_list[] = {
}
/* List of lists */
-static struct __guc_mmio_reg_descr_group default_lists[] = {
+static const struct __guc_mmio_reg_descr_group default_lists[] = {
MAKE_REGLIST(default_global_regs, PF, GLOBAL, 0),
MAKE_REGLIST(default_rc_class_regs, PF, ENGINE_CLASS, GUC_RENDER_CLASS),
MAKE_REGLIST(xe_lpd_rc_inst_regs, PF, ENGINE_INSTANCE, GUC_RENDER_CLASS),
+ MAKE_REGLIST(default_rc_class_regs, PF, ENGINE_CLASS, GUC_COMPUTE_CLASS),
+ MAKE_REGLIST(xe_lpd_rc_inst_regs, PF, ENGINE_INSTANCE, GUC_COMPUTE_CLASS),
MAKE_REGLIST(empty_regs_list, PF, ENGINE_CLASS, GUC_VIDEO_CLASS),
MAKE_REGLIST(xe_lpd_vd_inst_regs, PF, ENGINE_INSTANCE, GUC_VIDEO_CLASS),
MAKE_REGLIST(empty_regs_list, PF, ENGINE_CLASS, GUC_VIDEOENHANCE_CLASS),
MAKE_REGLIST(xe_lpd_vec_inst_regs, PF, ENGINE_INSTANCE, GUC_VIDEOENHANCE_CLASS),
MAKE_REGLIST(empty_regs_list, PF, ENGINE_CLASS, GUC_BLITTER_CLASS),
MAKE_REGLIST(xe_lpd_blt_inst_regs, PF, ENGINE_INSTANCE, GUC_BLITTER_CLASS),
+ MAKE_REGLIST(empty_regs_list, PF, ENGINE_CLASS, GUC_GSC_OTHER_CLASS),
+ MAKE_REGLIST(xe_lpd_gsc_inst_regs, PF, ENGINE_INSTANCE, GUC_GSC_OTHER_CLASS),
{}
};
@@ -182,12 +195,16 @@ static const struct __guc_mmio_reg_descr_group xe_lpd_lists[] = {
MAKE_REGLIST(xe_lpd_global_regs, PF, GLOBAL, 0),
MAKE_REGLIST(xe_lpd_rc_class_regs, PF, ENGINE_CLASS, GUC_RENDER_CLASS),
MAKE_REGLIST(xe_lpd_rc_inst_regs, PF, ENGINE_INSTANCE, GUC_RENDER_CLASS),
+ MAKE_REGLIST(xe_lpd_rc_class_regs, PF, ENGINE_CLASS, GUC_COMPUTE_CLASS),
+ MAKE_REGLIST(xe_lpd_rc_inst_regs, PF, ENGINE_INSTANCE, GUC_COMPUTE_CLASS),
MAKE_REGLIST(empty_regs_list, PF, ENGINE_CLASS, GUC_VIDEO_CLASS),
MAKE_REGLIST(xe_lpd_vd_inst_regs, PF, ENGINE_INSTANCE, GUC_VIDEO_CLASS),
MAKE_REGLIST(xe_lpd_vec_class_regs, PF, ENGINE_CLASS, GUC_VIDEOENHANCE_CLASS),
MAKE_REGLIST(xe_lpd_vec_inst_regs, PF, ENGINE_INSTANCE, GUC_VIDEOENHANCE_CLASS),
MAKE_REGLIST(empty_regs_list, PF, ENGINE_CLASS, GUC_BLITTER_CLASS),
MAKE_REGLIST(xe_lpd_blt_inst_regs, PF, ENGINE_INSTANCE, GUC_BLITTER_CLASS),
+ MAKE_REGLIST(empty_regs_list, PF, ENGINE_CLASS, GUC_GSC_OTHER_CLASS),
+ MAKE_REGLIST(xe_lpd_gsc_inst_regs, PF, ENGINE_INSTANCE, GUC_GSC_OTHER_CLASS),
{}
};
@@ -240,19 +257,19 @@ static void guc_capture_free_extlists(struct __guc_mmio_reg_descr_group *reglist
struct __ext_steer_reg {
const char *name;
- i915_reg_t reg;
+ i915_mcr_reg_t reg;
};
static const struct __ext_steer_reg xe_extregs[] = {
- {"GEN7_SAMPLER_INSTDONE", GEN7_SAMPLER_INSTDONE},
- {"GEN7_ROW_INSTDONE", GEN7_ROW_INSTDONE}
+ {"GEN8_SAMPLER_INSTDONE", GEN8_SAMPLER_INSTDONE},
+ {"GEN8_ROW_INSTDONE", GEN8_ROW_INSTDONE}
};
static void __fill_ext_reg(struct __guc_mmio_reg_descr *ext,
const struct __ext_steer_reg *extlist,
int slice_id, int subslice_id)
{
- ext->reg = extlist->reg;
+ ext->reg = _MMIO(i915_mmio_reg_offset(extlist->reg));
ext->flags = FIELD_PREP(GUC_REGSET_STEERING_GROUP, slice_id);
ext->flags |= FIELD_PREP(GUC_REGSET_STEERING_INSTANCE, subslice_id);
ext->regname = extlist->name;
@@ -340,7 +357,6 @@ guc_capture_alloc_steered_lists_xe_hpg(struct intel_guc *guc,
u32 ipver)
{
struct intel_gt *gt = guc_to_gt(guc);
- struct drm_i915_private *i915 = guc_to_gt(guc)->i915;
struct sseu_dev_info *sseu;
int slice, subslice, i, iter, num_steer_regs, num_tot_regs = 0;
const struct __guc_mmio_reg_descr_group *list;
@@ -389,7 +405,7 @@ guc_capture_alloc_steered_lists_xe_hpg(struct intel_guc *guc,
}
}
- drm_dbg(&i915->drm, "GuC-capture found %d-ext-regs.\n", num_tot_regs);
+ guc_dbg(guc, "capture found %d ext-regs.\n", num_tot_regs);
guc->capture->extlists = extlists;
}
@@ -419,12 +435,51 @@ guc_capture_get_device_reglist(struct intel_guc *guc)
return default_lists;
}
+static const char *
+__stringify_type(u32 type)
+{
+ switch (type) {
+ case GUC_CAPTURE_LIST_TYPE_GLOBAL:
+ return "Global";
+ case GUC_CAPTURE_LIST_TYPE_ENGINE_CLASS:
+ return "Class";
+ case GUC_CAPTURE_LIST_TYPE_ENGINE_INSTANCE:
+ return "Instance";
+ default:
+ break;
+ }
+
+ return "unknown";
+}
+
+static const char *
+__stringify_engclass(u32 class)
+{
+ switch (class) {
+ case GUC_RENDER_CLASS:
+ return "Render";
+ case GUC_VIDEO_CLASS:
+ return "Video";
+ case GUC_VIDEOENHANCE_CLASS:
+ return "VideoEnhance";
+ case GUC_BLITTER_CLASS:
+ return "Blitter";
+ case GUC_COMPUTE_CLASS:
+ return "Compute";
+ case GUC_GSC_OTHER_CLASS:
+ return "GSC-Other";
+ default:
+ break;
+ }
+
+ return "unknown";
+}
+
static int
guc_capture_list_init(struct intel_guc *guc, u32 owner, u32 type, u32 classid,
struct guc_mmio_reg *ptr, u16 num_entries)
{
u32 i = 0, j = 0;
- struct drm_i915_private *i915 = guc_to_gt(guc)->i915;
const struct __guc_mmio_reg_descr_group *reglists = guc->capture->reglists;
struct __guc_mmio_reg_descr_group *extlists = guc->capture->extlists;
const struct __guc_mmio_reg_descr_group *match;
@@ -456,8 +511,7 @@ guc_capture_list_init(struct intel_guc *guc, u32 owner, u32 type, u32 classid,
}
}
if (i < num_entries)
- drm_dbg(&i915->drm, "GuC-capture: Init reglist short %d out %d.\n",
- (int)i, (int)num_entries);
+ guc_dbg(guc, "Got short capture reglist init: %d out %d.\n", i, num_entries);
return 0;
}
@@ -482,32 +536,54 @@ guc_cap_list_num_regs(struct intel_guc_state_capture *gc, u32 owner, u32 type, u
return num_regs;
}
-int
-intel_guc_capture_getlistsize(struct intel_guc *guc, u32 owner, u32 type, u32 classid,
- size_t *size)
+static int
+guc_capture_getlistsize(struct intel_guc *guc, u32 owner, u32 type, u32 classid,
+ size_t *size, bool is_purpose_est)
{
struct intel_guc_state_capture *gc = guc->capture;
struct __guc_capture_ads_cache *cache = &gc->ads_cache[owner][type][classid];
int num_regs;
- if (!gc->reglists)
+ if (!gc->reglists) {
+ guc_warn(guc, "No capture reglist for this device\n");
return -ENODEV;
+ }
if (cache->is_valid) {
*size = cache->size;
return cache->status;
}
+ if (!is_purpose_est && owner == GUC_CAPTURE_LIST_INDEX_PF &&
+ !guc_capture_get_one_list(gc->reglists, owner, type, classid)) {
+ if (type == GUC_CAPTURE_LIST_TYPE_GLOBAL)
+ guc_warn(guc, "Missing capture reglist: global!\n");
+ else
+ guc_warn(guc, "Missing capture reglist: %s(%u):%s(%u)!\n",
+ __stringify_type(type), type,
+ __stringify_engclass(classid), classid);
+ return -ENODATA;
+ }
+
num_regs = guc_cap_list_num_regs(gc, owner, type, classid);
+ /* intentional empty lists can exist depending on hw config */
if (!num_regs)
return -ENODATA;
- *size = PAGE_ALIGN((sizeof(struct guc_debug_capture_list)) +
- (num_regs * sizeof(struct guc_mmio_reg)));
+ if (size)
+ *size = PAGE_ALIGN((sizeof(struct guc_debug_capture_list)) +
+ (num_regs * sizeof(struct guc_mmio_reg)));
return 0;
}
+int
+intel_guc_capture_getlistsize(struct intel_guc *guc, u32 owner, u32 type, u32 classid,
+ size_t *size)
+{
+ return guc_capture_getlistsize(guc, owner, type, classid, size, false);
+}
+
static void guc_capture_create_prealloc_nodes(struct intel_guc *guc);
int
@@ -516,7 +592,6 @@ intel_guc_capture_getlist(struct intel_guc *guc, u32 owner, u32 type, u32 classi
{
struct intel_guc_state_capture *gc = guc->capture;
struct __guc_capture_ads_cache *cache = &gc->ads_cache[owner][type][classid];
- struct drm_i915_private *i915 = guc_to_gt(guc)->i915;
struct guc_debug_capture_list *listnode;
int ret, num_regs;
u8 *caplist, *tmp;
@@ -547,7 +622,7 @@ intel_guc_capture_getlist(struct intel_guc *guc, u32 owner, u32 type, u32 classi
caplist = kzalloc(size, GFP_KERNEL);
if (!caplist) {
- drm_dbg(&i915->drm, "GuC-capture: failed to alloc cached caplist");
+ guc_dbg(guc, "Failed to alloc cached register capture list");
return -ENOMEM;
}
@@ -577,7 +652,6 @@ intel_guc_capture_getnullheader(struct intel_guc *guc,
void **outptr, size_t *size)
{
struct intel_guc_state_capture *gc = guc->capture;
- struct drm_i915_private *i915 = guc_to_gt(guc)->i915;
int tmp = sizeof(u32) * 4;
void *null_header;
@@ -589,7 +663,7 @@ intel_guc_capture_getnullheader(struct intel_guc *guc,
null_header = kzalloc(tmp, GFP_KERNEL);
if (!null_header) {
- drm_dbg(&i915->drm, "GuC-capture: failed to alloc cached nulllist");
+ guc_dbg(guc, "Failed to alloc cached register capture null list");
return -ENOMEM;
}
@@ -606,7 +680,7 @@ guc_capture_output_min_size_est(struct intel_guc *guc)
struct intel_gt *gt = guc_to_gt(guc);
struct intel_engine_cs *engine;
enum intel_engine_id id;
- int worst_min_size = 0, num_regs = 0;
+ int worst_min_size = 0;
size_t tmp = 0;
if (!guc->capture)
@@ -627,21 +701,19 @@ guc_capture_output_min_size_est(struct intel_guc *guc)
worst_min_size += sizeof(struct guc_state_capture_group_header_t) +
(3 * sizeof(struct guc_state_capture_header_t));
- if (!intel_guc_capture_getlistsize(guc, 0, GUC_CAPTURE_LIST_TYPE_GLOBAL, 0, &tmp))
- num_regs += tmp;
+ if (!guc_capture_getlistsize(guc, 0, GUC_CAPTURE_LIST_TYPE_GLOBAL, 0, &tmp, true))
+ worst_min_size += tmp;
- if (!intel_guc_capture_getlistsize(guc, 0, GUC_CAPTURE_LIST_TYPE_ENGINE_CLASS,
- engine->class, &tmp)) {
- num_regs += tmp;
+ if (!guc_capture_getlistsize(guc, 0, GUC_CAPTURE_LIST_TYPE_ENGINE_CLASS,
+ engine->class, &tmp, true)) {
+ worst_min_size += tmp;
}
- if (!intel_guc_capture_getlistsize(guc, 0, GUC_CAPTURE_LIST_TYPE_ENGINE_INSTANCE,
- engine->class, &tmp)) {
- num_regs += tmp;
+ if (!guc_capture_getlistsize(guc, 0, GUC_CAPTURE_LIST_TYPE_ENGINE_INSTANCE,
+ engine->class, &tmp, true)) {
+ worst_min_size += tmp;
}
}
- worst_min_size += (num_regs * sizeof(struct guc_mmio_reg));
-
return worst_min_size;
}
@@ -653,20 +725,27 @@ guc_capture_output_min_size_est(struct intel_guc *guc)
static void check_guc_capture_size(struct intel_guc *guc)
{
- struct drm_i915_private *i915 = guc_to_gt(guc)->i915;
int min_size = guc_capture_output_min_size_est(guc);
int spare_size = min_size * GUC_CAPTURE_OVERBUFFER_MULTIPLIER;
u32 buffer_size = intel_guc_log_section_size_capture(&guc->log);
+ /*
+ * NOTE: min_size is much smaller than the capture region allocation (DG2: <80K vs 1MB)
+ * Additionally, its based on space needed to fit all engines getting reset at once
+ * within the same G2H handler task slot. This is very unlikely. However, if GuC really
+ * does run out of space for whatever reason, we will see an separate warning message
+ * when processing the G2H event capture-notification, search for:
+ * INTEL_GUC_STATE_CAPTURE_EVENT_STATUS_NOSPACE.
+ */
if (min_size < 0)
- drm_warn(&i915->drm, "Failed to calculate GuC error state capture buffer minimum size: %d!\n",
+ guc_warn(guc, "Failed to calculate error state capture buffer minimum size: %d!\n",
min_size);
else if (min_size > buffer_size)
- drm_warn(&i915->drm, "GuC error state capture buffer is too small: %d < %d\n",
+ guc_warn(guc, "Error state capture buffer maybe small: %d < %d\n",
buffer_size, min_size);
else if (spare_size > buffer_size)
- drm_notice(&i915->drm, "GuC error state capture buffer maybe too small: %d < %d (min = %d)\n",
- buffer_size, spare_size, min_size);
+ guc_dbg(guc, "Error state capture buffer lacks spare size: %d < %d (min = %d)\n",
+ buffer_size, spare_size, min_size);
}
/*
@@ -766,7 +845,6 @@ static int
guc_capture_log_remove_dw(struct intel_guc *guc, struct __guc_capture_bufstate *buf,
u32 *dw)
{
- struct drm_i915_private *i915 = guc_to_gt(guc)->i915;
int tries = 2;
int avail = 0;
u32 *src_data;
@@ -783,7 +861,7 @@ guc_capture_log_remove_dw(struct intel_guc *guc, struct __guc_capture_bufstate *
return 4;
}
if (avail)
- drm_dbg(&i915->drm, "GuC-Cap-Logs not dword aligned, skipping.\n");
+ guc_dbg(guc, "Register capture log not dword aligned, skipping.\n");
buf->rd = 0;
}
@@ -1036,13 +1114,12 @@ static void
__guc_capture_create_prealloc_nodes(struct intel_guc *guc)
{
struct __guc_capture_parsed_output *node = NULL;
- struct drm_i915_private *i915 = guc_to_gt(guc)->i915;
int i;
for (i = 0; i < PREALLOC_NODES_MAX_COUNT; ++i) {
node = guc_capture_alloc_one_node(guc);
if (!node) {
- drm_warn(&i915->drm, "GuC Capture pre-alloc-cache failure\n");
+ guc_warn(guc, "Register capture pre-alloc-cache failure\n");
/* dont free the priors, use what we got and cleanup at shutdown */
return;
}
@@ -1087,7 +1164,6 @@ guc_capture_create_prealloc_nodes(struct intel_guc *guc)
static int
guc_capture_extract_reglists(struct intel_guc *guc, struct __guc_capture_bufstate *buf)
{
- struct drm_i915_private *i915 = guc_to_gt(guc)->i915;
struct guc_state_capture_group_header_t ghdr = {0};
struct guc_state_capture_header_t hdr = {0};
struct __guc_capture_parsed_output *node = NULL;
@@ -1101,7 +1177,7 @@ guc_capture_extract_reglists(struct intel_guc *guc, struct __guc_capture_bufstat
if (!i)
return -ENODATA;
if (i % sizeof(u32)) {
- drm_warn(&i915->drm, "GuC Capture new entries unaligned\n");
+ guc_warn(guc, "Got mis-aligned register capture entries\n");
ret = -EIO;
goto bailout;
}
@@ -1219,7 +1295,7 @@ guc_capture_extract_reglists(struct intel_guc *guc, struct __guc_capture_bufstat
break;
}
if (datatype != GUC_CAPTURE_LIST_TYPE_GLOBAL)
- drm_dbg(&i915->drm, "GuC Capture missing global dump: %08x!\n",
+ guc_dbg(guc, "Register capture missing global dump: %08x!\n",
datatype);
}
node->is_partial = is_partial;
@@ -1240,7 +1316,7 @@ guc_capture_extract_reglists(struct intel_guc *guc, struct __guc_capture_bufstat
numregs = FIELD_GET(CAP_HDR_NUM_MMIOS, hdr.num_mmios);
if (numregs > guc->capture->max_mmio_per_node) {
- drm_dbg(&i915->drm, "GuC Capture list extraction clipped by prealloc!\n");
+ guc_dbg(guc, "Register capture list extraction clipped by prealloc!\n");
numregs = guc->capture->max_mmio_per_node;
}
node->reginfo[datatype].num_regs = numregs;
@@ -1285,7 +1361,6 @@ static void __guc_capture_process_output(struct intel_guc *guc)
{
unsigned int buffer_size, read_offset, write_offset, full_count;
struct intel_uc *uc = container_of(guc, typeof(*uc), guc);
- struct drm_i915_private *i915 = guc_to_gt(guc)->i915;
struct guc_log_buffer_state log_buf_state_local;
struct guc_log_buffer_state *log_buf_state;
struct __guc_capture_bufstate buf;
@@ -1321,7 +1396,8 @@ static void __guc_capture_process_output(struct intel_guc *guc)
write_offset = buffer_size;
} else if (unlikely((read_offset > buffer_size) ||
(write_offset > buffer_size))) {
- drm_err(&i915->drm, "invalid GuC log capture buffer state!\n");
+ guc_err(guc, "Register capture buffer in invalid state: read = 0x%X, size = 0x%X!\n",
+ read_offset, buffer_size);
/* copy whole buffer as offsets are unreliable */
read_offset = 0;
write_offset = buffer_size;
@@ -1424,7 +1500,7 @@ int intel_guc_capture_print_engine_node(struct drm_i915_error_state_buf *ebuf,
if (!ebuf || !ee)
return -EINVAL;
- cap = ee->capture;
+ cap = ee->guc_capture;
if (!cap || !ee->engine)
return -ENODEV;
@@ -1489,13 +1565,34 @@ int intel_guc_capture_print_engine_node(struct drm_i915_error_state_buf *ebuf,
#endif //CONFIG_DRM_I915_CAPTURE_ERROR
+static void guc_capture_find_ecode(struct intel_engine_coredump *ee)
+{
+ struct gcap_reg_list_info *reginfo;
+ struct guc_mmio_reg *regs;
+ i915_reg_t reg_ipehr = RING_IPEHR(0);
+ i915_reg_t reg_instdone = RING_INSTDONE(0);
+ int i;
+
+ if (!ee->guc_capture_node)
+ return;
+
+ reginfo = ee->guc_capture_node->reginfo + GUC_CAPTURE_LIST_TYPE_ENGINE_INSTANCE;
+ regs = reginfo->regs;
+ for (i = 0; i < reginfo->num_regs; i++) {
+ if (regs[i].offset == reg_ipehr.reg)
+ ee->ipehr = regs[i].value;
+ else if (regs[i].offset == reg_instdone.reg)
+ ee->instdone.instdone = regs[i].value;
+ }
+}
+
void intel_guc_capture_free_node(struct intel_engine_coredump *ee)
{
if (!ee || !ee->guc_capture_node)
return;
- guc_capture_add_node_to_cachelist(ee->capture, ee->guc_capture_node);
- ee->capture = NULL;
+ guc_capture_add_node_to_cachelist(ee->guc_capture, ee->guc_capture_node);
+ ee->guc_capture = NULL;
ee->guc_capture_node = NULL;
}
@@ -1504,13 +1601,11 @@ void intel_guc_capture_get_matching_node(struct intel_gt *gt,
struct intel_context *ce)
{
struct __guc_capture_parsed_output *n, *ntmp;
- struct drm_i915_private *i915;
struct intel_guc *guc;
if (!gt || !ee || !ce)
return;
- i915 = gt->i915;
guc = &gt->uc.guc;
if (!guc->capture)
return;
@@ -1524,16 +1619,18 @@ void intel_guc_capture_get_matching_node(struct intel_gt *gt,
list_for_each_entry_safe(n, ntmp, &guc->capture->outlist, link) {
if (n->eng_inst == GUC_ID_TO_ENGINE_INSTANCE(ee->engine->guc_id) &&
n->eng_class == GUC_ID_TO_ENGINE_CLASS(ee->engine->guc_id) &&
- n->guc_id && n->guc_id == ce->guc_id.id &&
- (n->lrca & CTX_GTT_ADDRESS_MASK) && (n->lrca & CTX_GTT_ADDRESS_MASK) ==
- (ce->lrc.lrca & CTX_GTT_ADDRESS_MASK)) {
+ n->guc_id == ce->guc_id.id &&
+ (n->lrca & CTX_GTT_ADDRESS_MASK) == (ce->lrc.lrca & CTX_GTT_ADDRESS_MASK)) {
list_del(&n->link);
ee->guc_capture_node = n;
- ee->capture = guc->capture;
+ ee->guc_capture = guc->capture;
+ guc_capture_find_ecode(ee);
return;
}
}
- drm_dbg(&i915->drm, "GuC capture can't match ee to node\n");
+
+ guc_warn(guc, "No register capture node found for 0x%04X / 0x%08X\n",
+ ce->guc_id.id, ce->lrc.lrca);
}
void intel_guc_capture_process(struct intel_guc *guc)
diff --git a/drivers/gpu/drm/i915/gt/uc/intel_guc_ct.c b/drivers/gpu/drm/i915/gt/uc/intel_guc_ct.c
index 2b22065e87bf..1803a633ed64 100644
--- a/drivers/gpu/drm/i915/gt/uc/intel_guc_ct.c
+++ b/drivers/gpu/drm/i915/gt/uc/intel_guc_ct.c
@@ -11,38 +11,23 @@
#include "i915_drv.h"
#include "intel_guc_ct.h"
-#include "gt/intel_gt.h"
+#include "intel_guc_print.h"
static inline struct intel_guc *ct_to_guc(struct intel_guc_ct *ct)
{
return container_of(ct, struct intel_guc, ct);
}
-static inline struct intel_gt *ct_to_gt(struct intel_guc_ct *ct)
-{
- return guc_to_gt(ct_to_guc(ct));
-}
-
-static inline struct drm_i915_private *ct_to_i915(struct intel_guc_ct *ct)
-{
- return ct_to_gt(ct)->i915;
-}
-
-static inline struct drm_device *ct_to_drm(struct intel_guc_ct *ct)
-{
- return &ct_to_i915(ct)->drm;
-}
-
#define CT_ERROR(_ct, _fmt, ...) \
- drm_err(ct_to_drm(_ct), "CT: " _fmt, ##__VA_ARGS__)
+ guc_err(ct_to_guc(_ct), "CT: " _fmt, ##__VA_ARGS__)
#ifdef CONFIG_DRM_I915_DEBUG_GUC
#define CT_DEBUG(_ct, _fmt, ...) \
- drm_dbg(ct_to_drm(_ct), "CT: " _fmt, ##__VA_ARGS__)
+ guc_dbg(ct_to_guc(_ct), "CT: " _fmt, ##__VA_ARGS__)
#else
#define CT_DEBUG(...) do { } while (0)
#endif
#define CT_PROBE_ERROR(_ct, _fmt, ...) \
- i915_probe_error(ct_to_i915(ct), "CT: " _fmt, ##__VA_ARGS__)
+ guc_probe_error(ct_to_guc(ct), "CT: " _fmt, ##__VA_ARGS__)
/**
* DOC: CTB Blob
diff --git a/drivers/gpu/drm/i915/gt/uc/intel_guc_debugfs.c b/drivers/gpu/drm/i915/gt/uc/intel_guc_debugfs.c
index 25f09a420561..7269eb0bbedf 100644
--- a/drivers/gpu/drm/i915/gt/uc/intel_guc_debugfs.c
+++ b/drivers/gpu/drm/i915/gt/uc/intel_guc_debugfs.c
@@ -71,12 +71,73 @@ static bool intel_eval_slpc_support(void *data)
return intel_guc_slpc_is_used(guc);
}
+static int guc_sched_disable_delay_ms_get(void *data, u64 *val)
+{
+ struct intel_guc *guc = data;
+
+ if (!intel_guc_submission_is_used(guc))
+ return -ENODEV;
+
+ *val = (u64)guc->submission_state.sched_disable_delay_ms;
+
+ return 0;
+}
+
+static int guc_sched_disable_delay_ms_set(void *data, u64 val)
+{
+ struct intel_guc *guc = data;
+
+ if (!intel_guc_submission_is_used(guc))
+ return -ENODEV;
+
+ /* clamp to a practical limit, 1 minute is reasonable for a longest delay */
+ guc->submission_state.sched_disable_delay_ms = min_t(u64, val, 60000);
+
+ return 0;
+}
+DEFINE_SIMPLE_ATTRIBUTE(guc_sched_disable_delay_ms_fops,
+ guc_sched_disable_delay_ms_get,
+ guc_sched_disable_delay_ms_set, "%lld\n");
+
+static int guc_sched_disable_gucid_threshold_get(void *data, u64 *val)
+{
+ struct intel_guc *guc = data;
+
+ if (!intel_guc_submission_is_used(guc))
+ return -ENODEV;
+
+ *val = guc->submission_state.sched_disable_gucid_threshold;
+ return 0;
+}
+
+static int guc_sched_disable_gucid_threshold_set(void *data, u64 val)
+{
+ struct intel_guc *guc = data;
+
+ if (!intel_guc_submission_is_used(guc))
+ return -ENODEV;
+
+ if (val > intel_guc_sched_disable_gucid_threshold_max(guc))
+ guc->submission_state.sched_disable_gucid_threshold =
+ intel_guc_sched_disable_gucid_threshold_max(guc);
+ else
+ guc->submission_state.sched_disable_gucid_threshold = val;
+
+ return 0;
+}
+DEFINE_SIMPLE_ATTRIBUTE(guc_sched_disable_gucid_threshold_fops,
+ guc_sched_disable_gucid_threshold_get,
+ guc_sched_disable_gucid_threshold_set, "%lld\n");
+
void intel_guc_debugfs_register(struct intel_guc *guc, struct dentry *root)
{
static const struct intel_gt_debugfs_file files[] = {
{ "guc_info", &guc_info_fops, NULL },
{ "guc_registered_contexts", &guc_registered_contexts_fops, NULL },
{ "guc_slpc_info", &guc_slpc_info_fops, &intel_eval_slpc_support},
+ { "guc_sched_disable_delay_ms", &guc_sched_disable_delay_ms_fops, NULL },
+ { "guc_sched_disable_gucid_threshold", &guc_sched_disable_gucid_threshold_fops,
+ NULL },
};
if (!intel_guc_is_supported(guc))
diff --git a/drivers/gpu/drm/i915/gt/uc/intel_guc_fw.c b/drivers/gpu/drm/i915/gt/uc/intel_guc_fw.c
index a0372735cddb..6fda3aec5c66 100644
--- a/drivers/gpu/drm/i915/gt/uc/intel_guc_fw.c
+++ b/drivers/gpu/drm/i915/gt/uc/intel_guc_fw.c
@@ -10,12 +10,17 @@
*/
#include "gt/intel_gt.h"
+#include "gt/intel_gt_mcr.h"
#include "gt/intel_gt_regs.h"
+#include "gt/intel_rps.h"
#include "intel_guc_fw.h"
+#include "intel_guc_print.h"
#include "i915_drv.h"
-static void guc_prepare_xfer(struct intel_uncore *uncore)
+static void guc_prepare_xfer(struct intel_gt *gt)
{
+ struct intel_uncore *uncore = gt->uncore;
+
u32 shim_flags = GUC_ENABLE_READ_CACHE_LOGIC |
GUC_ENABLE_READ_CACHE_FOR_SRAM_DATA |
GUC_ENABLE_READ_CACHE_FOR_WOPCM_DATA |
@@ -35,8 +40,8 @@ static void guc_prepare_xfer(struct intel_uncore *uncore)
if (GRAPHICS_VER(uncore->i915) == 9) {
/* DOP Clock Gating Enable for GuC clocks */
- intel_uncore_rmw(uncore, GEN7_MISCCPCTL,
- 0, GEN8_DOP_CLOCK_GATE_GUC_ENABLE);
+ intel_uncore_rmw(uncore, GEN7_MISCCPCTL, 0,
+ GEN8_DOP_CLOCK_GATE_GUC_ENABLE);
/* allows for 5us (in 10ns units) before GT can go to RC6 */
intel_uncore_write(uncore, GUC_ARAT_C6DIS, 0x1FF);
@@ -84,29 +89,80 @@ static int guc_xfer_rsa(struct intel_uc_fw *guc_fw,
/*
* Read the GuC status register (GUC_STATUS) and store it in the
* specified location; then return a boolean indicating whether
- * the value matches either of two values representing completion
- * of the GuC boot process.
+ * the value matches either completion or a known failure code.
*
* This is used for polling the GuC status in a wait_for()
* loop below.
*/
-static inline bool guc_ready(struct intel_uncore *uncore, u32 *status)
+static inline bool guc_load_done(struct intel_uncore *uncore, u32 *status, bool *success)
{
u32 val = intel_uncore_read(uncore, GUC_STATUS);
u32 uk_val = REG_FIELD_GET(GS_UKERNEL_MASK, val);
+ u32 br_val = REG_FIELD_GET(GS_BOOTROM_MASK, val);
*status = val;
- return uk_val == INTEL_GUC_LOAD_STATUS_READY;
+ switch (uk_val) {
+ case INTEL_GUC_LOAD_STATUS_READY:
+ *success = true;
+ return true;
+
+ case INTEL_GUC_LOAD_STATUS_ERROR_DEVID_BUILD_MISMATCH:
+ case INTEL_GUC_LOAD_STATUS_GUC_PREPROD_BUILD_MISMATCH:
+ case INTEL_GUC_LOAD_STATUS_ERROR_DEVID_INVALID_GUCTYPE:
+ case INTEL_GUC_LOAD_STATUS_HWCONFIG_ERROR:
+ case INTEL_GUC_LOAD_STATUS_DPC_ERROR:
+ case INTEL_GUC_LOAD_STATUS_EXCEPTION:
+ case INTEL_GUC_LOAD_STATUS_INIT_DATA_INVALID:
+ case INTEL_GUC_LOAD_STATUS_MPU_DATA_INVALID:
+ case INTEL_GUC_LOAD_STATUS_INIT_MMIO_SAVE_RESTORE_INVALID:
+ *success = false;
+ return true;
+ }
+
+ switch (br_val) {
+ case INTEL_BOOTROM_STATUS_NO_KEY_FOUND:
+ case INTEL_BOOTROM_STATUS_RSA_FAILED:
+ case INTEL_BOOTROM_STATUS_PAVPC_FAILED:
+ case INTEL_BOOTROM_STATUS_WOPCM_FAILED:
+ case INTEL_BOOTROM_STATUS_LOADLOC_FAILED:
+ case INTEL_BOOTROM_STATUS_JUMP_FAILED:
+ case INTEL_BOOTROM_STATUS_RC6CTXCONFIG_FAILED:
+ case INTEL_BOOTROM_STATUS_MPUMAP_INCORRECT:
+ case INTEL_BOOTROM_STATUS_EXCEPTION:
+ *success = false;
+ return true;
+ }
+
+ return false;
}
-static int guc_wait_ucode(struct intel_uncore *uncore)
+/*
+ * Use a longer timeout for debug builds so that problems can be detected
+ * and analysed. But a shorter timeout for releases so that user's don't
+ * wait forever to find out there is a problem. Note that the only reason
+ * an end user should hit the timeout is in case of extreme thermal throttling.
+ * And a system that is that hot during boot is probably dead anyway!
+ */
+#if defined(CONFIG_DRM_I915_DEBUG_GEM)
+#define GUC_LOAD_RETRY_LIMIT 20
+#else
+#define GUC_LOAD_RETRY_LIMIT 3
+#endif
+
+static int guc_wait_ucode(struct intel_guc *guc)
{
+ struct intel_gt *gt = guc_to_gt(guc);
+ struct intel_uncore *uncore = gt->uncore;
+ ktime_t before, after, delta;
+ bool success;
u32 status;
- int ret;
+ int ret, count;
+ u64 delta_ms;
+ u32 before_freq;
/*
* Wait for the GuC to start up.
- * NB: Docs recommend not using the interrupt for completion.
+ *
* Measurements indicate this should take no more than 20ms
* (assuming the GT clock is at maximum frequency). So, a
* timeout here indicates that the GuC has failed and is unusable.
@@ -120,31 +176,80 @@ static int guc_wait_ucode(struct intel_uncore *uncore)
* issues to be resolved. In the meantime bump the timeout to
* 200ms. Even at slowest clock, this should be sufficient. And
* in the working case, a larger timeout makes no difference.
+ *
+ * IFWI updates have also been seen to cause sporadic failures due to
+ * the requested frequency not being granted and thus the firmware
+ * load is attempted at minimum frequency. That can lead to load times
+ * in the seconds range. However, there is a limit on how long an
+ * individual wait_for() can wait. So wrap it in a loop.
*/
- ret = wait_for(guc_ready(uncore, &status), 200);
- if (ret) {
- struct drm_device *drm = &uncore->i915->drm;
-
- drm_info(drm, "GuC load failed: status = 0x%08X\n", status);
- drm_info(drm, "GuC load failed: status: Reset = %d, "
- "BootROM = 0x%02X, UKernel = 0x%02X, "
- "MIA = 0x%02X, Auth = 0x%02X\n",
- REG_FIELD_GET(GS_MIA_IN_RESET, status),
- REG_FIELD_GET(GS_BOOTROM_MASK, status),
- REG_FIELD_GET(GS_UKERNEL_MASK, status),
- REG_FIELD_GET(GS_MIA_MASK, status),
- REG_FIELD_GET(GS_AUTH_STATUS_MASK, status));
-
- if ((status & GS_BOOTROM_MASK) == GS_BOOTROM_RSA_FAILED) {
- drm_info(drm, "GuC firmware signature verification failed\n");
+ before_freq = intel_rps_read_actual_frequency(&uncore->gt->rps);
+ before = ktime_get();
+ for (count = 0; count < GUC_LOAD_RETRY_LIMIT; count++) {
+ ret = wait_for(guc_load_done(uncore, &status, &success), 1000);
+ if (!ret || !success)
+ break;
+
+ guc_dbg(guc, "load still in progress, count = %d, freq = %dMHz\n",
+ count, intel_rps_read_actual_frequency(&uncore->gt->rps));
+ }
+ after = ktime_get();
+ delta = ktime_sub(after, before);
+ delta_ms = ktime_to_ms(delta);
+ if (ret || !success) {
+ u32 ukernel = REG_FIELD_GET(GS_UKERNEL_MASK, status);
+ u32 bootrom = REG_FIELD_GET(GS_BOOTROM_MASK, status);
+
+ guc_info(guc, "load failed: status = 0x%08X, time = %lldms, freq = %dMHz, ret = %d\n",
+ status, delta_ms, intel_rps_read_actual_frequency(&uncore->gt->rps), ret);
+ guc_info(guc, "load failed: status: Reset = %d, BootROM = 0x%02X, UKernel = 0x%02X, MIA = 0x%02X, Auth = 0x%02X\n",
+ REG_FIELD_GET(GS_MIA_IN_RESET, status),
+ bootrom, ukernel,
+ REG_FIELD_GET(GS_MIA_MASK, status),
+ REG_FIELD_GET(GS_AUTH_STATUS_MASK, status));
+
+ switch (bootrom) {
+ case INTEL_BOOTROM_STATUS_NO_KEY_FOUND:
+ guc_info(guc, "invalid key requested, header = 0x%08X\n",
+ intel_uncore_read(uncore, GUC_HEADER_INFO));
ret = -ENOEXEC;
+ break;
+
+ case INTEL_BOOTROM_STATUS_RSA_FAILED:
+ guc_info(guc, "firmware signature verification failed\n");
+ ret = -ENOEXEC;
+ break;
}
- if (REG_FIELD_GET(GS_UKERNEL_MASK, status) == INTEL_GUC_LOAD_STATUS_EXCEPTION) {
- drm_info(drm, "GuC firmware exception. EIP: %#x\n",
+ switch (ukernel) {
+ case INTEL_GUC_LOAD_STATUS_EXCEPTION:
+ guc_info(guc, "firmware exception. EIP: %#x\n",
intel_uncore_read(uncore, SOFT_SCRATCH(13)));
ret = -ENXIO;
+ break;
+
+ case INTEL_GUC_LOAD_STATUS_INIT_MMIO_SAVE_RESTORE_INVALID:
+ guc_info(guc, "illegal register in save/restore workaround list\n");
+ ret = -EPERM;
+ break;
+
+ case INTEL_GUC_LOAD_STATUS_HWCONFIG_START:
+ guc_info(guc, "still extracting hwconfig table.\n");
+ ret = -ETIMEDOUT;
+ break;
}
+
+ /* Uncommon/unexpected error, see earlier status code print for details */
+ if (ret == 0)
+ ret = -ENXIO;
+ } else if (delta_ms > 200) {
+ guc_warn(guc, "excessive init time: %lldms! [freq = %dMHz, before = %dMHz, status = 0x%08X, count = %d, ret = %d]\n",
+ delta_ms, intel_rps_read_actual_frequency(&uncore->gt->rps),
+ before_freq, status, count, ret);
+ } else {
+ guc_dbg(guc, "init took %lldms, freq = %dMHz, before = %dMHz, status = 0x%08X, count = %d, ret = %d\n",
+ delta_ms, intel_rps_read_actual_frequency(&uncore->gt->rps),
+ before_freq, status, count, ret);
}
return ret;
@@ -168,7 +273,7 @@ int intel_guc_fw_upload(struct intel_guc *guc)
struct intel_uncore *uncore = gt->uncore;
int ret;
- guc_prepare_xfer(uncore);
+ guc_prepare_xfer(gt);
/*
* Note that GuC needs the CSS header plus uKernel code to be copied
@@ -190,7 +295,7 @@ int intel_guc_fw_upload(struct intel_guc *guc)
if (ret)
goto out;
- ret = guc_wait_ucode(uncore);
+ ret = guc_wait_ucode(guc);
if (ret)
goto out;
diff --git a/drivers/gpu/drm/i915/gt/uc/intel_guc_fwif.h b/drivers/gpu/drm/i915/gt/uc/intel_guc_fwif.h
index 323b055e5db9..4ae5fc2f6002 100644
--- a/drivers/gpu/drm/i915/gt/uc/intel_guc_fwif.h
+++ b/drivers/gpu/drm/i915/gt/uc/intel_guc_fwif.h
@@ -47,7 +47,8 @@
#define GUC_VIDEOENHANCE_CLASS 2
#define GUC_BLITTER_CLASS 3
#define GUC_COMPUTE_CLASS 4
-#define GUC_LAST_ENGINE_CLASS GUC_COMPUTE_CLASS
+#define GUC_GSC_OTHER_CLASS 5
+#define GUC_LAST_ENGINE_CLASS GUC_GSC_OTHER_CLASS
#define GUC_MAX_ENGINE_CLASSES 16
#define GUC_MAX_INSTANCES_PER_CLASS 32
@@ -169,6 +170,7 @@ static u8 engine_class_guc_class_map[] = {
[COPY_ENGINE_CLASS] = GUC_BLITTER_CLASS,
[VIDEO_DECODE_CLASS] = GUC_VIDEO_CLASS,
[VIDEO_ENHANCEMENT_CLASS] = GUC_VIDEOENHANCE_CLASS,
+ [OTHER_CLASS] = GUC_GSC_OTHER_CLASS,
[COMPUTE_CLASS] = GUC_COMPUTE_CLASS,
};
@@ -178,12 +180,13 @@ static u8 guc_class_engine_class_map[] = {
[GUC_VIDEO_CLASS] = VIDEO_DECODE_CLASS,
[GUC_VIDEOENHANCE_CLASS] = VIDEO_ENHANCEMENT_CLASS,
[GUC_COMPUTE_CLASS] = COMPUTE_CLASS,
+ [GUC_GSC_OTHER_CLASS] = OTHER_CLASS,
};
static inline u8 engine_class_to_guc_class(u8 class)
{
BUILD_BUG_ON(ARRAY_SIZE(engine_class_guc_class_map) != MAX_ENGINE_CLASS + 1);
- GEM_BUG_ON(class > MAX_ENGINE_CLASS || class == OTHER_CLASS);
+ GEM_BUG_ON(class > MAX_ENGINE_CLASS);
return engine_class_guc_class_map[class];
}
@@ -290,6 +293,25 @@ struct guc_update_context_policy {
struct guc_klv_generic_dw_t klv[GUC_CONTEXT_POLICIES_KLV_NUM_IDS];
} __packed;
+/* Format of the UPDATE_SCHEDULING_POLICIES H2G data packet */
+struct guc_update_scheduling_policy_header {
+ u32 action;
+} __packed;
+
+/*
+ * Can't dynmically allocate memory for the scheduling policy KLV because
+ * it will be sent from within the reset path. Need a fixed size lump on
+ * the stack instead :(.
+ *
+ * Currently, there is only one KLV defined, which has 1 word of KL + 2 words of V.
+ */
+#define MAX_SCHEDULING_POLICY_SIZE 3
+
+struct guc_update_scheduling_policy {
+ struct guc_update_scheduling_policy_header header;
+ u32 data[MAX_SCHEDULING_POLICY_SIZE];
+} __packed;
+
#define GUC_POWER_UNSPECIFIED 0
#define GUC_POWER_D0 1
#define GUC_POWER_D1 2
@@ -298,6 +320,9 @@ struct guc_update_context_policy {
/* Scheduling policy settings */
+#define GLOBAL_SCHEDULE_POLICY_RC_YIELD_DURATION 100 /* in ms */
+#define GLOBAL_SCHEDULE_POLICY_RC_YIELD_RATIO 50 /* in percent */
+
#define GLOBAL_POLICY_MAX_NUM_WI 15
/* Don't reset an engine upon preemption failure */
@@ -305,6 +330,27 @@ struct guc_update_context_policy {
#define GLOBAL_POLICY_DEFAULT_DPC_PROMOTE_TIME_US 500000
+/*
+ * GuC converts the timeout to clock ticks internally. Different platforms have
+ * different GuC clocks. Thus, the maximum value before overflow is platform
+ * dependent. Current worst case scenario is about 110s. So, the spec says to
+ * limit to 100s to be safe.
+ */
+#define GUC_POLICY_MAX_EXEC_QUANTUM_US (100 * 1000 * 1000UL)
+#define GUC_POLICY_MAX_PREEMPT_TIMEOUT_US (100 * 1000 * 1000UL)
+
+static inline u32 guc_policy_max_exec_quantum_ms(void)
+{
+ BUILD_BUG_ON(GUC_POLICY_MAX_EXEC_QUANTUM_US >= UINT_MAX);
+ return GUC_POLICY_MAX_EXEC_QUANTUM_US / 1000;
+}
+
+static inline u32 guc_policy_max_preempt_timeout_ms(void)
+{
+ BUILD_BUG_ON(GUC_POLICY_MAX_PREEMPT_TIMEOUT_US >= UINT_MAX);
+ return GUC_POLICY_MAX_PREEMPT_TIMEOUT_US / 1000;
+}
+
struct guc_policies {
u32 submission_queue_depth[GUC_MAX_ENGINE_CLASSES];
/* In micro seconds. How much time to allow before DPC processing is
diff --git a/drivers/gpu/drm/i915/gt/uc/intel_guc_hwconfig.c b/drivers/gpu/drm/i915/gt/uc/intel_guc_hwconfig.c
index 4781fccc2687..852bea0208ce 100644
--- a/drivers/gpu/drm/i915/gt/uc/intel_guc_hwconfig.c
+++ b/drivers/gpu/drm/i915/gt/uc/intel_guc_hwconfig.c
@@ -102,7 +102,7 @@ static bool has_table(struct drm_i915_private *i915)
return false;
}
-/**
+/*
* intel_guc_hwconfig_init - Initialize the HWConfig
*
* Retrieve the HWConfig table from the GuC and save it locally.
@@ -136,7 +136,7 @@ static int guc_hwconfig_init(struct intel_gt *gt)
return 0;
}
-/**
+/*
* intel_gt_init_hwconfig - Initialize the HWConfig if available
*
* Retrieve the HWConfig table if available on the current platform.
@@ -149,7 +149,7 @@ int intel_gt_init_hwconfig(struct intel_gt *gt)
return guc_hwconfig_init(gt);
}
-/**
+/*
* intel_gt_fini_hwconfig - Finalize the HWConfig
*
* Free up the memory allocation holding the table.
diff --git a/drivers/gpu/drm/i915/gt/uc/intel_guc_log.c b/drivers/gpu/drm/i915/gt/uc/intel_guc_log.c
index 55d3ef93e86f..55bc8b55fbc0 100644
--- a/drivers/gpu/drm/i915/gt/uc/intel_guc_log.c
+++ b/drivers/gpu/drm/i915/gt/uc/intel_guc_log.c
@@ -12,19 +12,20 @@
#include "i915_memcpy.h"
#include "intel_guc_capture.h"
#include "intel_guc_log.h"
+#include "intel_guc_print.h"
#if defined(CONFIG_DRM_I915_DEBUG_GUC)
#define GUC_LOG_DEFAULT_CRASH_BUFFER_SIZE SZ_2M
#define GUC_LOG_DEFAULT_DEBUG_BUFFER_SIZE SZ_16M
-#define GUC_LOG_DEFAULT_CAPTURE_BUFFER_SIZE SZ_4M
+#define GUC_LOG_DEFAULT_CAPTURE_BUFFER_SIZE SZ_1M
#elif defined(CONFIG_DRM_I915_DEBUG_GEM)
#define GUC_LOG_DEFAULT_CRASH_BUFFER_SIZE SZ_1M
#define GUC_LOG_DEFAULT_DEBUG_BUFFER_SIZE SZ_2M
-#define GUC_LOG_DEFAULT_CAPTURE_BUFFER_SIZE SZ_4M
+#define GUC_LOG_DEFAULT_CAPTURE_BUFFER_SIZE SZ_1M
#else
#define GUC_LOG_DEFAULT_CRASH_BUFFER_SIZE SZ_8K
#define GUC_LOG_DEFAULT_DEBUG_BUFFER_SIZE SZ_64K
-#define GUC_LOG_DEFAULT_CAPTURE_BUFFER_SIZE SZ_2M
+#define GUC_LOG_DEFAULT_CAPTURE_BUFFER_SIZE SZ_1M
#endif
static void guc_log_copy_debuglogs_for_relay(struct intel_guc_log *log);
@@ -39,7 +40,6 @@ struct guc_log_section {
static void _guc_log_init_sizes(struct intel_guc_log *log)
{
struct intel_guc *guc = log_to_guc(log);
- struct drm_i915_private *i915 = guc_to_gt(guc)->i915;
static const struct guc_log_section sections[GUC_LOG_SECTIONS_LIMIT] = {
{
GUC_LOG_CRASH_MASK >> GUC_LOG_CRASH_SHIFT,
@@ -82,12 +82,12 @@ static void _guc_log_init_sizes(struct intel_guc_log *log)
}
if (!IS_ALIGNED(log->sizes[i].bytes, log->sizes[i].units))
- drm_err(&i915->drm, "Mis-aligned GuC log %s size: 0x%X vs 0x%X!",
+ guc_err(guc, "Mis-aligned log %s size: 0x%X vs 0x%X!\n",
sections[i].name, log->sizes[i].bytes, log->sizes[i].units);
log->sizes[i].count = log->sizes[i].bytes / log->sizes[i].units;
if (!log->sizes[i].count) {
- drm_err(&i915->drm, "Zero GuC log %s size!", sections[i].name);
+ guc_err(guc, "Zero log %s size!\n", sections[i].name);
} else {
/* Size is +1 unit */
log->sizes[i].count--;
@@ -95,14 +95,14 @@ static void _guc_log_init_sizes(struct intel_guc_log *log)
/* Clip to field size */
if (log->sizes[i].count > sections[i].max) {
- drm_err(&i915->drm, "GuC log %s size too large: %d vs %d!",
+ guc_err(guc, "log %s size too large: %d vs %d!\n",
sections[i].name, log->sizes[i].count + 1, sections[i].max + 1);
log->sizes[i].count = sections[i].max;
}
}
if (log->sizes[GUC_LOG_SECTIONS_CRASH].units != log->sizes[GUC_LOG_SECTIONS_DEBUG].units) {
- drm_err(&i915->drm, "Unit mis-match for GuC log crash and debug sections: %d vs %d!",
+ guc_err(guc, "Unit mismatch for crash and debug sections: %d vs %d!\n",
log->sizes[GUC_LOG_SECTIONS_CRASH].units,
log->sizes[GUC_LOG_SECTIONS_DEBUG].units);
log->sizes[GUC_LOG_SECTIONS_CRASH].units = log->sizes[GUC_LOG_SECTIONS_DEBUG].units;
@@ -333,8 +333,7 @@ bool intel_guc_check_log_buf_overflow(struct intel_guc_log *log,
log->stats[type].sampled_overflow += 16;
}
- dev_notice_ratelimited(guc_to_gt(log_to_guc(log))->i915->drm.dev,
- "GuC log buffer overflow\n");
+ guc_notice_ratelimited(log_to_guc(log), "log buffer overflow\n");
}
return overflow;
@@ -374,6 +373,7 @@ size_t intel_guc_get_log_buffer_offset(struct intel_guc_log *log,
static void _guc_log_copy_debuglogs_for_relay(struct intel_guc_log *log)
{
+ struct intel_guc *guc = log_to_guc(log);
unsigned int buffer_size, read_offset, write_offset, bytes_to_copy, full_cnt;
struct guc_log_buffer_state *log_buf_state, *log_buf_snapshot_state;
struct guc_log_buffer_state log_buf_state_local;
@@ -383,7 +383,7 @@ static void _guc_log_copy_debuglogs_for_relay(struct intel_guc_log *log)
mutex_lock(&log->relay.lock);
- if (WARN_ON(!intel_guc_log_relay_created(log)))
+ if (guc_WARN_ON(guc, !intel_guc_log_relay_created(log)))
goto out_unlock;
/* Get the pointer to shared GuC log buffer */
@@ -398,7 +398,7 @@ static void _guc_log_copy_debuglogs_for_relay(struct intel_guc_log *log)
* Used rate limited to avoid deluge of messages, logs might be
* getting consumed by User at a slow rate.
*/
- DRM_ERROR_RATELIMITED("no sub-buffer to copy general logs\n");
+ guc_err_ratelimited(guc, "no sub-buffer to copy general logs\n");
log->relay.full_count++;
goto out_unlock;
@@ -451,7 +451,7 @@ static void _guc_log_copy_debuglogs_for_relay(struct intel_guc_log *log)
write_offset = buffer_size;
} else if (unlikely((read_offset > buffer_size) ||
(write_offset > buffer_size))) {
- DRM_ERROR("invalid log buffer state\n");
+ guc_err(guc, "invalid log buffer state\n");
/* copy whole buffer as offsets are unreliable */
read_offset = 0;
write_offset = buffer_size;
@@ -520,7 +520,7 @@ void intel_guc_log_init_early(struct intel_guc_log *log)
static int guc_log_relay_create(struct intel_guc_log *log)
{
struct intel_guc *guc = log_to_guc(log);
- struct drm_i915_private *dev_priv = guc_to_gt(guc)->i915;
+ struct drm_i915_private *i915 = guc_to_gt(guc)->i915;
struct rchan *guc_log_relay_chan;
size_t n_subbufs, subbuf_size;
int ret;
@@ -542,12 +542,15 @@ static int guc_log_relay_create(struct intel_guc_log *log)
*/
n_subbufs = 8;
+ if (!guc->dbgfs_node)
+ return -ENOENT;
+
guc_log_relay_chan = relay_open("guc_log",
- dev_priv->drm.primary->debugfs_root,
+ guc->dbgfs_node,
subbuf_size, n_subbufs,
- &relay_callbacks, dev_priv);
+ &relay_callbacks, i915);
if (!guc_log_relay_chan) {
- DRM_ERROR("Couldn't create relay chan for GuC logging\n");
+ guc_err(guc, "Couldn't create relay channel for logging\n");
ret = -ENOMEM;
return ret;
@@ -570,7 +573,7 @@ static void guc_log_relay_destroy(struct intel_guc_log *log)
static void guc_log_copy_debuglogs_for_relay(struct intel_guc_log *log)
{
struct intel_guc *guc = log_to_guc(log);
- struct drm_i915_private *dev_priv = guc_to_gt(guc)->i915;
+ struct drm_i915_private *i915 = guc_to_gt(guc)->i915;
intel_wakeref_t wakeref;
_guc_log_copy_debuglogs_for_relay(log);
@@ -579,7 +582,7 @@ static void guc_log_copy_debuglogs_for_relay(struct intel_guc_log *log)
* Generally device is expected to be active only at this
* time, so get/put should be really quick.
*/
- with_intel_runtime_pm(&dev_priv->runtime_pm, wakeref)
+ with_intel_runtime_pm(&i915->runtime_pm, wakeref)
guc_action_flush_log_complete(guc);
}
@@ -596,9 +599,8 @@ static u32 __get_default_log_level(struct intel_guc_log *log)
}
if (i915->params.guc_log_level > GUC_LOG_LEVEL_MAX) {
- DRM_WARN("Incompatible option detected: %s=%d, %s!\n",
- "guc_log_level", i915->params.guc_log_level,
- "verbosity too high");
+ guc_warn(guc, "Log verbosity param out of range: %d > %d!\n",
+ i915->params.guc_log_level, GUC_LOG_LEVEL_MAX);
return (IS_ENABLED(CONFIG_DRM_I915_DEBUG) ||
IS_ENABLED(CONFIG_DRM_I915_DEBUG_GEM)) ?
GUC_LOG_LEVEL_MAX : GUC_LOG_LEVEL_DISABLED;
@@ -641,15 +643,15 @@ int intel_guc_log_create(struct intel_guc_log *log)
log->buf_addr = vaddr;
log->level = __get_default_log_level(log);
- DRM_DEBUG_DRIVER("guc_log_level=%d (%s, verbose:%s, verbosity:%d)\n",
- log->level, str_enabled_disabled(log->level),
- str_yes_no(GUC_LOG_LEVEL_IS_VERBOSE(log->level)),
- GUC_LOG_LEVEL_TO_VERBOSITY(log->level));
+ guc_dbg(guc, "guc_log_level=%d (%s, verbose:%s, verbosity:%d)\n",
+ log->level, str_enabled_disabled(log->level),
+ str_yes_no(GUC_LOG_LEVEL_IS_VERBOSE(log->level)),
+ GUC_LOG_LEVEL_TO_VERBOSITY(log->level));
return 0;
err:
- DRM_ERROR("Failed to allocate or map GuC log buffer. %d\n", ret);
+ guc_err(guc, "Failed to allocate or map log buffer %pe\n", ERR_PTR(ret));
return ret;
}
@@ -662,7 +664,7 @@ void intel_guc_log_destroy(struct intel_guc_log *log)
int intel_guc_log_set_level(struct intel_guc_log *log, u32 level)
{
struct intel_guc *guc = log_to_guc(log);
- struct drm_i915_private *dev_priv = guc_to_gt(guc)->i915;
+ struct drm_i915_private *i915 = guc_to_gt(guc)->i915;
intel_wakeref_t wakeref;
int ret = 0;
@@ -676,25 +678,25 @@ int intel_guc_log_set_level(struct intel_guc_log *log, u32 level)
if (level < GUC_LOG_LEVEL_DISABLED || level > GUC_LOG_LEVEL_MAX)
return -EINVAL;
- mutex_lock(&dev_priv->drm.struct_mutex);
+ mutex_lock(&i915->drm.struct_mutex);
if (log->level == level)
goto out_unlock;
- with_intel_runtime_pm(&dev_priv->runtime_pm, wakeref)
+ with_intel_runtime_pm(&i915->runtime_pm, wakeref)
ret = guc_action_control_log(guc,
GUC_LOG_LEVEL_IS_VERBOSE(level),
GUC_LOG_LEVEL_IS_ENABLED(level),
GUC_LOG_LEVEL_TO_VERBOSITY(level));
if (ret) {
- DRM_DEBUG_DRIVER("guc_log_control action failed %d\n", ret);
+ guc_dbg(guc, "guc_log_control action failed %pe\n", ERR_PTR(ret));
goto out_unlock;
}
log->level = level;
out_unlock:
- mutex_unlock(&dev_priv->drm.struct_mutex);
+ mutex_unlock(&i915->drm.struct_mutex);
return ret;
}
@@ -905,7 +907,7 @@ int intel_guc_log_dump(struct intel_guc_log *log, struct drm_printer *p,
map = i915_gem_object_pin_map_unlocked(obj, I915_MAP_WC);
if (IS_ERR(map)) {
- DRM_DEBUG("Failed to pin object\n");
+ guc_dbg(guc, "Failed to pin log object: %pe\n", map);
drm_puts(p, "(log data unaccessible)\n");
free_page((unsigned long)page);
return PTR_ERR(map);
diff --git a/drivers/gpu/drm/i915/gt/uc/intel_guc_print.h b/drivers/gpu/drm/i915/gt/uc/intel_guc_print.h
new file mode 100644
index 000000000000..2465d05638b4
--- /dev/null
+++ b/drivers/gpu/drm/i915/gt/uc/intel_guc_print.h
@@ -0,0 +1,51 @@
+/* SPDX-License-Identifier: MIT */
+/*
+ * Copyright © 2023 Intel Corporation
+ */
+
+#ifndef __INTEL_GUC_PRINT__
+#define __INTEL_GUC_PRINT__
+
+#include "gt/intel_gt.h"
+#include "gt/intel_gt_print.h"
+
+#define guc_printk(_guc, _level, _fmt, ...) \
+ gt_##_level(guc_to_gt(_guc), "GUC: " _fmt, ##__VA_ARGS__)
+
+#define guc_err(_guc, _fmt, ...) \
+ guc_printk((_guc), err, _fmt, ##__VA_ARGS__)
+
+#define guc_warn(_guc, _fmt, ...) \
+ guc_printk((_guc), warn, _fmt, ##__VA_ARGS__)
+
+#define guc_notice(_guc, _fmt, ...) \
+ guc_printk((_guc), notice, _fmt, ##__VA_ARGS__)
+
+#define guc_info(_guc, _fmt, ...) \
+ guc_printk((_guc), info, _fmt, ##__VA_ARGS__)
+
+#define guc_dbg(_guc, _fmt, ...) \
+ guc_printk((_guc), dbg, _fmt, ##__VA_ARGS__)
+
+#define guc_err_ratelimited(_guc, _fmt, ...) \
+ guc_printk((_guc), err_ratelimited, _fmt, ##__VA_ARGS__)
+
+#define guc_notice_ratelimited(_guc, _fmt, ...) \
+ guc_printk((_guc), notice_ratelimited, _fmt, ##__VA_ARGS__)
+
+#define guc_probe_error(_guc, _fmt, ...) \
+ guc_printk((_guc), probe_error, _fmt, ##__VA_ARGS__)
+
+#define guc_WARN(_guc, _cond, _fmt, ...) \
+ gt_WARN(guc_to_gt(_guc), _cond, "GUC: " _fmt, ##__VA_ARGS__)
+
+#define guc_WARN_ONCE(_guc, _cond, _fmt, ...) \
+ gt_WARN_ONCE(guc_to_gt(_guc), _cond, "GUC: " _fmt, ##__VA_ARGS__)
+
+#define guc_WARN_ON(_guc, _cond) \
+ gt_WARN(guc_to_gt(_guc), _cond, "%s(%s)", "guc_WARN_ON", __stringify(_cond))
+
+#define guc_WARN_ON_ONCE(_guc, _cond) \
+ gt_WARN_ONCE(guc_to_gt(_guc), _cond, "%s(%s)", "guc_WARN_ON_ONCE", __stringify(_cond))
+
+#endif /* __INTEL_GUC_PRINT__ */
diff --git a/drivers/gpu/drm/i915/gt/uc/intel_guc_rc.c b/drivers/gpu/drm/i915/gt/uc/intel_guc_rc.c
index 8f8dd05835c5..1adec6de223c 100644
--- a/drivers/gpu/drm/i915/gt/uc/intel_guc_rc.c
+++ b/drivers/gpu/drm/i915/gt/uc/intel_guc_rc.c
@@ -6,6 +6,7 @@
#include <linux/string_helpers.h>
#include "intel_guc_rc.h"
+#include "intel_guc_print.h"
#include "gt/intel_gt.h"
#include "i915_drv.h"
@@ -59,13 +60,12 @@ static int __guc_rc_control(struct intel_guc *guc, bool enable)
ret = guc_action_control_gucrc(guc, enable);
if (ret) {
- i915_probe_error(guc_to_gt(guc)->i915, "Failed to %s GuC RC (%pe)\n",
- str_enable_disable(enable), ERR_PTR(ret));
+ guc_probe_error(guc, "Failed to %s RC (%pe)\n",
+ str_enable_disable(enable), ERR_PTR(ret));
return ret;
}
- drm_info(&gt->i915->drm, "GuC RC: %s\n",
- str_enabled_disabled(enable));
+ guc_info(guc, "RC %s\n", str_enabled_disabled(enable));
return 0;
}
diff --git a/drivers/gpu/drm/i915/gt/uc/intel_guc_reg.h b/drivers/gpu/drm/i915/gt/uc/intel_guc_reg.h
index a7092f711e9c..3fd798837502 100644
--- a/drivers/gpu/drm/i915/gt/uc/intel_guc_reg.h
+++ b/drivers/gpu/drm/i915/gt/uc/intel_guc_reg.h
@@ -18,8 +18,6 @@
#define GS_MIA_IN_RESET (0x01 << GS_RESET_SHIFT)
#define GS_BOOTROM_SHIFT 1
#define GS_BOOTROM_MASK (0x7F << GS_BOOTROM_SHIFT)
-#define GS_BOOTROM_RSA_FAILED (0x50 << GS_BOOTROM_SHIFT)
-#define GS_BOOTROM_JUMP_PASSED (0x76 << GS_BOOTROM_SHIFT)
#define GS_UKERNEL_SHIFT 8
#define GS_UKERNEL_MASK (0xFF << GS_UKERNEL_SHIFT)
#define GS_MIA_SHIFT 16
@@ -32,10 +30,13 @@
#define GS_AUTH_STATUS_BAD (0x01 << GS_AUTH_STATUS_SHIFT)
#define GS_AUTH_STATUS_GOOD (0x02 << GS_AUTH_STATUS_SHIFT)
+#define GUC_HEADER_INFO _MMIO(0xc014)
+
#define SOFT_SCRATCH(n) _MMIO(0xc180 + (n) * 4)
#define SOFT_SCRATCH_COUNT 16
#define GEN11_SOFT_SCRATCH(n) _MMIO(0x190240 + (n) * 4)
+#define MEDIA_SOFT_SCRATCH(n) _MMIO(0x190310 + (n) * 4)
#define GEN11_SOFT_SCRATCH_COUNT 4
#define UOS_RSA_SCRATCH(i) _MMIO(0xc200 + (i) * 4)
@@ -101,6 +102,7 @@
#define GUC_SEND_INTERRUPT _MMIO(0xc4c8)
#define GUC_SEND_TRIGGER (1<<0)
#define GEN11_GUC_HOST_INTERRUPT _MMIO(0x1901f0)
+#define MEDIA_GUC_HOST_INTERRUPT _MMIO(0x190304)
#define GEN12_GUC_SEM_INTR_ENABLES _MMIO(0xc71c)
#define GUC_SEM_INTR_ROUTE_TO_GUC BIT(31)
diff --git a/drivers/gpu/drm/i915/gt/uc/intel_guc_slpc.c b/drivers/gpu/drm/i915/gt/uc/intel_guc_slpc.c
index fdd895f73f9f..026d73855f36 100644
--- a/drivers/gpu/drm/i915/gt/uc/intel_guc_slpc.c
+++ b/drivers/gpu/drm/i915/gt/uc/intel_guc_slpc.c
@@ -9,6 +9,7 @@
#include "i915_drv.h"
#include "i915_reg.h"
#include "intel_guc_slpc.h"
+#include "intel_guc_print.h"
#include "intel_mchbar_regs.h"
#include "gt/intel_gt.h"
#include "gt/intel_gt_regs.h"
@@ -137,6 +138,17 @@ static int guc_action_slpc_set_param(struct intel_guc *guc, u8 id, u32 value)
return ret > 0 ? -EPROTO : ret;
}
+static int guc_action_slpc_unset_param(struct intel_guc *guc, u8 id)
+{
+ u32 request[] = {
+ GUC_ACTION_HOST2GUC_PC_SLPC_REQUEST,
+ SLPC_EVENT(SLPC_EVENT_PARAMETER_UNSET, 1),
+ id,
+ };
+
+ return intel_guc_send(guc, request, ARRAY_SIZE(request));
+}
+
static bool slpc_is_running(struct intel_guc_slpc *slpc)
{
return slpc_get_state(slpc) == SLPC_GLOBAL_STATE_RUNNING;
@@ -160,14 +172,12 @@ static int guc_action_slpc_query(struct intel_guc *guc, u32 offset)
static int slpc_query_task_state(struct intel_guc_slpc *slpc)
{
struct intel_guc *guc = slpc_to_guc(slpc);
- struct drm_i915_private *i915 = slpc_to_i915(slpc);
u32 offset = intel_guc_ggtt_offset(guc, slpc->vma);
int ret;
ret = guc_action_slpc_query(guc, offset);
if (unlikely(ret))
- i915_probe_error(i915, "Failed to query task state (%pe)\n",
- ERR_PTR(ret));
+ guc_probe_error(guc, "Failed to query task state: %pe\n", ERR_PTR(ret));
drm_clflush_virt_range(slpc->vaddr, SLPC_PAGE_SIZE_BYTES);
@@ -177,23 +187,31 @@ static int slpc_query_task_state(struct intel_guc_slpc *slpc)
static int slpc_set_param(struct intel_guc_slpc *slpc, u8 id, u32 value)
{
struct intel_guc *guc = slpc_to_guc(slpc);
- struct drm_i915_private *i915 = slpc_to_i915(slpc);
int ret;
GEM_BUG_ON(id >= SLPC_MAX_PARAM);
ret = guc_action_slpc_set_param(guc, id, value);
if (ret)
- i915_probe_error(i915, "Failed to set param %d to %u (%pe)\n",
- id, value, ERR_PTR(ret));
+ guc_probe_error(guc, "Failed to set param %d to %u: %pe\n",
+ id, value, ERR_PTR(ret));
return ret;
}
+static int slpc_unset_param(struct intel_guc_slpc *slpc, u8 id)
+{
+ struct intel_guc *guc = slpc_to_guc(slpc);
+
+ GEM_BUG_ON(id >= SLPC_MAX_PARAM);
+
+ return guc_action_slpc_unset_param(guc, id);
+}
+
static int slpc_force_min_freq(struct intel_guc_slpc *slpc, u32 freq)
{
- struct drm_i915_private *i915 = slpc_to_i915(slpc);
struct intel_guc *guc = slpc_to_guc(slpc);
+ struct drm_i915_private *i915 = slpc_to_i915(slpc);
intel_wakeref_t wakeref;
int ret = 0;
@@ -216,9 +234,8 @@ static int slpc_force_min_freq(struct intel_guc_slpc *slpc, u32 freq)
SLPC_PARAM_GLOBAL_MIN_GT_UNSLICE_FREQ_MHZ,
freq);
if (ret)
- drm_notice(&i915->drm,
- "Failed to send set_param for min freq(%d): (%d)\n",
- freq, ret);
+ guc_notice(guc, "Failed to send set_param for min freq(%d): %pe\n",
+ freq, ERR_PTR(ret));
}
return ret;
@@ -247,7 +264,6 @@ static void slpc_boost_work(struct work_struct *work)
int intel_guc_slpc_init(struct intel_guc_slpc *slpc)
{
struct intel_guc *guc = slpc_to_guc(slpc);
- struct drm_i915_private *i915 = slpc_to_i915(slpc);
u32 size = PAGE_ALIGN(sizeof(struct slpc_shared_data));
int err;
@@ -255,14 +271,13 @@ int intel_guc_slpc_init(struct intel_guc_slpc *slpc)
err = intel_guc_allocate_and_map_vma(guc, size, &slpc->vma, (void **)&slpc->vaddr);
if (unlikely(err)) {
- i915_probe_error(i915,
- "Failed to allocate SLPC struct (err=%pe)\n",
- ERR_PTR(err));
+ guc_probe_error(guc, "Failed to allocate SLPC struct: %pe\n", ERR_PTR(err));
return err;
}
slpc->max_freq_softlimit = 0;
slpc->min_freq_softlimit = 0;
+ slpc->min_is_rpmax = false;
slpc->boost_freq = 0;
atomic_set(&slpc->num_waiters, 0);
@@ -317,7 +332,6 @@ static int guc_action_slpc_reset(struct intel_guc *guc, u32 offset)
static int slpc_reset(struct intel_guc_slpc *slpc)
{
- struct drm_i915_private *i915 = slpc_to_i915(slpc);
struct intel_guc *guc = slpc_to_guc(slpc);
u32 offset = intel_guc_ggtt_offset(guc, slpc->vma);
int ret;
@@ -325,15 +339,14 @@ static int slpc_reset(struct intel_guc_slpc *slpc)
ret = guc_action_slpc_reset(guc, offset);
if (unlikely(ret < 0)) {
- i915_probe_error(i915, "SLPC reset action failed (%pe)\n",
- ERR_PTR(ret));
+ guc_probe_error(guc, "SLPC reset action failed: %pe\n", ERR_PTR(ret));
return ret;
}
if (!ret) {
if (wait_for(slpc_is_running(slpc), SLPC_RESET_TIMEOUT_MS)) {
- i915_probe_error(i915, "SLPC not enabled! State = %s\n",
- slpc_get_state_string(slpc));
+ guc_probe_error(guc, "SLPC not enabled! State = %s\n",
+ slpc_get_state_string(slpc));
return -EIO;
}
}
@@ -474,8 +487,8 @@ int intel_guc_slpc_set_min_freq(struct intel_guc_slpc *slpc, u32 val)
SLPC_PARAM_IGNORE_EFFICIENT_FREQUENCY,
val < slpc->rp1_freq);
if (ret) {
- i915_probe_error(i915, "Failed to toggle efficient freq (%pe)\n",
- ERR_PTR(ret));
+ guc_probe_error(slpc_to_guc(slpc), "Failed to toggle efficient freq: %pe\n",
+ ERR_PTR(ret));
goto out;
}
@@ -588,6 +601,36 @@ static int slpc_set_softlimits(struct intel_guc_slpc *slpc)
return 0;
}
+static bool is_slpc_min_freq_rpmax(struct intel_guc_slpc *slpc)
+{
+ int slpc_min_freq;
+ int ret;
+
+ ret = intel_guc_slpc_get_min_freq(slpc, &slpc_min_freq);
+ if (ret) {
+ guc_err(slpc_to_guc(slpc), "Failed to get min freq: %pe\n", ERR_PTR(ret));
+ return false;
+ }
+
+ if (slpc_min_freq == SLPC_MAX_FREQ_MHZ)
+ return true;
+ else
+ return false;
+}
+
+static void update_server_min_softlimit(struct intel_guc_slpc *slpc)
+{
+ /* For server parts, SLPC min will be at RPMax.
+ * Use min softlimit to clamp it to RP0 instead.
+ */
+ if (!slpc->min_freq_softlimit &&
+ is_slpc_min_freq_rpmax(slpc)) {
+ slpc->min_is_rpmax = true;
+ slpc->min_freq_softlimit = slpc->rp0_freq;
+ (slpc_to_gt(slpc))->defaults.min_freq = slpc->min_freq_softlimit;
+ }
+}
+
static int slpc_use_fused_rp0(struct intel_guc_slpc *slpc)
{
/* Force SLPC to used platform rp0 */
@@ -610,6 +653,49 @@ static void slpc_get_rp_values(struct intel_guc_slpc *slpc)
slpc->boost_freq = slpc->rp0_freq;
}
+/**
+ * intel_guc_slpc_override_gucrc_mode() - override GUCRC mode
+ * @slpc: pointer to intel_guc_slpc.
+ * @mode: new value of the mode.
+ *
+ * This function will override the GUCRC mode.
+ *
+ * Return: 0 on success, non-zero error code on failure.
+ */
+int intel_guc_slpc_override_gucrc_mode(struct intel_guc_slpc *slpc, u32 mode)
+{
+ int ret;
+ struct drm_i915_private *i915 = slpc_to_i915(slpc);
+ intel_wakeref_t wakeref;
+
+ if (mode >= SLPC_GUCRC_MODE_MAX)
+ return -EINVAL;
+
+ with_intel_runtime_pm(&i915->runtime_pm, wakeref) {
+ ret = slpc_set_param(slpc, SLPC_PARAM_PWRGATE_RC_MODE, mode);
+ if (ret)
+ guc_err(slpc_to_guc(slpc), "Override RC mode %d failed: %pe\n",
+ mode, ERR_PTR(ret));
+ }
+
+ return ret;
+}
+
+int intel_guc_slpc_unset_gucrc_mode(struct intel_guc_slpc *slpc)
+{
+ struct drm_i915_private *i915 = slpc_to_i915(slpc);
+ intel_wakeref_t wakeref;
+ int ret = 0;
+
+ with_intel_runtime_pm(&i915->runtime_pm, wakeref) {
+ ret = slpc_unset_param(slpc, SLPC_PARAM_PWRGATE_RC_MODE);
+ if (ret)
+ guc_err(slpc_to_guc(slpc), "Unsetting RC mode failed: %pe\n", ERR_PTR(ret));
+ }
+
+ return ret;
+}
+
/*
* intel_guc_slpc_enable() - Start SLPC
* @slpc: pointer to intel_guc_slpc.
@@ -625,7 +711,7 @@ static void slpc_get_rp_values(struct intel_guc_slpc *slpc)
*/
int intel_guc_slpc_enable(struct intel_guc_slpc *slpc)
{
- struct drm_i915_private *i915 = slpc_to_i915(slpc);
+ struct intel_guc *guc = slpc_to_guc(slpc);
int ret;
GEM_BUG_ON(!slpc->vma);
@@ -634,8 +720,7 @@ int intel_guc_slpc_enable(struct intel_guc_slpc *slpc)
ret = slpc_reset(slpc);
if (unlikely(ret < 0)) {
- i915_probe_error(i915, "SLPC Reset event returned (%pe)\n",
- ERR_PTR(ret));
+ guc_probe_error(guc, "SLPC Reset event returned: %pe\n", ERR_PTR(ret));
return ret;
}
@@ -643,23 +728,24 @@ int intel_guc_slpc_enable(struct intel_guc_slpc *slpc)
if (unlikely(ret < 0))
return ret;
- intel_guc_pm_intrmsk_enable(to_gt(i915));
+ intel_guc_pm_intrmsk_enable(slpc_to_gt(slpc));
slpc_get_rp_values(slpc);
+ /* Handle the case where min=max=RPmax */
+ update_server_min_softlimit(slpc);
+
/* Set SLPC max limit to RP0 */
ret = slpc_use_fused_rp0(slpc);
if (unlikely(ret)) {
- i915_probe_error(i915, "Failed to set SLPC max to RP0 (%pe)\n",
- ERR_PTR(ret));
+ guc_probe_error(guc, "Failed to set SLPC max to RP0: %pe\n", ERR_PTR(ret));
return ret;
}
/* Revert SLPC min/max to softlimits if necessary */
ret = slpc_set_softlimits(slpc);
if (unlikely(ret)) {
- i915_probe_error(i915, "Failed to set SLPC softlimits (%pe)\n",
- ERR_PTR(ret));
+ guc_probe_error(guc, "Failed to set SLPC softlimits: %pe\n", ERR_PTR(ret));
return ret;
}
diff --git a/drivers/gpu/drm/i915/gt/uc/intel_guc_slpc.h b/drivers/gpu/drm/i915/gt/uc/intel_guc_slpc.h
index 82a98f78f96c..17ed515f6a85 100644
--- a/drivers/gpu/drm/i915/gt/uc/intel_guc_slpc.h
+++ b/drivers/gpu/drm/i915/gt/uc/intel_guc_slpc.h
@@ -9,6 +9,8 @@
#include "intel_guc_submission.h"
#include "intel_guc_slpc_types.h"
+#define SLPC_MAX_FREQ_MHZ 4250
+
struct intel_gt;
struct drm_printer;
@@ -42,5 +44,7 @@ int intel_guc_slpc_set_media_ratio_mode(struct intel_guc_slpc *slpc, u32 val);
void intel_guc_pm_intrmsk_enable(struct intel_gt *gt);
void intel_guc_slpc_boost(struct intel_guc_slpc *slpc);
void intel_guc_slpc_dec_waiters(struct intel_guc_slpc *slpc);
+int intel_guc_slpc_unset_gucrc_mode(struct intel_guc_slpc *slpc);
+int intel_guc_slpc_override_gucrc_mode(struct intel_guc_slpc *slpc, u32 mode);
#endif
diff --git a/drivers/gpu/drm/i915/gt/uc/intel_guc_slpc_types.h b/drivers/gpu/drm/i915/gt/uc/intel_guc_slpc_types.h
index 73d208123528..a6ef53b04e04 100644
--- a/drivers/gpu/drm/i915/gt/uc/intel_guc_slpc_types.h
+++ b/drivers/gpu/drm/i915/gt/uc/intel_guc_slpc_types.h
@@ -19,6 +19,9 @@ struct intel_guc_slpc {
bool supported;
bool selected;
+ /* Indicates this is a server part */
+ bool min_is_rpmax;
+
/* platform frequency limits */
u32 min_freq;
u32 rp0_freq;
diff --git a/drivers/gpu/drm/i915/gt/uc/intel_guc_submission.c b/drivers/gpu/drm/i915/gt/uc/intel_guc_submission.c
index 1db59eeb34db..88e881b100cf 100644
--- a/drivers/gpu/drm/i915/gt/uc/intel_guc_submission.c
+++ b/drivers/gpu/drm/i915/gt/uc/intel_guc_submission.c
@@ -6,6 +6,7 @@
#include <linux/circ_buf.h>
#include "gem/i915_gem_context.h"
+#include "gem/i915_gem_lmem.h"
#include "gt/gen8_engine_cs.h"
#include "gt/intel_breadcrumbs.h"
#include "gt/intel_context.h"
@@ -26,9 +27,11 @@
#include "intel_guc_ads.h"
#include "intel_guc_capture.h"
+#include "intel_guc_print.h"
#include "intel_guc_submission.h"
#include "i915_drv.h"
+#include "i915_reg.h"
#include "i915_trace.h"
/**
@@ -65,7 +68,13 @@
* corresponding G2H returns indicating the scheduling disable operation has
* completed it is safe to unpin the context. While a disable is in flight it
* isn't safe to resubmit the context so a fence is used to stall all future
- * requests of that context until the G2H is returned.
+ * requests of that context until the G2H is returned. Because this interaction
+ * with the GuC takes a non-zero amount of time we delay the disabling of
+ * scheduling after the pin count goes to zero by a configurable period of time
+ * (see SCHED_DISABLE_DELAY_MS). The thought is this gives the user a window of
+ * time to resubmit something on the context before doing this costly operation.
+ * This delay is only done if the context isn't closed and the guc_id usage is
+ * less than a threshold (see NUM_SCHED_DISABLE_GUC_IDS_THRESHOLD).
*
* Context deregistration:
* Before a context can be destroyed or if we steal its guc_id we must
@@ -163,7 +172,8 @@ guc_create_parallel(struct intel_engine_cs **engines,
#define SCHED_STATE_PENDING_ENABLE BIT(5)
#define SCHED_STATE_REGISTERED BIT(6)
#define SCHED_STATE_POLICY_REQUIRED BIT(7)
-#define SCHED_STATE_BLOCKED_SHIFT 8
+#define SCHED_STATE_CLOSED BIT(8)
+#define SCHED_STATE_BLOCKED_SHIFT 9
#define SCHED_STATE_BLOCKED BIT(SCHED_STATE_BLOCKED_SHIFT)
#define SCHED_STATE_BLOCKED_MASK (0xfff << SCHED_STATE_BLOCKED_SHIFT)
@@ -173,12 +183,20 @@ static inline void init_sched_state(struct intel_context *ce)
ce->guc_state.sched_state &= SCHED_STATE_BLOCKED_MASK;
}
+/*
+ * Kernel contexts can have SCHED_STATE_REGISTERED after suspend.
+ * A context close can race with the submission path, so SCHED_STATE_CLOSED
+ * can be set immediately before we try to register.
+ */
+#define SCHED_STATE_VALID_INIT \
+ (SCHED_STATE_BLOCKED_MASK | \
+ SCHED_STATE_CLOSED | \
+ SCHED_STATE_REGISTERED)
+
__maybe_unused
static bool sched_state_is_init(struct intel_context *ce)
{
- /* Kernel contexts can have SCHED_STATE_REGISTERED after suspend. */
- return !(ce->guc_state.sched_state &
- ~(SCHED_STATE_BLOCKED_MASK | SCHED_STATE_REGISTERED));
+ return !(ce->guc_state.sched_state & ~SCHED_STATE_VALID_INIT);
}
static inline bool
@@ -319,6 +337,17 @@ static inline void clr_context_policy_required(struct intel_context *ce)
ce->guc_state.sched_state &= ~SCHED_STATE_POLICY_REQUIRED;
}
+static inline bool context_close_done(struct intel_context *ce)
+{
+ return ce->guc_state.sched_state & SCHED_STATE_CLOSED;
+}
+
+static inline void set_context_close_done(struct intel_context *ce)
+{
+ lockdep_assert_held(&ce->guc_state.lock);
+ ce->guc_state.sched_state |= SCHED_STATE_CLOSED;
+}
+
static inline u32 context_blocked(struct intel_context *ce)
{
return (ce->guc_state.sched_state & SCHED_STATE_BLOCKED_MASK) >>
@@ -343,25 +372,6 @@ static inline void decr_context_blocked(struct intel_context *ce)
ce->guc_state.sched_state -= SCHED_STATE_BLOCKED;
}
-static inline bool context_has_committed_requests(struct intel_context *ce)
-{
- return !!ce->guc_state.number_committed_requests;
-}
-
-static inline void incr_context_committed_requests(struct intel_context *ce)
-{
- lockdep_assert_held(&ce->guc_state.lock);
- ++ce->guc_state.number_committed_requests;
- GEM_BUG_ON(ce->guc_state.number_committed_requests < 0);
-}
-
-static inline void decr_context_committed_requests(struct intel_context *ce)
-{
- lockdep_assert_held(&ce->guc_state.lock);
- --ce->guc_state.number_committed_requests;
- GEM_BUG_ON(ce->guc_state.number_committed_requests < 0);
-}
-
static struct intel_context *
request_to_scheduling_context(struct i915_request *rq)
{
@@ -1067,6 +1077,12 @@ static void scrub_guc_desc_for_outstanding_g2h(struct intel_guc *guc)
xa_unlock(&guc->context_lookup);
+ if (test_bit(CONTEXT_GUC_INIT, &ce->flags) &&
+ (cancel_delayed_work(&ce->guc_state.sched_disable_delay_work))) {
+ /* successful cancel so jump straight to close it */
+ intel_context_sched_disable_unpin(ce);
+ }
+
spin_lock(&ce->guc_state.lock);
/*
@@ -1336,6 +1352,16 @@ static ktime_t guc_engine_busyness(struct intel_engine_cs *engine, ktime_t *now)
return ns_to_ktime(total);
}
+static void guc_enable_busyness_worker(struct intel_guc *guc)
+{
+ mod_delayed_work(system_highpri_wq, &guc->timestamp.work, guc->timestamp.ping_delay);
+}
+
+static void guc_cancel_busyness_worker(struct intel_guc *guc)
+{
+ cancel_delayed_work_sync(&guc->timestamp.work);
+}
+
static void __reset_guc_busyness_stats(struct intel_guc *guc)
{
struct intel_gt *gt = guc_to_gt(guc);
@@ -1344,7 +1370,7 @@ static void __reset_guc_busyness_stats(struct intel_guc *guc)
unsigned long flags;
ktime_t unused;
- cancel_delayed_work_sync(&guc->timestamp.work);
+ guc_cancel_busyness_worker(guc);
spin_lock_irqsave(&guc->timestamp.lock, flags);
@@ -1387,7 +1413,9 @@ static void guc_timestamp_ping(struct work_struct *wrk)
/*
* Synchronize with gt reset to make sure the worker does not
- * corrupt the engine/guc stats.
+ * corrupt the engine/guc stats. NB: can't actually block waiting
+ * for a reset to complete as the reset requires flushing out
+ * this worker thread if started. So waiting would deadlock.
*/
ret = intel_gt_reset_trylock(gt, &srcu);
if (ret)
@@ -1398,8 +1426,7 @@ static void guc_timestamp_ping(struct work_struct *wrk)
intel_gt_reset_unlock(gt, srcu);
- mod_delayed_work(system_highpri_wq, &guc->timestamp.work,
- guc->timestamp.ping_delay);
+ guc_enable_busyness_worker(guc);
}
static int guc_action_enable_usage_stats(struct intel_guc *guc)
@@ -1414,21 +1441,26 @@ static int guc_action_enable_usage_stats(struct intel_guc *guc)
return intel_guc_send(guc, action, ARRAY_SIZE(action));
}
-static void guc_init_engine_stats(struct intel_guc *guc)
+static int guc_init_engine_stats(struct intel_guc *guc)
{
struct intel_gt *gt = guc_to_gt(guc);
intel_wakeref_t wakeref;
+ int ret;
- mod_delayed_work(system_highpri_wq, &guc->timestamp.work,
- guc->timestamp.ping_delay);
+ with_intel_runtime_pm(&gt->i915->runtime_pm, wakeref)
+ ret = guc_action_enable_usage_stats(guc);
- with_intel_runtime_pm(&gt->i915->runtime_pm, wakeref) {
- int ret = guc_action_enable_usage_stats(guc);
+ if (ret)
+ guc_err(guc, "Failed to enable usage stats: %pe\n", ERR_PTR(ret));
+ else
+ guc_enable_busyness_worker(guc);
- if (ret)
- drm_err(&gt->i915->drm,
- "Failed to enable usage stats: %d!\n", ret);
- }
+ return ret;
+}
+
+static void guc_fini_engine_stats(struct intel_guc *guc)
+{
+ guc_cancel_busyness_worker(guc);
}
void intel_guc_busyness_park(struct intel_gt *gt)
@@ -1443,7 +1475,7 @@ void intel_guc_busyness_park(struct intel_gt *gt)
* and causes an unclaimed register access warning. Cancel the worker
* synchronously here.
*/
- cancel_delayed_work_sync(&guc->timestamp.work);
+ guc_cancel_busyness_worker(guc);
/*
* Before parking, we should sample engine busyness stats if we need to.
@@ -1470,8 +1502,7 @@ void intel_guc_busyness_unpark(struct intel_gt *gt)
spin_lock_irqsave(&guc->timestamp.lock, flags);
guc_update_pm_timestamp(guc, &unused);
spin_unlock_irqrestore(&guc->timestamp.lock, flags);
- mod_delayed_work(system_highpri_wq, &guc->timestamp.work,
- guc->timestamp.ping_delay);
+ guc_enable_busyness_worker(guc);
}
static inline bool
@@ -1604,7 +1635,7 @@ static void guc_engine_reset_prepare(struct intel_engine_cs *engine)
intel_engine_stop_cs(engine);
/*
- * Wa_22011802037:gen11/gen12: In addition to stopping the cs, we need
+ * Wa_22011802037: In addition to stopping the cs, we need
* to wait for any pending mi force wakeups
*/
intel_engine_wait_for_pending_mi_fw(engine);
@@ -1685,7 +1716,7 @@ static void __guc_reset_context(struct intel_context *ce, intel_engine_mask_t st
goto next_context;
guilty = false;
- rq = intel_context_find_active_request(ce);
+ rq = intel_context_get_active_request(ce);
if (!rq) {
head = ce->ring->tail;
goto out_replay;
@@ -1698,6 +1729,7 @@ static void __guc_reset_context(struct intel_context *ce, intel_engine_mask_t st
head = intel_ring_wrap(ce->ring, rq->head);
__i915_request_reset(rq, guilty);
+ i915_request_put(rq);
out_replay:
guc_reset_state(ce, head, guilty);
next_context:
@@ -1873,7 +1905,7 @@ int intel_guc_submission_init(struct intel_guc *guc)
if (guc->submission_initialized)
return 0;
- if (GET_UC_VER(guc) < MAKE_UC_VER(70, 0, 0)) {
+ if (GUC_SUBMIT_VER(guc) < MAKE_GUC_VER(1, 0, 0)) {
ret = guc_lrc_desc_pool_create_v69(guc);
if (ret)
return ret;
@@ -1994,6 +2026,9 @@ static int new_guc_id(struct intel_guc *guc, struct intel_context *ce)
if (unlikely(ret < 0))
return ret;
+ if (!intel_context_is_parent(ce))
+ ++guc->submission_state.guc_ids_in_use;
+
ce->guc_id.id = ret;
return 0;
}
@@ -2003,14 +2038,16 @@ static void __release_guc_id(struct intel_guc *guc, struct intel_context *ce)
GEM_BUG_ON(intel_context_is_child(ce));
if (!context_guc_id_invalid(ce)) {
- if (intel_context_is_parent(ce))
+ if (intel_context_is_parent(ce)) {
bitmap_release_region(guc->submission_state.guc_ids_bitmap,
ce->guc_id.id,
order_base_2(ce->parallel.number_children
+ 1));
- else
+ } else {
+ --guc->submission_state.guc_ids_in_use;
ida_simple_remove(&guc->submission_state.guc_ids,
ce->guc_id.id);
+ }
clr_ctx_id_mapping(guc, ce->guc_id.id);
set_context_guc_id_invalid(ce);
}
@@ -2308,7 +2345,7 @@ static int register_context(struct intel_context *ce, bool loop)
GEM_BUG_ON(intel_context_is_child(ce));
trace_intel_context_register(ce);
- if (GET_UC_VER(guc) >= MAKE_UC_VER(70, 0, 0))
+ if (GUC_SUBMIT_VER(guc) >= MAKE_GUC_VER(1, 0, 0))
ret = register_context_v70(guc, ce, loop);
else
ret = register_context_v69(guc, ce, loop);
@@ -2320,7 +2357,7 @@ static int register_context(struct intel_context *ce, bool loop)
set_context_registered(ce);
spin_unlock_irqrestore(&ce->guc_state.lock, flags);
- if (GET_UC_VER(guc) >= MAKE_UC_VER(70, 0, 0))
+ if (GUC_SUBMIT_VER(guc) >= MAKE_GUC_VER(1, 0, 0))
guc_context_policy_init_v70(ce, loop);
}
@@ -2429,6 +2466,10 @@ static int guc_context_policy_init_v70(struct intel_context *ce, bool loop)
int ret;
/* NB: For both of these, zero means disabled. */
+ GEM_BUG_ON(overflows_type(engine->props.timeslice_duration_ms * 1000,
+ execution_quantum));
+ GEM_BUG_ON(overflows_type(engine->props.preempt_timeout_ms * 1000,
+ preemption_timeout));
execution_quantum = engine->props.timeslice_duration_ms * 1000;
preemption_timeout = engine->props.preempt_timeout_ms * 1000;
@@ -2462,6 +2503,10 @@ static void guc_context_policy_init_v69(struct intel_engine_cs *engine,
desc->policy_flags |= CONTEXT_POLICY_FLAG_PREEMPT_TO_IDLE_V69;
/* NB: For both of these, zero means disabled. */
+ GEM_BUG_ON(overflows_type(engine->props.timeslice_duration_ms * 1000,
+ desc->execution_quantum));
+ GEM_BUG_ON(overflows_type(engine->props.preempt_timeout_ms * 1000,
+ desc->preemption_timeout));
desc->execution_quantum = engine->props.timeslice_duration_ms * 1000;
desc->preemption_timeout = engine->props.preempt_timeout_ms * 1000;
}
@@ -2504,6 +2549,7 @@ static void prepare_context_registration_info_v69(struct intel_context *ce)
i915_gem_object_is_lmem(ce->ring->vma->obj));
desc = __get_lrc_desc_v69(guc, ctx_id);
+ GEM_BUG_ON(!desc);
desc->engine_class = engine_class_to_guc_class(engine->class);
desc->engine_submit_mask = engine->logical_mask;
desc->hw_context_desc = ce->lrc.lrca;
@@ -2926,7 +2972,7 @@ static void __guc_context_set_preemption_timeout(struct intel_guc *guc,
u16 guc_id,
u32 preemption_timeout)
{
- if (GET_UC_VER(guc) >= MAKE_UC_VER(70, 0, 0)) {
+ if (GUC_SUBMIT_VER(guc) >= MAKE_GUC_VER(1, 0, 0)) {
struct context_policy policy;
__guc_context_policy_start_klv(&policy, guc_id);
@@ -2998,41 +3044,104 @@ guc_context_revoke(struct intel_context *ce, struct i915_request *rq,
}
}
-static void guc_context_sched_disable(struct intel_context *ce)
+static void do_sched_disable(struct intel_guc *guc, struct intel_context *ce,
+ unsigned long flags)
+ __releases(ce->guc_state.lock)
{
- struct intel_guc *guc = ce_to_guc(ce);
- unsigned long flags;
struct intel_runtime_pm *runtime_pm = &ce->engine->gt->i915->runtime_pm;
intel_wakeref_t wakeref;
u16 guc_id;
+ lockdep_assert_held(&ce->guc_state.lock);
+ guc_id = prep_context_pending_disable(ce);
+
+ spin_unlock_irqrestore(&ce->guc_state.lock, flags);
+
+ with_intel_runtime_pm(runtime_pm, wakeref)
+ __guc_context_sched_disable(guc, ce, guc_id);
+}
+
+static bool bypass_sched_disable(struct intel_guc *guc,
+ struct intel_context *ce)
+{
+ lockdep_assert_held(&ce->guc_state.lock);
GEM_BUG_ON(intel_context_is_child(ce));
+ if (submission_disabled(guc) || context_guc_id_invalid(ce) ||
+ !ctx_id_mapped(guc, ce->guc_id.id)) {
+ clr_context_enabled(ce);
+ return true;
+ }
+
+ return !context_enabled(ce);
+}
+
+static void __delay_sched_disable(struct work_struct *wrk)
+{
+ struct intel_context *ce =
+ container_of(wrk, typeof(*ce), guc_state.sched_disable_delay_work.work);
+ struct intel_guc *guc = ce_to_guc(ce);
+ unsigned long flags;
+
spin_lock_irqsave(&ce->guc_state.lock, flags);
+ if (bypass_sched_disable(guc, ce)) {
+ spin_unlock_irqrestore(&ce->guc_state.lock, flags);
+ intel_context_sched_disable_unpin(ce);
+ } else {
+ do_sched_disable(guc, ce, flags);
+ }
+}
+
+static bool guc_id_pressure(struct intel_guc *guc, struct intel_context *ce)
+{
/*
- * We have to check if the context has been disabled by another thread,
- * check if submssion has been disabled to seal a race with reset and
- * finally check if any more requests have been committed to the
- * context ensursing that a request doesn't slip through the
- * 'context_pending_disable' fence.
+ * parent contexts are perma-pinned, if we are unpinning do schedule
+ * disable immediately.
*/
- if (unlikely(!context_enabled(ce) || submission_disabled(guc) ||
- context_has_committed_requests(ce))) {
- clr_context_enabled(ce);
+ if (intel_context_is_parent(ce))
+ return true;
+
+ /*
+ * If we are beyond the threshold for avail guc_ids, do schedule disable immediately.
+ */
+ return guc->submission_state.guc_ids_in_use >
+ guc->submission_state.sched_disable_gucid_threshold;
+}
+
+static void guc_context_sched_disable(struct intel_context *ce)
+{
+ struct intel_guc *guc = ce_to_guc(ce);
+ u64 delay = guc->submission_state.sched_disable_delay_ms;
+ unsigned long flags;
+
+ spin_lock_irqsave(&ce->guc_state.lock, flags);
+
+ if (bypass_sched_disable(guc, ce)) {
+ spin_unlock_irqrestore(&ce->guc_state.lock, flags);
+ intel_context_sched_disable_unpin(ce);
+ } else if (!intel_context_is_closed(ce) && !guc_id_pressure(guc, ce) &&
+ delay) {
spin_unlock_irqrestore(&ce->guc_state.lock, flags);
- goto unpin;
+ mod_delayed_work(system_unbound_wq,
+ &ce->guc_state.sched_disable_delay_work,
+ msecs_to_jiffies(delay));
+ } else {
+ do_sched_disable(guc, ce, flags);
}
- guc_id = prep_context_pending_disable(ce);
+}
- spin_unlock_irqrestore(&ce->guc_state.lock, flags);
+static void guc_context_close(struct intel_context *ce)
+{
+ unsigned long flags;
- with_intel_runtime_pm(runtime_pm, wakeref)
- __guc_context_sched_disable(guc, ce, guc_id);
+ if (test_bit(CONTEXT_GUC_INIT, &ce->flags) &&
+ cancel_delayed_work(&ce->guc_state.sched_disable_delay_work))
+ __delay_sched_disable(&ce->guc_state.sched_disable_delay_work.work);
- return;
-unpin:
- intel_context_sched_disable_unpin(ce);
+ spin_lock_irqsave(&ce->guc_state.lock, flags);
+ set_context_close_done(ce);
+ spin_unlock_irqrestore(&ce->guc_state.lock, flags);
}
static inline void guc_lrc_desc_unpin(struct intel_context *ce)
@@ -3071,7 +3180,6 @@ static void __guc_context_destroy(struct intel_context *ce)
ce->guc_state.prio_count[GUC_CLIENT_PRIORITY_HIGH] ||
ce->guc_state.prio_count[GUC_CLIENT_PRIORITY_KMD_NORMAL] ||
ce->guc_state.prio_count[GUC_CLIENT_PRIORITY_NORMAL]);
- GEM_BUG_ON(ce->guc_state.number_committed_requests);
lrc_fini(ce);
intel_context_fini(ce);
@@ -3191,7 +3299,7 @@ static int guc_context_alloc(struct intel_context *ce)
static void __guc_context_set_prio(struct intel_guc *guc,
struct intel_context *ce)
{
- if (GET_UC_VER(guc) >= MAKE_UC_VER(70, 0, 0)) {
+ if (GUC_SUBMIT_VER(guc) >= MAKE_GUC_VER(1, 0, 0)) {
struct context_policy policy;
__guc_context_policy_start_klv(&policy, ce->guc_id.id);
@@ -3340,8 +3448,6 @@ static void remove_from_context(struct i915_request *rq)
guc_prio_fini(rq, ce);
- decr_context_committed_requests(ce);
-
spin_unlock_irq(&ce->guc_state.lock);
atomic_dec(&ce->guc_id.ref);
@@ -3351,6 +3457,8 @@ static void remove_from_context(struct i915_request *rq)
static const struct intel_context_ops guc_context_ops = {
.alloc = guc_context_alloc,
+ .close = guc_context_close,
+
.pre_pin = guc_context_pre_pin,
.pin = guc_context_pin,
.unpin = guc_context_unpin,
@@ -3433,6 +3541,10 @@ static void guc_context_init(struct intel_context *ce)
rcu_read_unlock();
ce->guc_state.prio = map_i915_prio_to_guc_prio(prio);
+
+ INIT_DELAYED_WORK(&ce->guc_state.sched_disable_delay_work,
+ __delay_sched_disable);
+
set_bit(CONTEXT_GUC_INIT, &ce->flags);
}
@@ -3471,6 +3583,25 @@ static int guc_request_alloc(struct i915_request *rq)
guc_context_init(ce);
/*
+ * If the context gets closed while the execbuf is ongoing, the context
+ * close code will race with the below code to cancel the delayed work.
+ * If the context close wins the race and cancels the work, it will
+ * immediately call the sched disable (see guc_context_close), so there
+ * is a chance we can get past this check while the sched_disable code
+ * is being executed. To make sure that code completes before we check
+ * the status further down, we wait for the close process to complete.
+ * Else, this code path could send a request down thinking that the
+ * context is still in a schedule-enable mode while the GuC ends up
+ * dropping the request completely because the disable did go from the
+ * context_close path right to GuC just prior. In the event the CT is
+ * full, we could potentially need to wait up to 1.5 seconds.
+ */
+ if (cancel_delayed_work_sync(&ce->guc_state.sched_disable_delay_work))
+ intel_context_sched_disable_unpin(ce);
+ else if (intel_context_is_closed(ce))
+ if (wait_for(context_close_done(ce), 1500))
+ guc_warn(guc, "timed out waiting on context sched close before realloc\n");
+ /*
* Call pin_guc_id here rather than in the pinning step as with
* dma_resv, contexts can be repeatedly pinned / unpinned trashing the
* guc_id and creating horrible race conditions. This is especially bad
@@ -3524,7 +3655,6 @@ out:
list_add_tail(&rq->guc_fence_link, &ce->guc_state.fences);
}
- incr_context_committed_requests(ce);
spin_unlock_irqrestore(&ce->guc_state.lock, flags);
return 0;
@@ -3600,6 +3730,8 @@ static int guc_virtual_context_alloc(struct intel_context *ce)
static const struct intel_context_ops virtual_guc_context_ops = {
.alloc = guc_virtual_context_alloc,
+ .close = guc_context_close,
+
.pre_pin = guc_virtual_context_pre_pin,
.pin = guc_virtual_context_pin,
.unpin = guc_virtual_context_unpin,
@@ -3689,6 +3821,8 @@ static void guc_child_context_destroy(struct kref *kref)
static const struct intel_context_ops virtual_parent_context_ops = {
.alloc = guc_virtual_context_alloc,
+ .close = guc_context_close,
+
.pre_pin = guc_context_pre_pin,
.pin = guc_parent_context_pin,
.unpin = guc_parent_context_unpin,
@@ -3982,9 +4116,11 @@ static void guc_set_default_submission(struct intel_engine_cs *engine)
engine->submit_request = guc_submit_request;
}
-static inline void guc_kernel_context_pin(struct intel_guc *guc,
- struct intel_context *ce)
+static inline int guc_kernel_context_pin(struct intel_guc *guc,
+ struct intel_context *ce)
{
+ int ret;
+
/*
* Note: we purposefully do not check the returns below because
* the registration can only fail if a reset is just starting.
@@ -3992,13 +4128,24 @@ static inline void guc_kernel_context_pin(struct intel_guc *guc,
* isn't happening and even it did this code would be run again.
*/
- if (context_guc_id_invalid(ce))
- pin_guc_id(guc, ce);
+ if (context_guc_id_invalid(ce)) {
+ ret = pin_guc_id(guc, ce);
- try_context_registration(ce, true);
+ if (ret < 0)
+ return ret;
+ }
+
+ if (!test_bit(CONTEXT_GUC_INIT, &ce->flags))
+ guc_context_init(ce);
+
+ ret = try_context_registration(ce, true);
+ if (ret)
+ unpin_guc_id(guc, ce);
+
+ return ret;
}
-static inline void guc_init_lrc_mapping(struct intel_guc *guc)
+static inline int guc_init_submission(struct intel_guc *guc)
{
struct intel_gt *gt = guc_to_gt(guc);
struct intel_engine_cs *engine;
@@ -4025,9 +4172,17 @@ static inline void guc_init_lrc_mapping(struct intel_guc *guc)
struct intel_context *ce;
list_for_each_entry(ce, &engine->pinned_contexts_list,
- pinned_contexts_link)
- guc_kernel_context_pin(guc, ce);
+ pinned_contexts_link) {
+ int ret = guc_kernel_context_pin(guc, ce);
+
+ if (ret) {
+ /* No point in trying to clean up as i915 will wedge on failure */
+ return ret;
+ }
+ }
}
+
+ return 0;
}
static void guc_release(struct intel_engine_cs *engine)
@@ -4080,8 +4235,10 @@ static void guc_default_vfuncs(struct intel_engine_cs *engine)
engine->flags |= I915_ENGINE_HAS_TIMESLICES;
/* Wa_14014475959:dg2 */
- if (IS_DG2(engine->i915) && engine->class == COMPUTE_CLASS)
- engine->flags |= I915_ENGINE_USES_WA_HOLD_CCS_SWITCHOUT;
+ if (engine->class == COMPUTE_CLASS)
+ if (IS_MTL_GRAPHICS_STEP(engine->i915, M, STEP_A0, STEP_B0) ||
+ IS_DG2(engine->i915))
+ engine->flags |= I915_ENGINE_USES_WA_HOLD_CCS_SWITCHOUT;
/*
* TODO: GuC supports timeslicing and semaphores as well, but they're
@@ -4093,7 +4250,7 @@ static void guc_default_vfuncs(struct intel_engine_cs *engine)
engine->emit_bb_start = gen8_emit_bb_start;
if (GRAPHICS_VER_FULL(engine->i915) >= IP_VER(12, 50))
- engine->emit_bb_start = gen125_emit_bb_start;
+ engine->emit_bb_start = xehp_emit_bb_start;
}
static void rcs_submission_override(struct intel_engine_cs *engine)
@@ -4177,29 +4334,148 @@ int intel_guc_submission_setup(struct intel_engine_cs *engine)
return 0;
}
-void intel_guc_submission_enable(struct intel_guc *guc)
+struct scheduling_policy {
+ /* internal data */
+ u32 max_words, num_words;
+ u32 count;
+ /* API data */
+ struct guc_update_scheduling_policy h2g;
+};
+
+static u32 __guc_scheduling_policy_action_size(struct scheduling_policy *policy)
+{
+ u32 *start = (void *)&policy->h2g;
+ u32 *end = policy->h2g.data + policy->num_words;
+ size_t delta = end - start;
+
+ return delta;
+}
+
+static struct scheduling_policy *__guc_scheduling_policy_start_klv(struct scheduling_policy *policy)
+{
+ policy->h2g.header.action = INTEL_GUC_ACTION_UPDATE_SCHEDULING_POLICIES_KLV;
+ policy->max_words = ARRAY_SIZE(policy->h2g.data);
+ policy->num_words = 0;
+ policy->count = 0;
+
+ return policy;
+}
+
+static void __guc_scheduling_policy_add_klv(struct scheduling_policy *policy,
+ u32 action, u32 *data, u32 len)
+{
+ u32 *klv_ptr = policy->h2g.data + policy->num_words;
+
+ GEM_BUG_ON((policy->num_words + 1 + len) > policy->max_words);
+ *(klv_ptr++) = FIELD_PREP(GUC_KLV_0_KEY, action) |
+ FIELD_PREP(GUC_KLV_0_LEN, len);
+ memcpy(klv_ptr, data, sizeof(u32) * len);
+ policy->num_words += 1 + len;
+ policy->count++;
+}
+
+static int __guc_action_set_scheduling_policies(struct intel_guc *guc,
+ struct scheduling_policy *policy)
+{
+ int ret;
+
+ ret = intel_guc_send(guc, (u32 *)&policy->h2g,
+ __guc_scheduling_policy_action_size(policy));
+ if (ret < 0) {
+ guc_probe_error(guc, "Failed to configure global scheduling policies: %pe!\n",
+ ERR_PTR(ret));
+ return ret;
+ }
+
+ if (ret != policy->count) {
+ guc_warn(guc, "global scheduler policy processed %d of %d KLVs!",
+ ret, policy->count);
+ if (ret > policy->count)
+ return -EPROTO;
+ }
+
+ return 0;
+}
+
+static int guc_init_global_schedule_policy(struct intel_guc *guc)
{
+ struct scheduling_policy policy;
struct intel_gt *gt = guc_to_gt(guc);
+ intel_wakeref_t wakeref;
+ int ret;
+
+ if (GUC_SUBMIT_VER(guc) < MAKE_GUC_VER(1, 1, 0))
+ return 0;
- /* Enable and route to GuC */
- if (GRAPHICS_VER(gt->i915) >= 12)
- intel_uncore_write(gt->uncore, GEN12_GUC_SEM_INTR_ENABLES,
- GUC_SEM_INTR_ROUTE_TO_GUC |
- GUC_SEM_INTR_ENABLE_ALL);
+ __guc_scheduling_policy_start_klv(&policy);
- guc_init_lrc_mapping(guc);
- guc_init_engine_stats(guc);
+ with_intel_runtime_pm(&gt->i915->runtime_pm, wakeref) {
+ u32 yield[] = {
+ GLOBAL_SCHEDULE_POLICY_RC_YIELD_DURATION,
+ GLOBAL_SCHEDULE_POLICY_RC_YIELD_RATIO,
+ };
+
+ __guc_scheduling_policy_add_klv(&policy,
+ GUC_SCHEDULING_POLICIES_KLV_ID_RENDER_COMPUTE_YIELD,
+ yield, ARRAY_SIZE(yield));
+
+ ret = __guc_action_set_scheduling_policies(guc, &policy);
+ }
+
+ return ret;
}
-void intel_guc_submission_disable(struct intel_guc *guc)
+static void guc_route_semaphores(struct intel_guc *guc, bool to_guc)
{
struct intel_gt *gt = guc_to_gt(guc);
+ u32 val;
+
+ if (GRAPHICS_VER(gt->i915) < 12)
+ return;
+
+ if (to_guc)
+ val = GUC_SEM_INTR_ROUTE_TO_GUC | GUC_SEM_INTR_ENABLE_ALL;
+ else
+ val = 0;
+
+ intel_uncore_write(gt->uncore, GEN12_GUC_SEM_INTR_ENABLES, val);
+}
+
+int intel_guc_submission_enable(struct intel_guc *guc)
+{
+ int ret;
+
+ /* Semaphore interrupt enable and route to GuC */
+ guc_route_semaphores(guc, true);
+
+ ret = guc_init_submission(guc);
+ if (ret)
+ goto fail_sem;
+
+ ret = guc_init_engine_stats(guc);
+ if (ret)
+ goto fail_sem;
+
+ ret = guc_init_global_schedule_policy(guc);
+ if (ret)
+ goto fail_stats;
+
+ return 0;
+
+fail_stats:
+ guc_fini_engine_stats(guc);
+fail_sem:
+ guc_route_semaphores(guc, false);
+ return ret;
+}
- /* Note: By the time we're here, GuC may have already been reset */
+/* Note: By the time we're here, GuC may have already been reset */
+void intel_guc_submission_disable(struct intel_guc *guc)
+{
+ guc_cancel_busyness_worker(guc);
- /* Disable and route to host */
- if (GRAPHICS_VER(gt->i915) >= 12)
- intel_uncore_write(gt->uncore, GEN12_GUC_SEM_INTR_ENABLES, 0x0);
+ /* Semaphore interrupt disable and route to host */
+ guc_route_semaphores(guc, false);
}
static bool __guc_submission_supported(struct intel_guc *guc)
@@ -4219,6 +4495,26 @@ static bool __guc_submission_selected(struct intel_guc *guc)
return i915->params.enable_guc & ENABLE_GUC_SUBMISSION;
}
+int intel_guc_sched_disable_gucid_threshold_max(struct intel_guc *guc)
+{
+ return guc->submission_state.num_guc_ids - NUMBER_MULTI_LRC_GUC_ID(guc);
+}
+
+/*
+ * This default value of 33 milisecs (+1 milisec round up) ensures 30fps or higher
+ * workloads are able to enjoy the latency reduction when delaying the schedule-disable
+ * operation. This matches the 30fps game-render + encode (real world) workload this
+ * knob was tested against.
+ */
+#define SCHED_DISABLE_DELAY_MS 34
+
+/*
+ * A threshold of 75% is a reasonable starting point considering that real world apps
+ * generally don't get anywhere near this.
+ */
+#define NUM_SCHED_DISABLE_GUCIDS_DEFAULT_THRESHOLD(__guc) \
+ (((intel_guc_sched_disable_gucid_threshold_max(guc)) * 3) / 4)
+
void intel_guc_submission_init_early(struct intel_guc *guc)
{
xa_init_flags(&guc->context_lookup, XA_FLAGS_LOCK_IRQ);
@@ -4235,7 +4531,10 @@ void intel_guc_submission_init_early(struct intel_guc *guc)
spin_lock_init(&guc->timestamp.lock);
INIT_DELAYED_WORK(&guc->timestamp.work, guc_timestamp_ping);
+ guc->submission_state.sched_disable_delay_ms = SCHED_DISABLE_DELAY_MS;
guc->submission_state.num_guc_ids = GUC_MAX_CONTEXT_ID;
+ guc->submission_state.sched_disable_gucid_threshold =
+ NUM_SCHED_DISABLE_GUCIDS_DEFAULT_THRESHOLD(guc);
guc->submission_supported = __guc_submission_supported(guc);
guc->submission_selected = __guc_submission_selected(guc);
}
@@ -4246,21 +4545,18 @@ g2h_context_lookup(struct intel_guc *guc, u32 ctx_id)
struct intel_context *ce;
if (unlikely(ctx_id >= GUC_MAX_CONTEXT_ID)) {
- drm_err(&guc_to_gt(guc)->i915->drm,
- "Invalid ctx_id %u\n", ctx_id);
+ guc_err(guc, "Invalid ctx_id %u\n", ctx_id);
return NULL;
}
ce = __get_context(guc, ctx_id);
if (unlikely(!ce)) {
- drm_err(&guc_to_gt(guc)->i915->drm,
- "Context is NULL, ctx_id %u\n", ctx_id);
+ guc_err(guc, "Context is NULL, ctx_id %u\n", ctx_id);
return NULL;
}
if (unlikely(intel_context_is_child(ce))) {
- drm_err(&guc_to_gt(guc)->i915->drm,
- "Context is child, ctx_id %u\n", ctx_id);
+ guc_err(guc, "Context is child, ctx_id %u\n", ctx_id);
return NULL;
}
@@ -4275,7 +4571,7 @@ int intel_guc_deregister_done_process_msg(struct intel_guc *guc,
u32 ctx_id;
if (unlikely(len < 1)) {
- drm_err(&guc_to_gt(guc)->i915->drm, "Invalid length %u\n", len);
+ guc_err(guc, "Invalid length %u\n", len);
return -EPROTO;
}
ctx_id = msg[0];
@@ -4327,7 +4623,7 @@ int intel_guc_sched_done_process_msg(struct intel_guc *guc,
u32 ctx_id;
if (unlikely(len < 2)) {
- drm_err(&guc_to_gt(guc)->i915->drm, "Invalid length %u\n", len);
+ guc_err(guc, "Invalid length %u\n", len);
return -EPROTO;
}
ctx_id = msg[0];
@@ -4339,8 +4635,7 @@ int intel_guc_sched_done_process_msg(struct intel_guc *guc,
if (unlikely(context_destroyed(ce) ||
(!context_pending_enable(ce) &&
!context_pending_disable(ce)))) {
- drm_err(&guc_to_gt(guc)->i915->drm,
- "Bad context sched_state 0x%x, ctx_id %u\n",
+ guc_err(guc, "Bad context sched_state 0x%x, ctx_id %u\n",
ce->guc_state.sched_state, ctx_id);
return -EPROTO;
}
@@ -4424,12 +4719,16 @@ static void guc_handle_context_reset(struct intel_guc *guc,
{
trace_intel_context_reset(ce);
+ guc_dbg(guc, "Got context reset notification: 0x%04X on %s, exiting = %s, banned = %s\n",
+ ce->guc_id.id, ce->engine->name,
+ str_yes_no(intel_context_is_exiting(ce)),
+ str_yes_no(intel_context_is_banned(ce)));
+
if (likely(intel_context_is_schedulable(ce))) {
capture_error_state(guc, ce);
guc_context_replay(ce);
} else {
- drm_info(&guc_to_gt(guc)->i915->drm,
- "Ignoring context reset notification of exiting context 0x%04X on %s",
+ guc_info(guc, "Ignoring context reset notification of exiting context 0x%04X on %s",
ce->guc_id.id, ce->engine->name);
}
}
@@ -4442,7 +4741,7 @@ int intel_guc_context_reset_process_msg(struct intel_guc *guc,
int ctx_id;
if (unlikely(len != 1)) {
- drm_err(&guc_to_gt(guc)->i915->drm, "Invalid length %u", len);
+ guc_err(guc, "Invalid length %u", len);
return -EPROTO;
}
@@ -4475,13 +4774,13 @@ int intel_guc_error_capture_process_msg(struct intel_guc *guc,
u32 status;
if (unlikely(len != 1)) {
- drm_dbg(&guc_to_gt(guc)->i915->drm, "Invalid length %u", len);
+ guc_dbg(guc, "Invalid length %u", len);
return -EPROTO;
}
status = msg[0] & INTEL_GUC_STATE_CAPTURE_EVENT_STATUS_MASK;
if (status == INTEL_GUC_STATE_CAPTURE_EVENT_STATUS_NOSPACE)
- drm_warn(&guc_to_gt(guc)->i915->drm, "G2H-Error capture no space");
+ guc_warn(guc, "No space for error capture");
intel_guc_capture_process(guc);
@@ -4513,24 +4812,36 @@ static void reset_fail_worker_func(struct work_struct *w)
guc->submission_state.reset_fail_mask = 0;
spin_unlock_irqrestore(&guc->submission_state.lock, flags);
- if (likely(reset_fail_mask))
+ if (likely(reset_fail_mask)) {
+ struct intel_engine_cs *engine;
+ enum intel_engine_id id;
+
+ /*
+ * GuC is toast at this point - it dead loops after sending the failed
+ * reset notification. So need to manually determine the guilty context.
+ * Note that it should be reliable to do this here because the GuC is
+ * toast and will not be scheduling behind the KMD's back.
+ */
+ for_each_engine_masked(engine, gt, reset_fail_mask, id)
+ intel_guc_find_hung_context(engine);
+
intel_gt_handle_error(gt, reset_fail_mask,
I915_ERROR_CAPTURE,
- "GuC failed to reset engine mask=0x%x\n",
+ "GuC failed to reset engine mask=0x%x",
reset_fail_mask);
+ }
}
int intel_guc_engine_failure_process_msg(struct intel_guc *guc,
const u32 *msg, u32 len)
{
struct intel_engine_cs *engine;
- struct intel_gt *gt = guc_to_gt(guc);
u8 guc_class, instance;
u32 reason;
unsigned long flags;
if (unlikely(len != 3)) {
- drm_err(&gt->i915->drm, "Invalid length %u", len);
+ guc_err(guc, "Invalid length %u", len);
return -EPROTO;
}
@@ -4540,8 +4851,7 @@ int intel_guc_engine_failure_process_msg(struct intel_guc *guc,
engine = intel_guc_lookup_engine(guc, guc_class, instance);
if (unlikely(!engine)) {
- drm_err(&gt->i915->drm,
- "Invalid engine %d:%d", guc_class, instance);
+ guc_err(guc, "Invalid engine %d:%d", guc_class, instance);
return -EPROTO;
}
@@ -4549,7 +4859,7 @@ int intel_guc_engine_failure_process_msg(struct intel_guc *guc,
* This is an unexpected failure of a hardware feature. So, log a real
* error message not just the informational that comes with the reset.
*/
- drm_err(&gt->i915->drm, "GuC engine reset request failed on %d:%d (%s) because 0x%08X",
+ guc_err(guc, "Engine reset failed on %d:%d (%s) because 0x%08X",
guc_class, instance, engine->name, reason);
spin_lock_irqsave(&guc->submission_state.lock, flags);
@@ -4579,6 +4889,8 @@ void intel_guc_find_hung_context(struct intel_engine_cs *engine)
xa_lock_irqsave(&guc->context_lookup, flags);
xa_for_each(&guc->context_lookup, index, ce) {
+ bool found;
+
if (!kref_get_unless_zero(&ce->ref))
continue;
@@ -4595,10 +4907,18 @@ void intel_guc_find_hung_context(struct intel_engine_cs *engine)
goto next;
}
+ found = false;
+ spin_lock(&ce->guc_state.lock);
list_for_each_entry(rq, &ce->guc_state.requests, sched.link) {
if (i915_test_request_state(rq) != I915_REQUEST_ACTIVE)
continue;
+ found = true;
+ break;
+ }
+ spin_unlock(&ce->guc_state.lock);
+
+ if (found) {
intel_engine_set_hung_context(engine, ce);
/* Can only cope with one hang at a time... */
@@ -4606,6 +4926,7 @@ void intel_guc_find_hung_context(struct intel_engine_cs *engine)
xa_lock(&guc->context_lookup);
goto done;
}
+
next:
intel_context_put(ce);
xa_lock(&guc->context_lookup);
@@ -4667,9 +4988,12 @@ void intel_guc_submission_print_info(struct intel_guc *guc,
if (!sched_engine)
return;
+ drm_printf(p, "GuC Submission API Version: %d.%d.%d\n",
+ guc->submission_version.major, guc->submission_version.minor,
+ guc->submission_version.patch);
drm_printf(p, "GuC Number Outstanding Submission G2H: %u\n",
atomic_read(&guc->outstanding_submission_g2h));
- drm_printf(p, "GuC tasklet count: %u\n\n",
+ drm_printf(p, "GuC tasklet count: %u\n",
atomic_read(&sched_engine->tasklet.count));
spin_lock_irqsave(&sched_engine->lock, flags);
@@ -4717,7 +5041,7 @@ static inline void guc_log_context(struct drm_printer *p,
atomic_read(&ce->pin_count));
drm_printf(p, "\t\tGuC ID Ref Count: %u\n",
atomic_read(&ce->guc_id.ref));
- drm_printf(p, "\t\tSchedule State: 0x%x\n\n",
+ drm_printf(p, "\t\tSchedule State: 0x%x\n",
ce->guc_state.sched_state);
}
@@ -4746,7 +5070,7 @@ void intel_guc_submission_print_context_info(struct intel_guc *guc,
READ_ONCE(*ce->parallel.guc.wq_head));
drm_printf(p, "\t\tWQI Tail: %u\n",
READ_ONCE(*ce->parallel.guc.wq_tail));
- drm_printf(p, "\t\tWQI Status: %u\n\n",
+ drm_printf(p, "\t\tWQI Status: %u\n",
READ_ONCE(*ce->parallel.guc.wq_status));
}
@@ -4754,7 +5078,7 @@ void intel_guc_submission_print_context_info(struct intel_guc *guc,
emit_bb_start_parent_no_preempt_mid_batch) {
u8 i;
- drm_printf(p, "\t\tChildren Go: %u\n\n",
+ drm_printf(p, "\t\tChildren Go: %u\n",
get_children_go_value(ce));
for (i = 0; i < ce->parallel.number_children; ++i)
drm_printf(p, "\t\tChildren Join: %u\n",
@@ -5098,8 +5422,8 @@ guc_create_virtual(struct intel_engine_cs **siblings, unsigned int count,
GEM_BUG_ON(!is_power_of_2(sibling->mask));
if (sibling->mask & ve->base.mask) {
- DRM_DEBUG("duplicate %s entry in load balancer\n",
- sibling->name);
+ guc_dbg(guc, "duplicate %s entry in load balancer\n",
+ sibling->name);
err = -EINVAL;
goto err_put;
}
@@ -5108,8 +5432,8 @@ guc_create_virtual(struct intel_engine_cs **siblings, unsigned int count,
ve->base.logical_mask |= sibling->logical_mask;
if (n != 0 && ve->base.class != sibling->class) {
- DRM_DEBUG("invalid mixing of engine class, sibling %d, already %d\n",
- sibling->class, ve->base.class);
+ guc_dbg(guc, "invalid mixing of engine class, sibling %d, already %d\n",
+ sibling->class, ve->base.class);
err = -EINVAL;
goto err_put;
} else if (n == 0) {
diff --git a/drivers/gpu/drm/i915/gt/uc/intel_guc_submission.h b/drivers/gpu/drm/i915/gt/uc/intel_guc_submission.h
index 5a95a9f0a8e3..c57b29cdb1a6 100644
--- a/drivers/gpu/drm/i915/gt/uc/intel_guc_submission.h
+++ b/drivers/gpu/drm/i915/gt/uc/intel_guc_submission.h
@@ -15,7 +15,7 @@ struct intel_engine_cs;
void intel_guc_submission_init_early(struct intel_guc *guc);
int intel_guc_submission_init(struct intel_guc *guc);
-void intel_guc_submission_enable(struct intel_guc *guc);
+int intel_guc_submission_enable(struct intel_guc *guc);
void intel_guc_submission_disable(struct intel_guc *guc);
void intel_guc_submission_fini(struct intel_guc *guc);
int intel_guc_preempt_work_create(struct intel_guc *guc);
diff --git a/drivers/gpu/drm/i915/gt/uc/intel_huc.c b/drivers/gpu/drm/i915/gt/uc/intel_huc.c
index 3bb8838e325a..04724ff56ded 100644
--- a/drivers/gpu/drm/i915/gt/uc/intel_huc.c
+++ b/drivers/gpu/drm/i915/gt/uc/intel_huc.c
@@ -6,10 +6,23 @@
#include <linux/types.h>
#include "gt/intel_gt.h"
+#include "gt/intel_gt_print.h"
#include "intel_guc_reg.h"
#include "intel_huc.h"
#include "i915_drv.h"
+#include <linux/device/bus.h>
+#include <linux/mei_aux.h>
+
+#define huc_printk(_huc, _level, _fmt, ...) \
+ gt_##_level(huc_to_gt(_huc), "HuC: " _fmt, ##__VA_ARGS__)
+#define huc_err(_huc, _fmt, ...) huc_printk((_huc), err, _fmt, ##__VA_ARGS__)
+#define huc_warn(_huc, _fmt, ...) huc_printk((_huc), warn, _fmt, ##__VA_ARGS__)
+#define huc_notice(_huc, _fmt, ...) huc_printk((_huc), notice, _fmt, ##__VA_ARGS__)
+#define huc_info(_huc, _fmt, ...) huc_printk((_huc), info, _fmt, ##__VA_ARGS__)
+#define huc_dbg(_huc, _fmt, ...) huc_printk((_huc), dbg, _fmt, ##__VA_ARGS__)
+#define huc_probe_error(_huc, _fmt, ...) huc_printk((_huc), probe_error, _fmt, ##__VA_ARGS__)
+
/**
* DOC: HuC
*
@@ -42,12 +55,243 @@
* HuC-specific commands.
*/
+/*
+ * MEI-GSC load is an async process. The probing of the exposed aux device
+ * (see intel_gsc.c) usually happens a few seconds after i915 probe, depending
+ * on when the kernel schedules it. Unless something goes terribly wrong, we're
+ * guaranteed for this to happen during boot, so the big timeout is a safety net
+ * that we never expect to need.
+ * MEI-PXP + HuC load usually takes ~300ms, but if the GSC needs to be resumed
+ * and/or reset, this can take longer. Note that the kernel might schedule
+ * other work between the i915 init/resume and the MEI one, which can add to
+ * the delay.
+ */
+#define GSC_INIT_TIMEOUT_MS 10000
+#define PXP_INIT_TIMEOUT_MS 5000
+
+static int sw_fence_dummy_notify(struct i915_sw_fence *sf,
+ enum i915_sw_fence_notify state)
+{
+ return NOTIFY_DONE;
+}
+
+static void __delayed_huc_load_complete(struct intel_huc *huc)
+{
+ if (!i915_sw_fence_done(&huc->delayed_load.fence))
+ i915_sw_fence_complete(&huc->delayed_load.fence);
+}
+
+static void delayed_huc_load_complete(struct intel_huc *huc)
+{
+ hrtimer_cancel(&huc->delayed_load.timer);
+ __delayed_huc_load_complete(huc);
+}
+
+static void __gsc_init_error(struct intel_huc *huc)
+{
+ huc->delayed_load.status = INTEL_HUC_DELAYED_LOAD_ERROR;
+ __delayed_huc_load_complete(huc);
+}
+
+static void gsc_init_error(struct intel_huc *huc)
+{
+ hrtimer_cancel(&huc->delayed_load.timer);
+ __gsc_init_error(huc);
+}
+
+static void gsc_init_done(struct intel_huc *huc)
+{
+ hrtimer_cancel(&huc->delayed_load.timer);
+
+ /* MEI-GSC init is done, now we wait for MEI-PXP to bind */
+ huc->delayed_load.status = INTEL_HUC_WAITING_ON_PXP;
+ if (!i915_sw_fence_done(&huc->delayed_load.fence))
+ hrtimer_start(&huc->delayed_load.timer,
+ ms_to_ktime(PXP_INIT_TIMEOUT_MS),
+ HRTIMER_MODE_REL);
+}
+
+static enum hrtimer_restart huc_delayed_load_timer_callback(struct hrtimer *hrtimer)
+{
+ struct intel_huc *huc = container_of(hrtimer, struct intel_huc, delayed_load.timer);
+
+ if (!intel_huc_is_authenticated(huc)) {
+ if (huc->delayed_load.status == INTEL_HUC_WAITING_ON_GSC)
+ huc_notice(huc, "timed out waiting for MEI GSC\n");
+ else if (huc->delayed_load.status == INTEL_HUC_WAITING_ON_PXP)
+ huc_notice(huc, "timed out waiting for MEI PXP\n");
+ else
+ MISSING_CASE(huc->delayed_load.status);
+
+ __gsc_init_error(huc);
+ }
+
+ return HRTIMER_NORESTART;
+}
+
+static void huc_delayed_load_start(struct intel_huc *huc)
+{
+ ktime_t delay;
+
+ GEM_BUG_ON(intel_huc_is_authenticated(huc));
+
+ /*
+ * On resume we don't have to wait for MEI-GSC to be re-probed, but we
+ * do need to wait for MEI-PXP to reset & re-bind
+ */
+ switch (huc->delayed_load.status) {
+ case INTEL_HUC_WAITING_ON_GSC:
+ delay = ms_to_ktime(GSC_INIT_TIMEOUT_MS);
+ break;
+ case INTEL_HUC_WAITING_ON_PXP:
+ delay = ms_to_ktime(PXP_INIT_TIMEOUT_MS);
+ break;
+ default:
+ gsc_init_error(huc);
+ return;
+ }
+
+ /*
+ * This fence is always complete unless we're waiting for the
+ * GSC device to come up to load the HuC. We arm the fence here
+ * and complete it when we confirm that the HuC is loaded from
+ * the PXP bind callback.
+ */
+ GEM_BUG_ON(!i915_sw_fence_done(&huc->delayed_load.fence));
+ i915_sw_fence_fini(&huc->delayed_load.fence);
+ i915_sw_fence_reinit(&huc->delayed_load.fence);
+ i915_sw_fence_await(&huc->delayed_load.fence);
+ i915_sw_fence_commit(&huc->delayed_load.fence);
+
+ hrtimer_start(&huc->delayed_load.timer, delay, HRTIMER_MODE_REL);
+}
+
+static int gsc_notifier(struct notifier_block *nb, unsigned long action, void *data)
+{
+ struct device *dev = data;
+ struct intel_huc *huc = container_of(nb, struct intel_huc, delayed_load.nb);
+ struct intel_gsc_intf *intf = &huc_to_gt(huc)->gsc.intf[0];
+
+ if (!intf->adev || &intf->adev->aux_dev.dev != dev)
+ return 0;
+
+ switch (action) {
+ case BUS_NOTIFY_BOUND_DRIVER: /* mei driver bound to aux device */
+ gsc_init_done(huc);
+ break;
+
+ case BUS_NOTIFY_DRIVER_NOT_BOUND: /* mei driver fails to be bound */
+ case BUS_NOTIFY_UNBIND_DRIVER: /* mei driver about to be unbound */
+ huc_info(huc, "MEI driver not bound, disabling load\n");
+ gsc_init_error(huc);
+ break;
+ }
+
+ return 0;
+}
+
+void intel_huc_register_gsc_notifier(struct intel_huc *huc, const struct bus_type *bus)
+{
+ int ret;
+
+ if (!intel_huc_is_loaded_by_gsc(huc))
+ return;
+
+ huc->delayed_load.nb.notifier_call = gsc_notifier;
+ ret = bus_register_notifier(bus, &huc->delayed_load.nb);
+ if (ret) {
+ huc_err(huc, "failed to register GSC notifier %pe\n", ERR_PTR(ret));
+ huc->delayed_load.nb.notifier_call = NULL;
+ gsc_init_error(huc);
+ }
+}
+
+void intel_huc_unregister_gsc_notifier(struct intel_huc *huc, const struct bus_type *bus)
+{
+ if (!huc->delayed_load.nb.notifier_call)
+ return;
+
+ delayed_huc_load_complete(huc);
+
+ bus_unregister_notifier(bus, &huc->delayed_load.nb);
+ huc->delayed_load.nb.notifier_call = NULL;
+}
+
+static void delayed_huc_load_init(struct intel_huc *huc)
+{
+ /*
+ * Initialize fence to be complete as this is expected to be complete
+ * unless there is a delayed HuC load in progress.
+ */
+ i915_sw_fence_init(&huc->delayed_load.fence,
+ sw_fence_dummy_notify);
+ i915_sw_fence_commit(&huc->delayed_load.fence);
+
+ hrtimer_init(&huc->delayed_load.timer, CLOCK_MONOTONIC, HRTIMER_MODE_REL);
+ huc->delayed_load.timer.function = huc_delayed_load_timer_callback;
+}
+
+static void delayed_huc_load_fini(struct intel_huc *huc)
+{
+ /*
+ * the fence is initialized in init_early, so we need to clean it up
+ * even if HuC loading is off.
+ */
+ delayed_huc_load_complete(huc);
+ i915_sw_fence_fini(&huc->delayed_load.fence);
+}
+
+int intel_huc_sanitize(struct intel_huc *huc)
+{
+ delayed_huc_load_complete(huc);
+ intel_uc_fw_sanitize(&huc->fw);
+ return 0;
+}
+
+static bool vcs_supported(struct intel_gt *gt)
+{
+ intel_engine_mask_t mask = gt->info.engine_mask;
+
+ /*
+ * We reach here from i915_driver_early_probe for the primary GT before
+ * its engine mask is set, so we use the device info engine mask for it;
+ * this means we're not taking VCS fusing into account, but if the
+ * primary GT supports VCS engines we expect at least one of them to
+ * remain unfused so we're fine.
+ * For other GTs we expect the GT-specific mask to be set before we
+ * call this function.
+ */
+ GEM_BUG_ON(!gt_is_root(gt) && !gt->info.engine_mask);
+
+ if (gt_is_root(gt))
+ mask = RUNTIME_INFO(gt->i915)->platform_engine_mask;
+ else
+ mask = gt->info.engine_mask;
+
+ return __ENGINE_INSTANCES_MASK(mask, VCS0, I915_MAX_VCS);
+}
+
void intel_huc_init_early(struct intel_huc *huc)
{
struct drm_i915_private *i915 = huc_to_gt(huc)->i915;
+ struct intel_gt *gt = huc_to_gt(huc);
intel_uc_fw_init_early(&huc->fw, INTEL_UC_FW_TYPE_HUC);
+ /*
+ * we always init the fence as already completed, even if HuC is not
+ * supported. This way we don't have to distinguish between HuC not
+ * supported/disabled or already loaded, and can focus on if the load
+ * is currently in progress (fence not complete) or not, which is what
+ * we care about for stalling userspace submissions.
+ */
+ delayed_huc_load_init(huc);
+
+ if (!vcs_supported(gt)) {
+ intel_uc_fw_change_status(&huc->fw, INTEL_UC_FIRMWARE_NOT_SUPPORTED);
+ return;
+ }
+
if (GRAPHICS_VER(i915) >= 11) {
huc->status.reg = GEN11_HUC_KERNEL_LOAD_INFO;
huc->status.mask = HUC_LOAD_SUCCESSFUL;
@@ -75,29 +319,25 @@ static int check_huc_loading_mode(struct intel_huc *huc)
GSC_LOADS_HUC;
if (fw_needs_gsc != hw_uses_gsc) {
- drm_err(&gt->i915->drm,
- "mismatch between HuC FW (%s) and HW (%s) load modes\n",
- HUC_LOAD_MODE_STRING(fw_needs_gsc),
- HUC_LOAD_MODE_STRING(hw_uses_gsc));
+ huc_err(huc, "mismatch between FW (%s) and HW (%s) load modes\n",
+ HUC_LOAD_MODE_STRING(fw_needs_gsc), HUC_LOAD_MODE_STRING(hw_uses_gsc));
return -ENOEXEC;
}
/* make sure we can access the GSC via the mei driver if we need it */
if (!(IS_ENABLED(CONFIG_INTEL_MEI_PXP) && IS_ENABLED(CONFIG_INTEL_MEI_GSC)) &&
fw_needs_gsc) {
- drm_info(&gt->i915->drm,
- "Can't load HuC due to missing MEI modules\n");
+ huc_info(huc, "can't load due to missing MEI modules\n");
return -EIO;
}
- drm_dbg(&gt->i915->drm, "GSC loads huc=%s\n", str_yes_no(fw_needs_gsc));
+ huc_dbg(huc, "loaded by GSC = %s\n", str_yes_no(fw_needs_gsc));
return 0;
}
int intel_huc_init(struct intel_huc *huc)
{
- struct drm_i915_private *i915 = huc_to_gt(huc)->i915;
int err;
err = check_huc_loading_mode(huc);
@@ -113,16 +353,59 @@ int intel_huc_init(struct intel_huc *huc)
return 0;
out:
- drm_info(&i915->drm, "HuC init failed with %d\n", err);
+ intel_uc_fw_change_status(&huc->fw, INTEL_UC_FIRMWARE_INIT_FAIL);
+ huc_info(huc, "initialization failed %pe\n", ERR_PTR(err));
return err;
}
void intel_huc_fini(struct intel_huc *huc)
{
+ /*
+ * the fence is initialized in init_early, so we need to clean it up
+ * even if HuC loading is off.
+ */
+ delayed_huc_load_fini(huc);
+
+ if (intel_uc_fw_is_loadable(&huc->fw))
+ intel_uc_fw_fini(&huc->fw);
+}
+
+void intel_huc_suspend(struct intel_huc *huc)
+{
if (!intel_uc_fw_is_loadable(&huc->fw))
return;
- intel_uc_fw_fini(&huc->fw);
+ /*
+ * in the unlikely case that we're suspending before the GSC has
+ * completed its loading sequence, just stop waiting. We'll restart
+ * on resume.
+ */
+ delayed_huc_load_complete(huc);
+}
+
+int intel_huc_wait_for_auth_complete(struct intel_huc *huc)
+{
+ struct intel_gt *gt = huc_to_gt(huc);
+ int ret;
+
+ ret = __intel_wait_for_register(gt->uncore,
+ huc->status.reg,
+ huc->status.mask,
+ huc->status.value,
+ 2, 50, NULL);
+
+ /* mark the load process as complete even if the wait failed */
+ delayed_huc_load_complete(huc);
+
+ if (ret) {
+ huc_err(huc, "firmware not verified %pe\n", ERR_PTR(ret));
+ intel_uc_fw_change_status(&huc->fw, INTEL_UC_FIRMWARE_LOAD_FAIL);
+ return ret;
+ }
+
+ intel_uc_fw_change_status(&huc->fw, INTEL_UC_FIRMWARE_RUNNING);
+ huc_info(huc, "authenticated!\n");
+ return 0;
}
/**
@@ -156,32 +439,23 @@ int intel_huc_auth(struct intel_huc *huc)
ret = intel_guc_auth_huc(guc, intel_guc_ggtt_offset(guc, huc->fw.rsa_data));
if (ret) {
- DRM_ERROR("HuC: GuC did not ack Auth request %d\n", ret);
+ huc_err(huc, "authentication by GuC failed %pe\n", ERR_PTR(ret));
goto fail;
}
/* Check authentication status, it should be done by now */
- ret = __intel_wait_for_register(gt->uncore,
- huc->status.reg,
- huc->status.mask,
- huc->status.value,
- 2, 50, NULL);
- if (ret) {
- DRM_ERROR("HuC: Firmware not verified %d\n", ret);
+ ret = intel_huc_wait_for_auth_complete(huc);
+ if (ret)
goto fail;
- }
- intel_uc_fw_change_status(&huc->fw, INTEL_UC_FIRMWARE_RUNNING);
- drm_info(&gt->i915->drm, "HuC authenticated\n");
return 0;
fail:
- i915_probe_error(gt->i915, "HuC: Authentication failed %d\n", ret);
- intel_uc_fw_change_status(&huc->fw, INTEL_UC_FIRMWARE_LOAD_FAIL);
+ huc_probe_error(huc, "authentication failed %pe\n", ERR_PTR(ret));
return ret;
}
-static bool huc_is_authenticated(struct intel_huc *huc)
+bool intel_huc_is_authenticated(struct intel_huc *huc)
{
struct intel_gt *gt = huc_to_gt(huc);
intel_wakeref_t wakeref;
@@ -200,13 +474,8 @@ static bool huc_is_authenticated(struct intel_huc *huc)
* This function reads status register to verify if HuC
* firmware was successfully loaded.
*
- * Returns:
- * * -ENODEV if HuC is not present on this platform,
- * * -EOPNOTSUPP if HuC firmware is disabled,
- * * -ENOPKG if HuC firmware was not installed,
- * * -ENOEXEC if HuC firmware is invalid or mismatched,
- * * 0 if HuC firmware is not running,
- * * 1 if HuC firmware is authenticated and running.
+ * The return values match what is expected for the I915_PARAM_HUC_STATUS
+ * getparam.
*/
int intel_huc_check_status(struct intel_huc *huc)
{
@@ -219,11 +488,21 @@ int intel_huc_check_status(struct intel_huc *huc)
return -ENOPKG;
case INTEL_UC_FIRMWARE_ERROR:
return -ENOEXEC;
+ case INTEL_UC_FIRMWARE_INIT_FAIL:
+ return -ENOMEM;
+ case INTEL_UC_FIRMWARE_LOAD_FAIL:
+ return -EIO;
default:
break;
}
- return huc_is_authenticated(huc);
+ return intel_huc_is_authenticated(huc);
+}
+
+static bool huc_has_delayed_load(struct intel_huc *huc)
+{
+ return intel_huc_is_loaded_by_gsc(huc) &&
+ (huc->delayed_load.status != INTEL_HUC_DELAYED_LOAD_ERROR);
}
void intel_huc_update_auth_status(struct intel_huc *huc)
@@ -231,9 +510,11 @@ void intel_huc_update_auth_status(struct intel_huc *huc)
if (!intel_uc_fw_is_loadable(&huc->fw))
return;
- if (huc_is_authenticated(huc))
+ if (intel_huc_is_authenticated(huc))
intel_uc_fw_change_status(&huc->fw,
INTEL_UC_FIRMWARE_RUNNING);
+ else if (huc_has_delayed_load(huc))
+ huc_delayed_load_start(huc);
}
/**
diff --git a/drivers/gpu/drm/i915/gt/uc/intel_huc.h b/drivers/gpu/drm/i915/gt/uc/intel_huc.h
index d7e25b6e879e..0789184d81a2 100644
--- a/drivers/gpu/drm/i915/gt/uc/intel_huc.h
+++ b/drivers/gpu/drm/i915/gt/uc/intel_huc.h
@@ -7,9 +7,21 @@
#define _INTEL_HUC_H_
#include "i915_reg_defs.h"
+#include "i915_sw_fence.h"
#include "intel_uc_fw.h"
#include "intel_huc_fw.h"
+#include <linux/notifier.h>
+#include <linux/hrtimer.h>
+
+struct bus_type;
+
+enum intel_huc_delayed_load_status {
+ INTEL_HUC_WAITING_ON_GSC = 0,
+ INTEL_HUC_WAITING_ON_PXP,
+ INTEL_HUC_DELAYED_LOAD_ERROR,
+};
+
struct intel_huc {
/* Generic uC firmware management */
struct intel_uc_fw fw;
@@ -20,20 +32,28 @@ struct intel_huc {
u32 mask;
u32 value;
} status;
+
+ struct {
+ struct i915_sw_fence fence;
+ struct hrtimer timer;
+ struct notifier_block nb;
+ enum intel_huc_delayed_load_status status;
+ } delayed_load;
};
+int intel_huc_sanitize(struct intel_huc *huc);
void intel_huc_init_early(struct intel_huc *huc);
int intel_huc_init(struct intel_huc *huc);
void intel_huc_fini(struct intel_huc *huc);
+void intel_huc_suspend(struct intel_huc *huc);
int intel_huc_auth(struct intel_huc *huc);
+int intel_huc_wait_for_auth_complete(struct intel_huc *huc);
int intel_huc_check_status(struct intel_huc *huc);
void intel_huc_update_auth_status(struct intel_huc *huc);
+bool intel_huc_is_authenticated(struct intel_huc *huc);
-static inline int intel_huc_sanitize(struct intel_huc *huc)
-{
- intel_uc_fw_sanitize(&huc->fw);
- return 0;
-}
+void intel_huc_register_gsc_notifier(struct intel_huc *huc, const struct bus_type *bus);
+void intel_huc_unregister_gsc_notifier(struct intel_huc *huc, const struct bus_type *bus);
static inline bool intel_huc_is_supported(struct intel_huc *huc)
{
@@ -56,6 +76,12 @@ static inline bool intel_huc_is_loaded_by_gsc(const struct intel_huc *huc)
return huc->fw.loaded_via_gsc;
}
+static inline bool intel_huc_wait_required(struct intel_huc *huc)
+{
+ return intel_huc_is_used(huc) && intel_huc_is_loaded_by_gsc(huc) &&
+ !intel_huc_is_authenticated(huc);
+}
+
void intel_huc_load_status(struct intel_huc *huc, struct drm_printer *p);
#endif
diff --git a/drivers/gpu/drm/i915/gt/uc/intel_huc_fw.c b/drivers/gpu/drm/i915/gt/uc/intel_huc_fw.c
index 9d6ab1e01639..534b0aa43316 100644
--- a/drivers/gpu/drm/i915/gt/uc/intel_huc_fw.c
+++ b/drivers/gpu/drm/i915/gt/uc/intel_huc_fw.c
@@ -3,9 +3,43 @@
* Copyright © 2014-2019 Intel Corporation
*/
+#include "gt/intel_gsc.h"
#include "gt/intel_gt.h"
+#include "intel_huc.h"
#include "intel_huc_fw.h"
#include "i915_drv.h"
+#include "pxp/intel_pxp_huc.h"
+
+int intel_huc_fw_load_and_auth_via_gsc(struct intel_huc *huc)
+{
+ int ret;
+
+ if (!intel_huc_is_loaded_by_gsc(huc))
+ return -ENODEV;
+
+ if (!intel_uc_fw_is_loadable(&huc->fw))
+ return -ENOEXEC;
+
+ /*
+ * If we abort a suspend, HuC might still be loaded when the mei
+ * component gets re-bound and this function called again. If so, just
+ * mark the HuC as loaded.
+ */
+ if (intel_huc_is_authenticated(huc)) {
+ intel_uc_fw_change_status(&huc->fw, INTEL_UC_FIRMWARE_RUNNING);
+ return 0;
+ }
+
+ GEM_WARN_ON(intel_uc_fw_is_loaded(&huc->fw));
+
+ ret = intel_pxp_huc_load_and_auth(huc_to_gt(huc)->i915->pxp);
+ if (ret)
+ return ret;
+
+ intel_uc_fw_change_status(&huc->fw, INTEL_UC_FIRMWARE_TRANSFERRED);
+
+ return intel_huc_wait_for_auth_complete(huc);
+}
/**
* intel_huc_fw_upload() - load HuC uCode to device via DMA transfer
diff --git a/drivers/gpu/drm/i915/gt/uc/intel_huc_fw.h b/drivers/gpu/drm/i915/gt/uc/intel_huc_fw.h
index 12f264ee3e0b..db42e238b45f 100644
--- a/drivers/gpu/drm/i915/gt/uc/intel_huc_fw.h
+++ b/drivers/gpu/drm/i915/gt/uc/intel_huc_fw.h
@@ -8,6 +8,7 @@
struct intel_huc;
+int intel_huc_fw_load_and_auth_via_gsc(struct intel_huc *huc);
int intel_huc_fw_upload(struct intel_huc *huc);
#endif
diff --git a/drivers/gpu/drm/i915/gt/uc/intel_uc.c b/drivers/gpu/drm/i915/gt/uc/intel_uc.c
index dbd048b77e19..4ccb4be4c9cb 100644
--- a/drivers/gpu/drm/i915/gt/uc/intel_uc.c
+++ b/drivers/gpu/drm/i915/gt/uc/intel_uc.c
@@ -6,9 +6,13 @@
#include <linux/string_helpers.h>
#include "gt/intel_gt.h"
+#include "gt/intel_gt_print.h"
#include "gt/intel_reset.h"
+#include "intel_gsc_fw.h"
+#include "intel_gsc_uc.h"
#include "intel_guc.h"
#include "intel_guc_ads.h"
+#include "intel_guc_print.h"
#include "intel_guc_submission.h"
#include "gt/intel_rps.h"
#include "intel_uc.h"
@@ -65,29 +69,29 @@ static int __intel_uc_reset_hw(struct intel_uc *uc)
ret = intel_reset_guc(gt);
if (ret) {
- DRM_ERROR("Failed to reset GuC, ret = %d\n", ret);
+ gt_err(gt, "Failed to reset GuC, ret = %d\n", ret);
return ret;
}
guc_status = intel_uncore_read(gt->uncore, GUC_STATUS);
- WARN(!(guc_status & GS_MIA_IN_RESET),
- "GuC status: 0x%x, MIA core expected to be in reset\n",
- guc_status);
+ gt_WARN(gt, !(guc_status & GS_MIA_IN_RESET),
+ "GuC status: 0x%x, MIA core expected to be in reset\n",
+ guc_status);
return ret;
}
static void __confirm_options(struct intel_uc *uc)
{
- struct drm_i915_private *i915 = uc_to_gt(uc)->i915;
+ struct intel_gt *gt = uc_to_gt(uc);
+ struct drm_i915_private *i915 = gt->i915;
- drm_dbg(&i915->drm,
- "enable_guc=%d (guc:%s submission:%s huc:%s slpc:%s)\n",
- i915->params.enable_guc,
- str_yes_no(intel_uc_wants_guc(uc)),
- str_yes_no(intel_uc_wants_guc_submission(uc)),
- str_yes_no(intel_uc_wants_huc(uc)),
- str_yes_no(intel_uc_wants_guc_slpc(uc)));
+ gt_dbg(gt, "enable_guc=%d (guc:%s submission:%s huc:%s slpc:%s)\n",
+ i915->params.enable_guc,
+ str_yes_no(intel_uc_wants_guc(uc)),
+ str_yes_no(intel_uc_wants_guc_submission(uc)),
+ str_yes_no(intel_uc_wants_huc(uc)),
+ str_yes_no(intel_uc_wants_guc_slpc(uc)));
if (i915->params.enable_guc == 0) {
GEM_BUG_ON(intel_uc_wants_guc(uc));
@@ -98,26 +102,22 @@ static void __confirm_options(struct intel_uc *uc)
}
if (!intel_uc_supports_guc(uc))
- drm_info(&i915->drm,
- "Incompatible option enable_guc=%d - %s\n",
- i915->params.enable_guc, "GuC is not supported!");
+ gt_info(gt, "Incompatible option enable_guc=%d - %s\n",
+ i915->params.enable_guc, "GuC is not supported!");
if (i915->params.enable_guc & ENABLE_GUC_LOAD_HUC &&
!intel_uc_supports_huc(uc))
- drm_info(&i915->drm,
- "Incompatible option enable_guc=%d - %s\n",
- i915->params.enable_guc, "HuC is not supported!");
+ gt_info(gt, "Incompatible option enable_guc=%d - %s\n",
+ i915->params.enable_guc, "HuC is not supported!");
if (i915->params.enable_guc & ENABLE_GUC_SUBMISSION &&
!intel_uc_supports_guc_submission(uc))
- drm_info(&i915->drm,
- "Incompatible option enable_guc=%d - %s\n",
- i915->params.enable_guc, "GuC submission is N/A");
+ gt_info(gt, "Incompatible option enable_guc=%d - %s\n",
+ i915->params.enable_guc, "GuC submission is N/A");
if (i915->params.enable_guc & ~ENABLE_GUC_MASK)
- drm_info(&i915->drm,
- "Incompatible option enable_guc=%d - %s\n",
- i915->params.enable_guc, "undocumented flag");
+ gt_info(gt, "Incompatible option enable_guc=%d - %s\n",
+ i915->params.enable_guc, "undocumented flag");
}
void intel_uc_init_early(struct intel_uc *uc)
@@ -126,6 +126,7 @@ void intel_uc_init_early(struct intel_uc *uc)
intel_guc_init_early(&uc->guc);
intel_huc_init_early(&uc->huc);
+ intel_gsc_uc_init_early(&uc->gsc);
__confirm_options(uc);
@@ -138,6 +139,7 @@ void intel_uc_init_early(struct intel_uc *uc)
void intel_uc_init_late(struct intel_uc *uc)
{
intel_guc_init_late(&uc->guc);
+ intel_gsc_uc_load_start(&uc->gsc);
}
void intel_uc_driver_late_release(struct intel_uc *uc)
@@ -249,15 +251,13 @@ static int guc_enable_communication(struct intel_guc *guc)
intel_guc_ct_event_handler(&guc->ct);
spin_unlock_irq(gt->irq_lock);
- drm_dbg(&i915->drm, "GuC communication enabled\n");
+ guc_dbg(guc, "communication enabled\n");
return 0;
}
static void guc_disable_communication(struct intel_guc *guc)
{
- struct drm_i915_private *i915 = guc_to_gt(guc)->i915;
-
/*
* Events generated during or after CT disable are logged by guc in
* via mmio. Make sure the register is clear before disabling CT since
@@ -277,11 +277,12 @@ static void guc_disable_communication(struct intel_guc *guc)
*/
guc_get_mmio_msg(guc);
- drm_dbg(&i915->drm, "GuC communication disabled\n");
+ guc_dbg(guc, "communication disabled\n");
}
static void __uc_fetch_firmwares(struct intel_uc *uc)
{
+ struct intel_gt *gt = uc_to_gt(uc);
int err;
GEM_BUG_ON(!intel_uc_wants_guc(uc));
@@ -290,21 +291,30 @@ static void __uc_fetch_firmwares(struct intel_uc *uc)
if (err) {
/* Make sure we transition out of transient "SELECTED" state */
if (intel_uc_wants_huc(uc)) {
- drm_dbg(&uc_to_gt(uc)->i915->drm,
- "Failed to fetch GuC: %d disabling HuC\n", err);
+ gt_dbg(gt, "Failed to fetch GuC fw (%pe) disabling HuC\n", ERR_PTR(err));
intel_uc_fw_change_status(&uc->huc.fw,
INTEL_UC_FIRMWARE_ERROR);
}
+ if (intel_uc_wants_gsc_uc(uc)) {
+ gt_dbg(gt, "Failed to fetch GuC fw (%pe) disabling GSC\n", ERR_PTR(err));
+ intel_uc_fw_change_status(&uc->gsc.fw,
+ INTEL_UC_FIRMWARE_ERROR);
+ }
+
return;
}
if (intel_uc_wants_huc(uc))
intel_uc_fw_fetch(&uc->huc.fw);
+
+ if (intel_uc_wants_gsc_uc(uc))
+ intel_uc_fw_fetch(&uc->gsc.fw);
}
static void __uc_cleanup_firmwares(struct intel_uc *uc)
{
+ intel_uc_fw_cleanup_fetch(&uc->gsc.fw);
intel_uc_fw_cleanup_fetch(&uc->huc.fw);
intel_uc_fw_cleanup_fetch(&uc->guc.fw);
}
@@ -330,11 +340,15 @@ static int __uc_init(struct intel_uc *uc)
if (intel_uc_uses_huc(uc))
intel_huc_init(huc);
+ if (intel_uc_uses_gsc_uc(uc))
+ intel_gsc_uc_init(&uc->gsc);
+
return 0;
}
static void __uc_fini(struct intel_uc *uc)
{
+ intel_gsc_uc_fini(&uc->gsc);
intel_huc_fini(&uc->huc);
intel_guc_fini(&uc->guc);
}
@@ -357,14 +371,14 @@ static int uc_init_wopcm(struct intel_uc *uc)
{
struct intel_gt *gt = uc_to_gt(uc);
struct intel_uncore *uncore = gt->uncore;
- u32 base = intel_wopcm_guc_base(&gt->i915->wopcm);
- u32 size = intel_wopcm_guc_size(&gt->i915->wopcm);
+ u32 base = intel_wopcm_guc_base(&gt->wopcm);
+ u32 size = intel_wopcm_guc_size(&gt->wopcm);
u32 huc_agent = intel_uc_uses_huc(uc) ? HUC_LOADING_AGENT_GUC : 0;
u32 mask;
int err;
if (unlikely(!base || !size)) {
- i915_probe_error(gt->i915, "Unsuccessful WOPCM partitioning\n");
+ gt_probe_error(gt, "Unsuccessful WOPCM partitioning\n");
return -E2BIG;
}
@@ -395,13 +409,13 @@ static int uc_init_wopcm(struct intel_uc *uc)
return 0;
err_out:
- i915_probe_error(gt->i915, "Failed to init uC WOPCM registers!\n");
- i915_probe_error(gt->i915, "%s(%#x)=%#x\n", "DMA_GUC_WOPCM_OFFSET",
- i915_mmio_reg_offset(DMA_GUC_WOPCM_OFFSET),
- intel_uncore_read(uncore, DMA_GUC_WOPCM_OFFSET));
- i915_probe_error(gt->i915, "%s(%#x)=%#x\n", "GUC_WOPCM_SIZE",
- i915_mmio_reg_offset(GUC_WOPCM_SIZE),
- intel_uncore_read(uncore, GUC_WOPCM_SIZE));
+ gt_probe_error(gt, "Failed to init uC WOPCM registers!\n");
+ gt_probe_error(gt, "%s(%#x)=%#x\n", "DMA_GUC_WOPCM_OFFSET",
+ i915_mmio_reg_offset(DMA_GUC_WOPCM_OFFSET),
+ intel_uncore_read(uncore, DMA_GUC_WOPCM_OFFSET));
+ gt_probe_error(gt, "%s(%#x)=%#x\n", "GUC_WOPCM_SIZE",
+ i915_mmio_reg_offset(GUC_WOPCM_SIZE),
+ intel_uncore_read(uncore, GUC_WOPCM_SIZE));
return err;
}
@@ -431,20 +445,19 @@ static int __uc_check_hw(struct intel_uc *uc)
return 0;
}
-static void print_fw_ver(struct intel_uc *uc, struct intel_uc_fw *fw)
+static void print_fw_ver(struct intel_gt *gt, struct intel_uc_fw *fw)
{
- struct drm_i915_private *i915 = uc_to_gt(uc)->i915;
-
- drm_info(&i915->drm, "%s firmware %s version %u.%u.%u\n",
- intel_uc_fw_type_repr(fw->type), fw->file_selected.path,
- fw->file_selected.major_ver,
- fw->file_selected.minor_ver,
- fw->file_selected.patch_ver);
+ gt_info(gt, "%s firmware %s version %u.%u.%u\n",
+ intel_uc_fw_type_repr(fw->type), fw->file_selected.path,
+ fw->file_selected.ver.major,
+ fw->file_selected.ver.minor,
+ fw->file_selected.ver.patch);
}
static int __uc_init_hw(struct intel_uc *uc)
{
- struct drm_i915_private *i915 = uc_to_gt(uc)->i915;
+ struct intel_gt *gt = uc_to_gt(uc);
+ struct drm_i915_private *i915 = gt->i915;
struct intel_guc *guc = &uc->guc;
struct intel_huc *huc = &uc->huc;
int ret, attempts;
@@ -452,10 +465,10 @@ static int __uc_init_hw(struct intel_uc *uc)
GEM_BUG_ON(!intel_uc_supports_guc(uc));
GEM_BUG_ON(!intel_uc_wants_guc(uc));
- print_fw_ver(uc, &guc->fw);
+ print_fw_ver(gt, &guc->fw);
if (intel_uc_uses_huc(uc))
- print_fw_ver(uc, &huc->fw);
+ print_fw_ver(gt, &huc->fw);
if (!intel_uc_fw_is_loadable(&guc->fw)) {
ret = __uc_check_hw(uc) ||
@@ -496,8 +509,8 @@ static int __uc_init_hw(struct intel_uc *uc)
if (ret == 0)
break;
- DRM_DEBUG_DRIVER("GuC fw load failed: %d; will reset and "
- "retry %d more time(s)\n", ret, attempts);
+ gt_dbg(gt, "GuC fw load failed (%pe) will reset and retry %d more time(s)\n",
+ ERR_PTR(ret), attempts);
}
/* Did we succeded or run out of retries? */
@@ -519,8 +532,11 @@ static int __uc_init_hw(struct intel_uc *uc)
else
intel_huc_auth(huc);
- if (intel_uc_uses_guc_submission(uc))
- intel_guc_submission_enable(guc);
+ if (intel_uc_uses_guc_submission(uc)) {
+ ret = intel_guc_submission_enable(guc);
+ if (ret)
+ goto err_log_capture;
+ }
if (intel_uc_uses_guc_slpc(uc)) {
ret = intel_guc_slpc_enable(&guc->slpc);
@@ -531,10 +547,8 @@ static int __uc_init_hw(struct intel_uc *uc)
intel_rps_lower_unslice(&uc_to_gt(uc)->rps);
}
- drm_info(&i915->drm, "GuC submission %s\n",
- str_enabled_disabled(intel_uc_uses_guc_submission(uc)));
- drm_info(&i915->drm, "GuC SLPC %s\n",
- str_enabled_disabled(intel_uc_uses_guc_slpc(uc)));
+ guc_info(guc, "submission %s\n", str_enabled_disabled(intel_uc_uses_guc_submission(uc)));
+ guc_info(guc, "SLPC %s\n", str_enabled_disabled(intel_uc_uses_guc_slpc(uc)));
return 0;
@@ -552,12 +566,12 @@ err_out:
__uc_sanitize(uc);
if (!ret) {
- drm_notice(&i915->drm, "GuC is uninitialized\n");
+ gt_notice(gt, "GuC is uninitialized\n");
/* We want to run without GuC submission */
return 0;
}
- i915_probe_error(i915, "GuC initialization failed %d\n", ret);
+ gt_probe_error(gt, "GuC initialization failed %pe\n", ERR_PTR(ret));
/* We want to keep KMS alive */
return -EIO;
@@ -636,8 +650,10 @@ void intel_uc_runtime_suspend(struct intel_uc *uc)
{
struct intel_guc *guc = &uc->guc;
- if (!intel_guc_is_ready(guc))
+ if (!intel_guc_is_ready(guc)) {
+ guc->interrupts.enabled = false;
return;
+ }
/*
* Wait for any outstanding CTB before tearing down communication /w the
@@ -657,13 +673,18 @@ void intel_uc_suspend(struct intel_uc *uc)
intel_wakeref_t wakeref;
int err;
- if (!intel_guc_is_ready(guc))
+ /* flush the GSC worker */
+ intel_gsc_uc_flush_work(&uc->gsc);
+
+ if (!intel_guc_is_ready(guc)) {
+ guc->interrupts.enabled = false;
return;
+ }
with_intel_runtime_pm(&uc_to_gt(uc)->i915->runtime_pm, wakeref) {
err = intel_guc_suspend(guc);
if (err)
- DRM_DEBUG_DRIVER("Failed to suspend GuC, err=%d", err);
+ guc_dbg(guc, "Failed to suspend, %pe", ERR_PTR(err));
}
}
@@ -691,10 +712,12 @@ static int __uc_resume(struct intel_uc *uc, bool enable_communication)
err = intel_guc_resume(guc);
if (err) {
- DRM_DEBUG_DRIVER("Failed to resume GuC, err=%d", err);
+ guc_dbg(guc, "Failed to resume, %pe", ERR_PTR(err));
return err;
}
+ intel_gsc_uc_resume(&uc->gsc);
+
return 0;
}
@@ -718,6 +741,7 @@ int intel_uc_runtime_resume(struct intel_uc *uc)
static const struct intel_uc_ops uc_ops_off = {
.init_hw = __uc_check_hw,
+ .fini = __uc_fini, /* to clean-up the init_early initialization */
};
static const struct intel_uc_ops uc_ops_on = {
diff --git a/drivers/gpu/drm/i915/gt/uc/intel_uc.h b/drivers/gpu/drm/i915/gt/uc/intel_uc.h
index a8f38c2c60e2..5d0f1bcc381e 100644
--- a/drivers/gpu/drm/i915/gt/uc/intel_uc.h
+++ b/drivers/gpu/drm/i915/gt/uc/intel_uc.h
@@ -6,6 +6,7 @@
#ifndef _INTEL_UC_H_
#define _INTEL_UC_H_
+#include "intel_gsc_uc.h"
#include "intel_guc.h"
#include "intel_guc_rc.h"
#include "intel_guc_submission.h"
@@ -27,6 +28,7 @@ struct intel_uc_ops {
struct intel_uc {
struct intel_uc_ops const *ops;
+ struct intel_gsc_uc gsc;
struct intel_guc guc;
struct intel_huc huc;
@@ -87,6 +89,7 @@ uc_state_checkers(huc, huc);
uc_state_checkers(guc, guc_submission);
uc_state_checkers(guc, guc_slpc);
uc_state_checkers(guc, guc_rc);
+uc_state_checkers(gsc, gsc_uc);
#undef uc_state_checkers
#undef __uc_state_checker
diff --git a/drivers/gpu/drm/i915/gt/uc/intel_uc_debugfs.c b/drivers/gpu/drm/i915/gt/uc/intel_uc_debugfs.c
index 284d6fbc2d08..2f93cc4e408a 100644
--- a/drivers/gpu/drm/i915/gt/uc/intel_uc_debugfs.c
+++ b/drivers/gpu/drm/i915/gt/uc/intel_uc_debugfs.c
@@ -54,6 +54,8 @@ void intel_uc_debugfs_register(struct intel_uc *uc, struct dentry *gt_root)
if (IS_ERR(root))
return;
+ uc->guc.dbgfs_node = root;
+
intel_gt_debugfs_register_files(root, files, ARRAY_SIZE(files), uc);
intel_guc_debugfs_register(&uc->guc, root);
diff --git a/drivers/gpu/drm/i915/gt/uc/intel_uc_fw.c b/drivers/gpu/drm/i915/gt/uc/intel_uc_fw.c
index b91ad4aede1f..c36e68e23a14 100644
--- a/drivers/gpu/drm/i915/gt/uc/intel_uc_fw.c
+++ b/drivers/gpu/drm/i915/gt/uc/intel_uc_fw.c
@@ -11,6 +11,7 @@
#include <drm/drm_print.h>
#include "gem/i915_gem_lmem.h"
+#include "gt/intel_gt_print.h"
#include "intel_uc_fw.h"
#include "intel_uc_fw_abi.h"
#include "i915_drv.h"
@@ -19,11 +20,18 @@
static inline struct intel_gt *
____uc_fw_to_gt(struct intel_uc_fw *uc_fw, enum intel_uc_fw_type type)
{
- if (type == INTEL_UC_FW_TYPE_GUC)
+ GEM_BUG_ON(type >= INTEL_UC_FW_NUM_TYPES);
+
+ switch (type) {
+ case INTEL_UC_FW_TYPE_GUC:
return container_of(uc_fw, struct intel_gt, uc.guc.fw);
+ case INTEL_UC_FW_TYPE_HUC:
+ return container_of(uc_fw, struct intel_gt, uc.huc.fw);
+ case INTEL_UC_FW_TYPE_GSC:
+ return container_of(uc_fw, struct intel_gt, uc.gsc.fw);
+ }
- GEM_BUG_ON(type != INTEL_UC_FW_TYPE_HUC);
- return container_of(uc_fw, struct intel_gt, uc.huc.fw);
+ return NULL;
}
static inline struct intel_gt *__uc_fw_to_gt(struct intel_uc_fw *uc_fw)
@@ -37,11 +45,10 @@ void intel_uc_fw_change_status(struct intel_uc_fw *uc_fw,
enum intel_uc_fw_status status)
{
uc_fw->__status = status;
- drm_dbg(&__uc_fw_to_gt(uc_fw)->i915->drm,
- "%s firmware -> %s\n",
- intel_uc_fw_type_repr(uc_fw->type),
- status == INTEL_UC_FIRMWARE_SELECTED ?
- uc_fw->file_selected.path : intel_uc_fw_status_repr(status));
+ gt_dbg(__uc_fw_to_gt(uc_fw), "%s firmware -> %s\n",
+ intel_uc_fw_type_repr(uc_fw->type),
+ status == INTEL_UC_FIRMWARE_SELECTED ?
+ uc_fw->file_selected.path : intel_uc_fw_status_repr(status));
}
#endif
@@ -93,7 +100,8 @@ void intel_uc_fw_change_status(struct intel_uc_fw *uc_fw,
fw_def(BROXTON, 0, guc_mmp(bxt, 70, 1, 1)) \
fw_def(SKYLAKE, 0, guc_mmp(skl, 70, 1, 1))
-#define INTEL_HUC_FIRMWARE_DEFS(fw_def, huc_raw, huc_mmp) \
+#define INTEL_HUC_FIRMWARE_DEFS(fw_def, huc_raw, huc_mmp, huc_gsc) \
+ fw_def(DG2, 0, huc_gsc(dg2)) \
fw_def(ALDERLAKE_P, 0, huc_raw(tgl)) \
fw_def(ALDERLAKE_P, 0, huc_mmp(tgl, 7, 9, 3)) \
fw_def(ALDERLAKE_S, 0, huc_raw(tgl)) \
@@ -117,32 +125,35 @@ void intel_uc_fw_change_status(struct intel_uc_fw *uc_fw,
*/
#define __MAKE_UC_FW_PATH_BLANK(prefix_, name_) \
"i915/" \
- __stringify(prefix_) name_ ".bin"
+ __stringify(prefix_) "_" name_ ".bin"
#define __MAKE_UC_FW_PATH_MAJOR(prefix_, name_, major_) \
"i915/" \
- __stringify(prefix_) name_ \
+ __stringify(prefix_) "_" name_ "_" \
__stringify(major_) ".bin"
#define __MAKE_UC_FW_PATH_MMP(prefix_, name_, major_, minor_, patch_) \
"i915/" \
- __stringify(prefix_) name_ \
+ __stringify(prefix_) "_" name_ "_" \
__stringify(major_) "." \
__stringify(minor_) "." \
__stringify(patch_) ".bin"
/* Minor for internal driver use, not part of file name */
#define MAKE_GUC_FW_PATH_MAJOR(prefix_, major_, minor_) \
- __MAKE_UC_FW_PATH_MAJOR(prefix_, "_guc_", major_)
+ __MAKE_UC_FW_PATH_MAJOR(prefix_, "guc", major_)
#define MAKE_GUC_FW_PATH_MMP(prefix_, major_, minor_, patch_) \
- __MAKE_UC_FW_PATH_MMP(prefix_, "_guc_", major_, minor_, patch_)
+ __MAKE_UC_FW_PATH_MMP(prefix_, "guc", major_, minor_, patch_)
#define MAKE_HUC_FW_PATH_BLANK(prefix_) \
- __MAKE_UC_FW_PATH_BLANK(prefix_, "_huc")
+ __MAKE_UC_FW_PATH_BLANK(prefix_, "huc")
+
+#define MAKE_HUC_FW_PATH_GSC(prefix_) \
+ __MAKE_UC_FW_PATH_BLANK(prefix_, "huc_gsc")
#define MAKE_HUC_FW_PATH_MMP(prefix_, major_, minor_, patch_) \
- __MAKE_UC_FW_PATH_MMP(prefix_, "_huc_", major_, minor_, patch_)
+ __MAKE_UC_FW_PATH_MMP(prefix_, "huc", major_, minor_, patch_)
/*
* All blobs need to be declared via MODULE_FIRMWARE().
@@ -153,7 +164,7 @@ void intel_uc_fw_change_status(struct intel_uc_fw *uc_fw,
MODULE_FIRMWARE(uc_);
INTEL_GUC_FIRMWARE_DEFS(INTEL_UC_MODULE_FW, MAKE_GUC_FW_PATH_MAJOR, MAKE_GUC_FW_PATH_MMP)
-INTEL_HUC_FIRMWARE_DEFS(INTEL_UC_MODULE_FW, MAKE_HUC_FW_PATH_BLANK, MAKE_HUC_FW_PATH_MMP)
+INTEL_HUC_FIRMWARE_DEFS(INTEL_UC_MODULE_FW, MAKE_HUC_FW_PATH_BLANK, MAKE_HUC_FW_PATH_MMP, MAKE_HUC_FW_PATH_GSC)
/*
* The next expansion of the table macros (in __uc_fw_auto_select below) provides
@@ -168,6 +179,7 @@ struct __packed uc_fw_blob {
u8 major;
u8 minor;
u8 patch;
+ bool loaded_via_gsc;
};
#define UC_FW_BLOB_BASE(major_, minor_, patch_, path_) \
@@ -176,16 +188,16 @@ struct __packed uc_fw_blob {
.patch = patch_, \
.path = path_,
-#define UC_FW_BLOB_NEW(major_, minor_, patch_, path_) \
+#define UC_FW_BLOB_NEW(major_, minor_, patch_, gsc_, path_) \
{ UC_FW_BLOB_BASE(major_, minor_, patch_, path_) \
- .legacy = false }
+ .legacy = false, .loaded_via_gsc = gsc_ }
#define UC_FW_BLOB_OLD(major_, minor_, patch_, path_) \
{ UC_FW_BLOB_BASE(major_, minor_, patch_, path_) \
.legacy = true }
#define GUC_FW_BLOB(prefix_, major_, minor_) \
- UC_FW_BLOB_NEW(major_, minor_, 0, \
+ UC_FW_BLOB_NEW(major_, minor_, 0, false, \
MAKE_GUC_FW_PATH_MAJOR(prefix_, major_, minor_))
#define GUC_FW_BLOB_MMP(prefix_, major_, minor_, patch_) \
@@ -193,12 +205,15 @@ struct __packed uc_fw_blob {
MAKE_GUC_FW_PATH_MMP(prefix_, major_, minor_, patch_))
#define HUC_FW_BLOB(prefix_) \
- UC_FW_BLOB_NEW(0, 0, 0, MAKE_HUC_FW_PATH_BLANK(prefix_))
+ UC_FW_BLOB_NEW(0, 0, 0, false, MAKE_HUC_FW_PATH_BLANK(prefix_))
#define HUC_FW_BLOB_MMP(prefix_, major_, minor_, patch_) \
UC_FW_BLOB_OLD(major_, minor_, patch_, \
MAKE_HUC_FW_PATH_MMP(prefix_, major_, minor_, patch_))
+#define HUC_FW_BLOB_GSC(prefix_) \
+ UC_FW_BLOB_NEW(0, 0, 0, true, MAKE_HUC_FW_PATH_GSC(prefix_))
+
struct __packed uc_fw_platform_requirement {
enum intel_platform p;
u8 rev; /* first platform rev using this FW */
@@ -224,13 +239,13 @@ __uc_fw_auto_select(struct drm_i915_private *i915, struct intel_uc_fw *uc_fw)
INTEL_GUC_FIRMWARE_DEFS(MAKE_FW_LIST, GUC_FW_BLOB, GUC_FW_BLOB_MMP)
};
static const struct uc_fw_platform_requirement blobs_huc[] = {
- INTEL_HUC_FIRMWARE_DEFS(MAKE_FW_LIST, HUC_FW_BLOB, HUC_FW_BLOB_MMP)
+ INTEL_HUC_FIRMWARE_DEFS(MAKE_FW_LIST, HUC_FW_BLOB, HUC_FW_BLOB_MMP, HUC_FW_BLOB_GSC)
};
static const struct fw_blobs_by_type blobs_all[INTEL_UC_FW_NUM_TYPES] = {
[INTEL_UC_FW_TYPE_GUC] = { blobs_guc, ARRAY_SIZE(blobs_guc) },
[INTEL_UC_FW_TYPE_HUC] = { blobs_huc, ARRAY_SIZE(blobs_huc) },
};
- static bool verified;
+ static bool verified[INTEL_UC_FW_NUM_TYPES];
const struct uc_fw_platform_requirement *fw_blobs;
enum intel_platform p = INTEL_INFO(i915)->platform;
u32 fw_count;
@@ -239,6 +254,14 @@ __uc_fw_auto_select(struct drm_i915_private *i915, struct intel_uc_fw *uc_fw)
bool found;
/*
+ * GSC FW support is still not fully in place, so we're not defining
+ * the FW blob yet because we don't want the driver to attempt to load
+ * it until we're ready for it.
+ */
+ if (uc_fw->type == INTEL_UC_FW_TYPE_GSC)
+ return;
+
+ /*
* The only difference between the ADL GuC FWs is the HWConfig support.
* ADL-N does not support HWConfig, so we should use the same binary as
* ADL-S, otherwise the GuC might attempt to fetch a config table that
@@ -270,8 +293,9 @@ __uc_fw_auto_select(struct drm_i915_private *i915, struct intel_uc_fw *uc_fw)
uc_fw->file_selected.path = blob->path;
uc_fw->file_wanted.path = blob->path;
- uc_fw->file_wanted.major_ver = blob->major;
- uc_fw->file_wanted.minor_ver = blob->minor;
+ uc_fw->file_wanted.ver.major = blob->major;
+ uc_fw->file_wanted.ver.minor = blob->minor;
+ uc_fw->loaded_via_gsc = blob->loaded_via_gsc;
found = true;
break;
}
@@ -282,8 +306,8 @@ __uc_fw_auto_select(struct drm_i915_private *i915, struct intel_uc_fw *uc_fw)
}
/* make sure the list is ordered as expected */
- if (IS_ENABLED(CONFIG_DRM_I915_SELFTEST) && !verified) {
- verified = true;
+ if (IS_ENABLED(CONFIG_DRM_I915_SELFTEST) && !verified[uc_fw->type]) {
+ verified[uc_fw->type] = true;
for (i = 1; i < fw_count; i++) {
/* Next platform is good: */
@@ -334,7 +358,8 @@ __uc_fw_auto_select(struct drm_i915_private *i915, struct intel_uc_fw *uc_fw)
continue;
bad:
- drm_err(&i915->drm, "Invalid FW blob order: %s r%u %s%d.%d.%d comes before %s r%u %s%d.%d.%d\n",
+ drm_err(&i915->drm, "Invalid %s blob order: %s r%u %s%d.%d.%d comes before %s r%u %s%d.%d.%d\n",
+ intel_uc_fw_type_repr(uc_fw->type),
intel_platform_name(fw_blobs[i - 1].p), fw_blobs[i - 1].rev,
fw_blobs[i - 1].blob.legacy ? "L" : "v",
fw_blobs[i - 1].blob.major,
@@ -365,6 +390,11 @@ static const char *__override_huc_firmware_path(struct drm_i915_private *i915)
return "";
}
+static const char *__override_gsc_firmware_path(struct drm_i915_private *i915)
+{
+ return i915->params.gsc_firmware_path;
+}
+
static void __uc_fw_user_override(struct drm_i915_private *i915, struct intel_uc_fw *uc_fw)
{
const char *path = NULL;
@@ -376,6 +406,9 @@ static void __uc_fw_user_override(struct drm_i915_private *i915, struct intel_uc
case INTEL_UC_FW_TYPE_HUC:
path = __override_huc_firmware_path(i915);
break;
+ case INTEL_UC_FW_TYPE_GSC:
+ path = __override_gsc_firmware_path(i915);
+ break;
}
if (unlikely(path)) {
@@ -429,47 +462,116 @@ static void __force_fw_fetch_failures(struct intel_uc_fw *uc_fw, int e)
uc_fw->user_overridden = user;
} else if (i915_inject_probe_error(i915, e)) {
/* require next major version */
- uc_fw->file_wanted.major_ver += 1;
- uc_fw->file_wanted.minor_ver = 0;
+ uc_fw->file_wanted.ver.major += 1;
+ uc_fw->file_wanted.ver.minor = 0;
uc_fw->user_overridden = user;
} else if (i915_inject_probe_error(i915, e)) {
/* require next minor version */
- uc_fw->file_wanted.minor_ver += 1;
+ uc_fw->file_wanted.ver.minor += 1;
uc_fw->user_overridden = user;
- } else if (uc_fw->file_wanted.major_ver &&
+ } else if (uc_fw->file_wanted.ver.major &&
i915_inject_probe_error(i915, e)) {
/* require prev major version */
- uc_fw->file_wanted.major_ver -= 1;
- uc_fw->file_wanted.minor_ver = 0;
+ uc_fw->file_wanted.ver.major -= 1;
+ uc_fw->file_wanted.ver.minor = 0;
uc_fw->user_overridden = user;
- } else if (uc_fw->file_wanted.minor_ver &&
+ } else if (uc_fw->file_wanted.ver.minor &&
i915_inject_probe_error(i915, e)) {
/* require prev minor version - hey, this should work! */
- uc_fw->file_wanted.minor_ver -= 1;
+ uc_fw->file_wanted.ver.minor -= 1;
uc_fw->user_overridden = user;
} else if (user && i915_inject_probe_error(i915, e)) {
/* officially unsupported platform */
- uc_fw->file_wanted.major_ver = 0;
- uc_fw->file_wanted.minor_ver = 0;
+ uc_fw->file_wanted.ver.major = 0;
+ uc_fw->file_wanted.ver.minor = 0;
uc_fw->user_overridden = true;
}
}
-static int check_gsc_manifest(const struct firmware *fw,
+static int check_gsc_manifest(struct intel_gt *gt,
+ const struct firmware *fw,
struct intel_uc_fw *uc_fw)
{
u32 *dw = (u32 *)fw->data;
- u32 version_hi = dw[HUC_GSC_VERSION_HI_DW];
- u32 version_lo = dw[HUC_GSC_VERSION_LO_DW];
+ u32 version_hi, version_lo;
+ size_t min_size;
- uc_fw->file_selected.major_ver = FIELD_GET(HUC_GSC_MAJOR_VER_HI_MASK, version_hi);
- uc_fw->file_selected.minor_ver = FIELD_GET(HUC_GSC_MINOR_VER_HI_MASK, version_hi);
- uc_fw->file_selected.patch_ver = FIELD_GET(HUC_GSC_PATCH_VER_LO_MASK, version_lo);
+ /* Check the size of the blob before examining buffer contents */
+ min_size = sizeof(u32) * (HUC_GSC_VERSION_LO_DW + 1);
+ if (unlikely(fw->size < min_size)) {
+ gt_warn(gt, "%s firmware %s: invalid size: %zu < %zu\n",
+ intel_uc_fw_type_repr(uc_fw->type), uc_fw->file_selected.path,
+ fw->size, min_size);
+ return -ENODATA;
+ }
+
+ version_hi = dw[HUC_GSC_VERSION_HI_DW];
+ version_lo = dw[HUC_GSC_VERSION_LO_DW];
+
+ uc_fw->file_selected.ver.major = FIELD_GET(HUC_GSC_MAJOR_VER_HI_MASK, version_hi);
+ uc_fw->file_selected.ver.minor = FIELD_GET(HUC_GSC_MINOR_VER_HI_MASK, version_hi);
+ uc_fw->file_selected.ver.patch = FIELD_GET(HUC_GSC_PATCH_VER_LO_MASK, version_lo);
return 0;
}
-static int check_ccs_header(struct drm_i915_private *i915,
+static void uc_unpack_css_version(struct intel_uc_fw_ver *ver, u32 css_value)
+{
+ /* Get version numbers from the CSS header */
+ ver->major = FIELD_GET(CSS_SW_VERSION_UC_MAJOR, css_value);
+ ver->minor = FIELD_GET(CSS_SW_VERSION_UC_MINOR, css_value);
+ ver->patch = FIELD_GET(CSS_SW_VERSION_UC_PATCH, css_value);
+}
+
+static void guc_read_css_info(struct intel_uc_fw *uc_fw, struct uc_css_header *css)
+{
+ struct intel_guc *guc = container_of(uc_fw, struct intel_guc, fw);
+
+ /*
+ * The GuC firmware includes an extra version number to specify the
+ * submission API level. This allows submission code to work with
+ * multiple GuC versions without having to know the absolute firmware
+ * version number (there are likely to be multiple firmware releases
+ * which all support the same submission API level).
+ *
+ * Note that the spec for the CSS header defines this version number
+ * as 'vf_version' as it was originally intended for virtualisation.
+ * However, it is applicable to native submission as well.
+ *
+ * Unfortunately, due to an oversight, this version number was only
+ * exposed in the CSS header from v70.6.0.
+ */
+ if (uc_fw->file_selected.ver.major >= 70) {
+ if (uc_fw->file_selected.ver.minor >= 6) {
+ /* v70.6.0 adds CSS header support */
+ uc_unpack_css_version(&guc->submission_version, css->vf_version);
+ } else if (uc_fw->file_selected.ver.minor >= 3) {
+ /* v70.3.0 introduced v1.1.0 */
+ guc->submission_version.major = 1;
+ guc->submission_version.minor = 1;
+ guc->submission_version.patch = 0;
+ } else {
+ /* v70.0.0 introduced v1.0.0 */
+ guc->submission_version.major = 1;
+ guc->submission_version.minor = 0;
+ guc->submission_version.patch = 0;
+ }
+ } else if (uc_fw->file_selected.ver.major >= 69) {
+ /* v69.0.0 introduced v0.10.0 */
+ guc->submission_version.major = 0;
+ guc->submission_version.minor = 10;
+ guc->submission_version.patch = 0;
+ } else {
+ /* Prior versions were v0.1.0 */
+ guc->submission_version.major = 0;
+ guc->submission_version.minor = 1;
+ guc->submission_version.patch = 0;
+ }
+
+ uc_fw->private_data_size = css->private_data_size;
+}
+
+static int check_ccs_header(struct intel_gt *gt,
const struct firmware *fw,
struct intel_uc_fw *uc_fw)
{
@@ -478,9 +580,9 @@ static int check_ccs_header(struct drm_i915_private *i915,
/* Check the size of the blob before examining buffer contents */
if (unlikely(fw->size < sizeof(struct uc_css_header))) {
- drm_warn(&i915->drm, "%s firmware %s: invalid size: %zu < %zu\n",
- intel_uc_fw_type_repr(uc_fw->type), uc_fw->file_selected.path,
- fw->size, sizeof(struct uc_css_header));
+ gt_warn(gt, "%s firmware %s: invalid size: %zu < %zu\n",
+ intel_uc_fw_type_repr(uc_fw->type), uc_fw->file_selected.path,
+ fw->size, sizeof(struct uc_css_header));
return -ENODATA;
}
@@ -490,10 +592,9 @@ static int check_ccs_header(struct drm_i915_private *i915,
size = (css->header_size_dw - css->key_size_dw - css->modulus_size_dw -
css->exponent_size_dw) * sizeof(u32);
if (unlikely(size != sizeof(struct uc_css_header))) {
- drm_warn(&i915->drm,
- "%s firmware %s: unexpected header size: %zu != %zu\n",
- intel_uc_fw_type_repr(uc_fw->type), uc_fw->file_selected.path,
- fw->size, sizeof(struct uc_css_header));
+ gt_warn(gt, "%s firmware %s: unexpected header size: %zu != %zu\n",
+ intel_uc_fw_type_repr(uc_fw->type), uc_fw->file_selected.path,
+ fw->size, sizeof(struct uc_css_header));
return -EPROTO;
}
@@ -506,31 +607,107 @@ static int check_ccs_header(struct drm_i915_private *i915,
/* At least, it should have header, uCode and RSA. Size of all three. */
size = sizeof(struct uc_css_header) + uc_fw->ucode_size + uc_fw->rsa_size;
if (unlikely(fw->size < size)) {
- drm_warn(&i915->drm, "%s firmware %s: invalid size: %zu < %zu\n",
- intel_uc_fw_type_repr(uc_fw->type), uc_fw->file_selected.path,
- fw->size, size);
+ gt_warn(gt, "%s firmware %s: invalid size: %zu < %zu\n",
+ intel_uc_fw_type_repr(uc_fw->type), uc_fw->file_selected.path,
+ fw->size, size);
return -ENOEXEC;
}
/* Sanity check whether this fw is not larger than whole WOPCM memory */
size = __intel_uc_fw_get_upload_size(uc_fw);
- if (unlikely(size >= i915->wopcm.size)) {
- drm_warn(&i915->drm, "%s firmware %s: invalid size: %zu > %zu\n",
- intel_uc_fw_type_repr(uc_fw->type), uc_fw->file_selected.path,
- size, (size_t)i915->wopcm.size);
+ if (unlikely(size >= gt->wopcm.size)) {
+ gt_warn(gt, "%s firmware %s: invalid size: %zu > %zu\n",
+ intel_uc_fw_type_repr(uc_fw->type), uc_fw->file_selected.path,
+ size, (size_t)gt->wopcm.size);
return -E2BIG;
}
- /* Get version numbers from the CSS header */
- uc_fw->file_selected.major_ver = FIELD_GET(CSS_SW_VERSION_UC_MAJOR,
- css->sw_version);
- uc_fw->file_selected.minor_ver = FIELD_GET(CSS_SW_VERSION_UC_MINOR,
- css->sw_version);
- uc_fw->file_selected.patch_ver = FIELD_GET(CSS_SW_VERSION_UC_PATCH,
- css->sw_version);
+ uc_unpack_css_version(&uc_fw->file_selected.ver, css->sw_version);
if (uc_fw->type == INTEL_UC_FW_TYPE_GUC)
- uc_fw->private_data_size = css->private_data_size;
+ guc_read_css_info(uc_fw, css);
+
+ return 0;
+}
+
+static bool is_ver_8bit(struct intel_uc_fw_ver *ver)
+{
+ return ver->major < 0xFF && ver->minor < 0xFF && ver->patch < 0xFF;
+}
+
+static int guc_check_version_range(struct intel_uc_fw *uc_fw)
+{
+ struct intel_guc *guc = container_of(uc_fw, struct intel_guc, fw);
+ struct intel_gt *gt = __uc_fw_to_gt(uc_fw);
+
+ /*
+ * GuC version number components are defined as being 8-bits.
+ * The submission code relies on this to optimise version comparison
+ * tests. So enforce the restriction here.
+ */
+
+ if (!is_ver_8bit(&uc_fw->file_selected.ver)) {
+ gt_warn(gt, "%s firmware: invalid file version: 0x%02X:%02X:%02X\n",
+ intel_uc_fw_type_repr(uc_fw->type),
+ uc_fw->file_selected.ver.major,
+ uc_fw->file_selected.ver.minor,
+ uc_fw->file_selected.ver.patch);
+ return -EINVAL;
+ }
+
+ if (!is_ver_8bit(&guc->submission_version)) {
+ gt_warn(gt, "%s firmware: invalid submit version: 0x%02X:%02X:%02X\n",
+ intel_uc_fw_type_repr(uc_fw->type),
+ guc->submission_version.major,
+ guc->submission_version.minor,
+ guc->submission_version.patch);
+ return -EINVAL;
+ }
+
+ return i915_inject_probe_error(gt->i915, -EINVAL);
+}
+
+static int check_fw_header(struct intel_gt *gt,
+ const struct firmware *fw,
+ struct intel_uc_fw *uc_fw)
+{
+ int err = 0;
+
+ /* GSC FW version is queried after the FW is loaded */
+ if (uc_fw->type == INTEL_UC_FW_TYPE_GSC)
+ return 0;
+
+ if (uc_fw->loaded_via_gsc)
+ err = check_gsc_manifest(gt, fw, uc_fw);
+ else
+ err = check_ccs_header(gt, fw, uc_fw);
+ if (err)
+ return err;
+
+ return 0;
+}
+
+static int try_firmware_load(struct intel_uc_fw *uc_fw, const struct firmware **fw)
+{
+ struct intel_gt *gt = __uc_fw_to_gt(uc_fw);
+ struct device *dev = gt->i915->drm.dev;
+ int err;
+
+ err = firmware_request_nowarn(fw, uc_fw->file_selected.path, dev);
+
+ if (err)
+ return err;
+
+ if ((*fw)->size > INTEL_UC_RSVD_GGTT_PER_FW) {
+ gt_err(gt, "%s firmware %s: size (%zuKB) exceeds max supported size (%uKB)\n",
+ intel_uc_fw_type_repr(uc_fw->type), uc_fw->file_selected.path,
+ (*fw)->size / SZ_1K, INTEL_UC_RSVD_GGTT_PER_FW / SZ_1K);
+
+ /* try to find another blob to load */
+ release_firmware(*fw);
+ *fw = NULL;
+ return -ENOENT;
+ }
return 0;
}
@@ -545,15 +722,15 @@ static int check_ccs_header(struct drm_i915_private *i915,
*/
int intel_uc_fw_fetch(struct intel_uc_fw *uc_fw)
{
- struct drm_i915_private *i915 = __uc_fw_to_gt(uc_fw)->i915;
+ struct intel_gt *gt = __uc_fw_to_gt(uc_fw);
+ struct drm_i915_private *i915 = gt->i915;
struct intel_uc_fw_file file_ideal;
- struct device *dev = i915->drm.dev;
struct drm_i915_gem_object *obj;
const struct firmware *fw = NULL;
bool old_ver = false;
int err;
- GEM_BUG_ON(!i915->wopcm.size);
+ GEM_BUG_ON(!gt->wopcm.size);
GEM_BUG_ON(!intel_uc_fw_is_enabled(uc_fw));
err = i915_inject_probe_error(i915, -ENXIO);
@@ -563,7 +740,7 @@ int intel_uc_fw_fetch(struct intel_uc_fw *uc_fw)
__force_fw_fetch_failures(uc_fw, -EINVAL);
__force_fw_fetch_failures(uc_fw, -ESTALE);
- err = firmware_request_nowarn(&fw, uc_fw->file_selected.path, dev);
+ err = try_firmware_load(uc_fw, &fw);
memcpy(&file_ideal, &uc_fw->file_wanted, sizeof(file_ideal));
/* Any error is terminal if overriding. Don't bother searching for older versions */
@@ -586,50 +763,51 @@ int intel_uc_fw_fetch(struct intel_uc_fw *uc_fw)
break;
}
- err = firmware_request_nowarn(&fw, uc_fw->file_selected.path, dev);
+ err = try_firmware_load(uc_fw, &fw);
}
if (err)
goto fail;
- if (uc_fw->loaded_via_gsc)
- err = check_gsc_manifest(fw, uc_fw);
- else
- err = check_ccs_header(i915, fw, uc_fw);
+ err = check_fw_header(gt, fw, uc_fw);
if (err)
goto fail;
- if (uc_fw->file_wanted.major_ver) {
+ if (uc_fw->type == INTEL_UC_FW_TYPE_GUC) {
+ err = guc_check_version_range(uc_fw);
+ if (err)
+ goto fail;
+ }
+
+ if (uc_fw->file_wanted.ver.major && uc_fw->file_selected.ver.major) {
/* Check the file's major version was as it claimed */
- if (uc_fw->file_selected.major_ver != uc_fw->file_wanted.major_ver) {
- drm_notice(&i915->drm, "%s firmware %s: unexpected version: %u.%u != %u.%u\n",
- intel_uc_fw_type_repr(uc_fw->type), uc_fw->file_selected.path,
- uc_fw->file_selected.major_ver, uc_fw->file_selected.minor_ver,
- uc_fw->file_wanted.major_ver, uc_fw->file_wanted.minor_ver);
+ if (uc_fw->file_selected.ver.major != uc_fw->file_wanted.ver.major) {
+ gt_notice(gt, "%s firmware %s: unexpected version: %u.%u != %u.%u\n",
+ intel_uc_fw_type_repr(uc_fw->type), uc_fw->file_selected.path,
+ uc_fw->file_selected.ver.major, uc_fw->file_selected.ver.minor,
+ uc_fw->file_wanted.ver.major, uc_fw->file_wanted.ver.minor);
if (!intel_uc_fw_is_overridden(uc_fw)) {
err = -ENOEXEC;
goto fail;
}
} else {
- if (uc_fw->file_selected.minor_ver < uc_fw->file_wanted.minor_ver)
+ if (uc_fw->file_selected.ver.minor < uc_fw->file_wanted.ver.minor)
old_ver = true;
}
}
- if (old_ver) {
+ if (old_ver && uc_fw->file_selected.ver.major) {
/* Preserve the version that was really wanted */
memcpy(&uc_fw->file_wanted, &file_ideal, sizeof(uc_fw->file_wanted));
- drm_notice(&i915->drm,
- "%s firmware %s (%d.%d) is recommended, but only %s (%d.%d) was found\n",
- intel_uc_fw_type_repr(uc_fw->type),
- uc_fw->file_wanted.path,
- uc_fw->file_wanted.major_ver, uc_fw->file_wanted.minor_ver,
- uc_fw->file_selected.path,
- uc_fw->file_selected.major_ver, uc_fw->file_selected.minor_ver);
- drm_info(&i915->drm,
- "Consider updating your linux-firmware pkg or downloading from %s\n",
- INTEL_UC_FIRMWARE_URL);
+ gt_notice(gt, "%s firmware %s (%d.%d) is recommended, but only %s (%d.%d) was found\n",
+ intel_uc_fw_type_repr(uc_fw->type),
+ uc_fw->file_wanted.path,
+ uc_fw->file_wanted.ver.major, uc_fw->file_wanted.ver.minor,
+ uc_fw->file_selected.path,
+ uc_fw->file_selected.ver.major, uc_fw->file_selected.ver.minor);
+ gt_info(gt, "Consider updating your linux-firmware pkg or downloading from %s\n",
+ INTEL_UC_FIRMWARE_URL);
}
if (HAS_LMEM(i915)) {
@@ -657,10 +835,10 @@ fail:
INTEL_UC_FIRMWARE_MISSING :
INTEL_UC_FIRMWARE_ERROR);
- i915_probe_error(i915, "%s firmware %s: fetch failed with error %d\n",
- intel_uc_fw_type_repr(uc_fw->type), uc_fw->file_selected.path, err);
- drm_info(&i915->drm, "%s firmware(s) can be downloaded from %s\n",
- intel_uc_fw_type_repr(uc_fw->type), INTEL_UC_FIRMWARE_URL);
+ gt_probe_error(gt, "%s firmware %s: fetch failed %pe\n",
+ intel_uc_fw_type_repr(uc_fw->type), uc_fw->file_selected.path, ERR_PTR(err));
+ gt_info(gt, "%s firmware(s) can be downloaded from %s\n",
+ intel_uc_fw_type_repr(uc_fw->type), INTEL_UC_FIRMWARE_URL);
release_firmware(fw); /* OK even if fw is NULL */
return err;
@@ -668,14 +846,30 @@ fail:
static u32 uc_fw_ggtt_offset(struct intel_uc_fw *uc_fw)
{
- struct i915_ggtt *ggtt = __uc_fw_to_gt(uc_fw)->ggtt;
+ struct intel_gt *gt = __uc_fw_to_gt(uc_fw);
+ struct i915_ggtt *ggtt = gt->ggtt;
struct drm_mm_node *node = &ggtt->uc_fw;
+ u32 offset = uc_fw->type * INTEL_UC_RSVD_GGTT_PER_FW;
+
+ /*
+ * The media GT shares the GGTT with the root GT, which means that
+ * we need to use different offsets for the binaries on the media GT.
+ * To keep the math simple, we use 8MB for the root tile and 8MB for
+ * the media one. This will need to be updated if we ever have more
+ * than 1 media GT.
+ */
+ BUILD_BUG_ON(INTEL_UC_FW_NUM_TYPES * INTEL_UC_RSVD_GGTT_PER_FW > SZ_8M);
+ GEM_BUG_ON(gt->type == GT_MEDIA && gt->info.id > 1);
+ if (gt->type == GT_MEDIA)
+ offset += SZ_8M;
GEM_BUG_ON(!drm_mm_node_allocated(node));
GEM_BUG_ON(upper_32_bits(node->start));
GEM_BUG_ON(upper_32_bits(node->start + node->size - 1));
+ GEM_BUG_ON(offset + uc_fw->obj->base.size > node->size);
+ GEM_BUG_ON(uc_fw->obj->base.size > INTEL_UC_RSVD_GGTT_PER_FW);
- return lower_32_bits(node->start);
+ return lower_32_bits(node->start + offset);
}
static void uc_fw_bind_ggtt(struct intel_uc_fw *uc_fw)
@@ -690,7 +884,6 @@ static void uc_fw_bind_ggtt(struct intel_uc_fw *uc_fw)
dummy->bi.pages = obj->mm.pages;
GEM_BUG_ON(!i915_gem_object_has_pinned_pages(obj));
- GEM_BUG_ON(dummy->node_size > ggtt->uc_fw.size);
/* uc_fw->obj cache domains were not controlled across suspend */
if (i915_gem_object_has_struct_page(obj))
@@ -751,9 +944,9 @@ static int uc_fw_xfer(struct intel_uc_fw *uc_fw, u32 dst_offset, u32 dma_flags)
/* Wait for DMA to finish */
ret = intel_wait_for_register_fw(uncore, DMA_CTRL, START_DMA, 0, 100);
if (ret)
- drm_err(&gt->i915->drm, "DMA for %s fw failed, DMA_CTRL=%u\n",
- intel_uc_fw_type_repr(uc_fw->type),
- intel_uncore_read_fw(uncore, DMA_CTRL));
+ gt_err(gt, "DMA for %s fw failed, DMA_CTRL=%u\n",
+ intel_uc_fw_type_repr(uc_fw->type),
+ intel_uncore_read_fw(uncore, DMA_CTRL));
/* Disable the bits once DMA is over */
intel_uncore_write_fw(uncore, DMA_CTRL, _MASKED_BIT_DISABLE(dma_flags));
@@ -763,6 +956,19 @@ static int uc_fw_xfer(struct intel_uc_fw *uc_fw, u32 dst_offset, u32 dma_flags)
return ret;
}
+int intel_uc_fw_mark_load_failed(struct intel_uc_fw *uc_fw, int err)
+{
+ struct intel_gt *gt = __uc_fw_to_gt(uc_fw);
+
+ GEM_BUG_ON(!intel_uc_fw_is_loadable(uc_fw));
+
+ gt_probe_error(gt, "Failed to load %s firmware %s %pe\n",
+ intel_uc_fw_type_repr(uc_fw->type), uc_fw->file_selected.path, ERR_PTR(err));
+ intel_uc_fw_change_status(uc_fw, INTEL_UC_FIRMWARE_LOAD_FAIL);
+
+ return err;
+}
+
/**
* intel_uc_fw_upload - load uC firmware using custom loader
* @uc_fw: uC firmware
@@ -799,11 +1005,7 @@ int intel_uc_fw_upload(struct intel_uc_fw *uc_fw, u32 dst_offset, u32 dma_flags)
return 0;
fail:
- i915_probe_error(gt->i915, "Failed to load %s firmware %s (%d)\n",
- intel_uc_fw_type_repr(uc_fw->type), uc_fw->file_selected.path,
- err);
- intel_uc_fw_change_status(uc_fw, INTEL_UC_FIRMWARE_LOAD_FAIL);
- return err;
+ return intel_uc_fw_mark_load_failed(uc_fw, err);
}
static inline bool uc_fw_need_rsa_in_memory(struct intel_uc_fw *uc_fw)
@@ -887,15 +1089,15 @@ int intel_uc_fw_init(struct intel_uc_fw *uc_fw)
err = i915_gem_object_pin_pages_unlocked(uc_fw->obj);
if (err) {
- DRM_DEBUG_DRIVER("%s fw pin-pages err=%d\n",
- intel_uc_fw_type_repr(uc_fw->type), err);
+ gt_dbg(__uc_fw_to_gt(uc_fw), "%s fw pin-pages failed %pe\n",
+ intel_uc_fw_type_repr(uc_fw->type), ERR_PTR(err));
goto out;
}
err = uc_fw_rsa_data_create(uc_fw);
if (err) {
- DRM_DEBUG_DRIVER("%s fw rsa data creation failed, err=%d\n",
- intel_uc_fw_type_repr(uc_fw->type), err);
+ gt_dbg(__uc_fw_to_gt(uc_fw), "%s fw rsa data creation failed %pe\n",
+ intel_uc_fw_type_repr(uc_fw->type), ERR_PTR(err));
goto out_unpin;
}
@@ -904,7 +1106,6 @@ int intel_uc_fw_init(struct intel_uc_fw *uc_fw)
out_unpin:
i915_gem_object_unpin_pages(uc_fw->obj);
out:
- intel_uc_fw_change_status(uc_fw, INTEL_UC_FIRMWARE_INIT_FAIL);
return err;
}
@@ -1018,7 +1219,7 @@ size_t intel_uc_fw_copy_rsa(struct intel_uc_fw *uc_fw, void *dst, u32 max_len)
*/
void intel_uc_fw_dump(const struct intel_uc_fw *uc_fw, struct drm_printer *p)
{
- u32 ver_sel, ver_want;
+ bool got_wanted;
drm_printf(p, "%s firmware: %s\n",
intel_uc_fw_type_repr(uc_fw->type), uc_fw->file_selected.path);
@@ -1027,25 +1228,32 @@ void intel_uc_fw_dump(const struct intel_uc_fw *uc_fw, struct drm_printer *p)
intel_uc_fw_type_repr(uc_fw->type), uc_fw->file_wanted.path);
drm_printf(p, "\tstatus: %s\n",
intel_uc_fw_status_repr(uc_fw->status));
- ver_sel = MAKE_UC_VER(uc_fw->file_selected.major_ver,
- uc_fw->file_selected.minor_ver,
- uc_fw->file_selected.patch_ver);
- ver_want = MAKE_UC_VER(uc_fw->file_wanted.major_ver,
- uc_fw->file_wanted.minor_ver,
- uc_fw->file_wanted.patch_ver);
- if (ver_sel < ver_want)
+
+ if (uc_fw->file_selected.ver.major < uc_fw->file_wanted.ver.major)
+ got_wanted = false;
+ else if ((uc_fw->file_selected.ver.major == uc_fw->file_wanted.ver.major) &&
+ (uc_fw->file_selected.ver.minor < uc_fw->file_wanted.ver.minor))
+ got_wanted = false;
+ else if ((uc_fw->file_selected.ver.major == uc_fw->file_wanted.ver.major) &&
+ (uc_fw->file_selected.ver.minor == uc_fw->file_wanted.ver.minor) &&
+ (uc_fw->file_selected.ver.patch < uc_fw->file_wanted.ver.patch))
+ got_wanted = false;
+ else
+ got_wanted = true;
+
+ if (!got_wanted)
drm_printf(p, "\tversion: wanted %u.%u.%u, found %u.%u.%u\n",
- uc_fw->file_wanted.major_ver,
- uc_fw->file_wanted.minor_ver,
- uc_fw->file_wanted.patch_ver,
- uc_fw->file_selected.major_ver,
- uc_fw->file_selected.minor_ver,
- uc_fw->file_selected.patch_ver);
+ uc_fw->file_wanted.ver.major,
+ uc_fw->file_wanted.ver.minor,
+ uc_fw->file_wanted.ver.patch,
+ uc_fw->file_selected.ver.major,
+ uc_fw->file_selected.ver.minor,
+ uc_fw->file_selected.ver.patch);
else
drm_printf(p, "\tversion: found %u.%u.%u\n",
- uc_fw->file_selected.major_ver,
- uc_fw->file_selected.minor_ver,
- uc_fw->file_selected.patch_ver);
+ uc_fw->file_selected.ver.major,
+ uc_fw->file_selected.ver.minor,
+ uc_fw->file_selected.ver.patch);
drm_printf(p, "\tuCode: %u bytes\n", uc_fw->ucode_size);
drm_printf(p, "\tRSA: %u bytes\n", uc_fw->rsa_size);
}
diff --git a/drivers/gpu/drm/i915/gt/uc/intel_uc_fw.h b/drivers/gpu/drm/i915/gt/uc/intel_uc_fw.h
index cb586f7df270..6ba00e6b3975 100644
--- a/drivers/gpu/drm/i915/gt/uc/intel_uc_fw.h
+++ b/drivers/gpu/drm/i915/gt/uc/intel_uc_fw.h
@@ -6,6 +6,7 @@
#ifndef _INTEL_UC_FW_H_
#define _INTEL_UC_FW_H_
+#include <linux/sizes.h>
#include <linux/types.h>
#include "intel_uc_fw_abi.h"
#include "intel_device_info.h"
@@ -60,9 +61,16 @@ enum intel_uc_fw_status {
enum intel_uc_fw_type {
INTEL_UC_FW_TYPE_GUC = 0,
- INTEL_UC_FW_TYPE_HUC
+ INTEL_UC_FW_TYPE_HUC,
+ INTEL_UC_FW_TYPE_GSC,
+};
+#define INTEL_UC_FW_NUM_TYPES 3
+
+struct intel_uc_fw_ver {
+ u32 major;
+ u32 minor;
+ u32 patch;
};
-#define INTEL_UC_FW_NUM_TYPES 2
/*
* The firmware build process will generate a version header file with major and
@@ -71,9 +79,7 @@ enum intel_uc_fw_type {
*/
struct intel_uc_fw_file {
const char *path;
- u16 major_ver;
- u16 minor_ver;
- u16 patch_ver;
+ struct intel_uc_fw_ver ver;
};
/*
@@ -109,10 +115,18 @@ struct intel_uc_fw {
bool loaded_via_gsc;
};
-#define MAKE_UC_VER(maj, min, pat) ((pat) | ((min) << 8) | ((maj) << 16))
-#define GET_UC_VER(uc) (MAKE_UC_VER((uc)->fw.file_selected.major_ver, \
- (uc)->fw.file_selected.minor_ver, \
- (uc)->fw.file_selected.patch_ver))
+/*
+ * When we load the uC binaries, we pin them in a reserved section at the top of
+ * the GGTT, which is ~18 MBs. On multi-GT systems where the GTs share the GGTT,
+ * we also need to make sure that each binary is pinned to a unique location
+ * during load, because the different GT can go through the FW load at the same
+ * time (see uc_fw_ggtt_offset() for details).
+ * Given that the available space is much greater than what is required by the
+ * binaries, to keep things simple instead of dynamically partitioning the
+ * reserved section to make space for all the blobs we can just reserve a static
+ * chunk for each binary.
+ */
+#define INTEL_UC_RSVD_GGTT_PER_FW SZ_2M
#ifdef CONFIG_DRM_I915_DEBUG_GUC
void intel_uc_fw_change_status(struct intel_uc_fw *uc_fw,
@@ -191,6 +205,8 @@ static inline const char *intel_uc_fw_type_repr(enum intel_uc_fw_type type)
return "GuC";
case INTEL_UC_FW_TYPE_HUC:
return "HuC";
+ case INTEL_UC_FW_TYPE_GSC:
+ return "GSC";
}
return "uC";
}
@@ -273,6 +289,7 @@ int intel_uc_fw_upload(struct intel_uc_fw *uc_fw, u32 offset, u32 dma_flags);
int intel_uc_fw_init(struct intel_uc_fw *uc_fw);
void intel_uc_fw_fini(struct intel_uc_fw *uc_fw);
size_t intel_uc_fw_copy_rsa(struct intel_uc_fw *uc_fw, void *dst, u32 max_len);
+int intel_uc_fw_mark_load_failed(struct intel_uc_fw *uc_fw, int err);
void intel_uc_fw_dump(const struct intel_uc_fw *uc_fw, struct drm_printer *p);
#endif
diff --git a/drivers/gpu/drm/i915/gt/uc/intel_uc_fw_abi.h b/drivers/gpu/drm/i915/gt/uc/intel_uc_fw_abi.h
index 7a411178bdbf..646fa8aa6cf1 100644
--- a/drivers/gpu/drm/i915/gt/uc/intel_uc_fw_abi.h
+++ b/drivers/gpu/drm/i915/gt/uc/intel_uc_fw_abi.h
@@ -74,7 +74,8 @@ struct uc_css_header {
#define CSS_SW_VERSION_UC_MAJOR (0xFF << 16)
#define CSS_SW_VERSION_UC_MINOR (0xFF << 8)
#define CSS_SW_VERSION_UC_PATCH (0xFF << 0)
- u32 reserved0[13];
+ u32 vf_version;
+ u32 reserved0[12];
union {
u32 private_data_size; /* only applies to GuC */
u32 reserved1;
diff --git a/drivers/gpu/drm/i915/gt/uc/selftest_guc.c b/drivers/gpu/drm/i915/gt/uc/selftest_guc.c
index e28518fe8b90..1fd760539f77 100644
--- a/drivers/gpu/drm/i915/gt/uc/selftest_guc.c
+++ b/drivers/gpu/drm/i915/gt/uc/selftest_guc.c
@@ -3,6 +3,8 @@
* Copyright �� 2021 Intel Corporation
*/
+#include "gt/intel_gt_print.h"
+#include "intel_guc_print.h"
#include "selftests/igt_spinner.h"
#include "selftests/intel_scheduler_helpers.h"
@@ -65,7 +67,7 @@ static int intel_guc_scrub_ctbs(void *arg)
ce = intel_context_create(engine);
if (IS_ERR(ce)) {
ret = PTR_ERR(ce);
- drm_err(&gt->i915->drm, "Failed to create context, %d: %d\n", i, ret);
+ gt_err(gt, "Failed to create context %d: %pe\n", i, ce);
goto err;
}
@@ -86,7 +88,7 @@ static int intel_guc_scrub_ctbs(void *arg)
if (IS_ERR(rq)) {
ret = PTR_ERR(rq);
- drm_err(&gt->i915->drm, "Failed to create request, %d: %d\n", i, ret);
+ gt_err(gt, "Failed to create request %d: %pe\n", i, rq);
goto err;
}
@@ -96,7 +98,7 @@ static int intel_guc_scrub_ctbs(void *arg)
for (i = 0; i < 3; ++i) {
ret = i915_request_wait(last[i], 0, HZ);
if (ret < 0) {
- drm_err(&gt->i915->drm, "Last request failed to complete: %d\n", ret);
+ gt_err(gt, "Last request failed to complete: %pe\n", ERR_PTR(ret));
goto err;
}
i915_request_put(last[i]);
@@ -113,7 +115,7 @@ static int intel_guc_scrub_ctbs(void *arg)
/* GT will not idle if G2H are lost */
ret = intel_gt_wait_for_idle(gt, HZ);
if (ret < 0) {
- drm_err(&gt->i915->drm, "GT failed to idle: %d\n", ret);
+ gt_err(gt, "GT failed to idle: %pe\n", ERR_PTR(ret));
goto err;
}
@@ -153,7 +155,7 @@ static int intel_guc_steal_guc_ids(void *arg)
ce = kcalloc(GUC_MAX_CONTEXT_ID, sizeof(*ce), GFP_KERNEL);
if (!ce) {
- drm_err(&gt->i915->drm, "Context array allocation failed\n");
+ guc_err(guc, "Context array allocation failed\n");
return -ENOMEM;
}
@@ -166,25 +168,25 @@ static int intel_guc_steal_guc_ids(void *arg)
ce[context_index] = intel_context_create(engine);
if (IS_ERR(ce[context_index])) {
ret = PTR_ERR(ce[context_index]);
+ guc_err(guc, "Failed to create context: %pe\n", ce[context_index]);
ce[context_index] = NULL;
- drm_err(&gt->i915->drm, "Failed to create context: %d\n", ret);
goto err_wakeref;
}
ret = igt_spinner_init(&spin, engine->gt);
if (ret) {
- drm_err(&gt->i915->drm, "Failed to create spinner: %d\n", ret);
+ guc_err(guc, "Failed to create spinner: %pe\n", ERR_PTR(ret));
goto err_contexts;
}
spin_rq = igt_spinner_create_request(&spin, ce[context_index],
MI_ARB_CHECK);
if (IS_ERR(spin_rq)) {
ret = PTR_ERR(spin_rq);
- drm_err(&gt->i915->drm, "Failed to create spinner request: %d\n", ret);
+ guc_err(guc, "Failed to create spinner request: %pe\n", spin_rq);
goto err_contexts;
}
ret = request_add_spin(spin_rq, &spin);
if (ret) {
- drm_err(&gt->i915->drm, "Failed to add Spinner request: %d\n", ret);
+ guc_err(guc, "Failed to add Spinner request: %pe\n", ERR_PTR(ret));
goto err_spin_rq;
}
@@ -192,9 +194,9 @@ static int intel_guc_steal_guc_ids(void *arg)
while (ret != -EAGAIN) {
ce[++context_index] = intel_context_create(engine);
if (IS_ERR(ce[context_index])) {
- ret = PTR_ERR(ce[context_index--]);
- ce[context_index] = NULL;
- drm_err(&gt->i915->drm, "Failed to create context: %d\n", ret);
+ ret = PTR_ERR(ce[context_index]);
+ guc_err(guc, "Failed to create context: %pe\n", ce[context_index]);
+ ce[context_index--] = NULL;
goto err_spin_rq;
}
@@ -203,8 +205,8 @@ static int intel_guc_steal_guc_ids(void *arg)
ret = PTR_ERR(rq);
rq = NULL;
if (ret != -EAGAIN) {
- drm_err(&gt->i915->drm, "Failed to create request, %d: %d\n",
- context_index, ret);
+ guc_err(guc, "Failed to create request %d: %pe\n",
+ context_index, ERR_PTR(ret));
goto err_spin_rq;
}
} else {
@@ -218,7 +220,7 @@ static int intel_guc_steal_guc_ids(void *arg)
igt_spinner_end(&spin);
ret = intel_selftest_wait_for_rq(spin_rq);
if (ret) {
- drm_err(&gt->i915->drm, "Spin request failed to complete: %d\n", ret);
+ guc_err(guc, "Spin request failed to complete: %pe\n", ERR_PTR(ret));
i915_request_put(last);
goto err_spin_rq;
}
@@ -230,7 +232,7 @@ static int intel_guc_steal_guc_ids(void *arg)
ret = i915_request_wait(last, 0, HZ * 30);
i915_request_put(last);
if (ret < 0) {
- drm_err(&gt->i915->drm, "Last request failed to complete: %d\n", ret);
+ guc_err(guc, "Last request failed to complete: %pe\n", ERR_PTR(ret));
goto err_spin_rq;
}
@@ -238,7 +240,7 @@ static int intel_guc_steal_guc_ids(void *arg)
rq = nop_user_request(ce[context_index], NULL);
if (IS_ERR(rq)) {
ret = PTR_ERR(rq);
- drm_err(&gt->i915->drm, "Failed to steal guc_id, %d: %d\n", context_index, ret);
+ guc_err(guc, "Failed to steal guc_id %d: %pe\n", context_index, rq);
goto err_spin_rq;
}
@@ -246,20 +248,20 @@ static int intel_guc_steal_guc_ids(void *arg)
ret = i915_request_wait(rq, 0, HZ);
i915_request_put(rq);
if (ret < 0) {
- drm_err(&gt->i915->drm, "Request with stolen guc_id failed to complete: %d\n", ret);
+ guc_err(guc, "Request with stolen guc_id failed to complete: %pe\n", ERR_PTR(ret));
goto err_spin_rq;
}
/* Wait for idle */
ret = intel_gt_wait_for_idle(gt, HZ * 30);
if (ret < 0) {
- drm_err(&gt->i915->drm, "GT failed to idle: %d\n", ret);
+ guc_err(guc, "GT failed to idle: %pe\n", ERR_PTR(ret));
goto err_spin_rq;
}
/* Verify a guc_id was stolen */
if (guc->number_guc_id_stolen == number_guc_id_stolen) {
- drm_err(&gt->i915->drm, "No guc_id was stolen");
+ guc_err(guc, "No guc_id was stolen");
ret = -EINVAL;
} else {
ret = 0;
diff --git a/drivers/gpu/drm/i915/gt/uc/selftest_guc_hangcheck.c b/drivers/gpu/drm/i915/gt/uc/selftest_guc_hangcheck.c
index 01f8cd3c3134..34b5d952e2bc 100644
--- a/drivers/gpu/drm/i915/gt/uc/selftest_guc_hangcheck.c
+++ b/drivers/gpu/drm/i915/gt/uc/selftest_guc_hangcheck.c
@@ -3,6 +3,7 @@
* Copyright © 2022 Intel Corporation
*/
+#include "gt/intel_gt_print.h"
#include "selftests/igt_spinner.h"
#include "selftests/igt_reset.h"
#include "selftests/intel_scheduler_helpers.h"
@@ -35,39 +36,41 @@ static int intel_hang_guc(void *arg)
struct i915_request *rq;
intel_wakeref_t wakeref;
struct i915_gpu_error *global = &gt->i915->gpu_error;
- struct intel_engine_cs *engine;
+ struct intel_engine_cs *engine = intel_selftest_find_any_engine(gt);
unsigned int reset_count;
u32 guc_status;
u32 old_beat;
+ if (!engine)
+ return 0;
+
ctx = kernel_context(gt->i915, NULL);
if (IS_ERR(ctx)) {
- drm_err(&gt->i915->drm, "Failed get kernel context: %ld\n", PTR_ERR(ctx));
+ gt_err(gt, "Failed get kernel context: %pe\n", ctx);
return PTR_ERR(ctx);
}
wakeref = intel_runtime_pm_get(gt->uncore->rpm);
- ce = intel_context_create(gt->engine[BCS0]);
+ ce = intel_context_create(engine);
if (IS_ERR(ce)) {
ret = PTR_ERR(ce);
- drm_err(&gt->i915->drm, "Failed to create spinner request: %d\n", ret);
+ gt_err(gt, "Failed to create spinner request: %pe\n", ce);
goto err;
}
- engine = ce->engine;
reset_count = i915_reset_count(global);
old_beat = engine->props.heartbeat_interval_ms;
ret = intel_engine_set_heartbeat(engine, BEAT_INTERVAL);
if (ret) {
- drm_err(&gt->i915->drm, "Failed to boost heatbeat interval: %d\n", ret);
+ gt_err(gt, "Failed to boost heatbeat interval: %pe\n", ERR_PTR(ret));
goto err;
}
ret = igt_spinner_init(&spin, engine->gt);
if (ret) {
- drm_err(&gt->i915->drm, "Failed to create spinner: %d\n", ret);
+ gt_err(gt, "Failed to create spinner: %pe\n", ERR_PTR(ret));
goto err;
}
@@ -75,28 +78,28 @@ static int intel_hang_guc(void *arg)
intel_context_put(ce);
if (IS_ERR(rq)) {
ret = PTR_ERR(rq);
- drm_err(&gt->i915->drm, "Failed to create spinner request: %d\n", ret);
+ gt_err(gt, "Failed to create spinner request: %pe\n", rq);
goto err_spin;
}
ret = request_add_spin(rq, &spin);
if (ret) {
i915_request_put(rq);
- drm_err(&gt->i915->drm, "Failed to add Spinner request: %d\n", ret);
+ gt_err(gt, "Failed to add Spinner request: %pe\n", ERR_PTR(ret));
goto err_spin;
}
ret = intel_reset_guc(gt);
if (ret) {
i915_request_put(rq);
- drm_err(&gt->i915->drm, "Failed to reset GuC, ret = %d\n", ret);
+ gt_err(gt, "Failed to reset GuC: %pe\n", ERR_PTR(ret));
goto err_spin;
}
guc_status = intel_uncore_read(gt->uncore, GUC_STATUS);
if (!(guc_status & GS_MIA_IN_RESET)) {
i915_request_put(rq);
- drm_err(&gt->i915->drm, "GuC failed to reset: status = 0x%08X\n", guc_status);
+ gt_err(gt, "Failed to reset GuC: status = 0x%08X\n", guc_status);
ret = -EIO;
goto err_spin;
}
@@ -105,12 +108,12 @@ static int intel_hang_guc(void *arg)
ret = intel_selftest_wait_for_rq(rq);
i915_request_put(rq);
if (ret) {
- drm_err(&gt->i915->drm, "Request failed to complete: %d\n", ret);
+ gt_err(gt, "Request failed to complete: %pe\n", ERR_PTR(ret));
goto err_spin;
}
if (i915_reset_count(global) == reset_count) {
- drm_err(&gt->i915->drm, "Failed to record a GPU reset\n");
+ gt_err(gt, "Failed to record a GPU reset\n");
ret = -EINVAL;
goto err_spin;
}
@@ -130,7 +133,7 @@ err_spin:
ret = intel_selftest_wait_for_rq(rq);
i915_request_put(rq);
if (ret) {
- drm_err(&gt->i915->drm, "No-op failed to complete: %d\n", ret);
+ gt_err(gt, "No-op failed to complete: %pe\n", ERR_PTR(ret));
goto err;
}
}
diff --git a/drivers/gpu/drm/i915/gt/uc/selftest_guc_multi_lrc.c b/drivers/gpu/drm/i915/gt/uc/selftest_guc_multi_lrc.c
index d17982c36d25..a40e7c32e613 100644
--- a/drivers/gpu/drm/i915/gt/uc/selftest_guc_multi_lrc.c
+++ b/drivers/gpu/drm/i915/gt/uc/selftest_guc_multi_lrc.c
@@ -3,6 +3,7 @@
* Copyright �� 2019 Intel Corporation
*/
+#include "gt/intel_gt_print.h"
#include "selftests/igt_spinner.h"
#include "selftests/igt_reset.h"
#include "selftests/intel_scheduler_helpers.h"
@@ -115,30 +116,30 @@ static int __intel_guc_multi_lrc_basic(struct intel_gt *gt, unsigned int class)
parent = multi_lrc_create_parent(gt, class, 0);
if (IS_ERR(parent)) {
- drm_err(&gt->i915->drm, "Failed creating contexts: %ld", PTR_ERR(parent));
+ gt_err(gt, "Failed creating contexts: %pe\n", parent);
return PTR_ERR(parent);
} else if (!parent) {
- drm_dbg(&gt->i915->drm, "Not enough engines in class: %d", class);
+ gt_dbg(gt, "Not enough engines in class: %d\n", class);
return 0;
}
rq = multi_lrc_nop_request(parent);
if (IS_ERR(rq)) {
ret = PTR_ERR(rq);
- drm_err(&gt->i915->drm, "Failed creating requests: %d", ret);
+ gt_err(gt, "Failed creating requests: %pe\n", rq);
goto out;
}
ret = intel_selftest_wait_for_rq(rq);
if (ret)
- drm_err(&gt->i915->drm, "Failed waiting on request: %d", ret);
+ gt_err(gt, "Failed waiting on request: %pe\n", ERR_PTR(ret));
i915_request_put(rq);
if (ret >= 0) {
ret = intel_gt_wait_for_idle(gt, HZ * 5);
if (ret < 0)
- drm_err(&gt->i915->drm, "GT failed to idle: %d\n", ret);
+ gt_err(gt, "GT failed to idle: %pe\n", ERR_PTR(ret));
}
out:
diff --git a/drivers/gpu/drm/i915/gvt/cfg_space.c b/drivers/gpu/drm/i915/gvt/cfg_space.c
index eef3bba8a41b..9bafac1eaf48 100644
--- a/drivers/gpu/drm/i915/gvt/cfg_space.c
+++ b/drivers/gpu/drm/i915/gvt/cfg_space.c
@@ -244,7 +244,7 @@ static void emulate_pci_bar_write(struct intel_vgpu *vgpu, unsigned int offset,
}
/**
- * intel_vgpu_emulate_cfg_read - emulate vGPU configuration space write
+ * intel_vgpu_emulate_cfg_write - emulate vGPU configuration space write
* @vgpu: target vgpu
* @offset: offset
* @p_data: write data ptr
@@ -354,9 +354,9 @@ void intel_vgpu_init_cfg_space(struct intel_vgpu *vgpu,
memset(vgpu_cfg_space(vgpu) + INTEL_GVT_PCI_OPREGION, 0, 4);
vgpu->cfg_space.bar[INTEL_GVT_PCI_BAR_GTTMMIO].size =
- pci_resource_len(pdev, GTTMMADR_BAR);
+ pci_resource_len(pdev, GEN4_GTTMMADR_BAR);
vgpu->cfg_space.bar[INTEL_GVT_PCI_BAR_APERTURE].size =
- pci_resource_len(pdev, GTT_APERTURE_BAR);
+ pci_resource_len(pdev, GEN4_GMADR_BAR);
memset(vgpu_cfg_space(vgpu) + PCI_ROM_ADDRESS, 0, 4);
diff --git a/drivers/gpu/drm/i915/gvt/cmd_parser.c b/drivers/gpu/drm/i915/gvt/cmd_parser.c
index de13f102d4fd..3c4ae1da0d41 100644
--- a/drivers/gpu/drm/i915/gvt/cmd_parser.c
+++ b/drivers/gpu/drm/i915/gvt/cmd_parser.c
@@ -37,6 +37,7 @@
#include <linux/slab.h>
#include "i915_drv.h"
+#include "i915_reg.h"
#include "gt/intel_engine_regs.h"
#include "gt/intel_gpu_commands.h"
#include "gt/intel_gt_regs.h"
@@ -48,6 +49,7 @@
#include "i915_pvinfo.h"
#include "trace.h"
+#include "display/intel_display.h"
#include "gem/i915_gem_context.h"
#include "gem/i915_gem_pm.h"
#include "gt/intel_context.h"
diff --git a/drivers/gpu/drm/i915/gvt/debugfs.c b/drivers/gpu/drm/i915/gvt/debugfs.c
index 9f1c209d9251..baccbf1761b7 100644
--- a/drivers/gpu/drm/i915/gvt/debugfs.c
+++ b/drivers/gpu/drm/i915/gvt/debugfs.c
@@ -147,9 +147,25 @@ vgpu_scan_nonprivbb_set(void *data, u64 val)
return 0;
}
-DEFINE_SIMPLE_ATTRIBUTE(vgpu_scan_nonprivbb_fops,
- vgpu_scan_nonprivbb_get, vgpu_scan_nonprivbb_set,
- "0x%llx\n");
+DEFINE_DEBUGFS_ATTRIBUTE(vgpu_scan_nonprivbb_fops,
+ vgpu_scan_nonprivbb_get, vgpu_scan_nonprivbb_set,
+ "0x%llx\n");
+
+static int vgpu_status_get(void *data, u64 *val)
+{
+ struct intel_vgpu *vgpu = (struct intel_vgpu *)data;
+
+ *val = 0;
+
+ if (test_bit(INTEL_VGPU_STATUS_ATTACHED, vgpu->status))
+ *val |= (1 << INTEL_VGPU_STATUS_ATTACHED);
+ if (test_bit(INTEL_VGPU_STATUS_ACTIVE, vgpu->status))
+ *val |= (1 << INTEL_VGPU_STATUS_ACTIVE);
+
+ return 0;
+}
+
+DEFINE_DEBUGFS_ATTRIBUTE(vgpu_status_fops, vgpu_status_get, NULL, "0x%llx\n");
/**
* intel_gvt_debugfs_add_vgpu - register debugfs entries for a vGPU
@@ -162,11 +178,12 @@ void intel_gvt_debugfs_add_vgpu(struct intel_vgpu *vgpu)
snprintf(name, 16, "vgpu%d", vgpu->id);
vgpu->debugfs = debugfs_create_dir(name, vgpu->gvt->debugfs_root);
- debugfs_create_bool("active", 0444, vgpu->debugfs, &vgpu->active);
debugfs_create_file("mmio_diff", 0444, vgpu->debugfs, vgpu,
&vgpu_mmio_diff_fops);
- debugfs_create_file("scan_nonprivbb", 0644, vgpu->debugfs, vgpu,
- &vgpu_scan_nonprivbb_fops);
+ debugfs_create_file_unsafe("scan_nonprivbb", 0644, vgpu->debugfs, vgpu,
+ &vgpu_scan_nonprivbb_fops);
+ debugfs_create_file_unsafe("status", 0644, vgpu->debugfs, vgpu,
+ &vgpu_status_fops);
}
/**
@@ -175,8 +192,13 @@ void intel_gvt_debugfs_add_vgpu(struct intel_vgpu *vgpu)
*/
void intel_gvt_debugfs_remove_vgpu(struct intel_vgpu *vgpu)
{
- debugfs_remove_recursive(vgpu->debugfs);
- vgpu->debugfs = NULL;
+ struct intel_gvt *gvt = vgpu->gvt;
+ struct drm_minor *minor = gvt->gt->i915->drm.primary;
+
+ if (minor->debugfs_root && gvt->debugfs_root) {
+ debugfs_remove_recursive(vgpu->debugfs);
+ vgpu->debugfs = NULL;
+ }
}
/**
@@ -199,6 +221,10 @@ void intel_gvt_debugfs_init(struct intel_gvt *gvt)
*/
void intel_gvt_debugfs_clean(struct intel_gvt *gvt)
{
- debugfs_remove_recursive(gvt->debugfs_root);
- gvt->debugfs_root = NULL;
+ struct drm_minor *minor = gvt->gt->i915->drm.primary;
+
+ if (minor->debugfs_root) {
+ debugfs_remove_recursive(gvt->debugfs_root);
+ gvt->debugfs_root = NULL;
+ }
}
diff --git a/drivers/gpu/drm/i915/gvt/display.c b/drivers/gpu/drm/i915/gvt/display.c
index c7722c818b4d..e0c5dfb788eb 100644
--- a/drivers/gpu/drm/i915/gvt/display.c
+++ b/drivers/gpu/drm/i915/gvt/display.c
@@ -36,6 +36,9 @@
#include "i915_reg.h"
#include "gvt.h"
+#include "display/intel_display.h"
+#include "display/intel_dpio_phy.h"
+
static int get_edp_pipe(struct intel_vgpu *vgpu)
{
u32 data = vgpu_vreg(vgpu, _TRANS_DDI_FUNC_CTL_EDP);
@@ -60,7 +63,7 @@ static int edp_pipe_is_enabled(struct intel_vgpu *vgpu)
{
struct drm_i915_private *dev_priv = vgpu->gvt->gt->i915;
- if (!(vgpu_vreg_t(vgpu, PIPECONF(_PIPE_EDP)) & PIPECONF_ENABLE))
+ if (!(vgpu_vreg_t(vgpu, TRANSCONF(TRANSCODER_EDP)) & TRANSCONF_ENABLE))
return 0;
if (!(vgpu_vreg(vgpu, _TRANS_DDI_FUNC_CTL_EDP) & TRANS_DDI_FUNC_ENABLE))
@@ -76,7 +79,7 @@ int pipe_is_enabled(struct intel_vgpu *vgpu, int pipe)
pipe < PIPE_A || pipe >= I915_MAX_PIPES))
return -EINVAL;
- if (vgpu_vreg_t(vgpu, PIPECONF(pipe)) & PIPECONF_ENABLE)
+ if (vgpu_vreg_t(vgpu, TRANSCONF(pipe)) & TRANSCONF_ENABLE)
return 1;
if (edp_pipe_is_enabled(vgpu) &&
@@ -184,8 +187,8 @@ static void emulate_monitor_status_change(struct intel_vgpu *vgpu)
GEN8_DE_PORT_HOTPLUG(HPD_PORT_C));
for_each_pipe(dev_priv, pipe) {
- vgpu_vreg_t(vgpu, PIPECONF(pipe)) &=
- ~(PIPECONF_ENABLE | PIPECONF_STATE_ENABLE);
+ vgpu_vreg_t(vgpu, TRANSCONF(pipe)) &=
+ ~(TRANSCONF_ENABLE | TRANSCONF_STATE_ENABLE);
vgpu_vreg_t(vgpu, DSPCNTR(pipe)) &= ~DISP_ENABLE;
vgpu_vreg_t(vgpu, SPRCTL(pipe)) &= ~SPRITE_ENABLE;
vgpu_vreg_t(vgpu, CURCNTR(pipe)) &= ~MCURSOR_MODE_MASK;
@@ -245,8 +248,8 @@ static void emulate_monitor_status_change(struct intel_vgpu *vgpu)
* TRANSCODER_A can be enabled. PORT_x depends on the input of
* setup_virtual_dp_monitor.
*/
- vgpu_vreg_t(vgpu, PIPECONF(PIPE_A)) |= PIPECONF_ENABLE;
- vgpu_vreg_t(vgpu, PIPECONF(PIPE_A)) |= PIPECONF_STATE_ENABLE;
+ vgpu_vreg_t(vgpu, TRANSCONF(TRANSCODER_A)) |= TRANSCONF_ENABLE;
+ vgpu_vreg_t(vgpu, TRANSCONF(TRANSCODER_A)) |= TRANSCONF_STATE_ENABLE;
/*
* Golden M/N are calculated based on:
@@ -503,7 +506,7 @@ static void emulate_monitor_status_change(struct intel_vgpu *vgpu)
vgpu_vreg_t(vgpu, CURCNTR(pipe)) |= MCURSOR_MODE_DISABLE;
}
- vgpu_vreg_t(vgpu, PIPECONF(PIPE_A)) |= PIPECONF_ENABLE;
+ vgpu_vreg_t(vgpu, TRANSCONF(TRANSCODER_A)) |= TRANSCONF_ENABLE;
}
static void clean_virtual_dp_monitor(struct intel_vgpu *vgpu, int port_num)
@@ -581,7 +584,7 @@ static int setup_virtual_dp_monitor(struct intel_vgpu *vgpu, int port_num,
* @turnon: Turn ON/OFF vblank_timer
*
* This function is used to turn on/off or update the per-vGPU vblank_timer
- * when PIPECONF is enabled or disabled. vblank_timer period is also updated
+ * when TRANSCONF is enabled or disabled. vblank_timer period is also updated
* if guest changed the refresh rate.
*
*/
diff --git a/drivers/gpu/drm/i915/gvt/dmabuf.c b/drivers/gpu/drm/i915/gvt/dmabuf.c
index 01e54b45c5c1..6834f9fe40cf 100644
--- a/drivers/gpu/drm/i915/gvt/dmabuf.c
+++ b/drivers/gpu/drm/i915/gvt/dmabuf.c
@@ -42,8 +42,7 @@
#define GEN8_DECODE_PTE(pte) (pte & GENMASK_ULL(63, 12))
-static int vgpu_gem_get_pages(
- struct drm_i915_gem_object *obj)
+static int vgpu_gem_get_pages(struct drm_i915_gem_object *obj)
{
struct drm_i915_private *dev_priv = to_i915(obj->base.dev);
struct intel_vgpu *vgpu;
@@ -52,8 +51,12 @@ static int vgpu_gem_get_pages(
int i, j, ret;
gen8_pte_t __iomem *gtt_entries;
struct intel_vgpu_fb_info *fb_info;
- u32 page_num;
+ unsigned int page_num; /* limited by sg_alloc_table */
+ if (overflows_type(obj->base.size >> PAGE_SHIFT, page_num))
+ return -E2BIG;
+
+ page_num = obj->base.size >> PAGE_SHIFT;
fb_info = (struct intel_vgpu_fb_info *)obj->gvt_info;
if (drm_WARN_ON(&dev_priv->drm, !fb_info))
return -ENODEV;
@@ -66,7 +69,6 @@ static int vgpu_gem_get_pages(
if (unlikely(!st))
return -ENOMEM;
- page_num = obj->base.size >> PAGE_SHIFT;
ret = sg_alloc_table(st, page_num, GFP_KERNEL);
if (ret) {
kfree(st);
@@ -88,7 +90,7 @@ static int vgpu_gem_get_pages(
sg_dma_address(sg) = dma_addr;
}
- __i915_gem_object_set_pages(obj, st, PAGE_SIZE);
+ __i915_gem_object_set_pages(obj, st);
out:
if (ret) {
dma_addr_t dma_addr;
@@ -134,7 +136,8 @@ static void dmabuf_gem_object_free(struct kref *kref)
struct list_head *pos;
struct intel_vgpu_dmabuf_obj *dmabuf_obj;
- if (vgpu && vgpu->active && !list_empty(&vgpu->dmabuf_obj_list_head)) {
+ if (vgpu && test_bit(INTEL_VGPU_STATUS_ACTIVE, vgpu->status) &&
+ !list_empty(&vgpu->dmabuf_obj_list_head)) {
list_for_each(pos, &vgpu->dmabuf_obj_list_head) {
dmabuf_obj = list_entry(pos, struct intel_vgpu_dmabuf_obj, list);
if (dmabuf_obj == obj) {
diff --git a/drivers/gpu/drm/i915/gvt/dmabuf.h b/drivers/gpu/drm/i915/gvt/dmabuf.h
index 5f8f03fb1d1b..3dcdb6570eda 100644
--- a/drivers/gpu/drm/i915/gvt/dmabuf.h
+++ b/drivers/gpu/drm/i915/gvt/dmabuf.h
@@ -48,7 +48,7 @@ struct intel_vgpu_fb_info {
struct intel_vgpu_dmabuf_obj *obj;
};
-/**
+/*
* struct intel_vgpu_dmabuf_obj- Intel vGPU device buffer object
*/
struct intel_vgpu_dmabuf_obj {
diff --git a/drivers/gpu/drm/i915/gvt/edid.c b/drivers/gpu/drm/i915/gvt/edid.c
index 1b509c1a1e33..7c49a3d673a5 100644
--- a/drivers/gpu/drm/i915/gvt/edid.c
+++ b/drivers/gpu/drm/i915/gvt/edid.c
@@ -32,6 +32,7 @@
*
*/
+#include "display/intel_dp_aux_regs.h"
#include "display/intel_gmbus_regs.h"
#include "gvt.h"
#include "i915_drv.h"
diff --git a/drivers/gpu/drm/i915/gvt/fb_decoder.h b/drivers/gpu/drm/i915/gvt/fb_decoder.h
index 0daa3931aef7..4eff44194439 100644
--- a/drivers/gpu/drm/i915/gvt/fb_decoder.h
+++ b/drivers/gpu/drm/i915/gvt/fb_decoder.h
@@ -38,7 +38,7 @@
#include <linux/types.h>
-#include "display/intel_display.h"
+#include "display/intel_display_limits.h"
struct intel_vgpu;
diff --git a/drivers/gpu/drm/i915/gvt/firmware.c b/drivers/gpu/drm/i915/gvt/firmware.c
index 54fe442238c6..4dd52ac2043e 100644
--- a/drivers/gpu/drm/i915/gvt/firmware.c
+++ b/drivers/gpu/drm/i915/gvt/firmware.c
@@ -45,7 +45,7 @@ struct gvt_firmware_header {
u64 cfg_space_offset; /* offset in the file */
u64 mmio_size;
u64 mmio_offset; /* offset in the file */
- unsigned char data[1];
+ unsigned char data[];
};
#define dev_to_drm_minor(d) dev_get_drvdata((d))
@@ -77,7 +77,7 @@ static int expose_firmware_sysfs(struct intel_gvt *gvt)
unsigned long size, crc32_start;
int ret;
- size = sizeof(*h) + info->mmio_size + info->cfg_space_size;
+ size = offsetof(struct gvt_firmware_header, data) + info->mmio_size + info->cfg_space_size;
firmware = vzalloc(size);
if (!firmware)
return -ENOMEM;
@@ -104,7 +104,7 @@ static int expose_firmware_sysfs(struct intel_gvt *gvt)
memcpy(p, gvt->firmware.mmio, info->mmio_size);
- crc32_start = offsetof(struct gvt_firmware_header, crc32) + 4;
+ crc32_start = offsetof(struct gvt_firmware_header, version);
h->crc32 = crc32_le(0, firmware + crc32_start, size - crc32_start);
firmware_attr.size = size;
@@ -171,7 +171,7 @@ static int verify_firmware(struct intel_gvt *gvt,
mem = (fw->data + h->cfg_space_offset);
id = *(u16 *)(mem + PCI_VENDOR_ID);
- VERIFY("vender id", id, pdev->vendor);
+ VERIFY("vendor id", id, pdev->vendor);
id = *(u16 *)(mem + PCI_DEVICE_ID);
VERIFY("device id", id, pdev->device);
diff --git a/drivers/gpu/drm/i915/gvt/gtt.c b/drivers/gpu/drm/i915/gvt/gtt.c
index ce0eb03709c3..4ec85308379a 100644
--- a/drivers/gpu/drm/i915/gvt/gtt.c
+++ b/drivers/gpu/drm/i915/gvt/gtt.c
@@ -55,7 +55,7 @@ static bool intel_gvt_is_valid_gfn(struct intel_vgpu *vgpu, unsigned long gfn)
int idx;
bool ret;
- if (!vgpu->attached)
+ if (!test_bit(INTEL_VGPU_STATUS_ATTACHED, vgpu->status))
return false;
idx = srcu_read_lock(&kvm->srcu);
@@ -282,11 +282,6 @@ static inline int get_next_pt_type(int type)
return gtt_type_table[type].next_pt_type;
}
-static inline int get_pt_type(int type)
-{
- return gtt_type_table[type].pt_type;
-}
-
static inline int get_entry_type(int type)
{
return gtt_type_table[type].entry_type;
@@ -1183,7 +1178,7 @@ static int is_2MB_gtt_possible(struct intel_vgpu *vgpu,
if (!HAS_PAGE_SIZES(vgpu->gvt->gt->i915, I915_GTT_PAGE_SIZE_2M))
return 0;
- if (!vgpu->attached)
+ if (!test_bit(INTEL_VGPU_STATUS_ATTACHED, vgpu->status))
return -EINVAL;
pfn = gfn_to_pfn(vgpu->vfio_device.kvm, ops->get_pfn(entry));
if (is_error_noslot_pfn(pfn))
@@ -1214,10 +1209,8 @@ static int split_2MB_gtt_entry(struct intel_vgpu *vgpu,
for_each_shadow_entry(sub_spt, &sub_se, sub_index) {
ret = intel_gvt_dma_map_guest_page(vgpu, start_gfn + sub_index,
PAGE_SIZE, &dma_addr);
- if (ret) {
- ppgtt_invalidate_spt(spt);
- return ret;
- }
+ if (ret)
+ goto err;
sub_se.val64 = se->val64;
/* Copy the PAT field from PDE. */
@@ -1236,6 +1229,17 @@ static int split_2MB_gtt_entry(struct intel_vgpu *vgpu,
ops->set_pfn(se, sub_spt->shadow_page.mfn);
ppgtt_set_shadow_entry(spt, se, index);
return 0;
+err:
+ /* Cancel the existing addess mappings of DMA addr. */
+ for_each_present_shadow_entry(sub_spt, &sub_se, sub_index) {
+ gvt_vdbg_mm("invalidate 4K entry\n");
+ ppgtt_invalidate_pte(sub_spt, &sub_se);
+ }
+ /* Release the new allocated spt. */
+ trace_spt_change(sub_spt->vgpu->id, "release", sub_spt,
+ sub_spt->guest_page.gfn, sub_spt->shadow_page.type);
+ ppgtt_free_spt(sub_spt);
+ return ret;
}
static int split_64KB_gtt_entry(struct intel_vgpu *vgpu,
@@ -2785,7 +2789,7 @@ int intel_gvt_init_gtt(struct intel_gvt *gvt)
* intel_gvt_clean_gtt - clean up mm components of a GVT device
* @gvt: GVT device
*
- * This function is called at the driver unloading stage, to clean up the
+ * This function is called at the driver unloading stage, to clean up
* the mm components of a GVT device.
*
*/
diff --git a/drivers/gpu/drm/i915/gvt/gvt.h b/drivers/gpu/drm/i915/gvt/gvt.h
index dbf8d7470b2c..2d65800d8e93 100644
--- a/drivers/gpu/drm/i915/gvt/gvt.h
+++ b/drivers/gpu/drm/i915/gvt/gvt.h
@@ -172,13 +172,18 @@ struct intel_vgpu_submission {
#define KVMGT_DEBUGFS_FILENAME "kvmgt_nr_cache_entries"
+enum {
+ INTEL_VGPU_STATUS_ATTACHED = 0,
+ INTEL_VGPU_STATUS_ACTIVE,
+ INTEL_VGPU_STATUS_NR_BITS,
+};
+
struct intel_vgpu {
struct vfio_device vfio_device;
struct intel_gvt *gvt;
struct mutex vgpu_lock;
int id;
- bool active;
- bool attached;
+ DECLARE_BITMAP(status, INTEL_VGPU_STATUS_NR_BITS);
bool pv_notified;
bool failsafe;
unsigned int resetting_eng;
@@ -227,8 +232,6 @@ struct intel_vgpu {
unsigned long nr_cache_entries;
struct mutex cache_lock;
- atomic_t released;
-
struct kvm_page_track_notifier_node track_node;
#define NR_BKT (1 << 18)
struct hlist_head ptable[NR_BKT];
@@ -469,7 +472,7 @@ void intel_vgpu_write_fence(struct intel_vgpu *vgpu,
#define for_each_active_vgpu(gvt, vgpu, id) \
idr_for_each_entry((&(gvt)->vgpu_idr), (vgpu), (id)) \
- for_each_if(vgpu->active)
+ for_each_if(test_bit(INTEL_VGPU_STATUS_ACTIVE, vgpu->status))
static inline void intel_vgpu_write_pci_bar(struct intel_vgpu *vgpu,
u32 offset, u32 val, bool low)
@@ -727,7 +730,7 @@ static inline bool intel_gvt_mmio_is_cmd_write_patch(
static inline int intel_gvt_read_gpa(struct intel_vgpu *vgpu, unsigned long gpa,
void *buf, unsigned long len)
{
- if (!vgpu->attached)
+ if (!test_bit(INTEL_VGPU_STATUS_ATTACHED, vgpu->status))
return -ESRCH;
return vfio_dma_rw(&vgpu->vfio_device, gpa, buf, len, false);
}
@@ -745,7 +748,7 @@ static inline int intel_gvt_read_gpa(struct intel_vgpu *vgpu, unsigned long gpa,
static inline int intel_gvt_write_gpa(struct intel_vgpu *vgpu,
unsigned long gpa, void *buf, unsigned long len)
{
- if (!vgpu->attached)
+ if (!test_bit(INTEL_VGPU_STATUS_ATTACHED, vgpu->status))
return -ESRCH;
return vfio_dma_rw(&vgpu->vfio_device, gpa, buf, len, true);
}
diff --git a/drivers/gpu/drm/i915/gvt/handlers.c b/drivers/gpu/drm/i915/gvt/handlers.c
index daac2050d77d..4b45a041ac5c 100644
--- a/drivers/gpu/drm/i915/gvt/handlers.c
+++ b/drivers/gpu/drm/i915/gvt/handlers.c
@@ -43,7 +43,13 @@
#include "intel_mchbar_regs.h"
#include "display/intel_display_types.h"
#include "display/intel_dmc_regs.h"
+#include "display/intel_dp_aux_regs.h"
+#include "display/intel_dpio_phy.h"
#include "display/intel_fbc.h"
+#include "display/intel_fdi_regs.h"
+#include "display/intel_pps_regs.h"
+#include "display/intel_psr_regs.h"
+#include "display/skl_watermark_regs.h"
#include "display/vlv_dsi_pll_regs.h"
#include "gt/intel_gt_regs.h"
@@ -665,8 +671,8 @@ static void vgpu_update_refresh_rate(struct intel_vgpu *vgpu)
link_n = vgpu_vreg_t(vgpu, PIPE_LINK_N1(TRANSCODER_A));
/* Get H/V total from transcoder timing */
- htotal = (vgpu_vreg_t(vgpu, HTOTAL(TRANSCODER_A)) >> TRANS_HTOTAL_SHIFT);
- vtotal = (vgpu_vreg_t(vgpu, VTOTAL(TRANSCODER_A)) >> TRANS_VTOTAL_SHIFT);
+ htotal = (vgpu_vreg_t(vgpu, TRANS_HTOTAL(TRANSCODER_A)) >> TRANS_HTOTAL_SHIFT);
+ vtotal = (vgpu_vreg_t(vgpu, TRANS_VTOTAL(TRANSCODER_A)) >> TRANS_VTOTAL_SHIFT);
if (dp_br && link_n && htotal && vtotal) {
u64 pixel_clk = 0;
@@ -696,12 +702,12 @@ static int pipeconf_mmio_write(struct intel_vgpu *vgpu, unsigned int offset,
write_vreg(vgpu, offset, p_data, bytes);
data = vgpu_vreg(vgpu, offset);
- if (data & PIPECONF_ENABLE) {
- vgpu_vreg(vgpu, offset) |= PIPECONF_STATE_ENABLE;
+ if (data & TRANSCONF_ENABLE) {
+ vgpu_vreg(vgpu, offset) |= TRANSCONF_STATE_ENABLE;
vgpu_update_refresh_rate(vgpu);
vgpu_update_vblank_emulation(vgpu, true);
} else {
- vgpu_vreg(vgpu, offset) &= ~PIPECONF_STATE_ENABLE;
+ vgpu_vreg(vgpu, offset) &= ~TRANSCONF_STATE_ENABLE;
vgpu_update_vblank_emulation(vgpu, false);
}
return 0;
@@ -734,7 +740,7 @@ static i915_reg_t force_nonpriv_white_list[] = {
_MMIO(0x770c),
_MMIO(0x83a8),
_MMIO(0xb110),
- GEN8_L3SQCREG4,//_MMIO(0xb118)
+ _MMIO(0xb118),
_MMIO(0xe100),
_MMIO(0xe18c),
_MMIO(0xe48c),
@@ -2257,14 +2263,14 @@ static int init_generic_mmio_info(struct intel_gvt *gvt)
MMIO_DFH(_MMIO(0x2438), D_ALL, F_CMD_ACCESS, NULL, NULL);
MMIO_DFH(_MMIO(0x243c), D_ALL, F_CMD_ACCESS, NULL, NULL);
MMIO_DFH(_MMIO(0x7018), D_ALL, F_MODE_MASK | F_CMD_ACCESS, NULL, NULL);
- MMIO_DFH(HALF_SLICE_CHICKEN3, D_ALL, F_MODE_MASK | F_CMD_ACCESS, NULL, NULL);
+ MMIO_DFH(HSW_HALF_SLICE_CHICKEN3, D_ALL, F_MODE_MASK | F_CMD_ACCESS, NULL, NULL);
MMIO_DFH(GEN7_HALF_SLICE_CHICKEN1, D_ALL, F_MODE_MASK | F_CMD_ACCESS, NULL, NULL);
/* display */
- MMIO_DH(PIPECONF(PIPE_A), D_ALL, NULL, pipeconf_mmio_write);
- MMIO_DH(PIPECONF(PIPE_B), D_ALL, NULL, pipeconf_mmio_write);
- MMIO_DH(PIPECONF(PIPE_C), D_ALL, NULL, pipeconf_mmio_write);
- MMIO_DH(PIPECONF(_PIPE_EDP), D_ALL, NULL, pipeconf_mmio_write);
+ MMIO_DH(TRANSCONF(TRANSCODER_A), D_ALL, NULL, pipeconf_mmio_write);
+ MMIO_DH(TRANSCONF(TRANSCODER_B), D_ALL, NULL, pipeconf_mmio_write);
+ MMIO_DH(TRANSCONF(TRANSCODER_C), D_ALL, NULL, pipeconf_mmio_write);
+ MMIO_DH(TRANSCONF(TRANSCODER_EDP), D_ALL, NULL, pipeconf_mmio_write);
MMIO_DH(DSPSURF(PIPE_A), D_ALL, NULL, pri_surf_mmio_write);
MMIO_DH(REG_50080(PIPE_A, PLANE_PRIMARY), D_ALL, NULL,
reg50080_mmio_write);
diff --git a/drivers/gpu/drm/i915/gvt/interrupt.c b/drivers/gpu/drm/i915/gvt/interrupt.c
index a6b2021b665f..68eca023bbc6 100644
--- a/drivers/gpu/drm/i915/gvt/interrupt.c
+++ b/drivers/gpu/drm/i915/gvt/interrupt.c
@@ -433,7 +433,7 @@ static int inject_virtual_interrupt(struct intel_vgpu *vgpu)
* enabled by guest. so if msi_trigger is null, success is still
* returned and don't inject interrupt into guest.
*/
- if (!vgpu->attached)
+ if (!test_bit(INTEL_VGPU_STATUS_ATTACHED, vgpu->status))
return -ESRCH;
if (vgpu->msi_trigger && eventfd_signal(vgpu->msi_trigger, 1) != 1)
return -EFAULT;
diff --git a/drivers/gpu/drm/i915/gvt/kvmgt.c b/drivers/gpu/drm/i915/gvt/kvmgt.c
index 7a45e5360caf..de675d799c7d 100644
--- a/drivers/gpu/drm/i915/gvt/kvmgt.c
+++ b/drivers/gpu/drm/i915/gvt/kvmgt.c
@@ -638,7 +638,7 @@ static bool __kvmgt_vgpu_exist(struct intel_vgpu *vgpu)
mutex_lock(&vgpu->gvt->lock);
for_each_active_vgpu(vgpu->gvt, itr, id) {
- if (!itr->attached)
+ if (!test_bit(INTEL_VGPU_STATUS_ATTACHED, itr->status))
continue;
if (vgpu->vfio_device.kvm == itr->vfio_device.kvm) {
@@ -655,36 +655,28 @@ static int intel_vgpu_open_device(struct vfio_device *vfio_dev)
{
struct intel_vgpu *vgpu = vfio_dev_to_vgpu(vfio_dev);
- if (vgpu->attached)
- return -EEXIST;
-
if (!vgpu->vfio_device.kvm ||
vgpu->vfio_device.kvm->mm != current->mm) {
gvt_vgpu_err("KVM is required to use Intel vGPU\n");
return -ESRCH;
}
- kvm_get_kvm(vgpu->vfio_device.kvm);
-
if (__kvmgt_vgpu_exist(vgpu))
return -EEXIST;
- vgpu->attached = true;
-
- kvmgt_protect_table_init(vgpu);
- gvt_cache_init(vgpu);
-
vgpu->track_node.track_write = kvmgt_page_track_write;
vgpu->track_node.track_flush_slot = kvmgt_page_track_flush_slot;
+ kvm_get_kvm(vgpu->vfio_device.kvm);
kvm_page_track_register_notifier(vgpu->vfio_device.kvm,
&vgpu->track_node);
+ set_bit(INTEL_VGPU_STATUS_ATTACHED, vgpu->status);
+
debugfs_create_ulong(KVMGT_DEBUGFS_FILENAME, 0444, vgpu->debugfs,
&vgpu->nr_cache_entries);
intel_gvt_activate_vgpu(vgpu);
- atomic_set(&vgpu->released, 0);
return 0;
}
@@ -703,27 +695,25 @@ static void intel_vgpu_close_device(struct vfio_device *vfio_dev)
{
struct intel_vgpu *vgpu = vfio_dev_to_vgpu(vfio_dev);
- if (!vgpu->attached)
- return;
-
- if (atomic_cmpxchg(&vgpu->released, 0, 1))
- return;
-
intel_gvt_release_vgpu(vgpu);
- debugfs_remove(debugfs_lookup(KVMGT_DEBUGFS_FILENAME, vgpu->debugfs));
+ clear_bit(INTEL_VGPU_STATUS_ATTACHED, vgpu->status);
+
+ debugfs_lookup_and_remove(KVMGT_DEBUGFS_FILENAME, vgpu->debugfs);
kvm_page_track_unregister_notifier(vgpu->vfio_device.kvm,
&vgpu->track_node);
+ kvm_put_kvm(vgpu->vfio_device.kvm);
+
kvmgt_protect_table_destroy(vgpu);
gvt_cache_destroy(vgpu);
- intel_vgpu_release_msi_eventfd_ctx(vgpu);
+ WARN_ON(vgpu->nr_cache_entries);
- vgpu->attached = false;
+ vgpu->gfn_cache = RB_ROOT;
+ vgpu->dma_addr_cache = RB_ROOT;
- if (vgpu->vfio_device.kvm)
- kvm_put_kvm(vgpu->vfio_device.kvm);
+ intel_vgpu_release_msi_eventfd_ctx(vgpu);
}
static u64 intel_vgpu_get_bar_addr(struct intel_vgpu *vgpu, int bar)
@@ -1451,9 +1441,17 @@ static int intel_vgpu_init_dev(struct vfio_device *vfio_dev)
struct intel_vgpu *vgpu = vfio_dev_to_vgpu(vfio_dev);
struct intel_vgpu_type *type =
container_of(mdev->type, struct intel_vgpu_type, type);
+ int ret;
vgpu->gvt = kdev_to_i915(mdev->type->parent->dev)->gvt;
- return intel_gvt_create_vgpu(vgpu, type->conf);
+ ret = intel_gvt_create_vgpu(vgpu, type->conf);
+ if (ret)
+ return ret;
+
+ kvmgt_protect_table_init(vgpu);
+ gvt_cache_init(vgpu);
+
+ return 0;
}
static void intel_vgpu_release_dev(struct vfio_device *vfio_dev)
@@ -1461,7 +1459,6 @@ static void intel_vgpu_release_dev(struct vfio_device *vfio_dev)
struct intel_vgpu *vgpu = vfio_dev_to_vgpu(vfio_dev);
intel_gvt_destroy_vgpu(vgpu);
- vfio_free_device(vfio_dev);
}
static const struct vfio_device_ops intel_vgpu_dev_ops = {
@@ -1474,6 +1471,9 @@ static const struct vfio_device_ops intel_vgpu_dev_ops = {
.mmap = intel_vgpu_mmap,
.ioctl = intel_vgpu_ioctl,
.dma_unmap = intel_vgpu_dma_unmap,
+ .bind_iommufd = vfio_iommufd_emulated_bind,
+ .unbind_iommufd = vfio_iommufd_emulated_unbind,
+ .attach_ioas = vfio_iommufd_emulated_attach_ioas,
};
static int intel_vgpu_probe(struct mdev_device *mdev)
@@ -1506,9 +1506,6 @@ static void intel_vgpu_remove(struct mdev_device *mdev)
{
struct intel_vgpu *vgpu = dev_get_drvdata(&mdev->dev);
- if (WARN_ON_ONCE(vgpu->attached))
- return;
-
vfio_unregister_group_dev(&vgpu->vfio_device);
vfio_put_device(&vgpu->vfio_device);
}
@@ -1553,7 +1550,7 @@ int intel_gvt_page_track_add(struct intel_vgpu *info, u64 gfn)
struct kvm_memory_slot *slot;
int idx;
- if (!info->attached)
+ if (!test_bit(INTEL_VGPU_STATUS_ATTACHED, info->status))
return -ESRCH;
idx = srcu_read_lock(&kvm->srcu);
@@ -1583,8 +1580,8 @@ int intel_gvt_page_track_remove(struct intel_vgpu *info, u64 gfn)
struct kvm_memory_slot *slot;
int idx;
- if (!info->attached)
- return 0;
+ if (!test_bit(INTEL_VGPU_STATUS_ATTACHED, info->status))
+ return -ESRCH;
idx = srcu_read_lock(&kvm->srcu);
slot = gfn_to_memslot(kvm, gfn);
@@ -1662,7 +1659,7 @@ int intel_gvt_dma_map_guest_page(struct intel_vgpu *vgpu, unsigned long gfn,
struct gvt_dma *entry;
int ret;
- if (!vgpu->attached)
+ if (!test_bit(INTEL_VGPU_STATUS_ATTACHED, vgpu->status))
return -EINVAL;
mutex_lock(&vgpu->cache_lock);
@@ -1708,8 +1705,8 @@ int intel_gvt_dma_pin_guest_page(struct intel_vgpu *vgpu, dma_addr_t dma_addr)
struct gvt_dma *entry;
int ret = 0;
- if (!vgpu->attached)
- return -ENODEV;
+ if (!test_bit(INTEL_VGPU_STATUS_ATTACHED, vgpu->status))
+ return -EINVAL;
mutex_lock(&vgpu->cache_lock);
entry = __gvt_cache_find_dma_addr(vgpu, dma_addr);
@@ -1736,7 +1733,7 @@ void intel_gvt_dma_unmap_guest_page(struct intel_vgpu *vgpu,
{
struct gvt_dma *entry;
- if (!vgpu->attached)
+ if (!test_bit(INTEL_VGPU_STATUS_ATTACHED, vgpu->status))
return;
mutex_lock(&vgpu->cache_lock);
@@ -1772,7 +1769,7 @@ static void intel_gvt_test_and_emulate_vblank(struct intel_gvt *gvt)
idr_for_each_entry((&(gvt)->vgpu_idr), (vgpu), (id)) {
if (test_and_clear_bit(INTEL_GVT_REQUEST_EMULATE_VBLANK + id,
(void *)&gvt->service_request)) {
- if (vgpu->active)
+ if (test_bit(INTEL_VGPU_STATUS_ACTIVE, vgpu->status))
intel_vgpu_emulate_vblank(vgpu);
}
}
diff --git a/drivers/gpu/drm/i915/gvt/mmio.c b/drivers/gpu/drm/i915/gvt/mmio.c
index 9acc00505fde..5b5def6ddef7 100644
--- a/drivers/gpu/drm/i915/gvt/mmio.c
+++ b/drivers/gpu/drm/i915/gvt/mmio.c
@@ -37,6 +37,7 @@
#include "i915_reg.h"
#include "gvt.h"
+#include "display/intel_dpio_phy.h"
#include "gt/intel_gt_regs.h"
/**
diff --git a/drivers/gpu/drm/i915/gvt/mmio_context.c b/drivers/gpu/drm/i915/gvt/mmio_context.c
index 1c6e941c9666..490e8ae51228 100644
--- a/drivers/gpu/drm/i915/gvt/mmio_context.c
+++ b/drivers/gpu/drm/i915/gvt/mmio_context.c
@@ -34,6 +34,7 @@
*/
#include "i915_drv.h"
+#include "i915_reg.h"
#include "gt/intel_context.h"
#include "gt/intel_engine_regs.h"
#include "gt/intel_gpu_commands.h"
@@ -106,15 +107,15 @@ static struct engine_mmio gen9_engine_mmio_list[] __cacheline_aligned = {
{RCS0, GEN8_CS_CHICKEN1, 0xffff, true}, /* 0x2580 */
{RCS0, COMMON_SLICE_CHICKEN2, 0xffff, true}, /* 0x7014 */
{RCS0, GEN9_CS_DEBUG_MODE1, 0xffff, false}, /* 0x20ec */
- {RCS0, GEN8_L3SQCREG4, 0, false}, /* 0xb118 */
- {RCS0, GEN9_SCRATCH1, 0, false}, /* 0xb11c */
+ {RCS0, _MMIO(0xb118), 0, false}, /* GEN8_L3SQCREG4 */
+ {RCS0, _MMIO(0xb11c), 0, false}, /* GEN9_SCRATCH1 */
{RCS0, GEN9_SCRATCH_LNCF1, 0, false}, /* 0xb008 */
{RCS0, GEN7_HALF_SLICE_CHICKEN1, 0xffff, true}, /* 0xe100 */
- {RCS0, HALF_SLICE_CHICKEN2, 0xffff, true}, /* 0xe180 */
- {RCS0, HALF_SLICE_CHICKEN3, 0xffff, true}, /* 0xe184 */
- {RCS0, GEN9_HALF_SLICE_CHICKEN5, 0xffff, true}, /* 0xe188 */
- {RCS0, GEN9_HALF_SLICE_CHICKEN7, 0xffff, true}, /* 0xe194 */
- {RCS0, GEN8_ROW_CHICKEN, 0xffff, true}, /* 0xe4f0 */
+ {RCS0, _MMIO(0xe180), 0xffff, true}, /* HALF_SLICE_CHICKEN2 */
+ {RCS0, _MMIO(0xe184), 0xffff, true}, /* GEN8_HALF_SLICE_CHICKEN3 */
+ {RCS0, _MMIO(0xe188), 0xffff, true}, /* GEN9_HALF_SLICE_CHICKEN5 */
+ {RCS0, _MMIO(0xe194), 0xffff, true}, /* GEN9_HALF_SLICE_CHICKEN7 */
+ {RCS0, _MMIO(0xe4f0), 0xffff, true}, /* GEN8_ROW_CHICKEN */
{RCS0, TRVATTL3PTRDW(0), 0, true}, /* 0x4de0 */
{RCS0, TRVATTL3PTRDW(1), 0, true}, /* 0x4de4 */
{RCS0, TRNULLDETCT, 0, true}, /* 0x4de8 */
diff --git a/drivers/gpu/drm/i915/gvt/page_track.c b/drivers/gpu/drm/i915/gvt/page_track.c
index 3375b51c75f1..df34e73cba41 100644
--- a/drivers/gpu/drm/i915/gvt/page_track.c
+++ b/drivers/gpu/drm/i915/gvt/page_track.c
@@ -120,7 +120,7 @@ int intel_vgpu_enable_page_track(struct intel_vgpu *vgpu, unsigned long gfn)
}
/**
- * intel_vgpu_enable_page_track - cancel write-protection on guest page
+ * intel_vgpu_disable_page_track - cancel write-protection on guest page
* @vgpu: a vGPU
* @gfn: the gfn of guest page
*
diff --git a/drivers/gpu/drm/i915/gvt/scheduler.c b/drivers/gpu/drm/i915/gvt/scheduler.c
index d6fe94cd0fdb..f4055804aad1 100644
--- a/drivers/gpu/drm/i915/gvt/scheduler.c
+++ b/drivers/gpu/drm/i915/gvt/scheduler.c
@@ -570,9 +570,8 @@ retry:
if (gmadr_bytes == 8)
bb->bb_start_cmd_va[2] = 0;
- ret = i915_vma_move_to_active(bb->vma,
- workload->req,
- 0);
+ ret = i915_vma_move_to_active(bb->vma, workload->req,
+ __EXEC_OBJECT_NO_REQUEST_AWAIT);
if (ret)
goto err;
@@ -696,6 +695,7 @@ intel_vgpu_shadow_mm_pin(struct intel_vgpu_workload *workload)
if (workload->shadow_mm->type != INTEL_GVT_MM_PPGTT ||
!workload->shadow_mm->ppgtt_mm.shadowed) {
+ intel_vgpu_unpin_mm(workload->shadow_mm);
gvt_vgpu_err("workload shadow ppgtt isn't ready\n");
return -EINVAL;
}
@@ -866,7 +866,8 @@ pick_next_workload(struct intel_gvt *gvt, struct intel_engine_cs *engine)
goto out;
}
- if (!scheduler->current_vgpu->active ||
+ if (!test_bit(INTEL_VGPU_STATUS_ACTIVE,
+ scheduler->current_vgpu->status) ||
list_empty(workload_q_head(scheduler->current_vgpu, engine)))
goto out;
diff --git a/drivers/gpu/drm/i915/gvt/vgpu.c b/drivers/gpu/drm/i915/gvt/vgpu.c
index 56c71474008a..08ad1bd651f1 100644
--- a/drivers/gpu/drm/i915/gvt/vgpu.c
+++ b/drivers/gpu/drm/i915/gvt/vgpu.c
@@ -158,7 +158,7 @@ void intel_gvt_clean_vgpu_types(struct intel_gvt *gvt)
}
/**
- * intel_gvt_active_vgpu - activate a virtual GPU
+ * intel_gvt_activate_vgpu - activate a virtual GPU
* @vgpu: virtual GPU
*
* This function is called when user wants to activate a virtual GPU.
@@ -166,13 +166,11 @@ void intel_gvt_clean_vgpu_types(struct intel_gvt *gvt)
*/
void intel_gvt_activate_vgpu(struct intel_vgpu *vgpu)
{
- mutex_lock(&vgpu->vgpu_lock);
- vgpu->active = true;
- mutex_unlock(&vgpu->vgpu_lock);
+ set_bit(INTEL_VGPU_STATUS_ACTIVE, vgpu->status);
}
/**
- * intel_gvt_deactive_vgpu - deactivate a virtual GPU
+ * intel_gvt_deactivate_vgpu - deactivate a virtual GPU
* @vgpu: virtual GPU
*
* This function is called when user wants to deactivate a virtual GPU.
@@ -183,7 +181,7 @@ void intel_gvt_deactivate_vgpu(struct intel_vgpu *vgpu)
{
mutex_lock(&vgpu->vgpu_lock);
- vgpu->active = false;
+ clear_bit(INTEL_VGPU_STATUS_ACTIVE, vgpu->status);
if (atomic_read(&vgpu->submission.running_workload_num)) {
mutex_unlock(&vgpu->vgpu_lock);
@@ -228,7 +226,8 @@ void intel_gvt_destroy_vgpu(struct intel_vgpu *vgpu)
struct intel_gvt *gvt = vgpu->gvt;
struct drm_i915_private *i915 = gvt->gt->i915;
- drm_WARN(&i915->drm, vgpu->active, "vGPU is still active!\n");
+ drm_WARN(&i915->drm, test_bit(INTEL_VGPU_STATUS_ACTIVE, vgpu->status),
+ "vGPU is still active!\n");
/*
* remove idr first so later clean can judge if need to stop
@@ -285,8 +284,7 @@ struct intel_vgpu *intel_gvt_create_idle_vgpu(struct intel_gvt *gvt)
if (ret)
goto out_free_vgpu;
- vgpu->active = false;
-
+ clear_bit(INTEL_VGPU_STATUS_ACTIVE, vgpu->status);
return vgpu;
out_free_vgpu:
@@ -295,7 +293,7 @@ out_free_vgpu:
}
/**
- * intel_gvt_destroy_vgpu - destroy an idle virtual GPU
+ * intel_gvt_destroy_idle_vgpu - destroy an idle virtual GPU
* @vgpu: virtual GPU
*
* This function is called when user wants to destroy an idle virtual GPU.
@@ -325,7 +323,7 @@ int intel_gvt_create_vgpu(struct intel_vgpu *vgpu,
ret = idr_alloc(&gvt->vgpu_idr, vgpu, IDLE_VGPU_IDR + 1, GVT_MAX_VGPU,
GFP_KERNEL);
if (ret < 0)
- goto out_unlock;;
+ goto out_unlock;
vgpu->id = ret;
vgpu->sched_ctl.weight = conf->weight;
diff --git a/drivers/gpu/drm/i915/i915_active.c b/drivers/gpu/drm/i915/i915_active.c
index 7412abf166a8..8ef93889061a 100644
--- a/drivers/gpu/drm/i915/i915_active.c
+++ b/drivers/gpu/drm/i915/i915_active.c
@@ -92,8 +92,7 @@ static void debug_active_init(struct i915_active *ref)
static void debug_active_activate(struct i915_active *ref)
{
lockdep_assert_held(&ref->tree_lock);
- if (!atomic_read(&ref->count)) /* before the first inc */
- debug_object_activate(ref, &active_debug_desc);
+ debug_object_activate(ref, &active_debug_desc);
}
static void debug_active_deactivate(struct i915_active *ref)
@@ -422,12 +421,12 @@ replace_barrier(struct i915_active *ref, struct i915_active_fence *active)
* we can use it to substitute for the pending idle-barrer
* request that we want to emit on the kernel_context.
*/
- __active_del_barrier(ref, node_from_active(active));
- return true;
+ return __active_del_barrier(ref, node_from_active(active));
}
int i915_active_add_request(struct i915_active *ref, struct i915_request *rq)
{
+ u64 idx = i915_request_timeline(rq)->fence_context;
struct dma_fence *fence = &rq->fence;
struct i915_active_fence *active;
int err;
@@ -437,16 +436,19 @@ int i915_active_add_request(struct i915_active *ref, struct i915_request *rq)
if (err)
return err;
- active = active_instance(ref, i915_request_timeline(rq)->fence_context);
- if (!active) {
- err = -ENOMEM;
- goto out;
- }
+ do {
+ active = active_instance(ref, idx);
+ if (!active) {
+ err = -ENOMEM;
+ goto out;
+ }
+
+ if (replace_barrier(ref, active)) {
+ RCU_INIT_POINTER(active->fence, NULL);
+ atomic_dec(&ref->count);
+ }
+ } while (unlikely(is_barrier(active)));
- if (replace_barrier(ref, active)) {
- RCU_INIT_POINTER(active->fence, NULL);
- atomic_dec(&ref->count);
- }
if (!__i915_active_fence_set(active, fence))
__i915_active_acquire(ref);
diff --git a/drivers/gpu/drm/i915/i915_cmd_parser.c b/drivers/gpu/drm/i915/i915_cmd_parser.c
index f93e6122f247..ddf49c2dbb91 100644
--- a/drivers/gpu/drm/i915/i915_cmd_parser.c
+++ b/drivers/gpu/drm/i915/i915_cmd_parser.c
@@ -1471,8 +1471,8 @@ int intel_engine_cmd_parser(struct intel_engine_cs *engine,
/* Defer failure until attempted use */
jump_whitelist = alloc_whitelist(batch_length);
- shadow_addr = gen8_canonical_addr(shadow->node.start);
- batch_addr = gen8_canonical_addr(batch->node.start + batch_offset);
+ shadow_addr = gen8_canonical_addr(i915_vma_offset(shadow));
+ batch_addr = gen8_canonical_addr(i915_vma_offset(batch) + batch_offset);
/*
* We use the batch length as size because the shadow object is as
diff --git a/drivers/gpu/drm/i915/i915_config.c b/drivers/gpu/drm/i915/i915_config.c
index afb828dab53b..24e5bb8a670e 100644
--- a/drivers/gpu/drm/i915/i915_config.c
+++ b/drivers/gpu/drm/i915/i915_config.c
@@ -3,7 +3,10 @@
* Copyright © 2020 Intel Corporation
*/
-#include "i915_drv.h"
+#include <linux/kernel.h>
+
+#include "i915_config.h"
+#include "i915_utils.h"
unsigned long
i915_fence_context_timeout(const struct drm_i915_private *i915, u64 context)
diff --git a/drivers/gpu/drm/i915/i915_config.h b/drivers/gpu/drm/i915/i915_config.h
new file mode 100644
index 000000000000..10e18b036489
--- /dev/null
+++ b/drivers/gpu/drm/i915/i915_config.h
@@ -0,0 +1,23 @@
+/* SPDX-License-Identifier: MIT */
+/*
+ * Copyright © 2023 Intel Corporation
+ */
+
+#ifndef __I915_CONFIG_H__
+#define __I915_CONFIG_H__
+
+#include <linux/types.h>
+#include <linux/limits.h>
+
+struct drm_i915_private;
+
+unsigned long i915_fence_context_timeout(const struct drm_i915_private *i915,
+ u64 context);
+
+static inline unsigned long
+i915_fence_timeout(const struct drm_i915_private *i915)
+{
+ return i915_fence_context_timeout(i915, U64_MAX);
+}
+
+#endif /* __I915_CONFIG_H__ */
diff --git a/drivers/gpu/drm/i915/i915_debugfs.c b/drivers/gpu/drm/i915/i915_debugfs.c
index ae987e92251d..80c2bf98e341 100644
--- a/drivers/gpu/drm/i915/i915_debugfs.c
+++ b/drivers/gpu/drm/i915/i915_debugfs.c
@@ -52,7 +52,6 @@
#include "i915_irq.h"
#include "i915_scheduler.h"
#include "intel_mchbar_regs.h"
-#include "intel_pm.h"
static inline struct drm_i915_private *node_to_i915(struct drm_info_node *node)
{
@@ -183,7 +182,7 @@ i915_debugfs_describe_obj(struct seq_file *m, struct drm_i915_gem_object *obj)
seq_printf(m, " (%s offset: %08llx, size: %08llx, pages: %s",
stringify_vma_type(vma),
- vma->node.start, vma->node.size,
+ i915_vma_offset(vma), i915_vma_size(vma),
stringify_page_sizes(vma->resource->page_sizes_gtt,
NULL, 0));
if (i915_vma_is_ggtt(vma) || i915_vma_is_dpt(vma)) {
@@ -575,14 +574,34 @@ static int i915_wa_registers(struct seq_file *m, void *unused)
static int i915_wedged_get(void *data, u64 *val)
{
struct drm_i915_private *i915 = data;
+ struct intel_gt *gt;
+ unsigned int i;
- return intel_gt_debugfs_reset_show(to_gt(i915), val);
+ *val = 0;
+
+ for_each_gt(gt, i915, i) {
+ int ret;
+
+ ret = intel_gt_debugfs_reset_show(gt, val);
+ if (ret)
+ return ret;
+
+ /* at least one tile should be wedged */
+ if (*val)
+ break;
+ }
+
+ return 0;
}
static int i915_wedged_set(void *data, u64 val)
{
struct drm_i915_private *i915 = data;
- intel_gt_debugfs_reset_store(to_gt(i915), val);
+ struct intel_gt *gt;
+ unsigned int i;
+
+ for_each_gt(gt, i915, i)
+ intel_gt_debugfs_reset_store(gt, val);
return 0;
}
@@ -648,13 +667,14 @@ i915_drop_caches_get(void *data, u64 *val)
return 0;
}
+
static int
gt_drop_caches(struct intel_gt *gt, u64 val)
{
int ret;
if (val & DROP_RESET_ACTIVE &&
- wait_for(intel_engines_are_idle(gt), I915_IDLE_ENGINES_TIMEOUT))
+ wait_for(intel_engines_are_idle(gt), 200))
intel_gt_set_wedged(gt);
if (val & DROP_RETIRE)
@@ -688,8 +708,8 @@ i915_drop_caches_set(void *data, u64 val)
unsigned int flags;
int ret;
- DRM_DEBUG("Dropping caches: 0x%08llx [0x%08llx]\n",
- val, val & DROP_ALL);
+ drm_dbg(&i915->drm, "Dropping caches: 0x%08llx [0x%08llx]\n",
+ val, val & DROP_ALL);
ret = gt_drop_caches(to_gt(i915), val);
if (ret)
@@ -732,7 +752,11 @@ static int i915_sseu_status(struct seq_file *m, void *unused)
static int i915_forcewake_open(struct inode *inode, struct file *file)
{
struct drm_i915_private *i915 = inode->i_private;
- intel_gt_pm_debugfs_forcewake_user_open(to_gt(i915));
+ struct intel_gt *gt;
+ unsigned int i;
+
+ for_each_gt(gt, i915, i)
+ intel_gt_pm_debugfs_forcewake_user_open(gt);
return 0;
}
@@ -740,7 +764,11 @@ static int i915_forcewake_open(struct inode *inode, struct file *file)
static int i915_forcewake_release(struct inode *inode, struct file *file)
{
struct drm_i915_private *i915 = inode->i_private;
- intel_gt_pm_debugfs_forcewake_user_release(to_gt(i915));
+ struct intel_gt *gt;
+ unsigned int i;
+
+ for_each_gt(gt, i915, i)
+ intel_gt_pm_debugfs_forcewake_user_release(gt);
return 0;
}
@@ -762,7 +790,6 @@ static const struct drm_info_list i915_debugfs_list[] = {
{"i915_sseu_status", i915_sseu_status, 0},
{"i915_rps_boost_info", i915_rps_boost_info, 0},
};
-#define I915_DEBUGFS_ENTRIES ARRAY_SIZE(i915_debugfs_list)
static const struct i915_debugfs_files {
const char *name;
@@ -795,6 +822,6 @@ void i915_debugfs_register(struct drm_i915_private *dev_priv)
}
drm_debugfs_create_files(i915_debugfs_list,
- I915_DEBUGFS_ENTRIES,
+ ARRAY_SIZE(i915_debugfs_list),
minor->debugfs_root, minor);
}
diff --git a/drivers/gpu/drm/i915/i915_debugfs_params.c b/drivers/gpu/drm/i915/i915_debugfs_params.c
index 783c8676eee2..614bde321589 100644
--- a/drivers/gpu/drm/i915/i915_debugfs_params.c
+++ b/drivers/gpu/drm/i915/i915_debugfs_params.c
@@ -230,27 +230,16 @@ i915_debugfs_create_charp(const char *name, umode_t mode,
&i915_param_charp_fops);
}
-static __always_inline void
-_i915_param_create_file(struct dentry *parent, const char *name,
- const char *type, int mode, void *value)
-{
- if (!mode)
- return;
-
- if (!__builtin_strcmp(type, "bool"))
- debugfs_create_bool(name, mode, parent, value);
- else if (!__builtin_strcmp(type, "int"))
- i915_debugfs_create_int(name, mode, parent, value);
- else if (!__builtin_strcmp(type, "unsigned int"))
- i915_debugfs_create_uint(name, mode, parent, value);
- else if (!__builtin_strcmp(type, "unsigned long"))
- debugfs_create_ulong(name, mode, parent, value);
- else if (!__builtin_strcmp(type, "char *"))
- i915_debugfs_create_charp(name, mode, parent, value);
- else
- WARN(1, "no debugfs fops defined for param type %s (i915.%s)\n",
- type, name);
-}
+#define _i915_param_create_file(parent, name, mode, valp) \
+ do { \
+ if (mode) \
+ _Generic(valp, \
+ bool *: debugfs_create_bool, \
+ int *: i915_debugfs_create_int, \
+ unsigned int *: i915_debugfs_create_uint, \
+ unsigned long *: debugfs_create_ulong, \
+ char **: i915_debugfs_create_charp)(name, mode, parent, valp); \
+ } while(0)
/* add a subdirectory with files for each i915 param */
struct dentry *i915_debugfs_params(struct drm_i915_private *i915)
@@ -269,7 +258,7 @@ struct dentry *i915_debugfs_params(struct drm_i915_private *i915)
* just let the generic create file fail silently with -EEXIST.
*/
-#define REGISTER(T, x, unused, mode, ...) _i915_param_create_file(dir, #x, #T, mode, &params->x);
+#define REGISTER(T, x, unused, mode, ...) _i915_param_create_file(dir, #x, mode, &params->x);
I915_PARAMS_FOR_EACH(REGISTER);
#undef REGISTER
diff --git a/drivers/gpu/drm/i915/i915_deps.c b/drivers/gpu/drm/i915/i915_deps.c
index 297b8e4e42ee..91c61864285a 100644
--- a/drivers/gpu/drm/i915/i915_deps.c
+++ b/drivers/gpu/drm/i915/i915_deps.c
@@ -6,7 +6,7 @@
#include <linux/dma-fence.h>
#include <linux/slab.h>
-#include <drm/ttm/ttm_bo_api.h>
+#include <drm/ttm/ttm_bo.h>
#include "i915_deps.h"
diff --git a/drivers/gpu/drm/i915/i915_driver.c b/drivers/gpu/drm/i915/i915_driver.c
index f2a15d8155f4..93fdc40d724f 100644
--- a/drivers/gpu/drm/i915/i915_driver.c
+++ b/drivers/gpu/drm/i915/i915_driver.c
@@ -34,7 +34,6 @@
#include <linux/pci.h>
#include <linux/pm.h>
#include <linux/pm_runtime.h>
-#include <linux/pnp.h>
#include <linux/slab.h>
#include <linux/string_helpers.h>
#include <linux/vga_switcheroo.h>
@@ -73,14 +72,20 @@
#include "gt/intel_gt_pm.h"
#include "gt/intel_rc6.h"
+#include "pxp/intel_pxp.h"
+#include "pxp/intel_pxp_debugfs.h"
#include "pxp/intel_pxp_pm.h"
-#include "i915_file_private.h"
+#include "soc/intel_dram.h"
+#include "soc/intel_gmch.h"
+
#include "i915_debugfs.h"
#include "i915_driver.h"
#include "i915_drm_client.h"
#include "i915_drv.h"
+#include "i915_file_private.h"
#include "i915_getparam.h"
+#include "i915_hwmon.h"
#include "i915_ioc32.h"
#include "i915_ioctl.h"
#include "i915_irq.h"
@@ -92,155 +97,16 @@
#include "i915_sysfs.h"
#include "i915_utils.h"
#include "i915_vgpu.h"
-#include "intel_dram.h"
+#include "intel_clock_gating.h"
#include "intel_gvt.h"
#include "intel_memory_region.h"
#include "intel_pci_config.h"
#include "intel_pcode.h"
-#include "intel_pm.h"
#include "intel_region_ttm.h"
#include "vlv_suspend.h"
-/* Intel Rapid Start Technology ACPI device name */
-static const char irst_name[] = "INT3392";
-
static const struct drm_driver i915_drm_driver;
-static void i915_release_bridge_dev(struct drm_device *dev,
- void *bridge)
-{
- pci_dev_put(bridge);
-}
-
-static int i915_get_bridge_dev(struct drm_i915_private *dev_priv)
-{
- int domain = pci_domain_nr(to_pci_dev(dev_priv->drm.dev)->bus);
-
- dev_priv->bridge_dev =
- pci_get_domain_bus_and_slot(domain, 0, PCI_DEVFN(0, 0));
- if (!dev_priv->bridge_dev) {
- drm_err(&dev_priv->drm, "bridge device not found\n");
- return -EIO;
- }
-
- return drmm_add_action_or_reset(&dev_priv->drm, i915_release_bridge_dev,
- dev_priv->bridge_dev);
-}
-
-/* Allocate space for the MCH regs if needed, return nonzero on error */
-static int
-intel_alloc_mchbar_resource(struct drm_i915_private *dev_priv)
-{
- int reg = GRAPHICS_VER(dev_priv) >= 4 ? MCHBAR_I965 : MCHBAR_I915;
- u32 temp_lo, temp_hi = 0;
- u64 mchbar_addr;
- int ret;
-
- if (GRAPHICS_VER(dev_priv) >= 4)
- pci_read_config_dword(dev_priv->bridge_dev, reg + 4, &temp_hi);
- pci_read_config_dword(dev_priv->bridge_dev, reg, &temp_lo);
- mchbar_addr = ((u64)temp_hi << 32) | temp_lo;
-
- /* If ACPI doesn't have it, assume we need to allocate it ourselves */
-#ifdef CONFIG_PNP
- if (mchbar_addr &&
- pnp_range_reserved(mchbar_addr, mchbar_addr + MCHBAR_SIZE))
- return 0;
-#endif
-
- /* Get some space for it */
- dev_priv->mch_res.name = "i915 MCHBAR";
- dev_priv->mch_res.flags = IORESOURCE_MEM;
- ret = pci_bus_alloc_resource(dev_priv->bridge_dev->bus,
- &dev_priv->mch_res,
- MCHBAR_SIZE, MCHBAR_SIZE,
- PCIBIOS_MIN_MEM,
- 0, pcibios_align_resource,
- dev_priv->bridge_dev);
- if (ret) {
- drm_dbg(&dev_priv->drm, "failed bus alloc: %d\n", ret);
- dev_priv->mch_res.start = 0;
- return ret;
- }
-
- if (GRAPHICS_VER(dev_priv) >= 4)
- pci_write_config_dword(dev_priv->bridge_dev, reg + 4,
- upper_32_bits(dev_priv->mch_res.start));
-
- pci_write_config_dword(dev_priv->bridge_dev, reg,
- lower_32_bits(dev_priv->mch_res.start));
- return 0;
-}
-
-/* Setup MCHBAR if possible, return true if we should disable it again */
-static void
-intel_setup_mchbar(struct drm_i915_private *dev_priv)
-{
- int mchbar_reg = GRAPHICS_VER(dev_priv) >= 4 ? MCHBAR_I965 : MCHBAR_I915;
- u32 temp;
- bool enabled;
-
- if (IS_VALLEYVIEW(dev_priv) || IS_CHERRYVIEW(dev_priv))
- return;
-
- dev_priv->mchbar_need_disable = false;
-
- if (IS_I915G(dev_priv) || IS_I915GM(dev_priv)) {
- pci_read_config_dword(dev_priv->bridge_dev, DEVEN, &temp);
- enabled = !!(temp & DEVEN_MCHBAR_EN);
- } else {
- pci_read_config_dword(dev_priv->bridge_dev, mchbar_reg, &temp);
- enabled = temp & 1;
- }
-
- /* If it's already enabled, don't have to do anything */
- if (enabled)
- return;
-
- if (intel_alloc_mchbar_resource(dev_priv))
- return;
-
- dev_priv->mchbar_need_disable = true;
-
- /* Space is allocated or reserved, so enable it. */
- if (IS_I915G(dev_priv) || IS_I915GM(dev_priv)) {
- pci_write_config_dword(dev_priv->bridge_dev, DEVEN,
- temp | DEVEN_MCHBAR_EN);
- } else {
- pci_read_config_dword(dev_priv->bridge_dev, mchbar_reg, &temp);
- pci_write_config_dword(dev_priv->bridge_dev, mchbar_reg, temp | 1);
- }
-}
-
-static void
-intel_teardown_mchbar(struct drm_i915_private *dev_priv)
-{
- int mchbar_reg = GRAPHICS_VER(dev_priv) >= 4 ? MCHBAR_I965 : MCHBAR_I915;
-
- if (dev_priv->mchbar_need_disable) {
- if (IS_I915G(dev_priv) || IS_I915GM(dev_priv)) {
- u32 deven_val;
-
- pci_read_config_dword(dev_priv->bridge_dev, DEVEN,
- &deven_val);
- deven_val &= ~DEVEN_MCHBAR_EN;
- pci_write_config_dword(dev_priv->bridge_dev, DEVEN,
- deven_val);
- } else {
- u32 mchbar_val;
-
- pci_read_config_dword(dev_priv->bridge_dev, mchbar_reg,
- &mchbar_val);
- mchbar_val &= ~1;
- pci_write_config_dword(dev_priv->bridge_dev, mchbar_reg,
- mchbar_val);
- }
- }
-
- if (dev_priv->mch_res.start)
- release_resource(&dev_priv->mch_res);
-}
-
static int i915_workqueues_init(struct drm_i915_private *dev_priv)
{
/*
@@ -301,6 +167,8 @@ static void intel_detect_preproduction_hw(struct drm_i915_private *dev_priv)
pre |= IS_KABYLAKE(dev_priv) && INTEL_REVID(dev_priv) < 0x1;
pre |= IS_GEMINILAKE(dev_priv) && INTEL_REVID(dev_priv) < 0x3;
pre |= IS_ICELAKE(dev_priv) && INTEL_REVID(dev_priv) < 0x7;
+ pre |= IS_TIGERLAKE(dev_priv) && INTEL_REVID(dev_priv) < 0x1;
+ pre |= IS_DG1(dev_priv) && INTEL_REVID(dev_priv) < 0x1;
if (pre) {
drm_err(&dev_priv->drm, "This is a pre-production stepping. "
@@ -337,7 +205,8 @@ static int i915_driver_early_probe(struct drm_i915_private *dev_priv)
if (i915_inject_probe_failure(dev_priv))
return -ENODEV;
- intel_device_info_subplatform_init(dev_priv);
+ intel_device_info_runtime_init_early(dev_priv);
+
intel_step_init(dev_priv);
intel_uncore_mmio_debug_init_early(dev_priv);
@@ -370,8 +239,6 @@ static int i915_driver_early_probe(struct drm_i915_private *dev_priv)
if (ret)
goto err_ttm;
- intel_wopcm_init_early(&dev_priv->wopcm);
-
ret = intel_root_gt_init_early(dev_priv);
if (ret < 0)
goto err_rootgt;
@@ -383,22 +250,14 @@ static int i915_driver_early_probe(struct drm_i915_private *dev_priv)
/* This must be called before any calls to HAS_PCH_* */
intel_detect_pch(dev_priv);
- intel_pm_setup(dev_priv);
- ret = intel_power_domains_init(dev_priv);
- if (ret < 0)
- goto err_gem;
intel_irq_init(dev_priv);
intel_init_display_hooks(dev_priv);
- intel_init_clock_gating_hooks(dev_priv);
+ intel_clock_gating_hooks_init(dev_priv);
intel_detect_preproduction_hw(dev_priv);
return 0;
-err_gem:
- i915_gem_cleanup_early(dev_priv);
- intel_gt_driver_late_release_all(dev_priv);
- i915_drm_clients_fini(&dev_priv->clients);
err_rootgt:
intel_region_ttm_device_fini(dev_priv);
err_ttm:
@@ -447,7 +306,7 @@ static int i915_driver_mmio_probe(struct drm_i915_private *dev_priv)
if (i915_inject_probe_failure(dev_priv))
return -ENODEV;
- ret = i915_get_bridge_dev(dev_priv);
+ ret = intel_gmch_bridge_setup(dev_priv);
if (ret < 0)
return ret;
@@ -464,7 +323,7 @@ static int i915_driver_mmio_probe(struct drm_i915_private *dev_priv)
}
/* Try to make sure MCHBAR is enabled before poking at it */
- intel_setup_mchbar(dev_priv);
+ intel_gmch_bar_setup(dev_priv);
intel_device_info_runtime_init(dev_priv);
for_each_gt(gt, dev_priv, i) {
@@ -479,7 +338,7 @@ static int i915_driver_mmio_probe(struct drm_i915_private *dev_priv)
return 0;
err_uncore:
- intel_teardown_mchbar(dev_priv);
+ intel_gmch_bar_teardown(dev_priv);
return ret;
}
@@ -490,7 +349,7 @@ err_uncore:
*/
static void i915_driver_mmio_release(struct drm_i915_private *dev_priv)
{
- intel_teardown_mchbar(dev_priv);
+ intel_gmch_bar_teardown(dev_priv);
}
/**
@@ -610,11 +469,9 @@ static int i915_driver_hw_probe(struct drm_i915_private *dev_priv)
if (ret)
return ret;
- i915_perf_init(dev_priv);
-
- ret = intel_gt_assign_ggtt(to_gt(dev_priv));
+ ret = i915_perf_init(dev_priv);
if (ret)
- goto err_perf;
+ return ret;
ret = i915_ggtt_probe_hw(dev_priv);
if (ret)
@@ -628,13 +485,17 @@ static int i915_driver_hw_probe(struct drm_i915_private *dev_priv)
if (ret)
goto err_ggtt;
- ret = intel_memory_regions_hw_probe(dev_priv);
+ /*
+ * Make sure we probe lmem before we probe stolen-lmem. The BAR size
+ * might be different due to bar resizing.
+ */
+ ret = intel_gt_tiles_init(dev_priv);
if (ret)
goto err_ggtt;
- ret = intel_gt_tiles_init(dev_priv);
+ ret = intel_memory_regions_hw_probe(dev_priv);
if (ret)
- goto err_mem_regions;
+ goto err_ggtt;
ret = i915_ggtt_enable_hw(dev_priv);
if (ret) {
@@ -676,7 +537,7 @@ static int i915_driver_hw_probe(struct drm_i915_private *dev_priv)
ret = i915_pcode_init(dev_priv);
if (ret)
- goto err_msi;
+ goto err_opregion;
/*
* Fill the dram structure to get the system dram info. This will be
@@ -697,6 +558,8 @@ static int i915_driver_hw_probe(struct drm_i915_private *dev_priv)
return 0;
+err_opregion:
+ intel_opregion_cleanup(dev_priv);
err_msi:
if (pdev->msi_enabled)
pci_disable_msi(pdev);
@@ -722,6 +585,8 @@ static void i915_driver_hw_remove(struct drm_i915_private *dev_priv)
i915_perf_fini(dev_priv);
+ intel_opregion_cleanup(dev_priv);
+
if (pdev->msi_enabled)
pci_disable_msi(pdev);
@@ -739,7 +604,6 @@ static void i915_driver_hw_remove(struct drm_i915_private *dev_priv)
*/
static void i915_driver_register(struct drm_i915_private *dev_priv)
{
- struct drm_device *dev = &dev_priv->drm;
struct intel_gt *gt;
unsigned int i;
@@ -749,7 +613,7 @@ static void i915_driver_register(struct drm_i915_private *dev_priv)
intel_vgpu_register(dev_priv);
/* Reveal our presence to userspace */
- if (drm_dev_register(dev, 0)) {
+ if (drm_dev_register(&dev_priv->drm, 0)) {
drm_err(&dev_priv->drm,
"Failed to register driver for userspace access!\n");
return;
@@ -764,6 +628,10 @@ static void i915_driver_register(struct drm_i915_private *dev_priv)
for_each_gt(gt, dev_priv, i)
intel_gt_driver_register(gt);
+ intel_pxp_debugfs_register(dev_priv->pxp);
+
+ i915_hwmon_register(dev_priv);
+
intel_display_driver_register(dev_priv);
intel_power_domains_enable(dev_priv);
@@ -793,9 +661,13 @@ static void i915_driver_unregister(struct drm_i915_private *dev_priv)
intel_display_driver_unregister(dev_priv);
+ intel_pxp_fini(dev_priv);
+
for_each_gt(gt, dev_priv, i)
intel_gt_driver_unregister(gt);
+ i915_hwmon_unregister(dev_priv);
+
i915_perf_unregister(dev_priv);
i915_pmu_unregister(dev_priv);
@@ -894,10 +766,6 @@ int i915_driver_probe(struct pci_dev *pdev, const struct pci_device_id *ent)
if (IS_ERR(i915))
return PTR_ERR(i915);
- /* Disable nuclear pageflip by default on pre-ILK */
- if (!i915->params.nuclear_pageflip && DISPLAY_VER(i915) < 5)
- i915->drm.driver_features &= ~DRIVER_ATOMIC;
-
ret = pci_enable_device(pdev);
if (ret)
goto out_fini;
@@ -938,6 +806,8 @@ int i915_driver_probe(struct pci_dev *pdev, const struct pci_device_id *ent)
if (ret)
goto out_cleanup_modeset2;
+ intel_pxp_init(i915);
+
ret = intel_modeset_init(i915);
if (ret)
goto out_cleanup_gem;
@@ -1072,10 +942,9 @@ static void i915_driver_lastclose(struct drm_device *dev)
{
struct drm_i915_private *i915 = to_i915(dev);
- intel_fbdev_restore_mode(dev);
+ intel_fbdev_restore_mode(i915);
- if (HAS_DISPLAY(i915))
- vga_switcheroo_process_delayed_switch();
+ vga_switcheroo_process_delayed_switch();
}
static void i915_driver_postclose(struct drm_device *dev, struct drm_file *file)
@@ -1093,32 +962,30 @@ static void i915_driver_postclose(struct drm_device *dev, struct drm_file *file)
static void intel_suspend_encoders(struct drm_i915_private *dev_priv)
{
- struct drm_device *dev = &dev_priv->drm;
struct intel_encoder *encoder;
if (!HAS_DISPLAY(dev_priv))
return;
- drm_modeset_lock_all(dev);
- for_each_intel_encoder(dev, encoder)
+ drm_modeset_lock_all(&dev_priv->drm);
+ for_each_intel_encoder(&dev_priv->drm, encoder)
if (encoder->suspend)
encoder->suspend(encoder);
- drm_modeset_unlock_all(dev);
+ drm_modeset_unlock_all(&dev_priv->drm);
}
static void intel_shutdown_encoders(struct drm_i915_private *dev_priv)
{
- struct drm_device *dev = &dev_priv->drm;
struct intel_encoder *encoder;
if (!HAS_DISPLAY(dev_priv))
return;
- drm_modeset_lock_all(dev);
- for_each_intel_encoder(dev, encoder)
+ drm_modeset_lock_all(&dev_priv->drm);
+ for_each_intel_encoder(&dev_priv->drm, encoder)
if (encoder->shutdown)
encoder->shutdown(encoder);
- drm_modeset_unlock_all(dev);
+ drm_modeset_unlock_all(&dev_priv->drm);
}
void i915_driver_shutdown(struct drm_i915_private *i915)
@@ -1141,7 +1008,7 @@ void i915_driver_shutdown(struct drm_i915_private *i915)
intel_suspend_encoders(i915);
intel_shutdown_encoders(i915);
- intel_dmc_ucode_suspend(i915);
+ intel_dmc_suspend(i915);
i915_gem_suspend(i915);
@@ -1171,10 +1038,19 @@ static bool suspend_to_idle(struct drm_i915_private *dev_priv)
return false;
}
+static void i915_drm_complete(struct drm_device *dev)
+{
+ struct drm_i915_private *i915 = to_i915(dev);
+
+ intel_pxp_resume_complete(i915->pxp);
+}
+
static int i915_drm_prepare(struct drm_device *dev)
{
struct drm_i915_private *i915 = to_i915(dev);
+ intel_pxp_suspend_prepare(i915->pxp);
+
/*
* NB intel_display_suspend() may issue new requests after we've
* ostensibly marked the GPU as ready-to-sleep here. We need to
@@ -1209,8 +1085,6 @@ static int i915_drm_suspend(struct drm_device *dev)
intel_suspend_encoders(dev_priv);
- intel_suspend_hw(dev_priv);
-
/* Must be called before GGTT is suspended. */
intel_dpt_suspend(dev_priv);
i915_ggtt_suspend(to_gt(dev_priv)->ggtt);
@@ -1224,7 +1098,7 @@ static int i915_drm_suspend(struct drm_device *dev)
dev_priv->suspend_count++;
- intel_dmc_ucode_suspend(dev_priv);
+ intel_dmc_suspend(dev_priv);
enable_rpm_wakeref_asserts(&dev_priv->runtime_pm);
@@ -1255,6 +1129,8 @@ static int i915_drm_suspend_late(struct drm_device *dev, bool hibernation)
disable_rpm_wakeref_asserts(rpm);
+ intel_pxp_suspend(dev_priv->pxp);
+
i915_gem_suspend_late(dev_priv);
for_each_gt(gt, dev_priv, i)
@@ -1319,7 +1195,8 @@ int i915_driver_suspend_switcheroo(struct drm_i915_private *i915,
static int i915_drm_resume(struct drm_device *dev)
{
struct drm_i915_private *dev_priv = to_i915(dev);
- int ret;
+ struct intel_gt *gt;
+ int ret, i;
disable_rpm_wakeref_asserts(&dev_priv->runtime_pm);
@@ -1334,10 +1211,15 @@ static int i915_drm_resume(struct drm_device *dev)
drm_err(&dev_priv->drm, "failed to re-enable GGTT\n");
i915_ggtt_resume(to_gt(dev_priv)->ggtt);
+
+ for_each_gt(gt, dev_priv, i)
+ if (GRAPHICS_VER(gt->i915) >= 8)
+ setup_private_pat(gt);
+
/* Must be called after GGTT is resumed. */
intel_dpt_resume(dev_priv);
- intel_dmc_ucode_resume(dev_priv);
+ intel_dmc_resume(dev_priv);
i915_restore_display(dev_priv);
intel_pps_unlock_regs_wa(dev_priv);
@@ -1362,7 +1244,7 @@ static int i915_drm_resume(struct drm_device *dev)
i915_gem_resume(dev_priv);
intel_modeset_init_hw(dev_priv);
- intel_init_clock_gating(dev_priv);
+ intel_clock_gating_init(dev_priv);
intel_hpd_init(dev_priv);
/* MST sideband requires HPD interrupts enabled */
@@ -1497,8 +1379,6 @@ static int i915_pm_suspend(struct device *kdev)
return -ENODEV;
}
- i915_ggtt_mark_pte_lost(i915, false);
-
if (i915->drm.switch_power_state == DRM_SWITCH_POWER_OFF)
return 0;
@@ -1551,17 +1431,19 @@ static int i915_pm_resume(struct device *kdev)
if (i915->drm.switch_power_state == DRM_SWITCH_POWER_OFF)
return 0;
- /*
- * If IRST is enabled, or if we can't detect whether it's enabled,
- * then we must assume we lost the GGTT page table entries, since
- * they are not retained if IRST decided to enter S4.
- */
- if (!IS_ENABLED(CONFIG_ACPI) || acpi_dev_present(irst_name, NULL, -1))
- i915_ggtt_mark_pte_lost(i915, true);
-
return i915_drm_resume(&i915->drm);
}
+static void i915_pm_complete(struct device *kdev)
+{
+ struct drm_i915_private *i915 = kdev_to_i915(kdev);
+
+ if (i915->drm.switch_power_state == DRM_SWITCH_POWER_OFF)
+ return;
+
+ i915_drm_complete(&i915->drm);
+}
+
/* freeze: before creating the hibernation_image */
static int i915_pm_freeze(struct device *kdev)
{
@@ -1618,9 +1500,6 @@ static int i915_pm_restore_early(struct device *kdev)
static int i915_pm_restore(struct device *kdev)
{
- struct drm_i915_private *i915 = kdev_to_i915(kdev);
-
- i915_ggtt_mark_pte_lost(i915, true);
return i915_pm_resume(kdev);
}
@@ -1644,6 +1523,8 @@ static int intel_runtime_suspend(struct device *kdev)
*/
i915_gem_runtime_suspend(dev_priv);
+ intel_pxp_runtime_suspend(dev_priv->pxp);
+
for_each_gt(gt, dev_priv, i)
intel_gt_runtime_suspend(gt);
@@ -1662,7 +1543,8 @@ static int intel_runtime_suspend(struct device *kdev)
intel_runtime_pm_enable_interrupts(dev_priv);
- intel_gt_runtime_resume(to_gt(dev_priv));
+ for_each_gt(gt, dev_priv, i)
+ intel_gt_runtime_resume(gt);
enable_rpm_wakeref_asserts(rpm);
@@ -1747,6 +1629,8 @@ static int intel_runtime_resume(struct device *kdev)
for_each_gt(gt, dev_priv, i)
intel_gt_runtime_resume(gt);
+ intel_pxp_runtime_resume(dev_priv->pxp);
+
/*
* On VLV/CHV display interrupts are part of the display
* power well, so hpd is reinitialized from there. For
@@ -1780,6 +1664,7 @@ const struct dev_pm_ops i915_pm_ops = {
.suspend_late = i915_pm_suspend_late,
.resume_early = i915_pm_resume_early,
.resume = i915_pm_resume,
+ .complete = i915_pm_complete,
/*
* S4 event handlers
diff --git a/drivers/gpu/drm/i915/i915_drm_client.c b/drivers/gpu/drm/i915/i915_drm_client.c
index b09d1d386574..e8fa172ebe5e 100644
--- a/drivers/gpu/drm/i915/i915_drm_client.c
+++ b/drivers/gpu/drm/i915/i915_drm_client.c
@@ -130,7 +130,7 @@ void i915_drm_client_fdinfo(struct seq_file *m, struct file *f)
{
struct drm_file *file = f->private_data;
struct drm_i915_file_private *file_priv = file->driver_priv;
- struct drm_i915_private *i915 = file_priv->dev_priv;
+ struct drm_i915_private *i915 = file_priv->i915;
struct i915_drm_client *client = file_priv->client;
struct pci_dev *pdev = to_pci_dev(i915->drm.dev);
unsigned int i;
diff --git a/drivers/gpu/drm/i915/i915_drv.h b/drivers/gpu/drm/i915/i915_drv.h
index bdc81db76dbd..e771fdc3099c 100644
--- a/drivers/gpu/drm/i915/i915_drv.h
+++ b/drivers/gpu/drm/i915/i915_drv.h
@@ -36,11 +36,10 @@
#include <drm/ttm/ttm_device.h>
-#include "display/intel_display.h"
+#include "display/intel_display_limits.h"
#include "display/intel_display_core.h"
#include "gem/i915_gem_context_types.h"
-#include "gem/i915_gem_lmem.h"
#include "gem/i915_gem_shrinker.h"
#include "gem/i915_gem_stolen.h"
@@ -50,6 +49,8 @@
#include "gt/intel_workarounds.h"
#include "gt/uc/intel_uc.h"
+#include "soc/intel_pch.h"
+
#include "i915_drm_client.h"
#include "i915_gem.h"
#include "i915_gpu_error.h"
@@ -59,35 +60,46 @@
#include "i915_utils.h"
#include "intel_device_info.h"
#include "intel_memory_region.h"
-#include "intel_pch.h"
#include "intel_runtime_pm.h"
#include "intel_step.h"
#include "intel_uncore.h"
-#include "intel_wopcm.h"
struct drm_i915_clock_gating_funcs;
-struct drm_i915_gem_object;
-struct drm_i915_private;
-struct intel_connector;
-struct intel_dp;
-struct intel_encoder;
-struct intel_limit;
-struct intel_overlay_error_state;
struct vlv_s0ix_state;
+struct intel_pxp;
-/* Threshold == 5 for long IRQs, 50 for short */
-#define HPD_STORM_DEFAULT_THRESHOLD 50
+#define GEM_QUIRK_PIN_SWIZZLED_PAGES BIT(0)
-#define I915_GEM_GPU_DOMAINS \
- (I915_GEM_DOMAIN_RENDER | \
- I915_GEM_DOMAIN_SAMPLER | \
- I915_GEM_DOMAIN_COMMAND | \
- I915_GEM_DOMAIN_INSTRUCTION | \
- I915_GEM_DOMAIN_VERTEX)
+/* Data Stolen Memory (DSM) aka "i915 stolen memory" */
+struct i915_dsm {
+ /*
+ * The start and end of DSM which we can optionally use to create GEM
+ * objects backed by stolen memory.
+ *
+ * Note that usable_size tells us exactly how much of this we are
+ * actually allowed to use, given that some portion of it is in fact
+ * reserved for use by hardware functions.
+ */
+ struct resource stolen;
-#define I915_COLOR_UNEVICTABLE (-1) /* a non-vma sharing the address space */
+ /*
+ * Reserved portion of DSM.
+ */
+ struct resource reserved;
-#define GEM_QUIRK_PIN_SWIZZLED_PAGES BIT(0)
+ /*
+ * Total size minus reserved ranges.
+ *
+ * DSM is segmented in hardware with different portions offlimits to
+ * certain functions.
+ *
+ * The drm_mm is initialised to the total accessible range, as found
+ * from the PCI config. On Broadwell+, this is further restricted to
+ * avoid the first page! The upper end of DSM is reserved for hardware
+ * functions and similarly removed from the accessible range.
+ */
+ resource_size_t usable_size;
+};
struct i915_suspend_saved_registers {
u32 saveDSPARB;
@@ -166,19 +178,6 @@ struct i915_gem_mm {
u32 shrink_count;
};
-#define I915_IDLE_ENGINES_TIMEOUT (200) /* in ms */
-
-unsigned long i915_fence_context_timeout(const struct drm_i915_private *i915,
- u64 context);
-
-static inline unsigned long
-i915_fence_timeout(const struct drm_i915_private *i915)
-{
- return i915_fence_context_timeout(i915, U64_MAX);
-}
-
-#define HAS_HW_SAGV_WM(i915) (DISPLAY_VER(i915) >= 13 && !IS_DGFX(i915))
-
struct i915_virtual_gpu {
struct mutex lock; /* serialises sending of g2v_notify command pkts */
bool active;
@@ -208,29 +207,7 @@ struct drm_i915_private {
struct intel_runtime_info __runtime; /* Use RUNTIME_INFO() to access. */
struct intel_driver_caps caps;
- /**
- * Data Stolen Memory - aka "i915 stolen memory" gives us the start and
- * end of stolen which we can optionally use to create GEM objects
- * backed by stolen memory. Note that stolen_usable_size tells us
- * exactly how much of this we are actually allowed to use, given that
- * some portion of it is in fact reserved for use by hardware functions.
- */
- struct resource dsm;
- /**
- * Reseved portion of Data Stolen Memory
- */
- struct resource dsm_reserved;
-
- /*
- * Stolen memory is segmented in hardware with different portions
- * offlimits to certain functions.
- *
- * The drm_mm is initialised to the total accessible range, as found
- * from the PCI config. On Broadwell+, this is further restricted to
- * avoid the first page! The upper end of stolen memory is reserved for
- * hardware functions and similarly removed from the accessible range.
- */
- resource_size_t stolen_usable_size; /* Total size minus reserved ranges */
+ struct i915_dsm dsm;
struct intel_uncore uncore;
struct intel_uncore_mmio_debug mmio_debug;
@@ -239,15 +216,15 @@ struct drm_i915_private {
struct intel_gvt *gvt;
- struct intel_wopcm wopcm;
-
- struct pci_dev *bridge_dev;
+ struct {
+ struct pci_dev *pdev;
+ struct resource mch_res;
+ bool mchbar_need_disable;
+ } gmch;
struct rb_root uabi_engines;
unsigned int engine_uabi_class_count[I915_LAST_UABI_ENGINE_CLASS + 1];
- struct resource mch_res;
-
/* protects the irq masks */
spinlock_t irq_lock;
@@ -291,28 +268,11 @@ struct drm_i915_private {
unsigned long gem_quirks;
- struct drm_atomic_state *modeset_restore_state;
- struct drm_modeset_acquire_ctx reset_ctx;
-
struct i915_gem_mm mm;
- /* Kernel Modesetting */
-
- struct list_head global_obj_list;
-
- bool mchbar_need_disable;
-
struct intel_l3_parity l3_parity;
/*
- * HTI (aka HDPORT) state read during initial hw readout. Most
- * platforms don't have HTI, so this will just stay 0. Those that do
- * will use this later to figure out which PLLs and PHYs are unavailable
- * for driver usage.
- */
- u32 hti_state;
-
- /*
* edram size in MB.
* Cannot be determined by PCIID. You must always read a register.
*/
@@ -320,14 +280,6 @@ struct drm_i915_private {
struct i915_gpu_error gpu_error;
- /*
- * Shadows for CHV DPLL_MD regs to keep the state
- * checker somewhat working in the presence hardware
- * crappiness (can't read out DPLL_MD for pipes B & C).
- */
- u32 chv_dpll_md[I915_MAX_PIPES];
- u32 bxt_phy_grc;
-
u32 suspend_count;
struct i915_suspend_saved_registers regfile;
struct vlv_s0ix_state *vlv_s0ix_state;
@@ -353,6 +305,8 @@ struct drm_i915_private {
struct i915_perf perf;
+ struct i915_hwmon *hwmon;
+
/* Abstract the submission mechanism (legacy ringbuffer or execlists) away */
struct intel_gt gt0;
@@ -384,19 +338,13 @@ struct drm_i915_private {
struct file *mmap_singleton;
} gem;
- u8 pch_ssc_use;
+ struct intel_pxp *pxp;
/* For i915gm/i945gm vblank irq workaround */
u8 vblank_enabled;
bool irq_enabled;
- /*
- * DG2: Mask of PHYs that were not calibrated by the firmware
- * and should not be used.
- */
- u8 snps_phy_failed_calibration;
-
struct i915_pmu pmu;
struct i915_drm_clients clients;
@@ -485,8 +433,6 @@ static inline struct intel_gt *to_gt(struct drm_i915_private *i915)
#define INTEL_REVID(dev_priv) (to_pci_dev((dev_priv)->drm.dev)->revision)
-#define HAS_DSB(dev_priv) (INTEL_INFO(dev_priv)->display.has_dsb)
-
#define INTEL_DISPLAY_STEP(__i915) (RUNTIME_INFO(__i915)->step.display_step)
#define INTEL_GRAPHICS_STEP(__i915) (RUNTIME_INFO(__i915)->step.graphics_step)
#define INTEL_MEDIA_STEP(__i915) (RUNTIME_INFO(__i915)->step.media_step)
@@ -634,6 +580,8 @@ IS_SUBPLATFORM(const struct drm_i915_private *i915,
IS_SUBPLATFORM(dev_priv, INTEL_ALDERLAKE_P, INTEL_SUBPLATFORM_N)
#define IS_ADLP_RPLP(dev_priv) \
IS_SUBPLATFORM(dev_priv, INTEL_ALDERLAKE_P, INTEL_SUBPLATFORM_RPL)
+#define IS_ADLP_RPLU(dev_priv) \
+ IS_SUBPLATFORM(dev_priv, INTEL_ALDERLAKE_P, INTEL_SUBPLATFORM_RPLU)
#define IS_HSW_EARLY_SDV(dev_priv) (IS_HASWELL(dev_priv) && \
(INTEL_DEVID(dev_priv) & 0xFF00) == 0x0C00)
#define IS_BDW_ULT(dev_priv) \
@@ -707,22 +655,9 @@ IS_SUBPLATFORM(const struct drm_i915_private *i915,
(IS_TIGERLAKE(__i915) && \
IS_DISPLAY_STEP(__i915, since, until))
-#define IS_TGL_UY_GRAPHICS_STEP(__i915, since, until) \
- (IS_TGL_UY(__i915) && \
- IS_GRAPHICS_STEP(__i915, since, until))
-
-#define IS_TGL_GRAPHICS_STEP(__i915, since, until) \
- (IS_TIGERLAKE(__i915) && !IS_TGL_UY(__i915)) && \
- IS_GRAPHICS_STEP(__i915, since, until))
-
#define IS_RKL_DISPLAY_STEP(p, since, until) \
(IS_ROCKETLAKE(p) && IS_DISPLAY_STEP(p, since, until))
-#define IS_DG1_GRAPHICS_STEP(p, since, until) \
- (IS_DG1(p) && IS_GRAPHICS_STEP(p, since, until))
-#define IS_DG1_DISPLAY_STEP(p, since, until) \
- (IS_DG1(p) && IS_DISPLAY_STEP(p, since, until))
-
#define IS_ADLS_DISPLAY_STEP(__i915, since, until) \
(IS_ALDERLAKE_S(__i915) && \
IS_DISPLAY_STEP(__i915, since, until))
@@ -742,6 +677,18 @@ IS_SUBPLATFORM(const struct drm_i915_private *i915,
#define IS_XEHPSDV_GRAPHICS_STEP(__i915, since, until) \
(IS_XEHPSDV(__i915) && IS_GRAPHICS_STEP(__i915, since, until))
+#define IS_MTL_GRAPHICS_STEP(__i915, variant, since, until) \
+ (IS_SUBPLATFORM(__i915, INTEL_METEORLAKE, INTEL_SUBPLATFORM_##variant) && \
+ IS_GRAPHICS_STEP(__i915, since, until))
+
+#define IS_MTL_DISPLAY_STEP(__i915, since, until) \
+ (IS_METEORLAKE(__i915) && \
+ IS_DISPLAY_STEP(__i915, since, until))
+
+#define IS_MTL_MEDIA_STEP(__i915, since, until) \
+ (IS_METEORLAKE(__i915) && \
+ IS_MEDIA_STEP(__i915, since, until))
+
/*
* DG2 hardware steppings are a bit unusual. The hardware design was forked to
* create three variants (G10, G11, and G12) which each have distinct
@@ -780,12 +727,15 @@ IS_SUBPLATFORM(const struct drm_i915_private *i915,
#define __HAS_ENGINE(engine_mask, id) ((engine_mask) & BIT(id))
#define HAS_ENGINE(gt, id) __HAS_ENGINE((gt)->info.engine_mask, id)
-#define ENGINE_INSTANCES_MASK(gt, first, count) ({ \
+#define __ENGINE_INSTANCES_MASK(mask, first, count) ({ \
unsigned int first__ = (first); \
unsigned int count__ = (count); \
- ((gt)->info.engine_mask & \
- GENMASK(first__ + count__ - 1, first__)) >> first__; \
+ ((mask) & GENMASK(first__ + count__ - 1, first__)) >> first__; \
})
+
+#define ENGINE_INSTANCES_MASK(gt, first, count) \
+ __ENGINE_INSTANCES_MASK((gt)->info.engine_mask, first, count)
+
#define RCS_MASK(gt) \
ENGINE_INSTANCES_MASK(gt, RCS0, I915_MAX_RCS)
#define BCS_MASK(gt) \
@@ -863,6 +813,8 @@ IS_SUBPLATFORM(const struct drm_i915_private *i915,
#define HAS_FBC(dev_priv) (RUNTIME_INFO(dev_priv)->fbc_mask != 0)
#define HAS_CUR_FBC(dev_priv) (!HAS_GMCH(dev_priv) && DISPLAY_VER(dev_priv) >= 7)
+#define HAS_DPT(dev_priv) (DISPLAY_VER(dev_priv) >= 13)
+
#define HAS_IPS(dev_priv) (IS_HSW_ULT(dev_priv) || IS_BROADWELL(dev_priv))
#define HAS_DP_MST(dev_priv) (INTEL_INFO(dev_priv)->display.has_dp_mst)
@@ -871,6 +823,7 @@ IS_SUBPLATFORM(const struct drm_i915_private *i915,
#define HAS_DOUBLE_BUFFERED_M_N(dev_priv) (DISPLAY_VER(dev_priv) >= 9 || IS_BROADWELL(dev_priv))
#define HAS_CDCLK_CRAWL(dev_priv) (INTEL_INFO(dev_priv)->display.has_cdclk_crawl)
+#define HAS_CDCLK_SQUASH(dev_priv) (INTEL_INFO(dev_priv)->display.has_cdclk_squash)
#define HAS_DDI(dev_priv) (INTEL_INFO(dev_priv)->display.has_ddi)
#define HAS_FPGA_DBG_UNCLAIMED(dev_priv) (INTEL_INFO(dev_priv)->display.has_fpga_dbg)
#define HAS_PSR(dev_priv) (INTEL_INFO(dev_priv)->display.has_psr)
@@ -886,6 +839,9 @@ IS_SUBPLATFORM(const struct drm_i915_private *i915,
#define HAS_RPS(dev_priv) (INTEL_INFO(dev_priv)->has_rps)
#define HAS_DMC(dev_priv) (RUNTIME_INFO(dev_priv)->has_dmc)
+#define HAS_DSB(dev_priv) (INTEL_INFO(dev_priv)->display.has_dsb)
+#define HAS_DSC(__i915) (RUNTIME_INFO(__i915)->has_dsc)
+#define HAS_HW_SAGV_WM(i915) (DISPLAY_VER(i915) >= 13 && !IS_DGFX(i915))
#define HAS_HECI_PXP(dev_priv) \
(INTEL_INFO(dev_priv)->has_heci_pxp)
@@ -900,20 +856,21 @@ IS_SUBPLATFORM(const struct drm_i915_private *i915,
#define HAS_RUNTIME_PM(dev_priv) (INTEL_INFO(dev_priv)->has_runtime_pm)
#define HAS_64BIT_RELOC(dev_priv) (INTEL_INFO(dev_priv)->has_64bit_reloc)
+#define HAS_OA_BPC_REPORTING(dev_priv) \
+ (INTEL_INFO(dev_priv)->has_oa_bpc_reporting)
+#define HAS_OA_SLICE_CONTRIB_LIMITS(dev_priv) \
+ (INTEL_INFO(dev_priv)->has_oa_slice_contrib_limits)
+#define HAS_OAM(dev_priv) \
+ (INTEL_INFO(dev_priv)->has_oam)
+
/*
* Set this flag, when platform requires 64K GTT page sizes or larger for
* device local memory access.
*/
#define HAS_64K_PAGES(dev_priv) (INTEL_INFO(dev_priv)->has_64k_pages)
-/*
- * Set this flag when platform doesn't allow both 64k pages and 4k pages in
- * the same PT. this flag means we need to support compact PT layout for the
- * ppGTT when using the 64K GTT pages.
- */
-#define NEEDS_COMPACT_PT(dev_priv) (INTEL_INFO(dev_priv)->needs_compact_pt)
-
-#define HAS_IPC(dev_priv) (INTEL_INFO(dev_priv)->display.has_ipc)
+#define HAS_IPC(dev_priv) (INTEL_INFO(dev_priv)->display.has_ipc)
+#define HAS_SAGV(dev_priv) (DISPLAY_VER(dev_priv) >= 9 && !IS_LP(dev_priv))
#define HAS_REGION(i915, i) (RUNTIME_INFO(i915)->memory_regions & (i))
#define HAS_LMEM(i915) HAS_REGION(i915, REGION_LMEM)
@@ -932,12 +889,10 @@ IS_SUBPLATFORM(const struct drm_i915_private *i915,
#define HAS_GLOBAL_MOCS_REGISTERS(dev_priv) (INTEL_INFO(dev_priv)->has_global_mocs)
-#define HAS_PXP(dev_priv) ((IS_ENABLED(CONFIG_DRM_I915_PXP) && \
- INTEL_INFO(dev_priv)->has_pxp) && \
- VDBOX_MASK(to_gt(dev_priv)))
-
#define HAS_GMCH(dev_priv) (INTEL_INFO(dev_priv)->display.has_gmch)
+#define HAS_GMD_ID(i915) (INTEL_INFO(i915)->has_gmd_id)
+
#define HAS_LSPCON(dev_priv) (IS_DISPLAY_VER(dev_priv, 9, 10))
#define HAS_L3_CCS_READ(i915) (INTEL_INFO(i915)->has_l3_ccs_read)
@@ -947,9 +902,6 @@ IS_SUBPLATFORM(const struct drm_i915_private *i915,
#define NUM_L3_SLICES(dev_priv) (IS_HSW_GT3(dev_priv) ? \
2 : HAS_L3_DPF(dev_priv))
-#define GT_FREQUENCY_MULTIPLIER 50
-#define GEN9_FREQ_SCALER 3
-
#define INTEL_NUM_PIPES(dev_priv) (hweight8(RUNTIME_INFO(dev_priv)->pipe_mask))
#define HAS_DISPLAY(dev_priv) (RUNTIME_INFO(dev_priv)->pipe_mask != 0)
@@ -976,6 +928,9 @@ IS_SUBPLATFORM(const struct drm_i915_private *i915,
#define HAS_ONE_EU_PER_FUSE_BIT(i915) (INTEL_INFO(i915)->has_one_eu_per_fuse_bit)
+#define HAS_LMEMBAR_SMEM_STOLEN(i915) (!HAS_LMEM(i915) && \
+ GRAPHICS_VER_FULL(i915) >= IP_VER(12, 70))
+
/* intel_device_info.c */
static inline struct intel_device_info *
mkwrite_device_info(struct drm_i915_private *dev_priv)
@@ -983,16 +938,4 @@ mkwrite_device_info(struct drm_i915_private *dev_priv)
return (struct intel_device_info *)INTEL_INFO(dev_priv);
}
-static inline enum i915_map_type
-i915_coherent_map_type(struct drm_i915_private *i915,
- struct drm_i915_gem_object *obj, bool always_coherent)
-{
- if (i915_gem_object_is_lmem(obj))
- return I915_MAP_WC;
- if (HAS_LLC(i915) || always_coherent)
- return I915_MAP_WB;
- else
- return I915_MAP_WC;
-}
-
#endif
diff --git a/drivers/gpu/drm/i915/i915_file_private.h b/drivers/gpu/drm/i915/i915_file_private.h
index f42877869692..c9cb8eecacde 100644
--- a/drivers/gpu/drm/i915/i915_file_private.h
+++ b/drivers/gpu/drm/i915/i915_file_private.h
@@ -15,7 +15,7 @@ struct drm_file;
struct i915_drm_client;
struct drm_i915_file_private {
- struct drm_i915_private *dev_priv;
+ struct drm_i915_private *i915;
union {
struct drm_file *file;
diff --git a/drivers/gpu/drm/i915/i915_gem.c b/drivers/gpu/drm/i915/i915_gem.c
index 2bdddb61ebd7..0a78bdbd36b1 100644
--- a/drivers/gpu/drm/i915/i915_gem.c
+++ b/drivers/gpu/drm/i915/i915_gem.c
@@ -58,7 +58,7 @@
#include "i915_file_private.h"
#include "i915_trace.h"
#include "i915_vgpu.h"
-#include "intel_pm.h"
+#include "intel_clock_gating.h"
static int
insert_mappable_node(struct i915_ggtt *ggtt, struct drm_mm_node *node, u32 size)
@@ -229,8 +229,9 @@ i915_gem_shmem_pread(struct drm_i915_gem_object *obj,
struct drm_i915_gem_pread *args)
{
unsigned int needs_clflush;
- unsigned int idx, offset;
char __user *user_data;
+ unsigned long offset;
+ pgoff_t idx;
u64 remain;
int ret;
@@ -383,13 +384,17 @@ i915_gem_gtt_pread(struct drm_i915_gem_object *obj,
{
struct drm_i915_private *i915 = to_i915(obj->base.dev);
struct i915_ggtt *ggtt = to_gt(i915)->ggtt;
+ unsigned long remain, offset;
intel_wakeref_t wakeref;
struct drm_mm_node node;
void __user *user_data;
struct i915_vma *vma;
- u64 remain, offset;
int ret = 0;
+ if (overflows_type(args->size, remain) ||
+ overflows_type(args->offset, offset))
+ return -EINVAL;
+
wakeref = intel_runtime_pm_get(&i915->runtime_pm);
vma = i915_gem_gtt_prepare(obj, &node, false);
@@ -439,7 +444,7 @@ out_rpm:
}
/**
- * Reads data from the object referenced by handle.
+ * i915_gem_pread_ioctl - Reads data from the object referenced by handle.
* @dev: drm device pointer
* @data: ioctl data blob
* @file: drm file pointer
@@ -528,7 +533,7 @@ ggtt_write(struct io_mapping *mapping,
}
/**
- * This is the fast pwrite path, where we copy the data directly from the
+ * i915_gem_gtt_pwrite_fast - This is the fast pwrite path, where we copy the data directly from the
* user into the GTT, uncached.
* @obj: i915 GEM object
* @args: pwrite arguments structure
@@ -540,13 +545,17 @@ i915_gem_gtt_pwrite_fast(struct drm_i915_gem_object *obj,
struct drm_i915_private *i915 = to_i915(obj->base.dev);
struct i915_ggtt *ggtt = to_gt(i915)->ggtt;
struct intel_runtime_pm *rpm = &i915->runtime_pm;
+ unsigned long remain, offset;
intel_wakeref_t wakeref;
struct drm_mm_node node;
struct i915_vma *vma;
- u64 remain, offset;
void __user *user_data;
int ret = 0;
+ if (overflows_type(args->size, remain) ||
+ overflows_type(args->offset, offset))
+ return -EINVAL;
+
if (i915_gem_object_has_struct_page(obj)) {
/*
* Avoid waking the device up if we can fallback, as
@@ -654,8 +663,9 @@ i915_gem_shmem_pwrite(struct drm_i915_gem_object *obj,
{
unsigned int partial_cacheline_write;
unsigned int needs_clflush;
- unsigned int offset, idx;
void __user *user_data;
+ unsigned long offset;
+ pgoff_t idx;
u64 remain;
int ret;
@@ -713,7 +723,7 @@ err_unlock:
}
/**
- * Writes data to the object referenced by handle.
+ * i915_gem_pwrite_ioctl - Writes data to the object referenced by handle.
* @dev: drm device
* @data: ioctl data blob
* @file: drm file
@@ -798,7 +808,7 @@ err:
}
/**
- * Called when user space has done writes to this buffer
+ * i915_gem_sw_finish_ioctl - Called when user space has done writes to this buffer
* @dev: drm device
* @data: ioctl data blob
* @file: drm file
@@ -843,7 +853,7 @@ void i915_gem_runtime_suspend(struct drm_i915_private *i915)
__i915_gem_object_release_mmap_gtt(obj);
list_for_each_entry_safe(obj, on,
- &to_gt(i915)->lmem_userfault_list, userfault_link)
+ &i915->runtime_pm.lmem_userfault_list, userfault_link)
i915_gem_object_runtime_pm_release_mmap_offset(obj);
/*
@@ -1099,7 +1109,7 @@ void i915_gem_drain_freed_objects(struct drm_i915_private *i915)
{
while (atomic_read(&i915->mm.free_count)) {
flush_work(&i915->mm.free_work);
- flush_delayed_work(&i915->bdev.wq);
+ drain_workqueue(i915->bdev.wq);
rcu_barrier();
}
}
@@ -1128,6 +1138,8 @@ void i915_gem_drain_workqueue(struct drm_i915_private *i915)
int i915_gem_init(struct drm_i915_private *dev_priv)
{
+ struct intel_gt *gt;
+ unsigned int i;
int ret;
/* We need to fallback to 4K pages if host doesn't support huge gtt. */
@@ -1138,8 +1150,12 @@ int i915_gem_init(struct drm_i915_private *dev_priv)
if (ret)
return ret;
- intel_uc_fetch_firmwares(&to_gt(dev_priv)->uc);
- intel_wopcm_init(&dev_priv->wopcm);
+ for_each_gt(gt, dev_priv, i) {
+ intel_uc_fetch_firmwares(&gt->uc);
+ intel_wopcm_init(&gt->wopcm);
+ if (GRAPHICS_VER(dev_priv) >= 8)
+ setup_private_pat(gt);
+ }
ret = i915_init_ggtt(dev_priv);
if (ret) {
@@ -1148,7 +1164,7 @@ int i915_gem_init(struct drm_i915_private *dev_priv)
}
/*
- * Despite its name intel_init_clock_gating applies both display
+ * Despite its name intel_clock_gating_init applies both display
* clock gating workarounds; GT mmio workarounds and the occasional
* GT power context workaround. Worse, sometimes it includes a context
* register workaround which we need to apply before we record the
@@ -1156,11 +1172,13 @@ int i915_gem_init(struct drm_i915_private *dev_priv)
*
* FIXME: break up the workarounds and apply them at the right time!
*/
- intel_init_clock_gating(dev_priv);
+ intel_clock_gating_init(dev_priv);
- ret = intel_gt_init(to_gt(dev_priv));
- if (ret)
- goto err_unlock;
+ for_each_gt(gt, dev_priv, i) {
+ ret = intel_gt_init(gt);
+ if (ret)
+ goto err_unlock;
+ }
return 0;
@@ -1173,8 +1191,13 @@ int i915_gem_init(struct drm_i915_private *dev_priv)
err_unlock:
i915_gem_drain_workqueue(dev_priv);
- if (ret != -EIO)
- intel_uc_cleanup_firmwares(&to_gt(dev_priv)->uc);
+ if (ret != -EIO) {
+ for_each_gt(gt, dev_priv, i) {
+ intel_gt_driver_remove(gt);
+ intel_gt_driver_release(gt);
+ intel_uc_cleanup_firmwares(&gt->uc);
+ }
+ }
if (ret == -EIO) {
/*
@@ -1182,16 +1205,18 @@ err_unlock:
* as wedged. But we only want to do this when the GPU is angry,
* for all other failure, such as an allocation failure, bail.
*/
- if (!intel_gt_is_wedged(to_gt(dev_priv))) {
- i915_probe_error(dev_priv,
- "Failed to initialize GPU, declaring it wedged!\n");
- intel_gt_set_wedged(to_gt(dev_priv));
+ for_each_gt(gt, dev_priv, i) {
+ if (!intel_gt_is_wedged(gt)) {
+ i915_probe_error(dev_priv,
+ "Failed to initialize GPU, declaring it wedged!\n");
+ intel_gt_set_wedged(gt);
+ }
}
/* Minimal basic recovery for KMS */
ret = i915_ggtt_enable_hw(dev_priv);
i915_ggtt_resume(to_gt(dev_priv)->ggtt);
- intel_init_clock_gating(dev_priv);
+ intel_clock_gating_init(dev_priv);
}
i915_gem_drain_freed_objects(dev_priv);
@@ -1213,23 +1238,27 @@ void i915_gem_driver_unregister(struct drm_i915_private *i915)
void i915_gem_driver_remove(struct drm_i915_private *dev_priv)
{
- intel_wakeref_auto_fini(&to_gt(dev_priv)->userfault_wakeref);
+ struct intel_gt *gt;
+ unsigned int i;
i915_gem_suspend_late(dev_priv);
- intel_gt_driver_remove(to_gt(dev_priv));
+ for_each_gt(gt, dev_priv, i)
+ intel_gt_driver_remove(gt);
dev_priv->uabi_engines = RB_ROOT;
/* Flush any outstanding unpin_work. */
i915_gem_drain_workqueue(dev_priv);
-
- i915_gem_drain_freed_objects(dev_priv);
}
void i915_gem_driver_release(struct drm_i915_private *dev_priv)
{
- intel_gt_driver_release(to_gt(dev_priv));
+ struct intel_gt *gt;
+ unsigned int i;
- intel_uc_cleanup_firmwares(&to_gt(dev_priv)->uc);
+ for_each_gt(gt, dev_priv, i) {
+ intel_gt_driver_release(gt);
+ intel_uc_cleanup_firmwares(&gt->uc);
+ }
/* Flush any outstanding work, including i915_gem_context.release_work. */
i915_gem_drain_workqueue(dev_priv);
@@ -1259,7 +1288,7 @@ void i915_gem_init_early(struct drm_i915_private *dev_priv)
void i915_gem_cleanup_early(struct drm_i915_private *dev_priv)
{
- i915_gem_drain_freed_objects(dev_priv);
+ i915_gem_drain_workqueue(dev_priv);
GEM_BUG_ON(!llist_empty(&dev_priv->mm.free_list));
GEM_BUG_ON(atomic_read(&dev_priv->mm.free_count));
drm_WARN_ON(&dev_priv->drm, dev_priv->mm.shrink_count);
@@ -1271,7 +1300,7 @@ int i915_gem_open(struct drm_i915_private *i915, struct drm_file *file)
struct i915_drm_client *client;
int ret = -ENOMEM;
- DRM_DEBUG("\n");
+ drm_dbg(&i915->drm, "\n");
file_priv = kzalloc(sizeof(*file_priv), GFP_KERNEL);
if (!file_priv)
@@ -1284,7 +1313,7 @@ int i915_gem_open(struct drm_i915_private *i915, struct drm_file *file)
}
file->driver_priv = file_priv;
- file_priv->dev_priv = i915;
+ file_priv->i915 = i915;
file_priv->file = file;
file_priv->client = client;
diff --git a/drivers/gpu/drm/i915/i915_gem.h b/drivers/gpu/drm/i915/i915_gem.h
index a5cdf6662d01..82e9d289398c 100644
--- a/drivers/gpu/drm/i915/i915_gem.h
+++ b/drivers/gpu/drm/i915/i915_gem.h
@@ -39,6 +39,13 @@ struct i915_gem_ww_ctx;
struct i915_gtt_view;
struct i915_vma;
+#define I915_GEM_GPU_DOMAINS \
+ (I915_GEM_DOMAIN_RENDER | \
+ I915_GEM_DOMAIN_SAMPLER | \
+ I915_GEM_DOMAIN_COMMAND | \
+ I915_GEM_DOMAIN_INSTRUCTION | \
+ I915_GEM_DOMAIN_VERTEX)
+
void i915_gem_init_early(struct drm_i915_private *i915);
void i915_gem_cleanup_early(struct drm_i915_private *i915);
diff --git a/drivers/gpu/drm/i915/i915_gem_evict.c b/drivers/gpu/drm/i915/i915_gem_evict.c
index f025ee4fa526..c02ebd6900ae 100644
--- a/drivers/gpu/drm/i915/i915_gem_evict.c
+++ b/drivers/gpu/drm/i915/i915_gem_evict.c
@@ -43,16 +43,25 @@ static bool dying_vma(struct i915_vma *vma)
return !kref_read(&vma->obj->base.refcount);
}
-static int ggtt_flush(struct intel_gt *gt)
+static int ggtt_flush(struct i915_address_space *vm)
{
- /*
- * Not everything in the GGTT is tracked via vma (otherwise we
- * could evict as required with minimal stalling) so we are forced
- * to idle the GPU and explicitly retire outstanding requests in
- * the hopes that we can then remove contexts and the like only
- * bound by their active reference.
- */
- return intel_gt_wait_for_idle(gt, MAX_SCHEDULE_TIMEOUT);
+ struct i915_ggtt *ggtt = i915_vm_to_ggtt(vm);
+ struct intel_gt *gt;
+ int ret = 0;
+
+ list_for_each_entry(gt, &ggtt->gt_list, ggtt_link) {
+ /*
+ * Not everything in the GGTT is tracked via vma (otherwise we
+ * could evict as required with minimal stalling) so we are forced
+ * to idle the GPU and explicitly retire outstanding requests in
+ * the hopes that we can then remove contexts and the like only
+ * bound by their active reference.
+ */
+ ret = intel_gt_wait_for_idle(gt, MAX_SCHEDULE_TIMEOUT);
+ if (ret)
+ return ret;
+ }
+ return ret;
}
static bool grab_vma(struct i915_vma *vma, struct i915_gem_ww_ctx *ww)
@@ -149,6 +158,7 @@ i915_gem_evict_something(struct i915_address_space *vm,
struct drm_mm_node *node;
enum drm_mm_insert_mode mode;
struct i915_vma *active;
+ struct intel_gt *gt;
int ret;
lockdep_assert_held(&vm->mutex);
@@ -174,7 +184,14 @@ i915_gem_evict_something(struct i915_address_space *vm,
min_size, alignment, color,
start, end, mode);
- intel_gt_retire_requests(vm->gt);
+ if (i915_is_ggtt(vm)) {
+ struct i915_ggtt *ggtt = i915_vm_to_ggtt(vm);
+
+ list_for_each_entry(gt, &ggtt->gt_list, ggtt_link)
+ intel_gt_retire_requests(gt);
+ } else {
+ intel_gt_retire_requests(vm->gt);
+ }
search_again:
active = NULL;
@@ -246,7 +263,7 @@ search_again:
if (I915_SELFTEST_ONLY(igt_evict_ctl.fail_if_busy))
return -EBUSY;
- ret = ggtt_flush(vm->gt);
+ ret = ggtt_flush(vm);
if (ret)
return ret;
@@ -332,7 +349,15 @@ int i915_gem_evict_for_node(struct i915_address_space *vm,
* a stray pin (preventing eviction) that can only be resolved by
* retiring.
*/
- intel_gt_retire_requests(vm->gt);
+ if (i915_is_ggtt(vm)) {
+ struct i915_ggtt *ggtt = i915_vm_to_ggtt(vm);
+ struct intel_gt *gt;
+
+ list_for_each_entry(gt, &ggtt->gt_list, ggtt_link)
+ intel_gt_retire_requests(gt);
+ } else {
+ intel_gt_retire_requests(vm->gt);
+ }
if (i915_vm_has_cache_coloring(vm)) {
/* Expand search to cover neighbouring guard pages (or lack!) */
@@ -416,6 +441,11 @@ int i915_gem_evict_for_node(struct i915_address_space *vm,
* @vm: Address space to cleanse
* @ww: An optional struct i915_gem_ww_ctx. If not NULL, i915_gem_evict_vm
* will be able to evict vma's locked by the ww as well.
+ * @busy_bo: Optional pointer to struct drm_i915_gem_object. If not NULL, then
+ * in the event i915_gem_evict_vm() is unable to trylock an object for eviction,
+ * then @busy_bo will point to it. -EBUSY is also returned. The caller must drop
+ * the vm->mutex, before trying again to acquire the contended lock. The caller
+ * also owns a reference to the object.
*
* This function evicts all vmas from a vm.
*
@@ -425,7 +455,8 @@ int i915_gem_evict_for_node(struct i915_address_space *vm,
* To clarify: This is for freeing up virtual address space, not for freeing
* memory in e.g. the shrinker.
*/
-int i915_gem_evict_vm(struct i915_address_space *vm, struct i915_gem_ww_ctx *ww)
+int i915_gem_evict_vm(struct i915_address_space *vm, struct i915_gem_ww_ctx *ww,
+ struct drm_i915_gem_object **busy_bo)
{
int ret = 0;
@@ -438,7 +469,7 @@ int i915_gem_evict_vm(struct i915_address_space *vm, struct i915_gem_ww_ctx *ww)
* switch otherwise is ineffective.
*/
if (i915_is_ggtt(vm)) {
- ret = ggtt_flush(vm->gt);
+ ret = ggtt_flush(vm);
if (ret)
return ret;
}
@@ -457,15 +488,22 @@ int i915_gem_evict_vm(struct i915_address_space *vm, struct i915_gem_ww_ctx *ww)
* the resv is shared among multiple objects, we still
* need the object ref.
*/
- if (dying_vma(vma) ||
+ if (!i915_gem_object_get_rcu(vma->obj) ||
(ww && (dma_resv_locking_ctx(vma->obj->base.resv) == &ww->ctx))) {
__i915_vma_pin(vma);
list_add(&vma->evict_link, &locked_eviction_list);
continue;
}
- if (!i915_gem_object_trylock(vma->obj, ww))
+ if (!i915_gem_object_trylock(vma->obj, ww)) {
+ if (busy_bo) {
+ *busy_bo = vma->obj; /* holds ref */
+ ret = -EBUSY;
+ break;
+ }
+ i915_gem_object_put(vma->obj);
continue;
+ }
__i915_vma_pin(vma);
list_add(&vma->evict_link, &eviction_list);
@@ -473,25 +511,29 @@ int i915_gem_evict_vm(struct i915_address_space *vm, struct i915_gem_ww_ctx *ww)
if (list_empty(&eviction_list) && list_empty(&locked_eviction_list))
break;
- ret = 0;
/* Unbind locked objects first, before unlocking the eviction_list */
list_for_each_entry_safe(vma, vn, &locked_eviction_list, evict_link) {
__i915_vma_unpin(vma);
- if (ret == 0)
+ if (ret == 0) {
ret = __i915_vma_unbind(vma);
- if (ret != -EINTR) /* "Get me out of here!" */
- ret = 0;
+ if (ret != -EINTR) /* "Get me out of here!" */
+ ret = 0;
+ }
+ if (!dying_vma(vma))
+ i915_gem_object_put(vma->obj);
}
list_for_each_entry_safe(vma, vn, &eviction_list, evict_link) {
__i915_vma_unpin(vma);
- if (ret == 0)
+ if (ret == 0) {
ret = __i915_vma_unbind(vma);
- if (ret != -EINTR) /* "Get me out of here!" */
- ret = 0;
+ if (ret != -EINTR) /* "Get me out of here!" */
+ ret = 0;
+ }
i915_gem_object_unlock(vma->obj);
+ i915_gem_object_put(vma->obj);
}
} while (ret == 0);
diff --git a/drivers/gpu/drm/i915/i915_gem_evict.h b/drivers/gpu/drm/i915/i915_gem_evict.h
index e593c530f9bd..bf0ee0e4fe60 100644
--- a/drivers/gpu/drm/i915/i915_gem_evict.h
+++ b/drivers/gpu/drm/i915/i915_gem_evict.h
@@ -11,6 +11,7 @@
struct drm_mm_node;
struct i915_address_space;
struct i915_gem_ww_ctx;
+struct drm_i915_gem_object;
int __must_check i915_gem_evict_something(struct i915_address_space *vm,
struct i915_gem_ww_ctx *ww,
@@ -23,6 +24,7 @@ int __must_check i915_gem_evict_for_node(struct i915_address_space *vm,
struct drm_mm_node *node,
unsigned int flags);
int i915_gem_evict_vm(struct i915_address_space *vm,
- struct i915_gem_ww_ctx *ww);
+ struct i915_gem_ww_ctx *ww,
+ struct drm_i915_gem_object **busy_bo);
#endif /* __I915_GEM_EVICT_H__ */
diff --git a/drivers/gpu/drm/i915/i915_gem_gtt.h b/drivers/gpu/drm/i915/i915_gem_gtt.h
index 8c2f57eb5dda..3d77679bf211 100644
--- a/drivers/gpu/drm/i915/i915_gem_gtt.h
+++ b/drivers/gpu/drm/i915/i915_gem_gtt.h
@@ -18,6 +18,8 @@ struct drm_i915_gem_object;
struct i915_address_space;
struct i915_gem_ww_ctx;
+#define I915_COLOR_UNEVICTABLE (-1) /* a non-vma sharing the address space */
+
int __must_check i915_gem_gtt_prepare_pages(struct drm_i915_gem_object *obj,
struct sg_table *pages);
void i915_gem_gtt_finish_pages(struct drm_i915_gem_object *obj,
@@ -44,7 +46,8 @@ int i915_gem_gtt_insert(struct i915_address_space *vm,
#define PIN_HIGH BIT_ULL(5)
#define PIN_OFFSET_BIAS BIT_ULL(6)
#define PIN_OFFSET_FIXED BIT_ULL(7)
-#define PIN_VALIDATE BIT_ULL(8) /* validate placement only, no need to call unpin() */
+#define PIN_OFFSET_GUARD BIT_ULL(8)
+#define PIN_VALIDATE BIT_ULL(9) /* validate placement only, no need to call unpin() */
#define PIN_GLOBAL BIT_ULL(10) /* I915_VMA_GLOBAL_BIND */
#define PIN_USER BIT_ULL(11) /* I915_VMA_LOCAL_BIND */
diff --git a/drivers/gpu/drm/i915/i915_getparam.c b/drivers/gpu/drm/i915/i915_getparam.c
index 342c8ca6414e..2238e096c957 100644
--- a/drivers/gpu/drm/i915/i915_getparam.c
+++ b/drivers/gpu/drm/i915/i915_getparam.c
@@ -173,10 +173,13 @@ int i915_getparam_ioctl(struct drm_device *dev, void *data,
value = INTEL_INFO(i915)->has_coherent_ggtt;
break;
case I915_PARAM_PERF_REVISION:
- value = i915_perf_ioctl_version();
+ value = i915_perf_ioctl_version(i915);
+ break;
+ case I915_PARAM_OA_TIMESTAMP_FREQUENCY:
+ value = i915_perf_oa_timestamp_frequency(i915);
break;
default:
- DRM_DEBUG("Unknown parameter %d\n", param->param);
+ drm_dbg(&i915->drm, "Unknown parameter %d\n", param->param);
return -EINVAL;
}
diff --git a/drivers/gpu/drm/i915/i915_gpu_error.c b/drivers/gpu/drm/i915/i915_gpu_error.c
index 9ea2fe34e7d3..f020c0086fbc 100644
--- a/drivers/gpu/drm/i915/i915_gpu_error.c
+++ b/drivers/gpu/drm/i915/i915_gpu_error.c
@@ -55,6 +55,7 @@
#include "i915_drv.h"
#include "i915_gpu_error.h"
#include "i915_memcpy.h"
+#include "i915_reg.h"
#include "i915_scatterlist.h"
#include "i915_utils.h"
@@ -504,6 +505,7 @@ static void error_print_context(struct drm_i915_error_state_buf *m,
header, ctx->comm, ctx->pid, ctx->sched_attr.priority,
ctx->guilty, ctx->active,
ctx->total_runtime, ctx->avg_runtime);
+ err_printf(m, " context timeline seqno %u\n", ctx->hwsp_seqno);
}
static struct i915_vma_coredump *
@@ -1221,7 +1223,10 @@ static void engine_record_registers(struct intel_engine_coredump *ee)
if (GRAPHICS_VER(i915) >= 6) {
ee->rc_psmi = ENGINE_READ(engine, RING_PSMI_CTL);
- if (GRAPHICS_VER(i915) >= 12)
+ if (GRAPHICS_VER_FULL(i915) >= IP_VER(12, 50))
+ ee->fault_reg = intel_gt_mcr_read_any(engine->gt,
+ XEHP_RING_FAULT_REG);
+ else if (GRAPHICS_VER(i915) >= 12)
ee->fault_reg = intel_uncore_read(engine->uncore,
GEN12_RING_FAULT_REG);
else if (GRAPHICS_VER(i915) >= 8)
@@ -1366,14 +1371,14 @@ static void engine_record_execlists(struct intel_engine_coredump *ee)
}
static bool record_context(struct i915_gem_context_coredump *e,
- const struct i915_request *rq)
+ struct intel_context *ce)
{
struct i915_gem_context *ctx;
struct task_struct *task;
bool simulated;
rcu_read_lock();
- ctx = rcu_dereference(rq->context->gem_context);
+ ctx = rcu_dereference(ce->gem_context);
if (ctx && !kref_get_unless_zero(&ctx->ref))
ctx = NULL;
rcu_read_unlock();
@@ -1391,9 +1396,11 @@ static bool record_context(struct i915_gem_context_coredump *e,
e->sched_attr = ctx->sched;
e->guilty = atomic_read(&ctx->guilty_count);
e->active = atomic_read(&ctx->active_count);
+ e->hwsp_seqno = (ce->timeline && ce->timeline->hwsp_seqno) ?
+ *ce->timeline->hwsp_seqno : ~0U;
- e->total_runtime = intel_context_get_total_runtime_ns(rq->context);
- e->avg_runtime = intel_context_get_avg_runtime_ns(rq->context);
+ e->total_runtime = intel_context_get_total_runtime_ns(ce);
+ e->avg_runtime = intel_context_get_avg_runtime_ns(ce);
simulated = i915_gem_context_no_error_capture(ctx);
@@ -1528,15 +1535,37 @@ intel_engine_coredump_alloc(struct intel_engine_cs *engine, gfp_t gfp, u32 dump_
return ee;
}
+static struct intel_engine_capture_vma *
+engine_coredump_add_context(struct intel_engine_coredump *ee,
+ struct intel_context *ce,
+ gfp_t gfp)
+{
+ struct intel_engine_capture_vma *vma = NULL;
+
+ ee->simulated |= record_context(&ee->context, ce);
+ if (ee->simulated)
+ return NULL;
+
+ /*
+ * We need to copy these to an anonymous buffer
+ * as the simplest method to avoid being overwritten
+ * by userspace.
+ */
+ vma = capture_vma(vma, ce->ring->vma, "ring", gfp);
+ vma = capture_vma(vma, ce->state, "HW context", gfp);
+
+ return vma;
+}
+
struct intel_engine_capture_vma *
intel_engine_coredump_add_request(struct intel_engine_coredump *ee,
struct i915_request *rq,
gfp_t gfp)
{
- struct intel_engine_capture_vma *vma = NULL;
+ struct intel_engine_capture_vma *vma;
- ee->simulated |= record_context(&ee->context, rq);
- if (ee->simulated)
+ vma = engine_coredump_add_context(ee, rq->context, gfp);
+ if (!vma)
return NULL;
/*
@@ -1546,8 +1575,6 @@ intel_engine_coredump_add_request(struct intel_engine_coredump *ee,
*/
vma = capture_vma_snapshot(vma, rq->batch_res, gfp, "batch");
vma = capture_user(vma, rq, gfp);
- vma = capture_vma(vma, rq->ring->vma, "ring", gfp);
- vma = capture_vma(vma, rq->context->state, "HW context", gfp);
ee->rq_head = rq->head;
ee->rq_post = rq->postfix;
@@ -1592,54 +1619,36 @@ capture_engine(struct intel_engine_cs *engine,
{
struct intel_engine_capture_vma *capture = NULL;
struct intel_engine_coredump *ee;
- struct intel_context *ce;
+ struct intel_context *ce = NULL;
struct i915_request *rq = NULL;
- unsigned long flags;
ee = intel_engine_coredump_alloc(engine, ALLOW_FAIL, dump_flags);
if (!ee)
return NULL;
- ce = intel_engine_get_hung_context(engine);
- if (ce) {
- intel_engine_clear_hung_context(engine);
- rq = intel_context_find_active_request(ce);
- if (!rq || !i915_request_started(rq))
- goto no_request_capture;
- } else {
- /*
- * Getting here with GuC enabled means it is a forced error capture
- * with no actual hang. So, no need to attempt the execlist search.
- */
- if (!intel_uc_uses_guc_submission(&engine->gt->uc)) {
- spin_lock_irqsave(&engine->sched_engine->lock, flags);
- rq = intel_engine_execlist_find_hung_request(engine);
- spin_unlock_irqrestore(&engine->sched_engine->lock,
- flags);
- }
- }
- if (rq)
- rq = i915_request_get_rcu(rq);
-
- if (!rq)
- goto no_request_capture;
+ intel_engine_get_hung_entity(engine, &ce, &rq);
+ if (rq && !i915_request_started(rq))
+ drm_info(&engine->gt->i915->drm, "Got hung context on %s with active request %lld:%lld [0x%04X] not yet started\n",
+ engine->name, rq->fence.context, rq->fence.seqno, ce->guc_id.id);
- capture = intel_engine_coredump_add_request(ee, rq, ATOMIC_MAYFAIL);
- if (!capture) {
+ if (rq) {
+ capture = intel_engine_coredump_add_request(ee, rq, ATOMIC_MAYFAIL);
i915_request_put(rq);
- goto no_request_capture;
+ } else if (ce) {
+ capture = engine_coredump_add_context(ee, ce, ATOMIC_MAYFAIL);
}
- if (dump_flags & CORE_DUMP_FLAG_IS_GUC_CAPTURE)
- intel_guc_capture_get_matching_node(engine->gt, ee, ce);
- intel_engine_coredump_add_vma(ee, capture, compress);
- i915_request_put(rq);
+ if (capture) {
+ intel_engine_coredump_add_vma(ee, capture, compress);
- return ee;
+ if (dump_flags & CORE_DUMP_FLAG_IS_GUC_CAPTURE)
+ intel_guc_capture_get_matching_node(engine->gt, ee, ce);
+ } else {
+ kfree(ee);
+ ee = NULL;
+ }
-no_request_capture:
- kfree(ee);
- return NULL;
+ return ee;
}
static void
@@ -1820,7 +1829,12 @@ static void gt_record_global_regs(struct intel_gt_coredump *gt)
if (GRAPHICS_VER(i915) == 7)
gt->err_int = intel_uncore_read(uncore, GEN7_ERR_INT);
- if (GRAPHICS_VER(i915) >= 12) {
+ if (GRAPHICS_VER_FULL(i915) >= IP_VER(12, 50)) {
+ gt->fault_data0 = intel_gt_mcr_read_any((struct intel_gt *)gt->_gt,
+ XEHP_FAULT_TLB_DATA0);
+ gt->fault_data1 = intel_gt_mcr_read_any((struct intel_gt *)gt->_gt,
+ XEHP_FAULT_TLB_DATA1);
+ } else if (GRAPHICS_VER(i915) >= 12) {
gt->fault_data0 = intel_uncore_read(uncore,
GEN12_FAULT_TLB_DATA0);
gt->fault_data1 = intel_uncore_read(uncore,
diff --git a/drivers/gpu/drm/i915/i915_gpu_error.h b/drivers/gpu/drm/i915/i915_gpu_error.h
index efc75cc2ffdb..a91932cc6531 100644
--- a/drivers/gpu/drm/i915/i915_gpu_error.h
+++ b/drivers/gpu/drm/i915/i915_gpu_error.h
@@ -94,7 +94,7 @@ struct intel_engine_coredump {
struct intel_instdone instdone;
/* GuC matched capture-lists info */
- struct intel_guc_state_capture *capture;
+ struct intel_guc_state_capture *guc_capture;
struct __guc_capture_parsed_output *guc_capture_node;
struct i915_gem_context_coredump {
@@ -107,6 +107,7 @@ struct intel_engine_coredump {
int active;
int guilty;
struct i915_sched_attr sched_attr;
+ u32 hwsp_seqno;
} context;
struct i915_vma_coredump *vma;
diff --git a/drivers/gpu/drm/i915/i915_hwmon.c b/drivers/gpu/drm/i915/i915_hwmon.c
new file mode 100644
index 000000000000..8e7dccc8d3a0
--- /dev/null
+++ b/drivers/gpu/drm/i915/i915_hwmon.c
@@ -0,0 +1,790 @@
+// SPDX-License-Identifier: MIT
+/*
+ * Copyright © 2022 Intel Corporation
+ */
+
+#include <linux/hwmon.h>
+#include <linux/hwmon-sysfs.h>
+#include <linux/types.h>
+
+#include "i915_drv.h"
+#include "i915_hwmon.h"
+#include "i915_reg.h"
+#include "intel_mchbar_regs.h"
+#include "intel_pcode.h"
+#include "gt/intel_gt.h"
+#include "gt/intel_gt_regs.h"
+
+/*
+ * SF_* - scale factors for particular quantities according to hwmon spec.
+ * - voltage - millivolts
+ * - power - microwatts
+ * - curr - milliamperes
+ * - energy - microjoules
+ * - time - milliseconds
+ */
+#define SF_VOLTAGE 1000
+#define SF_POWER 1000000
+#define SF_CURR 1000
+#define SF_ENERGY 1000000
+#define SF_TIME 1000
+
+struct hwm_reg {
+ i915_reg_t gt_perf_status;
+ i915_reg_t pkg_power_sku_unit;
+ i915_reg_t pkg_power_sku;
+ i915_reg_t pkg_rapl_limit;
+ i915_reg_t energy_status_all;
+ i915_reg_t energy_status_tile;
+};
+
+struct hwm_energy_info {
+ u32 reg_val_prev;
+ long accum_energy; /* Accumulated energy for energy1_input */
+};
+
+struct hwm_drvdata {
+ struct i915_hwmon *hwmon;
+ struct intel_uncore *uncore;
+ struct device *hwmon_dev;
+ struct hwm_energy_info ei; /* Energy info for energy1_input */
+ char name[12];
+ int gt_n;
+};
+
+struct i915_hwmon {
+ struct hwm_drvdata ddat;
+ struct hwm_drvdata ddat_gt[I915_MAX_GT];
+ struct mutex hwmon_lock; /* counter overflow logic and rmw */
+ struct hwm_reg rg;
+ int scl_shift_power;
+ int scl_shift_energy;
+ int scl_shift_time;
+};
+
+static void
+hwm_locked_with_pm_intel_uncore_rmw(struct hwm_drvdata *ddat,
+ i915_reg_t reg, u32 clear, u32 set)
+{
+ struct i915_hwmon *hwmon = ddat->hwmon;
+ struct intel_uncore *uncore = ddat->uncore;
+ intel_wakeref_t wakeref;
+
+ mutex_lock(&hwmon->hwmon_lock);
+
+ with_intel_runtime_pm(uncore->rpm, wakeref)
+ intel_uncore_rmw(uncore, reg, clear, set);
+
+ mutex_unlock(&hwmon->hwmon_lock);
+}
+
+/*
+ * This function's return type of u64 allows for the case where the scaling
+ * of the field taken from the 32-bit register value might cause a result to
+ * exceed 32 bits.
+ */
+static u64
+hwm_field_read_and_scale(struct hwm_drvdata *ddat, i915_reg_t rgadr,
+ u32 field_msk, int nshift, u32 scale_factor)
+{
+ struct intel_uncore *uncore = ddat->uncore;
+ intel_wakeref_t wakeref;
+ u32 reg_value;
+
+ with_intel_runtime_pm(uncore->rpm, wakeref)
+ reg_value = intel_uncore_read(uncore, rgadr);
+
+ reg_value = REG_FIELD_GET(field_msk, reg_value);
+
+ return mul_u64_u32_shr(reg_value, scale_factor, nshift);
+}
+
+/*
+ * hwm_energy - Obtain energy value
+ *
+ * The underlying energy hardware register is 32-bits and is subject to
+ * overflow. How long before overflow? For example, with an example
+ * scaling bit shift of 14 bits (see register *PACKAGE_POWER_SKU_UNIT) and
+ * a power draw of 1000 watts, the 32-bit counter will overflow in
+ * approximately 4.36 minutes.
+ *
+ * Examples:
+ * 1 watt: (2^32 >> 14) / 1 W / (60 * 60 * 24) secs/day -> 3 days
+ * 1000 watts: (2^32 >> 14) / 1000 W / 60 secs/min -> 4.36 minutes
+ *
+ * The function significantly increases overflow duration (from 4.36
+ * minutes) by accumulating the energy register into a 'long' as allowed by
+ * the hwmon API. Using x86_64 128 bit arithmetic (see mul_u64_u32_shr()),
+ * a 'long' of 63 bits, SF_ENERGY of 1e6 (~20 bits) and
+ * hwmon->scl_shift_energy of 14 bits we have 57 (63 - 20 + 14) bits before
+ * energy1_input overflows. This at 1000 W is an overflow duration of 278 years.
+ */
+static void
+hwm_energy(struct hwm_drvdata *ddat, long *energy)
+{
+ struct intel_uncore *uncore = ddat->uncore;
+ struct i915_hwmon *hwmon = ddat->hwmon;
+ struct hwm_energy_info *ei = &ddat->ei;
+ intel_wakeref_t wakeref;
+ i915_reg_t rgaddr;
+ u32 reg_val;
+
+ if (ddat->gt_n >= 0)
+ rgaddr = hwmon->rg.energy_status_tile;
+ else
+ rgaddr = hwmon->rg.energy_status_all;
+
+ mutex_lock(&hwmon->hwmon_lock);
+
+ with_intel_runtime_pm(uncore->rpm, wakeref)
+ reg_val = intel_uncore_read(uncore, rgaddr);
+
+ if (reg_val >= ei->reg_val_prev)
+ ei->accum_energy += reg_val - ei->reg_val_prev;
+ else
+ ei->accum_energy += UINT_MAX - ei->reg_val_prev + reg_val;
+ ei->reg_val_prev = reg_val;
+
+ *energy = mul_u64_u32_shr(ei->accum_energy, SF_ENERGY,
+ hwmon->scl_shift_energy);
+ mutex_unlock(&hwmon->hwmon_lock);
+}
+
+static ssize_t
+hwm_power1_max_interval_show(struct device *dev, struct device_attribute *attr,
+ char *buf)
+{
+ struct hwm_drvdata *ddat = dev_get_drvdata(dev);
+ struct i915_hwmon *hwmon = ddat->hwmon;
+ intel_wakeref_t wakeref;
+ u32 r, x, y, x_w = 2; /* 2 bits */
+ u64 tau4, out;
+
+ with_intel_runtime_pm(ddat->uncore->rpm, wakeref)
+ r = intel_uncore_read(ddat->uncore, hwmon->rg.pkg_rapl_limit);
+
+ x = REG_FIELD_GET(PKG_PWR_LIM_1_TIME_X, r);
+ y = REG_FIELD_GET(PKG_PWR_LIM_1_TIME_Y, r);
+ /*
+ * tau = 1.x * power(2,y), x = bits(23:22), y = bits(21:17)
+ * = (4 | x) << (y - 2)
+ * where (y - 2) ensures a 1.x fixed point representation of 1.x
+ * However because y can be < 2, we compute
+ * tau4 = (4 | x) << y
+ * but add 2 when doing the final right shift to account for units
+ */
+ tau4 = ((1 << x_w) | x) << y;
+ /* val in hwmon interface units (millisec) */
+ out = mul_u64_u32_shr(tau4, SF_TIME, hwmon->scl_shift_time + x_w);
+
+ return sysfs_emit(buf, "%llu\n", out);
+}
+
+static ssize_t
+hwm_power1_max_interval_store(struct device *dev,
+ struct device_attribute *attr,
+ const char *buf, size_t count)
+{
+ struct hwm_drvdata *ddat = dev_get_drvdata(dev);
+ struct i915_hwmon *hwmon = ddat->hwmon;
+ u32 x, y, rxy, x_w = 2; /* 2 bits */
+ u64 tau4, r, max_win;
+ unsigned long val;
+ int ret;
+
+ ret = kstrtoul(buf, 0, &val);
+ if (ret)
+ return ret;
+
+ /*
+ * Max HW supported tau in '1.x * power(2,y)' format, x = 0, y = 0x12
+ * The hwmon->scl_shift_time default of 0xa results in a max tau of 256 seconds
+ */
+#define PKG_MAX_WIN_DEFAULT 0x12ull
+
+ /*
+ * val must be < max in hwmon interface units. The steps below are
+ * explained in i915_power1_max_interval_show()
+ */
+ r = FIELD_PREP(PKG_MAX_WIN, PKG_MAX_WIN_DEFAULT);
+ x = REG_FIELD_GET(PKG_MAX_WIN_X, r);
+ y = REG_FIELD_GET(PKG_MAX_WIN_Y, r);
+ tau4 = ((1 << x_w) | x) << y;
+ max_win = mul_u64_u32_shr(tau4, SF_TIME, hwmon->scl_shift_time + x_w);
+
+ if (val > max_win)
+ return -EINVAL;
+
+ /* val in hw units */
+ val = DIV_ROUND_CLOSEST_ULL((u64)val << hwmon->scl_shift_time, SF_TIME);
+ /* Convert to 1.x * power(2,y) */
+ if (!val) {
+ /* Avoid ilog2(0) */
+ y = 0;
+ x = 0;
+ } else {
+ y = ilog2(val);
+ /* x = (val - (1 << y)) >> (y - 2); */
+ x = (val - (1ul << y)) << x_w >> y;
+ }
+
+ rxy = REG_FIELD_PREP(PKG_PWR_LIM_1_TIME_X, x) | REG_FIELD_PREP(PKG_PWR_LIM_1_TIME_Y, y);
+
+ hwm_locked_with_pm_intel_uncore_rmw(ddat, hwmon->rg.pkg_rapl_limit,
+ PKG_PWR_LIM_1_TIME, rxy);
+ return count;
+}
+
+static SENSOR_DEVICE_ATTR(power1_max_interval, 0664,
+ hwm_power1_max_interval_show,
+ hwm_power1_max_interval_store, 0);
+
+static struct attribute *hwm_attributes[] = {
+ &sensor_dev_attr_power1_max_interval.dev_attr.attr,
+ NULL
+};
+
+static umode_t hwm_attributes_visible(struct kobject *kobj,
+ struct attribute *attr, int index)
+{
+ struct device *dev = kobj_to_dev(kobj);
+ struct hwm_drvdata *ddat = dev_get_drvdata(dev);
+ struct i915_hwmon *hwmon = ddat->hwmon;
+
+ if (attr == &sensor_dev_attr_power1_max_interval.dev_attr.attr)
+ return i915_mmio_reg_valid(hwmon->rg.pkg_rapl_limit) ? attr->mode : 0;
+
+ return 0;
+}
+
+static const struct attribute_group hwm_attrgroup = {
+ .attrs = hwm_attributes,
+ .is_visible = hwm_attributes_visible,
+};
+
+static const struct attribute_group *hwm_groups[] = {
+ &hwm_attrgroup,
+ NULL
+};
+
+static const struct hwmon_channel_info *hwm_info[] = {
+ HWMON_CHANNEL_INFO(in, HWMON_I_INPUT),
+ HWMON_CHANNEL_INFO(power, HWMON_P_MAX | HWMON_P_RATED_MAX | HWMON_P_CRIT),
+ HWMON_CHANNEL_INFO(energy, HWMON_E_INPUT),
+ HWMON_CHANNEL_INFO(curr, HWMON_C_CRIT),
+ NULL
+};
+
+static const struct hwmon_channel_info *hwm_gt_info[] = {
+ HWMON_CHANNEL_INFO(energy, HWMON_E_INPUT),
+ NULL
+};
+
+/* I1 is exposed as power_crit or as curr_crit depending on bit 31 */
+static int hwm_pcode_read_i1(struct drm_i915_private *i915, u32 *uval)
+{
+ /* Avoid ILLEGAL_SUBCOMMAND "mailbox access failed" warning in snb_pcode_read */
+ if (IS_DG1(i915) || IS_DG2(i915))
+ return -ENXIO;
+
+ return snb_pcode_read_p(&i915->uncore, PCODE_POWER_SETUP,
+ POWER_SETUP_SUBCOMMAND_READ_I1, 0, uval);
+}
+
+static int hwm_pcode_write_i1(struct drm_i915_private *i915, u32 uval)
+{
+ return snb_pcode_write_p(&i915->uncore, PCODE_POWER_SETUP,
+ POWER_SETUP_SUBCOMMAND_WRITE_I1, 0, uval);
+}
+
+static umode_t
+hwm_in_is_visible(const struct hwm_drvdata *ddat, u32 attr)
+{
+ struct drm_i915_private *i915 = ddat->uncore->i915;
+
+ switch (attr) {
+ case hwmon_in_input:
+ return IS_DG1(i915) || IS_DG2(i915) ? 0444 : 0;
+ default:
+ return 0;
+ }
+}
+
+static int
+hwm_in_read(struct hwm_drvdata *ddat, u32 attr, long *val)
+{
+ struct i915_hwmon *hwmon = ddat->hwmon;
+ intel_wakeref_t wakeref;
+ u32 reg_value;
+
+ switch (attr) {
+ case hwmon_in_input:
+ with_intel_runtime_pm(ddat->uncore->rpm, wakeref)
+ reg_value = intel_uncore_read(ddat->uncore, hwmon->rg.gt_perf_status);
+ /* HW register value in units of 2.5 millivolt */
+ *val = DIV_ROUND_CLOSEST(REG_FIELD_GET(GEN12_VOLTAGE_MASK, reg_value) * 25, 10);
+ return 0;
+ default:
+ return -EOPNOTSUPP;
+ }
+}
+
+static umode_t
+hwm_power_is_visible(const struct hwm_drvdata *ddat, u32 attr, int chan)
+{
+ struct drm_i915_private *i915 = ddat->uncore->i915;
+ struct i915_hwmon *hwmon = ddat->hwmon;
+ u32 uval;
+
+ switch (attr) {
+ case hwmon_power_max:
+ return i915_mmio_reg_valid(hwmon->rg.pkg_rapl_limit) ? 0664 : 0;
+ case hwmon_power_rated_max:
+ return i915_mmio_reg_valid(hwmon->rg.pkg_power_sku) ? 0444 : 0;
+ case hwmon_power_crit:
+ return (hwm_pcode_read_i1(i915, &uval) ||
+ !(uval & POWER_SETUP_I1_WATTS)) ? 0 : 0644;
+ default:
+ return 0;
+ }
+}
+
+#define PL1_DISABLE 0
+
+/*
+ * HW allows arbitrary PL1 limits to be set but silently clamps these values to
+ * "typical but not guaranteed" min/max values in rg.pkg_power_sku. Follow the
+ * same pattern for sysfs, allow arbitrary PL1 limits to be set but display
+ * clamped values when read. Write/read I1 also follows the same pattern.
+ */
+static int
+hwm_power_max_read(struct hwm_drvdata *ddat, long *val)
+{
+ struct i915_hwmon *hwmon = ddat->hwmon;
+ intel_wakeref_t wakeref;
+ u64 r, min, max;
+
+ /* Check if PL1 limit is disabled */
+ with_intel_runtime_pm(ddat->uncore->rpm, wakeref)
+ r = intel_uncore_read(ddat->uncore, hwmon->rg.pkg_rapl_limit);
+ if (!(r & PKG_PWR_LIM_1_EN)) {
+ *val = PL1_DISABLE;
+ return 0;
+ }
+
+ *val = hwm_field_read_and_scale(ddat,
+ hwmon->rg.pkg_rapl_limit,
+ PKG_PWR_LIM_1,
+ hwmon->scl_shift_power,
+ SF_POWER);
+
+ with_intel_runtime_pm(ddat->uncore->rpm, wakeref)
+ r = intel_uncore_read64(ddat->uncore, hwmon->rg.pkg_power_sku);
+ min = REG_FIELD_GET(PKG_MIN_PWR, r);
+ min = mul_u64_u32_shr(min, SF_POWER, hwmon->scl_shift_power);
+ max = REG_FIELD_GET(PKG_MAX_PWR, r);
+ max = mul_u64_u32_shr(max, SF_POWER, hwmon->scl_shift_power);
+
+ if (min && max)
+ *val = clamp_t(u64, *val, min, max);
+
+ return 0;
+}
+
+static int
+hwm_power_max_write(struct hwm_drvdata *ddat, long val)
+{
+ struct i915_hwmon *hwmon = ddat->hwmon;
+ intel_wakeref_t wakeref;
+ u32 nval;
+
+ /* Disable PL1 limit and verify, because the limit cannot be disabled on all platforms */
+ if (val == PL1_DISABLE) {
+ mutex_lock(&hwmon->hwmon_lock);
+ with_intel_runtime_pm(ddat->uncore->rpm, wakeref) {
+ intel_uncore_rmw(ddat->uncore, hwmon->rg.pkg_rapl_limit,
+ PKG_PWR_LIM_1_EN, 0);
+ nval = intel_uncore_read(ddat->uncore, hwmon->rg.pkg_rapl_limit);
+ }
+ mutex_unlock(&hwmon->hwmon_lock);
+
+ if (nval & PKG_PWR_LIM_1_EN)
+ return -ENODEV;
+ return 0;
+ }
+
+ /* Computation in 64-bits to avoid overflow. Round to nearest. */
+ nval = DIV_ROUND_CLOSEST_ULL((u64)val << hwmon->scl_shift_power, SF_POWER);
+ nval = PKG_PWR_LIM_1_EN | REG_FIELD_PREP(PKG_PWR_LIM_1, nval);
+
+ hwm_locked_with_pm_intel_uncore_rmw(ddat, hwmon->rg.pkg_rapl_limit,
+ PKG_PWR_LIM_1_EN | PKG_PWR_LIM_1,
+ nval);
+ return 0;
+}
+
+static int
+hwm_power_read(struct hwm_drvdata *ddat, u32 attr, int chan, long *val)
+{
+ struct i915_hwmon *hwmon = ddat->hwmon;
+ int ret;
+ u32 uval;
+
+ switch (attr) {
+ case hwmon_power_max:
+ return hwm_power_max_read(ddat, val);
+ case hwmon_power_rated_max:
+ *val = hwm_field_read_and_scale(ddat,
+ hwmon->rg.pkg_power_sku,
+ PKG_PKG_TDP,
+ hwmon->scl_shift_power,
+ SF_POWER);
+ return 0;
+ case hwmon_power_crit:
+ ret = hwm_pcode_read_i1(ddat->uncore->i915, &uval);
+ if (ret)
+ return ret;
+ if (!(uval & POWER_SETUP_I1_WATTS))
+ return -ENODEV;
+ *val = mul_u64_u32_shr(REG_FIELD_GET(POWER_SETUP_I1_DATA_MASK, uval),
+ SF_POWER, POWER_SETUP_I1_SHIFT);
+ return 0;
+ default:
+ return -EOPNOTSUPP;
+ }
+}
+
+static int
+hwm_power_write(struct hwm_drvdata *ddat, u32 attr, int chan, long val)
+{
+ u32 uval;
+
+ switch (attr) {
+ case hwmon_power_max:
+ return hwm_power_max_write(ddat, val);
+ case hwmon_power_crit:
+ uval = DIV_ROUND_CLOSEST_ULL(val << POWER_SETUP_I1_SHIFT, SF_POWER);
+ return hwm_pcode_write_i1(ddat->uncore->i915, uval);
+ default:
+ return -EOPNOTSUPP;
+ }
+}
+
+static umode_t
+hwm_energy_is_visible(const struct hwm_drvdata *ddat, u32 attr)
+{
+ struct i915_hwmon *hwmon = ddat->hwmon;
+ i915_reg_t rgaddr;
+
+ switch (attr) {
+ case hwmon_energy_input:
+ if (ddat->gt_n >= 0)
+ rgaddr = hwmon->rg.energy_status_tile;
+ else
+ rgaddr = hwmon->rg.energy_status_all;
+ return i915_mmio_reg_valid(rgaddr) ? 0444 : 0;
+ default:
+ return 0;
+ }
+}
+
+static int
+hwm_energy_read(struct hwm_drvdata *ddat, u32 attr, long *val)
+{
+ switch (attr) {
+ case hwmon_energy_input:
+ hwm_energy(ddat, val);
+ return 0;
+ default:
+ return -EOPNOTSUPP;
+ }
+}
+
+static umode_t
+hwm_curr_is_visible(const struct hwm_drvdata *ddat, u32 attr)
+{
+ struct drm_i915_private *i915 = ddat->uncore->i915;
+ u32 uval;
+
+ switch (attr) {
+ case hwmon_curr_crit:
+ return (hwm_pcode_read_i1(i915, &uval) ||
+ (uval & POWER_SETUP_I1_WATTS)) ? 0 : 0644;
+ default:
+ return 0;
+ }
+}
+
+static int
+hwm_curr_read(struct hwm_drvdata *ddat, u32 attr, long *val)
+{
+ int ret;
+ u32 uval;
+
+ switch (attr) {
+ case hwmon_curr_crit:
+ ret = hwm_pcode_read_i1(ddat->uncore->i915, &uval);
+ if (ret)
+ return ret;
+ if (uval & POWER_SETUP_I1_WATTS)
+ return -ENODEV;
+ *val = mul_u64_u32_shr(REG_FIELD_GET(POWER_SETUP_I1_DATA_MASK, uval),
+ SF_CURR, POWER_SETUP_I1_SHIFT);
+ return 0;
+ default:
+ return -EOPNOTSUPP;
+ }
+}
+
+static int
+hwm_curr_write(struct hwm_drvdata *ddat, u32 attr, long val)
+{
+ u32 uval;
+
+ switch (attr) {
+ case hwmon_curr_crit:
+ uval = DIV_ROUND_CLOSEST_ULL(val << POWER_SETUP_I1_SHIFT, SF_CURR);
+ return hwm_pcode_write_i1(ddat->uncore->i915, uval);
+ default:
+ return -EOPNOTSUPP;
+ }
+}
+
+static umode_t
+hwm_is_visible(const void *drvdata, enum hwmon_sensor_types type,
+ u32 attr, int channel)
+{
+ struct hwm_drvdata *ddat = (struct hwm_drvdata *)drvdata;
+
+ switch (type) {
+ case hwmon_in:
+ return hwm_in_is_visible(ddat, attr);
+ case hwmon_power:
+ return hwm_power_is_visible(ddat, attr, channel);
+ case hwmon_energy:
+ return hwm_energy_is_visible(ddat, attr);
+ case hwmon_curr:
+ return hwm_curr_is_visible(ddat, attr);
+ default:
+ return 0;
+ }
+}
+
+static int
+hwm_read(struct device *dev, enum hwmon_sensor_types type, u32 attr,
+ int channel, long *val)
+{
+ struct hwm_drvdata *ddat = dev_get_drvdata(dev);
+
+ switch (type) {
+ case hwmon_in:
+ return hwm_in_read(ddat, attr, val);
+ case hwmon_power:
+ return hwm_power_read(ddat, attr, channel, val);
+ case hwmon_energy:
+ return hwm_energy_read(ddat, attr, val);
+ case hwmon_curr:
+ return hwm_curr_read(ddat, attr, val);
+ default:
+ return -EOPNOTSUPP;
+ }
+}
+
+static int
+hwm_write(struct device *dev, enum hwmon_sensor_types type, u32 attr,
+ int channel, long val)
+{
+ struct hwm_drvdata *ddat = dev_get_drvdata(dev);
+
+ switch (type) {
+ case hwmon_power:
+ return hwm_power_write(ddat, attr, channel, val);
+ case hwmon_curr:
+ return hwm_curr_write(ddat, attr, val);
+ default:
+ return -EOPNOTSUPP;
+ }
+}
+
+static const struct hwmon_ops hwm_ops = {
+ .is_visible = hwm_is_visible,
+ .read = hwm_read,
+ .write = hwm_write,
+};
+
+static const struct hwmon_chip_info hwm_chip_info = {
+ .ops = &hwm_ops,
+ .info = hwm_info,
+};
+
+static umode_t
+hwm_gt_is_visible(const void *drvdata, enum hwmon_sensor_types type,
+ u32 attr, int channel)
+{
+ struct hwm_drvdata *ddat = (struct hwm_drvdata *)drvdata;
+
+ switch (type) {
+ case hwmon_energy:
+ return hwm_energy_is_visible(ddat, attr);
+ default:
+ return 0;
+ }
+}
+
+static int
+hwm_gt_read(struct device *dev, enum hwmon_sensor_types type, u32 attr,
+ int channel, long *val)
+{
+ struct hwm_drvdata *ddat = dev_get_drvdata(dev);
+
+ switch (type) {
+ case hwmon_energy:
+ return hwm_energy_read(ddat, attr, val);
+ default:
+ return -EOPNOTSUPP;
+ }
+}
+
+static const struct hwmon_ops hwm_gt_ops = {
+ .is_visible = hwm_gt_is_visible,
+ .read = hwm_gt_read,
+};
+
+static const struct hwmon_chip_info hwm_gt_chip_info = {
+ .ops = &hwm_gt_ops,
+ .info = hwm_gt_info,
+};
+
+static void
+hwm_get_preregistration_info(struct drm_i915_private *i915)
+{
+ struct i915_hwmon *hwmon = i915->hwmon;
+ struct intel_uncore *uncore = &i915->uncore;
+ struct hwm_drvdata *ddat = &hwmon->ddat;
+ intel_wakeref_t wakeref;
+ u32 val_sku_unit = 0;
+ struct intel_gt *gt;
+ long energy;
+ int i;
+
+ /* Available for all Gen12+/dGfx */
+ hwmon->rg.gt_perf_status = GEN12_RPSTAT1;
+
+ if (IS_DG1(i915) || IS_DG2(i915)) {
+ hwmon->rg.pkg_power_sku_unit = PCU_PACKAGE_POWER_SKU_UNIT;
+ hwmon->rg.pkg_power_sku = PCU_PACKAGE_POWER_SKU;
+ hwmon->rg.pkg_rapl_limit = PCU_PACKAGE_RAPL_LIMIT;
+ hwmon->rg.energy_status_all = PCU_PACKAGE_ENERGY_STATUS;
+ hwmon->rg.energy_status_tile = INVALID_MMIO_REG;
+ } else if (IS_XEHPSDV(i915)) {
+ hwmon->rg.pkg_power_sku_unit = GT0_PACKAGE_POWER_SKU_UNIT;
+ hwmon->rg.pkg_power_sku = INVALID_MMIO_REG;
+ hwmon->rg.pkg_rapl_limit = GT0_PACKAGE_RAPL_LIMIT;
+ hwmon->rg.energy_status_all = GT0_PLATFORM_ENERGY_STATUS;
+ hwmon->rg.energy_status_tile = GT0_PACKAGE_ENERGY_STATUS;
+ } else {
+ hwmon->rg.pkg_power_sku_unit = INVALID_MMIO_REG;
+ hwmon->rg.pkg_power_sku = INVALID_MMIO_REG;
+ hwmon->rg.pkg_rapl_limit = INVALID_MMIO_REG;
+ hwmon->rg.energy_status_all = INVALID_MMIO_REG;
+ hwmon->rg.energy_status_tile = INVALID_MMIO_REG;
+ }
+
+ with_intel_runtime_pm(uncore->rpm, wakeref) {
+ /*
+ * The contents of register hwmon->rg.pkg_power_sku_unit do not change,
+ * so read it once and store the shift values.
+ */
+ if (i915_mmio_reg_valid(hwmon->rg.pkg_power_sku_unit))
+ val_sku_unit = intel_uncore_read(uncore,
+ hwmon->rg.pkg_power_sku_unit);
+ }
+
+ hwmon->scl_shift_power = REG_FIELD_GET(PKG_PWR_UNIT, val_sku_unit);
+ hwmon->scl_shift_energy = REG_FIELD_GET(PKG_ENERGY_UNIT, val_sku_unit);
+ hwmon->scl_shift_time = REG_FIELD_GET(PKG_TIME_UNIT, val_sku_unit);
+
+ /*
+ * Initialize 'struct hwm_energy_info', i.e. set fields to the
+ * first value of the energy register read
+ */
+ if (i915_mmio_reg_valid(hwmon->rg.energy_status_all))
+ hwm_energy(ddat, &energy);
+ if (i915_mmio_reg_valid(hwmon->rg.energy_status_tile)) {
+ for_each_gt(gt, i915, i)
+ hwm_energy(&hwmon->ddat_gt[i], &energy);
+ }
+}
+
+void i915_hwmon_register(struct drm_i915_private *i915)
+{
+ struct device *dev = i915->drm.dev;
+ struct i915_hwmon *hwmon;
+ struct device *hwmon_dev;
+ struct hwm_drvdata *ddat;
+ struct hwm_drvdata *ddat_gt;
+ struct intel_gt *gt;
+ int i;
+
+ /* hwmon is available only for dGfx */
+ if (!IS_DGFX(i915))
+ return;
+
+ hwmon = devm_kzalloc(dev, sizeof(*hwmon), GFP_KERNEL);
+ if (!hwmon)
+ return;
+
+ i915->hwmon = hwmon;
+ mutex_init(&hwmon->hwmon_lock);
+ ddat = &hwmon->ddat;
+
+ ddat->hwmon = hwmon;
+ ddat->uncore = &i915->uncore;
+ snprintf(ddat->name, sizeof(ddat->name), "i915");
+ ddat->gt_n = -1;
+
+ for_each_gt(gt, i915, i) {
+ ddat_gt = hwmon->ddat_gt + i;
+
+ ddat_gt->hwmon = hwmon;
+ ddat_gt->uncore = gt->uncore;
+ snprintf(ddat_gt->name, sizeof(ddat_gt->name), "i915_gt%u", i);
+ ddat_gt->gt_n = i;
+ }
+
+ hwm_get_preregistration_info(i915);
+
+ /* hwmon_dev points to device hwmon<i> */
+ hwmon_dev = devm_hwmon_device_register_with_info(dev, ddat->name,
+ ddat,
+ &hwm_chip_info,
+ hwm_groups);
+ if (IS_ERR(hwmon_dev)) {
+ i915->hwmon = NULL;
+ return;
+ }
+
+ ddat->hwmon_dev = hwmon_dev;
+
+ for_each_gt(gt, i915, i) {
+ ddat_gt = hwmon->ddat_gt + i;
+ /*
+ * Create per-gt directories only if a per-gt attribute is
+ * visible. Currently this is only energy
+ */
+ if (!hwm_gt_is_visible(ddat_gt, hwmon_energy, hwmon_energy_input, 0))
+ continue;
+
+ hwmon_dev = devm_hwmon_device_register_with_info(dev, ddat_gt->name,
+ ddat_gt,
+ &hwm_gt_chip_info,
+ NULL);
+ if (!IS_ERR(hwmon_dev))
+ ddat_gt->hwmon_dev = hwmon_dev;
+ }
+}
+
+void i915_hwmon_unregister(struct drm_i915_private *i915)
+{
+ fetch_and_zero(&i915->hwmon);
+}
diff --git a/drivers/gpu/drm/i915/i915_hwmon.h b/drivers/gpu/drm/i915/i915_hwmon.h
new file mode 100644
index 000000000000..7ca9cf2c34c9
--- /dev/null
+++ b/drivers/gpu/drm/i915/i915_hwmon.h
@@ -0,0 +1,20 @@
+/* SPDX-License-Identifier: MIT */
+
+/*
+ * Copyright © 2022 Intel Corporation
+ */
+
+#ifndef __I915_HWMON_H__
+#define __I915_HWMON_H__
+
+struct drm_i915_private;
+
+#if IS_REACHABLE(CONFIG_HWMON)
+void i915_hwmon_register(struct drm_i915_private *i915);
+void i915_hwmon_unregister(struct drm_i915_private *i915);
+#else
+static inline void i915_hwmon_register(struct drm_i915_private *i915) { };
+static inline void i915_hwmon_unregister(struct drm_i915_private *i915) { };
+#endif
+
+#endif /* __I915_HWMON_H__ */
diff --git a/drivers/gpu/drm/i915/i915_irq.c b/drivers/gpu/drm/i915/i915_irq.c
index 86a42d9e8041..d24bdea65a3d 100644
--- a/drivers/gpu/drm/i915/i915_irq.c
+++ b/drivers/gpu/drm/i915/i915_irq.c
@@ -28,7 +28,6 @@
#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
-#include <linux/circ_buf.h>
#include <linux/slab.h>
#include <linux/sysrq.h>
@@ -38,10 +37,12 @@
#include "display/intel_de.h"
#include "display/intel_display_trace.h"
#include "display/intel_display_types.h"
+#include "display/intel_fdi_regs.h"
#include "display/intel_fifo_underrun.h"
#include "display/intel_hotplug.h"
#include "display/intel_lpe_audio.h"
#include "display/intel_psr.h"
+#include "display/intel_psr_regs.h"
#include "gt/intel_breadcrumbs.h"
#include "gt/intel_gt.h"
@@ -53,7 +54,6 @@
#include "i915_driver.h"
#include "i915_drv.h"
#include "i915_irq.h"
-#include "intel_pm.h"
/**
* DOC: interrupt handling
@@ -82,8 +82,7 @@ static inline void pmu_irq_stats(struct drm_i915_private *i915,
}
typedef bool (*long_pulse_detect_func)(enum hpd_pin pin, u32 val);
-typedef u32 (*hotplug_enables_func)(struct drm_i915_private *i915,
- enum hpd_pin pin);
+typedef u32 (*hotplug_enables_func)(struct intel_encoder *encoder);
static const u32 hpd_ilk[HPD_NUM_PINS] = {
[HPD_PORT_A] = DE_DP_A_HOTPLUG,
@@ -200,6 +199,8 @@ static void intel_hpd_init_pins(struct drm_i915_private *dev_priv)
hpd->hpd = hpd_gen11;
else if (IS_GEMINILAKE(dev_priv) || IS_BROXTON(dev_priv))
hpd->hpd = hpd_bxt;
+ else if (DISPLAY_VER(dev_priv) == 9)
+ hpd->hpd = NULL; /* no north HPD on SKL */
else if (DISPLAY_VER(dev_priv) >= 8)
hpd->hpd = hpd_bdw;
else if (DISPLAY_VER(dev_priv) >= 7)
@@ -248,7 +249,7 @@ void gen3_irq_reset(struct intel_uncore *uncore, i915_reg_t imr,
intel_uncore_posting_read(uncore, iir);
}
-void gen2_irq_reset(struct intel_uncore *uncore)
+static void gen2_irq_reset(struct intel_uncore *uncore)
{
intel_uncore_write16(uncore, GEN2_IMR, 0xffff);
intel_uncore_posting_read16(uncore, GEN2_IMR);
@@ -309,8 +310,8 @@ void gen3_irq_init(struct intel_uncore *uncore,
intel_uncore_posting_read(uncore, imr);
}
-void gen2_irq_init(struct intel_uncore *uncore,
- u32 imr_val, u32 ier_val)
+static void gen2_irq_init(struct intel_uncore *uncore,
+ u32 imr_val, u32 ier_val)
{
gen2_assert_iir_is_zero(uncore);
@@ -325,15 +326,10 @@ i915_hotplug_interrupt_update_locked(struct drm_i915_private *dev_priv,
u32 mask,
u32 bits)
{
- u32 val;
-
lockdep_assert_held(&dev_priv->irq_lock);
drm_WARN_ON(&dev_priv->drm, bits & ~mask);
- val = intel_uncore_read(&dev_priv->uncore, PORT_HOTPLUG_EN);
- val &= ~mask;
- val |= bits;
- intel_uncore_write(&dev_priv->uncore, PORT_HOTPLUG_EN, val);
+ intel_uncore_rmw(&dev_priv->uncore, PORT_HOTPLUG_EN, mask, bits);
}
/**
@@ -620,414 +616,6 @@ static void i915_enable_asle_pipestat(struct drm_i915_private *dev_priv)
spin_unlock_irq(&dev_priv->irq_lock);
}
-/*
- * This timing diagram depicts the video signal in and
- * around the vertical blanking period.
- *
- * Assumptions about the fictitious mode used in this example:
- * vblank_start >= 3
- * vsync_start = vblank_start + 1
- * vsync_end = vblank_start + 2
- * vtotal = vblank_start + 3
- *
- * start of vblank:
- * latch double buffered registers
- * increment frame counter (ctg+)
- * generate start of vblank interrupt (gen4+)
- * |
- * | frame start:
- * | generate frame start interrupt (aka. vblank interrupt) (gmch)
- * | may be shifted forward 1-3 extra lines via PIPECONF
- * | |
- * | | start of vsync:
- * | | generate vsync interrupt
- * | | |
- * ___xxxx___ ___xxxx___ ___xxxx___ ___xxxx___ ___xxxx___ ___xxxx
- * . \hs/ . \hs/ \hs/ \hs/ . \hs/
- * ----va---> <-----------------vb--------------------> <--------va-------------
- * | | <----vs-----> |
- * -vbs-----> <---vbs+1---> <---vbs+2---> <-----0-----> <-----1-----> <-----2--- (scanline counter gen2)
- * -vbs-2---> <---vbs-1---> <---vbs-----> <---vbs+1---> <---vbs+2---> <-----0--- (scanline counter gen3+)
- * -vbs-2---> <---vbs-2---> <---vbs-1---> <---vbs-----> <---vbs+1---> <---vbs+2- (scanline counter hsw+ hdmi)
- * | | |
- * last visible pixel first visible pixel
- * | increment frame counter (gen3/4)
- * pixel counter = vblank_start * htotal pixel counter = 0 (gen3/4)
- *
- * x = horizontal active
- * _ = horizontal blanking
- * hs = horizontal sync
- * va = vertical active
- * vb = vertical blanking
- * vs = vertical sync
- * vbs = vblank_start (number)
- *
- * Summary:
- * - most events happen at the start of horizontal sync
- * - frame start happens at the start of horizontal blank, 1-4 lines
- * (depending on PIPECONF settings) after the start of vblank
- * - gen3/4 pixel and frame counter are synchronized with the start
- * of horizontal active on the first line of vertical active
- */
-
-/* Called from drm generic code, passed a 'crtc', which
- * we use as a pipe index
- */
-u32 i915_get_vblank_counter(struct drm_crtc *crtc)
-{
- struct drm_i915_private *dev_priv = to_i915(crtc->dev);
- struct drm_vblank_crtc *vblank = &dev_priv->drm.vblank[drm_crtc_index(crtc)];
- const struct drm_display_mode *mode = &vblank->hwmode;
- enum pipe pipe = to_intel_crtc(crtc)->pipe;
- i915_reg_t high_frame, low_frame;
- u32 high1, high2, low, pixel, vbl_start, hsync_start, htotal;
- unsigned long irqflags;
-
- /*
- * On i965gm TV output the frame counter only works up to
- * the point when we enable the TV encoder. After that the
- * frame counter ceases to work and reads zero. We need a
- * vblank wait before enabling the TV encoder and so we
- * have to enable vblank interrupts while the frame counter
- * is still in a working state. However the core vblank code
- * does not like us returning non-zero frame counter values
- * when we've told it that we don't have a working frame
- * counter. Thus we must stop non-zero values leaking out.
- */
- if (!vblank->max_vblank_count)
- return 0;
-
- htotal = mode->crtc_htotal;
- hsync_start = mode->crtc_hsync_start;
- vbl_start = mode->crtc_vblank_start;
- if (mode->flags & DRM_MODE_FLAG_INTERLACE)
- vbl_start = DIV_ROUND_UP(vbl_start, 2);
-
- /* Convert to pixel count */
- vbl_start *= htotal;
-
- /* Start of vblank event occurs at start of hsync */
- vbl_start -= htotal - hsync_start;
-
- high_frame = PIPEFRAME(pipe);
- low_frame = PIPEFRAMEPIXEL(pipe);
-
- spin_lock_irqsave(&dev_priv->uncore.lock, irqflags);
-
- /*
- * High & low register fields aren't synchronized, so make sure
- * we get a low value that's stable across two reads of the high
- * register.
- */
- do {
- high1 = intel_de_read_fw(dev_priv, high_frame) & PIPE_FRAME_HIGH_MASK;
- low = intel_de_read_fw(dev_priv, low_frame);
- high2 = intel_de_read_fw(dev_priv, high_frame) & PIPE_FRAME_HIGH_MASK;
- } while (high1 != high2);
-
- spin_unlock_irqrestore(&dev_priv->uncore.lock, irqflags);
-
- high1 >>= PIPE_FRAME_HIGH_SHIFT;
- pixel = low & PIPE_PIXEL_MASK;
- low >>= PIPE_FRAME_LOW_SHIFT;
-
- /*
- * The frame counter increments at beginning of active.
- * Cook up a vblank counter by also checking the pixel
- * counter against vblank start.
- */
- return (((high1 << 8) | low) + (pixel >= vbl_start)) & 0xffffff;
-}
-
-u32 g4x_get_vblank_counter(struct drm_crtc *crtc)
-{
- struct drm_i915_private *dev_priv = to_i915(crtc->dev);
- struct drm_vblank_crtc *vblank = &dev_priv->drm.vblank[drm_crtc_index(crtc)];
- enum pipe pipe = to_intel_crtc(crtc)->pipe;
-
- if (!vblank->max_vblank_count)
- return 0;
-
- return intel_uncore_read(&dev_priv->uncore, PIPE_FRMCOUNT_G4X(pipe));
-}
-
-static u32 intel_crtc_scanlines_since_frame_timestamp(struct intel_crtc *crtc)
-{
- struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
- struct drm_vblank_crtc *vblank =
- &crtc->base.dev->vblank[drm_crtc_index(&crtc->base)];
- const struct drm_display_mode *mode = &vblank->hwmode;
- u32 htotal = mode->crtc_htotal;
- u32 clock = mode->crtc_clock;
- u32 scan_prev_time, scan_curr_time, scan_post_time;
-
- /*
- * To avoid the race condition where we might cross into the
- * next vblank just between the PIPE_FRMTMSTMP and TIMESTAMP_CTR
- * reads. We make sure we read PIPE_FRMTMSTMP and TIMESTAMP_CTR
- * during the same frame.
- */
- do {
- /*
- * This field provides read back of the display
- * pipe frame time stamp. The time stamp value
- * is sampled at every start of vertical blank.
- */
- scan_prev_time = intel_de_read_fw(dev_priv,
- PIPE_FRMTMSTMP(crtc->pipe));
-
- /*
- * The TIMESTAMP_CTR register has the current
- * time stamp value.
- */
- scan_curr_time = intel_de_read_fw(dev_priv, IVB_TIMESTAMP_CTR);
-
- scan_post_time = intel_de_read_fw(dev_priv,
- PIPE_FRMTMSTMP(crtc->pipe));
- } while (scan_post_time != scan_prev_time);
-
- return div_u64(mul_u32_u32(scan_curr_time - scan_prev_time,
- clock), 1000 * htotal);
-}
-
-/*
- * On certain encoders on certain platforms, pipe
- * scanline register will not work to get the scanline,
- * since the timings are driven from the PORT or issues
- * with scanline register updates.
- * This function will use Framestamp and current
- * timestamp registers to calculate the scanline.
- */
-static u32 __intel_get_crtc_scanline_from_timestamp(struct intel_crtc *crtc)
-{
- struct drm_vblank_crtc *vblank =
- &crtc->base.dev->vblank[drm_crtc_index(&crtc->base)];
- const struct drm_display_mode *mode = &vblank->hwmode;
- u32 vblank_start = mode->crtc_vblank_start;
- u32 vtotal = mode->crtc_vtotal;
- u32 scanline;
-
- scanline = intel_crtc_scanlines_since_frame_timestamp(crtc);
- scanline = min(scanline, vtotal - 1);
- scanline = (scanline + vblank_start) % vtotal;
-
- return scanline;
-}
-
-/*
- * intel_de_read_fw(), only for fast reads of display block, no need for
- * forcewake etc.
- */
-static int __intel_get_crtc_scanline(struct intel_crtc *crtc)
-{
- struct drm_device *dev = crtc->base.dev;
- struct drm_i915_private *dev_priv = to_i915(dev);
- const struct drm_display_mode *mode;
- struct drm_vblank_crtc *vblank;
- enum pipe pipe = crtc->pipe;
- int position, vtotal;
-
- if (!crtc->active)
- return 0;
-
- vblank = &crtc->base.dev->vblank[drm_crtc_index(&crtc->base)];
- mode = &vblank->hwmode;
-
- if (crtc->mode_flags & I915_MODE_FLAG_GET_SCANLINE_FROM_TIMESTAMP)
- return __intel_get_crtc_scanline_from_timestamp(crtc);
-
- vtotal = mode->crtc_vtotal;
- if (mode->flags & DRM_MODE_FLAG_INTERLACE)
- vtotal /= 2;
-
- position = intel_de_read_fw(dev_priv, PIPEDSL(pipe)) & PIPEDSL_LINE_MASK;
-
- /*
- * On HSW, the DSL reg (0x70000) appears to return 0 if we
- * read it just before the start of vblank. So try it again
- * so we don't accidentally end up spanning a vblank frame
- * increment, causing the pipe_update_end() code to squak at us.
- *
- * The nature of this problem means we can't simply check the ISR
- * bit and return the vblank start value; nor can we use the scanline
- * debug register in the transcoder as it appears to have the same
- * problem. We may need to extend this to include other platforms,
- * but so far testing only shows the problem on HSW.
- */
- if (HAS_DDI(dev_priv) && !position) {
- int i, temp;
-
- for (i = 0; i < 100; i++) {
- udelay(1);
- temp = intel_de_read_fw(dev_priv, PIPEDSL(pipe)) & PIPEDSL_LINE_MASK;
- if (temp != position) {
- position = temp;
- break;
- }
- }
- }
-
- /*
- * See update_scanline_offset() for the details on the
- * scanline_offset adjustment.
- */
- return (position + crtc->scanline_offset) % vtotal;
-}
-
-static bool i915_get_crtc_scanoutpos(struct drm_crtc *_crtc,
- bool in_vblank_irq,
- int *vpos, int *hpos,
- ktime_t *stime, ktime_t *etime,
- const struct drm_display_mode *mode)
-{
- struct drm_device *dev = _crtc->dev;
- struct drm_i915_private *dev_priv = to_i915(dev);
- struct intel_crtc *crtc = to_intel_crtc(_crtc);
- enum pipe pipe = crtc->pipe;
- int position;
- int vbl_start, vbl_end, hsync_start, htotal, vtotal;
- unsigned long irqflags;
- bool use_scanline_counter = DISPLAY_VER(dev_priv) >= 5 ||
- IS_G4X(dev_priv) || DISPLAY_VER(dev_priv) == 2 ||
- crtc->mode_flags & I915_MODE_FLAG_USE_SCANLINE_COUNTER;
-
- if (drm_WARN_ON(&dev_priv->drm, !mode->crtc_clock)) {
- drm_dbg(&dev_priv->drm,
- "trying to get scanoutpos for disabled "
- "pipe %c\n", pipe_name(pipe));
- return false;
- }
-
- htotal = mode->crtc_htotal;
- hsync_start = mode->crtc_hsync_start;
- vtotal = mode->crtc_vtotal;
- vbl_start = mode->crtc_vblank_start;
- vbl_end = mode->crtc_vblank_end;
-
- if (mode->flags & DRM_MODE_FLAG_INTERLACE) {
- vbl_start = DIV_ROUND_UP(vbl_start, 2);
- vbl_end /= 2;
- vtotal /= 2;
- }
-
- /*
- * Lock uncore.lock, as we will do multiple timing critical raw
- * register reads, potentially with preemption disabled, so the
- * following code must not block on uncore.lock.
- */
- spin_lock_irqsave(&dev_priv->uncore.lock, irqflags);
-
- /* preempt_disable_rt() should go right here in PREEMPT_RT patchset. */
-
- /* Get optional system timestamp before query. */
- if (stime)
- *stime = ktime_get();
-
- if (crtc->mode_flags & I915_MODE_FLAG_VRR) {
- int scanlines = intel_crtc_scanlines_since_frame_timestamp(crtc);
-
- position = __intel_get_crtc_scanline(crtc);
-
- /*
- * Already exiting vblank? If so, shift our position
- * so it looks like we're already apporaching the full
- * vblank end. This should make the generated timestamp
- * more or less match when the active portion will start.
- */
- if (position >= vbl_start && scanlines < position)
- position = min(crtc->vmax_vblank_start + scanlines, vtotal - 1);
- } else if (use_scanline_counter) {
- /* No obvious pixelcount register. Only query vertical
- * scanout position from Display scan line register.
- */
- position = __intel_get_crtc_scanline(crtc);
- } else {
- /* Have access to pixelcount since start of frame.
- * We can split this into vertical and horizontal
- * scanout position.
- */
- position = (intel_de_read_fw(dev_priv, PIPEFRAMEPIXEL(pipe)) & PIPE_PIXEL_MASK) >> PIPE_PIXEL_SHIFT;
-
- /* convert to pixel counts */
- vbl_start *= htotal;
- vbl_end *= htotal;
- vtotal *= htotal;
-
- /*
- * In interlaced modes, the pixel counter counts all pixels,
- * so one field will have htotal more pixels. In order to avoid
- * the reported position from jumping backwards when the pixel
- * counter is beyond the length of the shorter field, just
- * clamp the position the length of the shorter field. This
- * matches how the scanline counter based position works since
- * the scanline counter doesn't count the two half lines.
- */
- if (position >= vtotal)
- position = vtotal - 1;
-
- /*
- * Start of vblank interrupt is triggered at start of hsync,
- * just prior to the first active line of vblank. However we
- * consider lines to start at the leading edge of horizontal
- * active. So, should we get here before we've crossed into
- * the horizontal active of the first line in vblank, we would
- * not set the DRM_SCANOUTPOS_INVBL flag. In order to fix that,
- * always add htotal-hsync_start to the current pixel position.
- */
- position = (position + htotal - hsync_start) % vtotal;
- }
-
- /* Get optional system timestamp after query. */
- if (etime)
- *etime = ktime_get();
-
- /* preempt_enable_rt() should go right here in PREEMPT_RT patchset. */
-
- spin_unlock_irqrestore(&dev_priv->uncore.lock, irqflags);
-
- /*
- * While in vblank, position will be negative
- * counting up towards 0 at vbl_end. And outside
- * vblank, position will be positive counting
- * up since vbl_end.
- */
- if (position >= vbl_start)
- position -= vbl_end;
- else
- position += vtotal - vbl_end;
-
- if (use_scanline_counter) {
- *vpos = position;
- *hpos = 0;
- } else {
- *vpos = position / htotal;
- *hpos = position - (*vpos * htotal);
- }
-
- return true;
-}
-
-bool intel_crtc_get_vblank_timestamp(struct drm_crtc *crtc, int *max_error,
- ktime_t *vblank_time, bool in_vblank_irq)
-{
- return drm_crtc_vblank_helper_get_vblank_timestamp_internal(
- crtc, max_error, vblank_time, in_vblank_irq,
- i915_get_crtc_scanoutpos);
-}
-
-int intel_get_crtc_scanline(struct intel_crtc *crtc)
-{
- struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
- unsigned long irqflags;
- int position;
-
- spin_lock_irqsave(&dev_priv->uncore.lock, irqflags);
- position = __intel_get_crtc_scanline(crtc);
- spin_unlock_irqrestore(&dev_priv->uncore.lock, irqflags);
-
- return position;
-}
-
/**
* ivb_parity_work - Workqueue called when a parity error interrupt
* occurred.
@@ -1057,8 +645,8 @@ static void ivb_parity_work(struct work_struct *work)
if (drm_WARN_ON(&dev_priv->drm, !dev_priv->l3_parity.which_slice))
goto out;
- misccpctl = intel_uncore_read(&dev_priv->uncore, GEN7_MISCCPCTL);
- intel_uncore_write(&dev_priv->uncore, GEN7_MISCCPCTL, misccpctl & ~GEN7_DOP_CLOCK_GATE_ENABLE);
+ misccpctl = intel_uncore_rmw(&dev_priv->uncore, GEN7_MISCCPCTL,
+ GEN7_DOP_CLOCK_GATE_ENABLE, 0);
intel_uncore_posting_read(&dev_priv->uncore, GEN7_MISCCPCTL);
while ((slice = ffs(dev_priv->l3_parity.which_slice)) != 0) {
@@ -1091,8 +679,9 @@ static void ivb_parity_work(struct work_struct *work)
kobject_uevent_env(&dev_priv->drm.primary->kdev->kobj,
KOBJ_CHANGE, parity_event);
- DRM_DEBUG("Parity error: Slice = %d, Row = %d, Bank = %d, Sub bank = %d.\n",
- slice, row, bank, subbank);
+ drm_dbg(&dev_priv->drm,
+ "Parity error: Slice = %d, Row = %d, Bank = %d, Sub bank = %d.\n",
+ slice, row, bank, subbank);
kfree(parity_event[4]);
kfree(parity_event[3]);
@@ -1297,7 +886,7 @@ static u32 intel_hpd_hotplug_enables(struct drm_i915_private *i915,
u32 hotplug = 0;
for_each_intel_encoder(&i915->drm, encoder)
- hotplug |= hotplug_enables(i915, encoder->hpd_pin);
+ hotplug |= hotplug_enables(encoder);
return hotplug;
}
@@ -1689,8 +1278,7 @@ static irqreturn_t valleyview_irq_handler(int irq, void *arg)
* bits this time around.
*/
intel_uncore_write(&dev_priv->uncore, VLV_MASTER_IER, 0);
- ier = intel_uncore_read(&dev_priv->uncore, VLV_IER);
- intel_uncore_write(&dev_priv->uncore, VLV_IER, 0);
+ ier = intel_uncore_rmw(&dev_priv->uncore, VLV_IER, ~0, 0);
if (gt_iir)
intel_uncore_write(&dev_priv->uncore, GTIIR, gt_iir);
@@ -1775,8 +1363,7 @@ static irqreturn_t cherryview_irq_handler(int irq, void *arg)
* bits this time around.
*/
intel_uncore_write(&dev_priv->uncore, GEN8_MASTER_IRQ, 0);
- ier = intel_uncore_read(&dev_priv->uncore, VLV_IER);
- intel_uncore_write(&dev_priv->uncore, VLV_IER, 0);
+ ier = intel_uncore_rmw(&dev_priv->uncore, VLV_IER, ~0, 0);
gen8_gt_irq_handler(to_gt(dev_priv), master_ctl);
@@ -1981,8 +1568,10 @@ static void icp_irq_handler(struct drm_i915_private *dev_priv, u32 pch_iir)
if (ddi_hotplug_trigger) {
u32 dig_hotplug_reg;
- dig_hotplug_reg = intel_uncore_read(&dev_priv->uncore, SHOTPLUG_CTL_DDI);
- intel_uncore_write(&dev_priv->uncore, SHOTPLUG_CTL_DDI, dig_hotplug_reg);
+ /* Locking due to DSI native GPIO sequences */
+ spin_lock(&dev_priv->irq_lock);
+ dig_hotplug_reg = intel_uncore_rmw(&dev_priv->uncore, SHOTPLUG_CTL_DDI, 0, 0);
+ spin_unlock(&dev_priv->irq_lock);
intel_get_hpd_pins(dev_priv, &pin_mask, &long_mask,
ddi_hotplug_trigger, dig_hotplug_reg,
@@ -1993,8 +1582,7 @@ static void icp_irq_handler(struct drm_i915_private *dev_priv, u32 pch_iir)
if (tc_hotplug_trigger) {
u32 dig_hotplug_reg;
- dig_hotplug_reg = intel_uncore_read(&dev_priv->uncore, SHOTPLUG_CTL_TC);
- intel_uncore_write(&dev_priv->uncore, SHOTPLUG_CTL_TC, dig_hotplug_reg);
+ dig_hotplug_reg = intel_uncore_rmw(&dev_priv->uncore, SHOTPLUG_CTL_TC, 0, 0);
intel_get_hpd_pins(dev_priv, &pin_mask, &long_mask,
tc_hotplug_trigger, dig_hotplug_reg,
@@ -2019,8 +1607,7 @@ static void spt_irq_handler(struct drm_i915_private *dev_priv, u32 pch_iir)
if (hotplug_trigger) {
u32 dig_hotplug_reg;
- dig_hotplug_reg = intel_uncore_read(&dev_priv->uncore, PCH_PORT_HOTPLUG);
- intel_uncore_write(&dev_priv->uncore, PCH_PORT_HOTPLUG, dig_hotplug_reg);
+ dig_hotplug_reg = intel_uncore_rmw(&dev_priv->uncore, PCH_PORT_HOTPLUG, 0, 0);
intel_get_hpd_pins(dev_priv, &pin_mask, &long_mask,
hotplug_trigger, dig_hotplug_reg,
@@ -2031,8 +1618,7 @@ static void spt_irq_handler(struct drm_i915_private *dev_priv, u32 pch_iir)
if (hotplug2_trigger) {
u32 dig_hotplug_reg;
- dig_hotplug_reg = intel_uncore_read(&dev_priv->uncore, PCH_PORT_HOTPLUG2);
- intel_uncore_write(&dev_priv->uncore, PCH_PORT_HOTPLUG2, dig_hotplug_reg);
+ dig_hotplug_reg = intel_uncore_rmw(&dev_priv->uncore, PCH_PORT_HOTPLUG2, 0, 0);
intel_get_hpd_pins(dev_priv, &pin_mask, &long_mask,
hotplug2_trigger, dig_hotplug_reg,
@@ -2052,8 +1638,7 @@ static void ilk_hpd_irq_handler(struct drm_i915_private *dev_priv,
{
u32 dig_hotplug_reg, pin_mask = 0, long_mask = 0;
- dig_hotplug_reg = intel_uncore_read(&dev_priv->uncore, DIGITAL_PORT_HOTPLUG_CNTRL);
- intel_uncore_write(&dev_priv->uncore, DIGITAL_PORT_HOTPLUG_CNTRL, dig_hotplug_reg);
+ dig_hotplug_reg = intel_uncore_rmw(&dev_priv->uncore, DIGITAL_PORT_HOTPLUG_CNTRL, 0, 0);
intel_get_hpd_pins(dev_priv, &pin_mask, &long_mask,
hotplug_trigger, dig_hotplug_reg,
@@ -2232,8 +1817,7 @@ static void bxt_hpd_irq_handler(struct drm_i915_private *dev_priv,
{
u32 dig_hotplug_reg, pin_mask = 0, long_mask = 0;
- dig_hotplug_reg = intel_uncore_read(&dev_priv->uncore, PCH_PORT_HOTPLUG);
- intel_uncore_write(&dev_priv->uncore, PCH_PORT_HOTPLUG, dig_hotplug_reg);
+ dig_hotplug_reg = intel_uncore_rmw(&dev_priv->uncore, PCH_PORT_HOTPLUG, 0, 0);
intel_get_hpd_pins(dev_priv, &pin_mask, &long_mask,
hotplug_trigger, dig_hotplug_reg,
@@ -2252,8 +1836,7 @@ static void gen11_hpd_irq_handler(struct drm_i915_private *dev_priv, u32 iir)
if (trigger_tc) {
u32 dig_hotplug_reg;
- dig_hotplug_reg = intel_uncore_read(&dev_priv->uncore, GEN11_TC_HOTPLUG_CTL);
- intel_uncore_write(&dev_priv->uncore, GEN11_TC_HOTPLUG_CTL, dig_hotplug_reg);
+ dig_hotplug_reg = intel_uncore_rmw(&dev_priv->uncore, GEN11_TC_HOTPLUG_CTL, 0, 0);
intel_get_hpd_pins(dev_priv, &pin_mask, &long_mask,
trigger_tc, dig_hotplug_reg,
@@ -2264,8 +1847,7 @@ static void gen11_hpd_irq_handler(struct drm_i915_private *dev_priv, u32 iir)
if (trigger_tbt) {
u32 dig_hotplug_reg;
- dig_hotplug_reg = intel_uncore_read(&dev_priv->uncore, GEN11_TBT_HOTPLUG_CTL);
- intel_uncore_write(&dev_priv->uncore, GEN11_TBT_HOTPLUG_CTL, dig_hotplug_reg);
+ dig_hotplug_reg = intel_uncore_rmw(&dev_priv->uncore, GEN11_TBT_HOTPLUG_CTL, 0, 0);
intel_get_hpd_pins(dev_priv, &pin_mask, &long_mask,
trigger_tbt, dig_hotplug_reg,
@@ -2355,8 +1937,7 @@ gen8_de_misc_irq_handler(struct drm_i915_private *dev_priv, u32 iir)
else
iir_reg = EDP_PSR_IIR;
- psr_iir = intel_uncore_read(&dev_priv->uncore, iir_reg);
- intel_uncore_write(&dev_priv->uncore, iir_reg, psr_iir);
+ psr_iir = intel_uncore_rmw(&dev_priv->uncore, iir_reg, 0, 0);
if (psr_iir)
found = true;
@@ -2426,8 +2007,7 @@ static void gen11_dsi_te_interrupt_handler(struct drm_i915_private *dev_priv,
/* clear TE in dsi IIR */
port = (te_trigger & DSI1_TE) ? PORT_B : PORT_A;
- tmp = intel_uncore_read(&dev_priv->uncore, DSI_INTR_IDENT_REG(port));
- intel_uncore_write(&dev_priv->uncore, DSI_INTR_IDENT_REG(port), tmp);
+ tmp = intel_uncore_rmw(&dev_priv->uncore, DSI_INTR_IDENT_REG(port), 0, 0);
}
static u32 gen8_de_pipe_flip_done_mask(struct drm_i915_private *i915)
@@ -2465,8 +2045,8 @@ gen8_de_irq_handler(struct drm_i915_private *dev_priv, u32 master_ctl)
ret = IRQ_HANDLED;
gen8_de_misc_irq_handler(dev_priv, iir);
} else {
- drm_err(&dev_priv->drm,
- "The master control interrupt lied (DE MISC)!\n");
+ drm_err_ratelimited(&dev_priv->drm,
+ "The master control interrupt lied (DE MISC)!\n");
}
}
@@ -2477,8 +2057,8 @@ gen8_de_irq_handler(struct drm_i915_private *dev_priv, u32 master_ctl)
ret = IRQ_HANDLED;
gen11_hpd_irq_handler(dev_priv, iir);
} else {
- drm_err(&dev_priv->drm,
- "The master control interrupt lied, (DE HPD)!\n");
+ drm_err_ratelimited(&dev_priv->drm,
+ "The master control interrupt lied, (DE HPD)!\n");
}
}
@@ -2527,12 +2107,12 @@ gen8_de_irq_handler(struct drm_i915_private *dev_priv, u32 master_ctl)
}
if (!found)
- drm_err(&dev_priv->drm,
- "Unexpected DE Port interrupt\n");
+ drm_err_ratelimited(&dev_priv->drm,
+ "Unexpected DE Port interrupt\n");
}
else
- drm_err(&dev_priv->drm,
- "The master control interrupt lied (DE PORT)!\n");
+ drm_err_ratelimited(&dev_priv->drm,
+ "The master control interrupt lied (DE PORT)!\n");
}
for_each_pipe(dev_priv, pipe) {
@@ -2543,8 +2123,8 @@ gen8_de_irq_handler(struct drm_i915_private *dev_priv, u32 master_ctl)
iir = intel_uncore_read(&dev_priv->uncore, GEN8_DE_PIPE_IIR(pipe));
if (!iir) {
- drm_err(&dev_priv->drm,
- "The master control interrupt lied (DE PIPE)!\n");
+ drm_err_ratelimited(&dev_priv->drm,
+ "The master control interrupt lied (DE PIPE)!\n");
continue;
}
@@ -2565,10 +2145,10 @@ gen8_de_irq_handler(struct drm_i915_private *dev_priv, u32 master_ctl)
fault_errors = iir & gen8_de_pipe_fault_mask(dev_priv);
if (fault_errors)
- drm_err(&dev_priv->drm,
- "Fault errors on pipe %c: 0x%08x\n",
- pipe_name(pipe),
- fault_errors);
+ drm_err_ratelimited(&dev_priv->drm,
+ "Fault errors on pipe %c: 0x%08x\n",
+ pipe_name(pipe),
+ fault_errors);
}
if (HAS_PCH_SPLIT(dev_priv) && !HAS_PCH_NOP(dev_priv) &&
@@ -2791,7 +2371,8 @@ static irqreturn_t dg1_irq_handler(int irq, void *arg)
master_ctl = raw_reg_read(regs, GEN11_GFX_MSTR_IRQ);
raw_reg_write(regs, GEN11_GFX_MSTR_IRQ, master_ctl);
} else {
- DRM_ERROR("Tile not supported: 0x%08x\n", master_tile_ctl);
+ drm_err(&i915->drm, "Tile not supported: 0x%08x\n",
+ master_tile_ctl);
dg1_master_intr_enable(regs);
return IRQ_NONE;
}
@@ -2884,7 +2465,6 @@ static bool gen11_dsi_configure_te(struct intel_crtc *intel_crtc,
{
struct drm_i915_private *dev_priv = to_i915(intel_crtc->base.dev);
enum port port;
- u32 tmp;
if (!(intel_crtc->mode_flags &
(I915_MODE_FLAG_DSI_USE_TE1 | I915_MODE_FLAG_DSI_USE_TE0)))
@@ -2896,16 +2476,10 @@ static bool gen11_dsi_configure_te(struct intel_crtc *intel_crtc,
else
port = PORT_A;
- tmp = intel_uncore_read(&dev_priv->uncore, DSI_INTR_MASK_REG(port));
- if (enable)
- tmp &= ~DSI_TE_EVENT;
- else
- tmp |= DSI_TE_EVENT;
+ intel_uncore_rmw(&dev_priv->uncore, DSI_INTR_MASK_REG(port), DSI_TE_EVENT,
+ enable ? 0 : DSI_TE_EVENT);
- intel_uncore_write(&dev_priv->uncore, DSI_INTR_MASK_REG(port), tmp);
-
- tmp = intel_uncore_read(&dev_priv->uncore, DSI_INTR_IDENT_REG(port));
- intel_uncore_write(&dev_priv->uncore, DSI_INTR_IDENT_REG(port), tmp);
+ intel_uncore_rmw(&dev_priv->uncore, DSI_INTR_IDENT_REG(port), 0, 0);
return true;
}
@@ -3020,7 +2594,7 @@ static void vlv_display_irq_reset(struct drm_i915_private *dev_priv)
intel_uncore_write(uncore, DPINVGTT, DPINVGTT_STATUS_MASK_VLV);
i915_hotplug_interrupt_update_locked(dev_priv, 0xffffffff, 0);
- intel_uncore_write(uncore, PORT_HOTPLUG_STAT, intel_uncore_read(&dev_priv->uncore, PORT_HOTPLUG_STAT));
+ intel_uncore_rmw(uncore, PORT_HOTPLUG_STAT, 0, 0);
i9xx_pipestat_irq_reset(dev_priv);
@@ -3118,7 +2692,7 @@ static void gen8_irq_reset(struct drm_i915_private *dev_priv)
{
struct intel_uncore *uncore = &dev_priv->uncore;
- gen8_master_intr_disable(dev_priv->uncore.regs);
+ gen8_master_intr_disable(uncore->regs);
gen8_gt_irq_reset(to_gt(dev_priv));
gen8_display_irq_reset(dev_priv);
@@ -3250,7 +2824,7 @@ static void cherryview_irq_reset(struct drm_i915_private *dev_priv)
{
struct intel_uncore *uncore = &dev_priv->uncore;
- intel_uncore_write(&dev_priv->uncore, GEN8_MASTER_IRQ, 0);
+ intel_uncore_write(uncore, GEN8_MASTER_IRQ, 0);
intel_uncore_posting_read(&dev_priv->uncore, GEN8_MASTER_IRQ);
gen8_gt_irq_reset(to_gt(dev_priv));
@@ -3263,10 +2837,11 @@ static void cherryview_irq_reset(struct drm_i915_private *dev_priv)
spin_unlock_irq(&dev_priv->irq_lock);
}
-static u32 ibx_hotplug_enables(struct drm_i915_private *i915,
- enum hpd_pin pin)
+static u32 ibx_hotplug_enables(struct intel_encoder *encoder)
{
- switch (pin) {
+ struct drm_i915_private *i915 = to_i915(encoder->base.dev);
+
+ switch (encoder->hpd_pin) {
case HPD_PORT_A:
/*
* When CPU and PCH are on the same package, port A
@@ -3290,23 +2865,20 @@ static u32 ibx_hotplug_enables(struct drm_i915_private *i915,
static void ibx_hpd_detection_setup(struct drm_i915_private *dev_priv)
{
- u32 hotplug;
-
/*
* Enable digital hotplug on the PCH, and configure the DP short pulse
* duration to 2ms (which is the minimum in the Display Port spec).
* The pulse duration bits are reserved on LPT+.
*/
- hotplug = intel_uncore_read(&dev_priv->uncore, PCH_PORT_HOTPLUG);
- hotplug &= ~(PORTA_HOTPLUG_ENABLE |
- PORTB_HOTPLUG_ENABLE |
- PORTC_HOTPLUG_ENABLE |
- PORTD_HOTPLUG_ENABLE |
- PORTB_PULSE_DURATION_MASK |
- PORTC_PULSE_DURATION_MASK |
- PORTD_PULSE_DURATION_MASK);
- hotplug |= intel_hpd_hotplug_enables(dev_priv, ibx_hotplug_enables);
- intel_uncore_write(&dev_priv->uncore, PCH_PORT_HOTPLUG, hotplug);
+ intel_uncore_rmw(&dev_priv->uncore, PCH_PORT_HOTPLUG,
+ PORTA_HOTPLUG_ENABLE |
+ PORTB_HOTPLUG_ENABLE |
+ PORTC_HOTPLUG_ENABLE |
+ PORTD_HOTPLUG_ENABLE |
+ PORTB_PULSE_DURATION_MASK |
+ PORTC_PULSE_DURATION_MASK |
+ PORTD_PULSE_DURATION_MASK,
+ intel_hpd_hotplug_enables(dev_priv, ibx_hotplug_enables));
}
static void ibx_hpd_irq_setup(struct drm_i915_private *dev_priv)
@@ -3321,31 +2893,29 @@ static void ibx_hpd_irq_setup(struct drm_i915_private *dev_priv)
ibx_hpd_detection_setup(dev_priv);
}
-static u32 icp_ddi_hotplug_enables(struct drm_i915_private *i915,
- enum hpd_pin pin)
+static u32 icp_ddi_hotplug_enables(struct intel_encoder *encoder)
{
- switch (pin) {
+ switch (encoder->hpd_pin) {
case HPD_PORT_A:
case HPD_PORT_B:
case HPD_PORT_C:
case HPD_PORT_D:
- return SHOTPLUG_CTL_DDI_HPD_ENABLE(pin);
+ return SHOTPLUG_CTL_DDI_HPD_ENABLE(encoder->hpd_pin);
default:
return 0;
}
}
-static u32 icp_tc_hotplug_enables(struct drm_i915_private *i915,
- enum hpd_pin pin)
+static u32 icp_tc_hotplug_enables(struct intel_encoder *encoder)
{
- switch (pin) {
+ switch (encoder->hpd_pin) {
case HPD_PORT_TC1:
case HPD_PORT_TC2:
case HPD_PORT_TC3:
case HPD_PORT_TC4:
case HPD_PORT_TC5:
case HPD_PORT_TC6:
- return ICP_TC_HPD_ENABLE(pin);
+ return ICP_TC_HPD_ENABLE(encoder->hpd_pin);
default:
return 0;
}
@@ -3353,30 +2923,24 @@ static u32 icp_tc_hotplug_enables(struct drm_i915_private *i915,
static void icp_ddi_hpd_detection_setup(struct drm_i915_private *dev_priv)
{
- u32 hotplug;
-
- hotplug = intel_uncore_read(&dev_priv->uncore, SHOTPLUG_CTL_DDI);
- hotplug &= ~(SHOTPLUG_CTL_DDI_HPD_ENABLE(HPD_PORT_A) |
- SHOTPLUG_CTL_DDI_HPD_ENABLE(HPD_PORT_B) |
- SHOTPLUG_CTL_DDI_HPD_ENABLE(HPD_PORT_C) |
- SHOTPLUG_CTL_DDI_HPD_ENABLE(HPD_PORT_D));
- hotplug |= intel_hpd_hotplug_enables(dev_priv, icp_ddi_hotplug_enables);
- intel_uncore_write(&dev_priv->uncore, SHOTPLUG_CTL_DDI, hotplug);
+ intel_uncore_rmw(&dev_priv->uncore, SHOTPLUG_CTL_DDI,
+ SHOTPLUG_CTL_DDI_HPD_ENABLE(HPD_PORT_A) |
+ SHOTPLUG_CTL_DDI_HPD_ENABLE(HPD_PORT_B) |
+ SHOTPLUG_CTL_DDI_HPD_ENABLE(HPD_PORT_C) |
+ SHOTPLUG_CTL_DDI_HPD_ENABLE(HPD_PORT_D),
+ intel_hpd_hotplug_enables(dev_priv, icp_ddi_hotplug_enables));
}
static void icp_tc_hpd_detection_setup(struct drm_i915_private *dev_priv)
{
- u32 hotplug;
-
- hotplug = intel_uncore_read(&dev_priv->uncore, SHOTPLUG_CTL_TC);
- hotplug &= ~(ICP_TC_HPD_ENABLE(HPD_PORT_TC1) |
- ICP_TC_HPD_ENABLE(HPD_PORT_TC2) |
- ICP_TC_HPD_ENABLE(HPD_PORT_TC3) |
- ICP_TC_HPD_ENABLE(HPD_PORT_TC4) |
- ICP_TC_HPD_ENABLE(HPD_PORT_TC5) |
- ICP_TC_HPD_ENABLE(HPD_PORT_TC6));
- hotplug |= intel_hpd_hotplug_enables(dev_priv, icp_tc_hotplug_enables);
- intel_uncore_write(&dev_priv->uncore, SHOTPLUG_CTL_TC, hotplug);
+ intel_uncore_rmw(&dev_priv->uncore, SHOTPLUG_CTL_TC,
+ ICP_TC_HPD_ENABLE(HPD_PORT_TC1) |
+ ICP_TC_HPD_ENABLE(HPD_PORT_TC2) |
+ ICP_TC_HPD_ENABLE(HPD_PORT_TC3) |
+ ICP_TC_HPD_ENABLE(HPD_PORT_TC4) |
+ ICP_TC_HPD_ENABLE(HPD_PORT_TC5) |
+ ICP_TC_HPD_ENABLE(HPD_PORT_TC6),
+ intel_hpd_hotplug_enables(dev_priv, icp_tc_hotplug_enables));
}
static void icp_hpd_irq_setup(struct drm_i915_private *dev_priv)
@@ -3395,78 +2959,69 @@ static void icp_hpd_irq_setup(struct drm_i915_private *dev_priv)
icp_tc_hpd_detection_setup(dev_priv);
}
-static u32 gen11_hotplug_enables(struct drm_i915_private *i915,
- enum hpd_pin pin)
+static u32 gen11_hotplug_enables(struct intel_encoder *encoder)
{
- switch (pin) {
+ switch (encoder->hpd_pin) {
case HPD_PORT_TC1:
case HPD_PORT_TC2:
case HPD_PORT_TC3:
case HPD_PORT_TC4:
case HPD_PORT_TC5:
case HPD_PORT_TC6:
- return GEN11_HOTPLUG_CTL_ENABLE(pin);
+ return GEN11_HOTPLUG_CTL_ENABLE(encoder->hpd_pin);
default:
return 0;
}
}
-static void dg1_hpd_irq_setup(struct drm_i915_private *dev_priv)
+static void dg1_hpd_invert(struct drm_i915_private *i915)
{
- u32 val;
-
- val = intel_uncore_read(&dev_priv->uncore, SOUTH_CHICKEN1);
- val |= (INVERT_DDIA_HPD |
- INVERT_DDIB_HPD |
- INVERT_DDIC_HPD |
- INVERT_DDID_HPD);
- intel_uncore_write(&dev_priv->uncore, SOUTH_CHICKEN1, val);
+ u32 val = (INVERT_DDIA_HPD |
+ INVERT_DDIB_HPD |
+ INVERT_DDIC_HPD |
+ INVERT_DDID_HPD);
+ intel_uncore_rmw(&i915->uncore, SOUTH_CHICKEN1, 0, val);
+}
+static void dg1_hpd_irq_setup(struct drm_i915_private *dev_priv)
+{
+ dg1_hpd_invert(dev_priv);
icp_hpd_irq_setup(dev_priv);
}
static void gen11_tc_hpd_detection_setup(struct drm_i915_private *dev_priv)
{
- u32 hotplug;
-
- hotplug = intel_uncore_read(&dev_priv->uncore, GEN11_TC_HOTPLUG_CTL);
- hotplug &= ~(GEN11_HOTPLUG_CTL_ENABLE(HPD_PORT_TC1) |
- GEN11_HOTPLUG_CTL_ENABLE(HPD_PORT_TC2) |
- GEN11_HOTPLUG_CTL_ENABLE(HPD_PORT_TC3) |
- GEN11_HOTPLUG_CTL_ENABLE(HPD_PORT_TC4) |
- GEN11_HOTPLUG_CTL_ENABLE(HPD_PORT_TC5) |
- GEN11_HOTPLUG_CTL_ENABLE(HPD_PORT_TC6));
- hotplug |= intel_hpd_hotplug_enables(dev_priv, gen11_hotplug_enables);
- intel_uncore_write(&dev_priv->uncore, GEN11_TC_HOTPLUG_CTL, hotplug);
+ intel_uncore_rmw(&dev_priv->uncore, GEN11_TC_HOTPLUG_CTL,
+ GEN11_HOTPLUG_CTL_ENABLE(HPD_PORT_TC1) |
+ GEN11_HOTPLUG_CTL_ENABLE(HPD_PORT_TC2) |
+ GEN11_HOTPLUG_CTL_ENABLE(HPD_PORT_TC3) |
+ GEN11_HOTPLUG_CTL_ENABLE(HPD_PORT_TC4) |
+ GEN11_HOTPLUG_CTL_ENABLE(HPD_PORT_TC5) |
+ GEN11_HOTPLUG_CTL_ENABLE(HPD_PORT_TC6),
+ intel_hpd_hotplug_enables(dev_priv, gen11_hotplug_enables));
}
static void gen11_tbt_hpd_detection_setup(struct drm_i915_private *dev_priv)
{
- u32 hotplug;
-
- hotplug = intel_uncore_read(&dev_priv->uncore, GEN11_TBT_HOTPLUG_CTL);
- hotplug &= ~(GEN11_HOTPLUG_CTL_ENABLE(HPD_PORT_TC1) |
- GEN11_HOTPLUG_CTL_ENABLE(HPD_PORT_TC2) |
- GEN11_HOTPLUG_CTL_ENABLE(HPD_PORT_TC3) |
- GEN11_HOTPLUG_CTL_ENABLE(HPD_PORT_TC4) |
- GEN11_HOTPLUG_CTL_ENABLE(HPD_PORT_TC5) |
- GEN11_HOTPLUG_CTL_ENABLE(HPD_PORT_TC6));
- hotplug |= intel_hpd_hotplug_enables(dev_priv, gen11_hotplug_enables);
- intel_uncore_write(&dev_priv->uncore, GEN11_TBT_HOTPLUG_CTL, hotplug);
+ intel_uncore_rmw(&dev_priv->uncore, GEN11_TBT_HOTPLUG_CTL,
+ GEN11_HOTPLUG_CTL_ENABLE(HPD_PORT_TC1) |
+ GEN11_HOTPLUG_CTL_ENABLE(HPD_PORT_TC2) |
+ GEN11_HOTPLUG_CTL_ENABLE(HPD_PORT_TC3) |
+ GEN11_HOTPLUG_CTL_ENABLE(HPD_PORT_TC4) |
+ GEN11_HOTPLUG_CTL_ENABLE(HPD_PORT_TC5) |
+ GEN11_HOTPLUG_CTL_ENABLE(HPD_PORT_TC6),
+ intel_hpd_hotplug_enables(dev_priv, gen11_hotplug_enables));
}
static void gen11_hpd_irq_setup(struct drm_i915_private *dev_priv)
{
u32 hotplug_irqs, enabled_irqs;
- u32 val;
enabled_irqs = intel_hpd_enabled_irqs(dev_priv, dev_priv->display.hotplug.hpd);
hotplug_irqs = intel_hpd_hotplug_irqs(dev_priv, dev_priv->display.hotplug.hpd);
- val = intel_uncore_read(&dev_priv->uncore, GEN11_DE_HPD_IMR);
- val &= ~hotplug_irqs;
- val |= ~enabled_irqs & hotplug_irqs;
- intel_uncore_write(&dev_priv->uncore, GEN11_DE_HPD_IMR, val);
+ intel_uncore_rmw(&dev_priv->uncore, GEN11_DE_HPD_IMR, hotplug_irqs,
+ ~enabled_irqs & hotplug_irqs);
intel_uncore_posting_read(&dev_priv->uncore, GEN11_DE_HPD_IMR);
gen11_tc_hpd_detection_setup(dev_priv);
@@ -3476,10 +3031,9 @@ static void gen11_hpd_irq_setup(struct drm_i915_private *dev_priv)
icp_hpd_irq_setup(dev_priv);
}
-static u32 spt_hotplug_enables(struct drm_i915_private *i915,
- enum hpd_pin pin)
+static u32 spt_hotplug_enables(struct intel_encoder *encoder)
{
- switch (pin) {
+ switch (encoder->hpd_pin) {
case HPD_PORT_A:
return PORTA_HOTPLUG_ENABLE;
case HPD_PORT_B:
@@ -3493,10 +3047,9 @@ static u32 spt_hotplug_enables(struct drm_i915_private *i915,
}
}
-static u32 spt_hotplug2_enables(struct drm_i915_private *i915,
- enum hpd_pin pin)
+static u32 spt_hotplug2_enables(struct intel_encoder *encoder)
{
- switch (pin) {
+ switch (encoder->hpd_pin) {
case HPD_PORT_E:
return PORTE_HOTPLUG_ENABLE;
default:
@@ -3506,29 +3059,22 @@ static u32 spt_hotplug2_enables(struct drm_i915_private *i915,
static void spt_hpd_detection_setup(struct drm_i915_private *dev_priv)
{
- u32 val, hotplug;
-
/* Display WA #1179 WaHardHangonHotPlug: cnp */
if (HAS_PCH_CNP(dev_priv)) {
- val = intel_uncore_read(&dev_priv->uncore, SOUTH_CHICKEN1);
- val &= ~CHASSIS_CLK_REQ_DURATION_MASK;
- val |= CHASSIS_CLK_REQ_DURATION(0xf);
- intel_uncore_write(&dev_priv->uncore, SOUTH_CHICKEN1, val);
+ intel_uncore_rmw(&dev_priv->uncore, SOUTH_CHICKEN1, CHASSIS_CLK_REQ_DURATION_MASK,
+ CHASSIS_CLK_REQ_DURATION(0xf));
}
/* Enable digital hotplug on the PCH */
- hotplug = intel_uncore_read(&dev_priv->uncore, PCH_PORT_HOTPLUG);
- hotplug &= ~(PORTA_HOTPLUG_ENABLE |
- PORTB_HOTPLUG_ENABLE |
- PORTC_HOTPLUG_ENABLE |
- PORTD_HOTPLUG_ENABLE);
- hotplug |= intel_hpd_hotplug_enables(dev_priv, spt_hotplug_enables);
- intel_uncore_write(&dev_priv->uncore, PCH_PORT_HOTPLUG, hotplug);
+ intel_uncore_rmw(&dev_priv->uncore, PCH_PORT_HOTPLUG,
+ PORTA_HOTPLUG_ENABLE |
+ PORTB_HOTPLUG_ENABLE |
+ PORTC_HOTPLUG_ENABLE |
+ PORTD_HOTPLUG_ENABLE,
+ intel_hpd_hotplug_enables(dev_priv, spt_hotplug_enables));
- hotplug = intel_uncore_read(&dev_priv->uncore, PCH_PORT_HOTPLUG2);
- hotplug &= ~PORTE_HOTPLUG_ENABLE;
- hotplug |= intel_hpd_hotplug_enables(dev_priv, spt_hotplug2_enables);
- intel_uncore_write(&dev_priv->uncore, PCH_PORT_HOTPLUG2, hotplug);
+ intel_uncore_rmw(&dev_priv->uncore, PCH_PORT_HOTPLUG2, PORTE_HOTPLUG_ENABLE,
+ intel_hpd_hotplug_enables(dev_priv, spt_hotplug2_enables));
}
static void spt_hpd_irq_setup(struct drm_i915_private *dev_priv)
@@ -3546,10 +3092,9 @@ static void spt_hpd_irq_setup(struct drm_i915_private *dev_priv)
spt_hpd_detection_setup(dev_priv);
}
-static u32 ilk_hotplug_enables(struct drm_i915_private *i915,
- enum hpd_pin pin)
+static u32 ilk_hotplug_enables(struct intel_encoder *encoder)
{
- switch (pin) {
+ switch (encoder->hpd_pin) {
case HPD_PORT_A:
return DIGITAL_PORTA_HOTPLUG_ENABLE |
DIGITAL_PORTA_PULSE_DURATION_2ms;
@@ -3560,18 +3105,14 @@ static u32 ilk_hotplug_enables(struct drm_i915_private *i915,
static void ilk_hpd_detection_setup(struct drm_i915_private *dev_priv)
{
- u32 hotplug;
-
/*
* Enable digital hotplug on the CPU, and configure the DP short pulse
* duration to 2ms (which is the minimum in the Display Port spec)
* The pulse duration bits are reserved on HSW+.
*/
- hotplug = intel_uncore_read(&dev_priv->uncore, DIGITAL_PORT_HOTPLUG_CNTRL);
- hotplug &= ~(DIGITAL_PORTA_HOTPLUG_ENABLE |
- DIGITAL_PORTA_PULSE_DURATION_MASK);
- hotplug |= intel_hpd_hotplug_enables(dev_priv, ilk_hotplug_enables);
- intel_uncore_write(&dev_priv->uncore, DIGITAL_PORT_HOTPLUG_CNTRL, hotplug);
+ intel_uncore_rmw(&dev_priv->uncore, DIGITAL_PORT_HOTPLUG_CNTRL,
+ DIGITAL_PORTA_HOTPLUG_ENABLE | DIGITAL_PORTA_PULSE_DURATION_MASK,
+ intel_hpd_hotplug_enables(dev_priv, ilk_hotplug_enables));
}
static void ilk_hpd_irq_setup(struct drm_i915_private *dev_priv)
@@ -3591,25 +3132,24 @@ static void ilk_hpd_irq_setup(struct drm_i915_private *dev_priv)
ibx_hpd_irq_setup(dev_priv);
}
-static u32 bxt_hotplug_enables(struct drm_i915_private *i915,
- enum hpd_pin pin)
+static u32 bxt_hotplug_enables(struct intel_encoder *encoder)
{
u32 hotplug;
- switch (pin) {
+ switch (encoder->hpd_pin) {
case HPD_PORT_A:
hotplug = PORTA_HOTPLUG_ENABLE;
- if (intel_bios_is_port_hpd_inverted(i915, PORT_A))
+ if (intel_bios_encoder_hpd_invert(encoder->devdata))
hotplug |= BXT_DDIA_HPD_INVERT;
return hotplug;
case HPD_PORT_B:
hotplug = PORTB_HOTPLUG_ENABLE;
- if (intel_bios_is_port_hpd_inverted(i915, PORT_B))
+ if (intel_bios_encoder_hpd_invert(encoder->devdata))
hotplug |= BXT_DDIB_HPD_INVERT;
return hotplug;
case HPD_PORT_C:
hotplug = PORTC_HOTPLUG_ENABLE;
- if (intel_bios_is_port_hpd_inverted(i915, PORT_C))
+ if (intel_bios_encoder_hpd_invert(encoder->devdata))
hotplug |= BXT_DDIC_HPD_INVERT;
return hotplug;
default:
@@ -3619,17 +3159,12 @@ static u32 bxt_hotplug_enables(struct drm_i915_private *i915,
static void bxt_hpd_detection_setup(struct drm_i915_private *dev_priv)
{
- u32 hotplug;
-
- hotplug = intel_uncore_read(&dev_priv->uncore, PCH_PORT_HOTPLUG);
- hotplug &= ~(PORTA_HOTPLUG_ENABLE |
- PORTB_HOTPLUG_ENABLE |
- PORTC_HOTPLUG_ENABLE |
- BXT_DDIA_HPD_INVERT |
- BXT_DDIB_HPD_INVERT |
- BXT_DDIC_HPD_INVERT);
- hotplug |= intel_hpd_hotplug_enables(dev_priv, bxt_hotplug_enables);
- intel_uncore_write(&dev_priv->uncore, PCH_PORT_HOTPLUG, hotplug);
+ intel_uncore_rmw(&dev_priv->uncore, PCH_PORT_HOTPLUG,
+ PORTA_HOTPLUG_ENABLE |
+ PORTB_HOTPLUG_ENABLE |
+ PORTC_HOTPLUG_ENABLE |
+ BXT_DDI_HPD_INVERT_MASK,
+ intel_hpd_hotplug_enables(dev_priv, bxt_hotplug_enables));
}
static void bxt_hpd_irq_setup(struct drm_i915_private *dev_priv)
@@ -3928,19 +3463,37 @@ static void i8xx_irq_reset(struct drm_i915_private *dev_priv)
i9xx_pipestat_irq_reset(dev_priv);
- GEN2_IRQ_RESET(uncore);
+ gen2_irq_reset(uncore);
dev_priv->irq_mask = ~0u;
}
+static u32 i9xx_error_mask(struct drm_i915_private *i915)
+{
+ /*
+ * On gen2/3 FBC generates (seemingly spurious)
+ * display INVALID_GTT/INVALID_GTT_PTE table errors.
+ *
+ * Also gen3 bspec has this to say:
+ * "DISPA_INVALID_GTT_PTE
+ " [DevNapa] : Reserved. This bit does not reflect the page
+ " table error for the display plane A."
+ *
+ * Unfortunately we can't mask off individual PGTBL_ER bits,
+ * so we just have to mask off all page table errors via EMR.
+ */
+ if (HAS_FBC(i915))
+ return ~I915_ERROR_MEMORY_REFRESH;
+ else
+ return ~(I915_ERROR_PAGE_TABLE |
+ I915_ERROR_MEMORY_REFRESH);
+}
+
static void i8xx_irq_postinstall(struct drm_i915_private *dev_priv)
{
struct intel_uncore *uncore = &dev_priv->uncore;
u16 enable_mask;
- intel_uncore_write16(uncore,
- EMR,
- ~(I915_ERROR_PAGE_TABLE |
- I915_ERROR_MEMORY_REFRESH));
+ intel_uncore_write16(uncore, EMR, i9xx_error_mask(dev_priv));
/* Unmask the interrupts that we always want on. */
dev_priv->irq_mask =
@@ -3954,7 +3507,7 @@ static void i8xx_irq_postinstall(struct drm_i915_private *dev_priv)
I915_MASTER_ERROR_INTERRUPT |
I915_USER_INTERRUPT;
- GEN2_IRQ_INIT(uncore, dev_priv->irq_mask, enable_mask);
+ gen2_irq_init(uncore, dev_priv->irq_mask, enable_mask);
/* Interrupt setup is already guaranteed to be single-threaded, this is
* just to make the assert_spin_locked check happy. */
@@ -3971,9 +3524,7 @@ static void i8xx_error_irq_ack(struct drm_i915_private *i915,
u16 emr;
*eir = intel_uncore_read16(uncore, EIR);
-
- if (*eir)
- intel_uncore_write16(uncore, EIR, *eir);
+ intel_uncore_write16(uncore, EIR, *eir);
*eir_stuck = intel_uncore_read16(uncore, EIR);
if (*eir_stuck == 0)
@@ -3997,11 +3548,14 @@ static void i8xx_error_irq_ack(struct drm_i915_private *i915,
static void i8xx_error_irq_handler(struct drm_i915_private *dev_priv,
u16 eir, u16 eir_stuck)
{
- DRM_DEBUG("Master Error: EIR 0x%04x\n", eir);
+ drm_dbg(&dev_priv->drm, "Master Error: EIR 0x%04x\n", eir);
if (eir_stuck)
drm_dbg(&dev_priv->drm, "EIR stuck: 0x%04x, masked\n",
eir_stuck);
+
+ drm_dbg(&dev_priv->drm, "PGTBL_ER: 0x%08x\n",
+ intel_uncore_read(&dev_priv->uncore, PGTBL_ER));
}
static void i9xx_error_irq_ack(struct drm_i915_private *dev_priv,
@@ -4010,7 +3564,6 @@ static void i9xx_error_irq_ack(struct drm_i915_private *dev_priv,
u32 emr;
*eir = intel_uncore_read(&dev_priv->uncore, EIR);
-
intel_uncore_write(&dev_priv->uncore, EIR, *eir);
*eir_stuck = intel_uncore_read(&dev_priv->uncore, EIR);
@@ -4035,11 +3588,14 @@ static void i9xx_error_irq_ack(struct drm_i915_private *dev_priv,
static void i9xx_error_irq_handler(struct drm_i915_private *dev_priv,
u32 eir, u32 eir_stuck)
{
- DRM_DEBUG("Master Error, EIR 0x%08x\n", eir);
+ drm_dbg(&dev_priv->drm, "Master Error, EIR 0x%08x\n", eir);
if (eir_stuck)
drm_dbg(&dev_priv->drm, "EIR stuck: 0x%08x, masked\n",
eir_stuck);
+
+ drm_dbg(&dev_priv->drm, "PGTBL_ER: 0x%08x\n",
+ intel_uncore_read(&dev_priv->uncore, PGTBL_ER));
}
static irqreturn_t i8xx_irq_handler(int irq, void *arg)
@@ -4095,7 +3651,7 @@ static void i915_irq_reset(struct drm_i915_private *dev_priv)
if (I915_HAS_HOTPLUG(dev_priv)) {
i915_hotplug_interrupt_update(dev_priv, 0xffffffff, 0);
- intel_uncore_write(&dev_priv->uncore, PORT_HOTPLUG_STAT, intel_uncore_read(&dev_priv->uncore, PORT_HOTPLUG_STAT));
+ intel_uncore_rmw(&dev_priv->uncore, PORT_HOTPLUG_STAT, 0, 0);
}
i9xx_pipestat_irq_reset(dev_priv);
@@ -4109,8 +3665,7 @@ static void i915_irq_postinstall(struct drm_i915_private *dev_priv)
struct intel_uncore *uncore = &dev_priv->uncore;
u32 enable_mask;
- intel_uncore_write(&dev_priv->uncore, EMR, ~(I915_ERROR_PAGE_TABLE |
- I915_ERROR_MEMORY_REFRESH));
+ intel_uncore_write(uncore, EMR, i9xx_error_mask(dev_priv));
/* Unmask the interrupts that we always want on. */
dev_priv->irq_mask =
@@ -4205,7 +3760,7 @@ static void i965_irq_reset(struct drm_i915_private *dev_priv)
struct intel_uncore *uncore = &dev_priv->uncore;
i915_hotplug_interrupt_update(dev_priv, 0xffffffff, 0);
- intel_uncore_write(&dev_priv->uncore, PORT_HOTPLUG_STAT, intel_uncore_read(&dev_priv->uncore, PORT_HOTPLUG_STAT));
+ intel_uncore_rmw(uncore, PORT_HOTPLUG_STAT, 0, 0);
i9xx_pipestat_irq_reset(dev_priv);
@@ -4213,26 +3768,31 @@ static void i965_irq_reset(struct drm_i915_private *dev_priv)
dev_priv->irq_mask = ~0u;
}
-static void i965_irq_postinstall(struct drm_i915_private *dev_priv)
+static u32 i965_error_mask(struct drm_i915_private *i915)
{
- struct intel_uncore *uncore = &dev_priv->uncore;
- u32 enable_mask;
- u32 error_mask;
-
/*
* Enable some error detection, note the instruction error mask
* bit is reserved, so we leave it masked.
+ *
+ * i965 FBC no longer generates spurious GTT errors,
+ * so we can always enable the page table errors.
*/
- if (IS_G4X(dev_priv)) {
- error_mask = ~(GM45_ERROR_PAGE_TABLE |
- GM45_ERROR_MEM_PRIV |
- GM45_ERROR_CP_PRIV |
- I915_ERROR_MEMORY_REFRESH);
- } else {
- error_mask = ~(I915_ERROR_PAGE_TABLE |
- I915_ERROR_MEMORY_REFRESH);
- }
- intel_uncore_write(&dev_priv->uncore, EMR, error_mask);
+ if (IS_G4X(i915))
+ return ~(GM45_ERROR_PAGE_TABLE |
+ GM45_ERROR_MEM_PRIV |
+ GM45_ERROR_CP_PRIV |
+ I915_ERROR_MEMORY_REFRESH);
+ else
+ return ~(I915_ERROR_PAGE_TABLE |
+ I915_ERROR_MEMORY_REFRESH);
+}
+
+static void i965_irq_postinstall(struct drm_i915_private *dev_priv)
+{
+ struct intel_uncore *uncore = &dev_priv->uncore;
+ u32 enable_mask;
+
+ intel_uncore_write(uncore, EMR, i965_error_mask(dev_priv));
/* Unmask the interrupts that we always want on. */
dev_priv->irq_mask =
@@ -4383,7 +3943,6 @@ void intel_hpd_irq_setup(struct drm_i915_private *i915)
*/
void intel_irq_init(struct drm_i915_private *dev_priv)
{
- struct drm_device *dev = &dev_priv->drm;
int i;
INIT_WORK(&dev_priv->l3_parity.error_work, ivb_parity_work);
@@ -4399,9 +3958,9 @@ void intel_irq_init(struct drm_i915_private *dev_priv)
intel_hpd_init_pins(dev_priv);
- intel_hpd_init_work(dev_priv);
+ intel_hpd_init_early(dev_priv);
- dev->vblank_disable_immediate = true;
+ dev_priv->drm.vblank_disable_immediate = true;
/* Most platforms treat the display irq block as an always-on
* power domain. vlv/chv can disable it at runtime and need
@@ -4413,15 +3972,6 @@ void intel_irq_init(struct drm_i915_private *dev_priv)
if (IS_VALLEYVIEW(dev_priv) || IS_CHERRYVIEW(dev_priv))
dev_priv->display_irqs_enabled = false;
- dev_priv->display.hotplug.hpd_storm_threshold = HPD_STORM_DEFAULT_THRESHOLD;
- /* If we have MST support, we want to avoid doing short HPD IRQ storm
- * detection, as short HPD storms will occur as a natural part of
- * sideband messaging with MST.
- * On older platforms however, IRQ storms can occur with both long and
- * short pulses, as seen on some G4x systems.
- */
- dev_priv->display.hotplug.hpd_short_storm_enabled = !HAS_DP_MST(dev_priv);
-
if (HAS_GMCH(dev_priv)) {
if (I915_HAS_HOTPLUG(dev_priv))
dev_priv->display.funcs.hotplug = &i915_hpd_funcs;
diff --git a/drivers/gpu/drm/i915/i915_irq.h b/drivers/gpu/drm/i915/i915_irq.h
index 82639d9d7e82..03ee4c8b1ed3 100644
--- a/drivers/gpu/drm/i915/i915_irq.h
+++ b/drivers/gpu/drm/i915/i915_irq.h
@@ -66,18 +66,12 @@ bool intel_irqs_enabled(struct drm_i915_private *dev_priv);
void intel_synchronize_irq(struct drm_i915_private *i915);
void intel_synchronize_hardirq(struct drm_i915_private *i915);
-int intel_get_crtc_scanline(struct intel_crtc *crtc);
void gen8_irq_power_well_post_enable(struct drm_i915_private *dev_priv,
u8 pipe_mask);
void gen8_irq_power_well_pre_disable(struct drm_i915_private *dev_priv,
u8 pipe_mask);
u32 gen8_de_pipe_underrun_mask(struct drm_i915_private *dev_priv);
-bool intel_crtc_get_vblank_timestamp(struct drm_crtc *crtc, int *max_error,
- ktime_t *vblank_time, bool in_vblank_irq);
-
-u32 i915_get_vblank_counter(struct drm_crtc *crtc);
-u32 g4x_get_vblank_counter(struct drm_crtc *crtc);
int i8xx_enable_vblank(struct drm_crtc *crtc);
int i915gm_enable_vblank(struct drm_crtc *crtc);
@@ -90,12 +84,9 @@ void i965_disable_vblank(struct drm_crtc *crtc);
void ilk_disable_vblank(struct drm_crtc *crtc);
void bdw_disable_vblank(struct drm_crtc *crtc);
-void gen2_irq_reset(struct intel_uncore *uncore);
void gen3_irq_reset(struct intel_uncore *uncore, i915_reg_t imr,
i915_reg_t iir, i915_reg_t ier);
-void gen2_irq_init(struct intel_uncore *uncore,
- u32 imr_val, u32 ier_val);
void gen3_irq_init(struct intel_uncore *uncore,
i915_reg_t imr, u32 imr_val,
i915_reg_t ier, u32 ier_val,
@@ -111,9 +102,6 @@ void gen3_irq_init(struct intel_uncore *uncore,
#define GEN3_IRQ_RESET(uncore, type) \
gen3_irq_reset((uncore), type##IMR, type##IIR, type##IER)
-#define GEN2_IRQ_RESET(uncore) \
- gen2_irq_reset(uncore)
-
#define GEN8_IRQ_INIT_NDX(uncore, type, which, imr_val, ier_val) \
({ \
unsigned int which_ = which; \
@@ -129,7 +117,4 @@ void gen3_irq_init(struct intel_uncore *uncore,
type##IER, ier_val, \
type##IIR)
-#define GEN2_IRQ_INIT(uncore, imr_val, ier_val) \
- gen2_irq_init((uncore), imr_val, ier_val)
-
#endif /* __I915_IRQ_H__ */
diff --git a/drivers/gpu/drm/i915/i915_params.c b/drivers/gpu/drm/i915/i915_params.c
index d1e4d528cb17..0a171b57fd8f 100644
--- a/drivers/gpu/drm/i915/i915_params.c
+++ b/drivers/gpu/drm/i915/i915_params.c
@@ -121,8 +121,11 @@ i915_param_named_unsafe(enable_psr2_sel_fetch, bool, 0400,
"(0=disabled, 1=enabled) "
"Default: 0");
+i915_param_named_unsafe(enable_sagv, bool, 0600,
+ "Enable system agent voltage/frequency scaling (SAGV) (default: true)");
+
i915_param_named_unsafe(force_probe, charp, 0400,
- "Force probe the driver for specified devices. "
+ "Force probe options for specified supported devices. "
"See CONFIG_DRM_I915_FORCE_PROBE for details.");
i915_param_named_unsafe(disable_power_well, int, 0400,
@@ -131,6 +134,9 @@ i915_param_named_unsafe(disable_power_well, int, 0400,
i915_param_named_unsafe(enable_ips, int, 0400, "Enable IPS (default: true)");
+i915_param_named_unsafe(enable_dpt, bool, 0400,
+ "Enable display page table (DPT) (default: true)");
+
i915_param_named(fastboot, int, 0400,
"Try to skip unnecessary mode sets at boot time "
"(0=disabled, 1=enabled) "
@@ -192,6 +198,9 @@ i915_param_named_unsafe(huc_firmware_path, charp, 0400,
i915_param_named_unsafe(dmc_firmware_path, charp, 0400,
"DMC firmware path to use instead of the default one");
+i915_param_named_unsafe(gsc_firmware_path, charp, 0400,
+ "GSC firmware path to use instead of the default one");
+
i915_param_named_unsafe(enable_dp_mst, bool, 0400,
"Enable multi-stream transport (MST) for new DisplayPort sinks. (default: true)");
@@ -219,27 +228,44 @@ i915_param_named_unsafe(lmem_size, uint, 0400,
i915_param_named_unsafe(lmem_bar_size, uint, 0400,
"Set the lmem bar size(in MiB).");
-static __always_inline void _print_param(struct drm_printer *p,
- const char *name,
- const char *type,
- const void *x)
+static void _param_print_bool(struct drm_printer *p, const char *name,
+ bool val)
+{
+ drm_printf(p, "i915.%s=%s\n", name, str_yes_no(val));
+}
+
+static void _param_print_int(struct drm_printer *p, const char *name,
+ int val)
{
- if (!__builtin_strcmp(type, "bool"))
- drm_printf(p, "i915.%s=%s\n", name,
- str_yes_no(*(const bool *)x));
- else if (!__builtin_strcmp(type, "int"))
- drm_printf(p, "i915.%s=%d\n", name, *(const int *)x);
- else if (!__builtin_strcmp(type, "unsigned int"))
- drm_printf(p, "i915.%s=%u\n", name, *(const unsigned int *)x);
- else if (!__builtin_strcmp(type, "unsigned long"))
- drm_printf(p, "i915.%s=%lu\n", name, *(const unsigned long *)x);
- else if (!__builtin_strcmp(type, "char *"))
- drm_printf(p, "i915.%s=%s\n", name, *(const char **)x);
- else
- WARN_ONCE(1, "no printer defined for param type %s (i915.%s)\n",
- type, name);
+ drm_printf(p, "i915.%s=%d\n", name, val);
}
+static void _param_print_uint(struct drm_printer *p, const char *name,
+ unsigned int val)
+{
+ drm_printf(p, "i915.%s=%u\n", name, val);
+}
+
+static void _param_print_ulong(struct drm_printer *p, const char *name,
+ unsigned long val)
+{
+ drm_printf(p, "i915.%s=%lu\n", name, val);
+}
+
+static void _param_print_charp(struct drm_printer *p, const char *name,
+ const char *val)
+{
+ drm_printf(p, "i915.%s=%s\n", name, val);
+}
+
+#define _param_print(p, name, val) \
+ _Generic(val, \
+ bool: _param_print_bool, \
+ int: _param_print_int, \
+ unsigned int: _param_print_uint, \
+ unsigned long: _param_print_ulong, \
+ char *: _param_print_charp)(p, name, val)
+
/**
* i915_params_dump - dump i915 modparams
* @params: i915 modparams
@@ -249,37 +275,48 @@ static __always_inline void _print_param(struct drm_printer *p,
*/
void i915_params_dump(const struct i915_params *params, struct drm_printer *p)
{
-#define PRINT(T, x, ...) _print_param(p, #x, #T, &params->x);
+#define PRINT(T, x, ...) _param_print(p, #x, params->x);
I915_PARAMS_FOR_EACH(PRINT);
#undef PRINT
}
-static __always_inline void dup_param(const char *type, void *x)
+static void _param_dup_charp(char **valp)
{
- if (!__builtin_strcmp(type, "char *"))
- *(void **)x = kstrdup(*(void **)x, GFP_ATOMIC);
+ *valp = kstrdup(*valp, GFP_ATOMIC);
}
+static void _param_nop(void *valp)
+{
+}
+
+#define _param_dup(valp) \
+ _Generic(valp, \
+ char **: _param_dup_charp, \
+ default: _param_nop)(valp)
+
void i915_params_copy(struct i915_params *dest, const struct i915_params *src)
{
*dest = *src;
-#define DUP(T, x, ...) dup_param(#T, &dest->x);
+#define DUP(T, x, ...) _param_dup(&dest->x);
I915_PARAMS_FOR_EACH(DUP);
#undef DUP
}
-static __always_inline void free_param(const char *type, void *x)
+static void _param_free_charp(char **valp)
{
- if (!__builtin_strcmp(type, "char *")) {
- kfree(*(void **)x);
- *(void **)x = NULL;
- }
+ kfree(*valp);
+ *valp = NULL;
}
+#define _param_free(valp) \
+ _Generic(valp, \
+ char **: _param_free_charp, \
+ default: _param_nop)(valp)
+
/* free the allocated members, *not* the passed in params itself */
void i915_params_free(struct i915_params *params)
{
-#define FREE(T, x, ...) free_param(#T, &params->x);
+#define FREE(T, x, ...) _param_free(&params->x);
I915_PARAMS_FOR_EACH(FREE);
#undef FREE
}
diff --git a/drivers/gpu/drm/i915/i915_params.h b/drivers/gpu/drm/i915/i915_params.h
index 2733cb6cfe09..68abf0ad6c00 100644
--- a/drivers/gpu/drm/i915/i915_params.h
+++ b/drivers/gpu/drm/i915/i915_params.h
@@ -54,8 +54,10 @@ struct drm_printer;
param(int, enable_dc, -1, 0400) \
param(int, enable_fbc, -1, 0600) \
param(int, enable_psr, -1, 0600) \
+ param(bool, enable_dpt, true, 0400) \
param(bool, psr_safest_params, false, 0400) \
param(bool, enable_psr2_sel_fetch, true, 0400) \
+ param(bool, enable_sagv, true, 0600) \
param(int, disable_power_well, -1, 0400) \
param(int, enable_ips, 1, 0600) \
param(int, invert_brightness, 0, 0600) \
@@ -64,6 +66,7 @@ struct drm_printer;
param(char *, guc_firmware_path, NULL, 0400) \
param(char *, huc_firmware_path, NULL, 0400) \
param(char *, dmc_firmware_path, NULL, 0400) \
+ param(char *, gsc_firmware_path, NULL, 0400) \
param(bool, memtest, false, 0400) \
param(int, mmio_debug, -IS_ENABLED(CONFIG_DRM_I915_DEBUG_MMIO), 0600) \
param(int, edp_vswing, 0, 0400) \
diff --git a/drivers/gpu/drm/i915/i915_pci.c b/drivers/gpu/drm/i915/i915_pci.c
index cd4487a1d3be..edcfb5fe20b2 100644
--- a/drivers/gpu/drm/i915/i915_pci.c
+++ b/drivers/gpu/drm/i915/i915_pci.c
@@ -26,6 +26,7 @@
#include <drm/drm_drv.h>
#include <drm/i915_pciids.h>
+#include "display/intel_display.h"
#include "gt/intel_gt_regs.h"
#include "gt/intel_sa_media.h"
@@ -132,9 +133,9 @@
[PIPE_D] = TGL_CURSOR_D_OFFSET, \
}
-#define I9XX_COLORS \
+#define I845_COLORS \
.display.color = { .gamma_lut_size = 256 }
-#define I965_COLORS \
+#define I9XX_COLORS \
.display.color = { .gamma_lut_size = 129, \
.gamma_lut_tests = DRM_COLOR_LUT_NON_DECREASING, \
}
@@ -210,7 +211,7 @@
.dma_mask_size = 32, \
I845_PIPE_OFFSETS, \
I845_CURSOR_OFFSETS, \
- I9XX_COLORS, \
+ I845_COLORS, \
GEN_DEFAULT_PAGE_SIZES, \
GEN_DEFAULT_REGIONS
@@ -341,7 +342,7 @@ static const struct intel_device_info pnv_m_info = {
.dma_mask_size = 36, \
I9XX_PIPE_OFFSETS, \
I9XX_CURSOR_OFFSETS, \
- I965_COLORS, \
+ I9XX_COLORS, \
GEN_DEFAULT_PAGE_SIZES, \
GEN_DEFAULT_REGIONS
@@ -423,7 +424,8 @@ static const struct intel_device_info ilk_m_info = {
.has_coherent_ggtt = true, \
.has_llc = 1, \
.has_rc6 = 1, \
- .has_rc6p = 1, \
+ /* snb does support rc6p, but enabling it causes various issues */ \
+ .has_rc6p = 0, \
.has_rps = true, \
.dma_mask_size = 40, \
.__runtime.ppgtt_type = INTEL_PPGTT_ALIASING, \
@@ -547,7 +549,7 @@ static const struct intel_device_info vlv_info = {
.display.mmio_offset = VLV_DISPLAY_BASE,
I9XX_PIPE_OFFSETS,
I9XX_CURSOR_OFFSETS,
- I965_COLORS,
+ I9XX_COLORS,
GEN_DEFAULT_PAGE_SIZES,
GEN_DEFAULT_REGIONS,
};
@@ -889,12 +891,11 @@ static const struct intel_device_info jsl_info = {
TGL_CURSOR_OFFSETS, \
.has_global_mocs = 1, \
.has_pxp = 1, \
- .display.has_dsb = 0 /* FIXME: LUT load is broken with DSB */
+ .display.has_dsb = 1
static const struct intel_device_info tgl_info = {
GEN12_FEATURES,
PLATFORM(INTEL_TIGERLAKE),
- .display.has_modular_fia = 1,
.__runtime.platform_engine_mask =
BIT(RCS0) | BIT(BCS0) | BIT(VECS0) | BIT(VCS0) | BIT(VCS2),
};
@@ -948,7 +949,7 @@ static const struct intel_device_info adl_s_info = {
#define XE_LPD_FEATURES \
.display.abox_mask = GENMASK(1, 0), \
.display.color = { \
- .degamma_lut_size = 128, .gamma_lut_size = 1024, \
+ .degamma_lut_size = 129, .gamma_lut_size = 1024, \
.degamma_lut_tests = DRM_COLOR_LUT_NON_DECREASING | \
DRM_COLOR_LUT_EQUAL_CHANNELS, \
}, \
@@ -994,7 +995,6 @@ static const struct intel_device_info adl_p_info = {
BIT(TRANSCODER_C) | BIT(TRANSCODER_D) |
BIT(TRANSCODER_DSI_0) | BIT(TRANSCODER_DSI_1),
.display.has_cdclk_crawl = 1,
- .display.has_modular_fia = 1,
.display.has_psr_hw_tracking = 0,
.__runtime.platform_engine_mask =
BIT(RCS0) | BIT(BCS0) | BIT(VECS0) | BIT(VCS0) | BIT(VCS2),
@@ -1017,12 +1017,16 @@ static const struct intel_device_info adl_p_info = {
.has_3d_pipeline = 1, \
.has_64bit_reloc = 1, \
.has_flat_ccs = 1, \
+ .has_4tile = 1, \
.has_global_mocs = 1, \
.has_gt_uc = 1, \
.has_llc = 1, \
.has_logical_ring_contexts = 1, \
.has_logical_ring_elsq = 1, \
.has_mslice_steering = 1, \
+ .has_oa_bpc_reporting = 1, \
+ .has_oa_slice_contrib_limits = 1, \
+ .has_oam = 1, \
.has_rc6 = 1, \
.has_reset_engine = 1, \
.has_rps = 1, \
@@ -1042,7 +1046,6 @@ static const struct intel_device_info xehpsdv_info = {
PLATFORM(INTEL_XEHPSDV),
NO_DISPLAY,
.has_64k_pages = 1,
- .needs_compact_pt = 1,
.has_media_ratio_mode = 1,
.__runtime.platform_engine_mask =
BIT(RCS0) | BIT(BCS0) |
@@ -1060,12 +1063,11 @@ static const struct intel_device_info xehpsdv_info = {
.__runtime.graphics.ip.rel = 55, \
.__runtime.media.ip.rel = 55, \
PLATFORM(INTEL_DG2), \
- .has_4tile = 1, \
.has_64k_pages = 1, \
.has_guc_deprivilege = 1, \
.has_heci_pxp = 1, \
- .needs_compact_pt = 1, \
.has_media_ratio_mode = 1, \
+ .display.has_cdclk_squash = 1, \
.__runtime.platform_engine_mask = \
BIT(RCS0) | BIT(BCS0) | \
BIT(VECS0) | BIT(VECS1) | \
@@ -1077,7 +1079,6 @@ static const struct intel_device_info dg2_info = {
XE_LPD_FEATURES,
.__runtime.cpu_transcoder_mask = BIT(TRANSCODER_A) | BIT(TRANSCODER_B) |
BIT(TRANSCODER_C) | BIT(TRANSCODER_D),
- .require_force_probe = 1,
};
static const struct intel_device_info ats_m_info = {
@@ -1117,6 +1118,7 @@ static const struct intel_device_info pvc_info = {
XE_LPD_FEATURES, \
.__runtime.display.ip.ver = 14, \
.display.has_cdclk_crawl = 1, \
+ .display.has_cdclk_squash = 1, \
.__runtime.fbc_mask = BIT(INTEL_FBC_A) | BIT(INTEL_FBC_B)
static const struct intel_gt_definition xelpmp_extra_gt[] = {
@@ -1124,15 +1126,16 @@ static const struct intel_gt_definition xelpmp_extra_gt[] = {
.type = GT_MEDIA,
.name = "Standalone Media GT",
.gsi_offset = MTL_MEDIA_GSI_BASE,
- .engine_mask = BIT(VECS0) | BIT(VCS0) | BIT(VCS2),
+ .engine_mask = BIT(VECS0) | BIT(VCS0) | BIT(VCS2) | BIT(GSC0),
},
{}
};
-__maybe_unused
static const struct intel_device_info mtl_info = {
XE_HP_FEATURES,
XE_LPDP_FEATURES,
+ .__runtime.cpu_transcoder_mask = BIT(TRANSCODER_A) | BIT(TRANSCODER_B) |
+ BIT(TRANSCODER_C) | BIT(TRANSCODER_D),
/*
* Real graphics IP version will be obtained from hardware GMD_ID
* register. Value provided here is just for sanity checking.
@@ -1141,9 +1144,11 @@ static const struct intel_device_info mtl_info = {
.__runtime.graphics.ip.rel = 70,
.__runtime.media.ip.ver = 13,
PLATFORM(INTEL_METEORLAKE),
- .display.has_modular_fia = 1,
.extra_gt_list = xelpmp_extra_gt,
.has_flat_ccs = 0,
+ .has_gmd_id = 1,
+ .has_guc_deprivilege = 1,
+ .has_mslice_steering = 0,
.has_snoop = 1,
.__runtime.memory_regions = REGION_SMEM | REGION_STOLEN_LMEM,
.__runtime.platform_engine_mask = BIT(RCS0) | BIT(BCS0) | BIT(CCS0),
@@ -1250,7 +1255,7 @@ static void i915_pci_remove(struct pci_dev *pdev)
}
/* is device_id present in comma separated list of ids */
-static bool force_probe(u16 device_id, const char *devices)
+static bool device_id_in_list(u16 device_id, const char *devices, bool negative)
{
char *s, *p, *tok;
bool ret;
@@ -1259,7 +1264,9 @@ static bool force_probe(u16 device_id, const char *devices)
return false;
/* match everything */
- if (strcmp(devices, "*") == 0)
+ if (negative && strcmp(devices, "!*") == 0)
+ return true;
+ if (!negative && strcmp(devices, "*") == 0)
return true;
s = kstrdup(devices, GFP_KERNEL);
@@ -1269,6 +1276,12 @@ static bool force_probe(u16 device_id, const char *devices)
for (p = s, ret = false; (tok = strsep(&p, ",")) != NULL; ) {
u16 val;
+ if (negative && tok[0] == '!')
+ tok++;
+ else if ((negative && tok[0] != '!') ||
+ (!negative && tok[0] == '!'))
+ continue;
+
if (kstrtou16(tok, 16, &val) == 0 && val == device_id) {
ret = true;
break;
@@ -1280,6 +1293,16 @@ static bool force_probe(u16 device_id, const char *devices)
return ret;
}
+static bool id_forced(u16 device_id)
+{
+ return device_id_in_list(device_id, i915_modparams.force_probe, false);
+}
+
+static bool id_blocked(u16 device_id)
+{
+ return device_id_in_list(device_id, i915_modparams.force_probe, true);
+}
+
bool i915_pci_resource_valid(struct pci_dev *pdev, int bar)
{
if (!pci_resource_flags(pdev, bar))
@@ -1296,9 +1319,7 @@ bool i915_pci_resource_valid(struct pci_dev *pdev, int bar)
static bool intel_mmio_bar_valid(struct pci_dev *pdev, struct intel_device_info *intel_info)
{
- int gttmmaddr_bar = intel_info->__runtime.graphics.ip.ver == 2 ? GEN2_GTTMMADR_BAR : GTTMMADR_BAR;
-
- return i915_pci_resource_valid(pdev, gttmmaddr_bar);
+ return i915_pci_resource_valid(pdev, intel_mmio_bar(intel_info->__runtime.graphics.ip.ver));
}
static int i915_pci_probe(struct pci_dev *pdev, const struct pci_device_id *ent)
@@ -1307,10 +1328,9 @@ static int i915_pci_probe(struct pci_dev *pdev, const struct pci_device_id *ent)
(struct intel_device_info *) ent->driver_data;
int err;
- if (intel_info->require_force_probe &&
- !force_probe(pdev->device, i915_modparams.force_probe)) {
+ if (intel_info->require_force_probe && !id_forced(pdev->device)) {
dev_info(&pdev->dev,
- "Your graphics device %04x is not properly supported by the driver in this\n"
+ "Your graphics device %04x is not properly supported by i915 in this\n"
"kernel version. To force driver probe anyway, use i915.force_probe=%04x\n"
"module parameter or CONFIG_DRM_I915_FORCE_PROBE=%04x configuration option,\n"
"or (recommended) check for kernel updates.\n",
@@ -1318,6 +1338,18 @@ static int i915_pci_probe(struct pci_dev *pdev, const struct pci_device_id *ent)
return -ENODEV;
}
+ if (id_blocked(pdev->device)) {
+ dev_info(&pdev->dev, "I915 probe blocked for Device ID %04x.\n",
+ pdev->device);
+ return -ENODEV;
+ }
+
+ if (intel_info->require_force_probe) {
+ dev_info(&pdev->dev, "Force probing unsupported Device ID %04x, tainting kernel\n",
+ pdev->device);
+ add_taint(TAINT_USER, LOCKDEP_STILL_OK);
+ }
+
/* Only bind to function 0 of the device. Early generations
* used function 1 as a placeholder for multi-head. This causes
* us confusion instead, especially on the systems where both
diff --git a/drivers/gpu/drm/i915/i915_perf.c b/drivers/gpu/drm/i915/i915_perf.c
index 0defbb43ceea..050b8ae7b8e7 100644
--- a/drivers/gpu/drm/i915/i915_perf.c
+++ b/drivers/gpu/drm/i915/i915_perf.c
@@ -192,6 +192,7 @@
*/
#include <linux/anon_inodes.h>
+#include <linux/nospec.h>
#include <linux/sizes.h>
#include <linux/uuid.h>
@@ -204,15 +205,19 @@
#include "gt/intel_gpu_commands.h"
#include "gt/intel_gt.h"
#include "gt/intel_gt_clock_utils.h"
+#include "gt/intel_gt_mcr.h"
#include "gt/intel_gt_regs.h"
#include "gt/intel_lrc.h"
#include "gt/intel_lrc_reg.h"
+#include "gt/intel_rc6.h"
#include "gt/intel_ring.h"
+#include "gt/uc/intel_guc_slpc.h"
#include "i915_drv.h"
#include "i915_file_private.h"
#include "i915_perf.h"
#include "i915_perf_oa_regs.h"
+#include "i915_reg.h"
/* HW requires this to be a power of two, between 128k and 16M, though driver
* is currently generally designed assuming the largest 16M size is used such
@@ -286,6 +291,7 @@ static u32 i915_perf_stream_paranoid = true;
#define OAREPORT_REASON_CTX_SWITCH (1<<3)
#define OAREPORT_REASON_CLK_RATIO (1<<5)
+#define HAS_MI_SET_PREDICATE(i915) (GRAPHICS_VER_FULL(i915) >= IP_VER(12, 50))
/* For sysctl proc_dointvec_minmax of i915_oa_max_sample_rate
*
@@ -320,6 +326,14 @@ static const struct i915_oa_format oa_formats[I915_OA_FORMAT_MAX] = {
[I915_OA_FORMAT_A12] = { 0, 64 },
[I915_OA_FORMAT_A12_B8_C8] = { 2, 128 },
[I915_OA_FORMAT_A32u40_A4u32_B8_C8] = { 5, 256 },
+ [I915_OAR_FORMAT_A32u40_A4u32_B8_C8] = { 5, 256 },
+ [I915_OA_FORMAT_A24u40_A14u32_B8_C8] = { 5, 256 },
+ [I915_OAM_FORMAT_MPEC8u64_B8_C8] = { 1, 192, TYPE_OAM, HDR_64_BIT },
+ [I915_OAM_FORMAT_MPEC8u32_B8_C8] = { 2, 128, TYPE_OAM, HDR_64_BIT },
+};
+
+static const u32 mtl_oa_base[] = {
+ [PERF_GROUP_OAM_SAMEDIA_0] = 0x393000,
};
#define SAMPLE_OA_REPORT (1<<0)
@@ -412,11 +426,17 @@ static void free_oa_config_bo(struct i915_oa_config_bo *oa_bo)
kfree(oa_bo);
}
+static inline const
+struct i915_perf_regs *__oa_regs(struct i915_perf_stream *stream)
+{
+ return &stream->engine->oa_group->regs;
+}
+
static u32 gen12_oa_hw_tail_read(struct i915_perf_stream *stream)
{
struct intel_uncore *uncore = stream->uncore;
- return intel_uncore_read(uncore, GEN12_OAG_OATAILPTR) &
+ return intel_uncore_read(uncore, __oa_regs(stream)->oa_tail_ptr) &
GEN12_OAG_OATAILPTR_MASK;
}
@@ -435,6 +455,67 @@ static u32 gen7_oa_hw_tail_read(struct i915_perf_stream *stream)
return oastatus1 & GEN7_OASTATUS1_TAIL_MASK;
}
+#define oa_report_header_64bit(__s) \
+ ((__s)->oa_buffer.format->header == HDR_64_BIT)
+
+static u64 oa_report_id(struct i915_perf_stream *stream, void *report)
+{
+ return oa_report_header_64bit(stream) ? *(u64 *)report : *(u32 *)report;
+}
+
+static u64 oa_report_reason(struct i915_perf_stream *stream, void *report)
+{
+ return (oa_report_id(stream, report) >> OAREPORT_REASON_SHIFT) &
+ (GRAPHICS_VER(stream->perf->i915) == 12 ?
+ OAREPORT_REASON_MASK_EXTENDED :
+ OAREPORT_REASON_MASK);
+}
+
+static void oa_report_id_clear(struct i915_perf_stream *stream, u32 *report)
+{
+ if (oa_report_header_64bit(stream))
+ *(u64 *)report = 0;
+ else
+ *report = 0;
+}
+
+static bool oa_report_ctx_invalid(struct i915_perf_stream *stream, void *report)
+{
+ return !(oa_report_id(stream, report) &
+ stream->perf->gen8_valid_ctx_bit) &&
+ GRAPHICS_VER(stream->perf->i915) <= 11;
+}
+
+static u64 oa_timestamp(struct i915_perf_stream *stream, void *report)
+{
+ return oa_report_header_64bit(stream) ?
+ *((u64 *)report + 1) :
+ *((u32 *)report + 1);
+}
+
+static void oa_timestamp_clear(struct i915_perf_stream *stream, u32 *report)
+{
+ if (oa_report_header_64bit(stream))
+ *(u64 *)&report[2] = 0;
+ else
+ report[1] = 0;
+}
+
+static u32 oa_context_id(struct i915_perf_stream *stream, u32 *report)
+{
+ u32 ctx_id = oa_report_header_64bit(stream) ? report[4] : report[2];
+
+ return ctx_id & stream->specific_ctx_id_mask;
+}
+
+static void oa_context_id_squash(struct i915_perf_stream *stream, u32 *report)
+{
+ if (oa_report_header_64bit(stream))
+ report[4] = INVALID_CTX_ID;
+ else
+ report[2] = INVALID_CTX_ID;
+}
+
/**
* oa_buffer_check_unlocked - check for data and update tail ptr state
* @stream: i915 stream instance
@@ -462,11 +543,12 @@ static u32 gen7_oa_hw_tail_read(struct i915_perf_stream *stream)
static bool oa_buffer_check_unlocked(struct i915_perf_stream *stream)
{
u32 gtt_offset = i915_ggtt_offset(stream->oa_buffer.vma);
- int report_size = stream->oa_buffer.format_size;
+ int report_size = stream->oa_buffer.format->size;
unsigned long flags;
bool pollin;
u32 hw_tail;
u64 now;
+ u32 partial_report_size;
/* We have to consider the (unlikely) possibility that read() errors
* could result in an OA buffer reset which might reset the head and
@@ -476,10 +558,15 @@ static bool oa_buffer_check_unlocked(struct i915_perf_stream *stream)
hw_tail = stream->perf->ops.oa_hw_tail_read(stream);
- /* The tail pointer increases in 64 byte increments,
- * not in report_size steps...
+ /* The tail pointer increases in 64 byte increments, not in report_size
+ * steps. Also the report size may not be a power of 2. Compute
+ * potentially partially landed report in the OA buffer
*/
- hw_tail &= ~(report_size - 1);
+ partial_report_size = OA_TAKEN(hw_tail, stream->oa_buffer.tail);
+ partial_report_size %= report_size;
+
+ /* Subtract partial amount off the tail */
+ hw_tail = gtt_offset + OA_TAKEN(hw_tail, partial_report_size);
now = ktime_get_mono_fast_ns();
@@ -503,21 +590,22 @@ static bool oa_buffer_check_unlocked(struct i915_perf_stream *stream)
hw_tail -= gtt_offset;
tail = hw_tail;
- /* Walk the stream backward until we find a report with dword 0
- * & 1 not at 0. Since the circular buffer pointers progress by
- * increments of 64 bytes and that reports can be up to 256
- * bytes long, we can't tell whether a report has fully landed
- * in memory before the first 2 dwords of the following report
- * have effectively landed.
+ /* Walk the stream backward until we find a report with report
+ * id and timestmap not at 0. Since the circular buffer pointers
+ * progress by increments of 64 bytes and that reports can be up
+ * to 256 bytes long, we can't tell whether a report has fully
+ * landed in memory before the report id and timestamp of the
+ * following report have effectively landed.
*
* This is assuming that the writes of the OA unit land in
* memory in the order they were written to.
* If not : (╯°□°)╯︵ ┻━┻
*/
while (OA_TAKEN(tail, aged_tail) >= report_size) {
- u32 *report32 = (void *)(stream->oa_buffer.vaddr + tail);
+ void *report = stream->oa_buffer.vaddr + tail;
- if (report32[0] != 0 || report32[1] != 0)
+ if (oa_report_id(stream, report) ||
+ oa_timestamp(stream, report))
break;
tail = (tail - report_size) & (OA_BUFFER_SIZE - 1);
@@ -525,9 +613,9 @@ static bool oa_buffer_check_unlocked(struct i915_perf_stream *stream)
if (OA_TAKEN(hw_tail, tail) > report_size &&
__ratelimit(&stream->perf->tail_pointer_race))
- DRM_NOTE("unlanded report(s) head=0x%x "
- "tail=0x%x hw_tail=0x%x\n",
- head, tail, hw_tail);
+ drm_notice(&stream->uncore->i915->drm,
+ "unlanded report(s) head=0x%x tail=0x%x hw_tail=0x%x\n",
+ head, tail, hw_tail);
stream->oa_buffer.tail = gtt_offset + tail;
stream->oa_buffer.aging_tail = gtt_offset + hw_tail;
@@ -599,8 +687,10 @@ static int append_oa_sample(struct i915_perf_stream *stream,
size_t *offset,
const u8 *report)
{
- int report_size = stream->oa_buffer.format_size;
+ int report_size = stream->oa_buffer.format->size;
struct drm_i915_perf_record_header header;
+ int report_size_partial;
+ u8 *oa_buf_end;
header.type = DRM_I915_PERF_RECORD_SAMPLE;
header.pad = 0;
@@ -614,8 +704,20 @@ static int append_oa_sample(struct i915_perf_stream *stream,
return -EFAULT;
buf += sizeof(header);
- if (copy_to_user(buf, report, report_size))
+ oa_buf_end = stream->oa_buffer.vaddr + OA_BUFFER_SIZE;
+ report_size_partial = oa_buf_end - report;
+
+ if (report_size_partial < report_size) {
+ if (copy_to_user(buf, report, report_size_partial))
+ return -EFAULT;
+ buf += report_size_partial;
+
+ if (copy_to_user(buf, stream->oa_buffer.vaddr,
+ report_size - report_size_partial))
+ return -EFAULT;
+ } else if (copy_to_user(buf, report, report_size)) {
return -EFAULT;
+ }
(*offset) += header.size;
@@ -649,14 +751,13 @@ static int gen8_append_oa_reports(struct i915_perf_stream *stream,
size_t *offset)
{
struct intel_uncore *uncore = stream->uncore;
- int report_size = stream->oa_buffer.format_size;
+ int report_size = stream->oa_buffer.format->size;
u8 *oa_buf_base = stream->oa_buffer.vaddr;
u32 gtt_offset = i915_ggtt_offset(stream->oa_buffer.vma);
u32 mask = (OA_BUFFER_SIZE - 1);
size_t start_offset = *offset;
unsigned long flags;
u32 head, tail;
- u32 taken;
int ret = 0;
if (drm_WARN_ON(&uncore->i915->drm, !stream->enabled))
@@ -680,56 +781,35 @@ static int gen8_append_oa_reports(struct i915_perf_stream *stream,
* An out of bounds or misaligned head or tail pointer implies a driver
* bug since we validate + align the tail pointers we read from the
* hardware and we are in full control of the head pointer which should
- * only be incremented by multiples of the report size (notably also
- * all a power of two).
+ * only be incremented by multiples of the report size.
*/
if (drm_WARN_ONCE(&uncore->i915->drm,
- head > OA_BUFFER_SIZE || head % report_size ||
- tail > OA_BUFFER_SIZE || tail % report_size,
+ head > OA_BUFFER_SIZE ||
+ tail > OA_BUFFER_SIZE,
"Inconsistent OA buffer pointers: head = %u, tail = %u\n",
head, tail))
return -EIO;
for (/* none */;
- (taken = OA_TAKEN(tail, head));
+ OA_TAKEN(tail, head);
head = (head + report_size) & mask) {
u8 *report = oa_buf_base + head;
u32 *report32 = (void *)report;
u32 ctx_id;
- u32 reason;
-
- /*
- * All the report sizes factor neatly into the buffer
- * size so we never expect to see a report split
- * between the beginning and end of the buffer.
- *
- * Given the initial alignment check a misalignment
- * here would imply a driver bug that would result
- * in an overrun.
- */
- if (drm_WARN_ON(&uncore->i915->drm,
- (OA_BUFFER_SIZE - head) < report_size)) {
- drm_err(&uncore->i915->drm,
- "Spurious OA head ptr: non-integral report offset\n");
- break;
- }
+ u64 reason;
/*
* The reason field includes flags identifying what
* triggered this specific report (mostly timer
* triggered or e.g. due to a context switch).
*
- * This field is never expected to be zero so we can
- * check that the report isn't invalid before copying
- * it to userspace...
+ * In MMIO triggered reports, some platforms do not set the
+ * reason bit in this field and it is valid to have a reason
+ * field of zero.
*/
- reason = ((report32[0] >> OAREPORT_REASON_SHIFT) &
- (GRAPHICS_VER(stream->perf->i915) == 12 ?
- OAREPORT_REASON_MASK_EXTENDED :
- OAREPORT_REASON_MASK));
-
- ctx_id = report32[2] & stream->specific_ctx_id_mask;
+ reason = oa_report_reason(stream, report);
+ ctx_id = oa_context_id(stream, report32);
/*
* Squash whatever is in the CTX_ID field if it's marked as
@@ -739,9 +819,10 @@ static int gen8_append_oa_reports(struct i915_perf_stream *stream,
* Note: that we don't clear the valid_ctx_bit so userspace can
* understand that the ID has been squashed by the kernel.
*/
- if (!(report32[0] & stream->perf->gen8_valid_ctx_bit) &&
- GRAPHICS_VER(stream->perf->i915) <= 11)
- ctx_id = report32[2] = INVALID_CTX_ID;
+ if (oa_report_ctx_invalid(stream, report)) {
+ ctx_id = INVALID_CTX_ID;
+ oa_context_id_squash(stream, report32);
+ }
/*
* NB: For Gen 8 the OA unit no longer supports clock gating
@@ -774,7 +855,7 @@ static int gen8_append_oa_reports(struct i915_perf_stream *stream,
* switches since it's not-uncommon for periodic samples to
* identify a switch before any 'context switch' report.
*/
- if (!stream->perf->exclusive_stream->ctx ||
+ if (!stream->ctx ||
stream->specific_ctx_id == ctx_id ||
stream->oa_buffer.last_ctx_id == stream->specific_ctx_id ||
reason & OAREPORT_REASON_CTX_SWITCH) {
@@ -783,9 +864,9 @@ static int gen8_append_oa_reports(struct i915_perf_stream *stream,
* While filtering for a single context we avoid
* leaking the IDs of other contexts.
*/
- if (stream->perf->exclusive_stream->ctx &&
+ if (stream->ctx &&
stream->specific_ctx_id != ctx_id) {
- report32[2] = INVALID_CTX_ID;
+ oa_context_id_squash(stream, report32);
}
ret = append_oa_sample(stream, buf, count, offset,
@@ -797,18 +878,19 @@ static int gen8_append_oa_reports(struct i915_perf_stream *stream,
}
/*
- * Clear out the first 2 dword as a mean to detect unlanded
+ * Clear out the report id and timestamp as a means to detect unlanded
* reports.
*/
- report32[0] = 0;
- report32[1] = 0;
+ oa_report_id_clear(stream, report32);
+ oa_timestamp_clear(stream, report32);
}
if (start_offset != *offset) {
i915_reg_t oaheadptr;
oaheadptr = GRAPHICS_VER(stream->perf->i915) == 12 ?
- GEN12_OAG_OAHEADPTR : GEN8_OAHEADPTR;
+ __oa_regs(stream)->oa_head_ptr :
+ GEN8_OAHEADPTR;
spin_lock_irqsave(&stream->oa_buffer.ptr_lock, flags);
@@ -861,7 +943,8 @@ static int gen8_oa_read(struct i915_perf_stream *stream,
return -EIO;
oastatus_reg = GRAPHICS_VER(stream->perf->i915) == 12 ?
- GEN12_OAG_OASTATUS : GEN8_OASTATUS;
+ __oa_regs(stream)->oa_status :
+ GEN8_OASTATUS;
oastatus = intel_uncore_read(uncore, oastatus_reg);
@@ -943,14 +1026,13 @@ static int gen7_append_oa_reports(struct i915_perf_stream *stream,
size_t *offset)
{
struct intel_uncore *uncore = stream->uncore;
- int report_size = stream->oa_buffer.format_size;
+ int report_size = stream->oa_buffer.format->size;
u8 *oa_buf_base = stream->oa_buffer.vaddr;
u32 gtt_offset = i915_ggtt_offset(stream->oa_buffer.vma);
u32 mask = (OA_BUFFER_SIZE - 1);
size_t start_offset = *offset;
unsigned long flags;
u32 head, tail;
- u32 taken;
int ret = 0;
if (drm_WARN_ON(&uncore->i915->drm, !stream->enabled))
@@ -984,7 +1066,7 @@ static int gen7_append_oa_reports(struct i915_perf_stream *stream,
for (/* none */;
- (taken = OA_TAKEN(tail, head));
+ OA_TAKEN(tail, head);
head = (head + report_size) & mask) {
u8 *report = oa_buf_base + head;
u32 *report32 = (void *)report;
@@ -1012,7 +1094,8 @@ static int gen7_append_oa_reports(struct i915_perf_stream *stream,
*/
if (report32[0] == 0) {
if (__ratelimit(&stream->perf->spurious_report_rs))
- DRM_NOTE("Skipping spurious, invalid OA report\n");
+ drm_notice(&uncore->i915->drm,
+ "Skipping spurious, invalid OA report\n");
continue;
}
@@ -1233,6 +1316,199 @@ retry:
return stream->pinned_ctx;
}
+static int
+__store_reg_to_mem(struct i915_request *rq, i915_reg_t reg, u32 ggtt_offset)
+{
+ u32 *cs, cmd;
+
+ cmd = MI_STORE_REGISTER_MEM | MI_SRM_LRM_GLOBAL_GTT;
+ if (GRAPHICS_VER(rq->engine->i915) >= 8)
+ cmd++;
+
+ cs = intel_ring_begin(rq, 4);
+ if (IS_ERR(cs))
+ return PTR_ERR(cs);
+
+ *cs++ = cmd;
+ *cs++ = i915_mmio_reg_offset(reg);
+ *cs++ = ggtt_offset;
+ *cs++ = 0;
+
+ intel_ring_advance(rq, cs);
+
+ return 0;
+}
+
+static int
+__read_reg(struct intel_context *ce, i915_reg_t reg, u32 ggtt_offset)
+{
+ struct i915_request *rq;
+ int err;
+
+ rq = i915_request_create(ce);
+ if (IS_ERR(rq))
+ return PTR_ERR(rq);
+
+ i915_request_get(rq);
+
+ err = __store_reg_to_mem(rq, reg, ggtt_offset);
+
+ i915_request_add(rq);
+ if (!err && i915_request_wait(rq, 0, HZ / 2) < 0)
+ err = -ETIME;
+
+ i915_request_put(rq);
+
+ return err;
+}
+
+static int
+gen12_guc_sw_ctx_id(struct intel_context *ce, u32 *ctx_id)
+{
+ struct i915_vma *scratch;
+ u32 *val;
+ int err;
+
+ scratch = __vm_create_scratch_for_read_pinned(&ce->engine->gt->ggtt->vm, 4);
+ if (IS_ERR(scratch))
+ return PTR_ERR(scratch);
+
+ err = i915_vma_sync(scratch);
+ if (err)
+ goto err_scratch;
+
+ err = __read_reg(ce, RING_EXECLIST_STATUS_HI(ce->engine->mmio_base),
+ i915_ggtt_offset(scratch));
+ if (err)
+ goto err_scratch;
+
+ val = i915_gem_object_pin_map_unlocked(scratch->obj, I915_MAP_WB);
+ if (IS_ERR(val)) {
+ err = PTR_ERR(val);
+ goto err_scratch;
+ }
+
+ *ctx_id = *val;
+ i915_gem_object_unpin_map(scratch->obj);
+
+err_scratch:
+ i915_vma_unpin_and_release(&scratch, 0);
+ return err;
+}
+
+/*
+ * For execlist mode of submission, pick an unused context id
+ * 0 - (NUM_CONTEXT_TAG -1) are used by other contexts
+ * XXX_MAX_CONTEXT_HW_ID is used by idle context
+ *
+ * For GuC mode of submission read context id from the upper dword of the
+ * EXECLIST_STATUS register. Note that we read this value only once and expect
+ * that the value stays fixed for the entire OA use case. There are cases where
+ * GuC KMD implementation may deregister a context to reuse it's context id, but
+ * we prevent that from happening to the OA context by pinning it.
+ */
+static int gen12_get_render_context_id(struct i915_perf_stream *stream)
+{
+ u32 ctx_id, mask;
+ int ret;
+
+ if (intel_engine_uses_guc(stream->engine)) {
+ ret = gen12_guc_sw_ctx_id(stream->pinned_ctx, &ctx_id);
+ if (ret)
+ return ret;
+
+ mask = ((1U << GEN12_GUC_SW_CTX_ID_WIDTH) - 1) <<
+ (GEN12_GUC_SW_CTX_ID_SHIFT - 32);
+ } else if (GRAPHICS_VER_FULL(stream->engine->i915) >= IP_VER(12, 50)) {
+ ctx_id = (XEHP_MAX_CONTEXT_HW_ID - 1) <<
+ (XEHP_SW_CTX_ID_SHIFT - 32);
+
+ mask = ((1U << XEHP_SW_CTX_ID_WIDTH) - 1) <<
+ (XEHP_SW_CTX_ID_SHIFT - 32);
+ } else {
+ ctx_id = (GEN12_MAX_CONTEXT_HW_ID - 1) <<
+ (GEN11_SW_CTX_ID_SHIFT - 32);
+
+ mask = ((1U << GEN11_SW_CTX_ID_WIDTH) - 1) <<
+ (GEN11_SW_CTX_ID_SHIFT - 32);
+ }
+ stream->specific_ctx_id = ctx_id & mask;
+ stream->specific_ctx_id_mask = mask;
+
+ return 0;
+}
+
+static bool oa_find_reg_in_lri(u32 *state, u32 reg, u32 *offset, u32 end)
+{
+ u32 idx = *offset;
+ u32 len = min(MI_LRI_LEN(state[idx]) + idx, end);
+ bool found = false;
+
+ idx++;
+ for (; idx < len; idx += 2) {
+ if (state[idx] == reg) {
+ found = true;
+ break;
+ }
+ }
+
+ *offset = idx;
+ return found;
+}
+
+static u32 oa_context_image_offset(struct intel_context *ce, u32 reg)
+{
+ u32 offset, len = (ce->engine->context_size - PAGE_SIZE) / 4;
+ u32 *state = ce->lrc_reg_state;
+
+ if (drm_WARN_ON(&ce->engine->i915->drm, !state))
+ return U32_MAX;
+
+ for (offset = 0; offset < len; ) {
+ if (IS_MI_LRI_CMD(state[offset])) {
+ /*
+ * We expect reg-value pairs in MI_LRI command, so
+ * MI_LRI_LEN() should be even, if not, issue a warning.
+ */
+ drm_WARN_ON(&ce->engine->i915->drm,
+ MI_LRI_LEN(state[offset]) & 0x1);
+
+ if (oa_find_reg_in_lri(state, reg, &offset, len))
+ break;
+ } else {
+ offset++;
+ }
+ }
+
+ return offset < len ? offset : U32_MAX;
+}
+
+static int set_oa_ctx_ctrl_offset(struct intel_context *ce)
+{
+ i915_reg_t reg = GEN12_OACTXCONTROL(ce->engine->mmio_base);
+ struct i915_perf *perf = &ce->engine->i915->perf;
+ u32 offset = perf->ctx_oactxctrl_offset;
+
+ /* Do this only once. Failure is stored as offset of U32_MAX */
+ if (offset)
+ goto exit;
+
+ offset = oa_context_image_offset(ce, i915_mmio_reg_offset(reg));
+ perf->ctx_oactxctrl_offset = offset;
+
+ drm_dbg(&ce->engine->i915->drm,
+ "%s oa ctx control at 0x%08x dword offset\n",
+ ce->engine->name, offset);
+
+exit:
+ return offset && offset != U32_MAX ? 0 : -ENODEV;
+}
+
+static bool engine_supports_mi_query(struct intel_engine_cs *engine)
+{
+ return engine->class == RENDER_CLASS;
+}
+
/**
* oa_get_render_ctx_id - determine and hold ctx hw id
* @stream: An i915-perf stream opened for OA metrics
@@ -1246,11 +1522,28 @@ retry:
static int oa_get_render_ctx_id(struct i915_perf_stream *stream)
{
struct intel_context *ce;
+ int ret = 0;
ce = oa_pin_context(stream);
if (IS_ERR(ce))
return PTR_ERR(ce);
+ if (engine_supports_mi_query(stream->engine) &&
+ HAS_LOGICAL_RING_CONTEXTS(stream->perf->i915)) {
+ /*
+ * We are enabling perf query here. If we don't find the context
+ * offset here, just return an error.
+ */
+ ret = set_oa_ctx_ctrl_offset(ce);
+ if (ret) {
+ intel_context_unpin(ce);
+ drm_err(&stream->perf->i915->drm,
+ "Enabling perf query failed for %s\n",
+ stream->engine->name);
+ return ret;
+ }
+ }
+
switch (GRAPHICS_VER(ce->engine->i915)) {
case 7: {
/*
@@ -1292,24 +1585,7 @@ static int oa_get_render_ctx_id(struct i915_perf_stream *stream)
case 11:
case 12:
- if (GRAPHICS_VER_FULL(ce->engine->i915) >= IP_VER(12, 50)) {
- stream->specific_ctx_id_mask =
- ((1U << XEHP_SW_CTX_ID_WIDTH) - 1) <<
- (XEHP_SW_CTX_ID_SHIFT - 32);
- stream->specific_ctx_id =
- (XEHP_MAX_CONTEXT_HW_ID - 1) <<
- (XEHP_SW_CTX_ID_SHIFT - 32);
- } else {
- stream->specific_ctx_id_mask =
- ((1U << GEN11_SW_CTX_ID_WIDTH) - 1) << (GEN11_SW_CTX_ID_SHIFT - 32);
- /*
- * Pick an unused context id
- * 0 - BITS_PER_LONG are used by other contexts
- * GEN12_MAX_CONTEXT_HW_ID (0x7ff) is used by idle context
- */
- stream->specific_ctx_id =
- (GEN12_MAX_CONTEXT_HW_ID - 1) << (GEN11_SW_CTX_ID_SHIFT - 32);
- }
+ ret = gen12_get_render_context_id(stream);
break;
default:
@@ -1323,7 +1599,7 @@ static int oa_get_render_ctx_id(struct i915_perf_stream *stream)
stream->specific_ctx_id,
stream->specific_ctx_id_mask);
- return 0;
+ return ret;
}
/**
@@ -1372,11 +1648,23 @@ free_noa_wait(struct i915_perf_stream *stream)
i915_vma_unpin_and_release(&stream->noa_wait, 0);
}
+static bool engine_supports_oa(const struct intel_engine_cs *engine)
+{
+ return engine->oa_group;
+}
+
+static bool engine_supports_oa_format(struct intel_engine_cs *engine, int type)
+{
+ return engine->oa_group && engine->oa_group->type == type;
+}
+
static void i915_oa_stream_destroy(struct i915_perf_stream *stream)
{
struct i915_perf *perf = stream->perf;
+ struct intel_gt *gt = stream->engine->gt;
+ struct i915_perf_group *g = stream->engine->oa_group;
- if (WARN_ON(stream != perf->exclusive_stream))
+ if (WARN_ON(stream != g->exclusive_stream))
return;
/*
@@ -1385,11 +1673,18 @@ static void i915_oa_stream_destroy(struct i915_perf_stream *stream)
*
* See i915_oa_init_reg_state() and lrc_configure_all_contexts()
*/
- WRITE_ONCE(perf->exclusive_stream, NULL);
+ WRITE_ONCE(g->exclusive_stream, NULL);
perf->ops.disable_metric_set(stream);
free_oa_buffer(stream);
+ /*
+ * Wa_16011777198:dg2: Unset the override of GUCRC mode to enable rc6.
+ */
+ if (stream->override_gucrc)
+ drm_WARN_ON(&gt->i915->drm,
+ intel_guc_slpc_unset_gucrc_mode(&gt->uc.guc.slpc));
+
intel_uncore_forcewake_put(stream->uncore, FORCEWAKE_ALL);
intel_engine_pm_put(stream->engine);
@@ -1400,8 +1695,9 @@ static void i915_oa_stream_destroy(struct i915_perf_stream *stream)
free_noa_wait(stream);
if (perf->spurious_report_rs.missed) {
- DRM_NOTE("%d spurious OA report notices suppressed due to ratelimiting\n",
- perf->spurious_report_rs.missed);
+ drm_notice(&gt->i915->drm,
+ "%d spurious OA report notices suppressed due to ratelimiting\n",
+ perf->spurious_report_rs.missed);
}
}
@@ -1513,8 +1809,8 @@ static void gen12_init_oa_buffer(struct i915_perf_stream *stream)
spin_lock_irqsave(&stream->oa_buffer.ptr_lock, flags);
- intel_uncore_write(uncore, GEN12_OAG_OASTATUS, 0);
- intel_uncore_write(uncore, GEN12_OAG_OAHEADPTR,
+ intel_uncore_write(uncore, __oa_regs(stream)->oa_status, 0);
+ intel_uncore_write(uncore, __oa_regs(stream)->oa_head_ptr,
gtt_offset & GEN12_OAG_OAHEADPTR_MASK);
stream->oa_buffer.head = gtt_offset;
@@ -1526,9 +1822,9 @@ static void gen12_init_oa_buffer(struct i915_perf_stream *stream)
* to enable proper functionality of the overflow
* bit."
*/
- intel_uncore_write(uncore, GEN12_OAG_OABUFFER, gtt_offset |
+ intel_uncore_write(uncore, __oa_regs(stream)->oa_buffer, gtt_offset |
OABUFFER_SIZE_16M | GEN8_OABUFFER_MEM_SELECT_GGTT);
- intel_uncore_write(uncore, GEN12_OAG_OATAILPTR,
+ intel_uncore_write(uncore, __oa_regs(stream)->oa_tail_ptr,
gtt_offset & GEN12_OAG_OATAILPTR_MASK);
/* Mark that we need updated tail pointers to read from... */
@@ -1563,6 +1859,7 @@ static void gen12_init_oa_buffer(struct i915_perf_stream *stream)
static int alloc_oa_buffer(struct i915_perf_stream *stream)
{
struct drm_i915_private *i915 = stream->perf->i915;
+ struct intel_gt *gt = stream->engine->gt;
struct drm_i915_gem_object *bo;
struct i915_vma *vma;
int ret;
@@ -1582,11 +1879,22 @@ static int alloc_oa_buffer(struct i915_perf_stream *stream)
i915_gem_object_set_cache_coherency(bo, I915_CACHE_LLC);
/* PreHSW required 512K alignment, HSW requires 16M */
- vma = i915_gem_object_ggtt_pin(bo, NULL, 0, SZ_16M, 0);
+ vma = i915_vma_instance(bo, &gt->ggtt->vm, NULL);
if (IS_ERR(vma)) {
ret = PTR_ERR(vma);
goto err_unref;
}
+
+ /*
+ * PreHSW required 512K alignment.
+ * HSW and onwards, align to requested size of OA buffer.
+ */
+ ret = i915_vma_pin(vma, 0, SZ_16M, PIN_GLOBAL | PIN_HIGH);
+ if (ret) {
+ drm_err(&gt->i915->drm, "Failed to pin OA buffer %d\n", ret);
+ goto err_unref;
+ }
+
stream->oa_buffer.vma = vma;
stream->oa_buffer.vaddr =
@@ -1625,8 +1933,7 @@ static u32 *save_restore_register(struct i915_perf_stream *stream, u32 *cs,
for (d = 0; d < dword_count; d++) {
*cs++ = cmd;
*cs++ = i915_mmio_reg_offset(reg) + 4 * d;
- *cs++ = intel_gt_scratch_offset(stream->engine->gt,
- offset) + 4 * d;
+ *cs++ = i915_ggtt_offset(stream->noa_wait) + offset + 4 * d;
*cs++ = 0;
}
@@ -1636,6 +1943,7 @@ static u32 *save_restore_register(struct i915_perf_stream *stream, u32 *cs,
static int alloc_noa_wait(struct i915_perf_stream *stream)
{
struct drm_i915_private *i915 = stream->perf->i915;
+ struct intel_gt *gt = stream->engine->gt;
struct drm_i915_gem_object *bo;
struct i915_vma *vma;
const u64 delay_ticks = 0xffffffffffffffff -
@@ -1654,8 +1962,17 @@ static int alloc_noa_wait(struct i915_perf_stream *stream)
DELTA_TARGET,
N_CS_GPR
};
+ i915_reg_t mi_predicate_result = HAS_MI_SET_PREDICATE(i915) ?
+ MI_PREDICATE_RESULT_2_ENGINE(base) :
+ MI_PREDICATE_RESULT_1(RENDER_RING_BASE);
- bo = i915_gem_object_create_internal(i915, 4096);
+ /*
+ * gt->scratch was being used to save/restore the GPR registers, but on
+ * MTL the scratch uses stolen lmem. An MI_SRM to this memory region
+ * causes an engine hang. Instead allocate an additional page here to
+ * save/restore GPR registers
+ */
+ bo = i915_gem_object_create_internal(i915, 8192);
if (IS_ERR(bo)) {
drm_err(&i915->drm,
"Failed to allocate NOA wait batchbuffer\n");
@@ -1673,26 +1990,35 @@ retry:
* multiple OA config BOs will have a jump to this address and it
* needs to be fixed during the lifetime of the i915/perf stream.
*/
- vma = i915_gem_object_ggtt_pin_ww(bo, &ww, NULL, 0, 0, PIN_HIGH);
+ vma = i915_vma_instance(bo, &gt->ggtt->vm, NULL);
if (IS_ERR(vma)) {
ret = PTR_ERR(vma);
goto out_ww;
}
+ ret = i915_vma_pin_ww(vma, &ww, 0, 0, PIN_GLOBAL | PIN_HIGH);
+ if (ret)
+ goto out_ww;
+
batch = cs = i915_gem_object_pin_map(bo, I915_MAP_WB);
if (IS_ERR(batch)) {
ret = PTR_ERR(batch);
goto err_unpin;
}
+ stream->noa_wait = vma;
+
+#define GPR_SAVE_OFFSET 4096
+#define PREDICATE_SAVE_OFFSET 4160
+
/* Save registers. */
for (i = 0; i < N_CS_GPR; i++)
cs = save_restore_register(
stream, cs, true /* save */, CS_GPR(i),
- INTEL_GT_SCRATCH_FIELD_PERF_CS_GPR + 8 * i, 2);
+ GPR_SAVE_OFFSET + 8 * i, 2);
cs = save_restore_register(
- stream, cs, true /* save */, MI_PREDICATE_RESULT_1(RENDER_RING_BASE),
- INTEL_GT_SCRATCH_FIELD_PERF_PREDICATE_RESULT_1, 1);
+ stream, cs, true /* save */, mi_predicate_result,
+ PREDICATE_SAVE_OFFSET, 1);
/* First timestamp snapshot location. */
ts0 = cs;
@@ -1745,7 +2071,10 @@ retry:
*/
*cs++ = MI_LOAD_REGISTER_REG | (3 - 2);
*cs++ = i915_mmio_reg_offset(CS_GPR(JUMP_PREDICATE));
- *cs++ = i915_mmio_reg_offset(MI_PREDICATE_RESULT_1(RENDER_RING_BASE));
+ *cs++ = i915_mmio_reg_offset(mi_predicate_result);
+
+ if (HAS_MI_SET_PREDICATE(i915))
+ *cs++ = MI_SET_PREDICATE | 1;
/* Restart from the beginning if we had timestamps roll over. */
*cs++ = (GRAPHICS_VER(i915) < 8 ?
@@ -1755,6 +2084,9 @@ retry:
*cs++ = i915_ggtt_offset(vma) + (ts0 - batch) * 4;
*cs++ = 0;
+ if (HAS_MI_SET_PREDICATE(i915))
+ *cs++ = MI_SET_PREDICATE;
+
/*
* Now add the diff between to previous timestamps and add it to :
* (((1 * << 64) - 1) - delay_ns)
@@ -1782,7 +2114,10 @@ retry:
*/
*cs++ = MI_LOAD_REGISTER_REG | (3 - 2);
*cs++ = i915_mmio_reg_offset(CS_GPR(JUMP_PREDICATE));
- *cs++ = i915_mmio_reg_offset(MI_PREDICATE_RESULT_1(RENDER_RING_BASE));
+ *cs++ = i915_mmio_reg_offset(mi_predicate_result);
+
+ if (HAS_MI_SET_PREDICATE(i915))
+ *cs++ = MI_SET_PREDICATE | 1;
/* Predicate the jump. */
*cs++ = (GRAPHICS_VER(i915) < 8 ?
@@ -1792,14 +2127,17 @@ retry:
*cs++ = i915_ggtt_offset(vma) + (jump - batch) * 4;
*cs++ = 0;
+ if (HAS_MI_SET_PREDICATE(i915))
+ *cs++ = MI_SET_PREDICATE;
+
/* Restore registers. */
for (i = 0; i < N_CS_GPR; i++)
cs = save_restore_register(
stream, cs, false /* restore */, CS_GPR(i),
- INTEL_GT_SCRATCH_FIELD_PERF_CS_GPR + 8 * i, 2);
+ GPR_SAVE_OFFSET + 8 * i, 2);
cs = save_restore_register(
- stream, cs, false /* restore */, MI_PREDICATE_RESULT_1(RENDER_RING_BASE),
- INTEL_GT_SCRATCH_FIELD_PERF_PREDICATE_RESULT_1, 1);
+ stream, cs, false /* restore */, mi_predicate_result,
+ PREDICATE_SAVE_OFFSET, 1);
/* And return to the ring. */
*cs++ = MI_BATCH_BUFFER_END;
@@ -1809,7 +2147,6 @@ retry:
i915_gem_object_flush_map(bo);
__i915_gem_object_release_map(bo);
- stream->noa_wait = vma;
goto out_ww;
err_unpin:
@@ -2017,14 +2354,12 @@ retry:
goto err_add_request;
}
- err = i915_request_await_object(rq, vma->obj, 0);
- if (!err)
- err = i915_vma_move_to_active(vma, rq, 0);
+ err = i915_vma_move_to_active(vma, rq, 0);
if (err)
goto err_add_request;
err = rq->engine->emit_bb_start(rq,
- vma->node.start, 0,
+ i915_vma_offset(vma), 0,
I915_DISPATCH_SECURE);
if (err)
goto err_add_request;
@@ -2249,7 +2584,8 @@ err_add_request:
return err;
}
-static int gen8_configure_context(struct i915_gem_context *ctx,
+static int gen8_configure_context(struct i915_perf_stream *stream,
+ struct i915_gem_context *ctx,
struct flex *flex, unsigned int count)
{
struct i915_gem_engines_iter it;
@@ -2283,11 +2619,12 @@ static int gen12_configure_oar_context(struct i915_perf_stream *stream,
{
int err;
struct intel_context *ce = stream->pinned_ctx;
- u32 format = stream->oa_buffer.format;
+ u32 format = stream->oa_buffer.format->format;
+ u32 offset = stream->perf->ctx_oactxctrl_offset;
struct flex regs_context[] = {
{
GEN8_OACTXCONTROL,
- stream->perf->ctx_oactxctrl_offset + 1,
+ offset + 1,
active ? GEN8_OA_COUNTER_RESUME : 0,
},
};
@@ -2312,12 +2649,13 @@ static int gen12_configure_oar_context(struct i915_perf_stream *stream,
},
};
- /* Modify the context image of pinned context with regs_context*/
+ /* Modify the context image of pinned context with regs_context */
err = intel_context_lock_pinned(ce);
if (err)
return err;
- err = gen8_modify_context(ce, regs_context, ARRAY_SIZE(regs_context));
+ err = gen8_modify_context(ce, regs_context,
+ ARRAY_SIZE(regs_context));
intel_context_unlock_pinned(ce);
if (err)
return err;
@@ -2359,10 +2697,11 @@ oa_configure_all_contexts(struct i915_perf_stream *stream,
{
struct drm_i915_private *i915 = stream->perf->i915;
struct intel_engine_cs *engine;
+ struct intel_gt *gt = stream->engine->gt;
struct i915_gem_context *ctx, *cn;
int err;
- lockdep_assert_held(&stream->perf->lock);
+ lockdep_assert_held(&gt->perf.lock);
/*
* The OA register config is setup through the context image. This image
@@ -2387,7 +2726,7 @@ oa_configure_all_contexts(struct i915_perf_stream *stream,
spin_unlock(&i915->gem.contexts.lock);
- err = gen8_configure_context(ctx, regs, num_regs);
+ err = gen8_configure_context(stream, ctx, regs, num_regs);
if (err) {
i915_gem_context_put(ctx);
return err;
@@ -2432,6 +2771,9 @@ gen12_configure_all_contexts(struct i915_perf_stream *stream,
},
};
+ if (stream->engine->class != RENDER_CLASS)
+ return 0;
+
return oa_configure_all_contexts(stream,
regs, ARRAY_SIZE(regs),
active);
@@ -2442,6 +2784,7 @@ lrc_configure_all_contexts(struct i915_perf_stream *stream,
const struct i915_oa_config *oa_config,
struct i915_active *active)
{
+ u32 ctx_oactxctrl = stream->perf->ctx_oactxctrl_offset;
/* The MMIO offsets for Flex EU registers aren't contiguous */
const u32 ctx_flexeu0 = stream->perf->ctx_flexeu0_offset;
#define ctx_flexeuN(N) (ctx_flexeu0 + 2 * (N) + 1)
@@ -2452,7 +2795,7 @@ lrc_configure_all_contexts(struct i915_perf_stream *stream,
},
{
GEN8_OACTXCONTROL,
- stream->perf->ctx_oactxctrl_offset + 1,
+ ctx_oactxctrl + 1,
},
{ EU_PERF_CNTL0, ctx_flexeuN(0) },
{ EU_PERF_CNTL1, ctx_flexeuN(1) },
@@ -2540,13 +2883,27 @@ static int
gen12_enable_metric_set(struct i915_perf_stream *stream,
struct i915_active *active)
{
+ struct drm_i915_private *i915 = stream->perf->i915;
struct intel_uncore *uncore = stream->uncore;
struct i915_oa_config *oa_config = stream->oa_config;
bool periodic = stream->periodic;
u32 period_exponent = stream->period_exponent;
+ u32 sqcnt1;
int ret;
- intel_uncore_write(uncore, GEN12_OAG_OA_DEBUG,
+ /*
+ * Wa_1508761755:xehpsdv, dg2
+ * EU NOA signals behave incorrectly if EU clock gating is enabled.
+ * Disable thread stall DOP gating and EU DOP gating.
+ */
+ if (IS_XEHPSDV(i915) || IS_DG2(i915)) {
+ intel_gt_mcr_multicast_write(uncore->gt, GEN8_ROW_CHICKEN,
+ _MASKED_BIT_ENABLE(STALL_DOP_GATING_DISABLE));
+ intel_uncore_write(uncore, GEN7_ROW_CHICKEN2,
+ _MASKED_BIT_ENABLE(GEN12_DISABLE_DOP_GATING));
+ }
+
+ intel_uncore_write(uncore, __oa_regs(stream)->oa_debug,
/* Disable clk ratio reports, like previous Gens. */
_MASKED_BIT_ENABLE(GEN12_OAG_OA_DEBUG_DISABLE_CLK_RATIO_REPORTS |
GEN12_OAG_OA_DEBUG_INCLUDE_CLK_RATIO) |
@@ -2556,13 +2913,23 @@ gen12_enable_metric_set(struct i915_perf_stream *stream,
*/
oag_report_ctx_switches(stream));
- intel_uncore_write(uncore, GEN12_OAG_OAGLBCTXCTRL, periodic ?
+ intel_uncore_write(uncore, __oa_regs(stream)->oa_ctx_ctrl, periodic ?
(GEN12_OAG_OAGLBCTXCTRL_COUNTER_RESUME |
GEN12_OAG_OAGLBCTXCTRL_TIMER_ENABLE |
(period_exponent << GEN12_OAG_OAGLBCTXCTRL_TIMER_PERIOD_SHIFT))
: 0);
/*
+ * Initialize Super Queue Internal Cnt Register
+ * Set PMON Enable in order to collect valid metrics.
+ * Enable byets per clock reporting in OA for XEHPSDV onward.
+ */
+ sqcnt1 = GEN12_SQCNT1_PMON_ENABLE |
+ (HAS_OA_BPC_REPORTING(i915) ? GEN12_SQCNT1_OABPC : 0);
+
+ intel_uncore_rmw(uncore, GEN12_SQCNT1, 0, sqcnt1);
+
+ /*
* Update all contexts prior writing the mux configurations as we need
* to make sure all slices/subslices are ON before writing to NOA
* registers.
@@ -2611,6 +2978,19 @@ static void gen11_disable_metric_set(struct i915_perf_stream *stream)
static void gen12_disable_metric_set(struct i915_perf_stream *stream)
{
struct intel_uncore *uncore = stream->uncore;
+ struct drm_i915_private *i915 = stream->perf->i915;
+ u32 sqcnt1;
+
+ /*
+ * Wa_1508761755:xehpsdv, dg2
+ * Enable thread stall DOP gating and EU DOP gating.
+ */
+ if (IS_XEHPSDV(i915) || IS_DG2(i915)) {
+ intel_gt_mcr_multicast_write(uncore->gt, GEN8_ROW_CHICKEN,
+ _MASKED_BIT_DISABLE(STALL_DOP_GATING_DISABLE));
+ intel_uncore_write(uncore, GEN7_ROW_CHICKEN2,
+ _MASKED_BIT_DISABLE(GEN12_DISABLE_DOP_GATING));
+ }
/* Reset all contexts' slices/subslices configurations. */
gen12_configure_all_contexts(stream, NULL, NULL);
@@ -2621,6 +3001,12 @@ static void gen12_disable_metric_set(struct i915_perf_stream *stream)
/* Make sure we disable noa to save power. */
intel_uncore_rmw(uncore, RPM_CONFIG1, GEN10_GT_NOA_ENABLE, 0);
+
+ sqcnt1 = GEN12_SQCNT1_PMON_ENABLE |
+ (HAS_OA_BPC_REPORTING(i915) ? GEN12_SQCNT1_OABPC : 0);
+
+ /* Reset PMON Enable to save power. */
+ intel_uncore_rmw(uncore, GEN12_SQCNT1, sqcnt1, 0);
}
static void gen7_oa_enable(struct i915_perf_stream *stream)
@@ -2630,7 +3016,7 @@ static void gen7_oa_enable(struct i915_perf_stream *stream)
u32 ctx_id = stream->specific_ctx_id;
bool periodic = stream->periodic;
u32 period_exponent = stream->period_exponent;
- u32 report_format = stream->oa_buffer.format;
+ u32 report_format = stream->oa_buffer.format->format;
/*
* Reset buf pointers so we don't forward reports from before now.
@@ -2656,7 +3042,7 @@ static void gen7_oa_enable(struct i915_perf_stream *stream)
static void gen8_oa_enable(struct i915_perf_stream *stream)
{
struct intel_uncore *uncore = stream->uncore;
- u32 report_format = stream->oa_buffer.format;
+ u32 report_format = stream->oa_buffer.format->format;
/*
* Reset buf pointers so we don't forward reports from before now.
@@ -2681,8 +3067,8 @@ static void gen8_oa_enable(struct i915_perf_stream *stream)
static void gen12_oa_enable(struct i915_perf_stream *stream)
{
- struct intel_uncore *uncore = stream->uncore;
- u32 report_format = stream->oa_buffer.format;
+ const struct i915_perf_regs *regs;
+ u32 val;
/*
* If we don't want OA reports from the OA buffer, then we don't even
@@ -2693,9 +3079,11 @@ static void gen12_oa_enable(struct i915_perf_stream *stream)
gen12_init_oa_buffer(stream);
- intel_uncore_write(uncore, GEN12_OAG_OACONTROL,
- (report_format << GEN12_OAG_OACONTROL_OA_COUNTER_FORMAT_SHIFT) |
- GEN12_OAG_OACONTROL_OA_COUNTER_ENABLE);
+ regs = __oa_regs(stream);
+ val = (stream->oa_buffer.format->format << regs->oa_ctrl_counter_format_shift) |
+ GEN12_OAG_OACONTROL_OA_COUNTER_ENABLE;
+
+ intel_uncore_write(stream->uncore, regs->oa_ctrl, val);
}
/**
@@ -2747,9 +3135,9 @@ static void gen12_oa_disable(struct i915_perf_stream *stream)
{
struct intel_uncore *uncore = stream->uncore;
- intel_uncore_write(uncore, GEN12_OAG_OACONTROL, 0);
+ intel_uncore_write(uncore, __oa_regs(stream)->oa_ctrl, 0);
if (intel_wait_for_register(uncore,
- GEN12_OAG_OACONTROL,
+ __oa_regs(stream)->oa_ctrl,
GEN12_OAG_OACONTROL_OA_COUNTER_ENABLE, 0,
50))
drm_err(&stream->perf->i915->drm,
@@ -2838,6 +3226,33 @@ get_sseu_config(struct intel_sseu *out_sseu,
return i915_gem_user_to_context_sseu(engine->gt, drm_sseu, out_sseu);
}
+/*
+ * OA timestamp frequency = CS timestamp frequency in most platforms. On some
+ * platforms OA unit ignores the CTC_SHIFT and the 2 timestamps differ. In such
+ * cases, return the adjusted CS timestamp frequency to the user.
+ */
+u32 i915_perf_oa_timestamp_frequency(struct drm_i915_private *i915)
+{
+ /*
+ * Wa_18013179988:dg2
+ * Wa_14015846243:mtl
+ */
+ if (IS_DG2(i915) || IS_METEORLAKE(i915)) {
+ intel_wakeref_t wakeref;
+ u32 reg, shift;
+
+ with_intel_runtime_pm(to_gt(i915)->uncore->rpm, wakeref)
+ reg = intel_uncore_read(to_gt(i915)->uncore, RPM_CONFIG0);
+
+ shift = REG_FIELD_GET(GEN10_RPM_CONFIG0_CTC_SHIFT_PARAMETER_MASK,
+ reg);
+
+ return to_gt(i915)->clock_frequency << (3 - shift);
+ }
+
+ return to_gt(i915)->clock_frequency;
+}
+
/**
* i915_oa_stream_init - validate combined props for OA stream and init
* @stream: An i915 perf stream
@@ -2862,7 +3277,8 @@ static int i915_oa_stream_init(struct i915_perf_stream *stream,
{
struct drm_i915_private *i915 = stream->perf->i915;
struct i915_perf *perf = stream->perf;
- int format_size;
+ struct i915_perf_group *g;
+ struct intel_gt *gt;
int ret;
if (!props->engine) {
@@ -2870,6 +3286,8 @@ static int i915_oa_stream_init(struct i915_perf_stream *stream,
"OA engine not specified\n");
return -EINVAL;
}
+ gt = props->engine->gt;
+ g = props->engine->oa_group;
/*
* If the sysfs metrics/ directory wasn't registered for some
@@ -2900,7 +3318,7 @@ static int i915_oa_stream_init(struct i915_perf_stream *stream,
* counter reports and marshal to the appropriate client
* we currently only allow exclusive access
*/
- if (perf->exclusive_stream) {
+ if (g->exclusive_stream) {
drm_dbg(&stream->perf->i915->drm,
"OA unit already in use\n");
return -EBUSY;
@@ -2917,20 +3335,15 @@ static int i915_oa_stream_init(struct i915_perf_stream *stream,
stream->sample_size = sizeof(struct drm_i915_perf_record_header);
- format_size = perf->oa_formats[props->oa_format].size;
+ stream->oa_buffer.format = &perf->oa_formats[props->oa_format];
+ if (drm_WARN_ON(&i915->drm, stream->oa_buffer.format->size == 0))
+ return -EINVAL;
stream->sample_flags = props->sample_flags;
- stream->sample_size += format_size;
-
- stream->oa_buffer.format_size = format_size;
- if (drm_WARN_ON(&i915->drm, stream->oa_buffer.format_size == 0))
- return -EINVAL;
+ stream->sample_size += stream->oa_buffer.format->size;
stream->hold_preemption = props->hold_preemption;
- stream->oa_buffer.format =
- perf->oa_formats[props->oa_format].format;
-
stream->periodic = props->oa_periodic;
if (stream->periodic)
stream->period_exponent = props->oa_period_exponent;
@@ -2974,14 +3387,33 @@ static int i915_oa_stream_init(struct i915_perf_stream *stream,
intel_engine_pm_get(stream->engine);
intel_uncore_forcewake_get(stream->uncore, FORCEWAKE_ALL);
+ /*
+ * Wa_16011777198:dg2: GuC resets render as part of the Wa. This causes
+ * OA to lose the configuration state. Prevent this by overriding GUCRC
+ * mode.
+ */
+ if (intel_uc_uses_guc_rc(&gt->uc) &&
+ (IS_DG2_GRAPHICS_STEP(gt->i915, G10, STEP_A0, STEP_C0) ||
+ IS_DG2_GRAPHICS_STEP(gt->i915, G11, STEP_A0, STEP_B0))) {
+ ret = intel_guc_slpc_override_gucrc_mode(&gt->uc.guc.slpc,
+ SLPC_GUCRC_MODE_GUCRC_NO_RC6);
+ if (ret) {
+ drm_dbg(&stream->perf->i915->drm,
+ "Unable to override gucrc mode\n");
+ goto err_gucrc;
+ }
+
+ stream->override_gucrc = true;
+ }
+
ret = alloc_oa_buffer(stream);
if (ret)
goto err_oa_buf_alloc;
stream->ops = &i915_oa_stream_ops;
- perf->sseu = props->sseu;
- WRITE_ONCE(perf->exclusive_stream, stream);
+ stream->engine->gt->perf.sseu = props->sseu;
+ WRITE_ONCE(g->exclusive_stream, stream);
ret = i915_perf_stream_enable_sync(stream);
if (ret) {
@@ -2999,21 +3431,26 @@ static int i915_oa_stream_init(struct i915_perf_stream *stream,
stream->poll_check_timer.function = oa_poll_check_timer_cb;
init_waitqueue_head(&stream->poll_wq);
spin_lock_init(&stream->oa_buffer.ptr_lock);
+ mutex_init(&stream->lock);
return 0;
err_enable:
- WRITE_ONCE(perf->exclusive_stream, NULL);
+ WRITE_ONCE(g->exclusive_stream, NULL);
perf->ops.disable_metric_set(stream);
free_oa_buffer(stream);
err_oa_buf_alloc:
- free_oa_configs(stream);
+ if (stream->override_gucrc)
+ intel_guc_slpc_unset_gucrc_mode(&gt->uc.guc.slpc);
+err_gucrc:
intel_uncore_forcewake_put(stream->uncore, FORCEWAKE_ALL);
intel_engine_pm_put(stream->engine);
+ free_oa_configs(stream);
+
err_config:
free_noa_wait(stream);
@@ -3033,7 +3470,7 @@ void i915_oa_init_reg_state(const struct intel_context *ce,
return;
/* perf.exclusive_stream serialised by lrc_configure_all_contexts() */
- stream = READ_ONCE(engine->i915->perf.exclusive_stream);
+ stream = READ_ONCE(engine->oa_group->exclusive_stream);
if (stream && GRAPHICS_VER(stream->perf->i915) < 12)
gen8_update_reg_state_unlocked(ce, stream);
}
@@ -3062,7 +3499,6 @@ static ssize_t i915_perf_read(struct file *file,
loff_t *ppos)
{
struct i915_perf_stream *stream = file->private_data;
- struct i915_perf *perf = stream->perf;
size_t offset = 0;
int ret;
@@ -3086,14 +3522,14 @@ static ssize_t i915_perf_read(struct file *file,
if (ret)
return ret;
- mutex_lock(&perf->lock);
+ mutex_lock(&stream->lock);
ret = stream->ops->read(stream, buf, count, &offset);
- mutex_unlock(&perf->lock);
+ mutex_unlock(&stream->lock);
} while (!offset && !ret);
} else {
- mutex_lock(&perf->lock);
+ mutex_lock(&stream->lock);
ret = stream->ops->read(stream, buf, count, &offset);
- mutex_unlock(&perf->lock);
+ mutex_unlock(&stream->lock);
}
/* We allow the poll checking to sometimes report false positive EPOLLIN
@@ -3140,9 +3576,6 @@ static enum hrtimer_restart oa_poll_check_timer_cb(struct hrtimer *hrtimer)
* &i915_perf_stream_ops->poll_wait to call poll_wait() with a wait queue that
* will be woken for new stream data.
*
- * Note: The &perf->lock mutex has been taken to serialize
- * with any non-file-operation driver hooks.
- *
* Returns: any poll events that are ready without sleeping
*/
static __poll_t i915_perf_poll_locked(struct i915_perf_stream *stream,
@@ -3181,12 +3614,11 @@ static __poll_t i915_perf_poll_locked(struct i915_perf_stream *stream,
static __poll_t i915_perf_poll(struct file *file, poll_table *wait)
{
struct i915_perf_stream *stream = file->private_data;
- struct i915_perf *perf = stream->perf;
__poll_t ret;
- mutex_lock(&perf->lock);
+ mutex_lock(&stream->lock);
ret = i915_perf_poll_locked(stream, file, wait);
- mutex_unlock(&perf->lock);
+ mutex_unlock(&stream->lock);
return ret;
}
@@ -3285,9 +3717,6 @@ static long i915_perf_config_locked(struct i915_perf_stream *stream,
* @cmd: the ioctl request
* @arg: the ioctl data
*
- * Note: The &perf->lock mutex has been taken to serialize
- * with any non-file-operation driver hooks.
- *
* Returns: zero on success or a negative error code. Returns -EINVAL for
* an unknown ioctl request.
*/
@@ -3325,12 +3754,11 @@ static long i915_perf_ioctl(struct file *file,
unsigned long arg)
{
struct i915_perf_stream *stream = file->private_data;
- struct i915_perf *perf = stream->perf;
long ret;
- mutex_lock(&perf->lock);
+ mutex_lock(&stream->lock);
ret = i915_perf_ioctl_locked(stream, cmd, arg);
- mutex_unlock(&perf->lock);
+ mutex_unlock(&stream->lock);
return ret;
}
@@ -3342,7 +3770,7 @@ static long i915_perf_ioctl(struct file *file,
* Frees all resources associated with the given i915 perf @stream, disabling
* any associated data capture in the process.
*
- * Note: The &perf->lock mutex has been taken to serialize
+ * Note: The &gt->perf.lock mutex has been taken to serialize
* with any non-file-operation driver hooks.
*/
static void i915_perf_destroy_locked(struct i915_perf_stream *stream)
@@ -3374,10 +3802,16 @@ static int i915_perf_release(struct inode *inode, struct file *file)
{
struct i915_perf_stream *stream = file->private_data;
struct i915_perf *perf = stream->perf;
+ struct intel_gt *gt = stream->engine->gt;
- mutex_lock(&perf->lock);
+ /*
+ * Within this call, we know that the fd is being closed and we have no
+ * other user of stream->lock. Use the perf lock to destroy the stream
+ * here.
+ */
+ mutex_lock(&gt->perf.lock);
i915_perf_destroy_locked(stream);
- mutex_unlock(&perf->lock);
+ mutex_unlock(&gt->perf.lock);
/* Release the reference the perf stream kept on the driver. */
drm_dev_put(&perf->i915->drm);
@@ -3410,7 +3844,7 @@ static const struct file_operations fops = {
* See i915_perf_ioctl_open() for interface details.
*
* Implements further stream config validation and stream initialization on
- * behalf of i915_perf_open_ioctl() with the &perf->lock mutex
+ * behalf of i915_perf_open_ioctl() with the &gt->perf.lock mutex
* taken to serialize with any non-file-operation driver hooks.
*
* Note: at this point the @props have only been validated in isolation and
@@ -3565,8 +3999,10 @@ err:
static u64 oa_exponent_to_ns(struct i915_perf *perf, int exponent)
{
- return intel_gt_clock_interval_to_ns(to_gt(perf->i915),
- 2ULL << exponent);
+ u64 nom = (2ULL << exponent) * NSEC_PER_SEC;
+ u32 den = i915_perf_oa_timestamp_frequency(perf->i915);
+
+ return div_u64(nom + den - 1, den);
}
static __always_inline bool
@@ -3601,41 +4037,35 @@ static int read_properties_unlocked(struct i915_perf *perf,
u32 n_props,
struct perf_open_properties *props)
{
+ struct drm_i915_gem_context_param_sseu user_sseu;
+ const struct i915_oa_format *f;
u64 __user *uprop = uprops;
+ bool config_instance = false;
+ bool config_class = false;
+ bool config_sseu = false;
+ u8 class, instance;
u32 i;
int ret;
memset(props, 0, sizeof(struct perf_open_properties));
props->poll_oa_period = DEFAULT_POLL_PERIOD_NS;
- if (!n_props) {
- drm_dbg(&perf->i915->drm,
- "No i915 perf properties given\n");
- return -EINVAL;
- }
-
- /* At the moment we only support using i915-perf on the RCS. */
- props->engine = intel_engine_lookup_user(perf->i915,
- I915_ENGINE_CLASS_RENDER,
- 0);
- if (!props->engine) {
- drm_dbg(&perf->i915->drm,
- "No RENDER-capable engines\n");
- return -EINVAL;
- }
-
/* Considering that ID = 0 is reserved and assuming that we don't
* (currently) expect any configurations to ever specify duplicate
* values for a particular property ID then the last _PROP_MAX value is
* one greater than the maximum number of properties we expect to get
* from userspace.
*/
- if (n_props >= DRM_I915_PERF_PROP_MAX) {
+ if (!n_props || n_props >= DRM_I915_PERF_PROP_MAX) {
drm_dbg(&perf->i915->drm,
- "More i915 perf properties specified than exist\n");
+ "Invalid number of i915 perf properties given\n");
return -EINVAL;
}
+ /* Defaults when class:instance is not passed */
+ class = I915_ENGINE_CLASS_RENDER;
+ instance = 0;
+
for (i = 0; i < n_props; i++) {
u64 oa_period, oa_freq_hz;
u64 id, value;
@@ -3730,8 +4160,6 @@ static int read_properties_unlocked(struct i915_perf *perf,
props->hold_preemption = !!value;
break;
case DRM_I915_PERF_PROP_GLOBAL_SSEU: {
- struct drm_i915_gem_context_param_sseu user_sseu;
-
if (GRAPHICS_VER_FULL(perf->i915) >= IP_VER(12, 50)) {
drm_dbg(&perf->i915->drm,
"SSEU config not supported on gfx %x\n",
@@ -3746,14 +4174,7 @@ static int read_properties_unlocked(struct i915_perf *perf,
"Unable to copy global sseu parameter\n");
return -EFAULT;
}
-
- ret = get_sseu_config(&props->sseu, props->engine, &user_sseu);
- if (ret) {
- drm_dbg(&perf->i915->drm,
- "Invalid SSEU configuration\n");
- return ret;
- }
- props->has_sseu = true;
+ config_sseu = true;
break;
}
case DRM_I915_PERF_PROP_POLL_OA_PERIOD:
@@ -3765,7 +4186,15 @@ static int read_properties_unlocked(struct i915_perf *perf,
}
props->poll_oa_period = value;
break;
- case DRM_I915_PERF_PROP_MAX:
+ case DRM_I915_PERF_PROP_OA_ENGINE_CLASS:
+ class = (u8)value;
+ config_class = true;
+ break;
+ case DRM_I915_PERF_PROP_OA_ENGINE_INSTANCE:
+ instance = (u8)value;
+ config_instance = true;
+ break;
+ default:
MISSING_CASE(id);
return -EINVAL;
}
@@ -3773,6 +4202,60 @@ static int read_properties_unlocked(struct i915_perf *perf,
uprop += 2;
}
+ if ((config_class && !config_instance) ||
+ (config_instance && !config_class)) {
+ drm_dbg(&perf->i915->drm,
+ "OA engine-class and engine-instance parameters must be passed together\n");
+ return -EINVAL;
+ }
+
+ props->engine = intel_engine_lookup_user(perf->i915, class, instance);
+ if (!props->engine) {
+ drm_dbg(&perf->i915->drm,
+ "OA engine class and instance invalid %d:%d\n",
+ class, instance);
+ return -EINVAL;
+ }
+
+ if (!engine_supports_oa(props->engine)) {
+ drm_dbg(&perf->i915->drm,
+ "Engine not supported by OA %d:%d\n",
+ class, instance);
+ return -EINVAL;
+ }
+
+ /*
+ * Wa_14017512683: mtl[a0..c0): Use of OAM must be preceded with Media
+ * C6 disable in BIOS. Fail if Media C6 is enabled on steppings where OAM
+ * does not work as expected.
+ */
+ if (IS_MTL_MEDIA_STEP(props->engine->i915, STEP_A0, STEP_C0) &&
+ props->engine->oa_group->type == TYPE_OAM &&
+ intel_check_bios_c6_setup(&props->engine->gt->rc6)) {
+ drm_dbg(&perf->i915->drm,
+ "OAM requires media C6 to be disabled in BIOS\n");
+ return -EINVAL;
+ }
+
+ i = array_index_nospec(props->oa_format, I915_OA_FORMAT_MAX);
+ f = &perf->oa_formats[i];
+ if (!engine_supports_oa_format(props->engine, f->type)) {
+ drm_dbg(&perf->i915->drm,
+ "Invalid OA format %d for class %d\n",
+ f->type, props->engine->class);
+ return -EINVAL;
+ }
+
+ if (config_sseu) {
+ ret = get_sseu_config(&props->sseu, props->engine, &user_sseu);
+ if (ret) {
+ drm_dbg(&perf->i915->drm,
+ "Invalid SSEU configuration\n");
+ return ret;
+ }
+ props->has_sseu = true;
+ }
+
return 0;
}
@@ -3794,7 +4277,7 @@ static int read_properties_unlocked(struct i915_perf *perf,
* mutex to avoid an awkward lockdep with mmap_lock.
*
* Most of the implementation details are handled by
- * i915_perf_open_ioctl_locked() after taking the &perf->lock
+ * i915_perf_open_ioctl_locked() after taking the &gt->perf.lock
* mutex for serializing with any non-file-operation driver hooks.
*
* Return: A newly opened i915 Perf stream file descriptor or negative
@@ -3805,6 +4288,7 @@ int i915_perf_open_ioctl(struct drm_device *dev, void *data,
{
struct i915_perf *perf = &to_i915(dev)->perf;
struct drm_i915_perf_open_param *param = data;
+ struct intel_gt *gt;
struct perf_open_properties props;
u32 known_open_flags;
int ret;
@@ -3831,9 +4315,11 @@ int i915_perf_open_ioctl(struct drm_device *dev, void *data,
if (ret)
return ret;
- mutex_lock(&perf->lock);
+ gt = props.engine->gt;
+
+ mutex_lock(&gt->perf.lock);
ret = i915_perf_open_ioctl_locked(perf, param, &props, file);
- mutex_unlock(&perf->lock);
+ mutex_unlock(&gt->perf.lock);
return ret;
}
@@ -3849,6 +4335,7 @@ int i915_perf_open_ioctl(struct drm_device *dev, void *data,
void i915_perf_register(struct drm_i915_private *i915)
{
struct i915_perf *perf = &i915->perf;
+ struct intel_gt *gt = to_gt(i915);
if (!perf->i915)
return;
@@ -3857,13 +4344,13 @@ void i915_perf_register(struct drm_i915_private *i915)
* i915_perf_open_ioctl(); considering that we register after
* being exposed to userspace.
*/
- mutex_lock(&perf->lock);
+ mutex_lock(&gt->perf.lock);
perf->metrics_kobj =
kobject_create_and_add("metrics",
&i915->drm.primary->kdev->kobj);
- mutex_unlock(&perf->lock);
+ mutex_unlock(&gt->perf.lock);
}
/**
@@ -3939,6 +4426,19 @@ static const struct i915_range gen12_oa_b_counters[] = {
{}
};
+static const struct i915_range mtl_oam_b_counters[] = {
+ { .start = 0x393000, .end = 0x39301c }, /* GEN12_OAM_STARTTRIG1[1-8] */
+ { .start = 0x393020, .end = 0x39303c }, /* GEN12_OAM_REPORTTRIG1[1-8] */
+ { .start = 0x393040, .end = 0x39307c }, /* GEN12_OAM_CEC[0-7][0-1] */
+ { .start = 0x393200, .end = 0x39323C }, /* MPES[0-7] */
+ {}
+};
+
+static const struct i915_range xehp_oa_b_counters[] = {
+ { .start = 0xdc48, .end = 0xdc48 }, /* OAA_ENABLE_REG */
+ { .start = 0xdd00, .end = 0xdd48 }, /* OAG_LCE0_0 - OAA_LENABLE_REG */
+};
+
static const struct i915_range gen7_oa_mux_regs[] = {
{ .start = 0x91b8, .end = 0x91cc }, /* OA_PERFCNT[1-2], OA_PERFMATRIX */
{ .start = 0x9800, .end = 0x9888 }, /* MICRO_BP0_0 - NOA_WRITE */
@@ -3978,6 +4478,19 @@ static const struct i915_range gen12_oa_mux_regs[] = {
{}
};
+/*
+ * Ref: 14010536224:
+ * 0x20cc is repurposed on MTL, so use a separate array for MTL.
+ */
+static const struct i915_range mtl_oa_mux_regs[] = {
+ { .start = 0x0d00, .end = 0x0d04 }, /* RPM_CONFIG[0-1] */
+ { .start = 0x0d0c, .end = 0x0d2c }, /* NOA_CONFIG[0-8] */
+ { .start = 0x9840, .end = 0x9840 }, /* GDT_CHICKEN_BITS */
+ { .start = 0x9884, .end = 0x9888 }, /* NOA_WRITE */
+ { .start = 0x38d100, .end = 0x38d114}, /* VISACTL */
+ {}
+};
+
static bool gen7_is_valid_b_counter_addr(struct i915_perf *perf, u32 addr)
{
return reg_in_range_table(addr, gen7_oa_b_counters);
@@ -4013,9 +4526,28 @@ static bool gen12_is_valid_b_counter_addr(struct i915_perf *perf, u32 addr)
return reg_in_range_table(addr, gen12_oa_b_counters);
}
+static bool mtl_is_valid_oam_b_counter_addr(struct i915_perf *perf, u32 addr)
+{
+ if (HAS_OAM(perf->i915) &&
+ GRAPHICS_VER_FULL(perf->i915) >= IP_VER(12, 70))
+ return reg_in_range_table(addr, mtl_oam_b_counters);
+
+ return false;
+}
+
+static bool xehp_is_valid_b_counter_addr(struct i915_perf *perf, u32 addr)
+{
+ return reg_in_range_table(addr, xehp_oa_b_counters) ||
+ reg_in_range_table(addr, gen12_oa_b_counters) ||
+ mtl_is_valid_oam_b_counter_addr(perf, addr);
+}
+
static bool gen12_is_valid_mux_addr(struct i915_perf *perf, u32 addr)
{
- return reg_in_range_table(addr, gen12_oa_mux_regs);
+ if (IS_METEORLAKE(perf->i915))
+ return reg_in_range_table(addr, mtl_oa_mux_regs);
+ else
+ return reg_in_range_table(addr, gen12_oa_mux_regs);
}
static u32 mask_reg_value(u32 reg, u32 val)
@@ -4270,13 +4802,13 @@ int i915_perf_add_config_ioctl(struct drm_device *dev, void *data,
err = oa_config->id;
goto sysfs_err;
}
-
- mutex_unlock(&perf->metrics_lock);
+ id = oa_config->id;
drm_dbg(&perf->i915->drm,
"Added config %s id=%i\n", oa_config->uuid, oa_config->id);
+ mutex_unlock(&perf->metrics_lock);
- return oa_config->id;
+ return id;
sysfs_err:
mutex_unlock(&perf->metrics_lock);
@@ -4372,6 +4904,136 @@ static struct ctl_table oa_table[] = {
{}
};
+static u32 num_perf_groups_per_gt(struct intel_gt *gt)
+{
+ return 1;
+}
+
+static u32 __oam_engine_group(struct intel_engine_cs *engine)
+{
+ if (GRAPHICS_VER_FULL(engine->i915) >= IP_VER(12, 70)) {
+ /*
+ * There's 1 SAMEDIA gt and 1 OAM per SAMEDIA gt. All media slices
+ * within the gt use the same OAM. All MTL SKUs list 1 SA MEDIA.
+ */
+ drm_WARN_ON(&engine->i915->drm,
+ engine->gt->type != GT_MEDIA);
+
+ return PERF_GROUP_OAM_SAMEDIA_0;
+ }
+
+ return PERF_GROUP_INVALID;
+}
+
+static u32 __oa_engine_group(struct intel_engine_cs *engine)
+{
+ switch (engine->class) {
+ case RENDER_CLASS:
+ return PERF_GROUP_OAG;
+
+ case VIDEO_DECODE_CLASS:
+ case VIDEO_ENHANCEMENT_CLASS:
+ return __oam_engine_group(engine);
+
+ default:
+ return PERF_GROUP_INVALID;
+ }
+}
+
+static struct i915_perf_regs __oam_regs(u32 base)
+{
+ return (struct i915_perf_regs) {
+ base,
+ GEN12_OAM_HEAD_POINTER(base),
+ GEN12_OAM_TAIL_POINTER(base),
+ GEN12_OAM_BUFFER(base),
+ GEN12_OAM_CONTEXT_CONTROL(base),
+ GEN12_OAM_CONTROL(base),
+ GEN12_OAM_DEBUG(base),
+ GEN12_OAM_STATUS(base),
+ GEN12_OAM_CONTROL_COUNTER_FORMAT_SHIFT,
+ };
+}
+
+static struct i915_perf_regs __oag_regs(void)
+{
+ return (struct i915_perf_regs) {
+ 0,
+ GEN12_OAG_OAHEADPTR,
+ GEN12_OAG_OATAILPTR,
+ GEN12_OAG_OABUFFER,
+ GEN12_OAG_OAGLBCTXCTRL,
+ GEN12_OAG_OACONTROL,
+ GEN12_OAG_OA_DEBUG,
+ GEN12_OAG_OASTATUS,
+ GEN12_OAG_OACONTROL_OA_COUNTER_FORMAT_SHIFT,
+ };
+}
+
+static void oa_init_groups(struct intel_gt *gt)
+{
+ int i, num_groups = gt->perf.num_perf_groups;
+
+ for (i = 0; i < num_groups; i++) {
+ struct i915_perf_group *g = &gt->perf.group[i];
+
+ /* Fused off engines can result in a group with num_engines == 0 */
+ if (g->num_engines == 0)
+ continue;
+
+ if (i == PERF_GROUP_OAG && gt->type != GT_MEDIA) {
+ g->regs = __oag_regs();
+ g->type = TYPE_OAG;
+ } else if (GRAPHICS_VER_FULL(gt->i915) >= IP_VER(12, 70)) {
+ g->regs = __oam_regs(mtl_oa_base[i]);
+ g->type = TYPE_OAM;
+ }
+ }
+}
+
+static int oa_init_gt(struct intel_gt *gt)
+{
+ u32 num_groups = num_perf_groups_per_gt(gt);
+ struct intel_engine_cs *engine;
+ struct i915_perf_group *g;
+ intel_engine_mask_t tmp;
+
+ g = kcalloc(num_groups, sizeof(*g), GFP_KERNEL);
+ if (!g)
+ return -ENOMEM;
+
+ for_each_engine_masked(engine, gt, ALL_ENGINES, tmp) {
+ u32 index = __oa_engine_group(engine);
+
+ engine->oa_group = NULL;
+ if (index < num_groups) {
+ g[index].num_engines++;
+ engine->oa_group = &g[index];
+ }
+ }
+
+ gt->perf.num_perf_groups = num_groups;
+ gt->perf.group = g;
+
+ oa_init_groups(gt);
+
+ return 0;
+}
+
+static int oa_init_engine_groups(struct i915_perf *perf)
+{
+ struct intel_gt *gt;
+ int i, ret;
+
+ for_each_gt(gt, perf->i915, i) {
+ ret = oa_init_gt(gt);
+ if (ret)
+ return ret;
+ }
+
+ return 0;
+}
+
static void oa_init_supported_formats(struct i915_perf *perf)
{
struct drm_i915_private *i915 = perf->i915;
@@ -4411,11 +5073,54 @@ static void oa_init_supported_formats(struct i915_perf *perf)
oa_format_add(perf, I915_OA_FORMAT_C4_B8);
break;
+ case INTEL_DG2:
+ oa_format_add(perf, I915_OAR_FORMAT_A32u40_A4u32_B8_C8);
+ oa_format_add(perf, I915_OA_FORMAT_A24u40_A14u32_B8_C8);
+ break;
+
+ case INTEL_METEORLAKE:
+ oa_format_add(perf, I915_OAR_FORMAT_A32u40_A4u32_B8_C8);
+ oa_format_add(perf, I915_OA_FORMAT_A24u40_A14u32_B8_C8);
+ oa_format_add(perf, I915_OAM_FORMAT_MPEC8u64_B8_C8);
+ oa_format_add(perf, I915_OAM_FORMAT_MPEC8u32_B8_C8);
+ break;
+
default:
MISSING_CASE(platform);
}
}
+static void i915_perf_init_info(struct drm_i915_private *i915)
+{
+ struct i915_perf *perf = &i915->perf;
+
+ switch (GRAPHICS_VER(i915)) {
+ case 8:
+ perf->ctx_oactxctrl_offset = 0x120;
+ perf->ctx_flexeu0_offset = 0x2ce;
+ perf->gen8_valid_ctx_bit = BIT(25);
+ break;
+ case 9:
+ perf->ctx_oactxctrl_offset = 0x128;
+ perf->ctx_flexeu0_offset = 0x3de;
+ perf->gen8_valid_ctx_bit = BIT(16);
+ break;
+ case 11:
+ perf->ctx_oactxctrl_offset = 0x124;
+ perf->ctx_flexeu0_offset = 0x78e;
+ perf->gen8_valid_ctx_bit = BIT(16);
+ break;
+ case 12:
+ /*
+ * Calculate offset at runtime in oa_pin_context for gen12 and
+ * cache the value in perf->ctx_oactxctrl_offset.
+ */
+ break;
+ default:
+ MISSING_CASE(GRAPHICS_VER(i915));
+ }
+}
+
/**
* i915_perf_init - initialize i915-perf state on module bind
* @i915: i915 device instance
@@ -4425,16 +5130,10 @@ static void oa_init_supported_formats(struct i915_perf *perf)
* Note: i915-perf initialization is split into an 'init' and 'register'
* phase with the i915_perf_register() exposing state to userspace.
*/
-void i915_perf_init(struct drm_i915_private *i915)
+int i915_perf_init(struct drm_i915_private *i915)
{
struct i915_perf *perf = &i915->perf;
- /* XXX const struct i915_perf_ops! */
-
- /* i915_perf is not enabled for DG2 yet */
- if (IS_DG2(i915))
- return;
-
perf->oa_formats = oa_formats;
if (IS_HASWELL(i915)) {
perf->ops.is_valid_b_counter_reg = gen7_is_valid_b_counter_addr;
@@ -4454,6 +5153,7 @@ void i915_perf_init(struct drm_i915_private *i915)
* execlist mode by default.
*/
perf->ops.read = gen8_oa_read;
+ i915_perf_init_info(i915);
if (IS_GRAPHICS_VER(i915, 8, 9)) {
perf->ops.is_valid_b_counter_reg =
@@ -4473,18 +5173,6 @@ void i915_perf_init(struct drm_i915_private *i915)
perf->ops.enable_metric_set = gen8_enable_metric_set;
perf->ops.disable_metric_set = gen8_disable_metric_set;
perf->ops.oa_hw_tail_read = gen8_oa_hw_tail_read;
-
- if (GRAPHICS_VER(i915) == 8) {
- perf->ctx_oactxctrl_offset = 0x120;
- perf->ctx_flexeu0_offset = 0x2ce;
-
- perf->gen8_valid_ctx_bit = BIT(25);
- } else {
- perf->ctx_oactxctrl_offset = 0x128;
- perf->ctx_flexeu0_offset = 0x3de;
-
- perf->gen8_valid_ctx_bit = BIT(16);
- }
} else if (GRAPHICS_VER(i915) == 11) {
perf->ops.is_valid_b_counter_reg =
gen7_is_valid_b_counter_addr;
@@ -4498,13 +5186,10 @@ void i915_perf_init(struct drm_i915_private *i915)
perf->ops.enable_metric_set = gen8_enable_metric_set;
perf->ops.disable_metric_set = gen11_disable_metric_set;
perf->ops.oa_hw_tail_read = gen8_oa_hw_tail_read;
-
- perf->ctx_oactxctrl_offset = 0x124;
- perf->ctx_flexeu0_offset = 0x78e;
-
- perf->gen8_valid_ctx_bit = BIT(16);
} else if (GRAPHICS_VER(i915) == 12) {
perf->ops.is_valid_b_counter_reg =
+ HAS_OA_SLICE_CONTRIB_LIMITS(i915) ?
+ xehp_is_valid_b_counter_addr :
gen12_is_valid_b_counter_addr;
perf->ops.is_valid_mux_reg =
gen12_is_valid_mux_addr;
@@ -4516,14 +5201,15 @@ void i915_perf_init(struct drm_i915_private *i915)
perf->ops.enable_metric_set = gen12_enable_metric_set;
perf->ops.disable_metric_set = gen12_disable_metric_set;
perf->ops.oa_hw_tail_read = gen12_oa_hw_tail_read;
-
- perf->ctx_flexeu0_offset = 0;
- perf->ctx_oactxctrl_offset = 0x144;
}
}
if (perf->ops.enable_metric_set) {
- mutex_init(&perf->lock);
+ struct intel_gt *gt;
+ int i, ret;
+
+ for_each_gt(gt, i915, i)
+ mutex_init(&gt->perf.lock);
/* Choose a representative limit */
oa_sample_rate_hard_limit = to_gt(i915)->clock_frequency / 2;
@@ -4559,8 +5245,17 @@ void i915_perf_init(struct drm_i915_private *i915)
perf->i915 = i915;
+ ret = oa_init_engine_groups(perf);
+ if (ret) {
+ drm_err(&i915->drm,
+ "OA initialization failed %d\n", ret);
+ return ret;
+ }
+
oa_init_supported_formats(perf);
}
+
+ return 0;
}
static int destroy_config(int id, void *p, void *data)
@@ -4587,10 +5282,15 @@ void i915_perf_sysctl_unregister(void)
void i915_perf_fini(struct drm_i915_private *i915)
{
struct i915_perf *perf = &i915->perf;
+ struct intel_gt *gt;
+ int i;
if (!perf->i915)
return;
+ for_each_gt(gt, perf->i915, i)
+ kfree(gt->perf.group);
+
idr_for_each(&perf->metrics_idr, destroy_config, perf);
idr_destroy(&perf->metrics_idr);
@@ -4603,7 +5303,7 @@ void i915_perf_fini(struct drm_i915_private *i915)
*
* This version number is used by userspace to detect available features.
*/
-int i915_perf_ioctl_version(void)
+int i915_perf_ioctl_version(struct drm_i915_private *i915)
{
/*
* 1: Initial version
@@ -4624,8 +5324,30 @@ int i915_perf_ioctl_version(void)
*
* 5: Add DRM_I915_PERF_PROP_POLL_OA_PERIOD parameter that controls the
* interval for the hrtimer used to check for OA data.
+ *
+ * 6: Add DRM_I915_PERF_PROP_OA_ENGINE_CLASS and
+ * DRM_I915_PERF_PROP_OA_ENGINE_INSTANCE
+ *
+ * 7: Add support for video decode and enhancement classes.
*/
- return 5;
+
+ /*
+ * Wa_14017512683: mtl[a0..c0): Use of OAM must be preceded with Media
+ * C6 disable in BIOS. If Media C6 is enabled in BIOS, return version 6
+ * to indicate that OA media is not supported.
+ */
+ if (IS_MTL_MEDIA_STEP(i915, STEP_A0, STEP_C0)) {
+ struct intel_gt *gt;
+ int i;
+
+ for_each_gt(gt, i915, i) {
+ if (gt->type == GT_MEDIA &&
+ intel_check_bios_c6_setup(&gt->rc6))
+ return 6;
+ }
+ }
+
+ return 7;
}
#if IS_ENABLED(CONFIG_DRM_I915_SELFTEST)
diff --git a/drivers/gpu/drm/i915/i915_perf.h b/drivers/gpu/drm/i915/i915_perf.h
index 1d1329e5af3a..accf626f2b13 100644
--- a/drivers/gpu/drm/i915/i915_perf.h
+++ b/drivers/gpu/drm/i915/i915_perf.h
@@ -18,11 +18,11 @@ struct i915_oa_config;
struct intel_context;
struct intel_engine_cs;
-void i915_perf_init(struct drm_i915_private *i915);
+int i915_perf_init(struct drm_i915_private *i915);
void i915_perf_fini(struct drm_i915_private *i915);
void i915_perf_register(struct drm_i915_private *i915);
void i915_perf_unregister(struct drm_i915_private *i915);
-int i915_perf_ioctl_version(void);
+int i915_perf_ioctl_version(struct drm_i915_private *i915);
int i915_perf_sysctl_register(void);
void i915_perf_sysctl_unregister(void);
@@ -57,4 +57,6 @@ static inline void i915_oa_config_put(struct i915_oa_config *oa_config)
kref_put(&oa_config->ref, i915_oa_config_release);
}
+u32 i915_perf_oa_timestamp_frequency(struct drm_i915_private *i915);
+
#endif /* __I915_PERF_H__ */
diff --git a/drivers/gpu/drm/i915/i915_perf_oa_regs.h b/drivers/gpu/drm/i915/i915_perf_oa_regs.h
index f31c9f13a9fc..ba103875e19f 100644
--- a/drivers/gpu/drm/i915/i915_perf_oa_regs.h
+++ b/drivers/gpu/drm/i915/i915_perf_oa_regs.h
@@ -97,7 +97,7 @@
#define GEN12_OAR_OACONTROL_COUNTER_FORMAT_SHIFT 1
#define GEN12_OAR_OACONTROL_COUNTER_ENABLE (1 << 0)
-#define GEN12_OACTXCONTROL _MMIO(0x2360)
+#define GEN12_OACTXCONTROL(base) _MMIO((base) + 0x360)
#define GEN12_OAR_OASTATUS _MMIO(0x2968)
/* Gen12 OAG unit */
@@ -134,4 +134,86 @@
#define GDT_CHICKEN_BITS _MMIO(0x9840)
#define GT_NOA_ENABLE 0x00000080
+#define GEN12_SQCNT1 _MMIO(0x8718)
+#define GEN12_SQCNT1_PMON_ENABLE REG_BIT(30)
+#define GEN12_SQCNT1_OABPC REG_BIT(29)
+
+/* Gen12 OAM unit */
+#define GEN12_OAM_HEAD_POINTER_OFFSET (0x1a0)
+#define GEN12_OAM_HEAD_POINTER_MASK 0xffffffc0
+
+#define GEN12_OAM_TAIL_POINTER_OFFSET (0x1a4)
+#define GEN12_OAM_TAIL_POINTER_MASK 0xffffffc0
+
+#define GEN12_OAM_BUFFER_OFFSET (0x1a8)
+#define GEN12_OAM_BUFFER_SIZE_MASK (0x7)
+#define GEN12_OAM_BUFFER_SIZE_SHIFT (3)
+#define GEN12_OAM_BUFFER_MEMORY_SELECT REG_BIT(0) /* 0: PPGTT, 1: GGTT */
+
+#define GEN12_OAM_CONTEXT_CONTROL_OFFSET (0x1bc)
+#define GEN12_OAM_CONTEXT_CONTROL_TIMER_PERIOD_SHIFT 2
+#define GEN12_OAM_CONTEXT_CONTROL_TIMER_ENABLE REG_BIT(1)
+#define GEN12_OAM_CONTEXT_CONTROL_COUNTER_RESUME REG_BIT(0)
+
+#define GEN12_OAM_CONTROL_OFFSET (0x194)
+#define GEN12_OAM_CONTROL_COUNTER_FORMAT_SHIFT 1
+#define GEN12_OAM_CONTROL_COUNTER_ENABLE REG_BIT(0)
+
+#define GEN12_OAM_DEBUG_OFFSET (0x198)
+#define GEN12_OAM_DEBUG_BUFFER_SIZE_SELECT REG_BIT(12)
+#define GEN12_OAM_DEBUG_INCLUDE_CLK_RATIO REG_BIT(6)
+#define GEN12_OAM_DEBUG_DISABLE_CLK_RATIO_REPORTS REG_BIT(5)
+#define GEN12_OAM_DEBUG_DISABLE_GO_1_0_REPORTS REG_BIT(2)
+#define GEN12_OAM_DEBUG_DISABLE_CTX_SWITCH_REPORTS REG_BIT(1)
+
+#define GEN12_OAM_STATUS_OFFSET (0x19c)
+#define GEN12_OAM_STATUS_COUNTER_OVERFLOW REG_BIT(2)
+#define GEN12_OAM_STATUS_BUFFER_OVERFLOW REG_BIT(1)
+#define GEN12_OAM_STATUS_REPORT_LOST REG_BIT(0)
+
+#define GEN12_OAM_MMIO_TRG_OFFSET (0x1d0)
+
+#define GEN12_OAM_MMIO_TRG(base) \
+ _MMIO((base) + GEN12_OAM_MMIO_TRG_OFFSET)
+
+#define GEN12_OAM_HEAD_POINTER(base) \
+ _MMIO((base) + GEN12_OAM_HEAD_POINTER_OFFSET)
+#define GEN12_OAM_TAIL_POINTER(base) \
+ _MMIO((base) + GEN12_OAM_TAIL_POINTER_OFFSET)
+#define GEN12_OAM_BUFFER(base) \
+ _MMIO((base) + GEN12_OAM_BUFFER_OFFSET)
+#define GEN12_OAM_CONTEXT_CONTROL(base) \
+ _MMIO((base) + GEN12_OAM_CONTEXT_CONTROL_OFFSET)
+#define GEN12_OAM_CONTROL(base) \
+ _MMIO((base) + GEN12_OAM_CONTROL_OFFSET)
+#define GEN12_OAM_DEBUG(base) \
+ _MMIO((base) + GEN12_OAM_DEBUG_OFFSET)
+#define GEN12_OAM_STATUS(base) \
+ _MMIO((base) + GEN12_OAM_STATUS_OFFSET)
+
+#define GEN12_OAM_CEC0_0_OFFSET (0x40)
+#define GEN12_OAM_CEC7_1_OFFSET (0x7c)
+#define GEN12_OAM_CEC0_0(base) \
+ _MMIO((base) + GEN12_OAM_CEC0_0_OFFSET)
+#define GEN12_OAM_CEC7_1(base) \
+ _MMIO((base) + GEN12_OAM_CEC7_1_OFFSET)
+
+#define GEN12_OAM_STARTTRIG1_OFFSET (0x00)
+#define GEN12_OAM_STARTTRIG8_OFFSET (0x1c)
+#define GEN12_OAM_STARTTRIG1(base) \
+ _MMIO((base) + GEN12_OAM_STARTTRIG1_OFFSET)
+#define GEN12_OAM_STARTTRIG8(base) \
+ _MMIO((base) + GEN12_OAM_STARTTRIG8_OFFSET)
+
+#define GEN12_OAM_REPORTTRIG1_OFFSET (0x20)
+#define GEN12_OAM_REPORTTRIG8_OFFSET (0x3c)
+#define GEN12_OAM_REPORTTRIG1(base) \
+ _MMIO((base) + GEN12_OAM_REPORTTRIG1_OFFSET)
+#define GEN12_OAM_REPORTTRIG8(base) \
+ _MMIO((base) + GEN12_OAM_REPORTTRIG8_OFFSET)
+
+#define GEN12_OAM_PERF_COUNTER_B0_OFFSET (0x84)
+#define GEN12_OAM_PERF_COUNTER_B(base, idx) \
+ _MMIO((base) + GEN12_OAM_PERF_COUNTER_B0_OFFSET + 4 * (idx))
+
#endif /* __INTEL_PERF_OA_REGS__ */
diff --git a/drivers/gpu/drm/i915/i915_perf_types.h b/drivers/gpu/drm/i915/i915_perf_types.h
index 05cb9a335a97..66dd5f74de05 100644
--- a/drivers/gpu/drm/i915/i915_perf_types.h
+++ b/drivers/gpu/drm/i915/i915_perf_types.h
@@ -17,8 +17,10 @@
#include <linux/wait.h>
#include <uapi/drm/i915_drm.h>
+#include "gt/intel_engine_types.h"
#include "gt/intel_sseu.h"
#include "i915_reg_defs.h"
+#include "intel_uncore.h"
#include "intel_wakeref.h"
struct drm_i915_private;
@@ -30,9 +32,41 @@ struct i915_vma;
struct intel_context;
struct intel_engine_cs;
+enum {
+ PERF_GROUP_OAG = 0,
+ PERF_GROUP_OAM_SAMEDIA_0 = 0,
+
+ PERF_GROUP_MAX,
+ PERF_GROUP_INVALID = U32_MAX,
+};
+
+enum report_header {
+ HDR_32_BIT = 0,
+ HDR_64_BIT,
+};
+
+struct i915_perf_regs {
+ u32 base;
+ i915_reg_t oa_head_ptr;
+ i915_reg_t oa_tail_ptr;
+ i915_reg_t oa_buffer;
+ i915_reg_t oa_ctx_ctrl;
+ i915_reg_t oa_ctrl;
+ i915_reg_t oa_debug;
+ i915_reg_t oa_status;
+ u32 oa_ctrl_counter_format_shift;
+};
+
+enum oa_type {
+ TYPE_OAG,
+ TYPE_OAM,
+};
+
struct i915_oa_format {
u32 format;
int size;
+ int type;
+ enum report_header header;
};
struct i915_oa_reg {
@@ -147,6 +181,11 @@ struct i915_perf_stream {
struct intel_engine_cs *engine;
/**
+ * @lock: Lock associated with operations on stream
+ */
+ struct mutex lock;
+
+ /**
* @sample_flags: Flags representing the `DRM_I915_PERF_PROP_SAMPLE_*`
* properties given when opening a stream, representing the contents
* of a single sample as read() by userspace.
@@ -245,11 +284,10 @@ struct i915_perf_stream {
* @oa_buffer: State of the OA buffer.
*/
struct {
+ const struct i915_oa_format *format;
struct i915_vma *vma;
u8 *vaddr;
u32 last_ctx_id;
- int format;
- int format_size;
int size_exponent;
/**
@@ -312,6 +350,12 @@ struct i915_perf_stream {
* buffer should be checked for available data.
*/
u64 poll_oa_period;
+
+ /**
+ * @override_gucrc: GuC RC has been overridden for the perf stream,
+ * and we need to restore the default configuration on release.
+ */
+ bool override_gucrc;
};
/**
@@ -380,35 +424,35 @@ struct i915_oa_ops {
u32 (*oa_hw_tail_read)(struct i915_perf_stream *stream);
};
-struct i915_perf {
- struct drm_i915_private *i915;
-
- struct kobject *metrics_kobj;
+struct i915_perf_group {
+ /*
+ * @exclusive_stream: The stream currently using the OA unit. This is
+ * sometimes accessed outside a syscall associated to its file
+ * descriptor.
+ */
+ struct i915_perf_stream *exclusive_stream;
/*
- * Lock associated with adding/modifying/removing OA configs
- * in perf->metrics_idr.
+ * @num_engines: The number of engines using this OA unit.
*/
- struct mutex metrics_lock;
+ u32 num_engines;
/*
- * List of dynamic configurations (struct i915_oa_config), you
- * need to hold perf->metrics_lock to access it.
+ * @regs: OA buffer register group for programming the OA unit.
*/
- struct idr metrics_idr;
+ struct i915_perf_regs regs;
/*
- * Lock associated with anything below within this structure
- * except exclusive_stream.
+ * @type: Type of OA unit - OAM, OAG etc.
*/
- struct mutex lock;
+ enum oa_type type;
+};
+struct i915_perf_gt {
/*
- * The stream currently using the OA unit. If accessed
- * outside a syscall associated to its file
- * descriptor.
+ * Lock associated with anything below within this structure.
*/
- struct i915_perf_stream *exclusive_stream;
+ struct mutex lock;
/**
* @sseu: sseu configuration selected to run while perf is active,
@@ -417,6 +461,34 @@ struct i915_perf {
struct intel_sseu sseu;
/**
+ * @num_perf_groups: number of perf groups per gt.
+ */
+ u32 num_perf_groups;
+
+ /*
+ * @group: list of OA groups - one for each OA buffer.
+ */
+ struct i915_perf_group *group;
+};
+
+struct i915_perf {
+ struct drm_i915_private *i915;
+
+ struct kobject *metrics_kobj;
+
+ /*
+ * Lock associated with adding/modifying/removing OA configs
+ * in perf->metrics_idr.
+ */
+ struct mutex metrics_lock;
+
+ /*
+ * List of dynamic configurations (struct i915_oa_config), you
+ * need to hold perf->metrics_lock to access it.
+ */
+ struct idr metrics_idr;
+
+ /**
* For rate limiting any notifications of spurious
* invalid OA reports
*/
diff --git a/drivers/gpu/drm/i915/i915_pmu.c b/drivers/gpu/drm/i915/i915_pmu.c
index 958b37123bf1..7ece883a7d95 100644
--- a/drivers/gpu/drm/i915/i915_pmu.c
+++ b/drivers/gpu/drm/i915/i915_pmu.c
@@ -17,7 +17,6 @@
#include "i915_drv.h"
#include "i915_pmu.h"
-#include "intel_pm.h"
/* Frequency for the sampling timer for events which need it. */
#define FREQUENCY 200
@@ -148,13 +147,13 @@ static u64 __get_rc6(struct intel_gt *gt)
struct drm_i915_private *i915 = gt->i915;
u64 val;
- val = intel_rc6_residency_ns(&gt->rc6, GEN6_GT_GFX_RC6);
+ val = intel_rc6_residency_ns(&gt->rc6, INTEL_RC6_RES_RC6);
if (HAS_RC6p(i915))
- val += intel_rc6_residency_ns(&gt->rc6, GEN6_GT_GFX_RC6p);
+ val += intel_rc6_residency_ns(&gt->rc6, INTEL_RC6_RES_RC6p);
if (HAS_RC6pp(i915))
- val += intel_rc6_residency_ns(&gt->rc6, GEN6_GT_GFX_RC6pp);
+ val += intel_rc6_residency_ns(&gt->rc6, INTEL_RC6_RES_RC6pp);
return val;
}
@@ -371,7 +370,6 @@ static void
frequency_sample(struct intel_gt *gt, unsigned int period_ns)
{
struct drm_i915_private *i915 = gt->i915;
- struct intel_uncore *uncore = gt->uncore;
struct i915_pmu *pmu = &i915->pmu;
struct intel_rps *rps = &gt->rps;
@@ -394,14 +392,12 @@ frequency_sample(struct intel_gt *gt, unsigned int period_ns)
* case we assume the system is running at the intended
* frequency. Fortunately, the read should rarely fail!
*/
- val = intel_uncore_read_fw(uncore, GEN6_RPSTAT1);
- if (val)
- val = intel_rps_get_cagf(rps, val);
- else
- val = rps->cur_freq;
+ val = intel_rps_read_actual_frequency_fw(rps);
+ if (!val)
+ val = intel_gpu_freq(rps, rps->cur_freq);
add_sample_mult(&pmu->sample[__I915_SAMPLE_FREQ_ACT],
- intel_gpu_freq(rps, val), period_ns / 1000);
+ val, period_ns / 1000);
}
if (pmu->enable & config_mask(I915_PMU_REQUESTED_FREQUENCY)) {
diff --git a/drivers/gpu/drm/i915/i915_query.c b/drivers/gpu/drm/i915/i915_query.c
index 6ec9c9fb7b0d..00871ef99792 100644
--- a/drivers/gpu/drm/i915/i915_query.c
+++ b/drivers/gpu/drm/i915/i915_query.c
@@ -250,8 +250,9 @@ static int query_perf_config_data(struct drm_i915_private *i915,
return total_size;
if (query_item->length < total_size) {
- DRM_DEBUG("Invalid query config data item size=%u expected=%u\n",
- query_item->length, total_size);
+ drm_dbg(&i915->drm,
+ "Invalid query config data item size=%u expected=%u\n",
+ query_item->length, total_size);
return -EINVAL;
}
@@ -418,9 +419,10 @@ static int query_perf_config_list(struct drm_i915_private *i915,
} while (n_configs > alloc);
if (query_item->length < sizeof_perf_config_list(n_configs)) {
- DRM_DEBUG("Invalid query config list item size=%u expected=%zu\n",
- query_item->length,
- sizeof_perf_config_list(n_configs));
+ drm_dbg(&i915->drm,
+ "Invalid query config list item size=%u expected=%zu\n",
+ query_item->length,
+ sizeof_perf_config_list(n_configs));
kfree(oa_config_ids);
return -EINVAL;
}
diff --git a/drivers/gpu/drm/i915/i915_reg.h b/drivers/gpu/drm/i915/i915_reg.h
index da35bb2db26b..c4197e31962e 100644
--- a/drivers/gpu/drm/i915/i915_reg.h
+++ b/drivers/gpu/drm/i915/i915_reg.h
@@ -26,6 +26,7 @@
#define _I915_REG_H_
#include "i915_reg_defs.h"
+#include "display/intel_display_reg_defs.h"
/**
* DOC: The i915 register macro definition style guide
@@ -115,77 +116,14 @@
* #define GEN8_BAR _MMIO(0xb888)
*/
-#define DISPLAY_MMIO_BASE(dev_priv) (INTEL_INFO(dev_priv)->display.mmio_offset)
-
-/*
- * Given the first two numbers __a and __b of arbitrarily many evenly spaced
- * numbers, pick the 0-based __index'th value.
- *
- * Always prefer this over _PICK() if the numbers are evenly spaced.
- */
-#define _PICK_EVEN(__index, __a, __b) ((__a) + (__index) * ((__b) - (__a)))
-
-/*
- * Given the arbitrary numbers in varargs, pick the 0-based __index'th number.
- *
- * Always prefer _PICK_EVEN() over this if the numbers are evenly spaced.
- */
-#define _PICK(__index, ...) (((const u32 []){ __VA_ARGS__ })[__index])
-
-/*
- * Named helper wrappers around _PICK_EVEN() and _PICK().
- */
-#define _PIPE(pipe, a, b) _PICK_EVEN(pipe, a, b)
-#define _PLANE(plane, a, b) _PICK_EVEN(plane, a, b)
-#define _TRANS(tran, a, b) _PICK_EVEN(tran, a, b)
-#define _PORT(port, a, b) _PICK_EVEN(port, a, b)
-#define _PLL(pll, a, b) _PICK_EVEN(pll, a, b)
-#define _PHY(phy, a, b) _PICK_EVEN(phy, a, b)
-
-#define _MMIO_PIPE(pipe, a, b) _MMIO(_PIPE(pipe, a, b))
-#define _MMIO_PLANE(plane, a, b) _MMIO(_PLANE(plane, a, b))
-#define _MMIO_TRANS(tran, a, b) _MMIO(_TRANS(tran, a, b))
-#define _MMIO_PORT(port, a, b) _MMIO(_PORT(port, a, b))
-#define _MMIO_PLL(pll, a, b) _MMIO(_PLL(pll, a, b))
-#define _MMIO_PHY(phy, a, b) _MMIO(_PHY(phy, a, b))
-
-#define _PHY3(phy, ...) _PICK(phy, __VA_ARGS__)
-
-#define _MMIO_PIPE3(pipe, a, b, c) _MMIO(_PICK(pipe, a, b, c))
-#define _MMIO_PORT3(pipe, a, b, c) _MMIO(_PICK(pipe, a, b, c))
-#define _MMIO_PHY3(phy, a, b, c) _MMIO(_PHY3(phy, a, b, c))
-#define _MMIO_PLL3(pll, ...) _MMIO(_PICK(pll, __VA_ARGS__))
-
-
-/*
- * Device info offset array based helpers for groups of registers with unevenly
- * spaced base offsets.
- */
-#define _MMIO_PIPE2(pipe, reg) _MMIO(INTEL_INFO(dev_priv)->display.pipe_offsets[(pipe)] - \
- INTEL_INFO(dev_priv)->display.pipe_offsets[PIPE_A] + \
- DISPLAY_MMIO_BASE(dev_priv) + (reg))
-#define _MMIO_TRANS2(tran, reg) _MMIO(INTEL_INFO(dev_priv)->display.trans_offsets[(tran)] - \
- INTEL_INFO(dev_priv)->display.trans_offsets[TRANSCODER_A] + \
- DISPLAY_MMIO_BASE(dev_priv) + (reg))
-#define _MMIO_CURSOR2(pipe, reg) _MMIO(INTEL_INFO(dev_priv)->display.cursor_offsets[(pipe)] - \
- INTEL_INFO(dev_priv)->display.cursor_offsets[PIPE_A] + \
- DISPLAY_MMIO_BASE(dev_priv) + (reg))
-
-#define __MASKED_FIELD(mask, value) ((mask) << 16 | (value))
-#define _MASKED_FIELD(mask, value) ({ \
- if (__builtin_constant_p(mask)) \
- BUILD_BUG_ON_MSG(((mask) & 0xffff0000), "Incorrect mask"); \
- if (__builtin_constant_p(value)) \
- BUILD_BUG_ON_MSG((value) & 0xffff0000, "Incorrect value"); \
- if (__builtin_constant_p(mask) && __builtin_constant_p(value)) \
- BUILD_BUG_ON_MSG((value) & ~(mask), \
- "Incorrect value for mask"); \
- __MASKED_FIELD(mask, value); })
-#define _MASKED_BIT_ENABLE(a) ({ typeof(a) _a = (a); _MASKED_FIELD(_a, _a); })
-#define _MASKED_BIT_DISABLE(a) (_MASKED_FIELD((a), 0))
+#define GU_CNTL_PROTECTED _MMIO(0x10100C)
+#define DEPRESENT REG_BIT(9)
#define GU_CNTL _MMIO(0x101010)
#define LMEM_INIT REG_BIT(7)
+#define DRIVERFLR REG_BIT(31)
+#define GU_DEBUG _MMIO(0x101018)
+#define DRIVERFLR_STATUS REG_BIT(31)
#define GEN6_STOLEN_RESERVED _MMIO(0x1082C0)
#define GEN6_STOLEN_RESERVED_ADDR_MASK (0xFFF << 20)
@@ -606,9 +544,10 @@
#define _BXT_PHY0_BASE 0x6C000
#define _BXT_PHY1_BASE 0x162000
#define _BXT_PHY2_BASE 0x163000
-#define BXT_PHY_BASE(phy) _PHY3((phy), _BXT_PHY0_BASE, \
- _BXT_PHY1_BASE, \
- _BXT_PHY2_BASE)
+#define BXT_PHY_BASE(phy) \
+ _PICK_EVEN_2RANGES(phy, 1, \
+ _BXT_PHY0_BASE, _BXT_PHY0_BASE, \
+ _BXT_PHY1_BASE, _BXT_PHY2_BASE)
#define _BXT_PHY(phy, reg) \
_MMIO(BXT_PHY_BASE(phy) - _BXT_PHY0_BASE + (reg))
@@ -631,13 +570,14 @@
#define BXT_PHY_CTL(port) _MMIO_PORT(port, _BXT_PHY_CTL_DDI_A, \
_BXT_PHY_CTL_DDI_B)
-#define _PHY_CTL_FAMILY_EDP 0x64C80
#define _PHY_CTL_FAMILY_DDI 0x64C90
+#define _PHY_CTL_FAMILY_EDP 0x64C80
#define _PHY_CTL_FAMILY_DDI_C 0x64CA0
#define COMMON_RESET_DIS (1 << 31)
-#define BXT_PHY_CTL_FAMILY(phy) _MMIO_PHY3((phy), _PHY_CTL_FAMILY_DDI, \
- _PHY_CTL_FAMILY_EDP, \
- _PHY_CTL_FAMILY_DDI_C)
+#define BXT_PHY_CTL_FAMILY(phy) \
+ _MMIO(_PICK_EVEN_2RANGES(phy, 1, \
+ _PHY_CTL_FAMILY_DDI, _PHY_CTL_FAMILY_DDI, \
+ _PHY_CTL_FAMILY_EDP, _PHY_CTL_FAMILY_DDI_C))
/* BXT PHY PLL registers */
#define _PORT_PLL_A 0x46074
@@ -970,6 +910,7 @@
#define GEN11_VEBOX2_RING_BASE 0x1d8000
#define XEHP_VEBOX3_RING_BASE 0x1e8000
#define XEHP_VEBOX4_RING_BASE 0x1f8000
+#define MTL_GSC_RING_BASE 0x11a000
#define GEN12_COMPUTE0_RING_BASE 0x1a000
#define GEN12_COMPUTE1_RING_BASE 0x1c000
#define GEN12_COMPUTE2_RING_BASE 0x1e000
@@ -987,8 +928,18 @@
#define DG1_GSC_HECI2_BASE 0x00259000
#define DG2_GSC_HECI1_BASE 0x00373000
#define DG2_GSC_HECI2_BASE 0x00374000
+#define MTL_GSC_HECI1_BASE 0x00116000
+#define MTL_GSC_HECI2_BASE 0x00117000
+#define HECI_H_CSR(base) _MMIO((base) + 0x4)
+#define HECI_H_CSR_IE REG_BIT(0)
+#define HECI_H_CSR_IS REG_BIT(1)
+#define HECI_H_CSR_IG REG_BIT(2)
+#define HECI_H_CSR_RDY REG_BIT(3)
+#define HECI_H_CSR_RST REG_BIT(4)
+#define HECI_H_GS1(base) _MMIO((base) + 0xc4c)
+#define HECI_H_GS1_ER_PREP REG_BIT(0)
#define HSW_GTT_CACHE_EN _MMIO(0x4024)
#define GTT_CACHE_EN_ALL 0xF0007FFF
@@ -1102,9 +1053,11 @@
#define _MBUS_ABOX0_CTL 0x45038
#define _MBUS_ABOX1_CTL 0x45048
#define _MBUS_ABOX2_CTL 0x4504C
-#define MBUS_ABOX_CTL(x) _MMIO(_PICK(x, _MBUS_ABOX0_CTL, \
- _MBUS_ABOX1_CTL, \
- _MBUS_ABOX2_CTL))
+#define MBUS_ABOX_CTL(x) \
+ _MMIO(_PICK_EVEN_2RANGES(x, 2, \
+ _MBUS_ABOX0_CTL, _MBUS_ABOX1_CTL, \
+ _MBUS_ABOX2_CTL, _MBUS_ABOX2_CTL))
+
#define MBUS_ABOX_BW_CREDIT_MASK (3 << 20)
#define MBUS_ABOX_BW_CREDIT(x) ((x) << 20)
#define MBUS_ABOX_B_CREDIT_MASK (0xF << 16)
@@ -1114,44 +1067,6 @@
#define MBUS_ABOX_BT_CREDIT_POOL1_MASK (0x1F << 0)
#define MBUS_ABOX_BT_CREDIT_POOL1(x) ((x) << 0)
-#define _PIPEA_MBUS_DBOX_CTL 0x7003C
-#define _PIPEB_MBUS_DBOX_CTL 0x7103C
-#define PIPE_MBUS_DBOX_CTL(pipe) _MMIO_PIPE(pipe, _PIPEA_MBUS_DBOX_CTL, \
- _PIPEB_MBUS_DBOX_CTL)
-#define MBUS_DBOX_B2B_TRANSACTIONS_MAX_MASK REG_GENMASK(24, 20) /* tgl+ */
-#define MBUS_DBOX_B2B_TRANSACTIONS_MAX(x) REG_FIELD_PREP(MBUS_DBOX_B2B_TRANSACTIONS_MAX_MASK, x)
-#define MBUS_DBOX_B2B_TRANSACTIONS_DELAY_MASK REG_GENMASK(19, 17) /* tgl+ */
-#define MBUS_DBOX_B2B_TRANSACTIONS_DELAY(x) REG_FIELD_PREP(MBUS_DBOX_B2B_TRANSACTIONS_DELAY_MASK, x)
-#define MBUS_DBOX_REGULATE_B2B_TRANSACTIONS_EN REG_BIT(16) /* tgl+ */
-#define MBUS_DBOX_BW_CREDIT_MASK REG_GENMASK(15, 14)
-#define MBUS_DBOX_BW_CREDIT(x) REG_FIELD_PREP(MBUS_DBOX_BW_CREDIT_MASK, x)
-#define MBUS_DBOX_BW_4CREDITS_MTL REG_FIELD_PREP(MBUS_DBOX_BW_CREDIT_MASK, 0x2)
-#define MBUS_DBOX_BW_8CREDITS_MTL REG_FIELD_PREP(MBUS_DBOX_BW_CREDIT_MASK, 0x3)
-#define MBUS_DBOX_B_CREDIT_MASK REG_GENMASK(12, 8)
-#define MBUS_DBOX_B_CREDIT(x) REG_FIELD_PREP(MBUS_DBOX_B_CREDIT_MASK, x)
-#define MBUS_DBOX_I_CREDIT_MASK REG_GENMASK(7, 5)
-#define MBUS_DBOX_I_CREDIT(x) REG_FIELD_PREP(MBUS_DBOX_I_CREDIT_MASK, x)
-#define MBUS_DBOX_A_CREDIT_MASK REG_GENMASK(3, 0)
-#define MBUS_DBOX_A_CREDIT(x) REG_FIELD_PREP(MBUS_DBOX_A_CREDIT_MASK, x)
-
-#define MBUS_UBOX_CTL _MMIO(0x4503C)
-#define MBUS_BBOX_CTL_S1 _MMIO(0x45040)
-#define MBUS_BBOX_CTL_S2 _MMIO(0x45044)
-
-#define MBUS_CTL _MMIO(0x4438C)
-#define MBUS_JOIN REG_BIT(31)
-#define MBUS_HASHING_MODE_MASK REG_BIT(30)
-#define MBUS_HASHING_MODE_2x2 REG_FIELD_PREP(MBUS_HASHING_MODE_MASK, 0)
-#define MBUS_HASHING_MODE_1x4 REG_FIELD_PREP(MBUS_HASHING_MODE_MASK, 1)
-#define MBUS_JOIN_PIPE_SELECT_MASK REG_GENMASK(28, 26)
-#define MBUS_JOIN_PIPE_SELECT(pipe) REG_FIELD_PREP(MBUS_JOIN_PIPE_SELECT_MASK, pipe)
-#define MBUS_JOIN_PIPE_SELECT_NONE MBUS_JOIN_PIPE_SELECT(7)
-
-#define HDPORT_STATE _MMIO(0x45050)
-#define HDPORT_DPLL_USED_MASK REG_GENMASK(15, 12)
-#define HDPORT_DDI_USED(phy) REG_BIT(2 * (phy) + 1)
-#define HDPORT_ENABLED REG_BIT(0)
-
/* Make render/texture TLB fetches lower priorty than associated data
* fetches. This is not turned on by default
*/
@@ -1459,7 +1374,8 @@
#define IVB_FBC_RT_BASE_UPPER _MMIO(0x7024)
#define IPS_CTL _MMIO(0x43408)
-#define IPS_ENABLE (1 << 31)
+#define IPS_ENABLE REG_BIT(31)
+#define IPS_FALSE_COLOR REG_BIT(4)
#define MSG_FBC_REND_STATE(fbc_id) _MMIO_PIPE((fbc_id), 0x50380, 0x50384)
#define FBC_REND_NUKE REG_BIT(2)
@@ -1781,13 +1697,29 @@
#define _PALETTE_A 0xa000
#define _PALETTE_B 0xa800
#define _CHV_PALETTE_C 0xc000
-#define PALETTE_RED_MASK REG_GENMASK(23, 16)
-#define PALETTE_GREEN_MASK REG_GENMASK(15, 8)
-#define PALETTE_BLUE_MASK REG_GENMASK(7, 0)
-#define PALETTE(pipe, i) _MMIO(DISPLAY_MMIO_BASE(dev_priv) + \
- _PICK((pipe), _PALETTE_A, \
- _PALETTE_B, _CHV_PALETTE_C) + \
- (i) * 4)
+/* 8bit mode / i965+ 10.6 interpolated mode ldw/udw */
+#define PALETTE_RED_MASK REG_GENMASK(23, 16)
+#define PALETTE_GREEN_MASK REG_GENMASK(15, 8)
+#define PALETTE_BLUE_MASK REG_GENMASK(7, 0)
+/* pre-i965 10bit interpolated mode ldw */
+#define PALETTE_10BIT_RED_LDW_MASK REG_GENMASK(23, 16)
+#define PALETTE_10BIT_GREEN_LDW_MASK REG_GENMASK(15, 8)
+#define PALETTE_10BIT_BLUE_LDW_MASK REG_GENMASK(7, 0)
+/* pre-i965 10bit interpolated mode udw */
+#define PALETTE_10BIT_RED_EXP_MASK REG_GENMASK(23, 22)
+#define PALETTE_10BIT_RED_MANT_MASK REG_GENMASK(21, 18)
+#define PALETTE_10BIT_RED_UDW_MASK REG_GENMASK(17, 16)
+#define PALETTE_10BIT_GREEN_EXP_MASK REG_GENMASK(15, 14)
+#define PALETTE_10BIT_GREEN_MANT_MASK REG_GENMASK(13, 10)
+#define PALETTE_10BIT_GREEN_UDW_MASK REG_GENMASK(9, 8)
+#define PALETTE_10BIT_BLUE_EXP_MASK REG_GENMASK(7, 6)
+#define PALETTE_10BIT_BLUE_MANT_MASK REG_GENMASK(5, 2)
+#define PALETTE_10BIT_BLUE_UDW_MASK REG_GENMASK(1, 0)
+#define PALETTE(pipe, i) _MMIO(DISPLAY_MMIO_BASE(dev_priv) + \
+ _PICK_EVEN_2RANGES(pipe, 2, \
+ _PALETTE_A, _PALETTE_B, \
+ _CHV_PALETTE_C, _CHV_PALETTE_C) + \
+ (i) * 4)
#define PEG_BAND_GAP_DATA _MMIO(0x14d68)
@@ -1796,6 +1728,15 @@
#define XEHPSDV_RP_STATE_CAP _MMIO(0x250014)
#define PVC_RP_STATE_CAP _MMIO(0x281014)
+#define MTL_RP_STATE_CAP _MMIO(0x138000)
+#define MTL_MEDIAP_STATE_CAP _MMIO(0x138020)
+#define MTL_RP0_CAP_MASK REG_GENMASK(8, 0)
+#define MTL_RPN_CAP_MASK REG_GENMASK(24, 16)
+
+#define MTL_GT_RPE_FREQUENCY _MMIO(0x13800c)
+#define MTL_MPE_FREQUENCY _MMIO(0x13802c)
+#define MTL_RPE_MASK REG_GENMASK(8, 0)
+
#define GT0_PERF_LIMIT_REASONS _MMIO(0x1381a8)
#define GT0_PERF_LIMIT_REASONS_MASK 0xde3
#define PROCHOT_MASK REG_BIT(0)
@@ -1806,6 +1747,8 @@
#define POWER_LIMIT_4_MASK REG_BIT(8)
#define POWER_LIMIT_1_MASK REG_BIT(10)
#define POWER_LIMIT_2_MASK REG_BIT(11)
+#define GT0_PERF_LIMIT_REASONS_LOG_MASK REG_GENMASK(31, 16)
+#define MTL_MEDIA_PERF_LIMIT_REASONS _MMIO(0x138030)
#define CHV_CLK_CTL1 _MMIO(0x101100)
#define VLV_CLK_CTL2 _MMIO(0x101104)
@@ -1829,9 +1772,11 @@
* GEN9 clock gating regs
*/
#define GEN9_CLKGATE_DIS_0 _MMIO(0x46530)
-#define DARBF_GATING_DIS (1 << 27)
-#define PWM2_GATING_DIS (1 << 14)
-#define PWM1_GATING_DIS (1 << 13)
+#define DARBF_GATING_DIS REG_BIT(27)
+#define MTL_PIPEDMC_GATING_DIS_A REG_BIT(15)
+#define MTL_PIPEDMC_GATING_DIS_B REG_BIT(14)
+#define PWM2_GATING_DIS REG_BIT(14)
+#define PWM1_GATING_DIS REG_BIT(13)
#define GEN9_CLKGATE_DIS_3 _MMIO(0x46538)
#define TGL_VRH_GATING_DIS REG_BIT(31)
@@ -1949,48 +1894,72 @@
#define PIPE_CRC_RES_RES1_I915(pipe) _MMIO_TRANS2(pipe, _PIPE_CRC_RES_RES1_A_I915)
#define PIPE_CRC_RES_RES2_G4X(pipe) _MMIO_TRANS2(pipe, _PIPE_CRC_RES_RES2_A_G4X)
-/* Pipe A timing regs */
-#define _HTOTAL_A 0x60000
-#define _HBLANK_A 0x60004
-#define _HSYNC_A 0x60008
-#define _VTOTAL_A 0x6000c
-#define _VBLANK_A 0x60010
-#define _VSYNC_A 0x60014
-#define _EXITLINE_A 0x60018
-#define _PIPEASRC 0x6001c
+/* Pipe/transcoder A timing regs */
+#define _TRANS_HTOTAL_A 0x60000
+#define HTOTAL_MASK REG_GENMASK(31, 16)
+#define HTOTAL(htotal) REG_FIELD_PREP(HTOTAL_MASK, (htotal))
+#define HACTIVE_MASK REG_GENMASK(15, 0)
+#define HACTIVE(hdisplay) REG_FIELD_PREP(HACTIVE_MASK, (hdisplay))
+#define _TRANS_HBLANK_A 0x60004
+#define HBLANK_END_MASK REG_GENMASK(31, 16)
+#define HBLANK_END(hblank_end) REG_FIELD_PREP(HBLANK_END_MASK, (hblank_end))
+#define HBLANK_START_MASK REG_GENMASK(15, 0)
+#define HBLANK_START(hblank_start) REG_FIELD_PREP(HBLANK_START_MASK, (hblank_start))
+#define _TRANS_HSYNC_A 0x60008
+#define HSYNC_END_MASK REG_GENMASK(31, 16)
+#define HSYNC_END(hsync_end) REG_FIELD_PREP(HSYNC_END_MASK, (hsync_end))
+#define HSYNC_START_MASK REG_GENMASK(15, 0)
+#define HSYNC_START(hsync_start) REG_FIELD_PREP(HSYNC_START_MASK, (hsync_start))
+#define _TRANS_VTOTAL_A 0x6000c
+#define VTOTAL_MASK REG_GENMASK(31, 16)
+#define VTOTAL(vtotal) REG_FIELD_PREP(VTOTAL_MASK, (vtotal))
+#define VACTIVE_MASK REG_GENMASK(15, 0)
+#define VACTIVE(vdisplay) REG_FIELD_PREP(VACTIVE_MASK, (vdisplay))
+#define _TRANS_VBLANK_A 0x60010
+#define VBLANK_END_MASK REG_GENMASK(31, 16)
+#define VBLANK_END(vblank_end) REG_FIELD_PREP(VBLANK_END_MASK, (vblank_end))
+#define VBLANK_START_MASK REG_GENMASK(15, 0)
+#define VBLANK_START(vblank_start) REG_FIELD_PREP(VBLANK_START_MASK, (vblank_start))
+#define _TRANS_VSYNC_A 0x60014
+#define VSYNC_END_MASK REG_GENMASK(31, 16)
+#define VSYNC_END(vsync_end) REG_FIELD_PREP(VSYNC_END_MASK, (vsync_end))
+#define VSYNC_START_MASK REG_GENMASK(15, 0)
+#define VSYNC_START(vsync_start) REG_FIELD_PREP(VSYNC_START_MASK, (vsync_start))
+#define _TRANS_EXITLINE_A 0x60018
+#define _PIPEASRC 0x6001c
#define PIPESRC_WIDTH_MASK REG_GENMASK(31, 16)
#define PIPESRC_WIDTH(w) REG_FIELD_PREP(PIPESRC_WIDTH_MASK, (w))
#define PIPESRC_HEIGHT_MASK REG_GENMASK(15, 0)
#define PIPESRC_HEIGHT(h) REG_FIELD_PREP(PIPESRC_HEIGHT_MASK, (h))
-#define _BCLRPAT_A 0x60020
-#define _VSYNCSHIFT_A 0x60028
-#define _PIPE_MULT_A 0x6002c
-
-/* Pipe B timing regs */
-#define _HTOTAL_B 0x61000
-#define _HBLANK_B 0x61004
-#define _HSYNC_B 0x61008
-#define _VTOTAL_B 0x6100c
-#define _VBLANK_B 0x61010
-#define _VSYNC_B 0x61014
-#define _PIPEBSRC 0x6101c
-#define _BCLRPAT_B 0x61020
-#define _VSYNCSHIFT_B 0x61028
-#define _PIPE_MULT_B 0x6102c
+#define _BCLRPAT_A 0x60020
+#define _TRANS_VSYNCSHIFT_A 0x60028
+#define _TRANS_MULT_A 0x6002c
+
+/* Pipe/transcoder B timing regs */
+#define _TRANS_HTOTAL_B 0x61000
+#define _TRANS_HBLANK_B 0x61004
+#define _TRANS_HSYNC_B 0x61008
+#define _TRANS_VTOTAL_B 0x6100c
+#define _TRANS_VBLANK_B 0x61010
+#define _TRANS_VSYNC_B 0x61014
+#define _PIPEBSRC 0x6101c
+#define _BCLRPAT_B 0x61020
+#define _TRANS_VSYNCSHIFT_B 0x61028
+#define _TRANS_MULT_B 0x6102c
/* DSI 0 timing regs */
-#define _HTOTAL_DSI0 0x6b000
-#define _HSYNC_DSI0 0x6b008
-#define _VTOTAL_DSI0 0x6b00c
-#define _VSYNC_DSI0 0x6b014
-#define _VSYNCSHIFT_DSI0 0x6b028
+#define _TRANS_HTOTAL_DSI0 0x6b000
+#define _TRANS_HSYNC_DSI0 0x6b008
+#define _TRANS_VTOTAL_DSI0 0x6b00c
+#define _TRANS_VSYNC_DSI0 0x6b014
+#define _TRANS_VSYNCSHIFT_DSI0 0x6b028
/* DSI 1 timing regs */
-#define _HTOTAL_DSI1 0x6b800
-#define _HSYNC_DSI1 0x6b808
-#define _VTOTAL_DSI1 0x6b80c
-#define _VSYNC_DSI1 0x6b814
-#define _VSYNCSHIFT_DSI1 0x6b828
+#define _TRANS_HTOTAL_DSI1 0x6b800
+#define _TRANS_HSYNC_DSI1 0x6b808
+#define _TRANS_VTOTAL_DSI1 0x6b80c
+#define _TRANS_VSYNC_DSI1 0x6b814
+#define _TRANS_VSYNCSHIFT_DSI1 0x6b828
#define TRANSCODER_A_OFFSET 0x60000
#define TRANSCODER_B_OFFSET 0x61000
@@ -2001,21 +1970,16 @@
#define TRANSCODER_DSI0_OFFSET 0x6b000
#define TRANSCODER_DSI1_OFFSET 0x6b800
-#define HTOTAL(trans) _MMIO_TRANS2(trans, _HTOTAL_A)
-#define HBLANK(trans) _MMIO_TRANS2(trans, _HBLANK_A)
-#define HSYNC(trans) _MMIO_TRANS2(trans, _HSYNC_A)
-#define VTOTAL(trans) _MMIO_TRANS2(trans, _VTOTAL_A)
-#define VBLANK(trans) _MMIO_TRANS2(trans, _VBLANK_A)
-#define VSYNC(trans) _MMIO_TRANS2(trans, _VSYNC_A)
-#define BCLRPAT(trans) _MMIO_TRANS2(trans, _BCLRPAT_A)
-#define VSYNCSHIFT(trans) _MMIO_TRANS2(trans, _VSYNCSHIFT_A)
-#define PIPESRC(trans) _MMIO_TRANS2(trans, _PIPEASRC)
-#define PIPE_MULT(trans) _MMIO_TRANS2(trans, _PIPE_MULT_A)
-
-#define EXITLINE(trans) _MMIO_TRANS2(trans, _EXITLINE_A)
-#define EXITLINE_ENABLE REG_BIT(31)
-#define EXITLINE_MASK REG_GENMASK(12, 0)
-#define EXITLINE_SHIFT 0
+#define TRANS_HTOTAL(trans) _MMIO_TRANS2((trans), _TRANS_HTOTAL_A)
+#define TRANS_HBLANK(trans) _MMIO_TRANS2((trans), _TRANS_HBLANK_A)
+#define TRANS_HSYNC(trans) _MMIO_TRANS2((trans), _TRANS_HSYNC_A)
+#define TRANS_VTOTAL(trans) _MMIO_TRANS2((trans), _TRANS_VTOTAL_A)
+#define TRANS_VBLANK(trans) _MMIO_TRANS2((trans), _TRANS_VBLANK_A)
+#define TRANS_VSYNC(trans) _MMIO_TRANS2((trans), _TRANS_VSYNC_A)
+#define BCLRPAT(trans) _MMIO_TRANS2((trans), _BCLRPAT_A)
+#define TRANS_VSYNCSHIFT(trans) _MMIO_TRANS2((trans), _TRANS_VSYNCSHIFT_A)
+#define PIPESRC(pipe) _MMIO_TRANS2((pipe), _PIPEASRC)
+#define TRANS_MULT(trans) _MMIO_TRANS2((trans), _TRANS_MULT_A)
/* VRR registers */
#define _TRANS_VRR_CTL_A 0x60420
@@ -2110,309 +2074,6 @@
#define TRANS_PUSH_EN REG_BIT(31)
#define TRANS_PUSH_SEND REG_BIT(30)
-/*
- * HSW+ eDP PSR registers
- *
- * HSW PSR registers are relative to DDIA(_DDI_BUF_CTL_A + 0x800) with just one
- * instance of it
- */
-#define _SRD_CTL_A 0x60800
-#define _SRD_CTL_EDP 0x6f800
-#define EDP_PSR_CTL(tran) _MMIO_TRANS2(tran, _SRD_CTL_A)
-#define EDP_PSR_ENABLE (1 << 31)
-#define BDW_PSR_SINGLE_FRAME (1 << 30)
-#define EDP_PSR_RESTORE_PSR_ACTIVE_CTX_MASK (1 << 29) /* SW can't modify */
-#define EDP_PSR_LINK_STANDBY (1 << 27)
-#define EDP_PSR_MIN_LINK_ENTRY_TIME_MASK (3 << 25)
-#define EDP_PSR_MIN_LINK_ENTRY_TIME_8_LINES (0 << 25)
-#define EDP_PSR_MIN_LINK_ENTRY_TIME_4_LINES (1 << 25)
-#define EDP_PSR_MIN_LINK_ENTRY_TIME_2_LINES (2 << 25)
-#define EDP_PSR_MIN_LINK_ENTRY_TIME_0_LINES (3 << 25)
-#define EDP_PSR_MAX_SLEEP_TIME_SHIFT 20
-#define EDP_PSR_SKIP_AUX_EXIT (1 << 12)
-#define EDP_PSR_TP1_TP2_SEL (0 << 11)
-#define EDP_PSR_TP1_TP3_SEL (1 << 11)
-#define EDP_PSR_CRC_ENABLE (1 << 10) /* BDW+ */
-#define EDP_PSR_TP2_TP3_TIME_500us (0 << 8)
-#define EDP_PSR_TP2_TP3_TIME_100us (1 << 8)
-#define EDP_PSR_TP2_TP3_TIME_2500us (2 << 8)
-#define EDP_PSR_TP2_TP3_TIME_0us (3 << 8)
-#define EDP_PSR_TP4_TIME_0US (3 << 6) /* ICL+ */
-#define EDP_PSR_TP1_TIME_500us (0 << 4)
-#define EDP_PSR_TP1_TIME_100us (1 << 4)
-#define EDP_PSR_TP1_TIME_2500us (2 << 4)
-#define EDP_PSR_TP1_TIME_0us (3 << 4)
-#define EDP_PSR_IDLE_FRAME_SHIFT 0
-
-/*
- * Until TGL, IMR/IIR are fixed at 0x648xx. On TGL+ those registers are relative
- * to transcoder and bits defined for each one as if using no shift (i.e. as if
- * it was for TRANSCODER_EDP)
- */
-#define EDP_PSR_IMR _MMIO(0x64834)
-#define EDP_PSR_IIR _MMIO(0x64838)
-#define _PSR_IMR_A 0x60814
-#define _PSR_IIR_A 0x60818
-#define TRANS_PSR_IMR(tran) _MMIO_TRANS2(tran, _PSR_IMR_A)
-#define TRANS_PSR_IIR(tran) _MMIO_TRANS2(tran, _PSR_IIR_A)
-#define _EDP_PSR_TRANS_SHIFT(trans) ((trans) == TRANSCODER_EDP ? \
- 0 : ((trans) - TRANSCODER_A + 1) * 8)
-#define TGL_PSR_MASK REG_GENMASK(2, 0)
-#define TGL_PSR_ERROR REG_BIT(2)
-#define TGL_PSR_POST_EXIT REG_BIT(1)
-#define TGL_PSR_PRE_ENTRY REG_BIT(0)
-#define EDP_PSR_MASK(trans) (TGL_PSR_MASK << \
- _EDP_PSR_TRANS_SHIFT(trans))
-#define EDP_PSR_ERROR(trans) (TGL_PSR_ERROR << \
- _EDP_PSR_TRANS_SHIFT(trans))
-#define EDP_PSR_POST_EXIT(trans) (TGL_PSR_POST_EXIT << \
- _EDP_PSR_TRANS_SHIFT(trans))
-#define EDP_PSR_PRE_ENTRY(trans) (TGL_PSR_PRE_ENTRY << \
- _EDP_PSR_TRANS_SHIFT(trans))
-
-#define _SRD_AUX_DATA_A 0x60814
-#define _SRD_AUX_DATA_EDP 0x6f814
-#define EDP_PSR_AUX_DATA(tran, i) _MMIO_TRANS2(tran, _SRD_AUX_DATA_A + (i) + 4) /* 5 registers */
-
-#define _SRD_STATUS_A 0x60840
-#define _SRD_STATUS_EDP 0x6f840
-#define EDP_PSR_STATUS(tran) _MMIO_TRANS2(tran, _SRD_STATUS_A)
-#define EDP_PSR_STATUS_STATE_MASK (7 << 29)
-#define EDP_PSR_STATUS_STATE_SHIFT 29
-#define EDP_PSR_STATUS_STATE_IDLE (0 << 29)
-#define EDP_PSR_STATUS_STATE_SRDONACK (1 << 29)
-#define EDP_PSR_STATUS_STATE_SRDENT (2 << 29)
-#define EDP_PSR_STATUS_STATE_BUFOFF (3 << 29)
-#define EDP_PSR_STATUS_STATE_BUFON (4 << 29)
-#define EDP_PSR_STATUS_STATE_AUXACK (5 << 29)
-#define EDP_PSR_STATUS_STATE_SRDOFFACK (6 << 29)
-#define EDP_PSR_STATUS_LINK_MASK (3 << 26)
-#define EDP_PSR_STATUS_LINK_FULL_OFF (0 << 26)
-#define EDP_PSR_STATUS_LINK_FULL_ON (1 << 26)
-#define EDP_PSR_STATUS_LINK_STANDBY (2 << 26)
-#define EDP_PSR_STATUS_MAX_SLEEP_TIMER_SHIFT 20
-#define EDP_PSR_STATUS_MAX_SLEEP_TIMER_MASK 0x1f
-#define EDP_PSR_STATUS_COUNT_SHIFT 16
-#define EDP_PSR_STATUS_COUNT_MASK 0xf
-#define EDP_PSR_STATUS_AUX_ERROR (1 << 15)
-#define EDP_PSR_STATUS_AUX_SENDING (1 << 12)
-#define EDP_PSR_STATUS_SENDING_IDLE (1 << 9)
-#define EDP_PSR_STATUS_SENDING_TP2_TP3 (1 << 8)
-#define EDP_PSR_STATUS_SENDING_TP1 (1 << 4)
-#define EDP_PSR_STATUS_IDLE_MASK 0xf
-
-#define _SRD_PERF_CNT_A 0x60844
-#define _SRD_PERF_CNT_EDP 0x6f844
-#define EDP_PSR_PERF_CNT(tran) _MMIO_TRANS2(tran, _SRD_PERF_CNT_A)
-#define EDP_PSR_PERF_CNT_MASK 0xffffff
-
-/* PSR_MASK on SKL+ */
-#define _SRD_DEBUG_A 0x60860
-#define _SRD_DEBUG_EDP 0x6f860
-#define EDP_PSR_DEBUG(tran) _MMIO_TRANS2(tran, _SRD_DEBUG_A)
-#define EDP_PSR_DEBUG_MASK_MAX_SLEEP (1 << 28)
-#define EDP_PSR_DEBUG_MASK_LPSP (1 << 27)
-#define EDP_PSR_DEBUG_MASK_MEMUP (1 << 26)
-#define EDP_PSR_DEBUG_MASK_HPD (1 << 25)
-#define EDP_PSR_DEBUG_MASK_DISP_REG_WRITE (1 << 16) /* Reserved in ICL+ */
-#define EDP_PSR_DEBUG_EXIT_ON_PIXEL_UNDERRUN (1 << 15) /* SKL+ */
-
-#define _PSR2_CTL_A 0x60900
-#define _PSR2_CTL_EDP 0x6f900
-#define EDP_PSR2_CTL(tran) _MMIO_TRANS2(tran, _PSR2_CTL_A)
-#define EDP_PSR2_ENABLE (1 << 31)
-#define EDP_SU_TRACK_ENABLE (1 << 30) /* up to adl-p */
-#define TGL_EDP_PSR2_BLOCK_COUNT_NUM_2 (0 << 28)
-#define TGL_EDP_PSR2_BLOCK_COUNT_NUM_3 (1 << 28)
-#define EDP_Y_COORDINATE_ENABLE REG_BIT(25) /* display 10, 11 and 12 */
-#define EDP_PSR2_SU_SDP_SCANLINE REG_BIT(25) /* display 13+ */
-#define EDP_MAX_SU_DISABLE_TIME(t) ((t) << 20)
-#define EDP_MAX_SU_DISABLE_TIME_MASK (0x1f << 20)
-#define EDP_PSR2_IO_BUFFER_WAKE_MAX_LINES 8
-#define EDP_PSR2_IO_BUFFER_WAKE(lines) ((EDP_PSR2_IO_BUFFER_WAKE_MAX_LINES - (lines)) << 13)
-#define EDP_PSR2_IO_BUFFER_WAKE_MASK (3 << 13)
-#define TGL_EDP_PSR2_IO_BUFFER_WAKE_MIN_LINES 5
-#define TGL_EDP_PSR2_IO_BUFFER_WAKE_SHIFT 13
-#define TGL_EDP_PSR2_IO_BUFFER_WAKE(lines) (((lines) - TGL_EDP_PSR2_IO_BUFFER_WAKE_MIN_LINES) << TGL_EDP_PSR2_IO_BUFFER_WAKE_SHIFT)
-#define TGL_EDP_PSR2_IO_BUFFER_WAKE_MASK (7 << 13)
-#define EDP_PSR2_FAST_WAKE_MAX_LINES 8
-#define EDP_PSR2_FAST_WAKE(lines) ((EDP_PSR2_FAST_WAKE_MAX_LINES - (lines)) << 11)
-#define EDP_PSR2_FAST_WAKE_MASK (3 << 11)
-#define TGL_EDP_PSR2_FAST_WAKE_MIN_LINES 5
-#define TGL_EDP_PSR2_FAST_WAKE_MIN_SHIFT 10
-#define TGL_EDP_PSR2_FAST_WAKE(lines) (((lines) - TGL_EDP_PSR2_FAST_WAKE_MIN_LINES) << TGL_EDP_PSR2_FAST_WAKE_MIN_SHIFT)
-#define TGL_EDP_PSR2_FAST_WAKE_MASK (7 << 10)
-#define EDP_PSR2_TP2_TIME_500us (0 << 8)
-#define EDP_PSR2_TP2_TIME_100us (1 << 8)
-#define EDP_PSR2_TP2_TIME_2500us (2 << 8)
-#define EDP_PSR2_TP2_TIME_50us (3 << 8)
-#define EDP_PSR2_TP2_TIME_MASK (3 << 8)
-#define EDP_PSR2_FRAME_BEFORE_SU_SHIFT 4
-#define EDP_PSR2_FRAME_BEFORE_SU_MASK (0xf << 4)
-#define EDP_PSR2_FRAME_BEFORE_SU(a) ((a) << 4)
-#define EDP_PSR2_IDLE_FRAME_MASK 0xf
-#define EDP_PSR2_IDLE_FRAME_SHIFT 0
-
-#define _PSR_EVENT_TRANS_A 0x60848
-#define _PSR_EVENT_TRANS_B 0x61848
-#define _PSR_EVENT_TRANS_C 0x62848
-#define _PSR_EVENT_TRANS_D 0x63848
-#define _PSR_EVENT_TRANS_EDP 0x6f848
-#define PSR_EVENT(tran) _MMIO_TRANS2(tran, _PSR_EVENT_TRANS_A)
-#define PSR_EVENT_PSR2_WD_TIMER_EXPIRE (1 << 17)
-#define PSR_EVENT_PSR2_DISABLED (1 << 16)
-#define PSR_EVENT_SU_DIRTY_FIFO_UNDERRUN (1 << 15)
-#define PSR_EVENT_SU_CRC_FIFO_UNDERRUN (1 << 14)
-#define PSR_EVENT_GRAPHICS_RESET (1 << 12)
-#define PSR_EVENT_PCH_INTERRUPT (1 << 11)
-#define PSR_EVENT_MEMORY_UP (1 << 10)
-#define PSR_EVENT_FRONT_BUFFER_MODIFY (1 << 9)
-#define PSR_EVENT_WD_TIMER_EXPIRE (1 << 8)
-#define PSR_EVENT_PIPE_REGISTERS_UPDATE (1 << 6)
-#define PSR_EVENT_REGISTER_UPDATE (1 << 5) /* Reserved in ICL+ */
-#define PSR_EVENT_HDCP_ENABLE (1 << 4)
-#define PSR_EVENT_KVMR_SESSION_ENABLE (1 << 3)
-#define PSR_EVENT_VBI_ENABLE (1 << 2)
-#define PSR_EVENT_LPSP_MODE_EXIT (1 << 1)
-#define PSR_EVENT_PSR_DISABLE (1 << 0)
-
-#define _PSR2_STATUS_A 0x60940
-#define _PSR2_STATUS_EDP 0x6f940
-#define EDP_PSR2_STATUS(tran) _MMIO_TRANS2(tran, _PSR2_STATUS_A)
-#define EDP_PSR2_STATUS_STATE_MASK REG_GENMASK(31, 28)
-#define EDP_PSR2_STATUS_STATE_DEEP_SLEEP REG_FIELD_PREP(EDP_PSR2_STATUS_STATE_MASK, 0x8)
-
-#define _PSR2_SU_STATUS_A 0x60914
-#define _PSR2_SU_STATUS_EDP 0x6f914
-#define _PSR2_SU_STATUS(tran, index) _MMIO_TRANS2(tran, _PSR2_SU_STATUS_A + (index) * 4)
-#define PSR2_SU_STATUS(tran, frame) (_PSR2_SU_STATUS(tran, (frame) / 3))
-#define PSR2_SU_STATUS_SHIFT(frame) (((frame) % 3) * 10)
-#define PSR2_SU_STATUS_MASK(frame) (0x3ff << PSR2_SU_STATUS_SHIFT(frame))
-#define PSR2_SU_STATUS_FRAMES 8
-
-#define _PSR2_MAN_TRK_CTL_A 0x60910
-#define _PSR2_MAN_TRK_CTL_EDP 0x6f910
-#define PSR2_MAN_TRK_CTL(tran) _MMIO_TRANS2(tran, _PSR2_MAN_TRK_CTL_A)
-#define PSR2_MAN_TRK_CTL_ENABLE REG_BIT(31)
-#define PSR2_MAN_TRK_CTL_SU_REGION_START_ADDR_MASK REG_GENMASK(30, 21)
-#define PSR2_MAN_TRK_CTL_SU_REGION_START_ADDR(val) REG_FIELD_PREP(PSR2_MAN_TRK_CTL_SU_REGION_START_ADDR_MASK, val)
-#define PSR2_MAN_TRK_CTL_SU_REGION_END_ADDR_MASK REG_GENMASK(20, 11)
-#define PSR2_MAN_TRK_CTL_SU_REGION_END_ADDR(val) REG_FIELD_PREP(PSR2_MAN_TRK_CTL_SU_REGION_END_ADDR_MASK, val)
-#define PSR2_MAN_TRK_CTL_SF_SINGLE_FULL_FRAME REG_BIT(3)
-#define PSR2_MAN_TRK_CTL_SF_CONTINUOS_FULL_FRAME REG_BIT(2)
-#define PSR2_MAN_TRK_CTL_SF_PARTIAL_FRAME_UPDATE REG_BIT(1)
-#define ADLP_PSR2_MAN_TRK_CTL_SU_REGION_START_ADDR_MASK REG_GENMASK(28, 16)
-#define ADLP_PSR2_MAN_TRK_CTL_SU_REGION_START_ADDR(val) REG_FIELD_PREP(ADLP_PSR2_MAN_TRK_CTL_SU_REGION_START_ADDR_MASK, val)
-#define ADLP_PSR2_MAN_TRK_CTL_SU_REGION_END_ADDR_MASK REG_GENMASK(12, 0)
-#define ADLP_PSR2_MAN_TRK_CTL_SU_REGION_END_ADDR(val) REG_FIELD_PREP(ADLP_PSR2_MAN_TRK_CTL_SU_REGION_END_ADDR_MASK, val)
-#define ADLP_PSR2_MAN_TRK_CTL_SF_PARTIAL_FRAME_UPDATE REG_BIT(31)
-#define ADLP_PSR2_MAN_TRK_CTL_SF_SINGLE_FULL_FRAME REG_BIT(14)
-#define ADLP_PSR2_MAN_TRK_CTL_SF_CONTINUOS_FULL_FRAME REG_BIT(13)
-
-/* Icelake DSC Rate Control Range Parameter Registers */
-#define DSCA_RC_RANGE_PARAMETERS_0 _MMIO(0x6B240)
-#define DSCA_RC_RANGE_PARAMETERS_0_UDW _MMIO(0x6B240 + 4)
-#define DSCC_RC_RANGE_PARAMETERS_0 _MMIO(0x6BA40)
-#define DSCC_RC_RANGE_PARAMETERS_0_UDW _MMIO(0x6BA40 + 4)
-#define _ICL_DSC0_RC_RANGE_PARAMETERS_0_PB (0x78208)
-#define _ICL_DSC0_RC_RANGE_PARAMETERS_0_UDW_PB (0x78208 + 4)
-#define _ICL_DSC1_RC_RANGE_PARAMETERS_0_PB (0x78308)
-#define _ICL_DSC1_RC_RANGE_PARAMETERS_0_UDW_PB (0x78308 + 4)
-#define _ICL_DSC0_RC_RANGE_PARAMETERS_0_PC (0x78408)
-#define _ICL_DSC0_RC_RANGE_PARAMETERS_0_UDW_PC (0x78408 + 4)
-#define _ICL_DSC1_RC_RANGE_PARAMETERS_0_PC (0x78508)
-#define _ICL_DSC1_RC_RANGE_PARAMETERS_0_UDW_PC (0x78508 + 4)
-#define ICL_DSC0_RC_RANGE_PARAMETERS_0(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC0_RC_RANGE_PARAMETERS_0_PB, \
- _ICL_DSC0_RC_RANGE_PARAMETERS_0_PC)
-#define ICL_DSC0_RC_RANGE_PARAMETERS_0_UDW(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC0_RC_RANGE_PARAMETERS_0_UDW_PB, \
- _ICL_DSC0_RC_RANGE_PARAMETERS_0_UDW_PC)
-#define ICL_DSC1_RC_RANGE_PARAMETERS_0(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC1_RC_RANGE_PARAMETERS_0_PB, \
- _ICL_DSC1_RC_RANGE_PARAMETERS_0_PC)
-#define ICL_DSC1_RC_RANGE_PARAMETERS_0_UDW(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC1_RC_RANGE_PARAMETERS_0_UDW_PB, \
- _ICL_DSC1_RC_RANGE_PARAMETERS_0_UDW_PC)
-#define RC_BPG_OFFSET_SHIFT 10
-#define RC_MAX_QP_SHIFT 5
-#define RC_MIN_QP_SHIFT 0
-
-#define DSCA_RC_RANGE_PARAMETERS_1 _MMIO(0x6B248)
-#define DSCA_RC_RANGE_PARAMETERS_1_UDW _MMIO(0x6B248 + 4)
-#define DSCC_RC_RANGE_PARAMETERS_1 _MMIO(0x6BA48)
-#define DSCC_RC_RANGE_PARAMETERS_1_UDW _MMIO(0x6BA48 + 4)
-#define _ICL_DSC0_RC_RANGE_PARAMETERS_1_PB (0x78210)
-#define _ICL_DSC0_RC_RANGE_PARAMETERS_1_UDW_PB (0x78210 + 4)
-#define _ICL_DSC1_RC_RANGE_PARAMETERS_1_PB (0x78310)
-#define _ICL_DSC1_RC_RANGE_PARAMETERS_1_UDW_PB (0x78310 + 4)
-#define _ICL_DSC0_RC_RANGE_PARAMETERS_1_PC (0x78410)
-#define _ICL_DSC0_RC_RANGE_PARAMETERS_1_UDW_PC (0x78410 + 4)
-#define _ICL_DSC1_RC_RANGE_PARAMETERS_1_PC (0x78510)
-#define _ICL_DSC1_RC_RANGE_PARAMETERS_1_UDW_PC (0x78510 + 4)
-#define ICL_DSC0_RC_RANGE_PARAMETERS_1(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC0_RC_RANGE_PARAMETERS_1_PB, \
- _ICL_DSC0_RC_RANGE_PARAMETERS_1_PC)
-#define ICL_DSC0_RC_RANGE_PARAMETERS_1_UDW(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC0_RC_RANGE_PARAMETERS_1_UDW_PB, \
- _ICL_DSC0_RC_RANGE_PARAMETERS_1_UDW_PC)
-#define ICL_DSC1_RC_RANGE_PARAMETERS_1(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC1_RC_RANGE_PARAMETERS_1_PB, \
- _ICL_DSC1_RC_RANGE_PARAMETERS_1_PC)
-#define ICL_DSC1_RC_RANGE_PARAMETERS_1_UDW(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC1_RC_RANGE_PARAMETERS_1_UDW_PB, \
- _ICL_DSC1_RC_RANGE_PARAMETERS_1_UDW_PC)
-
-#define DSCA_RC_RANGE_PARAMETERS_2 _MMIO(0x6B250)
-#define DSCA_RC_RANGE_PARAMETERS_2_UDW _MMIO(0x6B250 + 4)
-#define DSCC_RC_RANGE_PARAMETERS_2 _MMIO(0x6BA50)
-#define DSCC_RC_RANGE_PARAMETERS_2_UDW _MMIO(0x6BA50 + 4)
-#define _ICL_DSC0_RC_RANGE_PARAMETERS_2_PB (0x78218)
-#define _ICL_DSC0_RC_RANGE_PARAMETERS_2_UDW_PB (0x78218 + 4)
-#define _ICL_DSC1_RC_RANGE_PARAMETERS_2_PB (0x78318)
-#define _ICL_DSC1_RC_RANGE_PARAMETERS_2_UDW_PB (0x78318 + 4)
-#define _ICL_DSC0_RC_RANGE_PARAMETERS_2_PC (0x78418)
-#define _ICL_DSC0_RC_RANGE_PARAMETERS_2_UDW_PC (0x78418 + 4)
-#define _ICL_DSC1_RC_RANGE_PARAMETERS_2_PC (0x78518)
-#define _ICL_DSC1_RC_RANGE_PARAMETERS_2_UDW_PC (0x78518 + 4)
-#define ICL_DSC0_RC_RANGE_PARAMETERS_2(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC0_RC_RANGE_PARAMETERS_2_PB, \
- _ICL_DSC0_RC_RANGE_PARAMETERS_2_PC)
-#define ICL_DSC0_RC_RANGE_PARAMETERS_2_UDW(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC0_RC_RANGE_PARAMETERS_2_UDW_PB, \
- _ICL_DSC0_RC_RANGE_PARAMETERS_2_UDW_PC)
-#define ICL_DSC1_RC_RANGE_PARAMETERS_2(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC1_RC_RANGE_PARAMETERS_2_PB, \
- _ICL_DSC1_RC_RANGE_PARAMETERS_2_PC)
-#define ICL_DSC1_RC_RANGE_PARAMETERS_2_UDW(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC1_RC_RANGE_PARAMETERS_2_UDW_PB, \
- _ICL_DSC1_RC_RANGE_PARAMETERS_2_UDW_PC)
-
-#define DSCA_RC_RANGE_PARAMETERS_3 _MMIO(0x6B258)
-#define DSCA_RC_RANGE_PARAMETERS_3_UDW _MMIO(0x6B258 + 4)
-#define DSCC_RC_RANGE_PARAMETERS_3 _MMIO(0x6BA58)
-#define DSCC_RC_RANGE_PARAMETERS_3_UDW _MMIO(0x6BA58 + 4)
-#define _ICL_DSC0_RC_RANGE_PARAMETERS_3_PB (0x78220)
-#define _ICL_DSC0_RC_RANGE_PARAMETERS_3_UDW_PB (0x78220 + 4)
-#define _ICL_DSC1_RC_RANGE_PARAMETERS_3_PB (0x78320)
-#define _ICL_DSC1_RC_RANGE_PARAMETERS_3_UDW_PB (0x78320 + 4)
-#define _ICL_DSC0_RC_RANGE_PARAMETERS_3_PC (0x78420)
-#define _ICL_DSC0_RC_RANGE_PARAMETERS_3_UDW_PC (0x78420 + 4)
-#define _ICL_DSC1_RC_RANGE_PARAMETERS_3_PC (0x78520)
-#define _ICL_DSC1_RC_RANGE_PARAMETERS_3_UDW_PC (0x78520 + 4)
-#define ICL_DSC0_RC_RANGE_PARAMETERS_3(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC0_RC_RANGE_PARAMETERS_3_PB, \
- _ICL_DSC0_RC_RANGE_PARAMETERS_3_PC)
-#define ICL_DSC0_RC_RANGE_PARAMETERS_3_UDW(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC0_RC_RANGE_PARAMETERS_3_UDW_PB, \
- _ICL_DSC0_RC_RANGE_PARAMETERS_3_UDW_PC)
-#define ICL_DSC1_RC_RANGE_PARAMETERS_3(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC1_RC_RANGE_PARAMETERS_3_PB, \
- _ICL_DSC1_RC_RANGE_PARAMETERS_3_PC)
-#define ICL_DSC1_RC_RANGE_PARAMETERS_3_UDW(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC1_RC_RANGE_PARAMETERS_3_UDW_PB, \
- _ICL_DSC1_RC_RANGE_PARAMETERS_3_UDW_PC)
-
/* VGA port control */
#define ADPA _MMIO(0x61100)
#define PCH_ADPA _MMIO(0xe1100)
@@ -2494,18 +2155,7 @@
#define CRT_HOTPLUG_DETECT_VOLTAGE_475MV (1 << 2)
#define PORT_HOTPLUG_STAT _MMIO(DISPLAY_MMIO_BASE(dev_priv) + 0x61114)
-/*
- * HDMI/DP bits are g4x+
- *
- * WARNING: Bspec for hpd status bits on gen4 seems to be completely confused.
- * Please check the detailed lore in the commit message for for experimental
- * evidence.
- */
-/* Bspec says GM45 should match G4X/VLV/CHV, but reality disagrees */
-#define PORTD_HOTPLUG_LIVE_STATUS_GM45 (1 << 29)
-#define PORTC_HOTPLUG_LIVE_STATUS_GM45 (1 << 28)
-#define PORTB_HOTPLUG_LIVE_STATUS_GM45 (1 << 27)
-/* G4X/VLV/CHV DP/HDMI bits again match Bspec */
+/* HDMI/DP bits are g4x+ */
#define PORTD_HOTPLUG_LIVE_STATUS_G4X (1 << 27)
#define PORTC_HOTPLUG_LIVE_STATUS_G4X (1 << 28)
#define PORTB_HOTPLUG_LIVE_STATUS_G4X (1 << 29)
@@ -2635,99 +2285,6 @@
#define SDVO_PIPE_SEL_MASK_CHV (3 << 24)
#define SDVO_PIPE_SEL_CHV(pipe) ((pipe) << 24)
-
-/* DVO port control */
-#define _DVOA 0x61120
-#define DVOA _MMIO(_DVOA)
-#define _DVOB 0x61140
-#define DVOB _MMIO(_DVOB)
-#define _DVOC 0x61160
-#define DVOC _MMIO(_DVOC)
-#define DVO_ENABLE (1 << 31)
-#define DVO_PIPE_SEL_SHIFT 30
-#define DVO_PIPE_SEL_MASK (1 << 30)
-#define DVO_PIPE_SEL(pipe) ((pipe) << 30)
-#define DVO_PIPE_STALL_UNUSED (0 << 28)
-#define DVO_PIPE_STALL (1 << 28)
-#define DVO_PIPE_STALL_TV (2 << 28)
-#define DVO_PIPE_STALL_MASK (3 << 28)
-#define DVO_USE_VGA_SYNC (1 << 15)
-#define DVO_DATA_ORDER_I740 (0 << 14)
-#define DVO_DATA_ORDER_FP (1 << 14)
-#define DVO_VSYNC_DISABLE (1 << 11)
-#define DVO_HSYNC_DISABLE (1 << 10)
-#define DVO_VSYNC_TRISTATE (1 << 9)
-#define DVO_HSYNC_TRISTATE (1 << 8)
-#define DVO_BORDER_ENABLE (1 << 7)
-#define DVO_DATA_ORDER_GBRG (1 << 6)
-#define DVO_DATA_ORDER_RGGB (0 << 6)
-#define DVO_DATA_ORDER_GBRG_ERRATA (0 << 6)
-#define DVO_DATA_ORDER_RGGB_ERRATA (1 << 6)
-#define DVO_VSYNC_ACTIVE_HIGH (1 << 4)
-#define DVO_HSYNC_ACTIVE_HIGH (1 << 3)
-#define DVO_BLANK_ACTIVE_HIGH (1 << 2)
-#define DVO_OUTPUT_CSTATE_PIXELS (1 << 1) /* SDG only */
-#define DVO_OUTPUT_SOURCE_SIZE_PIXELS (1 << 0) /* SDG only */
-#define DVO_PRESERVE_MASK (0x7 << 24)
-#define DVOA_SRCDIM _MMIO(0x61124)
-#define DVOB_SRCDIM _MMIO(0x61144)
-#define DVOC_SRCDIM _MMIO(0x61164)
-#define DVO_SRCDIM_HORIZONTAL_SHIFT 12
-#define DVO_SRCDIM_VERTICAL_SHIFT 0
-
-/* LVDS port control */
-#define LVDS _MMIO(0x61180)
-/*
- * Enables the LVDS port. This bit must be set before DPLLs are enabled, as
- * the DPLL semantics change when the LVDS is assigned to that pipe.
- */
-#define LVDS_PORT_EN (1 << 31)
-/* Selects pipe B for LVDS data. Must be set on pre-965. */
-#define LVDS_PIPE_SEL_SHIFT 30
-#define LVDS_PIPE_SEL_MASK (1 << 30)
-#define LVDS_PIPE_SEL(pipe) ((pipe) << 30)
-#define LVDS_PIPE_SEL_SHIFT_CPT 29
-#define LVDS_PIPE_SEL_MASK_CPT (3 << 29)
-#define LVDS_PIPE_SEL_CPT(pipe) ((pipe) << 29)
-/* LVDS dithering flag on 965/g4x platform */
-#define LVDS_ENABLE_DITHER (1 << 25)
-/* LVDS sync polarity flags. Set to invert (i.e. negative) */
-#define LVDS_VSYNC_POLARITY (1 << 21)
-#define LVDS_HSYNC_POLARITY (1 << 20)
-
-/* Enable border for unscaled (or aspect-scaled) display */
-#define LVDS_BORDER_ENABLE (1 << 15)
-/*
- * Enables the A0-A2 data pairs and CLKA, containing 18 bits of color data per
- * pixel.
- */
-#define LVDS_A0A2_CLKA_POWER_MASK (3 << 8)
-#define LVDS_A0A2_CLKA_POWER_DOWN (0 << 8)
-#define LVDS_A0A2_CLKA_POWER_UP (3 << 8)
-/*
- * Controls the A3 data pair, which contains the additional LSBs for 24 bit
- * mode. Only enabled if LVDS_A0A2_CLKA_POWER_UP also indicates it should be
- * on.
- */
-#define LVDS_A3_POWER_MASK (3 << 6)
-#define LVDS_A3_POWER_DOWN (0 << 6)
-#define LVDS_A3_POWER_UP (3 << 6)
-/*
- * Controls the CLKB pair. This should only be set when LVDS_B0B3_POWER_UP
- * is set.
- */
-#define LVDS_CLKB_POWER_MASK (3 << 4)
-#define LVDS_CLKB_POWER_DOWN (0 << 4)
-#define LVDS_CLKB_POWER_UP (3 << 4)
-/*
- * Controls the B0-B3 data pairs. This must be set to match the DPLL p2
- * setting for whether we are in dual-channel mode. The B3 pair will
- * additionally only be powered up when LVDS_A3_POWER_UP is set.
- */
-#define LVDS_B0B3_POWER_MASK (3 << 2)
-#define LVDS_B0B3_POWER_DOWN (0 << 2)
-#define LVDS_B0B3_POWER_UP (3 << 2)
-
/* Video Data Island Packet control */
#define VIDEO_DIP_DATA _MMIO(0x61178)
/* Read the description of VIDEO_DIP_DATA (before Haswell) or VIDEO_DIP_ECC
@@ -2773,73 +2330,6 @@
#define VIDEO_DIP_ENABLE_GMP_HSW (1 << 4)
#define VIDEO_DIP_ENABLE_SPD_HSW (1 << 0)
-/* Panel power sequencing */
-#define PPS_BASE 0x61200
-#define VLV_PPS_BASE (VLV_DISPLAY_BASE + PPS_BASE)
-#define PCH_PPS_BASE 0xC7200
-
-#define _MMIO_PPS(pps_idx, reg) _MMIO(dev_priv->display.pps.mmio_base - \
- PPS_BASE + (reg) + \
- (pps_idx) * 0x100)
-
-#define _PP_STATUS 0x61200
-#define PP_STATUS(pps_idx) _MMIO_PPS(pps_idx, _PP_STATUS)
-#define PP_ON REG_BIT(31)
-/*
- * Indicates that all dependencies of the panel are on:
- *
- * - PLL enabled
- * - pipe enabled
- * - LVDS/DVOB/DVOC on
- */
-#define PP_READY REG_BIT(30)
-#define PP_SEQUENCE_MASK REG_GENMASK(29, 28)
-#define PP_SEQUENCE_NONE REG_FIELD_PREP(PP_SEQUENCE_MASK, 0)
-#define PP_SEQUENCE_POWER_UP REG_FIELD_PREP(PP_SEQUENCE_MASK, 1)
-#define PP_SEQUENCE_POWER_DOWN REG_FIELD_PREP(PP_SEQUENCE_MASK, 2)
-#define PP_CYCLE_DELAY_ACTIVE REG_BIT(27)
-#define PP_SEQUENCE_STATE_MASK REG_GENMASK(3, 0)
-#define PP_SEQUENCE_STATE_OFF_IDLE REG_FIELD_PREP(PP_SEQUENCE_STATE_MASK, 0x0)
-#define PP_SEQUENCE_STATE_OFF_S0_1 REG_FIELD_PREP(PP_SEQUENCE_STATE_MASK, 0x1)
-#define PP_SEQUENCE_STATE_OFF_S0_2 REG_FIELD_PREP(PP_SEQUENCE_STATE_MASK, 0x2)
-#define PP_SEQUENCE_STATE_OFF_S0_3 REG_FIELD_PREP(PP_SEQUENCE_STATE_MASK, 0x3)
-#define PP_SEQUENCE_STATE_ON_IDLE REG_FIELD_PREP(PP_SEQUENCE_STATE_MASK, 0x8)
-#define PP_SEQUENCE_STATE_ON_S1_1 REG_FIELD_PREP(PP_SEQUENCE_STATE_MASK, 0x9)
-#define PP_SEQUENCE_STATE_ON_S1_2 REG_FIELD_PREP(PP_SEQUENCE_STATE_MASK, 0xa)
-#define PP_SEQUENCE_STATE_ON_S1_3 REG_FIELD_PREP(PP_SEQUENCE_STATE_MASK, 0xb)
-#define PP_SEQUENCE_STATE_RESET REG_FIELD_PREP(PP_SEQUENCE_STATE_MASK, 0xf)
-
-#define _PP_CONTROL 0x61204
-#define PP_CONTROL(pps_idx) _MMIO_PPS(pps_idx, _PP_CONTROL)
-#define PANEL_UNLOCK_MASK REG_GENMASK(31, 16)
-#define PANEL_UNLOCK_REGS REG_FIELD_PREP(PANEL_UNLOCK_MASK, 0xabcd)
-#define BXT_POWER_CYCLE_DELAY_MASK REG_GENMASK(8, 4)
-#define EDP_FORCE_VDD REG_BIT(3)
-#define EDP_BLC_ENABLE REG_BIT(2)
-#define PANEL_POWER_RESET REG_BIT(1)
-#define PANEL_POWER_ON REG_BIT(0)
-
-#define _PP_ON_DELAYS 0x61208
-#define PP_ON_DELAYS(pps_idx) _MMIO_PPS(pps_idx, _PP_ON_DELAYS)
-#define PANEL_PORT_SELECT_MASK REG_GENMASK(31, 30)
-#define PANEL_PORT_SELECT_LVDS REG_FIELD_PREP(PANEL_PORT_SELECT_MASK, 0)
-#define PANEL_PORT_SELECT_DPA REG_FIELD_PREP(PANEL_PORT_SELECT_MASK, 1)
-#define PANEL_PORT_SELECT_DPC REG_FIELD_PREP(PANEL_PORT_SELECT_MASK, 2)
-#define PANEL_PORT_SELECT_DPD REG_FIELD_PREP(PANEL_PORT_SELECT_MASK, 3)
-#define PANEL_PORT_SELECT_VLV(port) REG_FIELD_PREP(PANEL_PORT_SELECT_MASK, port)
-#define PANEL_POWER_UP_DELAY_MASK REG_GENMASK(28, 16)
-#define PANEL_LIGHT_ON_DELAY_MASK REG_GENMASK(12, 0)
-
-#define _PP_OFF_DELAYS 0x6120C
-#define PP_OFF_DELAYS(pps_idx) _MMIO_PPS(pps_idx, _PP_OFF_DELAYS)
-#define PANEL_POWER_DOWN_DELAY_MASK REG_GENMASK(28, 16)
-#define PANEL_LIGHT_OFF_DELAY_MASK REG_GENMASK(12, 0)
-
-#define _PP_DIVISOR 0x61210
-#define PP_DIVISOR(pps_idx) _MMIO_PPS(pps_idx, _PP_DIVISOR)
-#define PP_REFERENCE_DIVIDER_MASK REG_GENMASK(31, 8)
-#define PANEL_POWER_CYCLE_DELAY_MASK REG_GENMASK(4, 0)
-
/* Panel fitting */
#define PFIT_CONTROL _MMIO(DISPLAY_MMIO_BASE(dev_priv) + 0x61230)
#define PFIT_ENABLE (1 << 31)
@@ -2877,485 +2367,6 @@
#define PCH_GTC_CTL _MMIO(0xe7000)
#define PCH_GTC_ENABLE (1 << 31)
-/* TV port control */
-#define TV_CTL _MMIO(0x68000)
-/* Enables the TV encoder */
-# define TV_ENC_ENABLE (1 << 31)
-/* Sources the TV encoder input from pipe B instead of A. */
-# define TV_ENC_PIPE_SEL_SHIFT 30
-# define TV_ENC_PIPE_SEL_MASK (1 << 30)
-# define TV_ENC_PIPE_SEL(pipe) ((pipe) << 30)
-/* Outputs composite video (DAC A only) */
-# define TV_ENC_OUTPUT_COMPOSITE (0 << 28)
-/* Outputs SVideo video (DAC B/C) */
-# define TV_ENC_OUTPUT_SVIDEO (1 << 28)
-/* Outputs Component video (DAC A/B/C) */
-# define TV_ENC_OUTPUT_COMPONENT (2 << 28)
-/* Outputs Composite and SVideo (DAC A/B/C) */
-# define TV_ENC_OUTPUT_SVIDEO_COMPOSITE (3 << 28)
-# define TV_TRILEVEL_SYNC (1 << 21)
-/* Enables slow sync generation (945GM only) */
-# define TV_SLOW_SYNC (1 << 20)
-/* Selects 4x oversampling for 480i and 576p */
-# define TV_OVERSAMPLE_4X (0 << 18)
-/* Selects 2x oversampling for 720p and 1080i */
-# define TV_OVERSAMPLE_2X (1 << 18)
-/* Selects no oversampling for 1080p */
-# define TV_OVERSAMPLE_NONE (2 << 18)
-/* Selects 8x oversampling */
-# define TV_OVERSAMPLE_8X (3 << 18)
-# define TV_OVERSAMPLE_MASK (3 << 18)
-/* Selects progressive mode rather than interlaced */
-# define TV_PROGRESSIVE (1 << 17)
-/* Sets the colorburst to PAL mode. Required for non-M PAL modes. */
-# define TV_PAL_BURST (1 << 16)
-/* Field for setting delay of Y compared to C */
-# define TV_YC_SKEW_MASK (7 << 12)
-/* Enables a fix for 480p/576p standard definition modes on the 915GM only */
-# define TV_ENC_SDP_FIX (1 << 11)
-/*
- * Enables a fix for the 915GM only.
- *
- * Not sure what it does.
- */
-# define TV_ENC_C0_FIX (1 << 10)
-/* Bits that must be preserved by software */
-# define TV_CTL_SAVE ((1 << 11) | (3 << 9) | (7 << 6) | 0xf)
-# define TV_FUSE_STATE_MASK (3 << 4)
-/* Read-only state that reports all features enabled */
-# define TV_FUSE_STATE_ENABLED (0 << 4)
-/* Read-only state that reports that Macrovision is disabled in hardware*/
-# define TV_FUSE_STATE_NO_MACROVISION (1 << 4)
-/* Read-only state that reports that TV-out is disabled in hardware. */
-# define TV_FUSE_STATE_DISABLED (2 << 4)
-/* Normal operation */
-# define TV_TEST_MODE_NORMAL (0 << 0)
-/* Encoder test pattern 1 - combo pattern */
-# define TV_TEST_MODE_PATTERN_1 (1 << 0)
-/* Encoder test pattern 2 - full screen vertical 75% color bars */
-# define TV_TEST_MODE_PATTERN_2 (2 << 0)
-/* Encoder test pattern 3 - full screen horizontal 75% color bars */
-# define TV_TEST_MODE_PATTERN_3 (3 << 0)
-/* Encoder test pattern 4 - random noise */
-# define TV_TEST_MODE_PATTERN_4 (4 << 0)
-/* Encoder test pattern 5 - linear color ramps */
-# define TV_TEST_MODE_PATTERN_5 (5 << 0)
-/*
- * This test mode forces the DACs to 50% of full output.
- *
- * This is used for load detection in combination with TVDAC_SENSE_MASK
- */
-# define TV_TEST_MODE_MONITOR_DETECT (7 << 0)
-# define TV_TEST_MODE_MASK (7 << 0)
-
-#define TV_DAC _MMIO(0x68004)
-# define TV_DAC_SAVE 0x00ffff00
-/*
- * Reports that DAC state change logic has reported change (RO).
- *
- * This gets cleared when TV_DAC_STATE_EN is cleared
-*/
-# define TVDAC_STATE_CHG (1 << 31)
-# define TVDAC_SENSE_MASK (7 << 28)
-/* Reports that DAC A voltage is above the detect threshold */
-# define TVDAC_A_SENSE (1 << 30)
-/* Reports that DAC B voltage is above the detect threshold */
-# define TVDAC_B_SENSE (1 << 29)
-/* Reports that DAC C voltage is above the detect threshold */
-# define TVDAC_C_SENSE (1 << 28)
-/*
- * Enables DAC state detection logic, for load-based TV detection.
- *
- * The PLL of the chosen pipe (in TV_CTL) must be running, and the encoder set
- * to off, for load detection to work.
- */
-# define TVDAC_STATE_CHG_EN (1 << 27)
-/* Sets the DAC A sense value to high */
-# define TVDAC_A_SENSE_CTL (1 << 26)
-/* Sets the DAC B sense value to high */
-# define TVDAC_B_SENSE_CTL (1 << 25)
-/* Sets the DAC C sense value to high */
-# define TVDAC_C_SENSE_CTL (1 << 24)
-/* Overrides the ENC_ENABLE and DAC voltage levels */
-# define DAC_CTL_OVERRIDE (1 << 7)
-/* Sets the slew rate. Must be preserved in software */
-# define ENC_TVDAC_SLEW_FAST (1 << 6)
-# define DAC_A_1_3_V (0 << 4)
-# define DAC_A_1_1_V (1 << 4)
-# define DAC_A_0_7_V (2 << 4)
-# define DAC_A_MASK (3 << 4)
-# define DAC_B_1_3_V (0 << 2)
-# define DAC_B_1_1_V (1 << 2)
-# define DAC_B_0_7_V (2 << 2)
-# define DAC_B_MASK (3 << 2)
-# define DAC_C_1_3_V (0 << 0)
-# define DAC_C_1_1_V (1 << 0)
-# define DAC_C_0_7_V (2 << 0)
-# define DAC_C_MASK (3 << 0)
-
-/*
- * CSC coefficients are stored in a floating point format with 9 bits of
- * mantissa and 2 or 3 bits of exponent. The exponent is represented as 2**-n,
- * where 2-bit exponents are unsigned n, and 3-bit exponents are signed n with
- * -1 (0x3) being the only legal negative value.
- */
-#define TV_CSC_Y _MMIO(0x68010)
-# define TV_RY_MASK 0x07ff0000
-# define TV_RY_SHIFT 16
-# define TV_GY_MASK 0x00000fff
-# define TV_GY_SHIFT 0
-
-#define TV_CSC_Y2 _MMIO(0x68014)
-# define TV_BY_MASK 0x07ff0000
-# define TV_BY_SHIFT 16
-/*
- * Y attenuation for component video.
- *
- * Stored in 1.9 fixed point.
- */
-# define TV_AY_MASK 0x000003ff
-# define TV_AY_SHIFT 0
-
-#define TV_CSC_U _MMIO(0x68018)
-# define TV_RU_MASK 0x07ff0000
-# define TV_RU_SHIFT 16
-# define TV_GU_MASK 0x000007ff
-# define TV_GU_SHIFT 0
-
-#define TV_CSC_U2 _MMIO(0x6801c)
-# define TV_BU_MASK 0x07ff0000
-# define TV_BU_SHIFT 16
-/*
- * U attenuation for component video.
- *
- * Stored in 1.9 fixed point.
- */
-# define TV_AU_MASK 0x000003ff
-# define TV_AU_SHIFT 0
-
-#define TV_CSC_V _MMIO(0x68020)
-# define TV_RV_MASK 0x0fff0000
-# define TV_RV_SHIFT 16
-# define TV_GV_MASK 0x000007ff
-# define TV_GV_SHIFT 0
-
-#define TV_CSC_V2 _MMIO(0x68024)
-# define TV_BV_MASK 0x07ff0000
-# define TV_BV_SHIFT 16
-/*
- * V attenuation for component video.
- *
- * Stored in 1.9 fixed point.
- */
-# define TV_AV_MASK 0x000007ff
-# define TV_AV_SHIFT 0
-
-#define TV_CLR_KNOBS _MMIO(0x68028)
-/* 2s-complement brightness adjustment */
-# define TV_BRIGHTNESS_MASK 0xff000000
-# define TV_BRIGHTNESS_SHIFT 24
-/* Contrast adjustment, as a 2.6 unsigned floating point number */
-# define TV_CONTRAST_MASK 0x00ff0000
-# define TV_CONTRAST_SHIFT 16
-/* Saturation adjustment, as a 2.6 unsigned floating point number */
-# define TV_SATURATION_MASK 0x0000ff00
-# define TV_SATURATION_SHIFT 8
-/* Hue adjustment, as an integer phase angle in degrees */
-# define TV_HUE_MASK 0x000000ff
-# define TV_HUE_SHIFT 0
-
-#define TV_CLR_LEVEL _MMIO(0x6802c)
-/* Controls the DAC level for black */
-# define TV_BLACK_LEVEL_MASK 0x01ff0000
-# define TV_BLACK_LEVEL_SHIFT 16
-/* Controls the DAC level for blanking */
-# define TV_BLANK_LEVEL_MASK 0x000001ff
-# define TV_BLANK_LEVEL_SHIFT 0
-
-#define TV_H_CTL_1 _MMIO(0x68030)
-/* Number of pixels in the hsync. */
-# define TV_HSYNC_END_MASK 0x1fff0000
-# define TV_HSYNC_END_SHIFT 16
-/* Total number of pixels minus one in the line (display and blanking). */
-# define TV_HTOTAL_MASK 0x00001fff
-# define TV_HTOTAL_SHIFT 0
-
-#define TV_H_CTL_2 _MMIO(0x68034)
-/* Enables the colorburst (needed for non-component color) */
-# define TV_BURST_ENA (1 << 31)
-/* Offset of the colorburst from the start of hsync, in pixels minus one. */
-# define TV_HBURST_START_SHIFT 16
-# define TV_HBURST_START_MASK 0x1fff0000
-/* Length of the colorburst */
-# define TV_HBURST_LEN_SHIFT 0
-# define TV_HBURST_LEN_MASK 0x0001fff
-
-#define TV_H_CTL_3 _MMIO(0x68038)
-/* End of hblank, measured in pixels minus one from start of hsync */
-# define TV_HBLANK_END_SHIFT 16
-# define TV_HBLANK_END_MASK 0x1fff0000
-/* Start of hblank, measured in pixels minus one from start of hsync */
-# define TV_HBLANK_START_SHIFT 0
-# define TV_HBLANK_START_MASK 0x0001fff
-
-#define TV_V_CTL_1 _MMIO(0x6803c)
-/* XXX */
-# define TV_NBR_END_SHIFT 16
-# define TV_NBR_END_MASK 0x07ff0000
-/* XXX */
-# define TV_VI_END_F1_SHIFT 8
-# define TV_VI_END_F1_MASK 0x00003f00
-/* XXX */
-# define TV_VI_END_F2_SHIFT 0
-# define TV_VI_END_F2_MASK 0x0000003f
-
-#define TV_V_CTL_2 _MMIO(0x68040)
-/* Length of vsync, in half lines */
-# define TV_VSYNC_LEN_MASK 0x07ff0000
-# define TV_VSYNC_LEN_SHIFT 16
-/* Offset of the start of vsync in field 1, measured in one less than the
- * number of half lines.
- */
-# define TV_VSYNC_START_F1_MASK 0x00007f00
-# define TV_VSYNC_START_F1_SHIFT 8
-/*
- * Offset of the start of vsync in field 2, measured in one less than the
- * number of half lines.
- */
-# define TV_VSYNC_START_F2_MASK 0x0000007f
-# define TV_VSYNC_START_F2_SHIFT 0
-
-#define TV_V_CTL_3 _MMIO(0x68044)
-/* Enables generation of the equalization signal */
-# define TV_EQUAL_ENA (1 << 31)
-/* Length of vsync, in half lines */
-# define TV_VEQ_LEN_MASK 0x007f0000
-# define TV_VEQ_LEN_SHIFT 16
-/* Offset of the start of equalization in field 1, measured in one less than
- * the number of half lines.
- */
-# define TV_VEQ_START_F1_MASK 0x0007f00
-# define TV_VEQ_START_F1_SHIFT 8
-/*
- * Offset of the start of equalization in field 2, measured in one less than
- * the number of half lines.
- */
-# define TV_VEQ_START_F2_MASK 0x000007f
-# define TV_VEQ_START_F2_SHIFT 0
-
-#define TV_V_CTL_4 _MMIO(0x68048)
-/*
- * Offset to start of vertical colorburst, measured in one less than the
- * number of lines from vertical start.
- */
-# define TV_VBURST_START_F1_MASK 0x003f0000
-# define TV_VBURST_START_F1_SHIFT 16
-/*
- * Offset to the end of vertical colorburst, measured in one less than the
- * number of lines from the start of NBR.
- */
-# define TV_VBURST_END_F1_MASK 0x000000ff
-# define TV_VBURST_END_F1_SHIFT 0
-
-#define TV_V_CTL_5 _MMIO(0x6804c)
-/*
- * Offset to start of vertical colorburst, measured in one less than the
- * number of lines from vertical start.
- */
-# define TV_VBURST_START_F2_MASK 0x003f0000
-# define TV_VBURST_START_F2_SHIFT 16
-/*
- * Offset to the end of vertical colorburst, measured in one less than the
- * number of lines from the start of NBR.
- */
-# define TV_VBURST_END_F2_MASK 0x000000ff
-# define TV_VBURST_END_F2_SHIFT 0
-
-#define TV_V_CTL_6 _MMIO(0x68050)
-/*
- * Offset to start of vertical colorburst, measured in one less than the
- * number of lines from vertical start.
- */
-# define TV_VBURST_START_F3_MASK 0x003f0000
-# define TV_VBURST_START_F3_SHIFT 16
-/*
- * Offset to the end of vertical colorburst, measured in one less than the
- * number of lines from the start of NBR.
- */
-# define TV_VBURST_END_F3_MASK 0x000000ff
-# define TV_VBURST_END_F3_SHIFT 0
-
-#define TV_V_CTL_7 _MMIO(0x68054)
-/*
- * Offset to start of vertical colorburst, measured in one less than the
- * number of lines from vertical start.
- */
-# define TV_VBURST_START_F4_MASK 0x003f0000
-# define TV_VBURST_START_F4_SHIFT 16
-/*
- * Offset to the end of vertical colorburst, measured in one less than the
- * number of lines from the start of NBR.
- */
-# define TV_VBURST_END_F4_MASK 0x000000ff
-# define TV_VBURST_END_F4_SHIFT 0
-
-#define TV_SC_CTL_1 _MMIO(0x68060)
-/* Turns on the first subcarrier phase generation DDA */
-# define TV_SC_DDA1_EN (1 << 31)
-/* Turns on the first subcarrier phase generation DDA */
-# define TV_SC_DDA2_EN (1 << 30)
-/* Turns on the first subcarrier phase generation DDA */
-# define TV_SC_DDA3_EN (1 << 29)
-/* Sets the subcarrier DDA to reset frequency every other field */
-# define TV_SC_RESET_EVERY_2 (0 << 24)
-/* Sets the subcarrier DDA to reset frequency every fourth field */
-# define TV_SC_RESET_EVERY_4 (1 << 24)
-/* Sets the subcarrier DDA to reset frequency every eighth field */
-# define TV_SC_RESET_EVERY_8 (2 << 24)
-/* Sets the subcarrier DDA to never reset the frequency */
-# define TV_SC_RESET_NEVER (3 << 24)
-/* Sets the peak amplitude of the colorburst.*/
-# define TV_BURST_LEVEL_MASK 0x00ff0000
-# define TV_BURST_LEVEL_SHIFT 16
-/* Sets the increment of the first subcarrier phase generation DDA */
-# define TV_SCDDA1_INC_MASK 0x00000fff
-# define TV_SCDDA1_INC_SHIFT 0
-
-#define TV_SC_CTL_2 _MMIO(0x68064)
-/* Sets the rollover for the second subcarrier phase generation DDA */
-# define TV_SCDDA2_SIZE_MASK 0x7fff0000
-# define TV_SCDDA2_SIZE_SHIFT 16
-/* Sets the increent of the second subcarrier phase generation DDA */
-# define TV_SCDDA2_INC_MASK 0x00007fff
-# define TV_SCDDA2_INC_SHIFT 0
-
-#define TV_SC_CTL_3 _MMIO(0x68068)
-/* Sets the rollover for the third subcarrier phase generation DDA */
-# define TV_SCDDA3_SIZE_MASK 0x7fff0000
-# define TV_SCDDA3_SIZE_SHIFT 16
-/* Sets the increent of the third subcarrier phase generation DDA */
-# define TV_SCDDA3_INC_MASK 0x00007fff
-# define TV_SCDDA3_INC_SHIFT 0
-
-#define TV_WIN_POS _MMIO(0x68070)
-/* X coordinate of the display from the start of horizontal active */
-# define TV_XPOS_MASK 0x1fff0000
-# define TV_XPOS_SHIFT 16
-/* Y coordinate of the display from the start of vertical active (NBR) */
-# define TV_YPOS_MASK 0x00000fff
-# define TV_YPOS_SHIFT 0
-
-#define TV_WIN_SIZE _MMIO(0x68074)
-/* Horizontal size of the display window, measured in pixels*/
-# define TV_XSIZE_MASK 0x1fff0000
-# define TV_XSIZE_SHIFT 16
-/*
- * Vertical size of the display window, measured in pixels.
- *
- * Must be even for interlaced modes.
- */
-# define TV_YSIZE_MASK 0x00000fff
-# define TV_YSIZE_SHIFT 0
-
-#define TV_FILTER_CTL_1 _MMIO(0x68080)
-/*
- * Enables automatic scaling calculation.
- *
- * If set, the rest of the registers are ignored, and the calculated values can
- * be read back from the register.
- */
-# define TV_AUTO_SCALE (1 << 31)
-/*
- * Disables the vertical filter.
- *
- * This is required on modes more than 1024 pixels wide */
-# define TV_V_FILTER_BYPASS (1 << 29)
-/* Enables adaptive vertical filtering */
-# define TV_VADAPT (1 << 28)
-# define TV_VADAPT_MODE_MASK (3 << 26)
-/* Selects the least adaptive vertical filtering mode */
-# define TV_VADAPT_MODE_LEAST (0 << 26)
-/* Selects the moderately adaptive vertical filtering mode */
-# define TV_VADAPT_MODE_MODERATE (1 << 26)
-/* Selects the most adaptive vertical filtering mode */
-# define TV_VADAPT_MODE_MOST (3 << 26)
-/*
- * Sets the horizontal scaling factor.
- *
- * This should be the fractional part of the horizontal scaling factor divided
- * by the oversampling rate. TV_HSCALE should be less than 1, and set to:
- *
- * (src width - 1) / ((oversample * dest width) - 1)
- */
-# define TV_HSCALE_FRAC_MASK 0x00003fff
-# define TV_HSCALE_FRAC_SHIFT 0
-
-#define TV_FILTER_CTL_2 _MMIO(0x68084)
-/*
- * Sets the integer part of the 3.15 fixed-point vertical scaling factor.
- *
- * TV_VSCALE should be (src height - 1) / ((interlace * dest height) - 1)
- */
-# define TV_VSCALE_INT_MASK 0x00038000
-# define TV_VSCALE_INT_SHIFT 15
-/*
- * Sets the fractional part of the 3.15 fixed-point vertical scaling factor.
- *
- * \sa TV_VSCALE_INT_MASK
- */
-# define TV_VSCALE_FRAC_MASK 0x00007fff
-# define TV_VSCALE_FRAC_SHIFT 0
-
-#define TV_FILTER_CTL_3 _MMIO(0x68088)
-/*
- * Sets the integer part of the 3.15 fixed-point vertical scaling factor.
- *
- * TV_VSCALE should be (src height - 1) / (1/4 * (dest height - 1))
- *
- * For progressive modes, TV_VSCALE_IP_INT should be set to zeroes.
- */
-# define TV_VSCALE_IP_INT_MASK 0x00038000
-# define TV_VSCALE_IP_INT_SHIFT 15
-/*
- * Sets the fractional part of the 3.15 fixed-point vertical scaling factor.
- *
- * For progressive modes, TV_VSCALE_IP_INT should be set to zeroes.
- *
- * \sa TV_VSCALE_IP_INT_MASK
- */
-# define TV_VSCALE_IP_FRAC_MASK 0x00007fff
-# define TV_VSCALE_IP_FRAC_SHIFT 0
-
-#define TV_CC_CONTROL _MMIO(0x68090)
-# define TV_CC_ENABLE (1 << 31)
-/*
- * Specifies which field to send the CC data in.
- *
- * CC data is usually sent in field 0.
- */
-# define TV_CC_FID_MASK (1 << 27)
-# define TV_CC_FID_SHIFT 27
-/* Sets the horizontal position of the CC data. Usually 135. */
-# define TV_CC_HOFF_MASK 0x03ff0000
-# define TV_CC_HOFF_SHIFT 16
-/* Sets the vertical position of the CC data. Usually 21 */
-# define TV_CC_LINE_MASK 0x0000003f
-# define TV_CC_LINE_SHIFT 0
-
-#define TV_CC_DATA _MMIO(0x68094)
-# define TV_CC_RDY (1 << 31)
-/* Second word of CC data to be transmitted. */
-# define TV_CC_DATA_2_MASK 0x007f0000
-# define TV_CC_DATA_2_SHIFT 16
-/* First word of CC data to be transmitted. */
-# define TV_CC_DATA_1_MASK 0x0000007f
-# define TV_CC_DATA_1_SHIFT 0
-
-#define TV_H_LUMA(i) _MMIO(0x68100 + (i) * 4) /* 60 registers */
-#define TV_H_CHROMA(i) _MMIO(0x68200 + (i) * 4) /* 60 registers */
-#define TV_V_LUMA(i) _MMIO(0x68300 + (i) * 4) /* 43 registers */
-#define TV_V_CHROMA(i) _MMIO(0x68400 + (i) * 4) /* 43 registers */
-
/* Display Port */
#define DP_A _MMIO(0x64000) /* eDP */
#define DP_B _MMIO(0x64100)
@@ -3449,79 +2460,6 @@
/* A fantasy */
#define DP_DETECTED (1 << 2)
-/* The aux channel provides a way to talk to the
- * signal sink for DDC etc. Max packet size supported
- * is 20 bytes in each direction, hence the 5 fixed
- * data registers
- */
-#define _DPA_AUX_CH_CTL (DISPLAY_MMIO_BASE(dev_priv) + 0x64010)
-#define _DPA_AUX_CH_DATA1 (DISPLAY_MMIO_BASE(dev_priv) + 0x64014)
-
-#define _DPB_AUX_CH_CTL (DISPLAY_MMIO_BASE(dev_priv) + 0x64110)
-#define _DPB_AUX_CH_DATA1 (DISPLAY_MMIO_BASE(dev_priv) + 0x64114)
-
-#define DP_AUX_CH_CTL(aux_ch) _MMIO_PORT(aux_ch, _DPA_AUX_CH_CTL, _DPB_AUX_CH_CTL)
-#define DP_AUX_CH_DATA(aux_ch, i) _MMIO(_PORT(aux_ch, _DPA_AUX_CH_DATA1, _DPB_AUX_CH_DATA1) + (i) * 4) /* 5 registers */
-
-#define _XELPDP_USBC1_AUX_CH_CTL 0x16F210
-#define _XELPDP_USBC2_AUX_CH_CTL 0x16F410
-#define _XELPDP_USBC3_AUX_CH_CTL 0x16F610
-#define _XELPDP_USBC4_AUX_CH_CTL 0x16F810
-
-#define XELPDP_DP_AUX_CH_CTL(aux_ch) _MMIO(_PICK(aux_ch, \
- _DPA_AUX_CH_CTL, \
- _DPB_AUX_CH_CTL, \
- 0, /* port/aux_ch C is non-existent */ \
- _XELPDP_USBC1_AUX_CH_CTL, \
- _XELPDP_USBC2_AUX_CH_CTL, \
- _XELPDP_USBC3_AUX_CH_CTL, \
- _XELPDP_USBC4_AUX_CH_CTL))
-
-#define _XELPDP_USBC1_AUX_CH_DATA1 0x16F214
-#define _XELPDP_USBC2_AUX_CH_DATA1 0x16F414
-#define _XELPDP_USBC3_AUX_CH_DATA1 0x16F614
-#define _XELPDP_USBC4_AUX_CH_DATA1 0x16F814
-
-#define XELPDP_DP_AUX_CH_DATA(aux_ch, i) _MMIO(_PICK(aux_ch, \
- _DPA_AUX_CH_DATA1, \
- _DPB_AUX_CH_DATA1, \
- 0, /* port/aux_ch C is non-existent */ \
- _XELPDP_USBC1_AUX_CH_DATA1, \
- _XELPDP_USBC2_AUX_CH_DATA1, \
- _XELPDP_USBC3_AUX_CH_DATA1, \
- _XELPDP_USBC4_AUX_CH_DATA1) + (i) * 4)
-
-#define DP_AUX_CH_CTL_SEND_BUSY (1 << 31)
-#define DP_AUX_CH_CTL_DONE (1 << 30)
-#define DP_AUX_CH_CTL_INTERRUPT (1 << 29)
-#define DP_AUX_CH_CTL_TIME_OUT_ERROR (1 << 28)
-#define DP_AUX_CH_CTL_TIME_OUT_400us (0 << 26)
-#define DP_AUX_CH_CTL_TIME_OUT_600us (1 << 26)
-#define DP_AUX_CH_CTL_TIME_OUT_800us (2 << 26)
-#define DP_AUX_CH_CTL_TIME_OUT_MAX (3 << 26) /* Varies per platform */
-#define DP_AUX_CH_CTL_TIME_OUT_MASK (3 << 26)
-#define DP_AUX_CH_CTL_RECEIVE_ERROR (1 << 25)
-#define DP_AUX_CH_CTL_MESSAGE_SIZE_MASK (0x1f << 20)
-#define DP_AUX_CH_CTL_MESSAGE_SIZE_SHIFT 20
-#define XELPDP_DP_AUX_CH_CTL_POWER_REQUEST REG_BIT(19)
-#define XELPDP_DP_AUX_CH_CTL_POWER_STATUS REG_BIT(18)
-#define DP_AUX_CH_CTL_PRECHARGE_2US_MASK (0xf << 16)
-#define DP_AUX_CH_CTL_PRECHARGE_2US_SHIFT 16
-#define DP_AUX_CH_CTL_AUX_AKSV_SELECT (1 << 15)
-#define DP_AUX_CH_CTL_MANCHESTER_TEST (1 << 14)
-#define DP_AUX_CH_CTL_SYNC_TEST (1 << 13)
-#define DP_AUX_CH_CTL_DEGLITCH_TEST (1 << 12)
-#define DP_AUX_CH_CTL_PRECHARGE_TEST (1 << 11)
-#define DP_AUX_CH_CTL_BIT_CLOCK_2X_MASK (0x7ff)
-#define DP_AUX_CH_CTL_BIT_CLOCK_2X_SHIFT 0
-#define DP_AUX_CH_CTL_PSR_DATA_AUX_REG_SKL (1 << 14)
-#define DP_AUX_CH_CTL_FS_DATA_AUX_REG_SKL (1 << 13)
-#define DP_AUX_CH_CTL_GTC_DATA_AUX_REG_SKL (1 << 12)
-#define DP_AUX_CH_CTL_TBT_IO (1 << 11)
-#define DP_AUX_CH_CTL_FW_SYNC_PULSE_SKL_MASK (0x1f << 5)
-#define DP_AUX_CH_CTL_FW_SYNC_PULSE_SKL(c) (((c) - 1) << 5)
-#define DP_AUX_CH_CTL_SYNC_PULSE_SKL(c) ((c) - 1)
-
/*
* Computing GMCH M and N values for the Display Port link
*
@@ -3575,61 +2513,61 @@
#define _PIPEADSL 0x70000
#define PIPEDSL_CURR_FIELD REG_BIT(31) /* ctg+ */
#define PIPEDSL_LINE_MASK REG_GENMASK(19, 0)
-#define _PIPEACONF 0x70008
-#define PIPECONF_ENABLE REG_BIT(31)
-#define PIPECONF_DOUBLE_WIDE REG_BIT(30) /* pre-i965 */
-#define PIPECONF_STATE_ENABLE REG_BIT(30) /* i965+ */
-#define PIPECONF_DSI_PLL_LOCKED REG_BIT(29) /* vlv & pipe A only */
-#define PIPECONF_FRAME_START_DELAY_MASK REG_GENMASK(28, 27) /* pre-hsw */
-#define PIPECONF_FRAME_START_DELAY(x) REG_FIELD_PREP(PIPECONF_FRAME_START_DELAY_MASK, (x)) /* pre-hsw: 0-3 */
-#define PIPECONF_PIPE_LOCKED REG_BIT(25)
-#define PIPECONF_FORCE_BORDER REG_BIT(25)
-#define PIPECONF_GAMMA_MODE_MASK_I9XX REG_BIT(24) /* gmch */
-#define PIPECONF_GAMMA_MODE_MASK_ILK REG_GENMASK(25, 24) /* ilk-ivb */
-#define PIPECONF_GAMMA_MODE_8BIT REG_FIELD_PREP(PIPECONF_GAMMA_MODE_MASK, 0)
-#define PIPECONF_GAMMA_MODE_10BIT REG_FIELD_PREP(PIPECONF_GAMMA_MODE_MASK, 1)
-#define PIPECONF_GAMMA_MODE_12BIT REG_FIELD_PREP(PIPECONF_GAMMA_MODE_MASK_ILK, 2) /* ilk-ivb */
-#define PIPECONF_GAMMA_MODE_SPLIT REG_FIELD_PREP(PIPECONF_GAMMA_MODE_MASK_ILK, 3) /* ivb */
-#define PIPECONF_GAMMA_MODE(x) REG_FIELD_PREP(PIPECONF_GAMMA_MODE_MASK_ILK, (x)) /* pass in GAMMA_MODE_MODE_* */
-#define PIPECONF_INTERLACE_MASK REG_GENMASK(23, 21) /* gen3+ */
-#define PIPECONF_INTERLACE_PROGRESSIVE REG_FIELD_PREP(PIPECONF_INTERLACE_MASK, 0)
-#define PIPECONF_INTERLACE_W_SYNC_SHIFT_PANEL REG_FIELD_PREP(PIPECONF_INTERLACE_MASK, 4) /* gen4 only */
-#define PIPECONF_INTERLACE_W_SYNC_SHIFT REG_FIELD_PREP(PIPECONF_INTERLACE_MASK, 5) /* gen4 only */
-#define PIPECONF_INTERLACE_W_FIELD_INDICATION REG_FIELD_PREP(PIPECONF_INTERLACE_MASK, 6)
-#define PIPECONF_INTERLACE_FIELD_0_ONLY REG_FIELD_PREP(PIPECONF_INTERLACE_MASK, 7) /* gen3 only */
+#define _TRANSACONF 0x70008
+#define TRANSCONF_ENABLE REG_BIT(31)
+#define TRANSCONF_DOUBLE_WIDE REG_BIT(30) /* pre-i965 */
+#define TRANSCONF_STATE_ENABLE REG_BIT(30) /* i965+ */
+#define TRANSCONF_DSI_PLL_LOCKED REG_BIT(29) /* vlv & pipe A only */
+#define TRANSCONF_FRAME_START_DELAY_MASK REG_GENMASK(28, 27) /* pre-hsw */
+#define TRANSCONF_FRAME_START_DELAY(x) REG_FIELD_PREP(TRANSCONF_FRAME_START_DELAY_MASK, (x)) /* pre-hsw: 0-3 */
+#define TRANSCONF_PIPE_LOCKED REG_BIT(25)
+#define TRANSCONF_FORCE_BORDER REG_BIT(25)
+#define TRANSCONF_GAMMA_MODE_MASK_I9XX REG_BIT(24) /* gmch */
+#define TRANSCONF_GAMMA_MODE_MASK_ILK REG_GENMASK(25, 24) /* ilk-ivb */
+#define TRANSCONF_GAMMA_MODE_8BIT REG_FIELD_PREP(TRANSCONF_GAMMA_MODE_MASK, 0)
+#define TRANSCONF_GAMMA_MODE_10BIT REG_FIELD_PREP(TRANSCONF_GAMMA_MODE_MASK, 1)
+#define TRANSCONF_GAMMA_MODE_12BIT REG_FIELD_PREP(TRANSCONF_GAMMA_MODE_MASK_ILK, 2) /* ilk-ivb */
+#define TRANSCONF_GAMMA_MODE_SPLIT REG_FIELD_PREP(TRANSCONF_GAMMA_MODE_MASK_ILK, 3) /* ivb */
+#define TRANSCONF_GAMMA_MODE(x) REG_FIELD_PREP(TRANSCONF_GAMMA_MODE_MASK_ILK, (x)) /* pass in GAMMA_MODE_MODE_* */
+#define TRANSCONF_INTERLACE_MASK REG_GENMASK(23, 21) /* gen3+ */
+#define TRANSCONF_INTERLACE_PROGRESSIVE REG_FIELD_PREP(TRANSCONF_INTERLACE_MASK, 0)
+#define TRANSCONF_INTERLACE_W_SYNC_SHIFT_PANEL REG_FIELD_PREP(TRANSCONF_INTERLACE_MASK, 4) /* gen4 only */
+#define TRANSCONF_INTERLACE_W_SYNC_SHIFT REG_FIELD_PREP(TRANSCONF_INTERLACE_MASK, 5) /* gen4 only */
+#define TRANSCONF_INTERLACE_W_FIELD_INDICATION REG_FIELD_PREP(TRANSCONF_INTERLACE_MASK, 6)
+#define TRANSCONF_INTERLACE_FIELD_0_ONLY REG_FIELD_PREP(TRANSCONF_INTERLACE_MASK, 7) /* gen3 only */
/*
* ilk+: PF/D=progressive fetch/display, IF/D=interlaced fetch/display,
* DBL=power saving pixel doubling, PF-ID* requires panel fitter
*/
-#define PIPECONF_INTERLACE_MASK_ILK REG_GENMASK(23, 21) /* ilk+ */
-#define PIPECONF_INTERLACE_MASK_HSW REG_GENMASK(22, 21) /* hsw+ */
-#define PIPECONF_INTERLACE_PF_PD_ILK REG_FIELD_PREP(PIPECONF_INTERLACE_MASK_ILK, 0)
-#define PIPECONF_INTERLACE_PF_ID_ILK REG_FIELD_PREP(PIPECONF_INTERLACE_MASK_ILK, 1)
-#define PIPECONF_INTERLACE_IF_ID_ILK REG_FIELD_PREP(PIPECONF_INTERLACE_MASK_ILK, 3)
-#define PIPECONF_INTERLACE_IF_ID_DBL_ILK REG_FIELD_PREP(PIPECONF_INTERLACE_MASK_ILK, 4) /* ilk/snb only */
-#define PIPECONF_INTERLACE_PF_ID_DBL_ILK REG_FIELD_PREP(PIPECONF_INTERLACE_MASK_ILK, 5) /* ilk/snb only */
-#define PIPECONF_REFRESH_RATE_ALT_ILK REG_BIT(20)
-#define PIPECONF_MSA_TIMING_DELAY_MASK REG_GENMASK(19, 18) /* ilk/snb/ivb */
-#define PIPECONF_MSA_TIMING_DELAY(x) REG_FIELD_PREP(PIPECONF_MSA_TIMING_DELAY_MASK, (x))
-#define PIPECONF_CXSR_DOWNCLOCK REG_BIT(16)
-#define PIPECONF_REFRESH_RATE_ALT_VLV REG_BIT(14)
-#define PIPECONF_COLOR_RANGE_SELECT REG_BIT(13)
-#define PIPECONF_OUTPUT_COLORSPACE_MASK REG_GENMASK(12, 11) /* ilk-ivb */
-#define PIPECONF_OUTPUT_COLORSPACE_RGB REG_FIELD_PREP(PIPECONF_OUTPUT_COLORSPACE_MASK, 0) /* ilk-ivb */
-#define PIPECONF_OUTPUT_COLORSPACE_YUV601 REG_FIELD_PREP(PIPECONF_OUTPUT_COLORSPACE_MASK, 1) /* ilk-ivb */
-#define PIPECONF_OUTPUT_COLORSPACE_YUV709 REG_FIELD_PREP(PIPECONF_OUTPUT_COLORSPACE_MASK, 2) /* ilk-ivb */
-#define PIPECONF_OUTPUT_COLORSPACE_YUV_HSW REG_BIT(11) /* hsw only */
-#define PIPECONF_BPC_MASK REG_GENMASK(7, 5) /* ctg-ivb */
-#define PIPECONF_BPC_8 REG_FIELD_PREP(PIPECONF_BPC_MASK, 0)
-#define PIPECONF_BPC_10 REG_FIELD_PREP(PIPECONF_BPC_MASK, 1)
-#define PIPECONF_BPC_6 REG_FIELD_PREP(PIPECONF_BPC_MASK, 2)
-#define PIPECONF_BPC_12 REG_FIELD_PREP(PIPECONF_BPC_MASK, 3)
-#define PIPECONF_DITHER_EN REG_BIT(4)
-#define PIPECONF_DITHER_TYPE_MASK REG_GENMASK(3, 2)
-#define PIPECONF_DITHER_TYPE_SP REG_FIELD_PREP(PIPECONF_DITHER_TYPE_MASK, 0)
-#define PIPECONF_DITHER_TYPE_ST1 REG_FIELD_PREP(PIPECONF_DITHER_TYPE_MASK, 1)
-#define PIPECONF_DITHER_TYPE_ST2 REG_FIELD_PREP(PIPECONF_DITHER_TYPE_MASK, 2)
-#define PIPECONF_DITHER_TYPE_TEMP REG_FIELD_PREP(PIPECONF_DITHER_TYPE_MASK, 3)
+#define TRANSCONF_INTERLACE_MASK_ILK REG_GENMASK(23, 21) /* ilk+ */
+#define TRANSCONF_INTERLACE_MASK_HSW REG_GENMASK(22, 21) /* hsw+ */
+#define TRANSCONF_INTERLACE_PF_PD_ILK REG_FIELD_PREP(TRANSCONF_INTERLACE_MASK_ILK, 0)
+#define TRANSCONF_INTERLACE_PF_ID_ILK REG_FIELD_PREP(TRANSCONF_INTERLACE_MASK_ILK, 1)
+#define TRANSCONF_INTERLACE_IF_ID_ILK REG_FIELD_PREP(TRANSCONF_INTERLACE_MASK_ILK, 3)
+#define TRANSCONF_INTERLACE_IF_ID_DBL_ILK REG_FIELD_PREP(TRANSCONF_INTERLACE_MASK_ILK, 4) /* ilk/snb only */
+#define TRANSCONF_INTERLACE_PF_ID_DBL_ILK REG_FIELD_PREP(TRANSCONF_INTERLACE_MASK_ILK, 5) /* ilk/snb only */
+#define TRANSCONF_REFRESH_RATE_ALT_ILK REG_BIT(20)
+#define TRANSCONF_MSA_TIMING_DELAY_MASK REG_GENMASK(19, 18) /* ilk/snb/ivb */
+#define TRANSCONF_MSA_TIMING_DELAY(x) REG_FIELD_PREP(TRANSCONF_MSA_TIMING_DELAY_MASK, (x))
+#define TRANSCONF_CXSR_DOWNCLOCK REG_BIT(16)
+#define TRANSCONF_REFRESH_RATE_ALT_VLV REG_BIT(14)
+#define TRANSCONF_COLOR_RANGE_SELECT REG_BIT(13)
+#define TRANSCONF_OUTPUT_COLORSPACE_MASK REG_GENMASK(12, 11) /* ilk-ivb */
+#define TRANSCONF_OUTPUT_COLORSPACE_RGB REG_FIELD_PREP(TRANSCONF_OUTPUT_COLORSPACE_MASK, 0) /* ilk-ivb */
+#define TRANSCONF_OUTPUT_COLORSPACE_YUV601 REG_FIELD_PREP(TRANSCONF_OUTPUT_COLORSPACE_MASK, 1) /* ilk-ivb */
+#define TRANSCONF_OUTPUT_COLORSPACE_YUV709 REG_FIELD_PREP(TRANSCONF_OUTPUT_COLORSPACE_MASK, 2) /* ilk-ivb */
+#define TRANSCONF_OUTPUT_COLORSPACE_YUV_HSW REG_BIT(11) /* hsw only */
+#define TRANSCONF_BPC_MASK REG_GENMASK(7, 5) /* ctg-ivb */
+#define TRANSCONF_BPC_8 REG_FIELD_PREP(TRANSCONF_BPC_MASK, 0)
+#define TRANSCONF_BPC_10 REG_FIELD_PREP(TRANSCONF_BPC_MASK, 1)
+#define TRANSCONF_BPC_6 REG_FIELD_PREP(TRANSCONF_BPC_MASK, 2)
+#define TRANSCONF_BPC_12 REG_FIELD_PREP(TRANSCONF_BPC_MASK, 3)
+#define TRANSCONF_DITHER_EN REG_BIT(4)
+#define TRANSCONF_DITHER_TYPE_MASK REG_GENMASK(3, 2)
+#define TRANSCONF_DITHER_TYPE_SP REG_FIELD_PREP(TRANSCONF_DITHER_TYPE_MASK, 0)
+#define TRANSCONF_DITHER_TYPE_ST1 REG_FIELD_PREP(TRANSCONF_DITHER_TYPE_MASK, 1)
+#define TRANSCONF_DITHER_TYPE_ST2 REG_FIELD_PREP(TRANSCONF_DITHER_TYPE_MASK, 2)
+#define TRANSCONF_DITHER_TYPE_TEMP REG_FIELD_PREP(TRANSCONF_DITHER_TYPE_MASK, 3)
#define _PIPEASTAT 0x70024
#define PIPE_FIFO_UNDERRUN_STATUS (1UL << 31)
#define SPRITE1_FLIP_DONE_INT_EN_VLV (1UL << 30)
@@ -3698,7 +2636,7 @@
#define PIPE_DSI0_OFFSET 0x7b000
#define PIPE_DSI1_OFFSET 0x7b800
-#define PIPECONF(pipe) _MMIO_PIPE2(pipe, _PIPEACONF)
+#define TRANSCONF(trans) _MMIO_PIPE2((trans), _TRANSACONF)
#define PIPEDSL(pipe) _MMIO_PIPE2(pipe, _PIPEADSL)
#define PIPEFRAME(pipe) _MMIO_PIPE2(pipe, _PIPEAFRAMEHIGH)
#define PIPEFRAMEPIXEL(pipe) _MMIO_PIPE2(pipe, _PIPEAFRAMEPIXEL)
@@ -3706,7 +2644,7 @@
#define _PIPEAGCMAX 0x70010
#define _PIPEBGCMAX 0x71010
-#define PIPEGCMAX(pipe, i) _MMIO_PIPE2(pipe, _PIPEAGCMAX + (i) * 4)
+#define PIPEGCMAX(pipe, i) _MMIO_PIPE2(pipe, _PIPEAGCMAX + (i) * 4) /* u1.16 */
#define _PIPE_ARB_CTL_A 0x70028 /* icl+ */
#define PIPE_ARB_CTL(pipe) _MMIO_PIPE2(pipe, _PIPE_ARB_CTL_A)
@@ -3714,42 +2652,45 @@
#define _PIPE_MISC_A 0x70030
#define _PIPE_MISC_B 0x71030
-#define PIPEMISC_YUV420_ENABLE REG_BIT(27) /* glk+ */
-#define PIPEMISC_YUV420_MODE_FULL_BLEND REG_BIT(26) /* glk+ */
-#define PIPEMISC_HDR_MODE_PRECISION REG_BIT(23) /* icl+ */
-#define PIPEMISC_OUTPUT_COLORSPACE_YUV REG_BIT(11)
-#define PIPEMISC_PIXEL_ROUNDING_TRUNC REG_BIT(8) /* tgl+ */
+#define PIPE_MISC_YUV420_ENABLE REG_BIT(27) /* glk+ */
+#define PIPE_MISC_YUV420_MODE_FULL_BLEND REG_BIT(26) /* glk+ */
+#define PIPE_MISC_HDR_MODE_PRECISION REG_BIT(23) /* icl+ */
+#define PIPE_MISC_OUTPUT_COLORSPACE_YUV REG_BIT(11)
+#define PIPE_MISC_PIXEL_ROUNDING_TRUNC REG_BIT(8) /* tgl+ */
/*
* For Display < 13, Bits 5-7 of PIPE MISC represent DITHER BPC with
* valid values of: 6, 8, 10 BPC.
* ADLP+, the bits 5-7 represent PORT OUTPUT BPC with valid values of:
* 6, 8, 10, 12 BPC.
*/
-#define PIPEMISC_BPC_MASK REG_GENMASK(7, 5)
-#define PIPEMISC_BPC_8 REG_FIELD_PREP(PIPEMISC_BPC_MASK, 0)
-#define PIPEMISC_BPC_10 REG_FIELD_PREP(PIPEMISC_BPC_MASK, 1)
-#define PIPEMISC_BPC_6 REG_FIELD_PREP(PIPEMISC_BPC_MASK, 2)
-#define PIPEMISC_BPC_12_ADLP REG_FIELD_PREP(PIPEMISC_BPC_MASK, 4) /* adlp+ */
-#define PIPEMISC_DITHER_ENABLE REG_BIT(4)
-#define PIPEMISC_DITHER_TYPE_MASK REG_GENMASK(3, 2)
-#define PIPEMISC_DITHER_TYPE_SP REG_FIELD_PREP(PIPEMISC_DITHER_TYPE_MASK, 0)
-#define PIPEMISC_DITHER_TYPE_ST1 REG_FIELD_PREP(PIPEMISC_DITHER_TYPE_MASK, 1)
-#define PIPEMISC_DITHER_TYPE_ST2 REG_FIELD_PREP(PIPEMISC_DITHER_TYPE_MASK, 2)
-#define PIPEMISC_DITHER_TYPE_TEMP REG_FIELD_PREP(PIPEMISC_DITHER_TYPE_MASK, 3)
-#define PIPEMISC(pipe) _MMIO_PIPE2(pipe, _PIPE_MISC_A)
+#define PIPE_MISC_BPC_MASK REG_GENMASK(7, 5)
+#define PIPE_MISC_BPC_8 REG_FIELD_PREP(PIPE_MISC_BPC_MASK, 0)
+#define PIPE_MISC_BPC_10 REG_FIELD_PREP(PIPE_MISC_BPC_MASK, 1)
+#define PIPE_MISC_BPC_6 REG_FIELD_PREP(PIPE_MISC_BPC_MASK, 2)
+#define PIPE_MISC_BPC_12_ADLP REG_FIELD_PREP(PIPE_MISC_BPC_MASK, 4) /* adlp+ */
+#define PIPE_MISC_DITHER_ENABLE REG_BIT(4)
+#define PIPE_MISC_DITHER_TYPE_MASK REG_GENMASK(3, 2)
+#define PIPE_MISC_DITHER_TYPE_SP REG_FIELD_PREP(PIPE_MISC_DITHER_TYPE_MASK, 0)
+#define PIPE_MISC_DITHER_TYPE_ST1 REG_FIELD_PREP(PIPE_MISC_DITHER_TYPE_MASK, 1)
+#define PIPE_MISC_DITHER_TYPE_ST2 REG_FIELD_PREP(PIPE_MISC_DITHER_TYPE_MASK, 2)
+#define PIPE_MISC_DITHER_TYPE_TEMP REG_FIELD_PREP(PIPE_MISC_DITHER_TYPE_MASK, 3)
+#define PIPE_MISC(pipe) _MMIO_PIPE(pipe, _PIPE_MISC_A, _PIPE_MISC_B)
#define _PIPE_MISC2_A 0x7002C
#define _PIPE_MISC2_B 0x7102C
#define PIPE_MISC2_BUBBLE_COUNTER_MASK REG_GENMASK(31, 24)
#define PIPE_MISC2_BUBBLE_COUNTER_SCALER_EN REG_FIELD_PREP(PIPE_MISC2_BUBBLE_COUNTER_MASK, 80)
#define PIPE_MISC2_BUBBLE_COUNTER_SCALER_DIS REG_FIELD_PREP(PIPE_MISC2_BUBBLE_COUNTER_MASK, 20)
-#define PIPE_MISC2(pipe) _MMIO_PIPE2(pipe, _PIPE_MISC2_A)
+#define PIPE_MISC2_FLIP_INFO_PLANE_SEL_MASK REG_GENMASK(2, 0) /* tgl+ */
+#define PIPE_MISC2_FLIP_INFO_PLANE_SEL(plane_id) REG_FIELD_PREP(PIPE_MISC2_FLIP_INFO_PLANE_SEL_MASK, (plane_id))
+#define PIPE_MISC2(pipe) _MMIO_PIPE(pipe, _PIPE_MISC2_A, _PIPE_MISC2_B)
/* Skylake+ pipe bottom (background) color */
#define _SKL_BOTTOM_COLOR_A 0x70034
+#define _SKL_BOTTOM_COLOR_B 0x71034
#define SKL_BOTTOM_COLOR_GAMMA_ENABLE REG_BIT(31)
#define SKL_BOTTOM_COLOR_CSC_ENABLE REG_BIT(30)
-#define SKL_BOTTOM_COLOR(pipe) _MMIO_PIPE2(pipe, _SKL_BOTTOM_COLOR_A)
+#define SKL_BOTTOM_COLOR(pipe) _MMIO_PIPE(pipe, _SKL_BOTTOM_COLOR_A, _SKL_BOTTOM_COLOR_B)
#define _ICL_PIPE_A_STATUS 0x70058
#define ICL_PIPESTATUS(pipe) _MMIO_PIPE2(pipe, _ICL_PIPE_A_STATUS)
@@ -4023,66 +2964,6 @@
#define I965_CURSOR_MAX_WM 32
#define I965_CURSOR_DFT_WM 8
-/* Watermark register definitions for SKL */
-#define _CUR_WM_A_0 0x70140
-#define _CUR_WM_B_0 0x71140
-#define _CUR_WM_SAGV_A 0x70158
-#define _CUR_WM_SAGV_B 0x71158
-#define _CUR_WM_SAGV_TRANS_A 0x7015C
-#define _CUR_WM_SAGV_TRANS_B 0x7115C
-#define _CUR_WM_TRANS_A 0x70168
-#define _CUR_WM_TRANS_B 0x71168
-#define _PLANE_WM_1_A_0 0x70240
-#define _PLANE_WM_1_B_0 0x71240
-#define _PLANE_WM_2_A_0 0x70340
-#define _PLANE_WM_2_B_0 0x71340
-#define _PLANE_WM_SAGV_1_A 0x70258
-#define _PLANE_WM_SAGV_1_B 0x71258
-#define _PLANE_WM_SAGV_2_A 0x70358
-#define _PLANE_WM_SAGV_2_B 0x71358
-#define _PLANE_WM_SAGV_TRANS_1_A 0x7025C
-#define _PLANE_WM_SAGV_TRANS_1_B 0x7125C
-#define _PLANE_WM_SAGV_TRANS_2_A 0x7035C
-#define _PLANE_WM_SAGV_TRANS_2_B 0x7135C
-#define _PLANE_WM_TRANS_1_A 0x70268
-#define _PLANE_WM_TRANS_1_B 0x71268
-#define _PLANE_WM_TRANS_2_A 0x70368
-#define _PLANE_WM_TRANS_2_B 0x71368
-#define PLANE_WM_EN (1 << 31)
-#define PLANE_WM_IGNORE_LINES (1 << 30)
-#define PLANE_WM_LINES_MASK REG_GENMASK(26, 14)
-#define PLANE_WM_BLOCKS_MASK REG_GENMASK(11, 0)
-
-#define _CUR_WM_0(pipe) _PIPE(pipe, _CUR_WM_A_0, _CUR_WM_B_0)
-#define CUR_WM(pipe, level) _MMIO(_CUR_WM_0(pipe) + ((4) * (level)))
-#define CUR_WM_SAGV(pipe) _MMIO_PIPE(pipe, _CUR_WM_SAGV_A, _CUR_WM_SAGV_B)
-#define CUR_WM_SAGV_TRANS(pipe) _MMIO_PIPE(pipe, _CUR_WM_SAGV_TRANS_A, _CUR_WM_SAGV_TRANS_B)
-#define CUR_WM_TRANS(pipe) _MMIO_PIPE(pipe, _CUR_WM_TRANS_A, _CUR_WM_TRANS_B)
-#define _PLANE_WM_1(pipe) _PIPE(pipe, _PLANE_WM_1_A_0, _PLANE_WM_1_B_0)
-#define _PLANE_WM_2(pipe) _PIPE(pipe, _PLANE_WM_2_A_0, _PLANE_WM_2_B_0)
-#define _PLANE_WM_BASE(pipe, plane) \
- _PLANE(plane, _PLANE_WM_1(pipe), _PLANE_WM_2(pipe))
-#define PLANE_WM(pipe, plane, level) \
- _MMIO(_PLANE_WM_BASE(pipe, plane) + ((4) * (level)))
-#define _PLANE_WM_SAGV_1(pipe) \
- _PIPE(pipe, _PLANE_WM_SAGV_1_A, _PLANE_WM_SAGV_1_B)
-#define _PLANE_WM_SAGV_2(pipe) \
- _PIPE(pipe, _PLANE_WM_SAGV_2_A, _PLANE_WM_SAGV_2_B)
-#define PLANE_WM_SAGV(pipe, plane) \
- _MMIO(_PLANE(plane, _PLANE_WM_SAGV_1(pipe), _PLANE_WM_SAGV_2(pipe)))
-#define _PLANE_WM_SAGV_TRANS_1(pipe) \
- _PIPE(pipe, _PLANE_WM_SAGV_TRANS_1_A, _PLANE_WM_SAGV_TRANS_1_B)
-#define _PLANE_WM_SAGV_TRANS_2(pipe) \
- _PIPE(pipe, _PLANE_WM_SAGV_TRANS_2_A, _PLANE_WM_SAGV_TRANS_2_B)
-#define PLANE_WM_SAGV_TRANS(pipe, plane) \
- _MMIO(_PLANE(plane, _PLANE_WM_SAGV_TRANS_1(pipe), _PLANE_WM_SAGV_TRANS_2(pipe)))
-#define _PLANE_WM_TRANS_1(pipe) \
- _PIPE(pipe, _PLANE_WM_TRANS_1_A, _PLANE_WM_TRANS_1_B)
-#define _PLANE_WM_TRANS_2(pipe) \
- _PIPE(pipe, _PLANE_WM_TRANS_2_A, _PLANE_WM_TRANS_2_B)
-#define PLANE_WM_TRANS(pipe, plane) \
- _MMIO(_PLANE(plane, _PLANE_WM_TRANS_1(pipe), _PLANE_WM_TRANS_2(pipe)))
-
/* define the Watermark register on Ironlake */
#define _WM0_PIPEA_ILK 0x45100
#define _WM0_PIPEB_ILK 0x45104
@@ -4192,6 +3073,7 @@
#define CUR_FBC_EN REG_BIT(31)
#define CUR_FBC_HEIGHT_MASK REG_GENMASK(7, 0)
#define CUR_FBC_HEIGHT(h) REG_FIELD_PREP(CUR_FBC_HEIGHT_MASK, (h))
+#define _CUR_CHICKEN_A 0x700a4 /* mtl+ */
#define _CURASURFLIVE 0x700ac /* g4x+ */
#define _CURBCNTR 0x700c0
#define _CURBBASE 0x700c4
@@ -4206,6 +3088,7 @@
#define CURPOS(pipe) _MMIO_CURSOR2(pipe, _CURAPOS)
#define CURSIZE(pipe) _MMIO_CURSOR2(pipe, _CURASIZE)
#define CUR_FBC_CTL(pipe) _MMIO_CURSOR2(pipe, _CUR_FBC_CTL_A)
+#define CUR_CHICKEN(pipe) _MMIO_CURSOR2(pipe, _CUR_CHICKEN_A)
#define CURSURFLIVE(pipe) _MMIO_CURSOR2(pipe, _CURASURFLIVE)
#define CURSOR_A_OFFSET 0x70080
@@ -4337,7 +3220,7 @@
/* Pipe B */
#define _PIPEBDSL (DISPLAY_MMIO_BASE(dev_priv) + 0x71000)
-#define _PIPEBCONF (DISPLAY_MMIO_BASE(dev_priv) + 0x71008)
+#define _TRANSBCONF (DISPLAY_MMIO_BASE(dev_priv) + 0x71008)
#define _PIPEBSTAT (DISPLAY_MMIO_BASE(dev_priv) + 0x71024)
#define _PIPEBFRAMEHIGH 0x71040
#define _PIPEBFRAMEPIXEL 0x71044
@@ -4608,6 +3491,7 @@
#define SP_CONST_ALPHA_ENABLE REG_BIT(31)
#define SP_CONST_ALPHA_MASK REG_GENMASK(7, 0)
#define SP_CONST_ALPHA(alpha) REG_FIELD_PREP(SP_CONST_ALPHA_MASK, (alpha))
+#define _SPASURFLIVE (VLV_DISPLAY_BASE + 0x721ac)
#define _SPACLRC0 (VLV_DISPLAY_BASE + 0x721d0)
#define SP_CONTRAST_MASK REG_GENMASK(26, 18)
#define SP_CONTRAST(x) REG_FIELD_PREP(SP_CONTRAST_MASK, (x)) /* u3.6 */
@@ -4631,6 +3515,7 @@
#define _SPBKEYMAXVAL (VLV_DISPLAY_BASE + 0x722a0)
#define _SPBTILEOFF (VLV_DISPLAY_BASE + 0x722a4)
#define _SPBCONSTALPHA (VLV_DISPLAY_BASE + 0x722a8)
+#define _SPBSURFLIVE (VLV_DISPLAY_BASE + 0x722ac)
#define _SPBCLRC0 (VLV_DISPLAY_BASE + 0x722d0)
#define _SPBCLRC1 (VLV_DISPLAY_BASE + 0x722d4)
#define _SPBGAMC (VLV_DISPLAY_BASE + 0x722e0)
@@ -4651,6 +3536,7 @@
#define SPKEYMAXVAL(pipe, plane_id) _MMIO_VLV_SPR((pipe), (plane_id), _SPAKEYMAXVAL, _SPBKEYMAXVAL)
#define SPTILEOFF(pipe, plane_id) _MMIO_VLV_SPR((pipe), (plane_id), _SPATILEOFF, _SPBTILEOFF)
#define SPCONSTALPHA(pipe, plane_id) _MMIO_VLV_SPR((pipe), (plane_id), _SPACONSTALPHA, _SPBCONSTALPHA)
+#define SPSURFLIVE(pipe, plane_id) _MMIO_VLV_SPR((pipe), (plane_id), _SPASURFLIVE, _SPBSURFLIVE)
#define SPCLRC0(pipe, plane_id) _MMIO_VLV_SPR((pipe), (plane_id), _SPACLRC0, _SPBCLRC0)
#define SPCLRC1(pipe, plane_id) _MMIO_VLV_SPR((pipe), (plane_id), _SPACLRC1, _SPBCLRC1)
#define SPGAMC(pipe, plane_id, i) _MMIO(_VLV_SPR((pipe), (plane_id), _SPAGAMC, _SPBGAMC) + (5 - (i)) * 4) /* 6 x u0.10 */
@@ -4802,10 +3688,13 @@
#define _PLANE_KEYVAL_2_A 0x70294
#define _PLANE_KEYMSK_1_A 0x70198
#define _PLANE_KEYMSK_2_A 0x70298
-#define PLANE_KEYMSK_ALPHA_ENABLE (1 << 31)
+#define PLANE_KEYMSK_ALPHA_ENABLE REG_BIT(31)
#define _PLANE_KEYMAX_1_A 0x701a0
#define _PLANE_KEYMAX_2_A 0x702a0
-#define PLANE_KEYMAX_ALPHA(a) ((a) << 24)
+#define PLANE_KEYMAX_ALPHA_MASK REG_GENMASK(31, 24)
+#define PLANE_KEYMAX_ALPHA(a) REG_FIELD_PREP(PLANE_KEYMAX_ALPHA_MASK, (a))
+#define _PLANE_SURFLIVE_1_A 0x701ac
+#define _PLANE_SURFLIVE_2_A 0x702ac
#define _PLANE_CC_VAL_1_A 0x701b4
#define _PLANE_CC_VAL_2_A 0x702b4
#define _PLANE_AUX_DIST_1_A 0x701c0
@@ -4852,8 +3741,16 @@
#define PLANE_COLOR_ALPHA_DISABLE REG_FIELD_PREP(PLANE_COLOR_ALPHA_MASK, 0)
#define PLANE_COLOR_ALPHA_SW_PREMULTIPLY REG_FIELD_PREP(PLANE_COLOR_ALPHA_MASK, 2)
#define PLANE_COLOR_ALPHA_HW_PREMULTIPLY REG_FIELD_PREP(PLANE_COLOR_ALPHA_MASK, 3)
+#define _PLANE_CHICKEN_1_A 0x7026C /* tgl+ */
+#define _PLANE_CHICKEN_2_A 0x7036C /* tgl+ */
+#define PLANE_CHICKEN_DISABLE_DPT REG_BIT(19) /* mtl+ */
#define _PLANE_BUF_CFG_1_A 0x7027c
#define _PLANE_BUF_CFG_2_A 0x7037c
+/* skl+: 10 bits, icl+ 11 bits, adlp+ 12 bits */
+#define PLANE_BUF_END_MASK REG_GENMASK(27, 16)
+#define PLANE_BUF_END(end) REG_FIELD_PREP(PLANE_BUF_END_MASK, (end))
+#define PLANE_BUF_START_MASK REG_GENMASK(11, 0)
+#define PLANE_BUF_START(start) REG_FIELD_PREP(PLANE_BUF_START_MASK, (start))
#define _PLANE_NV12_BUF_CFG_1_A 0x70278
#define _PLANE_NV12_BUF_CFG_2_A 0x70378
@@ -4990,28 +3887,19 @@
#define PLANE_KEYMAX(pipe, plane) \
_MMIO_PLANE(plane, _PLANE_KEYMAX_1(pipe), _PLANE_KEYMAX_2(pipe))
-#define _PLANE_BUF_CFG_1_B 0x7127c
-#define _PLANE_BUF_CFG_2_B 0x7137c
-/* skl+: 10 bits, icl+ 11 bits, adlp+ 12 bits */
-#define PLANE_BUF_END_MASK REG_GENMASK(27, 16)
-#define PLANE_BUF_END(end) REG_FIELD_PREP(PLANE_BUF_END_MASK, (end))
-#define PLANE_BUF_START_MASK REG_GENMASK(11, 0)
-#define PLANE_BUF_START(start) REG_FIELD_PREP(PLANE_BUF_START_MASK, (start))
-#define _PLANE_BUF_CFG_1(pipe) \
- _PIPE(pipe, _PLANE_BUF_CFG_1_A, _PLANE_BUF_CFG_1_B)
-#define _PLANE_BUF_CFG_2(pipe) \
- _PIPE(pipe, _PLANE_BUF_CFG_2_A, _PLANE_BUF_CFG_2_B)
-#define PLANE_BUF_CFG(pipe, plane) \
- _MMIO_PLANE(plane, _PLANE_BUF_CFG_1(pipe), _PLANE_BUF_CFG_2(pipe))
-
-#define _PLANE_NV12_BUF_CFG_1_B 0x71278
-#define _PLANE_NV12_BUF_CFG_2_B 0x71378
-#define _PLANE_NV12_BUF_CFG_1(pipe) \
- _PIPE(pipe, _PLANE_NV12_BUF_CFG_1_A, _PLANE_NV12_BUF_CFG_1_B)
-#define _PLANE_NV12_BUF_CFG_2(pipe) \
- _PIPE(pipe, _PLANE_NV12_BUF_CFG_2_A, _PLANE_NV12_BUF_CFG_2_B)
-#define PLANE_NV12_BUF_CFG(pipe, plane) \
- _MMIO_PLANE(plane, _PLANE_NV12_BUF_CFG_1(pipe), _PLANE_NV12_BUF_CFG_2(pipe))
+#define _PLANE_SURFLIVE_1_B 0x711ac
+#define _PLANE_SURFLIVE_2_B 0x712ac
+#define _PLANE_SURFLIVE_1(pipe) _PIPE(pipe, _PLANE_SURFLIVE_1_A, _PLANE_SURFLIVE_1_B)
+#define _PLANE_SURFLIVE_2(pipe) _PIPE(pipe, _PLANE_SURFLIVE_2_A, _PLANE_SURFLIVE_2_B)
+#define PLANE_SURFLIVE(pipe, plane) \
+ _MMIO_PLANE(plane, _PLANE_SURFLIVE_1(pipe), _PLANE_SURFLIVE_2(pipe))
+
+#define _PLANE_CHICKEN_1_B 0x7126c
+#define _PLANE_CHICKEN_2_B 0x7136c
+#define _PLANE_CHICKEN_1(pipe) _PIPE(pipe, _PLANE_CHICKEN_1_A, _PLANE_CHICKEN_1_B)
+#define _PLANE_CHICKEN_2(pipe) _PIPE(pipe, _PLANE_CHICKEN_2_A, _PLANE_CHICKEN_2_B)
+#define PLANE_CHICKEN(pipe, plane) \
+ _MMIO_PLANE(plane, _PLANE_CHICKEN_1(pipe), _PLANE_CHICKEN_2(pipe))
#define _PLANE_AUX_DIST_1_B 0x711c0
#define _PLANE_AUX_DIST_2_B 0x712c0
@@ -5050,56 +3938,6 @@
#define PLANE_COLOR_CTL(pipe, plane) \
_MMIO_PLANE(plane, _PLANE_COLOR_CTL_1(pipe), _PLANE_COLOR_CTL_2(pipe))
-#define _SEL_FETCH_PLANE_BASE_1_A 0x70890
-#define _SEL_FETCH_PLANE_BASE_2_A 0x708B0
-#define _SEL_FETCH_PLANE_BASE_3_A 0x708D0
-#define _SEL_FETCH_PLANE_BASE_4_A 0x708F0
-#define _SEL_FETCH_PLANE_BASE_5_A 0x70920
-#define _SEL_FETCH_PLANE_BASE_6_A 0x70940
-#define _SEL_FETCH_PLANE_BASE_7_A 0x70960
-#define _SEL_FETCH_PLANE_BASE_CUR_A 0x70880
-#define _SEL_FETCH_PLANE_BASE_1_B 0x71890
-
-#define _SEL_FETCH_PLANE_BASE_A(plane) _PICK(plane, \
- _SEL_FETCH_PLANE_BASE_1_A, \
- _SEL_FETCH_PLANE_BASE_2_A, \
- _SEL_FETCH_PLANE_BASE_3_A, \
- _SEL_FETCH_PLANE_BASE_4_A, \
- _SEL_FETCH_PLANE_BASE_5_A, \
- _SEL_FETCH_PLANE_BASE_6_A, \
- _SEL_FETCH_PLANE_BASE_7_A, \
- _SEL_FETCH_PLANE_BASE_CUR_A)
-#define _SEL_FETCH_PLANE_BASE_1(pipe) _PIPE(pipe, _SEL_FETCH_PLANE_BASE_1_A, _SEL_FETCH_PLANE_BASE_1_B)
-#define _SEL_FETCH_PLANE_BASE(pipe, plane) (_SEL_FETCH_PLANE_BASE_1(pipe) - \
- _SEL_FETCH_PLANE_BASE_1_A + \
- _SEL_FETCH_PLANE_BASE_A(plane))
-
-#define _SEL_FETCH_PLANE_CTL_1_A 0x70890
-#define PLANE_SEL_FETCH_CTL(pipe, plane) _MMIO(_SEL_FETCH_PLANE_BASE(pipe, plane) + \
- _SEL_FETCH_PLANE_CTL_1_A - \
- _SEL_FETCH_PLANE_BASE_1_A)
-#define PLANE_SEL_FETCH_CTL_ENABLE REG_BIT(31)
-
-#define _SEL_FETCH_PLANE_POS_1_A 0x70894
-#define PLANE_SEL_FETCH_POS(pipe, plane) _MMIO(_SEL_FETCH_PLANE_BASE(pipe, plane) + \
- _SEL_FETCH_PLANE_POS_1_A - \
- _SEL_FETCH_PLANE_BASE_1_A)
-
-#define _SEL_FETCH_PLANE_SIZE_1_A 0x70898
-#define PLANE_SEL_FETCH_SIZE(pipe, plane) _MMIO(_SEL_FETCH_PLANE_BASE(pipe, plane) + \
- _SEL_FETCH_PLANE_SIZE_1_A - \
- _SEL_FETCH_PLANE_BASE_1_A)
-
-#define _SEL_FETCH_PLANE_OFFSET_1_A 0x7089C
-#define PLANE_SEL_FETCH_OFFSET(pipe, plane) _MMIO(_SEL_FETCH_PLANE_BASE(pipe, plane) + \
- _SEL_FETCH_PLANE_OFFSET_1_A - \
- _SEL_FETCH_PLANE_BASE_1_A)
-
-/* SKL new cursor registers */
-#define _CUR_BUF_CFG_A 0x7017c
-#define _CUR_BUF_CFG_B 0x7117c
-#define CUR_BUF_CFG(pipe) _MMIO_PIPE(pipe, _CUR_BUF_CFG_A, _CUR_BUF_CFG_B)
-
/* VBIOS regs */
#define VGACNTRL _MMIO(0x71400)
# define VGA_DISP_DISABLE (1 << 31)
@@ -5129,14 +3967,6 @@
#define RR_HW_LOW_POWER_FRAMES_MASK 0xff
#define RR_HW_HIGH_POWER_FRAMES_MASK 0xff00
-#define FDI_PLL_BIOS_0 _MMIO(0x46000)
-#define FDI_PLL_FB_CLOCK_MASK 0xff
-#define FDI_PLL_BIOS_1 _MMIO(0x46004)
-#define FDI_PLL_BIOS_2 _MMIO(0x46008)
-#define DISPLAY_PORT_PLL_BIOS_0 _MMIO(0x4600c)
-#define DISPLAY_PORT_PLL_BIOS_1 _MMIO(0x46010)
-#define DISPLAY_PORT_PLL_BIOS_2 _MMIO(0x46014)
-
#define PCH_3DCGDIS0 _MMIO(0x46020)
# define MARIUNIT_CLOCK_GATE_DISABLE (1 << 18)
# define SVSMUNIT_CLOCK_GATE_DISABLE (1 << 1)
@@ -5144,12 +3974,6 @@
#define PCH_3DCGDIS1 _MMIO(0x46024)
# define VFMUNIT_CLOCK_GATE_DISABLE (1 << 11)
-#define FDI_PLL_FREQ_CTL _MMIO(0x46030)
-#define FDI_PLL_FREQ_CHANGE_REQUEST (1 << 24)
-#define FDI_PLL_FREQ_LOCK_LIMIT_MASK 0xfff00
-#define FDI_PLL_FREQ_DISABLE_COUNT_LIMIT_MASK 0xff
-
-
#define _PIPEA_DATA_M1 0x60030
#define _PIPEA_DATA_N1 0x60034
#define _PIPEA_DATA_M2 0x60038
@@ -5367,34 +4191,42 @@
/* legacy palette */
#define _LGC_PALETTE_A 0x4a000
#define _LGC_PALETTE_B 0x4a800
-#define LGC_PALETTE_RED_MASK REG_GENMASK(23, 16)
-#define LGC_PALETTE_GREEN_MASK REG_GENMASK(15, 8)
-#define LGC_PALETTE_BLUE_MASK REG_GENMASK(7, 0)
+/* see PALETTE_* for the bits */
#define LGC_PALETTE(pipe, i) _MMIO(_PIPE(pipe, _LGC_PALETTE_A, _LGC_PALETTE_B) + (i) * 4)
/* ilk/snb precision palette */
#define _PREC_PALETTE_A 0x4b000
#define _PREC_PALETTE_B 0x4c000
-#define PREC_PALETTE_RED_MASK REG_GENMASK(29, 20)
-#define PREC_PALETTE_GREEN_MASK REG_GENMASK(19, 10)
-#define PREC_PALETTE_BLUE_MASK REG_GENMASK(9, 0)
+/* 10bit mode */
+#define PREC_PALETTE_10_RED_MASK REG_GENMASK(29, 20)
+#define PREC_PALETTE_10_GREEN_MASK REG_GENMASK(19, 10)
+#define PREC_PALETTE_10_BLUE_MASK REG_GENMASK(9, 0)
+/* 12.4 interpolated mode ldw */
+#define PREC_PALETTE_12P4_RED_LDW_MASK REG_GENMASK(29, 24)
+#define PREC_PALETTE_12P4_GREEN_LDW_MASK REG_GENMASK(19, 14)
+#define PREC_PALETTE_12P4_BLUE_LDW_MASK REG_GENMASK(9, 4)
+/* 12.4 interpolated mode udw */
+#define PREC_PALETTE_12P4_RED_UDW_MASK REG_GENMASK(29, 20)
+#define PREC_PALETTE_12P4_GREEN_UDW_MASK REG_GENMASK(19, 10)
+#define PREC_PALETTE_12P4_BLUE_UDW_MASK REG_GENMASK(9, 0)
#define PREC_PALETTE(pipe, i) _MMIO(_PIPE(pipe, _PREC_PALETTE_A, _PREC_PALETTE_B) + (i) * 4)
#define _PREC_PIPEAGCMAX 0x4d000
#define _PREC_PIPEBGCMAX 0x4d010
-#define PREC_PIPEGCMAX(pipe, i) _MMIO(_PIPE(pipe, _PIPEAGCMAX, _PIPEBGCMAX) + (i) * 4)
+#define PREC_PIPEGCMAX(pipe, i) _MMIO(_PIPE(pipe, _PIPEAGCMAX, _PIPEBGCMAX) + (i) * 4) /* u1.16 */
#define _GAMMA_MODE_A 0x4a480
#define _GAMMA_MODE_B 0x4ac80
#define GAMMA_MODE(pipe) _MMIO_PIPE(pipe, _GAMMA_MODE_A, _GAMMA_MODE_B)
-#define PRE_CSC_GAMMA_ENABLE (1 << 31)
-#define POST_CSC_GAMMA_ENABLE (1 << 30)
-#define GAMMA_MODE_MODE_MASK (3 << 0)
-#define GAMMA_MODE_MODE_8BIT (0 << 0)
-#define GAMMA_MODE_MODE_10BIT (1 << 0)
-#define GAMMA_MODE_MODE_12BIT (2 << 0)
-#define GAMMA_MODE_MODE_SPLIT (3 << 0) /* ivb-bdw */
-#define GAMMA_MODE_MODE_12BIT_MULTI_SEGMENTED (3 << 0) /* icl + */
+#define PRE_CSC_GAMMA_ENABLE REG_BIT(31) /* icl+ */
+#define POST_CSC_GAMMA_ENABLE REG_BIT(30) /* icl+ */
+#define PALETTE_ANTICOL_DISABLE REG_BIT(15) /* skl+ */
+#define GAMMA_MODE_MODE_MASK REG_GENMASK(1, 0)
+#define GAMMA_MODE_MODE_8BIT REG_FIELD_PREP(GAMMA_MODE_MODE_MASK, 0)
+#define GAMMA_MODE_MODE_10BIT REG_FIELD_PREP(GAMMA_MODE_MODE_MASK, 1)
+#define GAMMA_MODE_MODE_12BIT REG_FIELD_PREP(GAMMA_MODE_MODE_MASK, 2)
+#define GAMMA_MODE_MODE_SPLIT REG_FIELD_PREP(GAMMA_MODE_MODE_MASK, 3) /* ivb-bdw */
+#define GAMMA_MODE_MODE_12BIT_MULTI_SEG REG_FIELD_PREP(GAMMA_MODE_MODE_MASK, 3) /* icl-tgl */
/* Display Internal Timeout Register */
#define RM_TIMEOUT _MMIO(0x42060)
@@ -5506,6 +4338,7 @@
#define GEN8_PIPE_CDCLK_CRC_DONE (1 << 28)
#define XELPD_PIPE_SOFT_UNDERRUN (1 << 22)
#define XELPD_PIPE_HARD_UNDERRUN (1 << 21)
+#define GEN12_PIPE_VBLANK_UNMOD (1 << 19)
#define GEN8_PIPE_CURSOR_FAULT (1 << 10)
#define GEN8_PIPE_SPRITE_FAULT (1 << 9)
#define GEN8_PIPE_PRIMARY_FAULT (1 << 8)
@@ -5693,6 +4526,7 @@
#define KVM_CONFIG_CHANGE_NOTIFICATION_SELECT (1 << 14)
#define CHICKEN_MISC_2 _MMIO(0x42084)
+#define CHICKEN_MISC_DISABLE_DPT REG_BIT(30) /* adl,dg2 */
#define KBL_ARB_FILL_SPARE_14 REG_BIT(14)
#define KBL_ARB_FILL_SPARE_13 REG_BIT(13)
#define GLK_CL2_PWR_DOWN (1 << 12)
@@ -5763,30 +4597,6 @@
#define DISP_DATA_PARTITION_5_6 (1 << 6)
#define DISP_IPC_ENABLE (1 << 3)
-/*
- * The below are numbered starting from "S1" on gen11/gen12, but starting
- * with display 13, the bspec switches to a 0-based numbering scheme
- * (although the addresses stay the same so new S0 = old S1, new S1 = old S2).
- * We'll just use the 0-based numbering here for all platforms since it's the
- * way things will be named by the hardware team going forward, plus it's more
- * consistent with how most of the rest of our registers are named.
- */
-#define _DBUF_CTL_S0 0x45008
-#define _DBUF_CTL_S1 0x44FE8
-#define _DBUF_CTL_S2 0x44300
-#define _DBUF_CTL_S3 0x44304
-#define DBUF_CTL_S(slice) _MMIO(_PICK(slice, \
- _DBUF_CTL_S0, \
- _DBUF_CTL_S1, \
- _DBUF_CTL_S2, \
- _DBUF_CTL_S3))
-#define DBUF_POWER_REQUEST REG_BIT(31)
-#define DBUF_POWER_STATE REG_BIT(30)
-#define DBUF_TRACKER_STATE_SERVICE_MASK REG_GENMASK(23, 19)
-#define DBUF_TRACKER_STATE_SERVICE(x) REG_FIELD_PREP(DBUF_TRACKER_STATE_SERVICE_MASK, x)
-#define DBUF_MIN_TRACKER_STATE_SERVICE_MASK REG_GENMASK(18, 16) /* ADL-P+ */
-#define DBUF_MIN_TRACKER_STATE_SERVICE(x) REG_FIELD_PREP(DBUF_MIN_TRACKER_STATE_SERVICE_MASK, x) /* ADL-P+ */
-
#define GEN7_MSG_CTL _MMIO(0x45010)
#define WAIT_FOR_PCH_RESET_ACK (1 << 1)
#define WAIT_FOR_PCH_FLR_ACK (1 << 0)
@@ -5811,6 +4621,7 @@
#define RESET_PCH_HANDSHAKE_ENABLE REG_BIT(4)
#define GEN8_CHICKEN_DCPR_1 _MMIO(0x46430)
+#define LATENCY_REPORTING_REMOVED_PIPE_D REG_BIT(31)
#define SKL_SELECT_ALTERNATE_DC_EXIT REG_BIT(30)
#define LATENCY_REPORTING_REMOVED_PIPE_C REG_BIT(25)
#define LATENCY_REPORTING_REMOVED_PIPE_B REG_BIT(24)
@@ -5847,6 +4658,11 @@
#define ICL_DSSM_CDCLK_PLL_REFCLK_19_2MHz (1 << 29)
#define ICL_DSSM_CDCLK_PLL_REFCLK_38_4MHz (2 << 29)
+#define GMD_ID_DISPLAY _MMIO(0x510a0)
+#define GMD_ID_ARCH_MASK REG_GENMASK(31, 22)
+#define GMD_ID_RELEASE_MASK REG_GENMASK(21, 14)
+#define GMD_ID_STEP REG_GENMASK(5, 0)
+
/*GEN11 chicken */
#define _PIPEA_CHICKEN 0x70038
#define _PIPEB_CHICKEN 0x71038
@@ -6035,6 +4851,7 @@
#define SHOTPLUG_CTL_DDI _MMIO(0xc4030)
#define SHOTPLUG_CTL_DDI_HPD_ENABLE(hpd_pin) (0x8 << (_HPD_PIN_DDI(hpd_pin) * 4))
+#define SHOTPLUG_CTL_DDI_HPD_OUTPUT_DATA(hpd_pin) (0x4 << (_HPD_PIN_DDI(hpd_pin) * 4))
#define SHOTPLUG_CTL_DDI_HPD_STATUS_MASK(hpd_pin) (0x3 << (_HPD_PIN_DDI(hpd_pin) * 4))
#define SHOTPLUG_CTL_DDI_HPD_NO_DETECT(hpd_pin) (0x0 << (_HPD_PIN_DDI(hpd_pin) * 4))
#define SHOTPLUG_CTL_DDI_HPD_SHORT_DETECT(hpd_pin) (0x1 << (_HPD_PIN_DDI(hpd_pin) * 4))
@@ -6315,6 +5132,7 @@
#define CHASSIS_CLK_REQ_DURATION_MASK (0xf << 8)
#define CHASSIS_CLK_REQ_DURATION(x) ((x) << 8)
#define SBCLK_RUN_REFCLK_DIS (1 << 7)
+#define ICP_SECOND_PPS_IO_SELECT REG_BIT(2)
#define SPT_PWM_GRANULARITY (1 << 0)
#define SOUTH_CHICKEN2 _MMIO(0xc2004)
#define FDI_MPHY_IOSFSB_RESET_STATUS (1 << 13)
@@ -6322,12 +5140,6 @@
#define LPT_PWM_GRANULARITY (1 << 5)
#define DPLS_EDP_PPS_FIX_DIS (1 << 0)
-#define _FDI_RXA_CHICKEN 0xc200c
-#define _FDI_RXB_CHICKEN 0xc2010
-#define FDI_RX_PHASE_SYNC_POINTER_OVR (1 << 1)
-#define FDI_RX_PHASE_SYNC_POINTER_EN (1 << 0)
-#define FDI_RX_CHICKEN(pipe) _MMIO_PIPE(pipe, _FDI_RXA_CHICKEN, _FDI_RXB_CHICKEN)
-
#define SOUTH_DSPCLK_GATE_D _MMIO(0xc2020)
#define PCH_GMBUSUNIT_CLOCK_GATE_DISABLE (1 << 31)
#define PCH_DPLUNIT_CLOCK_GATE_DISABLE (1 << 30)
@@ -6337,130 +5149,6 @@
#define CNP_PWM_CGE_GATING_DISABLE (1 << 13)
#define PCH_LP_PARTITION_LEVEL_DISABLE (1 << 12)
-/* CPU: FDI_TX */
-#define _FDI_TXA_CTL 0x60100
-#define _FDI_TXB_CTL 0x61100
-#define FDI_TX_CTL(pipe) _MMIO_PIPE(pipe, _FDI_TXA_CTL, _FDI_TXB_CTL)
-#define FDI_TX_DISABLE (0 << 31)
-#define FDI_TX_ENABLE (1 << 31)
-#define FDI_LINK_TRAIN_PATTERN_1 (0 << 28)
-#define FDI_LINK_TRAIN_PATTERN_2 (1 << 28)
-#define FDI_LINK_TRAIN_PATTERN_IDLE (2 << 28)
-#define FDI_LINK_TRAIN_NONE (3 << 28)
-#define FDI_LINK_TRAIN_VOLTAGE_0_4V (0 << 25)
-#define FDI_LINK_TRAIN_VOLTAGE_0_6V (1 << 25)
-#define FDI_LINK_TRAIN_VOLTAGE_0_8V (2 << 25)
-#define FDI_LINK_TRAIN_VOLTAGE_1_2V (3 << 25)
-#define FDI_LINK_TRAIN_PRE_EMPHASIS_NONE (0 << 22)
-#define FDI_LINK_TRAIN_PRE_EMPHASIS_1_5X (1 << 22)
-#define FDI_LINK_TRAIN_PRE_EMPHASIS_2X (2 << 22)
-#define FDI_LINK_TRAIN_PRE_EMPHASIS_3X (3 << 22)
-/* ILK always use 400mV 0dB for voltage swing and pre-emphasis level.
- SNB has different settings. */
-/* SNB A-stepping */
-#define FDI_LINK_TRAIN_400MV_0DB_SNB_A (0x38 << 22)
-#define FDI_LINK_TRAIN_400MV_6DB_SNB_A (0x02 << 22)
-#define FDI_LINK_TRAIN_600MV_3_5DB_SNB_A (0x01 << 22)
-#define FDI_LINK_TRAIN_800MV_0DB_SNB_A (0x0 << 22)
-/* SNB B-stepping */
-#define FDI_LINK_TRAIN_400MV_0DB_SNB_B (0x0 << 22)
-#define FDI_LINK_TRAIN_400MV_6DB_SNB_B (0x3a << 22)
-#define FDI_LINK_TRAIN_600MV_3_5DB_SNB_B (0x39 << 22)
-#define FDI_LINK_TRAIN_800MV_0DB_SNB_B (0x38 << 22)
-#define FDI_LINK_TRAIN_VOL_EMP_MASK (0x3f << 22)
-#define FDI_DP_PORT_WIDTH_SHIFT 19
-#define FDI_DP_PORT_WIDTH_MASK (7 << FDI_DP_PORT_WIDTH_SHIFT)
-#define FDI_DP_PORT_WIDTH(width) (((width) - 1) << FDI_DP_PORT_WIDTH_SHIFT)
-#define FDI_TX_ENHANCE_FRAME_ENABLE (1 << 18)
-/* Ironlake: hardwired to 1 */
-#define FDI_TX_PLL_ENABLE (1 << 14)
-
-/* Ivybridge has different bits for lolz */
-#define FDI_LINK_TRAIN_PATTERN_1_IVB (0 << 8)
-#define FDI_LINK_TRAIN_PATTERN_2_IVB (1 << 8)
-#define FDI_LINK_TRAIN_PATTERN_IDLE_IVB (2 << 8)
-#define FDI_LINK_TRAIN_NONE_IVB (3 << 8)
-
-/* both Tx and Rx */
-#define FDI_COMPOSITE_SYNC (1 << 11)
-#define FDI_LINK_TRAIN_AUTO (1 << 10)
-#define FDI_SCRAMBLING_ENABLE (0 << 7)
-#define FDI_SCRAMBLING_DISABLE (1 << 7)
-
-/* FDI_RX, FDI_X is hard-wired to Transcoder_X */
-#define _FDI_RXA_CTL 0xf000c
-#define _FDI_RXB_CTL 0xf100c
-#define FDI_RX_CTL(pipe) _MMIO_PIPE(pipe, _FDI_RXA_CTL, _FDI_RXB_CTL)
-#define FDI_RX_ENABLE (1 << 31)
-/* train, dp width same as FDI_TX */
-#define FDI_FS_ERRC_ENABLE (1 << 27)
-#define FDI_FE_ERRC_ENABLE (1 << 26)
-#define FDI_RX_POLARITY_REVERSED_LPT (1 << 16)
-#define FDI_8BPC (0 << 16)
-#define FDI_10BPC (1 << 16)
-#define FDI_6BPC (2 << 16)
-#define FDI_12BPC (3 << 16)
-#define FDI_RX_LINK_REVERSAL_OVERRIDE (1 << 15)
-#define FDI_DMI_LINK_REVERSE_MASK (1 << 14)
-#define FDI_RX_PLL_ENABLE (1 << 13)
-#define FDI_FS_ERR_CORRECT_ENABLE (1 << 11)
-#define FDI_FE_ERR_CORRECT_ENABLE (1 << 10)
-#define FDI_FS_ERR_REPORT_ENABLE (1 << 9)
-#define FDI_FE_ERR_REPORT_ENABLE (1 << 8)
-#define FDI_RX_ENHANCE_FRAME_ENABLE (1 << 6)
-#define FDI_PCDCLK (1 << 4)
-/* CPT */
-#define FDI_AUTO_TRAINING (1 << 10)
-#define FDI_LINK_TRAIN_PATTERN_1_CPT (0 << 8)
-#define FDI_LINK_TRAIN_PATTERN_2_CPT (1 << 8)
-#define FDI_LINK_TRAIN_PATTERN_IDLE_CPT (2 << 8)
-#define FDI_LINK_TRAIN_NORMAL_CPT (3 << 8)
-#define FDI_LINK_TRAIN_PATTERN_MASK_CPT (3 << 8)
-
-#define _FDI_RXA_MISC 0xf0010
-#define _FDI_RXB_MISC 0xf1010
-#define FDI_RX_PWRDN_LANE1_MASK (3 << 26)
-#define FDI_RX_PWRDN_LANE1_VAL(x) ((x) << 26)
-#define FDI_RX_PWRDN_LANE0_MASK (3 << 24)
-#define FDI_RX_PWRDN_LANE0_VAL(x) ((x) << 24)
-#define FDI_RX_TP1_TO_TP2_48 (2 << 20)
-#define FDI_RX_TP1_TO_TP2_64 (3 << 20)
-#define FDI_RX_FDI_DELAY_90 (0x90 << 0)
-#define FDI_RX_MISC(pipe) _MMIO_PIPE(pipe, _FDI_RXA_MISC, _FDI_RXB_MISC)
-
-#define _FDI_RXA_TUSIZE1 0xf0030
-#define _FDI_RXA_TUSIZE2 0xf0038
-#define _FDI_RXB_TUSIZE1 0xf1030
-#define _FDI_RXB_TUSIZE2 0xf1038
-#define FDI_RX_TUSIZE1(pipe) _MMIO_PIPE(pipe, _FDI_RXA_TUSIZE1, _FDI_RXB_TUSIZE1)
-#define FDI_RX_TUSIZE2(pipe) _MMIO_PIPE(pipe, _FDI_RXA_TUSIZE2, _FDI_RXB_TUSIZE2)
-
-/* FDI_RX interrupt register format */
-#define FDI_RX_INTER_LANE_ALIGN (1 << 10)
-#define FDI_RX_SYMBOL_LOCK (1 << 9) /* train 2 */
-#define FDI_RX_BIT_LOCK (1 << 8) /* train 1 */
-#define FDI_RX_TRAIN_PATTERN_2_FAIL (1 << 7)
-#define FDI_RX_FS_CODE_ERR (1 << 6)
-#define FDI_RX_FE_CODE_ERR (1 << 5)
-#define FDI_RX_SYMBOL_ERR_RATE_ABOVE (1 << 4)
-#define FDI_RX_HDCP_LINK_FAIL (1 << 3)
-#define FDI_RX_PIXEL_FIFO_OVERFLOW (1 << 2)
-#define FDI_RX_CROSS_CLOCK_OVERFLOW (1 << 1)
-#define FDI_RX_SYMBOL_QUEUE_OVERFLOW (1 << 0)
-
-#define _FDI_RXA_IIR 0xf0014
-#define _FDI_RXA_IMR 0xf0018
-#define _FDI_RXB_IIR 0xf1014
-#define _FDI_RXB_IMR 0xf1018
-#define FDI_RX_IIR(pipe) _MMIO_PIPE(pipe, _FDI_RXA_IIR, _FDI_RXB_IIR)
-#define FDI_RX_IMR(pipe) _MMIO_PIPE(pipe, _FDI_RXA_IMR, _FDI_RXB_IMR)
-
-#define FDI_PLL_CTL_1 _MMIO(0xfe000)
-#define FDI_PLL_CTL_2 _MMIO(0xfe004)
-
-#define PCH_LVDS _MMIO(0xe1180)
-#define LVDS_DETECTED (1 << 1)
-
#define _PCH_DP_B 0xe4100
#define PCH_DP_B _MMIO(_PCH_DP_B)
#define _PCH_DPB_AUX_CH_CTL 0xe4110
@@ -6647,6 +5335,12 @@
#define DG1_PCODE_STATUS 0x7E
#define DG1_UNCORE_GET_INIT_STATUS 0x0
#define DG1_UNCORE_INIT_STATUS_COMPLETE 0x1
+#define PCODE_POWER_SETUP 0x7C
+#define POWER_SETUP_SUBCOMMAND_READ_I1 0x4
+#define POWER_SETUP_SUBCOMMAND_WRITE_I1 0x5
+#define POWER_SETUP_I1_WATTS REG_BIT(31)
+#define POWER_SETUP_I1_SHIFT 6 /* 10.6 fixed point format */
+#define POWER_SETUP_I1_DATA_MASK REG_GENMASK(15, 0)
#define GEN12_PCODE_READ_SAGV_BLOCK_TIME_US 0x23
#define XEHP_PCODE_FREQUENCY_CONFIG 0x6e /* xehpsdv, pvc */
/* XEHP_PCODE_FREQUENCY_CONFIG sub-commands (param1) */
@@ -7275,21 +5969,23 @@ enum skl_power_gate {
ADLS_DPCLKA_DDIK_SEL_MASK)
/* ICL PLL */
-#define DPLL0_ENABLE 0x46010
-#define DPLL1_ENABLE 0x46014
+#define _DPLL0_ENABLE 0x46010
+#define _DPLL1_ENABLE 0x46014
#define _ADLS_DPLL2_ENABLE 0x46018
#define _ADLS_DPLL3_ENABLE 0x46030
-#define PLL_ENABLE (1 << 31)
-#define PLL_LOCK (1 << 30)
-#define PLL_POWER_ENABLE (1 << 27)
-#define PLL_POWER_STATE (1 << 26)
-#define ICL_DPLL_ENABLE(pll) _MMIO_PLL3(pll, DPLL0_ENABLE, DPLL1_ENABLE, \
- _ADLS_DPLL2_ENABLE, _ADLS_DPLL3_ENABLE)
+#define PLL_ENABLE REG_BIT(31)
+#define PLL_LOCK REG_BIT(30)
+#define PLL_POWER_ENABLE REG_BIT(27)
+#define PLL_POWER_STATE REG_BIT(26)
+#define ICL_DPLL_ENABLE(pll) _MMIO(_PICK_EVEN_2RANGES(pll, 3, \
+ _DPLL0_ENABLE, _DPLL1_ENABLE, \
+ _ADLS_DPLL3_ENABLE, _ADLS_DPLL3_ENABLE))
#define _DG2_PLL3_ENABLE 0x4601C
-#define DG2_PLL_ENABLE(pll) _MMIO_PLL3(pll, DPLL0_ENABLE, DPLL1_ENABLE, \
- _ADLS_DPLL2_ENABLE, _DG2_PLL3_ENABLE)
+#define DG2_PLL_ENABLE(pll) _MMIO(_PICK_EVEN_2RANGES(pll, 3, \
+ _DPLL0_ENABLE, _DPLL1_ENABLE, \
+ _DG2_PLL3_ENABLE, _DG2_PLL3_ENABLE))
#define TBT_PLL_ENABLE _MMIO(0x46020)
@@ -7297,13 +5993,14 @@ enum skl_power_gate {
#define _MG_PLL2_ENABLE 0x46034
#define _MG_PLL3_ENABLE 0x46038
#define _MG_PLL4_ENABLE 0x4603C
-/* Bits are the same as DPLL0_ENABLE */
+/* Bits are the same as _DPLL0_ENABLE */
#define MG_PLL_ENABLE(tc_port) _MMIO_PORT((tc_port), _MG_PLL1_ENABLE, \
_MG_PLL2_ENABLE)
/* DG1 PLL */
-#define DG1_DPLL_ENABLE(pll) _MMIO_PLL3(pll, DPLL0_ENABLE, DPLL1_ENABLE, \
- _MG_PLL1_ENABLE, _MG_PLL2_ENABLE)
+#define DG1_DPLL_ENABLE(pll) _MMIO(_PICK_EVEN_2RANGES(pll, 2, \
+ _DPLL0_ENABLE, _DPLL1_ENABLE, \
+ _MG_PLL1_ENABLE, _MG_PLL2_ENABLE))
/* ADL-P Type C PLL */
#define PORTTC1_PLL_ENABLE 0x46038
@@ -7363,9 +6060,9 @@ enum skl_power_gate {
#define _TGL_DPLL0_CFGCR0 0x164284
#define _TGL_DPLL1_CFGCR0 0x16428C
#define _TGL_TBTPLL_CFGCR0 0x16429C
-#define TGL_DPLL_CFGCR0(pll) _MMIO_PLL3(pll, _TGL_DPLL0_CFGCR0, \
- _TGL_DPLL1_CFGCR0, \
- _TGL_TBTPLL_CFGCR0)
+#define TGL_DPLL_CFGCR0(pll) _MMIO(_PICK_EVEN_2RANGES(pll, 2, \
+ _TGL_DPLL0_CFGCR0, _TGL_DPLL1_CFGCR0, \
+ _TGL_TBTPLL_CFGCR0, _TGL_TBTPLL_CFGCR0))
#define RKL_DPLL_CFGCR0(pll) _MMIO_PLL(pll, _TGL_DPLL0_CFGCR0, \
_TGL_DPLL1_CFGCR0)
@@ -7378,219 +6075,36 @@ enum skl_power_gate {
#define _TGL_DPLL0_CFGCR1 0x164288
#define _TGL_DPLL1_CFGCR1 0x164290
#define _TGL_TBTPLL_CFGCR1 0x1642A0
-#define TGL_DPLL_CFGCR1(pll) _MMIO_PLL3(pll, _TGL_DPLL0_CFGCR1, \
- _TGL_DPLL1_CFGCR1, \
- _TGL_TBTPLL_CFGCR1)
+#define TGL_DPLL_CFGCR1(pll) _MMIO(_PICK_EVEN_2RANGES(pll, 2, \
+ _TGL_DPLL0_CFGCR1, _TGL_DPLL1_CFGCR1, \
+ _TGL_TBTPLL_CFGCR1, _TGL_TBTPLL_CFGCR1))
#define RKL_DPLL_CFGCR1(pll) _MMIO_PLL(pll, _TGL_DPLL0_CFGCR1, \
_TGL_DPLL1_CFGCR1)
#define _DG1_DPLL2_CFGCR0 0x16C284
#define _DG1_DPLL3_CFGCR0 0x16C28C
-#define DG1_DPLL_CFGCR0(pll) _MMIO_PLL3(pll, _TGL_DPLL0_CFGCR0, \
- _TGL_DPLL1_CFGCR0, \
- _DG1_DPLL2_CFGCR0, \
- _DG1_DPLL3_CFGCR0)
+#define DG1_DPLL_CFGCR0(pll) _MMIO(_PICK_EVEN_2RANGES(pll, 2, \
+ _TGL_DPLL0_CFGCR0, _TGL_DPLL1_CFGCR0, \
+ _DG1_DPLL2_CFGCR0, _DG1_DPLL3_CFGCR0))
#define _DG1_DPLL2_CFGCR1 0x16C288
#define _DG1_DPLL3_CFGCR1 0x16C290
-#define DG1_DPLL_CFGCR1(pll) _MMIO_PLL3(pll, _TGL_DPLL0_CFGCR1, \
- _TGL_DPLL1_CFGCR1, \
- _DG1_DPLL2_CFGCR1, \
- _DG1_DPLL3_CFGCR1)
+#define DG1_DPLL_CFGCR1(pll) _MMIO(_PICK_EVEN_2RANGES(pll, 2, \
+ _TGL_DPLL0_CFGCR1, _TGL_DPLL1_CFGCR1, \
+ _DG1_DPLL2_CFGCR1, _DG1_DPLL3_CFGCR1))
/* For ADL-S DPLL4_CFGCR0/1 are used to control DPLL2 */
-#define _ADLS_DPLL3_CFGCR0 0x1642C0
#define _ADLS_DPLL4_CFGCR0 0x164294
-#define ADLS_DPLL_CFGCR0(pll) _MMIO_PLL3(pll, _TGL_DPLL0_CFGCR0, \
- _TGL_DPLL1_CFGCR0, \
- _ADLS_DPLL4_CFGCR0, \
- _ADLS_DPLL3_CFGCR0)
+#define _ADLS_DPLL3_CFGCR0 0x1642C0
+#define ADLS_DPLL_CFGCR0(pll) _MMIO(_PICK_EVEN_2RANGES(pll, 2, \
+ _TGL_DPLL0_CFGCR0, _TGL_DPLL1_CFGCR0, \
+ _ADLS_DPLL4_CFGCR0, _ADLS_DPLL3_CFGCR0))
-#define _ADLS_DPLL3_CFGCR1 0x1642C4
#define _ADLS_DPLL4_CFGCR1 0x164298
-#define ADLS_DPLL_CFGCR1(pll) _MMIO_PLL3(pll, _TGL_DPLL0_CFGCR1, \
- _TGL_DPLL1_CFGCR1, \
- _ADLS_DPLL4_CFGCR1, \
- _ADLS_DPLL3_CFGCR1)
-
-#define _DKL_PHY1_BASE 0x168000
-#define _DKL_PHY2_BASE 0x169000
-#define _DKL_PHY3_BASE 0x16A000
-#define _DKL_PHY4_BASE 0x16B000
-#define _DKL_PHY5_BASE 0x16C000
-#define _DKL_PHY6_BASE 0x16D000
-
-#define DKL_REG_TC_PORT(__reg) \
- (TC_PORT_1 + ((__reg).reg - _DKL_PHY1_BASE) / (_DKL_PHY2_BASE - _DKL_PHY1_BASE))
-
-/* DEKEL PHY MMIO Address = Phy base + (internal address & ~index_mask) */
-#define _DKL_PCS_DW5 0x14
-#define DKL_PCS_DW5(tc_port) _MMIO(_PORT(tc_port, _DKL_PHY1_BASE, \
- _DKL_PHY2_BASE) + \
- _DKL_PCS_DW5)
-#define DKL_PCS_DW5_CORE_SOFTRESET REG_BIT(11)
-
-#define _DKL_PLL_DIV0 0x200
-#define DKL_PLL_DIV0_AFC_STARTUP_MASK REG_GENMASK(27, 25)
-#define DKL_PLL_DIV0_AFC_STARTUP(val) REG_FIELD_PREP(DKL_PLL_DIV0_AFC_STARTUP_MASK, (val))
-#define DKL_PLL_DIV0_INTEG_COEFF(x) ((x) << 16)
-#define DKL_PLL_DIV0_INTEG_COEFF_MASK (0x1F << 16)
-#define DKL_PLL_DIV0_PROP_COEFF(x) ((x) << 12)
-#define DKL_PLL_DIV0_PROP_COEFF_MASK (0xF << 12)
-#define DKL_PLL_DIV0_FBPREDIV_SHIFT (8)
-#define DKL_PLL_DIV0_FBPREDIV(x) ((x) << DKL_PLL_DIV0_FBPREDIV_SHIFT)
-#define DKL_PLL_DIV0_FBPREDIV_MASK (0xF << DKL_PLL_DIV0_FBPREDIV_SHIFT)
-#define DKL_PLL_DIV0_FBDIV_INT(x) ((x) << 0)
-#define DKL_PLL_DIV0_FBDIV_INT_MASK (0xFF << 0)
-#define DKL_PLL_DIV0_MASK (DKL_PLL_DIV0_INTEG_COEFF_MASK | \
- DKL_PLL_DIV0_PROP_COEFF_MASK | \
- DKL_PLL_DIV0_FBPREDIV_MASK | \
- DKL_PLL_DIV0_FBDIV_INT_MASK)
-#define DKL_PLL_DIV0(tc_port) _MMIO(_PORT(tc_port, _DKL_PHY1_BASE, \
- _DKL_PHY2_BASE) + \
- _DKL_PLL_DIV0)
-
-#define _DKL_PLL_DIV1 0x204
-#define DKL_PLL_DIV1_IREF_TRIM(x) ((x) << 16)
-#define DKL_PLL_DIV1_IREF_TRIM_MASK (0x1F << 16)
-#define DKL_PLL_DIV1_TDC_TARGET_CNT(x) ((x) << 0)
-#define DKL_PLL_DIV1_TDC_TARGET_CNT_MASK (0xFF << 0)
-#define DKL_PLL_DIV1(tc_port) _MMIO(_PORT(tc_port, _DKL_PHY1_BASE, \
- _DKL_PHY2_BASE) + \
- _DKL_PLL_DIV1)
-
-#define _DKL_PLL_SSC 0x210
-#define DKL_PLL_SSC_IREF_NDIV_RATIO(x) ((x) << 29)
-#define DKL_PLL_SSC_IREF_NDIV_RATIO_MASK (0x7 << 29)
-#define DKL_PLL_SSC_STEP_LEN(x) ((x) << 16)
-#define DKL_PLL_SSC_STEP_LEN_MASK (0xFF << 16)
-#define DKL_PLL_SSC_STEP_NUM(x) ((x) << 11)
-#define DKL_PLL_SSC_STEP_NUM_MASK (0x7 << 11)
-#define DKL_PLL_SSC_EN (1 << 9)
-#define DKL_PLL_SSC(tc_port) _MMIO(_PORT(tc_port, _DKL_PHY1_BASE, \
- _DKL_PHY2_BASE) + \
- _DKL_PLL_SSC)
-
-#define _DKL_PLL_BIAS 0x214
-#define DKL_PLL_BIAS_FRAC_EN_H (1 << 30)
-#define DKL_PLL_BIAS_FBDIV_SHIFT (8)
-#define DKL_PLL_BIAS_FBDIV_FRAC(x) ((x) << DKL_PLL_BIAS_FBDIV_SHIFT)
-#define DKL_PLL_BIAS_FBDIV_FRAC_MASK (0x3FFFFF << DKL_PLL_BIAS_FBDIV_SHIFT)
-#define DKL_PLL_BIAS(tc_port) _MMIO(_PORT(tc_port, _DKL_PHY1_BASE, \
- _DKL_PHY2_BASE) + \
- _DKL_PLL_BIAS)
-
-#define _DKL_PLL_TDC_COLDST_BIAS 0x218
-#define DKL_PLL_TDC_SSC_STEP_SIZE(x) ((x) << 8)
-#define DKL_PLL_TDC_SSC_STEP_SIZE_MASK (0xFF << 8)
-#define DKL_PLL_TDC_FEED_FWD_GAIN(x) ((x) << 0)
-#define DKL_PLL_TDC_FEED_FWD_GAIN_MASK (0xFF << 0)
-#define DKL_PLL_TDC_COLDST_BIAS(tc_port) _MMIO(_PORT(tc_port, \
- _DKL_PHY1_BASE, \
- _DKL_PHY2_BASE) + \
- _DKL_PLL_TDC_COLDST_BIAS)
-
-#define _DKL_REFCLKIN_CTL 0x12C
-/* Bits are the same as MG_REFCLKIN_CTL */
-#define DKL_REFCLKIN_CTL(tc_port) _MMIO(_PORT(tc_port, \
- _DKL_PHY1_BASE, \
- _DKL_PHY2_BASE) + \
- _DKL_REFCLKIN_CTL)
-
-#define _DKL_CLKTOP2_HSCLKCTL 0xD4
-/* Bits are the same as MG_CLKTOP2_HSCLKCTL */
-#define DKL_CLKTOP2_HSCLKCTL(tc_port) _MMIO(_PORT(tc_port, \
- _DKL_PHY1_BASE, \
- _DKL_PHY2_BASE) + \
- _DKL_CLKTOP2_HSCLKCTL)
-
-#define _DKL_CLKTOP2_CORECLKCTL1 0xD8
-/* Bits are the same as MG_CLKTOP2_CORECLKCTL1 */
-#define DKL_CLKTOP2_CORECLKCTL1(tc_port) _MMIO(_PORT(tc_port, \
- _DKL_PHY1_BASE, \
- _DKL_PHY2_BASE) + \
- _DKL_CLKTOP2_CORECLKCTL1)
-
-#define _DKL_TX_DPCNTL0 0x2C0
-#define DKL_TX_PRESHOOT_COEFF(x) ((x) << 13)
-#define DKL_TX_PRESHOOT_COEFF_MASK (0x1f << 13)
-#define DKL_TX_DE_EMPHASIS_COEFF(x) ((x) << 8)
-#define DKL_TX_DE_EMPAHSIS_COEFF_MASK (0x1f << 8)
-#define DKL_TX_VSWING_CONTROL(x) ((x) << 0)
-#define DKL_TX_VSWING_CONTROL_MASK (0x7 << 0)
-#define DKL_TX_DPCNTL0(tc_port) _MMIO(_PORT(tc_port, \
- _DKL_PHY1_BASE, \
- _DKL_PHY2_BASE) + \
- _DKL_TX_DPCNTL0)
-
-#define _DKL_TX_DPCNTL1 0x2C4
-/* Bits are the same as DKL_TX_DPCNTRL0 */
-#define DKL_TX_DPCNTL1(tc_port) _MMIO(_PORT(tc_port, \
- _DKL_PHY1_BASE, \
- _DKL_PHY2_BASE) + \
- _DKL_TX_DPCNTL1)
-
-#define _DKL_TX_DPCNTL2 0x2C8
-#define DKL_TX_DP20BITMODE REG_BIT(2)
-#define DKL_TX_DPCNTL2_CFG_LOADGENSELECT_TX1_MASK REG_GENMASK(4, 3)
-#define DKL_TX_DPCNTL2_CFG_LOADGENSELECT_TX1(val) REG_FIELD_PREP(DKL_TX_DPCNTL2_CFG_LOADGENSELECT_TX1_MASK, (val))
-#define DKL_TX_DPCNTL2_CFG_LOADGENSELECT_TX2_MASK REG_GENMASK(6, 5)
-#define DKL_TX_DPCNTL2_CFG_LOADGENSELECT_TX2(val) REG_FIELD_PREP(DKL_TX_DPCNTL2_CFG_LOADGENSELECT_TX2_MASK, (val))
-#define DKL_TX_DPCNTL2(tc_port) _MMIO(_PORT(tc_port, \
- _DKL_PHY1_BASE, \
- _DKL_PHY2_BASE) + \
- _DKL_TX_DPCNTL2)
-
-#define _DKL_TX_FW_CALIB 0x2F8
-#define DKL_TX_CFG_DISABLE_WAIT_INIT (1 << 7)
-#define DKL_TX_FW_CALIB(tc_port) _MMIO(_PORT(tc_port, \
- _DKL_PHY1_BASE, \
- _DKL_PHY2_BASE) + \
- _DKL_TX_FW_CALIB)
-
-#define _DKL_TX_PMD_LANE_SUS 0xD00
-#define DKL_TX_PMD_LANE_SUS(tc_port) _MMIO(_PORT(tc_port, \
- _DKL_PHY1_BASE, \
- _DKL_PHY2_BASE) + \
- _DKL_TX_PMD_LANE_SUS)
-
-#define _DKL_TX_DW17 0xDC4
-#define DKL_TX_DW17(tc_port) _MMIO(_PORT(tc_port, \
- _DKL_PHY1_BASE, \
- _DKL_PHY2_BASE) + \
- _DKL_TX_DW17)
-
-#define _DKL_TX_DW18 0xDC8
-#define DKL_TX_DW18(tc_port) _MMIO(_PORT(tc_port, \
- _DKL_PHY1_BASE, \
- _DKL_PHY2_BASE) + \
- _DKL_TX_DW18)
-
-#define _DKL_DP_MODE 0xA0
-#define DKL_DP_MODE(tc_port) _MMIO(_PORT(tc_port, \
- _DKL_PHY1_BASE, \
- _DKL_PHY2_BASE) + \
- _DKL_DP_MODE)
-
-#define _DKL_CMN_UC_DW27 0x36C
-#define DKL_CMN_UC_DW27_UC_HEALTH (0x1 << 15)
-#define DKL_CMN_UC_DW_27(tc_port) _MMIO(_PORT(tc_port, \
- _DKL_PHY1_BASE, \
- _DKL_PHY2_BASE) + \
- _DKL_CMN_UC_DW27)
-
-/*
- * Each Dekel PHY is addressed through a 4KB aperture. Each PHY has more than
- * 4KB of register space, so a separate index is programmed in HIP_INDEX_REG0
- * or HIP_INDEX_REG1, based on the port number, to set the upper 2 address
- * bits that point the 4KB window into the full PHY register space.
- */
-#define _HIP_INDEX_REG0 0x1010A0
-#define _HIP_INDEX_REG1 0x1010A4
-#define HIP_INDEX_REG(tc_port) _MMIO((tc_port) < 4 ? _HIP_INDEX_REG0 \
- : _HIP_INDEX_REG1)
-#define _HIP_INDEX_SHIFT(tc_port) (8 * ((tc_port) % 4))
-#define HIP_INDEX_VAL(tc_port, val) ((val) << _HIP_INDEX_SHIFT(tc_port))
+#define _ADLS_DPLL3_CFGCR1 0x1642C4
+#define ADLS_DPLL_CFGCR1(pll) _MMIO(_PICK_EVEN_2RANGES(pll, 2, \
+ _TGL_DPLL0_CFGCR1, _TGL_DPLL1_CFGCR1, \
+ _ADLS_DPLL4_CFGCR1, _ADLS_DPLL3_CFGCR1))
/* BXT display engine PLL */
#define BXT_DE_PLL_CTL _MMIO(0x6d000)
@@ -7610,6 +6124,8 @@ enum skl_power_gate {
#define DC_STATE_DISABLE 0
#define DC_STATE_EN_DC3CO REG_BIT(30)
#define DC_STATE_DC3CO_STATUS REG_BIT(29)
+#define HOLD_PHY_CLKREQ_PG1_LATCH REG_BIT(21)
+#define HOLD_PHY_PG1_LATCH REG_BIT(20)
#define DC_STATE_EN_UPTO_DC5 (1 << 0)
#define DC_STATE_EN_DC9 (1 << 3)
#define DC_STATE_EN_UPTO_DC6 (2 << 0)
@@ -7767,20 +6283,17 @@ enum skl_power_gate {
#define _PAL_PREC_INDEX_A 0x4A400
#define _PAL_PREC_INDEX_B 0x4AC00
#define _PAL_PREC_INDEX_C 0x4B400
-#define PAL_PREC_10_12_BIT (0 << 31)
-#define PAL_PREC_SPLIT_MODE (1 << 31)
-#define PAL_PREC_AUTO_INCREMENT (1 << 15)
-#define PAL_PREC_INDEX_VALUE_MASK (0x3ff << 0)
-#define PAL_PREC_INDEX_VALUE(x) ((x) << 0)
+#define PAL_PREC_SPLIT_MODE REG_BIT(31)
+#define PAL_PREC_AUTO_INCREMENT REG_BIT(15)
+#define PAL_PREC_INDEX_VALUE_MASK REG_GENMASK(9, 0)
+#define PAL_PREC_INDEX_VALUE(x) REG_FIELD_PREP(PAL_PREC_INDEX_VALUE_MASK, (x))
#define _PAL_PREC_DATA_A 0x4A404
#define _PAL_PREC_DATA_B 0x4AC04
#define _PAL_PREC_DATA_C 0x4B404
+/* see PREC_PALETTE_* for the bits */
#define _PAL_PREC_GC_MAX_A 0x4A410
#define _PAL_PREC_GC_MAX_B 0x4AC10
#define _PAL_PREC_GC_MAX_C 0x4B410
-#define PREC_PAL_DATA_RED_MASK REG_GENMASK(29, 20)
-#define PREC_PAL_DATA_GREEN_MASK REG_GENMASK(19, 10)
-#define PREC_PAL_DATA_BLUE_MASK REG_GENMASK(9, 0)
#define _PAL_PREC_EXT_GC_MAX_A 0x4A420
#define _PAL_PREC_EXT_GC_MAX_B 0x4AC20
#define _PAL_PREC_EXT_GC_MAX_C 0x4B420
@@ -7790,14 +6303,16 @@ enum skl_power_gate {
#define PREC_PAL_INDEX(pipe) _MMIO_PIPE(pipe, _PAL_PREC_INDEX_A, _PAL_PREC_INDEX_B)
#define PREC_PAL_DATA(pipe) _MMIO_PIPE(pipe, _PAL_PREC_DATA_A, _PAL_PREC_DATA_B)
-#define PREC_PAL_GC_MAX(pipe, i) _MMIO(_PIPE(pipe, _PAL_PREC_GC_MAX_A, _PAL_PREC_GC_MAX_B) + (i) * 4)
-#define PREC_PAL_EXT_GC_MAX(pipe, i) _MMIO(_PIPE(pipe, _PAL_PREC_EXT_GC_MAX_A, _PAL_PREC_EXT_GC_MAX_B) + (i) * 4)
-#define PREC_PAL_EXT2_GC_MAX(pipe, i) _MMIO(_PIPE(pipe, _PAL_PREC_EXT2_GC_MAX_A, _PAL_PREC_EXT2_GC_MAX_B) + (i) * 4)
+#define PREC_PAL_GC_MAX(pipe, i) _MMIO(_PIPE(pipe, _PAL_PREC_GC_MAX_A, _PAL_PREC_GC_MAX_B) + (i) * 4) /* u1.16 */
+#define PREC_PAL_EXT_GC_MAX(pipe, i) _MMIO(_PIPE(pipe, _PAL_PREC_EXT_GC_MAX_A, _PAL_PREC_EXT_GC_MAX_B) + (i) * 4) /* u3.16 */
+#define PREC_PAL_EXT2_GC_MAX(pipe, i) _MMIO(_PIPE(pipe, _PAL_PREC_EXT2_GC_MAX_A, _PAL_PREC_EXT2_GC_MAX_B) + (i) * 4) /* glk+, u3.16 */
#define _PRE_CSC_GAMC_INDEX_A 0x4A484
#define _PRE_CSC_GAMC_INDEX_B 0x4AC84
#define _PRE_CSC_GAMC_INDEX_C 0x4B484
-#define PRE_CSC_GAMC_AUTO_INCREMENT (1 << 10)
+#define PRE_CSC_GAMC_AUTO_INCREMENT REG_BIT(10)
+#define PRE_CSC_GAMC_INDEX_VALUE_MASK REG_GENMASK(7, 0)
+#define PRE_CSC_GAMC_INDEX_VALUE(x) REG_FIELD_PREP(PRE_CSC_GAMC_INDEX_VALUE_MASK, (x))
#define _PRE_CSC_GAMC_DATA_A 0x4A488
#define _PRE_CSC_GAMC_DATA_B 0x4AC88
#define _PRE_CSC_GAMC_DATA_C 0x4B488
@@ -7808,17 +6323,13 @@ enum skl_power_gate {
/* ICL Multi segmented gamma */
#define _PAL_PREC_MULTI_SEG_INDEX_A 0x4A408
#define _PAL_PREC_MULTI_SEG_INDEX_B 0x4AC08
-#define PAL_PREC_MULTI_SEGMENT_AUTO_INCREMENT REG_BIT(15)
-#define PAL_PREC_MULTI_SEGMENT_INDEX_VALUE_MASK REG_GENMASK(4, 0)
+#define PAL_PREC_MULTI_SEG_AUTO_INCREMENT REG_BIT(15)
+#define PAL_PREC_MULTI_SEG_INDEX_VALUE_MASK REG_GENMASK(4, 0)
+#define PAL_PREC_MULTI_SEG_INDEX_VALUE(x) REG_FIELD_PREP(PAL_PREC_MULTI_SEG_INDEX_VALUE_MASK, (x))
#define _PAL_PREC_MULTI_SEG_DATA_A 0x4A40C
#define _PAL_PREC_MULTI_SEG_DATA_B 0x4AC0C
-#define PAL_PREC_MULTI_SEG_RED_LDW_MASK REG_GENMASK(29, 24)
-#define PAL_PREC_MULTI_SEG_RED_UDW_MASK REG_GENMASK(29, 20)
-#define PAL_PREC_MULTI_SEG_GREEN_LDW_MASK REG_GENMASK(19, 14)
-#define PAL_PREC_MULTI_SEG_GREEN_UDW_MASK REG_GENMASK(19, 10)
-#define PAL_PREC_MULTI_SEG_BLUE_LDW_MASK REG_GENMASK(9, 4)
-#define PAL_PREC_MULTI_SEG_BLUE_UDW_MASK REG_GENMASK(9, 0)
+/* see PREC_PALETTE_12P4_* for the bits */
#define PREC_PAL_MULTI_SEG_INDEX(pipe) _MMIO_PIPE(pipe, \
_PAL_PREC_MULTI_SEG_INDEX_A, \
@@ -7838,8 +6349,8 @@ enum skl_power_gate {
#define _PLANE_CSC_RY_GY_1(pipe) _PIPE(pipe, _PLANE_CSC_RY_GY_1_A, \
_PLANE_CSC_RY_GY_1_B)
-#define _PLANE_CSC_RY_GY_2(pipe) _PIPE(pipe, _PLANE_INPUT_CSC_RY_GY_2_A, \
- _PLANE_INPUT_CSC_RY_GY_2_B)
+#define _PLANE_CSC_RY_GY_2(pipe) _PIPE(pipe, _PLANE_CSC_RY_GY_2_A, \
+ _PLANE_CSC_RY_GY_2_B)
#define PLANE_CSC_COEFF(pipe, plane, index) _MMIO_PLANE(plane, \
_PLANE_CSC_RY_GY_1(pipe) + (index) * 4, \
_PLANE_CSC_RY_GY_2(pipe) + (index) * 4)
@@ -7879,13 +6390,17 @@ enum skl_power_gate {
#define _CGM_PIPE_A_CSC_COEFF67 (VLV_DISPLAY_BASE + 0x6790C)
#define _CGM_PIPE_A_CSC_COEFF8 (VLV_DISPLAY_BASE + 0x67910)
#define _CGM_PIPE_A_DEGAMMA (VLV_DISPLAY_BASE + 0x66000)
-#define CGM_PIPE_DEGAMMA_RED_MASK REG_GENMASK(13, 0)
-#define CGM_PIPE_DEGAMMA_GREEN_MASK REG_GENMASK(29, 16)
-#define CGM_PIPE_DEGAMMA_BLUE_MASK REG_GENMASK(13, 0)
+/* cgm degamma ldw */
+#define CGM_PIPE_DEGAMMA_GREEN_LDW_MASK REG_GENMASK(29, 16)
+#define CGM_PIPE_DEGAMMA_BLUE_LDW_MASK REG_GENMASK(13, 0)
+/* cgm degamma udw */
+#define CGM_PIPE_DEGAMMA_RED_UDW_MASK REG_GENMASK(13, 0)
#define _CGM_PIPE_A_GAMMA (VLV_DISPLAY_BASE + 0x67000)
-#define CGM_PIPE_GAMMA_RED_MASK REG_GENMASK(9, 0)
-#define CGM_PIPE_GAMMA_GREEN_MASK REG_GENMASK(25, 16)
-#define CGM_PIPE_GAMMA_BLUE_MASK REG_GENMASK(9, 0)
+/* cgm gamma ldw */
+#define CGM_PIPE_GAMMA_GREEN_LDW_MASK REG_GENMASK(25, 16)
+#define CGM_PIPE_GAMMA_BLUE_LDW_MASK REG_GENMASK(9, 0)
+/* cgm gamma udw */
+#define CGM_PIPE_GAMMA_RED_UDW_MASK REG_GENMASK(9, 0)
#define _CGM_PIPE_A_MODE (VLV_DISPLAY_BASE + 0x67A00)
#define CGM_PIPE_MODE_GAMMA (1 << 2)
#define CGM_PIPE_MODE_CSC (1 << 1)
@@ -7920,50 +6435,37 @@ enum skl_power_gate {
#define GEN9_TIMESTAMP_OVERRIDE_US_COUNTER_DENOMINATOR_SHIFT 12
#define GEN9_TIMESTAMP_OVERRIDE_US_COUNTER_DENOMINATOR_MASK (0xf << 12)
+/* g4x+, except vlv/chv! */
#define _PIPE_FRMTMSTMP_A 0x70048
+#define _PIPE_FRMTMSTMP_B 0x71048
#define PIPE_FRMTMSTMP(pipe) \
- _MMIO_PIPE2(pipe, _PIPE_FRMTMSTMP_A)
-
-/* Display Stream Splitter Control */
-#define DSS_CTL1 _MMIO(0x67400)
-#define SPLITTER_ENABLE (1 << 31)
-#define JOINER_ENABLE (1 << 30)
-#define DUAL_LINK_MODE_INTERLEAVE (1 << 24)
-#define DUAL_LINK_MODE_FRONTBACK (0 << 24)
-#define OVERLAP_PIXELS_MASK (0xf << 16)
-#define OVERLAP_PIXELS(pixels) ((pixels) << 16)
-#define LEFT_DL_BUF_TARGET_DEPTH_MASK (0xfff << 0)
-#define LEFT_DL_BUF_TARGET_DEPTH(pixels) ((pixels) << 0)
-#define MAX_DL_BUFFER_TARGET_DEPTH 0x5a0
-
-#define DSS_CTL2 _MMIO(0x67404)
-#define LEFT_BRANCH_VDSC_ENABLE (1 << 31)
-#define RIGHT_BRANCH_VDSC_ENABLE (1 << 15)
-#define RIGHT_DL_BUF_TARGET_DEPTH_MASK (0xfff << 0)
-#define RIGHT_DL_BUF_TARGET_DEPTH(pixels) ((pixels) << 0)
-
-#define _ICL_PIPE_DSS_CTL1_PB 0x78200
-#define _ICL_PIPE_DSS_CTL1_PC 0x78400
-#define ICL_PIPE_DSS_CTL1(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_PIPE_DSS_CTL1_PB, \
- _ICL_PIPE_DSS_CTL1_PC)
-#define BIG_JOINER_ENABLE (1 << 29)
-#define MASTER_BIG_JOINER_ENABLE (1 << 28)
-#define VGA_CENTERING_ENABLE (1 << 27)
-#define SPLITTER_CONFIGURATION_MASK REG_GENMASK(26, 25)
-#define SPLITTER_CONFIGURATION_2_SEGMENT REG_FIELD_PREP(SPLITTER_CONFIGURATION_MASK, 0)
-#define SPLITTER_CONFIGURATION_4_SEGMENT REG_FIELD_PREP(SPLITTER_CONFIGURATION_MASK, 1)
-#define UNCOMPRESSED_JOINER_MASTER (1 << 21)
-#define UNCOMPRESSED_JOINER_SLAVE (1 << 20)
-
-#define _ICL_PIPE_DSS_CTL2_PB 0x78204
-#define _ICL_PIPE_DSS_CTL2_PC 0x78404
-#define ICL_PIPE_DSS_CTL2(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_PIPE_DSS_CTL2_PB, \
- _ICL_PIPE_DSS_CTL2_PC)
+ _MMIO_PIPE(pipe, _PIPE_FRMTMSTMP_A, _PIPE_FRMTMSTMP_B)
+
+/* g4x+, except vlv/chv! */
+#define _PIPE_FLIPTMSTMP_A 0x7004C
+#define _PIPE_FLIPTMSTMP_B 0x7104C
+#define PIPE_FLIPTMSTMP(pipe) \
+ _MMIO_PIPE(pipe, _PIPE_FLIPTMSTMP_A, _PIPE_FLIPTMSTMP_B)
+
+/* tgl+ */
+#define _PIPE_FLIPDONETMSTMP_A 0x70054
+#define _PIPE_FLIPDONETMSTMP_B 0x71054
+#define PIPE_FLIPDONETIMSTMP(pipe) \
+ _MMIO_PIPE(pipe, _PIPE_FLIPDONETMSTMP_A, _PIPE_FLIPDONETMSTMP_B)
+
+#define _VLV_PIPE_MSA_MISC_A 0x70048
+#define VLV_PIPE_MSA_MISC(pipe) \
+ _MMIO_PIPE2(pipe, _VLV_PIPE_MSA_MISC_A)
+#define VLV_MSA_MISC1_HW_ENABLE REG_BIT(31)
+#define VLV_MSA_MISC1_SW_S3D_MASK REG_GENMASK(2, 0) /* MSA MISC1 3:1 */
+
+#define GGC _MMIO(0x108040)
+#define GMS_MASK REG_GENMASK(15, 8)
+#define GGMS_MASK REG_GENMASK(7, 6)
#define GEN12_GSMBASE _MMIO(0x108100)
#define GEN12_DSMBASE _MMIO(0x1080C0)
+#define GEN12_BDSM_MASK REG_GENMASK64(63, 20)
#define XEHP_CLOCK_GATE_DIS _MMIO(0x101014)
#define SGSI_SIDECLK_DIS REG_BIT(17)
@@ -7980,314 +6482,6 @@ enum skl_power_gate {
#define ICL_PHY_MISC_DE_IO_COMP_PWR_DOWN (1 << 23)
#define DG2_PHY_DP_TX_ACK_MASK REG_GENMASK(23, 20)
-/* Icelake Display Stream Compression Registers */
-#define DSCA_PICTURE_PARAMETER_SET_0 _MMIO(0x6B200)
-#define DSCC_PICTURE_PARAMETER_SET_0 _MMIO(0x6BA00)
-#define _ICL_DSC0_PICTURE_PARAMETER_SET_0_PB 0x78270
-#define _ICL_DSC1_PICTURE_PARAMETER_SET_0_PB 0x78370
-#define _ICL_DSC0_PICTURE_PARAMETER_SET_0_PC 0x78470
-#define _ICL_DSC1_PICTURE_PARAMETER_SET_0_PC 0x78570
-#define ICL_DSC0_PICTURE_PARAMETER_SET_0(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC0_PICTURE_PARAMETER_SET_0_PB, \
- _ICL_DSC0_PICTURE_PARAMETER_SET_0_PC)
-#define ICL_DSC1_PICTURE_PARAMETER_SET_0(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC1_PICTURE_PARAMETER_SET_0_PB, \
- _ICL_DSC1_PICTURE_PARAMETER_SET_0_PC)
-#define DSC_ALT_ICH_SEL (1 << 20)
-#define DSC_VBR_ENABLE (1 << 19)
-#define DSC_422_ENABLE (1 << 18)
-#define DSC_COLOR_SPACE_CONVERSION (1 << 17)
-#define DSC_BLOCK_PREDICTION (1 << 16)
-#define DSC_LINE_BUF_DEPTH_SHIFT 12
-#define DSC_BPC_SHIFT 8
-#define DSC_VER_MIN_SHIFT 4
-#define DSC_VER_MAJ (0x1 << 0)
-
-#define DSCA_PICTURE_PARAMETER_SET_1 _MMIO(0x6B204)
-#define DSCC_PICTURE_PARAMETER_SET_1 _MMIO(0x6BA04)
-#define _ICL_DSC0_PICTURE_PARAMETER_SET_1_PB 0x78274
-#define _ICL_DSC1_PICTURE_PARAMETER_SET_1_PB 0x78374
-#define _ICL_DSC0_PICTURE_PARAMETER_SET_1_PC 0x78474
-#define _ICL_DSC1_PICTURE_PARAMETER_SET_1_PC 0x78574
-#define ICL_DSC0_PICTURE_PARAMETER_SET_1(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC0_PICTURE_PARAMETER_SET_1_PB, \
- _ICL_DSC0_PICTURE_PARAMETER_SET_1_PC)
-#define ICL_DSC1_PICTURE_PARAMETER_SET_1(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC1_PICTURE_PARAMETER_SET_1_PB, \
- _ICL_DSC1_PICTURE_PARAMETER_SET_1_PC)
-#define DSC_BPP(bpp) ((bpp) << 0)
-
-#define DSCA_PICTURE_PARAMETER_SET_2 _MMIO(0x6B208)
-#define DSCC_PICTURE_PARAMETER_SET_2 _MMIO(0x6BA08)
-#define _ICL_DSC0_PICTURE_PARAMETER_SET_2_PB 0x78278
-#define _ICL_DSC1_PICTURE_PARAMETER_SET_2_PB 0x78378
-#define _ICL_DSC0_PICTURE_PARAMETER_SET_2_PC 0x78478
-#define _ICL_DSC1_PICTURE_PARAMETER_SET_2_PC 0x78578
-#define ICL_DSC0_PICTURE_PARAMETER_SET_2(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC0_PICTURE_PARAMETER_SET_2_PB, \
- _ICL_DSC0_PICTURE_PARAMETER_SET_2_PC)
-#define ICL_DSC1_PICTURE_PARAMETER_SET_2(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC1_PICTURE_PARAMETER_SET_2_PB, \
- _ICL_DSC1_PICTURE_PARAMETER_SET_2_PC)
-#define DSC_PIC_WIDTH(pic_width) ((pic_width) << 16)
-#define DSC_PIC_HEIGHT(pic_height) ((pic_height) << 0)
-
-#define DSCA_PICTURE_PARAMETER_SET_3 _MMIO(0x6B20C)
-#define DSCC_PICTURE_PARAMETER_SET_3 _MMIO(0x6BA0C)
-#define _ICL_DSC0_PICTURE_PARAMETER_SET_3_PB 0x7827C
-#define _ICL_DSC1_PICTURE_PARAMETER_SET_3_PB 0x7837C
-#define _ICL_DSC0_PICTURE_PARAMETER_SET_3_PC 0x7847C
-#define _ICL_DSC1_PICTURE_PARAMETER_SET_3_PC 0x7857C
-#define ICL_DSC0_PICTURE_PARAMETER_SET_3(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC0_PICTURE_PARAMETER_SET_3_PB, \
- _ICL_DSC0_PICTURE_PARAMETER_SET_3_PC)
-#define ICL_DSC1_PICTURE_PARAMETER_SET_3(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC1_PICTURE_PARAMETER_SET_3_PB, \
- _ICL_DSC1_PICTURE_PARAMETER_SET_3_PC)
-#define DSC_SLICE_WIDTH(slice_width) ((slice_width) << 16)
-#define DSC_SLICE_HEIGHT(slice_height) ((slice_height) << 0)
-
-#define DSCA_PICTURE_PARAMETER_SET_4 _MMIO(0x6B210)
-#define DSCC_PICTURE_PARAMETER_SET_4 _MMIO(0x6BA10)
-#define _ICL_DSC0_PICTURE_PARAMETER_SET_4_PB 0x78280
-#define _ICL_DSC1_PICTURE_PARAMETER_SET_4_PB 0x78380
-#define _ICL_DSC0_PICTURE_PARAMETER_SET_4_PC 0x78480
-#define _ICL_DSC1_PICTURE_PARAMETER_SET_4_PC 0x78580
-#define ICL_DSC0_PICTURE_PARAMETER_SET_4(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC0_PICTURE_PARAMETER_SET_4_PB, \
- _ICL_DSC0_PICTURE_PARAMETER_SET_4_PC)
-#define ICL_DSC1_PICTURE_PARAMETER_SET_4(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC1_PICTURE_PARAMETER_SET_4_PB, \
- _ICL_DSC1_PICTURE_PARAMETER_SET_4_PC)
-#define DSC_INITIAL_DEC_DELAY(dec_delay) ((dec_delay) << 16)
-#define DSC_INITIAL_XMIT_DELAY(xmit_delay) ((xmit_delay) << 0)
-
-#define DSCA_PICTURE_PARAMETER_SET_5 _MMIO(0x6B214)
-#define DSCC_PICTURE_PARAMETER_SET_5 _MMIO(0x6BA14)
-#define _ICL_DSC0_PICTURE_PARAMETER_SET_5_PB 0x78284
-#define _ICL_DSC1_PICTURE_PARAMETER_SET_5_PB 0x78384
-#define _ICL_DSC0_PICTURE_PARAMETER_SET_5_PC 0x78484
-#define _ICL_DSC1_PICTURE_PARAMETER_SET_5_PC 0x78584
-#define ICL_DSC0_PICTURE_PARAMETER_SET_5(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC0_PICTURE_PARAMETER_SET_5_PB, \
- _ICL_DSC0_PICTURE_PARAMETER_SET_5_PC)
-#define ICL_DSC1_PICTURE_PARAMETER_SET_5(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC1_PICTURE_PARAMETER_SET_5_PB, \
- _ICL_DSC1_PICTURE_PARAMETER_SET_5_PC)
-#define DSC_SCALE_DEC_INT(scale_dec) ((scale_dec) << 16)
-#define DSC_SCALE_INC_INT(scale_inc) ((scale_inc) << 0)
-
-#define DSCA_PICTURE_PARAMETER_SET_6 _MMIO(0x6B218)
-#define DSCC_PICTURE_PARAMETER_SET_6 _MMIO(0x6BA18)
-#define _ICL_DSC0_PICTURE_PARAMETER_SET_6_PB 0x78288
-#define _ICL_DSC1_PICTURE_PARAMETER_SET_6_PB 0x78388
-#define _ICL_DSC0_PICTURE_PARAMETER_SET_6_PC 0x78488
-#define _ICL_DSC1_PICTURE_PARAMETER_SET_6_PC 0x78588
-#define ICL_DSC0_PICTURE_PARAMETER_SET_6(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC0_PICTURE_PARAMETER_SET_6_PB, \
- _ICL_DSC0_PICTURE_PARAMETER_SET_6_PC)
-#define ICL_DSC1_PICTURE_PARAMETER_SET_6(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC1_PICTURE_PARAMETER_SET_6_PB, \
- _ICL_DSC1_PICTURE_PARAMETER_SET_6_PC)
-#define DSC_FLATNESS_MAX_QP(max_qp) ((max_qp) << 24)
-#define DSC_FLATNESS_MIN_QP(min_qp) ((min_qp) << 16)
-#define DSC_FIRST_LINE_BPG_OFFSET(offset) ((offset) << 8)
-#define DSC_INITIAL_SCALE_VALUE(value) ((value) << 0)
-
-#define DSCA_PICTURE_PARAMETER_SET_7 _MMIO(0x6B21C)
-#define DSCC_PICTURE_PARAMETER_SET_7 _MMIO(0x6BA1C)
-#define _ICL_DSC0_PICTURE_PARAMETER_SET_7_PB 0x7828C
-#define _ICL_DSC1_PICTURE_PARAMETER_SET_7_PB 0x7838C
-#define _ICL_DSC0_PICTURE_PARAMETER_SET_7_PC 0x7848C
-#define _ICL_DSC1_PICTURE_PARAMETER_SET_7_PC 0x7858C
-#define ICL_DSC0_PICTURE_PARAMETER_SET_7(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC0_PICTURE_PARAMETER_SET_7_PB, \
- _ICL_DSC0_PICTURE_PARAMETER_SET_7_PC)
-#define ICL_DSC1_PICTURE_PARAMETER_SET_7(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC1_PICTURE_PARAMETER_SET_7_PB, \
- _ICL_DSC1_PICTURE_PARAMETER_SET_7_PC)
-#define DSC_NFL_BPG_OFFSET(bpg_offset) ((bpg_offset) << 16)
-#define DSC_SLICE_BPG_OFFSET(bpg_offset) ((bpg_offset) << 0)
-
-#define DSCA_PICTURE_PARAMETER_SET_8 _MMIO(0x6B220)
-#define DSCC_PICTURE_PARAMETER_SET_8 _MMIO(0x6BA20)
-#define _ICL_DSC0_PICTURE_PARAMETER_SET_8_PB 0x78290
-#define _ICL_DSC1_PICTURE_PARAMETER_SET_8_PB 0x78390
-#define _ICL_DSC0_PICTURE_PARAMETER_SET_8_PC 0x78490
-#define _ICL_DSC1_PICTURE_PARAMETER_SET_8_PC 0x78590
-#define ICL_DSC0_PICTURE_PARAMETER_SET_8(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC0_PICTURE_PARAMETER_SET_8_PB, \
- _ICL_DSC0_PICTURE_PARAMETER_SET_8_PC)
-#define ICL_DSC1_PICTURE_PARAMETER_SET_8(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC1_PICTURE_PARAMETER_SET_8_PB, \
- _ICL_DSC1_PICTURE_PARAMETER_SET_8_PC)
-#define DSC_INITIAL_OFFSET(initial_offset) ((initial_offset) << 16)
-#define DSC_FINAL_OFFSET(final_offset) ((final_offset) << 0)
-
-#define DSCA_PICTURE_PARAMETER_SET_9 _MMIO(0x6B224)
-#define DSCC_PICTURE_PARAMETER_SET_9 _MMIO(0x6BA24)
-#define _ICL_DSC0_PICTURE_PARAMETER_SET_9_PB 0x78294
-#define _ICL_DSC1_PICTURE_PARAMETER_SET_9_PB 0x78394
-#define _ICL_DSC0_PICTURE_PARAMETER_SET_9_PC 0x78494
-#define _ICL_DSC1_PICTURE_PARAMETER_SET_9_PC 0x78594
-#define ICL_DSC0_PICTURE_PARAMETER_SET_9(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC0_PICTURE_PARAMETER_SET_9_PB, \
- _ICL_DSC0_PICTURE_PARAMETER_SET_9_PC)
-#define ICL_DSC1_PICTURE_PARAMETER_SET_9(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC1_PICTURE_PARAMETER_SET_9_PB, \
- _ICL_DSC1_PICTURE_PARAMETER_SET_9_PC)
-#define DSC_RC_EDGE_FACTOR(rc_edge_fact) ((rc_edge_fact) << 16)
-#define DSC_RC_MODEL_SIZE(rc_model_size) ((rc_model_size) << 0)
-
-#define DSCA_PICTURE_PARAMETER_SET_10 _MMIO(0x6B228)
-#define DSCC_PICTURE_PARAMETER_SET_10 _MMIO(0x6BA28)
-#define _ICL_DSC0_PICTURE_PARAMETER_SET_10_PB 0x78298
-#define _ICL_DSC1_PICTURE_PARAMETER_SET_10_PB 0x78398
-#define _ICL_DSC0_PICTURE_PARAMETER_SET_10_PC 0x78498
-#define _ICL_DSC1_PICTURE_PARAMETER_SET_10_PC 0x78598
-#define ICL_DSC0_PICTURE_PARAMETER_SET_10(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC0_PICTURE_PARAMETER_SET_10_PB, \
- _ICL_DSC0_PICTURE_PARAMETER_SET_10_PC)
-#define ICL_DSC1_PICTURE_PARAMETER_SET_10(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC1_PICTURE_PARAMETER_SET_10_PB, \
- _ICL_DSC1_PICTURE_PARAMETER_SET_10_PC)
-#define DSC_RC_TARGET_OFF_LOW(rc_tgt_off_low) ((rc_tgt_off_low) << 20)
-#define DSC_RC_TARGET_OFF_HIGH(rc_tgt_off_high) ((rc_tgt_off_high) << 16)
-#define DSC_RC_QUANT_INC_LIMIT1(lim) ((lim) << 8)
-#define DSC_RC_QUANT_INC_LIMIT0(lim) ((lim) << 0)
-
-#define DSCA_PICTURE_PARAMETER_SET_11 _MMIO(0x6B22C)
-#define DSCC_PICTURE_PARAMETER_SET_11 _MMIO(0x6BA2C)
-#define _ICL_DSC0_PICTURE_PARAMETER_SET_11_PB 0x7829C
-#define _ICL_DSC1_PICTURE_PARAMETER_SET_11_PB 0x7839C
-#define _ICL_DSC0_PICTURE_PARAMETER_SET_11_PC 0x7849C
-#define _ICL_DSC1_PICTURE_PARAMETER_SET_11_PC 0x7859C
-#define ICL_DSC0_PICTURE_PARAMETER_SET_11(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC0_PICTURE_PARAMETER_SET_11_PB, \
- _ICL_DSC0_PICTURE_PARAMETER_SET_11_PC)
-#define ICL_DSC1_PICTURE_PARAMETER_SET_11(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC1_PICTURE_PARAMETER_SET_11_PB, \
- _ICL_DSC1_PICTURE_PARAMETER_SET_11_PC)
-
-#define DSCA_PICTURE_PARAMETER_SET_12 _MMIO(0x6B260)
-#define DSCC_PICTURE_PARAMETER_SET_12 _MMIO(0x6BA60)
-#define _ICL_DSC0_PICTURE_PARAMETER_SET_12_PB 0x782A0
-#define _ICL_DSC1_PICTURE_PARAMETER_SET_12_PB 0x783A0
-#define _ICL_DSC0_PICTURE_PARAMETER_SET_12_PC 0x784A0
-#define _ICL_DSC1_PICTURE_PARAMETER_SET_12_PC 0x785A0
-#define ICL_DSC0_PICTURE_PARAMETER_SET_12(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC0_PICTURE_PARAMETER_SET_12_PB, \
- _ICL_DSC0_PICTURE_PARAMETER_SET_12_PC)
-#define ICL_DSC1_PICTURE_PARAMETER_SET_12(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC1_PICTURE_PARAMETER_SET_12_PB, \
- _ICL_DSC1_PICTURE_PARAMETER_SET_12_PC)
-
-#define DSCA_PICTURE_PARAMETER_SET_13 _MMIO(0x6B264)
-#define DSCC_PICTURE_PARAMETER_SET_13 _MMIO(0x6BA64)
-#define _ICL_DSC0_PICTURE_PARAMETER_SET_13_PB 0x782A4
-#define _ICL_DSC1_PICTURE_PARAMETER_SET_13_PB 0x783A4
-#define _ICL_DSC0_PICTURE_PARAMETER_SET_13_PC 0x784A4
-#define _ICL_DSC1_PICTURE_PARAMETER_SET_13_PC 0x785A4
-#define ICL_DSC0_PICTURE_PARAMETER_SET_13(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC0_PICTURE_PARAMETER_SET_13_PB, \
- _ICL_DSC0_PICTURE_PARAMETER_SET_13_PC)
-#define ICL_DSC1_PICTURE_PARAMETER_SET_13(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC1_PICTURE_PARAMETER_SET_13_PB, \
- _ICL_DSC1_PICTURE_PARAMETER_SET_13_PC)
-
-#define DSCA_PICTURE_PARAMETER_SET_14 _MMIO(0x6B268)
-#define DSCC_PICTURE_PARAMETER_SET_14 _MMIO(0x6BA68)
-#define _ICL_DSC0_PICTURE_PARAMETER_SET_14_PB 0x782A8
-#define _ICL_DSC1_PICTURE_PARAMETER_SET_14_PB 0x783A8
-#define _ICL_DSC0_PICTURE_PARAMETER_SET_14_PC 0x784A8
-#define _ICL_DSC1_PICTURE_PARAMETER_SET_14_PC 0x785A8
-#define ICL_DSC0_PICTURE_PARAMETER_SET_14(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC0_PICTURE_PARAMETER_SET_14_PB, \
- _ICL_DSC0_PICTURE_PARAMETER_SET_14_PC)
-#define ICL_DSC1_PICTURE_PARAMETER_SET_14(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC1_PICTURE_PARAMETER_SET_14_PB, \
- _ICL_DSC1_PICTURE_PARAMETER_SET_14_PC)
-
-#define DSCA_PICTURE_PARAMETER_SET_15 _MMIO(0x6B26C)
-#define DSCC_PICTURE_PARAMETER_SET_15 _MMIO(0x6BA6C)
-#define _ICL_DSC0_PICTURE_PARAMETER_SET_15_PB 0x782AC
-#define _ICL_DSC1_PICTURE_PARAMETER_SET_15_PB 0x783AC
-#define _ICL_DSC0_PICTURE_PARAMETER_SET_15_PC 0x784AC
-#define _ICL_DSC1_PICTURE_PARAMETER_SET_15_PC 0x785AC
-#define ICL_DSC0_PICTURE_PARAMETER_SET_15(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC0_PICTURE_PARAMETER_SET_15_PB, \
- _ICL_DSC0_PICTURE_PARAMETER_SET_15_PC)
-#define ICL_DSC1_PICTURE_PARAMETER_SET_15(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC1_PICTURE_PARAMETER_SET_15_PB, \
- _ICL_DSC1_PICTURE_PARAMETER_SET_15_PC)
-
-#define DSCA_PICTURE_PARAMETER_SET_16 _MMIO(0x6B270)
-#define DSCC_PICTURE_PARAMETER_SET_16 _MMIO(0x6BA70)
-#define _ICL_DSC0_PICTURE_PARAMETER_SET_16_PB 0x782B0
-#define _ICL_DSC1_PICTURE_PARAMETER_SET_16_PB 0x783B0
-#define _ICL_DSC0_PICTURE_PARAMETER_SET_16_PC 0x784B0
-#define _ICL_DSC1_PICTURE_PARAMETER_SET_16_PC 0x785B0
-#define ICL_DSC0_PICTURE_PARAMETER_SET_16(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC0_PICTURE_PARAMETER_SET_16_PB, \
- _ICL_DSC0_PICTURE_PARAMETER_SET_16_PC)
-#define ICL_DSC1_PICTURE_PARAMETER_SET_16(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC1_PICTURE_PARAMETER_SET_16_PB, \
- _ICL_DSC1_PICTURE_PARAMETER_SET_16_PC)
-#define DSC_SLICE_ROW_PER_FRAME(slice_row_per_frame) ((slice_row_per_frame) << 20)
-#define DSC_SLICE_PER_LINE(slice_per_line) ((slice_per_line) << 16)
-#define DSC_SLICE_CHUNK_SIZE(slice_chunk_size) ((slice_chunk_size) << 0)
-
-/* Icelake Rate Control Buffer Threshold Registers */
-#define DSCA_RC_BUF_THRESH_0 _MMIO(0x6B230)
-#define DSCA_RC_BUF_THRESH_0_UDW _MMIO(0x6B230 + 4)
-#define DSCC_RC_BUF_THRESH_0 _MMIO(0x6BA30)
-#define DSCC_RC_BUF_THRESH_0_UDW _MMIO(0x6BA30 + 4)
-#define _ICL_DSC0_RC_BUF_THRESH_0_PB (0x78254)
-#define _ICL_DSC0_RC_BUF_THRESH_0_UDW_PB (0x78254 + 4)
-#define _ICL_DSC1_RC_BUF_THRESH_0_PB (0x78354)
-#define _ICL_DSC1_RC_BUF_THRESH_0_UDW_PB (0x78354 + 4)
-#define _ICL_DSC0_RC_BUF_THRESH_0_PC (0x78454)
-#define _ICL_DSC0_RC_BUF_THRESH_0_UDW_PC (0x78454 + 4)
-#define _ICL_DSC1_RC_BUF_THRESH_0_PC (0x78554)
-#define _ICL_DSC1_RC_BUF_THRESH_0_UDW_PC (0x78554 + 4)
-#define ICL_DSC0_RC_BUF_THRESH_0(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC0_RC_BUF_THRESH_0_PB, \
- _ICL_DSC0_RC_BUF_THRESH_0_PC)
-#define ICL_DSC0_RC_BUF_THRESH_0_UDW(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC0_RC_BUF_THRESH_0_UDW_PB, \
- _ICL_DSC0_RC_BUF_THRESH_0_UDW_PC)
-#define ICL_DSC1_RC_BUF_THRESH_0(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC1_RC_BUF_THRESH_0_PB, \
- _ICL_DSC1_RC_BUF_THRESH_0_PC)
-#define ICL_DSC1_RC_BUF_THRESH_0_UDW(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC1_RC_BUF_THRESH_0_UDW_PB, \
- _ICL_DSC1_RC_BUF_THRESH_0_UDW_PC)
-
-#define DSCA_RC_BUF_THRESH_1 _MMIO(0x6B238)
-#define DSCA_RC_BUF_THRESH_1_UDW _MMIO(0x6B238 + 4)
-#define DSCC_RC_BUF_THRESH_1 _MMIO(0x6BA38)
-#define DSCC_RC_BUF_THRESH_1_UDW _MMIO(0x6BA38 + 4)
-#define _ICL_DSC0_RC_BUF_THRESH_1_PB (0x7825C)
-#define _ICL_DSC0_RC_BUF_THRESH_1_UDW_PB (0x7825C + 4)
-#define _ICL_DSC1_RC_BUF_THRESH_1_PB (0x7835C)
-#define _ICL_DSC1_RC_BUF_THRESH_1_UDW_PB (0x7835C + 4)
-#define _ICL_DSC0_RC_BUF_THRESH_1_PC (0x7845C)
-#define _ICL_DSC0_RC_BUF_THRESH_1_UDW_PC (0x7845C + 4)
-#define _ICL_DSC1_RC_BUF_THRESH_1_PC (0x7855C)
-#define _ICL_DSC1_RC_BUF_THRESH_1_UDW_PC (0x7855C + 4)
-#define ICL_DSC0_RC_BUF_THRESH_1(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC0_RC_BUF_THRESH_1_PB, \
- _ICL_DSC0_RC_BUF_THRESH_1_PC)
-#define ICL_DSC0_RC_BUF_THRESH_1_UDW(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC0_RC_BUF_THRESH_1_UDW_PB, \
- _ICL_DSC0_RC_BUF_THRESH_1_UDW_PC)
-#define ICL_DSC1_RC_BUF_THRESH_1(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC1_RC_BUF_THRESH_1_PB, \
- _ICL_DSC1_RC_BUF_THRESH_1_PC)
-#define ICL_DSC1_RC_BUF_THRESH_1_UDW(pipe) _MMIO_PIPE((pipe) - PIPE_B, \
- _ICL_DSC1_RC_BUF_THRESH_1_UDW_PB, \
- _ICL_DSC1_RC_BUF_THRESH_1_UDW_PC)
-
#define PORT_TX_DFLEXDPSP(fia) _MMIO_FIA((fia), 0x008A0)
#define MODULAR_FIA_MASK (1 << 4)
#define TC_LIVE_STATE_TBT(idx) (1 << ((idx) * 8 + 6))
@@ -8324,47 +6518,32 @@ enum skl_power_gate {
#define OROM_OFFSET _MMIO(0x1020c0)
#define OROM_OFFSET_MASK REG_GENMASK(20, 16)
-/* This register controls the Display State Buffer (DSB) engines. */
-#define _DSBSL_INSTANCE_BASE 0x70B00
-#define DSBSL_INSTANCE(pipe, id) (_DSBSL_INSTANCE_BASE + \
- (pipe) * 0x1000 + (id) * 0x100)
-#define DSB_HEAD(pipe, id) _MMIO(DSBSL_INSTANCE(pipe, id) + 0x0)
-#define DSB_TAIL(pipe, id) _MMIO(DSBSL_INSTANCE(pipe, id) + 0x4)
-#define DSB_CTRL(pipe, id) _MMIO(DSBSL_INSTANCE(pipe, id) + 0x8)
-#define DSB_ENABLE (1 << 31)
-#define DSB_STATUS (1 << 0)
-
#define CLKREQ_POLICY _MMIO(0x101038)
#define CLKREQ_POLICY_MEM_UP_OVRD REG_BIT(1)
#define CLKGATE_DIS_MISC _MMIO(0x46534)
#define CLKGATE_DIS_MISC_DMASC_GATING_DIS REG_BIT(21)
-#define GEN12_CULLBIT1 _MMIO(0x6100)
-#define GEN12_CULLBIT2 _MMIO(0x7030)
-#define GEN12_STATE_ACK_DEBUG _MMIO(0x20BC)
-
-#define MTL_LATENCY_LP0_LP1 _MMIO(0x45780)
-#define MTL_LATENCY_LP2_LP3 _MMIO(0x45784)
-#define MTL_LATENCY_LP4_LP5 _MMIO(0x45788)
-#define MTL_LATENCY_LEVEL_EVEN_MASK REG_GENMASK(12, 0)
-#define MTL_LATENCY_LEVEL_ODD_MASK REG_GENMASK(28, 16)
-
-#define MTL_LATENCY_SAGV _MMIO(0x4578b)
-#define MTL_LATENCY_QCLK_SAGV REG_GENMASK(12, 0)
+#define _MTL_CLKGATE_DIS_TRANS_A 0x604E8
+#define _MTL_CLKGATE_DIS_TRANS_B 0x614E8
+#define MTL_CLKGATE_DIS_TRANS(trans) _MMIO_TRANS2(trans, _MTL_CLKGATE_DIS_TRANS_A)
+#define MTL_CLKGATE_DIS_TRANS_DMASC_GATING_DIS REG_BIT(7)
#define MTL_MEM_SS_INFO_GLOBAL _MMIO(0x45700)
#define MTL_N_OF_ENABLED_QGV_POINTS_MASK REG_GENMASK(11, 8)
#define MTL_N_OF_POPULATED_CH_MASK REG_GENMASK(7, 4)
#define MTL_DDR_TYPE_MASK REG_GENMASK(3, 0)
-#define MTL_MEM_SS_INFO_QGV_POINT_LOW(point) _MMIO(0x45710 + (point) * 2)
+#define MTL_MEM_SS_INFO_QGV_POINT_OFFSET 0x45710
+#define MTL_MEM_SS_INFO_QGV_POINT_LOW(point) _MMIO(MTL_MEM_SS_INFO_QGV_POINT_OFFSET + (point) * 8)
#define MTL_TRCD_MASK REG_GENMASK(31, 24)
#define MTL_TRP_MASK REG_GENMASK(23, 16)
#define MTL_DCLK_MASK REG_GENMASK(15, 0)
-#define MTL_MEM_SS_INFO_QGV_POINT_HIGH(point) _MMIO(0x45714 + (point) * 2)
+#define MTL_MEM_SS_INFO_QGV_POINT_HIGH(point) _MMIO(MTL_MEM_SS_INFO_QGV_POINT_OFFSET + (point) * 8 + 4)
#define MTL_TRAS_MASK REG_GENMASK(16, 8)
#define MTL_TRDPRE_MASK REG_GENMASK(7, 0)
+#define MTL_MEDIA_GSI_BASE 0x380000
+
#endif /* _I915_REG_H_ */
diff --git a/drivers/gpu/drm/i915/i915_reg_defs.h b/drivers/gpu/drm/i915/i915_reg_defs.h
index 8f486f77609f..db26de6b57bc 100644
--- a/drivers/gpu/drm/i915/i915_reg_defs.h
+++ b/drivers/gpu/drm/i915/i915_reg_defs.h
@@ -98,29 +98,85 @@
*/
#define REG_FIELD_GET64(__mask, __val) ((u64)FIELD_GET(__mask, __val))
+#define __MASKED_FIELD(mask, value) ((mask) << 16 | (value))
+#define _MASKED_FIELD(mask, value) ({ \
+ if (__builtin_constant_p(mask)) \
+ BUILD_BUG_ON_MSG(((mask) & 0xffff0000), "Incorrect mask"); \
+ if (__builtin_constant_p(value)) \
+ BUILD_BUG_ON_MSG((value) & 0xffff0000, "Incorrect value"); \
+ if (__builtin_constant_p(mask) && __builtin_constant_p(value)) \
+ BUILD_BUG_ON_MSG((value) & ~(mask), \
+ "Incorrect value for mask"); \
+ __MASKED_FIELD(mask, value); })
+#define _MASKED_BIT_ENABLE(a) ({ typeof(a) _a = (a); _MASKED_FIELD(_a, _a); })
+#define _MASKED_BIT_DISABLE(a) (_MASKED_FIELD((a), 0))
+
+/*
+ * Given the first two numbers __a and __b of arbitrarily many evenly spaced
+ * numbers, pick the 0-based __index'th value.
+ *
+ * Always prefer this over _PICK() if the numbers are evenly spaced.
+ */
+#define _PICK_EVEN(__index, __a, __b) ((__a) + (__index) * ((__b) - (__a)))
+
+/*
+ * Like _PICK_EVEN(), but supports 2 ranges of evenly spaced address offsets.
+ * @__c_index corresponds to the index in which the second range starts to be
+ * used. Using math interval notation, the first range is used for indexes [ 0,
+ * @__c_index), while the second range is used for [ @__c_index, ... ). Example:
+ *
+ * #define _FOO_A 0xf000
+ * #define _FOO_B 0xf004
+ * #define _FOO_C 0xf008
+ * #define _SUPER_FOO_A 0xa000
+ * #define _SUPER_FOO_B 0xa100
+ * #define FOO(x) _MMIO(_PICK_EVEN_2RANGES(x, 3, \
+ * _FOO_A, _FOO_B, \
+ * _SUPER_FOO_A, _SUPER_FOO_B))
+ *
+ * This expands to:
+ * 0: 0xf000,
+ * 1: 0xf004,
+ * 2: 0xf008,
+ * 3: 0xa000,
+ * 4: 0xa100,
+ * 5: 0xa200,
+ * ...
+ */
+#define _PICK_EVEN_2RANGES(__index, __c_index, __a, __b, __c, __d) \
+ (BUILD_BUG_ON_ZERO(!__is_constexpr(__c_index)) + \
+ ((__index) < (__c_index) ? _PICK_EVEN(__index, __a, __b) : \
+ _PICK_EVEN((__index) - (__c_index), __c, __d)))
+
+/*
+ * Given the arbitrary numbers in varargs, pick the 0-based __index'th number.
+ *
+ * Always prefer _PICK_EVEN() over this if the numbers are evenly spaced.
+ */
+#define _PICK(__index, ...) (((const u32 []){ __VA_ARGS__ })[__index])
+
typedef struct {
u32 reg;
} i915_reg_t;
#define _MMIO(r) ((const i915_reg_t){ .reg = (r) })
-#define INVALID_MMIO_REG _MMIO(0)
-
-static __always_inline u32 i915_mmio_reg_offset(i915_reg_t reg)
-{
- return reg.reg;
-}
+typedef struct {
+ u32 reg;
+} i915_mcr_reg_t;
-static inline bool i915_mmio_reg_equal(i915_reg_t a, i915_reg_t b)
-{
- return i915_mmio_reg_offset(a) == i915_mmio_reg_offset(b);
-}
+#define MCR_REG(offset) ((const i915_mcr_reg_t){ .reg = (offset) })
-static inline bool i915_mmio_reg_valid(i915_reg_t reg)
-{
- return !i915_mmio_reg_equal(reg, INVALID_MMIO_REG);
-}
+#define INVALID_MMIO_REG _MMIO(0)
-#define VLV_DISPLAY_BASE 0x180000
+/*
+ * These macros can be used on either i915_reg_t or i915_mcr_reg_t since they're
+ * simply operations on the register's offset and don't care about the MCR vs
+ * non-MCR nature of the register.
+ */
+#define i915_mmio_reg_offset(r) \
+ _Generic((r), i915_reg_t: (r).reg, i915_mcr_reg_t: (r).reg)
+#define i915_mmio_reg_equal(a, b) (i915_mmio_reg_offset(a) == i915_mmio_reg_offset(b))
+#define i915_mmio_reg_valid(r) (!i915_mmio_reg_equal(r, INVALID_MMIO_REG))
#endif /* __I915_REG_DEFS__ */
diff --git a/drivers/gpu/drm/i915/i915_request.c b/drivers/gpu/drm/i915/i915_request.c
index 62fad16a55e8..630a732aaecc 100644
--- a/drivers/gpu/drm/i915/i915_request.c
+++ b/drivers/gpu/drm/i915/i915_request.c
@@ -43,11 +43,11 @@
#include "gt/intel_rps.h"
#include "i915_active.h"
+#include "i915_config.h"
#include "i915_deps.h"
#include "i915_driver.h"
#include "i915_drv.h"
#include "i915_trace.h"
-#include "intel_pm.h"
struct execute_cb {
struct irq_work work;
@@ -1621,6 +1621,20 @@ i915_request_await_object(struct i915_request *to,
return ret;
}
+static void i915_request_await_huc(struct i915_request *rq)
+{
+ struct intel_huc *huc = &rq->context->engine->gt->uc.huc;
+
+ /* don't stall kernel submissions! */
+ if (!rcu_access_pointer(rq->context->gem_context))
+ return;
+
+ if (intel_huc_wait_required(huc))
+ i915_sw_fence_await_sw_fence(&rq->submit,
+ &huc->delayed_load.fence,
+ &rq->hucq);
+}
+
static struct i915_request *
__i915_request_ensure_parallel_ordering(struct i915_request *rq,
struct intel_timeline *timeline)
@@ -1703,6 +1717,16 @@ __i915_request_add_to_timeline(struct i915_request *rq)
struct i915_request *prev;
/*
+ * Media workloads may require HuC, so stall them until HuC loading is
+ * complete. Note that HuC not being loaded when a user submission
+ * arrives can only happen when HuC is loaded via GSC and in that case
+ * we still expect the window between us starting to accept submissions
+ * and HuC loading completion to be small (a few hundred ms).
+ */
+ if (rq->engine->class == VIDEO_DECODE_CLASS)
+ i915_request_await_huc(rq);
+
+ /*
* Dependency tracking and request ordering along the timeline
* is special cased so that we can eliminate redundant ordering
* operations while building the request (we know that the timeline
diff --git a/drivers/gpu/drm/i915/i915_request.h b/drivers/gpu/drm/i915/i915_request.h
index 47041ec68df8..f5e1bb5e857a 100644
--- a/drivers/gpu/drm/i915/i915_request.h
+++ b/drivers/gpu/drm/i915/i915_request.h
@@ -348,6 +348,11 @@ struct i915_request {
#define GUC_PRIO_FINI 0xfe
u8 guc_prio;
+ /**
+ * @hucq: wait queue entry used to wait on the HuC load to complete
+ */
+ wait_queue_entry_t hucq;
+
I915_SELFTEST_DECLARE(struct {
struct list_head link;
unsigned long delay;
diff --git a/drivers/gpu/drm/i915/i915_scatterlist.c b/drivers/gpu/drm/i915/i915_scatterlist.c
index dcc081874ec8..e93d2538f298 100644
--- a/drivers/gpu/drm/i915/i915_scatterlist.c
+++ b/drivers/gpu/drm/i915/i915_scatterlist.c
@@ -56,7 +56,7 @@ static const struct i915_refct_sgt_ops rsgt_ops = {
/**
* i915_refct_sgt_init - Initialize a struct i915_refct_sgt with default ops
* @rsgt: The struct i915_refct_sgt to initialize.
- * size: The size of the underlying memory buffer.
+ * @size: The size of the underlying memory buffer.
*/
void i915_refct_sgt_init(struct i915_refct_sgt *rsgt, size_t size)
{
@@ -96,6 +96,13 @@ struct i915_refct_sgt *i915_rsgt_from_mm_node(const struct drm_mm_node *node,
i915_refct_sgt_init(rsgt, node->size << PAGE_SHIFT);
st = &rsgt->table;
+ /* restricted by sg_alloc_table */
+ if (WARN_ON(overflows_type(DIV_ROUND_UP_ULL(node->size, segment_pages),
+ unsigned int))) {
+ i915_refct_sgt_put(rsgt);
+ return ERR_PTR(-E2BIG);
+ }
+
if (sg_alloc_table(st, DIV_ROUND_UP_ULL(node->size, segment_pages),
GFP_KERNEL)) {
i915_refct_sgt_put(rsgt);
@@ -158,7 +165,7 @@ struct i915_refct_sgt *i915_rsgt_from_buddy_resource(struct ttm_resource *res,
u32 page_alignment)
{
struct i915_ttm_buddy_resource *bman_res = to_ttm_buddy_resource(res);
- const u64 size = res->num_pages << PAGE_SHIFT;
+ const u64 size = res->size;
const u32 max_segment = round_down(UINT_MAX, page_alignment);
struct drm_buddy *mm = bman_res->mm;
struct list_head *blocks = &bman_res->blocks;
@@ -177,7 +184,13 @@ struct i915_refct_sgt *i915_rsgt_from_buddy_resource(struct ttm_resource *res,
i915_refct_sgt_init(rsgt, size);
st = &rsgt->table;
- if (sg_alloc_table(st, res->num_pages, GFP_KERNEL)) {
+ /* restricted by sg_alloc_table */
+ if (WARN_ON(overflows_type(PFN_UP(res->size), unsigned int))) {
+ i915_refct_sgt_put(rsgt);
+ return ERR_PTR(-E2BIG);
+ }
+
+ if (sg_alloc_table(st, PFN_UP(res->size), GFP_KERNEL)) {
i915_refct_sgt_put(rsgt);
return ERR_PTR(-ENOMEM);
}
diff --git a/drivers/gpu/drm/i915/i915_selftest.h b/drivers/gpu/drm/i915/i915_selftest.h
index f54de0499be7..bdf3e22c0a34 100644
--- a/drivers/gpu/drm/i915/i915_selftest.h
+++ b/drivers/gpu/drm/i915/i915_selftest.h
@@ -92,12 +92,14 @@ int __i915_subtests(const char *caller,
T, ARRAY_SIZE(T), data)
#define i915_live_subtests(T, data) ({ \
typecheck(struct drm_i915_private *, data); \
+ (data)->gt[0]->uc.guc.submission_state.sched_disable_delay_ms = 0; \
__i915_subtests(__func__, \
__i915_live_setup, __i915_live_teardown, \
T, ARRAY_SIZE(T), data); \
})
#define intel_gt_live_subtests(T, data) ({ \
typecheck(struct intel_gt *, data); \
+ (data)->uc.guc.submission_state.sched_disable_delay_ms = 0; \
__i915_subtests(__func__, \
__intel_gt_live_setup, __intel_gt_live_teardown, \
T, ARRAY_SIZE(T), data); \
diff --git a/drivers/gpu/drm/i915/i915_sw_fence.c b/drivers/gpu/drm/i915/i915_sw_fence.c
index 6fc0d1b89690..8a9aad523eec 100644
--- a/drivers/gpu/drm/i915/i915_sw_fence.c
+++ b/drivers/gpu/drm/i915/i915_sw_fence.c
@@ -465,7 +465,7 @@ static void irq_i915_sw_fence_work(struct irq_work *wrk)
struct i915_sw_dma_fence_cb_timer *cb =
container_of(wrk, typeof(*cb), work);
- del_timer_sync(&cb->timer);
+ timer_shutdown_sync(&cb->timer);
dma_fence_put(cb->dma);
kfree_rcu(cb, rcu);
@@ -571,7 +571,6 @@ int __i915_sw_fence_await_dma_fence(struct i915_sw_fence *fence,
int i915_sw_fence_await_reservation(struct i915_sw_fence *fence,
struct dma_resv *resv,
- const struct dma_fence_ops *exclude,
bool write,
unsigned long timeout,
gfp_t gfp)
diff --git a/drivers/gpu/drm/i915/i915_sw_fence.h b/drivers/gpu/drm/i915/i915_sw_fence.h
index 619fc5a22f0c..f752bfc7c6e1 100644
--- a/drivers/gpu/drm/i915/i915_sw_fence.h
+++ b/drivers/gpu/drm/i915/i915_sw_fence.h
@@ -91,7 +91,6 @@ int i915_sw_fence_await_dma_fence(struct i915_sw_fence *fence,
int i915_sw_fence_await_reservation(struct i915_sw_fence *fence,
struct dma_resv *resv,
- const struct dma_fence_ops *exclude,
bool write,
unsigned long timeout,
gfp_t gfp);
diff --git a/drivers/gpu/drm/i915/i915_switcheroo.c b/drivers/gpu/drm/i915/i915_switcheroo.c
index 23777d500cdf..f45bd6b6cede 100644
--- a/drivers/gpu/drm/i915/i915_switcheroo.c
+++ b/drivers/gpu/drm/i915/i915_switcheroo.c
@@ -19,6 +19,10 @@ static void i915_switcheroo_set_state(struct pci_dev *pdev,
dev_err(&pdev->dev, "DRM not initialized, aborting switch.\n");
return;
}
+ if (!HAS_DISPLAY(i915)) {
+ dev_err(&pdev->dev, "Device state not initialized, aborting switch.\n");
+ return;
+ }
if (state == VGA_SWITCHEROO_ON) {
drm_info(&i915->drm, "switched on\n");
@@ -44,7 +48,7 @@ static bool i915_switcheroo_can_switch(struct pci_dev *pdev)
* locking inversion with the driver load path. And the access here is
* completely racy anyway. So don't bother with locking for now.
*/
- return i915 && atomic_read(&i915->drm.open_count) == 0;
+ return i915 && HAS_DISPLAY(i915) && atomic_read(&i915->drm.open_count) == 0;
}
static const struct vga_switcheroo_client_ops i915_switcheroo_ops = {
diff --git a/drivers/gpu/drm/i915/i915_sysfs.c b/drivers/gpu/drm/i915/i915_sysfs.c
index 1e2750210831..e88bb4f04305 100644
--- a/drivers/gpu/drm/i915/i915_sysfs.c
+++ b/drivers/gpu/drm/i915/i915_sysfs.c
@@ -37,7 +37,6 @@
#include "i915_drv.h"
#include "i915_sysfs.h"
-#include "intel_pm.h"
struct drm_i915_private *kdev_minor_to_i915(struct device *kdev)
{
@@ -218,7 +217,8 @@ static const struct bin_attribute error_state_attr = {
static void i915_setup_error_capture(struct device *kdev)
{
if (sysfs_create_bin_file(&kdev->kobj, &error_state_attr))
- DRM_ERROR("error_state sysfs setup failed\n");
+ drm_err(&kdev_minor_to_i915(kdev)->drm,
+ "error_state sysfs setup failed\n");
}
static void i915_teardown_error_capture(struct device *kdev)
diff --git a/drivers/gpu/drm/i915/i915_trace.h b/drivers/gpu/drm/i915/i915_trace.h
index 37b5c9e9d260..f6f9228a1351 100644
--- a/drivers/gpu/drm/i915/i915_trace.h
+++ b/drivers/gpu/drm/i915/i915_trace.h
@@ -15,7 +15,6 @@
#include "gt/intel_engine.h"
#include "i915_drv.h"
-#include "i915_irq.h"
/* object tracking */
@@ -671,21 +670,6 @@ TRACE_EVENT_CONDITION(i915_reg_rw,
(u32)(__entry->val >> 32))
);
-TRACE_EVENT(intel_gpu_freq_change,
- TP_PROTO(u32 freq),
- TP_ARGS(freq),
-
- TP_STRUCT__entry(
- __field(u32, freq)
- ),
-
- TP_fast_assign(
- __entry->freq = freq;
- ),
-
- TP_printk("new_freq=%u", __entry->freq)
-);
-
/**
* DOC: i915_ppgtt_create and i915_ppgtt_release tracepoints
*
diff --git a/drivers/gpu/drm/i915/i915_ttm_buddy_manager.c b/drivers/gpu/drm/i915/i915_ttm_buddy_manager.c
index e19452f0e100..a1bc804cfa15 100644
--- a/drivers/gpu/drm/i915/i915_ttm_buddy_manager.c
+++ b/drivers/gpu/drm/i915/i915_ttm_buddy_manager.c
@@ -5,8 +5,8 @@
#include <linux/slab.h>
-#include <drm/ttm/ttm_bo_driver.h>
#include <drm/ttm/ttm_placement.h>
+#include <drm/ttm/ttm_bo.h>
#include <drm/drm_buddy.h>
@@ -62,8 +62,8 @@ static int i915_ttm_buddy_man_alloc(struct ttm_resource_manager *man,
if (place->fpfn || lpfn != man->size)
bman_res->flags |= DRM_BUDDY_RANGE_ALLOCATION;
- GEM_BUG_ON(!bman_res->base.num_pages);
- size = bman_res->base.num_pages << PAGE_SHIFT;
+ GEM_BUG_ON(!bman_res->base.size);
+ size = bman_res->base.size;
min_page_size = bman->default_page_size;
if (bo->page_alignment)
@@ -72,7 +72,7 @@ static int i915_ttm_buddy_man_alloc(struct ttm_resource_manager *man,
GEM_BUG_ON(min_page_size < mm->chunk_size);
GEM_BUG_ON(!IS_ALIGNED(size, min_page_size));
- if (place->fpfn + bman_res->base.num_pages != place->lpfn &&
+ if (place->fpfn + PFN_UP(bman_res->base.size) != place->lpfn &&
place->flags & TTM_PL_FLAG_CONTIGUOUS) {
unsigned long pages;
@@ -108,7 +108,7 @@ static int i915_ttm_buddy_man_alloc(struct ttm_resource_manager *man,
goto err_free_blocks;
if (place->flags & TTM_PL_FLAG_CONTIGUOUS) {
- u64 original_size = (u64)bman_res->base.num_pages << PAGE_SHIFT;
+ u64 original_size = (u64)bman_res->base.size;
drm_buddy_block_trim(mm,
original_size,
@@ -116,7 +116,7 @@ static int i915_ttm_buddy_man_alloc(struct ttm_resource_manager *man,
}
if (lpfn <= bman->visible_size) {
- bman_res->used_visible_size = bman_res->base.num_pages;
+ bman_res->used_visible_size = PFN_UP(bman_res->base.size);
} else {
struct drm_buddy_block *block;
@@ -139,13 +139,6 @@ static int i915_ttm_buddy_man_alloc(struct ttm_resource_manager *man,
mutex_unlock(&bman->lock);
- if (place->lpfn - place->fpfn == n_pages)
- bman_res->base.start = place->fpfn;
- else if (lpfn <= bman->visible_size)
- bman_res->base.start = 0;
- else
- bman_res->base.start = bman->visible_size;
-
*res = &bman_res->base;
return 0;
@@ -228,7 +221,7 @@ static bool i915_ttm_buddy_man_compatible(struct ttm_resource_manager *man,
if (!place->fpfn &&
place->lpfn == i915_ttm_buddy_man_visible_size(man))
- return bman_res->used_visible_size == res->num_pages;
+ return bman_res->used_visible_size == PFN_UP(res->size);
/* Check each drm buddy block individually */
list_for_each_entry(block, &bman_res->blocks, link) {
diff --git a/drivers/gpu/drm/i915/i915_user_extensions.c b/drivers/gpu/drm/i915/i915_user_extensions.c
index c822d0aafd2d..e3f808372c47 100644
--- a/drivers/gpu/drm/i915/i915_user_extensions.c
+++ b/drivers/gpu/drm/i915/i915_user_extensions.c
@@ -51,7 +51,7 @@ int i915_user_extensions(struct i915_user_extension __user *ext,
return err;
if (get_user(next, &ext->next_extension) ||
- overflows_type(next, ext))
+ overflows_type(next, uintptr_t))
return -EFAULT;
ext = u64_to_user_ptr(next);
diff --git a/drivers/gpu/drm/i915/i915_utils.h b/drivers/gpu/drm/i915/i915_utils.h
index 6c14d13364bf..2c430c0c3bad 100644
--- a/drivers/gpu/drm/i915/i915_utils.h
+++ b/drivers/gpu/drm/i915/i915_utils.h
@@ -111,10 +111,6 @@ bool i915_error_injected(void);
#define range_overflows_end_t(type, start, size, max) \
range_overflows_end((type)(start), (type)(size), (type)(max))
-/* Note we don't consider signbits :| */
-#define overflows_type(x, T) \
- (sizeof(x) > sizeof(T) && (x) >> BITS_PER_TYPE(T))
-
#define ptr_mask_bits(ptr, n) ({ \
unsigned long __v = (unsigned long)(ptr); \
(typeof(ptr))(__v & -BIT(n)); \
@@ -149,8 +145,6 @@ bool i915_error_injected(void);
#define page_pack_bits(ptr, bits) ptr_pack_bits(ptr, bits, PAGE_SHIFT)
#define page_unpack_bits(ptr, bits) ptr_unpack_bits(ptr, bits, PAGE_SHIFT)
-#define struct_member(T, member) (((T *)0)->member)
-
#define fetch_and_zero(ptr) ({ \
typeof(*ptr) __T = *(ptr); \
*(ptr) = (typeof(*ptr))0; \
@@ -170,7 +164,7 @@ static __always_inline ptrdiff_t ptrdiff(const void *a, const void *b)
*/
#define container_of_user(ptr, type, member) ({ \
void __user *__mptr = (void __user *)(ptr); \
- BUILD_BUG_ON_MSG(!__same_type(*(ptr), struct_member(type, member)) && \
+ BUILD_BUG_ON_MSG(!__same_type(*(ptr), typeof_member(type, member)) && \
!__same_type(*(ptr), void), \
"pointer type mismatch in container_of()"); \
((type __user *)(__mptr - offsetof(type, member))); })
diff --git a/drivers/gpu/drm/i915/i915_vma.c b/drivers/gpu/drm/i915/i915_vma.c
index f17c09ead7d7..20a44788999e 100644
--- a/drivers/gpu/drm/i915/i915_vma.c
+++ b/drivers/gpu/drm/i915/i915_vma.c
@@ -26,6 +26,7 @@
#include <linux/dma-fence-array.h>
#include <drm/drm_gem.h>
+#include "display/intel_display.h"
#include "display/intel_frontbuffer.h"
#include "gem/i915_gem_lmem.h"
#include "gem/i915_gem_tiling.h"
@@ -73,14 +74,16 @@ static void vma_print_allocator(struct i915_vma *vma, const char *reason)
char buf[512];
if (!vma->node.stack) {
- DRM_DEBUG_DRIVER("vma.node [%08llx + %08llx] %s: unknown owner\n",
- vma->node.start, vma->node.size, reason);
+ drm_dbg(&to_i915(vma->obj->base.dev)->drm,
+ "vma.node [%08llx + %08llx] %s: unknown owner\n",
+ vma->node.start, vma->node.size, reason);
return;
}
stack_depot_snprint(vma->node.stack, buf, sizeof(buf), 0);
- DRM_DEBUG_DRIVER("vma.node [%08llx + %08llx] %s: inserted at %s\n",
- vma->node.start, vma->node.size, reason, buf);
+ drm_dbg(&to_i915(vma->obj->base.dev)->drm,
+ "vma.node [%08llx + %08llx] %s: inserted at %s\n",
+ vma->node.start, vma->node.size, reason, buf);
}
#else
@@ -416,8 +419,8 @@ i915_vma_resource_init_from_vma(struct i915_vma_resource *vma_res,
i915_vma_resource_init(vma_res, vma->vm, vma->pages, &vma->page_sizes,
obj->mm.rsgt, i915_gem_object_is_readonly(obj),
i915_gem_object_is_lmem(obj), obj->mm.region,
- vma->ops, vma->private, vma->node.start,
- vma->node.size, vma->size);
+ vma->ops, vma->private, __i915_vma_offset(vma),
+ __i915_vma_size(vma), vma->size, vma->guard);
}
/**
@@ -445,7 +448,7 @@ int i915_vma_bind(struct i915_vma *vma,
lockdep_assert_held(&vma->vm->mutex);
GEM_BUG_ON(!drm_mm_node_allocated(&vma->node));
- GEM_BUG_ON(vma->size > vma->node.size);
+ GEM_BUG_ON(vma->size > i915_vma_size(vma));
if (GEM_DEBUG_WARN_ON(range_overflows(vma->node.start,
vma->node.size,
@@ -567,8 +570,8 @@ void __iomem *i915_vma_pin_iomap(struct i915_vma *vma)
vma->obj->base.size);
} else if (i915_vma_is_map_and_fenceable(vma)) {
ptr = io_mapping_map_wc(&i915_vm_to_ggtt(vma->vm)->iomap,
- vma->node.start,
- vma->node.size);
+ i915_vma_offset(vma),
+ i915_vma_size(vma));
} else {
ptr = (void __iomem *)
i915_gem_object_pin_map(vma->obj, I915_MAP_WC);
@@ -657,22 +660,26 @@ bool i915_vma_misplaced(const struct i915_vma *vma,
if (test_bit(I915_VMA_ERROR_BIT, __i915_vma_flags(vma)))
return true;
- if (vma->node.size < size)
+ if (i915_vma_size(vma) < size)
return true;
GEM_BUG_ON(alignment && !is_power_of_2(alignment));
- if (alignment && !IS_ALIGNED(vma->node.start, alignment))
+ if (alignment && !IS_ALIGNED(i915_vma_offset(vma), alignment))
return true;
if (flags & PIN_MAPPABLE && !i915_vma_is_map_and_fenceable(vma))
return true;
if (flags & PIN_OFFSET_BIAS &&
- vma->node.start < (flags & PIN_OFFSET_MASK))
+ i915_vma_offset(vma) < (flags & PIN_OFFSET_MASK))
return true;
if (flags & PIN_OFFSET_FIXED &&
- vma->node.start != (flags & PIN_OFFSET_MASK))
+ i915_vma_offset(vma) != (flags & PIN_OFFSET_MASK))
+ return true;
+
+ if (flags & PIN_OFFSET_GUARD &&
+ vma->guard < (flags & PIN_OFFSET_MASK))
return true;
return false;
@@ -685,10 +692,11 @@ void __i915_vma_set_map_and_fenceable(struct i915_vma *vma)
GEM_BUG_ON(!i915_vma_is_ggtt(vma));
GEM_BUG_ON(!vma->fence_size);
- fenceable = (vma->node.size >= vma->fence_size &&
- IS_ALIGNED(vma->node.start, vma->fence_alignment));
+ fenceable = (i915_vma_size(vma) >= vma->fence_size &&
+ IS_ALIGNED(i915_vma_offset(vma), vma->fence_alignment));
- mappable = vma->node.start + vma->fence_size <= i915_vm_to_ggtt(vma->vm)->mappable_end;
+ mappable = i915_ggtt_offset(vma) + vma->fence_size <=
+ i915_vm_to_ggtt(vma->vm)->mappable_end;
if (mappable && fenceable)
set_bit(I915_VMA_CAN_FENCE_BIT, __i915_vma_flags(vma));
@@ -731,6 +739,7 @@ bool i915_gem_valid_gtt_space(struct i915_vma *vma, unsigned long color)
/**
* i915_vma_insert - finds a slot for the vma in its address space
* @vma: the vma
+ * @ww: An optional struct i915_gem_ww_ctx
* @size: requested size in bytes (can be larger than the VMA)
* @alignment: required alignment
* @flags: mask of PIN_* flags to use
@@ -746,15 +755,16 @@ static int
i915_vma_insert(struct i915_vma *vma, struct i915_gem_ww_ctx *ww,
u64 size, u64 alignment, u64 flags)
{
- unsigned long color;
+ unsigned long color, guard;
u64 start, end;
int ret;
GEM_BUG_ON(i915_vma_is_bound(vma, I915_VMA_GLOBAL_BIND | I915_VMA_LOCAL_BIND));
GEM_BUG_ON(drm_mm_node_allocated(&vma->node));
+ GEM_BUG_ON(hweight64(flags & (PIN_OFFSET_GUARD | PIN_OFFSET_FIXED | PIN_OFFSET_BIAS)) > 1);
size = max(size, vma->size);
- alignment = max(alignment, vma->display_alignment);
+ alignment = max_t(typeof(alignment), alignment, vma->display_alignment);
if (flags & PIN_MAPPABLE) {
size = max_t(typeof(size), size, vma->fence_size);
alignment = max_t(typeof(alignment),
@@ -765,6 +775,18 @@ i915_vma_insert(struct i915_vma *vma, struct i915_gem_ww_ctx *ww,
GEM_BUG_ON(!IS_ALIGNED(alignment, I915_GTT_MIN_ALIGNMENT));
GEM_BUG_ON(!is_power_of_2(alignment));
+ guard = vma->guard; /* retain guard across rebinds */
+ if (flags & PIN_OFFSET_GUARD) {
+ GEM_BUG_ON(overflows_type(flags & PIN_OFFSET_MASK, u32));
+ guard = max_t(u32, guard, flags & PIN_OFFSET_MASK);
+ }
+ /*
+ * As we align the node upon insertion, but the hardware gets
+ * node.start + guard, the easiest way to make that work is
+ * to make the guard a multiple of the alignment size.
+ */
+ guard = ALIGN(guard, alignment);
+
start = flags & PIN_OFFSET_BIAS ? flags & PIN_OFFSET_MASK : 0;
GEM_BUG_ON(!IS_ALIGNED(start, I915_GTT_PAGE_SIZE));
@@ -776,21 +798,16 @@ i915_vma_insert(struct i915_vma *vma, struct i915_gem_ww_ctx *ww,
GEM_BUG_ON(!IS_ALIGNED(end, I915_GTT_PAGE_SIZE));
alignment = max(alignment, i915_vm_obj_min_alignment(vma->vm, vma->obj));
- /*
- * for compact-pt we round up the reservation to prevent
- * any smaller pages being used within the same PDE
- */
- if (NEEDS_COMPACT_PT(vma->vm->i915))
- size = round_up(size, alignment);
- /* If binding the object/GGTT view requires more space than the entire
+ /*
+ * If binding the object/GGTT view requires more space than the entire
* aperture has, reject it early before evicting everything in a vain
* attempt to find space.
*/
- if (size > end) {
- DRM_DEBUG("Attempting to bind an object larger than the aperture: request=%llu > %s aperture=%llu\n",
- size, flags & PIN_MAPPABLE ? "mappable" : "total",
- end);
+ if (size > end - 2 * guard) {
+ drm_dbg(&to_i915(vma->obj->base.dev)->drm,
+ "Attempting to bind an object larger than the aperture: request=%llu > %s aperture=%llu\n",
+ size, flags & PIN_MAPPABLE ? "mappable" : "total", end);
return -ENOSPC;
}
@@ -804,13 +821,23 @@ i915_vma_insert(struct i915_vma *vma, struct i915_gem_ww_ctx *ww,
if (!IS_ALIGNED(offset, alignment) ||
range_overflows(offset, size, end))
return -EINVAL;
+ /*
+ * The caller knows not of the guard added by others and
+ * requests for the offset of the start of its buffer
+ * to be fixed, which may not be the same as the position
+ * of the vma->node due to the guard pages.
+ */
+ if (offset < guard || offset + size > end - guard)
+ return -ENOSPC;
ret = i915_gem_gtt_reserve(vma->vm, ww, &vma->node,
- size, offset, color,
- flags);
+ size + 2 * guard,
+ offset - guard,
+ color, flags);
if (ret)
return ret;
} else {
+ size += 2 * guard;
/*
* We only support huge gtt pages through the 48b PPGTT,
* however we also don't want to force any alignment for
@@ -820,7 +847,8 @@ i915_vma_insert(struct i915_vma *vma, struct i915_gem_ww_ctx *ww,
* forseeable future. See also i915_ggtt_offset().
*/
if (upper_32_bits(end - 1) &&
- vma->page_sizes.sg > I915_GTT_PAGE_SIZE) {
+ vma->page_sizes.sg > I915_GTT_PAGE_SIZE &&
+ !HAS_64K_PAGES(vma->vm->i915)) {
/*
* We can't mix 64K and 4K PTEs in the same page-table
* (2M block), and so to avoid the ugliness and
@@ -857,6 +885,7 @@ i915_vma_insert(struct i915_vma *vma, struct i915_gem_ww_ctx *ww,
GEM_BUG_ON(!i915_gem_valid_gtt_space(vma, color));
list_move_tail(&vma->vm_link, &vma->vm->bound_list);
+ vma->guard = guard;
return 0;
}
@@ -909,7 +938,7 @@ rotate_pages(struct drm_i915_gem_object *obj, unsigned int offset,
struct sg_table *st, struct scatterlist *sg)
{
unsigned int column, row;
- unsigned int src_idx;
+ pgoff_t src_idx;
for (column = 0; column < width; column++) {
unsigned int left;
@@ -1015,7 +1044,7 @@ add_padding_pages(unsigned int count,
static struct scatterlist *
remap_tiled_color_plane_pages(struct drm_i915_gem_object *obj,
- unsigned int offset, unsigned int alignment_pad,
+ unsigned long offset, unsigned int alignment_pad,
unsigned int width, unsigned int height,
unsigned int src_stride, unsigned int dst_stride,
struct sg_table *st, struct scatterlist *sg,
@@ -1074,7 +1103,7 @@ remap_tiled_color_plane_pages(struct drm_i915_gem_object *obj,
static struct scatterlist *
remap_contiguous_pages(struct drm_i915_gem_object *obj,
- unsigned int obj_offset,
+ pgoff_t obj_offset,
unsigned int count,
struct sg_table *st, struct scatterlist *sg)
{
@@ -1107,7 +1136,7 @@ remap_contiguous_pages(struct drm_i915_gem_object *obj,
static struct scatterlist *
remap_linear_color_plane_pages(struct drm_i915_gem_object *obj,
- unsigned int obj_offset, unsigned int alignment_pad,
+ pgoff_t obj_offset, unsigned int alignment_pad,
unsigned int size,
struct sg_table *st, struct scatterlist *sg,
unsigned int *gtt_offset)
@@ -1547,6 +1576,8 @@ static int __i915_ggtt_pin(struct i915_vma *vma, struct i915_gem_ww_ctx *ww,
u32 align, unsigned int flags)
{
struct i915_address_space *vm = vma->vm;
+ struct intel_gt *gt;
+ struct i915_ggtt *ggtt = i915_vm_to_ggtt(vm);
int err;
do {
@@ -1562,14 +1593,15 @@ static int __i915_ggtt_pin(struct i915_vma *vma, struct i915_gem_ww_ctx *ww,
}
/* Unlike i915_vma_pin, we don't take no for an answer! */
- flush_idle_contexts(vm->gt);
+ list_for_each_entry(gt, &ggtt->gt_list, ggtt_link)
+ flush_idle_contexts(gt);
if (mutex_lock_interruptible(&vm->mutex) == 0) {
/*
* We pass NULL ww here, as we don't want to unbind
* locked objects when called from execbuf when pinning
* is removed. This would probably regress badly.
*/
- i915_gem_evict_vm(vm, NULL);
+ i915_gem_evict_vm(vm, NULL, NULL);
mutex_unlock(&vm->mutex);
}
} while (1);
@@ -1683,7 +1715,7 @@ static void release_references(struct i915_vma *vma, struct intel_gt *gt,
i915_vma_free(vma);
}
-/**
+/*
* i915_vma_destroy_locked - Remove all weak reference to the vma and put
* the initial reference.
*
@@ -1847,6 +1879,11 @@ int _i915_vma_move_to_active(struct i915_vma *vma,
GEM_BUG_ON(!vma->pages);
+ if (!(flags & __EXEC_OBJECT_NO_REQUEST_AWAIT)) {
+ err = i915_request_await_object(rq, vma->obj, flags & EXEC_OBJECT_WRITE);
+ if (unlikely(err))
+ return err;
+ }
err = __i915_vma_move_to_active(vma, rq);
if (unlikely(err))
return err;
@@ -2114,7 +2151,7 @@ int i915_vma_unbind_async(struct i915_vma *vma, bool trylock_vm)
if (!obj->mm.rsgt)
return -EBUSY;
- err = dma_resv_reserve_fences(obj->base.resv, 1);
+ err = dma_resv_reserve_fences(obj->base.resv, 2);
if (err)
return -EBUSY;
diff --git a/drivers/gpu/drm/i915/i915_vma.h b/drivers/gpu/drm/i915/i915_vma.h
index aecd9c64486b..ed5c9d682a1b 100644
--- a/drivers/gpu/drm/i915/i915_vma.h
+++ b/drivers/gpu/drm/i915/i915_vma.h
@@ -55,6 +55,7 @@ static inline bool i915_vma_is_active(const struct i915_vma *vma)
/* do not reserve memory to prevent deadlocks */
#define __EXEC_OBJECT_NO_RESERVE BIT(31)
+#define __EXEC_OBJECT_NO_REQUEST_AWAIT BIT(30)
int __must_check _i915_vma_move_to_active(struct i915_vma *vma,
struct i915_request *rq,
@@ -124,13 +125,59 @@ static inline bool i915_vma_is_closed(const struct i915_vma *vma)
return !list_empty(&vma->closed_link);
}
+/* Internal use only. */
+static inline u64 __i915_vma_size(const struct i915_vma *vma)
+{
+ return vma->node.size - 2 * vma->guard;
+}
+
+/**
+ * i915_vma_offset - Obtain the va range size of the vma
+ * @vma: The vma
+ *
+ * GPU virtual address space may be allocated with padding. This
+ * function returns the effective virtual address range size
+ * with padding subtracted.
+ *
+ * Return: The effective virtual address range size.
+ */
+static inline u64 i915_vma_size(const struct i915_vma *vma)
+{
+ GEM_BUG_ON(!drm_mm_node_allocated(&vma->node));
+ return __i915_vma_size(vma);
+}
+
+/* Internal use only. */
+static inline u64 __i915_vma_offset(const struct i915_vma *vma)
+{
+ /* The actual start of the vma->pages is after the guard pages. */
+ return vma->node.start + vma->guard;
+}
+
+/**
+ * i915_vma_offset - Obtain the va offset of the vma
+ * @vma: The vma
+ *
+ * GPU virtual address space may be allocated with padding. This
+ * function returns the effective virtual address offset the gpu
+ * should use to access the bound data.
+ *
+ * Return: The effective virtual address offset.
+ */
+static inline u64 i915_vma_offset(const struct i915_vma *vma)
+{
+ GEM_BUG_ON(!drm_mm_node_allocated(&vma->node));
+ return __i915_vma_offset(vma);
+}
+
static inline u32 i915_ggtt_offset(const struct i915_vma *vma)
{
GEM_BUG_ON(!i915_vma_is_ggtt(vma));
GEM_BUG_ON(!drm_mm_node_allocated(&vma->node));
- GEM_BUG_ON(upper_32_bits(vma->node.start));
- GEM_BUG_ON(upper_32_bits(vma->node.start + vma->node.size - 1));
- return lower_32_bits(vma->node.start);
+ GEM_BUG_ON(upper_32_bits(i915_vma_offset(vma)));
+ GEM_BUG_ON(upper_32_bits(i915_vma_offset(vma) +
+ i915_vma_size(vma) - 1));
+ return lower_32_bits(i915_vma_offset(vma));
}
static inline u32 i915_ggtt_pin_bias(struct i915_vma *vma)
diff --git a/drivers/gpu/drm/i915/i915_vma_resource.c b/drivers/gpu/drm/i915/i915_vma_resource.c
index de1342dbfa12..6ba7a7feceba 100644
--- a/drivers/gpu/drm/i915/i915_vma_resource.c
+++ b/drivers/gpu/drm/i915/i915_vma_resource.c
@@ -34,8 +34,8 @@ static struct kmem_cache *slab_vma_resources;
* and removal of fences increases as O(ln(pending_unbinds)) instead of
* O(1) for a single fence without interval tree.
*/
-#define VMA_RES_START(_node) ((_node)->start)
-#define VMA_RES_LAST(_node) ((_node)->start + (_node)->node_size - 1)
+#define VMA_RES_START(_node) ((_node)->start - (_node)->guard)
+#define VMA_RES_LAST(_node) ((_node)->start + (_node)->node_size + (_node)->guard - 1)
INTERVAL_TREE_DEFINE(struct i915_vma_resource, rb,
u64, __subtree_last,
VMA_RES_START, VMA_RES_LAST, static, vma_res_itree);
diff --git a/drivers/gpu/drm/i915/i915_vma_resource.h b/drivers/gpu/drm/i915/i915_vma_resource.h
index 06923d1816e7..c1864e3d0b43 100644
--- a/drivers/gpu/drm/i915/i915_vma_resource.h
+++ b/drivers/gpu/drm/i915/i915_vma_resource.h
@@ -52,9 +52,12 @@ struct i915_page_sizes {
* @mr: The memory region of the object pointed to by the vma.
* @ops: Pointer to the backend i915_vma_ops.
* @private: Bind backend private info.
- * @start: Offset into the address space of bind range start.
- * @node_size: Size of the allocated range manager node.
+ * @start: Offset into the address space of bind range start. Note that
+ * this is after any padding that might have been allocated.
+ * @node_size: Size of the allocated range manager node with padding
+ * subtracted.
* @vma_size: Bind size.
+ * @guard: The size of guard area preceding and trailing the bind.
* @page_sizes_gtt: Resulting page sizes from the bind operation.
* @bound_flags: Flags indicating binding status.
* @allocated: Backend private data. TODO: Should move into @private.
@@ -113,6 +116,7 @@ struct i915_vma_resource {
u64 start;
u64 node_size;
u64 vma_size;
+ u32 guard;
u32 page_sizes_gtt;
u32 bound_flags;
@@ -174,9 +178,10 @@ static inline void i915_vma_resource_put(struct i915_vma_resource *vma_res)
* @mr: The memory region of the object the vma points to.
* @ops: The backend ops.
* @private: Bind backend private info.
- * @start: Offset into the address space of bind range start.
- * @node_size: Size of the allocated range manager node.
+ * @start: Offset into the address space of bind range start after padding.
+ * @node_size: Size of the allocated range manager node minus padding.
* @size: Bind size.
+ * @guard: The size of the guard area preceding and trailing the bind.
*
* Initializes a vma resource allocated using i915_vma_resource_alloc().
* The reason for having separate allocate and initialize function is that
@@ -195,7 +200,8 @@ static inline void i915_vma_resource_init(struct i915_vma_resource *vma_res,
void *private,
u64 start,
u64 node_size,
- u64 size)
+ u64 size,
+ u32 guard)
{
__i915_vma_resource_init(vma_res);
vma_res->vm = vm;
@@ -213,6 +219,7 @@ static inline void i915_vma_resource_init(struct i915_vma_resource *vma_res,
vma_res->start = start;
vma_res->node_size = node_size;
vma_res->vma_size = size;
+ vma_res->guard = guard;
}
static inline void i915_vma_resource_fini(struct i915_vma_resource *vma_res)
diff --git a/drivers/gpu/drm/i915/i915_vma_types.h b/drivers/gpu/drm/i915/i915_vma_types.h
index ec0f6c9f57d0..77fda2244d16 100644
--- a/drivers/gpu/drm/i915/i915_vma_types.h
+++ b/drivers/gpu/drm/i915/i915_vma_types.h
@@ -197,14 +197,15 @@ struct i915_vma {
struct i915_fence_reg *fence;
u64 size;
- u64 display_alignment;
struct i915_page_sizes page_sizes;
/* mmap-offset associated with fencing for this vma */
struct i915_mmap_offset *mmo;
+ u32 guard; /* padding allocated around vma->pages within the node */
u32 fence_size;
u32 fence_alignment;
+ u32 display_alignment;
/**
* Count of the number of times this vma has been opened by different
diff --git a/drivers/gpu/drm/i915/intel_clock_gating.c b/drivers/gpu/drm/i915/intel_clock_gating.c
new file mode 100644
index 000000000000..2c5302bcba19
--- /dev/null
+++ b/drivers/gpu/drm/i915/intel_clock_gating.c
@@ -0,0 +1,888 @@
+/*
+ * Copyright © 2012 Intel Corporation
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice (including the next
+ * paragraph) shall be included in all copies or substantial portions of the
+ * Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
+ * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
+ * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS
+ * IN THE SOFTWARE.
+ *
+ * Authors:
+ * Eugeni Dodonov <eugeni.dodonov@intel.com>
+ *
+ */
+
+#include "display/intel_de.h"
+#include "display/intel_display.h"
+#include "display/intel_display_trace.h"
+#include "display/skl_watermark.h"
+
+#include "gt/intel_engine_regs.h"
+#include "gt/intel_gt.h"
+#include "gt/intel_gt_mcr.h"
+#include "gt/intel_gt_regs.h"
+
+#include "i915_drv.h"
+#include "intel_clock_gating.h"
+#include "intel_mchbar_regs.h"
+#include "vlv_sideband.h"
+
+struct drm_i915_clock_gating_funcs {
+ void (*init_clock_gating)(struct drm_i915_private *i915);
+};
+
+static void gen9_init_clock_gating(struct drm_i915_private *i915)
+{
+ if (HAS_LLC(i915)) {
+ /*
+ * WaCompressedResourceDisplayNewHashMode:skl,kbl
+ * Display WA #0390: skl,kbl
+ *
+ * Must match Sampler, Pixel Back End, and Media. See
+ * WaCompressedResourceSamplerPbeMediaNewHashMode.
+ */
+ intel_uncore_rmw(&i915->uncore, CHICKEN_PAR1_1, 0, SKL_DE_COMPRESSED_HASH_MODE);
+ }
+
+ /* See Bspec note for PSR2_CTL bit 31, Wa#828:skl,bxt,kbl,cfl */
+ intel_uncore_rmw(&i915->uncore, CHICKEN_PAR1_1, 0, SKL_EDP_PSR_FIX_RDWRAP);
+
+ /* WaEnableChickenDCPR:skl,bxt,kbl,glk,cfl */
+ intel_uncore_rmw(&i915->uncore, GEN8_CHICKEN_DCPR_1, 0, MASK_WAKEMEM);
+
+ /*
+ * WaFbcWakeMemOn:skl,bxt,kbl,glk,cfl
+ * Display WA #0859: skl,bxt,kbl,glk,cfl
+ */
+ intel_uncore_rmw(&i915->uncore, DISP_ARB_CTL, 0, DISP_FBC_MEMORY_WAKE);
+}
+
+static void bxt_init_clock_gating(struct drm_i915_private *i915)
+{
+ gen9_init_clock_gating(i915);
+
+ /* WaDisableSDEUnitClockGating:bxt */
+ intel_uncore_rmw(&i915->uncore, GEN8_UCGCTL6, 0, GEN8_SDEUNIT_CLOCK_GATE_DISABLE);
+
+ /*
+ * FIXME:
+ * GEN8_HDCUNIT_CLOCK_GATE_DISABLE_HDCREQ applies on 3x6 GT SKUs only.
+ */
+ intel_uncore_rmw(&i915->uncore, GEN8_UCGCTL6, 0, GEN8_HDCUNIT_CLOCK_GATE_DISABLE_HDCREQ);
+
+ /*
+ * Wa: Backlight PWM may stop in the asserted state, causing backlight
+ * to stay fully on.
+ */
+ intel_uncore_write(&i915->uncore, GEN9_CLKGATE_DIS_0,
+ intel_uncore_read(&i915->uncore, GEN9_CLKGATE_DIS_0) |
+ PWM1_GATING_DIS | PWM2_GATING_DIS);
+
+ /*
+ * Lower the display internal timeout.
+ * This is needed to avoid any hard hangs when DSI port PLL
+ * is off and a MMIO access is attempted by any privilege
+ * application, using batch buffers or any other means.
+ */
+ intel_uncore_write(&i915->uncore, RM_TIMEOUT, MMIO_TIMEOUT_US(950));
+
+ /*
+ * WaFbcTurnOffFbcWatermark:bxt
+ * Display WA #0562: bxt
+ */
+ intel_uncore_rmw(&i915->uncore, DISP_ARB_CTL, 0, DISP_FBC_WM_DIS);
+
+ /*
+ * WaFbcHighMemBwCorruptionAvoidance:bxt
+ * Display WA #0883: bxt
+ */
+ intel_uncore_rmw(&i915->uncore, ILK_DPFC_CHICKEN(INTEL_FBC_A), 0, DPFC_DISABLE_DUMMY0);
+}
+
+static void glk_init_clock_gating(struct drm_i915_private *i915)
+{
+ gen9_init_clock_gating(i915);
+
+ /*
+ * WaDisablePWMClockGating:glk
+ * Backlight PWM may stop in the asserted state, causing backlight
+ * to stay fully on.
+ */
+ intel_uncore_write(&i915->uncore, GEN9_CLKGATE_DIS_0,
+ intel_uncore_read(&i915->uncore, GEN9_CLKGATE_DIS_0) |
+ PWM1_GATING_DIS | PWM2_GATING_DIS);
+}
+
+static void ibx_init_clock_gating(struct drm_i915_private *i915)
+{
+ /*
+ * On Ibex Peak and Cougar Point, we need to disable clock
+ * gating for the panel power sequencer or it will fail to
+ * start up when no ports are active.
+ */
+ intel_uncore_write(&i915->uncore, SOUTH_DSPCLK_GATE_D, PCH_DPLSUNIT_CLOCK_GATE_DISABLE);
+}
+
+static void g4x_disable_trickle_feed(struct drm_i915_private *dev_priv)
+{
+ enum pipe pipe;
+
+ for_each_pipe(dev_priv, pipe) {
+ intel_uncore_rmw(&dev_priv->uncore, DSPCNTR(pipe), 0, DISP_TRICKLE_FEED_DISABLE);
+
+ intel_uncore_rmw(&dev_priv->uncore, DSPSURF(pipe), 0, 0);
+ intel_uncore_posting_read(&dev_priv->uncore, DSPSURF(pipe));
+ }
+}
+
+static void ilk_init_clock_gating(struct drm_i915_private *i915)
+{
+ u32 dspclk_gate = ILK_VRHUNIT_CLOCK_GATE_DISABLE;
+
+ /*
+ * Required for FBC
+ * WaFbcDisableDpfcClockGating:ilk
+ */
+ dspclk_gate |= ILK_DPFCRUNIT_CLOCK_GATE_DISABLE |
+ ILK_DPFCUNIT_CLOCK_GATE_DISABLE |
+ ILK_DPFDUNIT_CLOCK_GATE_ENABLE;
+
+ intel_uncore_write(&i915->uncore, PCH_3DCGDIS0,
+ MARIUNIT_CLOCK_GATE_DISABLE |
+ SVSMUNIT_CLOCK_GATE_DISABLE);
+ intel_uncore_write(&i915->uncore, PCH_3DCGDIS1,
+ VFMUNIT_CLOCK_GATE_DISABLE);
+
+ /*
+ * According to the spec the following bits should be set in
+ * order to enable memory self-refresh
+ * The bit 22/21 of 0x42004
+ * The bit 5 of 0x42020
+ * The bit 15 of 0x45000
+ */
+ intel_uncore_write(&i915->uncore, ILK_DISPLAY_CHICKEN2,
+ (intel_uncore_read(&i915->uncore, ILK_DISPLAY_CHICKEN2) |
+ ILK_DPARB_GATE | ILK_VSDPFD_FULL));
+ dspclk_gate |= ILK_DPARBUNIT_CLOCK_GATE_ENABLE;
+ intel_uncore_write(&i915->uncore, DISP_ARB_CTL,
+ (intel_uncore_read(&i915->uncore, DISP_ARB_CTL) |
+ DISP_FBC_WM_DIS));
+
+ /*
+ * Based on the document from hardware guys the following bits
+ * should be set unconditionally in order to enable FBC.
+ * The bit 22 of 0x42000
+ * The bit 22 of 0x42004
+ * The bit 7,8,9 of 0x42020.
+ */
+ if (IS_IRONLAKE_M(i915)) {
+ /* WaFbcAsynchFlipDisableFbcQueue:ilk */
+ intel_uncore_rmw(&i915->uncore, ILK_DISPLAY_CHICKEN1, 0, ILK_FBCQ_DIS);
+ intel_uncore_rmw(&i915->uncore, ILK_DISPLAY_CHICKEN2, 0, ILK_DPARB_GATE);
+ }
+
+ intel_uncore_write(&i915->uncore, ILK_DSPCLK_GATE_D, dspclk_gate);
+
+ intel_uncore_rmw(&i915->uncore, ILK_DISPLAY_CHICKEN2, 0, ILK_ELPIN_409_SELECT);
+
+ g4x_disable_trickle_feed(i915);
+
+ ibx_init_clock_gating(i915);
+}
+
+static void cpt_init_clock_gating(struct drm_i915_private *i915)
+{
+ enum pipe pipe;
+ u32 val;
+
+ /*
+ * On Ibex Peak and Cougar Point, we need to disable clock
+ * gating for the panel power sequencer or it will fail to
+ * start up when no ports are active.
+ */
+ intel_uncore_write(&i915->uncore, SOUTH_DSPCLK_GATE_D, PCH_DPLSUNIT_CLOCK_GATE_DISABLE |
+ PCH_DPLUNIT_CLOCK_GATE_DISABLE |
+ PCH_CPUNIT_CLOCK_GATE_DISABLE);
+ intel_uncore_rmw(&i915->uncore, SOUTH_CHICKEN2, 0, DPLS_EDP_PPS_FIX_DIS);
+ /* The below fixes the weird display corruption, a few pixels shifted
+ * downward, on (only) LVDS of some HP laptops with IVY.
+ */
+ for_each_pipe(i915, pipe) {
+ val = intel_uncore_read(&i915->uncore, TRANS_CHICKEN2(pipe));
+ val |= TRANS_CHICKEN2_TIMING_OVERRIDE;
+ val &= ~TRANS_CHICKEN2_FDI_POLARITY_REVERSED;
+ if (i915->display.vbt.fdi_rx_polarity_inverted)
+ val |= TRANS_CHICKEN2_FDI_POLARITY_REVERSED;
+ val &= ~TRANS_CHICKEN2_DISABLE_DEEP_COLOR_COUNTER;
+ val &= ~TRANS_CHICKEN2_DISABLE_DEEP_COLOR_MODESWITCH;
+ intel_uncore_write(&i915->uncore, TRANS_CHICKEN2(pipe), val);
+ }
+ /* WADP0ClockGatingDisable */
+ for_each_pipe(i915, pipe) {
+ intel_uncore_write(&i915->uncore, TRANS_CHICKEN1(pipe),
+ TRANS_CHICKEN1_DP0UNIT_GC_DISABLE);
+ }
+}
+
+static void gen6_check_mch_setup(struct drm_i915_private *i915)
+{
+ u32 tmp;
+
+ tmp = intel_uncore_read(&i915->uncore, MCH_SSKPD);
+ if (REG_FIELD_GET(SSKPD_WM0_MASK_SNB, tmp) != 12)
+ drm_dbg_kms(&i915->drm,
+ "Wrong MCH_SSKPD value: 0x%08x This can cause underruns.\n",
+ tmp);
+}
+
+static void gen6_init_clock_gating(struct drm_i915_private *i915)
+{
+ u32 dspclk_gate = ILK_VRHUNIT_CLOCK_GATE_DISABLE;
+
+ intel_uncore_write(&i915->uncore, ILK_DSPCLK_GATE_D, dspclk_gate);
+
+ intel_uncore_rmw(&i915->uncore, ILK_DISPLAY_CHICKEN2, 0, ILK_ELPIN_409_SELECT);
+
+ intel_uncore_write(&i915->uncore, GEN6_UCGCTL1,
+ intel_uncore_read(&i915->uncore, GEN6_UCGCTL1) |
+ GEN6_BLBUNIT_CLOCK_GATE_DISABLE |
+ GEN6_CSUNIT_CLOCK_GATE_DISABLE);
+
+ /* According to the BSpec vol1g, bit 12 (RCPBUNIT) clock
+ * gating disable must be set. Failure to set it results in
+ * flickering pixels due to Z write ordering failures after
+ * some amount of runtime in the Mesa "fire" demo, and Unigine
+ * Sanctuary and Tropics, and apparently anything else with
+ * alpha test or pixel discard.
+ *
+ * According to the spec, bit 11 (RCCUNIT) must also be set,
+ * but we didn't debug actual testcases to find it out.
+ *
+ * WaDisableRCCUnitClockGating:snb
+ * WaDisableRCPBUnitClockGating:snb
+ */
+ intel_uncore_write(&i915->uncore, GEN6_UCGCTL2,
+ GEN6_RCPBUNIT_CLOCK_GATE_DISABLE |
+ GEN6_RCCUNIT_CLOCK_GATE_DISABLE);
+
+ /*
+ * According to the spec the following bits should be
+ * set in order to enable memory self-refresh and fbc:
+ * The bit21 and bit22 of 0x42000
+ * The bit21 and bit22 of 0x42004
+ * The bit5 and bit7 of 0x42020
+ * The bit14 of 0x70180
+ * The bit14 of 0x71180
+ *
+ * WaFbcAsynchFlipDisableFbcQueue:snb
+ */
+ intel_uncore_write(&i915->uncore, ILK_DISPLAY_CHICKEN1,
+ intel_uncore_read(&i915->uncore, ILK_DISPLAY_CHICKEN1) |
+ ILK_FBCQ_DIS | ILK_PABSTRETCH_DIS);
+ intel_uncore_write(&i915->uncore, ILK_DISPLAY_CHICKEN2,
+ intel_uncore_read(&i915->uncore, ILK_DISPLAY_CHICKEN2) |
+ ILK_DPARB_GATE | ILK_VSDPFD_FULL);
+ intel_uncore_write(&i915->uncore, ILK_DSPCLK_GATE_D,
+ intel_uncore_read(&i915->uncore, ILK_DSPCLK_GATE_D) |
+ ILK_DPARBUNIT_CLOCK_GATE_ENABLE |
+ ILK_DPFDUNIT_CLOCK_GATE_ENABLE);
+
+ g4x_disable_trickle_feed(i915);
+
+ cpt_init_clock_gating(i915);
+
+ gen6_check_mch_setup(i915);
+}
+
+static void lpt_init_clock_gating(struct drm_i915_private *i915)
+{
+ /*
+ * TODO: this bit should only be enabled when really needed, then
+ * disabled when not needed anymore in order to save power.
+ */
+ if (HAS_PCH_LPT_LP(i915))
+ intel_uncore_rmw(&i915->uncore, SOUTH_DSPCLK_GATE_D,
+ 0, PCH_LP_PARTITION_LEVEL_DISABLE);
+
+ /* WADPOClockGatingDisable:hsw */
+ intel_uncore_rmw(&i915->uncore, TRANS_CHICKEN1(PIPE_A),
+ 0, TRANS_CHICKEN1_DP0UNIT_GC_DISABLE);
+}
+
+static void gen8_set_l3sqc_credits(struct drm_i915_private *i915,
+ int general_prio_credits,
+ int high_prio_credits)
+{
+ u32 misccpctl;
+ u32 val;
+
+ /* WaTempDisableDOPClkGating:bdw */
+ misccpctl = intel_uncore_rmw(&i915->uncore, GEN7_MISCCPCTL,
+ GEN7_DOP_CLOCK_GATE_ENABLE, 0);
+
+ val = intel_gt_mcr_read_any(to_gt(i915), GEN8_L3SQCREG1);
+ val &= ~L3_PRIO_CREDITS_MASK;
+ val |= L3_GENERAL_PRIO_CREDITS(general_prio_credits);
+ val |= L3_HIGH_PRIO_CREDITS(high_prio_credits);
+ intel_gt_mcr_multicast_write(to_gt(i915), GEN8_L3SQCREG1, val);
+
+ /*
+ * Wait at least 100 clocks before re-enabling clock gating.
+ * See the definition of L3SQCREG1 in BSpec.
+ */
+ intel_gt_mcr_read_any(to_gt(i915), GEN8_L3SQCREG1);
+ udelay(1);
+ intel_uncore_write(&i915->uncore, GEN7_MISCCPCTL, misccpctl);
+}
+
+static void icl_init_clock_gating(struct drm_i915_private *i915)
+{
+ /* Wa_1409120013:icl,ehl */
+ intel_uncore_write(&i915->uncore, ILK_DPFC_CHICKEN(INTEL_FBC_A),
+ DPFC_CHICKEN_COMP_DUMMY_PIXEL);
+
+ /*Wa_14010594013:icl, ehl */
+ intel_uncore_rmw(&i915->uncore, GEN8_CHICKEN_DCPR_1,
+ 0, ICL_DELAY_PMRSP);
+}
+
+static void gen12lp_init_clock_gating(struct drm_i915_private *i915)
+{
+ /* Wa_1409120013 */
+ if (DISPLAY_VER(i915) == 12)
+ intel_uncore_write(&i915->uncore, ILK_DPFC_CHICKEN(INTEL_FBC_A),
+ DPFC_CHICKEN_COMP_DUMMY_PIXEL);
+
+ /* Wa_14013723622:tgl,rkl,dg1,adl-s */
+ if (DISPLAY_VER(i915) == 12)
+ intel_uncore_rmw(&i915->uncore, CLKREQ_POLICY,
+ CLKREQ_POLICY_MEM_UP_OVRD, 0);
+}
+
+static void adlp_init_clock_gating(struct drm_i915_private *i915)
+{
+ gen12lp_init_clock_gating(i915);
+
+ /* Wa_22011091694:adlp */
+ intel_de_rmw(i915, GEN9_CLKGATE_DIS_5, 0, DPCE_GATING_DIS);
+
+ /* Bspec/49189 Initialize Sequence */
+ intel_de_rmw(i915, GEN8_CHICKEN_DCPR_1, DDI_CLOCK_REG_ACCESS, 0);
+}
+
+static void xehpsdv_init_clock_gating(struct drm_i915_private *i915)
+{
+ /* Wa_22010146351:xehpsdv */
+ if (IS_XEHPSDV_GRAPHICS_STEP(i915, STEP_A0, STEP_B0))
+ intel_uncore_rmw(&i915->uncore, XEHP_CLOCK_GATE_DIS, 0, SGR_DIS);
+}
+
+static void dg2_init_clock_gating(struct drm_i915_private *i915)
+{
+ /* Wa_22010954014:dg2 */
+ intel_uncore_rmw(&i915->uncore, XEHP_CLOCK_GATE_DIS, 0,
+ SGSI_SIDECLK_DIS);
+
+ /*
+ * Wa_14010733611:dg2_g10
+ * Wa_22010146351:dg2_g10
+ */
+ if (IS_DG2_GRAPHICS_STEP(i915, G10, STEP_A0, STEP_B0))
+ intel_uncore_rmw(&i915->uncore, XEHP_CLOCK_GATE_DIS, 0,
+ SGR_DIS | SGGI_DIS);
+}
+
+static void pvc_init_clock_gating(struct drm_i915_private *i915)
+{
+ /* Wa_14012385139:pvc */
+ if (IS_PVC_BD_STEP(i915, STEP_A0, STEP_B0))
+ intel_uncore_rmw(&i915->uncore, XEHP_CLOCK_GATE_DIS, 0, SGR_DIS);
+
+ /* Wa_22010954014:pvc */
+ if (IS_PVC_BD_STEP(i915, STEP_A0, STEP_B0))
+ intel_uncore_rmw(&i915->uncore, XEHP_CLOCK_GATE_DIS, 0, SGSI_SIDECLK_DIS);
+}
+
+static void cnp_init_clock_gating(struct drm_i915_private *i915)
+{
+ if (!HAS_PCH_CNP(i915))
+ return;
+
+ /* Display WA #1181 WaSouthDisplayDisablePWMCGEGating: cnp */
+ intel_uncore_rmw(&i915->uncore, SOUTH_DSPCLK_GATE_D, 0, CNP_PWM_CGE_GATING_DISABLE);
+}
+
+static void cfl_init_clock_gating(struct drm_i915_private *i915)
+{
+ cnp_init_clock_gating(i915);
+ gen9_init_clock_gating(i915);
+
+ /* WAC6entrylatency:cfl */
+ intel_uncore_rmw(&i915->uncore, FBC_LLC_READ_CTRL, 0, FBC_LLC_FULLY_OPEN);
+
+ /*
+ * WaFbcTurnOffFbcWatermark:cfl
+ * Display WA #0562: cfl
+ */
+ intel_uncore_rmw(&i915->uncore, DISP_ARB_CTL, 0, DISP_FBC_WM_DIS);
+
+ /*
+ * WaFbcNukeOnHostModify:cfl
+ * Display WA #0873: cfl
+ */
+ intel_uncore_rmw(&i915->uncore, ILK_DPFC_CHICKEN(INTEL_FBC_A),
+ 0, DPFC_NUKE_ON_ANY_MODIFICATION);
+}
+
+static void kbl_init_clock_gating(struct drm_i915_private *i915)
+{
+ gen9_init_clock_gating(i915);
+
+ /* WAC6entrylatency:kbl */
+ intel_uncore_rmw(&i915->uncore, FBC_LLC_READ_CTRL, 0, FBC_LLC_FULLY_OPEN);
+
+ /* WaDisableSDEUnitClockGating:kbl */
+ if (IS_KBL_GRAPHICS_STEP(i915, 0, STEP_C0))
+ intel_uncore_rmw(&i915->uncore, GEN8_UCGCTL6,
+ 0, GEN8_SDEUNIT_CLOCK_GATE_DISABLE);
+
+ /* WaDisableGamClockGating:kbl */
+ if (IS_KBL_GRAPHICS_STEP(i915, 0, STEP_C0))
+ intel_uncore_rmw(&i915->uncore, GEN6_UCGCTL1,
+ 0, GEN6_GAMUNIT_CLOCK_GATE_DISABLE);
+
+ /*
+ * WaFbcTurnOffFbcWatermark:kbl
+ * Display WA #0562: kbl
+ */
+ intel_uncore_rmw(&i915->uncore, DISP_ARB_CTL, 0, DISP_FBC_WM_DIS);
+
+ /*
+ * WaFbcNukeOnHostModify:kbl
+ * Display WA #0873: kbl
+ */
+ intel_uncore_rmw(&i915->uncore, ILK_DPFC_CHICKEN(INTEL_FBC_A),
+ 0, DPFC_NUKE_ON_ANY_MODIFICATION);
+}
+
+static void skl_init_clock_gating(struct drm_i915_private *i915)
+{
+ gen9_init_clock_gating(i915);
+
+ /* WaDisableDopClockGating:skl */
+ intel_uncore_rmw(&i915->uncore, GEN7_MISCCPCTL,
+ GEN7_DOP_CLOCK_GATE_ENABLE, 0);
+
+ /* WAC6entrylatency:skl */
+ intel_uncore_rmw(&i915->uncore, FBC_LLC_READ_CTRL, 0, FBC_LLC_FULLY_OPEN);
+
+ /*
+ * WaFbcTurnOffFbcWatermark:skl
+ * Display WA #0562: skl
+ */
+ intel_uncore_rmw(&i915->uncore, DISP_ARB_CTL, 0, DISP_FBC_WM_DIS);
+
+ /*
+ * WaFbcNukeOnHostModify:skl
+ * Display WA #0873: skl
+ */
+ intel_uncore_rmw(&i915->uncore, ILK_DPFC_CHICKEN(INTEL_FBC_A),
+ 0, DPFC_NUKE_ON_ANY_MODIFICATION);
+
+ /*
+ * WaFbcHighMemBwCorruptionAvoidance:skl
+ * Display WA #0883: skl
+ */
+ intel_uncore_rmw(&i915->uncore, ILK_DPFC_CHICKEN(INTEL_FBC_A), 0, DPFC_DISABLE_DUMMY0);
+}
+
+static void bdw_init_clock_gating(struct drm_i915_private *i915)
+{
+ enum pipe pipe;
+
+ /* WaFbcAsynchFlipDisableFbcQueue:hsw,bdw */
+ intel_uncore_rmw(&i915->uncore, CHICKEN_PIPESL_1(PIPE_A), 0, HSW_FBCQ_DIS);
+
+ /* WaSwitchSolVfFArbitrationPriority:bdw */
+ intel_uncore_rmw(&i915->uncore, GAM_ECOCHK, 0, HSW_ECOCHK_ARB_PRIO_SOL);
+
+ /* WaPsrDPAMaskVBlankInSRD:bdw */
+ intel_uncore_rmw(&i915->uncore, CHICKEN_PAR1_1, 0, DPA_MASK_VBLANK_SRD);
+
+ for_each_pipe(i915, pipe) {
+ /* WaPsrDPRSUnmaskVBlankInSRD:bdw */
+ intel_uncore_rmw(&i915->uncore, CHICKEN_PIPESL_1(pipe),
+ 0, BDW_DPRS_MASK_VBLANK_SRD);
+ }
+
+ /* WaVSRefCountFullforceMissDisable:bdw */
+ /* WaDSRefCountFullforceMissDisable:bdw */
+ intel_uncore_rmw(&i915->uncore, GEN7_FF_THREAD_MODE,
+ GEN8_FF_DS_REF_CNT_FFME | GEN7_FF_VS_REF_CNT_FFME, 0);
+
+ intel_uncore_write(&i915->uncore, RING_PSMI_CTL(RENDER_RING_BASE),
+ _MASKED_BIT_ENABLE(GEN8_RC_SEMA_IDLE_MSG_DISABLE));
+
+ /* WaDisableSDEUnitClockGating:bdw */
+ intel_uncore_rmw(&i915->uncore, GEN8_UCGCTL6, 0, GEN8_SDEUNIT_CLOCK_GATE_DISABLE);
+
+ /* WaProgramL3SqcReg1Default:bdw */
+ gen8_set_l3sqc_credits(i915, 30, 2);
+
+ /* WaKVMNotificationOnConfigChange:bdw */
+ intel_uncore_rmw(&i915->uncore, CHICKEN_PAR2_1,
+ 0, KVM_CONFIG_CHANGE_NOTIFICATION_SELECT);
+
+ lpt_init_clock_gating(i915);
+
+ /* WaDisableDopClockGating:bdw
+ *
+ * Also see the CHICKEN2 write in bdw_init_workarounds() to disable DOP
+ * clock gating.
+ */
+ intel_uncore_rmw(&i915->uncore, GEN6_UCGCTL1, 0, GEN6_EU_TCUNIT_CLOCK_GATE_DISABLE);
+}
+
+static void hsw_init_clock_gating(struct drm_i915_private *i915)
+{
+ /* WaFbcAsynchFlipDisableFbcQueue:hsw,bdw */
+ intel_uncore_rmw(&i915->uncore, CHICKEN_PIPESL_1(PIPE_A), 0, HSW_FBCQ_DIS);
+
+ /* This is required by WaCatErrorRejectionIssue:hsw */
+ intel_uncore_rmw(&i915->uncore, GEN7_SQ_CHICKEN_MBCUNIT_CONFIG,
+ 0, GEN7_SQ_CHICKEN_MBCUNIT_SQINTMOB);
+
+ /* WaSwitchSolVfFArbitrationPriority:hsw */
+ intel_uncore_rmw(&i915->uncore, GAM_ECOCHK, 0, HSW_ECOCHK_ARB_PRIO_SOL);
+
+ lpt_init_clock_gating(i915);
+}
+
+static void ivb_init_clock_gating(struct drm_i915_private *i915)
+{
+ intel_uncore_write(&i915->uncore, ILK_DSPCLK_GATE_D, ILK_VRHUNIT_CLOCK_GATE_DISABLE);
+
+ /* WaFbcAsynchFlipDisableFbcQueue:ivb */
+ intel_uncore_rmw(&i915->uncore, ILK_DISPLAY_CHICKEN1, 0, ILK_FBCQ_DIS);
+
+ /* WaDisableBackToBackFlipFix:ivb */
+ intel_uncore_write(&i915->uncore, IVB_CHICKEN3,
+ CHICKEN3_DGMG_REQ_OUT_FIX_DISABLE |
+ CHICKEN3_DGMG_DONE_FIX_DISABLE);
+
+ if (IS_IVB_GT1(i915))
+ intel_uncore_write(&i915->uncore, GEN7_ROW_CHICKEN2,
+ _MASKED_BIT_ENABLE(DOP_CLOCK_GATING_DISABLE));
+ else {
+ /* must write both registers */
+ intel_uncore_write(&i915->uncore, GEN7_ROW_CHICKEN2,
+ _MASKED_BIT_ENABLE(DOP_CLOCK_GATING_DISABLE));
+ intel_uncore_write(&i915->uncore, GEN7_ROW_CHICKEN2_GT2,
+ _MASKED_BIT_ENABLE(DOP_CLOCK_GATING_DISABLE));
+ }
+
+ /*
+ * According to the spec, bit 13 (RCZUNIT) must be set on IVB.
+ * This implements the WaDisableRCZUnitClockGating:ivb workaround.
+ */
+ intel_uncore_write(&i915->uncore, GEN6_UCGCTL2,
+ GEN6_RCZUNIT_CLOCK_GATE_DISABLE);
+
+ /* This is required by WaCatErrorRejectionIssue:ivb */
+ intel_uncore_rmw(&i915->uncore, GEN7_SQ_CHICKEN_MBCUNIT_CONFIG,
+ 0, GEN7_SQ_CHICKEN_MBCUNIT_SQINTMOB);
+
+ g4x_disable_trickle_feed(i915);
+
+ intel_uncore_rmw(&i915->uncore, GEN6_MBCUNIT_SNPCR, GEN6_MBC_SNPCR_MASK,
+ GEN6_MBC_SNPCR_MED);
+
+ if (!HAS_PCH_NOP(i915))
+ cpt_init_clock_gating(i915);
+
+ gen6_check_mch_setup(i915);
+}
+
+static void vlv_init_clock_gating(struct drm_i915_private *i915)
+{
+ /* WaDisableBackToBackFlipFix:vlv */
+ intel_uncore_write(&i915->uncore, IVB_CHICKEN3,
+ CHICKEN3_DGMG_REQ_OUT_FIX_DISABLE |
+ CHICKEN3_DGMG_DONE_FIX_DISABLE);
+
+ /* WaDisableDopClockGating:vlv */
+ intel_uncore_write(&i915->uncore, GEN7_ROW_CHICKEN2,
+ _MASKED_BIT_ENABLE(DOP_CLOCK_GATING_DISABLE));
+
+ /* This is required by WaCatErrorRejectionIssue:vlv */
+ intel_uncore_rmw(&i915->uncore, GEN7_SQ_CHICKEN_MBCUNIT_CONFIG,
+ 0, GEN7_SQ_CHICKEN_MBCUNIT_SQINTMOB);
+
+ /*
+ * According to the spec, bit 13 (RCZUNIT) must be set on IVB.
+ * This implements the WaDisableRCZUnitClockGating:vlv workaround.
+ */
+ intel_uncore_write(&i915->uncore, GEN6_UCGCTL2,
+ GEN6_RCZUNIT_CLOCK_GATE_DISABLE);
+
+ /* WaDisableL3Bank2xClockGate:vlv
+ * Disabling L3 clock gating- MMIO 940c[25] = 1
+ * Set bit 25, to disable L3_BANK_2x_CLK_GATING */
+ intel_uncore_rmw(&i915->uncore, GEN7_UCGCTL4, 0, GEN7_L3BANK2X_CLOCK_GATE_DISABLE);
+
+ /*
+ * WaDisableVLVClockGating_VBIIssue:vlv
+ * Disable clock gating on th GCFG unit to prevent a delay
+ * in the reporting of vblank events.
+ */
+ intel_uncore_write(&i915->uncore, VLV_GUNIT_CLOCK_GATE, GCFG_DIS);
+}
+
+static void chv_init_clock_gating(struct drm_i915_private *i915)
+{
+ /* WaVSRefCountFullforceMissDisable:chv */
+ /* WaDSRefCountFullforceMissDisable:chv */
+ intel_uncore_rmw(&i915->uncore, GEN7_FF_THREAD_MODE,
+ GEN8_FF_DS_REF_CNT_FFME | GEN7_FF_VS_REF_CNT_FFME, 0);
+
+ /* WaDisableSemaphoreAndSyncFlipWait:chv */
+ intel_uncore_write(&i915->uncore, RING_PSMI_CTL(RENDER_RING_BASE),
+ _MASKED_BIT_ENABLE(GEN8_RC_SEMA_IDLE_MSG_DISABLE));
+
+ /* WaDisableCSUnitClockGating:chv */
+ intel_uncore_rmw(&i915->uncore, GEN6_UCGCTL1, 0, GEN6_CSUNIT_CLOCK_GATE_DISABLE);
+
+ /* WaDisableSDEUnitClockGating:chv */
+ intel_uncore_rmw(&i915->uncore, GEN8_UCGCTL6, 0, GEN8_SDEUNIT_CLOCK_GATE_DISABLE);
+
+ /*
+ * WaProgramL3SqcReg1Default:chv
+ * See gfxspecs/Related Documents/Performance Guide/
+ * LSQC Setting Recommendations.
+ */
+ gen8_set_l3sqc_credits(i915, 38, 2);
+}
+
+static void g4x_init_clock_gating(struct drm_i915_private *i915)
+{
+ u32 dspclk_gate;
+
+ intel_uncore_write(&i915->uncore, RENCLK_GATE_D1, 0);
+ intel_uncore_write(&i915->uncore, RENCLK_GATE_D2, VF_UNIT_CLOCK_GATE_DISABLE |
+ GS_UNIT_CLOCK_GATE_DISABLE |
+ CL_UNIT_CLOCK_GATE_DISABLE);
+ intel_uncore_write(&i915->uncore, RAMCLK_GATE_D, 0);
+ dspclk_gate = VRHUNIT_CLOCK_GATE_DISABLE |
+ OVRUNIT_CLOCK_GATE_DISABLE |
+ OVCUNIT_CLOCK_GATE_DISABLE;
+ if (IS_GM45(i915))
+ dspclk_gate |= DSSUNIT_CLOCK_GATE_DISABLE;
+ intel_uncore_write(&i915->uncore, DSPCLK_GATE_D(i915), dspclk_gate);
+
+ g4x_disable_trickle_feed(i915);
+}
+
+static void i965gm_init_clock_gating(struct drm_i915_private *i915)
+{
+ struct intel_uncore *uncore = &i915->uncore;
+
+ intel_uncore_write(uncore, RENCLK_GATE_D1, I965_RCC_CLOCK_GATE_DISABLE);
+ intel_uncore_write(uncore, RENCLK_GATE_D2, 0);
+ intel_uncore_write(uncore, DSPCLK_GATE_D(i915), 0);
+ intel_uncore_write(uncore, RAMCLK_GATE_D, 0);
+ intel_uncore_write16(uncore, DEUC, 0);
+ intel_uncore_write(uncore,
+ MI_ARB_STATE,
+ _MASKED_BIT_ENABLE(MI_ARB_DISPLAY_TRICKLE_FEED_DISABLE));
+}
+
+static void i965g_init_clock_gating(struct drm_i915_private *i915)
+{
+ intel_uncore_write(&i915->uncore, RENCLK_GATE_D1, I965_RCZ_CLOCK_GATE_DISABLE |
+ I965_RCC_CLOCK_GATE_DISABLE |
+ I965_RCPB_CLOCK_GATE_DISABLE |
+ I965_ISC_CLOCK_GATE_DISABLE |
+ I965_FBC_CLOCK_GATE_DISABLE);
+ intel_uncore_write(&i915->uncore, RENCLK_GATE_D2, 0);
+ intel_uncore_write(&i915->uncore, MI_ARB_STATE,
+ _MASKED_BIT_ENABLE(MI_ARB_DISPLAY_TRICKLE_FEED_DISABLE));
+}
+
+static void gen3_init_clock_gating(struct drm_i915_private *i915)
+{
+ u32 dstate = intel_uncore_read(&i915->uncore, D_STATE);
+
+ dstate |= DSTATE_PLL_D3_OFF | DSTATE_GFX_CLOCK_GATING |
+ DSTATE_DOT_CLOCK_GATING;
+ intel_uncore_write(&i915->uncore, D_STATE, dstate);
+
+ if (IS_PINEVIEW(i915))
+ intel_uncore_write(&i915->uncore, ECOSKPD(RENDER_RING_BASE),
+ _MASKED_BIT_ENABLE(ECO_GATING_CX_ONLY));
+
+ /* IIR "flip pending" means done if this bit is set */
+ intel_uncore_write(&i915->uncore, ECOSKPD(RENDER_RING_BASE),
+ _MASKED_BIT_DISABLE(ECO_FLIP_DONE));
+
+ /* interrupts should cause a wake up from C3 */
+ intel_uncore_write(&i915->uncore, INSTPM, _MASKED_BIT_ENABLE(INSTPM_AGPBUSY_INT_EN));
+
+ /* On GEN3 we really need to make sure the ARB C3 LP bit is set */
+ intel_uncore_write(&i915->uncore, MI_ARB_STATE,
+ _MASKED_BIT_ENABLE(MI_ARB_C3_LP_WRITE_ENABLE));
+
+ intel_uncore_write(&i915->uncore, MI_ARB_STATE,
+ _MASKED_BIT_ENABLE(MI_ARB_DISPLAY_TRICKLE_FEED_DISABLE));
+}
+
+static void i85x_init_clock_gating(struct drm_i915_private *i915)
+{
+ intel_uncore_write(&i915->uncore, RENCLK_GATE_D1, SV_CLOCK_GATE_DISABLE);
+
+ /* interrupts should cause a wake up from C3 */
+ intel_uncore_write(&i915->uncore, MI_STATE, _MASKED_BIT_ENABLE(MI_AGPBUSY_INT_EN) |
+ _MASKED_BIT_DISABLE(MI_AGPBUSY_830_MODE));
+
+ intel_uncore_write(&i915->uncore, MEM_MODE,
+ _MASKED_BIT_ENABLE(MEM_DISPLAY_TRICKLE_FEED_DISABLE));
+
+ /*
+ * Have FBC ignore 3D activity since we use software
+ * render tracking, and otherwise a pure 3D workload
+ * (even if it just renders a single frame and then does
+ * abosultely nothing) would not allow FBC to recompress
+ * until a 2D blit occurs.
+ */
+ intel_uncore_write(&i915->uncore, SCPD0,
+ _MASKED_BIT_ENABLE(SCPD_FBC_IGNORE_3D));
+}
+
+static void i830_init_clock_gating(struct drm_i915_private *i915)
+{
+ intel_uncore_write(&i915->uncore, MEM_MODE,
+ _MASKED_BIT_ENABLE(MEM_DISPLAY_A_TRICKLE_FEED_DISABLE) |
+ _MASKED_BIT_ENABLE(MEM_DISPLAY_B_TRICKLE_FEED_DISABLE));
+}
+
+void intel_clock_gating_init(struct drm_i915_private *i915)
+{
+ i915->clock_gating_funcs->init_clock_gating(i915);
+}
+
+static void nop_init_clock_gating(struct drm_i915_private *i915)
+{
+ drm_dbg_kms(&i915->drm,
+ "No clock gating settings or workarounds applied.\n");
+}
+
+#define CG_FUNCS(platform) \
+static const struct drm_i915_clock_gating_funcs platform##_clock_gating_funcs = { \
+ .init_clock_gating = platform##_init_clock_gating, \
+}
+
+CG_FUNCS(pvc);
+CG_FUNCS(dg2);
+CG_FUNCS(xehpsdv);
+CG_FUNCS(adlp);
+CG_FUNCS(gen12lp);
+CG_FUNCS(icl);
+CG_FUNCS(cfl);
+CG_FUNCS(skl);
+CG_FUNCS(kbl);
+CG_FUNCS(bxt);
+CG_FUNCS(glk);
+CG_FUNCS(bdw);
+CG_FUNCS(chv);
+CG_FUNCS(hsw);
+CG_FUNCS(ivb);
+CG_FUNCS(vlv);
+CG_FUNCS(gen6);
+CG_FUNCS(ilk);
+CG_FUNCS(g4x);
+CG_FUNCS(i965gm);
+CG_FUNCS(i965g);
+CG_FUNCS(gen3);
+CG_FUNCS(i85x);
+CG_FUNCS(i830);
+CG_FUNCS(nop);
+#undef CG_FUNCS
+
+/**
+ * intel_clock_gating_hooks_init - setup the clock gating hooks
+ * @i915: device private
+ *
+ * Setup the hooks that configure which clocks of a given platform can be
+ * gated and also apply various GT and display specific workarounds for these
+ * platforms. Note that some GT specific workarounds are applied separately
+ * when GPU contexts or batchbuffers start their execution.
+ */
+void intel_clock_gating_hooks_init(struct drm_i915_private *i915)
+{
+ if (IS_METEORLAKE(i915))
+ i915->clock_gating_funcs = &nop_clock_gating_funcs;
+ else if (IS_PONTEVECCHIO(i915))
+ i915->clock_gating_funcs = &pvc_clock_gating_funcs;
+ else if (IS_DG2(i915))
+ i915->clock_gating_funcs = &dg2_clock_gating_funcs;
+ else if (IS_XEHPSDV(i915))
+ i915->clock_gating_funcs = &xehpsdv_clock_gating_funcs;
+ else if (IS_ALDERLAKE_P(i915))
+ i915->clock_gating_funcs = &adlp_clock_gating_funcs;
+ else if (GRAPHICS_VER(i915) == 12)
+ i915->clock_gating_funcs = &gen12lp_clock_gating_funcs;
+ else if (GRAPHICS_VER(i915) == 11)
+ i915->clock_gating_funcs = &icl_clock_gating_funcs;
+ else if (IS_COFFEELAKE(i915) || IS_COMETLAKE(i915))
+ i915->clock_gating_funcs = &cfl_clock_gating_funcs;
+ else if (IS_SKYLAKE(i915))
+ i915->clock_gating_funcs = &skl_clock_gating_funcs;
+ else if (IS_KABYLAKE(i915))
+ i915->clock_gating_funcs = &kbl_clock_gating_funcs;
+ else if (IS_BROXTON(i915))
+ i915->clock_gating_funcs = &bxt_clock_gating_funcs;
+ else if (IS_GEMINILAKE(i915))
+ i915->clock_gating_funcs = &glk_clock_gating_funcs;
+ else if (IS_BROADWELL(i915))
+ i915->clock_gating_funcs = &bdw_clock_gating_funcs;
+ else if (IS_CHERRYVIEW(i915))
+ i915->clock_gating_funcs = &chv_clock_gating_funcs;
+ else if (IS_HASWELL(i915))
+ i915->clock_gating_funcs = &hsw_clock_gating_funcs;
+ else if (IS_IVYBRIDGE(i915))
+ i915->clock_gating_funcs = &ivb_clock_gating_funcs;
+ else if (IS_VALLEYVIEW(i915))
+ i915->clock_gating_funcs = &vlv_clock_gating_funcs;
+ else if (GRAPHICS_VER(i915) == 6)
+ i915->clock_gating_funcs = &gen6_clock_gating_funcs;
+ else if (GRAPHICS_VER(i915) == 5)
+ i915->clock_gating_funcs = &ilk_clock_gating_funcs;
+ else if (IS_G4X(i915))
+ i915->clock_gating_funcs = &g4x_clock_gating_funcs;
+ else if (IS_I965GM(i915))
+ i915->clock_gating_funcs = &i965gm_clock_gating_funcs;
+ else if (IS_I965G(i915))
+ i915->clock_gating_funcs = &i965g_clock_gating_funcs;
+ else if (GRAPHICS_VER(i915) == 3)
+ i915->clock_gating_funcs = &gen3_clock_gating_funcs;
+ else if (IS_I85X(i915) || IS_I865G(i915))
+ i915->clock_gating_funcs = &i85x_clock_gating_funcs;
+ else if (GRAPHICS_VER(i915) == 2)
+ i915->clock_gating_funcs = &i830_clock_gating_funcs;
+ else {
+ MISSING_CASE(INTEL_DEVID(i915));
+ i915->clock_gating_funcs = &nop_clock_gating_funcs;
+ }
+}
diff --git a/drivers/gpu/drm/i915/intel_clock_gating.h b/drivers/gpu/drm/i915/intel_clock_gating.h
new file mode 100644
index 000000000000..5b4e4c55b2c2
--- /dev/null
+++ b/drivers/gpu/drm/i915/intel_clock_gating.h
@@ -0,0 +1,14 @@
+/* SPDX-License-Identifier: MIT */
+/*
+ * Copyright © 2019 Intel Corporation
+ */
+
+#ifndef __INTEL_CLOCK_GATING_H__
+#define __INTEL_CLOCK_GATING_H__
+
+struct drm_i915_private;
+
+void intel_clock_gating_init(struct drm_i915_private *i915);
+void intel_clock_gating_hooks_init(struct drm_i915_private *i915);
+
+#endif /* __INTEL_CLOCK_GATING_H__ */
diff --git a/drivers/gpu/drm/i915/intel_device_info.c b/drivers/gpu/drm/i915/intel_device_info.c
index 20575eb77ea7..fc5cd14adfcc 100644
--- a/drivers/gpu/drm/i915/intel_device_info.c
+++ b/drivers/gpu/drm/i915/intel_device_info.c
@@ -29,9 +29,12 @@
#include "display/intel_cdclk.h"
#include "display/intel_de.h"
-#include "intel_device_info.h"
+#include "display/intel_display.h"
+#include "gt/intel_gt_regs.h"
#include "i915_drv.h"
+#include "i915_reg.h"
#include "i915_utils.h"
+#include "intel_device_info.h"
#define PLATFORM_NAME(x) [INTEL_##x] = #x
static const char * const platform_names[] = {
@@ -116,9 +119,14 @@ void intel_device_info_print(const struct intel_device_info *info,
drm_printf(p, "display version: %u\n",
runtime->display.ip.ver);
+ drm_printf(p, "graphics stepping: %s\n", intel_step_name(runtime->step.graphics_step));
+ drm_printf(p, "media stepping: %s\n", intel_step_name(runtime->step.media_step));
+ drm_printf(p, "display stepping: %s\n", intel_step_name(runtime->step.display_step));
+ drm_printf(p, "base die stepping: %s\n", intel_step_name(runtime->step.basedie_step));
+
drm_printf(p, "gt: %d\n", info->gt);
- drm_printf(p, "memory-regions: %x\n", runtime->memory_regions);
- drm_printf(p, "page-sizes: %x\n", runtime->page_sizes);
+ drm_printf(p, "memory-regions: 0x%x\n", runtime->memory_regions);
+ drm_printf(p, "page-sizes: 0x%x\n", runtime->page_sizes);
drm_printf(p, "platform: %s\n", intel_platform_name(info->platform));
drm_printf(p, "ppgtt-size: %d\n", runtime->ppgtt_size);
drm_printf(p, "ppgtt-type: %d\n", runtime->ppgtt_type);
@@ -199,6 +207,10 @@ static const u16 subplatform_rpl_ids[] = {
INTEL_RPLP_IDS(0),
};
+static const u16 subplatform_rplu_ids[] = {
+ INTEL_RPLU_IDS(0),
+};
+
static const u16 subplatform_g10_ids[] = {
INTEL_DG2_G10_IDS(0),
INTEL_ATS_M150_IDS(0),
@@ -231,7 +243,7 @@ static bool find_devid(u16 id, const u16 *p, unsigned int num)
return false;
}
-void intel_device_info_subplatform_init(struct drm_i915_private *i915)
+static void intel_device_info_subplatform_init(struct drm_i915_private *i915)
{
const struct intel_device_info *info = INTEL_INFO(i915);
const struct intel_runtime_info *rinfo = RUNTIME_INFO(i915);
@@ -266,6 +278,9 @@ void intel_device_info_subplatform_init(struct drm_i915_private *i915)
} else if (find_devid(devid, subplatform_rpl_ids,
ARRAY_SIZE(subplatform_rpl_ids))) {
mask = BIT(INTEL_SUBPLATFORM_RPL);
+ if (find_devid(devid, subplatform_rplu_ids,
+ ARRAY_SIZE(subplatform_rplu_ids)))
+ mask |= BIT(INTEL_SUBPLATFORM_RPLU);
} else if (find_devid(devid, subplatform_g10_ids,
ARRAY_SIZE(subplatform_g10_ids))) {
mask = BIT(INTEL_SUBPLATFORM_G10);
@@ -288,6 +303,84 @@ void intel_device_info_subplatform_init(struct drm_i915_private *i915)
RUNTIME_INFO(i915)->platform_mask[pi] |= mask;
}
+static void ip_ver_read(struct drm_i915_private *i915, u32 offset, struct intel_ip_version *ip)
+{
+ struct pci_dev *pdev = to_pci_dev(i915->drm.dev);
+ void __iomem *addr;
+ u32 val;
+ u8 expected_ver = ip->ver;
+ u8 expected_rel = ip->rel;
+
+ addr = pci_iomap_range(pdev, 0, offset, sizeof(u32));
+ if (drm_WARN_ON(&i915->drm, !addr))
+ return;
+
+ val = ioread32(addr);
+ pci_iounmap(pdev, addr);
+
+ ip->ver = REG_FIELD_GET(GMD_ID_ARCH_MASK, val);
+ ip->rel = REG_FIELD_GET(GMD_ID_RELEASE_MASK, val);
+ ip->step = REG_FIELD_GET(GMD_ID_STEP, val);
+
+ /* Sanity check against expected versions from device info */
+ if (IP_VER(ip->ver, ip->rel) < IP_VER(expected_ver, expected_rel))
+ drm_dbg(&i915->drm,
+ "Hardware reports GMD IP version %u.%u (REG[0x%x] = 0x%08x) but minimum expected is %u.%u\n",
+ ip->ver, ip->rel, offset, val, expected_ver, expected_rel);
+}
+
+/*
+ * Setup the graphics version for the current device. This must be done before
+ * any code that performs checks on GRAPHICS_VER or DISPLAY_VER, so this
+ * function should be called very early in the driver initialization sequence.
+ *
+ * Regular MMIO access is not yet setup at the point this function is called so
+ * we peek at the appropriate MMIO offset directly. The GMD_ID register is
+ * part of an 'always on' power well by design, so we don't need to worry about
+ * forcewake while reading it.
+ */
+static void intel_ipver_early_init(struct drm_i915_private *i915)
+{
+ struct intel_runtime_info *runtime = RUNTIME_INFO(i915);
+
+ if (!HAS_GMD_ID(i915)) {
+ drm_WARN_ON(&i915->drm, RUNTIME_INFO(i915)->graphics.ip.ver > 12);
+ /*
+ * On older platforms, graphics and media share the same ip
+ * version and release.
+ */
+ RUNTIME_INFO(i915)->media.ip =
+ RUNTIME_INFO(i915)->graphics.ip;
+ return;
+ }
+
+ ip_ver_read(i915, i915_mmio_reg_offset(GMD_ID_GRAPHICS),
+ &runtime->graphics.ip);
+ /* Wa_22012778468 */
+ if (runtime->graphics.ip.ver == 0x0 &&
+ INTEL_INFO(i915)->platform == INTEL_METEORLAKE) {
+ RUNTIME_INFO(i915)->graphics.ip.ver = 12;
+ RUNTIME_INFO(i915)->graphics.ip.rel = 70;
+ }
+ ip_ver_read(i915, i915_mmio_reg_offset(GMD_ID_DISPLAY),
+ &runtime->display.ip);
+ ip_ver_read(i915, i915_mmio_reg_offset(GMD_ID_MEDIA),
+ &runtime->media.ip);
+}
+
+/**
+ * intel_device_info_runtime_init_early - initialize early runtime info
+ * @i915: the i915 device
+ *
+ * Determine early intel_device_info fields at runtime. This function needs
+ * to be called before the MMIO has been setup.
+ */
+void intel_device_info_runtime_init_early(struct drm_i915_private *i915)
+{
+ intel_ipver_early_init(i915);
+ intel_device_info_subplatform_init(i915);
+}
+
/**
* intel_device_info_runtime_init - initialize runtime info
* @dev_priv: the i915 device
@@ -355,6 +448,14 @@ void intel_device_info_runtime_init(struct drm_i915_private *dev_priv)
runtime->num_sprites[pipe] = 1;
}
+ if (HAS_DISPLAY(dev_priv) &&
+ (IS_DGFX(dev_priv) || DISPLAY_VER(dev_priv) >= 14) &&
+ !(intel_de_read(dev_priv, GU_CNTL_PROTECTED) & DEPRESENT)) {
+ drm_info(&dev_priv->drm, "Display not present, disabling\n");
+
+ runtime->pipe_mask = 0;
+ }
+
if (HAS_DISPLAY(dev_priv) && IS_GRAPHICS_VER(dev_priv, 7, 8) &&
HAS_PCH_SPLIT(dev_priv)) {
u32 fuse_strap = intel_de_read(dev_priv, FUSE_STRAP);
@@ -376,8 +477,6 @@ void intel_device_info_runtime_init(struct drm_i915_private *dev_priv)
drm_info(&dev_priv->drm,
"Display fused off, disabling\n");
runtime->pipe_mask = 0;
- runtime->cpu_transcoder_mask = 0;
- runtime->fbc_mask = 0;
} else if (fuse_strap & IVB_PIPE_C_DISABLE) {
drm_info(&dev_priv->drm, "PipeC fused off\n");
runtime->pipe_mask &= ~BIT(PIPE_C);
@@ -415,7 +514,7 @@ void intel_device_info_runtime_init(struct drm_i915_private *dev_priv)
if (DISPLAY_VER(dev_priv) >= 11 && (dfsm & ICL_DFSM_DMC_DISABLE))
runtime->has_dmc = 0;
- if (DISPLAY_VER(dev_priv) >= 10 &&
+ if (IS_DISPLAY_VER(dev_priv, 10, 12) &&
(dfsm & GLK_DFSM_DISPLAY_DSC_DISABLE))
runtime->has_dsc = 0;
}
@@ -442,6 +541,11 @@ void intel_device_info_runtime_init(struct drm_i915_private *dev_priv)
runtime->has_dmc = false;
runtime->has_dsc = false;
}
+
+ /* Disable nuclear pageflip by default on pre-g4x */
+ if (!dev_priv->params.nuclear_pageflip &&
+ DISPLAY_VER(dev_priv) < 5 && !IS_G4X(dev_priv))
+ dev_priv->drm.driver_features &= ~DRIVER_ATOMIC;
}
void intel_driver_caps_print(const struct intel_driver_caps *caps,
@@ -449,5 +553,5 @@ void intel_driver_caps_print(const struct intel_driver_caps *caps,
{
drm_printf(p, "Has logical contexts? %s\n",
str_yes_no(caps->has_logical_contexts));
- drm_printf(p, "scheduler: %x\n", caps->scheduler);
+ drm_printf(p, "scheduler: 0x%x\n", caps->scheduler);
}
diff --git a/drivers/gpu/drm/i915/intel_device_info.h b/drivers/gpu/drm/i915/intel_device_info.h
index d638235e1d26..080a4557899b 100644
--- a/drivers/gpu/drm/i915/intel_device_info.h
+++ b/drivers/gpu/drm/i915/intel_device_info.h
@@ -29,7 +29,7 @@
#include "intel_step.h"
-#include "display/intel_display.h"
+#include "display/intel_display_limits.h"
#include "gt/intel_engine_types.h"
#include "gt/intel_context_types.h"
@@ -127,6 +127,7 @@ enum intel_platform {
* bit set
*/
#define INTEL_SUBPLATFORM_N 1
+#define INTEL_SUBPLATFORM_RPLU 2
/* MTL */
#define INTEL_SUBPLATFORM_M 0
@@ -146,13 +147,13 @@ enum intel_ppgtt_type {
/* Keep has_* in alphabetical order */ \
func(has_64bit_reloc); \
func(has_64k_pages); \
- func(needs_compact_pt); \
func(gpu_reset_clobbers_display); \
func(has_reset_engine); \
func(has_3d_pipeline); \
func(has_4tile); \
func(has_flat_ccs); \
func(has_global_mocs); \
+ func(has_gmd_id); \
func(has_gt_uc); \
func(has_heci_pxp); \
func(has_heci_gscfi); \
@@ -164,6 +165,9 @@ enum intel_ppgtt_type {
func(has_logical_ring_elsq); \
func(has_media_ratio_mode); \
func(has_mslice_steering); \
+ func(has_oa_bpc_reporting); \
+ func(has_oa_slice_contrib_limits); \
+ func(has_oam); \
func(has_one_eu_per_fuse_bit); \
func(has_pxp); \
func(has_rc6); \
@@ -180,6 +184,7 @@ enum intel_ppgtt_type {
/* Keep in alphabetical order */ \
func(cursor_needs_physical); \
func(has_cdclk_crawl); \
+ func(has_cdclk_squash); \
func(has_ddi); \
func(has_dp_mst); \
func(has_dsb); \
@@ -188,27 +193,31 @@ enum intel_ppgtt_type {
func(has_hotplug); \
func(has_hti); \
func(has_ipc); \
- func(has_modular_fia); \
func(has_overlay); \
func(has_psr); \
func(has_psr_hw_tracking); \
func(overlay_needs_physical); \
func(supports_tv);
-struct ip_version {
+struct intel_ip_version {
u8 ver;
u8 rel;
+ u8 step;
};
struct intel_runtime_info {
+ /*
+ * Single "graphics" IP version that represents
+ * render, compute and copy behavior.
+ */
struct {
- struct ip_version ip;
+ struct intel_ip_version ip;
} graphics;
struct {
- struct ip_version ip;
+ struct intel_ip_version ip;
} media;
struct {
- struct ip_version ip;
+ struct intel_ip_version ip;
} display;
/*
@@ -308,7 +317,7 @@ struct intel_driver_caps {
const char *intel_platform_name(enum intel_platform platform);
-void intel_device_info_subplatform_init(struct drm_i915_private *dev_priv);
+void intel_device_info_runtime_init_early(struct drm_i915_private *dev_priv);
void intel_device_info_runtime_init(struct drm_i915_private *dev_priv);
void intel_device_info_print(const struct intel_device_info *info,
diff --git a/drivers/gpu/drm/i915/intel_gvt_mmio_table.c b/drivers/gpu/drm/i915/intel_gvt_mmio_table.c
index 8279dc580a3e..5d08774029cc 100644
--- a/drivers/gpu/drm/i915/intel_gvt_mmio_table.c
+++ b/drivers/gpu/drm/i915/intel_gvt_mmio_table.c
@@ -5,7 +5,14 @@
#include "display/intel_audio_regs.h"
#include "display/intel_backlight_regs.h"
+#include "display/intel_display_types.h"
#include "display/intel_dmc_regs.h"
+#include "display/intel_dp_aux_regs.h"
+#include "display/intel_dpio_phy.h"
+#include "display/intel_fdi_regs.h"
+#include "display/intel_lvds_regs.h"
+#include "display/intel_psr_regs.h"
+#include "display/skl_watermark_regs.h"
#include "display/vlv_dsi_pll_regs.h"
#include "gt/intel_gt_regs.h"
#include "gvt/gvt.h"
@@ -102,7 +109,7 @@ static int iterate_generic_mmio(struct intel_gvt_mmio_table_iter *iter)
MMIO_D(_MMIO(0x2438));
MMIO_D(_MMIO(0x243c));
MMIO_D(_MMIO(0x7018));
- MMIO_D(HALF_SLICE_CHICKEN3);
+ MMIO_D(HSW_HALF_SLICE_CHICKEN3);
MMIO_D(GEN7_HALF_SLICE_CHICKEN1);
/* display */
MMIO_F(_MMIO(0x60220), 0x20);
@@ -115,10 +122,10 @@ static int iterate_generic_mmio(struct intel_gvt_mmio_table_iter *iter)
MMIO_D(PIPEDSL(PIPE_B));
MMIO_D(PIPEDSL(PIPE_C));
MMIO_D(PIPEDSL(_PIPE_EDP));
- MMIO_D(PIPECONF(PIPE_A));
- MMIO_D(PIPECONF(PIPE_B));
- MMIO_D(PIPECONF(PIPE_C));
- MMIO_D(PIPECONF(_PIPE_EDP));
+ MMIO_D(TRANSCONF(TRANSCODER_A));
+ MMIO_D(TRANSCONF(TRANSCODER_B));
+ MMIO_D(TRANSCONF(TRANSCODER_C));
+ MMIO_D(TRANSCONF(TRANSCODER_EDP));
MMIO_D(PIPESTAT(PIPE_A));
MMIO_D(PIPESTAT(PIPE_B));
MMIO_D(PIPESTAT(PIPE_C));
@@ -216,41 +223,41 @@ static int iterate_generic_mmio(struct intel_gvt_mmio_table_iter *iter)
MMIO_D(SPRSCALE(PIPE_C));
MMIO_D(SPRSURFLIVE(PIPE_C));
MMIO_D(REG_50080(PIPE_C, PLANE_SPRITE0));
- MMIO_D(HTOTAL(TRANSCODER_A));
- MMIO_D(HBLANK(TRANSCODER_A));
- MMIO_D(HSYNC(TRANSCODER_A));
- MMIO_D(VTOTAL(TRANSCODER_A));
- MMIO_D(VBLANK(TRANSCODER_A));
- MMIO_D(VSYNC(TRANSCODER_A));
+ MMIO_D(TRANS_HTOTAL(TRANSCODER_A));
+ MMIO_D(TRANS_HBLANK(TRANSCODER_A));
+ MMIO_D(TRANS_HSYNC(TRANSCODER_A));
+ MMIO_D(TRANS_VTOTAL(TRANSCODER_A));
+ MMIO_D(TRANS_VBLANK(TRANSCODER_A));
+ MMIO_D(TRANS_VSYNC(TRANSCODER_A));
MMIO_D(BCLRPAT(TRANSCODER_A));
- MMIO_D(VSYNCSHIFT(TRANSCODER_A));
+ MMIO_D(TRANS_VSYNCSHIFT(TRANSCODER_A));
MMIO_D(PIPESRC(TRANSCODER_A));
- MMIO_D(HTOTAL(TRANSCODER_B));
- MMIO_D(HBLANK(TRANSCODER_B));
- MMIO_D(HSYNC(TRANSCODER_B));
- MMIO_D(VTOTAL(TRANSCODER_B));
- MMIO_D(VBLANK(TRANSCODER_B));
- MMIO_D(VSYNC(TRANSCODER_B));
+ MMIO_D(TRANS_HTOTAL(TRANSCODER_B));
+ MMIO_D(TRANS_HBLANK(TRANSCODER_B));
+ MMIO_D(TRANS_HSYNC(TRANSCODER_B));
+ MMIO_D(TRANS_VTOTAL(TRANSCODER_B));
+ MMIO_D(TRANS_VBLANK(TRANSCODER_B));
+ MMIO_D(TRANS_VSYNC(TRANSCODER_B));
MMIO_D(BCLRPAT(TRANSCODER_B));
- MMIO_D(VSYNCSHIFT(TRANSCODER_B));
+ MMIO_D(TRANS_VSYNCSHIFT(TRANSCODER_B));
MMIO_D(PIPESRC(TRANSCODER_B));
- MMIO_D(HTOTAL(TRANSCODER_C));
- MMIO_D(HBLANK(TRANSCODER_C));
- MMIO_D(HSYNC(TRANSCODER_C));
- MMIO_D(VTOTAL(TRANSCODER_C));
- MMIO_D(VBLANK(TRANSCODER_C));
- MMIO_D(VSYNC(TRANSCODER_C));
+ MMIO_D(TRANS_HTOTAL(TRANSCODER_C));
+ MMIO_D(TRANS_HBLANK(TRANSCODER_C));
+ MMIO_D(TRANS_HSYNC(TRANSCODER_C));
+ MMIO_D(TRANS_VTOTAL(TRANSCODER_C));
+ MMIO_D(TRANS_VBLANK(TRANSCODER_C));
+ MMIO_D(TRANS_VSYNC(TRANSCODER_C));
MMIO_D(BCLRPAT(TRANSCODER_C));
- MMIO_D(VSYNCSHIFT(TRANSCODER_C));
+ MMIO_D(TRANS_VSYNCSHIFT(TRANSCODER_C));
MMIO_D(PIPESRC(TRANSCODER_C));
- MMIO_D(HTOTAL(TRANSCODER_EDP));
- MMIO_D(HBLANK(TRANSCODER_EDP));
- MMIO_D(HSYNC(TRANSCODER_EDP));
- MMIO_D(VTOTAL(TRANSCODER_EDP));
- MMIO_D(VBLANK(TRANSCODER_EDP));
- MMIO_D(VSYNC(TRANSCODER_EDP));
+ MMIO_D(TRANS_HTOTAL(TRANSCODER_EDP));
+ MMIO_D(TRANS_HBLANK(TRANSCODER_EDP));
+ MMIO_D(TRANS_HSYNC(TRANSCODER_EDP));
+ MMIO_D(TRANS_VTOTAL(TRANSCODER_EDP));
+ MMIO_D(TRANS_VBLANK(TRANSCODER_EDP));
+ MMIO_D(TRANS_VSYNC(TRANSCODER_EDP));
MMIO_D(BCLRPAT(TRANSCODER_EDP));
- MMIO_D(VSYNCSHIFT(TRANSCODER_EDP));
+ MMIO_D(TRANS_VSYNCSHIFT(TRANSCODER_EDP));
MMIO_D(PIPE_DATA_M1(TRANSCODER_A));
MMIO_D(PIPE_DATA_N1(TRANSCODER_A));
MMIO_D(PIPE_DATA_M2(TRANSCODER_A));
@@ -491,9 +498,9 @@ static int iterate_generic_mmio(struct intel_gvt_mmio_table_iter *iter)
MMIO_D(GAMMA_MODE(PIPE_A));
MMIO_D(GAMMA_MODE(PIPE_B));
MMIO_D(GAMMA_MODE(PIPE_C));
- MMIO_D(PIPE_MULT(PIPE_A));
- MMIO_D(PIPE_MULT(PIPE_B));
- MMIO_D(PIPE_MULT(PIPE_C));
+ MMIO_D(TRANS_MULT(TRANSCODER_A));
+ MMIO_D(TRANS_MULT(TRANSCODER_B));
+ MMIO_D(TRANS_MULT(TRANSCODER_C));
MMIO_D(HSW_TVIDEO_DIP_CTL(TRANSCODER_A));
MMIO_D(HSW_TVIDEO_DIP_CTL(TRANSCODER_B));
MMIO_D(HSW_TVIDEO_DIP_CTL(TRANSCODER_C));
@@ -786,9 +793,9 @@ static int iterate_bdw_plus_mmio(struct intel_gvt_mmio_table_iter *iter)
MMIO_RING_D(RING_REG);
#undef RING_REG
- MMIO_D(PIPEMISC(PIPE_A));
- MMIO_D(PIPEMISC(PIPE_B));
- MMIO_D(PIPEMISC(PIPE_C));
+ MMIO_D(PIPE_MISC(PIPE_A));
+ MMIO_D(PIPE_MISC(PIPE_B));
+ MMIO_D(PIPE_MISC(PIPE_C));
MMIO_D(_MMIO(0x1c1d0));
MMIO_D(GEN6_MBCUNIT_SNPCR);
MMIO_D(GEN7_MISCCPCTL);
diff --git a/drivers/gpu/drm/i915/intel_mchbar_regs.h b/drivers/gpu/drm/i915/intel_mchbar_regs.h
index ffc702b79579..73900c098d59 100644
--- a/drivers/gpu/drm/i915/intel_mchbar_regs.h
+++ b/drivers/gpu/drm/i915/intel_mchbar_regs.h
@@ -189,6 +189,23 @@
#define DG1_QCLK_RATIO_MASK REG_GENMASK(9, 2)
#define DG1_QCLK_REFERENCE REG_BIT(10)
+/*
+ * *_PACKAGE_POWER_SKU - SKU power and timing parameters.
+ */
+#define PCU_PACKAGE_POWER_SKU _MMIO(MCHBAR_MIRROR_BASE_SNB + 0x5930)
+#define PKG_PKG_TDP GENMASK_ULL(14, 0)
+#define PKG_MIN_PWR GENMASK_ULL(30, 16)
+#define PKG_MAX_PWR GENMASK_ULL(46, 32)
+#define PKG_MAX_WIN GENMASK_ULL(54, 48)
+#define PKG_MAX_WIN_X GENMASK_ULL(54, 53)
+#define PKG_MAX_WIN_Y GENMASK_ULL(52, 48)
+
+#define PCU_PACKAGE_POWER_SKU_UNIT _MMIO(MCHBAR_MIRROR_BASE_SNB + 0x5938)
+#define PKG_PWR_UNIT REG_GENMASK(3, 0)
+#define PKG_ENERGY_UNIT REG_GENMASK(12, 8)
+#define PKG_TIME_UNIT REG_GENMASK(19, 16)
+#define PCU_PACKAGE_ENERGY_STATUS _MMIO(MCHBAR_MIRROR_BASE_SNB + 0x593c)
+
#define GEN6_GT_PERF_STATUS _MMIO(MCHBAR_MIRROR_BASE_SNB + 0x5948)
#define GEN6_RP_STATE_LIMITS _MMIO(MCHBAR_MIRROR_BASE_SNB + 0x5994)
#define GEN6_RP_STATE_CAP _MMIO(MCHBAR_MIRROR_BASE_SNB + 0x5998)
@@ -198,6 +215,12 @@
#define GEN10_FREQ_INFO_REC _MMIO(MCHBAR_MIRROR_BASE_SNB + 0x5ef0)
#define RPE_MASK REG_GENMASK(15, 8)
+#define PCU_PACKAGE_RAPL_LIMIT _MMIO(MCHBAR_MIRROR_BASE_SNB + 0x59a0)
+#define PKG_PWR_LIM_1 REG_GENMASK(14, 0)
+#define PKG_PWR_LIM_1_EN REG_BIT(15)
+#define PKG_PWR_LIM_1_TIME REG_GENMASK(23, 17)
+#define PKG_PWR_LIM_1_TIME_X REG_GENMASK(23, 22)
+#define PKG_PWR_LIM_1_TIME_Y REG_GENMASK(21, 17)
/* snb MCH registers for priority tuning */
#define MCH_SSKPD _MMIO(MCHBAR_MIRROR_BASE_SNB + 0x5d10)
diff --git a/drivers/gpu/drm/i915/intel_memory_region.c b/drivers/gpu/drm/i915/intel_memory_region.c
index b9a164efd6ae..3d1fdea9811d 100644
--- a/drivers/gpu/drm/i915/intel_memory_region.c
+++ b/drivers/gpu/drm/i915/intel_memory_region.c
@@ -235,7 +235,7 @@ intel_memory_region_create(struct drm_i915_private *i915,
return ERR_PTR(-ENOMEM);
mem->i915 = i915;
- mem->region = (struct resource)DEFINE_RES_MEM(start, size);
+ mem->region = DEFINE_RES_MEM(start, size);
mem->io_start = io_start;
mem->io_size = io_size;
mem->min_page_size = min_page_size;
diff --git a/drivers/gpu/drm/i915/intel_pci_config.h b/drivers/gpu/drm/i915/intel_pci_config.h
index 4977a524ce6f..23b8e519f333 100644
--- a/drivers/gpu/drm/i915/intel_pci_config.h
+++ b/drivers/gpu/drm/i915/intel_pci_config.h
@@ -7,11 +7,29 @@
#define __INTEL_PCI_CONFIG_H__
/* PCI BARs */
-#define GTTMMADR_BAR 0
-#define GEN2_GTTMMADR_BAR 1
-#define GFXMEM_BAR 2
-#define GTT_APERTURE_BAR GFXMEM_BAR
-#define GEN12_LMEM_BAR GFXMEM_BAR
+#define GEN2_GMADR_BAR 0
+#define GEN2_MMADR_BAR 1 /* MMIO+GTT, despite the name */
+#define GEN2_IO_BAR 2 /* 85x/865 */
+
+#define GEN3_MMADR_BAR 0 /* MMIO only */
+#define GEN3_IO_BAR 1
+#define GEN3_GMADR_BAR 2
+#define GEN3_GTTADR_BAR 3 /* GTT only */
+
+#define GEN4_GTTMMADR_BAR 0 /* MMIO+GTT */
+#define GEN4_GMADR_BAR 2
+#define GEN4_IO_BAR 4
+
+#define GEN12_LMEM_BAR 2
+
+static inline int intel_mmio_bar(int graphics_ver)
+{
+ switch (graphics_ver) {
+ case 2: return GEN2_MMADR_BAR;
+ case 3: return GEN3_MMADR_BAR;
+ default: return GEN4_GTTMMADR_BAR;
+ }
+}
/* BSM in include/drm/i915_drm.h */
diff --git a/drivers/gpu/drm/i915/intel_pcode.c b/drivers/gpu/drm/i915/intel_pcode.c
index a234d9b4ed14..3db2ba439bb5 100644
--- a/drivers/gpu/drm/i915/intel_pcode.c
+++ b/drivers/gpu/drm/i915/intel_pcode.c
@@ -204,15 +204,42 @@ out:
#undef COND
}
+static int pcode_init_wait(struct intel_uncore *uncore, int timeout_ms)
+{
+ if (__intel_wait_for_register_fw(uncore,
+ GEN6_PCODE_MAILBOX,
+ GEN6_PCODE_READY, 0,
+ 500, timeout_ms,
+ NULL))
+ return -EPROBE_DEFER;
+
+ return skl_pcode_request(uncore,
+ DG1_PCODE_STATUS,
+ DG1_UNCORE_GET_INIT_STATUS,
+ DG1_UNCORE_INIT_STATUS_COMPLETE,
+ DG1_UNCORE_INIT_STATUS_COMPLETE, timeout_ms);
+}
+
int intel_pcode_init(struct intel_uncore *uncore)
{
+ int err;
+
if (!IS_DGFX(uncore->i915))
return 0;
- return skl_pcode_request(uncore, DG1_PCODE_STATUS,
- DG1_UNCORE_GET_INIT_STATUS,
- DG1_UNCORE_INIT_STATUS_COMPLETE,
- DG1_UNCORE_INIT_STATUS_COMPLETE, 180000);
+ /*
+ * Wait 10 seconds so that the punit to settle and complete
+ * any outstanding transactions upon module load
+ */
+ err = pcode_init_wait(uncore, 10000);
+
+ if (err) {
+ drm_notice(&uncore->i915->drm,
+ "Waiting for HW initialisation...\n");
+ err = pcode_init_wait(uncore, 180000);
+ }
+
+ return err;
}
int snb_pcode_read_p(struct intel_uncore *uncore, u32 mbcmd, u32 p1, u32 p2, u32 *val)
diff --git a/drivers/gpu/drm/i915/intel_pm.h b/drivers/gpu/drm/i915/intel_pm.h
deleted file mode 100644
index c09b872d65c8..000000000000
--- a/drivers/gpu/drm/i915/intel_pm.h
+++ /dev/null
@@ -1,34 +0,0 @@
-/* SPDX-License-Identifier: MIT */
-/*
- * Copyright © 2019 Intel Corporation
- */
-
-#ifndef __INTEL_PM_H__
-#define __INTEL_PM_H__
-
-#include <linux/types.h>
-
-struct drm_i915_private;
-struct intel_crtc_state;
-struct intel_plane_state;
-
-void intel_init_clock_gating(struct drm_i915_private *dev_priv);
-void intel_suspend_hw(struct drm_i915_private *dev_priv);
-int ilk_wm_max_level(const struct drm_i915_private *dev_priv);
-void intel_init_pm(struct drm_i915_private *dev_priv);
-void intel_init_clock_gating_hooks(struct drm_i915_private *dev_priv);
-void intel_pm_setup(struct drm_i915_private *dev_priv);
-void g4x_wm_get_hw_state(struct drm_i915_private *dev_priv);
-void vlv_wm_get_hw_state(struct drm_i915_private *dev_priv);
-void ilk_wm_get_hw_state(struct drm_i915_private *dev_priv);
-void g4x_wm_sanitize(struct drm_i915_private *dev_priv);
-void vlv_wm_sanitize(struct drm_i915_private *dev_priv);
-bool ilk_disable_lp_wm(struct drm_i915_private *dev_priv);
-bool intel_wm_plane_visible(const struct intel_crtc_state *crtc_state,
- const struct intel_plane_state *plane_state);
-void intel_print_wm_latency(struct drm_i915_private *dev_priv,
- const char *name, const u16 wm[]);
-
-bool intel_set_memory_cxsr(struct drm_i915_private *dev_priv, bool enable);
-
-#endif /* __INTEL_PM_H__ */
diff --git a/drivers/gpu/drm/i915/intel_region_ttm.c b/drivers/gpu/drm/i915/intel_region_ttm.c
index 575d67bc6ffe..bf6097e7433d 100644
--- a/drivers/gpu/drm/i915/intel_region_ttm.c
+++ b/drivers/gpu/drm/i915/intel_region_ttm.c
@@ -2,7 +2,6 @@
/*
* Copyright © 2021 Intel Corporation
*/
-#include <drm/ttm/ttm_bo_driver.h>
#include <drm/ttm/ttm_device.h>
#include <drm/ttm/ttm_range_manager.h>
@@ -132,7 +131,7 @@ int intel_region_ttm_fini(struct intel_memory_region *mem)
break;
msleep(20);
- flush_delayed_work(&mem->i915->bdev.wq);
+ drain_workqueue(mem->i915->bdev.wq);
}
/* If we leaked objects, Don't free the region causing use after free */
@@ -182,6 +181,7 @@ intel_region_ttm_resource_to_rsgt(struct intel_memory_region *mem,
/**
* intel_region_ttm_resource_alloc - Allocate memory resources from a region
* @mem: The memory region,
+ * @offset: BO offset
* @size: The requested size in bytes
* @flags: Allocation flags
*
@@ -209,13 +209,25 @@ intel_region_ttm_resource_alloc(struct intel_memory_region *mem,
if (flags & I915_BO_ALLOC_CONTIGUOUS)
place.flags |= TTM_PL_FLAG_CONTIGUOUS;
if (offset != I915_BO_INVALID_OFFSET) {
+ if (WARN_ON(overflows_type(offset >> PAGE_SHIFT, place.fpfn))) {
+ ret = -E2BIG;
+ goto out;
+ }
place.fpfn = offset >> PAGE_SHIFT;
+ if (WARN_ON(overflows_type(place.fpfn + (size >> PAGE_SHIFT), place.lpfn))) {
+ ret = -E2BIG;
+ goto out;
+ }
place.lpfn = place.fpfn + (size >> PAGE_SHIFT);
} else if (mem->io_size && mem->io_size < mem->total) {
if (flags & I915_BO_ALLOC_GPU_ONLY) {
place.flags |= TTM_PL_FLAG_TOPDOWN;
} else {
place.fpfn = 0;
+ if (WARN_ON(overflows_type(mem->io_size >> PAGE_SHIFT, place.lpfn))) {
+ ret = -E2BIG;
+ goto out;
+ }
place.lpfn = mem->io_size >> PAGE_SHIFT;
}
}
@@ -224,6 +236,8 @@ intel_region_ttm_resource_alloc(struct intel_memory_region *mem,
mock_bo.bdev = &mem->i915->bdev;
ret = man->func->alloc(man, &mock_bo, &place, &res);
+
+out:
if (ret == -ENOSPC)
ret = -ENXIO;
if (!ret)
@@ -244,7 +258,7 @@ void intel_region_ttm_resource_free(struct intel_memory_region *mem,
struct ttm_resource_manager *man = mem->region_private;
struct ttm_buffer_object mock_bo = {};
- mock_bo.base.size = res->num_pages << PAGE_SHIFT;
+ mock_bo.base.size = res->size;
mock_bo.bdev = &mem->i915->bdev;
res->bo = &mock_bo;
diff --git a/drivers/gpu/drm/i915/intel_runtime_pm.c b/drivers/gpu/drm/i915/intel_runtime_pm.c
index 744cca507946..cf5122299b6b 100644
--- a/drivers/gpu/drm/i915/intel_runtime_pm.c
+++ b/drivers/gpu/drm/i915/intel_runtime_pm.c
@@ -633,6 +633,8 @@ void intel_runtime_pm_driver_release(struct intel_runtime_pm *rpm)
runtime_pm);
int count = atomic_read(&rpm->wakeref_count);
+ intel_wakeref_auto_fini(&rpm->userfault_wakeref);
+
drm_WARN(&i915->drm, count,
"i915 raw-wakerefs=%d wakelocks=%d on cleanup\n",
intel_rpm_raw_wakeref_count(count),
@@ -650,6 +652,11 @@ void intel_runtime_pm_init_early(struct intel_runtime_pm *rpm)
rpm->kdev = kdev;
rpm->available = HAS_RUNTIME_PM(i915);
+ rpm->suspended = false;
+ atomic_set(&rpm->wakeref_count, 0);
init_intel_runtime_pm_wakeref(rpm);
+ INIT_LIST_HEAD(&rpm->lmem_userfault_list);
+ spin_lock_init(&rpm->lmem_userfault_lock);
+ intel_wakeref_auto_init(&rpm->userfault_wakeref, rpm);
}
diff --git a/drivers/gpu/drm/i915/intel_runtime_pm.h b/drivers/gpu/drm/i915/intel_runtime_pm.h
index d9160e3ff4af..e592e8d6499a 100644
--- a/drivers/gpu/drm/i915/intel_runtime_pm.h
+++ b/drivers/gpu/drm/i915/intel_runtime_pm.h
@@ -53,6 +53,28 @@ struct intel_runtime_pm {
bool irqs_enabled;
bool no_wakeref_tracking;
+ /*
+ * Protects access to lmem usefault list.
+ * It is required, if we are outside of the runtime suspend path,
+ * access to @lmem_userfault_list requires always first grabbing the
+ * runtime pm, to ensure we can't race against runtime suspend.
+ * Once we have that we also need to grab @lmem_userfault_lock,
+ * at which point we have exclusive access.
+ * The runtime suspend path is special since it doesn't really hold any locks,
+ * but instead has exclusive access by virtue of all other accesses requiring
+ * holding the runtime pm wakeref.
+ */
+ spinlock_t lmem_userfault_lock;
+
+ /*
+ * Keep list of userfaulted gem obj, which require to release their
+ * mmap mappings at runtime suspend path.
+ */
+ struct list_head lmem_userfault_list;
+
+ /* Manual runtime pm autosuspend delay for user GGTT/lmem mmaps */
+ struct intel_wakeref_auto userfault_wakeref;
+
#if IS_ENABLED(CONFIG_DRM_I915_DEBUG_RUNTIME_PM)
/*
* To aide detection of wakeref leaks and general misuse, we
@@ -74,7 +96,7 @@ struct intel_runtime_pm {
};
#define BITS_PER_WAKEREF \
- BITS_PER_TYPE(struct_member(struct intel_runtime_pm, wakeref_count))
+ BITS_PER_TYPE(typeof_member(struct intel_runtime_pm, wakeref_count))
#define INTEL_RPM_WAKELOCK_SHIFT (BITS_PER_WAKEREF / 2)
#define INTEL_RPM_WAKELOCK_BIAS (1 << INTEL_RPM_WAKELOCK_SHIFT)
#define INTEL_RPM_RAW_WAKEREF_MASK (INTEL_RPM_WAKELOCK_BIAS - 1)
diff --git a/drivers/gpu/drm/i915/intel_step.c b/drivers/gpu/drm/i915/intel_step.c
index 42b3133d8387..84a6fe736a3b 100644
--- a/drivers/gpu/drm/i915/intel_step.c
+++ b/drivers/gpu/drm/i915/intel_step.c
@@ -131,10 +131,27 @@ static const struct intel_step_info adls_rpls_revids[] = {
[0xC] = { COMMON_GT_MEDIA_STEP(D0), .display_step = STEP_C0 },
};
+static const struct intel_step_info adlp_rplp_revids[] = {
+ [0x4] = { COMMON_GT_MEDIA_STEP(C0), .display_step = STEP_E0 },
+};
+
static const struct intel_step_info adlp_n_revids[] = {
[0x0] = { COMMON_GT_MEDIA_STEP(A0), .display_step = STEP_D0 },
};
+static u8 gmd_to_intel_step(struct drm_i915_private *i915,
+ struct intel_ip_version *gmd)
+{
+ u8 step = gmd->step + STEP_A0;
+
+ if (step >= STEP_FUTURE) {
+ drm_dbg(&i915->drm, "Using future steppings\n");
+ return STEP_FUTURE;
+ }
+
+ return step;
+}
+
static void pvc_step_init(struct drm_i915_private *i915, int pci_revid);
void intel_step_init(struct drm_i915_private *i915)
@@ -144,6 +161,18 @@ void intel_step_init(struct drm_i915_private *i915)
int revid = INTEL_REVID(i915);
struct intel_step_info step = {};
+ if (HAS_GMD_ID(i915)) {
+ step.graphics_step = gmd_to_intel_step(i915,
+ &RUNTIME_INFO(i915)->graphics.ip);
+ step.media_step = gmd_to_intel_step(i915,
+ &RUNTIME_INFO(i915)->media.ip);
+ step.display_step = gmd_to_intel_step(i915,
+ &RUNTIME_INFO(i915)->display.ip);
+ RUNTIME_INFO(i915)->step = step;
+
+ return;
+ }
+
if (IS_PONTEVECCHIO(i915)) {
pvc_step_init(i915, revid);
return;
@@ -162,6 +191,9 @@ void intel_step_init(struct drm_i915_private *i915)
} else if (IS_ADLP_N(i915)) {
revids = adlp_n_revids;
size = ARRAY_SIZE(adlp_n_revids);
+ } else if (IS_ADLP_RPLP(i915)) {
+ revids = adlp_rplp_revids;
+ size = ARRAY_SIZE(adlp_rplp_revids);
} else if (IS_ALDERLAKE_P(i915)) {
revids = adlp_revids;
size = ARRAY_SIZE(adlp_revids);
diff --git a/drivers/gpu/drm/i915/intel_step.h b/drivers/gpu/drm/i915/intel_step.h
index a6b12bfa9744..96dfca4cba73 100644
--- a/drivers/gpu/drm/i915/intel_step.h
+++ b/drivers/gpu/drm/i915/intel_step.h
@@ -11,6 +11,10 @@
struct drm_i915_private;
struct intel_step_info {
+ /*
+ * It is expected to have 4 number steps per letter. Deviation from
+ * the expectation breaks gmd_to_intel_step().
+ */
u8 graphics_step; /* Represents the compute tile on Xe_HPC */
u8 display_step;
u8 media_step;
@@ -23,21 +27,43 @@ struct intel_step_info {
func(A0) \
func(A1) \
func(A2) \
+ func(A3) \
func(B0) \
func(B1) \
func(B2) \
func(B3) \
func(C0) \
func(C1) \
+ func(C2) \
+ func(C3) \
func(D0) \
func(D1) \
+ func(D2) \
+ func(D3) \
func(E0) \
+ func(E1) \
+ func(E2) \
+ func(E3) \
func(F0) \
+ func(F1) \
+ func(F2) \
+ func(F3) \
func(G0) \
+ func(G1) \
+ func(G2) \
+ func(G3) \
func(H0) \
+ func(H1) \
+ func(H2) \
+ func(H3) \
func(I0) \
func(I1) \
- func(J0)
+ func(I2) \
+ func(I3) \
+ func(J0) \
+ func(J1) \
+ func(J2) \
+ func(J3)
/*
* Symbolic steppings that do not match the hardware. These are valid both as gt
diff --git a/drivers/gpu/drm/i915/intel_uncore.c b/drivers/gpu/drm/i915/intel_uncore.c
index 5cd423c7b646..796ebfe6c550 100644
--- a/drivers/gpu/drm/i915/intel_uncore.c
+++ b/drivers/gpu/drm/i915/intel_uncore.c
@@ -29,9 +29,9 @@
#include "i915_drv.h"
#include "i915_iosf_mbi.h"
+#include "i915_reg.h"
#include "i915_trace.h"
#include "i915_vgpu.h"
-#include "intel_pm.h"
#define FORCEWAKE_ACK_TIMEOUT_MS 50
#define GT_FIFO_TIMEOUT_MS 10
@@ -104,6 +104,7 @@ static const char * const forcewake_domain_names[] = {
"vebox1",
"vebox2",
"vebox3",
+ "gsc",
};
const char *
@@ -176,11 +177,19 @@ wait_ack_set(const struct intel_uncore_forcewake_domain *d,
static inline void
fw_domain_wait_ack_clear(const struct intel_uncore_forcewake_domain *d)
{
- if (wait_ack_clear(d, FORCEWAKE_KERNEL)) {
- DRM_ERROR("%s: timed out waiting for forcewake ack to clear.\n",
- intel_uncore_forcewake_domain_to_str(d->id));
- add_taint_for_CI(d->uncore->i915, TAINT_WARN); /* CI now unreliable */
- }
+ if (!wait_ack_clear(d, FORCEWAKE_KERNEL))
+ return;
+
+ if (fw_ack(d) == ~0)
+ drm_err(&d->uncore->i915->drm,
+ "%s: MMIO unreliable (forcewake register returns 0xFFFFFFFF)!\n",
+ intel_uncore_forcewake_domain_to_str(d->id));
+ else
+ drm_err(&d->uncore->i915->drm,
+ "%s: timed out waiting for forcewake ack to clear.\n",
+ intel_uncore_forcewake_domain_to_str(d->id));
+
+ add_taint_for_CI(d->uncore->i915, TAINT_WARN); /* CI now unreliable */
}
enum ack_type {
@@ -225,11 +234,12 @@ fw_domain_wait_ack_with_fallback(const struct intel_uncore_forcewake_domain *d,
fw_clear(d, FORCEWAKE_KERNEL_FALLBACK);
} while (!ack_detected && pass++ < 10);
- DRM_DEBUG_DRIVER("%s had to use fallback to %s ack, 0x%x (passes %u)\n",
- intel_uncore_forcewake_domain_to_str(d->id),
- type == ACK_SET ? "set" : "clear",
- fw_ack(d),
- pass);
+ drm_dbg(&d->uncore->i915->drm,
+ "%s had to use fallback to %s ack, 0x%x (passes %u)\n",
+ intel_uncore_forcewake_domain_to_str(d->id),
+ type == ACK_SET ? "set" : "clear",
+ fw_ack(d),
+ pass);
return ack_detected ? 0 : -ETIMEDOUT;
}
@@ -254,8 +264,9 @@ static inline void
fw_domain_wait_ack_set(const struct intel_uncore_forcewake_domain *d)
{
if (wait_ack_set(d, FORCEWAKE_KERNEL)) {
- DRM_ERROR("%s: timed out waiting for forcewake ack request.\n",
- intel_uncore_forcewake_domain_to_str(d->id));
+ drm_err(&d->uncore->i915->drm,
+ "%s: timed out waiting for forcewake ack request.\n",
+ intel_uncore_forcewake_domain_to_str(d->id));
add_taint_for_CI(d->uncore->i915, TAINT_WARN); /* CI now unreliable */
}
}
@@ -819,9 +830,9 @@ void intel_uncore_forcewake_flush(struct intel_uncore *uncore,
}
/**
- * intel_uncore_forcewake_put__locked - grab forcewake domain references
+ * intel_uncore_forcewake_put__locked - release forcewake domain references
* @uncore: the intel_uncore structure
- * @fw_domains: forcewake domains to get reference on
+ * @fw_domains: forcewake domains to put references
*
* See intel_uncore_forcewake_put(). This variant places the onus
* on the caller to explicitly handle the dev_priv->uncore.lock spinlock.
@@ -888,10 +899,13 @@ void assert_forcewakes_active(struct intel_uncore *uncore,
spin_unlock_irq(&uncore->lock);
}
-/* We give fast paths for the really cool registers */
+/*
+ * We give fast paths for the really cool registers. The second range includes
+ * media domains (and the GSC starting from Xe_LPM+)
+ */
#define NEEDS_FORCE_WAKE(reg) ({ \
u32 __reg = (reg); \
- __reg < 0x40000 || __reg >= GEN11_BSD_RING_BASE; \
+ __reg < 0x40000 || __reg >= 0x116000; \
})
static int fw_range_cmp(u32 offset, const struct intel_forcewake_range *entry)
@@ -1131,6 +1145,45 @@ static const struct i915_range pvc_shadowed_regs[] = {
{ .start = 0x1F8510, .end = 0x1F8550 },
};
+static const struct i915_range mtl_shadowed_regs[] = {
+ { .start = 0x2030, .end = 0x2030 },
+ { .start = 0x2510, .end = 0x2550 },
+ { .start = 0xA008, .end = 0xA00C },
+ { .start = 0xA188, .end = 0xA188 },
+ { .start = 0xA278, .end = 0xA278 },
+ { .start = 0xA540, .end = 0xA56C },
+ { .start = 0xC050, .end = 0xC050 },
+ { .start = 0xC340, .end = 0xC340 },
+ { .start = 0xC4C8, .end = 0xC4C8 },
+ { .start = 0xC4E0, .end = 0xC4E0 },
+ { .start = 0xC600, .end = 0xC600 },
+ { .start = 0xC658, .end = 0xC658 },
+ { .start = 0xCFD4, .end = 0xCFDC },
+ { .start = 0x22030, .end = 0x22030 },
+ { .start = 0x22510, .end = 0x22550 },
+};
+
+static const struct i915_range xelpmp_shadowed_regs[] = {
+ { .start = 0x1C0030, .end = 0x1C0030 },
+ { .start = 0x1C0510, .end = 0x1C0550 },
+ { .start = 0x1C8030, .end = 0x1C8030 },
+ { .start = 0x1C8510, .end = 0x1C8550 },
+ { .start = 0x1D0030, .end = 0x1D0030 },
+ { .start = 0x1D0510, .end = 0x1D0550 },
+ { .start = 0x38A008, .end = 0x38A00C },
+ { .start = 0x38A188, .end = 0x38A188 },
+ { .start = 0x38A278, .end = 0x38A278 },
+ { .start = 0x38A540, .end = 0x38A56C },
+ { .start = 0x38A618, .end = 0x38A618 },
+ { .start = 0x38C050, .end = 0x38C050 },
+ { .start = 0x38C340, .end = 0x38C340 },
+ { .start = 0x38C4C8, .end = 0x38C4C8 },
+ { .start = 0x38C4E0, .end = 0x38C4E4 },
+ { .start = 0x38C600, .end = 0x38C600 },
+ { .start = 0x38C658, .end = 0x38C658 },
+ { .start = 0x38CFD4, .end = 0x38CFDC },
+};
+
static int mmio_range_cmp(u32 key, const struct i915_range *range)
{
if (key < range->start)
@@ -1639,25 +1692,27 @@ static const struct intel_forcewake_range __pvc_fw_ranges[] = {
GEN_FW_RANGE(0x12000, 0x12fff, 0), /*
0x12000 - 0x127ff: always on
0x12800 - 0x12fff: reserved */
- GEN_FW_RANGE(0x13000, 0x23fff, FORCEWAKE_GT), /*
+ GEN_FW_RANGE(0x13000, 0x19fff, FORCEWAKE_GT), /*
0x13000 - 0x135ff: gt
0x13600 - 0x147ff: reserved
0x14800 - 0x153ff: gt
- 0x15400 - 0x19fff: reserved
- 0x1a000 - 0x1ffff: gt
- 0x20000 - 0x21fff: reserved
- 0x22000 - 0x23fff: gt */
+ 0x15400 - 0x19fff: reserved */
+ GEN_FW_RANGE(0x1a000, 0x21fff, FORCEWAKE_RENDER), /*
+ 0x1a000 - 0x1ffff: render
+ 0x20000 - 0x21fff: reserved */
+ GEN_FW_RANGE(0x22000, 0x23fff, FORCEWAKE_GT),
GEN_FW_RANGE(0x24000, 0x2417f, 0), /*
24000 - 0x2407f: always on
24080 - 0x2417f: reserved */
- GEN_FW_RANGE(0x24180, 0x3ffff, FORCEWAKE_GT), /*
+ GEN_FW_RANGE(0x24180, 0x25fff, FORCEWAKE_GT), /*
0x24180 - 0x241ff: gt
0x24200 - 0x251ff: reserved
0x25200 - 0x252ff: gt
- 0x25300 - 0x25fff: reserved
- 0x26000 - 0x27fff: gt
- 0x28000 - 0x2ffff: reserved
- 0x30000 - 0x3ffff: gt */
+ 0x25300 - 0x25fff: reserved */
+ GEN_FW_RANGE(0x26000, 0x2ffff, FORCEWAKE_RENDER), /*
+ 0x26000 - 0x27fff: render
+ 0x28000 - 0x2ffff: reserved */
+ GEN_FW_RANGE(0x30000, 0x3ffff, FORCEWAKE_GT),
GEN_FW_RANGE(0x40000, 0x1bffff, 0),
GEN_FW_RANGE(0x1c0000, 0x1c3fff, FORCEWAKE_MEDIA_VDBOX0), /*
0x1c0000 - 0x1c2bff: VD0
@@ -1679,6 +1734,162 @@ static const struct intel_forcewake_range __pvc_fw_ranges[] = {
GEN_FW_RANGE(0x3e0000, 0x3effff, FORCEWAKE_GT),
};
+static const struct intel_forcewake_range __mtl_fw_ranges[] = {
+ GEN_FW_RANGE(0x0, 0xaff, 0),
+ GEN_FW_RANGE(0xb00, 0xbff, FORCEWAKE_GT),
+ GEN_FW_RANGE(0xc00, 0xfff, 0),
+ GEN_FW_RANGE(0x1000, 0x1fff, FORCEWAKE_GT),
+ GEN_FW_RANGE(0x2000, 0x26ff, FORCEWAKE_RENDER),
+ GEN_FW_RANGE(0x2700, 0x2fff, FORCEWAKE_GT),
+ GEN_FW_RANGE(0x3000, 0x3fff, FORCEWAKE_RENDER),
+ GEN_FW_RANGE(0x4000, 0x51ff, FORCEWAKE_GT), /*
+ 0x4000 - 0x48ff: render
+ 0x4900 - 0x51ff: reserved */
+ GEN_FW_RANGE(0x5200, 0x7fff, FORCEWAKE_RENDER), /*
+ 0x5200 - 0x53ff: render
+ 0x5400 - 0x54ff: reserved
+ 0x5500 - 0x7fff: render */
+ GEN_FW_RANGE(0x8000, 0x813f, FORCEWAKE_GT),
+ GEN_FW_RANGE(0x8140, 0x817f, FORCEWAKE_RENDER), /*
+ 0x8140 - 0x815f: render
+ 0x8160 - 0x817f: reserved */
+ GEN_FW_RANGE(0x8180, 0x81ff, 0),
+ GEN_FW_RANGE(0x8200, 0x94cf, FORCEWAKE_GT), /*
+ 0x8200 - 0x87ff: gt
+ 0x8800 - 0x8dff: reserved
+ 0x8e00 - 0x8f7f: gt
+ 0x8f80 - 0x8fff: reserved
+ 0x9000 - 0x947f: gt
+ 0x9480 - 0x94cf: reserved */
+ GEN_FW_RANGE(0x94d0, 0x955f, FORCEWAKE_RENDER),
+ GEN_FW_RANGE(0x9560, 0x967f, 0), /*
+ 0x9560 - 0x95ff: always on
+ 0x9600 - 0x967f: reserved */
+ GEN_FW_RANGE(0x9680, 0x97ff, FORCEWAKE_RENDER), /*
+ 0x9680 - 0x96ff: render
+ 0x9700 - 0x97ff: reserved */
+ GEN_FW_RANGE(0x9800, 0xcfff, FORCEWAKE_GT), /*
+ 0x9800 - 0xb4ff: gt
+ 0xb500 - 0xbfff: reserved
+ 0xc000 - 0xcfff: gt */
+ GEN_FW_RANGE(0xd000, 0xd7ff, 0), /*
+ 0xd000 - 0xd3ff: always on
+ 0xd400 - 0xd7ff: reserved */
+ GEN_FW_RANGE(0xd800, 0xd87f, FORCEWAKE_RENDER),
+ GEN_FW_RANGE(0xd880, 0xdbff, FORCEWAKE_GT),
+ GEN_FW_RANGE(0xdc00, 0xdcff, FORCEWAKE_RENDER),
+ GEN_FW_RANGE(0xdd00, 0xde7f, FORCEWAKE_GT), /*
+ 0xdd00 - 0xddff: gt
+ 0xde00 - 0xde7f: reserved */
+ GEN_FW_RANGE(0xde80, 0xe8ff, FORCEWAKE_RENDER), /*
+ 0xde80 - 0xdfff: render
+ 0xe000 - 0xe0ff: reserved
+ 0xe100 - 0xe8ff: render */
+ GEN_FW_RANGE(0xe900, 0xe9ff, FORCEWAKE_GT),
+ GEN_FW_RANGE(0xea00, 0x147ff, 0), /*
+ 0xea00 - 0x11fff: reserved
+ 0x12000 - 0x127ff: always on
+ 0x12800 - 0x147ff: reserved */
+ GEN_FW_RANGE(0x14800, 0x19fff, FORCEWAKE_GT), /*
+ 0x14800 - 0x153ff: gt
+ 0x15400 - 0x19fff: reserved */
+ GEN_FW_RANGE(0x1a000, 0x21fff, FORCEWAKE_RENDER), /*
+ 0x1a000 - 0x1bfff: render
+ 0x1c000 - 0x21fff: reserved */
+ GEN_FW_RANGE(0x22000, 0x23fff, FORCEWAKE_GT),
+ GEN_FW_RANGE(0x24000, 0x2ffff, 0), /*
+ 0x24000 - 0x2407f: always on
+ 0x24080 - 0x2ffff: reserved */
+ GEN_FW_RANGE(0x30000, 0x3ffff, FORCEWAKE_GT)
+};
+
+/*
+ * Note that the register ranges here are the final offsets after
+ * translation of the GSI block to the 0x380000 offset.
+ *
+ * NOTE: There are a couple MCR ranges near the bottom of this table
+ * that need to power up either VD0 or VD2 depending on which replicated
+ * instance of the register we're trying to access. Our forcewake logic
+ * at the moment doesn't have a good way to take steering into consideration,
+ * and the driver doesn't even access any registers in those ranges today,
+ * so for now we just mark those ranges as FORCEWAKE_ALL. That will ensure
+ * proper operation if we do start using the ranges in the future, and we
+ * can determine at that time whether it's worth adding extra complexity to
+ * the forcewake handling to take steering into consideration.
+ */
+static const struct intel_forcewake_range __xelpmp_fw_ranges[] = {
+ GEN_FW_RANGE(0x0, 0x115fff, 0), /* render GT range */
+ GEN_FW_RANGE(0x116000, 0x11ffff, FORCEWAKE_GSC), /*
+ 0x116000 - 0x117fff: gsc
+ 0x118000 - 0x119fff: reserved
+ 0x11a000 - 0x11efff: gsc
+ 0x11f000 - 0x11ffff: reserved */
+ GEN_FW_RANGE(0x120000, 0x1bffff, 0), /* non-GT range */
+ GEN_FW_RANGE(0x1c0000, 0x1c7fff, FORCEWAKE_MEDIA_VDBOX0), /*
+ 0x1c0000 - 0x1c3dff: VD0
+ 0x1c3e00 - 0x1c3eff: reserved
+ 0x1c3f00 - 0x1c3fff: VD0
+ 0x1c4000 - 0x1c7fff: reserved */
+ GEN_FW_RANGE(0x1c8000, 0x1cbfff, FORCEWAKE_MEDIA_VEBOX0), /*
+ 0x1c8000 - 0x1ca0ff: VE0
+ 0x1ca100 - 0x1cbfff: reserved */
+ GEN_FW_RANGE(0x1cc000, 0x1cffff, FORCEWAKE_MEDIA_VDBOX0), /*
+ 0x1cc000 - 0x1cdfff: VD0
+ 0x1ce000 - 0x1cffff: reserved */
+ GEN_FW_RANGE(0x1d0000, 0x1d7fff, FORCEWAKE_MEDIA_VDBOX2), /*
+ 0x1d0000 - 0x1d3dff: VD2
+ 0x1d3e00 - 0x1d3eff: reserved
+ 0x1d4000 - 0x1d7fff: VD2 */
+ GEN_FW_RANGE(0x1d8000, 0x1da0ff, FORCEWAKE_MEDIA_VEBOX1),
+ GEN_FW_RANGE(0x1da100, 0x380aff, 0), /*
+ 0x1da100 - 0x23ffff: reserved
+ 0x240000 - 0x37ffff: non-GT range
+ 0x380000 - 0x380aff: reserved */
+ GEN_FW_RANGE(0x380b00, 0x380bff, FORCEWAKE_GT),
+ GEN_FW_RANGE(0x380c00, 0x380fff, 0),
+ GEN_FW_RANGE(0x381000, 0x38817f, FORCEWAKE_GT), /*
+ 0x381000 - 0x381fff: gt
+ 0x382000 - 0x383fff: reserved
+ 0x384000 - 0x384aff: gt
+ 0x384b00 - 0x3851ff: reserved
+ 0x385200 - 0x3871ff: gt
+ 0x387200 - 0x387fff: reserved
+ 0x388000 - 0x38813f: gt
+ 0x388140 - 0x38817f: reserved */
+ GEN_FW_RANGE(0x388180, 0x3882ff, 0), /*
+ 0x388180 - 0x3881ff: always on
+ 0x388200 - 0x3882ff: reserved */
+ GEN_FW_RANGE(0x388300, 0x38955f, FORCEWAKE_GT), /*
+ 0x388300 - 0x38887f: gt
+ 0x388880 - 0x388fff: reserved
+ 0x389000 - 0x38947f: gt
+ 0x389480 - 0x38955f: reserved */
+ GEN_FW_RANGE(0x389560, 0x389fff, 0), /*
+ 0x389560 - 0x3895ff: always on
+ 0x389600 - 0x389fff: reserved */
+ GEN_FW_RANGE(0x38a000, 0x38cfff, FORCEWAKE_GT), /*
+ 0x38a000 - 0x38afff: gt
+ 0x38b000 - 0x38bfff: reserved
+ 0x38c000 - 0x38cfff: gt */
+ GEN_FW_RANGE(0x38d000, 0x38d11f, 0),
+ GEN_FW_RANGE(0x38d120, 0x391fff, FORCEWAKE_GT), /*
+ 0x38d120 - 0x38dfff: gt
+ 0x38e000 - 0x38efff: reserved
+ 0x38f000 - 0x38ffff: gt
+ 0x389000 - 0x391fff: reserved */
+ GEN_FW_RANGE(0x392000, 0x392fff, 0), /*
+ 0x392000 - 0x3927ff: always on
+ 0x392800 - 0x292fff: reserved */
+ GEN_FW_RANGE(0x393000, 0x3931ff, FORCEWAKE_GT),
+ GEN_FW_RANGE(0x393200, 0x39323f, FORCEWAKE_ALL), /* instance-based, see note above */
+ GEN_FW_RANGE(0x393240, 0x3933ff, FORCEWAKE_GT),
+ GEN_FW_RANGE(0x393400, 0x3934ff, FORCEWAKE_ALL), /* instance-based, see note above */
+ GEN_FW_RANGE(0x393500, 0x393c7f, 0), /*
+ 0x393500 - 0x393bff: reserved
+ 0x393c00 - 0x393c7f: always on */
+ GEN_FW_RANGE(0x393c80, 0x393dff, FORCEWAKE_GT),
+};
+
static void
ilk_dummy_write(struct intel_uncore *uncore)
{
@@ -2021,6 +2232,7 @@ static int __fw_domain_init(struct intel_uncore *uncore,
BUILD_BUG_ON(FORCEWAKE_MEDIA_VEBOX1 != (1 << FW_DOMAIN_ID_MEDIA_VEBOX1));
BUILD_BUG_ON(FORCEWAKE_MEDIA_VEBOX2 != (1 << FW_DOMAIN_ID_MEDIA_VEBOX2));
BUILD_BUG_ON(FORCEWAKE_MEDIA_VEBOX3 != (1 << FW_DOMAIN_ID_MEDIA_VEBOX3));
+ BUILD_BUG_ON(FORCEWAKE_GSC != (1 << FW_DOMAIN_ID_GSC));
d->mask = BIT(domain_id);
@@ -2085,17 +2297,26 @@ static int intel_uncore_fw_domains_init(struct intel_uncore *uncore)
(ret ?: (ret = __fw_domain_init((uncore__), (id__), (set__), (ack__))))
if (GRAPHICS_VER(i915) >= 11) {
- /* we'll prune the domains of missing engines later */
- intel_engine_mask_t emask = RUNTIME_INFO(i915)->platform_engine_mask;
+ intel_engine_mask_t emask;
int i;
+ /* we'll prune the domains of missing engines later */
+ emask = uncore->gt->info.engine_mask;
+
uncore->fw_get_funcs = &uncore_get_fallback;
- fw_domain_init(uncore, FW_DOMAIN_ID_RENDER,
- FORCEWAKE_RENDER_GEN9,
- FORCEWAKE_ACK_RENDER_GEN9);
- fw_domain_init(uncore, FW_DOMAIN_ID_GT,
- FORCEWAKE_GT_GEN9,
- FORCEWAKE_ACK_GT_GEN9);
+ if (GRAPHICS_VER_FULL(i915) >= IP_VER(12, 70))
+ fw_domain_init(uncore, FW_DOMAIN_ID_GT,
+ FORCEWAKE_GT_GEN9,
+ FORCEWAKE_ACK_GT_MTL);
+ else
+ fw_domain_init(uncore, FW_DOMAIN_ID_GT,
+ FORCEWAKE_GT_GEN9,
+ FORCEWAKE_ACK_GT_GEN9);
+
+ if (RCS_MASK(uncore->gt) || CCS_MASK(uncore->gt))
+ fw_domain_init(uncore, FW_DOMAIN_ID_RENDER,
+ FORCEWAKE_RENDER_GEN9,
+ FORCEWAKE_ACK_RENDER_GEN9);
for (i = 0; i < I915_MAX_VCS; i++) {
if (!__HAS_ENGINE(emask, _VCS(i)))
@@ -2113,6 +2334,10 @@ static int intel_uncore_fw_domains_init(struct intel_uncore *uncore)
FORCEWAKE_MEDIA_VEBOX_GEN11(i),
FORCEWAKE_ACK_MEDIA_VEBOX_GEN11(i));
}
+
+ if (uncore->gt->type == GT_MEDIA)
+ fw_domain_init(uncore, FW_DOMAIN_ID_GSC,
+ FORCEWAKE_REQ_GSC, FORCEWAKE_ACK_GSC);
} else if (IS_GRAPHICS_VER(i915, 9, 10)) {
uncore->fw_get_funcs = &uncore_get_fallback;
fw_domain_init(uncore, FW_DOMAIN_ID_RENDER,
@@ -2241,7 +2466,7 @@ static int i915_pmic_bus_access_notifier(struct notifier_block *nb,
static void uncore_unmap_mmio(struct drm_device *drm, void *regs)
{
- iounmap(regs);
+ iounmap((void __iomem *)regs);
}
int intel_uncore_setup_mmio(struct intel_uncore *uncore, phys_addr_t phys_addr)
@@ -2272,7 +2497,8 @@ int intel_uncore_setup_mmio(struct intel_uncore *uncore, phys_addr_t phys_addr)
return -EIO;
}
- return drmm_add_action_or_reset(&i915->drm, uncore_unmap_mmio, uncore->regs);
+ return drmm_add_action_or_reset(&i915->drm, uncore_unmap_mmio,
+ (void __force *)uncore->regs);
}
void intel_uncore_init_early(struct intel_uncore *uncore,
@@ -2300,6 +2526,22 @@ static void uncore_raw_init(struct intel_uncore *uncore)
}
}
+static int uncore_media_forcewake_init(struct intel_uncore *uncore)
+{
+ struct drm_i915_private *i915 = uncore->i915;
+
+ if (MEDIA_VER(i915) >= 13) {
+ ASSIGN_FW_DOMAINS_TABLE(uncore, __xelpmp_fw_ranges);
+ ASSIGN_SHADOW_TABLE(uncore, xelpmp_shadowed_regs);
+ ASSIGN_WRITE_MMIO_VFUNCS(uncore, fwtable);
+ } else {
+ MISSING_CASE(MEDIA_VER(i915));
+ return -ENODEV;
+ }
+
+ return 0;
+}
+
static int uncore_forcewake_init(struct intel_uncore *uncore)
{
struct drm_i915_private *i915 = uncore->i915;
@@ -2314,7 +2556,14 @@ static int uncore_forcewake_init(struct intel_uncore *uncore)
ASSIGN_READ_MMIO_VFUNCS(uncore, fwtable);
- if (GRAPHICS_VER_FULL(i915) >= IP_VER(12, 60)) {
+ if (uncore->gt->type == GT_MEDIA)
+ return uncore_media_forcewake_init(uncore);
+
+ if (GRAPHICS_VER_FULL(i915) >= IP_VER(12, 70)) {
+ ASSIGN_FW_DOMAINS_TABLE(uncore, __mtl_fw_ranges);
+ ASSIGN_SHADOW_TABLE(uncore, mtl_shadowed_regs);
+ ASSIGN_WRITE_MMIO_VFUNCS(uncore, fwtable);
+ } else if (GRAPHICS_VER_FULL(i915) >= IP_VER(12, 60)) {
ASSIGN_FW_DOMAINS_TABLE(uncore, __pvc_fw_ranges);
ASSIGN_SHADOW_TABLE(uncore, pvc_shadowed_regs);
ASSIGN_WRITE_MMIO_VFUNCS(uncore, fwtable);
@@ -2360,11 +2609,45 @@ static int uncore_forcewake_init(struct intel_uncore *uncore)
return 0;
}
+static int sanity_check_mmio_access(struct intel_uncore *uncore)
+{
+ struct drm_i915_private *i915 = uncore->i915;
+
+ if (GRAPHICS_VER(i915) < 8)
+ return 0;
+
+ /*
+ * Sanitycheck that MMIO access to the device is working properly. If
+ * the CPU is unable to communcate with a PCI device, BAR reads will
+ * return 0xFFFFFFFF. Let's make sure the device isn't in this state
+ * before we start trying to access registers.
+ *
+ * We use the primary GT's forcewake register as our guinea pig since
+ * it's been around since HSW and it's a masked register so the upper
+ * 16 bits can never read back as 1's if device access is operating
+ * properly.
+ *
+ * If MMIO isn't working, we'll wait up to 2 seconds to see if it
+ * recovers, then give up.
+ */
+#define COND (__raw_uncore_read32(uncore, FORCEWAKE_MT) != ~0)
+ if (wait_for(COND, 2000) == -ETIMEDOUT) {
+ drm_err(&i915->drm, "Device is non-operational; MMIO access returns 0xFFFFFFFF!\n");
+ return -EIO;
+ }
+
+ return 0;
+}
+
int intel_uncore_init_mmio(struct intel_uncore *uncore)
{
struct drm_i915_private *i915 = uncore->i915;
int ret;
+ ret = sanity_check_mmio_access(uncore);
+ if (ret)
+ return ret;
+
/*
* The boot firmware initializes local memory and assesses its health.
* If memory training fails, the punit will have been instructed to
@@ -2459,6 +2742,73 @@ void intel_uncore_prune_engine_fw_domains(struct intel_uncore *uncore,
if (fw_domains & BIT(domain_id))
fw_domain_fini(uncore, domain_id);
}
+
+ if ((fw_domains & BIT(FW_DOMAIN_ID_GSC)) && !HAS_ENGINE(gt, GSC0))
+ fw_domain_fini(uncore, FW_DOMAIN_ID_GSC);
+}
+
+/*
+ * The driver-initiated FLR is the highest level of reset that we can trigger
+ * from within the driver. It is different from the PCI FLR in that it doesn't
+ * fully reset the SGUnit and doesn't modify the PCI config space and therefore
+ * it doesn't require a re-enumeration of the PCI BARs. However, the
+ * driver-initiated FLR does still cause a reset of both GT and display and a
+ * memory wipe of local and stolen memory, so recovery would require a full HW
+ * re-init and saving/restoring (or re-populating) the wiped memory. Since we
+ * perform the FLR as the very last action before releasing access to the HW
+ * during the driver release flow, we don't attempt recovery at all, because
+ * if/when a new instance of i915 is bound to the device it will do a full
+ * re-init anyway.
+ */
+static void driver_initiated_flr(struct intel_uncore *uncore)
+{
+ struct drm_i915_private *i915 = uncore->i915;
+ const unsigned int flr_timeout_ms = 3000; /* specs recommend a 3s wait */
+ int ret;
+
+ drm_dbg(&i915->drm, "Triggering Driver-FLR\n");
+
+ /*
+ * Make sure any pending FLR requests have cleared by waiting for the
+ * FLR trigger bit to go to zero. Also clear GU_DEBUG's DRIVERFLR_STATUS
+ * to make sure it's not still set from a prior attempt (it's a write to
+ * clear bit).
+ * Note that we should never be in a situation where a previous attempt
+ * is still pending (unless the HW is totally dead), but better to be
+ * safe in case something unexpected happens
+ */
+ ret = intel_wait_for_register_fw(uncore, GU_CNTL, DRIVERFLR, 0, flr_timeout_ms);
+ if (ret) {
+ drm_err(&i915->drm,
+ "Failed to wait for Driver-FLR bit to clear! %d\n",
+ ret);
+ return;
+ }
+ intel_uncore_write_fw(uncore, GU_DEBUG, DRIVERFLR_STATUS);
+
+ /* Trigger the actual Driver-FLR */
+ intel_uncore_rmw_fw(uncore, GU_CNTL, 0, DRIVERFLR);
+
+ /* Wait for hardware teardown to complete */
+ ret = intel_wait_for_register_fw(uncore, GU_CNTL,
+ DRIVERFLR, 0,
+ flr_timeout_ms);
+ if (ret) {
+ drm_err(&i915->drm, "Driver-FLR-teardown wait completion failed! %d\n", ret);
+ return;
+ }
+
+ /* Wait for hardware/firmware re-init to complete */
+ ret = intel_wait_for_register_fw(uncore, GU_DEBUG,
+ DRIVERFLR_STATUS, DRIVERFLR_STATUS,
+ flr_timeout_ms);
+ if (ret) {
+ drm_err(&i915->drm, "Driver-FLR-reinit wait completion failed! %d\n", ret);
+ return;
+ }
+
+ /* Clear sticky completion status */
+ intel_uncore_write_fw(uncore, GU_DEBUG, DRIVERFLR_STATUS);
}
/* Called via drm-managed action */
@@ -2474,6 +2824,9 @@ void intel_uncore_fini_mmio(struct drm_device *dev, void *data)
intel_uncore_fw_domains_fini(uncore);
iosf_mbi_punit_release();
}
+
+ if (intel_uncore_needs_flr_on_fini(uncore))
+ driver_initiated_flr(uncore);
}
/**
diff --git a/drivers/gpu/drm/i915/intel_uncore.h b/drivers/gpu/drm/i915/intel_uncore.h
index 5022bac80b67..9ea1f4864a3a 100644
--- a/drivers/gpu/drm/i915/intel_uncore.h
+++ b/drivers/gpu/drm/i915/intel_uncore.h
@@ -62,6 +62,7 @@ enum forcewake_domain_id {
FW_DOMAIN_ID_MEDIA_VEBOX1,
FW_DOMAIN_ID_MEDIA_VEBOX2,
FW_DOMAIN_ID_MEDIA_VEBOX3,
+ FW_DOMAIN_ID_GSC,
FW_DOMAIN_ID_COUNT
};
@@ -82,6 +83,7 @@ enum forcewake_domains {
FORCEWAKE_MEDIA_VEBOX1 = BIT(FW_DOMAIN_ID_MEDIA_VEBOX1),
FORCEWAKE_MEDIA_VEBOX2 = BIT(FW_DOMAIN_ID_MEDIA_VEBOX2),
FORCEWAKE_MEDIA_VEBOX3 = BIT(FW_DOMAIN_ID_MEDIA_VEBOX3),
+ FORCEWAKE_GSC = BIT(FW_DOMAIN_ID_GSC),
FORCEWAKE_ALL = BIT(FW_DOMAIN_ID_COUNT) - 1,
};
@@ -151,6 +153,7 @@ struct intel_uncore {
#define UNCORE_HAS_FPGA_DBG_UNCLAIMED BIT(1)
#define UNCORE_HAS_DBG_UNCLAIMED BIT(2)
#define UNCORE_HAS_FIFO BIT(3)
+#define UNCORE_NEEDS_FLR_ON_FINI BIT(4)
const struct intel_forcewake_range *fw_domains_table;
unsigned int fw_domains_table_entries;
@@ -221,6 +224,18 @@ intel_uncore_has_fifo(const struct intel_uncore *uncore)
return uncore->flags & UNCORE_HAS_FIFO;
}
+static inline bool
+intel_uncore_needs_flr_on_fini(const struct intel_uncore *uncore)
+{
+ return uncore->flags & UNCORE_NEEDS_FLR_ON_FINI;
+}
+
+static inline bool
+intel_uncore_set_flr_on_fini(struct intel_uncore *uncore)
+{
+ return uncore->flags |= UNCORE_NEEDS_FLR_ON_FINI;
+}
+
void intel_uncore_mmio_debug_init_early(struct drm_i915_private *i915);
void intel_uncore_init_early(struct intel_uncore *uncore,
struct intel_gt *gt);
@@ -380,20 +395,6 @@ __uncore_write(write_notrace, 32, l, false)
*/
__uncore_read(read64, 64, q, true)
-static inline u64
-intel_uncore_read64_2x32(struct intel_uncore *uncore,
- i915_reg_t lower_reg, i915_reg_t upper_reg)
-{
- u32 upper, lower, old_upper, loop = 0;
- upper = intel_uncore_read(uncore, upper_reg);
- do {
- old_upper = upper;
- lower = intel_uncore_read(uncore, lower_reg);
- upper = intel_uncore_read(uncore, upper_reg);
- } while (upper != old_upper && loop++ < 2);
- return (u64)upper << 32 | lower;
-}
-
#define intel_uncore_posting_read(...) ((void)intel_uncore_read_notrace(__VA_ARGS__))
#define intel_uncore_posting_read16(...) ((void)intel_uncore_read16_notrace(__VA_ARGS__))
@@ -431,15 +432,15 @@ intel_uncore_read64_2x32(struct intel_uncore *uncore,
#define intel_uncore_write64_fw(...) __raw_uncore_write64(__VA_ARGS__)
#define intel_uncore_posting_read_fw(...) ((void)intel_uncore_read_fw(__VA_ARGS__))
-static inline void intel_uncore_rmw(struct intel_uncore *uncore,
- i915_reg_t reg, u32 clear, u32 set)
+static inline u32 intel_uncore_rmw(struct intel_uncore *uncore,
+ i915_reg_t reg, u32 clear, u32 set)
{
u32 old, val;
old = intel_uncore_read(uncore, reg);
val = (old & ~clear) | set;
- if (val != old)
- intel_uncore_write(uncore, reg, val);
+ intel_uncore_write(uncore, reg, val);
+ return old;
}
static inline void intel_uncore_rmw_fw(struct intel_uncore *uncore,
@@ -453,6 +454,36 @@ static inline void intel_uncore_rmw_fw(struct intel_uncore *uncore,
intel_uncore_write_fw(uncore, reg, val);
}
+static inline u64
+intel_uncore_read64_2x32(struct intel_uncore *uncore,
+ i915_reg_t lower_reg, i915_reg_t upper_reg)
+{
+ u32 upper, lower, old_upper, loop = 0;
+ enum forcewake_domains fw_domains;
+ unsigned long flags;
+
+ fw_domains = intel_uncore_forcewake_for_reg(uncore, lower_reg,
+ FW_REG_READ);
+
+ fw_domains |= intel_uncore_forcewake_for_reg(uncore, upper_reg,
+ FW_REG_READ);
+
+ spin_lock_irqsave(&uncore->lock, flags);
+ intel_uncore_forcewake_get__locked(uncore, fw_domains);
+
+ upper = intel_uncore_read_fw(uncore, upper_reg);
+ do {
+ old_upper = upper;
+ lower = intel_uncore_read_fw(uncore, lower_reg);
+ upper = intel_uncore_read_fw(uncore, upper_reg);
+ } while (upper != old_upper && loop++ < 2);
+
+ intel_uncore_forcewake_put__locked(uncore, fw_domains);
+ spin_unlock_irqrestore(&uncore->lock, flags);
+
+ return (u64)upper << 32 | lower;
+}
+
static inline int intel_uncore_write_and_verify(struct intel_uncore *uncore,
i915_reg_t reg, u32 val,
u32 mask, u32 expected_val)
diff --git a/drivers/gpu/drm/i915/intel_wakeref.h b/drivers/gpu/drm/i915/intel_wakeref.h
index 4f4c2e15e736..0b6b4852ab23 100644
--- a/drivers/gpu/drm/i915/intel_wakeref.h
+++ b/drivers/gpu/drm/i915/intel_wakeref.h
@@ -68,11 +68,12 @@ void __intel_wakeref_put_last(struct intel_wakeref *wf, unsigned long flags);
* @wf: the wakeref
*
* Acquire a hold on the wakeref. The first user to do so, will acquire
- * the runtime pm wakeref and then call the @fn underneath the wakeref
- * mutex.
+ * the runtime pm wakeref and then call the intel_wakeref_ops->get()
+ * underneath the wakeref mutex.
*
- * Note that @fn is allowed to fail, in which case the runtime-pm wakeref
- * will be released and the acquisition unwound, and an error reported.
+ * Note that intel_wakeref_ops->get() is allowed to fail, in which case
+ * the runtime-pm wakeref will be released and the acquisition unwound,
+ * and an error reported.
*
* Returns: 0 if the wakeref was acquired successfully, or a negative error
* code otherwise.
@@ -104,7 +105,7 @@ __intel_wakeref_get(struct intel_wakeref *wf)
}
/**
- * intel_wakeref_get_if_in_use: Acquire the wakeref
+ * intel_wakeref_get_if_active: Acquire the wakeref
* @wf: the wakeref
*
* Acquire a hold on the wakeref, but only if the wakeref is already
@@ -130,19 +131,17 @@ intel_wakeref_might_get(struct intel_wakeref *wf)
}
/**
- * intel_wakeref_put_flags: Release the wakeref
+ * __intel_wakeref_put: Release the wakeref
* @wf: the wakeref
* @flags: control flags
*
* Release our hold on the wakeref. When there are no more users,
- * the runtime pm wakeref will be released after the @fn callback is called
- * underneath the wakeref mutex.
+ * the runtime pm wakeref will be released after the intel_wakeref_ops->put()
+ * callback is called underneath the wakeref mutex.
*
- * Note that @fn is allowed to fail, in which case the runtime-pm wakeref
- * is retained and an error reported.
+ * Note that intel_wakeref_ops->put() is allowed to fail, in which case the
+ * runtime-pm wakeref is retained.
*
- * Returns: 0 if the wakeref was released successfully, or a negative error
- * code otherwise.
*/
static inline void
__intel_wakeref_put(struct intel_wakeref *wf, unsigned long flags)
diff --git a/drivers/gpu/drm/i915/pxp/intel_pxp.c b/drivers/gpu/drm/i915/pxp/intel_pxp.c
index 69cdaaddc4a9..9d4c7724e98e 100644
--- a/drivers/gpu/drm/i915/pxp/intel_pxp.c
+++ b/drivers/gpu/drm/i915/pxp/intel_pxp.c
@@ -3,13 +3,19 @@
* Copyright(c) 2020 Intel Corporation.
*/
#include <linux/workqueue.h>
+
+#include "gem/i915_gem_context.h"
+
+#include "gt/intel_context.h"
+#include "gt/intel_gt.h"
+
+#include "i915_drv.h"
+
#include "intel_pxp.h"
#include "intel_pxp_irq.h"
#include "intel_pxp_session.h"
#include "intel_pxp_tee.h"
-#include "gem/i915_gem_context.h"
-#include "gt/intel_context.h"
-#include "i915_drv.h"
+#include "intel_pxp_types.h"
/**
* DOC: PXP
@@ -39,19 +45,19 @@
* performed via the mei_pxp component module.
*/
-struct intel_gt *pxp_to_gt(const struct intel_pxp *pxp)
+bool intel_pxp_is_supported(const struct intel_pxp *pxp)
{
- return container_of(pxp, struct intel_gt, pxp);
+ return IS_ENABLED(CONFIG_DRM_I915_PXP) && pxp;
}
bool intel_pxp_is_enabled(const struct intel_pxp *pxp)
{
- return pxp->ce;
+ return IS_ENABLED(CONFIG_DRM_I915_PXP) && pxp && pxp->ce;
}
bool intel_pxp_is_active(const struct intel_pxp *pxp)
{
- return pxp->arb_is_valid;
+ return IS_ENABLED(CONFIG_DRM_I915_PXP) && pxp && pxp->arb_is_valid;
}
/* KCR register definitions */
@@ -74,7 +80,7 @@ static void kcr_pxp_disable(struct intel_gt *gt)
static int create_vcs_context(struct intel_pxp *pxp)
{
static struct lock_class_key pxp_lock;
- struct intel_gt *gt = pxp_to_gt(pxp);
+ struct intel_gt *gt = pxp->ctrl_gt;
struct intel_engine_cs *engine;
struct intel_context *ce;
int i;
@@ -103,19 +109,15 @@ static int create_vcs_context(struct intel_pxp *pxp)
static void destroy_vcs_context(struct intel_pxp *pxp)
{
- intel_engine_destroy_pinned_context(fetch_and_zero(&pxp->ce));
+ if (pxp->ce)
+ intel_engine_destroy_pinned_context(fetch_and_zero(&pxp->ce));
}
-void intel_pxp_init(struct intel_pxp *pxp)
+static void pxp_init_full(struct intel_pxp *pxp)
{
- struct intel_gt *gt = pxp_to_gt(pxp);
+ struct intel_gt *gt = pxp->ctrl_gt;
int ret;
- if (!HAS_PXP(gt->i915))
- return;
-
- mutex_init(&pxp->tee_mutex);
-
/*
* we'll use the completion to check if there is a termination pending,
* so we start it as completed and we reinit it when a termination
@@ -124,8 +126,7 @@ void intel_pxp_init(struct intel_pxp *pxp)
init_completion(&pxp->termination);
complete_all(&pxp->termination);
- mutex_init(&pxp->arb_mutex);
- INIT_WORK(&pxp->session_work, intel_pxp_session_work);
+ intel_pxp_session_management_init(pxp);
ret = create_vcs_context(pxp);
if (ret)
@@ -143,16 +144,97 @@ out_context:
destroy_vcs_context(pxp);
}
-void intel_pxp_fini(struct intel_pxp *pxp)
+static struct intel_gt *find_gt_for_required_teelink(struct drm_i915_private *i915)
{
- if (!intel_pxp_is_enabled(pxp))
+ /*
+ * NOTE: Only certain platforms require PXP-tee-backend dependencies
+ * for HuC authentication. For now, its limited to DG2.
+ */
+ if (IS_ENABLED(CONFIG_INTEL_MEI_PXP) && IS_ENABLED(CONFIG_INTEL_MEI_GSC) &&
+ intel_huc_is_loaded_by_gsc(&i915->gt0.uc.huc) && intel_uc_uses_huc(&i915->gt0.uc))
+ return &i915->gt0;
+
+ return NULL;
+}
+
+static struct intel_gt *find_gt_for_required_protected_content(struct drm_i915_private *i915)
+{
+ if (!IS_ENABLED(CONFIG_DRM_I915_PXP) || !INTEL_INFO(i915)->has_pxp)
+ return NULL;
+
+ /*
+ * For MTL onwards, PXP-controller-GT needs to have a valid GSC engine
+ * on the media GT. NOTE: if we have a media-tile with a GSC-engine,
+ * the VDBOX is already present so skip that check
+ */
+ if (i915->media_gt && HAS_ENGINE(i915->media_gt, GSC0))
+ return i915->media_gt;
+
+ /*
+ * Else we rely on mei-pxp module but only on legacy platforms
+ * prior to having separate media GTs and has a valid VDBOX.
+ */
+ if (IS_ENABLED(CONFIG_INTEL_MEI_PXP) && !i915->media_gt && VDBOX_MASK(&i915->gt0))
+ return &i915->gt0;
+
+ return NULL;
+}
+
+int intel_pxp_init(struct drm_i915_private *i915)
+{
+ struct intel_gt *gt;
+ bool is_full_feature = false;
+
+ /*
+ * NOTE: Get the ctrl_gt before checking intel_pxp_is_supported since
+ * we still need it if PXP's backend tee transport is needed.
+ */
+ gt = find_gt_for_required_protected_content(i915);
+ if (gt)
+ is_full_feature = true;
+ else
+ gt = find_gt_for_required_teelink(i915);
+
+ if (!gt)
+ return -ENODEV;
+
+ /*
+ * At this point, we will either enable full featured PXP capabilities
+ * including session and object management, or we will init the backend tee
+ * channel for internal users such as HuC loading by GSC
+ */
+ i915->pxp = kzalloc(sizeof(*i915->pxp), GFP_KERNEL);
+ if (!i915->pxp)
+ return -ENOMEM;
+
+ i915->pxp->ctrl_gt = gt;
+
+ /*
+ * If full PXP feature is not available but HuC is loaded by GSC on pre-MTL
+ * such as DG2, we can skip the init of the full PXP session/object management
+ * and just init the tee channel.
+ */
+ if (is_full_feature)
+ pxp_init_full(i915->pxp);
+ else
+ intel_pxp_tee_component_init(i915->pxp);
+
+ return 0;
+}
+
+void intel_pxp_fini(struct drm_i915_private *i915)
+{
+ if (!i915->pxp)
return;
- pxp->arb_is_valid = false;
+ i915->pxp->arb_is_valid = false;
- intel_pxp_tee_component_fini(pxp);
+ intel_pxp_tee_component_fini(i915->pxp);
- destroy_vcs_context(pxp);
+ destroy_vcs_context(i915->pxp);
+
+ kfree(i915->pxp);
+ i915->pxp = NULL;
}
void intel_pxp_mark_termination_in_progress(struct intel_pxp *pxp)
@@ -163,7 +245,7 @@ void intel_pxp_mark_termination_in_progress(struct intel_pxp *pxp)
static void pxp_queue_termination(struct intel_pxp *pxp)
{
- struct intel_gt *gt = pxp_to_gt(pxp);
+ struct intel_gt *gt = pxp->ctrl_gt;
/*
* We want to get the same effect as if we received a termination
@@ -188,6 +270,60 @@ static bool pxp_component_bound(struct intel_pxp *pxp)
return bound;
}
+static int __pxp_global_teardown_final(struct intel_pxp *pxp)
+{
+ if (!pxp->arb_is_valid)
+ return 0;
+ /*
+ * To ensure synchronous and coherent session teardown completion
+ * in response to suspend or shutdown triggers, don't use a worker.
+ */
+ intel_pxp_mark_termination_in_progress(pxp);
+ intel_pxp_terminate(pxp, false);
+
+ if (!wait_for_completion_timeout(&pxp->termination, msecs_to_jiffies(250)))
+ return -ETIMEDOUT;
+
+ return 0;
+}
+
+static int __pxp_global_teardown_restart(struct intel_pxp *pxp)
+{
+ if (pxp->arb_is_valid)
+ return 0;
+ /*
+ * The arb-session is currently inactive and we are doing a reset and restart
+ * due to a runtime event. Use the worker that was designed for this.
+ */
+ pxp_queue_termination(pxp);
+
+ if (!wait_for_completion_timeout(&pxp->termination, msecs_to_jiffies(250)))
+ return -ETIMEDOUT;
+
+ return 0;
+}
+
+void intel_pxp_end(struct intel_pxp *pxp)
+{
+ struct drm_i915_private *i915 = pxp->ctrl_gt->i915;
+ intel_wakeref_t wakeref;
+
+ if (!intel_pxp_is_enabled(pxp))
+ return;
+
+ wakeref = intel_runtime_pm_get(&i915->runtime_pm);
+
+ mutex_lock(&pxp->arb_mutex);
+
+ if (__pxp_global_teardown_final(pxp))
+ drm_dbg(&i915->drm, "PXP end timed out\n");
+
+ mutex_unlock(&pxp->arb_mutex);
+
+ intel_pxp_fini_hw(pxp);
+ intel_runtime_pm_put(&i915->runtime_pm, wakeref);
+}
+
/*
* the arb session is restarted from the irq work when we receive the
* termination completion interrupt
@@ -204,16 +340,9 @@ int intel_pxp_start(struct intel_pxp *pxp)
mutex_lock(&pxp->arb_mutex);
- if (pxp->arb_is_valid)
- goto unlock;
-
- pxp_queue_termination(pxp);
-
- if (!wait_for_completion_timeout(&pxp->termination,
- msecs_to_jiffies(250))) {
- ret = -ETIMEDOUT;
+ ret = __pxp_global_teardown_restart(pxp);
+ if (ret)
goto unlock;
- }
/* make sure the compiler doesn't optimize the double access */
barrier();
@@ -228,13 +357,13 @@ unlock:
void intel_pxp_init_hw(struct intel_pxp *pxp)
{
- kcr_pxp_enable(pxp_to_gt(pxp));
+ kcr_pxp_enable(pxp->ctrl_gt);
intel_pxp_irq_enable(pxp);
}
void intel_pxp_fini_hw(struct intel_pxp *pxp)
{
- kcr_pxp_disable(pxp_to_gt(pxp));
+ kcr_pxp_disable(pxp->ctrl_gt);
intel_pxp_irq_disable(pxp);
}
@@ -268,7 +397,7 @@ int intel_pxp_key_check(struct intel_pxp *pxp,
void intel_pxp_invalidate(struct intel_pxp *pxp)
{
- struct drm_i915_private *i915 = pxp_to_gt(pxp)->i915;
+ struct drm_i915_private *i915 = pxp->ctrl_gt->i915;
struct i915_gem_context *ctx, *cn;
/* ban all contexts marked as protected */
diff --git a/drivers/gpu/drm/i915/pxp/intel_pxp.h b/drivers/gpu/drm/i915/pxp/intel_pxp.h
index 73847e535cab..3ded0890cd27 100644
--- a/drivers/gpu/drm/i915/pxp/intel_pxp.h
+++ b/drivers/gpu/drm/i915/pxp/intel_pxp.h
@@ -9,59 +9,30 @@
#include <linux/errno.h>
#include <linux/types.h>
-struct intel_pxp;
struct drm_i915_gem_object;
+struct drm_i915_private;
+struct intel_pxp;
-#ifdef CONFIG_DRM_I915_PXP
-struct intel_gt *pxp_to_gt(const struct intel_pxp *pxp);
+bool intel_pxp_is_supported(const struct intel_pxp *pxp);
bool intel_pxp_is_enabled(const struct intel_pxp *pxp);
bool intel_pxp_is_active(const struct intel_pxp *pxp);
-void intel_pxp_init(struct intel_pxp *pxp);
-void intel_pxp_fini(struct intel_pxp *pxp);
+int intel_pxp_init(struct drm_i915_private *i915);
+void intel_pxp_fini(struct drm_i915_private *i915);
void intel_pxp_init_hw(struct intel_pxp *pxp);
void intel_pxp_fini_hw(struct intel_pxp *pxp);
void intel_pxp_mark_termination_in_progress(struct intel_pxp *pxp);
+void intel_pxp_tee_end_arb_fw_session(struct intel_pxp *pxp, u32 arb_session_id);
int intel_pxp_start(struct intel_pxp *pxp);
+void intel_pxp_end(struct intel_pxp *pxp);
int intel_pxp_key_check(struct intel_pxp *pxp,
struct drm_i915_gem_object *obj,
bool assign);
void intel_pxp_invalidate(struct intel_pxp *pxp);
-#else
-static inline void intel_pxp_init(struct intel_pxp *pxp)
-{
-}
-
-static inline void intel_pxp_fini(struct intel_pxp *pxp)
-{
-}
-
-static inline int intel_pxp_start(struct intel_pxp *pxp)
-{
- return -ENODEV;
-}
-
-static inline bool intel_pxp_is_enabled(const struct intel_pxp *pxp)
-{
- return false;
-}
-
-static inline bool intel_pxp_is_active(const struct intel_pxp *pxp)
-{
- return false;
-}
-
-static inline int intel_pxp_key_check(struct intel_pxp *pxp,
- struct drm_i915_gem_object *obj,
- bool assign)
-{
- return -ENODEV;
-}
-#endif
#endif /* __INTEL_PXP_H__ */
diff --git a/drivers/gpu/drm/i915/pxp/intel_pxp_cmd.c b/drivers/gpu/drm/i915/pxp/intel_pxp_cmd.c
index f41e45763d0d..0eee51c4a772 100644
--- a/drivers/gpu/drm/i915/pxp/intel_pxp_cmd.c
+++ b/drivers/gpu/drm/i915/pxp/intel_pxp_cmd.c
@@ -3,9 +3,6 @@
* Copyright(c) 2020, Intel Corporation. All rights reserved.
*/
-#include "intel_pxp.h"
-#include "intel_pxp_cmd.h"
-#include "intel_pxp_session.h"
#include "gt/intel_context.h"
#include "gt/intel_engine_pm.h"
#include "gt/intel_gpu_commands.h"
@@ -13,6 +10,11 @@
#include "i915_trace.h"
+#include "intel_pxp.h"
+#include "intel_pxp_cmd.h"
+#include "intel_pxp_session.h"
+#include "intel_pxp_types.h"
+
/* stall until prior PXP and MFX/HCP/HUC objects are cmopleted */
#define MFX_WAIT_PXP (MFX_WAIT | \
MFX_WAIT_DW0_PXP_SYNC_CONTROL_FLAG | \
diff --git a/drivers/gpu/drm/i915/pxp/intel_pxp_cmd_interface_42.h b/drivers/gpu/drm/i915/pxp/intel_pxp_cmd_interface_42.h
new file mode 100644
index 000000000000..26f7d9f01bf3
--- /dev/null
+++ b/drivers/gpu/drm/i915/pxp/intel_pxp_cmd_interface_42.h
@@ -0,0 +1,43 @@
+/* SPDX-License-Identifier: MIT */
+/*
+ * Copyright(c) 2020, Intel Corporation. All rights reserved.
+ */
+
+#ifndef __INTEL_PXP_FW_INTERFACE_42_H__
+#define __INTEL_PXP_FW_INTERFACE_42_H__
+
+#include <linux/types.h>
+#include "intel_pxp_cmd_interface_cmn.h"
+
+/* PXP-Opcode for Init Session */
+#define PXP42_CMDID_INIT_SESSION 0x1e
+
+/* PXP-Opcode for Invalidate Stream Key */
+#define PXP42_CMDID_INVALIDATE_STREAM_KEY 0x00000007
+
+/* PXP-Input-Packet: Init Session (Arb-Session) */
+struct pxp42_create_arb_in {
+ struct pxp_cmd_header header;
+ u32 protection_mode;
+#define PXP42_ARB_SESSION_MODE_HEAVY 0x2
+ u32 session_id;
+} __packed;
+
+/* PXP-Output-Packet: Init Session */
+struct pxp42_create_arb_out {
+ struct pxp_cmd_header header;
+} __packed;
+
+/* PXP-Input-Packet: Invalidate Stream Key */
+struct pxp42_inv_stream_key_in {
+ struct pxp_cmd_header header;
+ u32 rsvd[3];
+} __packed;
+
+/* PXP-Output-Packet: Invalidate Stream Key */
+struct pxp42_inv_stream_key_out {
+ struct pxp_cmd_header header;
+ u32 rsvd;
+} __packed;
+
+#endif /* __INTEL_PXP_FW_INTERFACE_42_H__ */
diff --git a/drivers/gpu/drm/i915/pxp/intel_pxp_cmd_interface_43.h b/drivers/gpu/drm/i915/pxp/intel_pxp_cmd_interface_43.h
new file mode 100644
index 000000000000..ad67e3f49c20
--- /dev/null
+++ b/drivers/gpu/drm/i915/pxp/intel_pxp_cmd_interface_43.h
@@ -0,0 +1,26 @@
+/* SPDX-License-Identifier: MIT */
+/*
+ * Copyright(c) 2022, Intel Corporation. All rights reserved.
+ */
+
+#ifndef __INTEL_PXP_FW_INTERFACE_43_H__
+#define __INTEL_PXP_FW_INTERFACE_43_H__
+
+#include <linux/types.h>
+#include "intel_pxp_cmd_interface_cmn.h"
+
+/* PXP-Cmd-Op definitions */
+#define PXP43_CMDID_START_HUC_AUTH 0x0000003A
+
+/* PXP-Input-Packet: HUC-Authentication */
+struct pxp43_start_huc_auth_in {
+ struct pxp_cmd_header header;
+ __le64 huc_base_address;
+} __packed;
+
+/* PXP-Output-Packet: HUC-Authentication */
+struct pxp43_start_huc_auth_out {
+ struct pxp_cmd_header header;
+} __packed;
+
+#endif /* __INTEL_PXP_FW_INTERFACE_43_H__ */
diff --git a/drivers/gpu/drm/i915/pxp/intel_pxp_cmd_interface_cmn.h b/drivers/gpu/drm/i915/pxp/intel_pxp_cmd_interface_cmn.h
new file mode 100644
index 000000000000..6f6541d5e49a
--- /dev/null
+++ b/drivers/gpu/drm/i915/pxp/intel_pxp_cmd_interface_cmn.h
@@ -0,0 +1,42 @@
+/* SPDX-License-Identifier: MIT */
+/*
+ * Copyright(c) 2022, Intel Corporation. All rights reserved.
+ */
+
+#ifndef __INTEL_PXP_FW_INTERFACE_CMN_H__
+#define __INTEL_PXP_FW_INTERFACE_CMN_H__
+
+#include <linux/types.h>
+
+#define PXP_APIVER(x, y) (((x) & 0xFFFF) << 16 | ((y) & 0xFFFF))
+
+/*
+ * there are a lot of status codes for PXP, but we only define the cross-API
+ * common ones that we actually can handle in the kernel driver. Other failure
+ * codes should be printed to error msg for debug.
+ */
+enum pxp_status {
+ PXP_STATUS_SUCCESS = 0x0,
+ PXP_STATUS_ERROR_API_VERSION = 0x1002,
+ PXP_STATUS_NOT_READY = 0x100e,
+ PXP_STATUS_PLATFCONFIG_KF1_NOVERIF = 0x101a,
+ PXP_STATUS_PLATFCONFIG_KF1_BAD = 0x101f,
+ PXP_STATUS_OP_NOT_PERMITTED = 0x4013
+};
+
+/* Common PXP FW message header */
+struct pxp_cmd_header {
+ u32 api_version;
+ u32 command_id;
+ union {
+ u32 status; /* out */
+ u32 stream_id; /* in */
+#define PXP_CMDHDR_EXTDATA_SESSION_VALID GENMASK(0, 0)
+#define PXP_CMDHDR_EXTDATA_APP_TYPE GENMASK(1, 1)
+#define PXP_CMDHDR_EXTDATA_SESSION_ID GENMASK(17, 2)
+ };
+ /* Length of the message (excluding the header) */
+ u32 buffer_len;
+} __packed;
+
+#endif /* __INTEL_PXP_FW_INTERFACE_CMN_H__ */
diff --git a/drivers/gpu/drm/i915/pxp/intel_pxp_debugfs.c b/drivers/gpu/drm/i915/pxp/intel_pxp_debugfs.c
index 4359e8be4101..4b8e70caa3ad 100644
--- a/drivers/gpu/drm/i915/pxp/intel_pxp_debugfs.c
+++ b/drivers/gpu/drm/i915/pxp/intel_pxp_debugfs.c
@@ -9,18 +9,20 @@
#include <drm/drm_print.h>
#include "gt/intel_gt_debugfs.h"
+
#include "i915_drv.h"
+
#include "intel_pxp.h"
#include "intel_pxp_debugfs.h"
#include "intel_pxp_irq.h"
+#include "intel_pxp_types.h"
static int pxp_info_show(struct seq_file *m, void *data)
{
struct intel_pxp *pxp = m->private;
struct drm_printer p = drm_seq_file_printer(m);
- bool enabled = intel_pxp_is_enabled(pxp);
- if (!enabled) {
+ if (!intel_pxp_is_enabled(pxp)) {
drm_printf(&p, "pxp disabled\n");
return 0;
}
@@ -30,7 +32,8 @@ static int pxp_info_show(struct seq_file *m, void *data)
return 0;
}
-DEFINE_INTEL_GT_DEBUGFS_ATTRIBUTE(pxp_info);
+
+DEFINE_SHOW_ATTRIBUTE(pxp_info);
static int pxp_terminate_get(void *data, u64 *val)
{
@@ -41,7 +44,7 @@ static int pxp_terminate_get(void *data, u64 *val)
static int pxp_terminate_set(void *data, u64 val)
{
struct intel_pxp *pxp = data;
- struct intel_gt *gt = pxp_to_gt(pxp);
+ struct intel_gt *gt = pxp->ctrl_gt;
if (!intel_pxp_is_active(pxp))
return -ENODEV;
@@ -59,23 +62,26 @@ static int pxp_terminate_set(void *data, u64 val)
}
DEFINE_SIMPLE_ATTRIBUTE(pxp_terminate_fops, pxp_terminate_get, pxp_terminate_set, "%llx\n");
-void intel_pxp_debugfs_register(struct intel_pxp *pxp, struct dentry *gt_root)
+
+void intel_pxp_debugfs_register(struct intel_pxp *pxp)
{
- static const struct intel_gt_debugfs_file files[] = {
- { "info", &pxp_info_fops, NULL },
- { "terminate_state", &pxp_terminate_fops, NULL },
- };
- struct dentry *root;
+ struct drm_minor *minor;
+ struct dentry *pxproot;
- if (!gt_root)
+ if (!intel_pxp_is_supported(pxp))
return;
- if (!HAS_PXP((pxp_to_gt(pxp)->i915)))
+ minor = pxp->ctrl_gt->i915->drm.primary;
+ if (!minor->debugfs_root)
return;
- root = debugfs_create_dir("pxp", gt_root);
- if (IS_ERR(root))
+ pxproot = debugfs_create_dir("pxp", minor->debugfs_root);
+ if (IS_ERR(pxproot))
return;
- intel_gt_debugfs_register_files(root, files, ARRAY_SIZE(files), pxp);
+ debugfs_create_file("info", 0444, pxproot,
+ pxp, &pxp_info_fops);
+
+ debugfs_create_file("terminate_state", 0644, pxproot,
+ pxp, &pxp_terminate_fops);
}
diff --git a/drivers/gpu/drm/i915/pxp/intel_pxp_debugfs.h b/drivers/gpu/drm/i915/pxp/intel_pxp_debugfs.h
index 7e0c3d2f5d7e..299382b59e66 100644
--- a/drivers/gpu/drm/i915/pxp/intel_pxp_debugfs.h
+++ b/drivers/gpu/drm/i915/pxp/intel_pxp_debugfs.h
@@ -10,10 +10,10 @@ struct intel_pxp;
struct dentry;
#ifdef CONFIG_DRM_I915_PXP
-void intel_pxp_debugfs_register(struct intel_pxp *pxp, struct dentry *root);
+void intel_pxp_debugfs_register(struct intel_pxp *pxp);
#else
static inline void
-intel_pxp_debugfs_register(struct intel_pxp *pxp, struct dentry *root)
+intel_pxp_debugfs_register(struct intel_pxp *pxp)
{
}
#endif
diff --git a/drivers/gpu/drm/i915/pxp/intel_pxp_huc.c b/drivers/gpu/drm/i915/pxp/intel_pxp_huc.c
new file mode 100644
index 000000000000..23431c36b60b
--- /dev/null
+++ b/drivers/gpu/drm/i915/pxp/intel_pxp_huc.c
@@ -0,0 +1,71 @@
+// SPDX-License-Identifier: MIT
+/*
+ * Copyright(c) 2021-2022, Intel Corporation. All rights reserved.
+ */
+
+#include "i915_drv.h"
+
+#include "gem/i915_gem_region.h"
+#include "gt/intel_gt.h"
+
+#include "intel_pxp.h"
+#include "intel_pxp_huc.h"
+#include "intel_pxp_tee.h"
+#include "intel_pxp_types.h"
+#include "intel_pxp_cmd_interface_43.h"
+
+int intel_pxp_huc_load_and_auth(struct intel_pxp *pxp)
+{
+ struct intel_gt *gt;
+ struct intel_huc *huc;
+ struct pxp43_start_huc_auth_in huc_in = {0};
+ struct pxp43_start_huc_auth_out huc_out = {0};
+ dma_addr_t huc_phys_addr;
+ u8 client_id = 0;
+ u8 fence_id = 0;
+ int err;
+
+ if (!pxp || !pxp->pxp_component)
+ return -ENODEV;
+
+ gt = pxp->ctrl_gt;
+ huc = &gt->uc.huc;
+
+ huc_phys_addr = i915_gem_object_get_dma_address(huc->fw.obj, 0);
+
+ /* write the PXP message into the lmem (the sg list) */
+ huc_in.header.api_version = PXP_APIVER(4, 3);
+ huc_in.header.command_id = PXP43_CMDID_START_HUC_AUTH;
+ huc_in.header.status = 0;
+ huc_in.header.buffer_len = sizeof(huc_in.huc_base_address);
+ huc_in.huc_base_address = cpu_to_le64(huc_phys_addr);
+
+ err = intel_pxp_tee_stream_message(pxp, client_id, fence_id,
+ &huc_in, sizeof(huc_in),
+ &huc_out, sizeof(huc_out));
+ if (err < 0) {
+ drm_err(&gt->i915->drm,
+ "Failed to send HuC load and auth command to GSC [%d]!\n",
+ err);
+ return err;
+ }
+
+ /*
+ * HuC does sometimes survive suspend/resume (it depends on how "deep"
+ * a sleep state the device reaches) so we can end up here on resume
+ * with HuC already loaded, in which case the GSC will return
+ * PXP_STATUS_OP_NOT_PERMITTED. We can therefore consider the GuC
+ * correctly transferred in this scenario; if the same error is ever
+ * returned with HuC not loaded we'll still catch it when we check the
+ * authentication bit later.
+ */
+ if (huc_out.header.status != PXP_STATUS_SUCCESS &&
+ huc_out.header.status != PXP_STATUS_OP_NOT_PERMITTED) {
+ drm_err(&gt->i915->drm,
+ "HuC load failed with GSC error = 0x%x\n",
+ huc_out.header.status);
+ return -EPROTO;
+ }
+
+ return 0;
+}
diff --git a/drivers/gpu/drm/i915/pxp/intel_pxp_huc.h b/drivers/gpu/drm/i915/pxp/intel_pxp_huc.h
new file mode 100644
index 000000000000..e40847a91c39
--- /dev/null
+++ b/drivers/gpu/drm/i915/pxp/intel_pxp_huc.h
@@ -0,0 +1,13 @@
+/* SPDX-License-Identifier: MIT */
+/*
+ * Copyright(c) 2021-2022, Intel Corporation. All rights reserved.
+ */
+
+#ifndef __INTEL_PXP_HUC_H__
+#define __INTEL_PXP_HUC_H__
+
+struct intel_pxp;
+
+int intel_pxp_huc_load_and_auth(struct intel_pxp *pxp);
+
+#endif /* __INTEL_PXP_HUC_H__ */
diff --git a/drivers/gpu/drm/i915/pxp/intel_pxp_irq.c b/drivers/gpu/drm/i915/pxp/intel_pxp_irq.c
index c28be430718a..91e9622c07d0 100644
--- a/drivers/gpu/drm/i915/pxp/intel_pxp_irq.c
+++ b/drivers/gpu/drm/i915/pxp/intel_pxp_irq.c
@@ -3,14 +3,18 @@
* Copyright(c) 2020 Intel Corporation.
*/
#include <linux/workqueue.h>
-#include "intel_pxp.h"
-#include "intel_pxp_irq.h"
-#include "intel_pxp_session.h"
+
#include "gt/intel_gt_irq.h"
#include "gt/intel_gt_regs.h"
#include "gt/intel_gt_types.h"
+
#include "i915_irq.h"
#include "i915_reg.h"
+
+#include "intel_pxp.h"
+#include "intel_pxp_irq.h"
+#include "intel_pxp_session.h"
+#include "intel_pxp_types.h"
#include "intel_runtime_pm.h"
/**
@@ -20,11 +24,13 @@
*/
void intel_pxp_irq_handler(struct intel_pxp *pxp, u16 iir)
{
- struct intel_gt *gt = pxp_to_gt(pxp);
+ struct intel_gt *gt;
if (GEM_WARN_ON(!intel_pxp_is_enabled(pxp)))
return;
+ gt = pxp->ctrl_gt;
+
lockdep_assert_held(gt->irq_lock);
if (unlikely(!iir))
@@ -62,7 +68,7 @@ static inline void pxp_irq_reset(struct intel_gt *gt)
void intel_pxp_irq_enable(struct intel_pxp *pxp)
{
- struct intel_gt *gt = pxp_to_gt(pxp);
+ struct intel_gt *gt = pxp->ctrl_gt;
spin_lock_irq(gt->irq_lock);
@@ -77,7 +83,7 @@ void intel_pxp_irq_enable(struct intel_pxp *pxp)
void intel_pxp_irq_disable(struct intel_pxp *pxp)
{
- struct intel_gt *gt = pxp_to_gt(pxp);
+ struct intel_gt *gt = pxp->ctrl_gt;
/*
* We always need to submit a global termination when we re-enable the
diff --git a/drivers/gpu/drm/i915/pxp/intel_pxp_irq.h b/drivers/gpu/drm/i915/pxp/intel_pxp_irq.h
index 8b5793654844..8c292dc86f68 100644
--- a/drivers/gpu/drm/i915/pxp/intel_pxp_irq.h
+++ b/drivers/gpu/drm/i915/pxp/intel_pxp_irq.h
@@ -27,6 +27,14 @@ void intel_pxp_irq_handler(struct intel_pxp *pxp, u16 iir);
static inline void intel_pxp_irq_handler(struct intel_pxp *pxp, u16 iir)
{
}
+
+static inline void intel_pxp_irq_enable(struct intel_pxp *pxp)
+{
+}
+
+static inline void intel_pxp_irq_disable(struct intel_pxp *pxp)
+{
+}
#endif
#endif /* __INTEL_PXP_IRQ_H__ */
diff --git a/drivers/gpu/drm/i915/pxp/intel_pxp_pm.c b/drivers/gpu/drm/i915/pxp/intel_pxp_pm.c
index 6a7d4e2ee138..4f836b317424 100644
--- a/drivers/gpu/drm/i915/pxp/intel_pxp_pm.c
+++ b/drivers/gpu/drm/i915/pxp/intel_pxp_pm.c
@@ -3,18 +3,20 @@
* Copyright(c) 2020 Intel Corporation.
*/
+#include "i915_drv.h"
+
#include "intel_pxp.h"
#include "intel_pxp_irq.h"
#include "intel_pxp_pm.h"
#include "intel_pxp_session.h"
-#include "i915_drv.h"
+#include "intel_pxp_types.h"
void intel_pxp_suspend_prepare(struct intel_pxp *pxp)
{
if (!intel_pxp_is_enabled(pxp))
return;
- pxp->arb_is_valid = false;
+ intel_pxp_end(pxp);
intel_pxp_invalidate(pxp);
}
@@ -26,13 +28,13 @@ void intel_pxp_suspend(struct intel_pxp *pxp)
if (!intel_pxp_is_enabled(pxp))
return;
- with_intel_runtime_pm(&pxp_to_gt(pxp)->i915->runtime_pm, wakeref) {
+ with_intel_runtime_pm(&pxp->ctrl_gt->i915->runtime_pm, wakeref) {
intel_pxp_fini_hw(pxp);
pxp->hw_state_invalidated = false;
}
}
-void intel_pxp_resume(struct intel_pxp *pxp)
+void intel_pxp_resume_complete(struct intel_pxp *pxp)
{
if (!intel_pxp_is_enabled(pxp))
return;
diff --git a/drivers/gpu/drm/i915/pxp/intel_pxp_pm.h b/drivers/gpu/drm/i915/pxp/intel_pxp_pm.h
index 586be769104f..06b46f535b42 100644
--- a/drivers/gpu/drm/i915/pxp/intel_pxp_pm.h
+++ b/drivers/gpu/drm/i915/pxp/intel_pxp_pm.h
@@ -11,7 +11,7 @@ struct intel_pxp;
#ifdef CONFIG_DRM_I915_PXP
void intel_pxp_suspend_prepare(struct intel_pxp *pxp);
void intel_pxp_suspend(struct intel_pxp *pxp);
-void intel_pxp_resume(struct intel_pxp *pxp);
+void intel_pxp_resume_complete(struct intel_pxp *pxp);
void intel_pxp_runtime_suspend(struct intel_pxp *pxp);
#else
static inline void intel_pxp_suspend_prepare(struct intel_pxp *pxp)
@@ -22,7 +22,7 @@ static inline void intel_pxp_suspend(struct intel_pxp *pxp)
{
}
-static inline void intel_pxp_resume(struct intel_pxp *pxp)
+static inline void intel_pxp_resume_complete(struct intel_pxp *pxp)
{
}
@@ -32,6 +32,6 @@ static inline void intel_pxp_runtime_suspend(struct intel_pxp *pxp)
#endif
static inline void intel_pxp_runtime_resume(struct intel_pxp *pxp)
{
- intel_pxp_resume(pxp);
+ intel_pxp_resume_complete(pxp);
}
#endif /* __INTEL_PXP_PM_H__ */
diff --git a/drivers/gpu/drm/i915/pxp/intel_pxp_session.c b/drivers/gpu/drm/i915/pxp/intel_pxp_session.c
index 1bb5b5249157..7de849cb6c47 100644
--- a/drivers/gpu/drm/i915/pxp/intel_pxp_session.c
+++ b/drivers/gpu/drm/i915/pxp/intel_pxp_session.c
@@ -20,7 +20,7 @@
static bool intel_pxp_session_is_in_play(struct intel_pxp *pxp, u32 id)
{
- struct intel_uncore *uncore = pxp_to_gt(pxp)->uncore;
+ struct intel_uncore *uncore = pxp->ctrl_gt->uncore;
intel_wakeref_t wakeref;
u32 sip = 0;
@@ -33,7 +33,7 @@ static bool intel_pxp_session_is_in_play(struct intel_pxp *pxp, u32 id)
static int pxp_wait_for_session_state(struct intel_pxp *pxp, u32 id, bool in_play)
{
- struct intel_uncore *uncore = pxp_to_gt(pxp)->uncore;
+ struct intel_uncore *uncore = pxp->ctrl_gt->uncore;
intel_wakeref_t wakeref;
u32 mask = BIT(id);
int ret;
@@ -56,7 +56,7 @@ static int pxp_wait_for_session_state(struct intel_pxp *pxp, u32 id, bool in_pla
static int pxp_create_arb_session(struct intel_pxp *pxp)
{
- struct intel_gt *gt = pxp_to_gt(pxp);
+ struct intel_gt *gt = pxp->ctrl_gt;
int ret;
pxp->arb_is_valid = false;
@@ -74,9 +74,10 @@ static int pxp_create_arb_session(struct intel_pxp *pxp)
ret = pxp_wait_for_session_state(pxp, ARB_SESSION, true);
if (ret) {
- drm_err(&gt->i915->drm, "arb session failed to go in play\n");
+ drm_dbg(&gt->i915->drm, "arb session failed to go in play\n");
return ret;
}
+ drm_dbg(&gt->i915->drm, "PXP ARB session is alive\n");
if (!++pxp->key_instance)
++pxp->key_instance;
@@ -89,7 +90,7 @@ static int pxp_create_arb_session(struct intel_pxp *pxp)
static int pxp_terminate_arb_session_and_global(struct intel_pxp *pxp)
{
int ret;
- struct intel_gt *gt = pxp_to_gt(pxp);
+ struct intel_gt *gt = pxp->ctrl_gt;
/* must mark termination in progress calling this function */
GEM_WARN_ON(pxp->arb_is_valid);
@@ -109,14 +110,16 @@ static int pxp_terminate_arb_session_and_global(struct intel_pxp *pxp)
intel_uncore_write(gt->uncore, PXP_GLOBAL_TERMINATE, 1);
+ intel_pxp_tee_end_arb_fw_session(pxp, ARB_SESSION);
+
return ret;
}
-static void pxp_terminate(struct intel_pxp *pxp)
+void intel_pxp_terminate(struct intel_pxp *pxp, bool post_invalidation_needs_restart)
{
int ret;
- pxp->hw_state_invalidated = true;
+ pxp->hw_state_invalidated = post_invalidation_needs_restart;
/*
* if we fail to submit the termination there is no point in waiting for
@@ -137,10 +140,10 @@ static void pxp_terminate_complete(struct intel_pxp *pxp)
complete_all(&pxp->termination);
}
-void intel_pxp_session_work(struct work_struct *work)
+static void pxp_session_work(struct work_struct *work)
{
struct intel_pxp *pxp = container_of(work, typeof(*pxp), session_work);
- struct intel_gt *gt = pxp_to_gt(pxp);
+ struct intel_gt *gt = pxp->ctrl_gt;
intel_wakeref_t wakeref;
u32 events = 0;
@@ -164,7 +167,7 @@ void intel_pxp_session_work(struct work_struct *work)
if (events & PXP_TERMINATION_REQUEST) {
events &= ~PXP_TERMINATION_COMPLETE;
- pxp_terminate(pxp);
+ intel_pxp_terminate(pxp, true);
}
if (events & PXP_TERMINATION_COMPLETE)
@@ -172,3 +175,9 @@ void intel_pxp_session_work(struct work_struct *work)
intel_runtime_pm_put(gt->uncore->rpm, wakeref);
}
+
+void intel_pxp_session_management_init(struct intel_pxp *pxp)
+{
+ mutex_init(&pxp->arb_mutex);
+ INIT_WORK(&pxp->session_work, pxp_session_work);
+}
diff --git a/drivers/gpu/drm/i915/pxp/intel_pxp_session.h b/drivers/gpu/drm/i915/pxp/intel_pxp_session.h
index ba4c9d2b94b7..ba5788127109 100644
--- a/drivers/gpu/drm/i915/pxp/intel_pxp_session.h
+++ b/drivers/gpu/drm/i915/pxp/intel_pxp_session.h
@@ -8,8 +8,18 @@
#include <linux/types.h>
-struct work_struct;
+struct intel_pxp;
-void intel_pxp_session_work(struct work_struct *work);
+#ifdef CONFIG_DRM_I915_PXP
+void intel_pxp_session_management_init(struct intel_pxp *pxp);
+void intel_pxp_terminate(struct intel_pxp *pxp, bool post_invalidation_needs_restart);
+#else
+static inline void intel_pxp_session_management_init(struct intel_pxp *pxp)
+{
+}
+static inline void intel_pxp_terminate(struct intel_pxp *pxp, bool post_invalidation_needs_restart)
+{
+}
+#endif
#endif /* __INTEL_PXP_SESSION_H__ */
diff --git a/drivers/gpu/drm/i915/pxp/intel_pxp_tee.c b/drivers/gpu/drm/i915/pxp/intel_pxp_tee.c
index 4b6f5655fab5..a2846b1dbbee 100644
--- a/drivers/gpu/drm/i915/pxp/intel_pxp_tee.c
+++ b/drivers/gpu/drm/i915/pxp/intel_pxp_tee.c
@@ -8,17 +8,46 @@
#include <drm/i915_pxp_tee_interface.h>
#include <drm/i915_component.h>
+#include "gem/i915_gem_lmem.h"
+
#include "i915_drv.h"
+
#include "intel_pxp.h"
+#include "intel_pxp_cmd_interface_42.h"
+#include "intel_pxp_huc.h"
#include "intel_pxp_session.h"
#include "intel_pxp_tee.h"
-#include "intel_pxp_tee_interface.h"
+#include "intel_pxp_types.h"
-static inline struct intel_pxp *i915_dev_to_pxp(struct device *i915_kdev)
+static bool
+is_fw_err_platform_config(u32 type)
{
- struct drm_i915_private *i915 = kdev_to_i915(i915_kdev);
+ switch (type) {
+ case PXP_STATUS_ERROR_API_VERSION:
+ case PXP_STATUS_PLATFCONFIG_KF1_NOVERIF:
+ case PXP_STATUS_PLATFCONFIG_KF1_BAD:
+ return true;
+ default:
+ break;
+ }
+ return false;
+}
- return &to_gt(i915)->pxp;
+static const char *
+fw_err_to_string(u32 type)
+{
+ switch (type) {
+ case PXP_STATUS_ERROR_API_VERSION:
+ return "ERR_API_VERSION";
+ case PXP_STATUS_NOT_READY:
+ return "ERR_NOT_READY";
+ case PXP_STATUS_PLATFCONFIG_KF1_NOVERIF:
+ case PXP_STATUS_PLATFCONFIG_KF1_BAD:
+ return "ERR_PLATFORM_CONFIG";
+ default:
+ break;
+ }
+ return NULL;
}
static int intel_pxp_tee_io_message(struct intel_pxp *pxp,
@@ -26,7 +55,7 @@ static int intel_pxp_tee_io_message(struct intel_pxp *pxp,
void *msg_out, u32 msg_out_max_size,
u32 *msg_out_rcv_size)
{
- struct drm_i915_private *i915 = pxp_to_gt(pxp)->i915;
+ struct drm_i915_private *i915 = pxp->ctrl_gt->i915;
struct i915_pxp_component *pxp_component = pxp->pxp_component;
int ret = 0;
@@ -69,6 +98,47 @@ unlock:
return ret;
}
+int intel_pxp_tee_stream_message(struct intel_pxp *pxp,
+ u8 client_id, u32 fence_id,
+ void *msg_in, size_t msg_in_len,
+ void *msg_out, size_t msg_out_len)
+{
+ /* TODO: for bigger objects we need to use a sg of 4k pages */
+ const size_t max_msg_size = PAGE_SIZE;
+ struct drm_i915_private *i915 = pxp->ctrl_gt->i915;
+ struct i915_pxp_component *pxp_component = pxp->pxp_component;
+ unsigned int offset = 0;
+ struct scatterlist *sg;
+ int ret;
+
+ if (msg_in_len > max_msg_size || msg_out_len > max_msg_size)
+ return -ENOSPC;
+
+ mutex_lock(&pxp->tee_mutex);
+
+ if (unlikely(!pxp_component || !pxp_component->ops->gsc_command)) {
+ ret = -ENODEV;
+ goto unlock;
+ }
+
+ GEM_BUG_ON(!pxp->stream_cmd.obj);
+
+ sg = i915_gem_object_get_sg_dma(pxp->stream_cmd.obj, 0, &offset);
+
+ memcpy(pxp->stream_cmd.vaddr, msg_in, msg_in_len);
+
+ ret = pxp_component->ops->gsc_command(pxp_component->tee_dev, client_id,
+ fence_id, sg, msg_in_len, sg);
+ if (ret < 0)
+ drm_err(&i915->drm, "Failed to send PXP TEE gsc command\n");
+ else
+ memcpy(msg_out, pxp->stream_cmd.vaddr, msg_out_len);
+
+unlock:
+ mutex_unlock(&pxp->tee_mutex);
+ return ret;
+}
+
/**
* i915_pxp_tee_component_bind - bind function to pass the function pointers to pxp_tee
* @i915_kdev: pointer to i915 kernel device
@@ -83,40 +153,64 @@ static int i915_pxp_tee_component_bind(struct device *i915_kdev,
struct device *tee_kdev, void *data)
{
struct drm_i915_private *i915 = kdev_to_i915(i915_kdev);
- struct intel_pxp *pxp = i915_dev_to_pxp(i915_kdev);
+ struct intel_pxp *pxp = i915->pxp;
+ struct intel_uc *uc = &pxp->ctrl_gt->uc;
intel_wakeref_t wakeref;
+ int ret = 0;
+
+ if (!HAS_HECI_PXP(i915)) {
+ pxp->dev_link = device_link_add(i915_kdev, tee_kdev, DL_FLAG_STATELESS);
+ if (drm_WARN_ON(&i915->drm, !pxp->dev_link))
+ return -ENODEV;
+ }
mutex_lock(&pxp->tee_mutex);
pxp->pxp_component = data;
pxp->pxp_component->tee_dev = tee_kdev;
mutex_unlock(&pxp->tee_mutex);
+ if (intel_uc_uses_huc(uc) && intel_huc_is_loaded_by_gsc(&uc->huc)) {
+ with_intel_runtime_pm(&i915->runtime_pm, wakeref) {
+ /* load huc via pxp */
+ ret = intel_huc_fw_load_and_auth_via_gsc(&uc->huc);
+ if (ret < 0)
+ drm_err(&i915->drm, "failed to load huc via gsc %d\n", ret);
+ }
+ }
+
/* if we are suspended, the HW will be re-initialized on resume */
wakeref = intel_runtime_pm_get_if_in_use(&i915->runtime_pm);
if (!wakeref)
return 0;
/* the component is required to fully start the PXP HW */
- intel_pxp_init_hw(pxp);
+ if (intel_pxp_is_enabled(pxp))
+ intel_pxp_init_hw(pxp);
intel_runtime_pm_put(&i915->runtime_pm, wakeref);
- return 0;
+ return ret;
}
static void i915_pxp_tee_component_unbind(struct device *i915_kdev,
struct device *tee_kdev, void *data)
{
struct drm_i915_private *i915 = kdev_to_i915(i915_kdev);
- struct intel_pxp *pxp = i915_dev_to_pxp(i915_kdev);
+ struct intel_pxp *pxp = i915->pxp;
intel_wakeref_t wakeref;
- with_intel_runtime_pm_if_in_use(&i915->runtime_pm, wakeref)
- intel_pxp_fini_hw(pxp);
+ if (intel_pxp_is_enabled(pxp))
+ with_intel_runtime_pm_if_in_use(&i915->runtime_pm, wakeref)
+ intel_pxp_fini_hw(pxp);
mutex_lock(&pxp->tee_mutex);
pxp->pxp_component = NULL;
mutex_unlock(&pxp->tee_mutex);
+
+ if (pxp->dev_link) {
+ device_link_del(pxp->dev_link);
+ pxp->dev_link = NULL;
+ }
}
static const struct component_ops i915_pxp_tee_component_ops = {
@@ -124,47 +218,119 @@ static const struct component_ops i915_pxp_tee_component_ops = {
.unbind = i915_pxp_tee_component_unbind,
};
+static int alloc_streaming_command(struct intel_pxp *pxp)
+{
+ struct drm_i915_private *i915 = pxp->ctrl_gt->i915;
+ struct drm_i915_gem_object *obj = NULL;
+ void *cmd;
+ int err;
+
+ pxp->stream_cmd.obj = NULL;
+ pxp->stream_cmd.vaddr = NULL;
+
+ if (!IS_DGFX(i915))
+ return 0;
+
+ /* allocate lmem object of one page for PXP command memory and store it */
+ obj = i915_gem_object_create_lmem(i915, PAGE_SIZE, I915_BO_ALLOC_CONTIGUOUS);
+ if (IS_ERR(obj)) {
+ drm_err(&i915->drm, "Failed to allocate pxp streaming command!\n");
+ return PTR_ERR(obj);
+ }
+
+ err = i915_gem_object_pin_pages_unlocked(obj);
+ if (err) {
+ drm_err(&i915->drm, "Failed to pin gsc message page!\n");
+ goto out_put;
+ }
+
+ /* map the lmem into the virtual memory pointer */
+ cmd = i915_gem_object_pin_map_unlocked(obj, i915_coherent_map_type(i915, obj, true));
+ if (IS_ERR(cmd)) {
+ drm_err(&i915->drm, "Failed to map gsc message page!\n");
+ err = PTR_ERR(cmd);
+ goto out_unpin;
+ }
+
+ memset(cmd, 0, obj->base.size);
+
+ pxp->stream_cmd.obj = obj;
+ pxp->stream_cmd.vaddr = cmd;
+
+ return 0;
+
+out_unpin:
+ i915_gem_object_unpin_pages(obj);
+out_put:
+ i915_gem_object_put(obj);
+ return err;
+}
+
+static void free_streaming_command(struct intel_pxp *pxp)
+{
+ struct drm_i915_gem_object *obj = fetch_and_zero(&pxp->stream_cmd.obj);
+
+ if (!obj)
+ return;
+
+ i915_gem_object_unpin_map(obj);
+ i915_gem_object_unpin_pages(obj);
+ i915_gem_object_put(obj);
+}
+
int intel_pxp_tee_component_init(struct intel_pxp *pxp)
{
int ret;
- struct intel_gt *gt = pxp_to_gt(pxp);
+ struct intel_gt *gt = pxp->ctrl_gt;
struct drm_i915_private *i915 = gt->i915;
+ mutex_init(&pxp->tee_mutex);
+
+ ret = alloc_streaming_command(pxp);
+ if (ret)
+ return ret;
+
ret = component_add_typed(i915->drm.dev, &i915_pxp_tee_component_ops,
I915_COMPONENT_PXP);
if (ret < 0) {
drm_err(&i915->drm, "Failed to add PXP component (%d)\n", ret);
- return ret;
+ goto out_free;
}
pxp->pxp_component_added = true;
return 0;
+
+out_free:
+ free_streaming_command(pxp);
+ return ret;
}
void intel_pxp_tee_component_fini(struct intel_pxp *pxp)
{
- struct drm_i915_private *i915 = pxp_to_gt(pxp)->i915;
+ struct drm_i915_private *i915 = pxp->ctrl_gt->i915;
if (!pxp->pxp_component_added)
return;
component_del(i915->drm.dev, &i915_pxp_tee_component_ops);
pxp->pxp_component_added = false;
+
+ free_streaming_command(pxp);
}
int intel_pxp_tee_cmd_create_arb_session(struct intel_pxp *pxp,
int arb_session_id)
{
- struct drm_i915_private *i915 = pxp_to_gt(pxp)->i915;
- struct pxp_tee_create_arb_in msg_in = {0};
- struct pxp_tee_create_arb_out msg_out = {0};
+ struct drm_i915_private *i915 = pxp->ctrl_gt->i915;
+ struct pxp42_create_arb_in msg_in = {0};
+ struct pxp42_create_arb_out msg_out = {0};
int ret;
- msg_in.header.api_version = PXP_TEE_APIVER;
- msg_in.header.command_id = PXP_TEE_ARB_CMDID;
+ msg_in.header.api_version = PXP_APIVER(4, 2);
+ msg_in.header.command_id = PXP42_CMDID_INIT_SESSION;
msg_in.header.buffer_len = sizeof(msg_in) - sizeof(msg_in.header);
- msg_in.protection_mode = PXP_TEE_ARB_PROTECTION_MODE;
+ msg_in.protection_mode = PXP42_ARB_SESSION_MODE_HEAVY;
msg_in.session_id = arb_session_id;
ret = intel_pxp_tee_io_message(pxp,
@@ -172,8 +338,68 @@ int intel_pxp_tee_cmd_create_arb_session(struct intel_pxp *pxp,
&msg_out, sizeof(msg_out),
NULL);
- if (ret)
- drm_err(&i915->drm, "Failed to send tee msg ret=[%d]\n", ret);
+ if (ret) {
+ drm_err(&i915->drm, "Failed to send tee msg init arb session, ret=[%d]\n", ret);
+ } else if (msg_out.header.status != 0) {
+ if (is_fw_err_platform_config(msg_out.header.status)) {
+ drm_info_once(&i915->drm,
+ "PXP init-arb-session-%d failed due to BIOS/SOC:0x%08x:%s\n",
+ arb_session_id, msg_out.header.status,
+ fw_err_to_string(msg_out.header.status));
+ } else {
+ drm_dbg(&i915->drm, "PXP init-arb-session--%d failed 0x%08x:%st:\n",
+ arb_session_id, msg_out.header.status,
+ fw_err_to_string(msg_out.header.status));
+ drm_dbg(&i915->drm, " cmd-detail: ID=[0x%08x],API-Ver-[0x%08x]\n",
+ msg_in.header.command_id, msg_in.header.api_version);
+ }
+ }
return ret;
}
+
+void intel_pxp_tee_end_arb_fw_session(struct intel_pxp *pxp, u32 session_id)
+{
+ struct drm_i915_private *i915 = pxp->ctrl_gt->i915;
+ struct pxp42_inv_stream_key_in msg_in = {0};
+ struct pxp42_inv_stream_key_out msg_out = {0};
+ int ret, trials = 0;
+
+try_again:
+ memset(&msg_in, 0, sizeof(msg_in));
+ memset(&msg_out, 0, sizeof(msg_out));
+ msg_in.header.api_version = PXP_APIVER(4, 2);
+ msg_in.header.command_id = PXP42_CMDID_INVALIDATE_STREAM_KEY;
+ msg_in.header.buffer_len = sizeof(msg_in) - sizeof(msg_in.header);
+
+ msg_in.header.stream_id = FIELD_PREP(PXP_CMDHDR_EXTDATA_SESSION_VALID, 1);
+ msg_in.header.stream_id |= FIELD_PREP(PXP_CMDHDR_EXTDATA_APP_TYPE, 0);
+ msg_in.header.stream_id |= FIELD_PREP(PXP_CMDHDR_EXTDATA_SESSION_ID, session_id);
+
+ ret = intel_pxp_tee_io_message(pxp,
+ &msg_in, sizeof(msg_in),
+ &msg_out, sizeof(msg_out),
+ NULL);
+
+ /* Cleanup coherency between GT and Firmware is critical, so try again if it fails */
+ if ((ret || msg_out.header.status != 0x0) && ++trials < 3)
+ goto try_again;
+
+ if (ret) {
+ drm_err(&i915->drm, "Failed to send tee msg for inv-stream-key-%u, ret=[%d]\n",
+ session_id, ret);
+ } else if (msg_out.header.status != 0) {
+ if (is_fw_err_platform_config(msg_out.header.status)) {
+ drm_info_once(&i915->drm,
+ "PXP inv-stream-key-%u failed due to BIOS/SOC :0x%08x:%s\n",
+ session_id, msg_out.header.status,
+ fw_err_to_string(msg_out.header.status));
+ } else {
+ drm_dbg(&i915->drm, "PXP inv-stream-key-%u failed 0x%08x:%s:\n",
+ session_id, msg_out.header.status,
+ fw_err_to_string(msg_out.header.status));
+ drm_dbg(&i915->drm, " cmd-detail: ID=[0x%08x],API-Ver-[0x%08x]\n",
+ msg_in.header.command_id, msg_in.header.api_version);
+ }
+ }
+}
diff --git a/drivers/gpu/drm/i915/pxp/intel_pxp_tee.h b/drivers/gpu/drm/i915/pxp/intel_pxp_tee.h
index c136053ce340..aeb3dfe7ce96 100644
--- a/drivers/gpu/drm/i915/pxp/intel_pxp_tee.h
+++ b/drivers/gpu/drm/i915/pxp/intel_pxp_tee.h
@@ -14,4 +14,9 @@ void intel_pxp_tee_component_fini(struct intel_pxp *pxp);
int intel_pxp_tee_cmd_create_arb_session(struct intel_pxp *pxp,
int arb_session_id);
+int intel_pxp_tee_stream_message(struct intel_pxp *pxp,
+ u8 client_id, u32 fence_id,
+ void *msg_in, size_t msg_in_len,
+ void *msg_out, size_t msg_out_len);
+
#endif /* __INTEL_PXP_TEE_H__ */
diff --git a/drivers/gpu/drm/i915/pxp/intel_pxp_tee_interface.h b/drivers/gpu/drm/i915/pxp/intel_pxp_tee_interface.h
deleted file mode 100644
index 36e9b0868f5c..000000000000
--- a/drivers/gpu/drm/i915/pxp/intel_pxp_tee_interface.h
+++ /dev/null
@@ -1,36 +0,0 @@
-/* SPDX-License-Identifier: MIT */
-/*
- * Copyright(c) 2020, Intel Corporation. All rights reserved.
- */
-
-#ifndef __INTEL_PXP_TEE_INTERFACE_H__
-#define __INTEL_PXP_TEE_INTERFACE_H__
-
-#include <linux/types.h>
-
-#define PXP_TEE_APIVER 0x40002
-#define PXP_TEE_ARB_CMDID 0x1e
-#define PXP_TEE_ARB_PROTECTION_MODE 0x2
-
-/* PXP TEE message header */
-struct pxp_tee_cmd_header {
- u32 api_version;
- u32 command_id;
- u32 status;
- /* Length of the message (excluding the header) */
- u32 buffer_len;
-} __packed;
-
-/* PXP TEE message input to create a arbitrary session */
-struct pxp_tee_create_arb_in {
- struct pxp_tee_cmd_header header;
- u32 protection_mode;
- u32 session_id;
-} __packed;
-
-/* PXP TEE message output to create a arbitrary session */
-struct pxp_tee_create_arb_out {
- struct pxp_tee_cmd_header header;
-} __packed;
-
-#endif /* __INTEL_PXP_TEE_INTERFACE_H__ */
diff --git a/drivers/gpu/drm/i915/pxp/intel_pxp_types.h b/drivers/gpu/drm/i915/pxp/intel_pxp_types.h
index 7ce5f37ee12e..007de49e1ea4 100644
--- a/drivers/gpu/drm/i915/pxp/intel_pxp_types.h
+++ b/drivers/gpu/drm/i915/pxp/intel_pxp_types.h
@@ -12,18 +12,29 @@
#include <linux/workqueue.h>
struct intel_context;
+struct intel_gt;
struct i915_pxp_component;
+struct drm_i915_private;
/**
* struct intel_pxp - pxp state
*/
struct intel_pxp {
/**
+ * @ctrl_gt: poiner to the tile that owns the controls for PXP subsystem assets that
+ * the VDBOX, the KCR engine (and GSC CS depending on the platform)
+ */
+ struct intel_gt *ctrl_gt;
+
+ /**
* @pxp_component: i915_pxp_component struct of the bound mei_pxp
* module. Only set and cleared inside component bind/unbind functions,
* which are protected by &tee_mutex.
*/
struct i915_pxp_component *pxp_component;
+
+ /* @dev_link: Enforce module relationship for power management ordering. */
+ struct device_link *dev_link;
/**
* @pxp_component_added: track if the pxp component has been added.
* Set and cleared in tee init and fini functions respectively.
@@ -53,6 +64,12 @@ struct intel_pxp {
/** @tee_mutex: protects the tee channel binding and messaging. */
struct mutex tee_mutex;
+ /** @stream_cmd: LMEM obj used to send stream PXP commands to the GSC */
+ struct {
+ struct drm_i915_gem_object *obj; /* contains PXP command memory */
+ void *vaddr; /* virtual memory for PXP command */
+ } stream_cmd;
+
/**
* @hw_state_invalidated: if the HW perceives an attack on the integrity
* of the encryption it will invalidate the keys and expect SW to
diff --git a/drivers/gpu/drm/i915/selftests/i915_gem.c b/drivers/gpu/drm/i915/selftests/i915_gem.c
index e5dd82e7e480..d91d0ade8abd 100644
--- a/drivers/gpu/drm/i915/selftests/i915_gem.c
+++ b/drivers/gpu/drm/i915/selftests/i915_gem.c
@@ -44,7 +44,7 @@ static void trash_stolen(struct drm_i915_private *i915)
{
struct i915_ggtt *ggtt = to_gt(i915)->ggtt;
const u64 slot = ggtt->error_capture.start;
- const resource_size_t size = resource_size(&i915->dsm);
+ const resource_size_t size = resource_size(&i915->dsm.stolen);
unsigned long page;
u32 prng = 0x12345678;
@@ -53,7 +53,7 @@ static void trash_stolen(struct drm_i915_private *i915)
return;
for (page = 0; page < size; page += PAGE_SIZE) {
- const dma_addr_t dma = i915->dsm.start + page;
+ const dma_addr_t dma = i915->dsm.stolen.start + page;
u32 __iomem *s;
int x;
@@ -127,6 +127,8 @@ static void igt_pm_resume(struct drm_i915_private *i915)
*/
with_intel_runtime_pm(&i915->runtime_pm, wakeref) {
i915_ggtt_resume(to_gt(i915)->ggtt);
+ if (GRAPHICS_VER(i915) >= 8)
+ setup_private_pat(to_gt(i915));
i915_gem_resume(i915);
}
}
diff --git a/drivers/gpu/drm/i915/selftests/i915_gem_evict.c b/drivers/gpu/drm/i915/selftests/i915_gem_evict.c
index 8c6517d29b8e..37068542aafe 100644
--- a/drivers/gpu/drm/i915/selftests/i915_gem_evict.c
+++ b/drivers/gpu/drm/i915/selftests/i915_gem_evict.c
@@ -344,7 +344,7 @@ static int igt_evict_vm(void *arg)
/* Everything is pinned, nothing should happen */
mutex_lock(&ggtt->vm.mutex);
- err = i915_gem_evict_vm(&ggtt->vm, NULL);
+ err = i915_gem_evict_vm(&ggtt->vm, NULL, NULL);
mutex_unlock(&ggtt->vm.mutex);
if (err) {
pr_err("i915_gem_evict_vm on a full GGTT returned err=%d]\n",
@@ -356,7 +356,7 @@ static int igt_evict_vm(void *arg)
for_i915_gem_ww(&ww, err, false) {
mutex_lock(&ggtt->vm.mutex);
- err = i915_gem_evict_vm(&ggtt->vm, &ww);
+ err = i915_gem_evict_vm(&ggtt->vm, &ww, NULL);
mutex_unlock(&ggtt->vm.mutex);
}
diff --git a/drivers/gpu/drm/i915/selftests/i915_gem_gtt.c b/drivers/gpu/drm/i915/selftests/i915_gem_gtt.c
index e050a2de5fd1..154801f1c468 100644
--- a/drivers/gpu/drm/i915/selftests/i915_gem_gtt.c
+++ b/drivers/gpu/drm/i915/selftests/i915_gem_gtt.c
@@ -27,6 +27,7 @@
#include "gem/i915_gem_context.h"
#include "gem/i915_gem_internal.h"
+#include "gem/i915_gem_lmem.h"
#include "gem/i915_gem_region.h"
#include "gem/selftests/mock_context.h"
#include "gt/intel_context.h"
@@ -60,7 +61,6 @@ static int fake_get_pages(struct drm_i915_gem_object *obj)
#define PFN_BIAS 0x1000
struct sg_table *pages;
struct scatterlist *sg;
- unsigned int sg_page_sizes;
typeof(obj->base.size) rem;
pages = kmalloc(sizeof(*pages), GFP);
@@ -68,12 +68,17 @@ static int fake_get_pages(struct drm_i915_gem_object *obj)
return -ENOMEM;
rem = round_up(obj->base.size, BIT(31)) >> 31;
+ /* restricted by sg_alloc_table */
+ if (overflows_type(rem, unsigned int)) {
+ kfree(pages);
+ return -E2BIG;
+ }
+
if (sg_alloc_table(pages, rem, GFP)) {
kfree(pages);
return -ENOMEM;
}
- sg_page_sizes = 0;
rem = obj->base.size;
for (sg = pages->sgl; sg; sg = sg_next(sg)) {
unsigned long len = min_t(typeof(rem), rem, BIT(31));
@@ -82,13 +87,12 @@ static int fake_get_pages(struct drm_i915_gem_object *obj)
sg_set_page(sg, pfn_to_page(PFN_BIAS), len, 0);
sg_dma_address(sg) = page_to_phys(sg_page(sg));
sg_dma_len(sg) = len;
- sg_page_sizes |= len;
rem -= len;
}
GEM_BUG_ON(rem);
- __i915_gem_object_set_pages(obj, pages, sg_page_sizes);
+ __i915_gem_object_set_pages(obj, pages);
return 0;
#undef GFP
@@ -1113,15 +1117,8 @@ static int misaligned_case(struct i915_address_space *vm, struct intel_memory_re
expected_node_size = expected_vma_size;
if (HAS_64K_PAGES(vm->i915) && i915_gem_object_is_lmem(obj)) {
- /*
- * The compact-pt should expand lmem node to 2MB for the ppGTT,
- * for all other cases we should only expect 64K.
- */
expected_vma_size = round_up(size, I915_GTT_PAGE_SIZE_64K);
- if (NEEDS_COMPACT_PT(vm->i915) && !i915_is_ggtt(vm))
- expected_node_size = round_up(size, I915_GTT_PAGE_SIZE_2M);
- else
- expected_node_size = round_up(size, I915_GTT_PAGE_SIZE_64K);
+ expected_node_size = round_up(size, I915_GTT_PAGE_SIZE_64K);
}
if (vma->size != expected_vma_size || vma->node.size != expected_node_size) {
@@ -1945,361 +1942,6 @@ out_put:
return err;
}
-static int context_sync(struct intel_context *ce)
-{
- struct i915_request *rq;
- long timeout;
-
- rq = intel_context_create_request(ce);
- if (IS_ERR(rq))
- return PTR_ERR(rq);
-
- i915_request_get(rq);
- i915_request_add(rq);
-
- timeout = i915_request_wait(rq, 0, HZ / 5);
- i915_request_put(rq);
-
- return timeout < 0 ? -EIO : 0;
-}
-
-static struct i915_request *
-submit_batch(struct intel_context *ce, u64 addr)
-{
- struct i915_request *rq;
- int err;
-
- rq = intel_context_create_request(ce);
- if (IS_ERR(rq))
- return rq;
-
- err = 0;
- if (rq->engine->emit_init_breadcrumb) /* detect a hang */
- err = rq->engine->emit_init_breadcrumb(rq);
- if (err == 0)
- err = rq->engine->emit_bb_start(rq, addr, 0, 0);
-
- if (err == 0)
- i915_request_get(rq);
- i915_request_add(rq);
-
- return err ? ERR_PTR(err) : rq;
-}
-
-static u32 *spinner(u32 *batch, int i)
-{
- return batch + i * 64 / sizeof(*batch) + 4;
-}
-
-static void end_spin(u32 *batch, int i)
-{
- *spinner(batch, i) = MI_BATCH_BUFFER_END;
- wmb();
-}
-
-static int igt_cs_tlb(void *arg)
-{
- const unsigned int count = PAGE_SIZE / 64;
- const unsigned int chunk_size = count * PAGE_SIZE;
- struct drm_i915_private *i915 = arg;
- struct drm_i915_gem_object *bbe, *act, *out;
- struct i915_gem_engines_iter it;
- struct i915_address_space *vm;
- struct i915_gem_context *ctx;
- struct intel_context *ce;
- struct i915_vma *vma;
- I915_RND_STATE(prng);
- struct file *file;
- unsigned int i;
- u32 *result;
- u32 *batch;
- int err = 0;
-
- /*
- * Our mission here is to fool the hardware to execute something
- * from scratch as it has not seen the batch move (due to missing
- * the TLB invalidate).
- */
-
- file = mock_file(i915);
- if (IS_ERR(file))
- return PTR_ERR(file);
-
- ctx = live_context(i915, file);
- if (IS_ERR(ctx)) {
- err = PTR_ERR(ctx);
- goto out_unlock;
- }
-
- vm = i915_gem_context_get_eb_vm(ctx);
- if (i915_is_ggtt(vm))
- goto out_vm;
-
- /* Create two pages; dummy we prefill the TLB, and intended */
- bbe = i915_gem_object_create_internal(i915, PAGE_SIZE);
- if (IS_ERR(bbe)) {
- err = PTR_ERR(bbe);
- goto out_vm;
- }
-
- batch = i915_gem_object_pin_map_unlocked(bbe, I915_MAP_WC);
- if (IS_ERR(batch)) {
- err = PTR_ERR(batch);
- goto out_put_bbe;
- }
- memset32(batch, MI_BATCH_BUFFER_END, PAGE_SIZE / sizeof(u32));
- i915_gem_object_flush_map(bbe);
- i915_gem_object_unpin_map(bbe);
-
- act = i915_gem_object_create_internal(i915, PAGE_SIZE);
- if (IS_ERR(act)) {
- err = PTR_ERR(act);
- goto out_put_bbe;
- }
-
- /* Track the execution of each request by writing into different slot */
- batch = i915_gem_object_pin_map_unlocked(act, I915_MAP_WC);
- if (IS_ERR(batch)) {
- err = PTR_ERR(batch);
- goto out_put_act;
- }
- for (i = 0; i < count; i++) {
- u32 *cs = batch + i * 64 / sizeof(*cs);
- u64 addr = (vm->total - PAGE_SIZE) + i * sizeof(u32);
-
- GEM_BUG_ON(GRAPHICS_VER(i915) < 6);
- cs[0] = MI_STORE_DWORD_IMM_GEN4;
- if (GRAPHICS_VER(i915) >= 8) {
- cs[1] = lower_32_bits(addr);
- cs[2] = upper_32_bits(addr);
- cs[3] = i;
- cs[4] = MI_NOOP;
- cs[5] = MI_BATCH_BUFFER_START_GEN8;
- } else {
- cs[1] = 0;
- cs[2] = lower_32_bits(addr);
- cs[3] = i;
- cs[4] = MI_NOOP;
- cs[5] = MI_BATCH_BUFFER_START;
- }
- }
-
- out = i915_gem_object_create_internal(i915, PAGE_SIZE);
- if (IS_ERR(out)) {
- err = PTR_ERR(out);
- goto out_put_batch;
- }
- i915_gem_object_set_cache_coherency(out, I915_CACHING_CACHED);
-
- vma = i915_vma_instance(out, vm, NULL);
- if (IS_ERR(vma)) {
- err = PTR_ERR(vma);
- goto out_put_out;
- }
-
- err = i915_vma_pin(vma, 0, 0,
- PIN_USER |
- PIN_OFFSET_FIXED |
- (vm->total - PAGE_SIZE));
- if (err)
- goto out_put_out;
- GEM_BUG_ON(vma->node.start != vm->total - PAGE_SIZE);
-
- result = i915_gem_object_pin_map_unlocked(out, I915_MAP_WB);
- if (IS_ERR(result)) {
- err = PTR_ERR(result);
- goto out_put_out;
- }
-
- for_each_gem_engine(ce, i915_gem_context_lock_engines(ctx), it) {
- IGT_TIMEOUT(end_time);
- unsigned long pass = 0;
-
- if (!intel_engine_can_store_dword(ce->engine))
- continue;
-
- while (!__igt_timeout(end_time, NULL)) {
- struct i915_vm_pt_stash stash = {};
- struct i915_request *rq;
- struct i915_gem_ww_ctx ww;
- struct i915_vma_resource *vma_res;
- u64 offset;
-
- offset = igt_random_offset(&prng,
- 0, vm->total - PAGE_SIZE,
- chunk_size, PAGE_SIZE);
-
- memset32(result, STACK_MAGIC, PAGE_SIZE / sizeof(u32));
-
- vma = i915_vma_instance(bbe, vm, NULL);
- if (IS_ERR(vma)) {
- err = PTR_ERR(vma);
- goto end;
- }
-
- i915_gem_object_lock(bbe, NULL);
- err = i915_vma_get_pages(vma);
- i915_gem_object_unlock(bbe);
- if (err)
- goto end;
-
- vma_res = i915_vma_resource_alloc();
- if (IS_ERR(vma_res)) {
- i915_vma_put_pages(vma);
- err = PTR_ERR(vma_res);
- goto end;
- }
-
- i915_gem_ww_ctx_init(&ww, false);
-retry:
- err = i915_vm_lock_objects(vm, &ww);
- if (err)
- goto end_ww;
-
- err = i915_vm_alloc_pt_stash(vm, &stash, chunk_size);
- if (err)
- goto end_ww;
-
- err = i915_vm_map_pt_stash(vm, &stash);
- if (!err)
- vm->allocate_va_range(vm, &stash, offset, chunk_size);
- i915_vm_free_pt_stash(vm, &stash);
-end_ww:
- if (err == -EDEADLK) {
- err = i915_gem_ww_ctx_backoff(&ww);
- if (!err)
- goto retry;
- }
- i915_gem_ww_ctx_fini(&ww);
- if (err) {
- kfree(vma_res);
- goto end;
- }
-
- i915_vma_resource_init_from_vma(vma_res, vma);
- /* Prime the TLB with the dummy pages */
- for (i = 0; i < count; i++) {
- vma_res->start = offset + i * PAGE_SIZE;
- vm->insert_entries(vm, vma_res, I915_CACHE_NONE,
- 0);
-
- rq = submit_batch(ce, vma_res->start);
- if (IS_ERR(rq)) {
- err = PTR_ERR(rq);
- i915_vma_resource_fini(vma_res);
- kfree(vma_res);
- goto end;
- }
- i915_request_put(rq);
- }
- i915_vma_resource_fini(vma_res);
- i915_vma_put_pages(vma);
-
- err = context_sync(ce);
- if (err) {
- pr_err("%s: dummy setup timed out\n",
- ce->engine->name);
- kfree(vma_res);
- goto end;
- }
-
- vma = i915_vma_instance(act, vm, NULL);
- if (IS_ERR(vma)) {
- kfree(vma_res);
- err = PTR_ERR(vma);
- goto end;
- }
-
- i915_gem_object_lock(act, NULL);
- err = i915_vma_get_pages(vma);
- i915_gem_object_unlock(act);
- if (err) {
- kfree(vma_res);
- goto end;
- }
-
- i915_vma_resource_init_from_vma(vma_res, vma);
- /* Replace the TLB with target batches */
- for (i = 0; i < count; i++) {
- struct i915_request *rq;
- u32 *cs = batch + i * 64 / sizeof(*cs);
- u64 addr;
-
- vma_res->start = offset + i * PAGE_SIZE;
- vm->insert_entries(vm, vma_res, I915_CACHE_NONE, 0);
-
- addr = vma_res->start + i * 64;
- cs[4] = MI_NOOP;
- cs[6] = lower_32_bits(addr);
- cs[7] = upper_32_bits(addr);
- wmb();
-
- rq = submit_batch(ce, addr);
- if (IS_ERR(rq)) {
- err = PTR_ERR(rq);
- i915_vma_resource_fini(vma_res);
- kfree(vma_res);
- goto end;
- }
-
- /* Wait until the context chain has started */
- if (i == 0) {
- while (READ_ONCE(result[i]) &&
- !i915_request_completed(rq))
- cond_resched();
- } else {
- end_spin(batch, i - 1);
- }
-
- i915_request_put(rq);
- }
- end_spin(batch, count - 1);
-
- i915_vma_resource_fini(vma_res);
- kfree(vma_res);
- i915_vma_put_pages(vma);
-
- err = context_sync(ce);
- if (err) {
- pr_err("%s: writes timed out\n",
- ce->engine->name);
- goto end;
- }
-
- for (i = 0; i < count; i++) {
- if (result[i] != i) {
- pr_err("%s: Write lost on pass %lu, at offset %llx, index %d, found %x, expected %x\n",
- ce->engine->name, pass,
- offset, i, result[i], i);
- err = -EINVAL;
- goto end;
- }
- }
-
- vm->clear_range(vm, offset, chunk_size);
- pass++;
- }
- }
-end:
- if (igt_flush_test(i915))
- err = -EIO;
- i915_gem_context_unlock_engines(ctx);
- i915_gem_object_unpin_map(out);
-out_put_out:
- i915_gem_object_put(out);
-out_put_batch:
- i915_gem_object_unpin_map(act);
-out_put_act:
- i915_gem_object_put(act);
-out_put_bbe:
- i915_gem_object_put(bbe);
-out_vm:
- i915_vm_put(vm);
-out_unlock:
- fput(file);
- return err;
-}
-
int i915_gem_gtt_live_selftests(struct drm_i915_private *i915)
{
static const struct i915_subtest tests[] = {
@@ -2319,7 +1961,6 @@ int i915_gem_gtt_live_selftests(struct drm_i915_private *i915)
SUBTEST(igt_ggtt_fill),
SUBTEST(igt_ggtt_page),
SUBTEST(igt_ggtt_misaligned_pin),
- SUBTEST(igt_cs_tlb),
};
GEM_BUG_ON(offset_in_page(to_gt(i915)->ggtt->vm.total));
diff --git a/drivers/gpu/drm/i915/selftests/i915_live_selftests.h b/drivers/gpu/drm/i915/selftests/i915_live_selftests.h
index aaf8a380e5c7..5aee6c9a8295 100644
--- a/drivers/gpu/drm/i915/selftests/i915_live_selftests.h
+++ b/drivers/gpu/drm/i915/selftests/i915_live_selftests.h
@@ -25,6 +25,7 @@ selftest(gt_lrc, intel_lrc_live_selftests)
selftest(gt_mocs, intel_mocs_live_selftests)
selftest(gt_pm, intel_gt_pm_live_selftests)
selftest(gt_heartbeat, intel_heartbeat_live_selftests)
+selftest(gt_tlb, intel_tlb_live_selftests)
selftest(requests, i915_request_live_selftests)
selftest(migrate, intel_migrate_live_selftests)
selftest(active, i915_active_live_selftests)
diff --git a/drivers/gpu/drm/i915/selftests/i915_perf.c b/drivers/gpu/drm/i915/selftests/i915_perf.c
index 429c6d73b159..24dde5531423 100644
--- a/drivers/gpu/drm/i915/selftests/i915_perf.c
+++ b/drivers/gpu/drm/i915/selftests/i915_perf.c
@@ -102,6 +102,12 @@ test_stream(struct i915_perf *perf)
I915_OA_FORMAT_A32u40_A4u32_B8_C8 : I915_OA_FORMAT_C4_B8,
};
struct i915_perf_stream *stream;
+ struct intel_gt *gt;
+
+ if (!props.engine)
+ return NULL;
+
+ gt = props.engine->gt;
if (!oa_config)
return NULL;
@@ -116,12 +122,12 @@ test_stream(struct i915_perf *perf)
stream->perf = perf;
- mutex_lock(&perf->lock);
+ mutex_lock(&gt->perf.lock);
if (i915_oa_stream_init(stream, &param, &props)) {
kfree(stream);
stream = NULL;
}
- mutex_unlock(&perf->lock);
+ mutex_unlock(&gt->perf.lock);
i915_oa_config_put(oa_config);
@@ -130,11 +136,11 @@ test_stream(struct i915_perf *perf)
static void stream_destroy(struct i915_perf_stream *stream)
{
- struct i915_perf *perf = stream->perf;
+ struct intel_gt *gt = stream->engine->gt;
- mutex_lock(&perf->lock);
+ mutex_lock(&gt->perf.lock);
i915_perf_destroy_locked(stream);
- mutex_unlock(&perf->lock);
+ mutex_unlock(&gt->perf.lock);
}
static int live_sanitycheck(void *arg)
diff --git a/drivers/gpu/drm/i915/selftests/i915_request.c b/drivers/gpu/drm/i915/selftests/i915_request.c
index 818a4909c1f3..a9b79888c193 100644
--- a/drivers/gpu/drm/i915/selftests/i915_request.c
+++ b/drivers/gpu/drm/i915/selftests/i915_request.c
@@ -299,9 +299,18 @@ __live_request_alloc(struct intel_context *ce)
return intel_context_create_request(ce);
}
-static int __igt_breadcrumbs_smoketest(void *arg)
+struct smoke_thread {
+ struct kthread_worker *worker;
+ struct kthread_work work;
+ struct smoketest *t;
+ bool stop;
+ int result;
+};
+
+static void __igt_breadcrumbs_smoketest(struct kthread_work *work)
{
- struct smoketest *t = arg;
+ struct smoke_thread *thread = container_of(work, typeof(*thread), work);
+ struct smoketest *t = thread->t;
const unsigned int max_batch = min(t->ncontexts, t->max_batch) - 1;
const unsigned int total = 4 * t->ncontexts + 1;
unsigned int num_waits = 0, num_fences = 0;
@@ -320,8 +329,10 @@ static int __igt_breadcrumbs_smoketest(void *arg)
*/
requests = kcalloc(total, sizeof(*requests), GFP_KERNEL);
- if (!requests)
- return -ENOMEM;
+ if (!requests) {
+ thread->result = -ENOMEM;
+ return;
+ }
order = i915_random_order(total, &prng);
if (!order) {
@@ -329,7 +340,7 @@ static int __igt_breadcrumbs_smoketest(void *arg)
goto out_requests;
}
- while (!kthread_should_stop()) {
+ while (!READ_ONCE(thread->stop)) {
struct i915_sw_fence *submit, *wait;
unsigned int n, count;
@@ -437,7 +448,7 @@ static int __igt_breadcrumbs_smoketest(void *arg)
kfree(order);
out_requests:
kfree(requests);
- return err;
+ thread->result = err;
}
static int mock_breadcrumbs_smoketest(void *arg)
@@ -450,7 +461,7 @@ static int mock_breadcrumbs_smoketest(void *arg)
.request_alloc = __mock_request_alloc
};
unsigned int ncpus = num_online_cpus();
- struct task_struct **threads;
+ struct smoke_thread *threads;
unsigned int n;
int ret = 0;
@@ -479,28 +490,37 @@ static int mock_breadcrumbs_smoketest(void *arg)
}
for (n = 0; n < ncpus; n++) {
- threads[n] = kthread_run(__igt_breadcrumbs_smoketest,
- &t, "igt/%d", n);
- if (IS_ERR(threads[n])) {
- ret = PTR_ERR(threads[n]);
+ struct kthread_worker *worker;
+
+ worker = kthread_create_worker(0, "igt/%d", n);
+ if (IS_ERR(worker)) {
+ ret = PTR_ERR(worker);
ncpus = n;
break;
}
- get_task_struct(threads[n]);
+ threads[n].worker = worker;
+ threads[n].t = &t;
+ threads[n].stop = false;
+ threads[n].result = 0;
+
+ kthread_init_work(&threads[n].work,
+ __igt_breadcrumbs_smoketest);
+ kthread_queue_work(worker, &threads[n].work);
}
- yield(); /* start all threads before we begin */
msleep(jiffies_to_msecs(i915_selftest.timeout_jiffies));
for (n = 0; n < ncpus; n++) {
int err;
- err = kthread_stop(threads[n]);
+ WRITE_ONCE(threads[n].stop, true);
+ kthread_flush_work(&threads[n].work);
+ err = READ_ONCE(threads[n].result);
if (err < 0 && !ret)
ret = err;
- put_task_struct(threads[n]);
+ kthread_destroy_worker(threads[n].worker);
}
pr_info("Completed %lu waits for %lu fence across %d cpus\n",
atomic_long_read(&t.num_waits),
@@ -937,18 +957,18 @@ static int live_cancel_request(void *arg)
return 0;
}
-static struct i915_vma *empty_batch(struct drm_i915_private *i915)
+static struct i915_vma *empty_batch(struct intel_gt *gt)
{
struct drm_i915_gem_object *obj;
struct i915_vma *vma;
u32 *cmd;
int err;
- obj = i915_gem_object_create_internal(i915, PAGE_SIZE);
+ obj = i915_gem_object_create_internal(gt->i915, PAGE_SIZE);
if (IS_ERR(obj))
return ERR_CAST(obj);
- cmd = i915_gem_object_pin_map_unlocked(obj, I915_MAP_WB);
+ cmd = i915_gem_object_pin_map_unlocked(obj, I915_MAP_WC);
if (IS_ERR(cmd)) {
err = PTR_ERR(cmd);
goto err;
@@ -959,15 +979,15 @@ static struct i915_vma *empty_batch(struct drm_i915_private *i915)
__i915_gem_object_flush_map(obj, 0, 64);
i915_gem_object_unpin_map(obj);
- intel_gt_chipset_flush(to_gt(i915));
+ intel_gt_chipset_flush(gt);
- vma = i915_vma_instance(obj, &to_gt(i915)->ggtt->vm, NULL);
+ vma = i915_vma_instance(obj, gt->vm, NULL);
if (IS_ERR(vma)) {
err = PTR_ERR(vma);
goto err;
}
- err = i915_vma_pin(vma, 0, 0, PIN_USER | PIN_GLOBAL);
+ err = i915_vma_pin(vma, 0, 0, PIN_USER);
if (err)
goto err;
@@ -985,6 +1005,14 @@ err:
return ERR_PTR(err);
}
+static int emit_bb_start(struct i915_request *rq, struct i915_vma *batch)
+{
+ return rq->engine->emit_bb_start(rq,
+ i915_vma_offset(batch),
+ i915_vma_size(batch),
+ 0);
+}
+
static struct i915_request *
empty_request(struct intel_engine_cs *engine,
struct i915_vma *batch)
@@ -996,10 +1024,7 @@ empty_request(struct intel_engine_cs *engine,
if (IS_ERR(request))
return request;
- err = engine->emit_bb_start(request,
- batch->node.start,
- batch->node.size,
- I915_DISPATCH_SECURE);
+ err = emit_bb_start(request, batch);
if (err)
goto out_request;
@@ -1014,8 +1039,7 @@ static int live_empty_request(void *arg)
struct drm_i915_private *i915 = arg;
struct intel_engine_cs *engine;
struct igt_live_test t;
- struct i915_vma *batch;
- int err = 0;
+ int err;
/*
* Submit various sized batches of empty requests, to each engine
@@ -1023,16 +1047,17 @@ static int live_empty_request(void *arg)
* the overhead of submitting requests to the hardware.
*/
- batch = empty_batch(i915);
- if (IS_ERR(batch))
- return PTR_ERR(batch);
-
for_each_uabi_engine(engine, i915) {
IGT_TIMEOUT(end_time);
struct i915_request *request;
+ struct i915_vma *batch;
unsigned long n, prime;
ktime_t times[2] = {};
+ batch = empty_batch(engine->gt);
+ if (IS_ERR(batch))
+ return PTR_ERR(batch);
+
err = igt_live_test_begin(&t, i915, __func__, engine->name);
if (err)
goto out_batch;
@@ -1080,27 +1105,29 @@ static int live_empty_request(void *arg)
engine->name,
ktime_to_ns(times[0]),
prime, div64_u64(ktime_to_ns(times[1]), prime));
+out_batch:
+ i915_vma_unpin(batch);
+ i915_vma_put(batch);
+ if (err)
+ break;
}
-out_batch:
- i915_vma_unpin(batch);
- i915_vma_put(batch);
return err;
}
-static struct i915_vma *recursive_batch(struct drm_i915_private *i915)
+static struct i915_vma *recursive_batch(struct intel_gt *gt)
{
struct drm_i915_gem_object *obj;
- const int ver = GRAPHICS_VER(i915);
+ const int ver = GRAPHICS_VER(gt->i915);
struct i915_vma *vma;
u32 *cmd;
int err;
- obj = i915_gem_object_create_internal(i915, PAGE_SIZE);
+ obj = i915_gem_object_create_internal(gt->i915, PAGE_SIZE);
if (IS_ERR(obj))
return ERR_CAST(obj);
- vma = i915_vma_instance(obj, to_gt(i915)->vm, NULL);
+ vma = i915_vma_instance(obj, gt->vm, NULL);
if (IS_ERR(vma)) {
err = PTR_ERR(vma);
goto err;
@@ -1118,21 +1145,21 @@ static struct i915_vma *recursive_batch(struct drm_i915_private *i915)
if (ver >= 8) {
*cmd++ = MI_BATCH_BUFFER_START | 1 << 8 | 1;
- *cmd++ = lower_32_bits(vma->node.start);
- *cmd++ = upper_32_bits(vma->node.start);
+ *cmd++ = lower_32_bits(i915_vma_offset(vma));
+ *cmd++ = upper_32_bits(i915_vma_offset(vma));
} else if (ver >= 6) {
*cmd++ = MI_BATCH_BUFFER_START | 1 << 8;
- *cmd++ = lower_32_bits(vma->node.start);
+ *cmd++ = lower_32_bits(i915_vma_offset(vma));
} else {
*cmd++ = MI_BATCH_BUFFER_START | MI_BATCH_GTT;
- *cmd++ = lower_32_bits(vma->node.start);
+ *cmd++ = lower_32_bits(i915_vma_offset(vma));
}
*cmd++ = MI_BATCH_BUFFER_END; /* terminate early in case of error */
__i915_gem_object_flush_map(obj, 0, 64);
i915_gem_object_unpin_map(obj);
- intel_gt_chipset_flush(to_gt(i915));
+ intel_gt_chipset_flush(gt);
return vma;
@@ -1166,7 +1193,6 @@ static int live_all_engines(void *arg)
struct intel_engine_cs *engine;
struct i915_request **request;
struct igt_live_test t;
- struct i915_vma *batch;
unsigned int idx;
int err;
@@ -1184,44 +1210,44 @@ static int live_all_engines(void *arg)
if (err)
goto out_free;
- batch = recursive_batch(i915);
- if (IS_ERR(batch)) {
- err = PTR_ERR(batch);
- pr_err("%s: Unable to create batch, err=%d\n", __func__, err);
- goto out_free;
- }
-
- i915_vma_lock(batch);
-
idx = 0;
for_each_uabi_engine(engine, i915) {
+ struct i915_vma *batch;
+
+ batch = recursive_batch(engine->gt);
+ if (IS_ERR(batch)) {
+ err = PTR_ERR(batch);
+ pr_err("%s: Unable to create batch, err=%d\n",
+ __func__, err);
+ goto out_free;
+ }
+
+ i915_vma_lock(batch);
request[idx] = intel_engine_create_kernel_request(engine);
if (IS_ERR(request[idx])) {
err = PTR_ERR(request[idx]);
pr_err("%s: Request allocation failed with err=%d\n",
__func__, err);
- goto out_request;
+ goto out_unlock;
}
+ GEM_BUG_ON(request[idx]->context->vm != batch->vm);
- err = i915_request_await_object(request[idx], batch->obj, 0);
- if (err == 0)
- err = i915_vma_move_to_active(batch, request[idx], 0);
+ err = i915_vma_move_to_active(batch, request[idx], 0);
GEM_BUG_ON(err);
- err = engine->emit_bb_start(request[idx],
- batch->node.start,
- batch->node.size,
- 0);
+ err = emit_bb_start(request[idx], batch);
GEM_BUG_ON(err);
request[idx]->batch = batch;
i915_request_get(request[idx]);
i915_request_add(request[idx]);
idx++;
+out_unlock:
+ i915_vma_unlock(batch);
+ if (err)
+ goto out_request;
}
- i915_vma_unlock(batch);
-
idx = 0;
for_each_uabi_engine(engine, i915) {
if (i915_request_completed(request[idx])) {
@@ -1233,17 +1259,23 @@ static int live_all_engines(void *arg)
idx++;
}
- err = recursive_batch_resolve(batch);
- if (err) {
- pr_err("%s: failed to resolve batch, err=%d\n", __func__, err);
- goto out_request;
+ idx = 0;
+ for_each_uabi_engine(engine, i915) {
+ err = recursive_batch_resolve(request[idx]->batch);
+ if (err) {
+ pr_err("%s: failed to resolve batch, err=%d\n",
+ __func__, err);
+ goto out_request;
+ }
+ idx++;
}
idx = 0;
for_each_uabi_engine(engine, i915) {
+ struct i915_request *rq = request[idx];
long timeout;
- timeout = i915_request_wait(request[idx], 0,
+ timeout = i915_request_wait(rq, 0,
MAX_SCHEDULE_TIMEOUT);
if (timeout < 0) {
err = timeout;
@@ -1252,8 +1284,10 @@ static int live_all_engines(void *arg)
goto out_request;
}
- GEM_BUG_ON(!i915_request_completed(request[idx]));
- i915_request_put(request[idx]);
+ GEM_BUG_ON(!i915_request_completed(rq));
+ i915_vma_unpin(rq->batch);
+ i915_vma_put(rq->batch);
+ i915_request_put(rq);
request[idx] = NULL;
idx++;
}
@@ -1263,12 +1297,18 @@ static int live_all_engines(void *arg)
out_request:
idx = 0;
for_each_uabi_engine(engine, i915) {
- if (request[idx])
- i915_request_put(request[idx]);
+ struct i915_request *rq = request[idx];
+
+ if (!rq)
+ continue;
+
+ if (rq->batch) {
+ i915_vma_unpin(rq->batch);
+ i915_vma_put(rq->batch);
+ }
+ i915_request_put(rq);
idx++;
}
- i915_vma_unpin(batch);
- i915_vma_put(batch);
out_free:
kfree(request);
return err;
@@ -1304,7 +1344,7 @@ static int live_sequential_engines(void *arg)
for_each_uabi_engine(engine, i915) {
struct i915_vma *batch;
- batch = recursive_batch(i915);
+ batch = recursive_batch(engine->gt);
if (IS_ERR(batch)) {
err = PTR_ERR(batch);
pr_err("%s: Unable to create batch for %s, err=%d\n",
@@ -1320,6 +1360,7 @@ static int live_sequential_engines(void *arg)
__func__, engine->name, err);
goto out_unlock;
}
+ GEM_BUG_ON(request[idx]->context->vm != batch->vm);
if (prev) {
err = i915_request_await_dma_fence(request[idx],
@@ -1332,16 +1373,10 @@ static int live_sequential_engines(void *arg)
}
}
- err = i915_request_await_object(request[idx],
- batch->obj, false);
- if (err == 0)
- err = i915_vma_move_to_active(batch, request[idx], 0);
+ err = i915_vma_move_to_active(batch, request[idx], 0);
GEM_BUG_ON(err);
- err = engine->emit_bb_start(request[idx],
- batch->node.start,
- batch->node.size,
- 0);
+ err = emit_bb_start(request[idx], batch);
GEM_BUG_ON(err);
request[idx]->batch = batch;
@@ -1419,9 +1454,18 @@ out_free:
return err;
}
-static int __live_parallel_engine1(void *arg)
+struct parallel_thread {
+ struct kthread_worker *worker;
+ struct kthread_work work;
+ struct intel_engine_cs *engine;
+ int result;
+};
+
+static void __live_parallel_engine1(struct kthread_work *work)
{
- struct intel_engine_cs *engine = arg;
+ struct parallel_thread *thread =
+ container_of(work, typeof(*thread), work);
+ struct intel_engine_cs *engine = thread->engine;
IGT_TIMEOUT(end_time);
unsigned long count;
int err = 0;
@@ -1452,12 +1496,14 @@ static int __live_parallel_engine1(void *arg)
intel_engine_pm_put(engine);
pr_info("%s: %lu request + sync\n", engine->name, count);
- return err;
+ thread->result = err;
}
-static int __live_parallel_engineN(void *arg)
+static void __live_parallel_engineN(struct kthread_work *work)
{
- struct intel_engine_cs *engine = arg;
+ struct parallel_thread *thread =
+ container_of(work, typeof(*thread), work);
+ struct intel_engine_cs *engine = thread->engine;
IGT_TIMEOUT(end_time);
unsigned long count;
int err = 0;
@@ -1479,7 +1525,7 @@ static int __live_parallel_engineN(void *arg)
intel_engine_pm_put(engine);
pr_info("%s: %lu requests\n", engine->name, count);
- return err;
+ thread->result = err;
}
static bool wake_all(struct drm_i915_private *i915)
@@ -1505,9 +1551,11 @@ static int wait_for_all(struct drm_i915_private *i915)
return -ETIME;
}
-static int __live_parallel_spin(void *arg)
+static void __live_parallel_spin(struct kthread_work *work)
{
- struct intel_engine_cs *engine = arg;
+ struct parallel_thread *thread =
+ container_of(work, typeof(*thread), work);
+ struct intel_engine_cs *engine = thread->engine;
struct igt_spinner spin;
struct i915_request *rq;
int err = 0;
@@ -1520,7 +1568,8 @@ static int __live_parallel_spin(void *arg)
if (igt_spinner_init(&spin, engine->gt)) {
wake_all(engine->i915);
- return -ENOMEM;
+ thread->result = -ENOMEM;
+ return;
}
intel_engine_pm_get(engine);
@@ -1553,22 +1602,22 @@ static int __live_parallel_spin(void *arg)
out_spin:
igt_spinner_fini(&spin);
- return err;
+ thread->result = err;
}
static int live_parallel_engines(void *arg)
{
struct drm_i915_private *i915 = arg;
- static int (* const func[])(void *arg) = {
+ static void (* const func[])(struct kthread_work *) = {
__live_parallel_engine1,
__live_parallel_engineN,
__live_parallel_spin,
NULL,
};
const unsigned int nengines = num_uabi_engines(i915);
+ struct parallel_thread *threads;
struct intel_engine_cs *engine;
- int (* const *fn)(void *arg);
- struct task_struct **tsk;
+ void (* const *fn)(struct kthread_work *);
int err = 0;
/*
@@ -1576,8 +1625,8 @@ static int live_parallel_engines(void *arg)
* tests that we load up the system maximally.
*/
- tsk = kcalloc(nengines, sizeof(*tsk), GFP_KERNEL);
- if (!tsk)
+ threads = kcalloc(nengines, sizeof(*threads), GFP_KERNEL);
+ if (!threads)
return -ENOMEM;
for (fn = func; !err && *fn; fn++) {
@@ -1594,37 +1643,44 @@ static int live_parallel_engines(void *arg)
idx = 0;
for_each_uabi_engine(engine, i915) {
- tsk[idx] = kthread_run(*fn, engine,
- "igt/parallel:%s",
- engine->name);
- if (IS_ERR(tsk[idx])) {
- err = PTR_ERR(tsk[idx]);
+ struct kthread_worker *worker;
+
+ worker = kthread_create_worker(0, "igt/parallel:%s",
+ engine->name);
+ if (IS_ERR(worker)) {
+ err = PTR_ERR(worker);
break;
}
- get_task_struct(tsk[idx++]);
- }
- yield(); /* start all threads before we kthread_stop() */
+ threads[idx].worker = worker;
+ threads[idx].result = 0;
+ threads[idx].engine = engine;
+
+ kthread_init_work(&threads[idx].work, *fn);
+ kthread_queue_work(worker, &threads[idx].work);
+ idx++;
+ }
idx = 0;
for_each_uabi_engine(engine, i915) {
int status;
- if (IS_ERR(tsk[idx]))
+ if (!threads[idx].worker)
break;
- status = kthread_stop(tsk[idx]);
+ kthread_flush_work(&threads[idx].work);
+ status = READ_ONCE(threads[idx].result);
if (status && !err)
err = status;
- put_task_struct(tsk[idx++]);
+ kthread_destroy_worker(threads[idx++].worker);
}
if (igt_live_test_end(&t))
err = -EIO;
}
- kfree(tsk);
+ kfree(threads);
return err;
}
@@ -1669,10 +1725,11 @@ static int live_breadcrumbs_smoketest(void *arg)
{
struct drm_i915_private *i915 = arg;
const unsigned int nengines = num_uabi_engines(i915);
- const unsigned int ncpus = num_online_cpus();
+ const unsigned int ncpus = /* saturate with nengines * ncpus */
+ max_t(int, 2, DIV_ROUND_UP(num_online_cpus(), nengines));
unsigned long num_waits, num_fences;
struct intel_engine_cs *engine;
- struct task_struct **threads;
+ struct smoke_thread *threads;
struct igt_live_test live;
intel_wakeref_t wakeref;
struct smoketest *smoke;
@@ -1741,28 +1798,31 @@ static int live_breadcrumbs_smoketest(void *arg)
goto out_flush;
}
/* One ring interleaved between requests from all cpus */
- smoke[idx].max_batch /= num_online_cpus() + 1;
+ smoke[idx].max_batch /= ncpus + 1;
pr_debug("Limiting batches to %d requests on %s\n",
smoke[idx].max_batch, engine->name);
for (n = 0; n < ncpus; n++) {
- struct task_struct *tsk;
+ unsigned int i = idx * ncpus + n;
+ struct kthread_worker *worker;
- tsk = kthread_run(__igt_breadcrumbs_smoketest,
- &smoke[idx], "igt/%d.%d", idx, n);
- if (IS_ERR(tsk)) {
- ret = PTR_ERR(tsk);
+ worker = kthread_create_worker(0, "igt/%d.%d", idx, n);
+ if (IS_ERR(worker)) {
+ ret = PTR_ERR(worker);
goto out_flush;
}
- get_task_struct(tsk);
- threads[idx * ncpus + n] = tsk;
+ threads[i].worker = worker;
+ threads[i].t = &smoke[idx];
+
+ kthread_init_work(&threads[i].work,
+ __igt_breadcrumbs_smoketest);
+ kthread_queue_work(worker, &threads[i].work);
}
idx++;
}
- yield(); /* start all threads before we begin */
msleep(jiffies_to_msecs(i915_selftest.timeout_jiffies));
out_flush:
@@ -1771,17 +1831,19 @@ out_flush:
num_fences = 0;
for_each_uabi_engine(engine, i915) {
for (n = 0; n < ncpus; n++) {
- struct task_struct *tsk = threads[idx * ncpus + n];
+ unsigned int i = idx * ncpus + n;
int err;
- if (!tsk)
+ if (!threads[i].worker)
continue;
- err = kthread_stop(tsk);
+ WRITE_ONCE(threads[i].stop, true);
+ kthread_flush_work(&threads[i].work);
+ err = READ_ONCE(threads[i].result);
if (err < 0 && !ret)
ret = err;
- put_task_struct(tsk);
+ kthread_destroy_worker(threads[i].worker);
}
num_waits += atomic_long_read(&smoke[idx].num_waits);
@@ -2891,9 +2953,18 @@ out:
return err;
}
-static int p_sync0(void *arg)
+struct p_thread {
+ struct perf_stats p;
+ struct kthread_worker *worker;
+ struct kthread_work work;
+ struct intel_engine_cs *engine;
+ int result;
+};
+
+static void p_sync0(struct kthread_work *work)
{
- struct perf_stats *p = arg;
+ struct p_thread *thread = container_of(work, typeof(*thread), work);
+ struct perf_stats *p = &thread->p;
struct intel_engine_cs *engine = p->engine;
struct intel_context *ce;
IGT_TIMEOUT(end_time);
@@ -2902,13 +2973,16 @@ static int p_sync0(void *arg)
int err = 0;
ce = intel_context_create(engine);
- if (IS_ERR(ce))
- return PTR_ERR(ce);
+ if (IS_ERR(ce)) {
+ thread->result = PTR_ERR(ce);
+ return;
+ }
err = intel_context_pin(ce);
if (err) {
intel_context_put(ce);
- return err;
+ thread->result = err;
+ return;
}
if (intel_engine_supports_stats(engine)) {
@@ -2958,12 +3032,13 @@ static int p_sync0(void *arg)
intel_context_unpin(ce);
intel_context_put(ce);
- return err;
+ thread->result = err;
}
-static int p_sync1(void *arg)
+static void p_sync1(struct kthread_work *work)
{
- struct perf_stats *p = arg;
+ struct p_thread *thread = container_of(work, typeof(*thread), work);
+ struct perf_stats *p = &thread->p;
struct intel_engine_cs *engine = p->engine;
struct i915_request *prev = NULL;
struct intel_context *ce;
@@ -2973,13 +3048,16 @@ static int p_sync1(void *arg)
int err = 0;
ce = intel_context_create(engine);
- if (IS_ERR(ce))
- return PTR_ERR(ce);
+ if (IS_ERR(ce)) {
+ thread->result = PTR_ERR(ce);
+ return;
+ }
err = intel_context_pin(ce);
if (err) {
intel_context_put(ce);
- return err;
+ thread->result = err;
+ return;
}
if (intel_engine_supports_stats(engine)) {
@@ -3031,12 +3109,13 @@ static int p_sync1(void *arg)
intel_context_unpin(ce);
intel_context_put(ce);
- return err;
+ thread->result = err;
}
-static int p_many(void *arg)
+static void p_many(struct kthread_work *work)
{
- struct perf_stats *p = arg;
+ struct p_thread *thread = container_of(work, typeof(*thread), work);
+ struct perf_stats *p = &thread->p;
struct intel_engine_cs *engine = p->engine;
struct intel_context *ce;
IGT_TIMEOUT(end_time);
@@ -3045,13 +3124,16 @@ static int p_many(void *arg)
bool busy;
ce = intel_context_create(engine);
- if (IS_ERR(ce))
- return PTR_ERR(ce);
+ if (IS_ERR(ce)) {
+ thread->result = PTR_ERR(ce);
+ return;
+ }
err = intel_context_pin(ce);
if (err) {
intel_context_put(ce);
- return err;
+ thread->result = err;
+ return;
}
if (intel_engine_supports_stats(engine)) {
@@ -3092,26 +3174,23 @@ static int p_many(void *arg)
intel_context_unpin(ce);
intel_context_put(ce);
- return err;
+ thread->result = err;
}
static int perf_parallel_engines(void *arg)
{
struct drm_i915_private *i915 = arg;
- static int (* const func[])(void *arg) = {
+ static void (* const func[])(struct kthread_work *) = {
p_sync0,
p_sync1,
p_many,
NULL,
};
const unsigned int nengines = num_uabi_engines(i915);
+ void (* const *fn)(struct kthread_work *);
struct intel_engine_cs *engine;
- int (* const *fn)(void *arg);
struct pm_qos_request qos;
- struct {
- struct perf_stats p;
- struct task_struct *tsk;
- } *engines;
+ struct p_thread *engines;
int err = 0;
engines = kcalloc(nengines, sizeof(*engines), GFP_KERNEL);
@@ -3134,36 +3213,45 @@ static int perf_parallel_engines(void *arg)
idx = 0;
for_each_uabi_engine(engine, i915) {
+ struct kthread_worker *worker;
+
intel_engine_pm_get(engine);
memset(&engines[idx].p, 0, sizeof(engines[idx].p));
- engines[idx].p.engine = engine;
- engines[idx].tsk = kthread_run(*fn, &engines[idx].p,
- "igt:%s", engine->name);
- if (IS_ERR(engines[idx].tsk)) {
- err = PTR_ERR(engines[idx].tsk);
+ worker = kthread_create_worker(0, "igt:%s",
+ engine->name);
+ if (IS_ERR(worker)) {
+ err = PTR_ERR(worker);
intel_engine_pm_put(engine);
break;
}
- get_task_struct(engines[idx++].tsk);
- }
+ engines[idx].worker = worker;
+ engines[idx].result = 0;
+ engines[idx].p.engine = engine;
+ engines[idx].engine = engine;
- yield(); /* start all threads before we kthread_stop() */
+ kthread_init_work(&engines[idx].work, *fn);
+ kthread_queue_work(worker, &engines[idx].work);
+ idx++;
+ }
idx = 0;
for_each_uabi_engine(engine, i915) {
int status;
- if (IS_ERR(engines[idx].tsk))
+ if (!engines[idx].worker)
break;
- status = kthread_stop(engines[idx].tsk);
+ kthread_flush_work(&engines[idx].work);
+ status = READ_ONCE(engines[idx].result);
if (status && !err)
err = status;
intel_engine_pm_put(engine);
- put_task_struct(engines[idx++].tsk);
+
+ kthread_destroy_worker(engines[idx].worker);
+ idx++;
}
if (igt_live_test_end(&t))
diff --git a/drivers/gpu/drm/i915/selftests/igt_flush_test.c b/drivers/gpu/drm/i915/selftests/igt_flush_test.c
index b484e12df417..29110abb4fe0 100644
--- a/drivers/gpu/drm/i915/selftests/igt_flush_test.c
+++ b/drivers/gpu/drm/i915/selftests/igt_flush_test.c
@@ -14,21 +14,27 @@
int igt_flush_test(struct drm_i915_private *i915)
{
- struct intel_gt *gt = to_gt(i915);
- int ret = intel_gt_is_wedged(gt) ? -EIO : 0;
+ struct intel_gt *gt;
+ unsigned int i;
+ int ret = 0;
- cond_resched();
+ for_each_gt(gt, i915, i) {
+ if (intel_gt_is_wedged(gt))
+ ret = -EIO;
- if (intel_gt_wait_for_idle(gt, HZ * 3) == -ETIME) {
- pr_err("%pS timed out, cancelling all further testing.\n",
- __builtin_return_address(0));
+ cond_resched();
- GEM_TRACE("%pS timed out.\n",
- __builtin_return_address(0));
- GEM_TRACE_DUMP();
+ if (intel_gt_wait_for_idle(gt, HZ * 3) == -ETIME) {
+ pr_err("%pS timed out, cancelling all further testing.\n",
+ __builtin_return_address(0));
- intel_gt_set_wedged(gt);
- ret = -EIO;
+ GEM_TRACE("%pS timed out.\n",
+ __builtin_return_address(0));
+ GEM_TRACE_DUMP();
+
+ intel_gt_set_wedged(gt);
+ ret = -EIO;
+ }
}
return ret;
diff --git a/drivers/gpu/drm/i915/selftests/igt_spinner.c b/drivers/gpu/drm/i915/selftests/igt_spinner.c
index 0c22594ae274..618d9386d554 100644
--- a/drivers/gpu/drm/i915/selftests/igt_spinner.c
+++ b/drivers/gpu/drm/i915/selftests/igt_spinner.c
@@ -116,23 +116,7 @@ static unsigned int seqno_offset(u64 fence)
static u64 hws_address(const struct i915_vma *hws,
const struct i915_request *rq)
{
- return hws->node.start + seqno_offset(rq->fence.context);
-}
-
-static int move_to_active(struct i915_vma *vma,
- struct i915_request *rq,
- unsigned int flags)
-{
- int err;
-
- i915_vma_lock(vma);
- err = i915_request_await_object(rq, vma->obj,
- flags & EXEC_OBJECT_WRITE);
- if (err == 0)
- err = i915_vma_move_to_active(vma, rq, flags);
- i915_vma_unlock(vma);
-
- return err;
+ return i915_vma_offset(hws) + seqno_offset(rq->fence.context);
}
struct i915_request *
@@ -165,11 +149,11 @@ igt_spinner_create_request(struct igt_spinner *spin,
if (IS_ERR(rq))
return ERR_CAST(rq);
- err = move_to_active(vma, rq, 0);
+ err = igt_vma_move_to_active_unlocked(vma, rq, 0);
if (err)
goto cancel_rq;
- err = move_to_active(hws, rq, 0);
+ err = igt_vma_move_to_active_unlocked(hws, rq, 0);
if (err)
goto cancel_rq;
@@ -203,8 +187,8 @@ igt_spinner_create_request(struct igt_spinner *spin,
*batch++ = MI_BATCH_BUFFER_START;
else
*batch++ = MI_BATCH_BUFFER_START | MI_BATCH_GTT;
- *batch++ = lower_32_bits(vma->node.start);
- *batch++ = upper_32_bits(vma->node.start);
+ *batch++ = lower_32_bits(i915_vma_offset(vma));
+ *batch++ = upper_32_bits(i915_vma_offset(vma));
*batch++ = MI_BATCH_BUFFER_END; /* not reached */
@@ -219,7 +203,7 @@ igt_spinner_create_request(struct igt_spinner *spin,
flags = 0;
if (GRAPHICS_VER(rq->engine->i915) <= 5)
flags |= I915_DISPATCH_SECURE;
- err = engine->emit_bb_start(rq, vma->node.start, PAGE_SIZE, flags);
+ err = engine->emit_bb_start(rq, i915_vma_offset(vma), PAGE_SIZE, flags);
cancel_rq:
if (err) {
diff --git a/drivers/gpu/drm/i915/selftests/intel_scheduler_helpers.c b/drivers/gpu/drm/i915/selftests/intel_scheduler_helpers.c
index 310fb83c527e..2990dd4d4a0d 100644
--- a/drivers/gpu/drm/i915/selftests/intel_scheduler_helpers.c
+++ b/drivers/gpu/drm/i915/selftests/intel_scheduler_helpers.c
@@ -28,8 +28,7 @@ struct intel_engine_cs *intel_selftest_find_any_engine(struct intel_gt *gt)
int intel_selftest_modify_policy(struct intel_engine_cs *engine,
struct intel_selftest_saved_policy *saved,
- u32 modify_type)
-
+ enum selftest_scheduler_modify modify_type)
{
int err;
diff --git a/drivers/gpu/drm/i915/selftests/intel_uncore.c b/drivers/gpu/drm/i915/selftests/intel_uncore.c
index fda9bb79c049..e4281508d580 100644
--- a/drivers/gpu/drm/i915/selftests/intel_uncore.c
+++ b/drivers/gpu/drm/i915/selftests/intel_uncore.c
@@ -70,6 +70,8 @@ static int intel_shadow_table_check(void)
{ gen12_shadowed_regs, ARRAY_SIZE(gen12_shadowed_regs) },
{ dg2_shadowed_regs, ARRAY_SIZE(dg2_shadowed_regs) },
{ pvc_shadowed_regs, ARRAY_SIZE(pvc_shadowed_regs) },
+ { mtl_shadowed_regs, ARRAY_SIZE(mtl_shadowed_regs) },
+ { xelpmp_shadowed_regs, ARRAY_SIZE(xelpmp_shadowed_regs) },
};
const struct i915_range *range;
unsigned int i, j;
@@ -117,6 +119,8 @@ int intel_uncore_mock_selftests(void)
{ __gen12_fw_ranges, ARRAY_SIZE(__gen12_fw_ranges), true },
{ __xehp_fw_ranges, ARRAY_SIZE(__xehp_fw_ranges), true },
{ __pvc_fw_ranges, ARRAY_SIZE(__pvc_fw_ranges), true },
+ { __mtl_fw_ranges, ARRAY_SIZE(__mtl_fw_ranges), true },
+ { __xelpmp_fw_ranges, ARRAY_SIZE(__xelpmp_fw_ranges), true },
};
int err, i;
diff --git a/drivers/gpu/drm/i915/selftests/mock_gem_device.c b/drivers/gpu/drm/i915/selftests/mock_gem_device.c
index fff11c90f1fa..f6a7c0bd2955 100644
--- a/drivers/gpu/drm/i915/selftests/mock_gem_device.c
+++ b/drivers/gpu/drm/i915/selftests/mock_gem_device.c
@@ -67,7 +67,6 @@ static void mock_device_release(struct drm_device *dev)
intel_gt_driver_remove(to_gt(i915));
i915_gem_drain_workqueue(i915);
- i915_gem_drain_freed_objects(i915);
mock_fini_ggtt(to_gt(i915)->ggtt);
destroy_workqueue(i915->wq);
diff --git a/drivers/gpu/drm/i915/selftests/mock_gtt.c b/drivers/gpu/drm/i915/selftests/mock_gtt.c
index 568840e7ca66..ece97e4faacb 100644
--- a/drivers/gpu/drm/i915/selftests/mock_gtt.c
+++ b/drivers/gpu/drm/i915/selftests/mock_gtt.c
@@ -112,7 +112,7 @@ void mock_init_ggtt(struct intel_gt *gt)
ggtt->vm.i915 = gt->i915;
ggtt->vm.is_ggtt = true;
- ggtt->gmadr = (struct resource) DEFINE_RES_MEM(0, 2048 * PAGE_SIZE);
+ ggtt->gmadr = DEFINE_RES_MEM(0, 2048 * PAGE_SIZE);
ggtt->mappable_end = resource_size(&ggtt->gmadr);
ggtt->vm.total = 4096 * PAGE_SIZE;
diff --git a/drivers/gpu/drm/i915/selftests/mock_region.c b/drivers/gpu/drm/i915/selftests/mock_region.c
index bac21fe84ca5..6324eb32d4dd 100644
--- a/drivers/gpu/drm/i915/selftests/mock_region.c
+++ b/drivers/gpu/drm/i915/selftests/mock_region.c
@@ -41,7 +41,7 @@ static int mock_region_get_pages(struct drm_i915_gem_object *obj)
}
pages = &obj->mm.rsgt->table;
- __i915_gem_object_set_pages(obj, pages, i915_sg_dma_sizes(pages->sgl));
+ __i915_gem_object_set_pages(obj, pages);
return 0;
diff --git a/drivers/gpu/drm/i915/selftests/scatterlist.c b/drivers/gpu/drm/i915/selftests/scatterlist.c
index d599186d5b71..805c4bfb85fe 100644
--- a/drivers/gpu/drm/i915/selftests/scatterlist.c
+++ b/drivers/gpu/drm/i915/selftests/scatterlist.c
@@ -220,6 +220,10 @@ static int alloc_table(struct pfn_table *pt,
struct scatterlist *sg;
unsigned long n, pfn;
+ /* restricted by sg_alloc_table */
+ if (overflows_type(max, unsigned int))
+ return -E2BIG;
+
if (sg_alloc_table(&pt->st, max,
GFP_KERNEL | __GFP_NORETRY | __GFP_NOWARN))
return alloc_error;
diff --git a/drivers/gpu/drm/i915/intel_dram.c b/drivers/gpu/drm/i915/soc/intel_dram.c
index 2403ccd52c74..9f0651d48d41 100644
--- a/drivers/gpu/drm/i915/intel_dram.c
+++ b/drivers/gpu/drm/i915/soc/intel_dram.c
@@ -10,6 +10,7 @@
#include "intel_dram.h"
#include "intel_mchbar_regs.h"
#include "intel_pcode.h"
+#include "vlv_sideband.h"
struct dram_dimm_info {
u16 size;
@@ -42,6 +43,155 @@ static const char *intel_dram_type_str(enum intel_dram_type type)
#undef DRAM_TYPE_STR
+static void pnv_detect_mem_freq(struct drm_i915_private *dev_priv)
+{
+ u32 tmp;
+
+ tmp = intel_uncore_read(&dev_priv->uncore, CLKCFG);
+
+ switch (tmp & CLKCFG_FSB_MASK) {
+ case CLKCFG_FSB_533:
+ dev_priv->fsb_freq = 533; /* 133*4 */
+ break;
+ case CLKCFG_FSB_800:
+ dev_priv->fsb_freq = 800; /* 200*4 */
+ break;
+ case CLKCFG_FSB_667:
+ dev_priv->fsb_freq = 667; /* 167*4 */
+ break;
+ case CLKCFG_FSB_400:
+ dev_priv->fsb_freq = 400; /* 100*4 */
+ break;
+ }
+
+ switch (tmp & CLKCFG_MEM_MASK) {
+ case CLKCFG_MEM_533:
+ dev_priv->mem_freq = 533;
+ break;
+ case CLKCFG_MEM_667:
+ dev_priv->mem_freq = 667;
+ break;
+ case CLKCFG_MEM_800:
+ dev_priv->mem_freq = 800;
+ break;
+ }
+
+ /* detect pineview DDR3 setting */
+ tmp = intel_uncore_read(&dev_priv->uncore, CSHRDDR3CTL);
+ dev_priv->is_ddr3 = (tmp & CSHRDDR3CTL_DDR3) ? 1 : 0;
+}
+
+static void ilk_detect_mem_freq(struct drm_i915_private *dev_priv)
+{
+ u16 ddrpll, csipll;
+
+ ddrpll = intel_uncore_read16(&dev_priv->uncore, DDRMPLL1);
+ switch (ddrpll & 0xff) {
+ case 0xc:
+ dev_priv->mem_freq = 800;
+ break;
+ case 0x10:
+ dev_priv->mem_freq = 1066;
+ break;
+ case 0x14:
+ dev_priv->mem_freq = 1333;
+ break;
+ case 0x18:
+ dev_priv->mem_freq = 1600;
+ break;
+ default:
+ drm_dbg(&dev_priv->drm, "unknown memory frequency 0x%02x\n",
+ ddrpll & 0xff);
+ dev_priv->mem_freq = 0;
+ break;
+ }
+
+ csipll = intel_uncore_read16(&dev_priv->uncore, CSIPLL0);
+ switch (csipll & 0x3ff) {
+ case 0x00c:
+ dev_priv->fsb_freq = 3200;
+ break;
+ case 0x00e:
+ dev_priv->fsb_freq = 3733;
+ break;
+ case 0x010:
+ dev_priv->fsb_freq = 4266;
+ break;
+ case 0x012:
+ dev_priv->fsb_freq = 4800;
+ break;
+ case 0x014:
+ dev_priv->fsb_freq = 5333;
+ break;
+ case 0x016:
+ dev_priv->fsb_freq = 5866;
+ break;
+ case 0x018:
+ dev_priv->fsb_freq = 6400;
+ break;
+ default:
+ drm_dbg(&dev_priv->drm, "unknown fsb frequency 0x%04x\n",
+ csipll & 0x3ff);
+ dev_priv->fsb_freq = 0;
+ break;
+ }
+}
+
+static void chv_detect_mem_freq(struct drm_i915_private *i915)
+{
+ u32 val;
+
+ vlv_iosf_sb_get(i915, BIT(VLV_IOSF_SB_CCK));
+ val = vlv_cck_read(i915, CCK_FUSE_REG);
+ vlv_iosf_sb_put(i915, BIT(VLV_IOSF_SB_CCK));
+
+ switch ((val >> 2) & 0x7) {
+ case 3:
+ i915->mem_freq = 2000;
+ break;
+ default:
+ i915->mem_freq = 1600;
+ break;
+ }
+}
+
+static void vlv_detect_mem_freq(struct drm_i915_private *i915)
+{
+ u32 val;
+
+ vlv_iosf_sb_get(i915, BIT(VLV_IOSF_SB_PUNIT));
+ val = vlv_punit_read(i915, PUNIT_REG_GPU_FREQ_STS);
+ vlv_iosf_sb_put(i915, BIT(VLV_IOSF_SB_PUNIT));
+
+ switch ((val >> 6) & 3) {
+ case 0:
+ case 1:
+ i915->mem_freq = 800;
+ break;
+ case 2:
+ i915->mem_freq = 1066;
+ break;
+ case 3:
+ i915->mem_freq = 1333;
+ break;
+ }
+}
+
+static void detect_mem_freq(struct drm_i915_private *i915)
+{
+ if (IS_PINEVIEW(i915))
+ pnv_detect_mem_freq(i915);
+ else if (GRAPHICS_VER(i915) == 5)
+ ilk_detect_mem_freq(i915);
+ else if (IS_CHERRYVIEW(i915))
+ chv_detect_mem_freq(i915);
+ else if (IS_VALLEYVIEW(i915))
+ vlv_detect_mem_freq(i915);
+
+ if (i915->mem_freq)
+ drm_dbg(&i915->drm, "DDR speed: %d MHz\n", i915->mem_freq);
+}
+
static int intel_dimm_num_devices(const struct dram_dimm_info *dimm)
{
return dimm->ranks * 64 / (dimm->width ?: 1);
@@ -471,8 +621,7 @@ static int xelpdp_get_dram_info(struct drm_i915_private *i915)
u32 val = intel_uncore_read(&i915->uncore, MTL_MEM_SS_INFO_GLOBAL);
struct dram_info *dram_info = &i915->dram_info;
- val = REG_FIELD_GET(MTL_DDR_TYPE_MASK, val);
- switch (val) {
+ switch (REG_FIELD_GET(MTL_DDR_TYPE_MASK, val)) {
case 0:
dram_info->type = INTEL_DRAM_DDR4;
break;
@@ -508,6 +657,8 @@ void intel_dram_detect(struct drm_i915_private *i915)
struct dram_info *dram_info = &i915->dram_info;
int ret;
+ detect_mem_freq(i915);
+
if (GRAPHICS_VER(i915) < 9 || IS_DG2(i915) || !HAS_DISPLAY(i915))
return;
diff --git a/drivers/gpu/drm/i915/intel_dram.h b/drivers/gpu/drm/i915/soc/intel_dram.h
index 4ba13c13162c..4ba13c13162c 100644
--- a/drivers/gpu/drm/i915/intel_dram.h
+++ b/drivers/gpu/drm/i915/soc/intel_dram.h
diff --git a/drivers/gpu/drm/i915/soc/intel_gmch.c b/drivers/gpu/drm/i915/soc/intel_gmch.c
new file mode 100644
index 000000000000..6d0204942f7a
--- /dev/null
+++ b/drivers/gpu/drm/i915/soc/intel_gmch.c
@@ -0,0 +1,171 @@
+// SPDX-License-Identifier: MIT
+/*
+ * Copyright © 2023 Intel Corporation
+ */
+
+#include <linux/pci.h>
+#include <linux/pnp.h>
+
+#include <drm/drm_managed.h>
+#include <drm/i915_drm.h>
+
+#include "i915_drv.h"
+#include "intel_gmch.h"
+#include "intel_pci_config.h"
+
+static void intel_gmch_bridge_release(struct drm_device *dev, void *bridge)
+{
+ pci_dev_put(bridge);
+}
+
+int intel_gmch_bridge_setup(struct drm_i915_private *i915)
+{
+ int domain = pci_domain_nr(to_pci_dev(i915->drm.dev)->bus);
+
+ i915->gmch.pdev = pci_get_domain_bus_and_slot(domain, 0, PCI_DEVFN(0, 0));
+ if (!i915->gmch.pdev) {
+ drm_err(&i915->drm, "bridge device not found\n");
+ return -EIO;
+ }
+
+ return drmm_add_action_or_reset(&i915->drm, intel_gmch_bridge_release,
+ i915->gmch.pdev);
+}
+
+/* Allocate space for the MCH regs if needed, return nonzero on error */
+static int
+intel_alloc_mchbar_resource(struct drm_i915_private *i915)
+{
+ int reg = GRAPHICS_VER(i915) >= 4 ? MCHBAR_I965 : MCHBAR_I915;
+ u32 temp_lo, temp_hi = 0;
+ u64 mchbar_addr;
+ int ret;
+
+ if (GRAPHICS_VER(i915) >= 4)
+ pci_read_config_dword(i915->gmch.pdev, reg + 4, &temp_hi);
+ pci_read_config_dword(i915->gmch.pdev, reg, &temp_lo);
+ mchbar_addr = ((u64)temp_hi << 32) | temp_lo;
+
+ /* If ACPI doesn't have it, assume we need to allocate it ourselves */
+#ifdef CONFIG_PNP
+ if (mchbar_addr &&
+ pnp_range_reserved(mchbar_addr, mchbar_addr + MCHBAR_SIZE))
+ return 0;
+#endif
+
+ /* Get some space for it */
+ i915->gmch.mch_res.name = "i915 MCHBAR";
+ i915->gmch.mch_res.flags = IORESOURCE_MEM;
+ ret = pci_bus_alloc_resource(i915->gmch.pdev->bus,
+ &i915->gmch.mch_res,
+ MCHBAR_SIZE, MCHBAR_SIZE,
+ PCIBIOS_MIN_MEM,
+ 0, pcibios_align_resource,
+ i915->gmch.pdev);
+ if (ret) {
+ drm_dbg(&i915->drm, "failed bus alloc: %d\n", ret);
+ i915->gmch.mch_res.start = 0;
+ return ret;
+ }
+
+ if (GRAPHICS_VER(i915) >= 4)
+ pci_write_config_dword(i915->gmch.pdev, reg + 4,
+ upper_32_bits(i915->gmch.mch_res.start));
+
+ pci_write_config_dword(i915->gmch.pdev, reg,
+ lower_32_bits(i915->gmch.mch_res.start));
+ return 0;
+}
+
+/* Setup MCHBAR if possible, return true if we should disable it again */
+void intel_gmch_bar_setup(struct drm_i915_private *i915)
+{
+ int mchbar_reg = GRAPHICS_VER(i915) >= 4 ? MCHBAR_I965 : MCHBAR_I915;
+ u32 temp;
+ bool enabled;
+
+ if (IS_VALLEYVIEW(i915) || IS_CHERRYVIEW(i915))
+ return;
+
+ i915->gmch.mchbar_need_disable = false;
+
+ if (IS_I915G(i915) || IS_I915GM(i915)) {
+ pci_read_config_dword(i915->gmch.pdev, DEVEN, &temp);
+ enabled = !!(temp & DEVEN_MCHBAR_EN);
+ } else {
+ pci_read_config_dword(i915->gmch.pdev, mchbar_reg, &temp);
+ enabled = temp & 1;
+ }
+
+ /* If it's already enabled, don't have to do anything */
+ if (enabled)
+ return;
+
+ if (intel_alloc_mchbar_resource(i915))
+ return;
+
+ i915->gmch.mchbar_need_disable = true;
+
+ /* Space is allocated or reserved, so enable it. */
+ if (IS_I915G(i915) || IS_I915GM(i915)) {
+ pci_write_config_dword(i915->gmch.pdev, DEVEN,
+ temp | DEVEN_MCHBAR_EN);
+ } else {
+ pci_read_config_dword(i915->gmch.pdev, mchbar_reg, &temp);
+ pci_write_config_dword(i915->gmch.pdev, mchbar_reg, temp | 1);
+ }
+}
+
+void intel_gmch_bar_teardown(struct drm_i915_private *i915)
+{
+ int mchbar_reg = GRAPHICS_VER(i915) >= 4 ? MCHBAR_I965 : MCHBAR_I915;
+
+ if (i915->gmch.mchbar_need_disable) {
+ if (IS_I915G(i915) || IS_I915GM(i915)) {
+ u32 deven_val;
+
+ pci_read_config_dword(i915->gmch.pdev, DEVEN,
+ &deven_val);
+ deven_val &= ~DEVEN_MCHBAR_EN;
+ pci_write_config_dword(i915->gmch.pdev, DEVEN,
+ deven_val);
+ } else {
+ u32 mchbar_val;
+
+ pci_read_config_dword(i915->gmch.pdev, mchbar_reg,
+ &mchbar_val);
+ mchbar_val &= ~1;
+ pci_write_config_dword(i915->gmch.pdev, mchbar_reg,
+ mchbar_val);
+ }
+ }
+
+ if (i915->gmch.mch_res.start)
+ release_resource(&i915->gmch.mch_res);
+}
+
+int intel_gmch_vga_set_state(struct drm_i915_private *i915, bool enable_decode)
+{
+ unsigned int reg = DISPLAY_VER(i915) >= 6 ? SNB_GMCH_CTRL : INTEL_GMCH_CTRL;
+ u16 gmch_ctrl;
+
+ if (pci_read_config_word(i915->gmch.pdev, reg, &gmch_ctrl)) {
+ drm_err(&i915->drm, "failed to read control word\n");
+ return -EIO;
+ }
+
+ if (!!(gmch_ctrl & INTEL_GMCH_VGA_DISABLE) == !enable_decode)
+ return 0;
+
+ if (enable_decode)
+ gmch_ctrl &= ~INTEL_GMCH_VGA_DISABLE;
+ else
+ gmch_ctrl |= INTEL_GMCH_VGA_DISABLE;
+
+ if (pci_write_config_word(i915->gmch.pdev, reg, gmch_ctrl)) {
+ drm_err(&i915->drm, "failed to write control word\n");
+ return -EIO;
+ }
+
+ return 0;
+}
diff --git a/drivers/gpu/drm/i915/soc/intel_gmch.h b/drivers/gpu/drm/i915/soc/intel_gmch.h
new file mode 100644
index 000000000000..d0133eedc720
--- /dev/null
+++ b/drivers/gpu/drm/i915/soc/intel_gmch.h
@@ -0,0 +1,18 @@
+/* SPDX-License-Identifier: MIT */
+/*
+ * Copyright © 2023 Intel Corporation
+ */
+
+#ifndef __INTEL_GMCH_H__
+#define __INTEL_GMCH_H__
+
+#include <linux/types.h>
+
+struct drm_i915_private;
+
+int intel_gmch_bridge_setup(struct drm_i915_private *i915);
+void intel_gmch_bar_setup(struct drm_i915_private *i915);
+void intel_gmch_bar_teardown(struct drm_i915_private *i915);
+int intel_gmch_vga_set_state(struct drm_i915_private *i915, bool enable_decode);
+
+#endif /* __INTEL_GMCH_H__ */
diff --git a/drivers/gpu/drm/i915/intel_pch.c b/drivers/gpu/drm/i915/soc/intel_pch.c
index ba9843cb1b13..ba9843cb1b13 100644
--- a/drivers/gpu/drm/i915/intel_pch.c
+++ b/drivers/gpu/drm/i915/soc/intel_pch.c
diff --git a/drivers/gpu/drm/i915/intel_pch.h b/drivers/gpu/drm/i915/soc/intel_pch.h
index 32aff5a70d04..32aff5a70d04 100644
--- a/drivers/gpu/drm/i915/intel_pch.h
+++ b/drivers/gpu/drm/i915/soc/intel_pch.h
diff --git a/drivers/gpu/drm/i915/vlv_sideband.c b/drivers/gpu/drm/i915/vlv_sideband.c
index c26001300ebd..b98dec3ad817 100644
--- a/drivers/gpu/drm/i915/vlv_sideband.c
+++ b/drivers/gpu/drm/i915/vlv_sideband.c
@@ -8,6 +8,9 @@
#include "i915_reg.h"
#include "vlv_sideband.h"
+#include "display/intel_dpio_phy.h"
+#include "display/intel_display_types.h"
+
/*
* IOSF sideband, see VLV2_SidebandMsg_HAS.docx and
* VLV_VLV2_PUNIT_HAS_0.8.docx
diff --git a/drivers/gpu/drm/i915/vlv_suspend.c b/drivers/gpu/drm/i915/vlv_suspend.c
index 664fde244f59..94595dde2b96 100644
--- a/drivers/gpu/drm/i915/vlv_suspend.c
+++ b/drivers/gpu/drm/i915/vlv_suspend.c
@@ -12,7 +12,7 @@
#include "i915_reg.h"
#include "i915_trace.h"
#include "i915_utils.h"
-#include "intel_pm.h"
+#include "intel_clock_gating.h"
#include "vlv_suspend.h"
#include "gt/intel_gt_regs.h"
@@ -194,7 +194,6 @@ static void vlv_restore_gunit_s0ix_state(struct drm_i915_private *i915)
{
struct vlv_s0ix_state *s = i915->vlv_s0ix_state;
struct intel_uncore *uncore = &i915->uncore;
- u32 val;
int i;
if (!s)
@@ -262,15 +261,11 @@ static void vlv_restore_gunit_s0ix_state(struct drm_i915_private *i915)
* be restored, as they are used to control the s0ix suspend/resume
* sequence by the caller.
*/
- val = intel_uncore_read(uncore, VLV_GTLC_WAKE_CTRL);
- val &= VLV_GTLC_ALLOWWAKEREQ;
- val |= s->gtlc_wake_ctrl & ~VLV_GTLC_ALLOWWAKEREQ;
- intel_uncore_write(uncore, VLV_GTLC_WAKE_CTRL, val);
+ intel_uncore_rmw(uncore, VLV_GTLC_WAKE_CTRL, ~VLV_GTLC_ALLOWWAKEREQ,
+ s->gtlc_wake_ctrl & ~VLV_GTLC_ALLOWWAKEREQ);
- val = intel_uncore_read(uncore, VLV_GTLC_SURVIVABILITY_REG);
- val &= VLV_GFX_CLK_FORCE_ON_BIT;
- val |= s->gtlc_survive & ~VLV_GFX_CLK_FORCE_ON_BIT;
- intel_uncore_write(uncore, VLV_GTLC_SURVIVABILITY_REG, val);
+ intel_uncore_rmw(uncore, VLV_GTLC_SURVIVABILITY_REG, ~VLV_GFX_CLK_FORCE_ON_BIT,
+ s->gtlc_survive & ~VLV_GFX_CLK_FORCE_ON_BIT);
intel_uncore_write(uncore, VLV_PMWGICZ, s->pmwgicz);
@@ -308,14 +303,10 @@ static int vlv_wait_for_pw_status(struct drm_i915_private *i915,
static int vlv_force_gfx_clock(struct drm_i915_private *i915, bool force_on)
{
struct intel_uncore *uncore = &i915->uncore;
- u32 val;
int err;
- val = intel_uncore_read(uncore, VLV_GTLC_SURVIVABILITY_REG);
- val &= ~VLV_GFX_CLK_FORCE_ON_BIT;
- if (force_on)
- val |= VLV_GFX_CLK_FORCE_ON_BIT;
- intel_uncore_write(uncore, VLV_GTLC_SURVIVABILITY_REG, val);
+ intel_uncore_rmw(uncore, VLV_GTLC_SURVIVABILITY_REG, VLV_GFX_CLK_FORCE_ON_BIT,
+ force_on ? VLV_GFX_CLK_FORCE_ON_BIT : 0);
if (!force_on)
return 0;
@@ -340,11 +331,8 @@ static int vlv_allow_gt_wake(struct drm_i915_private *i915, bool allow)
u32 val;
int err;
- val = intel_uncore_read(uncore, VLV_GTLC_WAKE_CTRL);
- val &= ~VLV_GTLC_ALLOWWAKEREQ;
- if (allow)
- val |= VLV_GTLC_ALLOWWAKEREQ;
- intel_uncore_write(uncore, VLV_GTLC_WAKE_CTRL, val);
+ intel_uncore_rmw(uncore, VLV_GTLC_WAKE_CTRL, VLV_GTLC_ALLOWWAKEREQ,
+ allow ? VLV_GTLC_ALLOWWAKEREQ : 0);
intel_uncore_posting_read(uncore, VLV_GTLC_WAKE_CTRL);
mask = VLV_GTLC_ALLOWWAKEACK;
@@ -463,7 +451,7 @@ int vlv_resume_prepare(struct drm_i915_private *dev_priv, bool rpm_resume)
vlv_check_no_gt_access(dev_priv);
if (rpm_resume)
- intel_init_clock_gating(dev_priv);
+ intel_clock_gating_init(dev_priv);
return ret;
}
diff --git a/drivers/gpu/drm/imx/Kconfig b/drivers/gpu/drm/imx/Kconfig
index fd5b2471fdf0..03535a15dd8f 100644
--- a/drivers/gpu/drm/imx/Kconfig
+++ b/drivers/gpu/drm/imx/Kconfig
@@ -1,43 +1,5 @@
# SPDX-License-Identifier: GPL-2.0-only
-config DRM_IMX
- tristate "DRM Support for Freescale i.MX"
- select DRM_KMS_HELPER
- select VIDEOMODE_HELPERS
- select DRM_GEM_DMA_HELPER
- depends on DRM && (ARCH_MXC || ARCH_MULTIPLATFORM || COMPILE_TEST)
- depends on IMX_IPUV3_CORE
- help
- enable i.MX graphics support
-
-config DRM_IMX_PARALLEL_DISPLAY
- tristate "Support for parallel displays"
- select DRM_PANEL
- depends on DRM_IMX
- select VIDEOMODE_HELPERS
-
-config DRM_IMX_TVE
- tristate "Support for TV and VGA displays"
- depends on DRM_IMX
- depends on COMMON_CLK
- select REGMAP_MMIO
- help
- Choose this to enable the internal Television Encoder (TVe)
- found on i.MX53 processors.
-
-config DRM_IMX_LDB
- tristate "Support for LVDS displays"
- depends on DRM_IMX && MFD_SYSCON
- depends on COMMON_CLK
- select DRM_PANEL
- help
- Choose this to enable the internal LVDS Display Bridge (LDB)
- found on i.MX53 and i.MX6 processors.
-
-config DRM_IMX_HDMI
- tristate "Freescale i.MX DRM HDMI"
- select DRM_DW_HDMI
- depends on DRM_IMX && OF
- help
- Choose this if you want to use HDMI on i.MX6.
source "drivers/gpu/drm/imx/dcss/Kconfig"
+source "drivers/gpu/drm/imx/ipuv3/Kconfig"
+source "drivers/gpu/drm/imx/lcdc/Kconfig"
diff --git a/drivers/gpu/drm/imx/Makefile b/drivers/gpu/drm/imx/Makefile
index b644deffe948..86f38e7c7422 100644
--- a/drivers/gpu/drm/imx/Makefile
+++ b/drivers/gpu/drm/imx/Makefile
@@ -1,12 +1,5 @@
# SPDX-License-Identifier: GPL-2.0
-imxdrm-objs := imx-drm-core.o ipuv3-crtc.o ipuv3-plane.o
-
-obj-$(CONFIG_DRM_IMX) += imxdrm.o
-
-obj-$(CONFIG_DRM_IMX_PARALLEL_DISPLAY) += parallel-display.o
-obj-$(CONFIG_DRM_IMX_TVE) += imx-tve.o
-obj-$(CONFIG_DRM_IMX_LDB) += imx-ldb.o
-
-obj-$(CONFIG_DRM_IMX_HDMI) += dw_hdmi-imx.o
obj-$(CONFIG_DRM_IMX_DCSS) += dcss/
+obj-$(CONFIG_DRM_IMX) += ipuv3/
+obj-$(CONFIG_DRM_IMX_LCDC) += lcdc/
diff --git a/drivers/gpu/drm/imx/dcss/dcss-dev.c b/drivers/gpu/drm/imx/dcss/dcss-dev.c
index 3f5750cc2673..5d1779ab65c0 100644
--- a/drivers/gpu/drm/imx/dcss/dcss-dev.c
+++ b/drivers/gpu/drm/imx/dcss/dcss-dev.c
@@ -249,16 +249,12 @@ void dcss_dev_destroy(struct dcss_dev *dcss)
kfree(dcss);
}
-#ifdef CONFIG_PM_SLEEP
-int dcss_dev_suspend(struct device *dev)
+static int dcss_dev_suspend(struct device *dev)
{
struct dcss_dev *dcss = dcss_drv_dev_to_dcss(dev);
struct drm_device *ddev = dcss_drv_dev_to_drm(dev);
- struct dcss_kms_dev *kms = container_of(ddev, struct dcss_kms_dev, base);
int ret;
- drm_bridge_connector_disable_hpd(kms->connector);
-
drm_mode_config_helper_suspend(ddev);
if (pm_runtime_suspended(dev))
@@ -273,11 +269,10 @@ int dcss_dev_suspend(struct device *dev)
return 0;
}
-int dcss_dev_resume(struct device *dev)
+static int dcss_dev_resume(struct device *dev)
{
struct dcss_dev *dcss = dcss_drv_dev_to_dcss(dev);
struct drm_device *ddev = dcss_drv_dev_to_drm(dev);
- struct dcss_kms_dev *kms = container_of(ddev, struct dcss_kms_dev, base);
if (pm_runtime_suspended(dev)) {
drm_mode_config_helper_resume(ddev);
@@ -292,14 +287,10 @@ int dcss_dev_resume(struct device *dev)
drm_mode_config_helper_resume(ddev);
- drm_bridge_connector_enable_hpd(kms->connector);
-
return 0;
}
-#endif /* CONFIG_PM_SLEEP */
-#ifdef CONFIG_PM
-int dcss_dev_runtime_suspend(struct device *dev)
+static int dcss_dev_runtime_suspend(struct device *dev)
{
struct dcss_dev *dcss = dcss_drv_dev_to_dcss(dev);
int ret;
@@ -313,7 +304,7 @@ int dcss_dev_runtime_suspend(struct device *dev)
return 0;
}
-int dcss_dev_runtime_resume(struct device *dev)
+static int dcss_dev_runtime_resume(struct device *dev)
{
struct dcss_dev *dcss = dcss_drv_dev_to_dcss(dev);
@@ -325,4 +316,8 @@ int dcss_dev_runtime_resume(struct device *dev)
return 0;
}
-#endif /* CONFIG_PM */
+
+EXPORT_GPL_DEV_PM_OPS(dcss_dev_pm_ops) = {
+ RUNTIME_PM_OPS(dcss_dev_runtime_suspend, dcss_dev_runtime_resume, NULL)
+ SYSTEM_SLEEP_PM_OPS(dcss_dev_suspend, dcss_dev_resume)
+};
diff --git a/drivers/gpu/drm/imx/dcss/dcss-dev.h b/drivers/gpu/drm/imx/dcss/dcss-dev.h
index 1e582270c6ea..f27b87c09599 100644
--- a/drivers/gpu/drm/imx/dcss/dcss-dev.h
+++ b/drivers/gpu/drm/imx/dcss/dcss-dev.h
@@ -9,6 +9,7 @@
#include <drm/drm_fourcc.h>
#include <drm/drm_plane.h>
#include <linux/io.h>
+#include <linux/pm.h>
#include <video/videomode.h>
#define SET 0x04
@@ -95,13 +96,11 @@ struct dcss_dev *dcss_drv_dev_to_dcss(struct device *dev);
struct drm_device *dcss_drv_dev_to_drm(struct device *dev);
struct dcss_dev *dcss_dev_create(struct device *dev, bool hdmi_output);
void dcss_dev_destroy(struct dcss_dev *dcss);
-int dcss_dev_runtime_suspend(struct device *dev);
-int dcss_dev_runtime_resume(struct device *dev);
-int dcss_dev_suspend(struct device *dev);
-int dcss_dev_resume(struct device *dev);
void dcss_enable_dtg_and_ss(struct dcss_dev *dcss);
void dcss_disable_dtg_and_ss(struct dcss_dev *dcss);
+extern const struct dev_pm_ops dcss_dev_pm_ops;
+
/* BLKCTL */
int dcss_blkctl_init(struct dcss_dev *dcss, unsigned long blkctl_base);
void dcss_blkctl_cfg(struct dcss_blkctl *blkctl);
diff --git a/drivers/gpu/drm/imx/dcss/dcss-drv.c b/drivers/gpu/drm/imx/dcss/dcss-drv.c
index 1c70f70247f6..4f2291610139 100644
--- a/drivers/gpu/drm/imx/dcss/dcss-drv.c
+++ b/drivers/gpu/drm/imx/dcss/dcss-drv.c
@@ -74,8 +74,6 @@ static int dcss_drv_platform_probe(struct platform_device *pdev)
dcss_shutoff:
dcss_dev_destroy(mdrv->dcss);
- dev_set_drvdata(dev, NULL);
-
err:
kfree(mdrv);
return err;
@@ -85,14 +83,9 @@ static int dcss_drv_platform_remove(struct platform_device *pdev)
{
struct dcss_drv *mdrv = dev_get_drvdata(&pdev->dev);
- if (!mdrv)
- return 0;
-
dcss_kms_detach(mdrv->kms);
dcss_dev_destroy(mdrv->dcss);
- dev_set_drvdata(&pdev->dev, NULL);
-
kfree(mdrv);
return 0;
@@ -117,19 +110,13 @@ static const struct of_device_id dcss_of_match[] = {
MODULE_DEVICE_TABLE(of, dcss_of_match);
-static const struct dev_pm_ops dcss_dev_pm = {
- SET_SYSTEM_SLEEP_PM_OPS(dcss_dev_suspend, dcss_dev_resume)
- SET_RUNTIME_PM_OPS(dcss_dev_runtime_suspend,
- dcss_dev_runtime_resume, NULL)
-};
-
static struct platform_driver dcss_platform_driver = {
.probe = dcss_drv_platform_probe,
.remove = dcss_drv_platform_remove,
.driver = {
.name = "imx-dcss",
.of_match_table = dcss_of_match,
- .pm = &dcss_dev_pm,
+ .pm = pm_ptr(&dcss_dev_pm_ops),
},
};
diff --git a/drivers/gpu/drm/imx/dcss/dcss-kms.c b/drivers/gpu/drm/imx/dcss/dcss-kms.c
index b4f82ebca532..896de946f8df 100644
--- a/drivers/gpu/drm/imx/dcss/dcss-kms.c
+++ b/drivers/gpu/drm/imx/dcss/dcss-kms.c
@@ -7,7 +7,7 @@
#include <drm/drm_atomic_helper.h>
#include <drm/drm_bridge_connector.h>
#include <drm/drm_drv.h>
-#include <drm/drm_fb_helper.h>
+#include <drm/drm_fbdev_dma.h>
#include <drm/drm_gem_dma_helper.h>
#include <drm/drm_gem_framebuffer_helper.h>
#include <drm/drm_of.h>
@@ -21,7 +21,6 @@ DEFINE_DRM_GEM_DMA_FOPS(dcss_cma_fops);
static const struct drm_mode_config_funcs dcss_drm_mode_config_funcs = {
.fb_create = drm_gem_fb_create,
- .output_poll_changed = drm_fb_helper_output_poll_changed,
.atomic_check = drm_atomic_helper_check,
.atomic_commit = drm_atomic_helper_commit,
};
@@ -146,12 +145,11 @@ struct dcss_kms_dev *dcss_kms_attach(struct dcss_dev *dcss)
if (ret)
goto cleanup_crtc;
- drm_fbdev_generic_setup(drm, 32);
+ drm_fbdev_dma_setup(drm, 32);
return kms;
cleanup_crtc:
- drm_bridge_connector_disable_hpd(kms->connector);
drm_kms_helper_poll_fini(drm);
dcss_crtc_deinit(crtc, drm);
@@ -167,7 +165,6 @@ void dcss_kms_detach(struct dcss_kms_dev *kms)
struct drm_device *drm = &kms->base;
drm_dev_unregister(drm);
- drm_bridge_connector_disable_hpd(kms->connector);
drm_kms_helper_poll_fini(drm);
drm_atomic_helper_shutdown(drm);
drm_crtc_vblank_off(&kms->crtc.base);
diff --git a/drivers/gpu/drm/imx/ipuv3/Kconfig b/drivers/gpu/drm/imx/ipuv3/Kconfig
new file mode 100644
index 000000000000..bacf0655ebaf
--- /dev/null
+++ b/drivers/gpu/drm/imx/ipuv3/Kconfig
@@ -0,0 +1,41 @@
+# SPDX-License-Identifier: GPL-2.0-only
+config DRM_IMX
+ tristate "DRM Support for Freescale i.MX"
+ select DRM_KMS_HELPER
+ select VIDEOMODE_HELPERS
+ select DRM_GEM_DMA_HELPER
+ depends on DRM && (ARCH_MXC || COMPILE_TEST)
+ depends on IMX_IPUV3_CORE
+ help
+ enable i.MX graphics support
+
+config DRM_IMX_PARALLEL_DISPLAY
+ tristate "Support for parallel displays"
+ select DRM_PANEL
+ depends on DRM_IMX
+ select VIDEOMODE_HELPERS
+
+config DRM_IMX_TVE
+ tristate "Support for TV and VGA displays"
+ depends on DRM_IMX
+ depends on COMMON_CLK
+ select REGMAP_MMIO
+ help
+ Choose this to enable the internal Television Encoder (TVe)
+ found on i.MX53 processors.
+
+config DRM_IMX_LDB
+ tristate "Support for LVDS displays"
+ depends on DRM_IMX && MFD_SYSCON
+ depends on COMMON_CLK
+ select DRM_PANEL
+ help
+ Choose this to enable the internal LVDS Display Bridge (LDB)
+ found on i.MX53 and i.MX6 processors.
+
+config DRM_IMX_HDMI
+ tristate "Freescale i.MX DRM HDMI"
+ select DRM_DW_HDMI
+ depends on DRM_IMX && OF
+ help
+ Choose this if you want to use HDMI on i.MX6.
diff --git a/drivers/gpu/drm/imx/ipuv3/Makefile b/drivers/gpu/drm/imx/ipuv3/Makefile
new file mode 100644
index 000000000000..21cdcc2faabc
--- /dev/null
+++ b/drivers/gpu/drm/imx/ipuv3/Makefile
@@ -0,0 +1,11 @@
+# SPDX-License-Identifier: GPL-2.0
+
+imxdrm-objs := imx-drm-core.o ipuv3-crtc.o ipuv3-plane.o
+
+obj-$(CONFIG_DRM_IMX) += imxdrm.o
+
+obj-$(CONFIG_DRM_IMX_PARALLEL_DISPLAY) += parallel-display.o
+obj-$(CONFIG_DRM_IMX_TVE) += imx-tve.o
+obj-$(CONFIG_DRM_IMX_LDB) += imx-ldb.o
+
+obj-$(CONFIG_DRM_IMX_HDMI) += dw_hdmi-imx.o
diff --git a/drivers/gpu/drm/imx/dw_hdmi-imx.c b/drivers/gpu/drm/imx/ipuv3/dw_hdmi-imx.c
index a2277a0d6d06..a2277a0d6d06 100644
--- a/drivers/gpu/drm/imx/dw_hdmi-imx.c
+++ b/drivers/gpu/drm/imx/ipuv3/dw_hdmi-imx.c
diff --git a/drivers/gpu/drm/imx/imx-drm-core.c b/drivers/gpu/drm/imx/ipuv3/imx-drm-core.c
index 8dd8b0f912af..4a866ac60fff 100644
--- a/drivers/gpu/drm/imx/imx-drm-core.c
+++ b/drivers/gpu/drm/imx/ipuv3/imx-drm-core.c
@@ -16,7 +16,7 @@
#include <drm/drm_atomic.h>
#include <drm/drm_atomic_helper.h>
#include <drm/drm_drv.h>
-#include <drm/drm_fb_helper.h>
+#include <drm/drm_fbdev_dma.h>
#include <drm/drm_gem_dma_helper.h>
#include <drm/drm_gem_framebuffer_helper.h>
#include <drm/drm_managed.h>
@@ -249,7 +249,7 @@ static int imx_drm_bind(struct device *dev)
if (ret)
goto err_poll_fini;
- drm_fbdev_generic_setup(drm, legacyfb_depth);
+ drm_fbdev_dma_setup(drm, legacyfb_depth);
return 0;
diff --git a/drivers/gpu/drm/imx/imx-drm.h b/drivers/gpu/drm/imx/ipuv3/imx-drm.h
index e721bebda2bd..e721bebda2bd 100644
--- a/drivers/gpu/drm/imx/imx-drm.h
+++ b/drivers/gpu/drm/imx/ipuv3/imx-drm.h
diff --git a/drivers/gpu/drm/imx/imx-ldb.c b/drivers/gpu/drm/imx/ipuv3/imx-ldb.c
index 41799011f73b..c45fc8f4744d 100644
--- a/drivers/gpu/drm/imx/imx-ldb.c
+++ b/drivers/gpu/drm/imx/ipuv3/imx-ldb.c
@@ -7,6 +7,7 @@
#include <linux/clk.h>
#include <linux/component.h>
+#include <linux/i2c.h>
#include <linux/media-bus-format.h>
#include <linux/mfd/syscon.h>
#include <linux/mfd/syscon/imx6q-iomuxc-gpr.h>
@@ -23,7 +24,6 @@
#include <drm/drm_atomic_helper.h>
#include <drm/drm_bridge.h>
#include <drm/drm_edid.h>
-#include <drm/drm_fb_helper.h>
#include <drm/drm_managed.h>
#include <drm/drm_of.h>
#include <drm/drm_panel.h>
diff --git a/drivers/gpu/drm/imx/imx-tve.c b/drivers/gpu/drm/imx/ipuv3/imx-tve.c
index ab4d1c878fda..d6832f506322 100644
--- a/drivers/gpu/drm/imx/imx-tve.c
+++ b/drivers/gpu/drm/imx/ipuv3/imx-tve.c
@@ -19,7 +19,6 @@
#include <drm/drm_atomic_helper.h>
#include <drm/drm_edid.h>
-#include <drm/drm_fb_helper.h>
#include <drm/drm_managed.h>
#include <drm/drm_probe_helper.h>
#include <drm/drm_simple_kms_helper.h>
diff --git a/drivers/gpu/drm/imx/ipuv3-crtc.c b/drivers/gpu/drm/imx/ipuv3/ipuv3-crtc.c
index 5f26090b0c98..5f26090b0c98 100644
--- a/drivers/gpu/drm/imx/ipuv3-crtc.c
+++ b/drivers/gpu/drm/imx/ipuv3/ipuv3-crtc.c
diff --git a/drivers/gpu/drm/imx/ipuv3-plane.c b/drivers/gpu/drm/imx/ipuv3/ipuv3-plane.c
index dba4f7d81d69..80142d9a4a55 100644
--- a/drivers/gpu/drm/imx/ipuv3-plane.c
+++ b/drivers/gpu/drm/imx/ipuv3/ipuv3-plane.c
@@ -614,6 +614,11 @@ static void ipu_plane_atomic_update(struct drm_plane *plane,
break;
}
+ if (ipu_plane->dp_flow == IPU_DP_FLOW_SYNC_BG)
+ width = ipu_src_rect_width(new_state);
+ else
+ width = drm_rect_width(&new_state->src) >> 16;
+
eba = drm_plane_state_to_eba(new_state, 0);
/*
@@ -622,8 +627,7 @@ static void ipu_plane_atomic_update(struct drm_plane *plane,
*/
if (ipu_state->use_pre) {
axi_id = ipu_chan_assign_axi_id(ipu_plane->dma);
- ipu_prg_channel_configure(ipu_plane->ipu_ch, axi_id,
- ipu_src_rect_width(new_state),
+ ipu_prg_channel_configure(ipu_plane->ipu_ch, axi_id, width,
drm_rect_height(&new_state->src) >> 16,
fb->pitches[0], fb->format->format,
fb->modifier, &eba);
@@ -678,9 +682,8 @@ static void ipu_plane_atomic_update(struct drm_plane *plane,
break;
}
- ipu_dmfc_config_wait4eot(ipu_plane->dmfc, ALIGN(drm_rect_width(dst), 8));
+ ipu_dmfc_config_wait4eot(ipu_plane->dmfc, width);
- width = ipu_src_rect_width(new_state);
height = drm_rect_height(&new_state->src) >> 16;
info = drm_format_info(fb->format->format);
ipu_calculate_bursts(width, info->cpp[0], fb->pitches[0],
@@ -744,8 +747,7 @@ static void ipu_plane_atomic_update(struct drm_plane *plane,
ipu_cpmem_set_burstsize(ipu_plane->ipu_ch, 16);
ipu_cpmem_zero(ipu_plane->alpha_ch);
- ipu_cpmem_set_resolution(ipu_plane->alpha_ch,
- ipu_src_rect_width(new_state),
+ ipu_cpmem_set_resolution(ipu_plane->alpha_ch, width,
drm_rect_height(&new_state->src) >> 16);
ipu_cpmem_set_format_passthrough(ipu_plane->alpha_ch, 8);
ipu_cpmem_set_high_priority(ipu_plane->alpha_ch);
diff --git a/drivers/gpu/drm/imx/ipuv3-plane.h b/drivers/gpu/drm/imx/ipuv3/ipuv3-plane.h
index 6d544e6ce63f..6d544e6ce63f 100644
--- a/drivers/gpu/drm/imx/ipuv3-plane.h
+++ b/drivers/gpu/drm/imx/ipuv3/ipuv3-plane.h
diff --git a/drivers/gpu/drm/imx/parallel-display.c b/drivers/gpu/drm/imx/ipuv3/parallel-display.c
index 06723b2e9b84..0fa0b590830b 100644
--- a/drivers/gpu/drm/imx/parallel-display.c
+++ b/drivers/gpu/drm/imx/ipuv3/parallel-display.c
@@ -8,6 +8,7 @@
#include <linux/component.h>
#include <linux/media-bus-format.h>
#include <linux/module.h>
+#include <linux/of.h>
#include <linux/platform_device.h>
#include <linux/videodev2.h>
@@ -16,7 +17,6 @@
#include <drm/drm_atomic_helper.h>
#include <drm/drm_bridge.h>
#include <drm/drm_edid.h>
-#include <drm/drm_fb_helper.h>
#include <drm/drm_managed.h>
#include <drm/drm_of.h>
#include <drm/drm_panel.h>
diff --git a/drivers/gpu/drm/imx/lcdc/Kconfig b/drivers/gpu/drm/imx/lcdc/Kconfig
new file mode 100644
index 000000000000..7e57922bbd9d
--- /dev/null
+++ b/drivers/gpu/drm/imx/lcdc/Kconfig
@@ -0,0 +1,7 @@
+config DRM_IMX_LCDC
+ tristate "Freescale i.MX LCDC displays"
+ depends on DRM && (ARCH_MXC || COMPILE_TEST)
+ select DRM_GEM_DMA_HELPER
+ select DRM_KMS_HELPER
+ help
+ Found on i.MX1, i.MX21, i.MX25 and i.MX27.
diff --git a/drivers/gpu/drm/imx/lcdc/Makefile b/drivers/gpu/drm/imx/lcdc/Makefile
new file mode 100644
index 000000000000..e84daa432c2e
--- /dev/null
+++ b/drivers/gpu/drm/imx/lcdc/Makefile
@@ -0,0 +1 @@
+obj-$(CONFIG_DRM_IMX_LCDC) += imx-lcdc.o
diff --git a/drivers/gpu/drm/imx/lcdc/imx-lcdc.c b/drivers/gpu/drm/imx/lcdc/imx-lcdc.c
new file mode 100644
index 000000000000..8e6d457917da
--- /dev/null
+++ b/drivers/gpu/drm/imx/lcdc/imx-lcdc.c
@@ -0,0 +1,546 @@
+// SPDX-License-Identifier: GPL-2.0-only
+// SPDX-FileCopyrightText: 2020 Marian Cichy <M.Cichy@pengutronix.de>
+
+#include <drm/drm_bridge.h>
+#include <drm/drm_bridge_connector.h>
+#include <drm/drm_damage_helper.h>
+#include <drm/drm_drv.h>
+#include <drm/drm_fbdev_generic.h>
+#include <drm/drm_fb_dma_helper.h>
+#include <drm/drm_fourcc.h>
+#include <drm/drm_framebuffer.h>
+#include <drm/drm_gem_atomic_helper.h>
+#include <drm/drm_gem_dma_helper.h>
+#include <drm/drm_gem_framebuffer_helper.h>
+#include <drm/drm_of.h>
+#include <drm/drm_probe_helper.h>
+#include <drm/drm_simple_kms_helper.h>
+#include <drm/drm_vblank.h>
+#include <linux/bitfield.h>
+#include <linux/clk.h>
+#include <linux/dma-mapping.h>
+#include <linux/module.h>
+#include <linux/of_device.h>
+#include <linux/platform_device.h>
+
+#define IMX21LCDC_LSSAR 0x0000 /* LCDC Screen Start Address Register */
+#define IMX21LCDC_LSR 0x0004 /* LCDC Size Register */
+#define IMX21LCDC_LVPWR 0x0008 /* LCDC Virtual Page Width Register */
+#define IMX21LCDC_LCPR 0x000C /* LCDC Cursor Position Register */
+#define IMX21LCDC_LCWHB 0x0010 /* LCDC Cursor Width Height and Blink Register*/
+#define IMX21LCDC_LCCMR 0x0014 /* LCDC Color Cursor Mapping Register */
+#define IMX21LCDC_LPCR 0x0018 /* LCDC Panel Configuration Register */
+#define IMX21LCDC_LHCR 0x001C /* LCDC Horizontal Configuration Register */
+#define IMX21LCDC_LVCR 0x0020 /* LCDC Vertical Configuration Register */
+#define IMX21LCDC_LPOR 0x0024 /* LCDC Panning Offset Register */
+#define IMX21LCDC_LSCR 0x0028 /* LCDC Sharp Configuration Register */
+#define IMX21LCDC_LPCCR 0x002C /* LCDC PWM Contrast Control Register */
+#define IMX21LCDC_LDCR 0x0030 /* LCDC DMA Control Register */
+#define IMX21LCDC_LRMCR 0x0034 /* LCDC Refresh Mode Control Register */
+#define IMX21LCDC_LICR 0x0038 /* LCDC Interrupt Configuration Register */
+#define IMX21LCDC_LIER 0x003C /* LCDC Interrupt Enable Register */
+#define IMX21LCDC_LISR 0x0040 /* LCDC Interrupt Status Register */
+#define IMX21LCDC_LGWSAR 0x0050 /* LCDC Graphic Window Start Address Register */
+#define IMX21LCDC_LGWSR 0x0054 /* LCDC Graph Window Size Register */
+#define IMX21LCDC_LGWVPWR 0x0058 /* LCDC Graphic Window Virtual Page Width Register */
+#define IMX21LCDC_LGWPOR 0x005C /* LCDC Graphic Window Panning Offset Register */
+#define IMX21LCDC_LGWPR 0x0060 /* LCDC Graphic Window Position Register */
+#define IMX21LCDC_LGWCR 0x0064 /* LCDC Graphic Window Control Register */
+#define IMX21LCDC_LGWDCR 0x0068 /* LCDC Graphic Window DMA Control Register */
+#define IMX21LCDC_LAUSCR 0x0080 /* LCDC AUS Mode Control Register */
+#define IMX21LCDC_LAUSCCR 0x0084 /* LCDC AUS Mode Cursor Control Register */
+#define IMX21LCDC_BGLUT 0x0800 /* Background Lookup Table */
+#define IMX21LCDC_GWLUT 0x0C00 /* Graphic Window Lookup Table */
+
+#define IMX21LCDC_LCPR_CC0 BIT(30) /* Cursor Control Bit 0 */
+#define IMX21LCDC_LCPR_CC1 BIT(31) /* Cursor Control Bit 1 */
+
+/* Values HSYNC, VSYNC and Framesize Register */
+#define IMX21LCDC_LHCR_HWIDTH GENMASK(31, 26)
+#define IMX21LCDC_LHCR_HFPORCH GENMASK(15, 8) /* H_WAIT_1 in the i.MX25 Reference manual */
+#define IMX21LCDC_LHCR_HBPORCH GENMASK(7, 0) /* H_WAIT_2 in the i.MX25 Reference manual */
+
+#define IMX21LCDC_LVCR_VWIDTH GENMASK(31, 26)
+#define IMX21LCDC_LVCR_VFPORCH GENMASK(15, 8) /* V_WAIT_1 in the i.MX25 Reference manual */
+#define IMX21LCDC_LVCR_VBPORCH GENMASK(7, 0) /* V_WAIT_2 in the i.MX25 Reference manual */
+
+#define IMX21LCDC_LSR_XMAX GENMASK(25, 20)
+#define IMX21LCDC_LSR_YMAX GENMASK(9, 0)
+
+/* Values for LPCR Register */
+#define IMX21LCDC_LPCR_PCD GENMASK(5, 0)
+#define IMX21LCDC_LPCR_SHARP BIT(6)
+#define IMX21LCDC_LPCR_SCLKSEL BIT(7)
+#define IMX21LCDC_LPCR_ACD GENMASK(14, 8)
+#define IMX21LCDC_LPCR_ACDSEL BIT(15)
+#define IMX21LCDC_LPCR_REV_VS BIT(16)
+#define IMX21LCDC_LPCR_SWAP_SEL BIT(17)
+#define IMX21LCDC_LPCR_END_SEL BIT(18)
+#define IMX21LCDC_LPCR_SCLKIDLE BIT(19)
+#define IMX21LCDC_LPCR_OEPOL BIT(20)
+#define IMX21LCDC_LPCR_CLKPOL BIT(21)
+#define IMX21LCDC_LPCR_LPPOL BIT(22)
+#define IMX21LCDC_LPCR_FLMPOL BIT(23)
+#define IMX21LCDC_LPCR_PIXPOL BIT(24)
+#define IMX21LCDC_LPCR_BPIX GENMASK(27, 25)
+#define IMX21LCDC_LPCR_PBSIZ GENMASK(29, 28)
+#define IMX21LCDC_LPCR_COLOR BIT(30)
+#define IMX21LCDC_LPCR_TFT BIT(31)
+
+#define INTR_EOF BIT(1) /* VBLANK Interrupt Bit */
+
+#define BPP_RGB565 0x05
+#define BPP_XRGB8888 0x07
+
+#define LCDC_MIN_XRES 64
+#define LCDC_MIN_YRES 64
+
+#define LCDC_MAX_XRES 1024
+#define LCDC_MAX_YRES 1024
+
+struct imx_lcdc {
+ struct drm_device drm;
+ struct drm_simple_display_pipe pipe;
+ struct drm_connector *connector;
+ void __iomem *base;
+
+ struct clk *clk_ipg;
+ struct clk *clk_ahb;
+ struct clk *clk_per;
+};
+
+static const u32 imx_lcdc_formats[] = {
+ DRM_FORMAT_RGB565, DRM_FORMAT_XRGB8888,
+};
+
+static inline struct imx_lcdc *imx_lcdc_from_drmdev(struct drm_device *drm)
+{
+ return container_of(drm, struct imx_lcdc, drm);
+}
+
+static unsigned int imx_lcdc_get_format(unsigned int drm_format)
+{
+ switch (drm_format) {
+ default:
+ DRM_WARN("Format not supported - fallback to XRGB8888\n");
+ fallthrough;
+
+ case DRM_FORMAT_XRGB8888:
+ return BPP_XRGB8888;
+
+ case DRM_FORMAT_RGB565:
+ return BPP_RGB565;
+ }
+}
+
+static void imx_lcdc_update_hw_registers(struct drm_simple_display_pipe *pipe,
+ struct drm_plane_state *old_state,
+ bool mode_set)
+{
+ struct drm_crtc *crtc = &pipe->crtc;
+ struct drm_plane_state *new_state = pipe->plane.state;
+ struct drm_framebuffer *fb = new_state->fb;
+ struct imx_lcdc *lcdc = imx_lcdc_from_drmdev(pipe->crtc.dev);
+ u32 lpcr, lvcr, lhcr;
+ u32 framesize;
+ dma_addr_t addr;
+
+ addr = drm_fb_dma_get_gem_addr(fb, new_state, 0);
+ /* The LSSAR register specifies the LCD screen start address (SSA). */
+ writel(addr, lcdc->base + IMX21LCDC_LSSAR);
+
+ if (!mode_set)
+ return;
+
+ /* Disable PER clock to make register write possible */
+ if (old_state && old_state->crtc && old_state->crtc->enabled)
+ clk_disable_unprepare(lcdc->clk_per);
+
+ /* Framesize */
+ framesize = FIELD_PREP(IMX21LCDC_LSR_XMAX, crtc->mode.hdisplay >> 4) |
+ FIELD_PREP(IMX21LCDC_LSR_YMAX, crtc->mode.vdisplay);
+ writel(framesize, lcdc->base + IMX21LCDC_LSR);
+
+ /* HSYNC */
+ lhcr = FIELD_PREP(IMX21LCDC_LHCR_HFPORCH, crtc->mode.hsync_start - crtc->mode.hdisplay - 1) |
+ FIELD_PREP(IMX21LCDC_LHCR_HWIDTH, crtc->mode.hsync_end - crtc->mode.hsync_start - 1) |
+ FIELD_PREP(IMX21LCDC_LHCR_HBPORCH, crtc->mode.htotal - crtc->mode.hsync_end - 3);
+ writel(lhcr, lcdc->base + IMX21LCDC_LHCR);
+
+ /* VSYNC */
+ lvcr = FIELD_PREP(IMX21LCDC_LVCR_VFPORCH, crtc->mode.vsync_start - crtc->mode.vdisplay) |
+ FIELD_PREP(IMX21LCDC_LVCR_VWIDTH, crtc->mode.vsync_end - crtc->mode.vsync_start) |
+ FIELD_PREP(IMX21LCDC_LVCR_VBPORCH, crtc->mode.vtotal - crtc->mode.vsync_end);
+ writel(lvcr, lcdc->base + IMX21LCDC_LVCR);
+
+ lpcr = readl(lcdc->base + IMX21LCDC_LPCR);
+ lpcr &= ~IMX21LCDC_LPCR_BPIX;
+ lpcr |= FIELD_PREP(IMX21LCDC_LPCR_BPIX, imx_lcdc_get_format(fb->format->format));
+ writel(lpcr, lcdc->base + IMX21LCDC_LPCR);
+
+ /* Virtual Page Width */
+ writel(new_state->fb->pitches[0] / 4, lcdc->base + IMX21LCDC_LVPWR);
+
+ /* Enable PER clock */
+ if (new_state->crtc->enabled)
+ clk_prepare_enable(lcdc->clk_per);
+}
+
+static void imx_lcdc_pipe_enable(struct drm_simple_display_pipe *pipe,
+ struct drm_crtc_state *crtc_state,
+ struct drm_plane_state *plane_state)
+{
+ int ret;
+ int clk_div;
+ int bpp;
+ struct imx_lcdc *lcdc = imx_lcdc_from_drmdev(pipe->crtc.dev);
+ struct drm_display_mode *mode = &pipe->crtc.mode;
+ struct drm_display_info *disp_info = &lcdc->connector->display_info;
+ const int hsync_pol = (mode->flags & DRM_MODE_FLAG_PHSYNC) ? 0 : 1;
+ const int vsync_pol = (mode->flags & DRM_MODE_FLAG_PVSYNC) ? 0 : 1;
+ const int data_enable_pol =
+ (disp_info->bus_flags & DRM_BUS_FLAG_DE_HIGH) ? 0 : 1;
+ const int clk_pol =
+ (disp_info->bus_flags & DRM_BUS_FLAG_PIXDATA_DRIVE_POSEDGE) ? 0 : 1;
+
+ clk_div = DIV_ROUND_CLOSEST_ULL(clk_get_rate(lcdc->clk_per),
+ mode->clock * 1000);
+ bpp = imx_lcdc_get_format(plane_state->fb->format->format);
+
+ writel(FIELD_PREP(IMX21LCDC_LPCR_PCD, clk_div - 1) |
+ FIELD_PREP(IMX21LCDC_LPCR_LPPOL, hsync_pol) |
+ FIELD_PREP(IMX21LCDC_LPCR_FLMPOL, vsync_pol) |
+ FIELD_PREP(IMX21LCDC_LPCR_OEPOL, data_enable_pol) |
+ FIELD_PREP(IMX21LCDC_LPCR_TFT, 1) |
+ FIELD_PREP(IMX21LCDC_LPCR_COLOR, 1) |
+ FIELD_PREP(IMX21LCDC_LPCR_PBSIZ, 3) |
+ FIELD_PREP(IMX21LCDC_LPCR_BPIX, bpp) |
+ FIELD_PREP(IMX21LCDC_LPCR_SCLKSEL, 1) |
+ FIELD_PREP(IMX21LCDC_LPCR_PIXPOL, 0) |
+ FIELD_PREP(IMX21LCDC_LPCR_CLKPOL, clk_pol),
+ lcdc->base + IMX21LCDC_LPCR);
+
+ /* 0px panning offset */
+ writel(0x00000000, lcdc->base + IMX21LCDC_LPOR);
+
+ /* disable hardware cursor */
+ writel(readl(lcdc->base + IMX21LCDC_LCPR) & ~(IMX21LCDC_LCPR_CC0 | IMX21LCDC_LCPR_CC1),
+ lcdc->base + IMX21LCDC_LCPR);
+
+ ret = clk_prepare_enable(lcdc->clk_ipg);
+ if (ret) {
+ dev_err(pipe->crtc.dev->dev, "Cannot enable ipg clock: %pe\n", ERR_PTR(ret));
+ return;
+ }
+ ret = clk_prepare_enable(lcdc->clk_ahb);
+ if (ret) {
+ dev_err(pipe->crtc.dev->dev, "Cannot enable ahb clock: %pe\n", ERR_PTR(ret));
+
+ clk_disable_unprepare(lcdc->clk_ipg);
+
+ return;
+ }
+
+ imx_lcdc_update_hw_registers(pipe, NULL, true);
+
+ /* Enable VBLANK Interrupt */
+ writel(INTR_EOF, lcdc->base + IMX21LCDC_LIER);
+}
+
+static void imx_lcdc_pipe_disable(struct drm_simple_display_pipe *pipe)
+{
+ struct imx_lcdc *lcdc = imx_lcdc_from_drmdev(pipe->crtc.dev);
+ struct drm_crtc *crtc = &lcdc->pipe.crtc;
+ struct drm_pending_vblank_event *event;
+
+ clk_disable_unprepare(lcdc->clk_ahb);
+ clk_disable_unprepare(lcdc->clk_ipg);
+
+ if (pipe->crtc.enabled)
+ clk_disable_unprepare(lcdc->clk_per);
+
+ spin_lock_irq(&lcdc->drm.event_lock);
+ event = crtc->state->event;
+ if (event) {
+ crtc->state->event = NULL;
+ drm_crtc_send_vblank_event(crtc, event);
+ }
+ spin_unlock_irq(&lcdc->drm.event_lock);
+
+ /* Disable VBLANK Interrupt */
+ writel(0, lcdc->base + IMX21LCDC_LIER);
+}
+
+static int imx_lcdc_pipe_check(struct drm_simple_display_pipe *pipe,
+ struct drm_plane_state *plane_state,
+ struct drm_crtc_state *crtc_state)
+{
+ const struct drm_display_mode *mode = &crtc_state->mode;
+ const struct drm_display_mode *old_mode = &pipe->crtc.state->mode;
+
+ if (mode->hdisplay < LCDC_MIN_XRES || mode->hdisplay > LCDC_MAX_XRES ||
+ mode->vdisplay < LCDC_MIN_YRES || mode->vdisplay > LCDC_MAX_YRES ||
+ mode->hdisplay % 0x10) { /* must be multiple of 16 */
+ drm_err(pipe->crtc.dev, "unsupported display mode (%u x %u)\n",
+ mode->hdisplay, mode->vdisplay);
+ return -EINVAL;
+ }
+
+ crtc_state->mode_changed =
+ old_mode->hdisplay != mode->hdisplay ||
+ old_mode->vdisplay != mode->vdisplay;
+
+ return 0;
+}
+
+static void imx_lcdc_pipe_update(struct drm_simple_display_pipe *pipe,
+ struct drm_plane_state *old_state)
+{
+ struct drm_crtc *crtc = &pipe->crtc;
+ struct drm_pending_vblank_event *event = crtc->state->event;
+ struct drm_plane_state *new_state = pipe->plane.state;
+ struct drm_framebuffer *fb = new_state->fb;
+ struct drm_framebuffer *old_fb = old_state->fb;
+ struct drm_crtc *old_crtc = old_state->crtc;
+ bool mode_changed = false;
+
+ if (old_fb && old_fb->format != fb->format)
+ mode_changed = true;
+ else if (old_crtc != crtc)
+ mode_changed = true;
+
+ imx_lcdc_update_hw_registers(pipe, old_state, mode_changed);
+
+ if (event) {
+ crtc->state->event = NULL;
+
+ spin_lock_irq(&crtc->dev->event_lock);
+
+ if (crtc->state->active && drm_crtc_vblank_get(crtc) == 0)
+ drm_crtc_arm_vblank_event(crtc, event);
+ else
+ drm_crtc_send_vblank_event(crtc, event);
+
+ spin_unlock_irq(&crtc->dev->event_lock);
+ }
+}
+
+static const struct drm_simple_display_pipe_funcs imx_lcdc_pipe_funcs = {
+ .enable = imx_lcdc_pipe_enable,
+ .disable = imx_lcdc_pipe_disable,
+ .check = imx_lcdc_pipe_check,
+ .update = imx_lcdc_pipe_update,
+};
+
+static const struct drm_mode_config_funcs imx_lcdc_mode_config_funcs = {
+ .fb_create = drm_gem_fb_create_with_dirty,
+ .atomic_check = drm_atomic_helper_check,
+ .atomic_commit = drm_atomic_helper_commit,
+};
+
+static const struct drm_mode_config_helper_funcs imx_lcdc_mode_config_helpers = {
+ .atomic_commit_tail = drm_atomic_helper_commit_tail_rpm,
+};
+
+static void imx_lcdc_release(struct drm_device *drm)
+{
+ struct imx_lcdc *lcdc = imx_lcdc_from_drmdev(drm);
+
+ drm_kms_helper_poll_fini(drm);
+ kfree(lcdc);
+}
+
+DEFINE_DRM_GEM_DMA_FOPS(imx_lcdc_drm_fops);
+
+static struct drm_driver imx_lcdc_drm_driver = {
+ .driver_features = DRIVER_GEM | DRIVER_MODESET | DRIVER_ATOMIC,
+ .fops = &imx_lcdc_drm_fops,
+ DRM_GEM_DMA_DRIVER_OPS_VMAP,
+ .release = imx_lcdc_release,
+ .name = "imx-lcdc",
+ .desc = "i.MX LCDC driver",
+ .date = "20200716",
+};
+
+static const struct of_device_id imx_lcdc_of_dev_id[] = {
+ {
+ .compatible = "fsl,imx21-lcdc",
+ },
+ {
+ .compatible = "fsl,imx25-lcdc",
+ },
+ { /* sentinel */ }
+};
+MODULE_DEVICE_TABLE(of, imx_lcdc_of_dev_id);
+
+static irqreturn_t imx_lcdc_irq_handler(int irq, void *arg)
+{
+ struct imx_lcdc *lcdc = arg;
+ struct drm_crtc *crtc = &lcdc->pipe.crtc;
+ unsigned int status;
+
+ status = readl(lcdc->base + IMX21LCDC_LISR);
+
+ if (status & INTR_EOF) {
+ drm_crtc_handle_vblank(crtc);
+ return IRQ_HANDLED;
+ }
+
+ return IRQ_NONE;
+}
+
+static int imx_lcdc_probe(struct platform_device *pdev)
+{
+ struct imx_lcdc *lcdc;
+ struct drm_device *drm;
+ struct drm_bridge *bridge;
+ int irq;
+ int ret;
+ struct device *dev = &pdev->dev;
+
+ lcdc = devm_drm_dev_alloc(dev, &imx_lcdc_drm_driver,
+ struct imx_lcdc, drm);
+ if (!lcdc)
+ return -ENOMEM;
+
+ drm = &lcdc->drm;
+
+ lcdc->base = devm_platform_ioremap_resource(pdev, 0);
+ if (IS_ERR(lcdc->base))
+ return dev_err_probe(dev, PTR_ERR(lcdc->base), "Cannot get IO memory\n");
+
+ bridge = devm_drm_of_get_bridge(dev, dev->of_node, 0, 0);
+ if (IS_ERR(bridge))
+ return dev_err_probe(dev, PTR_ERR(bridge), "Failed to find bridge\n");
+
+ /* Get Clocks */
+ lcdc->clk_ipg = devm_clk_get(dev, "ipg");
+ if (IS_ERR(lcdc->clk_ipg))
+ return dev_err_probe(dev, PTR_ERR(lcdc->clk_ipg), "Failed to get %s clk\n", "ipg");
+
+ lcdc->clk_ahb = devm_clk_get(dev, "ahb");
+ if (IS_ERR(lcdc->clk_ahb))
+ return dev_err_probe(dev, PTR_ERR(lcdc->clk_ahb), "Failed to get %s clk\n", "ahb");
+
+ lcdc->clk_per = devm_clk_get(dev, "per");
+ if (IS_ERR(lcdc->clk_per))
+ return dev_err_probe(dev, PTR_ERR(lcdc->clk_per), "Failed to get %s clk\n", "per");
+
+ ret = dma_set_mask_and_coherent(drm->dev, DMA_BIT_MASK(32));
+ if (ret)
+ return dev_err_probe(dev, ret, "Cannot set DMA Mask\n");
+
+ /* Modeset init */
+ ret = drmm_mode_config_init(drm);
+ if (ret)
+ return dev_err_probe(dev, ret, "Cannot initialize mode configuration structure\n");
+
+ /* CRTC, Plane, Encoder */
+ ret = drm_simple_display_pipe_init(drm, &lcdc->pipe,
+ &imx_lcdc_pipe_funcs,
+ imx_lcdc_formats,
+ ARRAY_SIZE(imx_lcdc_formats), NULL, NULL);
+ if (ret < 0)
+ return dev_err_probe(drm->dev, ret, "Cannot setup simple display pipe\n");
+
+ ret = drm_vblank_init(drm, drm->mode_config.num_crtc);
+ if (ret < 0)
+ return dev_err_probe(drm->dev, ret, "Failed to initialize vblank\n");
+
+ ret = drm_bridge_attach(&lcdc->pipe.encoder, bridge, NULL, DRM_BRIDGE_ATTACH_NO_CONNECTOR);
+ if (ret)
+ return dev_err_probe(drm->dev, ret, "Cannot attach bridge\n");
+
+ lcdc->connector = drm_bridge_connector_init(drm, &lcdc->pipe.encoder);
+ if (IS_ERR(lcdc->connector))
+ return dev_err_probe(drm->dev, PTR_ERR(lcdc->connector), "Cannot init bridge connector\n");
+
+ drm_connector_attach_encoder(lcdc->connector, &lcdc->pipe.encoder);
+
+ /*
+ * The LCDC controller does not have an enable bit. The
+ * controller starts directly when the clocks are enabled.
+ * If the clocks are enabled when the controller is not yet
+ * programmed with proper register values (enabled at the
+ * bootloader, for example) then it just goes into some undefined
+ * state.
+ * To avoid this issue, let's enable and disable LCDC IPG,
+ * PER and AHB clock so that we force some kind of 'reset'
+ * to the LCDC block.
+ */
+
+ ret = clk_prepare_enable(lcdc->clk_ipg);
+ if (ret)
+ return dev_err_probe(dev, ret, "Cannot enable ipg clock\n");
+ clk_disable_unprepare(lcdc->clk_ipg);
+
+ ret = clk_prepare_enable(lcdc->clk_per);
+ if (ret)
+ return dev_err_probe(dev, ret, "Cannot enable per clock\n");
+ clk_disable_unprepare(lcdc->clk_per);
+
+ ret = clk_prepare_enable(lcdc->clk_ahb);
+ if (ret)
+ return dev_err_probe(dev, ret, "Cannot enable ahb clock\n");
+ clk_disable_unprepare(lcdc->clk_ahb);
+
+ drm->mode_config.min_width = LCDC_MIN_XRES;
+ drm->mode_config.max_width = LCDC_MAX_XRES;
+ drm->mode_config.min_height = LCDC_MIN_YRES;
+ drm->mode_config.max_height = LCDC_MAX_YRES;
+ drm->mode_config.preferred_depth = 16;
+ drm->mode_config.funcs = &imx_lcdc_mode_config_funcs;
+ drm->mode_config.helper_private = &imx_lcdc_mode_config_helpers;
+
+ drm_mode_config_reset(drm);
+
+ irq = platform_get_irq(pdev, 0);
+ if (irq < 0) {
+ ret = irq;
+ return ret;
+ }
+
+ ret = devm_request_irq(dev, irq, imx_lcdc_irq_handler, 0, "imx-lcdc", lcdc);
+ if (ret < 0)
+ return dev_err_probe(drm->dev, ret, "Failed to install IRQ handler\n");
+
+ platform_set_drvdata(pdev, drm);
+
+ ret = drm_dev_register(&lcdc->drm, 0);
+ if (ret)
+ return dev_err_probe(dev, ret, "Cannot register device\n");
+
+ drm_fbdev_generic_setup(drm, 0);
+
+ return 0;
+}
+
+static int imx_lcdc_remove(struct platform_device *pdev)
+{
+ struct drm_device *drm = platform_get_drvdata(pdev);
+
+ drm_dev_unregister(drm);
+ drm_atomic_helper_shutdown(drm);
+
+ return 0;
+}
+
+static void imx_lcdc_shutdown(struct platform_device *pdev)
+{
+ drm_atomic_helper_shutdown(platform_get_drvdata(pdev));
+}
+
+static struct platform_driver imx_lcdc_driver = {
+ .driver = {
+ .name = "imx-lcdc",
+ .of_match_table = imx_lcdc_of_dev_id,
+ },
+ .probe = imx_lcdc_probe,
+ .remove = imx_lcdc_remove,
+ .shutdown = imx_lcdc_shutdown,
+};
+module_platform_driver(imx_lcdc_driver);
+
+MODULE_AUTHOR("Marian Cichy <M.Cichy@pengutronix.de>");
+MODULE_DESCRIPTION("Freescale i.MX LCDC driver");
+MODULE_LICENSE("GPL");
diff --git a/drivers/gpu/drm/ingenic/ingenic-drm-drv.c b/drivers/gpu/drm/ingenic/ingenic-drm-drv.c
index ab0515d2c420..5ec75e9ba499 100644
--- a/drivers/gpu/drm/ingenic/ingenic-drm-drv.c
+++ b/drivers/gpu/drm/ingenic/ingenic-drm-drv.c
@@ -26,13 +26,12 @@
#include <drm/drm_bridge_connector.h>
#include <drm/drm_color_mgmt.h>
#include <drm/drm_crtc.h>
-#include <drm/drm_crtc_helper.h>
#include <drm/drm_damage_helper.h>
#include <drm/drm_drv.h>
#include <drm/drm_encoder.h>
#include <drm/drm_gem_dma_helper.h>
#include <drm/drm_fb_dma_helper.h>
-#include <drm/drm_fb_helper.h>
+#include <drm/drm_fbdev_generic.h>
#include <drm/drm_fourcc.h>
#include <drm/drm_framebuffer.h>
#include <drm/drm_gem_atomic_helper.h>
@@ -1018,7 +1017,6 @@ static const struct drm_bridge_funcs ingenic_drm_bridge_funcs = {
static const struct drm_mode_config_funcs ingenic_drm_mode_config_funcs = {
.fb_create = ingenic_drm_gem_fb_create,
- .output_poll_changed = drm_fb_helper_output_poll_changed,
.atomic_check = drm_atomic_helper_check,
.atomic_commit = drm_atomic_helper_commit,
};
@@ -1629,7 +1627,11 @@ static int ingenic_drm_init(void)
return err;
}
- return platform_driver_register(&ingenic_drm_driver);
+ err = platform_driver_register(&ingenic_drm_driver);
+ if (IS_ENABLED(CONFIG_DRM_INGENIC_IPU) && err)
+ platform_driver_unregister(ingenic_ipu_driver_ptr);
+
+ return err;
}
module_init(ingenic_drm_init);
diff --git a/drivers/gpu/drm/kmb/kmb_crtc.c b/drivers/gpu/drm/kmb/kmb_crtc.c
index 06613ffeaaf8..647872f65bff 100644
--- a/drivers/gpu/drm/kmb/kmb_crtc.c
+++ b/drivers/gpu/drm/kmb/kmb_crtc.c
@@ -8,7 +8,6 @@
#include <drm/drm_atomic.h>
#include <drm/drm_atomic_helper.h>
#include <drm/drm_crtc.h>
-#include <drm/drm_crtc_helper.h>
#include <drm/drm_print.h>
#include <drm/drm_vblank.h>
#include <drm/drm_modeset_helper_vtables.h>
diff --git a/drivers/gpu/drm/kmb/kmb_drv.c b/drivers/gpu/drm/kmb/kmb_drv.c
index 2382ccb3ee99..24035b53441c 100644
--- a/drivers/gpu/drm/kmb/kmb_drv.c
+++ b/drivers/gpu/drm/kmb/kmb_drv.c
@@ -15,7 +15,7 @@
#include <drm/drm_atomic_helper.h>
#include <drm/drm_drv.h>
-#include <drm/drm_fb_helper.h>
+#include <drm/drm_fbdev_dma.h>
#include <drm/drm_gem_dma_helper.h>
#include <drm/drm_gem_framebuffer_helper.h>
#include <drm/drm_module.h>
@@ -562,7 +562,7 @@ static int kmb_probe(struct platform_device *pdev)
if (ret)
goto err_register;
- drm_fbdev_generic_setup(&kmb->drm, 0);
+ drm_fbdev_dma_setup(&kmb->drm, 0);
return 0;
diff --git a/drivers/gpu/drm/kmb/kmb_plane.c b/drivers/gpu/drm/kmb/kmb_plane.c
index a42f63f6f957..9e0562aa2bcb 100644
--- a/drivers/gpu/drm/kmb/kmb_plane.c
+++ b/drivers/gpu/drm/kmb/kmb_plane.c
@@ -7,9 +7,7 @@
#include <drm/drm_atomic_helper.h>
#include <drm/drm_blend.h>
#include <drm/drm_crtc.h>
-#include <drm/drm_crtc_helper.h>
#include <drm/drm_fb_dma_helper.h>
-#include <drm/drm_fb_helper.h>
#include <drm/drm_fourcc.h>
#include <drm/drm_framebuffer.h>
#include <drm/drm_gem_dma_helper.h>
diff --git a/drivers/gpu/drm/lima/lima_devfreq.c b/drivers/gpu/drm/lima/lima_devfreq.c
index 011be7ff51e1..bc8fb4e38d0a 100644
--- a/drivers/gpu/drm/lima/lima_devfreq.c
+++ b/drivers/gpu/drm/lima/lima_devfreq.c
@@ -112,11 +112,6 @@ int lima_devfreq_init(struct lima_device *ldev)
unsigned long cur_freq;
int ret;
const char *regulator_names[] = { "mali", NULL };
- const char *clk_names[] = { "core", NULL };
- struct dev_pm_opp_config config = {
- .regulator_names = regulator_names,
- .clk_names = clk_names,
- };
if (!device_property_present(dev, "operating-points-v2"))
/* Optional, continue without devfreq */
@@ -124,7 +119,15 @@ int lima_devfreq_init(struct lima_device *ldev)
spin_lock_init(&ldevfreq->lock);
- ret = devm_pm_opp_set_config(dev, &config);
+ /*
+ * clkname is set separately so it is not affected by the optional
+ * regulator setting which may return error.
+ */
+ ret = devm_pm_opp_set_clkname(dev, "core");
+ if (ret)
+ return ret;
+
+ ret = devm_pm_opp_set_regulators(dev, regulator_names);
if (ret) {
/* Continue if the optional regulator is missing */
if (ret != -ENODEV)
diff --git a/drivers/gpu/drm/lima/lima_drv.c b/drivers/gpu/drm/lima/lima_drv.c
index 7b8d7178d09a..39cab4a55f57 100644
--- a/drivers/gpu/drm/lima/lima_drv.c
+++ b/drivers/gpu/drm/lima/lima_drv.c
@@ -392,8 +392,10 @@ static int lima_pdev_probe(struct platform_device *pdev)
/* Allocate and initialize the DRM device. */
ddev = drm_dev_alloc(&lima_drm_driver, &pdev->dev);
- if (IS_ERR(ddev))
- return PTR_ERR(ddev);
+ if (IS_ERR(ddev)) {
+ err = PTR_ERR(ddev);
+ goto err_out0;
+ }
ddev->dev_private = ldev;
ldev->ddev = ddev;
diff --git a/drivers/gpu/drm/lima/lima_gem.c b/drivers/gpu/drm/lima/lima_gem.c
index 0f1ca0b0db49..10252dc11a22 100644
--- a/drivers/gpu/drm/lima/lima_gem.c
+++ b/drivers/gpu/drm/lima/lima_gem.c
@@ -277,21 +277,13 @@ static int lima_gem_add_deps(struct drm_file *file, struct lima_submit *submit)
int i, err;
for (i = 0; i < ARRAY_SIZE(submit->in_sync); i++) {
- struct dma_fence *fence = NULL;
-
if (!submit->in_sync[i])
continue;
- err = drm_syncobj_find_fence(file, submit->in_sync[i],
- 0, 0, &fence);
+ err = drm_sched_job_add_syncobj_dependency(&submit->task->base, file,
+ submit->in_sync[i], 0);
if (err)
return err;
-
- err = drm_sched_job_add_dependency(&submit->task->base, fence);
- if (err) {
- dma_fence_put(fence);
- return err;
- }
}
return 0;
diff --git a/drivers/gpu/drm/lima/lima_sched.c b/drivers/gpu/drm/lima/lima_sched.c
index e82931712d8a..ff003403fbbc 100644
--- a/drivers/gpu/drm/lima/lima_sched.c
+++ b/drivers/gpu/drm/lima/lima_sched.c
@@ -371,7 +371,7 @@ static void lima_sched_build_error_task_list(struct lima_sched_task *task)
} else {
buffer_chunk->size = lima_bo_size(bo);
- ret = drm_gem_shmem_vmap(&bo->base, &map);
+ ret = drm_gem_vmap_unlocked(&bo->base.base, &map);
if (ret) {
kvfree(et);
goto out;
@@ -379,7 +379,7 @@ static void lima_sched_build_error_task_list(struct lima_sched_task *task)
memcpy(buffer_chunk + 1, map.vaddr, buffer_chunk->size);
- drm_gem_shmem_vunmap(&bo->base, &map);
+ drm_gem_vunmap_unlocked(&bo->base.base, &map);
}
buffer_chunk = (void *)(buffer_chunk + 1) + buffer_chunk->size;
diff --git a/drivers/gpu/drm/logicvc/logicvc_drm.c b/drivers/gpu/drm/logicvc/logicvc_drm.c
index cc9a4e965f77..c35c453fd025 100644
--- a/drivers/gpu/drm/logicvc/logicvc_drm.c
+++ b/drivers/gpu/drm/logicvc/logicvc_drm.c
@@ -17,7 +17,7 @@
#include <drm/drm_atomic_helper.h>
#include <drm/drm_drv.h>
-#include <drm/drm_fb_helper.h>
+#include <drm/drm_fbdev_dma.h>
#include <drm/drm_gem_dma_helper.h>
#include <drm/drm_print.h>
@@ -301,6 +301,7 @@ static int logicvc_drm_probe(struct platform_device *pdev)
struct regmap *regmap = NULL;
struct resource res;
void __iomem *base;
+ unsigned int preferred_bpp;
int irq;
int ret;
@@ -438,7 +439,17 @@ static int logicvc_drm_probe(struct platform_device *pdev)
goto error_mode;
}
- drm_fbdev_generic_setup(drm_dev, drm_dev->mode_config.preferred_depth);
+ switch (drm_dev->mode_config.preferred_depth) {
+ case 16:
+ preferred_bpp = 16;
+ break;
+ case 24:
+ case 32:
+ default:
+ preferred_bpp = 32;
+ break;
+ }
+ drm_fbdev_dma_setup(drm_dev, preferred_bpp);
return 0;
diff --git a/drivers/gpu/drm/logicvc/logicvc_interface.c b/drivers/gpu/drm/logicvc/logicvc_interface.c
index 815cebb4c4ca..689049d395c0 100644
--- a/drivers/gpu/drm/logicvc/logicvc_interface.c
+++ b/drivers/gpu/drm/logicvc/logicvc_interface.c
@@ -9,7 +9,6 @@
#include <drm/drm_atomic_helper.h>
#include <drm/drm_bridge.h>
#include <drm/drm_connector.h>
-#include <drm/drm_crtc_helper.h>
#include <drm/drm_drv.h>
#include <drm/drm_encoder.h>
#include <drm/drm_gem_dma_helper.h>
diff --git a/drivers/gpu/drm/logicvc/logicvc_mode.c b/drivers/gpu/drm/logicvc/logicvc_mode.c
index d8207ffda1af..3cf04b70bd27 100644
--- a/drivers/gpu/drm/logicvc/logicvc_mode.c
+++ b/drivers/gpu/drm/logicvc/logicvc_mode.c
@@ -8,9 +8,7 @@
#include <drm/drm_atomic.h>
#include <drm/drm_atomic_helper.h>
-#include <drm/drm_crtc_helper.h>
#include <drm/drm_drv.h>
-#include <drm/drm_fb_helper.h>
#include <drm/drm_gem_dma_helper.h>
#include <drm/drm_gem_framebuffer_helper.h>
#include <drm/drm_mode_config.h>
@@ -26,7 +24,6 @@
static const struct drm_mode_config_funcs logicvc_mode_config_funcs = {
.fb_create = drm_gem_fb_create,
- .output_poll_changed = drm_fb_helper_output_poll_changed,
.atomic_check = drm_atomic_helper_check,
.atomic_commit = drm_atomic_helper_commit,
};
diff --git a/drivers/gpu/drm/mcde/mcde_drv.c b/drivers/gpu/drm/mcde/mcde_drv.c
index 1c4482ad507d..a8cd86c06c14 100644
--- a/drivers/gpu/drm/mcde/mcde_drv.c
+++ b/drivers/gpu/drm/mcde/mcde_drv.c
@@ -69,7 +69,7 @@
#include <drm/drm_bridge.h>
#include <drm/drm_drv.h>
#include <drm/drm_fb_dma_helper.h>
-#include <drm/drm_fb_helper.h>
+#include <drm/drm_fbdev_dma.h>
#include <drm/drm_gem.h>
#include <drm/drm_gem_dma_helper.h>
#include <drm/drm_gem_framebuffer_helper.h>
@@ -94,7 +94,7 @@
#define MCDE_PID_MAJOR_VERSION_MASK 0xFF000000
static const struct drm_mode_config_funcs mcde_mode_config_funcs = {
- .fb_create = drm_gem_fb_create_with_dirty,
+ .fb_create = drm_gem_fb_create,
.atomic_check = drm_atomic_helper_check,
.atomic_commit = drm_atomic_helper_commit,
};
@@ -203,7 +203,6 @@ DEFINE_DRM_GEM_DMA_FOPS(drm_fops);
static const struct drm_driver mcde_drm_driver = {
.driver_features =
DRIVER_MODESET | DRIVER_GEM | DRIVER_ATOMIC,
- .lastclose = drm_fb_helper_lastclose,
.ioctls = NULL,
.fops = &drm_fops,
.name = "mcde",
@@ -238,7 +237,7 @@ static int mcde_drm_bind(struct device *dev)
if (ret < 0)
goto unbind;
- drm_fbdev_generic_setup(drm, 32);
+ drm_fbdev_dma_setup(drm, 32);
return 0;
diff --git a/drivers/gpu/drm/mediatek/Kconfig b/drivers/gpu/drm/mediatek/Kconfig
index 369e495d0c3e..b451dee64d34 100644
--- a/drivers/gpu/drm/mediatek/Kconfig
+++ b/drivers/gpu/drm/mediatek/Kconfig
@@ -7,7 +7,6 @@ config DRM_MEDIATEK
depends on HAVE_ARM_SMCCC
depends on OF
depends on MTK_MMSYS
- select DRM_GEM_DMA_HELPER
select DRM_KMS_HELPER
select DRM_MIPI_DSI
select DRM_PANEL
diff --git a/drivers/gpu/drm/mediatek/Makefile b/drivers/gpu/drm/mediatek/Makefile
index 3517d1c65cd7..d4d193f60271 100644
--- a/drivers/gpu/drm/mediatek/Makefile
+++ b/drivers/gpu/drm/mediatek/Makefile
@@ -6,6 +6,7 @@ mediatek-drm-y := mtk_disp_aal.o \
mtk_disp_gamma.o \
mtk_disp_merge.o \
mtk_disp_ovl.o \
+ mtk_disp_ovl_adaptor.o \
mtk_disp_rdma.o \
mtk_drm_crtc.o \
mtk_drm_ddp_comp.o \
@@ -14,6 +15,7 @@ mediatek-drm-y := mtk_disp_aal.o \
mtk_drm_plane.o \
mtk_dsi.o \
mtk_dpi.o \
+ mtk_ethdr.o \
mtk_mdp_rdma.o
obj-$(CONFIG_DRM_MEDIATEK) += mediatek-drm.o
diff --git a/drivers/gpu/drm/mediatek/mtk_cec.c b/drivers/gpu/drm/mediatek/mtk_cec.c
index cdfa648910b2..b640bc0559e7 100644
--- a/drivers/gpu/drm/mediatek/mtk_cec.c
+++ b/drivers/gpu/drm/mediatek/mtk_cec.c
@@ -12,6 +12,8 @@
#include <linux/platform_device.h>
#include "mtk_cec.h"
+#include "mtk_hdmi.h"
+#include "mtk_drm_drv.h"
#define TR_CONFIG 0x00
#define CLEAR_CEC_IRQ BIT(15)
diff --git a/drivers/gpu/drm/mediatek/mtk_disp_aal.c b/drivers/gpu/drm/mediatek/mtk_disp_aal.c
index 0f9d7efb61d7..434e8a9ce8ab 100644
--- a/drivers/gpu/drm/mediatek/mtk_disp_aal.c
+++ b/drivers/gpu/drm/mediatek/mtk_disp_aal.c
@@ -14,6 +14,7 @@
#include "mtk_disp_drv.h"
#include "mtk_drm_crtc.h"
#include "mtk_drm_ddp_comp.h"
+#include "mtk_drm_drv.h"
#define DISP_AAL_EN 0x0000
#define AAL_EN BIT(0)
diff --git a/drivers/gpu/drm/mediatek/mtk_disp_ccorr.c b/drivers/gpu/drm/mediatek/mtk_disp_ccorr.c
index 3a53ebc4e172..1773379b2439 100644
--- a/drivers/gpu/drm/mediatek/mtk_disp_ccorr.c
+++ b/drivers/gpu/drm/mediatek/mtk_disp_ccorr.c
@@ -14,6 +14,7 @@
#include "mtk_disp_drv.h"
#include "mtk_drm_crtc.h"
#include "mtk_drm_ddp_comp.h"
+#include "mtk_drm_drv.h"
#define DISP_CCORR_EN 0x0000
#define CCORR_EN BIT(0)
diff --git a/drivers/gpu/drm/mediatek/mtk_disp_color.c b/drivers/gpu/drm/mediatek/mtk_disp_color.c
index 473f5bb5cbad..cac9206079e7 100644
--- a/drivers/gpu/drm/mediatek/mtk_disp_color.c
+++ b/drivers/gpu/drm/mediatek/mtk_disp_color.c
@@ -14,6 +14,7 @@
#include "mtk_disp_drv.h"
#include "mtk_drm_crtc.h"
#include "mtk_drm_ddp_comp.h"
+#include "mtk_drm_drv.h"
#define DISP_COLOR_CFG_MAIN 0x0400
#define DISP_COLOR_START_MT2701 0x0f00
diff --git a/drivers/gpu/drm/mediatek/mtk_disp_drv.h b/drivers/gpu/drm/mediatek/mtk_disp_drv.h
index 33e61a136bbc..2254038519e1 100644
--- a/drivers/gpu/drm/mediatek/mtk_disp_drv.h
+++ b/drivers/gpu/drm/mediatek/mtk_disp_drv.h
@@ -7,6 +7,8 @@
#define _MTK_DISP_DRV_H_
#include <linux/soc/mediatek/mtk-cmdq.h>
+#include <linux/soc/mediatek/mtk-mmsys.h>
+#include <linux/soc/mediatek/mtk-mutex.h>
#include "mtk_drm_plane.h"
#include "mtk_mdp_rdma.h"
@@ -96,6 +98,34 @@ void mtk_ovl_register_vblank_cb(struct device *dev,
void mtk_ovl_unregister_vblank_cb(struct device *dev);
void mtk_ovl_enable_vblank(struct device *dev);
void mtk_ovl_disable_vblank(struct device *dev);
+const u32 *mtk_ovl_get_formats(struct device *dev);
+size_t mtk_ovl_get_num_formats(struct device *dev);
+
+void mtk_ovl_adaptor_add_comp(struct device *dev, struct mtk_mutex *mutex);
+void mtk_ovl_adaptor_remove_comp(struct device *dev, struct mtk_mutex *mutex);
+void mtk_ovl_adaptor_connect(struct device *dev, struct device *mmsys_dev,
+ unsigned int next);
+void mtk_ovl_adaptor_disconnect(struct device *dev, struct device *mmsys_dev,
+ unsigned int next);
+int mtk_ovl_adaptor_clk_enable(struct device *dev);
+void mtk_ovl_adaptor_clk_disable(struct device *dev);
+void mtk_ovl_adaptor_config(struct device *dev, unsigned int w,
+ unsigned int h, unsigned int vrefresh,
+ unsigned int bpc, struct cmdq_pkt *cmdq_pkt);
+void mtk_ovl_adaptor_layer_config(struct device *dev, unsigned int idx,
+ struct mtk_plane_state *state,
+ struct cmdq_pkt *cmdq_pkt);
+void mtk_ovl_adaptor_register_vblank_cb(struct device *dev, void (*vblank_cb)(void *),
+ void *vblank_cb_data);
+void mtk_ovl_adaptor_unregister_vblank_cb(struct device *dev);
+void mtk_ovl_adaptor_enable_vblank(struct device *dev);
+void mtk_ovl_adaptor_disable_vblank(struct device *dev);
+void mtk_ovl_adaptor_start(struct device *dev);
+void mtk_ovl_adaptor_stop(struct device *dev);
+unsigned int mtk_ovl_adaptor_layer_nr(struct device *dev);
+struct device *mtk_ovl_adaptor_dma_dev_get(struct device *dev);
+const u32 *mtk_ovl_adaptor_get_formats(struct device *dev);
+size_t mtk_ovl_adaptor_get_num_formats(struct device *dev);
void mtk_rdma_bypass_shadow(struct device *dev);
int mtk_rdma_clk_enable(struct device *dev);
@@ -115,6 +145,8 @@ void mtk_rdma_register_vblank_cb(struct device *dev,
void mtk_rdma_unregister_vblank_cb(struct device *dev);
void mtk_rdma_enable_vblank(struct device *dev);
void mtk_rdma_disable_vblank(struct device *dev);
+const u32 *mtk_rdma_get_formats(struct device *dev);
+size_t mtk_rdma_get_num_formats(struct device *dev);
int mtk_mdp_rdma_clk_enable(struct device *dev);
void mtk_mdp_rdma_clk_disable(struct device *dev);
@@ -122,4 +154,7 @@ void mtk_mdp_rdma_start(struct device *dev, struct cmdq_pkt *cmdq_pkt);
void mtk_mdp_rdma_stop(struct device *dev, struct cmdq_pkt *cmdq_pkt);
void mtk_mdp_rdma_config(struct device *dev, struct mtk_mdp_rdma_cfg *cfg,
struct cmdq_pkt *cmdq_pkt);
+const u32 *mtk_mdp_rdma_get_formats(struct device *dev);
+size_t mtk_mdp_rdma_get_num_formats(struct device *dev);
+
#endif
diff --git a/drivers/gpu/drm/mediatek/mtk_disp_gamma.c b/drivers/gpu/drm/mediatek/mtk_disp_gamma.c
index bbd558a036ec..c844942603f7 100644
--- a/drivers/gpu/drm/mediatek/mtk_disp_gamma.c
+++ b/drivers/gpu/drm/mediatek/mtk_disp_gamma.c
@@ -14,6 +14,7 @@
#include "mtk_disp_drv.h"
#include "mtk_drm_crtc.h"
#include "mtk_drm_ddp_comp.h"
+#include "mtk_drm_drv.h"
#define DISP_GAMMA_EN 0x0000
#define GAMMA_EN BIT(0)
diff --git a/drivers/gpu/drm/mediatek/mtk_disp_ovl.c b/drivers/gpu/drm/mediatek/mtk_disp_ovl.c
index 002b0f6cae1a..8f52cc1f3fba 100644
--- a/drivers/gpu/drm/mediatek/mtk_disp_ovl.c
+++ b/drivers/gpu/drm/mediatek/mtk_disp_ovl.c
@@ -19,6 +19,7 @@
#include "mtk_disp_drv.h"
#include "mtk_drm_crtc.h"
#include "mtk_drm_ddp_comp.h"
+#include "mtk_drm_drv.h"
#define DISP_REG_OVL_INTEN 0x0004
#define OVL_FME_CPL_INT BIT(1)
@@ -29,17 +30,23 @@
#define DISP_REG_OVL_DATAPATH_CON 0x0024
#define OVL_LAYER_SMI_ID_EN BIT(0)
#define OVL_BGCLR_SEL_IN BIT(2)
+#define OVL_LAYER_AFBC_EN(n) BIT(4+n)
#define DISP_REG_OVL_ROI_BGCLR 0x0028
#define DISP_REG_OVL_SRC_CON 0x002c
#define DISP_REG_OVL_CON(n) (0x0030 + 0x20 * (n))
#define DISP_REG_OVL_SRC_SIZE(n) (0x0038 + 0x20 * (n))
#define DISP_REG_OVL_OFFSET(n) (0x003c + 0x20 * (n))
+#define DISP_REG_OVL_PITCH_MSB(n) (0x0040 + 0x20 * (n))
+#define OVL_PITCH_MSB_2ND_SUBBUF BIT(16)
#define DISP_REG_OVL_PITCH(n) (0x0044 + 0x20 * (n))
#define DISP_REG_OVL_RDMA_CTRL(n) (0x00c0 + 0x20 * (n))
#define DISP_REG_OVL_RDMA_GMC(n) (0x00c8 + 0x20 * (n))
#define DISP_REG_OVL_ADDR_MT2701 0x0040
+#define DISP_REG_OVL_CLRFMT_EXT 0x02D0
#define DISP_REG_OVL_ADDR_MT8173 0x0f40
#define DISP_REG_OVL_ADDR(ovl, n) ((ovl)->data->addr + 0x20 * (n))
+#define DISP_REG_OVL_HDR_ADDR(ovl, n) ((ovl)->data->addr + 0x20 * (n) + 0x04)
+#define DISP_REG_OVL_HDR_PITCH(ovl, n) ((ovl)->data->addr + 0x20 * (n) + 0x08)
#define GMC_THRESHOLD_BITS 16
#define GMC_THRESHOLD_HIGH ((1 << GMC_THRESHOLD_BITS) / 4)
@@ -56,17 +63,55 @@
0 : OVL_CON_CLRFMT_RGB)
#define OVL_CON_CLRFMT_RGB888(ovl) ((ovl)->data->fmt_rgb565_is_0 ? \
OVL_CON_CLRFMT_RGB : 0)
+#define OVL_CON_CLRFMT_BIT_DEPTH_MASK(ovl) (0xFF << 4 * (ovl))
+#define OVL_CON_CLRFMT_BIT_DEPTH(depth, ovl) (depth << 4 * (ovl))
+#define OVL_CON_CLRFMT_8_BIT 0x00
+#define OVL_CON_CLRFMT_10_BIT 0x01
#define OVL_CON_AEN BIT(8)
#define OVL_CON_ALPHA 0xff
#define OVL_CON_VIRT_FLIP BIT(9)
#define OVL_CON_HORZ_FLIP BIT(10)
+static const u32 mt8173_formats[] = {
+ DRM_FORMAT_XRGB8888,
+ DRM_FORMAT_ARGB8888,
+ DRM_FORMAT_BGRX8888,
+ DRM_FORMAT_BGRA8888,
+ DRM_FORMAT_ABGR8888,
+ DRM_FORMAT_XBGR8888,
+ DRM_FORMAT_RGB888,
+ DRM_FORMAT_BGR888,
+ DRM_FORMAT_RGB565,
+ DRM_FORMAT_UYVY,
+ DRM_FORMAT_YUYV,
+};
+
+static const u32 mt8195_formats[] = {
+ DRM_FORMAT_XRGB8888,
+ DRM_FORMAT_ARGB8888,
+ DRM_FORMAT_ARGB2101010,
+ DRM_FORMAT_BGRX8888,
+ DRM_FORMAT_BGRA8888,
+ DRM_FORMAT_BGRA1010102,
+ DRM_FORMAT_ABGR8888,
+ DRM_FORMAT_XBGR8888,
+ DRM_FORMAT_RGB888,
+ DRM_FORMAT_BGR888,
+ DRM_FORMAT_RGB565,
+ DRM_FORMAT_UYVY,
+ DRM_FORMAT_YUYV,
+};
+
struct mtk_disp_ovl_data {
unsigned int addr;
unsigned int gmc_bits;
unsigned int layer_nr;
bool fmt_rgb565_is_0;
bool smi_id_en;
+ bool supports_afbc;
+ const u32 *formats;
+ size_t num_formats;
+ bool supports_clrfmt_ext;
};
/*
@@ -132,6 +177,20 @@ void mtk_ovl_disable_vblank(struct device *dev)
writel_relaxed(0x0, ovl->regs + DISP_REG_OVL_INTEN);
}
+const u32 *mtk_ovl_get_formats(struct device *dev)
+{
+ struct mtk_disp_ovl *ovl = dev_get_drvdata(dev);
+
+ return ovl->data->formats;
+}
+
+size_t mtk_ovl_get_num_formats(struct device *dev)
+{
+ struct mtk_disp_ovl *ovl = dev_get_drvdata(dev);
+
+ return ovl->data->num_formats;
+}
+
int mtk_ovl_clk_enable(struct device *dev)
{
struct mtk_disp_ovl *ovl = dev_get_drvdata(dev);
@@ -172,7 +231,38 @@ void mtk_ovl_stop(struct device *dev)
reg = reg & ~OVL_LAYER_SMI_ID_EN;
writel_relaxed(reg, ovl->regs + DISP_REG_OVL_DATAPATH_CON);
}
+}
+
+static void mtk_ovl_set_afbc(struct mtk_disp_ovl *ovl, struct cmdq_pkt *cmdq_pkt,
+ int idx, bool enabled)
+{
+ mtk_ddp_write_mask(cmdq_pkt, enabled ? OVL_LAYER_AFBC_EN(idx) : 0,
+ &ovl->cmdq_reg, ovl->regs,
+ DISP_REG_OVL_DATAPATH_CON, OVL_LAYER_AFBC_EN(idx));
+}
+
+static void mtk_ovl_set_bit_depth(struct device *dev, int idx, u32 format,
+ struct cmdq_pkt *cmdq_pkt)
+{
+ struct mtk_disp_ovl *ovl = dev_get_drvdata(dev);
+ unsigned int reg;
+ unsigned int bit_depth = OVL_CON_CLRFMT_8_BIT;
+
+ if (!ovl->data->supports_clrfmt_ext)
+ return;
+ reg = readl(ovl->regs + DISP_REG_OVL_CLRFMT_EXT);
+ reg &= ~OVL_CON_CLRFMT_BIT_DEPTH_MASK(idx);
+
+ if (format == DRM_FORMAT_RGBA1010102 ||
+ format == DRM_FORMAT_BGRA1010102 ||
+ format == DRM_FORMAT_ARGB2101010)
+ bit_depth = OVL_CON_CLRFMT_10_BIT;
+
+ reg |= OVL_CON_CLRFMT_BIT_DEPTH(bit_depth, idx);
+
+ mtk_ddp_write(cmdq_pkt, reg, &ovl->cmdq_reg,
+ ovl->regs, DISP_REG_OVL_CLRFMT_EXT);
}
void mtk_ovl_config(struct device *dev, unsigned int w,
@@ -289,9 +379,11 @@ static unsigned int ovl_fmt_convert(struct mtk_disp_ovl *ovl, unsigned int fmt)
return OVL_CON_CLRFMT_ARGB8888;
case DRM_FORMAT_BGRX8888:
case DRM_FORMAT_BGRA8888:
+ case DRM_FORMAT_BGRA1010102:
return OVL_CON_CLRFMT_ARGB8888 | OVL_CON_BYTE_SWAP;
case DRM_FORMAT_XRGB8888:
case DRM_FORMAT_ARGB8888:
+ case DRM_FORMAT_ARGB2101010:
return OVL_CON_CLRFMT_RGBA8888;
case DRM_FORMAT_XBGR8888:
case DRM_FORMAT_ABGR8888:
@@ -310,11 +402,23 @@ void mtk_ovl_layer_config(struct device *dev, unsigned int idx,
struct mtk_disp_ovl *ovl = dev_get_drvdata(dev);
struct mtk_plane_pending_state *pending = &state->pending;
unsigned int addr = pending->addr;
- unsigned int pitch = pending->pitch & 0xffff;
+ unsigned int hdr_addr = pending->hdr_addr;
+ unsigned int pitch = pending->pitch;
+ unsigned int hdr_pitch = pending->hdr_pitch;
unsigned int fmt = pending->format;
unsigned int offset = (pending->y << 16) | pending->x;
unsigned int src_size = (pending->height << 16) | pending->width;
unsigned int con;
+ bool is_afbc = pending->modifier != DRM_FORMAT_MOD_LINEAR;
+ union overlay_pitch {
+ struct split_pitch {
+ u16 lsb;
+ u16 msb;
+ } split_pitch;
+ u32 pitch;
+ } overlay_pitch;
+
+ overlay_pitch.pitch = pitch;
if (!pending->enable) {
mtk_ovl_layer_off(dev, idx, cmdq_pkt);
@@ -335,9 +439,12 @@ void mtk_ovl_layer_config(struct device *dev, unsigned int idx,
addr += pending->pitch - 1;
}
+ if (ovl->data->supports_afbc)
+ mtk_ovl_set_afbc(ovl, cmdq_pkt, idx, is_afbc);
+
mtk_ddp_write_relaxed(cmdq_pkt, con, &ovl->cmdq_reg, ovl->regs,
DISP_REG_OVL_CON(idx));
- mtk_ddp_write_relaxed(cmdq_pkt, pitch, &ovl->cmdq_reg, ovl->regs,
+ mtk_ddp_write_relaxed(cmdq_pkt, overlay_pitch.split_pitch.lsb, &ovl->cmdq_reg, ovl->regs,
DISP_REG_OVL_PITCH(idx));
mtk_ddp_write_relaxed(cmdq_pkt, src_size, &ovl->cmdq_reg, ovl->regs,
DISP_REG_OVL_SRC_SIZE(idx));
@@ -346,6 +453,21 @@ void mtk_ovl_layer_config(struct device *dev, unsigned int idx,
mtk_ddp_write_relaxed(cmdq_pkt, addr, &ovl->cmdq_reg, ovl->regs,
DISP_REG_OVL_ADDR(ovl, idx));
+ if (is_afbc) {
+ mtk_ddp_write_relaxed(cmdq_pkt, hdr_addr, &ovl->cmdq_reg, ovl->regs,
+ DISP_REG_OVL_HDR_ADDR(ovl, idx));
+ mtk_ddp_write_relaxed(cmdq_pkt,
+ OVL_PITCH_MSB_2ND_SUBBUF | overlay_pitch.split_pitch.msb,
+ &ovl->cmdq_reg, ovl->regs, DISP_REG_OVL_PITCH_MSB(idx));
+ mtk_ddp_write_relaxed(cmdq_pkt, hdr_pitch, &ovl->cmdq_reg, ovl->regs,
+ DISP_REG_OVL_HDR_PITCH(ovl, idx));
+ } else {
+ mtk_ddp_write_relaxed(cmdq_pkt,
+ overlay_pitch.split_pitch.msb,
+ &ovl->cmdq_reg, ovl->regs, DISP_REG_OVL_PITCH_MSB(idx));
+ }
+
+ mtk_ovl_set_bit_depth(dev, idx, fmt, cmdq_pkt);
mtk_ovl_layer_on(dev, idx, cmdq_pkt);
}
@@ -453,6 +575,8 @@ static const struct mtk_disp_ovl_data mt2701_ovl_driver_data = {
.gmc_bits = 8,
.layer_nr = 4,
.fmt_rgb565_is_0 = false,
+ .formats = mt8173_formats,
+ .num_formats = ARRAY_SIZE(mt8173_formats),
};
static const struct mtk_disp_ovl_data mt8173_ovl_driver_data = {
@@ -460,6 +584,8 @@ static const struct mtk_disp_ovl_data mt8173_ovl_driver_data = {
.gmc_bits = 8,
.layer_nr = 4,
.fmt_rgb565_is_0 = true,
+ .formats = mt8173_formats,
+ .num_formats = ARRAY_SIZE(mt8173_formats),
};
static const struct mtk_disp_ovl_data mt8183_ovl_driver_data = {
@@ -467,6 +593,8 @@ static const struct mtk_disp_ovl_data mt8183_ovl_driver_data = {
.gmc_bits = 10,
.layer_nr = 4,
.fmt_rgb565_is_0 = true,
+ .formats = mt8173_formats,
+ .num_formats = ARRAY_SIZE(mt8173_formats),
};
static const struct mtk_disp_ovl_data mt8183_ovl_2l_driver_data = {
@@ -474,6 +602,8 @@ static const struct mtk_disp_ovl_data mt8183_ovl_2l_driver_data = {
.gmc_bits = 10,
.layer_nr = 2,
.fmt_rgb565_is_0 = true,
+ .formats = mt8173_formats,
+ .num_formats = ARRAY_SIZE(mt8173_formats),
};
static const struct mtk_disp_ovl_data mt8192_ovl_driver_data = {
@@ -482,6 +612,8 @@ static const struct mtk_disp_ovl_data mt8192_ovl_driver_data = {
.layer_nr = 4,
.fmt_rgb565_is_0 = true,
.smi_id_en = true,
+ .formats = mt8173_formats,
+ .num_formats = ARRAY_SIZE(mt8173_formats),
};
static const struct mtk_disp_ovl_data mt8192_ovl_2l_driver_data = {
@@ -490,6 +622,20 @@ static const struct mtk_disp_ovl_data mt8192_ovl_2l_driver_data = {
.layer_nr = 2,
.fmt_rgb565_is_0 = true,
.smi_id_en = true,
+ .formats = mt8173_formats,
+ .num_formats = ARRAY_SIZE(mt8173_formats),
+};
+
+static const struct mtk_disp_ovl_data mt8195_ovl_driver_data = {
+ .addr = DISP_REG_OVL_ADDR_MT8173,
+ .gmc_bits = 10,
+ .layer_nr = 4,
+ .fmt_rgb565_is_0 = true,
+ .smi_id_en = true,
+ .supports_afbc = true,
+ .formats = mt8195_formats,
+ .num_formats = ARRAY_SIZE(mt8195_formats),
+ .supports_clrfmt_ext = true,
};
static const struct of_device_id mtk_disp_ovl_driver_dt_match[] = {
@@ -505,6 +651,8 @@ static const struct of_device_id mtk_disp_ovl_driver_dt_match[] = {
.data = &mt8192_ovl_driver_data},
{ .compatible = "mediatek,mt8192-disp-ovl-2l",
.data = &mt8192_ovl_2l_driver_data},
+ { .compatible = "mediatek,mt8195-disp-ovl",
+ .data = &mt8195_ovl_driver_data},
{},
};
MODULE_DEVICE_TABLE(of, mtk_disp_ovl_driver_dt_match);
diff --git a/drivers/gpu/drm/mediatek/mtk_disp_ovl_adaptor.c b/drivers/gpu/drm/mediatek/mtk_disp_ovl_adaptor.c
new file mode 100644
index 000000000000..c0a38f5217ee
--- /dev/null
+++ b/drivers/gpu/drm/mediatek/mtk_disp_ovl_adaptor.c
@@ -0,0 +1,547 @@
+// SPDX-License-Identifier: GPL-2.0-only
+/*
+ * Copyright (c) 2021 MediaTek Inc.
+ */
+
+#include <drm/drm_fourcc.h>
+#include <drm/drm_of.h>
+#include <linux/clk.h>
+#include <linux/component.h>
+#include <linux/of_device.h>
+#include <linux/of_address.h>
+#include <linux/platform_device.h>
+#include <linux/pm_runtime.h>
+#include <linux/reset.h>
+#include <linux/soc/mediatek/mtk-cmdq.h>
+#include <linux/soc/mediatek/mtk-mmsys.h>
+#include <linux/soc/mediatek/mtk-mutex.h>
+
+#include "mtk_disp_drv.h"
+#include "mtk_drm_crtc.h"
+#include "mtk_drm_ddp_comp.h"
+#include "mtk_drm_drv.h"
+#include "mtk_ethdr.h"
+
+#define MTK_OVL_ADAPTOR_RDMA_MAX_WIDTH 1920
+#define MTK_OVL_ADAPTOR_LAYER_NUM 4
+
+enum mtk_ovl_adaptor_comp_type {
+ OVL_ADAPTOR_TYPE_RDMA = 0,
+ OVL_ADAPTOR_TYPE_MERGE,
+ OVL_ADAPTOR_TYPE_ETHDR,
+ OVL_ADAPTOR_TYPE_NUM,
+};
+
+enum mtk_ovl_adaptor_comp_id {
+ OVL_ADAPTOR_MDP_RDMA0,
+ OVL_ADAPTOR_MDP_RDMA1,
+ OVL_ADAPTOR_MDP_RDMA2,
+ OVL_ADAPTOR_MDP_RDMA3,
+ OVL_ADAPTOR_MDP_RDMA4,
+ OVL_ADAPTOR_MDP_RDMA5,
+ OVL_ADAPTOR_MDP_RDMA6,
+ OVL_ADAPTOR_MDP_RDMA7,
+ OVL_ADAPTOR_MERGE0,
+ OVL_ADAPTOR_MERGE1,
+ OVL_ADAPTOR_MERGE2,
+ OVL_ADAPTOR_MERGE3,
+ OVL_ADAPTOR_ETHDR0,
+ OVL_ADAPTOR_ID_MAX
+};
+
+struct ovl_adaptor_comp_match {
+ enum mtk_ovl_adaptor_comp_type type;
+ int alias_id;
+};
+
+struct mtk_disp_ovl_adaptor {
+ struct device *ovl_adaptor_comp[OVL_ADAPTOR_ID_MAX];
+ struct device *mmsys_dev;
+ bool children_bound;
+};
+
+static const char * const private_comp_stem[OVL_ADAPTOR_TYPE_NUM] = {
+ [OVL_ADAPTOR_TYPE_RDMA] = "vdo1-rdma",
+ [OVL_ADAPTOR_TYPE_MERGE] = "merge",
+ [OVL_ADAPTOR_TYPE_ETHDR] = "ethdr",
+};
+
+static const struct ovl_adaptor_comp_match comp_matches[OVL_ADAPTOR_ID_MAX] = {
+ [OVL_ADAPTOR_MDP_RDMA0] = { OVL_ADAPTOR_TYPE_RDMA, 0 },
+ [OVL_ADAPTOR_MDP_RDMA1] = { OVL_ADAPTOR_TYPE_RDMA, 1 },
+ [OVL_ADAPTOR_MDP_RDMA2] = { OVL_ADAPTOR_TYPE_RDMA, 2 },
+ [OVL_ADAPTOR_MDP_RDMA3] = { OVL_ADAPTOR_TYPE_RDMA, 3 },
+ [OVL_ADAPTOR_MDP_RDMA4] = { OVL_ADAPTOR_TYPE_RDMA, 4 },
+ [OVL_ADAPTOR_MDP_RDMA5] = { OVL_ADAPTOR_TYPE_RDMA, 5 },
+ [OVL_ADAPTOR_MDP_RDMA6] = { OVL_ADAPTOR_TYPE_RDMA, 6 },
+ [OVL_ADAPTOR_MDP_RDMA7] = { OVL_ADAPTOR_TYPE_RDMA, 7 },
+ [OVL_ADAPTOR_MERGE0] = { OVL_ADAPTOR_TYPE_MERGE, 1 },
+ [OVL_ADAPTOR_MERGE1] = { OVL_ADAPTOR_TYPE_MERGE, 2 },
+ [OVL_ADAPTOR_MERGE2] = { OVL_ADAPTOR_TYPE_MERGE, 3 },
+ [OVL_ADAPTOR_MERGE3] = { OVL_ADAPTOR_TYPE_MERGE, 4 },
+ [OVL_ADAPTOR_ETHDR0] = { OVL_ADAPTOR_TYPE_ETHDR, 0 },
+};
+
+void mtk_ovl_adaptor_layer_config(struct device *dev, unsigned int idx,
+ struct mtk_plane_state *state,
+ struct cmdq_pkt *cmdq_pkt)
+{
+ struct mtk_disp_ovl_adaptor *ovl_adaptor = dev_get_drvdata(dev);
+ struct mtk_plane_pending_state *pending = &state->pending;
+ struct mtk_mdp_rdma_cfg rdma_config = {0};
+ struct device *rdma_l;
+ struct device *rdma_r;
+ struct device *merge;
+ struct device *ethdr;
+ const struct drm_format_info *fmt_info = drm_format_info(pending->format);
+ bool use_dual_pipe = false;
+ unsigned int align_width;
+ unsigned int l_w = 0;
+ unsigned int r_w = 0;
+
+ dev_dbg(dev, "%s+ idx:%d, enable:%d, fmt:0x%x\n", __func__, idx,
+ pending->enable, pending->format);
+ dev_dbg(dev, "addr 0x%pad, fb w:%d, {%d,%d,%d,%d}\n",
+ &pending->addr, (pending->pitch / fmt_info->cpp[0]),
+ pending->x, pending->y, pending->width, pending->height);
+
+ rdma_l = ovl_adaptor->ovl_adaptor_comp[OVL_ADAPTOR_MDP_RDMA0 + 2 * idx];
+ rdma_r = ovl_adaptor->ovl_adaptor_comp[OVL_ADAPTOR_MDP_RDMA0 + 2 * idx + 1];
+ merge = ovl_adaptor->ovl_adaptor_comp[OVL_ADAPTOR_MERGE0 + idx];
+ ethdr = ovl_adaptor->ovl_adaptor_comp[OVL_ADAPTOR_ETHDR0];
+
+ if (!pending->enable) {
+ mtk_merge_stop_cmdq(merge, cmdq_pkt);
+ mtk_mdp_rdma_stop(rdma_l, cmdq_pkt);
+ mtk_mdp_rdma_stop(rdma_r, cmdq_pkt);
+ mtk_ethdr_layer_config(ethdr, idx, state, cmdq_pkt);
+ return;
+ }
+
+ /* ETHDR is in 1T2P domain, width needs to be 2 pixels align */
+ align_width = ALIGN_DOWN(pending->width, 2);
+
+ if (align_width > MTK_OVL_ADAPTOR_RDMA_MAX_WIDTH)
+ use_dual_pipe = true;
+
+ if (use_dual_pipe) {
+ l_w = (align_width / 2) + ((pending->width / 2) % 2);
+ r_w = align_width - l_w;
+ } else {
+ l_w = align_width;
+ }
+ mtk_merge_advance_config(merge, l_w, r_w, pending->height, 0, 0, cmdq_pkt);
+ mtk_mmsys_merge_async_config(ovl_adaptor->mmsys_dev, idx, align_width / 2,
+ pending->height, cmdq_pkt);
+
+ rdma_config.width = l_w;
+ rdma_config.height = pending->height;
+ rdma_config.addr0 = pending->addr;
+ rdma_config.pitch = pending->pitch;
+ rdma_config.fmt = pending->format;
+ rdma_config.color_encoding = pending->color_encoding;
+ mtk_mdp_rdma_config(rdma_l, &rdma_config, cmdq_pkt);
+
+ if (use_dual_pipe) {
+ rdma_config.x_left = l_w;
+ rdma_config.width = r_w;
+ mtk_mdp_rdma_config(rdma_r, &rdma_config, cmdq_pkt);
+ }
+
+ mtk_merge_start_cmdq(merge, cmdq_pkt);
+
+ mtk_mdp_rdma_start(rdma_l, cmdq_pkt);
+ if (use_dual_pipe)
+ mtk_mdp_rdma_start(rdma_r, cmdq_pkt);
+ else
+ mtk_mdp_rdma_stop(rdma_r, cmdq_pkt);
+
+ mtk_ethdr_layer_config(ethdr, idx, state, cmdq_pkt);
+}
+
+void mtk_ovl_adaptor_config(struct device *dev, unsigned int w,
+ unsigned int h, unsigned int vrefresh,
+ unsigned int bpc, struct cmdq_pkt *cmdq_pkt)
+{
+ struct mtk_disp_ovl_adaptor *ovl_adaptor = dev_get_drvdata(dev);
+
+ mtk_ethdr_config(ovl_adaptor->ovl_adaptor_comp[OVL_ADAPTOR_ETHDR0], w, h,
+ vrefresh, bpc, cmdq_pkt);
+}
+
+void mtk_ovl_adaptor_start(struct device *dev)
+{
+ struct mtk_disp_ovl_adaptor *ovl_adaptor = dev_get_drvdata(dev);
+
+ mtk_ethdr_start(ovl_adaptor->ovl_adaptor_comp[OVL_ADAPTOR_ETHDR0]);
+}
+
+void mtk_ovl_adaptor_stop(struct device *dev)
+{
+ struct mtk_disp_ovl_adaptor *ovl_adaptor = dev_get_drvdata(dev);
+
+ mtk_ethdr_stop(ovl_adaptor->ovl_adaptor_comp[OVL_ADAPTOR_ETHDR0]);
+}
+
+int mtk_ovl_adaptor_clk_enable(struct device *dev)
+{
+ struct mtk_disp_ovl_adaptor *ovl_adaptor = dev_get_drvdata(dev);
+ struct device *comp;
+ int ret;
+ int i;
+
+ for (i = 0; i < OVL_ADAPTOR_MERGE0; i++) {
+ comp = ovl_adaptor->ovl_adaptor_comp[i];
+ ret = pm_runtime_get_sync(comp);
+ if (ret < 0) {
+ dev_err(dev, "Failed to enable power domain %d, err %d\n", i, ret);
+ goto pwr_err;
+ }
+ }
+
+ for (i = 0; i < OVL_ADAPTOR_ID_MAX; i++) {
+ comp = ovl_adaptor->ovl_adaptor_comp[i];
+
+ if (i < OVL_ADAPTOR_MERGE0)
+ ret = mtk_mdp_rdma_clk_enable(comp);
+ else if (i < OVL_ADAPTOR_ETHDR0)
+ ret = mtk_merge_clk_enable(comp);
+ else
+ ret = mtk_ethdr_clk_enable(comp);
+ if (ret) {
+ dev_err(dev, "Failed to enable clock %d, err %d\n", i, ret);
+ goto clk_err;
+ }
+ }
+
+ return ret;
+
+clk_err:
+ while (--i >= 0) {
+ comp = ovl_adaptor->ovl_adaptor_comp[i];
+ if (i < OVL_ADAPTOR_MERGE0)
+ mtk_mdp_rdma_clk_disable(comp);
+ else if (i < OVL_ADAPTOR_ETHDR0)
+ mtk_merge_clk_disable(comp);
+ else
+ mtk_ethdr_clk_disable(comp);
+ }
+ i = OVL_ADAPTOR_MERGE0;
+
+pwr_err:
+ while (--i >= 0)
+ pm_runtime_put(ovl_adaptor->ovl_adaptor_comp[i]);
+
+ return ret;
+}
+
+void mtk_ovl_adaptor_clk_disable(struct device *dev)
+{
+ struct mtk_disp_ovl_adaptor *ovl_adaptor = dev_get_drvdata(dev);
+ struct device *comp;
+ int i;
+
+ for (i = 0; i < OVL_ADAPTOR_ID_MAX; i++) {
+ comp = ovl_adaptor->ovl_adaptor_comp[i];
+
+ if (i < OVL_ADAPTOR_MERGE0) {
+ mtk_mdp_rdma_clk_disable(comp);
+ pm_runtime_put(comp);
+ } else if (i < OVL_ADAPTOR_ETHDR0) {
+ mtk_merge_clk_disable(comp);
+ } else {
+ mtk_ethdr_clk_disable(comp);
+ }
+ }
+}
+
+unsigned int mtk_ovl_adaptor_layer_nr(struct device *dev)
+{
+ return MTK_OVL_ADAPTOR_LAYER_NUM;
+}
+
+struct device *mtk_ovl_adaptor_dma_dev_get(struct device *dev)
+{
+ struct mtk_disp_ovl_adaptor *ovl_adaptor = dev_get_drvdata(dev);
+
+ return ovl_adaptor->ovl_adaptor_comp[OVL_ADAPTOR_MDP_RDMA0];
+}
+
+void mtk_ovl_adaptor_register_vblank_cb(struct device *dev, void (*vblank_cb)(void *),
+ void *vblank_cb_data)
+{
+ struct mtk_disp_ovl_adaptor *ovl_adaptor = dev_get_drvdata(dev);
+
+ mtk_ethdr_register_vblank_cb(ovl_adaptor->ovl_adaptor_comp[OVL_ADAPTOR_ETHDR0],
+ vblank_cb, vblank_cb_data);
+}
+
+void mtk_ovl_adaptor_unregister_vblank_cb(struct device *dev)
+{
+ struct mtk_disp_ovl_adaptor *ovl_adaptor = dev_get_drvdata(dev);
+
+ mtk_ethdr_unregister_vblank_cb(ovl_adaptor->ovl_adaptor_comp[OVL_ADAPTOR_ETHDR0]);
+}
+
+void mtk_ovl_adaptor_enable_vblank(struct device *dev)
+{
+ struct mtk_disp_ovl_adaptor *ovl_adaptor = dev_get_drvdata(dev);
+
+ mtk_ethdr_enable_vblank(ovl_adaptor->ovl_adaptor_comp[OVL_ADAPTOR_ETHDR0]);
+}
+
+void mtk_ovl_adaptor_disable_vblank(struct device *dev)
+{
+ struct mtk_disp_ovl_adaptor *ovl_adaptor = dev_get_drvdata(dev);
+
+ mtk_ethdr_disable_vblank(ovl_adaptor->ovl_adaptor_comp[OVL_ADAPTOR_ETHDR0]);
+}
+
+const u32 *mtk_ovl_adaptor_get_formats(struct device *dev)
+{
+ struct mtk_disp_ovl_adaptor *ovl_adaptor = dev_get_drvdata(dev);
+
+ return mtk_mdp_rdma_get_formats(ovl_adaptor->ovl_adaptor_comp[OVL_ADAPTOR_MDP_RDMA0]);
+}
+
+size_t mtk_ovl_adaptor_get_num_formats(struct device *dev)
+{
+ struct mtk_disp_ovl_adaptor *ovl_adaptor = dev_get_drvdata(dev);
+
+ return mtk_mdp_rdma_get_num_formats(ovl_adaptor->ovl_adaptor_comp[OVL_ADAPTOR_MDP_RDMA0]);
+}
+
+void mtk_ovl_adaptor_add_comp(struct device *dev, struct mtk_mutex *mutex)
+{
+ mtk_mutex_add_comp(mutex, DDP_COMPONENT_MDP_RDMA0);
+ mtk_mutex_add_comp(mutex, DDP_COMPONENT_MDP_RDMA1);
+ mtk_mutex_add_comp(mutex, DDP_COMPONENT_MDP_RDMA2);
+ mtk_mutex_add_comp(mutex, DDP_COMPONENT_MDP_RDMA3);
+ mtk_mutex_add_comp(mutex, DDP_COMPONENT_MDP_RDMA4);
+ mtk_mutex_add_comp(mutex, DDP_COMPONENT_MDP_RDMA5);
+ mtk_mutex_add_comp(mutex, DDP_COMPONENT_MDP_RDMA6);
+ mtk_mutex_add_comp(mutex, DDP_COMPONENT_MDP_RDMA7);
+ mtk_mutex_add_comp(mutex, DDP_COMPONENT_MERGE1);
+ mtk_mutex_add_comp(mutex, DDP_COMPONENT_MERGE2);
+ mtk_mutex_add_comp(mutex, DDP_COMPONENT_MERGE3);
+ mtk_mutex_add_comp(mutex, DDP_COMPONENT_MERGE4);
+ mtk_mutex_add_comp(mutex, DDP_COMPONENT_ETHDR_MIXER);
+}
+
+void mtk_ovl_adaptor_remove_comp(struct device *dev, struct mtk_mutex *mutex)
+{
+ mtk_mutex_remove_comp(mutex, DDP_COMPONENT_MDP_RDMA0);
+ mtk_mutex_remove_comp(mutex, DDP_COMPONENT_MDP_RDMA1);
+ mtk_mutex_remove_comp(mutex, DDP_COMPONENT_MDP_RDMA2);
+ mtk_mutex_remove_comp(mutex, DDP_COMPONENT_MDP_RDMA3);
+ mtk_mutex_remove_comp(mutex, DDP_COMPONENT_MDP_RDMA4);
+ mtk_mutex_remove_comp(mutex, DDP_COMPONENT_MDP_RDMA5);
+ mtk_mutex_remove_comp(mutex, DDP_COMPONENT_MDP_RDMA6);
+ mtk_mutex_remove_comp(mutex, DDP_COMPONENT_MDP_RDMA7);
+ mtk_mutex_remove_comp(mutex, DDP_COMPONENT_MERGE1);
+ mtk_mutex_remove_comp(mutex, DDP_COMPONENT_MERGE2);
+ mtk_mutex_remove_comp(mutex, DDP_COMPONENT_MERGE3);
+ mtk_mutex_remove_comp(mutex, DDP_COMPONENT_MERGE4);
+ mtk_mutex_remove_comp(mutex, DDP_COMPONENT_ETHDR_MIXER);
+}
+
+void mtk_ovl_adaptor_connect(struct device *dev, struct device *mmsys_dev, unsigned int next)
+{
+ mtk_mmsys_ddp_connect(mmsys_dev, DDP_COMPONENT_MDP_RDMA0, DDP_COMPONENT_MERGE1);
+ mtk_mmsys_ddp_connect(mmsys_dev, DDP_COMPONENT_MDP_RDMA1, DDP_COMPONENT_MERGE1);
+ mtk_mmsys_ddp_connect(mmsys_dev, DDP_COMPONENT_MDP_RDMA2, DDP_COMPONENT_MERGE2);
+ mtk_mmsys_ddp_connect(mmsys_dev, DDP_COMPONENT_MERGE1, DDP_COMPONENT_ETHDR_MIXER);
+ mtk_mmsys_ddp_connect(mmsys_dev, DDP_COMPONENT_MERGE2, DDP_COMPONENT_ETHDR_MIXER);
+ mtk_mmsys_ddp_connect(mmsys_dev, DDP_COMPONENT_MERGE3, DDP_COMPONENT_ETHDR_MIXER);
+ mtk_mmsys_ddp_connect(mmsys_dev, DDP_COMPONENT_MERGE4, DDP_COMPONENT_ETHDR_MIXER);
+ mtk_mmsys_ddp_connect(mmsys_dev, DDP_COMPONENT_ETHDR_MIXER, next);
+}
+
+void mtk_ovl_adaptor_disconnect(struct device *dev, struct device *mmsys_dev, unsigned int next)
+{
+ mtk_mmsys_ddp_disconnect(mmsys_dev, DDP_COMPONENT_MDP_RDMA0, DDP_COMPONENT_MERGE1);
+ mtk_mmsys_ddp_disconnect(mmsys_dev, DDP_COMPONENT_MDP_RDMA1, DDP_COMPONENT_MERGE1);
+ mtk_mmsys_ddp_disconnect(mmsys_dev, DDP_COMPONENT_MDP_RDMA2, DDP_COMPONENT_MERGE2);
+ mtk_mmsys_ddp_disconnect(mmsys_dev, DDP_COMPONENT_MERGE1, DDP_COMPONENT_ETHDR_MIXER);
+ mtk_mmsys_ddp_disconnect(mmsys_dev, DDP_COMPONENT_MERGE2, DDP_COMPONENT_ETHDR_MIXER);
+ mtk_mmsys_ddp_disconnect(mmsys_dev, DDP_COMPONENT_MERGE3, DDP_COMPONENT_ETHDR_MIXER);
+ mtk_mmsys_ddp_disconnect(mmsys_dev, DDP_COMPONENT_MERGE4, DDP_COMPONENT_ETHDR_MIXER);
+ mtk_mmsys_ddp_disconnect(mmsys_dev, DDP_COMPONENT_ETHDR_MIXER, next);
+}
+
+static int ovl_adaptor_comp_get_id(struct device *dev, struct device_node *node,
+ enum mtk_ovl_adaptor_comp_type type)
+{
+ int alias_id = of_alias_get_id(node, private_comp_stem[type]);
+ int i;
+
+ for (i = 0; i < ARRAY_SIZE(comp_matches); i++)
+ if (comp_matches[i].type == type &&
+ comp_matches[i].alias_id == alias_id)
+ return i;
+
+ dev_warn(dev, "Failed to get id. type: %d, alias: %d\n", type, alias_id);
+ return -EINVAL;
+}
+
+static const struct of_device_id mtk_ovl_adaptor_comp_dt_ids[] = {
+ {
+ .compatible = "mediatek,mt8195-vdo1-rdma",
+ .data = (void *)OVL_ADAPTOR_TYPE_RDMA,
+ }, {
+ .compatible = "mediatek,mt8195-disp-merge",
+ .data = (void *)OVL_ADAPTOR_TYPE_MERGE,
+ }, {
+ .compatible = "mediatek,mt8195-disp-ethdr",
+ .data = (void *)OVL_ADAPTOR_TYPE_ETHDR,
+ },
+ {},
+};
+
+static int compare_of(struct device *dev, void *data)
+{
+ return dev->of_node == data;
+}
+
+static int ovl_adaptor_comp_init(struct device *dev, struct component_match **match)
+{
+ struct mtk_disp_ovl_adaptor *priv = dev_get_drvdata(dev);
+ struct device_node *node, *parent;
+ struct platform_device *comp_pdev;
+
+ parent = dev->parent->parent->of_node->parent;
+
+ for_each_child_of_node(parent, node) {
+ const struct of_device_id *of_id;
+ enum mtk_ovl_adaptor_comp_type type;
+ int id;
+
+ of_id = of_match_node(mtk_ovl_adaptor_comp_dt_ids, node);
+ if (!of_id)
+ continue;
+
+ if (!of_device_is_available(node)) {
+ dev_dbg(dev, "Skipping disabled component %pOF\n",
+ node);
+ continue;
+ }
+
+ type = (enum mtk_ovl_adaptor_comp_type)of_id->data;
+ id = ovl_adaptor_comp_get_id(dev, node, type);
+ if (id < 0) {
+ dev_warn(dev, "Skipping unknown component %pOF\n",
+ node);
+ continue;
+ }
+
+ comp_pdev = of_find_device_by_node(node);
+ if (!comp_pdev)
+ return -EPROBE_DEFER;
+
+ priv->ovl_adaptor_comp[id] = &comp_pdev->dev;
+
+ drm_of_component_match_add(dev, match, compare_of, node);
+ dev_dbg(dev, "Adding component match for %pOF\n", node);
+ }
+
+ if (!*match) {
+ dev_err(dev, "No match device for ovl_adaptor\n");
+ return -ENODEV;
+ }
+
+ return 0;
+}
+
+static int mtk_disp_ovl_adaptor_comp_bind(struct device *dev, struct device *master,
+ void *data)
+{
+ struct mtk_disp_ovl_adaptor *priv = dev_get_drvdata(dev);
+
+ if (!priv->children_bound)
+ return -EPROBE_DEFER;
+
+ return 0;
+}
+
+static void mtk_disp_ovl_adaptor_comp_unbind(struct device *dev, struct device *master,
+ void *data)
+{
+}
+
+static const struct component_ops mtk_disp_ovl_adaptor_comp_ops = {
+ .bind = mtk_disp_ovl_adaptor_comp_bind,
+ .unbind = mtk_disp_ovl_adaptor_comp_unbind,
+};
+
+static int mtk_disp_ovl_adaptor_master_bind(struct device *dev)
+{
+ struct mtk_disp_ovl_adaptor *priv = dev_get_drvdata(dev);
+ int ret;
+
+ ret = component_bind_all(dev, priv->mmsys_dev);
+ if (ret)
+ return dev_err_probe(dev, ret, "component_bind_all failed!\n");
+
+ priv->children_bound = true;
+ return 0;
+}
+
+static void mtk_disp_ovl_adaptor_master_unbind(struct device *dev)
+{
+ struct mtk_disp_ovl_adaptor *priv = dev_get_drvdata(dev);
+
+ priv->children_bound = false;
+}
+
+static const struct component_master_ops mtk_disp_ovl_adaptor_master_ops = {
+ .bind = mtk_disp_ovl_adaptor_master_bind,
+ .unbind = mtk_disp_ovl_adaptor_master_unbind,
+};
+
+static int mtk_disp_ovl_adaptor_probe(struct platform_device *pdev)
+{
+ struct mtk_disp_ovl_adaptor *priv;
+ struct device *dev = &pdev->dev;
+ struct component_match *match = NULL;
+ int ret;
+
+ priv = devm_kzalloc(dev, sizeof(*priv), GFP_KERNEL);
+ if (!priv)
+ return -ENOMEM;
+
+ platform_set_drvdata(pdev, priv);
+
+ ret = ovl_adaptor_comp_init(dev, &match);
+ if (ret < 0)
+ return ret;
+
+ priv->mmsys_dev = pdev->dev.platform_data;
+
+ component_master_add_with_match(dev, &mtk_disp_ovl_adaptor_master_ops, match);
+
+ pm_runtime_enable(dev);
+
+ ret = component_add(dev, &mtk_disp_ovl_adaptor_comp_ops);
+ if (ret != 0) {
+ pm_runtime_disable(dev);
+ dev_err(dev, "Failed to add component: %d\n", ret);
+ }
+
+ return ret;
+}
+
+static int mtk_disp_ovl_adaptor_remove(struct platform_device *pdev)
+{
+ component_master_del(&pdev->dev, &mtk_disp_ovl_adaptor_master_ops);
+ pm_runtime_disable(&pdev->dev);
+ return 0;
+}
+
+struct platform_driver mtk_disp_ovl_adaptor_driver = {
+ .probe = mtk_disp_ovl_adaptor_probe,
+ .remove = mtk_disp_ovl_adaptor_remove,
+ .driver = {
+ .name = "mediatek-disp-ovl-adaptor",
+ .owner = THIS_MODULE,
+ },
+};
diff --git a/drivers/gpu/drm/mediatek/mtk_disp_rdma.c b/drivers/gpu/drm/mediatek/mtk_disp_rdma.c
index 0ec2e4049e07..d4df17ad600a 100644
--- a/drivers/gpu/drm/mediatek/mtk_disp_rdma.c
+++ b/drivers/gpu/drm/mediatek/mtk_disp_rdma.c
@@ -17,6 +17,7 @@
#include "mtk_disp_drv.h"
#include "mtk_drm_crtc.h"
#include "mtk_drm_ddp_comp.h"
+#include "mtk_drm_drv.h"
#define DISP_REG_RDMA_INT_ENABLE 0x0000
#define DISP_REG_RDMA_INT_STATUS 0x0004
@@ -54,8 +55,24 @@
#define RDMA_MEM_GMC 0x40402020
+static const u32 mt8173_formats[] = {
+ DRM_FORMAT_XRGB8888,
+ DRM_FORMAT_ARGB8888,
+ DRM_FORMAT_BGRX8888,
+ DRM_FORMAT_BGRA8888,
+ DRM_FORMAT_ABGR8888,
+ DRM_FORMAT_XBGR8888,
+ DRM_FORMAT_RGB888,
+ DRM_FORMAT_BGR888,
+ DRM_FORMAT_RGB565,
+ DRM_FORMAT_UYVY,
+ DRM_FORMAT_YUYV,
+};
+
struct mtk_disp_rdma_data {
unsigned int fifo_size;
+ const u32 *formats;
+ size_t num_formats;
};
/*
@@ -126,6 +143,20 @@ void mtk_rdma_disable_vblank(struct device *dev)
rdma_update_bits(dev, DISP_REG_RDMA_INT_ENABLE, RDMA_FRAME_END_INT, 0);
}
+const u32 *mtk_rdma_get_formats(struct device *dev)
+{
+ struct mtk_disp_rdma *rdma = dev_get_drvdata(dev);
+
+ return rdma->data->formats;
+}
+
+size_t mtk_rdma_get_num_formats(struct device *dev)
+{
+ struct mtk_disp_rdma *rdma = dev_get_drvdata(dev);
+
+ return rdma->data->num_formats;
+}
+
int mtk_rdma_clk_enable(struct device *dev)
{
struct mtk_disp_rdma *rdma = dev_get_drvdata(dev);
@@ -360,18 +391,26 @@ static int mtk_disp_rdma_remove(struct platform_device *pdev)
static const struct mtk_disp_rdma_data mt2701_rdma_driver_data = {
.fifo_size = SZ_4K,
+ .formats = mt8173_formats,
+ .num_formats = ARRAY_SIZE(mt8173_formats),
};
static const struct mtk_disp_rdma_data mt8173_rdma_driver_data = {
.fifo_size = SZ_8K,
+ .formats = mt8173_formats,
+ .num_formats = ARRAY_SIZE(mt8173_formats),
};
static const struct mtk_disp_rdma_data mt8183_rdma_driver_data = {
.fifo_size = 5 * SZ_1K,
+ .formats = mt8173_formats,
+ .num_formats = ARRAY_SIZE(mt8173_formats),
};
static const struct mtk_disp_rdma_data mt8195_rdma_driver_data = {
.fifo_size = 1920,
+ .formats = mt8173_formats,
+ .num_formats = ARRAY_SIZE(mt8173_formats),
};
static const struct of_device_id mtk_disp_rdma_driver_dt_match[] = {
diff --git a/drivers/gpu/drm/mediatek/mtk_dp.c b/drivers/gpu/drm/mediatek/mtk_dp.c
index 9d085c05c49c..64eee77452c0 100644
--- a/drivers/gpu/drm/mediatek/mtk_dp.c
+++ b/drivers/gpu/drm/mediatek/mtk_dp.c
@@ -806,10 +806,9 @@ static int mtk_dp_aux_wait_for_completion(struct mtk_dp *mtk_dp, bool is_read)
}
static int mtk_dp_aux_do_transfer(struct mtk_dp *mtk_dp, bool is_read, u8 cmd,
- u32 addr, u8 *buf, size_t length)
+ u32 addr, u8 *buf, size_t length, u8 *reply_cmd)
{
int ret;
- u32 reply_cmd;
if (is_read && (length > DP_AUX_MAX_PAYLOAD_BYTES ||
(cmd == DP_AUX_NATIVE_READ && !length)))
@@ -841,10 +840,10 @@ static int mtk_dp_aux_do_transfer(struct mtk_dp *mtk_dp, bool is_read, u8 cmd,
/* Wait for feedback from sink device. */
ret = mtk_dp_aux_wait_for_completion(mtk_dp, is_read);
- reply_cmd = mtk_dp_read(mtk_dp, MTK_DP_AUX_P0_3624) &
- AUX_RX_REPLY_COMMAND_AUX_TX_P0_MASK;
+ *reply_cmd = mtk_dp_read(mtk_dp, MTK_DP_AUX_P0_3624) &
+ AUX_RX_REPLY_COMMAND_AUX_TX_P0_MASK;
- if (ret || reply_cmd) {
+ if (ret) {
u32 phy_status = mtk_dp_read(mtk_dp, MTK_DP_AUX_P0_3628) &
AUX_RX_PHY_STATE_AUX_TX_P0_MASK;
if (phy_status != AUX_RX_PHY_STATE_AUX_TX_P0_RX_IDLE) {
@@ -1693,7 +1692,7 @@ static int mtk_dp_training(struct mtk_dp *mtk_dp)
break;
default:
return -EINVAL;
- };
+ }
continue;
}
@@ -1823,7 +1822,8 @@ static irqreturn_t mtk_dp_hpd_event_thread(int hpd, void *dev)
spin_unlock_irqrestore(&mtk_dp->irq_thread_lock, flags);
if (status & MTK_DP_THREAD_CABLE_STATE_CHG) {
- drm_helper_hpd_irq_event(mtk_dp->bridge.dev);
+ if (mtk_dp->bridge.dev)
+ drm_helper_hpd_irq_event(mtk_dp->bridge.dev);
if (!mtk_dp->train_info.cable_plugged_in) {
mtk_dp_disable_sdp_aui(mtk_dp);
@@ -1981,7 +1981,7 @@ static struct edid *mtk_dp_get_edid(struct drm_bridge *bridge,
struct cea_sad *sads;
if (!enabled) {
- drm_bridge_chain_pre_enable(bridge);
+ drm_atomic_bridge_chain_pre_enable(bridge, connector->state->state);
/* power on aux */
mtk_dp_update_bits(mtk_dp, MTK_DP_TOP_PWR_STATE,
@@ -2019,7 +2019,7 @@ static struct edid *mtk_dp_get_edid(struct drm_bridge *bridge,
DP_PWR_STATE_BANDGAP_TPLL,
DP_PWR_STATE_MASK);
- drm_bridge_chain_post_disable(bridge);
+ drm_atomic_bridge_chain_post_disable(bridge, connector->state->state);
}
return new_edid;
@@ -2070,7 +2070,7 @@ static ssize_t mtk_dp_aux_transfer(struct drm_dp_aux *mtk_aux,
ret = mtk_dp_aux_do_transfer(mtk_dp, is_read, request,
msg->address + accessed_bytes,
msg->buffer + accessed_bytes,
- to_access);
+ to_access, &msg->reply);
if (ret) {
drm_info(mtk_dp->drm_dev,
@@ -2080,7 +2080,6 @@ static ssize_t mtk_dp_aux_transfer(struct drm_dp_aux *mtk_aux,
accessed_bytes += to_access;
} while (accessed_bytes < msg->size);
- msg->reply = DP_AUX_NATIVE_REPLY_ACK | DP_AUX_I2C_REPLY_ACK;
return msg->size;
err:
msg->reply = DP_AUX_NATIVE_REPLY_NACK | DP_AUX_I2C_REPLY_NACK;
diff --git a/drivers/gpu/drm/mediatek/mtk_dpi.c b/drivers/gpu/drm/mediatek/mtk_dpi.c
index 508a6d994e83..948a53f1f4b3 100644
--- a/drivers/gpu/drm/mediatek/mtk_dpi.c
+++ b/drivers/gpu/drm/mediatek/mtk_dpi.c
@@ -14,6 +14,7 @@
#include <linux/of_graph.h>
#include <linux/pinctrl/consumer.h>
#include <linux/platform_device.h>
+#include <linux/soc/mediatek/mtk-mmsys.h>
#include <linux/types.h>
#include <video/videomode.h>
@@ -29,6 +30,7 @@
#include "mtk_disp_drv.h"
#include "mtk_dpi_regs.h"
#include "mtk_drm_ddp_comp.h"
+#include "mtk_drm_drv.h"
enum mtk_dpi_out_bit_num {
MTK_DPI_OUT_BIT_NUM_8BITS,
@@ -66,6 +68,7 @@ struct mtk_dpi {
struct drm_connector *connector;
void __iomem *regs;
struct device *dev;
+ struct device *mmsys_dev;
struct clk *engine_clk;
struct clk *pixel_clk;
struct clk *tvd_clk;
@@ -134,6 +137,7 @@ struct mtk_dpi_yc_limit {
* @yuv422_en_bit: Enable bit of yuv422.
* @csc_enable_bit: Enable bit of CSC.
* @pixels_per_iter: Quantity of transferred pixels per iteration.
+ * @edge_cfg_in_mmsys: If the edge configuration for DPI's output needs to be set in MMSYS.
*/
struct mtk_dpi_conf {
unsigned int (*cal_factor)(int clock);
@@ -152,6 +156,7 @@ struct mtk_dpi_conf {
u32 yuv422_en_bit;
u32 csc_enable_bit;
u32 pixels_per_iter;
+ bool edge_cfg_in_mmsys;
};
static void mtk_dpi_mask(struct mtk_dpi *dpi, u32 offset, u32 val, u32 mask)
@@ -448,8 +453,12 @@ static void mtk_dpi_dual_edge(struct mtk_dpi *dpi)
mtk_dpi_mask(dpi, DPI_OUTPUT_SETTING,
dpi->output_fmt == MEDIA_BUS_FMT_RGB888_2X12_LE ?
EDGE_SEL : 0, EDGE_SEL);
+ if (dpi->conf->edge_cfg_in_mmsys)
+ mtk_mmsys_ddp_dpi_fmt_config(dpi->mmsys_dev, MTK_DPI_RGB888_DDR_CON);
} else {
mtk_dpi_mask(dpi, DPI_DDR_SETTING, DDR_EN | DDR_4PHASE, 0);
+ if (dpi->conf->edge_cfg_in_mmsys)
+ mtk_mmsys_ddp_dpi_fmt_config(dpi->mmsys_dev, MTK_DPI_RGB888_SDR_CON);
}
}
@@ -461,9 +470,6 @@ static void mtk_dpi_power_off(struct mtk_dpi *dpi)
if (--dpi->refcount != 0)
return;
- if (dpi->pinctrl && dpi->pins_gpio)
- pinctrl_select_state(dpi->pinctrl, dpi->pins_gpio);
-
mtk_dpi_disable(dpi);
clk_disable_unprepare(dpi->pixel_clk);
clk_disable_unprepare(dpi->engine_clk);
@@ -488,9 +494,6 @@ static int mtk_dpi_power_on(struct mtk_dpi *dpi)
goto err_pixel;
}
- if (dpi->pinctrl && dpi->pins_dpi)
- pinctrl_select_state(dpi->pinctrl, dpi->pins_dpi);
-
return 0;
err_pixel:
@@ -721,12 +724,18 @@ static void mtk_dpi_bridge_disable(struct drm_bridge *bridge)
struct mtk_dpi *dpi = bridge_to_dpi(bridge);
mtk_dpi_power_off(dpi);
+
+ if (dpi->pinctrl && dpi->pins_gpio)
+ pinctrl_select_state(dpi->pinctrl, dpi->pins_gpio);
}
static void mtk_dpi_bridge_enable(struct drm_bridge *bridge)
{
struct mtk_dpi *dpi = bridge_to_dpi(bridge);
+ if (dpi->pinctrl && dpi->pins_dpi)
+ pinctrl_select_state(dpi->pinctrl, dpi->pins_dpi);
+
mtk_dpi_power_on(dpi);
mtk_dpi_set_display_mode(dpi, &dpi->mode);
mtk_dpi_enable(dpi);
@@ -777,8 +786,10 @@ static int mtk_dpi_bind(struct device *dev, struct device *master, void *data)
{
struct mtk_dpi *dpi = dev_get_drvdata(dev);
struct drm_device *drm_dev = data;
+ struct mtk_drm_private *priv = drm_dev->dev_private;
int ret;
+ dpi->mmsys_dev = priv->mmsys_dev;
ret = drm_simple_encoder_init(drm_dev, &dpi->encoder,
DRM_MODE_ENCODER_TMDS);
if (ret) {
@@ -929,6 +940,38 @@ static const struct mtk_dpi_conf mt8183_conf = {
.csc_enable_bit = CSC_ENABLE,
};
+static const struct mtk_dpi_conf mt8186_conf = {
+ .cal_factor = mt8183_calculate_factor,
+ .reg_h_fre_con = 0xe0,
+ .max_clock_khz = 150000,
+ .output_fmts = mt8183_output_fmts,
+ .num_output_fmts = ARRAY_SIZE(mt8183_output_fmts),
+ .edge_cfg_in_mmsys = true,
+ .pixels_per_iter = 1,
+ .is_ck_de_pol = true,
+ .swap_input_support = true,
+ .support_direct_pin = true,
+ .dimension_mask = HPW_MASK,
+ .hvsize_mask = HSIZE_MASK,
+ .channel_swap_shift = CH_SWAP,
+ .yuv422_en_bit = YUV422_EN,
+ .csc_enable_bit = CSC_ENABLE,
+};
+
+static const struct mtk_dpi_conf mt8188_dpintf_conf = {
+ .cal_factor = mt8195_dpintf_calculate_factor,
+ .max_clock_khz = 600000,
+ .output_fmts = mt8195_output_fmts,
+ .num_output_fmts = ARRAY_SIZE(mt8195_output_fmts),
+ .pixels_per_iter = 4,
+ .input_2pixel = false,
+ .dimension_mask = DPINTF_HPW_MASK,
+ .hvsize_mask = DPINTF_HSIZE_MASK,
+ .channel_swap_shift = DPINTF_CH_SWAP,
+ .yuv422_en_bit = DPINTF_YUV422_EN,
+ .csc_enable_bit = DPINTF_CSC_ENABLE,
+};
+
static const struct mtk_dpi_conf mt8192_conf = {
.cal_factor = mt8183_calculate_factor,
.reg_h_fre_con = 0xe0,
@@ -1079,6 +1122,12 @@ static const struct of_device_id mtk_dpi_of_ids[] = {
{ .compatible = "mediatek,mt8183-dpi",
.data = &mt8183_conf,
},
+ { .compatible = "mediatek,mt8186-dpi",
+ .data = &mt8186_conf,
+ },
+ { .compatible = "mediatek,mt8188-dp-intf",
+ .data = &mt8188_dpintf_conf,
+ },
{ .compatible = "mediatek,mt8192-dpi",
.data = &mt8192_conf,
},
diff --git a/drivers/gpu/drm/mediatek/mtk_drm_crtc.c b/drivers/gpu/drm/mediatek/mtk_drm_crtc.c
index 112615817dcb..d40142842f85 100644
--- a/drivers/gpu/drm/mediatek/mtk_drm_crtc.c
+++ b/drivers/gpu/drm/mediatek/mtk_drm_crtc.c
@@ -58,6 +58,7 @@ struct mtk_drm_crtc {
#endif
struct device *mmsys_dev;
+ struct device *dma_dev;
struct mtk_mutex *mutex;
unsigned int ddp_comp_nr;
struct mtk_ddp_comp **ddp_comp;
@@ -378,13 +379,17 @@ static int mtk_crtc_ddp_hw_init(struct mtk_drm_crtc *mtk_crtc)
}
for (i = 0; i < mtk_crtc->ddp_comp_nr - 1; i++) {
- mtk_mmsys_ddp_connect(mtk_crtc->mmsys_dev,
- mtk_crtc->ddp_comp[i]->id,
- mtk_crtc->ddp_comp[i + 1]->id);
- mtk_mutex_add_comp(mtk_crtc->mutex,
- mtk_crtc->ddp_comp[i]->id);
+ if (!mtk_ddp_comp_connect(mtk_crtc->ddp_comp[i], mtk_crtc->mmsys_dev,
+ mtk_crtc->ddp_comp[i + 1]->id))
+ mtk_mmsys_ddp_connect(mtk_crtc->mmsys_dev,
+ mtk_crtc->ddp_comp[i]->id,
+ mtk_crtc->ddp_comp[i + 1]->id);
+ if (!mtk_ddp_comp_add(mtk_crtc->ddp_comp[i], mtk_crtc->mutex))
+ mtk_mutex_add_comp(mtk_crtc->mutex,
+ mtk_crtc->ddp_comp[i]->id);
}
- mtk_mutex_add_comp(mtk_crtc->mutex, mtk_crtc->ddp_comp[i]->id);
+ if (!mtk_ddp_comp_add(mtk_crtc->ddp_comp[i], mtk_crtc->mutex))
+ mtk_mutex_add_comp(mtk_crtc->mutex, mtk_crtc->ddp_comp[i]->id);
mtk_mutex_enable(mtk_crtc->mutex);
for (i = 0; i < mtk_crtc->ddp_comp_nr; i++) {
@@ -433,17 +438,22 @@ static void mtk_crtc_ddp_hw_fini(struct mtk_drm_crtc *mtk_crtc)
}
for (i = 0; i < mtk_crtc->ddp_comp_nr; i++)
- mtk_mutex_remove_comp(mtk_crtc->mutex,
- mtk_crtc->ddp_comp[i]->id);
+ if (!mtk_ddp_comp_remove(mtk_crtc->ddp_comp[i], mtk_crtc->mutex))
+ mtk_mutex_remove_comp(mtk_crtc->mutex,
+ mtk_crtc->ddp_comp[i]->id);
mtk_mutex_disable(mtk_crtc->mutex);
for (i = 0; i < mtk_crtc->ddp_comp_nr - 1; i++) {
- mtk_mmsys_ddp_disconnect(mtk_crtc->mmsys_dev,
- mtk_crtc->ddp_comp[i]->id,
- mtk_crtc->ddp_comp[i + 1]->id);
- mtk_mutex_remove_comp(mtk_crtc->mutex,
- mtk_crtc->ddp_comp[i]->id);
+ if (!mtk_ddp_comp_disconnect(mtk_crtc->ddp_comp[i], mtk_crtc->mmsys_dev,
+ mtk_crtc->ddp_comp[i + 1]->id))
+ mtk_mmsys_ddp_disconnect(mtk_crtc->mmsys_dev,
+ mtk_crtc->ddp_comp[i]->id,
+ mtk_crtc->ddp_comp[i + 1]->id);
+ if (!mtk_ddp_comp_remove(mtk_crtc->ddp_comp[i], mtk_crtc->mutex))
+ mtk_mutex_remove_comp(mtk_crtc->mutex,
+ mtk_crtc->ddp_comp[i]->id);
}
- mtk_mutex_remove_comp(mtk_crtc->mutex, mtk_crtc->ddp_comp[i]->id);
+ if (!mtk_ddp_comp_remove(mtk_crtc->ddp_comp[i], mtk_crtc->mutex))
+ mtk_mutex_remove_comp(mtk_crtc->mutex, mtk_crtc->ddp_comp[i]->id);
mtk_crtc_ddp_clk_disable(mtk_crtc);
mtk_mutex_unprepare(mtk_crtc->mutex);
@@ -856,7 +866,9 @@ static int mtk_drm_crtc_init_comp_planes(struct drm_device *drm_dev,
BIT(pipe),
mtk_drm_crtc_plane_type(mtk_crtc->layer_nr,
num_planes),
- mtk_ddp_comp_supported_rotations(comp));
+ mtk_ddp_comp_supported_rotations(comp),
+ mtk_ddp_comp_get_formats(comp),
+ mtk_ddp_comp_get_num_formats(comp));
if (ret)
return ret;
@@ -865,22 +877,36 @@ static int mtk_drm_crtc_init_comp_planes(struct drm_device *drm_dev,
return 0;
}
+struct device *mtk_drm_crtc_dma_dev_get(struct drm_crtc *crtc)
+{
+ struct mtk_drm_crtc *mtk_crtc = to_mtk_crtc(crtc);
+
+ return mtk_crtc->dma_dev;
+}
+
int mtk_drm_crtc_create(struct drm_device *drm_dev,
- const enum mtk_ddp_comp_id *path, unsigned int path_len)
+ const unsigned int *path, unsigned int path_len,
+ int priv_data_index)
{
struct mtk_drm_private *priv = drm_dev->dev_private;
struct device *dev = drm_dev->dev;
struct mtk_drm_crtc *mtk_crtc;
unsigned int num_comp_planes = 0;
- int pipe = priv->num_pipes;
int ret;
int i;
bool has_ctm = false;
uint gamma_lut_size = 0;
+ struct drm_crtc *tmp;
+ int crtc_i = 0;
if (!path)
return 0;
+ priv = priv->all_drm_private[priv_data_index];
+
+ drm_for_each_crtc(tmp, drm_dev)
+ crtc_i++;
+
for (i = 0; i < path_len; i++) {
enum mtk_ddp_comp_id comp_id = path[i];
struct device_node *node;
@@ -889,10 +915,13 @@ int mtk_drm_crtc_create(struct drm_device *drm_dev,
node = priv->comp_node[comp_id];
comp = &priv->ddp_comp[comp_id];
- if (!node) {
+ /* Not all drm components have a DTS device node, such as ovl_adaptor,
+ * which is the drm bring up sub driver
+ */
+ if (!node && comp_id != DDP_COMPONENT_DRM_OVL_ADAPTOR) {
dev_info(dev,
- "Not creating crtc %d because component %d is disabled or missing\n",
- pipe, comp_id);
+ "Not creating crtc %d because component %d is disabled or missing\n",
+ crtc_i, comp_id);
return 0;
}
@@ -922,7 +951,7 @@ int mtk_drm_crtc_create(struct drm_device *drm_dev,
}
for (i = 0; i < mtk_crtc->ddp_comp_nr; i++) {
- enum mtk_ddp_comp_id comp_id = path[i];
+ unsigned int comp_id = path[i];
struct mtk_ddp_comp *comp;
comp = &priv->ddp_comp[comp_id];
@@ -945,32 +974,40 @@ int mtk_drm_crtc_create(struct drm_device *drm_dev,
mtk_crtc->planes = devm_kcalloc(dev, num_comp_planes,
sizeof(struct drm_plane), GFP_KERNEL);
+ if (!mtk_crtc->planes)
+ return -ENOMEM;
for (i = 0; i < mtk_crtc->ddp_comp_nr; i++) {
ret = mtk_drm_crtc_init_comp_planes(drm_dev, mtk_crtc, i,
- pipe);
+ crtc_i);
if (ret)
return ret;
}
- ret = mtk_drm_crtc_init(drm_dev, mtk_crtc, pipe);
+ /*
+ * Default to use the first component as the dma dev.
+ * In the case of ovl_adaptor sub driver, it needs to use the
+ * dma_dev_get function to get representative dma dev.
+ */
+ mtk_crtc->dma_dev = mtk_ddp_comp_dma_dev_get(&priv->ddp_comp[path[0]]);
+
+ ret = mtk_drm_crtc_init(drm_dev, mtk_crtc, crtc_i);
if (ret < 0)
return ret;
if (gamma_lut_size)
drm_mode_crtc_set_gamma_size(&mtk_crtc->base, gamma_lut_size);
drm_crtc_enable_color_mgmt(&mtk_crtc->base, 0, has_ctm, gamma_lut_size);
- priv->num_pipes++;
mutex_init(&mtk_crtc->hw_lock);
#if IS_REACHABLE(CONFIG_MTK_CMDQ)
+ i = priv->mbox_index++;
mtk_crtc->cmdq_client.client.dev = mtk_crtc->mmsys_dev;
mtk_crtc->cmdq_client.client.tx_block = false;
mtk_crtc->cmdq_client.client.knows_txdone = true;
mtk_crtc->cmdq_client.client.rx_callback = ddp_cmdq_cb;
mtk_crtc->cmdq_client.chan =
- mbox_request_channel(&mtk_crtc->cmdq_client.client,
- drm_crtc_index(&mtk_crtc->base));
+ mbox_request_channel(&mtk_crtc->cmdq_client.client, i);
if (IS_ERR(mtk_crtc->cmdq_client.chan)) {
dev_dbg(dev, "mtk_crtc %d failed to create mailbox client, writing register by CPU now\n",
drm_crtc_index(&mtk_crtc->base));
@@ -980,7 +1017,7 @@ int mtk_drm_crtc_create(struct drm_device *drm_dev,
if (mtk_crtc->cmdq_client.chan) {
ret = of_property_read_u32_index(priv->mutex_node,
"mediatek,gce-events",
- drm_crtc_index(&mtk_crtc->base),
+ i,
&mtk_crtc->cmdq_event);
if (ret) {
dev_dbg(dev, "mtk_crtc %d failed to get mediatek,gce-events property\n",
diff --git a/drivers/gpu/drm/mediatek/mtk_drm_crtc.h b/drivers/gpu/drm/mediatek/mtk_drm_crtc.h
index cb9a36c48d4f..3e9046993d09 100644
--- a/drivers/gpu/drm/mediatek/mtk_drm_crtc.h
+++ b/drivers/gpu/drm/mediatek/mtk_drm_crtc.h
@@ -16,11 +16,13 @@
void mtk_drm_crtc_commit(struct drm_crtc *crtc);
int mtk_drm_crtc_create(struct drm_device *drm_dev,
- const enum mtk_ddp_comp_id *path,
- unsigned int path_len);
+ const unsigned int *path,
+ unsigned int path_len,
+ int priv_data_index);
int mtk_drm_crtc_plane_check(struct drm_crtc *crtc, struct drm_plane *plane,
struct mtk_plane_state *state);
void mtk_drm_crtc_async_update(struct drm_crtc *crtc, struct drm_plane *plane,
struct drm_atomic_state *plane_state);
+struct device *mtk_drm_crtc_dma_dev_get(struct drm_crtc *crtc);
#endif /* MTK_DRM_CRTC_H */
diff --git a/drivers/gpu/drm/mediatek/mtk_drm_ddp_comp.c b/drivers/gpu/drm/mediatek/mtk_drm_ddp_comp.c
index 6b6d5335c834..f114da4d36a9 100644
--- a/drivers/gpu/drm/mediatek/mtk_drm_ddp_comp.c
+++ b/drivers/gpu/drm/mediatek/mtk_drm_ddp_comp.c
@@ -359,6 +359,8 @@ static const struct mtk_ddp_comp_funcs ddp_ovl = {
.layer_config = mtk_ovl_layer_config,
.bgclr_in_on = mtk_ovl_bgclr_in_on,
.bgclr_in_off = mtk_ovl_bgclr_in_off,
+ .get_formats = mtk_ovl_get_formats,
+ .get_num_formats = mtk_ovl_get_num_formats,
};
static const struct mtk_ddp_comp_funcs ddp_postmask = {
@@ -381,6 +383,8 @@ static const struct mtk_ddp_comp_funcs ddp_rdma = {
.disable_vblank = mtk_rdma_disable_vblank,
.layer_nr = mtk_rdma_layer_nr,
.layer_config = mtk_rdma_layer_config,
+ .get_formats = mtk_rdma_get_formats,
+ .get_num_formats = mtk_rdma_get_num_formats,
};
static const struct mtk_ddp_comp_funcs ddp_ufoe = {
@@ -389,6 +393,27 @@ static const struct mtk_ddp_comp_funcs ddp_ufoe = {
.start = mtk_ufoe_start,
};
+static const struct mtk_ddp_comp_funcs ddp_ovl_adaptor = {
+ .clk_enable = mtk_ovl_adaptor_clk_enable,
+ .clk_disable = mtk_ovl_adaptor_clk_disable,
+ .config = mtk_ovl_adaptor_config,
+ .start = mtk_ovl_adaptor_start,
+ .stop = mtk_ovl_adaptor_stop,
+ .layer_nr = mtk_ovl_adaptor_layer_nr,
+ .layer_config = mtk_ovl_adaptor_layer_config,
+ .register_vblank_cb = mtk_ovl_adaptor_register_vblank_cb,
+ .unregister_vblank_cb = mtk_ovl_adaptor_unregister_vblank_cb,
+ .enable_vblank = mtk_ovl_adaptor_enable_vblank,
+ .disable_vblank = mtk_ovl_adaptor_disable_vblank,
+ .dma_dev_get = mtk_ovl_adaptor_dma_dev_get,
+ .connect = mtk_ovl_adaptor_connect,
+ .disconnect = mtk_ovl_adaptor_disconnect,
+ .add = mtk_ovl_adaptor_add_comp,
+ .remove = mtk_ovl_adaptor_remove_comp,
+ .get_formats = mtk_ovl_adaptor_get_formats,
+ .get_num_formats = mtk_ovl_adaptor_get_num_formats,
+};
+
static const char * const mtk_ddp_comp_stem[MTK_DDP_COMP_TYPE_MAX] = {
[MTK_DISP_AAL] = "aal",
[MTK_DISP_BLS] = "bls",
@@ -402,6 +427,7 @@ static const char * const mtk_ddp_comp_stem[MTK_DDP_COMP_TYPE_MAX] = {
[MTK_DISP_OD] = "od",
[MTK_DISP_OVL] = "ovl",
[MTK_DISP_OVL_2L] = "ovl-2l",
+ [MTK_DISP_OVL_ADAPTOR] = "ovl_adaptor",
[MTK_DISP_POSTMASK] = "postmask",
[MTK_DISP_PWM] = "pwm",
[MTK_DISP_RDMA] = "rdma",
@@ -418,53 +444,54 @@ struct mtk_ddp_comp_match {
const struct mtk_ddp_comp_funcs *funcs;
};
-static const struct mtk_ddp_comp_match mtk_ddp_matches[DDP_COMPONENT_ID_MAX] = {
- [DDP_COMPONENT_AAL0] = { MTK_DISP_AAL, 0, &ddp_aal },
- [DDP_COMPONENT_AAL1] = { MTK_DISP_AAL, 1, &ddp_aal },
- [DDP_COMPONENT_BLS] = { MTK_DISP_BLS, 0, NULL },
- [DDP_COMPONENT_CCORR] = { MTK_DISP_CCORR, 0, &ddp_ccorr },
- [DDP_COMPONENT_COLOR0] = { MTK_DISP_COLOR, 0, &ddp_color },
- [DDP_COMPONENT_COLOR1] = { MTK_DISP_COLOR, 1, &ddp_color },
- [DDP_COMPONENT_DITHER0] = { MTK_DISP_DITHER, 0, &ddp_dither },
- [DDP_COMPONENT_DP_INTF0] = { MTK_DP_INTF, 0, &ddp_dpi },
- [DDP_COMPONENT_DP_INTF1] = { MTK_DP_INTF, 1, &ddp_dpi },
- [DDP_COMPONENT_DPI0] = { MTK_DPI, 0, &ddp_dpi },
- [DDP_COMPONENT_DPI1] = { MTK_DPI, 1, &ddp_dpi },
- [DDP_COMPONENT_DSC0] = { MTK_DISP_DSC, 0, &ddp_dsc },
- [DDP_COMPONENT_DSC1] = { MTK_DISP_DSC, 1, &ddp_dsc },
- [DDP_COMPONENT_DSI0] = { MTK_DSI, 0, &ddp_dsi },
- [DDP_COMPONENT_DSI1] = { MTK_DSI, 1, &ddp_dsi },
- [DDP_COMPONENT_DSI2] = { MTK_DSI, 2, &ddp_dsi },
- [DDP_COMPONENT_DSI3] = { MTK_DSI, 3, &ddp_dsi },
- [DDP_COMPONENT_GAMMA] = { MTK_DISP_GAMMA, 0, &ddp_gamma },
- [DDP_COMPONENT_MERGE0] = { MTK_DISP_MERGE, 0, &ddp_merge },
- [DDP_COMPONENT_MERGE1] = { MTK_DISP_MERGE, 1, &ddp_merge },
- [DDP_COMPONENT_MERGE2] = { MTK_DISP_MERGE, 2, &ddp_merge },
- [DDP_COMPONENT_MERGE3] = { MTK_DISP_MERGE, 3, &ddp_merge },
- [DDP_COMPONENT_MERGE4] = { MTK_DISP_MERGE, 4, &ddp_merge },
- [DDP_COMPONENT_MERGE5] = { MTK_DISP_MERGE, 5, &ddp_merge },
- [DDP_COMPONENT_OD0] = { MTK_DISP_OD, 0, &ddp_od },
- [DDP_COMPONENT_OD1] = { MTK_DISP_OD, 1, &ddp_od },
- [DDP_COMPONENT_OVL0] = { MTK_DISP_OVL, 0, &ddp_ovl },
- [DDP_COMPONENT_OVL1] = { MTK_DISP_OVL, 1, &ddp_ovl },
- [DDP_COMPONENT_OVL_2L0] = { MTK_DISP_OVL_2L, 0, &ddp_ovl },
- [DDP_COMPONENT_OVL_2L1] = { MTK_DISP_OVL_2L, 1, &ddp_ovl },
- [DDP_COMPONENT_OVL_2L2] = { MTK_DISP_OVL_2L, 2, &ddp_ovl },
- [DDP_COMPONENT_POSTMASK0] = { MTK_DISP_POSTMASK, 0, &ddp_postmask },
- [DDP_COMPONENT_PWM0] = { MTK_DISP_PWM, 0, NULL },
- [DDP_COMPONENT_PWM1] = { MTK_DISP_PWM, 1, NULL },
- [DDP_COMPONENT_PWM2] = { MTK_DISP_PWM, 2, NULL },
- [DDP_COMPONENT_RDMA0] = { MTK_DISP_RDMA, 0, &ddp_rdma },
- [DDP_COMPONENT_RDMA1] = { MTK_DISP_RDMA, 1, &ddp_rdma },
- [DDP_COMPONENT_RDMA2] = { MTK_DISP_RDMA, 2, &ddp_rdma },
- [DDP_COMPONENT_RDMA4] = { MTK_DISP_RDMA, 4, &ddp_rdma },
- [DDP_COMPONENT_UFOE] = { MTK_DISP_UFOE, 0, &ddp_ufoe },
- [DDP_COMPONENT_WDMA0] = { MTK_DISP_WDMA, 0, NULL },
- [DDP_COMPONENT_WDMA1] = { MTK_DISP_WDMA, 1, NULL },
+static const struct mtk_ddp_comp_match mtk_ddp_matches[DDP_COMPONENT_DRM_ID_MAX] = {
+ [DDP_COMPONENT_AAL0] = { MTK_DISP_AAL, 0, &ddp_aal },
+ [DDP_COMPONENT_AAL1] = { MTK_DISP_AAL, 1, &ddp_aal },
+ [DDP_COMPONENT_BLS] = { MTK_DISP_BLS, 0, NULL },
+ [DDP_COMPONENT_CCORR] = { MTK_DISP_CCORR, 0, &ddp_ccorr },
+ [DDP_COMPONENT_COLOR0] = { MTK_DISP_COLOR, 0, &ddp_color },
+ [DDP_COMPONENT_COLOR1] = { MTK_DISP_COLOR, 1, &ddp_color },
+ [DDP_COMPONENT_DITHER0] = { MTK_DISP_DITHER, 0, &ddp_dither },
+ [DDP_COMPONENT_DP_INTF0] = { MTK_DP_INTF, 0, &ddp_dpi },
+ [DDP_COMPONENT_DP_INTF1] = { MTK_DP_INTF, 1, &ddp_dpi },
+ [DDP_COMPONENT_DPI0] = { MTK_DPI, 0, &ddp_dpi },
+ [DDP_COMPONENT_DPI1] = { MTK_DPI, 1, &ddp_dpi },
+ [DDP_COMPONENT_DRM_OVL_ADAPTOR] = { MTK_DISP_OVL_ADAPTOR, 0, &ddp_ovl_adaptor },
+ [DDP_COMPONENT_DSC0] = { MTK_DISP_DSC, 0, &ddp_dsc },
+ [DDP_COMPONENT_DSC1] = { MTK_DISP_DSC, 1, &ddp_dsc },
+ [DDP_COMPONENT_DSI0] = { MTK_DSI, 0, &ddp_dsi },
+ [DDP_COMPONENT_DSI1] = { MTK_DSI, 1, &ddp_dsi },
+ [DDP_COMPONENT_DSI2] = { MTK_DSI, 2, &ddp_dsi },
+ [DDP_COMPONENT_DSI3] = { MTK_DSI, 3, &ddp_dsi },
+ [DDP_COMPONENT_GAMMA] = { MTK_DISP_GAMMA, 0, &ddp_gamma },
+ [DDP_COMPONENT_MERGE0] = { MTK_DISP_MERGE, 0, &ddp_merge },
+ [DDP_COMPONENT_MERGE1] = { MTK_DISP_MERGE, 1, &ddp_merge },
+ [DDP_COMPONENT_MERGE2] = { MTK_DISP_MERGE, 2, &ddp_merge },
+ [DDP_COMPONENT_MERGE3] = { MTK_DISP_MERGE, 3, &ddp_merge },
+ [DDP_COMPONENT_MERGE4] = { MTK_DISP_MERGE, 4, &ddp_merge },
+ [DDP_COMPONENT_MERGE5] = { MTK_DISP_MERGE, 5, &ddp_merge },
+ [DDP_COMPONENT_OD0] = { MTK_DISP_OD, 0, &ddp_od },
+ [DDP_COMPONENT_OD1] = { MTK_DISP_OD, 1, &ddp_od },
+ [DDP_COMPONENT_OVL0] = { MTK_DISP_OVL, 0, &ddp_ovl },
+ [DDP_COMPONENT_OVL1] = { MTK_DISP_OVL, 1, &ddp_ovl },
+ [DDP_COMPONENT_OVL_2L0] = { MTK_DISP_OVL_2L, 0, &ddp_ovl },
+ [DDP_COMPONENT_OVL_2L1] = { MTK_DISP_OVL_2L, 1, &ddp_ovl },
+ [DDP_COMPONENT_OVL_2L2] = { MTK_DISP_OVL_2L, 2, &ddp_ovl },
+ [DDP_COMPONENT_POSTMASK0] = { MTK_DISP_POSTMASK, 0, &ddp_postmask },
+ [DDP_COMPONENT_PWM0] = { MTK_DISP_PWM, 0, NULL },
+ [DDP_COMPONENT_PWM1] = { MTK_DISP_PWM, 1, NULL },
+ [DDP_COMPONENT_PWM2] = { MTK_DISP_PWM, 2, NULL },
+ [DDP_COMPONENT_RDMA0] = { MTK_DISP_RDMA, 0, &ddp_rdma },
+ [DDP_COMPONENT_RDMA1] = { MTK_DISP_RDMA, 1, &ddp_rdma },
+ [DDP_COMPONENT_RDMA2] = { MTK_DISP_RDMA, 2, &ddp_rdma },
+ [DDP_COMPONENT_RDMA4] = { MTK_DISP_RDMA, 4, &ddp_rdma },
+ [DDP_COMPONENT_UFOE] = { MTK_DISP_UFOE, 0, &ddp_ufoe },
+ [DDP_COMPONENT_WDMA0] = { MTK_DISP_WDMA, 0, NULL },
+ [DDP_COMPONENT_WDMA1] = { MTK_DISP_WDMA, 1, NULL },
};
static bool mtk_drm_find_comp_in_ddp(struct device *dev,
- const enum mtk_ddp_comp_id *path,
+ const unsigned int *path,
unsigned int path_len,
struct mtk_ddp_comp *ddp_comp)
{
@@ -517,7 +544,7 @@ unsigned int mtk_drm_find_possible_crtc_by_comp(struct drm_device *drm,
}
int mtk_ddp_comp_init(struct device_node *node, struct mtk_ddp_comp *comp,
- enum mtk_ddp_comp_id comp_id)
+ unsigned int comp_id)
{
struct platform_device *comp_pdev;
enum mtk_ddp_comp_type type;
@@ -526,19 +553,24 @@ int mtk_ddp_comp_init(struct device_node *node, struct mtk_ddp_comp *comp,
int ret;
#endif
- if (comp_id < 0 || comp_id >= DDP_COMPONENT_ID_MAX)
+ if (comp_id < 0 || comp_id >= DDP_COMPONENT_DRM_ID_MAX)
return -EINVAL;
type = mtk_ddp_matches[comp_id].type;
comp->id = comp_id;
comp->funcs = mtk_ddp_matches[comp_id].funcs;
- comp_pdev = of_find_device_by_node(node);
- if (!comp_pdev) {
- DRM_INFO("Waiting for device %s\n", node->full_name);
- return -EPROBE_DEFER;
+ /* Not all drm components have a DTS device node, such as ovl_adaptor,
+ * which is the drm bring up sub driver
+ */
+ if (node) {
+ comp_pdev = of_find_device_by_node(node);
+ if (!comp_pdev) {
+ DRM_INFO("Waiting for device %s\n", node->full_name);
+ return -EPROBE_DEFER;
+ }
+ comp->dev = &comp_pdev->dev;
}
- comp->dev = &comp_pdev->dev;
if (type == MTK_DISP_AAL ||
type == MTK_DISP_BLS ||
@@ -548,6 +580,7 @@ int mtk_ddp_comp_init(struct device_node *node, struct mtk_ddp_comp *comp,
type == MTK_DISP_MERGE ||
type == MTK_DISP_OVL ||
type == MTK_DISP_OVL_2L ||
+ type == MTK_DISP_OVL_ADAPTOR ||
type == MTK_DISP_PWM ||
type == MTK_DISP_RDMA ||
type == MTK_DPI ||
diff --git a/drivers/gpu/drm/mediatek/mtk_drm_ddp_comp.h b/drivers/gpu/drm/mediatek/mtk_drm_ddp_comp.h
index 2d0052c23dcb..febcaeef16a1 100644
--- a/drivers/gpu/drm/mediatek/mtk_drm_ddp_comp.h
+++ b/drivers/gpu/drm/mediatek/mtk_drm_ddp_comp.h
@@ -9,6 +9,7 @@
#include <linux/io.h>
#include <linux/soc/mediatek/mtk-cmdq.h>
#include <linux/soc/mediatek/mtk-mmsys.h>
+#include <linux/soc/mediatek/mtk-mutex.h>
struct device;
struct device_node;
@@ -30,6 +31,7 @@ enum mtk_ddp_comp_type {
MTK_DISP_OD,
MTK_DISP_OVL,
MTK_DISP_OVL_2L,
+ MTK_DISP_OVL_ADAPTOR,
MTK_DISP_POSTMASK,
MTK_DISP_PWM,
MTK_DISP_RDMA,
@@ -71,12 +73,19 @@ struct mtk_ddp_comp_funcs {
void (*bgclr_in_off)(struct device *dev);
void (*ctm_set)(struct device *dev,
struct drm_crtc_state *state);
+ struct device * (*dma_dev_get)(struct device *dev);
+ const u32 *(*get_formats)(struct device *dev);
+ size_t (*get_num_formats)(struct device *dev);
+ void (*connect)(struct device *dev, struct device *mmsys_dev, unsigned int next);
+ void (*disconnect)(struct device *dev, struct device *mmsys_dev, unsigned int next);
+ void (*add)(struct device *dev, struct mtk_mutex *mutex);
+ void (*remove)(struct device *dev, struct mtk_mutex *mutex);
};
struct mtk_ddp_comp {
struct device *dev;
int irq;
- enum mtk_ddp_comp_id id;
+ unsigned int id;
const struct mtk_ddp_comp_funcs *funcs;
};
@@ -203,13 +212,76 @@ static inline void mtk_ddp_ctm_set(struct mtk_ddp_comp *comp,
comp->funcs->ctm_set(comp->dev, state);
}
+static inline struct device *mtk_ddp_comp_dma_dev_get(struct mtk_ddp_comp *comp)
+{
+ if (comp->funcs && comp->funcs->dma_dev_get)
+ return comp->funcs->dma_dev_get(comp->dev);
+ return comp->dev;
+}
+
+static inline
+const u32 *mtk_ddp_comp_get_formats(struct mtk_ddp_comp *comp)
+{
+ if (comp->funcs && comp->funcs->get_formats)
+ return comp->funcs->get_formats(comp->dev);
+
+ return NULL;
+}
+
+static inline
+size_t mtk_ddp_comp_get_num_formats(struct mtk_ddp_comp *comp)
+{
+ if (comp->funcs && comp->funcs->get_num_formats)
+ return comp->funcs->get_num_formats(comp->dev);
+
+ return 0;
+}
+
+static inline bool mtk_ddp_comp_add(struct mtk_ddp_comp *comp, struct mtk_mutex *mutex)
+{
+ if (comp->funcs && comp->funcs->add) {
+ comp->funcs->add(comp->dev, mutex);
+ return true;
+ }
+ return false;
+}
+
+static inline bool mtk_ddp_comp_remove(struct mtk_ddp_comp *comp, struct mtk_mutex *mutex)
+{
+ if (comp->funcs && comp->funcs->remove) {
+ comp->funcs->remove(comp->dev, mutex);
+ return true;
+ }
+ return false;
+}
+
+static inline bool mtk_ddp_comp_connect(struct mtk_ddp_comp *comp, struct device *mmsys_dev,
+ unsigned int next)
+{
+ if (comp->funcs && comp->funcs->connect) {
+ comp->funcs->connect(comp->dev, mmsys_dev, next);
+ return true;
+ }
+ return false;
+}
+
+static inline bool mtk_ddp_comp_disconnect(struct mtk_ddp_comp *comp, struct device *mmsys_dev,
+ unsigned int next)
+{
+ if (comp->funcs && comp->funcs->disconnect) {
+ comp->funcs->disconnect(comp->dev, mmsys_dev, next);
+ return true;
+ }
+ return false;
+}
+
int mtk_ddp_comp_get_id(struct device_node *node,
enum mtk_ddp_comp_type comp_type);
unsigned int mtk_drm_find_possible_crtc_by_comp(struct drm_device *drm,
struct device *dev);
int mtk_ddp_comp_init(struct device_node *comp_node, struct mtk_ddp_comp *comp,
- enum mtk_ddp_comp_id comp_id);
-enum mtk_ddp_comp_type mtk_ddp_comp_get_type(enum mtk_ddp_comp_id comp_id);
+ unsigned int comp_id);
+enum mtk_ddp_comp_type mtk_ddp_comp_get_type(unsigned int comp_id);
void mtk_ddp_write(struct cmdq_pkt *cmdq_pkt, unsigned int value,
struct cmdq_client_reg *cmdq_reg, void __iomem *regs,
unsigned int offset);
diff --git a/drivers/gpu/drm/mediatek/mtk_drm_drv.c b/drivers/gpu/drm/mediatek/mtk_drm_drv.c
index 91f58db5915f..6dcb4ba2466c 100644
--- a/drivers/gpu/drm/mediatek/mtk_drm_drv.c
+++ b/drivers/gpu/drm/mediatek/mtk_drm_drv.c
@@ -4,8 +4,6 @@
* Author: YT SHEN <yt.shen@mediatek.com>
*/
-#include <linux/clk.h>
-#include <linux/clk-provider.h>
#include <linux/component.h>
#include <linux/iommu.h>
#include <linux/module.h>
@@ -17,11 +15,11 @@
#include <drm/drm_atomic.h>
#include <drm/drm_atomic_helper.h>
#include <drm/drm_drv.h>
-#include <drm/drm_fb_helper.h>
+#include <drm/drm_fbdev_generic.h>
#include <drm/drm_fourcc.h>
#include <drm/drm_gem.h>
-#include <drm/drm_gem_dma_helper.h>
#include <drm/drm_gem_framebuffer_helper.h>
+#include <drm/drm_ioctl.h>
#include <drm/drm_of.h>
#include <drm/drm_probe_helper.h>
#include <drm/drm_vblank.h>
@@ -60,7 +58,7 @@ static const struct drm_mode_config_funcs mtk_drm_mode_config_funcs = {
.atomic_commit = drm_atomic_helper_commit,
};
-static const enum mtk_ddp_comp_id mt2701_mtk_ddp_main[] = {
+static const unsigned int mt2701_mtk_ddp_main[] = {
DDP_COMPONENT_OVL0,
DDP_COMPONENT_RDMA0,
DDP_COMPONENT_COLOR0,
@@ -68,12 +66,12 @@ static const enum mtk_ddp_comp_id mt2701_mtk_ddp_main[] = {
DDP_COMPONENT_DSI0,
};
-static const enum mtk_ddp_comp_id mt2701_mtk_ddp_ext[] = {
+static const unsigned int mt2701_mtk_ddp_ext[] = {
DDP_COMPONENT_RDMA1,
DDP_COMPONENT_DPI0,
};
-static const enum mtk_ddp_comp_id mt7623_mtk_ddp_main[] = {
+static const unsigned int mt7623_mtk_ddp_main[] = {
DDP_COMPONENT_OVL0,
DDP_COMPONENT_RDMA0,
DDP_COMPONENT_COLOR0,
@@ -81,12 +79,12 @@ static const enum mtk_ddp_comp_id mt7623_mtk_ddp_main[] = {
DDP_COMPONENT_DPI0,
};
-static const enum mtk_ddp_comp_id mt7623_mtk_ddp_ext[] = {
+static const unsigned int mt7623_mtk_ddp_ext[] = {
DDP_COMPONENT_RDMA1,
DDP_COMPONENT_DSI0,
};
-static const enum mtk_ddp_comp_id mt2712_mtk_ddp_main[] = {
+static const unsigned int mt2712_mtk_ddp_main[] = {
DDP_COMPONENT_OVL0,
DDP_COMPONENT_COLOR0,
DDP_COMPONENT_AAL0,
@@ -96,7 +94,7 @@ static const enum mtk_ddp_comp_id mt2712_mtk_ddp_main[] = {
DDP_COMPONENT_PWM0,
};
-static const enum mtk_ddp_comp_id mt2712_mtk_ddp_ext[] = {
+static const unsigned int mt2712_mtk_ddp_ext[] = {
DDP_COMPONENT_OVL1,
DDP_COMPONENT_COLOR1,
DDP_COMPONENT_AAL1,
@@ -106,13 +104,13 @@ static const enum mtk_ddp_comp_id mt2712_mtk_ddp_ext[] = {
DDP_COMPONENT_PWM1,
};
-static const enum mtk_ddp_comp_id mt2712_mtk_ddp_third[] = {
+static const unsigned int mt2712_mtk_ddp_third[] = {
DDP_COMPONENT_RDMA2,
DDP_COMPONENT_DSI3,
DDP_COMPONENT_PWM2,
};
-static enum mtk_ddp_comp_id mt8167_mtk_ddp_main[] = {
+static unsigned int mt8167_mtk_ddp_main[] = {
DDP_COMPONENT_OVL0,
DDP_COMPONENT_COLOR0,
DDP_COMPONENT_CCORR,
@@ -123,7 +121,7 @@ static enum mtk_ddp_comp_id mt8167_mtk_ddp_main[] = {
DDP_COMPONENT_DSI0,
};
-static const enum mtk_ddp_comp_id mt8173_mtk_ddp_main[] = {
+static const unsigned int mt8173_mtk_ddp_main[] = {
DDP_COMPONENT_OVL0,
DDP_COMPONENT_COLOR0,
DDP_COMPONENT_AAL0,
@@ -134,7 +132,7 @@ static const enum mtk_ddp_comp_id mt8173_mtk_ddp_main[] = {
DDP_COMPONENT_PWM0,
};
-static const enum mtk_ddp_comp_id mt8173_mtk_ddp_ext[] = {
+static const unsigned int mt8173_mtk_ddp_ext[] = {
DDP_COMPONENT_OVL1,
DDP_COMPONENT_COLOR1,
DDP_COMPONENT_GAMMA,
@@ -142,7 +140,7 @@ static const enum mtk_ddp_comp_id mt8173_mtk_ddp_ext[] = {
DDP_COMPONENT_DPI0,
};
-static const enum mtk_ddp_comp_id mt8183_mtk_ddp_main[] = {
+static const unsigned int mt8183_mtk_ddp_main[] = {
DDP_COMPONENT_OVL0,
DDP_COMPONENT_OVL_2L0,
DDP_COMPONENT_RDMA0,
@@ -154,13 +152,13 @@ static const enum mtk_ddp_comp_id mt8183_mtk_ddp_main[] = {
DDP_COMPONENT_DSI0,
};
-static const enum mtk_ddp_comp_id mt8183_mtk_ddp_ext[] = {
+static const unsigned int mt8183_mtk_ddp_ext[] = {
DDP_COMPONENT_OVL_2L1,
DDP_COMPONENT_RDMA1,
DDP_COMPONENT_DPI0,
};
-static const enum mtk_ddp_comp_id mt8186_mtk_ddp_main[] = {
+static const unsigned int mt8186_mtk_ddp_main[] = {
DDP_COMPONENT_OVL0,
DDP_COMPONENT_RDMA0,
DDP_COMPONENT_COLOR0,
@@ -172,13 +170,25 @@ static const enum mtk_ddp_comp_id mt8186_mtk_ddp_main[] = {
DDP_COMPONENT_DSI0,
};
-static const enum mtk_ddp_comp_id mt8186_mtk_ddp_ext[] = {
+static const unsigned int mt8186_mtk_ddp_ext[] = {
DDP_COMPONENT_OVL_2L0,
DDP_COMPONENT_RDMA1,
DDP_COMPONENT_DPI0,
};
-static const enum mtk_ddp_comp_id mt8192_mtk_ddp_main[] = {
+static const unsigned int mt8188_mtk_ddp_main[] = {
+ DDP_COMPONENT_OVL0,
+ DDP_COMPONENT_RDMA0,
+ DDP_COMPONENT_COLOR0,
+ DDP_COMPONENT_CCORR,
+ DDP_COMPONENT_AAL0,
+ DDP_COMPONENT_GAMMA,
+ DDP_COMPONENT_POSTMASK0,
+ DDP_COMPONENT_DITHER0,
+ DDP_COMPONENT_DP_INTF0,
+};
+
+static const unsigned int mt8192_mtk_ddp_main[] = {
DDP_COMPONENT_OVL0,
DDP_COMPONENT_OVL_2L0,
DDP_COMPONENT_RDMA0,
@@ -191,13 +201,13 @@ static const enum mtk_ddp_comp_id mt8192_mtk_ddp_main[] = {
DDP_COMPONENT_DSI0,
};
-static const enum mtk_ddp_comp_id mt8192_mtk_ddp_ext[] = {
+static const unsigned int mt8192_mtk_ddp_ext[] = {
DDP_COMPONENT_OVL_2L2,
DDP_COMPONENT_RDMA4,
DDP_COMPONENT_DPI0,
};
-static const enum mtk_ddp_comp_id mt8195_mtk_ddp_main[] = {
+static const unsigned int mt8195_mtk_ddp_main[] = {
DDP_COMPONENT_OVL0,
DDP_COMPONENT_RDMA0,
DDP_COMPONENT_COLOR0,
@@ -210,19 +220,19 @@ static const enum mtk_ddp_comp_id mt8195_mtk_ddp_main[] = {
DDP_COMPONENT_DP_INTF0,
};
+static const unsigned int mt8195_mtk_ddp_ext[] = {
+ DDP_COMPONENT_DRM_OVL_ADAPTOR,
+ DDP_COMPONENT_MERGE5,
+ DDP_COMPONENT_DP_INTF1,
+};
+
static const struct mtk_mmsys_driver_data mt2701_mmsys_driver_data = {
.main_path = mt2701_mtk_ddp_main,
.main_len = ARRAY_SIZE(mt2701_mtk_ddp_main),
.ext_path = mt2701_mtk_ddp_ext,
.ext_len = ARRAY_SIZE(mt2701_mtk_ddp_ext),
.shadow_register = true,
-};
-
-static const struct mtk_mmsys_match_data mt2701_mmsys_match_data = {
- .num_drv_data = 1,
- .drv_data = {
- &mt2701_mmsys_driver_data,
- },
+ .mmsys_dev_num = 1,
};
static const struct mtk_mmsys_driver_data mt7623_mmsys_driver_data = {
@@ -231,13 +241,7 @@ static const struct mtk_mmsys_driver_data mt7623_mmsys_driver_data = {
.ext_path = mt7623_mtk_ddp_ext,
.ext_len = ARRAY_SIZE(mt7623_mtk_ddp_ext),
.shadow_register = true,
-};
-
-static const struct mtk_mmsys_match_data mt7623_mmsys_match_data = {
- .num_drv_data = 1,
- .drv_data = {
- &mt7623_mmsys_driver_data,
- },
+ .mmsys_dev_num = 1,
};
static const struct mtk_mmsys_driver_data mt2712_mmsys_driver_data = {
@@ -247,25 +251,13 @@ static const struct mtk_mmsys_driver_data mt2712_mmsys_driver_data = {
.ext_len = ARRAY_SIZE(mt2712_mtk_ddp_ext),
.third_path = mt2712_mtk_ddp_third,
.third_len = ARRAY_SIZE(mt2712_mtk_ddp_third),
-};
-
-static const struct mtk_mmsys_match_data mt2712_mmsys_match_data = {
- .num_drv_data = 1,
- .drv_data = {
- &mt2712_mmsys_driver_data,
- },
+ .mmsys_dev_num = 1,
};
static const struct mtk_mmsys_driver_data mt8167_mmsys_driver_data = {
.main_path = mt8167_mtk_ddp_main,
.main_len = ARRAY_SIZE(mt8167_mtk_ddp_main),
-};
-
-static const struct mtk_mmsys_match_data mt8167_mmsys_match_data = {
- .num_drv_data = 1,
- .drv_data = {
- &mt8167_mmsys_driver_data,
- },
+ .mmsys_dev_num = 1,
};
static const struct mtk_mmsys_driver_data mt8173_mmsys_driver_data = {
@@ -273,13 +265,7 @@ static const struct mtk_mmsys_driver_data mt8173_mmsys_driver_data = {
.main_len = ARRAY_SIZE(mt8173_mtk_ddp_main),
.ext_path = mt8173_mtk_ddp_ext,
.ext_len = ARRAY_SIZE(mt8173_mtk_ddp_ext),
-};
-
-static const struct mtk_mmsys_match_data mt8173_mmsys_match_data = {
- .num_drv_data = 1,
- .drv_data = {
- &mt8173_mmsys_driver_data,
- },
+ .mmsys_dev_num = 1,
};
static const struct mtk_mmsys_driver_data mt8183_mmsys_driver_data = {
@@ -287,13 +273,7 @@ static const struct mtk_mmsys_driver_data mt8183_mmsys_driver_data = {
.main_len = ARRAY_SIZE(mt8183_mtk_ddp_main),
.ext_path = mt8183_mtk_ddp_ext,
.ext_len = ARRAY_SIZE(mt8183_mtk_ddp_ext),
-};
-
-static const struct mtk_mmsys_match_data mt8183_mmsys_match_data = {
- .num_drv_data = 1,
- .drv_data = {
- &mt8183_mmsys_driver_data,
- },
+ .mmsys_dev_num = 1,
};
static const struct mtk_mmsys_driver_data mt8186_mmsys_driver_data = {
@@ -301,13 +281,12 @@ static const struct mtk_mmsys_driver_data mt8186_mmsys_driver_data = {
.main_len = ARRAY_SIZE(mt8186_mtk_ddp_main),
.ext_path = mt8186_mtk_ddp_ext,
.ext_len = ARRAY_SIZE(mt8186_mtk_ddp_ext),
+ .mmsys_dev_num = 1,
};
-static const struct mtk_mmsys_match_data mt8186_mmsys_match_data = {
- .num_drv_data = 1,
- .drv_data = {
- &mt8186_mmsys_driver_data,
- },
+static const struct mtk_mmsys_driver_data mt8188_vdosys0_driver_data = {
+ .main_path = mt8188_mtk_ddp_main,
+ .main_len = ARRAY_SIZE(mt8188_mtk_ddp_main),
};
static const struct mtk_mmsys_driver_data mt8192_mmsys_driver_data = {
@@ -315,56 +294,133 @@ static const struct mtk_mmsys_driver_data mt8192_mmsys_driver_data = {
.main_len = ARRAY_SIZE(mt8192_mtk_ddp_main),
.ext_path = mt8192_mtk_ddp_ext,
.ext_len = ARRAY_SIZE(mt8192_mtk_ddp_ext),
-};
-
-static const struct mtk_mmsys_match_data mt8192_mmsys_match_data = {
- .num_drv_data = 1,
- .drv_data = {
- &mt8192_mmsys_driver_data,
- },
+ .mmsys_dev_num = 1,
};
static const struct mtk_mmsys_driver_data mt8195_vdosys0_driver_data = {
- .io_start = 0x1c01a000,
.main_path = mt8195_mtk_ddp_main,
.main_len = ARRAY_SIZE(mt8195_mtk_ddp_main),
+ .mmsys_dev_num = 2,
};
static const struct mtk_mmsys_driver_data mt8195_vdosys1_driver_data = {
- .io_start = 0x1c100000,
+ .ext_path = mt8195_mtk_ddp_ext,
+ .ext_len = ARRAY_SIZE(mt8195_mtk_ddp_ext),
+ .mmsys_id = 1,
+ .mmsys_dev_num = 2,
};
-static const struct mtk_mmsys_match_data mt8195_mmsys_match_data = {
- .num_drv_data = 1,
- .drv_data = {
- &mt8195_vdosys0_driver_data,
- &mt8195_vdosys1_driver_data,
- },
+static const struct of_device_id mtk_drm_of_ids[] = {
+ { .compatible = "mediatek,mt2701-mmsys",
+ .data = &mt2701_mmsys_driver_data},
+ { .compatible = "mediatek,mt7623-mmsys",
+ .data = &mt7623_mmsys_driver_data},
+ { .compatible = "mediatek,mt2712-mmsys",
+ .data = &mt2712_mmsys_driver_data},
+ { .compatible = "mediatek,mt8167-mmsys",
+ .data = &mt8167_mmsys_driver_data},
+ { .compatible = "mediatek,mt8173-mmsys",
+ .data = &mt8173_mmsys_driver_data},
+ { .compatible = "mediatek,mt8183-mmsys",
+ .data = &mt8183_mmsys_driver_data},
+ { .compatible = "mediatek,mt8186-mmsys",
+ .data = &mt8186_mmsys_driver_data},
+ { .compatible = "mediatek,mt8188-vdosys0",
+ .data = &mt8188_vdosys0_driver_data},
+ { .compatible = "mediatek,mt8192-mmsys",
+ .data = &mt8192_mmsys_driver_data},
+ { .compatible = "mediatek,mt8195-mmsys",
+ .data = &mt8195_vdosys0_driver_data},
+ { .compatible = "mediatek,mt8195-vdosys0",
+ .data = &mt8195_vdosys0_driver_data},
+ { .compatible = "mediatek,mt8195-vdosys1",
+ .data = &mt8195_vdosys1_driver_data},
+ { }
};
+MODULE_DEVICE_TABLE(of, mtk_drm_of_ids);
+
+static int mtk_drm_match(struct device *dev, void *data)
+{
+ if (!strncmp(dev_name(dev), "mediatek-drm", sizeof("mediatek-drm") - 1))
+ return true;
+ return false;
+}
+
+static bool mtk_drm_get_all_drm_priv(struct device *dev)
+{
+ struct mtk_drm_private *drm_priv = dev_get_drvdata(dev);
+ struct mtk_drm_private *all_drm_priv[MAX_CRTC];
+ struct device_node *phandle = dev->parent->of_node;
+ const struct of_device_id *of_id;
+ struct device_node *node;
+ struct device *drm_dev;
+ int cnt = 0;
+ int i, j;
+
+ for_each_child_of_node(phandle->parent, node) {
+ struct platform_device *pdev;
+
+ of_id = of_match_node(mtk_drm_of_ids, node);
+ if (!of_id)
+ continue;
+
+ pdev = of_find_device_by_node(node);
+ if (!pdev)
+ continue;
+
+ drm_dev = device_find_child(&pdev->dev, NULL, mtk_drm_match);
+ if (!drm_dev || !dev_get_drvdata(drm_dev))
+ continue;
+
+ all_drm_priv[cnt] = dev_get_drvdata(drm_dev);
+ if (all_drm_priv[cnt] && all_drm_priv[cnt]->mtk_drm_bound)
+ cnt++;
+ }
+
+ if (drm_priv->data->mmsys_dev_num == cnt) {
+ for (i = 0; i < cnt; i++)
+ for (j = 0; j < cnt; j++)
+ all_drm_priv[j]->all_drm_private[i] = all_drm_priv[i];
+
+ return true;
+ }
+
+ return false;
+}
+
+static bool mtk_drm_find_mmsys_comp(struct mtk_drm_private *private, int comp_id)
+{
+ const struct mtk_mmsys_driver_data *drv_data = private->data;
+ int i;
+
+ if (drv_data->main_path)
+ for (i = 0; i < drv_data->main_len; i++)
+ if (drv_data->main_path[i] == comp_id)
+ return true;
+
+ if (drv_data->ext_path)
+ for (i = 0; i < drv_data->ext_len; i++)
+ if (drv_data->ext_path[i] == comp_id)
+ return true;
+
+ if (drv_data->third_path)
+ for (i = 0; i < drv_data->third_len; i++)
+ if (drv_data->third_path[i] == comp_id)
+ return true;
+
+ return false;
+}
static int mtk_drm_kms_init(struct drm_device *drm)
{
struct mtk_drm_private *private = drm->dev_private;
- struct platform_device *pdev;
- struct device_node *np;
- struct device *dma_dev;
- int ret;
+ struct mtk_drm_private *priv_n;
+ struct device *dma_dev = NULL;
+ int ret, i, j;
if (drm_firmware_drivers_only())
return -ENODEV;
- if (!iommu_present(&platform_bus_type))
- return -EPROBE_DEFER;
-
- pdev = of_find_device_by_node(private->mutex_node);
- if (!pdev) {
- dev_err(drm->dev, "Waiting for disp-mutex device %pOF\n",
- private->mutex_node);
- of_node_put(private->mutex_node);
- return -EPROBE_DEFER;
- }
- private->mutex_dev = &pdev->dev;
-
ret = drmm_mode_config_init(drm);
if (ret)
goto put_mutex_dev;
@@ -382,42 +438,67 @@ static int mtk_drm_kms_init(struct drm_device *drm)
drm->mode_config.funcs = &mtk_drm_mode_config_funcs;
drm->mode_config.helper_private = &mtk_drm_mode_config_helpers;
- ret = component_bind_all(drm->dev, drm);
- if (ret)
- goto put_mutex_dev;
+ for (i = 0; i < private->data->mmsys_dev_num; i++) {
+ drm->dev_private = private->all_drm_private[i];
+ ret = component_bind_all(private->all_drm_private[i]->dev, drm);
+ if (ret)
+ goto put_mutex_dev;
+ }
/*
- * We currently support two fixed data streams, each optional,
- * and each statically assigned to a crtc:
- * OVL0 -> COLOR0 -> AAL -> OD -> RDMA0 -> UFOE -> DSI0 ...
+ * Ensure internal panels are at the top of the connector list before
+ * crtc creation.
*/
- ret = mtk_drm_crtc_create(drm, private->data->main_path,
- private->data->main_len);
- if (ret < 0)
- goto err_component_unbind;
- /* ... and OVL1 -> COLOR1 -> GAMMA -> RDMA1 -> DPI0. */
- ret = mtk_drm_crtc_create(drm, private->data->ext_path,
- private->data->ext_len);
- if (ret < 0)
- goto err_component_unbind;
+ drm_helper_move_panel_connectors_to_head(drm);
- ret = mtk_drm_crtc_create(drm, private->data->third_path,
- private->data->third_len);
- if (ret < 0)
- goto err_component_unbind;
+ /*
+ * 1. We currently support two fixed data streams, each optional,
+ * and each statically assigned to a crtc:
+ * OVL0 -> COLOR0 -> AAL -> OD -> RDMA0 -> UFOE -> DSI0 ...
+ * 2. For multi mmsys architecture, crtc path data are located in
+ * different drm private data structures. Loop through crtc index to
+ * create crtc from the main path and then ext_path and finally the
+ * third path.
+ */
+ for (i = 0; i < MAX_CRTC; i++) {
+ for (j = 0; j < private->data->mmsys_dev_num; j++) {
+ priv_n = private->all_drm_private[j];
+
+ if (i == 0 && priv_n->data->main_len) {
+ ret = mtk_drm_crtc_create(drm, priv_n->data->main_path,
+ priv_n->data->main_len, j);
+ if (ret)
+ goto err_component_unbind;
+
+ continue;
+ } else if (i == 1 && priv_n->data->ext_len) {
+ ret = mtk_drm_crtc_create(drm, priv_n->data->ext_path,
+ priv_n->data->ext_len, j);
+ if (ret)
+ goto err_component_unbind;
+
+ continue;
+ } else if (i == 2 && priv_n->data->third_len) {
+ ret = mtk_drm_crtc_create(drm, priv_n->data->third_path,
+ priv_n->data->third_len, j);
+ if (ret)
+ goto err_component_unbind;
+
+ continue;
+ }
+ }
+ }
/* Use OVL device for all DMA memory allocations */
- np = private->comp_node[private->data->main_path[0]] ?:
- private->comp_node[private->data->ext_path[0]];
- pdev = of_find_device_by_node(np);
- if (!pdev) {
+ dma_dev = mtk_drm_crtc_dma_dev_get(drm_crtc_from_index(drm, 0));
+ if (!dma_dev) {
ret = -ENODEV;
dev_err(drm->dev, "Need at least one OVL device\n");
goto err_component_unbind;
}
- dma_dev = &pdev->dev;
- private->dma_dev = dma_dev;
+ for (i = 0; i < private->data->mmsys_dev_num; i++)
+ private->all_drm_private[i]->dma_dev = dma_dev;
/*
* Configure the DMA segment size to make sure we get contiguous IOVA
@@ -439,9 +520,12 @@ static int mtk_drm_kms_init(struct drm_device *drm)
return 0;
err_component_unbind:
- component_unbind_all(drm->dev, drm);
+ for (i = 0; i < private->data->mmsys_dev_num; i++)
+ component_unbind_all(private->all_drm_private[i]->dev, drm);
put_mutex_dev:
- put_device(private->mutex_dev);
+ for (i = 0; i < private->data->mmsys_dev_num; i++)
+ put_device(private->all_drm_private[i]->mutex_dev);
+
return ret;
}
@@ -486,18 +570,44 @@ static const struct drm_driver mtk_drm_driver = {
.minor = DRIVER_MINOR,
};
+static int compare_dev(struct device *dev, void *data)
+{
+ return dev == (struct device *)data;
+}
+
static int mtk_drm_bind(struct device *dev)
{
struct mtk_drm_private *private = dev_get_drvdata(dev);
+ struct platform_device *pdev;
struct drm_device *drm;
- int ret;
+ int ret, i;
+
+ if (!iommu_present(&platform_bus_type))
+ return -EPROBE_DEFER;
+
+ pdev = of_find_device_by_node(private->mutex_node);
+ if (!pdev) {
+ dev_err(dev, "Waiting for disp-mutex device %pOF\n",
+ private->mutex_node);
+ of_node_put(private->mutex_node);
+ return -EPROBE_DEFER;
+ }
+
+ private->mutex_dev = &pdev->dev;
+ private->mtk_drm_bound = true;
+ private->dev = dev;
+
+ if (!mtk_drm_get_all_drm_priv(dev))
+ return 0;
drm = drm_dev_alloc(&mtk_drm_driver, dev);
if (IS_ERR(drm))
return PTR_ERR(drm);
+ private->drm_master = true;
drm->dev_private = private;
- private->drm = drm;
+ for (i = 0; i < private->data->mmsys_dev_num; i++)
+ private->all_drm_private[i]->drm = drm;
ret = mtk_drm_kms_init(drm);
if (ret < 0)
@@ -514,6 +624,7 @@ static int mtk_drm_bind(struct device *dev)
err_deinit:
mtk_drm_kms_deinit(drm);
err_free:
+ private->drm = NULL;
drm_dev_put(drm);
return ret;
}
@@ -522,10 +633,14 @@ static void mtk_drm_unbind(struct device *dev)
{
struct mtk_drm_private *private = dev_get_drvdata(dev);
- drm_dev_unregister(private->drm);
- mtk_drm_kms_deinit(private->drm);
- drm_dev_put(private->drm);
- private->num_pipes = 0;
+ /* for multi mmsys dev, unregister drm dev in mmsys master */
+ if (private->drm_master) {
+ drm_dev_unregister(private->drm);
+ mtk_drm_kms_deinit(private->drm);
+ drm_dev_put(private->drm);
+ }
+ private->mtk_drm_bound = false;
+ private->drm_master = false;
private->drm = NULL;
}
@@ -581,6 +696,8 @@ static const struct of_device_id mtk_ddp_comp_dt_ids[] = {
.data = (void *)MTK_DISP_MUTEX },
{ .compatible = "mediatek,mt8186-disp-mutex",
.data = (void *)MTK_DISP_MUTEX },
+ { .compatible = "mediatek,mt8188-disp-mutex",
+ .data = (void *)MTK_DISP_MUTEX },
{ .compatible = "mediatek,mt8192-disp-mutex",
.data = (void *)MTK_DISP_MUTEX },
{ .compatible = "mediatek,mt8195-disp-mutex",
@@ -631,6 +748,10 @@ static const struct of_device_id mtk_ddp_comp_dt_ids[] = {
.data = (void *)MTK_DPI },
{ .compatible = "mediatek,mt8183-dpi",
.data = (void *)MTK_DPI },
+ { .compatible = "mediatek,mt8186-dpi",
+ .data = (void *)MTK_DPI },
+ { .compatible = "mediatek,mt8188-dp-intf",
+ .data = (void *)MTK_DP_INTF },
{ .compatible = "mediatek,mt8192-dpi",
.data = (void *)MTK_DPI },
{ .compatible = "mediatek,mt8195-dp-intf",
@@ -646,58 +767,15 @@ static const struct of_device_id mtk_ddp_comp_dt_ids[] = {
{ }
};
-static const struct of_device_id mtk_drm_of_ids[] = {
- { .compatible = "mediatek,mt2701-mmsys",
- .data = &mt2701_mmsys_match_data},
- { .compatible = "mediatek,mt7623-mmsys",
- .data = &mt7623_mmsys_match_data},
- { .compatible = "mediatek,mt2712-mmsys",
- .data = &mt2712_mmsys_match_data},
- { .compatible = "mediatek,mt8167-mmsys",
- .data = &mt8167_mmsys_match_data},
- { .compatible = "mediatek,mt8173-mmsys",
- .data = &mt8173_mmsys_match_data},
- { .compatible = "mediatek,mt8183-mmsys",
- .data = &mt8183_mmsys_match_data},
- { .compatible = "mediatek,mt8186-mmsys",
- .data = &mt8186_mmsys_match_data},
- { .compatible = "mediatek,mt8192-mmsys",
- .data = &mt8192_mmsys_match_data},
- { .compatible = "mediatek,mt8195-mmsys",
- .data = &mt8195_mmsys_match_data},
- { }
-};
-MODULE_DEVICE_TABLE(of, mtk_drm_of_ids);
-
-static int mtk_drm_find_match_data(struct device *dev,
- const struct mtk_mmsys_match_data *match_data)
-{
- int i;
- struct platform_device *pdev = of_find_device_by_node(dev->parent->of_node);
- struct resource *res;
-
- res = platform_get_resource(pdev, IORESOURCE_MEM, 0);
- if (!res) {
- dev_err(dev, "failed to get parent resource\n");
- return -EINVAL;
- }
-
- for (i = 0; i < match_data->num_drv_data; i++)
- if (match_data->drv_data[i]->io_start == res->start)
- return i;
-
- return -EINVAL;
-}
-
static int mtk_drm_probe(struct platform_device *pdev)
{
struct device *dev = &pdev->dev;
struct device_node *phandle = dev->parent->of_node;
const struct of_device_id *of_id;
- const struct mtk_mmsys_match_data *match_data;
struct mtk_drm_private *private;
struct device_node *node;
struct component_match *match = NULL;
+ struct platform_device *ovl_adaptor;
int ret;
int i;
@@ -715,18 +793,24 @@ static int mtk_drm_probe(struct platform_device *pdev)
if (!of_id)
return -ENODEV;
- match_data = of_id->data;
- if (match_data->num_drv_data > 1) {
- /* This SoC has multiple mmsys channels */
- ret = mtk_drm_find_match_data(dev, match_data);
- if (ret < 0) {
- dev_err(dev, "Couldn't get match driver data\n");
- return ret;
- }
- private->data = match_data->drv_data[ret];
- } else {
- dev_dbg(dev, "Using single mmsys channel\n");
- private->data = match_data->drv_data[0];
+ private->data = of_id->data;
+
+ private->all_drm_private = devm_kmalloc_array(dev, private->data->mmsys_dev_num,
+ sizeof(*private->all_drm_private),
+ GFP_KERNEL);
+ if (!private->all_drm_private)
+ return -ENOMEM;
+
+ /* Bringup ovl_adaptor */
+ if (mtk_drm_find_mmsys_comp(private, DDP_COMPONENT_DRM_OVL_ADAPTOR)) {
+ ovl_adaptor = platform_device_register_data(dev, "mediatek-disp-ovl-adaptor",
+ PLATFORM_DEVID_AUTO,
+ (void *)private->mmsys_dev,
+ sizeof(*private->mmsys_dev));
+ private->ddp_comp[DDP_COMPONENT_DRM_OVL_ADAPTOR].dev = &ovl_adaptor->dev;
+ mtk_ddp_comp_init(NULL, &private->ddp_comp[DDP_COMPONENT_DRM_OVL_ADAPTOR],
+ DDP_COMPONENT_DRM_OVL_ADAPTOR);
+ component_match_add(dev, &match, compare_dev, &ovl_adaptor->dev);
}
/* Iterate over sibling DISP function blocks */
@@ -748,7 +832,13 @@ static int mtk_drm_probe(struct platform_device *pdev)
comp_type = (enum mtk_ddp_comp_type)of_id->data;
if (comp_type == MTK_DISP_MUTEX) {
- private->mutex_node = of_node_get(node);
+ int id;
+
+ id = of_alias_get_id(node, "mutex");
+ if (id < 0 || id == private->data->mmsys_id) {
+ private->mutex_node = of_node_get(node);
+ dev_dbg(dev, "get mutex for mmsys %d", private->data->mmsys_id);
+ }
continue;
}
@@ -759,6 +849,9 @@ static int mtk_drm_probe(struct platform_device *pdev)
continue;
}
+ if (!mtk_drm_find_mmsys_comp(private, comp_id))
+ continue;
+
private->comp_node[comp_id] = of_node_get(node);
/*
@@ -773,6 +866,7 @@ static int mtk_drm_probe(struct platform_device *pdev)
comp_type == MTK_DISP_MERGE ||
comp_type == MTK_DISP_OVL ||
comp_type == MTK_DISP_OVL_2L ||
+ comp_type == MTK_DISP_OVL_ADAPTOR ||
comp_type == MTK_DISP_RDMA ||
comp_type == MTK_DP_INTF ||
comp_type == MTK_DPI ||
@@ -810,7 +904,7 @@ err_pm:
pm_runtime_disable(dev);
err_node:
of_node_put(private->mutex_node);
- for (i = 0; i < DDP_COMPONENT_ID_MAX; i++)
+ for (i = 0; i < DDP_COMPONENT_DRM_ID_MAX; i++)
of_node_put(private->comp_node[i]);
return ret;
}
@@ -823,7 +917,7 @@ static int mtk_drm_remove(struct platform_device *pdev)
component_master_del(&pdev->dev, &mtk_drm_ops);
pm_runtime_disable(&pdev->dev);
of_node_put(private->mutex_node);
- for (i = 0; i < DDP_COMPONENT_ID_MAX; i++)
+ for (i = 0; i < DDP_COMPONENT_DRM_ID_MAX; i++)
of_node_put(private->comp_node[i]);
return 0;
@@ -834,16 +928,20 @@ static int mtk_drm_sys_prepare(struct device *dev)
struct mtk_drm_private *private = dev_get_drvdata(dev);
struct drm_device *drm = private->drm;
- return drm_mode_config_helper_suspend(drm);
+ if (private->drm_master)
+ return drm_mode_config_helper_suspend(drm);
+ else
+ return 0;
}
static void mtk_drm_sys_complete(struct device *dev)
{
struct mtk_drm_private *private = dev_get_drvdata(dev);
struct drm_device *drm = private->drm;
- int ret;
+ int ret = 0;
- ret = drm_mode_config_helper_resume(drm);
+ if (private->drm_master)
+ ret = drm_mode_config_helper_resume(drm);
if (ret)
dev_err(dev, "Failed to resume\n");
}
@@ -868,11 +966,13 @@ static struct platform_driver * const mtk_drm_drivers[] = {
&mtk_disp_color_driver,
&mtk_disp_gamma_driver,
&mtk_disp_merge_driver,
+ &mtk_disp_ovl_adaptor_driver,
&mtk_disp_ovl_driver,
&mtk_disp_rdma_driver,
&mtk_dpi_driver,
&mtk_drm_platform_driver,
&mtk_dsi_driver,
+ &mtk_ethdr_driver,
&mtk_mdp_rdma_driver,
};
diff --git a/drivers/gpu/drm/mediatek/mtk_drm_drv.h b/drivers/gpu/drm/mediatek/mtk_drm_drv.h
index 7b37b5cf9629..eb2fd45941f0 100644
--- a/drivers/gpu/drm/mediatek/mtk_drm_drv.h
+++ b/drivers/gpu/drm/mediatek/mtk_drm_drv.h
@@ -11,6 +11,8 @@
#define MAX_CRTC 3
#define MAX_CONNECTOR 2
+#define DDP_COMPONENT_DRM_OVL_ADAPTOR (DDP_COMPONENT_ID_MAX + 1)
+#define DDP_COMPONENT_DRM_ID_MAX (DDP_COMPONENT_DRM_OVL_ADAPTOR + 1)
struct device;
struct device_node;
@@ -21,35 +23,33 @@ struct drm_property;
struct regmap;
struct mtk_mmsys_driver_data {
- const resource_size_t io_start;
- const enum mtk_ddp_comp_id *main_path;
+ const unsigned int *main_path;
unsigned int main_len;
- const enum mtk_ddp_comp_id *ext_path;
+ const unsigned int *ext_path;
unsigned int ext_len;
- const enum mtk_ddp_comp_id *third_path;
+ const unsigned int *third_path;
unsigned int third_len;
bool shadow_register;
-};
-
-struct mtk_mmsys_match_data {
- unsigned short num_drv_data;
- const struct mtk_mmsys_driver_data *drv_data[];
+ unsigned int mmsys_id;
+ unsigned int mmsys_dev_num;
};
struct mtk_drm_private {
struct drm_device *drm;
struct device *dma_dev;
-
- unsigned int num_pipes;
-
+ bool mtk_drm_bound;
+ bool drm_master;
+ struct device *dev;
struct device_node *mutex_node;
struct device *mutex_dev;
struct device *mmsys_dev;
- struct device_node *comp_node[DDP_COMPONENT_ID_MAX];
- struct mtk_ddp_comp ddp_comp[DDP_COMPONENT_ID_MAX];
+ struct device_node *comp_node[DDP_COMPONENT_DRM_ID_MAX];
+ struct mtk_ddp_comp ddp_comp[DDP_COMPONENT_DRM_ID_MAX];
const struct mtk_mmsys_driver_data *data;
struct drm_atomic_state *suspend_state;
+ unsigned int mbox_index;
+ struct mtk_drm_private **all_drm_private;
};
extern struct platform_driver mtk_disp_aal_driver;
@@ -57,10 +57,12 @@ extern struct platform_driver mtk_disp_ccorr_driver;
extern struct platform_driver mtk_disp_color_driver;
extern struct platform_driver mtk_disp_gamma_driver;
extern struct platform_driver mtk_disp_merge_driver;
+extern struct platform_driver mtk_disp_ovl_adaptor_driver;
extern struct platform_driver mtk_disp_ovl_driver;
extern struct platform_driver mtk_disp_rdma_driver;
extern struct platform_driver mtk_dpi_driver;
extern struct platform_driver mtk_dsi_driver;
+extern struct platform_driver mtk_ethdr_driver;
extern struct platform_driver mtk_mdp_rdma_driver;
#endif /* MTK_DRM_DRV_H */
diff --git a/drivers/gpu/drm/mediatek/mtk_drm_gem.c b/drivers/gpu/drm/mediatek/mtk_drm_gem.c
index 47e96b0289f9..a25b28d3ee90 100644
--- a/drivers/gpu/drm/mediatek/mtk_drm_gem.c
+++ b/drivers/gpu/drm/mediatek/mtk_drm_gem.c
@@ -16,13 +16,18 @@
static int mtk_drm_gem_object_mmap(struct drm_gem_object *obj, struct vm_area_struct *vma);
+static const struct vm_operations_struct vm_ops = {
+ .open = drm_gem_vm_open,
+ .close = drm_gem_vm_close,
+};
+
static const struct drm_gem_object_funcs mtk_drm_gem_object_funcs = {
.free = mtk_drm_gem_free_object,
.get_sg_table = mtk_gem_prime_get_sg_table,
.vmap = mtk_drm_gem_prime_vmap,
.vunmap = mtk_drm_gem_prime_vunmap,
.mmap = mtk_drm_gem_object_mmap,
- .vm_ops = &drm_gem_dma_vm_ops,
+ .vm_ops = &vm_ops,
};
static struct mtk_drm_gem_obj *mtk_drm_gem_init(struct drm_device *dev,
@@ -158,14 +163,12 @@ static int mtk_drm_gem_object_mmap(struct drm_gem_object *obj,
* dma_alloc_attrs() allocated a struct page table for mtk_gem, so clear
* VM_PFNMAP flag that was set by drm_gem_mmap_obj()/drm_gem_mmap().
*/
- vma->vm_flags |= VM_IO | VM_DONTEXPAND | VM_DONTDUMP;
+ vm_flags_set(vma, VM_IO | VM_DONTEXPAND | VM_DONTDUMP);
vma->vm_page_prot = pgprot_writecombine(vm_get_page_prot(vma->vm_flags));
vma->vm_page_prot = pgprot_decrypted(vma->vm_page_prot);
ret = dma_mmap_attrs(priv->dma_dev, vma, mtk_gem->cookie,
mtk_gem->dma_addr, obj->size, mtk_gem->dma_attrs);
- if (ret)
- drm_gem_vm_close(vma);
return ret;
}
@@ -262,6 +265,6 @@ void mtk_drm_gem_prime_vunmap(struct drm_gem_object *obj,
return;
vunmap(vaddr);
- mtk_gem->kvaddr = 0;
+ mtk_gem->kvaddr = NULL;
kfree(mtk_gem->pages);
}
diff --git a/drivers/gpu/drm/mediatek/mtk_drm_plane.c b/drivers/gpu/drm/mediatek/mtk_drm_plane.c
index 2f5e007dd380..31f9420aff6f 100644
--- a/drivers/gpu/drm/mediatek/mtk_drm_plane.c
+++ b/drivers/gpu/drm/mediatek/mtk_drm_plane.c
@@ -11,6 +11,7 @@
#include <drm/drm_fourcc.h>
#include <drm/drm_framebuffer.h>
#include <drm/drm_gem_atomic_helper.h>
+#include <linux/align.h>
#include "mtk_drm_crtc.h"
#include "mtk_drm_ddp_comp.h"
@@ -18,18 +19,12 @@
#include "mtk_drm_gem.h"
#include "mtk_drm_plane.h"
-static const u32 formats[] = {
- DRM_FORMAT_XRGB8888,
- DRM_FORMAT_ARGB8888,
- DRM_FORMAT_BGRX8888,
- DRM_FORMAT_BGRA8888,
- DRM_FORMAT_ABGR8888,
- DRM_FORMAT_XBGR8888,
- DRM_FORMAT_RGB888,
- DRM_FORMAT_BGR888,
- DRM_FORMAT_RGB565,
- DRM_FORMAT_UYVY,
- DRM_FORMAT_YUYV,
+static const u64 modifiers[] = {
+ DRM_FORMAT_MOD_LINEAR,
+ DRM_FORMAT_MOD_ARM_AFBC(AFBC_FORMAT_MOD_BLOCK_SIZE_32x8 |
+ AFBC_FORMAT_MOD_SPLIT |
+ AFBC_FORMAT_MOD_SPARSE),
+ DRM_FORMAT_MOD_INVALID,
};
static void mtk_plane_reset(struct drm_plane *plane)
@@ -51,6 +46,7 @@ static void mtk_plane_reset(struct drm_plane *plane)
state->base.plane = plane;
state->pending.format = DRM_FORMAT_RGB565;
+ state->pending.modifier = DRM_FORMAT_MOD_LINEAR;
}
static struct drm_plane_state *mtk_plane_duplicate_state(struct drm_plane *plane)
@@ -71,6 +67,32 @@ static struct drm_plane_state *mtk_plane_duplicate_state(struct drm_plane *plane
return &state->base;
}
+static bool mtk_plane_format_mod_supported(struct drm_plane *plane,
+ uint32_t format,
+ uint64_t modifier)
+{
+ if (modifier == DRM_FORMAT_MOD_LINEAR)
+ return true;
+
+ if (modifier != DRM_FORMAT_MOD_ARM_AFBC(
+ AFBC_FORMAT_MOD_BLOCK_SIZE_32x8 |
+ AFBC_FORMAT_MOD_SPLIT |
+ AFBC_FORMAT_MOD_SPARSE))
+ return false;
+
+ if (format != DRM_FORMAT_XRGB8888 &&
+ format != DRM_FORMAT_ARGB8888 &&
+ format != DRM_FORMAT_BGRX8888 &&
+ format != DRM_FORMAT_BGRA8888 &&
+ format != DRM_FORMAT_ABGR8888 &&
+ format != DRM_FORMAT_XBGR8888 &&
+ format != DRM_FORMAT_RGB888 &&
+ format != DRM_FORMAT_BGR888)
+ return false;
+
+ return true;
+}
+
static void mtk_drm_plane_destroy_state(struct drm_plane *plane,
struct drm_plane_state *state)
{
@@ -119,21 +141,52 @@ static void mtk_plane_update_new_state(struct drm_plane_state *new_state,
struct drm_gem_object *gem;
struct mtk_drm_gem_obj *mtk_gem;
unsigned int pitch, format;
+ u64 modifier;
dma_addr_t addr;
+ dma_addr_t hdr_addr = 0;
+ unsigned int hdr_pitch = 0;
gem = fb->obj[0];
mtk_gem = to_mtk_gem_obj(gem);
addr = mtk_gem->dma_addr;
pitch = fb->pitches[0];
format = fb->format->format;
+ modifier = fb->modifier;
- addr += (new_state->src.x1 >> 16) * fb->format->cpp[0];
- addr += (new_state->src.y1 >> 16) * pitch;
+ if (modifier == DRM_FORMAT_MOD_LINEAR) {
+ addr += (new_state->src.x1 >> 16) * fb->format->cpp[0];
+ addr += (new_state->src.y1 >> 16) * pitch;
+ } else {
+ int width_in_blocks = ALIGN(fb->width, AFBC_DATA_BLOCK_WIDTH)
+ / AFBC_DATA_BLOCK_WIDTH;
+ int height_in_blocks = ALIGN(fb->height, AFBC_DATA_BLOCK_HEIGHT)
+ / AFBC_DATA_BLOCK_HEIGHT;
+ int x_offset_in_blocks = (new_state->src.x1 >> 16) / AFBC_DATA_BLOCK_WIDTH;
+ int y_offset_in_blocks = (new_state->src.y1 >> 16) / AFBC_DATA_BLOCK_HEIGHT;
+ int hdr_size;
+
+ hdr_pitch = width_in_blocks * AFBC_HEADER_BLOCK_SIZE;
+ pitch = width_in_blocks * AFBC_DATA_BLOCK_WIDTH *
+ AFBC_DATA_BLOCK_HEIGHT * fb->format->cpp[0];
+
+ hdr_size = ALIGN(hdr_pitch * height_in_blocks, AFBC_HEADER_ALIGNMENT);
+
+ hdr_addr = addr + hdr_pitch * y_offset_in_blocks +
+ AFBC_HEADER_BLOCK_SIZE * x_offset_in_blocks;
+ /* The data plane is offset by 1 additional block. */
+ addr = addr + hdr_size +
+ pitch * y_offset_in_blocks +
+ AFBC_DATA_BLOCK_WIDTH * AFBC_DATA_BLOCK_HEIGHT *
+ fb->format->cpp[0] * (x_offset_in_blocks + 1);
+ }
mtk_plane_state->pending.enable = true;
mtk_plane_state->pending.pitch = pitch;
+ mtk_plane_state->pending.hdr_pitch = hdr_pitch;
mtk_plane_state->pending.format = format;
+ mtk_plane_state->pending.modifier = modifier;
mtk_plane_state->pending.addr = addr;
+ mtk_plane_state->pending.hdr_addr = hdr_addr;
mtk_plane_state->pending.x = new_state->dst.x1;
mtk_plane_state->pending.y = new_state->dst.y1;
mtk_plane_state->pending.width = drm_rect_width(&new_state->dst);
@@ -172,6 +225,7 @@ static const struct drm_plane_funcs mtk_plane_funcs = {
.reset = mtk_plane_reset,
.atomic_duplicate_state = mtk_plane_duplicate_state,
.atomic_destroy_state = mtk_drm_plane_destroy_state,
+ .format_mod_supported = mtk_plane_format_mod_supported,
};
static int mtk_plane_atomic_check(struct drm_plane *plane,
@@ -247,13 +301,19 @@ static const struct drm_plane_helper_funcs mtk_plane_helper_funcs = {
int mtk_plane_init(struct drm_device *dev, struct drm_plane *plane,
unsigned long possible_crtcs, enum drm_plane_type type,
- unsigned int supported_rotations)
+ unsigned int supported_rotations, const u32 *formats,
+ size_t num_formats)
{
int err;
+ if (!formats || !num_formats) {
+ DRM_ERROR("no formats for plane\n");
+ return -EINVAL;
+ }
+
err = drm_universal_plane_init(dev, plane, possible_crtcs,
&mtk_plane_funcs, formats,
- ARRAY_SIZE(formats), NULL, type, NULL);
+ num_formats, modifiers, type, NULL);
if (err) {
DRM_ERROR("failed to initialize plane\n");
return err;
diff --git a/drivers/gpu/drm/mediatek/mtk_drm_plane.h b/drivers/gpu/drm/mediatek/mtk_drm_plane.h
index 2d5ec66e3df1..99aff7da0831 100644
--- a/drivers/gpu/drm/mediatek/mtk_drm_plane.h
+++ b/drivers/gpu/drm/mediatek/mtk_drm_plane.h
@@ -10,12 +10,20 @@
#include <drm/drm_crtc.h>
#include <linux/types.h>
+#define AFBC_DATA_BLOCK_WIDTH 32
+#define AFBC_DATA_BLOCK_HEIGHT 8
+#define AFBC_HEADER_BLOCK_SIZE 16
+#define AFBC_HEADER_ALIGNMENT 1024
+
struct mtk_plane_pending_state {
bool config;
bool enable;
dma_addr_t addr;
+ dma_addr_t hdr_addr;
unsigned int pitch;
+ unsigned int hdr_pitch;
unsigned int format;
+ unsigned long long modifier;
unsigned int x;
unsigned int y;
unsigned int width;
@@ -40,6 +48,7 @@ to_mtk_plane_state(struct drm_plane_state *state)
int mtk_plane_init(struct drm_device *dev, struct drm_plane *plane,
unsigned long possible_crtcs, enum drm_plane_type type,
- unsigned int supported_rotations);
+ unsigned int supported_rotations, const u32 *formats,
+ size_t num_formats);
#endif
diff --git a/drivers/gpu/drm/mediatek/mtk_dsi.c b/drivers/gpu/drm/mediatek/mtk_dsi.c
index 3b7d13028fb6..7d5250351193 100644
--- a/drivers/gpu/drm/mediatek/mtk_dsi.c
+++ b/drivers/gpu/drm/mediatek/mtk_dsi.c
@@ -28,6 +28,7 @@
#include "mtk_disp_drv.h"
#include "mtk_drm_ddp_comp.h"
+#include "mtk_drm_drv.h"
#define DSI_START 0x00
@@ -721,7 +722,7 @@ static void mtk_dsi_lane_ready(struct mtk_dsi *dsi)
mtk_dsi_clk_ulp_mode_leave(dsi);
mtk_dsi_lane0_ulp_mode_leave(dsi);
mtk_dsi_clk_hs_mode(dsi, 0);
- msleep(20);
+ usleep_range(1000, 3000);
/* The reaction time after pulling up the mipi signal for dsi_rx */
}
}
diff --git a/drivers/gpu/drm/mediatek/mtk_ethdr.c b/drivers/gpu/drm/mediatek/mtk_ethdr.c
new file mode 100644
index 000000000000..73dc4da3ba3b
--- /dev/null
+++ b/drivers/gpu/drm/mediatek/mtk_ethdr.c
@@ -0,0 +1,370 @@
+// SPDX-License-Identifier: GPL-2.0-only
+/*
+ * Copyright (c) 2021 MediaTek Inc.
+ */
+
+#include <drm/drm_fourcc.h>
+#include <drm/drm_framebuffer.h>
+#include <linux/clk.h>
+#include <linux/component.h>
+#include <linux/of_device.h>
+#include <linux/of_address.h>
+#include <linux/platform_device.h>
+#include <linux/reset.h>
+#include <linux/soc/mediatek/mtk-cmdq.h>
+#include <linux/soc/mediatek/mtk-mmsys.h>
+
+#include "mtk_drm_crtc.h"
+#include "mtk_drm_ddp_comp.h"
+#include "mtk_drm_drv.h"
+#include "mtk_ethdr.h"
+
+#define MIX_INTEN 0x4
+#define MIX_FME_CPL_INTEN BIT(1)
+#define MIX_INTSTA 0x8
+#define MIX_EN 0xc
+#define MIX_RST 0x14
+#define MIX_ROI_SIZE 0x18
+#define MIX_DATAPATH_CON 0x1c
+#define OUTPUT_NO_RND BIT(3)
+#define SOURCE_RGB_SEL BIT(7)
+#define BACKGROUND_RELAY (4 << 9)
+#define MIX_ROI_BGCLR 0x20
+#define BGCLR_BLACK 0xff000000
+#define MIX_SRC_CON 0x24
+#define MIX_SRC_L0_EN BIT(0)
+#define MIX_L_SRC_CON(n) (0x28 + 0x18 * (n))
+#define NON_PREMULTI_SOURCE (2 << 12)
+#define MIX_L_SRC_SIZE(n) (0x30 + 0x18 * (n))
+#define MIX_L_SRC_OFFSET(n) (0x34 + 0x18 * (n))
+#define MIX_FUNC_DCM0 0x120
+#define MIX_FUNC_DCM1 0x124
+#define MIX_FUNC_DCM_ENABLE 0xffffffff
+
+#define HDR_VDO_FE_0804_HDR_DM_FE 0x804
+#define HDR_VDO_FE_0804_BYPASS_ALL 0xfd
+#define HDR_GFX_FE_0204_GFX_HDR_FE 0x204
+#define HDR_GFX_FE_0204_BYPASS_ALL 0xfd
+#define HDR_VDO_BE_0204_VDO_DM_BE 0x204
+#define HDR_VDO_BE_0204_BYPASS_ALL 0x7e
+
+#define MIXER_INX_MODE_BYPASS 0
+#define MIXER_INX_MODE_EVEN_EXTEND 1
+#define DEFAULT_9BIT_ALPHA 0x100
+#define MIXER_ALPHA_AEN BIT(8)
+#define MIXER_ALPHA 0xff
+#define ETHDR_CLK_NUM 13
+
+enum mtk_ethdr_comp_id {
+ ETHDR_MIXER,
+ ETHDR_VDO_FE0,
+ ETHDR_VDO_FE1,
+ ETHDR_GFX_FE0,
+ ETHDR_GFX_FE1,
+ ETHDR_VDO_BE,
+ ETHDR_ADL_DS,
+ ETHDR_ID_MAX
+};
+
+struct mtk_ethdr_comp {
+ struct device *dev;
+ void __iomem *regs;
+ struct cmdq_client_reg cmdq_base;
+};
+
+struct mtk_ethdr {
+ struct mtk_ethdr_comp ethdr_comp[ETHDR_ID_MAX];
+ struct clk_bulk_data ethdr_clk[ETHDR_CLK_NUM];
+ struct device *mmsys_dev;
+ void (*vblank_cb)(void *data);
+ void *vblank_cb_data;
+ int irq;
+ struct reset_control *reset_ctl;
+};
+
+static const char * const ethdr_clk_str[] = {
+ "ethdr_top",
+ "mixer",
+ "vdo_fe0",
+ "vdo_fe1",
+ "gfx_fe0",
+ "gfx_fe1",
+ "vdo_be",
+ "adl_ds",
+ "vdo_fe0_async",
+ "vdo_fe1_async",
+ "gfx_fe0_async",
+ "gfx_fe1_async",
+ "vdo_be_async",
+};
+
+void mtk_ethdr_register_vblank_cb(struct device *dev,
+ void (*vblank_cb)(void *),
+ void *vblank_cb_data)
+{
+ struct mtk_ethdr *priv = dev_get_drvdata(dev);
+
+ priv->vblank_cb = vblank_cb;
+ priv->vblank_cb_data = vblank_cb_data;
+}
+
+void mtk_ethdr_unregister_vblank_cb(struct device *dev)
+{
+ struct mtk_ethdr *priv = dev_get_drvdata(dev);
+
+ priv->vblank_cb = NULL;
+ priv->vblank_cb_data = NULL;
+}
+
+void mtk_ethdr_enable_vblank(struct device *dev)
+{
+ struct mtk_ethdr *priv = dev_get_drvdata(dev);
+
+ writel(MIX_FME_CPL_INTEN, priv->ethdr_comp[ETHDR_MIXER].regs + MIX_INTEN);
+}
+
+void mtk_ethdr_disable_vblank(struct device *dev)
+{
+ struct mtk_ethdr *priv = dev_get_drvdata(dev);
+
+ writel(0x0, priv->ethdr_comp[ETHDR_MIXER].regs + MIX_INTEN);
+}
+
+static irqreturn_t mtk_ethdr_irq_handler(int irq, void *dev_id)
+{
+ struct mtk_ethdr *priv = dev_id;
+
+ writel(0x0, priv->ethdr_comp[ETHDR_MIXER].regs + MIX_INTSTA);
+
+ if (!priv->vblank_cb)
+ return IRQ_NONE;
+
+ priv->vblank_cb(priv->vblank_cb_data);
+
+ return IRQ_HANDLED;
+}
+
+void mtk_ethdr_layer_config(struct device *dev, unsigned int idx,
+ struct mtk_plane_state *state,
+ struct cmdq_pkt *cmdq_pkt)
+{
+ struct mtk_ethdr *priv = dev_get_drvdata(dev);
+ struct mtk_ethdr_comp *mixer = &priv->ethdr_comp[ETHDR_MIXER];
+ struct mtk_plane_pending_state *pending = &state->pending;
+ unsigned int offset = (pending->x & 1) << 31 | pending->y << 16 | pending->x;
+ unsigned int align_width = ALIGN_DOWN(pending->width, 2);
+ unsigned int alpha_con = 0;
+
+ dev_dbg(dev, "%s+ idx:%d", __func__, idx);
+
+ if (idx >= 4)
+ return;
+
+ if (!pending->enable) {
+ mtk_ddp_write(cmdq_pkt, 0, &mixer->cmdq_base, mixer->regs, MIX_L_SRC_SIZE(idx));
+ return;
+ }
+
+ if (state->base.fb && state->base.fb->format->has_alpha)
+ alpha_con = MIXER_ALPHA_AEN | MIXER_ALPHA;
+
+ mtk_mmsys_mixer_in_config(priv->mmsys_dev, idx + 1, alpha_con ? false : true,
+ DEFAULT_9BIT_ALPHA,
+ pending->x & 1 ? MIXER_INX_MODE_EVEN_EXTEND :
+ MIXER_INX_MODE_BYPASS, align_width / 2 - 1, cmdq_pkt);
+
+ mtk_ddp_write(cmdq_pkt, pending->height << 16 | align_width, &mixer->cmdq_base,
+ mixer->regs, MIX_L_SRC_SIZE(idx));
+ mtk_ddp_write(cmdq_pkt, offset, &mixer->cmdq_base, mixer->regs, MIX_L_SRC_OFFSET(idx));
+ mtk_ddp_write_mask(cmdq_pkt, alpha_con, &mixer->cmdq_base, mixer->regs, MIX_L_SRC_CON(idx),
+ 0x1ff);
+ mtk_ddp_write_mask(cmdq_pkt, BIT(idx), &mixer->cmdq_base, mixer->regs, MIX_SRC_CON,
+ BIT(idx));
+}
+
+void mtk_ethdr_config(struct device *dev, unsigned int w,
+ unsigned int h, unsigned int vrefresh,
+ unsigned int bpc, struct cmdq_pkt *cmdq_pkt)
+{
+ struct mtk_ethdr *priv = dev_get_drvdata(dev);
+ struct mtk_ethdr_comp *vdo_fe0 = &priv->ethdr_comp[ETHDR_VDO_FE0];
+ struct mtk_ethdr_comp *vdo_fe1 = &priv->ethdr_comp[ETHDR_VDO_FE1];
+ struct mtk_ethdr_comp *gfx_fe0 = &priv->ethdr_comp[ETHDR_GFX_FE0];
+ struct mtk_ethdr_comp *gfx_fe1 = &priv->ethdr_comp[ETHDR_GFX_FE1];
+ struct mtk_ethdr_comp *vdo_be = &priv->ethdr_comp[ETHDR_VDO_BE];
+ struct mtk_ethdr_comp *mixer = &priv->ethdr_comp[ETHDR_MIXER];
+
+ dev_dbg(dev, "%s-w:%d, h:%d\n", __func__, w, h);
+
+ mtk_ddp_write(cmdq_pkt, HDR_VDO_FE_0804_BYPASS_ALL, &vdo_fe0->cmdq_base,
+ vdo_fe0->regs, HDR_VDO_FE_0804_HDR_DM_FE);
+
+ mtk_ddp_write(cmdq_pkt, HDR_VDO_FE_0804_BYPASS_ALL, &vdo_fe1->cmdq_base,
+ vdo_fe1->regs, HDR_VDO_FE_0804_HDR_DM_FE);
+
+ mtk_ddp_write(cmdq_pkt, HDR_GFX_FE_0204_BYPASS_ALL, &gfx_fe0->cmdq_base,
+ gfx_fe0->regs, HDR_GFX_FE_0204_GFX_HDR_FE);
+
+ mtk_ddp_write(cmdq_pkt, HDR_GFX_FE_0204_BYPASS_ALL, &gfx_fe1->cmdq_base,
+ gfx_fe1->regs, HDR_GFX_FE_0204_GFX_HDR_FE);
+
+ mtk_ddp_write(cmdq_pkt, HDR_VDO_BE_0204_BYPASS_ALL, &vdo_be->cmdq_base,
+ vdo_be->regs, HDR_VDO_BE_0204_VDO_DM_BE);
+
+ mtk_ddp_write(cmdq_pkt, MIX_FUNC_DCM_ENABLE, &mixer->cmdq_base, mixer->regs, MIX_FUNC_DCM0);
+ mtk_ddp_write(cmdq_pkt, MIX_FUNC_DCM_ENABLE, &mixer->cmdq_base, mixer->regs, MIX_FUNC_DCM1);
+ mtk_ddp_write(cmdq_pkt, h << 16 | w, &mixer->cmdq_base, mixer->regs, MIX_ROI_SIZE);
+ mtk_ddp_write(cmdq_pkt, BGCLR_BLACK, &mixer->cmdq_base, mixer->regs, MIX_ROI_BGCLR);
+ mtk_ddp_write(cmdq_pkt, NON_PREMULTI_SOURCE, &mixer->cmdq_base, mixer->regs,
+ MIX_L_SRC_CON(0));
+ mtk_ddp_write(cmdq_pkt, NON_PREMULTI_SOURCE, &mixer->cmdq_base, mixer->regs,
+ MIX_L_SRC_CON(1));
+ mtk_ddp_write(cmdq_pkt, NON_PREMULTI_SOURCE, &mixer->cmdq_base, mixer->regs,
+ MIX_L_SRC_CON(2));
+ mtk_ddp_write(cmdq_pkt, NON_PREMULTI_SOURCE, &mixer->cmdq_base, mixer->regs,
+ MIX_L_SRC_CON(3));
+ mtk_ddp_write(cmdq_pkt, 0x0, &mixer->cmdq_base, mixer->regs, MIX_L_SRC_SIZE(0));
+ mtk_ddp_write(cmdq_pkt, OUTPUT_NO_RND | SOURCE_RGB_SEL | BACKGROUND_RELAY,
+ &mixer->cmdq_base, mixer->regs, MIX_DATAPATH_CON);
+ mtk_ddp_write_mask(cmdq_pkt, MIX_SRC_L0_EN, &mixer->cmdq_base, mixer->regs,
+ MIX_SRC_CON, MIX_SRC_L0_EN);
+
+ mtk_mmsys_hdr_config(priv->mmsys_dev, w / 2, h, cmdq_pkt);
+ mtk_mmsys_mixer_in_channel_swap(priv->mmsys_dev, 4, 0, cmdq_pkt);
+}
+
+void mtk_ethdr_start(struct device *dev)
+{
+ struct mtk_ethdr *priv = dev_get_drvdata(dev);
+ struct mtk_ethdr_comp *mixer = &priv->ethdr_comp[ETHDR_MIXER];
+
+ writel(1, mixer->regs + MIX_EN);
+}
+
+void mtk_ethdr_stop(struct device *dev)
+{
+ struct mtk_ethdr *priv = dev_get_drvdata(dev);
+ struct mtk_ethdr_comp *mixer = &priv->ethdr_comp[ETHDR_MIXER];
+
+ writel(0, mixer->regs + MIX_EN);
+ writel(1, mixer->regs + MIX_RST);
+ reset_control_reset(priv->reset_ctl);
+ writel(0, mixer->regs + MIX_RST);
+}
+
+int mtk_ethdr_clk_enable(struct device *dev)
+{
+ int ret;
+ struct mtk_ethdr *priv = dev_get_drvdata(dev);
+
+ ret = clk_bulk_prepare_enable(ETHDR_CLK_NUM, priv->ethdr_clk);
+ if (ret)
+ dev_err(dev,
+ "ethdr_clk prepare enable failed\n");
+ return ret;
+}
+
+void mtk_ethdr_clk_disable(struct device *dev)
+{
+ struct mtk_ethdr *priv = dev_get_drvdata(dev);
+
+ clk_bulk_disable_unprepare(ETHDR_CLK_NUM, priv->ethdr_clk);
+}
+
+static int mtk_ethdr_bind(struct device *dev, struct device *master,
+ void *data)
+{
+ struct mtk_ethdr *priv = dev_get_drvdata(dev);
+
+ priv->mmsys_dev = data;
+ return 0;
+}
+
+static void mtk_ethdr_unbind(struct device *dev, struct device *master, void *data)
+{
+}
+
+static const struct component_ops mtk_ethdr_component_ops = {
+ .bind = mtk_ethdr_bind,
+ .unbind = mtk_ethdr_unbind,
+};
+
+static int mtk_ethdr_probe(struct platform_device *pdev)
+{
+ struct device *dev = &pdev->dev;
+ struct mtk_ethdr *priv;
+ int ret;
+ int i;
+
+ priv = devm_kzalloc(dev, sizeof(*priv), GFP_KERNEL);
+ if (!priv)
+ return -ENOMEM;
+
+ for (i = 0; i < ETHDR_ID_MAX; i++) {
+ priv->ethdr_comp[i].dev = dev;
+ priv->ethdr_comp[i].regs = of_iomap(dev->of_node, i);
+#if IS_REACHABLE(CONFIG_MTK_CMDQ)
+ ret = cmdq_dev_get_client_reg(dev,
+ &priv->ethdr_comp[i].cmdq_base, i);
+ if (ret)
+ dev_dbg(dev, "get mediatek,gce-client-reg fail!\n");
+#endif
+ dev_dbg(dev, "[DRM]regs:0x%p, node:%d\n", priv->ethdr_comp[i].regs, i);
+ }
+
+ for (i = 0; i < ETHDR_CLK_NUM; i++)
+ priv->ethdr_clk[i].id = ethdr_clk_str[i];
+ ret = devm_clk_bulk_get_optional(dev, ETHDR_CLK_NUM, priv->ethdr_clk);
+ if (ret)
+ return ret;
+
+ priv->irq = platform_get_irq(pdev, 0);
+ if (priv->irq < 0)
+ priv->irq = 0;
+
+ if (priv->irq) {
+ ret = devm_request_irq(dev, priv->irq, mtk_ethdr_irq_handler,
+ IRQF_TRIGGER_NONE, dev_name(dev), priv);
+ if (ret < 0) {
+ dev_err(dev, "Failed to request irq %d: %d\n", priv->irq, ret);
+ return ret;
+ }
+ }
+
+ priv->reset_ctl = devm_reset_control_array_get_optional_exclusive(dev);
+ if (IS_ERR(priv->reset_ctl)) {
+ dev_err_probe(dev, PTR_ERR(priv->reset_ctl), "cannot get ethdr reset control\n");
+ return PTR_ERR(priv->reset_ctl);
+ }
+
+ platform_set_drvdata(pdev, priv);
+
+ ret = component_add(dev, &mtk_ethdr_component_ops);
+ if (ret)
+ dev_notice(dev, "Failed to add component: %d\n", ret);
+
+ return ret;
+}
+
+static int mtk_ethdr_remove(struct platform_device *pdev)
+{
+ component_del(&pdev->dev, &mtk_ethdr_component_ops);
+ return 0;
+}
+
+static const struct of_device_id mtk_ethdr_driver_dt_match[] = {
+ { .compatible = "mediatek,mt8195-disp-ethdr"},
+ {},
+};
+
+MODULE_DEVICE_TABLE(of, mtk_ethdr_driver_dt_match);
+
+struct platform_driver mtk_ethdr_driver = {
+ .probe = mtk_ethdr_probe,
+ .remove = mtk_ethdr_remove,
+ .driver = {
+ .name = "mediatek-disp-ethdr",
+ .owner = THIS_MODULE,
+ .of_match_table = mtk_ethdr_driver_dt_match,
+ },
+};
diff --git a/drivers/gpu/drm/mediatek/mtk_ethdr.h b/drivers/gpu/drm/mediatek/mtk_ethdr.h
new file mode 100644
index 000000000000..81af9edea3f7
--- /dev/null
+++ b/drivers/gpu/drm/mediatek/mtk_ethdr.h
@@ -0,0 +1,25 @@
+/* SPDX-License-Identifier: GPL-2.0-only */
+/*
+ * Copyright (c) 2021 MediaTek Inc.
+ */
+
+#ifndef __MTK_ETHDR_H__
+#define __MTK_ETHDR_H__
+
+void mtk_ethdr_start(struct device *dev);
+void mtk_ethdr_stop(struct device *dev);
+int mtk_ethdr_clk_enable(struct device *dev);
+void mtk_ethdr_clk_disable(struct device *dev);
+void mtk_ethdr_config(struct device *dev, unsigned int w,
+ unsigned int h, unsigned int vrefresh,
+ unsigned int bpc, struct cmdq_pkt *cmdq_pkt);
+void mtk_ethdr_layer_config(struct device *dev, unsigned int idx,
+ struct mtk_plane_state *state,
+ struct cmdq_pkt *cmdq_pkt);
+void mtk_ethdr_register_vblank_cb(struct device *dev,
+ void (*vblank_cb)(void *),
+ void *vblank_cb_data);
+void mtk_ethdr_unregister_vblank_cb(struct device *dev);
+void mtk_ethdr_enable_vblank(struct device *dev);
+void mtk_ethdr_disable_vblank(struct device *dev);
+#endif
diff --git a/drivers/gpu/drm/mediatek/mtk_hdmi.c b/drivers/gpu/drm/mediatek/mtk_hdmi.c
index 4c80b6896dc3..0a8e0a13f516 100644
--- a/drivers/gpu/drm/mediatek/mtk_hdmi.c
+++ b/drivers/gpu/drm/mediatek/mtk_hdmi.c
@@ -1202,9 +1202,10 @@ static enum drm_connector_status mtk_hdmi_detect(struct mtk_hdmi *hdmi)
return mtk_hdmi_update_plugged_status(hdmi);
}
-static int mtk_hdmi_bridge_mode_valid(struct drm_bridge *bridge,
- const struct drm_display_info *info,
- const struct drm_display_mode *mode)
+static enum drm_mode_status
+mtk_hdmi_bridge_mode_valid(struct drm_bridge *bridge,
+ const struct drm_display_info *info,
+ const struct drm_display_mode *mode)
{
struct mtk_hdmi *hdmi = hdmi_ctx_from_bridge(bridge);
struct drm_bridge *next_bridge;
@@ -1217,7 +1218,7 @@ static int mtk_hdmi_bridge_mode_valid(struct drm_bridge *bridge,
if (next_bridge) {
struct drm_display_mode adjusted_mode;
- drm_mode_copy(&adjusted_mode, mode);
+ drm_mode_init(&adjusted_mode, mode);
if (!drm_bridge_chain_mode_fixup(next_bridge, mode,
&adjusted_mode))
return MODE_BAD;
diff --git a/drivers/gpu/drm/mediatek/mtk_hdmi_ddc.c b/drivers/gpu/drm/mediatek/mtk_hdmi_ddc.c
index 6207eac88550..2fc9214ffa82 100644
--- a/drivers/gpu/drm/mediatek/mtk_hdmi_ddc.c
+++ b/drivers/gpu/drm/mediatek/mtk_hdmi_ddc.c
@@ -19,6 +19,9 @@
#include <linux/of_irq.h>
#include <linux/of_platform.h>
+#include "mtk_drm_drv.h"
+#include "mtk_hdmi.h"
+
#define SIF1_CLOK (288)
#define DDC_DDCMCTL0 (0x0)
#define DDCM_ODRAIN BIT(31)
diff --git a/drivers/gpu/drm/mediatek/mtk_mdp_rdma.c b/drivers/gpu/drm/mediatek/mtk_mdp_rdma.c
index eecfa98ff52e..e06db6e56b5f 100644
--- a/drivers/gpu/drm/mediatek/mtk_mdp_rdma.c
+++ b/drivers/gpu/drm/mediatek/mtk_mdp_rdma.c
@@ -62,6 +62,20 @@
#define RDMA_CSC_FULL709_TO_RGB 5
#define RDMA_CSC_BT601_TO_RGB 6
+static const u32 formats[] = {
+ DRM_FORMAT_XRGB8888,
+ DRM_FORMAT_ARGB8888,
+ DRM_FORMAT_BGRX8888,
+ DRM_FORMAT_BGRA8888,
+ DRM_FORMAT_ABGR8888,
+ DRM_FORMAT_XBGR8888,
+ DRM_FORMAT_RGB888,
+ DRM_FORMAT_BGR888,
+ DRM_FORMAT_RGB565,
+ DRM_FORMAT_UYVY,
+ DRM_FORMAT_YUYV,
+};
+
enum rdma_format {
RDMA_INPUT_FORMAT_RGB565 = 0,
RDMA_INPUT_FORMAT_RGB888 = 1,
@@ -219,6 +233,16 @@ void mtk_mdp_rdma_config(struct device *dev, struct mtk_mdp_rdma_cfg *cfg,
MDP_RDMA_MF_CLIP_SIZE, FLD_MF_CLIP_H);
}
+const u32 *mtk_mdp_rdma_get_formats(struct device *dev)
+{
+ return formats;
+}
+
+size_t mtk_mdp_rdma_get_num_formats(struct device *dev)
+{
+ return ARRAY_SIZE(formats);
+}
+
int mtk_mdp_rdma_clk_enable(struct device *dev)
{
struct mtk_mdp_rdma *rdma = dev_get_drvdata(dev);
diff --git a/drivers/gpu/drm/meson/meson_drv.c b/drivers/gpu/drm/meson/meson_drv.c
index 3b24a924b7b9..bb72fda9106d 100644
--- a/drivers/gpu/drm/meson/meson_drv.c
+++ b/drivers/gpu/drm/meson/meson_drv.c
@@ -18,7 +18,7 @@
#include <drm/drm_aperture.h>
#include <drm/drm_atomic_helper.h>
#include <drm/drm_drv.h>
-#include <drm/drm_fb_helper.h>
+#include <drm/drm_fbdev_dma.h>
#include <drm/drm_gem_dma_helper.h>
#include <drm/drm_gem_framebuffer_helper.h>
#include <drm/drm_modeset_helper_vtables.h>
@@ -325,23 +325,23 @@ static int meson_drv_bind_master(struct device *dev, bool has_components)
ret = meson_encoder_hdmi_init(priv);
if (ret)
- goto exit_afbcd;
+ goto unbind_all;
ret = meson_plane_create(priv);
if (ret)
- goto exit_afbcd;
+ goto unbind_all;
ret = meson_overlay_create(priv);
if (ret)
- goto exit_afbcd;
+ goto unbind_all;
ret = meson_crtc_create(priv);
if (ret)
- goto exit_afbcd;
+ goto unbind_all;
ret = request_irq(priv->vsync_irq, meson_irq, 0, drm->driver->name, drm);
if (ret)
- goto exit_afbcd;
+ goto unbind_all;
drm_mode_config_reset(drm);
@@ -353,12 +353,15 @@ static int meson_drv_bind_master(struct device *dev, bool has_components)
if (ret)
goto uninstall_irq;
- drm_fbdev_generic_setup(drm, 32);
+ drm_fbdev_dma_setup(drm, 32);
return 0;
uninstall_irq:
free_irq(priv->vsync_irq, drm);
+unbind_all:
+ if (has_components)
+ component_unbind_all(drm->dev, drm);
exit_afbcd:
if (priv->afbcd.ops)
priv->afbcd.ops->exit(priv);
diff --git a/drivers/gpu/drm/meson/meson_dw_hdmi.c b/drivers/gpu/drm/meson/meson_dw_hdmi.c
index 5cd2b2ebbbd3..3d046878ce6c 100644
--- a/drivers/gpu/drm/meson/meson_dw_hdmi.c
+++ b/drivers/gpu/drm/meson/meson_dw_hdmi.c
@@ -140,7 +140,6 @@ struct meson_dw_hdmi {
struct reset_control *hdmitx_apb;
struct reset_control *hdmitx_ctrl;
struct reset_control *hdmitx_phy;
- struct regulator *hdmi_supply;
u32 irq_stat;
struct dw_hdmi *hdmi;
struct drm_bridge *bridge;
@@ -665,11 +664,6 @@ static void meson_dw_hdmi_init(struct meson_dw_hdmi *meson_dw_hdmi)
}
-static void meson_disable_regulator(void *data)
-{
- regulator_disable(data);
-}
-
static void meson_disable_clk(void *data)
{
clk_disable_unprepare(data);
@@ -723,20 +717,9 @@ static int meson_dw_hdmi_bind(struct device *dev, struct device *master,
meson_dw_hdmi->data = match;
dw_plat_data = &meson_dw_hdmi->dw_plat_data;
- meson_dw_hdmi->hdmi_supply = devm_regulator_get_optional(dev, "hdmi");
- if (IS_ERR(meson_dw_hdmi->hdmi_supply)) {
- if (PTR_ERR(meson_dw_hdmi->hdmi_supply) == -EPROBE_DEFER)
- return -EPROBE_DEFER;
- meson_dw_hdmi->hdmi_supply = NULL;
- } else {
- ret = regulator_enable(meson_dw_hdmi->hdmi_supply);
- if (ret)
- return ret;
- ret = devm_add_action_or_reset(dev, meson_disable_regulator,
- meson_dw_hdmi->hdmi_supply);
- if (ret)
- return ret;
- }
+ ret = devm_regulator_get_enable_optional(dev, "hdmi");
+ if (ret < 0 && ret != -ENODEV)
+ return ret;
meson_dw_hdmi->hdmitx_apb = devm_reset_control_get_exclusive(dev,
"hdmitx_apb");
diff --git a/drivers/gpu/drm/meson/meson_encoder_cvbs.c b/drivers/gpu/drm/meson/meson_encoder_cvbs.c
index 5675bc2a92cf..3f73b211fa8e 100644
--- a/drivers/gpu/drm/meson/meson_encoder_cvbs.c
+++ b/drivers/gpu/drm/meson/meson_encoder_cvbs.c
@@ -116,9 +116,10 @@ static int meson_encoder_cvbs_get_modes(struct drm_bridge *bridge,
return i;
}
-static int meson_encoder_cvbs_mode_valid(struct drm_bridge *bridge,
- const struct drm_display_info *display_info,
- const struct drm_display_mode *mode)
+static enum drm_mode_status
+meson_encoder_cvbs_mode_valid(struct drm_bridge *bridge,
+ const struct drm_display_info *display_info,
+ const struct drm_display_mode *mode)
{
if (meson_cvbs_get_mode(mode))
return MODE_OK;
diff --git a/drivers/gpu/drm/meson/meson_venc.c b/drivers/gpu/drm/meson/meson_venc.c
index 3c55ed003359..fcd532db19c1 100644
--- a/drivers/gpu/drm/meson/meson_venc.c
+++ b/drivers/gpu/drm/meson/meson_venc.c
@@ -866,10 +866,10 @@ meson_venc_hdmi_supported_mode(const struct drm_display_mode *mode)
DRM_MODE_FLAG_PVSYNC | DRM_MODE_FLAG_NVSYNC))
return MODE_BAD;
- if (mode->hdisplay < 640 || mode->hdisplay > 1920)
+ if (mode->hdisplay < 400 || mode->hdisplay > 1920)
return MODE_BAD_HVALUE;
- if (mode->vdisplay < 480 || mode->vdisplay > 1200)
+ if (mode->vdisplay < 480 || mode->vdisplay > 1920)
return MODE_BAD_VVALUE;
return MODE_OK;
diff --git a/drivers/gpu/drm/meson/meson_viu.c b/drivers/gpu/drm/meson/meson_viu.c
index d4b907889a21..cd399b0b7181 100644
--- a/drivers/gpu/drm/meson/meson_viu.c
+++ b/drivers/gpu/drm/meson/meson_viu.c
@@ -436,15 +436,14 @@ void meson_viu_init(struct meson_drm *priv)
/* Initialize OSD1 fifo control register */
reg = VIU_OSD_DDR_PRIORITY_URGENT |
- VIU_OSD_HOLD_FIFO_LINES(31) |
VIU_OSD_FIFO_DEPTH_VAL(32) | /* fifo_depth_val: 32*8=256 */
VIU_OSD_WORDS_PER_BURST(4) | /* 4 words in 1 burst */
VIU_OSD_FIFO_LIMITS(2); /* fifo_lim: 2*16=32 */
if (meson_vpu_is_compatible(priv, VPU_COMPATIBLE_G12A))
- reg |= VIU_OSD_BURST_LENGTH_32;
+ reg |= (VIU_OSD_BURST_LENGTH_32 | VIU_OSD_HOLD_FIFO_LINES(31));
else
- reg |= VIU_OSD_BURST_LENGTH_64;
+ reg |= (VIU_OSD_BURST_LENGTH_64 | VIU_OSD_HOLD_FIFO_LINES(4));
writel_relaxed(reg, priv->io_base + _REG(VIU_OSD1_FIFO_CTRL_STAT));
writel_relaxed(reg, priv->io_base + _REG(VIU_OSD2_FIFO_CTRL_STAT));
diff --git a/drivers/gpu/drm/meson/meson_vpp.c b/drivers/gpu/drm/meson/meson_vpp.c
index 154837688ab0..5df1957c8e41 100644
--- a/drivers/gpu/drm/meson/meson_vpp.c
+++ b/drivers/gpu/drm/meson/meson_vpp.c
@@ -100,6 +100,8 @@ void meson_vpp_init(struct meson_drm *priv)
priv->io_base + _REG(VPP_DOLBY_CTRL));
writel_relaxed(0x1020080,
priv->io_base + _REG(VPP_DUMMY_DATA1));
+ writel_relaxed(0x42020,
+ priv->io_base + _REG(VPP_DUMMY_DATA));
} else if (meson_vpu_is_compatible(priv, VPU_COMPATIBLE_G12A))
writel_relaxed(0xf, priv->io_base + _REG(DOLBY_PATH_CTRL));
diff --git a/drivers/gpu/drm/mga/Makefile b/drivers/gpu/drm/mga/Makefile
deleted file mode 100644
index db07c7fcc996..000000000000
--- a/drivers/gpu/drm/mga/Makefile
+++ /dev/null
@@ -1,11 +0,0 @@
-# SPDX-License-Identifier: GPL-2.0-only
-#
-# Makefile for the drm device driver. This driver provides support for the
-# Direct Rendering Infrastructure (DRI) in XFree86 4.1.0 and higher.
-
-mga-y := mga_drv.o mga_dma.o mga_state.o mga_warp.o mga_irq.o
-
-mga-$(CONFIG_COMPAT) += mga_ioc32.o
-
-obj-$(CONFIG_DRM_MGA) += mga.o
-
diff --git a/drivers/gpu/drm/mga/mga_dma.c b/drivers/gpu/drm/mga/mga_dma.c
deleted file mode 100644
index 331c2f0da57a..000000000000
--- a/drivers/gpu/drm/mga/mga_dma.c
+++ /dev/null
@@ -1,1168 +0,0 @@
-/* mga_dma.c -- DMA support for mga g200/g400 -*- linux-c -*-
- * Created: Mon Dec 13 01:50:01 1999 by jhartmann@precisioninsight.com
- *
- * Copyright 1999 Precision Insight, Inc., Cedar Park, Texas.
- * Copyright 2000 VA Linux Systems, Inc., Sunnyvale, California.
- * All Rights Reserved.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice (including the next
- * paragraph) shall be included in all copies or substantial portions of the
- * Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * PRECISION INSIGHT AND/OR ITS SUPPLIERS BE LIABLE FOR ANY CLAIM, DAMAGES OR
- * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
- * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
- * DEALINGS IN THE SOFTWARE.
- */
-
-/*
- * \file mga_dma.c
- * DMA support for MGA G200 / G400.
- *
- * \author Rickard E. (Rik) Faith <faith@valinux.com>
- * \author Jeff Hartmann <jhartmann@valinux.com>
- * \author Keith Whitwell <keith@tungstengraphics.com>
- * \author Gareth Hughes <gareth@valinux.com>
- */
-
-#include <linux/delay.h>
-
-#include "mga_drv.h"
-
-#define MGA_DEFAULT_USEC_TIMEOUT 10000
-#define MGA_FREELIST_DEBUG 0
-
-#define MINIMAL_CLEANUP 0
-#define FULL_CLEANUP 1
-static int mga_do_cleanup_dma(struct drm_device *dev, int full_cleanup);
-
-/* ================================================================
- * Engine control
- */
-
-int mga_do_wait_for_idle(drm_mga_private_t *dev_priv)
-{
- u32 status = 0;
- int i;
- DRM_DEBUG("\n");
-
- for (i = 0; i < dev_priv->usec_timeout; i++) {
- status = MGA_READ(MGA_STATUS) & MGA_ENGINE_IDLE_MASK;
- if (status == MGA_ENDPRDMASTS) {
- MGA_WRITE8(MGA_CRTC_INDEX, 0);
- return 0;
- }
- udelay(1);
- }
-
-#if MGA_DMA_DEBUG
- DRM_ERROR("failed!\n");
- DRM_INFO(" status=0x%08x\n", status);
-#endif
- return -EBUSY;
-}
-
-static int mga_do_dma_reset(drm_mga_private_t *dev_priv)
-{
- drm_mga_sarea_t *sarea_priv = dev_priv->sarea_priv;
- drm_mga_primary_buffer_t *primary = &dev_priv->prim;
-
- DRM_DEBUG("\n");
-
- /* The primary DMA stream should look like new right about now.
- */
- primary->tail = 0;
- primary->space = primary->size;
- primary->last_flush = 0;
-
- sarea_priv->last_wrap = 0;
-
- /* FIXME: Reset counters, buffer ages etc...
- */
-
- /* FIXME: What else do we need to reinitialize? WARP stuff?
- */
-
- return 0;
-}
-
-/* ================================================================
- * Primary DMA stream
- */
-
-void mga_do_dma_flush(drm_mga_private_t *dev_priv)
-{
- drm_mga_primary_buffer_t *primary = &dev_priv->prim;
- u32 head, tail;
- u32 status = 0;
- int i;
- DMA_LOCALS;
- DRM_DEBUG("\n");
-
- /* We need to wait so that we can do an safe flush */
- for (i = 0; i < dev_priv->usec_timeout; i++) {
- status = MGA_READ(MGA_STATUS) & MGA_ENGINE_IDLE_MASK;
- if (status == MGA_ENDPRDMASTS)
- break;
- udelay(1);
- }
-
- if (primary->tail == primary->last_flush) {
- DRM_DEBUG(" bailing out...\n");
- return;
- }
-
- tail = primary->tail + dev_priv->primary->offset;
-
- /* We need to pad the stream between flushes, as the card
- * actually (partially?) reads the first of these commands.
- * See page 4-16 in the G400 manual, middle of the page or so.
- */
- BEGIN_DMA(1);
-
- DMA_BLOCK(MGA_DMAPAD, 0x00000000,
- MGA_DMAPAD, 0x00000000,
- MGA_DMAPAD, 0x00000000, MGA_DMAPAD, 0x00000000);
-
- ADVANCE_DMA();
-
- primary->last_flush = primary->tail;
-
- head = MGA_READ(MGA_PRIMADDRESS);
-
- if (head <= tail)
- primary->space = primary->size - primary->tail;
- else
- primary->space = head - tail;
-
- DRM_DEBUG(" head = 0x%06lx\n", (unsigned long)(head - dev_priv->primary->offset));
- DRM_DEBUG(" tail = 0x%06lx\n", (unsigned long)(tail - dev_priv->primary->offset));
- DRM_DEBUG(" space = 0x%06x\n", primary->space);
-
- mga_flush_write_combine();
- MGA_WRITE(MGA_PRIMEND, tail | dev_priv->dma_access);
-
- DRM_DEBUG("done.\n");
-}
-
-void mga_do_dma_wrap_start(drm_mga_private_t *dev_priv)
-{
- drm_mga_primary_buffer_t *primary = &dev_priv->prim;
- u32 head, tail;
- DMA_LOCALS;
- DRM_DEBUG("\n");
-
- BEGIN_DMA_WRAP();
-
- DMA_BLOCK(MGA_DMAPAD, 0x00000000,
- MGA_DMAPAD, 0x00000000,
- MGA_DMAPAD, 0x00000000, MGA_DMAPAD, 0x00000000);
-
- ADVANCE_DMA();
-
- tail = primary->tail + dev_priv->primary->offset;
-
- primary->tail = 0;
- primary->last_flush = 0;
- primary->last_wrap++;
-
- head = MGA_READ(MGA_PRIMADDRESS);
-
- if (head == dev_priv->primary->offset)
- primary->space = primary->size;
- else
- primary->space = head - dev_priv->primary->offset;
-
- DRM_DEBUG(" head = 0x%06lx\n", (unsigned long)(head - dev_priv->primary->offset));
- DRM_DEBUG(" tail = 0x%06x\n", primary->tail);
- DRM_DEBUG(" wrap = %d\n", primary->last_wrap);
- DRM_DEBUG(" space = 0x%06x\n", primary->space);
-
- mga_flush_write_combine();
- MGA_WRITE(MGA_PRIMEND, tail | dev_priv->dma_access);
-
- set_bit(0, &primary->wrapped);
- DRM_DEBUG("done.\n");
-}
-
-void mga_do_dma_wrap_end(drm_mga_private_t *dev_priv)
-{
- drm_mga_primary_buffer_t *primary = &dev_priv->prim;
- drm_mga_sarea_t *sarea_priv = dev_priv->sarea_priv;
- u32 head = dev_priv->primary->offset;
- DRM_DEBUG("\n");
-
- sarea_priv->last_wrap++;
- DRM_DEBUG(" wrap = %d\n", sarea_priv->last_wrap);
-
- mga_flush_write_combine();
- MGA_WRITE(MGA_PRIMADDRESS, head | MGA_DMA_GENERAL);
-
- clear_bit(0, &primary->wrapped);
- DRM_DEBUG("done.\n");
-}
-
-/* ================================================================
- * Freelist management
- */
-
-#define MGA_BUFFER_USED (~0)
-#define MGA_BUFFER_FREE 0
-
-#if MGA_FREELIST_DEBUG
-static void mga_freelist_print(struct drm_device *dev)
-{
- drm_mga_private_t *dev_priv = dev->dev_private;
- drm_mga_freelist_t *entry;
-
- DRM_INFO("\n");
- DRM_INFO("current dispatch: last=0x%x done=0x%x\n",
- dev_priv->sarea_priv->last_dispatch,
- (unsigned int)(MGA_READ(MGA_PRIMADDRESS) -
- dev_priv->primary->offset));
- DRM_INFO("current freelist:\n");
-
- for (entry = dev_priv->head->next; entry; entry = entry->next) {
- DRM_INFO(" %p idx=%2d age=0x%x 0x%06lx\n",
- entry, entry->buf->idx, entry->age.head,
- (unsigned long)(entry->age.head - dev_priv->primary->offset));
- }
- DRM_INFO("\n");
-}
-#endif
-
-static int mga_freelist_init(struct drm_device *dev, drm_mga_private_t *dev_priv)
-{
- struct drm_device_dma *dma = dev->dma;
- struct drm_buf *buf;
- drm_mga_buf_priv_t *buf_priv;
- drm_mga_freelist_t *entry;
- int i;
- DRM_DEBUG("count=%d\n", dma->buf_count);
-
- dev_priv->head = kzalloc(sizeof(drm_mga_freelist_t), GFP_KERNEL);
- if (dev_priv->head == NULL)
- return -ENOMEM;
-
- SET_AGE(&dev_priv->head->age, MGA_BUFFER_USED, 0);
-
- for (i = 0; i < dma->buf_count; i++) {
- buf = dma->buflist[i];
- buf_priv = buf->dev_private;
-
- entry = kzalloc(sizeof(drm_mga_freelist_t), GFP_KERNEL);
- if (entry == NULL)
- return -ENOMEM;
-
- entry->next = dev_priv->head->next;
- entry->prev = dev_priv->head;
- SET_AGE(&entry->age, MGA_BUFFER_FREE, 0);
- entry->buf = buf;
-
- if (dev_priv->head->next != NULL)
- dev_priv->head->next->prev = entry;
- if (entry->next == NULL)
- dev_priv->tail = entry;
-
- buf_priv->list_entry = entry;
- buf_priv->discard = 0;
- buf_priv->dispatched = 0;
-
- dev_priv->head->next = entry;
- }
-
- return 0;
-}
-
-static void mga_freelist_cleanup(struct drm_device *dev)
-{
- drm_mga_private_t *dev_priv = dev->dev_private;
- drm_mga_freelist_t *entry;
- drm_mga_freelist_t *next;
- DRM_DEBUG("\n");
-
- entry = dev_priv->head;
- while (entry) {
- next = entry->next;
- kfree(entry);
- entry = next;
- }
-
- dev_priv->head = dev_priv->tail = NULL;
-}
-
-#if 0
-/* FIXME: Still needed?
- */
-static void mga_freelist_reset(struct drm_device *dev)
-{
- struct drm_device_dma *dma = dev->dma;
- struct drm_buf *buf;
- drm_mga_buf_priv_t *buf_priv;
- int i;
-
- for (i = 0; i < dma->buf_count; i++) {
- buf = dma->buflist[i];
- buf_priv = buf->dev_private;
- SET_AGE(&buf_priv->list_entry->age, MGA_BUFFER_FREE, 0);
- }
-}
-#endif
-
-static struct drm_buf *mga_freelist_get(struct drm_device * dev)
-{
- drm_mga_private_t *dev_priv = dev->dev_private;
- drm_mga_freelist_t *next;
- drm_mga_freelist_t *prev;
- drm_mga_freelist_t *tail = dev_priv->tail;
- u32 head, wrap;
- DRM_DEBUG("\n");
-
- head = MGA_READ(MGA_PRIMADDRESS);
- wrap = dev_priv->sarea_priv->last_wrap;
-
- DRM_DEBUG(" tail=0x%06lx %d\n",
- tail->age.head ?
- (unsigned long)(tail->age.head - dev_priv->primary->offset) : 0,
- tail->age.wrap);
- DRM_DEBUG(" head=0x%06lx %d\n",
- (unsigned long)(head - dev_priv->primary->offset), wrap);
-
- if (TEST_AGE(&tail->age, head, wrap)) {
- prev = dev_priv->tail->prev;
- next = dev_priv->tail;
- prev->next = NULL;
- next->prev = next->next = NULL;
- dev_priv->tail = prev;
- SET_AGE(&next->age, MGA_BUFFER_USED, 0);
- return next->buf;
- }
-
- DRM_DEBUG("returning NULL!\n");
- return NULL;
-}
-
-int mga_freelist_put(struct drm_device *dev, struct drm_buf *buf)
-{
- drm_mga_private_t *dev_priv = dev->dev_private;
- drm_mga_buf_priv_t *buf_priv = buf->dev_private;
- drm_mga_freelist_t *head, *entry, *prev;
-
- DRM_DEBUG("age=0x%06lx wrap=%d\n",
- (unsigned long)(buf_priv->list_entry->age.head -
- dev_priv->primary->offset),
- buf_priv->list_entry->age.wrap);
-
- entry = buf_priv->list_entry;
- head = dev_priv->head;
-
- if (buf_priv->list_entry->age.head == MGA_BUFFER_USED) {
- SET_AGE(&entry->age, MGA_BUFFER_FREE, 0);
- prev = dev_priv->tail;
- prev->next = entry;
- entry->prev = prev;
- entry->next = NULL;
- } else {
- prev = head->next;
- head->next = entry;
- prev->prev = entry;
- entry->prev = head;
- entry->next = prev;
- }
-
- return 0;
-}
-
-/* ================================================================
- * DMA initialization, cleanup
- */
-
-int mga_driver_load(struct drm_device *dev, unsigned long flags)
-{
- struct pci_dev *pdev = to_pci_dev(dev->dev);
- drm_mga_private_t *dev_priv;
- int ret;
-
- /* There are PCI versions of the G450. These cards have the
- * same PCI ID as the AGP G450, but have an additional PCI-to-PCI
- * bridge chip. We detect these cards, which are not currently
- * supported by this driver, by looking at the device ID of the
- * bus the "card" is on. If vendor is 0x3388 (Hint Corp) and the
- * device is 0x0021 (HB6 Universal PCI-PCI bridge), we reject the
- * device.
- */
- if ((pdev->device == 0x0525) && pdev->bus->self
- && (pdev->bus->self->vendor == 0x3388)
- && (pdev->bus->self->device == 0x0021)
- && dev->agp) {
- /* FIXME: This should be quirked in the pci core, but oh well
- * the hw probably stopped existing. */
- arch_phys_wc_del(dev->agp->agp_mtrr);
- kfree(dev->agp);
- dev->agp = NULL;
- }
- dev_priv = kzalloc(sizeof(drm_mga_private_t), GFP_KERNEL);
- if (!dev_priv)
- return -ENOMEM;
-
- dev->dev_private = (void *)dev_priv;
-
- dev_priv->usec_timeout = MGA_DEFAULT_USEC_TIMEOUT;
- dev_priv->chipset = flags;
-
- pci_set_master(pdev);
-
- dev_priv->mmio_base = pci_resource_start(pdev, 1);
- dev_priv->mmio_size = pci_resource_len(pdev, 1);
-
- ret = drm_vblank_init(dev, 1);
-
- if (ret) {
- (void) mga_driver_unload(dev);
- return ret;
- }
-
- return 0;
-}
-
-#if IS_ENABLED(CONFIG_AGP)
-/*
- * Bootstrap the driver for AGP DMA.
- *
- * \todo
- * Investigate whether there is any benefit to storing the WARP microcode in
- * AGP memory. If not, the microcode may as well always be put in PCI
- * memory.
- *
- * \todo
- * This routine needs to set dma_bs->agp_mode to the mode actually configured
- * in the hardware. Looking just at the Linux AGP driver code, I don't see
- * an easy way to determine this.
- *
- * \sa mga_do_dma_bootstrap, mga_do_pci_dma_bootstrap
- */
-static int mga_do_agp_dma_bootstrap(struct drm_device *dev,
- drm_mga_dma_bootstrap_t *dma_bs)
-{
- drm_mga_private_t *const dev_priv =
- (drm_mga_private_t *) dev->dev_private;
- unsigned int warp_size = MGA_WARP_UCODE_SIZE;
- int err;
- unsigned offset;
- const unsigned secondary_size = dma_bs->secondary_bin_count
- * dma_bs->secondary_bin_size;
- const unsigned agp_size = (dma_bs->agp_size << 20);
- struct drm_buf_desc req;
- struct drm_agp_mode mode;
- struct drm_agp_info info;
- struct drm_agp_buffer agp_req;
- struct drm_agp_binding bind_req;
-
- /* Acquire AGP. */
- err = drm_legacy_agp_acquire(dev);
- if (err) {
- DRM_ERROR("Unable to acquire AGP: %d\n", err);
- return err;
- }
-
- err = drm_legacy_agp_info(dev, &info);
- if (err) {
- DRM_ERROR("Unable to get AGP info: %d\n", err);
- return err;
- }
-
- mode.mode = (info.mode & ~0x07) | dma_bs->agp_mode;
- err = drm_legacy_agp_enable(dev, mode);
- if (err) {
- DRM_ERROR("Unable to enable AGP (mode = 0x%lx)\n", mode.mode);
- return err;
- }
-
- /* In addition to the usual AGP mode configuration, the G200 AGP cards
- * need to have the AGP mode "manually" set.
- */
-
- if (dev_priv->chipset == MGA_CARD_TYPE_G200) {
- if (mode.mode & 0x02)
- MGA_WRITE(MGA_AGP_PLL, MGA_AGP2XPLL_ENABLE);
- else
- MGA_WRITE(MGA_AGP_PLL, MGA_AGP2XPLL_DISABLE);
- }
-
- /* Allocate and bind AGP memory. */
- agp_req.size = agp_size;
- agp_req.type = 0;
- err = drm_legacy_agp_alloc(dev, &agp_req);
- if (err) {
- dev_priv->agp_size = 0;
- DRM_ERROR("Unable to allocate %uMB AGP memory\n",
- dma_bs->agp_size);
- return err;
- }
-
- dev_priv->agp_size = agp_size;
- dev_priv->agp_handle = agp_req.handle;
-
- bind_req.handle = agp_req.handle;
- bind_req.offset = 0;
- err = drm_legacy_agp_bind(dev, &bind_req);
- if (err) {
- DRM_ERROR("Unable to bind AGP memory: %d\n", err);
- return err;
- }
-
- /* Make drm_legacy_addbufs happy by not trying to create a mapping for
- * less than a page.
- */
- if (warp_size < PAGE_SIZE)
- warp_size = PAGE_SIZE;
-
- offset = 0;
- err = drm_legacy_addmap(dev, offset, warp_size,
- _DRM_AGP, _DRM_READ_ONLY, &dev_priv->warp);
- if (err) {
- DRM_ERROR("Unable to map WARP microcode: %d\n", err);
- return err;
- }
-
- offset += warp_size;
- err = drm_legacy_addmap(dev, offset, dma_bs->primary_size,
- _DRM_AGP, _DRM_READ_ONLY, &dev_priv->primary);
- if (err) {
- DRM_ERROR("Unable to map primary DMA region: %d\n", err);
- return err;
- }
-
- offset += dma_bs->primary_size;
- err = drm_legacy_addmap(dev, offset, secondary_size,
- _DRM_AGP, 0, &dev->agp_buffer_map);
- if (err) {
- DRM_ERROR("Unable to map secondary DMA region: %d\n", err);
- return err;
- }
-
- (void)memset(&req, 0, sizeof(req));
- req.count = dma_bs->secondary_bin_count;
- req.size = dma_bs->secondary_bin_size;
- req.flags = _DRM_AGP_BUFFER;
- req.agp_start = offset;
-
- err = drm_legacy_addbufs_agp(dev, &req);
- if (err) {
- DRM_ERROR("Unable to add secondary DMA buffers: %d\n", err);
- return err;
- }
-
- {
- struct drm_map_list *_entry;
- unsigned long agp_token = 0;
-
- list_for_each_entry(_entry, &dev->maplist, head) {
- if (_entry->map == dev->agp_buffer_map)
- agp_token = _entry->user_token;
- }
- if (!agp_token)
- return -EFAULT;
-
- dev->agp_buffer_token = agp_token;
- }
-
- offset += secondary_size;
- err = drm_legacy_addmap(dev, offset, agp_size - offset,
- _DRM_AGP, 0, &dev_priv->agp_textures);
- if (err) {
- DRM_ERROR("Unable to map AGP texture region %d\n", err);
- return err;
- }
-
- drm_legacy_ioremap(dev_priv->warp, dev);
- drm_legacy_ioremap(dev_priv->primary, dev);
- drm_legacy_ioremap(dev->agp_buffer_map, dev);
-
- if (!dev_priv->warp->handle ||
- !dev_priv->primary->handle || !dev->agp_buffer_map->handle) {
- DRM_ERROR("failed to ioremap agp regions! (%p, %p, %p)\n",
- dev_priv->warp->handle, dev_priv->primary->handle,
- dev->agp_buffer_map->handle);
- return -ENOMEM;
- }
-
- dev_priv->dma_access = MGA_PAGPXFER;
- dev_priv->wagp_enable = MGA_WAGP_ENABLE;
-
- DRM_INFO("Initialized card for AGP DMA.\n");
- return 0;
-}
-#else
-static int mga_do_agp_dma_bootstrap(struct drm_device *dev,
- drm_mga_dma_bootstrap_t *dma_bs)
-{
- return -EINVAL;
-}
-#endif
-
-/*
- * Bootstrap the driver for PCI DMA.
- *
- * \todo
- * The algorithm for decreasing the size of the primary DMA buffer could be
- * better. The size should be rounded up to the nearest page size, then
- * decrease the request size by a single page each pass through the loop.
- *
- * \todo
- * Determine whether the maximum address passed to drm_pci_alloc is correct.
- * The same goes for drm_legacy_addbufs_pci.
- *
- * \sa mga_do_dma_bootstrap, mga_do_agp_dma_bootstrap
- */
-static int mga_do_pci_dma_bootstrap(struct drm_device *dev,
- drm_mga_dma_bootstrap_t *dma_bs)
-{
- drm_mga_private_t *const dev_priv =
- (drm_mga_private_t *) dev->dev_private;
- unsigned int warp_size = MGA_WARP_UCODE_SIZE;
- unsigned int primary_size;
- unsigned int bin_count;
- int err;
- struct drm_buf_desc req;
-
- if (dev->dma == NULL) {
- DRM_ERROR("dev->dma is NULL\n");
- return -EFAULT;
- }
-
- /* Make drm_legacy_addbufs happy by not trying to create a mapping for
- * less than a page.
- */
- if (warp_size < PAGE_SIZE)
- warp_size = PAGE_SIZE;
-
- /* The proper alignment is 0x100 for this mapping */
- err = drm_legacy_addmap(dev, 0, warp_size, _DRM_CONSISTENT,
- _DRM_READ_ONLY, &dev_priv->warp);
- if (err != 0) {
- DRM_ERROR("Unable to create mapping for WARP microcode: %d\n",
- err);
- return err;
- }
-
- /* Other than the bottom two bits being used to encode other
- * information, there don't appear to be any restrictions on the
- * alignment of the primary or secondary DMA buffers.
- */
-
- for (primary_size = dma_bs->primary_size; primary_size != 0;
- primary_size >>= 1) {
- /* The proper alignment for this mapping is 0x04 */
- err = drm_legacy_addmap(dev, 0, primary_size, _DRM_CONSISTENT,
- _DRM_READ_ONLY, &dev_priv->primary);
- if (!err)
- break;
- }
-
- if (err != 0) {
- DRM_ERROR("Unable to allocate primary DMA region: %d\n", err);
- return -ENOMEM;
- }
-
- if (dev_priv->primary->size != dma_bs->primary_size) {
- DRM_INFO("Primary DMA buffer size reduced from %u to %u.\n",
- dma_bs->primary_size,
- (unsigned)dev_priv->primary->size);
- dma_bs->primary_size = dev_priv->primary->size;
- }
-
- for (bin_count = dma_bs->secondary_bin_count; bin_count > 0;
- bin_count--) {
- (void)memset(&req, 0, sizeof(req));
- req.count = bin_count;
- req.size = dma_bs->secondary_bin_size;
-
- err = drm_legacy_addbufs_pci(dev, &req);
- if (!err)
- break;
- }
-
- if (bin_count == 0) {
- DRM_ERROR("Unable to add secondary DMA buffers: %d\n", err);
- return err;
- }
-
- if (bin_count != dma_bs->secondary_bin_count) {
- DRM_INFO("Secondary PCI DMA buffer bin count reduced from %u "
- "to %u.\n", dma_bs->secondary_bin_count, bin_count);
-
- dma_bs->secondary_bin_count = bin_count;
- }
-
- dev_priv->dma_access = 0;
- dev_priv->wagp_enable = 0;
-
- dma_bs->agp_mode = 0;
-
- DRM_INFO("Initialized card for PCI DMA.\n");
- return 0;
-}
-
-static int mga_do_dma_bootstrap(struct drm_device *dev,
- drm_mga_dma_bootstrap_t *dma_bs)
-{
- const int is_agp = (dma_bs->agp_mode != 0) && dev->agp;
- int err;
- drm_mga_private_t *const dev_priv =
- (drm_mga_private_t *) dev->dev_private;
-
- dev_priv->used_new_dma_init = 1;
-
- /* The first steps are the same for both PCI and AGP based DMA. Map
- * the cards MMIO registers and map a status page.
- */
- err = drm_legacy_addmap(dev, dev_priv->mmio_base, dev_priv->mmio_size,
- _DRM_REGISTERS, _DRM_READ_ONLY,
- &dev_priv->mmio);
- if (err) {
- DRM_ERROR("Unable to map MMIO region: %d\n", err);
- return err;
- }
-
- err = drm_legacy_addmap(dev, 0, SAREA_MAX, _DRM_SHM,
- _DRM_READ_ONLY | _DRM_LOCKED | _DRM_KERNEL,
- &dev_priv->status);
- if (err) {
- DRM_ERROR("Unable to map status region: %d\n", err);
- return err;
- }
-
- /* The DMA initialization procedure is slightly different for PCI and
- * AGP cards. AGP cards just allocate a large block of AGP memory and
- * carve off portions of it for internal uses. The remaining memory
- * is returned to user-mode to be used for AGP textures.
- */
- if (is_agp)
- err = mga_do_agp_dma_bootstrap(dev, dma_bs);
-
- /* If we attempted to initialize the card for AGP DMA but failed,
- * clean-up any mess that may have been created.
- */
-
- if (err)
- mga_do_cleanup_dma(dev, MINIMAL_CLEANUP);
-
- /* Not only do we want to try and initialized PCI cards for PCI DMA,
- * but we also try to initialized AGP cards that could not be
- * initialized for AGP DMA. This covers the case where we have an AGP
- * card in a system with an unsupported AGP chipset. In that case the
- * card will be detected as AGP, but we won't be able to allocate any
- * AGP memory, etc.
- */
-
- if (!is_agp || err)
- err = mga_do_pci_dma_bootstrap(dev, dma_bs);
-
- return err;
-}
-
-int mga_dma_bootstrap(struct drm_device *dev, void *data,
- struct drm_file *file_priv)
-{
- drm_mga_dma_bootstrap_t *bootstrap = data;
- int err;
- static const int modes[] = { 0, 1, 2, 2, 4, 4, 4, 4 };
- const drm_mga_private_t *const dev_priv =
- (drm_mga_private_t *) dev->dev_private;
-
- err = mga_do_dma_bootstrap(dev, bootstrap);
- if (err) {
- mga_do_cleanup_dma(dev, FULL_CLEANUP);
- return err;
- }
-
- if (dev_priv->agp_textures != NULL) {
- bootstrap->texture_handle = dev_priv->agp_textures->offset;
- bootstrap->texture_size = dev_priv->agp_textures->size;
- } else {
- bootstrap->texture_handle = 0;
- bootstrap->texture_size = 0;
- }
-
- bootstrap->agp_mode = modes[bootstrap->agp_mode & 0x07];
-
- return err;
-}
-
-static int mga_do_init_dma(struct drm_device *dev, drm_mga_init_t *init)
-{
- drm_mga_private_t *dev_priv;
- int ret;
- DRM_DEBUG("\n");
-
- dev_priv = dev->dev_private;
-
- if (init->sgram)
- dev_priv->clear_cmd = MGA_DWGCTL_CLEAR | MGA_ATYPE_BLK;
- else
- dev_priv->clear_cmd = MGA_DWGCTL_CLEAR | MGA_ATYPE_RSTR;
- dev_priv->maccess = init->maccess;
-
- dev_priv->fb_cpp = init->fb_cpp;
- dev_priv->front_offset = init->front_offset;
- dev_priv->front_pitch = init->front_pitch;
- dev_priv->back_offset = init->back_offset;
- dev_priv->back_pitch = init->back_pitch;
-
- dev_priv->depth_cpp = init->depth_cpp;
- dev_priv->depth_offset = init->depth_offset;
- dev_priv->depth_pitch = init->depth_pitch;
-
- /* FIXME: Need to support AGP textures...
- */
- dev_priv->texture_offset = init->texture_offset[0];
- dev_priv->texture_size = init->texture_size[0];
-
- dev_priv->sarea = drm_legacy_getsarea(dev);
- if (!dev_priv->sarea) {
- DRM_ERROR("failed to find sarea!\n");
- return -EINVAL;
- }
-
- if (!dev_priv->used_new_dma_init) {
-
- dev_priv->dma_access = MGA_PAGPXFER;
- dev_priv->wagp_enable = MGA_WAGP_ENABLE;
-
- dev_priv->status = drm_legacy_findmap(dev, init->status_offset);
- if (!dev_priv->status) {
- DRM_ERROR("failed to find status page!\n");
- return -EINVAL;
- }
- dev_priv->mmio = drm_legacy_findmap(dev, init->mmio_offset);
- if (!dev_priv->mmio) {
- DRM_ERROR("failed to find mmio region!\n");
- return -EINVAL;
- }
- dev_priv->warp = drm_legacy_findmap(dev, init->warp_offset);
- if (!dev_priv->warp) {
- DRM_ERROR("failed to find warp microcode region!\n");
- return -EINVAL;
- }
- dev_priv->primary = drm_legacy_findmap(dev, init->primary_offset);
- if (!dev_priv->primary) {
- DRM_ERROR("failed to find primary dma region!\n");
- return -EINVAL;
- }
- dev->agp_buffer_token = init->buffers_offset;
- dev->agp_buffer_map =
- drm_legacy_findmap(dev, init->buffers_offset);
- if (!dev->agp_buffer_map) {
- DRM_ERROR("failed to find dma buffer region!\n");
- return -EINVAL;
- }
-
- drm_legacy_ioremap(dev_priv->warp, dev);
- drm_legacy_ioremap(dev_priv->primary, dev);
- drm_legacy_ioremap(dev->agp_buffer_map, dev);
- }
-
- dev_priv->sarea_priv =
- (drm_mga_sarea_t *) ((u8 *) dev_priv->sarea->handle +
- init->sarea_priv_offset);
-
- if (!dev_priv->warp->handle ||
- !dev_priv->primary->handle ||
- ((dev_priv->dma_access != 0) &&
- ((dev->agp_buffer_map == NULL) ||
- (dev->agp_buffer_map->handle == NULL)))) {
- DRM_ERROR("failed to ioremap agp regions!\n");
- return -ENOMEM;
- }
-
- ret = mga_warp_install_microcode(dev_priv);
- if (ret < 0) {
- DRM_ERROR("failed to install WARP ucode!: %d\n", ret);
- return ret;
- }
-
- ret = mga_warp_init(dev_priv);
- if (ret < 0) {
- DRM_ERROR("failed to init WARP engine!: %d\n", ret);
- return ret;
- }
-
- dev_priv->prim.status = (u32 *) dev_priv->status->handle;
-
- mga_do_wait_for_idle(dev_priv);
-
- /* Init the primary DMA registers.
- */
- MGA_WRITE(MGA_PRIMADDRESS, dev_priv->primary->offset | MGA_DMA_GENERAL);
-#if 0
- MGA_WRITE(MGA_PRIMPTR, virt_to_bus((void *)dev_priv->prim.status) | MGA_PRIMPTREN0 | /* Soft trap, SECEND, SETUPEND */
- MGA_PRIMPTREN1); /* DWGSYNC */
-#endif
-
- dev_priv->prim.start = (u8 *) dev_priv->primary->handle;
- dev_priv->prim.end = ((u8 *) dev_priv->primary->handle
- + dev_priv->primary->size);
- dev_priv->prim.size = dev_priv->primary->size;
-
- dev_priv->prim.tail = 0;
- dev_priv->prim.space = dev_priv->prim.size;
- dev_priv->prim.wrapped = 0;
-
- dev_priv->prim.last_flush = 0;
- dev_priv->prim.last_wrap = 0;
-
- dev_priv->prim.high_mark = 256 * DMA_BLOCK_SIZE;
-
- dev_priv->prim.status[0] = dev_priv->primary->offset;
- dev_priv->prim.status[1] = 0;
-
- dev_priv->sarea_priv->last_wrap = 0;
- dev_priv->sarea_priv->last_frame.head = 0;
- dev_priv->sarea_priv->last_frame.wrap = 0;
-
- if (mga_freelist_init(dev, dev_priv) < 0) {
- DRM_ERROR("could not initialize freelist\n");
- return -ENOMEM;
- }
-
- return 0;
-}
-
-static int mga_do_cleanup_dma(struct drm_device *dev, int full_cleanup)
-{
- int err = 0;
- DRM_DEBUG("\n");
-
- /* Make sure interrupts are disabled here because the uninstall ioctl
- * may not have been called from userspace and after dev_private
- * is freed, it's too late.
- */
- if (dev->irq_enabled)
- drm_legacy_irq_uninstall(dev);
-
- if (dev->dev_private) {
- drm_mga_private_t *dev_priv = dev->dev_private;
-
- if ((dev_priv->warp != NULL)
- && (dev_priv->warp->type != _DRM_CONSISTENT))
- drm_legacy_ioremapfree(dev_priv->warp, dev);
-
- if ((dev_priv->primary != NULL)
- && (dev_priv->primary->type != _DRM_CONSISTENT))
- drm_legacy_ioremapfree(dev_priv->primary, dev);
-
- if (dev->agp_buffer_map != NULL)
- drm_legacy_ioremapfree(dev->agp_buffer_map, dev);
-
- if (dev_priv->used_new_dma_init) {
-#if IS_ENABLED(CONFIG_AGP)
- if (dev_priv->agp_handle != 0) {
- struct drm_agp_binding unbind_req;
- struct drm_agp_buffer free_req;
-
- unbind_req.handle = dev_priv->agp_handle;
- drm_legacy_agp_unbind(dev, &unbind_req);
-
- free_req.handle = dev_priv->agp_handle;
- drm_legacy_agp_free(dev, &free_req);
-
- dev_priv->agp_textures = NULL;
- dev_priv->agp_size = 0;
- dev_priv->agp_handle = 0;
- }
-
- if ((dev->agp != NULL) && dev->agp->acquired)
- err = drm_legacy_agp_release(dev);
-#endif
- }
-
- dev_priv->warp = NULL;
- dev_priv->primary = NULL;
- dev_priv->sarea = NULL;
- dev_priv->sarea_priv = NULL;
- dev->agp_buffer_map = NULL;
-
- if (full_cleanup) {
- dev_priv->mmio = NULL;
- dev_priv->status = NULL;
- dev_priv->used_new_dma_init = 0;
- }
-
- memset(&dev_priv->prim, 0, sizeof(dev_priv->prim));
- dev_priv->warp_pipe = 0;
- memset(dev_priv->warp_pipe_phys, 0,
- sizeof(dev_priv->warp_pipe_phys));
-
- if (dev_priv->head != NULL)
- mga_freelist_cleanup(dev);
- }
-
- return err;
-}
-
-int mga_dma_init(struct drm_device *dev, void *data,
- struct drm_file *file_priv)
-{
- drm_mga_init_t *init = data;
- int err;
-
- LOCK_TEST_WITH_RETURN(dev, file_priv);
-
- switch (init->func) {
- case MGA_INIT_DMA:
- err = mga_do_init_dma(dev, init);
- if (err)
- (void)mga_do_cleanup_dma(dev, FULL_CLEANUP);
- return err;
- case MGA_CLEANUP_DMA:
- return mga_do_cleanup_dma(dev, FULL_CLEANUP);
- }
-
- return -EINVAL;
-}
-
-/* ================================================================
- * Primary DMA stream management
- */
-
-int mga_dma_flush(struct drm_device *dev, void *data,
- struct drm_file *file_priv)
-{
- drm_mga_private_t *dev_priv = (drm_mga_private_t *) dev->dev_private;
- struct drm_lock *lock = data;
-
- LOCK_TEST_WITH_RETURN(dev, file_priv);
-
- DRM_DEBUG("%s%s%s\n",
- (lock->flags & _DRM_LOCK_FLUSH) ? "flush, " : "",
- (lock->flags & _DRM_LOCK_FLUSH_ALL) ? "flush all, " : "",
- (lock->flags & _DRM_LOCK_QUIESCENT) ? "idle, " : "");
-
- WRAP_WAIT_WITH_RETURN(dev_priv);
-
- if (lock->flags & (_DRM_LOCK_FLUSH | _DRM_LOCK_FLUSH_ALL))
- mga_do_dma_flush(dev_priv);
-
- if (lock->flags & _DRM_LOCK_QUIESCENT) {
-#if MGA_DMA_DEBUG
- int ret = mga_do_wait_for_idle(dev_priv);
- if (ret < 0)
- DRM_INFO("-EBUSY\n");
- return ret;
-#else
- return mga_do_wait_for_idle(dev_priv);
-#endif
- } else {
- return 0;
- }
-}
-
-int mga_dma_reset(struct drm_device *dev, void *data,
- struct drm_file *file_priv)
-{
- drm_mga_private_t *dev_priv = (drm_mga_private_t *) dev->dev_private;
-
- LOCK_TEST_WITH_RETURN(dev, file_priv);
-
- return mga_do_dma_reset(dev_priv);
-}
-
-/* ================================================================
- * DMA buffer management
- */
-
-static int mga_dma_get_buffers(struct drm_device *dev,
- struct drm_file *file_priv, struct drm_dma *d)
-{
- struct drm_buf *buf;
- int i;
-
- for (i = d->granted_count; i < d->request_count; i++) {
- buf = mga_freelist_get(dev);
- if (!buf)
- return -EAGAIN;
-
- buf->file_priv = file_priv;
-
- if (copy_to_user(&d->request_indices[i],
- &buf->idx, sizeof(buf->idx)))
- return -EFAULT;
- if (copy_to_user(&d->request_sizes[i],
- &buf->total, sizeof(buf->total)))
- return -EFAULT;
-
- d->granted_count++;
- }
- return 0;
-}
-
-int mga_dma_buffers(struct drm_device *dev, void *data,
- struct drm_file *file_priv)
-{
- struct drm_device_dma *dma = dev->dma;
- drm_mga_private_t *dev_priv = (drm_mga_private_t *) dev->dev_private;
- struct drm_dma *d = data;
- int ret = 0;
-
- LOCK_TEST_WITH_RETURN(dev, file_priv);
-
- /* Please don't send us buffers.
- */
- if (d->send_count != 0) {
- DRM_ERROR("Process %d trying to send %d buffers via drmDMA\n",
- task_pid_nr(current), d->send_count);
- return -EINVAL;
- }
-
- /* We'll send you buffers.
- */
- if (d->request_count < 0 || d->request_count > dma->buf_count) {
- DRM_ERROR("Process %d trying to get %d buffers (of %d max)\n",
- task_pid_nr(current), d->request_count,
- dma->buf_count);
- return -EINVAL;
- }
-
- WRAP_TEST_WITH_RETURN(dev_priv);
-
- d->granted_count = 0;
-
- if (d->request_count)
- ret = mga_dma_get_buffers(dev, file_priv, d);
-
- return ret;
-}
-
-/*
- * Called just before the module is unloaded.
- */
-void mga_driver_unload(struct drm_device *dev)
-{
- kfree(dev->dev_private);
- dev->dev_private = NULL;
-}
-
-/*
- * Called when the last opener of the device is closed.
- */
-void mga_driver_lastclose(struct drm_device *dev)
-{
- mga_do_cleanup_dma(dev, FULL_CLEANUP);
-}
-
-int mga_driver_dma_quiescent(struct drm_device *dev)
-{
- drm_mga_private_t *dev_priv = dev->dev_private;
- return mga_do_wait_for_idle(dev_priv);
-}
diff --git a/drivers/gpu/drm/mga/mga_drv.c b/drivers/gpu/drm/mga/mga_drv.c
deleted file mode 100644
index 71128e6f6ae9..000000000000
--- a/drivers/gpu/drm/mga/mga_drv.c
+++ /dev/null
@@ -1,104 +0,0 @@
-/* mga_drv.c -- Matrox G200/G400 driver -*- linux-c -*-
- * Created: Mon Dec 13 01:56:22 1999 by jhartmann@precisioninsight.com
- *
- * Copyright 1999 Precision Insight, Inc., Cedar Park, Texas.
- * Copyright 2000 VA Linux Systems, Inc., Sunnyvale, California.
- * All Rights Reserved.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice (including the next
- * paragraph) shall be included in all copies or substantial portions of the
- * Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * VA LINUX SYSTEMS AND/OR ITS SUPPLIERS BE LIABLE FOR ANY CLAIM, DAMAGES OR
- * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
- * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
- * OTHER DEALINGS IN THE SOFTWARE.
- *
- * Authors:
- * Rickard E. (Rik) Faith <faith@valinux.com>
- * Gareth Hughes <gareth@valinux.com>
- */
-
-#include <linux/module.h>
-
-#include <drm/drm_drv.h>
-#include <drm/drm_pciids.h>
-
-#include "mga_drv.h"
-
-static struct pci_device_id pciidlist[] = {
- mga_PCI_IDS
-};
-
-static const struct file_operations mga_driver_fops = {
- .owner = THIS_MODULE,
- .open = drm_open,
- .release = drm_release,
- .unlocked_ioctl = drm_ioctl,
- .mmap = drm_legacy_mmap,
- .poll = drm_poll,
-#ifdef CONFIG_COMPAT
- .compat_ioctl = mga_compat_ioctl,
-#endif
- .llseek = noop_llseek,
-};
-
-static struct drm_driver driver = {
- .driver_features =
- DRIVER_USE_AGP | DRIVER_PCI_DMA | DRIVER_LEGACY |
- DRIVER_HAVE_DMA | DRIVER_HAVE_IRQ,
- .dev_priv_size = sizeof(drm_mga_buf_priv_t),
- .load = mga_driver_load,
- .unload = mga_driver_unload,
- .lastclose = mga_driver_lastclose,
- .dma_quiescent = mga_driver_dma_quiescent,
- .get_vblank_counter = mga_get_vblank_counter,
- .enable_vblank = mga_enable_vblank,
- .disable_vblank = mga_disable_vblank,
- .irq_preinstall = mga_driver_irq_preinstall,
- .irq_postinstall = mga_driver_irq_postinstall,
- .irq_uninstall = mga_driver_irq_uninstall,
- .irq_handler = mga_driver_irq_handler,
- .ioctls = mga_ioctls,
- .dma_ioctl = mga_dma_buffers,
- .fops = &mga_driver_fops,
- .name = DRIVER_NAME,
- .desc = DRIVER_DESC,
- .date = DRIVER_DATE,
- .major = DRIVER_MAJOR,
- .minor = DRIVER_MINOR,
- .patchlevel = DRIVER_PATCHLEVEL,
-};
-
-static struct pci_driver mga_pci_driver = {
- .name = DRIVER_NAME,
- .id_table = pciidlist,
-};
-
-static int __init mga_init(void)
-{
- driver.num_ioctls = mga_max_ioctl;
- return drm_legacy_pci_init(&driver, &mga_pci_driver);
-}
-
-static void __exit mga_exit(void)
-{
- drm_legacy_pci_exit(&driver, &mga_pci_driver);
-}
-
-module_init(mga_init);
-module_exit(mga_exit);
-
-MODULE_AUTHOR(DRIVER_AUTHOR);
-MODULE_DESCRIPTION(DRIVER_DESC);
-MODULE_LICENSE("GPL and additional rights");
diff --git a/drivers/gpu/drm/mga/mga_drv.h b/drivers/gpu/drm/mga/mga_drv.h
deleted file mode 100644
index f61401c70b90..000000000000
--- a/drivers/gpu/drm/mga/mga_drv.h
+++ /dev/null
@@ -1,685 +0,0 @@
-/* mga_drv.h -- Private header for the Matrox G200/G400 driver -*- linux-c -*-
- * Created: Mon Dec 13 01:50:01 1999 by jhartmann@precisioninsight.com
- *
- * Copyright 1999 Precision Insight, Inc., Cedar Park, Texas.
- * Copyright 2000 VA Linux Systems, Inc., Sunnyvale, California.
- * All rights reserved.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice (including the next
- * paragraph) shall be included in all copies or substantial portions of the
- * Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * VA LINUX SYSTEMS AND/OR ITS SUPPLIERS BE LIABLE FOR ANY CLAIM, DAMAGES OR
- * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
- * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
- * OTHER DEALINGS IN THE SOFTWARE.
- *
- * Authors:
- * Gareth Hughes <gareth@valinux.com>
- */
-
-#ifndef __MGA_DRV_H__
-#define __MGA_DRV_H__
-
-#include <linux/irqreturn.h>
-#include <linux/pci.h>
-#include <linux/slab.h>
-
-#include <drm/drm_device.h>
-#include <drm/drm_file.h>
-#include <drm/drm_ioctl.h>
-#include <drm/drm_legacy.h>
-#include <drm/drm_print.h>
-#include <drm/drm_sarea.h>
-#include <drm/drm_vblank.h>
-#include <drm/mga_drm.h>
-
-/* General customization:
- */
-
-#define DRIVER_AUTHOR "Gareth Hughes, VA Linux Systems Inc."
-
-#define DRIVER_NAME "mga"
-#define DRIVER_DESC "Matrox G200/G400"
-#define DRIVER_DATE "20051102"
-
-#define DRIVER_MAJOR 3
-#define DRIVER_MINOR 2
-#define DRIVER_PATCHLEVEL 1
-
-typedef struct drm_mga_primary_buffer {
- u8 *start;
- u8 *end;
- int size;
-
- u32 tail;
- int space;
- volatile long wrapped;
-
- volatile u32 *status;
-
- u32 last_flush;
- u32 last_wrap;
-
- u32 high_mark;
-} drm_mga_primary_buffer_t;
-
-typedef struct drm_mga_freelist {
- struct drm_mga_freelist *next;
- struct drm_mga_freelist *prev;
- drm_mga_age_t age;
- struct drm_buf *buf;
-} drm_mga_freelist_t;
-
-typedef struct {
- drm_mga_freelist_t *list_entry;
- int discard;
- int dispatched;
-} drm_mga_buf_priv_t;
-
-typedef struct drm_mga_private {
- drm_mga_primary_buffer_t prim;
- drm_mga_sarea_t *sarea_priv;
-
- drm_mga_freelist_t *head;
- drm_mga_freelist_t *tail;
-
- unsigned int warp_pipe;
- unsigned long warp_pipe_phys[MGA_MAX_WARP_PIPES];
-
- int chipset;
- int usec_timeout;
-
- /**
- * If set, the new DMA initialization sequence was used. This is
- * primarilly used to select how the driver should uninitialized its
- * internal DMA structures.
- */
- int used_new_dma_init;
-
- /**
- * If AGP memory is used for DMA buffers, this will be the value
- * \c MGA_PAGPXFER. Otherwise, it will be zero (for a PCI transfer).
- */
- u32 dma_access;
-
- /**
- * If AGP memory is used for DMA buffers, this will be the value
- * \c MGA_WAGP_ENABLE. Otherwise, it will be zero (for a PCI
- * transfer).
- */
- u32 wagp_enable;
-
- /**
- * \name MMIO region parameters.
- *
- * \sa drm_mga_private_t::mmio
- */
- /*@{ */
- resource_size_t mmio_base; /**< Bus address of base of MMIO. */
- resource_size_t mmio_size; /**< Size of the MMIO region. */
- /*@} */
-
- u32 clear_cmd;
- u32 maccess;
-
- atomic_t vbl_received; /**< Number of vblanks received. */
- wait_queue_head_t fence_queue;
- atomic_t last_fence_retired;
- u32 next_fence_to_post;
-
- unsigned int fb_cpp;
- unsigned int front_offset;
- unsigned int front_pitch;
- unsigned int back_offset;
- unsigned int back_pitch;
-
- unsigned int depth_cpp;
- unsigned int depth_offset;
- unsigned int depth_pitch;
-
- unsigned int texture_offset;
- unsigned int texture_size;
-
- drm_local_map_t *sarea;
- drm_local_map_t *mmio;
- drm_local_map_t *status;
- drm_local_map_t *warp;
- drm_local_map_t *primary;
- drm_local_map_t *agp_textures;
-
- unsigned long agp_handle;
- unsigned int agp_size;
-} drm_mga_private_t;
-
-extern const struct drm_ioctl_desc mga_ioctls[];
-extern int mga_max_ioctl;
-
- /* mga_dma.c */
-extern int mga_dma_bootstrap(struct drm_device *dev, void *data,
- struct drm_file *file_priv);
-extern int mga_dma_init(struct drm_device *dev, void *data,
- struct drm_file *file_priv);
-extern int mga_getparam(struct drm_device *dev, void *data,
- struct drm_file *file_priv);
-extern int mga_dma_flush(struct drm_device *dev, void *data,
- struct drm_file *file_priv);
-extern int mga_dma_reset(struct drm_device *dev, void *data,
- struct drm_file *file_priv);
-extern int mga_dma_buffers(struct drm_device *dev, void *data,
- struct drm_file *file_priv);
-extern int mga_driver_load(struct drm_device *dev, unsigned long flags);
-extern void mga_driver_unload(struct drm_device *dev);
-extern void mga_driver_lastclose(struct drm_device *dev);
-extern int mga_driver_dma_quiescent(struct drm_device *dev);
-
-extern int mga_do_wait_for_idle(drm_mga_private_t *dev_priv);
-
-extern void mga_do_dma_flush(drm_mga_private_t *dev_priv);
-extern void mga_do_dma_wrap_start(drm_mga_private_t *dev_priv);
-extern void mga_do_dma_wrap_end(drm_mga_private_t *dev_priv);
-
-extern int mga_freelist_put(struct drm_device *dev, struct drm_buf *buf);
-
- /* mga_warp.c */
-extern int mga_warp_install_microcode(drm_mga_private_t *dev_priv);
-extern int mga_warp_init(drm_mga_private_t *dev_priv);
-
- /* mga_irq.c */
-extern int mga_enable_vblank(struct drm_device *dev, unsigned int pipe);
-extern void mga_disable_vblank(struct drm_device *dev, unsigned int pipe);
-extern u32 mga_get_vblank_counter(struct drm_device *dev, unsigned int pipe);
-extern void mga_driver_fence_wait(struct drm_device *dev, unsigned int *sequence);
-extern int mga_driver_vblank_wait(struct drm_device *dev, unsigned int *sequence);
-extern irqreturn_t mga_driver_irq_handler(int irq, void *arg);
-extern void mga_driver_irq_preinstall(struct drm_device *dev);
-extern int mga_driver_irq_postinstall(struct drm_device *dev);
-extern void mga_driver_irq_uninstall(struct drm_device *dev);
-extern long mga_compat_ioctl(struct file *filp, unsigned int cmd,
- unsigned long arg);
-
-#define mga_flush_write_combine() wmb()
-
-#define MGA_READ8(reg) \
- readb(((void __iomem *)dev_priv->mmio->handle) + (reg))
-#define MGA_READ(reg) \
- readl(((void __iomem *)dev_priv->mmio->handle) + (reg))
-#define MGA_WRITE8(reg, val) \
- writeb(val, ((void __iomem *)dev_priv->mmio->handle) + (reg))
-#define MGA_WRITE(reg, val) \
- writel(val, ((void __iomem *)dev_priv->mmio->handle) + (reg))
-
-#define DWGREG0 0x1c00
-#define DWGREG0_END 0x1dff
-#define DWGREG1 0x2c00
-#define DWGREG1_END 0x2dff
-
-#define ISREG0(r) (r >= DWGREG0 && r <= DWGREG0_END)
-#define DMAREG0(r) (u8)((r - DWGREG0) >> 2)
-#define DMAREG1(r) (u8)(((r - DWGREG1) >> 2) | 0x80)
-#define DMAREG(r) (ISREG0(r) ? DMAREG0(r) : DMAREG1(r))
-
-/* ================================================================
- * Helper macross...
- */
-
-#define MGA_EMIT_STATE(dev_priv, dirty) \
-do { \
- if ((dirty) & ~MGA_UPLOAD_CLIPRECTS) { \
- if (dev_priv->chipset >= MGA_CARD_TYPE_G400) \
- mga_g400_emit_state(dev_priv); \
- else \
- mga_g200_emit_state(dev_priv); \
- } \
-} while (0)
-
-#define WRAP_TEST_WITH_RETURN(dev_priv) \
-do { \
- if (test_bit(0, &dev_priv->prim.wrapped)) { \
- if (mga_is_idle(dev_priv)) { \
- mga_do_dma_wrap_end(dev_priv); \
- } else if (dev_priv->prim.space < \
- dev_priv->prim.high_mark) { \
- if (MGA_DMA_DEBUG) \
- DRM_INFO("wrap...\n"); \
- return -EBUSY; \
- } \
- } \
-} while (0)
-
-#define WRAP_WAIT_WITH_RETURN(dev_priv) \
-do { \
- if (test_bit(0, &dev_priv->prim.wrapped)) { \
- if (mga_do_wait_for_idle(dev_priv) < 0) { \
- if (MGA_DMA_DEBUG) \
- DRM_INFO("wrap...\n"); \
- return -EBUSY; \
- } \
- mga_do_dma_wrap_end(dev_priv); \
- } \
-} while (0)
-
-/* ================================================================
- * Primary DMA command stream
- */
-
-#define MGA_VERBOSE 0
-
-#define DMA_LOCALS unsigned int write; volatile u8 *prim;
-
-#define DMA_BLOCK_SIZE (5 * sizeof(u32))
-
-#define BEGIN_DMA(n) \
-do { \
- if (MGA_VERBOSE) { \
- DRM_INFO("BEGIN_DMA(%d)\n", (n)); \
- DRM_INFO(" space=0x%x req=0x%zx\n", \
- dev_priv->prim.space, (n) * DMA_BLOCK_SIZE); \
- } \
- prim = dev_priv->prim.start; \
- write = dev_priv->prim.tail; \
-} while (0)
-
-#define BEGIN_DMA_WRAP() \
-do { \
- if (MGA_VERBOSE) { \
- DRM_INFO("BEGIN_DMA()\n"); \
- DRM_INFO(" space=0x%x\n", dev_priv->prim.space); \
- } \
- prim = dev_priv->prim.start; \
- write = dev_priv->prim.tail; \
-} while (0)
-
-#define ADVANCE_DMA() \
-do { \
- dev_priv->prim.tail = write; \
- if (MGA_VERBOSE) \
- DRM_INFO("ADVANCE_DMA() tail=0x%05x sp=0x%x\n", \
- write, dev_priv->prim.space); \
-} while (0)
-
-#define FLUSH_DMA() \
-do { \
- if (0) { \
- DRM_INFO("\n"); \
- DRM_INFO(" tail=0x%06x head=0x%06lx\n", \
- dev_priv->prim.tail, \
- (unsigned long)(MGA_READ(MGA_PRIMADDRESS) - \
- dev_priv->primary->offset)); \
- } \
- if (!test_bit(0, &dev_priv->prim.wrapped)) { \
- if (dev_priv->prim.space < dev_priv->prim.high_mark) \
- mga_do_dma_wrap_start(dev_priv); \
- else \
- mga_do_dma_flush(dev_priv); \
- } \
-} while (0)
-
-/* Never use this, always use DMA_BLOCK(...) for primary DMA output.
- */
-#define DMA_WRITE(offset, val) \
-do { \
- if (MGA_VERBOSE) \
- DRM_INFO(" DMA_WRITE( 0x%08x ) at 0x%04zx\n", \
- (u32)(val), write + (offset) * sizeof(u32)); \
- *(volatile u32 *)(prim + write + (offset) * sizeof(u32)) = val; \
-} while (0)
-
-#define DMA_BLOCK(reg0, val0, reg1, val1, reg2, val2, reg3, val3) \
-do { \
- DMA_WRITE(0, ((DMAREG(reg0) << 0) | \
- (DMAREG(reg1) << 8) | \
- (DMAREG(reg2) << 16) | \
- (DMAREG(reg3) << 24))); \
- DMA_WRITE(1, val0); \
- DMA_WRITE(2, val1); \
- DMA_WRITE(3, val2); \
- DMA_WRITE(4, val3); \
- write += DMA_BLOCK_SIZE; \
-} while (0)
-
-/* Buffer aging via primary DMA stream head pointer.
- */
-
-#define SET_AGE(age, h, w) \
-do { \
- (age)->head = h; \
- (age)->wrap = w; \
-} while (0)
-
-#define TEST_AGE(age, h, w) ((age)->wrap < w || \
- ((age)->wrap == w && \
- (age)->head < h))
-
-#define AGE_BUFFER(buf_priv) \
-do { \
- drm_mga_freelist_t *entry = (buf_priv)->list_entry; \
- if ((buf_priv)->dispatched) { \
- entry->age.head = (dev_priv->prim.tail + \
- dev_priv->primary->offset); \
- entry->age.wrap = dev_priv->sarea_priv->last_wrap; \
- } else { \
- entry->age.head = 0; \
- entry->age.wrap = 0; \
- } \
-} while (0)
-
-#define MGA_ENGINE_IDLE_MASK (MGA_SOFTRAPEN | \
- MGA_DWGENGSTS | \
- MGA_ENDPRDMASTS)
-#define MGA_DMA_IDLE_MASK (MGA_SOFTRAPEN | \
- MGA_ENDPRDMASTS)
-
-#define MGA_DMA_DEBUG 0
-
-/* A reduced set of the mga registers.
- */
-#define MGA_CRTC_INDEX 0x1fd4
-#define MGA_CRTC_DATA 0x1fd5
-
-/* CRTC11 */
-#define MGA_VINTCLR (1 << 4)
-#define MGA_VINTEN (1 << 5)
-
-#define MGA_ALPHACTRL 0x2c7c
-#define MGA_AR0 0x1c60
-#define MGA_AR1 0x1c64
-#define MGA_AR2 0x1c68
-#define MGA_AR3 0x1c6c
-#define MGA_AR4 0x1c70
-#define MGA_AR5 0x1c74
-#define MGA_AR6 0x1c78
-
-#define MGA_CXBNDRY 0x1c80
-#define MGA_CXLEFT 0x1ca0
-#define MGA_CXRIGHT 0x1ca4
-
-#define MGA_DMAPAD 0x1c54
-#define MGA_DSTORG 0x2cb8
-#define MGA_DWGCTL 0x1c00
-# define MGA_OPCOD_MASK (15 << 0)
-# define MGA_OPCOD_TRAP (4 << 0)
-# define MGA_OPCOD_TEXTURE_TRAP (6 << 0)
-# define MGA_OPCOD_BITBLT (8 << 0)
-# define MGA_OPCOD_ILOAD (9 << 0)
-# define MGA_ATYPE_MASK (7 << 4)
-# define MGA_ATYPE_RPL (0 << 4)
-# define MGA_ATYPE_RSTR (1 << 4)
-# define MGA_ATYPE_ZI (3 << 4)
-# define MGA_ATYPE_BLK (4 << 4)
-# define MGA_ATYPE_I (7 << 4)
-# define MGA_LINEAR (1 << 7)
-# define MGA_ZMODE_MASK (7 << 8)
-# define MGA_ZMODE_NOZCMP (0 << 8)
-# define MGA_ZMODE_ZE (2 << 8)
-# define MGA_ZMODE_ZNE (3 << 8)
-# define MGA_ZMODE_ZLT (4 << 8)
-# define MGA_ZMODE_ZLTE (5 << 8)
-# define MGA_ZMODE_ZGT (6 << 8)
-# define MGA_ZMODE_ZGTE (7 << 8)
-# define MGA_SOLID (1 << 11)
-# define MGA_ARZERO (1 << 12)
-# define MGA_SGNZERO (1 << 13)
-# define MGA_SHIFTZERO (1 << 14)
-# define MGA_BOP_MASK (15 << 16)
-# define MGA_BOP_ZERO (0 << 16)
-# define MGA_BOP_DST (10 << 16)
-# define MGA_BOP_SRC (12 << 16)
-# define MGA_BOP_ONE (15 << 16)
-# define MGA_TRANS_SHIFT 20
-# define MGA_TRANS_MASK (15 << 20)
-# define MGA_BLTMOD_MASK (15 << 25)
-# define MGA_BLTMOD_BMONOLEF (0 << 25)
-# define MGA_BLTMOD_BMONOWF (4 << 25)
-# define MGA_BLTMOD_PLAN (1 << 25)
-# define MGA_BLTMOD_BFCOL (2 << 25)
-# define MGA_BLTMOD_BU32BGR (3 << 25)
-# define MGA_BLTMOD_BU32RGB (7 << 25)
-# define MGA_BLTMOD_BU24BGR (11 << 25)
-# define MGA_BLTMOD_BU24RGB (15 << 25)
-# define MGA_PATTERN (1 << 29)
-# define MGA_TRANSC (1 << 30)
-# define MGA_CLIPDIS (1 << 31)
-#define MGA_DWGSYNC 0x2c4c
-
-#define MGA_FCOL 0x1c24
-#define MGA_FIFOSTATUS 0x1e10
-#define MGA_FOGCOL 0x1cf4
-#define MGA_FXBNDRY 0x1c84
-#define MGA_FXLEFT 0x1ca8
-#define MGA_FXRIGHT 0x1cac
-
-#define MGA_ICLEAR 0x1e18
-# define MGA_SOFTRAPICLR (1 << 0)
-# define MGA_VLINEICLR (1 << 5)
-#define MGA_IEN 0x1e1c
-# define MGA_SOFTRAPIEN (1 << 0)
-# define MGA_VLINEIEN (1 << 5)
-
-#define MGA_LEN 0x1c5c
-
-#define MGA_MACCESS 0x1c04
-
-#define MGA_PITCH 0x1c8c
-#define MGA_PLNWT 0x1c1c
-#define MGA_PRIMADDRESS 0x1e58
-# define MGA_DMA_GENERAL (0 << 0)
-# define MGA_DMA_BLIT (1 << 0)
-# define MGA_DMA_VECTOR (2 << 0)
-# define MGA_DMA_VERTEX (3 << 0)
-#define MGA_PRIMEND 0x1e5c
-# define MGA_PRIMNOSTART (1 << 0)
-# define MGA_PAGPXFER (1 << 1)
-#define MGA_PRIMPTR 0x1e50
-# define MGA_PRIMPTREN0 (1 << 0)
-# define MGA_PRIMPTREN1 (1 << 1)
-
-#define MGA_RST 0x1e40
-# define MGA_SOFTRESET (1 << 0)
-# define MGA_SOFTEXTRST (1 << 1)
-
-#define MGA_SECADDRESS 0x2c40
-#define MGA_SECEND 0x2c44
-#define MGA_SETUPADDRESS 0x2cd0
-#define MGA_SETUPEND 0x2cd4
-#define MGA_SGN 0x1c58
-#define MGA_SOFTRAP 0x2c48
-#define MGA_SRCORG 0x2cb4
-# define MGA_SRMMAP_MASK (1 << 0)
-# define MGA_SRCMAP_FB (0 << 0)
-# define MGA_SRCMAP_SYSMEM (1 << 0)
-# define MGA_SRCACC_MASK (1 << 1)
-# define MGA_SRCACC_PCI (0 << 1)
-# define MGA_SRCACC_AGP (1 << 1)
-#define MGA_STATUS 0x1e14
-# define MGA_SOFTRAPEN (1 << 0)
-# define MGA_VSYNCPEN (1 << 4)
-# define MGA_VLINEPEN (1 << 5)
-# define MGA_DWGENGSTS (1 << 16)
-# define MGA_ENDPRDMASTS (1 << 17)
-#define MGA_STENCIL 0x2cc8
-#define MGA_STENCILCTL 0x2ccc
-
-#define MGA_TDUALSTAGE0 0x2cf8
-#define MGA_TDUALSTAGE1 0x2cfc
-#define MGA_TEXBORDERCOL 0x2c5c
-#define MGA_TEXCTL 0x2c30
-#define MGA_TEXCTL2 0x2c3c
-# define MGA_DUALTEX (1 << 7)
-# define MGA_G400_TC2_MAGIC (1 << 15)
-# define MGA_MAP1_ENABLE (1 << 31)
-#define MGA_TEXFILTER 0x2c58
-#define MGA_TEXHEIGHT 0x2c2c
-#define MGA_TEXORG 0x2c24
-# define MGA_TEXORGMAP_MASK (1 << 0)
-# define MGA_TEXORGMAP_FB (0 << 0)
-# define MGA_TEXORGMAP_SYSMEM (1 << 0)
-# define MGA_TEXORGACC_MASK (1 << 1)
-# define MGA_TEXORGACC_PCI (0 << 1)
-# define MGA_TEXORGACC_AGP (1 << 1)
-#define MGA_TEXORG1 0x2ca4
-#define MGA_TEXORG2 0x2ca8
-#define MGA_TEXORG3 0x2cac
-#define MGA_TEXORG4 0x2cb0
-#define MGA_TEXTRANS 0x2c34
-#define MGA_TEXTRANSHIGH 0x2c38
-#define MGA_TEXWIDTH 0x2c28
-
-#define MGA_WACCEPTSEQ 0x1dd4
-#define MGA_WCODEADDR 0x1e6c
-#define MGA_WFLAG 0x1dc4
-#define MGA_WFLAG1 0x1de0
-#define MGA_WFLAGNB 0x1e64
-#define MGA_WFLAGNB1 0x1e08
-#define MGA_WGETMSB 0x1dc8
-#define MGA_WIADDR 0x1dc0
-#define MGA_WIADDR2 0x1dd8
-# define MGA_WMODE_SUSPEND (0 << 0)
-# define MGA_WMODE_RESUME (1 << 0)
-# define MGA_WMODE_JUMP (2 << 0)
-# define MGA_WMODE_START (3 << 0)
-# define MGA_WAGP_ENABLE (1 << 2)
-#define MGA_WMISC 0x1e70
-# define MGA_WUCODECACHE_ENABLE (1 << 0)
-# define MGA_WMASTER_ENABLE (1 << 1)
-# define MGA_WCACHEFLUSH_ENABLE (1 << 3)
-#define MGA_WVRTXSZ 0x1dcc
-
-#define MGA_YBOT 0x1c9c
-#define MGA_YDST 0x1c90
-#define MGA_YDSTLEN 0x1c88
-#define MGA_YDSTORG 0x1c94
-#define MGA_YTOP 0x1c98
-
-#define MGA_ZORG 0x1c0c
-
-/* This finishes the current batch of commands
- */
-#define MGA_EXEC 0x0100
-
-/* AGP PLL encoding (for G200 only).
- */
-#define MGA_AGP_PLL 0x1e4c
-# define MGA_AGP2XPLL_DISABLE (0 << 0)
-# define MGA_AGP2XPLL_ENABLE (1 << 0)
-
-/* Warp registers
- */
-#define MGA_WR0 0x2d00
-#define MGA_WR1 0x2d04
-#define MGA_WR2 0x2d08
-#define MGA_WR3 0x2d0c
-#define MGA_WR4 0x2d10
-#define MGA_WR5 0x2d14
-#define MGA_WR6 0x2d18
-#define MGA_WR7 0x2d1c
-#define MGA_WR8 0x2d20
-#define MGA_WR9 0x2d24
-#define MGA_WR10 0x2d28
-#define MGA_WR11 0x2d2c
-#define MGA_WR12 0x2d30
-#define MGA_WR13 0x2d34
-#define MGA_WR14 0x2d38
-#define MGA_WR15 0x2d3c
-#define MGA_WR16 0x2d40
-#define MGA_WR17 0x2d44
-#define MGA_WR18 0x2d48
-#define MGA_WR19 0x2d4c
-#define MGA_WR20 0x2d50
-#define MGA_WR21 0x2d54
-#define MGA_WR22 0x2d58
-#define MGA_WR23 0x2d5c
-#define MGA_WR24 0x2d60
-#define MGA_WR25 0x2d64
-#define MGA_WR26 0x2d68
-#define MGA_WR27 0x2d6c
-#define MGA_WR28 0x2d70
-#define MGA_WR29 0x2d74
-#define MGA_WR30 0x2d78
-#define MGA_WR31 0x2d7c
-#define MGA_WR32 0x2d80
-#define MGA_WR33 0x2d84
-#define MGA_WR34 0x2d88
-#define MGA_WR35 0x2d8c
-#define MGA_WR36 0x2d90
-#define MGA_WR37 0x2d94
-#define MGA_WR38 0x2d98
-#define MGA_WR39 0x2d9c
-#define MGA_WR40 0x2da0
-#define MGA_WR41 0x2da4
-#define MGA_WR42 0x2da8
-#define MGA_WR43 0x2dac
-#define MGA_WR44 0x2db0
-#define MGA_WR45 0x2db4
-#define MGA_WR46 0x2db8
-#define MGA_WR47 0x2dbc
-#define MGA_WR48 0x2dc0
-#define MGA_WR49 0x2dc4
-#define MGA_WR50 0x2dc8
-#define MGA_WR51 0x2dcc
-#define MGA_WR52 0x2dd0
-#define MGA_WR53 0x2dd4
-#define MGA_WR54 0x2dd8
-#define MGA_WR55 0x2ddc
-#define MGA_WR56 0x2de0
-#define MGA_WR57 0x2de4
-#define MGA_WR58 0x2de8
-#define MGA_WR59 0x2dec
-#define MGA_WR60 0x2df0
-#define MGA_WR61 0x2df4
-#define MGA_WR62 0x2df8
-#define MGA_WR63 0x2dfc
-# define MGA_G400_WR_MAGIC (1 << 6)
-# define MGA_G400_WR56_MAGIC 0x46480000 /* 12800.0f */
-
-#define MGA_ILOAD_ALIGN 64
-#define MGA_ILOAD_MASK (MGA_ILOAD_ALIGN - 1)
-
-#define MGA_DWGCTL_FLUSH (MGA_OPCOD_TEXTURE_TRAP | \
- MGA_ATYPE_I | \
- MGA_ZMODE_NOZCMP | \
- MGA_ARZERO | \
- MGA_SGNZERO | \
- MGA_BOP_SRC | \
- (15 << MGA_TRANS_SHIFT))
-
-#define MGA_DWGCTL_CLEAR (MGA_OPCOD_TRAP | \
- MGA_ZMODE_NOZCMP | \
- MGA_SOLID | \
- MGA_ARZERO | \
- MGA_SGNZERO | \
- MGA_SHIFTZERO | \
- MGA_BOP_SRC | \
- (0 << MGA_TRANS_SHIFT) | \
- MGA_BLTMOD_BMONOLEF | \
- MGA_TRANSC | \
- MGA_CLIPDIS)
-
-#define MGA_DWGCTL_COPY (MGA_OPCOD_BITBLT | \
- MGA_ATYPE_RPL | \
- MGA_SGNZERO | \
- MGA_SHIFTZERO | \
- MGA_BOP_SRC | \
- (0 << MGA_TRANS_SHIFT) | \
- MGA_BLTMOD_BFCOL | \
- MGA_CLIPDIS)
-
-/* Simple idle test.
- */
-static __inline__ int mga_is_idle(drm_mga_private_t *dev_priv)
-{
- u32 status = MGA_READ(MGA_STATUS) & MGA_ENGINE_IDLE_MASK;
- return (status == MGA_ENDPRDMASTS);
-}
-
-#endif
diff --git a/drivers/gpu/drm/mga/mga_ioc32.c b/drivers/gpu/drm/mga/mga_ioc32.c
deleted file mode 100644
index 894472921c30..000000000000
--- a/drivers/gpu/drm/mga/mga_ioc32.c
+++ /dev/null
@@ -1,197 +0,0 @@
-/*
- * \file mga_ioc32.c
- *
- * 32-bit ioctl compatibility routines for the MGA DRM.
- *
- * \author Dave Airlie <airlied@linux.ie> with code from patches by Egbert Eich
- *
- *
- * Copyright (C) Paul Mackerras 2005
- * Copyright (C) Egbert Eich 2003,2004
- * Copyright (C) Dave Airlie 2005
- * All Rights Reserved.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice (including the next
- * paragraph) shall be included in all copies or substantial portions of the
- * Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * THE AUTHOR BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY,
- * WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
- * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS
- * IN THE SOFTWARE.
- */
-
-#include <linux/compat.h>
-
-#include "mga_drv.h"
-
-typedef struct drm32_mga_init {
- int func;
- u32 sarea_priv_offset;
- struct_group(always32bit,
- int chipset;
- int sgram;
- unsigned int maccess;
- unsigned int fb_cpp;
- unsigned int front_offset, front_pitch;
- unsigned int back_offset, back_pitch;
- unsigned int depth_cpp;
- unsigned int depth_offset, depth_pitch;
- unsigned int texture_offset[MGA_NR_TEX_HEAPS];
- unsigned int texture_size[MGA_NR_TEX_HEAPS];
- );
- u32 fb_offset;
- u32 mmio_offset;
- u32 status_offset;
- u32 warp_offset;
- u32 primary_offset;
- u32 buffers_offset;
-} drm_mga_init32_t;
-
-static int compat_mga_init(struct file *file, unsigned int cmd,
- unsigned long arg)
-{
- drm_mga_init32_t init32;
- drm_mga_init_t init;
-
- if (copy_from_user(&init32, (void __user *)arg, sizeof(init32)))
- return -EFAULT;
-
- init.func = init32.func;
- init.sarea_priv_offset = init32.sarea_priv_offset;
- memcpy(&init.always32bit, &init32.always32bit,
- sizeof(init32.always32bit));
- init.fb_offset = init32.fb_offset;
- init.mmio_offset = init32.mmio_offset;
- init.status_offset = init32.status_offset;
- init.warp_offset = init32.warp_offset;
- init.primary_offset = init32.primary_offset;
- init.buffers_offset = init32.buffers_offset;
-
- return drm_ioctl_kernel(file, mga_dma_init, &init,
- DRM_AUTH|DRM_MASTER|DRM_ROOT_ONLY);
-}
-
-typedef struct drm_mga_getparam32 {
- int param;
- u32 value;
-} drm_mga_getparam32_t;
-
-static int compat_mga_getparam(struct file *file, unsigned int cmd,
- unsigned long arg)
-{
- drm_mga_getparam32_t getparam32;
- drm_mga_getparam_t getparam;
-
- if (copy_from_user(&getparam32, (void __user *)arg, sizeof(getparam32)))
- return -EFAULT;
-
- getparam.param = getparam32.param;
- getparam.value = compat_ptr(getparam32.value);
- return drm_ioctl_kernel(file, mga_getparam, &getparam, DRM_AUTH);
-}
-
-typedef struct drm_mga_drm_bootstrap32 {
- u32 texture_handle;
- u32 texture_size;
- u32 primary_size;
- u32 secondary_bin_count;
- u32 secondary_bin_size;
- u32 agp_mode;
- u8 agp_size;
-} drm_mga_dma_bootstrap32_t;
-
-static int compat_mga_dma_bootstrap(struct file *file, unsigned int cmd,
- unsigned long arg)
-{
- drm_mga_dma_bootstrap32_t dma_bootstrap32;
- drm_mga_dma_bootstrap_t dma_bootstrap;
- int err;
-
- if (copy_from_user(&dma_bootstrap32, (void __user *)arg,
- sizeof(dma_bootstrap32)))
- return -EFAULT;
-
- dma_bootstrap.texture_handle = dma_bootstrap32.texture_handle;
- dma_bootstrap.texture_size = dma_bootstrap32.texture_size;
- dma_bootstrap.primary_size = dma_bootstrap32.primary_size;
- dma_bootstrap.secondary_bin_count = dma_bootstrap32.secondary_bin_count;
- dma_bootstrap.secondary_bin_size = dma_bootstrap32.secondary_bin_size;
- dma_bootstrap.agp_mode = dma_bootstrap32.agp_mode;
- dma_bootstrap.agp_size = dma_bootstrap32.agp_size;
-
- err = drm_ioctl_kernel(file, mga_dma_bootstrap, &dma_bootstrap,
- DRM_AUTH|DRM_MASTER|DRM_ROOT_ONLY);
- if (err)
- return err;
-
- dma_bootstrap32.texture_handle = dma_bootstrap.texture_handle;
- dma_bootstrap32.texture_size = dma_bootstrap.texture_size;
- dma_bootstrap32.primary_size = dma_bootstrap.primary_size;
- dma_bootstrap32.secondary_bin_count = dma_bootstrap.secondary_bin_count;
- dma_bootstrap32.secondary_bin_size = dma_bootstrap.secondary_bin_size;
- dma_bootstrap32.agp_mode = dma_bootstrap.agp_mode;
- dma_bootstrap32.agp_size = dma_bootstrap.agp_size;
- if (copy_to_user((void __user *)arg, &dma_bootstrap32,
- sizeof(dma_bootstrap32)))
- return -EFAULT;
-
- return 0;
-}
-
-static struct {
- drm_ioctl_compat_t *fn;
- char *name;
-} mga_compat_ioctls[] = {
-#define DRM_IOCTL32_DEF(n, f)[DRM_##n] = {.fn = f, .name = #n}
- DRM_IOCTL32_DEF(MGA_INIT, compat_mga_init),
- DRM_IOCTL32_DEF(MGA_GETPARAM, compat_mga_getparam),
- DRM_IOCTL32_DEF(MGA_DMA_BOOTSTRAP, compat_mga_dma_bootstrap),
-};
-
-/**
- * mga_compat_ioctl - Called whenever a 32-bit process running under
- * a 64-bit kernel performs an ioctl on /dev/dri/card<n>.
- *
- * @filp: file pointer.
- * @cmd: command.
- * @arg: user argument.
- * return: zero on success or negative number on failure.
- */
-long mga_compat_ioctl(struct file *filp, unsigned int cmd, unsigned long arg)
-{
- unsigned int nr = DRM_IOCTL_NR(cmd);
- struct drm_file *file_priv = filp->private_data;
- drm_ioctl_compat_t *fn = NULL;
- int ret;
-
- if (nr < DRM_COMMAND_BASE)
- return drm_compat_ioctl(filp, cmd, arg);
-
- if (nr >= DRM_COMMAND_BASE + ARRAY_SIZE(mga_compat_ioctls))
- return drm_ioctl(filp, cmd, arg);
-
- fn = mga_compat_ioctls[nr - DRM_COMMAND_BASE].fn;
- if (!fn)
- return drm_ioctl(filp, cmd, arg);
-
- DRM_DEBUG("pid=%d, dev=0x%lx, auth=%d, %s\n",
- task_pid_nr(current),
- (long)old_encode_dev(file_priv->minor->kdev->devt),
- file_priv->authenticated,
- mga_compat_ioctls[nr - DRM_COMMAND_BASE].name);
- ret = (*fn) (filp, cmd, arg);
- if (ret)
- DRM_DEBUG("ret = %d\n", ret);
- return ret;
-}
diff --git a/drivers/gpu/drm/mga/mga_irq.c b/drivers/gpu/drm/mga/mga_irq.c
deleted file mode 100644
index a7e6ffc80a78..000000000000
--- a/drivers/gpu/drm/mga/mga_irq.c
+++ /dev/null
@@ -1,169 +0,0 @@
-/* mga_irq.c -- IRQ handling for radeon -*- linux-c -*-
- */
-/*
- * Copyright (C) The Weather Channel, Inc. 2002. All Rights Reserved.
- *
- * The Weather Channel (TM) funded Tungsten Graphics to develop the
- * initial release of the Radeon 8500 driver under the XFree86 license.
- * This notice must be preserved.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice (including the next
- * paragraph) shall be included in all copies or substantial portions of the
- * Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * PRECISION INSIGHT AND/OR ITS SUPPLIERS BE LIABLE FOR ANY CLAIM, DAMAGES OR
- * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
- * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
- * DEALINGS IN THE SOFTWARE.
- *
- * Authors:
- * Keith Whitwell <keith@tungstengraphics.com>
- * Eric Anholt <anholt@FreeBSD.org>
- */
-
-#include "mga_drv.h"
-
-u32 mga_get_vblank_counter(struct drm_device *dev, unsigned int pipe)
-{
- const drm_mga_private_t *const dev_priv =
- (drm_mga_private_t *) dev->dev_private;
-
- if (pipe != 0)
- return 0;
-
- return atomic_read(&dev_priv->vbl_received);
-}
-
-
-irqreturn_t mga_driver_irq_handler(int irq, void *arg)
-{
- struct drm_device *dev = (struct drm_device *) arg;
- drm_mga_private_t *dev_priv = (drm_mga_private_t *) dev->dev_private;
- int status;
- int handled = 0;
-
- status = MGA_READ(MGA_STATUS);
-
- /* VBLANK interrupt */
- if (status & MGA_VLINEPEN) {
- MGA_WRITE(MGA_ICLEAR, MGA_VLINEICLR);
- atomic_inc(&dev_priv->vbl_received);
- drm_handle_vblank(dev, 0);
- handled = 1;
- }
-
- /* SOFTRAP interrupt */
- if (status & MGA_SOFTRAPEN) {
- const u32 prim_start = MGA_READ(MGA_PRIMADDRESS);
- const u32 prim_end = MGA_READ(MGA_PRIMEND);
-
-
- MGA_WRITE(MGA_ICLEAR, MGA_SOFTRAPICLR);
-
- /* In addition to clearing the interrupt-pending bit, we
- * have to write to MGA_PRIMEND to re-start the DMA operation.
- */
- if ((prim_start & ~0x03) != (prim_end & ~0x03))
- MGA_WRITE(MGA_PRIMEND, prim_end);
-
- atomic_inc(&dev_priv->last_fence_retired);
- wake_up(&dev_priv->fence_queue);
- handled = 1;
- }
-
- if (handled)
- return IRQ_HANDLED;
- return IRQ_NONE;
-}
-
-int mga_enable_vblank(struct drm_device *dev, unsigned int pipe)
-{
- drm_mga_private_t *dev_priv = (drm_mga_private_t *) dev->dev_private;
-
- if (pipe != 0) {
- DRM_ERROR("tried to enable vblank on non-existent crtc %u\n",
- pipe);
- return 0;
- }
-
- MGA_WRITE(MGA_IEN, MGA_VLINEIEN | MGA_SOFTRAPEN);
- return 0;
-}
-
-
-void mga_disable_vblank(struct drm_device *dev, unsigned int pipe)
-{
- if (pipe != 0) {
- DRM_ERROR("tried to disable vblank on non-existent crtc %u\n",
- pipe);
- }
-
- /* Do *NOT* disable the vertical refresh interrupt. MGA doesn't have
- * a nice hardware counter that tracks the number of refreshes when
- * the interrupt is disabled, and the kernel doesn't know the refresh
- * rate to calculate an estimate.
- */
- /* MGA_WRITE(MGA_IEN, MGA_VLINEIEN | MGA_SOFTRAPEN); */
-}
-
-void mga_driver_fence_wait(struct drm_device *dev, unsigned int *sequence)
-{
- drm_mga_private_t *dev_priv = (drm_mga_private_t *) dev->dev_private;
- unsigned int cur_fence;
-
- /* Assume that the user has missed the current sequence number
- * by about a day rather than she wants to wait for years
- * using fences.
- */
- wait_event_timeout(dev_priv->fence_queue,
- (((cur_fence = atomic_read(&dev_priv->last_fence_retired))
- - *sequence) <= (1 << 23)),
- msecs_to_jiffies(3000));
-
- *sequence = cur_fence;
-}
-
-void mga_driver_irq_preinstall(struct drm_device *dev)
-{
- drm_mga_private_t *dev_priv = (drm_mga_private_t *) dev->dev_private;
-
- /* Disable *all* interrupts */
- MGA_WRITE(MGA_IEN, 0);
- /* Clear bits if they're already high */
- MGA_WRITE(MGA_ICLEAR, ~0);
-}
-
-int mga_driver_irq_postinstall(struct drm_device *dev)
-{
- drm_mga_private_t *dev_priv = (drm_mga_private_t *) dev->dev_private;
-
- init_waitqueue_head(&dev_priv->fence_queue);
-
- /* Turn on soft trap interrupt. Vertical blank interrupts are enabled
- * in mga_enable_vblank.
- */
- MGA_WRITE(MGA_IEN, MGA_SOFTRAPEN);
- return 0;
-}
-
-void mga_driver_irq_uninstall(struct drm_device *dev)
-{
- drm_mga_private_t *dev_priv = (drm_mga_private_t *) dev->dev_private;
- if (!dev_priv)
- return;
-
- /* Disable *all* interrupts */
- MGA_WRITE(MGA_IEN, 0);
-
- dev->irq_enabled = false;
-}
diff --git a/drivers/gpu/drm/mga/mga_state.c b/drivers/gpu/drm/mga/mga_state.c
deleted file mode 100644
index 5b7247b58451..000000000000
--- a/drivers/gpu/drm/mga/mga_state.c
+++ /dev/null
@@ -1,1099 +0,0 @@
-/* mga_state.c -- State support for MGA G200/G400 -*- linux-c -*-
- * Created: Thu Jan 27 02:53:43 2000 by jhartmann@precisioninsight.com
- *
- * Copyright 1999 Precision Insight, Inc., Cedar Park, Texas.
- * Copyright 2000 VA Linux Systems, Inc., Sunnyvale, California.
- * All Rights Reserved.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice (including the next
- * paragraph) shall be included in all copies or substantial portions of the
- * Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * VA LINUX SYSTEMS AND/OR ITS SUPPLIERS BE LIABLE FOR ANY CLAIM, DAMAGES OR
- * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
- * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
- * OTHER DEALINGS IN THE SOFTWARE.
- *
- * Authors:
- * Jeff Hartmann <jhartmann@valinux.com>
- * Keith Whitwell <keith@tungstengraphics.com>
- *
- * Rewritten by:
- * Gareth Hughes <gareth@valinux.com>
- */
-
-#include "mga_drv.h"
-
-/* ================================================================
- * DMA hardware state programming functions
- */
-
-static void mga_emit_clip_rect(drm_mga_private_t *dev_priv,
- struct drm_clip_rect *box)
-{
- drm_mga_sarea_t *sarea_priv = dev_priv->sarea_priv;
- drm_mga_context_regs_t *ctx = &sarea_priv->context_state;
- unsigned int pitch = dev_priv->front_pitch;
- DMA_LOCALS;
-
- BEGIN_DMA(2);
-
- /* Force reset of DWGCTL on G400 (eliminates clip disable bit).
- */
- if (dev_priv->chipset >= MGA_CARD_TYPE_G400) {
- DMA_BLOCK(MGA_DWGCTL, ctx->dwgctl,
- MGA_LEN + MGA_EXEC, 0x80000000,
- MGA_DWGCTL, ctx->dwgctl,
- MGA_LEN + MGA_EXEC, 0x80000000);
- }
- DMA_BLOCK(MGA_DMAPAD, 0x00000000,
- MGA_CXBNDRY, ((box->x2 - 1) << 16) | box->x1,
- MGA_YTOP, box->y1 * pitch, MGA_YBOT, (box->y2 - 1) * pitch);
-
- ADVANCE_DMA();
-}
-
-static __inline__ void mga_g200_emit_context(drm_mga_private_t *dev_priv)
-{
- drm_mga_sarea_t *sarea_priv = dev_priv->sarea_priv;
- drm_mga_context_regs_t *ctx = &sarea_priv->context_state;
- DMA_LOCALS;
-
- BEGIN_DMA(3);
-
- DMA_BLOCK(MGA_DSTORG, ctx->dstorg,
- MGA_MACCESS, ctx->maccess,
- MGA_PLNWT, ctx->plnwt, MGA_DWGCTL, ctx->dwgctl);
-
- DMA_BLOCK(MGA_ALPHACTRL, ctx->alphactrl,
- MGA_FOGCOL, ctx->fogcolor,
- MGA_WFLAG, ctx->wflag, MGA_ZORG, dev_priv->depth_offset);
-
- DMA_BLOCK(MGA_FCOL, ctx->fcol,
- MGA_DMAPAD, 0x00000000,
- MGA_DMAPAD, 0x00000000, MGA_DMAPAD, 0x00000000);
-
- ADVANCE_DMA();
-}
-
-static __inline__ void mga_g400_emit_context(drm_mga_private_t *dev_priv)
-{
- drm_mga_sarea_t *sarea_priv = dev_priv->sarea_priv;
- drm_mga_context_regs_t *ctx = &sarea_priv->context_state;
- DMA_LOCALS;
-
- BEGIN_DMA(4);
-
- DMA_BLOCK(MGA_DSTORG, ctx->dstorg,
- MGA_MACCESS, ctx->maccess,
- MGA_PLNWT, ctx->plnwt, MGA_DWGCTL, ctx->dwgctl);
-
- DMA_BLOCK(MGA_ALPHACTRL, ctx->alphactrl,
- MGA_FOGCOL, ctx->fogcolor,
- MGA_WFLAG, ctx->wflag, MGA_ZORG, dev_priv->depth_offset);
-
- DMA_BLOCK(MGA_WFLAG1, ctx->wflag,
- MGA_TDUALSTAGE0, ctx->tdualstage0,
- MGA_TDUALSTAGE1, ctx->tdualstage1, MGA_FCOL, ctx->fcol);
-
- DMA_BLOCK(MGA_STENCIL, ctx->stencil,
- MGA_STENCILCTL, ctx->stencilctl,
- MGA_DMAPAD, 0x00000000, MGA_DMAPAD, 0x00000000);
-
- ADVANCE_DMA();
-}
-
-static __inline__ void mga_g200_emit_tex0(drm_mga_private_t *dev_priv)
-{
- drm_mga_sarea_t *sarea_priv = dev_priv->sarea_priv;
- drm_mga_texture_regs_t *tex = &sarea_priv->tex_state[0];
- DMA_LOCALS;
-
- BEGIN_DMA(4);
-
- DMA_BLOCK(MGA_TEXCTL2, tex->texctl2,
- MGA_TEXCTL, tex->texctl,
- MGA_TEXFILTER, tex->texfilter,
- MGA_TEXBORDERCOL, tex->texbordercol);
-
- DMA_BLOCK(MGA_TEXORG, tex->texorg,
- MGA_TEXORG1, tex->texorg1,
- MGA_TEXORG2, tex->texorg2, MGA_TEXORG3, tex->texorg3);
-
- DMA_BLOCK(MGA_TEXORG4, tex->texorg4,
- MGA_TEXWIDTH, tex->texwidth,
- MGA_TEXHEIGHT, tex->texheight, MGA_WR24, tex->texwidth);
-
- DMA_BLOCK(MGA_WR34, tex->texheight,
- MGA_TEXTRANS, 0x0000ffff,
- MGA_TEXTRANSHIGH, 0x0000ffff, MGA_DMAPAD, 0x00000000);
-
- ADVANCE_DMA();
-}
-
-static __inline__ void mga_g400_emit_tex0(drm_mga_private_t *dev_priv)
-{
- drm_mga_sarea_t *sarea_priv = dev_priv->sarea_priv;
- drm_mga_texture_regs_t *tex = &sarea_priv->tex_state[0];
- DMA_LOCALS;
-
-/* printk("mga_g400_emit_tex0 %x %x %x\n", tex->texorg, */
-/* tex->texctl, tex->texctl2); */
-
- BEGIN_DMA(6);
-
- DMA_BLOCK(MGA_TEXCTL2, tex->texctl2 | MGA_G400_TC2_MAGIC,
- MGA_TEXCTL, tex->texctl,
- MGA_TEXFILTER, tex->texfilter,
- MGA_TEXBORDERCOL, tex->texbordercol);
-
- DMA_BLOCK(MGA_TEXORG, tex->texorg,
- MGA_TEXORG1, tex->texorg1,
- MGA_TEXORG2, tex->texorg2, MGA_TEXORG3, tex->texorg3);
-
- DMA_BLOCK(MGA_TEXORG4, tex->texorg4,
- MGA_TEXWIDTH, tex->texwidth,
- MGA_TEXHEIGHT, tex->texheight, MGA_WR49, 0x00000000);
-
- DMA_BLOCK(MGA_WR57, 0x00000000,
- MGA_WR53, 0x00000000,
- MGA_WR61, 0x00000000, MGA_WR52, MGA_G400_WR_MAGIC);
-
- DMA_BLOCK(MGA_WR60, MGA_G400_WR_MAGIC,
- MGA_WR54, tex->texwidth | MGA_G400_WR_MAGIC,
- MGA_WR62, tex->texheight | MGA_G400_WR_MAGIC,
- MGA_DMAPAD, 0x00000000);
-
- DMA_BLOCK(MGA_DMAPAD, 0x00000000,
- MGA_DMAPAD, 0x00000000,
- MGA_TEXTRANS, 0x0000ffff, MGA_TEXTRANSHIGH, 0x0000ffff);
-
- ADVANCE_DMA();
-}
-
-static __inline__ void mga_g400_emit_tex1(drm_mga_private_t *dev_priv)
-{
- drm_mga_sarea_t *sarea_priv = dev_priv->sarea_priv;
- drm_mga_texture_regs_t *tex = &sarea_priv->tex_state[1];
- DMA_LOCALS;
-
-/* printk("mga_g400_emit_tex1 %x %x %x\n", tex->texorg, */
-/* tex->texctl, tex->texctl2); */
-
- BEGIN_DMA(5);
-
- DMA_BLOCK(MGA_TEXCTL2, (tex->texctl2 |
- MGA_MAP1_ENABLE |
- MGA_G400_TC2_MAGIC),
- MGA_TEXCTL, tex->texctl,
- MGA_TEXFILTER, tex->texfilter,
- MGA_TEXBORDERCOL, tex->texbordercol);
-
- DMA_BLOCK(MGA_TEXORG, tex->texorg,
- MGA_TEXORG1, tex->texorg1,
- MGA_TEXORG2, tex->texorg2, MGA_TEXORG3, tex->texorg3);
-
- DMA_BLOCK(MGA_TEXORG4, tex->texorg4,
- MGA_TEXWIDTH, tex->texwidth,
- MGA_TEXHEIGHT, tex->texheight, MGA_WR49, 0x00000000);
-
- DMA_BLOCK(MGA_WR57, 0x00000000,
- MGA_WR53, 0x00000000,
- MGA_WR61, 0x00000000,
- MGA_WR52, tex->texwidth | MGA_G400_WR_MAGIC);
-
- DMA_BLOCK(MGA_WR60, tex->texheight | MGA_G400_WR_MAGIC,
- MGA_TEXTRANS, 0x0000ffff,
- MGA_TEXTRANSHIGH, 0x0000ffff,
- MGA_TEXCTL2, tex->texctl2 | MGA_G400_TC2_MAGIC);
-
- ADVANCE_DMA();
-}
-
-static __inline__ void mga_g200_emit_pipe(drm_mga_private_t *dev_priv)
-{
- drm_mga_sarea_t *sarea_priv = dev_priv->sarea_priv;
- unsigned int pipe = sarea_priv->warp_pipe;
- DMA_LOCALS;
-
- BEGIN_DMA(3);
-
- DMA_BLOCK(MGA_WIADDR, MGA_WMODE_SUSPEND,
- MGA_WVRTXSZ, 0x00000007,
- MGA_WFLAG, 0x00000000, MGA_WR24, 0x00000000);
-
- DMA_BLOCK(MGA_WR25, 0x00000100,
- MGA_WR34, 0x00000000,
- MGA_WR42, 0x0000ffff, MGA_WR60, 0x0000ffff);
-
- /* Padding required due to hardware bug.
- */
- DMA_BLOCK(MGA_DMAPAD, 0xffffffff,
- MGA_DMAPAD, 0xffffffff,
- MGA_DMAPAD, 0xffffffff,
- MGA_WIADDR, (dev_priv->warp_pipe_phys[pipe] |
- MGA_WMODE_START | dev_priv->wagp_enable));
-
- ADVANCE_DMA();
-}
-
-static __inline__ void mga_g400_emit_pipe(drm_mga_private_t *dev_priv)
-{
- drm_mga_sarea_t *sarea_priv = dev_priv->sarea_priv;
- unsigned int pipe = sarea_priv->warp_pipe;
- DMA_LOCALS;
-
-/* printk("mga_g400_emit_pipe %x\n", pipe); */
-
- BEGIN_DMA(10);
-
- DMA_BLOCK(MGA_WIADDR2, MGA_WMODE_SUSPEND,
- MGA_DMAPAD, 0x00000000,
- MGA_DMAPAD, 0x00000000, MGA_DMAPAD, 0x00000000);
-
- if (pipe & MGA_T2) {
- DMA_BLOCK(MGA_WVRTXSZ, 0x00001e09,
- MGA_DMAPAD, 0x00000000,
- MGA_DMAPAD, 0x00000000, MGA_DMAPAD, 0x00000000);
-
- DMA_BLOCK(MGA_WACCEPTSEQ, 0x00000000,
- MGA_WACCEPTSEQ, 0x00000000,
- MGA_WACCEPTSEQ, 0x00000000,
- MGA_WACCEPTSEQ, 0x1e000000);
- } else {
- if (dev_priv->warp_pipe & MGA_T2) {
- /* Flush the WARP pipe */
- DMA_BLOCK(MGA_YDST, 0x00000000,
- MGA_FXLEFT, 0x00000000,
- MGA_FXRIGHT, 0x00000001,
- MGA_DWGCTL, MGA_DWGCTL_FLUSH);
-
- DMA_BLOCK(MGA_LEN + MGA_EXEC, 0x00000001,
- MGA_DWGSYNC, 0x00007000,
- MGA_TEXCTL2, MGA_G400_TC2_MAGIC,
- MGA_LEN + MGA_EXEC, 0x00000000);
-
- DMA_BLOCK(MGA_TEXCTL2, (MGA_DUALTEX |
- MGA_G400_TC2_MAGIC),
- MGA_LEN + MGA_EXEC, 0x00000000,
- MGA_TEXCTL2, MGA_G400_TC2_MAGIC,
- MGA_DMAPAD, 0x00000000);
- }
-
- DMA_BLOCK(MGA_WVRTXSZ, 0x00001807,
- MGA_DMAPAD, 0x00000000,
- MGA_DMAPAD, 0x00000000, MGA_DMAPAD, 0x00000000);
-
- DMA_BLOCK(MGA_WACCEPTSEQ, 0x00000000,
- MGA_WACCEPTSEQ, 0x00000000,
- MGA_WACCEPTSEQ, 0x00000000,
- MGA_WACCEPTSEQ, 0x18000000);
- }
-
- DMA_BLOCK(MGA_WFLAG, 0x00000000,
- MGA_WFLAG1, 0x00000000,
- MGA_WR56, MGA_G400_WR56_MAGIC, MGA_DMAPAD, 0x00000000);
-
- DMA_BLOCK(MGA_WR49, 0x00000000, /* tex0 */
- MGA_WR57, 0x00000000, /* tex0 */
- MGA_WR53, 0x00000000, /* tex1 */
- MGA_WR61, 0x00000000); /* tex1 */
-
- DMA_BLOCK(MGA_WR54, MGA_G400_WR_MAGIC, /* tex0 width */
- MGA_WR62, MGA_G400_WR_MAGIC, /* tex0 height */
- MGA_WR52, MGA_G400_WR_MAGIC, /* tex1 width */
- MGA_WR60, MGA_G400_WR_MAGIC); /* tex1 height */
-
- /* Padding required due to hardware bug */
- DMA_BLOCK(MGA_DMAPAD, 0xffffffff,
- MGA_DMAPAD, 0xffffffff,
- MGA_DMAPAD, 0xffffffff,
- MGA_WIADDR2, (dev_priv->warp_pipe_phys[pipe] |
- MGA_WMODE_START | dev_priv->wagp_enable));
-
- ADVANCE_DMA();
-}
-
-static void mga_g200_emit_state(drm_mga_private_t *dev_priv)
-{
- drm_mga_sarea_t *sarea_priv = dev_priv->sarea_priv;
- unsigned int dirty = sarea_priv->dirty;
-
- if (sarea_priv->warp_pipe != dev_priv->warp_pipe) {
- mga_g200_emit_pipe(dev_priv);
- dev_priv->warp_pipe = sarea_priv->warp_pipe;
- }
-
- if (dirty & MGA_UPLOAD_CONTEXT) {
- mga_g200_emit_context(dev_priv);
- sarea_priv->dirty &= ~MGA_UPLOAD_CONTEXT;
- }
-
- if (dirty & MGA_UPLOAD_TEX0) {
- mga_g200_emit_tex0(dev_priv);
- sarea_priv->dirty &= ~MGA_UPLOAD_TEX0;
- }
-}
-
-static void mga_g400_emit_state(drm_mga_private_t *dev_priv)
-{
- drm_mga_sarea_t *sarea_priv = dev_priv->sarea_priv;
- unsigned int dirty = sarea_priv->dirty;
- int multitex = sarea_priv->warp_pipe & MGA_T2;
-
- if (sarea_priv->warp_pipe != dev_priv->warp_pipe) {
- mga_g400_emit_pipe(dev_priv);
- dev_priv->warp_pipe = sarea_priv->warp_pipe;
- }
-
- if (dirty & MGA_UPLOAD_CONTEXT) {
- mga_g400_emit_context(dev_priv);
- sarea_priv->dirty &= ~MGA_UPLOAD_CONTEXT;
- }
-
- if (dirty & MGA_UPLOAD_TEX0) {
- mga_g400_emit_tex0(dev_priv);
- sarea_priv->dirty &= ~MGA_UPLOAD_TEX0;
- }
-
- if ((dirty & MGA_UPLOAD_TEX1) && multitex) {
- mga_g400_emit_tex1(dev_priv);
- sarea_priv->dirty &= ~MGA_UPLOAD_TEX1;
- }
-}
-
-/* ================================================================
- * SAREA state verification
- */
-
-/* Disallow all write destinations except the front and backbuffer.
- */
-static int mga_verify_context(drm_mga_private_t *dev_priv)
-{
- drm_mga_sarea_t *sarea_priv = dev_priv->sarea_priv;
- drm_mga_context_regs_t *ctx = &sarea_priv->context_state;
-
- if (ctx->dstorg != dev_priv->front_offset &&
- ctx->dstorg != dev_priv->back_offset) {
- DRM_ERROR("*** bad DSTORG: %x (front %x, back %x)\n\n",
- ctx->dstorg, dev_priv->front_offset,
- dev_priv->back_offset);
- ctx->dstorg = 0;
- return -EINVAL;
- }
-
- return 0;
-}
-
-/* Disallow texture reads from PCI space.
- */
-static int mga_verify_tex(drm_mga_private_t *dev_priv, int unit)
-{
- drm_mga_sarea_t *sarea_priv = dev_priv->sarea_priv;
- drm_mga_texture_regs_t *tex = &sarea_priv->tex_state[unit];
- unsigned int org;
-
- org = tex->texorg & (MGA_TEXORGMAP_MASK | MGA_TEXORGACC_MASK);
-
- if (org == (MGA_TEXORGMAP_SYSMEM | MGA_TEXORGACC_PCI)) {
- DRM_ERROR("*** bad TEXORG: 0x%x, unit %d\n", tex->texorg, unit);
- tex->texorg = 0;
- return -EINVAL;
- }
-
- return 0;
-}
-
-static int mga_verify_state(drm_mga_private_t *dev_priv)
-{
- drm_mga_sarea_t *sarea_priv = dev_priv->sarea_priv;
- unsigned int dirty = sarea_priv->dirty;
- int ret = 0;
-
- if (sarea_priv->nbox > MGA_NR_SAREA_CLIPRECTS)
- sarea_priv->nbox = MGA_NR_SAREA_CLIPRECTS;
-
- if (dirty & MGA_UPLOAD_CONTEXT)
- ret |= mga_verify_context(dev_priv);
-
- if (dirty & MGA_UPLOAD_TEX0)
- ret |= mga_verify_tex(dev_priv, 0);
-
- if (dev_priv->chipset >= MGA_CARD_TYPE_G400) {
- if (dirty & MGA_UPLOAD_TEX1)
- ret |= mga_verify_tex(dev_priv, 1);
-
- if (dirty & MGA_UPLOAD_PIPE)
- ret |= (sarea_priv->warp_pipe > MGA_MAX_G400_PIPES);
- } else {
- if (dirty & MGA_UPLOAD_PIPE)
- ret |= (sarea_priv->warp_pipe > MGA_MAX_G200_PIPES);
- }
-
- return (ret == 0);
-}
-
-static int mga_verify_iload(drm_mga_private_t *dev_priv,
- unsigned int dstorg, unsigned int length)
-{
- if (dstorg < dev_priv->texture_offset ||
- dstorg + length > (dev_priv->texture_offset +
- dev_priv->texture_size)) {
- DRM_ERROR("*** bad iload DSTORG: 0x%x\n", dstorg);
- return -EINVAL;
- }
-
- if (length & MGA_ILOAD_MASK) {
- DRM_ERROR("*** bad iload length: 0x%x\n",
- length & MGA_ILOAD_MASK);
- return -EINVAL;
- }
-
- return 0;
-}
-
-static int mga_verify_blit(drm_mga_private_t *dev_priv,
- unsigned int srcorg, unsigned int dstorg)
-{
- if ((srcorg & 0x3) == (MGA_SRCACC_PCI | MGA_SRCMAP_SYSMEM) ||
- (dstorg & 0x3) == (MGA_SRCACC_PCI | MGA_SRCMAP_SYSMEM)) {
- DRM_ERROR("*** bad blit: src=0x%x dst=0x%x\n", srcorg, dstorg);
- return -EINVAL;
- }
- return 0;
-}
-
-/* ================================================================
- *
- */
-
-static void mga_dma_dispatch_clear(struct drm_device *dev, drm_mga_clear_t *clear)
-{
- drm_mga_private_t *dev_priv = dev->dev_private;
- drm_mga_sarea_t *sarea_priv = dev_priv->sarea_priv;
- drm_mga_context_regs_t *ctx = &sarea_priv->context_state;
- struct drm_clip_rect *pbox = sarea_priv->boxes;
- int nbox = sarea_priv->nbox;
- int i;
- DMA_LOCALS;
- DRM_DEBUG("\n");
-
- BEGIN_DMA(1);
-
- DMA_BLOCK(MGA_DMAPAD, 0x00000000,
- MGA_DMAPAD, 0x00000000,
- MGA_DWGSYNC, 0x00007100, MGA_DWGSYNC, 0x00007000);
-
- ADVANCE_DMA();
-
- for (i = 0; i < nbox; i++) {
- struct drm_clip_rect *box = &pbox[i];
- u32 height = box->y2 - box->y1;
-
- DRM_DEBUG(" from=%d,%d to=%d,%d\n",
- box->x1, box->y1, box->x2, box->y2);
-
- if (clear->flags & MGA_FRONT) {
- BEGIN_DMA(2);
-
- DMA_BLOCK(MGA_DMAPAD, 0x00000000,
- MGA_PLNWT, clear->color_mask,
- MGA_YDSTLEN, (box->y1 << 16) | height,
- MGA_FXBNDRY, (box->x2 << 16) | box->x1);
-
- DMA_BLOCK(MGA_DMAPAD, 0x00000000,
- MGA_FCOL, clear->clear_color,
- MGA_DSTORG, dev_priv->front_offset,
- MGA_DWGCTL + MGA_EXEC, dev_priv->clear_cmd);
-
- ADVANCE_DMA();
- }
-
- if (clear->flags & MGA_BACK) {
- BEGIN_DMA(2);
-
- DMA_BLOCK(MGA_DMAPAD, 0x00000000,
- MGA_PLNWT, clear->color_mask,
- MGA_YDSTLEN, (box->y1 << 16) | height,
- MGA_FXBNDRY, (box->x2 << 16) | box->x1);
-
- DMA_BLOCK(MGA_DMAPAD, 0x00000000,
- MGA_FCOL, clear->clear_color,
- MGA_DSTORG, dev_priv->back_offset,
- MGA_DWGCTL + MGA_EXEC, dev_priv->clear_cmd);
-
- ADVANCE_DMA();
- }
-
- if (clear->flags & MGA_DEPTH) {
- BEGIN_DMA(2);
-
- DMA_BLOCK(MGA_DMAPAD, 0x00000000,
- MGA_PLNWT, clear->depth_mask,
- MGA_YDSTLEN, (box->y1 << 16) | height,
- MGA_FXBNDRY, (box->x2 << 16) | box->x1);
-
- DMA_BLOCK(MGA_DMAPAD, 0x00000000,
- MGA_FCOL, clear->clear_depth,
- MGA_DSTORG, dev_priv->depth_offset,
- MGA_DWGCTL + MGA_EXEC, dev_priv->clear_cmd);
-
- ADVANCE_DMA();
- }
-
- }
-
- BEGIN_DMA(1);
-
- /* Force reset of DWGCTL */
- DMA_BLOCK(MGA_DMAPAD, 0x00000000,
- MGA_DMAPAD, 0x00000000,
- MGA_PLNWT, ctx->plnwt, MGA_DWGCTL, ctx->dwgctl);
-
- ADVANCE_DMA();
-
- FLUSH_DMA();
-}
-
-static void mga_dma_dispatch_swap(struct drm_device *dev)
-{
- drm_mga_private_t *dev_priv = dev->dev_private;
- drm_mga_sarea_t *sarea_priv = dev_priv->sarea_priv;
- drm_mga_context_regs_t *ctx = &sarea_priv->context_state;
- struct drm_clip_rect *pbox = sarea_priv->boxes;
- int nbox = sarea_priv->nbox;
- int i;
- DMA_LOCALS;
- DRM_DEBUG("\n");
-
- sarea_priv->last_frame.head = dev_priv->prim.tail;
- sarea_priv->last_frame.wrap = dev_priv->prim.last_wrap;
-
- BEGIN_DMA(4 + nbox);
-
- DMA_BLOCK(MGA_DMAPAD, 0x00000000,
- MGA_DMAPAD, 0x00000000,
- MGA_DWGSYNC, 0x00007100, MGA_DWGSYNC, 0x00007000);
-
- DMA_BLOCK(MGA_DSTORG, dev_priv->front_offset,
- MGA_MACCESS, dev_priv->maccess,
- MGA_SRCORG, dev_priv->back_offset,
- MGA_AR5, dev_priv->front_pitch);
-
- DMA_BLOCK(MGA_DMAPAD, 0x00000000,
- MGA_DMAPAD, 0x00000000,
- MGA_PLNWT, 0xffffffff, MGA_DWGCTL, MGA_DWGCTL_COPY);
-
- for (i = 0; i < nbox; i++) {
- struct drm_clip_rect *box = &pbox[i];
- u32 height = box->y2 - box->y1;
- u32 start = box->y1 * dev_priv->front_pitch;
-
- DRM_DEBUG(" from=%d,%d to=%d,%d\n",
- box->x1, box->y1, box->x2, box->y2);
-
- DMA_BLOCK(MGA_AR0, start + box->x2 - 1,
- MGA_AR3, start + box->x1,
- MGA_FXBNDRY, ((box->x2 - 1) << 16) | box->x1,
- MGA_YDSTLEN + MGA_EXEC, (box->y1 << 16) | height);
- }
-
- DMA_BLOCK(MGA_DMAPAD, 0x00000000,
- MGA_PLNWT, ctx->plnwt,
- MGA_SRCORG, dev_priv->front_offset, MGA_DWGCTL, ctx->dwgctl);
-
- ADVANCE_DMA();
-
- FLUSH_DMA();
-
- DRM_DEBUG("... done.\n");
-}
-
-static void mga_dma_dispatch_vertex(struct drm_device *dev, struct drm_buf *buf)
-{
- drm_mga_private_t *dev_priv = dev->dev_private;
- drm_mga_buf_priv_t *buf_priv = buf->dev_private;
- drm_mga_sarea_t *sarea_priv = dev_priv->sarea_priv;
- u32 address = (u32) buf->bus_address;
- u32 length = (u32) buf->used;
- int i = 0;
- DMA_LOCALS;
- DRM_DEBUG("buf=%d used=%d\n", buf->idx, buf->used);
-
- if (buf->used) {
- buf_priv->dispatched = 1;
-
- MGA_EMIT_STATE(dev_priv, sarea_priv->dirty);
-
- do {
- if (i < sarea_priv->nbox) {
- mga_emit_clip_rect(dev_priv,
- &sarea_priv->boxes[i]);
- }
-
- BEGIN_DMA(1);
-
- DMA_BLOCK(MGA_DMAPAD, 0x00000000,
- MGA_DMAPAD, 0x00000000,
- MGA_SECADDRESS, (address |
- MGA_DMA_VERTEX),
- MGA_SECEND, ((address + length) |
- dev_priv->dma_access));
-
- ADVANCE_DMA();
- } while (++i < sarea_priv->nbox);
- }
-
- if (buf_priv->discard) {
- AGE_BUFFER(buf_priv);
- buf->pending = 0;
- buf->used = 0;
- buf_priv->dispatched = 0;
-
- mga_freelist_put(dev, buf);
- }
-
- FLUSH_DMA();
-}
-
-static void mga_dma_dispatch_indices(struct drm_device *dev, struct drm_buf *buf,
- unsigned int start, unsigned int end)
-{
- drm_mga_private_t *dev_priv = dev->dev_private;
- drm_mga_buf_priv_t *buf_priv = buf->dev_private;
- drm_mga_sarea_t *sarea_priv = dev_priv->sarea_priv;
- u32 address = (u32) buf->bus_address;
- int i = 0;
- DMA_LOCALS;
- DRM_DEBUG("buf=%d start=%d end=%d\n", buf->idx, start, end);
-
- if (start != end) {
- buf_priv->dispatched = 1;
-
- MGA_EMIT_STATE(dev_priv, sarea_priv->dirty);
-
- do {
- if (i < sarea_priv->nbox) {
- mga_emit_clip_rect(dev_priv,
- &sarea_priv->boxes[i]);
- }
-
- BEGIN_DMA(1);
-
- DMA_BLOCK(MGA_DMAPAD, 0x00000000,
- MGA_DMAPAD, 0x00000000,
- MGA_SETUPADDRESS, address + start,
- MGA_SETUPEND, ((address + end) |
- dev_priv->dma_access));
-
- ADVANCE_DMA();
- } while (++i < sarea_priv->nbox);
- }
-
- if (buf_priv->discard) {
- AGE_BUFFER(buf_priv);
- buf->pending = 0;
- buf->used = 0;
- buf_priv->dispatched = 0;
-
- mga_freelist_put(dev, buf);
- }
-
- FLUSH_DMA();
-}
-
-/* This copies a 64 byte aligned agp region to the frambuffer with a
- * standard blit, the ioctl needs to do checking.
- */
-static void mga_dma_dispatch_iload(struct drm_device *dev, struct drm_buf *buf,
- unsigned int dstorg, unsigned int length)
-{
- drm_mga_private_t *dev_priv = dev->dev_private;
- drm_mga_buf_priv_t *buf_priv = buf->dev_private;
- drm_mga_context_regs_t *ctx = &dev_priv->sarea_priv->context_state;
- u32 srcorg =
- buf->bus_address | dev_priv->dma_access | MGA_SRCMAP_SYSMEM;
- u32 y2;
- DMA_LOCALS;
- DRM_DEBUG("buf=%d used=%d\n", buf->idx, buf->used);
-
- y2 = length / 64;
-
- BEGIN_DMA(5);
-
- DMA_BLOCK(MGA_DMAPAD, 0x00000000,
- MGA_DMAPAD, 0x00000000,
- MGA_DWGSYNC, 0x00007100, MGA_DWGSYNC, 0x00007000);
-
- DMA_BLOCK(MGA_DSTORG, dstorg,
- MGA_MACCESS, 0x00000000, MGA_SRCORG, srcorg, MGA_AR5, 64);
-
- DMA_BLOCK(MGA_PITCH, 64,
- MGA_PLNWT, 0xffffffff,
- MGA_DMAPAD, 0x00000000, MGA_DWGCTL, MGA_DWGCTL_COPY);
-
- DMA_BLOCK(MGA_AR0, 63,
- MGA_AR3, 0,
- MGA_FXBNDRY, (63 << 16) | 0, MGA_YDSTLEN + MGA_EXEC, y2);
-
- DMA_BLOCK(MGA_PLNWT, ctx->plnwt,
- MGA_SRCORG, dev_priv->front_offset,
- MGA_PITCH, dev_priv->front_pitch, MGA_DWGSYNC, 0x00007000);
-
- ADVANCE_DMA();
-
- AGE_BUFFER(buf_priv);
-
- buf->pending = 0;
- buf->used = 0;
- buf_priv->dispatched = 0;
-
- mga_freelist_put(dev, buf);
-
- FLUSH_DMA();
-}
-
-static void mga_dma_dispatch_blit(struct drm_device *dev, drm_mga_blit_t *blit)
-{
- drm_mga_private_t *dev_priv = dev->dev_private;
- drm_mga_sarea_t *sarea_priv = dev_priv->sarea_priv;
- drm_mga_context_regs_t *ctx = &sarea_priv->context_state;
- struct drm_clip_rect *pbox = sarea_priv->boxes;
- int nbox = sarea_priv->nbox;
- u32 scandir = 0, i;
- DMA_LOCALS;
- DRM_DEBUG("\n");
-
- BEGIN_DMA(4 + nbox);
-
- DMA_BLOCK(MGA_DMAPAD, 0x00000000,
- MGA_DMAPAD, 0x00000000,
- MGA_DWGSYNC, 0x00007100, MGA_DWGSYNC, 0x00007000);
-
- DMA_BLOCK(MGA_DWGCTL, MGA_DWGCTL_COPY,
- MGA_PLNWT, blit->planemask,
- MGA_SRCORG, blit->srcorg, MGA_DSTORG, blit->dstorg);
-
- DMA_BLOCK(MGA_SGN, scandir,
- MGA_MACCESS, dev_priv->maccess,
- MGA_AR5, blit->ydir * blit->src_pitch,
- MGA_PITCH, blit->dst_pitch);
-
- for (i = 0; i < nbox; i++) {
- int srcx = pbox[i].x1 + blit->delta_sx;
- int srcy = pbox[i].y1 + blit->delta_sy;
- int dstx = pbox[i].x1 + blit->delta_dx;
- int dsty = pbox[i].y1 + blit->delta_dy;
- int h = pbox[i].y2 - pbox[i].y1;
- int w = pbox[i].x2 - pbox[i].x1 - 1;
- int start;
-
- if (blit->ydir == -1)
- srcy = blit->height - srcy - 1;
-
- start = srcy * blit->src_pitch + srcx;
-
- DMA_BLOCK(MGA_AR0, start + w,
- MGA_AR3, start,
- MGA_FXBNDRY, ((dstx + w) << 16) | (dstx & 0xffff),
- MGA_YDSTLEN + MGA_EXEC, (dsty << 16) | h);
- }
-
- /* Do something to flush AGP?
- */
-
- /* Force reset of DWGCTL */
- DMA_BLOCK(MGA_DMAPAD, 0x00000000,
- MGA_PLNWT, ctx->plnwt,
- MGA_PITCH, dev_priv->front_pitch, MGA_DWGCTL, ctx->dwgctl);
-
- ADVANCE_DMA();
-}
-
-/* ================================================================
- *
- */
-
-static int mga_dma_clear(struct drm_device *dev, void *data, struct drm_file *file_priv)
-{
- drm_mga_private_t *dev_priv = dev->dev_private;
- drm_mga_sarea_t *sarea_priv = dev_priv->sarea_priv;
- drm_mga_clear_t *clear = data;
-
- LOCK_TEST_WITH_RETURN(dev, file_priv);
-
- if (sarea_priv->nbox > MGA_NR_SAREA_CLIPRECTS)
- sarea_priv->nbox = MGA_NR_SAREA_CLIPRECTS;
-
- WRAP_TEST_WITH_RETURN(dev_priv);
-
- mga_dma_dispatch_clear(dev, clear);
-
- /* Make sure we restore the 3D state next time.
- */
- dev_priv->sarea_priv->dirty |= MGA_UPLOAD_CONTEXT;
-
- return 0;
-}
-
-static int mga_dma_swap(struct drm_device *dev, void *data, struct drm_file *file_priv)
-{
- drm_mga_private_t *dev_priv = dev->dev_private;
- drm_mga_sarea_t *sarea_priv = dev_priv->sarea_priv;
-
- LOCK_TEST_WITH_RETURN(dev, file_priv);
-
- if (sarea_priv->nbox > MGA_NR_SAREA_CLIPRECTS)
- sarea_priv->nbox = MGA_NR_SAREA_CLIPRECTS;
-
- WRAP_TEST_WITH_RETURN(dev_priv);
-
- mga_dma_dispatch_swap(dev);
-
- /* Make sure we restore the 3D state next time.
- */
- dev_priv->sarea_priv->dirty |= MGA_UPLOAD_CONTEXT;
-
- return 0;
-}
-
-static int mga_dma_vertex(struct drm_device *dev, void *data, struct drm_file *file_priv)
-{
- drm_mga_private_t *dev_priv = dev->dev_private;
- struct drm_device_dma *dma = dev->dma;
- struct drm_buf *buf;
- drm_mga_buf_priv_t *buf_priv;
- drm_mga_vertex_t *vertex = data;
-
- LOCK_TEST_WITH_RETURN(dev, file_priv);
-
- if (vertex->idx < 0 || vertex->idx > dma->buf_count)
- return -EINVAL;
- buf = dma->buflist[vertex->idx];
- buf_priv = buf->dev_private;
-
- buf->used = vertex->used;
- buf_priv->discard = vertex->discard;
-
- if (!mga_verify_state(dev_priv)) {
- if (vertex->discard) {
- if (buf_priv->dispatched == 1)
- AGE_BUFFER(buf_priv);
- buf_priv->dispatched = 0;
- mga_freelist_put(dev, buf);
- }
- return -EINVAL;
- }
-
- WRAP_TEST_WITH_RETURN(dev_priv);
-
- mga_dma_dispatch_vertex(dev, buf);
-
- return 0;
-}
-
-static int mga_dma_indices(struct drm_device *dev, void *data, struct drm_file *file_priv)
-{
- drm_mga_private_t *dev_priv = dev->dev_private;
- struct drm_device_dma *dma = dev->dma;
- struct drm_buf *buf;
- drm_mga_buf_priv_t *buf_priv;
- drm_mga_indices_t *indices = data;
-
- LOCK_TEST_WITH_RETURN(dev, file_priv);
-
- if (indices->idx < 0 || indices->idx > dma->buf_count)
- return -EINVAL;
-
- buf = dma->buflist[indices->idx];
- buf_priv = buf->dev_private;
-
- buf_priv->discard = indices->discard;
-
- if (!mga_verify_state(dev_priv)) {
- if (indices->discard) {
- if (buf_priv->dispatched == 1)
- AGE_BUFFER(buf_priv);
- buf_priv->dispatched = 0;
- mga_freelist_put(dev, buf);
- }
- return -EINVAL;
- }
-
- WRAP_TEST_WITH_RETURN(dev_priv);
-
- mga_dma_dispatch_indices(dev, buf, indices->start, indices->end);
-
- return 0;
-}
-
-static int mga_dma_iload(struct drm_device *dev, void *data, struct drm_file *file_priv)
-{
- struct drm_device_dma *dma = dev->dma;
- drm_mga_private_t *dev_priv = dev->dev_private;
- struct drm_buf *buf;
- drm_mga_iload_t *iload = data;
- DRM_DEBUG("\n");
-
- LOCK_TEST_WITH_RETURN(dev, file_priv);
-
-#if 0
- if (mga_do_wait_for_idle(dev_priv) < 0) {
- if (MGA_DMA_DEBUG)
- DRM_INFO("-EBUSY\n");
- return -EBUSY;
- }
-#endif
- if (iload->idx < 0 || iload->idx > dma->buf_count)
- return -EINVAL;
-
- buf = dma->buflist[iload->idx];
-
- if (mga_verify_iload(dev_priv, iload->dstorg, iload->length)) {
- mga_freelist_put(dev, buf);
- return -EINVAL;
- }
-
- WRAP_TEST_WITH_RETURN(dev_priv);
-
- mga_dma_dispatch_iload(dev, buf, iload->dstorg, iload->length);
-
- /* Make sure we restore the 3D state next time.
- */
- dev_priv->sarea_priv->dirty |= MGA_UPLOAD_CONTEXT;
-
- return 0;
-}
-
-static int mga_dma_blit(struct drm_device *dev, void *data, struct drm_file *file_priv)
-{
- drm_mga_private_t *dev_priv = dev->dev_private;
- drm_mga_sarea_t *sarea_priv = dev_priv->sarea_priv;
- drm_mga_blit_t *blit = data;
- DRM_DEBUG("\n");
-
- LOCK_TEST_WITH_RETURN(dev, file_priv);
-
- if (sarea_priv->nbox > MGA_NR_SAREA_CLIPRECTS)
- sarea_priv->nbox = MGA_NR_SAREA_CLIPRECTS;
-
- if (mga_verify_blit(dev_priv, blit->srcorg, blit->dstorg))
- return -EINVAL;
-
- WRAP_TEST_WITH_RETURN(dev_priv);
-
- mga_dma_dispatch_blit(dev, blit);
-
- /* Make sure we restore the 3D state next time.
- */
- dev_priv->sarea_priv->dirty |= MGA_UPLOAD_CONTEXT;
-
- return 0;
-}
-
-int mga_getparam(struct drm_device *dev, void *data, struct drm_file *file_priv)
-{
- drm_mga_private_t *dev_priv = dev->dev_private;
- drm_mga_getparam_t *param = data;
- struct pci_dev *pdev = to_pci_dev(dev->dev);
- int value;
-
- if (!dev_priv) {
- DRM_ERROR("called with no initialization\n");
- return -EINVAL;
- }
-
- DRM_DEBUG("pid=%d\n", task_pid_nr(current));
-
- switch (param->param) {
- case MGA_PARAM_IRQ_NR:
- value = pdev->irq;
- break;
- case MGA_PARAM_CARD_TYPE:
- value = dev_priv->chipset;
- break;
- default:
- return -EINVAL;
- }
-
- if (copy_to_user(param->value, &value, sizeof(int))) {
- DRM_ERROR("copy_to_user\n");
- return -EFAULT;
- }
-
- return 0;
-}
-
-static int mga_set_fence(struct drm_device *dev, void *data, struct drm_file *file_priv)
-{
- drm_mga_private_t *dev_priv = dev->dev_private;
- u32 *fence = data;
- DMA_LOCALS;
-
- if (!dev_priv) {
- DRM_ERROR("called with no initialization\n");
- return -EINVAL;
- }
-
- DRM_DEBUG("pid=%d\n", task_pid_nr(current));
-
- /* I would normal do this assignment in the declaration of fence,
- * but dev_priv may be NULL.
- */
-
- *fence = dev_priv->next_fence_to_post;
- dev_priv->next_fence_to_post++;
-
- BEGIN_DMA(1);
- DMA_BLOCK(MGA_DMAPAD, 0x00000000,
- MGA_DMAPAD, 0x00000000,
- MGA_DMAPAD, 0x00000000, MGA_SOFTRAP, 0x00000000);
- ADVANCE_DMA();
-
- return 0;
-}
-
-static int mga_wait_fence(struct drm_device *dev, void *data, struct drm_file *
-file_priv)
-{
- drm_mga_private_t *dev_priv = dev->dev_private;
- u32 *fence = data;
-
- if (!dev_priv) {
- DRM_ERROR("called with no initialization\n");
- return -EINVAL;
- }
-
- DRM_DEBUG("pid=%d\n", task_pid_nr(current));
-
- mga_driver_fence_wait(dev, fence);
- return 0;
-}
-
-const struct drm_ioctl_desc mga_ioctls[] = {
- DRM_IOCTL_DEF_DRV(MGA_INIT, mga_dma_init, DRM_AUTH|DRM_MASTER|DRM_ROOT_ONLY),
- DRM_IOCTL_DEF_DRV(MGA_FLUSH, mga_dma_flush, DRM_AUTH),
- DRM_IOCTL_DEF_DRV(MGA_RESET, mga_dma_reset, DRM_AUTH),
- DRM_IOCTL_DEF_DRV(MGA_SWAP, mga_dma_swap, DRM_AUTH),
- DRM_IOCTL_DEF_DRV(MGA_CLEAR, mga_dma_clear, DRM_AUTH),
- DRM_IOCTL_DEF_DRV(MGA_VERTEX, mga_dma_vertex, DRM_AUTH),
- DRM_IOCTL_DEF_DRV(MGA_INDICES, mga_dma_indices, DRM_AUTH),
- DRM_IOCTL_DEF_DRV(MGA_ILOAD, mga_dma_iload, DRM_AUTH),
- DRM_IOCTL_DEF_DRV(MGA_BLIT, mga_dma_blit, DRM_AUTH),
- DRM_IOCTL_DEF_DRV(MGA_GETPARAM, mga_getparam, DRM_AUTH),
- DRM_IOCTL_DEF_DRV(MGA_SET_FENCE, mga_set_fence, DRM_AUTH),
- DRM_IOCTL_DEF_DRV(MGA_WAIT_FENCE, mga_wait_fence, DRM_AUTH),
- DRM_IOCTL_DEF_DRV(MGA_DMA_BOOTSTRAP, mga_dma_bootstrap, DRM_AUTH|DRM_MASTER|DRM_ROOT_ONLY),
-};
-
-int mga_max_ioctl = ARRAY_SIZE(mga_ioctls);
diff --git a/drivers/gpu/drm/mga/mga_warp.c b/drivers/gpu/drm/mga/mga_warp.c
deleted file mode 100644
index b5ef1d2c8b1c..000000000000
--- a/drivers/gpu/drm/mga/mga_warp.c
+++ /dev/null
@@ -1,167 +0,0 @@
-/* mga_warp.c -- Matrox G200/G400 WARP engine management -*- linux-c -*-
- * Created: Thu Jan 11 21:29:32 2001 by gareth@valinux.com
- *
- * Copyright 2000 VA Linux Systems, Inc., Sunnyvale, California.
- * All Rights Reserved.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice (including the next
- * paragraph) shall be included in all copies or substantial portions of the
- * Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * VA LINUX SYSTEMS AND/OR ITS SUPPLIERS BE LIABLE FOR ANY CLAIM, DAMAGES OR
- * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
- * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
- * OTHER DEALINGS IN THE SOFTWARE.
- *
- * Authors:
- * Gareth Hughes <gareth@valinux.com>
- */
-
-#include <linux/firmware.h>
-#include <linux/ihex.h>
-#include <linux/module.h>
-#include <linux/platform_device.h>
-
-#include "mga_drv.h"
-
-#define FIRMWARE_G200 "matrox/g200_warp.fw"
-#define FIRMWARE_G400 "matrox/g400_warp.fw"
-
-MODULE_FIRMWARE(FIRMWARE_G200);
-MODULE_FIRMWARE(FIRMWARE_G400);
-
-#define MGA_WARP_CODE_ALIGN 256 /* in bytes */
-
-#define WARP_UCODE_SIZE(size) ALIGN(size, MGA_WARP_CODE_ALIGN)
-
-int mga_warp_install_microcode(drm_mga_private_t *dev_priv)
-{
- unsigned char *vcbase = dev_priv->warp->handle;
- unsigned long pcbase = dev_priv->warp->offset;
- const char *firmware_name;
- struct platform_device *pdev;
- const struct firmware *fw = NULL;
- const struct ihex_binrec *rec;
- unsigned int size;
- int n_pipes, where;
- int rc = 0;
-
- switch (dev_priv->chipset) {
- case MGA_CARD_TYPE_G400:
- case MGA_CARD_TYPE_G550:
- firmware_name = FIRMWARE_G400;
- n_pipes = MGA_MAX_G400_PIPES;
- break;
- case MGA_CARD_TYPE_G200:
- firmware_name = FIRMWARE_G200;
- n_pipes = MGA_MAX_G200_PIPES;
- break;
- default:
- return -EINVAL;
- }
-
- pdev = platform_device_register_simple("mga_warp", 0, NULL, 0);
- if (IS_ERR(pdev)) {
- DRM_ERROR("mga: Failed to register microcode\n");
- return PTR_ERR(pdev);
- }
- rc = request_ihex_firmware(&fw, firmware_name, &pdev->dev);
- platform_device_unregister(pdev);
- if (rc) {
- DRM_ERROR("mga: Failed to load microcode \"%s\"\n",
- firmware_name);
- return rc;
- }
-
- size = 0;
- where = 0;
- for (rec = (const struct ihex_binrec *)fw->data;
- rec;
- rec = ihex_next_binrec(rec)) {
- size += WARP_UCODE_SIZE(be16_to_cpu(rec->len));
- where++;
- }
-
- if (where != n_pipes) {
- DRM_ERROR("mga: Invalid microcode \"%s\"\n", firmware_name);
- rc = -EINVAL;
- goto out;
- }
- size = PAGE_ALIGN(size);
- DRM_DEBUG("MGA ucode size = %d bytes\n", size);
- if (size > dev_priv->warp->size) {
- DRM_ERROR("microcode too large! (%u > %lu)\n",
- size, dev_priv->warp->size);
- rc = -ENOMEM;
- goto out;
- }
-
- memset(dev_priv->warp_pipe_phys, 0, sizeof(dev_priv->warp_pipe_phys));
-
- where = 0;
- for (rec = (const struct ihex_binrec *)fw->data;
- rec;
- rec = ihex_next_binrec(rec)) {
- unsigned int src_size, dst_size;
-
- DRM_DEBUG(" pcbase = 0x%08lx vcbase = %p\n", pcbase, vcbase);
- dev_priv->warp_pipe_phys[where] = pcbase;
- src_size = be16_to_cpu(rec->len);
- dst_size = WARP_UCODE_SIZE(src_size);
- memcpy(vcbase, rec->data, src_size);
- pcbase += dst_size;
- vcbase += dst_size;
- where++;
- }
-
-out:
- release_firmware(fw);
- return rc;
-}
-
-#define WMISC_EXPECTED (MGA_WUCODECACHE_ENABLE | MGA_WMASTER_ENABLE)
-
-int mga_warp_init(drm_mga_private_t *dev_priv)
-{
- u32 wmisc;
-
- /* FIXME: Get rid of these damned magic numbers...
- */
- switch (dev_priv->chipset) {
- case MGA_CARD_TYPE_G400:
- case MGA_CARD_TYPE_G550:
- MGA_WRITE(MGA_WIADDR2, MGA_WMODE_SUSPEND);
- MGA_WRITE(MGA_WGETMSB, 0x00000E00);
- MGA_WRITE(MGA_WVRTXSZ, 0x00001807);
- MGA_WRITE(MGA_WACCEPTSEQ, 0x18000000);
- break;
- case MGA_CARD_TYPE_G200:
- MGA_WRITE(MGA_WIADDR, MGA_WMODE_SUSPEND);
- MGA_WRITE(MGA_WGETMSB, 0x1606);
- MGA_WRITE(MGA_WVRTXSZ, 7);
- break;
- default:
- return -EINVAL;
- }
-
- MGA_WRITE(MGA_WMISC, (MGA_WUCODECACHE_ENABLE |
- MGA_WMASTER_ENABLE | MGA_WCACHEFLUSH_ENABLE));
- wmisc = MGA_READ(MGA_WMISC);
- if (wmisc != WMISC_EXPECTED) {
- DRM_ERROR("WARP engine config failed! 0x%x != 0x%x\n",
- wmisc, WMISC_EXPECTED);
- return -EINVAL;
- }
-
- return 0;
-}
diff --git a/drivers/gpu/drm/mgag200/Kconfig b/drivers/gpu/drm/mgag200/Kconfig
index eec59658a938..b28c5e4828f4 100644
--- a/drivers/gpu/drm/mgag200/Kconfig
+++ b/drivers/gpu/drm/mgag200/Kconfig
@@ -4,6 +4,8 @@ config DRM_MGAG200
depends on DRM && PCI && MMU
select DRM_GEM_SHMEM_HELPER
select DRM_KMS_HELPER
+ select I2C
+ select I2C_ALGOBIT
help
This is a KMS driver for Matrox G200 chips. It supports the original
MGA G200 desktop chips and the server variants. It requires 0.3.0
diff --git a/drivers/gpu/drm/mgag200/mgag200_drv.c b/drivers/gpu/drm/mgag200/mgag200_drv.c
index ece6cd102dbb..976f0ab2006b 100644
--- a/drivers/gpu/drm/mgag200/mgag200_drv.c
+++ b/drivers/gpu/drm/mgag200/mgag200_drv.c
@@ -11,6 +11,7 @@
#include <drm/drm_aperture.h>
#include <drm/drm_drv.h>
+#include <drm/drm_fbdev_generic.h>
#include <drm/drm_file.h>
#include <drm/drm_ioctl.h>
#include <drm/drm_managed.h>
diff --git a/drivers/gpu/drm/mgag200/mgag200_drv.h b/drivers/gpu/drm/mgag200/mgag200_drv.h
index f0c2349404b4..57c7edcab602 100644
--- a/drivers/gpu/drm/mgag200/mgag200_drv.h
+++ b/drivers/gpu/drm/mgag200/mgag200_drv.h
@@ -18,7 +18,6 @@
#include <drm/drm_connector.h>
#include <drm/drm_crtc.h>
#include <drm/drm_encoder.h>
-#include <drm/drm_fb_helper.h>
#include <drm/drm_gem.h>
#include <drm/drm_gem_shmem_helper.h>
#include <drm/drm_plane.h>
@@ -376,12 +375,15 @@ int mgag200_primary_plane_helper_atomic_check(struct drm_plane *plane,
struct drm_atomic_state *new_state);
void mgag200_primary_plane_helper_atomic_update(struct drm_plane *plane,
struct drm_atomic_state *old_state);
+void mgag200_primary_plane_helper_atomic_enable(struct drm_plane *plane,
+ struct drm_atomic_state *state);
void mgag200_primary_plane_helper_atomic_disable(struct drm_plane *plane,
struct drm_atomic_state *old_state);
#define MGAG200_PRIMARY_PLANE_HELPER_FUNCS \
DRM_GEM_SHADOW_PLANE_HELPER_FUNCS, \
.atomic_check = mgag200_primary_plane_helper_atomic_check, \
.atomic_update = mgag200_primary_plane_helper_atomic_update, \
+ .atomic_enable = mgag200_primary_plane_helper_atomic_enable, \
.atomic_disable = mgag200_primary_plane_helper_atomic_disable
#define MGAG200_PRIMARY_PLANE_FUNCS \
diff --git a/drivers/gpu/drm/mgag200/mgag200_g200se.c b/drivers/gpu/drm/mgag200/mgag200_g200se.c
index be389ed91cbd..bd6e573c9a1a 100644
--- a/drivers/gpu/drm/mgag200/mgag200_g200se.c
+++ b/drivers/gpu/drm/mgag200/mgag200_g200se.c
@@ -284,7 +284,8 @@ static void mgag200_g200se_04_pixpllc_atomic_update(struct drm_crtc *crtc,
pixpllcp = pixpllc->p - 1;
pixpllcs = pixpllc->s;
- xpixpllcm = pixpllcm | ((pixpllcn & BIT(8)) >> 1);
+ // For G200SE A, BIT(7) should be set unconditionally.
+ xpixpllcm = BIT(7) | pixpllcm;
xpixpllcn = pixpllcn;
xpixpllcp = (pixpllcs << 3) | pixpllcp;
diff --git a/drivers/gpu/drm/mgag200/mgag200_mode.c b/drivers/gpu/drm/mgag200/mgag200_mode.c
index bbab2549243a..0f2dd26755df 100644
--- a/drivers/gpu/drm/mgag200/mgag200_mode.c
+++ b/drivers/gpu/drm/mgag200/mgag200_mode.c
@@ -501,10 +501,6 @@ void mgag200_primary_plane_helper_atomic_update(struct drm_plane *plane,
struct drm_framebuffer *fb = plane_state->fb;
struct drm_atomic_helper_damage_iter iter;
struct drm_rect damage;
- u8 seq1;
-
- if (!fb)
- return;
drm_atomic_helper_damage_iter_init(&iter, old_plane_state, plane_state);
drm_atomic_for_each_plane_damage(&iter, &damage) {
@@ -514,13 +510,19 @@ void mgag200_primary_plane_helper_atomic_update(struct drm_plane *plane,
/* Always scanout image at VRAM offset 0 */
mgag200_set_startadd(mdev, (u32)0);
mgag200_set_offset(mdev, fb);
+}
- if (!old_plane_state->crtc && plane_state->crtc) { // enabling
- RREG_SEQ(0x01, seq1);
- seq1 &= ~MGAREG_SEQ1_SCROFF;
- WREG_SEQ(0x01, seq1);
- msleep(20);
- }
+void mgag200_primary_plane_helper_atomic_enable(struct drm_plane *plane,
+ struct drm_atomic_state *state)
+{
+ struct drm_device *dev = plane->dev;
+ struct mga_device *mdev = to_mga_device(dev);
+ u8 seq1;
+
+ RREG_SEQ(0x01, seq1);
+ seq1 &= ~MGAREG_SEQ1_SCROFF;
+ WREG_SEQ(0x01, seq1);
+ msleep(20);
}
void mgag200_primary_plane_helper_atomic_disable(struct drm_plane *plane,
@@ -579,13 +581,13 @@ int mgag200_crtc_helper_atomic_check(struct drm_crtc *crtc, struct drm_atomic_st
struct drm_property_blob *new_gamma_lut = new_crtc_state->gamma_lut;
int ret;
- ret = drm_atomic_helper_check_crtc_state(new_crtc_state, false);
- if (ret)
- return ret;
-
if (!new_crtc_state->enable)
return 0;
+ ret = drm_atomic_helper_check_crtc_primary_plane(new_crtc_state);
+ if (ret)
+ return ret;
+
if (new_crtc_state->mode_changed) {
if (funcs->pixpllc_atomic_check) {
ret = funcs->pixpllc_atomic_check(crtc, new_state);
@@ -601,7 +603,7 @@ int mgag200_crtc_helper_atomic_check(struct drm_crtc *crtc, struct drm_atomic_st
}
}
- return drm_atomic_add_affected_planes(new_state, crtc);
+ return 0;
}
void mgag200_crtc_helper_atomic_flush(struct drm_crtc *crtc, struct drm_atomic_state *old_state)
@@ -824,7 +826,6 @@ int mgag200_mode_config_init(struct mga_device *mdev, resource_size_t vram_avail
dev->mode_config.max_width = MGAG200_MAX_FB_WIDTH;
dev->mode_config.max_height = MGAG200_MAX_FB_HEIGHT;
dev->mode_config.preferred_depth = 24;
- dev->mode_config.fb_base = mdev->vram_res->start;
dev->mode_config.funcs = &mgag200_mode_config_funcs;
dev->mode_config.helper_private = &mgag200_mode_config_helper_funcs;
diff --git a/drivers/gpu/drm/msm/Kconfig b/drivers/gpu/drm/msm/Kconfig
index 3c9dfdb0b328..85f5ab1d552c 100644
--- a/drivers/gpu/drm/msm/Kconfig
+++ b/drivers/gpu/drm/msm/Kconfig
@@ -9,6 +9,7 @@ config DRM_MSM
depends on QCOM_OCMEM || QCOM_OCMEM=n
depends on QCOM_LLCC || QCOM_LLCC=n
depends on QCOM_COMMAND_DB || QCOM_COMMAND_DB=n
+ depends on PM
select IOMMU_IO_PGTABLE
select QCOM_MDT_LOADER if ARCH_QCOM
select REGULATOR
@@ -28,6 +29,7 @@ config DRM_MSM
select SYNC_FILE
select PM_OPP
select NVMEM
+ select PM_GENERIC_DOMAINS
help
DRM/KMS driver for MSM/snapdragon.
@@ -140,12 +142,12 @@ config DRM_MSM_DSI_10NM_PHY
Choose this option if DSI PHY on SDM845 is used on the platform.
config DRM_MSM_DSI_7NM_PHY
- bool "Enable DSI 7nm PHY driver in MSM DRM"
+ bool "Enable DSI 7nm/5nm/4nm PHY driver in MSM DRM"
depends on DRM_MSM_DSI
default y
help
- Choose this option if DSI PHY on SM8150/SM8250/SC7280 is used on
- the platform.
+ Choose this option if DSI PHY on SM8150/SM8250/SM8350/SM8450/SM8550/SC7280
+ is used on the platform.
config DRM_MSM_HDMI
bool "Enable HDMI support in MSM DRM driver"
diff --git a/drivers/gpu/drm/msm/adreno/a2xx.xml.h b/drivers/gpu/drm/msm/adreno/a2xx.xml.h
index afa6023346c4..f87a1312f580 100644
--- a/drivers/gpu/drm/msm/adreno/a2xx.xml.h
+++ b/drivers/gpu/drm/msm/adreno/a2xx.xml.h
@@ -8,21 +8,21 @@ http://github.com/freedreno/envytools/
git clone https://github.com/freedreno/envytools.git
The rules-ng-ng source files this header was generated from are:
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno.xml ( 594 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/freedreno_copyright.xml ( 1572 bytes, from 2020-12-31 19:26:32)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a2xx.xml ( 90810 bytes, from 2021-06-21 15:24:24)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/adreno_common.xml ( 14609 bytes, from 2021-11-24 23:05:10)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/adreno_pm4.xml ( 69086 bytes, from 2022-03-03 16:41:33)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a3xx.xml ( 84231 bytes, from 2021-11-24 23:05:10)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a4xx.xml ( 113358 bytes, from 2022-01-31 23:06:21)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a5xx.xml ( 149512 bytes, from 2022-01-31 23:06:21)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a6xx.xml ( 184954 bytes, from 2022-03-03 16:41:33)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a6xx_gmu.xml ( 11331 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/ocmem.xml ( 1773 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/adreno_control_regs.xml ( 6038 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/adreno_pipe_regs.xml ( 2924 bytes, from 2021-07-22 15:21:56)
-
-Copyright (C) 2013-2021 by the following authors:
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno.xml ( 594 bytes, from 2023-03-10 18:32:52)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/freedreno_copyright.xml ( 1572 bytes, from 2022-07-23 20:21:46)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a2xx.xml ( 91929 bytes, from 2023-02-28 23:52:27)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/adreno_common.xml ( 15434 bytes, from 2023-03-10 18:32:53)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/adreno_pm4.xml ( 74995 bytes, from 2023-03-20 18:06:23)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a3xx.xml ( 84231 bytes, from 2022-08-02 16:38:43)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a4xx.xml ( 113474 bytes, from 2022-08-02 16:38:43)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a5xx.xml ( 149590 bytes, from 2023-02-14 19:37:12)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a6xx.xml ( 198949 bytes, from 2023-03-20 18:06:23)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a6xx_gmu.xml ( 11404 bytes, from 2023-03-10 18:32:53)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/ocmem.xml ( 1773 bytes, from 2022-08-02 16:38:43)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/adreno_control_regs.xml ( 9055 bytes, from 2023-03-10 18:32:52)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/adreno_pipe_regs.xml ( 2976 bytes, from 2023-03-10 18:32:52)
+
+Copyright (C) 2013-2023 by the following authors:
- Rob Clark <robdclark@gmail.com> (robclark)
- Ilia Mirkin <imirkin@alum.mit.edu> (imirkin)
@@ -1060,6 +1060,12 @@ enum a2xx_mh_perfcnt_select {
AXI_TOTAL_READ_REQUEST_DATA_BEATS = 181,
};
+enum perf_mode_cnt {
+ PERF_STATE_RESET = 0,
+ PERF_STATE_ENABLE = 1,
+ PERF_STATE_FREEZE = 2,
+};
+
enum adreno_mmu_clnt_beh {
BEH_NEVR = 0,
BEH_TRAN_RNG = 1,
@@ -1307,6 +1313,18 @@ static inline uint32_t A2XX_MH_MMU_VA_RANGE_VA_BASE(uint32_t val)
#define A2XX_RBBM_PM_OVERRIDE1_MH_TCROQ_SCLK_PM_OVERRIDE 0x80000000
#define REG_A2XX_RBBM_PM_OVERRIDE2 0x0000039d
+#define A2XX_RBBM_PM_OVERRIDE2_PA_REG_SCLK_PM_OVERRIDE 0x00000001
+#define A2XX_RBBM_PM_OVERRIDE2_PA_PA_SCLK_PM_OVERRIDE 0x00000002
+#define A2XX_RBBM_PM_OVERRIDE2_PA_AG_SCLK_PM_OVERRIDE 0x00000004
+#define A2XX_RBBM_PM_OVERRIDE2_VGT_REG_SCLK_PM_OVERRIDE 0x00000008
+#define A2XX_RBBM_PM_OVERRIDE2_VGT_FIFOS_SCLK_PM_OVERRIDE 0x00000010
+#define A2XX_RBBM_PM_OVERRIDE2_VGT_VGT_SCLK_PM_OVERRIDE 0x00000020
+#define A2XX_RBBM_PM_OVERRIDE2_DEBUG_PERF_SCLK_PM_OVERRIDE 0x00000040
+#define A2XX_RBBM_PM_OVERRIDE2_PERM_SCLK_PM_OVERRIDE 0x00000080
+#define A2XX_RBBM_PM_OVERRIDE2_GC_GA_GMEM0_PM_OVERRIDE 0x00000100
+#define A2XX_RBBM_PM_OVERRIDE2_GC_GA_GMEM1_PM_OVERRIDE 0x00000200
+#define A2XX_RBBM_PM_OVERRIDE2_GC_GA_GMEM2_PM_OVERRIDE 0x00000400
+#define A2XX_RBBM_PM_OVERRIDE2_GC_GA_GMEM3_PM_OVERRIDE 0x00000800
#define REG_A2XX_RBBM_DEBUG_OUT 0x000003a0
@@ -1334,6 +1352,12 @@ static inline uint32_t A2XX_MH_MMU_VA_RANGE_VA_BASE(uint32_t val)
#define REG_A2XX_RBBM_PERIPHID2 0x000003fa
#define REG_A2XX_CP_PERFMON_CNTL 0x00000444
+#define A2XX_CP_PERFMON_CNTL_PERF_MODE_CNT__MASK 0x00000007
+#define A2XX_CP_PERFMON_CNTL_PERF_MODE_CNT__SHIFT 0
+static inline uint32_t A2XX_CP_PERFMON_CNTL_PERF_MODE_CNT(enum perf_mode_cnt val)
+{
+ return ((val) << A2XX_CP_PERFMON_CNTL_PERF_MODE_CNT__SHIFT) & A2XX_CP_PERFMON_CNTL_PERF_MODE_CNT__MASK;
+}
#define REG_A2XX_CP_PERFCOUNTER_SELECT 0x00000445
diff --git a/drivers/gpu/drm/msm/adreno/a2xx_gpu.c b/drivers/gpu/drm/msm/adreno/a2xx_gpu.c
index 6c9a747eb4ad..c67089a7ebc1 100644
--- a/drivers/gpu/drm/msm/adreno/a2xx_gpu.c
+++ b/drivers/gpu/drm/msm/adreno/a2xx_gpu.c
@@ -53,6 +53,8 @@ static void a2xx_submit(struct msm_gpu *gpu, struct msm_gem_submit *submit)
static bool a2xx_me_init(struct msm_gpu *gpu)
{
+ struct adreno_gpu *adreno_gpu = to_adreno_gpu(gpu);
+ struct a2xx_gpu *a2xx_gpu = to_a2xx_gpu(adreno_gpu);
struct msm_ringbuffer *ring = gpu->rb[0];
OUT_PKT3(ring, CP_ME_INIT, 18);
@@ -84,15 +86,20 @@ static bool a2xx_me_init(struct msm_gpu *gpu)
/* NQ and External Memory Swap */
OUT_RING(ring, 0x00000000);
/* protected mode error checking (0x1f2 is REG_AXXX_CP_INT_CNTL) */
- OUT_RING(ring, 0x200001f2);
+ if (a2xx_gpu->protection_disabled)
+ OUT_RING(ring, 0x00000000);
+ else
+ OUT_RING(ring, 0x200001f2);
/* Disable header dumping and Header dump address */
OUT_RING(ring, 0x00000000);
/* Header dump size */
OUT_RING(ring, 0x00000000);
- /* enable protected mode */
- OUT_PKT3(ring, CP_SET_PROTECTED_MODE, 1);
- OUT_RING(ring, 1);
+ if (!a2xx_gpu->protection_disabled) {
+ /* enable protected mode */
+ OUT_PKT3(ring, CP_SET_PROTECTED_MODE, 1);
+ OUT_RING(ring, 1);
+ }
adreno_flush(gpu, ring, REG_AXXX_CP_RB_WPTR);
return a2xx_idle(gpu);
@@ -101,6 +108,7 @@ static bool a2xx_me_init(struct msm_gpu *gpu)
static int a2xx_hw_init(struct msm_gpu *gpu)
{
struct adreno_gpu *adreno_gpu = to_adreno_gpu(gpu);
+ struct a2xx_gpu *a2xx_gpu = to_a2xx_gpu(adreno_gpu);
dma_addr_t pt_base, tran_error;
uint32_t *ptr, len;
int i, ret;
@@ -221,6 +229,17 @@ static int a2xx_hw_init(struct msm_gpu *gpu)
len = adreno_gpu->fw[ADRENO_FW_PM4]->size / 4;
DBG("loading PM4 ucode version: %x", ptr[1]);
+ /*
+ * New firmware files seem to have GPU and firmware version in this
+ * word (0x20xxxx for A200, 0x220xxx for A220, 0x225xxx for A225).
+ * Older firmware files, which lack protection support, have 0 instead.
+ */
+ if (ptr[1] == 0) {
+ dev_warn(gpu->dev->dev,
+ "Legacy firmware detected, disabling protection support\n");
+ a2xx_gpu->protection_disabled = true;
+ }
+
gpu_write(gpu, REG_AXXX_CP_DEBUG,
AXXX_CP_DEBUG_MIU_128BIT_WRITE_ENABLE);
gpu_write(gpu, REG_AXXX_CP_ME_RAM_WADDR, 0);
diff --git a/drivers/gpu/drm/msm/adreno/a2xx_gpu.h b/drivers/gpu/drm/msm/adreno/a2xx_gpu.h
index 02fba2cb8932..161a075f94af 100644
--- a/drivers/gpu/drm/msm/adreno/a2xx_gpu.h
+++ b/drivers/gpu/drm/msm/adreno/a2xx_gpu.h
@@ -15,6 +15,7 @@
struct a2xx_gpu {
struct adreno_gpu base;
bool pm_enabled;
+ bool protection_disabled;
};
#define to_a2xx_gpu(x) container_of(x, struct a2xx_gpu, base)
diff --git a/drivers/gpu/drm/msm/adreno/a3xx.xml.h b/drivers/gpu/drm/msm/adreno/a3xx.xml.h
index 520ae3f375a1..237b564445be 100644
--- a/drivers/gpu/drm/msm/adreno/a3xx.xml.h
+++ b/drivers/gpu/drm/msm/adreno/a3xx.xml.h
@@ -8,21 +8,21 @@ http://github.com/freedreno/envytools/
git clone https://github.com/freedreno/envytools.git
The rules-ng-ng source files this header was generated from are:
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno.xml ( 594 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/freedreno_copyright.xml ( 1572 bytes, from 2020-12-31 19:26:32)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a2xx.xml ( 90810 bytes, from 2021-06-21 15:24:24)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/adreno_common.xml ( 14609 bytes, from 2021-11-24 23:05:10)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/adreno_pm4.xml ( 69086 bytes, from 2022-03-03 16:41:33)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a3xx.xml ( 84231 bytes, from 2021-11-24 23:05:10)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a4xx.xml ( 113358 bytes, from 2022-01-31 23:06:21)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a5xx.xml ( 149512 bytes, from 2022-01-31 23:06:21)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a6xx.xml ( 184954 bytes, from 2022-03-03 16:41:33)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a6xx_gmu.xml ( 11331 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/ocmem.xml ( 1773 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/adreno_control_regs.xml ( 6038 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/adreno_pipe_regs.xml ( 2924 bytes, from 2021-07-22 15:21:56)
-
-Copyright (C) 2013-2021 by the following authors:
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno.xml ( 594 bytes, from 2023-03-10 18:32:52)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/freedreno_copyright.xml ( 1572 bytes, from 2022-07-23 20:21:46)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a2xx.xml ( 91929 bytes, from 2023-02-28 23:52:27)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/adreno_common.xml ( 15434 bytes, from 2023-03-10 18:32:53)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/adreno_pm4.xml ( 74995 bytes, from 2023-03-20 18:06:23)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a3xx.xml ( 84231 bytes, from 2022-08-02 16:38:43)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a4xx.xml ( 113474 bytes, from 2022-08-02 16:38:43)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a5xx.xml ( 149590 bytes, from 2023-02-14 19:37:12)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a6xx.xml ( 198949 bytes, from 2023-03-20 18:06:23)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a6xx_gmu.xml ( 11404 bytes, from 2023-03-10 18:32:53)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/ocmem.xml ( 1773 bytes, from 2022-08-02 16:38:43)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/adreno_control_regs.xml ( 9055 bytes, from 2023-03-10 18:32:52)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/adreno_pipe_regs.xml ( 2976 bytes, from 2023-03-10 18:32:52)
+
+Copyright (C) 2013-2022 by the following authors:
- Rob Clark <robdclark@gmail.com> (robclark)
- Ilia Mirkin <imirkin@alum.mit.edu> (imirkin)
diff --git a/drivers/gpu/drm/msm/adreno/a3xx_gpu.c b/drivers/gpu/drm/msm/adreno/a3xx_gpu.c
index 2c8b9899625b..c86b377f6f0d 100644
--- a/drivers/gpu/drm/msm/adreno/a3xx_gpu.c
+++ b/drivers/gpu/drm/msm/adreno/a3xx_gpu.c
@@ -477,6 +477,16 @@ static struct msm_gpu_state *a3xx_gpu_state_get(struct msm_gpu *gpu)
return state;
}
+static u64 a3xx_gpu_busy(struct msm_gpu *gpu, unsigned long *out_sample_rate)
+{
+ u64 busy_cycles;
+
+ busy_cycles = gpu_read64(gpu, REG_A3XX_RBBM_PERFCTR_RBBM_1_LO);
+ *out_sample_rate = clk_get_rate(gpu->core_clk);
+
+ return busy_cycles;
+}
+
static u32 a3xx_get_rptr(struct msm_gpu *gpu, struct msm_ringbuffer *ring)
{
ring->memptrs->rptr = gpu_read(gpu, REG_AXXX_CP_RB_RPTR);
@@ -498,9 +508,10 @@ static const struct adreno_gpu_funcs funcs = {
#if defined(CONFIG_DEBUG_FS) || defined(CONFIG_DEV_COREDUMP)
.show = adreno_show,
#endif
+ .gpu_busy = a3xx_gpu_busy,
.gpu_state_get = a3xx_gpu_state_get,
.gpu_state_put = adreno_gpu_state_put,
- .create_address_space = adreno_iommu_create_address_space,
+ .create_address_space = adreno_create_address_space,
.get_rptr = a3xx_get_rptr,
},
};
diff --git a/drivers/gpu/drm/msm/adreno/a4xx.xml.h b/drivers/gpu/drm/msm/adreno/a4xx.xml.h
index 7e5c21015d10..ff5f1e98a5fc 100644
--- a/drivers/gpu/drm/msm/adreno/a4xx.xml.h
+++ b/drivers/gpu/drm/msm/adreno/a4xx.xml.h
@@ -8,19 +8,19 @@ http://github.com/freedreno/envytools/
git clone https://github.com/freedreno/envytools.git
The rules-ng-ng source files this header was generated from are:
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno.xml ( 594 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/freedreno_copyright.xml ( 1572 bytes, from 2020-12-31 19:26:32)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a2xx.xml ( 90810 bytes, from 2021-06-21 15:24:24)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/adreno_common.xml ( 14609 bytes, from 2021-11-24 23:05:10)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/adreno_pm4.xml ( 69086 bytes, from 2022-03-03 16:41:33)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a3xx.xml ( 84231 bytes, from 2021-11-24 23:05:10)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a4xx.xml ( 113358 bytes, from 2022-01-31 23:06:21)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a5xx.xml ( 149512 bytes, from 2022-01-31 23:06:21)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a6xx.xml ( 184954 bytes, from 2022-03-03 16:41:33)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a6xx_gmu.xml ( 11331 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/ocmem.xml ( 1773 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/adreno_control_regs.xml ( 6038 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/adreno_pipe_regs.xml ( 2924 bytes, from 2021-07-22 15:21:56)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno.xml ( 594 bytes, from 2023-03-10 18:32:52)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/freedreno_copyright.xml ( 1572 bytes, from 2022-07-23 20:21:46)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a2xx.xml ( 91929 bytes, from 2023-02-28 23:52:27)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/adreno_common.xml ( 15434 bytes, from 2023-03-10 18:32:53)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/adreno_pm4.xml ( 74995 bytes, from 2023-03-20 18:06:23)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a3xx.xml ( 84231 bytes, from 2022-08-02 16:38:43)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a4xx.xml ( 113474 bytes, from 2022-08-02 16:38:43)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a5xx.xml ( 149590 bytes, from 2023-02-14 19:37:12)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a6xx.xml ( 198949 bytes, from 2023-03-20 18:06:23)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a6xx_gmu.xml ( 11404 bytes, from 2023-03-10 18:32:53)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/ocmem.xml ( 1773 bytes, from 2022-08-02 16:38:43)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/adreno_control_regs.xml ( 9055 bytes, from 2023-03-10 18:32:52)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/adreno_pipe_regs.xml ( 2976 bytes, from 2023-03-10 18:32:52)
Copyright (C) 2013-2022 by the following authors:
- Rob Clark <robdclark@gmail.com> (robclark)
@@ -3159,6 +3159,18 @@ static inline uint32_t A4XX_TPL1_TP_TEX_COUNT_GS(uint32_t val)
#define REG_A4XX_TPL1_TP_GS_BORDER_COLOR_BASE_ADDR 0x0000238d
#define REG_A4XX_TPL1_TP_FS_TEX_COUNT 0x000023a0
+#define A4XX_TPL1_TP_FS_TEX_COUNT_FS__MASK 0x000000ff
+#define A4XX_TPL1_TP_FS_TEX_COUNT_FS__SHIFT 0
+static inline uint32_t A4XX_TPL1_TP_FS_TEX_COUNT_FS(uint32_t val)
+{
+ return ((val) << A4XX_TPL1_TP_FS_TEX_COUNT_FS__SHIFT) & A4XX_TPL1_TP_FS_TEX_COUNT_FS__MASK;
+}
+#define A4XX_TPL1_TP_FS_TEX_COUNT_CS__MASK 0x0000ff00
+#define A4XX_TPL1_TP_FS_TEX_COUNT_CS__SHIFT 8
+static inline uint32_t A4XX_TPL1_TP_FS_TEX_COUNT_CS(uint32_t val)
+{
+ return ((val) << A4XX_TPL1_TP_FS_TEX_COUNT_CS__SHIFT) & A4XX_TPL1_TP_FS_TEX_COUNT_CS__MASK;
+}
#define REG_A4XX_TPL1_TP_FS_BORDER_COLOR_BASE_ADDR 0x000023a1
diff --git a/drivers/gpu/drm/msm/adreno/a4xx_gpu.c b/drivers/gpu/drm/msm/adreno/a4xx_gpu.c
index 7cb8d9849c07..715436cb3996 100644
--- a/drivers/gpu/drm/msm/adreno/a4xx_gpu.c
+++ b/drivers/gpu/drm/msm/adreno/a4xx_gpu.c
@@ -606,12 +606,21 @@ static int a4xx_pm_suspend(struct msm_gpu *gpu) {
static int a4xx_get_timestamp(struct msm_gpu *gpu, uint64_t *value)
{
- *value = gpu_read64(gpu, REG_A4XX_RBBM_PERFCTR_CP_0_LO,
- REG_A4XX_RBBM_PERFCTR_CP_0_HI);
+ *value = gpu_read64(gpu, REG_A4XX_RBBM_PERFCTR_CP_0_LO);
return 0;
}
+static u64 a4xx_gpu_busy(struct msm_gpu *gpu, unsigned long *out_sample_rate)
+{
+ u64 busy_cycles;
+
+ busy_cycles = gpu_read64(gpu, REG_A4XX_RBBM_PERFCTR_RBBM_1_LO);
+ *out_sample_rate = clk_get_rate(gpu->core_clk);
+
+ return busy_cycles;
+}
+
static u32 a4xx_get_rptr(struct msm_gpu *gpu, struct msm_ringbuffer *ring)
{
ring->memptrs->rptr = gpu_read(gpu, REG_A4XX_CP_RB_RPTR);
@@ -633,9 +642,10 @@ static const struct adreno_gpu_funcs funcs = {
#if defined(CONFIG_DEBUG_FS) || defined(CONFIG_DEV_COREDUMP)
.show = adreno_show,
#endif
+ .gpu_busy = a4xx_gpu_busy,
.gpu_state_get = a4xx_gpu_state_get,
.gpu_state_put = adreno_gpu_state_put,
- .create_address_space = adreno_iommu_create_address_space,
+ .create_address_space = adreno_create_address_space,
.get_rptr = a4xx_get_rptr,
},
.get_timestamp = a4xx_get_timestamp,
diff --git a/drivers/gpu/drm/msm/adreno/a5xx.xml.h b/drivers/gpu/drm/msm/adreno/a5xx.xml.h
index 2505b4e43ca0..03b7ee592b11 100644
--- a/drivers/gpu/drm/msm/adreno/a5xx.xml.h
+++ b/drivers/gpu/drm/msm/adreno/a5xx.xml.h
@@ -8,21 +8,21 @@ http://github.com/freedreno/envytools/
git clone https://github.com/freedreno/envytools.git
The rules-ng-ng source files this header was generated from are:
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno.xml ( 594 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/freedreno_copyright.xml ( 1572 bytes, from 2020-12-31 19:26:32)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a2xx.xml ( 90810 bytes, from 2021-06-21 15:24:24)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/adreno_common.xml ( 14609 bytes, from 2021-11-24 23:05:10)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/adreno_pm4.xml ( 69086 bytes, from 2022-03-03 16:41:33)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a3xx.xml ( 84231 bytes, from 2021-11-24 23:05:10)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a4xx.xml ( 113358 bytes, from 2022-01-31 23:06:21)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a5xx.xml ( 149512 bytes, from 2022-01-31 23:06:21)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a6xx.xml ( 184954 bytes, from 2022-03-03 16:41:33)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a6xx_gmu.xml ( 11331 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/ocmem.xml ( 1773 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/adreno_control_regs.xml ( 6038 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/adreno_pipe_regs.xml ( 2924 bytes, from 2021-07-22 15:21:56)
-
-Copyright (C) 2013-2022 by the following authors:
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno.xml ( 594 bytes, from 2023-03-10 18:32:52)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/freedreno_copyright.xml ( 1572 bytes, from 2022-07-23 20:21:46)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a2xx.xml ( 91929 bytes, from 2023-02-28 23:52:27)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/adreno_common.xml ( 15434 bytes, from 2023-03-10 18:32:53)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/adreno_pm4.xml ( 74995 bytes, from 2023-03-20 18:06:23)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a3xx.xml ( 84231 bytes, from 2022-08-02 16:38:43)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a4xx.xml ( 113474 bytes, from 2022-08-02 16:38:43)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a5xx.xml ( 149590 bytes, from 2023-02-14 19:37:12)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a6xx.xml ( 198949 bytes, from 2023-03-20 18:06:23)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a6xx_gmu.xml ( 11404 bytes, from 2023-03-10 18:32:53)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/ocmem.xml ( 1773 bytes, from 2022-08-02 16:38:43)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/adreno_control_regs.xml ( 9055 bytes, from 2023-03-10 18:32:52)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/adreno_pipe_regs.xml ( 2976 bytes, from 2023-03-10 18:32:52)
+
+Copyright (C) 2013-2023 by the following authors:
- Rob Clark <robdclark@gmail.com> (robclark)
- Ilia Mirkin <imirkin@alum.mit.edu> (imirkin)
@@ -4218,6 +4218,7 @@ static inline uint32_t A5XX_SP_CS_CONFIG_SHADEROBJOFFSET(uint32_t val)
#define REG_A5XX_SP_FS_CONFIG_MAX_CONST 0x0000e58b
#define REG_A5XX_SP_VS_CTRL_REG0 0x0000e590
+#define A5XX_SP_VS_CTRL_REG0_BUFFER 0x00000004
#define A5XX_SP_VS_CTRL_REG0_THREADSIZE__MASK 0x00000008
#define A5XX_SP_VS_CTRL_REG0_THREADSIZE__SHIFT 3
static inline uint32_t A5XX_SP_VS_CTRL_REG0_THREADSIZE(enum a3xx_threadsize val)
@@ -4316,6 +4317,7 @@ static inline uint32_t A5XX_SP_VS_VPC_DST_REG_OUTLOC3(uint32_t val)
#define REG_A5XX_SP_VS_OBJ_START_HI 0x0000e5ad
#define REG_A5XX_SP_FS_CTRL_REG0 0x0000e5c0
+#define A5XX_SP_FS_CTRL_REG0_BUFFER 0x00000004
#define A5XX_SP_FS_CTRL_REG0_THREADSIZE__MASK 0x00000008
#define A5XX_SP_FS_CTRL_REG0_THREADSIZE__SHIFT 3
static inline uint32_t A5XX_SP_FS_CTRL_REG0_THREADSIZE(enum a3xx_threadsize val)
@@ -4406,6 +4408,7 @@ static inline uint32_t A5XX_SP_FS_MRT_REG_COLOR_FORMAT(enum a5xx_color_fmt val)
#define REG_A5XX_UNKNOWN_E5DB 0x0000e5db
#define REG_A5XX_SP_CS_CTRL_REG0 0x0000e5f0
+#define A5XX_SP_CS_CTRL_REG0_BUFFER 0x00000004
#define A5XX_SP_CS_CTRL_REG0_THREADSIZE__MASK 0x00000008
#define A5XX_SP_CS_CTRL_REG0_THREADSIZE__SHIFT 3
static inline uint32_t A5XX_SP_CS_CTRL_REG0_THREADSIZE(enum a3xx_threadsize val)
@@ -4440,6 +4443,7 @@ static inline uint32_t A5XX_SP_CS_CTRL_REG0_BRANCHSTACK(uint32_t val)
#define REG_A5XX_SP_CS_OBJ_START_HI 0x0000e5f4
#define REG_A5XX_SP_HS_CTRL_REG0 0x0000e600
+#define A5XX_SP_HS_CTRL_REG0_BUFFER 0x00000004
#define A5XX_SP_HS_CTRL_REG0_THREADSIZE__MASK 0x00000008
#define A5XX_SP_HS_CTRL_REG0_THREADSIZE__SHIFT 3
static inline uint32_t A5XX_SP_HS_CTRL_REG0_THREADSIZE(enum a3xx_threadsize val)
@@ -4474,6 +4478,7 @@ static inline uint32_t A5XX_SP_HS_CTRL_REG0_BRANCHSTACK(uint32_t val)
#define REG_A5XX_SP_HS_OBJ_START_HI 0x0000e604
#define REG_A5XX_SP_DS_CTRL_REG0 0x0000e610
+#define A5XX_SP_DS_CTRL_REG0_BUFFER 0x00000004
#define A5XX_SP_DS_CTRL_REG0_THREADSIZE__MASK 0x00000008
#define A5XX_SP_DS_CTRL_REG0_THREADSIZE__SHIFT 3
static inline uint32_t A5XX_SP_DS_CTRL_REG0_THREADSIZE(enum a3xx_threadsize val)
@@ -4508,6 +4513,7 @@ static inline uint32_t A5XX_SP_DS_CTRL_REG0_BRANCHSTACK(uint32_t val)
#define REG_A5XX_SP_DS_OBJ_START_HI 0x0000e62d
#define REG_A5XX_SP_GS_CTRL_REG0 0x0000e640
+#define A5XX_SP_GS_CTRL_REG0_BUFFER 0x00000004
#define A5XX_SP_GS_CTRL_REG0_THREADSIZE__MASK 0x00000008
#define A5XX_SP_GS_CTRL_REG0_THREADSIZE__SHIFT 3
static inline uint32_t A5XX_SP_GS_CTRL_REG0_THREADSIZE(enum a3xx_threadsize val)
@@ -4665,11 +4671,11 @@ static inline uint32_t A5XX_HLSQ_CONTROL_2_REG_SAMPLEMASK(uint32_t val)
{
return ((val) << A5XX_HLSQ_CONTROL_2_REG_SAMPLEMASK__SHIFT) & A5XX_HLSQ_CONTROL_2_REG_SAMPLEMASK__MASK;
}
-#define A5XX_HLSQ_CONTROL_2_REG_SIZE__MASK 0xff000000
-#define A5XX_HLSQ_CONTROL_2_REG_SIZE__SHIFT 24
-static inline uint32_t A5XX_HLSQ_CONTROL_2_REG_SIZE(uint32_t val)
+#define A5XX_HLSQ_CONTROL_2_REG_CENTERRHW__MASK 0xff000000
+#define A5XX_HLSQ_CONTROL_2_REG_CENTERRHW__SHIFT 24
+static inline uint32_t A5XX_HLSQ_CONTROL_2_REG_CENTERRHW(uint32_t val)
{
- return ((val) << A5XX_HLSQ_CONTROL_2_REG_SIZE__SHIFT) & A5XX_HLSQ_CONTROL_2_REG_SIZE__MASK;
+ return ((val) << A5XX_HLSQ_CONTROL_2_REG_CENTERRHW__SHIFT) & A5XX_HLSQ_CONTROL_2_REG_CENTERRHW__MASK;
}
#define REG_A5XX_HLSQ_CONTROL_3_REG 0x0000e787
diff --git a/drivers/gpu/drm/msm/adreno/a5xx_gpu.c b/drivers/gpu/drm/msm/adreno/a5xx_gpu.c
index 3dcec7acb384..1e8d2982d603 100644
--- a/drivers/gpu/drm/msm/adreno/a5xx_gpu.c
+++ b/drivers/gpu/drm/msm/adreno/a5xx_gpu.c
@@ -5,7 +5,7 @@
#include <linux/kernel.h>
#include <linux/types.h>
#include <linux/cpumask.h>
-#include <linux/qcom_scm.h>
+#include <linux/firmware/qcom/qcom_scm.h>
#include <linux/pm_opp.h>
#include <linux/nvmem-consumer.h>
#include <linux/slab.h>
@@ -151,8 +151,8 @@ static void a5xx_submit(struct msm_gpu *gpu, struct msm_gem_submit *submit)
OUT_RING(ring, 1);
/* Enable local preemption for finegrain preemption */
- OUT_PKT7(ring, CP_PREEMPT_ENABLE_GLOBAL, 1);
- OUT_RING(ring, 0x02);
+ OUT_PKT7(ring, CP_PREEMPT_ENABLE_LOCAL, 1);
+ OUT_RING(ring, 0x1);
/* Allow CP_CONTEXT_SWITCH_YIELD packets in the IB2 */
OUT_PKT7(ring, CP_YIELD_ENABLE, 1);
@@ -567,7 +567,7 @@ static void a5xx_ucode_check_version(struct a5xx_gpu *a5xx_gpu,
msm_gem_put_vaddr(obj);
}
-static int a5xx_ucode_init(struct msm_gpu *gpu)
+static int a5xx_ucode_load(struct msm_gpu *gpu)
{
struct adreno_gpu *adreno_gpu = to_adreno_gpu(gpu);
struct a5xx_gpu *a5xx_gpu = to_a5xx_gpu(adreno_gpu);
@@ -605,11 +605,24 @@ static int a5xx_ucode_init(struct msm_gpu *gpu)
a5xx_ucode_check_version(a5xx_gpu, a5xx_gpu->pfp_bo);
}
- gpu_write64(gpu, REG_A5XX_CP_ME_INSTR_BASE_LO,
- REG_A5XX_CP_ME_INSTR_BASE_HI, a5xx_gpu->pm4_iova);
+ if (a5xx_gpu->has_whereami) {
+ if (!a5xx_gpu->shadow_bo) {
+ a5xx_gpu->shadow = msm_gem_kernel_new(gpu->dev,
+ sizeof(u32) * gpu->nr_rings,
+ MSM_BO_WC | MSM_BO_MAP_PRIV,
+ gpu->aspace, &a5xx_gpu->shadow_bo,
+ &a5xx_gpu->shadow_iova);
- gpu_write64(gpu, REG_A5XX_CP_PFP_INSTR_BASE_LO,
- REG_A5XX_CP_PFP_INSTR_BASE_HI, a5xx_gpu->pfp_iova);
+ if (IS_ERR(a5xx_gpu->shadow))
+ return PTR_ERR(a5xx_gpu->shadow);
+
+ msm_gem_object_set_name(a5xx_gpu->shadow_bo, "shadow");
+ }
+ } else if (gpu->nr_rings > 1) {
+ /* Disable preemption if WHERE_AM_I isn't available */
+ a5xx_preempt_fini(gpu);
+ gpu->nr_rings = 1;
+ }
return 0;
}
@@ -808,7 +821,7 @@ static int a5xx_hw_init(struct msm_gpu *gpu)
gpu_write(gpu, REG_A5XX_RBBM_AHB_CNTL2, 0x0000003F);
/* Set the highest bank bit */
- if (adreno_is_a540(adreno_gpu))
+ if (adreno_is_a540(adreno_gpu) || adreno_is_a530(adreno_gpu))
regbit = 2;
else
regbit = 1;
@@ -868,8 +881,7 @@ static int a5xx_hw_init(struct msm_gpu *gpu)
* memory rendering at this point in time and we don't want to block off
* part of the virtual memory space.
*/
- gpu_write64(gpu, REG_A5XX_RBBM_SECVID_TSB_TRUSTED_BASE_LO,
- REG_A5XX_RBBM_SECVID_TSB_TRUSTED_BASE_HI, 0x00000000);
+ gpu_write64(gpu, REG_A5XX_RBBM_SECVID_TSB_TRUSTED_BASE_LO, 0x00000000);
gpu_write(gpu, REG_A5XX_RBBM_SECVID_TSB_TRUSTED_SIZE, 0x00000000);
/* Put the GPU into 64 bit by default */
@@ -903,13 +915,11 @@ static int a5xx_hw_init(struct msm_gpu *gpu)
if (adreno_is_a530(adreno_gpu) || adreno_is_a540(adreno_gpu))
a5xx_gpmu_ucode_init(gpu);
- ret = a5xx_ucode_init(gpu);
- if (ret)
- return ret;
+ gpu_write64(gpu, REG_A5XX_CP_ME_INSTR_BASE_LO, a5xx_gpu->pm4_iova);
+ gpu_write64(gpu, REG_A5XX_CP_PFP_INSTR_BASE_LO, a5xx_gpu->pfp_iova);
/* Set the ringbuffer address */
- gpu_write64(gpu, REG_A5XX_CP_RB_BASE, REG_A5XX_CP_RB_BASE_HI,
- gpu->rb[0]->iova);
+ gpu_write64(gpu, REG_A5XX_CP_RB_BASE, gpu->rb[0]->iova);
/*
* If the microcode supports the WHERE_AM_I opcode then we can use that
@@ -920,27 +930,10 @@ static int a5xx_hw_init(struct msm_gpu *gpu)
gpu_write(gpu, REG_A5XX_CP_RB_CNTL,
MSM_GPU_RB_CNTL_DEFAULT | AXXX_CP_RB_CNTL_NO_UPDATE);
- /* Create a privileged buffer for the RPTR shadow */
- if (a5xx_gpu->has_whereami) {
- if (!a5xx_gpu->shadow_bo) {
- a5xx_gpu->shadow = msm_gem_kernel_new(gpu->dev,
- sizeof(u32) * gpu->nr_rings,
- MSM_BO_WC | MSM_BO_MAP_PRIV,
- gpu->aspace, &a5xx_gpu->shadow_bo,
- &a5xx_gpu->shadow_iova);
-
- if (IS_ERR(a5xx_gpu->shadow))
- return PTR_ERR(a5xx_gpu->shadow);
-
- msm_gem_object_set_name(a5xx_gpu->shadow_bo, "shadow");
- }
-
+ /* Configure the RPTR shadow if needed: */
+ if (a5xx_gpu->shadow_bo) {
gpu_write64(gpu, REG_A5XX_CP_RB_RPTR_ADDR,
- REG_A5XX_CP_RB_RPTR_ADDR_HI, shadowptr(a5xx_gpu, gpu->rb[0]));
- } else if (gpu->nr_rings > 1) {
- /* Disable preemption if WHERE_AM_I isn't available */
- a5xx_preempt_fini(gpu);
- gpu->nr_rings = 1;
+ shadowptr(a5xx_gpu, gpu->rb[0]));
}
a5xx_preempt_hw_init(gpu);
@@ -1103,14 +1096,19 @@ bool a5xx_idle(struct msm_gpu *gpu, struct msm_ringbuffer *ring)
static int a5xx_fault_handler(void *arg, unsigned long iova, int flags, void *data)
{
struct msm_gpu *gpu = arg;
- pr_warn_ratelimited("*** gpu fault: iova=%08lx, flags=%d (%u,%u,%u,%u)\n",
- iova, flags,
+ struct adreno_smmu_fault_info *info = data;
+ char block[12] = "unknown";
+ u32 scratch[] = {
gpu_read(gpu, REG_A5XX_CP_SCRATCH_REG(4)),
gpu_read(gpu, REG_A5XX_CP_SCRATCH_REG(5)),
gpu_read(gpu, REG_A5XX_CP_SCRATCH_REG(6)),
- gpu_read(gpu, REG_A5XX_CP_SCRATCH_REG(7)));
+ gpu_read(gpu, REG_A5XX_CP_SCRATCH_REG(7)),
+ };
- return 0;
+ if (info)
+ snprintf(block, sizeof(block), "%x", info->fsynr1);
+
+ return adreno_fault_handler(gpu, iova, flags, info, block, scratch);
}
static void a5xx_cp_err_irq(struct msm_gpu *gpu)
@@ -1239,9 +1237,9 @@ static void a5xx_fault_detect_irq(struct msm_gpu *gpu)
gpu_read(gpu, REG_A5XX_RBBM_STATUS),
gpu_read(gpu, REG_A5XX_CP_RB_RPTR),
gpu_read(gpu, REG_A5XX_CP_RB_WPTR),
- gpu_read64(gpu, REG_A5XX_CP_IB1_BASE, REG_A5XX_CP_IB1_BASE_HI),
+ gpu_read64(gpu, REG_A5XX_CP_IB1_BASE),
gpu_read(gpu, REG_A5XX_CP_IB1_BUFSZ),
- gpu_read64(gpu, REG_A5XX_CP_IB2_BASE, REG_A5XX_CP_IB2_BASE_HI),
+ gpu_read64(gpu, REG_A5XX_CP_IB2_BASE),
gpu_read(gpu, REG_A5XX_CP_IB2_BUFSZ));
/* Turn off the hangcheck timer to keep it from bothering us */
@@ -1427,8 +1425,7 @@ static int a5xx_pm_suspend(struct msm_gpu *gpu)
static int a5xx_get_timestamp(struct msm_gpu *gpu, uint64_t *value)
{
- *value = gpu_read64(gpu, REG_A5XX_RBBM_ALWAYSON_COUNTER_LO,
- REG_A5XX_RBBM_ALWAYSON_COUNTER_HI);
+ *value = gpu_read64(gpu, REG_A5XX_RBBM_ALWAYSON_COUNTER_LO);
return 0;
}
@@ -1465,8 +1462,7 @@ static int a5xx_crashdumper_run(struct msm_gpu *gpu,
if (IS_ERR_OR_NULL(dumper->ptr))
return -EINVAL;
- gpu_write64(gpu, REG_A5XX_CP_CRASH_SCRIPT_BASE_LO,
- REG_A5XX_CP_CRASH_SCRIPT_BASE_HI, dumper->iova);
+ gpu_write64(gpu, REG_A5XX_CP_CRASH_SCRIPT_BASE_LO, dumper->iova);
gpu_write(gpu, REG_A5XX_CP_CRASH_DUMP_CNTL, 1);
@@ -1666,8 +1662,7 @@ static u64 a5xx_gpu_busy(struct msm_gpu *gpu, unsigned long *out_sample_rate)
{
u64 busy_cycles;
- busy_cycles = gpu_read64(gpu, REG_A5XX_RBBM_PERFCTR_RBBM_0_LO,
- REG_A5XX_RBBM_PERFCTR_RBBM_0_HI);
+ busy_cycles = gpu_read64(gpu, REG_A5XX_RBBM_PERFCTR_RBBM_0_LO);
*out_sample_rate = clk_get_rate(gpu->core_clk);
return busy_cycles;
@@ -1689,6 +1684,7 @@ static const struct adreno_gpu_funcs funcs = {
.get_param = adreno_get_param,
.set_param = adreno_set_param,
.hw_init = a5xx_hw_init,
+ .ucode_load = a5xx_ucode_load,
.pm_suspend = a5xx_pm_suspend,
.pm_resume = a5xx_pm_resume,
.recover = a5xx_recover,
@@ -1705,7 +1701,7 @@ static const struct adreno_gpu_funcs funcs = {
.gpu_busy = a5xx_gpu_busy,
.gpu_state_get = a5xx_gpu_state_get,
.gpu_state_put = a5xx_gpu_state_put,
- .create_address_space = adreno_iommu_create_address_space,
+ .create_address_space = adreno_create_address_space,
.get_rptr = a5xx_get_rptr,
},
.get_timestamp = a5xx_get_timestamp,
@@ -1750,6 +1746,7 @@ struct msm_gpu *a5xx_gpu_init(struct drm_device *dev)
struct a5xx_gpu *a5xx_gpu = NULL;
struct adreno_gpu *adreno_gpu;
struct msm_gpu *gpu;
+ unsigned int nr_rings;
int ret;
if (!pdev) {
@@ -1770,7 +1767,12 @@ struct msm_gpu *a5xx_gpu_init(struct drm_device *dev)
check_speed_bin(&pdev->dev);
- ret = adreno_gpu_init(dev, pdev, adreno_gpu, &funcs, 4);
+ nr_rings = 4;
+
+ if (adreno_is_a510(adreno_gpu))
+ nr_rings = 1;
+
+ ret = adreno_gpu_init(dev, pdev, adreno_gpu, &funcs, nr_rings);
if (ret) {
a5xx_destroy(&(a5xx_gpu->base.base));
return ERR_PTR(ret);
diff --git a/drivers/gpu/drm/msm/adreno/a5xx_preempt.c b/drivers/gpu/drm/msm/adreno/a5xx_preempt.c
index 8abc9a2b114a..f58dd564d122 100644
--- a/drivers/gpu/drm/msm/adreno/a5xx_preempt.c
+++ b/drivers/gpu/drm/msm/adreno/a5xx_preempt.c
@@ -63,7 +63,7 @@ static struct msm_ringbuffer *get_next_ring(struct msm_gpu *gpu)
struct msm_ringbuffer *ring = gpu->rb[i];
spin_lock_irqsave(&ring->preempt_lock, flags);
- empty = (get_wptr(ring) == ring->memptrs->rptr);
+ empty = (get_wptr(ring) == gpu->funcs->get_rptr(gpu, ring));
spin_unlock_irqrestore(&ring->preempt_lock, flags);
if (!empty)
@@ -137,7 +137,6 @@ void a5xx_preempt_trigger(struct msm_gpu *gpu)
/* Set the address of the incoming preemption record */
gpu_write64(gpu, REG_A5XX_CP_CONTEXT_SWITCH_RESTORE_ADDR_LO,
- REG_A5XX_CP_CONTEXT_SWITCH_RESTORE_ADDR_HI,
a5xx_gpu->preempt_iova[ring->id]);
a5xx_gpu->next_ring = ring;
@@ -208,11 +207,11 @@ void a5xx_preempt_hw_init(struct msm_gpu *gpu)
a5xx_gpu->preempt[i]->wptr = 0;
a5xx_gpu->preempt[i]->rptr = 0;
a5xx_gpu->preempt[i]->rbase = gpu->rb[i]->iova;
+ a5xx_gpu->preempt[i]->rptr_addr = shadowptr(a5xx_gpu, gpu->rb[i]);
}
/* Write a 0 to signal that we aren't switching pagetables */
- gpu_write64(gpu, REG_A5XX_CP_CONTEXT_SWITCH_SMMU_INFO_LO,
- REG_A5XX_CP_CONTEXT_SWITCH_SMMU_INFO_HI, 0);
+ gpu_write64(gpu, REG_A5XX_CP_CONTEXT_SWITCH_SMMU_INFO_LO, 0);
/* Reset the preemption state */
set_preempt_state(a5xx_gpu, PREEMPT_NONE);
@@ -259,7 +258,6 @@ static int preempt_init_ring(struct a5xx_gpu *a5xx_gpu,
ptr->data = 0;
ptr->cntl = MSM_GPU_RB_CNTL_DEFAULT | AXXX_CP_RB_CNTL_NO_UPDATE;
- ptr->rptr_addr = shadowptr(a5xx_gpu, ring);
ptr->counter = counters_iova;
return 0;
diff --git a/drivers/gpu/drm/msm/adreno/a6xx.xml.h b/drivers/gpu/drm/msm/adreno/a6xx.xml.h
index beea4a7fc1df..4dc3be6ed45d 100644
--- a/drivers/gpu/drm/msm/adreno/a6xx.xml.h
+++ b/drivers/gpu/drm/msm/adreno/a6xx.xml.h
@@ -8,21 +8,21 @@ http://github.com/freedreno/envytools/
git clone https://github.com/freedreno/envytools.git
The rules-ng-ng source files this header was generated from are:
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno.xml ( 594 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/freedreno_copyright.xml ( 1572 bytes, from 2020-12-31 19:26:32)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a2xx.xml ( 90810 bytes, from 2021-06-21 15:24:24)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/adreno_common.xml ( 14609 bytes, from 2021-11-24 23:05:10)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/adreno_pm4.xml ( 69086 bytes, from 2022-03-03 16:41:33)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a3xx.xml ( 84231 bytes, from 2021-11-24 23:05:10)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a4xx.xml ( 113358 bytes, from 2022-01-31 23:06:21)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a5xx.xml ( 149512 bytes, from 2022-01-31 23:06:21)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a6xx.xml ( 184954 bytes, from 2022-03-03 16:41:33)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a6xx_gmu.xml ( 11331 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/ocmem.xml ( 1773 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/adreno_control_regs.xml ( 6038 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/adreno_pipe_regs.xml ( 2924 bytes, from 2021-07-22 15:21:56)
-
-Copyright (C) 2013-2022 by the following authors:
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno.xml ( 594 bytes, from 2023-03-10 18:32:52)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/freedreno_copyright.xml ( 1572 bytes, from 2022-07-23 20:21:46)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a2xx.xml ( 91929 bytes, from 2023-02-28 23:52:27)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/adreno_common.xml ( 15434 bytes, from 2023-03-10 18:32:53)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/adreno_pm4.xml ( 74995 bytes, from 2023-03-20 18:06:23)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a3xx.xml ( 84231 bytes, from 2022-08-02 16:38:43)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a4xx.xml ( 113474 bytes, from 2022-08-02 16:38:43)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a5xx.xml ( 149590 bytes, from 2023-02-14 19:37:12)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a6xx.xml ( 198949 bytes, from 2023-03-20 18:06:23)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a6xx_gmu.xml ( 11404 bytes, from 2023-03-10 18:32:53)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/ocmem.xml ( 1773 bytes, from 2022-08-02 16:38:43)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/adreno_control_regs.xml ( 9055 bytes, from 2023-03-10 18:32:52)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/adreno_pipe_regs.xml ( 2976 bytes, from 2023-03-10 18:32:52)
+
+Copyright (C) 2013-2023 by the following authors:
- Rob Clark <robdclark@gmail.com> (robclark)
- Ilia Mirkin <imirkin@alum.mit.edu> (imirkin)
@@ -241,6 +241,9 @@ enum a6xx_shader_id {
A6XX_HLSQ_FRONTEND_META = 97,
A6XX_HLSQ_INDIRECT_META = 98,
A6XX_HLSQ_BACKEND_META = 99,
+ A6XX_SP_LB_6_DATA = 112,
+ A6XX_SP_LB_7_DATA = 113,
+ A6XX_HLSQ_INST_RAM_1 = 115,
};
enum a6xx_debugbus_id {
@@ -274,19 +277,32 @@ enum a6xx_debugbus_id {
A6XX_DBGBUS_HLSQ_SPTP = 31,
A6XX_DBGBUS_RB_0 = 32,
A6XX_DBGBUS_RB_1 = 33,
+ A6XX_DBGBUS_RB_2 = 34,
A6XX_DBGBUS_UCHE_WRAPPER = 36,
A6XX_DBGBUS_CCU_0 = 40,
A6XX_DBGBUS_CCU_1 = 41,
+ A6XX_DBGBUS_CCU_2 = 42,
A6XX_DBGBUS_VFD_0 = 56,
A6XX_DBGBUS_VFD_1 = 57,
A6XX_DBGBUS_VFD_2 = 58,
A6XX_DBGBUS_VFD_3 = 59,
+ A6XX_DBGBUS_VFD_4 = 60,
+ A6XX_DBGBUS_VFD_5 = 61,
A6XX_DBGBUS_SP_0 = 64,
A6XX_DBGBUS_SP_1 = 65,
+ A6XX_DBGBUS_SP_2 = 66,
A6XX_DBGBUS_TPL1_0 = 72,
A6XX_DBGBUS_TPL1_1 = 73,
A6XX_DBGBUS_TPL1_2 = 74,
A6XX_DBGBUS_TPL1_3 = 75,
+ A6XX_DBGBUS_TPL1_4 = 76,
+ A6XX_DBGBUS_TPL1_5 = 77,
+ A6XX_DBGBUS_SPTP_0 = 88,
+ A6XX_DBGBUS_SPTP_1 = 89,
+ A6XX_DBGBUS_SPTP_2 = 90,
+ A6XX_DBGBUS_SPTP_3 = 91,
+ A6XX_DBGBUS_SPTP_4 = 92,
+ A6XX_DBGBUS_SPTP_5 = 93,
};
enum a6xx_cp_perfcounter_select {
@@ -895,6 +911,7 @@ enum a6xx_ztest_mode {
A6XX_EARLY_Z = 0,
A6XX_LATE_Z = 1,
A6XX_EARLY_LRZ_LATE_Z = 2,
+ A6XX_INVALID_ZTEST = 3,
};
enum a6xx_sequenced_thread_dist {
@@ -930,6 +947,12 @@ enum a6xx_buffers_location {
BUFFERS_IN_SYSMEM = 3,
};
+enum a6xx_lrz_dir_status {
+ LRZ_DIR_LE = 1,
+ LRZ_DIR_GE = 2,
+ LRZ_DIR_INVALID = 3,
+};
+
enum a6xx_fragcoord_sample_mode {
FRAGCOORD_CENTER = 0,
FRAGCOORD_SAMPLE = 3,
@@ -962,6 +985,11 @@ enum a6xx_threadsize {
THREAD128 = 1,
};
+enum a6xx_bindless_descriptor_size {
+ BINDLESS_DESCRIPTOR_16B = 1,
+ BINDLESS_DESCRIPTOR_64B = 3,
+};
+
enum a6xx_isam_mode {
ISAMMODE_GL = 2,
};
@@ -1014,6 +1042,8 @@ enum a6xx_tex_type {
#define A6XX_RBBM_INT_0_MASK_RBBM_GPU_IDLE 0x00000001
#define A6XX_RBBM_INT_0_MASK_CP_AHB_ERROR 0x00000002
+#define A6XX_RBBM_INT_0_MASK_CP_IPC_INTR_0 0x00000010
+#define A6XX_RBBM_INT_0_MASK_CP_IPC_INTR_1 0x00000020
#define A6XX_RBBM_INT_0_MASK_RBBM_ATB_ASYNCFIFO_OVERFLOW 0x00000040
#define A6XX_RBBM_INT_0_MASK_RBBM_GPC_ERROR 0x00000080
#define A6XX_RBBM_INT_0_MASK_CP_SW 0x00000100
@@ -1024,15 +1054,19 @@ enum a6xx_tex_type {
#define A6XX_RBBM_INT_0_MASK_CP_IB2 0x00002000
#define A6XX_RBBM_INT_0_MASK_CP_IB1 0x00004000
#define A6XX_RBBM_INT_0_MASK_CP_RB 0x00008000
+#define A6XX_RBBM_INT_0_MASK_PM4CPINTERRUPT 0x00008000
+#define A6XX_RBBM_INT_0_MASK_PM4CPINTERRUPTLPAC 0x00010000
#define A6XX_RBBM_INT_0_MASK_CP_RB_DONE_TS 0x00020000
#define A6XX_RBBM_INT_0_MASK_CP_WT_DONE_TS 0x00040000
#define A6XX_RBBM_INT_0_MASK_CP_CACHE_FLUSH_TS 0x00100000
+#define A6XX_RBBM_INT_0_MASK_CP_CACHE_FLUSH_TS_LPAC 0x00200000
#define A6XX_RBBM_INT_0_MASK_RBBM_ATB_BUS_OVERFLOW 0x00400000
#define A6XX_RBBM_INT_0_MASK_RBBM_HANG_DETECT 0x00800000
#define A6XX_RBBM_INT_0_MASK_UCHE_OOB_ACCESS 0x01000000
#define A6XX_RBBM_INT_0_MASK_UCHE_TRAP_INTR 0x02000000
#define A6XX_RBBM_INT_0_MASK_DEBBUS_INTR_0 0x04000000
#define A6XX_RBBM_INT_0_MASK_DEBBUS_INTR_1 0x08000000
+#define A6XX_RBBM_INT_0_MASK_TSBWRITEERROR 0x10000000
#define A6XX_RBBM_INT_0_MASK_ISDB_CPU_IRQ 0x40000000
#define A6XX_RBBM_INT_0_MASK_ISDB_UNDER_DEBUG 0x80000000
#define A6XX_CP_INT_CP_OPCODE_ERROR 0x00000001
@@ -1042,15 +1076,21 @@ enum a6xx_tex_type {
#define A6XX_CP_INT_CP_AHB_ERROR 0x00000020
#define A6XX_CP_INT_CP_VSD_PARITY_ERROR 0x00000040
#define A6XX_CP_INT_CP_ILLEGAL_INSTR_ERROR 0x00000080
+#define A6XX_CP_INT_CP_OPCODE_ERROR_LPAC 0x00000100
+#define A6XX_CP_INT_CP_UCODE_ERROR_LPAC 0x00000200
+#define A6XX_CP_INT_CP_HW_FAULT_ERROR_LPAC 0x00000400
+#define A6XX_CP_INT_CP_REGISTER_PROTECTION_ERROR_LPAC 0x00000800
+#define A6XX_CP_INT_CP_ILLEGAL_INSTR_ERROR_LPAC 0x00001000
+#define A6XX_CP_INT_CP_OPCODE_ERROR_BV 0x00002000
+#define A6XX_CP_INT_CP_UCODE_ERROR_BV 0x00004000
+#define A6XX_CP_INT_CP_HW_FAULT_ERROR_BV 0x00008000
+#define A6XX_CP_INT_CP_REGISTER_PROTECTION_ERROR_BV 0x00010000
+#define A6XX_CP_INT_CP_ILLEGAL_INSTR_ERROR_BV 0x00020000
#define REG_A6XX_CP_RB_BASE 0x00000800
-#define REG_A6XX_CP_RB_BASE_HI 0x00000801
-
#define REG_A6XX_CP_RB_CNTL 0x00000802
-#define REG_A6XX_CP_RB_RPTR_ADDR_LO 0x00000804
-
-#define REG_A6XX_CP_RB_RPTR_ADDR_HI 0x00000805
+#define REG_A6XX_CP_RB_RPTR_ADDR 0x00000804
#define REG_A6XX_CP_RB_RPTR 0x00000806
@@ -1067,24 +1107,28 @@ enum a6xx_tex_type {
#define REG_A6XX_CP_PROTECT_STATUS 0x00000824
+#define REG_A6XX_CP_STATUS_1 0x00000825
+
#define REG_A6XX_CP_SQE_INSTR_BASE 0x00000830
#define REG_A6XX_CP_MISC_CNTL 0x00000840
#define REG_A6XX_CP_APRIV_CNTL 0x00000844
+#define REG_A6XX_CP_PREEMPT_THRESHOLD 0x000008c0
+
#define REG_A6XX_CP_ROQ_THRESHOLDS_1 0x000008c1
-#define A6XX_CP_ROQ_THRESHOLDS_1_RB_LO__MASK 0x000000ff
-#define A6XX_CP_ROQ_THRESHOLDS_1_RB_LO__SHIFT 0
-static inline uint32_t A6XX_CP_ROQ_THRESHOLDS_1_RB_LO(uint32_t val)
+#define A6XX_CP_ROQ_THRESHOLDS_1_MRB_START__MASK 0x000000ff
+#define A6XX_CP_ROQ_THRESHOLDS_1_MRB_START__SHIFT 0
+static inline uint32_t A6XX_CP_ROQ_THRESHOLDS_1_MRB_START(uint32_t val)
{
- return ((val >> 2) << A6XX_CP_ROQ_THRESHOLDS_1_RB_LO__SHIFT) & A6XX_CP_ROQ_THRESHOLDS_1_RB_LO__MASK;
+ return ((val >> 2) << A6XX_CP_ROQ_THRESHOLDS_1_MRB_START__SHIFT) & A6XX_CP_ROQ_THRESHOLDS_1_MRB_START__MASK;
}
-#define A6XX_CP_ROQ_THRESHOLDS_1_RB_HI__MASK 0x0000ff00
-#define A6XX_CP_ROQ_THRESHOLDS_1_RB_HI__SHIFT 8
-static inline uint32_t A6XX_CP_ROQ_THRESHOLDS_1_RB_HI(uint32_t val)
+#define A6XX_CP_ROQ_THRESHOLDS_1_VSD_START__MASK 0x0000ff00
+#define A6XX_CP_ROQ_THRESHOLDS_1_VSD_START__SHIFT 8
+static inline uint32_t A6XX_CP_ROQ_THRESHOLDS_1_VSD_START(uint32_t val)
{
- return ((val >> 2) << A6XX_CP_ROQ_THRESHOLDS_1_RB_HI__SHIFT) & A6XX_CP_ROQ_THRESHOLDS_1_RB_HI__MASK;
+ return ((val >> 2) << A6XX_CP_ROQ_THRESHOLDS_1_VSD_START__SHIFT) & A6XX_CP_ROQ_THRESHOLDS_1_VSD_START__MASK;
}
#define A6XX_CP_ROQ_THRESHOLDS_1_IB1_START__MASK 0x00ff0000
#define A6XX_CP_ROQ_THRESHOLDS_1_IB1_START__SHIFT 16
@@ -1146,27 +1190,21 @@ static inline uint32_t A6XX_CP_PROTECT_REG_MASK_LEN(uint32_t val)
#define REG_A6XX_CP_CONTEXT_SWITCH_CNTL 0x000008a0
-#define REG_A6XX_CP_CONTEXT_SWITCH_SMMU_INFO_LO 0x000008a1
-
-#define REG_A6XX_CP_CONTEXT_SWITCH_SMMU_INFO_HI 0x000008a2
-
-#define REG_A6XX_CP_CONTEXT_SWITCH_PRIV_NON_SECURE_RESTORE_ADDR_LO 0x000008a3
-
-#define REG_A6XX_CP_CONTEXT_SWITCH_PRIV_NON_SECURE_RESTORE_ADDR_HI 0x000008a4
+#define REG_A6XX_CP_CONTEXT_SWITCH_SMMU_INFO 0x000008a1
-#define REG_A6XX_CP_CONTEXT_SWITCH_PRIV_SECURE_RESTORE_ADDR_LO 0x000008a5
+#define REG_A6XX_CP_CONTEXT_SWITCH_PRIV_NON_SECURE_RESTORE_ADDR 0x000008a3
-#define REG_A6XX_CP_CONTEXT_SWITCH_PRIV_SECURE_RESTORE_ADDR_HI 0x000008a6
+#define REG_A6XX_CP_CONTEXT_SWITCH_PRIV_SECURE_RESTORE_ADDR 0x000008a5
-#define REG_A6XX_CP_CONTEXT_SWITCH_NON_PRIV_RESTORE_ADDR_LO 0x000008a7
+#define REG_A6XX_CP_CONTEXT_SWITCH_NON_PRIV_RESTORE_ADDR 0x000008a7
-#define REG_A6XX_CP_CONTEXT_SWITCH_NON_PRIV_RESTORE_ADDR_HI 0x000008a8
+#define REG_A7XX_CP_CONTEXT_SWITCH_LEVEL_STATUS 0x000008ab
static inline uint32_t REG_A6XX_CP_PERFCTR_CP_SEL(uint32_t i0) { return 0x000008d0 + 0x1*i0; }
-#define REG_A6XX_CP_CRASH_SCRIPT_BASE_LO 0x00000900
+static inline uint32_t REG_A7XX_CP_BV_PERFCTR_CP_SEL(uint32_t i0) { return 0x000008e0 + 0x1*i0; }
-#define REG_A6XX_CP_CRASH_SCRIPT_BASE_HI 0x00000901
+#define REG_A6XX_CP_CRASH_SCRIPT_BASE 0x00000900
#define REG_A6XX_CP_CRASH_DUMP_CNTL 0x00000902
@@ -1194,63 +1232,165 @@ static inline uint32_t REG_A6XX_CP_PERFCTR_CP_SEL(uint32_t i0) { return 0x000008
#define REG_A6XX_CP_IB1_BASE 0x00000928
-#define REG_A6XX_CP_IB1_BASE_HI 0x00000929
-
#define REG_A6XX_CP_IB1_REM_SIZE 0x0000092a
#define REG_A6XX_CP_IB2_BASE 0x0000092b
-#define REG_A6XX_CP_IB2_BASE_HI 0x0000092c
-
#define REG_A6XX_CP_IB2_REM_SIZE 0x0000092d
#define REG_A6XX_CP_SDS_BASE 0x0000092e
-#define REG_A6XX_CP_SDS_BASE_HI 0x0000092f
-
#define REG_A6XX_CP_SDS_REM_SIZE 0x00000930
#define REG_A6XX_CP_MRB_BASE 0x00000931
-#define REG_A6XX_CP_MRB_BASE_HI 0x00000932
-
#define REG_A6XX_CP_MRB_REM_SIZE 0x00000933
#define REG_A6XX_CP_VSD_BASE 0x00000934
-#define REG_A6XX_CP_VSD_BASE_HI 0x00000935
+#define REG_A6XX_CP_ROQ_RB_STAT 0x00000939
+#define A6XX_CP_ROQ_RB_STAT_RPTR__MASK 0x000003ff
+#define A6XX_CP_ROQ_RB_STAT_RPTR__SHIFT 0
+static inline uint32_t A6XX_CP_ROQ_RB_STAT_RPTR(uint32_t val)
+{
+ return ((val) << A6XX_CP_ROQ_RB_STAT_RPTR__SHIFT) & A6XX_CP_ROQ_RB_STAT_RPTR__MASK;
+}
+#define A6XX_CP_ROQ_RB_STAT_WPTR__MASK 0x03ff0000
+#define A6XX_CP_ROQ_RB_STAT_WPTR__SHIFT 16
+static inline uint32_t A6XX_CP_ROQ_RB_STAT_WPTR(uint32_t val)
+{
+ return ((val) << A6XX_CP_ROQ_RB_STAT_WPTR__SHIFT) & A6XX_CP_ROQ_RB_STAT_WPTR__MASK;
+}
+
+#define REG_A6XX_CP_ROQ_IB1_STAT 0x0000093a
+#define A6XX_CP_ROQ_IB1_STAT_RPTR__MASK 0x000003ff
+#define A6XX_CP_ROQ_IB1_STAT_RPTR__SHIFT 0
+static inline uint32_t A6XX_CP_ROQ_IB1_STAT_RPTR(uint32_t val)
+{
+ return ((val) << A6XX_CP_ROQ_IB1_STAT_RPTR__SHIFT) & A6XX_CP_ROQ_IB1_STAT_RPTR__MASK;
+}
+#define A6XX_CP_ROQ_IB1_STAT_WPTR__MASK 0x03ff0000
+#define A6XX_CP_ROQ_IB1_STAT_WPTR__SHIFT 16
+static inline uint32_t A6XX_CP_ROQ_IB1_STAT_WPTR(uint32_t val)
+{
+ return ((val) << A6XX_CP_ROQ_IB1_STAT_WPTR__SHIFT) & A6XX_CP_ROQ_IB1_STAT_WPTR__MASK;
+}
+
+#define REG_A6XX_CP_ROQ_IB2_STAT 0x0000093b
+#define A6XX_CP_ROQ_IB2_STAT_RPTR__MASK 0x000003ff
+#define A6XX_CP_ROQ_IB2_STAT_RPTR__SHIFT 0
+static inline uint32_t A6XX_CP_ROQ_IB2_STAT_RPTR(uint32_t val)
+{
+ return ((val) << A6XX_CP_ROQ_IB2_STAT_RPTR__SHIFT) & A6XX_CP_ROQ_IB2_STAT_RPTR__MASK;
+}
+#define A6XX_CP_ROQ_IB2_STAT_WPTR__MASK 0x03ff0000
+#define A6XX_CP_ROQ_IB2_STAT_WPTR__SHIFT 16
+static inline uint32_t A6XX_CP_ROQ_IB2_STAT_WPTR(uint32_t val)
+{
+ return ((val) << A6XX_CP_ROQ_IB2_STAT_WPTR__SHIFT) & A6XX_CP_ROQ_IB2_STAT_WPTR__MASK;
+}
+
+#define REG_A6XX_CP_ROQ_SDS_STAT 0x0000093c
+#define A6XX_CP_ROQ_SDS_STAT_RPTR__MASK 0x000003ff
+#define A6XX_CP_ROQ_SDS_STAT_RPTR__SHIFT 0
+static inline uint32_t A6XX_CP_ROQ_SDS_STAT_RPTR(uint32_t val)
+{
+ return ((val) << A6XX_CP_ROQ_SDS_STAT_RPTR__SHIFT) & A6XX_CP_ROQ_SDS_STAT_RPTR__MASK;
+}
+#define A6XX_CP_ROQ_SDS_STAT_WPTR__MASK 0x03ff0000
+#define A6XX_CP_ROQ_SDS_STAT_WPTR__SHIFT 16
+static inline uint32_t A6XX_CP_ROQ_SDS_STAT_WPTR(uint32_t val)
+{
+ return ((val) << A6XX_CP_ROQ_SDS_STAT_WPTR__SHIFT) & A6XX_CP_ROQ_SDS_STAT_WPTR__MASK;
+}
+
+#define REG_A6XX_CP_ROQ_MRB_STAT 0x0000093d
+#define A6XX_CP_ROQ_MRB_STAT_RPTR__MASK 0x000003ff
+#define A6XX_CP_ROQ_MRB_STAT_RPTR__SHIFT 0
+static inline uint32_t A6XX_CP_ROQ_MRB_STAT_RPTR(uint32_t val)
+{
+ return ((val) << A6XX_CP_ROQ_MRB_STAT_RPTR__SHIFT) & A6XX_CP_ROQ_MRB_STAT_RPTR__MASK;
+}
+#define A6XX_CP_ROQ_MRB_STAT_WPTR__MASK 0x03ff0000
+#define A6XX_CP_ROQ_MRB_STAT_WPTR__SHIFT 16
+static inline uint32_t A6XX_CP_ROQ_MRB_STAT_WPTR(uint32_t val)
+{
+ return ((val) << A6XX_CP_ROQ_MRB_STAT_WPTR__SHIFT) & A6XX_CP_ROQ_MRB_STAT_WPTR__MASK;
+}
+
+#define REG_A6XX_CP_ROQ_VSD_STAT 0x0000093e
+#define A6XX_CP_ROQ_VSD_STAT_RPTR__MASK 0x000003ff
+#define A6XX_CP_ROQ_VSD_STAT_RPTR__SHIFT 0
+static inline uint32_t A6XX_CP_ROQ_VSD_STAT_RPTR(uint32_t val)
+{
+ return ((val) << A6XX_CP_ROQ_VSD_STAT_RPTR__SHIFT) & A6XX_CP_ROQ_VSD_STAT_RPTR__MASK;
+}
+#define A6XX_CP_ROQ_VSD_STAT_WPTR__MASK 0x03ff0000
+#define A6XX_CP_ROQ_VSD_STAT_WPTR__SHIFT 16
+static inline uint32_t A6XX_CP_ROQ_VSD_STAT_WPTR(uint32_t val)
+{
+ return ((val) << A6XX_CP_ROQ_VSD_STAT_WPTR__SHIFT) & A6XX_CP_ROQ_VSD_STAT_WPTR__MASK;
+}
+
+#define REG_A6XX_CP_IB1_DWORDS 0x00000943
+
+#define REG_A6XX_CP_IB2_DWORDS 0x00000944
+
+#define REG_A6XX_CP_SDS_DWORDS 0x00000945
#define REG_A6XX_CP_MRB_DWORDS 0x00000946
#define REG_A6XX_CP_VSD_DWORDS 0x00000947
-#define REG_A6XX_CP_CSQ_IB1_STAT 0x00000949
-#define A6XX_CP_CSQ_IB1_STAT_REM__MASK 0xffff0000
-#define A6XX_CP_CSQ_IB1_STAT_REM__SHIFT 16
-static inline uint32_t A6XX_CP_CSQ_IB1_STAT_REM(uint32_t val)
+#define REG_A6XX_CP_ROQ_AVAIL_RB 0x00000948
+#define A6XX_CP_ROQ_AVAIL_RB_REM__MASK 0xffff0000
+#define A6XX_CP_ROQ_AVAIL_RB_REM__SHIFT 16
+static inline uint32_t A6XX_CP_ROQ_AVAIL_RB_REM(uint32_t val)
{
- return ((val) << A6XX_CP_CSQ_IB1_STAT_REM__SHIFT) & A6XX_CP_CSQ_IB1_STAT_REM__MASK;
+ return ((val) << A6XX_CP_ROQ_AVAIL_RB_REM__SHIFT) & A6XX_CP_ROQ_AVAIL_RB_REM__MASK;
}
-#define REG_A6XX_CP_CSQ_IB2_STAT 0x0000094a
-#define A6XX_CP_CSQ_IB2_STAT_REM__MASK 0xffff0000
-#define A6XX_CP_CSQ_IB2_STAT_REM__SHIFT 16
-static inline uint32_t A6XX_CP_CSQ_IB2_STAT_REM(uint32_t val)
+#define REG_A6XX_CP_ROQ_AVAIL_IB1 0x00000949
+#define A6XX_CP_ROQ_AVAIL_IB1_REM__MASK 0xffff0000
+#define A6XX_CP_ROQ_AVAIL_IB1_REM__SHIFT 16
+static inline uint32_t A6XX_CP_ROQ_AVAIL_IB1_REM(uint32_t val)
{
- return ((val) << A6XX_CP_CSQ_IB2_STAT_REM__SHIFT) & A6XX_CP_CSQ_IB2_STAT_REM__MASK;
+ return ((val) << A6XX_CP_ROQ_AVAIL_IB1_REM__SHIFT) & A6XX_CP_ROQ_AVAIL_IB1_REM__MASK;
}
-#define REG_A6XX_CP_MRQ_MRB_STAT 0x0000094c
-#define A6XX_CP_MRQ_MRB_STAT_REM__MASK 0xffff0000
-#define A6XX_CP_MRQ_MRB_STAT_REM__SHIFT 16
-static inline uint32_t A6XX_CP_MRQ_MRB_STAT_REM(uint32_t val)
+#define REG_A6XX_CP_ROQ_AVAIL_IB2 0x0000094a
+#define A6XX_CP_ROQ_AVAIL_IB2_REM__MASK 0xffff0000
+#define A6XX_CP_ROQ_AVAIL_IB2_REM__SHIFT 16
+static inline uint32_t A6XX_CP_ROQ_AVAIL_IB2_REM(uint32_t val)
{
- return ((val) << A6XX_CP_MRQ_MRB_STAT_REM__SHIFT) & A6XX_CP_MRQ_MRB_STAT_REM__MASK;
+ return ((val) << A6XX_CP_ROQ_AVAIL_IB2_REM__SHIFT) & A6XX_CP_ROQ_AVAIL_IB2_REM__MASK;
}
-#define REG_A6XX_CP_ALWAYS_ON_COUNTER_LO 0x00000980
+#define REG_A6XX_CP_ROQ_AVAIL_SDS 0x0000094b
+#define A6XX_CP_ROQ_AVAIL_SDS_REM__MASK 0xffff0000
+#define A6XX_CP_ROQ_AVAIL_SDS_REM__SHIFT 16
+static inline uint32_t A6XX_CP_ROQ_AVAIL_SDS_REM(uint32_t val)
+{
+ return ((val) << A6XX_CP_ROQ_AVAIL_SDS_REM__SHIFT) & A6XX_CP_ROQ_AVAIL_SDS_REM__MASK;
+}
+
+#define REG_A6XX_CP_ROQ_AVAIL_MRB 0x0000094c
+#define A6XX_CP_ROQ_AVAIL_MRB_REM__MASK 0xffff0000
+#define A6XX_CP_ROQ_AVAIL_MRB_REM__SHIFT 16
+static inline uint32_t A6XX_CP_ROQ_AVAIL_MRB_REM(uint32_t val)
+{
+ return ((val) << A6XX_CP_ROQ_AVAIL_MRB_REM__SHIFT) & A6XX_CP_ROQ_AVAIL_MRB_REM__MASK;
+}
+
+#define REG_A6XX_CP_ROQ_AVAIL_VSD 0x0000094d
+#define A6XX_CP_ROQ_AVAIL_VSD_REM__MASK 0xffff0000
+#define A6XX_CP_ROQ_AVAIL_VSD_REM__SHIFT 16
+static inline uint32_t A6XX_CP_ROQ_AVAIL_VSD_REM(uint32_t val)
+{
+ return ((val) << A6XX_CP_ROQ_AVAIL_VSD_REM__SHIFT) & A6XX_CP_ROQ_AVAIL_VSD_REM__MASK;
+}
-#define REG_A6XX_CP_ALWAYS_ON_COUNTER_HI 0x00000981
+#define REG_A6XX_CP_ALWAYS_ON_COUNTER 0x00000980
#define REG_A6XX_CP_AHB_CNTL 0x0000098d
@@ -1258,12 +1398,70 @@ static inline uint32_t A6XX_CP_MRQ_MRB_STAT_REM(uint32_t val)
#define REG_A6XX_CP_APERTURE_CNTL_CD 0x00000a03
+#define REG_A7XX_CP_BV_PROTECT_STATUS 0x00000a61
+
+#define REG_A7XX_CP_BV_HW_FAULT 0x00000a64
+
+#define REG_A7XX_CP_BV_DRAW_STATE_ADDR 0x00000a81
+
+#define REG_A7XX_CP_BV_DRAW_STATE_DATA 0x00000a82
+
+#define REG_A7XX_CP_BV_ROQ_DBG_ADDR 0x00000a83
+
+#define REG_A7XX_CP_BV_ROQ_DBG_DATA 0x00000a84
+
+#define REG_A7XX_CP_BV_SQE_UCODE_DBG_ADDR 0x00000a85
+
+#define REG_A7XX_CP_BV_SQE_UCODE_DBG_DATA 0x00000a86
+
+#define REG_A7XX_CP_BV_SQE_STAT_ADDR 0x00000a87
+
+#define REG_A7XX_CP_BV_SQE_STAT_DATA 0x00000a88
+
+#define REG_A7XX_CP_BV_MEM_POOL_DBG_ADDR 0x00000a96
+
+#define REG_A7XX_CP_BV_MEM_POOL_DBG_DATA 0x00000a97
+
+#define REG_A7XX_CP_BV_RB_RPTR_ADDR 0x00000a98
+
+#define REG_A7XX_CP_RESOURCE_TBL_DBG_ADDR 0x00000a9a
+
+#define REG_A7XX_CP_RESOURCE_TBL_DBG_DATA 0x00000a9b
+
+#define REG_A7XX_CP_BV_APRIV_CNTL 0x00000ad0
+
+#define REG_A7XX_CP_BV_CHICKEN_DBG 0x00000ada
+
+#define REG_A7XX_CP_LPAC_DRAW_STATE_ADDR 0x00000b0a
+
+#define REG_A7XX_CP_LPAC_DRAW_STATE_DATA 0x00000b0b
+
+#define REG_A7XX_CP_LPAC_ROQ_DBG_ADDR 0x00000b0c
+
+#define REG_A7XX_CP_SQE_AC_UCODE_DBG_ADDR 0x00000b27
+
+#define REG_A7XX_CP_SQE_AC_UCODE_DBG_DATA 0x00000b28
+
+#define REG_A7XX_CP_SQE_AC_STAT_ADDR 0x00000b29
+
+#define REG_A7XX_CP_SQE_AC_STAT_DATA 0x00000b2a
+
+#define REG_A7XX_CP_LPAC_APRIV_CNTL 0x00000b31
+
#define REG_A6XX_CP_LPAC_PROG_FIFO_SIZE 0x00000b34
+#define REG_A7XX_CP_LPAC_ROQ_DBG_DATA 0x00000b35
+
+#define REG_A7XX_CP_LPAC_FIFO_DBG_DATA 0x00000b36
+
+#define REG_A7XX_CP_LPAC_FIFO_DBG_ADDR 0x00000b40
+
#define REG_A6XX_CP_LPAC_SQE_INSTR_BASE 0x00000b82
#define REG_A6XX_VSC_ADDR_MODE_CNTL 0x00000c01
+#define REG_A6XX_RBBM_GPR0_CNTL 0x00000018
+
#define REG_A6XX_RBBM_INT_0_STATUS 0x00000201
#define REG_A6XX_RBBM_STATUS 0x00000210
@@ -1292,11 +1490,27 @@ static inline uint32_t A6XX_CP_MRQ_MRB_STAT_REM(uint32_t val)
#define A6XX_RBBM_STATUS_CP_AHB_BUSY_CP_MASTER 0x00000002
#define A6XX_RBBM_STATUS_CP_AHB_BUSY_CX_MASTER 0x00000001
+#define REG_A6XX_RBBM_STATUS1 0x00000211
+
+#define REG_A6XX_RBBM_STATUS2 0x00000212
+
#define REG_A6XX_RBBM_STATUS3 0x00000213
#define A6XX_RBBM_STATUS3_SMMU_STALLED_ON_FAULT 0x01000000
#define REG_A6XX_RBBM_VBIF_GX_RESET_STATUS 0x00000215
+#define REG_A7XX_RBBM_CLOCK_MODE_CP 0x00000260
+
+#define REG_A7XX_RBBM_CLOCK_MODE_BV_LRZ 0x00000284
+
+#define REG_A7XX_RBBM_CLOCK_MODE_BV_GRAS 0x00000285
+
+#define REG_A7XX_RBBM_CLOCK_MODE2_GRAS 0x00000286
+
+#define REG_A7XX_RBBM_CLOCK_MODE_BV_VFD 0x00000287
+
+#define REG_A7XX_RBBM_CLOCK_MODE_BV_GPC 0x00000288
+
static inline uint32_t REG_A6XX_RBBM_PERFCTR_CP(uint32_t i0) { return 0x00000400 + 0x2*i0; }
static inline uint32_t REG_A6XX_RBBM_PERFCTR_RBBM(uint32_t i0) { return 0x0000041c + 0x2*i0; }
@@ -1329,6 +1543,62 @@ static inline uint32_t REG_A6XX_RBBM_PERFCTR_LRZ(uint32_t i0) { return 0x000004e
static inline uint32_t REG_A6XX_RBBM_PERFCTR_CMP(uint32_t i0) { return 0x000004f2 + 0x2*i0; }
+static inline uint32_t REG_A7XX_RBBM_PERFCTR_CP(uint32_t i0) { return 0x00000300 + 0x2*i0; }
+
+static inline uint32_t REG_A7XX_RBBM_PERFCTR_RBBM(uint32_t i0) { return 0x0000031c + 0x2*i0; }
+
+static inline uint32_t REG_A7XX_RBBM_PERFCTR_PC(uint32_t i0) { return 0x00000324 + 0x2*i0; }
+
+static inline uint32_t REG_A7XX_RBBM_PERFCTR_VFD(uint32_t i0) { return 0x00000334 + 0x2*i0; }
+
+static inline uint32_t REG_A7XX_RBBM_PERFCTR_HLSQ(uint32_t i0) { return 0x00000344 + 0x2*i0; }
+
+static inline uint32_t REG_A7XX_RBBM_PERFCTR_VPC(uint32_t i0) { return 0x00000350 + 0x2*i0; }
+
+static inline uint32_t REG_A7XX_RBBM_PERFCTR_CCU(uint32_t i0) { return 0x0000035c + 0x2*i0; }
+
+static inline uint32_t REG_A7XX_RBBM_PERFCTR_TSE(uint32_t i0) { return 0x00000366 + 0x2*i0; }
+
+static inline uint32_t REG_A7XX_RBBM_PERFCTR_RAS(uint32_t i0) { return 0x0000036e + 0x2*i0; }
+
+static inline uint32_t REG_A7XX_RBBM_PERFCTR_UCHE(uint32_t i0) { return 0x00000376 + 0x2*i0; }
+
+static inline uint32_t REG_A7XX_RBBM_PERFCTR_TP(uint32_t i0) { return 0x0000038e + 0x2*i0; }
+
+static inline uint32_t REG_A7XX_RBBM_PERFCTR_SP(uint32_t i0) { return 0x000003a6 + 0x2*i0; }
+
+static inline uint32_t REG_A7XX_RBBM_PERFCTR_RB(uint32_t i0) { return 0x000003d6 + 0x2*i0; }
+
+static inline uint32_t REG_A7XX_RBBM_PERFCTR_VSC(uint32_t i0) { return 0x000003e6 + 0x2*i0; }
+
+static inline uint32_t REG_A7XX_RBBM_PERFCTR_LRZ(uint32_t i0) { return 0x000003ea + 0x2*i0; }
+
+static inline uint32_t REG_A7XX_RBBM_PERFCTR_CMP(uint32_t i0) { return 0x000003f2 + 0x2*i0; }
+
+static inline uint32_t REG_A7XX_RBBM_PERFCTR_UFC(uint32_t i0) { return 0x000003fa + 0x2*i0; }
+
+static inline uint32_t REG_A7XX_RBBM_PERFCTR2_HLSQ(uint32_t i0) { return 0x00000410 + 0x2*i0; }
+
+static inline uint32_t REG_A7XX_RBBM_PERFCTR2_CP(uint32_t i0) { return 0x0000041c + 0x2*i0; }
+
+static inline uint32_t REG_A7XX_RBBM_PERFCTR2_SP(uint32_t i0) { return 0x0000042a + 0x2*i0; }
+
+static inline uint32_t REG_A7XX_RBBM_PERFCTR2_TP(uint32_t i0) { return 0x00000442 + 0x2*i0; }
+
+static inline uint32_t REG_A7XX_RBBM_PERFCTR2_UFC(uint32_t i0) { return 0x0000044e + 0x2*i0; }
+
+static inline uint32_t REG_A7XX_RBBM_PERFCTR_BV_PC(uint32_t i0) { return 0x00000460 + 0x2*i0; }
+
+static inline uint32_t REG_A7XX_RBBM_PERFCTR_BV_VFD(uint32_t i0) { return 0x00000470 + 0x2*i0; }
+
+static inline uint32_t REG_A7XX_RBBM_PERFCTR_BV_VPC(uint32_t i0) { return 0x00000480 + 0x2*i0; }
+
+static inline uint32_t REG_A7XX_RBBM_PERFCTR_BV_TSE(uint32_t i0) { return 0x0000048c + 0x2*i0; }
+
+static inline uint32_t REG_A7XX_RBBM_PERFCTR_BV_RAS(uint32_t i0) { return 0x00000494 + 0x2*i0; }
+
+static inline uint32_t REG_A7XX_RBBM_PERFCTR_BV_LRZ(uint32_t i0) { return 0x0000049c + 0x2*i0; }
+
#define REG_A6XX_RBBM_PERFCTR_CNTL 0x00000500
#define REG_A6XX_RBBM_PERFCTR_LOAD_CMD0 0x00000501
@@ -1353,6 +1623,10 @@ static inline uint32_t REG_A6XX_RBBM_PERFCTR_RBBM_SEL(uint32_t i0) { return 0x00
#define REG_A6XX_RBBM_ISDB_CNT 0x00000533
+#define REG_A7XX_RBBM_NC_MODE_CNTL 0x00000534
+
+#define REG_A7XX_RBBM_SNAPSHOT_STATUS 0x00000535
+
#define REG_A6XX_RBBM_PRIMCTR_0_LO 0x00000540
#define REG_A6XX_RBBM_PRIMCTR_0_HI 0x00000541
@@ -1399,9 +1673,7 @@ static inline uint32_t REG_A6XX_RBBM_PERFCTR_RBBM_SEL(uint32_t i0) { return 0x00
#define REG_A6XX_RBBM_SECVID_TRUST_CNTL 0x0000f400
-#define REG_A6XX_RBBM_SECVID_TSB_TRUSTED_BASE_LO 0x0000f800
-
-#define REG_A6XX_RBBM_SECVID_TSB_TRUSTED_BASE_HI 0x0000f801
+#define REG_A6XX_RBBM_SECVID_TSB_TRUSTED_BASE 0x0000f800
#define REG_A6XX_RBBM_SECVID_TSB_TRUSTED_SIZE 0x0000f802
@@ -1409,6 +1681,8 @@ static inline uint32_t REG_A6XX_RBBM_PERFCTR_RBBM_SEL(uint32_t i0) { return 0x00
#define REG_A6XX_RBBM_SECVID_TSB_ADDR_MODE_CNTL 0x0000f810
+#define REG_A7XX_RBBM_SECVID_TSB_STATUS 0x0000fc00
+
#define REG_A6XX_RBBM_VBIF_CLIENT_QOS_CNTL 0x00000010
#define REG_A6XX_RBBM_GBIF_CLIENT_QOS_CNTL 0x00000011
@@ -1420,12 +1694,18 @@ static inline uint32_t REG_A6XX_RBBM_PERFCTR_RBBM_SEL(uint32_t i0) { return 0x00
#define REG_A6XX_RBBM_WAIT_FOR_GPU_IDLE_CMD 0x0000001c
#define A6XX_RBBM_WAIT_FOR_GPU_IDLE_CMD_WAIT_GPU_IDLE 0x00000001
+#define REG_A7XX_RBBM_GBIF_HALT 0x00000016
+
+#define REG_A7XX_RBBM_GBIF_HALT_ACK 0x00000017
+
#define REG_A6XX_RBBM_INTERFACE_HANG_INT_CNTL 0x0000001f
#define REG_A6XX_RBBM_INT_CLEAR_CMD 0x00000037
#define REG_A6XX_RBBM_INT_0_MASK 0x00000038
+#define REG_A7XX_RBBM_INT_2_MASK 0x0000003a
+
#define REG_A6XX_RBBM_SP_HYST_CNT 0x00000042
#define REG_A6XX_RBBM_SW_RESET_CMD 0x00000043
@@ -1656,6 +1936,8 @@ static inline uint32_t REG_A6XX_RBBM_PERFCTR_RBBM_SEL(uint32_t i0) { return 0x00
#define REG_A6XX_RBBM_CLOCK_HYST_TEX_FCHE 0x00000122
+#define REG_A6XX_RBBM_LPAC_GBIF_CLIENT_QOS_CNTL 0x000005ff
+
#define REG_A6XX_DBGC_CFG_DBGBUS_SEL_A 0x00000600
#define REG_A6XX_DBGC_CFG_DBGBUS_SEL_B 0x00000601
@@ -1834,25 +2116,15 @@ static inline uint32_t REG_A6XX_VSC_PERFCTR_VSC_SEL(uint32_t i0) { return 0x0000
#define REG_A6XX_UCHE_MODE_CNTL 0x00000e01
-#define REG_A6XX_UCHE_WRITE_RANGE_MAX_LO 0x00000e05
-
-#define REG_A6XX_UCHE_WRITE_RANGE_MAX_HI 0x00000e06
-
-#define REG_A6XX_UCHE_WRITE_THRU_BASE_LO 0x00000e07
-
-#define REG_A6XX_UCHE_WRITE_THRU_BASE_HI 0x00000e08
+#define REG_A6XX_UCHE_WRITE_RANGE_MAX 0x00000e05
-#define REG_A6XX_UCHE_TRAP_BASE_LO 0x00000e09
+#define REG_A6XX_UCHE_WRITE_THRU_BASE 0x00000e07
-#define REG_A6XX_UCHE_TRAP_BASE_HI 0x00000e0a
+#define REG_A6XX_UCHE_TRAP_BASE 0x00000e09
-#define REG_A6XX_UCHE_GMEM_RANGE_MIN_LO 0x00000e0b
+#define REG_A6XX_UCHE_GMEM_RANGE_MIN 0x00000e0b
-#define REG_A6XX_UCHE_GMEM_RANGE_MIN_HI 0x00000e0c
-
-#define REG_A6XX_UCHE_GMEM_RANGE_MAX_LO 0x00000e0d
-
-#define REG_A6XX_UCHE_GMEM_RANGE_MAX_HI 0x00000e0e
+#define REG_A6XX_UCHE_GMEM_RANGE_MAX 0x00000e0d
#define REG_A6XX_UCHE_CACHE_WAYS 0x00000e17
@@ -1868,6 +2140,8 @@ static inline uint32_t A6XX_UCHE_CLIENT_PF_PERFSEL(uint32_t val)
static inline uint32_t REG_A6XX_UCHE_PERFCTR_UCHE_SEL(uint32_t i0) { return 0x00000e1c + 0x1*i0; }
+#define REG_A6XX_UCHE_GBIF_GX_CONFIG 0x00000e3a
+
#define REG_A6XX_UCHE_CMDQ_CONFIG 0x00000e3c
#define REG_A6XX_VBIF_VERSION 0x00003000
@@ -1965,6 +2239,8 @@ static inline uint32_t A6XX_VBIF_TEST_BUS2_CTRL1_DATA_SEL(uint32_t val)
#define REG_A6XX_GBIF_PERF_PWR_CNT_EN 0x00003cc0
+#define REG_A6XX_GBIF_PERF_PWR_CNT_CLR 0x00003cc1
+
#define REG_A6XX_GBIF_PERF_CNT_SEL 0x00003cc2
#define REG_A6XX_GBIF_PERF_PWR_CNT_SEL 0x00003cc3
@@ -2087,7 +2363,7 @@ static inline uint32_t REG_A6XX_VSC_DRAW_STRM_SIZE_REG(uint32_t i0) { return 0x0
#define A6XX_GRAS_CL_CNTL_CLIP_DISABLE 0x00000001
#define A6XX_GRAS_CL_CNTL_ZNEAR_CLIP_DISABLE 0x00000002
#define A6XX_GRAS_CL_CNTL_ZFAR_CLIP_DISABLE 0x00000004
-#define A6XX_GRAS_CL_CNTL_UNK5 0x00000020
+#define A6XX_GRAS_CL_CNTL_Z_CLAMP_ENABLE 0x00000020
#define A6XX_GRAS_CL_CNTL_ZERO_GB_SCALE_Z 0x00000040
#define A6XX_GRAS_CL_CNTL_VP_CLIP_CODE_IGNORE 0x00000080
#define A6XX_GRAS_CL_CNTL_VP_XFORM_DISABLE 0x00000100
@@ -2402,11 +2678,12 @@ static inline uint32_t A6XX_GRAS_SC_CNTL_SEQUENCED_THREAD_DISTRIBUTION(enum a6xx
{
return ((val) << A6XX_GRAS_SC_CNTL_SEQUENCED_THREAD_DISTRIBUTION__SHIFT) & A6XX_GRAS_SC_CNTL_SEQUENCED_THREAD_DISTRIBUTION__MASK;
}
-#define A6XX_GRAS_SC_CNTL_UNK9__MASK 0x00000e00
-#define A6XX_GRAS_SC_CNTL_UNK9__SHIFT 9
-static inline uint32_t A6XX_GRAS_SC_CNTL_UNK9(uint32_t val)
+#define A6XX_GRAS_SC_CNTL_UNK9 0x00000200
+#define A6XX_GRAS_SC_CNTL_ROTATION__MASK 0x00000c00
+#define A6XX_GRAS_SC_CNTL_ROTATION__SHIFT 10
+static inline uint32_t A6XX_GRAS_SC_CNTL_ROTATION(uint32_t val)
{
- return ((val) << A6XX_GRAS_SC_CNTL_UNK9__SHIFT) & A6XX_GRAS_SC_CNTL_UNK9__MASK;
+ return ((val) << A6XX_GRAS_SC_CNTL_ROTATION__SHIFT) & A6XX_GRAS_SC_CNTL_ROTATION__MASK;
}
#define A6XX_GRAS_SC_CNTL_EARLYVIZOUTEN 0x00001000
@@ -2679,12 +2956,14 @@ static inline uint32_t A6XX_GRAS_SC_WINDOW_SCISSOR_BR_Y(uint32_t val)
#define A6XX_GRAS_LRZ_CNTL_FC_ENABLE 0x00000008
#define A6XX_GRAS_LRZ_CNTL_Z_TEST_ENABLE 0x00000010
#define A6XX_GRAS_LRZ_CNTL_Z_BOUNDS_ENABLE 0x00000020
-#define A6XX_GRAS_LRZ_CNTL_UNK6__MASK 0x000003c0
-#define A6XX_GRAS_LRZ_CNTL_UNK6__SHIFT 6
-static inline uint32_t A6XX_GRAS_LRZ_CNTL_UNK6(uint32_t val)
+#define A6XX_GRAS_LRZ_CNTL_DIR__MASK 0x000000c0
+#define A6XX_GRAS_LRZ_CNTL_DIR__SHIFT 6
+static inline uint32_t A6XX_GRAS_LRZ_CNTL_DIR(enum a6xx_lrz_dir_status val)
{
- return ((val) << A6XX_GRAS_LRZ_CNTL_UNK6__SHIFT) & A6XX_GRAS_LRZ_CNTL_UNK6__MASK;
+ return ((val) << A6XX_GRAS_LRZ_CNTL_DIR__SHIFT) & A6XX_GRAS_LRZ_CNTL_DIR__MASK;
}
+#define A6XX_GRAS_LRZ_CNTL_DIR_WRITE 0x00000100
+#define A6XX_GRAS_LRZ_CNTL_DISABLE_ON_WRONG_DIR 0x00000200
#define REG_A6XX_GRAS_LRZ_PS_INPUT_CNTL 0x00008101
#define A6XX_GRAS_LRZ_PS_INPUT_CNTL_SAMPLEID 0x00000001
@@ -2736,24 +3015,24 @@ static inline uint32_t A6XX_GRAS_LRZ_FAST_CLEAR_BUFFER_BASE(uint32_t val)
#define REG_A6XX_GRAS_SAMPLE_CNTL 0x00008109
#define A6XX_GRAS_SAMPLE_CNTL_PER_SAMP_MODE 0x00000001
-#define REG_A6XX_GRAS_UNKNOWN_810A 0x0000810a
-#define A6XX_GRAS_UNKNOWN_810A_UNK0__MASK 0x000007ff
-#define A6XX_GRAS_UNKNOWN_810A_UNK0__SHIFT 0
-static inline uint32_t A6XX_GRAS_UNKNOWN_810A_UNK0(uint32_t val)
+#define REG_A6XX_GRAS_LRZ_DEPTH_VIEW 0x0000810a
+#define A6XX_GRAS_LRZ_DEPTH_VIEW_BASE_LAYER__MASK 0x000007ff
+#define A6XX_GRAS_LRZ_DEPTH_VIEW_BASE_LAYER__SHIFT 0
+static inline uint32_t A6XX_GRAS_LRZ_DEPTH_VIEW_BASE_LAYER(uint32_t val)
{
- return ((val) << A6XX_GRAS_UNKNOWN_810A_UNK0__SHIFT) & A6XX_GRAS_UNKNOWN_810A_UNK0__MASK;
+ return ((val) << A6XX_GRAS_LRZ_DEPTH_VIEW_BASE_LAYER__SHIFT) & A6XX_GRAS_LRZ_DEPTH_VIEW_BASE_LAYER__MASK;
}
-#define A6XX_GRAS_UNKNOWN_810A_UNK16__MASK 0x07ff0000
-#define A6XX_GRAS_UNKNOWN_810A_UNK16__SHIFT 16
-static inline uint32_t A6XX_GRAS_UNKNOWN_810A_UNK16(uint32_t val)
+#define A6XX_GRAS_LRZ_DEPTH_VIEW_LAYER_COUNT__MASK 0x07ff0000
+#define A6XX_GRAS_LRZ_DEPTH_VIEW_LAYER_COUNT__SHIFT 16
+static inline uint32_t A6XX_GRAS_LRZ_DEPTH_VIEW_LAYER_COUNT(uint32_t val)
{
- return ((val) << A6XX_GRAS_UNKNOWN_810A_UNK16__SHIFT) & A6XX_GRAS_UNKNOWN_810A_UNK16__MASK;
+ return ((val) << A6XX_GRAS_LRZ_DEPTH_VIEW_LAYER_COUNT__SHIFT) & A6XX_GRAS_LRZ_DEPTH_VIEW_LAYER_COUNT__MASK;
}
-#define A6XX_GRAS_UNKNOWN_810A_UNK28__MASK 0xf0000000
-#define A6XX_GRAS_UNKNOWN_810A_UNK28__SHIFT 28
-static inline uint32_t A6XX_GRAS_UNKNOWN_810A_UNK28(uint32_t val)
+#define A6XX_GRAS_LRZ_DEPTH_VIEW_BASE_MIP_LEVEL__MASK 0xf0000000
+#define A6XX_GRAS_LRZ_DEPTH_VIEW_BASE_MIP_LEVEL__SHIFT 28
+static inline uint32_t A6XX_GRAS_LRZ_DEPTH_VIEW_BASE_MIP_LEVEL(uint32_t val)
{
- return ((val) << A6XX_GRAS_UNKNOWN_810A_UNK28__SHIFT) & A6XX_GRAS_UNKNOWN_810A_UNK28__MASK;
+ return ((val) << A6XX_GRAS_LRZ_DEPTH_VIEW_BASE_MIP_LEVEL__SHIFT) & A6XX_GRAS_LRZ_DEPTH_VIEW_BASE_MIP_LEVEL__MASK;
}
#define REG_A6XX_GRAS_UNKNOWN_8110 0x00008110
@@ -2882,6 +3161,8 @@ static inline uint32_t A6XX_GRAS_2D_RESOLVE_CNTL_2_Y(uint32_t val)
#define REG_A6XX_GRAS_ADDR_MODE_CNTL 0x00008601
+#define REG_A7XX_GRAS_NC_MODE_CNTL 0x00008602
+
static inline uint32_t REG_A6XX_GRAS_PERFCTR_TSE_SEL(uint32_t i0) { return 0x00008610 + 0x1*i0; }
static inline uint32_t REG_A6XX_GRAS_PERFCTR_RAS_SEL(uint32_t i0) { return 0x00008614 + 0x1*i0; }
@@ -3108,7 +3389,7 @@ static inline uint32_t A6XX_RB_RENDER_CONTROL0_COORD_MASK(uint32_t val)
#define REG_A6XX_RB_RENDER_CONTROL1 0x0000880a
#define A6XX_RB_RENDER_CONTROL1_SAMPLEMASK 0x00000001
-#define A6XX_RB_RENDER_CONTROL1_UNK1 0x00000002
+#define A6XX_RB_RENDER_CONTROL1_POSTDEPTHCOVERAGE 0x00000002
#define A6XX_RB_RENDER_CONTROL1_FACENESS 0x00000004
#define A6XX_RB_RENDER_CONTROL1_SAMPLEID 0x00000008
#define A6XX_RB_RENDER_CONTROL1_FRAGCOORDSAMPLEMODE__MASK 0x00000030
@@ -3117,7 +3398,7 @@ static inline uint32_t A6XX_RB_RENDER_CONTROL1_FRAGCOORDSAMPLEMODE(enum a6xx_fra
{
return ((val) << A6XX_RB_RENDER_CONTROL1_FRAGCOORDSAMPLEMODE__SHIFT) & A6XX_RB_RENDER_CONTROL1_FRAGCOORDSAMPLEMODE__MASK;
}
-#define A6XX_RB_RENDER_CONTROL1_SIZE 0x00000040
+#define A6XX_RB_RENDER_CONTROL1_CENTERRHW 0x00000040
#define A6XX_RB_RENDER_CONTROL1_LINELENGTHEN 0x00000080
#define A6XX_RB_RENDER_CONTROL1_FOVEATION 0x00000100
@@ -3673,7 +3954,7 @@ static inline uint32_t A6XX_RB_WINDOW_OFFSET_Y(uint32_t val)
}
#define REG_A6XX_RB_SAMPLE_COUNT_CONTROL 0x00008891
-#define A6XX_RB_SAMPLE_COUNT_CONTROL_UNK0 0x00000001
+#define A6XX_RB_SAMPLE_COUNT_CONTROL_DISABLE 0x00000001
#define A6XX_RB_SAMPLE_COUNT_CONTROL_COPY 0x00000002
#define REG_A6XX_RB_LRZ_CNTL 0x00008898
@@ -3765,12 +4046,12 @@ static inline uint32_t A6XX_RB_WINDOW_OFFSET2_Y(uint32_t val)
return ((val) << A6XX_RB_WINDOW_OFFSET2_Y__SHIFT) & A6XX_RB_WINDOW_OFFSET2_Y__MASK;
}
-#define REG_A6XX_RB_MSAA_CNTL 0x000088d5
-#define A6XX_RB_MSAA_CNTL_SAMPLES__MASK 0x00000018
-#define A6XX_RB_MSAA_CNTL_SAMPLES__SHIFT 3
-static inline uint32_t A6XX_RB_MSAA_CNTL_SAMPLES(enum a3xx_msaa_samples val)
+#define REG_A6XX_RB_BLIT_GMEM_MSAA_CNTL 0x000088d5
+#define A6XX_RB_BLIT_GMEM_MSAA_CNTL_SAMPLES__MASK 0x00000018
+#define A6XX_RB_BLIT_GMEM_MSAA_CNTL_SAMPLES__SHIFT 3
+static inline uint32_t A6XX_RB_BLIT_GMEM_MSAA_CNTL_SAMPLES(enum a3xx_msaa_samples val)
{
- return ((val) << A6XX_RB_MSAA_CNTL_SAMPLES__SHIFT) & A6XX_RB_MSAA_CNTL_SAMPLES__MASK;
+ return ((val) << A6XX_RB_BLIT_GMEM_MSAA_CNTL_SAMPLES__SHIFT) & A6XX_RB_BLIT_GMEM_MSAA_CNTL_SAMPLES__MASK;
}
#define REG_A6XX_RB_BLIT_BASE_GMEM 0x000088d6
@@ -3874,17 +4155,17 @@ static inline uint32_t A6XX_RB_BLIT_INFO_CLEAR_MASK(uint32_t val)
{
return ((val) << A6XX_RB_BLIT_INFO_CLEAR_MASK__SHIFT) & A6XX_RB_BLIT_INFO_CLEAR_MASK__MASK;
}
-#define A6XX_RB_BLIT_INFO_UNK8__MASK 0x00000300
-#define A6XX_RB_BLIT_INFO_UNK8__SHIFT 8
-static inline uint32_t A6XX_RB_BLIT_INFO_UNK8(uint32_t val)
+#define A6XX_RB_BLIT_INFO_LAST__MASK 0x00000300
+#define A6XX_RB_BLIT_INFO_LAST__SHIFT 8
+static inline uint32_t A6XX_RB_BLIT_INFO_LAST(uint32_t val)
{
- return ((val) << A6XX_RB_BLIT_INFO_UNK8__SHIFT) & A6XX_RB_BLIT_INFO_UNK8__MASK;
+ return ((val) << A6XX_RB_BLIT_INFO_LAST__SHIFT) & A6XX_RB_BLIT_INFO_LAST__MASK;
}
-#define A6XX_RB_BLIT_INFO_UNK12__MASK 0x0000f000
-#define A6XX_RB_BLIT_INFO_UNK12__SHIFT 12
-static inline uint32_t A6XX_RB_BLIT_INFO_UNK12(uint32_t val)
+#define A6XX_RB_BLIT_INFO_BUFFER_ID__MASK 0x0000f000
+#define A6XX_RB_BLIT_INFO_BUFFER_ID__SHIFT 12
+static inline uint32_t A6XX_RB_BLIT_INFO_BUFFER_ID(uint32_t val)
{
- return ((val) << A6XX_RB_BLIT_INFO_UNK12__SHIFT) & A6XX_RB_BLIT_INFO_UNK12__MASK;
+ return ((val) << A6XX_RB_BLIT_INFO_BUFFER_ID__SHIFT) & A6XX_RB_BLIT_INFO_BUFFER_ID__MASK;
}
#define REG_A6XX_RB_UNKNOWN_88F0 0x000088f0
@@ -4155,16 +4436,23 @@ static inline uint32_t A6XX_RB_2D_DST_FLAGS_PLANE_PITCH(uint32_t val)
#define REG_A6XX_RB_UNKNOWN_8E01 0x00008e01
-#define REG_A6XX_RB_UNKNOWN_8E04 0x00008e04
+#define REG_A6XX_RB_DBG_ECO_CNTL 0x00008e04
#define REG_A6XX_RB_ADDR_MODE_CNTL 0x00008e05
#define REG_A6XX_RB_CCU_CNTL 0x00008e07
-#define A6XX_RB_CCU_CNTL_COLOR_OFFSET__MASK 0xff800000
-#define A6XX_RB_CCU_CNTL_COLOR_OFFSET__SHIFT 23
-static inline uint32_t A6XX_RB_CCU_CNTL_COLOR_OFFSET(uint32_t val)
+#define A6XX_RB_CCU_CNTL_CONCURRENT_RESOLVE 0x00000004
+#define A6XX_RB_CCU_CNTL_DEPTH_OFFSET_HI__MASK 0x00000080
+#define A6XX_RB_CCU_CNTL_DEPTH_OFFSET_HI__SHIFT 7
+static inline uint32_t A6XX_RB_CCU_CNTL_DEPTH_OFFSET_HI(uint32_t val)
{
- return ((val >> 12) << A6XX_RB_CCU_CNTL_COLOR_OFFSET__SHIFT) & A6XX_RB_CCU_CNTL_COLOR_OFFSET__MASK;
+ return ((val) << A6XX_RB_CCU_CNTL_DEPTH_OFFSET_HI__SHIFT) & A6XX_RB_CCU_CNTL_DEPTH_OFFSET_HI__MASK;
+}
+#define A6XX_RB_CCU_CNTL_COLOR_OFFSET_HI__MASK 0x00000200
+#define A6XX_RB_CCU_CNTL_COLOR_OFFSET_HI__SHIFT 9
+static inline uint32_t A6XX_RB_CCU_CNTL_COLOR_OFFSET_HI(uint32_t val)
+{
+ return ((val) << A6XX_RB_CCU_CNTL_COLOR_OFFSET_HI__SHIFT) & A6XX_RB_CCU_CNTL_COLOR_OFFSET_HI__MASK;
}
#define A6XX_RB_CCU_CNTL_DEPTH_OFFSET__MASK 0x001ff000
#define A6XX_RB_CCU_CNTL_DEPTH_OFFSET__SHIFT 12
@@ -4173,7 +4461,12 @@ static inline uint32_t A6XX_RB_CCU_CNTL_DEPTH_OFFSET(uint32_t val)
return ((val >> 12) << A6XX_RB_CCU_CNTL_DEPTH_OFFSET__SHIFT) & A6XX_RB_CCU_CNTL_DEPTH_OFFSET__MASK;
}
#define A6XX_RB_CCU_CNTL_GMEM 0x00400000
-#define A6XX_RB_CCU_CNTL_UNK2 0x00000004
+#define A6XX_RB_CCU_CNTL_COLOR_OFFSET__MASK 0xff800000
+#define A6XX_RB_CCU_CNTL_COLOR_OFFSET__SHIFT 23
+static inline uint32_t A6XX_RB_CCU_CNTL_COLOR_OFFSET(uint32_t val)
+{
+ return ((val >> 12) << A6XX_RB_CCU_CNTL_COLOR_OFFSET__SHIFT) & A6XX_RB_CCU_CNTL_COLOR_OFFSET__MASK;
+}
#define REG_A6XX_RB_NC_MODE_CNTL 0x00008e08
#define A6XX_RB_NC_MODE_CNTL_MODE 0x00000001
@@ -4207,6 +4500,8 @@ static inline uint32_t REG_A6XX_RB_PERFCTR_CCU_SEL(uint32_t i0) { return 0x00008
static inline uint32_t REG_A6XX_RB_PERFCTR_CMP_SEL(uint32_t i0) { return 0x00008e2c + 0x1*i0; }
+static inline uint32_t REG_A7XX_RB_PERFCTR_UFC_SEL(uint32_t i0) { return 0x00008e30 + 0x1*i0; }
+
#define REG_A6XX_RB_RB_SUB_BLOCK_SEL_CNTL_HOST 0x00008e3b
#define REG_A6XX_RB_RB_SUB_BLOCK_SEL_CNTL_CD 0x00008e3d
@@ -4422,7 +4717,13 @@ static inline uint32_t A6XX_VPC_SO_BUFFER_SIZE(uint32_t val)
return ((val >> 2) << A6XX_VPC_SO_BUFFER_SIZE__SHIFT) & A6XX_VPC_SO_BUFFER_SIZE__MASK;
}
-static inline uint32_t REG_A6XX_VPC_SO_NCOMP(uint32_t i0) { return 0x0000921d + 0x7*i0; }
+static inline uint32_t REG_A6XX_VPC_SO_BUFFER_STRIDE(uint32_t i0) { return 0x0000921d + 0x7*i0; }
+#define A6XX_VPC_SO_BUFFER_STRIDE__MASK 0x000003ff
+#define A6XX_VPC_SO_BUFFER_STRIDE__SHIFT 0
+static inline uint32_t A6XX_VPC_SO_BUFFER_STRIDE(uint32_t val)
+{
+ return ((val >> 2) << A6XX_VPC_SO_BUFFER_STRIDE__SHIFT) & A6XX_VPC_SO_BUFFER_STRIDE__MASK;
+}
static inline uint32_t REG_A6XX_VPC_SO_BUFFER_OFFSET(uint32_t i0) { return 0x0000921e + 0x7*i0; }
#define A6XX_VPC_SO_BUFFER_OFFSET__MASK 0xfffffffc
@@ -4579,7 +4880,7 @@ static inline uint32_t A6XX_VPC_SO_STREAM_CNTL_STREAM_ENABLE(uint32_t val)
#define REG_A6XX_VPC_SO_DISABLE 0x00009306
#define A6XX_VPC_SO_DISABLE_DISABLE 0x00000001
-#define REG_A6XX_VPC_UNKNOWN_9600 0x00009600
+#define REG_A6XX_VPC_DBG_ECO_CNTL 0x00009600
#define REG_A6XX_VPC_ADDR_MODE_CNTL 0x00009601
@@ -4589,6 +4890,8 @@ static inline uint32_t A6XX_VPC_SO_STREAM_CNTL_STREAM_ENABLE(uint32_t val)
static inline uint32_t REG_A6XX_VPC_PERFCTR_VPC_SEL(uint32_t i0) { return 0x00009604 + 0x1*i0; }
+static inline uint32_t REG_A7XX_VPC_PERFCTR_VPC_SEL(uint32_t i0) { return 0x0000960b + 0x1*i0; }
+
#define REG_A6XX_PC_TESS_NUM_VERTEX 0x00009800
#define REG_A6XX_PC_HS_INPUT_SIZE 0x00009801
@@ -4628,7 +4931,12 @@ static inline uint32_t A6XX_PC_TESS_CNTL_OUTPUT(enum a6xx_tess_output val)
#define REG_A6XX_PC_PRIMID_PASSTHRU 0x00009806
#define REG_A6XX_PC_SO_STREAM_CNTL 0x00009808
-#define A6XX_PC_SO_STREAM_CNTL_STREAM_ENABLE 0x00008000
+#define A6XX_PC_SO_STREAM_CNTL_STREAM_ENABLE__MASK 0x00078000
+#define A6XX_PC_SO_STREAM_CNTL_STREAM_ENABLE__SHIFT 15
+static inline uint32_t A6XX_PC_SO_STREAM_CNTL_STREAM_ENABLE(uint32_t val)
+{
+ return ((val) << A6XX_PC_SO_STREAM_CNTL_STREAM_ENABLE__SHIFT) & A6XX_PC_SO_STREAM_CNTL_STREAM_ENABLE__MASK;
+}
#define REG_A6XX_PC_DGEN_SU_CONSERVATIVE_RAS_CNTL 0x0000980a
#define A6XX_PC_DGEN_SU_CONSERVATIVE_RAS_CNTL_CONSERVATIVERASEN 0x00000001
@@ -4918,6 +5226,8 @@ static inline uint32_t A6XX_PC_BIN_DRAW_STRM(uint32_t val)
static inline uint32_t REG_A6XX_PC_PERFCTR_PC_SEL(uint32_t i0) { return 0x00009e34 + 0x1*i0; }
+static inline uint32_t REG_A7XX_PC_PERFCTR_PC_SEL(uint32_t i0) { return 0x00009e42 + 0x1*i0; }
+
#define REG_A6XX_PC_UNKNOWN_9E72 0x00009e72
#define REG_A6XX_VFD_CONTROL_0 0x0000a000
@@ -5120,9 +5430,11 @@ static inline uint32_t A6XX_VFD_DEST_CNTL_INSTR_REGID(uint32_t val)
static inline uint32_t REG_A6XX_VFD_PERFCTR_VFD_SEL(uint32_t i0) { return 0x0000a610 + 0x1*i0; }
+static inline uint32_t REG_A7XX_VFD_PERFCTR_VFD_SEL(uint32_t i0) { return 0x0000a610 + 0x1*i0; }
+
#define REG_A6XX_SP_VS_CTRL_REG0 0x0000a800
#define A6XX_SP_VS_CTRL_REG0_MERGEDREGS 0x00100000
-#define A6XX_SP_VS_CTRL_REG0_UNK21 0x00200000
+#define A6XX_SP_VS_CTRL_REG0_EARLYPREAMBLE 0x00200000
#define A6XX_SP_VS_CTRL_REG0_THREADMODE__MASK 0x00000001
#define A6XX_SP_VS_CTRL_REG0_THREADMODE__SHIFT 0
static inline uint32_t A6XX_SP_VS_CTRL_REG0_THREADMODE(enum a3xx_threadmode val)
@@ -5300,7 +5612,7 @@ static inline uint32_t A6XX_SP_VS_PVT_MEM_HW_STACK_OFFSET_OFFSET(uint32_t val)
}
#define REG_A6XX_SP_HS_CTRL_REG0 0x0000a830
-#define A6XX_SP_HS_CTRL_REG0_UNK20 0x00100000
+#define A6XX_SP_HS_CTRL_REG0_EARLYPREAMBLE 0x00100000
#define A6XX_SP_HS_CTRL_REG0_THREADMODE__MASK 0x00000001
#define A6XX_SP_HS_CTRL_REG0_THREADMODE__SHIFT 0
static inline uint32_t A6XX_SP_HS_CTRL_REG0_THREADMODE(enum a3xx_threadmode val)
@@ -5410,7 +5722,7 @@ static inline uint32_t A6XX_SP_HS_PVT_MEM_HW_STACK_OFFSET_OFFSET(uint32_t val)
}
#define REG_A6XX_SP_DS_CTRL_REG0 0x0000a840
-#define A6XX_SP_DS_CTRL_REG0_MERGEDREGS 0x00100000
+#define A6XX_SP_DS_CTRL_REG0_EARLYPREAMBLE 0x00100000
#define A6XX_SP_DS_CTRL_REG0_THREADMODE__MASK 0x00000001
#define A6XX_SP_DS_CTRL_REG0_THREADMODE__SHIFT 0
static inline uint32_t A6XX_SP_DS_CTRL_REG0_THREADMODE(enum a3xx_threadmode val)
@@ -5588,7 +5900,7 @@ static inline uint32_t A6XX_SP_DS_PVT_MEM_HW_STACK_OFFSET_OFFSET(uint32_t val)
}
#define REG_A6XX_SP_GS_CTRL_REG0 0x0000a870
-#define A6XX_SP_GS_CTRL_REG0_UNK20 0x00100000
+#define A6XX_SP_GS_CTRL_REG0_EARLYPREAMBLE 0x00100000
#define A6XX_SP_GS_CTRL_REG0_THREADMODE__MASK 0x00000001
#define A6XX_SP_GS_CTRL_REG0_THREADMODE__SHIFT 0
static inline uint32_t A6XX_SP_GS_CTRL_REG0_THREADMODE(enum a3xx_threadmode val)
@@ -5844,12 +6156,8 @@ static inline uint32_t A6XX_SP_FS_CTRL_REG0_THREADSIZE(enum a6xx_threadsize val)
#define A6XX_SP_FS_CTRL_REG0_UNK24 0x01000000
#define A6XX_SP_FS_CTRL_REG0_UNK25 0x02000000
#define A6XX_SP_FS_CTRL_REG0_PIXLODENABLE 0x04000000
-#define A6XX_SP_FS_CTRL_REG0_UNK27__MASK 0x18000000
-#define A6XX_SP_FS_CTRL_REG0_UNK27__SHIFT 27
-static inline uint32_t A6XX_SP_FS_CTRL_REG0_UNK27(uint32_t val)
-{
- return ((val) << A6XX_SP_FS_CTRL_REG0_UNK27__SHIFT) & A6XX_SP_FS_CTRL_REG0_UNK27__MASK;
-}
+#define A6XX_SP_FS_CTRL_REG0_UNK27 0x08000000
+#define A6XX_SP_FS_CTRL_REG0_EARLYPREAMBLE 0x10000000
#define A6XX_SP_FS_CTRL_REG0_MERGEDREGS 0x80000000
#define A6XX_SP_FS_CTRL_REG0_THREADMODE__MASK 0x00000001
#define A6XX_SP_FS_CTRL_REG0_THREADMODE__SHIFT 0
@@ -6051,18 +6359,14 @@ static inline uint32_t A6XX_SP_FS_PREFETCH_CNTL_COUNT(uint32_t val)
{
return ((val) << A6XX_SP_FS_PREFETCH_CNTL_COUNT__SHIFT) & A6XX_SP_FS_PREFETCH_CNTL_COUNT__MASK;
}
-#define A6XX_SP_FS_PREFETCH_CNTL_UNK3 0x00000008
-#define A6XX_SP_FS_PREFETCH_CNTL_UNK4__MASK 0x00000ff0
-#define A6XX_SP_FS_PREFETCH_CNTL_UNK4__SHIFT 4
-static inline uint32_t A6XX_SP_FS_PREFETCH_CNTL_UNK4(uint32_t val)
+#define A6XX_SP_FS_PREFETCH_CNTL_IJ_WRITE_DISABLE 0x00000008
+#define A6XX_SP_FS_PREFETCH_CNTL_UNK4 0x00000010
+#define A6XX_SP_FS_PREFETCH_CNTL_WRITE_COLOR_TO_OUTPUT 0x00000020
+#define A6XX_SP_FS_PREFETCH_CNTL_UNK6__MASK 0x00007fc0
+#define A6XX_SP_FS_PREFETCH_CNTL_UNK6__SHIFT 6
+static inline uint32_t A6XX_SP_FS_PREFETCH_CNTL_UNK6(uint32_t val)
{
- return ((val) << A6XX_SP_FS_PREFETCH_CNTL_UNK4__SHIFT) & A6XX_SP_FS_PREFETCH_CNTL_UNK4__MASK;
-}
-#define A6XX_SP_FS_PREFETCH_CNTL_UNK12__MASK 0x00007000
-#define A6XX_SP_FS_PREFETCH_CNTL_UNK12__SHIFT 12
-static inline uint32_t A6XX_SP_FS_PREFETCH_CNTL_UNK12(uint32_t val)
-{
- return ((val) << A6XX_SP_FS_PREFETCH_CNTL_UNK12__SHIFT) & A6XX_SP_FS_PREFETCH_CNTL_UNK12__MASK;
+ return ((val) << A6XX_SP_FS_PREFETCH_CNTL_UNK6__SHIFT) & A6XX_SP_FS_PREFETCH_CNTL_UNK6__MASK;
}
static inline uint32_t REG_A6XX_SP_FS_PREFETCH(uint32_t i0) { return 0x0000a99f + 0x1*i0; }
@@ -6099,9 +6403,11 @@ static inline uint32_t A6XX_SP_FS_PREFETCH_CMD_WRMASK(uint32_t val)
return ((val) << A6XX_SP_FS_PREFETCH_CMD_WRMASK__SHIFT) & A6XX_SP_FS_PREFETCH_CMD_WRMASK__MASK;
}
#define A6XX_SP_FS_PREFETCH_CMD_HALF 0x04000000
-#define A6XX_SP_FS_PREFETCH_CMD_CMD__MASK 0xf8000000
-#define A6XX_SP_FS_PREFETCH_CMD_CMD__SHIFT 27
-static inline uint32_t A6XX_SP_FS_PREFETCH_CMD_CMD(uint32_t val)
+#define A6XX_SP_FS_PREFETCH_CMD_UNK27 0x08000000
+#define A6XX_SP_FS_PREFETCH_CMD_BINDLESS 0x10000000
+#define A6XX_SP_FS_PREFETCH_CMD_CMD__MASK 0xe0000000
+#define A6XX_SP_FS_PREFETCH_CMD_CMD__SHIFT 29
+static inline uint32_t A6XX_SP_FS_PREFETCH_CMD_CMD(enum a6xx_tex_prefetch_cmd val)
{
return ((val) << A6XX_SP_FS_PREFETCH_CMD_CMD__SHIFT) & A6XX_SP_FS_PREFETCH_CMD_CMD__MASK;
}
@@ -6143,7 +6449,7 @@ static inline uint32_t A6XX_SP_CS_CTRL_REG0_THREADSIZE(enum a6xx_threadsize val)
}
#define A6XX_SP_CS_CTRL_REG0_UNK21 0x00200000
#define A6XX_SP_CS_CTRL_REG0_UNK22 0x00400000
-#define A6XX_SP_CS_CTRL_REG0_SEPARATEPROLOG 0x00800000
+#define A6XX_SP_CS_CTRL_REG0_EARLYPREAMBLE 0x00800000
#define A6XX_SP_CS_CTRL_REG0_MERGEDREGS 0x80000000
#define A6XX_SP_CS_CTRL_REG0_THREADMODE__MASK 0x00000001
#define A6XX_SP_CS_CTRL_REG0_THREADMODE__SHIFT 0
@@ -6337,7 +6643,19 @@ static inline uint32_t A6XX_SP_CS_TEX_CONST(uint32_t val)
static inline uint32_t REG_A6XX_SP_CS_BINDLESS_BASE(uint32_t i0) { return 0x0000a9e8 + 0x2*i0; }
-static inline uint32_t REG_A6XX_SP_CS_BINDLESS_BASE_ADDR(uint32_t i0) { return 0x0000a9e8 + 0x2*i0; }
+static inline uint32_t REG_A6XX_SP_CS_BINDLESS_BASE_DESCRIPTOR(uint32_t i0) { return 0x0000a9e8 + 0x2*i0; }
+#define A6XX_SP_CS_BINDLESS_BASE_DESCRIPTOR_DESC_SIZE__MASK 0x00000003
+#define A6XX_SP_CS_BINDLESS_BASE_DESCRIPTOR_DESC_SIZE__SHIFT 0
+static inline uint32_t A6XX_SP_CS_BINDLESS_BASE_DESCRIPTOR_DESC_SIZE(enum a6xx_bindless_descriptor_size val)
+{
+ return ((val) << A6XX_SP_CS_BINDLESS_BASE_DESCRIPTOR_DESC_SIZE__SHIFT) & A6XX_SP_CS_BINDLESS_BASE_DESCRIPTOR_DESC_SIZE__MASK;
+}
+#define A6XX_SP_CS_BINDLESS_BASE_DESCRIPTOR_ADDR__MASK 0xfffffffc
+#define A6XX_SP_CS_BINDLESS_BASE_DESCRIPTOR_ADDR__SHIFT 2
+static inline uint32_t A6XX_SP_CS_BINDLESS_BASE_DESCRIPTOR_ADDR(uint32_t val)
+{
+ return ((val >> 2) << A6XX_SP_CS_BINDLESS_BASE_DESCRIPTOR_ADDR__SHIFT) & A6XX_SP_CS_BINDLESS_BASE_DESCRIPTOR_ADDR__MASK;
+}
#define REG_A6XX_SP_CS_IBO 0x0000a9f2
#define A6XX_SP_CS_IBO__MASK 0xffffffff
@@ -6388,7 +6706,19 @@ static inline uint32_t A6XX_SP_FS_CONFIG_NIBO(uint32_t val)
static inline uint32_t REG_A6XX_SP_BINDLESS_BASE(uint32_t i0) { return 0x0000ab10 + 0x2*i0; }
-static inline uint32_t REG_A6XX_SP_BINDLESS_BASE_ADDR(uint32_t i0) { return 0x0000ab10 + 0x2*i0; }
+static inline uint32_t REG_A6XX_SP_BINDLESS_BASE_DESCRIPTOR(uint32_t i0) { return 0x0000ab10 + 0x2*i0; }
+#define A6XX_SP_BINDLESS_BASE_DESCRIPTOR_DESC_SIZE__MASK 0x00000003
+#define A6XX_SP_BINDLESS_BASE_DESCRIPTOR_DESC_SIZE__SHIFT 0
+static inline uint32_t A6XX_SP_BINDLESS_BASE_DESCRIPTOR_DESC_SIZE(enum a6xx_bindless_descriptor_size val)
+{
+ return ((val) << A6XX_SP_BINDLESS_BASE_DESCRIPTOR_DESC_SIZE__SHIFT) & A6XX_SP_BINDLESS_BASE_DESCRIPTOR_DESC_SIZE__MASK;
+}
+#define A6XX_SP_BINDLESS_BASE_DESCRIPTOR_ADDR__MASK 0xfffffffc
+#define A6XX_SP_BINDLESS_BASE_DESCRIPTOR_ADDR__SHIFT 2
+static inline uint32_t A6XX_SP_BINDLESS_BASE_DESCRIPTOR_ADDR(uint32_t val)
+{
+ return ((val >> 2) << A6XX_SP_BINDLESS_BASE_DESCRIPTOR_ADDR__SHIFT) & A6XX_SP_BINDLESS_BASE_DESCRIPTOR_ADDR__MASK;
+}
#define REG_A6XX_SP_IBO 0x0000ab1a
#define A6XX_SP_IBO__MASK 0xffffffff
@@ -6418,7 +6748,7 @@ static inline uint32_t A6XX_SP_2D_DST_FORMAT_MASK(uint32_t val)
return ((val) << A6XX_SP_2D_DST_FORMAT_MASK__SHIFT) & A6XX_SP_2D_DST_FORMAT_MASK__MASK;
}
-#define REG_A6XX_SP_UNKNOWN_AE00 0x0000ae00
+#define REG_A6XX_SP_DBG_ECO_CNTL 0x0000ae00
#define REG_A6XX_SP_ADDR_MODE_CNTL 0x0000ae01
@@ -6439,6 +6769,12 @@ static inline uint32_t A6XX_SP_2D_DST_FORMAT_MASK(uint32_t val)
static inline uint32_t REG_A6XX_SP_PERFCTR_SP_SEL(uint32_t i0) { return 0x0000ae10 + 0x1*i0; }
+static inline uint32_t REG_A7XX_SP_PERFCTR_HLSQ_SEL(uint32_t i0) { return 0x0000ae60 + 0x1*i0; }
+
+#define REG_A7XX_SP_READ_SEL 0x0000ae6d
+
+static inline uint32_t REG_A7XX_SP_PERFCTR_SP_SEL(uint32_t i0) { return 0x0000ae80 + 0x1*i0; }
+
#define REG_A6XX_SP_CONTEXT_SWITCH_GFX_PREEMPTION_SAFE_MODE 0x0000be22
#define REG_A6XX_SP_PS_TP_BORDER_COLOR_BASE_ADDR 0x0000b180
@@ -6869,6 +7205,8 @@ static inline uint32_t A6XX_HLSQ_FS_CNTL_0_UNK2(uint32_t val)
#define REG_A6XX_HLSQ_CONTROL_1_REG 0x0000b982
+#define REG_A7XX_HLSQ_CONTROL_1_REG 0x0000a9c7
+
#define REG_A6XX_HLSQ_CONTROL_2_REG 0x0000b983
#define A6XX_HLSQ_CONTROL_2_REG_FACEREGID__MASK 0x000000ff
#define A6XX_HLSQ_CONTROL_2_REG_FACEREGID__SHIFT 0
@@ -6888,11 +7226,37 @@ static inline uint32_t A6XX_HLSQ_CONTROL_2_REG_SAMPLEMASK(uint32_t val)
{
return ((val) << A6XX_HLSQ_CONTROL_2_REG_SAMPLEMASK__SHIFT) & A6XX_HLSQ_CONTROL_2_REG_SAMPLEMASK__MASK;
}
-#define A6XX_HLSQ_CONTROL_2_REG_SIZE__MASK 0xff000000
-#define A6XX_HLSQ_CONTROL_2_REG_SIZE__SHIFT 24
-static inline uint32_t A6XX_HLSQ_CONTROL_2_REG_SIZE(uint32_t val)
+#define A6XX_HLSQ_CONTROL_2_REG_CENTERRHW__MASK 0xff000000
+#define A6XX_HLSQ_CONTROL_2_REG_CENTERRHW__SHIFT 24
+static inline uint32_t A6XX_HLSQ_CONTROL_2_REG_CENTERRHW(uint32_t val)
{
- return ((val) << A6XX_HLSQ_CONTROL_2_REG_SIZE__SHIFT) & A6XX_HLSQ_CONTROL_2_REG_SIZE__MASK;
+ return ((val) << A6XX_HLSQ_CONTROL_2_REG_CENTERRHW__SHIFT) & A6XX_HLSQ_CONTROL_2_REG_CENTERRHW__MASK;
+}
+
+#define REG_A7XX_HLSQ_CONTROL_2_REG 0x0000a9c8
+#define A7XX_HLSQ_CONTROL_2_REG_FACEREGID__MASK 0x000000ff
+#define A7XX_HLSQ_CONTROL_2_REG_FACEREGID__SHIFT 0
+static inline uint32_t A7XX_HLSQ_CONTROL_2_REG_FACEREGID(uint32_t val)
+{
+ return ((val) << A7XX_HLSQ_CONTROL_2_REG_FACEREGID__SHIFT) & A7XX_HLSQ_CONTROL_2_REG_FACEREGID__MASK;
+}
+#define A7XX_HLSQ_CONTROL_2_REG_SAMPLEID__MASK 0x0000ff00
+#define A7XX_HLSQ_CONTROL_2_REG_SAMPLEID__SHIFT 8
+static inline uint32_t A7XX_HLSQ_CONTROL_2_REG_SAMPLEID(uint32_t val)
+{
+ return ((val) << A7XX_HLSQ_CONTROL_2_REG_SAMPLEID__SHIFT) & A7XX_HLSQ_CONTROL_2_REG_SAMPLEID__MASK;
+}
+#define A7XX_HLSQ_CONTROL_2_REG_SAMPLEMASK__MASK 0x00ff0000
+#define A7XX_HLSQ_CONTROL_2_REG_SAMPLEMASK__SHIFT 16
+static inline uint32_t A7XX_HLSQ_CONTROL_2_REG_SAMPLEMASK(uint32_t val)
+{
+ return ((val) << A7XX_HLSQ_CONTROL_2_REG_SAMPLEMASK__SHIFT) & A7XX_HLSQ_CONTROL_2_REG_SAMPLEMASK__MASK;
+}
+#define A7XX_HLSQ_CONTROL_2_REG_CENTERRHW__MASK 0xff000000
+#define A7XX_HLSQ_CONTROL_2_REG_CENTERRHW__SHIFT 24
+static inline uint32_t A7XX_HLSQ_CONTROL_2_REG_CENTERRHW(uint32_t val)
+{
+ return ((val) << A7XX_HLSQ_CONTROL_2_REG_CENTERRHW__SHIFT) & A7XX_HLSQ_CONTROL_2_REG_CENTERRHW__MASK;
}
#define REG_A6XX_HLSQ_CONTROL_3_REG 0x0000b984
@@ -6921,6 +7285,32 @@ static inline uint32_t A6XX_HLSQ_CONTROL_3_REG_IJ_LINEAR_CENTROID(uint32_t val)
return ((val) << A6XX_HLSQ_CONTROL_3_REG_IJ_LINEAR_CENTROID__SHIFT) & A6XX_HLSQ_CONTROL_3_REG_IJ_LINEAR_CENTROID__MASK;
}
+#define REG_A7XX_HLSQ_CONTROL_3_REG 0x0000a9c9
+#define A7XX_HLSQ_CONTROL_3_REG_IJ_PERSP_PIXEL__MASK 0x000000ff
+#define A7XX_HLSQ_CONTROL_3_REG_IJ_PERSP_PIXEL__SHIFT 0
+static inline uint32_t A7XX_HLSQ_CONTROL_3_REG_IJ_PERSP_PIXEL(uint32_t val)
+{
+ return ((val) << A7XX_HLSQ_CONTROL_3_REG_IJ_PERSP_PIXEL__SHIFT) & A7XX_HLSQ_CONTROL_3_REG_IJ_PERSP_PIXEL__MASK;
+}
+#define A7XX_HLSQ_CONTROL_3_REG_IJ_LINEAR_PIXEL__MASK 0x0000ff00
+#define A7XX_HLSQ_CONTROL_3_REG_IJ_LINEAR_PIXEL__SHIFT 8
+static inline uint32_t A7XX_HLSQ_CONTROL_3_REG_IJ_LINEAR_PIXEL(uint32_t val)
+{
+ return ((val) << A7XX_HLSQ_CONTROL_3_REG_IJ_LINEAR_PIXEL__SHIFT) & A7XX_HLSQ_CONTROL_3_REG_IJ_LINEAR_PIXEL__MASK;
+}
+#define A7XX_HLSQ_CONTROL_3_REG_IJ_PERSP_CENTROID__MASK 0x00ff0000
+#define A7XX_HLSQ_CONTROL_3_REG_IJ_PERSP_CENTROID__SHIFT 16
+static inline uint32_t A7XX_HLSQ_CONTROL_3_REG_IJ_PERSP_CENTROID(uint32_t val)
+{
+ return ((val) << A7XX_HLSQ_CONTROL_3_REG_IJ_PERSP_CENTROID__SHIFT) & A7XX_HLSQ_CONTROL_3_REG_IJ_PERSP_CENTROID__MASK;
+}
+#define A7XX_HLSQ_CONTROL_3_REG_IJ_LINEAR_CENTROID__MASK 0xff000000
+#define A7XX_HLSQ_CONTROL_3_REG_IJ_LINEAR_CENTROID__SHIFT 24
+static inline uint32_t A7XX_HLSQ_CONTROL_3_REG_IJ_LINEAR_CENTROID(uint32_t val)
+{
+ return ((val) << A7XX_HLSQ_CONTROL_3_REG_IJ_LINEAR_CENTROID__SHIFT) & A7XX_HLSQ_CONTROL_3_REG_IJ_LINEAR_CENTROID__MASK;
+}
+
#define REG_A6XX_HLSQ_CONTROL_4_REG 0x0000b985
#define A6XX_HLSQ_CONTROL_4_REG_IJ_PERSP_SAMPLE__MASK 0x000000ff
#define A6XX_HLSQ_CONTROL_4_REG_IJ_PERSP_SAMPLE__SHIFT 0
@@ -6947,6 +7337,32 @@ static inline uint32_t A6XX_HLSQ_CONTROL_4_REG_ZWCOORDREGID(uint32_t val)
return ((val) << A6XX_HLSQ_CONTROL_4_REG_ZWCOORDREGID__SHIFT) & A6XX_HLSQ_CONTROL_4_REG_ZWCOORDREGID__MASK;
}
+#define REG_A7XX_HLSQ_CONTROL_4_REG 0x0000a9ca
+#define A7XX_HLSQ_CONTROL_4_REG_IJ_PERSP_SAMPLE__MASK 0x000000ff
+#define A7XX_HLSQ_CONTROL_4_REG_IJ_PERSP_SAMPLE__SHIFT 0
+static inline uint32_t A7XX_HLSQ_CONTROL_4_REG_IJ_PERSP_SAMPLE(uint32_t val)
+{
+ return ((val) << A7XX_HLSQ_CONTROL_4_REG_IJ_PERSP_SAMPLE__SHIFT) & A7XX_HLSQ_CONTROL_4_REG_IJ_PERSP_SAMPLE__MASK;
+}
+#define A7XX_HLSQ_CONTROL_4_REG_IJ_LINEAR_SAMPLE__MASK 0x0000ff00
+#define A7XX_HLSQ_CONTROL_4_REG_IJ_LINEAR_SAMPLE__SHIFT 8
+static inline uint32_t A7XX_HLSQ_CONTROL_4_REG_IJ_LINEAR_SAMPLE(uint32_t val)
+{
+ return ((val) << A7XX_HLSQ_CONTROL_4_REG_IJ_LINEAR_SAMPLE__SHIFT) & A7XX_HLSQ_CONTROL_4_REG_IJ_LINEAR_SAMPLE__MASK;
+}
+#define A7XX_HLSQ_CONTROL_4_REG_XYCOORDREGID__MASK 0x00ff0000
+#define A7XX_HLSQ_CONTROL_4_REG_XYCOORDREGID__SHIFT 16
+static inline uint32_t A7XX_HLSQ_CONTROL_4_REG_XYCOORDREGID(uint32_t val)
+{
+ return ((val) << A7XX_HLSQ_CONTROL_4_REG_XYCOORDREGID__SHIFT) & A7XX_HLSQ_CONTROL_4_REG_XYCOORDREGID__MASK;
+}
+#define A7XX_HLSQ_CONTROL_4_REG_ZWCOORDREGID__MASK 0xff000000
+#define A7XX_HLSQ_CONTROL_4_REG_ZWCOORDREGID__SHIFT 24
+static inline uint32_t A7XX_HLSQ_CONTROL_4_REG_ZWCOORDREGID(uint32_t val)
+{
+ return ((val) << A7XX_HLSQ_CONTROL_4_REG_ZWCOORDREGID__SHIFT) & A7XX_HLSQ_CONTROL_4_REG_ZWCOORDREGID__MASK;
+}
+
#define REG_A6XX_HLSQ_CONTROL_5_REG 0x0000b986
#define A6XX_HLSQ_CONTROL_5_REG_LINELENGTHREGID__MASK 0x000000ff
#define A6XX_HLSQ_CONTROL_5_REG_LINELENGTHREGID__SHIFT 0
@@ -6961,6 +7377,20 @@ static inline uint32_t A6XX_HLSQ_CONTROL_5_REG_FOVEATIONQUALITYREGID(uint32_t va
return ((val) << A6XX_HLSQ_CONTROL_5_REG_FOVEATIONQUALITYREGID__SHIFT) & A6XX_HLSQ_CONTROL_5_REG_FOVEATIONQUALITYREGID__MASK;
}
+#define REG_A7XX_HLSQ_CONTROL_5_REG 0x0000a9cb
+#define A7XX_HLSQ_CONTROL_5_REG_LINELENGTHREGID__MASK 0x000000ff
+#define A7XX_HLSQ_CONTROL_5_REG_LINELENGTHREGID__SHIFT 0
+static inline uint32_t A7XX_HLSQ_CONTROL_5_REG_LINELENGTHREGID(uint32_t val)
+{
+ return ((val) << A7XX_HLSQ_CONTROL_5_REG_LINELENGTHREGID__SHIFT) & A7XX_HLSQ_CONTROL_5_REG_LINELENGTHREGID__MASK;
+}
+#define A7XX_HLSQ_CONTROL_5_REG_FOVEATIONQUALITYREGID__MASK 0x0000ff00
+#define A7XX_HLSQ_CONTROL_5_REG_FOVEATIONQUALITYREGID__SHIFT 8
+static inline uint32_t A7XX_HLSQ_CONTROL_5_REG_FOVEATIONQUALITYREGID(uint32_t val)
+{
+ return ((val) << A7XX_HLSQ_CONTROL_5_REG_FOVEATIONQUALITYREGID__SHIFT) & A7XX_HLSQ_CONTROL_5_REG_FOVEATIONQUALITYREGID__MASK;
+}
+
#define REG_A6XX_HLSQ_CS_CNTL 0x0000b987
#define A6XX_HLSQ_CS_CNTL_CONSTLEN__MASK 0x000000ff
#define A6XX_HLSQ_CS_CNTL_CONSTLEN__SHIFT 0
@@ -7106,7 +7536,19 @@ static inline uint32_t A6XX_HLSQ_LOAD_STATE_FRAG_EXT_SRC_ADDR(uint32_t val)
static inline uint32_t REG_A6XX_HLSQ_CS_BINDLESS_BASE(uint32_t i0) { return 0x0000b9c0 + 0x2*i0; }
-static inline uint32_t REG_A6XX_HLSQ_CS_BINDLESS_BASE_ADDR(uint32_t i0) { return 0x0000b9c0 + 0x2*i0; }
+static inline uint32_t REG_A6XX_HLSQ_CS_BINDLESS_BASE_DESCRIPTOR(uint32_t i0) { return 0x0000b9c0 + 0x2*i0; }
+#define A6XX_HLSQ_CS_BINDLESS_BASE_DESCRIPTOR_DESC_SIZE__MASK 0x00000003
+#define A6XX_HLSQ_CS_BINDLESS_BASE_DESCRIPTOR_DESC_SIZE__SHIFT 0
+static inline uint32_t A6XX_HLSQ_CS_BINDLESS_BASE_DESCRIPTOR_DESC_SIZE(enum a6xx_bindless_descriptor_size val)
+{
+ return ((val) << A6XX_HLSQ_CS_BINDLESS_BASE_DESCRIPTOR_DESC_SIZE__SHIFT) & A6XX_HLSQ_CS_BINDLESS_BASE_DESCRIPTOR_DESC_SIZE__MASK;
+}
+#define A6XX_HLSQ_CS_BINDLESS_BASE_DESCRIPTOR_ADDR__MASK 0xfffffffc
+#define A6XX_HLSQ_CS_BINDLESS_BASE_DESCRIPTOR_ADDR__SHIFT 2
+static inline uint32_t A6XX_HLSQ_CS_BINDLESS_BASE_DESCRIPTOR_ADDR(uint32_t val)
+{
+ return ((val >> 2) << A6XX_HLSQ_CS_BINDLESS_BASE_DESCRIPTOR_ADDR__SHIFT) & A6XX_HLSQ_CS_BINDLESS_BASE_DESCRIPTOR_ADDR__MASK;
+}
#define REG_A6XX_HLSQ_CS_UNKNOWN_B9D0 0x0000b9d0
#define A6XX_HLSQ_CS_UNKNOWN_B9D0_SHARED_SIZE__MASK 0x0000001f
@@ -7186,7 +7628,19 @@ static inline uint32_t A6XX_HLSQ_FS_CNTL_CONSTLEN(uint32_t val)
static inline uint32_t REG_A6XX_HLSQ_BINDLESS_BASE(uint32_t i0) { return 0x0000bb20 + 0x2*i0; }
-static inline uint32_t REG_A6XX_HLSQ_BINDLESS_BASE_ADDR(uint32_t i0) { return 0x0000bb20 + 0x2*i0; }
+static inline uint32_t REG_A6XX_HLSQ_BINDLESS_BASE_DESCRIPTOR(uint32_t i0) { return 0x0000bb20 + 0x2*i0; }
+#define A6XX_HLSQ_BINDLESS_BASE_DESCRIPTOR_DESC_SIZE__MASK 0x00000003
+#define A6XX_HLSQ_BINDLESS_BASE_DESCRIPTOR_DESC_SIZE__SHIFT 0
+static inline uint32_t A6XX_HLSQ_BINDLESS_BASE_DESCRIPTOR_DESC_SIZE(enum a6xx_bindless_descriptor_size val)
+{
+ return ((val) << A6XX_HLSQ_BINDLESS_BASE_DESCRIPTOR_DESC_SIZE__SHIFT) & A6XX_HLSQ_BINDLESS_BASE_DESCRIPTOR_DESC_SIZE__MASK;
+}
+#define A6XX_HLSQ_BINDLESS_BASE_DESCRIPTOR_ADDR__MASK 0xfffffffc
+#define A6XX_HLSQ_BINDLESS_BASE_DESCRIPTOR_ADDR__SHIFT 2
+static inline uint32_t A6XX_HLSQ_BINDLESS_BASE_DESCRIPTOR_ADDR(uint32_t val)
+{
+ return ((val >> 2) << A6XX_HLSQ_BINDLESS_BASE_DESCRIPTOR_ADDR__SHIFT) & A6XX_HLSQ_BINDLESS_BASE_DESCRIPTOR_ADDR__MASK;
+}
#define REG_A6XX_HLSQ_2D_EVENT_CMD 0x0000bd80
#define A6XX_HLSQ_2D_EVENT_CMD_STATE_ID__MASK 0x0000ff00
@@ -7206,7 +7660,7 @@ static inline uint32_t A6XX_HLSQ_2D_EVENT_CMD_EVENT(enum vgt_event_type val)
#define REG_A6XX_HLSQ_UNKNOWN_BE01 0x0000be01
-#define REG_A6XX_HLSQ_UNKNOWN_BE04 0x0000be04
+#define REG_A6XX_HLSQ_DBG_ECO_CNTL 0x0000be04
#define REG_A6XX_HLSQ_ADDR_MODE_CNTL 0x0000be05
@@ -7216,6 +7670,8 @@ static inline uint32_t REG_A6XX_HLSQ_PERFCTR_HLSQ_SEL(uint32_t i0) { return 0x00
#define REG_A6XX_HLSQ_CONTEXT_SWITCH_GFX_PREEMPTION_SAFE_MODE 0x0000be22
+#define REG_A7XX_SP_AHB_READ_APERTURE 0x0000c000
+
#define REG_A6XX_CP_EVENT_START 0x0000d600
#define A6XX_CP_EVENT_START_STATE_ID__MASK 0x000000ff
#define A6XX_CP_EVENT_START_STATE_ID__SHIFT 0
@@ -7408,7 +7864,18 @@ static inline uint32_t A6XX_TEX_CONST_1_HEIGHT(uint32_t val)
}
#define REG_A6XX_TEX_CONST_2 0x00000002
-#define A6XX_TEX_CONST_2_BUFFER 0x00000010
+#define A6XX_TEX_CONST_2_STRUCTSIZETEXELS__MASK 0x0000fff0
+#define A6XX_TEX_CONST_2_STRUCTSIZETEXELS__SHIFT 4
+static inline uint32_t A6XX_TEX_CONST_2_STRUCTSIZETEXELS(uint32_t val)
+{
+ return ((val) << A6XX_TEX_CONST_2_STRUCTSIZETEXELS__SHIFT) & A6XX_TEX_CONST_2_STRUCTSIZETEXELS__MASK;
+}
+#define A6XX_TEX_CONST_2_STARTOFFSETTEXELS__MASK 0x003f0000
+#define A6XX_TEX_CONST_2_STARTOFFSETTEXELS__SHIFT 16
+static inline uint32_t A6XX_TEX_CONST_2_STARTOFFSETTEXELS(uint32_t val)
+{
+ return ((val) << A6XX_TEX_CONST_2_STARTOFFSETTEXELS__SHIFT) & A6XX_TEX_CONST_2_STARTOFFSETTEXELS__MASK;
+}
#define A6XX_TEX_CONST_2_PITCHALIGN__MASK 0x0000000f
#define A6XX_TEX_CONST_2_PITCHALIGN__SHIFT 0
static inline uint32_t A6XX_TEX_CONST_2_PITCHALIGN(uint32_t val)
@@ -7467,6 +7934,12 @@ static inline uint32_t A6XX_TEX_CONST_5_DEPTH(uint32_t val)
}
#define REG_A6XX_TEX_CONST_6 0x00000006
+#define A6XX_TEX_CONST_6_MIN_LOD_CLAMP__MASK 0x00000fff
+#define A6XX_TEX_CONST_6_MIN_LOD_CLAMP__SHIFT 0
+static inline uint32_t A6XX_TEX_CONST_6_MIN_LOD_CLAMP(float val)
+{
+ return ((((uint32_t)(val * 256.0))) << A6XX_TEX_CONST_6_MIN_LOD_CLAMP__SHIFT) & A6XX_TEX_CONST_6_MIN_LOD_CLAMP__MASK;
+}
#define A6XX_TEX_CONST_6_PLANE_PITCH__MASK 0xffffff00
#define A6XX_TEX_CONST_6_PLANE_PITCH__SHIFT 8
static inline uint32_t A6XX_TEX_CONST_6_PLANE_PITCH(uint32_t val)
diff --git a/drivers/gpu/drm/msm/adreno/a6xx_gmu.c b/drivers/gpu/drm/msm/adreno/a6xx_gmu.c
index e033d6a67a20..e16b4b3f8535 100644
--- a/drivers/gpu/drm/msm/adreno/a6xx_gmu.c
+++ b/drivers/gpu/drm/msm/adreno/a6xx_gmu.c
@@ -621,6 +621,8 @@ setup_pdc:
/* ensure no writes happen before the uCode is fully written */
wmb();
+ a6xx_rpmh_stop(gmu);
+
err:
if (!IS_ERR_OR_NULL(pdcptr))
iounmap(pdcptr);
@@ -753,7 +755,6 @@ static int a6xx_gmu_fw_load(struct a6xx_gmu *gmu)
static int a6xx_gmu_fw_start(struct a6xx_gmu *gmu, unsigned int state)
{
- static bool rpmh_init;
struct a6xx_gpu *a6xx_gpu = container_of(gmu, struct a6xx_gpu, gmu);
struct adreno_gpu *adreno_gpu = &a6xx_gpu->base;
int ret;
@@ -776,15 +777,9 @@ static int a6xx_gmu_fw_start(struct a6xx_gmu *gmu, unsigned int state)
/* Turn on register retention */
gmu_write(gmu, REG_A6XX_GMU_GENERAL_7, 1);
- /* We only need to load the RPMh microcode once */
- if (!rpmh_init) {
- a6xx_gmu_rpmh_init(gmu);
- rpmh_init = true;
- } else {
- ret = a6xx_rpmh_start(gmu);
- if (ret)
- return ret;
- }
+ ret = a6xx_rpmh_start(gmu);
+ if (ret)
+ return ret;
ret = a6xx_gmu_fw_load(gmu);
if (ret)
@@ -876,7 +871,8 @@ static void a6xx_gmu_rpmh_off(struct a6xx_gmu *gmu)
#define GBIF_CLIENT_HALT_MASK BIT(0)
#define GBIF_ARB_HALT_MASK BIT(1)
-static void a6xx_bus_clear_pending_transactions(struct adreno_gpu *adreno_gpu)
+static void a6xx_bus_clear_pending_transactions(struct adreno_gpu *adreno_gpu,
+ bool gx_off)
{
struct msm_gpu *gpu = &adreno_gpu->base;
@@ -889,9 +885,11 @@ static void a6xx_bus_clear_pending_transactions(struct adreno_gpu *adreno_gpu)
return;
}
- /* Halt the gx side of GBIF */
- gpu_write(gpu, REG_A6XX_RBBM_GBIF_HALT, 1);
- spin_until(gpu_read(gpu, REG_A6XX_RBBM_GBIF_HALT_ACK) & 1);
+ if (gx_off) {
+ /* Halt the gx side of GBIF */
+ gpu_write(gpu, REG_A6XX_RBBM_GBIF_HALT, 1);
+ spin_until(gpu_read(gpu, REG_A6XX_RBBM_GBIF_HALT_ACK) & 1);
+ }
/* Halt new client requests on GBIF */
gpu_write(gpu, REG_A6XX_GBIF_HALT, GBIF_CLIENT_HALT_MASK);
@@ -929,7 +927,7 @@ static void a6xx_gmu_force_off(struct a6xx_gmu *gmu)
/* Halt the gmu cm3 core */
gmu_write(gmu, REG_A6XX_GMU_CM3_SYSRESET, 1);
- a6xx_bus_clear_pending_transactions(adreno_gpu);
+ a6xx_bus_clear_pending_transactions(adreno_gpu, true);
/* Reset GPU core blocks */
gpu_write(gpu, REG_A6XX_RBBM_SW_RESET_CMD, 1);
@@ -971,7 +969,7 @@ int a6xx_gmu_resume(struct a6xx_gpu *a6xx_gpu)
int status, ret;
if (WARN(!gmu->initialized, "The GMU is not set up yet\n"))
- return 0;
+ return -EINVAL;
gmu->hung = false;
@@ -1083,7 +1081,7 @@ static void a6xx_gmu_shutdown(struct a6xx_gmu *gmu)
return;
}
- a6xx_bus_clear_pending_transactions(adreno_gpu);
+ a6xx_bus_clear_pending_transactions(adreno_gpu, a6xx_gpu->hung);
/* tell the GMU we want to slumber */
ret = a6xx_gmu_notify_slumber(gmu);
@@ -1213,19 +1211,17 @@ static int a6xx_gmu_memory_alloc(struct a6xx_gmu *gmu, struct a6xx_gmu_bo *bo,
static int a6xx_gmu_memory_probe(struct a6xx_gmu *gmu)
{
- struct iommu_domain *domain;
struct msm_mmu *mmu;
- domain = iommu_domain_alloc(&platform_bus_type);
- if (!domain)
+ mmu = msm_iommu_new(gmu->dev, 0);
+ if (!mmu)
return -ENODEV;
+ if (IS_ERR(mmu))
+ return PTR_ERR(mmu);
- mmu = msm_iommu_new(gmu->dev, domain);
gmu->aspace = msm_gem_address_space_create(mmu, "gmu", 0x0, 0x80000000);
- if (IS_ERR(gmu->aspace)) {
- iommu_domain_free(domain);
+ if (IS_ERR(gmu->aspace))
return PTR_ERR(gmu->aspace);
- }
return 0;
}
@@ -1481,6 +1477,12 @@ void a6xx_gmu_remove(struct a6xx_gpu *a6xx_gpu)
pm_runtime_force_suspend(gmu->dev);
+ /*
+ * Since cxpd is a virt device, the devlink with gmu-dev will be removed
+ * automatically when we do detach
+ */
+ dev_pm_domain_detach(gmu->cxpd, false);
+
if (!IS_ERR_OR_NULL(gmu->gxpd)) {
pm_runtime_disable(gmu->gxpd);
dev_pm_domain_detach(gmu->gxpd, false);
@@ -1503,6 +1505,17 @@ void a6xx_gmu_remove(struct a6xx_gpu *a6xx_gpu)
gmu->initialized = false;
}
+static int cxpd_notifier_cb(struct notifier_block *nb,
+ unsigned long action, void *data)
+{
+ struct a6xx_gmu *gmu = container_of(nb, struct a6xx_gmu, pd_nb);
+
+ if (action == GENPD_NOTIFY_OFF)
+ complete_all(&gmu->pd_gate);
+
+ return 0;
+}
+
int a6xx_gmu_init(struct a6xx_gpu *a6xx_gpu, struct device_node *node)
{
struct adreno_gpu *adreno_gpu = &a6xx_gpu->base;
@@ -1607,8 +1620,10 @@ int a6xx_gmu_init(struct a6xx_gpu *a6xx_gpu, struct device_node *node)
if (adreno_is_a650_family(adreno_gpu)) {
gmu->rscc = a6xx_gmu_get_mmio(pdev, "rscc");
- if (IS_ERR(gmu->rscc))
+ if (IS_ERR(gmu->rscc)) {
+ ret = -ENODEV;
goto err_mmio;
+ }
} else {
gmu->rscc = gmu->mmio + 0x23000;
}
@@ -1617,8 +1632,26 @@ int a6xx_gmu_init(struct a6xx_gpu *a6xx_gpu, struct device_node *node)
gmu->hfi_irq = a6xx_gmu_get_irq(gmu, pdev, "hfi", a6xx_hfi_irq);
gmu->gmu_irq = a6xx_gmu_get_irq(gmu, pdev, "gmu", a6xx_gmu_irq);
- if (gmu->hfi_irq < 0 || gmu->gmu_irq < 0)
+ if (gmu->hfi_irq < 0 || gmu->gmu_irq < 0) {
+ ret = -ENODEV;
goto err_mmio;
+ }
+
+ gmu->cxpd = dev_pm_domain_attach_by_name(gmu->dev, "cx");
+ if (IS_ERR(gmu->cxpd)) {
+ ret = PTR_ERR(gmu->cxpd);
+ goto err_mmio;
+ }
+
+ if (!device_link_add(gmu->dev, gmu->cxpd,
+ DL_FLAG_PM_RUNTIME)) {
+ ret = -ENODEV;
+ goto detach_cxpd;
+ }
+
+ init_completion(&gmu->pd_gate);
+ complete_all(&gmu->pd_gate);
+ gmu->pd_nb.notifier_call = cxpd_notifier_cb;
/*
* Get a link to the GX power domain to reset the GPU in case of GMU
@@ -1632,10 +1665,16 @@ int a6xx_gmu_init(struct a6xx_gpu *a6xx_gpu, struct device_node *node)
/* Set up the HFI queues */
a6xx_hfi_init(gmu);
+ /* Initialize RPMh */
+ a6xx_gmu_rpmh_init(gmu);
+
gmu->initialized = true;
return 0;
+detach_cxpd:
+ dev_pm_domain_detach(gmu->cxpd, false);
+
err_mmio:
iounmap(gmu->mmio);
if (platform_get_resource_byname(pdev, IORESOURCE_MEM, "rscc"))
@@ -1643,8 +1682,6 @@ err_mmio:
free_irq(gmu->gmu_irq, gmu);
free_irq(gmu->hfi_irq, gmu);
- ret = -ENODEV;
-
err_memory:
a6xx_gmu_memory_free(gmu);
err_put_device:
diff --git a/drivers/gpu/drm/msm/adreno/a6xx_gmu.h b/drivers/gpu/drm/msm/adreno/a6xx_gmu.h
index e034935b3986..0bc3eb443fec 100644
--- a/drivers/gpu/drm/msm/adreno/a6xx_gmu.h
+++ b/drivers/gpu/drm/msm/adreno/a6xx_gmu.h
@@ -4,8 +4,10 @@
#ifndef _A6XX_GMU_H_
#define _A6XX_GMU_H_
+#include <linux/completion.h>
#include <linux/iopoll.h>
#include <linux/interrupt.h>
+#include <linux/notifier.h>
#include "msm_drv.h"
#include "a6xx_hfi.h"
@@ -56,6 +58,7 @@ struct a6xx_gmu {
int gmu_irq;
struct device *gxpd;
+ struct device *cxpd;
int idle_level;
@@ -89,6 +92,10 @@ struct a6xx_gmu {
bool initialized;
bool hung;
bool legacy; /* a618 or a630 */
+
+ /* For power domain callback */
+ struct notifier_block pd_nb;
+ struct completion pd_gate;
};
static inline u32 gmu_read(struct a6xx_gmu *gmu, u32 offset)
diff --git a/drivers/gpu/drm/msm/adreno/a6xx_gmu.xml.h b/drivers/gpu/drm/msm/adreno/a6xx_gmu.xml.h
index 4a3230978c0e..9ab15d91aced 100644
--- a/drivers/gpu/drm/msm/adreno/a6xx_gmu.xml.h
+++ b/drivers/gpu/drm/msm/adreno/a6xx_gmu.xml.h
@@ -8,21 +8,21 @@ http://github.com/freedreno/envytools/
git clone https://github.com/freedreno/envytools.git
The rules-ng-ng source files this header was generated from are:
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno.xml ( 594 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/freedreno_copyright.xml ( 1572 bytes, from 2020-12-31 19:26:32)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a2xx.xml ( 90810 bytes, from 2021-06-21 15:24:24)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/adreno_common.xml ( 14609 bytes, from 2021-11-24 23:05:10)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/adreno_pm4.xml ( 69086 bytes, from 2022-03-03 16:41:33)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a3xx.xml ( 84231 bytes, from 2021-11-24 23:05:10)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a4xx.xml ( 113358 bytes, from 2022-01-31 23:06:21)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a5xx.xml ( 149512 bytes, from 2022-01-31 23:06:21)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a6xx.xml ( 184954 bytes, from 2022-03-03 16:41:33)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a6xx_gmu.xml ( 11331 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/ocmem.xml ( 1773 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/adreno_control_regs.xml ( 6038 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/adreno_pipe_regs.xml ( 2924 bytes, from 2021-07-22 15:21:56)
-
-Copyright (C) 2013-2021 by the following authors:
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno.xml ( 594 bytes, from 2023-03-10 18:32:52)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/freedreno_copyright.xml ( 1572 bytes, from 2022-07-23 20:21:46)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a2xx.xml ( 91929 bytes, from 2023-02-28 23:52:27)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/adreno_common.xml ( 15434 bytes, from 2023-03-10 18:32:53)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/adreno_pm4.xml ( 74995 bytes, from 2023-03-20 18:06:23)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a3xx.xml ( 84231 bytes, from 2022-08-02 16:38:43)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a4xx.xml ( 113474 bytes, from 2022-08-02 16:38:43)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a5xx.xml ( 149590 bytes, from 2023-02-14 19:37:12)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a6xx.xml ( 198949 bytes, from 2023-03-20 18:06:23)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a6xx_gmu.xml ( 11404 bytes, from 2023-03-10 18:32:53)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/ocmem.xml ( 1773 bytes, from 2022-08-02 16:38:43)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/adreno_control_regs.xml ( 9055 bytes, from 2023-03-10 18:32:52)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/adreno_pipe_regs.xml ( 2976 bytes, from 2023-03-10 18:32:52)
+
+Copyright (C) 2013-2023 by the following authors:
- Rob Clark <robdclark@gmail.com> (robclark)
- Ilia Mirkin <imirkin@alum.mit.edu> (imirkin)
diff --git a/drivers/gpu/drm/msm/adreno/a6xx_gpu.c b/drivers/gpu/drm/msm/adreno/a6xx_gpu.c
index fdc578016e0b..9fb214f150dd 100644
--- a/drivers/gpu/drm/msm/adreno/a6xx_gpu.c
+++ b/drivers/gpu/drm/msm/adreno/a6xx_gpu.c
@@ -10,7 +10,7 @@
#include <linux/bitfield.h>
#include <linux/devfreq.h>
-#include <linux/reset.h>
+#include <linux/pm_domain.h>
#include <linux/soc/qcom/llcc-qcom.h>
#define GPU_PAS_ID 13
@@ -187,7 +187,7 @@ static void a6xx_submit(struct msm_gpu *gpu, struct msm_gem_submit *submit)
* GPU registers so we need to add 0x1a800 to the register value on A630
* to get the right value from PM4.
*/
- get_stats_counter(ring, REG_A6XX_CP_ALWAYS_ON_COUNTER_LO,
+ get_stats_counter(ring, REG_A6XX_CP_ALWAYS_ON_COUNTER,
rbmemptr_stats(ring, index, alwayson_start));
/* Invalidate CCU depth and color */
@@ -228,7 +228,7 @@ static void a6xx_submit(struct msm_gpu *gpu, struct msm_gem_submit *submit)
get_stats_counter(ring, REG_A6XX_RBBM_PERFCTR_CP(0),
rbmemptr_stats(ring, index, cpcycles_end));
- get_stats_counter(ring, REG_A6XX_CP_ALWAYS_ON_COUNTER_LO,
+ get_stats_counter(ring, REG_A6XX_CP_ALWAYS_ON_COUNTER,
rbmemptr_stats(ring, index, alwayson_end));
/* Write the fence to the scratch register */
@@ -247,8 +247,7 @@ static void a6xx_submit(struct msm_gpu *gpu, struct msm_gem_submit *submit)
OUT_RING(ring, submit->seqno);
trace_msm_gpu_submit_flush(submit,
- gpu_read64(gpu, REG_A6XX_CP_ALWAYS_ON_COUNTER_LO,
- REG_A6XX_CP_ALWAYS_ON_COUNTER_HI));
+ gpu_read64(gpu, REG_A6XX_CP_ALWAYS_ON_COUNTER));
a6xx_flush(gpu, ring);
}
@@ -918,7 +917,7 @@ out:
return ret;
}
-static int a6xx_ucode_init(struct msm_gpu *gpu)
+static int a6xx_ucode_load(struct msm_gpu *gpu)
{
struct adreno_gpu *adreno_gpu = to_adreno_gpu(gpu);
struct a6xx_gpu *a6xx_gpu = to_a6xx_gpu(adreno_gpu);
@@ -947,8 +946,23 @@ static int a6xx_ucode_init(struct msm_gpu *gpu)
}
}
- gpu_write64(gpu, REG_A6XX_CP_SQE_INSTR_BASE,
- REG_A6XX_CP_SQE_INSTR_BASE+1, a6xx_gpu->sqe_iova);
+ /*
+ * Expanded APRIV and targets that support WHERE_AM_I both need a
+ * privileged buffer to store the RPTR shadow
+ */
+ if ((adreno_gpu->base.hw_apriv || a6xx_gpu->has_whereami) &&
+ !a6xx_gpu->shadow_bo) {
+ a6xx_gpu->shadow = msm_gem_kernel_new(gpu->dev,
+ sizeof(u32) * gpu->nr_rings,
+ MSM_BO_WC | MSM_BO_MAP_PRIV,
+ gpu->aspace, &a6xx_gpu->shadow_bo,
+ &a6xx_gpu->shadow_iova);
+
+ if (IS_ERR(a6xx_gpu->shadow))
+ return PTR_ERR(a6xx_gpu->shadow);
+
+ msm_gem_object_set_name(a6xx_gpu->shadow_bo, "shadow");
+ }
return 0;
}
@@ -999,8 +1013,7 @@ static int hw_init(struct msm_gpu *gpu)
* memory rendering at this point in time and we don't want to block off
* part of the virtual memory space.
*/
- gpu_write64(gpu, REG_A6XX_RBBM_SECVID_TSB_TRUSTED_BASE_LO,
- REG_A6XX_RBBM_SECVID_TSB_TRUSTED_BASE_HI, 0x00000000);
+ gpu_write64(gpu, REG_A6XX_RBBM_SECVID_TSB_TRUSTED_BASE, 0x00000000);
gpu_write(gpu, REG_A6XX_RBBM_SECVID_TSB_TRUSTED_SIZE, 0x00000000);
/* Turn on 64 bit addressing for all blocks */
@@ -1040,20 +1053,15 @@ static int hw_init(struct msm_gpu *gpu)
gpu_write(gpu, REG_A6XX_RBBM_PERFCTR_GPU_BUSY_MASKED, 0xffffffff);
/* Disable L2 bypass in the UCHE */
- gpu_write(gpu, REG_A6XX_UCHE_WRITE_RANGE_MAX_LO, 0xffffffc0);
- gpu_write(gpu, REG_A6XX_UCHE_WRITE_RANGE_MAX_HI, 0x0001ffff);
- gpu_write(gpu, REG_A6XX_UCHE_TRAP_BASE_LO, 0xfffff000);
- gpu_write(gpu, REG_A6XX_UCHE_TRAP_BASE_HI, 0x0001ffff);
- gpu_write(gpu, REG_A6XX_UCHE_WRITE_THRU_BASE_LO, 0xfffff000);
- gpu_write(gpu, REG_A6XX_UCHE_WRITE_THRU_BASE_HI, 0x0001ffff);
+ gpu_write64(gpu, REG_A6XX_UCHE_WRITE_RANGE_MAX, 0x0001ffffffffffc0llu);
+ gpu_write64(gpu, REG_A6XX_UCHE_TRAP_BASE, 0x0001fffffffff000llu);
+ gpu_write64(gpu, REG_A6XX_UCHE_WRITE_THRU_BASE, 0x0001fffffffff000llu);
if (!adreno_is_a650_family(adreno_gpu)) {
/* Set the GMEM VA range [0x100000:0x100000 + gpu->gmem - 1] */
- gpu_write64(gpu, REG_A6XX_UCHE_GMEM_RANGE_MIN_LO,
- REG_A6XX_UCHE_GMEM_RANGE_MIN_HI, 0x00100000);
+ gpu_write64(gpu, REG_A6XX_UCHE_GMEM_RANGE_MIN, 0x00100000);
- gpu_write64(gpu, REG_A6XX_UCHE_GMEM_RANGE_MAX_LO,
- REG_A6XX_UCHE_GMEM_RANGE_MAX_HI,
+ gpu_write64(gpu, REG_A6XX_UCHE_GMEM_RANGE_MAX,
0x00100000 + adreno_gpu->gmem - 1);
}
@@ -1140,13 +1148,10 @@ static int hw_init(struct msm_gpu *gpu)
if (ret)
goto out;
- ret = a6xx_ucode_init(gpu);
- if (ret)
- goto out;
+ gpu_write64(gpu, REG_A6XX_CP_SQE_INSTR_BASE, a6xx_gpu->sqe_iova);
/* Set the ringbuffer address */
- gpu_write64(gpu, REG_A6XX_CP_RB_BASE, REG_A6XX_CP_RB_BASE_HI,
- gpu->rb[0]->iova);
+ gpu_write64(gpu, REG_A6XX_CP_RB_BASE, gpu->rb[0]->iova);
/* Targets that support extended APRIV can use the RPTR shadow from
* hardware but all the other ones need to disable the feature. Targets
@@ -1158,27 +1163,9 @@ static int hw_init(struct msm_gpu *gpu)
gpu_write(gpu, REG_A6XX_CP_RB_CNTL,
MSM_GPU_RB_CNTL_DEFAULT | AXXX_CP_RB_CNTL_NO_UPDATE);
- /*
- * Expanded APRIV and targets that support WHERE_AM_I both need a
- * privileged buffer to store the RPTR shadow
- */
-
- if (adreno_gpu->base.hw_apriv || a6xx_gpu->has_whereami) {
- if (!a6xx_gpu->shadow_bo) {
- a6xx_gpu->shadow = msm_gem_kernel_new(gpu->dev,
- sizeof(u32) * gpu->nr_rings,
- MSM_BO_WC | MSM_BO_MAP_PRIV,
- gpu->aspace, &a6xx_gpu->shadow_bo,
- &a6xx_gpu->shadow_iova);
-
- if (IS_ERR(a6xx_gpu->shadow))
- return PTR_ERR(a6xx_gpu->shadow);
-
- msm_gem_object_set_name(a6xx_gpu->shadow_bo, "shadow");
- }
-
- gpu_write64(gpu, REG_A6XX_CP_RB_RPTR_ADDR_LO,
- REG_A6XX_CP_RB_RPTR_ADDR_HI,
+ /* Configure the RPTR shadow if needed: */
+ if (a6xx_gpu->shadow_bo) {
+ gpu_write64(gpu, REG_A6XX_CP_RB_RPTR_ADDR,
shadowptr(a6xx_gpu, gpu->rb[0]));
}
@@ -1266,6 +1253,7 @@ static void a6xx_recover(struct msm_gpu *gpu)
{
struct adreno_gpu *adreno_gpu = to_adreno_gpu(gpu);
struct a6xx_gpu *a6xx_gpu = to_a6xx_gpu(adreno_gpu);
+ struct a6xx_gmu *gmu = &a6xx_gpu->gmu;
int i, active_submits;
adreno_dump_info(gpu);
@@ -1277,6 +1265,12 @@ static void a6xx_recover(struct msm_gpu *gpu)
if (hang_debug)
a6xx_dump(gpu);
+ /*
+ * To handle recovery specific sequences during the rpm suspend we are
+ * about to trigger
+ */
+ a6xx_gpu->hung = true;
+
/* Halt SQE first */
gpu_write(gpu, REG_A6XX_CP_SQE_CNTL, 3);
@@ -1298,6 +1292,10 @@ static void a6xx_recover(struct msm_gpu *gpu)
*/
gpu->active_submits = 0;
+ reinit_completion(&gmu->pd_gate);
+ dev_pm_genpd_add_notifier(gmu->cxpd, &gmu->pd_nb);
+ dev_pm_genpd_synced_poweroff(gmu->cxpd);
+
/* Drop the rpm refcount from active submits */
if (active_submits)
pm_runtime_put(&gpu->pdev->dev);
@@ -1305,8 +1303,10 @@ static void a6xx_recover(struct msm_gpu *gpu)
/* And the final one from recover worker */
pm_runtime_put_sync(&gpu->pdev->dev);
- /* Call into gpucc driver to poll for cx gdsc collapse */
- reset_control_reset(gpu->cx_collapse);
+ if (!wait_for_completion_timeout(&gmu->pd_gate, msecs_to_jiffies(1000)))
+ DRM_DEV_ERROR(&gpu->pdev->dev, "cx gdsc didn't collapse\n");
+
+ dev_pm_genpd_remove_notifier(gmu->cxpd);
pm_runtime_use_autosuspend(&gpu->pdev->dev);
@@ -1319,6 +1319,7 @@ static void a6xx_recover(struct msm_gpu *gpu)
mutex_unlock(&gpu->active_lock);
msm_gpu_hw_init(gpu);
+ a6xx_gpu->hung = false;
}
static const char *a6xx_uche_fault_block(struct msm_gpu *gpu, u32 mid)
@@ -1361,73 +1362,23 @@ static const char *a6xx_fault_block(struct msm_gpu *gpu, u32 id)
return a6xx_uche_fault_block(gpu, id);
}
-#define ARM_SMMU_FSR_TF BIT(1)
-#define ARM_SMMU_FSR_PF BIT(3)
-#define ARM_SMMU_FSR_EF BIT(4)
-
static int a6xx_fault_handler(void *arg, unsigned long iova, int flags, void *data)
{
struct msm_gpu *gpu = arg;
struct adreno_smmu_fault_info *info = data;
- const char *type = "UNKNOWN";
- const char *block;
- bool do_devcoredump = info && !READ_ONCE(gpu->crashstate);
-
- /*
- * If we aren't going to be resuming later from fault_worker, then do
- * it now.
- */
- if (!do_devcoredump) {
- gpu->aspace->mmu->funcs->resume_translation(gpu->aspace->mmu);
- }
+ const char *block = "unknown";
- /*
- * Print a default message if we couldn't get the data from the
- * adreno-smmu-priv
- */
- if (!info) {
- pr_warn_ratelimited("*** gpu fault: iova=%.16lx flags=%d (%u,%u,%u,%u)\n",
- iova, flags,
+ u32 scratch[] = {
gpu_read(gpu, REG_A6XX_CP_SCRATCH_REG(4)),
gpu_read(gpu, REG_A6XX_CP_SCRATCH_REG(5)),
gpu_read(gpu, REG_A6XX_CP_SCRATCH_REG(6)),
- gpu_read(gpu, REG_A6XX_CP_SCRATCH_REG(7)));
-
- return 0;
- }
-
- if (info->fsr & ARM_SMMU_FSR_TF)
- type = "TRANSLATION";
- else if (info->fsr & ARM_SMMU_FSR_PF)
- type = "PERMISSION";
- else if (info->fsr & ARM_SMMU_FSR_EF)
- type = "EXTERNAL";
-
- block = a6xx_fault_block(gpu, info->fsynr1 & 0xff);
-
- pr_warn_ratelimited("*** gpu fault: ttbr0=%.16llx iova=%.16lx dir=%s type=%s source=%s (%u,%u,%u,%u)\n",
- info->ttbr0, iova,
- flags & IOMMU_FAULT_WRITE ? "WRITE" : "READ",
- type, block,
- gpu_read(gpu, REG_A6XX_CP_SCRATCH_REG(4)),
- gpu_read(gpu, REG_A6XX_CP_SCRATCH_REG(5)),
- gpu_read(gpu, REG_A6XX_CP_SCRATCH_REG(6)),
- gpu_read(gpu, REG_A6XX_CP_SCRATCH_REG(7)));
-
- if (do_devcoredump) {
- /* Turn off the hangcheck timer to keep it from bothering us */
- del_timer(&gpu->hangcheck_timer);
-
- gpu->fault_info.ttbr0 = info->ttbr0;
- gpu->fault_info.iova = iova;
- gpu->fault_info.flags = flags;
- gpu->fault_info.type = type;
- gpu->fault_info.block = block;
+ gpu_read(gpu, REG_A6XX_CP_SCRATCH_REG(7)),
+ };
- kthread_queue_work(gpu->worker, &gpu->fault_work);
- }
+ if (info)
+ block = a6xx_fault_block(gpu, info->fsynr1 & 0xff);
- return 0;
+ return adreno_fault_handler(gpu, iova, flags, info, block, scratch);
}
static void a6xx_cp_hw_err_irq(struct msm_gpu *gpu)
@@ -1499,9 +1450,9 @@ static void a6xx_fault_detect_irq(struct msm_gpu *gpu)
gpu_read(gpu, REG_A6XX_RBBM_STATUS),
gpu_read(gpu, REG_A6XX_CP_RB_RPTR),
gpu_read(gpu, REG_A6XX_CP_RB_WPTR),
- gpu_read64(gpu, REG_A6XX_CP_IB1_BASE, REG_A6XX_CP_IB1_BASE_HI),
+ gpu_read64(gpu, REG_A6XX_CP_IB1_BASE),
gpu_read(gpu, REG_A6XX_CP_IB1_REM_SIZE),
- gpu_read64(gpu, REG_A6XX_CP_IB2_BASE, REG_A6XX_CP_IB2_BASE_HI),
+ gpu_read64(gpu, REG_A6XX_CP_IB2_BASE),
gpu_read(gpu, REG_A6XX_CP_IB2_REM_SIZE));
/* Turn off the hangcheck timer to keep it from bothering us */
@@ -1712,8 +1663,7 @@ static int a6xx_get_timestamp(struct msm_gpu *gpu, uint64_t *value)
/* Force the GPU power on so we can read this register */
a6xx_gmu_set_oob(&a6xx_gpu->gmu, GMU_OOB_PERFCOUNTER_SET);
- *value = gpu_read64(gpu, REG_A6XX_CP_ALWAYS_ON_COUNTER_LO,
- REG_A6XX_CP_ALWAYS_ON_COUNTER_HI);
+ *value = gpu_read64(gpu, REG_A6XX_CP_ALWAYS_ON_COUNTER);
a6xx_gmu_clear_oob(&a6xx_gpu->gmu, GMU_OOB_PERFCOUNTER_SET);
@@ -1747,7 +1697,9 @@ static void a6xx_destroy(struct msm_gpu *gpu)
a6xx_llc_slices_destroy(a6xx_gpu);
+ mutex_lock(&a6xx_gpu->gmu.lock);
a6xx_gmu_remove(a6xx_gpu);
+ mutex_unlock(&a6xx_gpu->gmu.lock);
adreno_gpu_cleanup(adreno_gpu);
@@ -1786,43 +1738,16 @@ a6xx_create_address_space(struct msm_gpu *gpu, struct platform_device *pdev)
{
struct adreno_gpu *adreno_gpu = to_adreno_gpu(gpu);
struct a6xx_gpu *a6xx_gpu = to_a6xx_gpu(adreno_gpu);
- struct iommu_domain *iommu;
- struct msm_mmu *mmu;
- struct msm_gem_address_space *aspace;
- u64 start, size;
-
- iommu = iommu_domain_alloc(&platform_bus_type);
- if (!iommu)
- return NULL;
+ unsigned long quirks = 0;
/*
* This allows GPU to set the bus attributes required to use system
* cache on behalf of the iommu page table walker.
*/
if (!IS_ERR_OR_NULL(a6xx_gpu->htw_llc_slice))
- adreno_set_llc_attributes(iommu);
-
- mmu = msm_iommu_new(&pdev->dev, iommu);
- if (IS_ERR(mmu)) {
- iommu_domain_free(iommu);
- return ERR_CAST(mmu);
- }
-
- /*
- * Use the aperture start or SZ_16M, whichever is greater. This will
- * ensure that we align with the allocated pagetable range while still
- * allowing room in the lower 32 bits for GMEM and whatnot
- */
- start = max_t(u64, SZ_16M, iommu->geometry.aperture_start);
- size = iommu->geometry.aperture_end - start + 1;
+ quirks |= IO_PGTABLE_QUIRK_ARM_OUTER_WBWA;
- aspace = msm_gem_address_space_create(mmu, "gpu",
- start & GENMASK_ULL(48, 0), size);
-
- if (IS_ERR(aspace) && !IS_ERR(mmu))
- mmu->funcs->destroy(mmu);
-
- return aspace;
+ return adreno_iommu_create_address_space(gpu, pdev, quirks);
}
static struct msm_gem_address_space *
@@ -1851,6 +1776,39 @@ static uint32_t a6xx_get_rptr(struct msm_gpu *gpu, struct msm_ringbuffer *ring)
return ring->memptrs->rptr = gpu_read(gpu, REG_A6XX_CP_RB_RPTR);
}
+static bool a6xx_progress(struct msm_gpu *gpu, struct msm_ringbuffer *ring)
+{
+ struct msm_cp_state cp_state = {
+ .ib1_base = gpu_read64(gpu, REG_A6XX_CP_IB1_BASE),
+ .ib2_base = gpu_read64(gpu, REG_A6XX_CP_IB2_BASE),
+ .ib1_rem = gpu_read(gpu, REG_A6XX_CP_IB1_REM_SIZE),
+ .ib2_rem = gpu_read(gpu, REG_A6XX_CP_IB2_REM_SIZE),
+ };
+ bool progress;
+
+ /*
+ * Adjust the remaining data to account for what has already been
+ * fetched from memory, but not yet consumed by the SQE.
+ *
+ * This is not *technically* correct, the amount buffered could
+ * exceed the IB size due to hw prefetching ahead, but:
+ *
+ * (1) We aren't trying to find the exact position, just whether
+ * progress has been made
+ * (2) The CP_REG_TO_MEM at the end of a submit should be enough
+ * to prevent prefetching into an unrelated submit. (And
+ * either way, at some point the ROQ will be full.)
+ */
+ cp_state.ib1_rem += gpu_read(gpu, REG_A6XX_CP_ROQ_AVAIL_IB1) >> 16;
+ cp_state.ib2_rem += gpu_read(gpu, REG_A6XX_CP_ROQ_AVAIL_IB2) >> 16;
+
+ progress = !!memcmp(&cp_state, &ring->last_cp_state, sizeof(cp_state));
+
+ ring->last_cp_state = cp_state;
+
+ return progress;
+}
+
static u32 a618_get_speed_bin(u32 fuse)
{
if (fuse == 0)
@@ -1879,6 +1837,31 @@ static u32 a619_get_speed_bin(u32 fuse)
return UINT_MAX;
}
+static u32 a640_get_speed_bin(u32 fuse)
+{
+ if (fuse == 0)
+ return 0;
+ else if (fuse == 1)
+ return 1;
+
+ return UINT_MAX;
+}
+
+static u32 a650_get_speed_bin(u32 fuse)
+{
+ if (fuse == 0)
+ return 0;
+ else if (fuse == 1)
+ return 1;
+ /* Yep, 2 and 3 are swapped! :/ */
+ else if (fuse == 2)
+ return 3;
+ else if (fuse == 3)
+ return 2;
+
+ return UINT_MAX;
+}
+
static u32 adreno_7c3_get_speed_bin(u32 fuse)
{
if (fuse == 0)
@@ -1904,9 +1887,15 @@ static u32 fuse_to_supp_hw(struct device *dev, struct adreno_rev rev, u32 fuse)
if (adreno_cmp_rev(ADRENO_REV(6, 3, 5, ANY_ID), rev))
val = adreno_7c3_get_speed_bin(fuse);
+ if (adreno_cmp_rev(ADRENO_REV(6, 4, 0, ANY_ID), rev))
+ val = a640_get_speed_bin(fuse);
+
+ if (adreno_cmp_rev(ADRENO_REV(6, 5, 0, ANY_ID), rev))
+ val = a650_get_speed_bin(fuse);
+
if (val == UINT_MAX) {
DRM_DEV_ERROR(dev,
- "missing support for speed-bin: %u. Some OPPs may not be supported by hardware",
+ "missing support for speed-bin: %u. Some OPPs may not be supported by hardware\n",
fuse);
return UINT_MAX;
}
@@ -1916,7 +1905,7 @@ static u32 fuse_to_supp_hw(struct device *dev, struct adreno_rev rev, u32 fuse)
static int a6xx_set_supported_hw(struct device *dev, struct adreno_rev rev)
{
- u32 supp_hw = UINT_MAX;
+ u32 supp_hw;
u32 speedbin;
int ret;
@@ -1928,15 +1917,13 @@ static int a6xx_set_supported_hw(struct device *dev, struct adreno_rev rev)
if (ret == -ENOENT) {
return 0;
} else if (ret) {
- DRM_DEV_ERROR(dev,
- "failed to read speed-bin (%d). Some OPPs may not be supported by hardware",
- ret);
- goto done;
+ dev_err_probe(dev, ret,
+ "failed to read speed-bin. Some OPPs may not be supported by hardware\n");
+ return ret;
}
supp_hw = fuse_to_supp_hw(dev, rev, speedbin);
-done:
ret = devm_pm_opp_set_supported_hw(dev, &supp_hw, 1);
if (ret)
return ret;
@@ -1949,6 +1936,7 @@ static const struct adreno_gpu_funcs funcs = {
.get_param = adreno_get_param,
.set_param = adreno_set_param,
.hw_init = a6xx_hw_init,
+ .ucode_load = a6xx_ucode_load,
.pm_suspend = a6xx_pm_suspend,
.pm_resume = a6xx_pm_resume,
.recover = a6xx_recover,
@@ -1969,6 +1957,7 @@ static const struct adreno_gpu_funcs funcs = {
.create_address_space = a6xx_create_address_space,
.create_private_address_space = a6xx_create_private_address_space,
.get_rptr = a6xx_get_rptr,
+ .progress = a6xx_progress,
},
.get_timestamp = a6xx_get_timestamp,
};
@@ -2005,13 +1994,6 @@ struct msm_gpu *a6xx_gpu_init(struct drm_device *dev)
adreno_cmp_rev(ADRENO_REV(6, 3, 5, ANY_ID), info->rev)))
adreno_gpu->base.hw_apriv = true;
- /*
- * For now only clamp to idle freq for devices where this is known not
- * to cause power supply issues:
- */
- if (info && (info->revn == 618))
- gpu->clamp_to_idle = true;
-
a6xx_llc_slices_init(pdev, a6xx_gpu);
ret = a6xx_set_supported_hw(&pdev->dev, config->rev);
@@ -2026,6 +2008,13 @@ struct msm_gpu *a6xx_gpu_init(struct drm_device *dev)
return ERR_PTR(ret);
}
+ /*
+ * For now only clamp to idle freq for devices where this is known not
+ * to cause power supply issues:
+ */
+ if (adreno_is_a618(adreno_gpu) || adreno_is_7c3(adreno_gpu))
+ priv->gpu_clamp_to_idle = true;
+
/* Check if there is a GMU phandle and set it up */
node = of_parse_phandle(pdev->dev.of_node, "qcom,gmu", 0);
diff --git a/drivers/gpu/drm/msm/adreno/a6xx_gpu.h b/drivers/gpu/drm/msm/adreno/a6xx_gpu.h
index ab853f61db63..eea2e60ce3b7 100644
--- a/drivers/gpu/drm/msm/adreno/a6xx_gpu.h
+++ b/drivers/gpu/drm/msm/adreno/a6xx_gpu.h
@@ -32,6 +32,7 @@ struct a6xx_gpu {
void *llc_slice;
void *htw_llc_slice;
bool have_mmu500;
+ bool hung;
};
#define to_a6xx_gpu(x) container_of(x, struct a6xx_gpu, base)
diff --git a/drivers/gpu/drm/msm/adreno/a6xx_gpu_state.c b/drivers/gpu/drm/msm/adreno/a6xx_gpu_state.c
index a5c3d1ed255a..30ecdff363e7 100644
--- a/drivers/gpu/drm/msm/adreno/a6xx_gpu_state.c
+++ b/drivers/gpu/drm/msm/adreno/a6xx_gpu_state.c
@@ -147,8 +147,7 @@ static int a6xx_crashdumper_run(struct msm_gpu *gpu,
/* Make sure all pending memory writes are posted */
wmb();
- gpu_write64(gpu, REG_A6XX_CP_CRASH_SCRIPT_BASE_LO,
- REG_A6XX_CP_CRASH_SCRIPT_BASE_HI, dumper->iova);
+ gpu_write64(gpu, REG_A6XX_CP_CRASH_SCRIPT_BASE, dumper->iova);
gpu_write(gpu, REG_A6XX_CP_CRASH_DUMP_CNTL, 1);
@@ -386,6 +385,9 @@ static void a6xx_get_debugbus(struct msm_gpu *gpu,
nr_debugbus_blocks = ARRAY_SIZE(a6xx_debugbus_blocks) +
(a6xx_has_gbif(to_adreno_gpu(gpu)) ? 1 : 0);
+ if (adreno_is_a650_family(to_adreno_gpu(gpu)))
+ nr_debugbus_blocks += ARRAY_SIZE(a650_debugbus_blocks);
+
a6xx_state->debugbus = state_kcalloc(a6xx_state, nr_debugbus_blocks,
sizeof(*a6xx_state->debugbus));
@@ -412,6 +414,15 @@ static void a6xx_get_debugbus(struct msm_gpu *gpu,
a6xx_state->nr_debugbus += 1;
}
+
+
+ if (adreno_is_a650_family(to_adreno_gpu(gpu))) {
+ for (i = 0; i < ARRAY_SIZE(a650_debugbus_blocks); i++)
+ a6xx_get_debugbus_block(gpu,
+ a6xx_state,
+ &a650_debugbus_blocks[i],
+ &a6xx_state->debugbus[i]);
+ }
}
/* Dump the VBIF debugbus on applicable targets */
@@ -525,10 +536,21 @@ static void a6xx_get_cluster(struct msm_gpu *gpu,
struct a6xx_gpu_state_obj *obj,
struct a6xx_crashdumper *dumper)
{
+ struct adreno_gpu *adreno_gpu = to_adreno_gpu(gpu);
u64 *in = dumper->ptr;
u64 out = dumper->iova + A6XX_CD_DATA_OFFSET;
size_t datasize;
int i, regcount = 0;
+ u32 id = cluster->id;
+
+ /* Skip registers that are not present on older generation */
+ if (!adreno_is_a660_family(adreno_gpu) &&
+ cluster->registers == a660_fe_cluster)
+ return;
+
+ if (adreno_is_a650_family(adreno_gpu) &&
+ cluster->registers == a6xx_ps_cluster)
+ id = CLUSTER_VPC_PS;
/* Some clusters need a selector register to be programmed too */
if (cluster->sel_reg)
@@ -538,7 +560,7 @@ static void a6xx_get_cluster(struct msm_gpu *gpu,
int j;
in += CRASHDUMP_WRITE(in, REG_A6XX_CP_APERTURE_CNTL_CD,
- (cluster->id << 8) | (i << 4) | i);
+ (id << 8) | (i << 4) | i);
for (j = 0; j < cluster->count; j += 2) {
int count = RANGE(cluster->registers, j);
@@ -688,6 +710,11 @@ static void a6xx_get_crashdumper_registers(struct msm_gpu *gpu,
u64 out = dumper->iova + A6XX_CD_DATA_OFFSET;
int i, regcount = 0;
+ /* Skip unsupported registers on older generations */
+ if (!adreno_is_a660_family(to_adreno_gpu(gpu)) &&
+ (regs->registers == a660_registers))
+ return;
+
/* Some blocks might need to program a selector register first */
if (regs->val0)
in += CRASHDUMP_WRITE(in, regs->val0, regs->val1);
@@ -722,6 +749,11 @@ static void a6xx_get_ahb_gpu_registers(struct msm_gpu *gpu,
{
int i, regcount = 0, index = 0;
+ /* Skip unsupported registers on older generations */
+ if (!adreno_is_a660_family(to_adreno_gpu(gpu)) &&
+ (regs->registers == a660_registers))
+ return;
+
for (i = 0; i < regs->count; i += 2)
regcount += RANGE(regs->registers, i);
@@ -910,15 +942,24 @@ static void a6xx_get_registers(struct msm_gpu *gpu,
dumper);
}
+static u32 a6xx_get_cp_roq_size(struct msm_gpu *gpu)
+{
+ /* The value at [16:31] is in 4dword units. Convert it to dwords */
+ return gpu_read(gpu, REG_A6XX_CP_ROQ_THRESHOLDS_2) >> 14;
+}
+
/* Read a block of data from an indexed register pair */
static void a6xx_get_indexed_regs(struct msm_gpu *gpu,
struct a6xx_gpu_state *a6xx_state,
- const struct a6xx_indexed_registers *indexed,
+ struct a6xx_indexed_registers *indexed,
struct a6xx_gpu_state_obj *obj)
{
int i;
obj->handle = (const void *) indexed;
+ if (indexed->count_fn)
+ indexed->count = indexed->count_fn(gpu);
+
obj->data = state_kcalloc(a6xx_state, indexed->count, sizeof(u32));
if (!obj->data)
return;
@@ -947,6 +988,21 @@ static void a6xx_get_indexed_registers(struct msm_gpu *gpu,
a6xx_get_indexed_regs(gpu, a6xx_state, &a6xx_indexed_reglist[i],
&a6xx_state->indexed_regs[i]);
+ if (adreno_is_a650_family(to_adreno_gpu(gpu))) {
+ u32 val;
+
+ val = gpu_read(gpu, REG_A6XX_CP_CHICKEN_DBG);
+ gpu_write(gpu, REG_A6XX_CP_CHICKEN_DBG, val | 4);
+
+ /* Get the contents of the CP mempool */
+ a6xx_get_indexed_regs(gpu, a6xx_state, &a6xx_cp_mempool_indexed,
+ &a6xx_state->indexed_regs[i]);
+
+ gpu_write(gpu, REG_A6XX_CP_CHICKEN_DBG, val);
+ a6xx_state->nr_indexed_regs = count;
+ return;
+ }
+
/* Set the CP mempool size to 0 to stabilize it while dumping */
mempool_size = gpu_read(gpu, REG_A6XX_CP_MEM_POOL_SIZE);
gpu_write(gpu, REG_A6XX_CP_MEM_POOL_SIZE, 0);
diff --git a/drivers/gpu/drm/msm/adreno/a6xx_gpu_state.h b/drivers/gpu/drm/msm/adreno/a6xx_gpu_state.h
index 2fb58b7098e4..790f55e24533 100644
--- a/drivers/gpu/drm/msm/adreno/a6xx_gpu_state.h
+++ b/drivers/gpu/drm/msm/adreno/a6xx_gpu_state.h
@@ -36,16 +36,21 @@ static const u32 a6xx_fe_cluster[] = {
0xa00e, 0xa0ef, 0xa0f8, 0xa0f8,
};
+static const u32 a660_fe_cluster[] = {
+ 0x9807, 0x9807,
+};
+
static const u32 a6xx_pc_vs_cluster[] = {
0x9100, 0x9108, 0x9300, 0x9306, 0x9980, 0x9981, 0x9b00, 0x9b07,
};
-#define CLUSTER_FE 0
-#define CLUSTER_SP_VS 1
-#define CLUSTER_PC_VS 2
-#define CLUSTER_GRAS 3
-#define CLUSTER_SP_PS 4
-#define CLUSTER_PS 5
+#define CLUSTER_FE 0
+#define CLUSTER_SP_VS 1
+#define CLUSTER_PC_VS 2
+#define CLUSTER_GRAS 3
+#define CLUSTER_SP_PS 4
+#define CLUSTER_PS 5
+#define CLUSTER_VPC_PS 6
#define CLUSTER(_id, _reg, _sel_reg, _sel_val) \
{ .id = _id, .name = #_id,\
@@ -67,6 +72,7 @@ static const struct a6xx_cluster {
CLUSTER(CLUSTER_PS, a6xx_ps_cluster, 0, 0),
CLUSTER(CLUSTER_FE, a6xx_fe_cluster, 0, 0),
CLUSTER(CLUSTER_PC_VS, a6xx_pc_vs_cluster, 0, 0),
+ CLUSTER(CLUSTER_FE, a660_fe_cluster, 0, 0),
};
static const u32 a6xx_sp_vs_hlsq_cluster[] = {
@@ -105,7 +111,7 @@ static const u32 a6xx_sp_ps_hlsq_2d_cluster[] = {
static const u32 a6xx_sp_ps_sp_cluster[] = {
0xa980, 0xa9a8, 0xa9b0, 0xa9bc, 0xa9d0, 0xa9d3, 0xa9e0, 0xa9f3,
- 0xaa00, 0xaa00, 0xaa30, 0xaa31,
+ 0xaa00, 0xaa00, 0xaa30, 0xaa31, 0xaaf2, 0xaaf2,
};
static const u32 a6xx_sp_ps_sp_2d_cluster[] = {
@@ -229,6 +235,9 @@ static const struct a6xx_shader_block {
SHADER(A6XX_HLSQ_DATAPATH_META, 0x40),
SHADER(A6XX_HLSQ_FRONTEND_META, 0x40),
SHADER(A6XX_HLSQ_INDIRECT_META, 0x40),
+ SHADER(A6XX_SP_LB_6_DATA, 0x200),
+ SHADER(A6XX_SP_LB_7_DATA, 0x200),
+ SHADER(A6XX_HLSQ_INST_RAM_1, 0x200),
};
static const u32 a6xx_rb_rac_registers[] = {
@@ -251,7 +260,7 @@ static const u32 a6xx_registers[] = {
0x0540, 0x0555,
/* CP */
0x0800, 0x0808, 0x0810, 0x0813, 0x0820, 0x0821, 0x0823, 0x0824,
- 0x0826, 0x0827, 0x0830, 0x0833, 0x0840, 0x0843, 0x084f, 0x086f,
+ 0x0826, 0x0827, 0x0830, 0x0833, 0x0840, 0x0845, 0x084f, 0x086f,
0x0880, 0x088a, 0x08a0, 0x08ab, 0x08c0, 0x08c4, 0x08d0, 0x08dd,
0x08f0, 0x08f3, 0x0900, 0x0903, 0x0908, 0x0911, 0x0928, 0x093e,
0x0942, 0x094d, 0x0980, 0x0984, 0x098d, 0x0996, 0x0998, 0x099e,
@@ -274,6 +283,13 @@ static const u32 a6xx_registers[] = {
/* VFD */
0xa600, 0xa601, 0xa603, 0xa603, 0xa60a, 0xa60a, 0xa610, 0xa617,
0xa630, 0xa630,
+ /* HLSQ */
+ 0xd002, 0xd003,
+};
+
+static const u32 a660_registers[] = {
+ /* UCHE */
+ 0x0e3c, 0x0e3c,
};
#define REGS(_array, _sel_reg, _sel_val) \
@@ -282,6 +298,7 @@ static const u32 a6xx_registers[] = {
static const struct a6xx_registers a6xx_reglist[] = {
REGS(a6xx_registers, 0, 0),
+ REGS(a660_registers, 0, 0),
REGS(a6xx_rb_rac_registers, REG_A6XX_RB_RB_SUB_BLOCK_SEL_CNTL_CD, 0),
REGS(a6xx_rb_rbp_registers, REG_A6XX_RB_RB_SUB_BLOCK_SEL_CNTL_CD, 9),
};
@@ -366,25 +383,28 @@ static const struct a6xx_registers a6xx_gmu_reglist[] = {
REGS(a6xx_gmu_gx_registers, 0, 0),
};
-static const struct a6xx_indexed_registers {
+static u32 a6xx_get_cp_roq_size(struct msm_gpu *gpu);
+
+static struct a6xx_indexed_registers {
const char *name;
u32 addr;
u32 data;
u32 count;
+ u32 (*count_fn)(struct msm_gpu *gpu);
} a6xx_indexed_reglist[] = {
{ "CP_SQE_STAT", REG_A6XX_CP_SQE_STAT_ADDR,
- REG_A6XX_CP_SQE_STAT_DATA, 0x33 },
+ REG_A6XX_CP_SQE_STAT_DATA, 0x33, NULL },
{ "CP_DRAW_STATE", REG_A6XX_CP_DRAW_STATE_ADDR,
- REG_A6XX_CP_DRAW_STATE_DATA, 0x100 },
+ REG_A6XX_CP_DRAW_STATE_DATA, 0x100, NULL },
{ "CP_UCODE_DBG_DATA", REG_A6XX_CP_SQE_UCODE_DBG_ADDR,
- REG_A6XX_CP_SQE_UCODE_DBG_DATA, 0x6000 },
+ REG_A6XX_CP_SQE_UCODE_DBG_DATA, 0x8000, NULL },
{ "CP_ROQ", REG_A6XX_CP_ROQ_DBG_ADDR,
- REG_A6XX_CP_ROQ_DBG_DATA, 0x400 },
+ REG_A6XX_CP_ROQ_DBG_DATA, 0, a6xx_get_cp_roq_size},
};
-static const struct a6xx_indexed_registers a6xx_cp_mempool_indexed = {
+static struct a6xx_indexed_registers a6xx_cp_mempool_indexed = {
"CP_MEMPOOL", REG_A6XX_CP_MEM_POOL_DBG_ADDR,
- REG_A6XX_CP_MEM_POOL_DBG_DATA, 0x2060,
+ REG_A6XX_CP_MEM_POOL_DBG_DATA, 0x2060, NULL,
};
#define DEBUGBUS(_id, _count) { .id = _id, .name = #_id, .count = _count }
@@ -443,4 +463,20 @@ static const struct a6xx_debugbus_block a6xx_cx_debugbus_blocks[] = {
DEBUGBUS(A6XX_DBGBUS_CX, 0x100),
};
+static const struct a6xx_debugbus_block a650_debugbus_blocks[] = {
+ DEBUGBUS(A6XX_DBGBUS_RB_2, 0x100),
+ DEBUGBUS(A6XX_DBGBUS_CCU_2, 0x100),
+ DEBUGBUS(A6XX_DBGBUS_VFD_4, 0x100),
+ DEBUGBUS(A6XX_DBGBUS_VFD_5, 0x100),
+ DEBUGBUS(A6XX_DBGBUS_SP_2, 0x100),
+ DEBUGBUS(A6XX_DBGBUS_TPL1_4, 0x100),
+ DEBUGBUS(A6XX_DBGBUS_TPL1_5, 0x100),
+ DEBUGBUS(A6XX_DBGBUS_SPTP_0, 0x100),
+ DEBUGBUS(A6XX_DBGBUS_SPTP_1, 0x100),
+ DEBUGBUS(A6XX_DBGBUS_SPTP_2, 0x100),
+ DEBUGBUS(A6XX_DBGBUS_SPTP_3, 0x100),
+ DEBUGBUS(A6XX_DBGBUS_SPTP_4, 0x100),
+ DEBUGBUS(A6XX_DBGBUS_SPTP_5, 0x100),
+};
+
#endif
diff --git a/drivers/gpu/drm/msm/adreno/adreno_common.xml.h b/drivers/gpu/drm/msm/adreno/adreno_common.xml.h
index abb037ccc02b..51c320a2e5c0 100644
--- a/drivers/gpu/drm/msm/adreno/adreno_common.xml.h
+++ b/drivers/gpu/drm/msm/adreno/adreno_common.xml.h
@@ -8,21 +8,21 @@ http://github.com/freedreno/envytools/
git clone https://github.com/freedreno/envytools.git
The rules-ng-ng source files this header was generated from are:
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno.xml ( 594 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/freedreno_copyright.xml ( 1572 bytes, from 2020-12-31 19:26:32)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a2xx.xml ( 90810 bytes, from 2021-06-21 15:24:24)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/adreno_common.xml ( 14609 bytes, from 2021-11-24 23:05:10)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/adreno_pm4.xml ( 69086 bytes, from 2022-03-03 16:41:33)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a3xx.xml ( 84231 bytes, from 2021-11-24 23:05:10)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a4xx.xml ( 113358 bytes, from 2022-01-31 23:06:21)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a5xx.xml ( 149512 bytes, from 2022-01-31 23:06:21)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a6xx.xml ( 184954 bytes, from 2022-03-03 16:41:33)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a6xx_gmu.xml ( 11331 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/ocmem.xml ( 1773 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/adreno_control_regs.xml ( 6038 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/adreno_pipe_regs.xml ( 2924 bytes, from 2021-07-22 15:21:56)
-
-Copyright (C) 2013-2021 by the following authors:
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno.xml ( 594 bytes, from 2023-03-10 18:32:52)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/freedreno_copyright.xml ( 1572 bytes, from 2022-07-23 20:21:46)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a2xx.xml ( 91929 bytes, from 2023-02-28 23:52:27)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/adreno_common.xml ( 15434 bytes, from 2023-03-10 18:32:53)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/adreno_pm4.xml ( 74995 bytes, from 2023-03-20 18:06:23)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a3xx.xml ( 84231 bytes, from 2022-08-02 16:38:43)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a4xx.xml ( 113474 bytes, from 2022-08-02 16:38:43)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a5xx.xml ( 149590 bytes, from 2023-02-14 19:37:12)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a6xx.xml ( 198949 bytes, from 2023-03-20 18:06:23)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a6xx_gmu.xml ( 11404 bytes, from 2023-03-10 18:32:53)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/ocmem.xml ( 1773 bytes, from 2022-08-02 16:38:43)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/adreno_control_regs.xml ( 9055 bytes, from 2023-03-10 18:32:52)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/adreno_pipe_regs.xml ( 2976 bytes, from 2023-03-10 18:32:52)
+
+Copyright (C) 2013-2023 by the following authors:
- Rob Clark <robdclark@gmail.com> (robclark)
- Ilia Mirkin <imirkin@alum.mit.edu> (imirkin)
@@ -49,11 +49,12 @@ WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
enum chip {
- A2XX = 0,
- A3XX = 0,
- A4XX = 0,
- A5XX = 0,
- A6XX = 0,
+ A2XX = 2,
+ A3XX = 3,
+ A4XX = 4,
+ A5XX = 5,
+ A6XX = 6,
+ A7XX = 7,
};
enum adreno_pa_su_sc_draw {
@@ -210,6 +211,17 @@ enum a5xx_line_mode {
RECTANGULAR = 1,
};
+enum a6xx_tex_prefetch_cmd {
+ TEX_PREFETCH_UNK0 = 0,
+ TEX_PREFETCH_SAM = 1,
+ TEX_PREFETCH_GATHER4R = 2,
+ TEX_PREFETCH_GATHER4G = 3,
+ TEX_PREFETCH_GATHER4B = 4,
+ TEX_PREFETCH_GATHER4A = 5,
+ TEX_PREFETCH_UNK6 = 6,
+ TEX_PREFETCH_UNK7 = 7,
+};
+
#define REG_AXXX_CP_RB_BASE 0x000001c0
#define REG_AXXX_CP_RB_CNTL 0x000001c1
diff --git a/drivers/gpu/drm/msm/adreno/adreno_device.c b/drivers/gpu/drm/msm/adreno/adreno_device.c
index 628806423f7d..8cff86e9d35c 100644
--- a/drivers/gpu/drm/msm/adreno/adreno_device.c
+++ b/drivers/gpu/drm/msm/adreno/adreno_device.c
@@ -432,31 +432,35 @@ struct msm_gpu *adreno_load_gpu(struct drm_device *dev)
if (ret)
return NULL;
+ if (gpu->funcs->ucode_load) {
+ ret = gpu->funcs->ucode_load(gpu);
+ if (ret)
+ return NULL;
+ }
+
/*
* Now that we have firmware loaded, and are ready to begin
* booting the gpu, go ahead and enable runpm:
*/
pm_runtime_enable(&pdev->dev);
- /* Make sure pm runtime is active and reset any previous errors */
- pm_runtime_set_active(&pdev->dev);
-
ret = pm_runtime_get_sync(&pdev->dev);
if (ret < 0) {
- pm_runtime_put_sync(&pdev->dev);
+ pm_runtime_put_noidle(&pdev->dev);
DRM_DEV_ERROR(dev->dev, "Couldn't power up the GPU: %d\n", ret);
- return NULL;
+ goto err_disable_rpm;
}
mutex_lock(&gpu->lock);
ret = msm_gpu_hw_init(gpu);
mutex_unlock(&gpu->lock);
- pm_runtime_put_autosuspend(&pdev->dev);
if (ret) {
DRM_DEV_ERROR(dev->dev, "gpu hw init failed: %d\n", ret);
- return NULL;
+ goto err_put_rpm;
}
+ pm_runtime_put_autosuspend(&pdev->dev);
+
#ifdef CONFIG_DEBUG_FS
if (gpu->funcs->debugfs_init) {
gpu->funcs->debugfs_init(gpu, dev->primary);
@@ -465,6 +469,13 @@ struct msm_gpu *adreno_load_gpu(struct drm_device *dev)
#endif
return gpu;
+
+err_put_rpm:
+ pm_runtime_put_sync_suspend(&pdev->dev);
+err_disable_rpm:
+ pm_runtime_disable(&pdev->dev);
+
+ return NULL;
}
static int find_chipid(struct device *dev, struct adreno_rev *rev)
@@ -548,24 +559,30 @@ static int adreno_bind(struct device *dev, struct device *master, void *data)
return PTR_ERR(gpu);
}
+ ret = dev_pm_opp_of_find_icc_paths(dev, NULL);
+ if (ret)
+ return ret;
+
return 0;
}
+static int adreno_system_suspend(struct device *dev);
static void adreno_unbind(struct device *dev, struct device *master,
void *data)
{
struct msm_drm_private *priv = dev_get_drvdata(master);
struct msm_gpu *gpu = dev_to_gpu(dev);
- pm_runtime_force_suspend(dev);
+ if (pm_runtime_enabled(dev))
+ WARN_ON_ONCE(adreno_system_suspend(dev));
gpu->funcs->destroy(gpu);
priv->gpu_pdev = NULL;
}
static const struct component_ops a3xx_ops = {
- .bind = adreno_bind,
- .unbind = adreno_unbind,
+ .bind = adreno_bind,
+ .unbind = adreno_unbind,
};
static void adreno_device_register_headless(void)
@@ -609,7 +626,7 @@ static int adreno_remove(struct platform_device *pdev)
static void adreno_shutdown(struct platform_device *pdev)
{
- pm_runtime_force_suspend(&pdev->dev);
+ WARN_ON_ONCE(adreno_system_suspend(&pdev->dev));
}
static const struct of_device_id dt_match[] = {
diff --git a/drivers/gpu/drm/msm/adreno/adreno_gpu.c b/drivers/gpu/drm/msm/adreno/adreno_gpu.c
index 5a0e8491cd3a..6934cee07d42 100644
--- a/drivers/gpu/drm/msm/adreno/adreno_gpu.c
+++ b/drivers/gpu/drm/msm/adreno/adreno_gpu.c
@@ -8,7 +8,7 @@
#include <linux/ascii85.h>
#include <linux/interconnect.h>
-#include <linux/qcom_scm.h>
+#include <linux/firmware/qcom/qcom_scm.h>
#include <linux/kernel.h>
#include <linux/of_address.h>
#include <linux/pm_opp.h>
@@ -191,37 +191,38 @@ int adreno_zap_shader_load(struct msm_gpu *gpu, u32 pasid)
return zap_shader_load_mdt(gpu, adreno_gpu->info->zapfw, pasid);
}
-void adreno_set_llc_attributes(struct iommu_domain *iommu)
+struct msm_gem_address_space *
+adreno_create_address_space(struct msm_gpu *gpu,
+ struct platform_device *pdev)
{
- iommu_set_pgtable_quirks(iommu, IO_PGTABLE_QUIRK_ARM_OUTER_WBWA);
+ return adreno_iommu_create_address_space(gpu, pdev, 0);
}
struct msm_gem_address_space *
adreno_iommu_create_address_space(struct msm_gpu *gpu,
- struct platform_device *pdev)
+ struct platform_device *pdev,
+ unsigned long quirks)
{
- struct iommu_domain *iommu;
+ struct iommu_domain_geometry *geometry;
struct msm_mmu *mmu;
struct msm_gem_address_space *aspace;
u64 start, size;
- iommu = iommu_domain_alloc(&platform_bus_type);
- if (!iommu)
- return NULL;
-
- mmu = msm_iommu_new(&pdev->dev, iommu);
- if (IS_ERR(mmu)) {
- iommu_domain_free(iommu);
+ mmu = msm_iommu_gpu_new(&pdev->dev, gpu, quirks);
+ if (IS_ERR_OR_NULL(mmu))
return ERR_CAST(mmu);
- }
+
+ geometry = msm_iommu_get_geometry(mmu);
+ if (IS_ERR(geometry))
+ return ERR_CAST(geometry);
/*
* Use the aperture start or SZ_16M, whichever is greater. This will
* ensure that we align with the allocated pagetable range while still
* allowing room in the lower 32 bits for GMEM and whatnot
*/
- start = max_t(u64, SZ_16M, iommu->geometry.aperture_start);
- size = iommu->geometry.aperture_end - start + 1;
+ start = max_t(u64, SZ_16M, geometry->aperture_start);
+ size = geometry->aperture_end - start + 1;
aspace = msm_gem_address_space_create(mmu, "gpu",
start & GENMASK_ULL(48, 0), size);
@@ -245,6 +246,66 @@ u64 adreno_private_address_space_size(struct msm_gpu *gpu)
return SZ_4G;
}
+#define ARM_SMMU_FSR_TF BIT(1)
+#define ARM_SMMU_FSR_PF BIT(3)
+#define ARM_SMMU_FSR_EF BIT(4)
+
+int adreno_fault_handler(struct msm_gpu *gpu, unsigned long iova, int flags,
+ struct adreno_smmu_fault_info *info, const char *block,
+ u32 scratch[4])
+{
+ const char *type = "UNKNOWN";
+ bool do_devcoredump = info && !READ_ONCE(gpu->crashstate);
+
+ /*
+ * If we aren't going to be resuming later from fault_worker, then do
+ * it now.
+ */
+ if (!do_devcoredump) {
+ gpu->aspace->mmu->funcs->resume_translation(gpu->aspace->mmu);
+ }
+
+ /*
+ * Print a default message if we couldn't get the data from the
+ * adreno-smmu-priv
+ */
+ if (!info) {
+ pr_warn_ratelimited("*** gpu fault: iova=%.16lx flags=%d (%u,%u,%u,%u)\n",
+ iova, flags,
+ scratch[0], scratch[1], scratch[2], scratch[3]);
+
+ return 0;
+ }
+
+ if (info->fsr & ARM_SMMU_FSR_TF)
+ type = "TRANSLATION";
+ else if (info->fsr & ARM_SMMU_FSR_PF)
+ type = "PERMISSION";
+ else if (info->fsr & ARM_SMMU_FSR_EF)
+ type = "EXTERNAL";
+
+ pr_warn_ratelimited("*** gpu fault: ttbr0=%.16llx iova=%.16lx dir=%s type=%s source=%s (%u,%u,%u,%u)\n",
+ info->ttbr0, iova,
+ flags & IOMMU_FAULT_WRITE ? "WRITE" : "READ",
+ type, block,
+ scratch[0], scratch[1], scratch[2], scratch[3]);
+
+ if (do_devcoredump) {
+ /* Turn off the hangcheck timer to keep it from bothering us */
+ del_timer(&gpu->hangcheck_timer);
+
+ gpu->fault_info.ttbr0 = info->ttbr0;
+ gpu->fault_info.iova = iova;
+ gpu->fault_info.flags = flags;
+ gpu->fault_info.type = type;
+ gpu->fault_info.block = block;
+
+ kthread_queue_work(gpu->worker, &gpu->fault_work);
+ }
+
+ return 0;
+}
+
int adreno_get_param(struct msm_gpu *gpu, struct msm_file_private *ctx,
uint32_t param, uint64_t *value, uint32_t *len)
{
@@ -351,6 +412,8 @@ int adreno_set_param(struct msm_gpu *gpu, struct msm_file_private *ctx,
/* Ensure string is null terminated: */
str[len] = '\0';
+ mutex_lock(&gpu->lock);
+
if (param == MSM_PARAM_COMM) {
paramp = &ctx->comm;
} else {
@@ -360,6 +423,8 @@ int adreno_set_param(struct msm_gpu *gpu, struct msm_file_private *ctx,
kfree(*paramp);
*paramp = str;
+ mutex_unlock(&gpu->lock);
+
return 0;
}
case MSM_PARAM_SYSPROF:
@@ -498,16 +563,9 @@ struct drm_gem_object *adreno_fw_create_bo(struct msm_gpu *gpu,
int adreno_hw_init(struct msm_gpu *gpu)
{
- struct adreno_gpu *adreno_gpu = to_adreno_gpu(gpu);
- int ret, i;
-
VERB("%s", gpu->name);
- ret = adreno_load_fw(adreno_gpu);
- if (ret)
- return ret;
-
- for (i = 0; i < gpu->nr_rings; i++) {
+ for (int i = 0; i < gpu->nr_rings; i++) {
struct msm_ringbuffer *ring = gpu->rb[i];
if (!ring)
@@ -917,73 +975,46 @@ void adreno_wait_ring(struct msm_ringbuffer *ring, uint32_t ndwords)
ring->id);
}
-/* Get legacy powerlevels from qcom,gpu-pwrlevels and populate the opp table */
-static int adreno_get_legacy_pwrlevels(struct device *dev)
-{
- struct device_node *child, *node;
- int ret;
-
- node = of_get_compatible_child(dev->of_node, "qcom,gpu-pwrlevels");
- if (!node) {
- DRM_DEV_DEBUG(dev, "Could not find the GPU powerlevels\n");
- return -ENXIO;
- }
-
- for_each_child_of_node(node, child) {
- unsigned int val;
-
- ret = of_property_read_u32(child, "qcom,gpu-freq", &val);
- if (ret)
- continue;
-
- /*
- * Skip the intentionally bogus clock value found at the bottom
- * of most legacy frequency tables
- */
- if (val != 27000000)
- dev_pm_opp_add(dev, val, 0);
- }
-
- of_node_put(node);
-
- return 0;
-}
-
-static void adreno_get_pwrlevels(struct device *dev,
+static int adreno_get_pwrlevels(struct device *dev,
struct msm_gpu *gpu)
{
+ struct adreno_gpu *adreno_gpu = to_adreno_gpu(gpu);
unsigned long freq = ULONG_MAX;
struct dev_pm_opp *opp;
int ret;
gpu->fast_rate = 0;
- /* You down with OPP? */
- if (!of_find_property(dev->of_node, "operating-points-v2", NULL))
- ret = adreno_get_legacy_pwrlevels(dev);
- else {
- ret = devm_pm_opp_of_add_table(dev);
- if (ret)
- DRM_DEV_ERROR(dev, "Unable to set the OPP table\n");
- }
-
- if (!ret) {
- /* Find the fastest defined rate */
- opp = dev_pm_opp_find_freq_floor(dev, &freq);
- if (!IS_ERR(opp)) {
- gpu->fast_rate = freq;
- dev_pm_opp_put(opp);
+ /* devm_pm_opp_of_add_table may error out but will still create an OPP table */
+ ret = devm_pm_opp_of_add_table(dev);
+ if (ret == -ENODEV) {
+ /* Special cases for ancient hw with ancient DT bindings */
+ if (adreno_is_a2xx(adreno_gpu)) {
+ dev_warn(dev, "Unable to find the OPP table. Falling back to 200 MHz.\n");
+ dev_pm_opp_add(dev, 200000000, 0);
+ } else if (adreno_is_a320(adreno_gpu)) {
+ dev_warn(dev, "Unable to find the OPP table. Falling back to 450 MHz.\n");
+ dev_pm_opp_add(dev, 450000000, 0);
+ } else {
+ DRM_DEV_ERROR(dev, "Unable to find the OPP table\n");
+ return -ENODEV;
}
+ } else if (ret) {
+ DRM_DEV_ERROR(dev, "Unable to set the OPP table\n");
+ return ret;
}
- if (!gpu->fast_rate) {
- dev_warn(dev,
- "Could not find a clock rate. Using a reasonable default\n");
- /* Pick a suitably safe clock speed for any target */
- gpu->fast_rate = 200000000;
- }
+ /* Find the fastest defined rate */
+ opp = dev_pm_opp_find_freq_floor(dev, &freq);
+ if (IS_ERR(opp))
+ return PTR_ERR(opp);
+
+ gpu->fast_rate = freq;
+ dev_pm_opp_put(opp);
DBG("fast_rate=%u, slow_rate=27000000", gpu->fast_rate);
+
+ return 0;
}
int adreno_gpu_ocmem_init(struct device *dev, struct adreno_gpu *adreno_gpu,
@@ -1041,6 +1072,24 @@ int adreno_gpu_init(struct drm_device *drm, struct platform_device *pdev,
struct adreno_rev *rev = &config->rev;
const char *gpu_name;
u32 speedbin;
+ int ret;
+
+ /* Only handle the core clock when GMU is not in use */
+ if (config->rev.core < 6) {
+ /*
+ * This can only be done before devm_pm_opp_of_add_table(), or
+ * dev_pm_opp_set_config() will WARN_ON()
+ */
+ if (IS_ERR(devm_clk_get(dev, "core"))) {
+ /*
+ * If "core" is absent, go for the legacy clock name.
+ * If we got this far in probing, it's a given one of
+ * them exists.
+ */
+ devm_pm_opp_set_clkname(dev, "core_clk");
+ } else
+ devm_pm_opp_set_clkname(dev, "core");
+ }
adreno_gpu->funcs = funcs;
adreno_gpu->info = adreno_info(config->rev);
@@ -1065,7 +1114,9 @@ int adreno_gpu_init(struct drm_device *drm, struct platform_device *pdev,
adreno_gpu_config.nr_rings = nr_rings;
- adreno_get_pwrlevels(dev, gpu);
+ ret = adreno_get_pwrlevels(dev, gpu);
+ if (ret)
+ return ret;
pm_runtime_set_autosuspend_delay(dev,
adreno_gpu->info->inactive_period);
@@ -1078,13 +1129,13 @@ int adreno_gpu_init(struct drm_device *drm, struct platform_device *pdev,
void adreno_gpu_cleanup(struct adreno_gpu *adreno_gpu)
{
struct msm_gpu *gpu = &adreno_gpu->base;
- struct msm_drm_private *priv = gpu->dev->dev_private;
+ struct msm_drm_private *priv = gpu->dev ? gpu->dev->dev_private : NULL;
unsigned int i;
for (i = 0; i < ARRAY_SIZE(adreno_gpu->info->fw); i++)
release_firmware(adreno_gpu->fw[i]);
- if (pm_runtime_enabled(&priv->gpu_pdev->dev))
+ if (priv && pm_runtime_enabled(&priv->gpu_pdev->dev))
pm_runtime_disable(&priv->gpu_pdev->dev);
msm_gpu_cleanup(&adreno_gpu->base);
diff --git a/drivers/gpu/drm/msm/adreno/adreno_gpu.h b/drivers/gpu/drm/msm/adreno/adreno_gpu.h
index e7adc5c632d0..f62612a5c70f 100644
--- a/drivers/gpu/drm/msm/adreno/adreno_gpu.h
+++ b/drivers/gpu/drm/msm/adreno/adreno_gpu.h
@@ -29,11 +29,9 @@ enum {
ADRENO_FW_MAX,
};
-enum adreno_quirks {
- ADRENO_QUIRK_TWO_PASS_USE_WFI = 1,
- ADRENO_QUIRK_FAULT_DETECT_MASK = 2,
- ADRENO_QUIRK_LMLOADKILL_DISABLE = 3,
-};
+#define ADRENO_QUIRK_TWO_PASS_USE_WFI BIT(0)
+#define ADRENO_QUIRK_FAULT_DETECT_MASK BIT(1)
+#define ADRENO_QUIRK_LMLOADKILL_DISABLE BIT(2)
struct adreno_rev {
uint8_t core;
@@ -65,7 +63,7 @@ struct adreno_info {
const char *name;
const char *fw[ADRENO_FW_MAX];
uint32_t gmem;
- enum adreno_quirks quirks;
+ u64 quirks;
struct msm_gpu *(*init)(struct drm_device *dev);
const char *zapfw;
u32 inactive_period;
@@ -335,10 +333,17 @@ void adreno_show_object(struct drm_printer *p, void **ptr, int len,
* attached targets
*/
struct msm_gem_address_space *
+adreno_create_address_space(struct msm_gpu *gpu,
+ struct platform_device *pdev);
+
+struct msm_gem_address_space *
adreno_iommu_create_address_space(struct msm_gpu *gpu,
- struct platform_device *pdev);
+ struct platform_device *pdev,
+ unsigned long quirks);
-void adreno_set_llc_attributes(struct iommu_domain *iommu);
+int adreno_fault_handler(struct msm_gpu *gpu, unsigned long iova, int flags,
+ struct adreno_smmu_fault_info *info, const char *block,
+ u32 scratch[4]);
int adreno_read_speedbin(struct device *dev, u32 *speedbin);
diff --git a/drivers/gpu/drm/msm/adreno/adreno_pm4.xml.h b/drivers/gpu/drm/msm/adreno/adreno_pm4.xml.h
index 7aecf920f9b9..8a4a2d161a29 100644
--- a/drivers/gpu/drm/msm/adreno/adreno_pm4.xml.h
+++ b/drivers/gpu/drm/msm/adreno/adreno_pm4.xml.h
@@ -8,21 +8,21 @@ http://github.com/freedreno/envytools/
git clone https://github.com/freedreno/envytools.git
The rules-ng-ng source files this header was generated from are:
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno.xml ( 594 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/freedreno_copyright.xml ( 1572 bytes, from 2020-12-31 19:26:32)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a2xx.xml ( 90810 bytes, from 2021-06-21 15:24:24)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/adreno_common.xml ( 14609 bytes, from 2021-11-24 23:05:10)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/adreno_pm4.xml ( 69086 bytes, from 2022-03-03 16:41:33)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a3xx.xml ( 84231 bytes, from 2021-11-24 23:05:10)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a4xx.xml ( 113358 bytes, from 2022-01-31 23:06:21)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a5xx.xml ( 149512 bytes, from 2022-01-31 23:06:21)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a6xx.xml ( 184954 bytes, from 2022-03-03 16:41:33)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/a6xx_gmu.xml ( 11331 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/ocmem.xml ( 1773 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/adreno_control_regs.xml ( 6038 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/adreno/adreno_pipe_regs.xml ( 2924 bytes, from 2021-07-22 15:21:56)
-
-Copyright (C) 2013-2022 by the following authors:
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno.xml ( 594 bytes, from 2023-03-10 18:32:52)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/freedreno_copyright.xml ( 1572 bytes, from 2022-07-23 20:21:46)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a2xx.xml ( 91929 bytes, from 2023-02-28 23:52:27)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/adreno_common.xml ( 15434 bytes, from 2023-03-10 18:32:53)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/adreno_pm4.xml ( 74995 bytes, from 2023-03-20 18:06:23)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a3xx.xml ( 84231 bytes, from 2022-08-02 16:38:43)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a4xx.xml ( 113474 bytes, from 2022-08-02 16:38:43)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a5xx.xml ( 149590 bytes, from 2023-02-14 19:37:12)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a6xx.xml ( 198949 bytes, from 2023-03-20 18:06:23)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/a6xx_gmu.xml ( 11404 bytes, from 2023-03-10 18:32:53)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/ocmem.xml ( 1773 bytes, from 2022-08-02 16:38:43)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/adreno_control_regs.xml ( 9055 bytes, from 2023-03-10 18:32:52)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/adreno/adreno_pipe_regs.xml ( 2976 bytes, from 2023-03-10 18:32:52)
+
+Copyright (C) 2013-2023 by the following authors:
- Rob Clark <robdclark@gmail.com> (robclark)
- Ilia Mirkin <imirkin@alum.mit.edu> (imirkin)
@@ -76,6 +76,10 @@ enum vgt_event_type {
VS_FETCH_DONE = 27,
FACENESS_FLUSH = 28,
WT_DONE_TS = 8,
+ START_FRAGMENT_CTRS = 13,
+ STOP_FRAGMENT_CTRS = 14,
+ START_COMPUTE_CTRS = 15,
+ STOP_COMPUTE_CTRS = 16,
FLUSH_SO_0 = 17,
FLUSH_SO_1 = 18,
FLUSH_SO_2 = 19,
@@ -86,7 +90,7 @@ enum vgt_event_type {
PC_CCU_FLUSH_DEPTH_TS = 28,
PC_CCU_FLUSH_COLOR_TS = 29,
BLIT = 30,
- UNK_25 = 37,
+ LRZ_CLEAR = 37,
LRZ_FLUSH = 38,
BLIT_OP_FILL_2D = 39,
BLIT_OP_COPY_2D = 40,
@@ -95,6 +99,20 @@ enum vgt_event_type {
UNK_2C = 44,
UNK_2D = 45,
CACHE_INVALIDATE = 49,
+ LABEL = 63,
+ CCU_INVALIDATE_DEPTH = 24,
+ CCU_INVALIDATE_COLOR = 25,
+ CCU_RESOLVE_CLEAN = 26,
+ CCU_FLUSH_DEPTH = 28,
+ CCU_FLUSH_COLOR = 29,
+ CCU_RESOLVE = 30,
+ CCU_END_RESOLVE_GROUP = 31,
+ CCU_CLEAN_DEPTH = 32,
+ CCU_CLEAN_COLOR = 33,
+ CACHE_RESET = 48,
+ CACHE_CLEAN = 49,
+ CACHE_FLUSH7 = 50,
+ CACHE_INVALIDATE7 = 51,
};
enum pc_di_primtype {
@@ -290,6 +308,9 @@ enum adreno_pm4_type3_packets {
IN_INCR_UPDT_CONST = 86,
IN_INCR_UPDT_INSTR = 87,
PKT4 = 4,
+ IN_IB_END = 10,
+ IN_GMU_INTERRUPT = 11,
+ IN_PREEMPT = 15,
CP_SCRATCH_WRITE = 76,
CP_REG_TO_MEM_OFFSET_MEM = 116,
CP_REG_TO_MEM_OFFSET_REG = 114,
@@ -297,10 +318,20 @@ enum adreno_pm4_type3_packets {
CP_WAIT_TWO_REGS = 112,
CP_MEMCPY = 117,
CP_SET_BIN_DATA5_OFFSET = 46,
+ CP_CONTEXT_SWITCH = 84,
CP_SET_CTXSWITCH_IB = 85,
CP_REG_WRITE = 109,
CP_START_BIN = 80,
CP_END_BIN = 81,
+ CP_PREEMPT_DISABLE = 108,
+ CP_WAIT_TIMESTAMP = 20,
+ CP_THREAD_CONTROL = 23,
+ CP_CONTEXT_REG_BUNCH2 = 93,
+ CP_UNK15 = 21,
+ CP_UNK16 = 22,
+ CP_UNK18 = 24,
+ CP_UNK1B = 27,
+ CP_UNK49 = 73,
};
enum adreno_state_block {
@@ -480,6 +511,13 @@ enum reg_tracker {
TRACK_CNTL_REG = 1,
TRACK_RENDER_CNTL = 2,
UNK_EVENT_WRITE = 4,
+ TRACK_LRZ = 8,
+};
+
+enum cp_thread {
+ CP_SET_THREAD_BR = 1,
+ CP_SET_THREAD_BV = 2,
+ CP_SET_THREAD_BOTH = 3,
};
#define REG_CP_LOAD_STATE_0 0x00000000
@@ -1256,6 +1294,10 @@ static inline uint32_t CP_SET_BIN_DATA5_6_BIN_PRIM_STRM_HI(uint32_t val)
return ((val) << CP_SET_BIN_DATA5_6_BIN_PRIM_STRM_HI__SHIFT) & CP_SET_BIN_DATA5_6_BIN_PRIM_STRM_HI__MASK;
}
+#define REG_CP_SET_BIN_DATA5_7 0x00000007
+
+#define REG_CP_SET_BIN_DATA5_9 0x00000009
+
#define REG_CP_SET_BIN_DATA5_OFFSET_0 0x00000000
#define CP_SET_BIN_DATA5_OFFSET_0_VSC_SIZE__MASK 0x003f0000
#define CP_SET_BIN_DATA5_OFFSET_0_VSC_SIZE__SHIFT 16
@@ -2202,7 +2244,18 @@ static inline uint32_t A6XX_CP_REG_TEST_0_BIT(uint32_t val)
{
return ((val) << A6XX_CP_REG_TEST_0_BIT__SHIFT) & A6XX_CP_REG_TEST_0_BIT__MASK;
}
-#define A6XX_CP_REG_TEST_0_WAIT_FOR_ME 0x02000000
+#define A6XX_CP_REG_TEST_0_SKIP_WAIT_FOR_ME 0x02000000
+#define A6XX_CP_REG_TEST_0_PRED_BIT__MASK 0x7c000000
+#define A6XX_CP_REG_TEST_0_PRED_BIT__SHIFT 26
+static inline uint32_t A6XX_CP_REG_TEST_0_PRED_BIT(uint32_t val)
+{
+ return ((val) << A6XX_CP_REG_TEST_0_PRED_BIT__SHIFT) & A6XX_CP_REG_TEST_0_PRED_BIT__MASK;
+}
+#define A6XX_CP_REG_TEST_0_PRED_UPDATE 0x80000000
+
+#define REG_A6XX_CP_REG_TEST_PRED_MASK 0x00000001
+
+#define REG_A6XX_CP_REG_TEST_PRED_VAL 0x00000002
#define REG_CP_COND_REG_EXEC_0 0x00000000
#define CP_COND_REG_EXEC_0_REG0__MASK 0x0003ffff
@@ -2211,6 +2264,12 @@ static inline uint32_t CP_COND_REG_EXEC_0_REG0(uint32_t val)
{
return ((val) << CP_COND_REG_EXEC_0_REG0__SHIFT) & CP_COND_REG_EXEC_0_REG0__MASK;
}
+#define CP_COND_REG_EXEC_0_PRED_BIT__MASK 0x007c0000
+#define CP_COND_REG_EXEC_0_PRED_BIT__SHIFT 18
+static inline uint32_t CP_COND_REG_EXEC_0_PRED_BIT(uint32_t val)
+{
+ return ((val) << CP_COND_REG_EXEC_0_PRED_BIT__SHIFT) & CP_COND_REG_EXEC_0_PRED_BIT__MASK;
+}
#define CP_COND_REG_EXEC_0_BINNING 0x02000000
#define CP_COND_REG_EXEC_0_GMEM 0x04000000
#define CP_COND_REG_EXEC_0_SYSMEM 0x08000000
@@ -2308,13 +2367,17 @@ static inline uint32_t CP_SET_CTXSWITCH_IB_2_TYPE(enum ctxswitch_ib val)
}
#define REG_CP_REG_WRITE_0 0x00000000
-#define CP_REG_WRITE_0_TRACKER__MASK 0x00000007
+#define CP_REG_WRITE_0_TRACKER__MASK 0x0000000f
#define CP_REG_WRITE_0_TRACKER__SHIFT 0
static inline uint32_t CP_REG_WRITE_0_TRACKER(enum reg_tracker val)
{
return ((val) << CP_REG_WRITE_0_TRACKER__SHIFT) & CP_REG_WRITE_0_TRACKER__MASK;
}
+#define REG_CP_REG_WRITE_1 0x00000001
+
+#define REG_CP_REG_WRITE_2 0x00000002
+
#define REG_CP_SMMU_TABLE_UPDATE_0 0x00000000
#define CP_SMMU_TABLE_UPDATE_0_TTBR0_LO__MASK 0xffffffff
#define CP_SMMU_TABLE_UPDATE_0_TTBR0_LO__SHIFT 0
@@ -2361,5 +2424,21 @@ static inline uint32_t CP_SMMU_TABLE_UPDATE_3_CONTEXTBANK(uint32_t val)
#define REG_CP_START_BIN_BODY_DWORDS 0x00000004
+#define REG_CP_WAIT_TIMESTAMP_0 0x00000000
+
+#define REG_CP_WAIT_TIMESTAMP_ADDR 0x00000001
+
+#define REG_CP_WAIT_TIMESTAMP_TIMESTAMP 0x00000003
+
+#define REG_CP_THREAD_CONTROL_0 0x00000000
+#define CP_THREAD_CONTROL_0_THREAD__MASK 0x00000003
+#define CP_THREAD_CONTROL_0_THREAD__SHIFT 0
+static inline uint32_t CP_THREAD_CONTROL_0_THREAD(enum cp_thread val)
+{
+ return ((val) << CP_THREAD_CONTROL_0_THREAD__SHIFT) & CP_THREAD_CONTROL_0_THREAD__MASK;
+}
+#define CP_THREAD_CONTROL_0_CONCURRENT_BIN_DISABLE 0x08000000
+#define CP_THREAD_CONTROL_0_SYNC_THREADS 0x80000000
+
#endif /* ADRENO_PM4_XML */
diff --git a/drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_3_0_msm8998.h b/drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_3_0_msm8998.h
new file mode 100644
index 000000000000..2b3ae84057df
--- /dev/null
+++ b/drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_3_0_msm8998.h
@@ -0,0 +1,210 @@
+/* SPDX-License-Identifier: GPL-2.0-only */
+/*
+ * Copyright (c) 2022. Qualcomm Innovation Center, Inc. All rights reserved.
+ * Copyright (c) 2015-2018, 2020 The Linux Foundation. All rights reserved.
+ */
+
+#ifndef _DPU_3_0_MSM8998_H
+#define _DPU_3_0_MSM8998_H
+
+static const struct dpu_caps msm8998_dpu_caps = {
+ .max_mixer_width = DEFAULT_DPU_OUTPUT_LINE_WIDTH,
+ .max_mixer_blendstages = 0x7,
+ .qseed_type = DPU_SSPP_SCALER_QSEED3,
+ .has_src_split = true,
+ .has_dim_layer = true,
+ .has_idle_pc = true,
+ .has_3d_merge = true,
+ .max_linewidth = DEFAULT_DPU_OUTPUT_LINE_WIDTH,
+ .pixel_ram_size = DEFAULT_PIXEL_RAM_SIZE,
+ .max_hdeci_exp = MAX_HORZ_DECIMATION,
+ .max_vdeci_exp = MAX_VERT_DECIMATION,
+};
+
+static const struct dpu_ubwc_cfg msm8998_ubwc_cfg = {
+ .ubwc_version = DPU_HW_UBWC_VER_10,
+ .highest_bank_bit = 0x2,
+};
+
+static const struct dpu_mdp_cfg msm8998_mdp[] = {
+ {
+ .name = "top_0", .id = MDP_TOP,
+ .base = 0x0, .len = 0x458,
+ .features = 0,
+ .clk_ctrls[DPU_CLK_CTRL_VIG0] = { .reg_off = 0x2ac, .bit_off = 0 },
+ .clk_ctrls[DPU_CLK_CTRL_VIG1] = { .reg_off = 0x2b4, .bit_off = 0 },
+ .clk_ctrls[DPU_CLK_CTRL_VIG2] = { .reg_off = 0x2bc, .bit_off = 0 },
+ .clk_ctrls[DPU_CLK_CTRL_VIG3] = { .reg_off = 0x2c4, .bit_off = 0 },
+ .clk_ctrls[DPU_CLK_CTRL_DMA0] = { .reg_off = 0x2ac, .bit_off = 8 },
+ .clk_ctrls[DPU_CLK_CTRL_DMA1] = { .reg_off = 0x2b4, .bit_off = 8 },
+ .clk_ctrls[DPU_CLK_CTRL_DMA2] = { .reg_off = 0x2c4, .bit_off = 8 },
+ .clk_ctrls[DPU_CLK_CTRL_DMA3] = { .reg_off = 0x2c4, .bit_off = 12 },
+ .clk_ctrls[DPU_CLK_CTRL_CURSOR0] = { .reg_off = 0x3a8, .bit_off = 15 },
+ .clk_ctrls[DPU_CLK_CTRL_CURSOR1] = { .reg_off = 0x3b0, .bit_off = 15 },
+ },
+};
+
+static const struct dpu_ctl_cfg msm8998_ctl[] = {
+ {
+ .name = "ctl_0", .id = CTL_0,
+ .base = 0x1000, .len = 0x94,
+ .features = BIT(DPU_CTL_SPLIT_DISPLAY),
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 9),
+ },
+ {
+ .name = "ctl_1", .id = CTL_1,
+ .base = 0x1200, .len = 0x94,
+ .features = 0,
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 10),
+ },
+ {
+ .name = "ctl_2", .id = CTL_2,
+ .base = 0x1400, .len = 0x94,
+ .features = BIT(DPU_CTL_SPLIT_DISPLAY),
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 11),
+ },
+ {
+ .name = "ctl_3", .id = CTL_3,
+ .base = 0x1600, .len = 0x94,
+ .features = 0,
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 12),
+ },
+ {
+ .name = "ctl_4", .id = CTL_4,
+ .base = 0x1800, .len = 0x94,
+ .features = 0,
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 13),
+ },
+};
+
+static const struct dpu_sspp_cfg msm8998_sspp[] = {
+ SSPP_BLK("sspp_0", SSPP_VIG0, 0x4000, 0x1ac, VIG_MSM8998_MASK,
+ msm8998_vig_sblk_0, 0, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG0),
+ SSPP_BLK("sspp_1", SSPP_VIG1, 0x6000, 0x1ac, VIG_MSM8998_MASK,
+ msm8998_vig_sblk_1, 4, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG1),
+ SSPP_BLK("sspp_2", SSPP_VIG2, 0x8000, 0x1ac, VIG_MSM8998_MASK,
+ msm8998_vig_sblk_2, 8, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG2),
+ SSPP_BLK("sspp_3", SSPP_VIG3, 0xa000, 0x1ac, VIG_MSM8998_MASK,
+ msm8998_vig_sblk_3, 12, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG3),
+ SSPP_BLK("sspp_8", SSPP_DMA0, 0x24000, 0x1ac, DMA_MSM8998_MASK,
+ sdm845_dma_sblk_0, 1, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA0),
+ SSPP_BLK("sspp_9", SSPP_DMA1, 0x26000, 0x1ac, DMA_MSM8998_MASK,
+ sdm845_dma_sblk_1, 5, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA1),
+ SSPP_BLK("sspp_10", SSPP_DMA2, 0x28000, 0x1ac, DMA_CURSOR_MSM8998_MASK,
+ sdm845_dma_sblk_2, 9, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA2),
+ SSPP_BLK("sspp_11", SSPP_DMA3, 0x2a000, 0x1ac, DMA_CURSOR_MSM8998_MASK,
+ sdm845_dma_sblk_3, 13, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA3),
+};
+
+static const struct dpu_lm_cfg msm8998_lm[] = {
+ LM_BLK("lm_0", LM_0, 0x44000, MIXER_MSM8998_MASK,
+ &msm8998_lm_sblk, PINGPONG_0, LM_2, DSPP_0),
+ LM_BLK("lm_1", LM_1, 0x45000, MIXER_MSM8998_MASK,
+ &msm8998_lm_sblk, PINGPONG_1, LM_5, DSPP_1),
+ LM_BLK("lm_2", LM_2, 0x46000, MIXER_MSM8998_MASK,
+ &msm8998_lm_sblk, PINGPONG_2, LM_0, 0),
+ LM_BLK("lm_3", LM_3, 0x47000, MIXER_MSM8998_MASK,
+ &msm8998_lm_sblk, PINGPONG_MAX, 0, 0),
+ LM_BLK("lm_4", LM_4, 0x48000, MIXER_MSM8998_MASK,
+ &msm8998_lm_sblk, PINGPONG_MAX, 0, 0),
+ LM_BLK("lm_5", LM_5, 0x49000, MIXER_MSM8998_MASK,
+ &msm8998_lm_sblk, PINGPONG_3, LM_1, 0),
+};
+
+static const struct dpu_pingpong_cfg msm8998_pp[] = {
+ PP_BLK_TE("pingpong_0", PINGPONG_0, 0x70000, 0, sdm845_pp_sblk_te,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 8),
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 12)),
+ PP_BLK_TE("pingpong_1", PINGPONG_1, 0x70800, 0, sdm845_pp_sblk_te,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 9),
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 13)),
+ PP_BLK("pingpong_2", PINGPONG_2, 0x71000, 0, sdm845_pp_sblk,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 10),
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 14)),
+ PP_BLK("pingpong_3", PINGPONG_3, 0x71800, 0, sdm845_pp_sblk,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 11),
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 15)),
+};
+
+static const struct dpu_dspp_cfg msm8998_dspp[] = {
+ DSPP_BLK("dspp_0", DSPP_0, 0x54000, DSPP_MSM8998_MASK,
+ &msm8998_dspp_sblk),
+ DSPP_BLK("dspp_1", DSPP_1, 0x56000, DSPP_MSM8998_MASK,
+ &msm8998_dspp_sblk),
+};
+
+static const struct dpu_intf_cfg msm8998_intf[] = {
+ INTF_BLK("intf_0", INTF_0, 0x6a000, 0x280, INTF_DP, 0, 25, INTF_SDM845_MASK, MDP_SSPP_TOP0_INTR, 24, 25),
+ INTF_BLK("intf_1", INTF_1, 0x6a800, 0x280, INTF_DSI, 0, 25, INTF_SDM845_MASK, MDP_SSPP_TOP0_INTR, 26, 27),
+ INTF_BLK("intf_2", INTF_2, 0x6b000, 0x280, INTF_DSI, 1, 25, INTF_SDM845_MASK, MDP_SSPP_TOP0_INTR, 28, 29),
+ INTF_BLK("intf_3", INTF_3, 0x6b800, 0x280, INTF_HDMI, 0, 25, INTF_SDM845_MASK, MDP_SSPP_TOP0_INTR, 30, 31),
+};
+
+static const struct dpu_perf_cfg msm8998_perf_data = {
+ .max_bw_low = 6700000,
+ .max_bw_high = 6700000,
+ .min_core_ib = 2400000,
+ .min_llcc_ib = 800000,
+ .min_dram_ib = 800000,
+ .undersized_prefill_lines = 2,
+ .xtra_prefill_lines = 2,
+ .dest_scale_prefill_lines = 3,
+ .macrotile_prefill_lines = 4,
+ .yuv_nv12_prefill_lines = 8,
+ .linear_prefill_lines = 1,
+ .downscaling_prefill_lines = 1,
+ .amortizable_threshold = 25,
+ .min_prefill_lines = 25,
+ .danger_lut_tbl = {0xf, 0xffff, 0x0},
+ .safe_lut_tbl = {0xfffc, 0xff00, 0xffff},
+ .qos_lut_tbl = {
+ {.nentry = ARRAY_SIZE(msm8998_qos_linear),
+ .entries = msm8998_qos_linear
+ },
+ {.nentry = ARRAY_SIZE(msm8998_qos_macrotile),
+ .entries = msm8998_qos_macrotile
+ },
+ {.nentry = ARRAY_SIZE(msm8998_qos_nrt),
+ .entries = msm8998_qos_nrt
+ },
+ },
+ .cdp_cfg = {
+ {.rd_enable = 1, .wr_enable = 1},
+ {.rd_enable = 1, .wr_enable = 0}
+ },
+ .clk_inefficiency_factor = 200,
+ .bw_inefficiency_factor = 120,
+};
+
+const struct dpu_mdss_cfg dpu_msm8998_cfg = {
+ .caps = &msm8998_dpu_caps,
+ .ubwc = &msm8998_ubwc_cfg,
+ .mdp_count = ARRAY_SIZE(msm8998_mdp),
+ .mdp = msm8998_mdp,
+ .ctl_count = ARRAY_SIZE(msm8998_ctl),
+ .ctl = msm8998_ctl,
+ .sspp_count = ARRAY_SIZE(msm8998_sspp),
+ .sspp = msm8998_sspp,
+ .mixer_count = ARRAY_SIZE(msm8998_lm),
+ .mixer = msm8998_lm,
+ .dspp_count = ARRAY_SIZE(msm8998_dspp),
+ .dspp = msm8998_dspp,
+ .pingpong_count = ARRAY_SIZE(msm8998_pp),
+ .pingpong = msm8998_pp,
+ .intf_count = ARRAY_SIZE(msm8998_intf),
+ .intf = msm8998_intf,
+ .vbif_count = ARRAY_SIZE(msm8998_vbif),
+ .vbif = msm8998_vbif,
+ .reg_dma_count = 0,
+ .perf = &msm8998_perf_data,
+ .mdss_irqs = BIT(MDP_SSPP_TOP0_INTR) | \
+ BIT(MDP_SSPP_TOP0_INTR2) | \
+ BIT(MDP_SSPP_TOP0_HIST_INTR) | \
+ BIT(MDP_INTF0_INTR) | \
+ BIT(MDP_INTF1_INTR) | \
+ BIT(MDP_INTF2_INTR) | \
+ BIT(MDP_INTF3_INTR) | \
+ BIT(MDP_INTF4_INTR),
+};
+
+#endif
diff --git a/drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_4_0_sdm845.h b/drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_4_0_sdm845.h
new file mode 100644
index 000000000000..ceca741e93c9
--- /dev/null
+++ b/drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_4_0_sdm845.h
@@ -0,0 +1,210 @@
+/* SPDX-License-Identifier: GPL-2.0-only */
+/*
+ * Copyright (c) 2022. Qualcomm Innovation Center, Inc. All rights reserved.
+ * Copyright (c) 2015-2018, 2020 The Linux Foundation. All rights reserved.
+ */
+
+#ifndef _DPU_4_0_SDM845_H
+#define _DPU_4_0_SDM845_H
+
+static const struct dpu_caps sdm845_dpu_caps = {
+ .max_mixer_width = DEFAULT_DPU_OUTPUT_LINE_WIDTH,
+ .max_mixer_blendstages = 0xb,
+ .qseed_type = DPU_SSPP_SCALER_QSEED3,
+ .has_src_split = true,
+ .has_dim_layer = true,
+ .has_idle_pc = true,
+ .has_3d_merge = true,
+ .max_linewidth = DEFAULT_DPU_OUTPUT_LINE_WIDTH,
+ .pixel_ram_size = DEFAULT_PIXEL_RAM_SIZE,
+ .max_hdeci_exp = MAX_HORZ_DECIMATION,
+ .max_vdeci_exp = MAX_VERT_DECIMATION,
+};
+
+static const struct dpu_ubwc_cfg sdm845_ubwc_cfg = {
+ .ubwc_version = DPU_HW_UBWC_VER_20,
+ .highest_bank_bit = 0x2,
+};
+
+static const struct dpu_mdp_cfg sdm845_mdp[] = {
+ {
+ .name = "top_0", .id = MDP_TOP,
+ .base = 0x0, .len = 0x45c,
+ .features = BIT(DPU_MDP_AUDIO_SELECT),
+ .clk_ctrls[DPU_CLK_CTRL_VIG0] = { .reg_off = 0x2ac, .bit_off = 0 },
+ .clk_ctrls[DPU_CLK_CTRL_VIG1] = { .reg_off = 0x2b4, .bit_off = 0 },
+ .clk_ctrls[DPU_CLK_CTRL_VIG2] = { .reg_off = 0x2bc, .bit_off = 0 },
+ .clk_ctrls[DPU_CLK_CTRL_VIG3] = { .reg_off = 0x2c4, .bit_off = 0 },
+ .clk_ctrls[DPU_CLK_CTRL_DMA0] = { .reg_off = 0x2ac, .bit_off = 8 },
+ .clk_ctrls[DPU_CLK_CTRL_DMA1] = { .reg_off = 0x2b4, .bit_off = 8 },
+ .clk_ctrls[DPU_CLK_CTRL_DMA2] = { .reg_off = 0x2bc, .bit_off = 8 },
+ .clk_ctrls[DPU_CLK_CTRL_DMA3] = { .reg_off = 0x2c4, .bit_off = 8 },
+ },
+};
+
+static const struct dpu_ctl_cfg sdm845_ctl[] = {
+ {
+ .name = "ctl_0", .id = CTL_0,
+ .base = 0x1000, .len = 0xe4,
+ .features = BIT(DPU_CTL_SPLIT_DISPLAY),
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 9),
+ },
+ {
+ .name = "ctl_1", .id = CTL_1,
+ .base = 0x1200, .len = 0xe4,
+ .features = BIT(DPU_CTL_SPLIT_DISPLAY),
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 10),
+ },
+ {
+ .name = "ctl_2", .id = CTL_2,
+ .base = 0x1400, .len = 0xe4,
+ .features = 0,
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 11),
+ },
+ {
+ .name = "ctl_3", .id = CTL_3,
+ .base = 0x1600, .len = 0xe4,
+ .features = 0,
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 12),
+ },
+ {
+ .name = "ctl_4", .id = CTL_4,
+ .base = 0x1800, .len = 0xe4,
+ .features = 0,
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 13),
+ },
+};
+
+static const struct dpu_sspp_cfg sdm845_sspp[] = {
+ SSPP_BLK("sspp_0", SSPP_VIG0, 0x4000, 0x1c8, VIG_SDM845_MASK_SDMA,
+ sdm845_vig_sblk_0, 0, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG0),
+ SSPP_BLK("sspp_1", SSPP_VIG1, 0x6000, 0x1c8, VIG_SDM845_MASK_SDMA,
+ sdm845_vig_sblk_1, 4, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG1),
+ SSPP_BLK("sspp_2", SSPP_VIG2, 0x8000, 0x1c8, VIG_SDM845_MASK_SDMA,
+ sdm845_vig_sblk_2, 8, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG2),
+ SSPP_BLK("sspp_3", SSPP_VIG3, 0xa000, 0x1c8, VIG_SDM845_MASK_SDMA,
+ sdm845_vig_sblk_3, 12, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG3),
+ SSPP_BLK("sspp_8", SSPP_DMA0, 0x24000, 0x1c8, DMA_SDM845_MASK_SDMA,
+ sdm845_dma_sblk_0, 1, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA0),
+ SSPP_BLK("sspp_9", SSPP_DMA1, 0x26000, 0x1c8, DMA_SDM845_MASK_SDMA,
+ sdm845_dma_sblk_1, 5, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA1),
+ SSPP_BLK("sspp_10", SSPP_DMA2, 0x28000, 0x1c8, DMA_CURSOR_SDM845_MASK_SDMA,
+ sdm845_dma_sblk_2, 9, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA2),
+ SSPP_BLK("sspp_11", SSPP_DMA3, 0x2a000, 0x1c8, DMA_CURSOR_SDM845_MASK_SDMA,
+ sdm845_dma_sblk_3, 13, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA3),
+};
+
+static const struct dpu_lm_cfg sdm845_lm[] = {
+ LM_BLK("lm_0", LM_0, 0x44000, MIXER_SDM845_MASK,
+ &sdm845_lm_sblk, PINGPONG_0, LM_1, 0),
+ LM_BLK("lm_1", LM_1, 0x45000, MIXER_SDM845_MASK,
+ &sdm845_lm_sblk, PINGPONG_1, LM_0, 0),
+ LM_BLK("lm_2", LM_2, 0x46000, MIXER_SDM845_MASK,
+ &sdm845_lm_sblk, PINGPONG_2, LM_5, 0),
+ LM_BLK("lm_3", LM_3, 0x0, MIXER_SDM845_MASK,
+ &sdm845_lm_sblk, PINGPONG_MAX, 0, 0),
+ LM_BLK("lm_4", LM_4, 0x0, MIXER_SDM845_MASK,
+ &sdm845_lm_sblk, PINGPONG_MAX, 0, 0),
+ LM_BLK("lm_5", LM_5, 0x49000, MIXER_SDM845_MASK,
+ &sdm845_lm_sblk, PINGPONG_3, LM_2, 0),
+};
+
+static const struct dpu_pingpong_cfg sdm845_pp[] = {
+ PP_BLK_TE("pingpong_0", PINGPONG_0, 0x70000, 0, sdm845_pp_sblk_te,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 8),
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 12)),
+ PP_BLK_TE("pingpong_1", PINGPONG_1, 0x70800, 0, sdm845_pp_sblk_te,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 9),
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 13)),
+ PP_BLK("pingpong_2", PINGPONG_2, 0x71000, 0, sdm845_pp_sblk,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 10),
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 14)),
+ PP_BLK("pingpong_3", PINGPONG_3, 0x71800, 0, sdm845_pp_sblk,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 11),
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 15)),
+};
+
+static const struct dpu_dsc_cfg sdm845_dsc[] = {
+ DSC_BLK("dsc_0", DSC_0, 0x80000, 0),
+ DSC_BLK("dsc_1", DSC_1, 0x80400, 0),
+ DSC_BLK("dsc_2", DSC_2, 0x80800, 0),
+ DSC_BLK("dsc_3", DSC_3, 0x80c00, 0),
+};
+
+static const struct dpu_intf_cfg sdm845_intf[] = {
+ INTF_BLK("intf_0", INTF_0, 0x6a000, 0x280, INTF_DP, 0, 24, INTF_SDM845_MASK, MDP_SSPP_TOP0_INTR, 24, 25),
+ INTF_BLK("intf_1", INTF_1, 0x6a800, 0x280, INTF_DSI, 0, 24, INTF_SDM845_MASK, MDP_SSPP_TOP0_INTR, 26, 27),
+ INTF_BLK("intf_2", INTF_2, 0x6b000, 0x280, INTF_DSI, 1, 24, INTF_SDM845_MASK, MDP_SSPP_TOP0_INTR, 28, 29),
+ INTF_BLK("intf_3", INTF_3, 0x6b800, 0x280, INTF_DP, 1, 24, INTF_SDM845_MASK, MDP_SSPP_TOP0_INTR, 30, 31),
+};
+
+static const struct dpu_perf_cfg sdm845_perf_data = {
+ .max_bw_low = 6800000,
+ .max_bw_high = 6800000,
+ .min_core_ib = 2400000,
+ .min_llcc_ib = 800000,
+ .min_dram_ib = 800000,
+ .undersized_prefill_lines = 2,
+ .xtra_prefill_lines = 2,
+ .dest_scale_prefill_lines = 3,
+ .macrotile_prefill_lines = 4,
+ .yuv_nv12_prefill_lines = 8,
+ .linear_prefill_lines = 1,
+ .downscaling_prefill_lines = 1,
+ .amortizable_threshold = 25,
+ .min_prefill_lines = 24,
+ .danger_lut_tbl = {0xf, 0xffff, 0x0},
+ .safe_lut_tbl = {0xfff0, 0xf000, 0xffff},
+ .qos_lut_tbl = {
+ {.nentry = ARRAY_SIZE(sdm845_qos_linear),
+ .entries = sdm845_qos_linear
+ },
+ {.nentry = ARRAY_SIZE(sdm845_qos_macrotile),
+ .entries = sdm845_qos_macrotile
+ },
+ {.nentry = ARRAY_SIZE(sdm845_qos_nrt),
+ .entries = sdm845_qos_nrt
+ },
+ },
+ .cdp_cfg = {
+ {.rd_enable = 1, .wr_enable = 1},
+ {.rd_enable = 1, .wr_enable = 0}
+ },
+ .clk_inefficiency_factor = 105,
+ .bw_inefficiency_factor = 120,
+};
+
+const struct dpu_mdss_cfg dpu_sdm845_cfg = {
+ .caps = &sdm845_dpu_caps,
+ .ubwc = &sdm845_ubwc_cfg,
+ .mdp_count = ARRAY_SIZE(sdm845_mdp),
+ .mdp = sdm845_mdp,
+ .ctl_count = ARRAY_SIZE(sdm845_ctl),
+ .ctl = sdm845_ctl,
+ .sspp_count = ARRAY_SIZE(sdm845_sspp),
+ .sspp = sdm845_sspp,
+ .mixer_count = ARRAY_SIZE(sdm845_lm),
+ .mixer = sdm845_lm,
+ .pingpong_count = ARRAY_SIZE(sdm845_pp),
+ .pingpong = sdm845_pp,
+ .dsc_count = ARRAY_SIZE(sdm845_dsc),
+ .dsc = sdm845_dsc,
+ .intf_count = ARRAY_SIZE(sdm845_intf),
+ .intf = sdm845_intf,
+ .vbif_count = ARRAY_SIZE(sdm845_vbif),
+ .vbif = sdm845_vbif,
+ .reg_dma_count = 1,
+ .dma_cfg = &sdm845_regdma,
+ .perf = &sdm845_perf_data,
+ .mdss_irqs = BIT(MDP_SSPP_TOP0_INTR) | \
+ BIT(MDP_SSPP_TOP0_INTR2) | \
+ BIT(MDP_SSPP_TOP0_HIST_INTR) | \
+ BIT(MDP_INTF0_INTR) | \
+ BIT(MDP_INTF1_INTR) | \
+ BIT(MDP_INTF2_INTR) | \
+ BIT(MDP_INTF3_INTR) | \
+ BIT(MDP_AD4_0_INTR) | \
+ BIT(MDP_AD4_1_INTR),
+};
+
+#endif
diff --git a/drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_5_0_sm8150.h b/drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_5_0_sm8150.h
new file mode 100644
index 000000000000..282d410269ff
--- /dev/null
+++ b/drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_5_0_sm8150.h
@@ -0,0 +1,237 @@
+/* SPDX-License-Identifier: GPL-2.0-only */
+/*
+ * Copyright (c) 2022. Qualcomm Innovation Center, Inc. All rights reserved.
+ * Copyright (c) 2015-2018, 2020 The Linux Foundation. All rights reserved.
+ */
+
+#ifndef _DPU_5_0_SM8150_H
+#define _DPU_5_0_SM8150_H
+
+static const struct dpu_caps sm8150_dpu_caps = {
+ .max_mixer_width = DEFAULT_DPU_OUTPUT_LINE_WIDTH,
+ .max_mixer_blendstages = 0xb,
+ .qseed_type = DPU_SSPP_SCALER_QSEED3,
+ .has_src_split = true,
+ .has_dim_layer = true,
+ .has_idle_pc = true,
+ .has_3d_merge = true,
+ .max_linewidth = 4096,
+ .pixel_ram_size = DEFAULT_PIXEL_RAM_SIZE,
+ .max_hdeci_exp = MAX_HORZ_DECIMATION,
+ .max_vdeci_exp = MAX_VERT_DECIMATION,
+};
+
+static const struct dpu_ubwc_cfg sm8150_ubwc_cfg = {
+ .ubwc_version = DPU_HW_UBWC_VER_30,
+ .highest_bank_bit = 0x2,
+};
+
+static const struct dpu_mdp_cfg sm8150_mdp[] = {
+ {
+ .name = "top_0", .id = MDP_TOP,
+ .base = 0x0, .len = 0x45c,
+ .features = BIT(DPU_MDP_AUDIO_SELECT),
+ .clk_ctrls[DPU_CLK_CTRL_VIG0] = { .reg_off = 0x2ac, .bit_off = 0 },
+ .clk_ctrls[DPU_CLK_CTRL_VIG1] = { .reg_off = 0x2b4, .bit_off = 0 },
+ .clk_ctrls[DPU_CLK_CTRL_VIG2] = { .reg_off = 0x2bc, .bit_off = 0 },
+ .clk_ctrls[DPU_CLK_CTRL_VIG3] = { .reg_off = 0x2c4, .bit_off = 0 },
+ .clk_ctrls[DPU_CLK_CTRL_DMA0] = { .reg_off = 0x2ac, .bit_off = 8 },
+ .clk_ctrls[DPU_CLK_CTRL_DMA1] = { .reg_off = 0x2b4, .bit_off = 8 },
+ .clk_ctrls[DPU_CLK_CTRL_DMA2] = { .reg_off = 0x2bc, .bit_off = 8 },
+ .clk_ctrls[DPU_CLK_CTRL_DMA3] = { .reg_off = 0x2c4, .bit_off = 8 },
+ },
+};
+
+/* FIXME: get rid of DPU_CTL_SPLIT_DISPLAY in favour of proper ACTIVE_CTL support */
+static const struct dpu_ctl_cfg sm8150_ctl[] = {
+ {
+ .name = "ctl_0", .id = CTL_0,
+ .base = 0x1000, .len = 0x1e0,
+ .features = BIT(DPU_CTL_ACTIVE_CFG) | BIT(DPU_CTL_SPLIT_DISPLAY),
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 9),
+ },
+ {
+ .name = "ctl_1", .id = CTL_1,
+ .base = 0x1200, .len = 0x1e0,
+ .features = BIT(DPU_CTL_ACTIVE_CFG) | BIT(DPU_CTL_SPLIT_DISPLAY),
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 10),
+ },
+ {
+ .name = "ctl_2", .id = CTL_2,
+ .base = 0x1400, .len = 0x1e0,
+ .features = BIT(DPU_CTL_ACTIVE_CFG),
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 11),
+ },
+ {
+ .name = "ctl_3", .id = CTL_3,
+ .base = 0x1600, .len = 0x1e0,
+ .features = BIT(DPU_CTL_ACTIVE_CFG),
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 12),
+ },
+ {
+ .name = "ctl_4", .id = CTL_4,
+ .base = 0x1800, .len = 0x1e0,
+ .features = BIT(DPU_CTL_ACTIVE_CFG),
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 13),
+ },
+ {
+ .name = "ctl_5", .id = CTL_5,
+ .base = 0x1a00, .len = 0x1e0,
+ .features = BIT(DPU_CTL_ACTIVE_CFG),
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 23),
+ },
+};
+
+static const struct dpu_sspp_cfg sm8150_sspp[] = {
+ SSPP_BLK("sspp_0", SSPP_VIG0, 0x4000, 0x1f0, VIG_SDM845_MASK,
+ sdm845_vig_sblk_0, 0, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG0),
+ SSPP_BLK("sspp_1", SSPP_VIG1, 0x6000, 0x1f0, VIG_SDM845_MASK,
+ sdm845_vig_sblk_1, 4, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG1),
+ SSPP_BLK("sspp_2", SSPP_VIG2, 0x8000, 0x1f0, VIG_SDM845_MASK,
+ sdm845_vig_sblk_2, 8, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG2),
+ SSPP_BLK("sspp_3", SSPP_VIG3, 0xa000, 0x1f0, VIG_SDM845_MASK,
+ sdm845_vig_sblk_3, 12, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG3),
+ SSPP_BLK("sspp_8", SSPP_DMA0, 0x24000, 0x1f0, DMA_SDM845_MASK,
+ sdm845_dma_sblk_0, 1, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA0),
+ SSPP_BLK("sspp_9", SSPP_DMA1, 0x26000, 0x1f0, DMA_SDM845_MASK,
+ sdm845_dma_sblk_1, 5, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA1),
+ SSPP_BLK("sspp_10", SSPP_DMA2, 0x28000, 0x1f0, DMA_CURSOR_SDM845_MASK,
+ sdm845_dma_sblk_2, 9, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA2),
+ SSPP_BLK("sspp_11", SSPP_DMA3, 0x2a000, 0x1f0, DMA_CURSOR_SDM845_MASK,
+ sdm845_dma_sblk_3, 13, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA3),
+};
+
+static const struct dpu_lm_cfg sm8150_lm[] = {
+ LM_BLK("lm_0", LM_0, 0x44000, MIXER_SDM845_MASK,
+ &sdm845_lm_sblk, PINGPONG_0, LM_1, DSPP_0),
+ LM_BLK("lm_1", LM_1, 0x45000, MIXER_SDM845_MASK,
+ &sdm845_lm_sblk, PINGPONG_1, LM_0, DSPP_1),
+ LM_BLK("lm_2", LM_2, 0x46000, MIXER_SDM845_MASK,
+ &sdm845_lm_sblk, PINGPONG_2, LM_3, 0),
+ LM_BLK("lm_3", LM_3, 0x47000, MIXER_SDM845_MASK,
+ &sdm845_lm_sblk, PINGPONG_3, LM_2, 0),
+ LM_BLK("lm_4", LM_4, 0x48000, MIXER_SDM845_MASK,
+ &sdm845_lm_sblk, PINGPONG_4, LM_5, 0),
+ LM_BLK("lm_5", LM_5, 0x49000, MIXER_SDM845_MASK,
+ &sdm845_lm_sblk, PINGPONG_5, LM_4, 0),
+};
+
+static const struct dpu_dspp_cfg sm8150_dspp[] = {
+ DSPP_BLK("dspp_0", DSPP_0, 0x54000, DSPP_SC7180_MASK,
+ &sm8150_dspp_sblk),
+ DSPP_BLK("dspp_1", DSPP_1, 0x56000, DSPP_SC7180_MASK,
+ &sm8150_dspp_sblk),
+ DSPP_BLK("dspp_2", DSPP_2, 0x58000, DSPP_SC7180_MASK,
+ &sm8150_dspp_sblk),
+ DSPP_BLK("dspp_3", DSPP_3, 0x5a000, DSPP_SC7180_MASK,
+ &sm8150_dspp_sblk),
+};
+
+static const struct dpu_pingpong_cfg sm8150_pp[] = {
+ PP_BLK_TE("pingpong_0", PINGPONG_0, 0x70000, MERGE_3D_0, sdm845_pp_sblk_te,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 8),
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 12)),
+ PP_BLK_TE("pingpong_1", PINGPONG_1, 0x70800, MERGE_3D_0, sdm845_pp_sblk_te,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 9),
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 13)),
+ PP_BLK("pingpong_2", PINGPONG_2, 0x71000, MERGE_3D_1, sdm845_pp_sblk,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 10),
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 14)),
+ PP_BLK("pingpong_3", PINGPONG_3, 0x71800, MERGE_3D_1, sdm845_pp_sblk,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 11),
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 15)),
+ PP_BLK("pingpong_4", PINGPONG_4, 0x72000, MERGE_3D_2, sdm845_pp_sblk,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 30),
+ -1),
+ PP_BLK("pingpong_5", PINGPONG_5, 0x72800, MERGE_3D_2, sdm845_pp_sblk,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 31),
+ -1),
+};
+
+static const struct dpu_merge_3d_cfg sm8150_merge_3d[] = {
+ MERGE_3D_BLK("merge_3d_0", MERGE_3D_0, 0x83000),
+ MERGE_3D_BLK("merge_3d_1", MERGE_3D_1, 0x83100),
+ MERGE_3D_BLK("merge_3d_2", MERGE_3D_2, 0x83200),
+};
+
+static const struct dpu_dsc_cfg sm8150_dsc[] = {
+ DSC_BLK("dsc_0", DSC_0, 0x80000, BIT(DPU_DSC_OUTPUT_CTRL)),
+ DSC_BLK("dsc_1", DSC_1, 0x80400, BIT(DPU_DSC_OUTPUT_CTRL)),
+ DSC_BLK("dsc_2", DSC_2, 0x80800, BIT(DPU_DSC_OUTPUT_CTRL)),
+ DSC_BLK("dsc_3", DSC_3, 0x80c00, BIT(DPU_DSC_OUTPUT_CTRL)),
+};
+
+static const struct dpu_intf_cfg sm8150_intf[] = {
+ INTF_BLK("intf_0", INTF_0, 0x6a000, 0x280, INTF_DP, 0, 24, INTF_SC7180_MASK, MDP_SSPP_TOP0_INTR, 24, 25),
+ INTF_BLK("intf_1", INTF_1, 0x6a800, 0x2bc, INTF_DSI, 0, 24, INTF_SC7180_MASK, MDP_SSPP_TOP0_INTR, 26, 27),
+ INTF_BLK("intf_2", INTF_2, 0x6b000, 0x2bc, INTF_DSI, 1, 24, INTF_SC7180_MASK, MDP_SSPP_TOP0_INTR, 28, 29),
+ INTF_BLK("intf_3", INTF_3, 0x6b800, 0x280, INTF_DP, 1, 24, INTF_SC7180_MASK, MDP_SSPP_TOP0_INTR, 30, 31),
+};
+
+static const struct dpu_perf_cfg sm8150_perf_data = {
+ .max_bw_low = 12800000,
+ .max_bw_high = 12800000,
+ .min_core_ib = 2400000,
+ .min_llcc_ib = 800000,
+ .min_dram_ib = 800000,
+ .min_prefill_lines = 24,
+ .danger_lut_tbl = {0xf, 0xffff, 0x0},
+ .safe_lut_tbl = {0xfff8, 0xf000, 0xffff},
+ .qos_lut_tbl = {
+ {.nentry = ARRAY_SIZE(sm8150_qos_linear),
+ .entries = sm8150_qos_linear
+ },
+ {.nentry = ARRAY_SIZE(sc7180_qos_macrotile),
+ .entries = sc7180_qos_macrotile
+ },
+ {.nentry = ARRAY_SIZE(sc7180_qos_nrt),
+ .entries = sc7180_qos_nrt
+ },
+ /* TODO: macrotile-qseed is different from macrotile */
+ },
+ .cdp_cfg = {
+ {.rd_enable = 1, .wr_enable = 1},
+ {.rd_enable = 1, .wr_enable = 0}
+ },
+ .clk_inefficiency_factor = 105,
+ .bw_inefficiency_factor = 120,
+};
+
+const struct dpu_mdss_cfg dpu_sm8150_cfg = {
+ .caps = &sm8150_dpu_caps,
+ .ubwc = &sm8150_ubwc_cfg,
+ .mdp_count = ARRAY_SIZE(sm8150_mdp),
+ .mdp = sm8150_mdp,
+ .ctl_count = ARRAY_SIZE(sm8150_ctl),
+ .ctl = sm8150_ctl,
+ .sspp_count = ARRAY_SIZE(sm8150_sspp),
+ .sspp = sm8150_sspp,
+ .mixer_count = ARRAY_SIZE(sm8150_lm),
+ .mixer = sm8150_lm,
+ .dspp_count = ARRAY_SIZE(sm8150_dspp),
+ .dspp = sm8150_dspp,
+ .dsc_count = ARRAY_SIZE(sm8150_dsc),
+ .dsc = sm8150_dsc,
+ .pingpong_count = ARRAY_SIZE(sm8150_pp),
+ .pingpong = sm8150_pp,
+ .merge_3d_count = ARRAY_SIZE(sm8150_merge_3d),
+ .merge_3d = sm8150_merge_3d,
+ .intf_count = ARRAY_SIZE(sm8150_intf),
+ .intf = sm8150_intf,
+ .vbif_count = ARRAY_SIZE(sdm845_vbif),
+ .vbif = sdm845_vbif,
+ .reg_dma_count = 1,
+ .dma_cfg = &sm8150_regdma,
+ .perf = &sm8150_perf_data,
+ .mdss_irqs = BIT(MDP_SSPP_TOP0_INTR) | \
+ BIT(MDP_SSPP_TOP0_INTR2) | \
+ BIT(MDP_SSPP_TOP0_HIST_INTR) | \
+ BIT(MDP_INTF0_INTR) | \
+ BIT(MDP_INTF1_INTR) | \
+ BIT(MDP_INTF2_INTR) | \
+ BIT(MDP_INTF3_INTR) | \
+ BIT(MDP_AD4_0_INTR) | \
+ BIT(MDP_AD4_1_INTR),
+};
+
+#endif
diff --git a/drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_5_1_sc8180x.h b/drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_5_1_sc8180x.h
new file mode 100644
index 000000000000..c57400265f28
--- /dev/null
+++ b/drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_5_1_sc8180x.h
@@ -0,0 +1,217 @@
+/* SPDX-License-Identifier: GPL-2.0-only */
+/*
+ * Copyright (c) 2022. Qualcomm Innovation Center, Inc. All rights reserved.
+ * Copyright (c) 2015-2018, 2020 The Linux Foundation. All rights reserved.
+ */
+
+#ifndef _DPU_5_1_SC8180X_H
+#define _DPU_5_1_SC8180X_H
+
+static const struct dpu_caps sc8180x_dpu_caps = {
+ .max_mixer_width = DEFAULT_DPU_OUTPUT_LINE_WIDTH,
+ .max_mixer_blendstages = 0xb,
+ .qseed_type = DPU_SSPP_SCALER_QSEED3,
+ .has_src_split = true,
+ .has_dim_layer = true,
+ .has_idle_pc = true,
+ .has_3d_merge = true,
+ .max_linewidth = 4096,
+ .pixel_ram_size = DEFAULT_PIXEL_RAM_SIZE,
+ .max_hdeci_exp = MAX_HORZ_DECIMATION,
+ .max_vdeci_exp = MAX_VERT_DECIMATION,
+};
+
+static const struct dpu_ubwc_cfg sc8180x_ubwc_cfg = {
+ .ubwc_version = DPU_HW_UBWC_VER_30,
+ .highest_bank_bit = 0x3,
+};
+
+static const struct dpu_mdp_cfg sc8180x_mdp[] = {
+ {
+ .name = "top_0", .id = MDP_TOP,
+ .base = 0x0, .len = 0x45c,
+ .features = BIT(DPU_MDP_AUDIO_SELECT),
+ .clk_ctrls[DPU_CLK_CTRL_VIG0] = { .reg_off = 0x2ac, .bit_off = 0 },
+ .clk_ctrls[DPU_CLK_CTRL_VIG1] = { .reg_off = 0x2b4, .bit_off = 0 },
+ .clk_ctrls[DPU_CLK_CTRL_VIG2] = { .reg_off = 0x2bc, .bit_off = 0 },
+ .clk_ctrls[DPU_CLK_CTRL_VIG3] = { .reg_off = 0x2c4, .bit_off = 0 },
+ .clk_ctrls[DPU_CLK_CTRL_DMA0] = { .reg_off = 0x2ac, .bit_off = 8 },
+ .clk_ctrls[DPU_CLK_CTRL_DMA1] = { .reg_off = 0x2b4, .bit_off = 8 },
+ .clk_ctrls[DPU_CLK_CTRL_DMA2] = { .reg_off = 0x2bc, .bit_off = 8 },
+ .clk_ctrls[DPU_CLK_CTRL_DMA3] = { .reg_off = 0x2c4, .bit_off = 8 },
+ },
+};
+
+static const struct dpu_ctl_cfg sc8180x_ctl[] = {
+ {
+ .name = "ctl_0", .id = CTL_0,
+ .base = 0x1000, .len = 0x1e0,
+ .features = BIT(DPU_CTL_ACTIVE_CFG) | BIT(DPU_CTL_SPLIT_DISPLAY),
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 9),
+ },
+ {
+ .name = "ctl_1", .id = CTL_1,
+ .base = 0x1200, .len = 0x1e0,
+ .features = BIT(DPU_CTL_ACTIVE_CFG) | BIT(DPU_CTL_SPLIT_DISPLAY),
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 10),
+ },
+ {
+ .name = "ctl_2", .id = CTL_2,
+ .base = 0x1400, .len = 0x1e0,
+ .features = BIT(DPU_CTL_ACTIVE_CFG),
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 11),
+ },
+ {
+ .name = "ctl_3", .id = CTL_3,
+ .base = 0x1600, .len = 0x1e0,
+ .features = BIT(DPU_CTL_ACTIVE_CFG),
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 12),
+ },
+ {
+ .name = "ctl_4", .id = CTL_4,
+ .base = 0x1800, .len = 0x1e0,
+ .features = BIT(DPU_CTL_ACTIVE_CFG),
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 13),
+ },
+ {
+ .name = "ctl_5", .id = CTL_5,
+ .base = 0x1a00, .len = 0x1e0,
+ .features = BIT(DPU_CTL_ACTIVE_CFG),
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 23),
+ },
+};
+
+static const struct dpu_sspp_cfg sc8180x_sspp[] = {
+ SSPP_BLK("sspp_0", SSPP_VIG0, 0x4000, 0x1f0, VIG_SDM845_MASK,
+ sdm845_vig_sblk_0, 0, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG0),
+ SSPP_BLK("sspp_1", SSPP_VIG1, 0x6000, 0x1f0, VIG_SDM845_MASK,
+ sdm845_vig_sblk_1, 4, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG1),
+ SSPP_BLK("sspp_2", SSPP_VIG2, 0x8000, 0x1f0, VIG_SDM845_MASK,
+ sdm845_vig_sblk_2, 8, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG2),
+ SSPP_BLK("sspp_3", SSPP_VIG3, 0xa000, 0x1f0, VIG_SDM845_MASK,
+ sdm845_vig_sblk_3, 12, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG3),
+ SSPP_BLK("sspp_8", SSPP_DMA0, 0x24000, 0x1f0, DMA_SDM845_MASK,
+ sdm845_dma_sblk_0, 1, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA0),
+ SSPP_BLK("sspp_9", SSPP_DMA1, 0x26000, 0x1f0, DMA_SDM845_MASK,
+ sdm845_dma_sblk_1, 5, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA1),
+ SSPP_BLK("sspp_10", SSPP_DMA2, 0x28000, 0x1f0, DMA_CURSOR_SDM845_MASK,
+ sdm845_dma_sblk_2, 9, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA2),
+ SSPP_BLK("sspp_11", SSPP_DMA3, 0x2a000, 0x1f0, DMA_CURSOR_SDM845_MASK,
+ sdm845_dma_sblk_3, 13, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA3),
+};
+
+static const struct dpu_lm_cfg sc8180x_lm[] = {
+ LM_BLK("lm_0", LM_0, 0x44000, MIXER_SDM845_MASK,
+ &sdm845_lm_sblk, PINGPONG_0, LM_1, 0),
+ LM_BLK("lm_1", LM_1, 0x45000, MIXER_SDM845_MASK,
+ &sdm845_lm_sblk, PINGPONG_1, LM_0, 0),
+ LM_BLK("lm_2", LM_2, 0x46000, MIXER_SDM845_MASK,
+ &sdm845_lm_sblk, PINGPONG_2, LM_3, 0),
+ LM_BLK("lm_3", LM_3, 0x47000, MIXER_SDM845_MASK,
+ &sdm845_lm_sblk, PINGPONG_3, LM_2, 0),
+ LM_BLK("lm_4", LM_4, 0x48000, MIXER_SDM845_MASK,
+ &sdm845_lm_sblk, PINGPONG_4, LM_5, 0),
+ LM_BLK("lm_5", LM_5, 0x49000, MIXER_SDM845_MASK,
+ &sdm845_lm_sblk, PINGPONG_5, LM_4, 0),
+};
+
+static const struct dpu_pingpong_cfg sc8180x_pp[] = {
+ PP_BLK_TE("pingpong_0", PINGPONG_0, 0x70000, MERGE_3D_0, sdm845_pp_sblk_te,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 8),
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 12)),
+ PP_BLK_TE("pingpong_1", PINGPONG_1, 0x70800, MERGE_3D_0, sdm845_pp_sblk_te,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 9),
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 13)),
+ PP_BLK("pingpong_2", PINGPONG_2, 0x71000, MERGE_3D_1, sdm845_pp_sblk,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 10),
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 14)),
+ PP_BLK("pingpong_3", PINGPONG_3, 0x71800, MERGE_3D_1, sdm845_pp_sblk,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 11),
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 15)),
+ PP_BLK("pingpong_4", PINGPONG_4, 0x72000, MERGE_3D_2, sdm845_pp_sblk,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 30),
+ -1),
+ PP_BLK("pingpong_5", PINGPONG_5, 0x72800, MERGE_3D_2, sdm845_pp_sblk,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 31),
+ -1),
+};
+
+static const struct dpu_merge_3d_cfg sc8180x_merge_3d[] = {
+ MERGE_3D_BLK("merge_3d_0", MERGE_3D_0, 0x83000),
+ MERGE_3D_BLK("merge_3d_1", MERGE_3D_1, 0x83100),
+ MERGE_3D_BLK("merge_3d_2", MERGE_3D_2, 0x83200),
+};
+
+static const struct dpu_intf_cfg sc8180x_intf[] = {
+ INTF_BLK("intf_0", INTF_0, 0x6a000, 0x280, INTF_DP, MSM_DP_CONTROLLER_0, 24, INTF_SC7180_MASK, MDP_SSPP_TOP0_INTR, 24, 25),
+ INTF_BLK("intf_1", INTF_1, 0x6a800, 0x2bc, INTF_DSI, 0, 24, INTF_SC7180_MASK, MDP_SSPP_TOP0_INTR, 26, 27),
+ INTF_BLK("intf_2", INTF_2, 0x6b000, 0x2bc, INTF_DSI, 1, 24, INTF_SC7180_MASK, MDP_SSPP_TOP0_INTR, 28, 29),
+ /* INTF_3 is for MST, wired to INTF_DP 0 and 1, use dummy index until this is supported */
+ INTF_BLK("intf_3", INTF_3, 0x6b800, 0x280, INTF_DP, 999, 24, INTF_SC7180_MASK, MDP_SSPP_TOP0_INTR, 30, 31),
+ INTF_BLK("intf_4", INTF_4, 0x6c000, 0x280, INTF_DP, MSM_DP_CONTROLLER_1, 24, INTF_SC7180_MASK, MDP_SSPP_TOP0_INTR, 20, 21),
+ INTF_BLK("intf_5", INTF_5, 0x6c800, 0x280, INTF_DP, MSM_DP_CONTROLLER_2, 24, INTF_SC7180_MASK, MDP_SSPP_TOP0_INTR, 22, 23),
+};
+
+static const struct dpu_perf_cfg sc8180x_perf_data = {
+ .max_bw_low = 9600000,
+ .max_bw_high = 9600000,
+ .min_core_ib = 2400000,
+ .min_llcc_ib = 800000,
+ .min_dram_ib = 800000,
+ .danger_lut_tbl = {0xf, 0xffff, 0x0},
+ .qos_lut_tbl = {
+ {.nentry = ARRAY_SIZE(sc7180_qos_linear),
+ .entries = sc7180_qos_linear
+ },
+ {.nentry = ARRAY_SIZE(sc7180_qos_macrotile),
+ .entries = sc7180_qos_macrotile
+ },
+ {.nentry = ARRAY_SIZE(sc7180_qos_nrt),
+ .entries = sc7180_qos_nrt
+ },
+ /* TODO: macrotile-qseed is different from macrotile */
+ },
+ .cdp_cfg = {
+ {.rd_enable = 1, .wr_enable = 1},
+ {.rd_enable = 1, .wr_enable = 0}
+ },
+ .clk_inefficiency_factor = 105,
+ .bw_inefficiency_factor = 120,
+};
+
+const struct dpu_mdss_cfg dpu_sc8180x_cfg = {
+ .caps = &sc8180x_dpu_caps,
+ .ubwc = &sc8180x_ubwc_cfg,
+ .mdp_count = ARRAY_SIZE(sc8180x_mdp),
+ .mdp = sc8180x_mdp,
+ .ctl_count = ARRAY_SIZE(sc8180x_ctl),
+ .ctl = sc8180x_ctl,
+ .sspp_count = ARRAY_SIZE(sc8180x_sspp),
+ .sspp = sc8180x_sspp,
+ .mixer_count = ARRAY_SIZE(sc8180x_lm),
+ .mixer = sc8180x_lm,
+ .pingpong_count = ARRAY_SIZE(sc8180x_pp),
+ .pingpong = sc8180x_pp,
+ .merge_3d_count = ARRAY_SIZE(sc8180x_merge_3d),
+ .merge_3d = sc8180x_merge_3d,
+ .intf_count = ARRAY_SIZE(sc8180x_intf),
+ .intf = sc8180x_intf,
+ .vbif_count = ARRAY_SIZE(sdm845_vbif),
+ .vbif = sdm845_vbif,
+ .reg_dma_count = 1,
+ .dma_cfg = &sm8150_regdma,
+ .perf = &sc8180x_perf_data,
+ .mdss_irqs = BIT(MDP_SSPP_TOP0_INTR) | \
+ BIT(MDP_SSPP_TOP0_INTR2) | \
+ BIT(MDP_SSPP_TOP0_HIST_INTR) | \
+ BIT(MDP_INTF0_INTR) | \
+ BIT(MDP_INTF1_INTR) | \
+ BIT(MDP_INTF2_INTR) | \
+ BIT(MDP_INTF3_INTR) | \
+ BIT(MDP_INTF4_INTR) | \
+ BIT(MDP_INTF5_INTR) | \
+ BIT(MDP_AD4_0_INTR) | \
+ BIT(MDP_AD4_1_INTR),
+};
+
+#endif
diff --git a/drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_6_0_sm8250.h b/drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_6_0_sm8250.h
new file mode 100644
index 000000000000..2c40229ea515
--- /dev/null
+++ b/drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_6_0_sm8250.h
@@ -0,0 +1,244 @@
+/* SPDX-License-Identifier: GPL-2.0-only */
+/*
+ * Copyright (c) 2022. Qualcomm Innovation Center, Inc. All rights reserved.
+ * Copyright (c) 2015-2018, 2020 The Linux Foundation. All rights reserved.
+ */
+
+#ifndef _DPU_6_0_SM8250_H
+#define _DPU_6_0_SM8250_H
+
+static const struct dpu_caps sm8250_dpu_caps = {
+ .max_mixer_width = DEFAULT_DPU_OUTPUT_LINE_WIDTH,
+ .max_mixer_blendstages = 0xb,
+ .qseed_type = DPU_SSPP_SCALER_QSEED4,
+ .has_src_split = true,
+ .has_dim_layer = true,
+ .has_idle_pc = true,
+ .has_3d_merge = true,
+ .max_linewidth = 4096,
+ .pixel_ram_size = DEFAULT_PIXEL_RAM_SIZE,
+};
+
+static const struct dpu_ubwc_cfg sm8250_ubwc_cfg = {
+ .ubwc_version = DPU_HW_UBWC_VER_40,
+ .highest_bank_bit = 0x3, /* TODO: 2 for LP_DDR4 */
+ .ubwc_swizzle = 0x6,
+};
+
+static const struct dpu_mdp_cfg sm8250_mdp[] = {
+ {
+ .name = "top_0", .id = MDP_TOP,
+ .base = 0x0, .len = 0x494,
+ .features = 0,
+ .clk_ctrls[DPU_CLK_CTRL_VIG0] = { .reg_off = 0x2ac, .bit_off = 0 },
+ .clk_ctrls[DPU_CLK_CTRL_VIG1] = { .reg_off = 0x2b4, .bit_off = 0 },
+ .clk_ctrls[DPU_CLK_CTRL_VIG2] = { .reg_off = 0x2bc, .bit_off = 0 },
+ .clk_ctrls[DPU_CLK_CTRL_VIG3] = { .reg_off = 0x2c4, .bit_off = 0 },
+ .clk_ctrls[DPU_CLK_CTRL_DMA0] = { .reg_off = 0x2ac, .bit_off = 8 },
+ .clk_ctrls[DPU_CLK_CTRL_DMA1] = { .reg_off = 0x2b4, .bit_off = 8 },
+ .clk_ctrls[DPU_CLK_CTRL_DMA2] = { .reg_off = 0x2bc, .bit_off = 8 },
+ .clk_ctrls[DPU_CLK_CTRL_DMA3] = { .reg_off = 0x2c4, .bit_off = 8 },
+ .clk_ctrls[DPU_CLK_CTRL_REG_DMA] = { .reg_off = 0x2bc, .bit_off = 20 },
+ .clk_ctrls[DPU_CLK_CTRL_WB2] = { .reg_off = 0x3b8, .bit_off = 24 },
+ },
+};
+
+/* FIXME: get rid of DPU_CTL_SPLIT_DISPLAY in favour of proper ACTIVE_CTL support */
+static const struct dpu_ctl_cfg sm8250_ctl[] = {
+ {
+ .name = "ctl_0", .id = CTL_0,
+ .base = 0x1000, .len = 0x1e0,
+ .features = BIT(DPU_CTL_ACTIVE_CFG) | BIT(DPU_CTL_SPLIT_DISPLAY),
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 9),
+ },
+ {
+ .name = "ctl_1", .id = CTL_1,
+ .base = 0x1200, .len = 0x1e0,
+ .features = BIT(DPU_CTL_ACTIVE_CFG) | BIT(DPU_CTL_SPLIT_DISPLAY),
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 10),
+ },
+ {
+ .name = "ctl_2", .id = CTL_2,
+ .base = 0x1400, .len = 0x1e0,
+ .features = BIT(DPU_CTL_ACTIVE_CFG),
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 11),
+ },
+ {
+ .name = "ctl_3", .id = CTL_3,
+ .base = 0x1600, .len = 0x1e0,
+ .features = BIT(DPU_CTL_ACTIVE_CFG),
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 12),
+ },
+ {
+ .name = "ctl_4", .id = CTL_4,
+ .base = 0x1800, .len = 0x1e0,
+ .features = BIT(DPU_CTL_ACTIVE_CFG),
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 13),
+ },
+ {
+ .name = "ctl_5", .id = CTL_5,
+ .base = 0x1a00, .len = 0x1e0,
+ .features = BIT(DPU_CTL_ACTIVE_CFG),
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 23),
+ },
+};
+
+static const struct dpu_sspp_cfg sm8250_sspp[] = {
+ SSPP_BLK("sspp_0", SSPP_VIG0, 0x4000, 0x1f8, VIG_SC7180_MASK_SDMA,
+ sm8250_vig_sblk_0, 0, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG0),
+ SSPP_BLK("sspp_1", SSPP_VIG1, 0x6000, 0x1f8, VIG_SC7180_MASK_SDMA,
+ sm8250_vig_sblk_1, 4, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG1),
+ SSPP_BLK("sspp_2", SSPP_VIG2, 0x8000, 0x1f8, VIG_SC7180_MASK_SDMA,
+ sm8250_vig_sblk_2, 8, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG2),
+ SSPP_BLK("sspp_3", SSPP_VIG3, 0xa000, 0x1f8, VIG_SC7180_MASK_SDMA,
+ sm8250_vig_sblk_3, 12, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG3),
+ SSPP_BLK("sspp_8", SSPP_DMA0, 0x24000, 0x1f8, DMA_SDM845_MASK_SDMA,
+ sdm845_dma_sblk_0, 1, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA0),
+ SSPP_BLK("sspp_9", SSPP_DMA1, 0x26000, 0x1f8, DMA_SDM845_MASK_SDMA,
+ sdm845_dma_sblk_1, 5, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA1),
+ SSPP_BLK("sspp_10", SSPP_DMA2, 0x28000, 0x1f8, DMA_CURSOR_SDM845_MASK_SDMA,
+ sdm845_dma_sblk_2, 9, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA2),
+ SSPP_BLK("sspp_11", SSPP_DMA3, 0x2a000, 0x1f8, DMA_CURSOR_SDM845_MASK_SDMA,
+ sdm845_dma_sblk_3, 13, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA3),
+};
+
+static const struct dpu_lm_cfg sm8250_lm[] = {
+ LM_BLK("lm_0", LM_0, 0x44000, MIXER_SDM845_MASK,
+ &sdm845_lm_sblk, PINGPONG_0, LM_1, DSPP_0),
+ LM_BLK("lm_1", LM_1, 0x45000, MIXER_SDM845_MASK,
+ &sdm845_lm_sblk, PINGPONG_1, LM_0, DSPP_1),
+ LM_BLK("lm_2", LM_2, 0x46000, MIXER_SDM845_MASK,
+ &sdm845_lm_sblk, PINGPONG_2, LM_3, 0),
+ LM_BLK("lm_3", LM_3, 0x47000, MIXER_SDM845_MASK,
+ &sdm845_lm_sblk, PINGPONG_3, LM_2, 0),
+ LM_BLK("lm_4", LM_4, 0x48000, MIXER_SDM845_MASK,
+ &sdm845_lm_sblk, PINGPONG_4, LM_5, 0),
+ LM_BLK("lm_5", LM_5, 0x49000, MIXER_SDM845_MASK,
+ &sdm845_lm_sblk, PINGPONG_5, LM_4, 0),
+};
+
+static const struct dpu_dspp_cfg sm8250_dspp[] = {
+ DSPP_BLK("dspp_0", DSPP_0, 0x54000, DSPP_SC7180_MASK,
+ &sm8150_dspp_sblk),
+ DSPP_BLK("dspp_1", DSPP_1, 0x56000, DSPP_SC7180_MASK,
+ &sm8150_dspp_sblk),
+ DSPP_BLK("dspp_2", DSPP_2, 0x58000, DSPP_SC7180_MASK,
+ &sm8150_dspp_sblk),
+ DSPP_BLK("dspp_3", DSPP_3, 0x5a000, DSPP_SC7180_MASK,
+ &sm8150_dspp_sblk),
+};
+
+static const struct dpu_pingpong_cfg sm8250_pp[] = {
+ PP_BLK_TE("pingpong_0", PINGPONG_0, 0x70000, MERGE_3D_0, sdm845_pp_sblk_te,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 8),
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 12)),
+ PP_BLK_TE("pingpong_1", PINGPONG_1, 0x70800, MERGE_3D_0, sdm845_pp_sblk_te,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 9),
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 13)),
+ PP_BLK("pingpong_2", PINGPONG_2, 0x71000, MERGE_3D_1, sdm845_pp_sblk,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 10),
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 14)),
+ PP_BLK("pingpong_3", PINGPONG_3, 0x71800, MERGE_3D_1, sdm845_pp_sblk,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 11),
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 15)),
+ PP_BLK("pingpong_4", PINGPONG_4, 0x72000, MERGE_3D_2, sdm845_pp_sblk,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 30),
+ -1),
+ PP_BLK("pingpong_5", PINGPONG_5, 0x72800, MERGE_3D_2, sdm845_pp_sblk,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 31),
+ -1),
+};
+
+static const struct dpu_merge_3d_cfg sm8250_merge_3d[] = {
+ MERGE_3D_BLK("merge_3d_0", MERGE_3D_0, 0x83000),
+ MERGE_3D_BLK("merge_3d_1", MERGE_3D_1, 0x83100),
+ MERGE_3D_BLK("merge_3d_2", MERGE_3D_2, 0x83200),
+};
+
+static const struct dpu_dsc_cfg sm8250_dsc[] = {
+ DSC_BLK("dsc_0", DSC_0, 0x80000, BIT(DPU_DSC_OUTPUT_CTRL)),
+ DSC_BLK("dsc_1", DSC_1, 0x80400, BIT(DPU_DSC_OUTPUT_CTRL)),
+ DSC_BLK("dsc_2", DSC_2, 0x80800, BIT(DPU_DSC_OUTPUT_CTRL)),
+ DSC_BLK("dsc_3", DSC_3, 0x80c00, BIT(DPU_DSC_OUTPUT_CTRL)),
+};
+
+static const struct dpu_intf_cfg sm8250_intf[] = {
+ INTF_BLK("intf_0", INTF_0, 0x6a000, 0x280, INTF_DP, 0, 24, INTF_SC7180_MASK, MDP_SSPP_TOP0_INTR, 24, 25),
+ INTF_BLK("intf_1", INTF_1, 0x6a800, 0x2c0, INTF_DSI, 0, 24, INTF_SC7180_MASK, MDP_SSPP_TOP0_INTR, 26, 27),
+ INTF_BLK("intf_2", INTF_2, 0x6b000, 0x2c0, INTF_DSI, 1, 24, INTF_SC7180_MASK, MDP_SSPP_TOP0_INTR, 28, 29),
+ INTF_BLK("intf_3", INTF_3, 0x6b800, 0x280, INTF_DP, 1, 24, INTF_SC7180_MASK, MDP_SSPP_TOP0_INTR, 30, 31),
+};
+
+static const struct dpu_wb_cfg sm8250_wb[] = {
+ WB_BLK("wb_2", WB_2, 0x65000, WB_SM8250_MASK, DPU_CLK_CTRL_WB2, 6,
+ VBIF_RT, MDP_SSPP_TOP0_INTR, 4096, 4),
+};
+
+static const struct dpu_perf_cfg sm8250_perf_data = {
+ .max_bw_low = 13700000,
+ .max_bw_high = 16600000,
+ .min_core_ib = 4800000,
+ .min_llcc_ib = 0,
+ .min_dram_ib = 800000,
+ .min_prefill_lines = 35,
+ .danger_lut_tbl = {0xf, 0xffff, 0x0},
+ .safe_lut_tbl = {0xfff0, 0xff00, 0xffff},
+ .qos_lut_tbl = {
+ {.nentry = ARRAY_SIZE(sc7180_qos_linear),
+ .entries = sc7180_qos_linear
+ },
+ {.nentry = ARRAY_SIZE(sc7180_qos_macrotile),
+ .entries = sc7180_qos_macrotile
+ },
+ {.nentry = ARRAY_SIZE(sc7180_qos_nrt),
+ .entries = sc7180_qos_nrt
+ },
+ /* TODO: macrotile-qseed is different from macrotile */
+ },
+ .cdp_cfg = {
+ {.rd_enable = 1, .wr_enable = 1},
+ {.rd_enable = 1, .wr_enable = 0}
+ },
+ .clk_inefficiency_factor = 105,
+ .bw_inefficiency_factor = 120,
+};
+
+const struct dpu_mdss_cfg dpu_sm8250_cfg = {
+ .caps = &sm8250_dpu_caps,
+ .ubwc = &sm8250_ubwc_cfg,
+ .mdp_count = ARRAY_SIZE(sm8250_mdp),
+ .mdp = sm8250_mdp,
+ .ctl_count = ARRAY_SIZE(sm8250_ctl),
+ .ctl = sm8250_ctl,
+ .sspp_count = ARRAY_SIZE(sm8250_sspp),
+ .sspp = sm8250_sspp,
+ .mixer_count = ARRAY_SIZE(sm8250_lm),
+ .mixer = sm8250_lm,
+ .dspp_count = ARRAY_SIZE(sm8250_dspp),
+ .dspp = sm8250_dspp,
+ .dsc_count = ARRAY_SIZE(sm8250_dsc),
+ .dsc = sm8250_dsc,
+ .pingpong_count = ARRAY_SIZE(sm8250_pp),
+ .pingpong = sm8250_pp,
+ .merge_3d_count = ARRAY_SIZE(sm8250_merge_3d),
+ .merge_3d = sm8250_merge_3d,
+ .intf_count = ARRAY_SIZE(sm8250_intf),
+ .intf = sm8250_intf,
+ .vbif_count = ARRAY_SIZE(sdm845_vbif),
+ .vbif = sdm845_vbif,
+ .wb_count = ARRAY_SIZE(sm8250_wb),
+ .wb = sm8250_wb,
+ .reg_dma_count = 1,
+ .dma_cfg = &sm8250_regdma,
+ .perf = &sm8250_perf_data,
+ .mdss_irqs = BIT(MDP_SSPP_TOP0_INTR) | \
+ BIT(MDP_SSPP_TOP0_INTR2) | \
+ BIT(MDP_SSPP_TOP0_HIST_INTR) | \
+ BIT(MDP_INTF0_INTR) | \
+ BIT(MDP_INTF1_INTR) | \
+ BIT(MDP_INTF2_INTR) | \
+ BIT(MDP_INTF3_INTR) | \
+ BIT(MDP_INTF4_INTR),
+};
+
+#endif
diff --git a/drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_6_2_sc7180.h b/drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_6_2_sc7180.h
new file mode 100644
index 000000000000..8799ed757119
--- /dev/null
+++ b/drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_6_2_sc7180.h
@@ -0,0 +1,156 @@
+/* SPDX-License-Identifier: GPL-2.0-only */
+/*
+ * Copyright (c) 2022. Qualcomm Innovation Center, Inc. All rights reserved.
+ * Copyright (c) 2015-2018, 2020 The Linux Foundation. All rights reserved.
+ */
+
+#ifndef _DPU_6_2_SC7180_H
+#define _DPU_6_2_SC7180_H
+
+static const struct dpu_caps sc7180_dpu_caps = {
+ .max_mixer_width = DEFAULT_DPU_OUTPUT_LINE_WIDTH,
+ .max_mixer_blendstages = 0x9,
+ .qseed_type = DPU_SSPP_SCALER_QSEED4,
+ .has_dim_layer = true,
+ .has_idle_pc = true,
+ .max_linewidth = DEFAULT_DPU_OUTPUT_LINE_WIDTH,
+ .pixel_ram_size = DEFAULT_PIXEL_RAM_SIZE,
+};
+
+static const struct dpu_ubwc_cfg sc7180_ubwc_cfg = {
+ .ubwc_version = DPU_HW_UBWC_VER_20,
+ .highest_bank_bit = 0x3,
+};
+
+static const struct dpu_mdp_cfg sc7180_mdp[] = {
+ {
+ .name = "top_0", .id = MDP_TOP,
+ .base = 0x0, .len = 0x494,
+ .features = 0,
+ .clk_ctrls[DPU_CLK_CTRL_VIG0] = { .reg_off = 0x2ac, .bit_off = 0 },
+ .clk_ctrls[DPU_CLK_CTRL_DMA0] = { .reg_off = 0x2ac, .bit_off = 8 },
+ .clk_ctrls[DPU_CLK_CTRL_DMA1] = { .reg_off = 0x2b4, .bit_off = 8 },
+ .clk_ctrls[DPU_CLK_CTRL_DMA2] = { .reg_off = 0x2c4, .bit_off = 8 },
+ .clk_ctrls[DPU_CLK_CTRL_WB2] = { .reg_off = 0x3b8, .bit_off = 24 },
+ },
+};
+
+static const struct dpu_ctl_cfg sc7180_ctl[] = {
+ {
+ .name = "ctl_0", .id = CTL_0,
+ .base = 0x1000, .len = 0x1dc,
+ .features = BIT(DPU_CTL_ACTIVE_CFG),
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 9),
+ },
+ {
+ .name = "ctl_1", .id = CTL_1,
+ .base = 0x1200, .len = 0x1dc,
+ .features = BIT(DPU_CTL_ACTIVE_CFG),
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 10),
+ },
+ {
+ .name = "ctl_2", .id = CTL_2,
+ .base = 0x1400, .len = 0x1dc,
+ .features = BIT(DPU_CTL_ACTIVE_CFG),
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 11),
+ },
+};
+
+static const struct dpu_sspp_cfg sc7180_sspp[] = {
+ SSPP_BLK("sspp_0", SSPP_VIG0, 0x4000, 0x1f8, VIG_SC7180_MASK,
+ sc7180_vig_sblk_0, 0, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG0),
+ SSPP_BLK("sspp_8", SSPP_DMA0, 0x24000, 0x1f8, DMA_SDM845_MASK,
+ sdm845_dma_sblk_0, 1, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA0),
+ SSPP_BLK("sspp_9", SSPP_DMA1, 0x26000, 0x1f8, DMA_CURSOR_SDM845_MASK,
+ sdm845_dma_sblk_1, 5, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA1),
+ SSPP_BLK("sspp_10", SSPP_DMA2, 0x28000, 0x1f8, DMA_CURSOR_SDM845_MASK,
+ sdm845_dma_sblk_2, 9, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA2),
+};
+
+static const struct dpu_lm_cfg sc7180_lm[] = {
+ LM_BLK("lm_0", LM_0, 0x44000, MIXER_SDM845_MASK,
+ &sc7180_lm_sblk, PINGPONG_0, LM_1, DSPP_0),
+ LM_BLK("lm_1", LM_1, 0x45000, MIXER_SDM845_MASK,
+ &sc7180_lm_sblk, PINGPONG_1, LM_0, 0),
+};
+
+static const struct dpu_dspp_cfg sc7180_dspp[] = {
+ DSPP_BLK("dspp_0", DSPP_0, 0x54000, DSPP_SC7180_MASK,
+ &sc7180_dspp_sblk),
+};
+
+static const struct dpu_pingpong_cfg sc7180_pp[] = {
+ PP_BLK_TE("pingpong_0", PINGPONG_0, 0x70000, 0, sdm845_pp_sblk_te, -1, -1),
+ PP_BLK_TE("pingpong_1", PINGPONG_1, 0x70800, 0, sdm845_pp_sblk_te, -1, -1),
+};
+
+static const struct dpu_intf_cfg sc7180_intf[] = {
+ INTF_BLK("intf_0", INTF_0, 0x6a000, 0x280, INTF_DP, MSM_DP_CONTROLLER_0, 24, INTF_SC7180_MASK, MDP_SSPP_TOP0_INTR, 24, 25),
+ INTF_BLK("intf_1", INTF_1, 0x6a800, 0x2c0, INTF_DSI, 0, 24, INTF_SC7180_MASK, MDP_SSPP_TOP0_INTR, 26, 27),
+};
+
+static const struct dpu_wb_cfg sc7180_wb[] = {
+ WB_BLK("wb_2", WB_2, 0x65000, WB_SM8250_MASK, DPU_CLK_CTRL_WB2, 6,
+ VBIF_RT, MDP_SSPP_TOP0_INTR, 4096, 4),
+};
+
+static const struct dpu_perf_cfg sc7180_perf_data = {
+ .max_bw_low = 6800000,
+ .max_bw_high = 6800000,
+ .min_core_ib = 2400000,
+ .min_llcc_ib = 800000,
+ .min_dram_ib = 1600000,
+ .min_prefill_lines = 24,
+ .danger_lut_tbl = {0xff, 0xffff, 0x0},
+ .safe_lut_tbl = {0xfff0, 0xff00, 0xffff},
+ .qos_lut_tbl = {
+ {.nentry = ARRAY_SIZE(sc7180_qos_linear),
+ .entries = sc7180_qos_linear
+ },
+ {.nentry = ARRAY_SIZE(sc7180_qos_macrotile),
+ .entries = sc7180_qos_macrotile
+ },
+ {.nentry = ARRAY_SIZE(sc7180_qos_nrt),
+ .entries = sc7180_qos_nrt
+ },
+ },
+ .cdp_cfg = {
+ {.rd_enable = 1, .wr_enable = 1},
+ {.rd_enable = 1, .wr_enable = 0}
+ },
+ .clk_inefficiency_factor = 105,
+ .bw_inefficiency_factor = 120,
+};
+
+const struct dpu_mdss_cfg dpu_sc7180_cfg = {
+ .caps = &sc7180_dpu_caps,
+ .ubwc = &sc7180_ubwc_cfg,
+ .mdp_count = ARRAY_SIZE(sc7180_mdp),
+ .mdp = sc7180_mdp,
+ .ctl_count = ARRAY_SIZE(sc7180_ctl),
+ .ctl = sc7180_ctl,
+ .sspp_count = ARRAY_SIZE(sc7180_sspp),
+ .sspp = sc7180_sspp,
+ .mixer_count = ARRAY_SIZE(sc7180_lm),
+ .mixer = sc7180_lm,
+ .dspp_count = ARRAY_SIZE(sc7180_dspp),
+ .dspp = sc7180_dspp,
+ .pingpong_count = ARRAY_SIZE(sc7180_pp),
+ .pingpong = sc7180_pp,
+ .intf_count = ARRAY_SIZE(sc7180_intf),
+ .intf = sc7180_intf,
+ .wb_count = ARRAY_SIZE(sc7180_wb),
+ .wb = sc7180_wb,
+ .vbif_count = ARRAY_SIZE(sdm845_vbif),
+ .vbif = sdm845_vbif,
+ .reg_dma_count = 1,
+ .dma_cfg = &sdm845_regdma,
+ .perf = &sc7180_perf_data,
+ .mdss_irqs = BIT(MDP_SSPP_TOP0_INTR) | \
+ BIT(MDP_SSPP_TOP0_INTR2) | \
+ BIT(MDP_SSPP_TOP0_HIST_INTR) | \
+ BIT(MDP_INTF0_INTR) | \
+ BIT(MDP_INTF1_INTR),
+};
+
+#endif
diff --git a/drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_6_3_sm6115.h b/drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_6_3_sm6115.h
new file mode 100644
index 000000000000..6f04d8f85c92
--- /dev/null
+++ b/drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_6_3_sm6115.h
@@ -0,0 +1,129 @@
+/* SPDX-License-Identifier: GPL-2.0-only */
+/*
+ * Copyright (c) 2022. Qualcomm Innovation Center, Inc. All rights reserved.
+ * Copyright (c) 2015-2018, 2020 The Linux Foundation. All rights reserved.
+ */
+
+#ifndef _DPU_6_3_SM6115_H
+#define _DPU_6_3_SM6115_H
+
+static const struct dpu_caps sm6115_dpu_caps = {
+ .max_mixer_width = DEFAULT_DPU_LINE_WIDTH,
+ .max_mixer_blendstages = 0x4,
+ .qseed_type = DPU_SSPP_SCALER_QSEED4,
+ .has_dim_layer = true,
+ .has_idle_pc = true,
+ .max_linewidth = 2160,
+ .pixel_ram_size = DEFAULT_PIXEL_RAM_SIZE,
+};
+
+static const struct dpu_ubwc_cfg sm6115_ubwc_cfg = {
+ .ubwc_version = DPU_HW_UBWC_VER_10,
+ .highest_bank_bit = 0x1,
+ .ubwc_swizzle = 0x7,
+};
+
+static const struct dpu_mdp_cfg sm6115_mdp[] = {
+ {
+ .name = "top_0", .id = MDP_TOP,
+ .base = 0x0, .len = 0x494,
+ .features = 0,
+ .clk_ctrls[DPU_CLK_CTRL_VIG0] = { .reg_off = 0x2ac, .bit_off = 0 },
+ .clk_ctrls[DPU_CLK_CTRL_DMA0] = { .reg_off = 0x2ac, .bit_off = 8 },
+ },
+};
+
+static const struct dpu_ctl_cfg sm6115_ctl[] = {
+ {
+ .name = "ctl_0", .id = CTL_0,
+ .base = 0x1000, .len = 0x1dc,
+ .features = BIT(DPU_CTL_ACTIVE_CFG),
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 9),
+ },
+};
+
+static const struct dpu_sspp_cfg sm6115_sspp[] = {
+ SSPP_BLK("sspp_0", SSPP_VIG0, 0x4000, 0x1f8, VIG_SC7180_MASK,
+ sm6115_vig_sblk_0, 0, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG0),
+ SSPP_BLK("sspp_8", SSPP_DMA0, 0x24000, 0x1f8, DMA_SDM845_MASK,
+ sdm845_dma_sblk_0, 1, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA0),
+};
+
+static const struct dpu_lm_cfg sm6115_lm[] = {
+ LM_BLK("lm_0", LM_0, 0x44000, MIXER_QCM2290_MASK,
+ &qcm2290_lm_sblk, PINGPONG_0, 0, DSPP_0),
+};
+
+static const struct dpu_dspp_cfg sm6115_dspp[] = {
+ DSPP_BLK("dspp_0", DSPP_0, 0x54000, DSPP_SC7180_MASK,
+ &sm8150_dspp_sblk),
+};
+
+static const struct dpu_pingpong_cfg sm6115_pp[] = {
+ PP_BLK("pingpong_0", PINGPONG_0, 0x70000, 0, sdm845_pp_sblk,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 8),
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 12)),
+};
+
+static const struct dpu_intf_cfg sm6115_intf[] = {
+ INTF_BLK("intf_0", INTF_0, 0x00000, 0x280, INTF_NONE, 0, 0, 0, 0, 0, 0),
+ INTF_BLK("intf_1", INTF_1, 0x6a800, 0x2c0, INTF_DSI, 0, 24, INTF_SC7180_MASK, MDP_SSPP_TOP0_INTR, 26, 27),
+};
+
+static const struct dpu_perf_cfg sm6115_perf_data = {
+ .max_bw_low = 3100000,
+ .max_bw_high = 4000000,
+ .min_core_ib = 2400000,
+ .min_llcc_ib = 800000,
+ .min_dram_ib = 800000,
+ .min_prefill_lines = 24,
+ .danger_lut_tbl = {0xff, 0xffff, 0x0},
+ .safe_lut_tbl = {0xfff0, 0xff00, 0xffff},
+ .qos_lut_tbl = {
+ {.nentry = ARRAY_SIZE(sc7180_qos_linear),
+ .entries = sc7180_qos_linear
+ },
+ {.nentry = ARRAY_SIZE(sc7180_qos_macrotile),
+ .entries = sc7180_qos_macrotile
+ },
+ {.nentry = ARRAY_SIZE(sc7180_qos_nrt),
+ .entries = sc7180_qos_nrt
+ },
+ /* TODO: macrotile-qseed is different from macrotile */
+ },
+ .cdp_cfg = {
+ {.rd_enable = 1, .wr_enable = 1},
+ {.rd_enable = 1, .wr_enable = 0}
+ },
+ .clk_inefficiency_factor = 105,
+ .bw_inefficiency_factor = 120,
+};
+
+const struct dpu_mdss_cfg dpu_sm6115_cfg = {
+ .caps = &sm6115_dpu_caps,
+ .ubwc = &sm6115_ubwc_cfg,
+ .mdp_count = ARRAY_SIZE(sm6115_mdp),
+ .mdp = sm6115_mdp,
+ .ctl_count = ARRAY_SIZE(sm6115_ctl),
+ .ctl = sm6115_ctl,
+ .sspp_count = ARRAY_SIZE(sm6115_sspp),
+ .sspp = sm6115_sspp,
+ .mixer_count = ARRAY_SIZE(sm6115_lm),
+ .mixer = sm6115_lm,
+ .dspp_count = ARRAY_SIZE(sm6115_dspp),
+ .dspp = sm6115_dspp,
+ .pingpong_count = ARRAY_SIZE(sm6115_pp),
+ .pingpong = sm6115_pp,
+ .intf_count = ARRAY_SIZE(sm6115_intf),
+ .intf = sm6115_intf,
+ .vbif_count = ARRAY_SIZE(sdm845_vbif),
+ .vbif = sdm845_vbif,
+ .perf = &sm6115_perf_data,
+ .mdss_irqs = BIT(MDP_SSPP_TOP0_INTR) | \
+ BIT(MDP_SSPP_TOP0_INTR2) | \
+ BIT(MDP_SSPP_TOP0_HIST_INTR) | \
+ BIT(MDP_INTF0_INTR) | \
+ BIT(MDP_INTF1_INTR),
+};
+
+#endif
diff --git a/drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_6_5_qcm2290.h b/drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_6_5_qcm2290.h
new file mode 100644
index 000000000000..303492d62a5c
--- /dev/null
+++ b/drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_6_5_qcm2290.h
@@ -0,0 +1,119 @@
+/* SPDX-License-Identifier: GPL-2.0-only */
+/*
+ * Copyright (c) 2022. Qualcomm Innovation Center, Inc. All rights reserved.
+ * Copyright (c) 2015-2018, 2020 The Linux Foundation. All rights reserved.
+ */
+
+#ifndef _DPU_6_5_QCM2290_H
+#define _DPU_6_5_QCM2290_H
+
+static const struct dpu_caps qcm2290_dpu_caps = {
+ .max_mixer_width = DEFAULT_DPU_LINE_WIDTH,
+ .max_mixer_blendstages = 0x4,
+ .has_dim_layer = true,
+ .has_idle_pc = true,
+ .max_linewidth = 2160,
+ .pixel_ram_size = DEFAULT_PIXEL_RAM_SIZE,
+};
+
+static const struct dpu_ubwc_cfg qcm2290_ubwc_cfg = {
+ .highest_bank_bit = 0x2,
+};
+
+static const struct dpu_mdp_cfg qcm2290_mdp[] = {
+ {
+ .name = "top_0", .id = MDP_TOP,
+ .base = 0x0, .len = 0x494,
+ .features = 0,
+ .clk_ctrls[DPU_CLK_CTRL_VIG0] = { .reg_off = 0x2ac, .bit_off = 0 },
+ .clk_ctrls[DPU_CLK_CTRL_DMA0] = { .reg_off = 0x2ac, .bit_off = 8 },
+ },
+};
+
+static const struct dpu_ctl_cfg qcm2290_ctl[] = {
+ {
+ .name = "ctl_0", .id = CTL_0,
+ .base = 0x1000, .len = 0x1dc,
+ .features = BIT(DPU_CTL_ACTIVE_CFG),
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 9),
+ },
+};
+
+static const struct dpu_sspp_cfg qcm2290_sspp[] = {
+ SSPP_BLK("sspp_0", SSPP_VIG0, 0x4000, 0x1f8, VIG_QCM2290_MASK,
+ qcm2290_vig_sblk_0, 0, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG0),
+ SSPP_BLK("sspp_8", SSPP_DMA0, 0x24000, 0x1f8, DMA_SDM845_MASK,
+ qcm2290_dma_sblk_0, 1, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA0),
+};
+
+static const struct dpu_lm_cfg qcm2290_lm[] = {
+ LM_BLK("lm_0", LM_0, 0x44000, MIXER_QCM2290_MASK,
+ &qcm2290_lm_sblk, PINGPONG_0, 0, DSPP_0),
+};
+
+static const struct dpu_dspp_cfg qcm2290_dspp[] = {
+ DSPP_BLK("dspp_0", DSPP_0, 0x54000, DSPP_SC7180_MASK,
+ &sm8150_dspp_sblk),
+};
+
+static const struct dpu_pingpong_cfg qcm2290_pp[] = {
+ PP_BLK("pingpong_0", PINGPONG_0, 0x70000, 0, sdm845_pp_sblk,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 8),
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 12)),
+};
+
+static const struct dpu_intf_cfg qcm2290_intf[] = {
+ INTF_BLK("intf_0", INTF_0, 0x00000, 0x280, INTF_NONE, 0, 0, 0, 0, 0, 0),
+ INTF_BLK("intf_1", INTF_1, 0x6a800, 0x2c0, INTF_DSI, 0, 24, INTF_SC7180_MASK, MDP_SSPP_TOP0_INTR, 26, 27),
+};
+
+static const struct dpu_perf_cfg qcm2290_perf_data = {
+ .max_bw_low = 2700000,
+ .max_bw_high = 2700000,
+ .min_core_ib = 1300000,
+ .min_llcc_ib = 0,
+ .min_dram_ib = 1600000,
+ .min_prefill_lines = 24,
+ .danger_lut_tbl = {0xff, 0x0, 0x0},
+ .safe_lut_tbl = {0xfff0, 0x0, 0x0},
+ .qos_lut_tbl = {
+ {.nentry = ARRAY_SIZE(qcm2290_qos_linear),
+ .entries = qcm2290_qos_linear
+ },
+ },
+ .cdp_cfg = {
+ {.rd_enable = 1, .wr_enable = 1},
+ {.rd_enable = 1, .wr_enable = 0}
+ },
+ .clk_inefficiency_factor = 105,
+ .bw_inefficiency_factor = 120,
+};
+
+const struct dpu_mdss_cfg dpu_qcm2290_cfg = {
+ .caps = &qcm2290_dpu_caps,
+ .ubwc = &qcm2290_ubwc_cfg,
+ .mdp_count = ARRAY_SIZE(qcm2290_mdp),
+ .mdp = qcm2290_mdp,
+ .ctl_count = ARRAY_SIZE(qcm2290_ctl),
+ .ctl = qcm2290_ctl,
+ .sspp_count = ARRAY_SIZE(qcm2290_sspp),
+ .sspp = qcm2290_sspp,
+ .mixer_count = ARRAY_SIZE(qcm2290_lm),
+ .mixer = qcm2290_lm,
+ .dspp_count = ARRAY_SIZE(qcm2290_dspp),
+ .dspp = qcm2290_dspp,
+ .pingpong_count = ARRAY_SIZE(qcm2290_pp),
+ .pingpong = qcm2290_pp,
+ .intf_count = ARRAY_SIZE(qcm2290_intf),
+ .intf = qcm2290_intf,
+ .vbif_count = ARRAY_SIZE(sdm845_vbif),
+ .vbif = sdm845_vbif,
+ .perf = &qcm2290_perf_data,
+ .mdss_irqs = BIT(MDP_SSPP_TOP0_INTR) | \
+ BIT(MDP_SSPP_TOP0_INTR2) | \
+ BIT(MDP_SSPP_TOP0_HIST_INTR) | \
+ BIT(MDP_INTF0_INTR) | \
+ BIT(MDP_INTF1_INTR),
+};
+
+#endif
diff --git a/drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_7_0_sm8350.h b/drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_7_0_sm8350.h
new file mode 100644
index 000000000000..ca107ca8de46
--- /dev/null
+++ b/drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_7_0_sm8350.h
@@ -0,0 +1,226 @@
+/* SPDX-License-Identifier: GPL-2.0-only */
+/*
+ * Copyright (c) 2022. Qualcomm Innovation Center, Inc. All rights reserved.
+ * Copyright (c) 2015-2018, 2020 The Linux Foundation. All rights reserved.
+ */
+
+#ifndef _DPU_7_0_SM8350_H
+#define _DPU_7_0_SM8350_H
+
+static const struct dpu_caps sm8350_dpu_caps = {
+ .max_mixer_width = DEFAULT_DPU_OUTPUT_LINE_WIDTH,
+ .max_mixer_blendstages = 0xb,
+ .qseed_type = DPU_SSPP_SCALER_QSEED4,
+ .has_src_split = true,
+ .has_dim_layer = true,
+ .has_idle_pc = true,
+ .has_3d_merge = true,
+ .max_linewidth = 4096,
+ .pixel_ram_size = DEFAULT_PIXEL_RAM_SIZE,
+};
+
+static const struct dpu_ubwc_cfg sm8350_ubwc_cfg = {
+ .ubwc_version = DPU_HW_UBWC_VER_40,
+ .highest_bank_bit = 0x3, /* TODO: 2 for LP_DDR4 */
+};
+
+static const struct dpu_mdp_cfg sm8350_mdp[] = {
+ {
+ .name = "top_0", .id = MDP_TOP,
+ .base = 0x0, .len = 0x494,
+ .features = 0,
+ .clk_ctrls[DPU_CLK_CTRL_VIG0] = { .reg_off = 0x2ac, .bit_off = 0 },
+ .clk_ctrls[DPU_CLK_CTRL_VIG1] = { .reg_off = 0x2b4, .bit_off = 0 },
+ .clk_ctrls[DPU_CLK_CTRL_VIG2] = { .reg_off = 0x2bc, .bit_off = 0 },
+ .clk_ctrls[DPU_CLK_CTRL_VIG3] = { .reg_off = 0x2c4, .bit_off = 0 },
+ .clk_ctrls[DPU_CLK_CTRL_DMA0] = { .reg_off = 0x2ac, .bit_off = 8 },
+ .clk_ctrls[DPU_CLK_CTRL_DMA1] = { .reg_off = 0x2b4, .bit_off = 8 },
+ .clk_ctrls[DPU_CLK_CTRL_DMA2] = { .reg_off = 0x2bc, .bit_off = 8 },
+ .clk_ctrls[DPU_CLK_CTRL_DMA3] = { .reg_off = 0x2c4, .bit_off = 8 },
+ .clk_ctrls[DPU_CLK_CTRL_REG_DMA] = { .reg_off = 0x2bc, .bit_off = 20 },
+ },
+};
+
+/* FIXME: get rid of DPU_CTL_SPLIT_DISPLAY in favour of proper ACTIVE_CTL support */
+static const struct dpu_ctl_cfg sm8350_ctl[] = {
+ {
+ .name = "ctl_0", .id = CTL_0,
+ .base = 0x15000, .len = 0x1e8,
+ .features = BIT(DPU_CTL_SPLIT_DISPLAY) | CTL_SC7280_MASK,
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 9),
+ },
+ {
+ .name = "ctl_1", .id = CTL_1,
+ .base = 0x16000, .len = 0x1e8,
+ .features = BIT(DPU_CTL_SPLIT_DISPLAY) | CTL_SC7280_MASK,
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 10),
+ },
+ {
+ .name = "ctl_2", .id = CTL_2,
+ .base = 0x17000, .len = 0x1e8,
+ .features = CTL_SC7280_MASK,
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 11),
+ },
+ {
+ .name = "ctl_3", .id = CTL_3,
+ .base = 0x18000, .len = 0x1e8,
+ .features = CTL_SC7280_MASK,
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 12),
+ },
+ {
+ .name = "ctl_4", .id = CTL_4,
+ .base = 0x19000, .len = 0x1e8,
+ .features = CTL_SC7280_MASK,
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 13),
+ },
+ {
+ .name = "ctl_5", .id = CTL_5,
+ .base = 0x1a000, .len = 0x1e8,
+ .features = CTL_SC7280_MASK,
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 23),
+ },
+};
+
+static const struct dpu_sspp_cfg sm8350_sspp[] = {
+ SSPP_BLK("sspp_0", SSPP_VIG0, 0x4000, 0x1f8, VIG_SC7180_MASK,
+ sm8250_vig_sblk_0, 0, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG0),
+ SSPP_BLK("sspp_1", SSPP_VIG1, 0x6000, 0x1f8, VIG_SC7180_MASK,
+ sm8250_vig_sblk_1, 4, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG1),
+ SSPP_BLK("sspp_2", SSPP_VIG2, 0x8000, 0x1f8, VIG_SC7180_MASK,
+ sm8250_vig_sblk_2, 8, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG2),
+ SSPP_BLK("sspp_3", SSPP_VIG3, 0xa000, 0x1f8, VIG_SC7180_MASK,
+ sm8250_vig_sblk_3, 12, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG3),
+ SSPP_BLK("sspp_8", SSPP_DMA0, 0x24000, 0x1f8, DMA_SDM845_MASK,
+ sdm845_dma_sblk_0, 1, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA0),
+ SSPP_BLK("sspp_9", SSPP_DMA1, 0x26000, 0x1f8, DMA_SDM845_MASK,
+ sdm845_dma_sblk_1, 5, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA1),
+ SSPP_BLK("sspp_10", SSPP_DMA2, 0x28000, 0x1f8, DMA_CURSOR_SDM845_MASK,
+ sdm845_dma_sblk_2, 9, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA2),
+ SSPP_BLK("sspp_11", SSPP_DMA3, 0x2a000, 0x1f8, DMA_CURSOR_SDM845_MASK,
+ sdm845_dma_sblk_3, 13, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA3),
+};
+
+static const struct dpu_lm_cfg sm8350_lm[] = {
+ LM_BLK("lm_0", LM_0, 0x44000, MIXER_SDM845_MASK,
+ &sdm845_lm_sblk, PINGPONG_0, LM_1, DSPP_0),
+ LM_BLK("lm_1", LM_1, 0x45000, MIXER_SDM845_MASK,
+ &sdm845_lm_sblk, PINGPONG_1, LM_0, DSPP_1),
+ LM_BLK("lm_2", LM_2, 0x46000, MIXER_SDM845_MASK,
+ &sdm845_lm_sblk, PINGPONG_2, LM_3, 0),
+ LM_BLK("lm_3", LM_3, 0x47000, MIXER_SDM845_MASK,
+ &sdm845_lm_sblk, PINGPONG_3, LM_2, 0),
+ LM_BLK("lm_4", LM_4, 0x48000, MIXER_SDM845_MASK,
+ &sdm845_lm_sblk, PINGPONG_4, LM_5, 0),
+ LM_BLK("lm_5", LM_5, 0x49000, MIXER_SDM845_MASK,
+ &sdm845_lm_sblk, PINGPONG_5, LM_4, 0),
+};
+
+static const struct dpu_dspp_cfg sm8350_dspp[] = {
+ DSPP_BLK("dspp_0", DSPP_0, 0x54000, DSPP_SC7180_MASK,
+ &sm8150_dspp_sblk),
+ DSPP_BLK("dspp_1", DSPP_1, 0x56000, DSPP_SC7180_MASK,
+ &sm8150_dspp_sblk),
+ DSPP_BLK("dspp_2", DSPP_2, 0x58000, DSPP_SC7180_MASK,
+ &sm8150_dspp_sblk),
+ DSPP_BLK("dspp_3", DSPP_3, 0x5a000, DSPP_SC7180_MASK,
+ &sm8150_dspp_sblk),
+};
+
+static const struct dpu_pingpong_cfg sm8350_pp[] = {
+ PP_BLK_TE("pingpong_0", PINGPONG_0, 0x69000, MERGE_3D_0, sdm845_pp_sblk_te,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 8),
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 12)),
+ PP_BLK_TE("pingpong_1", PINGPONG_1, 0x6a000, MERGE_3D_0, sdm845_pp_sblk_te,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 9),
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 13)),
+ PP_BLK("pingpong_2", PINGPONG_2, 0x6b000, MERGE_3D_1, sdm845_pp_sblk,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 10),
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 14)),
+ PP_BLK("pingpong_3", PINGPONG_3, 0x6c000, MERGE_3D_1, sdm845_pp_sblk,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 11),
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 15)),
+ PP_BLK("pingpong_4", PINGPONG_4, 0x6d000, MERGE_3D_2, sdm845_pp_sblk,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 30),
+ -1),
+ PP_BLK("pingpong_5", PINGPONG_5, 0x6e000, MERGE_3D_2, sdm845_pp_sblk,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 31),
+ -1),
+};
+
+static const struct dpu_merge_3d_cfg sm8350_merge_3d[] = {
+ MERGE_3D_BLK("merge_3d_0", MERGE_3D_0, 0x4e000),
+ MERGE_3D_BLK("merge_3d_1", MERGE_3D_1, 0x4f000),
+ MERGE_3D_BLK("merge_3d_2", MERGE_3D_2, 0x50000),
+};
+
+static const struct dpu_intf_cfg sm8350_intf[] = {
+ INTF_BLK("intf_0", INTF_0, 0x34000, 0x280, INTF_DP, MSM_DP_CONTROLLER_0, 24, INTF_SC7280_MASK, MDP_SSPP_TOP0_INTR, 24, 25),
+ INTF_BLK("intf_1", INTF_1, 0x35000, 0x2c4, INTF_DSI, 0, 24, INTF_SC7280_MASK, MDP_SSPP_TOP0_INTR, 26, 27),
+ INTF_BLK("intf_2", INTF_2, 0x36000, 0x2c4, INTF_DSI, 1, 24, INTF_SC7280_MASK, MDP_SSPP_TOP0_INTR, 28, 29),
+ INTF_BLK("intf_3", INTF_3, 0x37000, 0x280, INTF_DP, MSM_DP_CONTROLLER_1, 24, INTF_SC7280_MASK, MDP_SSPP_TOP0_INTR, 30, 31),
+};
+
+static const struct dpu_perf_cfg sm8350_perf_data = {
+ .max_bw_low = 11800000,
+ .max_bw_high = 15500000,
+ .min_core_ib = 2500000,
+ .min_llcc_ib = 0,
+ .min_dram_ib = 800000,
+ .min_prefill_lines = 40,
+ /* FIXME: lut tables */
+ .danger_lut_tbl = {0x3ffff, 0x3ffff, 0x0},
+ .safe_lut_tbl = {0xfe00, 0xfe00, 0xffff},
+ .qos_lut_tbl = {
+ {.nentry = ARRAY_SIZE(sc7180_qos_linear),
+ .entries = sc7180_qos_linear
+ },
+ {.nentry = ARRAY_SIZE(sc7180_qos_macrotile),
+ .entries = sc7180_qos_macrotile
+ },
+ {.nentry = ARRAY_SIZE(sc7180_qos_nrt),
+ .entries = sc7180_qos_nrt
+ },
+ /* TODO: macrotile-qseed is different from macrotile */
+ },
+ .cdp_cfg = {
+ {.rd_enable = 1, .wr_enable = 1},
+ {.rd_enable = 1, .wr_enable = 0}
+ },
+ .clk_inefficiency_factor = 105,
+ .bw_inefficiency_factor = 120,
+};
+
+const struct dpu_mdss_cfg dpu_sm8350_cfg = {
+ .caps = &sm8350_dpu_caps,
+ .ubwc = &sm8350_ubwc_cfg,
+ .mdp_count = ARRAY_SIZE(sm8350_mdp),
+ .mdp = sm8350_mdp,
+ .ctl_count = ARRAY_SIZE(sm8350_ctl),
+ .ctl = sm8350_ctl,
+ .sspp_count = ARRAY_SIZE(sm8350_sspp),
+ .sspp = sm8350_sspp,
+ .mixer_count = ARRAY_SIZE(sm8350_lm),
+ .mixer = sm8350_lm,
+ .dspp_count = ARRAY_SIZE(sm8350_dspp),
+ .dspp = sm8350_dspp,
+ .pingpong_count = ARRAY_SIZE(sm8350_pp),
+ .pingpong = sm8350_pp,
+ .merge_3d_count = ARRAY_SIZE(sm8350_merge_3d),
+ .merge_3d = sm8350_merge_3d,
+ .intf_count = ARRAY_SIZE(sm8350_intf),
+ .intf = sm8350_intf,
+ .vbif_count = ARRAY_SIZE(sdm845_vbif),
+ .vbif = sdm845_vbif,
+ .reg_dma_count = 1,
+ .dma_cfg = &sm8350_regdma,
+ .perf = &sm8350_perf_data,
+ .mdss_irqs = BIT(MDP_SSPP_TOP0_INTR) | \
+ BIT(MDP_SSPP_TOP0_INTR2) | \
+ BIT(MDP_SSPP_TOP0_HIST_INTR) | \
+ BIT(MDP_INTF0_7xxx_INTR) | \
+ BIT(MDP_INTF1_7xxx_INTR) | \
+ BIT(MDP_INTF2_7xxx_INTR) | \
+ BIT(MDP_INTF3_7xxx_INTR),
+};
+
+#endif
diff --git a/drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_7_2_sc7280.h b/drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_7_2_sc7280.h
new file mode 100644
index 000000000000..5957de185984
--- /dev/null
+++ b/drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_7_2_sc7280.h
@@ -0,0 +1,158 @@
+/* SPDX-License-Identifier: GPL-2.0-only */
+/*
+ * Copyright (c) 2022. Qualcomm Innovation Center, Inc. All rights reserved.
+ * Copyright (c) 2015-2018, 2020 The Linux Foundation. All rights reserved.
+ */
+
+#ifndef _DPU_7_2_SC7280_H
+#define _DPU_7_2_SC7280_H
+
+static const struct dpu_caps sc7280_dpu_caps = {
+ .max_mixer_width = DEFAULT_DPU_OUTPUT_LINE_WIDTH,
+ .max_mixer_blendstages = 0x7,
+ .qseed_type = DPU_SSPP_SCALER_QSEED4,
+ .has_dim_layer = true,
+ .has_idle_pc = true,
+ .max_linewidth = 2400,
+ .pixel_ram_size = DEFAULT_PIXEL_RAM_SIZE,
+};
+
+static const struct dpu_ubwc_cfg sc7280_ubwc_cfg = {
+ .ubwc_version = DPU_HW_UBWC_VER_30,
+ .highest_bank_bit = 0x1,
+ .ubwc_swizzle = 0x6,
+};
+
+static const struct dpu_mdp_cfg sc7280_mdp[] = {
+ {
+ .name = "top_0", .id = MDP_TOP,
+ .base = 0x0, .len = 0x2014,
+ .clk_ctrls[DPU_CLK_CTRL_VIG0] = { .reg_off = 0x2ac, .bit_off = 0 },
+ .clk_ctrls[DPU_CLK_CTRL_DMA0] = { .reg_off = 0x2ac, .bit_off = 8 },
+ .clk_ctrls[DPU_CLK_CTRL_DMA1] = { .reg_off = 0x2b4, .bit_off = 8 },
+ .clk_ctrls[DPU_CLK_CTRL_DMA2] = { .reg_off = 0x2c4, .bit_off = 8 },
+ },
+};
+
+static const struct dpu_ctl_cfg sc7280_ctl[] = {
+ {
+ .name = "ctl_0", .id = CTL_0,
+ .base = 0x15000, .len = 0x1e8,
+ .features = CTL_SC7280_MASK,
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 9),
+ },
+ {
+ .name = "ctl_1", .id = CTL_1,
+ .base = 0x16000, .len = 0x1e8,
+ .features = CTL_SC7280_MASK,
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 10),
+ },
+ {
+ .name = "ctl_2", .id = CTL_2,
+ .base = 0x17000, .len = 0x1e8,
+ .features = CTL_SC7280_MASK,
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 11),
+ },
+ {
+ .name = "ctl_3", .id = CTL_3,
+ .base = 0x18000, .len = 0x1e8,
+ .features = CTL_SC7280_MASK,
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 12),
+ },
+};
+
+static const struct dpu_sspp_cfg sc7280_sspp[] = {
+ SSPP_BLK("sspp_0", SSPP_VIG0, 0x4000, 0x1f8, VIG_SC7280_MASK_SDMA,
+ sc7280_vig_sblk_0, 0, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG0),
+ SSPP_BLK("sspp_8", SSPP_DMA0, 0x24000, 0x1f8, DMA_SDM845_MASK_SDMA,
+ sdm845_dma_sblk_0, 1, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA0),
+ SSPP_BLK("sspp_9", SSPP_DMA1, 0x26000, 0x1f8, DMA_CURSOR_SDM845_MASK_SDMA,
+ sdm845_dma_sblk_1, 5, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA1),
+ SSPP_BLK("sspp_10", SSPP_DMA2, 0x28000, 0x1f8, DMA_CURSOR_SDM845_MASK_SDMA,
+ sdm845_dma_sblk_2, 9, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA2),
+};
+
+static const struct dpu_lm_cfg sc7280_lm[] = {
+ LM_BLK("lm_0", LM_0, 0x44000, MIXER_SDM845_MASK,
+ &sc7180_lm_sblk, PINGPONG_0, 0, DSPP_0),
+ LM_BLK("lm_2", LM_2, 0x46000, MIXER_SDM845_MASK,
+ &sc7180_lm_sblk, PINGPONG_2, LM_3, 0),
+ LM_BLK("lm_3", LM_3, 0x47000, MIXER_SDM845_MASK,
+ &sc7180_lm_sblk, PINGPONG_3, LM_2, 0),
+};
+
+static const struct dpu_dspp_cfg sc7280_dspp[] = {
+ DSPP_BLK("dspp_0", DSPP_0, 0x54000, DSPP_SC7180_MASK,
+ &sc7180_dspp_sblk),
+};
+
+static const struct dpu_pingpong_cfg sc7280_pp[] = {
+ PP_BLK("pingpong_0", PINGPONG_0, 0x69000, 0, sc7280_pp_sblk, -1, -1),
+ PP_BLK("pingpong_1", PINGPONG_1, 0x6a000, 0, sc7280_pp_sblk, -1, -1),
+ PP_BLK("pingpong_2", PINGPONG_2, 0x6b000, 0, sc7280_pp_sblk, -1, -1),
+ PP_BLK("pingpong_3", PINGPONG_3, 0x6c000, 0, sc7280_pp_sblk, -1, -1),
+};
+
+static const struct dpu_intf_cfg sc7280_intf[] = {
+ INTF_BLK("intf_0", INTF_0, 0x34000, 0x280, INTF_DP, MSM_DP_CONTROLLER_0, 24, INTF_SC7280_MASK, MDP_SSPP_TOP0_INTR, 24, 25),
+ INTF_BLK("intf_1", INTF_1, 0x35000, 0x2c4, INTF_DSI, 0, 24, INTF_SC7280_MASK, MDP_SSPP_TOP0_INTR, 26, 27),
+ INTF_BLK("intf_5", INTF_5, 0x39000, 0x280, INTF_DP, MSM_DP_CONTROLLER_1, 24, INTF_SC7280_MASK, MDP_SSPP_TOP0_INTR, 22, 23),
+};
+
+static const struct dpu_perf_cfg sc7280_perf_data = {
+ .max_bw_low = 4700000,
+ .max_bw_high = 8800000,
+ .min_core_ib = 2500000,
+ .min_llcc_ib = 0,
+ .min_dram_ib = 1600000,
+ .min_prefill_lines = 24,
+ .danger_lut_tbl = {0xffff, 0xffff, 0x0},
+ .safe_lut_tbl = {0xff00, 0xff00, 0xffff},
+ .qos_lut_tbl = {
+ {.nentry = ARRAY_SIZE(sc7180_qos_macrotile),
+ .entries = sc7180_qos_macrotile
+ },
+ {.nentry = ARRAY_SIZE(sc7180_qos_macrotile),
+ .entries = sc7180_qos_macrotile
+ },
+ {.nentry = ARRAY_SIZE(sc7180_qos_nrt),
+ .entries = sc7180_qos_nrt
+ },
+ },
+ .cdp_cfg = {
+ {.rd_enable = 1, .wr_enable = 1},
+ {.rd_enable = 1, .wr_enable = 0}
+ },
+ .clk_inefficiency_factor = 105,
+ .bw_inefficiency_factor = 120,
+};
+
+const struct dpu_mdss_cfg dpu_sc7280_cfg = {
+ .caps = &sc7280_dpu_caps,
+ .ubwc = &sc7280_ubwc_cfg,
+ .mdp_count = ARRAY_SIZE(sc7280_mdp),
+ .mdp = sc7280_mdp,
+ .ctl_count = ARRAY_SIZE(sc7280_ctl),
+ .ctl = sc7280_ctl,
+ .sspp_count = ARRAY_SIZE(sc7280_sspp),
+ .sspp = sc7280_sspp,
+ .dspp_count = ARRAY_SIZE(sc7280_dspp),
+ .dspp = sc7280_dspp,
+ .mixer_count = ARRAY_SIZE(sc7280_lm),
+ .mixer = sc7280_lm,
+ .pingpong_count = ARRAY_SIZE(sc7280_pp),
+ .pingpong = sc7280_pp,
+ .intf_count = ARRAY_SIZE(sc7280_intf),
+ .intf = sc7280_intf,
+ .vbif_count = ARRAY_SIZE(sdm845_vbif),
+ .vbif = sdm845_vbif,
+ .perf = &sc7280_perf_data,
+ .mdss_irqs = BIT(MDP_SSPP_TOP0_INTR) | \
+ BIT(MDP_SSPP_TOP0_INTR2) | \
+ BIT(MDP_SSPP_TOP0_HIST_INTR) | \
+ BIT(MDP_INTF0_7xxx_INTR) | \
+ BIT(MDP_INTF1_7xxx_INTR) | \
+ BIT(MDP_INTF5_7xxx_INTR),
+};
+
+#endif
diff --git a/drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_8_0_sc8280xp.h b/drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_8_0_sc8280xp.h
new file mode 100644
index 000000000000..9aab110b8c44
--- /dev/null
+++ b/drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_8_0_sc8280xp.h
@@ -0,0 +1,222 @@
+/* SPDX-License-Identifier: GPL-2.0-only */
+/*
+ * Copyright (c) 2022. Qualcomm Innovation Center, Inc. All rights reserved.
+ * Copyright (c) 2015-2018, 2020 The Linux Foundation. All rights reserved.
+ */
+
+#ifndef _DPU_8_0_SC8280XP_H
+#define _DPU_8_0_SC8280XP_H
+
+static const struct dpu_caps sc8280xp_dpu_caps = {
+ .max_mixer_width = DEFAULT_DPU_OUTPUT_LINE_WIDTH,
+ .max_mixer_blendstages = 11,
+ .qseed_type = DPU_SSPP_SCALER_QSEED4,
+ .has_src_split = true,
+ .has_dim_layer = true,
+ .has_idle_pc = true,
+ .has_3d_merge = true,
+ .max_linewidth = 5120,
+ .pixel_ram_size = DEFAULT_PIXEL_RAM_SIZE,
+};
+
+static const struct dpu_ubwc_cfg sc8280xp_ubwc_cfg = {
+ .ubwc_version = DPU_HW_UBWC_VER_40,
+ .highest_bank_bit = 2,
+ .ubwc_swizzle = 6,
+};
+
+static const struct dpu_mdp_cfg sc8280xp_mdp[] = {
+ {
+ .name = "top_0", .id = MDP_TOP,
+ .base = 0x0, .len = 0x494,
+ .features = BIT(DPU_MDP_PERIPH_0_REMOVED),
+ .clk_ctrls[DPU_CLK_CTRL_VIG0] = { .reg_off = 0x2ac, .bit_off = 0 },
+ .clk_ctrls[DPU_CLK_CTRL_VIG1] = { .reg_off = 0x2b4, .bit_off = 0 },
+ .clk_ctrls[DPU_CLK_CTRL_VIG2] = { .reg_off = 0x2bc, .bit_off = 0 },
+ .clk_ctrls[DPU_CLK_CTRL_VIG3] = { .reg_off = 0x2c4, .bit_off = 0 },
+ .clk_ctrls[DPU_CLK_CTRL_DMA0] = { .reg_off = 0x2ac, .bit_off = 8 },
+ .clk_ctrls[DPU_CLK_CTRL_DMA1] = { .reg_off = 0x2b4, .bit_off = 8 },
+ .clk_ctrls[DPU_CLK_CTRL_DMA2] = { .reg_off = 0x2bc, .bit_off = 8 },
+ .clk_ctrls[DPU_CLK_CTRL_DMA3] = { .reg_off = 0x2c4, .bit_off = 8 },
+ .clk_ctrls[DPU_CLK_CTRL_REG_DMA] = { .reg_off = 0x2bc, .bit_off = 20 },
+ },
+};
+
+static const struct dpu_ctl_cfg sc8280xp_ctl[] = {
+ {
+ .name = "ctl_0", .id = CTL_0,
+ .base = 0x15000, .len = 0x204,
+ .features = CTL_SC7280_MASK,
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 9),
+ },
+ {
+ .name = "ctl_1", .id = CTL_1,
+ .base = 0x16000, .len = 0x204,
+ .features = CTL_SC7280_MASK,
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 10),
+ },
+ {
+ .name = "ctl_2", .id = CTL_2,
+ .base = 0x17000, .len = 0x204,
+ .features = CTL_SC7280_MASK,
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 11),
+ },
+ {
+ .name = "ctl_3", .id = CTL_3,
+ .base = 0x18000, .len = 0x204,
+ .features = CTL_SC7280_MASK,
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 12),
+ },
+ {
+ .name = "ctl_4", .id = CTL_4,
+ .base = 0x19000, .len = 0x204,
+ .features = CTL_SC7280_MASK,
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 13),
+ },
+ {
+ .name = "ctl_5", .id = CTL_5,
+ .base = 0x1a000, .len = 0x204,
+ .features = CTL_SC7280_MASK,
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 23),
+ },
+};
+
+static const struct dpu_sspp_cfg sc8280xp_sspp[] = {
+ SSPP_BLK("sspp_0", SSPP_VIG0, 0x4000, 0x2ac, VIG_SC7180_MASK,
+ sm8250_vig_sblk_0, 0, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG0),
+ SSPP_BLK("sspp_1", SSPP_VIG1, 0x6000, 0x2ac, VIG_SC7180_MASK,
+ sm8250_vig_sblk_1, 4, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG1),
+ SSPP_BLK("sspp_2", SSPP_VIG2, 0x8000, 0x2ac, VIG_SC7180_MASK,
+ sm8250_vig_sblk_2, 8, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG2),
+ SSPP_BLK("sspp_3", SSPP_VIG3, 0xa000, 0x2ac, VIG_SC7180_MASK,
+ sm8250_vig_sblk_3, 12, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG3),
+ SSPP_BLK("sspp_8", SSPP_DMA0, 0x24000, 0x2ac, DMA_SDM845_MASK,
+ sdm845_dma_sblk_0, 1, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA0),
+ SSPP_BLK("sspp_9", SSPP_DMA1, 0x26000, 0x2ac, DMA_SDM845_MASK,
+ sdm845_dma_sblk_1, 5, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA1),
+ SSPP_BLK("sspp_10", SSPP_DMA2, 0x28000, 0x2ac, DMA_CURSOR_SDM845_MASK,
+ sdm845_dma_sblk_2, 9, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA2),
+ SSPP_BLK("sspp_11", SSPP_DMA3, 0x2a000, 0x2ac, DMA_CURSOR_SDM845_MASK,
+ sdm845_dma_sblk_3, 13, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA3),
+};
+
+static const struct dpu_lm_cfg sc8280xp_lm[] = {
+ LM_BLK("lm_0", LM_0, 0x44000, MIXER_SDM845_MASK, &sdm845_lm_sblk, PINGPONG_0, LM_1, DSPP_0),
+ LM_BLK("lm_1", LM_1, 0x45000, MIXER_SDM845_MASK, &sdm845_lm_sblk, PINGPONG_1, LM_0, DSPP_1),
+ LM_BLK("lm_2", LM_2, 0x46000, MIXER_SDM845_MASK, &sdm845_lm_sblk, PINGPONG_2, LM_3, DSPP_2),
+ LM_BLK("lm_3", LM_3, 0x47000, MIXER_SDM845_MASK, &sdm845_lm_sblk, PINGPONG_3, LM_2, DSPP_3),
+ LM_BLK("lm_4", LM_4, 0x48000, MIXER_SDM845_MASK, &sdm845_lm_sblk, PINGPONG_4, LM_5, 0),
+ LM_BLK("lm_5", LM_5, 0x49000, MIXER_SDM845_MASK, &sdm845_lm_sblk, PINGPONG_5, LM_4, 0),
+};
+
+static const struct dpu_dspp_cfg sc8280xp_dspp[] = {
+ DSPP_BLK("dspp_0", DSPP_0, 0x54000, DSPP_SC7180_MASK,
+ &sm8150_dspp_sblk),
+ DSPP_BLK("dspp_1", DSPP_1, 0x56000, DSPP_SC7180_MASK,
+ &sm8150_dspp_sblk),
+ DSPP_BLK("dspp_2", DSPP_2, 0x58000, DSPP_SC7180_MASK,
+ &sm8150_dspp_sblk),
+ DSPP_BLK("dspp_3", DSPP_3, 0x5a000, DSPP_SC7180_MASK,
+ &sm8150_dspp_sblk),
+};
+
+static const struct dpu_pingpong_cfg sc8280xp_pp[] = {
+ PP_BLK_TE("pingpong_0", PINGPONG_0, 0x69000, MERGE_3D_0, sdm845_pp_sblk_te,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 8), -1),
+ PP_BLK_TE("pingpong_1", PINGPONG_1, 0x6a000, MERGE_3D_0, sdm845_pp_sblk_te,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 9), -1),
+ PP_BLK_TE("pingpong_2", PINGPONG_2, 0x6b000, MERGE_3D_1, sdm845_pp_sblk_te,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 10), -1),
+ PP_BLK_TE("pingpong_3", PINGPONG_3, 0x6c000, MERGE_3D_1, sdm845_pp_sblk_te,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 11), -1),
+ PP_BLK_TE("pingpong_4", PINGPONG_4, 0x6d000, MERGE_3D_2, sdm845_pp_sblk_te,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 30), -1),
+ PP_BLK_TE("pingpong_5", PINGPONG_5, 0x6e000, MERGE_3D_2, sdm845_pp_sblk_te,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 31), -1),
+};
+
+static const struct dpu_merge_3d_cfg sc8280xp_merge_3d[] = {
+ MERGE_3D_BLK("merge_3d_0", MERGE_3D_0, 0x4e000),
+ MERGE_3D_BLK("merge_3d_1", MERGE_3D_1, 0x4f000),
+ MERGE_3D_BLK("merge_3d_2", MERGE_3D_2, 0x50000),
+};
+
+/* TODO: INTF 3, 8 and 7 are used for MST, marked as INTF_NONE for now */
+static const struct dpu_intf_cfg sc8280xp_intf[] = {
+ INTF_BLK("intf_0", INTF_0, 0x34000, 0x280, INTF_DP, MSM_DP_CONTROLLER_0, 24, INTF_SC7280_MASK, MDP_SSPP_TOP0_INTR, 24, 25),
+ INTF_BLK("intf_1", INTF_1, 0x35000, 0x300, INTF_DSI, 0, 24, INTF_SC7280_MASK, MDP_SSPP_TOP0_INTR, 26, 27),
+ INTF_BLK("intf_2", INTF_2, 0x36000, 0x300, INTF_DSI, 1, 24, INTF_SC7280_MASK, MDP_SSPP_TOP0_INTR, 28, 29),
+ INTF_BLK("intf_3", INTF_3, 0x37000, 0x280, INTF_NONE, MSM_DP_CONTROLLER_0, 24, INTF_SC7280_MASK, MDP_SSPP_TOP0_INTR, 30, 31),
+ INTF_BLK("intf_4", INTF_4, 0x38000, 0x280, INTF_DP, MSM_DP_CONTROLLER_1, 24, INTF_SC7280_MASK, MDP_SSPP_TOP0_INTR, 20, 21),
+ INTF_BLK("intf_5", INTF_5, 0x39000, 0x280, INTF_DP, MSM_DP_CONTROLLER_3, 24, INTF_SC7280_MASK, MDP_SSPP_TOP0_INTR, 22, 23),
+ INTF_BLK("intf_6", INTF_6, 0x3a000, 0x280, INTF_DP, MSM_DP_CONTROLLER_2, 24, INTF_SC7280_MASK, MDP_SSPP_TOP0_INTR, 16, 17),
+ INTF_BLK("intf_7", INTF_7, 0x3b000, 0x280, INTF_NONE, MSM_DP_CONTROLLER_2, 24, INTF_SC7280_MASK, MDP_SSPP_TOP0_INTR, 18, 19),
+ INTF_BLK("intf_8", INTF_8, 0x3c000, 0x280, INTF_NONE, MSM_DP_CONTROLLER_1, 24, INTF_SC7280_MASK, MDP_SSPP_TOP0_INTR, 12, 13),
+};
+
+static const struct dpu_perf_cfg sc8280xp_perf_data = {
+ .max_bw_low = 13600000,
+ .max_bw_high = 18200000,
+ .min_core_ib = 2500000,
+ .min_llcc_ib = 0,
+ .min_dram_ib = 800000,
+ .danger_lut_tbl = {0xf, 0xffff, 0x0},
+ .qos_lut_tbl = {
+ {.nentry = ARRAY_SIZE(sc8180x_qos_linear),
+ .entries = sc8180x_qos_linear
+ },
+ {.nentry = ARRAY_SIZE(sc8180x_qos_macrotile),
+ .entries = sc8180x_qos_macrotile
+ },
+ {.nentry = ARRAY_SIZE(sc7180_qos_nrt),
+ .entries = sc7180_qos_nrt
+ },
+ /* TODO: macrotile-qseed is different from macrotile */
+ },
+ .cdp_cfg = {
+ {.rd_enable = 1, .wr_enable = 1},
+ {.rd_enable = 1, .wr_enable = 0}
+ },
+ .clk_inefficiency_factor = 105,
+ .bw_inefficiency_factor = 120,
+};
+
+const struct dpu_mdss_cfg dpu_sc8280xp_cfg = {
+ .caps = &sc8280xp_dpu_caps,
+ .ubwc = &sc8280xp_ubwc_cfg,
+ .mdp_count = ARRAY_SIZE(sc8280xp_mdp),
+ .mdp = sc8280xp_mdp,
+ .ctl_count = ARRAY_SIZE(sc8280xp_ctl),
+ .ctl = sc8280xp_ctl,
+ .sspp_count = ARRAY_SIZE(sc8280xp_sspp),
+ .sspp = sc8280xp_sspp,
+ .mixer_count = ARRAY_SIZE(sc8280xp_lm),
+ .mixer = sc8280xp_lm,
+ .dspp_count = ARRAY_SIZE(sc8280xp_dspp),
+ .dspp = sc8280xp_dspp,
+ .pingpong_count = ARRAY_SIZE(sc8280xp_pp),
+ .pingpong = sc8280xp_pp,
+ .merge_3d_count = ARRAY_SIZE(sc8280xp_merge_3d),
+ .merge_3d = sc8280xp_merge_3d,
+ .intf_count = ARRAY_SIZE(sc8280xp_intf),
+ .intf = sc8280xp_intf,
+ .vbif_count = ARRAY_SIZE(sdm845_vbif),
+ .vbif = sdm845_vbif,
+ .reg_dma_count = 1,
+ .dma_cfg = &sc8280xp_regdma,
+ .perf = &sc8280xp_perf_data,
+ .mdss_irqs = BIT(MDP_SSPP_TOP0_INTR) | \
+ BIT(MDP_SSPP_TOP0_INTR2) | \
+ BIT(MDP_SSPP_TOP0_HIST_INTR) | \
+ BIT(MDP_INTF0_7xxx_INTR) | \
+ BIT(MDP_INTF1_7xxx_INTR) | \
+ BIT(MDP_INTF2_7xxx_INTR) | \
+ BIT(MDP_INTF3_7xxx_INTR) | \
+ BIT(MDP_INTF4_7xxx_INTR) | \
+ BIT(MDP_INTF5_7xxx_INTR) | \
+ BIT(MDP_INTF6_7xxx_INTR) | \
+ BIT(MDP_INTF7_7xxx_INTR) | \
+ BIT(MDP_INTF8_7xxx_INTR),
+};
+
+#endif
diff --git a/drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_8_1_sm8450.h b/drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_8_1_sm8450.h
new file mode 100644
index 000000000000..02a259b6b426
--- /dev/null
+++ b/drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_8_1_sm8450.h
@@ -0,0 +1,234 @@
+/* SPDX-License-Identifier: GPL-2.0-only */
+/*
+ * Copyright (c) 2022. Qualcomm Innovation Center, Inc. All rights reserved.
+ * Copyright (c) 2015-2018, 2020 The Linux Foundation. All rights reserved.
+ */
+
+#ifndef _DPU_8_1_SM8450_H
+#define _DPU_8_1_SM8450_H
+
+static const struct dpu_caps sm8450_dpu_caps = {
+ .max_mixer_width = DEFAULT_DPU_OUTPUT_LINE_WIDTH,
+ .max_mixer_blendstages = 0xb,
+ .qseed_type = DPU_SSPP_SCALER_QSEED4,
+ .has_src_split = true,
+ .has_dim_layer = true,
+ .has_idle_pc = true,
+ .has_3d_merge = true,
+ .max_linewidth = 5120,
+ .pixel_ram_size = DEFAULT_PIXEL_RAM_SIZE,
+};
+
+static const struct dpu_ubwc_cfg sm8450_ubwc_cfg = {
+ .ubwc_version = DPU_HW_UBWC_VER_40,
+ .highest_bank_bit = 0x3, /* TODO: 2 for LP_DDR4 */
+ .ubwc_swizzle = 0x6,
+};
+
+static const struct dpu_mdp_cfg sm8450_mdp[] = {
+ {
+ .name = "top_0", .id = MDP_TOP,
+ .base = 0x0, .len = 0x494,
+ .features = BIT(DPU_MDP_PERIPH_0_REMOVED),
+ .clk_ctrls[DPU_CLK_CTRL_VIG0] = { .reg_off = 0x2ac, .bit_off = 0 },
+ .clk_ctrls[DPU_CLK_CTRL_VIG1] = { .reg_off = 0x2b4, .bit_off = 0 },
+ .clk_ctrls[DPU_CLK_CTRL_VIG2] = { .reg_off = 0x2bc, .bit_off = 0 },
+ .clk_ctrls[DPU_CLK_CTRL_VIG3] = { .reg_off = 0x2c4, .bit_off = 0 },
+ .clk_ctrls[DPU_CLK_CTRL_DMA0] = { .reg_off = 0x2ac, .bit_off = 8 },
+ .clk_ctrls[DPU_CLK_CTRL_DMA1] = { .reg_off = 0x2b4, .bit_off = 8 },
+ .clk_ctrls[DPU_CLK_CTRL_DMA2] = { .reg_off = 0x2bc, .bit_off = 8 },
+ .clk_ctrls[DPU_CLK_CTRL_DMA3] = { .reg_off = 0x2c4, .bit_off = 8 },
+ .clk_ctrls[DPU_CLK_CTRL_REG_DMA] = { .reg_off = 0x2bc, .bit_off = 20 },
+ },
+};
+
+/* FIXME: get rid of DPU_CTL_SPLIT_DISPLAY in favour of proper ACTIVE_CTL support */
+static const struct dpu_ctl_cfg sm8450_ctl[] = {
+ {
+ .name = "ctl_0", .id = CTL_0,
+ .base = 0x15000, .len = 0x204,
+ .features = BIT(DPU_CTL_ACTIVE_CFG) | BIT(DPU_CTL_SPLIT_DISPLAY) | BIT(DPU_CTL_FETCH_ACTIVE),
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 9),
+ },
+ {
+ .name = "ctl_1", .id = CTL_1,
+ .base = 0x16000, .len = 0x204,
+ .features = BIT(DPU_CTL_SPLIT_DISPLAY) | CTL_SC7280_MASK,
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 10),
+ },
+ {
+ .name = "ctl_2", .id = CTL_2,
+ .base = 0x17000, .len = 0x204,
+ .features = CTL_SC7280_MASK,
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 11),
+ },
+ {
+ .name = "ctl_3", .id = CTL_3,
+ .base = 0x18000, .len = 0x204,
+ .features = CTL_SC7280_MASK,
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 12),
+ },
+ {
+ .name = "ctl_4", .id = CTL_4,
+ .base = 0x19000, .len = 0x204,
+ .features = CTL_SC7280_MASK,
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 13),
+ },
+ {
+ .name = "ctl_5", .id = CTL_5,
+ .base = 0x1a000, .len = 0x204,
+ .features = CTL_SC7280_MASK,
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 23),
+ },
+};
+
+static const struct dpu_sspp_cfg sm8450_sspp[] = {
+ SSPP_BLK("sspp_0", SSPP_VIG0, 0x4000, 0x32c, VIG_SC7180_MASK,
+ sm8250_vig_sblk_0, 0, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG0),
+ SSPP_BLK("sspp_1", SSPP_VIG1, 0x6000, 0x32c, VIG_SC7180_MASK,
+ sm8250_vig_sblk_1, 4, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG1),
+ SSPP_BLK("sspp_2", SSPP_VIG2, 0x8000, 0x32c, VIG_SC7180_MASK,
+ sm8250_vig_sblk_2, 8, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG2),
+ SSPP_BLK("sspp_3", SSPP_VIG3, 0xa000, 0x32c, VIG_SC7180_MASK,
+ sm8250_vig_sblk_3, 12, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG3),
+ SSPP_BLK("sspp_8", SSPP_DMA0, 0x24000, 0x32c, DMA_SDM845_MASK,
+ sdm845_dma_sblk_0, 1, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA0),
+ SSPP_BLK("sspp_9", SSPP_DMA1, 0x26000, 0x32c, DMA_SDM845_MASK,
+ sdm845_dma_sblk_1, 5, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA1),
+ SSPP_BLK("sspp_10", SSPP_DMA2, 0x28000, 0x32c, DMA_CURSOR_SDM845_MASK,
+ sdm845_dma_sblk_2, 9, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA2),
+ SSPP_BLK("sspp_11", SSPP_DMA3, 0x2a000, 0x32c, DMA_CURSOR_SDM845_MASK,
+ sdm845_dma_sblk_3, 13, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA3),
+};
+
+static const struct dpu_lm_cfg sm8450_lm[] = {
+ LM_BLK("lm_0", LM_0, 0x44000, MIXER_SDM845_MASK,
+ &sdm845_lm_sblk, PINGPONG_0, LM_1, DSPP_0),
+ LM_BLK("lm_1", LM_1, 0x45000, MIXER_SDM845_MASK,
+ &sdm845_lm_sblk, PINGPONG_1, LM_0, DSPP_1),
+ LM_BLK("lm_2", LM_2, 0x46000, MIXER_SDM845_MASK,
+ &sdm845_lm_sblk, PINGPONG_2, LM_3, 0),
+ LM_BLK("lm_3", LM_3, 0x47000, MIXER_SDM845_MASK,
+ &sdm845_lm_sblk, PINGPONG_3, LM_2, 0),
+ LM_BLK("lm_4", LM_4, 0x48000, MIXER_SDM845_MASK,
+ &sdm845_lm_sblk, PINGPONG_4, LM_5, 0),
+ LM_BLK("lm_5", LM_5, 0x49000, MIXER_SDM845_MASK,
+ &sdm845_lm_sblk, PINGPONG_5, LM_4, 0),
+};
+
+static const struct dpu_dspp_cfg sm8450_dspp[] = {
+ DSPP_BLK("dspp_0", DSPP_0, 0x54000, DSPP_SC7180_MASK,
+ &sm8150_dspp_sblk),
+ DSPP_BLK("dspp_1", DSPP_1, 0x56000, DSPP_SC7180_MASK,
+ &sm8150_dspp_sblk),
+ DSPP_BLK("dspp_2", DSPP_2, 0x58000, DSPP_SC7180_MASK,
+ &sm8150_dspp_sblk),
+ DSPP_BLK("dspp_3", DSPP_3, 0x5a000, DSPP_SC7180_MASK,
+ &sm8150_dspp_sblk),
+};
+/* FIXME: interrupts */
+static const struct dpu_pingpong_cfg sm8450_pp[] = {
+ PP_BLK_TE("pingpong_0", PINGPONG_0, 0x69000, MERGE_3D_0, sdm845_pp_sblk_te,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 8),
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 12)),
+ PP_BLK_TE("pingpong_1", PINGPONG_1, 0x6a000, MERGE_3D_0, sdm845_pp_sblk_te,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 9),
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 13)),
+ PP_BLK("pingpong_2", PINGPONG_2, 0x6b000, MERGE_3D_1, sdm845_pp_sblk,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 10),
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 14)),
+ PP_BLK("pingpong_3", PINGPONG_3, 0x6c000, MERGE_3D_1, sdm845_pp_sblk,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 11),
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 15)),
+ PP_BLK("pingpong_4", PINGPONG_4, 0x6d000, MERGE_3D_2, sdm845_pp_sblk,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 30),
+ -1),
+ PP_BLK("pingpong_5", PINGPONG_5, 0x6e000, MERGE_3D_2, sdm845_pp_sblk,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 31),
+ -1),
+ PP_BLK("pingpong_6", PINGPONG_6, 0x65800, MERGE_3D_3, sdm845_pp_sblk,
+ -1,
+ -1),
+ PP_BLK("pingpong_7", PINGPONG_7, 0x65c00, MERGE_3D_3, sdm845_pp_sblk,
+ -1,
+ -1),
+};
+
+static const struct dpu_merge_3d_cfg sm8450_merge_3d[] = {
+ MERGE_3D_BLK("merge_3d_0", MERGE_3D_0, 0x4e000),
+ MERGE_3D_BLK("merge_3d_1", MERGE_3D_1, 0x4f000),
+ MERGE_3D_BLK("merge_3d_2", MERGE_3D_2, 0x50000),
+ MERGE_3D_BLK("merge_3d_3", MERGE_3D_3, 0x65f00),
+};
+
+static const struct dpu_intf_cfg sm8450_intf[] = {
+ INTF_BLK("intf_0", INTF_0, 0x34000, 0x280, INTF_DP, MSM_DP_CONTROLLER_0, 24, INTF_SC7280_MASK, MDP_SSPP_TOP0_INTR, 24, 25),
+ INTF_BLK("intf_1", INTF_1, 0x35000, 0x300, INTF_DSI, 0, 24, INTF_SC7280_MASK, MDP_SSPP_TOP0_INTR, 26, 27),
+ INTF_BLK("intf_2", INTF_2, 0x36000, 0x300, INTF_DSI, 1, 24, INTF_SC7280_MASK, MDP_SSPP_TOP0_INTR, 28, 29),
+ INTF_BLK("intf_3", INTF_3, 0x37000, 0x280, INTF_DP, MSM_DP_CONTROLLER_1, 24, INTF_SC7280_MASK, MDP_SSPP_TOP0_INTR, 30, 31),
+};
+
+static const struct dpu_perf_cfg sm8450_perf_data = {
+ .max_bw_low = 13600000,
+ .max_bw_high = 18200000,
+ .min_core_ib = 2500000,
+ .min_llcc_ib = 0,
+ .min_dram_ib = 800000,
+ .min_prefill_lines = 35,
+ /* FIXME: lut tables */
+ .danger_lut_tbl = {0x3ffff, 0x3ffff, 0x0},
+ .safe_lut_tbl = {0xfe00, 0xfe00, 0xffff},
+ .qos_lut_tbl = {
+ {.nentry = ARRAY_SIZE(sc7180_qos_linear),
+ .entries = sc7180_qos_linear
+ },
+ {.nentry = ARRAY_SIZE(sc7180_qos_macrotile),
+ .entries = sc7180_qos_macrotile
+ },
+ {.nentry = ARRAY_SIZE(sc7180_qos_nrt),
+ .entries = sc7180_qos_nrt
+ },
+ /* TODO: macrotile-qseed is different from macrotile */
+ },
+ .cdp_cfg = {
+ {.rd_enable = 1, .wr_enable = 1},
+ {.rd_enable = 1, .wr_enable = 0}
+ },
+ .clk_inefficiency_factor = 105,
+ .bw_inefficiency_factor = 120,
+};
+
+const struct dpu_mdss_cfg dpu_sm8450_cfg = {
+ .caps = &sm8450_dpu_caps,
+ .ubwc = &sm8450_ubwc_cfg,
+ .mdp_count = ARRAY_SIZE(sm8450_mdp),
+ .mdp = sm8450_mdp,
+ .ctl_count = ARRAY_SIZE(sm8450_ctl),
+ .ctl = sm8450_ctl,
+ .sspp_count = ARRAY_SIZE(sm8450_sspp),
+ .sspp = sm8450_sspp,
+ .mixer_count = ARRAY_SIZE(sm8450_lm),
+ .mixer = sm8450_lm,
+ .dspp_count = ARRAY_SIZE(sm8450_dspp),
+ .dspp = sm8450_dspp,
+ .pingpong_count = ARRAY_SIZE(sm8450_pp),
+ .pingpong = sm8450_pp,
+ .merge_3d_count = ARRAY_SIZE(sm8450_merge_3d),
+ .merge_3d = sm8450_merge_3d,
+ .intf_count = ARRAY_SIZE(sm8450_intf),
+ .intf = sm8450_intf,
+ .vbif_count = ARRAY_SIZE(sdm845_vbif),
+ .vbif = sdm845_vbif,
+ .reg_dma_count = 1,
+ .dma_cfg = &sm8450_regdma,
+ .perf = &sm8450_perf_data,
+ .mdss_irqs = BIT(MDP_SSPP_TOP0_INTR) | \
+ BIT(MDP_SSPP_TOP0_INTR2) | \
+ BIT(MDP_SSPP_TOP0_HIST_INTR) | \
+ BIT(MDP_INTF0_7xxx_INTR) | \
+ BIT(MDP_INTF1_7xxx_INTR) | \
+ BIT(MDP_INTF2_7xxx_INTR) | \
+ BIT(MDP_INTF3_7xxx_INTR),
+};
+
+#endif
diff --git a/drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_9_0_sm8550.h b/drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_9_0_sm8550.h
new file mode 100644
index 000000000000..9e403034093f
--- /dev/null
+++ b/drivers/gpu/drm/msm/disp/dpu1/catalog/dpu_9_0_sm8550.h
@@ -0,0 +1,239 @@
+/* SPDX-License-Identifier: GPL-2.0-only */
+/*
+ * Copyright (c) 2022. Qualcomm Innovation Center, Inc. All rights reserved.
+ * Copyright (c) 2015-2018, 2020 The Linux Foundation. All rights reserved.
+ */
+
+#ifndef _DPU_9_0_SM8550_H
+#define _DPU_9_0_SM8550_H
+
+static const struct dpu_caps sm8550_dpu_caps = {
+ .max_mixer_width = DEFAULT_DPU_OUTPUT_LINE_WIDTH,
+ .max_mixer_blendstages = 0xb,
+ .qseed_type = DPU_SSPP_SCALER_QSEED4,
+ .has_src_split = true,
+ .has_dim_layer = true,
+ .has_idle_pc = true,
+ .has_3d_merge = true,
+ .max_linewidth = 5120,
+ .pixel_ram_size = DEFAULT_PIXEL_RAM_SIZE,
+};
+
+static const struct dpu_ubwc_cfg sm8550_ubwc_cfg = {
+ .ubwc_version = DPU_HW_UBWC_VER_40,
+ .highest_bank_bit = 0x3, /* TODO: 2 for LP_DDR4 */
+};
+
+static const struct dpu_mdp_cfg sm8550_mdp[] = {
+ {
+ .name = "top_0", .id = MDP_TOP,
+ .base = 0, .len = 0x494,
+ .features = BIT(DPU_MDP_PERIPH_0_REMOVED),
+ .clk_ctrls[DPU_CLK_CTRL_VIG0] = { .reg_off = 0x4330, .bit_off = 0 },
+ .clk_ctrls[DPU_CLK_CTRL_VIG1] = { .reg_off = 0x6330, .bit_off = 0 },
+ .clk_ctrls[DPU_CLK_CTRL_VIG2] = { .reg_off = 0x8330, .bit_off = 0 },
+ .clk_ctrls[DPU_CLK_CTRL_VIG3] = { .reg_off = 0xa330, .bit_off = 0 },
+ .clk_ctrls[DPU_CLK_CTRL_DMA0] = { .reg_off = 0x24330, .bit_off = 0 },
+ .clk_ctrls[DPU_CLK_CTRL_DMA1] = { .reg_off = 0x26330, .bit_off = 0 },
+ .clk_ctrls[DPU_CLK_CTRL_DMA2] = { .reg_off = 0x28330, .bit_off = 0 },
+ .clk_ctrls[DPU_CLK_CTRL_DMA3] = { .reg_off = 0x2a330, .bit_off = 0 },
+ .clk_ctrls[DPU_CLK_CTRL_DMA4] = { .reg_off = 0x2c330, .bit_off = 0 },
+ .clk_ctrls[DPU_CLK_CTRL_DMA5] = { .reg_off = 0x2e330, .bit_off = 0 },
+ .clk_ctrls[DPU_CLK_CTRL_REG_DMA] = { .reg_off = 0x2bc, .bit_off = 20 },
+ },
+};
+
+/* FIXME: get rid of DPU_CTL_SPLIT_DISPLAY in favour of proper ACTIVE_CTL support */
+static const struct dpu_ctl_cfg sm8550_ctl[] = {
+ {
+ .name = "ctl_0", .id = CTL_0,
+ .base = 0x15000, .len = 0x290,
+ .features = CTL_SM8550_MASK | BIT(DPU_CTL_SPLIT_DISPLAY),
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 9),
+ },
+ {
+ .name = "ctl_1", .id = CTL_1,
+ .base = 0x16000, .len = 0x290,
+ .features = CTL_SM8550_MASK | BIT(DPU_CTL_SPLIT_DISPLAY),
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 10),
+ },
+ {
+ .name = "ctl_2", .id = CTL_2,
+ .base = 0x17000, .len = 0x290,
+ .features = CTL_SM8550_MASK,
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 11),
+ },
+ {
+ .name = "ctl_3", .id = CTL_3,
+ .base = 0x18000, .len = 0x290,
+ .features = CTL_SM8550_MASK,
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 12),
+ },
+ {
+ .name = "ctl_4", .id = CTL_4,
+ .base = 0x19000, .len = 0x290,
+ .features = CTL_SM8550_MASK,
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 13),
+ },
+ {
+ .name = "ctl_5", .id = CTL_5,
+ .base = 0x1a000, .len = 0x290,
+ .features = CTL_SM8550_MASK,
+ .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 23),
+ },
+};
+
+static const struct dpu_sspp_cfg sm8550_sspp[] = {
+ SSPP_BLK("sspp_0", SSPP_VIG0, 0x4000, 0x344, VIG_SC7180_MASK,
+ sm8550_vig_sblk_0, 0, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG0),
+ SSPP_BLK("sspp_1", SSPP_VIG1, 0x6000, 0x344, VIG_SC7180_MASK,
+ sm8550_vig_sblk_1, 4, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG1),
+ SSPP_BLK("sspp_2", SSPP_VIG2, 0x8000, 0x344, VIG_SC7180_MASK,
+ sm8550_vig_sblk_2, 8, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG2),
+ SSPP_BLK("sspp_3", SSPP_VIG3, 0xa000, 0x344, VIG_SC7180_MASK,
+ sm8550_vig_sblk_3, 12, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG3),
+ SSPP_BLK("sspp_8", SSPP_DMA0, 0x24000, 0x344, DMA_SDM845_MASK,
+ sdm845_dma_sblk_0, 1, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA0),
+ SSPP_BLK("sspp_9", SSPP_DMA1, 0x26000, 0x344, DMA_SDM845_MASK,
+ sdm845_dma_sblk_1, 5, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA1),
+ SSPP_BLK("sspp_10", SSPP_DMA2, 0x28000, 0x344, DMA_SDM845_MASK,
+ sdm845_dma_sblk_2, 9, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA2),
+ SSPP_BLK("sspp_11", SSPP_DMA3, 0x2a000, 0x344, DMA_SDM845_MASK,
+ sdm845_dma_sblk_3, 13, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA3),
+ SSPP_BLK("sspp_12", SSPP_DMA4, 0x2c000, 0x344, DMA_CURSOR_SDM845_MASK,
+ sm8550_dma_sblk_4, 14, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA4),
+ SSPP_BLK("sspp_13", SSPP_DMA5, 0x2e000, 0x344, DMA_CURSOR_SDM845_MASK,
+ sm8550_dma_sblk_5, 15, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA5),
+};
+
+static const struct dpu_lm_cfg sm8550_lm[] = {
+ LM_BLK("lm_0", LM_0, 0x44000, MIXER_SDM845_MASK,
+ &sdm845_lm_sblk, PINGPONG_0, LM_1, DSPP_0),
+ LM_BLK("lm_1", LM_1, 0x45000, MIXER_SDM845_MASK,
+ &sdm845_lm_sblk, PINGPONG_1, LM_0, DSPP_1),
+ LM_BLK("lm_2", LM_2, 0x46000, MIXER_SDM845_MASK,
+ &sdm845_lm_sblk, PINGPONG_2, LM_3, 0),
+ LM_BLK("lm_3", LM_3, 0x47000, MIXER_SDM845_MASK,
+ &sdm845_lm_sblk, PINGPONG_3, LM_2, 0),
+ LM_BLK("lm_4", LM_4, 0x48000, MIXER_SDM845_MASK,
+ &sdm845_lm_sblk, PINGPONG_4, LM_5, 0),
+ LM_BLK("lm_5", LM_5, 0x49000, MIXER_SDM845_MASK,
+ &sdm845_lm_sblk, PINGPONG_5, LM_4, 0),
+};
+
+static const struct dpu_dspp_cfg sm8550_dspp[] = {
+ DSPP_BLK("dspp_0", DSPP_0, 0x54000, DSPP_SC7180_MASK,
+ &sm8150_dspp_sblk),
+ DSPP_BLK("dspp_1", DSPP_1, 0x56000, DSPP_SC7180_MASK,
+ &sm8150_dspp_sblk),
+ DSPP_BLK("dspp_2", DSPP_2, 0x58000, DSPP_SC7180_MASK,
+ &sm8150_dspp_sblk),
+ DSPP_BLK("dspp_3", DSPP_3, 0x5a000, DSPP_SC7180_MASK,
+ &sm8150_dspp_sblk),
+};
+static const struct dpu_pingpong_cfg sm8550_pp[] = {
+ PP_BLK_DIPHER("pingpong_0", PINGPONG_0, 0x69000, MERGE_3D_0, sc7280_pp_sblk,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 8),
+ -1),
+ PP_BLK_DIPHER("pingpong_1", PINGPONG_1, 0x6a000, MERGE_3D_0, sc7280_pp_sblk,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 9),
+ -1),
+ PP_BLK_DIPHER("pingpong_2", PINGPONG_2, 0x6b000, MERGE_3D_1, sc7280_pp_sblk,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 10),
+ -1),
+ PP_BLK_DIPHER("pingpong_3", PINGPONG_3, 0x6c000, MERGE_3D_1, sc7280_pp_sblk,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 11),
+ -1),
+ PP_BLK_DIPHER("pingpong_4", PINGPONG_4, 0x6d000, MERGE_3D_2, sc7280_pp_sblk,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 30),
+ -1),
+ PP_BLK_DIPHER("pingpong_5", PINGPONG_5, 0x6e000, MERGE_3D_2, sc7280_pp_sblk,
+ DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 31),
+ -1),
+ PP_BLK_DIPHER("pingpong_6", PINGPONG_6, 0x66000, MERGE_3D_3, sc7280_pp_sblk,
+ -1,
+ -1),
+ PP_BLK_DIPHER("pingpong_7", PINGPONG_7, 0x66400, MERGE_3D_3, sc7280_pp_sblk,
+ -1,
+ -1),
+};
+
+static const struct dpu_merge_3d_cfg sm8550_merge_3d[] = {
+ MERGE_3D_BLK("merge_3d_0", MERGE_3D_0, 0x4e000),
+ MERGE_3D_BLK("merge_3d_1", MERGE_3D_1, 0x4f000),
+ MERGE_3D_BLK("merge_3d_2", MERGE_3D_2, 0x50000),
+ MERGE_3D_BLK("merge_3d_3", MERGE_3D_3, 0x66700),
+};
+
+static const struct dpu_intf_cfg sm8550_intf[] = {
+ INTF_BLK("intf_0", INTF_0, 0x34000, 0x280, INTF_DP, MSM_DP_CONTROLLER_0, 24, INTF_SC7280_MASK, MDP_SSPP_TOP0_INTR, 24, 25),
+ /* TODO TE sub-blocks for intf1 & intf2 */
+ INTF_BLK("intf_1", INTF_1, 0x35000, 0x300, INTF_DSI, 0, 24, INTF_SC7280_MASK, MDP_SSPP_TOP0_INTR, 26, 27),
+ INTF_BLK("intf_2", INTF_2, 0x36000, 0x300, INTF_DSI, 1, 24, INTF_SC7280_MASK, MDP_SSPP_TOP0_INTR, 28, 29),
+ INTF_BLK("intf_3", INTF_3, 0x37000, 0x280, INTF_DP, MSM_DP_CONTROLLER_1, 24, INTF_SC7280_MASK, MDP_SSPP_TOP0_INTR, 30, 31),
+};
+
+static const struct dpu_perf_cfg sm8550_perf_data = {
+ .max_bw_low = 13600000,
+ .max_bw_high = 18200000,
+ .min_core_ib = 2500000,
+ .min_llcc_ib = 0,
+ .min_dram_ib = 800000,
+ .min_prefill_lines = 35,
+ /* FIXME: lut tables */
+ .danger_lut_tbl = {0x3ffff, 0x3ffff, 0x0},
+ .safe_lut_tbl = {0xfe00, 0xfe00, 0xffff},
+ .qos_lut_tbl = {
+ {.nentry = ARRAY_SIZE(sc7180_qos_linear),
+ .entries = sc7180_qos_linear
+ },
+ {.nentry = ARRAY_SIZE(sc7180_qos_macrotile),
+ .entries = sc7180_qos_macrotile
+ },
+ {.nentry = ARRAY_SIZE(sc7180_qos_nrt),
+ .entries = sc7180_qos_nrt
+ },
+ /* TODO: macrotile-qseed is different from macrotile */
+ },
+ .cdp_cfg = {
+ {.rd_enable = 1, .wr_enable = 1},
+ {.rd_enable = 1, .wr_enable = 0}
+ },
+ .clk_inefficiency_factor = 105,
+ .bw_inefficiency_factor = 120,
+};
+
+const struct dpu_mdss_cfg dpu_sm8550_cfg = {
+ .caps = &sm8550_dpu_caps,
+ .ubwc = &sm8550_ubwc_cfg,
+ .mdp_count = ARRAY_SIZE(sm8550_mdp),
+ .mdp = sm8550_mdp,
+ .ctl_count = ARRAY_SIZE(sm8550_ctl),
+ .ctl = sm8550_ctl,
+ .sspp_count = ARRAY_SIZE(sm8550_sspp),
+ .sspp = sm8550_sspp,
+ .mixer_count = ARRAY_SIZE(sm8550_lm),
+ .mixer = sm8550_lm,
+ .dspp_count = ARRAY_SIZE(sm8550_dspp),
+ .dspp = sm8550_dspp,
+ .pingpong_count = ARRAY_SIZE(sm8550_pp),
+ .pingpong = sm8550_pp,
+ .merge_3d_count = ARRAY_SIZE(sm8550_merge_3d),
+ .merge_3d = sm8550_merge_3d,
+ .intf_count = ARRAY_SIZE(sm8550_intf),
+ .intf = sm8550_intf,
+ .vbif_count = ARRAY_SIZE(sdm845_vbif),
+ .vbif = sdm845_vbif,
+ .reg_dma_count = 1,
+ .dma_cfg = &sm8450_regdma,
+ .perf = &sm8550_perf_data,
+ .mdss_irqs = BIT(MDP_SSPP_TOP0_INTR) | \
+ BIT(MDP_SSPP_TOP0_INTR2) | \
+ BIT(MDP_SSPP_TOP0_HIST_INTR) | \
+ BIT(MDP_INTF0_7xxx_INTR) | \
+ BIT(MDP_INTF1_7xxx_INTR) | \
+ BIT(MDP_INTF2_7xxx_INTR) | \
+ BIT(MDP_INTF3_7xxx_INTR),
+};
+
+#endif
diff --git a/drivers/gpu/drm/msm/disp/dpu1/dpu_crtc.c b/drivers/gpu/drm/msm/disp/dpu1/dpu_crtc.c
index 13ce321283ff..cc66ddffe672 100644
--- a/drivers/gpu/drm/msm/disp/dpu1/dpu_crtc.c
+++ b/drivers/gpu/drm/msm/disp/dpu1/dpu_crtc.c
@@ -21,6 +21,7 @@
#include <drm/drm_probe_helper.h>
#include <drm/drm_rect.h>
#include <drm/drm_vblank.h>
+#include <drm/drm_self_refresh_helper.h>
#include "dpu_kms.h"
#include "dpu_hw_lm.h"
@@ -400,6 +401,47 @@ static void _dpu_crtc_program_lm_output_roi(struct drm_crtc *crtc)
}
}
+static void _dpu_crtc_blend_setup_pipe(struct drm_crtc *crtc,
+ struct drm_plane *plane,
+ struct dpu_crtc_mixer *mixer,
+ u32 num_mixers,
+ enum dpu_stage stage,
+ struct dpu_format *format,
+ uint64_t modifier,
+ struct dpu_sw_pipe *pipe,
+ unsigned int stage_idx,
+ struct dpu_hw_stage_cfg *stage_cfg
+ )
+{
+ uint32_t lm_idx;
+ enum dpu_sspp sspp_idx;
+ struct drm_plane_state *state;
+
+ sspp_idx = pipe->sspp->idx;
+
+ state = plane->state;
+
+ trace_dpu_crtc_setup_mixer(DRMID(crtc), DRMID(plane),
+ state, to_dpu_plane_state(state), stage_idx,
+ format->base.pixel_format,
+ modifier);
+
+ DRM_DEBUG_ATOMIC("crtc %d stage:%d - plane %d sspp %d fb %d multirect_idx %d\n",
+ crtc->base.id,
+ stage,
+ plane->base.id,
+ sspp_idx - SSPP_NONE,
+ state->fb ? state->fb->base.id : -1,
+ pipe->multirect_index);
+
+ stage_cfg->stage[stage][stage_idx] = sspp_idx;
+ stage_cfg->multirect_index[stage][stage_idx] = pipe->multirect_index;
+
+ /* blend config update */
+ for (lm_idx = 0; lm_idx < num_mixers; lm_idx++)
+ mixer[lm_idx].lm_ctl->ops.update_pending_flush_sspp(mixer[lm_idx].lm_ctl, sspp_idx);
+}
+
static void _dpu_crtc_blend_setup_mixer(struct drm_crtc *crtc,
struct dpu_crtc *dpu_crtc, struct dpu_crtc_mixer *mixer,
struct dpu_hw_stage_cfg *stage_cfg)
@@ -412,15 +454,12 @@ static void _dpu_crtc_blend_setup_mixer(struct drm_crtc *crtc,
struct dpu_format *format;
struct dpu_hw_ctl *ctl = mixer->lm_ctl;
- uint32_t stage_idx, lm_idx;
- int zpos_cnt[DPU_STAGE_MAX + 1] = { 0 };
+ uint32_t lm_idx;
bool bg_alpha_enable = false;
DECLARE_BITMAP(fetch_active, SSPP_MAX);
memset(fetch_active, 0, sizeof(fetch_active));
drm_atomic_crtc_for_each_plane(plane, crtc) {
- enum dpu_sspp sspp_idx;
-
state = plane->state;
if (!state)
continue;
@@ -431,40 +470,30 @@ static void _dpu_crtc_blend_setup_mixer(struct drm_crtc *crtc,
pstate = to_dpu_plane_state(state);
fb = state->fb;
- sspp_idx = dpu_plane_pipe(plane);
- set_bit(sspp_idx, fetch_active);
-
- DRM_DEBUG_ATOMIC("crtc %d stage:%d - plane %d sspp %d fb %d\n",
- crtc->base.id,
- pstate->stage,
- plane->base.id,
- sspp_idx - SSPP_VIG0,
- state->fb ? state->fb->base.id : -1);
-
format = to_dpu_format(msm_framebuffer_format(pstate->base.fb));
if (pstate->stage == DPU_STAGE_BASE && format->alpha_enable)
bg_alpha_enable = true;
- stage_idx = zpos_cnt[pstate->stage]++;
- stage_cfg->stage[pstate->stage][stage_idx] =
- sspp_idx;
- stage_cfg->multirect_index[pstate->stage][stage_idx] =
- pstate->multirect_index;
-
- trace_dpu_crtc_setup_mixer(DRMID(crtc), DRMID(plane),
- state, pstate, stage_idx,
- sspp_idx - SSPP_VIG0,
- format->base.pixel_format,
- fb ? fb->modifier : 0);
+ set_bit(pstate->pipe.sspp->idx, fetch_active);
+ _dpu_crtc_blend_setup_pipe(crtc, plane,
+ mixer, cstate->num_mixers,
+ pstate->stage,
+ format, fb ? fb->modifier : 0,
+ &pstate->pipe, 0, stage_cfg);
+
+ if (pstate->r_pipe.sspp) {
+ set_bit(pstate->r_pipe.sspp->idx, fetch_active);
+ _dpu_crtc_blend_setup_pipe(crtc, plane,
+ mixer, cstate->num_mixers,
+ pstate->stage,
+ format, fb ? fb->modifier : 0,
+ &pstate->r_pipe, 1, stage_cfg);
+ }
/* blend config update */
for (lm_idx = 0; lm_idx < cstate->num_mixers; lm_idx++) {
- _dpu_crtc_setup_blend_cfg(mixer + lm_idx,
- pstate, format);
-
- mixer[lm_idx].lm_ctl->ops.update_pending_flush_sspp(mixer[lm_idx].lm_ctl,
- sspp_idx);
+ _dpu_crtc_setup_blend_cfg(mixer + lm_idx, pstate, format);
if (bg_alpha_enable && !format->alpha_enable)
mixer[lm_idx].mixer_op_mode = 0;
@@ -748,7 +777,7 @@ static void _dpu_crtc_setup_cp_blocks(struct drm_crtc *crtc)
int i;
- if (!state->color_mgmt_changed)
+ if (!state->color_mgmt_changed && !drm_atomic_crtc_needs_modeset(state))
return;
for (i = 0; i < cstate->num_mixers; i++) {
@@ -767,7 +796,7 @@ static void _dpu_crtc_setup_cp_blocks(struct drm_crtc *crtc)
/* stage config flush mask */
ctl->ops.update_pending_flush_dspp(ctl,
- mixer[i].hw_dspp->idx);
+ mixer[i].hw_dspp->idx, DPU_DSPP_PCC);
}
}
@@ -968,7 +997,10 @@ static void dpu_crtc_reset(struct drm_crtc *crtc)
if (crtc->state)
dpu_crtc_destroy_state(crtc, crtc->state);
- __drm_atomic_helper_crtc_reset(crtc, &cstate->base);
+ if (cstate)
+ __drm_atomic_helper_crtc_reset(crtc, &cstate->base);
+ else
+ __drm_atomic_helper_crtc_reset(crtc, NULL);
}
/**
@@ -1018,6 +1050,18 @@ static void dpu_crtc_disable(struct drm_crtc *crtc,
DRM_DEBUG_KMS("crtc%d\n", crtc->base.id);
+ /* If disable is triggered while in self refresh mode,
+ * reset the encoder software state so that in enable
+ * it won't trigger a warn while assigning crtc.
+ */
+ if (old_crtc_state->self_refresh_active) {
+ drm_for_each_encoder_mask(encoder, crtc->dev,
+ old_crtc_state->encoder_mask) {
+ dpu_encoder_assign_crtc(encoder, NULL);
+ }
+ return;
+ }
+
/* Disable/save vblank irq handling */
drm_crtc_vblank_off(crtc);
@@ -1029,7 +1073,14 @@ static void dpu_crtc_disable(struct drm_crtc *crtc,
*/
if (dpu_encoder_get_intf_mode(encoder) == INTF_MODE_VIDEO)
release_bandwidth = true;
- dpu_encoder_assign_crtc(encoder, NULL);
+
+ /*
+ * If disable is triggered during psr active(e.g: screen dim in PSR),
+ * we will need encoder->crtc connection to process the device sleep &
+ * preserve it during psr sequence.
+ */
+ if (!crtc->state->self_refresh_active)
+ dpu_encoder_assign_crtc(encoder, NULL);
}
/* wait for frame_event_done completion */
@@ -1077,6 +1128,9 @@ static void dpu_crtc_enable(struct drm_crtc *crtc,
struct dpu_crtc *dpu_crtc = to_dpu_crtc(crtc);
struct drm_encoder *encoder;
bool request_bandwidth = false;
+ struct drm_crtc_state *old_crtc_state;
+
+ old_crtc_state = drm_atomic_get_old_crtc_state(state, crtc);
pm_runtime_get_sync(crtc->dev->dev);
@@ -1099,25 +1153,23 @@ static void dpu_crtc_enable(struct drm_crtc *crtc,
trace_dpu_crtc_enable(DRMID(crtc), true, dpu_crtc);
dpu_crtc->enabled = true;
- drm_for_each_encoder_mask(encoder, crtc->dev, crtc->state->encoder_mask)
- dpu_encoder_assign_crtc(encoder, crtc);
+ if (!old_crtc_state->self_refresh_active) {
+ drm_for_each_encoder_mask(encoder, crtc->dev, crtc->state->encoder_mask)
+ dpu_encoder_assign_crtc(encoder, crtc);
+ }
/* Enable/restore vblank irq handling */
drm_crtc_vblank_on(crtc);
}
-struct plane_state {
- struct dpu_plane_state *dpu_pstate;
- const struct drm_plane_state *drm_pstate;
- int stage;
- u32 pipe_id;
-};
-
static bool dpu_crtc_needs_dirtyfb(struct drm_crtc_state *cstate)
{
struct drm_crtc *crtc = cstate->crtc;
struct drm_encoder *encoder;
+ if (cstate->self_refresh_active)
+ return true;
+
drm_for_each_encoder_mask (encoder, crtc->dev, cstate->encoder_mask) {
if (dpu_encoder_get_intf_mode(encoder) == INTF_MODE_CMD) {
return true;
@@ -1134,149 +1186,46 @@ static int dpu_crtc_atomic_check(struct drm_crtc *crtc,
crtc);
struct dpu_crtc *dpu_crtc = to_dpu_crtc(crtc);
struct dpu_crtc_state *cstate = to_dpu_crtc_state(crtc_state);
- struct plane_state *pstates;
const struct drm_plane_state *pstate;
struct drm_plane *plane;
- struct drm_display_mode *mode;
- int cnt = 0, rc = 0, mixer_width = 0, i, z_pos;
+ int rc = 0;
- struct dpu_multirect_plane_states multirect_plane[DPU_STAGE_MAX * 2];
- int multirect_count = 0;
- const struct drm_plane_state *pipe_staged[SSPP_MAX];
- int left_zpos_cnt = 0, right_zpos_cnt = 0;
- struct drm_rect crtc_rect = { 0 };
bool needs_dirtyfb = dpu_crtc_needs_dirtyfb(crtc_state);
- pstates = kzalloc(sizeof(*pstates) * DPU_STAGE_MAX * 4, GFP_KERNEL);
-
- if (!crtc_state->enable || !crtc_state->active) {
+ if (!crtc_state->enable || !drm_atomic_crtc_effectively_active(crtc_state)) {
DRM_DEBUG_ATOMIC("crtc%d -> enable %d, active %d, skip atomic_check\n",
crtc->base.id, crtc_state->enable,
crtc_state->active);
memset(&cstate->new_perf, 0, sizeof(cstate->new_perf));
- goto end;
+ return 0;
}
- mode = &crtc_state->adjusted_mode;
DRM_DEBUG_ATOMIC("%s: check\n", dpu_crtc->name);
/* force a full mode set if active state changed */
if (crtc_state->active_changed)
crtc_state->mode_changed = true;
- memset(pipe_staged, 0, sizeof(pipe_staged));
-
- if (cstate->num_mixers) {
- mixer_width = mode->hdisplay / cstate->num_mixers;
-
+ if (cstate->num_mixers)
_dpu_crtc_setup_lm_bounds(crtc, crtc_state);
- }
-
- crtc_rect.x2 = mode->hdisplay;
- crtc_rect.y2 = mode->vdisplay;
- /* get plane state for all drm planes associated with crtc state */
+ /* FIXME: move this to dpu_plane_atomic_check? */
drm_atomic_crtc_state_for_each_plane_state(plane, pstate, crtc_state) {
struct dpu_plane_state *dpu_pstate = to_dpu_plane_state(pstate);
- struct drm_rect dst, clip = crtc_rect;
if (IS_ERR_OR_NULL(pstate)) {
rc = PTR_ERR(pstate);
DPU_ERROR("%s: failed to get plane%d state, %d\n",
dpu_crtc->name, plane->base.id, rc);
- goto end;
+ return rc;
}
- if (cnt >= DPU_STAGE_MAX * 4)
- continue;
if (!pstate->visible)
continue;
- pstates[cnt].dpu_pstate = dpu_pstate;
- pstates[cnt].drm_pstate = pstate;
- pstates[cnt].stage = pstate->normalized_zpos;
- pstates[cnt].pipe_id = dpu_plane_pipe(plane);
-
dpu_pstate->needs_dirtyfb = needs_dirtyfb;
-
- if (pipe_staged[pstates[cnt].pipe_id]) {
- multirect_plane[multirect_count].r0 =
- pipe_staged[pstates[cnt].pipe_id];
- multirect_plane[multirect_count].r1 = pstate;
- multirect_count++;
-
- pipe_staged[pstates[cnt].pipe_id] = NULL;
- } else {
- pipe_staged[pstates[cnt].pipe_id] = pstate;
- }
-
- cnt++;
-
- dst = drm_plane_state_dest(pstate);
- if (!drm_rect_intersect(&clip, &dst)) {
- DPU_ERROR("invalid vertical/horizontal destination\n");
- DPU_ERROR("display: " DRM_RECT_FMT " plane: "
- DRM_RECT_FMT "\n", DRM_RECT_ARG(&crtc_rect),
- DRM_RECT_ARG(&dst));
- rc = -E2BIG;
- goto end;
- }
- }
-
- for (i = 1; i < SSPP_MAX; i++) {
- if (pipe_staged[i])
- dpu_plane_clear_multirect(pipe_staged[i]);
- }
-
- z_pos = -1;
- for (i = 0; i < cnt; i++) {
- /* reset counts at every new blend stage */
- if (pstates[i].stage != z_pos) {
- left_zpos_cnt = 0;
- right_zpos_cnt = 0;
- z_pos = pstates[i].stage;
- }
-
- /* verify z_pos setting before using it */
- if (z_pos >= DPU_STAGE_MAX - DPU_STAGE_0) {
- DPU_ERROR("> %d plane stages assigned\n",
- DPU_STAGE_MAX - DPU_STAGE_0);
- rc = -EINVAL;
- goto end;
- } else if (pstates[i].drm_pstate->crtc_x < mixer_width) {
- if (left_zpos_cnt == 2) {
- DPU_ERROR("> 2 planes @ stage %d on left\n",
- z_pos);
- rc = -EINVAL;
- goto end;
- }
- left_zpos_cnt++;
-
- } else {
- if (right_zpos_cnt == 2) {
- DPU_ERROR("> 2 planes @ stage %d on right\n",
- z_pos);
- rc = -EINVAL;
- goto end;
- }
- right_zpos_cnt++;
- }
-
- pstates[i].dpu_pstate->stage = z_pos + DPU_STAGE_0;
- DRM_DEBUG_ATOMIC("%s: zpos %d\n", dpu_crtc->name, z_pos);
- }
-
- for (i = 0; i < multirect_count; i++) {
- if (dpu_plane_validate_multirect_v2(&multirect_plane[i])) {
- DPU_ERROR(
- "multirect validation failed for planes (%d - %d)\n",
- multirect_plane[i].r0->plane->base.id,
- multirect_plane[i].r1->plane->base.id);
- rc = -EINVAL;
- goto end;
- }
}
atomic_inc(&_dpu_crtc_get_kms(crtc)->bandwidth_ref);
@@ -1285,74 +1234,10 @@ static int dpu_crtc_atomic_check(struct drm_crtc *crtc,
if (rc) {
DPU_ERROR("crtc%d failed performance check %d\n",
crtc->base.id, rc);
- goto end;
- }
-
- /* validate source split:
- * use pstates sorted by stage to check planes on same stage
- * we assume that all pipes are in source split so its valid to compare
- * without taking into account left/right mixer placement
- */
- for (i = 1; i < cnt; i++) {
- struct plane_state *prv_pstate, *cur_pstate;
- struct drm_rect left_rect, right_rect;
- int32_t left_pid, right_pid;
- int32_t stage;
-
- prv_pstate = &pstates[i - 1];
- cur_pstate = &pstates[i];
- if (prv_pstate->stage != cur_pstate->stage)
- continue;
-
- stage = cur_pstate->stage;
-
- left_pid = prv_pstate->dpu_pstate->base.plane->base.id;
- left_rect = drm_plane_state_dest(prv_pstate->drm_pstate);
-
- right_pid = cur_pstate->dpu_pstate->base.plane->base.id;
- right_rect = drm_plane_state_dest(cur_pstate->drm_pstate);
-
- if (right_rect.x1 < left_rect.x1) {
- swap(left_pid, right_pid);
- swap(left_rect, right_rect);
- }
-
- /**
- * - planes are enumerated in pipe-priority order such that
- * planes with lower drm_id must be left-most in a shared
- * blend-stage when using source split.
- * - planes in source split must be contiguous in width
- * - planes in source split must have same dest yoff and height
- */
- if (right_pid < left_pid) {
- DPU_ERROR(
- "invalid src split cfg. priority mismatch. stage: %d left: %d right: %d\n",
- stage, left_pid, right_pid);
- rc = -EINVAL;
- goto end;
- } else if (right_rect.x1 != drm_rect_width(&left_rect)) {
- DPU_ERROR("non-contiguous coordinates for src split. "
- "stage: %d left: " DRM_RECT_FMT " right: "
- DRM_RECT_FMT "\n", stage,
- DRM_RECT_ARG(&left_rect),
- DRM_RECT_ARG(&right_rect));
- rc = -EINVAL;
- goto end;
- } else if (left_rect.y1 != right_rect.y1 ||
- drm_rect_height(&left_rect) != drm_rect_height(&right_rect)) {
- DPU_ERROR("source split at stage: %d. invalid "
- "yoff/height: left: " DRM_RECT_FMT " right: "
- DRM_RECT_FMT "\n", stage,
- DRM_RECT_ARG(&left_rect),
- DRM_RECT_ARG(&right_rect));
- rc = -EINVAL;
- goto end;
- }
+ return rc;
}
-end:
- kfree(pstates);
- return rc;
+ return 0;
}
int dpu_crtc_vblank(struct drm_crtc *crtc, bool en)
@@ -1469,8 +1354,16 @@ static int _dpu_debugfs_status_show(struct seq_file *s, void *data)
seq_printf(s, "\tdst x:%4d dst_y:%4d dst_w:%4d dst_h:%4d\n",
state->crtc_x, state->crtc_y, state->crtc_w,
state->crtc_h);
- seq_printf(s, "\tmultirect: mode: %d index: %d\n",
- pstate->multirect_mode, pstate->multirect_index);
+ seq_printf(s, "\tsspp[0]:%s\n",
+ pstate->pipe.sspp->cap->name);
+ seq_printf(s, "\tmultirect[0]: mode: %d index: %d\n",
+ pstate->pipe.multirect_mode, pstate->pipe.multirect_index);
+ if (pstate->r_pipe.sspp) {
+ seq_printf(s, "\tsspp[1]:%s\n",
+ pstate->r_pipe.sspp->cap->name);
+ seq_printf(s, "\tmultirect[1]: mode: %d index: %d\n",
+ pstate->r_pipe.multirect_mode, pstate->r_pipe.multirect_index);
+ }
seq_puts(s, "\n");
}
@@ -1517,16 +1410,12 @@ DEFINE_SHOW_ATTRIBUTE(dpu_crtc_debugfs_state);
static int _dpu_crtc_init_debugfs(struct drm_crtc *crtc)
{
struct dpu_crtc *dpu_crtc = to_dpu_crtc(crtc);
- struct dentry *debugfs_root;
-
- debugfs_root = debugfs_create_dir(dpu_crtc->name,
- crtc->dev->primary->debugfs_root);
debugfs_create_file("status", 0400,
- debugfs_root,
+ crtc->debugfs_entry,
dpu_crtc, &_dpu_debugfs_status_fops);
debugfs_create_file("state", 0600,
- debugfs_root,
+ crtc->debugfs_entry,
&dpu_crtc->base,
&dpu_crtc_debugfs_state_fops);
@@ -1576,7 +1465,7 @@ struct drm_crtc *dpu_crtc_init(struct drm_device *dev, struct drm_plane *plane,
{
struct drm_crtc *crtc = NULL;
struct dpu_crtc *dpu_crtc = NULL;
- int i;
+ int i, ret;
dpu_crtc = kzalloc(sizeof(*dpu_crtc), GFP_KERNEL);
if (!dpu_crtc)
@@ -1613,6 +1502,13 @@ struct drm_crtc *dpu_crtc_init(struct drm_device *dev, struct drm_plane *plane,
/* initialize event handling */
spin_lock_init(&dpu_crtc->event_lock);
+ ret = drm_self_refresh_helper_init(crtc);
+ if (ret) {
+ DPU_ERROR("Failed to initialize %s with self-refresh helpers %d\n",
+ crtc->name, ret);
+ return ERR_PTR(ret);
+ }
+
DRM_DEBUG_KMS("%s: successfully initialized crtc\n", dpu_crtc->name);
return crtc;
}
diff --git a/drivers/gpu/drm/msm/disp/dpu1/dpu_encoder.c b/drivers/gpu/drm/msm/disp/dpu1/dpu_encoder.c
index 9c6817b5a194..1dc5dbe58572 100644
--- a/drivers/gpu/drm/msm/disp/dpu1/dpu_encoder.c
+++ b/drivers/gpu/drm/msm/disp/dpu1/dpu_encoder.c
@@ -12,6 +12,7 @@
#include <linux/kthread.h>
#include <linux/seq_file.h>
+#include <drm/drm_atomic.h>
#include <drm/drm_crtc.h>
#include <drm/drm_file.h>
#include <drm/drm_probe_helper.h>
@@ -162,6 +163,7 @@ enum dpu_enc_rc_states {
* @vsync_event_work: worker to handle vsync event for autorefresh
* @topology: topology of the display
* @idle_timeout: idle timeout duration in milliseconds
+ * @wide_bus_en: wide bus is enabled on this interface
* @dsc: drm_dsc_config pointer, for DSC-enabled encoders
*/
struct dpu_encoder_virt {
@@ -340,9 +342,7 @@ void dpu_encoder_helper_report_irq_timeout(struct dpu_encoder_phys *phys_enc,
phys_enc->intf_idx - INTF_0, phys_enc->wb_idx - WB_0,
phys_enc->hw_pp->idx - PINGPONG_0, intr_idx);
- if (phys_enc->parent_ops->handle_frame_done)
- phys_enc->parent_ops->handle_frame_done(
- phys_enc->parent, phys_enc,
+ dpu_encoder_frame_done_callback(phys_enc->parent, phys_enc,
DPU_ENCODER_FRAME_EVENT_ERROR);
}
@@ -545,7 +545,8 @@ bool dpu_encoder_use_dsc_merge(struct drm_encoder *drm_enc)
static struct msm_display_topology dpu_encoder_get_topology(
struct dpu_encoder_virt *dpu_enc,
struct dpu_kms *dpu_kms,
- struct drm_display_mode *mode)
+ struct drm_display_mode *mode,
+ struct drm_crtc_state *crtc_state)
{
struct msm_display_topology topology = {0};
int i, intf_count = 0;
@@ -563,8 +564,7 @@ static struct msm_display_topology dpu_encoder_get_topology(
* 1 LM, 1 INTF
* 2 LM, 1 INTF (stream merge to support high resolution interfaces)
*
- * Adding color blocks only to primary interface if available in
- * sufficient number
+ * Add dspps to the reservation requirements if ctm is requested
*/
if (intf_count == 2)
topology.num_lm = 2;
@@ -573,25 +573,21 @@ static struct msm_display_topology dpu_encoder_get_topology(
else
topology.num_lm = (mode->hdisplay > MAX_HDISPLAY_SPLIT) ? 2 : 1;
- if (dpu_enc->disp_info.intf_type == DRM_MODE_ENCODER_DSI) {
- if (dpu_kms->catalog->dspp &&
- (dpu_kms->catalog->dspp_count >= topology.num_lm))
- topology.num_dspp = topology.num_lm;
- }
+ if (crtc_state->ctm)
+ topology.num_dspp = topology.num_lm;
- topology.num_enc = 0;
topology.num_intf = intf_count;
if (dpu_enc->dsc) {
- /* In case of Display Stream Compression (DSC), we would use
- * 2 encoders, 2 layer mixers and 1 interface
+ /*
+ * In case of Display Stream Compression (DSC), we would use
+ * 2 DSC encoders, 2 layer mixers and 1 interface
* this is power optimal and can drive up to (including) 4k
* screens
*/
- topology.num_enc = 2;
topology.num_dsc = 2;
- topology.num_intf = 1;
topology.num_lm = 2;
+ topology.num_intf = 1;
}
return topology;
@@ -639,25 +635,22 @@ static int dpu_encoder_virt_atomic_check(
if (ret) {
DPU_ERROR_ENC(dpu_enc,
"mode unsupported, phys idx %d\n", i);
- break;
+ return ret;
}
}
- topology = dpu_encoder_get_topology(dpu_enc, dpu_kms, adj_mode);
+ topology = dpu_encoder_get_topology(dpu_enc, dpu_kms, adj_mode, crtc_state);
- /* Reserve dynamic resources now. */
- if (!ret) {
- /*
- * Release and Allocate resources on every modeset
- * Dont allocate when active is false.
- */
- if (drm_atomic_crtc_needs_modeset(crtc_state)) {
- dpu_rm_release(global_state, drm_enc);
+ /*
+ * Release and Allocate resources on every modeset
+ * Dont allocate when active is false.
+ */
+ if (drm_atomic_crtc_needs_modeset(crtc_state)) {
+ dpu_rm_release(global_state, drm_enc);
- if (!crtc_state->active_changed || crtc_state->active)
- ret = dpu_rm_reserve(&dpu_kms->rm, global_state,
- drm_enc, crtc_state, topology);
- }
+ if (!crtc_state->active_changed || crtc_state->enable)
+ ret = dpu_rm_reserve(&dpu_kms->rm, global_state,
+ drm_enc, crtc_state, topology);
}
trace_dpu_enc_atomic_check_flags(DRMID(drm_enc), adj_mode->flags);
@@ -1173,7 +1166,8 @@ out:
mutex_unlock(&dpu_enc->enc_lock);
}
-static void dpu_encoder_virt_enable(struct drm_encoder *drm_enc)
+static void dpu_encoder_virt_atomic_enable(struct drm_encoder *drm_enc,
+ struct drm_atomic_state *state)
{
struct dpu_encoder_virt *dpu_enc = NULL;
int ret = 0;
@@ -1209,14 +1203,28 @@ out:
mutex_unlock(&dpu_enc->enc_lock);
}
-static void dpu_encoder_virt_disable(struct drm_encoder *drm_enc)
+static void dpu_encoder_virt_atomic_disable(struct drm_encoder *drm_enc,
+ struct drm_atomic_state *state)
{
struct dpu_encoder_virt *dpu_enc = NULL;
+ struct drm_crtc *crtc;
+ struct drm_crtc_state *old_state = NULL;
int i = 0;
dpu_enc = to_dpu_encoder_virt(drm_enc);
DPU_DEBUG_ENC(dpu_enc, "\n");
+ crtc = drm_atomic_get_old_crtc_for_encoder(state, drm_enc);
+ if (crtc)
+ old_state = drm_atomic_get_old_crtc_state(state, crtc);
+
+ /*
+ * The encoder is already disabled if self refresh mode was set earlier,
+ * in the old_state for the corresponding crtc.
+ */
+ if (old_state && old_state->self_refresh_active)
+ return;
+
mutex_lock(&dpu_enc->enc_lock);
dpu_enc->enabled = false;
@@ -1284,7 +1292,7 @@ static enum dpu_wb dpu_encoder_get_wb(const struct dpu_mdss_cfg *catalog,
return WB_MAX;
}
-static void dpu_encoder_vblank_callback(struct drm_encoder *drm_enc,
+void dpu_encoder_vblank_callback(struct drm_encoder *drm_enc,
struct dpu_encoder_phys *phy_enc)
{
struct dpu_encoder_virt *dpu_enc = NULL;
@@ -1306,7 +1314,7 @@ static void dpu_encoder_vblank_callback(struct drm_encoder *drm_enc,
DPU_ATRACE_END("encoder_vblank_callback");
}
-static void dpu_encoder_underrun_callback(struct drm_encoder *drm_enc,
+void dpu_encoder_underrun_callback(struct drm_encoder *drm_enc,
struct dpu_encoder_phys *phy_enc)
{
if (!phy_enc)
@@ -1382,7 +1390,7 @@ void dpu_encoder_register_frame_event_callback(struct drm_encoder *drm_enc,
spin_unlock_irqrestore(&dpu_enc->enc_spinlock, lock_flags);
}
-static void dpu_encoder_frame_done_callback(
+void dpu_encoder_frame_done_callback(
struct drm_encoder *drm_enc,
struct dpu_encoder_phys *ready_phys, u32 event)
{
@@ -1830,6 +1838,9 @@ static void dpu_encoder_dsc_pipe_cfg(struct dpu_hw_dsc *hw_dsc,
if (hw_pp->ops.setup_dsc)
hw_pp->ops.setup_dsc(hw_pp);
+ if (hw_dsc->ops.dsc_bind_pingpong_blk)
+ hw_dsc->ops.dsc_bind_pingpong_blk(hw_dsc, true, hw_pp->idx);
+
if (hw_pp->ops.enable_dsc)
hw_pp->ops.enable_dsc(hw_pp);
}
@@ -2077,25 +2088,6 @@ void dpu_encoder_helper_phys_cleanup(struct dpu_encoder_phys *phys_enc)
ctl->ops.clear_pending_flush(ctl);
}
-void dpu_encoder_prepare_commit(struct drm_encoder *drm_enc)
-{
- struct dpu_encoder_virt *dpu_enc;
- struct dpu_encoder_phys *phys;
- int i;
-
- if (!drm_enc) {
- DPU_ERROR("invalid encoder\n");
- return;
- }
- dpu_enc = to_dpu_encoder_virt(drm_enc);
-
- for (i = 0; i < dpu_enc->num_phys_encs; i++) {
- phys = dpu_enc->phys_encs[i];
- if (phys->ops.prepare_commit)
- phys->ops.prepare_commit(phys);
- }
-}
-
#ifdef CONFIG_DEBUG_FS
static int _dpu_encoder_status_show(struct seq_file *s, void *data)
{
@@ -2233,12 +2225,6 @@ static int dpu_encoder_virt_add_phys_encs(
return 0;
}
-static const struct dpu_encoder_virt_ops dpu_encoder_parent_ops = {
- .handle_vblank_virt = dpu_encoder_vblank_callback,
- .handle_underrun_virt = dpu_encoder_underrun_callback,
- .handle_frame_done = dpu_encoder_frame_done_callback,
-};
-
static int dpu_encoder_setup_display(struct dpu_encoder_virt *dpu_enc,
struct dpu_kms *dpu_kms,
struct msm_display_info *disp_info)
@@ -2258,7 +2244,6 @@ static int dpu_encoder_setup_display(struct dpu_encoder_virt *dpu_enc,
memset(&phys_params, 0, sizeof(phys_params));
phys_params.dpu_kms = dpu_kms;
phys_params.parent = &dpu_enc->base;
- phys_params.parent_ops = &dpu_encoder_parent_ops;
phys_params.enc_spinlock = &dpu_enc->enc_spinlock;
switch (disp_info->intf_type) {
@@ -2394,8 +2379,8 @@ static void dpu_encoder_frame_done_timeout(struct timer_list *t)
static const struct drm_encoder_helper_funcs dpu_encoder_helper_funcs = {
.atomic_mode_set = dpu_encoder_virt_atomic_mode_set,
- .disable = dpu_encoder_virt_disable,
- .enable = dpu_encoder_virt_enable,
+ .atomic_disable = dpu_encoder_virt_atomic_disable,
+ .atomic_enable = dpu_encoder_virt_atomic_enable,
.atomic_check = dpu_encoder_virt_atomic_check,
};
diff --git a/drivers/gpu/drm/msm/disp/dpu1/dpu_encoder.h b/drivers/gpu/drm/msm/disp/dpu1/dpu_encoder.h
index 9e7236ef34e6..2c9ef8d1b877 100644
--- a/drivers/gpu/drm/msm/disp/dpu1/dpu_encoder.h
+++ b/drivers/gpu/drm/msm/disp/dpu1/dpu_encoder.h
@@ -147,13 +147,6 @@ int dpu_encoder_setup(struct drm_device *dev, struct drm_encoder *enc,
struct msm_display_info *disp_info);
/**
- * dpu_encoder_prepare_commit - prepare encoder at the very beginning of an
- * atomic commit, before any registers are written
- * @drm_enc: Pointer to previously created drm encoder structure
- */
-void dpu_encoder_prepare_commit(struct drm_encoder *drm_enc);
-
-/**
* dpu_encoder_set_idle_timeout - set the idle timeout for video
* and command mode encoders.
* @drm_enc: Pointer to previously created drm encoder structure
diff --git a/drivers/gpu/drm/msm/disp/dpu1/dpu_encoder_phys.h b/drivers/gpu/drm/msm/disp/dpu1/dpu_encoder_phys.h
index f2af07d87f56..1d434b22180d 100644
--- a/drivers/gpu/drm/msm/disp/dpu1/dpu_encoder_phys.h
+++ b/drivers/gpu/drm/msm/disp/dpu1/dpu_encoder_phys.h
@@ -61,25 +61,6 @@ enum dpu_enc_enable_state {
struct dpu_encoder_phys;
/**
- * struct dpu_encoder_virt_ops - Interface the containing virtual encoder
- * provides for the physical encoders to use to callback.
- * @handle_vblank_virt: Notify virtual encoder of vblank IRQ reception
- * Note: This is called from IRQ handler context.
- * @handle_underrun_virt: Notify virtual encoder of underrun IRQ reception
- * Note: This is called from IRQ handler context.
- * @handle_frame_done: Notify virtual encoder that this phys encoder
- * completes last request frame.
- */
-struct dpu_encoder_virt_ops {
- void (*handle_vblank_virt)(struct drm_encoder *,
- struct dpu_encoder_phys *phys);
- void (*handle_underrun_virt)(struct drm_encoder *,
- struct dpu_encoder_phys *phys);
- void (*handle_frame_done)(struct drm_encoder *,
- struct dpu_encoder_phys *phys, u32 event);
-};
-
-/**
* struct dpu_encoder_phys_ops - Interface the physical encoders provide to
* the containing virtual encoder.
* @late_register: DRM Call. Add Userspace interfaces, debugfs.
@@ -199,7 +180,6 @@ enum dpu_intr_idx {
struct dpu_encoder_phys {
struct drm_encoder *parent;
struct dpu_encoder_phys_ops ops;
- const struct dpu_encoder_virt_ops *parent_ops;
struct dpu_hw_mdp *hw_mdptop;
struct dpu_hw_ctl *hw_ctl;
struct dpu_hw_pingpong *hw_pp;
@@ -283,7 +263,6 @@ struct dpu_encoder_phys_cmd {
struct dpu_enc_phys_init_params {
struct dpu_kms *dpu_kms;
struct drm_encoder *parent;
- const struct dpu_encoder_virt_ops *parent_ops;
enum dpu_enc_split_role split_role;
enum dpu_intf intf_idx;
enum dpu_wb wb_idx;
@@ -400,4 +379,30 @@ int dpu_encoder_helper_wait_for_irq(struct dpu_encoder_phys *phys_enc,
*/
void dpu_encoder_helper_phys_cleanup(struct dpu_encoder_phys *phys_enc);
+/**
+ * dpu_encoder_vblank_callback - Notify virtual encoder of vblank IRQ reception
+ * @drm_enc: Pointer to drm encoder structure
+ * @phys_enc: Pointer to physical encoder
+ * Note: This is called from IRQ handler context.
+ */
+void dpu_encoder_vblank_callback(struct drm_encoder *drm_enc,
+ struct dpu_encoder_phys *phy_enc);
+
+/** dpu_encoder_underrun_callback - Notify virtual encoder of underrun IRQ reception
+ * @drm_enc: Pointer to drm encoder structure
+ * @phys_enc: Pointer to physical encoder
+ * Note: This is called from IRQ handler context.
+ */
+void dpu_encoder_underrun_callback(struct drm_encoder *drm_enc,
+ struct dpu_encoder_phys *phy_enc);
+
+/** dpu_encoder_frame_done_callback -- Notify virtual encoder that this phys encoder completes last request frame
+ * @drm_enc: Pointer to drm encoder structure
+ * @phys_enc: Pointer to physical encoder
+ * @event: Event to process
+ */
+void dpu_encoder_frame_done_callback(
+ struct drm_encoder *drm_enc,
+ struct dpu_encoder_phys *ready_phys, u32 event);
+
#endif /* __dpu_encoder_phys_H__ */
diff --git a/drivers/gpu/drm/msm/disp/dpu1/dpu_encoder_phys_cmd.c b/drivers/gpu/drm/msm/disp/dpu1/dpu_encoder_phys_cmd.c
index ae28b2b93e69..74470d068622 100644
--- a/drivers/gpu/drm/msm/disp/dpu1/dpu_encoder_phys_cmd.c
+++ b/drivers/gpu/drm/msm/disp/dpu1/dpu_encoder_phys_cmd.c
@@ -40,6 +40,8 @@
#define DPU_ENC_MAX_POLL_TIMEOUT_US 2000
+static void dpu_encoder_phys_cmd_enable_te(struct dpu_encoder_phys *phys_enc);
+
static bool dpu_encoder_phys_cmd_is_master(struct dpu_encoder_phys *phys_enc)
{
return (phys_enc->split_role != ENC_ROLE_SLAVE);
@@ -61,6 +63,7 @@ static void _dpu_encoder_phys_cmd_update_intf_cfg(
intf_cfg.intf_mode_sel = DPU_CTL_MODE_SEL_CMD;
intf_cfg.stream_sel = cmd_enc->stream_sel;
intf_cfg.mode_3d = dpu_encoder_helper_get_3d_blend_mode(phys_enc);
+ intf_cfg.dsc = dpu_encoder_helper_get_dsc(phys_enc);
ctl->ops.setup_intf_cfg(ctl, &intf_cfg);
/* setup which pp blk will connect to this intf */
@@ -83,9 +86,7 @@ static void dpu_encoder_phys_cmd_pp_tx_done_irq(void *arg, int irq_idx)
DPU_ATRACE_BEGIN("pp_done_irq");
/* notify all synchronous clients first, then asynchronous clients */
- if (phys_enc->parent_ops->handle_frame_done)
- phys_enc->parent_ops->handle_frame_done(phys_enc->parent,
- phys_enc, event);
+ dpu_encoder_frame_done_callback(phys_enc->parent, phys_enc, event);
spin_lock_irqsave(phys_enc->enc_spinlock, lock_flags);
new_cnt = atomic_add_unless(&phys_enc->pending_kickoff_cnt, -1, 0);
@@ -111,9 +112,7 @@ static void dpu_encoder_phys_cmd_pp_rd_ptr_irq(void *arg, int irq_idx)
DPU_ATRACE_BEGIN("rd_ptr_irq");
cmd_enc = to_dpu_encoder_phys_cmd(phys_enc);
- if (phys_enc->parent_ops->handle_vblank_virt)
- phys_enc->parent_ops->handle_vblank_virt(phys_enc->parent,
- phys_enc);
+ dpu_encoder_vblank_callback(phys_enc->parent, phys_enc);
atomic_add_unless(&cmd_enc->pending_vblank_cnt, -1, 0);
wake_up_all(&cmd_enc->pending_vblank_wq);
@@ -137,9 +136,7 @@ static void dpu_encoder_phys_cmd_underrun_irq(void *arg, int irq_idx)
{
struct dpu_encoder_phys *phys_enc = arg;
- if (phys_enc->parent_ops->handle_underrun_virt)
- phys_enc->parent_ops->handle_underrun_virt(phys_enc->parent,
- phys_enc);
+ dpu_encoder_underrun_callback(phys_enc->parent, phys_enc);
}
static void dpu_encoder_phys_cmd_atomic_mode_set(
@@ -202,9 +199,7 @@ static int _dpu_encoder_phys_cmd_handle_ppdone_timeout(
/* request a ctl reset before the next kickoff */
phys_enc->enable_state = DPU_ENC_ERR_NEEDS_HW_RESET;
- if (phys_enc->parent_ops->handle_frame_done)
- phys_enc->parent_ops->handle_frame_done(
- drm_enc, phys_enc, frame_event);
+ dpu_encoder_frame_done_callback(phys_enc->parent, phys_enc, frame_event);
return -ETIMEDOUT;
}
@@ -572,6 +567,8 @@ static void dpu_encoder_phys_cmd_prepare_for_kickoff(
phys_enc->hw_pp->idx - PINGPONG_0);
}
+ dpu_encoder_phys_cmd_enable_te(phys_enc);
+
DPU_DEBUG_CMDENC(cmd_enc, "pp:%d pending_cnt %d\n",
phys_enc->hw_pp->idx - PINGPONG_0,
atomic_read(&phys_enc->pending_kickoff_cnt));
@@ -593,8 +590,7 @@ static bool dpu_encoder_phys_cmd_is_ongoing_pptx(
return false;
}
-static void dpu_encoder_phys_cmd_prepare_commit(
- struct dpu_encoder_phys *phys_enc)
+static void dpu_encoder_phys_cmd_enable_te(struct dpu_encoder_phys *phys_enc)
{
struct dpu_encoder_phys_cmd *cmd_enc =
to_dpu_encoder_phys_cmd(phys_enc);
@@ -739,7 +735,6 @@ static void dpu_encoder_phys_cmd_trigger_start(
static void dpu_encoder_phys_cmd_init_ops(
struct dpu_encoder_phys_ops *ops)
{
- ops->prepare_commit = dpu_encoder_phys_cmd_prepare_commit;
ops->is_master = dpu_encoder_phys_cmd_is_master;
ops->atomic_mode_set = dpu_encoder_phys_cmd_atomic_mode_set;
ops->enable = dpu_encoder_phys_cmd_enable;
@@ -780,7 +775,6 @@ struct dpu_encoder_phys *dpu_encoder_phys_cmd_init(
dpu_encoder_phys_cmd_init_ops(&phys_enc->ops);
phys_enc->parent = p->parent;
- phys_enc->parent_ops = p->parent_ops;
phys_enc->dpu_kms = p->dpu_kms;
phys_enc->split_role = p->split_role;
phys_enc->intf_mode = INTF_MODE_CMD;
diff --git a/drivers/gpu/drm/msm/disp/dpu1/dpu_encoder_phys_vid.c b/drivers/gpu/drm/msm/disp/dpu1/dpu_encoder_phys_vid.c
index 2c14646661b7..3a374292f311 100644
--- a/drivers/gpu/drm/msm/disp/dpu1/dpu_encoder_phys_vid.c
+++ b/drivers/gpu/drm/msm/disp/dpu1/dpu_encoder_phys_vid.c
@@ -237,12 +237,13 @@ static void dpu_encoder_phys_vid_setup_timing_engine(
unsigned long lock_flags;
struct dpu_hw_intf_cfg intf_cfg = { 0 };
+ drm_mode_init(&mode, &phys_enc->cached_mode);
+
if (!phys_enc->hw_ctl->ops.setup_intf_cfg) {
DPU_ERROR("invalid encoder %d\n", phys_enc != NULL);
return;
}
- mode = phys_enc->cached_mode;
if (!phys_enc->hw_intf->ops.setup_timing_gen) {
DPU_ERROR("timing engine setup is not supported\n");
return;
@@ -273,6 +274,7 @@ static void dpu_encoder_phys_vid_setup_timing_engine(
intf_cfg.intf_mode_sel = DPU_CTL_MODE_SEL_VID;
intf_cfg.stream_sel = 0; /* Don't care value for video mode */
intf_cfg.mode_3d = dpu_encoder_helper_get_3d_blend_mode(phys_enc);
+ intf_cfg.dsc = dpu_encoder_helper_get_dsc(phys_enc);
if (phys_enc->hw_pp->merge_3d)
intf_cfg.merge_3d = phys_enc->hw_pp->merge_3d->idx;
@@ -307,9 +309,7 @@ static void dpu_encoder_phys_vid_vblank_irq(void *arg, int irq_idx)
DPU_ATRACE_BEGIN("vblank_irq");
- if (phys_enc->parent_ops->handle_vblank_virt)
- phys_enc->parent_ops->handle_vblank_virt(phys_enc->parent,
- phys_enc);
+ dpu_encoder_vblank_callback(phys_enc->parent, phys_enc);
atomic_read(&phys_enc->pending_kickoff_cnt);
@@ -329,7 +329,7 @@ static void dpu_encoder_phys_vid_vblank_irq(void *arg, int irq_idx)
/* Signal any waiting atomic commit thread */
wake_up_all(&phys_enc->pending_kickoff_wq);
- phys_enc->parent_ops->handle_frame_done(phys_enc->parent, phys_enc,
+ dpu_encoder_frame_done_callback(phys_enc->parent, phys_enc,
DPU_ENCODER_FRAME_EVENT_DONE);
DPU_ATRACE_END("vblank_irq");
@@ -339,9 +339,7 @@ static void dpu_encoder_phys_vid_underrun_irq(void *arg, int irq_idx)
{
struct dpu_encoder_phys *phys_enc = arg;
- if (phys_enc->parent_ops->handle_underrun_virt)
- phys_enc->parent_ops->handle_underrun_virt(phys_enc->parent,
- phys_enc);
+ dpu_encoder_underrun_callback(phys_enc->parent, phys_enc);
}
static bool dpu_encoder_phys_vid_needs_single_flush(
@@ -525,6 +523,7 @@ static void dpu_encoder_phys_vid_disable(struct dpu_encoder_phys *phys_enc)
{
unsigned long lock_flags;
int ret;
+ struct intf_status intf_status = {0};
if (!phys_enc->parent || !phys_enc->parent->dev) {
DPU_ERROR("invalid encoder/device\n");
@@ -569,6 +568,27 @@ static void dpu_encoder_phys_vid_disable(struct dpu_encoder_phys *phys_enc)
}
}
+ if (phys_enc->hw_intf && phys_enc->hw_intf->ops.get_status)
+ phys_enc->hw_intf->ops.get_status(phys_enc->hw_intf, &intf_status);
+
+ /*
+ * Wait for a vsync if timing en status is on after timing engine
+ * is disabled.
+ */
+ if (intf_status.is_en && dpu_encoder_phys_vid_is_master(phys_enc)) {
+ spin_lock_irqsave(phys_enc->enc_spinlock, lock_flags);
+ dpu_encoder_phys_inc_pending(phys_enc);
+ spin_unlock_irqrestore(phys_enc->enc_spinlock, lock_flags);
+ ret = dpu_encoder_phys_vid_wait_for_vblank(phys_enc);
+ if (ret) {
+ atomic_set(&phys_enc->pending_kickoff_cnt, 0);
+ DRM_ERROR("wait disable failed: id:%u intf:%d ret:%d\n",
+ DRMID(phys_enc->parent),
+ phys_enc->hw_intf->idx - INTF_0, ret);
+ }
+ }
+
+ dpu_encoder_helper_phys_cleanup(phys_enc);
phys_enc->enable_state = DPU_ENC_DISABLED;
}
@@ -634,7 +654,9 @@ static int dpu_encoder_phys_vid_get_frame_count(
{
struct intf_status s = {0};
u32 fetch_start = 0;
- struct drm_display_mode mode = phys_enc->cached_mode;
+ struct drm_display_mode mode;
+
+ drm_mode_init(&mode, &phys_enc->cached_mode);
if (!dpu_encoder_phys_vid_is_master(phys_enc))
return -EINVAL;
@@ -697,7 +719,6 @@ struct dpu_encoder_phys *dpu_encoder_phys_vid_init(
dpu_encoder_phys_vid_init_ops(&phys_enc->ops);
phys_enc->parent = p->parent;
- phys_enc->parent_ops = p->parent_ops;
phys_enc->dpu_kms = p->dpu_kms;
phys_enc->split_role = p->split_role;
phys_enc->intf_mode = INTF_MODE_VIDEO;
diff --git a/drivers/gpu/drm/msm/disp/dpu1/dpu_encoder_phys_wb.c b/drivers/gpu/drm/msm/disp/dpu1/dpu_encoder_phys_wb.c
index 7cbcef6efe17..bac4aa807b4b 100644
--- a/drivers/gpu/drm/msm/disp/dpu1/dpu_encoder_phys_wb.c
+++ b/drivers/gpu/drm/msm/disp/dpu1/dpu_encoder_phys_wb.c
@@ -26,6 +26,7 @@
/**
* dpu_encoder_phys_wb_is_master - report wb always as master encoder
+ * @phys_enc: Pointer to physical encoder
*/
static bool dpu_encoder_phys_wb_is_master(struct dpu_encoder_phys *phys_enc)
{
@@ -132,7 +133,6 @@ static void dpu_encoder_phys_wb_set_qos(struct dpu_encoder_phys *phys_enc)
* dpu_encoder_phys_wb_setup_fb - setup output framebuffer
* @phys_enc: Pointer to physical encoder
* @fb: Pointer to output framebuffer
- * @wb_roi: Pointer to output region of interest
*/
static void dpu_encoder_phys_wb_setup_fb(struct dpu_encoder_phys *phys_enc,
struct drm_framebuffer *fb)
@@ -365,13 +365,9 @@ static void _dpu_encoder_phys_wb_frame_done_helper(void *arg)
DPU_DEBUG("[wb:%d]\n", hw_wb->idx - WB_0);
- if (phys_enc->parent_ops->handle_frame_done)
- phys_enc->parent_ops->handle_frame_done(phys_enc->parent,
- phys_enc, event);
+ dpu_encoder_frame_done_callback(phys_enc->parent, phys_enc, event);
- if (phys_enc->parent_ops->handle_vblank_virt)
- phys_enc->parent_ops->handle_vblank_virt(phys_enc->parent,
- phys_enc);
+ dpu_encoder_vblank_callback(phys_enc->parent, phys_enc);
spin_lock_irqsave(phys_enc->enc_spinlock, lock_flags);
atomic_add_unless(&phys_enc->pending_kickoff_cnt, -1, 0);
@@ -441,9 +437,7 @@ static void _dpu_encoder_phys_wb_handle_wbdone_timeout(
if (wb_enc->wb_conn)
drm_writeback_signal_completion(wb_enc->wb_conn, 0);
- if (phys_enc->parent_ops->handle_frame_done)
- phys_enc->parent_ops->handle_frame_done(
- phys_enc->parent, phys_enc, frame_event);
+ dpu_encoder_frame_done_callback(phys_enc->parent, phys_enc, frame_event);
}
/**
@@ -692,7 +686,7 @@ static void dpu_encoder_phys_wb_init_ops(struct dpu_encoder_phys_ops *ops)
/**
* dpu_encoder_phys_wb_init - initialize writeback encoder
- * @init: Pointer to init info structure with initialization params
+ * @p: Pointer to init info structure with initialization params
*/
struct dpu_encoder_phys *dpu_encoder_phys_wb_init(
struct dpu_enc_phys_init_params *p)
@@ -723,7 +717,6 @@ struct dpu_encoder_phys *dpu_encoder_phys_wb_init(
dpu_encoder_phys_wb_init_ops(&phys_enc->ops);
phys_enc->parent = p->parent;
- phys_enc->parent_ops = p->parent_ops;
phys_enc->dpu_kms = p->dpu_kms;
phys_enc->split_role = p->split_role;
phys_enc->intf_mode = INTF_MODE_WB_LINE;
diff --git a/drivers/gpu/drm/msm/disp/dpu1/dpu_formats.c b/drivers/gpu/drm/msm/disp/dpu1/dpu_formats.c
index f436a1f3419d..e366ab134249 100644
--- a/drivers/gpu/drm/msm/disp/dpu1/dpu_formats.c
+++ b/drivers/gpu/drm/msm/disp/dpu1/dpu_formats.c
@@ -434,6 +434,12 @@ static const struct dpu_format dpu_format_map[] = {
DPU_CHROMA_H2V1, DPU_FORMAT_FLAG_YUV,
DPU_FETCH_LINEAR, 2),
+ PSEUDO_YUV_FMT_LOOSE(P010,
+ 0, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
+ C1_B_Cb, C2_R_Cr,
+ DPU_CHROMA_420, DPU_FORMAT_FLAG_DX | DPU_FORMAT_FLAG_YUV,
+ DPU_FETCH_LINEAR, 2),
+
INTERLEAVED_YUV_FMT(VYUY,
0, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
C2_R_Cr, C0_G_Y, C1_B_Cb, C0_G_Y,
@@ -524,12 +530,36 @@ static const struct dpu_format dpu_format_map_ubwc[] = {
true, 4, DPU_FORMAT_FLAG_DX | DPU_FORMAT_FLAG_COMPRESSED,
DPU_FETCH_UBWC, 2, DPU_TILE_HEIGHT_UBWC),
+ INTERLEAVED_RGB_FMT_TILED(XRGB2101010,
+ COLOR_8BIT, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
+ C2_R_Cr, C0_G_Y, C1_B_Cb, C3_ALPHA, 4,
+ true, 4, DPU_FORMAT_FLAG_DX | DPU_FORMAT_FLAG_COMPRESSED,
+ DPU_FETCH_UBWC, 2, DPU_TILE_HEIGHT_UBWC),
+
+ /* XRGB2101010 and ARGB2101010 purposely have the same color
+ * ordering. The hardware only supports ARGB2101010 UBWC
+ * natively.
+ */
+ INTERLEAVED_RGB_FMT_TILED(ARGB2101010,
+ COLOR_8BIT, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
+ C2_R_Cr, C0_G_Y, C1_B_Cb, C3_ALPHA, 4,
+ true, 4, DPU_FORMAT_FLAG_DX | DPU_FORMAT_FLAG_COMPRESSED,
+ DPU_FETCH_UBWC, 2, DPU_TILE_HEIGHT_UBWC),
+
PSEUDO_YUV_FMT_TILED(NV12,
0, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
C1_B_Cb, C2_R_Cr,
DPU_CHROMA_420, DPU_FORMAT_FLAG_YUV |
DPU_FORMAT_FLAG_COMPRESSED,
DPU_FETCH_UBWC, 4, DPU_TILE_HEIGHT_NV12),
+
+ PSEUDO_YUV_FMT_TILED(P010,
+ 0, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
+ C1_B_Cb, C2_R_Cr,
+ DPU_CHROMA_420, DPU_FORMAT_FLAG_DX |
+ DPU_FORMAT_FLAG_YUV |
+ DPU_FORMAT_FLAG_COMPRESSED,
+ DPU_FETCH_UBWC, 4, DPU_TILE_HEIGHT_UBWC),
};
/* _dpu_get_v_h_subsample_rate - Get subsample rates for all formats we support
@@ -571,13 +601,16 @@ static int _dpu_format_get_media_color_ubwc(const struct dpu_format *fmt)
{DRM_FORMAT_XBGR8888, COLOR_FMT_RGBA8888_UBWC},
{DRM_FORMAT_XRGB8888, COLOR_FMT_RGBA8888_UBWC},
{DRM_FORMAT_ABGR2101010, COLOR_FMT_RGBA1010102_UBWC},
+ {DRM_FORMAT_ARGB2101010, COLOR_FMT_RGBA1010102_UBWC},
+ {DRM_FORMAT_XRGB2101010, COLOR_FMT_RGBA1010102_UBWC},
{DRM_FORMAT_XBGR2101010, COLOR_FMT_RGBA1010102_UBWC},
{DRM_FORMAT_BGR565, COLOR_FMT_RGB565_UBWC},
};
int color_fmt = -1;
int i;
- if (fmt->base.pixel_format == DRM_FORMAT_NV12) {
+ if (fmt->base.pixel_format == DRM_FORMAT_NV12 ||
+ fmt->base.pixel_format == DRM_FORMAT_P010) {
if (DPU_FORMAT_IS_DX(fmt)) {
if (fmt->unpack_tight)
color_fmt = COLOR_FMT_NV12_BPP10_UBWC;
@@ -896,8 +929,7 @@ int dpu_format_populate_layout(
struct drm_framebuffer *fb,
struct dpu_hw_fmt_layout *layout)
{
- uint32_t plane_addr[DPU_MAX_PLANES];
- int i, ret;
+ int ret;
if (!fb || !layout) {
DRM_ERROR("invalid arguments\n");
@@ -918,9 +950,6 @@ int dpu_format_populate_layout(
if (ret)
return ret;
- for (i = 0; i < DPU_MAX_PLANES; ++i)
- plane_addr[i] = layout->plane_addr[i];
-
/* Populate the addresses given the fb */
if (DPU_FORMAT_IS_UBWC(layout->format) ||
DPU_FORMAT_IS_TILE(layout->format))
@@ -928,10 +957,6 @@ int dpu_format_populate_layout(
else
ret = _dpu_format_populate_addrs_linear(aspace, fb, layout);
- /* check if anything changed */
- if (!ret && !memcmp(plane_addr, layout->plane_addr, sizeof(plane_addr)))
- ret = -EAGAIN;
-
return ret;
}
diff --git a/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_catalog.c b/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_catalog.c
index 27f029fdc682..03f162af1a50 100644
--- a/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_catalog.c
+++ b/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_catalog.c
@@ -12,24 +12,31 @@
#include "dpu_hw_catalog.h"
#include "dpu_kms.h"
-#define VIG_MASK \
+#define VIG_BASE_MASK \
(BIT(DPU_SSPP_SRC) | BIT(DPU_SSPP_QOS) |\
- BIT(DPU_SSPP_CSC_10BIT) | BIT(DPU_SSPP_CDP) |\
+ BIT(DPU_SSPP_CDP) |\
BIT(DPU_SSPP_TS_PREFILL) | BIT(DPU_SSPP_EXCL_RECT))
+#define VIG_MASK \
+ (VIG_BASE_MASK | \
+ BIT(DPU_SSPP_CSC_10BIT))
+
#define VIG_MSM8998_MASK \
(VIG_MASK | BIT(DPU_SSPP_SCALER_QSEED3))
#define VIG_SDM845_MASK \
(VIG_MASK | BIT(DPU_SSPP_QOS_8LVL) | BIT(DPU_SSPP_SCALER_QSEED3))
+#define VIG_SDM845_MASK_SDMA \
+ (VIG_SDM845_MASK | BIT(DPU_SSPP_SMART_DMA_V2))
+
#define VIG_SC7180_MASK \
(VIG_MASK | BIT(DPU_SSPP_QOS_8LVL) | BIT(DPU_SSPP_SCALER_QSEED4))
-#define VIG_SM8250_MASK \
- (VIG_MASK | BIT(DPU_SSPP_QOS_8LVL) | BIT(DPU_SSPP_SCALER_QSEED3LITE))
+#define VIG_SC7180_MASK_SDMA \
+ (VIG_SC7180_MASK | BIT(DPU_SSPP_SMART_DMA_V2))
-#define VIG_QCM2290_MASK (VIG_MASK | BIT(DPU_SSPP_QOS_8LVL))
+#define VIG_QCM2290_MASK (VIG_BASE_MASK | BIT(DPU_SSPP_QOS_8LVL))
#define DMA_MSM8998_MASK \
(BIT(DPU_SSPP_SRC) | BIT(DPU_SSPP_QOS) |\
@@ -39,6 +46,9 @@
#define VIG_SC7280_MASK \
(VIG_SC7180_MASK | BIT(DPU_SSPP_INLINE_ROTATION))
+#define VIG_SC7280_MASK_SDMA \
+ (VIG_SC7280_MASK | BIT(DPU_SSPP_SMART_DMA_V2))
+
#define DMA_SDM845_MASK \
(BIT(DPU_SSPP_SRC) | BIT(DPU_SSPP_QOS) | BIT(DPU_SSPP_QOS_8LVL) |\
BIT(DPU_SSPP_TS_PREFILL) | BIT(DPU_SSPP_TS_PREFILL_REC1) |\
@@ -47,16 +57,22 @@
#define DMA_CURSOR_SDM845_MASK \
(DMA_SDM845_MASK | BIT(DPU_SSPP_CURSOR))
+#define DMA_SDM845_MASK_SDMA \
+ (DMA_SDM845_MASK | BIT(DPU_SSPP_SMART_DMA_V2))
+
+#define DMA_CURSOR_SDM845_MASK_SDMA \
+ (DMA_CURSOR_SDM845_MASK | BIT(DPU_SSPP_SMART_DMA_V2))
+
#define DMA_CURSOR_MSM8998_MASK \
(DMA_MSM8998_MASK | BIT(DPU_SSPP_CURSOR))
#define MIXER_MSM8998_MASK \
- (BIT(DPU_MIXER_SOURCESPLIT) | BIT(DPU_DIM_LAYER))
+ (BIT(DPU_MIXER_SOURCESPLIT))
#define MIXER_SDM845_MASK \
(BIT(DPU_MIXER_SOURCESPLIT) | BIT(DPU_DIM_LAYER) | BIT(DPU_MIXER_COMBINED_ALPHA))
-#define MIXER_SC7180_MASK \
+#define MIXER_QCM2290_MASK \
(BIT(DPU_DIM_LAYER) | BIT(DPU_MIXER_COMBINED_ALPHA))
#define PINGPONG_SDM845_MASK BIT(DPU_PINGPONG_DITHER)
@@ -65,7 +81,13 @@
(PINGPONG_SDM845_MASK | BIT(DPU_PINGPONG_TE2))
#define CTL_SC7280_MASK \
- (BIT(DPU_CTL_ACTIVE_CFG) | BIT(DPU_CTL_FETCH_ACTIVE) | BIT(DPU_CTL_VM_CFG))
+ (BIT(DPU_CTL_ACTIVE_CFG) | \
+ BIT(DPU_CTL_FETCH_ACTIVE) | \
+ BIT(DPU_CTL_VM_CFG) | \
+ BIT(DPU_CTL_DSPP_SUB_BLOCK_FLUSH))
+
+#define CTL_SM8550_MASK \
+ (CTL_SC7280_MASK | BIT(DPU_CTL_HAS_LAYER_EXT4))
#define MERGE_3D_SM8150_MASK (0)
@@ -75,55 +97,11 @@
#define INTF_SDM845_MASK (0)
-#define INTF_SC7180_MASK BIT(DPU_INTF_INPUT_CTRL) | BIT(DPU_INTF_TE)
+#define INTF_SC7180_MASK \
+ (BIT(DPU_INTF_INPUT_CTRL) | BIT(DPU_INTF_TE) | BIT(DPU_INTF_STATUS_SUPPORTED))
#define INTF_SC7280_MASK INTF_SC7180_MASK | BIT(DPU_DATA_HCTL_EN)
-#define IRQ_SDM845_MASK (BIT(MDP_SSPP_TOP0_INTR) | \
- BIT(MDP_SSPP_TOP0_INTR2) | \
- BIT(MDP_SSPP_TOP0_HIST_INTR) | \
- BIT(MDP_INTF0_INTR) | \
- BIT(MDP_INTF1_INTR) | \
- BIT(MDP_INTF2_INTR) | \
- BIT(MDP_INTF3_INTR) | \
- BIT(MDP_INTF4_INTR) | \
- BIT(MDP_AD4_0_INTR) | \
- BIT(MDP_AD4_1_INTR))
-
-#define IRQ_SC7180_MASK (BIT(MDP_SSPP_TOP0_INTR) | \
- BIT(MDP_SSPP_TOP0_INTR2) | \
- BIT(MDP_SSPP_TOP0_HIST_INTR) | \
- BIT(MDP_INTF0_INTR) | \
- BIT(MDP_INTF1_INTR))
-
-#define IRQ_SC7280_MASK (BIT(MDP_SSPP_TOP0_INTR) | \
- BIT(MDP_SSPP_TOP0_INTR2) | \
- BIT(MDP_SSPP_TOP0_HIST_INTR) | \
- BIT(MDP_INTF0_7xxx_INTR) | \
- BIT(MDP_INTF1_7xxx_INTR) | \
- BIT(MDP_INTF5_7xxx_INTR))
-
-#define IRQ_SM8250_MASK (BIT(MDP_SSPP_TOP0_INTR) | \
- BIT(MDP_SSPP_TOP0_INTR2) | \
- BIT(MDP_SSPP_TOP0_HIST_INTR) | \
- BIT(MDP_INTF0_INTR) | \
- BIT(MDP_INTF1_INTR) | \
- BIT(MDP_INTF2_INTR) | \
- BIT(MDP_INTF3_INTR) | \
- BIT(MDP_INTF4_INTR))
-
-#define IRQ_SC8180X_MASK (BIT(MDP_SSPP_TOP0_INTR) | \
- BIT(MDP_SSPP_TOP0_INTR2) | \
- BIT(MDP_SSPP_TOP0_HIST_INTR) | \
- BIT(MDP_INTF0_INTR) | \
- BIT(MDP_INTF1_INTR) | \
- BIT(MDP_INTF2_INTR) | \
- BIT(MDP_INTF3_INTR) | \
- BIT(MDP_INTF4_INTR) | \
- BIT(MDP_INTF5_INTR) | \
- BIT(MDP_AD4_0_INTR) | \
- BIT(MDP_AD4_1_INTR))
-
#define WB_SM8250_MASK (BIT(DPU_WB_LINE_MODE) | \
BIT(DPU_WB_UBWC) | \
BIT(DPU_WB_YUV_CONFIG) | \
@@ -156,6 +134,8 @@ static const uint32_t plane_formats[] = {
DRM_FORMAT_RGBX8888,
DRM_FORMAT_BGRX8888,
DRM_FORMAT_XBGR8888,
+ DRM_FORMAT_ARGB2101010,
+ DRM_FORMAT_XRGB2101010,
DRM_FORMAT_RGB888,
DRM_FORMAT_BGR888,
DRM_FORMAT_RGB565,
@@ -184,6 +164,8 @@ static const uint32_t plane_formats_yuv[] = {
DRM_FORMAT_RGBA8888,
DRM_FORMAT_BGRX8888,
DRM_FORMAT_BGRA8888,
+ DRM_FORMAT_ARGB2101010,
+ DRM_FORMAT_XRGB2101010,
DRM_FORMAT_XRGB8888,
DRM_FORMAT_XBGR8888,
DRM_FORMAT_RGBX8888,
@@ -208,6 +190,7 @@ static const uint32_t plane_formats_yuv[] = {
DRM_FORMAT_RGBX4444,
DRM_FORMAT_BGRX4444,
+ DRM_FORMAT_P010,
DRM_FORMAT_NV12,
DRM_FORMAT_NV21,
DRM_FORMAT_NV16,
@@ -260,442 +243,6 @@ static const uint32_t wb2_formats[] = {
};
/*************************************************************
- * DPU sub blocks config
- *************************************************************/
-/* DPU top level caps */
-static const struct dpu_caps msm8998_dpu_caps = {
- .max_mixer_width = DEFAULT_DPU_OUTPUT_LINE_WIDTH,
- .max_mixer_blendstages = 0x7,
- .qseed_type = DPU_SSPP_SCALER_QSEED3,
- .smart_dma_rev = DPU_SSPP_SMART_DMA_V1,
- .ubwc_version = DPU_HW_UBWC_VER_10,
- .has_src_split = true,
- .has_dim_layer = true,
- .has_idle_pc = true,
- .has_3d_merge = true,
- .max_linewidth = DEFAULT_DPU_OUTPUT_LINE_WIDTH,
- .pixel_ram_size = DEFAULT_PIXEL_RAM_SIZE,
- .max_hdeci_exp = MAX_HORZ_DECIMATION,
- .max_vdeci_exp = MAX_VERT_DECIMATION,
-};
-
-static const struct dpu_caps qcm2290_dpu_caps = {
- .max_mixer_width = DEFAULT_DPU_OUTPUT_LINE_WIDTH,
- .max_mixer_blendstages = 0x4,
- .smart_dma_rev = DPU_SSPP_SMART_DMA_V2,
- .ubwc_version = DPU_HW_UBWC_VER_20,
- .has_dim_layer = true,
- .has_idle_pc = true,
- .max_linewidth = 2160,
- .pixel_ram_size = DEFAULT_PIXEL_RAM_SIZE,
-};
-
-static const struct dpu_caps sdm845_dpu_caps = {
- .max_mixer_width = DEFAULT_DPU_OUTPUT_LINE_WIDTH,
- .max_mixer_blendstages = 0xb,
- .qseed_type = DPU_SSPP_SCALER_QSEED3,
- .smart_dma_rev = DPU_SSPP_SMART_DMA_V2,
- .ubwc_version = DPU_HW_UBWC_VER_20,
- .has_src_split = true,
- .has_dim_layer = true,
- .has_idle_pc = true,
- .has_3d_merge = true,
- .max_linewidth = DEFAULT_DPU_OUTPUT_LINE_WIDTH,
- .pixel_ram_size = DEFAULT_PIXEL_RAM_SIZE,
- .max_hdeci_exp = MAX_HORZ_DECIMATION,
- .max_vdeci_exp = MAX_VERT_DECIMATION,
-};
-
-static const struct dpu_caps sc7180_dpu_caps = {
- .max_mixer_width = DEFAULT_DPU_OUTPUT_LINE_WIDTH,
- .max_mixer_blendstages = 0x9,
- .qseed_type = DPU_SSPP_SCALER_QSEED4,
- .smart_dma_rev = DPU_SSPP_SMART_DMA_V2,
- .ubwc_version = DPU_HW_UBWC_VER_20,
- .has_dim_layer = true,
- .has_idle_pc = true,
- .max_linewidth = DEFAULT_DPU_OUTPUT_LINE_WIDTH,
- .pixel_ram_size = DEFAULT_PIXEL_RAM_SIZE,
-};
-
-static const struct dpu_caps sm8150_dpu_caps = {
- .max_mixer_width = DEFAULT_DPU_OUTPUT_LINE_WIDTH,
- .max_mixer_blendstages = 0xb,
- .qseed_type = DPU_SSPP_SCALER_QSEED3,
- .smart_dma_rev = DPU_SSPP_SMART_DMA_V2, /* TODO: v2.5 */
- .ubwc_version = DPU_HW_UBWC_VER_30,
- .has_src_split = true,
- .has_dim_layer = true,
- .has_idle_pc = true,
- .has_3d_merge = true,
- .max_linewidth = 4096,
- .pixel_ram_size = DEFAULT_PIXEL_RAM_SIZE,
- .max_hdeci_exp = MAX_HORZ_DECIMATION,
- .max_vdeci_exp = MAX_VERT_DECIMATION,
-};
-
-static const struct dpu_caps sc8180x_dpu_caps = {
- .max_mixer_width = DEFAULT_DPU_OUTPUT_LINE_WIDTH,
- .max_mixer_blendstages = 0xb,
- .qseed_type = DPU_SSPP_SCALER_QSEED3,
- .smart_dma_rev = DPU_SSPP_SMART_DMA_V2, /* TODO: v2.5 */
- .ubwc_version = DPU_HW_UBWC_VER_30,
- .has_src_split = true,
- .has_dim_layer = true,
- .has_idle_pc = true,
- .has_3d_merge = true,
- .max_linewidth = 4096,
- .pixel_ram_size = DEFAULT_PIXEL_RAM_SIZE,
- .max_hdeci_exp = MAX_HORZ_DECIMATION,
- .max_vdeci_exp = MAX_VERT_DECIMATION,
-};
-
-static const struct dpu_caps sm8250_dpu_caps = {
- .max_mixer_width = DEFAULT_DPU_OUTPUT_LINE_WIDTH,
- .max_mixer_blendstages = 0xb,
- .qseed_type = DPU_SSPP_SCALER_QSEED3LITE,
- .smart_dma_rev = DPU_SSPP_SMART_DMA_V2, /* TODO: v2.5 */
- .ubwc_version = DPU_HW_UBWC_VER_40,
- .has_src_split = true,
- .has_dim_layer = true,
- .has_idle_pc = true,
- .has_3d_merge = true,
- .max_linewidth = 4096,
- .pixel_ram_size = DEFAULT_PIXEL_RAM_SIZE,
-};
-
-static const struct dpu_caps sc7280_dpu_caps = {
- .max_mixer_width = DEFAULT_DPU_OUTPUT_LINE_WIDTH,
- .max_mixer_blendstages = 0x7,
- .qseed_type = DPU_SSPP_SCALER_QSEED4,
- .smart_dma_rev = DPU_SSPP_SMART_DMA_V2,
- .ubwc_version = DPU_HW_UBWC_VER_30,
- .has_dim_layer = true,
- .has_idle_pc = true,
- .max_linewidth = 2400,
- .pixel_ram_size = DEFAULT_PIXEL_RAM_SIZE,
-};
-
-static const struct dpu_mdp_cfg msm8998_mdp[] = {
- {
- .name = "top_0", .id = MDP_TOP,
- .base = 0x0, .len = 0x458,
- .features = 0,
- .highest_bank_bit = 0x2,
- .clk_ctrls[DPU_CLK_CTRL_VIG0] = {
- .reg_off = 0x2AC, .bit_off = 0},
- .clk_ctrls[DPU_CLK_CTRL_VIG1] = {
- .reg_off = 0x2B4, .bit_off = 0},
- .clk_ctrls[DPU_CLK_CTRL_VIG2] = {
- .reg_off = 0x2BC, .bit_off = 0},
- .clk_ctrls[DPU_CLK_CTRL_VIG3] = {
- .reg_off = 0x2C4, .bit_off = 0},
- .clk_ctrls[DPU_CLK_CTRL_DMA0] = {
- .reg_off = 0x2AC, .bit_off = 8},
- .clk_ctrls[DPU_CLK_CTRL_DMA1] = {
- .reg_off = 0x2B4, .bit_off = 8},
- .clk_ctrls[DPU_CLK_CTRL_DMA2] = {
- .reg_off = 0x2C4, .bit_off = 8},
- .clk_ctrls[DPU_CLK_CTRL_DMA3] = {
- .reg_off = 0x2C4, .bit_off = 12},
- .clk_ctrls[DPU_CLK_CTRL_CURSOR0] = {
- .reg_off = 0x3A8, .bit_off = 15},
- .clk_ctrls[DPU_CLK_CTRL_CURSOR1] = {
- .reg_off = 0x3B0, .bit_off = 15},
- },
-};
-
-static const struct dpu_mdp_cfg sdm845_mdp[] = {
- {
- .name = "top_0", .id = MDP_TOP,
- .base = 0x0, .len = 0x45C,
- .features = BIT(DPU_MDP_AUDIO_SELECT),
- .highest_bank_bit = 0x2,
- .clk_ctrls[DPU_CLK_CTRL_VIG0] = {
- .reg_off = 0x2AC, .bit_off = 0},
- .clk_ctrls[DPU_CLK_CTRL_VIG1] = {
- .reg_off = 0x2B4, .bit_off = 0},
- .clk_ctrls[DPU_CLK_CTRL_VIG2] = {
- .reg_off = 0x2BC, .bit_off = 0},
- .clk_ctrls[DPU_CLK_CTRL_VIG3] = {
- .reg_off = 0x2C4, .bit_off = 0},
- .clk_ctrls[DPU_CLK_CTRL_DMA0] = {
- .reg_off = 0x2AC, .bit_off = 8},
- .clk_ctrls[DPU_CLK_CTRL_DMA1] = {
- .reg_off = 0x2B4, .bit_off = 8},
- .clk_ctrls[DPU_CLK_CTRL_CURSOR0] = {
- .reg_off = 0x2BC, .bit_off = 8},
- .clk_ctrls[DPU_CLK_CTRL_CURSOR1] = {
- .reg_off = 0x2C4, .bit_off = 8},
- },
-};
-
-static const struct dpu_mdp_cfg sc7180_mdp[] = {
- {
- .name = "top_0", .id = MDP_TOP,
- .base = 0x0, .len = 0x494,
- .features = 0,
- .highest_bank_bit = 0x3,
- .clk_ctrls[DPU_CLK_CTRL_VIG0] = {
- .reg_off = 0x2AC, .bit_off = 0},
- .clk_ctrls[DPU_CLK_CTRL_DMA0] = {
- .reg_off = 0x2AC, .bit_off = 8},
- .clk_ctrls[DPU_CLK_CTRL_CURSOR0] = {
- .reg_off = 0x2B4, .bit_off = 8},
- .clk_ctrls[DPU_CLK_CTRL_CURSOR1] = {
- .reg_off = 0x2C4, .bit_off = 8},
- },
-};
-
-static const struct dpu_mdp_cfg sc8180x_mdp[] = {
- {
- .name = "top_0", .id = MDP_TOP,
- .base = 0x0, .len = 0x45C,
- .features = 0,
- .highest_bank_bit = 0x3,
- .clk_ctrls[DPU_CLK_CTRL_VIG0] = {
- .reg_off = 0x2AC, .bit_off = 0},
- .clk_ctrls[DPU_CLK_CTRL_VIG1] = {
- .reg_off = 0x2B4, .bit_off = 0},
- .clk_ctrls[DPU_CLK_CTRL_VIG2] = {
- .reg_off = 0x2BC, .bit_off = 0},
- .clk_ctrls[DPU_CLK_CTRL_VIG3] = {
- .reg_off = 0x2C4, .bit_off = 0},
- .clk_ctrls[DPU_CLK_CTRL_DMA0] = {
- .reg_off = 0x2AC, .bit_off = 8},
- .clk_ctrls[DPU_CLK_CTRL_DMA1] = {
- .reg_off = 0x2B4, .bit_off = 8},
- .clk_ctrls[DPU_CLK_CTRL_CURSOR0] = {
- .reg_off = 0x2BC, .bit_off = 8},
- .clk_ctrls[DPU_CLK_CTRL_CURSOR1] = {
- .reg_off = 0x2C4, .bit_off = 8},
- },
-};
-
-static const struct dpu_mdp_cfg sm8250_mdp[] = {
- {
- .name = "top_0", .id = MDP_TOP,
- .base = 0x0, .len = 0x494,
- .features = 0,
- .highest_bank_bit = 0x3, /* TODO: 2 for LP_DDR4 */
- .clk_ctrls[DPU_CLK_CTRL_VIG0] = {
- .reg_off = 0x2AC, .bit_off = 0},
- .clk_ctrls[DPU_CLK_CTRL_VIG1] = {
- .reg_off = 0x2B4, .bit_off = 0},
- .clk_ctrls[DPU_CLK_CTRL_VIG2] = {
- .reg_off = 0x2BC, .bit_off = 0},
- .clk_ctrls[DPU_CLK_CTRL_VIG3] = {
- .reg_off = 0x2C4, .bit_off = 0},
- .clk_ctrls[DPU_CLK_CTRL_DMA0] = {
- .reg_off = 0x2AC, .bit_off = 8},
- .clk_ctrls[DPU_CLK_CTRL_DMA1] = {
- .reg_off = 0x2B4, .bit_off = 8},
- .clk_ctrls[DPU_CLK_CTRL_CURSOR0] = {
- .reg_off = 0x2BC, .bit_off = 8},
- .clk_ctrls[DPU_CLK_CTRL_CURSOR1] = {
- .reg_off = 0x2C4, .bit_off = 8},
- .clk_ctrls[DPU_CLK_CTRL_REG_DMA] = {
- .reg_off = 0x2BC, .bit_off = 20},
- .clk_ctrls[DPU_CLK_CTRL_WB2] = {
- .reg_off = 0x3B8, .bit_off = 24},
- },
-};
-
-static const struct dpu_mdp_cfg sc7280_mdp[] = {
- {
- .name = "top_0", .id = MDP_TOP,
- .base = 0x0, .len = 0x2014,
- .highest_bank_bit = 0x1,
- .clk_ctrls[DPU_CLK_CTRL_VIG0] = {
- .reg_off = 0x2AC, .bit_off = 0},
- .clk_ctrls[DPU_CLK_CTRL_DMA0] = {
- .reg_off = 0x2AC, .bit_off = 8},
- .clk_ctrls[DPU_CLK_CTRL_CURSOR0] = {
- .reg_off = 0x2B4, .bit_off = 8},
- .clk_ctrls[DPU_CLK_CTRL_CURSOR1] = {
- .reg_off = 0x2C4, .bit_off = 8},
- },
-};
-
-static const struct dpu_mdp_cfg qcm2290_mdp[] = {
- {
- .name = "top_0", .id = MDP_TOP,
- .base = 0x0, .len = 0x494,
- .features = 0,
- .highest_bank_bit = 0x2,
- .clk_ctrls[DPU_CLK_CTRL_VIG0] = {
- .reg_off = 0x2AC, .bit_off = 0},
- .clk_ctrls[DPU_CLK_CTRL_DMA0] = {
- .reg_off = 0x2AC, .bit_off = 8},
- },
-};
-
-/*************************************************************
- * CTL sub blocks config
- *************************************************************/
-static const struct dpu_ctl_cfg msm8998_ctl[] = {
- {
- .name = "ctl_0", .id = CTL_0,
- .base = 0x1000, .len = 0x94,
- .features = BIT(DPU_CTL_SPLIT_DISPLAY),
- .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 9),
- },
- {
- .name = "ctl_1", .id = CTL_1,
- .base = 0x1200, .len = 0x94,
- .features = 0,
- .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 10),
- },
- {
- .name = "ctl_2", .id = CTL_2,
- .base = 0x1400, .len = 0x94,
- .features = BIT(DPU_CTL_SPLIT_DISPLAY),
- .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 11),
- },
- {
- .name = "ctl_3", .id = CTL_3,
- .base = 0x1600, .len = 0x94,
- .features = 0,
- .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 12),
- },
- {
- .name = "ctl_4", .id = CTL_4,
- .base = 0x1800, .len = 0x94,
- .features = 0,
- .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 13),
- },
-};
-
-static const struct dpu_ctl_cfg sdm845_ctl[] = {
- {
- .name = "ctl_0", .id = CTL_0,
- .base = 0x1000, .len = 0xE4,
- .features = BIT(DPU_CTL_SPLIT_DISPLAY),
- .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 9),
- },
- {
- .name = "ctl_1", .id = CTL_1,
- .base = 0x1200, .len = 0xE4,
- .features = BIT(DPU_CTL_SPLIT_DISPLAY),
- .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 10),
- },
- {
- .name = "ctl_2", .id = CTL_2,
- .base = 0x1400, .len = 0xE4,
- .features = 0,
- .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 11),
- },
- {
- .name = "ctl_3", .id = CTL_3,
- .base = 0x1600, .len = 0xE4,
- .features = 0,
- .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 12),
- },
- {
- .name = "ctl_4", .id = CTL_4,
- .base = 0x1800, .len = 0xE4,
- .features = 0,
- .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 13),
- },
-};
-
-static const struct dpu_ctl_cfg sc7180_ctl[] = {
- {
- .name = "ctl_0", .id = CTL_0,
- .base = 0x1000, .len = 0xE4,
- .features = BIT(DPU_CTL_ACTIVE_CFG),
- .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 9),
- },
- {
- .name = "ctl_1", .id = CTL_1,
- .base = 0x1200, .len = 0xE4,
- .features = BIT(DPU_CTL_ACTIVE_CFG),
- .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 10),
- },
- {
- .name = "ctl_2", .id = CTL_2,
- .base = 0x1400, .len = 0xE4,
- .features = BIT(DPU_CTL_ACTIVE_CFG),
- .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 11),
- },
-};
-
-static const struct dpu_ctl_cfg sm8150_ctl[] = {
- {
- .name = "ctl_0", .id = CTL_0,
- .base = 0x1000, .len = 0x1e0,
- .features = BIT(DPU_CTL_ACTIVE_CFG) | BIT(DPU_CTL_SPLIT_DISPLAY),
- .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 9),
- },
- {
- .name = "ctl_1", .id = CTL_1,
- .base = 0x1200, .len = 0x1e0,
- .features = BIT(DPU_CTL_ACTIVE_CFG) | BIT(DPU_CTL_SPLIT_DISPLAY),
- .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 10),
- },
- {
- .name = "ctl_2", .id = CTL_2,
- .base = 0x1400, .len = 0x1e0,
- .features = BIT(DPU_CTL_ACTIVE_CFG),
- .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 11),
- },
- {
- .name = "ctl_3", .id = CTL_3,
- .base = 0x1600, .len = 0x1e0,
- .features = BIT(DPU_CTL_ACTIVE_CFG),
- .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 12),
- },
- {
- .name = "ctl_4", .id = CTL_4,
- .base = 0x1800, .len = 0x1e0,
- .features = BIT(DPU_CTL_ACTIVE_CFG),
- .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 13),
- },
- {
- .name = "ctl_5", .id = CTL_5,
- .base = 0x1a00, .len = 0x1e0,
- .features = BIT(DPU_CTL_ACTIVE_CFG),
- .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 23),
- },
-};
-
-static const struct dpu_ctl_cfg sc7280_ctl[] = {
- {
- .name = "ctl_0", .id = CTL_0,
- .base = 0x15000, .len = 0x1E8,
- .features = CTL_SC7280_MASK,
- .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 9),
- },
- {
- .name = "ctl_1", .id = CTL_1,
- .base = 0x16000, .len = 0x1E8,
- .features = CTL_SC7280_MASK,
- .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 10),
- },
- {
- .name = "ctl_2", .id = CTL_2,
- .base = 0x17000, .len = 0x1E8,
- .features = CTL_SC7280_MASK,
- .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 11),
- },
- {
- .name = "ctl_3", .id = CTL_3,
- .base = 0x18000, .len = 0x1E8,
- .features = CTL_SC7280_MASK,
- .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 12),
- },
-};
-
-static const struct dpu_ctl_cfg qcm2290_ctl[] = {
- {
- .name = "ctl_0", .id = CTL_0,
- .base = 0x1000, .len = 0x1dc,
- .features = BIT(DPU_CTL_ACTIVE_CFG),
- .intr_start = DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 9),
- },
-};
-
-/*************************************************************
* SSPP sub blocks config
*************************************************************/
@@ -782,11 +329,11 @@ static const struct dpu_sspp_sub_blks sdm845_dma_sblk_1 = _DMA_SBLK("9", 2);
static const struct dpu_sspp_sub_blks sdm845_dma_sblk_2 = _DMA_SBLK("10", 3);
static const struct dpu_sspp_sub_blks sdm845_dma_sblk_3 = _DMA_SBLK("11", 4);
-#define SSPP_BLK(_name, _id, _base, _features, \
+#define SSPP_BLK(_name, _id, _base, _len, _features, \
_sblk, _xinid, _type, _clkctrl) \
{ \
.name = _name, .id = _id, \
- .base = _base, .len = 0x1c8, \
+ .base = _base, .len = _len, \
.features = _features, \
.sblk = &_sblk, \
.xin_id = _xinid, \
@@ -794,100 +341,34 @@ static const struct dpu_sspp_sub_blks sdm845_dma_sblk_3 = _DMA_SBLK("11", 4);
.clk_ctrl = _clkctrl \
}
-static const struct dpu_sspp_cfg msm8998_sspp[] = {
- SSPP_BLK("sspp_0", SSPP_VIG0, 0x4000, VIG_MSM8998_MASK,
- msm8998_vig_sblk_0, 0, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG0),
- SSPP_BLK("sspp_1", SSPP_VIG1, 0x6000, VIG_MSM8998_MASK,
- msm8998_vig_sblk_1, 4, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG1),
- SSPP_BLK("sspp_2", SSPP_VIG2, 0x8000, VIG_MSM8998_MASK,
- msm8998_vig_sblk_2, 8, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG2),
- SSPP_BLK("sspp_3", SSPP_VIG3, 0xa000, VIG_MSM8998_MASK,
- msm8998_vig_sblk_3, 12, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG3),
- SSPP_BLK("sspp_8", SSPP_DMA0, 0x24000, DMA_MSM8998_MASK,
- sdm845_dma_sblk_0, 1, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA0),
- SSPP_BLK("sspp_9", SSPP_DMA1, 0x26000, DMA_MSM8998_MASK,
- sdm845_dma_sblk_1, 5, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA1),
- SSPP_BLK("sspp_10", SSPP_DMA2, 0x28000, DMA_CURSOR_MSM8998_MASK,
- sdm845_dma_sblk_2, 9, SSPP_TYPE_DMA, DPU_CLK_CTRL_CURSOR0),
- SSPP_BLK("sspp_11", SSPP_DMA3, 0x2a000, DMA_CURSOR_MSM8998_MASK,
- sdm845_dma_sblk_3, 13, SSPP_TYPE_DMA, DPU_CLK_CTRL_CURSOR1),
-};
-
-static const struct dpu_sspp_cfg sdm845_sspp[] = {
- SSPP_BLK("sspp_0", SSPP_VIG0, 0x4000, VIG_SDM845_MASK,
- sdm845_vig_sblk_0, 0, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG0),
- SSPP_BLK("sspp_1", SSPP_VIG1, 0x6000, VIG_SDM845_MASK,
- sdm845_vig_sblk_1, 4, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG1),
- SSPP_BLK("sspp_2", SSPP_VIG2, 0x8000, VIG_SDM845_MASK,
- sdm845_vig_sblk_2, 8, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG2),
- SSPP_BLK("sspp_3", SSPP_VIG3, 0xa000, VIG_SDM845_MASK,
- sdm845_vig_sblk_3, 12, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG3),
- SSPP_BLK("sspp_8", SSPP_DMA0, 0x24000, DMA_SDM845_MASK,
- sdm845_dma_sblk_0, 1, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA0),
- SSPP_BLK("sspp_9", SSPP_DMA1, 0x26000, DMA_SDM845_MASK,
- sdm845_dma_sblk_1, 5, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA1),
- SSPP_BLK("sspp_10", SSPP_DMA2, 0x28000, DMA_CURSOR_SDM845_MASK,
- sdm845_dma_sblk_2, 9, SSPP_TYPE_DMA, DPU_CLK_CTRL_CURSOR0),
- SSPP_BLK("sspp_11", SSPP_DMA3, 0x2a000, DMA_CURSOR_SDM845_MASK,
- sdm845_dma_sblk_3, 13, SSPP_TYPE_DMA, DPU_CLK_CTRL_CURSOR1),
-};
-
static const struct dpu_sspp_sub_blks sc7180_vig_sblk_0 =
_VIG_SBLK("0", 4, DPU_SSPP_SCALER_QSEED4);
static const struct dpu_sspp_sub_blks sc7280_vig_sblk_0 =
_VIG_SBLK_ROT("0", 4, DPU_SSPP_SCALER_QSEED4, &dpu_rot_sc7280_cfg_v2);
-static const struct dpu_sspp_cfg sc7180_sspp[] = {
- SSPP_BLK("sspp_0", SSPP_VIG0, 0x4000, VIG_SC7180_MASK,
- sc7180_vig_sblk_0, 0, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG0),
- SSPP_BLK("sspp_8", SSPP_DMA0, 0x24000, DMA_SDM845_MASK,
- sdm845_dma_sblk_0, 1, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA0),
- SSPP_BLK("sspp_9", SSPP_DMA1, 0x26000, DMA_CURSOR_SDM845_MASK,
- sdm845_dma_sblk_1, 5, SSPP_TYPE_DMA, DPU_CLK_CTRL_CURSOR0),
- SSPP_BLK("sspp_10", SSPP_DMA2, 0x28000, DMA_CURSOR_SDM845_MASK,
- sdm845_dma_sblk_2, 9, SSPP_TYPE_DMA, DPU_CLK_CTRL_CURSOR1),
-};
+static const struct dpu_sspp_sub_blks sm6115_vig_sblk_0 =
+ _VIG_SBLK("0", 2, DPU_SSPP_SCALER_QSEED4);
static const struct dpu_sspp_sub_blks sm8250_vig_sblk_0 =
- _VIG_SBLK("0", 5, DPU_SSPP_SCALER_QSEED3LITE);
+ _VIG_SBLK("0", 5, DPU_SSPP_SCALER_QSEED4);
static const struct dpu_sspp_sub_blks sm8250_vig_sblk_1 =
- _VIG_SBLK("1", 6, DPU_SSPP_SCALER_QSEED3LITE);
+ _VIG_SBLK("1", 6, DPU_SSPP_SCALER_QSEED4);
static const struct dpu_sspp_sub_blks sm8250_vig_sblk_2 =
- _VIG_SBLK("2", 7, DPU_SSPP_SCALER_QSEED3LITE);
+ _VIG_SBLK("2", 7, DPU_SSPP_SCALER_QSEED4);
static const struct dpu_sspp_sub_blks sm8250_vig_sblk_3 =
- _VIG_SBLK("3", 8, DPU_SSPP_SCALER_QSEED3LITE);
-
-static const struct dpu_sspp_cfg sm8250_sspp[] = {
- SSPP_BLK("sspp_0", SSPP_VIG0, 0x4000, VIG_SM8250_MASK,
- sm8250_vig_sblk_0, 0, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG0),
- SSPP_BLK("sspp_1", SSPP_VIG1, 0x6000, VIG_SM8250_MASK,
- sm8250_vig_sblk_1, 4, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG1),
- SSPP_BLK("sspp_2", SSPP_VIG2, 0x8000, VIG_SM8250_MASK,
- sm8250_vig_sblk_2, 8, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG2),
- SSPP_BLK("sspp_3", SSPP_VIG3, 0xa000, VIG_SM8250_MASK,
- sm8250_vig_sblk_3, 12, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG3),
- SSPP_BLK("sspp_8", SSPP_DMA0, 0x24000, DMA_SDM845_MASK,
- sdm845_dma_sblk_0, 1, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA0),
- SSPP_BLK("sspp_9", SSPP_DMA1, 0x26000, DMA_SDM845_MASK,
- sdm845_dma_sblk_1, 5, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA1),
- SSPP_BLK("sspp_10", SSPP_DMA2, 0x28000, DMA_CURSOR_SDM845_MASK,
- sdm845_dma_sblk_2, 9, SSPP_TYPE_DMA, DPU_CLK_CTRL_CURSOR0),
- SSPP_BLK("sspp_11", SSPP_DMA3, 0x2a000, DMA_CURSOR_SDM845_MASK,
- sdm845_dma_sblk_3, 13, SSPP_TYPE_DMA, DPU_CLK_CTRL_CURSOR1),
-};
-
-static const struct dpu_sspp_cfg sc7280_sspp[] = {
- SSPP_BLK("sspp_0", SSPP_VIG0, 0x4000, VIG_SC7280_MASK,
- sc7280_vig_sblk_0, 0, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG0),
- SSPP_BLK("sspp_8", SSPP_DMA0, 0x24000, DMA_SDM845_MASK,
- sdm845_dma_sblk_0, 1, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA0),
- SSPP_BLK("sspp_9", SSPP_DMA1, 0x26000, DMA_CURSOR_SDM845_MASK,
- sdm845_dma_sblk_1, 5, SSPP_TYPE_DMA, DPU_CLK_CTRL_CURSOR0),
- SSPP_BLK("sspp_10", SSPP_DMA2, 0x28000, DMA_CURSOR_SDM845_MASK,
- sdm845_dma_sblk_2, 9, SSPP_TYPE_DMA, DPU_CLK_CTRL_CURSOR1),
-};
-
+ _VIG_SBLK("3", 8, DPU_SSPP_SCALER_QSEED4);
+
+static const struct dpu_sspp_sub_blks sm8550_vig_sblk_0 =
+ _VIG_SBLK("0", 7, DPU_SSPP_SCALER_QSEED4);
+static const struct dpu_sspp_sub_blks sm8550_vig_sblk_1 =
+ _VIG_SBLK("1", 8, DPU_SSPP_SCALER_QSEED4);
+static const struct dpu_sspp_sub_blks sm8550_vig_sblk_2 =
+ _VIG_SBLK("2", 9, DPU_SSPP_SCALER_QSEED4);
+static const struct dpu_sspp_sub_blks sm8550_vig_sblk_3 =
+ _VIG_SBLK("3", 10, DPU_SSPP_SCALER_QSEED4);
+static const struct dpu_sspp_sub_blks sm8550_dma_sblk_4 = _DMA_SBLK("12", 5);
+static const struct dpu_sspp_sub_blks sm8550_dma_sblk_5 = _DMA_SBLK("13", 6);
#define _VIG_SBLK_NOSCALE(num, sdma_pri) \
{ \
@@ -905,13 +386,6 @@ static const struct dpu_sspp_cfg sc7280_sspp[] = {
static const struct dpu_sspp_sub_blks qcm2290_vig_sblk_0 = _VIG_SBLK_NOSCALE("0", 2);
static const struct dpu_sspp_sub_blks qcm2290_dma_sblk_0 = _DMA_SBLK("8", 1);
-static const struct dpu_sspp_cfg qcm2290_sspp[] = {
- SSPP_BLK("sspp_0", SSPP_VIG0, 0x4000, VIG_QCM2290_MASK,
- qcm2290_vig_sblk_0, 0, SSPP_TYPE_VIG, DPU_CLK_CTRL_VIG0),
- SSPP_BLK("sspp_8", SSPP_DMA0, 0x24000, DMA_SDM845_MASK,
- qcm2290_dma_sblk_0, 1, SSPP_TYPE_DMA, DPU_CLK_CTRL_DMA0),
-};
-
/*************************************************************
* MIXER sub blocks config
*************************************************************/
@@ -938,21 +412,6 @@ static const struct dpu_lm_sub_blks msm8998_lm_sblk = {
},
};
-static const struct dpu_lm_cfg msm8998_lm[] = {
- LM_BLK("lm_0", LM_0, 0x44000, MIXER_MSM8998_MASK,
- &msm8998_lm_sblk, PINGPONG_0, LM_2, DSPP_0),
- LM_BLK("lm_1", LM_1, 0x45000, MIXER_MSM8998_MASK,
- &msm8998_lm_sblk, PINGPONG_1, LM_5, DSPP_1),
- LM_BLK("lm_2", LM_2, 0x46000, MIXER_MSM8998_MASK,
- &msm8998_lm_sblk, PINGPONG_2, LM_0, 0),
- LM_BLK("lm_3", LM_3, 0x47000, MIXER_MSM8998_MASK,
- &msm8998_lm_sblk, PINGPONG_MAX, 0, 0),
- LM_BLK("lm_4", LM_4, 0x48000, MIXER_MSM8998_MASK,
- &msm8998_lm_sblk, PINGPONG_MAX, 0, 0),
- LM_BLK("lm_5", LM_5, 0x49000, MIXER_MSM8998_MASK,
- &msm8998_lm_sblk, PINGPONG_3, LM_1, 0),
-};
-
/* SDM845 */
static const struct dpu_lm_sub_blks sdm845_lm_sblk = {
@@ -964,21 +423,6 @@ static const struct dpu_lm_sub_blks sdm845_lm_sblk = {
},
};
-static const struct dpu_lm_cfg sdm845_lm[] = {
- LM_BLK("lm_0", LM_0, 0x44000, MIXER_SDM845_MASK,
- &sdm845_lm_sblk, PINGPONG_0, LM_1, 0),
- LM_BLK("lm_1", LM_1, 0x45000, MIXER_SDM845_MASK,
- &sdm845_lm_sblk, PINGPONG_1, LM_0, 0),
- LM_BLK("lm_2", LM_2, 0x46000, MIXER_SDM845_MASK,
- &sdm845_lm_sblk, PINGPONG_2, LM_5, 0),
- LM_BLK("lm_3", LM_3, 0x0, MIXER_SDM845_MASK,
- &sdm845_lm_sblk, PINGPONG_MAX, 0, 0),
- LM_BLK("lm_4", LM_4, 0x0, MIXER_SDM845_MASK,
- &sdm845_lm_sblk, PINGPONG_MAX, 0, 0),
- LM_BLK("lm_5", LM_5, 0x49000, MIXER_SDM845_MASK,
- &sdm845_lm_sblk, PINGPONG_3, LM_2, 0),
-};
-
/* SC7180 */
static const struct dpu_lm_sub_blks sc7180_lm_sblk = {
@@ -989,54 +433,16 @@ static const struct dpu_lm_sub_blks sc7180_lm_sblk = {
},
};
-static const struct dpu_lm_cfg sc7180_lm[] = {
- LM_BLK("lm_0", LM_0, 0x44000, MIXER_SC7180_MASK,
- &sc7180_lm_sblk, PINGPONG_0, LM_1, DSPP_0),
- LM_BLK("lm_1", LM_1, 0x45000, MIXER_SC7180_MASK,
- &sc7180_lm_sblk, PINGPONG_1, LM_0, 0),
-};
-
-/* SM8150 */
-
-static const struct dpu_lm_cfg sm8150_lm[] = {
- LM_BLK("lm_0", LM_0, 0x44000, MIXER_SDM845_MASK,
- &sdm845_lm_sblk, PINGPONG_0, LM_1, DSPP_0),
- LM_BLK("lm_1", LM_1, 0x45000, MIXER_SDM845_MASK,
- &sdm845_lm_sblk, PINGPONG_1, LM_0, DSPP_1),
- LM_BLK("lm_2", LM_2, 0x46000, MIXER_SDM845_MASK,
- &sdm845_lm_sblk, PINGPONG_2, LM_3, 0),
- LM_BLK("lm_3", LM_3, 0x47000, MIXER_SDM845_MASK,
- &sdm845_lm_sblk, PINGPONG_3, LM_2, 0),
- LM_BLK("lm_4", LM_4, 0x48000, MIXER_SDM845_MASK,
- &sdm845_lm_sblk, PINGPONG_4, LM_5, 0),
- LM_BLK("lm_5", LM_5, 0x49000, MIXER_SDM845_MASK,
- &sdm845_lm_sblk, PINGPONG_5, LM_4, 0),
-};
-
-static const struct dpu_lm_cfg sc7280_lm[] = {
- LM_BLK("lm_0", LM_0, 0x44000, MIXER_SC7180_MASK,
- &sc7180_lm_sblk, PINGPONG_0, 0, DSPP_0),
- LM_BLK("lm_2", LM_2, 0x46000, MIXER_SC7180_MASK,
- &sc7180_lm_sblk, PINGPONG_2, LM_3, 0),
- LM_BLK("lm_3", LM_3, 0x47000, MIXER_SC7180_MASK,
- &sc7180_lm_sblk, PINGPONG_3, LM_2, 0),
-};
-
/* QCM2290 */
static const struct dpu_lm_sub_blks qcm2290_lm_sblk = {
- .maxwidth = DEFAULT_DPU_OUTPUT_LINE_WIDTH,
+ .maxwidth = DEFAULT_DPU_LINE_WIDTH,
.maxblendstages = 4, /* excluding base layer */
.blendstage_base = { /* offsets relative to mixer base */
0x20, 0x38, 0x50, 0x68
},
};
-static const struct dpu_lm_cfg qcm2290_lm[] = {
- LM_BLK("lm_0", LM_0, 0x44000, MIXER_SC7180_MASK,
- &qcm2290_lm_sblk, PINGPONG_0, 0, DSPP_0),
-};
-
/*************************************************************
* DSPP sub blocks config
*************************************************************/
@@ -1065,34 +471,6 @@ static const struct dpu_dspp_sub_blks sm8150_dspp_sblk = {
.sblk = _sblk \
}
-static const struct dpu_dspp_cfg msm8998_dspp[] = {
- DSPP_BLK("dspp_0", DSPP_0, 0x54000, DSPP_MSM8998_MASK,
- &msm8998_dspp_sblk),
- DSPP_BLK("dspp_1", DSPP_1, 0x56000, DSPP_MSM8998_MASK,
- &msm8998_dspp_sblk),
-};
-
-static const struct dpu_dspp_cfg sc7180_dspp[] = {
- DSPP_BLK("dspp_0", DSPP_0, 0x54000, DSPP_SC7180_MASK,
- &sc7180_dspp_sblk),
-};
-
-static const struct dpu_dspp_cfg sm8150_dspp[] = {
- DSPP_BLK("dspp_0", DSPP_0, 0x54000, DSPP_SC7180_MASK,
- &sm8150_dspp_sblk),
- DSPP_BLK("dspp_1", DSPP_1, 0x56000, DSPP_SC7180_MASK,
- &sm8150_dspp_sblk),
- DSPP_BLK("dspp_2", DSPP_2, 0x58000, DSPP_SC7180_MASK,
- &sm8150_dspp_sblk),
- DSPP_BLK("dspp_3", DSPP_3, 0x5a000, DSPP_SC7180_MASK,
- &sm8150_dspp_sblk),
-};
-
-static const struct dpu_dspp_cfg qcm2290_dspp[] = {
- DSPP_BLK("dspp_0", DSPP_0, 0x54000, DSPP_SC7180_MASK,
- &sm8150_dspp_sblk),
-};
-
/*************************************************************
* PINGPONG sub blocks config
*************************************************************/
@@ -1113,6 +491,16 @@ static const struct dpu_pingpong_sub_blks sc7280_pp_sblk = {
.len = 0x20, .version = 0x20000},
};
+#define PP_BLK_DIPHER(_name, _id, _base, _merge_3d, _sblk, _done, _rdptr) \
+ {\
+ .name = _name, .id = _id, \
+ .base = _base, .len = 0, \
+ .features = BIT(DPU_PINGPONG_DITHER), \
+ .merge_3d = _merge_3d, \
+ .sblk = &_sblk, \
+ .intr_done = _done, \
+ .intr_rdptr = _rdptr, \
+ }
#define PP_BLK_TE(_name, _id, _base, _merge_3d, _sblk, _done, _rdptr) \
{\
.name = _name, .id = _id, \
@@ -1134,53 +522,6 @@ static const struct dpu_pingpong_sub_blks sc7280_pp_sblk = {
.intr_rdptr = _rdptr, \
}
-static const struct dpu_pingpong_cfg sdm845_pp[] = {
- PP_BLK_TE("pingpong_0", PINGPONG_0, 0x70000, 0, sdm845_pp_sblk_te,
- DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 8),
- DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 12)),
- PP_BLK_TE("pingpong_1", PINGPONG_1, 0x70800, 0, sdm845_pp_sblk_te,
- DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 9),
- DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 13)),
- PP_BLK("pingpong_2", PINGPONG_2, 0x71000, 0, sdm845_pp_sblk,
- DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 10),
- DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 14)),
- PP_BLK("pingpong_3", PINGPONG_3, 0x71800, 0, sdm845_pp_sblk,
- DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 11),
- DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 15)),
-};
-
-static struct dpu_pingpong_cfg sc7180_pp[] = {
- PP_BLK_TE("pingpong_0", PINGPONG_0, 0x70000, 0, sdm845_pp_sblk_te, -1, -1),
- PP_BLK_TE("pingpong_1", PINGPONG_1, 0x70800, 0, sdm845_pp_sblk_te, -1, -1),
-};
-
-static const struct dpu_pingpong_cfg sm8150_pp[] = {
- PP_BLK_TE("pingpong_0", PINGPONG_0, 0x70000, MERGE_3D_0, sdm845_pp_sblk_te,
- DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 8),
- DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 12)),
- PP_BLK_TE("pingpong_1", PINGPONG_1, 0x70800, MERGE_3D_0, sdm845_pp_sblk_te,
- DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 9),
- DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 13)),
- PP_BLK("pingpong_2", PINGPONG_2, 0x71000, MERGE_3D_1, sdm845_pp_sblk,
- DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 10),
- DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 14)),
- PP_BLK("pingpong_3", PINGPONG_3, 0x71800, MERGE_3D_1, sdm845_pp_sblk,
- DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 11),
- DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 15)),
- PP_BLK("pingpong_4", PINGPONG_4, 0x72000, MERGE_3D_2, sdm845_pp_sblk,
- DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 30),
- -1),
- PP_BLK("pingpong_5", PINGPONG_5, 0x72800, MERGE_3D_2, sdm845_pp_sblk,
- DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR2, 31),
- -1),
-};
-
-static struct dpu_pingpong_cfg qcm2290_pp[] = {
- PP_BLK("pingpong_0", PINGPONG_0, 0x70000, 0, sdm845_pp_sblk,
- DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 8),
- DPU_IRQ_IDX(MDP_SSPP_TOP0_INTR, 12)),
-};
-
/*************************************************************
* MERGE_3D sub blocks config
*************************************************************/
@@ -1192,43 +533,23 @@ static struct dpu_pingpong_cfg qcm2290_pp[] = {
.sblk = NULL \
}
-static const struct dpu_merge_3d_cfg sm8150_merge_3d[] = {
- MERGE_3D_BLK("merge_3d_0", MERGE_3D_0, 0x83000),
- MERGE_3D_BLK("merge_3d_1", MERGE_3D_1, 0x83100),
- MERGE_3D_BLK("merge_3d_2", MERGE_3D_2, 0x83200),
-};
-
-static const struct dpu_pingpong_cfg sc7280_pp[] = {
- PP_BLK("pingpong_0", PINGPONG_0, 0x59000, 0, sc7280_pp_sblk, -1, -1),
- PP_BLK("pingpong_1", PINGPONG_1, 0x6a000, 0, sc7280_pp_sblk, -1, -1),
- PP_BLK("pingpong_2", PINGPONG_2, 0x6b000, 0, sc7280_pp_sblk, -1, -1),
- PP_BLK("pingpong_3", PINGPONG_3, 0x6c000, 0, sc7280_pp_sblk, -1, -1),
-};
-
/*************************************************************
* DSC sub blocks config
*************************************************************/
-#define DSC_BLK(_name, _id, _base) \
+#define DSC_BLK(_name, _id, _base, _features) \
{\
.name = _name, .id = _id, \
.base = _base, .len = 0x140, \
- .features = 0, \
+ .features = _features, \
}
-static struct dpu_dsc_cfg sdm845_dsc[] = {
- DSC_BLK("dsc_0", DSC_0, 0x80000),
- DSC_BLK("dsc_1", DSC_1, 0x80400),
- DSC_BLK("dsc_2", DSC_2, 0x80800),
- DSC_BLK("dsc_3", DSC_3, 0x80c00),
-};
-
/*************************************************************
* INTF sub blocks config
*************************************************************/
-#define INTF_BLK(_name, _id, _base, _type, _ctrl_id, _progfetch, _features, _reg, _underrun_bit, _vsync_bit) \
+#define INTF_BLK(_name, _id, _base, _len, _type, _ctrl_id, _progfetch, _features, _reg, _underrun_bit, _vsync_bit) \
{\
.name = _name, .id = _id, \
- .base = _base, .len = 0x280, \
+ .base = _base, .len = _len, \
.features = _features, \
.type = _type, \
.controller_id = _ctrl_id, \
@@ -1237,53 +558,6 @@ static struct dpu_dsc_cfg sdm845_dsc[] = {
.intr_vsync = DPU_IRQ_IDX(_reg, _vsync_bit), \
}
-static const struct dpu_intf_cfg msm8998_intf[] = {
- INTF_BLK("intf_0", INTF_0, 0x6A000, INTF_DP, 0, 25, INTF_SDM845_MASK, MDP_SSPP_TOP0_INTR, 24, 25),
- INTF_BLK("intf_1", INTF_1, 0x6A800, INTF_DSI, 0, 25, INTF_SDM845_MASK, MDP_SSPP_TOP0_INTR, 26, 27),
- INTF_BLK("intf_2", INTF_2, 0x6B000, INTF_DSI, 1, 25, INTF_SDM845_MASK, MDP_SSPP_TOP0_INTR, 28, 29),
- INTF_BLK("intf_3", INTF_3, 0x6B800, INTF_HDMI, 0, 25, INTF_SDM845_MASK, MDP_SSPP_TOP0_INTR, 30, 31),
-};
-
-static const struct dpu_intf_cfg sdm845_intf[] = {
- INTF_BLK("intf_0", INTF_0, 0x6A000, INTF_DP, 0, 24, INTF_SDM845_MASK, MDP_SSPP_TOP0_INTR, 24, 25),
- INTF_BLK("intf_1", INTF_1, 0x6A800, INTF_DSI, 0, 24, INTF_SDM845_MASK, MDP_SSPP_TOP0_INTR, 26, 27),
- INTF_BLK("intf_2", INTF_2, 0x6B000, INTF_DSI, 1, 24, INTF_SDM845_MASK, MDP_SSPP_TOP0_INTR, 28, 29),
- INTF_BLK("intf_3", INTF_3, 0x6B800, INTF_DP, 1, 24, INTF_SDM845_MASK, MDP_SSPP_TOP0_INTR, 30, 31),
-};
-
-static const struct dpu_intf_cfg sc7180_intf[] = {
- INTF_BLK("intf_0", INTF_0, 0x6A000, INTF_DP, MSM_DP_CONTROLLER_0, 24, INTF_SC7180_MASK, MDP_SSPP_TOP0_INTR, 24, 25),
- INTF_BLK("intf_1", INTF_1, 0x6A800, INTF_DSI, 0, 24, INTF_SC7180_MASK, MDP_SSPP_TOP0_INTR, 26, 27),
-};
-
-static const struct dpu_intf_cfg sm8150_intf[] = {
- INTF_BLK("intf_0", INTF_0, 0x6A000, INTF_DP, 0, 24, INTF_SC7180_MASK, MDP_SSPP_TOP0_INTR, 24, 25),
- INTF_BLK("intf_1", INTF_1, 0x6A800, INTF_DSI, 0, 24, INTF_SC7180_MASK, MDP_SSPP_TOP0_INTR, 26, 27),
- INTF_BLK("intf_2", INTF_2, 0x6B000, INTF_DSI, 1, 24, INTF_SC7180_MASK, MDP_SSPP_TOP0_INTR, 28, 29),
- INTF_BLK("intf_3", INTF_3, 0x6B800, INTF_DP, 1, 24, INTF_SC7180_MASK, MDP_SSPP_TOP0_INTR, 30, 31),
-};
-
-static const struct dpu_intf_cfg sc7280_intf[] = {
- INTF_BLK("intf_0", INTF_0, 0x34000, INTF_DP, MSM_DP_CONTROLLER_0, 24, INTF_SC7280_MASK, MDP_SSPP_TOP0_INTR, 24, 25),
- INTF_BLK("intf_1", INTF_1, 0x35000, INTF_DSI, 0, 24, INTF_SC7280_MASK, MDP_SSPP_TOP0_INTR, 26, 27),
- INTF_BLK("intf_5", INTF_5, 0x39000, INTF_DP, MSM_DP_CONTROLLER_1, 24, INTF_SC7280_MASK, MDP_SSPP_TOP0_INTR, 22, 23),
-};
-
-static const struct dpu_intf_cfg sc8180x_intf[] = {
- INTF_BLK("intf_0", INTF_0, 0x6A000, INTF_DP, MSM_DP_CONTROLLER_0, 24, INTF_SC7180_MASK, MDP_SSPP_TOP0_INTR, 24, 25),
- INTF_BLK("intf_1", INTF_1, 0x6A800, INTF_DSI, 0, 24, INTF_SC7180_MASK, MDP_SSPP_TOP0_INTR, 26, 27),
- INTF_BLK("intf_2", INTF_2, 0x6B000, INTF_DSI, 1, 24, INTF_SC7180_MASK, MDP_SSPP_TOP0_INTR, 28, 29),
- /* INTF_3 is for MST, wired to INTF_DP 0 and 1, use dummy index until this is supported */
- INTF_BLK("intf_3", INTF_3, 0x6B800, INTF_DP, 999, 24, INTF_SC7180_MASK, MDP_SSPP_TOP0_INTR, 30, 31),
- INTF_BLK("intf_4", INTF_4, 0x6C000, INTF_DP, MSM_DP_CONTROLLER_1, 24, INTF_SC7180_MASK, MDP_SSPP_TOP0_INTR, 20, 21),
- INTF_BLK("intf_5", INTF_5, 0x6C800, INTF_DP, MSM_DP_CONTROLLER_2, 24, INTF_SC7180_MASK, MDP_SSPP_TOP0_INTR, 22, 23),
-};
-
-static const struct dpu_intf_cfg qcm2290_intf[] = {
- INTF_BLK("intf_0", INTF_0, 0x00000, INTF_NONE, 0, 0, 0, 0, 0, 0),
- INTF_BLK("intf_1", INTF_1, 0x6A800, INTF_DSI, 0, 24, INTF_SC7180_MASK, MDP_SSPP_TOP0_INTR, 26, 27),
-};
-
/*************************************************************
* Writeback blocks config
*************************************************************/
@@ -1302,11 +576,6 @@ static const struct dpu_intf_cfg qcm2290_intf[] = {
.intr_wb_done = DPU_IRQ_IDX(_reg, _wb_done_bit) \
}
-static const struct dpu_wb_cfg sm8250_wb[] = {
- WB_BLK("wb_2", WB_2, 0x65000, WB_SM8250_MASK, DPU_CLK_CTRL_WB2, 6,
- VBIF_RT, MDP_SSPP_TOP0_INTR, 4096, 4),
-};
-
/*************************************************************
* VBIF sub blocks config
*************************************************************/
@@ -1381,6 +650,14 @@ static const struct dpu_vbif_cfg sdm845_vbif[] = {
},
};
+static const struct dpu_reg_dma_cfg sc8280xp_regdma = {
+ .base = 0x0,
+ .version = 0x00020000,
+ .trigger_sel_off = 0x119c,
+ .xin_id = 7,
+ .clk_ctrl = DPU_CLK_CTRL_REG_DMA,
+};
+
static const struct dpu_reg_dma_cfg sdm845_regdma = {
.base = 0x0, .version = 0x1, .trigger_sel_off = 0x119c
};
@@ -1397,6 +674,22 @@ static const struct dpu_reg_dma_cfg sm8250_regdma = {
.clk_ctrl = DPU_CLK_CTRL_REG_DMA,
};
+static const struct dpu_reg_dma_cfg sm8350_regdma = {
+ .base = 0x400,
+ .version = 0x00020000,
+ .trigger_sel_off = 0x119c,
+ .xin_id = 7,
+ .clk_ctrl = DPU_CLK_CTRL_REG_DMA,
+};
+
+static const struct dpu_reg_dma_cfg sm8450_regdma = {
+ .base = 0x0,
+ .version = 0x00020000,
+ .trigger_sel_off = 0x119c,
+ .xin_id = 7,
+ .clk_ctrl = DPU_CLK_CTRL_REG_DMA,
+};
+
/*************************************************************
* PERF data config
*************************************************************/
@@ -1487,466 +780,26 @@ static const struct dpu_qos_lut_entry sc7180_qos_nrt[] = {
{.fl = 0, .lut = 0x0},
};
-static const struct dpu_perf_cfg msm8998_perf_data = {
- .max_bw_low = 6700000,
- .max_bw_high = 6700000,
- .min_core_ib = 2400000,
- .min_llcc_ib = 800000,
- .min_dram_ib = 800000,
- .undersized_prefill_lines = 2,
- .xtra_prefill_lines = 2,
- .dest_scale_prefill_lines = 3,
- .macrotile_prefill_lines = 4,
- .yuv_nv12_prefill_lines = 8,
- .linear_prefill_lines = 1,
- .downscaling_prefill_lines = 1,
- .amortizable_threshold = 25,
- .min_prefill_lines = 25,
- .danger_lut_tbl = {0xf, 0xffff, 0x0},
- .safe_lut_tbl = {0xfffc, 0xff00, 0xffff},
- .qos_lut_tbl = {
- {.nentry = ARRAY_SIZE(msm8998_qos_linear),
- .entries = msm8998_qos_linear
- },
- {.nentry = ARRAY_SIZE(msm8998_qos_macrotile),
- .entries = msm8998_qos_macrotile
- },
- {.nentry = ARRAY_SIZE(msm8998_qos_nrt),
- .entries = msm8998_qos_nrt
- },
- },
- .cdp_cfg = {
- {.rd_enable = 1, .wr_enable = 1},
- {.rd_enable = 1, .wr_enable = 0}
- },
- .clk_inefficiency_factor = 200,
- .bw_inefficiency_factor = 120,
-};
-
-static const struct dpu_perf_cfg sdm845_perf_data = {
- .max_bw_low = 6800000,
- .max_bw_high = 6800000,
- .min_core_ib = 2400000,
- .min_llcc_ib = 800000,
- .min_dram_ib = 800000,
- .undersized_prefill_lines = 2,
- .xtra_prefill_lines = 2,
- .dest_scale_prefill_lines = 3,
- .macrotile_prefill_lines = 4,
- .yuv_nv12_prefill_lines = 8,
- .linear_prefill_lines = 1,
- .downscaling_prefill_lines = 1,
- .amortizable_threshold = 25,
- .min_prefill_lines = 24,
- .danger_lut_tbl = {0xf, 0xffff, 0x0},
- .safe_lut_tbl = {0xfff0, 0xf000, 0xffff},
- .qos_lut_tbl = {
- {.nentry = ARRAY_SIZE(sdm845_qos_linear),
- .entries = sdm845_qos_linear
- },
- {.nentry = ARRAY_SIZE(sdm845_qos_macrotile),
- .entries = sdm845_qos_macrotile
- },
- {.nentry = ARRAY_SIZE(sdm845_qos_nrt),
- .entries = sdm845_qos_nrt
- },
- },
- .cdp_cfg = {
- {.rd_enable = 1, .wr_enable = 1},
- {.rd_enable = 1, .wr_enable = 0}
- },
- .clk_inefficiency_factor = 105,
- .bw_inefficiency_factor = 120,
-};
-
-static const struct dpu_perf_cfg sc7180_perf_data = {
- .max_bw_low = 6800000,
- .max_bw_high = 6800000,
- .min_core_ib = 2400000,
- .min_llcc_ib = 800000,
- .min_dram_ib = 1600000,
- .min_prefill_lines = 24,
- .danger_lut_tbl = {0xff, 0xffff, 0x0},
- .safe_lut_tbl = {0xfff0, 0xff00, 0xffff},
- .qos_lut_tbl = {
- {.nentry = ARRAY_SIZE(sc7180_qos_linear),
- .entries = sc7180_qos_linear
- },
- {.nentry = ARRAY_SIZE(sc7180_qos_macrotile),
- .entries = sc7180_qos_macrotile
- },
- {.nentry = ARRAY_SIZE(sc7180_qos_nrt),
- .entries = sc7180_qos_nrt
- },
- },
- .cdp_cfg = {
- {.rd_enable = 1, .wr_enable = 1},
- {.rd_enable = 1, .wr_enable = 0}
- },
- .clk_inefficiency_factor = 105,
- .bw_inefficiency_factor = 120,
-};
-
-static const struct dpu_perf_cfg sm8150_perf_data = {
- .max_bw_low = 12800000,
- .max_bw_high = 12800000,
- .min_core_ib = 2400000,
- .min_llcc_ib = 800000,
- .min_dram_ib = 800000,
- .min_prefill_lines = 24,
- .danger_lut_tbl = {0xf, 0xffff, 0x0},
- .safe_lut_tbl = {0xfff8, 0xf000, 0xffff},
- .qos_lut_tbl = {
- {.nentry = ARRAY_SIZE(sm8150_qos_linear),
- .entries = sm8150_qos_linear
- },
- {.nentry = ARRAY_SIZE(sc7180_qos_macrotile),
- .entries = sc7180_qos_macrotile
- },
- {.nentry = ARRAY_SIZE(sc7180_qos_nrt),
- .entries = sc7180_qos_nrt
- },
- /* TODO: macrotile-qseed is different from macrotile */
- },
- .cdp_cfg = {
- {.rd_enable = 1, .wr_enable = 1},
- {.rd_enable = 1, .wr_enable = 0}
- },
- .clk_inefficiency_factor = 105,
- .bw_inefficiency_factor = 120,
-};
-
-static const struct dpu_perf_cfg sc8180x_perf_data = {
- .max_bw_low = 9600000,
- .max_bw_high = 9600000,
- .min_core_ib = 2400000,
- .min_llcc_ib = 800000,
- .min_dram_ib = 800000,
- .danger_lut_tbl = {0xf, 0xffff, 0x0},
- .qos_lut_tbl = {
- {.nentry = ARRAY_SIZE(sc8180x_qos_linear),
- .entries = sc8180x_qos_linear
- },
- {.nentry = ARRAY_SIZE(sc8180x_qos_macrotile),
- .entries = sc8180x_qos_macrotile
- },
- {.nentry = ARRAY_SIZE(sc7180_qos_nrt),
- .entries = sc7180_qos_nrt
- },
- /* TODO: macrotile-qseed is different from macrotile */
- },
- .cdp_cfg = {
- {.rd_enable = 1, .wr_enable = 1},
- {.rd_enable = 1, .wr_enable = 0}
- },
- .clk_inefficiency_factor = 105,
- .bw_inefficiency_factor = 120,
-};
-
-static const struct dpu_perf_cfg sm8250_perf_data = {
- .max_bw_low = 13700000,
- .max_bw_high = 16600000,
- .min_core_ib = 4800000,
- .min_llcc_ib = 0,
- .min_dram_ib = 800000,
- .min_prefill_lines = 35,
- .danger_lut_tbl = {0xf, 0xffff, 0x0},
- .safe_lut_tbl = {0xfff0, 0xff00, 0xffff},
- .qos_lut_tbl = {
- {.nentry = ARRAY_SIZE(sc7180_qos_linear),
- .entries = sc7180_qos_linear
- },
- {.nentry = ARRAY_SIZE(sc7180_qos_macrotile),
- .entries = sc7180_qos_macrotile
- },
- {.nentry = ARRAY_SIZE(sc7180_qos_nrt),
- .entries = sc7180_qos_nrt
- },
- /* TODO: macrotile-qseed is different from macrotile */
- },
- .cdp_cfg = {
- {.rd_enable = 1, .wr_enable = 1},
- {.rd_enable = 1, .wr_enable = 0}
- },
- .clk_inefficiency_factor = 105,
- .bw_inefficiency_factor = 120,
-};
-
-static const struct dpu_perf_cfg sc7280_perf_data = {
- .max_bw_low = 4700000,
- .max_bw_high = 8800000,
- .min_core_ib = 2500000,
- .min_llcc_ib = 0,
- .min_dram_ib = 1600000,
- .min_prefill_lines = 24,
- .danger_lut_tbl = {0xffff, 0xffff, 0x0},
- .safe_lut_tbl = {0xff00, 0xff00, 0xffff},
- .qos_lut_tbl = {
- {.nentry = ARRAY_SIZE(sc7180_qos_macrotile),
- .entries = sc7180_qos_macrotile
- },
- {.nentry = ARRAY_SIZE(sc7180_qos_macrotile),
- .entries = sc7180_qos_macrotile
- },
- {.nentry = ARRAY_SIZE(sc7180_qos_nrt),
- .entries = sc7180_qos_nrt
- },
- },
- .cdp_cfg = {
- {.rd_enable = 1, .wr_enable = 1},
- {.rd_enable = 1, .wr_enable = 0}
- },
- .clk_inefficiency_factor = 105,
- .bw_inefficiency_factor = 120,
-};
-
-static const struct dpu_perf_cfg qcm2290_perf_data = {
- .max_bw_low = 2700000,
- .max_bw_high = 2700000,
- .min_core_ib = 1300000,
- .min_llcc_ib = 0,
- .min_dram_ib = 1600000,
- .min_prefill_lines = 24,
- .danger_lut_tbl = {0xff, 0x0, 0x0},
- .safe_lut_tbl = {0xfff0, 0x0, 0x0},
- .qos_lut_tbl = {
- {.nentry = ARRAY_SIZE(qcm2290_qos_linear),
- .entries = qcm2290_qos_linear
- },
- },
- .cdp_cfg = {
- {.rd_enable = 1, .wr_enable = 1},
- {.rd_enable = 1, .wr_enable = 0}
- },
- .clk_inefficiency_factor = 105,
- .bw_inefficiency_factor = 120,
-};
/*************************************************************
* Hardware catalog
*************************************************************/
-static const struct dpu_mdss_cfg msm8998_dpu_cfg = {
- .caps = &msm8998_dpu_caps,
- .mdp_count = ARRAY_SIZE(msm8998_mdp),
- .mdp = msm8998_mdp,
- .ctl_count = ARRAY_SIZE(msm8998_ctl),
- .ctl = msm8998_ctl,
- .sspp_count = ARRAY_SIZE(msm8998_sspp),
- .sspp = msm8998_sspp,
- .mixer_count = ARRAY_SIZE(msm8998_lm),
- .mixer = msm8998_lm,
- .dspp_count = ARRAY_SIZE(msm8998_dspp),
- .dspp = msm8998_dspp,
- .pingpong_count = ARRAY_SIZE(sdm845_pp),
- .pingpong = sdm845_pp,
- .intf_count = ARRAY_SIZE(msm8998_intf),
- .intf = msm8998_intf,
- .vbif_count = ARRAY_SIZE(msm8998_vbif),
- .vbif = msm8998_vbif,
- .reg_dma_count = 0,
- .perf = &msm8998_perf_data,
- .mdss_irqs = IRQ_SM8250_MASK,
-};
+#include "catalog/dpu_3_0_msm8998.h"
-static const struct dpu_mdss_cfg sdm845_dpu_cfg = {
- .caps = &sdm845_dpu_caps,
- .mdp_count = ARRAY_SIZE(sdm845_mdp),
- .mdp = sdm845_mdp,
- .ctl_count = ARRAY_SIZE(sdm845_ctl),
- .ctl = sdm845_ctl,
- .sspp_count = ARRAY_SIZE(sdm845_sspp),
- .sspp = sdm845_sspp,
- .mixer_count = ARRAY_SIZE(sdm845_lm),
- .mixer = sdm845_lm,
- .pingpong_count = ARRAY_SIZE(sdm845_pp),
- .pingpong = sdm845_pp,
- .dsc_count = ARRAY_SIZE(sdm845_dsc),
- .dsc = sdm845_dsc,
- .intf_count = ARRAY_SIZE(sdm845_intf),
- .intf = sdm845_intf,
- .vbif_count = ARRAY_SIZE(sdm845_vbif),
- .vbif = sdm845_vbif,
- .reg_dma_count = 1,
- .dma_cfg = &sdm845_regdma,
- .perf = &sdm845_perf_data,
- .mdss_irqs = IRQ_SDM845_MASK,
-};
+#include "catalog/dpu_4_0_sdm845.h"
-static const struct dpu_mdss_cfg sc7180_dpu_cfg = {
- .caps = &sc7180_dpu_caps,
- .mdp_count = ARRAY_SIZE(sc7180_mdp),
- .mdp = sc7180_mdp,
- .ctl_count = ARRAY_SIZE(sc7180_ctl),
- .ctl = sc7180_ctl,
- .sspp_count = ARRAY_SIZE(sc7180_sspp),
- .sspp = sc7180_sspp,
- .mixer_count = ARRAY_SIZE(sc7180_lm),
- .mixer = sc7180_lm,
- .dspp_count = ARRAY_SIZE(sc7180_dspp),
- .dspp = sc7180_dspp,
- .pingpong_count = ARRAY_SIZE(sc7180_pp),
- .pingpong = sc7180_pp,
- .intf_count = ARRAY_SIZE(sc7180_intf),
- .intf = sc7180_intf,
- .wb_count = ARRAY_SIZE(sm8250_wb),
- .wb = sm8250_wb,
- .vbif_count = ARRAY_SIZE(sdm845_vbif),
- .vbif = sdm845_vbif,
- .reg_dma_count = 1,
- .dma_cfg = &sdm845_regdma,
- .perf = &sc7180_perf_data,
- .mdss_irqs = IRQ_SC7180_MASK,
-};
-
-static const struct dpu_mdss_cfg sm8150_dpu_cfg = {
- .caps = &sm8150_dpu_caps,
- .mdp_count = ARRAY_SIZE(sdm845_mdp),
- .mdp = sdm845_mdp,
- .ctl_count = ARRAY_SIZE(sm8150_ctl),
- .ctl = sm8150_ctl,
- .sspp_count = ARRAY_SIZE(sdm845_sspp),
- .sspp = sdm845_sspp,
- .mixer_count = ARRAY_SIZE(sm8150_lm),
- .mixer = sm8150_lm,
- .dspp_count = ARRAY_SIZE(sm8150_dspp),
- .dspp = sm8150_dspp,
- .pingpong_count = ARRAY_SIZE(sm8150_pp),
- .pingpong = sm8150_pp,
- .merge_3d_count = ARRAY_SIZE(sm8150_merge_3d),
- .merge_3d = sm8150_merge_3d,
- .intf_count = ARRAY_SIZE(sm8150_intf),
- .intf = sm8150_intf,
- .vbif_count = ARRAY_SIZE(sdm845_vbif),
- .vbif = sdm845_vbif,
- .reg_dma_count = 1,
- .dma_cfg = &sm8150_regdma,
- .perf = &sm8150_perf_data,
- .mdss_irqs = IRQ_SDM845_MASK,
-};
-
-static const struct dpu_mdss_cfg sc8180x_dpu_cfg = {
- .caps = &sc8180x_dpu_caps,
- .mdp_count = ARRAY_SIZE(sc8180x_mdp),
- .mdp = sc8180x_mdp,
- .ctl_count = ARRAY_SIZE(sm8150_ctl),
- .ctl = sm8150_ctl,
- .sspp_count = ARRAY_SIZE(sdm845_sspp),
- .sspp = sdm845_sspp,
- .mixer_count = ARRAY_SIZE(sm8150_lm),
- .mixer = sm8150_lm,
- .pingpong_count = ARRAY_SIZE(sm8150_pp),
- .pingpong = sm8150_pp,
- .merge_3d_count = ARRAY_SIZE(sm8150_merge_3d),
- .merge_3d = sm8150_merge_3d,
- .intf_count = ARRAY_SIZE(sc8180x_intf),
- .intf = sc8180x_intf,
- .vbif_count = ARRAY_SIZE(sdm845_vbif),
- .vbif = sdm845_vbif,
- .reg_dma_count = 1,
- .dma_cfg = &sm8150_regdma,
- .perf = &sc8180x_perf_data,
- .mdss_irqs = IRQ_SC8180X_MASK,
-};
-
-static const struct dpu_mdss_cfg sm8250_dpu_cfg = {
- .caps = &sm8250_dpu_caps,
- .mdp_count = ARRAY_SIZE(sm8250_mdp),
- .mdp = sm8250_mdp,
- .ctl_count = ARRAY_SIZE(sm8150_ctl),
- .ctl = sm8150_ctl,
- .sspp_count = ARRAY_SIZE(sm8250_sspp),
- .sspp = sm8250_sspp,
- .mixer_count = ARRAY_SIZE(sm8150_lm),
- .mixer = sm8150_lm,
- .dspp_count = ARRAY_SIZE(sm8150_dspp),
- .dspp = sm8150_dspp,
- .pingpong_count = ARRAY_SIZE(sm8150_pp),
- .pingpong = sm8150_pp,
- .merge_3d_count = ARRAY_SIZE(sm8150_merge_3d),
- .merge_3d = sm8150_merge_3d,
- .intf_count = ARRAY_SIZE(sm8150_intf),
- .intf = sm8150_intf,
- .vbif_count = ARRAY_SIZE(sdm845_vbif),
- .vbif = sdm845_vbif,
- .wb_count = ARRAY_SIZE(sm8250_wb),
- .wb = sm8250_wb,
- .reg_dma_count = 1,
- .dma_cfg = &sm8250_regdma,
- .perf = &sm8250_perf_data,
- .mdss_irqs = IRQ_SM8250_MASK,
-};
+#include "catalog/dpu_5_0_sm8150.h"
+#include "catalog/dpu_5_1_sc8180x.h"
-static const struct dpu_mdss_cfg sc7280_dpu_cfg = {
- .caps = &sc7280_dpu_caps,
- .mdp_count = ARRAY_SIZE(sc7280_mdp),
- .mdp = sc7280_mdp,
- .ctl_count = ARRAY_SIZE(sc7280_ctl),
- .ctl = sc7280_ctl,
- .sspp_count = ARRAY_SIZE(sc7280_sspp),
- .sspp = sc7280_sspp,
- .dspp_count = ARRAY_SIZE(sc7180_dspp),
- .dspp = sc7180_dspp,
- .mixer_count = ARRAY_SIZE(sc7280_lm),
- .mixer = sc7280_lm,
- .pingpong_count = ARRAY_SIZE(sc7280_pp),
- .pingpong = sc7280_pp,
- .intf_count = ARRAY_SIZE(sc7280_intf),
- .intf = sc7280_intf,
- .vbif_count = ARRAY_SIZE(sdm845_vbif),
- .vbif = sdm845_vbif,
- .perf = &sc7280_perf_data,
- .mdss_irqs = IRQ_SC7280_MASK,
-};
-
-static const struct dpu_mdss_cfg qcm2290_dpu_cfg = {
- .caps = &qcm2290_dpu_caps,
- .mdp_count = ARRAY_SIZE(qcm2290_mdp),
- .mdp = qcm2290_mdp,
- .ctl_count = ARRAY_SIZE(qcm2290_ctl),
- .ctl = qcm2290_ctl,
- .sspp_count = ARRAY_SIZE(qcm2290_sspp),
- .sspp = qcm2290_sspp,
- .mixer_count = ARRAY_SIZE(qcm2290_lm),
- .mixer = qcm2290_lm,
- .dspp_count = ARRAY_SIZE(qcm2290_dspp),
- .dspp = qcm2290_dspp,
- .pingpong_count = ARRAY_SIZE(qcm2290_pp),
- .pingpong = qcm2290_pp,
- .intf_count = ARRAY_SIZE(qcm2290_intf),
- .intf = qcm2290_intf,
- .vbif_count = ARRAY_SIZE(sdm845_vbif),
- .vbif = sdm845_vbif,
- .reg_dma_count = 1,
- .dma_cfg = &sdm845_regdma,
- .perf = &qcm2290_perf_data,
- .mdss_irqs = IRQ_SC7180_MASK,
-};
-
-static const struct dpu_mdss_hw_cfg_handler cfg_handler[] = {
- { .hw_rev = DPU_HW_VER_300, .dpu_cfg = &msm8998_dpu_cfg},
- { .hw_rev = DPU_HW_VER_301, .dpu_cfg = &msm8998_dpu_cfg},
- { .hw_rev = DPU_HW_VER_400, .dpu_cfg = &sdm845_dpu_cfg},
- { .hw_rev = DPU_HW_VER_401, .dpu_cfg = &sdm845_dpu_cfg},
- { .hw_rev = DPU_HW_VER_500, .dpu_cfg = &sm8150_dpu_cfg},
- { .hw_rev = DPU_HW_VER_501, .dpu_cfg = &sm8150_dpu_cfg},
- { .hw_rev = DPU_HW_VER_510, .dpu_cfg = &sc8180x_dpu_cfg},
- { .hw_rev = DPU_HW_VER_600, .dpu_cfg = &sm8250_dpu_cfg},
- { .hw_rev = DPU_HW_VER_620, .dpu_cfg = &sc7180_dpu_cfg},
- { .hw_rev = DPU_HW_VER_650, .dpu_cfg = &qcm2290_dpu_cfg},
- { .hw_rev = DPU_HW_VER_720, .dpu_cfg = &sc7280_dpu_cfg},
-};
-
-const struct dpu_mdss_cfg *dpu_hw_catalog_init(u32 hw_rev)
-{
- int i;
-
- for (i = 0; i < ARRAY_SIZE(cfg_handler); i++) {
- if (cfg_handler[i].hw_rev == hw_rev)
- return cfg_handler[i].dpu_cfg;
- }
+#include "catalog/dpu_6_0_sm8250.h"
+#include "catalog/dpu_6_2_sc7180.h"
+#include "catalog/dpu_6_3_sm6115.h"
+#include "catalog/dpu_6_5_qcm2290.h"
- DPU_ERROR("unsupported chipset id:%X\n", hw_rev);
+#include "catalog/dpu_7_0_sm8350.h"
+#include "catalog/dpu_7_2_sc7280.h"
- return ERR_PTR(-ENODEV);
-}
+#include "catalog/dpu_8_0_sc8280xp.h"
+#include "catalog/dpu_8_1_sm8450.h"
+#include "catalog/dpu_9_0_sm8550.h"
diff --git a/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_catalog.h b/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_catalog.h
index 38aa38ab1568..71584cd56fd7 100644
--- a/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_catalog.h
+++ b/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_catalog.h
@@ -19,42 +19,6 @@
*/
#define MAX_BLOCKS 12
-#define DPU_HW_VER(MAJOR, MINOR, STEP) (((MAJOR & 0xF) << 28) |\
- ((MINOR & 0xFFF) << 16) |\
- (STEP & 0xFFFF))
-
-#define DPU_HW_MAJOR(rev) ((rev) >> 28)
-#define DPU_HW_MINOR(rev) (((rev) >> 16) & 0xFFF)
-#define DPU_HW_STEP(rev) ((rev) & 0xFFFF)
-#define DPU_HW_MAJOR_MINOR(rev) ((rev) >> 16)
-
-#define IS_DPU_MAJOR_MINOR_SAME(rev1, rev2) \
- (DPU_HW_MAJOR_MINOR((rev1)) == DPU_HW_MAJOR_MINOR((rev2)))
-
-#define DPU_HW_VER_170 DPU_HW_VER(1, 7, 0) /* 8996 v1.0 */
-#define DPU_HW_VER_171 DPU_HW_VER(1, 7, 1) /* 8996 v2.0 */
-#define DPU_HW_VER_172 DPU_HW_VER(1, 7, 2) /* 8996 v3.0 */
-#define DPU_HW_VER_300 DPU_HW_VER(3, 0, 0) /* 8998 v1.0 */
-#define DPU_HW_VER_301 DPU_HW_VER(3, 0, 1) /* 8998 v1.1 */
-#define DPU_HW_VER_400 DPU_HW_VER(4, 0, 0) /* sdm845 v1.0 */
-#define DPU_HW_VER_401 DPU_HW_VER(4, 0, 1) /* sdm845 v2.0 */
-#define DPU_HW_VER_410 DPU_HW_VER(4, 1, 0) /* sdm670 v1.0 */
-#define DPU_HW_VER_500 DPU_HW_VER(5, 0, 0) /* sm8150 v1.0 */
-#define DPU_HW_VER_501 DPU_HW_VER(5, 0, 1) /* sm8150 v2.0 */
-#define DPU_HW_VER_510 DPU_HW_VER(5, 1, 1) /* sc8180 */
-#define DPU_HW_VER_600 DPU_HW_VER(6, 0, 0) /* sm8250 */
-#define DPU_HW_VER_620 DPU_HW_VER(6, 2, 0) /* sc7180 v1.0 */
-#define DPU_HW_VER_650 DPU_HW_VER(6, 5, 0) /* qcm2290|sm4125 */
-#define DPU_HW_VER_720 DPU_HW_VER(7, 2, 0) /* sc7280 */
-
-#define IS_MSM8996_TARGET(rev) IS_DPU_MAJOR_MINOR_SAME((rev), DPU_HW_VER_170)
-#define IS_MSM8998_TARGET(rev) IS_DPU_MAJOR_MINOR_SAME((rev), DPU_HW_VER_300)
-#define IS_SDM845_TARGET(rev) IS_DPU_MAJOR_MINOR_SAME((rev), DPU_HW_VER_400)
-#define IS_SDM670_TARGET(rev) IS_DPU_MAJOR_MINOR_SAME((rev), DPU_HW_VER_410)
-#define IS_SDM855_TARGET(rev) IS_DPU_MAJOR_MINOR_SAME((rev), DPU_HW_VER_500)
-#define IS_SC7180_TARGET(rev) IS_DPU_MAJOR_MINOR_SAME((rev), DPU_HW_VER_620)
-#define IS_SC7280_TARGET(rev) IS_DPU_MAJOR_MINOR_SAME((rev), DPU_HW_VER_720)
-
#define DPU_HW_BLK_NAME_LEN 16
#define MAX_IMG_WIDTH 0x3fff
@@ -82,6 +46,8 @@ enum {
* @DPU_MDP_UBWC_1_0, This chipsets supports Universal Bandwidth
* compression initial revision
* @DPU_MDP_UBWC_1_5, Universal Bandwidth compression version 1.5
+ * @DPU_MDP_PERIPH_0_REMOVED Indicates that access to periph top0 block results
+ * in a failure
* @DPU_MDP_MAX Maximum value
*/
@@ -92,6 +58,7 @@ enum {
DPU_MDP_UBWC_1_0,
DPU_MDP_UBWC_1_5,
DPU_MDP_AUDIO_SELECT,
+ DPU_MDP_PERIPH_0_REMOVED,
DPU_MDP_MAX
};
@@ -161,10 +128,12 @@ enum {
* DSPP sub-blocks
* @DPU_DSPP_PCC Panel color correction block
* @DPU_DSPP_GC Gamma correction block
+ * @DPU_DSPP_IGC Inverse gamma correction block
*/
enum {
DPU_DSPP_PCC = 0x1,
DPU_DSPP_GC,
+ DPU_DSPP_IGC,
DPU_DSPP_MAX
};
@@ -191,6 +160,8 @@ enum {
* @DPU_CTL_SPLIT_DISPLAY: CTL supports video mode split display
* @DPU_CTL_FETCH_ACTIVE: Active CTL for fetch HW (SSPPs)
* @DPU_CTL_VM_CFG: CTL config to support multiple VMs
+ * @DPU_CTL_HAS_LAYER_EXT4: CTL has the CTL_LAYER_EXT4 register
+ * @DPU_CTL_DSPP_BLOCK_FLUSH: CTL config to support dspp sub-block flush
* @DPU_CTL_MAX
*/
enum {
@@ -198,22 +169,26 @@ enum {
DPU_CTL_ACTIVE_CFG,
DPU_CTL_FETCH_ACTIVE,
DPU_CTL_VM_CFG,
+ DPU_CTL_HAS_LAYER_EXT4,
+ DPU_CTL_DSPP_SUB_BLOCK_FLUSH,
DPU_CTL_MAX
};
/**
* INTF sub-blocks
- * @DPU_INTF_INPUT_CTRL Supports the setting of pp block from which
- * pixel data arrives to this INTF
- * @DPU_INTF_TE INTF block has TE configuration support
- * @DPU_DATA_HCTL_EN Allows data to be transferred at different rate
- than video timing
+ * @DPU_INTF_INPUT_CTRL Supports the setting of pp block from which
+ * pixel data arrives to this INTF
+ * @DPU_INTF_TE INTF block has TE configuration support
+ * @DPU_DATA_HCTL_EN Allows data to be transferred at different rate
+ * than video timing
+ * @DPU_INTF_STATUS_SUPPORTED INTF block has INTF_STATUS register
* @DPU_INTF_MAX
*/
enum {
DPU_INTF_INPUT_CTRL = 0x1,
DPU_INTF_TE,
DPU_DATA_HCTL_EN,
+ DPU_INTF_STATUS_SUPPORTED,
DPU_INTF_MAX
};
@@ -266,6 +241,15 @@ enum {
};
/**
+ * DSC features
+ * @DPU_DSC_OUTPUT_CTRL Configure which PINGPONG block gets
+ * the pixel output from this DSC.
+ */
+enum {
+ DPU_DSC_OUTPUT_CTRL = 0x1,
+};
+
+/**
* MACRO DPU_HW_BLK_INFO - information of HW blocks inside DPU
* @name: string name for debug purposes
* @id: enum identifying this block
@@ -374,8 +358,6 @@ struct dpu_rotation_cfg {
* @max_mixer_blendstages max layer mixer blend stages or
* supported z order
* @qseed_type qseed2 or qseed3 support.
- * @smart_dma_rev Supported version of SmartDMA feature.
- * @ubwc_version UBWC feature version (0x0 for not supported)
* @has_src_split source split feature status
* @has_dim_layer dim layer feature status
* @has_idle_pc indicate if idle power collapse feature is supported
@@ -389,8 +371,6 @@ struct dpu_caps {
u32 max_mixer_width;
u32 max_mixer_blendstages;
u32 qseed_type;
- u32 smart_dma_rev;
- u32 ubwc_version;
bool has_src_split;
bool has_dim_layer;
bool has_idle_pc;
@@ -496,6 +476,8 @@ enum dpu_clk_ctrl_type {
DPU_CLK_CTRL_DMA1,
DPU_CLK_CTRL_DMA2,
DPU_CLK_CTRL_DMA3,
+ DPU_CLK_CTRL_DMA4,
+ DPU_CLK_CTRL_DMA5,
DPU_CLK_CTRL_CURSOR0,
DPU_CLK_CTRL_CURSOR1,
DPU_CLK_CTRL_INLINE_ROT0_SSPP,
@@ -517,16 +499,24 @@ struct dpu_clk_ctrl_reg {
* @id: index identifying this block
* @base: register base offset to mdss
* @features bit mask identifying sub-blocks/features
- * @highest_bank_bit: UBWC parameter
- * @ubwc_static: ubwc static configuration
- * @ubwc_swizzle: ubwc default swizzle setting
* @clk_ctrls clock control register definition
*/
struct dpu_mdp_cfg {
DPU_HW_BLK_INFO;
+ struct dpu_clk_ctrl_reg clk_ctrls[DPU_CLK_CTRL_MAX];
+};
+
+/**
+ * struct dpu_ubwc_cfg - UBWC and memory configuration
+ *
+ * @ubwc_version UBWC feature version (0x0 for not supported)
+ * @highest_bank_bit: UBWC parameter
+ * @ubwc_swizzle: ubwc default swizzle setting
+ */
+struct dpu_ubwc_cfg {
+ u32 ubwc_version;
u32 highest_bank_bit;
u32 ubwc_swizzle;
- struct dpu_clk_ctrl_reg clk_ctrls[DPU_CLK_CTRL_MAX];
};
/* struct dpu_ctl_cfg : MDP CTL instance info
@@ -828,6 +818,8 @@ struct dpu_perf_cfg {
struct dpu_mdss_cfg {
const struct dpu_caps *caps;
+ const struct dpu_ubwc_cfg *ubwc;
+
u32 mdp_count;
const struct dpu_mdp_cfg *mdp;
@@ -847,7 +839,7 @@ struct dpu_mdss_cfg {
const struct dpu_merge_3d_cfg *merge_3d;
u32 dsc_count;
- struct dpu_dsc_cfg *dsc;
+ const struct dpu_dsc_cfg *dsc;
u32 intf_count;
const struct dpu_intf_cfg *intf;
@@ -876,18 +868,18 @@ struct dpu_mdss_cfg {
unsigned long mdss_irqs;
};
-struct dpu_mdss_hw_cfg_handler {
- u32 hw_rev;
- const struct dpu_mdss_cfg *dpu_cfg;
-};
-
-/**
- * dpu_hw_catalog_init - dpu hardware catalog init API retrieves
- * hardcoded target specific catalog information in config structure
- * @hw_rev: caller needs provide the hardware revision.
- *
- * Return: dpu config structure
- */
-const struct dpu_mdss_cfg *dpu_hw_catalog_init(u32 hw_rev);
+extern const struct dpu_mdss_cfg dpu_msm8998_cfg;
+extern const struct dpu_mdss_cfg dpu_sdm845_cfg;
+extern const struct dpu_mdss_cfg dpu_sm8150_cfg;
+extern const struct dpu_mdss_cfg dpu_sc8180x_cfg;
+extern const struct dpu_mdss_cfg dpu_sm8250_cfg;
+extern const struct dpu_mdss_cfg dpu_sc7180_cfg;
+extern const struct dpu_mdss_cfg dpu_sm6115_cfg;
+extern const struct dpu_mdss_cfg dpu_qcm2290_cfg;
+extern const struct dpu_mdss_cfg dpu_sm8350_cfg;
+extern const struct dpu_mdss_cfg dpu_sc7280_cfg;
+extern const struct dpu_mdss_cfg dpu_sc8280xp_cfg;
+extern const struct dpu_mdss_cfg dpu_sm8450_cfg;
+extern const struct dpu_mdss_cfg dpu_sm8550_cfg;
#endif /* _DPU_HW_CATALOG_H */
diff --git a/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_ctl.c b/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_ctl.c
index a35ecb6676c8..bbdc95ce374a 100644
--- a/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_ctl.c
+++ b/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_ctl.c
@@ -17,6 +17,8 @@
(0x70 + (((lm) - LM_0) * 0x004))
#define CTL_LAYER_EXT3(lm) \
(0xA0 + (((lm) - LM_0) * 0x004))
+#define CTL_LAYER_EXT4(lm) \
+ (0xB8 + (((lm) - LM_0) * 0x004))
#define CTL_TOP 0x014
#define CTL_FLUSH 0x018
#define CTL_START 0x01C
@@ -24,15 +26,16 @@
#define CTL_SW_RESET 0x030
#define CTL_LAYER_EXTN_OFFSET 0x40
#define CTL_MERGE_3D_ACTIVE 0x0E4
+#define CTL_DSC_ACTIVE 0x0E8
#define CTL_WB_ACTIVE 0x0EC
#define CTL_INTF_ACTIVE 0x0F4
+#define CTL_FETCH_PIPE_ACTIVE 0x0FC
#define CTL_MERGE_3D_FLUSH 0x100
-#define CTL_DSC_ACTIVE 0x0E8
#define CTL_DSC_FLUSH 0x104
#define CTL_WB_FLUSH 0x108
#define CTL_INTF_FLUSH 0x110
#define CTL_INTF_MASTER 0x134
-#define CTL_FETCH_PIPE_ACTIVE 0x0FC
+#define CTL_DSPP_n_FLUSH(n) ((0x13C) + ((n) * 4))
#define CTL_MIXER_BORDER_OUT BIT(24)
#define CTL_FLUSH_MASK_CTL BIT(17)
@@ -42,6 +45,7 @@
#define DSC_IDX 22
#define INTF_IDX 31
#define WB_IDX 16
+#define DSPP_IDX 29 /* From DPU hw rev 7.x.x */
#define CTL_INVALID_BIT 0xffff
#define CTL_DEFAULT_GROUP_ID 0xf
@@ -113,6 +117,9 @@ static inline void dpu_hw_ctl_clear_pending_flush(struct dpu_hw_ctl *ctx)
trace_dpu_hw_ctl_clear_pending_flush(ctx->pending_flush_mask,
dpu_hw_ctl_get_flush_register(ctx));
ctx->pending_flush_mask = 0x0;
+
+ memset(ctx->pending_dspp_flush_mask, 0,
+ sizeof(ctx->pending_dspp_flush_mask));
}
static inline void dpu_hw_ctl_update_pending_flush(struct dpu_hw_ctl *ctx,
@@ -130,6 +137,8 @@ static u32 dpu_hw_ctl_get_pending_flush(struct dpu_hw_ctl *ctx)
static inline void dpu_hw_ctl_trigger_flush_v1(struct dpu_hw_ctl *ctx)
{
+ int dspp;
+
if (ctx->pending_flush_mask & BIT(MERGE_3D_IDX))
DPU_REG_WRITE(&ctx->hw, CTL_MERGE_3D_FLUSH,
ctx->pending_merge_3d_flush_mask);
@@ -140,6 +149,13 @@ static inline void dpu_hw_ctl_trigger_flush_v1(struct dpu_hw_ctl *ctx)
DPU_REG_WRITE(&ctx->hw, CTL_WB_FLUSH,
ctx->pending_wb_flush_mask);
+ if (ctx->pending_flush_mask & BIT(DSPP_IDX))
+ for (dspp = DSPP_0; dspp < DSPP_MAX; dspp++) {
+ if (ctx->pending_dspp_flush_mask[dspp - DSPP_0])
+ DPU_REG_WRITE(&ctx->hw,
+ CTL_DSPP_n_FLUSH(dspp - DSPP_0),
+ ctx->pending_dspp_flush_mask[dspp - DSPP_0]);
+ }
DPU_REG_WRITE(&ctx->hw, CTL_FLUSH, ctx->pending_flush_mask);
}
@@ -287,7 +303,7 @@ static void dpu_hw_ctl_update_pending_flush_merge_3d_v1(struct dpu_hw_ctl *ctx,
}
static void dpu_hw_ctl_update_pending_flush_dspp(struct dpu_hw_ctl *ctx,
- enum dpu_dspp dspp)
+ enum dpu_dspp dspp, u32 dspp_sub_blk)
{
switch (dspp) {
case DSPP_0:
@@ -307,6 +323,29 @@ static void dpu_hw_ctl_update_pending_flush_dspp(struct dpu_hw_ctl *ctx,
}
}
+static void dpu_hw_ctl_update_pending_flush_dspp_sub_blocks(
+ struct dpu_hw_ctl *ctx, enum dpu_dspp dspp, u32 dspp_sub_blk)
+{
+ if (dspp >= DSPP_MAX)
+ return;
+
+ switch (dspp_sub_blk) {
+ case DPU_DSPP_IGC:
+ ctx->pending_dspp_flush_mask[dspp - DSPP_0] |= BIT(2);
+ break;
+ case DPU_DSPP_PCC:
+ ctx->pending_dspp_flush_mask[dspp - DSPP_0] |= BIT(4);
+ break;
+ case DPU_DSPP_GC:
+ ctx->pending_dspp_flush_mask[dspp - DSPP_0] |= BIT(5);
+ break;
+ default:
+ return;
+ }
+
+ ctx->pending_flush_mask |= BIT(DSPP_IDX);
+}
+
static u32 dpu_hw_ctl_poll_reset_status(struct dpu_hw_ctl *ctx, u32 timeout_us)
{
struct dpu_hw_blk_reg_map *c = &ctx->hw;
@@ -377,12 +416,37 @@ static void dpu_hw_ctl_clear_all_blendstages(struct dpu_hw_ctl *ctx)
DPU_REG_WRITE(c, CTL_FETCH_PIPE_ACTIVE, 0);
}
+struct ctl_blend_config {
+ int idx, shift, ext_shift;
+};
+
+static const struct ctl_blend_config ctl_blend_config[][2] = {
+ [SSPP_NONE] = { { -1 }, { -1 } },
+ [SSPP_MAX] = { { -1 }, { -1 } },
+ [SSPP_VIG0] = { { 0, 0, 0 }, { 3, 0 } },
+ [SSPP_VIG1] = { { 0, 3, 2 }, { 3, 4 } },
+ [SSPP_VIG2] = { { 0, 6, 4 }, { 3, 8 } },
+ [SSPP_VIG3] = { { 0, 26, 6 }, { 3, 12 } },
+ [SSPP_RGB0] = { { 0, 9, 8 }, { -1 } },
+ [SSPP_RGB1] = { { 0, 12, 10 }, { -1 } },
+ [SSPP_RGB2] = { { 0, 15, 12 }, { -1 } },
+ [SSPP_RGB3] = { { 0, 29, 14 }, { -1 } },
+ [SSPP_DMA0] = { { 0, 18, 16 }, { 2, 8 } },
+ [SSPP_DMA1] = { { 0, 21, 18 }, { 2, 12 } },
+ [SSPP_DMA2] = { { 2, 0 }, { 2, 16 } },
+ [SSPP_DMA3] = { { 2, 4 }, { 2, 20 } },
+ [SSPP_DMA4] = { { 4, 0 }, { 4, 8 } },
+ [SSPP_DMA5] = { { 4, 4 }, { 4, 12 } },
+ [SSPP_CURSOR0] = { { 1, 20 }, { -1 } },
+ [SSPP_CURSOR1] = { { 1, 26 }, { -1 } },
+};
+
static void dpu_hw_ctl_setup_blendstage(struct dpu_hw_ctl *ctx,
enum dpu_lm lm, struct dpu_hw_stage_cfg *stage_cfg)
{
struct dpu_hw_blk_reg_map *c = &ctx->hw;
- u32 mixercfg = 0, mixercfg_ext = 0, mix, ext;
- u32 mixercfg_ext2 = 0, mixercfg_ext3 = 0;
+ u32 mix, ext, mix_ext;
+ u32 mixercfg[5] = { 0 };
int i, j;
int stages;
int pipes_per_stage;
@@ -397,7 +461,7 @@ static void dpu_hw_ctl_setup_blendstage(struct dpu_hw_ctl *ctx,
else
pipes_per_stage = 1;
- mixercfg = CTL_MIXER_BORDER_OUT; /* always set BORDER_OUT */
+ mixercfg[0] = CTL_MIXER_BORDER_OUT; /* always set BORDER_OUT */
if (!stage_cfg)
goto exit;
@@ -406,109 +470,37 @@ static void dpu_hw_ctl_setup_blendstage(struct dpu_hw_ctl *ctx,
/* overflow to ext register if 'i + 1 > 7' */
mix = (i + 1) & 0x7;
ext = i >= 7;
+ mix_ext = (i + 1) & 0xf;
for (j = 0 ; j < pipes_per_stage; j++) {
enum dpu_sspp_multirect_index rect_index =
stage_cfg->multirect_index[i][j];
-
- switch (stage_cfg->stage[i][j]) {
- case SSPP_VIG0:
- if (rect_index == DPU_SSPP_RECT_1) {
- mixercfg_ext3 |= ((i + 1) & 0xF) << 0;
- } else {
- mixercfg |= mix << 0;
- mixercfg_ext |= ext << 0;
- }
- break;
- case SSPP_VIG1:
- if (rect_index == DPU_SSPP_RECT_1) {
- mixercfg_ext3 |= ((i + 1) & 0xF) << 4;
- } else {
- mixercfg |= mix << 3;
- mixercfg_ext |= ext << 2;
- }
- break;
- case SSPP_VIG2:
- if (rect_index == DPU_SSPP_RECT_1) {
- mixercfg_ext3 |= ((i + 1) & 0xF) << 8;
- } else {
- mixercfg |= mix << 6;
- mixercfg_ext |= ext << 4;
- }
- break;
- case SSPP_VIG3:
- if (rect_index == DPU_SSPP_RECT_1) {
- mixercfg_ext3 |= ((i + 1) & 0xF) << 12;
- } else {
- mixercfg |= mix << 26;
- mixercfg_ext |= ext << 6;
- }
- break;
- case SSPP_RGB0:
- mixercfg |= mix << 9;
- mixercfg_ext |= ext << 8;
- break;
- case SSPP_RGB1:
- mixercfg |= mix << 12;
- mixercfg_ext |= ext << 10;
- break;
- case SSPP_RGB2:
- mixercfg |= mix << 15;
- mixercfg_ext |= ext << 12;
- break;
- case SSPP_RGB3:
- mixercfg |= mix << 29;
- mixercfg_ext |= ext << 14;
- break;
- case SSPP_DMA0:
- if (rect_index == DPU_SSPP_RECT_1) {
- mixercfg_ext2 |= ((i + 1) & 0xF) << 8;
- } else {
- mixercfg |= mix << 18;
- mixercfg_ext |= ext << 16;
- }
- break;
- case SSPP_DMA1:
- if (rect_index == DPU_SSPP_RECT_1) {
- mixercfg_ext2 |= ((i + 1) & 0xF) << 12;
- } else {
- mixercfg |= mix << 21;
- mixercfg_ext |= ext << 18;
- }
- break;
- case SSPP_DMA2:
- if (rect_index == DPU_SSPP_RECT_1) {
- mixercfg_ext2 |= ((i + 1) & 0xF) << 16;
- } else {
- mix |= (i + 1) & 0xF;
- mixercfg_ext2 |= mix << 0;
- }
- break;
- case SSPP_DMA3:
- if (rect_index == DPU_SSPP_RECT_1) {
- mixercfg_ext2 |= ((i + 1) & 0xF) << 20;
- } else {
- mix |= (i + 1) & 0xF;
- mixercfg_ext2 |= mix << 4;
- }
- break;
- case SSPP_CURSOR0:
- mixercfg_ext |= ((i + 1) & 0xF) << 20;
- break;
- case SSPP_CURSOR1:
- mixercfg_ext |= ((i + 1) & 0xF) << 26;
- break;
- default:
- break;
+ enum dpu_sspp pipe = stage_cfg->stage[i][j];
+ const struct ctl_blend_config *cfg =
+ &ctl_blend_config[pipe][rect_index == DPU_SSPP_RECT_1];
+
+ /*
+ * CTL_LAYER has 3-bit field (and extra bits in EXT register),
+ * all EXT registers has 4-bit fields.
+ */
+ if (cfg->idx == -1) {
+ continue;
+ } else if (cfg->idx == 0) {
+ mixercfg[0] |= mix << cfg->shift;
+ mixercfg[1] |= ext << cfg->ext_shift;
+ } else {
+ mixercfg[cfg->idx] |= mix_ext << cfg->shift;
}
}
}
exit:
- DPU_REG_WRITE(c, CTL_LAYER(lm), mixercfg);
- DPU_REG_WRITE(c, CTL_LAYER_EXT(lm), mixercfg_ext);
- DPU_REG_WRITE(c, CTL_LAYER_EXT2(lm), mixercfg_ext2);
- DPU_REG_WRITE(c, CTL_LAYER_EXT3(lm), mixercfg_ext3);
+ DPU_REG_WRITE(c, CTL_LAYER(lm), mixercfg[0]);
+ DPU_REG_WRITE(c, CTL_LAYER_EXT(lm), mixercfg[1]);
+ DPU_REG_WRITE(c, CTL_LAYER_EXT2(lm), mixercfg[2]);
+ DPU_REG_WRITE(c, CTL_LAYER_EXT3(lm), mixercfg[3]);
+ if ((test_bit(DPU_CTL_HAS_LAYER_EXT4, &ctx->caps->features)))
+ DPU_REG_WRITE(c, CTL_LAYER_EXT4(lm), mixercfg[4]);
}
@@ -675,7 +667,11 @@ static void _setup_ctl_ops(struct dpu_hw_ctl_ops *ops,
ops->setup_blendstage = dpu_hw_ctl_setup_blendstage;
ops->update_pending_flush_sspp = dpu_hw_ctl_update_pending_flush_sspp;
ops->update_pending_flush_mixer = dpu_hw_ctl_update_pending_flush_mixer;
- ops->update_pending_flush_dspp = dpu_hw_ctl_update_pending_flush_dspp;
+ if (cap & BIT(DPU_CTL_DSPP_SUB_BLOCK_FLUSH))
+ ops->update_pending_flush_dspp = dpu_hw_ctl_update_pending_flush_dspp_sub_blocks;
+ else
+ ops->update_pending_flush_dspp = dpu_hw_ctl_update_pending_flush_dspp;
+
if (cap & BIT(DPU_CTL_FETCH_ACTIVE))
ops->set_active_pipes = dpu_hw_ctl_set_fetch_pipe_active;
};
diff --git a/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_ctl.h b/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_ctl.h
index 96c012ec8467..78611a831697 100644
--- a/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_ctl.h
+++ b/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_ctl.h
@@ -152,9 +152,11 @@ struct dpu_hw_ctl_ops {
* No effect on hardware
* @ctx : ctl path ctx pointer
* @blk : DSPP block index
+ * @dspp_sub_blk : DSPP sub-block index
*/
void (*update_pending_flush_dspp)(struct dpu_hw_ctl *ctx,
- enum dpu_dspp blk);
+ enum dpu_dspp blk, u32 dspp_sub_blk);
+
/**
* Write the value of the pending_flush_mask to hardware
* @ctx : ctl path ctx pointer
@@ -242,6 +244,7 @@ struct dpu_hw_ctl {
u32 pending_intf_flush_mask;
u32 pending_wb_flush_mask;
u32 pending_merge_3d_flush_mask;
+ u32 pending_dspp_flush_mask[DSPP_MAX - DSPP_0];
/* ops */
struct dpu_hw_ctl_ops ops;
diff --git a/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_dsc.c b/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_dsc.c
index f2ddcfb6f7ee..4e1396575e6a 100644
--- a/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_dsc.c
+++ b/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_dsc.c
@@ -29,6 +29,8 @@
#define DSC_RANGE_MAX_QP 0x0B0
#define DSC_RANGE_BPG_OFFSET 0x0EC
+#define DSC_CTL(m) (0x1800 - 0x3FC * (m - DSC_0))
+
static void dpu_hw_dsc_disable(struct dpu_hw_dsc *dsc)
{
struct dpu_hw_blk_reg_map *c = &dsc->hw;
@@ -42,7 +44,7 @@ static void dpu_hw_dsc_config(struct dpu_hw_dsc *hw_dsc,
u32 initial_lines)
{
struct dpu_hw_blk_reg_map *c = &hw_dsc->hw;
- u32 data, lsb, bpp;
+ u32 data;
u32 slice_last_group_size;
u32 det_thresh_flatness;
bool is_cmd_mode = !(mode & DSC_MODE_VIDEO);
@@ -56,14 +58,7 @@ static void dpu_hw_dsc_config(struct dpu_hw_dsc *hw_dsc,
data = (initial_lines << 20);
data |= ((slice_last_group_size - 1) << 18);
/* bpp is 6.4 format, 4 LSBs bits are for fractional part */
- data |= dsc->bits_per_pixel << 12;
- lsb = dsc->bits_per_pixel % 4;
- bpp = dsc->bits_per_pixel / 4;
- bpp *= 4;
- bpp <<= 4;
- bpp |= lsb;
-
- data |= bpp << 8;
+ data |= (dsc->bits_per_pixel << 8);
data |= (dsc->block_pred_enable << 7);
data |= (dsc->line_buf_depth << 3);
data |= (dsc->simple_422 << 2);
@@ -157,7 +152,30 @@ static void dpu_hw_dsc_config_thresh(struct dpu_hw_dsc *hw_dsc,
}
}
-static struct dpu_dsc_cfg *_dsc_offset(enum dpu_dsc dsc,
+static void dpu_hw_dsc_bind_pingpong_blk(
+ struct dpu_hw_dsc *hw_dsc,
+ bool enable,
+ const enum dpu_pingpong pp)
+{
+ struct dpu_hw_blk_reg_map *c = &hw_dsc->hw;
+ int mux_cfg = 0xF;
+ u32 dsc_ctl_offset;
+
+ dsc_ctl_offset = DSC_CTL(hw_dsc->idx);
+
+ if (enable)
+ mux_cfg = (pp - PINGPONG_0) & 0x7;
+
+ DRM_DEBUG_KMS("%s dsc:%d %s pp:%d\n",
+ enable ? "Binding" : "Unbinding",
+ hw_dsc->idx - DSC_0,
+ enable ? "to" : "from",
+ pp - PINGPONG_0);
+
+ DPU_REG_WRITE(c, dsc_ctl_offset, mux_cfg);
+}
+
+static const struct dpu_dsc_cfg *_dsc_offset(enum dpu_dsc dsc,
const struct dpu_mdss_cfg *m,
void __iomem *addr,
struct dpu_hw_blk_reg_map *b)
@@ -181,13 +199,15 @@ static void _setup_dsc_ops(struct dpu_hw_dsc_ops *ops,
ops->dsc_disable = dpu_hw_dsc_disable;
ops->dsc_config = dpu_hw_dsc_config;
ops->dsc_config_thresh = dpu_hw_dsc_config_thresh;
+ if (cap & BIT(DPU_DSC_OUTPUT_CTRL))
+ ops->dsc_bind_pingpong_blk = dpu_hw_dsc_bind_pingpong_blk;
};
struct dpu_hw_dsc *dpu_hw_dsc_init(enum dpu_dsc idx, void __iomem *addr,
const struct dpu_mdss_cfg *m)
{
struct dpu_hw_dsc *c;
- struct dpu_dsc_cfg *cfg;
+ const struct dpu_dsc_cfg *cfg;
c = kzalloc(sizeof(*c), GFP_KERNEL);
if (!c)
diff --git a/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_dsc.h b/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_dsc.h
index c0b77fe1a696..ae9b5db53d7f 100644
--- a/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_dsc.h
+++ b/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_dsc.h
@@ -42,6 +42,10 @@ struct dpu_hw_dsc_ops {
*/
void (*dsc_config_thresh)(struct dpu_hw_dsc *hw_dsc,
struct drm_dsc_config *dsc);
+
+ void (*dsc_bind_pingpong_blk)(struct dpu_hw_dsc *hw_dsc,
+ bool enable,
+ enum dpu_pingpong pp);
};
struct dpu_hw_dsc {
diff --git a/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_interrupts.c b/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_interrupts.c
index cf1b6d84c18a..53326f25e40e 100644
--- a/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_interrupts.c
+++ b/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_interrupts.c
@@ -35,6 +35,9 @@
#define MDP_INTF_3_OFF_REV_7xxx 0x37000
#define MDP_INTF_4_OFF_REV_7xxx 0x38000
#define MDP_INTF_5_OFF_REV_7xxx 0x39000
+#define MDP_INTF_6_OFF_REV_7xxx 0x3a000
+#define MDP_INTF_7_OFF_REV_7xxx 0x3b000
+#define MDP_INTF_8_OFF_REV_7xxx 0x3c000
/**
* struct dpu_intr_reg - array of DPU register sets
@@ -139,6 +142,21 @@ static const struct dpu_intr_reg dpu_intr_set[] = {
MDP_INTF_5_OFF_REV_7xxx+INTF_INTR_EN,
MDP_INTF_5_OFF_REV_7xxx+INTF_INTR_STATUS
},
+ [MDP_INTF6_7xxx_INTR] = {
+ MDP_INTF_6_OFF_REV_7xxx+INTF_INTR_CLEAR,
+ MDP_INTF_6_OFF_REV_7xxx+INTF_INTR_EN,
+ MDP_INTF_6_OFF_REV_7xxx+INTF_INTR_STATUS
+ },
+ [MDP_INTF7_7xxx_INTR] = {
+ MDP_INTF_7_OFF_REV_7xxx+INTF_INTR_CLEAR,
+ MDP_INTF_7_OFF_REV_7xxx+INTF_INTR_EN,
+ MDP_INTF_7_OFF_REV_7xxx+INTF_INTR_STATUS
+ },
+ [MDP_INTF8_7xxx_INTR] = {
+ MDP_INTF_8_OFF_REV_7xxx+INTF_INTR_CLEAR,
+ MDP_INTF_8_OFF_REV_7xxx+INTF_INTR_EN,
+ MDP_INTF_8_OFF_REV_7xxx+INTF_INTR_STATUS
+ },
};
#define DPU_IRQ_REG(irq_idx) (irq_idx / 32)
@@ -252,9 +270,9 @@ static int dpu_hw_intr_enable_irq_locked(struct dpu_hw_intr *intr, int irq_idx)
cache_irq_mask = intr->cache_irq_mask[reg_idx];
if (cache_irq_mask & DPU_IRQ_MASK(irq_idx)) {
- dbgstr = "DPU IRQ already set:";
+ dbgstr = "already ";
} else {
- dbgstr = "DPU IRQ enabled:";
+ dbgstr = "";
cache_irq_mask |= DPU_IRQ_MASK(irq_idx);
/* Cleaning any pending interrupt */
@@ -268,7 +286,7 @@ static int dpu_hw_intr_enable_irq_locked(struct dpu_hw_intr *intr, int irq_idx)
intr->cache_irq_mask[reg_idx] = cache_irq_mask;
}
- pr_debug("%s MASK:0x%.8lx, CACHE-MASK:0x%.8x\n", dbgstr,
+ pr_debug("DPU IRQ %d %senabled: MASK:0x%.8lx, CACHE-MASK:0x%.8x\n", irq_idx, dbgstr,
DPU_IRQ_MASK(irq_idx), cache_irq_mask);
return 0;
@@ -301,9 +319,9 @@ static int dpu_hw_intr_disable_irq_locked(struct dpu_hw_intr *intr, int irq_idx)
cache_irq_mask = intr->cache_irq_mask[reg_idx];
if ((cache_irq_mask & DPU_IRQ_MASK(irq_idx)) == 0) {
- dbgstr = "DPU IRQ is already cleared:";
+ dbgstr = "already ";
} else {
- dbgstr = "DPU IRQ mask disable:";
+ dbgstr = "";
cache_irq_mask &= ~DPU_IRQ_MASK(irq_idx);
/* Disable interrupts based on the new mask */
@@ -317,7 +335,7 @@ static int dpu_hw_intr_disable_irq_locked(struct dpu_hw_intr *intr, int irq_idx)
intr->cache_irq_mask[reg_idx] = cache_irq_mask;
}
- pr_debug("%s MASK:0x%.8lx, CACHE-MASK:0x%.8x\n", dbgstr,
+ pr_debug("DPU IRQ %d %sdisabled: MASK:0x%.8lx, CACHE-MASK:0x%.8x\n", irq_idx, dbgstr,
DPU_IRQ_MASK(irq_idx), cache_irq_mask);
return 0;
diff --git a/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_interrupts.h b/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_interrupts.h
index 46443955443c..425465011c80 100644
--- a/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_interrupts.h
+++ b/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_interrupts.h
@@ -31,6 +31,9 @@ enum dpu_hw_intr_reg {
MDP_INTF3_7xxx_INTR,
MDP_INTF4_7xxx_INTR,
MDP_INTF5_7xxx_INTR,
+ MDP_INTF6_7xxx_INTR,
+ MDP_INTF7_7xxx_INTR,
+ MDP_INTF8_7xxx_INTR,
MDP_INTR_MAX,
};
diff --git a/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_intf.c b/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_intf.c
index 7ce66bf3f4c8..84ee2efa9c66 100644
--- a/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_intf.c
+++ b/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_intf.c
@@ -62,6 +62,7 @@
#define INTF_LINE_COUNT 0x0B0
#define INTF_MUX 0x25C
+#define INTF_STATUS 0x26C
#define INTF_CFG_ACTIVE_H_EN BIT(29)
#define INTF_CFG_ACTIVE_V_EN BIT(30)
@@ -297,8 +298,13 @@ static void dpu_hw_intf_get_status(
struct intf_status *s)
{
struct dpu_hw_blk_reg_map *c = &intf->hw;
+ unsigned long cap = intf->cap->features;
+
+ if (cap & BIT(DPU_INTF_STATUS_SUPPORTED))
+ s->is_en = DPU_REG_READ(c, INTF_STATUS) & BIT(0);
+ else
+ s->is_en = DPU_REG_READ(c, INTF_TIMING_ENGINE_EN);
- s->is_en = DPU_REG_READ(c, INTF_TIMING_ENGINE_EN);
s->is_prog_fetch_en = !!(DPU_REG_READ(c, INTF_CONFIG) & BIT(31));
if (s->is_en) {
s->frame_count = DPU_REG_READ(c, INTF_FRAME_COUNT);
diff --git a/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_mdss.h b/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_mdss.h
index d3b0ed0a9c6c..2d9192a6ce00 100644
--- a/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_mdss.h
+++ b/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_mdss.h
@@ -120,6 +120,8 @@ enum dpu_sspp {
SSPP_DMA1,
SSPP_DMA2,
SSPP_DMA3,
+ SSPP_DMA4,
+ SSPP_DMA5,
SSPP_CURSOR0,
SSPP_CURSOR1,
SSPP_MAX
@@ -195,6 +197,8 @@ enum dpu_pingpong {
PINGPONG_3,
PINGPONG_4,
PINGPONG_5,
+ PINGPONG_6,
+ PINGPONG_7,
PINGPONG_S0,
PINGPONG_MAX
};
@@ -203,6 +207,7 @@ enum dpu_merge_3d {
MERGE_3D_0 = 1,
MERGE_3D_1,
MERGE_3D_2,
+ MERGE_3D_3,
MERGE_3D_MAX
};
@@ -214,6 +219,8 @@ enum dpu_intf {
INTF_4,
INTF_5,
INTF_6,
+ INTF_7,
+ INTF_8,
INTF_MAX
};
diff --git a/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_sspp.c b/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_sspp.c
index 691c471b08c2..cf70a9bd1034 100644
--- a/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_sspp.c
+++ b/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_sspp.c
@@ -136,7 +136,7 @@
#define TS_CLK 19200000
-static int _sspp_subblk_offset(struct dpu_hw_pipe *ctx,
+static int _sspp_subblk_offset(struct dpu_hw_sspp *ctx,
int s_id,
u32 *idx)
{
@@ -168,17 +168,16 @@ static int _sspp_subblk_offset(struct dpu_hw_pipe *ctx,
return rc;
}
-static void dpu_hw_sspp_setup_multirect(struct dpu_hw_pipe *ctx,
- enum dpu_sspp_multirect_index index,
- enum dpu_sspp_multirect_mode mode)
+static void dpu_hw_sspp_setup_multirect(struct dpu_sw_pipe *pipe)
{
+ struct dpu_hw_sspp *ctx = pipe->sspp;
u32 mode_mask;
u32 idx;
if (_sspp_subblk_offset(ctx, DPU_SSPP_SRC, &idx))
return;
- if (index == DPU_SSPP_RECT_SOLO) {
+ if (pipe->multirect_index == DPU_SSPP_RECT_SOLO) {
/**
* if rect index is RECT_SOLO, we cannot expect a
* virtual plane sharing the same SSPP id. So we go
@@ -187,8 +186,8 @@ static void dpu_hw_sspp_setup_multirect(struct dpu_hw_pipe *ctx,
mode_mask = 0;
} else {
mode_mask = DPU_REG_READ(&ctx->hw, SSPP_MULTIRECT_OPMODE + idx);
- mode_mask |= index;
- if (mode == DPU_SSPP_MULTIRECT_TIME_MX)
+ mode_mask |= pipe->multirect_index;
+ if (pipe->multirect_mode == DPU_SSPP_MULTIRECT_TIME_MX)
mode_mask |= BIT(2);
else
mode_mask &= ~BIT(2);
@@ -197,7 +196,7 @@ static void dpu_hw_sspp_setup_multirect(struct dpu_hw_pipe *ctx,
DPU_REG_WRITE(&ctx->hw, SSPP_MULTIRECT_OPMODE + idx, mode_mask);
}
-static void _sspp_setup_opmode(struct dpu_hw_pipe *ctx,
+static void _sspp_setup_opmode(struct dpu_hw_sspp *ctx,
u32 mask, u8 en)
{
u32 idx;
@@ -218,7 +217,7 @@ static void _sspp_setup_opmode(struct dpu_hw_pipe *ctx,
DPU_REG_WRITE(&ctx->hw, SSPP_VIG_OP_MODE + idx, opmode);
}
-static void _sspp_setup_csc10_opmode(struct dpu_hw_pipe *ctx,
+static void _sspp_setup_csc10_opmode(struct dpu_hw_sspp *ctx,
u32 mask, u8 en)
{
u32 idx;
@@ -239,10 +238,10 @@ static void _sspp_setup_csc10_opmode(struct dpu_hw_pipe *ctx,
/*
* Setup source pixel format, flip,
*/
-static void dpu_hw_sspp_setup_format(struct dpu_hw_pipe *ctx,
- const struct dpu_format *fmt, u32 flags,
- enum dpu_sspp_multirect_index rect_mode)
+static void dpu_hw_sspp_setup_format(struct dpu_sw_pipe *pipe,
+ const struct dpu_format *fmt, u32 flags)
{
+ struct dpu_hw_sspp *ctx = pipe->sspp;
struct dpu_hw_blk_reg_map *c;
u32 chroma_samp, unpack, src_format;
u32 opmode = 0;
@@ -253,7 +252,8 @@ static void dpu_hw_sspp_setup_format(struct dpu_hw_pipe *ctx,
if (_sspp_subblk_offset(ctx, DPU_SSPP_SRC, &idx) || !fmt)
return;
- if (rect_mode == DPU_SSPP_RECT_SOLO || rect_mode == DPU_SSPP_RECT_0) {
+ if (pipe->multirect_index == DPU_SSPP_RECT_SOLO ||
+ pipe->multirect_index == DPU_SSPP_RECT_0) {
op_mode_off = SSPP_SRC_OP_MODE;
unpack_pat_off = SSPP_SRC_UNPACK_PATTERN;
format_off = SSPP_SRC_FORMAT;
@@ -307,21 +307,25 @@ static void dpu_hw_sspp_setup_format(struct dpu_hw_pipe *ctx,
src_format |= (fmt->fetch_mode & 3) << 30; /*FRAME_FORMAT */
DPU_REG_WRITE(c, SSPP_FETCH_CONFIG,
DPU_FETCH_CONFIG_RESET_VALUE |
- ctx->mdp->highest_bank_bit << 18);
- switch (ctx->catalog->caps->ubwc_version) {
+ ctx->ubwc->highest_bank_bit << 18);
+ switch (ctx->ubwc->ubwc_version) {
case DPU_HW_UBWC_VER_10:
- /* TODO: UBWC v1 case */
+ fast_clear = fmt->alpha_enable ? BIT(31) : 0;
+ DPU_REG_WRITE(c, SSPP_UBWC_STATIC_CTRL,
+ fast_clear | (ctx->ubwc->ubwc_swizzle & 0x1) |
+ BIT(8) |
+ (ctx->ubwc->highest_bank_bit << 4));
break;
case DPU_HW_UBWC_VER_20:
fast_clear = fmt->alpha_enable ? BIT(31) : 0;
DPU_REG_WRITE(c, SSPP_UBWC_STATIC_CTRL,
- fast_clear | (ctx->mdp->ubwc_swizzle) |
- (ctx->mdp->highest_bank_bit << 4));
+ fast_clear | (ctx->ubwc->ubwc_swizzle) |
+ (ctx->ubwc->highest_bank_bit << 4));
break;
case DPU_HW_UBWC_VER_30:
DPU_REG_WRITE(c, SSPP_UBWC_STATIC_CTRL,
- BIT(30) | (ctx->mdp->ubwc_swizzle) |
- (ctx->mdp->highest_bank_bit << 4));
+ BIT(30) | (ctx->ubwc->ubwc_swizzle) |
+ (ctx->ubwc->highest_bank_bit << 4));
break;
case DPU_HW_UBWC_VER_40:
DPU_REG_WRITE(c, SSPP_UBWC_STATIC_CTRL,
@@ -356,7 +360,7 @@ static void dpu_hw_sspp_setup_format(struct dpu_hw_pipe *ctx,
DPU_REG_WRITE(c, SSPP_UBWC_ERROR_STATUS + idx, BIT(31));
}
-static void dpu_hw_sspp_setup_pe_config(struct dpu_hw_pipe *ctx,
+static void dpu_hw_sspp_setup_pe_config(struct dpu_hw_sspp *ctx,
struct dpu_hw_pixel_ext *pe_ext)
{
struct dpu_hw_blk_reg_map *c;
@@ -414,23 +418,22 @@ static void dpu_hw_sspp_setup_pe_config(struct dpu_hw_pipe *ctx,
tot_req_pixels[3]);
}
-static void _dpu_hw_sspp_setup_scaler3(struct dpu_hw_pipe *ctx,
- struct dpu_hw_pipe_cfg *sspp,
- void *scaler_cfg)
+static void _dpu_hw_sspp_setup_scaler3(struct dpu_hw_sspp *ctx,
+ struct dpu_hw_scaler3_cfg *scaler3_cfg,
+ const struct dpu_format *format)
{
u32 idx;
- struct dpu_hw_scaler3_cfg *scaler3_cfg = scaler_cfg;
- if (_sspp_subblk_offset(ctx, DPU_SSPP_SCALER_QSEED3, &idx) || !sspp
+ if (_sspp_subblk_offset(ctx, DPU_SSPP_SCALER_QSEED3, &idx)
|| !scaler3_cfg)
return;
dpu_hw_setup_scaler3(&ctx->hw, scaler3_cfg, idx,
ctx->cap->sblk->scaler_blk.version,
- sspp->layout.format);
+ format);
}
-static u32 _dpu_hw_sspp_get_scaler3_ver(struct dpu_hw_pipe *ctx)
+static u32 _dpu_hw_sspp_get_scaler3_ver(struct dpu_hw_sspp *ctx)
{
u32 idx;
@@ -443,12 +446,12 @@ static u32 _dpu_hw_sspp_get_scaler3_ver(struct dpu_hw_pipe *ctx)
/*
* dpu_hw_sspp_setup_rects()
*/
-static void dpu_hw_sspp_setup_rects(struct dpu_hw_pipe *ctx,
- struct dpu_hw_pipe_cfg *cfg,
- enum dpu_sspp_multirect_index rect_index)
+static void dpu_hw_sspp_setup_rects(struct dpu_sw_pipe *pipe,
+ struct dpu_sw_pipe_cfg *cfg)
{
+ struct dpu_hw_sspp *ctx = pipe->sspp;
struct dpu_hw_blk_reg_map *c;
- u32 src_size, src_xy, dst_size, dst_xy, ystride0, ystride1;
+ u32 src_size, src_xy, dst_size, dst_xy;
u32 src_size_off, src_xy_off, out_size_off, out_xy_off;
u32 idx;
@@ -457,7 +460,8 @@ static void dpu_hw_sspp_setup_rects(struct dpu_hw_pipe *ctx,
c = &ctx->hw;
- if (rect_index == DPU_SSPP_RECT_SOLO || rect_index == DPU_SSPP_RECT_0) {
+ if (pipe->multirect_index == DPU_SSPP_RECT_SOLO ||
+ pipe->multirect_index == DPU_SSPP_RECT_0) {
src_size_off = SSPP_SRC_SIZE;
src_xy_off = SSPP_SRC_XY;
out_size_off = SSPP_OUT_SIZE;
@@ -478,68 +482,69 @@ static void dpu_hw_sspp_setup_rects(struct dpu_hw_pipe *ctx,
dst_size = (drm_rect_height(&cfg->dst_rect) << 16) |
drm_rect_width(&cfg->dst_rect);
- if (rect_index == DPU_SSPP_RECT_SOLO) {
- ystride0 = (cfg->layout.plane_pitch[0]) |
- (cfg->layout.plane_pitch[1] << 16);
- ystride1 = (cfg->layout.plane_pitch[2]) |
- (cfg->layout.plane_pitch[3] << 16);
- } else {
- ystride0 = DPU_REG_READ(c, SSPP_SRC_YSTRIDE0 + idx);
- ystride1 = DPU_REG_READ(c, SSPP_SRC_YSTRIDE1 + idx);
-
- if (rect_index == DPU_SSPP_RECT_0) {
- ystride0 = (ystride0 & 0xFFFF0000) |
- (cfg->layout.plane_pitch[0] & 0x0000FFFF);
- ystride1 = (ystride1 & 0xFFFF0000)|
- (cfg->layout.plane_pitch[2] & 0x0000FFFF);
- } else {
- ystride0 = (ystride0 & 0x0000FFFF) |
- ((cfg->layout.plane_pitch[0] << 16) &
- 0xFFFF0000);
- ystride1 = (ystride1 & 0x0000FFFF) |
- ((cfg->layout.plane_pitch[2] << 16) &
- 0xFFFF0000);
- }
- }
-
/* rectangle register programming */
DPU_REG_WRITE(c, src_size_off + idx, src_size);
DPU_REG_WRITE(c, src_xy_off + idx, src_xy);
DPU_REG_WRITE(c, out_size_off + idx, dst_size);
DPU_REG_WRITE(c, out_xy_off + idx, dst_xy);
-
- DPU_REG_WRITE(c, SSPP_SRC_YSTRIDE0 + idx, ystride0);
- DPU_REG_WRITE(c, SSPP_SRC_YSTRIDE1 + idx, ystride1);
}
-static void dpu_hw_sspp_setup_sourceaddress(struct dpu_hw_pipe *ctx,
- struct dpu_hw_pipe_cfg *cfg,
- enum dpu_sspp_multirect_index rect_mode)
+static void dpu_hw_sspp_setup_sourceaddress(struct dpu_sw_pipe *pipe,
+ struct dpu_hw_fmt_layout *layout)
{
+ struct dpu_hw_sspp *ctx = pipe->sspp;
+ u32 ystride0, ystride1;
int i;
u32 idx;
if (_sspp_subblk_offset(ctx, DPU_SSPP_SRC, &idx))
return;
- if (rect_mode == DPU_SSPP_RECT_SOLO) {
- for (i = 0; i < ARRAY_SIZE(cfg->layout.plane_addr); i++)
+ if (pipe->multirect_index == DPU_SSPP_RECT_SOLO) {
+ for (i = 0; i < ARRAY_SIZE(layout->plane_addr); i++)
DPU_REG_WRITE(&ctx->hw, SSPP_SRC0_ADDR + idx + i * 0x4,
- cfg->layout.plane_addr[i]);
- } else if (rect_mode == DPU_SSPP_RECT_0) {
+ layout->plane_addr[i]);
+ } else if (pipe->multirect_index == DPU_SSPP_RECT_0) {
DPU_REG_WRITE(&ctx->hw, SSPP_SRC0_ADDR + idx,
- cfg->layout.plane_addr[0]);
+ layout->plane_addr[0]);
DPU_REG_WRITE(&ctx->hw, SSPP_SRC2_ADDR + idx,
- cfg->layout.plane_addr[2]);
+ layout->plane_addr[2]);
} else {
DPU_REG_WRITE(&ctx->hw, SSPP_SRC1_ADDR + idx,
- cfg->layout.plane_addr[0]);
+ layout->plane_addr[0]);
DPU_REG_WRITE(&ctx->hw, SSPP_SRC3_ADDR + idx,
- cfg->layout.plane_addr[2]);
+ layout->plane_addr[2]);
}
+
+ if (pipe->multirect_index == DPU_SSPP_RECT_SOLO) {
+ ystride0 = (layout->plane_pitch[0]) |
+ (layout->plane_pitch[1] << 16);
+ ystride1 = (layout->plane_pitch[2]) |
+ (layout->plane_pitch[3] << 16);
+ } else {
+ ystride0 = DPU_REG_READ(&ctx->hw, SSPP_SRC_YSTRIDE0 + idx);
+ ystride1 = DPU_REG_READ(&ctx->hw, SSPP_SRC_YSTRIDE1 + idx);
+
+ if (pipe->multirect_index == DPU_SSPP_RECT_0) {
+ ystride0 = (ystride0 & 0xFFFF0000) |
+ (layout->plane_pitch[0] & 0x0000FFFF);
+ ystride1 = (ystride1 & 0xFFFF0000)|
+ (layout->plane_pitch[2] & 0x0000FFFF);
+ } else {
+ ystride0 = (ystride0 & 0x0000FFFF) |
+ ((layout->plane_pitch[0] << 16) &
+ 0xFFFF0000);
+ ystride1 = (ystride1 & 0x0000FFFF) |
+ ((layout->plane_pitch[2] << 16) &
+ 0xFFFF0000);
+ }
+ }
+
+ DPU_REG_WRITE(&ctx->hw, SSPP_SRC_YSTRIDE0 + idx, ystride0);
+ DPU_REG_WRITE(&ctx->hw, SSPP_SRC_YSTRIDE1 + idx, ystride1);
}
-static void dpu_hw_sspp_setup_csc(struct dpu_hw_pipe *ctx,
+static void dpu_hw_sspp_setup_csc(struct dpu_hw_sspp *ctx,
const struct dpu_csc_cfg *data)
{
u32 idx;
@@ -556,22 +561,28 @@ static void dpu_hw_sspp_setup_csc(struct dpu_hw_pipe *ctx,
dpu_hw_csc_setup(&ctx->hw, idx, data, csc10);
}
-static void dpu_hw_sspp_setup_solidfill(struct dpu_hw_pipe *ctx, u32 color, enum
- dpu_sspp_multirect_index rect_index)
+static void dpu_hw_sspp_setup_solidfill(struct dpu_sw_pipe *pipe, u32 color)
{
+ struct dpu_hw_sspp *ctx = pipe->sspp;
+ struct dpu_hw_fmt_layout cfg;
u32 idx;
if (_sspp_subblk_offset(ctx, DPU_SSPP_SRC, &idx))
return;
- if (rect_index == DPU_SSPP_RECT_SOLO || rect_index == DPU_SSPP_RECT_0)
+ /* cleanup source addresses */
+ memset(&cfg, 0, sizeof(cfg));
+ ctx->ops.setup_sourceaddress(pipe, &cfg);
+
+ if (pipe->multirect_index == DPU_SSPP_RECT_SOLO ||
+ pipe->multirect_index == DPU_SSPP_RECT_0)
DPU_REG_WRITE(&ctx->hw, SSPP_SRC_CONSTANT_COLOR + idx, color);
else
DPU_REG_WRITE(&ctx->hw, SSPP_SRC_CONSTANT_COLOR_REC1 + idx,
color);
}
-static void dpu_hw_sspp_setup_danger_safe_lut(struct dpu_hw_pipe *ctx,
+static void dpu_hw_sspp_setup_danger_safe_lut(struct dpu_hw_sspp *ctx,
u32 danger_lut,
u32 safe_lut)
{
@@ -584,7 +595,7 @@ static void dpu_hw_sspp_setup_danger_safe_lut(struct dpu_hw_pipe *ctx,
DPU_REG_WRITE(&ctx->hw, SSPP_SAFE_LUT + idx, safe_lut);
}
-static void dpu_hw_sspp_setup_creq_lut(struct dpu_hw_pipe *ctx,
+static void dpu_hw_sspp_setup_creq_lut(struct dpu_hw_sspp *ctx,
u64 creq_lut)
{
u32 idx;
@@ -601,7 +612,7 @@ static void dpu_hw_sspp_setup_creq_lut(struct dpu_hw_pipe *ctx,
}
}
-static void dpu_hw_sspp_setup_qos_ctrl(struct dpu_hw_pipe *ctx,
+static void dpu_hw_sspp_setup_qos_ctrl(struct dpu_hw_sspp *ctx,
struct dpu_hw_pipe_qos_cfg *cfg)
{
u32 idx;
@@ -626,10 +637,10 @@ static void dpu_hw_sspp_setup_qos_ctrl(struct dpu_hw_pipe *ctx,
DPU_REG_WRITE(&ctx->hw, SSPP_QOS_CTRL + idx, qos_ctrl);
}
-static void dpu_hw_sspp_setup_cdp(struct dpu_hw_pipe *ctx,
- struct dpu_hw_cdp_cfg *cfg,
- enum dpu_sspp_multirect_index index)
+static void dpu_hw_sspp_setup_cdp(struct dpu_sw_pipe *pipe,
+ struct dpu_hw_cdp_cfg *cfg)
{
+ struct dpu_hw_sspp *ctx = pipe->sspp;
u32 idx;
u32 cdp_cntl = 0;
u32 cdp_cntl_offset = 0;
@@ -640,7 +651,8 @@ static void dpu_hw_sspp_setup_cdp(struct dpu_hw_pipe *ctx,
if (_sspp_subblk_offset(ctx, DPU_SSPP_SRC, &idx))
return;
- if (index == DPU_SSPP_RECT_SOLO || index == DPU_SSPP_RECT_0)
+ if (pipe->multirect_index == DPU_SSPP_RECT_SOLO ||
+ pipe->multirect_index == DPU_SSPP_RECT_0)
cdp_cntl_offset = SSPP_CDP_CNTL;
else
cdp_cntl_offset = SSPP_CDP_CNTL_REC1;
@@ -657,7 +669,7 @@ static void dpu_hw_sspp_setup_cdp(struct dpu_hw_pipe *ctx,
DPU_REG_WRITE(&ctx->hw, cdp_cntl_offset, cdp_cntl);
}
-static void _setup_layer_ops(struct dpu_hw_pipe *c,
+static void _setup_layer_ops(struct dpu_hw_sspp *c,
unsigned long features)
{
if (test_bit(DPU_SSPP_SRC, &features)) {
@@ -695,7 +707,8 @@ static void _setup_layer_ops(struct dpu_hw_pipe *c,
}
#ifdef CONFIG_DEBUG_FS
-int _dpu_hw_sspp_init_debugfs(struct dpu_hw_pipe *hw_pipe, struct dpu_kms *kms, struct dentry *entry)
+int _dpu_hw_sspp_init_debugfs(struct dpu_hw_sspp *hw_pipe, struct dpu_kms *kms,
+ struct dentry *entry)
{
const struct dpu_sspp_cfg *cfg = hw_pipe->cap;
const struct dpu_sspp_sub_blks *sblk = cfg->sblk;
@@ -779,10 +792,10 @@ static const struct dpu_sspp_cfg *_sspp_offset(enum dpu_sspp sspp,
return ERR_PTR(-ENOMEM);
}
-struct dpu_hw_pipe *dpu_hw_sspp_init(enum dpu_sspp idx,
+struct dpu_hw_sspp *dpu_hw_sspp_init(enum dpu_sspp idx,
void __iomem *addr, const struct dpu_mdss_cfg *catalog)
{
- struct dpu_hw_pipe *hw_pipe;
+ struct dpu_hw_sspp *hw_pipe;
const struct dpu_sspp_cfg *cfg;
if (!addr || !catalog)
@@ -800,7 +813,7 @@ struct dpu_hw_pipe *dpu_hw_sspp_init(enum dpu_sspp idx,
/* Assign ops */
hw_pipe->catalog = catalog;
- hw_pipe->mdp = &catalog->mdp[0];
+ hw_pipe->ubwc = catalog->ubwc;
hw_pipe->idx = idx;
hw_pipe->cap = cfg;
_setup_layer_ops(hw_pipe, hw_pipe->cap->features);
@@ -808,7 +821,7 @@ struct dpu_hw_pipe *dpu_hw_sspp_init(enum dpu_sspp idx,
return hw_pipe;
}
-void dpu_hw_sspp_destroy(struct dpu_hw_pipe *ctx)
+void dpu_hw_sspp_destroy(struct dpu_hw_sspp *ctx)
{
kfree(ctx);
}
diff --git a/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_sspp.h b/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_sspp.h
index 0c95b7e64f6c..74b98b6b3bc3 100644
--- a/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_sspp.h
+++ b/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_sspp.h
@@ -10,7 +10,7 @@
#include "dpu_hw_util.h"
#include "dpu_formats.h"
-struct dpu_hw_pipe;
+struct dpu_hw_sspp;
/**
* Flags
@@ -153,20 +153,14 @@ struct dpu_hw_pixel_ext {
};
/**
- * struct dpu_hw_pipe_cfg : Pipe description
- * @layout: format layout information for programming buffer to hardware
+ * struct dpu_sw_pipe_cfg : software pipe configuration
* @src_rect: src ROI, caller takes into account the different operations
* such as decimation, flip etc to program this field
* @dest_rect: destination ROI.
- * @index: index of the rectangle of SSPP
- * @mode: parallel or time multiplex multirect mode
*/
-struct dpu_hw_pipe_cfg {
- struct dpu_hw_fmt_layout layout;
+struct dpu_sw_pipe_cfg {
struct drm_rect src_rect;
struct drm_rect dst_rect;
- enum dpu_sspp_multirect_index index;
- enum dpu_sspp_multirect_mode mode;
};
/**
@@ -202,6 +196,18 @@ struct dpu_hw_pipe_ts_cfg {
};
/**
+ * struct dpu_sw_pipe - software pipe description
+ * @sspp: backing SSPP pipe
+ * @index: index of the rectangle of SSPP
+ * @mode: parallel or time multiplex multirect mode
+ */
+struct dpu_sw_pipe {
+ struct dpu_hw_sspp *sspp;
+ enum dpu_sspp_multirect_index multirect_index;
+ enum dpu_sspp_multirect_mode multirect_mode;
+};
+
+/**
* struct dpu_hw_sspp_ops - interface to the SSPP Hw driver functions
* Caller must call the init function to get the pipe context for each pipe
* Assumption is these functions will be called after clocks are enabled
@@ -209,77 +215,65 @@ struct dpu_hw_pipe_ts_cfg {
struct dpu_hw_sspp_ops {
/**
* setup_format - setup pixel format cropping rectangle, flip
- * @ctx: Pointer to pipe context
+ * @pipe: Pointer to software pipe context
* @cfg: Pointer to pipe config structure
* @flags: Extra flags for format config
- * @index: rectangle index in multirect
*/
- void (*setup_format)(struct dpu_hw_pipe *ctx,
- const struct dpu_format *fmt, u32 flags,
- enum dpu_sspp_multirect_index index);
+ void (*setup_format)(struct dpu_sw_pipe *pipe,
+ const struct dpu_format *fmt, u32 flags);
/**
* setup_rects - setup pipe ROI rectangles
- * @ctx: Pointer to pipe context
+ * @pipe: Pointer to software pipe context
* @cfg: Pointer to pipe config structure
- * @index: rectangle index in multirect
*/
- void (*setup_rects)(struct dpu_hw_pipe *ctx,
- struct dpu_hw_pipe_cfg *cfg,
- enum dpu_sspp_multirect_index index);
+ void (*setup_rects)(struct dpu_sw_pipe *pipe,
+ struct dpu_sw_pipe_cfg *cfg);
/**
* setup_pe - setup pipe pixel extension
* @ctx: Pointer to pipe context
* @pe_ext: Pointer to pixel ext settings
*/
- void (*setup_pe)(struct dpu_hw_pipe *ctx,
+ void (*setup_pe)(struct dpu_hw_sspp *ctx,
struct dpu_hw_pixel_ext *pe_ext);
/**
* setup_sourceaddress - setup pipe source addresses
- * @ctx: Pointer to pipe context
- * @cfg: Pointer to pipe config structure
- * @index: rectangle index in multirect
+ * @pipe: Pointer to software pipe context
+ * @layout: format layout information for programming buffer to hardware
*/
- void (*setup_sourceaddress)(struct dpu_hw_pipe *ctx,
- struct dpu_hw_pipe_cfg *cfg,
- enum dpu_sspp_multirect_index index);
+ void (*setup_sourceaddress)(struct dpu_sw_pipe *ctx,
+ struct dpu_hw_fmt_layout *layout);
/**
* setup_csc - setup color space coversion
* @ctx: Pointer to pipe context
* @data: Pointer to config structure
*/
- void (*setup_csc)(struct dpu_hw_pipe *ctx, const struct dpu_csc_cfg *data);
+ void (*setup_csc)(struct dpu_hw_sspp *ctx, const struct dpu_csc_cfg *data);
/**
* setup_solidfill - enable/disable colorfill
- * @ctx: Pointer to pipe context
+ * @pipe: Pointer to software pipe context
* @const_color: Fill color value
* @flags: Pipe flags
- * @index: rectangle index in multirect
*/
- void (*setup_solidfill)(struct dpu_hw_pipe *ctx, u32 color,
- enum dpu_sspp_multirect_index index);
+ void (*setup_solidfill)(struct dpu_sw_pipe *pipe, u32 color);
/**
* setup_multirect - setup multirect configuration
- * @ctx: Pointer to pipe context
- * @index: rectangle index in multirect
- * @mode: parallel fetch / time multiplex multirect mode
+ * @pipe: Pointer to software pipe context
*/
- void (*setup_multirect)(struct dpu_hw_pipe *ctx,
- enum dpu_sspp_multirect_index index,
- enum dpu_sspp_multirect_mode mode);
+ void (*setup_multirect)(struct dpu_sw_pipe *pipe);
/**
* setup_sharpening - setup sharpening
* @ctx: Pointer to pipe context
* @cfg: Pointer to config structure
*/
- void (*setup_sharpening)(struct dpu_hw_pipe *ctx,
+ void (*setup_sharpening)(struct dpu_hw_sspp *ctx,
struct dpu_hw_sharp_cfg *cfg);
/**
@@ -289,7 +283,7 @@ struct dpu_hw_sspp_ops {
* @safe_lut: LUT for generate safe level based on fill level
*
*/
- void (*setup_danger_safe_lut)(struct dpu_hw_pipe *ctx,
+ void (*setup_danger_safe_lut)(struct dpu_hw_sspp *ctx,
u32 danger_lut,
u32 safe_lut);
@@ -299,7 +293,7 @@ struct dpu_hw_sspp_ops {
* @creq_lut: LUT for generate creq level based on fill level
*
*/
- void (*setup_creq_lut)(struct dpu_hw_pipe *ctx,
+ void (*setup_creq_lut)(struct dpu_hw_sspp *ctx,
u64 creq_lut);
/**
@@ -308,7 +302,7 @@ struct dpu_hw_sspp_ops {
* @cfg: Pointer to pipe QoS configuration
*
*/
- void (*setup_qos_ctrl)(struct dpu_hw_pipe *ctx,
+ void (*setup_qos_ctrl)(struct dpu_hw_sspp *ctx,
struct dpu_hw_pipe_qos_cfg *cfg);
/**
@@ -316,51 +310,48 @@ struct dpu_hw_sspp_ops {
* @ctx: Pointer to pipe context
* @cfg: Pointer to histogram configuration
*/
- void (*setup_histogram)(struct dpu_hw_pipe *ctx,
+ void (*setup_histogram)(struct dpu_hw_sspp *ctx,
void *cfg);
/**
* setup_scaler - setup scaler
- * @ctx: Pointer to pipe context
- * @pipe_cfg: Pointer to pipe configuration
- * @scaler_cfg: Pointer to scaler configuration
+ * @scaler3_cfg: Pointer to scaler configuration
+ * @format: pixel format parameters
*/
- void (*setup_scaler)(struct dpu_hw_pipe *ctx,
- struct dpu_hw_pipe_cfg *pipe_cfg,
- void *scaler_cfg);
+ void (*setup_scaler)(struct dpu_hw_sspp *ctx,
+ struct dpu_hw_scaler3_cfg *scaler3_cfg,
+ const struct dpu_format *format);
/**
* get_scaler_ver - get scaler h/w version
* @ctx: Pointer to pipe context
*/
- u32 (*get_scaler_ver)(struct dpu_hw_pipe *ctx);
+ u32 (*get_scaler_ver)(struct dpu_hw_sspp *ctx);
/**
* setup_cdp - setup client driven prefetch
- * @ctx: Pointer to pipe context
+ * @pipe: Pointer to software pipe context
* @cfg: Pointer to cdp configuration
- * @index: rectangle index in multirect
*/
- void (*setup_cdp)(struct dpu_hw_pipe *ctx,
- struct dpu_hw_cdp_cfg *cfg,
- enum dpu_sspp_multirect_index index);
+ void (*setup_cdp)(struct dpu_sw_pipe *pipe,
+ struct dpu_hw_cdp_cfg *cfg);
};
/**
- * struct dpu_hw_pipe - pipe description
+ * struct dpu_hw_sspp - pipe description
* @base: hardware block base structure
* @hw: block hardware details
* @catalog: back pointer to catalog
- * @mdp: pointer to associated mdp portion of the catalog
+ * @ubwc: ubwc configuration data
* @idx: pipe index
* @cap: pointer to layer_cfg
* @ops: pointer to operations possible for this pipe
*/
-struct dpu_hw_pipe {
+struct dpu_hw_sspp {
struct dpu_hw_blk base;
struct dpu_hw_blk_reg_map hw;
const struct dpu_mdss_cfg *catalog;
- const struct dpu_mdp_cfg *mdp;
+ const struct dpu_ubwc_cfg *ubwc;
/* Pipe */
enum dpu_sspp idx;
@@ -378,7 +369,7 @@ struct dpu_kms;
* @addr: Mapped register io address of MDP
* @catalog : Pointer to mdss catalog data
*/
-struct dpu_hw_pipe *dpu_hw_sspp_init(enum dpu_sspp idx,
+struct dpu_hw_sspp *dpu_hw_sspp_init(enum dpu_sspp idx,
void __iomem *addr, const struct dpu_mdss_cfg *catalog);
/**
@@ -386,10 +377,10 @@ struct dpu_hw_pipe *dpu_hw_sspp_init(enum dpu_sspp idx,
* should be called during Hw pipe cleanup.
* @ctx: Pointer to SSPP driver context returned by dpu_hw_sspp_init
*/
-void dpu_hw_sspp_destroy(struct dpu_hw_pipe *ctx);
+void dpu_hw_sspp_destroy(struct dpu_hw_sspp *ctx);
-void dpu_debugfs_sspp_init(struct dpu_kms *dpu_kms, struct dentry *debugfs_root);
-int _dpu_hw_sspp_init_debugfs(struct dpu_hw_pipe *hw_pipe, struct dpu_kms *kms, struct dentry *entry);
+int _dpu_hw_sspp_init_debugfs(struct dpu_hw_sspp *hw_pipe, struct dpu_kms *kms,
+ struct dentry *entry);
#endif /*_DPU_HW_SSPP_H */
diff --git a/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_top.c b/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_top.c
index c3110a25a30d..2bb02e17ee52 100644
--- a/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_top.c
+++ b/drivers/gpu/drm/msm/disp/dpu1/dpu_hw_top.c
@@ -7,40 +7,17 @@
#include "dpu_hw_top.h"
#include "dpu_kms.h"
-#define SSPP_SPARE 0x28
-
#define FLD_SPLIT_DISPLAY_CMD BIT(1)
#define FLD_SMART_PANEL_FREE_RUN BIT(2)
#define FLD_INTF_1_SW_TRG_MUX BIT(4)
#define FLD_INTF_2_SW_TRG_MUX BIT(8)
#define FLD_TE_LINE_INTER_WATERLEVEL_MASK 0xFFFF
-#define DANGER_STATUS 0x360
-#define SAFE_STATUS 0x364
-
-#define TE_LINE_INTERVAL 0x3F4
-
#define TRAFFIC_SHAPER_EN BIT(31)
#define TRAFFIC_SHAPER_RD_CLIENT(num) (0x030 + (num * 4))
#define TRAFFIC_SHAPER_WR_CLIENT(num) (0x060 + (num * 4))
#define TRAFFIC_SHAPER_FIXPOINT_FACTOR 4
-#define MDP_WD_TIMER_0_CTL 0x380
-#define MDP_WD_TIMER_0_CTL2 0x384
-#define MDP_WD_TIMER_0_LOAD_VALUE 0x388
-#define MDP_WD_TIMER_1_CTL 0x390
-#define MDP_WD_TIMER_1_CTL2 0x394
-#define MDP_WD_TIMER_1_LOAD_VALUE 0x398
-#define MDP_WD_TIMER_2_CTL 0x420
-#define MDP_WD_TIMER_2_CTL2 0x424
-#define MDP_WD_TIMER_2_LOAD_VALUE 0x428
-#define MDP_WD_TIMER_3_CTL 0x430
-#define MDP_WD_TIMER_3_CTL2 0x434
-#define MDP_WD_TIMER_3_LOAD_VALUE 0x438
-#define MDP_WD_TIMER_4_CTL 0x440
-#define MDP_WD_TIMER_4_CTL2 0x444
-#define MDP_WD_TIMER_4_LOAD_VALUE 0x448
-
#define MDP_TICK_COUNT 16
#define XO_CLK_RATE 19200
#define MS_TICKS_IN_SEC 1000
@@ -48,8 +25,6 @@
#define CALCULATE_WD_LOAD_VALUE(fps) \
((uint32_t)((MS_TICKS_IN_SEC * XO_CLK_RATE)/(MDP_TICK_COUNT * fps)))
-#define DCE_SEL 0x450
-
static void dpu_hw_setup_split_pipe(struct dpu_hw_mdp *mdp,
struct split_pipe_cfg *cfg)
{
diff --git a/drivers/gpu/drm/msm/disp/dpu1/dpu_hwio.h b/drivers/gpu/drm/msm/disp/dpu1/dpu_hwio.h
index c8156ed4b7fb..feb9a729844a 100644
--- a/drivers/gpu/drm/msm/disp/dpu1/dpu_hwio.h
+++ b/drivers/gpu/drm/msm/disp/dpu1/dpu_hwio.h
@@ -16,6 +16,7 @@
#define INTR_CLEAR 0x018
#define INTR2_EN 0x008
#define INTR2_STATUS 0x00c
+#define SSPP_SPARE 0x028
#define INTR2_CLEAR 0x02c
#define HIST_INTR_EN 0x01c
#define HIST_INTR_STATUS 0x020
@@ -28,7 +29,15 @@
#define DSPP_IGC_COLOR0_RAM_LUTN 0x300
#define DSPP_IGC_COLOR1_RAM_LUTN 0x304
#define DSPP_IGC_COLOR2_RAM_LUTN 0x308
+#define DANGER_STATUS 0x360
+#define SAFE_STATUS 0x364
#define HW_EVENTS_CTL 0x37C
+#define MDP_WD_TIMER_0_CTL 0x380
+#define MDP_WD_TIMER_0_CTL2 0x384
+#define MDP_WD_TIMER_0_LOAD_VALUE 0x388
+#define MDP_WD_TIMER_1_CTL 0x390
+#define MDP_WD_TIMER_1_CTL2 0x394
+#define MDP_WD_TIMER_1_LOAD_VALUE 0x398
#define CLK_CTRL3 0x3A8
#define CLK_STATUS3 0x3AC
#define CLK_CTRL4 0x3B0
@@ -43,6 +52,18 @@
#define HDMI_DP_CORE_SELECT 0x408
#define MDP_OUT_CTL_0 0x410
#define MDP_VSYNC_SEL 0x414
+#define MDP_WD_TIMER_2_CTL 0x420
+#define MDP_WD_TIMER_2_CTL2 0x424
+#define MDP_WD_TIMER_2_LOAD_VALUE 0x428
+#define MDP_WD_TIMER_3_CTL 0x430
+#define MDP_WD_TIMER_3_CTL2 0x434
+#define MDP_WD_TIMER_3_LOAD_VALUE 0x438
+#define MDP_WD_TIMER_4_CTL 0x440
+#define MDP_WD_TIMER_4_CTL2 0x444
+#define MDP_WD_TIMER_4_LOAD_VALUE 0x448
#define DCE_SEL 0x450
+#define MDP_PERIPH_TOP0 MDP_WD_TIMER_0_CTL
+#define MDP_PERIPH_TOP0_END CLK_CTRL3
+
#endif /*_DPU_HWIO_H */
diff --git a/drivers/gpu/drm/msm/disp/dpu1/dpu_kms.c b/drivers/gpu/drm/msm/disp/dpu1/dpu_kms.c
index 5e6e2626151e..0e7a68714e9e 100644
--- a/drivers/gpu/drm/msm/disp/dpu1/dpu_kms.c
+++ b/drivers/gpu/drm/msm/disp/dpu1/dpu_kms.c
@@ -194,7 +194,7 @@ struct dpu_debugfs_regset32 {
struct dpu_kms *dpu_kms;
};
-static int _dpu_debugfs_show_regset32(struct seq_file *s, void *data)
+static int dpu_regset32_show(struct seq_file *s, void *data)
{
struct dpu_debugfs_regset32 *regset = s->private;
struct dpu_kms *dpu_kms = regset->dpu_kms;
@@ -227,19 +227,7 @@ static int _dpu_debugfs_show_regset32(struct seq_file *s, void *data)
return 0;
}
-
-static int dpu_debugfs_open_regset32(struct inode *inode,
- struct file *file)
-{
- return single_open(file, _dpu_debugfs_show_regset32, inode->i_private);
-}
-
-static const struct file_operations dpu_fops_regset32 = {
- .open = dpu_debugfs_open_regset32,
- .read = seq_read,
- .llseek = seq_lseek,
- .release = single_release,
-};
+DEFINE_SHOW_ATTRIBUTE(dpu_regset32);
void dpu_debugfs_create_regset32(const char *name, umode_t mode,
void *parent,
@@ -259,7 +247,25 @@ void dpu_debugfs_create_regset32(const char *name, umode_t mode,
regset->blk_len = length;
regset->dpu_kms = dpu_kms;
- debugfs_create_file(name, mode, parent, regset, &dpu_fops_regset32);
+ debugfs_create_file(name, mode, parent, regset, &dpu_regset32_fops);
+}
+
+static void dpu_debugfs_sspp_init(struct dpu_kms *dpu_kms, struct dentry *debugfs_root)
+{
+ struct dentry *entry = debugfs_create_dir("sspp", debugfs_root);
+ int i;
+
+ if (IS_ERR(entry))
+ return;
+
+ for (i = SSPP_NONE; i < SSPP_MAX; i++) {
+ struct dpu_hw_sspp *hw = dpu_rm_get_sspp(&dpu_kms->rm, i);
+
+ if (!hw)
+ continue;
+
+ _dpu_hw_sspp_init_debugfs(hw, dpu_kms, entry);
+ }
}
static int dpu_kms_debugfs_init(struct msm_kms *kms, struct drm_minor *minor)
@@ -423,40 +429,6 @@ static void dpu_kms_disable_commit(struct msm_kms *kms)
pm_runtime_put_sync(&dpu_kms->pdev->dev);
}
-static ktime_t dpu_kms_vsync_time(struct msm_kms *kms, struct drm_crtc *crtc)
-{
- struct drm_encoder *encoder;
-
- drm_for_each_encoder_mask(encoder, crtc->dev, crtc->state->encoder_mask) {
- ktime_t vsync_time;
-
- if (dpu_encoder_vsync_time(encoder, &vsync_time) == 0)
- return vsync_time;
- }
-
- return ktime_get();
-}
-
-static void dpu_kms_prepare_commit(struct msm_kms *kms,
- struct drm_atomic_state *state)
-{
- struct drm_crtc *crtc;
- struct drm_crtc_state *crtc_state;
- struct drm_encoder *encoder;
- int i;
-
- if (!kms)
- return;
-
- /* Call prepare_commit for all affected encoders */
- for_each_new_crtc_in_state(state, crtc, crtc_state, i) {
- drm_for_each_encoder_mask(encoder, crtc->dev,
- crtc_state->encoder_mask) {
- dpu_encoder_prepare_commit(encoder);
- }
- }
-}
-
static void dpu_kms_flush_commit(struct msm_kms *kms, unsigned crtc_mask)
{
struct dpu_kms *dpu_kms = to_dpu_kms(kms);
@@ -503,7 +475,7 @@ static void dpu_kms_wait_for_commit_done(struct msm_kms *kms,
return;
}
- if (!crtc->state->active) {
+ if (!drm_atomic_crtc_effectively_active(crtc->state)) {
DPU_DEBUG("[crtc:%d] not active\n", crtc->base.id);
return;
}
@@ -939,8 +911,20 @@ static void dpu_kms_mdp_snapshot(struct msm_disp_state *disp_state, struct msm_k
msm_disp_snapshot_add_block(disp_state, cat->wb[i].len,
dpu_kms->mmio + cat->wb[i].base, "wb_%d", i);
- msm_disp_snapshot_add_block(disp_state, cat->mdp[0].len,
- dpu_kms->mmio + cat->mdp[0].base, "top");
+ if (cat->mdp[0].features & BIT(DPU_MDP_PERIPH_0_REMOVED)) {
+ msm_disp_snapshot_add_block(disp_state, MDP_PERIPH_TOP0,
+ dpu_kms->mmio + cat->mdp[0].base, "top");
+ msm_disp_snapshot_add_block(disp_state, cat->mdp[0].len - MDP_PERIPH_TOP0_END,
+ dpu_kms->mmio + cat->mdp[0].base + MDP_PERIPH_TOP0_END, "top_2");
+ } else {
+ msm_disp_snapshot_add_block(disp_state, cat->mdp[0].len,
+ dpu_kms->mmio + cat->mdp[0].base, "top");
+ }
+
+ /* dump DSC sub-blocks HW regs info */
+ for (i = 0; i < cat->dsc_count; i++)
+ msm_disp_snapshot_add_block(disp_state, cat->dsc[i].len,
+ dpu_kms->mmio + cat->dsc[i].base, "dsc_%d", i);
pm_runtime_put_sync(&dpu_kms->pdev->dev);
}
@@ -953,8 +937,6 @@ static const struct msm_kms_funcs kms_funcs = {
.irq = dpu_core_irq,
.enable_commit = dpu_kms_enable_commit,
.disable_commit = dpu_kms_disable_commit,
- .vsync_time = dpu_kms_vsync_time,
- .prepare_commit = dpu_kms_prepare_commit,
.flush_commit = dpu_kms_flush_commit,
.wait_flush = dpu_kms_wait_flush,
.complete_commit = dpu_kms_complete_commit,
@@ -1013,6 +995,7 @@ static int dpu_kms_hw_init(struct msm_kms *kms)
struct dpu_kms *dpu_kms;
struct drm_device *dev;
int i, rc = -EINVAL;
+ u32 core_rev;
if (!kms) {
DPU_ERROR("invalid kms\n");
@@ -1062,17 +1045,14 @@ static int dpu_kms_hw_init(struct msm_kms *kms)
if (rc < 0)
goto error;
- dpu_kms->core_rev = readl_relaxed(dpu_kms->mmio + 0x0);
+ core_rev = readl_relaxed(dpu_kms->mmio + 0x0);
- pr_info("dpu hardware revision:0x%x\n", dpu_kms->core_rev);
+ pr_info("dpu hardware revision:0x%x\n", core_rev);
- dpu_kms->catalog = dpu_hw_catalog_init(dpu_kms->core_rev);
- if (IS_ERR_OR_NULL(dpu_kms->catalog)) {
- rc = PTR_ERR(dpu_kms->catalog);
- if (!dpu_kms->catalog)
- rc = -EINVAL;
- DPU_ERROR("catalog init failed: %d\n", rc);
- dpu_kms->catalog = NULL;
+ dpu_kms->catalog = of_device_get_match_data(dev->dev);
+ if (!dpu_kms->catalog) {
+ DPU_ERROR("device config not known!\n");
+ rc = -EINVAL;
goto power_error;
}
@@ -1298,14 +1278,19 @@ static const struct dev_pm_ops dpu_pm_ops = {
};
static const struct of_device_id dpu_dt_match[] = {
- { .compatible = "qcom,msm8998-dpu", },
- { .compatible = "qcom,qcm2290-dpu", },
- { .compatible = "qcom,sdm845-dpu", },
- { .compatible = "qcom,sc7180-dpu", },
- { .compatible = "qcom,sc7280-dpu", },
- { .compatible = "qcom,sc8180x-dpu", },
- { .compatible = "qcom,sm8150-dpu", },
- { .compatible = "qcom,sm8250-dpu", },
+ { .compatible = "qcom,msm8998-dpu", .data = &dpu_msm8998_cfg, },
+ { .compatible = "qcom,qcm2290-dpu", .data = &dpu_qcm2290_cfg, },
+ { .compatible = "qcom,sdm845-dpu", .data = &dpu_sdm845_cfg, },
+ { .compatible = "qcom,sc7180-dpu", .data = &dpu_sc7180_cfg, },
+ { .compatible = "qcom,sc7280-dpu", .data = &dpu_sc7280_cfg, },
+ { .compatible = "qcom,sc8180x-dpu", .data = &dpu_sc8180x_cfg, },
+ { .compatible = "qcom,sc8280xp-dpu", .data = &dpu_sc8280xp_cfg, },
+ { .compatible = "qcom,sm6115-dpu", .data = &dpu_sm6115_cfg, },
+ { .compatible = "qcom,sm8150-dpu", .data = &dpu_sm8150_cfg, },
+ { .compatible = "qcom,sm8250-dpu", .data = &dpu_sm8250_cfg, },
+ { .compatible = "qcom,sm8350-dpu", .data = &dpu_sm8350_cfg, },
+ { .compatible = "qcom,sm8450-dpu", .data = &dpu_sm8450_cfg, },
+ { .compatible = "qcom,sm8550-dpu", .data = &dpu_sm8550_cfg, },
{}
};
MODULE_DEVICE_TABLE(of, dpu_dt_match);
diff --git a/drivers/gpu/drm/msm/disp/dpu1/dpu_kms.h b/drivers/gpu/drm/msm/disp/dpu1/dpu_kms.h
index ed80ed6784ee..aca39a4689f4 100644
--- a/drivers/gpu/drm/msm/disp/dpu1/dpu_kms.h
+++ b/drivers/gpu/drm/msm/disp/dpu1/dpu_kms.h
@@ -68,7 +68,6 @@
struct dpu_kms {
struct msm_kms base;
struct drm_device *dev;
- int core_rev;
const struct dpu_mdss_cfg *catalog;
/* io/register spaces: */
diff --git a/drivers/gpu/drm/msm/disp/dpu1/dpu_plane.c b/drivers/gpu/drm/msm/disp/dpu1/dpu_plane.c
index 658005f609f4..14b5cfe30611 100644
--- a/drivers/gpu/drm/msm/disp/dpu1/dpu_plane.c
+++ b/drivers/gpu/drm/msm/disp/dpu1/dpu_plane.c
@@ -47,13 +47,6 @@
#define DPU_PLANE_COLOR_FILL_FLAG BIT(31)
#define DPU_ZPOS_MAX 255
-/* multirect rect index */
-enum {
- R0,
- R1,
- R_MAX
-};
-
/*
* Default Preload Values
*/
@@ -69,9 +62,12 @@ static const uint32_t qcom_compressed_supported_formats[] = {
DRM_FORMAT_ARGB8888,
DRM_FORMAT_XBGR8888,
DRM_FORMAT_XRGB8888,
+ DRM_FORMAT_ARGB2101010,
+ DRM_FORMAT_XRGB2101010,
DRM_FORMAT_BGR565,
DRM_FORMAT_NV12,
+ DRM_FORMAT_P010,
};
/**
@@ -102,7 +98,6 @@ struct dpu_plane {
enum dpu_sspp pipe;
- struct dpu_hw_pipe *pipe_hw;
uint32_t color_fill;
bool is_error;
bool is_rt_pipe;
@@ -126,21 +121,19 @@ static struct dpu_kms *_dpu_plane_get_kms(struct drm_plane *plane)
/**
* _dpu_plane_calc_bw - calculate bandwidth required for a plane
- * @plane: Pointer to drm plane.
- * @fb: Pointer to framebuffer associated with the given plane
+ * @catalog: Points to dpu catalog structure
+ * @fmt: Pointer to source buffer format
+ * @mode: Pointer to drm display mode
* @pipe_cfg: Pointer to pipe configuration
* Result: Updates calculated bandwidth in the plane state.
* BW Equation: src_w * src_h * bpp * fps * (v_total / v_dest)
* Prefill BW Equation: line src bytes * line_time
*/
-static void _dpu_plane_calc_bw(struct drm_plane *plane,
- struct drm_framebuffer *fb,
- struct dpu_hw_pipe_cfg *pipe_cfg)
+static u64 _dpu_plane_calc_bw(const struct dpu_mdss_cfg *catalog,
+ const struct dpu_format *fmt,
+ const struct drm_display_mode *mode,
+ struct dpu_sw_pipe_cfg *pipe_cfg)
{
- struct dpu_plane_state *pstate;
- struct drm_display_mode *mode;
- const struct dpu_format *fmt = NULL;
- struct dpu_kms *dpu_kms = _dpu_plane_get_kms(plane);
int src_width, src_height, dst_height, fps;
u64 plane_prefill_bw;
u64 plane_bw;
@@ -148,11 +141,6 @@ static void _dpu_plane_calc_bw(struct drm_plane *plane,
u64 scale_factor;
int vbp, vpw, vfp;
- pstate = to_dpu_plane_state(plane->state);
- mode = &plane->state->crtc->mode;
-
- fmt = dpu_get_dpu_format_ext(fb->format->format, fb->modifier);
-
src_width = drm_rect_width(&pipe_cfg->src_rect);
src_height = drm_rect_height(&pipe_cfg->src_rect);
dst_height = drm_rect_height(&pipe_cfg->dst_rect);
@@ -160,7 +148,7 @@ static void _dpu_plane_calc_bw(struct drm_plane *plane,
vbp = mode->vtotal - mode->vsync_end;
vpw = mode->vsync_end - mode->vsync_start;
vfp = mode->vsync_start - mode->vdisplay;
- hw_latency_lines = dpu_kms->catalog->perf->min_prefill_lines;
+ hw_latency_lines = catalog->perf->min_prefill_lines;
scale_factor = src_height > dst_height ?
mult_frac(src_height, 1, dst_height) : 1;
@@ -180,61 +168,60 @@ static void _dpu_plane_calc_bw(struct drm_plane *plane,
do_div(plane_prefill_bw, hw_latency_lines);
- pstate->plane_fetch_bw = max(plane_bw, plane_prefill_bw);
+ return max(plane_bw, plane_prefill_bw);
}
/**
* _dpu_plane_calc_clk - calculate clock required for a plane
- * @plane: Pointer to drm plane.
+ * @mode: Pointer to drm display mode
* @pipe_cfg: Pointer to pipe configuration
* Result: Updates calculated clock in the plane state.
* Clock equation: dst_w * v_total * fps * (src_h / dst_h)
*/
-static void _dpu_plane_calc_clk(struct drm_plane *plane, struct dpu_hw_pipe_cfg *pipe_cfg)
+static u64 _dpu_plane_calc_clk(const struct drm_display_mode *mode,
+ struct dpu_sw_pipe_cfg *pipe_cfg)
{
- struct dpu_plane_state *pstate;
- struct drm_display_mode *mode;
int dst_width, src_height, dst_height, fps;
-
- pstate = to_dpu_plane_state(plane->state);
- mode = &plane->state->crtc->mode;
+ u64 plane_clk;
src_height = drm_rect_height(&pipe_cfg->src_rect);
dst_width = drm_rect_width(&pipe_cfg->dst_rect);
dst_height = drm_rect_height(&pipe_cfg->dst_rect);
fps = drm_mode_vrefresh(mode);
- pstate->plane_clk =
+ plane_clk =
dst_width * mode->vtotal * fps;
if (src_height > dst_height) {
- pstate->plane_clk *= src_height;
- do_div(pstate->plane_clk, dst_height);
+ plane_clk *= src_height;
+ do_div(plane_clk, dst_height);
}
+
+ return plane_clk;
}
/**
* _dpu_plane_calc_fill_level - calculate fill level of the given source format
* @plane: Pointer to drm plane
+ * @pipe: Pointer to software pipe
* @fmt: Pointer to source buffer format
* @src_width: width of source buffer
* Return: fill level corresponding to the source buffer/format or 0 if error
*/
static int _dpu_plane_calc_fill_level(struct drm_plane *plane,
+ struct dpu_sw_pipe *pipe,
const struct dpu_format *fmt, u32 src_width)
{
struct dpu_plane *pdpu;
- struct dpu_plane_state *pstate;
u32 fixed_buff_size;
u32 total_fl;
- if (!fmt || !plane->state || !src_width || !fmt->bpp) {
+ if (!fmt || !pipe || !src_width || !fmt->bpp) {
DPU_ERROR("invalid arguments\n");
return 0;
}
pdpu = to_dpu_plane(plane);
- pstate = to_dpu_plane_state(plane->state);
fixed_buff_size = pdpu->catalog->caps->pixel_ram_size;
/* FIXME: in multirect case account for the src_width of all the planes */
@@ -250,7 +237,7 @@ static int _dpu_plane_calc_fill_level(struct drm_plane *plane,
((src_width + 32) * fmt->bpp);
}
} else {
- if (pstate->multirect_mode == DPU_SSPP_MULTIRECT_PARALLEL) {
+ if (pipe->multirect_mode == DPU_SSPP_MULTIRECT_PARALLEL) {
total_fl = (fixed_buff_size / 2) * 2 /
((src_width + 32) * fmt->bpp);
} else {
@@ -260,7 +247,7 @@ static int _dpu_plane_calc_fill_level(struct drm_plane *plane,
}
DPU_DEBUG_PLANE(pdpu, "pnum:%d fmt: %4.4s w:%u fl:%u\n",
- pdpu->pipe - SSPP_VIG0,
+ pipe->sspp->idx - SSPP_VIG0,
(char *)&fmt->base.pixel_format,
src_width, total_fl);
@@ -270,24 +257,22 @@ static int _dpu_plane_calc_fill_level(struct drm_plane *plane,
/**
* _dpu_plane_set_qos_lut - set QoS LUT of the given plane
* @plane: Pointer to drm plane
- * @fb: Pointer to framebuffer associated with the given plane
+ * @pipe: Pointer to software pipe
+ * @fmt: Pointer to source buffer format
* @pipe_cfg: Pointer to pipe configuration
*/
static void _dpu_plane_set_qos_lut(struct drm_plane *plane,
- struct drm_framebuffer *fb, struct dpu_hw_pipe_cfg *pipe_cfg)
+ struct dpu_sw_pipe *pipe,
+ const struct dpu_format *fmt, struct dpu_sw_pipe_cfg *pipe_cfg)
{
struct dpu_plane *pdpu = to_dpu_plane(plane);
- const struct dpu_format *fmt = NULL;
u64 qos_lut;
u32 total_fl = 0, lut_usage;
if (!pdpu->is_rt_pipe) {
lut_usage = DPU_QOS_LUT_USAGE_NRT;
} else {
- fmt = dpu_get_dpu_format_ext(
- fb->format->format,
- fb->modifier);
- total_fl = _dpu_plane_calc_fill_level(plane, fmt,
+ total_fl = _dpu_plane_calc_fill_level(plane, pipe, fmt,
drm_rect_width(&pipe_cfg->src_rect));
if (fmt && DPU_FORMAT_IS_LINEAR(fmt))
@@ -299,7 +284,7 @@ static void _dpu_plane_set_qos_lut(struct drm_plane *plane,
qos_lut = _dpu_hw_get_qos_lut(
&pdpu->catalog->perf->qos_lut_tbl[lut_usage], total_fl);
- trace_dpu_perf_set_qos_luts(pdpu->pipe - SSPP_VIG0,
+ trace_dpu_perf_set_qos_luts(pipe->sspp->idx - SSPP_VIG0,
(fmt) ? fmt->base.pixel_format : 0,
pdpu->is_rt_pipe, total_fl, qos_lut, lut_usage);
@@ -308,19 +293,20 @@ static void _dpu_plane_set_qos_lut(struct drm_plane *plane,
fmt ? (char *)&fmt->base.pixel_format : NULL,
pdpu->is_rt_pipe, total_fl, qos_lut);
- pdpu->pipe_hw->ops.setup_creq_lut(pdpu->pipe_hw, qos_lut);
+ pipe->sspp->ops.setup_creq_lut(pipe->sspp, qos_lut);
}
/**
* _dpu_plane_set_danger_lut - set danger/safe LUT of the given plane
* @plane: Pointer to drm plane
- * @fb: Pointer to framebuffer associated with the given plane
+ * @pipe: Pointer to software pipe
+ * @fmt: Pointer to source buffer format
*/
static void _dpu_plane_set_danger_lut(struct drm_plane *plane,
- struct drm_framebuffer *fb)
+ struct dpu_sw_pipe *pipe,
+ const struct dpu_format *fmt)
{
struct dpu_plane *pdpu = to_dpu_plane(plane);
- const struct dpu_format *fmt = NULL;
u32 danger_lut, safe_lut;
if (!pdpu->is_rt_pipe) {
@@ -329,10 +315,6 @@ static void _dpu_plane_set_danger_lut(struct drm_plane *plane,
safe_lut = pdpu->catalog->perf->safe_lut_tbl
[DPU_QOS_LUT_USAGE_NRT];
} else {
- fmt = dpu_get_dpu_format_ext(
- fb->format->format,
- fb->modifier);
-
if (fmt && DPU_FORMAT_IS_LINEAR(fmt)) {
danger_lut = pdpu->catalog->perf->danger_lut_tbl
[DPU_QOS_LUT_USAGE_LINEAR];
@@ -359,17 +341,19 @@ static void _dpu_plane_set_danger_lut(struct drm_plane *plane,
danger_lut,
safe_lut);
- pdpu->pipe_hw->ops.setup_danger_safe_lut(pdpu->pipe_hw,
+ pipe->sspp->ops.setup_danger_safe_lut(pipe->sspp,
danger_lut, safe_lut);
}
/**
* _dpu_plane_set_qos_ctrl - set QoS control of the given plane
* @plane: Pointer to drm plane
+ * @pipe: Pointer to software pipe
* @enable: true to enable QoS control
* @flags: QoS control mode (enum dpu_plane_qos)
*/
static void _dpu_plane_set_qos_ctrl(struct drm_plane *plane,
+ struct dpu_sw_pipe *pipe,
bool enable, u32 flags)
{
struct dpu_plane *pdpu = to_dpu_plane(plane);
@@ -378,9 +362,9 @@ static void _dpu_plane_set_qos_ctrl(struct drm_plane *plane,
memset(&pipe_qos_cfg, 0, sizeof(pipe_qos_cfg));
if (flags & DPU_PLANE_QOS_VBLANK_CTRL) {
- pipe_qos_cfg.creq_vblank = pdpu->pipe_hw->cap->sblk->creq_vblank;
+ pipe_qos_cfg.creq_vblank = pipe->sspp->cap->sblk->creq_vblank;
pipe_qos_cfg.danger_vblank =
- pdpu->pipe_hw->cap->sblk->danger_vblank;
+ pipe->sspp->cap->sblk->danger_vblank;
pipe_qos_cfg.vblank_en = enable;
}
@@ -406,32 +390,35 @@ static void _dpu_plane_set_qos_ctrl(struct drm_plane *plane,
pipe_qos_cfg.danger_vblank,
pdpu->is_rt_pipe);
- pdpu->pipe_hw->ops.setup_qos_ctrl(pdpu->pipe_hw,
+ pipe->sspp->ops.setup_qos_ctrl(pipe->sspp,
&pipe_qos_cfg);
}
/**
* _dpu_plane_set_ot_limit - set OT limit for the given plane
* @plane: Pointer to drm plane
- * @crtc: Pointer to drm crtc
+ * @pipe: Pointer to software pipe
* @pipe_cfg: Pointer to pipe configuration
+ * @frame_rate: CRTC's frame rate
*/
static void _dpu_plane_set_ot_limit(struct drm_plane *plane,
- struct drm_crtc *crtc, struct dpu_hw_pipe_cfg *pipe_cfg)
+ struct dpu_sw_pipe *pipe,
+ struct dpu_sw_pipe_cfg *pipe_cfg,
+ int frame_rate)
{
struct dpu_plane *pdpu = to_dpu_plane(plane);
struct dpu_vbif_set_ot_params ot_params;
struct dpu_kms *dpu_kms = _dpu_plane_get_kms(plane);
memset(&ot_params, 0, sizeof(ot_params));
- ot_params.xin_id = pdpu->pipe_hw->cap->xin_id;
- ot_params.num = pdpu->pipe_hw->idx - SSPP_NONE;
+ ot_params.xin_id = pipe->sspp->cap->xin_id;
+ ot_params.num = pipe->sspp->idx - SSPP_NONE;
ot_params.width = drm_rect_width(&pipe_cfg->src_rect);
ot_params.height = drm_rect_height(&pipe_cfg->src_rect);
ot_params.is_wfd = !pdpu->is_rt_pipe;
- ot_params.frame_rate = drm_mode_vrefresh(&crtc->mode);
+ ot_params.frame_rate = frame_rate;
ot_params.vbif_idx = VBIF_RT;
- ot_params.clk_ctrl = pdpu->pipe_hw->cap->clk_ctrl;
+ ot_params.clk_ctrl = pipe->sspp->cap->clk_ctrl;
ot_params.rd = true;
dpu_vbif_set_ot_limit(dpu_kms, &ot_params);
@@ -440,8 +427,10 @@ static void _dpu_plane_set_ot_limit(struct drm_plane *plane,
/**
* _dpu_plane_set_qos_remap - set vbif QoS for the given plane
* @plane: Pointer to drm plane
+ * @pipe: Pointer to software pipe
*/
-static void _dpu_plane_set_qos_remap(struct drm_plane *plane)
+static void _dpu_plane_set_qos_remap(struct drm_plane *plane,
+ struct dpu_sw_pipe *pipe)
{
struct dpu_plane *pdpu = to_dpu_plane(plane);
struct dpu_vbif_set_qos_params qos_params;
@@ -449,9 +438,9 @@ static void _dpu_plane_set_qos_remap(struct drm_plane *plane)
memset(&qos_params, 0, sizeof(qos_params));
qos_params.vbif_idx = VBIF_RT;
- qos_params.clk_ctrl = pdpu->pipe_hw->cap->clk_ctrl;
- qos_params.xin_id = pdpu->pipe_hw->cap->xin_id;
- qos_params.num = pdpu->pipe_hw->idx - SSPP_VIG0;
+ qos_params.clk_ctrl = pipe->sspp->cap->clk_ctrl;
+ qos_params.xin_id = pipe->sspp->cap->xin_id;
+ qos_params.num = pipe->sspp->idx - SSPP_VIG0;
qos_params.is_rt = pdpu->is_rt_pipe;
DPU_DEBUG_PLANE(pdpu, "pipe:%d vbif:%d xin:%d rt:%d, clk_ctrl:%d\n",
@@ -463,39 +452,15 @@ static void _dpu_plane_set_qos_remap(struct drm_plane *plane)
dpu_vbif_set_qos_remap(dpu_kms, &qos_params);
}
-static void _dpu_plane_set_scanout(struct drm_plane *plane,
- struct dpu_plane_state *pstate,
- struct dpu_hw_pipe_cfg *pipe_cfg,
- struct drm_framebuffer *fb)
-{
- struct dpu_plane *pdpu = to_dpu_plane(plane);
- struct dpu_kms *kms = _dpu_plane_get_kms(&pdpu->base);
- struct msm_gem_address_space *aspace = kms->base.aspace;
- int ret;
-
- ret = dpu_format_populate_layout(aspace, fb, &pipe_cfg->layout);
- if (ret == -EAGAIN)
- DPU_DEBUG_PLANE(pdpu, "not updating same src addrs\n");
- else if (ret)
- DPU_ERROR_PLANE(pdpu, "failed to get format layout, %d\n", ret);
- else if (pdpu->pipe_hw->ops.setup_sourceaddress) {
- trace_dpu_plane_set_scanout(pdpu->pipe_hw->idx,
- &pipe_cfg->layout,
- pstate->multirect_index);
- pdpu->pipe_hw->ops.setup_sourceaddress(pdpu->pipe_hw, pipe_cfg,
- pstate->multirect_index);
- }
-}
-
-static void _dpu_plane_setup_scaler3(struct dpu_plane *pdpu,
- struct dpu_plane_state *pstate,
+static void _dpu_plane_setup_scaler3(struct dpu_hw_sspp *pipe_hw,
uint32_t src_w, uint32_t src_h, uint32_t dst_w, uint32_t dst_h,
struct dpu_hw_scaler3_cfg *scale_cfg,
const struct dpu_format *fmt,
- uint32_t chroma_subsmpl_h, uint32_t chroma_subsmpl_v)
+ uint32_t chroma_subsmpl_h, uint32_t chroma_subsmpl_v,
+ unsigned int rotation)
{
uint32_t i;
- bool inline_rotation = pstate->rotation & DRM_MODE_ROTATE_90;
+ bool inline_rotation = rotation & DRM_MODE_ROTATE_90;
/*
* For inline rotation cases, scaler config is post-rotation,
@@ -534,7 +499,7 @@ static void _dpu_plane_setup_scaler3(struct dpu_plane *pdpu,
scale_cfg->src_height[i] /= chroma_subsmpl_v;
}
- if (pdpu->pipe_hw->cap->features &
+ if (pipe_hw->cap->features &
BIT(DPU_SSPP_SCALER_QSEED4)) {
scale_cfg->preload_x[i] = DPU_QSEED4_DEFAULT_PRELOAD_H;
scale_cfg->preload_y[i] = DPU_QSEED4_DEFAULT_PRELOAD_V;
@@ -605,36 +570,28 @@ static const struct dpu_csc_cfg dpu_csc10_YUV2RGB_601L = {
{ 0x00, 0x3ff, 0x00, 0x3ff, 0x00, 0x3ff,},
};
-static const struct dpu_csc_cfg *_dpu_plane_get_csc(struct dpu_plane *pdpu, const struct dpu_format *fmt)
+static const struct dpu_csc_cfg *_dpu_plane_get_csc(struct dpu_sw_pipe *pipe,
+ const struct dpu_format *fmt)
{
const struct dpu_csc_cfg *csc_ptr;
- if (!pdpu) {
- DPU_ERROR("invalid plane\n");
- return NULL;
- }
-
if (!DPU_FORMAT_IS_YUV(fmt))
return NULL;
- if (BIT(DPU_SSPP_CSC_10BIT) & pdpu->pipe_hw->cap->features)
+ if (BIT(DPU_SSPP_CSC_10BIT) & pipe->sspp->cap->features)
csc_ptr = &dpu_csc10_YUV2RGB_601L;
else
csc_ptr = &dpu_csc_YUV2RGB_601L;
- DPU_DEBUG_PLANE(pdpu, "using 0x%X 0x%X 0x%X...\n",
- csc_ptr->csc_mv[0],
- csc_ptr->csc_mv[1],
- csc_ptr->csc_mv[2]);
-
return csc_ptr;
}
-static void _dpu_plane_setup_scaler(struct dpu_plane *pdpu,
- struct dpu_plane_state *pstate,
+static void _dpu_plane_setup_scaler(struct dpu_sw_pipe *pipe,
const struct dpu_format *fmt, bool color_fill,
- struct dpu_hw_pipe_cfg *pipe_cfg)
+ struct dpu_sw_pipe_cfg *pipe_cfg,
+ unsigned int rotation)
{
+ struct dpu_hw_sspp *pipe_hw = pipe->sspp;
const struct drm_format_info *info = drm_format_info(fmt->base.pixel_format);
struct dpu_hw_scaler3_cfg scaler3_cfg;
struct dpu_hw_pixel_ext pixel_ext;
@@ -648,20 +605,21 @@ static void _dpu_plane_setup_scaler(struct dpu_plane *pdpu,
/* don't chroma subsample if decimating */
/* update scaler. calculate default config for QSEED3 */
- _dpu_plane_setup_scaler3(pdpu, pstate,
+ _dpu_plane_setup_scaler3(pipe_hw,
src_width,
src_height,
dst_width,
dst_height,
&scaler3_cfg, fmt,
- info->hsub, info->vsub);
+ info->hsub, info->vsub,
+ rotation);
/* configure pixel extension based on scalar config */
_dpu_plane_setup_pixel_ext(&scaler3_cfg, &pixel_ext,
src_width, src_height, info->hsub, info->vsub);
- if (pdpu->pipe_hw->ops.setup_pe)
- pdpu->pipe_hw->ops.setup_pe(pdpu->pipe_hw,
+ if (pipe_hw->ops.setup_pe)
+ pipe_hw->ops.setup_pe(pipe_hw,
&pixel_ext);
/**
@@ -669,11 +627,44 @@ static void _dpu_plane_setup_scaler(struct dpu_plane *pdpu,
* bypassed. Still we need to update alpha and bitwidth
* ONLY for RECT0
*/
- if (pdpu->pipe_hw->ops.setup_scaler &&
- pstate->multirect_index != DPU_SSPP_RECT_1)
- pdpu->pipe_hw->ops.setup_scaler(pdpu->pipe_hw,
- pipe_cfg,
- &scaler3_cfg);
+ if (pipe_hw->ops.setup_scaler &&
+ pipe->multirect_index != DPU_SSPP_RECT_1)
+ pipe_hw->ops.setup_scaler(pipe_hw,
+ &scaler3_cfg,
+ fmt);
+}
+
+static void _dpu_plane_color_fill_pipe(struct dpu_plane_state *pstate,
+ struct dpu_sw_pipe *pipe,
+ struct drm_rect *dst_rect,
+ u32 fill_color,
+ const struct dpu_format *fmt)
+{
+ struct dpu_sw_pipe_cfg pipe_cfg;
+
+ /* update sspp */
+ if (!pipe->sspp->ops.setup_solidfill)
+ return;
+
+ pipe->sspp->ops.setup_solidfill(pipe, fill_color);
+
+ /* override scaler/decimation if solid fill */
+ pipe_cfg.dst_rect = *dst_rect;
+
+ pipe_cfg.src_rect.x1 = 0;
+ pipe_cfg.src_rect.y1 = 0;
+ pipe_cfg.src_rect.x2 =
+ drm_rect_width(&pipe_cfg.dst_rect);
+ pipe_cfg.src_rect.y2 =
+ drm_rect_height(&pipe_cfg.dst_rect);
+
+ if (pipe->sspp->ops.setup_format)
+ pipe->sspp->ops.setup_format(pipe, fmt, DPU_SSPP_SOLID_FILL);
+
+ if (pipe->sspp->ops.setup_rects)
+ pipe->sspp->ops.setup_rects(pipe, &pipe_cfg);
+
+ _dpu_plane_setup_scaler(pipe, fmt, true, &pipe_cfg, pstate->rotation);
}
/**
@@ -681,15 +672,14 @@ static void _dpu_plane_setup_scaler(struct dpu_plane *pdpu,
* @pdpu: Pointer to DPU plane object
* @color: RGB fill color value, [23..16] Blue, [15..8] Green, [7..0] Red
* @alpha: 8-bit fill alpha value, 255 selects 100% alpha
- * Returns: 0 on success
*/
-static int _dpu_plane_color_fill(struct dpu_plane *pdpu,
+static void _dpu_plane_color_fill(struct dpu_plane *pdpu,
uint32_t color, uint32_t alpha)
{
const struct dpu_format *fmt;
const struct drm_plane *plane = &pdpu->base;
struct dpu_plane_state *pstate = to_dpu_plane_state(plane->state);
- struct dpu_hw_pipe_cfg pipe_cfg;
+ u32 fill_color = (color & 0xFFFFFF) | ((alpha & 0xFF) << 24);
DPU_DEBUG_PLANE(pdpu, "\n");
@@ -698,156 +688,17 @@ static int _dpu_plane_color_fill(struct dpu_plane *pdpu,
* h/w only supports RGB variants
*/
fmt = dpu_get_dpu_format(DRM_FORMAT_ABGR8888);
+ /* should not happen ever */
+ if (!fmt)
+ return;
/* update sspp */
- if (fmt && pdpu->pipe_hw->ops.setup_solidfill) {
- pdpu->pipe_hw->ops.setup_solidfill(pdpu->pipe_hw,
- (color & 0xFFFFFF) | ((alpha & 0xFF) << 24),
- pstate->multirect_index);
-
- /* override scaler/decimation if solid fill */
- pipe_cfg.dst_rect = pstate->base.dst;
-
- pipe_cfg.src_rect.x1 = 0;
- pipe_cfg.src_rect.y1 = 0;
- pipe_cfg.src_rect.x2 =
- drm_rect_width(&pipe_cfg.dst_rect);
- pipe_cfg.src_rect.y2 =
- drm_rect_height(&pipe_cfg.dst_rect);
-
- if (pdpu->pipe_hw->ops.setup_format)
- pdpu->pipe_hw->ops.setup_format(pdpu->pipe_hw,
- fmt, DPU_SSPP_SOLID_FILL,
- pstate->multirect_index);
-
- if (pdpu->pipe_hw->ops.setup_rects)
- pdpu->pipe_hw->ops.setup_rects(pdpu->pipe_hw,
- &pipe_cfg,
- pstate->multirect_index);
-
- _dpu_plane_setup_scaler(pdpu, pstate, fmt, true, &pipe_cfg);
- }
-
- return 0;
-}
-
-void dpu_plane_clear_multirect(const struct drm_plane_state *drm_state)
-{
- struct dpu_plane_state *pstate = to_dpu_plane_state(drm_state);
+ _dpu_plane_color_fill_pipe(pstate, &pstate->pipe, &pstate->pipe_cfg.dst_rect,
+ fill_color, fmt);
- pstate->multirect_index = DPU_SSPP_RECT_SOLO;
- pstate->multirect_mode = DPU_SSPP_MULTIRECT_NONE;
-}
-
-int dpu_plane_validate_multirect_v2(struct dpu_multirect_plane_states *plane)
-{
- struct dpu_plane_state *pstate[R_MAX];
- const struct drm_plane_state *drm_state[R_MAX];
- struct drm_rect src[R_MAX], dst[R_MAX];
- struct dpu_plane *dpu_plane[R_MAX];
- const struct dpu_format *fmt[R_MAX];
- int i, buffer_lines;
- unsigned int max_tile_height = 1;
- bool parallel_fetch_qualified = true;
- bool has_tiled_rect = false;
-
- for (i = 0; i < R_MAX; i++) {
- const struct msm_format *msm_fmt;
-
- drm_state[i] = i ? plane->r1 : plane->r0;
- msm_fmt = msm_framebuffer_format(drm_state[i]->fb);
- fmt[i] = to_dpu_format(msm_fmt);
-
- if (DPU_FORMAT_IS_UBWC(fmt[i])) {
- has_tiled_rect = true;
- if (fmt[i]->tile_height > max_tile_height)
- max_tile_height = fmt[i]->tile_height;
- }
- }
-
- for (i = 0; i < R_MAX; i++) {
- int width_threshold;
-
- pstate[i] = to_dpu_plane_state(drm_state[i]);
- dpu_plane[i] = to_dpu_plane(drm_state[i]->plane);
-
- if (pstate[i] == NULL) {
- DPU_ERROR("DPU plane state of plane id %d is NULL\n",
- drm_state[i]->plane->base.id);
- return -EINVAL;
- }
-
- src[i].x1 = drm_state[i]->src_x >> 16;
- src[i].y1 = drm_state[i]->src_y >> 16;
- src[i].x2 = src[i].x1 + (drm_state[i]->src_w >> 16);
- src[i].y2 = src[i].y1 + (drm_state[i]->src_h >> 16);
-
- dst[i] = drm_plane_state_dest(drm_state[i]);
-
- if (drm_rect_calc_hscale(&src[i], &dst[i], 1, 1) != 1 ||
- drm_rect_calc_vscale(&src[i], &dst[i], 1, 1) != 1) {
- DPU_ERROR_PLANE(dpu_plane[i],
- "scaling is not supported in multirect mode\n");
- return -EINVAL;
- }
-
- if (DPU_FORMAT_IS_YUV(fmt[i])) {
- DPU_ERROR_PLANE(dpu_plane[i],
- "Unsupported format for multirect mode\n");
- return -EINVAL;
- }
-
- /**
- * SSPP PD_MEM is split half - one for each RECT.
- * Tiled formats need 5 lines of buffering while fetching
- * whereas linear formats need only 2 lines.
- * So we cannot support more than half of the supported SSPP
- * width for tiled formats.
- */
- width_threshold = dpu_plane[i]->catalog->caps->max_linewidth;
- if (has_tiled_rect)
- width_threshold /= 2;
-
- if (parallel_fetch_qualified &&
- drm_rect_width(&src[i]) > width_threshold)
- parallel_fetch_qualified = false;
-
- }
-
- /* Validate RECT's and set the mode */
-
- /* Prefer PARALLEL FETCH Mode over TIME_MX Mode */
- if (parallel_fetch_qualified) {
- pstate[R0]->multirect_mode = DPU_SSPP_MULTIRECT_PARALLEL;
- pstate[R1]->multirect_mode = DPU_SSPP_MULTIRECT_PARALLEL;
-
- goto done;
- }
-
- /* TIME_MX Mode */
- buffer_lines = 2 * max_tile_height;
-
- if (dst[R1].y1 >= dst[R0].y2 + buffer_lines ||
- dst[R0].y1 >= dst[R1].y2 + buffer_lines) {
- pstate[R0]->multirect_mode = DPU_SSPP_MULTIRECT_TIME_MX;
- pstate[R1]->multirect_mode = DPU_SSPP_MULTIRECT_TIME_MX;
- } else {
- DPU_ERROR(
- "No multirect mode possible for the planes (%d - %d)\n",
- drm_state[R0]->plane->base.id,
- drm_state[R1]->plane->base.id);
- return -EINVAL;
- }
-
-done:
- pstate[R0]->multirect_index = DPU_SSPP_RECT_0;
- pstate[R1]->multirect_index = DPU_SSPP_RECT_1;
-
- DPU_DEBUG_PLANE(dpu_plane[R0], "R0: %d - %d\n",
- pstate[R0]->multirect_mode, pstate[R0]->multirect_index);
- DPU_DEBUG_PLANE(dpu_plane[R1], "R1: %d - %d\n",
- pstate[R1]->multirect_mode, pstate[R1]->multirect_index);
- return 0;
+ if (pstate->r_pipe.sspp)
+ _dpu_plane_color_fill_pipe(pstate, &pstate->r_pipe, &pstate->r_pipe_cfg.dst_rect,
+ fill_color, fmt);
}
static int dpu_plane_prepare_fb(struct drm_plane *plane,
@@ -912,25 +763,6 @@ static void dpu_plane_cleanup_fb(struct drm_plane *plane,
old_pstate->needs_dirtyfb);
}
-static bool dpu_plane_validate_src(struct drm_rect *src,
- struct drm_rect *fb_rect,
- uint32_t min_src_size)
-{
- /* Ensure fb size is supported */
- if (drm_rect_width(fb_rect) > MAX_IMG_WIDTH ||
- drm_rect_height(fb_rect) > MAX_IMG_HEIGHT)
- return false;
-
- /* Ensure src rect is above the minimum size */
- if (drm_rect_width(src) < min_src_size ||
- drm_rect_height(src) < min_src_size)
- return false;
-
- /* Ensure src is fully encapsulated in fb */
- return drm_rect_intersect(fb_rect, src) &&
- drm_rect_equals(fb_rect, src);
-}
-
static int dpu_plane_check_inline_rotation(struct dpu_plane *pdpu,
const struct dpu_sspp_sub_blks *sblk,
struct drm_rect src, const struct dpu_format *fmt)
@@ -959,6 +791,53 @@ static int dpu_plane_check_inline_rotation(struct dpu_plane *pdpu,
return 0;
}
+static int dpu_plane_atomic_check_pipe(struct dpu_plane *pdpu,
+ struct dpu_sw_pipe *pipe,
+ struct dpu_sw_pipe_cfg *pipe_cfg,
+ const struct dpu_format *fmt)
+{
+ uint32_t min_src_size;
+
+ min_src_size = DPU_FORMAT_IS_YUV(fmt) ? 2 : 1;
+
+ if (DPU_FORMAT_IS_YUV(fmt) &&
+ (!(pipe->sspp->cap->features & DPU_SSPP_SCALER) ||
+ !(pipe->sspp->cap->features & DPU_SSPP_CSC_ANY))) {
+ DPU_DEBUG_PLANE(pdpu,
+ "plane doesn't have scaler/csc for yuv\n");
+ return -EINVAL;
+ }
+
+ /* check src bounds */
+ if (drm_rect_width(&pipe_cfg->src_rect) < min_src_size ||
+ drm_rect_height(&pipe_cfg->src_rect) < min_src_size) {
+ DPU_DEBUG_PLANE(pdpu, "invalid source " DRM_RECT_FMT "\n",
+ DRM_RECT_ARG(&pipe_cfg->src_rect));
+ return -E2BIG;
+ }
+
+ /* valid yuv image */
+ if (DPU_FORMAT_IS_YUV(fmt) &&
+ (pipe_cfg->src_rect.x1 & 0x1 ||
+ pipe_cfg->src_rect.y1 & 0x1 ||
+ drm_rect_width(&pipe_cfg->src_rect) & 0x1 ||
+ drm_rect_height(&pipe_cfg->src_rect) & 0x1)) {
+ DPU_DEBUG_PLANE(pdpu, "invalid yuv source " DRM_RECT_FMT "\n",
+ DRM_RECT_ARG(&pipe_cfg->src_rect));
+ return -EINVAL;
+ }
+
+ /* min dst support */
+ if (drm_rect_width(&pipe_cfg->dst_rect) < 0x1 ||
+ drm_rect_height(&pipe_cfg->dst_rect) < 0x1) {
+ DPU_DEBUG_PLANE(pdpu, "invalid dest rect " DRM_RECT_FMT "\n",
+ DRM_RECT_ARG(&pipe_cfg->dst_rect));
+ return -EINVAL;
+ }
+
+ return 0;
+}
+
static int dpu_plane_atomic_check(struct drm_plane *plane,
struct drm_atomic_state *state)
{
@@ -967,14 +846,18 @@ static int dpu_plane_atomic_check(struct drm_plane *plane,
int ret = 0, min_scale;
struct dpu_plane *pdpu = to_dpu_plane(plane);
struct dpu_plane_state *pstate = to_dpu_plane_state(new_plane_state);
+ struct dpu_sw_pipe *pipe = &pstate->pipe;
+ struct dpu_sw_pipe *r_pipe = &pstate->r_pipe;
const struct drm_crtc_state *crtc_state = NULL;
const struct dpu_format *fmt;
- struct drm_rect src, dst, fb_rect = { 0 };
- uint32_t min_src_size, max_linewidth;
+ struct dpu_sw_pipe_cfg *pipe_cfg = &pstate->pipe_cfg;
+ struct dpu_sw_pipe_cfg *r_pipe_cfg = &pstate->r_pipe_cfg;
+ struct drm_rect fb_rect = { 0 };
+ uint32_t max_linewidth;
unsigned int rotation;
uint32_t supported_rotations;
- const struct dpu_sspp_cfg *pipe_hw_caps = pdpu->pipe_hw->cap;
- const struct dpu_sspp_sub_blks *sblk = pdpu->pipe_hw->cap->sblk;
+ const struct dpu_sspp_cfg *pipe_hw_caps = pstate->pipe.sspp->cap;
+ const struct dpu_sspp_sub_blks *sblk = pstate->pipe.sspp->cap->sblk;
if (new_plane_state->crtc)
crtc_state = drm_atomic_get_new_crtc_state(state,
@@ -992,55 +875,99 @@ static int dpu_plane_atomic_check(struct drm_plane *plane,
if (!new_plane_state->visible)
return 0;
- src.x1 = new_plane_state->src_x >> 16;
- src.y1 = new_plane_state->src_y >> 16;
- src.x2 = src.x1 + (new_plane_state->src_w >> 16);
- src.y2 = src.y1 + (new_plane_state->src_h >> 16);
+ pipe->multirect_index = DPU_SSPP_RECT_SOLO;
+ pipe->multirect_mode = DPU_SSPP_MULTIRECT_NONE;
+ r_pipe->multirect_index = DPU_SSPP_RECT_SOLO;
+ r_pipe->multirect_mode = DPU_SSPP_MULTIRECT_NONE;
+ r_pipe->sspp = NULL;
+
+ pstate->stage = DPU_STAGE_0 + pstate->base.normalized_zpos;
+ if (pstate->stage >= pdpu->catalog->caps->max_mixer_blendstages) {
+ DPU_ERROR("> %d plane stages assigned\n",
+ pdpu->catalog->caps->max_mixer_blendstages - DPU_STAGE_0);
+ return -EINVAL;
+ }
+
+ pipe_cfg->src_rect = new_plane_state->src;
+
+ /* state->src is 16.16, src_rect is not */
+ pipe_cfg->src_rect.x1 >>= 16;
+ pipe_cfg->src_rect.x2 >>= 16;
+ pipe_cfg->src_rect.y1 >>= 16;
+ pipe_cfg->src_rect.y2 >>= 16;
- dst = drm_plane_state_dest(new_plane_state);
+ pipe_cfg->dst_rect = new_plane_state->dst;
fb_rect.x2 = new_plane_state->fb->width;
fb_rect.y2 = new_plane_state->fb->height;
- max_linewidth = pdpu->catalog->caps->max_linewidth;
+ /* Ensure fb size is supported */
+ if (drm_rect_width(&fb_rect) > MAX_IMG_WIDTH ||
+ drm_rect_height(&fb_rect) > MAX_IMG_HEIGHT) {
+ DPU_DEBUG_PLANE(pdpu, "invalid framebuffer " DRM_RECT_FMT "\n",
+ DRM_RECT_ARG(&fb_rect));
+ return -E2BIG;
+ }
fmt = to_dpu_format(msm_framebuffer_format(new_plane_state->fb));
- min_src_size = DPU_FORMAT_IS_YUV(fmt) ? 2 : 1;
+ max_linewidth = pdpu->catalog->caps->max_linewidth;
- if (DPU_FORMAT_IS_YUV(fmt) &&
- (!(pipe_hw_caps->features & DPU_SSPP_SCALER) ||
- !(pipe_hw_caps->features & DPU_SSPP_CSC_ANY))) {
- DPU_DEBUG_PLANE(pdpu,
- "plane doesn't have scaler/csc for yuv\n");
- return -EINVAL;
+ if (drm_rect_width(&pipe_cfg->src_rect) > max_linewidth) {
+ /*
+ * In parallel multirect case only the half of the usual width
+ * is supported for tiled formats. If we are here, we know that
+ * full width is more than max_linewidth, thus each rect is
+ * wider than allowed.
+ */
+ if (DPU_FORMAT_IS_UBWC(fmt)) {
+ DPU_DEBUG_PLANE(pdpu, "invalid src " DRM_RECT_FMT " line:%u, tiled format\n",
+ DRM_RECT_ARG(&pipe_cfg->src_rect), max_linewidth);
+ return -E2BIG;
+ }
- /* check src bounds */
- } else if (!dpu_plane_validate_src(&src, &fb_rect, min_src_size)) {
- DPU_DEBUG_PLANE(pdpu, "invalid source " DRM_RECT_FMT "\n",
- DRM_RECT_ARG(&src));
- return -E2BIG;
+ if (drm_rect_width(&pipe_cfg->src_rect) > 2 * max_linewidth) {
+ DPU_DEBUG_PLANE(pdpu, "invalid src " DRM_RECT_FMT " line:%u\n",
+ DRM_RECT_ARG(&pipe_cfg->src_rect), max_linewidth);
+ return -E2BIG;
+ }
- /* valid yuv image */
- } else if (DPU_FORMAT_IS_YUV(fmt) &&
- (src.x1 & 0x1 || src.y1 & 0x1 ||
- drm_rect_width(&src) & 0x1 ||
- drm_rect_height(&src) & 0x1)) {
- DPU_DEBUG_PLANE(pdpu, "invalid yuv source " DRM_RECT_FMT "\n",
- DRM_RECT_ARG(&src));
- return -EINVAL;
+ if (drm_rect_width(&pipe_cfg->src_rect) != drm_rect_width(&pipe_cfg->dst_rect) ||
+ drm_rect_height(&pipe_cfg->src_rect) != drm_rect_height(&pipe_cfg->dst_rect) ||
+ (!test_bit(DPU_SSPP_SMART_DMA_V1, &pipe->sspp->cap->features) &&
+ !test_bit(DPU_SSPP_SMART_DMA_V2, &pipe->sspp->cap->features)) ||
+ DPU_FORMAT_IS_YUV(fmt)) {
+ DPU_DEBUG_PLANE(pdpu, "invalid src " DRM_RECT_FMT " line:%u, can't use split source\n",
+ DRM_RECT_ARG(&pipe_cfg->src_rect), max_linewidth);
+ return -E2BIG;
+ }
- /* min dst support */
- } else if (drm_rect_width(&dst) < 0x1 || drm_rect_height(&dst) < 0x1) {
- DPU_DEBUG_PLANE(pdpu, "invalid dest rect " DRM_RECT_FMT "\n",
- DRM_RECT_ARG(&dst));
- return -EINVAL;
+ /*
+ * Use multirect for wide plane. We do not support dynamic
+ * assignment of SSPPs, so we know the configuration.
+ */
+ pipe->multirect_index = DPU_SSPP_RECT_0;
+ pipe->multirect_mode = DPU_SSPP_MULTIRECT_PARALLEL;
+
+ r_pipe->sspp = pipe->sspp;
+ r_pipe->multirect_index = DPU_SSPP_RECT_1;
+ r_pipe->multirect_mode = DPU_SSPP_MULTIRECT_PARALLEL;
+
+ *r_pipe_cfg = *pipe_cfg;
+ pipe_cfg->src_rect.x2 = (pipe_cfg->src_rect.x1 + pipe_cfg->src_rect.x2) >> 1;
+ pipe_cfg->dst_rect.x2 = (pipe_cfg->dst_rect.x1 + pipe_cfg->dst_rect.x2) >> 1;
+ r_pipe_cfg->src_rect.x1 = pipe_cfg->src_rect.x2;
+ r_pipe_cfg->dst_rect.x1 = pipe_cfg->dst_rect.x2;
+ }
- /* check decimated source width */
- } else if (drm_rect_width(&src) > max_linewidth) {
- DPU_DEBUG_PLANE(pdpu, "invalid src " DRM_RECT_FMT " line:%u\n",
- DRM_RECT_ARG(&src), max_linewidth);
- return -E2BIG;
+ ret = dpu_plane_atomic_check_pipe(pdpu, pipe, pipe_cfg, fmt);
+ if (ret)
+ return ret;
+
+ if (r_pipe->sspp) {
+ ret = dpu_plane_atomic_check_pipe(pdpu, r_pipe, r_pipe_cfg, fmt);
+ if (ret)
+ return ret;
}
supported_rotations = DRM_MODE_REFLECT_MASK | DRM_MODE_ROTATE_0;
@@ -1053,7 +980,7 @@ static int dpu_plane_atomic_check(struct drm_plane *plane,
if ((pipe_hw_caps->features & BIT(DPU_SSPP_INLINE_ROTATION)) &&
(rotation & DRM_MODE_ROTATE_90)) {
- ret = dpu_plane_check_inline_rotation(pdpu, sblk, src, fmt);
+ ret = dpu_plane_check_inline_rotation(pdpu, sblk, pipe_cfg->src_rect, fmt);
if (ret)
return ret;
}
@@ -1064,6 +991,28 @@ static int dpu_plane_atomic_check(struct drm_plane *plane,
return 0;
}
+static void dpu_plane_flush_csc(struct dpu_plane *pdpu, struct dpu_sw_pipe *pipe)
+{
+ const struct dpu_format *format =
+ to_dpu_format(msm_framebuffer_format(pdpu->base.state->fb));
+ const struct dpu_csc_cfg *csc_ptr;
+
+ if (!pipe->sspp || !pipe->sspp->ops.setup_csc)
+ return;
+
+ csc_ptr = _dpu_plane_get_csc(pipe, format);
+ if (!csc_ptr)
+ return;
+
+ DPU_DEBUG_PLANE(pdpu, "using 0x%X 0x%X 0x%X...\n",
+ csc_ptr->csc_mv[0],
+ csc_ptr->csc_mv[1],
+ csc_ptr->csc_mv[2]);
+
+ pipe->sspp->ops.setup_csc(pipe->sspp, csc_ptr);
+
+}
+
void dpu_plane_flush(struct drm_plane *plane)
{
struct dpu_plane *pdpu;
@@ -1087,12 +1036,9 @@ void dpu_plane_flush(struct drm_plane *plane)
else if (pdpu->color_fill & DPU_PLANE_COLOR_FILL_FLAG)
/* force 100% alpha */
_dpu_plane_color_fill(pdpu, pdpu->color_fill, 0xFF);
- else if (pdpu->pipe_hw && pdpu->pipe_hw->ops.setup_csc) {
- const struct dpu_format *fmt = to_dpu_format(msm_framebuffer_format(plane->state->fb));
- const struct dpu_csc_cfg *csc_ptr = _dpu_plane_get_csc(pdpu, fmt);
-
- if (csc_ptr)
- pdpu->pipe_hw->ops.setup_csc(pdpu->pipe_hw, csc_ptr);
+ else {
+ dpu_plane_flush_csc(pdpu, &pstate->pipe);
+ dpu_plane_flush_csc(pdpu, &pstate->r_pipe);
}
/* flag h/w flush complete */
@@ -1116,42 +1062,24 @@ void dpu_plane_set_error(struct drm_plane *plane, bool error)
pdpu->is_error = error;
}
-static void dpu_plane_sspp_atomic_update(struct drm_plane *plane)
+static void dpu_plane_sspp_update_pipe(struct drm_plane *plane,
+ struct dpu_sw_pipe *pipe,
+ struct dpu_sw_pipe_cfg *pipe_cfg,
+ const struct dpu_format *fmt,
+ int frame_rate,
+ struct dpu_hw_fmt_layout *layout)
{
uint32_t src_flags;
struct dpu_plane *pdpu = to_dpu_plane(plane);
struct drm_plane_state *state = plane->state;
struct dpu_plane_state *pstate = to_dpu_plane_state(state);
- struct drm_crtc *crtc = state->crtc;
- struct drm_framebuffer *fb = state->fb;
- bool is_rt_pipe, update_qos_remap;
- const struct dpu_format *fmt =
- to_dpu_format(msm_framebuffer_format(fb));
- struct dpu_hw_pipe_cfg pipe_cfg;
-
- memset(&pipe_cfg, 0, sizeof(struct dpu_hw_pipe_cfg));
-
- _dpu_plane_set_scanout(plane, pstate, &pipe_cfg, fb);
-
- pstate->pending = true;
-
- is_rt_pipe = (dpu_crtc_get_client_type(crtc) != NRT_CLIENT);
- _dpu_plane_set_qos_ctrl(plane, false, DPU_PLANE_QOS_PANIC_CTRL);
-
- DPU_DEBUG_PLANE(pdpu, "FB[%u] " DRM_RECT_FP_FMT "->crtc%u " DRM_RECT_FMT
- ", %4.4s ubwc %d\n", fb->base.id, DRM_RECT_FP_ARG(&state->src),
- crtc->base.id, DRM_RECT_ARG(&state->dst),
- (char *)&fmt->base.pixel_format, DPU_FORMAT_IS_UBWC(fmt));
- pipe_cfg.src_rect = state->src;
-
- /* state->src is 16.16, src_rect is not */
- pipe_cfg.src_rect.x1 >>= 16;
- pipe_cfg.src_rect.x2 >>= 16;
- pipe_cfg.src_rect.y1 >>= 16;
- pipe_cfg.src_rect.y2 >>= 16;
+ if (layout && pipe->sspp->ops.setup_sourceaddress) {
+ trace_dpu_plane_set_scanout(pipe, layout);
+ pipe->sspp->ops.setup_sourceaddress(pipe, layout);
+ }
- pipe_cfg.dst_rect = state->dst;
+ _dpu_plane_set_qos_ctrl(plane, pipe, false, DPU_PLANE_QOS_PANIC_CTRL);
/* override for color fill */
if (pdpu->color_fill & DPU_PLANE_COLOR_FILL_FLAG) {
@@ -1159,21 +1087,18 @@ static void dpu_plane_sspp_atomic_update(struct drm_plane *plane)
return;
}
- if (pdpu->pipe_hw->ops.setup_rects) {
- pdpu->pipe_hw->ops.setup_rects(pdpu->pipe_hw,
- &pipe_cfg,
- pstate->multirect_index);
+ if (pipe->sspp->ops.setup_rects) {
+ pipe->sspp->ops.setup_rects(pipe,
+ pipe_cfg);
}
- _dpu_plane_setup_scaler(pdpu, pstate, fmt, false, &pipe_cfg);
+ _dpu_plane_setup_scaler(pipe, fmt, false, pipe_cfg, pstate->rotation);
- if (pdpu->pipe_hw->ops.setup_multirect)
- pdpu->pipe_hw->ops.setup_multirect(
- pdpu->pipe_hw,
- pstate->multirect_index,
- pstate->multirect_mode);
+ if (pipe->sspp->ops.setup_multirect)
+ pipe->sspp->ops.setup_multirect(
+ pipe);
- if (pdpu->pipe_hw->ops.setup_format) {
+ if (pipe->sspp->ops.setup_format) {
unsigned int rotation = pstate->rotation;
src_flags = 0x0;
@@ -1188,10 +1113,9 @@ static void dpu_plane_sspp_atomic_update(struct drm_plane *plane)
src_flags |= DPU_SSPP_ROT_90;
/* update format */
- pdpu->pipe_hw->ops.setup_format(pdpu->pipe_hw, fmt, src_flags,
- pstate->multirect_index);
+ pipe->sspp->ops.setup_format(pipe, fmt, src_flags);
- if (pdpu->pipe_hw->ops.setup_cdp) {
+ if (pipe->sspp->ops.setup_cdp) {
struct dpu_hw_cdp_cfg cdp_cfg;
memset(&cdp_cfg, 0, sizeof(struct dpu_hw_cdp_cfg));
@@ -1205,41 +1129,100 @@ static void dpu_plane_sspp_atomic_update(struct drm_plane *plane)
DPU_FORMAT_IS_TILE(fmt);
cdp_cfg.preload_ahead = DPU_SSPP_CDP_PRELOAD_AHEAD_64;
- pdpu->pipe_hw->ops.setup_cdp(pdpu->pipe_hw, &cdp_cfg, pstate->multirect_index);
+ pipe->sspp->ops.setup_cdp(pipe, &cdp_cfg);
}
}
- _dpu_plane_set_qos_lut(plane, fb, &pipe_cfg);
- _dpu_plane_set_danger_lut(plane, fb);
+ _dpu_plane_set_qos_lut(plane, pipe, fmt, pipe_cfg);
+ _dpu_plane_set_danger_lut(plane, pipe, fmt);
if (plane->type != DRM_PLANE_TYPE_CURSOR) {
- _dpu_plane_set_qos_ctrl(plane, true, DPU_PLANE_QOS_PANIC_CTRL);
- _dpu_plane_set_ot_limit(plane, crtc, &pipe_cfg);
+ _dpu_plane_set_qos_ctrl(plane, pipe, true, DPU_PLANE_QOS_PANIC_CTRL);
+ _dpu_plane_set_ot_limit(plane, pipe, pipe_cfg, frame_rate);
}
- update_qos_remap = (is_rt_pipe != pdpu->is_rt_pipe) ||
- pstate->needs_qos_remap;
+ if (pstate->needs_qos_remap)
+ _dpu_plane_set_qos_remap(plane, pipe);
+}
+
+static void dpu_plane_sspp_atomic_update(struct drm_plane *plane)
+{
+ struct dpu_plane *pdpu = to_dpu_plane(plane);
+ struct drm_plane_state *state = plane->state;
+ struct dpu_plane_state *pstate = to_dpu_plane_state(state);
+ struct dpu_sw_pipe *pipe = &pstate->pipe;
+ struct dpu_sw_pipe *r_pipe = &pstate->r_pipe;
+ struct drm_crtc *crtc = state->crtc;
+ struct drm_framebuffer *fb = state->fb;
+ bool is_rt_pipe;
+ const struct dpu_format *fmt =
+ to_dpu_format(msm_framebuffer_format(fb));
+ struct dpu_sw_pipe_cfg *pipe_cfg = &pstate->pipe_cfg;
+ struct dpu_sw_pipe_cfg *r_pipe_cfg = &pstate->r_pipe_cfg;
+ struct dpu_kms *kms = _dpu_plane_get_kms(&pdpu->base);
+ struct msm_gem_address_space *aspace = kms->base.aspace;
+ struct dpu_hw_fmt_layout layout;
+ bool layout_valid = false;
+ int ret;
+
+ ret = dpu_format_populate_layout(aspace, fb, &layout);
+ if (ret)
+ DPU_ERROR_PLANE(pdpu, "failed to get format layout, %d\n", ret);
+ else
+ layout_valid = true;
+
+ pstate->pending = true;
+
+ is_rt_pipe = (dpu_crtc_get_client_type(crtc) != NRT_CLIENT);
+ pstate->needs_qos_remap |= (is_rt_pipe != pdpu->is_rt_pipe);
+ pdpu->is_rt_pipe = is_rt_pipe;
+
+ DPU_DEBUG_PLANE(pdpu, "FB[%u] " DRM_RECT_FP_FMT "->crtc%u " DRM_RECT_FMT
+ ", %4.4s ubwc %d\n", fb->base.id, DRM_RECT_FP_ARG(&state->src),
+ crtc->base.id, DRM_RECT_ARG(&state->dst),
+ (char *)&fmt->base.pixel_format, DPU_FORMAT_IS_UBWC(fmt));
- if (update_qos_remap) {
- if (is_rt_pipe != pdpu->is_rt_pipe)
- pdpu->is_rt_pipe = is_rt_pipe;
- else if (pstate->needs_qos_remap)
- pstate->needs_qos_remap = false;
- _dpu_plane_set_qos_remap(plane);
+ dpu_plane_sspp_update_pipe(plane, pipe, pipe_cfg, fmt,
+ drm_mode_vrefresh(&crtc->mode),
+ layout_valid ? &layout : NULL);
+
+ if (r_pipe->sspp) {
+ dpu_plane_sspp_update_pipe(plane, r_pipe, r_pipe_cfg, fmt,
+ drm_mode_vrefresh(&crtc->mode),
+ layout_valid ? &layout : NULL);
}
- _dpu_plane_calc_bw(plane, fb, &pipe_cfg);
+ if (pstate->needs_qos_remap)
+ pstate->needs_qos_remap = false;
+
+ pstate->plane_fetch_bw = _dpu_plane_calc_bw(pdpu->catalog, fmt,
+ &crtc->mode, pipe_cfg);
+
+ pstate->plane_clk = _dpu_plane_calc_clk(&crtc->mode, pipe_cfg);
+
+ if (r_pipe->sspp) {
+ pstate->plane_fetch_bw += _dpu_plane_calc_bw(pdpu->catalog, fmt, &crtc->mode, r_pipe_cfg);
- _dpu_plane_calc_clk(plane, &pipe_cfg);
+ pstate->plane_clk = max(pstate->plane_clk, _dpu_plane_calc_clk(&crtc->mode, r_pipe_cfg));
+ }
}
static void _dpu_plane_atomic_disable(struct drm_plane *plane)
{
struct drm_plane_state *state = plane->state;
struct dpu_plane_state *pstate = to_dpu_plane_state(state);
+ struct dpu_sw_pipe *r_pipe = &pstate->r_pipe;
trace_dpu_plane_disable(DRMID(plane), false,
- pstate->multirect_mode);
+ pstate->pipe.multirect_mode);
+
+ if (r_pipe->sspp) {
+ r_pipe->multirect_index = DPU_SSPP_RECT_SOLO;
+ r_pipe->multirect_mode = DPU_SSPP_MULTIRECT_NONE;
+
+ if (r_pipe->sspp->ops.setup_multirect)
+ r_pipe->sspp->ops.setup_multirect(r_pipe);
+ }
pstate->pending = true;
}
@@ -1265,19 +1248,22 @@ static void dpu_plane_atomic_update(struct drm_plane *plane,
static void dpu_plane_destroy(struct drm_plane *plane)
{
struct dpu_plane *pdpu = plane ? to_dpu_plane(plane) : NULL;
+ struct dpu_plane_state *pstate;
DPU_DEBUG_PLANE(pdpu, "\n");
if (pdpu) {
- _dpu_plane_set_qos_ctrl(plane, false, DPU_PLANE_QOS_PANIC_CTRL);
+ pstate = to_dpu_plane_state(plane->state);
+ _dpu_plane_set_qos_ctrl(plane, &pstate->pipe, false, DPU_PLANE_QOS_PANIC_CTRL);
+
+ if (pstate->r_pipe.sspp)
+ _dpu_plane_set_qos_ctrl(plane, &pstate->r_pipe, false, DPU_PLANE_QOS_PANIC_CTRL);
mutex_destroy(&pdpu->lock);
/* this will destroy the states as well */
drm_plane_cleanup(plane);
- dpu_hw_sspp_destroy(pdpu->pipe_hw);
-
kfree(pdpu);
}
}
@@ -1353,18 +1339,36 @@ static void dpu_plane_atomic_print_state(struct drm_printer *p,
const struct drm_plane_state *state)
{
const struct dpu_plane_state *pstate = to_dpu_plane_state(state);
- const struct dpu_plane *pdpu = to_dpu_plane(state->plane);
+ const struct dpu_sw_pipe *pipe = &pstate->pipe;
+ const struct dpu_sw_pipe_cfg *pipe_cfg = &pstate->pipe_cfg;
+ const struct dpu_sw_pipe *r_pipe = &pstate->r_pipe;
+ const struct dpu_sw_pipe_cfg *r_pipe_cfg = &pstate->r_pipe_cfg;
drm_printf(p, "\tstage=%d\n", pstate->stage);
- drm_printf(p, "\tsspp=%s\n", pdpu->pipe_hw->cap->name);
- drm_printf(p, "\tmultirect_mode=%s\n", dpu_get_multirect_mode(pstate->multirect_mode));
- drm_printf(p, "\tmultirect_index=%s\n", dpu_get_multirect_index(pstate->multirect_index));
+
+ drm_printf(p, "\tsspp[0]=%s\n", pipe->sspp->cap->name);
+ drm_printf(p, "\tmultirect_mode[0]=%s\n", dpu_get_multirect_mode(pipe->multirect_mode));
+ drm_printf(p, "\tmultirect_index[0]=%s\n",
+ dpu_get_multirect_index(pipe->multirect_index));
+ drm_printf(p, "\tsrc[0]=" DRM_RECT_FMT "\n", DRM_RECT_ARG(&pipe_cfg->src_rect));
+ drm_printf(p, "\tdst[0]=" DRM_RECT_FMT "\n", DRM_RECT_ARG(&pipe_cfg->dst_rect));
+
+ if (r_pipe->sspp) {
+ drm_printf(p, "\tsspp[1]=%s\n", r_pipe->sspp->cap->name);
+ drm_printf(p, "\tmultirect_mode[1]=%s\n",
+ dpu_get_multirect_mode(r_pipe->multirect_mode));
+ drm_printf(p, "\tmultirect_index[1]=%s\n",
+ dpu_get_multirect_index(r_pipe->multirect_index));
+ drm_printf(p, "\tsrc[1]=" DRM_RECT_FMT "\n", DRM_RECT_ARG(&r_pipe_cfg->src_rect));
+ drm_printf(p, "\tdst[1]=" DRM_RECT_FMT "\n", DRM_RECT_ARG(&r_pipe_cfg->dst_rect));
+ }
}
static void dpu_plane_reset(struct drm_plane *plane)
{
struct dpu_plane *pdpu;
struct dpu_plane_state *pstate;
+ struct dpu_kms *dpu_kms = _dpu_plane_get_kms(plane);
if (!plane) {
DPU_ERROR("invalid plane\n");
@@ -1386,6 +1390,16 @@ static void dpu_plane_reset(struct drm_plane *plane)
return;
}
+ /*
+ * Set the SSPP here until we have proper virtualized DPU planes.
+ * This is the place where the state is allocated, so fill it fully.
+ */
+ pstate->pipe.sspp = dpu_rm_get_sspp(&dpu_kms->rm, pdpu->pipe);
+ pstate->pipe.multirect_index = DPU_SSPP_RECT_SOLO;
+ pstate->pipe.multirect_mode = DPU_SSPP_MULTIRECT_NONE;
+
+ pstate->r_pipe.sspp = NULL;
+
__drm_atomic_helper_plane_reset(plane, &pstate->base);
}
@@ -1393,31 +1407,18 @@ static void dpu_plane_reset(struct drm_plane *plane)
void dpu_plane_danger_signal_ctrl(struct drm_plane *plane, bool enable)
{
struct dpu_plane *pdpu = to_dpu_plane(plane);
+ struct dpu_plane_state *pstate = to_dpu_plane_state(plane->state);
struct dpu_kms *dpu_kms = _dpu_plane_get_kms(plane);
if (!pdpu->is_rt_pipe)
return;
pm_runtime_get_sync(&dpu_kms->pdev->dev);
- _dpu_plane_set_qos_ctrl(plane, enable, DPU_PLANE_QOS_PANIC_CTRL);
+ _dpu_plane_set_qos_ctrl(plane, &pstate->pipe, enable, DPU_PLANE_QOS_PANIC_CTRL);
+ if (pstate->r_pipe.sspp)
+ _dpu_plane_set_qos_ctrl(plane, &pstate->r_pipe, enable, DPU_PLANE_QOS_PANIC_CTRL);
pm_runtime_put_sync(&dpu_kms->pdev->dev);
}
-
-/* SSPP live inside dpu_plane private data only. Enumerate them here. */
-void dpu_debugfs_sspp_init(struct dpu_kms *dpu_kms, struct dentry *debugfs_root)
-{
- struct drm_plane *plane;
- struct dentry *entry = debugfs_create_dir("sspp", debugfs_root);
-
- if (IS_ERR(entry))
- return;
-
- drm_for_each_plane(plane, dpu_kms->dev) {
- struct dpu_plane *pdpu = to_dpu_plane(plane);
-
- _dpu_hw_sspp_init_debugfs(pdpu->pipe_hw, dpu_kms, entry);
- }
-}
#endif
static bool dpu_plane_format_mod_supported(struct drm_plane *plane,
@@ -1451,11 +1452,6 @@ static const struct drm_plane_helper_funcs dpu_plane_helper_funcs = {
.atomic_update = dpu_plane_atomic_update,
};
-enum dpu_sspp dpu_plane_pipe(struct drm_plane *plane)
-{
- return plane ? to_dpu_plane(plane)->pipe : SSPP_NONE;
-}
-
/* initialize plane */
struct drm_plane *dpu_plane_init(struct drm_device *dev,
uint32_t pipe, enum drm_plane_type type,
@@ -1466,6 +1462,7 @@ struct drm_plane *dpu_plane_init(struct drm_device *dev,
struct dpu_plane *pdpu;
struct msm_drm_private *priv = dev->dev_private;
struct dpu_kms *kms = to_dpu_kms(priv->kms);
+ struct dpu_hw_sspp *pipe_hw;
uint32_t num_formats;
uint32_t supported_rotations;
int ret = -EINVAL;
@@ -1483,24 +1480,20 @@ struct drm_plane *dpu_plane_init(struct drm_device *dev,
pdpu->pipe = pipe;
/* initialize underlying h/w driver */
- pdpu->pipe_hw = dpu_hw_sspp_init(pipe, kms->mmio, kms->catalog);
- if (IS_ERR(pdpu->pipe_hw)) {
- DPU_ERROR("[%u]SSPP init failed\n", pipe);
- ret = PTR_ERR(pdpu->pipe_hw);
+ pipe_hw = dpu_rm_get_sspp(&kms->rm, pipe);
+ if (!pipe_hw || !pipe_hw->cap || !pipe_hw->cap->sblk) {
+ DPU_ERROR("[%u]SSPP is invalid\n", pipe);
goto clean_plane;
- } else if (!pdpu->pipe_hw->cap || !pdpu->pipe_hw->cap->sblk) {
- DPU_ERROR("[%u]SSPP init returned invalid cfg\n", pipe);
- goto clean_sspp;
}
- format_list = pdpu->pipe_hw->cap->sblk->format_list;
- num_formats = pdpu->pipe_hw->cap->sblk->num_formats;
+ format_list = pipe_hw->cap->sblk->format_list;
+ num_formats = pipe_hw->cap->sblk->num_formats;
ret = drm_universal_plane_init(dev, plane, 0xff, &dpu_plane_funcs,
format_list, num_formats,
supported_format_modifiers, type, NULL);
if (ret)
- goto clean_sspp;
+ goto clean_plane;
pdpu->catalog = kms->catalog;
@@ -1516,7 +1509,7 @@ struct drm_plane *dpu_plane_init(struct drm_device *dev,
supported_rotations = DRM_MODE_REFLECT_MASK | DRM_MODE_ROTATE_0 | DRM_MODE_ROTATE_180;
- if (pdpu->pipe_hw->cap->features & BIT(DPU_SSPP_INLINE_ROTATION))
+ if (pipe_hw->cap->features & BIT(DPU_SSPP_INLINE_ROTATION))
supported_rotations |= DRM_MODE_ROTATE_MASK;
drm_plane_create_rotation_property(plane,
@@ -1533,9 +1526,6 @@ struct drm_plane *dpu_plane_init(struct drm_device *dev,
pipe, plane->base.id);
return plane;
-clean_sspp:
- if (pdpu && pdpu->pipe_hw)
- dpu_hw_sspp_destroy(pdpu->pipe_hw);
clean_plane:
kfree(pdpu);
return ERR_PTR(ret);
diff --git a/drivers/gpu/drm/msm/disp/dpu1/dpu_plane.h b/drivers/gpu/drm/msm/disp/dpu1/dpu_plane.h
index b7b1b05199c2..abd6b21a049b 100644
--- a/drivers/gpu/drm/msm/disp/dpu1/dpu_plane.h
+++ b/drivers/gpu/drm/msm/disp/dpu1/dpu_plane.h
@@ -18,6 +18,10 @@
* struct dpu_plane_state: Define dpu extension of drm plane state object
* @base: base drm plane state object
* @aspace: pointer to address space for input/output buffers
+ * @pipe: software pipe description
+ * @r_pipe: software pipe description of the second pipe
+ * @pipe_cfg: software pipe configuration
+ * @r_pipe_cfg: software pipe configuration for the second pipe
* @stage: assigned by crtc blender
* @needs_qos_remap: qos remap settings need to be updated
* @multirect_index: index of the rectangle of SSPP
@@ -31,10 +35,12 @@
struct dpu_plane_state {
struct drm_plane_state base;
struct msm_gem_address_space *aspace;
+ struct dpu_sw_pipe pipe;
+ struct dpu_sw_pipe r_pipe;
+ struct dpu_sw_pipe_cfg pipe_cfg;
+ struct dpu_sw_pipe_cfg r_pipe_cfg;
enum dpu_stage stage;
bool needs_qos_remap;
- uint32_t multirect_index;
- uint32_t multirect_mode;
bool pending;
u64 plane_fetch_bw;
@@ -44,27 +50,10 @@ struct dpu_plane_state {
unsigned int rotation;
};
-/**
- * struct dpu_multirect_plane_states: Defines multirect pair of drm plane states
- * @r0: drm plane configured on rect 0
- * @r1: drm plane configured on rect 1
- */
-struct dpu_multirect_plane_states {
- const struct drm_plane_state *r0;
- const struct drm_plane_state *r1;
-};
-
#define to_dpu_plane_state(x) \
container_of(x, struct dpu_plane_state, base)
/**
- * dpu_plane_pipe - return sspp identifier for the given plane
- * @plane: Pointer to DRM plane object
- * Returns: sspp identifier of the given plane
- */
-enum dpu_sspp dpu_plane_pipe(struct drm_plane *plane);
-
-/**
* dpu_plane_flush - final plane operations before commit flush
* @plane: Pointer to drm plane structure
*/
@@ -89,19 +78,6 @@ struct drm_plane *dpu_plane_init(struct drm_device *dev,
unsigned long possible_crtcs);
/**
- * dpu_plane_validate_multirecti_v2 - validate the multirect planes
- * against hw limitations
- * @plane: drm plate states of the multirect pair
- */
-int dpu_plane_validate_multirect_v2(struct dpu_multirect_plane_states *plane);
-
-/**
- * dpu_plane_clear_multirect - clear multirect bits for the given pipe
- * @drm_state: Pointer to DRM plane state
- */
-void dpu_plane_clear_multirect(const struct drm_plane_state *drm_state);
-
-/**
* dpu_plane_color_fill - enables color fill on plane
* @plane: Pointer to DRM plane object
* @color: RGB fill color value, [23..16] Blue, [15..8] Green, [7..0] Red
diff --git a/drivers/gpu/drm/msm/disp/dpu1/dpu_rm.c b/drivers/gpu/drm/msm/disp/dpu1/dpu_rm.c
index 73b3442e7467..f4dda88a73f7 100644
--- a/drivers/gpu/drm/msm/disp/dpu1/dpu_rm.c
+++ b/drivers/gpu/drm/msm/disp/dpu1/dpu_rm.c
@@ -8,6 +8,7 @@
#include "dpu_hw_lm.h"
#include "dpu_hw_ctl.h"
#include "dpu_hw_pingpong.h"
+#include "dpu_hw_sspp.h"
#include "dpu_hw_intf.h"
#include "dpu_hw_wb.h"
#include "dpu_hw_dspp.h"
@@ -91,6 +92,9 @@ int dpu_rm_destroy(struct dpu_rm *rm)
for (i = 0; i < ARRAY_SIZE(rm->hw_wb); i++)
dpu_hw_wb_destroy(rm->hw_wb[i]);
+ for (i = 0; i < ARRAY_SIZE(rm->hw_sspp); i++)
+ dpu_hw_sspp_destroy(rm->hw_sspp[i]);
+
return 0;
}
@@ -255,6 +259,24 @@ int dpu_rm_init(struct dpu_rm *rm,
rm->dsc_blks[dsc->id - DSC_0] = &hw->base;
}
+ for (i = 0; i < cat->sspp_count; i++) {
+ struct dpu_hw_sspp *hw;
+ const struct dpu_sspp_cfg *sspp = &cat->sspp[i];
+
+ if (sspp->id < SSPP_NONE || sspp->id >= SSPP_MAX) {
+ DPU_ERROR("skip intf %d with invalid id\n", sspp->id);
+ continue;
+ }
+
+ hw = dpu_hw_sspp_init(sspp->id, mmio, cat);
+ if (IS_ERR(hw)) {
+ rc = PTR_ERR(hw);
+ DPU_ERROR("failed sspp object creation: err %d\n", rc);
+ goto fail;
+ }
+ rm->hw_sspp[sspp->id - SSPP_NONE] = hw;
+ }
+
return 0;
fail:
@@ -496,6 +518,11 @@ static int _dpu_rm_reserve_dsc(struct dpu_rm *rm,
/* check if DSC required are allocated or not */
for (i = 0; i < num_dsc; i++) {
+ if (!rm->dsc_blks[i]) {
+ DPU_ERROR("DSC %d does not exist\n", i);
+ return -EIO;
+ }
+
if (global_state->dsc_to_enc_id[i]) {
DPU_ERROR("DSC %d is already allocated\n", i);
return -EIO;
@@ -543,8 +570,8 @@ static int _dpu_rm_populate_requirements(
{
reqs->topology = req_topology;
- DRM_DEBUG_KMS("num_lm: %d num_enc: %d num_intf: %d\n",
- reqs->topology.num_lm, reqs->topology.num_enc,
+ DRM_DEBUG_KMS("num_lm: %d num_dsc: %d num_intf: %d\n",
+ reqs->topology.num_lm, reqs->topology.num_dsc,
reqs->topology.num_intf);
return 0;
@@ -572,6 +599,8 @@ void dpu_rm_release(struct dpu_global_state *global_state,
ARRAY_SIZE(global_state->ctl_to_enc_id), enc->base.id);
_dpu_rm_clear_mapping(global_state->dsc_to_enc_id,
ARRAY_SIZE(global_state->dsc_to_enc_id), enc->base.id);
+ _dpu_rm_clear_mapping(global_state->dspp_to_enc_id,
+ ARRAY_SIZE(global_state->dspp_to_enc_id), enc->base.id);
}
int dpu_rm_reserve(
@@ -660,6 +689,11 @@ int dpu_rm_get_assigned_resources(struct dpu_rm *rm,
blks_size, enc_id);
break;
}
+ if (!hw_blks[i]) {
+ DPU_ERROR("Allocated resource %d unavailable to assign to enc %d\n",
+ type, enc_id);
+ break;
+ }
blks[num_blks++] = hw_blks[i];
}
diff --git a/drivers/gpu/drm/msm/disp/dpu1/dpu_rm.h b/drivers/gpu/drm/msm/disp/dpu1/dpu_rm.h
index 59de72b381f9..d62c2edb2460 100644
--- a/drivers/gpu/drm/msm/disp/dpu1/dpu_rm.h
+++ b/drivers/gpu/drm/msm/disp/dpu1/dpu_rm.h
@@ -21,6 +21,7 @@ struct dpu_global_state;
* @hw_intf: array of intf hardware resources
* @hw_wb: array of wb hardware resources
* @dspp_blks: array of dspp hardware resources
+ * @hw_sspp: array of sspp hardware resources
*/
struct dpu_rm {
struct dpu_hw_blk *pingpong_blks[PINGPONG_MAX - PINGPONG_0];
@@ -31,6 +32,7 @@ struct dpu_rm {
struct dpu_hw_blk *dspp_blks[DSPP_MAX - DSPP_0];
struct dpu_hw_blk *merge_3d_blks[MERGE_3D_MAX - MERGE_3D_0];
struct dpu_hw_blk *dsc_blks[DSC_MAX - DSC_0];
+ struct dpu_hw_sspp *hw_sspp[SSPP_MAX - SSPP_NONE];
};
/**
@@ -108,5 +110,15 @@ static inline struct dpu_hw_wb *dpu_rm_get_wb(struct dpu_rm *rm, enum dpu_wb wb_
return rm->hw_wb[wb_idx - WB_0];
}
+/**
+ * dpu_rm_get_sspp - Return a struct dpu_hw_sspp instance given it's index.
+ * @rm: DPU Resource Manager handle
+ * @sspp_idx: SSPP index
+ */
+static inline struct dpu_hw_sspp *dpu_rm_get_sspp(struct dpu_rm *rm, enum dpu_sspp sspp_idx)
+{
+ return rm->hw_sspp[sspp_idx - SSPP_NONE];
+}
+
#endif /* __DPU_RM_H__ */
diff --git a/drivers/gpu/drm/msm/disp/dpu1/dpu_trace.h b/drivers/gpu/drm/msm/disp/dpu1/dpu_trace.h
index 76169f406505..0ad148cc2fb8 100644
--- a/drivers/gpu/drm/msm/disp/dpu1/dpu_trace.h
+++ b/drivers/gpu/drm/msm/disp/dpu1/dpu_trace.h
@@ -633,9 +633,9 @@ TRACE_EVENT(dpu_enc_phys_vid_irq_ctrl,
TRACE_EVENT(dpu_crtc_setup_mixer,
TP_PROTO(uint32_t crtc_id, uint32_t plane_id,
struct drm_plane_state *state, struct dpu_plane_state *pstate,
- uint32_t stage_idx, enum dpu_sspp sspp, uint32_t pixel_format,
+ uint32_t stage_idx, uint32_t pixel_format,
uint64_t modifier),
- TP_ARGS(crtc_id, plane_id, state, pstate, stage_idx, sspp,
+ TP_ARGS(crtc_id, plane_id, state, pstate, stage_idx,
pixel_format, modifier),
TP_STRUCT__entry(
__field( uint32_t, crtc_id )
@@ -659,9 +659,9 @@ TRACE_EVENT(dpu_crtc_setup_mixer,
__entry->dst_rect = drm_plane_state_dest(state);
__entry->stage_idx = stage_idx;
__entry->stage = pstate->stage;
- __entry->sspp = sspp;
- __entry->multirect_idx = pstate->multirect_index;
- __entry->multirect_mode = pstate->multirect_mode;
+ __entry->sspp = pstate->pipe.sspp->idx;
+ __entry->multirect_idx = pstate->pipe.multirect_index;
+ __entry->multirect_mode = pstate->pipe.multirect_mode;
__entry->pixel_format = pixel_format;
__entry->modifier = modifier;
),
@@ -762,18 +762,17 @@ TRACE_EVENT(dpu_crtc_disable_frame_pending,
);
TRACE_EVENT(dpu_plane_set_scanout,
- TP_PROTO(enum dpu_sspp index, struct dpu_hw_fmt_layout *layout,
- enum dpu_sspp_multirect_index multirect_index),
- TP_ARGS(index, layout, multirect_index),
+ TP_PROTO(struct dpu_sw_pipe *pipe, struct dpu_hw_fmt_layout *layout),
+ TP_ARGS(pipe, layout),
TP_STRUCT__entry(
__field( enum dpu_sspp, index )
__field_struct( struct dpu_hw_fmt_layout, layout )
__field( enum dpu_sspp_multirect_index, multirect_index)
),
TP_fast_assign(
- __entry->index = index;
+ __entry->index = pipe->sspp->idx;
__entry->layout = *layout;
- __entry->multirect_index = multirect_index;
+ __entry->multirect_index = pipe->multirect_index;
),
TP_printk("index:%d layout:{%ux%u @ [%u/%u, %u/%u, %u/%u, %u/%u]} "
"multirect_index:%d", __entry->index, __entry->layout.width,
diff --git a/drivers/gpu/drm/msm/disp/dpu1/dpu_writeback.c b/drivers/gpu/drm/msm/disp/dpu1/dpu_writeback.c
index 088ec990a2f2..2a5a68366582 100644
--- a/drivers/gpu/drm/msm/disp/dpu1/dpu_writeback.c
+++ b/drivers/gpu/drm/msm/disp/dpu1/dpu_writeback.c
@@ -70,6 +70,8 @@ int dpu_writeback_init(struct drm_device *dev, struct drm_encoder *enc,
int rc = 0;
dpu_wb_conn = devm_kzalloc(dev->dev, sizeof(*dpu_wb_conn), GFP_KERNEL);
+ if (!dpu_wb_conn)
+ return -ENOMEM;
drm_connector_helper_add(&dpu_wb_conn->base.base, &dpu_wb_conn_helper_funcs);
diff --git a/drivers/gpu/drm/msm/disp/mdp4/mdp4.xml.h b/drivers/gpu/drm/msm/disp/mdp4/mdp4.xml.h
index a2b6422948ec..cc8fde450884 100644
--- a/drivers/gpu/drm/msm/disp/mdp4/mdp4.xml.h
+++ b/drivers/gpu/drm/msm/disp/mdp4/mdp4.xml.h
@@ -8,26 +8,26 @@ http://github.com/freedreno/envytools/
git clone https://github.com/freedreno/envytools.git
The rules-ng-ng source files this header was generated from are:
-- /home/robclark/tmp/mesa/src/freedreno/registers/msm.xml ( 944 bytes, from 2022-03-03 01:18:13)
-- /home/robclark/tmp/mesa/src/freedreno/registers/freedreno_copyright.xml ( 1572 bytes, from 2020-12-31 19:26:32)
-- /home/robclark/tmp/mesa/src/freedreno/registers/mdp/mdp4.xml ( 20912 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/mdp/mdp_common.xml ( 2849 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/mdp/mdp5.xml ( 37461 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi.xml ( 17560 bytes, from 2021-09-16 22:37:02)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_v2.xml ( 3236 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_28nm_8960.xml ( 4935 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_28nm.xml ( 7004 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_20nm.xml ( 3712 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_14nm.xml ( 5381 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_10nm.xml ( 4499 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_7nm.xml ( 11007 bytes, from 2022-03-03 01:18:13)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/sfpb.xml ( 602 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/mmss_cc.xml ( 1686 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/hdmi/qfprom.xml ( 600 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/hdmi/hdmi.xml ( 41874 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/edp/edp.xml ( 10416 bytes, from 2021-01-30 18:25:22)
-
-Copyright (C) 2013-2021 by the following authors:
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/msm.xml ( 944 bytes, from 2022-07-23 20:21:46)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/freedreno_copyright.xml ( 1572 bytes, from 2022-07-23 20:21:46)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/mdp/mdp4.xml ( 20912 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/mdp/mdp_common.xml ( 2849 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/mdp/mdp5.xml ( 37461 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi.xml ( 18746 bytes, from 2022-04-28 17:29:36)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_v2.xml ( 3236 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_28nm_8960.xml ( 4935 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_28nm.xml ( 7004 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_20nm.xml ( 3712 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_14nm.xml ( 5381 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_10nm.xml ( 4499 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_7nm.xml ( 11007 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/sfpb.xml ( 602 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/mmss_cc.xml ( 1686 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/hdmi/qfprom.xml ( 600 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/hdmi/hdmi.xml ( 42350 bytes, from 2022-09-20 17:45:56)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/edp/edp.xml ( 10416 bytes, from 2022-03-08 17:40:42)
+
+Copyright (C) 2013-2022 by the following authors:
- Rob Clark <robdclark@gmail.com> (robclark)
- Ilia Mirkin <imirkin@alum.mit.edu> (imirkin)
diff --git a/drivers/gpu/drm/msm/disp/mdp4/mdp4_irq.c b/drivers/gpu/drm/msm/disp/mdp4/mdp4_irq.c
index 4d49f3ba6a96..ddcdd5e87853 100644
--- a/drivers/gpu/drm/msm/disp/mdp4/mdp4_irq.c
+++ b/drivers/gpu/drm/msm/disp/mdp4/mdp4_irq.c
@@ -69,8 +69,7 @@ irqreturn_t mdp4_irq(struct msm_kms *kms)
struct mdp_kms *mdp_kms = to_mdp_kms(kms);
struct mdp4_kms *mdp4_kms = to_mdp4_kms(mdp_kms);
struct drm_device *dev = mdp4_kms->dev;
- struct msm_drm_private *priv = dev->dev_private;
- unsigned int id;
+ struct drm_crtc *crtc;
uint32_t status, enable;
enable = mdp4_read(mdp4_kms, REG_MDP4_INTR_ENABLE);
@@ -81,9 +80,9 @@ irqreturn_t mdp4_irq(struct msm_kms *kms)
mdp_dispatch_irqs(mdp_kms, status);
- for (id = 0; id < priv->num_crtcs; id++)
- if (status & mdp4_crtc_vblank(priv->crtcs[id]))
- drm_handle_vblank(dev, id);
+ drm_for_each_crtc(crtc, dev)
+ if (status & mdp4_crtc_vblank(crtc))
+ drm_crtc_handle_vblank(crtc);
return IRQ_HANDLED;
}
diff --git a/drivers/gpu/drm/msm/disp/mdp4/mdp4_kms.c b/drivers/gpu/drm/msm/disp/mdp4/mdp4_kms.c
index 964573d26d26..6e37072ed302 100644
--- a/drivers/gpu/drm/msm/disp/mdp4/mdp4_kms.c
+++ b/drivers/gpu/drm/msm/disp/mdp4/mdp4_kms.c
@@ -84,10 +84,6 @@ static void mdp4_disable_commit(struct msm_kms *kms)
mdp4_disable(mdp4_kms);
}
-static void mdp4_prepare_commit(struct msm_kms *kms, struct drm_atomic_state *state)
-{
-}
-
static void mdp4_flush_commit(struct msm_kms *kms, unsigned crtc_mask)
{
/* TODO */
@@ -154,7 +150,6 @@ static const struct mdp_kms_funcs kms_funcs = {
.disable_vblank = mdp4_disable_vblank,
.enable_commit = mdp4_enable_commit,
.disable_commit = mdp4_disable_commit,
- .prepare_commit = mdp4_prepare_commit,
.flush_commit = mdp4_flush_commit,
.wait_flush = mdp4_wait_flush,
.complete_commit = mdp4_complete_commit,
@@ -387,7 +382,7 @@ static int mdp4_kms_init(struct drm_device *dev)
struct msm_drm_private *priv = dev->dev_private;
struct mdp4_kms *mdp4_kms;
struct msm_kms *kms = NULL;
- struct iommu_domain *iommu;
+ struct msm_mmu *mmu;
struct msm_gem_address_space *aspace;
int irq, ret;
u32 major, minor;
@@ -499,10 +494,15 @@ static int mdp4_kms_init(struct drm_device *dev)
mdp4_disable(mdp4_kms);
mdelay(16);
- iommu = iommu_domain_alloc(pdev->dev.bus);
- if (iommu) {
- struct msm_mmu *mmu = msm_iommu_new(&pdev->dev, iommu);
-
+ mmu = msm_iommu_new(&pdev->dev, 0);
+ if (IS_ERR(mmu)) {
+ ret = PTR_ERR(mmu);
+ goto fail;
+ } else if (!mmu) {
+ DRM_DEV_INFO(dev->dev, "no iommu, fallback to phys "
+ "contig buffers for scanout\n");
+ aspace = NULL;
+ } else {
aspace = msm_gem_address_space_create(mmu,
"mdp4", 0x1000, 0x100000000 - 0x1000);
@@ -514,10 +514,6 @@ static int mdp4_kms_init(struct drm_device *dev)
}
kms->aspace = aspace;
- } else {
- DRM_DEV_INFO(dev->dev, "no iommu, fallback to phys "
- "contig buffers for scanout\n");
- aspace = NULL;
}
ret = modeset_init(mdp4_kms);
diff --git a/drivers/gpu/drm/msm/disp/mdp5/mdp5.xml.h b/drivers/gpu/drm/msm/disp/mdp5/mdp5.xml.h
index 86fc44b518cb..270e11c904bd 100644
--- a/drivers/gpu/drm/msm/disp/mdp5/mdp5.xml.h
+++ b/drivers/gpu/drm/msm/disp/mdp5/mdp5.xml.h
@@ -8,26 +8,26 @@ http://github.com/freedreno/envytools/
git clone https://github.com/freedreno/envytools.git
The rules-ng-ng source files this header was generated from are:
-- /home/robclark/tmp/mesa/src/freedreno/registers/msm.xml ( 944 bytes, from 2022-03-03 01:18:13)
-- /home/robclark/tmp/mesa/src/freedreno/registers/freedreno_copyright.xml ( 1572 bytes, from 2020-12-31 19:26:32)
-- /home/robclark/tmp/mesa/src/freedreno/registers/mdp/mdp4.xml ( 20912 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/mdp/mdp_common.xml ( 2849 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/mdp/mdp5.xml ( 37461 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi.xml ( 17560 bytes, from 2021-09-16 22:37:02)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_v2.xml ( 3236 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_28nm_8960.xml ( 4935 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_28nm.xml ( 7004 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_20nm.xml ( 3712 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_14nm.xml ( 5381 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_10nm.xml ( 4499 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_7nm.xml ( 11007 bytes, from 2022-03-03 01:18:13)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/sfpb.xml ( 602 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/mmss_cc.xml ( 1686 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/hdmi/qfprom.xml ( 600 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/hdmi/hdmi.xml ( 41874 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/edp/edp.xml ( 10416 bytes, from 2021-01-30 18:25:22)
-
-Copyright (C) 2013-2021 by the following authors:
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/msm.xml ( 944 bytes, from 2022-07-23 20:21:46)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/freedreno_copyright.xml ( 1572 bytes, from 2022-07-23 20:21:46)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/mdp/mdp4.xml ( 20912 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/mdp/mdp_common.xml ( 2849 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/mdp/mdp5.xml ( 37461 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi.xml ( 18746 bytes, from 2022-04-28 17:29:36)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_v2.xml ( 3236 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_28nm_8960.xml ( 4935 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_28nm.xml ( 7004 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_20nm.xml ( 3712 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_14nm.xml ( 5381 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_10nm.xml ( 4499 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_7nm.xml ( 11007 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/sfpb.xml ( 602 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/mmss_cc.xml ( 1686 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/hdmi/qfprom.xml ( 600 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/hdmi/hdmi.xml ( 42350 bytes, from 2022-09-20 17:45:56)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/edp/edp.xml ( 10416 bytes, from 2022-03-08 17:40:42)
+
+Copyright (C) 2013-2022 by the following authors:
- Rob Clark <robdclark@gmail.com> (robclark)
- Ilia Mirkin <imirkin@alum.mit.edu> (imirkin)
diff --git a/drivers/gpu/drm/msm/disp/mdp5/mdp5_cfg.c b/drivers/gpu/drm/msm/disp/mdp5/mdp5_cfg.c
index 1f1555aa02d2..2eec2d78f32a 100644
--- a/drivers/gpu/drm/msm/disp/mdp5/mdp5_cfg.c
+++ b/drivers/gpu/drm/msm/disp/mdp5/mdp5_cfg.c
@@ -655,7 +655,7 @@ static const struct mdp5_cfg_hw msm8x96_config = {
.max_clk = 412500000,
};
-const struct mdp5_cfg_hw msm8x76_config = {
+static const struct mdp5_cfg_hw msm8x76_config = {
.name = "msm8x76",
.mdp = {
.count = 1,
diff --git a/drivers/gpu/drm/msm/disp/mdp5/mdp5_crtc.c b/drivers/gpu/drm/msm/disp/mdp5/mdp5_crtc.c
index e86421c69bd1..86036dd4e1e8 100644
--- a/drivers/gpu/drm/msm/disp/mdp5/mdp5_crtc.c
+++ b/drivers/gpu/drm/msm/disp/mdp5/mdp5_crtc.c
@@ -1139,7 +1139,10 @@ static void mdp5_crtc_reset(struct drm_crtc *crtc)
if (crtc->state)
mdp5_crtc_destroy_state(crtc, crtc->state);
- __drm_atomic_helper_crtc_reset(crtc, &mdp5_cstate->base);
+ if (mdp5_cstate)
+ __drm_atomic_helper_crtc_reset(crtc, &mdp5_cstate->base);
+ else
+ __drm_atomic_helper_crtc_reset(crtc, NULL);
}
static const struct drm_crtc_funcs mdp5_crtc_no_lm_cursor_funcs = {
diff --git a/drivers/gpu/drm/msm/disp/mdp5/mdp5_irq.c b/drivers/gpu/drm/msm/disp/mdp5/mdp5_irq.c
index 9b4c8d92ff32..43443a435d59 100644
--- a/drivers/gpu/drm/msm/disp/mdp5/mdp5_irq.c
+++ b/drivers/gpu/drm/msm/disp/mdp5/mdp5_irq.c
@@ -82,8 +82,7 @@ irqreturn_t mdp5_irq(struct msm_kms *kms)
struct mdp_kms *mdp_kms = to_mdp_kms(kms);
struct mdp5_kms *mdp5_kms = to_mdp5_kms(mdp_kms);
struct drm_device *dev = mdp5_kms->dev;
- struct msm_drm_private *priv = dev->dev_private;
- unsigned int id;
+ struct drm_crtc *crtc;
uint32_t status, enable;
enable = mdp5_read(mdp5_kms, REG_MDP5_INTR_EN);
@@ -94,9 +93,9 @@ irqreturn_t mdp5_irq(struct msm_kms *kms)
mdp_dispatch_irqs(mdp_kms, status);
- for (id = 0; id < priv->num_crtcs; id++)
- if (status & mdp5_crtc_vblank(priv->crtcs[id]))
- drm_handle_vblank(dev, id);
+ drm_for_each_crtc(crtc, dev)
+ if (status & mdp5_crtc_vblank(crtc))
+ drm_crtc_handle_vblank(crtc);
return IRQ_HANDLED;
}
diff --git a/drivers/gpu/drm/msm/disp/mdp5/mdp5_kms.c b/drivers/gpu/drm/msm/disp/mdp5/mdp5_kms.c
index b0d21838a134..29ae5c9613f3 100644
--- a/drivers/gpu/drm/msm/disp/mdp5/mdp5_kms.c
+++ b/drivers/gpu/drm/msm/disp/mdp5/mdp5_kms.c
@@ -203,7 +203,7 @@ static int mdp5_set_split_display(struct msm_kms *kms,
slave_encoder);
}
-static void mdp5_destroy(struct platform_device *pdev);
+static void mdp5_destroy(struct mdp5_kms *mdp5_kms);
static void mdp5_kms_destroy(struct msm_kms *kms)
{
@@ -223,7 +223,7 @@ static void mdp5_kms_destroy(struct msm_kms *kms)
}
mdp_kms_destroy(&mdp5_kms->base);
- mdp5_destroy(mdp5_kms->pdev);
+ mdp5_destroy(mdp5_kms);
}
#ifdef CONFIG_DEBUG_FS
@@ -559,6 +559,8 @@ static int mdp5_kms_init(struct drm_device *dev)
int irq, i, ret;
ret = mdp5_init(to_platform_device(dev->dev), dev);
+ if (ret)
+ return ret;
/* priv->kms would have been populated by the MDP5 driver */
kms = priv->kms;
@@ -632,9 +634,8 @@ fail:
return ret;
}
-static void mdp5_destroy(struct platform_device *pdev)
+static void mdp5_destroy(struct mdp5_kms *mdp5_kms)
{
- struct mdp5_kms *mdp5_kms = platform_get_drvdata(pdev);
int i;
if (mdp5_kms->ctlm)
@@ -648,7 +649,7 @@ static void mdp5_destroy(struct platform_device *pdev)
kfree(mdp5_kms->intfs[i]);
if (mdp5_kms->rpm_enabled)
- pm_runtime_disable(&pdev->dev);
+ pm_runtime_disable(&mdp5_kms->pdev->dev);
drm_atomic_private_obj_fini(&mdp5_kms->glob_state);
drm_modeset_lock_fini(&mdp5_kms->glob_state_lock);
@@ -797,8 +798,6 @@ static int mdp5_init(struct platform_device *pdev, struct drm_device *dev)
goto fail;
}
- platform_set_drvdata(pdev, mdp5_kms);
-
spin_lock_init(&mdp5_kms->resource_lock);
mdp5_kms->dev = dev;
@@ -839,6 +838,9 @@ static int mdp5_init(struct platform_device *pdev, struct drm_device *dev)
*/
clk_set_rate(mdp5_kms->core_clk, 200000000);
+ /* set uninit-ed kms */
+ priv->kms = &mdp5_kms->base.base;
+
pm_runtime_enable(&pdev->dev);
mdp5_kms->rpm_enabled = true;
@@ -890,13 +892,10 @@ static int mdp5_init(struct platform_device *pdev, struct drm_device *dev)
if (ret)
goto fail;
- /* set uninit-ed kms */
- priv->kms = &mdp5_kms->base.base;
-
return 0;
fail:
if (mdp5_kms)
- mdp5_destroy(pdev);
+ mdp5_destroy(mdp5_kms);
return ret;
}
@@ -953,7 +952,8 @@ static int mdp5_dev_remove(struct platform_device *pdev)
static __maybe_unused int mdp5_runtime_suspend(struct device *dev)
{
struct platform_device *pdev = to_platform_device(dev);
- struct mdp5_kms *mdp5_kms = platform_get_drvdata(pdev);
+ struct msm_drm_private *priv = platform_get_drvdata(pdev);
+ struct mdp5_kms *mdp5_kms = to_mdp5_kms(to_mdp_kms(priv->kms));
DBG("");
@@ -963,7 +963,8 @@ static __maybe_unused int mdp5_runtime_suspend(struct device *dev)
static __maybe_unused int mdp5_runtime_resume(struct device *dev)
{
struct platform_device *pdev = to_platform_device(dev);
- struct mdp5_kms *mdp5_kms = platform_get_drvdata(pdev);
+ struct msm_drm_private *priv = platform_get_drvdata(pdev);
+ struct mdp5_kms *mdp5_kms = to_mdp5_kms(to_mdp_kms(priv->kms));
DBG("");
diff --git a/drivers/gpu/drm/msm/disp/mdp_common.xml.h b/drivers/gpu/drm/msm/disp/mdp_common.xml.h
index be759106b621..4dd8d7db2862 100644
--- a/drivers/gpu/drm/msm/disp/mdp_common.xml.h
+++ b/drivers/gpu/drm/msm/disp/mdp_common.xml.h
@@ -8,26 +8,26 @@ http://github.com/freedreno/envytools/
git clone https://github.com/freedreno/envytools.git
The rules-ng-ng source files this header was generated from are:
-- /home/robclark/tmp/mesa/src/freedreno/registers/msm.xml ( 944 bytes, from 2022-03-03 01:18:13)
-- /home/robclark/tmp/mesa/src/freedreno/registers/freedreno_copyright.xml ( 1572 bytes, from 2020-12-31 19:26:32)
-- /home/robclark/tmp/mesa/src/freedreno/registers/mdp/mdp4.xml ( 20912 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/mdp/mdp_common.xml ( 2849 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/mdp/mdp5.xml ( 37461 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi.xml ( 17560 bytes, from 2021-09-16 22:37:02)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_v2.xml ( 3236 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_28nm_8960.xml ( 4935 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_28nm.xml ( 7004 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_20nm.xml ( 3712 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_14nm.xml ( 5381 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_10nm.xml ( 4499 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_7nm.xml ( 11007 bytes, from 2022-03-03 01:18:13)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/sfpb.xml ( 602 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/mmss_cc.xml ( 1686 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/hdmi/qfprom.xml ( 600 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/hdmi/hdmi.xml ( 41874 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/edp/edp.xml ( 10416 bytes, from 2021-01-30 18:25:22)
-
-Copyright (C) 2013-2021 by the following authors:
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/msm.xml ( 944 bytes, from 2022-07-23 20:21:46)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/freedreno_copyright.xml ( 1572 bytes, from 2022-07-23 20:21:46)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/mdp/mdp4.xml ( 20912 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/mdp/mdp_common.xml ( 2849 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/mdp/mdp5.xml ( 37461 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi.xml ( 18746 bytes, from 2022-04-28 17:29:36)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_v2.xml ( 3236 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_28nm_8960.xml ( 4935 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_28nm.xml ( 7004 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_20nm.xml ( 3712 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_14nm.xml ( 5381 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_10nm.xml ( 4499 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_7nm.xml ( 11007 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/sfpb.xml ( 602 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/mmss_cc.xml ( 1686 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/hdmi/qfprom.xml ( 600 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/hdmi/hdmi.xml ( 42350 bytes, from 2022-09-20 17:45:56)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/edp/edp.xml ( 10416 bytes, from 2022-03-08 17:40:42)
+
+Copyright (C) 2013-2022 by the following authors:
- Rob Clark <robdclark@gmail.com> (robclark)
- Ilia Mirkin <imirkin@alum.mit.edu> (imirkin)
diff --git a/drivers/gpu/drm/msm/dp/dp_aux.c b/drivers/gpu/drm/msm/dp/dp_aux.c
index d030a93a08c3..8e3b677f35e6 100644
--- a/drivers/gpu/drm/msm/dp/dp_aux.c
+++ b/drivers/gpu/drm/msm/dp/dp_aux.c
@@ -162,47 +162,6 @@ static ssize_t dp_aux_cmd_fifo_rx(struct dp_aux_private *aux,
return i;
}
-static void dp_aux_native_handler(struct dp_aux_private *aux, u32 isr)
-{
- if (isr & DP_INTR_AUX_I2C_DONE)
- aux->aux_error_num = DP_AUX_ERR_NONE;
- else if (isr & DP_INTR_WRONG_ADDR)
- aux->aux_error_num = DP_AUX_ERR_ADDR;
- else if (isr & DP_INTR_TIMEOUT)
- aux->aux_error_num = DP_AUX_ERR_TOUT;
- if (isr & DP_INTR_NACK_DEFER)
- aux->aux_error_num = DP_AUX_ERR_NACK;
- if (isr & DP_INTR_AUX_ERROR) {
- aux->aux_error_num = DP_AUX_ERR_PHY;
- dp_catalog_aux_clear_hw_interrupts(aux->catalog);
- }
-}
-
-static void dp_aux_i2c_handler(struct dp_aux_private *aux, u32 isr)
-{
- if (isr & DP_INTR_AUX_I2C_DONE) {
- if (isr & (DP_INTR_I2C_NACK | DP_INTR_I2C_DEFER))
- aux->aux_error_num = DP_AUX_ERR_NACK;
- else
- aux->aux_error_num = DP_AUX_ERR_NONE;
- } else {
- if (isr & DP_INTR_WRONG_ADDR)
- aux->aux_error_num = DP_AUX_ERR_ADDR;
- else if (isr & DP_INTR_TIMEOUT)
- aux->aux_error_num = DP_AUX_ERR_TOUT;
- if (isr & DP_INTR_NACK_DEFER)
- aux->aux_error_num = DP_AUX_ERR_NACK_DEFER;
- if (isr & DP_INTR_I2C_NACK)
- aux->aux_error_num = DP_AUX_ERR_NACK;
- if (isr & DP_INTR_I2C_DEFER)
- aux->aux_error_num = DP_AUX_ERR_DEFER;
- if (isr & DP_INTR_AUX_ERROR) {
- aux->aux_error_num = DP_AUX_ERR_PHY;
- dp_catalog_aux_clear_hw_interrupts(aux->catalog);
- }
- }
-}
-
static void dp_aux_update_offset_and_segment(struct dp_aux_private *aux,
struct drm_dp_aux_msg *input_msg)
{
@@ -409,29 +368,64 @@ exit:
return ret;
}
-void dp_aux_isr(struct drm_dp_aux *dp_aux)
+irqreturn_t dp_aux_isr(struct drm_dp_aux *dp_aux)
{
u32 isr;
struct dp_aux_private *aux;
if (!dp_aux) {
DRM_ERROR("invalid input\n");
- return;
+ return IRQ_NONE;
}
aux = container_of(dp_aux, struct dp_aux_private, dp_aux);
isr = dp_catalog_aux_get_irq(aux->catalog);
- if (!aux->cmd_busy)
- return;
+ /* no interrupts pending, return immediately */
+ if (!isr)
+ return IRQ_NONE;
- if (aux->native)
- dp_aux_native_handler(aux, isr);
- else
- dp_aux_i2c_handler(aux, isr);
+ if (!aux->cmd_busy) {
+ DRM_ERROR("Unexpected DP AUX IRQ %#010x when not busy\n", isr);
+ return IRQ_NONE;
+ }
+
+ /*
+ * The logic below assumes only one error bit is set (other than "done"
+ * which can apparently be set at the same time as some of the other
+ * bits). Warn if more than one get set so we know we need to improve
+ * the logic.
+ */
+ if (hweight32(isr & ~DP_INTR_AUX_XFER_DONE) > 1)
+ DRM_WARN("Some DP AUX interrupts unhandled: %#010x\n", isr);
+
+ if (isr & DP_INTR_AUX_ERROR) {
+ aux->aux_error_num = DP_AUX_ERR_PHY;
+ dp_catalog_aux_clear_hw_interrupts(aux->catalog);
+ } else if (isr & DP_INTR_NACK_DEFER) {
+ aux->aux_error_num = DP_AUX_ERR_NACK_DEFER;
+ } else if (isr & DP_INTR_WRONG_ADDR) {
+ aux->aux_error_num = DP_AUX_ERR_ADDR;
+ } else if (isr & DP_INTR_TIMEOUT) {
+ aux->aux_error_num = DP_AUX_ERR_TOUT;
+ } else if (!aux->native && (isr & DP_INTR_I2C_NACK)) {
+ aux->aux_error_num = DP_AUX_ERR_NACK;
+ } else if (!aux->native && (isr & DP_INTR_I2C_DEFER)) {
+ if (isr & DP_INTR_AUX_XFER_DONE)
+ aux->aux_error_num = DP_AUX_ERR_NACK;
+ else
+ aux->aux_error_num = DP_AUX_ERR_DEFER;
+ } else if (isr & DP_INTR_AUX_XFER_DONE) {
+ aux->aux_error_num = DP_AUX_ERR_NONE;
+ } else {
+ DRM_WARN("Unexpected interrupt: %#010x\n", isr);
+ return IRQ_NONE;
+ }
complete(&aux->comp);
+
+ return IRQ_HANDLED;
}
void dp_aux_reconfig(struct drm_dp_aux *dp_aux)
diff --git a/drivers/gpu/drm/msm/dp/dp_aux.h b/drivers/gpu/drm/msm/dp/dp_aux.h
index e930974bcb5b..511305da4f66 100644
--- a/drivers/gpu/drm/msm/dp/dp_aux.h
+++ b/drivers/gpu/drm/msm/dp/dp_aux.h
@@ -11,7 +11,7 @@
int dp_aux_register(struct drm_dp_aux *dp_aux);
void dp_aux_unregister(struct drm_dp_aux *dp_aux);
-void dp_aux_isr(struct drm_dp_aux *dp_aux);
+irqreturn_t dp_aux_isr(struct drm_dp_aux *dp_aux);
void dp_aux_init(struct drm_dp_aux *dp_aux);
void dp_aux_deinit(struct drm_dp_aux *dp_aux);
void dp_aux_reconfig(struct drm_dp_aux *dp_aux);
diff --git a/drivers/gpu/drm/msm/dp/dp_catalog.c b/drivers/gpu/drm/msm/dp/dp_catalog.c
index 676279d0ca8d..7a8cf1c8233d 100644
--- a/drivers/gpu/drm/msm/dp/dp_catalog.c
+++ b/drivers/gpu/drm/msm/dp/dp_catalog.c
@@ -27,7 +27,7 @@
#define DP_INTF_CONFIG_DATABUS_WIDEN BIT(4)
#define DP_INTERRUPT_STATUS1 \
- (DP_INTR_AUX_I2C_DONE| \
+ (DP_INTR_AUX_XFER_DONE| \
DP_INTR_WRONG_ADDR | DP_INTR_TIMEOUT | \
DP_INTR_NACK_DEFER | DP_INTR_WRONG_DATA_CNT | \
DP_INTR_I2C_NACK | DP_INTR_I2C_DEFER | \
@@ -47,6 +47,14 @@
#define DP_INTERRUPT_STATUS2_MASK \
(DP_INTERRUPT_STATUS2 << DP_INTERRUPT_STATUS_MASK_SHIFT)
+#define DP_INTERRUPT_STATUS4 \
+ (PSR_UPDATE_INT | PSR_CAPTURE_INT | PSR_EXIT_INT | \
+ PSR_UPDATE_ERROR_INT | PSR_WAKE_ERROR_INT)
+
+#define DP_INTERRUPT_MASK4 \
+ (PSR_UPDATE_MASK | PSR_CAPTURE_MASK | PSR_EXIT_MASK | \
+ PSR_UPDATE_ERROR_MASK | PSR_WAKE_ERROR_MASK)
+
struct dp_catalog_private {
struct device *dev;
struct drm_device *drm_dev;
@@ -359,6 +367,23 @@ void dp_catalog_ctrl_lane_mapping(struct dp_catalog *dp_catalog)
ln_mapping);
}
+void dp_catalog_ctrl_psr_mainlink_enable(struct dp_catalog *dp_catalog,
+ bool enable)
+{
+ u32 val;
+ struct dp_catalog_private *catalog = container_of(dp_catalog,
+ struct dp_catalog_private, dp_catalog);
+
+ val = dp_read_link(catalog, REG_DP_MAINLINK_CTRL);
+
+ if (enable)
+ val |= DP_MAINLINK_CTRL_ENABLE;
+ else
+ val &= ~DP_MAINLINK_CTRL_ENABLE;
+
+ dp_write_link(catalog, REG_DP_MAINLINK_CTRL, val);
+}
+
void dp_catalog_ctrl_mainlink_ctrl(struct dp_catalog *dp_catalog,
bool enable)
{
@@ -610,6 +635,47 @@ void dp_catalog_ctrl_hpd_config(struct dp_catalog *dp_catalog)
dp_write_aux(catalog, REG_DP_DP_HPD_CTRL, DP_DP_HPD_CTRL_HPD_EN);
}
+static void dp_catalog_enable_sdp(struct dp_catalog_private *catalog)
+{
+ /* trigger sdp */
+ dp_write_link(catalog, MMSS_DP_SDP_CFG3, UPDATE_SDP);
+ dp_write_link(catalog, MMSS_DP_SDP_CFG3, 0x0);
+}
+
+void dp_catalog_ctrl_config_psr(struct dp_catalog *dp_catalog)
+{
+ struct dp_catalog_private *catalog = container_of(dp_catalog,
+ struct dp_catalog_private, dp_catalog);
+ u32 config;
+
+ /* enable PSR1 function */
+ config = dp_read_link(catalog, REG_PSR_CONFIG);
+ config |= PSR1_SUPPORTED;
+ dp_write_link(catalog, REG_PSR_CONFIG, config);
+
+ dp_write_ahb(catalog, REG_DP_INTR_MASK4, DP_INTERRUPT_MASK4);
+ dp_catalog_enable_sdp(catalog);
+}
+
+void dp_catalog_ctrl_set_psr(struct dp_catalog *dp_catalog, bool enter)
+{
+ struct dp_catalog_private *catalog = container_of(dp_catalog,
+ struct dp_catalog_private, dp_catalog);
+ u32 cmd;
+
+ cmd = dp_read_link(catalog, REG_PSR_CMD);
+
+ cmd &= ~(PSR_ENTER | PSR_EXIT);
+
+ if (enter)
+ cmd |= PSR_ENTER;
+ else
+ cmd |= PSR_EXIT;
+
+ dp_catalog_enable_sdp(catalog);
+ dp_write_link(catalog, REG_PSR_CMD, cmd);
+}
+
u32 dp_catalog_link_is_connected(struct dp_catalog *dp_catalog)
{
struct dp_catalog_private *catalog = container_of(dp_catalog,
@@ -645,6 +711,20 @@ u32 dp_catalog_hpd_get_intr_status(struct dp_catalog *dp_catalog)
return isr & (mask | ~DP_DP_HPD_INT_MASK);
}
+u32 dp_catalog_ctrl_read_psr_interrupt_status(struct dp_catalog *dp_catalog)
+{
+ struct dp_catalog_private *catalog = container_of(dp_catalog,
+ struct dp_catalog_private, dp_catalog);
+ u32 intr, intr_ack;
+
+ intr = dp_read_ahb(catalog, REG_DP_INTR_STATUS4);
+ intr_ack = (intr & DP_INTERRUPT_STATUS4)
+ << DP_INTERRUPT_STATUS_ACK_SHIFT;
+ dp_write_ahb(catalog, REG_DP_INTR_STATUS4, intr_ack);
+
+ return intr;
+}
+
int dp_catalog_ctrl_get_interrupt(struct dp_catalog *dp_catalog)
{
struct dp_catalog_private *catalog = container_of(dp_catalog,
diff --git a/drivers/gpu/drm/msm/dp/dp_catalog.h b/drivers/gpu/drm/msm/dp/dp_catalog.h
index 1f717f45c115..82376a2697ef 100644
--- a/drivers/gpu/drm/msm/dp/dp_catalog.h
+++ b/drivers/gpu/drm/msm/dp/dp_catalog.h
@@ -13,7 +13,7 @@
/* interrupts */
#define DP_INTR_HPD BIT(0)
-#define DP_INTR_AUX_I2C_DONE BIT(3)
+#define DP_INTR_AUX_XFER_DONE BIT(3)
#define DP_INTR_WRONG_ADDR BIT(6)
#define DP_INTR_TIMEOUT BIT(9)
#define DP_INTR_NACK_DEFER BIT(12)
@@ -93,6 +93,7 @@ void dp_catalog_ctrl_state_ctrl(struct dp_catalog *dp_catalog, u32 state);
void dp_catalog_ctrl_config_ctrl(struct dp_catalog *dp_catalog, u32 config);
void dp_catalog_ctrl_lane_mapping(struct dp_catalog *dp_catalog);
void dp_catalog_ctrl_mainlink_ctrl(struct dp_catalog *dp_catalog, bool enable);
+void dp_catalog_ctrl_psr_mainlink_enable(struct dp_catalog *dp_catalog, bool enable);
void dp_catalog_ctrl_config_misc(struct dp_catalog *dp_catalog, u32 cc, u32 tb);
void dp_catalog_ctrl_config_msa(struct dp_catalog *dp_catalog, u32 rate,
u32 stream_rate_khz, bool fixed_nvid);
@@ -104,12 +105,15 @@ void dp_catalog_ctrl_enable_irq(struct dp_catalog *dp_catalog, bool enable);
void dp_catalog_hpd_config_intr(struct dp_catalog *dp_catalog,
u32 intr_mask, bool en);
void dp_catalog_ctrl_hpd_config(struct dp_catalog *dp_catalog);
+void dp_catalog_ctrl_config_psr(struct dp_catalog *dp_catalog);
+void dp_catalog_ctrl_set_psr(struct dp_catalog *dp_catalog, bool enter);
u32 dp_catalog_link_is_connected(struct dp_catalog *dp_catalog);
u32 dp_catalog_hpd_get_intr_status(struct dp_catalog *dp_catalog);
void dp_catalog_ctrl_phy_reset(struct dp_catalog *dp_catalog);
int dp_catalog_ctrl_update_vx_px(struct dp_catalog *dp_catalog, u8 v_level,
u8 p_level);
int dp_catalog_ctrl_get_interrupt(struct dp_catalog *dp_catalog);
+u32 dp_catalog_ctrl_read_psr_interrupt_status(struct dp_catalog *dp_catalog);
void dp_catalog_ctrl_update_transfer_unit(struct dp_catalog *dp_catalog,
u32 dp_tu, u32 valid_boundary,
u32 valid_boundary2);
diff --git a/drivers/gpu/drm/msm/dp/dp_ctrl.c b/drivers/gpu/drm/msm/dp/dp_ctrl.c
index dd26ca651a05..a7a5c7e0ab92 100644
--- a/drivers/gpu/drm/msm/dp/dp_ctrl.c
+++ b/drivers/gpu/drm/msm/dp/dp_ctrl.c
@@ -22,6 +22,7 @@
#define DP_KHZ_TO_HZ 1000
#define IDLE_PATTERN_COMPLETION_TIMEOUT_JIFFIES (30 * HZ / 1000) /* 30 ms */
+#define PSR_OPERATION_COMPLETION_TIMEOUT_JIFFIES (300 * HZ / 1000) /* 300 ms */
#define WAIT_FOR_VIDEO_READY_TIMEOUT_JIFFIES (HZ / 2)
#define DP_CTRL_INTR_READY_FOR_VIDEO BIT(0)
@@ -80,6 +81,7 @@ struct dp_ctrl_private {
struct dp_catalog *catalog;
struct completion idle_comp;
+ struct completion psr_op_comp;
struct completion video_comp;
};
@@ -153,6 +155,9 @@ static void dp_ctrl_config_ctrl(struct dp_ctrl_private *ctrl)
config |= DP_CONFIGURATION_CTRL_STATIC_DYNAMIC_CN;
config |= DP_CONFIGURATION_CTRL_SYNC_ASYNC_CLK;
+ if (ctrl->panel->psr_cap.version)
+ config |= DP_CONFIGURATION_CTRL_SEND_VSC;
+
dp_catalog_ctrl_config_ctrl(ctrl->catalog, config);
}
@@ -1375,6 +1380,64 @@ void dp_ctrl_reset_irq_ctrl(struct dp_ctrl *dp_ctrl, bool enable)
dp_catalog_ctrl_enable_irq(ctrl->catalog, enable);
}
+void dp_ctrl_config_psr(struct dp_ctrl *dp_ctrl)
+{
+ u8 cfg;
+ struct dp_ctrl_private *ctrl = container_of(dp_ctrl,
+ struct dp_ctrl_private, dp_ctrl);
+
+ if (!ctrl->panel->psr_cap.version)
+ return;
+
+ dp_catalog_ctrl_config_psr(ctrl->catalog);
+
+ cfg = DP_PSR_ENABLE;
+ drm_dp_dpcd_write(ctrl->aux, DP_PSR_EN_CFG, &cfg, 1);
+}
+
+void dp_ctrl_set_psr(struct dp_ctrl *dp_ctrl, bool enter)
+{
+ struct dp_ctrl_private *ctrl = container_of(dp_ctrl,
+ struct dp_ctrl_private, dp_ctrl);
+
+ if (!ctrl->panel->psr_cap.version)
+ return;
+
+ /*
+ * When entering PSR,
+ * 1. Send PSR enter SDP and wait for the PSR_UPDATE_INT
+ * 2. Turn off video
+ * 3. Disable the mainlink
+ *
+ * When exiting PSR,
+ * 1. Enable the mainlink
+ * 2. Send the PSR exit SDP
+ */
+ if (enter) {
+ reinit_completion(&ctrl->psr_op_comp);
+ dp_catalog_ctrl_set_psr(ctrl->catalog, true);
+
+ if (!wait_for_completion_timeout(&ctrl->psr_op_comp,
+ PSR_OPERATION_COMPLETION_TIMEOUT_JIFFIES)) {
+ DRM_ERROR("PSR_ENTRY timedout\n");
+ dp_catalog_ctrl_set_psr(ctrl->catalog, false);
+ return;
+ }
+
+ dp_ctrl_push_idle(dp_ctrl);
+ dp_catalog_ctrl_state_ctrl(ctrl->catalog, 0);
+
+ dp_catalog_ctrl_psr_mainlink_enable(ctrl->catalog, false);
+ } else {
+ dp_catalog_ctrl_psr_mainlink_enable(ctrl->catalog, true);
+
+ dp_catalog_ctrl_set_psr(ctrl->catalog, false);
+ dp_catalog_ctrl_state_ctrl(ctrl->catalog, DP_STATE_CTRL_SEND_VIDEO);
+ dp_ctrl_wait4video_ready(ctrl);
+ dp_catalog_ctrl_state_ctrl(ctrl->catalog, 0);
+ }
+}
+
void dp_ctrl_phy_init(struct dp_ctrl *dp_ctrl)
{
struct dp_ctrl_private *ctrl;
@@ -1979,27 +2042,49 @@ int dp_ctrl_off(struct dp_ctrl *dp_ctrl)
return ret;
}
-void dp_ctrl_isr(struct dp_ctrl *dp_ctrl)
+irqreturn_t dp_ctrl_isr(struct dp_ctrl *dp_ctrl)
{
struct dp_ctrl_private *ctrl;
u32 isr;
+ irqreturn_t ret = IRQ_NONE;
if (!dp_ctrl)
- return;
+ return IRQ_NONE;
ctrl = container_of(dp_ctrl, struct dp_ctrl_private, dp_ctrl);
+ if (ctrl->panel->psr_cap.version) {
+ isr = dp_catalog_ctrl_read_psr_interrupt_status(ctrl->catalog);
+
+ if (isr)
+ complete(&ctrl->psr_op_comp);
+
+ if (isr & PSR_EXIT_INT)
+ drm_dbg_dp(ctrl->drm_dev, "PSR exit done\n");
+
+ if (isr & PSR_UPDATE_INT)
+ drm_dbg_dp(ctrl->drm_dev, "PSR frame update done\n");
+
+ if (isr & PSR_CAPTURE_INT)
+ drm_dbg_dp(ctrl->drm_dev, "PSR frame capture done\n");
+ }
+
isr = dp_catalog_ctrl_get_interrupt(ctrl->catalog);
+
if (isr & DP_CTRL_INTR_READY_FOR_VIDEO) {
drm_dbg_dp(ctrl->drm_dev, "dp_video_ready\n");
complete(&ctrl->video_comp);
+ ret = IRQ_HANDLED;
}
if (isr & DP_CTRL_INTR_IDLE_PATTERN_SENT) {
drm_dbg_dp(ctrl->drm_dev, "idle_patterns_sent\n");
complete(&ctrl->idle_comp);
+ ret = IRQ_HANDLED;
}
+
+ return ret;
}
struct dp_ctrl *dp_ctrl_get(struct device *dev, struct dp_link *link,
@@ -2035,6 +2120,7 @@ struct dp_ctrl *dp_ctrl_get(struct device *dev, struct dp_link *link,
dev_err(dev, "failed to add DP OPP table\n");
init_completion(&ctrl->idle_comp);
+ init_completion(&ctrl->psr_op_comp);
init_completion(&ctrl->video_comp);
/* in parameters */
diff --git a/drivers/gpu/drm/msm/dp/dp_ctrl.h b/drivers/gpu/drm/msm/dp/dp_ctrl.h
index 9f29734af81c..f712780149fd 100644
--- a/drivers/gpu/drm/msm/dp/dp_ctrl.h
+++ b/drivers/gpu/drm/msm/dp/dp_ctrl.h
@@ -25,7 +25,7 @@ int dp_ctrl_off_link_stream(struct dp_ctrl *dp_ctrl);
int dp_ctrl_off_link(struct dp_ctrl *dp_ctrl);
int dp_ctrl_off(struct dp_ctrl *dp_ctrl);
void dp_ctrl_push_idle(struct dp_ctrl *dp_ctrl);
-void dp_ctrl_isr(struct dp_ctrl *dp_ctrl);
+irqreturn_t dp_ctrl_isr(struct dp_ctrl *dp_ctrl);
void dp_ctrl_handle_sink_request(struct dp_ctrl *dp_ctrl);
struct dp_ctrl *dp_ctrl_get(struct device *dev, struct dp_link *link,
struct dp_panel *panel, struct drm_dp_aux *aux,
@@ -37,4 +37,7 @@ void dp_ctrl_phy_init(struct dp_ctrl *dp_ctrl);
void dp_ctrl_phy_exit(struct dp_ctrl *dp_ctrl);
void dp_ctrl_irq_phy_exit(struct dp_ctrl *dp_ctrl);
+void dp_ctrl_set_psr(struct dp_ctrl *dp_ctrl, bool enable);
+void dp_ctrl_config_psr(struct dp_ctrl *dp_ctrl);
+
#endif /* _DP_CTRL_H_ */
diff --git a/drivers/gpu/drm/msm/dp/dp_display.c b/drivers/gpu/drm/msm/dp/dp_display.c
index a49f6dbbe888..3e13acdfa7e5 100644
--- a/drivers/gpu/drm/msm/dp/dp_display.c
+++ b/drivers/gpu/drm/msm/dp/dp_display.c
@@ -122,61 +122,64 @@ struct dp_display_private {
struct msm_dp_desc {
phys_addr_t io_start;
+ unsigned int id;
unsigned int connector_type;
bool wide_bus_en;
};
-struct msm_dp_config {
- const struct msm_dp_desc *descs;
- size_t num_descs;
-};
-
static const struct msm_dp_desc sc7180_dp_descs[] = {
- [MSM_DP_CONTROLLER_0] = { .io_start = 0x0ae90000, .connector_type = DRM_MODE_CONNECTOR_DisplayPort },
-};
-
-static const struct msm_dp_config sc7180_dp_cfg = {
- .descs = sc7180_dp_descs,
- .num_descs = ARRAY_SIZE(sc7180_dp_descs),
+ { .io_start = 0x0ae90000, .id = MSM_DP_CONTROLLER_0, .connector_type = DRM_MODE_CONNECTOR_DisplayPort },
+ {}
};
static const struct msm_dp_desc sc7280_dp_descs[] = {
- [MSM_DP_CONTROLLER_0] = { .io_start = 0x0ae90000, .connector_type = DRM_MODE_CONNECTOR_DisplayPort, .wide_bus_en = true },
- [MSM_DP_CONTROLLER_1] = { .io_start = 0x0aea0000, .connector_type = DRM_MODE_CONNECTOR_eDP, .wide_bus_en = true },
-};
-
-static const struct msm_dp_config sc7280_dp_cfg = {
- .descs = sc7280_dp_descs,
- .num_descs = ARRAY_SIZE(sc7280_dp_descs),
+ { .io_start = 0x0ae90000, .id = MSM_DP_CONTROLLER_0, .connector_type = DRM_MODE_CONNECTOR_DisplayPort, .wide_bus_en = true },
+ { .io_start = 0x0aea0000, .id = MSM_DP_CONTROLLER_1, .connector_type = DRM_MODE_CONNECTOR_eDP, .wide_bus_en = true },
+ {}
};
static const struct msm_dp_desc sc8180x_dp_descs[] = {
- [MSM_DP_CONTROLLER_0] = { .io_start = 0x0ae90000, .connector_type = DRM_MODE_CONNECTOR_DisplayPort },
- [MSM_DP_CONTROLLER_1] = { .io_start = 0x0ae98000, .connector_type = DRM_MODE_CONNECTOR_DisplayPort },
- [MSM_DP_CONTROLLER_2] = { .io_start = 0x0ae9a000, .connector_type = DRM_MODE_CONNECTOR_eDP },
+ { .io_start = 0x0ae90000, .id = MSM_DP_CONTROLLER_0, .connector_type = DRM_MODE_CONNECTOR_DisplayPort },
+ { .io_start = 0x0ae98000, .id = MSM_DP_CONTROLLER_1, .connector_type = DRM_MODE_CONNECTOR_DisplayPort },
+ { .io_start = 0x0ae9a000, .id = MSM_DP_CONTROLLER_2, .connector_type = DRM_MODE_CONNECTOR_eDP },
+ {}
};
-static const struct msm_dp_config sc8180x_dp_cfg = {
- .descs = sc8180x_dp_descs,
- .num_descs = ARRAY_SIZE(sc8180x_dp_descs),
+static const struct msm_dp_desc sc8280xp_dp_descs[] = {
+ { .io_start = 0x0ae90000, .id = MSM_DP_CONTROLLER_0, .connector_type = DRM_MODE_CONNECTOR_DisplayPort, .wide_bus_en = true },
+ { .io_start = 0x0ae98000, .id = MSM_DP_CONTROLLER_1, .connector_type = DRM_MODE_CONNECTOR_DisplayPort, .wide_bus_en = true },
+ { .io_start = 0x0ae9a000, .id = MSM_DP_CONTROLLER_2, .connector_type = DRM_MODE_CONNECTOR_DisplayPort, .wide_bus_en = true },
+ { .io_start = 0x0aea0000, .id = MSM_DP_CONTROLLER_3, .connector_type = DRM_MODE_CONNECTOR_DisplayPort, .wide_bus_en = true },
+ { .io_start = 0x22090000, .id = MSM_DP_CONTROLLER_0, .connector_type = DRM_MODE_CONNECTOR_DisplayPort, .wide_bus_en = true },
+ { .io_start = 0x22098000, .id = MSM_DP_CONTROLLER_1, .connector_type = DRM_MODE_CONNECTOR_DisplayPort, .wide_bus_en = true },
+ { .io_start = 0x2209a000, .id = MSM_DP_CONTROLLER_2, .connector_type = DRM_MODE_CONNECTOR_DisplayPort, .wide_bus_en = true },
+ { .io_start = 0x220a0000, .id = MSM_DP_CONTROLLER_3, .connector_type = DRM_MODE_CONNECTOR_DisplayPort, .wide_bus_en = true },
+ {}
};
-static const struct msm_dp_desc sm8350_dp_descs[] = {
- [MSM_DP_CONTROLLER_0] = { .io_start = 0x0ae90000, .connector_type = DRM_MODE_CONNECTOR_DisplayPort },
+static const struct msm_dp_desc sc8280xp_edp_descs[] = {
+ { .io_start = 0x0ae9a000, .id = MSM_DP_CONTROLLER_2, .connector_type = DRM_MODE_CONNECTOR_eDP, .wide_bus_en = true },
+ { .io_start = 0x0aea0000, .id = MSM_DP_CONTROLLER_3, .connector_type = DRM_MODE_CONNECTOR_eDP, .wide_bus_en = true },
+ { .io_start = 0x2209a000, .id = MSM_DP_CONTROLLER_2, .connector_type = DRM_MODE_CONNECTOR_eDP, .wide_bus_en = true },
+ { .io_start = 0x220a0000, .id = MSM_DP_CONTROLLER_3, .connector_type = DRM_MODE_CONNECTOR_eDP, .wide_bus_en = true },
+ {}
};
-static const struct msm_dp_config sm8350_dp_cfg = {
- .descs = sm8350_dp_descs,
- .num_descs = ARRAY_SIZE(sm8350_dp_descs),
+static const struct msm_dp_desc sm8350_dp_descs[] = {
+ { .io_start = 0x0ae90000, .id = MSM_DP_CONTROLLER_0, .connector_type = DRM_MODE_CONNECTOR_DisplayPort },
+ {}
};
static const struct of_device_id dp_dt_match[] = {
- { .compatible = "qcom,sc7180-dp", .data = &sc7180_dp_cfg },
- { .compatible = "qcom,sc7280-dp", .data = &sc7280_dp_cfg },
- { .compatible = "qcom,sc7280-edp", .data = &sc7280_dp_cfg },
- { .compatible = "qcom,sc8180x-dp", .data = &sc8180x_dp_cfg },
- { .compatible = "qcom,sc8180x-edp", .data = &sc8180x_dp_cfg },
- { .compatible = "qcom,sm8350-dp", .data = &sm8350_dp_cfg },
+ { .compatible = "qcom,sc7180-dp", .data = &sc7180_dp_descs },
+ { .compatible = "qcom,sc7280-dp", .data = &sc7280_dp_descs },
+ { .compatible = "qcom,sc7280-edp", .data = &sc7280_dp_descs },
+ { .compatible = "qcom,sc8180x-dp", .data = &sc8180x_dp_descs },
+ { .compatible = "qcom,sc8180x-edp", .data = &sc8180x_dp_descs },
+ { .compatible = "qcom,sc8280xp-dp", .data = &sc8280xp_dp_descs },
+ { .compatible = "qcom,sc8280xp-edp", .data = &sc8280xp_edp_descs },
+ { .compatible = "qcom,sdm845-dp", .data = &sc7180_dp_descs },
+ { .compatible = "qcom,sm8350-dp", .data = &sm8350_dp_descs },
{}
};
@@ -390,6 +393,10 @@ static int dp_display_process_hpd_high(struct dp_display_private *dp)
struct edid *edid;
dp->panel->max_dp_lanes = dp->parser->max_dp_lanes;
+ dp->panel->max_dp_link_rate = dp->parser->max_dp_link_rate;
+
+ drm_dbg_dp(dp->drm_dev, "max_lanes=%d max_link_rate=%d\n",
+ dp->panel->max_dp_lanes, dp->panel->max_dp_link_rate);
rc = dp_panel_read_sink_caps(dp->panel, dp->dp_display.connector);
if (rc)
@@ -399,6 +406,8 @@ static int dp_display_process_hpd_high(struct dp_display_private *dp)
edid = dp->panel->edid;
+ dp->dp_display.psr_supported = dp->panel->psr_cap.version;
+
dp->audio_supported = drm_detect_monitor_audio(edid);
dp_panel_handle_sink_request(dp->panel);
@@ -607,8 +616,10 @@ static int dp_hpd_plug_handle(struct dp_display_private *dp, u32 data)
}
/* enable HDP irq_hpd/replug interrupt */
- dp_catalog_hpd_config_intr(dp->catalog,
- DP_DP_IRQ_HPD_INT_MASK | DP_DP_HPD_REPLUG_INT_MASK, true);
+ if (dp->dp_display.internal_hpd)
+ dp_catalog_hpd_config_intr(dp->catalog,
+ DP_DP_IRQ_HPD_INT_MASK | DP_DP_HPD_REPLUG_INT_MASK,
+ true);
drm_dbg_dp(dp->drm_dev, "After, type=%d hpd_state=%d\n",
dp->dp_display.connector_type, state);
@@ -648,8 +659,10 @@ static int dp_hpd_unplug_handle(struct dp_display_private *dp, u32 data)
dp->dp_display.connector_type, state);
/* disable irq_hpd/replug interrupts */
- dp_catalog_hpd_config_intr(dp->catalog,
- DP_DP_IRQ_HPD_INT_MASK | DP_DP_HPD_REPLUG_INT_MASK, false);
+ if (dp->dp_display.internal_hpd)
+ dp_catalog_hpd_config_intr(dp->catalog,
+ DP_DP_IRQ_HPD_INT_MASK | DP_DP_HPD_REPLUG_INT_MASK,
+ false);
/* unplugged, no more irq_hpd handle */
dp_del_event(dp, EV_IRQ_HPD_INT);
@@ -675,7 +688,8 @@ static int dp_hpd_unplug_handle(struct dp_display_private *dp, u32 data)
}
/* disable HPD plug interrupts */
- dp_catalog_hpd_config_intr(dp->catalog, DP_DP_HPD_PLUG_INT_MASK, false);
+ if (dp->dp_display.internal_hpd)
+ dp_catalog_hpd_config_intr(dp->catalog, DP_DP_HPD_PLUG_INT_MASK, false);
/*
* We don't need separate work for disconnect as
@@ -693,7 +707,7 @@ static int dp_hpd_unplug_handle(struct dp_display_private *dp, u32 data)
dp_display_handle_plugged_change(&dp->dp_display, false);
/* enable HDP plug interrupt to prepare for next plugin */
- if (!dp->dp_display.is_edp)
+ if (dp->dp_display.internal_hpd)
dp_catalog_hpd_config_intr(dp->catalog, DP_DP_HPD_PLUG_INT_MASK, true);
drm_dbg_dp(dp->drm_dev, "After, type=%d hpd_state=%d\n",
@@ -857,7 +871,7 @@ static int dp_display_set_mode(struct msm_dp *dp_display,
dp = container_of(dp_display, struct dp_display_private, dp_display);
- dp->panel->dp_mode.drm_mode = mode->drm_mode;
+ drm_mode_copy(&dp->panel->dp_mode.drm_mode, &mode->drm_mode);
dp->panel->dp_mode.bpp = mode->bpp;
dp->panel->dp_mode.capabilities = mode->capabilities;
dp_panel_init_panel_info(dp->panel);
@@ -898,6 +912,10 @@ static int dp_display_post_enable(struct msm_dp *dp_display)
/* signal the connect event late to synchronize video and display */
dp_display_handle_plugged_change(dp_display, true);
+
+ if (dp_display->psr_supported)
+ dp_ctrl_config_psr(dp->ctrl);
+
return 0;
}
@@ -978,14 +996,6 @@ enum drm_mode_status dp_bridge_mode_valid(struct drm_bridge *bridge,
return -EINVAL;
}
- /*
- * The eDP controller currently does not have a reliable way of
- * enabling panel power to read sink capabilities. So, we rely
- * on the panel driver to populate only supported modes for now.
- */
- if (dp->is_edp)
- return MODE_OK;
-
if (mode->clock > DP_MAX_PIXEL_CLK_KHZ)
return MODE_CLOCK_HIGH;
@@ -1078,8 +1088,8 @@ static void dp_display_config_hpd(struct dp_display_private *dp)
dp_display_host_init(dp);
dp_catalog_ctrl_hpd_config(dp->catalog);
- /* Enable plug and unplug interrupts only for external DisplayPort */
- if (!dp->dp_display.is_edp)
+ /* Enable plug and unplug interrupts only if requested */
+ if (dp->dp_display.internal_hpd)
dp_catalog_hpd_config_intr(dp->catalog,
DP_DP_HPD_PLUG_INT_MASK |
DP_DP_HPD_UNPLUG_INT_MASK,
@@ -1092,6 +1102,19 @@ static void dp_display_config_hpd(struct dp_display_private *dp)
enable_irq(dp->irq);
}
+void dp_display_set_psr(struct msm_dp *dp_display, bool enter)
+{
+ struct dp_display_private *dp;
+
+ if (!dp_display) {
+ DRM_ERROR("invalid params\n");
+ return;
+ }
+
+ dp = container_of(dp_display, struct dp_display_private, dp_display);
+ dp_ctrl_set_psr(dp->ctrl, enter);
+}
+
static int hpd_event_thread(void *data)
{
struct dp_display_private *dp_priv;
@@ -1192,7 +1215,7 @@ static int dp_hpd_event_thread_start(struct dp_display_private *dp_priv)
static irqreturn_t dp_display_irq_handler(int irq, void *dev_id)
{
struct dp_display_private *dp = dev_id;
- irqreturn_t ret = IRQ_HANDLED;
+ irqreturn_t ret = IRQ_NONE;
u32 hpd_isr_status;
if (!dp) {
@@ -1220,13 +1243,15 @@ static irqreturn_t dp_display_irq_handler(int irq, void *dev_id)
if (hpd_isr_status & DP_DP_HPD_UNPLUG_INT_MASK)
dp_add_event(dp, EV_HPD_UNPLUG_INT, 0, 0);
+
+ ret = IRQ_HANDLED;
}
/* DP controller isr */
- dp_ctrl_isr(dp->ctrl);
+ ret |= dp_ctrl_isr(dp->ctrl);
/* DP aux isr */
- dp_aux_isr(dp->aux);
+ ret |= dp_aux_isr(dp->aux);
return ret;
}
@@ -1262,10 +1287,9 @@ int dp_display_request_irq(struct msm_dp *dp_display)
return 0;
}
-static const struct msm_dp_desc *dp_display_get_desc(struct platform_device *pdev,
- unsigned int *id)
+static const struct msm_dp_desc *dp_display_get_desc(struct platform_device *pdev)
{
- const struct msm_dp_config *cfg = of_device_get_match_data(&pdev->dev);
+ const struct msm_dp_desc *descs = of_device_get_match_data(&pdev->dev);
struct resource *res;
int i;
@@ -1273,11 +1297,9 @@ static const struct msm_dp_desc *dp_display_get_desc(struct platform_device *pde
if (!res)
return NULL;
- for (i = 0; i < cfg->num_descs; i++) {
- if (cfg->descs[i].io_start == res->start) {
- *id = i;
- return &cfg->descs[i];
- }
+ for (i = 0; i < descs[i].io_start; i++) {
+ if (descs[i].io_start == res->start)
+ return &descs[i];
}
dev_err(&pdev->dev, "unknown displayport instance\n");
@@ -1299,12 +1321,13 @@ static int dp_display_probe(struct platform_device *pdev)
if (!dp)
return -ENOMEM;
- desc = dp_display_get_desc(pdev, &dp->id);
+ desc = dp_display_get_desc(pdev);
if (!desc)
return -EINVAL;
dp->pdev = pdev;
dp->name = "drm_dp";
+ dp->id = desc->id;
dp->dp_display.connector_type = desc->connector_type;
dp->wide_bus_en = desc->wide_bus_en;
dp->dp_display.is_edp =
@@ -1373,8 +1396,7 @@ static int dp_pm_resume(struct device *dev)
dp_catalog_ctrl_hpd_config(dp->catalog);
-
- if (!dp->dp_display.is_edp)
+ if (dp->dp_display.internal_hpd)
dp_catalog_hpd_config_intr(dp->catalog,
DP_DP_HPD_PLUG_INT_MASK |
DP_DP_HPD_UNPLUG_INT_MASK,
@@ -1497,7 +1519,7 @@ void msm_dp_irq_postinstall(struct msm_dp *dp_display)
dp = container_of(dp_display, struct dp_display_private, dp_display);
if (!dp_display->is_edp)
- dp_add_event(dp, EV_HPD_INIT_SETUP, 0, 100);
+ dp_add_event(dp, EV_HPD_INIT_SETUP, 0, 0);
}
bool msm_dp_wide_bus_available(const struct msm_dp *dp_display)
@@ -1600,20 +1622,10 @@ error:
int msm_dp_modeset_init(struct msm_dp *dp_display, struct drm_device *dev,
struct drm_encoder *encoder)
{
- struct msm_drm_private *priv;
+ struct msm_drm_private *priv = dev->dev_private;
struct dp_display_private *dp_priv;
int ret;
- if (WARN_ON(!encoder) || WARN_ON(!dp_display) || WARN_ON(!dev))
- return -EINVAL;
-
- priv = dev->dev_private;
-
- if (priv->num_bridges == ARRAY_SIZE(priv->bridges)) {
- DRM_DEV_ERROR(dev->dev, "too many bridges\n");
- return -ENOSPC;
- }
-
dp_display->drm_dev = dev;
dp_priv = container_of(dp_display, struct dp_display_private, dp_display);
@@ -1653,7 +1665,8 @@ int msm_dp_modeset_init(struct msm_dp *dp_display, struct drm_device *dev,
return 0;
}
-void dp_bridge_enable(struct drm_bridge *drm_bridge)
+void dp_bridge_atomic_enable(struct drm_bridge *drm_bridge,
+ struct drm_bridge_state *old_bridge_state)
{
struct msm_dp_bridge *dp_bridge = to_dp_bridge(drm_bridge);
struct msm_dp *dp = dp_bridge->dp_display;
@@ -1708,7 +1721,8 @@ void dp_bridge_enable(struct drm_bridge *drm_bridge)
mutex_unlock(&dp_display->event_mutex);
}
-void dp_bridge_disable(struct drm_bridge *drm_bridge)
+void dp_bridge_atomic_disable(struct drm_bridge *drm_bridge,
+ struct drm_bridge_state *old_bridge_state)
{
struct msm_dp_bridge *dp_bridge = to_dp_bridge(drm_bridge);
struct msm_dp *dp = dp_bridge->dp_display;
@@ -1719,7 +1733,8 @@ void dp_bridge_disable(struct drm_bridge *drm_bridge)
dp_ctrl_push_idle(dp_display->ctrl);
}
-void dp_bridge_post_disable(struct drm_bridge *drm_bridge)
+void dp_bridge_atomic_post_disable(struct drm_bridge *drm_bridge,
+ struct drm_bridge_state *old_bridge_state)
{
struct msm_dp_bridge *dp_bridge = to_dp_bridge(drm_bridge);
struct msm_dp *dp = dp_bridge->dp_display;
@@ -1781,3 +1796,41 @@ void dp_bridge_mode_set(struct drm_bridge *drm_bridge,
dp_display->dp_mode.h_active_low =
!!(dp_display->dp_mode.drm_mode.flags & DRM_MODE_FLAG_NHSYNC);
}
+
+void dp_bridge_hpd_enable(struct drm_bridge *bridge)
+{
+ struct msm_dp_bridge *dp_bridge = to_dp_bridge(bridge);
+ struct msm_dp *dp_display = dp_bridge->dp_display;
+
+ dp_display->internal_hpd = true;
+}
+
+void dp_bridge_hpd_disable(struct drm_bridge *bridge)
+{
+ struct msm_dp_bridge *dp_bridge = to_dp_bridge(bridge);
+ struct msm_dp *dp_display = dp_bridge->dp_display;
+
+ dp_display->internal_hpd = false;
+}
+
+void dp_bridge_hpd_notify(struct drm_bridge *bridge,
+ enum drm_connector_status status)
+{
+ struct msm_dp_bridge *dp_bridge = to_dp_bridge(bridge);
+ struct msm_dp *dp_display = dp_bridge->dp_display;
+ struct dp_display_private *dp = container_of(dp_display, struct dp_display_private, dp_display);
+
+ /* Without next_bridge interrupts are handled by the DP core directly */
+ if (dp_display->internal_hpd)
+ return;
+
+ if (!dp->core_initialized) {
+ drm_dbg_dp(dp->drm_dev, "not initialized\n");
+ return;
+ }
+
+ if (!dp_display->is_connected && status == connector_status_connected)
+ dp_add_event(dp, EV_HPD_PLUG_INT, 0, 0);
+ else if (dp_display->is_connected && status == connector_status_disconnected)
+ dp_add_event(dp, EV_HPD_UNPLUG_INT, 0, 0);
+}
diff --git a/drivers/gpu/drm/msm/dp/dp_display.h b/drivers/gpu/drm/msm/dp/dp_display.h
index dcedf021f7fe..1e9415ab15d8 100644
--- a/drivers/gpu/drm/msm/dp/dp_display.h
+++ b/drivers/gpu/drm/msm/dp/dp_display.h
@@ -21,6 +21,7 @@ struct msm_dp {
bool power_on;
unsigned int connector_type;
bool is_edp;
+ bool internal_hpd;
hdmi_codec_plugged_cb plugged_cb;
@@ -28,6 +29,7 @@ struct msm_dp {
u32 max_dp_lanes;
struct dp_audio *dp_audio;
+ bool psr_supported;
};
int dp_display_set_plugged_cb(struct msm_dp *dp_display,
@@ -38,5 +40,6 @@ bool dp_display_check_video_test(struct msm_dp *dp_display);
int dp_display_get_test_bpp(struct msm_dp *dp_display);
void dp_display_signal_audio_start(struct msm_dp *dp_display);
void dp_display_signal_audio_complete(struct msm_dp *dp_display);
+void dp_display_set_psr(struct msm_dp *dp, bool enter);
#endif /* _DP_DISPLAY_H_ */
diff --git a/drivers/gpu/drm/msm/dp/dp_drm.c b/drivers/gpu/drm/msm/dp/dp_drm.c
index 6db82f9b03af..785d76639497 100644
--- a/drivers/gpu/drm/msm/dp/dp_drm.c
+++ b/drivers/gpu/drm/msm/dp/dp_drm.c
@@ -94,14 +94,182 @@ static const struct drm_bridge_funcs dp_bridge_ops = {
.atomic_duplicate_state = drm_atomic_helper_bridge_duplicate_state,
.atomic_destroy_state = drm_atomic_helper_bridge_destroy_state,
.atomic_reset = drm_atomic_helper_bridge_reset,
- .enable = dp_bridge_enable,
- .disable = dp_bridge_disable,
- .post_disable = dp_bridge_post_disable,
+ .atomic_enable = dp_bridge_atomic_enable,
+ .atomic_disable = dp_bridge_atomic_disable,
+ .atomic_post_disable = dp_bridge_atomic_post_disable,
.mode_set = dp_bridge_mode_set,
.mode_valid = dp_bridge_mode_valid,
.get_modes = dp_bridge_get_modes,
.detect = dp_bridge_detect,
.atomic_check = dp_bridge_atomic_check,
+ .hpd_enable = dp_bridge_hpd_enable,
+ .hpd_disable = dp_bridge_hpd_disable,
+ .hpd_notify = dp_bridge_hpd_notify,
+};
+
+static int edp_bridge_atomic_check(struct drm_bridge *drm_bridge,
+ struct drm_bridge_state *bridge_state,
+ struct drm_crtc_state *crtc_state,
+ struct drm_connector_state *conn_state)
+{
+ struct msm_dp *dp = to_dp_bridge(drm_bridge)->dp_display;
+
+ if (WARN_ON(!conn_state))
+ return -ENODEV;
+
+ conn_state->self_refresh_aware = dp->psr_supported;
+
+ if (!conn_state->crtc || !crtc_state)
+ return 0;
+
+ if (crtc_state->self_refresh_active && !dp->psr_supported)
+ return -EINVAL;
+
+ return 0;
+}
+
+static void edp_bridge_atomic_enable(struct drm_bridge *drm_bridge,
+ struct drm_bridge_state *old_bridge_state)
+{
+ struct drm_atomic_state *atomic_state = old_bridge_state->base.state;
+ struct drm_crtc *crtc;
+ struct drm_crtc_state *old_crtc_state;
+ struct msm_dp_bridge *dp_bridge = to_dp_bridge(drm_bridge);
+ struct msm_dp *dp = dp_bridge->dp_display;
+
+ /*
+ * Check the old state of the crtc to determine if the panel
+ * was put into psr state previously by the edp_bridge_atomic_disable.
+ * If the panel is in psr, just exit psr state and skip the full
+ * bridge enable sequence.
+ */
+ crtc = drm_atomic_get_new_crtc_for_encoder(atomic_state,
+ drm_bridge->encoder);
+ if (!crtc)
+ return;
+
+ old_crtc_state = drm_atomic_get_old_crtc_state(atomic_state, crtc);
+
+ if (old_crtc_state && old_crtc_state->self_refresh_active) {
+ dp_display_set_psr(dp, false);
+ return;
+ }
+
+ dp_bridge_atomic_enable(drm_bridge, old_bridge_state);
+}
+
+static void edp_bridge_atomic_disable(struct drm_bridge *drm_bridge,
+ struct drm_bridge_state *old_bridge_state)
+{
+ struct drm_atomic_state *atomic_state = old_bridge_state->base.state;
+ struct drm_crtc *crtc;
+ struct drm_crtc_state *new_crtc_state = NULL, *old_crtc_state = NULL;
+ struct msm_dp_bridge *dp_bridge = to_dp_bridge(drm_bridge);
+ struct msm_dp *dp = dp_bridge->dp_display;
+
+ crtc = drm_atomic_get_old_crtc_for_encoder(atomic_state,
+ drm_bridge->encoder);
+ if (!crtc)
+ goto out;
+
+ new_crtc_state = drm_atomic_get_new_crtc_state(atomic_state, crtc);
+ if (!new_crtc_state)
+ goto out;
+
+ old_crtc_state = drm_atomic_get_old_crtc_state(atomic_state, crtc);
+ if (!old_crtc_state)
+ goto out;
+
+ /*
+ * Set self refresh mode if current crtc state is active.
+ *
+ * If old crtc state is active, then this is a display disable
+ * call while the sink is in psr state. So, exit psr here.
+ * The eDP controller will be disabled in the
+ * edp_bridge_atomic_post_disable function.
+ *
+ * We observed sink is stuck in self refresh if psr exit is skipped
+ * when display disable occurs while the sink is in psr state.
+ */
+ if (new_crtc_state->self_refresh_active) {
+ dp_display_set_psr(dp, true);
+ return;
+ } else if (old_crtc_state->self_refresh_active) {
+ dp_display_set_psr(dp, false);
+ return;
+ }
+
+out:
+ dp_bridge_atomic_disable(drm_bridge, old_bridge_state);
+}
+
+static void edp_bridge_atomic_post_disable(struct drm_bridge *drm_bridge,
+ struct drm_bridge_state *old_bridge_state)
+{
+ struct drm_atomic_state *atomic_state = old_bridge_state->base.state;
+ struct drm_crtc *crtc;
+ struct drm_crtc_state *new_crtc_state = NULL;
+
+ crtc = drm_atomic_get_old_crtc_for_encoder(atomic_state,
+ drm_bridge->encoder);
+ if (!crtc)
+ return;
+
+ new_crtc_state = drm_atomic_get_new_crtc_state(atomic_state, crtc);
+ if (!new_crtc_state)
+ return;
+
+ /*
+ * Self refresh mode is already set in edp_bridge_atomic_disable.
+ */
+ if (new_crtc_state->self_refresh_active)
+ return;
+
+ dp_bridge_atomic_post_disable(drm_bridge, old_bridge_state);
+}
+
+/**
+ * edp_bridge_mode_valid - callback to determine if specified mode is valid
+ * @bridge: Pointer to drm bridge structure
+ * @info: display info
+ * @mode: Pointer to drm mode structure
+ * Returns: Validity status for specified mode
+ */
+static enum drm_mode_status edp_bridge_mode_valid(struct drm_bridge *bridge,
+ const struct drm_display_info *info,
+ const struct drm_display_mode *mode)
+{
+ struct msm_dp *dp;
+ int mode_pclk_khz = mode->clock;
+
+ dp = to_dp_bridge(bridge)->dp_display;
+
+ if (!dp || !mode_pclk_khz || !dp->connector) {
+ DRM_ERROR("invalid params\n");
+ return -EINVAL;
+ }
+
+ if (mode->clock > DP_MAX_PIXEL_CLK_KHZ)
+ return MODE_CLOCK_HIGH;
+
+ /*
+ * The eDP controller currently does not have a reliable way of
+ * enabling panel power to read sink capabilities. So, we rely
+ * on the panel driver to populate only supported modes for now.
+ */
+ return MODE_OK;
+}
+
+static const struct drm_bridge_funcs edp_bridge_ops = {
+ .atomic_enable = edp_bridge_atomic_enable,
+ .atomic_disable = edp_bridge_atomic_disable,
+ .atomic_post_disable = edp_bridge_atomic_post_disable,
+ .mode_set = dp_bridge_mode_set,
+ .mode_valid = edp_bridge_mode_valid,
+ .atomic_reset = drm_atomic_helper_bridge_reset,
+ .atomic_duplicate_state = drm_atomic_helper_bridge_duplicate_state,
+ .atomic_destroy_state = drm_atomic_helper_bridge_destroy_state,
+ .atomic_check = edp_bridge_atomic_check,
};
struct drm_bridge *dp_bridge_init(struct msm_dp *dp_display, struct drm_device *dev,
@@ -118,7 +286,7 @@ struct drm_bridge *dp_bridge_init(struct msm_dp *dp_display, struct drm_device *
dp_bridge->dp_display = dp_display;
bridge = &dp_bridge->bridge;
- bridge->funcs = &dp_bridge_ops;
+ bridge->funcs = dp_display->is_edp ? &edp_bridge_ops : &dp_bridge_ops;
bridge->type = dp_display->connector_type;
/*
diff --git a/drivers/gpu/drm/msm/dp/dp_drm.h b/drivers/gpu/drm/msm/dp/dp_drm.h
index 82035dbb0578..afe79b85e183 100644
--- a/drivers/gpu/drm/msm/dp/dp_drm.h
+++ b/drivers/gpu/drm/msm/dp/dp_drm.h
@@ -23,14 +23,21 @@ struct drm_connector *dp_drm_connector_init(struct msm_dp *dp_display, struct dr
struct drm_bridge *dp_bridge_init(struct msm_dp *dp_display, struct drm_device *dev,
struct drm_encoder *encoder);
-void dp_bridge_enable(struct drm_bridge *drm_bridge);
-void dp_bridge_disable(struct drm_bridge *drm_bridge);
-void dp_bridge_post_disable(struct drm_bridge *drm_bridge);
+void dp_bridge_atomic_enable(struct drm_bridge *drm_bridge,
+ struct drm_bridge_state *old_bridge_state);
+void dp_bridge_atomic_disable(struct drm_bridge *drm_bridge,
+ struct drm_bridge_state *old_bridge_state);
+void dp_bridge_atomic_post_disable(struct drm_bridge *drm_bridge,
+ struct drm_bridge_state *old_bridge_state);
enum drm_mode_status dp_bridge_mode_valid(struct drm_bridge *bridge,
const struct drm_display_info *info,
const struct drm_display_mode *mode);
void dp_bridge_mode_set(struct drm_bridge *drm_bridge,
const struct drm_display_mode *mode,
const struct drm_display_mode *adjusted_mode);
+void dp_bridge_hpd_enable(struct drm_bridge *bridge);
+void dp_bridge_hpd_disable(struct drm_bridge *bridge);
+void dp_bridge_hpd_notify(struct drm_bridge *bridge,
+ enum drm_connector_status status);
#endif /* _DP_DRM_H_ */
diff --git a/drivers/gpu/drm/msm/dp/dp_link.c b/drivers/gpu/drm/msm/dp/dp_link.c
index 36bb6191d2f0..42427129acea 100644
--- a/drivers/gpu/drm/msm/dp/dp_link.c
+++ b/drivers/gpu/drm/msm/dp/dp_link.c
@@ -49,23 +49,26 @@ static int dp_aux_link_power_up(struct drm_dp_aux *aux,
struct dp_link_info *link)
{
u8 value;
- int err;
+ ssize_t len;
+ int i;
if (link->revision < 0x11)
return 0;
- err = drm_dp_dpcd_readb(aux, DP_SET_POWER, &value);
- if (err < 0)
- return err;
+ len = drm_dp_dpcd_readb(aux, DP_SET_POWER, &value);
+ if (len < 0)
+ return len;
value &= ~DP_SET_POWER_MASK;
value |= DP_SET_POWER_D0;
- err = drm_dp_dpcd_writeb(aux, DP_SET_POWER, value);
- if (err < 0)
- return err;
-
- usleep_range(1000, 2000);
+ /* retry for 1ms to give the sink time to wake up */
+ for (i = 0; i < 3; i++) {
+ len = drm_dp_dpcd_writeb(aux, DP_SET_POWER, value);
+ usleep_range(1000, 2000);
+ if (len == 1)
+ break;
+ }
return 0;
}
@@ -934,6 +937,38 @@ static int dp_link_process_phy_test_pattern_request(
return 0;
}
+static bool dp_link_read_psr_error_status(struct dp_link_private *link)
+{
+ u8 status;
+
+ drm_dp_dpcd_read(link->aux, DP_PSR_ERROR_STATUS, &status, 1);
+
+ if (status & DP_PSR_LINK_CRC_ERROR)
+ DRM_ERROR("PSR LINK CRC ERROR\n");
+ else if (status & DP_PSR_RFB_STORAGE_ERROR)
+ DRM_ERROR("PSR RFB STORAGE ERROR\n");
+ else if (status & DP_PSR_VSC_SDP_UNCORRECTABLE_ERROR)
+ DRM_ERROR("PSR VSC SDP UNCORRECTABLE ERROR\n");
+ else
+ return false;
+
+ return true;
+}
+
+static bool dp_link_psr_capability_changed(struct dp_link_private *link)
+{
+ u8 status;
+
+ drm_dp_dpcd_read(link->aux, DP_PSR_ESI, &status, 1);
+
+ if (status & DP_PSR_CAPS_CHANGE) {
+ drm_dbg_dp(link->drm_dev, "PSR Capability Change\n");
+ return true;
+ }
+
+ return false;
+}
+
static u8 get_link_status(const u8 link_status[DP_LINK_STATUS_SIZE], int r)
{
return link_status[r - DP_LANE0_1_STATUS];
@@ -1052,6 +1087,10 @@ int dp_link_process_request(struct dp_link *dp_link)
dp_link->sink_request |= DP_TEST_LINK_TRAINING;
} else if (!dp_link_process_phy_test_pattern_request(link)) {
dp_link->sink_request |= DP_TEST_LINK_PHY_TEST_PATTERN;
+ } else if (dp_link_read_psr_error_status(link)) {
+ DRM_ERROR("PSR IRQ_HPD received\n");
+ } else if (dp_link_psr_capability_changed(link)) {
+ drm_dbg_dp(link->drm_dev, "PSR Capability changed");
} else {
ret = dp_link_process_link_status_update(link);
if (!ret) {
diff --git a/drivers/gpu/drm/msm/dp/dp_panel.c b/drivers/gpu/drm/msm/dp/dp_panel.c
index 5149cebc93f6..42d52510ffd4 100644
--- a/drivers/gpu/drm/msm/dp/dp_panel.c
+++ b/drivers/gpu/drm/msm/dp/dp_panel.c
@@ -20,6 +20,27 @@ struct dp_panel_private {
bool aux_cfg_update_done;
};
+static void dp_panel_read_psr_cap(struct dp_panel_private *panel)
+{
+ ssize_t rlen;
+ struct dp_panel *dp_panel;
+
+ dp_panel = &panel->dp_panel;
+
+ /* edp sink */
+ if (dp_panel->dpcd[DP_EDP_CONFIGURATION_CAP]) {
+ rlen = drm_dp_dpcd_read(panel->aux, DP_PSR_SUPPORT,
+ &dp_panel->psr_cap, sizeof(dp_panel->psr_cap));
+ if (rlen == sizeof(dp_panel->psr_cap)) {
+ drm_dbg_dp(panel->drm_dev,
+ "psr version: 0x%x, psr_cap: 0x%x\n",
+ dp_panel->psr_cap.version,
+ dp_panel->psr_cap.capabilities);
+ } else
+ DRM_ERROR("failed to read psr info, rlen=%zd\n", rlen);
+ }
+}
+
static int dp_panel_read_dpcd(struct dp_panel *dp_panel)
{
int rc = 0;
@@ -75,12 +96,13 @@ static int dp_panel_read_dpcd(struct dp_panel *dp_panel)
link_info->rate = drm_dp_bw_code_to_link_rate(dpcd[DP_MAX_LINK_RATE]);
link_info->num_lanes = dpcd[DP_MAX_LANE_COUNT] & DP_MAX_LANE_COUNT_MASK;
+ /* Limit data lanes from data-lanes of endpoint property of dtsi */
if (link_info->num_lanes > dp_panel->max_dp_lanes)
link_info->num_lanes = dp_panel->max_dp_lanes;
- /* Limit support upto HBR2 until HBR3 support is added */
- if (link_info->rate >= (drm_dp_bw_code_to_link_rate(DP_LINK_BW_5_4)))
- link_info->rate = drm_dp_bw_code_to_link_rate(DP_LINK_BW_5_4);
+ /* Limit link rate from link-frequencies of endpoint property of dtsi */
+ if (link_info->rate > dp_panel->max_dp_link_rate)
+ link_info->rate = dp_panel->max_dp_link_rate;
drm_dbg_dp(panel->drm_dev, "version: %d.%d\n", major, minor);
drm_dbg_dp(panel->drm_dev, "link_rate=%d\n", link_info->rate);
@@ -106,6 +128,7 @@ static int dp_panel_read_dpcd(struct dp_panel *dp_panel)
}
}
+ dp_panel_read_psr_cap(panel);
end:
return rc;
}
diff --git a/drivers/gpu/drm/msm/dp/dp_panel.h b/drivers/gpu/drm/msm/dp/dp_panel.h
index d861197ac1c8..45208b45eb53 100644
--- a/drivers/gpu/drm/msm/dp/dp_panel.h
+++ b/drivers/gpu/drm/msm/dp/dp_panel.h
@@ -34,6 +34,11 @@ struct dp_panel_in {
struct dp_catalog *catalog;
};
+struct dp_panel_psr {
+ u8 version;
+ u8 capabilities;
+};
+
struct dp_panel {
/* dpcd raw data */
u8 dpcd[DP_RECEIVER_CAP_SIZE + 1];
@@ -46,10 +51,12 @@ struct dp_panel {
struct edid *edid;
struct drm_connector *connector;
struct dp_display_mode dp_mode;
+ struct dp_panel_psr psr_cap;
bool video_test;
u32 vic;
u32 max_dp_lanes;
+ u32 max_dp_link_rate;
u32 max_bw_code;
};
diff --git a/drivers/gpu/drm/msm/dp/dp_parser.c b/drivers/gpu/drm/msm/dp/dp_parser.c
index dcbe893d66d7..7032dcc8842b 100644
--- a/drivers/gpu/drm/msm/dp/dp_parser.c
+++ b/drivers/gpu/drm/msm/dp/dp_parser.c
@@ -91,19 +91,53 @@ static int dp_parser_ctrl_res(struct dp_parser *parser)
return 0;
}
+static u32 dp_parser_link_frequencies(struct device_node *of_node)
+{
+ struct device_node *endpoint;
+ u64 frequency = 0;
+ int cnt;
+
+ endpoint = of_graph_get_endpoint_by_regs(of_node, 1, 0); /* port@1 */
+ if (!endpoint)
+ return 0;
+
+ cnt = of_property_count_u64_elems(endpoint, "link-frequencies");
+
+ if (cnt > 0)
+ of_property_read_u64_index(endpoint, "link-frequencies",
+ cnt - 1, &frequency);
+ of_node_put(endpoint);
+
+ do_div(frequency,
+ 10 * /* from symbol rate to link rate */
+ 1000); /* kbytes */
+
+ return frequency;
+}
+
static int dp_parser_misc(struct dp_parser *parser)
{
struct device_node *of_node = parser->pdev->dev.of_node;
- int len;
-
- len = drm_of_get_data_lanes_count(of_node, 1, DP_MAX_NUM_DP_LANES);
- if (len < 0) {
- DRM_WARN("Invalid property \"data-lanes\", default max DP lanes = %d\n",
- DP_MAX_NUM_DP_LANES);
- len = DP_MAX_NUM_DP_LANES;
+ int cnt;
+
+ /*
+ * data-lanes is the property of dp_out endpoint
+ */
+ cnt = drm_of_get_data_lanes_count_ep(of_node, 1, 0, 1, DP_MAX_NUM_DP_LANES);
+ if (cnt < 0) {
+ /* legacy code, data-lanes is the property of mdss_dp node */
+ cnt = drm_of_get_data_lanes_count(of_node, 1, DP_MAX_NUM_DP_LANES);
}
- parser->max_dp_lanes = len;
+ if (cnt > 0)
+ parser->max_dp_lanes = cnt;
+ else
+ parser->max_dp_lanes = DP_MAX_NUM_DP_LANES; /* 4 lanes */
+
+ parser->max_dp_link_rate = dp_parser_link_frequencies(of_node);
+ if (!parser->max_dp_link_rate)
+ parser->max_dp_link_rate = DP_LINK_RATE_HBR2;
+
return 0;
}
diff --git a/drivers/gpu/drm/msm/dp/dp_parser.h b/drivers/gpu/drm/msm/dp/dp_parser.h
index d30ab773db46..1f068626d445 100644
--- a/drivers/gpu/drm/msm/dp/dp_parser.h
+++ b/drivers/gpu/drm/msm/dp/dp_parser.h
@@ -15,6 +15,7 @@
#define DP_LABEL "MDSS DP DISPLAY"
#define DP_MAX_PIXEL_CLK_KHZ 675000
#define DP_MAX_NUM_DP_LANES 4
+#define DP_LINK_RATE_HBR2 540000 /* kbytes */
enum dp_pm_type {
DP_CORE_PM,
@@ -119,6 +120,7 @@ struct dp_parser {
struct dp_io io;
struct dp_display_data disp_data;
u32 max_dp_lanes;
+ u32 max_dp_link_rate;
struct drm_bridge *next_bridge;
int (*parse)(struct dp_parser *parser);
diff --git a/drivers/gpu/drm/msm/dp/dp_reg.h b/drivers/gpu/drm/msm/dp/dp_reg.h
index 268602803d9a..ea85a691e72b 100644
--- a/drivers/gpu/drm/msm/dp/dp_reg.h
+++ b/drivers/gpu/drm/msm/dp/dp_reg.h
@@ -22,6 +22,20 @@
#define REG_DP_INTR_STATUS2 (0x00000024)
#define REG_DP_INTR_STATUS3 (0x00000028)
+#define REG_DP_INTR_STATUS4 (0x0000002C)
+#define PSR_UPDATE_INT (0x00000001)
+#define PSR_CAPTURE_INT (0x00000004)
+#define PSR_EXIT_INT (0x00000010)
+#define PSR_UPDATE_ERROR_INT (0x00000040)
+#define PSR_WAKE_ERROR_INT (0x00000100)
+
+#define REG_DP_INTR_MASK4 (0x00000030)
+#define PSR_UPDATE_MASK (0x00000001)
+#define PSR_CAPTURE_MASK (0x00000002)
+#define PSR_EXIT_MASK (0x00000004)
+#define PSR_UPDATE_ERROR_MASK (0x00000008)
+#define PSR_WAKE_ERROR_MASK (0x00000010)
+
#define REG_DP_DP_HPD_CTRL (0x00000000)
#define DP_DP_HPD_CTRL_HPD_EN (0x00000001)
@@ -164,6 +178,16 @@
#define MMSS_DP_AUDIO_TIMING_RBR_48 (0x00000094)
#define MMSS_DP_AUDIO_TIMING_HBR_48 (0x00000098)
+#define REG_PSR_CONFIG (0x00000100)
+#define DISABLE_PSR (0x00000000)
+#define PSR1_SUPPORTED (0x00000001)
+#define PSR2_WITHOUT_FRAMESYNC (0x00000002)
+#define PSR2_WITH_FRAMESYNC (0x00000003)
+
+#define REG_PSR_CMD (0x00000110)
+#define PSR_ENTER (0x00000001)
+#define PSR_EXIT (0x00000002)
+
#define MMSS_DP_PSR_CRC_RG (0x00000154)
#define MMSS_DP_PSR_CRC_B (0x00000158)
@@ -184,6 +208,9 @@
#define MMSS_DP_AUDIO_STREAM_0 (0x00000240)
#define MMSS_DP_AUDIO_STREAM_1 (0x00000244)
+#define MMSS_DP_SDP_CFG3 (0x0000024c)
+#define UPDATE_SDP (0x00000001)
+
#define MMSS_DP_EXTENSION_0 (0x00000250)
#define MMSS_DP_EXTENSION_1 (0x00000254)
#define MMSS_DP_EXTENSION_2 (0x00000258)
diff --git a/drivers/gpu/drm/msm/dsi/dsi.c b/drivers/gpu/drm/msm/dsi/dsi.c
index 8a95c744972a..baab79ab6e74 100644
--- a/drivers/gpu/drm/msm/dsi/dsi.c
+++ b/drivers/gpu/drm/msm/dsi/dsi.c
@@ -4,7 +4,6 @@
*/
#include "dsi.h"
-#include "dsi_cfg.h"
bool msm_dsi_is_cmd_mode(struct msm_dsi *msm_dsi)
{
@@ -173,8 +172,10 @@ static int dsi_dev_remove(struct platform_device *pdev)
}
static const struct of_device_id dt_match[] = {
- { .compatible = "qcom,mdss-dsi-ctrl", .data = NULL /* autodetect cfg */ },
- { .compatible = "qcom,dsi-ctrl-6g-qcm2290", .data = &qcm2290_dsi_cfg_handler },
+ { .compatible = "qcom,mdss-dsi-ctrl" },
+
+ /* Deprecated, don't use */
+ { .compatible = "qcom,dsi-ctrl-6g-qcm2290" },
{}
};
@@ -211,14 +212,9 @@ void __exit msm_dsi_unregister(void)
int msm_dsi_modeset_init(struct msm_dsi *msm_dsi, struct drm_device *dev,
struct drm_encoder *encoder)
{
- struct msm_drm_private *priv;
+ struct msm_drm_private *priv = dev->dev_private;
int ret;
- if (WARN_ON(!encoder) || WARN_ON(!msm_dsi) || WARN_ON(!dev))
- return -EINVAL;
-
- priv = dev->dev_private;
-
if (priv->num_bridges == ARRAY_SIZE(priv->bridges)) {
DRM_DEV_ERROR(dev->dev, "too many bridges\n");
return -ENOSPC;
diff --git a/drivers/gpu/drm/msm/dsi/dsi.h b/drivers/gpu/drm/msm/dsi/dsi.h
index 2a96b4fe7839..bd3763a5d723 100644
--- a/drivers/gpu/drm/msm/dsi/dsi.h
+++ b/drivers/gpu/drm/msm/dsi/dsi.h
@@ -118,6 +118,8 @@ int dsi_link_clk_enable_6g(struct msm_dsi_host *msm_host);
int dsi_link_clk_enable_v2(struct msm_dsi_host *msm_host);
void dsi_link_clk_disable_6g(struct msm_dsi_host *msm_host);
void dsi_link_clk_disable_v2(struct msm_dsi_host *msm_host);
+unsigned long dsi_byte_clk_get_rate(struct mipi_dsi_host *host, bool is_bonded_dsi,
+ const struct drm_display_mode *mode);
int dsi_tx_buf_alloc_6g(struct msm_dsi_host *msm_host, int size);
int dsi_tx_buf_alloc_v2(struct msm_dsi_host *msm_host, int size);
void *dsi_tx_buf_get_6g(struct msm_dsi_host *msm_host);
@@ -139,6 +141,7 @@ struct msm_dsi_phy_shared_timings {
u32 clk_post;
u32 clk_pre;
bool clk_pre_inc_by_2;
+ bool byte_intf_clk_div_2;
};
struct msm_dsi_phy_clk_request {
diff --git a/drivers/gpu/drm/msm/dsi/dsi.xml.h b/drivers/gpu/drm/msm/dsi/dsi.xml.h
index d1b2a17b0a66..a4a154601114 100644
--- a/drivers/gpu/drm/msm/dsi/dsi.xml.h
+++ b/drivers/gpu/drm/msm/dsi/dsi.xml.h
@@ -8,26 +8,26 @@ http://github.com/freedreno/envytools/
git clone https://github.com/freedreno/envytools.git
The rules-ng-ng source files this header was generated from are:
-- /home/robclark/tmp/mesa/src/freedreno/registers/msm.xml ( 944 bytes, from 2022-03-03 01:18:13)
-- /home/robclark/tmp/mesa/src/freedreno/registers/freedreno_copyright.xml ( 1572 bytes, from 2020-12-31 19:26:32)
-- /home/robclark/tmp/mesa/src/freedreno/registers/mdp/mdp4.xml ( 20912 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/mdp/mdp_common.xml ( 2849 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/mdp/mdp5.xml ( 37461 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi.xml ( 17560 bytes, from 2021-09-16 22:37:02)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_v2.xml ( 3236 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_28nm_8960.xml ( 4935 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_28nm.xml ( 7004 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_20nm.xml ( 3712 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_14nm.xml ( 5381 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_10nm.xml ( 4499 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_7nm.xml ( 11007 bytes, from 2022-03-03 01:18:13)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/sfpb.xml ( 602 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/mmss_cc.xml ( 1686 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/hdmi/qfprom.xml ( 600 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/hdmi/hdmi.xml ( 41874 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/edp/edp.xml ( 10416 bytes, from 2021-01-30 18:25:22)
-
-Copyright (C) 2013-2021 by the following authors:
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/msm.xml ( 944 bytes, from 2022-07-23 20:21:46)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/freedreno_copyright.xml ( 1572 bytes, from 2022-07-23 20:21:46)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/mdp/mdp4.xml ( 20912 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/mdp/mdp_common.xml ( 2849 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/mdp/mdp5.xml ( 37461 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi.xml ( 18746 bytes, from 2022-04-28 17:29:36)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_v2.xml ( 3236 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_28nm_8960.xml ( 4935 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_28nm.xml ( 7004 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_20nm.xml ( 3712 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_14nm.xml ( 5381 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_10nm.xml ( 4499 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_7nm.xml ( 11007 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/sfpb.xml ( 602 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/mmss_cc.xml ( 1686 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/hdmi/qfprom.xml ( 600 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/hdmi/hdmi.xml ( 42350 bytes, from 2022-09-20 17:45:56)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/edp/edp.xml ( 10416 bytes, from 2022-03-08 17:40:42)
+
+Copyright (C) 2013-2022 by the following authors:
- Rob Clark <robdclark@gmail.com> (robclark)
- Ilia Mirkin <imirkin@alum.mit.edu> (imirkin)
@@ -785,4 +785,5 @@ static inline uint32_t DSI_COMMAND_COMPRESSION_MODE_CTRL2_STREAM0_SLICE_WIDTH(ui
return ((val) << DSI_COMMAND_COMPRESSION_MODE_CTRL2_STREAM0_SLICE_WIDTH__SHIFT) & DSI_COMMAND_COMPRESSION_MODE_CTRL2_STREAM0_SLICE_WIDTH__MASK;
}
+
#endif /* DSI_XML */
diff --git a/drivers/gpu/drm/msm/dsi/dsi_cfg.c b/drivers/gpu/drm/msm/dsi/dsi_cfg.c
index 7e97c239ed48..29ccd755cc2e 100644
--- a/drivers/gpu/drm/msm/dsi/dsi_cfg.c
+++ b/drivers/gpu/drm/msm/dsi/dsi_cfg.c
@@ -21,8 +21,9 @@ static const struct msm_dsi_config apq8064_dsi_cfg = {
.num_regulators = ARRAY_SIZE(apq8064_dsi_regulators),
.bus_clk_names = dsi_v2_bus_clk_names,
.num_bus_clks = ARRAY_SIZE(dsi_v2_bus_clk_names),
- .io_start = { 0x4700000, 0x5800000 },
- .num_dsi = 2,
+ .io_start = {
+ { 0x4700000, 0x5800000 },
+ },
};
static const char * const dsi_6g_bus_clk_names[] = {
@@ -41,46 +42,40 @@ static const struct msm_dsi_config msm8974_apq8084_dsi_cfg = {
.num_regulators = ARRAY_SIZE(msm8974_apq8084_regulators),
.bus_clk_names = dsi_6g_bus_clk_names,
.num_bus_clks = ARRAY_SIZE(dsi_6g_bus_clk_names),
- .io_start = { 0xfd922800, 0xfd922b00 },
- .num_dsi = 2,
+ .io_start = {
+ { 0xfd922800, 0xfd922b00 },
+ },
};
-static const char * const dsi_8916_bus_clk_names[] = {
+static const char * const dsi_v1_3_1_clk_names[] = {
"mdp_core", "iface", "bus",
};
-static const struct regulator_bulk_data msm8916_dsi_regulators[] = {
+static const struct regulator_bulk_data dsi_v1_3_1_regulators[] = {
{ .supply = "vdda", .init_load_uA = 100000 }, /* 1.2 V */
{ .supply = "vddio", .init_load_uA = 100000 }, /* 1.8 V */
};
static const struct msm_dsi_config msm8916_dsi_cfg = {
.io_offset = DSI_6G_REG_SHIFT,
- .regulator_data = msm8916_dsi_regulators,
- .num_regulators = ARRAY_SIZE(msm8916_dsi_regulators),
- .bus_clk_names = dsi_8916_bus_clk_names,
- .num_bus_clks = ARRAY_SIZE(dsi_8916_bus_clk_names),
- .io_start = { 0x1a98000 },
- .num_dsi = 1,
-};
-
-static const char * const dsi_8976_bus_clk_names[] = {
- "mdp_core", "iface", "bus",
-};
-
-static const struct regulator_bulk_data msm8976_dsi_regulators[] = {
- { .supply = "vdda", .init_load_uA = 100000 }, /* 1.2 V */
- { .supply = "vddio", .init_load_uA = 100000 }, /* 1.8 V */
+ .regulator_data = dsi_v1_3_1_regulators,
+ .num_regulators = ARRAY_SIZE(dsi_v1_3_1_regulators),
+ .bus_clk_names = dsi_v1_3_1_clk_names,
+ .num_bus_clks = ARRAY_SIZE(dsi_v1_3_1_clk_names),
+ .io_start = {
+ { 0x1a98000 },
+ },
};
static const struct msm_dsi_config msm8976_dsi_cfg = {
.io_offset = DSI_6G_REG_SHIFT,
- .regulator_data = msm8976_dsi_regulators,
- .num_regulators = ARRAY_SIZE(msm8976_dsi_regulators),
- .bus_clk_names = dsi_8976_bus_clk_names,
- .num_bus_clks = ARRAY_SIZE(dsi_8976_bus_clk_names),
- .io_start = { 0x1a94000, 0x1a96000 },
- .num_dsi = 2,
+ .regulator_data = dsi_v1_3_1_regulators,
+ .num_regulators = ARRAY_SIZE(dsi_v1_3_1_regulators),
+ .bus_clk_names = dsi_v1_3_1_clk_names,
+ .num_bus_clks = ARRAY_SIZE(dsi_v1_3_1_clk_names),
+ .io_start = {
+ { 0x1a94000, 0x1a96000 },
+ },
};
static const struct regulator_bulk_data msm8994_dsi_regulators[] = {
@@ -98,12 +93,9 @@ static const struct msm_dsi_config msm8994_dsi_cfg = {
.num_regulators = ARRAY_SIZE(msm8994_dsi_regulators),
.bus_clk_names = dsi_6g_bus_clk_names,
.num_bus_clks = ARRAY_SIZE(dsi_6g_bus_clk_names),
- .io_start = { 0xfd998000, 0xfd9a0000 },
- .num_dsi = 2,
-};
-
-static const char * const dsi_8996_bus_clk_names[] = {
- "mdp_core", "iface", "bus", "core_mmss",
+ .io_start = {
+ { 0xfd998000, 0xfd9a0000 },
+ },
};
static const struct regulator_bulk_data msm8996_dsi_regulators[] = {
@@ -116,10 +108,11 @@ static const struct msm_dsi_config msm8996_dsi_cfg = {
.io_offset = DSI_6G_REG_SHIFT,
.regulator_data = msm8996_dsi_regulators,
.num_regulators = ARRAY_SIZE(msm8996_dsi_regulators),
- .bus_clk_names = dsi_8996_bus_clk_names,
- .num_bus_clks = ARRAY_SIZE(dsi_8996_bus_clk_names),
- .io_start = { 0x994000, 0x996000 },
- .num_dsi = 2,
+ .bus_clk_names = dsi_6g_bus_clk_names,
+ .num_bus_clks = ARRAY_SIZE(dsi_6g_bus_clk_names),
+ .io_start = {
+ { 0x994000, 0x996000 },
+ },
};
static const char * const dsi_msm8998_bus_clk_names[] = {
@@ -137,8 +130,9 @@ static const struct msm_dsi_config msm8998_dsi_cfg = {
.num_regulators = ARRAY_SIZE(msm8998_dsi_regulators),
.bus_clk_names = dsi_msm8998_bus_clk_names,
.num_bus_clks = ARRAY_SIZE(dsi_msm8998_bus_clk_names),
- .io_start = { 0xc994000, 0xc996000 },
- .num_dsi = 2,
+ .io_start = {
+ { 0xc994000, 0xc996000 },
+ },
};
static const char * const dsi_sdm660_bus_clk_names[] = {
@@ -155,48 +149,44 @@ static const struct msm_dsi_config sdm660_dsi_cfg = {
.num_regulators = ARRAY_SIZE(sdm660_dsi_regulators),
.bus_clk_names = dsi_sdm660_bus_clk_names,
.num_bus_clks = ARRAY_SIZE(dsi_sdm660_bus_clk_names),
- .io_start = { 0xc994000, 0xc996000 },
- .num_dsi = 2,
+ .io_start = {
+ { 0xc994000, 0xc996000 },
+ },
};
-static const char * const dsi_sdm845_bus_clk_names[] = {
+static const char * const dsi_v2_4_clk_names[] = {
"iface", "bus",
};
-static const char * const dsi_sc7180_bus_clk_names[] = {
- "iface", "bus",
-};
-
-static const struct regulator_bulk_data sdm845_dsi_regulators[] = {
+static const struct regulator_bulk_data dsi_v2_4_regulators[] = {
{ .supply = "vdda", .init_load_uA = 21800 }, /* 1.2 V */
};
static const struct msm_dsi_config sdm845_dsi_cfg = {
.io_offset = DSI_6G_REG_SHIFT,
- .regulator_data = sdm845_dsi_regulators,
- .num_regulators = ARRAY_SIZE(sdm845_dsi_regulators),
- .bus_clk_names = dsi_sdm845_bus_clk_names,
- .num_bus_clks = ARRAY_SIZE(dsi_sdm845_bus_clk_names),
- .io_start = { 0xae94000, 0xae96000 },
- .num_dsi = 2,
+ .regulator_data = dsi_v2_4_regulators,
+ .num_regulators = ARRAY_SIZE(dsi_v2_4_regulators),
+ .bus_clk_names = dsi_v2_4_clk_names,
+ .num_bus_clks = ARRAY_SIZE(dsi_v2_4_clk_names),
+ .io_start = {
+ { 0xae94000, 0xae96000 }, /* SDM845 / SDM670 */
+ { 0x5e94000 }, /* QCM2290 / SM6115 / SM6125 / SM6375 */
+ },
};
-static const struct regulator_bulk_data sc7180_dsi_regulators[] = {
- { .supply = "vdda", .init_load_uA = 21800 }, /* 1.2 V */
+static const struct regulator_bulk_data sm8550_dsi_regulators[] = {
+ { .supply = "vdda", .init_load_uA = 16800 }, /* 1.2 V */
};
-static const struct msm_dsi_config sc7180_dsi_cfg = {
+static const struct msm_dsi_config sm8550_dsi_cfg = {
.io_offset = DSI_6G_REG_SHIFT,
- .regulator_data = sc7180_dsi_regulators,
- .num_regulators = ARRAY_SIZE(sc7180_dsi_regulators),
- .bus_clk_names = dsi_sc7180_bus_clk_names,
- .num_bus_clks = ARRAY_SIZE(dsi_sc7180_bus_clk_names),
- .io_start = { 0xae94000 },
- .num_dsi = 1,
-};
-
-static const char * const dsi_sc7280_bus_clk_names[] = {
- "iface", "bus",
+ .regulator_data = sm8550_dsi_regulators,
+ .num_regulators = ARRAY_SIZE(sm8550_dsi_regulators),
+ .bus_clk_names = dsi_v2_4_clk_names,
+ .num_bus_clks = ARRAY_SIZE(dsi_v2_4_clk_names),
+ .io_start = {
+ { 0xae94000, 0xae96000 },
+ },
};
static const struct regulator_bulk_data sc7280_dsi_regulators[] = {
@@ -207,28 +197,11 @@ static const struct msm_dsi_config sc7280_dsi_cfg = {
.io_offset = DSI_6G_REG_SHIFT,
.regulator_data = sc7280_dsi_regulators,
.num_regulators = ARRAY_SIZE(sc7280_dsi_regulators),
- .bus_clk_names = dsi_sc7280_bus_clk_names,
- .num_bus_clks = ARRAY_SIZE(dsi_sc7280_bus_clk_names),
- .io_start = { 0xae94000 },
- .num_dsi = 1,
-};
-
-static const char * const dsi_qcm2290_bus_clk_names[] = {
- "iface", "bus",
-};
-
-static const struct regulator_bulk_data qcm2290_dsi_cfg_regulators[] = {
- { .supply = "vdda", .init_load_uA = 21800 }, /* 1.2 V */
-};
-
-static const struct msm_dsi_config qcm2290_dsi_cfg = {
- .io_offset = DSI_6G_REG_SHIFT,
- .regulator_data = qcm2290_dsi_cfg_regulators,
- .num_regulators = ARRAY_SIZE(qcm2290_dsi_cfg_regulators),
- .bus_clk_names = dsi_qcm2290_bus_clk_names,
- .num_bus_clks = ARRAY_SIZE(dsi_qcm2290_bus_clk_names),
- .io_start = { 0x5e94000 },
- .num_dsi = 1,
+ .bus_clk_names = dsi_v2_4_clk_names,
+ .num_bus_clks = ARRAY_SIZE(dsi_v2_4_clk_names),
+ .io_start = {
+ { 0xae94000, 0xae96000 },
+ },
};
static const struct msm_dsi_host_cfg_ops msm_dsi_v2_host_ops = {
@@ -297,9 +270,13 @@ static const struct msm_dsi_cfg_handler dsi_cfg_handlers[] = {
{MSM_DSI_VER_MAJOR_6G, MSM_DSI_6G_VER_MINOR_V2_4_0,
&sdm845_dsi_cfg, &msm_dsi_6g_v2_host_ops},
{MSM_DSI_VER_MAJOR_6G, MSM_DSI_6G_VER_MINOR_V2_4_1,
- &sc7180_dsi_cfg, &msm_dsi_6g_v2_host_ops},
+ &sdm845_dsi_cfg, &msm_dsi_6g_v2_host_ops},
{MSM_DSI_VER_MAJOR_6G, MSM_DSI_6G_VER_MINOR_V2_5_0,
&sc7280_dsi_cfg, &msm_dsi_6g_v2_host_ops},
+ {MSM_DSI_VER_MAJOR_6G, MSM_DSI_6G_VER_MINOR_V2_6_0,
+ &sdm845_dsi_cfg, &msm_dsi_6g_v2_host_ops},
+ {MSM_DSI_VER_MAJOR_6G, MSM_DSI_6G_VER_MINOR_V2_7_0,
+ &sm8550_dsi_cfg, &msm_dsi_6g_v2_host_ops},
};
const struct msm_dsi_cfg_handler *msm_dsi_cfg_get(u32 major, u32 minor)
@@ -317,9 +294,3 @@ const struct msm_dsi_cfg_handler *msm_dsi_cfg_get(u32 major, u32 minor)
return cfg_hnd;
}
-
-/* Non autodetect configs */
-const struct msm_dsi_cfg_handler qcm2290_dsi_cfg_handler = {
- .cfg = &qcm2290_dsi_cfg,
- .ops = &msm_dsi_6g_v2_host_ops,
-};
diff --git a/drivers/gpu/drm/msm/dsi/dsi_cfg.h b/drivers/gpu/drm/msm/dsi/dsi_cfg.h
index 8f04e685a74e..91bdaf50bb1a 100644
--- a/drivers/gpu/drm/msm/dsi/dsi_cfg.h
+++ b/drivers/gpu/drm/msm/dsi/dsi_cfg.h
@@ -25,19 +25,23 @@
#define MSM_DSI_6G_VER_MINOR_V2_4_0 0x20040000
#define MSM_DSI_6G_VER_MINOR_V2_4_1 0x20040001
#define MSM_DSI_6G_VER_MINOR_V2_5_0 0x20050000
+#define MSM_DSI_6G_VER_MINOR_V2_6_0 0x20060000
+#define MSM_DSI_6G_VER_MINOR_V2_7_0 0x20070000
#define MSM_DSI_V2_VER_MINOR_8064 0x0
#define DSI_6G_REG_SHIFT 4
+/* Maximum number of configurations matched against the same hw revision */
+#define VARIANTS_MAX 2
+
struct msm_dsi_config {
u32 io_offset;
const struct regulator_bulk_data *regulator_data;
int num_regulators;
const char * const *bus_clk_names;
const int num_bus_clks;
- const resource_size_t io_start[DSI_MAX];
- const int num_dsi;
+ const resource_size_t io_start[VARIANTS_MAX][DSI_MAX];
};
struct msm_dsi_host_cfg_ops {
@@ -61,8 +65,5 @@ struct msm_dsi_cfg_handler {
const struct msm_dsi_cfg_handler *msm_dsi_cfg_get(u32 major, u32 minor);
-/* Non autodetect configs */
-extern const struct msm_dsi_cfg_handler qcm2290_dsi_cfg_handler;
-
#endif /* __MSM_DSI_CFG_H__ */
diff --git a/drivers/gpu/drm/msm/dsi/dsi_host.c b/drivers/gpu/drm/msm/dsi/dsi_host.c
index 7fbf391c024f..961689a255c4 100644
--- a/drivers/gpu/drm/msm/dsi/dsi_host.c
+++ b/drivers/gpu/drm/msm/dsi/dsi_host.c
@@ -21,6 +21,7 @@
#include <video/mipi_display.h>
+#include <drm/display/drm_dsc_helper.h>
#include <drm/drm_of.h>
#include "dsi.h"
@@ -33,7 +34,7 @@
#define DSI_RESET_TOGGLE_DELAY_MS 20
-static int dsi_populate_dsc_params(struct drm_dsc_config *dsc);
+static int dsi_populate_dsc_params(struct msm_dsi_host *msm_host, struct drm_dsc_config *dsc);
static int dsi_get_version(const void __iomem *base, u32 *major, u32 *minor)
{
@@ -121,6 +122,7 @@ struct msm_dsi_host {
struct clk *byte_intf_clk;
unsigned long byte_clk_rate;
+ unsigned long byte_intf_clk_rate;
unsigned long pixel_clk_rate;
unsigned long esc_clk_rate;
@@ -212,10 +214,6 @@ static const struct msm_dsi_cfg_handler *dsi_get_config(
int ret;
u32 major = 0, minor = 0;
- cfg_hnd = device_get_match_data(dev);
- if (cfg_hnd)
- return cfg_hnd;
-
ahb_clk = msm_clk_get(msm_host->pdev, "iface");
if (IS_ERR(ahb_clk)) {
pr_err("%s: cannot get interface clock\n", __func__);
@@ -397,7 +395,6 @@ int msm_dsi_runtime_resume(struct device *dev)
int dsi_link_clk_set_rate_6g(struct msm_dsi_host *msm_host)
{
- unsigned long byte_intf_rate;
int ret;
DBG("Set clk rates: pclk=%d, byteclk=%lu",
@@ -417,13 +414,7 @@ int dsi_link_clk_set_rate_6g(struct msm_dsi_host *msm_host)
}
if (msm_host->byte_intf_clk) {
- /* For CPHY, byte_intf_clk is same as byte_clk */
- if (msm_host->cphy_mode)
- byte_intf_rate = msm_host->byte_clk_rate;
- else
- byte_intf_rate = msm_host->byte_clk_rate / 2;
-
- ret = clk_set_rate(msm_host->byte_intf_clk, byte_intf_rate);
+ ret = clk_set_rate(msm_host->byte_intf_clk, msm_host->byte_intf_clk_rate);
if (ret) {
pr_err("%s: Failed to set rate byte intf clk, %d\n",
__func__, ret);
@@ -569,9 +560,8 @@ void dsi_link_clk_disable_v2(struct msm_dsi_host *msm_host)
clk_disable_unprepare(msm_host->byte_clk);
}
-static unsigned long dsi_get_pclk_rate(struct msm_dsi_host *msm_host, bool is_bonded_dsi)
+static unsigned long dsi_get_pclk_rate(const struct drm_display_mode *mode, bool is_bonded_dsi)
{
- struct drm_display_mode *mode = msm_host->mode;
unsigned long pclk_rate;
pclk_rate = mode->clock * 1000;
@@ -588,11 +578,13 @@ static unsigned long dsi_get_pclk_rate(struct msm_dsi_host *msm_host, bool is_bo
return pclk_rate;
}
-static void dsi_calc_pclk(struct msm_dsi_host *msm_host, bool is_bonded_dsi)
+unsigned long dsi_byte_clk_get_rate(struct mipi_dsi_host *host, bool is_bonded_dsi,
+ const struct drm_display_mode *mode)
{
+ struct msm_dsi_host *msm_host = to_msm_dsi_host(host);
u8 lanes = msm_host->lanes;
u32 bpp = dsi_get_bpp(msm_host->format);
- unsigned long pclk_rate = dsi_get_pclk_rate(msm_host, is_bonded_dsi);
+ unsigned long pclk_rate = dsi_get_pclk_rate(mode, is_bonded_dsi);
u64 pclk_bpp = (u64)pclk_rate * bpp;
if (lanes == 0) {
@@ -606,8 +598,14 @@ static void dsi_calc_pclk(struct msm_dsi_host *msm_host, bool is_bonded_dsi)
else
do_div(pclk_bpp, (8 * lanes));
- msm_host->pixel_clk_rate = pclk_rate;
- msm_host->byte_clk_rate = pclk_bpp;
+ return pclk_bpp;
+}
+
+static void dsi_calc_pclk(struct msm_dsi_host *msm_host, bool is_bonded_dsi)
+{
+ msm_host->pixel_clk_rate = dsi_get_pclk_rate(msm_host->mode, is_bonded_dsi);
+ msm_host->byte_clk_rate = dsi_byte_clk_get_rate(&msm_host->base, is_bonded_dsi,
+ msm_host->mode);
DBG("pclk=%lu, bclk=%lu", msm_host->pixel_clk_rate,
msm_host->byte_clk_rate);
@@ -635,7 +633,7 @@ int dsi_calc_clk_rate_v2(struct msm_dsi_host *msm_host, bool is_bonded_dsi)
dsi_calc_pclk(msm_host, is_bonded_dsi);
- pclk_bpp = (u64)dsi_get_pclk_rate(msm_host, is_bonded_dsi) * bpp;
+ pclk_bpp = (u64)dsi_get_pclk_rate(msm_host->mode, is_bonded_dsi) * bpp;
do_div(pclk_bpp, 8);
msm_host->src_clk_rate = pclk_bpp;
@@ -842,31 +840,25 @@ static void dsi_ctrl_config(struct msm_dsi_host *msm_host, bool enable,
static void dsi_update_dsc_timing(struct msm_dsi_host *msm_host, bool is_cmd_mode, u32 hdisplay)
{
struct drm_dsc_config *dsc = msm_host->dsc;
- u32 reg, intf_width, reg_ctrl, reg_ctrl2;
+ u32 reg, reg_ctrl, reg_ctrl2;
u32 slice_per_intf, total_bytes_per_intf;
u32 pkt_per_line;
- u32 bytes_in_slice;
u32 eol_byte_num;
/* first calculate dsc parameters and then program
* compress mode registers
*/
- intf_width = hdisplay;
- slice_per_intf = DIV_ROUND_UP(intf_width, dsc->slice_width);
+ slice_per_intf = DIV_ROUND_UP(hdisplay, dsc->slice_width);
- /* If slice_per_pkt is greater than slice_per_intf
+ /*
+ * If slice_count is greater than slice_per_intf
* then default to 1. This can happen during partial
* update.
*/
- if (slice_per_intf > dsc->slice_count)
+ if (dsc->slice_count > slice_per_intf)
dsc->slice_count = 1;
- slice_per_intf = DIV_ROUND_UP(hdisplay, dsc->slice_width);
- bytes_in_slice = DIV_ROUND_UP(dsc->slice_width * dsc->bits_per_pixel, 8);
-
- dsc->slice_chunk_size = bytes_in_slice;
-
- total_bytes_per_intf = bytes_in_slice * slice_per_intf;
+ total_bytes_per_intf = dsc->slice_chunk_size * slice_per_intf;
eol_byte_num = total_bytes_per_intf % 3;
pkt_per_line = slice_per_intf / dsc->slice_count;
@@ -892,7 +884,7 @@ static void dsi_update_dsc_timing(struct msm_dsi_host *msm_host, bool is_cmd_mod
reg_ctrl |= reg;
reg_ctrl2 &= ~DSI_COMMAND_COMPRESSION_MODE_CTRL2_STREAM0_SLICE_WIDTH__MASK;
- reg_ctrl2 |= DSI_COMMAND_COMPRESSION_MODE_CTRL2_STREAM0_SLICE_WIDTH(bytes_in_slice);
+ reg_ctrl2 |= DSI_COMMAND_COMPRESSION_MODE_CTRL2_STREAM0_SLICE_WIDTH(dsc->slice_chunk_size);
dsi_write(msm_host, REG_DSI_COMMAND_COMPRESSION_MODE_CTRL, reg_ctrl);
dsi_write(msm_host, REG_DSI_COMMAND_COMPRESSION_MODE_CTRL2, reg_ctrl2);
@@ -915,6 +907,7 @@ static void dsi_timing_setup(struct msm_dsi_host *msm_host, bool is_bonded_dsi)
u32 va_end = va_start + mode->vdisplay;
u32 hdisplay = mode->hdisplay;
u32 wc;
+ int ret;
DBG("");
@@ -950,7 +943,9 @@ static void dsi_timing_setup(struct msm_dsi_host *msm_host, bool is_bonded_dsi)
/* we do the calculations for dsc parameters here so that
* panel can use these parameters
*/
- dsi_populate_dsc_params(dsc);
+ ret = dsi_populate_dsc_params(msm_host, dsc);
+ if (ret)
+ return;
/* Divide the display by 3 but keep back/font porch and
* pulse width same
@@ -990,7 +985,7 @@ static void dsi_timing_setup(struct msm_dsi_host *msm_host, bool is_bonded_dsi)
if (!msm_host->dsc)
wc = hdisplay * dsi_get_bpp(msm_host->format) / 8 + 1;
else
- wc = mode->hdisplay / 2 + 1;
+ wc = msm_host->dsc->slice_chunk_size * msm_host->dsc->slice_count + 1;
dsi_write(msm_host, REG_DSI_CMD_MDP_STREAM0_CTRL,
DSI_CMD_MDP_STREAM0_CTRL_WORD_COUNT(wc) |
@@ -1754,18 +1749,20 @@ static char bpg_offset[DSC_NUM_BUF_RANGES] = {
2, 0, 0, -2, -4, -6, -8, -8, -8, -10, -10, -12, -12, -12, -12
};
-static int dsi_populate_dsc_params(struct drm_dsc_config *dsc)
-{
- int mux_words_size;
- int groups_per_line, groups_total;
- int min_rate_buffer_size;
- int hrd_delay;
- int pre_num_extra_mux_bits, num_extra_mux_bits;
- int slice_bits;
- int target_bpp_x16;
- int data;
- int final_value, final_scale;
+static int dsi_populate_dsc_params(struct msm_dsi_host *msm_host, struct drm_dsc_config *dsc)
+{
int i;
+ u16 bpp = dsc->bits_per_pixel >> 4;
+
+ if (dsc->bits_per_pixel & 0xf) {
+ DRM_DEV_ERROR(&msm_host->pdev->dev, "DSI does not support fractional bits_per_pixel\n");
+ return -EINVAL;
+ }
+
+ if (dsc->bits_per_component != 8) {
+ DRM_DEV_ERROR(&msm_host->pdev->dev, "DSI does not support bits_per_component != 8 yet\n");
+ return -EOPNOTSUPP;
+ }
dsc->rc_model_size = 8192;
dsc->first_line_bpg_offset = 12;
@@ -1783,16 +1780,21 @@ static int dsi_populate_dsc_params(struct drm_dsc_config *dsc)
for (i = 0; i < DSC_NUM_BUF_RANGES; i++) {
dsc->rc_range_params[i].range_min_qp = min_qp[i];
dsc->rc_range_params[i].range_max_qp = max_qp[i];
- dsc->rc_range_params[i].range_bpg_offset = bpg_offset[i];
+ /*
+ * Range BPG Offset contains two's-complement signed values that fill
+ * 8 bits, yet the registers and DCS PPS field are only 6 bits wide.
+ */
+ dsc->rc_range_params[i].range_bpg_offset = bpg_offset[i] & DSC_RANGE_BPG_OFFSET_MASK;
}
- dsc->initial_offset = 6144; /* Not bpp 12 */
- if (dsc->bits_per_pixel != 8)
+ dsc->initial_offset = 6144; /* Not bpp 12 */
+ if (bpp != 8)
dsc->initial_offset = 2048; /* bpp = 12 */
- mux_words_size = 48; /* bpc == 8/10 */
- if (dsc->bits_per_component == 12)
- mux_words_size = 64;
+ if (dsc->bits_per_component <= 10)
+ dsc->mux_word_size = DSC_MUX_WORD_SIZE_8_10_BPC;
+ else
+ dsc->mux_word_size = DSC_MUX_WORD_SIZE_12_BPC;
dsc->initial_xmit_delay = 512;
dsc->initial_scale_value = 32;
@@ -1804,63 +1806,8 @@ static int dsi_populate_dsc_params(struct drm_dsc_config *dsc)
dsc->flatness_max_qp = 12;
dsc->rc_quant_incr_limit0 = 11;
dsc->rc_quant_incr_limit1 = 11;
- dsc->mux_word_size = DSC_MUX_WORD_SIZE_8_10_BPC;
-
- /* FIXME: need to call drm_dsc_compute_rc_parameters() so that rest of
- * params are calculated
- */
- groups_per_line = DIV_ROUND_UP(dsc->slice_width, 3);
- dsc->slice_chunk_size = dsc->slice_width * dsc->bits_per_pixel / 8;
- if ((dsc->slice_width * dsc->bits_per_pixel) % 8)
- dsc->slice_chunk_size++;
-
- /* rbs-min */
- min_rate_buffer_size = dsc->rc_model_size - dsc->initial_offset +
- dsc->initial_xmit_delay * dsc->bits_per_pixel +
- groups_per_line * dsc->first_line_bpg_offset;
- hrd_delay = DIV_ROUND_UP(min_rate_buffer_size, dsc->bits_per_pixel);
-
- dsc->initial_dec_delay = hrd_delay - dsc->initial_xmit_delay;
-
- dsc->initial_scale_value = 8 * dsc->rc_model_size /
- (dsc->rc_model_size - dsc->initial_offset);
-
- slice_bits = 8 * dsc->slice_chunk_size * dsc->slice_height;
-
- groups_total = groups_per_line * dsc->slice_height;
-
- data = dsc->first_line_bpg_offset * 2048;
-
- dsc->nfl_bpg_offset = DIV_ROUND_UP(data, (dsc->slice_height - 1));
-
- pre_num_extra_mux_bits = 3 * (mux_words_size + (4 * dsc->bits_per_component + 4) - 2);
-
- num_extra_mux_bits = pre_num_extra_mux_bits - (mux_words_size -
- ((slice_bits - pre_num_extra_mux_bits) % mux_words_size));
-
- data = 2048 * (dsc->rc_model_size - dsc->initial_offset + num_extra_mux_bits);
- dsc->slice_bpg_offset = DIV_ROUND_UP(data, groups_total);
-
- /* bpp * 16 + 0.5 */
- data = dsc->bits_per_pixel * 16;
- data *= 2;
- data++;
- data /= 2;
- target_bpp_x16 = data;
-
- data = (dsc->initial_xmit_delay * target_bpp_x16) / 16;
- final_value = dsc->rc_model_size - data + num_extra_mux_bits;
- dsc->final_offset = final_value;
-
- final_scale = 8 * dsc->rc_model_size / (dsc->rc_model_size - final_value);
-
- data = (final_scale - 9) * (dsc->nfl_bpg_offset + dsc->slice_bpg_offset);
- dsc->scale_increment_interval = (2048 * dsc->final_offset) / data;
-
- dsc->scale_decrement_interval = groups_per_line / (dsc->initial_scale_value - 8);
-
- return 0;
+ return drm_dsc_compute_rc_parameters(dsc);
}
static int dsi_host_parse_dt(struct msm_dsi_host *msm_host)
@@ -1911,16 +1858,16 @@ static int dsi_host_get_id(struct msm_dsi_host *msm_host)
struct platform_device *pdev = msm_host->pdev;
const struct msm_dsi_config *cfg = msm_host->cfg_hnd->cfg;
struct resource *res;
- int i;
+ int i, j;
res = platform_get_resource_byname(pdev, IORESOURCE_MEM, "dsi_ctrl");
if (!res)
return -EINVAL;
- for (i = 0; i < cfg->num_dsi; i++) {
- if (cfg->io_start[i] == res->start)
- return i;
- }
+ for (i = 0; i < VARIANTS_MAX; i++)
+ for (j = 0; j < DSI_MAX; j++)
+ if (cfg->io_start[i][j] == res->start)
+ return j;
return -EINVAL;
}
@@ -1934,8 +1881,7 @@ int msm_dsi_host_init(struct msm_dsi *msm_dsi)
msm_host = devm_kzalloc(&pdev->dev, sizeof(*msm_host), GFP_KERNEL);
if (!msm_host) {
- ret = -ENOMEM;
- goto fail;
+ return -ENOMEM;
}
msm_host->pdev = pdev;
@@ -1944,31 +1890,28 @@ int msm_dsi_host_init(struct msm_dsi *msm_dsi)
ret = dsi_host_parse_dt(msm_host);
if (ret) {
pr_err("%s: failed to parse dt\n", __func__);
- goto fail;
+ return ret;
}
msm_host->ctrl_base = msm_ioremap_size(pdev, "dsi_ctrl", &msm_host->ctrl_size);
if (IS_ERR(msm_host->ctrl_base)) {
pr_err("%s: unable to map Dsi ctrl base\n", __func__);
- ret = PTR_ERR(msm_host->ctrl_base);
- goto fail;
+ return PTR_ERR(msm_host->ctrl_base);
}
pm_runtime_enable(&pdev->dev);
msm_host->cfg_hnd = dsi_get_config(msm_host);
if (!msm_host->cfg_hnd) {
- ret = -EINVAL;
pr_err("%s: get config failed\n", __func__);
- goto fail;
+ return -EINVAL;
}
cfg = msm_host->cfg_hnd->cfg;
msm_host->id = dsi_host_get_id(msm_host);
if (msm_host->id < 0) {
- ret = msm_host->id;
pr_err("%s: unable to identify DSI host index\n", __func__);
- goto fail;
+ return msm_host->id;
}
/* fixup base address by io offset */
@@ -1978,19 +1921,18 @@ int msm_dsi_host_init(struct msm_dsi *msm_dsi)
cfg->regulator_data,
&msm_host->supplies);
if (ret)
- goto fail;
+ return ret;
ret = dsi_clk_init(msm_host);
if (ret) {
pr_err("%s: unable to initialize dsi clks\n", __func__);
- goto fail;
+ return ret;
}
msm_host->rx_buf = devm_kzalloc(&pdev->dev, SZ_4K, GFP_KERNEL);
if (!msm_host->rx_buf) {
- ret = -ENOMEM;
pr_err("%s: alloc rx temp buf failed\n", __func__);
- goto fail;
+ return -ENOMEM;
}
ret = devm_pm_opp_set_clkname(&pdev->dev, "byte");
@@ -2028,15 +1970,15 @@ int msm_dsi_host_init(struct msm_dsi *msm_dsi)
/* setup workqueue */
msm_host->workqueue = alloc_ordered_workqueue("dsi_drm_work", 0);
+ if (!msm_host->workqueue)
+ return -ENOMEM;
+
INIT_WORK(&msm_host->err_work, dsi_err_worker);
msm_dsi->id = msm_host->id;
DBG("Dsi Host %d initialized", msm_host->id);
return 0;
-
-fail:
- return ret;
}
void msm_dsi_host_destroy(struct mipi_dsi_host *host)
@@ -2442,6 +2384,10 @@ int msm_dsi_host_power_on(struct mipi_dsi_host *host,
goto unlock_ret;
}
+ msm_host->byte_intf_clk_rate = msm_host->byte_clk_rate;
+ if (phy_shared_timings->byte_intf_clk_div_2)
+ msm_host->byte_intf_clk_rate /= 2;
+
msm_dsi_sfpb_config(msm_host, true);
ret = regulator_bulk_enable(msm_host->cfg_hnd->cfg->num_regulators,
diff --git a/drivers/gpu/drm/msm/dsi/dsi_manager.c b/drivers/gpu/drm/msm/dsi/dsi_manager.c
index 3a1417397283..1bbac72dad35 100644
--- a/drivers/gpu/drm/msm/dsi/dsi_manager.c
+++ b/drivers/gpu/drm/msm/dsi/dsi_manager.c
@@ -450,6 +450,26 @@ static enum drm_mode_status dsi_mgr_bridge_mode_valid(struct drm_bridge *bridge,
int id = dsi_mgr_bridge_get_id(bridge);
struct msm_dsi *msm_dsi = dsi_mgr_get_dsi(id);
struct mipi_dsi_host *host = msm_dsi->host;
+ struct platform_device *pdev = msm_dsi->pdev;
+ struct dev_pm_opp *opp;
+ unsigned long byte_clk_rate;
+
+ byte_clk_rate = dsi_byte_clk_get_rate(host, IS_BONDED_DSI(), mode);
+
+ opp = dev_pm_opp_find_freq_ceil(&pdev->dev, &byte_clk_rate);
+ if (!IS_ERR(opp)) {
+ dev_pm_opp_put(opp);
+ } else if (PTR_ERR(opp) == -ERANGE) {
+ /*
+ * An empty table is created by devm_pm_opp_set_clkname() even
+ * if there is none. Thus find_freq_ceil will still return
+ * -ERANGE in such case.
+ */
+ if (dev_pm_opp_get_opp_count(&pdev->dev) != 0)
+ return MODE_CLOCK_RANGE;
+ } else {
+ return MODE_ERROR;
+ }
return msm_dsi_host_check_dsc(host, mode);
}
diff --git a/drivers/gpu/drm/msm/dsi/dsi_phy_10nm.xml.h b/drivers/gpu/drm/msm/dsi/dsi_phy_10nm.xml.h
index 8b1be69ccf89..a2ae8777e59e 100644
--- a/drivers/gpu/drm/msm/dsi/dsi_phy_10nm.xml.h
+++ b/drivers/gpu/drm/msm/dsi/dsi_phy_10nm.xml.h
@@ -8,26 +8,26 @@ http://github.com/freedreno/envytools/
git clone https://github.com/freedreno/envytools.git
The rules-ng-ng source files this header was generated from are:
-- /home/robclark/tmp/mesa/src/freedreno/registers/msm.xml ( 944 bytes, from 2022-03-03 01:18:13)
-- /home/robclark/tmp/mesa/src/freedreno/registers/freedreno_copyright.xml ( 1572 bytes, from 2020-12-31 19:26:32)
-- /home/robclark/tmp/mesa/src/freedreno/registers/mdp/mdp4.xml ( 20912 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/mdp/mdp_common.xml ( 2849 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/mdp/mdp5.xml ( 37461 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi.xml ( 17560 bytes, from 2021-09-16 22:37:02)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_v2.xml ( 3236 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_28nm_8960.xml ( 4935 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_28nm.xml ( 7004 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_20nm.xml ( 3712 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_14nm.xml ( 5381 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_10nm.xml ( 4499 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_7nm.xml ( 11007 bytes, from 2022-03-03 01:18:13)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/sfpb.xml ( 602 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/mmss_cc.xml ( 1686 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/hdmi/qfprom.xml ( 600 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/hdmi/hdmi.xml ( 41874 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/edp/edp.xml ( 10416 bytes, from 2021-01-30 18:25:22)
-
-Copyright (C) 2013-2021 by the following authors:
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/msm.xml ( 944 bytes, from 2022-07-23 20:21:46)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/freedreno_copyright.xml ( 1572 bytes, from 2022-07-23 20:21:46)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/mdp/mdp4.xml ( 20912 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/mdp/mdp_common.xml ( 2849 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/mdp/mdp5.xml ( 37461 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi.xml ( 18746 bytes, from 2022-04-28 17:29:36)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_v2.xml ( 3236 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_28nm_8960.xml ( 4935 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_28nm.xml ( 7004 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_20nm.xml ( 3712 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_14nm.xml ( 5381 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_10nm.xml ( 4499 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_7nm.xml ( 11007 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/sfpb.xml ( 602 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/mmss_cc.xml ( 1686 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/hdmi/qfprom.xml ( 600 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/hdmi/hdmi.xml ( 42350 bytes, from 2022-09-20 17:45:56)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/edp/edp.xml ( 10416 bytes, from 2022-03-08 17:40:42)
+
+Copyright (C) 2013-2022 by the following authors:
- Rob Clark <robdclark@gmail.com> (robclark)
- Ilia Mirkin <imirkin@alum.mit.edu> (imirkin)
diff --git a/drivers/gpu/drm/msm/dsi/dsi_phy_14nm.xml.h b/drivers/gpu/drm/msm/dsi/dsi_phy_14nm.xml.h
index 515f1fa605bf..24e2fdc0cde1 100644
--- a/drivers/gpu/drm/msm/dsi/dsi_phy_14nm.xml.h
+++ b/drivers/gpu/drm/msm/dsi/dsi_phy_14nm.xml.h
@@ -8,26 +8,26 @@ http://github.com/freedreno/envytools/
git clone https://github.com/freedreno/envytools.git
The rules-ng-ng source files this header was generated from are:
-- /home/robclark/tmp/mesa/src/freedreno/registers/msm.xml ( 944 bytes, from 2022-03-03 01:18:13)
-- /home/robclark/tmp/mesa/src/freedreno/registers/freedreno_copyright.xml ( 1572 bytes, from 2020-12-31 19:26:32)
-- /home/robclark/tmp/mesa/src/freedreno/registers/mdp/mdp4.xml ( 20912 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/mdp/mdp_common.xml ( 2849 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/mdp/mdp5.xml ( 37461 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi.xml ( 17560 bytes, from 2021-09-16 22:37:02)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_v2.xml ( 3236 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_28nm_8960.xml ( 4935 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_28nm.xml ( 7004 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_20nm.xml ( 3712 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_14nm.xml ( 5381 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_10nm.xml ( 4499 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_7nm.xml ( 11007 bytes, from 2022-03-03 01:18:13)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/sfpb.xml ( 602 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/mmss_cc.xml ( 1686 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/hdmi/qfprom.xml ( 600 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/hdmi/hdmi.xml ( 41874 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/edp/edp.xml ( 10416 bytes, from 2021-01-30 18:25:22)
-
-Copyright (C) 2013-2021 by the following authors:
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/msm.xml ( 944 bytes, from 2022-07-23 20:21:46)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/freedreno_copyright.xml ( 1572 bytes, from 2022-07-23 20:21:46)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/mdp/mdp4.xml ( 20912 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/mdp/mdp_common.xml ( 2849 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/mdp/mdp5.xml ( 37461 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi.xml ( 18746 bytes, from 2022-04-28 17:29:36)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_v2.xml ( 3236 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_28nm_8960.xml ( 4935 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_28nm.xml ( 7004 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_20nm.xml ( 3712 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_14nm.xml ( 5381 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_10nm.xml ( 4499 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_7nm.xml ( 11007 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/sfpb.xml ( 602 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/mmss_cc.xml ( 1686 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/hdmi/qfprom.xml ( 600 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/hdmi/hdmi.xml ( 42350 bytes, from 2022-09-20 17:45:56)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/edp/edp.xml ( 10416 bytes, from 2022-03-08 17:40:42)
+
+Copyright (C) 2013-2022 by the following authors:
- Rob Clark <robdclark@gmail.com> (robclark)
- Ilia Mirkin <imirkin@alum.mit.edu> (imirkin)
diff --git a/drivers/gpu/drm/msm/dsi/dsi_phy_20nm.xml.h b/drivers/gpu/drm/msm/dsi/dsi_phy_20nm.xml.h
index 81e4622eb358..6352541f37e9 100644
--- a/drivers/gpu/drm/msm/dsi/dsi_phy_20nm.xml.h
+++ b/drivers/gpu/drm/msm/dsi/dsi_phy_20nm.xml.h
@@ -8,26 +8,26 @@ http://github.com/freedreno/envytools/
git clone https://github.com/freedreno/envytools.git
The rules-ng-ng source files this header was generated from are:
-- /home/robclark/tmp/mesa/src/freedreno/registers/msm.xml ( 944 bytes, from 2022-03-03 01:18:13)
-- /home/robclark/tmp/mesa/src/freedreno/registers/freedreno_copyright.xml ( 1572 bytes, from 2020-12-31 19:26:32)
-- /home/robclark/tmp/mesa/src/freedreno/registers/mdp/mdp4.xml ( 20912 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/mdp/mdp_common.xml ( 2849 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/mdp/mdp5.xml ( 37461 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi.xml ( 17560 bytes, from 2021-09-16 22:37:02)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_v2.xml ( 3236 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_28nm_8960.xml ( 4935 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_28nm.xml ( 7004 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_20nm.xml ( 3712 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_14nm.xml ( 5381 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_10nm.xml ( 4499 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_7nm.xml ( 11007 bytes, from 2022-03-03 01:18:13)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/sfpb.xml ( 602 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/mmss_cc.xml ( 1686 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/hdmi/qfprom.xml ( 600 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/hdmi/hdmi.xml ( 41874 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/edp/edp.xml ( 10416 bytes, from 2021-01-30 18:25:22)
-
-Copyright (C) 2013-2021 by the following authors:
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/msm.xml ( 944 bytes, from 2022-07-23 20:21:46)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/freedreno_copyright.xml ( 1572 bytes, from 2022-07-23 20:21:46)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/mdp/mdp4.xml ( 20912 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/mdp/mdp_common.xml ( 2849 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/mdp/mdp5.xml ( 37461 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi.xml ( 18746 bytes, from 2022-04-28 17:29:36)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_v2.xml ( 3236 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_28nm_8960.xml ( 4935 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_28nm.xml ( 7004 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_20nm.xml ( 3712 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_14nm.xml ( 5381 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_10nm.xml ( 4499 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_7nm.xml ( 11007 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/sfpb.xml ( 602 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/mmss_cc.xml ( 1686 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/hdmi/qfprom.xml ( 600 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/hdmi/hdmi.xml ( 42350 bytes, from 2022-09-20 17:45:56)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/edp/edp.xml ( 10416 bytes, from 2022-03-08 17:40:42)
+
+Copyright (C) 2013-2022 by the following authors:
- Rob Clark <robdclark@gmail.com> (robclark)
- Ilia Mirkin <imirkin@alum.mit.edu> (imirkin)
diff --git a/drivers/gpu/drm/msm/dsi/dsi_phy_28nm.xml.h b/drivers/gpu/drm/msm/dsi/dsi_phy_28nm.xml.h
index 8c7db35c12c8..178bd4fd7893 100644
--- a/drivers/gpu/drm/msm/dsi/dsi_phy_28nm.xml.h
+++ b/drivers/gpu/drm/msm/dsi/dsi_phy_28nm.xml.h
@@ -8,26 +8,26 @@ http://github.com/freedreno/envytools/
git clone https://github.com/freedreno/envytools.git
The rules-ng-ng source files this header was generated from are:
-- /home/robclark/tmp/mesa/src/freedreno/registers/msm.xml ( 944 bytes, from 2022-03-03 01:18:13)
-- /home/robclark/tmp/mesa/src/freedreno/registers/freedreno_copyright.xml ( 1572 bytes, from 2020-12-31 19:26:32)
-- /home/robclark/tmp/mesa/src/freedreno/registers/mdp/mdp4.xml ( 20912 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/mdp/mdp_common.xml ( 2849 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/mdp/mdp5.xml ( 37461 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi.xml ( 17560 bytes, from 2021-09-16 22:37:02)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_v2.xml ( 3236 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_28nm_8960.xml ( 4935 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_28nm.xml ( 7004 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_20nm.xml ( 3712 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_14nm.xml ( 5381 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_10nm.xml ( 4499 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_7nm.xml ( 11007 bytes, from 2022-03-03 01:18:13)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/sfpb.xml ( 602 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/mmss_cc.xml ( 1686 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/hdmi/qfprom.xml ( 600 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/hdmi/hdmi.xml ( 41874 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/edp/edp.xml ( 10416 bytes, from 2021-01-30 18:25:22)
-
-Copyright (C) 2013-2021 by the following authors:
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/msm.xml ( 944 bytes, from 2022-07-23 20:21:46)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/freedreno_copyright.xml ( 1572 bytes, from 2022-07-23 20:21:46)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/mdp/mdp4.xml ( 20912 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/mdp/mdp_common.xml ( 2849 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/mdp/mdp5.xml ( 37461 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi.xml ( 18746 bytes, from 2022-04-28 17:29:36)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_v2.xml ( 3236 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_28nm_8960.xml ( 4935 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_28nm.xml ( 7004 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_20nm.xml ( 3712 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_14nm.xml ( 5381 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_10nm.xml ( 4499 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_7nm.xml ( 11007 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/sfpb.xml ( 602 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/mmss_cc.xml ( 1686 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/hdmi/qfprom.xml ( 600 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/hdmi/hdmi.xml ( 42350 bytes, from 2022-09-20 17:45:56)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/edp/edp.xml ( 10416 bytes, from 2022-03-08 17:40:42)
+
+Copyright (C) 2013-2022 by the following authors:
- Rob Clark <robdclark@gmail.com> (robclark)
- Ilia Mirkin <imirkin@alum.mit.edu> (imirkin)
diff --git a/drivers/gpu/drm/msm/dsi/dsi_phy_28nm_8960.xml.h b/drivers/gpu/drm/msm/dsi/dsi_phy_28nm_8960.xml.h
index 44eeca31a811..5f900bb53519 100644
--- a/drivers/gpu/drm/msm/dsi/dsi_phy_28nm_8960.xml.h
+++ b/drivers/gpu/drm/msm/dsi/dsi_phy_28nm_8960.xml.h
@@ -8,26 +8,26 @@ http://github.com/freedreno/envytools/
git clone https://github.com/freedreno/envytools.git
The rules-ng-ng source files this header was generated from are:
-- /home/robclark/tmp/mesa/src/freedreno/registers/msm.xml ( 944 bytes, from 2022-03-03 01:18:13)
-- /home/robclark/tmp/mesa/src/freedreno/registers/freedreno_copyright.xml ( 1572 bytes, from 2020-12-31 19:26:32)
-- /home/robclark/tmp/mesa/src/freedreno/registers/mdp/mdp4.xml ( 20912 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/mdp/mdp_common.xml ( 2849 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/mdp/mdp5.xml ( 37461 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi.xml ( 17560 bytes, from 2021-09-16 22:37:02)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_v2.xml ( 3236 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_28nm_8960.xml ( 4935 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_28nm.xml ( 7004 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_20nm.xml ( 3712 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_14nm.xml ( 5381 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_10nm.xml ( 4499 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_7nm.xml ( 11007 bytes, from 2022-03-03 01:18:13)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/sfpb.xml ( 602 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/mmss_cc.xml ( 1686 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/hdmi/qfprom.xml ( 600 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/hdmi/hdmi.xml ( 41874 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/edp/edp.xml ( 10416 bytes, from 2021-01-30 18:25:22)
-
-Copyright (C) 2013-2021 by the following authors:
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/msm.xml ( 944 bytes, from 2022-07-23 20:21:46)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/freedreno_copyright.xml ( 1572 bytes, from 2022-07-23 20:21:46)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/mdp/mdp4.xml ( 20912 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/mdp/mdp_common.xml ( 2849 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/mdp/mdp5.xml ( 37461 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi.xml ( 18746 bytes, from 2022-04-28 17:29:36)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_v2.xml ( 3236 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_28nm_8960.xml ( 4935 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_28nm.xml ( 7004 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_20nm.xml ( 3712 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_14nm.xml ( 5381 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_10nm.xml ( 4499 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_7nm.xml ( 11007 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/sfpb.xml ( 602 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/mmss_cc.xml ( 1686 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/hdmi/qfprom.xml ( 600 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/hdmi/hdmi.xml ( 42350 bytes, from 2022-09-20 17:45:56)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/edp/edp.xml ( 10416 bytes, from 2022-03-08 17:40:42)
+
+Copyright (C) 2013-2022 by the following authors:
- Rob Clark <robdclark@gmail.com> (robclark)
- Ilia Mirkin <imirkin@alum.mit.edu> (imirkin)
diff --git a/drivers/gpu/drm/msm/dsi/dsi_phy_7nm.xml.h b/drivers/gpu/drm/msm/dsi/dsi_phy_7nm.xml.h
index 5bc061797003..584cbd0205ef 100644
--- a/drivers/gpu/drm/msm/dsi/dsi_phy_7nm.xml.h
+++ b/drivers/gpu/drm/msm/dsi/dsi_phy_7nm.xml.h
@@ -8,24 +8,24 @@ http://github.com/freedreno/envytools/
git clone https://github.com/freedreno/envytools.git
The rules-ng-ng source files this header was generated from are:
-- /home/robclark/tmp/mesa/src/freedreno/registers/msm.xml ( 944 bytes, from 2022-03-03 01:18:13)
-- /home/robclark/tmp/mesa/src/freedreno/registers/freedreno_copyright.xml ( 1572 bytes, from 2020-12-31 19:26:32)
-- /home/robclark/tmp/mesa/src/freedreno/registers/mdp/mdp4.xml ( 20912 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/mdp/mdp_common.xml ( 2849 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/mdp/mdp5.xml ( 37461 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi.xml ( 17560 bytes, from 2021-09-16 22:37:02)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_v2.xml ( 3236 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_28nm_8960.xml ( 4935 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_28nm.xml ( 7004 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_20nm.xml ( 3712 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_14nm.xml ( 5381 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_10nm.xml ( 4499 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_7nm.xml ( 11007 bytes, from 2022-03-03 01:18:13)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/sfpb.xml ( 602 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/mmss_cc.xml ( 1686 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/hdmi/qfprom.xml ( 600 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/hdmi/hdmi.xml ( 41874 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/edp/edp.xml ( 10416 bytes, from 2021-01-30 18:25:22)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/msm.xml ( 944 bytes, from 2022-07-23 20:21:46)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/freedreno_copyright.xml ( 1572 bytes, from 2022-07-23 20:21:46)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/mdp/mdp4.xml ( 20912 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/mdp/mdp_common.xml ( 2849 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/mdp/mdp5.xml ( 37461 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi.xml ( 18746 bytes, from 2022-04-28 17:29:36)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_v2.xml ( 3236 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_28nm_8960.xml ( 4935 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_28nm.xml ( 7004 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_20nm.xml ( 3712 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_14nm.xml ( 5381 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_10nm.xml ( 4499 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_7nm.xml ( 11007 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/sfpb.xml ( 602 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/mmss_cc.xml ( 1686 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/hdmi/qfprom.xml ( 600 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/hdmi/hdmi.xml ( 42350 bytes, from 2022-09-20 17:45:56)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/edp/edp.xml ( 10416 bytes, from 2022-03-08 17:40:42)
Copyright (C) 2013-2022 by the following authors:
- Rob Clark <robdclark@gmail.com> (robclark)
diff --git a/drivers/gpu/drm/msm/dsi/mmss_cc.xml.h b/drivers/gpu/drm/msm/dsi/mmss_cc.xml.h
index 03bc322d0487..7062f7164216 100644
--- a/drivers/gpu/drm/msm/dsi/mmss_cc.xml.h
+++ b/drivers/gpu/drm/msm/dsi/mmss_cc.xml.h
@@ -8,26 +8,26 @@ http://github.com/freedreno/envytools/
git clone https://github.com/freedreno/envytools.git
The rules-ng-ng source files this header was generated from are:
-- /home/robclark/tmp/mesa/src/freedreno/registers/msm.xml ( 944 bytes, from 2022-03-03 01:18:13)
-- /home/robclark/tmp/mesa/src/freedreno/registers/freedreno_copyright.xml ( 1572 bytes, from 2020-12-31 19:26:32)
-- /home/robclark/tmp/mesa/src/freedreno/registers/mdp/mdp4.xml ( 20912 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/mdp/mdp_common.xml ( 2849 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/mdp/mdp5.xml ( 37461 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi.xml ( 17560 bytes, from 2021-09-16 22:37:02)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_v2.xml ( 3236 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_28nm_8960.xml ( 4935 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_28nm.xml ( 7004 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_20nm.xml ( 3712 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_14nm.xml ( 5381 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_10nm.xml ( 4499 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_7nm.xml ( 11007 bytes, from 2022-03-03 01:18:13)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/sfpb.xml ( 602 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/mmss_cc.xml ( 1686 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/hdmi/qfprom.xml ( 600 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/hdmi/hdmi.xml ( 41874 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/edp/edp.xml ( 10416 bytes, from 2021-01-30 18:25:22)
-
-Copyright (C) 2013-2021 by the following authors:
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/msm.xml ( 944 bytes, from 2022-07-23 20:21:46)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/freedreno_copyright.xml ( 1572 bytes, from 2022-07-23 20:21:46)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/mdp/mdp4.xml ( 20912 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/mdp/mdp_common.xml ( 2849 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/mdp/mdp5.xml ( 37461 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi.xml ( 18746 bytes, from 2022-04-28 17:29:36)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_v2.xml ( 3236 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_28nm_8960.xml ( 4935 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_28nm.xml ( 7004 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_20nm.xml ( 3712 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_14nm.xml ( 5381 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_10nm.xml ( 4499 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_7nm.xml ( 11007 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/sfpb.xml ( 602 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/mmss_cc.xml ( 1686 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/hdmi/qfprom.xml ( 600 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/hdmi/hdmi.xml ( 42350 bytes, from 2022-09-20 17:45:56)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/edp/edp.xml ( 10416 bytes, from 2022-03-08 17:40:42)
+
+Copyright (C) 2013-2022 by the following authors:
- Rob Clark <robdclark@gmail.com> (robclark)
- Ilia Mirkin <imirkin@alum.mit.edu> (imirkin)
diff --git a/drivers/gpu/drm/msm/dsi/phy/dsi_phy.c b/drivers/gpu/drm/msm/dsi/phy/dsi_phy.c
index 7fc0975cb869..bb09cbe8ff86 100644
--- a/drivers/gpu/drm/msm/dsi/phy/dsi_phy.c
+++ b/drivers/gpu/drm/msm/dsi/phy/dsi_phy.c
@@ -350,6 +350,8 @@ int msm_dsi_dphy_timing_calc_v3(struct msm_dsi_dphy_timing *timing,
timing->shared_timings.clk_pre_inc_by_2 = 0;
}
+ timing->shared_timings.byte_intf_clk_div_2 = true;
+
timing->ta_go = 3;
timing->ta_sure = 0;
timing->ta_get = 4;
@@ -454,6 +456,8 @@ int msm_dsi_dphy_timing_calc_v4(struct msm_dsi_dphy_timing *timing,
tmax = 255;
timing->shared_timings.clk_pre = DIV_ROUND_UP((tmax - tmin) * 125, 10000) + tmin;
+ timing->shared_timings.byte_intf_clk_div_2 = true;
+
DBG("%d, %d, %d, %d, %d, %d, %d, %d, %d, %d",
timing->shared_timings.clk_pre, timing->shared_timings.clk_post,
timing->clk_zero, timing->clk_trail, timing->clk_prepare, timing->hs_exit,
@@ -549,6 +553,8 @@ static const struct of_device_id dsi_phy_dt_match[] = {
#ifdef CONFIG_DRM_MSM_DSI_14NM_PHY
{ .compatible = "qcom,dsi-phy-14nm",
.data = &dsi_phy_14nm_cfgs },
+ { .compatible = "qcom,dsi-phy-14nm-2290",
+ .data = &dsi_phy_14nm_2290_cfgs },
{ .compatible = "qcom,dsi-phy-14nm-660",
.data = &dsi_phy_14nm_660_cfgs },
{ .compatible = "qcom,dsi-phy-14nm-8953",
@@ -567,6 +573,14 @@ static const struct of_device_id dsi_phy_dt_match[] = {
.data = &dsi_phy_7nm_8150_cfgs },
{ .compatible = "qcom,sc7280-dsi-phy-7nm",
.data = &dsi_phy_7nm_7280_cfgs },
+ { .compatible = "qcom,sm6375-dsi-phy-7nm",
+ .data = &dsi_phy_7nm_6375_cfgs },
+ { .compatible = "qcom,sm8350-dsi-phy-5nm",
+ .data = &dsi_phy_5nm_8350_cfgs },
+ { .compatible = "qcom,sm8450-dsi-phy-5nm",
+ .data = &dsi_phy_5nm_8450_cfgs },
+ { .compatible = "qcom,sm8550-dsi-phy-4nm",
+ .data = &dsi_phy_4nm_8550_cfgs },
#endif
{}
};
diff --git a/drivers/gpu/drm/msm/dsi/phy/dsi_phy.h b/drivers/gpu/drm/msm/dsi/phy/dsi_phy.h
index 60a99c6525b2..7137a17ae523 100644
--- a/drivers/gpu/drm/msm/dsi/phy/dsi_phy.h
+++ b/drivers/gpu/drm/msm/dsi/phy/dsi_phy.h
@@ -50,12 +50,17 @@ extern const struct msm_dsi_phy_cfg dsi_phy_20nm_cfgs;
extern const struct msm_dsi_phy_cfg dsi_phy_28nm_8960_cfgs;
extern const struct msm_dsi_phy_cfg dsi_phy_14nm_cfgs;
extern const struct msm_dsi_phy_cfg dsi_phy_14nm_660_cfgs;
+extern const struct msm_dsi_phy_cfg dsi_phy_14nm_2290_cfgs;
extern const struct msm_dsi_phy_cfg dsi_phy_14nm_8953_cfgs;
extern const struct msm_dsi_phy_cfg dsi_phy_10nm_cfgs;
extern const struct msm_dsi_phy_cfg dsi_phy_10nm_8998_cfgs;
extern const struct msm_dsi_phy_cfg dsi_phy_7nm_cfgs;
+extern const struct msm_dsi_phy_cfg dsi_phy_7nm_6375_cfgs;
extern const struct msm_dsi_phy_cfg dsi_phy_7nm_8150_cfgs;
extern const struct msm_dsi_phy_cfg dsi_phy_7nm_7280_cfgs;
+extern const struct msm_dsi_phy_cfg dsi_phy_5nm_8350_cfgs;
+extern const struct msm_dsi_phy_cfg dsi_phy_5nm_8450_cfgs;
+extern const struct msm_dsi_phy_cfg dsi_phy_4nm_8550_cfgs;
struct msm_dsi_dphy_timing {
u32 clk_zero;
diff --git a/drivers/gpu/drm/msm/dsi/phy/dsi_phy_14nm.c b/drivers/gpu/drm/msm/dsi/phy/dsi_phy_14nm.c
index 0f8f4ca46429..9f488adea7f5 100644
--- a/drivers/gpu/drm/msm/dsi/phy/dsi_phy_14nm.c
+++ b/drivers/gpu/drm/msm/dsi/phy/dsi_phy_14nm.c
@@ -1081,3 +1081,20 @@ const struct msm_dsi_phy_cfg dsi_phy_14nm_8953_cfgs = {
.io_start = { 0x1a94400, 0x1a96400 },
.num_dsi_phy = 2,
};
+
+const struct msm_dsi_phy_cfg dsi_phy_14nm_2290_cfgs = {
+ .has_phy_lane = true,
+ .regulator_data = dsi_phy_14nm_17mA_regulators,
+ .num_regulators = ARRAY_SIZE(dsi_phy_14nm_17mA_regulators),
+ .ops = {
+ .enable = dsi_14nm_phy_enable,
+ .disable = dsi_14nm_phy_disable,
+ .pll_init = dsi_pll_14nm_init,
+ .save_pll_state = dsi_14nm_pll_save_state,
+ .restore_pll_state = dsi_14nm_pll_restore_state,
+ },
+ .min_pll_rate = VCO_MIN_RATE,
+ .max_pll_rate = VCO_MAX_RATE,
+ .io_start = { 0x5e94400 },
+ .num_dsi_phy = 1,
+};
diff --git a/drivers/gpu/drm/msm/dsi/phy/dsi_phy_7nm.c b/drivers/gpu/drm/msm/dsi/phy/dsi_phy_7nm.c
index 9e7fa7d88ead..3b1ed02f644d 100644
--- a/drivers/gpu/drm/msm/dsi/phy/dsi_phy_7nm.c
+++ b/drivers/gpu/drm/msm/dsi/phy/dsi_phy_7nm.c
@@ -39,8 +39,16 @@
#define VCO_REF_CLK_RATE 19200000
#define FRAC_BITS 18
+/* Hardware is pre V4.1 */
+#define DSI_PHY_7NM_QUIRK_PRE_V4_1 BIT(0)
/* Hardware is V4.1 */
-#define DSI_PHY_7NM_QUIRK_V4_1 BIT(0)
+#define DSI_PHY_7NM_QUIRK_V4_1 BIT(1)
+/* Hardware is V4.2 */
+#define DSI_PHY_7NM_QUIRK_V4_2 BIT(2)
+/* Hardware is V4.3 */
+#define DSI_PHY_7NM_QUIRK_V4_3 BIT(3)
+/* Hardware is V5.2 */
+#define DSI_PHY_7NM_QUIRK_V5_2 BIT(4)
struct dsi_pll_config {
bool enable_ssc;
@@ -116,16 +124,27 @@ static void dsi_pll_calc_dec_frac(struct dsi_pll_7nm *pll, struct dsi_pll_config
dec_multiple = div_u64(pll_freq * multiplier, divider);
dec = div_u64_rem(dec_multiple, multiplier, &frac);
- if (!(pll->phy->cfg->quirks & DSI_PHY_7NM_QUIRK_V4_1))
+ if (pll->phy->cfg->quirks & DSI_PHY_7NM_QUIRK_PRE_V4_1)
config->pll_clock_inverters = 0x28;
- else if (pll_freq <= 1000000000ULL)
- config->pll_clock_inverters = 0xa0;
- else if (pll_freq <= 2500000000ULL)
- config->pll_clock_inverters = 0x20;
- else if (pll_freq <= 3020000000ULL)
- config->pll_clock_inverters = 0x00;
- else
- config->pll_clock_inverters = 0x40;
+ else if ((pll->phy->cfg->quirks & DSI_PHY_7NM_QUIRK_V5_2)) {
+ if (pll_freq <= 1300000000ULL)
+ config->pll_clock_inverters = 0xa0;
+ else if (pll_freq <= 2500000000ULL)
+ config->pll_clock_inverters = 0x20;
+ else if (pll_freq <= 4000000000ULL)
+ config->pll_clock_inverters = 0x00;
+ else
+ config->pll_clock_inverters = 0x40;
+ } else {
+ if (pll_freq <= 1000000000ULL)
+ config->pll_clock_inverters = 0xa0;
+ else if (pll_freq <= 2500000000ULL)
+ config->pll_clock_inverters = 0x20;
+ else if (pll_freq <= 3020000000ULL)
+ config->pll_clock_inverters = 0x00;
+ else
+ config->pll_clock_inverters = 0x40;
+ }
config->decimal_div_start = dec;
config->frac_div_start = frac;
@@ -197,16 +216,32 @@ static void dsi_pll_config_hzindep_reg(struct dsi_pll_7nm *pll)
void __iomem *base = pll->phy->pll_base;
u8 analog_controls_five_1 = 0x01, vco_config_1 = 0x00;
- if (pll->phy->cfg->quirks & DSI_PHY_7NM_QUIRK_V4_1) {
+ if (!(pll->phy->cfg->quirks & DSI_PHY_7NM_QUIRK_PRE_V4_1))
if (pll->vco_current_rate >= 3100000000ULL)
analog_controls_five_1 = 0x03;
+ if (pll->phy->cfg->quirks & DSI_PHY_7NM_QUIRK_V4_1) {
if (pll->vco_current_rate < 1520000000ULL)
vco_config_1 = 0x08;
else if (pll->vco_current_rate < 2990000000ULL)
vco_config_1 = 0x01;
}
+ if ((pll->phy->cfg->quirks & DSI_PHY_7NM_QUIRK_V4_2) ||
+ (pll->phy->cfg->quirks & DSI_PHY_7NM_QUIRK_V4_3)) {
+ if (pll->vco_current_rate < 1520000000ULL)
+ vco_config_1 = 0x08;
+ else if (pll->vco_current_rate >= 2990000000ULL)
+ vco_config_1 = 0x01;
+ }
+
+ if ((pll->phy->cfg->quirks & DSI_PHY_7NM_QUIRK_V5_2)) {
+ if (pll->vco_current_rate < 1557000000ULL)
+ vco_config_1 = 0x08;
+ else
+ vco_config_1 = 0x01;
+ }
+
dsi_phy_write(base + REG_DSI_7nm_PHY_PLL_ANALOG_CONTROLS_FIVE_1,
analog_controls_five_1);
dsi_phy_write(base + REG_DSI_7nm_PHY_PLL_VCO_CONFIG_1, vco_config_1);
@@ -231,9 +266,9 @@ static void dsi_pll_config_hzindep_reg(struct dsi_pll_7nm *pll)
dsi_phy_write(base + REG_DSI_7nm_PHY_PLL_PFILT, 0x2f);
dsi_phy_write(base + REG_DSI_7nm_PHY_PLL_IFILT, 0x2a);
dsi_phy_write(base + REG_DSI_7nm_PHY_PLL_IFILT,
- pll->phy->cfg->quirks & DSI_PHY_7NM_QUIRK_V4_1 ? 0x3f : 0x22);
+ !(pll->phy->cfg->quirks & DSI_PHY_7NM_QUIRK_PRE_V4_1) ? 0x3f : 0x22);
- if (pll->phy->cfg->quirks & DSI_PHY_7NM_QUIRK_V4_1) {
+ if (!(pll->phy->cfg->quirks & DSI_PHY_7NM_QUIRK_PRE_V4_1)) {
dsi_phy_write(base + REG_DSI_7nm_PHY_PLL_PERF_OPTIMIZE, 0x22);
if (pll->slave)
dsi_phy_write(pll->slave->phy->pll_base + REG_DSI_7nm_PHY_PLL_PERF_OPTIMIZE, 0x22);
@@ -788,7 +823,7 @@ static void dsi_phy_hw_v4_0_lane_settings(struct msm_dsi_phy *phy)
const u8 *tx_dctrl = tx_dctrl_0;
void __iomem *lane_base = phy->lane_base;
- if (phy->cfg->quirks & DSI_PHY_7NM_QUIRK_V4_1)
+ if (!(phy->cfg->quirks & DSI_PHY_7NM_QUIRK_PRE_V4_1))
tx_dctrl = tx_dctrl_1;
/* Strength ctrl settings */
@@ -844,6 +879,13 @@ static int dsi_7nm_phy_enable(struct msm_dsi_phy *phy,
if (dsi_phy_hw_v4_0_is_pll_on(phy))
pr_warn("PLL turned on before configuring PHY\n");
+ /* Request for REFGEN READY */
+ if ((phy->cfg->quirks & DSI_PHY_7NM_QUIRK_V4_3) ||
+ (phy->cfg->quirks & DSI_PHY_7NM_QUIRK_V5_2)) {
+ dsi_phy_write(phy->base + REG_DSI_7nm_PHY_CMN_GLBL_DIGTOP_SPARE10, 0x1);
+ udelay(500);
+ }
+
/* wait for REFGEN READY */
ret = readl_poll_timeout_atomic(base + REG_DSI_7nm_PHY_CMN_PHY_STATUS,
status, (status & BIT(0)),
@@ -858,23 +900,64 @@ static int dsi_7nm_phy_enable(struct msm_dsi_phy *phy,
/* Alter PHY configurations if data rate less than 1.5GHZ*/
less_than_1500_mhz = (clk_req->bitclk_rate <= 1500000000);
- if (phy->cfg->quirks & DSI_PHY_7NM_QUIRK_V4_1) {
+ glbl_str_swi_cal_sel_ctrl = 0x00;
+ if (phy->cphy_mode) {
+ vreg_ctrl_0 = 0x51;
+ vreg_ctrl_1 = 0x55;
+ glbl_hstx_str_ctrl_0 = 0x00;
+ glbl_pemph_ctrl_0 = 0x11;
+ lane_ctrl0 = 0x17;
+ } else {
vreg_ctrl_0 = less_than_1500_mhz ? 0x53 : 0x52;
+ vreg_ctrl_1 = 0x5c;
+ glbl_hstx_str_ctrl_0 = 0x88;
+ glbl_pemph_ctrl_0 = 0x00;
+ lane_ctrl0 = 0x1f;
+ }
+
+ if ((phy->cfg->quirks & DSI_PHY_7NM_QUIRK_V5_2)) {
if (phy->cphy_mode) {
+ vreg_ctrl_0 = 0x45;
+ vreg_ctrl_1 = 0x45;
+ glbl_rescode_top_ctrl = 0x00;
+ glbl_rescode_bot_ctrl = 0x00;
+ } else {
+ vreg_ctrl_0 = 0x44;
+ vreg_ctrl_1 = 0x19;
+ glbl_rescode_top_ctrl = less_than_1500_mhz ? 0x3c : 0x03;
+ glbl_rescode_bot_ctrl = less_than_1500_mhz ? 0x38 : 0x3c;
+ }
+ } else if ((phy->cfg->quirks & DSI_PHY_7NM_QUIRK_V4_3)) {
+ if (phy->cphy_mode) {
+ glbl_rescode_top_ctrl = less_than_1500_mhz ? 0x3d : 0x01;
+ glbl_rescode_bot_ctrl = less_than_1500_mhz ? 0x38 : 0x3b;
+ } else {
+ glbl_rescode_top_ctrl = less_than_1500_mhz ? 0x3d : 0x01;
+ glbl_rescode_bot_ctrl = less_than_1500_mhz ? 0x38 : 0x39;
+ }
+ } else if (phy->cfg->quirks & DSI_PHY_7NM_QUIRK_V4_2) {
+ if (phy->cphy_mode) {
+ glbl_rescode_top_ctrl = less_than_1500_mhz ? 0x3d : 0x01;
+ glbl_rescode_bot_ctrl = less_than_1500_mhz ? 0x38 : 0x3b;
+ } else {
+ glbl_rescode_top_ctrl = less_than_1500_mhz ? 0x3c : 0x00;
+ glbl_rescode_bot_ctrl = less_than_1500_mhz ? 0x38 : 0x39;
+ }
+ } else if (phy->cfg->quirks & DSI_PHY_7NM_QUIRK_V4_1) {
+ if (phy->cphy_mode) {
+ glbl_hstx_str_ctrl_0 = 0x88;
glbl_rescode_top_ctrl = 0x00;
glbl_rescode_bot_ctrl = 0x3c;
} else {
glbl_rescode_top_ctrl = less_than_1500_mhz ? 0x3d : 0x00;
glbl_rescode_bot_ctrl = less_than_1500_mhz ? 0x39 : 0x3c;
}
- glbl_str_swi_cal_sel_ctrl = 0x00;
- glbl_hstx_str_ctrl_0 = 0x88;
} else {
- vreg_ctrl_0 = less_than_1500_mhz ? 0x5B : 0x59;
if (phy->cphy_mode) {
glbl_str_swi_cal_sel_ctrl = 0x03;
glbl_hstx_str_ctrl_0 = 0x66;
} else {
+ vreg_ctrl_0 = less_than_1500_mhz ? 0x5B : 0x59;
glbl_str_swi_cal_sel_ctrl = less_than_1500_mhz ? 0x03 : 0x00;
glbl_hstx_str_ctrl_0 = less_than_1500_mhz ? 0x66 : 0x88;
}
@@ -882,17 +965,6 @@ static int dsi_7nm_phy_enable(struct msm_dsi_phy *phy,
glbl_rescode_bot_ctrl = 0x3c;
}
- if (phy->cphy_mode) {
- vreg_ctrl_0 = 0x51;
- vreg_ctrl_1 = 0x55;
- glbl_pemph_ctrl_0 = 0x11;
- lane_ctrl0 = 0x17;
- } else {
- vreg_ctrl_1 = 0x5c;
- glbl_pemph_ctrl_0 = 0x00;
- lane_ctrl0 = 0x1f;
- }
-
/* de-assert digital and pll power down */
data = BIT(6) | BIT(5);
dsi_phy_write(base + REG_DSI_7nm_PHY_CMN_CTRL_0, data);
@@ -904,9 +976,8 @@ static int dsi_7nm_phy_enable(struct msm_dsi_phy *phy,
dsi_phy_write(base + REG_DSI_7nm_PHY_CMN_RBUF_CTRL, 0x00);
/* program CMN_CTRL_4 for minor_ver 2 chipsets*/
- data = dsi_phy_read(base + REG_DSI_7nm_PHY_CMN_REVISION_ID0);
- data = data & (0xf0);
- if (data == 0x20)
+ if ((phy->cfg->quirks & DSI_PHY_7NM_QUIRK_V5_2) ||
+ (dsi_phy_read(base + REG_DSI_7nm_PHY_CMN_REVISION_ID0) & (0xf0)) == 0x20)
dsi_phy_write(base + REG_DSI_7nm_PHY_CMN_CTRL_4, 0x04);
/* Configure PHY lane swap (TODO: we need to calculate this) */
@@ -1017,6 +1088,16 @@ static void dsi_7nm_phy_disable(struct msm_dsi_phy *phy)
pr_warn("Turning OFF PHY while PLL is on\n");
dsi_phy_hw_v4_0_config_lpcdrx(phy, false);
+
+ /* Turn off REFGEN Vote */
+ if ((phy->cfg->quirks & DSI_PHY_7NM_QUIRK_V4_3) ||
+ (phy->cfg->quirks & DSI_PHY_7NM_QUIRK_V5_2)) {
+ dsi_phy_write(base + REG_DSI_7nm_PHY_CMN_GLBL_DIGTOP_SPARE10, 0x0);
+ wmb();
+ /* Delay to ensure HW removes vote before PHY shut down */
+ udelay(2);
+ }
+
data = dsi_phy_read(base + REG_DSI_7nm_PHY_CMN_CTRL_0);
/* disable all lanes */
@@ -1040,6 +1121,14 @@ static const struct regulator_bulk_data dsi_phy_7nm_37750uA_regulators[] = {
{ .supply = "vdds", .init_load_uA = 37550 },
};
+static const struct regulator_bulk_data dsi_phy_7nm_97800uA_regulators[] = {
+ { .supply = "vdds", .init_load_uA = 97800 },
+};
+
+static const struct regulator_bulk_data dsi_phy_7nm_98400uA_regulators[] = {
+ { .supply = "vdds", .init_load_uA = 98400 },
+};
+
const struct msm_dsi_phy_cfg dsi_phy_7nm_cfgs = {
.has_phy_lane = true,
.regulator_data = dsi_phy_7nm_36mA_regulators,
@@ -1063,6 +1152,26 @@ const struct msm_dsi_phy_cfg dsi_phy_7nm_cfgs = {
.quirks = DSI_PHY_7NM_QUIRK_V4_1,
};
+const struct msm_dsi_phy_cfg dsi_phy_7nm_6375_cfgs = {
+ .has_phy_lane = true,
+ .ops = {
+ .enable = dsi_7nm_phy_enable,
+ .disable = dsi_7nm_phy_disable,
+ .pll_init = dsi_pll_7nm_init,
+ .save_pll_state = dsi_7nm_pll_save_state,
+ .restore_pll_state = dsi_7nm_pll_restore_state,
+ },
+ .min_pll_rate = 600000000UL,
+#ifdef CONFIG_64BIT
+ .max_pll_rate = 5000000000ULL,
+#else
+ .max_pll_rate = ULONG_MAX,
+#endif
+ .io_start = { 0x5e94400 },
+ .num_dsi_phy = 1,
+ .quirks = DSI_PHY_7NM_QUIRK_V4_1,
+};
+
const struct msm_dsi_phy_cfg dsi_phy_7nm_8150_cfgs = {
.has_phy_lane = true,
.regulator_data = dsi_phy_7nm_36mA_regulators,
@@ -1079,6 +1188,7 @@ const struct msm_dsi_phy_cfg dsi_phy_7nm_8150_cfgs = {
.max_pll_rate = 3500000000UL,
.io_start = { 0xae94400, 0xae96400 },
.num_dsi_phy = 2,
+ .quirks = DSI_PHY_7NM_QUIRK_PRE_V4_1,
};
const struct msm_dsi_phy_cfg dsi_phy_7nm_7280_cfgs = {
@@ -1102,3 +1212,72 @@ const struct msm_dsi_phy_cfg dsi_phy_7nm_7280_cfgs = {
.num_dsi_phy = 1,
.quirks = DSI_PHY_7NM_QUIRK_V4_1,
};
+
+const struct msm_dsi_phy_cfg dsi_phy_5nm_8350_cfgs = {
+ .has_phy_lane = true,
+ .regulator_data = dsi_phy_7nm_37750uA_regulators,
+ .num_regulators = ARRAY_SIZE(dsi_phy_7nm_37750uA_regulators),
+ .ops = {
+ .enable = dsi_7nm_phy_enable,
+ .disable = dsi_7nm_phy_disable,
+ .pll_init = dsi_pll_7nm_init,
+ .save_pll_state = dsi_7nm_pll_save_state,
+ .restore_pll_state = dsi_7nm_pll_restore_state,
+ .set_continuous_clock = dsi_7nm_set_continuous_clock,
+ },
+ .min_pll_rate = 600000000UL,
+#ifdef CONFIG_64BIT
+ .max_pll_rate = 5000000000UL,
+#else
+ .max_pll_rate = ULONG_MAX,
+#endif
+ .io_start = { 0xae94400, 0xae96400 },
+ .num_dsi_phy = 2,
+ .quirks = DSI_PHY_7NM_QUIRK_V4_2,
+};
+
+const struct msm_dsi_phy_cfg dsi_phy_5nm_8450_cfgs = {
+ .has_phy_lane = true,
+ .regulator_data = dsi_phy_7nm_97800uA_regulators,
+ .num_regulators = ARRAY_SIZE(dsi_phy_7nm_97800uA_regulators),
+ .ops = {
+ .enable = dsi_7nm_phy_enable,
+ .disable = dsi_7nm_phy_disable,
+ .pll_init = dsi_pll_7nm_init,
+ .save_pll_state = dsi_7nm_pll_save_state,
+ .restore_pll_state = dsi_7nm_pll_restore_state,
+ .set_continuous_clock = dsi_7nm_set_continuous_clock,
+ },
+ .min_pll_rate = 600000000UL,
+#ifdef CONFIG_64BIT
+ .max_pll_rate = 5000000000UL,
+#else
+ .max_pll_rate = ULONG_MAX,
+#endif
+ .io_start = { 0xae94400, 0xae96400 },
+ .num_dsi_phy = 2,
+ .quirks = DSI_PHY_7NM_QUIRK_V4_3,
+};
+
+const struct msm_dsi_phy_cfg dsi_phy_4nm_8550_cfgs = {
+ .has_phy_lane = true,
+ .regulator_data = dsi_phy_7nm_98400uA_regulators,
+ .num_regulators = ARRAY_SIZE(dsi_phy_7nm_98400uA_regulators),
+ .ops = {
+ .enable = dsi_7nm_phy_enable,
+ .disable = dsi_7nm_phy_disable,
+ .pll_init = dsi_pll_7nm_init,
+ .save_pll_state = dsi_7nm_pll_save_state,
+ .restore_pll_state = dsi_7nm_pll_restore_state,
+ .set_continuous_clock = dsi_7nm_set_continuous_clock,
+ },
+ .min_pll_rate = 600000000UL,
+#ifdef CONFIG_64BIT
+ .max_pll_rate = 5000000000UL,
+#else
+ .max_pll_rate = ULONG_MAX,
+#endif
+ .io_start = { 0xae95000, 0xae97000 },
+ .num_dsi_phy = 2,
+ .quirks = DSI_PHY_7NM_QUIRK_V5_2,
+};
diff --git a/drivers/gpu/drm/msm/dsi/sfpb.xml.h b/drivers/gpu/drm/msm/dsi/sfpb.xml.h
index 2ae711cbec36..344a1a1620cd 100644
--- a/drivers/gpu/drm/msm/dsi/sfpb.xml.h
+++ b/drivers/gpu/drm/msm/dsi/sfpb.xml.h
@@ -8,26 +8,26 @@ http://github.com/freedreno/envytools/
git clone https://github.com/freedreno/envytools.git
The rules-ng-ng source files this header was generated from are:
-- /home/robclark/tmp/mesa/src/freedreno/registers/msm.xml ( 944 bytes, from 2022-03-03 01:18:13)
-- /home/robclark/tmp/mesa/src/freedreno/registers/freedreno_copyright.xml ( 1572 bytes, from 2020-12-31 19:26:32)
-- /home/robclark/tmp/mesa/src/freedreno/registers/mdp/mdp4.xml ( 20912 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/mdp/mdp_common.xml ( 2849 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/mdp/mdp5.xml ( 37461 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi.xml ( 17560 bytes, from 2021-09-16 22:37:02)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_v2.xml ( 3236 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_28nm_8960.xml ( 4935 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_28nm.xml ( 7004 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_20nm.xml ( 3712 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_14nm.xml ( 5381 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_10nm.xml ( 4499 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_7nm.xml ( 11007 bytes, from 2022-03-03 01:18:13)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/sfpb.xml ( 602 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/mmss_cc.xml ( 1686 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/hdmi/qfprom.xml ( 600 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/hdmi/hdmi.xml ( 41874 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/edp/edp.xml ( 10416 bytes, from 2021-01-30 18:25:22)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/msm.xml ( 944 bytes, from 2022-07-23 20:21:46)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/freedreno_copyright.xml ( 1572 bytes, from 2022-07-23 20:21:46)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/mdp/mdp4.xml ( 20912 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/mdp/mdp_common.xml ( 2849 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/mdp/mdp5.xml ( 37461 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi.xml ( 18746 bytes, from 2022-04-28 17:29:36)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_v2.xml ( 3236 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_28nm_8960.xml ( 4935 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_28nm.xml ( 7004 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_20nm.xml ( 3712 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_14nm.xml ( 5381 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_10nm.xml ( 4499 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_7nm.xml ( 11007 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/sfpb.xml ( 602 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/mmss_cc.xml ( 1686 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/hdmi/qfprom.xml ( 600 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/hdmi/hdmi.xml ( 42350 bytes, from 2022-09-20 17:45:56)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/edp/edp.xml ( 10416 bytes, from 2022-03-08 17:40:42)
-Copyright (C) 2013-2021 by the following authors:
+Copyright (C) 2013-2022 by the following authors:
- Rob Clark <robdclark@gmail.com> (robclark)
- Ilia Mirkin <imirkin@alum.mit.edu> (imirkin)
diff --git a/drivers/gpu/drm/msm/hdmi/hdmi.c b/drivers/gpu/drm/msm/hdmi/hdmi.c
index f28fb21e3891..3132105a2a43 100644
--- a/drivers/gpu/drm/msm/hdmi/hdmi.c
+++ b/drivers/gpu/drm/msm/hdmi/hdmi.c
@@ -68,16 +68,17 @@ static void msm_hdmi_destroy(struct hdmi *hdmi)
destroy_workqueue(hdmi->workq);
msm_hdmi_hdcp_destroy(hdmi);
+ if (hdmi->i2c)
+ msm_hdmi_i2c_destroy(hdmi->i2c);
+}
+
+static void msm_hdmi_put_phy(struct hdmi *hdmi)
+{
if (hdmi->phy_dev) {
put_device(hdmi->phy_dev);
hdmi->phy = NULL;
hdmi->phy_dev = NULL;
}
-
- if (hdmi->i2c)
- msm_hdmi_i2c_destroy(hdmi->i2c);
-
- platform_set_drvdata(hdmi->pdev, NULL);
}
static int msm_hdmi_get_phy(struct hdmi *hdmi)
@@ -93,22 +94,18 @@ static int msm_hdmi_get_phy(struct hdmi *hdmi)
}
phy_pdev = of_find_device_by_node(phy_node);
- if (phy_pdev)
- hdmi->phy = platform_get_drvdata(phy_pdev);
-
of_node_put(phy_node);
- if (!phy_pdev) {
- DRM_DEV_ERROR(&pdev->dev, "phy driver is not ready\n");
- return -EPROBE_DEFER;
- }
+ if (!phy_pdev)
+ return dev_err_probe(&pdev->dev, -EPROBE_DEFER, "phy driver is not ready\n");
+
+ hdmi->phy = platform_get_drvdata(phy_pdev);
if (!hdmi->phy) {
- DRM_DEV_ERROR(&pdev->dev, "phy driver is not ready\n");
put_device(&phy_pdev->dev);
- return -EPROBE_DEFER;
+ return dev_err_probe(&pdev->dev, -EPROBE_DEFER, "phy driver is not ready\n");
}
- hdmi->phy_dev = get_device(&phy_pdev->dev);
+ hdmi->phy_dev = &phy_pdev->dev;
return 0;
}
@@ -117,144 +114,16 @@ static int msm_hdmi_get_phy(struct hdmi *hdmi)
* we are to EPROBE_DEFER we want to do it here, rather than later
* at modeset_init() time
*/
-static struct hdmi *msm_hdmi_init(struct platform_device *pdev)
+static int msm_hdmi_init(struct hdmi *hdmi)
{
- struct hdmi_platform_config *config = pdev->dev.platform_data;
- struct hdmi *hdmi = NULL;
- struct resource *res;
- int i, ret;
-
- hdmi = devm_kzalloc(&pdev->dev, sizeof(*hdmi), GFP_KERNEL);
- if (!hdmi) {
- ret = -ENOMEM;
- goto fail;
- }
-
- hdmi->pdev = pdev;
- hdmi->config = config;
- spin_lock_init(&hdmi->reg_lock);
-
- ret = drm_of_find_panel_or_bridge(pdev->dev.of_node, 1, 0, NULL, &hdmi->next_bridge);
- if (ret && ret != -ENODEV)
- goto fail;
-
- hdmi->mmio = msm_ioremap(pdev, config->mmio_name);
- if (IS_ERR(hdmi->mmio)) {
- ret = PTR_ERR(hdmi->mmio);
- goto fail;
- }
-
- /* HDCP needs physical address of hdmi register */
- res = platform_get_resource_byname(pdev, IORESOURCE_MEM,
- config->mmio_name);
- if (!res) {
- ret = -EINVAL;
- goto fail;
- }
- hdmi->mmio_phy_addr = res->start;
-
- hdmi->qfprom_mmio = msm_ioremap(pdev, config->qfprom_mmio_name);
- if (IS_ERR(hdmi->qfprom_mmio)) {
- DRM_DEV_INFO(&pdev->dev, "can't find qfprom resource\n");
- hdmi->qfprom_mmio = NULL;
- }
-
- hdmi->hpd_regs = devm_kcalloc(&pdev->dev,
- config->hpd_reg_cnt,
- sizeof(hdmi->hpd_regs[0]),
- GFP_KERNEL);
- if (!hdmi->hpd_regs) {
- ret = -ENOMEM;
- goto fail;
- }
- for (i = 0; i < config->hpd_reg_cnt; i++)
- hdmi->hpd_regs[i].supply = config->hpd_reg_names[i];
-
- ret = devm_regulator_bulk_get(&pdev->dev, config->hpd_reg_cnt, hdmi->hpd_regs);
- if (ret) {
- DRM_DEV_ERROR(&pdev->dev, "failed to get hpd regulator: %d\n", ret);
- goto fail;
- }
-
- hdmi->pwr_regs = devm_kcalloc(&pdev->dev,
- config->pwr_reg_cnt,
- sizeof(hdmi->pwr_regs[0]),
- GFP_KERNEL);
- if (!hdmi->pwr_regs) {
- ret = -ENOMEM;
- goto fail;
- }
-
- for (i = 0; i < config->pwr_reg_cnt; i++)
- hdmi->pwr_regs[i].supply = config->pwr_reg_names[i];
-
- ret = devm_regulator_bulk_get(&pdev->dev, config->pwr_reg_cnt, hdmi->pwr_regs);
- if (ret) {
- DRM_DEV_ERROR(&pdev->dev, "failed to get pwr regulator: %d\n", ret);
- goto fail;
- }
-
- hdmi->hpd_clks = devm_kcalloc(&pdev->dev,
- config->hpd_clk_cnt,
- sizeof(hdmi->hpd_clks[0]),
- GFP_KERNEL);
- if (!hdmi->hpd_clks) {
- ret = -ENOMEM;
- goto fail;
- }
- for (i = 0; i < config->hpd_clk_cnt; i++) {
- struct clk *clk;
-
- clk = msm_clk_get(pdev, config->hpd_clk_names[i]);
- if (IS_ERR(clk)) {
- ret = PTR_ERR(clk);
- DRM_DEV_ERROR(&pdev->dev, "failed to get hpd clk: %s (%d)\n",
- config->hpd_clk_names[i], ret);
- goto fail;
- }
-
- hdmi->hpd_clks[i] = clk;
- }
+ struct platform_device *pdev = hdmi->pdev;
+ int ret;
- hdmi->pwr_clks = devm_kcalloc(&pdev->dev,
- config->pwr_clk_cnt,
- sizeof(hdmi->pwr_clks[0]),
- GFP_KERNEL);
- if (!hdmi->pwr_clks) {
+ hdmi->workq = alloc_ordered_workqueue("msm_hdmi", 0);
+ if (!hdmi->workq) {
ret = -ENOMEM;
goto fail;
}
- for (i = 0; i < config->pwr_clk_cnt; i++) {
- struct clk *clk;
-
- clk = msm_clk_get(pdev, config->pwr_clk_names[i]);
- if (IS_ERR(clk)) {
- ret = PTR_ERR(clk);
- DRM_DEV_ERROR(&pdev->dev, "failed to get pwr clk: %s (%d)\n",
- config->pwr_clk_names[i], ret);
- goto fail;
- }
-
- hdmi->pwr_clks[i] = clk;
- }
-
- hdmi->hpd_gpiod = devm_gpiod_get_optional(&pdev->dev, "hpd", GPIOD_IN);
- /* This will catch e.g. -EPROBE_DEFER */
- if (IS_ERR(hdmi->hpd_gpiod)) {
- ret = PTR_ERR(hdmi->hpd_gpiod);
- DRM_DEV_ERROR(&pdev->dev, "failed to get hpd gpio: (%d)\n", ret);
- goto fail;
- }
-
- if (!hdmi->hpd_gpiod)
- DBG("failed to get HPD gpio");
-
- if (hdmi->hpd_gpiod)
- gpiod_set_consumer_name(hdmi->hpd_gpiod, "HDMI_HPD");
-
- pm_runtime_enable(&pdev->dev);
-
- hdmi->workq = alloc_ordered_workqueue("msm_hdmi", 0);
hdmi->i2c = msm_hdmi_i2c_init(hdmi);
if (IS_ERR(hdmi->i2c)) {
@@ -264,25 +133,18 @@ static struct hdmi *msm_hdmi_init(struct platform_device *pdev)
goto fail;
}
- ret = msm_hdmi_get_phy(hdmi);
- if (ret) {
- DRM_DEV_ERROR(&pdev->dev, "failed to get phy\n");
- goto fail;
- }
-
hdmi->hdcp_ctrl = msm_hdmi_hdcp_init(hdmi);
if (IS_ERR(hdmi->hdcp_ctrl)) {
dev_warn(&pdev->dev, "failed to init hdcp: disabled\n");
hdmi->hdcp_ctrl = NULL;
}
- return hdmi;
+ return 0;
fail:
- if (hdmi)
- msm_hdmi_destroy(hdmi);
+ msm_hdmi_destroy(hdmi);
- return ERR_PTR(ret);
+ return ret;
}
/* Second part of initialization, the drm/kms level modeset_init,
@@ -297,7 +159,6 @@ int msm_hdmi_modeset_init(struct hdmi *hdmi,
struct drm_device *dev, struct drm_encoder *encoder)
{
struct msm_drm_private *priv = dev->dev_private;
- struct platform_device *pdev = hdmi->pdev;
int ret;
if (priv->num_bridges == ARRAY_SIZE(priv->bridges)) {
@@ -337,13 +198,6 @@ int msm_hdmi_modeset_init(struct hdmi *hdmi,
drm_connector_attach_encoder(hdmi->connector, hdmi->encoder);
- hdmi->irq = irq_of_parse_and_map(pdev->dev.of_node, 0);
- if (!hdmi->irq) {
- ret = -EINVAL;
- DRM_DEV_ERROR(dev->dev, "failed to get irq\n");
- goto fail;
- }
-
ret = devm_request_irq(dev->dev, hdmi->irq,
msm_hdmi_irq, IRQF_TRIGGER_HIGH,
"hdmi_isr", hdmi);
@@ -353,8 +207,6 @@ int msm_hdmi_modeset_init(struct hdmi *hdmi,
goto fail;
}
- drm_bridge_connector_enable_hpd(hdmi->connector);
-
ret = msm_hdmi_hpd_enable(hdmi->bridge);
if (ret < 0) {
DRM_DEV_ERROR(&hdmi->pdev->dev, "failed to enable HPD: %d\n", ret);
@@ -363,8 +215,6 @@ int msm_hdmi_modeset_init(struct hdmi *hdmi,
priv->bridges[priv->num_bridges++] = hdmi->bridge;
- platform_set_drvdata(pdev, hdmi);
-
return 0;
fail:
@@ -392,7 +242,7 @@ fail:
static const char *hpd_reg_names_8960[] = {"core-vdda"};
static const char *hpd_clk_names_8960[] = {"core", "master_iface", "slave_iface"};
-static struct hdmi_platform_config hdmi_tx_8960_config = {
+static const struct hdmi_platform_config hdmi_tx_8960_config = {
HDMI_CFG(hpd_reg, 8960),
HDMI_CFG(hpd_clk, 8960),
};
@@ -402,7 +252,7 @@ static const char *pwr_clk_names_8x74[] = {"extp", "alt_iface"};
static const char *hpd_clk_names_8x74[] = {"iface", "core", "mdp_core"};
static unsigned long hpd_clk_freq_8x74[] = {0, 19200000, 0};
-static struct hdmi_platform_config hdmi_tx_8974_config = {
+static const struct hdmi_platform_config hdmi_tx_8974_config = {
HDMI_CFG(pwr_reg, 8x74),
HDMI_CFG(pwr_clk, 8x74),
HDMI_CFG(hpd_clk, 8x74),
@@ -517,26 +367,12 @@ static int msm_hdmi_register_audio_driver(struct hdmi *hdmi, struct device *dev)
static int msm_hdmi_bind(struct device *dev, struct device *master, void *data)
{
struct msm_drm_private *priv = dev_get_drvdata(master);
- struct hdmi_platform_config *hdmi_cfg;
- struct hdmi *hdmi;
- struct device_node *of_node = dev->of_node;
+ struct hdmi *hdmi = dev_get_drvdata(dev);
int err;
- hdmi_cfg = (struct hdmi_platform_config *)
- of_device_get_match_data(dev);
- if (!hdmi_cfg) {
- DRM_DEV_ERROR(dev, "unknown hdmi_cfg: %pOFn\n", of_node);
- return -ENXIO;
- }
-
- hdmi_cfg->mmio_name = "core_physical";
- hdmi_cfg->qfprom_mmio_name = "qfprom_physical";
-
- dev->platform_data = hdmi_cfg;
-
- hdmi = msm_hdmi_init(to_platform_device(dev));
- if (IS_ERR(hdmi))
- return PTR_ERR(hdmi);
+ err = msm_hdmi_init(hdmi);
+ if (err)
+ return err;
priv->hdmi = hdmi;
err = msm_hdmi_register_audio_driver(hdmi, dev);
@@ -569,12 +405,158 @@ static const struct component_ops msm_hdmi_ops = {
static int msm_hdmi_dev_probe(struct platform_device *pdev)
{
- return component_add(&pdev->dev, &msm_hdmi_ops);
+ const struct hdmi_platform_config *config;
+ struct device *dev = &pdev->dev;
+ struct hdmi *hdmi;
+ struct resource *res;
+ int i, ret;
+
+ config = of_device_get_match_data(dev);
+ if (!config)
+ return -EINVAL;
+
+ hdmi = devm_kzalloc(&pdev->dev, sizeof(*hdmi), GFP_KERNEL);
+ if (!hdmi)
+ return -ENOMEM;
+
+ hdmi->pdev = pdev;
+ hdmi->config = config;
+ spin_lock_init(&hdmi->reg_lock);
+
+ ret = drm_of_find_panel_or_bridge(pdev->dev.of_node, 1, 0, NULL, &hdmi->next_bridge);
+ if (ret && ret != -ENODEV)
+ return ret;
+
+ hdmi->mmio = msm_ioremap(pdev, "core_physical");
+ if (IS_ERR(hdmi->mmio))
+ return PTR_ERR(hdmi->mmio);
+
+ /* HDCP needs physical address of hdmi register */
+ res = platform_get_resource_byname(pdev, IORESOURCE_MEM,
+ "core_physical");
+ if (!res)
+ return -EINVAL;
+ hdmi->mmio_phy_addr = res->start;
+
+ hdmi->qfprom_mmio = msm_ioremap(pdev, "qfprom_physical");
+ if (IS_ERR(hdmi->qfprom_mmio)) {
+ DRM_DEV_INFO(&pdev->dev, "can't find qfprom resource\n");
+ hdmi->qfprom_mmio = NULL;
+ }
+
+ hdmi->irq = platform_get_irq(pdev, 0);
+ if (hdmi->irq < 0)
+ return hdmi->irq;
+
+ hdmi->hpd_regs = devm_kcalloc(&pdev->dev,
+ config->hpd_reg_cnt,
+ sizeof(hdmi->hpd_regs[0]),
+ GFP_KERNEL);
+ if (!hdmi->hpd_regs)
+ return -ENOMEM;
+
+ for (i = 0; i < config->hpd_reg_cnt; i++)
+ hdmi->hpd_regs[i].supply = config->hpd_reg_names[i];
+
+ ret = devm_regulator_bulk_get(&pdev->dev, config->hpd_reg_cnt, hdmi->hpd_regs);
+ if (ret)
+ return dev_err_probe(dev, ret, "failed to get hpd regulators\n");
+
+ hdmi->pwr_regs = devm_kcalloc(&pdev->dev,
+ config->pwr_reg_cnt,
+ sizeof(hdmi->pwr_regs[0]),
+ GFP_KERNEL);
+ if (!hdmi->pwr_regs)
+ return -ENOMEM;
+
+ for (i = 0; i < config->pwr_reg_cnt; i++)
+ hdmi->pwr_regs[i].supply = config->pwr_reg_names[i];
+
+ ret = devm_regulator_bulk_get(&pdev->dev, config->pwr_reg_cnt, hdmi->pwr_regs);
+ if (ret)
+ return dev_err_probe(dev, ret, "failed to get pwr regulators\n");
+
+ hdmi->hpd_clks = devm_kcalloc(&pdev->dev,
+ config->hpd_clk_cnt,
+ sizeof(hdmi->hpd_clks[0]),
+ GFP_KERNEL);
+ if (!hdmi->hpd_clks)
+ return -ENOMEM;
+
+ for (i = 0; i < config->hpd_clk_cnt; i++) {
+ struct clk *clk;
+
+ clk = msm_clk_get(pdev, config->hpd_clk_names[i]);
+ if (IS_ERR(clk))
+ return dev_err_probe(dev, PTR_ERR(clk),
+ "failed to get hpd clk: %s\n",
+ config->hpd_clk_names[i]);
+
+ hdmi->hpd_clks[i] = clk;
+ }
+
+ hdmi->pwr_clks = devm_kcalloc(&pdev->dev,
+ config->pwr_clk_cnt,
+ sizeof(hdmi->pwr_clks[0]),
+ GFP_KERNEL);
+ if (!hdmi->pwr_clks)
+ return -ENOMEM;
+
+ for (i = 0; i < config->pwr_clk_cnt; i++) {
+ struct clk *clk;
+
+ clk = msm_clk_get(pdev, config->pwr_clk_names[i]);
+ if (IS_ERR(clk))
+ return dev_err_probe(dev, PTR_ERR(clk),
+ "failed to get pwr clk: %s\n",
+ config->pwr_clk_names[i]);
+
+ hdmi->pwr_clks[i] = clk;
+ }
+
+ hdmi->hpd_gpiod = devm_gpiod_get_optional(&pdev->dev, "hpd", GPIOD_IN);
+ /* This will catch e.g. -EPROBE_DEFER */
+ if (IS_ERR(hdmi->hpd_gpiod))
+ return dev_err_probe(dev, PTR_ERR(hdmi->hpd_gpiod),
+ "failed to get hpd gpio\n");
+
+ if (!hdmi->hpd_gpiod)
+ DBG("failed to get HPD gpio");
+
+ if (hdmi->hpd_gpiod)
+ gpiod_set_consumer_name(hdmi->hpd_gpiod, "HDMI_HPD");
+
+ ret = msm_hdmi_get_phy(hdmi);
+ if (ret) {
+ DRM_DEV_ERROR(&pdev->dev, "failed to get phy\n");
+ return ret;
+ }
+
+ ret = devm_pm_runtime_enable(&pdev->dev);
+ if (ret)
+ goto err_put_phy;
+
+ platform_set_drvdata(pdev, hdmi);
+
+ ret = component_add(&pdev->dev, &msm_hdmi_ops);
+ if (ret)
+ goto err_put_phy;
+
+ return 0;
+
+err_put_phy:
+ msm_hdmi_put_phy(hdmi);
+ return ret;
}
static int msm_hdmi_dev_remove(struct platform_device *pdev)
{
+ struct hdmi *hdmi = dev_get_drvdata(&pdev->dev);
+
component_del(&pdev->dev, &msm_hdmi_ops);
+
+ msm_hdmi_put_phy(hdmi);
+
return 0;
}
diff --git a/drivers/gpu/drm/msm/hdmi/hdmi.h b/drivers/gpu/drm/msm/hdmi/hdmi.h
index 04a74381aaf7..e8dbee50637f 100644
--- a/drivers/gpu/drm/msm/hdmi/hdmi.h
+++ b/drivers/gpu/drm/msm/hdmi/hdmi.h
@@ -86,9 +86,6 @@ struct hdmi {
/* platform config data (ie. from DT, or pdata) */
struct hdmi_platform_config {
- const char *mmio_name;
- const char *qfprom_mmio_name;
-
/* regulators that need to be on for hpd: */
const char **hpd_reg_names;
int hpd_reg_cnt;
diff --git a/drivers/gpu/drm/msm/hdmi/hdmi.xml.h b/drivers/gpu/drm/msm/hdmi/hdmi.xml.h
index c9eb26df67c0..973b460486a5 100644
--- a/drivers/gpu/drm/msm/hdmi/hdmi.xml.h
+++ b/drivers/gpu/drm/msm/hdmi/hdmi.xml.h
@@ -8,26 +8,26 @@ http://github.com/freedreno/envytools/
git clone https://github.com/freedreno/envytools.git
The rules-ng-ng source files this header was generated from are:
-- /home/robclark/tmp/mesa/src/freedreno/registers/msm.xml ( 944 bytes, from 2022-03-03 01:18:13)
-- /home/robclark/tmp/mesa/src/freedreno/registers/freedreno_copyright.xml ( 1572 bytes, from 2020-12-31 19:26:32)
-- /home/robclark/tmp/mesa/src/freedreno/registers/mdp/mdp4.xml ( 20912 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/mdp/mdp_common.xml ( 2849 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/mdp/mdp5.xml ( 37461 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi.xml ( 17560 bytes, from 2021-09-16 22:37:02)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_v2.xml ( 3236 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_28nm_8960.xml ( 4935 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_28nm.xml ( 7004 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_20nm.xml ( 3712 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_14nm.xml ( 5381 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_10nm.xml ( 4499 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_7nm.xml ( 11007 bytes, from 2022-03-03 01:18:13)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/sfpb.xml ( 602 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/mmss_cc.xml ( 1686 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/hdmi/qfprom.xml ( 600 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/hdmi/hdmi.xml ( 41874 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/edp/edp.xml ( 10416 bytes, from 2021-01-30 18:25:22)
-
-Copyright (C) 2013-2021 by the following authors:
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/msm.xml ( 944 bytes, from 2022-07-23 20:21:46)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/freedreno_copyright.xml ( 1572 bytes, from 2022-07-23 20:21:46)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/mdp/mdp4.xml ( 20912 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/mdp/mdp_common.xml ( 2849 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/mdp/mdp5.xml ( 37461 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi.xml ( 18746 bytes, from 2022-04-28 17:29:36)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_v2.xml ( 3236 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_28nm_8960.xml ( 4935 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_28nm.xml ( 7004 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_20nm.xml ( 3712 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_14nm.xml ( 5381 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_10nm.xml ( 4499 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_7nm.xml ( 11007 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/sfpb.xml ( 602 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/mmss_cc.xml ( 1686 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/hdmi/qfprom.xml ( 600 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/hdmi/hdmi.xml ( 42350 bytes, from 2022-09-20 17:45:56)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/edp/edp.xml ( 10416 bytes, from 2022-03-08 17:40:42)
+
+Copyright (C) 2013-2022 by the following authors:
- Rob Clark <robdclark@gmail.com> (robclark)
- Ilia Mirkin <imirkin@alum.mit.edu> (imirkin)
@@ -776,10 +776,28 @@ static inline uint32_t HDMI_8x60_PHY_REG1_OUTVOL_SWING_CTRL(uint32_t val)
#define REG_HDMI_8x74_ANA_CFG1 0x00000004
+#define REG_HDMI_8x74_ANA_CFG2 0x00000008
+
+#define REG_HDMI_8x74_ANA_CFG3 0x0000000c
+
#define REG_HDMI_8x74_PD_CTRL0 0x00000010
#define REG_HDMI_8x74_PD_CTRL1 0x00000014
+#define REG_HDMI_8x74_GLB_CFG 0x00000018
+
+#define REG_HDMI_8x74_DCC_CFG0 0x0000001c
+
+#define REG_HDMI_8x74_DCC_CFG1 0x00000020
+
+#define REG_HDMI_8x74_TXCAL_CFG0 0x00000024
+
+#define REG_HDMI_8x74_TXCAL_CFG1 0x00000028
+
+#define REG_HDMI_8x74_TXCAL_CFG2 0x0000002c
+
+#define REG_HDMI_8x74_TXCAL_CFG3 0x00000030
+
#define REG_HDMI_8x74_BIST_CFG0 0x00000034
#define REG_HDMI_8x74_BIST_PATN0 0x0000003c
@@ -790,6 +808,8 @@ static inline uint32_t HDMI_8x60_PHY_REG1_OUTVOL_SWING_CTRL(uint32_t val)
#define REG_HDMI_8x74_BIST_PATN3 0x00000048
+#define REG_HDMI_8x74_STATUS 0x0000005c
+
#define REG_HDMI_28nm_PHY_PLL_REFCLK_CFG 0x00000000
#define REG_HDMI_28nm_PHY_PLL_POSTDIV1_CFG 0x00000004
@@ -877,6 +897,8 @@ static inline uint32_t HDMI_8x60_PHY_REG1_OUTVOL_SWING_CTRL(uint32_t val)
#define REG_HDMI_28nm_PHY_PLL_DEBUG_BUS_SEL 0x000000a0
+#define REG_HDMI_28nm_PHY_PLL_STATUS 0x000000c0
+
#define REG_HDMI_8996_PHY_CFG 0x00000000
#define REG_HDMI_8996_PHY_PD_CTL 0x00000004
diff --git a/drivers/gpu/drm/msm/hdmi/hdmi_hdcp.c b/drivers/gpu/drm/msm/hdmi/hdmi_hdcp.c
index e7748461cffc..0752fe373351 100644
--- a/drivers/gpu/drm/msm/hdmi/hdmi_hdcp.c
+++ b/drivers/gpu/drm/msm/hdmi/hdmi_hdcp.c
@@ -3,7 +3,7 @@
*/
#include "hdmi.h"
-#include <linux/qcom_scm.h>
+#include <linux/firmware/qcom/qcom_scm.h>
#define HDCP_REG_ENABLE 0x01
#define HDCP_REG_DISABLE 0x00
diff --git a/drivers/gpu/drm/msm/hdmi/hdmi_pll_8960.c b/drivers/gpu/drm/msm/hdmi/hdmi_pll_8960.c
index be4b0b67e797..cb35a297afbd 100644
--- a/drivers/gpu/drm/msm/hdmi/hdmi_pll_8960.c
+++ b/drivers/gpu/drm/msm/hdmi/hdmi_pll_8960.c
@@ -406,14 +406,14 @@ static const struct clk_ops hdmi_pll_ops = {
.set_rate = hdmi_pll_set_rate,
};
-static const char * const hdmi_pll_parents[] = {
- "pxo",
+static const struct clk_parent_data hdmi_pll_parents[] = {
+ { .fw_name = "pxo", .name = "pxo_board" },
};
static struct clk_init_data pll_init = {
.name = "hdmi_pll",
.ops = &hdmi_pll_ops,
- .parent_names = hdmi_pll_parents,
+ .parent_data = hdmi_pll_parents,
.num_parents = ARRAY_SIZE(hdmi_pll_parents),
.flags = CLK_IGNORE_UNUSED,
};
@@ -422,8 +422,7 @@ int msm_hdmi_pll_8960_init(struct platform_device *pdev)
{
struct device *dev = &pdev->dev;
struct hdmi_pll_8960 *pll;
- struct clk *clk;
- int i;
+ int i, ret;
/* sanity check: */
for (i = 0; i < (ARRAY_SIZE(freqtbl) - 1); i++)
@@ -443,10 +442,16 @@ int msm_hdmi_pll_8960_init(struct platform_device *pdev)
pll->pdev = pdev;
pll->clk_hw.init = &pll_init;
- clk = devm_clk_register(dev, &pll->clk_hw);
- if (IS_ERR(clk)) {
+ ret = devm_clk_hw_register(dev, &pll->clk_hw);
+ if (ret < 0) {
DRM_DEV_ERROR(dev, "failed to register pll clock\n");
- return -EINVAL;
+ return ret;
+ }
+
+ ret = devm_of_clk_add_hw_provider(dev, of_clk_hw_simple_get, &pll->clk_hw);
+ if (ret) {
+ DRM_DEV_ERROR(dev, "%s: failed to register clk provider: %d\n", __func__, ret);
+ return ret;
}
return 0;
diff --git a/drivers/gpu/drm/msm/hdmi/qfprom.xml.h b/drivers/gpu/drm/msm/hdmi/qfprom.xml.h
index 3edc698c4df5..498801526695 100644
--- a/drivers/gpu/drm/msm/hdmi/qfprom.xml.h
+++ b/drivers/gpu/drm/msm/hdmi/qfprom.xml.h
@@ -8,26 +8,26 @@ http://github.com/freedreno/envytools/
git clone https://github.com/freedreno/envytools.git
The rules-ng-ng source files this header was generated from are:
-- /home/robclark/tmp/mesa/src/freedreno/registers/msm.xml ( 944 bytes, from 2022-03-03 01:18:13)
-- /home/robclark/tmp/mesa/src/freedreno/registers/freedreno_copyright.xml ( 1572 bytes, from 2020-12-31 19:26:32)
-- /home/robclark/tmp/mesa/src/freedreno/registers/mdp/mdp4.xml ( 20912 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/mdp/mdp_common.xml ( 2849 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/mdp/mdp5.xml ( 37461 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi.xml ( 17560 bytes, from 2021-09-16 22:37:02)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_v2.xml ( 3236 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_28nm_8960.xml ( 4935 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_28nm.xml ( 7004 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_20nm.xml ( 3712 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_14nm.xml ( 5381 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_10nm.xml ( 4499 bytes, from 2021-07-22 15:21:56)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/dsi_phy_7nm.xml ( 11007 bytes, from 2022-03-03 01:18:13)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/sfpb.xml ( 602 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/dsi/mmss_cc.xml ( 1686 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/hdmi/qfprom.xml ( 600 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/hdmi/hdmi.xml ( 41874 bytes, from 2021-01-30 18:25:22)
-- /home/robclark/tmp/mesa/src/freedreno/registers/edp/edp.xml ( 10416 bytes, from 2021-01-30 18:25:22)
-
-Copyright (C) 2013-2021 by the following authors:
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/msm.xml ( 944 bytes, from 2022-07-23 20:21:46)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/freedreno_copyright.xml ( 1572 bytes, from 2022-07-23 20:21:46)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/mdp/mdp4.xml ( 20912 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/mdp/mdp_common.xml ( 2849 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/mdp/mdp5.xml ( 37461 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi.xml ( 18746 bytes, from 2022-04-28 17:29:36)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_v2.xml ( 3236 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_28nm_8960.xml ( 4935 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_28nm.xml ( 7004 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_20nm.xml ( 3712 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_14nm.xml ( 5381 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_10nm.xml ( 4499 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_7nm.xml ( 11007 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/sfpb.xml ( 602 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/mmss_cc.xml ( 1686 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/hdmi/qfprom.xml ( 600 bytes, from 2022-03-08 17:40:42)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/hdmi/hdmi.xml ( 42350 bytes, from 2022-09-20 17:45:56)
+- /home/robclark/src/mesa/mesa/src/freedreno/registers/edp/edp.xml ( 10416 bytes, from 2022-03-08 17:40:42)
+
+Copyright (C) 2013-2022 by the following authors:
- Rob Clark <robdclark@gmail.com> (robclark)
- Ilia Mirkin <imirkin@alum.mit.edu> (imirkin)
diff --git a/drivers/gpu/drm/msm/msm_atomic.c b/drivers/gpu/drm/msm/msm_atomic.c
index 1686fbb611fd..d77fa9793c54 100644
--- a/drivers/gpu/drm/msm/msm_atomic.c
+++ b/drivers/gpu/drm/msm/msm_atomic.c
@@ -179,6 +179,24 @@ static unsigned get_crtc_mask(struct drm_atomic_state *state)
return mask;
}
+int msm_atomic_check(struct drm_device *dev, struct drm_atomic_state *state)
+{
+ struct drm_crtc_state *old_crtc_state, *new_crtc_state;
+ struct drm_crtc *crtc;
+ int i;
+
+ for_each_oldnew_crtc_in_state(state, crtc, old_crtc_state,
+ new_crtc_state, i) {
+ if ((old_crtc_state->ctm && !new_crtc_state->ctm) ||
+ (!old_crtc_state->ctm && new_crtc_state->ctm)) {
+ new_crtc_state->mode_changed = true;
+ state->allow_modeset = true;
+ }
+ }
+
+ return drm_atomic_helper_check(dev, state);
+}
+
void msm_atomic_commit_tail(struct drm_atomic_state *state)
{
struct drm_device *dev = state->dev;
@@ -186,8 +204,7 @@ void msm_atomic_commit_tail(struct drm_atomic_state *state)
struct msm_kms *kms = priv->kms;
struct drm_crtc *async_crtc = NULL;
unsigned crtc_mask = get_crtc_mask(state);
- bool async = kms->funcs->vsync_time &&
- can_do_async(state, &async_crtc);
+ bool async = can_do_async(state, &async_crtc);
trace_msm_atomic_commit_tail_start(async, crtc_mask);
@@ -206,7 +223,8 @@ void msm_atomic_commit_tail(struct drm_atomic_state *state)
* Now that there is no in-progress flush, prepare the
* current update:
*/
- kms->funcs->prepare_commit(kms, state);
+ if (kms->funcs->prepare_commit)
+ kms->funcs->prepare_commit(kms, state);
/*
* Push atomic updates down to hardware:
@@ -231,7 +249,9 @@ void msm_atomic_commit_tail(struct drm_atomic_state *state)
kms->pending_crtc_mask |= crtc_mask;
- vsync_time = kms->funcs->vsync_time(kms, async_crtc);
+ if (drm_crtc_next_vblank_start(async_crtc, &vsync_time))
+ goto fallback;
+
wakeup_time = ktime_sub(vsync_time, ms_to_ktime(1));
msm_hrtimer_queue_work(&timer->work, wakeup_time,
@@ -253,6 +273,7 @@ void msm_atomic_commit_tail(struct drm_atomic_state *state)
return;
}
+fallback:
/*
* If there is any async flush pending on updated crtcs, fold
* them into the current flush.
diff --git a/drivers/gpu/drm/msm/msm_debugfs.c b/drivers/gpu/drm/msm/msm_debugfs.c
index 95f4374ae21c..9c0e633a3a61 100644
--- a/drivers/gpu/drm/msm/msm_debugfs.c
+++ b/drivers/gpu/drm/msm/msm_debugfs.c
@@ -10,6 +10,7 @@
#include <linux/fault-inject.h>
#include <drm/drm_debugfs.h>
+#include <drm/drm_fb_helper.h>
#include <drm/drm_file.h>
#include <drm/drm_framebuffer.h>
@@ -241,12 +242,11 @@ static int msm_fb_show(struct seq_file *m, void *arg)
{
struct drm_info_node *node = (struct drm_info_node *) m->private;
struct drm_device *dev = node->minor->dev;
- struct msm_drm_private *priv = dev->dev_private;
struct drm_framebuffer *fb, *fbdev_fb = NULL;
- if (priv->fbdev) {
+ if (dev->fb_helper && dev->fb_helper->fb) {
seq_printf(m, "fbcon ");
- fbdev_fb = priv->fbdev->fb;
+ fbdev_fb = dev->fb_helper->fb;
msm_framebuffer_describe(fbdev_fb, m);
}
@@ -305,6 +305,7 @@ void msm_debugfs_init(struct drm_minor *minor)
{
struct drm_device *dev = minor->dev;
struct msm_drm_private *priv = dev->dev_private;
+ struct dentry *gpu_devfreq;
drm_debugfs_create_files(msm_debugfs_list,
ARRAY_SIZE(msm_debugfs_list),
@@ -325,6 +326,17 @@ void msm_debugfs_init(struct drm_minor *minor)
debugfs_create_file("shrink", S_IRWXU, minor->debugfs_root,
dev, &shrink_fops);
+ gpu_devfreq = debugfs_create_dir("devfreq", minor->debugfs_root);
+
+ debugfs_create_bool("idle_clamp",0600, gpu_devfreq,
+ &priv->gpu_clamp_to_idle);
+
+ debugfs_create_u32("upthreshold",0600, gpu_devfreq,
+ &priv->gpu_devfreq_config.upthreshold);
+
+ debugfs_create_u32("downdifferential",0600, gpu_devfreq,
+ &priv->gpu_devfreq_config.downdifferential);
+
if (priv->kms && priv->kms->funcs->debugfs_init)
priv->kms->funcs->debugfs_init(priv->kms, minor);
diff --git a/drivers/gpu/drm/msm/msm_drv.c b/drivers/gpu/drm/msm/msm_drv.c
index 105b5b48e828..b4cfa44a8a5c 100644
--- a/drivers/gpu/drm/msm/msm_drv.c
+++ b/drivers/gpu/drm/msm/msm_drv.c
@@ -8,10 +8,12 @@
#include <linux/dma-mapping.h>
#include <linux/fault-inject.h>
#include <linux/kthread.h>
+#include <linux/of_address.h>
#include <linux/sched/mm.h>
#include <linux/uaccess.h>
#include <uapi/linux/sched/types.h>
+#include <drm/drm_aperture.h>
#include <drm/drm_bridge.h>
#include <drm/drm_drv.h>
#include <drm/drm_file.h>
@@ -45,15 +47,18 @@
* - 1.7.0 - Add MSM_PARAM_SUSPENDS to access suspend count
* - 1.8.0 - Add MSM_BO_CACHED_COHERENT for supported GPUs (a6xx)
* - 1.9.0 - Add MSM_SUBMIT_FENCE_SN_IN
+ * - 1.10.0 - Add MSM_SUBMIT_BO_NO_IMPLICIT
+ * - 1.11.0 - Add wait boost (MSM_WAIT_FENCE_BOOST, MSM_PREP_BOOST)
*/
#define MSM_VERSION_MAJOR 1
-#define MSM_VERSION_MINOR 9
+#define MSM_VERSION_MINOR 10
#define MSM_VERSION_PATCHLEVEL 0
+static void msm_deinit_vram(struct drm_device *ddev);
+
static const struct drm_mode_config_funcs mode_config_funcs = {
.fb_create = msm_framebuffer_create,
- .output_poll_changed = drm_fb_helper_output_poll_changed,
- .atomic_check = drm_atomic_helper_check,
+ .atomic_check = msm_atomic_check,
.atomic_commit = drm_atomic_helper_commit,
};
@@ -61,12 +66,6 @@ static const struct drm_mode_config_helper_funcs mode_config_helper_funcs = {
.atomic_commit_tail = msm_atomic_commit_tail,
};
-#ifdef CONFIG_DRM_FBDEV_EMULATION
-static bool fbdev = true;
-MODULE_PARM_DESC(fbdev, "Enable fbdev compat layer");
-module_param(fbdev, bool, 0600);
-#endif
-
static char *vram = "16m";
MODULE_PARM_DESC(vram, "Configure VRAM size (for devices without IOMMU/GPUMMU)");
module_param(vram, charp, 0);
@@ -236,12 +235,8 @@ static int msm_drm_uninit(struct device *dev)
msm_perf_debugfs_cleanup(priv);
msm_rd_debugfs_cleanup(priv);
-#ifdef CONFIG_DRM_FBDEV_EMULATION
- if (fbdev && priv->fbdev)
- msm_fbdev_free(ddev);
-#endif
-
- msm_disp_snapshot_destroy(ddev);
+ if (kms)
+ msm_disp_snapshot_destroy(ddev);
drm_mode_config_cleanup(ddev);
@@ -249,19 +244,16 @@ static int msm_drm_uninit(struct device *dev)
drm_bridge_remove(priv->bridges[i]);
priv->num_bridges = 0;
- pm_runtime_get_sync(dev);
- msm_irq_uninstall(ddev);
- pm_runtime_put_sync(dev);
+ if (kms) {
+ pm_runtime_get_sync(dev);
+ msm_irq_uninstall(ddev);
+ pm_runtime_put_sync(dev);
+ }
if (kms && kms->funcs)
kms->funcs->destroy(kms);
- if (priv->vram.paddr) {
- unsigned long attrs = DMA_ATTR_NO_KERNEL_MAPPING;
- drm_mm_takedown(&priv->vram.mm);
- dma_free_attrs(dev, priv->vram.size, NULL,
- priv->vram.paddr, attrs);
- }
+ msm_deinit_vram(ddev);
component_unbind_all(dev, ddev);
@@ -273,11 +265,8 @@ static int msm_drm_uninit(struct device *dev)
return 0;
}
-#include <linux/of_address.h>
-
struct msm_gem_address_space *msm_kms_init_aspace(struct drm_device *dev)
{
- struct iommu_domain *domain;
struct msm_gem_address_space *aspace;
struct msm_mmu *mmu;
struct device *mdp_dev = dev->dev;
@@ -293,22 +282,21 @@ struct msm_gem_address_space *msm_kms_init_aspace(struct drm_device *dev)
else
iommu_dev = mdss_dev;
- domain = iommu_domain_alloc(iommu_dev->bus);
- if (!domain) {
+ mmu = msm_iommu_new(iommu_dev, 0);
+ if (IS_ERR(mmu))
+ return ERR_CAST(mmu);
+
+ if (!mmu) {
drm_info(dev, "no IOMMU, fallback to phys contig buffers for scanout\n");
return NULL;
}
- mmu = msm_iommu_new(iommu_dev, domain);
- if (IS_ERR(mmu)) {
- iommu_domain_free(domain);
- return ERR_CAST(mmu);
- }
-
aspace = msm_gem_address_space_create(mmu, "mdp_kms",
0x1000, 0x100000000 - 0x1000);
- if (IS_ERR(aspace))
+ if (IS_ERR(aspace)) {
+ dev_err(mdp_dev, "aspace create, error %pe\n", aspace);
mmu->funcs->destroy(mmu);
+ }
return aspace;
}
@@ -401,6 +389,19 @@ static int msm_init_vram(struct drm_device *dev)
return ret;
}
+static void msm_deinit_vram(struct drm_device *ddev)
+{
+ struct msm_drm_private *priv = ddev->dev_private;
+ unsigned long attrs = DMA_ATTR_NO_KERNEL_MAPPING;
+
+ if (!priv->vram.paddr)
+ return;
+
+ drm_mm_takedown(&priv->vram.mm);
+ dma_free_attrs(ddev->dev, priv->vram.size, NULL, priv->vram.paddr,
+ attrs);
+}
+
static int msm_drm_init(struct device *dev, const struct drm_driver *drv)
{
struct msm_drm_private *priv = dev_get_drvdata(dev);
@@ -420,7 +421,10 @@ static int msm_drm_init(struct device *dev, const struct drm_driver *drv)
priv->dev = ddev;
priv->wq = alloc_ordered_workqueue("msm", 0);
- priv->hangcheck_period = DRM_MSM_HANGCHECK_DEFAULT_PERIOD;
+ if (!priv->wq) {
+ ret = -ENOMEM;
+ goto err_put_dev;
+ }
INIT_LIST_HEAD(&priv->objects);
mutex_init(&priv->obj_lock);
@@ -443,12 +447,17 @@ static int msm_drm_init(struct device *dev, const struct drm_driver *drv)
ret = msm_init_vram(ddev);
if (ret)
- return ret;
+ goto err_cleanup_mode_config;
/* Bind all our sub-components: */
ret = component_bind_all(dev, ddev);
if (ret)
- return ret;
+ goto err_deinit_vram;
+
+ /* the fw fb could be anywhere in memory */
+ ret = drm_aperture_remove_framebuffers(false, drv);
+ if (ret)
+ goto err_msm_uninit;
dma_set_max_seg_size(dev, UINT_MAX);
@@ -494,7 +503,7 @@ static int msm_drm_init(struct device *dev, const struct drm_driver *drv)
if (IS_ERR(priv->event_thread[i].worker)) {
ret = PTR_ERR(priv->event_thread[i].worker);
DRM_DEV_ERROR(dev, "failed to create crtc_event kthread\n");
- ret = PTR_ERR(priv->event_thread[i].worker);
+ priv->event_thread[i].worker = NULL;
goto err_msm_uninit;
}
@@ -528,21 +537,30 @@ static int msm_drm_init(struct device *dev, const struct drm_driver *drv)
}
drm_mode_config_reset(ddev);
-#ifdef CONFIG_DRM_FBDEV_EMULATION
- if (kms && fbdev)
- priv->fbdev = msm_fbdev_init(ddev);
-#endif
-
ret = msm_debugfs_late_init(ddev);
if (ret)
goto err_msm_uninit;
drm_kms_helper_poll_init(ddev);
+ if (kms)
+ msm_fbdev_setup(ddev);
+
return 0;
err_msm_uninit:
msm_drm_uninit(dev);
+
+ return ret;
+
+err_deinit_vram:
+ msm_deinit_vram(ddev);
+err_cleanup_mode_config:
+ drm_mode_config_cleanup(ddev);
+ destroy_workqueue(priv->wq);
+err_put_dev:
+ drm_dev_put(ddev);
+
return ret;
}
@@ -819,6 +837,7 @@ static int msm_ioctl_gem_info(struct drm_device *dev, void *data,
case MSM_INFO_GET_OFFSET:
case MSM_INFO_GET_IOVA:
case MSM_INFO_SET_IOVA:
+ case MSM_INFO_GET_FLAGS:
/* value returned as immediate, not pointer, so len==0: */
if (args->len)
return -EINVAL;
@@ -846,6 +865,15 @@ static int msm_ioctl_gem_info(struct drm_device *dev, void *data,
case MSM_INFO_SET_IOVA:
ret = msm_ioctl_gem_info_set_iova(dev, file, obj, args->value);
break;
+ case MSM_INFO_GET_FLAGS:
+ if (obj->import_attach) {
+ ret = -EINVAL;
+ break;
+ }
+ /* Hide internal kernel-only flags: */
+ args->value = to_msm_bo(obj)->flags & MSM_BO_FLAGS;
+ ret = 0;
+ break;
case MSM_INFO_SET_NAME:
/* length check should leave room for terminating null: */
if (args->len >= sizeof(msm_obj->name)) {
@@ -886,7 +914,7 @@ static int msm_ioctl_gem_info(struct drm_device *dev, void *data,
}
static int wait_fence(struct msm_gpu_submitqueue *queue, uint32_t fence_id,
- ktime_t timeout)
+ ktime_t timeout, uint32_t flags)
{
struct dma_fence *fence;
int ret;
@@ -905,17 +933,18 @@ static int wait_fence(struct msm_gpu_submitqueue *queue, uint32_t fence_id,
* retired, so if the fence is not found it means there is nothing
* to wait for
*/
- ret = mutex_lock_interruptible(&queue->idr_lock);
- if (ret)
- return ret;
+ spin_lock(&queue->idr_lock);
fence = idr_find(&queue->fence_idr, fence_id);
if (fence)
fence = dma_fence_get_rcu(fence);
- mutex_unlock(&queue->idr_lock);
+ spin_unlock(&queue->idr_lock);
if (!fence)
return 0;
+ if (flags & MSM_WAIT_FENCE_BOOST)
+ dma_fence_set_deadline(fence, ktime_get());
+
ret = dma_fence_wait_timeout(fence, true, timeout_to_jiffies(&timeout));
if (ret == 0) {
ret = -ETIMEDOUT;
@@ -936,8 +965,8 @@ static int msm_ioctl_wait_fence(struct drm_device *dev, void *data,
struct msm_gpu_submitqueue *queue;
int ret;
- if (args->pad) {
- DRM_ERROR("invalid pad: %08x\n", args->pad);
+ if (args->flags & ~MSM_WAIT_FENCE_FLAGS) {
+ DRM_ERROR("invalid flags: %08x\n", args->flags);
return -EINVAL;
}
@@ -948,7 +977,7 @@ static int msm_ioctl_wait_fence(struct drm_device *dev, void *data,
if (!queue)
return -ENOENT;
- ret = wait_fence(queue, args->fence, to_ktime(args->timeout));
+ ret = wait_fence(queue, args->fence, to_ktime(args->timeout), args->flags);
msm_submitqueue_put(queue);
@@ -1055,7 +1084,6 @@ static const struct drm_driver msm_driver = {
DRIVER_SYNCOBJ,
.open = msm_open,
.postclose = msm_postclose,
- .lastclose = drm_fb_helper_lastclose,
.dumb_create = msm_gem_dumb_create,
.dumb_map_offset = msm_gem_dumb_map_offset,
.prime_handle_to_fd = drm_gem_prime_handle_to_fd,
@@ -1271,7 +1299,7 @@ void msm_drv_shutdown(struct platform_device *pdev)
* msm_drm_init, drm_dev->registered is used as an indicator that the
* shutdown will be successful.
*/
- if (drm && drm->registered)
+ if (drm && drm->registered && priv->kms)
drm_atomic_helper_shutdown(drm);
}
diff --git a/drivers/gpu/drm/msm/msm_drv.h b/drivers/gpu/drm/msm/msm_drv.h
index b2ea262296a4..e13a8cbd61c9 100644
--- a/drivers/gpu/drm/msm/msm_drv.h
+++ b/drivers/gpu/drm/msm/msm_drv.h
@@ -11,6 +11,7 @@
#include <linux/kernel.h>
#include <linux/clk.h>
#include <linux/cpufreq.h>
+#include <linux/devfreq.h>
#include <linux/module.h>
#include <linux/component.h>
#include <linux/platform_device.h>
@@ -28,7 +29,6 @@
#include <drm/drm_atomic.h>
#include <drm/drm_atomic_helper.h>
#include <drm/drm_probe_helper.h>
-#include <drm/drm_fb_helper.h>
#include <drm/display/drm_dsc.h>
#include <drm/msm_drm.h>
#include <drm/drm_gem.h>
@@ -61,6 +61,7 @@ enum msm_dp_controller {
MSM_DP_CONTROLLER_0,
MSM_DP_CONTROLLER_1,
MSM_DP_CONTROLLER_2,
+ MSM_DP_CONTROLLER_3,
MSM_DP_CONTROLLER_COUNT,
};
@@ -82,14 +83,12 @@ enum msm_event_wait {
/**
* struct msm_display_topology - defines a display topology pipeline
* @num_lm: number of layer mixers used
- * @num_enc: number of compression encoder blocks used
* @num_intf: number of interfaces the panel is mounted on
* @num_dspp: number of dspp blocks used
* @num_dsc: number of Display Stream Compression (DSC) blocks used
*/
struct msm_display_topology {
u32 num_lm;
- u32 num_enc;
u32 num_intf;
u32 num_dspp;
u32 num_dsc;
@@ -129,8 +128,6 @@ struct msm_drm_private {
bool is_a2xx;
bool has_cached_coherent;
- struct drm_fb_helper *fbdev;
-
struct msm_rd_state *rd; /* debugfs to dump all submits */
struct msm_rd_state *hangrd; /* debugfs to dump hanging submits */
struct msm_perf_state *perf;
@@ -224,9 +221,23 @@ struct msm_drm_private {
struct drm_atomic_state *pm_state;
- /* For hang detection, in ms */
+ /**
+ * hangcheck_period: For hang detection, in ms
+ *
+ * Note that in practice, a submit/job will get at least two hangcheck
+ * periods, due to checking for progress being implemented as simply
+ * "have the CP position registers changed since last time?"
+ */
unsigned int hangcheck_period;
+ /** gpu_devfreq_config: Devfreq tuning config for the GPU. */
+ struct devfreq_simple_ondemand_data gpu_devfreq_config;
+
+ /**
+ * gpu_clamp_to_idle: Enable clamping to idle freq when inactive
+ */
+ bool gpu_clamp_to_idle;
+
/**
* disable_err_irq:
*
@@ -247,6 +258,7 @@ int msm_atomic_init_pending_timer(struct msm_pending_timer *timer,
struct msm_kms *kms, int crtc_idx);
void msm_atomic_destroy_pending_timer(struct msm_pending_timer *timer);
void msm_atomic_commit_tail(struct drm_atomic_state *state);
+int msm_atomic_check(struct drm_device *dev, struct drm_atomic_state *state);
struct drm_atomic_state *msm_atomic_state_alloc(struct drm_device *dev);
void msm_atomic_state_clear(struct drm_atomic_state *state);
void msm_atomic_state_free(struct drm_atomic_state *state);
@@ -292,8 +304,13 @@ struct drm_framebuffer *msm_framebuffer_create(struct drm_device *dev,
struct drm_framebuffer * msm_alloc_stolen_fb(struct drm_device *dev,
int w, int h, int p, uint32_t format);
-struct drm_fb_helper *msm_fbdev_init(struct drm_device *dev);
-void msm_fbdev_free(struct drm_device *dev);
+#ifdef CONFIG_DRM_FBDEV_EMULATION
+void msm_fbdev_setup(struct drm_device *dev);
+#else
+static inline void msm_fbdev_setup(struct drm_device *dev)
+{
+}
+#endif
struct hdmi;
#ifdef CONFIG_DRM_MSM_HDMI
@@ -534,7 +551,7 @@ static inline unsigned long timeout_to_jiffies(const ktime_t *timeout)
remaining_jiffies = ktime_divns(rem, NSEC_PER_SEC / HZ);
}
- return clamp(remaining_jiffies, 0LL, (s64)INT_MAX);
+ return clamp(remaining_jiffies, 1LL, (s64)INT_MAX);
}
/* Driver helpers */
diff --git a/drivers/gpu/drm/msm/msm_fbdev.c b/drivers/gpu/drm/msm/msm_fbdev.c
index 46168eccfac4..2ebc86381e1c 100644
--- a/drivers/gpu/drm/msm/msm_fbdev.c
+++ b/drivers/gpu/drm/msm/msm_fbdev.c
@@ -4,8 +4,8 @@
* Author: Rob Clark <robdclark@gmail.com>
*/
-#include <drm/drm_aperture.h>
-#include <drm/drm_crtc.h>
+#include <drm/drm_drv.h>
+#include <drm/drm_crtc_helper.h>
#include <drm/drm_fb_helper.h>
#include <drm/drm_fourcc.h>
#include <drm/drm_framebuffer.h>
@@ -15,18 +15,40 @@
#include "msm_gem.h"
#include "msm_kms.h"
-static int msm_fbdev_mmap(struct fb_info *info, struct vm_area_struct *vma);
+static bool fbdev = true;
+MODULE_PARM_DESC(fbdev, "Enable fbdev compat layer");
+module_param(fbdev, bool, 0600);
/*
* fbdev funcs, to implement legacy fbdev interface on top of drm driver
*/
-#define to_msm_fbdev(x) container_of(x, struct msm_fbdev, base)
+static int msm_fbdev_mmap(struct fb_info *info, struct vm_area_struct *vma)
+{
+ struct drm_fb_helper *helper = (struct drm_fb_helper *)info->par;
+ struct drm_gem_object *bo = msm_framebuffer_bo(helper->fb, 0);
-struct msm_fbdev {
- struct drm_fb_helper base;
- struct drm_framebuffer *fb;
-};
+ return drm_gem_prime_mmap(bo, vma);
+}
+
+static void msm_fbdev_fb_destroy(struct fb_info *info)
+{
+ struct drm_fb_helper *helper = (struct drm_fb_helper *)info->par;
+ struct drm_framebuffer *fb = helper->fb;
+ struct drm_gem_object *bo = msm_framebuffer_bo(fb, 0);
+
+ DBG();
+
+ drm_fb_helper_fini(helper);
+
+ /* this will free the backing object */
+ msm_gem_put_vaddr(bo);
+ drm_framebuffer_remove(fb);
+
+ drm_client_release(&helper->client);
+ drm_fb_helper_unprepare(helper);
+ kfree(helper);
+}
static const struct fb_ops msm_fb_ops = {
.owner = THIS_MODULE,
@@ -41,21 +63,12 @@ static const struct fb_ops msm_fb_ops = {
.fb_copyarea = drm_fb_helper_sys_copyarea,
.fb_imageblit = drm_fb_helper_sys_imageblit,
.fb_mmap = msm_fbdev_mmap,
+ .fb_destroy = msm_fbdev_fb_destroy,
};
-static int msm_fbdev_mmap(struct fb_info *info, struct vm_area_struct *vma)
-{
- struct drm_fb_helper *helper = (struct drm_fb_helper *)info->par;
- struct msm_fbdev *fbdev = to_msm_fbdev(helper);
- struct drm_gem_object *bo = msm_framebuffer_bo(fbdev->fb, 0);
-
- return drm_gem_prime_mmap(bo, vma);
-}
-
static int msm_fbdev_create(struct drm_fb_helper *helper,
struct drm_fb_helper_surface_size *sizes)
{
- struct msm_fbdev *fbdev = to_msm_fbdev(helper);
struct drm_device *dev = helper->dev;
struct msm_drm_private *priv = dev->dev_private;
struct drm_framebuffer *fb = NULL;
@@ -93,7 +106,7 @@ static int msm_fbdev_create(struct drm_fb_helper *helper,
goto fail;
}
- fbi = drm_fb_helper_alloc_fbi(helper);
+ fbi = drm_fb_helper_alloc_info(helper);
if (IS_ERR(fbi)) {
DRM_DEV_ERROR(dev->dev, "failed to allocate fb info\n");
ret = PTR_ERR(fbi);
@@ -102,15 +115,12 @@ static int msm_fbdev_create(struct drm_fb_helper *helper,
DBG("fbi=%p, dev=%p", fbi, dev);
- fbdev->fb = fb;
helper->fb = fb;
fbi->fbops = &msm_fb_ops;
drm_fb_helper_fill_info(fbi, helper, sizes);
- dev->mode_config.fb_base = paddr;
-
fbi->screen_base = msm_gem_get_vaddr(bo);
if (IS_ERR(fbi->screen_base)) {
ret = PTR_ERR(fbi->screen_base);
@@ -121,7 +131,7 @@ static int msm_fbdev_create(struct drm_fb_helper *helper,
fbi->fix.smem_len = bo->size;
DBG("par=%p, %dx%d", fbi->par, fbi->var.xres, fbi->var.yres);
- DBG("allocated %dx%d fb", fbdev->fb->width, fbdev->fb->height);
+ DBG("allocated %dx%d fb", fb->width, fb->height);
return 0;
@@ -134,71 +144,98 @@ static const struct drm_fb_helper_funcs msm_fb_helper_funcs = {
.fb_probe = msm_fbdev_create,
};
-/* initialize fbdev helper */
-struct drm_fb_helper *msm_fbdev_init(struct drm_device *dev)
+/*
+ * struct drm_client
+ */
+
+static void msm_fbdev_client_unregister(struct drm_client_dev *client)
{
- struct msm_drm_private *priv = dev->dev_private;
- struct msm_fbdev *fbdev = NULL;
- struct drm_fb_helper *helper;
- int ret;
+ struct drm_fb_helper *fb_helper = drm_fb_helper_from_client(client);
+
+ if (fb_helper->info) {
+ drm_fb_helper_unregister_info(fb_helper);
+ } else {
+ drm_client_release(&fb_helper->client);
+ drm_fb_helper_unprepare(fb_helper);
+ kfree(fb_helper);
+ }
+}
- fbdev = kzalloc(sizeof(*fbdev), GFP_KERNEL);
- if (!fbdev)
- goto fail;
+static int msm_fbdev_client_restore(struct drm_client_dev *client)
+{
+ drm_fb_helper_lastclose(client->dev);
- helper = &fbdev->base;
+ return 0;
+}
- drm_fb_helper_prepare(dev, helper, &msm_fb_helper_funcs);
+static int msm_fbdev_client_hotplug(struct drm_client_dev *client)
+{
+ struct drm_fb_helper *fb_helper = drm_fb_helper_from_client(client);
+ struct drm_device *dev = client->dev;
+ int ret;
- ret = drm_fb_helper_init(dev, helper);
- if (ret) {
- DRM_DEV_ERROR(dev->dev, "could not init fbdev: ret=%d\n", ret);
- goto fail;
- }
+ if (dev->fb_helper)
+ return drm_fb_helper_hotplug_event(dev->fb_helper);
- /* the fw fb could be anywhere in memory */
- ret = drm_aperture_remove_framebuffers(false, dev->driver);
+ ret = drm_fb_helper_init(dev, fb_helper);
if (ret)
- goto fini;
+ goto err_drm_err;
- ret = drm_fb_helper_initial_config(helper, 32);
- if (ret)
- goto fini;
+ if (!drm_drv_uses_atomic_modeset(dev))
+ drm_helper_disable_unused_functions(dev);
- priv->fbdev = helper;
+ ret = drm_fb_helper_initial_config(fb_helper);
+ if (ret)
+ goto err_drm_fb_helper_fini;
- return helper;
+ return 0;
-fini:
- drm_fb_helper_fini(helper);
-fail:
- kfree(fbdev);
- return NULL;
+err_drm_fb_helper_fini:
+ drm_fb_helper_fini(fb_helper);
+err_drm_err:
+ drm_err(dev, "Failed to setup fbdev emulation (ret=%d)\n", ret);
+ return ret;
}
-void msm_fbdev_free(struct drm_device *dev)
-{
- struct msm_drm_private *priv = dev->dev_private;
- struct drm_fb_helper *helper = priv->fbdev;
- struct msm_fbdev *fbdev;
+static const struct drm_client_funcs msm_fbdev_client_funcs = {
+ .owner = THIS_MODULE,
+ .unregister = msm_fbdev_client_unregister,
+ .restore = msm_fbdev_client_restore,
+ .hotplug = msm_fbdev_client_hotplug,
+};
- DBG();
+/* initialize fbdev helper */
+void msm_fbdev_setup(struct drm_device *dev)
+{
+ struct drm_fb_helper *helper;
+ int ret;
- drm_fb_helper_unregister_fbi(helper);
+ if (!fbdev)
+ return;
- drm_fb_helper_fini(helper);
+ drm_WARN(dev, !dev->registered, "Device has not been registered.\n");
+ drm_WARN(dev, dev->fb_helper, "fb_helper is already set!\n");
- fbdev = to_msm_fbdev(priv->fbdev);
+ helper = kzalloc(sizeof(*helper), GFP_KERNEL);
+ if (!helper)
+ return;
+ drm_fb_helper_prepare(dev, helper, 32, &msm_fb_helper_funcs);
- /* this will free the backing object */
- if (fbdev->fb) {
- struct drm_gem_object *bo =
- msm_framebuffer_bo(fbdev->fb, 0);
- msm_gem_put_vaddr(bo);
- drm_framebuffer_remove(fbdev->fb);
+ ret = drm_client_init(dev, &helper->client, "fbdev", &msm_fbdev_client_funcs);
+ if (ret) {
+ drm_err(dev, "Failed to register client: %d\n", ret);
+ goto err_drm_fb_helper_unprepare;
}
- kfree(fbdev);
+ ret = msm_fbdev_client_hotplug(&helper->client);
+ if (ret)
+ drm_dbg_kms(dev, "client hotplug ret=%d\n", ret);
+
+ drm_client_register(&helper->client);
+
+ return;
- priv->fbdev = NULL;
+err_drm_fb_helper_unprepare:
+ drm_fb_helper_unprepare(helper);
+ kfree(helper);
}
diff --git a/drivers/gpu/drm/msm/msm_fence.c b/drivers/gpu/drm/msm/msm_fence.c
index a47e5837c528..96599ec3eb78 100644
--- a/drivers/gpu/drm/msm/msm_fence.c
+++ b/drivers/gpu/drm/msm/msm_fence.c
@@ -8,6 +8,35 @@
#include "msm_drv.h"
#include "msm_fence.h"
+#include "msm_gpu.h"
+
+static struct msm_gpu *fctx2gpu(struct msm_fence_context *fctx)
+{
+ struct msm_drm_private *priv = fctx->dev->dev_private;
+ return priv->gpu;
+}
+
+static enum hrtimer_restart deadline_timer(struct hrtimer *t)
+{
+ struct msm_fence_context *fctx = container_of(t,
+ struct msm_fence_context, deadline_timer);
+
+ kthread_queue_work(fctx2gpu(fctx)->worker, &fctx->deadline_work);
+
+ return HRTIMER_NORESTART;
+}
+
+static void deadline_work(struct kthread_work *work)
+{
+ struct msm_fence_context *fctx = container_of(work,
+ struct msm_fence_context, deadline_work);
+
+ /* If deadline fence has already passed, nothing to do: */
+ if (msm_fence_completed(fctx, fctx->next_deadline_fence))
+ return;
+
+ msm_devfreq_boost(fctx2gpu(fctx), 2);
+}
struct msm_fence_context *
@@ -22,7 +51,7 @@ msm_fence_context_alloc(struct drm_device *dev, volatile uint32_t *fenceptr,
return ERR_PTR(-ENOMEM);
fctx->dev = dev;
- strncpy(fctx->name, name, sizeof(fctx->name));
+ strscpy(fctx->name, name, sizeof(fctx->name));
fctx->context = dma_fence_context_alloc(1);
fctx->index = index++;
fctx->fenceptr = fenceptr;
@@ -36,6 +65,13 @@ msm_fence_context_alloc(struct drm_device *dev, volatile uint32_t *fenceptr,
fctx->completed_fence = fctx->last_fence;
*fctx->fenceptr = fctx->last_fence;
+ hrtimer_init(&fctx->deadline_timer, CLOCK_MONOTONIC, HRTIMER_MODE_ABS);
+ fctx->deadline_timer.function = deadline_timer;
+
+ kthread_init_work(&fctx->deadline_work, deadline_work);
+
+ fctx->next_deadline = ktime_get();
+
return fctx;
}
@@ -62,6 +98,8 @@ void msm_update_fence(struct msm_fence_context *fctx, uint32_t fence)
spin_lock_irqsave(&fctx->spinlock, flags);
if (fence_after(fence, fctx->completed_fence))
fctx->completed_fence = fence;
+ if (msm_fence_completed(fctx, fctx->next_deadline_fence))
+ hrtimer_cancel(&fctx->deadline_timer);
spin_unlock_irqrestore(&fctx->spinlock, flags);
}
@@ -92,14 +130,50 @@ static bool msm_fence_signaled(struct dma_fence *fence)
return msm_fence_completed(f->fctx, f->base.seqno);
}
+static void msm_fence_set_deadline(struct dma_fence *fence, ktime_t deadline)
+{
+ struct msm_fence *f = to_msm_fence(fence);
+ struct msm_fence_context *fctx = f->fctx;
+ unsigned long flags;
+ ktime_t now;
+
+ spin_lock_irqsave(&fctx->spinlock, flags);
+ now = ktime_get();
+
+ if (ktime_after(now, fctx->next_deadline) ||
+ ktime_before(deadline, fctx->next_deadline)) {
+ fctx->next_deadline = deadline;
+ fctx->next_deadline_fence =
+ max(fctx->next_deadline_fence, (uint32_t)fence->seqno);
+
+ /*
+ * Set timer to trigger boost 3ms before deadline, or
+ * if we are already less than 3ms before the deadline
+ * schedule boost work immediately.
+ */
+ deadline = ktime_sub(deadline, ms_to_ktime(3));
+
+ if (ktime_after(now, deadline)) {
+ kthread_queue_work(fctx2gpu(fctx)->worker,
+ &fctx->deadline_work);
+ } else {
+ hrtimer_start(&fctx->deadline_timer, deadline,
+ HRTIMER_MODE_ABS);
+ }
+ }
+
+ spin_unlock_irqrestore(&fctx->spinlock, flags);
+}
+
static const struct dma_fence_ops msm_fence_ops = {
.get_driver_name = msm_fence_get_driver_name,
.get_timeline_name = msm_fence_get_timeline_name,
.signaled = msm_fence_signaled,
+ .set_deadline = msm_fence_set_deadline,
};
struct dma_fence *
-msm_fence_alloc(struct msm_fence_context *fctx)
+msm_fence_alloc(void)
{
struct msm_fence *f;
@@ -107,10 +181,16 @@ msm_fence_alloc(struct msm_fence_context *fctx)
if (!f)
return ERR_PTR(-ENOMEM);
+ return &f->base;
+}
+
+void
+msm_fence_init(struct dma_fence *fence, struct msm_fence_context *fctx)
+{
+ struct msm_fence *f = to_msm_fence(fence);
+
f->fctx = fctx;
dma_fence_init(&f->base, &msm_fence_ops, &fctx->spinlock,
fctx->context, ++fctx->last_fence);
-
- return &f->base;
}
diff --git a/drivers/gpu/drm/msm/msm_fence.h b/drivers/gpu/drm/msm/msm_fence.h
index 7f1798c54cd1..148196375a0b 100644
--- a/drivers/gpu/drm/msm/msm_fence.h
+++ b/drivers/gpu/drm/msm/msm_fence.h
@@ -52,6 +52,26 @@ struct msm_fence_context {
volatile uint32_t *fenceptr;
spinlock_t spinlock;
+
+ /*
+ * TODO this doesn't really deal with multiple deadlines, like
+ * if userspace got multiple frames ahead.. OTOH atomic updates
+ * don't queue, so maybe that is ok
+ */
+
+ /** next_deadline: Time of next deadline */
+ ktime_t next_deadline;
+
+ /**
+ * next_deadline_fence:
+ *
+ * Fence value for next pending deadline. The deadline timer is
+ * canceled when this fence is signaled.
+ */
+ uint32_t next_deadline_fence;
+
+ struct hrtimer deadline_timer;
+ struct kthread_work deadline_work;
};
struct msm_fence_context * msm_fence_context_alloc(struct drm_device *dev,
@@ -61,7 +81,8 @@ void msm_fence_context_free(struct msm_fence_context *fctx);
bool msm_fence_completed(struct msm_fence_context *fctx, uint32_t fence);
void msm_update_fence(struct msm_fence_context *fctx, uint32_t fence);
-struct dma_fence * msm_fence_alloc(struct msm_fence_context *fctx);
+struct dma_fence * msm_fence_alloc(void);
+void msm_fence_init(struct dma_fence *fence, struct msm_fence_context *fctx);
static inline bool
fence_before(uint32_t a, uint32_t b)
diff --git a/drivers/gpu/drm/msm/msm_gem.c b/drivers/gpu/drm/msm/msm_gem.c
index 1dee0d18abbb..db6c4e281d75 100644
--- a/drivers/gpu/drm/msm/msm_gem.c
+++ b/drivers/gpu/drm/msm/msm_gem.c
@@ -19,8 +19,6 @@
#include "msm_gpu.h"
#include "msm_mmu.h"
-static void update_lru(struct drm_gem_object *obj);
-
static dma_addr_t physaddr(struct drm_gem_object *obj)
{
struct msm_gem_object *msm_obj = to_msm_bo(obj);
@@ -63,6 +61,49 @@ static void sync_for_cpu(struct msm_gem_object *msm_obj)
dma_unmap_sgtable(dev, msm_obj->sgt, DMA_BIDIRECTIONAL, 0);
}
+static void update_lru_active(struct drm_gem_object *obj)
+{
+ struct msm_drm_private *priv = obj->dev->dev_private;
+ struct msm_gem_object *msm_obj = to_msm_bo(obj);
+
+ GEM_WARN_ON(!msm_obj->pages);
+
+ if (msm_obj->pin_count) {
+ drm_gem_lru_move_tail_locked(&priv->lru.pinned, obj);
+ } else if (msm_obj->madv == MSM_MADV_WILLNEED) {
+ drm_gem_lru_move_tail_locked(&priv->lru.willneed, obj);
+ } else {
+ GEM_WARN_ON(msm_obj->madv != MSM_MADV_DONTNEED);
+
+ drm_gem_lru_move_tail_locked(&priv->lru.dontneed, obj);
+ }
+}
+
+static void update_lru_locked(struct drm_gem_object *obj)
+{
+ struct msm_drm_private *priv = obj->dev->dev_private;
+ struct msm_gem_object *msm_obj = to_msm_bo(obj);
+
+ msm_gem_assert_locked(&msm_obj->base);
+
+ if (!msm_obj->pages) {
+ GEM_WARN_ON(msm_obj->pin_count);
+
+ drm_gem_lru_move_tail_locked(&priv->lru.unbacked, obj);
+ } else {
+ update_lru_active(obj);
+ }
+}
+
+static void update_lru(struct drm_gem_object *obj)
+{
+ struct msm_drm_private *priv = obj->dev->dev_private;
+
+ mutex_lock(&priv->lru.lock);
+ update_lru_locked(obj);
+ mutex_unlock(&priv->lru.lock);
+}
+
/* allocate pages from VRAM carveout, used when no IOMMU: */
static struct page **get_pages_vram(struct drm_gem_object *obj, int npages)
{
@@ -180,6 +221,7 @@ static void put_pages(struct drm_gem_object *obj)
static struct page **msm_gem_pin_pages_locked(struct drm_gem_object *obj)
{
+ struct msm_drm_private *priv = obj->dev->dev_private;
struct msm_gem_object *msm_obj = to_msm_bo(obj);
struct page **p;
@@ -190,10 +232,13 @@ static struct page **msm_gem_pin_pages_locked(struct drm_gem_object *obj)
}
p = get_pages(obj);
- if (!IS_ERR(p)) {
- to_msm_bo(obj)->pin_count++;
- update_lru(obj);
- }
+ if (IS_ERR(p))
+ return p;
+
+ mutex_lock(&priv->lru.lock);
+ msm_obj->pin_count++;
+ update_lru_locked(obj);
+ mutex_unlock(&priv->lru.lock);
return p;
}
@@ -309,12 +354,10 @@ static struct msm_gem_vma *add_vma(struct drm_gem_object *obj,
msm_gem_assert_locked(obj);
- vma = kzalloc(sizeof(*vma), GFP_KERNEL);
+ vma = msm_gem_vma_new(aspace);
if (!vma)
return ERR_PTR(-ENOMEM);
- vma->aspace = aspace;
-
list_add_tail(&vma->list, &msm_obj->vmas);
return vma;
@@ -361,9 +404,9 @@ put_iova_spaces(struct drm_gem_object *obj, bool close)
list_for_each_entry(vma, &msm_obj->vmas, list) {
if (vma->aspace) {
- msm_gem_purge_vma(vma->aspace, vma);
+ msm_gem_vma_purge(vma);
if (close)
- msm_gem_close_vma(vma->aspace, vma);
+ msm_gem_vma_close(vma);
}
}
}
@@ -399,7 +442,7 @@ static struct msm_gem_vma *get_vma_locked(struct drm_gem_object *obj,
if (IS_ERR(vma))
return vma;
- ret = msm_gem_init_vma(aspace, vma, obj->size,
+ ret = msm_gem_vma_init(vma, obj->size,
range_start, range_end);
if (ret) {
del_vma(vma);
@@ -437,7 +480,7 @@ int msm_gem_pin_vma_locked(struct drm_gem_object *obj, struct msm_gem_vma *vma)
if (IS_ERR(pages))
return PTR_ERR(pages);
- ret = msm_gem_map_vma(vma->aspace, vma, prot, msm_obj->sgt, obj->size);
+ ret = msm_gem_vma_map(vma, prot, msm_obj->sgt, obj->size);
if (ret)
msm_gem_unpin_locked(obj);
@@ -446,14 +489,34 @@ int msm_gem_pin_vma_locked(struct drm_gem_object *obj, struct msm_gem_vma *vma)
void msm_gem_unpin_locked(struct drm_gem_object *obj)
{
+ struct msm_drm_private *priv = obj->dev->dev_private;
struct msm_gem_object *msm_obj = to_msm_bo(obj);
msm_gem_assert_locked(obj);
+ mutex_lock(&priv->lru.lock);
msm_obj->pin_count--;
GEM_WARN_ON(msm_obj->pin_count < 0);
+ update_lru_locked(obj);
+ mutex_unlock(&priv->lru.lock);
+}
- update_lru(obj);
+/* Special unpin path for use in fence-signaling path, avoiding the need
+ * to hold the obj lock by only depending on things that a protected by
+ * the LRU lock. In particular we know that that we already have backing
+ * and and that the object's dma_resv has the fence for the current
+ * submit/job which will prevent us racing against page eviction.
+ */
+void msm_gem_unpin_active(struct drm_gem_object *obj)
+{
+ struct msm_drm_private *priv = obj->dev->dev_private;
+ struct msm_gem_object *msm_obj = to_msm_bo(obj);
+
+ mutex_lock(&priv->lru.lock);
+ msm_obj->pin_count--;
+ GEM_WARN_ON(msm_obj->pin_count < 0);
+ update_lru_active(obj);
+ mutex_unlock(&priv->lru.lock);
}
struct msm_gem_vma *msm_gem_get_vma_locked(struct drm_gem_object *obj,
@@ -539,8 +602,8 @@ static int clear_iova(struct drm_gem_object *obj,
if (msm_gem_vma_inuse(vma))
return -EBUSY;
- msm_gem_purge_vma(vma->aspace, vma);
- msm_gem_close_vma(vma->aspace, vma);
+ msm_gem_vma_purge(vma);
+ msm_gem_vma_close(vma);
del_vma(vma);
return 0;
@@ -589,7 +652,7 @@ void msm_gem_unpin_iova(struct drm_gem_object *obj,
msm_gem_lock(obj);
vma = lookup_vma(obj, aspace);
if (!GEM_WARN_ON(!vma)) {
- msm_gem_unpin_vma(vma);
+ msm_gem_vma_unpin(vma);
msm_gem_unpin_locked(obj);
}
msm_gem_unlock(obj);
@@ -628,6 +691,7 @@ fail:
static void *get_vaddr(struct drm_gem_object *obj, unsigned madv)
{
struct msm_gem_object *msm_obj = to_msm_bo(obj);
+ struct page **pages;
int ret = 0;
msm_gem_assert_locked(obj);
@@ -641,6 +705,10 @@ static void *get_vaddr(struct drm_gem_object *obj, unsigned madv)
return ERR_PTR(-EBUSY);
}
+ pages = msm_gem_pin_pages_locked(obj);
+ if (IS_ERR(pages))
+ return ERR_CAST(pages);
+
/* increment vmap_count *before* vmap() call, so shrinker can
* check vmap_count (is_vunmapable()) outside of msm_obj lock.
* This guarantees that we won't try to msm_gem_vunmap() this
@@ -650,25 +718,19 @@ static void *get_vaddr(struct drm_gem_object *obj, unsigned madv)
msm_obj->vmap_count++;
if (!msm_obj->vaddr) {
- struct page **pages = get_pages(obj);
- if (IS_ERR(pages)) {
- ret = PTR_ERR(pages);
- goto fail;
- }
msm_obj->vaddr = vmap(pages, obj->size >> PAGE_SHIFT,
VM_MAP, msm_gem_pgprot(msm_obj, PAGE_KERNEL));
if (msm_obj->vaddr == NULL) {
ret = -ENOMEM;
goto fail;
}
-
- update_lru(obj);
}
return msm_obj->vaddr;
fail:
msm_obj->vmap_count--;
+ msm_gem_unpin_locked(obj);
return ERR_PTR(ret);
}
@@ -707,6 +769,7 @@ void msm_gem_put_vaddr_locked(struct drm_gem_object *obj)
GEM_WARN_ON(msm_obj->vmap_count < 1);
msm_obj->vmap_count--;
+ msm_gem_unpin_locked(obj);
}
void msm_gem_put_vaddr(struct drm_gem_object *obj)
@@ -721,10 +784,13 @@ void msm_gem_put_vaddr(struct drm_gem_object *obj)
*/
int msm_gem_madvise(struct drm_gem_object *obj, unsigned madv)
{
+ struct msm_drm_private *priv = obj->dev->dev_private;
struct msm_gem_object *msm_obj = to_msm_bo(obj);
msm_gem_lock(obj);
+ mutex_lock(&priv->lru.lock);
+
if (msm_obj->madv != __MSM_MADV_PURGED)
msm_obj->madv = madv;
@@ -733,7 +799,9 @@ int msm_gem_madvise(struct drm_gem_object *obj, unsigned madv)
/* If the obj is inactive, we might need to move it
* between inactive lists
*/
- update_lru(obj);
+ update_lru_locked(obj);
+
+ mutex_unlock(&priv->lru.lock);
msm_gem_unlock(obj);
@@ -743,6 +811,7 @@ int msm_gem_madvise(struct drm_gem_object *obj, unsigned madv)
void msm_gem_purge(struct drm_gem_object *obj)
{
struct drm_device *dev = obj->dev;
+ struct msm_drm_private *priv = obj->dev->dev_private;
struct msm_gem_object *msm_obj = to_msm_bo(obj);
msm_gem_assert_locked(obj);
@@ -759,7 +828,10 @@ void msm_gem_purge(struct drm_gem_object *obj)
put_iova_vmas(obj);
+ mutex_lock(&priv->lru.lock);
+ /* A one-way transition: */
msm_obj->madv = __MSM_MADV_PURGED;
+ mutex_unlock(&priv->lru.lock);
drm_gem_free_mmap_offset(obj);
@@ -806,29 +878,6 @@ void msm_gem_vunmap(struct drm_gem_object *obj)
msm_obj->vaddr = NULL;
}
-static void update_lru(struct drm_gem_object *obj)
-{
- struct msm_drm_private *priv = obj->dev->dev_private;
- struct msm_gem_object *msm_obj = to_msm_bo(obj);
-
- msm_gem_assert_locked(&msm_obj->base);
-
- if (!msm_obj->pages) {
- GEM_WARN_ON(msm_obj->pin_count);
- GEM_WARN_ON(msm_obj->vmap_count);
-
- drm_gem_lru_move_tail(&priv->lru.unbacked, obj);
- } else if (msm_obj->pin_count || msm_obj->vmap_count) {
- drm_gem_lru_move_tail(&priv->lru.pinned, obj);
- } else if (msm_obj->madv == MSM_MADV_WILLNEED) {
- drm_gem_lru_move_tail(&priv->lru.willneed, obj);
- } else {
- GEM_WARN_ON(msm_obj->madv != MSM_MADV_DONTNEED);
-
- drm_gem_lru_move_tail(&priv->lru.dontneed, obj);
- }
-}
-
bool msm_gem_active(struct drm_gem_object *obj)
{
msm_gem_assert_locked(obj);
@@ -846,6 +895,11 @@ int msm_gem_cpu_prep(struct drm_gem_object *obj, uint32_t op, ktime_t *timeout)
op & MSM_PREP_NOSYNC ? 0 : timeout_to_jiffies(timeout);
long ret;
+ if (op & MSM_PREP_BOOST) {
+ dma_resv_set_deadline(obj->resv, dma_resv_usage_rw(write),
+ ktime_get());
+ }
+
ret = dma_resv_wait_timeout(obj->resv, dma_resv_usage_rw(write),
true, remain);
if (ret == 0)
@@ -1012,7 +1066,7 @@ static int msm_gem_object_mmap(struct drm_gem_object *obj, struct vm_area_struct
{
struct msm_gem_object *msm_obj = to_msm_bo(obj);
- vma->vm_flags |= VM_PFNMAP | VM_DONTEXPAND | VM_DONTDUMP;
+ vm_flags_set(vma, VM_PFNMAP | VM_DONTEXPAND | VM_DONTDUMP);
vma->vm_page_prot = msm_gem_pgprot(msm_obj, vm_get_page_prot(vma->vm_flags));
return 0;
diff --git a/drivers/gpu/drm/msm/msm_gem.h b/drivers/gpu/drm/msm/msm_gem.h
index c4844cf3a585..2bd6846c83a9 100644
--- a/drivers/gpu/drm/msm/msm_gem.h
+++ b/drivers/gpu/drm/msm/msm_gem.h
@@ -59,6 +59,7 @@ struct msm_fence_context;
struct msm_gem_vma {
struct drm_mm_node node;
+ spinlock_t lock;
uint64_t iova;
struct msm_gem_address_space *aspace;
struct list_head list; /* node in msm_gem_object::vmas */
@@ -69,19 +70,15 @@ struct msm_gem_vma {
struct msm_fence_context *fctx[MSM_GPU_MAX_RINGS];
};
-int msm_gem_init_vma(struct msm_gem_address_space *aspace,
- struct msm_gem_vma *vma, int size,
+struct msm_gem_vma *msm_gem_vma_new(struct msm_gem_address_space *aspace);
+int msm_gem_vma_init(struct msm_gem_vma *vma, int size,
u64 range_start, u64 range_end);
bool msm_gem_vma_inuse(struct msm_gem_vma *vma);
-void msm_gem_purge_vma(struct msm_gem_address_space *aspace,
- struct msm_gem_vma *vma);
-void msm_gem_unpin_vma(struct msm_gem_vma *vma);
-void msm_gem_unpin_vma_fenced(struct msm_gem_vma *vma, struct msm_fence_context *fctx);
-int msm_gem_map_vma(struct msm_gem_address_space *aspace,
- struct msm_gem_vma *vma, int prot,
- struct sg_table *sgt, int size);
-void msm_gem_close_vma(struct msm_gem_address_space *aspace,
- struct msm_gem_vma *vma);
+void msm_gem_vma_purge(struct msm_gem_vma *vma);
+void msm_gem_vma_unpin(struct msm_gem_vma *vma);
+void msm_gem_vma_unpin_fenced(struct msm_gem_vma *vma, struct msm_fence_context *fctx);
+int msm_gem_vma_map(struct msm_gem_vma *vma, int prot, struct sg_table *sgt, int size);
+void msm_gem_vma_close(struct msm_gem_vma *vma);
struct msm_gem_object {
struct drm_gem_object base;
@@ -89,7 +86,9 @@ struct msm_gem_object {
uint32_t flags;
/**
- * Advice: are the backing pages purgeable?
+ * madv: are the backing pages purgeable?
+ *
+ * Protected by obj lock and LRU lock
*/
uint8_t madv;
@@ -117,6 +116,11 @@ struct msm_gem_object {
char name[32]; /* Identifier to print for the debugfs files */
+ /**
+ * pin_count: Number of times the pages are pinned
+ *
+ * Protected by LRU lock.
+ */
int pin_count;
};
#define to_msm_bo(x) container_of(x, struct msm_gem_object, base)
@@ -124,6 +128,7 @@ struct msm_gem_object {
uint64_t msm_gem_mmap_offset(struct drm_gem_object *obj);
int msm_gem_pin_vma_locked(struct drm_gem_object *obj, struct msm_gem_vma *vma);
void msm_gem_unpin_locked(struct drm_gem_object *obj);
+void msm_gem_unpin_active(struct drm_gem_object *obj);
struct msm_gem_vma *msm_gem_get_vma_locked(struct drm_gem_object *obj,
struct msm_gem_address_space *aspace);
int msm_gem_get_iova(struct drm_gem_object *obj,
diff --git a/drivers/gpu/drm/msm/msm_gem_shrinker.c b/drivers/gpu/drm/msm/msm_gem_shrinker.c
index 1de14e67f96b..f38296ad8743 100644
--- a/drivers/gpu/drm/msm/msm_gem_shrinker.c
+++ b/drivers/gpu/drm/msm/msm_gem_shrinker.c
@@ -15,7 +15,7 @@
/* Default disabled for now until it has some more testing on the different
* iommu combinations that can be paired with the driver:
*/
-static bool enable_eviction = false;
+static bool enable_eviction = true;
MODULE_PARM_DESC(enable_eviction, "Enable swappable GEM buffers");
module_param(enable_eviction, bool, 0600);
@@ -107,6 +107,7 @@ msm_gem_shrinker_scan(struct shrinker *shrinker, struct shrink_control *sc)
bool (*shrink)(struct drm_gem_object *obj);
bool cond;
unsigned long freed;
+ unsigned long remaining;
} stages[] = {
/* Stages of progressively more aggressive/expensive reclaim: */
{ &priv->lru.dontneed, purge, true },
@@ -116,14 +117,18 @@ msm_gem_shrinker_scan(struct shrinker *shrinker, struct shrink_control *sc)
};
long nr = sc->nr_to_scan;
unsigned long freed = 0;
+ unsigned long remaining = 0;
for (unsigned i = 0; (nr > 0) && (i < ARRAY_SIZE(stages)); i++) {
if (!stages[i].cond)
continue;
stages[i].freed =
- drm_gem_lru_scan(stages[i].lru, nr, stages[i].shrink);
+ drm_gem_lru_scan(stages[i].lru, nr,
+ &stages[i].remaining,
+ stages[i].shrink);
nr -= stages[i].freed;
freed += stages[i].freed;
+ remaining += stages[i].remaining;
}
if (freed) {
@@ -132,7 +137,7 @@ msm_gem_shrinker_scan(struct shrinker *shrinker, struct shrink_control *sc)
stages[3].freed);
}
- return (freed > 0) ? freed : SHRINK_STOP;
+ return (freed > 0 && remaining > 0) ? freed : SHRINK_STOP;
}
#ifdef CONFIG_DEBUG_FS
@@ -182,10 +187,12 @@ msm_gem_shrinker_vmap(struct notifier_block *nb, unsigned long event, void *ptr)
NULL,
};
unsigned idx, unmapped = 0;
+ unsigned long remaining = 0;
for (idx = 0; lrus[idx] && unmapped < vmap_shrink_limit; idx++) {
unmapped += drm_gem_lru_scan(lrus[idx],
vmap_shrink_limit - unmapped,
+ &remaining,
vmap_shrink);
}
diff --git a/drivers/gpu/drm/msm/msm_gem_submit.c b/drivers/gpu/drm/msm/msm_gem_submit.c
index 45a3e5cadc7d..aff18c2f600a 100644
--- a/drivers/gpu/drm/msm/msm_gem_submit.c
+++ b/drivers/gpu/drm/msm/msm_gem_submit.c
@@ -41,8 +41,16 @@ static struct msm_gem_submit *submit_create(struct drm_device *dev,
if (!submit)
return ERR_PTR(-ENOMEM);
+ submit->hw_fence = msm_fence_alloc();
+ if (IS_ERR(submit->hw_fence)) {
+ ret = PTR_ERR(submit->hw_fence);
+ kfree(submit);
+ return ERR_PTR(ret);
+ }
+
ret = drm_sched_job_init(&submit->base, queue->entity, queue);
if (ret) {
+ kfree(submit->hw_fence);
kfree(submit);
return ERR_PTR(ret);
}
@@ -72,9 +80,9 @@ void __msm_gem_submit_destroy(struct kref *kref)
unsigned i;
if (submit->fence_id) {
- mutex_lock(&submit->queue->idr_lock);
+ spin_lock(&submit->queue->idr_lock);
idr_remove(&submit->queue->fence_idr, submit->fence_id);
- mutex_unlock(&submit->queue->idr_lock);
+ spin_unlock(&submit->queue->idr_lock);
}
dma_fence_put(submit->user_fence);
@@ -209,6 +217,10 @@ static int submit_lookup_cmds(struct msm_gem_submit *submit,
goto out;
}
submit->cmd[i].relocs = kmalloc(sz, GFP_KERNEL);
+ if (!submit->cmd[i].relocs) {
+ ret = -ENOMEM;
+ goto out;
+ }
ret = copy_from_user(submit->cmd[i].relocs, userptr, sz);
if (ret) {
ret = -EFAULT;
@@ -238,7 +250,7 @@ static void submit_cleanup_bo(struct msm_gem_submit *submit, int i,
submit->bos[i].flags &= ~cleanup_flags;
if (flags & BO_VMA_PINNED)
- msm_gem_unpin_vma(submit->bos[i].vma);
+ msm_gem_vma_unpin(submit->bos[i].vma);
if (flags & BO_OBJ_PINNED)
msm_gem_unpin_locked(obj);
@@ -334,8 +346,18 @@ static int submit_fence_sync(struct msm_gem_submit *submit, bool no_implicit)
if (ret)
return ret;
- /* exclusive fences must be ordered */
- if (no_implicit && !write)
+ /* If userspace has determined that explicit fencing is
+ * used, it can disable implicit sync on the entire
+ * submit:
+ */
+ if (no_implicit)
+ continue;
+
+ /* Otherwise userspace can ask for implicit sync to be
+ * disabled on specific buffers. This is useful for internal
+ * usermode driver managed buffers, suballocation, etc.
+ */
+ if (submit->bos[i].flags & MSM_SUBMIT_BO_NO_IMPLICIT)
continue;
ret = drm_sched_job_add_implicit_dependencies(&submit->base,
@@ -551,7 +573,6 @@ static struct drm_syncobj **msm_parse_deps(struct msm_gem_submit *submit,
for (i = 0; i < nr_in_syncobjs; ++i) {
uint64_t address = in_syncobjs_addr + i * syncobj_stride;
- struct dma_fence *fence;
if (copy_from_user(&syncobj_desc,
u64_to_user_ptr(address),
@@ -571,12 +592,8 @@ static struct drm_syncobj **msm_parse_deps(struct msm_gem_submit *submit,
break;
}
- ret = drm_syncobj_find_fence(file, syncobj_desc.handle,
- syncobj_desc.point, 0, &fence);
- if (ret)
- break;
-
- ret = drm_sched_job_add_dependency(&submit->base, fence);
+ ret = drm_sched_job_add_syncobj_dependency(&submit->base, file,
+ syncobj_desc.handle, syncobj_desc.point);
if (ret)
break;
@@ -623,8 +640,8 @@ static struct msm_submit_post_dep *msm_parse_post_deps(struct drm_device *dev,
int ret = 0;
uint32_t i, j;
- post_deps = kmalloc_array(nr_syncobjs, sizeof(*post_deps),
- GFP_KERNEL | __GFP_NOWARN | __GFP_NORETRY);
+ post_deps = kcalloc(nr_syncobjs, sizeof(*post_deps),
+ GFP_KERNEL | __GFP_NOWARN | __GFP_NORETRY);
if (!post_deps)
return ERR_PTR(-ENOMEM);
@@ -639,7 +656,6 @@ static struct msm_submit_post_dep *msm_parse_post_deps(struct drm_device *dev,
}
post_deps[i].point = syncobj_desc.point;
- post_deps[i].chain = NULL;
if (syncobj_desc.flags) {
ret = -EINVAL;
@@ -861,7 +877,9 @@ int msm_ioctl_gem_submit(struct drm_device *dev, void *data,
submit->nr_cmds = i;
- mutex_lock(&queue->idr_lock);
+ idr_preload(GFP_KERNEL);
+
+ spin_lock(&queue->idr_lock);
/*
* If using userspace provided seqno fence, validate that the id
@@ -871,7 +889,8 @@ int msm_ioctl_gem_submit(struct drm_device *dev, void *data,
*/
if ((args->flags & MSM_SUBMIT_FENCE_SN_IN) &&
idr_find(&queue->fence_idr, args->fence)) {
- mutex_unlock(&queue->idr_lock);
+ spin_unlock(&queue->idr_lock);
+ idr_preload_end();
ret = -EINVAL;
goto out;
}
@@ -889,7 +908,7 @@ int msm_ioctl_gem_submit(struct drm_device *dev, void *data,
submit->fence_id = args->fence;
ret = idr_alloc_u32(&queue->fence_idr, submit->user_fence,
&submit->fence_id, submit->fence_id,
- GFP_KERNEL);
+ GFP_NOWAIT);
/*
* We've already validated that the fence_id slot is valid,
* so if idr_alloc_u32 failed, it is a kernel bug
@@ -902,10 +921,11 @@ int msm_ioctl_gem_submit(struct drm_device *dev, void *data,
*/
submit->fence_id = idr_alloc_cyclic(&queue->fence_idr,
submit->user_fence, 1,
- INT_MAX, GFP_KERNEL);
+ INT_MAX, GFP_NOWAIT);
}
- mutex_unlock(&queue->idr_lock);
+ spin_unlock(&queue->idr_lock);
+ idr_preload_end();
if (submit->fence_id < 0) {
ret = submit->fence_id;
diff --git a/drivers/gpu/drm/msm/msm_gem_vma.c b/drivers/gpu/drm/msm/msm_gem_vma.c
index c471aebcdbab..98287ed99960 100644
--- a/drivers/gpu/drm/msm/msm_gem_vma.c
+++ b/drivers/gpu/drm/msm/msm_gem_vma.c
@@ -40,25 +40,34 @@ msm_gem_address_space_get(struct msm_gem_address_space *aspace)
bool msm_gem_vma_inuse(struct msm_gem_vma *vma)
{
+ bool ret = true;
+
+ spin_lock(&vma->lock);
+
if (vma->inuse > 0)
- return true;
+ goto out;
while (vma->fence_mask) {
unsigned idx = ffs(vma->fence_mask) - 1;
if (!msm_fence_completed(vma->fctx[idx], vma->fence[idx]))
- return true;
+ goto out;
vma->fence_mask &= ~BIT(idx);
}
- return false;
+ ret = false;
+
+out:
+ spin_unlock(&vma->lock);
+
+ return ret;
}
/* Actually unmap memory for the vma */
-void msm_gem_purge_vma(struct msm_gem_address_space *aspace,
- struct msm_gem_vma *vma)
+void msm_gem_vma_purge(struct msm_gem_vma *vma)
{
+ struct msm_gem_address_space *aspace = vma->aspace;
unsigned size = vma->node.size;
/* Print a message if we try to purge a vma in use */
@@ -68,14 +77,12 @@ void msm_gem_purge_vma(struct msm_gem_address_space *aspace,
if (!vma->mapped)
return;
- if (aspace->mmu)
- aspace->mmu->funcs->unmap(aspace->mmu, vma->iova, size);
+ aspace->mmu->funcs->unmap(aspace->mmu, vma->iova, size);
vma->mapped = false;
}
-/* Remove reference counts for the mapping */
-void msm_gem_unpin_vma(struct msm_gem_vma *vma)
+static void vma_unpin_locked(struct msm_gem_vma *vma)
{
if (GEM_WARN_ON(!vma->inuse))
return;
@@ -83,50 +90,75 @@ void msm_gem_unpin_vma(struct msm_gem_vma *vma)
vma->inuse--;
}
+/* Remove reference counts for the mapping */
+void msm_gem_vma_unpin(struct msm_gem_vma *vma)
+{
+ spin_lock(&vma->lock);
+ vma_unpin_locked(vma);
+ spin_unlock(&vma->lock);
+}
+
/* Replace pin reference with fence: */
-void msm_gem_unpin_vma_fenced(struct msm_gem_vma *vma, struct msm_fence_context *fctx)
+void msm_gem_vma_unpin_fenced(struct msm_gem_vma *vma, struct msm_fence_context *fctx)
{
+ spin_lock(&vma->lock);
vma->fctx[fctx->index] = fctx;
vma->fence[fctx->index] = fctx->last_fence;
vma->fence_mask |= BIT(fctx->index);
- msm_gem_unpin_vma(vma);
+ vma_unpin_locked(vma);
+ spin_unlock(&vma->lock);
}
/* Map and pin vma: */
int
-msm_gem_map_vma(struct msm_gem_address_space *aspace,
- struct msm_gem_vma *vma, int prot,
+msm_gem_vma_map(struct msm_gem_vma *vma, int prot,
struct sg_table *sgt, int size)
{
- int ret = 0;
+ struct msm_gem_address_space *aspace = vma->aspace;
+ int ret;
if (GEM_WARN_ON(!vma->iova))
return -EINVAL;
/* Increase the usage counter */
+ spin_lock(&vma->lock);
vma->inuse++;
+ spin_unlock(&vma->lock);
if (vma->mapped)
return 0;
vma->mapped = true;
- if (aspace && aspace->mmu)
- ret = aspace->mmu->funcs->map(aspace->mmu, vma->iova, sgt,
- size, prot);
+ if (!aspace)
+ return 0;
+
+ /*
+ * NOTE: iommu/io-pgtable can allocate pages, so we cannot hold
+ * a lock across map/unmap which is also used in the job_run()
+ * path, as this can cause deadlock in job_run() vs shrinker/
+ * reclaim.
+ *
+ * Revisit this if we can come up with a scheme to pre-alloc pages
+ * for the pgtable in map/unmap ops.
+ */
+ ret = aspace->mmu->funcs->map(aspace->mmu, vma->iova, sgt, size, prot);
if (ret) {
vma->mapped = false;
+ spin_lock(&vma->lock);
vma->inuse--;
+ spin_unlock(&vma->lock);
}
return ret;
}
/* Close an iova. Warn if it is still in use */
-void msm_gem_close_vma(struct msm_gem_address_space *aspace,
- struct msm_gem_vma *vma)
+void msm_gem_vma_close(struct msm_gem_vma *vma)
{
+ struct msm_gem_address_space *aspace = vma->aspace;
+
GEM_WARN_ON(msm_gem_vma_inuse(vma) || vma->mapped);
spin_lock(&aspace->lock);
@@ -139,13 +171,30 @@ void msm_gem_close_vma(struct msm_gem_address_space *aspace,
msm_gem_address_space_put(aspace);
}
+struct msm_gem_vma *msm_gem_vma_new(struct msm_gem_address_space *aspace)
+{
+ struct msm_gem_vma *vma;
+
+ vma = kzalloc(sizeof(*vma), GFP_KERNEL);
+ if (!vma)
+ return NULL;
+
+ spin_lock_init(&vma->lock);
+ vma->aspace = aspace;
+
+ return vma;
+}
+
/* Initialize a new vma and allocate an iova for it */
-int msm_gem_init_vma(struct msm_gem_address_space *aspace,
- struct msm_gem_vma *vma, int size,
+int msm_gem_vma_init(struct msm_gem_vma *vma, int size,
u64 range_start, u64 range_end)
{
+ struct msm_gem_address_space *aspace = vma->aspace;
int ret;
+ if (GEM_WARN_ON(!aspace))
+ return -EINVAL;
+
if (GEM_WARN_ON(vma->iova))
return -EBUSY;
diff --git a/drivers/gpu/drm/msm/msm_gpu.c b/drivers/gpu/drm/msm/msm_gpu.c
index 021f4e29b613..26ebda40be4f 100644
--- a/drivers/gpu/drm/msm/msm_gpu.c
+++ b/drivers/gpu/drm/msm/msm_gpu.c
@@ -16,7 +16,6 @@
#include <generated/utsrelease.h>
#include <linux/string_helpers.h>
#include <linux/devcoredump.h>
-#include <linux/reset.h>
#include <linux/sched/task.h>
/*
@@ -59,7 +58,7 @@ static int disable_pwrrail(struct msm_gpu *gpu)
static int enable_clk(struct msm_gpu *gpu)
{
if (gpu->core_clk && gpu->fast_rate)
- clk_set_rate(gpu->core_clk, gpu->fast_rate);
+ dev_pm_opp_set_rate(&gpu->pdev->dev, gpu->fast_rate);
/* Set the RBBM timer rate to 19.2Mhz */
if (gpu->rbbmtimer_clk)
@@ -78,7 +77,7 @@ static int disable_clk(struct msm_gpu *gpu)
* will be rounded down to zero anyway so it all works out.
*/
if (gpu->core_clk)
- clk_set_rate(gpu->core_clk, 27000000);
+ dev_pm_opp_set_rate(&gpu->pdev->dev, 27000000);
if (gpu->rbbmtimer_clk)
clk_set_rate(gpu->rbbmtimer_clk, 0);
@@ -335,6 +334,8 @@ static void get_comm_cmdline(struct msm_gem_submit *submit, char **comm, char **
struct msm_file_private *ctx = submit->queue->ctx;
struct task_struct *task;
+ WARN_ON(!mutex_is_locked(&submit->gpu->lock));
+
/* Note that kstrdup will return NULL if argument is NULL: */
*comm = kstrdup(ctx->comm, GFP_KERNEL);
*cmd = kstrdup(ctx->cmdline, GFP_KERNEL);
@@ -492,6 +493,21 @@ static void hangcheck_timer_reset(struct msm_gpu *gpu)
round_jiffies_up(jiffies + msecs_to_jiffies(priv->hangcheck_period)));
}
+static bool made_progress(struct msm_gpu *gpu, struct msm_ringbuffer *ring)
+{
+ if (ring->hangcheck_progress_retries >= DRM_MSM_HANGCHECK_PROGRESS_RETRIES)
+ return false;
+
+ if (!gpu->funcs->progress)
+ return false;
+
+ if (!gpu->funcs->progress(gpu, ring))
+ return false;
+
+ ring->hangcheck_progress_retries++;
+ return true;
+}
+
static void hangcheck_handler(struct timer_list *t)
{
struct msm_gpu *gpu = from_timer(gpu, t, hangcheck_timer);
@@ -502,9 +518,12 @@ static void hangcheck_handler(struct timer_list *t)
if (fence != ring->hangcheck_fence) {
/* some progress has been made.. ya! */
ring->hangcheck_fence = fence;
- } else if (fence_before(fence, ring->fctx->last_fence)) {
+ ring->hangcheck_progress_retries = 0;
+ } else if (fence_before(fence, ring->fctx->last_fence) &&
+ !made_progress(gpu, ring)) {
/* no progress and not done.. hung! */
ring->hangcheck_fence = fence;
+ ring->hangcheck_progress_retries = 0;
DRM_DEV_ERROR(dev->dev, "%s: hangcheck detected gpu lockup rb %d!\n",
gpu->name, ring->id);
DRM_DEV_ERROR(dev->dev, "%s: completed fence: %u\n",
@@ -830,6 +849,7 @@ int msm_gpu_init(struct drm_device *drm, struct platform_device *pdev,
struct msm_gpu *gpu, const struct msm_gpu_funcs *funcs,
const char *name, struct msm_gpu_config *config)
{
+ struct msm_drm_private *priv = drm->dev_private;
int i, ret, nr_rings = config->nr_rings;
void *memptrs;
uint64_t memptrs_iova;
@@ -857,6 +877,16 @@ int msm_gpu_init(struct drm_device *drm, struct platform_device *pdev,
kthread_init_work(&gpu->recover_work, recover_worker);
kthread_init_work(&gpu->fault_work, fault_worker);
+ priv->hangcheck_period = DRM_MSM_HANGCHECK_DEFAULT_PERIOD;
+
+ /*
+ * If progress detection is supported, halve the hangcheck timer
+ * duration, as it takes two iterations of the hangcheck handler
+ * to detect a hang.
+ */
+ if (funcs->progress)
+ priv->hangcheck_period /= 2;
+
timer_setup(&gpu->hangcheck_timer, hangcheck_handler, 0);
spin_lock_init(&gpu->perf_lock);
@@ -904,9 +934,6 @@ int msm_gpu_init(struct drm_device *drm, struct platform_device *pdev,
if (IS_ERR(gpu->gpu_cx))
gpu->gpu_cx = NULL;
- gpu->cx_collapse = devm_reset_control_get_optional_exclusive(&pdev->dev,
- "cx_collapse");
-
gpu->pdev = pdev;
platform_set_drvdata(pdev, &gpu->adreno_smmu);
diff --git a/drivers/gpu/drm/msm/msm_gpu.h b/drivers/gpu/drm/msm/msm_gpu.h
index 58a72e6b1400..7a4fa1b8655b 100644
--- a/drivers/gpu/drm/msm/msm_gpu.h
+++ b/drivers/gpu/drm/msm/msm_gpu.h
@@ -13,7 +13,6 @@
#include <linux/interconnect.h>
#include <linux/pm_opp.h>
#include <linux/regulator/consumer.h>
-#include <linux/reset.h>
#include "msm_drv.h"
#include "msm_fence.h"
@@ -50,6 +49,12 @@ struct msm_gpu_funcs {
int (*set_param)(struct msm_gpu *gpu, struct msm_file_private *ctx,
uint32_t param, uint64_t value, uint32_t len);
int (*hw_init)(struct msm_gpu *gpu);
+
+ /**
+ * @ucode_load: Optional hook to upload fw to GEM objs
+ */
+ int (*ucode_load)(struct msm_gpu *gpu);
+
int (*pm_suspend)(struct msm_gpu *gpu);
int (*pm_resume)(struct msm_gpu *gpu);
void (*submit)(struct msm_gpu *gpu, struct msm_gem_submit *submit);
@@ -78,6 +83,15 @@ struct msm_gpu_funcs {
struct msm_gem_address_space *(*create_private_address_space)
(struct msm_gpu *gpu);
uint32_t (*get_rptr)(struct msm_gpu *gpu, struct msm_ringbuffer *ring);
+
+ /**
+ * progress: Has the GPU made progress?
+ *
+ * Return true if GPU position in cmdstream has advanced (or changed)
+ * since the last call. To avoid false negatives, this should account
+ * for cmdstream that is buffered in this FIFO upstream of the CP fw.
+ */
+ bool (*progress)(struct msm_gpu *gpu, struct msm_ringbuffer *ring);
};
/* Additional state for iommu faults: */
@@ -100,11 +114,15 @@ struct msm_gpu_devfreq {
struct mutex lock;
/**
- * idle_constraint:
+ * idle_freq:
*
- * A PM QoS constraint to limit max freq while the GPU is idle.
+ * Shadow frequency used while the GPU is idle. From the PoV of
+ * the devfreq governor, we are continuing to sample busyness and
+ * adjust frequency while the GPU is idle, but we use this shadow
+ * value as the GPU is actually clamped to minimum frequency while
+ * it is inactive.
*/
- struct dev_pm_qos_request idle_freq;
+ unsigned long idle_freq;
/**
* boost_constraint:
@@ -126,8 +144,6 @@ struct msm_gpu_devfreq {
/** idle_time: Time of last transition to idle: */
ktime_t idle_time;
- struct devfreq_dev_status average_status;
-
/**
* idle_work:
*
@@ -237,6 +253,7 @@ struct msm_gpu {
#define DRM_MSM_INACTIVE_PERIOD 66 /* in ms (roughly four frames) */
#define DRM_MSM_HANGCHECK_DEFAULT_PERIOD 500 /* in ms */
+#define DRM_MSM_HANGCHECK_PROGRESS_RETRIES 3
struct timer_list hangcheck_timer;
/* Fault info for most recent iova fault: */
@@ -265,16 +282,10 @@ struct msm_gpu {
struct msm_gpu_state *crashstate;
- /* Enable clamping to idle freq when inactive: */
- bool clamp_to_idle;
-
/* True if the hardware supports expanded apriv (a650 and newer) */
bool hw_apriv;
struct thermal_cooling_device *cooling;
-
- /* To poll for cx gdsc collapse during gpu recovery */
- struct reset_control *cx_collapse;
};
static inline struct msm_gpu *dev_to_gpu(struct device *dev)
@@ -366,10 +377,18 @@ struct msm_file_private {
*/
int sysprof;
- /** comm: Overridden task comm, see MSM_PARAM_COMM */
+ /**
+ * comm: Overridden task comm, see MSM_PARAM_COMM
+ *
+ * Accessed under msm_gpu::lock
+ */
char *comm;
- /** cmdline: Overridden task cmdline, see MSM_PARAM_CMDLINE */
+ /**
+ * cmdline: Overridden task cmdline, see MSM_PARAM_CMDLINE
+ *
+ * Accessed under msm_gpu::lock
+ */
char *cmdline;
/**
@@ -482,7 +501,7 @@ struct msm_gpu_submitqueue {
struct msm_file_private *ctx;
struct list_head node;
struct idr fence_idr;
- struct mutex idr_lock;
+ struct spinlock idr_lock;
struct mutex lock;
struct kref ref;
struct drm_sched_entity *entity;
@@ -540,7 +559,7 @@ static inline void gpu_rmw(struct msm_gpu *gpu, u32 reg, u32 mask, u32 or)
msm_rmw(gpu->mmio + (reg << 2), mask, or);
}
-static inline u64 gpu_read64(struct msm_gpu *gpu, u32 lo, u32 hi)
+static inline u64 gpu_read64(struct msm_gpu *gpu, u32 reg)
{
u64 val;
@@ -558,17 +577,17 @@ static inline u64 gpu_read64(struct msm_gpu *gpu, u32 lo, u32 hi)
* when the lo is read, so make sure to read the lo first to trigger
* that
*/
- val = (u64) msm_readl(gpu->mmio + (lo << 2));
- val |= ((u64) msm_readl(gpu->mmio + (hi << 2)) << 32);
+ val = (u64) msm_readl(gpu->mmio + (reg << 2));
+ val |= ((u64) msm_readl(gpu->mmio + ((reg + 1) << 2)) << 32);
return val;
}
-static inline void gpu_write64(struct msm_gpu *gpu, u32 lo, u32 hi, u64 val)
+static inline void gpu_write64(struct msm_gpu *gpu, u32 reg, u64 val)
{
/* Why not a writeq here? Read the screed above */
- msm_writel(lower_32_bits(val), gpu->mmio + (lo << 2));
- msm_writel(upper_32_bits(val), gpu->mmio + (hi << 2));
+ msm_writel(lower_32_bits(val), gpu->mmio + (reg << 2));
+ msm_writel(upper_32_bits(val), gpu->mmio + ((reg + 1) << 2));
}
int msm_gpu_pm_suspend(struct msm_gpu *gpu);
diff --git a/drivers/gpu/drm/msm/msm_gpu_devfreq.c b/drivers/gpu/drm/msm/msm_gpu_devfreq.c
index 85c443a37e4e..ea70c1c32d94 100644
--- a/drivers/gpu/drm/msm/msm_gpu_devfreq.c
+++ b/drivers/gpu/drm/msm/msm_gpu_devfreq.c
@@ -33,12 +33,22 @@ static int msm_devfreq_target(struct device *dev, unsigned long *freq,
trace_msm_gpu_freq_change(dev_pm_opp_get_freq(opp));
+ /*
+ * If the GPU is idle, devfreq is not aware, so just stash
+ * the new target freq (to use when we return to active)
+ */
+ if (df->idle_freq) {
+ df->idle_freq = *freq;
+ dev_pm_opp_put(opp);
+ return 0;
+ }
+
if (gpu->funcs->gpu_set_freq) {
mutex_lock(&df->lock);
gpu->funcs->gpu_set_freq(gpu, opp, df->suspended);
mutex_unlock(&df->lock);
} else {
- clk_set_rate(gpu->core_clk, *freq);
+ dev_pm_opp_set_rate(dev, *freq);
}
dev_pm_opp_put(opp);
@@ -48,15 +58,26 @@ static int msm_devfreq_target(struct device *dev, unsigned long *freq,
static unsigned long get_freq(struct msm_gpu *gpu)
{
+ struct msm_gpu_devfreq *df = &gpu->devfreq;
+
+ /*
+ * If the GPU is idle, use the shadow/saved freq to avoid
+ * confusing devfreq (which is unaware that we are switching
+ * to lowest freq until the device is active again)
+ */
+ if (df->idle_freq)
+ return df->idle_freq;
+
if (gpu->funcs->gpu_get_freq)
return gpu->funcs->gpu_get_freq(gpu);
return clk_get_rate(gpu->core_clk);
}
-static void get_raw_dev_status(struct msm_gpu *gpu,
+static int msm_devfreq_get_dev_status(struct device *dev,
struct devfreq_dev_status *status)
{
+ struct msm_gpu *gpu = dev_to_gpu(dev);
struct msm_gpu_devfreq *df = &gpu->devfreq;
u64 busy_cycles, busy_time;
unsigned long sample_rate;
@@ -72,7 +93,7 @@ static void get_raw_dev_status(struct msm_gpu *gpu,
if (df->suspended) {
mutex_unlock(&df->lock);
status->busy_time = 0;
- return;
+ return 0;
}
busy_cycles = gpu->funcs->gpu_busy(gpu, &sample_rate);
@@ -87,71 +108,6 @@ static void get_raw_dev_status(struct msm_gpu *gpu,
busy_time = ~0LU;
status->busy_time = busy_time;
-}
-
-static void update_average_dev_status(struct msm_gpu *gpu,
- const struct devfreq_dev_status *raw)
-{
- struct msm_gpu_devfreq *df = &gpu->devfreq;
- const u32 polling_ms = df->devfreq->profile->polling_ms;
- const u32 max_history_ms = polling_ms * 11 / 10;
- struct devfreq_dev_status *avg = &df->average_status;
- u64 avg_freq;
-
- /* simple_ondemand governor interacts poorly with gpu->clamp_to_idle.
- * When we enforce the constraint on idle, it calls get_dev_status
- * which would normally reset the stats. When we remove the
- * constraint on active, it calls get_dev_status again where busy_time
- * would be 0.
- *
- * To remedy this, we always return the average load over the past
- * polling_ms.
- */
-
- /* raw is longer than polling_ms or avg has no history */
- if (div_u64(raw->total_time, USEC_PER_MSEC) >= polling_ms ||
- !avg->total_time) {
- *avg = *raw;
- return;
- }
-
- /* Truncate the oldest history first.
- *
- * Because we keep the history with a single devfreq_dev_status,
- * rather than a list of devfreq_dev_status, we have to assume freq
- * and load are the same over avg->total_time. We can scale down
- * avg->busy_time and avg->total_time by the same factor to drop
- * history.
- */
- if (div_u64(avg->total_time + raw->total_time, USEC_PER_MSEC) >=
- max_history_ms) {
- const u32 new_total_time = polling_ms * USEC_PER_MSEC -
- raw->total_time;
- avg->busy_time = div_u64(
- mul_u32_u32(avg->busy_time, new_total_time),
- avg->total_time);
- avg->total_time = new_total_time;
- }
-
- /* compute the average freq over avg->total_time + raw->total_time */
- avg_freq = mul_u32_u32(avg->current_frequency, avg->total_time);
- avg_freq += mul_u32_u32(raw->current_frequency, raw->total_time);
- do_div(avg_freq, avg->total_time + raw->total_time);
-
- avg->current_frequency = avg_freq;
- avg->busy_time += raw->busy_time;
- avg->total_time += raw->total_time;
-}
-
-static int msm_devfreq_get_dev_status(struct device *dev,
- struct devfreq_dev_status *status)
-{
- struct msm_gpu *gpu = dev_to_gpu(dev);
- struct devfreq_dev_status raw;
-
- get_raw_dev_status(gpu, &raw);
- update_average_dev_status(gpu, &raw);
- *status = gpu->devfreq.average_status;
return 0;
}
@@ -183,16 +139,23 @@ static bool has_devfreq(struct msm_gpu *gpu)
void msm_devfreq_init(struct msm_gpu *gpu)
{
struct msm_gpu_devfreq *df = &gpu->devfreq;
+ struct msm_drm_private *priv = gpu->dev->dev_private;
/* We need target support to do devfreq */
if (!gpu->funcs->gpu_busy)
return;
+ /*
+ * Setup default values for simple_ondemand governor tuning. We
+ * want to throttle up at 50% load for the double-buffer case,
+ * where due to stalling waiting for vblank we could get stuck
+ * at (for ex) 30fps at 50% utilization.
+ */
+ priv->gpu_devfreq_config.upthreshold = 50;
+ priv->gpu_devfreq_config.downdifferential = 10;
+
mutex_init(&df->lock);
- dev_pm_qos_add_request(&gpu->pdev->dev, &df->idle_freq,
- DEV_PM_QOS_MAX_FREQUENCY,
- PM_QOS_MAX_FREQUENCY_DEFAULT_VALUE);
dev_pm_qos_add_request(&gpu->pdev->dev, &df->boost_freq,
DEV_PM_QOS_MIN_FREQUENCY, 0);
@@ -209,11 +172,10 @@ void msm_devfreq_init(struct msm_gpu *gpu)
df->devfreq = devm_devfreq_add_device(&gpu->pdev->dev,
&msm_devfreq_profile, DEVFREQ_GOV_SIMPLE_ONDEMAND,
- NULL);
+ &priv->gpu_devfreq_config);
if (IS_ERR(df->devfreq)) {
DRM_DEV_ERROR(&gpu->pdev->dev, "Couldn't initialize GPU devfreq\n");
- dev_pm_qos_remove_request(&df->idle_freq);
dev_pm_qos_remove_request(&df->boost_freq);
df->devfreq = NULL;
return;
@@ -255,7 +217,6 @@ void msm_devfreq_cleanup(struct msm_gpu *gpu)
devfreq_cooling_unregister(gpu->cooling);
dev_pm_qos_remove_request(&df->boost_freq);
- dev_pm_qos_remove_request(&df->idle_freq);
}
void msm_devfreq_resume(struct msm_gpu *gpu)
@@ -328,6 +289,7 @@ void msm_devfreq_active(struct msm_gpu *gpu)
{
struct msm_gpu_devfreq *df = &gpu->devfreq;
unsigned int idle_time;
+ unsigned long target_freq;
if (!has_devfreq(gpu))
return;
@@ -337,8 +299,28 @@ void msm_devfreq_active(struct msm_gpu *gpu)
*/
cancel_idle_work(df);
+ /*
+ * Hold devfreq lock to synchronize with get_dev_status()/
+ * target() callbacks
+ */
+ mutex_lock(&df->devfreq->lock);
+
+ target_freq = df->idle_freq;
+
idle_time = ktime_to_ms(ktime_sub(ktime_get(), df->idle_time));
+ df->idle_freq = 0;
+
+ /*
+ * We could have become active again before the idle work had a
+ * chance to run, in which case the df->idle_freq would have
+ * still been zero. In this case, no need to change freq.
+ */
+ if (target_freq)
+ msm_devfreq_target(&gpu->pdev->dev, &target_freq, 0);
+
+ mutex_unlock(&df->devfreq->lock);
+
/*
* If we've been idle for a significant fraction of a polling
* interval, then we won't meet the threshold of busyness for
@@ -347,9 +329,6 @@ void msm_devfreq_active(struct msm_gpu *gpu)
if (idle_time > msm_devfreq_profile.polling_ms) {
msm_devfreq_boost(gpu, 2);
}
-
- dev_pm_qos_update_request(&df->idle_freq,
- PM_QOS_MAX_FREQUENCY_DEFAULT_VALUE);
}
@@ -358,11 +337,24 @@ static void msm_devfreq_idle_work(struct kthread_work *work)
struct msm_gpu_devfreq *df = container_of(work,
struct msm_gpu_devfreq, idle_work.work);
struct msm_gpu *gpu = container_of(df, struct msm_gpu, devfreq);
+ struct msm_drm_private *priv = gpu->dev->dev_private;
+ unsigned long idle_freq, target_freq = 0;
+
+ /*
+ * Hold devfreq lock to synchronize with get_dev_status()/
+ * target() callbacks
+ */
+ mutex_lock(&df->devfreq->lock);
+
+ idle_freq = get_freq(gpu);
+
+ if (priv->gpu_clamp_to_idle)
+ msm_devfreq_target(&gpu->pdev->dev, &target_freq, 0);
df->idle_time = ktime_get();
+ df->idle_freq = idle_freq;
- if (gpu->clamp_to_idle)
- dev_pm_qos_update_request(&df->idle_freq, 0);
+ mutex_unlock(&df->devfreq->lock);
}
void msm_devfreq_idle(struct msm_gpu *gpu)
diff --git a/drivers/gpu/drm/msm/msm_io_utils.c b/drivers/gpu/drm/msm/msm_io_utils.c
index d02cd29ce829..59d2788c4510 100644
--- a/drivers/gpu/drm/msm/msm_io_utils.c
+++ b/drivers/gpu/drm/msm/msm_io_utils.c
@@ -6,6 +6,7 @@
*/
#include <linux/interconnect.h>
+#include <linux/io.h>
#include "msm_drv.h"
diff --git a/drivers/gpu/drm/msm/msm_iommu.c b/drivers/gpu/drm/msm/msm_iommu.c
index 5577cea7c009..418e1e06cdde 100644
--- a/drivers/gpu/drm/msm/msm_iommu.c
+++ b/drivers/gpu/drm/msm/msm_iommu.c
@@ -186,6 +186,13 @@ int msm_iommu_pagetable_params(struct msm_mmu *mmu,
return 0;
}
+struct iommu_domain_geometry *msm_iommu_get_geometry(struct msm_mmu *mmu)
+{
+ struct msm_iommu *iommu = to_msm_iommu(mmu);
+
+ return &iommu->domain->geometry;
+}
+
static const struct msm_mmu_funcs pagetable_funcs = {
.map = msm_iommu_pagetable_map,
.unmap = msm_iommu_pagetable_unmap,
@@ -230,13 +237,6 @@ struct msm_mmu *msm_iommu_pagetable_create(struct msm_mmu *parent)
if (!ttbr1_cfg)
return ERR_PTR(-ENODEV);
- /*
- * Defer setting the fault handler until we have a valid adreno_smmu
- * to avoid accidentially installing a GPU specific fault handler for
- * the display's iommu
- */
- iommu_set_fault_handler(iommu->domain, msm_fault_handler, iommu);
-
pagetable = kzalloc(sizeof(*pagetable), GFP_KERNEL);
if (!pagetable)
return ERR_PTR(-ENOMEM);
@@ -264,9 +264,6 @@ struct msm_mmu *msm_iommu_pagetable_create(struct msm_mmu *parent)
* the arm-smmu driver as a trigger to set up TTBR0
*/
if (atomic_inc_return(&iommu->pagetables) == 1) {
- /* Enable stall on iommu fault: */
- adreno_smmu->set_stall(adreno_smmu->cookie, true);
-
ret = adreno_smmu->set_ttbr0_cfg(adreno_smmu->cookie, &ttbr0_cfg);
if (ret) {
free_io_pgtable_ops(pagetable->pgtbl_ops);
@@ -295,6 +292,7 @@ static int msm_fault_handler(struct iommu_domain *domain, struct device *dev,
unsigned long iova, int flags, void *arg)
{
struct msm_iommu *iommu = arg;
+ struct msm_mmu *mmu = &iommu->base;
struct adreno_smmu_priv *adreno_smmu = dev_get_drvdata(iommu->base.dev);
struct adreno_smmu_fault_info info, *ptr = NULL;
@@ -307,6 +305,10 @@ static int msm_fault_handler(struct iommu_domain *domain, struct device *dev,
return iommu->base.handler(iommu->base.arg, iova, flags, ptr);
pr_warn_ratelimited("*** fault: iova=%16lx, flags=%d\n", iova, flags);
+
+ if (mmu->funcs->resume_translation)
+ mmu->funcs->resume_translation(mmu);
+
return 0;
}
@@ -314,7 +316,8 @@ static void msm_iommu_resume_translation(struct msm_mmu *mmu)
{
struct adreno_smmu_priv *adreno_smmu = dev_get_drvdata(mmu->dev);
- adreno_smmu->resume_translation(adreno_smmu->cookie, true);
+ if (adreno_smmu->resume_translation)
+ adreno_smmu->resume_translation(adreno_smmu->cookie, true);
}
static void msm_iommu_detach(struct msm_mmu *mmu)
@@ -367,17 +370,23 @@ static const struct msm_mmu_funcs funcs = {
.resume_translation = msm_iommu_resume_translation,
};
-struct msm_mmu *msm_iommu_new(struct device *dev, struct iommu_domain *domain)
+struct msm_mmu *msm_iommu_new(struct device *dev, unsigned long quirks)
{
+ struct iommu_domain *domain;
struct msm_iommu *iommu;
int ret;
+ domain = iommu_domain_alloc(dev->bus);
if (!domain)
- return ERR_PTR(-ENODEV);
+ return NULL;
+
+ iommu_set_pgtable_quirks(domain, quirks);
iommu = kzalloc(sizeof(*iommu), GFP_KERNEL);
- if (!iommu)
+ if (!iommu) {
+ iommu_domain_free(domain);
return ERR_PTR(-ENOMEM);
+ }
iommu->domain = domain;
msm_mmu_init(&iommu->base, dev, &funcs, MSM_MMU_IOMMU);
@@ -386,9 +395,30 @@ struct msm_mmu *msm_iommu_new(struct device *dev, struct iommu_domain *domain)
ret = iommu_attach_device(iommu->domain, dev);
if (ret) {
+ iommu_domain_free(domain);
kfree(iommu);
return ERR_PTR(ret);
}
return &iommu->base;
}
+
+struct msm_mmu *msm_iommu_gpu_new(struct device *dev, struct msm_gpu *gpu, unsigned long quirks)
+{
+ struct adreno_smmu_priv *adreno_smmu = dev_get_drvdata(dev);
+ struct msm_iommu *iommu;
+ struct msm_mmu *mmu;
+
+ mmu = msm_iommu_new(dev, quirks);
+ if (IS_ERR(mmu))
+ return mmu;
+
+ iommu = to_msm_iommu(mmu);
+ iommu_set_fault_handler(iommu->domain, msm_fault_handler, iommu);
+
+ /* Enable stall on iommu fault: */
+ if (adreno_smmu->set_stall)
+ adreno_smmu->set_stall(adreno_smmu->cookie, true);
+
+ return mmu;
+}
diff --git a/drivers/gpu/drm/msm/msm_kms.h b/drivers/gpu/drm/msm/msm_kms.h
index f8ed7588928c..086a3f1ff956 100644
--- a/drivers/gpu/drm/msm/msm_kms.h
+++ b/drivers/gpu/drm/msm/msm_kms.h
@@ -60,14 +60,6 @@ struct msm_kms_funcs {
void (*disable_commit)(struct msm_kms *kms);
/**
- * If the kms backend supports async commit, it should implement
- * this method to return the time of the next vsync. This is
- * used to determine a time slightly before vsync, for the async
- * commit timer to run and complete an async commit.
- */
- ktime_t (*vsync_time)(struct msm_kms *kms, struct drm_crtc *crtc);
-
- /**
* Prepare for atomic commit. This is called after any previous
* (async or otherwise) commit has completed.
*/
diff --git a/drivers/gpu/drm/msm/msm_mdss.c b/drivers/gpu/drm/msm/msm_mdss.c
index e13c5c12b775..e8c93731aaa1 100644
--- a/drivers/gpu/drm/msm/msm_mdss.c
+++ b/drivers/gpu/drm/msm/msm_mdss.c
@@ -16,18 +16,26 @@
#include "msm_drv.h"
#include "msm_kms.h"
-/* for DPU_HW_* defines */
-#include "disp/dpu1/dpu_hw_catalog.h"
-
#define HW_REV 0x0
#define HW_INTR_STATUS 0x0010
+#define UBWC_DEC_HW_VERSION 0x58
#define UBWC_STATIC 0x144
#define UBWC_CTRL_2 0x150
#define UBWC_PREDICTION_MODE 0x154
#define MIN_IB_BW 400000000UL /* Min ib vote 400MB */
+struct msm_mdss_data {
+ u32 ubwc_version;
+ /* can be read from register 0x58 */
+ u32 ubwc_dec_version;
+ u32 ubwc_swizzle;
+ u32 ubwc_static;
+ u32 highest_bank_bit;
+ u32 macrotile_mode;
+};
+
struct msm_mdss {
struct device *dev;
@@ -39,6 +47,7 @@ struct msm_mdss {
unsigned long enabled_mask;
struct irq_domain *domain;
} irq_controller;
+ const struct msm_mdss_data *mdss_data;
struct icc_path *path[2];
u32 num_paths;
};
@@ -46,15 +55,17 @@ struct msm_mdss {
static int msm_mdss_parse_data_bus_icc_path(struct device *dev,
struct msm_mdss *msm_mdss)
{
- struct icc_path *path0 = of_icc_get(dev, "mdp0-mem");
- struct icc_path *path1 = of_icc_get(dev, "mdp1-mem");
+ struct icc_path *path0;
+ struct icc_path *path1;
+ path0 = of_icc_get(dev, "mdp0-mem");
if (IS_ERR_OR_NULL(path0))
return PTR_ERR_OR_ZERO(path0);
msm_mdss->path[0] = path0;
msm_mdss->num_paths = 1;
+ path1 = of_icc_get(dev, "mdp1-mem");
if (!IS_ERR_OR_NULL(path1)) {
msm_mdss->path[1] = path1;
msm_mdss->num_paths++;
@@ -174,6 +185,53 @@ static int _msm_mdss_irq_domain_add(struct msm_mdss *msm_mdss)
return 0;
}
+#define UBWC_1_0 0x10000000
+#define UBWC_2_0 0x20000000
+#define UBWC_3_0 0x30000000
+#define UBWC_4_0 0x40000000
+
+static void msm_mdss_setup_ubwc_dec_20(struct msm_mdss *msm_mdss)
+{
+ const struct msm_mdss_data *data = msm_mdss->mdss_data;
+
+ writel_relaxed(data->ubwc_static, msm_mdss->mmio + UBWC_STATIC);
+}
+
+static void msm_mdss_setup_ubwc_dec_30(struct msm_mdss *msm_mdss)
+{
+ const struct msm_mdss_data *data = msm_mdss->mdss_data;
+ u32 value = (data->ubwc_swizzle & 0x1) |
+ (data->highest_bank_bit & 0x3) << 4 |
+ (data->macrotile_mode & 0x1) << 12;
+
+ if (data->ubwc_version == UBWC_3_0)
+ value |= BIT(10);
+
+ if (data->ubwc_version == UBWC_1_0)
+ value |= BIT(8);
+
+ writel_relaxed(value, msm_mdss->mmio + UBWC_STATIC);
+}
+
+static void msm_mdss_setup_ubwc_dec_40(struct msm_mdss *msm_mdss)
+{
+ const struct msm_mdss_data *data = msm_mdss->mdss_data;
+ u32 value = (data->ubwc_swizzle & 0x7) |
+ (data->ubwc_static & 0x1) << 3 |
+ (data->highest_bank_bit & 0x7) << 4 |
+ (data->macrotile_mode & 0x1) << 12;
+
+ writel_relaxed(value, msm_mdss->mmio + UBWC_STATIC);
+
+ if (data->ubwc_version == UBWC_3_0) {
+ writel_relaxed(1, msm_mdss->mmio + UBWC_CTRL_2);
+ writel_relaxed(0, msm_mdss->mmio + UBWC_PREDICTION_MODE);
+ } else {
+ writel_relaxed(2, msm_mdss->mmio + UBWC_CTRL_2);
+ writel_relaxed(1, msm_mdss->mmio + UBWC_PREDICTION_MODE);
+ }
+}
+
static int msm_mdss_enable(struct msm_mdss *msm_mdss)
{
int ret;
@@ -192,32 +250,36 @@ static int msm_mdss_enable(struct msm_mdss *msm_mdss)
}
/*
- * HW_REV requires MDSS_MDP_CLK, which is not enabled by the mdss on
- * mdp5 hardware. Skip reading it for now.
+ * Register access requires MDSS_MDP_CLK, which is not enabled by the
+ * mdss on mdp5 hardware. Skip it for now.
*/
- if (msm_mdss->is_mdp5)
+ if (msm_mdss->is_mdp5 || !msm_mdss->mdss_data)
return 0;
/*
* ubwc config is part of the "mdss" region which is not accessible
* from the rest of the driver. hardcode known configurations here
+ *
+ * Decoder version can be read from the UBWC_DEC_HW_VERSION reg,
+ * UBWC_n and the rest of params comes from hw data.
*/
- switch (readl_relaxed(msm_mdss->mmio + HW_REV)) {
- case DPU_HW_VER_500:
- case DPU_HW_VER_501:
- writel_relaxed(0x420, msm_mdss->mmio + UBWC_STATIC);
+ switch (msm_mdss->mdss_data->ubwc_dec_version) {
+ case UBWC_2_0:
+ msm_mdss_setup_ubwc_dec_20(msm_mdss);
break;
- case DPU_HW_VER_600:
- /* TODO: 0x102e for LP_DDR4 */
- writel_relaxed(0x103e, msm_mdss->mmio + UBWC_STATIC);
- writel_relaxed(2, msm_mdss->mmio + UBWC_CTRL_2);
- writel_relaxed(1, msm_mdss->mmio + UBWC_PREDICTION_MODE);
+ case UBWC_3_0:
+ msm_mdss_setup_ubwc_dec_30(msm_mdss);
break;
- case DPU_HW_VER_620:
- writel_relaxed(0x1e, msm_mdss->mmio + UBWC_STATIC);
+ case UBWC_4_0:
+ msm_mdss_setup_ubwc_dec_40(msm_mdss);
break;
- case DPU_HW_VER_720:
- writel_relaxed(0x101e, msm_mdss->mmio + UBWC_STATIC);
+ default:
+ dev_err(msm_mdss->dev, "Unsupported UBWC decoder version %x\n",
+ msm_mdss->mdss_data->ubwc_dec_version);
+ dev_err(msm_mdss->dev, "HW_REV: 0x%x\n",
+ readl_relaxed(msm_mdss->mmio + HW_REV));
+ dev_err(msm_mdss->dev, "UBWC_DEC_HW_VERSION: 0x%x\n",
+ readl_relaxed(msm_mdss->mmio + UBWC_DEC_HW_VERSION));
break;
}
@@ -408,6 +470,8 @@ static int mdss_probe(struct platform_device *pdev)
if (IS_ERR(mdss))
return PTR_ERR(mdss);
+ mdss->mdss_data = of_device_get_match_data(&pdev->dev);
+
platform_set_drvdata(pdev, mdss);
/*
@@ -437,16 +501,81 @@ static int mdss_remove(struct platform_device *pdev)
return 0;
}
+static const struct msm_mdss_data sc7180_data = {
+ .ubwc_version = UBWC_2_0,
+ .ubwc_dec_version = UBWC_2_0,
+ .ubwc_static = 0x1e,
+};
+
+static const struct msm_mdss_data sc7280_data = {
+ .ubwc_version = UBWC_3_0,
+ .ubwc_dec_version = UBWC_4_0,
+ .ubwc_swizzle = 6,
+ .ubwc_static = 1,
+ .highest_bank_bit = 1,
+ .macrotile_mode = 1,
+};
+
+static const struct msm_mdss_data sc8180x_data = {
+ .ubwc_version = UBWC_3_0,
+ .ubwc_dec_version = UBWC_3_0,
+ .highest_bank_bit = 3,
+ .macrotile_mode = 1,
+};
+
+static const struct msm_mdss_data sc8280xp_data = {
+ .ubwc_version = UBWC_4_0,
+ .ubwc_dec_version = UBWC_4_0,
+ .ubwc_swizzle = 6,
+ .ubwc_static = 1,
+ .highest_bank_bit = 2,
+ .macrotile_mode = 1,
+};
+
+static const struct msm_mdss_data sdm845_data = {
+ .ubwc_version = UBWC_2_0,
+ .ubwc_dec_version = UBWC_2_0,
+ .highest_bank_bit = 2,
+};
+
+static const struct msm_mdss_data sm8150_data = {
+ .ubwc_version = UBWC_3_0,
+ .ubwc_dec_version = UBWC_3_0,
+ .highest_bank_bit = 2,
+};
+
+static const struct msm_mdss_data sm6115_data = {
+ .ubwc_version = UBWC_1_0,
+ .ubwc_dec_version = UBWC_2_0,
+ .ubwc_swizzle = 7,
+ .ubwc_static = 0x11f,
+};
+
+static const struct msm_mdss_data sm8250_data = {
+ .ubwc_version = UBWC_4_0,
+ .ubwc_dec_version = UBWC_4_0,
+ .ubwc_swizzle = 6,
+ .ubwc_static = 1,
+ /* TODO: highest_bank_bit = 2 for LP_DDR4 */
+ .highest_bank_bit = 3,
+ .macrotile_mode = 1,
+};
+
static const struct of_device_id mdss_dt_match[] = {
{ .compatible = "qcom,mdss" },
{ .compatible = "qcom,msm8998-mdss" },
{ .compatible = "qcom,qcm2290-mdss" },
- { .compatible = "qcom,sdm845-mdss" },
- { .compatible = "qcom,sc7180-mdss" },
- { .compatible = "qcom,sc7280-mdss" },
- { .compatible = "qcom,sc8180x-mdss" },
- { .compatible = "qcom,sm8150-mdss" },
- { .compatible = "qcom,sm8250-mdss" },
+ { .compatible = "qcom,sdm845-mdss", .data = &sdm845_data },
+ { .compatible = "qcom,sc7180-mdss", .data = &sc7180_data },
+ { .compatible = "qcom,sc7280-mdss", .data = &sc7280_data },
+ { .compatible = "qcom,sc8180x-mdss", .data = &sc8180x_data },
+ { .compatible = "qcom,sc8280xp-mdss", .data = &sc8280xp_data },
+ { .compatible = "qcom,sm6115-mdss", .data = &sm6115_data },
+ { .compatible = "qcom,sm8150-mdss", .data = &sm8150_data },
+ { .compatible = "qcom,sm8250-mdss", .data = &sm8250_data },
+ { .compatible = "qcom,sm8350-mdss", .data = &sm8250_data },
+ { .compatible = "qcom,sm8450-mdss", .data = &sm8250_data },
+ { .compatible = "qcom,sm8550-mdss", .data = &sm8250_data },
{}
};
MODULE_DEVICE_TABLE(of, mdss_dt_match);
diff --git a/drivers/gpu/drm/msm/msm_mmu.h b/drivers/gpu/drm/msm/msm_mmu.h
index de158e1bf765..eb72d3645c1d 100644
--- a/drivers/gpu/drm/msm/msm_mmu.h
+++ b/drivers/gpu/drm/msm/msm_mmu.h
@@ -40,7 +40,8 @@ static inline void msm_mmu_init(struct msm_mmu *mmu, struct device *dev,
mmu->type = type;
}
-struct msm_mmu *msm_iommu_new(struct device *dev, struct iommu_domain *domain);
+struct msm_mmu *msm_iommu_new(struct device *dev, unsigned long quirks);
+struct msm_mmu *msm_iommu_gpu_new(struct device *dev, struct msm_gpu *gpu, unsigned long quirks);
struct msm_mmu *msm_gpummu_new(struct device *dev, struct msm_gpu *gpu);
static inline void msm_mmu_set_fault_handler(struct msm_mmu *mmu, void *arg,
@@ -58,5 +59,6 @@ void msm_gpummu_params(struct msm_mmu *mmu, dma_addr_t *pt_base,
int msm_iommu_pagetable_params(struct msm_mmu *mmu, phys_addr_t *ttbr,
int *asid);
+struct iommu_domain_geometry *msm_iommu_get_geometry(struct msm_mmu *mmu);
#endif /* __MSM_MMU_H__ */
diff --git a/drivers/gpu/drm/msm/msm_ringbuffer.c b/drivers/gpu/drm/msm/msm_ringbuffer.c
index 57a8e9564540..b60199184409 100644
--- a/drivers/gpu/drm/msm/msm_ringbuffer.c
+++ b/drivers/gpu/drm/msm/msm_ringbuffer.c
@@ -18,16 +18,14 @@ static struct dma_fence *msm_job_run(struct drm_sched_job *job)
struct msm_gpu *gpu = submit->gpu;
int i;
- submit->hw_fence = msm_fence_alloc(fctx);
+ msm_fence_init(submit->hw_fence, fctx);
for (i = 0; i < submit->nr_bos; i++) {
struct drm_gem_object *obj = &submit->bos[i].obj->base;
- msm_gem_lock(obj);
- msm_gem_unpin_vma_fenced(submit->bos[i].vma, fctx);
- msm_gem_unpin_locked(obj);
+ msm_gem_vma_unpin_fenced(submit->bos[i].vma, fctx);
+ msm_gem_unpin_active(obj);
submit->bos[i].flags &= ~(BO_VMA_PINNED | BO_OBJ_PINNED);
- msm_gem_unlock(obj);
}
/* TODO move submit path over to using a per-ring lock.. */
diff --git a/drivers/gpu/drm/msm/msm_ringbuffer.h b/drivers/gpu/drm/msm/msm_ringbuffer.h
index 2a5045abe46e..698b333abccd 100644
--- a/drivers/gpu/drm/msm/msm_ringbuffer.h
+++ b/drivers/gpu/drm/msm/msm_ringbuffer.h
@@ -35,6 +35,11 @@ struct msm_rbmemptrs {
volatile u64 ttbr0;
};
+struct msm_cp_state {
+ uint64_t ib1_base, ib2_base;
+ uint32_t ib1_rem, ib2_rem;
+};
+
struct msm_ringbuffer {
struct msm_gpu *gpu;
int id;
@@ -64,6 +69,29 @@ struct msm_ringbuffer {
uint64_t memptrs_iova;
struct msm_fence_context *fctx;
+ /**
+ * hangcheck_progress_retries:
+ *
+ * The number of extra hangcheck duration cycles that we have given
+ * due to it appearing that the GPU is making forward progress.
+ *
+ * For GPU generations which support progress detection (see.
+ * msm_gpu_funcs::progress()), if the GPU appears to be making progress
+ * (ie. the CP has advanced in the command stream, we'll allow up to
+ * DRM_MSM_HANGCHECK_PROGRESS_RETRIES expirations of the hangcheck timer
+ * before killing the job. But to detect progress we need two sample
+ * points, so the duration of the hangcheck timer is halved. In other
+ * words we'll let the submit run for up to:
+ *
+ * (DRM_MSM_HANGCHECK_DEFAULT_PERIOD / 2) * (DRM_MSM_HANGCHECK_PROGRESS_RETRIES + 1)
+ */
+ int hangcheck_progress_retries;
+
+ /**
+ * last_cp_state: The state of the CP at the last call to gpu->progress()
+ */
+ struct msm_cp_state last_cp_state;
+
/*
* preempt_lock protects preemption and serializes wptr updates against
* preemption. Can be aquired from irq context.
diff --git a/drivers/gpu/drm/msm/msm_submitqueue.c b/drivers/gpu/drm/msm/msm_submitqueue.c
index c6929e205b51..0e803125a325 100644
--- a/drivers/gpu/drm/msm/msm_submitqueue.c
+++ b/drivers/gpu/drm/msm/msm_submitqueue.c
@@ -200,7 +200,7 @@ int msm_submitqueue_create(struct drm_device *drm, struct msm_file_private *ctx,
*id = queue->id;
idr_init(&queue->fence_idr);
- mutex_init(&queue->idr_lock);
+ spin_lock_init(&queue->idr_lock);
mutex_init(&queue->lock);
list_add_tail(&queue->node, &ctx->submitqueues);
diff --git a/drivers/gpu/drm/mxsfb/Kconfig b/drivers/gpu/drm/mxsfb/Kconfig
index 116f8168bda4..518b53345354 100644
--- a/drivers/gpu/drm/mxsfb/Kconfig
+++ b/drivers/gpu/drm/mxsfb/Kconfig
@@ -8,6 +8,7 @@ config DRM_MXSFB
tristate "i.MX (e)LCDIF LCD controller"
depends on DRM && OF
depends on COMMON_CLK
+ depends on ARCH_MXS || ARCH_MXC || COMPILE_TEST
select DRM_MXS
select DRM_KMS_HELPER
select DRM_GEM_DMA_HELPER
@@ -24,6 +25,7 @@ config DRM_IMX_LCDIF
tristate "i.MX LCDIFv3 LCD controller"
depends on DRM && OF
depends on COMMON_CLK
+ depends on ARCH_MXC || COMPILE_TEST
select DRM_MXS
select DRM_KMS_HELPER
select DRM_GEM_DMA_HELPER
diff --git a/drivers/gpu/drm/mxsfb/lcdif_drv.c b/drivers/gpu/drm/mxsfb/lcdif_drv.c
index 075002ed6fb0..6fb5b469ee5a 100644
--- a/drivers/gpu/drm/mxsfb/lcdif_drv.c
+++ b/drivers/gpu/drm/mxsfb/lcdif_drv.c
@@ -16,7 +16,7 @@
#include <drm/drm_atomic_helper.h>
#include <drm/drm_bridge.h>
#include <drm/drm_drv.h>
-#include <drm/drm_fb_helper.h>
+#include <drm/drm_fbdev_dma.h>
#include <drm/drm_gem_dma_helper.h>
#include <drm/drm_gem_framebuffer_helper.h>
#include <drm/drm_mode_config.h>
@@ -220,7 +220,7 @@ static int lcdif_probe(struct platform_device *pdev)
if (ret)
goto err_unload;
- drm_fbdev_generic_setup(drm, 32);
+ drm_fbdev_dma_setup(drm, 32);
return 0;
diff --git a/drivers/gpu/drm/mxsfb/lcdif_kms.c b/drivers/gpu/drm/mxsfb/lcdif_kms.c
index b1092aab1423..262bc43b1079 100644
--- a/drivers/gpu/drm/mxsfb/lcdif_kms.c
+++ b/drivers/gpu/drm/mxsfb/lcdif_kms.c
@@ -5,6 +5,7 @@
* This code is based on drivers/gpu/drm/mxsfb/mxsfb*
*/
+#include <linux/bitfield.h>
#include <linux/clk.h>
#include <linux/io.h>
#include <linux/iopoll.h>
@@ -15,6 +16,7 @@
#include <drm/drm_atomic.h>
#include <drm/drm_atomic_helper.h>
#include <drm/drm_bridge.h>
+#include <drm/drm_color_mgmt.h>
#include <drm/drm_crtc.h>
#include <drm/drm_encoder.h>
#include <drm/drm_fb_dma_helper.h>
@@ -31,13 +33,126 @@
/* -----------------------------------------------------------------------------
* CRTC
*/
+
+/*
+ * For conversion from YCbCr to RGB, the CSC operates as follows:
+ *
+ * |R| |A1 A2 A3| |Y + D1|
+ * |G| = |B1 B2 B3| * |Cb + D2|
+ * |B| |C1 C2 C3| |Cr + D3|
+ *
+ * The A, B and C coefficients are expressed as Q2.8 fixed point values, and
+ * the D coefficients as Q0.8. Despite the reference manual stating the
+ * opposite, the D1, D2 and D3 offset values are added to Y, Cb and Cr, not
+ * subtracted. They must thus be programmed with negative values.
+ */
+static const u32 lcdif_yuv2rgb_coeffs[3][2][6] = {
+ [DRM_COLOR_YCBCR_BT601] = {
+ [DRM_COLOR_YCBCR_LIMITED_RANGE] = {
+ /*
+ * BT.601 limited range:
+ *
+ * |R| |1.1644 0.0000 1.5960| |Y - 16 |
+ * |G| = |1.1644 -0.3917 -0.8129| * |Cb - 128|
+ * |B| |1.1644 2.0172 0.0000| |Cr - 128|
+ */
+ CSC0_COEF0_A1(0x12a) | CSC0_COEF0_A2(0x000),
+ CSC0_COEF1_A3(0x199) | CSC0_COEF1_B1(0x12a),
+ CSC0_COEF2_B2(0x79c) | CSC0_COEF2_B3(0x730),
+ CSC0_COEF3_C1(0x12a) | CSC0_COEF3_C2(0x204),
+ CSC0_COEF4_C3(0x000) | CSC0_COEF4_D1(0x1f0),
+ CSC0_COEF5_D2(0x180) | CSC0_COEF5_D3(0x180),
+ },
+ [DRM_COLOR_YCBCR_FULL_RANGE] = {
+ /*
+ * BT.601 full range:
+ *
+ * |R| |1.0000 0.0000 1.4020| |Y - 0 |
+ * |G| = |1.0000 -0.3441 -0.7141| * |Cb - 128|
+ * |B| |1.0000 1.7720 0.0000| |Cr - 128|
+ */
+ CSC0_COEF0_A1(0x100) | CSC0_COEF0_A2(0x000),
+ CSC0_COEF1_A3(0x167) | CSC0_COEF1_B1(0x100),
+ CSC0_COEF2_B2(0x7a8) | CSC0_COEF2_B3(0x749),
+ CSC0_COEF3_C1(0x100) | CSC0_COEF3_C2(0x1c6),
+ CSC0_COEF4_C3(0x000) | CSC0_COEF4_D1(0x000),
+ CSC0_COEF5_D2(0x180) | CSC0_COEF5_D3(0x180),
+ },
+ },
+ [DRM_COLOR_YCBCR_BT709] = {
+ [DRM_COLOR_YCBCR_LIMITED_RANGE] = {
+ /*
+ * Rec.709 limited range:
+ *
+ * |R| |1.1644 0.0000 1.7927| |Y - 16 |
+ * |G| = |1.1644 -0.2132 -0.5329| * |Cb - 128|
+ * |B| |1.1644 2.1124 0.0000| |Cr - 128|
+ */
+ CSC0_COEF0_A1(0x12a) | CSC0_COEF0_A2(0x000),
+ CSC0_COEF1_A3(0x1cb) | CSC0_COEF1_B1(0x12a),
+ CSC0_COEF2_B2(0x7c9) | CSC0_COEF2_B3(0x778),
+ CSC0_COEF3_C1(0x12a) | CSC0_COEF3_C2(0x21d),
+ CSC0_COEF4_C3(0x000) | CSC0_COEF4_D1(0x1f0),
+ CSC0_COEF5_D2(0x180) | CSC0_COEF5_D3(0x180),
+ },
+ [DRM_COLOR_YCBCR_FULL_RANGE] = {
+ /*
+ * Rec.709 full range:
+ *
+ * |R| |1.0000 0.0000 1.5748| |Y - 0 |
+ * |G| = |1.0000 -0.1873 -0.4681| * |Cb - 128|
+ * |B| |1.0000 1.8556 0.0000| |Cr - 128|
+ */
+ CSC0_COEF0_A1(0x100) | CSC0_COEF0_A2(0x000),
+ CSC0_COEF1_A3(0x193) | CSC0_COEF1_B1(0x100),
+ CSC0_COEF2_B2(0x7d0) | CSC0_COEF2_B3(0x788),
+ CSC0_COEF3_C1(0x100) | CSC0_COEF3_C2(0x1db),
+ CSC0_COEF4_C3(0x000) | CSC0_COEF4_D1(0x000),
+ CSC0_COEF5_D2(0x180) | CSC0_COEF5_D3(0x180),
+ },
+ },
+ [DRM_COLOR_YCBCR_BT2020] = {
+ [DRM_COLOR_YCBCR_LIMITED_RANGE] = {
+ /*
+ * BT.2020 limited range:
+ *
+ * |R| |1.1644 0.0000 1.6787| |Y - 16 |
+ * |G| = |1.1644 -0.1874 -0.6505| * |Cb - 128|
+ * |B| |1.1644 2.1418 0.0000| |Cr - 128|
+ */
+ CSC0_COEF0_A1(0x12a) | CSC0_COEF0_A2(0x000),
+ CSC0_COEF1_A3(0x1ae) | CSC0_COEF1_B1(0x12a),
+ CSC0_COEF2_B2(0x7d0) | CSC0_COEF2_B3(0x759),
+ CSC0_COEF3_C1(0x12a) | CSC0_COEF3_C2(0x224),
+ CSC0_COEF4_C3(0x000) | CSC0_COEF4_D1(0x1f0),
+ CSC0_COEF5_D2(0x180) | CSC0_COEF5_D3(0x180),
+ },
+ [DRM_COLOR_YCBCR_FULL_RANGE] = {
+ /*
+ * BT.2020 full range:
+ *
+ * |R| |1.0000 0.0000 1.4746| |Y - 0 |
+ * |G| = |1.0000 -0.1646 -0.5714| * |Cb - 128|
+ * |B| |1.0000 1.8814 0.0000| |Cr - 128|
+ */
+ CSC0_COEF0_A1(0x100) | CSC0_COEF0_A2(0x000),
+ CSC0_COEF1_A3(0x179) | CSC0_COEF1_B1(0x100),
+ CSC0_COEF2_B2(0x7d6) | CSC0_COEF2_B3(0x76e),
+ CSC0_COEF3_C1(0x100) | CSC0_COEF3_C2(0x1e2),
+ CSC0_COEF4_C3(0x000) | CSC0_COEF4_D1(0x000),
+ CSC0_COEF5_D2(0x180) | CSC0_COEF5_D3(0x180),
+ },
+ },
+};
+
static void lcdif_set_formats(struct lcdif_drm_private *lcdif,
+ struct drm_plane_state *plane_state,
const u32 bus_format)
{
struct drm_device *drm = lcdif->drm;
- const u32 format = lcdif->crtc.primary->state->fb->format->format;
-
- writel(CSC0_CTRL_BYPASS, lcdif->base + LCDC_V8_CSC0_CTRL);
+ const u32 format = plane_state->fb->format->format;
+ bool in_yuv = false;
+ bool out_yuv = false;
switch (bus_format) {
case MEDIA_BUS_FMT_RGB565_1X16:
@@ -51,24 +166,7 @@ static void lcdif_set_formats(struct lcdif_drm_private *lcdif,
case MEDIA_BUS_FMT_UYVY8_1X16:
writel(DISP_PARA_LINE_PATTERN_UYVY_H,
lcdif->base + LCDC_V8_DISP_PARA);
-
- /* CSC: BT.601 Full Range RGB to YCbCr coefficients. */
- writel(CSC0_COEF0_A2(0x096) | CSC0_COEF0_A1(0x04c),
- lcdif->base + LCDC_V8_CSC0_COEF0);
- writel(CSC0_COEF1_B1(0x7d5) | CSC0_COEF1_A3(0x01d),
- lcdif->base + LCDC_V8_CSC0_COEF1);
- writel(CSC0_COEF2_B3(0x080) | CSC0_COEF2_B2(0x7ac),
- lcdif->base + LCDC_V8_CSC0_COEF2);
- writel(CSC0_COEF3_C2(0x795) | CSC0_COEF3_C1(0x080),
- lcdif->base + LCDC_V8_CSC0_COEF3);
- writel(CSC0_COEF4_D1(0x000) | CSC0_COEF4_C3(0x7ec),
- lcdif->base + LCDC_V8_CSC0_COEF4);
- writel(CSC0_COEF5_D3(0x080) | CSC0_COEF5_D2(0x080),
- lcdif->base + LCDC_V8_CSC0_COEF5);
-
- writel(CSC0_CTRL_CSC_MODE_RGB2YCbCr,
- lcdif->base + LCDC_V8_CSC0_CTRL);
-
+ out_yuv = true;
break;
default:
dev_err(drm->dev, "Unknown media bus format 0x%x\n", bus_format);
@@ -76,6 +174,7 @@ static void lcdif_set_formats(struct lcdif_drm_private *lcdif,
}
switch (format) {
+ /* RGB Formats */
case DRM_FORMAT_RGB565:
writel(CTRLDESCL0_5_BPP_16_RGB565,
lcdif->base + LCDC_V8_CTRLDESCL0_5);
@@ -100,10 +199,84 @@ static void lcdif_set_formats(struct lcdif_drm_private *lcdif,
writel(CTRLDESCL0_5_BPP_32_ARGB8888,
lcdif->base + LCDC_V8_CTRLDESCL0_5);
break;
+
+ /* YUV Formats */
+ case DRM_FORMAT_YUYV:
+ writel(CTRLDESCL0_5_BPP_YCbCr422 | CTRLDESCL0_5_YUV_FORMAT_VY2UY1,
+ lcdif->base + LCDC_V8_CTRLDESCL0_5);
+ in_yuv = true;
+ break;
+ case DRM_FORMAT_YVYU:
+ writel(CTRLDESCL0_5_BPP_YCbCr422 | CTRLDESCL0_5_YUV_FORMAT_UY2VY1,
+ lcdif->base + LCDC_V8_CTRLDESCL0_5);
+ in_yuv = true;
+ break;
+ case DRM_FORMAT_UYVY:
+ writel(CTRLDESCL0_5_BPP_YCbCr422 | CTRLDESCL0_5_YUV_FORMAT_Y2VY1U,
+ lcdif->base + LCDC_V8_CTRLDESCL0_5);
+ in_yuv = true;
+ break;
+ case DRM_FORMAT_VYUY:
+ writel(CTRLDESCL0_5_BPP_YCbCr422 | CTRLDESCL0_5_YUV_FORMAT_Y2UY1V,
+ lcdif->base + LCDC_V8_CTRLDESCL0_5);
+ in_yuv = true;
+ break;
+
default:
dev_err(drm->dev, "Unknown pixel format 0x%x\n", format);
break;
}
+
+ /*
+ * The CSC differentiates between "YCbCr" and "YUV", but the reference
+ * manual doesn't detail how they differ. Experiments showed that the
+ * luminance value is unaffected, only the calculations involving chroma
+ * values differ. The YCbCr mode behaves as expected, with chroma values
+ * being offset by 128. The YUV mode isn't fully understood.
+ */
+ if (!in_yuv && out_yuv) {
+ /* RGB -> YCbCr */
+ writel(CSC0_CTRL_CSC_MODE_RGB2YCbCr,
+ lcdif->base + LCDC_V8_CSC0_CTRL);
+
+ /*
+ * CSC: BT.601 Limited Range RGB to YCbCr coefficients.
+ *
+ * |Y | | 0.2568 0.5041 0.0979| |R| |16 |
+ * |Cb| = |-0.1482 -0.2910 0.4392| * |G| + |128|
+ * |Cr| | 0.4392 0.4392 -0.3678| |B| |128|
+ */
+ writel(CSC0_COEF0_A2(0x081) | CSC0_COEF0_A1(0x041),
+ lcdif->base + LCDC_V8_CSC0_COEF0);
+ writel(CSC0_COEF1_B1(0x7db) | CSC0_COEF1_A3(0x019),
+ lcdif->base + LCDC_V8_CSC0_COEF1);
+ writel(CSC0_COEF2_B3(0x070) | CSC0_COEF2_B2(0x7b6),
+ lcdif->base + LCDC_V8_CSC0_COEF2);
+ writel(CSC0_COEF3_C2(0x7a2) | CSC0_COEF3_C1(0x070),
+ lcdif->base + LCDC_V8_CSC0_COEF3);
+ writel(CSC0_COEF4_D1(0x010) | CSC0_COEF4_C3(0x7ee),
+ lcdif->base + LCDC_V8_CSC0_COEF4);
+ writel(CSC0_COEF5_D3(0x080) | CSC0_COEF5_D2(0x080),
+ lcdif->base + LCDC_V8_CSC0_COEF5);
+ } else if (in_yuv && !out_yuv) {
+ /* YCbCr -> RGB */
+ const u32 *coeffs =
+ lcdif_yuv2rgb_coeffs[plane_state->color_encoding]
+ [plane_state->color_range];
+
+ writel(CSC0_CTRL_CSC_MODE_YCbCr2RGB,
+ lcdif->base + LCDC_V8_CSC0_CTRL);
+
+ writel(coeffs[0], lcdif->base + LCDC_V8_CSC0_COEF0);
+ writel(coeffs[1], lcdif->base + LCDC_V8_CSC0_COEF1);
+ writel(coeffs[2], lcdif->base + LCDC_V8_CSC0_COEF2);
+ writel(coeffs[3], lcdif->base + LCDC_V8_CSC0_COEF3);
+ writel(coeffs[4], lcdif->base + LCDC_V8_CSC0_COEF4);
+ writel(coeffs[5], lcdif->base + LCDC_V8_CSC0_COEF5);
+ } else {
+ /* RGB -> RGB, YCbCr -> YCbCr: bypass colorspace converter. */
+ writel(CSC0_CTRL_BYPASS, lcdif->base + LCDC_V8_CSC0_CTRL);
+ }
}
static void lcdif_set_mode(struct lcdif_drm_private *lcdif, u32 bus_flags)
@@ -142,14 +315,36 @@ static void lcdif_set_mode(struct lcdif_drm_private *lcdif, u32 bus_flags)
CTRLDESCL0_1_WIDTH(m->hdisplay),
lcdif->base + LCDC_V8_CTRLDESCL0_1);
- writel(CTRLDESCL0_3_PITCH(lcdif->crtc.primary->state->fb->pitches[0]),
- lcdif->base + LCDC_V8_CTRLDESCL0_3);
+ /*
+ * Undocumented P_SIZE and T_SIZE register but those written in the
+ * downstream kernel those registers control the AXI burst size. As of
+ * now there are two known values:
+ * 1 - 128Byte
+ * 2 - 256Byte
+ * Downstream set it to 256B burst size to improve the memory
+ * efficiency so set it here too.
+ */
+ ctrl = CTRLDESCL0_3_P_SIZE(2) | CTRLDESCL0_3_T_SIZE(2) |
+ CTRLDESCL0_3_PITCH(lcdif->crtc.primary->state->fb->pitches[0]);
+ writel(ctrl, lcdif->base + LCDC_V8_CTRLDESCL0_3);
}
static void lcdif_enable_controller(struct lcdif_drm_private *lcdif)
{
u32 reg;
+ /* Set FIFO Panic watermarks, low 1/3, high 2/3 . */
+ writel(FIELD_PREP(PANIC0_THRES_LOW_MASK, 1 * PANIC0_THRES_MAX / 3) |
+ FIELD_PREP(PANIC0_THRES_HIGH_MASK, 2 * PANIC0_THRES_MAX / 3),
+ lcdif->base + LCDC_V8_PANIC0_THRES);
+
+ /*
+ * Enable FIFO Panic, this does not generate interrupt, but
+ * boosts NoC priority based on FIFO Panic watermarks.
+ */
+ writel(INT_ENABLE_D1_PLANE_PANIC_EN,
+ lcdif->base + LCDC_V8_INT_ENABLE_D1);
+
reg = readl(lcdif->base + LCDC_V8_DISP_PARA);
reg |= DISP_PARA_DISP_ON;
writel(reg, lcdif->base + LCDC_V8_DISP_PARA);
@@ -177,6 +372,9 @@ static void lcdif_disable_controller(struct lcdif_drm_private *lcdif)
reg = readl(lcdif->base + LCDC_V8_DISP_PARA);
reg &= ~DISP_PARA_DISP_ON;
writel(reg, lcdif->base + LCDC_V8_DISP_PARA);
+
+ /* Disable FIFO Panic NoC priority booster. */
+ writel(0, lcdif->base + LCDC_V8_INT_ENABLE_D1);
}
static void lcdif_reset_block(struct lcdif_drm_private *lcdif)
@@ -188,6 +386,7 @@ static void lcdif_reset_block(struct lcdif_drm_private *lcdif)
}
static void lcdif_crtc_mode_set_nofb(struct lcdif_drm_private *lcdif,
+ struct drm_plane_state *plane_state,
struct drm_bridge_state *bridge_state,
const u32 bus_format)
{
@@ -210,7 +409,7 @@ static void lcdif_crtc_mode_set_nofb(struct lcdif_drm_private *lcdif,
/* Mandatory eLCDIF reset as per the Reference Manual */
lcdif_reset_block(lcdif);
- lcdif_set_formats(lcdif, bus_format);
+ lcdif_set_formats(lcdif, plane_state, bus_format);
lcdif_set_mode(lcdif, bus_flags);
}
@@ -293,7 +492,7 @@ static void lcdif_crtc_atomic_enable(struct drm_crtc *crtc,
pm_runtime_get_sync(drm->dev);
- lcdif_crtc_mode_set_nofb(lcdif, bridge_state, bus_format);
+ lcdif_crtc_mode_set_nofb(lcdif, new_pstate, bridge_state, bus_format);
/* Write cur_buf as well to avoid an initial corrupt frame */
paddr = drm_fb_dma_get_gem_addr(new_pstate->fb, new_pstate, 0);
@@ -437,12 +636,19 @@ static const struct drm_plane_funcs lcdif_plane_funcs = {
};
static const u32 lcdif_primary_plane_formats[] = {
+ /* RGB */
DRM_FORMAT_RGB565,
DRM_FORMAT_RGB888,
DRM_FORMAT_XBGR8888,
DRM_FORMAT_XRGB1555,
DRM_FORMAT_XRGB4444,
DRM_FORMAT_XRGB8888,
+
+ /* Packed YCbCr */
+ DRM_FORMAT_YUYV,
+ DRM_FORMAT_YVYU,
+ DRM_FORMAT_UYVY,
+ DRM_FORMAT_VYUY,
};
static const u64 lcdif_modifiers[] = {
@@ -456,6 +662,11 @@ static const u64 lcdif_modifiers[] = {
int lcdif_kms_init(struct lcdif_drm_private *lcdif)
{
+ const u32 supported_encodings = BIT(DRM_COLOR_YCBCR_BT601) |
+ BIT(DRM_COLOR_YCBCR_BT709) |
+ BIT(DRM_COLOR_YCBCR_BT2020);
+ const u32 supported_ranges = BIT(DRM_COLOR_YCBCR_LIMITED_RANGE) |
+ BIT(DRM_COLOR_YCBCR_FULL_RANGE);
struct drm_encoder *encoder = &lcdif->encoder;
struct drm_crtc *crtc = &lcdif->crtc;
int ret;
@@ -471,6 +682,14 @@ int lcdif_kms_init(struct lcdif_drm_private *lcdif)
if (ret)
return ret;
+ ret = drm_plane_create_color_properties(&lcdif->planes.primary,
+ supported_encodings,
+ supported_ranges,
+ DRM_COLOR_YCBCR_BT601,
+ DRM_COLOR_YCBCR_LIMITED_RANGE);
+ if (ret)
+ return ret;
+
drm_crtc_helper_add(crtc, &lcdif_crtc_helper_funcs);
ret = drm_crtc_init_with_planes(lcdif->drm, crtc,
&lcdif->planes.primary, NULL,
diff --git a/drivers/gpu/drm/mxsfb/lcdif_regs.h b/drivers/gpu/drm/mxsfb/lcdif_regs.h
index c70220651e3a..c55dfb236c1d 100644
--- a/drivers/gpu/drm/mxsfb/lcdif_regs.h
+++ b/drivers/gpu/drm/mxsfb/lcdif_regs.h
@@ -130,7 +130,7 @@
#define CTRL_FETCH_START_OPTION_BPV BIT(9)
#define CTRL_FETCH_START_OPTION_RESV GENMASK(9, 8)
#define CTRL_FETCH_START_OPTION_MASK GENMASK(9, 8)
-#define CTRL_NEG BIT(4)
+#define CTRL_NEG BIT(4)
#define CTRL_INV_PXCK BIT(3)
#define CTRL_INV_DE BIT(2)
#define CTRL_INV_VS BIT(1)
@@ -138,9 +138,9 @@
#define DISP_PARA_DISP_ON BIT(31)
#define DISP_PARA_SWAP_EN BIT(30)
-#define DISP_PARA_LINE_PATTERN_UYVY_H (GENMASK(29, 28) | BIT(26))
-#define DISP_PARA_LINE_PATTERN_RGB565 GENMASK(28, 26)
-#define DISP_PARA_LINE_PATTERN_RGB888 0
+#define DISP_PARA_LINE_PATTERN_UYVY_H (0xd << 26)
+#define DISP_PARA_LINE_PATTERN_RGB565 (0x7 << 26)
+#define DISP_PARA_LINE_PATTERN_RGB888 (0x0 << 26)
#define DISP_PARA_LINE_PATTERN_MASK GENMASK(29, 26)
#define DISP_PARA_DISP_MODE_MASK GENMASK(25, 24)
#define DISP_PARA_BGND_R_MASK GENMASK(23, 16)
@@ -186,10 +186,14 @@
#define INT_ENABLE_D1_PLANE_PANIC_EN BIT(0)
#define CTRLDESCL0_1_HEIGHT(n) (((n) & 0xffff) << 16)
-#define CTRLDESCL0_1_HEIGHT_MASK GENMASK(31, 16)
+#define CTRLDESCL0_1_HEIGHT_MASK GENMASK(31, 16)
#define CTRLDESCL0_1_WIDTH(n) ((n) & 0xffff)
#define CTRLDESCL0_1_WIDTH_MASK GENMASK(15, 0)
+#define CTRLDESCL0_3_P_SIZE(n) (((n) << 20) & CTRLDESCL0_3_P_SIZE_MASK)
+#define CTRLDESCL0_3_P_SIZE_MASK GENMASK(22, 20)
+#define CTRLDESCL0_3_T_SIZE(n) (((n) << 16) & CTRLDESCL0_3_T_SIZE_MASK)
+#define CTRLDESCL0_3_T_SIZE_MASK GENMASK(17, 16)
#define CTRLDESCL0_3_PITCH(n) ((n) & 0xffff)
#define CTRLDESCL0_3_PITCH_MASK GENMASK(15, 0)
@@ -198,21 +202,24 @@
#define CTRLDESCL0_5_EN BIT(31)
#define CTRLDESCL0_5_SHADOW_LOAD_EN BIT(30)
-#define CTRLDESCL0_5_BPP_16_RGB565 BIT(26)
-#define CTRLDESCL0_5_BPP_16_ARGB1555 (BIT(26) | BIT(24))
-#define CTRLDESCL0_5_BPP_16_ARGB4444 (BIT(26) | BIT(25))
-#define CTRLDESCL0_5_BPP_YCbCr422 (BIT(26) | BIT(25) | BIT(24))
-#define CTRLDESCL0_5_BPP_24_RGB888 BIT(27)
-#define CTRLDESCL0_5_BPP_32_ARGB8888 (BIT(27) | BIT(24))
-#define CTRLDESCL0_5_BPP_32_ABGR8888 (BIT(27) | BIT(25))
+#define CTRLDESCL0_5_BPP_16_RGB565 (0x4 << 24)
+#define CTRLDESCL0_5_BPP_16_ARGB1555 (0x5 << 24)
+#define CTRLDESCL0_5_BPP_16_ARGB4444 (0x6 << 24)
+#define CTRLDESCL0_5_BPP_YCbCr422 (0x7 << 24)
+#define CTRLDESCL0_5_BPP_24_RGB888 (0x8 << 24)
+#define CTRLDESCL0_5_BPP_32_ARGB8888 (0x9 << 24)
+#define CTRLDESCL0_5_BPP_32_ABGR8888 (0xa << 24)
#define CTRLDESCL0_5_BPP_MASK GENMASK(27, 24)
-#define CTRLDESCL0_5_YUV_FORMAT_Y2VY1U 0
-#define CTRLDESCL0_5_YUV_FORMAT_Y2UY1V BIT(14)
-#define CTRLDESCL0_5_YUV_FORMAT_VY2UY1 BIT(15)
-#define CTRLDESCL0_5_YUV_FORMAT_UY2VY1 (BIT(15) | BIT(14))
+#define CTRLDESCL0_5_YUV_FORMAT_Y2VY1U (0x0 << 14)
+#define CTRLDESCL0_5_YUV_FORMAT_Y2UY1V (0x1 << 14)
+#define CTRLDESCL0_5_YUV_FORMAT_VY2UY1 (0x2 << 14)
+#define CTRLDESCL0_5_YUV_FORMAT_UY2VY1 (0x3 << 14)
#define CTRLDESCL0_5_YUV_FORMAT_MASK GENMASK(15, 14)
-#define CSC0_CTRL_CSC_MODE_RGB2YCbCr GENMASK(2, 1)
+#define CSC0_CTRL_CSC_MODE_YUV2RGB (0x0 << 1)
+#define CSC0_CTRL_CSC_MODE_YCbCr2RGB (0x1 << 1)
+#define CSC0_CTRL_CSC_MODE_RGB2YUV (0x2 << 1)
+#define CSC0_CTRL_CSC_MODE_RGB2YCbCr (0x3 << 1)
#define CSC0_CTRL_CSC_MODE_MASK GENMASK(2, 1)
#define CSC0_CTRL_BYPASS BIT(0)
@@ -248,6 +255,7 @@
#define PANIC0_THRES_LOW_MASK GENMASK(24, 16)
#define PANIC0_THRES_HIGH_MASK GENMASK(8, 0)
+#define PANIC0_THRES_MAX 511
#define LCDIF_MIN_XRES 120
#define LCDIF_MIN_YRES 120
diff --git a/drivers/gpu/drm/mxsfb/mxsfb_drv.c b/drivers/gpu/drm/mxsfb/mxsfb_drv.c
index b29b332ed381..368b1fbd8305 100644
--- a/drivers/gpu/drm/mxsfb/mxsfb_drv.c
+++ b/drivers/gpu/drm/mxsfb/mxsfb_drv.c
@@ -20,7 +20,7 @@
#include <drm/drm_bridge.h>
#include <drm/drm_connector.h>
#include <drm/drm_drv.h>
-#include <drm/drm_fb_helper.h>
+#include <drm/drm_fbdev_dma.h>
#include <drm/drm_fourcc.h>
#include <drm/drm_gem_dma_helper.h>
#include <drm/drm_gem_framebuffer_helper.h>
@@ -78,14 +78,12 @@ static const struct mxsfb_devdata mxsfb_devdata[] = {
void mxsfb_enable_axi_clk(struct mxsfb_drm_private *mxsfb)
{
- if (mxsfb->clk_axi)
- clk_prepare_enable(mxsfb->clk_axi);
+ clk_prepare_enable(mxsfb->clk_axi);
}
void mxsfb_disable_axi_clk(struct mxsfb_drm_private *mxsfb)
{
- if (mxsfb->clk_axi)
- clk_disable_unprepare(mxsfb->clk_axi);
+ clk_disable_unprepare(mxsfb->clk_axi);
}
static struct drm_framebuffer *
@@ -235,9 +233,9 @@ static int mxsfb_load(struct drm_device *drm,
if (IS_ERR(mxsfb->clk))
return PTR_ERR(mxsfb->clk);
- mxsfb->clk_axi = devm_clk_get(drm->dev, "axi");
+ mxsfb->clk_axi = devm_clk_get_optional(drm->dev, "axi");
if (IS_ERR(mxsfb->clk_axi))
- mxsfb->clk_axi = NULL;
+ return PTR_ERR(mxsfb->clk_axi);
mxsfb->clk_disp_axi = devm_clk_get(drm->dev, "disp_axi");
if (IS_ERR(mxsfb->clk_disp_axi))
@@ -367,7 +365,7 @@ static int mxsfb_probe(struct platform_device *pdev)
if (ret)
goto err_unload;
- drm_fbdev_generic_setup(drm, 32);
+ drm_fbdev_dma_setup(drm, 32);
return 0;
diff --git a/drivers/gpu/drm/nouveau/Kbuild b/drivers/gpu/drm/nouveau/Kbuild
index 60586fb8275e..5e5617006da5 100644
--- a/drivers/gpu/drm/nouveau/Kbuild
+++ b/drivers/gpu/drm/nouveau/Kbuild
@@ -54,10 +54,6 @@ nouveau-y += nouveau_bios.o
nouveau-y += nouveau_connector.o
nouveau-y += nouveau_display.o
nouveau-y += nouveau_dp.o
-nouveau-y += nouveau_fbcon.o
-nouveau-y += nv04_fbcon.o
-nouveau-y += nv50_fbcon.o
-nouveau-y += nvc0_fbcon.o
include $(src)/dispnv04/Kbuild
include $(src)/dispnv50/Kbuild
diff --git a/drivers/gpu/drm/nouveau/Kconfig b/drivers/gpu/drm/nouveau/Kconfig
index 03d12caf9e26..a70bd65e1400 100644
--- a/drivers/gpu/drm/nouveau/Kconfig
+++ b/drivers/gpu/drm/nouveau/Kconfig
@@ -10,6 +10,8 @@ config DRM_NOUVEAU
select DRM_KMS_HELPER
select DRM_TTM
select DRM_TTM_HELPER
+ select I2C
+ select I2C_ALGOBIT
select BACKLIGHT_CLASS_DEVICE if DRM_NOUVEAU_BACKLIGHT
select X86_PLATFORM_DEVICES if ACPI && X86
select ACPI_WMI if ACPI && X86
@@ -24,18 +26,6 @@ config DRM_NOUVEAU
help
Choose this option for open-source NVIDIA support.
-config NOUVEAU_LEGACY_CTX_SUPPORT
- bool "Nouveau legacy context support"
- depends on DRM_NOUVEAU
- select DRM_LEGACY
- default y
- help
- There was a version of the nouveau DDX that relied on legacy
- ctx ioctls not erroring out. But that was back in time a long
- ways, so offer a way to disable it now. For uapi compat with
- old nouveau ddx this should be on by default, but modern distros
- should consider turning it off.
-
config NOUVEAU_PLATFORM_DRIVER
bool "Nouveau (NVIDIA) SoC GPUs"
depends on DRM_NOUVEAU && ARCH_TEGRA
diff --git a/drivers/gpu/drm/nouveau/dispnv04/crtc.c b/drivers/gpu/drm/nouveau/dispnv04/crtc.c
index ee92d576d277..a6f2e681bde9 100644
--- a/drivers/gpu/drm/nouveau/dispnv04/crtc.c
+++ b/drivers/gpu/drm/nouveau/dispnv04/crtc.c
@@ -24,6 +24,7 @@
*/
#include <drm/drm_crtc_helper.h>
#include <drm/drm_fourcc.h>
+#include <drm/drm_modeset_helper_vtables.h>
#include <drm/drm_plane_helper.h>
#include <drm/drm_vblank.h>
@@ -37,7 +38,6 @@
#include "nouveau_crtc.h"
#include "hw.h"
#include "nvreg.h"
-#include "nouveau_fbcon.h"
#include "disp.h"
#include "nouveau_dma.h"
@@ -761,7 +761,8 @@ static void nv_crtc_destroy(struct drm_crtc *crtc)
nouveau_bo_unmap(nv_crtc->cursor.nvbo);
nouveau_bo_unpin(nv_crtc->cursor.nvbo);
nouveau_bo_ref(NULL, &nv_crtc->cursor.nvbo);
- nvif_notify_dtor(&nv_crtc->vblank);
+ nvif_event_dtor(&nv_crtc->vblank);
+ nvif_head_dtor(&nv_crtc->head);
kfree(nv_crtc);
}
@@ -914,14 +915,6 @@ nv04_crtc_mode_set_base_atomic(struct drm_crtc *crtc,
struct drm_framebuffer *fb,
int x, int y, enum mode_set_atomic state)
{
- struct nouveau_drm *drm = nouveau_drm(crtc->dev);
- struct drm_device *dev = drm->dev;
-
- if (state == ENTER_ATOMIC_MODE_SET)
- nouveau_fbcon_accel_save_disable(dev);
- else
- nouveau_fbcon_accel_restore(dev);
-
return nv04_crtc_do_mode_set_base(crtc, fb, x, y, true);
}
@@ -1080,10 +1073,10 @@ nv04_finish_page_flip(struct nouveau_channel *chan,
}
int
-nv04_flip_complete(struct nvif_notify *notify)
+nv04_flip_complete(struct nvif_event *event, void *argv, u32 argc)
{
- struct nouveau_cli *cli = (void *)notify->object->client;
- struct nouveau_drm *drm = cli->drm;
+ struct nv04_display *disp = container_of(event, typeof(*disp), flip);
+ struct nouveau_drm *drm = disp->drm;
struct nouveau_channel *chan = drm->channel;
struct nv04_page_flip_state state;
@@ -1094,7 +1087,7 @@ nv04_flip_complete(struct nvif_notify *notify)
state.bpp / 8);
}
- return NVIF_NOTIFY_KEEP;
+ return NVIF_EVENT_KEEP;
}
static int
@@ -1279,13 +1272,13 @@ static const struct drm_plane_funcs nv04_primary_plane_funcs = {
DRM_PLANE_NON_ATOMIC_FUNCS,
};
-static int nv04_crtc_vblank_handler(struct nvif_notify *notify)
+static int
+nv04_crtc_vblank_handler(struct nvif_event *event, void *repv, u32 repc)
{
- struct nouveau_crtc *nv_crtc =
- container_of(notify, struct nouveau_crtc, vblank);
+ struct nouveau_crtc *nv_crtc = container_of(event, struct nouveau_crtc, vblank);
drm_crtc_handle_vblank(&nv_crtc->base);
- return NVIF_NOTIFY_KEEP;
+ return NVIF_EVENT_KEEP;
}
int
@@ -1341,14 +1334,10 @@ nv04_crtc_create(struct drm_device *dev, int crtc_num)
nv04_cursor_init(nv_crtc);
- ret = nvif_notify_ctor(&disp->disp.object, "kmsVbl", nv04_crtc_vblank_handler,
- false, NV04_DISP_NTFY_VBLANK,
- &(struct nvif_notify_head_req_v0) {
- .head = nv_crtc->index,
- },
- sizeof(struct nvif_notify_head_req_v0),
- sizeof(struct nvif_notify_head_rep_v0),
- &nv_crtc->vblank);
+ ret = nvif_head_ctor(&disp->disp, nv_crtc->base.name, nv_crtc->index, &nv_crtc->head);
+ if (ret)
+ return ret;
- return ret;
+ return nvif_head_vblank_event_ctor(&nv_crtc->head, "kmsVbl", nv04_crtc_vblank_handler,
+ false, &nv_crtc->vblank);
}
diff --git a/drivers/gpu/drm/nouveau/dispnv04/dac.c b/drivers/gpu/drm/nouveau/dispnv04/dac.c
index 22d10f328559..d6b8e0cce2ac 100644
--- a/drivers/gpu/drm/nouveau/dispnv04/dac.c
+++ b/drivers/gpu/drm/nouveau/dispnv04/dac.c
@@ -24,7 +24,7 @@
* DEALINGS IN THE SOFTWARE.
*/
-#include <drm/drm_crtc_helper.h>
+#include <drm/drm_modeset_helper_vtables.h>
#include "nouveau_drv.h"
#include "nouveau_encoder.h"
diff --git a/drivers/gpu/drm/nouveau/dispnv04/dfp.c b/drivers/gpu/drm/nouveau/dispnv04/dfp.c
index ce3d8c6ef000..d5b129dc623b 100644
--- a/drivers/gpu/drm/nouveau/dispnv04/dfp.c
+++ b/drivers/gpu/drm/nouveau/dispnv04/dfp.c
@@ -24,8 +24,8 @@
* DEALINGS IN THE SOFTWARE.
*/
-#include <drm/drm_crtc_helper.h>
#include <drm/drm_fourcc.h>
+#include <drm/drm_modeset_helper_vtables.h>
#include "nouveau_drv.h"
#include "nouveau_reg.h"
diff --git a/drivers/gpu/drm/nouveau/dispnv04/disp.c b/drivers/gpu/drm/nouveau/dispnv04/disp.c
index 99fee4d8cd31..e9ac3fb27ff7 100644
--- a/drivers/gpu/drm/nouveau/dispnv04/disp.c
+++ b/drivers/gpu/drm/nouveau/dispnv04/disp.c
@@ -61,7 +61,7 @@ nv04_display_fini(struct drm_device *dev, bool runtime, bool suspend)
struct drm_crtc *crtc;
/* Disable flip completion events. */
- nvif_notify_put(&disp->flip);
+ nvif_event_block(&disp->flip);
/* Disable vblank interrupts. */
NVWriteCRTC(dev, 0, NV_PCRTC_INTR_EN_0, 0);
@@ -121,7 +121,7 @@ nv04_display_init(struct drm_device *dev, bool resume, bool runtime)
encoder->enc_save(&encoder->base.base);
/* Enable flip completion events. */
- nvif_notify_get(&disp->flip);
+ nvif_event_allow(&disp->flip);
if (!resume)
return 0;
@@ -202,7 +202,7 @@ nv04_display_destroy(struct drm_device *dev)
nouveau_hw_save_vga_fonts(dev, 0);
- nvif_notify_dtor(&disp->flip);
+ nvif_event_dtor(&disp->flip);
nouveau_display(dev)->priv = NULL;
vfree(disp);
@@ -227,6 +227,8 @@ nv04_display_create(struct drm_device *dev)
if (!disp)
return -ENOMEM;
+ disp->drm = drm;
+
nvif_object_map(&drm->client.device.object, NULL, 0);
nouveau_display(dev)->priv = disp;
@@ -239,9 +241,10 @@ nv04_display_create(struct drm_device *dev)
/* Request page flip completion event. */
if (drm->channel) {
- nvif_notify_ctor(&drm->channel->nvsw, "kmsFlip", nv04_flip_complete,
- false, NV04_NVSW_NTFY_UEVENT,
- NULL, 0, 0, &disp->flip);
+ ret = nvif_event_ctor(&drm->channel->nvsw, "kmsFlip", 0, nv04_flip_complete,
+ true, NULL, 0, &disp->flip);
+ if (ret)
+ return ret;
}
nouveau_hw_save_vga_fonts(dev, 1);
diff --git a/drivers/gpu/drm/nouveau/dispnv04/disp.h b/drivers/gpu/drm/nouveau/dispnv04/disp.h
index f0a24126641a..11a6663758ec 100644
--- a/drivers/gpu/drm/nouveau/dispnv04/disp.h
+++ b/drivers/gpu/drm/nouveau/dispnv04/disp.h
@@ -6,6 +6,8 @@
#include "nouveau_display.h"
+#include <nvif/event.h>
+
struct nouveau_encoder;
enum nv04_fp_display_regs {
@@ -84,7 +86,8 @@ struct nv04_display {
uint32_t saved_vga_font[4][16384];
uint32_t dac_users[4];
struct nouveau_bo *image[2];
- struct nvif_notify flip;
+ struct nvif_event flip;
+ struct nouveau_drm *drm;
};
static inline struct nv04_display *
@@ -179,5 +182,5 @@ nouveau_bios_run_init_table(struct drm_device *dev, u16 table,
);
}
-int nv04_flip_complete(struct nvif_notify *);
+int nv04_flip_complete(struct nvif_event *, void *, u32);
#endif
diff --git a/drivers/gpu/drm/nouveau/dispnv04/tvmodesnv17.c b/drivers/gpu/drm/nouveau/dispnv04/tvmodesnv17.c
index 2f6d2b6711ab..a3fedd226854 100644
--- a/drivers/gpu/drm/nouveau/dispnv04/tvmodesnv17.c
+++ b/drivers/gpu/drm/nouveau/dispnv04/tvmodesnv17.c
@@ -24,7 +24,6 @@
*
*/
-#include <drm/drm_crtc_helper.h>
#include "nouveau_drv.h"
#include "nouveau_encoder.h"
#include "nouveau_crtc.h"
diff --git a/drivers/gpu/drm/nouveau/dispnv04/tvnv04.c b/drivers/gpu/drm/nouveau/dispnv04/tvnv04.c
index 3ba7b59580d5..de3ea731d6e6 100644
--- a/drivers/gpu/drm/nouveau/dispnv04/tvnv04.c
+++ b/drivers/gpu/drm/nouveau/dispnv04/tvnv04.c
@@ -30,7 +30,7 @@
#include "nouveau_connector.h"
#include "nouveau_crtc.h"
#include "hw.h"
-#include <drm/drm_crtc_helper.h>
+#include <drm/drm_modeset_helper_vtables.h>
#include <drm/i2c/ch7006.h>
diff --git a/drivers/gpu/drm/nouveau/dispnv04/tvnv17.c b/drivers/gpu/drm/nouveau/dispnv04/tvnv17.c
index be28e7bd7490..670c9739e5e1 100644
--- a/drivers/gpu/drm/nouveau/dispnv04/tvnv17.c
+++ b/drivers/gpu/drm/nouveau/dispnv04/tvnv17.c
@@ -25,6 +25,7 @@
*/
#include <drm/drm_crtc_helper.h>
+#include <drm/drm_modeset_helper_vtables.h>
#include <drm/drm_probe_helper.h>
#include "nouveau_drv.h"
#include "nouveau_reg.h"
@@ -653,7 +654,7 @@ static int nv17_tv_create_resources(struct drm_encoder *encoder,
tv_enc->tv_norm = i;
}
- drm_mode_create_tv_properties(dev, num_tv_norms, nv17_tv_norm_names);
+ drm_mode_create_tv_properties_legacy(dev, num_tv_norms, nv17_tv_norm_names);
drm_object_attach_property(&connector->base,
conf->tv_select_subconnector_property,
@@ -662,7 +663,7 @@ static int nv17_tv_create_resources(struct drm_encoder *encoder,
conf->tv_subconnector_property,
tv_enc->subconnector);
drm_object_attach_property(&connector->base,
- conf->tv_mode_property,
+ conf->legacy_tv_mode_property,
tv_enc->tv_norm);
drm_object_attach_property(&connector->base,
conf->tv_flicker_reduction_property,
@@ -722,7 +723,7 @@ static int nv17_tv_set_property(struct drm_encoder *encoder,
if (encoder->crtc)
nv17_tv_update_rescaler(encoder);
- } else if (property == conf->tv_mode_property) {
+ } else if (property == conf->legacy_tv_mode_property) {
if (connector->dpms != DRM_MODE_DPMS_OFF)
return -EINVAL;
diff --git a/drivers/gpu/drm/nouveau/dispnv50/crc.c b/drivers/gpu/drm/nouveau/dispnv50/crc.c
index b834e8a9ae77..9c942fbd836d 100644
--- a/drivers/gpu/drm/nouveau/dispnv50/crc.c
+++ b/drivers/gpu/drm/nouveau/dispnv50/crc.c
@@ -463,7 +463,7 @@ void nv50_crc_atomic_set(struct nv50_head *head,
if (!outp)
return;
- func->set_src(head, outp->or, nv50_crc_source_type(outp, asyh->crc.src),
+ func->set_src(head, outp->outp.or.id, nv50_crc_source_type(outp, asyh->crc.src),
&crc->ctx[crc->ctx_idx]);
}
diff --git a/drivers/gpu/drm/nouveau/dispnv50/disp.c b/drivers/gpu/drm/nouveau/dispnv50/disp.c
index 33c97d510999..5bb777ff1313 100644
--- a/drivers/gpu/drm/nouveau/dispnv50/disp.c
+++ b/drivers/gpu/drm/nouveau/dispnv50/disp.c
@@ -46,8 +46,8 @@
#include <nvif/class.h>
#include <nvif/cl0002.h>
-#include <nvif/cl5070.h>
#include <nvif/event.h>
+#include <nvif/if0012.h>
#include <nvif/if0014.h>
#include <nvif/timer.h>
@@ -64,7 +64,6 @@
#include "nouveau_connector.h"
#include "nouveau_encoder.h"
#include "nouveau_fence.h"
-#include "nouveau_fbcon.h"
#include <subdev/bios/dp.h>
@@ -131,7 +130,7 @@ nv50_dmac_kick(struct nvif_push *push)
{
struct nv50_dmac *dmac = container_of(push, typeof(*dmac), _push);
- dmac->cur = push->cur - (u32 *)dmac->_push.mem.object.map.ptr;
+ dmac->cur = push->cur - (u32 __iomem *)dmac->_push.mem.object.map.ptr;
if (dmac->put != dmac->cur) {
/* Push buffer fetches are not coherent with BAR1, we need to ensure
* writes have been flushed right through to VRAM before writing PUT.
@@ -194,7 +193,7 @@ nv50_dmac_wait(struct nvif_push *push, u32 size)
if (WARN_ON(size > dmac->max))
return -EINVAL;
- dmac->cur = push->cur - (u32 *)dmac->_push.mem.object.map.ptr;
+ dmac->cur = push->cur - (u32 __iomem *)dmac->_push.mem.object.map.ptr;
if (dmac->cur + size >= dmac->max) {
int ret = nv50_dmac_wind(dmac);
if (ret)
@@ -317,52 +316,6 @@ nv50_outp_dump_caps(struct nouveau_drm *drm,
outp->base.base.name, outp->caps.dp_interlace);
}
-static void
-nv50_outp_release(struct nouveau_encoder *nv_encoder)
-{
- struct nv50_disp *disp = nv50_disp(nv_encoder->base.base.dev);
- struct {
- struct nv50_disp_mthd_v1 base;
- } args = {
- .base.version = 1,
- .base.method = NV50_DISP_MTHD_V1_RELEASE,
- .base.hasht = nv_encoder->dcb->hasht,
- .base.hashm = nv_encoder->dcb->hashm,
- };
-
- nvif_mthd(&disp->disp->object, 0, &args, sizeof(args));
- nv_encoder->or = -1;
- nv_encoder->link = 0;
-}
-
-static int
-nv50_outp_acquire(struct nouveau_encoder *nv_encoder, bool hda)
-{
- struct nouveau_drm *drm = nouveau_drm(nv_encoder->base.base.dev);
- struct nv50_disp *disp = nv50_disp(drm->dev);
- struct {
- struct nv50_disp_mthd_v1 base;
- struct nv50_disp_acquire_v0 info;
- } args = {
- .base.version = 1,
- .base.method = NV50_DISP_MTHD_V1_ACQUIRE,
- .base.hasht = nv_encoder->dcb->hasht,
- .base.hashm = nv_encoder->dcb->hashm,
- .info.hda = hda,
- };
- int ret;
-
- ret = nvif_mthd(&disp->disp->object, 0, &args, sizeof(args));
- if (ret) {
- NV_ERROR(drm, "error acquiring output path: %d\n", ret);
- return ret;
- }
-
- nv_encoder->or = args.info.or;
- nv_encoder->link = args.info.link;
- return 0;
-}
-
static int
nv50_outp_atomic_check_view(struct drm_encoder *encoder,
struct drm_crtc_state *crtc_state,
@@ -410,6 +363,35 @@ nv50_outp_atomic_check_view(struct drm_encoder *encoder,
return 0;
}
+static void
+nv50_outp_atomic_fix_depth(struct drm_encoder *encoder, struct drm_crtc_state *crtc_state)
+{
+ struct nv50_head_atom *asyh = nv50_head_atom(crtc_state);
+ struct nouveau_encoder *nv_encoder = nouveau_encoder(encoder);
+ struct drm_display_mode *mode = &asyh->state.adjusted_mode;
+ unsigned int max_rate, mode_rate;
+
+ switch (nv_encoder->dcb->type) {
+ case DCB_OUTPUT_DP:
+ max_rate = nv_encoder->dp.link_nr * nv_encoder->dp.link_bw;
+
+ /* we don't support more than 10 anyway */
+ asyh->or.bpc = min_t(u8, asyh->or.bpc, 10);
+
+ /* reduce the bpc until it works out */
+ while (asyh->or.bpc > 6) {
+ mode_rate = DIV_ROUND_UP(mode->clock * asyh->or.bpc * 3, 8);
+ if (mode_rate <= max_rate)
+ break;
+
+ asyh->or.bpc -= 2;
+ }
+ break;
+ default:
+ break;
+ }
+}
+
static int
nv50_outp_atomic_check(struct drm_encoder *encoder,
struct drm_crtc_state *crtc_state,
@@ -428,6 +410,9 @@ nv50_outp_atomic_check(struct drm_encoder *encoder,
if (crtc_state->mode_changed || crtc_state->connectors_changed)
asyh->or.bpc = connector->display_info.bpc;
+ /* We might have to reduce the bpc */
+ nv50_outp_atomic_fix_depth(encoder, crtc_state);
+
return 0;
}
@@ -489,9 +474,9 @@ nv50_dac_atomic_disable(struct drm_encoder *encoder, struct drm_atomic_state *st
struct nv50_core *core = nv50_disp(encoder->dev)->core;
const u32 ctrl = NVDEF(NV507D, DAC_SET_CONTROL, OWNER, NONE);
- core->func->dac->ctrl(core, nv_encoder->or, ctrl, NULL);
+ core->func->dac->ctrl(core, nv_encoder->outp.or.id, ctrl, NULL);
nv_encoder->crtc = NULL;
- nv50_outp_release(nv_encoder);
+ nvif_outp_release(&nv_encoder->outp);
}
static void
@@ -516,9 +501,9 @@ nv50_dac_atomic_enable(struct drm_encoder *encoder, struct drm_atomic_state *sta
ctrl |= NVDEF(NV507D, DAC_SET_CONTROL, PROTOCOL, RGB_CRT);
- nv50_outp_acquire(nv_encoder, false);
+ nvif_outp_acquire_rgb_crt(&nv_encoder->outp);
- core->func->dac->ctrl(core, nv_encoder->or, ctrl, asyh);
+ core->func->dac->ctrl(core, nv_encoder->outp.or.id, ctrl, asyh);
asyh->or.depth = 0;
nv_encoder->crtc = &nv_crtc->base;
@@ -634,7 +619,7 @@ nv50_audio_component_get_eld(struct device *kdev, int port, int dev_id,
nv_connector = nouveau_connector(nv_encoder->audio.connector);
nv_crtc = nouveau_crtc(nv_encoder->crtc);
- if (!nv_crtc || nv_encoder->or != port || nv_crtc->index != dev_id)
+ if (!nv_crtc || nv_encoder->outp.or.id != port || nv_crtc->index != dev_id)
continue;
*enabled = nv_encoder->audio.enabled;
@@ -718,33 +703,37 @@ nv50_audio_component_fini(struct nouveau_drm *drm)
/******************************************************************************
* Audio
*****************************************************************************/
+static bool
+nv50_audio_supported(struct drm_encoder *encoder)
+{
+ struct nv50_disp *disp = nv50_disp(encoder->dev);
+
+ if (disp->disp->object.oclass <= GT200_DISP ||
+ disp->disp->object.oclass == GT206_DISP)
+ return false;
+
+ return true;
+}
+
static void
nv50_audio_disable(struct drm_encoder *encoder, struct nouveau_crtc *nv_crtc)
{
struct nouveau_drm *drm = nouveau_drm(encoder->dev);
struct nouveau_encoder *nv_encoder = nouveau_encoder(encoder);
- struct nv50_disp *disp = nv50_disp(encoder->dev);
- struct {
- struct nv50_disp_mthd_v1 base;
- struct nv50_disp_sor_hda_eld_v0 eld;
- } args = {
- .base.version = 1,
- .base.method = NV50_DISP_MTHD_V1_SOR_HDA_ELD,
- .base.hasht = nv_encoder->dcb->hasht,
- .base.hashm = (0xf0ff & nv_encoder->dcb->hashm) |
- (0x0100 << nv_crtc->index),
- };
+ struct nvif_outp *outp = &nv_encoder->outp;
+
+ if (!nv50_audio_supported(encoder))
+ return;
mutex_lock(&drm->audio.lock);
if (nv_encoder->audio.enabled) {
nv_encoder->audio.enabled = false;
nv_encoder->audio.connector = NULL;
- nvif_mthd(&disp->disp->object, 0, &args, sizeof(args));
+ nvif_outp_hda_eld(&nv_encoder->outp, nv_crtc->index, NULL, 0);
}
mutex_unlock(&drm->audio.lock);
- nv50_audio_component_eld_notify(drm->audio.component, nv_encoder->or,
- nv_crtc->index);
+ nv50_audio_component_eld_notify(drm->audio.component, outp->or.id, nv_crtc->index);
}
static void
@@ -754,159 +743,101 @@ nv50_audio_enable(struct drm_encoder *encoder, struct nouveau_crtc *nv_crtc,
{
struct nouveau_drm *drm = nouveau_drm(encoder->dev);
struct nouveau_encoder *nv_encoder = nouveau_encoder(encoder);
- struct nv50_disp *disp = nv50_disp(encoder->dev);
- struct __packed {
- struct {
- struct nv50_disp_mthd_v1 mthd;
- struct nv50_disp_sor_hda_eld_v0 eld;
- } base;
- u8 data[sizeof(nv_connector->base.eld)];
- } args = {
- .base.mthd.version = 1,
- .base.mthd.method = NV50_DISP_MTHD_V1_SOR_HDA_ELD,
- .base.mthd.hasht = nv_encoder->dcb->hasht,
- .base.mthd.hashm = (0xf0ff & nv_encoder->dcb->hashm) |
- (0x0100 << nv_crtc->index),
- };
-
- if (!drm_detect_monitor_audio(nv_connector->edid))
+ struct nvif_outp *outp = &nv_encoder->outp;
+
+ if (!nv50_audio_supported(encoder) || !drm_detect_monitor_audio(nv_connector->edid))
return;
mutex_lock(&drm->audio.lock);
- memcpy(args.data, nv_connector->base.eld, sizeof(args.data));
-
- nvif_mthd(&disp->disp->object, 0, &args,
- sizeof(args.base) + drm_eld_size(args.data));
+ nvif_outp_hda_eld(&nv_encoder->outp, nv_crtc->index, nv_connector->base.eld,
+ drm_eld_size(nv_connector->base.eld));
nv_encoder->audio.enabled = true;
nv_encoder->audio.connector = &nv_connector->base;
mutex_unlock(&drm->audio.lock);
- nv50_audio_component_eld_notify(drm->audio.component, nv_encoder->or,
- nv_crtc->index);
+ nv50_audio_component_eld_notify(drm->audio.component, outp->or.id, nv_crtc->index);
}
/******************************************************************************
* HDMI
*****************************************************************************/
static void
-nv50_hdmi_disable(struct drm_encoder *encoder, struct nouveau_crtc *nv_crtc)
-{
- struct nouveau_encoder *nv_encoder = nouveau_encoder(encoder);
- struct nv50_disp *disp = nv50_disp(encoder->dev);
- struct {
- struct nv50_disp_mthd_v1 base;
- struct nv50_disp_sor_hdmi_pwr_v0 pwr;
- } args = {
- .base.version = 1,
- .base.method = NV50_DISP_MTHD_V1_SOR_HDMI_PWR,
- .base.hasht = nv_encoder->dcb->hasht,
- .base.hashm = (0xf0ff & nv_encoder->dcb->hashm) |
- (0x0100 << nv_crtc->index),
- };
-
- nvif_mthd(&disp->disp->object, 0, &args, sizeof(args));
-}
-
-static void
nv50_hdmi_enable(struct drm_encoder *encoder, struct nouveau_crtc *nv_crtc,
struct nouveau_connector *nv_connector, struct drm_atomic_state *state,
- struct drm_display_mode *mode)
+ struct drm_display_mode *mode, bool hda)
{
struct nouveau_drm *drm = nouveau_drm(encoder->dev);
struct nouveau_encoder *nv_encoder = nouveau_encoder(encoder);
- struct nv50_disp *disp = nv50_disp(encoder->dev);
- struct {
- struct nv50_disp_mthd_v1 base;
- struct nv50_disp_sor_hdmi_pwr_v0 pwr;
- u8 infoframes[2 * 17]; /* two frames, up to 17 bytes each */
- } args = {
- .base.version = 1,
- .base.method = NV50_DISP_MTHD_V1_SOR_HDMI_PWR,
- .base.hasht = nv_encoder->dcb->hasht,
- .base.hashm = (0xf0ff & nv_encoder->dcb->hashm) |
- (0x0100 << nv_crtc->index),
- .pwr.state = 1,
- .pwr.rekey = 56, /* binary driver, and tegra, constant */
- };
- struct drm_hdmi_info *hdmi;
+ struct drm_hdmi_info *hdmi = &nv_connector->base.display_info.hdmi;
+ union hdmi_infoframe infoframe = { 0 };
+ const u8 rekey = 56; /* binary driver, and tegra, constant */
+ u8 scdc = 0;
u32 max_ac_packet;
- union hdmi_infoframe avi_frame;
- union hdmi_infoframe vendor_frame;
- bool high_tmds_clock_ratio = false, scrambling = false;
- u8 config;
- int ret;
- int size;
-
- if (!drm_detect_hdmi_monitor(nv_connector->edid))
- return;
-
- hdmi = &nv_connector->base.display_info.hdmi;
-
- ret = drm_hdmi_avi_infoframe_from_display_mode(&avi_frame.avi,
- &nv_connector->base, mode);
- if (!ret) {
- drm_hdmi_avi_infoframe_quant_range(&avi_frame.avi,
- &nv_connector->base, mode,
- HDMI_QUANTIZATION_RANGE_FULL);
- /* We have an AVI InfoFrame, populate it to the display */
- args.pwr.avi_infoframe_length
- = hdmi_infoframe_pack(&avi_frame, args.infoframes, 17);
- }
-
- ret = drm_hdmi_vendor_infoframe_from_display_mode(&vendor_frame.vendor.hdmi,
- &nv_connector->base, mode);
- if (!ret) {
- /* We have a Vendor InfoFrame, populate it to the display */
- args.pwr.vendor_infoframe_length
- = hdmi_infoframe_pack(&vendor_frame,
- args.infoframes
- + args.pwr.avi_infoframe_length,
- 17);
- }
+ struct {
+ struct nvif_outp_infoframe_v0 infoframe;
+ u8 data[17];
+ } args = { 0 };
+ int ret, size;
max_ac_packet = mode->htotal - mode->hdisplay;
- max_ac_packet -= args.pwr.rekey;
+ max_ac_packet -= rekey;
max_ac_packet -= 18; /* constant from tegra */
- args.pwr.max_ac_packet = max_ac_packet / 32;
+ max_ac_packet /= 32;
if (hdmi->scdc.scrambling.supported) {
- high_tmds_clock_ratio = mode->clock > 340000;
- scrambling = high_tmds_clock_ratio ||
- hdmi->scdc.scrambling.low_rates;
- }
+ const bool high_tmds_clock_ratio = mode->clock > 340000;
- args.pwr.scdc =
- NV50_DISP_SOR_HDMI_PWR_V0_SCDC_SCRAMBLE * scrambling |
- NV50_DISP_SOR_HDMI_PWR_V0_SCDC_DIV_BY_4 * high_tmds_clock_ratio;
+ ret = drm_scdc_readb(nv_encoder->i2c, SCDC_TMDS_CONFIG, &scdc);
+ if (ret < 0) {
+ NV_ERROR(drm, "Failure to read SCDC_TMDS_CONFIG: %d\n", ret);
+ return;
+ }
- size = sizeof(args.base)
- + sizeof(args.pwr)
- + args.pwr.avi_infoframe_length
- + args.pwr.vendor_infoframe_length;
- nvif_mthd(&disp->disp->object, 0, &args, size);
+ scdc &= ~(SCDC_TMDS_BIT_CLOCK_RATIO_BY_40 | SCDC_SCRAMBLING_ENABLE);
+ if (high_tmds_clock_ratio || hdmi->scdc.scrambling.low_rates)
+ scdc |= SCDC_SCRAMBLING_ENABLE;
+ if (high_tmds_clock_ratio)
+ scdc |= SCDC_TMDS_BIT_CLOCK_RATIO_BY_40;
- nv50_audio_enable(encoder, nv_crtc, nv_connector, state, mode);
+ ret = drm_scdc_writeb(nv_encoder->i2c, SCDC_TMDS_CONFIG, scdc);
+ if (ret < 0)
+ NV_ERROR(drm, "Failure to write SCDC_TMDS_CONFIG = 0x%02x: %d\n",
+ scdc, ret);
+ }
- /* If SCDC is supported by the downstream monitor, update
- * divider / scrambling settings to what we programmed above.
- */
- if (!hdmi->scdc.scrambling.supported)
+ ret = nvif_outp_acquire_tmds(&nv_encoder->outp, nv_crtc->index, true,
+ max_ac_packet, rekey, scdc, hda);
+ if (ret)
return;
- ret = drm_scdc_readb(nv_encoder->i2c, SCDC_TMDS_CONFIG, &config);
- if (ret < 0) {
- NV_ERROR(drm, "Failure to read SCDC_TMDS_CONFIG: %d\n", ret);
- return;
+ /* AVI InfoFrame. */
+ args.infoframe.version = 0;
+ args.infoframe.head = nv_crtc->index;
+
+ if (!drm_hdmi_avi_infoframe_from_display_mode(&infoframe.avi, &nv_connector->base, mode)) {
+ drm_hdmi_avi_infoframe_quant_range(&infoframe.avi, &nv_connector->base, mode,
+ HDMI_QUANTIZATION_RANGE_FULL);
+
+ size = hdmi_infoframe_pack(&infoframe, args.data, ARRAY_SIZE(args.data));
+ } else {
+ size = 0;
}
- config &= ~(SCDC_TMDS_BIT_CLOCK_RATIO_BY_40 | SCDC_SCRAMBLING_ENABLE);
- config |= SCDC_TMDS_BIT_CLOCK_RATIO_BY_40 * high_tmds_clock_ratio;
- config |= SCDC_SCRAMBLING_ENABLE * scrambling;
- ret = drm_scdc_writeb(nv_encoder->i2c, SCDC_TMDS_CONFIG, config);
- if (ret < 0)
- NV_ERROR(drm, "Failure to write SCDC_TMDS_CONFIG = 0x%02x: %d\n",
- config, ret);
+
+ nvif_outp_infoframe(&nv_encoder->outp, NVIF_OUTP_INFOFRAME_V0_AVI, &args.infoframe, size);
+
+ /* Vendor InfoFrame. */
+ memset(&args.data, 0, sizeof(args.data));
+ if (!drm_hdmi_vendor_infoframe_from_display_mode(&infoframe.vendor.hdmi,
+ &nv_connector->base, mode))
+ size = hdmi_infoframe_pack(&infoframe, args.data, ARRAY_SIZE(args.data));
+ else
+ size = 0;
+
+ nvif_outp_infoframe(&nv_encoder->outp, NVIF_OUTP_INFOFRAME_V0_VSI, &args.infoframe, size);
+
+ nv50_audio_enable(encoder, nv_crtc, nv_connector, state, mode);
}
/******************************************************************************
@@ -979,16 +910,6 @@ nv50_msto_prepare(struct drm_atomic_state *state,
struct nv50_mstc *mstc = msto->mstc;
struct nv50_mstm *mstm = mstc->mstm;
struct drm_dp_mst_atomic_payload *payload;
- struct {
- struct nv50_disp_mthd_v1 base;
- struct nv50_disp_sor_dp_mst_vcpi_v0 vcpi;
- } args = {
- .base.version = 1,
- .base.method = NV50_DISP_MTHD_V1_SOR_DP_MST_VCPI,
- .base.hasht = mstm->outp->dcb->hasht,
- .base.hashm = (0xf0ff & mstm->outp->dcb->hashm) |
- (0x0100 << msto->head->base.index),
- };
NV_ATOMIC(drm, "%s: msto prepare\n", msto->encoder.name);
@@ -996,23 +917,17 @@ nv50_msto_prepare(struct drm_atomic_state *state,
// TODO: Figure out if we want to do a better job of handling VCPI allocation failures here?
if (msto->disabled) {
- drm_dp_remove_payload(mgr, mst_state, payload);
+ drm_dp_remove_payload(mgr, mst_state, payload, payload);
+
+ nvif_outp_dp_mst_vcpi(&mstm->outp->outp, msto->head->base.index, 0, 0, 0, 0);
} else {
if (msto->enabled)
drm_dp_add_payload_part1(mgr, mst_state, payload);
- args.vcpi.start_slot = payload->vc_start_slot;
- args.vcpi.num_slots = payload->time_slots;
- args.vcpi.pbn = payload->pbn;
- args.vcpi.aligned_pbn = payload->time_slots * mst_state->pbn_div;
+ nvif_outp_dp_mst_vcpi(&mstm->outp->outp, msto->head->base.index,
+ payload->vc_start_slot, payload->time_slots,
+ payload->pbn, payload->time_slots * mst_state->pbn_div);
}
-
- NV_ATOMIC(drm, "%s: %s: %02x %02x %04x %04x\n",
- msto->encoder.name, msto->head->base.base.name,
- args.vcpi.start_slot, args.vcpi.num_slots,
- args.vcpi.pbn, args.vcpi.aligned_pbn);
-
- nvif_mthd(&drm->display->disp.object, 0, &args, sizeof(args));
}
static int
@@ -1107,10 +1022,12 @@ nv50_msto_atomic_enable(struct drm_encoder *encoder, struct drm_atomic_state *st
if (WARN_ON(!mstc))
return;
- if (!mstm->links++)
- nv50_outp_acquire(mstm->outp, false /*XXX: MST audio.*/);
+ if (!mstm->links++) {
+ /*XXX: MST audio. */
+ nvif_outp_acquire_dp(&mstm->outp->outp, mstm->outp->dp.dpcd, 0, 0, false, true);
+ }
- if (mstm->outp->link & 1)
+ if (mstm->outp->outp.or.link & 1)
proto = NV917D_SOR_SET_CONTROL_PROTOCOL_DP_A;
else
proto = NV917D_SOR_SET_CONTROL_PROTOCOL_DP_B;
@@ -1405,7 +1322,7 @@ nv50_mstm_prepare(struct drm_atomic_state *state,
if (mstm->disabled) {
if (!mstm->links)
- nv50_outp_release(mstm->outp);
+ nvif_outp_release(&mstm->outp->outp);
mstm->disabled = false;
}
}
@@ -1473,26 +1390,6 @@ nv50_mstm_remove(struct nv50_mstm *mstm)
drm_dp_mst_topology_mgr_set_mst(&mstm->mgr, false);
}
-static int
-nv50_mstm_enable(struct nv50_mstm *mstm, int state)
-{
- struct nouveau_encoder *outp = mstm->outp;
- struct {
- struct nv50_disp_mthd_v1 base;
- struct nv50_disp_sor_dp_mst_link_v0 mst;
- } args = {
- .base.version = 1,
- .base.method = NV50_DISP_MTHD_V1_SOR_DP_MST_LINK,
- .base.hasht = outp->dcb->hasht,
- .base.hashm = outp->dcb->hashm,
- .mst.state = state,
- };
- struct nouveau_drm *drm = nouveau_drm(outp->base.base.dev);
- struct nvif_object *disp = &drm->display->disp.object;
-
- return nvif_mthd(disp, 0, &args, sizeof(args));
-}
-
int
nv50_mstm_detect(struct nouveau_encoder *outp)
{
@@ -1513,15 +1410,9 @@ nv50_mstm_detect(struct nouveau_encoder *outp)
return ret;
/* And start enabling */
- ret = nv50_mstm_enable(mstm, true);
- if (ret)
- return ret;
-
ret = drm_dp_mst_topology_mgr_set_mst(&mstm->mgr, true);
- if (ret) {
- nv50_mstm_enable(mstm, false);
+ if (ret)
return ret;
- }
mstm->is_mst = true;
return 1;
@@ -1623,7 +1514,7 @@ nv50_sor_update(struct nouveau_encoder *nv_encoder, u8 head,
asyh->or.depth = depth;
}
- core->func->sor->ctrl(core, nv_encoder->or, nv_encoder->ctrl, asyh);
+ core->func->sor->ctrl(core, nv_encoder->outp.or.id, nv_encoder->ctrl, asyh);
}
/* TODO: Should we extend this to PWM-only backlights?
@@ -1666,8 +1557,7 @@ nv50_sor_atomic_disable(struct drm_encoder *encoder, struct drm_atomic_state *st
nv_encoder->update(nv_encoder, nv_crtc->index, NULL, 0, 0);
nv50_audio_disable(encoder, nv_crtc);
- nv50_hdmi_disable(&nv_encoder->base.base, nv_crtc);
- nv50_outp_release(nv_encoder);
+ nvif_outp_release(&nv_encoder->outp);
nv_encoder->crtc = NULL;
}
@@ -1679,16 +1569,8 @@ nv50_sor_atomic_enable(struct drm_encoder *encoder, struct drm_atomic_state *sta
struct nv50_head_atom *asyh =
nv50_head_atom(drm_atomic_get_new_crtc_state(state, &nv_crtc->base));
struct drm_display_mode *mode = &asyh->state.adjusted_mode;
- struct {
- struct nv50_disp_mthd_v1 base;
- struct nv50_disp_sor_lvds_script_v0 lvds;
- } lvds = {
- .base.version = 1,
- .base.method = NV50_DISP_MTHD_V1_SOR_LVDS_SCRIPT,
- .base.hasht = nv_encoder->dcb->hasht,
- .base.hashm = nv_encoder->dcb->hashm,
- };
struct nv50_disp *disp = nv50_disp(encoder->dev);
+ struct nvif_outp *outp = &nv_encoder->outp;
struct drm_device *dev = encoder->dev;
struct nouveau_drm *drm = nouveau_drm(dev);
struct nouveau_connector *nv_connector;
@@ -1696,7 +1578,7 @@ nv50_sor_atomic_enable(struct drm_encoder *encoder, struct drm_atomic_state *sta
struct nouveau_backlight *backlight;
#endif
struct nvbios *bios = &drm->vbios;
- bool hda = false;
+ bool lvds_dual = false, lvds_8bpc = false, hda = false;
u8 proto = NV507D_SOR_SET_CONTROL_PROTOCOL_CUSTOM;
u8 depth = NV837D_SOR_SET_CONTROL_PIXEL_DEPTH_DEFAULT;
@@ -1707,11 +1589,16 @@ nv50_sor_atomic_enable(struct drm_encoder *encoder, struct drm_atomic_state *sta
disp->disp->object.oclass >= GF110_DISP) &&
drm_detect_monitor_audio(nv_connector->edid))
hda = true;
- nv50_outp_acquire(nv_encoder, hda);
switch (nv_encoder->dcb->type) {
case DCB_OUTPUT_TMDS:
- if (nv_encoder->link & 1) {
+ if (disp->disp->object.oclass == NV50_DISP ||
+ !drm_detect_hdmi_monitor(nv_connector->edid))
+ nvif_outp_acquire_tmds(outp, nv_crtc->index, false, 0, 0, 0, false);
+ else
+ nv50_hdmi_enable(encoder, nv_crtc, nv_connector, state, mode, hda);
+
+ if (nv_encoder->outp.or.link & 1) {
proto = NV507D_SOR_SET_CONTROL_PROTOCOL_SINGLE_TMDS_A;
/* Only enable dual-link if:
* - Need to (i.e. rate > 165MHz)
@@ -1726,44 +1613,41 @@ nv50_sor_atomic_enable(struct drm_encoder *encoder, struct drm_atomic_state *sta
} else {
proto = NV507D_SOR_SET_CONTROL_PROTOCOL_SINGLE_TMDS_B;
}
-
- nv50_hdmi_enable(&nv_encoder->base.base, nv_crtc, nv_connector, state, mode);
break;
case DCB_OUTPUT_LVDS:
proto = NV507D_SOR_SET_CONTROL_PROTOCOL_LVDS_CUSTOM;
if (bios->fp_no_ddc) {
- if (bios->fp.dual_link)
- lvds.lvds.script |= 0x0100;
- if (bios->fp.if_is_24bit)
- lvds.lvds.script |= 0x0200;
+ lvds_dual = bios->fp.dual_link;
+ lvds_8bpc = bios->fp.if_is_24bit;
} else {
if (nv_connector->type == DCB_CONNECTOR_LVDS_SPWG) {
if (((u8 *)nv_connector->edid)[121] == 2)
- lvds.lvds.script |= 0x0100;
+ lvds_dual = true;
} else
if (mode->clock >= bios->fp.duallink_transition_clk) {
- lvds.lvds.script |= 0x0100;
+ lvds_dual = true;
}
- if (lvds.lvds.script & 0x0100) {
+ if (lvds_dual) {
if (bios->fp.strapless_is_24bit & 2)
- lvds.lvds.script |= 0x0200;
+ lvds_8bpc = true;
} else {
if (bios->fp.strapless_is_24bit & 1)
- lvds.lvds.script |= 0x0200;
+ lvds_8bpc = true;
}
if (asyh->or.bpc == 8)
- lvds.lvds.script |= 0x0200;
+ lvds_8bpc = true;
}
- nvif_mthd(&disp->disp->object, 0, &lvds, sizeof(lvds));
+ nvif_outp_acquire_lvds(&nv_encoder->outp, lvds_dual, lvds_8bpc);
break;
case DCB_OUTPUT_DP:
+ nvif_outp_acquire_dp(&nv_encoder->outp, nv_encoder->dp.dpcd, 0, 0, hda, false);
depth = nv50_dp_bpc_to_depth(asyh->or.bpc);
- if (nv_encoder->link & 1)
+ if (nv_encoder->outp.or.link & 1)
proto = NV887D_SOR_SET_CONTROL_PROTOCOL_DP_A;
else
proto = NV887D_SOR_SET_CONTROL_PROTOCOL_DP_B;
@@ -1921,9 +1805,9 @@ nv50_pior_atomic_disable(struct drm_encoder *encoder, struct drm_atomic_state *s
struct nv50_core *core = nv50_disp(encoder->dev)->core;
const u32 ctrl = NVDEF(NV507D, PIOR_SET_CONTROL, OWNER, NONE);
- core->func->pior->ctrl(core, nv_encoder->or, ctrl, NULL);
+ core->func->pior->ctrl(core, nv_encoder->outp.or.id, ctrl, NULL);
nv_encoder->crtc = NULL;
- nv50_outp_release(nv_encoder);
+ nvif_outp_release(&nv_encoder->outp);
}
static void
@@ -1944,8 +1828,6 @@ nv50_pior_atomic_enable(struct drm_encoder *encoder, struct drm_atomic_state *st
break;
}
- nv50_outp_acquire(nv_encoder, false);
-
switch (asyh->or.bpc) {
case 10: asyh->or.depth = NV837D_PIOR_SET_CONTROL_PIXEL_DEPTH_BPP_30_444; break;
case 8: asyh->or.depth = NV837D_PIOR_SET_CONTROL_PIXEL_DEPTH_BPP_24_444; break;
@@ -1955,15 +1837,19 @@ nv50_pior_atomic_enable(struct drm_encoder *encoder, struct drm_atomic_state *st
switch (nv_encoder->dcb->type) {
case DCB_OUTPUT_TMDS:
+ ctrl |= NVDEF(NV507D, PIOR_SET_CONTROL, PROTOCOL, EXT_TMDS_ENC);
+ nvif_outp_acquire_tmds(&nv_encoder->outp, false, false, 0, 0, 0, false);
+ break;
case DCB_OUTPUT_DP:
ctrl |= NVDEF(NV507D, PIOR_SET_CONTROL, PROTOCOL, EXT_TMDS_ENC);
+ nvif_outp_acquire_dp(&nv_encoder->outp, nv_encoder->dp.dpcd, 0, 0, false, false);
break;
default:
BUG();
break;
}
- core->func->pior->ctrl(core, nv_encoder->or, ctrl, asyh);
+ core->func->pior->ctrl(core, nv_encoder->outp.or.id, ctrl, asyh);
nv_encoder->crtc = &nv_crtc->base;
}
@@ -2587,7 +2473,7 @@ nv50_disp_atomic_state_alloc(struct drm_device *dev)
static const struct drm_mode_config_funcs
nv50_disp_func = {
.fb_create = nouveau_user_framebuffer_create,
- .output_poll_changed = nouveau_fbcon_output_poll_changed,
+ .output_poll_changed = drm_fb_helper_output_poll_changed,
.atomic_check = nv50_disp_atomic_check,
.atomic_commit = nv50_disp_atomic_commit,
.atomic_state_alloc = nv50_disp_atomic_state_alloc,
diff --git a/drivers/gpu/drm/nouveau/dispnv50/head.c b/drivers/gpu/drm/nouveau/dispnv50/head.c
index c3c57be54e1c..5f490fbf1877 100644
--- a/drivers/gpu/drm/nouveau/dispnv50/head.c
+++ b/drivers/gpu/drm/nouveau/dispnv50/head.c
@@ -32,7 +32,6 @@
#include <drm/drm_atomic.h>
#include <drm/drm_atomic_helper.h>
-#include <drm/drm_crtc_helper.h>
#include <drm/drm_vblank.h>
#include "nouveau_connector.h"
@@ -517,7 +516,8 @@ nv50_head_destroy(struct drm_crtc *crtc)
{
struct nv50_head *head = nv50_head(crtc);
- nvif_notify_dtor(&head->base.vblank);
+ nvif_event_dtor(&head->base.vblank);
+ nvif_head_dtor(&head->base.head);
nv50_lut_fini(&head->olut);
drm_crtc_cleanup(crtc);
kfree(head);
@@ -554,15 +554,15 @@ nvd9_head_func = {
.late_register = nv50_head_late_register,
};
-static int nv50_head_vblank_handler(struct nvif_notify *notify)
+static int
+nv50_head_vblank_handler(struct nvif_event *event, void *repv, u32 repc)
{
- struct nouveau_crtc *nv_crtc =
- container_of(notify, struct nouveau_crtc, vblank);
+ struct nouveau_crtc *nv_crtc = container_of(event, struct nouveau_crtc, vblank);
if (drm_crtc_handle_vblank(&nv_crtc->base))
nv50_crc_handle_vblank(nv50_head(&nv_crtc->base));
- return NVIF_NOTIFY_KEEP;
+ return NVIF_EVENT_KEEP;
}
struct nv50_head *
@@ -624,14 +624,12 @@ nv50_head_create(struct drm_device *dev, int index)
}
}
- ret = nvif_notify_ctor(&disp->disp->object, "kmsVbl", nv50_head_vblank_handler,
- false, NV04_DISP_NTFY_VBLANK,
- &(struct nvif_notify_head_req_v0) {
- .head = nv_crtc->index,
- },
- sizeof(struct nvif_notify_head_req_v0),
- sizeof(struct nvif_notify_head_rep_v0),
- &nv_crtc->vblank);
+ ret = nvif_head_ctor(disp->disp, head->base.base.name, head->base.index, &head->base.head);
+ if (ret)
+ return ERR_PTR(ret);
+
+ ret = nvif_head_vblank_event_ctor(&head->base.head, "kmsVbl", nv50_head_vblank_handler,
+ false, &nv_crtc->vblank);
if (ret)
return ERR_PTR(ret);
diff --git a/drivers/gpu/drm/nouveau/dispnv50/wndw.h b/drivers/gpu/drm/nouveau/dispnv50/wndw.h
index 591c852f326b..76a6ae5d5652 100644
--- a/drivers/gpu/drm/nouveau/dispnv50/wndw.h
+++ b/drivers/gpu/drm/nouveau/dispnv50/wndw.h
@@ -35,8 +35,9 @@ struct nv50_wndw {
int nv50_wndw_new_(const struct nv50_wndw_func *, struct drm_device *,
enum drm_plane_type, const char *name, int index,
- const u32 *format, enum nv50_disp_interlock_type,
- u32 interlock_data, u32 heads, struct nv50_wndw **);
+ const u32 *format, u32 heads,
+ enum nv50_disp_interlock_type, u32 interlock_data,
+ struct nv50_wndw **);
void nv50_wndw_flush_set(struct nv50_wndw *, u32 *interlock,
struct nv50_wndw_atom *);
void nv50_wndw_flush_clr(struct nv50_wndw *, u32 *interlock, bool flush,
diff --git a/drivers/gpu/drm/nouveau/include/nvfw/acr.h b/drivers/gpu/drm/nouveau/include/nvfw/acr.h
index e65d6a8db104..6f19560bc54b 100644
--- a/drivers/gpu/drm/nouveau/include/nvfw/acr.h
+++ b/drivers/gpu/drm/nouveau/include/nvfw/acr.h
@@ -39,6 +39,23 @@ struct wpr_header_v1 {
void wpr_header_v1_dump(struct nvkm_subdev *, const struct wpr_header_v1 *);
+struct wpr_generic_header {
+#define WPR_GENERIC_HEADER_ID_LSF_UCODE_DESC 1
+#define WPR_GENERIC_HEADER_ID_LSF_WPR_HEADER 2
+#define WPR_GENERIC_HEADER_ID_LSF_SHARED_SUB_WPR 3
+#define WPR_GENERIC_HEADER_ID_LSF_LSB_HEADER 4
+ u16 identifier;
+ u16 version;
+ u32 size;
+};
+
+struct wpr_header_v2 {
+ struct wpr_generic_header hdr;
+ struct wpr_header_v1 wpr;
+};
+
+void wpr_header_v2_dump(struct nvkm_subdev *, const struct wpr_header_v2 *);
+
struct lsf_signature {
u8 prd_keys[2][16];
u8 dbg_keys[2][16];
@@ -89,6 +106,74 @@ struct lsb_header_v1 {
void lsb_header_v1_dump(struct nvkm_subdev *, struct lsb_header_v1 *);
+struct lsb_header_v2 {
+ struct wpr_generic_header hdr;
+ struct lsf_signature_v2 {
+ struct wpr_generic_header hdr;
+ u32 falcon_id;
+ u8 prd_present;
+ u8 dbg_present;
+ u16 reserved;
+ u32 sig_size;
+ u8 prod_sig[2][384 + 128];
+ u8 debug_sig[2][384 + 128];
+ u16 sig_algo_ver;
+ u16 sig_algo;
+ u16 hash_algo_ver;
+ u16 hash_algo;
+ u32 sig_algo_padding_type;
+ u8 depmap[11 * 2 * 4];
+ u32 depmap_count;
+ u8 supports_versioning;
+ u8 pad[3];
+ u32 ls_ucode_version;
+ u32 ls_ucode_id;
+ u32 ucode_ls_encrypted;
+ u32 ls_eng_algo_type;
+ u32 ls_eng_algo_ver;
+ u8 ls_enc_iv[16];
+ u8 rsvd[36];
+ } signature;
+ u32 ucode_off;
+ u32 ucode_size;
+ u32 data_size;
+ u32 bl_code_size;
+ u32 bl_imem_off;
+ u32 bl_data_off;
+ u32 bl_data_size;
+ u32 rsvd0;
+ u32 app_code_off;
+ u32 app_code_size;
+ u32 app_data_off;
+ u32 app_data_size;
+ u32 app_imem_offset;
+ u32 app_dmem_offset;
+ u32 flags;
+ u32 monitor_code_offset;
+ u32 monitor_data_offset;
+ u32 manifest_offset;
+ struct hs_fmc_params {
+ u8 hs_fmc;
+ u8 padding[3];
+ u16 pkc_algo;
+ u16 pkc_algo_version;
+ u32 engid_mask;
+ u32 ucode_id;
+ u32 fuse_ver;
+ u8 pkc_signature[384 + 128];
+ u8 pkc_key[2048];
+ u8 rsvd[4];
+ } hs_fmc_params;
+ struct hs_ovl_sig_blob_params {
+ u8 hs_ovl_sig_blob_present;
+ u32 hs_ovl_sig_blob_offset;
+ u32 hs_ovl_sig_blob_size;
+ } hs_ovl_sig_blob_params;
+ u8 rsvd[20];
+};
+
+void lsb_header_v2_dump(struct nvkm_subdev *, struct lsb_header_v2 *);
+
struct flcn_acr_desc {
union {
u8 reserved_dmem[0x200];
diff --git a/drivers/gpu/drm/nouveau/include/nvfw/hs.h b/drivers/gpu/drm/nouveau/include/nvfw/hs.h
index b53bbc4cd130..8b58b668fc0c 100644
--- a/drivers/gpu/drm/nouveau/include/nvfw/hs.h
+++ b/drivers/gpu/drm/nouveau/include/nvfw/hs.h
@@ -17,6 +17,20 @@ struct nvfw_hs_header {
const struct nvfw_hs_header *nvfw_hs_header(struct nvkm_subdev *, const void *);
+struct nvfw_hs_header_v2 {
+ u32 sig_prod_offset;
+ u32 sig_prod_size;
+ u32 patch_loc;
+ u32 patch_sig;
+ u32 meta_data_offset;
+ u32 meta_data_size;
+ u32 num_sig;
+ u32 header_offset;
+ u32 header_size;
+};
+
+const struct nvfw_hs_header_v2 *nvfw_hs_header_v2(struct nvkm_subdev *, const void *);
+
struct nvfw_hs_load_header {
u32 non_sec_code_off;
u32 non_sec_code_size;
@@ -28,4 +42,18 @@ struct nvfw_hs_load_header {
const struct nvfw_hs_load_header *
nvfw_hs_load_header(struct nvkm_subdev *, const void *);
+
+struct nvfw_hs_load_header_v2 {
+ u32 os_code_offset;
+ u32 os_code_size;
+ u32 os_data_offset;
+ u32 os_data_size;
+ u32 num_apps;
+ struct {
+ u32 offset;
+ u32 size;
+ } app[];
+};
+
+const struct nvfw_hs_load_header_v2 *nvfw_hs_load_header_v2(struct nvkm_subdev *, const void *);
#endif
diff --git a/drivers/gpu/drm/nouveau/include/nvfw/ls.h b/drivers/gpu/drm/nouveau/include/nvfw/ls.h
index f63692a2a16c..d531121bfa35 100644
--- a/drivers/gpu/drm/nouveau/include/nvfw/ls.h
+++ b/drivers/gpu/drm/nouveau/include/nvfw/ls.h
@@ -50,4 +50,55 @@ struct nvfw_ls_desc_v1 {
const struct nvfw_ls_desc_v1 *
nvfw_ls_desc_v1(struct nvkm_subdev *, const void *);
+
+struct nvfw_ls_desc_v2 {
+ u32 descriptor_size;
+ u32 image_size;
+ u32 tools_version;
+ u32 app_version;
+ char date[64];
+ u32 secure_bootloader;
+ u32 bootloader_start_offset;
+ u32 bootloader_size;
+ u32 bootloader_imem_offset;
+ u32 bootloader_entry_point;
+ u32 app_start_offset;
+ u32 app_size;
+ u32 app_imem_offset;
+ u32 app_imem_entry;
+ u32 app_dmem_offset;
+ u32 app_resident_code_offset;
+ u32 app_resident_code_size;
+ u32 app_resident_data_offset;
+ u32 app_resident_data_size;
+ u32 nb_imem_overlays;
+ u32 nb_dmem_overlays;
+ struct {
+ u32 start;
+ u32 size;
+ } load_ovl[64];
+};
+
+const struct nvfw_ls_desc_v2 *nvfw_ls_desc_v2(struct nvkm_subdev *, const void *);
+
+struct nvfw_ls_hsbl_bin_hdr {
+ u32 bin_magic;
+ u32 bin_ver;
+ u32 bin_size;
+ u32 header_offset;
+};
+
+const struct nvfw_ls_hsbl_bin_hdr *nvfw_ls_hsbl_bin_hdr(struct nvkm_subdev *, const void *);
+
+struct nvfw_ls_hsbl_hdr {
+ u32 sig_prod_offset;
+ u32 sig_prod_size;
+ u32 patch_loc;
+ u32 patch_sig;
+ u32 meta_data_offset;
+ u32 meta_data_size;
+ u32 num_sig;
+};
+
+const struct nvfw_ls_hsbl_hdr *nvfw_ls_hsbl_hdr(struct nvkm_subdev *, const void *);
#endif
diff --git a/drivers/gpu/drm/nouveau/include/nvfw/sec2.h b/drivers/gpu/drm/nouveau/include/nvfw/sec2.h
index 9a37ad4179cb..b3331d679c4e 100644
--- a/drivers/gpu/drm/nouveau/include/nvfw/sec2.h
+++ b/drivers/gpu/drm/nouveau/include/nvfw/sec2.h
@@ -10,6 +10,7 @@ struct nv_sec2_args {
};
#define NV_SEC2_UNIT_INIT 0x01
+#define NV_SEC2_UNIT_UNLOAD 0x06
#define NV_SEC2_UNIT_ACR 0x08
struct nv_sec2_init_msg {
@@ -33,6 +34,29 @@ struct nv_sec2_init_msg {
u16 sw_managed_area_size;
};
+struct nv_sec2_init_msg_v1 {
+ struct nvfw_falcon_msg hdr;
+#define NV_SEC2_INIT_MSG_INIT 0x00
+ u8 msg_type;
+
+ u8 num_queues;
+ u16 os_debug_entry_point;
+
+ struct {
+ u32 offset;
+ u16 size;
+ u8 index;
+#define NV_SEC2_INIT_MSG_QUEUE_ID_CMDQ 0x00
+#define NV_SEC2_INIT_MSG_QUEUE_ID_MSGQ 0x01
+ u8 id;
+ } queue_info[2];
+
+ u32 sw_managed_area_offset;
+ u16 sw_managed_area_size;
+
+ u32 unkn[8];
+};
+
struct nv_sec2_acr_cmd {
struct nvfw_falcon_cmd hdr;
#define NV_SEC2_ACR_CMD_BOOTSTRAP_FALCON 0x00
@@ -57,4 +81,25 @@ struct nv_sec2_acr_bootstrap_falcon_msg {
u32 error_code;
u32 falcon_id;
};
+
+#define NV_SEC2_UNIT_V2_INIT 0x01
+#define NV_SEC2_UNIT_V2_UNLOAD 0x05
+#define NV_SEC2_UNIT_V2_ACR 0x07
+
+struct nv_sec2_acr_bootstrap_falcon_cmd_v1 {
+ struct nv_sec2_acr_cmd cmd;
+#define NV_SEC2_ACR_BOOTSTRAP_FALCON_FLAGS_RESET_YES 0x00000000
+#define NV_SEC2_ACR_BOOTSTRAP_FALCON_FLAGS_RESET_NO 0x00000001
+ u32 flags;
+ u32 falcon_id;
+ u32 unkn08;
+ u32 unkn0c;
+};
+
+struct nv_sec2_acr_bootstrap_falcon_msg_v1 {
+ struct nv_sec2_acr_msg msg;
+ u32 error_code;
+ u32 falcon_id;
+ u32 unkn08;
+};
#endif
diff --git a/drivers/gpu/drm/nouveau/include/nvif/cl0046.h b/drivers/gpu/drm/nouveau/include/nvif/cl0046.h
index d490d401870a..eca7c3950654 100644
--- a/drivers/gpu/drm/nouveau/include/nvif/cl0046.h
+++ b/drivers/gpu/drm/nouveau/include/nvif/cl0046.h
@@ -2,28 +2,5 @@
#ifndef __NVIF_CL0046_H__
#define __NVIF_CL0046_H__
-#define NV04_DISP_NTFY_VBLANK 0x00
#define NV04_DISP_NTFY_CONN 0x01
-
-struct nv04_disp_mthd_v0 {
- __u8 version;
-#define NV04_DISP_SCANOUTPOS 0x00
- __u8 method;
- __u8 head;
- __u8 pad03[5];
-};
-
-struct nv04_disp_scanoutpos_v0 {
- __u8 version;
- __u8 pad01[7];
- __s64 time[2];
- __u16 vblanks;
- __u16 vblanke;
- __u16 vtotal;
- __u16 vline;
- __u16 hblanks;
- __u16 hblanke;
- __u16 htotal;
- __u16 hline;
-};
#endif
diff --git a/drivers/gpu/drm/nouveau/include/nvif/cl006b.h b/drivers/gpu/drm/nouveau/include/nvif/cl006b.h
deleted file mode 100644
index c960c449e430..000000000000
--- a/drivers/gpu/drm/nouveau/include/nvif/cl006b.h
+++ /dev/null
@@ -1,12 +0,0 @@
-/* SPDX-License-Identifier: MIT */
-#ifndef __NVIF_CL006B_H__
-#define __NVIF_CL006B_H__
-
-struct nv03_channel_dma_v0 {
- __u8 version;
- __u8 chid;
- __u8 pad02[2];
- __u32 offset;
- __u64 pushbuf;
-};
-#endif
diff --git a/drivers/gpu/drm/nouveau/include/nvif/cl0080.h b/drivers/gpu/drm/nouveau/include/nvif/cl0080.h
index 59759c4fb62e..8b5a240d57e4 100644
--- a/drivers/gpu/drm/nouveau/include/nvif/cl0080.h
+++ b/drivers/gpu/drm/nouveau/include/nvif/cl0080.h
@@ -68,7 +68,7 @@ struct nv_device_time_v0 {
/* Returns the number of available runlists. */
#define NV_DEVICE_HOST_RUNLISTS NV_DEVICE_HOST(0x00000000)
-/* Returns the number of available channels. */
+/* Returns the number of available channels (0 if per-runlist). */
#define NV_DEVICE_HOST_CHANNELS NV_DEVICE_HOST(0x00000001)
/* Returns a mask of available engine types on runlist(data). */
@@ -90,4 +90,6 @@ struct nv_device_time_v0 {
#define NV_DEVICE_HOST_RUNLIST_ENGINES_SEC2 0x00004000
#define NV_DEVICE_HOST_RUNLIST_ENGINES_NVDEC 0x00008000
#define NV_DEVICE_HOST_RUNLIST_ENGINES_NVENC 0x00010000
+/* Returns the number of available channels on runlist(data). */
+#define NV_DEVICE_HOST_RUNLIST_CHANNELS NV_DEVICE_HOST(0x00000101)
#endif
diff --git a/drivers/gpu/drm/nouveau/include/nvif/cl506e.h b/drivers/gpu/drm/nouveau/include/nvif/cl506e.h
deleted file mode 100644
index 9df289c7a84f..000000000000
--- a/drivers/gpu/drm/nouveau/include/nvif/cl506e.h
+++ /dev/null
@@ -1,13 +0,0 @@
-/* SPDX-License-Identifier: MIT */
-#ifndef __NVIF_CL506E_H__
-#define __NVIF_CL506E_H__
-
-struct nv50_channel_dma_v0 {
- __u8 version;
- __u8 chid;
- __u8 pad02[6];
- __u64 vmm;
- __u64 pushbuf;
- __u64 offset;
-};
-#endif
diff --git a/drivers/gpu/drm/nouveau/include/nvif/cl506f.h b/drivers/gpu/drm/nouveau/include/nvif/cl506f.h
deleted file mode 100644
index 327c96a994bb..000000000000
--- a/drivers/gpu/drm/nouveau/include/nvif/cl506f.h
+++ /dev/null
@@ -1,14 +0,0 @@
-/* SPDX-License-Identifier: MIT */
-#ifndef __NVIF_CL506F_H__
-#define __NVIF_CL506F_H__
-
-struct nv50_channel_gpfifo_v0 {
- __u8 version;
- __u8 chid;
- __u8 pad02[2];
- __u32 ilength;
- __u64 ioffset;
- __u64 pushbuf;
- __u64 vmm;
-};
-#endif
diff --git a/drivers/gpu/drm/nouveau/include/nvif/cl5070.h b/drivers/gpu/drm/nouveau/include/nvif/cl5070.h
deleted file mode 100644
index 56affb606adf..000000000000
--- a/drivers/gpu/drm/nouveau/include/nvif/cl5070.h
+++ /dev/null
@@ -1,92 +0,0 @@
-/* SPDX-License-Identifier: MIT */
-#ifndef __NVIF_CL5070_H__
-#define __NVIF_CL5070_H__
-
-#define NV50_DISP_MTHD 0x00
-
-struct nv50_disp_mthd_v0 {
- __u8 version;
-#define NV50_DISP_SCANOUTPOS 0x00
- __u8 method;
- __u8 head;
- __u8 pad03[5];
-};
-
-struct nv50_disp_scanoutpos_v0 {
- __u8 version;
- __u8 pad01[7];
- __s64 time[2];
- __u16 vblanks;
- __u16 vblanke;
- __u16 vtotal;
- __u16 vline;
- __u16 hblanks;
- __u16 hblanke;
- __u16 htotal;
- __u16 hline;
-};
-
-struct nv50_disp_mthd_v1 {
- __u8 version;
-#define NV50_DISP_MTHD_V1_ACQUIRE 0x01
-#define NV50_DISP_MTHD_V1_RELEASE 0x02
-#define NV50_DISP_MTHD_V1_SOR_HDA_ELD 0x21
-#define NV50_DISP_MTHD_V1_SOR_HDMI_PWR 0x22
-#define NV50_DISP_MTHD_V1_SOR_LVDS_SCRIPT 0x23
-#define NV50_DISP_MTHD_V1_SOR_DP_MST_LINK 0x25
-#define NV50_DISP_MTHD_V1_SOR_DP_MST_VCPI 0x26
- __u8 method;
- __u16 hasht;
- __u16 hashm;
- __u8 pad06[2];
-};
-
-struct nv50_disp_acquire_v0 {
- __u8 version;
- __u8 or;
- __u8 link;
- __u8 hda;
- __u8 pad04[4];
-};
-
-struct nv50_disp_sor_hda_eld_v0 {
- __u8 version;
- __u8 pad01[7];
- __u8 data[];
-};
-
-struct nv50_disp_sor_hdmi_pwr_v0 {
- __u8 version;
- __u8 state;
- __u8 max_ac_packet;
- __u8 rekey;
- __u8 avi_infoframe_length;
- __u8 vendor_infoframe_length;
-#define NV50_DISP_SOR_HDMI_PWR_V0_SCDC_SCRAMBLE (1 << 0)
-#define NV50_DISP_SOR_HDMI_PWR_V0_SCDC_DIV_BY_4 (1 << 1)
- __u8 scdc;
- __u8 pad07[1];
-};
-
-struct nv50_disp_sor_lvds_script_v0 {
- __u8 version;
- __u8 pad01[1];
- __u16 script;
- __u8 pad04[4];
-};
-
-struct nv50_disp_sor_dp_mst_link_v0 {
- __u8 version;
- __u8 state;
- __u8 pad02[6];
-};
-
-struct nv50_disp_sor_dp_mst_vcpi_v0 {
- __u8 version;
- __u8 pad01[1];
- __u8 start_slot;
- __u8 num_slots;
- __u16 pbn;
- __u16 aligned_pbn;
-};
-#endif
diff --git a/drivers/gpu/drm/nouveau/include/nvif/cl826e.h b/drivers/gpu/drm/nouveau/include/nvif/cl826e.h
deleted file mode 100644
index 1b6496d31580..000000000000
--- a/drivers/gpu/drm/nouveau/include/nvif/cl826e.h
+++ /dev/null
@@ -1,15 +0,0 @@
-/* SPDX-License-Identifier: MIT */
-#ifndef __NVIF_CL826E_H__
-#define __NVIF_CL826E_H__
-
-struct g82_channel_dma_v0 {
- __u8 version;
- __u8 chid;
- __u8 pad02[6];
- __u64 vmm;
- __u64 pushbuf;
- __u64 offset;
-};
-
-#define NV826E_V0_NTFY_NON_STALL_INTERRUPT 0x00
-#endif
diff --git a/drivers/gpu/drm/nouveau/include/nvif/cl826f.h b/drivers/gpu/drm/nouveau/include/nvif/cl826f.h
deleted file mode 100644
index 148602264a76..000000000000
--- a/drivers/gpu/drm/nouveau/include/nvif/cl826f.h
+++ /dev/null
@@ -1,16 +0,0 @@
-/* SPDX-License-Identifier: MIT */
-#ifndef __NVIF_CL826F_H__
-#define __NVIF_CL826F_H__
-
-struct g82_channel_gpfifo_v0 {
- __u8 version;
- __u8 chid;
- __u8 pad02[2];
- __u32 ilength;
- __u64 ioffset;
- __u64 pushbuf;
- __u64 vmm;
-};
-
-#define NV826F_V0_NTFY_NON_STALL_INTERRUPT 0x00
-#endif
diff --git a/drivers/gpu/drm/nouveau/include/nvif/cl906f.h b/drivers/gpu/drm/nouveau/include/nvif/cl906f.h
deleted file mode 100644
index 3823d6891b55..000000000000
--- a/drivers/gpu/drm/nouveau/include/nvif/cl906f.h
+++ /dev/null
@@ -1,16 +0,0 @@
-/* SPDX-License-Identifier: MIT */
-#ifndef __NVIF_CL906F_H__
-#define __NVIF_CL906F_H__
-
-struct fermi_channel_gpfifo_v0 {
- __u8 version;
- __u8 chid;
- __u8 pad02[2];
- __u32 ilength;
- __u64 ioffset;
- __u64 vmm;
-};
-
-#define NV906F_V0_NTFY_NON_STALL_INTERRUPT 0x00
-#define NV906F_V0_NTFY_KILLED 0x01
-#endif
diff --git a/drivers/gpu/drm/nouveau/include/nvif/cla06f.h b/drivers/gpu/drm/nouveau/include/nvif/cla06f.h
deleted file mode 100644
index cfa18f1fbf83..000000000000
--- a/drivers/gpu/drm/nouveau/include/nvif/cla06f.h
+++ /dev/null
@@ -1,18 +0,0 @@
-/* SPDX-License-Identifier: MIT */
-#ifndef __NVIF_CLA06F_H__
-#define __NVIF_CLA06F_H__
-
-struct kepler_channel_gpfifo_a_v0 {
- __u8 version;
- __u8 priv;
- __u16 chid;
- __u32 ilength;
- __u64 ioffset;
- __u64 runlist;
- __u64 vmm;
- __u64 inst;
-};
-
-#define NVA06F_V0_NTFY_NON_STALL_INTERRUPT 0x00
-#define NVA06F_V0_NTFY_KILLED 0x01
-#endif
diff --git a/drivers/gpu/drm/nouveau/include/nvif/class.h b/drivers/gpu/drm/nouveau/include/nvif/class.h
index 8641db649f48..ad1e5de84e80 100644
--- a/drivers/gpu/drm/nouveau/include/nvif/class.h
+++ b/drivers/gpu/drm/nouveau/include/nvif/class.h
@@ -32,11 +32,17 @@
#define NVIF_CLASS_VMM_GM200 /* ifb00d.h */ 0x8000b00d
#define NVIF_CLASS_VMM_GP100 /* ifc00d.h */ 0x8000c00d
+#define NVIF_CLASS_EVENT /* if000e.h */ 0x8000000e
+
#define NVIF_CLASS_DISP /* if0010.h */ 0x80000010
#define NVIF_CLASS_CONN /* if0011.h */ 0x80000011
#define NVIF_CLASS_OUTP /* if0012.h */ 0x80000012
+#define NVIF_CLASS_HEAD /* if0013.h */ 0x80000013
#define NVIF_CLASS_DISP_CHAN /* if0014.h */ 0x80000014
+#define NVIF_CLASS_CHAN /* if0020.h */ 0x80000020
+#define NVIF_CLASS_CGRP /* if0021.h */ 0x80000021
+
/* the below match nvidia-assigned (either in hw, or sw) class numbers */
#define NV_NULL_CLASS 0x00000030
@@ -58,25 +64,30 @@
#define NV04_DISP /* cl0046.h */ 0x00000046
#define VOLTA_USERMODE_A 0x0000c361
+#define TURING_USERMODE_A 0x0000c461
+#define AMPERE_USERMODE_A 0x0000c561
#define MAXWELL_FAULT_BUFFER_A /* clb069.h */ 0x0000b069
#define VOLTA_FAULT_BUFFER_A /* clb069.h */ 0x0000c369
-#define NV03_CHANNEL_DMA /* cl506b.h */ 0x0000006b
-#define NV10_CHANNEL_DMA /* cl506b.h */ 0x0000006e
-#define NV17_CHANNEL_DMA /* cl506b.h */ 0x0000176e
-#define NV40_CHANNEL_DMA /* cl506b.h */ 0x0000406e
-
-#define NV50_CHANNEL_GPFIFO /* cl506f.h */ 0x0000506f
-#define G82_CHANNEL_GPFIFO /* cl826f.h */ 0x0000826f
-#define FERMI_CHANNEL_GPFIFO /* cl906f.h */ 0x0000906f
-#define KEPLER_CHANNEL_GPFIFO_A /* cla06f.h */ 0x0000a06f
-#define KEPLER_CHANNEL_GPFIFO_B /* cla06f.h */ 0x0000a16f
-#define MAXWELL_CHANNEL_GPFIFO_A /* cla06f.h */ 0x0000b06f
-#define PASCAL_CHANNEL_GPFIFO_A /* cla06f.h */ 0x0000c06f
-#define VOLTA_CHANNEL_GPFIFO_A /* clc36f.h */ 0x0000c36f
-#define TURING_CHANNEL_GPFIFO_A /* clc36f.h */ 0x0000c46f
-#define AMPERE_CHANNEL_GPFIFO_B /* clc36f.h */ 0x0000c76f
+#define NV03_CHANNEL_DMA /* if0020.h */ 0x0000006b
+#define NV10_CHANNEL_DMA /* if0020.h */ 0x0000006e
+#define NV17_CHANNEL_DMA /* if0020.h */ 0x0000176e
+#define NV40_CHANNEL_DMA /* if0020.h */ 0x0000406e
+
+#define KEPLER_CHANNEL_GROUP_A /* if0021.h */ 0x0000a06c
+
+#define NV50_CHANNEL_GPFIFO /* if0020.h */ 0x0000506f
+#define G82_CHANNEL_GPFIFO /* if0020.h */ 0x0000826f
+#define FERMI_CHANNEL_GPFIFO /* if0020.h */ 0x0000906f
+#define KEPLER_CHANNEL_GPFIFO_A /* if0020.h */ 0x0000a06f
+#define KEPLER_CHANNEL_GPFIFO_B /* if0020.h */ 0x0000a16f
+#define MAXWELL_CHANNEL_GPFIFO_A /* if0020.h */ 0x0000b06f
+#define PASCAL_CHANNEL_GPFIFO_A /* if0020.h */ 0x0000c06f
+#define VOLTA_CHANNEL_GPFIFO_A /* if0020.h */ 0x0000c36f
+#define TURING_CHANNEL_GPFIFO_A /* if0020.h */ 0x0000c46f
+#define AMPERE_CHANNEL_GPFIFO_A /* if0020.h */ 0x0000c56f
+#define AMPERE_CHANNEL_GPFIFO_B /* if0020.h */ 0x0000c76f
#define NV50_DISP /* if0010.h */ 0x00005070
#define G82_DISP /* if0010.h */ 0x00008270
@@ -179,6 +190,8 @@
#define TURING_A /* cl9097.h */ 0x0000c597
+#define AMPERE_B /* cl9097.h */ 0x0000c797
+
#define NV74_BSP 0x000074b0
#define GT212_MSVLD 0x000085b1
@@ -206,6 +219,7 @@
#define PASCAL_DMA_COPY_B 0x0000c1b5
#define VOLTA_DMA_COPY_A 0x0000c3b5
#define TURING_DMA_COPY_A 0x0000c5b5
+#define AMPERE_DMA_COPY_A 0x0000c6b5
#define AMPERE_DMA_COPY_B 0x0000c7b5
#define FERMI_DECOMPRESS 0x000090b8
@@ -222,6 +236,7 @@
#define PASCAL_COMPUTE_B 0x0000c1c0
#define VOLTA_COMPUTE_A 0x0000c3c0
#define TURING_COMPUTE_A 0x0000c5c0
+#define AMPERE_COMPUTE_B 0x0000c7c0
#define NV74_CIPHER 0x000074c1
#endif
diff --git a/drivers/gpu/drm/nouveau/include/nvif/clb069.h b/drivers/gpu/drm/nouveau/include/nvif/clb069.h
index eef5d0227bab..d7689de35ab2 100644
--- a/drivers/gpu/drm/nouveau/include/nvif/clb069.h
+++ b/drivers/gpu/drm/nouveau/include/nvif/clb069.h
@@ -8,5 +8,8 @@ struct nvif_clb069_v0 {
__u32 put;
};
-#define NVB069_V0_NTFY_FAULT 0x00
+union nvif_clb069_event_args {
+ struct nvif_clb069_event_vn {
+ } vn;
+};
#endif
diff --git a/drivers/gpu/drm/nouveau/include/nvif/clc36f.h b/drivers/gpu/drm/nouveau/include/nvif/clc36f.h
deleted file mode 100644
index f66885891238..000000000000
--- a/drivers/gpu/drm/nouveau/include/nvif/clc36f.h
+++ /dev/null
@@ -1,19 +0,0 @@
-/* SPDX-License-Identifier: MIT */
-#ifndef __NVIF_CLC36F_H__
-#define __NVIF_CLC36F_H__
-
-struct volta_channel_gpfifo_a_v0 {
- __u8 version;
- __u8 priv;
- __u16 chid;
- __u32 ilength;
- __u64 ioffset;
- __u64 runlist;
- __u64 vmm;
- __u64 inst;
- __u32 token;
-};
-
-#define NVC36F_V0_NTFY_NON_STALL_INTERRUPT 0x00
-#define NVC36F_V0_NTFY_KILLED 0x01
-#endif
diff --git a/drivers/gpu/drm/nouveau/include/nvif/conn.h b/drivers/gpu/drm/nouveau/include/nvif/conn.h
index f72a8f138f47..dc355e1dfafa 100644
--- a/drivers/gpu/drm/nouveau/include/nvif/conn.h
+++ b/drivers/gpu/drm/nouveau/include/nvif/conn.h
@@ -2,6 +2,7 @@
#ifndef __NVIF_CONN_H__
#define __NVIF_CONN_H__
#include <nvif/object.h>
+#include <nvif/event.h>
struct nvif_disp;
struct nvif_conn {
@@ -11,8 +12,17 @@ struct nvif_conn {
int nvif_conn_ctor(struct nvif_disp *, const char *name, int id, struct nvif_conn *);
void nvif_conn_dtor(struct nvif_conn *);
+static inline int
+nvif_conn_id(struct nvif_conn *conn)
+{
+ return conn->object.handle;
+}
+
#define NVIF_CONN_HPD_STATUS_UNSUPPORTED 0 /* negative if query fails */
#define NVIF_CONN_HPD_STATUS_NOT_PRESENT 1
#define NVIF_CONN_HPD_STATUS_PRESENT 2
int nvif_conn_hpd_status(struct nvif_conn *);
+
+int nvif_conn_event_ctor(struct nvif_conn *, const char *name, nvif_event_func, u8 types,
+ struct nvif_event *);
#endif
diff --git a/drivers/gpu/drm/nouveau/include/nvif/disp.h b/drivers/gpu/drm/nouveau/include/nvif/disp.h
index 742632ad3bea..56eb7293e01c 100644
--- a/drivers/gpu/drm/nouveau/include/nvif/disp.h
+++ b/drivers/gpu/drm/nouveau/include/nvif/disp.h
@@ -7,6 +7,7 @@ struct nvif_disp {
struct nvif_object object;
unsigned long conn_mask;
unsigned long outp_mask;
+ unsigned long head_mask;
};
int nvif_disp_ctor(struct nvif_device *, const char *name, s32 oclass,
diff --git a/drivers/gpu/drm/nouveau/include/nvif/event.h b/drivers/gpu/drm/nouveau/include/nvif/event.h
index a6b1ee4f10ca..68bf6635841f 100644
--- a/drivers/gpu/drm/nouveau/include/nvif/event.h
+++ b/drivers/gpu/drm/nouveau/include/nvif/event.h
@@ -1,63 +1,36 @@
/* SPDX-License-Identifier: MIT */
#ifndef __NVIF_EVENT_H__
#define __NVIF_EVENT_H__
-
-struct nvif_notify_req_v0 {
- __u8 version;
- __u8 reply;
- __u8 pad02[5];
-#define NVIF_NOTIFY_V0_ROUTE_NVIF 0x00
- __u8 route;
- __u64 token; /* must be unique */
- __u8 data[]; /* request data (below) */
-};
-
-struct nvif_notify_rep_v0 {
- __u8 version;
- __u8 pad01[6];
- __u8 route;
- __u64 token;
- __u8 data[]; /* reply data (below) */
-};
-
-struct nvif_notify_head_req_v0 {
- /* nvif_notify_req ... */
- __u8 version;
- __u8 head;
- __u8 pad02[6];
-};
-
-struct nvif_notify_head_rep_v0 {
- /* nvif_notify_rep ... */
- __u8 version;
- __u8 pad01[7];
-};
-
-struct nvif_notify_conn_req_v0 {
- /* nvif_notify_req ... */
- __u8 version;
-#define NVIF_NOTIFY_CONN_V0_PLUG 0x01
-#define NVIF_NOTIFY_CONN_V0_UNPLUG 0x02
-#define NVIF_NOTIFY_CONN_V0_IRQ 0x04
-#define NVIF_NOTIFY_CONN_V0_ANY 0x07
- __u8 mask;
- __u8 conn;
- __u8 pad03[5];
-};
-
-struct nvif_notify_conn_rep_v0 {
- /* nvif_notify_rep ... */
- __u8 version;
- __u8 mask;
- __u8 pad02[6];
-};
-
-struct nvif_notify_uevent_req {
- /* nvif_notify_req ... */
-};
-
-struct nvif_notify_uevent_rep {
- /* nvif_notify_rep ... */
-};
-
+#include <nvif/object.h>
+#include <nvif/if000e.h>
+struct nvif_event;
+
+#define NVIF_EVENT_KEEP 0
+#define NVIF_EVENT_DROP 1
+typedef int (*nvif_event_func)(struct nvif_event *, void *repv, u32 repc);
+
+struct nvif_event {
+ struct nvif_object object;
+ nvif_event_func func;
+};
+
+static inline bool
+nvif_event_constructed(struct nvif_event *event)
+{
+ return nvif_object_constructed(&event->object);
+}
+
+int nvif_event_ctor_(struct nvif_object *, const char *, u32, nvif_event_func, bool,
+ struct nvif_event_v0 *, u32, bool, struct nvif_event *);
+
+static inline int
+nvif_event_ctor(struct nvif_object *parent, const char *name, u32 handle, nvif_event_func func,
+ bool wait, struct nvif_event_v0 *args, u32 argc, struct nvif_event *event)
+{
+ return nvif_event_ctor_(parent, name, handle, func, wait, args, argc, true, event);
+}
+
+void nvif_event_dtor(struct nvif_event *);
+int nvif_event_allow(struct nvif_event *);
+int nvif_event_block(struct nvif_event *);
#endif
diff --git a/drivers/gpu/drm/nouveau/include/nvif/head.h b/drivers/gpu/drm/nouveau/include/nvif/head.h
new file mode 100644
index 000000000000..3ec36999e956
--- /dev/null
+++ b/drivers/gpu/drm/nouveau/include/nvif/head.h
@@ -0,0 +1,23 @@
+/* SPDX-License-Identifier: MIT */
+#ifndef __NVIF_HEAD_H__
+#define __NVIF_HEAD_H__
+#include <nvif/object.h>
+#include <nvif/event.h>
+struct nvif_disp;
+
+struct nvif_head {
+ struct nvif_object object;
+};
+
+int nvif_head_ctor(struct nvif_disp *, const char *name, int id, struct nvif_head *);
+void nvif_head_dtor(struct nvif_head *);
+
+static inline int
+nvif_head_id(struct nvif_head *head)
+{
+ return head->object.handle;
+}
+
+int nvif_head_vblank_event_ctor(struct nvif_head *, const char *name, nvif_event_func, bool wait,
+ struct nvif_event *);
+#endif
diff --git a/drivers/gpu/drm/nouveau/include/nvif/if0004.h b/drivers/gpu/drm/nouveau/include/nvif/if0004.h
index d324c73c27fb..1d916a137941 100644
--- a/drivers/gpu/drm/nouveau/include/nvif/if0004.h
+++ b/drivers/gpu/drm/nouveau/include/nvif/if0004.h
@@ -2,7 +2,10 @@
#ifndef __NVIF_IF0004_H__
#define __NVIF_IF0004_H__
-#define NV04_NVSW_NTFY_UEVENT 0x00
+union nv04_nvsw_event_args {
+ struct nv04_nvsw_event_vn {
+ } vn;
+};
#define NV04_NVSW_GET_REF 0x00
diff --git a/drivers/gpu/drm/nouveau/include/nvif/if000e.h b/drivers/gpu/drm/nouveau/include/nvif/if000e.h
new file mode 100644
index 000000000000..90a936cb1766
--- /dev/null
+++ b/drivers/gpu/drm/nouveau/include/nvif/if000e.h
@@ -0,0 +1,26 @@
+/* SPDX-License-Identifier: MIT */
+#ifndef __NVIF_IF000E_H__
+#define __NVIF_IF000E_H__
+
+union nvif_event_args {
+ struct nvif_event_v0 {
+ __u8 version;
+ __u8 wait;
+ __u8 pad02[6];
+ __u8 data[];
+ } v0;
+};
+
+#define NVIF_EVENT_V0_ALLOW 0x00
+#define NVIF_EVENT_V0_BLOCK 0x01
+
+union nvif_event_allow_args {
+ struct nvif_event_allow_vn {
+ } vn;
+};
+
+union nvif_event_block_args {
+ struct nvif_event_block_vn {
+ } vn;
+};
+#endif
diff --git a/drivers/gpu/drm/nouveau/include/nvif/if0010.h b/drivers/gpu/drm/nouveau/include/nvif/if0010.h
index fc236ef28965..4c835bbe6fe3 100644
--- a/drivers/gpu/drm/nouveau/include/nvif/if0010.h
+++ b/drivers/gpu/drm/nouveau/include/nvif/if0010.h
@@ -8,6 +8,7 @@ union nvif_disp_args {
__u8 pad01[3];
__u32 conn_mask;
__u32 outp_mask;
+ __u32 head_mask;
} v0;
};
#endif
diff --git a/drivers/gpu/drm/nouveau/include/nvif/if0011.h b/drivers/gpu/drm/nouveau/include/nvif/if0011.h
index 04ba6581f840..69b0b779f942 100644
--- a/drivers/gpu/drm/nouveau/include/nvif/if0011.h
+++ b/drivers/gpu/drm/nouveau/include/nvif/if0011.h
@@ -10,6 +10,17 @@ union nvif_conn_args {
} v0;
};
+union nvif_conn_event_args {
+ struct nvif_conn_event_v0 {
+ __u8 version;
+#define NVIF_CONN_EVENT_V0_PLUG 0x01
+#define NVIF_CONN_EVENT_V0_UNPLUG 0x02
+#define NVIF_CONN_EVENT_V0_IRQ 0x04
+ __u8 types;
+ __u8 pad02[6];
+ } v0;
+};
+
#define NVIF_CONN_V0_HPD_STATUS 0x00000000
union nvif_conn_hpd_status_args {
diff --git a/drivers/gpu/drm/nouveau/include/nvif/if0012.h b/drivers/gpu/drm/nouveau/include/nvif/if0012.h
index 243bd35d942f..16d4ad5023a3 100644
--- a/drivers/gpu/drm/nouveau/include/nvif/if0012.h
+++ b/drivers/gpu/drm/nouveau/include/nvif/if0012.h
@@ -2,6 +2,8 @@
#ifndef __NVIF_IF0012_H__
#define __NVIF_IF0012_H__
+#include <drm/display/drm_dp.h>
+
union nvif_outp_args {
struct nvif_outp_v0 {
__u8 version;
@@ -11,6 +13,13 @@ union nvif_outp_args {
};
#define NVIF_OUTP_V0_LOAD_DETECT 0x00
+#define NVIF_OUTP_V0_ACQUIRE 0x01
+#define NVIF_OUTP_V0_RELEASE 0x02
+#define NVIF_OUTP_V0_INFOFRAME 0x03
+#define NVIF_OUTP_V0_HDA_ELD 0x04
+#define NVIF_OUTP_V0_DP_AUX_PWR 0x05
+#define NVIF_OUTP_V0_DP_RETRAIN 0x06
+#define NVIF_OUTP_V0_DP_MST_VCPI 0x07
union nvif_outp_load_detect_args {
struct nvif_outp_load_detect_v0 {
@@ -20,4 +29,95 @@ union nvif_outp_load_detect_args {
__u32 data; /*TODO: move vbios loadval parsing into nvkm */
} v0;
};
+
+union nvif_outp_acquire_args {
+ struct nvif_outp_acquire_v0 {
+ __u8 version;
+#define NVIF_OUTP_ACQUIRE_V0_RGB_CRT 0x00
+#define NVIF_OUTP_ACQUIRE_V0_TV 0x01
+#define NVIF_OUTP_ACQUIRE_V0_TMDS 0x02
+#define NVIF_OUTP_ACQUIRE_V0_LVDS 0x03
+#define NVIF_OUTP_ACQUIRE_V0_DP 0x04
+ __u8 proto;
+ __u8 or;
+ __u8 link;
+ __u8 pad04[4];
+ union {
+ struct {
+ __u8 head;
+ __u8 hdmi;
+ __u8 hdmi_max_ac_packet;
+ __u8 hdmi_rekey;
+#define NVIF_OUTP_ACQUIRE_V0_TMDS_HDMI_SCDC_SCRAMBLE (1 << 0)
+#define NVIF_OUTP_ACQUIRE_V0_TMDS_HDMI_SCDC_DIV_BY_4 (1 << 1)
+ __u8 hdmi_scdc;
+ __u8 hdmi_hda;
+ __u8 pad06[2];
+ } tmds;
+ struct {
+ __u8 dual;
+ __u8 bpc8;
+ __u8 pad02[6];
+ } lvds;
+ struct {
+ __u8 link_nr; /* 0 = highest possible. */
+ __u8 link_bw; /* 0 = highest possible, DP BW code otherwise. */
+ __u8 hda;
+ __u8 mst;
+ __u8 pad04[4];
+ __u8 dpcd[DP_RECEIVER_CAP_SIZE];
+ } dp;
+ };
+ } v0;
+};
+
+union nvif_outp_release_args {
+ struct nvif_outp_release_vn {
+ } vn;
+};
+
+union nvif_outp_infoframe_args {
+ struct nvif_outp_infoframe_v0 {
+ __u8 version;
+#define NVIF_OUTP_INFOFRAME_V0_AVI 0
+#define NVIF_OUTP_INFOFRAME_V0_VSI 1
+ __u8 type;
+ __u8 head;
+ __u8 pad03[5];
+ __u8 data[];
+ } v0;
+};
+
+union nvif_outp_hda_eld_args {
+ struct nvif_outp_hda_eld_v0 {
+ __u8 version;
+ __u8 head;
+ __u8 pad02[6];
+ __u8 data[];
+ } v0;
+};
+
+union nvif_outp_dp_aux_pwr_args {
+ struct nvif_outp_dp_aux_pwr_v0 {
+ __u8 version;
+ __u8 state;
+ __u8 pad02[6];
+ } v0;
+};
+
+union nvif_outp_dp_retrain_args {
+ struct nvif_outp_dp_retrain_vn {
+ } vn;
+};
+
+union nvif_outp_dp_mst_vcpi_args {
+ struct nvif_outp_dp_mst_vcpi_v0 {
+ __u8 version;
+ __u8 head;
+ __u8 start_slot;
+ __u8 num_slots;
+ __u16 pbn;
+ __u16 aligned_pbn;
+ } v0;
+};
#endif
diff --git a/drivers/gpu/drm/nouveau/include/nvif/if0013.h b/drivers/gpu/drm/nouveau/include/nvif/if0013.h
new file mode 100644
index 000000000000..6756c7467ae4
--- /dev/null
+++ b/drivers/gpu/drm/nouveau/include/nvif/if0013.h
@@ -0,0 +1,35 @@
+/* SPDX-License-Identifier: MIT */
+#ifndef __NVIF_IF0013_H__
+#define __NVIF_IF0013_H__
+
+union nvif_head_args {
+ struct nvif_head_v0 {
+ __u8 version;
+ __u8 id;
+ __u8 pad02[6];
+ } v0;
+};
+
+union nvif_head_event_args {
+ struct nvif_head_event_vn {
+ } vn;
+};
+
+#define NVIF_HEAD_V0_SCANOUTPOS 0x00
+
+union nvif_head_scanoutpos_args {
+ struct nvif_head_scanoutpos_v0 {
+ __u8 version;
+ __u8 pad01[7];
+ __s64 time[2];
+ __u16 vblanks;
+ __u16 vblanke;
+ __u16 vtotal;
+ __u16 vline;
+ __u16 hblanks;
+ __u16 hblanke;
+ __u16 htotal;
+ __u16 hline;
+ } v0;
+};
+#endif
diff --git a/drivers/gpu/drm/nouveau/include/nvif/if0020.h b/drivers/gpu/drm/nouveau/include/nvif/if0020.h
new file mode 100644
index 000000000000..085e0ae8a450
--- /dev/null
+++ b/drivers/gpu/drm/nouveau/include/nvif/if0020.h
@@ -0,0 +1,45 @@
+/* SPDX-License-Identifier: MIT */
+#ifndef __NVIF_IF0020_H__
+#define __NVIF_IF0020_H__
+
+union nvif_chan_args {
+ struct nvif_chan_v0 {
+ __u8 version;
+ __u8 namelen;
+ __u8 runlist;
+ __u8 runq;
+ __u8 priv;
+ __u8 pad05;
+ __u16 devm;
+ __u64 vmm;
+
+ __u64 ctxdma;
+ __u64 offset;
+ __u64 length;
+
+ __u64 huserd;
+ __u64 ouserd;
+
+ __u32 token;
+ __u16 chid;
+ __u8 pad3e;
+#define NVIF_CHAN_V0_INST_APER_VRAM 0
+#define NVIF_CHAN_V0_INST_APER_HOST 1
+#define NVIF_CHAN_V0_INST_APER_NCOH 2
+#define NVIF_CHAN_V0_INST_APER_INST 0xff
+ __u8 aper;
+ __u64 inst;
+
+ __u8 name[];
+ } v0;
+};
+
+union nvif_chan_event_args {
+ struct nvif_chan_event_v0 {
+ __u8 version;
+#define NVIF_CHAN_EVENT_V0_NON_STALL_INTR 0x00
+#define NVIF_CHAN_EVENT_V0_KILLED 0x01
+ __u8 type;
+ } v0;
+};
+#endif
diff --git a/drivers/gpu/drm/nouveau/include/nvif/if0021.h b/drivers/gpu/drm/nouveau/include/nvif/if0021.h
new file mode 100644
index 000000000000..5013def90455
--- /dev/null
+++ b/drivers/gpu/drm/nouveau/include/nvif/if0021.h
@@ -0,0 +1,16 @@
+/* SPDX-License-Identifier: MIT */
+#ifndef __NVIF_IF0021_H__
+#define __NVIF_IF0021_H__
+
+union nvif_cgrp_args {
+ struct nvif_cgrp_v0 {
+ __u8 version;
+ __u8 namelen;
+ __u8 runlist;
+ __u8 pad03[3];
+ __u16 cgid;
+ __u64 vmm;
+ __u8 name[];
+ } v0;
+};
+#endif
diff --git a/drivers/gpu/drm/nouveau/include/nvif/ioctl.h b/drivers/gpu/drm/nouveau/include/nvif/ioctl.h
index 886c63fe753f..4e047bb1fc07 100644
--- a/drivers/gpu/drm/nouveau/include/nvif/ioctl.h
+++ b/drivers/gpu/drm/nouveau/include/nvif/ioctl.h
@@ -15,10 +15,6 @@ struct nvif_ioctl_v0 {
#define NVIF_IOCTL_V0_WR 0x06
#define NVIF_IOCTL_V0_MAP 0x07
#define NVIF_IOCTL_V0_UNMAP 0x08
-#define NVIF_IOCTL_V0_NTFY_NEW 0x09
-#define NVIF_IOCTL_V0_NTFY_DEL 0x0a
-#define NVIF_IOCTL_V0_NTFY_GET 0x0b
-#define NVIF_IOCTL_V0_NTFY_PUT 0x0c
__u8 type;
__u8 pad02[4];
#define NVIF_IOCTL_V0_OWNER_NVIF 0x00
@@ -63,6 +59,14 @@ struct nvif_ioctl_new_v0 {
struct nvif_ioctl_del {
};
+struct nvif_ioctl_mthd_v0 {
+ /* nvif_ioctl ... */
+ __u8 version;
+ __u8 method;
+ __u8 pad02[6];
+ __u8 data[]; /* method data (class.h) */
+};
+
struct nvif_ioctl_rd_v0 {
/* nvif_ioctl ... */
__u8 version;
@@ -95,43 +99,4 @@ struct nvif_ioctl_map_v0 {
struct nvif_ioctl_unmap {
};
-
-struct nvif_ioctl_ntfy_new_v0 {
- /* nvif_ioctl ... */
- __u8 version;
- __u8 event;
- __u8 index;
- __u8 pad03[5];
- __u8 data[]; /* event request data (event.h) */
-};
-
-struct nvif_ioctl_ntfy_del_v0 {
- /* nvif_ioctl ... */
- __u8 version;
- __u8 index;
- __u8 pad02[6];
-};
-
-struct nvif_ioctl_ntfy_get_v0 {
- /* nvif_ioctl ... */
- __u8 version;
- __u8 index;
- __u8 pad02[6];
-};
-
-struct nvif_ioctl_ntfy_put_v0 {
- /* nvif_ioctl ... */
- __u8 version;
- __u8 index;
- __u8 pad02[6];
-};
-
-struct nvif_ioctl_mthd_v0 {
- /* nvif_ioctl ... */
- __u8 version;
- __u8 method;
- __u8 pad02[6];
- __u8 data[]; /* method data (class.h) */
-};
-
#endif
diff --git a/drivers/gpu/drm/nouveau/include/nvif/notify.h b/drivers/gpu/drm/nouveau/include/nvif/notify.h
deleted file mode 100644
index 39f6b7ee1719..000000000000
--- a/drivers/gpu/drm/nouveau/include/nvif/notify.h
+++ /dev/null
@@ -1,35 +0,0 @@
-/* SPDX-License-Identifier: MIT */
-#ifndef __NVIF_NOTIFY_H__
-#define __NVIF_NOTIFY_H__
-
-struct nvif_notify {
- struct nvif_object *object;
- const char *name;
- int index;
-
-#define NVIF_NOTIFY_USER 0
-#define NVIF_NOTIFY_WORK 1
- unsigned long flags;
- atomic_t putcnt;
- void (*dtor)(struct nvif_notify *);
-#define NVIF_NOTIFY_DROP 0
-#define NVIF_NOTIFY_KEEP 1
- int (*func)(struct nvif_notify *);
-
- /* this is const for a *very* good reason - the data might be on the
- * stack from an irq handler. if you're not nvif/notify.c then you
- * should probably think twice before casting it away...
- */
- const void *data;
- u32 size;
- struct work_struct work;
-};
-
-int nvif_notify_ctor(struct nvif_object *, const char *name,
- int (*func)(struct nvif_notify *), bool work, u8 type,
- void *data, u32 size, u32 reply, struct nvif_notify *);
-int nvif_notify_dtor(struct nvif_notify *);
-int nvif_notify_get(struct nvif_notify *);
-int nvif_notify_put(struct nvif_notify *);
-int nvif_notify(const void *, u32, const void *, u32);
-#endif
diff --git a/drivers/gpu/drm/nouveau/include/nvif/outp.h b/drivers/gpu/drm/nouveau/include/nvif/outp.h
index 0d6aa07a9184..fa76a7b5e4b3 100644
--- a/drivers/gpu/drm/nouveau/include/nvif/outp.h
+++ b/drivers/gpu/drm/nouveau/include/nvif/outp.h
@@ -2,13 +2,33 @@
#ifndef __NVIF_OUTP_H__
#define __NVIF_OUTP_H__
#include <nvif/object.h>
+#include <nvif/if0012.h>
+#include <drm/display/drm_dp.h>
struct nvif_disp;
struct nvif_outp {
struct nvif_object object;
+
+ struct {
+ int id;
+ int link;
+ } or;
};
int nvif_outp_ctor(struct nvif_disp *, const char *name, int id, struct nvif_outp *);
void nvif_outp_dtor(struct nvif_outp *);
int nvif_outp_load_detect(struct nvif_outp *, u32 loadval);
+int nvif_outp_acquire_rgb_crt(struct nvif_outp *);
+int nvif_outp_acquire_tmds(struct nvif_outp *, int head,
+ bool hdmi, u8 max_ac_packet, u8 rekey, u8 scdc, bool hda);
+int nvif_outp_acquire_lvds(struct nvif_outp *, bool dual, bool bpc8);
+int nvif_outp_acquire_dp(struct nvif_outp *outp, u8 dpcd[DP_RECEIVER_CAP_SIZE],
+ int link_nr, int link_bw, bool hda, bool mst);
+void nvif_outp_release(struct nvif_outp *);
+int nvif_outp_infoframe(struct nvif_outp *, u8 type, struct nvif_outp_infoframe_v0 *, u32 size);
+int nvif_outp_hda_eld(struct nvif_outp *, int head, void *data, u32 size);
+int nvif_outp_dp_aux_pwr(struct nvif_outp *, bool enable);
+int nvif_outp_dp_retrain(struct nvif_outp *);
+int nvif_outp_dp_mst_vcpi(struct nvif_outp *, int head,
+ u8 start_slot, u8 num_slots, u16 pbn, u16 aligned_pbn);
#endif
diff --git a/drivers/gpu/drm/nouveau/include/nvkm/core/client.h b/drivers/gpu/drm/nouveau/include/nvkm/core/client.h
index 2f86606e708c..0d9fc741a719 100644
--- a/drivers/gpu/drm/nouveau/include/nvkm/core/client.h
+++ b/drivers/gpu/drm/nouveau/include/nvkm/core/client.h
@@ -10,28 +10,19 @@ struct nvkm_client {
u64 device;
u32 debug;
- struct nvkm_client_notify *notify[32];
struct rb_root objroot;
void *data;
- int (*ntfy)(const void *, u32, const void *, u32);
+ int (*event)(u64 token, void *argv, u32 argc);
struct list_head umem;
spinlock_t lock;
};
-int nvkm_client_new(const char *name, u64 device, const char *cfg,
- const char *dbg,
- int (*)(const void *, u32, const void *, u32),
- struct nvkm_client **);
+int nvkm_client_new(const char *name, u64 device, const char *cfg, const char *dbg,
+ int (*)(u64, void *, u32), struct nvkm_client **);
struct nvkm_client *nvkm_client_search(struct nvkm_client *, u64 handle);
-int nvkm_client_notify_new(struct nvkm_object *, struct nvkm_event *,
- void *data, u32 size);
-int nvkm_client_notify_del(struct nvkm_client *, int index);
-int nvkm_client_notify_get(struct nvkm_client *, int index);
-int nvkm_client_notify_put(struct nvkm_client *, int index);
-
/* logging for client-facing objects */
#define nvif_printk(o,l,p,f,a...) do { \
const struct nvkm_object *_object = (o); \
diff --git a/drivers/gpu/drm/nouveau/include/nvkm/core/device.h b/drivers/gpu/drm/nouveau/include/nvkm/core/device.h
index efede1f11e1d..f65b5009acf7 100644
--- a/drivers/gpu/drm/nouveau/include/nvkm/core/device.h
+++ b/drivers/gpu/drm/nouveau/include/nvkm/core/device.h
@@ -2,6 +2,7 @@
#ifndef __NVKM_DEVICE_H__
#define __NVKM_DEVICE_H__
#include <core/oclass.h>
+#include <core/intr.h>
enum nvkm_subdev_type;
enum nvkm_device_type {
@@ -60,6 +61,16 @@ struct nvkm_device {
#undef NVKM_LAYOUT_INST
#undef NVKM_LAYOUT_ONCE
struct list_head subdev;
+
+ struct {
+ struct list_head intr;
+ struct list_head prio[NVKM_INTR_PRIO_NR];
+ spinlock_t lock;
+ int irq;
+ bool alloc;
+ bool armed;
+ bool legacy_done;
+ } intr;
};
struct nvkm_subdev *nvkm_device_subdev(struct nvkm_device *, int type, int inst);
@@ -72,6 +83,7 @@ struct nvkm_device_func {
int (*preinit)(struct nvkm_device *);
int (*init)(struct nvkm_device *);
void (*fini)(struct nvkm_device *, bool suspend);
+ int (*irq)(struct nvkm_device *);
resource_size_t (*resource_addr)(struct nvkm_device *, unsigned bar);
resource_size_t (*resource_size)(struct nvkm_device *, unsigned bar);
bool cpu_coherent;
diff --git a/drivers/gpu/drm/nouveau/include/nvkm/core/engine.h b/drivers/gpu/drm/nouveau/include/nvkm/core/engine.h
index e58923b67d74..b67b9c1a6b4e 100644
--- a/drivers/gpu/drm/nouveau/include/nvkm/core/engine.h
+++ b/drivers/gpu/drm/nouveau/include/nvkm/core/engine.h
@@ -12,12 +12,6 @@ struct nvkm_engine {
const struct nvkm_engine_func *func;
struct nvkm_subdev subdev;
spinlock_t lock;
-
- struct {
- refcount_t refcount;
- struct mutex mutex;
- bool enabled;
- } use;
};
struct nvkm_engine_func {
@@ -27,6 +21,7 @@ struct nvkm_engine_func {
int (*info)(struct nvkm_engine *, u64 mthd, u64 *data);
int (*init)(struct nvkm_engine *);
int (*fini)(struct nvkm_engine *, bool suspend);
+ int (*reset)(struct nvkm_engine *);
void (*intr)(struct nvkm_engine *);
void (*tile)(struct nvkm_engine *, int region, struct nvkm_fb_tile *);
bool (*chsw_load)(struct nvkm_engine *);
@@ -54,6 +49,7 @@ int nvkm_engine_new_(const struct nvkm_engine_func *, struct nvkm_device *,
struct nvkm_engine *nvkm_engine_ref(struct nvkm_engine *);
void nvkm_engine_unref(struct nvkm_engine **);
+int nvkm_engine_reset(struct nvkm_engine *);
void nvkm_engine_tile(struct nvkm_engine *, int region);
bool nvkm_engine_chsw_load(struct nvkm_engine *);
#endif
diff --git a/drivers/gpu/drm/nouveau/include/nvkm/core/event.h b/drivers/gpu/drm/nouveau/include/nvkm/core/event.h
index a7a413f07a78..82b267c11147 100644
--- a/drivers/gpu/drm/nouveau/include/nvkm/core/event.h
+++ b/drivers/gpu/drm/nouveau/include/nvkm/core/event.h
@@ -2,34 +2,76 @@
#ifndef __NVKM_EVENT_H__
#define __NVKM_EVENT_H__
#include <core/os.h>
-struct nvkm_notify;
struct nvkm_object;
+struct nvkm_oclass;
+struct nvkm_uevent;
struct nvkm_event {
const struct nvkm_event_func *func;
+ struct nvkm_subdev *subdev;
int types_nr;
int index_nr;
spinlock_t refs_lock;
spinlock_t list_lock;
- struct list_head list;
int *refs;
+
+ struct list_head ntfy;
};
struct nvkm_event_func {
- int (*ctor)(struct nvkm_object *, void *data, u32 size,
- struct nvkm_notify *);
- void (*send)(void *data, u32 size, struct nvkm_notify *);
void (*init)(struct nvkm_event *, int type, int index);
void (*fini)(struct nvkm_event *, int type, int index);
};
-int nvkm_event_init(const struct nvkm_event_func *func, int types_nr,
- int index_nr, struct nvkm_event *);
+int __nvkm_event_init(const struct nvkm_event_func *func, struct nvkm_subdev *, int types_nr,
+ int index_nr, struct nvkm_event *);
+
+/* Each nvkm_event needs its own lockdep class due to inter-dependencies, to
+ * prevent lockdep false-positives.
+ *
+ * Inlining the spinlock initialisation ensures each is unique.
+ */
+static __always_inline int
+nvkm_event_init(const struct nvkm_event_func *func, struct nvkm_subdev *subdev,
+ int types_nr, int index_nr, struct nvkm_event *event)
+{
+ spin_lock_init(&event->refs_lock);
+ spin_lock_init(&event->list_lock);
+ return __nvkm_event_init(func, subdev, types_nr, index_nr, event);
+}
+
void nvkm_event_fini(struct nvkm_event *);
-void nvkm_event_get(struct nvkm_event *, u32 types, int index);
-void nvkm_event_put(struct nvkm_event *, u32 types, int index);
-void nvkm_event_send(struct nvkm_event *, u32 types, int index,
- void *data, u32 size);
+
+#define NVKM_EVENT_KEEP 0
+#define NVKM_EVENT_DROP 1
+struct nvkm_event_ntfy;
+typedef int (*nvkm_event_func)(struct nvkm_event_ntfy *, u32 bits);
+
+struct nvkm_event_ntfy {
+ struct nvkm_event *event;
+ int id;
+ u32 bits;
+ bool wait;
+ nvkm_event_func func;
+
+ atomic_t allowed;
+ bool running;
+
+ struct list_head head;
+};
+
+void nvkm_event_ntfy(struct nvkm_event *, int id, u32 bits);
+bool nvkm_event_ntfy_valid(struct nvkm_event *, int id, u32 bits);
+void nvkm_event_ntfy_add(struct nvkm_event *, int id, u32 bits, bool wait, nvkm_event_func,
+ struct nvkm_event_ntfy *);
+void nvkm_event_ntfy_del(struct nvkm_event_ntfy *);
+void nvkm_event_ntfy_allow(struct nvkm_event_ntfy *);
+void nvkm_event_ntfy_block(struct nvkm_event_ntfy *);
+
+typedef int (*nvkm_uevent_func)(struct nvkm_object *, u64 token, u32 bits);
+
+int nvkm_uevent_new(const struct nvkm_oclass *, void *argv, u32 argc, struct nvkm_object **);
+int nvkm_uevent_add(struct nvkm_uevent *, struct nvkm_event *, int id, u32 bits, nvkm_uevent_func);
#endif
diff --git a/drivers/gpu/drm/nouveau/include/nvkm/core/falcon.h b/drivers/gpu/drm/nouveau/include/nvkm/core/falcon.h
index fd9a3f9a518e..b857cf142c4a 100644
--- a/drivers/gpu/drm/nouveau/include/nvkm/core/falcon.h
+++ b/drivers/gpu/drm/nouveau/include/nvkm/core/falcon.h
@@ -1,34 +1,166 @@
#ifndef __NVKM_FALCON_H__
#define __NVKM_FALCON_H__
+#include <core/firmware.h>
#include <engine/falcon.h>
+enum nvkm_falcon_mem {
+ IMEM,
+ DMEM,
+ EMEM,
+};
+
+static inline const char *
+nvkm_falcon_mem(enum nvkm_falcon_mem mem)
+{
+ switch (mem) {
+ case IMEM: return "imem";
+ case DMEM: return "dmem";
+ case EMEM: return "emem";
+ default:
+ WARN_ON(1);
+ return "?mem";
+ }
+}
+
+struct nvkm_falcon_func_pio {
+ int min;
+ int max;
+ void (*wr_init)(struct nvkm_falcon *, u8 port, bool sec, u32 mem_base);
+ void (*wr)(struct nvkm_falcon *, u8 port, const u8 *img, int len, u16 tag);
+ void (*rd_init)(struct nvkm_falcon *, u8 port, u32 mem_base);
+ void (*rd)(struct nvkm_falcon *, u8 port, const u8 *img, int len);
+};
+
+struct nvkm_falcon_func_dma {
+ int (*init)(struct nvkm_falcon *, u64 dma_addr, int xfer_len,
+ enum nvkm_falcon_mem, bool sec, u32 *cmd);
+ void (*xfer)(struct nvkm_falcon *, u32 mem_base, u32 dma_base, u32 cmd);
+ bool (*done)(struct nvkm_falcon *);
+};
+
int nvkm_falcon_ctor(const struct nvkm_falcon_func *, struct nvkm_subdev *owner,
const char *name, u32 addr, struct nvkm_falcon *);
void nvkm_falcon_dtor(struct nvkm_falcon *);
+int nvkm_falcon_reset(struct nvkm_falcon *);
+int nvkm_falcon_pio_wr(struct nvkm_falcon *, const u8 *img, u32 img_base, u8 port,
+ enum nvkm_falcon_mem mem_type, u32 mem_base, int len, u16 tag, bool sec);
+int nvkm_falcon_pio_rd(struct nvkm_falcon *, u8 port, enum nvkm_falcon_mem type, u32 mem_base,
+ const u8 *img, u32 img_base, int len);
+int nvkm_falcon_dma_wr(struct nvkm_falcon *, const u8 *img, u64 dma_addr, u32 dma_base,
+ enum nvkm_falcon_mem mem_type, u32 mem_base, int len, bool sec);
+
+int gm200_flcn_reset_wait_mem_scrubbing(struct nvkm_falcon *);
+int gm200_flcn_disable(struct nvkm_falcon *);
+int gm200_flcn_enable(struct nvkm_falcon *);
+void gm200_flcn_bind_inst(struct nvkm_falcon *, int, u64);
+int gm200_flcn_bind_stat(struct nvkm_falcon *, bool);
+extern const struct nvkm_falcon_func_pio gm200_flcn_imem_pio;
+extern const struct nvkm_falcon_func_pio gm200_flcn_dmem_pio;
+void gm200_flcn_tracepc(struct nvkm_falcon *);
+
+int gp102_flcn_reset_eng(struct nvkm_falcon *);
+extern const struct nvkm_falcon_func_pio gp102_flcn_emem_pio;
+
+int ga102_flcn_select(struct nvkm_falcon *);
+int ga102_flcn_reset_prep(struct nvkm_falcon *);
+int ga102_flcn_reset_wait_mem_scrubbing(struct nvkm_falcon *);
+extern const struct nvkm_falcon_func_dma ga102_flcn_dma;
void nvkm_falcon_v1_load_imem(struct nvkm_falcon *,
void *, u32, u32, u16, u8, bool);
void nvkm_falcon_v1_load_dmem(struct nvkm_falcon *, void *, u32, u32, u8);
-void nvkm_falcon_v1_read_dmem(struct nvkm_falcon *, u32, u32, u8, void *);
-void nvkm_falcon_v1_bind_context(struct nvkm_falcon *, struct nvkm_memory *);
-int nvkm_falcon_v1_wait_for_halt(struct nvkm_falcon *, u32);
-int nvkm_falcon_v1_clear_interrupt(struct nvkm_falcon *, u32);
-void nvkm_falcon_v1_set_start_addr(struct nvkm_falcon *, u32 start_addr);
void nvkm_falcon_v1_start(struct nvkm_falcon *);
-int nvkm_falcon_v1_enable(struct nvkm_falcon *);
-void nvkm_falcon_v1_disable(struct nvkm_falcon *);
-void gp102_sec2_flcn_bind_context(struct nvkm_falcon *, struct nvkm_memory *);
-int gp102_sec2_flcn_enable(struct nvkm_falcon *);
+#define FLCN_PRINTK(f,l,p,fmt,a...) ({ \
+ if ((f)->owner->name != (f)->name) \
+ nvkm_printk___((f)->owner, (f)->user, NV_DBG_##l, p, "%s:"fmt, (f)->name, ##a); \
+ else \
+ nvkm_printk___((f)->owner, (f)->user, NV_DBG_##l, p, fmt, ##a); \
+})
+#define FLCN_DBG(f,fmt,a...) FLCN_PRINTK((f), DEBUG, info, " "fmt"\n", ##a)
+#define FLCN_ERR(f,fmt,a...) FLCN_PRINTK((f), ERROR, err, " "fmt"\n", ##a)
+#define FLCN_ERRON(f,c,fmt,a...) \
+ ({ bool _cond = (c); _cond ? FLCN_ERR(f, fmt, ##a) : FLCN_DBG(f, fmt, ##a); _cond; })
+
+
+struct nvkm_falcon_fw {
+ const struct nvkm_falcon_fw_func {
+ int (*signature)(struct nvkm_falcon_fw *, u32 *sig_base_src);
+ int (*reset)(struct nvkm_falcon_fw *);
+ int (*setup)(struct nvkm_falcon_fw *);
+ int (*load)(struct nvkm_falcon_fw *);
+ int (*load_bld)(struct nvkm_falcon_fw *);
+ int (*boot)(struct nvkm_falcon_fw *,
+ u32 *mbox0, u32 *mbox1, u32 mbox0_ok, u32 irqsclr);
+ } *func;
+ struct nvkm_firmware fw;
+
+ u32 sig_base_prd;
+ u32 sig_base_dbg;
+ u32 sig_base_img;
+ u32 sig_size;
+ int sig_nr;
+ u8 *sigs;
+ u32 fuse_ver;
+ u32 engine_id;
+ u32 ucode_id;
+
+ u32 nmem_base_img;
+ u32 nmem_base;
+ u32 nmem_size;
+
+ u32 imem_base_img;
+ u32 imem_base;
+ u32 imem_size;
+
+ u32 dmem_base_img;
+ u32 dmem_base;
+ u32 dmem_size;
+ u32 dmem_sign;
+
+ u8 *boot;
+ u32 boot_size;
+ u32 boot_addr;
+
+ struct nvkm_falcon *falcon;
+ struct nvkm_memory *inst;
+ struct nvkm_vmm *vmm;
+ struct nvkm_vma *vma;
+};
+
+int nvkm_falcon_fw_ctor(const struct nvkm_falcon_fw_func *, const char *name, struct nvkm_device *,
+ bool bl, const void *src, u32 len, struct nvkm_falcon *,
+ struct nvkm_falcon_fw *);
+int nvkm_falcon_fw_ctor_hs(const struct nvkm_falcon_fw_func *, const char *name,
+ struct nvkm_subdev *, const char *bl, const char *img, int ver,
+ struct nvkm_falcon *falcon, struct nvkm_falcon_fw *fw);
+int nvkm_falcon_fw_ctor_hs_v2(const struct nvkm_falcon_fw_func *, const char *name,
+ struct nvkm_subdev *, const char *img, int ver, struct nvkm_falcon *,
+ struct nvkm_falcon_fw *);
+int nvkm_falcon_fw_sign(struct nvkm_falcon_fw *, u32 sig_base_img, u32 sig_size, const u8 *sigs,
+ int sig_nr_prd, u32 sig_base_prd, int sig_nr_dbg, u32 sig_base_dbg);
+int nvkm_falcon_fw_patch(struct nvkm_falcon_fw *);
+void nvkm_falcon_fw_dtor(struct nvkm_falcon_fw *);
+int nvkm_falcon_fw_oneinit(struct nvkm_falcon_fw *, struct nvkm_falcon *, struct nvkm_vmm *,
+ struct nvkm_memory *inst);
+int nvkm_falcon_fw_boot(struct nvkm_falcon_fw *, struct nvkm_subdev *user,
+ bool release, u32 *pmbox0, u32 *pmbox1, u32 mbox0_ok, u32 irqsclr);
+
+extern const struct nvkm_falcon_fw_func gm200_flcn_fw;
+int gm200_flcn_fw_signature(struct nvkm_falcon_fw *, u32 *);
+int gm200_flcn_fw_reset(struct nvkm_falcon_fw *);
+int gm200_flcn_fw_load(struct nvkm_falcon_fw *);
+int gm200_flcn_fw_boot(struct nvkm_falcon_fw *, u32 *, u32 *, u32, u32);
+
+int ga100_flcn_fw_signature(struct nvkm_falcon_fw *, u32 *);
+
+extern const struct nvkm_falcon_fw_func ga102_flcn_fw;
+int ga102_flcn_fw_load(struct nvkm_falcon_fw *);
+int ga102_flcn_fw_boot(struct nvkm_falcon_fw *, u32 *, u32 *, u32, u32);
-#define FLCN_PRINTK(t,f,fmt,a...) do { \
- if ((f)->owner->name != (f)->name) \
- nvkm_##t((f)->owner, "%s: "fmt"\n", (f)->name, ##a); \
- else \
- nvkm_##t((f)->owner, fmt"\n", ##a); \
-} while(0)
-#define FLCN_DBG(f,fmt,a...) FLCN_PRINTK(debug, (f), fmt, ##a)
-#define FLCN_ERR(f,fmt,a...) FLCN_PRINTK(error, (f), fmt, ##a)
+#define FLCNFW_PRINTK(f,l,p,fmt,a...) FLCN_PRINTK((f)->falcon, l, p, "%s: "fmt, (f)->fw.name, ##a)
+#define FLCNFW_DBG(f,fmt,a...) FLCNFW_PRINTK((f), DEBUG, info, fmt"\n", ##a)
+#define FLCNFW_ERR(f,fmt,a...) FLCNFW_PRINTK((f), ERROR, err, fmt"\n", ##a)
/**
* struct nvfw_falcon_msg - header for all messages
@@ -72,6 +204,7 @@ int nvkm_falcon_msgq_new(struct nvkm_falcon_qmgr *, const char *name,
void nvkm_falcon_msgq_del(struct nvkm_falcon_msgq **);
void nvkm_falcon_msgq_init(struct nvkm_falcon_msgq *,
u32 index, u32 offset, u32 size);
+bool nvkm_falcon_msgq_empty(struct nvkm_falcon_msgq *);
int nvkm_falcon_msgq_recv_initmsg(struct nvkm_falcon_msgq *, void *, u32 size);
void nvkm_falcon_msgq_recv(struct nvkm_falcon_msgq *);
#endif
diff --git a/drivers/gpu/drm/nouveau/include/nvkm/core/firmware.h b/drivers/gpu/drm/nouveau/include/nvkm/core/firmware.h
index 85bcb80f6873..d4e507e252b1 100644
--- a/drivers/gpu/drm/nouveau/include/nvkm/core/firmware.h
+++ b/drivers/gpu/drm/nouveau/include/nvkm/core/firmware.h
@@ -1,9 +1,34 @@
/* SPDX-License-Identifier: MIT */
#ifndef __NVKM_FIRMWARE_H__
#define __NVKM_FIRMWARE_H__
+#include <core/memory.h>
#include <core/option.h>
#include <core/subdev.h>
+struct nvkm_firmware {
+ const struct nvkm_firmware_func {
+ enum nvkm_firmware_type {
+ NVKM_FIRMWARE_IMG_RAM,
+ NVKM_FIRMWARE_IMG_DMA,
+ } type;
+ } *func;
+ const char *name;
+ struct nvkm_device *device;
+
+ int len;
+ u8 *img;
+ u64 phys;
+
+ struct nvkm_firmware_mem {
+ struct nvkm_memory memory;
+ struct scatterlist sgl;
+ } mem;
+};
+
+int nvkm_firmware_ctor(const struct nvkm_firmware_func *, const char *name, struct nvkm_device *,
+ const void *ptr, int len, struct nvkm_firmware *);
+void nvkm_firmware_dtor(struct nvkm_firmware *);
+
int nvkm_firmware_get(const struct nvkm_subdev *, const char *fwname, int ver,
const struct firmware **);
void nvkm_firmware_put(const struct firmware *);
diff --git a/drivers/gpu/drm/nouveau/include/nvkm/core/intr.h b/drivers/gpu/drm/nouveau/include/nvkm/core/intr.h
new file mode 100644
index 000000000000..a003d6a544b0
--- /dev/null
+++ b/drivers/gpu/drm/nouveau/include/nvkm/core/intr.h
@@ -0,0 +1,73 @@
+/* SPDX-License-Identifier: MIT */
+#ifndef __NVKM_INTR_H__
+#define __NVKM_INTR_H__
+#include <core/os.h>
+struct nvkm_device;
+struct nvkm_subdev;
+
+enum nvkm_intr_prio {
+ NVKM_INTR_PRIO_VBLANK = 0,
+ NVKM_INTR_PRIO_NORMAL,
+ NVKM_INTR_PRIO_NR
+};
+
+enum nvkm_intr_type {
+ NVKM_INTR_SUBDEV = -1, /* lookup vector by requesting subdev, in mapping table. */
+ NVKM_INTR_VECTOR_0 = 0,
+};
+
+struct nvkm_intr {
+ const struct nvkm_intr_func {
+ bool (*pending)(struct nvkm_intr *);
+ void (*unarm)(struct nvkm_intr *);
+ void (*rearm)(struct nvkm_intr *);
+ void (*block)(struct nvkm_intr *, int leaf, u32 mask);
+ void (*allow)(struct nvkm_intr *, int leaf, u32 mask);
+ void (*reset)(struct nvkm_intr *, int leaf, u32 mask);
+ } *func;
+ const struct nvkm_intr_data {
+ int type; /* enum nvkm_subdev_type (+ve), enum nvkm_intr_type (-ve) */
+ int inst;
+ int leaf;
+ u32 mask; /* 0-terminated. */
+ bool legacy; /* auto-create "legacy" nvkm_subdev_intr() handler */
+ } *data;
+
+ struct nvkm_subdev *subdev;
+ int leaves;
+ u32 *stat;
+ u32 *mask;
+
+ struct list_head head;
+};
+
+void nvkm_intr_ctor(struct nvkm_device *);
+void nvkm_intr_dtor(struct nvkm_device *);
+int nvkm_intr_install(struct nvkm_device *);
+void nvkm_intr_unarm(struct nvkm_device *);
+void nvkm_intr_rearm(struct nvkm_device *);
+
+int nvkm_intr_add(const struct nvkm_intr_func *, const struct nvkm_intr_data *,
+ struct nvkm_subdev *, int leaves, struct nvkm_intr *);
+void nvkm_intr_block(struct nvkm_subdev *, enum nvkm_intr_type);
+void nvkm_intr_allow(struct nvkm_subdev *, enum nvkm_intr_type);
+
+struct nvkm_inth;
+typedef irqreturn_t (*nvkm_inth_func)(struct nvkm_inth *);
+
+struct nvkm_inth {
+ struct nvkm_intr *intr;
+ int leaf;
+ u32 mask;
+ nvkm_inth_func func;
+
+ atomic_t allowed;
+
+ struct list_head head;
+};
+
+int nvkm_inth_add(struct nvkm_intr *, enum nvkm_intr_type, enum nvkm_intr_prio,
+ struct nvkm_subdev *, nvkm_inth_func, struct nvkm_inth *);
+void nvkm_inth_allow(struct nvkm_inth *);
+void nvkm_inth_block(struct nvkm_inth *);
+#endif
diff --git a/drivers/gpu/drm/nouveau/include/nvkm/core/layout.h b/drivers/gpu/drm/nouveau/include/nvkm/core/layout.h
index 7afe1579b20f..58108dea5aeb 100644
--- a/drivers/gpu/drm/nouveau/include/nvkm/core/layout.h
+++ b/drivers/gpu/drm/nouveau/include/nvkm/core/layout.h
@@ -1,8 +1,10 @@
/* SPDX-License-Identifier: MIT */
+NVKM_LAYOUT_ONCE(NVKM_SUBDEV_TOP , struct nvkm_top , top)
+NVKM_LAYOUT_ONCE(NVKM_SUBDEV_GSP , struct nvkm_gsp , gsp)
+NVKM_LAYOUT_ONCE(NVKM_SUBDEV_VFN , struct nvkm_vfn , vfn)
NVKM_LAYOUT_ONCE(NVKM_SUBDEV_PCI , struct nvkm_pci , pci)
NVKM_LAYOUT_ONCE(NVKM_SUBDEV_VBIOS , struct nvkm_bios , bios)
NVKM_LAYOUT_ONCE(NVKM_SUBDEV_DEVINIT , struct nvkm_devinit , devinit)
-NVKM_LAYOUT_ONCE(NVKM_SUBDEV_TOP , struct nvkm_top , top)
NVKM_LAYOUT_ONCE(NVKM_SUBDEV_PRIVRING, struct nvkm_subdev , privring)
NVKM_LAYOUT_ONCE(NVKM_SUBDEV_GPIO , struct nvkm_gpio , gpio)
NVKM_LAYOUT_ONCE(NVKM_SUBDEV_I2C , struct nvkm_i2c , i2c)
@@ -23,7 +25,6 @@ NVKM_LAYOUT_ONCE(NVKM_SUBDEV_VOLT , struct nvkm_volt , volt)
NVKM_LAYOUT_ONCE(NVKM_SUBDEV_ICCSENSE, struct nvkm_iccsense, iccsense)
NVKM_LAYOUT_ONCE(NVKM_SUBDEV_THERM , struct nvkm_therm , therm)
NVKM_LAYOUT_ONCE(NVKM_SUBDEV_CLK , struct nvkm_clk , clk)
-NVKM_LAYOUT_ONCE(NVKM_SUBDEV_GSP , struct nvkm_gsp , gsp)
NVKM_LAYOUT_INST(NVKM_SUBDEV_IOCTRL , struct nvkm_subdev , ioctrl, 3)
NVKM_LAYOUT_ONCE(NVKM_SUBDEV_FLA , struct nvkm_subdev , fla)
diff --git a/drivers/gpu/drm/nouveau/include/nvkm/core/memory.h b/drivers/gpu/drm/nouveau/include/nvkm/core/memory.h
index 74d3f1a809d7..d3b6a68ddda3 100644
--- a/drivers/gpu/drm/nouveau/include/nvkm/core/memory.h
+++ b/drivers/gpu/drm/nouveau/include/nvkm/core/memory.h
@@ -37,6 +37,7 @@ struct nvkm_memory_func {
void (*release)(struct nvkm_memory *);
int (*map)(struct nvkm_memory *, u64 offset, struct nvkm_vmm *,
struct nvkm_vma *, void *argv, u32 argc);
+ int (*kmap)(struct nvkm_memory *, struct nvkm_memory **);
};
struct nvkm_memory_ptrs {
@@ -63,6 +64,7 @@ void nvkm_memory_tags_put(struct nvkm_memory *, struct nvkm_device *,
#define nvkm_memory_boot(p,v) (p)->func->boot((p),(v))
#define nvkm_memory_map(p,o,vm,va,av,ac) \
(p)->func->map((p),(o),(vm),(va),(av),(ac))
+#define nvkm_memory_kmap(p,i) ((p)->func->kmap ? (p)->func->kmap((p), (i)) : -ENOSYS)
/* accessor macros - kmap()/done() must bracket use of the other accessor
* macros to guarantee correct behaviour across all chipsets
diff --git a/drivers/gpu/drm/nouveau/include/nvkm/core/notify.h b/drivers/gpu/drm/nouveau/include/nvkm/core/notify.h
deleted file mode 100644
index 3d358a66db3a..000000000000
--- a/drivers/gpu/drm/nouveau/include/nvkm/core/notify.h
+++ /dev/null
@@ -1,39 +0,0 @@
-/* SPDX-License-Identifier: MIT */
-#ifndef __NVKM_NOTIFY_H__
-#define __NVKM_NOTIFY_H__
-#include <core/os.h>
-struct nvkm_object;
-
-struct nvkm_notify {
- struct nvkm_event *event;
- struct list_head head;
-#define NVKM_NOTIFY_USER 0
-#define NVKM_NOTIFY_WORK 1
- unsigned long flags;
- int block;
-#define NVKM_NOTIFY_DROP 0
-#define NVKM_NOTIFY_KEEP 1
- int (*func)(struct nvkm_notify *);
-
- /* set by nvkm_event ctor */
- u32 types;
- int index;
- u32 size;
-
- struct work_struct work;
- /* this is const for a *very* good reason - the data might be on the
- * stack from an irq handler. if you're not core/notify.c then you
- * should probably think twice before casting it away...
- */
- const void *data;
-};
-
-int nvkm_notify_init(struct nvkm_object *, struct nvkm_event *,
- int (*func)(struct nvkm_notify *), bool work,
- void *data, u32 size, u32 reply,
- struct nvkm_notify *);
-void nvkm_notify_fini(struct nvkm_notify *);
-void nvkm_notify_get(struct nvkm_notify *);
-void nvkm_notify_put(struct nvkm_notify *);
-void nvkm_notify_send(struct nvkm_notify *, void *data, u32 size);
-#endif
diff --git a/drivers/gpu/drm/nouveau/include/nvkm/core/object.h b/drivers/gpu/drm/nouveau/include/nvkm/core/object.h
index 7efcd5d2f2ff..ed1f66360782 100644
--- a/drivers/gpu/drm/nouveau/include/nvkm/core/object.h
+++ b/drivers/gpu/drm/nouveau/include/nvkm/core/object.h
@@ -4,6 +4,7 @@
#include <core/oclass.h>
struct nvkm_event;
struct nvkm_gpuobj;
+struct nvkm_uevent;
struct nvkm_object {
const struct nvkm_object_func *func;
@@ -43,6 +44,7 @@ struct nvkm_object_func {
int (*bind)(struct nvkm_object *, struct nvkm_gpuobj *, int align,
struct nvkm_gpuobj **);
int (*sclass)(struct nvkm_object *, int index, struct nvkm_oclass *);
+ int (*uevent)(struct nvkm_object *, void *argv, u32 argc, struct nvkm_uevent *);
};
void nvkm_object_ctor(const struct nvkm_object_func *,
diff --git a/drivers/gpu/drm/nouveau/include/nvkm/core/os.h b/drivers/gpu/drm/nouveau/include/nvkm/core/os.h
index d7ba3205207f..4486d9862849 100644
--- a/drivers/gpu/drm/nouveau/include/nvkm/core/os.h
+++ b/drivers/gpu/drm/nouveau/include/nvkm/core/os.h
@@ -34,4 +34,24 @@ nvkm_blob_dtor(struct nvkm_blob *blob)
blob->data = NULL;
blob->size = 0;
}
+
+#define nvkm_list_find_next(p,h,m,c) ({ \
+ typeof(p) _p = NULL; \
+ list_for_each_entry_continue(p, (h), m) { \
+ if (c) { \
+ _p = p; \
+ break; \
+ } \
+ } \
+ _p; \
+})
+#define nvkm_list_find(p,h,m,c) \
+ (p = container_of((h), typeof(*p), m), nvkm_list_find_next(p, (h), m, (c)))
+#define nvkm_list_foreach(p,h,m,c) \
+ for (p = nvkm_list_find(p, (h), m, (c)); p; p = nvkm_list_find_next(p, (h), m, (c)))
+
+/*FIXME: remove after */
+#define nvkm_fifo_chan nvkm_chan
+#define nvkm_fifo_chan_func nvkm_chan_func
+#define nvkm_fifo_cgrp nvkm_cgrp
#endif
diff --git a/drivers/gpu/drm/nouveau/include/nvkm/core/subdev.h b/drivers/gpu/drm/nouveau/include/nvkm/core/subdev.h
index 96113c8bee8c..bce6e1ba09ea 100644
--- a/drivers/gpu/drm/nouveau/include/nvkm/core/subdev.h
+++ b/drivers/gpu/drm/nouveau/include/nvkm/core/subdev.h
@@ -17,10 +17,19 @@ struct nvkm_subdev {
struct nvkm_device *device;
enum nvkm_subdev_type type;
int inst;
+
char name[16];
u32 debug;
- struct list_head head;
+ struct {
+ refcount_t refcount;
+ struct mutex mutex;
+ bool enabled;
+ } use;
+
+ struct nvkm_inth inth;
+
+ struct list_head head;
void **pself;
bool oneinit;
};
@@ -38,22 +47,41 @@ struct nvkm_subdev_func {
extern const char *nvkm_subdev_type[NVKM_SUBDEV_NR];
int nvkm_subdev_new_(const struct nvkm_subdev_func *, struct nvkm_device *, enum nvkm_subdev_type,
int inst, struct nvkm_subdev **);
-void nvkm_subdev_ctor(const struct nvkm_subdev_func *, struct nvkm_device *,
- enum nvkm_subdev_type, int inst, struct nvkm_subdev *);
+void __nvkm_subdev_ctor(const struct nvkm_subdev_func *, struct nvkm_device *,
+ enum nvkm_subdev_type, int inst, struct nvkm_subdev *);
+
+static inline void
+nvkm_subdev_ctor(const struct nvkm_subdev_func *func, struct nvkm_device *device,
+ enum nvkm_subdev_type type, int inst, struct nvkm_subdev *subdev)
+{
+ __nvkm_subdev_ctor(func, device, type, inst, subdev);
+ mutex_init(&subdev->use.mutex);
+}
+
void nvkm_subdev_disable(struct nvkm_device *, enum nvkm_subdev_type, int inst);
void nvkm_subdev_del(struct nvkm_subdev **);
+int nvkm_subdev_ref(struct nvkm_subdev *);
+void nvkm_subdev_unref(struct nvkm_subdev *);
int nvkm_subdev_preinit(struct nvkm_subdev *);
+int nvkm_subdev_oneinit(struct nvkm_subdev *);
int nvkm_subdev_init(struct nvkm_subdev *);
int nvkm_subdev_fini(struct nvkm_subdev *, bool suspend);
int nvkm_subdev_info(struct nvkm_subdev *, u64, u64 *);
void nvkm_subdev_intr(struct nvkm_subdev *);
/* subdev logging */
-#define nvkm_printk_(s,l,p,f,a...) do { \
- const struct nvkm_subdev *_subdev = (s); \
- if (CONFIG_NOUVEAU_DEBUG >= (l) && _subdev->debug >= (l)) \
- dev_##p(_subdev->device->dev, "%s: "f, _subdev->name, ##a); \
+#define nvkm_printk_ok(s,u,l) \
+ ((CONFIG_NOUVEAU_DEBUG >= (l)) && ((s)->debug >= (l) || ((u) && (u)->debug >= (l))))
+#define nvkm_printk___(s,u,l,p,f,a...) do { \
+ if (nvkm_printk_ok((s), (u), (l))) { \
+ if ((u) && (u) != (s)) \
+ dev_##p((s)->device->dev, "%s(%s):"f, (s)->name, (u)->name, ##a); \
+ else \
+ dev_##p((s)->device->dev, "%s:"f, (s)->name, ##a); \
+ } \
} while(0)
+#define nvkm_printk__(s,l,p,f,a...) nvkm_printk___((s), (s), (l), p, f, ##a)
+#define nvkm_printk_(s,l,p,f,a...) nvkm_printk__((s), (l), p, " "f, ##a)
#define nvkm_printk(s,l,p,f,a...) nvkm_printk_((s), NV_DBG_##l, p, f, ##a)
#define nvkm_fatal(s,f,a...) nvkm_printk((s), FATAL, crit, f, ##a)
#define nvkm_error(s,f,a...) nvkm_printk((s), ERROR, err, f, ##a)
diff --git a/drivers/gpu/drm/nouveau/include/nvkm/core/tegra.h b/drivers/gpu/drm/nouveau/include/nvkm/core/tegra.h
index 924009dd2bb0..ccee53d4e4ec 100644
--- a/drivers/gpu/drm/nouveau/include/nvkm/core/tegra.h
+++ b/drivers/gpu/drm/nouveau/include/nvkm/core/tegra.h
@@ -8,7 +8,6 @@ struct nvkm_device_tegra {
const struct nvkm_device_tegra_func *func;
struct nvkm_device device;
struct platform_device *pdev;
- int irq;
struct reset_control *rst;
struct clk *clk;
diff --git a/drivers/gpu/drm/nouveau/include/nvkm/engine/ce.h b/drivers/gpu/drm/nouveau/include/nvkm/engine/ce.h
index cfd2da8e66fe..b616a1e8ca02 100644
--- a/drivers/gpu/drm/nouveau/include/nvkm/engine/ce.h
+++ b/drivers/gpu/drm/nouveau/include/nvkm/engine/ce.h
@@ -12,4 +12,6 @@ int gp100_ce_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct n
int gp102_ce_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_engine **);
int gv100_ce_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_engine **);
int tu102_ce_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_engine **);
+int ga100_ce_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_engine **);
+int ga102_ce_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_engine **);
#endif
diff --git a/drivers/gpu/drm/nouveau/include/nvkm/engine/disp.h b/drivers/gpu/drm/nouveau/include/nvkm/engine/disp.h
index 8b5d8a434be8..ad9aef2df48f 100644
--- a/drivers/gpu/drm/nouveau/include/nvkm/engine/disp.h
+++ b/drivers/gpu/drm/nouveau/include/nvkm/engine/disp.h
@@ -16,6 +16,7 @@ struct nvkm_disp {
struct list_head conns;
struct nvkm_event hpd;
+#define NVKM_DISP_HEAD_EVENT_VBLANK BIT(0)
struct nvkm_event vblank;
struct {
@@ -31,13 +32,7 @@ struct nvkm_disp {
struct {
unsigned long mask;
int nr;
- } wndw, head, dac;
-
- struct {
- unsigned long mask;
- int nr;
- u32 lvdsconf;
- } sor;
+ } wndw, head, dac, sor;
struct {
unsigned long mask;
diff --git a/drivers/gpu/drm/nouveau/include/nvkm/engine/falcon.h b/drivers/gpu/drm/nouveau/include/nvkm/engine/falcon.h
index b593407b9e36..cd86d9198e4a 100644
--- a/drivers/gpu/drm/nouveau/include/nvkm/engine/falcon.h
+++ b/drivers/gpu/drm/nouveau/include/nvkm/engine/falcon.h
@@ -16,15 +16,16 @@ enum nvkm_falcon_dmaidx {
struct nvkm_falcon {
const struct nvkm_falcon_func *func;
- const struct nvkm_subdev *owner;
+ struct nvkm_subdev *owner;
const char *name;
u32 addr;
+ u32 addr2;
struct mutex mutex;
struct mutex dmem_mutex;
bool oneinit;
- const struct nvkm_subdev *user;
+ struct nvkm_subdev *user;
u8 version;
u8 secret;
@@ -50,13 +51,42 @@ struct nvkm_falcon {
struct nvkm_engine engine;
};
-int nvkm_falcon_get(struct nvkm_falcon *, const struct nvkm_subdev *);
-void nvkm_falcon_put(struct nvkm_falcon *, const struct nvkm_subdev *);
+int nvkm_falcon_get(struct nvkm_falcon *, struct nvkm_subdev *);
+void nvkm_falcon_put(struct nvkm_falcon *, struct nvkm_subdev *);
int nvkm_falcon_new_(const struct nvkm_falcon_func *, struct nvkm_device *,
enum nvkm_subdev_type, int inst, bool enable, u32 addr, struct nvkm_engine **);
struct nvkm_falcon_func {
+ int (*disable)(struct nvkm_falcon *);
+ int (*enable)(struct nvkm_falcon *);
+ int (*select)(struct nvkm_falcon *);
+ u32 addr2;
+ bool reset_pmc;
+ int (*reset_eng)(struct nvkm_falcon *);
+ int (*reset_prep)(struct nvkm_falcon *);
+ int (*reset_wait_mem_scrubbing)(struct nvkm_falcon *);
+
+ u32 debug;
+ void (*bind_inst)(struct nvkm_falcon *, int target, u64 addr);
+ int (*bind_stat)(struct nvkm_falcon *, bool intr);
+ bool bind_intr;
+
+ const struct nvkm_falcon_func_pio *imem_pio;
+ const struct nvkm_falcon_func_dma *imem_dma;
+
+ const struct nvkm_falcon_func_pio *dmem_pio;
+ const struct nvkm_falcon_func_dma *dmem_dma;
+
+ u32 emem_addr;
+ const struct nvkm_falcon_func_pio *emem_pio;
+
+ struct {
+ u32 head;
+ u32 tail;
+ u32 stride;
+ } cmdq, msgq;
+
struct {
u32 *data;
u32 size;
@@ -66,29 +96,11 @@ struct nvkm_falcon_func {
u32 size;
} data;
void (*init)(struct nvkm_falcon *);
- void (*intr)(struct nvkm_falcon *, struct nvkm_fifo_chan *);
-
- u32 debug;
- u32 fbif;
+ void (*intr)(struct nvkm_falcon *, struct nvkm_chan *);
void (*load_imem)(struct nvkm_falcon *, void *, u32, u32, u16, u8, bool);
void (*load_dmem)(struct nvkm_falcon *, void *, u32, u32, u8);
- void (*read_dmem)(struct nvkm_falcon *, u32, u32, u8, void *);
- u32 emem_addr;
- void (*bind_context)(struct nvkm_falcon *, struct nvkm_memory *);
- int (*wait_for_halt)(struct nvkm_falcon *, u32);
- int (*clear_interrupt)(struct nvkm_falcon *, u32);
- void (*set_start_addr)(struct nvkm_falcon *, u32 start_addr);
void (*start)(struct nvkm_falcon *);
- int (*enable)(struct nvkm_falcon *falcon);
- void (*disable)(struct nvkm_falcon *falcon);
- int (*reset)(struct nvkm_falcon *);
-
- struct {
- u32 head;
- u32 tail;
- u32 stride;
- } cmdq, msgq;
struct nvkm_sclass sclass[];
};
@@ -116,13 +128,5 @@ nvkm_falcon_mask(struct nvkm_falcon *falcon, u32 addr, u32 mask, u32 val)
void nvkm_falcon_load_imem(struct nvkm_falcon *, void *, u32, u32, u16, u8,
bool);
void nvkm_falcon_load_dmem(struct nvkm_falcon *, void *, u32, u32, u8);
-void nvkm_falcon_read_dmem(struct nvkm_falcon *, u32, u32, u8, void *);
-void nvkm_falcon_bind_context(struct nvkm_falcon *, struct nvkm_memory *);
-void nvkm_falcon_set_start_addr(struct nvkm_falcon *, u32);
void nvkm_falcon_start(struct nvkm_falcon *);
-int nvkm_falcon_wait_for_halt(struct nvkm_falcon *, u32);
-int nvkm_falcon_clear_interrupt(struct nvkm_falcon *, u32);
-int nvkm_falcon_enable(struct nvkm_falcon *);
-void nvkm_falcon_disable(struct nvkm_falcon *);
-int nvkm_falcon_reset(struct nvkm_falcon *);
#endif
diff --git a/drivers/gpu/drm/nouveau/include/nvkm/engine/fifo.h b/drivers/gpu/drm/nouveau/include/nvkm/engine/fifo.h
index 15099913504d..221abd6c4310 100644
--- a/drivers/gpu/drm/nouveau/include/nvkm/engine/fifo.h
+++ b/drivers/gpu/drm/nouveau/include/nvkm/engine/fifo.h
@@ -6,56 +6,76 @@
#include <core/event.h>
struct nvkm_fault_data;
-#define NVKM_FIFO_CHID_NR 4096
#define NVKM_FIFO_ENGN_NR 16
-struct nvkm_fifo_engn {
- struct nvkm_object *object;
- int refcount;
- int usecount;
-};
-
-struct nvkm_fifo_chan {
- const struct nvkm_fifo_chan_func *func;
- struct nvkm_fifo *fifo;
- u32 engm;
- struct nvkm_object object;
+struct nvkm_chan {
+ const struct nvkm_chan_func *func;
+ char name[64];
+ struct nvkm_cgrp *cgrp;
+ int runq;
- struct list_head head;
- u16 chid;
struct nvkm_gpuobj *inst;
- struct nvkm_gpuobj *push;
struct nvkm_vmm *vmm;
- u64 addr;
- u32 size;
+ struct nvkm_gpuobj *push;
+ int id;
+
+ struct {
+ struct nvkm_memory *mem;
+ u32 base;
+ } userd;
+
+ u32 ramfc_offset;
+ struct nvkm_gpuobj *ramfc;
+ struct nvkm_gpuobj *cache;
+ struct nvkm_gpuobj *eng;
+ struct nvkm_gpuobj *pgd;
+ struct nvkm_ramht *ramht;
+
+ spinlock_t lock;
+ atomic_t blocked;
+ atomic_t errored;
- struct nvkm_fifo_engn engn[NVKM_FIFO_ENGN_NR];
+ struct list_head cctxs;
+ struct list_head head;
};
+struct nvkm_chan *nvkm_chan_get_chid(struct nvkm_engine *, int id, unsigned long *irqflags);
+struct nvkm_chan *nvkm_chan_get_inst(struct nvkm_engine *, u64 inst, unsigned long *irqflags);
+void nvkm_chan_put(struct nvkm_chan **, unsigned long irqflags);
+
struct nvkm_fifo {
const struct nvkm_fifo_func *func;
struct nvkm_engine engine;
- DECLARE_BITMAP(mask, NVKM_FIFO_CHID_NR);
- int nr;
- struct list_head chan;
+ struct nvkm_chid *chid;
+ struct nvkm_chid *cgid;
+
+ struct list_head runqs;
+ struct list_head runls;
+
+ struct {
+#define NVKM_FIFO_NONSTALL_EVENT BIT(0)
+ struct nvkm_event event;
+ struct nvkm_inth intr;
+ } nonstall;
+
+ struct {
+ u32 chan_msec;
+ } timeout;
+
+ struct {
+ struct nvkm_memory *mem;
+ struct nvkm_vma *bar1;
+ } userd;
+
spinlock_t lock;
struct mutex mutex;
-
- struct nvkm_event uevent; /* async user trigger */
- struct nvkm_event kevent; /* channel killed */
};
void nvkm_fifo_fault(struct nvkm_fifo *, struct nvkm_fault_data *);
void nvkm_fifo_pause(struct nvkm_fifo *, unsigned long *);
void nvkm_fifo_start(struct nvkm_fifo *, unsigned long *);
-
-void nvkm_fifo_chan_put(struct nvkm_fifo *, unsigned long flags,
- struct nvkm_fifo_chan **);
-struct nvkm_fifo_chan *
-nvkm_fifo_chan_inst(struct nvkm_fifo *, u64 inst, unsigned long *flags);
-struct nvkm_fifo_chan *
-nvkm_fifo_chan_chid(struct nvkm_fifo *, int chid, unsigned long *flags);
+bool nvkm_fifo_ctxsw_in_progress(struct nvkm_engine *);
int nv04_fifo_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_fifo **);
int nv10_fifo_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_fifo **);
@@ -63,6 +83,7 @@ int nv17_fifo_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct
int nv40_fifo_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_fifo **);
int nv50_fifo_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_fifo **);
int g84_fifo_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_fifo **);
+int g98_fifo_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_fifo **);
int gf100_fifo_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_fifo **);
int gk104_fifo_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_fifo **);
int gk110_fifo_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_fifo **);
@@ -70,10 +91,9 @@ int gk208_fifo_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct
int gk20a_fifo_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_fifo **);
int gm107_fifo_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_fifo **);
int gm200_fifo_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_fifo **);
-int gm20b_fifo_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_fifo **);
int gp100_fifo_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_fifo **);
-int gp10b_fifo_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_fifo **);
int gv100_fifo_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_fifo **);
int tu102_fifo_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_fifo **);
+int ga100_fifo_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_fifo **);
int ga102_fifo_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_fifo **);
#endif
diff --git a/drivers/gpu/drm/nouveau/include/nvkm/engine/gr.h b/drivers/gpu/drm/nouveau/include/nvkm/engine/gr.h
index b28b752ffaa2..a2333cfe6955 100644
--- a/drivers/gpu/drm/nouveau/include/nvkm/engine/gr.h
+++ b/drivers/gpu/drm/nouveau/include/nvkm/engine/gr.h
@@ -54,4 +54,5 @@ int gp108_gr_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct n
int gp10b_gr_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_gr **);
int gv100_gr_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_gr **);
int tu102_gr_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_gr **);
+int ga102_gr_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_gr **);
#endif
diff --git a/drivers/gpu/drm/nouveau/include/nvkm/engine/nvdec.h b/drivers/gpu/drm/nouveau/include/nvkm/engine/nvdec.h
index 97bd3092f68a..9baf197ac833 100644
--- a/drivers/gpu/drm/nouveau/include/nvkm/engine/nvdec.h
+++ b/drivers/gpu/drm/nouveau/include/nvkm/engine/nvdec.h
@@ -12,4 +12,5 @@ struct nvkm_nvdec {
};
int gm107_nvdec_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_nvdec **);
+int ga102_nvdec_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_nvdec **);
#endif
diff --git a/drivers/gpu/drm/nouveau/include/nvkm/engine/sec2.h b/drivers/gpu/drm/nouveau/include/nvkm/engine/sec2.h
index 06264c840eae..8d48fb20fa54 100644
--- a/drivers/gpu/drm/nouveau/include/nvkm/engine/sec2.h
+++ b/drivers/gpu/drm/nouveau/include/nvkm/engine/sec2.h
@@ -10,15 +10,18 @@ struct nvkm_sec2 {
struct nvkm_engine engine;
struct nvkm_falcon falcon;
+ atomic_t running;
+ atomic_t initmsg;
+
struct nvkm_falcon_qmgr *qmgr;
struct nvkm_falcon_cmdq *cmdq;
struct nvkm_falcon_msgq *msgq;
struct work_struct work;
- bool initmsg_received;
};
int gp102_sec2_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_sec2 **);
int gp108_sec2_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_sec2 **);
int tu102_sec2_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_sec2 **);
+int ga102_sec2_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_sec2 **);
#endif
diff --git a/drivers/gpu/drm/nouveau/include/nvkm/subdev/acr.h b/drivers/gpu/drm/nouveau/include/nvkm/subdev/acr.h
index c0b254f7f0b5..73d2a6ae9ab2 100644
--- a/drivers/gpu/drm/nouveau/include/nvkm/subdev/acr.h
+++ b/drivers/gpu/drm/nouveau/include/nvkm/subdev/acr.h
@@ -36,7 +36,7 @@ struct nvkm_acr {
const struct nvkm_acr_func *func;
struct nvkm_subdev subdev;
- struct list_head hsfw, hsf;
+ struct list_head hsfw;
struct list_head lsfw, lsf;
u64 managed_falcons;
@@ -50,6 +50,7 @@ struct nvkm_acr {
struct nvkm_vmm *vmm;
bool done;
+ struct nvkm_acr_lsf *rtos;
const struct firmware *wpr_fw;
bool wpr_comp;
@@ -64,7 +65,9 @@ int gm20b_acr_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct
int gp102_acr_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_acr **);
int gp108_acr_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_acr **);
int gp10b_acr_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_acr **);
+int gv100_acr_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_acr **);
int tu102_acr_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_acr **);
+int ga102_acr_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_acr **);
struct nvkm_acr_lsfw {
const struct nvkm_acr_lsf_func *func;
@@ -77,6 +80,7 @@ struct nvkm_acr_lsfw {
const struct firmware *sig;
+ bool secure_bootloader;
u32 bootloader_size;
u32 bootloader_imem_offset;
@@ -87,10 +91,19 @@ struct nvkm_acr_lsfw {
u32 app_resident_code_size;
u32 app_resident_data_offset;
u32 app_resident_data_size;
+ u32 app_imem_offset;
+ u32 app_dmem_offset;
u32 ucode_size;
u32 data_size;
+ u32 fuse_ver;
+ u32 engine_id;
+ u32 ucode_id;
+ u32 sig_size;
+ u32 sig_nr;
+ u8 *sigs;
+
struct {
u32 lsb;
u32 img;
@@ -105,10 +118,10 @@ struct nvkm_acr_lsf_func {
#define NVKM_ACR_LSF_DMACTL_REQ_CTX 0x00000004
#define NVKM_ACR_LSF_FORCE_PRIV_LOAD 0x00000008
u32 flags;
+ u32 bl_entry;
u32 bld_size;
void (*bld_write)(struct nvkm_acr *, u32 bld, struct nvkm_acr_lsfw *);
void (*bld_patch)(struct nvkm_acr *, u32 bld, s64 adjust);
- int (*boot)(struct nvkm_falcon *);
u64 bootstrap_falcons;
int (*bootstrap_falcon)(struct nvkm_falcon *, enum nvkm_acr_lsf_id);
int (*bootstrap_multiple_falcons)(struct nvkm_falcon *, u32 mask);
@@ -122,8 +135,20 @@ int
nvkm_acr_lsfw_load_sig_image_desc_v1(struct nvkm_subdev *, struct nvkm_falcon *,
enum nvkm_acr_lsf_id, const char *path,
int ver, const struct nvkm_acr_lsf_func *);
+
+int
+nvkm_acr_lsfw_load_sig_image_desc_v2(struct nvkm_subdev *, struct nvkm_falcon *,
+ enum nvkm_acr_lsf_id, const char *path,
+ int ver, const struct nvkm_acr_lsf_func *);
+
int
nvkm_acr_lsfw_load_bl_inst_data_sig(struct nvkm_subdev *, struct nvkm_falcon *,
enum nvkm_acr_lsf_id, const char *path,
int ver, const struct nvkm_acr_lsf_func *);
+
+int
+nvkm_acr_lsfw_load_bl_sig_net(struct nvkm_subdev *, struct nvkm_falcon *,
+ enum nvkm_acr_lsf_id, const char *path,
+ int ver, const struct nvkm_acr_lsf_func *,
+ const void *, u32, const void *, u32);
#endif
diff --git a/drivers/gpu/drm/nouveau/include/nvkm/subdev/fault.h b/drivers/gpu/drm/nouveau/include/nvkm/subdev/fault.h
index 9c78f072d62b..e40bbf378a8d 100644
--- a/drivers/gpu/drm/nouveau/include/nvkm/subdev/fault.h
+++ b/drivers/gpu/drm/nouveau/include/nvkm/subdev/fault.h
@@ -2,18 +2,21 @@
#define __NVKM_FAULT_H__
#include <core/subdev.h>
#include <core/event.h>
-#include <core/notify.h>
struct nvkm_fault {
const struct nvkm_fault_func *func;
struct nvkm_subdev subdev;
+ struct nvkm_inth info_fault;
+
struct nvkm_fault_buffer *buffer[2];
int buffer_nr;
+#define NVKM_FAULT_BUFFER_EVENT_PENDING BIT(0)
struct nvkm_event event;
- struct nvkm_notify nrpfb;
+ struct nvkm_event_ntfy nrpfb;
+ struct work_struct nrpfb_work;
struct nvkm_device_oclass user;
};
diff --git a/drivers/gpu/drm/nouveau/include/nvkm/subdev/fb.h b/drivers/gpu/drm/nouveau/include/nvkm/subdev/fb.h
index ef6a6297148c..01a22a13b452 100644
--- a/drivers/gpu/drm/nouveau/include/nvkm/subdev/fb.h
+++ b/drivers/gpu/drm/nouveau/include/nvkm/subdev/fb.h
@@ -2,6 +2,7 @@
#ifndef __NVKM_FB_H__
#define __NVKM_FB_H__
#include <core/subdev.h>
+#include <core/falcon.h>
#include <core/mm.h>
/* memory type/access flags, do not match hardware values */
@@ -33,7 +34,12 @@ struct nvkm_fb {
const struct nvkm_fb_func *func;
struct nvkm_subdev subdev;
- struct nvkm_blob vpr_scrubber;
+ struct nvkm_falcon_fw vpr_scrubber;
+
+ struct {
+ struct page *flush_page;
+ dma_addr_t flush_page_addr;
+ } sysmem;
struct nvkm_ram *ram;
@@ -53,6 +59,8 @@ struct nvkm_fb {
struct nvkm_memory *mmu_wr;
};
+int nvkm_fb_mem_unlock(struct nvkm_fb *);
+
void nvkm_fb_tile_init(struct nvkm_fb *, int region, u32 addr, u32 size,
u32 pitch, u32 flags, struct nvkm_fb_tile *);
void nvkm_fb_tile_fini(struct nvkm_fb *, int region, struct nvkm_fb_tile *);
@@ -90,6 +98,7 @@ int gp100_fb_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct n
int gp102_fb_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_fb **);
int gp10b_fb_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_fb **);
int gv100_fb_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_fb **);
+int tu102_fb_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_fb **);
int ga100_fb_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_fb **);
int ga102_fb_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_fb **);
diff --git a/drivers/gpu/drm/nouveau/include/nvkm/subdev/gpio.h b/drivers/gpu/drm/nouveau/include/nvkm/subdev/gpio.h
index 0e46ea1fe972..537c4fc58b4f 100644
--- a/drivers/gpu/drm/nouveau/include/nvkm/subdev/gpio.h
+++ b/drivers/gpu/drm/nouveau/include/nvkm/subdev/gpio.h
@@ -8,9 +8,6 @@
#include <subdev/bios/gpio.h>
struct nvkm_gpio_ntfy_req {
-#define NVKM_GPIO_HI 0x01
-#define NVKM_GPIO_LO 0x02
-#define NVKM_GPIO_TOGGLED 0x03
u8 mask;
u8 line;
};
@@ -23,6 +20,9 @@ struct nvkm_gpio {
const struct nvkm_gpio_func *func;
struct nvkm_subdev subdev;
+#define NVKM_GPIO_HI BIT(0)
+#define NVKM_GPIO_LO BIT(1)
+#define NVKM_GPIO_TOGGLED (NVKM_GPIO_HI | NVKM_GPIO_LO)
struct nvkm_event event;
};
diff --git a/drivers/gpu/drm/nouveau/include/nvkm/subdev/gsp.h b/drivers/gpu/drm/nouveau/include/nvkm/subdev/gsp.h
index cf42a59d4e58..72619d7df73e 100644
--- a/drivers/gpu/drm/nouveau/include/nvkm/subdev/gsp.h
+++ b/drivers/gpu/drm/nouveau/include/nvkm/subdev/gsp.h
@@ -5,9 +5,12 @@
#include <core/falcon.h>
struct nvkm_gsp {
+ const struct nvkm_gsp_func *func;
struct nvkm_subdev subdev;
+
struct nvkm_falcon falcon;
};
int gv100_gsp_new(struct nvkm_device *, enum nvkm_subdev_type, int, struct nvkm_gsp **);
+int ga102_gsp_new(struct nvkm_device *, enum nvkm_subdev_type, int, struct nvkm_gsp **);
#endif
diff --git a/drivers/gpu/drm/nouveau/include/nvkm/subdev/i2c.h b/drivers/gpu/drm/nouveau/include/nvkm/subdev/i2c.h
index 146e13292203..40a1065ae626 100644
--- a/drivers/gpu/drm/nouveau/include/nvkm/subdev/i2c.h
+++ b/drivers/gpu/drm/nouveau/include/nvkm/subdev/i2c.h
@@ -7,20 +7,6 @@
#include <subdev/bios.h>
#include <subdev/bios/i2c.h>
-struct nvkm_i2c_ntfy_req {
-#define NVKM_I2C_PLUG 0x01
-#define NVKM_I2C_UNPLUG 0x02
-#define NVKM_I2C_IRQ 0x04
-#define NVKM_I2C_DONE 0x08
-#define NVKM_I2C_ANY 0x0f
- u8 mask;
- u8 port;
-};
-
-struct nvkm_i2c_ntfy_rep {
- u8 mask;
-};
-
struct nvkm_i2c_bus_probe {
struct i2c_board_info dev;
u8 udelay; /* set to 0 to use the standard delay */
@@ -79,6 +65,11 @@ struct nvkm_i2c {
struct list_head bus;
struct list_head aux;
+#define NVKM_I2C_PLUG BIT(0)
+#define NVKM_I2C_UNPLUG BIT(1)
+#define NVKM_I2C_IRQ BIT(2)
+#define NVKM_I2C_DONE BIT(3)
+#define NVKM_I2C_ANY (NVKM_I2C_PLUG | NVKM_I2C_UNPLUG | NVKM_I2C_IRQ | NVKM_I2C_DONE)
struct nvkm_event event;
};
diff --git a/drivers/gpu/drm/nouveau/include/nvkm/subdev/instmem.h b/drivers/gpu/drm/nouveau/include/nvkm/subdev/instmem.h
index f967b97d163c..fcdaefc99fe8 100644
--- a/drivers/gpu/drm/nouveau/include/nvkm/subdev/instmem.h
+++ b/drivers/gpu/drm/nouveau/include/nvkm/subdev/instmem.h
@@ -28,7 +28,7 @@ u32 nvkm_instmem_rd32(struct nvkm_instmem *, u32 addr);
void nvkm_instmem_wr32(struct nvkm_instmem *, u32 addr, u32 data);
int nvkm_instobj_new(struct nvkm_instmem *, u32 size, u32 align, bool zero,
struct nvkm_memory **);
-
+int nvkm_instobj_wrap(struct nvkm_device *, struct nvkm_memory *, struct nvkm_memory **);
int nv04_instmem_new(struct nvkm_device *, enum nvkm_subdev_type, int, struct nvkm_instmem **);
int nv40_instmem_new(struct nvkm_device *, enum nvkm_subdev_type, int, struct nvkm_instmem **);
diff --git a/drivers/gpu/drm/nouveau/include/nvkm/subdev/ltc.h b/drivers/gpu/drm/nouveau/include/nvkm/subdev/ltc.h
index d32a326a9290..64294042ec07 100644
--- a/drivers/gpu/drm/nouveau/include/nvkm/subdev/ltc.h
+++ b/drivers/gpu/drm/nouveau/include/nvkm/subdev/ltc.h
@@ -4,7 +4,8 @@
#include <core/subdev.h>
#include <core/mm.h>
-#define NVKM_LTC_MAX_ZBC_CNT 16
+#define NVKM_LTC_MAX_ZBC_COLOR_CNT 32
+#define NVKM_LTC_MAX_ZBC_DEPTH_CNT 16
struct nvkm_ltc {
const struct nvkm_ltc_func *func;
@@ -18,11 +19,13 @@ struct nvkm_ltc {
u32 tag_base;
struct nvkm_memory *tag_ram;
- int zbc_min;
- int zbc_max;
- u32 zbc_color[NVKM_LTC_MAX_ZBC_CNT][4];
- u32 zbc_depth[NVKM_LTC_MAX_ZBC_CNT];
- u32 zbc_stencil[NVKM_LTC_MAX_ZBC_CNT];
+ int zbc_color_min;
+ int zbc_color_max;
+ u32 zbc_color[NVKM_LTC_MAX_ZBC_COLOR_CNT][4];
+ int zbc_depth_min;
+ int zbc_depth_max;
+ u32 zbc_depth[NVKM_LTC_MAX_ZBC_DEPTH_CNT];
+ u32 zbc_stencil[NVKM_LTC_MAX_ZBC_DEPTH_CNT];
};
void nvkm_ltc_tags_clear(struct nvkm_device *, u32 first, u32 count);
@@ -41,4 +44,5 @@ int gm200_ltc_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct
int gp100_ltc_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_ltc **);
int gp102_ltc_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_ltc **);
int gp10b_ltc_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_ltc **);
+int ga102_ltc_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_ltc **);
#endif
diff --git a/drivers/gpu/drm/nouveau/include/nvkm/subdev/mc.h b/drivers/gpu/drm/nouveau/include/nvkm/subdev/mc.h
index cb86a56e68d4..127ac545e4b2 100644
--- a/drivers/gpu/drm/nouveau/include/nvkm/subdev/mc.h
+++ b/drivers/gpu/drm/nouveau/include/nvkm/subdev/mc.h
@@ -6,15 +6,14 @@
struct nvkm_mc {
const struct nvkm_mc_func *func;
struct nvkm_subdev subdev;
+
+ struct nvkm_intr intr;
};
void nvkm_mc_enable(struct nvkm_device *, enum nvkm_subdev_type, int);
void nvkm_mc_disable(struct nvkm_device *, enum nvkm_subdev_type, int);
bool nvkm_mc_enabled(struct nvkm_device *, enum nvkm_subdev_type, int);
void nvkm_mc_reset(struct nvkm_device *, enum nvkm_subdev_type, int);
-void nvkm_mc_intr(struct nvkm_device *, bool *handled);
-void nvkm_mc_intr_unarm(struct nvkm_device *);
-void nvkm_mc_intr_rearm(struct nvkm_device *);
void nvkm_mc_intr_mask(struct nvkm_device *, enum nvkm_subdev_type, int, bool enable);
void nvkm_mc_unk260(struct nvkm_device *, u32 data);
@@ -31,6 +30,5 @@ int gk104_mc_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct n
int gk20a_mc_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_mc **);
int gp100_mc_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_mc **);
int gp10b_mc_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_mc **);
-int tu102_mc_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_mc **);
int ga100_mc_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_mc **);
#endif
diff --git a/drivers/gpu/drm/nouveau/include/nvkm/subdev/pci.h b/drivers/gpu/drm/nouveau/include/nvkm/subdev/pci.h
index 74c19bdfb757..3c103101d5fc 100644
--- a/drivers/gpu/drm/nouveau/include/nvkm/subdev/pci.h
+++ b/drivers/gpu/drm/nouveau/include/nvkm/subdev/pci.h
@@ -13,7 +13,6 @@ struct nvkm_pci {
const struct nvkm_pci_func *func;
struct nvkm_subdev subdev;
struct pci_dev *pdev;
- int irq;
struct {
struct agp_bridge_data *bridge;
@@ -38,6 +37,7 @@ void nvkm_pci_wr08(struct nvkm_pci *, u16 addr, u8 data);
void nvkm_pci_wr32(struct nvkm_pci *, u16 addr, u32 data);
u32 nvkm_pci_mask(struct nvkm_pci *, u16 addr, u32 mask, u32 value);
void nvkm_pci_rom_shadow(struct nvkm_pci *, bool shadow);
+void nvkm_pci_msi_rearm(struct nvkm_device *);
int nv04_pci_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_pci **);
int nv40_pci_new(struct nvkm_device *, enum nvkm_subdev_type, int inst, struct nvkm_pci **);
diff --git a/drivers/gpu/drm/nouveau/include/nvkm/subdev/top.h b/drivers/gpu/drm/nouveau/include/nvkm/subdev/top.h
index ee75c5524c43..73e717b980b8 100644
--- a/drivers/gpu/drm/nouveau/include/nvkm/subdev/top.h
+++ b/drivers/gpu/drm/nouveau/include/nvkm/subdev/top.h
@@ -21,6 +21,7 @@ struct nvkm_top_device {
struct list_head head;
};
+int nvkm_top_parse(struct nvkm_device *);
u32 nvkm_top_addr(struct nvkm_device *, enum nvkm_subdev_type, int);
u32 nvkm_top_reset(struct nvkm_device *, enum nvkm_subdev_type, int);
u32 nvkm_top_intr_mask(struct nvkm_device *, enum nvkm_subdev_type, int);
diff --git a/drivers/gpu/drm/nouveau/include/nvkm/subdev/vfn.h b/drivers/gpu/drm/nouveau/include/nvkm/subdev/vfn.h
new file mode 100644
index 000000000000..cc6d0796c265
--- /dev/null
+++ b/drivers/gpu/drm/nouveau/include/nvkm/subdev/vfn.h
@@ -0,0 +1,23 @@
+/* SPDX-License-Identifier: MIT */
+#ifndef __NVKM_VFN_H__
+#define __NVKM_VFN_H__
+#include <core/subdev.h>
+
+struct nvkm_vfn {
+ const struct nvkm_vfn_func *func;
+ struct nvkm_subdev subdev;
+
+ struct {
+ u32 priv;
+ u32 user;
+ } addr;
+
+ struct nvkm_intr intr;
+
+ struct nvkm_device_oclass user;
+};
+
+int gv100_vfn_new(struct nvkm_device *, enum nvkm_subdev_type, int, struct nvkm_vfn **);
+int tu102_vfn_new(struct nvkm_device *, enum nvkm_subdev_type, int, struct nvkm_vfn **);
+int ga100_vfn_new(struct nvkm_device *, enum nvkm_subdev_type, int, struct nvkm_vfn **);
+#endif
diff --git a/drivers/gpu/drm/nouveau/nouveau_abi16.c b/drivers/gpu/drm/nouveau/nouveau_abi16.c
index 5bee655e7e63..82dab51d8aeb 100644
--- a/drivers/gpu/drm/nouveau/nouveau_abi16.c
+++ b/drivers/gpu/drm/nouveau/nouveau_abi16.c
@@ -27,7 +27,6 @@
#include <nvif/ioctl.h>
#include <nvif/class.h>
#include <nvif/cl0002.h>
-#include <nvif/cla06f.h>
#include <nvif/unpack.h>
#include "nouveau_drv.h"
@@ -253,7 +252,7 @@ nouveau_abi16_ioctl_channel_alloc(ABI16_IOCTL_ARGS)
struct nouveau_abi16 *abi16 = nouveau_abi16_get(file_priv);
struct nouveau_abi16_chan *chan;
struct nvif_device *device;
- u64 engine;
+ u64 engine, runm;
int ret;
if (unlikely(!abi16))
@@ -263,6 +262,7 @@ nouveau_abi16_ioctl_channel_alloc(ABI16_IOCTL_ARGS)
return nouveau_abi16_put(abi16, -ENODEV);
device = &abi16->device;
+ engine = NV_DEVICE_HOST_RUNLIST_ENGINES_GR;
/* hack to allow channel engine type specification on kepler */
if (device->info.family >= NV_DEVICE_INFO_V0_KEPLER) {
@@ -276,19 +276,18 @@ nouveau_abi16_ioctl_channel_alloc(ABI16_IOCTL_ARGS)
default:
return nouveau_abi16_put(abi16, -ENOSYS);
}
- } else {
- engine = NV_DEVICE_HOST_RUNLIST_ENGINES_GR;
- }
- if (engine != NV_DEVICE_HOST_RUNLIST_ENGINES_CE)
- engine = nvif_fifo_runlist(device, engine);
- else
- engine = nvif_fifo_runlist_ce(device);
- init->fb_ctxdma_handle = engine;
- init->tt_ctxdma_handle = 0;
+ init->fb_ctxdma_handle = 0;
+ init->tt_ctxdma_handle = 0;
+ }
}
- if (init->fb_ctxdma_handle == ~0 || init->tt_ctxdma_handle == ~0)
+ if (engine != NV_DEVICE_HOST_RUNLIST_ENGINES_CE)
+ runm = nvif_fifo_runlist(device, engine);
+ else
+ runm = nvif_fifo_runlist_ce(device);
+
+ if (!runm || init->fb_ctxdma_handle == ~0 || init->tt_ctxdma_handle == ~0)
return nouveau_abi16_put(abi16, -EINVAL);
/* allocate "abi16 channel" data and make up a handle for it */
@@ -300,8 +299,8 @@ nouveau_abi16_ioctl_channel_alloc(ABI16_IOCTL_ARGS)
list_add(&chan->head, &abi16->channels);
/* create channel object and initialise dma and fence management */
- ret = nouveau_channel_new(drm, device, init->fb_ctxdma_handle,
- init->tt_ctxdma_handle, false, &chan->chan);
+ ret = nouveau_channel_new(drm, device, false, runm, init->fb_ctxdma_handle,
+ init->tt_ctxdma_handle, &chan->chan);
if (ret)
goto done;
diff --git a/drivers/gpu/drm/nouveau/nouveau_backlight.c b/drivers/gpu/drm/nouveau/nouveau_backlight.c
index a614582779ca..91b5ecc57538 100644
--- a/drivers/gpu/drm/nouveau/nouveau_backlight.c
+++ b/drivers/gpu/drm/nouveau/nouveau_backlight.c
@@ -33,6 +33,7 @@
#include <linux/apple-gmux.h>
#include <linux/backlight.h>
#include <linux/idr.h>
+#include <drm/drm_probe_helper.h>
#include "nouveau_drv.h"
#include "nouveau_reg.h"
@@ -264,7 +265,11 @@ nva3_set_intensity(struct backlight_device *bd)
u32 div, val;
div = nvif_rd32(device, NV50_PDISP_SOR_PWM_DIV(or));
- val = (bd->props.brightness * div) / 100;
+
+ val = backlight_get_brightness(bd);
+ if (val)
+ val = (val * div) / 100;
+
if (div) {
nvif_wr32(device, NV50_PDISP_SOR_PWM_CTL(or),
val |
@@ -295,8 +300,12 @@ nv50_backlight_init(struct nouveau_backlight *bl,
struct nouveau_drm *drm = nouveau_drm(nv_encoder->base.base.dev);
struct nvif_object *device = &drm->client.device.object;
+ /*
+ * Note when this runs the connectors have not been probed yet,
+ * so nv_conn->base.status is not set yet.
+ */
if (!nvif_rd32(device, NV50_PDISP_SOR_PWM_CTL(ffs(nv_encoder->dcb->or) - 1)) ||
- nv_conn->base.status != connector_status_connected)
+ drm_helper_probe_detect(&nv_conn->base, NULL, false) != connector_status_connected)
return -ENODEV;
if (nv_conn->type == DCB_CONNECTOR_eDP) {
diff --git a/drivers/gpu/drm/nouveau/nouveau_bo.c b/drivers/gpu/drm/nouveau/nouveau_bo.c
index 126b3c6e12f9..c2ec91cc845d 100644
--- a/drivers/gpu/drm/nouveau/nouveau_bo.c
+++ b/drivers/gpu/drm/nouveau/nouveau_bo.c
@@ -28,6 +28,7 @@
*/
#include <linux/dma-mapping.h>
+#include <drm/ttm/ttm_tt.h>
#include "nouveau_drv.h"
#include "nouveau_chan.h"
@@ -532,7 +533,7 @@ nouveau_bo_map(struct nouveau_bo *nvbo)
if (ret)
return ret;
- ret = ttm_bo_kmap(&nvbo->bo, 0, nvbo->bo.resource->num_pages, &nvbo->kmap);
+ ret = ttm_bo_kmap(&nvbo->bo, 0, PFN_UP(nvbo->bo.base.size), &nvbo->kmap);
ttm_bo_unreserve(&nvbo->bo);
return ret;
@@ -856,6 +857,9 @@ nouveau_bo_move_init(struct nouveau_drm *drm)
int (*init)(struct nouveau_channel *, u32 handle);
} _methods[] = {
{ "COPY", 4, 0xc7b5, nve0_bo_move_copy, nve0_bo_move_init },
+ { "GRCE", 0, 0xc7b5, nve0_bo_move_copy, nvc0_bo_move_init },
+ { "COPY", 4, 0xc6b5, nve0_bo_move_copy, nve0_bo_move_init },
+ { "GRCE", 0, 0xc6b5, nve0_bo_move_copy, nvc0_bo_move_init },
{ "COPY", 4, 0xc5b5, nve0_bo_move_copy, nve0_bo_move_init },
{ "GRCE", 0, 0xc5b5, nve0_bo_move_copy, nvc0_bo_move_init },
{ "COPY", 4, 0xc3b5, nve0_bo_move_copy, nve0_bo_move_init },
@@ -918,6 +922,7 @@ static void nouveau_bo_move_ntfy(struct ttm_buffer_object *bo,
struct nouveau_mem *mem = new_reg ? nouveau_mem(new_reg) : NULL;
struct nouveau_bo *nvbo = nouveau_bo(bo);
struct nouveau_vma *vma;
+ long ret;
/* ttm can now (stupidly) pass the driver bos it didn't create... */
if (bo->destroy != nouveau_bo_del_ttm)
@@ -932,7 +937,10 @@ static void nouveau_bo_move_ntfy(struct ttm_buffer_object *bo,
}
} else {
list_for_each_entry(vma, &nvbo->vma_list, head) {
- WARN_ON(ttm_bo_wait(bo, false, false));
+ ret = dma_resv_wait_timeout(bo->base.resv,
+ DMA_RESV_USAGE_BOOKKEEP,
+ false, 15 * HZ);
+ WARN_ON(ret <= 0);
nouveau_vma_unmap(vma);
}
}
@@ -1007,9 +1015,6 @@ nouveau_bo_move(struct ttm_buffer_object *bo, bool evict,
if (ret)
goto out_ntfy;
- if (nvbo->bo.pin_count)
- NV_WARN(drm, "Moving pinned object %p!\n", nvbo);
-
if (drm->client.device.info.family < NV_DEVICE_INFO_V0_TESLA) {
ret = nouveau_bo_vm_bind(bo, new_reg, &new_tile);
if (ret)
@@ -1236,7 +1241,7 @@ vm_fault_t nouveau_ttm_fault_reserve_notify(struct ttm_buffer_object *bo)
} else {
/* make sure bo is in mappable vram */
if (drm->client.device.info.family >= NV_DEVICE_INFO_V0_TESLA ||
- bo->resource->start + bo->resource->num_pages < mappable)
+ bo->resource->start + PFN_UP(bo->resource->size) < mappable)
return 0;
for (i = 0; i < nvbo->placement.num_placement; ++i) {
diff --git a/drivers/gpu/drm/nouveau/nouveau_bo.h b/drivers/gpu/drm/nouveau/nouveau_bo.h
index c2d3f9c48eba..774dd93ca76b 100644
--- a/drivers/gpu/drm/nouveau/nouveau_bo.h
+++ b/drivers/gpu/drm/nouveau/nouveau_bo.h
@@ -1,8 +1,9 @@
/* SPDX-License-Identifier: MIT */
#ifndef __NOUVEAU_BO_H__
#define __NOUVEAU_BO_H__
-#include <drm/ttm/ttm_bo_driver.h>
#include <drm/drm_gem.h>
+#include <drm/ttm/ttm_bo.h>
+#include <drm/ttm/ttm_placement.h>
struct nouveau_channel;
struct nouveau_cli;
diff --git a/drivers/gpu/drm/nouveau/nouveau_bo0039.c b/drivers/gpu/drm/nouveau/nouveau_bo0039.c
index 7390132129fe..e2ce44adaa5c 100644
--- a/drivers/gpu/drm/nouveau/nouveau_bo0039.c
+++ b/drivers/gpu/drm/nouveau/nouveau_bo0039.c
@@ -52,7 +52,7 @@ nv04_bo_move_m2mf(struct nouveau_channel *chan, struct ttm_buffer_object *bo,
u32 src_offset = old_reg->start << PAGE_SHIFT;
u32 dst_ctxdma = nouveau_bo_mem_ctxdma(bo, chan, new_reg);
u32 dst_offset = new_reg->start << PAGE_SHIFT;
- u32 page_count = new_reg->num_pages;
+ u32 page_count = PFN_UP(new_reg->size);
int ret;
ret = PUSH_WAIT(push, 3);
@@ -62,7 +62,7 @@ nv04_bo_move_m2mf(struct nouveau_channel *chan, struct ttm_buffer_object *bo,
PUSH_MTHD(push, NV039, SET_CONTEXT_DMA_BUFFER_IN, src_ctxdma,
SET_CONTEXT_DMA_BUFFER_OUT, dst_ctxdma);
- page_count = new_reg->num_pages;
+ page_count = PFN_UP(new_reg->size);
while (page_count) {
int line_count = (page_count > 2047) ? 2047 : page_count;
diff --git a/drivers/gpu/drm/nouveau/nouveau_bo5039.c b/drivers/gpu/drm/nouveau/nouveau_bo5039.c
index 4c75c7b3804c..c6cf3629a9f9 100644
--- a/drivers/gpu/drm/nouveau/nouveau_bo5039.c
+++ b/drivers/gpu/drm/nouveau/nouveau_bo5039.c
@@ -41,7 +41,7 @@ nv50_bo_move_m2mf(struct nouveau_channel *chan, struct ttm_buffer_object *bo,
{
struct nouveau_mem *mem = nouveau_mem(old_reg);
struct nvif_push *push = chan->chan.push;
- u64 length = (new_reg->num_pages << PAGE_SHIFT);
+ u64 length = new_reg->size;
u64 src_offset = mem->vma[0].addr;
u64 dst_offset = mem->vma[1].addr;
int src_tiled = !!mem->kind;
diff --git a/drivers/gpu/drm/nouveau/nouveau_bo74c1.c b/drivers/gpu/drm/nouveau/nouveau_bo74c1.c
index ed6c09d67840..9b7ba31fae13 100644
--- a/drivers/gpu/drm/nouveau/nouveau_bo74c1.c
+++ b/drivers/gpu/drm/nouveau/nouveau_bo74c1.c
@@ -44,7 +44,7 @@ nv84_bo_move_exec(struct nouveau_channel *chan, struct ttm_buffer_object *bo,
if (ret)
return ret;
- PUSH_NVSQ(push, NV74C1, 0x0304, new_reg->num_pages << PAGE_SHIFT,
+ PUSH_NVSQ(push, NV74C1, 0x0304, new_reg->size,
0x0308, upper_32_bits(mem->vma[0].addr),
0x030c, lower_32_bits(mem->vma[0].addr),
0x0310, upper_32_bits(mem->vma[1].addr),
diff --git a/drivers/gpu/drm/nouveau/nouveau_bo85b5.c b/drivers/gpu/drm/nouveau/nouveau_bo85b5.c
index dec29b2d8bb2..a15a38a87a95 100644
--- a/drivers/gpu/drm/nouveau/nouveau_bo85b5.c
+++ b/drivers/gpu/drm/nouveau/nouveau_bo85b5.c
@@ -44,10 +44,10 @@ nva3_bo_move_copy(struct nouveau_channel *chan, struct ttm_buffer_object *bo,
struct nvif_push *push = chan->chan.push;
u64 src_offset = mem->vma[0].addr;
u64 dst_offset = mem->vma[1].addr;
- u32 page_count = new_reg->num_pages;
+ u32 page_count = PFN_UP(new_reg->size);
int ret;
- page_count = new_reg->num_pages;
+ page_count = PFN_UP(new_reg->size);
while (page_count) {
int line_count = (page_count > 8191) ? 8191 : page_count;
diff --git a/drivers/gpu/drm/nouveau/nouveau_bo9039.c b/drivers/gpu/drm/nouveau/nouveau_bo9039.c
index 776b04976cdf..d2bb2687d401 100644
--- a/drivers/gpu/drm/nouveau/nouveau_bo9039.c
+++ b/drivers/gpu/drm/nouveau/nouveau_bo9039.c
@@ -42,10 +42,10 @@ nvc0_bo_move_m2mf(struct nouveau_channel *chan, struct ttm_buffer_object *bo,
struct nouveau_mem *mem = nouveau_mem(old_reg);
u64 src_offset = mem->vma[0].addr;
u64 dst_offset = mem->vma[1].addr;
- u32 page_count = new_reg->num_pages;
+ u32 page_count = PFN_UP(new_reg->size);
int ret;
- page_count = new_reg->num_pages;
+ page_count = PFN_UP(new_reg->size);
while (page_count) {
int line_count = (page_count > 2047) ? 2047 : page_count;
diff --git a/drivers/gpu/drm/nouveau/nouveau_bo90b5.c b/drivers/gpu/drm/nouveau/nouveau_bo90b5.c
index 8499f58213e3..4618f4f5ab56 100644
--- a/drivers/gpu/drm/nouveau/nouveau_bo90b5.c
+++ b/drivers/gpu/drm/nouveau/nouveau_bo90b5.c
@@ -37,10 +37,10 @@ nvc0_bo_move_copy(struct nouveau_channel *chan, struct ttm_buffer_object *bo,
struct nvif_push *push = chan->chan.push;
u64 src_offset = mem->vma[0].addr;
u64 dst_offset = mem->vma[1].addr;
- u32 page_count = new_reg->num_pages;
+ u32 page_count = PFN_UP(new_reg->size);
int ret;
- page_count = new_reg->num_pages;
+ page_count = PFN_UP(new_reg->size);
while (page_count) {
int line_count = (page_count > 8191) ? 8191 : page_count;
diff --git a/drivers/gpu/drm/nouveau/nouveau_boa0b5.c b/drivers/gpu/drm/nouveau/nouveau_boa0b5.c
index 575212472e7a..07a5c6302c98 100644
--- a/drivers/gpu/drm/nouveau/nouveau_boa0b5.c
+++ b/drivers/gpu/drm/nouveau/nouveau_boa0b5.c
@@ -58,7 +58,7 @@ nve0_bo_move_copy(struct nouveau_channel *chan, struct ttm_buffer_object *bo,
PITCH_IN, PAGE_SIZE,
PITCH_OUT, PAGE_SIZE,
LINE_LENGTH_IN, PAGE_SIZE,
- LINE_COUNT, new_reg->num_pages);
+ LINE_COUNT, PFN_UP(new_reg->size));
PUSH_IMMD(push, NVA0B5, LAUNCH_DMA,
NVDEF(NVA0B5, LAUNCH_DMA, DATA_TRANSFER_TYPE, NON_PIPELINED) |
diff --git a/drivers/gpu/drm/nouveau/nouveau_chan.c b/drivers/gpu/drm/nouveau/nouveau_chan.c
index 48dea5d0c580..e648ecd0c1a0 100644
--- a/drivers/gpu/drm/nouveau/nouveau_chan.c
+++ b/drivers/gpu/drm/nouveau/nouveau_chan.c
@@ -25,12 +25,7 @@
#include <nvif/class.h>
#include <nvif/cl0002.h>
-#include <nvif/cl006b.h>
-#include <nvif/cl506f.h>
-#include <nvif/cl906f.h>
-#include <nvif/cla06f.h>
-#include <nvif/clc36f.h>
-#include <nvif/ioctl.h>
+#include <nvif/if0020.h>
#include "nouveau_drv.h"
#include "nouveau_dma.h"
@@ -46,15 +41,17 @@ int nouveau_vram_pushbuf;
module_param_named(vram_pushbuf, nouveau_vram_pushbuf, int, 0400);
static int
-nouveau_channel_killed(struct nvif_notify *ntfy)
+nouveau_channel_killed(struct nvif_event *event, void *repv, u32 repc)
{
- struct nouveau_channel *chan = container_of(ntfy, typeof(*chan), kill);
+ struct nouveau_channel *chan = container_of(event, typeof(*chan), kill);
struct nouveau_cli *cli = (void *)chan->user.client;
+
NV_PRINTK(warn, cli, "channel %d killed!\n", chan->chid);
atomic_set(&chan->killed, 1);
if (chan->fence)
nouveau_fence_context_kill(chan->fence, -ENODEV);
- return NVIF_NOTIFY_DROP;
+
+ return NVIF_EVENT_DROP;
}
int
@@ -96,8 +93,9 @@ nouveau_channel_del(struct nouveau_channel **pchan)
nvif_object_dtor(&chan->nvsw);
nvif_object_dtor(&chan->gart);
nvif_object_dtor(&chan->vram);
- nvif_notify_dtor(&chan->kill);
+ nvif_event_dtor(&chan->kill);
nvif_object_dtor(&chan->user);
+ nvif_mem_dtor(&chan->mem_userd);
nvif_object_dtor(&chan->push.ctxdma);
nouveau_vma_del(&chan->push.vma);
nouveau_bo_unmap(chan->push.buffer);
@@ -247,134 +245,113 @@ nouveau_channel_prep(struct nouveau_drm *drm, struct nvif_device *device,
}
static int
-nouveau_channel_ind(struct nouveau_drm *drm, struct nvif_device *device,
- u64 runlist, bool priv, struct nouveau_channel **pchan)
+nouveau_channel_ctor(struct nouveau_drm *drm, struct nvif_device *device, bool priv, u64 runm,
+ struct nouveau_channel **pchan)
{
- static const u16 oclasses[] = { AMPERE_CHANNEL_GPFIFO_B,
- TURING_CHANNEL_GPFIFO_A,
- VOLTA_CHANNEL_GPFIFO_A,
- PASCAL_CHANNEL_GPFIFO_A,
- MAXWELL_CHANNEL_GPFIFO_A,
- KEPLER_CHANNEL_GPFIFO_B,
- KEPLER_CHANNEL_GPFIFO_A,
- FERMI_CHANNEL_GPFIFO,
- G82_CHANNEL_GPFIFO,
- NV50_CHANNEL_GPFIFO,
- 0 };
- const u16 *oclass = oclasses;
- union {
- struct nv50_channel_gpfifo_v0 nv50;
- struct fermi_channel_gpfifo_v0 fermi;
- struct kepler_channel_gpfifo_a_v0 kepler;
- struct volta_channel_gpfifo_a_v0 volta;
+ static const struct {
+ s32 oclass;
+ int version;
+ } hosts[] = {
+ { AMPERE_CHANNEL_GPFIFO_B, 0 },
+ { AMPERE_CHANNEL_GPFIFO_A, 0 },
+ { TURING_CHANNEL_GPFIFO_A, 0 },
+ { VOLTA_CHANNEL_GPFIFO_A, 0 },
+ { PASCAL_CHANNEL_GPFIFO_A, 0 },
+ { MAXWELL_CHANNEL_GPFIFO_A, 0 },
+ { KEPLER_CHANNEL_GPFIFO_B, 0 },
+ { KEPLER_CHANNEL_GPFIFO_A, 0 },
+ { FERMI_CHANNEL_GPFIFO , 0 },
+ { G82_CHANNEL_GPFIFO , 0 },
+ { NV50_CHANNEL_GPFIFO , 0 },
+ { NV40_CHANNEL_DMA , 0 },
+ { NV17_CHANNEL_DMA , 0 },
+ { NV10_CHANNEL_DMA , 0 },
+ { NV03_CHANNEL_DMA , 0 },
+ {}
+ };
+ struct {
+ struct nvif_chan_v0 chan;
+ char name[TASK_COMM_LEN+16];
} args;
+ struct nouveau_cli *cli = (void *)device->object.client;
struct nouveau_channel *chan;
- u32 size;
- int ret;
+ const u64 plength = 0x10000;
+ const u64 ioffset = plength;
+ const u64 ilength = 0x02000;
+ char name[TASK_COMM_LEN];
+ int cid, ret;
+ u64 size;
+
+ cid = nvif_mclass(&device->object, hosts);
+ if (cid < 0)
+ return cid;
+
+ if (hosts[cid].oclass < NV50_CHANNEL_GPFIFO)
+ size = plength;
+ else
+ size = ioffset + ilength;
/* allocate dma push buffer */
- ret = nouveau_channel_prep(drm, device, 0x12000, &chan);
+ ret = nouveau_channel_prep(drm, device, size, &chan);
*pchan = chan;
if (ret)
return ret;
/* create channel object */
- do {
- if (oclass[0] >= VOLTA_CHANNEL_GPFIFO_A) {
- args.volta.version = 0;
- args.volta.ilength = 0x02000;
- args.volta.ioffset = 0x10000 + chan->push.addr;
- args.volta.runlist = runlist;
- args.volta.vmm = nvif_handle(&chan->vmm->vmm.object);
- args.volta.priv = priv;
- size = sizeof(args.volta);
- } else
- if (oclass[0] >= KEPLER_CHANNEL_GPFIFO_A) {
- args.kepler.version = 0;
- args.kepler.ilength = 0x02000;
- args.kepler.ioffset = 0x10000 + chan->push.addr;
- args.kepler.runlist = runlist;
- args.kepler.vmm = nvif_handle(&chan->vmm->vmm.object);
- args.kepler.priv = priv;
- size = sizeof(args.kepler);
- } else
- if (oclass[0] >= FERMI_CHANNEL_GPFIFO) {
- args.fermi.version = 0;
- args.fermi.ilength = 0x02000;
- args.fermi.ioffset = 0x10000 + chan->push.addr;
- args.fermi.vmm = nvif_handle(&chan->vmm->vmm.object);
- size = sizeof(args.fermi);
- } else {
- args.nv50.version = 0;
- args.nv50.ilength = 0x02000;
- args.nv50.ioffset = 0x10000 + chan->push.addr;
- args.nv50.pushbuf = nvif_handle(&chan->push.ctxdma);
- args.nv50.vmm = nvif_handle(&chan->vmm->vmm.object);
- size = sizeof(args.nv50);
- }
-
- ret = nvif_object_ctor(&device->object, "abi16ChanUser", 0,
- *oclass++, &args, size, &chan->user);
- if (ret == 0) {
- if (chan->user.oclass >= VOLTA_CHANNEL_GPFIFO_A) {
- chan->chid = args.volta.chid;
- chan->inst = args.volta.inst;
- chan->token = args.volta.token;
- } else
- if (chan->user.oclass >= KEPLER_CHANNEL_GPFIFO_A) {
- chan->chid = args.kepler.chid;
- chan->inst = args.kepler.inst;
- } else
- if (chan->user.oclass >= FERMI_CHANNEL_GPFIFO) {
- chan->chid = args.fermi.chid;
- } else {
- chan->chid = args.nv50.chid;
- }
+ args.chan.version = 0;
+ args.chan.namelen = sizeof(args.name);
+ args.chan.runlist = __ffs64(runm);
+ args.chan.runq = 0;
+ args.chan.priv = priv;
+ args.chan.devm = BIT(0);
+ if (hosts[cid].oclass < NV50_CHANNEL_GPFIFO) {
+ args.chan.vmm = 0;
+ args.chan.ctxdma = nvif_handle(&chan->push.ctxdma);
+ args.chan.offset = chan->push.addr;
+ args.chan.length = 0;
+ } else {
+ args.chan.vmm = nvif_handle(&chan->vmm->vmm.object);
+ if (hosts[cid].oclass < FERMI_CHANNEL_GPFIFO)
+ args.chan.ctxdma = nvif_handle(&chan->push.ctxdma);
+ else
+ args.chan.ctxdma = 0;
+ args.chan.offset = ioffset + chan->push.addr;
+ args.chan.length = ilength;
+ }
+ args.chan.huserd = 0;
+ args.chan.ouserd = 0;
+
+ /* allocate userd */
+ if (hosts[cid].oclass >= VOLTA_CHANNEL_GPFIFO_A) {
+ ret = nvif_mem_ctor(&cli->mmu, "abi16ChanUSERD", NVIF_CLASS_MEM_GF100,
+ NVIF_MEM_VRAM | NVIF_MEM_COHERENT | NVIF_MEM_MAPPABLE,
+ 0, PAGE_SIZE, NULL, 0, &chan->mem_userd);
+ if (ret)
return ret;
- }
- } while (*oclass);
- nouveau_channel_del(pchan);
- return ret;
-}
+ args.chan.huserd = nvif_handle(&chan->mem_userd.object);
+ args.chan.ouserd = 0;
-static int
-nouveau_channel_dma(struct nouveau_drm *drm, struct nvif_device *device,
- struct nouveau_channel **pchan)
-{
- static const u16 oclasses[] = { NV40_CHANNEL_DMA,
- NV17_CHANNEL_DMA,
- NV10_CHANNEL_DMA,
- NV03_CHANNEL_DMA,
- 0 };
- const u16 *oclass = oclasses;
- struct nv03_channel_dma_v0 args;
- struct nouveau_channel *chan;
- int ret;
+ chan->userd = &chan->mem_userd.object;
+ } else {
+ chan->userd = &chan->user;
+ }
- /* allocate dma push buffer */
- ret = nouveau_channel_prep(drm, device, 0x10000, &chan);
- *pchan = chan;
- if (ret)
- return ret;
+ get_task_comm(name, current);
+ snprintf(args.name, sizeof(args.name), "%s[%d]", name, task_pid_nr(current));
- /* create channel object */
- args.version = 0;
- args.pushbuf = nvif_handle(&chan->push.ctxdma);
- args.offset = chan->push.addr;
-
- do {
- ret = nvif_object_ctor(&device->object, "abi16ChanUser", 0,
- *oclass++, &args, sizeof(args),
- &chan->user);
- if (ret == 0) {
- chan->chid = args.chid;
- return ret;
- }
- } while (ret && *oclass);
+ ret = nvif_object_ctor(&device->object, "abi16ChanUser", 0, hosts[cid].oclass,
+ &args, sizeof(args), &chan->user);
+ if (ret) {
+ nouveau_channel_del(pchan);
+ return ret;
+ }
- nouveau_channel_del(pchan);
- return ret;
+ chan->runlist = args.chan.runlist;
+ chan->chid = args.chan.chid;
+ chan->inst = args.chan.inst;
+ chan->token = args.chan.token;
+ return 0;
}
static int
@@ -385,18 +362,24 @@ nouveau_channel_init(struct nouveau_channel *chan, u32 vram, u32 gart)
struct nv_dma_v0 args = {};
int ret, i;
- ret = nvif_object_map(&chan->user, NULL, 0);
+ ret = nvif_object_map(chan->userd, NULL, 0);
if (ret)
return ret;
- if (chan->user.oclass >= FERMI_CHANNEL_GPFIFO &&
- chan->user.oclass < AMPERE_CHANNEL_GPFIFO_B) {
- ret = nvif_notify_ctor(&chan->user, "abi16ChanKilled",
- nouveau_channel_killed,
- true, NV906F_V0_NTFY_KILLED,
- NULL, 0, 0, &chan->kill);
+ if (chan->user.oclass >= FERMI_CHANNEL_GPFIFO) {
+ struct {
+ struct nvif_event_v0 base;
+ struct nvif_chan_event_v0 host;
+ } args;
+
+ args.host.version = 0;
+ args.host.type = NVIF_CHAN_EVENT_V0_KILLED;
+
+ ret = nvif_event_ctor(&chan->user, "abi16ChanKilled", chan->chid,
+ nouveau_channel_killed, false,
+ &args.base, sizeof(args), &chan->kill);
if (ret == 0)
- ret = nvif_notify_get(&chan->kill);
+ ret = nvif_event_allow(&chan->kill);
if (ret) {
NV_ERROR(drm, "Failed to request channel kill "
"notification: %d\n", ret);
@@ -503,24 +486,18 @@ nouveau_channel_init(struct nouveau_channel *chan, u32 vram, u32 gart)
int
nouveau_channel_new(struct nouveau_drm *drm, struct nvif_device *device,
- u32 arg0, u32 arg1, bool priv,
- struct nouveau_channel **pchan)
+ bool priv, u64 runm, u32 vram, u32 gart, struct nouveau_channel **pchan)
{
struct nouveau_cli *cli = (void *)device->object.client;
int ret;
- /* hack until fencenv50 is fixed, and agp access relaxed */
- ret = nouveau_channel_ind(drm, device, arg0, priv, pchan);
+ ret = nouveau_channel_ctor(drm, device, priv, runm, pchan);
if (ret) {
- NV_PRINTK(dbg, cli, "ib channel create, %d\n", ret);
- ret = nouveau_channel_dma(drm, device, pchan);
- if (ret) {
- NV_PRINTK(dbg, cli, "dma channel create, %d\n", ret);
- return ret;
- }
+ NV_PRINTK(dbg, cli, "channel create, %d\n", ret);
+ return ret;
}
- ret = nouveau_channel_init(*pchan, arg0, arg1);
+ ret = nouveau_channel_init(*pchan, vram, gart);
if (ret) {
NV_PRINTK(err, cli, "channel failed to initialise, %d\n", ret);
nouveau_channel_del(pchan);
@@ -534,6 +511,12 @@ nouveau_channel_new(struct nouveau_drm *drm, struct nvif_device *device,
return ret;
}
+void
+nouveau_channels_fini(struct nouveau_drm *drm)
+{
+ kfree(drm->runl);
+}
+
int
nouveau_channels_init(struct nouveau_drm *drm)
{
@@ -541,20 +524,53 @@ nouveau_channels_init(struct nouveau_drm *drm)
struct nv_device_info_v1 m;
struct {
struct nv_device_info_v1_data channels;
+ struct nv_device_info_v1_data runlists;
} v;
} args = {
.m.version = 1,
.m.count = sizeof(args.v) / sizeof(args.v.channels),
.v.channels.mthd = NV_DEVICE_HOST_CHANNELS,
+ .v.runlists.mthd = NV_DEVICE_HOST_RUNLISTS,
};
struct nvif_object *device = &drm->client.device.object;
- int ret;
+ int ret, i;
ret = nvif_object_mthd(device, NV_DEVICE_V0_INFO, &args, sizeof(args));
- if (ret || args.v.channels.mthd == NV_DEVICE_INFO_INVALID)
+ if (ret ||
+ args.v.runlists.mthd == NV_DEVICE_INFO_INVALID || !args.v.runlists.data ||
+ args.v.channels.mthd == NV_DEVICE_INFO_INVALID)
return -ENODEV;
- drm->chan.nr = args.v.channels.data;
- drm->chan.context_base = dma_fence_context_alloc(drm->chan.nr);
+ drm->chan_nr = drm->chan_total = args.v.channels.data;
+ drm->runl_nr = fls64(args.v.runlists.data);
+ drm->runl = kcalloc(drm->runl_nr, sizeof(*drm->runl), GFP_KERNEL);
+ if (!drm->runl)
+ return -ENOMEM;
+
+ if (drm->chan_nr == 0) {
+ for (i = 0; i < drm->runl_nr; i++) {
+ if (!(args.v.runlists.data & BIT(i)))
+ continue;
+
+ args.v.channels.mthd = NV_DEVICE_HOST_RUNLIST_CHANNELS;
+ args.v.channels.data = i;
+
+ ret = nvif_object_mthd(device, NV_DEVICE_V0_INFO, &args, sizeof(args));
+ if (ret || args.v.channels.mthd == NV_DEVICE_INFO_INVALID)
+ return -ENODEV;
+
+ drm->runl[i].chan_nr = args.v.channels.data;
+ drm->runl[i].chan_id_base = drm->chan_total;
+ drm->runl[i].context_base = dma_fence_context_alloc(drm->runl[i].chan_nr);
+
+ drm->chan_total += drm->runl[i].chan_nr;
+ }
+ } else {
+ drm->runl[0].context_base = dma_fence_context_alloc(drm->chan_nr);
+ for (i = 1; i < drm->runl_nr; i++)
+ drm->runl[i].context_base = drm->runl[0].context_base;
+
+ }
+
return 0;
}
diff --git a/drivers/gpu/drm/nouveau/nouveau_chan.h b/drivers/gpu/drm/nouveau/nouveau_chan.h
index 98ba9d27e6b4..e06a8ffed31a 100644
--- a/drivers/gpu/drm/nouveau/nouveau_chan.h
+++ b/drivers/gpu/drm/nouveau/nouveau_chan.h
@@ -2,7 +2,7 @@
#ifndef __NOUVEAU_CHAN_H__
#define __NOUVEAU_CHAN_H__
#include <nvif/object.h>
-#include <nvif/notify.h>
+#include <nvif/event.h>
#include <nvif/push.h>
struct nvif_device;
@@ -16,6 +16,10 @@ struct nouveau_channel {
struct nouveau_drm *drm;
struct nouveau_vmm *vmm;
+ struct nvif_mem mem_userd;
+ struct nvif_object *userd;
+
+ int runlist;
int chid;
u64 inst;
u32 token;
@@ -50,15 +54,15 @@ struct nouveau_channel {
struct nvif_object user;
- struct nvif_notify kill;
+ struct nvif_event kill;
atomic_t killed;
};
int nouveau_channels_init(struct nouveau_drm *);
+void nouveau_channels_fini(struct nouveau_drm *);
-int nouveau_channel_new(struct nouveau_drm *, struct nvif_device *,
- u32 arg0, u32 arg1, bool priv,
- struct nouveau_channel **);
+int nouveau_channel_new(struct nouveau_drm *, struct nvif_device *, bool priv, u64 runm,
+ u32 vram, u32 gart, struct nouveau_channel **);
void nouveau_channel_del(struct nouveau_channel **);
int nouveau_channel_idle(struct nouveau_channel *);
diff --git a/drivers/gpu/drm/nouveau/nouveau_connector.c b/drivers/gpu/drm/nouveau/nouveau_connector.c
index 1991bbb1d05c..086b66b60d91 100644
--- a/drivers/gpu/drm/nouveau/nouveau_connector.c
+++ b/drivers/gpu/drm/nouveau/nouveau_connector.c
@@ -47,8 +47,7 @@
#include "nouveau_crtc.h"
#include <nvif/class.h>
-#include <nvif/cl0046.h>
-#include <nvif/event.h>
+#include <nvif/if0011.h>
struct drm_display_mode *
nouveau_conn_native_mode(struct drm_connector *connector)
@@ -396,7 +395,8 @@ static void
nouveau_connector_destroy(struct drm_connector *connector)
{
struct nouveau_connector *nv_connector = nouveau_connector(connector);
- nvif_notify_dtor(&nv_connector->hpd);
+ nvif_event_dtor(&nv_connector->irq);
+ nvif_event_dtor(&nv_connector->hpd);
kfree(nv_connector->edid);
drm_connector_unregister(connector);
drm_connector_cleanup(connector);
@@ -1162,39 +1162,38 @@ nouveau_connector_funcs_lvds = {
};
void
-nouveau_connector_hpd(struct drm_connector *connector)
+nouveau_connector_hpd(struct nouveau_connector *nv_connector, u64 bits)
{
- struct nouveau_drm *drm = nouveau_drm(connector->dev);
- u32 mask = drm_connector_mask(connector);
+ struct nouveau_drm *drm = nouveau_drm(nv_connector->base.dev);
+ u32 mask = drm_connector_mask(&nv_connector->base);
+ unsigned long flags;
- mutex_lock(&drm->hpd_lock);
+ spin_lock_irqsave(&drm->hpd_lock, flags);
if (!(drm->hpd_pending & mask)) {
+ nv_connector->hpd_pending |= bits;
drm->hpd_pending |= mask;
schedule_work(&drm->hpd_work);
}
- mutex_unlock(&drm->hpd_lock);
+ spin_unlock_irqrestore(&drm->hpd_lock, flags);
}
static int
-nouveau_connector_hotplug(struct nvif_notify *notify)
+nouveau_connector_irq(struct nvif_event *event, void *repv, u32 repc)
{
- struct nouveau_connector *nv_connector =
- container_of(notify, typeof(*nv_connector), hpd);
- struct drm_connector *connector = &nv_connector->base;
- struct drm_device *dev = connector->dev;
- struct nouveau_drm *drm = nouveau_drm(dev);
- const struct nvif_notify_conn_rep_v0 *rep = notify->data;
- bool plugged = (rep->mask != NVIF_NOTIFY_CONN_V0_UNPLUG);
+ struct nouveau_connector *nv_connector = container_of(event, typeof(*nv_connector), irq);
- if (rep->mask & NVIF_NOTIFY_CONN_V0_IRQ) {
- nouveau_dp_irq(drm, nv_connector);
- return NVIF_NOTIFY_KEEP;
- }
+ schedule_work(&nv_connector->irq_work);
+ return NVIF_EVENT_KEEP;
+}
- NV_DEBUG(drm, "%splugged %s\n", plugged ? "" : "un", connector->name);
- nouveau_connector_hpd(connector);
+static int
+nouveau_connector_hotplug(struct nvif_event *event, void *repv, u32 repc)
+{
+ struct nouveau_connector *nv_connector = container_of(event, typeof(*nv_connector), hpd);
+ struct nvif_conn_event_v0 *rep = repv;
- return NVIF_NOTIFY_KEEP;
+ nouveau_connector_hpd(nv_connector, rep->types);
+ return NVIF_EVENT_KEEP;
}
static ssize_t
@@ -1290,6 +1289,7 @@ nouveau_connector_create(struct drm_device *dev,
connector = &nv_connector->base;
nv_connector->index = index;
+ INIT_WORK(&nv_connector->irq_work, nouveau_dp_irq);
/* attempt to parse vbios connector type and hotplug gpio */
nv_connector->dcb = olddcb_conn(dev, index);
@@ -1401,6 +1401,7 @@ nouveau_connector_create(struct drm_device *dev,
drm_connector_init(dev, connector, funcs, type);
drm_connector_helper_add(connector, &nouveau_connector_helper_funcs);
+ connector->polled = DRM_CONNECTOR_POLL_CONNECT;
if (nv_connector->dcb && (disp->disp.conn_mask & BIT(nv_connector->index))) {
ret = nvif_conn_ctor(&disp->disp, nv_connector->base.name, nv_connector->index,
@@ -1409,6 +1410,25 @@ nouveau_connector_create(struct drm_device *dev,
kfree(nv_connector);
return ERR_PTR(ret);
}
+
+ ret = nvif_conn_event_ctor(&nv_connector->conn, "kmsHotplug",
+ nouveau_connector_hotplug,
+ NVIF_CONN_EVENT_V0_PLUG | NVIF_CONN_EVENT_V0_UNPLUG,
+ &nv_connector->hpd);
+ if (ret == 0)
+ connector->polled = DRM_CONNECTOR_POLL_HPD;
+
+ if (nv_connector->aux.transfer) {
+ ret = nvif_conn_event_ctor(&nv_connector->conn, "kmsDpIrq",
+ nouveau_connector_irq, NVIF_CONN_EVENT_V0_IRQ,
+ &nv_connector->irq);
+ if (ret) {
+ nvif_event_dtor(&nv_connector->hpd);
+ nvif_conn_dtor(&nv_connector->conn);
+ kfree(nv_connector);
+ return ERR_PTR(ret);
+ }
+ }
}
connector->funcs->reset(connector);
@@ -1452,21 +1472,6 @@ nouveau_connector_create(struct drm_device *dev,
break;
}
- ret = nvif_notify_ctor(&disp->disp.object, "kmsHotplug",
- nouveau_connector_hotplug,
- true, NV04_DISP_NTFY_CONN,
- &(struct nvif_notify_conn_req_v0) {
- .mask = NVIF_NOTIFY_CONN_V0_ANY,
- .conn = index,
- },
- sizeof(struct nvif_notify_conn_req_v0),
- sizeof(struct nvif_notify_conn_rep_v0),
- &nv_connector->hpd);
- if (ret)
- connector->polled = DRM_CONNECTOR_POLL_CONNECT;
- else
- connector->polled = DRM_CONNECTOR_POLL_HPD;
-
drm_connector_register(connector);
return connector;
}
diff --git a/drivers/gpu/drm/nouveau/nouveau_connector.h b/drivers/gpu/drm/nouveau/nouveau_connector.h
index f4e17ff68bf9..35bcb541722b 100644
--- a/drivers/gpu/drm/nouveau/nouveau_connector.h
+++ b/drivers/gpu/drm/nouveau/nouveau_connector.h
@@ -27,7 +27,7 @@
#ifndef __NOUVEAU_CONNECTOR_H__
#define __NOUVEAU_CONNECTOR_H__
#include <nvif/conn.h>
-#include <nvif/notify.h>
+#include <nvif/event.h>
#include <nvhw/class/cl507d.h>
#include <nvhw/class/cl907d.h>
@@ -124,7 +124,10 @@ struct nouveau_connector {
u8 *dcb;
struct nvif_conn conn;
- struct nvif_notify hpd;
+ u64 hpd_pending;
+ struct nvif_event hpd;
+ struct nvif_event irq;
+ struct work_struct irq_work;
struct drm_dp_aux aux;
@@ -198,7 +201,7 @@ nouveau_crtc_connector_get(struct nouveau_crtc *nv_crtc)
struct drm_connector *
nouveau_connector_create(struct drm_device *, const struct dcb_output *);
-void nouveau_connector_hpd(struct drm_connector *connector);
+void nouveau_connector_hpd(struct nouveau_connector *, u64 bits);
extern int nouveau_tv_disable;
extern int nouveau_ignorelid;
diff --git a/drivers/gpu/drm/nouveau/nouveau_crtc.h b/drivers/gpu/drm/nouveau/nouveau_crtc.h
index 7f63be2ec35d..c717f664a7b8 100644
--- a/drivers/gpu/drm/nouveau/nouveau_crtc.h
+++ b/drivers/gpu/drm/nouveau/nouveau_crtc.h
@@ -26,16 +26,17 @@
#ifndef __NOUVEAU_CRTC_H__
#define __NOUVEAU_CRTC_H__
-
#include <drm/drm_crtc.h>
-#include <nvif/notify.h>
+#include <nvif/head.h>
+#include <nvif/event.h>
struct nouveau_crtc {
struct drm_crtc base;
+ struct nvif_head head;
int index;
- struct nvif_notify vblank;
+ struct nvif_event vblank;
uint32_t dpms_saved_fp_control;
uint32_t fp_users;
diff --git a/drivers/gpu/drm/nouveau/nouveau_display.c b/drivers/gpu/drm/nouveau/nouveau_display.c
index a2f5df568ca5..ec3ffff487fc 100644
--- a/drivers/gpu/drm/nouveau/nouveau_display.c
+++ b/drivers/gpu/drm/nouveau/nouveau_display.c
@@ -35,15 +35,14 @@
#include <drm/drm_probe_helper.h>
#include <drm/drm_vblank.h>
-#include "nouveau_fbcon.h"
#include "nouveau_crtc.h"
#include "nouveau_gem.h"
#include "nouveau_connector.h"
#include "nv50_display.h"
#include <nvif/class.h>
-#include <nvif/cl0046.h>
-#include <nvif/event.h>
+#include <nvif/if0011.h>
+#include <nvif/if0013.h>
#include <dispnv50/crc.h>
int
@@ -52,7 +51,7 @@ nouveau_display_vblank_enable(struct drm_crtc *crtc)
struct nouveau_crtc *nv_crtc;
nv_crtc = nouveau_crtc(crtc);
- nvif_notify_get(&nv_crtc->vblank);
+ nvif_event_allow(&nv_crtc->vblank);
return 0;
}
@@ -63,7 +62,7 @@ nouveau_display_vblank_disable(struct drm_crtc *crtc)
struct nouveau_crtc *nv_crtc;
nv_crtc = nouveau_crtc(crtc);
- nvif_notify_put(&nv_crtc->vblank);
+ nvif_event_block(&nv_crtc->vblank);
}
static inline int
@@ -84,24 +83,20 @@ static bool
nouveau_display_scanoutpos_head(struct drm_crtc *crtc, int *vpos, int *hpos,
ktime_t *stime, ktime_t *etime)
{
- struct {
- struct nv04_disp_mthd_v0 base;
- struct nv04_disp_scanoutpos_v0 scan;
- } args = {
- .base.method = NV04_DISP_SCANOUTPOS,
- .base.head = nouveau_crtc(crtc)->index,
- };
- struct nouveau_display *disp = nouveau_display(crtc->dev);
struct drm_vblank_crtc *vblank = &crtc->dev->vblank[drm_crtc_index(crtc)];
+ struct nvif_head *head = &nouveau_crtc(crtc)->head;
+ struct nvif_head_scanoutpos_v0 args;
int retry = 20;
bool ret = false;
+ args.version = 0;
+
do {
- ret = nvif_mthd(&disp->disp.object, 0, &args, sizeof(args));
+ ret = nvif_mthd(&head->object, NVIF_HEAD_V0_SCANOUTPOS, &args, sizeof(args));
if (ret != 0)
return false;
- if (args.scan.vline) {
+ if (args.vline) {
ret = true;
break;
}
@@ -109,11 +104,10 @@ nouveau_display_scanoutpos_head(struct drm_crtc *crtc, int *vpos, int *hpos,
if (retry) ndelay(vblank->linedur_ns);
} while (retry--);
- *hpos = args.scan.hline;
- *vpos = calc(args.scan.vblanks, args.scan.vblanke,
- args.scan.vtotal, args.scan.vline);
- if (stime) *stime = ns_to_ktime(args.scan.time[0]);
- if (etime) *etime = ns_to_ktime(args.scan.time[1]);
+ *hpos = args.hline;
+ *vpos = calc(args.vblanks, args.vblanke, args.vtotal, args.vline);
+ if (stime) *stime = ns_to_ktime(args.time[0]);
+ if (etime) *etime = ns_to_ktime(args.time[1]);
return ret;
}
@@ -397,7 +391,7 @@ nouveau_user_framebuffer_create(struct drm_device *dev,
static const struct drm_mode_config_funcs nouveau_mode_config_funcs = {
.fb_create = nouveau_user_framebuffer_create,
- .output_poll_changed = nouveau_fbcon_output_poll_changed,
+ .output_poll_changed = drm_fb_helper_output_poll_changed,
};
@@ -456,9 +450,9 @@ nouveau_display_hpd_resume(struct drm_device *dev)
{
struct nouveau_drm *drm = nouveau_drm(dev);
- mutex_lock(&drm->hpd_lock);
+ spin_lock_irq(&drm->hpd_lock);
drm->hpd_pending = ~0;
- mutex_unlock(&drm->hpd_lock);
+ spin_unlock_irq(&drm->hpd_lock);
schedule_work(&drm->hpd_work);
}
@@ -475,10 +469,10 @@ nouveau_display_hpd_work(struct work_struct *work)
pm_runtime_get_sync(dev->dev);
- mutex_lock(&drm->hpd_lock);
+ spin_lock_irq(&drm->hpd_lock);
pending = drm->hpd_pending;
drm->hpd_pending = 0;
- mutex_unlock(&drm->hpd_lock);
+ spin_unlock_irq(&drm->hpd_lock);
/* Nothing to do, exit early without updating the last busy counter */
if (!pending)
@@ -488,14 +482,30 @@ nouveau_display_hpd_work(struct work_struct *work)
drm_connector_list_iter_begin(dev, &conn_iter);
nouveau_for_each_non_mst_connector_iter(connector, &conn_iter) {
+ struct nouveau_connector *nv_connector = nouveau_connector(connector);
enum drm_connector_status old_status = connector->status;
- u64 old_epoch_counter = connector->epoch_counter;
+ u64 bits, old_epoch_counter = connector->epoch_counter;
if (!(pending & drm_connector_mask(connector)))
continue;
- connector->status = drm_helper_probe_detect(connector, NULL,
- false);
+ spin_lock_irq(&drm->hpd_lock);
+ bits = nv_connector->hpd_pending;
+ nv_connector->hpd_pending = 0;
+ spin_unlock_irq(&drm->hpd_lock);
+
+ drm_dbg_kms(dev, "[CONNECTOR:%d:%s] plug:%d unplug:%d irq:%d\n",
+ connector->base.id, connector->name,
+ !!(bits & NVIF_CONN_EVENT_V0_PLUG),
+ !!(bits & NVIF_CONN_EVENT_V0_UNPLUG),
+ !!(bits & NVIF_CONN_EVENT_V0_IRQ));
+
+ if (bits & NVIF_CONN_EVENT_V0_IRQ) {
+ if (nouveau_dp_link_check(nv_connector))
+ continue;
+ }
+
+ connector->status = drm_helper_probe_detect(connector, NULL, false);
if (old_epoch_counter == connector->epoch_counter)
continue;
@@ -573,7 +583,8 @@ nouveau_display_init(struct drm_device *dev, bool resume, bool runtime)
drm_connector_list_iter_begin(dev, &conn_iter);
nouveau_for_each_non_mst_connector_iter(connector, &conn_iter) {
struct nouveau_connector *conn = nouveau_connector(connector);
- nvif_notify_get(&conn->hpd);
+ nvif_event_allow(&conn->hpd);
+ nvif_event_allow(&conn->irq);
}
drm_connector_list_iter_end(&conn_iter);
@@ -608,7 +619,8 @@ nouveau_display_fini(struct drm_device *dev, bool suspend, bool runtime)
drm_connector_list_iter_begin(dev, &conn_iter);
nouveau_for_each_non_mst_connector_iter(connector, &conn_iter) {
struct nouveau_connector *conn = nouveau_connector(connector);
- nvif_notify_put(&conn->hpd);
+ nvif_event_block(&conn->irq);
+ nvif_event_block(&conn->hpd);
}
drm_connector_list_iter_end(&conn_iter);
@@ -659,7 +671,6 @@ int
nouveau_display_create(struct drm_device *dev)
{
struct nouveau_drm *drm = nouveau_drm(dev);
- struct nvkm_device *device = nvxx_device(&drm->client.device);
struct nouveau_display *disp;
int ret;
@@ -672,7 +683,6 @@ nouveau_display_create(struct drm_device *dev)
drm_mode_create_dvi_i_properties(dev);
dev->mode_config.funcs = &nouveau_mode_config_funcs;
- dev->mode_config.fb_base = device->func->resource_addr(device, 1);
dev->mode_config.min_width = 0;
dev->mode_config.min_height = 0;
@@ -734,7 +744,7 @@ nouveau_display_create(struct drm_device *dev)
}
INIT_WORK(&drm->hpd_work, nouveau_display_hpd_work);
- mutex_init(&drm->hpd_lock);
+ spin_lock_init(&drm->hpd_lock);
#ifdef CONFIG_ACPI
drm->acpi_nb.notifier_call = nouveau_display_acpi_ntfy;
register_acpi_notifier(&drm->acpi_nb);
@@ -768,8 +778,7 @@ nouveau_display_destroy(struct drm_device *dev)
nvif_disp_dtor(&disp->disp);
- nouveau_drm(dev)->display = NULL;
- mutex_destroy(&drm->hpd_lock);
+ drm->display = NULL;
kfree(disp);
}
@@ -778,6 +787,9 @@ nouveau_display_suspend(struct drm_device *dev, bool runtime)
{
struct nouveau_display *disp = nouveau_display(dev);
+ /* Disable console. */
+ drm_fb_helper_set_suspend_unlocked(dev->fb_helper, true);
+
if (drm_drv_uses_atomic_modeset(dev)) {
if (!runtime) {
disp->suspend = drm_atomic_helper_suspend(dev);
@@ -805,8 +817,10 @@ nouveau_display_resume(struct drm_device *dev, bool runtime)
drm_atomic_helper_resume(dev, disp->suspend);
disp->suspend = NULL;
}
- return;
}
+
+ /* Enable console. */
+ drm_fb_helper_set_suspend_unlocked(dev->fb_helper, false);
}
int
diff --git a/drivers/gpu/drm/nouveau/nouveau_dma.c b/drivers/gpu/drm/nouveau/nouveau_dma.c
index ddb75d80bc53..b90cac6d5772 100644
--- a/drivers/gpu/drm/nouveau/nouveau_dma.c
+++ b/drivers/gpu/drm/nouveau/nouveau_dma.c
@@ -42,9 +42,9 @@ READ_GET(struct nouveau_channel *chan, uint64_t *prev_get, int *timeout)
{
uint64_t val;
- val = nvif_rd32(&chan->user, chan->user_get);
+ val = nvif_rd32(chan->userd, chan->user_get);
if (chan->user_get_hi)
- val |= (uint64_t)nvif_rd32(&chan->user, chan->user_get_hi) << 32;
+ val |= (uint64_t)nvif_rd32(chan->userd, chan->user_get_hi) << 32;
/* reset counter as long as GET is still advancing, this is
* to avoid misdetecting a GPU lockup if the GPU happens to
@@ -86,7 +86,7 @@ nv50_dma_push(struct nouveau_channel *chan, u64 offset, int length)
/* Flush writes. */
nouveau_bo_rd32(pb, 0);
- nvif_wr32(&chan->user, 0x8c, chan->dma.ib_put);
+ nvif_wr32(chan->userd, 0x8c, chan->dma.ib_put);
if (user->func && user->func->doorbell)
user->func->doorbell(user, chan->token);
chan->dma.ib_free--;
@@ -98,7 +98,7 @@ nv50_dma_push_wait(struct nouveau_channel *chan, int count)
uint32_t cnt = 0, prev_get = 0;
while (chan->dma.ib_free < count) {
- uint32_t get = nvif_rd32(&chan->user, 0x88);
+ uint32_t get = nvif_rd32(chan->userd, 0x88);
if (get != prev_get) {
prev_get = get;
cnt = 0;
diff --git a/drivers/gpu/drm/nouveau/nouveau_dmem.c b/drivers/gpu/drm/nouveau/nouveau_dmem.c
index 20fe53815b20..789857faa048 100644
--- a/drivers/gpu/drm/nouveau/nouveau_dmem.c
+++ b/drivers/gpu/drm/nouveau/nouveau_dmem.c
@@ -33,7 +33,6 @@
#include <nvif/if000c.h>
#include <nvif/if500b.h>
#include <nvif/if900b.h>
-#include <nvif/if000c.h>
#include <nvhw/class/cla0b5.h>
diff --git a/drivers/gpu/drm/nouveau/nouveau_dp.c b/drivers/gpu/drm/nouveau/nouveau_dp.c
index 20db8ea1a0ba..d49b4875fc3c 100644
--- a/drivers/gpu/drm/nouveau/nouveau_dp.c
+++ b/drivers/gpu/drm/nouveau/nouveau_dp.c
@@ -29,8 +29,7 @@
#include "nouveau_encoder.h"
#include "nouveau_crtc.h"
-#include <nvif/class.h>
-#include <nvif/cl5070.h>
+#include <nvif/if0011.h>
MODULE_PARM_DESC(mst, "Enable DisplayPort multi-stream (default: enabled)");
static int nouveau_mst = 1;
@@ -140,12 +139,17 @@ nouveau_dp_detect(struct nouveau_connector *nv_connector,
* TODO: look into checking this before probing I2C to detect DVI/HDMI
*/
hpd = nvif_conn_hpd_status(&nv_connector->conn);
- if (hpd == NVIF_CONN_HPD_STATUS_NOT_PRESENT)
+ if (hpd == NVIF_CONN_HPD_STATUS_NOT_PRESENT) {
+ nvif_outp_dp_aux_pwr(&nv_encoder->outp, false);
goto out;
+ }
+ nvif_outp_dp_aux_pwr(&nv_encoder->outp, true);
status = nouveau_dp_probe_dpcd(nv_connector, nv_encoder);
- if (status == connector_status_disconnected)
+ if (status == connector_status_disconnected) {
+ nvif_outp_dp_aux_pwr(&nv_encoder->outp, false);
goto out;
+ }
/* If we're in MST mode, we're done here */
if (mstm && mstm->can_mst && mstm->is_mst) {
@@ -193,6 +197,7 @@ nouveau_dp_detect(struct nouveau_connector *nv_connector,
ret = NOUVEAU_DP_MST;
goto out;
} else if (ret != 0) {
+ nvif_outp_dp_aux_pwr(&nv_encoder->outp, false);
goto out;
}
}
@@ -206,14 +211,28 @@ out:
return ret;
}
-void nouveau_dp_irq(struct nouveau_drm *drm,
- struct nouveau_connector *nv_connector)
+bool
+nouveau_dp_link_check(struct nouveau_connector *nv_connector)
+{
+ struct nouveau_encoder *nv_encoder = find_encoder(&nv_connector->base, DCB_OUTPUT_DP);
+
+ if (!nv_encoder || nv_encoder->outp.or.id < 0)
+ return true;
+
+ return nvif_outp_dp_retrain(&nv_encoder->outp) == 0;
+}
+
+void
+nouveau_dp_irq(struct work_struct *work)
{
+ struct nouveau_connector *nv_connector =
+ container_of(work, typeof(*nv_connector), irq_work);
struct drm_connector *connector = &nv_connector->base;
struct nouveau_encoder *outp = find_encoder(connector, DCB_OUTPUT_DP);
+ struct nouveau_drm *drm = nouveau_drm(outp->base.base.dev);
struct nv50_mstm *mstm;
+ u64 hpd = 0;
int ret;
- bool send_hpd = false;
if (!outp)
return;
@@ -225,14 +244,14 @@ void nouveau_dp_irq(struct nouveau_drm *drm,
if (mstm && mstm->is_mst) {
if (!nv50_mstm_service(drm, nv_connector, mstm))
- send_hpd = true;
+ hpd |= NVIF_CONN_EVENT_V0_UNPLUG;
} else {
drm_dp_cec_irq(&nv_connector->aux);
if (nouveau_dp_has_sink_count(connector, outp)) {
ret = drm_dp_read_sink_count(&nv_connector->aux);
if (ret != outp->dp.sink_count)
- send_hpd = true;
+ hpd |= NVIF_CONN_EVENT_V0_PLUG;
if (ret >= 0)
outp->dp.sink_count = ret;
}
@@ -240,13 +259,10 @@ void nouveau_dp_irq(struct nouveau_drm *drm,
mutex_unlock(&outp->dp.hpd_irq_lock);
- if (send_hpd)
- nouveau_connector_hpd(connector);
+ nouveau_connector_hpd(nv_connector, NVIF_CONN_EVENT_V0_IRQ | hpd);
}
/* TODO:
- * - Use the minimum possible BPC here, once we add support for the max bpc
- * property.
* - Validate against the DP caps advertised by the GPU (we don't check these
* yet)
*/
@@ -258,7 +274,11 @@ nv50_dp_mode_valid(struct drm_connector *connector,
{
const unsigned int min_clock = 25000;
unsigned int max_rate, mode_rate, ds_max_dotclock, clock = mode->clock;
- const u8 bpp = connector->display_info.bpc * 3;
+ /* Check with the minmum bpc always, so we can advertise better modes.
+ * In particlar not doing this causes modes to be dropped on HDR
+ * displays as we might check with a bpc of 16 even.
+ */
+ const u8 bpp = 6 * 3;
if (mode->flags & DRM_MODE_FLAG_INTERLACE && !outp->caps.dp_interlace)
return MODE_NO_INTERLACE;
diff --git a/drivers/gpu/drm/nouveau/nouveau_drm.c b/drivers/gpu/drm/nouveau/nouveau_drm.c
index fd99ec0f4257..cc7c5b4a05fd 100644
--- a/drivers/gpu/drm/nouveau/nouveau_drm.c
+++ b/drivers/gpu/drm/nouveau/nouveau_drm.c
@@ -31,8 +31,8 @@
#include <linux/dynamic_debug.h>
#include <drm/drm_aperture.h>
-#include <drm/drm_crtc_helper.h>
#include <drm/drm_drv.h>
+#include <drm/drm_fbdev_generic.h>
#include <drm/drm_gem_ttm_helper.h>
#include <drm/drm_ioctl.h>
#include <drm/drm_vblank.h>
@@ -49,7 +49,6 @@
#include <nvif/class.h>
#include <nvif/cl0002.h>
-#include <nvif/cla06f.h>
#include "nouveau_drv.h"
#include "nouveau_dma.h"
@@ -62,7 +61,6 @@
#include "nouveau_bios.h"
#include "nouveau_ioctl.h"
#include "nouveau_abi16.h"
-#include "nouveau_fbcon.h"
#include "nouveau_fence.h"
#include "nouveau_debugfs.h"
#include "nouveau_usif.h"
@@ -316,28 +314,19 @@ static void
nouveau_accel_ce_init(struct nouveau_drm *drm)
{
struct nvif_device *device = &drm->client.device;
+ u64 runm;
int ret = 0;
/* Allocate channel that has access to a (preferably async) copy
* engine, to use for TTM buffer moves.
*/
- if (device->info.family >= NV_DEVICE_INFO_V0_KEPLER) {
- ret = nouveau_channel_new(drm, device,
- nvif_fifo_runlist_ce(device), 0,
- true, &drm->cechan);
- } else
- if (device->info.chipset >= 0xa3 &&
- device->info.chipset != 0xaa &&
- device->info.chipset != 0xac) {
- /* Prior to Kepler, there's only a single runlist, so all
- * engines can be accessed from any channel.
- *
- * We still want to use a separate channel though.
- */
- ret = nouveau_channel_new(drm, device, NvDmaFB, NvDmaTT, false,
- &drm->cechan);
+ runm = nvif_fifo_runlist_ce(device);
+ if (!runm) {
+ NV_DEBUG(drm, "no ce runlist\n");
+ return;
}
+ ret = nouveau_channel_new(drm, device, false, runm, NvDmaFB, NvDmaTT, &drm->cechan);
if (ret)
NV_ERROR(drm, "failed to create ce channel, %d\n", ret);
}
@@ -355,23 +344,17 @@ static void
nouveau_accel_gr_init(struct nouveau_drm *drm)
{
struct nvif_device *device = &drm->client.device;
- u32 arg0, arg1;
+ u64 runm;
int ret;
- if (device->info.family >= NV_DEVICE_INFO_V0_AMPERE)
- return;
-
/* Allocate channel that has access to the graphics engine. */
- if (device->info.family >= NV_DEVICE_INFO_V0_KEPLER) {
- arg0 = nvif_fifo_runlist(device, NV_DEVICE_HOST_RUNLIST_ENGINES_GR);
- arg1 = 1;
- } else {
- arg0 = NvDmaFB;
- arg1 = NvDmaTT;
+ runm = nvif_fifo_runlist(device, NV_DEVICE_HOST_RUNLIST_ENGINES_GR);
+ if (!runm) {
+ NV_DEBUG(drm, "no gr runlist\n");
+ return;
}
- ret = nouveau_channel_new(drm, device, arg0, arg1, false,
- &drm->channel);
+ ret = nouveau_channel_new(drm, device, false, runm, NvDmaFB, NvDmaTT, &drm->channel);
if (ret) {
NV_ERROR(drm, "failed to create kernel channel, %d\n", ret);
nouveau_accel_gr_fini(drm);
@@ -436,6 +419,7 @@ nouveau_accel_fini(struct nouveau_drm *drm)
nouveau_accel_gr_fini(drm);
if (drm->fence)
nouveau_fence(drm)->dtor(drm);
+ nouveau_channels_fini(drm);
}
static void
@@ -485,6 +469,7 @@ nouveau_accel_init(struct nouveau_drm *drm)
case PASCAL_CHANNEL_GPFIFO_A:
case VOLTA_CHANNEL_GPFIFO_A:
case TURING_CHANNEL_GPFIFO_A:
+ case AMPERE_CHANNEL_GPFIFO_A:
case AMPERE_CHANNEL_GPFIFO_B:
ret = nvc0_fence_create(drm);
break;
@@ -611,7 +596,6 @@ nouveau_drm_device_init(struct drm_device *dev)
nouveau_hwmon_init(dev);
nouveau_svm_init(drm);
nouveau_dmem_init(drm);
- nouveau_fbcon_init(dev);
nouveau_led_init(dev);
if (nouveau_pmops_runtime()) {
@@ -655,7 +639,6 @@ nouveau_drm_device_fini(struct drm_device *dev)
}
nouveau_led_fini(dev);
- nouveau_fbcon_fini(dev);
nouveau_dmem_fini(drm);
nouveau_svm_fini(drm);
nouveau_hwmon_fini(dev);
@@ -809,6 +792,11 @@ static int nouveau_drm_probe(struct pci_dev *pdev,
if (ret)
goto fail_drm_dev_init;
+ if (nouveau_drm(drm_dev)->client.device.info.ram_size <= 32 * 1024 * 1024)
+ drm_fbdev_generic_setup(drm_dev, 8);
+ else
+ drm_fbdev_generic_setup(drm_dev, 32);
+
quirk_broken_nv_runpm(pdev);
return 0;
@@ -865,8 +853,6 @@ nouveau_do_suspend(struct drm_device *dev, bool runtime)
nouveau_led_suspend(dev);
if (dev->mode_config.num_crtc) {
- NV_DEBUG(drm, "suspending console...\n");
- nouveau_fbcon_set_suspend(dev, 1);
NV_DEBUG(drm, "suspending display...\n");
ret = nouveau_display_suspend(dev, runtime);
if (ret)
@@ -940,8 +926,6 @@ nouveau_do_resume(struct drm_device *dev, bool runtime)
if (dev->mode_config.num_crtc) {
NV_DEBUG(drm, "resuming display...\n");
nouveau_display_resume(dev, runtime);
- NV_DEBUG(drm, "resuming console...\n");
- nouveau_fbcon_set_suspend(dev, 0);
}
nouveau_led_resume(dev);
@@ -1235,13 +1219,9 @@ nouveau_driver_fops = {
static struct drm_driver
driver_stub = {
- .driver_features =
- DRIVER_GEM | DRIVER_MODESET | DRIVER_RENDER
-#if defined(CONFIG_NOUVEAU_LEGACY_CTX_SUPPORT)
- | DRIVER_KMS_LEGACY_CONTEXT
-#endif
- ,
-
+ .driver_features = DRIVER_GEM |
+ DRIVER_MODESET |
+ DRIVER_RENDER,
.open = nouveau_drm_open,
.postclose = nouveau_drm_postclose,
.lastclose = nouveau_vga_lastclose,
@@ -1296,7 +1276,6 @@ static void nouveau_display_options(void)
DRM_DEBUG_DRIVER("... tv_disable : %d\n", nouveau_tv_disable);
DRM_DEBUG_DRIVER("... ignorelid : %d\n", nouveau_ignorelid);
DRM_DEBUG_DRIVER("... duallink : %d\n", nouveau_duallink);
- DRM_DEBUG_DRIVER("... nofbaccel : %d\n", nouveau_nofbaccel);
DRM_DEBUG_DRIVER("... config : %s\n", nouveau_config);
DRM_DEBUG_DRIVER("... debug : %s\n", nouveau_debug);
DRM_DEBUG_DRIVER("... noaccel : %d\n", nouveau_noaccel);
diff --git a/drivers/gpu/drm/nouveau/nouveau_drv.h b/drivers/gpu/drm/nouveau/nouveau_drv.h
index 84df5ddae4d0..b5de312a523f 100644
--- a/drivers/gpu/drm/nouveau/nouveau_drv.h
+++ b/drivers/gpu/drm/nouveau/nouveau_drv.h
@@ -51,8 +51,7 @@
#include <drm/drm_drv.h>
#include <drm/drm_file.h>
-#include <drm/ttm/ttm_bo_api.h>
-#include <drm/ttm/ttm_bo_driver.h>
+#include <drm/ttm/ttm_bo.h>
#include <drm/ttm/ttm_placement.h>
#include <drm/drm_audio_component.h>
@@ -78,11 +77,6 @@ enum nouveau_drm_object_route {
NVDRM_OBJECT_ANY = NVIF_IOCTL_V0_OWNER_ANY,
};
-enum nouveau_drm_notify_route {
- NVDRM_NOTIFY_NVIF = 0,
- NVDRM_NOTIFY_USIF
-};
-
enum nouveau_drm_handle {
NVDRM_CHAN = 0xcccc0000, /* |= client chid */
NVDRM_NVSW = 0x55550000,
@@ -179,16 +173,19 @@ struct nouveau_drm {
void *fence;
/* Global channel management. */
+ int chan_total; /* Number of channels across all runlists. */
+ int chan_nr; /* 0 if per-runlist CHIDs. */
+ int runl_nr;
struct {
- int nr;
+ int chan_nr;
+ int chan_id_base;
u64 context_base;
- } chan;
+ } *runl;
/* context for accelerated drm-internal operations */
struct nouveau_channel *cechan;
struct nouveau_channel *channel;
struct nvkm_gpuobj *notify;
- struct nouveau_fbdev *fbcon;
struct nvif_object ntfy;
/* nv10-nv40 tiling regions */
@@ -201,10 +198,8 @@ struct nouveau_drm {
struct nvbios vbios;
struct nouveau_display *display;
struct work_struct hpd_work;
- struct mutex hpd_lock;
+ spinlock_t hpd_lock;
u32 hpd_pending;
- struct work_struct fbcon_work;
- int fbcon_new_state;
#ifdef CONFIG_ACPI
struct notifier_block acpi_nb;
#endif
diff --git a/drivers/gpu/drm/nouveau/nouveau_encoder.h b/drivers/gpu/drm/nouveau/nouveau_encoder.h
index b72e5783a00f..70c1ad6c4d9d 100644
--- a/drivers/gpu/drm/nouveau/nouveau_encoder.h
+++ b/drivers/gpu/drm/nouveau/nouveau_encoder.h
@@ -48,7 +48,6 @@ struct nouveau_encoder {
struct dcb_output *dcb;
struct nvif_outp outp;
int or;
- int link;
struct i2c_adapter *i2c;
struct nvkm_i2c_aux *aux;
@@ -142,8 +141,8 @@ enum nouveau_dp_status {
};
int nouveau_dp_detect(struct nouveau_connector *, struct nouveau_encoder *);
-void nouveau_dp_irq(struct nouveau_drm *drm,
- struct nouveau_connector *nv_connector);
+bool nouveau_dp_link_check(struct nouveau_connector *);
+void nouveau_dp_irq(struct work_struct *);
enum drm_mode_status nv50_dp_mode_valid(struct drm_connector *,
struct nouveau_encoder *,
const struct drm_display_mode *,
diff --git a/drivers/gpu/drm/nouveau/nouveau_fbcon.c b/drivers/gpu/drm/nouveau/nouveau_fbcon.c
deleted file mode 100644
index 3c7e0c9d6baf..000000000000
--- a/drivers/gpu/drm/nouveau/nouveau_fbcon.c
+++ /dev/null
@@ -1,614 +0,0 @@
-/*
- * Copyright © 2007 David Airlie
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice (including the next
- * paragraph) shall be included in all copies or substantial portions of the
- * Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
- * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
- * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
- * DEALINGS IN THE SOFTWARE.
- *
- * Authors:
- * David Airlie
- */
-
-#include <linux/module.h>
-#include <linux/kernel.h>
-#include <linux/errno.h>
-#include <linux/string.h>
-#include <linux/mm.h>
-#include <linux/tty.h>
-#include <linux/sysrq.h>
-#include <linux/delay.h>
-#include <linux/init.h>
-#include <linux/screen_info.h>
-#include <linux/vga_switcheroo.h>
-#include <linux/console.h>
-
-#include <drm/drm_crtc.h>
-#include <drm/drm_crtc_helper.h>
-#include <drm/drm_probe_helper.h>
-#include <drm/drm_fb_helper.h>
-#include <drm/drm_fourcc.h>
-#include <drm/drm_atomic.h>
-
-#include "nouveau_drv.h"
-#include "nouveau_gem.h"
-#include "nouveau_bo.h"
-#include "nouveau_fbcon.h"
-#include "nouveau_chan.h"
-#include "nouveau_vmm.h"
-
-#include "nouveau_crtc.h"
-
-MODULE_PARM_DESC(nofbaccel, "Disable fbcon acceleration");
-int nouveau_nofbaccel = 0;
-module_param_named(nofbaccel, nouveau_nofbaccel, int, 0400);
-
-MODULE_PARM_DESC(fbcon_bpp, "fbcon bits-per-pixel (default: auto)");
-static int nouveau_fbcon_bpp;
-module_param_named(fbcon_bpp, nouveau_fbcon_bpp, int, 0400);
-
-static void
-nouveau_fbcon_fillrect(struct fb_info *info, const struct fb_fillrect *rect)
-{
- struct nouveau_fbdev *fbcon = info->par;
- struct nouveau_drm *drm = nouveau_drm(fbcon->helper.dev);
- struct nvif_device *device = &drm->client.device;
- int ret;
-
- if (info->state != FBINFO_STATE_RUNNING)
- return;
-
- ret = -ENODEV;
- if (!in_interrupt() && !(info->flags & FBINFO_HWACCEL_DISABLED) &&
- mutex_trylock(&drm->client.mutex)) {
- if (device->info.family < NV_DEVICE_INFO_V0_TESLA)
- ret = nv04_fbcon_fillrect(info, rect);
- else
- if (device->info.family < NV_DEVICE_INFO_V0_FERMI)
- ret = nv50_fbcon_fillrect(info, rect);
- else
- ret = nvc0_fbcon_fillrect(info, rect);
- mutex_unlock(&drm->client.mutex);
- }
-
- if (ret == 0)
- return;
-
- if (ret != -ENODEV)
- nouveau_fbcon_gpu_lockup(info);
- drm_fb_helper_cfb_fillrect(info, rect);
-}
-
-static void
-nouveau_fbcon_copyarea(struct fb_info *info, const struct fb_copyarea *image)
-{
- struct nouveau_fbdev *fbcon = info->par;
- struct nouveau_drm *drm = nouveau_drm(fbcon->helper.dev);
- struct nvif_device *device = &drm->client.device;
- int ret;
-
- if (info->state != FBINFO_STATE_RUNNING)
- return;
-
- ret = -ENODEV;
- if (!in_interrupt() && !(info->flags & FBINFO_HWACCEL_DISABLED) &&
- mutex_trylock(&drm->client.mutex)) {
- if (device->info.family < NV_DEVICE_INFO_V0_TESLA)
- ret = nv04_fbcon_copyarea(info, image);
- else
- if (device->info.family < NV_DEVICE_INFO_V0_FERMI)
- ret = nv50_fbcon_copyarea(info, image);
- else
- ret = nvc0_fbcon_copyarea(info, image);
- mutex_unlock(&drm->client.mutex);
- }
-
- if (ret == 0)
- return;
-
- if (ret != -ENODEV)
- nouveau_fbcon_gpu_lockup(info);
- drm_fb_helper_cfb_copyarea(info, image);
-}
-
-static void
-nouveau_fbcon_imageblit(struct fb_info *info, const struct fb_image *image)
-{
- struct nouveau_fbdev *fbcon = info->par;
- struct nouveau_drm *drm = nouveau_drm(fbcon->helper.dev);
- struct nvif_device *device = &drm->client.device;
- int ret;
-
- if (info->state != FBINFO_STATE_RUNNING)
- return;
-
- ret = -ENODEV;
- if (!in_interrupt() && !(info->flags & FBINFO_HWACCEL_DISABLED) &&
- mutex_trylock(&drm->client.mutex)) {
- if (device->info.family < NV_DEVICE_INFO_V0_TESLA)
- ret = nv04_fbcon_imageblit(info, image);
- else
- if (device->info.family < NV_DEVICE_INFO_V0_FERMI)
- ret = nv50_fbcon_imageblit(info, image);
- else
- ret = nvc0_fbcon_imageblit(info, image);
- mutex_unlock(&drm->client.mutex);
- }
-
- if (ret == 0)
- return;
-
- if (ret != -ENODEV)
- nouveau_fbcon_gpu_lockup(info);
- drm_fb_helper_cfb_imageblit(info, image);
-}
-
-static int
-nouveau_fbcon_sync(struct fb_info *info)
-{
- struct nouveau_fbdev *fbcon = info->par;
- struct nouveau_drm *drm = nouveau_drm(fbcon->helper.dev);
- struct nouveau_channel *chan = drm->channel;
- int ret;
-
- if (!chan || !chan->accel_done || in_interrupt() ||
- info->state != FBINFO_STATE_RUNNING ||
- info->flags & FBINFO_HWACCEL_DISABLED)
- return 0;
-
- if (!mutex_trylock(&drm->client.mutex))
- return 0;
-
- ret = nouveau_channel_idle(chan);
- mutex_unlock(&drm->client.mutex);
- if (ret) {
- nouveau_fbcon_gpu_lockup(info);
- return 0;
- }
-
- chan->accel_done = false;
- return 0;
-}
-
-static int
-nouveau_fbcon_open(struct fb_info *info, int user)
-{
- struct nouveau_fbdev *fbcon = info->par;
- struct nouveau_drm *drm = nouveau_drm(fbcon->helper.dev);
- int ret = pm_runtime_get_sync(drm->dev->dev);
- if (ret < 0 && ret != -EACCES) {
- pm_runtime_put(drm->dev->dev);
- return ret;
- }
- return 0;
-}
-
-static int
-nouveau_fbcon_release(struct fb_info *info, int user)
-{
- struct nouveau_fbdev *fbcon = info->par;
- struct nouveau_drm *drm = nouveau_drm(fbcon->helper.dev);
- pm_runtime_put(drm->dev->dev);
- return 0;
-}
-
-static const struct fb_ops nouveau_fbcon_ops = {
- .owner = THIS_MODULE,
- DRM_FB_HELPER_DEFAULT_OPS,
- .fb_open = nouveau_fbcon_open,
- .fb_release = nouveau_fbcon_release,
- .fb_fillrect = nouveau_fbcon_fillrect,
- .fb_copyarea = nouveau_fbcon_copyarea,
- .fb_imageblit = nouveau_fbcon_imageblit,
- .fb_sync = nouveau_fbcon_sync,
-};
-
-static const struct fb_ops nouveau_fbcon_sw_ops = {
- .owner = THIS_MODULE,
- DRM_FB_HELPER_DEFAULT_OPS,
- .fb_open = nouveau_fbcon_open,
- .fb_release = nouveau_fbcon_release,
- .fb_fillrect = drm_fb_helper_cfb_fillrect,
- .fb_copyarea = drm_fb_helper_cfb_copyarea,
- .fb_imageblit = drm_fb_helper_cfb_imageblit,
-};
-
-void
-nouveau_fbcon_accel_save_disable(struct drm_device *dev)
-{
- struct nouveau_drm *drm = nouveau_drm(dev);
- if (drm->fbcon && drm->fbcon->helper.fbdev) {
- drm->fbcon->saved_flags = drm->fbcon->helper.fbdev->flags;
- drm->fbcon->helper.fbdev->flags |= FBINFO_HWACCEL_DISABLED;
- }
-}
-
-void
-nouveau_fbcon_accel_restore(struct drm_device *dev)
-{
- struct nouveau_drm *drm = nouveau_drm(dev);
- if (drm->fbcon && drm->fbcon->helper.fbdev) {
- drm->fbcon->helper.fbdev->flags = drm->fbcon->saved_flags;
- }
-}
-
-static void
-nouveau_fbcon_accel_fini(struct drm_device *dev)
-{
- struct nouveau_drm *drm = nouveau_drm(dev);
- struct nouveau_fbdev *fbcon = drm->fbcon;
- if (fbcon && drm->channel) {
- console_lock();
- if (fbcon->helper.fbdev)
- fbcon->helper.fbdev->flags |= FBINFO_HWACCEL_DISABLED;
- console_unlock();
- nouveau_channel_idle(drm->channel);
- nvif_object_dtor(&fbcon->twod);
- nvif_object_dtor(&fbcon->blit);
- nvif_object_dtor(&fbcon->gdi);
- nvif_object_dtor(&fbcon->patt);
- nvif_object_dtor(&fbcon->rop);
- nvif_object_dtor(&fbcon->clip);
- nvif_object_dtor(&fbcon->surf2d);
- }
-}
-
-static void
-nouveau_fbcon_accel_init(struct drm_device *dev)
-{
- struct nouveau_drm *drm = nouveau_drm(dev);
- struct nouveau_fbdev *fbcon = drm->fbcon;
- struct fb_info *info = fbcon->helper.fbdev;
- int ret;
-
- if (drm->client.device.info.family < NV_DEVICE_INFO_V0_TESLA)
- ret = nv04_fbcon_accel_init(info);
- else
- if (drm->client.device.info.family < NV_DEVICE_INFO_V0_FERMI)
- ret = nv50_fbcon_accel_init(info);
- else
- ret = nvc0_fbcon_accel_init(info);
-
- if (ret == 0)
- info->fbops = &nouveau_fbcon_ops;
-}
-
-static void
-nouveau_fbcon_zfill(struct drm_device *dev, struct nouveau_fbdev *fbcon)
-{
- struct fb_info *info = fbcon->helper.fbdev;
- struct fb_fillrect rect;
-
- /* Clear the entire fbcon. The drm will program every connector
- * with it's preferred mode. If the sizes differ, one display will
- * quite likely have garbage around the console.
- */
- rect.dx = rect.dy = 0;
- rect.width = info->var.xres_virtual;
- rect.height = info->var.yres_virtual;
- rect.color = 0;
- rect.rop = ROP_COPY;
- info->fbops->fb_fillrect(info, &rect);
-}
-
-static int
-nouveau_fbcon_create(struct drm_fb_helper *helper,
- struct drm_fb_helper_surface_size *sizes)
-{
- struct nouveau_fbdev *fbcon =
- container_of(helper, struct nouveau_fbdev, helper);
- struct drm_device *dev = fbcon->helper.dev;
- struct nouveau_drm *drm = nouveau_drm(dev);
- struct nvif_device *device = &drm->client.device;
- struct fb_info *info;
- struct drm_framebuffer *fb;
- struct nouveau_channel *chan;
- struct nouveau_bo *nvbo;
- struct drm_mode_fb_cmd2 mode_cmd = {};
- int ret;
-
- mode_cmd.width = sizes->surface_width;
- mode_cmd.height = sizes->surface_height;
-
- mode_cmd.pitches[0] = mode_cmd.width * (sizes->surface_bpp >> 3);
- mode_cmd.pitches[0] = roundup(mode_cmd.pitches[0], 256);
-
- mode_cmd.pixel_format = drm_mode_legacy_fb_format(sizes->surface_bpp,
- sizes->surface_depth);
-
- ret = nouveau_gem_new(&drm->client, mode_cmd.pitches[0] *
- mode_cmd.height, 0, NOUVEAU_GEM_DOMAIN_VRAM,
- 0, 0x0000, &nvbo);
- if (ret) {
- NV_ERROR(drm, "failed to allocate framebuffer\n");
- goto out;
- }
-
- ret = nouveau_framebuffer_new(dev, &mode_cmd, &nvbo->bo.base, &fb);
- if (ret)
- goto out_unref;
-
- ret = nouveau_bo_pin(nvbo, NOUVEAU_GEM_DOMAIN_VRAM, false);
- if (ret) {
- NV_ERROR(drm, "failed to pin fb: %d\n", ret);
- goto out_unref;
- }
-
- ret = nouveau_bo_map(nvbo);
- if (ret) {
- NV_ERROR(drm, "failed to map fb: %d\n", ret);
- goto out_unpin;
- }
-
- chan = nouveau_nofbaccel ? NULL : drm->channel;
- if (chan && device->info.family >= NV_DEVICE_INFO_V0_TESLA) {
- ret = nouveau_vma_new(nvbo, chan->vmm, &fbcon->vma);
- if (ret) {
- NV_ERROR(drm, "failed to map fb into chan: %d\n", ret);
- chan = NULL;
- }
- }
-
- info = drm_fb_helper_alloc_fbi(helper);
- if (IS_ERR(info)) {
- ret = PTR_ERR(info);
- goto out_unlock;
- }
-
- /* setup helper */
- fbcon->helper.fb = fb;
-
- if (!chan)
- info->flags = FBINFO_HWACCEL_DISABLED;
- else
- info->flags = FBINFO_HWACCEL_COPYAREA |
- FBINFO_HWACCEL_FILLRECT |
- FBINFO_HWACCEL_IMAGEBLIT;
- info->fbops = &nouveau_fbcon_sw_ops;
- info->fix.smem_start = nvbo->bo.resource->bus.offset;
- info->fix.smem_len = nvbo->bo.base.size;
-
- info->screen_base = nvbo_kmap_obj_iovirtual(nvbo);
- info->screen_size = nvbo->bo.base.size;
-
- drm_fb_helper_fill_info(info, &fbcon->helper, sizes);
-
- /* Use default scratch pixmap (info->pixmap.flags = FB_PIXMAP_SYSTEM) */
-
- if (chan)
- nouveau_fbcon_accel_init(dev);
- nouveau_fbcon_zfill(dev, fbcon);
-
- /* To allow resizeing without swapping buffers */
- NV_INFO(drm, "allocated %dx%d fb: 0x%llx, bo %p\n",
- fb->width, fb->height, nvbo->offset, nvbo);
-
- if (dev_is_pci(dev->dev))
- vga_switcheroo_client_fb_set(to_pci_dev(dev->dev), info);
-
- return 0;
-
-out_unlock:
- if (chan)
- nouveau_vma_del(&fbcon->vma);
- nouveau_bo_unmap(nvbo);
-out_unpin:
- nouveau_bo_unpin(nvbo);
-out_unref:
- nouveau_bo_ref(NULL, &nvbo);
-out:
- return ret;
-}
-
-static int
-nouveau_fbcon_destroy(struct drm_device *dev, struct nouveau_fbdev *fbcon)
-{
- struct drm_framebuffer *fb = fbcon->helper.fb;
- struct nouveau_bo *nvbo;
-
- drm_fb_helper_unregister_fbi(&fbcon->helper);
- drm_fb_helper_fini(&fbcon->helper);
-
- if (fb && fb->obj[0]) {
- nvbo = nouveau_gem_object(fb->obj[0]);
- nouveau_vma_del(&fbcon->vma);
- nouveau_bo_unmap(nvbo);
- nouveau_bo_unpin(nvbo);
- drm_framebuffer_put(fb);
- }
-
- return 0;
-}
-
-void nouveau_fbcon_gpu_lockup(struct fb_info *info)
-{
- struct nouveau_fbdev *fbcon = info->par;
- struct nouveau_drm *drm = nouveau_drm(fbcon->helper.dev);
-
- NV_ERROR(drm, "GPU lockup - switching to software fbcon\n");
- info->flags |= FBINFO_HWACCEL_DISABLED;
-}
-
-static const struct drm_fb_helper_funcs nouveau_fbcon_helper_funcs = {
- .fb_probe = nouveau_fbcon_create,
-};
-
-static void
-nouveau_fbcon_set_suspend_work(struct work_struct *work)
-{
- struct nouveau_drm *drm = container_of(work, typeof(*drm), fbcon_work);
- int state = READ_ONCE(drm->fbcon_new_state);
-
- if (state == FBINFO_STATE_RUNNING)
- pm_runtime_get_sync(drm->dev->dev);
-
- console_lock();
- if (state == FBINFO_STATE_RUNNING)
- nouveau_fbcon_accel_restore(drm->dev);
- drm_fb_helper_set_suspend(&drm->fbcon->helper, state);
- if (state != FBINFO_STATE_RUNNING)
- nouveau_fbcon_accel_save_disable(drm->dev);
- console_unlock();
-
- if (state == FBINFO_STATE_RUNNING) {
- nouveau_fbcon_hotplug_resume(drm->fbcon);
- pm_runtime_mark_last_busy(drm->dev->dev);
- pm_runtime_put_autosuspend(drm->dev->dev);
- }
-}
-
-void
-nouveau_fbcon_set_suspend(struct drm_device *dev, int state)
-{
- struct nouveau_drm *drm = nouveau_drm(dev);
-
- if (!drm->fbcon)
- return;
-
- drm->fbcon_new_state = state;
- /* Since runtime resume can happen as a result of a sysfs operation,
- * it's possible we already have the console locked. So handle fbcon
- * init/deinit from a seperate work thread
- */
- schedule_work(&drm->fbcon_work);
-}
-
-void
-nouveau_fbcon_output_poll_changed(struct drm_device *dev)
-{
- struct nouveau_drm *drm = nouveau_drm(dev);
- struct nouveau_fbdev *fbcon = drm->fbcon;
- int ret;
-
- if (!fbcon)
- return;
-
- mutex_lock(&fbcon->hotplug_lock);
-
- ret = pm_runtime_get(dev->dev);
- if (ret == 1 || ret == -EACCES) {
- drm_fb_helper_hotplug_event(&fbcon->helper);
-
- pm_runtime_mark_last_busy(dev->dev);
- pm_runtime_put_autosuspend(dev->dev);
- } else if (ret == 0) {
- /* If the GPU was already in the process of suspending before
- * this event happened, then we can't block here as we'll
- * deadlock the runtime pmops since they wait for us to
- * finish. So, just defer this event for when we runtime
- * resume again. It will be handled by fbcon_work.
- */
- NV_DEBUG(drm, "fbcon HPD event deferred until runtime resume\n");
- fbcon->hotplug_waiting = true;
- pm_runtime_put_noidle(drm->dev->dev);
- } else {
- DRM_WARN("fbcon HPD event lost due to RPM failure: %d\n",
- ret);
- }
-
- mutex_unlock(&fbcon->hotplug_lock);
-}
-
-void
-nouveau_fbcon_hotplug_resume(struct nouveau_fbdev *fbcon)
-{
- struct nouveau_drm *drm;
-
- if (!fbcon)
- return;
- drm = nouveau_drm(fbcon->helper.dev);
-
- mutex_lock(&fbcon->hotplug_lock);
- if (fbcon->hotplug_waiting) {
- fbcon->hotplug_waiting = false;
-
- NV_DEBUG(drm, "Handling deferred fbcon HPD events\n");
- drm_fb_helper_hotplug_event(&fbcon->helper);
- }
- mutex_unlock(&fbcon->hotplug_lock);
-}
-
-int
-nouveau_fbcon_init(struct drm_device *dev)
-{
- struct nouveau_drm *drm = nouveau_drm(dev);
- struct nouveau_fbdev *fbcon;
- int preferred_bpp = nouveau_fbcon_bpp;
- int ret;
-
- if (!dev->mode_config.num_crtc ||
- (to_pci_dev(dev->dev)->class >> 8) != PCI_CLASS_DISPLAY_VGA)
- return 0;
-
- fbcon = kzalloc(sizeof(struct nouveau_fbdev), GFP_KERNEL);
- if (!fbcon)
- return -ENOMEM;
-
- drm->fbcon = fbcon;
- INIT_WORK(&drm->fbcon_work, nouveau_fbcon_set_suspend_work);
- mutex_init(&fbcon->hotplug_lock);
-
- drm_fb_helper_prepare(dev, &fbcon->helper, &nouveau_fbcon_helper_funcs);
-
- ret = drm_fb_helper_init(dev, &fbcon->helper);
- if (ret)
- goto free;
-
- if (preferred_bpp != 8 && preferred_bpp != 16 && preferred_bpp != 32) {
- if (drm->client.device.info.ram_size <= 32 * 1024 * 1024)
- preferred_bpp = 8;
- else
- if (drm->client.device.info.ram_size <= 64 * 1024 * 1024)
- preferred_bpp = 16;
- else
- preferred_bpp = 32;
- }
-
- /* disable all the possible outputs/crtcs before entering KMS mode */
- if (!drm_drv_uses_atomic_modeset(dev))
- drm_helper_disable_unused_functions(dev);
-
- ret = drm_fb_helper_initial_config(&fbcon->helper, preferred_bpp);
- if (ret)
- goto fini;
-
- if (fbcon->helper.fbdev)
- fbcon->helper.fbdev->pixmap.buf_align = 4;
- return 0;
-
-fini:
- drm_fb_helper_fini(&fbcon->helper);
-free:
- kfree(fbcon);
- drm->fbcon = NULL;
- return ret;
-}
-
-void
-nouveau_fbcon_fini(struct drm_device *dev)
-{
- struct nouveau_drm *drm = nouveau_drm(dev);
-
- if (!drm->fbcon)
- return;
-
- drm_kms_helper_poll_fini(dev);
- nouveau_fbcon_accel_fini(dev);
- nouveau_fbcon_destroy(dev, drm->fbcon);
- kfree(drm->fbcon);
- drm->fbcon = NULL;
-}
diff --git a/drivers/gpu/drm/nouveau/nouveau_fbcon.h b/drivers/gpu/drm/nouveau/nouveau_fbcon.h
deleted file mode 100644
index 1796d8824580..000000000000
--- a/drivers/gpu/drm/nouveau/nouveau_fbcon.h
+++ /dev/null
@@ -1,82 +0,0 @@
-/*
- * Copyright (C) 2008 Maarten Maathuis.
- * All Rights Reserved.
- *
- * Permission is hereby granted, free of charge, to any person obtaining
- * a copy of this software and associated documentation files (the
- * "Software"), to deal in the Software without restriction, including
- * without limitation the rights to use, copy, modify, merge, publish,
- * distribute, sublicense, and/or sell copies of the Software, and to
- * permit persons to whom the Software is furnished to do so, subject to
- * the following conditions:
- *
- * The above copyright notice and this permission notice (including the
- * next paragraph) shall be included in all copies or substantial
- * portions of the Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
- * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
- * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.
- * IN NO EVENT SHALL THE COPYRIGHT OWNER(S) AND/OR ITS SUPPLIERS BE
- * LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION
- * OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION
- * WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
- *
- */
-
-#ifndef __NOUVEAU_FBCON_H__
-#define __NOUVEAU_FBCON_H__
-
-#include <drm/drm_fb_helper.h>
-
-#include "nouveau_display.h"
-
-struct nouveau_vma;
-
-struct nouveau_fbdev {
- struct drm_fb_helper helper; /* must be first */
- unsigned int saved_flags;
- struct nvif_object surf2d;
- struct nvif_object clip;
- struct nvif_object rop;
- struct nvif_object patt;
- struct nvif_object gdi;
- struct nvif_object blit;
- struct nvif_object twod;
- struct nouveau_vma *vma;
-
- struct mutex hotplug_lock;
- bool hotplug_waiting;
-};
-
-void nouveau_fbcon_restore(void);
-
-int nv04_fbcon_copyarea(struct fb_info *info, const struct fb_copyarea *region);
-int nv04_fbcon_fillrect(struct fb_info *info, const struct fb_fillrect *rect);
-int nv04_fbcon_imageblit(struct fb_info *info, const struct fb_image *image);
-int nv04_fbcon_accel_init(struct fb_info *info);
-
-int nv50_fbcon_fillrect(struct fb_info *info, const struct fb_fillrect *rect);
-int nv50_fbcon_copyarea(struct fb_info *info, const struct fb_copyarea *region);
-int nv50_fbcon_imageblit(struct fb_info *info, const struct fb_image *image);
-int nv50_fbcon_accel_init(struct fb_info *info);
-
-int nvc0_fbcon_fillrect(struct fb_info *info, const struct fb_fillrect *rect);
-int nvc0_fbcon_copyarea(struct fb_info *info, const struct fb_copyarea *region);
-int nvc0_fbcon_imageblit(struct fb_info *info, const struct fb_image *image);
-int nvc0_fbcon_accel_init(struct fb_info *info);
-
-void nouveau_fbcon_gpu_lockup(struct fb_info *info);
-
-int nouveau_fbcon_init(struct drm_device *dev);
-void nouveau_fbcon_fini(struct drm_device *dev);
-void nouveau_fbcon_set_suspend(struct drm_device *dev, int state);
-void nouveau_fbcon_accel_save_disable(struct drm_device *dev);
-void nouveau_fbcon_accel_restore(struct drm_device *dev);
-
-void nouveau_fbcon_output_poll_changed(struct drm_device *dev);
-void nouveau_fbcon_hotplug_resume(struct nouveau_fbdev *fbcon);
-extern int nouveau_nofbaccel;
-
-#endif /* __NV50_FBCON_H__ */
-
diff --git a/drivers/gpu/drm/nouveau/nouveau_fence.c b/drivers/gpu/drm/nouveau/nouveau_fence.c
index abcac7db4347..ee5e9d40c166 100644
--- a/drivers/gpu/drm/nouveau/nouveau_fence.c
+++ b/drivers/gpu/drm/nouveau/nouveau_fence.c
@@ -29,9 +29,7 @@
#include <linux/sched/signal.h>
#include <trace/events/dma_fence.h>
-#include <nvif/cl826e.h>
-#include <nvif/notify.h>
-#include <nvif/event.h>
+#include <nvif/if0020.h>
#include "nouveau_drv.h"
#include "nouveau_dma.h"
@@ -79,10 +77,6 @@ nouveau_local_fence(struct dma_fence *fence, struct nouveau_drm *drm)
fence->ops != &nouveau_fence_ops_uevent)
return NULL;
- if (fence->context < drm->chan.context_base ||
- fence->context >= drm->chan.context_base + drm->chan.nr)
- return NULL;
-
return from_fence(fence);
}
@@ -90,8 +84,9 @@ void
nouveau_fence_context_kill(struct nouveau_fence_chan *fctx, int error)
{
struct nouveau_fence *fence;
+ unsigned long flags;
- spin_lock_irq(&fctx->lock);
+ spin_lock_irqsave(&fctx->lock, flags);
while (!list_empty(&fctx->pending)) {
fence = list_entry(fctx->pending.next, typeof(*fence), head);
@@ -99,16 +94,16 @@ nouveau_fence_context_kill(struct nouveau_fence_chan *fctx, int error)
dma_fence_set_error(&fence->base, error);
if (nouveau_fence_signal(fence))
- nvif_notify_put(&fctx->notify);
+ nvif_event_block(&fctx->event);
}
- spin_unlock_irq(&fctx->lock);
+ spin_unlock_irqrestore(&fctx->lock, flags);
}
void
nouveau_fence_context_del(struct nouveau_fence_chan *fctx)
{
nouveau_fence_context_kill(fctx, 0);
- nvif_notify_dtor(&fctx->notify);
+ nvif_event_dtor(&fctx->event);
fctx->dead = 1;
/*
@@ -150,12 +145,11 @@ nouveau_fence_update(struct nouveau_channel *chan, struct nouveau_fence_chan *fc
}
static int
-nouveau_fence_wait_uevent_handler(struct nvif_notify *notify)
+nouveau_fence_wait_uevent_handler(struct nvif_event *event, void *repv, u32 repc)
{
- struct nouveau_fence_chan *fctx =
- container_of(notify, typeof(*fctx), notify);
+ struct nouveau_fence_chan *fctx = container_of(event, typeof(*fctx), event);
unsigned long flags;
- int ret = NVIF_NOTIFY_KEEP;
+ int ret = NVIF_EVENT_KEEP;
spin_lock_irqsave(&fctx->lock, flags);
if (!list_empty(&fctx->pending)) {
@@ -165,7 +159,7 @@ nouveau_fence_wait_uevent_handler(struct nvif_notify *notify)
fence = list_entry(fctx->pending.next, typeof(*fence), head);
chan = rcu_dereference_protected(fence->channel, lockdep_is_held(&fctx->lock));
if (nouveau_fence_update(chan, fctx))
- ret = NVIF_NOTIFY_DROP;
+ ret = NVIF_EVENT_DROP;
}
spin_unlock_irqrestore(&fctx->lock, flags);
@@ -177,12 +171,16 @@ nouveau_fence_context_new(struct nouveau_channel *chan, struct nouveau_fence_cha
{
struct nouveau_fence_priv *priv = (void*)chan->drm->fence;
struct nouveau_cli *cli = (void *)chan->user.client;
+ struct {
+ struct nvif_event_v0 base;
+ struct nvif_chan_event_v0 host;
+ } args;
int ret;
INIT_LIST_HEAD(&fctx->flip);
INIT_LIST_HEAD(&fctx->pending);
spin_lock_init(&fctx->lock);
- fctx->context = chan->drm->chan.context_base + chan->chid;
+ fctx->context = chan->drm->runl[chan->runlist].context_base + chan->chid;
if (chan == chan->drm->cechan)
strcpy(fctx->name, "copy engine channel");
@@ -195,13 +193,12 @@ nouveau_fence_context_new(struct nouveau_channel *chan, struct nouveau_fence_cha
if (!priv->uevent)
return;
- ret = nvif_notify_ctor(&chan->user, "fenceNonStallIntr",
- nouveau_fence_wait_uevent_handler,
- false, NV826E_V0_NTFY_NON_STALL_INTERRUPT,
- &(struct nvif_notify_uevent_req) { },
- sizeof(struct nvif_notify_uevent_req),
- sizeof(struct nvif_notify_uevent_rep),
- &fctx->notify);
+ args.host.version = 0;
+ args.host.type = NVIF_CHAN_EVENT_V0_NON_STALL_INTR;
+
+ ret = nvif_event_ctor(&chan->user, "fenceNonStallIntr", (chan->runlist << 16) | chan->chid,
+ nouveau_fence_wait_uevent_handler, false,
+ &args.base, sizeof(args), &fctx->event);
WARN_ON(ret);
}
@@ -230,7 +227,7 @@ nouveau_fence_emit(struct nouveau_fence *fence, struct nouveau_channel *chan)
spin_lock_irq(&fctx->lock);
if (nouveau_fence_update(chan, fctx))
- nvif_notify_put(&fctx->notify);
+ nvif_event_block(&fctx->event);
list_add_tail(&fence->head, &fctx->pending);
spin_unlock_irq(&fctx->lock);
@@ -254,7 +251,7 @@ nouveau_fence_done(struct nouveau_fence *fence)
spin_lock_irqsave(&fctx->lock, flags);
chan = rcu_dereference_protected(fence->channel, lockdep_is_held(&fctx->lock));
if (chan && nouveau_fence_update(chan, fctx))
- nvif_notify_put(&fctx->notify);
+ nvif_event_block(&fctx->event);
spin_unlock_irqrestore(&fctx->lock, flags);
}
return dma_fence_is_signaled(&fence->base);
@@ -505,13 +502,13 @@ static bool nouveau_fence_enable_signaling(struct dma_fence *f)
bool ret;
if (!fctx->notify_ref++)
- nvif_notify_get(&fctx->notify);
+ nvif_event_allow(&fctx->event);
ret = nouveau_fence_no_signaling(f);
if (ret)
set_bit(DMA_FENCE_FLAG_USER_BITS, &fence->base.flags);
else if (!--fctx->notify_ref)
- nvif_notify_put(&fctx->notify);
+ nvif_event_block(&fctx->event);
return ret;
}
diff --git a/drivers/gpu/drm/nouveau/nouveau_fence.h b/drivers/gpu/drm/nouveau/nouveau_fence.h
index 4887caa69c65..0ca2bc85adf6 100644
--- a/drivers/gpu/drm/nouveau/nouveau_fence.h
+++ b/drivers/gpu/drm/nouveau/nouveau_fence.h
@@ -3,7 +3,7 @@
#define __NOUVEAU_FENCE_H__
#include <linux/dma-fence.h>
-#include <nvif/notify.h>
+#include <nvif/event.h>
struct nouveau_drm;
struct nouveau_bo;
@@ -44,7 +44,7 @@ struct nouveau_fence_chan {
u32 context;
char name[32];
- struct nvif_notify notify;
+ struct nvif_event event;
int notify_ref, dead;
};
diff --git a/drivers/gpu/drm/nouveau/nouveau_gem.c b/drivers/gpu/drm/nouveau/nouveau_gem.c
index fab542a758ff..ab9062e50977 100644
--- a/drivers/gpu/drm/nouveau/nouveau_gem.c
+++ b/drivers/gpu/drm/nouveau/nouveau_gem.c
@@ -653,6 +653,7 @@ nouveau_gem_pushbuf_reloc_apply(struct nouveau_cli *cli,
struct drm_nouveau_gem_pushbuf_bo *b;
struct nouveau_bo *nvbo;
uint32_t data;
+ long lret;
if (unlikely(r->bo_index >= req->nr_buffers)) {
NV_PRINTK(err, cli, "reloc bo index invalid\n");
@@ -679,7 +680,7 @@ nouveau_gem_pushbuf_reloc_apply(struct nouveau_cli *cli,
}
if (!nvbo->kmap.virtual) {
- ret = ttm_bo_kmap(&nvbo->bo, 0, nvbo->bo.resource->num_pages,
+ ret = ttm_bo_kmap(&nvbo->bo, 0, PFN_UP(nvbo->bo.base.size),
&nvbo->kmap);
if (ret) {
NV_PRINTK(err, cli, "failed kmap for reloc\n");
@@ -703,9 +704,19 @@ nouveau_gem_pushbuf_reloc_apply(struct nouveau_cli *cli,
data |= r->vor;
}
- ret = ttm_bo_wait(&nvbo->bo, false, false);
+ lret = dma_resv_wait_timeout(nvbo->bo.base.resv,
+ DMA_RESV_USAGE_BOOKKEEP,
+ false, 15 * HZ);
+ if (!lret)
+ ret = -EBUSY;
+ else if (lret > 0)
+ ret = 0;
+ else
+ ret = lret;
+
if (ret) {
- NV_PRINTK(err, cli, "reloc wait_idle failed: %d\n", ret);
+ NV_PRINTK(err, cli, "reloc wait_idle failed: %d\n",
+ ret);
break;
}
@@ -868,8 +879,7 @@ revalidate:
if (unlikely(cmd != req->suffix0)) {
if (!nvbo->kmap.virtual) {
ret = ttm_bo_kmap(&nvbo->bo, 0,
- nvbo->bo.resource->
- num_pages,
+ PFN_UP(nvbo->bo.base.size),
&nvbo->kmap);
if (ret) {
WIND_RING(chan);
diff --git a/drivers/gpu/drm/nouveau/nouveau_hwmon.c b/drivers/gpu/drm/nouveau/nouveau_hwmon.c
index a7db7c31064b..e844be49e11e 100644
--- a/drivers/gpu/drm/nouveau/nouveau_hwmon.c
+++ b/drivers/gpu/drm/nouveau/nouveau_hwmon.c
@@ -41,7 +41,7 @@ static ssize_t
nouveau_hwmon_show_temp1_auto_point1_pwm(struct device *d,
struct device_attribute *a, char *buf)
{
- return snprintf(buf, PAGE_SIZE, "%d\n", 100);
+ return sysfs_emit(buf, "%d\n", 100);
}
static SENSOR_DEVICE_ATTR(temp1_auto_point1_pwm, 0444,
nouveau_hwmon_show_temp1_auto_point1_pwm, NULL, 0);
@@ -54,8 +54,8 @@ nouveau_hwmon_temp1_auto_point1_temp(struct device *d,
struct nouveau_drm *drm = nouveau_drm(dev);
struct nvkm_therm *therm = nvxx_therm(&drm->client.device);
- return snprintf(buf, PAGE_SIZE, "%d\n",
- therm->attr_get(therm, NVKM_THERM_ATTR_THRS_FAN_BOOST) * 1000);
+ return sysfs_emit(buf, "%d\n",
+ therm->attr_get(therm, NVKM_THERM_ATTR_THRS_FAN_BOOST) * 1000);
}
static ssize_t
nouveau_hwmon_set_temp1_auto_point1_temp(struct device *d,
@@ -87,8 +87,8 @@ nouveau_hwmon_temp1_auto_point1_temp_hyst(struct device *d,
struct nouveau_drm *drm = nouveau_drm(dev);
struct nvkm_therm *therm = nvxx_therm(&drm->client.device);
- return snprintf(buf, PAGE_SIZE, "%d\n",
- therm->attr_get(therm, NVKM_THERM_ATTR_THRS_FAN_BOOST_HYST) * 1000);
+ return sysfs_emit(buf, "%d\n",
+ therm->attr_get(therm, NVKM_THERM_ATTR_THRS_FAN_BOOST_HYST) * 1000);
}
static ssize_t
nouveau_hwmon_set_temp1_auto_point1_temp_hyst(struct device *d,
diff --git a/drivers/gpu/drm/nouveau/nouveau_led.h b/drivers/gpu/drm/nouveau/nouveau_led.h
index 21a5775028cc..bc9bc7208da3 100644
--- a/drivers/gpu/drm/nouveau/nouveau_led.h
+++ b/drivers/gpu/drm/nouveau/nouveau_led.h
@@ -27,7 +27,7 @@
#include "nouveau_drv.h"
-struct led_classdev;
+#include <linux/leds.h>
struct nouveau_led {
struct drm_device *dev;
diff --git a/drivers/gpu/drm/nouveau/nouveau_mem.c b/drivers/gpu/drm/nouveau/nouveau_mem.c
index 76f8edefa637..25f31d5169e5 100644
--- a/drivers/gpu/drm/nouveau/nouveau_mem.c
+++ b/drivers/gpu/drm/nouveau/nouveau_mem.c
@@ -19,11 +19,12 @@
* ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
* OTHER DEALINGS IN THE SOFTWARE.
*/
+#include <drm/ttm/ttm_tt.h>
+
#include "nouveau_mem.h"
#include "nouveau_drv.h"
#include "nouveau_bo.h"
-#include <drm/ttm/ttm_bo_driver.h>
#include <nvif/class.h>
#include <nvif/if000a.h>
@@ -115,7 +116,7 @@ nouveau_mem_host(struct ttm_resource *reg, struct ttm_tt *tt)
mutex_lock(&drm->master.lock);
ret = nvif_mem_ctor_type(mmu, "ttmHostMem", cli->mem->oclass, type, PAGE_SHIFT,
- reg->num_pages << PAGE_SHIFT,
+ reg->size,
&args, sizeof(args), &mem->mem);
mutex_unlock(&drm->master.lock);
return ret;
@@ -128,7 +129,7 @@ nouveau_mem_vram(struct ttm_resource *reg, bool contig, u8 page)
struct nouveau_cli *cli = mem->cli;
struct nouveau_drm *drm = cli->drm;
struct nvif_mmu *mmu = &cli->mmu;
- u64 size = ALIGN(reg->num_pages << PAGE_SHIFT, 1 << page);
+ u64 size = ALIGN(reg->size, 1 << page);
int ret;
mutex_lock(&drm->master.lock);
diff --git a/drivers/gpu/drm/nouveau/nouveau_mem.h b/drivers/gpu/drm/nouveau/nouveau_mem.h
index 1ee6cdb9ad9b..76c86d8bb01e 100644
--- a/drivers/gpu/drm/nouveau/nouveau_mem.h
+++ b/drivers/gpu/drm/nouveau/nouveau_mem.h
@@ -1,6 +1,6 @@
#ifndef __NOUVEAU_MEM_H__
#define __NOUVEAU_MEM_H__
-#include <drm/ttm/ttm_bo_api.h>
+#include <drm/ttm/ttm_bo.h>
struct ttm_tt;
#include <nvif/mem.h>
diff --git a/drivers/gpu/drm/nouveau/nouveau_nvif.c b/drivers/gpu/drm/nouveau/nouveau_nvif.c
index df0fe58ca3ab..1d49ebdfd5dc 100644
--- a/drivers/gpu/drm/nouveau/nouveau_nvif.c
+++ b/drivers/gpu/drm/nouveau/nouveau_nvif.c
@@ -27,12 +27,10 @@
******************************************************************************/
#include <core/client.h>
-#include <core/notify.h>
#include <core/ioctl.h>
#include <nvif/client.h>
#include <nvif/driver.h>
-#include <nvif/notify.h>
#include <nvif/event.h>
#include <nvif/ioctl.h>
@@ -72,10 +70,23 @@ nvkm_client_suspend(void *priv)
}
static int
+nvkm_client_event(u64 token, void *repv, u32 repc)
+{
+ struct nvif_object *object = (void *)(unsigned long)token;
+ struct nvif_event *event = container_of(object, typeof(*event), object);
+
+ if (event->func(event, repv, repc) == NVIF_EVENT_KEEP)
+ return NVKM_EVENT_KEEP;
+
+ return NVKM_EVENT_DROP;
+}
+
+static int
nvkm_client_driver_init(const char *name, u64 device, const char *cfg,
const char *dbg, void **ppriv)
{
- return nvkm_client_new(name, device, cfg, dbg, nvif_notify, (struct nvkm_client **)ppriv);
+ return nvkm_client_new(name, device, cfg, dbg, nvkm_client_event,
+ (struct nvkm_client **)ppriv);
}
const struct nvif_driver
diff --git a/drivers/gpu/drm/nouveau/nouveau_prime.c b/drivers/gpu/drm/nouveau/nouveau_prime.c
index 9608121e49b7..f42c2b1b0363 100644
--- a/drivers/gpu/drm/nouveau/nouveau_prime.c
+++ b/drivers/gpu/drm/nouveau/nouveau_prime.c
@@ -23,6 +23,7 @@
*/
#include <linux/dma-buf.h>
+#include <drm/ttm/ttm_tt.h>
#include "nouveau_drv.h"
#include "nouveau_gem.h"
diff --git a/drivers/gpu/drm/nouveau/nouveau_sgdma.c b/drivers/gpu/drm/nouveau/nouveau_sgdma.c
index 85c03c83259b..b14895f75b3c 100644
--- a/drivers/gpu/drm/nouveau/nouveau_sgdma.c
+++ b/drivers/gpu/drm/nouveau/nouveau_sgdma.c
@@ -1,6 +1,7 @@
// SPDX-License-Identifier: MIT
#include <linux/pagemap.h>
#include <linux/slab.h>
+#include <drm/ttm/ttm_tt.h>
#include "nouveau_drv.h"
#include "nouveau_mem.h"
diff --git a/drivers/gpu/drm/nouveau/nouveau_svm.c b/drivers/gpu/drm/nouveau/nouveau_svm.c
index 31a5b81ee9fc..a74ba8d84ba7 100644
--- a/drivers/gpu/drm/nouveau/nouveau_svm.c
+++ b/drivers/gpu/drm/nouveau/nouveau_svm.c
@@ -24,7 +24,7 @@
#include "nouveau_chan.h"
#include "nouveau_dmem.h"
-#include <nvif/notify.h>
+#include <nvif/event.h>
#include <nvif/object.h>
#include <nvif/vmm.h>
@@ -51,7 +51,8 @@ struct nouveau_svm {
u32 putaddr;
u32 get;
u32 put;
- struct nvif_notify notify;
+ struct nvif_event notify;
+ struct work_struct work;
struct nouveau_svm_fault {
u64 inst;
@@ -711,13 +712,11 @@ out:
return ret;
}
-static int
-nouveau_svm_fault(struct nvif_notify *notify)
+static void
+nouveau_svm_fault(struct work_struct *work)
{
- struct nouveau_svm_fault_buffer *buffer =
- container_of(notify, typeof(*buffer), notify);
- struct nouveau_svm *svm =
- container_of(buffer, typeof(*svm), buffer[buffer->id]);
+ struct nouveau_svm_fault_buffer *buffer = container_of(work, typeof(*buffer), work);
+ struct nouveau_svm *svm = container_of(buffer, typeof(*svm), buffer[buffer->id]);
struct nvif_object *device = &svm->drm->client.device.object;
struct nouveau_svmm *svmm;
struct {
@@ -737,7 +736,7 @@ nouveau_svm_fault(struct nvif_notify *notify)
buffer->put = nvif_rd32(device, buffer->putaddr);
buffer->get = nvif_rd32(device, buffer->getaddr);
if (buffer->get == buffer->put)
- return NVIF_NOTIFY_KEEP;
+ return;
}
buffer->fault_nr = 0;
@@ -881,7 +880,15 @@ nouveau_svm_fault(struct nvif_notify *notify)
/* Issue fault replay to the GPU. */
if (replay)
nouveau_svm_fault_replay(svm);
- return NVIF_NOTIFY_KEEP;
+}
+
+static int
+nouveau_svm_event(struct nvif_event *event, void *argv, u32 argc)
+{
+ struct nouveau_svm_fault_buffer *buffer = container_of(event, typeof(*buffer), notify);
+
+ schedule_work(&buffer->work);
+ return NVIF_EVENT_KEEP;
}
static struct nouveau_pfnmap_args *
@@ -936,7 +943,9 @@ static void
nouveau_svm_fault_buffer_fini(struct nouveau_svm *svm, int id)
{
struct nouveau_svm_fault_buffer *buffer = &svm->buffer[id];
- nvif_notify_put(&buffer->notify);
+
+ nvif_event_block(&buffer->notify);
+ flush_work(&buffer->work);
}
static int
@@ -944,10 +953,12 @@ nouveau_svm_fault_buffer_init(struct nouveau_svm *svm, int id)
{
struct nouveau_svm_fault_buffer *buffer = &svm->buffer[id];
struct nvif_object *device = &svm->drm->client.device.object;
+
buffer->get = nvif_rd32(device, buffer->getaddr);
buffer->put = nvif_rd32(device, buffer->putaddr);
SVM_DBG(svm, "get %08x put %08x (init)", buffer->get, buffer->put);
- return nvif_notify_get(&buffer->notify);
+
+ return nvif_event_allow(&buffer->notify);
}
static void
@@ -956,15 +967,18 @@ nouveau_svm_fault_buffer_dtor(struct nouveau_svm *svm, int id)
struct nouveau_svm_fault_buffer *buffer = &svm->buffer[id];
int i;
+ if (!nvif_object_constructed(&buffer->object))
+ return;
+
+ nouveau_svm_fault_buffer_fini(svm, id);
+
if (buffer->fault) {
for (i = 0; buffer->fault[i] && i < buffer->entries; i++)
kfree(buffer->fault[i]);
kvfree(buffer->fault);
}
- nouveau_svm_fault_buffer_fini(svm, id);
-
- nvif_notify_dtor(&buffer->notify);
+ nvif_event_dtor(&buffer->notify);
nvif_object_dtor(&buffer->object);
}
@@ -990,10 +1004,10 @@ nouveau_svm_fault_buffer_ctor(struct nouveau_svm *svm, s32 oclass, int id)
buffer->entries = args.entries;
buffer->getaddr = args.get;
buffer->putaddr = args.put;
+ INIT_WORK(&buffer->work, nouveau_svm_fault);
- ret = nvif_notify_ctor(&buffer->object, "svmFault", nouveau_svm_fault,
- true, NVB069_V0_NTFY_FAULT, NULL, 0, 0,
- &buffer->notify);
+ ret = nvif_event_ctor(&buffer->object, "svmFault", id, nouveau_svm_event, true, NULL, 0,
+ &buffer->notify);
if (ret)
return ret;
diff --git a/drivers/gpu/drm/nouveau/nouveau_ttm.c b/drivers/gpu/drm/nouveau/nouveau_ttm.c
index 9602c30928f2..1469a88910e4 100644
--- a/drivers/gpu/drm/nouveau/nouveau_ttm.c
+++ b/drivers/gpu/drm/nouveau/nouveau_ttm.c
@@ -139,7 +139,7 @@ nv04_gart_manager_new(struct ttm_resource_manager *man,
mem = nouveau_mem(*res);
ttm_resource_init(bo, place, *res);
ret = nvif_vmm_get(&mem->cli->vmm.vmm, PTES, false, 12, 0,
- (long)(*res)->num_pages << PAGE_SHIFT, &mem->vma[0]);
+ (long)(*res)->size, &mem->vma[0]);
if (ret) {
nouveau_mem_del(man, *res);
return ret;
diff --git a/drivers/gpu/drm/nouveau/nouveau_usif.c b/drivers/gpu/drm/nouveau/nouveau_usif.c
index 36df6840c099..002d1479ba89 100644
--- a/drivers/gpu/drm/nouveau/nouveau_usif.c
+++ b/drivers/gpu/drm/nouveau/nouveau_usif.c
@@ -151,12 +151,6 @@ usif_ioctl(struct drm_file *filp, void __user *user, u32 argc)
case NVIF_IOCTL_V0_NEW:
ret = usif_object_new(filp, data, size, argv, argc, abi16);
break;
- case NVIF_IOCTL_V0_NTFY_NEW:
- case NVIF_IOCTL_V0_NTFY_DEL:
- case NVIF_IOCTL_V0_NTFY_GET:
- case NVIF_IOCTL_V0_NTFY_PUT:
- ret = -ENOSYS;
- break;
default:
ret = nvif_client_ioctl(client, argv, argc);
break;
diff --git a/drivers/gpu/drm/nouveau/nouveau_vga.c b/drivers/gpu/drm/nouveau/nouveau_vga.c
index 60cd8c0463df..f8bf0ec26844 100644
--- a/drivers/gpu/drm/nouveau/nouveau_vga.c
+++ b/drivers/gpu/drm/nouveau/nouveau_vga.c
@@ -2,12 +2,10 @@
#include <linux/vgaarb.h>
#include <linux/vga_switcheroo.h>
-#include <drm/drm_crtc_helper.h>
#include <drm/drm_fb_helper.h>
#include "nouveau_drv.h"
#include "nouveau_acpi.h"
-#include "nouveau_fbcon.h"
#include "nouveau_vga.h"
static unsigned int
diff --git a/drivers/gpu/drm/nouveau/nv04_fbcon.c b/drivers/gpu/drm/nouveau/nv04_fbcon.c
deleted file mode 100644
index 92f3fb6765ab..000000000000
--- a/drivers/gpu/drm/nouveau/nv04_fbcon.c
+++ /dev/null
@@ -1,257 +0,0 @@
-/*
- * Copyright 2009 Ben Skeggs
- * Copyright 2008 Stuart Bennett
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice (including the next
- * paragraph) shall be included in all copies or substantial portions of the
- * Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
- * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
- * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
- * DEALINGS IN THE SOFTWARE.
- */
-#define NVIF_DEBUG_PRINT_DISABLE
-#include "nouveau_drv.h"
-#include "nouveau_dma.h"
-#include "nouveau_fbcon.h"
-
-#include <nvif/push006c.h>
-
-int
-nv04_fbcon_copyarea(struct fb_info *info, const struct fb_copyarea *region)
-{
- struct nouveau_fbdev *nfbdev = info->par;
- struct nouveau_drm *drm = nouveau_drm(nfbdev->helper.dev);
- struct nouveau_channel *chan = drm->channel;
- struct nvif_push *push = chan->chan.push;
- int ret;
-
- ret = PUSH_WAIT(push, 4);
- if (ret)
- return ret;
-
- PUSH_NVSQ(push, NV05F, 0x0300, (region->sy << 16) | region->sx,
- 0x0304, (region->dy << 16) | region->dx,
- 0x0308, (region->height << 16) | region->width);
- PUSH_KICK(push);
- return 0;
-}
-
-int
-nv04_fbcon_fillrect(struct fb_info *info, const struct fb_fillrect *rect)
-{
- struct nouveau_fbdev *nfbdev = info->par;
- struct nouveau_drm *drm = nouveau_drm(nfbdev->helper.dev);
- struct nouveau_channel *chan = drm->channel;
- struct nvif_push *push = chan->chan.push;
- int ret;
-
- ret = PUSH_WAIT(push, 7);
- if (ret)
- return ret;
-
- PUSH_NVSQ(push, NV04A, 0x02fc, (rect->rop != ROP_COPY) ? 1 : 3);
- if (info->fix.visual == FB_VISUAL_TRUECOLOR ||
- info->fix.visual == FB_VISUAL_DIRECTCOLOR)
- PUSH_NVSQ(push, NV04A, 0x03fc, ((uint32_t *)info->pseudo_palette)[rect->color]);
- else
- PUSH_NVSQ(push, NV04A, 0x03fc, rect->color);
- PUSH_NVSQ(push, NV04A, 0x0400, (rect->dx << 16) | rect->dy,
- 0x0404, (rect->width << 16) | rect->height);
- PUSH_KICK(push);
- return 0;
-}
-
-int
-nv04_fbcon_imageblit(struct fb_info *info, const struct fb_image *image)
-{
- struct nouveau_fbdev *nfbdev = info->par;
- struct nouveau_drm *drm = nouveau_drm(nfbdev->helper.dev);
- struct nouveau_channel *chan = drm->channel;
- struct nvif_push *push = chan->chan.push;
- uint32_t fg;
- uint32_t bg;
- uint32_t dsize;
- uint32_t *data = (uint32_t *)image->data;
- int ret;
-
- if (image->depth != 1)
- return -ENODEV;
-
- ret = PUSH_WAIT(push, 8);
- if (ret)
- return ret;
-
- if (info->fix.visual == FB_VISUAL_TRUECOLOR ||
- info->fix.visual == FB_VISUAL_DIRECTCOLOR) {
- fg = ((uint32_t *) info->pseudo_palette)[image->fg_color];
- bg = ((uint32_t *) info->pseudo_palette)[image->bg_color];
- } else {
- fg = image->fg_color;
- bg = image->bg_color;
- }
-
- PUSH_NVSQ(push, NV04A, 0x0be4, (image->dy << 16) | (image->dx & 0xffff),
- 0x0be8, ((image->dy + image->height) << 16) |
- ((image->dx + image->width) & 0xffff),
- 0x0bec, bg,
- 0x0bf0, fg,
- 0x0bf4, (image->height << 16) | ALIGN(image->width, 8),
- 0x0bf8, (image->height << 16) | image->width,
- 0x0bfc, (image->dy << 16) | (image->dx & 0xffff));
-
- dsize = ALIGN(ALIGN(image->width, 8) * image->height, 32) >> 5;
- while (dsize) {
- int iter_len = dsize > 128 ? 128 : dsize;
-
- ret = PUSH_WAIT(push, iter_len + 1);
- if (ret)
- return ret;
-
- PUSH_NVSQ(push, NV04A, 0x0c00, data, iter_len);
- data += iter_len;
- dsize -= iter_len;
- }
-
- PUSH_KICK(push);
- return 0;
-}
-
-int
-nv04_fbcon_accel_init(struct fb_info *info)
-{
- struct nouveau_fbdev *nfbdev = info->par;
- struct drm_device *dev = nfbdev->helper.dev;
- struct nouveau_drm *drm = nouveau_drm(dev);
- struct nouveau_channel *chan = drm->channel;
- struct nvif_device *device = &drm->client.device;
- struct nvif_push *push = chan->chan.push;
- int surface_fmt, pattern_fmt, rect_fmt;
- int ret;
-
- switch (info->var.bits_per_pixel) {
- case 8:
- surface_fmt = 1;
- pattern_fmt = 3;
- rect_fmt = 3;
- break;
- case 16:
- surface_fmt = 4;
- pattern_fmt = 1;
- rect_fmt = 1;
- break;
- case 32:
- switch (info->var.transp.length) {
- case 0: /* depth 24 */
- case 8: /* depth 32 */
- break;
- default:
- return -EINVAL;
- }
-
- surface_fmt = 6;
- pattern_fmt = 3;
- rect_fmt = 3;
- break;
- default:
- return -EINVAL;
- }
-
- ret = nvif_object_ctor(&chan->user, "fbconCtxSurf2d", 0x0062,
- device->info.family >= NV_DEVICE_INFO_V0_CELSIUS ?
- 0x0062 : 0x0042, NULL, 0, &nfbdev->surf2d);
- if (ret)
- return ret;
-
- ret = nvif_object_ctor(&chan->user, "fbconCtxClip", 0x0019, 0x0019,
- NULL, 0, &nfbdev->clip);
- if (ret)
- return ret;
-
- ret = nvif_object_ctor(&chan->user, "fbconCtxRop", 0x0043, 0x0043,
- NULL, 0, &nfbdev->rop);
- if (ret)
- return ret;
-
- ret = nvif_object_ctor(&chan->user, "fbconCtxPatt", 0x0044, 0x0044,
- NULL, 0, &nfbdev->patt);
- if (ret)
- return ret;
-
- ret = nvif_object_ctor(&chan->user, "fbconGdiRectText", 0x004a, 0x004a,
- NULL, 0, &nfbdev->gdi);
- if (ret)
- return ret;
-
- ret = nvif_object_ctor(&chan->user, "fbconImageBlit", 0x005f,
- device->info.chipset >= 0x11 ? 0x009f : 0x005f,
- NULL, 0, &nfbdev->blit);
- if (ret)
- return ret;
-
- if (PUSH_WAIT(push, 49 + (device->info.chipset >= 0x11 ? 4 : 0))) {
- nouveau_fbcon_gpu_lockup(info);
- return 0;
- }
-
- PUSH_NVSQ(push, NV042, 0x0000, nfbdev->surf2d.handle);
- PUSH_NVSQ(push, NV042, 0x0184, chan->vram.handle,
- 0x0188, chan->vram.handle);
- PUSH_NVSQ(push, NV042, 0x0300, surface_fmt,
- 0x0304, info->fix.line_length | (info->fix.line_length << 16),
- 0x0308, info->fix.smem_start - dev->mode_config.fb_base,
- 0x030c, info->fix.smem_start - dev->mode_config.fb_base);
-
- PUSH_NVSQ(push, NV043, 0x0000, nfbdev->rop.handle);
- PUSH_NVSQ(push, NV043, 0x0300, 0x55);
-
- PUSH_NVSQ(push, NV044, 0x0000, nfbdev->patt.handle);
- PUSH_NVSQ(push, NV044, 0x0300, pattern_fmt,
-#ifdef __BIG_ENDIAN
- 0x0304, 2,
-#else
- 0x0304, 1,
-#endif
- 0x0308, 0,
- 0x030c, 1,
- 0x0310, ~0,
- 0x0314, ~0,
- 0x0318, ~0,
- 0x031c, ~0);
-
- PUSH_NVSQ(push, NV019, 0x0000, nfbdev->clip.handle);
- PUSH_NVSQ(push, NV019, 0x0300, 0,
- 0x0304, (info->var.yres_virtual << 16) | info->var.xres_virtual);
-
- PUSH_NVSQ(push, NV05F, 0x0000, nfbdev->blit.handle);
- PUSH_NVSQ(push, NV05F, 0x019c, nfbdev->surf2d.handle);
- PUSH_NVSQ(push, NV05F, 0x02fc, 3);
- if (nfbdev->blit.oclass == 0x009f) {
- PUSH_NVSQ(push, NV09F, 0x0120, 0,
- 0x0124, 1,
- 0x0128, 2);
- }
-
- PUSH_NVSQ(push, NV04A, 0x0000, nfbdev->gdi.handle);
- PUSH_NVSQ(push, NV04A, 0x0198, nfbdev->surf2d.handle);
- PUSH_NVSQ(push, NV04A, 0x0188, nfbdev->patt.handle,
- 0x018c, nfbdev->rop.handle);
- PUSH_NVSQ(push, NV04A, 0x0304, 1);
- PUSH_NVSQ(push, NV04A, 0x0300, rect_fmt);
- PUSH_NVSQ(push, NV04A, 0x02fc, 3);
-
- PUSH_KICK(push);
- return 0;
-}
-
diff --git a/drivers/gpu/drm/nouveau/nv50_fbcon.c b/drivers/gpu/drm/nouveau/nv50_fbcon.c
deleted file mode 100644
index 71f92e4750f9..000000000000
--- a/drivers/gpu/drm/nouveau/nv50_fbcon.c
+++ /dev/null
@@ -1,299 +0,0 @@
-/*
- * Copyright 2010 Red Hat Inc.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice shall be included in
- * all copies or substantial portions of the Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
- * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
- * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
- * OTHER DEALINGS IN THE SOFTWARE.
- *
- * Authors: Ben Skeggs
- */
-#define NVIF_DEBUG_PRINT_DISABLE
-#include "nouveau_drv.h"
-#include "nouveau_dma.h"
-#include "nouveau_fbcon.h"
-#include "nouveau_vmm.h"
-
-#include <nvif/push206e.h>
-
-#include <nvhw/class/cl502d.h>
-
-int
-nv50_fbcon_fillrect(struct fb_info *info, const struct fb_fillrect *rect)
-{
- struct nouveau_fbdev *nfbdev = info->par;
- struct nouveau_drm *drm = nouveau_drm(nfbdev->helper.dev);
- struct nouveau_channel *chan = drm->channel;
- struct nvif_push *push = chan->chan.push;
- u32 colour;
- int ret;
-
- if (info->fix.visual == FB_VISUAL_TRUECOLOR ||
- info->fix.visual == FB_VISUAL_DIRECTCOLOR)
- colour = ((uint32_t *)info->pseudo_palette)[rect->color];
- else
- colour = rect->color;
-
- ret = PUSH_WAIT(push, rect->rop == ROP_COPY ? 7 : 11);
- if (ret)
- return ret;
-
- if (rect->rop != ROP_COPY) {
- PUSH_MTHD(push, NV502D, SET_OPERATION,
- NVDEF(NV502D, SET_OPERATION, V, ROP_AND));
- }
-
- PUSH_MTHD(push, NV502D, SET_RENDER_SOLID_PRIM_COLOR, colour);
-
- PUSH_MTHD(push, NV502D, RENDER_SOLID_PRIM_POINT_SET_X(0), rect->dx,
- RENDER_SOLID_PRIM_POINT_Y(0), rect->dy,
- RENDER_SOLID_PRIM_POINT_SET_X(1), rect->dx + rect->width,
- RENDER_SOLID_PRIM_POINT_Y(1), rect->dy + rect->height);
-
- if (rect->rop != ROP_COPY) {
- PUSH_MTHD(push, NV502D, SET_OPERATION,
- NVDEF(NV502D, SET_OPERATION, V, SRCCOPY));
- }
-
- PUSH_KICK(push);
- return 0;
-}
-
-int
-nv50_fbcon_copyarea(struct fb_info *info, const struct fb_copyarea *region)
-{
- struct nouveau_fbdev *nfbdev = info->par;
- struct nouveau_drm *drm = nouveau_drm(nfbdev->helper.dev);
- struct nouveau_channel *chan = drm->channel;
- struct nvif_push *push = chan->chan.push;
- int ret;
-
- ret = PUSH_WAIT(push, 12);
- if (ret)
- return ret;
-
- PUSH_MTHD(push, NV502D, WAIT_FOR_IDLE, 0);
-
- PUSH_MTHD(push, NV502D, SET_PIXELS_FROM_MEMORY_DST_X0, region->dx,
- SET_PIXELS_FROM_MEMORY_DST_Y0, region->dy,
- SET_PIXELS_FROM_MEMORY_DST_WIDTH, region->width,
- SET_PIXELS_FROM_MEMORY_DST_HEIGHT, region->height);
-
- PUSH_MTHD(push, NV502D, SET_PIXELS_FROM_MEMORY_SRC_X0_FRAC, 0,
- SET_PIXELS_FROM_MEMORY_SRC_X0_INT, region->sx,
- SET_PIXELS_FROM_MEMORY_SRC_Y0_FRAC, 0,
- PIXELS_FROM_MEMORY_SRC_Y0_INT, region->sy);
- PUSH_KICK(push);
- return 0;
-}
-
-int
-nv50_fbcon_imageblit(struct fb_info *info, const struct fb_image *image)
-{
- struct nouveau_fbdev *nfbdev = info->par;
- struct nouveau_drm *drm = nouveau_drm(nfbdev->helper.dev);
- struct nouveau_channel *chan = drm->channel;
- struct nvif_push *push = chan->chan.push;
- uint32_t dwords, *data = (uint32_t *)image->data;
- uint32_t mask = ~(~0 >> (32 - info->var.bits_per_pixel));
- uint32_t *palette = info->pseudo_palette, bg, fg;
- int ret;
-
- if (image->depth != 1)
- return -ENODEV;
-
- if (info->fix.visual == FB_VISUAL_TRUECOLOR ||
- info->fix.visual == FB_VISUAL_DIRECTCOLOR) {
- bg = palette[image->bg_color] | mask;
- fg = palette[image->fg_color] | mask;
- } else {
- bg = image->bg_color;
- fg = image->fg_color;
- }
-
- ret = PUSH_WAIT(push, 11);
- if (ret)
- return ret;
-
- PUSH_MTHD(push, NV502D, SET_PIXELS_FROM_CPU_COLOR0, bg,
- SET_PIXELS_FROM_CPU_COLOR1, fg);
-
- PUSH_MTHD(push, NV502D, SET_PIXELS_FROM_CPU_SRC_WIDTH, image->width,
- SET_PIXELS_FROM_CPU_SRC_HEIGHT, image->height);
-
- PUSH_MTHD(push, NV502D, SET_PIXELS_FROM_CPU_DST_X0_FRAC, 0,
- SET_PIXELS_FROM_CPU_DST_X0_INT, image->dx,
- SET_PIXELS_FROM_CPU_DST_Y0_FRAC, 0,
- SET_PIXELS_FROM_CPU_DST_Y0_INT, image->dy);
-
- dwords = ALIGN(ALIGN(image->width, 8) * image->height, 32) >> 5;
- while (dwords) {
- int count = dwords > 2047 ? 2047 : dwords;
-
- ret = PUSH_WAIT(push, count + 1);
- if (ret)
- return ret;
-
- dwords -= count;
-
- PUSH_NINC(push, NV502D, PIXELS_FROM_CPU_DATA, data, count);
- data += count;
- }
-
- PUSH_KICK(push);
- return 0;
-}
-
-int
-nv50_fbcon_accel_init(struct fb_info *info)
-{
- struct nouveau_fbdev *nfbdev = info->par;
- struct drm_device *dev = nfbdev->helper.dev;
- struct nouveau_drm *drm = nouveau_drm(dev);
- struct nouveau_channel *chan = drm->channel;
- struct nvif_push *push = chan->chan.push;
- int ret, format;
-
- switch (info->var.bits_per_pixel) {
- case 8:
- format = NV502D_SET_DST_FORMAT_V_Y8;
- break;
- case 15:
- format = NV502D_SET_DST_FORMAT_V_X1R5G5B5;
- break;
- case 16:
- format = NV502D_SET_DST_FORMAT_V_R5G6B5;
- break;
- case 32:
- switch (info->var.transp.length) {
- case 0: /* depth 24 */
- case 8: /* depth 32, just use 24.. */
- format = NV502D_SET_DST_FORMAT_V_X8R8G8B8;
- break;
- case 2: /* depth 30 */
- format = NV502D_SET_DST_FORMAT_V_A2B10G10R10;
- break;
- default:
- return -EINVAL;
- }
- break;
- default:
- return -EINVAL;
- }
-
- ret = nvif_object_ctor(&chan->user, "fbconTwoD", 0x502d, 0x502d,
- NULL, 0, &nfbdev->twod);
- if (ret)
- return ret;
-
- ret = PUSH_WAIT(push, 56);
- if (ret) {
- nouveau_fbcon_gpu_lockup(info);
- return ret;
- }
-
- PUSH_MTHD(push, NV502D, SET_OBJECT, nfbdev->twod.handle);
- PUSH_MTHD(push, NV502D, SET_DST_CONTEXT_DMA, chan->vram.handle,
- SET_SRC_CONTEXT_DMA, chan->vram.handle,
- SET_SEMAPHORE_CONTEXT_DMA, chan->vram.handle);
-
- PUSH_MTHD(push, NV502D, SET_DST_FORMAT,
- NVVAL(NV502D, SET_DST_FORMAT, V, format),
-
- SET_DST_MEMORY_LAYOUT,
- NVDEF(NV502D, SET_DST_MEMORY_LAYOUT, V, PITCH));
-
- PUSH_MTHD(push, NV502D, SET_DST_PITCH, info->fix.line_length,
- SET_DST_WIDTH, info->var.xres_virtual,
- SET_DST_HEIGHT, info->var.yres_virtual,
-
- SET_DST_OFFSET_UPPER,
- NVVAL(NV502D, SET_DST_OFFSET_UPPER, V, upper_32_bits(nfbdev->vma->addr)),
-
- SET_DST_OFFSET_LOWER,
- NVVAL(NV502D, SET_DST_OFFSET_LOWER, V, lower_32_bits(nfbdev->vma->addr)));
-
- PUSH_MTHD(push, NV502D, SET_SRC_FORMAT,
- NVVAL(NV502D, SET_SRC_FORMAT, V, format),
-
- SET_SRC_MEMORY_LAYOUT,
- NVDEF(NV502D, SET_SRC_MEMORY_LAYOUT, V, PITCH));
-
- PUSH_MTHD(push, NV502D, SET_SRC_PITCH, info->fix.line_length,
- SET_SRC_WIDTH, info->var.xres_virtual,
- SET_SRC_HEIGHT, info->var.yres_virtual,
-
- SET_SRC_OFFSET_UPPER,
- NVVAL(NV502D, SET_SRC_OFFSET_UPPER, V, upper_32_bits(nfbdev->vma->addr)),
-
- SET_SRC_OFFSET_LOWER,
- NVVAL(NV502D, SET_SRC_OFFSET_LOWER, V, lower_32_bits(nfbdev->vma->addr)));
-
- PUSH_MTHD(push, NV502D, SET_CLIP_ENABLE,
- NVDEF(NV502D, SET_CLIP_ENABLE, V, FALSE));
-
- PUSH_MTHD(push, NV502D, SET_ROP,
- NVVAL(NV502D, SET_ROP, V, 0x55));
-
- PUSH_MTHD(push, NV502D, SET_OPERATION,
- NVDEF(NV502D, SET_OPERATION, V, SRCCOPY));
-
- PUSH_MTHD(push, NV502D, SET_MONOCHROME_PATTERN_COLOR_FORMAT,
- NVDEF(NV502D, SET_MONOCHROME_PATTERN_COLOR_FORMAT, V, A8R8G8B8),
-
- SET_MONOCHROME_PATTERN_FORMAT,
- NVDEF(NV502D, SET_MONOCHROME_PATTERN_FORMAT, V, LE_M1));
-
- PUSH_MTHD(push, NV502D, RENDER_SOLID_PRIM_MODE,
- NVDEF(NV502D, RENDER_SOLID_PRIM_MODE, V, RECTS),
-
- SET_RENDER_SOLID_PRIM_COLOR_FORMAT,
- NVVAL(NV502D, SET_RENDER_SOLID_PRIM_COLOR_FORMAT, V, format));
-
- PUSH_MTHD(push, NV502D, SET_PIXELS_FROM_CPU_DATA_TYPE,
- NVDEF(NV502D, SET_PIXELS_FROM_CPU_DATA_TYPE, V, INDEX),
-
- SET_PIXELS_FROM_CPU_COLOR_FORMAT,
- NVVAL(NV502D, SET_PIXELS_FROM_CPU_COLOR_FORMAT, V, format),
-
- SET_PIXELS_FROM_CPU_INDEX_FORMAT,
- NVDEF(NV502D, SET_PIXELS_FROM_CPU_INDEX_FORMAT, V, I1),
-
- SET_PIXELS_FROM_CPU_MONO_FORMAT,
- NVDEF(NV502D, SET_PIXELS_FROM_CPU_MONO_FORMAT, V, CGA6_M1),
-
- SET_PIXELS_FROM_CPU_WRAP,
- NVDEF(NV502D, SET_PIXELS_FROM_CPU_WRAP, V, WRAP_BYTE));
-
- PUSH_MTHD(push, NV502D, SET_PIXELS_FROM_CPU_MONO_OPACITY,
- NVDEF(NV502D, SET_PIXELS_FROM_CPU_MONO_OPACITY, V, OPAQUE));
-
- PUSH_MTHD(push, NV502D, SET_PIXELS_FROM_CPU_DX_DU_FRAC, 0,
- SET_PIXELS_FROM_CPU_DX_DU_INT, 1,
- SET_PIXELS_FROM_CPU_DY_DV_FRAC, 0,
- SET_PIXELS_FROM_CPU_DY_DV_INT, 1);
-
- PUSH_MTHD(push, NV502D, SET_PIXELS_FROM_MEMORY_SAFE_OVERLAP,
- NVDEF(NV502D, SET_PIXELS_FROM_MEMORY_SAFE_OVERLAP, V, TRUE));
-
- PUSH_MTHD(push, NV502D, SET_PIXELS_FROM_MEMORY_DU_DX_FRAC, 0,
- SET_PIXELS_FROM_MEMORY_DU_DX_INT, 1,
- SET_PIXELS_FROM_MEMORY_DV_DY_FRAC, 0,
- SET_PIXELS_FROM_MEMORY_DV_DY_INT, 1);
- PUSH_KICK(push);
- return 0;
-}
-
diff --git a/drivers/gpu/drm/nouveau/nv84_fence.c b/drivers/gpu/drm/nouveau/nv84_fence.c
index c3526a8622e3..812b8c62eeba 100644
--- a/drivers/gpu/drm/nouveau/nv84_fence.c
+++ b/drivers/gpu/drm/nouveau/nv84_fence.c
@@ -76,12 +76,18 @@ nv84_fence_sync32(struct nouveau_channel *chan, u64 virtual, u32 sequence)
return ret;
}
+static inline u32
+nv84_fence_chid(struct nouveau_channel *chan)
+{
+ return chan->drm->runl[chan->runlist].chan_id_base + chan->chid;
+}
+
static int
nv84_fence_emit(struct nouveau_fence *fence)
{
struct nouveau_channel *chan = fence->channel;
struct nv84_fence_chan *fctx = chan->fence;
- u64 addr = fctx->vma->addr + chan->chid * 16;
+ u64 addr = fctx->vma->addr + nv84_fence_chid(chan) * 16;
return fctx->base.emit32(chan, addr, fence->base.seqno);
}
@@ -91,7 +97,7 @@ nv84_fence_sync(struct nouveau_fence *fence,
struct nouveau_channel *prev, struct nouveau_channel *chan)
{
struct nv84_fence_chan *fctx = chan->fence;
- u64 addr = fctx->vma->addr + prev->chid * 16;
+ u64 addr = fctx->vma->addr + nv84_fence_chid(prev) * 16;
return fctx->base.sync32(chan, addr, fence->base.seqno);
}
@@ -100,7 +106,7 @@ static u32
nv84_fence_read(struct nouveau_channel *chan)
{
struct nv84_fence_priv *priv = chan->drm->fence;
- return nouveau_bo_rd32(priv->bo, chan->chid * 16/4);
+ return nouveau_bo_rd32(priv->bo, nv84_fence_chid(chan) * 16/4);
}
static void
@@ -109,7 +115,7 @@ nv84_fence_context_del(struct nouveau_channel *chan)
struct nv84_fence_priv *priv = chan->drm->fence;
struct nv84_fence_chan *fctx = chan->fence;
- nouveau_bo_wr32(priv->bo, chan->chid * 16 / 4, fctx->base.sequence);
+ nouveau_bo_wr32(priv->bo, nv84_fence_chid(chan) * 16 / 4, fctx->base.sequence);
mutex_lock(&priv->mutex);
nouveau_vma_del(&fctx->vma);
mutex_unlock(&priv->mutex);
@@ -152,9 +158,9 @@ nv84_fence_suspend(struct nouveau_drm *drm)
struct nv84_fence_priv *priv = drm->fence;
int i;
- priv->suspend = vmalloc(array_size(sizeof(u32), drm->chan.nr));
+ priv->suspend = vmalloc(array_size(sizeof(u32), drm->chan_total));
if (priv->suspend) {
- for (i = 0; i < drm->chan.nr; i++)
+ for (i = 0; i < drm->chan_total; i++)
priv->suspend[i] = nouveau_bo_rd32(priv->bo, i*4);
}
@@ -168,7 +174,7 @@ nv84_fence_resume(struct nouveau_drm *drm)
int i;
if (priv->suspend) {
- for (i = 0; i < drm->chan.nr; i++)
+ for (i = 0; i < drm->chan_total; i++)
nouveau_bo_wr32(priv->bo, i*4, priv->suspend[i]);
vfree(priv->suspend);
priv->suspend = NULL;
@@ -204,7 +210,7 @@ nv84_fence_create(struct nouveau_drm *drm)
priv->base.context_new = nv84_fence_context_new;
priv->base.context_del = nv84_fence_context_del;
- priv->base.uevent = drm->client.device.info.family < NV_DEVICE_INFO_V0_AMPERE;
+ priv->base.uevent = true;
mutex_init(&priv->mutex);
@@ -216,7 +222,7 @@ nv84_fence_create(struct nouveau_drm *drm)
* will lose CPU/GPU coherency!
*/
NOUVEAU_GEM_DOMAIN_GART | NOUVEAU_GEM_DOMAIN_COHERENT;
- ret = nouveau_bo_new(&drm->client, 16 * drm->chan.nr, 0,
+ ret = nouveau_bo_new(&drm->client, 16 * drm->chan_total, 0,
domain, 0, 0, NULL, NULL, &priv->bo);
if (ret == 0) {
ret = nouveau_bo_pin(priv->bo, domain, false);
diff --git a/drivers/gpu/drm/nouveau/nvc0_fbcon.c b/drivers/gpu/drm/nouveau/nvc0_fbcon.c
deleted file mode 100644
index 7908a1a3e00f..000000000000
--- a/drivers/gpu/drm/nouveau/nvc0_fbcon.c
+++ /dev/null
@@ -1,297 +0,0 @@
-/*
- * Copyright 2010 Red Hat Inc.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice shall be included in
- * all copies or substantial portions of the Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
- * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
- * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
- * OTHER DEALINGS IN THE SOFTWARE.
- *
- * Authors: Ben Skeggs
- */
-#define NVIF_DEBUG_PRINT_DISABLE
-#include "nouveau_drv.h"
-#include "nouveau_dma.h"
-#include "nouveau_fbcon.h"
-#include "nouveau_vmm.h"
-
-#include <nvif/push906f.h>
-
-#include <nvhw/class/cl902d.h>
-
-int
-nvc0_fbcon_fillrect(struct fb_info *info, const struct fb_fillrect *rect)
-{
- struct nouveau_fbdev *nfbdev = info->par;
- struct nouveau_drm *drm = nouveau_drm(nfbdev->helper.dev);
- struct nouveau_channel *chan = drm->channel;
- struct nvif_push *push = chan->chan.push;
- u32 colour;
- int ret;
-
- if (info->fix.visual == FB_VISUAL_TRUECOLOR ||
- info->fix.visual == FB_VISUAL_DIRECTCOLOR)
- colour = ((uint32_t *)info->pseudo_palette)[rect->color];
- else
- colour = rect->color;
-
- ret = PUSH_WAIT(push, rect->rop == ROP_COPY ? 7 : 9);
- if (ret)
- return ret;
-
- if (rect->rop != ROP_COPY) {
- PUSH_IMMD(push, NV902D, SET_OPERATION,
- NVDEF(NV902D, SET_OPERATION, V, ROP_AND));
- }
-
- PUSH_MTHD(push, NV902D, SET_RENDER_SOLID_PRIM_COLOR, colour);
-
- PUSH_MTHD(push, NV902D, RENDER_SOLID_PRIM_POINT_SET_X(0), rect->dx,
- RENDER_SOLID_PRIM_POINT_Y(0), rect->dy,
- RENDER_SOLID_PRIM_POINT_SET_X(1), rect->dx + rect->width,
- RENDER_SOLID_PRIM_POINT_Y(1), rect->dy + rect->height);
-
- if (rect->rop != ROP_COPY) {
- PUSH_IMMD(push, NV902D, SET_OPERATION,
- NVDEF(NV902D, SET_OPERATION, V, SRCCOPY));
- }
-
- PUSH_KICK(push);
- return 0;
-}
-
-int
-nvc0_fbcon_copyarea(struct fb_info *info, const struct fb_copyarea *region)
-{
- struct nouveau_fbdev *nfbdev = info->par;
- struct nouveau_drm *drm = nouveau_drm(nfbdev->helper.dev);
- struct nouveau_channel *chan = drm->channel;
- struct nvif_push *push = chan->chan.push;
- int ret;
-
- ret = PUSH_WAIT(push, 11);
- if (ret)
- return ret;
-
- PUSH_IMMD(push, NV902D, WAIT_FOR_IDLE, 0);
-
- PUSH_MTHD(push, NV902D, SET_PIXELS_FROM_MEMORY_DST_X0, region->dx,
- SET_PIXELS_FROM_MEMORY_DST_Y0, region->dy,
- SET_PIXELS_FROM_MEMORY_DST_WIDTH, region->width,
- SET_PIXELS_FROM_MEMORY_DST_HEIGHT, region->height);
-
- PUSH_MTHD(push, NV902D, SET_PIXELS_FROM_MEMORY_SRC_X0_FRAC, 0,
- SET_PIXELS_FROM_MEMORY_SRC_X0_INT, region->sx,
- SET_PIXELS_FROM_MEMORY_SRC_Y0_FRAC, 0,
- PIXELS_FROM_MEMORY_SRC_Y0_INT, region->sy);
- PUSH_KICK(push);
- return 0;
-}
-
-int
-nvc0_fbcon_imageblit(struct fb_info *info, const struct fb_image *image)
-{
- struct nouveau_fbdev *nfbdev = info->par;
- struct nouveau_drm *drm = nouveau_drm(nfbdev->helper.dev);
- struct nouveau_channel *chan = drm->channel;
- struct nvif_push *push = chan->chan.push;
- uint32_t dwords, *data = (uint32_t *)image->data;
- uint32_t mask = ~(~0 >> (32 - info->var.bits_per_pixel));
- uint32_t *palette = info->pseudo_palette, bg, fg;
- int ret;
-
- if (image->depth != 1)
- return -ENODEV;
-
- if (info->fix.visual == FB_VISUAL_TRUECOLOR ||
- info->fix.visual == FB_VISUAL_DIRECTCOLOR) {
- bg = palette[image->bg_color] | mask;
- fg = palette[image->fg_color] | mask;
- } else {
- bg = image->bg_color;
- fg = image->fg_color;
- }
-
- ret = PUSH_WAIT(push, 11);
- if (ret)
- return ret;
-
- PUSH_MTHD(push, NV902D, SET_PIXELS_FROM_CPU_COLOR0, bg,
- SET_PIXELS_FROM_CPU_COLOR1, fg);
-
- PUSH_MTHD(push, NV902D, SET_PIXELS_FROM_CPU_SRC_WIDTH, image->width,
- SET_PIXELS_FROM_CPU_SRC_HEIGHT, image->height);
-
- PUSH_MTHD(push, NV902D, SET_PIXELS_FROM_CPU_DST_X0_FRAC, 0,
- SET_PIXELS_FROM_CPU_DST_X0_INT, image->dx,
- SET_PIXELS_FROM_CPU_DST_Y0_FRAC, 0,
- SET_PIXELS_FROM_CPU_DST_Y0_INT, image->dy);
-
- dwords = ALIGN(ALIGN(image->width, 8) * image->height, 32) >> 5;
- while (dwords) {
- int count = dwords > 2047 ? 2047 : dwords;
-
- ret = PUSH_WAIT(push, count + 1);
- if (ret)
- return ret;
-
- dwords -= count;
-
- PUSH_NINC(push, NV902D, PIXELS_FROM_CPU_DATA, data, count);
- data += count;
- }
-
- PUSH_KICK(push);
- return 0;
-}
-
-int
-nvc0_fbcon_accel_init(struct fb_info *info)
-{
- struct nouveau_fbdev *nfbdev = info->par;
- struct drm_device *dev = nfbdev->helper.dev;
- struct nouveau_drm *drm = nouveau_drm(dev);
- struct nouveau_channel *chan = drm->channel;
- struct nvif_push *push = chan->chan.push;
- int ret, format;
-
- ret = nvif_object_ctor(&chan->user, "fbconTwoD", 0x902d, 0x902d,
- NULL, 0, &nfbdev->twod);
- if (ret)
- return ret;
-
- switch (info->var.bits_per_pixel) {
- case 8:
- format = NV902D_SET_DST_FORMAT_V_Y8;
- break;
- case 15:
- format = NV902D_SET_DST_FORMAT_V_X1R5G5B5;
- break;
- case 16:
- format = NV902D_SET_DST_FORMAT_V_R5G6B5;
- break;
- case 32:
- switch (info->var.transp.length) {
- case 0: /* depth 24 */
- case 8: /* depth 32, just use 24.. */
- format = NV902D_SET_DST_FORMAT_V_X8R8G8B8;
- break;
- case 2: /* depth 30 */
- format = NV902D_SET_DST_FORMAT_V_A2B10G10R10;
- break;
- default:
- return -EINVAL;
- }
- break;
- default:
- return -EINVAL;
- }
-
- ret = PUSH_WAIT(push, 52);
- if (ret) {
- WARN_ON(1);
- nouveau_fbcon_gpu_lockup(info);
- return ret;
- }
-
- PUSH_MTHD(push, NV902D, SET_OBJECT, nfbdev->twod.handle);
-
- PUSH_MTHD(push, NV902D, SET_DST_FORMAT,
- NVVAL(NV902D, SET_DST_FORMAT, V, format),
-
- SET_DST_MEMORY_LAYOUT,
- NVDEF(NV902D, SET_DST_MEMORY_LAYOUT, V, PITCH));
-
- PUSH_MTHD(push, NV902D, SET_DST_PITCH, info->fix.line_length,
- SET_DST_WIDTH, info->var.xres_virtual,
- SET_DST_HEIGHT, info->var.yres_virtual,
-
- SET_DST_OFFSET_UPPER,
- NVVAL(NV902D, SET_DST_OFFSET_UPPER, V, upper_32_bits(nfbdev->vma->addr)),
-
- SET_DST_OFFSET_LOWER,
- NVVAL(NV902D, SET_DST_OFFSET_LOWER, V, lower_32_bits(nfbdev->vma->addr)));
-
- PUSH_MTHD(push, NV902D, SET_SRC_FORMAT,
- NVVAL(NV902D, SET_SRC_FORMAT, V, format),
-
- SET_SRC_MEMORY_LAYOUT,
- NVDEF(NV902D, SET_SRC_MEMORY_LAYOUT, V, PITCH));
-
- PUSH_MTHD(push, NV902D, SET_SRC_PITCH, info->fix.line_length,
- SET_SRC_WIDTH, info->var.xres_virtual,
- SET_SRC_HEIGHT, info->var.yres_virtual,
-
- SET_SRC_OFFSET_UPPER,
- NVVAL(NV902D, SET_SRC_OFFSET_UPPER, V, upper_32_bits(nfbdev->vma->addr)),
-
- SET_SRC_OFFSET_LOWER,
- NVVAL(NV902D, SET_SRC_OFFSET_LOWER, V, lower_32_bits(nfbdev->vma->addr)));
-
- PUSH_IMMD(push, NV902D, SET_CLIP_ENABLE,
- NVDEF(NV902D, SET_CLIP_ENABLE, V, FALSE));
-
- PUSH_IMMD(push, NV902D, SET_ROP,
- NVVAL(NV902D, SET_ROP, V, 0x55));
-
- PUSH_IMMD(push, NV902D, SET_OPERATION,
- NVDEF(NV902D, SET_OPERATION, V, SRCCOPY));
-
- PUSH_MTHD(push, NV902D, SET_MONOCHROME_PATTERN_COLOR_FORMAT,
- NVDEF(NV902D, SET_MONOCHROME_PATTERN_COLOR_FORMAT, V, A8R8G8B8),
-
- SET_MONOCHROME_PATTERN_FORMAT,
- NVDEF(NV902D, SET_MONOCHROME_PATTERN_FORMAT, V, LE_M1));
-
- PUSH_MTHD(push, NV902D, RENDER_SOLID_PRIM_MODE,
- NVDEF(NV902D, RENDER_SOLID_PRIM_MODE, V, RECTS),
-
- SET_RENDER_SOLID_PRIM_COLOR_FORMAT,
- NVVAL(NV902D, SET_RENDER_SOLID_PRIM_COLOR_FORMAT, V, format));
-
- PUSH_MTHD(push, NV902D, SET_PIXELS_FROM_CPU_DATA_TYPE,
- NVDEF(NV902D, SET_PIXELS_FROM_CPU_DATA_TYPE, V, INDEX),
-
- SET_PIXELS_FROM_CPU_COLOR_FORMAT,
- NVVAL(NV902D, SET_PIXELS_FROM_CPU_COLOR_FORMAT, V, format),
-
- SET_PIXELS_FROM_CPU_INDEX_FORMAT,
- NVDEF(NV902D, SET_PIXELS_FROM_CPU_INDEX_FORMAT, V, I1),
-
- SET_PIXELS_FROM_CPU_MONO_FORMAT,
- NVDEF(NV902D, SET_PIXELS_FROM_CPU_MONO_FORMAT, V, CGA6_M1),
-
- SET_PIXELS_FROM_CPU_WRAP,
- NVDEF(NV902D, SET_PIXELS_FROM_CPU_WRAP, V, WRAP_BYTE));
-
- PUSH_IMMD(push, NV902D, SET_PIXELS_FROM_CPU_MONO_OPACITY,
- NVDEF(NV902D, SET_PIXELS_FROM_CPU_MONO_OPACITY, V, OPAQUE));
-
- PUSH_MTHD(push, NV902D, SET_PIXELS_FROM_CPU_DX_DU_FRAC, 0,
- SET_PIXELS_FROM_CPU_DX_DU_INT, 1,
- SET_PIXELS_FROM_CPU_DY_DV_FRAC, 0,
- SET_PIXELS_FROM_CPU_DY_DV_INT, 1);
-
- PUSH_IMMD(push, NV902D, SET_PIXELS_FROM_MEMORY_SAFE_OVERLAP,
- NVDEF(NV902D, SET_PIXELS_FROM_MEMORY_SAFE_OVERLAP, V, TRUE));
-
- PUSH_MTHD(push, NV902D, SET_PIXELS_FROM_MEMORY_DU_DX_FRAC, 0,
- SET_PIXELS_FROM_MEMORY_DU_DX_INT, 1,
- SET_PIXELS_FROM_MEMORY_DV_DY_FRAC, 0,
- SET_PIXELS_FROM_MEMORY_DV_DY_INT, 1);
- PUSH_KICK(push);
- return 0;
-}
-
diff --git a/drivers/gpu/drm/nouveau/nvif/Kbuild b/drivers/gpu/drm/nouveau/nvif/Kbuild
index 6abc4bc42e35..b7963a39dd91 100644
--- a/drivers/gpu/drm/nouveau/nvif/Kbuild
+++ b/drivers/gpu/drm/nouveau/nvif/Kbuild
@@ -5,10 +5,11 @@ nvif-y += nvif/conn.o
nvif-y += nvif/device.o
nvif-y += nvif/disp.o
nvif-y += nvif/driver.o
+nvif-y += nvif/event.o
nvif-y += nvif/fifo.o
+nvif-y += nvif/head.o
nvif-y += nvif/mem.o
nvif-y += nvif/mmu.o
-nvif-y += nvif/notify.o
nvif-y += nvif/outp.o
nvif-y += nvif/timer.o
nvif-y += nvif/vmm.o
diff --git a/drivers/gpu/drm/nouveau/nvif/conn.c b/drivers/gpu/drm/nouveau/nvif/conn.c
index 4ce935d58c90..a3cf91aeae2d 100644
--- a/drivers/gpu/drm/nouveau/nvif/conn.c
+++ b/drivers/gpu/drm/nouveau/nvif/conn.c
@@ -27,6 +27,25 @@
#include <nvif/if0011.h>
int
+nvif_conn_event_ctor(struct nvif_conn *conn, const char *name, nvif_event_func func, u8 types,
+ struct nvif_event *event)
+{
+ struct {
+ struct nvif_event_v0 base;
+ struct nvif_conn_event_v0 conn;
+ } args;
+ int ret;
+
+ args.conn.version = 0;
+ args.conn.types = types;
+
+ ret = nvif_event_ctor_(&conn->object, name ?: "nvifConnHpd", nvif_conn_id(conn),
+ func, true, &args.base, sizeof(args), false, event);
+ NVIF_DEBUG(&conn->object, "[NEW EVENT:HPD types:%02x]", types);
+ return ret;
+}
+
+int
nvif_conn_hpd_status(struct nvif_conn *conn)
{
struct nvif_conn_hpd_status_v0 args;
diff --git a/drivers/gpu/drm/nouveau/nvif/disp.c b/drivers/gpu/drm/nouveau/nvif/disp.c
index 926b0c04b1e8..09915f2715af 100644
--- a/drivers/gpu/drm/nouveau/nvif/disp.c
+++ b/drivers/gpu/drm/nouveau/nvif/disp.c
@@ -72,9 +72,10 @@ nvif_disp_ctor(struct nvif_device *device, const char *name, s32 oclass, struct
if (ret)
return ret;
- NVIF_DEBUG(&disp->object, "[NEW] conn_mask:%08x outp_mask:%08x",
- args.conn_mask, args.outp_mask);
+ NVIF_DEBUG(&disp->object, "[NEW] conn_mask:%08x outp_mask:%08x head_mask:%08x",
+ args.conn_mask, args.outp_mask, args.head_mask);
disp->conn_mask = args.conn_mask;
disp->outp_mask = args.outp_mask;
+ disp->head_mask = args.head_mask;
return 0;
}
diff --git a/drivers/gpu/drm/nouveau/nvif/event.c b/drivers/gpu/drm/nouveau/nvif/event.c
new file mode 100644
index 000000000000..61ff4d6eba9f
--- /dev/null
+++ b/drivers/gpu/drm/nouveau/nvif/event.c
@@ -0,0 +1,81 @@
+/*
+ * Copyright 2021 Red Hat Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ */
+#include <nvif/event.h>
+#include <nvif/printf.h>
+
+#include <nvif/class.h>
+#include <nvif/if000e.h>
+
+int
+nvif_event_block(struct nvif_event *event)
+{
+ if (nvif_event_constructed(event)) {
+ int ret = nvif_mthd(&event->object, NVIF_EVENT_V0_BLOCK, NULL, 0);
+ NVIF_ERRON(ret, &event->object, "[BLOCK]");
+ return ret;
+ }
+ return 0;
+}
+
+int
+nvif_event_allow(struct nvif_event *event)
+{
+ if (nvif_event_constructed(event)) {
+ int ret = nvif_mthd(&event->object, NVIF_EVENT_V0_ALLOW, NULL, 0);
+ NVIF_ERRON(ret, &event->object, "[ALLOW]");
+ return ret;
+ }
+ return 0;
+}
+
+void
+nvif_event_dtor(struct nvif_event *event)
+{
+ nvif_object_dtor(&event->object);
+}
+
+int
+nvif_event_ctor_(struct nvif_object *parent, const char *name, u32 handle, nvif_event_func func,
+ bool wait, struct nvif_event_v0 *args, u32 argc, bool warn,
+ struct nvif_event *event)
+{
+ struct nvif_event_v0 _args;
+ int ret;
+
+ if (!args) {
+ args = &_args;
+ argc = sizeof(_args);
+ }
+
+ args->version = 0;
+ args->wait = wait;
+
+ ret = nvif_object_ctor(parent, name ?: "nvifEvent", handle,
+ NVIF_CLASS_EVENT, args, argc, &event->object);
+ NVIF_ERRON(ret && warn, parent, "[NEW EVENT wait:%d size:%zd]",
+ args->wait, argc - sizeof(*args));
+ if (ret)
+ return ret;
+
+ event->func = func;
+ return 0;
+}
diff --git a/drivers/gpu/drm/nouveau/nvif/head.c b/drivers/gpu/drm/nouveau/nvif/head.c
new file mode 100644
index 000000000000..f00e01d232db
--- /dev/null
+++ b/drivers/gpu/drm/nouveau/nvif/head.c
@@ -0,0 +1,58 @@
+/*
+ * Copyright 2021 Red Hat Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ */
+#include <nvif/head.h>
+#include <nvif/disp.h>
+#include <nvif/printf.h>
+
+#include <nvif/class.h>
+#include <nvif/if0013.h>
+
+int
+nvif_head_vblank_event_ctor(struct nvif_head *head, const char *name, nvif_event_func func,
+ bool wait, struct nvif_event *event)
+{
+ int ret = nvif_event_ctor(&head->object, name ?: "nvifHeadVBlank", nvif_head_id(head),
+ func, wait, NULL, 0, event);
+ NVIF_ERRON(ret, &head->object, "[NEW EVENT:VBLANK]");
+ return ret;
+}
+
+void
+nvif_head_dtor(struct nvif_head *head)
+{
+ nvif_object_dtor(&head->object);
+}
+
+int
+nvif_head_ctor(struct nvif_disp *disp, const char *name, int id, struct nvif_head *head)
+{
+ struct nvif_head_v0 args;
+ int ret;
+
+ args.version = 0;
+ args.id = id;
+
+ ret = nvif_object_ctor(&disp->object, name ? name : "nvifHead", id, NVIF_CLASS_HEAD,
+ &args, sizeof(args), &head->object);
+ NVIF_ERRON(ret, &disp->object, "[NEW head id:%d]", args.id);
+ return ret;
+}
diff --git a/drivers/gpu/drm/nouveau/nvif/notify.c b/drivers/gpu/drm/nouveau/nvif/notify.c
deleted file mode 100644
index 143c8dc6889e..000000000000
--- a/drivers/gpu/drm/nouveau/nvif/notify.c
+++ /dev/null
@@ -1,210 +0,0 @@
-/*
- * Copyright 2014 Red Hat Inc.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice shall be included in
- * all copies or substantial portions of the Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
- * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
- * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
- * OTHER DEALINGS IN THE SOFTWARE.
- *
- * Authors: Ben Skeggs <bskeggs@redhat.com>
- */
-
-#include <nvif/client.h>
-#include <nvif/driver.h>
-#include <nvif/notify.h>
-#include <nvif/object.h>
-#include <nvif/ioctl.h>
-#include <nvif/event.h>
-
-static inline int
-nvif_notify_put_(struct nvif_notify *notify)
-{
- struct nvif_object *object = notify->object;
- struct {
- struct nvif_ioctl_v0 ioctl;
- struct nvif_ioctl_ntfy_put_v0 ntfy;
- } args = {
- .ioctl.type = NVIF_IOCTL_V0_NTFY_PUT,
- .ntfy.index = notify->index,
- };
-
- if (atomic_inc_return(&notify->putcnt) != 1)
- return 0;
-
- return nvif_object_ioctl(object, &args, sizeof(args), NULL);
-}
-
-int
-nvif_notify_put(struct nvif_notify *notify)
-{
- if (likely(notify->object) &&
- test_and_clear_bit(NVIF_NOTIFY_USER, &notify->flags)) {
- int ret = nvif_notify_put_(notify);
- if (test_bit(NVIF_NOTIFY_WORK, &notify->flags))
- flush_work(&notify->work);
- return ret;
- }
- return 0;
-}
-
-static inline int
-nvif_notify_get_(struct nvif_notify *notify)
-{
- struct nvif_object *object = notify->object;
- struct {
- struct nvif_ioctl_v0 ioctl;
- struct nvif_ioctl_ntfy_get_v0 ntfy;
- } args = {
- .ioctl.type = NVIF_IOCTL_V0_NTFY_GET,
- .ntfy.index = notify->index,
- };
-
- if (atomic_dec_return(&notify->putcnt) != 0)
- return 0;
-
- return nvif_object_ioctl(object, &args, sizeof(args), NULL);
-}
-
-int
-nvif_notify_get(struct nvif_notify *notify)
-{
- if (likely(notify->object) &&
- !test_and_set_bit(NVIF_NOTIFY_USER, &notify->flags))
- return nvif_notify_get_(notify);
- return 0;
-}
-
-static inline int
-nvif_notify_func(struct nvif_notify *notify, bool keep)
-{
- int ret = notify->func(notify);
- if (ret == NVIF_NOTIFY_KEEP ||
- !test_and_clear_bit(NVIF_NOTIFY_USER, &notify->flags)) {
- if (!keep)
- atomic_dec(&notify->putcnt);
- else
- nvif_notify_get_(notify);
- }
- return ret;
-}
-
-static void
-nvif_notify_work(struct work_struct *work)
-{
- struct nvif_notify *notify = container_of(work, typeof(*notify), work);
- nvif_notify_func(notify, true);
-}
-
-int
-nvif_notify(const void *header, u32 length, const void *data, u32 size)
-{
- struct nvif_notify *notify = NULL;
- const union {
- struct nvif_notify_rep_v0 v0;
- } *args = header;
- int ret = NVIF_NOTIFY_DROP;
-
- if (length == sizeof(args->v0) && args->v0.version == 0) {
- if (WARN_ON(args->v0.route))
- return NVIF_NOTIFY_DROP;
- notify = (void *)(unsigned long)args->v0.token;
- }
-
- if (!WARN_ON(notify == NULL)) {
- struct nvif_client *client = notify->object->client;
- if (!WARN_ON(notify->size != size)) {
- atomic_inc(&notify->putcnt);
- if (test_bit(NVIF_NOTIFY_WORK, &notify->flags)) {
- memcpy((void *)notify->data, data, size);
- schedule_work(&notify->work);
- return NVIF_NOTIFY_DROP;
- }
- notify->data = data;
- ret = nvif_notify_func(notify, client->driver->keep);
- notify->data = NULL;
- }
- }
-
- return ret;
-}
-
-int
-nvif_notify_dtor(struct nvif_notify *notify)
-{
- struct nvif_object *object = notify->object;
- struct {
- struct nvif_ioctl_v0 ioctl;
- struct nvif_ioctl_ntfy_del_v0 ntfy;
- } args = {
- .ioctl.type = NVIF_IOCTL_V0_NTFY_DEL,
- .ntfy.index = notify->index,
- };
- int ret = nvif_notify_put(notify);
- if (ret >= 0 && object) {
- ret = nvif_object_ioctl(object, &args, sizeof(args), NULL);
- notify->object = NULL;
- kfree((void *)notify->data);
- }
- return ret;
-}
-
-int
-nvif_notify_ctor(struct nvif_object *object, const char *name,
- int (*func)(struct nvif_notify *), bool work, u8 event,
- void *data, u32 size, u32 reply, struct nvif_notify *notify)
-{
- struct {
- struct nvif_ioctl_v0 ioctl;
- struct nvif_ioctl_ntfy_new_v0 ntfy;
- struct nvif_notify_req_v0 req;
- } *args;
- int ret = -ENOMEM;
-
- notify->object = object;
- notify->name = name ? name : "nvifNotify";
- notify->flags = 0;
- atomic_set(&notify->putcnt, 1);
- notify->func = func;
- notify->data = NULL;
- notify->size = reply;
- if (work) {
- INIT_WORK(&notify->work, nvif_notify_work);
- set_bit(NVIF_NOTIFY_WORK, &notify->flags);
- notify->data = kmalloc(notify->size, GFP_KERNEL);
- if (!notify->data)
- goto done;
- }
-
- if (!(args = kmalloc(sizeof(*args) + size, GFP_KERNEL)))
- goto done;
- args->ioctl.version = 0;
- args->ioctl.type = NVIF_IOCTL_V0_NTFY_NEW;
- args->ntfy.version = 0;
- args->ntfy.event = event;
- args->req.version = 0;
- args->req.reply = notify->size;
- args->req.route = 0;
- args->req.token = (unsigned long)(void *)notify;
-
- memcpy(args->req.data, data, size);
- ret = nvif_object_ioctl(object, args, sizeof(*args) + size, NULL);
- notify->index = args->ntfy.index;
- kfree(args);
-done:
- if (ret)
- nvif_notify_dtor(notify);
- return ret;
-}
diff --git a/drivers/gpu/drm/nouveau/nvif/outp.c b/drivers/gpu/drm/nouveau/nvif/outp.c
index 7bfe91a8d6f9..c24bc5eae3ec 100644
--- a/drivers/gpu/drm/nouveau/nvif/outp.c
+++ b/drivers/gpu/drm/nouveau/nvif/outp.c
@@ -24,7 +24,177 @@
#include <nvif/printf.h>
#include <nvif/class.h>
-#include <nvif/if0012.h>
+
+int
+nvif_outp_dp_mst_vcpi(struct nvif_outp *outp, int head,
+ u8 start_slot, u8 num_slots, u16 pbn, u16 aligned_pbn)
+{
+ struct nvif_outp_dp_mst_vcpi_v0 args;
+ int ret;
+
+ args.version = 0;
+ args.head = head;
+ args.start_slot = start_slot;
+ args.num_slots = num_slots;
+ args.pbn = pbn;
+ args.aligned_pbn = aligned_pbn;
+
+ ret = nvif_object_mthd(&outp->object, NVIF_OUTP_V0_DP_MST_VCPI, &args, sizeof(args));
+ NVIF_ERRON(ret, &outp->object,
+ "[DP_MST_VCPI head:%d start_slot:%02x num_slots:%02x pbn:%04x aligned_pbn:%04x]",
+ args.head, args.start_slot, args.num_slots, args.pbn, args.aligned_pbn);
+ return ret;
+}
+
+int
+nvif_outp_dp_retrain(struct nvif_outp *outp)
+{
+ int ret = nvif_object_mthd(&outp->object, NVIF_OUTP_V0_DP_RETRAIN, NULL, 0);
+ NVIF_ERRON(ret, &outp->object, "[DP_RETRAIN]");
+ return ret;
+}
+
+int
+nvif_outp_dp_aux_pwr(struct nvif_outp *outp, bool enable)
+{
+ struct nvif_outp_dp_aux_pwr_v0 args;
+ int ret;
+
+ args.version = 0;
+ args.state = enable;
+
+ ret = nvif_object_mthd(&outp->object, NVIF_OUTP_V0_DP_AUX_PWR, &args, sizeof(args));
+ NVIF_ERRON(ret, &outp->object, "[DP_AUX_PWR state:%d]", args.state);
+ return ret;
+}
+
+int
+nvif_outp_hda_eld(struct nvif_outp *outp, int head, void *data, u32 size)
+{
+ struct {
+ struct nvif_outp_hda_eld_v0 mthd;
+ u8 data[128];
+ } args;
+ int ret;
+
+ if (WARN_ON(size > ARRAY_SIZE(args.data)))
+ return -EINVAL;
+
+ args.mthd.version = 0;
+ args.mthd.head = head;
+
+ memcpy(args.data, data, size);
+ ret = nvif_mthd(&outp->object, NVIF_OUTP_V0_HDA_ELD, &args, sizeof(args.mthd) + size);
+ NVIF_ERRON(ret, &outp->object, "[HDA_ELD head:%d size:%d]", head, size);
+ return ret;
+}
+
+int
+nvif_outp_infoframe(struct nvif_outp *outp, u8 type, struct nvif_outp_infoframe_v0 *args, u32 size)
+{
+ int ret;
+
+ args->type = type;
+
+ ret = nvif_mthd(&outp->object, NVIF_OUTP_V0_INFOFRAME, args, sizeof(*args) + size);
+ NVIF_ERRON(ret, &outp->object, "[INFOFRAME type:%d size:%d]", type, size);
+ return ret;
+}
+
+void
+nvif_outp_release(struct nvif_outp *outp)
+{
+ int ret = nvif_mthd(&outp->object, NVIF_OUTP_V0_RELEASE, NULL, 0);
+ NVIF_ERRON(ret, &outp->object, "[RELEASE]");
+ outp->or.id = -1;
+}
+
+static inline int
+nvif_outp_acquire(struct nvif_outp *outp, u8 proto, struct nvif_outp_acquire_v0 *args)
+{
+ int ret;
+
+ args->version = 0;
+ args->proto = proto;
+
+ ret = nvif_mthd(&outp->object, NVIF_OUTP_V0_ACQUIRE, args, sizeof(*args));
+ if (ret)
+ return ret;
+
+ outp->or.id = args->or;
+ outp->or.link = args->link;
+ return 0;
+}
+
+int
+nvif_outp_acquire_dp(struct nvif_outp *outp, u8 dpcd[DP_RECEIVER_CAP_SIZE],
+ int link_nr, int link_bw, bool hda, bool mst)
+{
+ struct nvif_outp_acquire_v0 args;
+ int ret;
+
+ args.dp.link_nr = link_nr;
+ args.dp.link_bw = link_bw;
+ args.dp.hda = hda;
+ args.dp.mst = mst;
+ memcpy(args.dp.dpcd, dpcd, sizeof(args.dp.dpcd));
+
+ ret = nvif_outp_acquire(outp, NVIF_OUTP_ACQUIRE_V0_DP, &args);
+ NVIF_ERRON(ret, &outp->object,
+ "[ACQUIRE proto:DP link_nr:%d link_bw:%02x hda:%d mst:%d] or:%d link:%d",
+ args.dp.link_nr, args.dp.link_bw, args.dp.hda, args.dp.mst, args.or, args.link);
+ return ret;
+}
+
+int
+nvif_outp_acquire_lvds(struct nvif_outp *outp, bool dual, bool bpc8)
+{
+ struct nvif_outp_acquire_v0 args;
+ int ret;
+
+ args.lvds.dual = dual;
+ args.lvds.bpc8 = bpc8;
+
+ ret = nvif_outp_acquire(outp, NVIF_OUTP_ACQUIRE_V0_LVDS, &args);
+ NVIF_ERRON(ret, &outp->object,
+ "[ACQUIRE proto:LVDS dual:%d 8bpc:%d] or:%d link:%d",
+ args.lvds.dual, args.lvds.bpc8, args.or, args.link);
+ return ret;
+}
+
+int
+nvif_outp_acquire_tmds(struct nvif_outp *outp, int head,
+ bool hdmi, u8 max_ac_packet, u8 rekey, u8 scdc, bool hda)
+{
+ struct nvif_outp_acquire_v0 args;
+ int ret;
+
+ args.tmds.head = head;
+ args.tmds.hdmi = hdmi;
+ args.tmds.hdmi_max_ac_packet = max_ac_packet;
+ args.tmds.hdmi_rekey = rekey;
+ args.tmds.hdmi_scdc = scdc;
+ args.tmds.hdmi_hda = hda;
+
+ ret = nvif_outp_acquire(outp, NVIF_OUTP_ACQUIRE_V0_TMDS, &args);
+ NVIF_ERRON(ret, &outp->object,
+ "[ACQUIRE proto:TMDS head:%d hdmi:%d max_ac_packet:%d rekey:%d scdc:%d hda:%d]"
+ " or:%d link:%d", args.tmds.head, args.tmds.hdmi, args.tmds.hdmi_max_ac_packet,
+ args.tmds.hdmi_rekey, args.tmds.hdmi_scdc, args.tmds.hdmi_hda,
+ args.or, args.link);
+ return ret;
+}
+
+int
+nvif_outp_acquire_rgb_crt(struct nvif_outp *outp)
+{
+ struct nvif_outp_acquire_v0 args;
+ int ret;
+
+ ret = nvif_outp_acquire(outp, NVIF_OUTP_ACQUIRE_V0_RGB_CRT, &args);
+ NVIF_ERRON(ret, &outp->object, "[ACQUIRE proto:RGB_CRT] or:%d", args.or);
+ return ret;
+}
int
nvif_outp_load_detect(struct nvif_outp *outp, u32 loadval)
@@ -58,5 +228,9 @@ nvif_outp_ctor(struct nvif_disp *disp, const char *name, int id, struct nvif_out
ret = nvif_object_ctor(&disp->object, name ?: "nvifOutp", id, NVIF_CLASS_OUTP,
&args, sizeof(args), &outp->object);
NVIF_ERRON(ret, &disp->object, "[NEW outp id:%d]", id);
- return ret;
+ if (ret)
+ return ret;
+
+ outp->or.id = -1;
+ return 0;
}
diff --git a/drivers/gpu/drm/nouveau/nvif/user.c b/drivers/gpu/drm/nouveau/nvif/user.c
index d89f5b67b304..b648a5e036af 100644
--- a/drivers/gpu/drm/nouveau/nvif/user.c
+++ b/drivers/gpu/drm/nouveau/nvif/user.c
@@ -41,7 +41,9 @@ nvif_user_ctor(struct nvif_device *device, const char *name)
int version;
const struct nvif_user_func *func;
} users[] = {
- { VOLTA_USERMODE_A, -1, &nvif_userc361 },
+ { AMPERE_USERMODE_A, -1, &nvif_userc361 },
+ { TURING_USERMODE_A, -1, &nvif_userc361 },
+ { VOLTA_USERMODE_A, -1, &nvif_userc361 },
{}
};
int cid, ret;
diff --git a/drivers/gpu/drm/nouveau/nvkm/core/Kbuild b/drivers/gpu/drm/nouveau/nvkm/core/Kbuild
index 2b471ab585b4..e40712023c73 100644
--- a/drivers/gpu/drm/nouveau/nvkm/core/Kbuild
+++ b/drivers/gpu/drm/nouveau/nvkm/core/Kbuild
@@ -5,12 +5,13 @@ nvkm-y += nvkm/core/enum.o
nvkm-y += nvkm/core/event.o
nvkm-y += nvkm/core/firmware.o
nvkm-y += nvkm/core/gpuobj.o
+nvkm-y += nvkm/core/intr.o
nvkm-y += nvkm/core/ioctl.o
nvkm-y += nvkm/core/memory.o
nvkm-y += nvkm/core/mm.o
-nvkm-y += nvkm/core/notify.o
nvkm-y += nvkm/core/object.o
nvkm-y += nvkm/core/oproxy.o
nvkm-y += nvkm/core/option.o
nvkm-y += nvkm/core/ramht.o
nvkm-y += nvkm/core/subdev.o
+nvkm-y += nvkm/core/uevent.o
diff --git a/drivers/gpu/drm/nouveau/nvkm/core/client.c b/drivers/gpu/drm/nouveau/nvkm/core/client.c
index 0c8c55c73b12..ebdeb8eb9e77 100644
--- a/drivers/gpu/drm/nouveau/nvkm/core/client.c
+++ b/drivers/gpu/drm/nouveau/nvkm/core/client.c
@@ -23,7 +23,6 @@
*/
#include <core/client.h>
#include <core/device.h>
-#include <core/notify.h>
#include <core/option.h>
#include <nvif/class.h>
@@ -44,7 +43,7 @@ nvkm_uclient_new(const struct nvkm_oclass *oclass, void *argv, u32 argc,
if (!(ret = nvif_unpack(ret, &argv, &argc, args->v0, 0, 0, false))){
args->v0.name[sizeof(args->v0.name) - 1] = 0;
ret = nvkm_client_new(args->v0.name, args->v0.device, NULL,
- NULL, oclass->client->ntfy, &client);
+ NULL, oclass->client->event, &client);
if (ret)
return ret;
} else
@@ -68,113 +67,6 @@ nvkm_uclient_sclass = {
.ctor = nvkm_uclient_new,
};
-struct nvkm_client_notify {
- struct nvkm_client *client;
- struct nvkm_notify n;
- u8 version;
- u8 size;
- union {
- struct nvif_notify_rep_v0 v0;
- } rep;
-};
-
-static int
-nvkm_client_notify(struct nvkm_notify *n)
-{
- struct nvkm_client_notify *notify = container_of(n, typeof(*notify), n);
- struct nvkm_client *client = notify->client;
- return client->ntfy(&notify->rep, notify->size, n->data, n->size);
-}
-
-int
-nvkm_client_notify_put(struct nvkm_client *client, int index)
-{
- if (index < ARRAY_SIZE(client->notify)) {
- if (client->notify[index]) {
- nvkm_notify_put(&client->notify[index]->n);
- return 0;
- }
- }
- return -ENOENT;
-}
-
-int
-nvkm_client_notify_get(struct nvkm_client *client, int index)
-{
- if (index < ARRAY_SIZE(client->notify)) {
- if (client->notify[index]) {
- nvkm_notify_get(&client->notify[index]->n);
- return 0;
- }
- }
- return -ENOENT;
-}
-
-int
-nvkm_client_notify_del(struct nvkm_client *client, int index)
-{
- if (index < ARRAY_SIZE(client->notify)) {
- if (client->notify[index]) {
- nvkm_notify_fini(&client->notify[index]->n);
- kfree(client->notify[index]);
- client->notify[index] = NULL;
- return 0;
- }
- }
- return -ENOENT;
-}
-
-int
-nvkm_client_notify_new(struct nvkm_object *object,
- struct nvkm_event *event, void *data, u32 size)
-{
- struct nvkm_client *client = object->client;
- struct nvkm_client_notify *notify;
- union {
- struct nvif_notify_req_v0 v0;
- } *req = data;
- u8 index, reply;
- int ret = -ENOSYS;
-
- for (index = 0; index < ARRAY_SIZE(client->notify); index++) {
- if (!client->notify[index])
- break;
- }
-
- if (index == ARRAY_SIZE(client->notify))
- return -ENOSPC;
-
- notify = kzalloc(sizeof(*notify), GFP_KERNEL);
- if (!notify)
- return -ENOMEM;
-
- nvif_ioctl(object, "notify new size %d\n", size);
- if (!(ret = nvif_unpack(ret, &data, &size, req->v0, 0, 0, true))) {
- nvif_ioctl(object, "notify new vers %d reply %d route %02x "
- "token %llx\n", req->v0.version,
- req->v0.reply, req->v0.route, req->v0.token);
- notify->version = req->v0.version;
- notify->size = sizeof(notify->rep.v0);
- notify->rep.v0.version = req->v0.version;
- notify->rep.v0.route = req->v0.route;
- notify->rep.v0.token = req->v0.token;
- reply = req->v0.reply;
- }
-
- if (ret == 0) {
- ret = nvkm_notify_init(object, event, nvkm_client_notify,
- false, data, size, reply, &notify->n);
- if (ret == 0) {
- client->notify[index] = notify;
- notify->client = client;
- return index;
- }
- }
-
- kfree(notify);
- return ret;
-}
-
static const struct nvkm_object_func nvkm_client;
struct nvkm_client *
nvkm_client_search(struct nvkm_client *client, u64 handle)
@@ -255,23 +147,13 @@ nvkm_client_child_get(struct nvkm_object *object, int index,
static int
nvkm_client_fini(struct nvkm_object *object, bool suspend)
{
- struct nvkm_client *client = nvkm_client(object);
- const char *name[2] = { "fini", "suspend" };
- int i;
- nvif_debug(object, "%s notify\n", name[suspend]);
- for (i = 0; i < ARRAY_SIZE(client->notify); i++)
- nvkm_client_notify_put(client, i);
return 0;
}
static void *
nvkm_client_dtor(struct nvkm_object *object)
{
- struct nvkm_client *client = nvkm_client(object);
- int i;
- for (i = 0; i < ARRAY_SIZE(client->notify); i++)
- nvkm_client_notify_del(client, i);
- return client;
+ return nvkm_client(object);
}
static const struct nvkm_object_func
@@ -283,10 +165,8 @@ nvkm_client = {
};
int
-nvkm_client_new(const char *name, u64 device, const char *cfg,
- const char *dbg,
- int (*ntfy)(const void *, u32, const void *, u32),
- struct nvkm_client **pclient)
+nvkm_client_new(const char *name, u64 device, const char *cfg, const char *dbg,
+ int (*event)(u64, void *, u32), struct nvkm_client **pclient)
{
struct nvkm_oclass oclass = { .base = nvkm_uclient_sclass };
struct nvkm_client *client;
@@ -300,7 +180,7 @@ nvkm_client_new(const char *name, u64 device, const char *cfg,
client->device = device;
client->debug = nvkm_dbgopt(dbg, "CLIENT");
client->objroot = RB_ROOT;
- client->ntfy = ntfy;
+ client->event = event;
INIT_LIST_HEAD(&client->umem);
spin_lock_init(&client->lock);
return 0;
diff --git a/drivers/gpu/drm/nouveau/nvkm/core/engine.c b/drivers/gpu/drm/nouveau/nvkm/core/engine.c
index e41a39ae1597..36a31e9eea22 100644
--- a/drivers/gpu/drm/nouveau/nvkm/core/engine.c
+++ b/drivers/gpu/drm/nouveau/nvkm/core/engine.c
@@ -35,16 +35,23 @@ nvkm_engine_chsw_load(struct nvkm_engine *engine)
return false;
}
+int
+nvkm_engine_reset(struct nvkm_engine *engine)
+{
+ if (engine->func->reset)
+ return engine->func->reset(engine);
+
+ nvkm_subdev_fini(&engine->subdev, false);
+ return nvkm_subdev_init(&engine->subdev);
+}
+
void
nvkm_engine_unref(struct nvkm_engine **pengine)
{
struct nvkm_engine *engine = *pengine;
+
if (engine) {
- if (refcount_dec_and_mutex_lock(&engine->use.refcount, &engine->use.mutex)) {
- nvkm_subdev_fini(&engine->subdev, false);
- engine->use.enabled = false;
- mutex_unlock(&engine->use.mutex);
- }
+ nvkm_subdev_unref(&engine->subdev);
*pengine = NULL;
}
}
@@ -53,21 +60,13 @@ struct nvkm_engine *
nvkm_engine_ref(struct nvkm_engine *engine)
{
int ret;
+
if (engine) {
- if (!refcount_inc_not_zero(&engine->use.refcount)) {
- mutex_lock(&engine->use.mutex);
- if (!refcount_inc_not_zero(&engine->use.refcount)) {
- engine->use.enabled = true;
- if ((ret = nvkm_subdev_init(&engine->subdev))) {
- engine->use.enabled = false;
- mutex_unlock(&engine->use.mutex);
- return ERR_PTR(ret);
- }
- refcount_set(&engine->use.refcount, 1);
- }
- mutex_unlock(&engine->use.mutex);
- }
+ ret = nvkm_subdev_ref(&engine->subdev);
+ if (ret)
+ return ERR_PTR(ret);
}
+
return engine;
}
@@ -91,14 +90,10 @@ static int
nvkm_engine_info(struct nvkm_subdev *subdev, u64 mthd, u64 *data)
{
struct nvkm_engine *engine = nvkm_engine(subdev);
- if (engine->func->info) {
- if (!IS_ERR((engine = nvkm_engine_ref(engine)))) {
- int ret = engine->func->info(engine, mthd, data);
- nvkm_engine_unref(&engine);
- return ret;
- }
- return PTR_ERR(engine);
- }
+
+ if (engine->func->info)
+ return engine->func->info(engine, mthd, data);
+
return -ENOSYS;
}
@@ -117,26 +112,6 @@ nvkm_engine_init(struct nvkm_subdev *subdev)
struct nvkm_engine *engine = nvkm_engine(subdev);
struct nvkm_fb *fb = subdev->device->fb;
int ret = 0, i;
- s64 time;
-
- if (!engine->use.enabled) {
- nvkm_trace(subdev, "init skipped, engine has no users\n");
- return ret;
- }
-
- if (engine->func->oneinit && !engine->subdev.oneinit) {
- nvkm_trace(subdev, "one-time init running...\n");
- time = ktime_to_us(ktime_get());
- ret = engine->func->oneinit(engine);
- if (ret) {
- nvkm_trace(subdev, "one-time init failed, %d\n", ret);
- return ret;
- }
-
- engine->subdev.oneinit = true;
- time = ktime_to_us(ktime_get()) - time;
- nvkm_trace(subdev, "one-time init completed in %lldus\n", time);
- }
if (engine->func->init)
ret = engine->func->init(engine);
@@ -147,6 +122,17 @@ nvkm_engine_init(struct nvkm_subdev *subdev)
}
static int
+nvkm_engine_oneinit(struct nvkm_subdev *subdev)
+{
+ struct nvkm_engine *engine = nvkm_engine(subdev);
+
+ if (engine->func->oneinit)
+ return engine->func->oneinit(engine);
+
+ return 0;
+}
+
+static int
nvkm_engine_preinit(struct nvkm_subdev *subdev)
{
struct nvkm_engine *engine = nvkm_engine(subdev);
@@ -161,7 +147,6 @@ nvkm_engine_dtor(struct nvkm_subdev *subdev)
struct nvkm_engine *engine = nvkm_engine(subdev);
if (engine->func->dtor)
return engine->func->dtor(engine);
- mutex_destroy(&engine->use.mutex);
return engine;
}
@@ -169,6 +154,7 @@ const struct nvkm_subdev_func
nvkm_engine = {
.dtor = nvkm_engine_dtor,
.preinit = nvkm_engine_preinit,
+ .oneinit = nvkm_engine_oneinit,
.init = nvkm_engine_init,
.fini = nvkm_engine_fini,
.info = nvkm_engine_info,
@@ -179,10 +165,9 @@ int
nvkm_engine_ctor(const struct nvkm_engine_func *func, struct nvkm_device *device,
enum nvkm_subdev_type type, int inst, bool enable, struct nvkm_engine *engine)
{
- nvkm_subdev_ctor(&nvkm_engine, device, type, inst, &engine->subdev);
engine->func = func;
- refcount_set(&engine->use.refcount, 0);
- mutex_init(&engine->use.mutex);
+ nvkm_subdev_ctor(&nvkm_engine, device, type, inst, &engine->subdev);
+ refcount_set(&engine->subdev.use.refcount, 0);
if (!nvkm_boolopt(device->cfgopt, engine->subdev.name, enable)) {
nvkm_debug(&engine->subdev, "disabled\n");
diff --git a/drivers/gpu/drm/nouveau/nvkm/core/event.c b/drivers/gpu/drm/nouveau/nvkm/core/event.c
index 006618d77aa4..a6c877135598 100644
--- a/drivers/gpu/drm/nouveau/nvkm/core/event.c
+++ b/drivers/gpu/drm/nouveau/nvkm/core/event.c
@@ -20,54 +20,171 @@
* OTHER DEALINGS IN THE SOFTWARE.
*/
#include <core/event.h>
-#include <core/notify.h>
+#include <core/subdev.h>
-void
+static void
nvkm_event_put(struct nvkm_event *event, u32 types, int index)
{
assert_spin_locked(&event->refs_lock);
+
+ nvkm_trace(event->subdev, "event: decr %08x on %d\n", types, index);
+
while (types) {
int type = __ffs(types); types &= ~(1 << type);
if (--event->refs[index * event->types_nr + type] == 0) {
+ nvkm_trace(event->subdev, "event: blocking %d on %d\n", type, index);
if (event->func->fini)
event->func->fini(event, 1 << type, index);
}
}
}
-void
+static void
nvkm_event_get(struct nvkm_event *event, u32 types, int index)
{
assert_spin_locked(&event->refs_lock);
+
+ nvkm_trace(event->subdev, "event: incr %08x on %d\n", types, index);
+
while (types) {
int type = __ffs(types); types &= ~(1 << type);
if (++event->refs[index * event->types_nr + type] == 1) {
+ nvkm_trace(event->subdev, "event: allowing %d on %d\n", type, index);
if (event->func->init)
event->func->init(event, 1 << type, index);
}
}
}
+static void
+nvkm_event_ntfy_state(struct nvkm_event_ntfy *ntfy)
+{
+ struct nvkm_event *event = ntfy->event;
+ unsigned long flags;
+
+ nvkm_trace(event->subdev, "event: ntfy state changed\n");
+ spin_lock_irqsave(&event->refs_lock, flags);
+
+ if (atomic_read(&ntfy->allowed) != ntfy->running) {
+ if (ntfy->running) {
+ nvkm_event_put(ntfy->event, ntfy->bits, ntfy->id);
+ ntfy->running = false;
+ } else {
+ nvkm_event_get(ntfy->event, ntfy->bits, ntfy->id);
+ ntfy->running = true;
+ }
+ }
+
+ spin_unlock_irqrestore(&event->refs_lock, flags);
+}
+
+static void
+nvkm_event_ntfy_remove(struct nvkm_event_ntfy *ntfy)
+{
+ spin_lock_irq(&ntfy->event->list_lock);
+ list_del_init(&ntfy->head);
+ spin_unlock_irq(&ntfy->event->list_lock);
+}
+
+static void
+nvkm_event_ntfy_insert(struct nvkm_event_ntfy *ntfy)
+{
+ spin_lock_irq(&ntfy->event->list_lock);
+ list_add_tail(&ntfy->head, &ntfy->event->ntfy);
+ spin_unlock_irq(&ntfy->event->list_lock);
+}
+
+static void
+nvkm_event_ntfy_block_(struct nvkm_event_ntfy *ntfy, bool wait)
+{
+ struct nvkm_subdev *subdev = ntfy->event->subdev;
+
+ nvkm_trace(subdev, "event: ntfy block %08x on %d wait:%d\n", ntfy->bits, ntfy->id, wait);
+
+ if (atomic_xchg(&ntfy->allowed, 0) == 1) {
+ nvkm_event_ntfy_state(ntfy);
+ if (wait)
+ nvkm_event_ntfy_remove(ntfy);
+ }
+}
+
void
-nvkm_event_send(struct nvkm_event *event, u32 types, int index,
- void *data, u32 size)
+nvkm_event_ntfy_block(struct nvkm_event_ntfy *ntfy)
{
- struct nvkm_notify *notify;
+ if (ntfy->event)
+ nvkm_event_ntfy_block_(ntfy, ntfy->wait);
+}
+
+void
+nvkm_event_ntfy_allow(struct nvkm_event_ntfy *ntfy)
+{
+ nvkm_trace(ntfy->event->subdev, "event: ntfy allow %08x on %d\n", ntfy->bits, ntfy->id);
+
+ if (atomic_xchg(&ntfy->allowed, 1) == 0) {
+ nvkm_event_ntfy_state(ntfy);
+ if (ntfy->wait)
+ nvkm_event_ntfy_insert(ntfy);
+ }
+}
+
+void
+nvkm_event_ntfy_del(struct nvkm_event_ntfy *ntfy)
+{
+ struct nvkm_event *event = ntfy->event;
+
+ if (!event)
+ return;
+
+ nvkm_trace(event->subdev, "event: ntfy del %08x on %d\n", ntfy->bits, ntfy->id);
+
+ nvkm_event_ntfy_block_(ntfy, false);
+ nvkm_event_ntfy_remove(ntfy);
+ ntfy->event = NULL;
+}
+
+void
+nvkm_event_ntfy_add(struct nvkm_event *event, int id, u32 bits, bool wait, nvkm_event_func func,
+ struct nvkm_event_ntfy *ntfy)
+{
+ nvkm_trace(event->subdev, "event: ntfy add %08x on %d wait:%d\n", id, bits, wait);
+
+ ntfy->event = event;
+ ntfy->id = id;
+ ntfy->bits = bits;
+ ntfy->wait = wait;
+ ntfy->func = func;
+ atomic_set(&ntfy->allowed, 0);
+ ntfy->running = false;
+ INIT_LIST_HEAD(&ntfy->head);
+ if (!ntfy->wait)
+ nvkm_event_ntfy_insert(ntfy);
+}
+
+bool
+nvkm_event_ntfy_valid(struct nvkm_event *event, int id, u32 bits)
+{
+ return true;
+}
+
+void
+nvkm_event_ntfy(struct nvkm_event *event, int id, u32 bits)
+{
+ struct nvkm_event_ntfy *ntfy, *ntmp;
unsigned long flags;
- if (!event->refs || WARN_ON(index >= event->index_nr))
+ if (!event->refs || WARN_ON(id >= event->index_nr))
return;
+ nvkm_trace(event->subdev, "event: ntfy %08x on %d\n", bits, id);
spin_lock_irqsave(&event->list_lock, flags);
- list_for_each_entry(notify, &event->list, head) {
- if (notify->index == index && (notify->types & types)) {
- if (event->func->send) {
- event->func->send(data, size, notify);
- continue;
- }
- nvkm_notify_send(notify, data, size);
+
+ list_for_each_entry_safe(ntfy, ntmp, &event->ntfy, head) {
+ if (ntfy->id == id && ntfy->bits & bits) {
+ if (atomic_read(&ntfy->allowed))
+ ntfy->func(ntfy, ntfy->bits & bits);
}
}
+
spin_unlock_irqrestore(&event->list_lock, flags);
}
@@ -81,20 +198,17 @@ nvkm_event_fini(struct nvkm_event *event)
}
int
-nvkm_event_init(const struct nvkm_event_func *func, int types_nr, int index_nr,
- struct nvkm_event *event)
+__nvkm_event_init(const struct nvkm_event_func *func, struct nvkm_subdev *subdev,
+ int types_nr, int index_nr, struct nvkm_event *event)
{
- event->refs = kzalloc(array3_size(index_nr, types_nr,
- sizeof(*event->refs)),
- GFP_KERNEL);
+ event->refs = kzalloc(array3_size(index_nr, types_nr, sizeof(*event->refs)), GFP_KERNEL);
if (!event->refs)
return -ENOMEM;
event->func = func;
+ event->subdev = subdev;
event->types_nr = types_nr;
event->index_nr = index_nr;
- spin_lock_init(&event->refs_lock);
- spin_lock_init(&event->list_lock);
- INIT_LIST_HEAD(&event->list);
+ INIT_LIST_HEAD(&event->ntfy);
return 0;
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/core/firmware.c b/drivers/gpu/drm/nouveau/nvkm/core/firmware.c
index ca1f8463cff5..91fb494d4009 100644
--- a/drivers/gpu/drm/nouveau/nvkm/core/firmware.c
+++ b/drivers/gpu/drm/nouveau/nvkm/core/firmware.c
@@ -22,6 +22,9 @@
#include <core/device.h>
#include <core/firmware.h>
+#include <subdev/fb.h>
+#include <subdev/mmu.h>
+
int
nvkm_firmware_load_name(const struct nvkm_subdev *subdev, const char *base,
const char *name, int ver, const struct firmware **pfw)
@@ -107,3 +110,130 @@ nvkm_firmware_put(const struct firmware *fw)
{
release_firmware(fw);
}
+
+#define nvkm_firmware_mem(p) container_of((p), struct nvkm_firmware, mem.memory)
+
+static int
+nvkm_firmware_mem_map(struct nvkm_memory *memory, u64 offset, struct nvkm_vmm *vmm,
+ struct nvkm_vma *vma, void *argv, u32 argc)
+{
+ struct nvkm_firmware *fw = nvkm_firmware_mem(memory);
+ struct nvkm_vmm_map map = {
+ .memory = &fw->mem.memory,
+ .offset = offset,
+ .sgl = &fw->mem.sgl,
+ };
+
+ if (WARN_ON(fw->func->type != NVKM_FIRMWARE_IMG_DMA))
+ return -ENOSYS;
+
+ return nvkm_vmm_map(vmm, vma, argv, argc, &map);
+}
+
+static u64
+nvkm_firmware_mem_size(struct nvkm_memory *memory)
+{
+ return sg_dma_len(&nvkm_firmware_mem(memory)->mem.sgl);
+}
+
+static u64
+nvkm_firmware_mem_addr(struct nvkm_memory *memory)
+{
+ return nvkm_firmware_mem(memory)->phys;
+}
+
+static u8
+nvkm_firmware_mem_page(struct nvkm_memory *memory)
+{
+ return PAGE_SHIFT;
+}
+
+static enum nvkm_memory_target
+nvkm_firmware_mem_target(struct nvkm_memory *memory)
+{
+ if (nvkm_firmware_mem(memory)->device->func->tegra)
+ return NVKM_MEM_TARGET_NCOH;
+
+ return NVKM_MEM_TARGET_HOST;
+}
+
+static void *
+nvkm_firmware_mem_dtor(struct nvkm_memory *memory)
+{
+ return NULL;
+}
+
+static const struct nvkm_memory_func
+nvkm_firmware_mem = {
+ .dtor = nvkm_firmware_mem_dtor,
+ .target = nvkm_firmware_mem_target,
+ .page = nvkm_firmware_mem_page,
+ .addr = nvkm_firmware_mem_addr,
+ .size = nvkm_firmware_mem_size,
+ .map = nvkm_firmware_mem_map,
+};
+
+void
+nvkm_firmware_dtor(struct nvkm_firmware *fw)
+{
+ struct nvkm_memory *memory = &fw->mem.memory;
+
+ if (!fw->img)
+ return;
+
+ switch (fw->func->type) {
+ case NVKM_FIRMWARE_IMG_RAM:
+ kfree(fw->img);
+ break;
+ case NVKM_FIRMWARE_IMG_DMA:
+ nvkm_memory_unref(&memory);
+ dma_free_coherent(fw->device->dev, sg_dma_len(&fw->mem.sgl), fw->img, fw->phys);
+ break;
+ default:
+ WARN_ON(1);
+ break;
+ }
+
+ fw->img = NULL;
+}
+
+int
+nvkm_firmware_ctor(const struct nvkm_firmware_func *func, const char *name,
+ struct nvkm_device *device, const void *src, int len, struct nvkm_firmware *fw)
+{
+ fw->func = func;
+ fw->name = name;
+ fw->device = device;
+ fw->len = len;
+
+ switch (fw->func->type) {
+ case NVKM_FIRMWARE_IMG_RAM:
+ fw->img = kmemdup(src, fw->len, GFP_KERNEL);
+ break;
+ case NVKM_FIRMWARE_IMG_DMA: {
+ dma_addr_t addr;
+
+ len = ALIGN(fw->len, PAGE_SIZE);
+
+ fw->img = dma_alloc_coherent(fw->device->dev, len, &addr, GFP_KERNEL);
+ if (fw->img) {
+ memcpy(fw->img, src, fw->len);
+ fw->phys = addr;
+ }
+
+ sg_init_one(&fw->mem.sgl, fw->img, len);
+ sg_dma_address(&fw->mem.sgl) = fw->phys;
+ sg_dma_len(&fw->mem.sgl) = len;
+ }
+ break;
+ default:
+ WARN_ON(1);
+ return -EINVAL;
+ }
+
+ if (!fw->img)
+ return -ENOMEM;
+
+ nvkm_memory_ctor(&nvkm_firmware_mem, &fw->mem.memory);
+ return 0;
+}
diff --git a/drivers/gpu/drm/nouveau/nvkm/core/intr.c b/drivers/gpu/drm/nouveau/nvkm/core/intr.c
new file mode 100644
index 000000000000..e20b7ca218c3
--- /dev/null
+++ b/drivers/gpu/drm/nouveau/nvkm/core/intr.c
@@ -0,0 +1,442 @@
+/*
+ * Copyright 2021 Red Hat Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ */
+#include <core/intr.h>
+#include <core/device.h>
+#include <core/subdev.h>
+#include <subdev/pci.h>
+#include <subdev/top.h>
+
+static int
+nvkm_intr_xlat(struct nvkm_subdev *subdev, struct nvkm_intr *intr,
+ enum nvkm_intr_type type, int *leaf, u32 *mask)
+{
+ struct nvkm_device *device = subdev->device;
+
+ if (type < NVKM_INTR_VECTOR_0) {
+ if (type == NVKM_INTR_SUBDEV) {
+ const struct nvkm_intr_data *data = intr->data;
+ struct nvkm_top_device *tdev;
+
+ while (data && data->mask) {
+ if (data->type == NVKM_SUBDEV_TOP) {
+ list_for_each_entry(tdev, &device->top->device, head) {
+ if (tdev->intr >= 0 &&
+ tdev->type == subdev->type &&
+ tdev->inst == subdev->inst) {
+ if (data->mask & BIT(tdev->intr)) {
+ *leaf = data->leaf;
+ *mask = BIT(tdev->intr);
+ return 0;
+ }
+ }
+ }
+ } else
+ if (data->type == subdev->type && data->inst == subdev->inst) {
+ *leaf = data->leaf;
+ *mask = data->mask;
+ return 0;
+ }
+
+ data++;
+ }
+ } else {
+ return -ENOSYS;
+ }
+ } else {
+ if (type < intr->leaves * sizeof(*intr->stat) * 8) {
+ *leaf = type / 32;
+ *mask = BIT(type % 32);
+ return 0;
+ }
+ }
+
+ return -EINVAL;
+}
+
+static struct nvkm_intr *
+nvkm_intr_find(struct nvkm_subdev *subdev, enum nvkm_intr_type type, int *leaf, u32 *mask)
+{
+ struct nvkm_intr *intr;
+ int ret;
+
+ list_for_each_entry(intr, &subdev->device->intr.intr, head) {
+ ret = nvkm_intr_xlat(subdev, intr, type, leaf, mask);
+ if (ret == 0)
+ return intr;
+ }
+
+ return NULL;
+}
+
+static void
+nvkm_intr_allow_locked(struct nvkm_intr *intr, int leaf, u32 mask)
+{
+ intr->mask[leaf] |= mask;
+ if (intr->func->allow) {
+ if (intr->func->reset)
+ intr->func->reset(intr, leaf, mask);
+ intr->func->allow(intr, leaf, mask);
+ }
+}
+
+void
+nvkm_intr_allow(struct nvkm_subdev *subdev, enum nvkm_intr_type type)
+{
+ struct nvkm_device *device = subdev->device;
+ struct nvkm_intr *intr;
+ unsigned long flags;
+ int leaf;
+ u32 mask;
+
+ intr = nvkm_intr_find(subdev, type, &leaf, &mask);
+ if (intr) {
+ nvkm_debug(intr->subdev, "intr %d/%08x allowed by %s\n", leaf, mask, subdev->name);
+ spin_lock_irqsave(&device->intr.lock, flags);
+ nvkm_intr_allow_locked(intr, leaf, mask);
+ spin_unlock_irqrestore(&device->intr.lock, flags);
+ }
+}
+
+static void
+nvkm_intr_block_locked(struct nvkm_intr *intr, int leaf, u32 mask)
+{
+ intr->mask[leaf] &= ~mask;
+ if (intr->func->block)
+ intr->func->block(intr, leaf, mask);
+}
+
+void
+nvkm_intr_block(struct nvkm_subdev *subdev, enum nvkm_intr_type type)
+{
+ struct nvkm_device *device = subdev->device;
+ struct nvkm_intr *intr;
+ unsigned long flags;
+ int leaf;
+ u32 mask;
+
+ intr = nvkm_intr_find(subdev, type, &leaf, &mask);
+ if (intr) {
+ nvkm_debug(intr->subdev, "intr %d/%08x blocked by %s\n", leaf, mask, subdev->name);
+ spin_lock_irqsave(&device->intr.lock, flags);
+ nvkm_intr_block_locked(intr, leaf, mask);
+ spin_unlock_irqrestore(&device->intr.lock, flags);
+ }
+}
+
+static void
+nvkm_intr_rearm_locked(struct nvkm_device *device)
+{
+ struct nvkm_intr *intr;
+
+ list_for_each_entry(intr, &device->intr.intr, head)
+ intr->func->rearm(intr);
+}
+
+static void
+nvkm_intr_unarm_locked(struct nvkm_device *device)
+{
+ struct nvkm_intr *intr;
+
+ list_for_each_entry(intr, &device->intr.intr, head)
+ intr->func->unarm(intr);
+}
+
+static irqreturn_t
+nvkm_intr(int irq, void *arg)
+{
+ struct nvkm_device *device = arg;
+ struct nvkm_intr *intr;
+ struct nvkm_inth *inth;
+ irqreturn_t ret = IRQ_NONE;
+ bool pending = false;
+ int prio, leaf;
+
+ /* Disable all top-level interrupt sources, and re-arm MSI interrupts. */
+ spin_lock(&device->intr.lock);
+ if (!device->intr.armed)
+ goto done_unlock;
+
+ nvkm_intr_unarm_locked(device);
+ nvkm_pci_msi_rearm(device);
+
+ /* Fetch pending interrupt masks. */
+ list_for_each_entry(intr, &device->intr.intr, head) {
+ if (intr->func->pending(intr))
+ pending = true;
+ }
+
+ if (!pending)
+ goto done;
+
+ /* Check that GPU is still on the bus by reading NV_PMC_BOOT_0. */
+ if (WARN_ON(nvkm_rd32(device, 0x000000) == 0xffffffff))
+ goto done;
+
+ /* Execute handlers. */
+ for (prio = 0; prio < ARRAY_SIZE(device->intr.prio); prio++) {
+ list_for_each_entry(inth, &device->intr.prio[prio], head) {
+ struct nvkm_intr *intr = inth->intr;
+
+ if (intr->stat[inth->leaf] & inth->mask) {
+ if (atomic_read(&inth->allowed)) {
+ if (intr->func->reset)
+ intr->func->reset(intr, inth->leaf, inth->mask);
+ if (inth->func(inth) == IRQ_HANDLED)
+ ret = IRQ_HANDLED;
+ }
+ }
+ }
+ }
+
+ /* Nothing handled? Some debugging/protection from IRQ storms is in order... */
+ if (ret == IRQ_NONE) {
+ list_for_each_entry(intr, &device->intr.intr, head) {
+ for (leaf = 0; leaf < intr->leaves; leaf++) {
+ if (intr->stat[leaf]) {
+ nvkm_warn(intr->subdev, "intr%d: %08x\n",
+ leaf, intr->stat[leaf]);
+ nvkm_intr_block_locked(intr, leaf, intr->stat[leaf]);
+ }
+ }
+ }
+ }
+
+done:
+ /* Re-enable all top-level interrupt sources. */
+ nvkm_intr_rearm_locked(device);
+done_unlock:
+ spin_unlock(&device->intr.lock);
+ return ret;
+}
+
+int
+nvkm_intr_add(const struct nvkm_intr_func *func, const struct nvkm_intr_data *data,
+ struct nvkm_subdev *subdev, int leaves, struct nvkm_intr *intr)
+{
+ struct nvkm_device *device = subdev->device;
+ int i;
+
+ intr->func = func;
+ intr->data = data;
+ intr->subdev = subdev;
+ intr->leaves = leaves;
+ intr->stat = kcalloc(leaves, sizeof(*intr->stat), GFP_KERNEL);
+ intr->mask = kcalloc(leaves, sizeof(*intr->mask), GFP_KERNEL);
+ if (!intr->stat || !intr->mask) {
+ kfree(intr->stat);
+ return -ENOMEM;
+ }
+
+ if (intr->subdev->debug >= NV_DBG_DEBUG) {
+ for (i = 0; i < intr->leaves; i++)
+ intr->mask[i] = ~0;
+ }
+
+ spin_lock_irq(&device->intr.lock);
+ list_add_tail(&intr->head, &device->intr.intr);
+ spin_unlock_irq(&device->intr.lock);
+ return 0;
+}
+
+static irqreturn_t
+nvkm_intr_subdev(struct nvkm_inth *inth)
+{
+ struct nvkm_subdev *subdev = container_of(inth, typeof(*subdev), inth);
+
+ nvkm_subdev_intr(subdev);
+ return IRQ_HANDLED;
+}
+
+static void
+nvkm_intr_subdev_add_dev(struct nvkm_intr *intr, enum nvkm_subdev_type type, int inst)
+{
+ struct nvkm_subdev *subdev;
+ enum nvkm_intr_prio prio;
+ int ret;
+
+ subdev = nvkm_device_subdev(intr->subdev->device, type, inst);
+ if (!subdev || !subdev->func->intr)
+ return;
+
+ if (type == NVKM_ENGINE_DISP)
+ prio = NVKM_INTR_PRIO_VBLANK;
+ else
+ prio = NVKM_INTR_PRIO_NORMAL;
+
+ ret = nvkm_inth_add(intr, NVKM_INTR_SUBDEV, prio, subdev, nvkm_intr_subdev, &subdev->inth);
+ if (WARN_ON(ret))
+ return;
+
+ nvkm_inth_allow(&subdev->inth);
+}
+
+static void
+nvkm_intr_subdev_add(struct nvkm_intr *intr)
+{
+ const struct nvkm_intr_data *data;
+ struct nvkm_device *device = intr->subdev->device;
+ struct nvkm_top_device *tdev;
+
+ for (data = intr->data; data && data->mask; data++) {
+ if (data->legacy) {
+ if (data->type == NVKM_SUBDEV_TOP) {
+ list_for_each_entry(tdev, &device->top->device, head) {
+ if (tdev->intr < 0 || !(data->mask & BIT(tdev->intr)))
+ continue;
+
+ nvkm_intr_subdev_add_dev(intr, tdev->type, tdev->inst);
+ }
+ } else {
+ nvkm_intr_subdev_add_dev(intr, data->type, data->inst);
+ }
+ }
+ }
+}
+
+void
+nvkm_intr_rearm(struct nvkm_device *device)
+{
+ struct nvkm_intr *intr;
+ int i;
+
+ if (unlikely(!device->intr.legacy_done)) {
+ list_for_each_entry(intr, &device->intr.intr, head)
+ nvkm_intr_subdev_add(intr);
+ device->intr.legacy_done = true;
+ }
+
+ spin_lock_irq(&device->intr.lock);
+ list_for_each_entry(intr, &device->intr.intr, head) {
+ for (i = 0; intr->func->block && i < intr->leaves; i++) {
+ intr->func->block(intr, i, ~0);
+ intr->func->allow(intr, i, intr->mask[i]);
+ }
+ }
+
+ nvkm_intr_rearm_locked(device);
+ device->intr.armed = true;
+ spin_unlock_irq(&device->intr.lock);
+}
+
+void
+nvkm_intr_unarm(struct nvkm_device *device)
+{
+ spin_lock_irq(&device->intr.lock);
+ nvkm_intr_unarm_locked(device);
+ device->intr.armed = false;
+ spin_unlock_irq(&device->intr.lock);
+}
+
+int
+nvkm_intr_install(struct nvkm_device *device)
+{
+ int ret;
+
+ device->intr.irq = device->func->irq(device);
+ if (device->intr.irq < 0)
+ return device->intr.irq;
+
+ ret = request_irq(device->intr.irq, nvkm_intr, IRQF_SHARED, "nvkm", device);
+ if (ret)
+ return ret;
+
+ device->intr.alloc = true;
+ return 0;
+}
+
+void
+nvkm_intr_dtor(struct nvkm_device *device)
+{
+ struct nvkm_intr *intr, *intt;
+
+ list_for_each_entry_safe(intr, intt, &device->intr.intr, head) {
+ list_del(&intr->head);
+ kfree(intr->mask);
+ kfree(intr->stat);
+ }
+
+ if (device->intr.alloc)
+ free_irq(device->intr.irq, device);
+}
+
+void
+nvkm_intr_ctor(struct nvkm_device *device)
+{
+ int i;
+
+ INIT_LIST_HEAD(&device->intr.intr);
+ for (i = 0; i < ARRAY_SIZE(device->intr.prio); i++)
+ INIT_LIST_HEAD(&device->intr.prio[i]);
+
+ spin_lock_init(&device->intr.lock);
+ device->intr.armed = false;
+}
+
+void
+nvkm_inth_block(struct nvkm_inth *inth)
+{
+ if (unlikely(!inth->intr))
+ return;
+
+ atomic_set(&inth->allowed, 0);
+}
+
+void
+nvkm_inth_allow(struct nvkm_inth *inth)
+{
+ struct nvkm_intr *intr = inth->intr;
+ unsigned long flags;
+
+ if (unlikely(!inth->intr))
+ return;
+
+ spin_lock_irqsave(&intr->subdev->device->intr.lock, flags);
+ if (!atomic_xchg(&inth->allowed, 1)) {
+ if ((intr->mask[inth->leaf] & inth->mask) != inth->mask)
+ nvkm_intr_allow_locked(intr, inth->leaf, inth->mask);
+ }
+ spin_unlock_irqrestore(&intr->subdev->device->intr.lock, flags);
+}
+
+int
+nvkm_inth_add(struct nvkm_intr *intr, enum nvkm_intr_type type, enum nvkm_intr_prio prio,
+ struct nvkm_subdev *subdev, nvkm_inth_func func, struct nvkm_inth *inth)
+{
+ struct nvkm_device *device = subdev->device;
+ int ret;
+
+ if (WARN_ON(inth->mask))
+ return -EBUSY;
+
+ ret = nvkm_intr_xlat(subdev, intr, type, &inth->leaf, &inth->mask);
+ if (ret)
+ return ret;
+
+ nvkm_debug(intr->subdev, "intr %d/%08x requested by %s\n",
+ inth->leaf, inth->mask, subdev->name);
+
+ inth->intr = intr;
+ inth->func = func;
+ atomic_set(&inth->allowed, 0);
+ list_add_tail(&inth->head, &device->intr.prio[prio]);
+ return 0;
+}
diff --git a/drivers/gpu/drm/nouveau/nvkm/core/ioctl.c b/drivers/gpu/drm/nouveau/nvkm/core/ioctl.c
index 45f920da89af..0b33287e43a7 100644
--- a/drivers/gpu/drm/nouveau/nvkm/core/ioctl.c
+++ b/drivers/gpu/drm/nouveau/nvkm/core/ioctl.c
@@ -47,6 +47,26 @@ nvkm_ioctl_nop(struct nvkm_client *client,
return ret;
}
+#include <nvif/class.h>
+
+static int
+nvkm_ioctl_sclass_(struct nvkm_object *object, int index, struct nvkm_oclass *oclass)
+{
+ if ( object->func->uevent &&
+ !object->func->uevent(object, NULL, 0, NULL) && index-- == 0) {
+ oclass->ctor = nvkm_uevent_new;
+ oclass->base.minver = 0;
+ oclass->base.maxver = 0;
+ oclass->base.oclass = NVIF_CLASS_EVENT;
+ return 0;
+ }
+
+ if (object->func->sclass)
+ return object->func->sclass(object, index, oclass);
+
+ return -ENOSYS;
+}
+
static int
nvkm_ioctl_sclass(struct nvkm_client *client,
struct nvkm_object *object, void *data, u32 size)
@@ -64,8 +84,7 @@ nvkm_ioctl_sclass(struct nvkm_client *client,
if (size != args->v0.count * sizeof(args->v0.oclass[0]))
return -EINVAL;
- while (object->func->sclass &&
- object->func->sclass(object, i, &oclass) >= 0) {
+ while (nvkm_ioctl_sclass_(object, i, &oclass) >= 0) {
if (i < args->v0.count) {
args->v0.oclass[i].oclass = oclass.base.oclass;
args->v0.oclass[i].minver = oclass.base.minver;
@@ -100,7 +119,7 @@ nvkm_ioctl_new(struct nvkm_client *client,
} else
return ret;
- if (!parent->func->sclass) {
+ if (!parent->func->sclass && !parent->func->uevent) {
nvif_ioctl(parent, "cannot have children\n");
return -EINVAL;
}
@@ -113,7 +132,7 @@ nvkm_ioctl_new(struct nvkm_client *client,
oclass.object = args->v0.object;
oclass.client = client;
oclass.parent = parent;
- ret = parent->func->sclass(parent, i++, &oclass);
+ ret = nvkm_ioctl_sclass_(parent, i++, &oclass);
if (ret)
return ret;
} while (oclass.base.oclass != args->v0.oclass);
@@ -294,90 +313,6 @@ nvkm_ioctl_unmap(struct nvkm_client *client,
return ret;
}
-static int
-nvkm_ioctl_ntfy_new(struct nvkm_client *client,
- struct nvkm_object *object, void *data, u32 size)
-{
- union {
- struct nvif_ioctl_ntfy_new_v0 v0;
- } *args = data;
- struct nvkm_event *event;
- int ret = -ENOSYS;
-
- nvif_ioctl(object, "ntfy new size %d\n", size);
- if (!(ret = nvif_unpack(ret, &data, &size, args->v0, 0, 0, true))) {
- nvif_ioctl(object, "ntfy new vers %d event %02x\n",
- args->v0.version, args->v0.event);
- ret = nvkm_object_ntfy(object, args->v0.event, &event);
- if (ret == 0) {
- ret = nvkm_client_notify_new(object, event, data, size);
- if (ret >= 0) {
- args->v0.index = ret;
- ret = 0;
- }
- }
- }
-
- return ret;
-}
-
-static int
-nvkm_ioctl_ntfy_del(struct nvkm_client *client,
- struct nvkm_object *object, void *data, u32 size)
-{
- union {
- struct nvif_ioctl_ntfy_del_v0 v0;
- } *args = data;
- int ret = -ENOSYS;
-
- nvif_ioctl(object, "ntfy del size %d\n", size);
- if (!(ret = nvif_unpack(ret, &data, &size, args->v0, 0, 0, false))) {
- nvif_ioctl(object, "ntfy del vers %d index %d\n",
- args->v0.version, args->v0.index);
- ret = nvkm_client_notify_del(client, args->v0.index);
- }
-
- return ret;
-}
-
-static int
-nvkm_ioctl_ntfy_get(struct nvkm_client *client,
- struct nvkm_object *object, void *data, u32 size)
-{
- union {
- struct nvif_ioctl_ntfy_get_v0 v0;
- } *args = data;
- int ret = -ENOSYS;
-
- nvif_ioctl(object, "ntfy get size %d\n", size);
- if (!(ret = nvif_unpack(ret, &data, &size, args->v0, 0, 0, false))) {
- nvif_ioctl(object, "ntfy get vers %d index %d\n",
- args->v0.version, args->v0.index);
- ret = nvkm_client_notify_get(client, args->v0.index);
- }
-
- return ret;
-}
-
-static int
-nvkm_ioctl_ntfy_put(struct nvkm_client *client,
- struct nvkm_object *object, void *data, u32 size)
-{
- union {
- struct nvif_ioctl_ntfy_put_v0 v0;
- } *args = data;
- int ret = -ENOSYS;
-
- nvif_ioctl(object, "ntfy put size %d\n", size);
- if (!(ret = nvif_unpack(ret, &data, &size, args->v0, 0, 0, false))) {
- nvif_ioctl(object, "ntfy put vers %d index %d\n",
- args->v0.version, args->v0.index);
- ret = nvkm_client_notify_put(client, args->v0.index);
- }
-
- return ret;
-}
-
static struct {
int version;
int (*func)(struct nvkm_client *, struct nvkm_object *, void *, u32);
@@ -392,10 +327,6 @@ nvkm_ioctl_v0[] = {
{ 0x00, nvkm_ioctl_wr },
{ 0x00, nvkm_ioctl_map },
{ 0x00, nvkm_ioctl_unmap },
- { 0x00, nvkm_ioctl_ntfy_new },
- { 0x00, nvkm_ioctl_ntfy_del },
- { 0x00, nvkm_ioctl_ntfy_get },
- { 0x00, nvkm_ioctl_ntfy_put },
};
static int
diff --git a/drivers/gpu/drm/nouveau/nvkm/core/notify.c b/drivers/gpu/drm/nouveau/nvkm/core/notify.c
deleted file mode 100644
index 023610d01458..000000000000
--- a/drivers/gpu/drm/nouveau/nvkm/core/notify.c
+++ /dev/null
@@ -1,163 +0,0 @@
-/*
- * Copyright 2014 Red Hat Inc.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice shall be included in
- * all copies or substantial portions of the Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
- * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
- * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
- * OTHER DEALINGS IN THE SOFTWARE.
- *
- * Authors: Ben Skeggs <bskeggs@redhat.com>
- */
-#include <core/notify.h>
-#include <core/event.h>
-
-static inline void
-nvkm_notify_put_locked(struct nvkm_notify *notify)
-{
- if (notify->block++ == 0)
- nvkm_event_put(notify->event, notify->types, notify->index);
-}
-
-void
-nvkm_notify_put(struct nvkm_notify *notify)
-{
- struct nvkm_event *event = notify->event;
- unsigned long flags;
- if (likely(event) &&
- test_and_clear_bit(NVKM_NOTIFY_USER, &notify->flags)) {
- spin_lock_irqsave(&event->refs_lock, flags);
- nvkm_notify_put_locked(notify);
- spin_unlock_irqrestore(&event->refs_lock, flags);
- if (test_bit(NVKM_NOTIFY_WORK, &notify->flags))
- flush_work(&notify->work);
- }
-}
-
-static inline void
-nvkm_notify_get_locked(struct nvkm_notify *notify)
-{
- if (--notify->block == 0)
- nvkm_event_get(notify->event, notify->types, notify->index);
-}
-
-void
-nvkm_notify_get(struct nvkm_notify *notify)
-{
- struct nvkm_event *event = notify->event;
- unsigned long flags;
- if (likely(event) &&
- !test_and_set_bit(NVKM_NOTIFY_USER, &notify->flags)) {
- spin_lock_irqsave(&event->refs_lock, flags);
- nvkm_notify_get_locked(notify);
- spin_unlock_irqrestore(&event->refs_lock, flags);
- }
-}
-
-static inline void
-nvkm_notify_func(struct nvkm_notify *notify)
-{
- struct nvkm_event *event = notify->event;
- int ret = notify->func(notify);
- unsigned long flags;
- if ((ret == NVKM_NOTIFY_KEEP) ||
- !test_and_clear_bit(NVKM_NOTIFY_USER, &notify->flags)) {
- spin_lock_irqsave(&event->refs_lock, flags);
- nvkm_notify_get_locked(notify);
- spin_unlock_irqrestore(&event->refs_lock, flags);
- }
-}
-
-static void
-nvkm_notify_work(struct work_struct *work)
-{
- struct nvkm_notify *notify = container_of(work, typeof(*notify), work);
- nvkm_notify_func(notify);
-}
-
-void
-nvkm_notify_send(struct nvkm_notify *notify, void *data, u32 size)
-{
- struct nvkm_event *event = notify->event;
- unsigned long flags;
-
- assert_spin_locked(&event->list_lock);
- BUG_ON(size != notify->size);
-
- spin_lock_irqsave(&event->refs_lock, flags);
- if (notify->block) {
- spin_unlock_irqrestore(&event->refs_lock, flags);
- return;
- }
- nvkm_notify_put_locked(notify);
- spin_unlock_irqrestore(&event->refs_lock, flags);
-
- if (test_bit(NVKM_NOTIFY_WORK, &notify->flags)) {
- memcpy((void *)notify->data, data, size);
- schedule_work(&notify->work);
- } else {
- notify->data = data;
- nvkm_notify_func(notify);
- notify->data = NULL;
- }
-}
-
-void
-nvkm_notify_fini(struct nvkm_notify *notify)
-{
- unsigned long flags;
- if (notify->event) {
- nvkm_notify_put(notify);
- spin_lock_irqsave(&notify->event->list_lock, flags);
- list_del(&notify->head);
- spin_unlock_irqrestore(&notify->event->list_lock, flags);
- kfree((void *)notify->data);
- notify->event = NULL;
- }
-}
-
-int
-nvkm_notify_init(struct nvkm_object *object, struct nvkm_event *event,
- int (*func)(struct nvkm_notify *), bool work,
- void *data, u32 size, u32 reply,
- struct nvkm_notify *notify)
-{
- unsigned long flags;
- int ret = -ENODEV;
- if ((notify->event = event), event->refs) {
- ret = event->func->ctor(object, data, size, notify);
- if (ret == 0 && (ret = -EINVAL, notify->size == reply)) {
- notify->flags = 0;
- notify->block = 1;
- notify->func = func;
- notify->data = NULL;
- if (ret = 0, work) {
- INIT_WORK(&notify->work, nvkm_notify_work);
- set_bit(NVKM_NOTIFY_WORK, &notify->flags);
- notify->data = kmalloc(reply, GFP_KERNEL);
- if (!notify->data)
- ret = -ENOMEM;
- }
- }
- if (ret == 0) {
- spin_lock_irqsave(&event->list_lock, flags);
- list_add_tail(&notify->head, &event->list);
- spin_unlock_irqrestore(&event->list_lock, flags);
- }
- }
- if (ret)
- notify->event = NULL;
- return ret;
-}
diff --git a/drivers/gpu/drm/nouveau/nvkm/core/oproxy.c b/drivers/gpu/drm/nouveau/nvkm/core/oproxy.c
index 16299837a296..3385528da650 100644
--- a/drivers/gpu/drm/nouveau/nvkm/core/oproxy.c
+++ b/drivers/gpu/drm/nouveau/nvkm/core/oproxy.c
@@ -47,7 +47,12 @@ nvkm_oproxy_map(struct nvkm_object *object, void *argv, u32 argc,
static int
nvkm_oproxy_unmap(struct nvkm_object *object)
{
- return nvkm_object_unmap(nvkm_oproxy(object)->object);
+ struct nvkm_oproxy *oproxy = nvkm_oproxy(object);
+
+ if (unlikely(!oproxy->object))
+ return 0;
+
+ return nvkm_object_unmap(oproxy->object);
}
static int
@@ -106,6 +111,18 @@ nvkm_oproxy_sclass(struct nvkm_object *object, int index,
}
static int
+nvkm_oproxy_uevent(struct nvkm_object *object, void *argv, u32 argc,
+ struct nvkm_uevent *uevent)
+{
+ struct nvkm_oproxy *oproxy = nvkm_oproxy(object);
+
+ if (!oproxy->object->func->uevent)
+ return -ENOSYS;
+
+ return oproxy->object->func->uevent(oproxy->object, argv, argc, uevent);
+}
+
+static int
nvkm_oproxy_fini(struct nvkm_object *object, bool suspend)
{
struct nvkm_oproxy *oproxy = nvkm_oproxy(object);
@@ -188,6 +205,7 @@ nvkm_oproxy_func = {
.wr32 = nvkm_oproxy_wr32,
.bind = nvkm_oproxy_bind,
.sclass = nvkm_oproxy_sclass,
+ .uevent = nvkm_oproxy_uevent,
};
void
diff --git a/drivers/gpu/drm/nouveau/nvkm/core/subdev.c b/drivers/gpu/drm/nouveau/nvkm/core/subdev.c
index a74b7acb6832..6c20e827a069 100644
--- a/drivers/gpu/drm/nouveau/nvkm/core/subdev.c
+++ b/drivers/gpu/drm/nouveau/nvkm/core/subdev.c
@@ -54,7 +54,7 @@ int
nvkm_subdev_fini(struct nvkm_subdev *subdev, bool suspend)
{
struct nvkm_device *device = subdev->device;
- const char *action = suspend ? "suspend" : "fini";
+ const char *action = suspend ? "suspend" : subdev->use.enabled ? "fini" : "reset";
s64 time;
nvkm_trace(subdev, "%s running...\n", action);
@@ -68,6 +68,7 @@ nvkm_subdev_fini(struct nvkm_subdev *subdev, bool suspend)
return ret;
}
}
+ subdev->use.enabled = false;
nvkm_mc_reset(device, subdev->type, subdev->inst);
@@ -97,30 +98,49 @@ nvkm_subdev_preinit(struct nvkm_subdev *subdev)
return 0;
}
-int
-nvkm_subdev_init(struct nvkm_subdev *subdev)
+static int
+nvkm_subdev_oneinit_(struct nvkm_subdev *subdev)
{
s64 time;
int ret;
- nvkm_trace(subdev, "init running...\n");
+ if (!subdev->func->oneinit || subdev->oneinit)
+ return 0;
+
+ nvkm_trace(subdev, "one-time init running...\n");
time = ktime_to_us(ktime_get());
+ ret = subdev->func->oneinit(subdev);
+ if (ret) {
+ nvkm_error(subdev, "one-time init failed, %d\n", ret);
+ return ret;
+ }
- if (subdev->func->oneinit && !subdev->oneinit) {
- s64 time;
- nvkm_trace(subdev, "one-time init running...\n");
- time = ktime_to_us(ktime_get());
- ret = subdev->func->oneinit(subdev);
- if (ret) {
- nvkm_error(subdev, "one-time init failed, %d\n", ret);
- return ret;
- }
+ subdev->oneinit = true;
+ time = ktime_to_us(ktime_get()) - time;
+ nvkm_trace(subdev, "one-time init completed in %lldus\n", time);
+ return 0;
+}
- subdev->oneinit = true;
- time = ktime_to_us(ktime_get()) - time;
- nvkm_trace(subdev, "one-time init completed in %lldus\n", time);
+static int
+nvkm_subdev_init_(struct nvkm_subdev *subdev)
+{
+ s64 time;
+ int ret;
+
+ if (subdev->use.enabled) {
+ nvkm_trace(subdev, "init skipped, already running\n");
+ return 0;
}
+ nvkm_trace(subdev, "init running...\n");
+ time = ktime_to_us(ktime_get());
+
+ ret = nvkm_subdev_oneinit_(subdev);
+ if (ret)
+ return ret;
+
+ subdev->use.enabled = true;
+
if (subdev->func->init) {
ret = subdev->func->init(subdev);
if (ret) {
@@ -134,6 +154,64 @@ nvkm_subdev_init(struct nvkm_subdev *subdev)
return 0;
}
+int
+nvkm_subdev_init(struct nvkm_subdev *subdev)
+{
+ int ret;
+
+ mutex_lock(&subdev->use.mutex);
+ if (refcount_read(&subdev->use.refcount) == 0) {
+ nvkm_trace(subdev, "init skipped, no users\n");
+ mutex_unlock(&subdev->use.mutex);
+ return 0;
+ }
+
+ ret = nvkm_subdev_init_(subdev);
+ mutex_unlock(&subdev->use.mutex);
+ return ret;
+}
+
+int
+nvkm_subdev_oneinit(struct nvkm_subdev *subdev)
+{
+ int ret;
+
+ mutex_lock(&subdev->use.mutex);
+ ret = nvkm_subdev_oneinit_(subdev);
+ mutex_unlock(&subdev->use.mutex);
+ return ret;
+}
+
+void
+nvkm_subdev_unref(struct nvkm_subdev *subdev)
+{
+ if (refcount_dec_and_mutex_lock(&subdev->use.refcount, &subdev->use.mutex)) {
+ nvkm_subdev_fini(subdev, false);
+ mutex_unlock(&subdev->use.mutex);
+ }
+}
+
+int
+nvkm_subdev_ref(struct nvkm_subdev *subdev)
+{
+ int ret;
+
+ if (subdev && !refcount_inc_not_zero(&subdev->use.refcount)) {
+ mutex_lock(&subdev->use.mutex);
+ if (!refcount_inc_not_zero(&subdev->use.refcount)) {
+ if ((ret = nvkm_subdev_init_(subdev))) {
+ mutex_unlock(&subdev->use.mutex);
+ return ret;
+ }
+
+ refcount_set(&subdev->use.refcount, 1);
+ }
+ mutex_unlock(&subdev->use.mutex);
+ }
+
+ return 0;
+}
+
void
nvkm_subdev_del(struct nvkm_subdev **psubdev)
{
@@ -146,6 +224,7 @@ nvkm_subdev_del(struct nvkm_subdev **psubdev)
list_del(&subdev->head);
if (subdev->func->dtor)
*psubdev = subdev->func->dtor(subdev);
+ mutex_destroy(&subdev->use.mutex);
time = ktime_to_us(ktime_get()) - time;
nvkm_trace(subdev, "destroy completed in %lldus\n", time);
kfree(*psubdev);
@@ -167,8 +246,8 @@ nvkm_subdev_disable(struct nvkm_device *device, enum nvkm_subdev_type type, int
}
void
-nvkm_subdev_ctor(const struct nvkm_subdev_func *func, struct nvkm_device *device,
- enum nvkm_subdev_type type, int inst, struct nvkm_subdev *subdev)
+__nvkm_subdev_ctor(const struct nvkm_subdev_func *func, struct nvkm_device *device,
+ enum nvkm_subdev_type type, int inst, struct nvkm_subdev *subdev)
{
subdev->func = func;
subdev->device = device;
@@ -180,6 +259,8 @@ nvkm_subdev_ctor(const struct nvkm_subdev_func *func, struct nvkm_device *device
else
strscpy(subdev->name, nvkm_subdev_type[type], sizeof(subdev->name));
subdev->debug = nvkm_dbgopt(device->dbgopt, subdev->name);
+
+ refcount_set(&subdev->use.refcount, 1);
list_add_tail(&subdev->head, &device->subdev);
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/core/uevent.c b/drivers/gpu/drm/nouveau/nvkm/core/uevent.c
new file mode 100644
index 000000000000..ba9d9edaec75
--- /dev/null
+++ b/drivers/gpu/drm/nouveau/nvkm/core/uevent.c
@@ -0,0 +1,157 @@
+/*
+ * Copyright 2021 Red Hat Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ */
+#define nvkm_uevent(p) container_of((p), struct nvkm_uevent, object)
+#include <core/event.h>
+#include <core/client.h>
+
+#include <nvif/if000e.h>
+
+struct nvkm_uevent {
+ struct nvkm_object object;
+ struct nvkm_object *parent;
+ nvkm_uevent_func func;
+ bool wait;
+
+ struct nvkm_event_ntfy ntfy;
+ atomic_t allowed;
+};
+
+static int
+nvkm_uevent_mthd_block(struct nvkm_uevent *uevent, union nvif_event_block_args *args, u32 argc)
+{
+ if (argc != sizeof(args->vn))
+ return -ENOSYS;
+
+ nvkm_event_ntfy_block(&uevent->ntfy);
+ atomic_set(&uevent->allowed, 0);
+ return 0;
+}
+
+static int
+nvkm_uevent_mthd_allow(struct nvkm_uevent *uevent, union nvif_event_allow_args *args, u32 argc)
+{
+ if (argc != sizeof(args->vn))
+ return -ENOSYS;
+
+ nvkm_event_ntfy_allow(&uevent->ntfy);
+ atomic_set(&uevent->allowed, 1);
+ return 0;
+}
+
+static int
+nvkm_uevent_mthd(struct nvkm_object *object, u32 mthd, void *argv, u32 argc)
+{
+ struct nvkm_uevent *uevent = nvkm_uevent(object);
+
+ switch (mthd) {
+ case NVIF_EVENT_V0_ALLOW: return nvkm_uevent_mthd_allow(uevent, argv, argc);
+ case NVIF_EVENT_V0_BLOCK: return nvkm_uevent_mthd_block(uevent, argv, argc);
+ default:
+ break;
+ }
+
+ return -EINVAL;
+}
+
+static int
+nvkm_uevent_fini(struct nvkm_object *object, bool suspend)
+{
+ struct nvkm_uevent *uevent = nvkm_uevent(object);
+
+ nvkm_event_ntfy_block(&uevent->ntfy);
+ return 0;
+}
+
+static int
+nvkm_uevent_init(struct nvkm_object *object)
+{
+ struct nvkm_uevent *uevent = nvkm_uevent(object);
+
+ if (atomic_read(&uevent->allowed))
+ nvkm_event_ntfy_allow(&uevent->ntfy);
+
+ return 0;
+}
+
+static void *
+nvkm_uevent_dtor(struct nvkm_object *object)
+{
+ struct nvkm_uevent *uevent = nvkm_uevent(object);
+
+ nvkm_event_ntfy_del(&uevent->ntfy);
+ return uevent;
+}
+
+static const struct nvkm_object_func
+nvkm_uevent = {
+ .dtor = nvkm_uevent_dtor,
+ .init = nvkm_uevent_init,
+ .fini = nvkm_uevent_fini,
+ .mthd = nvkm_uevent_mthd,
+};
+
+static int
+nvkm_uevent_ntfy(struct nvkm_event_ntfy *ntfy, u32 bits)
+{
+ struct nvkm_uevent *uevent = container_of(ntfy, typeof(*uevent), ntfy);
+ struct nvkm_client *client = uevent->object.client;
+
+ if (uevent->func)
+ return uevent->func(uevent->parent, uevent->object.token, bits);
+
+ return client->event(uevent->object.token, NULL, 0);
+}
+
+int
+nvkm_uevent_add(struct nvkm_uevent *uevent, struct nvkm_event *event, int id, u32 bits,
+ nvkm_uevent_func func)
+{
+ if (WARN_ON(uevent->func))
+ return -EBUSY;
+
+ nvkm_event_ntfy_add(event, id, bits, uevent->wait, nvkm_uevent_ntfy, &uevent->ntfy);
+ uevent->func = func;
+ return 0;
+}
+
+int
+nvkm_uevent_new(const struct nvkm_oclass *oclass, void *argv, u32 argc,
+ struct nvkm_object **pobject)
+{
+ struct nvkm_object *parent = oclass->parent;
+ struct nvkm_uevent *uevent;
+ union nvif_event_args *args = argv;
+
+ if (argc < sizeof(args->v0) || args->v0.version != 0)
+ return -ENOSYS;
+
+ if (!(uevent = kzalloc(sizeof(*uevent), GFP_KERNEL)))
+ return -ENOMEM;
+ *pobject = &uevent->object;
+
+ nvkm_object_ctor(&nvkm_uevent, oclass, &uevent->object);
+ uevent->parent = parent;
+ uevent->func = NULL;
+ uevent->wait = args->v0.wait;
+ uevent->ntfy.event = NULL;
+ return parent->func->uevent(parent, &args->v0.data, argc - sizeof(args->v0), uevent);
+}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/ce/Kbuild b/drivers/gpu/drm/nouveau/nvkm/engine/ce/Kbuild
index ba88613e1e46..8bf1635ffabc 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/ce/Kbuild
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/ce/Kbuild
@@ -8,3 +8,5 @@ nvkm-y += nvkm/engine/ce/gp100.o
nvkm-y += nvkm/engine/ce/gp102.o
nvkm-y += nvkm/engine/ce/gv100.o
nvkm-y += nvkm/engine/ce/tu102.o
+nvkm-y += nvkm/engine/ce/ga100.o
+nvkm-y += nvkm/engine/ce/ga102.o
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/ce/ga100.c b/drivers/gpu/drm/nouveau/nvkm/engine/ce/ga100.c
new file mode 100644
index 000000000000..6648ed62daa6
--- /dev/null
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/ce/ga100.c
@@ -0,0 +1,82 @@
+/*
+ * Copyright 2021 Red Hat Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ */
+#include "priv.h"
+
+#include <subdev/vfn.h>
+
+#include <nvif/class.h>
+
+static irqreturn_t
+ga100_ce_intr(struct nvkm_inth *inth)
+{
+ struct nvkm_subdev *subdev = container_of(inth, typeof(*subdev), inth);
+
+ /*TODO*/
+ nvkm_error(subdev, "intr\n");
+ return IRQ_NONE;
+}
+
+int
+ga100_ce_fini(struct nvkm_engine *engine, bool suspend)
+{
+ nvkm_inth_block(&engine->subdev.inth);
+ return 0;
+}
+
+int
+ga100_ce_init(struct nvkm_engine *engine)
+{
+ nvkm_inth_allow(&engine->subdev.inth);
+ return 0;
+}
+
+int
+ga100_ce_oneinit(struct nvkm_engine *engine)
+{
+ struct nvkm_subdev *subdev = &engine->subdev;
+ struct nvkm_device *device = subdev->device;
+ u32 vector;
+
+ vector = nvkm_rd32(device, 0x10442c + (subdev->inst * 0x80)) & 0x00000fff;
+
+ return nvkm_inth_add(&device->vfn->intr, vector, NVKM_INTR_PRIO_NORMAL,
+ subdev, ga100_ce_intr, &subdev->inth);
+}
+
+static const struct nvkm_engine_func
+ga100_ce = {
+ .oneinit = ga100_ce_oneinit,
+ .init = ga100_ce_init,
+ .fini = ga100_ce_fini,
+ .cclass = &gv100_ce_cclass,
+ .sclass = {
+ { -1, -1, AMPERE_DMA_COPY_A },
+ {}
+ }
+};
+
+int
+ga100_ce_new(struct nvkm_device *device, enum nvkm_subdev_type type, int inst,
+ struct nvkm_engine **pengine)
+{
+ return nvkm_engine_new_(&ga100_ce, device, type, inst, true, pengine);
+}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/usertu102.c b/drivers/gpu/drm/nouveau/nvkm/engine/ce/ga102.c
index 217268f8ccad..9f3448ad625f 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/usertu102.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/ce/ga102.c
@@ -1,5 +1,5 @@
/*
- * Copyright 2018 Red Hat Inc.
+ * Copyright 2021 Red Hat Inc.
*
* Permission is hereby granted, free of charge, to any person obtaining a
* copy of this software and associated documentation files (the "Software"),
@@ -19,27 +19,26 @@
* ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
* OTHER DEALINGS IN THE SOFTWARE.
*/
-#include "user.h"
+#include "priv.h"
-static int
-tu102_fifo_user_map(struct nvkm_object *object, void *argv, u32 argc,
- enum nvkm_object_map *type, u64 *addr, u64 *size)
-{
- struct nvkm_device *device = object->engine->subdev.device;
- *addr = 0xbb0000 + device->func->resource_addr(device, 0);
- *size = 0x010000;
- *type = NVKM_OBJECT_MAP_IO;
- return 0;
-}
+#include <nvif/class.h>
-static const struct nvkm_object_func
-tu102_fifo_user = {
- .map = tu102_fifo_user_map,
+static const struct nvkm_engine_func
+ga102_ce = {
+ .oneinit = ga100_ce_oneinit,
+ .init = ga100_ce_init,
+ .fini = ga100_ce_fini,
+ .cclass = &gv100_ce_cclass,
+ .sclass = {
+ { -1, -1, AMPERE_DMA_COPY_A },
+ { -1, -1, AMPERE_DMA_COPY_B },
+ {}
+ }
};
int
-tu102_fifo_user_new(const struct nvkm_oclass *oclass, void *argv, u32 argc,
- struct nvkm_object **pobject)
+ga102_ce_new(struct nvkm_device *device, enum nvkm_subdev_type type, int inst,
+ struct nvkm_engine **pengine)
{
- return nvkm_object_new_(&tu102_fifo_user, oclass, argv, argc, pobject);
+ return nvkm_engine_new_(&ga102_ce, device, type, inst, true, pengine);
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/ce/gt215.c b/drivers/gpu/drm/nouveau/nvkm/engine/ce/gt215.c
index 09a112af2f89..c9bf6305c3ec 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/ce/gt215.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/ce/gt215.c
@@ -40,7 +40,7 @@ gt215_ce_isr_error_name[] = {
};
void
-gt215_ce_intr(struct nvkm_falcon *ce, struct nvkm_fifo_chan *chan)
+gt215_ce_intr(struct nvkm_falcon *ce, struct nvkm_chan *chan)
{
struct nvkm_subdev *subdev = &ce->engine.subdev;
struct nvkm_device *device = subdev->device;
@@ -55,9 +55,9 @@ gt215_ce_intr(struct nvkm_falcon *ce, struct nvkm_fifo_chan *chan)
nvkm_error(subdev, "DISPATCH_ERROR %04x [%s] ch %d [%010llx %s] "
"subc %d mthd %04x data %08x\n", ssta,
- en ? en->name : "", chan ? chan->chid : -1,
+ en ? en->name : "", chan ? chan->id : -1,
chan ? chan->inst->addr : 0,
- chan ? chan->object.client->name : "unknown",
+ chan ? chan->name : "unknown",
subc, mthd, data);
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/ce/priv.h b/drivers/gpu/drm/nouveau/nvkm/engine/ce/priv.h
index cd53b93664d6..c4c046916fa6 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/ce/priv.h
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/ce/priv.h
@@ -8,4 +8,8 @@ void gk104_ce_intr(struct nvkm_engine *);
void gp100_ce_intr(struct nvkm_engine *);
extern const struct nvkm_object_func gv100_ce_cclass;
+
+int ga100_ce_oneinit(struct nvkm_engine *);
+int ga100_ce_init(struct nvkm_engine *);
+int ga100_ce_fini(struct nvkm_engine *, bool);
#endif
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/cipher/g84.c b/drivers/gpu/drm/nouveau/nvkm/engine/cipher/g84.c
index be2a7181dc15..caca4f639895 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/cipher/g84.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/cipher/g84.c
@@ -81,8 +81,7 @@ g84_cipher_intr(struct nvkm_engine *cipher)
{
struct nvkm_subdev *subdev = &cipher->subdev;
struct nvkm_device *device = subdev->device;
- struct nvkm_fifo *fifo = device->fifo;
- struct nvkm_fifo_chan *chan;
+ struct nvkm_chan *chan;
u32 stat = nvkm_rd32(device, 0x102130);
u32 mthd = nvkm_rd32(device, 0x102190);
u32 data = nvkm_rd32(device, 0x102194);
@@ -90,16 +89,16 @@ g84_cipher_intr(struct nvkm_engine *cipher)
unsigned long flags;
char msg[128];
- chan = nvkm_fifo_chan_inst(fifo, (u64)inst << 12, &flags);
+ chan = nvkm_chan_get_inst(cipher, (u64)inst << 12, &flags);
if (stat) {
nvkm_snprintbf(msg, sizeof(msg), g84_cipher_intr_mask, stat);
nvkm_error(subdev, "%08x [%s] ch %d [%010llx %s] "
"mthd %04x data %08x\n", stat, msg,
- chan ? chan->chid : -1, (u64)inst << 12,
- chan ? chan->object.client->name : "unknown",
+ chan ? chan->id : -1, (u64)inst << 12,
+ chan ? chan->name : "unknown",
mthd, data);
}
- nvkm_fifo_chan_put(fifo, flags, &chan);
+ nvkm_chan_put(&chan, flags);
nvkm_wr32(device, 0x102130, stat);
nvkm_wr32(device, 0x10200c, 0x10);
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/device/base.c b/drivers/gpu/drm/nouveau/nvkm/engine/device/base.c
index d8cf71fb0512..1c81e5b34d29 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/device/base.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/device/base.c
@@ -1095,7 +1095,7 @@ nv98_chipset = {
.volt = { 0x00000001, nv40_volt_new },
.disp = { 0x00000001, g94_disp_new },
.dma = { 0x00000001, nv50_dma_new },
- .fifo = { 0x00000001, g84_fifo_new },
+ .fifo = { 0x00000001, g98_fifo_new },
.gr = { 0x00000001, g84_gr_new },
.mspdec = { 0x00000001, g98_mspdec_new },
.msppp = { 0x00000001, g98_msppp_new },
@@ -1161,7 +1161,7 @@ nva3_chipset = {
.ce = { 0x00000001, gt215_ce_new },
.disp = { 0x00000001, gt215_disp_new },
.dma = { 0x00000001, nv50_dma_new },
- .fifo = { 0x00000001, g84_fifo_new },
+ .fifo = { 0x00000001, g98_fifo_new },
.gr = { 0x00000001, gt215_gr_new },
.mpeg = { 0x00000001, g84_mpeg_new },
.mspdec = { 0x00000001, gt215_mspdec_new },
@@ -1195,7 +1195,7 @@ nva5_chipset = {
.ce = { 0x00000001, gt215_ce_new },
.disp = { 0x00000001, gt215_disp_new },
.dma = { 0x00000001, nv50_dma_new },
- .fifo = { 0x00000001, g84_fifo_new },
+ .fifo = { 0x00000001, g98_fifo_new },
.gr = { 0x00000001, gt215_gr_new },
.mspdec = { 0x00000001, gt215_mspdec_new },
.msppp = { 0x00000001, gt215_msppp_new },
@@ -1228,7 +1228,7 @@ nva8_chipset = {
.ce = { 0x00000001, gt215_ce_new },
.disp = { 0x00000001, gt215_disp_new },
.dma = { 0x00000001, nv50_dma_new },
- .fifo = { 0x00000001, g84_fifo_new },
+ .fifo = { 0x00000001, g98_fifo_new },
.gr = { 0x00000001, gt215_gr_new },
.mspdec = { 0x00000001, gt215_mspdec_new },
.msppp = { 0x00000001, gt215_msppp_new },
@@ -1259,7 +1259,7 @@ nvaa_chipset = {
.volt = { 0x00000001, nv40_volt_new },
.disp = { 0x00000001, mcp77_disp_new },
.dma = { 0x00000001, nv50_dma_new },
- .fifo = { 0x00000001, g84_fifo_new },
+ .fifo = { 0x00000001, g98_fifo_new },
.gr = { 0x00000001, gt200_gr_new },
.mspdec = { 0x00000001, g98_mspdec_new },
.msppp = { 0x00000001, g98_msppp_new },
@@ -1291,7 +1291,7 @@ nvac_chipset = {
.volt = { 0x00000001, nv40_volt_new },
.disp = { 0x00000001, mcp77_disp_new },
.dma = { 0x00000001, nv50_dma_new },
- .fifo = { 0x00000001, g84_fifo_new },
+ .fifo = { 0x00000001, g98_fifo_new },
.gr = { 0x00000001, mcp79_gr_new },
.mspdec = { 0x00000001, g98_mspdec_new },
.msppp = { 0x00000001, g98_msppp_new },
@@ -1325,7 +1325,7 @@ nvaf_chipset = {
.ce = { 0x00000001, gt215_ce_new },
.disp = { 0x00000001, mcp89_disp_new },
.dma = { 0x00000001, nv50_dma_new },
- .fifo = { 0x00000001, g84_fifo_new },
+ .fifo = { 0x00000001, g98_fifo_new },
.gr = { 0x00000001, mcp89_gr_new },
.mspdec = { 0x00000001, gt215_mspdec_new },
.msppp = { 0x00000001, gt215_msppp_new },
@@ -2130,7 +2130,7 @@ nv12b_chipset = {
.volt = { 0x00000001, gm20b_volt_new },
.ce = { 0x00000004, gm200_ce_new },
.dma = { 0x00000001, gf119_dma_new },
- .fifo = { 0x00000001, gm20b_fifo_new },
+ .fifo = { 0x00000001, gm200_fifo_new },
.gr = { 0x00000001, gm20b_gr_new },
.sw = { 0x00000001, gf100_sw_new },
};
@@ -2356,7 +2356,7 @@ nv13b_chipset = {
.top = { 0x00000001, gk104_top_new },
.ce = { 0x00000001, gp100_ce_new },
.dma = { 0x00000001, gf119_dma_new },
- .fifo = { 0x00000001, gp10b_fifo_new },
+ .fifo = { 0x00000001, gp100_fifo_new },
.gr = { 0x00000001, gp10b_gr_new },
.sw = { 0x00000001, gf100_sw_new },
};
@@ -2364,7 +2364,7 @@ nv13b_chipset = {
static const struct nvkm_device_chip
nv140_chipset = {
.name = "GV100",
- .acr = { 0x00000001, gp108_acr_new },
+ .acr = { 0x00000001, gv100_acr_new },
.bar = { 0x00000001, gm107_bar_new },
.bios = { 0x00000001, nvkm_bios_new },
.bus = { 0x00000001, gf100_bus_new },
@@ -2385,6 +2385,7 @@ nv140_chipset = {
.therm = { 0x00000001, gp100_therm_new },
.timer = { 0x00000001, gk20a_timer_new },
.top = { 0x00000001, gk104_top_new },
+ .vfn = { 0x00000001, gv100_vfn_new },
.ce = { 0x000001ff, gv100_ce_new },
.disp = { 0x00000001, gv100_disp_new },
.dma = { 0x00000001, gv100_dma_new },
@@ -2404,14 +2405,14 @@ nv162_chipset = {
.bus = { 0x00000001, gf100_bus_new },
.devinit = { 0x00000001, tu102_devinit_new },
.fault = { 0x00000001, tu102_fault_new },
- .fb = { 0x00000001, gv100_fb_new },
+ .fb = { 0x00000001, tu102_fb_new },
.fuse = { 0x00000001, gm107_fuse_new },
.gpio = { 0x00000001, gk104_gpio_new },
.gsp = { 0x00000001, gv100_gsp_new },
.i2c = { 0x00000001, gm200_i2c_new },
.imem = { 0x00000001, nv50_instmem_new },
.ltc = { 0x00000001, gp102_ltc_new },
- .mc = { 0x00000001, tu102_mc_new },
+ .mc = { 0x00000001, gp100_mc_new },
.mmu = { 0x00000001, tu102_mmu_new },
.pci = { 0x00000001, gp100_pci_new },
.pmu = { 0x00000001, gp102_pmu_new },
@@ -2419,6 +2420,7 @@ nv162_chipset = {
.therm = { 0x00000001, gp100_therm_new },
.timer = { 0x00000001, gk20a_timer_new },
.top = { 0x00000001, gk104_top_new },
+ .vfn = { 0x00000001, tu102_vfn_new },
.ce = { 0x0000001f, tu102_ce_new },
.disp = { 0x00000001, tu102_disp_new },
.dma = { 0x00000001, gv100_dma_new },
@@ -2438,14 +2440,14 @@ nv164_chipset = {
.bus = { 0x00000001, gf100_bus_new },
.devinit = { 0x00000001, tu102_devinit_new },
.fault = { 0x00000001, tu102_fault_new },
- .fb = { 0x00000001, gv100_fb_new },
+ .fb = { 0x00000001, tu102_fb_new },
.fuse = { 0x00000001, gm107_fuse_new },
.gpio = { 0x00000001, gk104_gpio_new },
.gsp = { 0x00000001, gv100_gsp_new },
.i2c = { 0x00000001, gm200_i2c_new },
.imem = { 0x00000001, nv50_instmem_new },
.ltc = { 0x00000001, gp102_ltc_new },
- .mc = { 0x00000001, tu102_mc_new },
+ .mc = { 0x00000001, gp100_mc_new },
.mmu = { 0x00000001, tu102_mmu_new },
.pci = { 0x00000001, gp100_pci_new },
.pmu = { 0x00000001, gp102_pmu_new },
@@ -2453,6 +2455,7 @@ nv164_chipset = {
.therm = { 0x00000001, gp100_therm_new },
.timer = { 0x00000001, gk20a_timer_new },
.top = { 0x00000001, gk104_top_new },
+ .vfn = { 0x00000001, tu102_vfn_new },
.ce = { 0x0000001f, tu102_ce_new },
.disp = { 0x00000001, tu102_disp_new },
.dma = { 0x00000001, gv100_dma_new },
@@ -2472,14 +2475,14 @@ nv166_chipset = {
.bus = { 0x00000001, gf100_bus_new },
.devinit = { 0x00000001, tu102_devinit_new },
.fault = { 0x00000001, tu102_fault_new },
- .fb = { 0x00000001, gv100_fb_new },
+ .fb = { 0x00000001, tu102_fb_new },
.fuse = { 0x00000001, gm107_fuse_new },
.gpio = { 0x00000001, gk104_gpio_new },
.gsp = { 0x00000001, gv100_gsp_new },
.i2c = { 0x00000001, gm200_i2c_new },
.imem = { 0x00000001, nv50_instmem_new },
.ltc = { 0x00000001, gp102_ltc_new },
- .mc = { 0x00000001, tu102_mc_new },
+ .mc = { 0x00000001, gp100_mc_new },
.mmu = { 0x00000001, tu102_mmu_new },
.pci = { 0x00000001, gp100_pci_new },
.pmu = { 0x00000001, gp102_pmu_new },
@@ -2487,6 +2490,7 @@ nv166_chipset = {
.therm = { 0x00000001, gp100_therm_new },
.timer = { 0x00000001, gk20a_timer_new },
.top = { 0x00000001, gk104_top_new },
+ .vfn = { 0x00000001, tu102_vfn_new },
.ce = { 0x0000001f, tu102_ce_new },
.disp = { 0x00000001, tu102_disp_new },
.dma = { 0x00000001, gv100_dma_new },
@@ -2506,14 +2510,14 @@ nv167_chipset = {
.bus = { 0x00000001, gf100_bus_new },
.devinit = { 0x00000001, tu102_devinit_new },
.fault = { 0x00000001, tu102_fault_new },
- .fb = { 0x00000001, gv100_fb_new },
+ .fb = { 0x00000001, tu102_fb_new },
.fuse = { 0x00000001, gm107_fuse_new },
.gpio = { 0x00000001, gk104_gpio_new },
.gsp = { 0x00000001, gv100_gsp_new },
.i2c = { 0x00000001, gm200_i2c_new },
.imem = { 0x00000001, nv50_instmem_new },
.ltc = { 0x00000001, gp102_ltc_new },
- .mc = { 0x00000001, tu102_mc_new },
+ .mc = { 0x00000001, gp100_mc_new },
.mmu = { 0x00000001, tu102_mmu_new },
.pci = { 0x00000001, gp100_pci_new },
.pmu = { 0x00000001, gp102_pmu_new },
@@ -2521,6 +2525,7 @@ nv167_chipset = {
.therm = { 0x00000001, gp100_therm_new },
.timer = { 0x00000001, gk20a_timer_new },
.top = { 0x00000001, gk104_top_new },
+ .vfn = { 0x00000001, tu102_vfn_new },
.ce = { 0x0000001f, tu102_ce_new },
.disp = { 0x00000001, tu102_disp_new },
.dma = { 0x00000001, gv100_dma_new },
@@ -2540,14 +2545,14 @@ nv168_chipset = {
.bus = { 0x00000001, gf100_bus_new },
.devinit = { 0x00000001, tu102_devinit_new },
.fault = { 0x00000001, tu102_fault_new },
- .fb = { 0x00000001, gv100_fb_new },
+ .fb = { 0x00000001, tu102_fb_new },
.fuse = { 0x00000001, gm107_fuse_new },
.gpio = { 0x00000001, gk104_gpio_new },
.gsp = { 0x00000001, gv100_gsp_new },
.i2c = { 0x00000001, gm200_i2c_new },
.imem = { 0x00000001, nv50_instmem_new },
.ltc = { 0x00000001, gp102_ltc_new },
- .mc = { 0x00000001, tu102_mc_new },
+ .mc = { 0x00000001, gp100_mc_new },
.mmu = { 0x00000001, tu102_mmu_new },
.pci = { 0x00000001, gp100_pci_new },
.pmu = { 0x00000001, gp102_pmu_new },
@@ -2555,6 +2560,7 @@ nv168_chipset = {
.therm = { 0x00000001, gp100_therm_new },
.timer = { 0x00000001, gk20a_timer_new },
.top = { 0x00000001, gk104_top_new },
+ .vfn = { 0x00000001, tu102_vfn_new },
.ce = { 0x0000001f, tu102_ce_new },
.disp = { 0x00000001, tu102_disp_new },
.dma = { 0x00000001, gv100_dma_new },
@@ -2571,6 +2577,7 @@ nv170_chipset = {
.bar = { 0x00000001, tu102_bar_new },
.bios = { 0x00000001, nvkm_bios_new },
.devinit = { 0x00000001, ga100_devinit_new },
+ .fault = { 0x00000001, tu102_fault_new },
.fb = { 0x00000001, ga100_fb_new },
.gpio = { 0x00000001, gk104_gpio_new },
.i2c = { 0x00000001, gm200_i2c_new },
@@ -2581,111 +2588,159 @@ nv170_chipset = {
.privring = { 0x00000001, gm200_privring_new },
.timer = { 0x00000001, gk20a_timer_new },
.top = { 0x00000001, ga100_top_new },
+ .vfn = { 0x00000001, ga100_vfn_new },
+ .ce = { 0x000003ff, ga100_ce_new },
+ .fifo = { 0x00000001, ga100_fifo_new },
};
static const struct nvkm_device_chip
nv172_chipset = {
.name = "GA102",
+ .acr = { 0x00000001, ga102_acr_new },
.bar = { 0x00000001, tu102_bar_new },
.bios = { 0x00000001, nvkm_bios_new },
.devinit = { 0x00000001, ga100_devinit_new },
+ .fault = { 0x00000001, tu102_fault_new },
.fb = { 0x00000001, ga102_fb_new },
.gpio = { 0x00000001, ga102_gpio_new },
+ .gsp = { 0x00000001, ga102_gsp_new },
.i2c = { 0x00000001, gm200_i2c_new },
.imem = { 0x00000001, nv50_instmem_new },
+ .ltc = { 0x00000001, ga102_ltc_new },
.mc = { 0x00000001, ga100_mc_new },
.mmu = { 0x00000001, tu102_mmu_new },
.pci = { 0x00000001, gp100_pci_new },
.privring = { 0x00000001, gm200_privring_new },
.timer = { 0x00000001, gk20a_timer_new },
.top = { 0x00000001, ga100_top_new },
+ .vfn = { 0x00000001, ga100_vfn_new },
+ .ce = { 0x0000001f, ga102_ce_new },
.disp = { 0x00000001, ga102_disp_new },
.dma = { 0x00000001, gv100_dma_new },
.fifo = { 0x00000001, ga102_fifo_new },
+ .gr = { 0x00000001, ga102_gr_new },
+ .nvdec = { 0x00000001, ga102_nvdec_new },
+ .sec2 = { 0x00000001, ga102_sec2_new },
};
static const struct nvkm_device_chip
nv173_chipset = {
.name = "GA103",
+ .acr = { 0x00000001, ga102_acr_new },
.bar = { 0x00000001, tu102_bar_new },
.bios = { 0x00000001, nvkm_bios_new },
.devinit = { 0x00000001, ga100_devinit_new },
+ .fault = { 0x00000001, tu102_fault_new },
.fb = { 0x00000001, ga102_fb_new },
.gpio = { 0x00000001, ga102_gpio_new },
+ .gsp = { 0x00000001, ga102_gsp_new },
.i2c = { 0x00000001, gm200_i2c_new },
.imem = { 0x00000001, nv50_instmem_new },
+ .ltc = { 0x00000001, ga102_ltc_new },
.mc = { 0x00000001, ga100_mc_new },
.mmu = { 0x00000001, tu102_mmu_new },
.pci = { 0x00000001, gp100_pci_new },
.privring = { 0x00000001, gm200_privring_new },
.timer = { 0x00000001, gk20a_timer_new },
.top = { 0x00000001, ga100_top_new },
+ .vfn = { 0x00000001, ga100_vfn_new },
+ .ce = { 0x0000001f, ga102_ce_new },
.disp = { 0x00000001, ga102_disp_new },
.dma = { 0x00000001, gv100_dma_new },
.fifo = { 0x00000001, ga102_fifo_new },
+ .gr = { 0x00000001, ga102_gr_new },
+ .nvdec = { 0x00000001, ga102_nvdec_new },
+ .sec2 = { 0x00000001, ga102_sec2_new },
};
static const struct nvkm_device_chip
nv174_chipset = {
.name = "GA104",
+ .acr = { 0x00000001, ga102_acr_new },
.bar = { 0x00000001, tu102_bar_new },
.bios = { 0x00000001, nvkm_bios_new },
.devinit = { 0x00000001, ga100_devinit_new },
+ .fault = { 0x00000001, tu102_fault_new },
.fb = { 0x00000001, ga102_fb_new },
.gpio = { 0x00000001, ga102_gpio_new },
+ .gsp = { 0x00000001, ga102_gsp_new },
.i2c = { 0x00000001, gm200_i2c_new },
.imem = { 0x00000001, nv50_instmem_new },
+ .ltc = { 0x00000001, ga102_ltc_new },
.mc = { 0x00000001, ga100_mc_new },
.mmu = { 0x00000001, tu102_mmu_new },
.pci = { 0x00000001, gp100_pci_new },
.privring = { 0x00000001, gm200_privring_new },
.timer = { 0x00000001, gk20a_timer_new },
.top = { 0x00000001, ga100_top_new },
+ .vfn = { 0x00000001, ga100_vfn_new },
+ .ce = { 0x0000001f, ga102_ce_new },
.disp = { 0x00000001, ga102_disp_new },
.dma = { 0x00000001, gv100_dma_new },
.fifo = { 0x00000001, ga102_fifo_new },
+ .gr = { 0x00000001, ga102_gr_new },
+ .nvdec = { 0x00000001, ga102_nvdec_new },
+ .sec2 = { 0x00000001, ga102_sec2_new },
};
static const struct nvkm_device_chip
nv176_chipset = {
.name = "GA106",
+ .acr = { 0x00000001, ga102_acr_new },
.bar = { 0x00000001, tu102_bar_new },
.bios = { 0x00000001, nvkm_bios_new },
.devinit = { 0x00000001, ga100_devinit_new },
+ .fault = { 0x00000001, tu102_fault_new },
.fb = { 0x00000001, ga102_fb_new },
.gpio = { 0x00000001, ga102_gpio_new },
+ .gsp = { 0x00000001, ga102_gsp_new },
.i2c = { 0x00000001, gm200_i2c_new },
.imem = { 0x00000001, nv50_instmem_new },
+ .ltc = { 0x00000001, ga102_ltc_new },
.mc = { 0x00000001, ga100_mc_new },
.mmu = { 0x00000001, tu102_mmu_new },
.pci = { 0x00000001, gp100_pci_new },
.privring = { 0x00000001, gm200_privring_new },
.timer = { 0x00000001, gk20a_timer_new },
.top = { 0x00000001, ga100_top_new },
+ .vfn = { 0x00000001, ga100_vfn_new },
+ .ce = { 0x0000001f, ga102_ce_new },
.disp = { 0x00000001, ga102_disp_new },
.dma = { 0x00000001, gv100_dma_new },
.fifo = { 0x00000001, ga102_fifo_new },
+ .gr = { 0x00000001, ga102_gr_new },
+ .nvdec = { 0x00000001, ga102_nvdec_new },
+ .sec2 = { 0x00000001, ga102_sec2_new },
};
static const struct nvkm_device_chip
nv177_chipset = {
.name = "GA107",
+ .acr = { 0x00000001, ga102_acr_new },
.bar = { 0x00000001, tu102_bar_new },
.bios = { 0x00000001, nvkm_bios_new },
.devinit = { 0x00000001, ga100_devinit_new },
+ .fault = { 0x00000001, tu102_fault_new },
.fb = { 0x00000001, ga102_fb_new },
.gpio = { 0x00000001, ga102_gpio_new },
+ .gsp = { 0x00000001, ga102_gsp_new },
.i2c = { 0x00000001, gm200_i2c_new },
.imem = { 0x00000001, nv50_instmem_new },
+ .ltc = { 0x00000001, ga102_ltc_new },
.mc = { 0x00000001, ga100_mc_new },
.mmu = { 0x00000001, tu102_mmu_new },
.pci = { 0x00000001, gp100_pci_new },
.privring = { 0x00000001, gm200_privring_new },
.timer = { 0x00000001, gk20a_timer_new },
.top = { 0x00000001, ga100_top_new },
+ .vfn = { 0x00000001, ga100_vfn_new },
+ .ce = { 0x0000001f, ga102_ce_new },
.disp = { 0x00000001, ga102_disp_new },
.dma = { 0x00000001, gv100_dma_new },
.fifo = { 0x00000001, ga102_fifo_new },
+ .gr = { 0x00000001, ga102_gr_new },
+ .nvdec = { 0x00000001, ga102_nvdec_new },
+ .sec2 = { 0x00000001, ga102_sec2_new },
};
struct nvkm_subdev *
@@ -2734,6 +2789,8 @@ nvkm_device_fini(struct nvkm_device *device, bool suspend)
if (device->func->fini)
device->func->fini(device, suspend);
+ nvkm_intr_unarm(device);
+
time = ktime_to_us(ktime_get()) - time;
nvdev_trace(device, "%s completed in %lldus...\n", action, time);
return 0;
@@ -2759,6 +2816,8 @@ nvkm_device_preinit(struct nvkm_device *device)
nvdev_trace(device, "preinit running...\n");
time = ktime_to_us(ktime_get());
+ nvkm_intr_unarm(device);
+
if (device->func->preinit) {
ret = device->func->preinit(device);
if (ret)
@@ -2775,6 +2834,14 @@ nvkm_device_preinit(struct nvkm_device *device)
if (ret)
goto fail;
+ ret = nvkm_top_parse(device);
+ if (ret)
+ goto fail;
+
+ ret = nvkm_fb_mem_unlock(device->fb);
+ if (ret)
+ goto fail;
+
time = ktime_to_us(ktime_get()) - time;
nvdev_trace(device, "preinit completed in %lldus\n", time);
return 0;
@@ -2800,6 +2867,8 @@ nvkm_device_init(struct nvkm_device *device)
nvdev_trace(device, "init running...\n");
time = ktime_to_us(ktime_get());
+ nvkm_intr_rearm(device);
+
if (device->func->init) {
ret = device->func->init(device);
if (ret)
@@ -2837,6 +2906,8 @@ nvkm_device_del(struct nvkm_device **pdevice)
if (device) {
mutex_lock(&nv_devices_mutex);
+ nvkm_intr_dtor(device);
+
list_for_each_entry_safe_reverse(subdev, subtmp, &device->subdev, head)
nvkm_subdev_del(&subdev);
@@ -3144,6 +3215,7 @@ nvkm_device_ctor(const struct nvkm_device_func *func,
device->name = device->chip->name;
mutex_init(&device->mutex);
+ nvkm_intr_ctor(device);
#define NVKM_LAYOUT_ONCE(type,data,ptr) \
if (device->chip->ptr.inst && (subdev_mask & (BIT_ULL(type)))) { \
@@ -3185,7 +3257,7 @@ nvkm_device_ctor(const struct nvkm_device_func *func,
#undef NVKM_LAYOUT_INST
#undef NVKM_LAYOUT_ONCE
- ret = 0;
+ ret = nvkm_intr_install(device);
done:
if (device->pri && (!mmio || ret)) {
iounmap(device->pri);
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/device/pci.c b/drivers/gpu/drm/nouveau/nvkm/engine/device/pci.c
index f302d2b5782a..abccb2bb68a6 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/device/pci.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/device/pci.c
@@ -1574,6 +1574,12 @@ nvkm_device_pci_resource_size(struct nvkm_device *device, unsigned bar)
return pci_resource_len(pdev->pdev, bar);
}
+static int
+nvkm_device_pci_irq(struct nvkm_device *device)
+{
+ return nvkm_device_pci(device)->pdev->irq;
+}
+
static void
nvkm_device_pci_fini(struct nvkm_device *device, bool suspend)
{
@@ -1612,6 +1618,7 @@ nvkm_device_pci_func = {
.dtor = nvkm_device_pci_dtor,
.preinit = nvkm_device_pci_preinit,
.fini = nvkm_device_pci_fini,
+ .irq = nvkm_device_pci_irq,
.resource_addr = nvkm_device_pci_resource_addr,
.resource_size = nvkm_device_pci_resource_size,
.cpu_coherent = !IS_ENABLED(CONFIG_ARM),
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/device/priv.h b/drivers/gpu/drm/nouveau/nvkm/engine/device/priv.h
index 93949b3c7214..24faaac15891 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/device/priv.h
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/device/priv.h
@@ -27,6 +27,7 @@
#include <subdev/therm.h>
#include <subdev/timer.h>
#include <subdev/top.h>
+#include <subdev/vfn.h>
#include <subdev/volt.h>
#include <engine/bsp.h>
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/device/tegra.c b/drivers/gpu/drm/nouveau/nvkm/engine/device/tegra.c
index ac9e122586bc..87caa4a72921 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/device/tegra.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/device/tegra.c
@@ -206,45 +206,12 @@ nvkm_device_tegra_resource_size(struct nvkm_device *device, unsigned bar)
return res ? resource_size(res) : 0;
}
-static irqreturn_t
-nvkm_device_tegra_intr(int irq, void *arg)
-{
- struct nvkm_device_tegra *tdev = arg;
- struct nvkm_device *device = &tdev->device;
- bool handled = false;
- nvkm_mc_intr_unarm(device);
- nvkm_mc_intr(device, &handled);
- nvkm_mc_intr_rearm(device);
- return handled ? IRQ_HANDLED : IRQ_NONE;
-}
-
-static void
-nvkm_device_tegra_fini(struct nvkm_device *device, bool suspend)
-{
- struct nvkm_device_tegra *tdev = nvkm_device_tegra(device);
- if (tdev->irq) {
- free_irq(tdev->irq, tdev);
- tdev->irq = 0;
- }
-}
-
static int
-nvkm_device_tegra_init(struct nvkm_device *device)
+nvkm_device_tegra_irq(struct nvkm_device *device)
{
struct nvkm_device_tegra *tdev = nvkm_device_tegra(device);
- int irq, ret;
-
- irq = platform_get_irq_byname(tdev->pdev, "stall");
- if (irq < 0)
- return irq;
- ret = request_irq(irq, nvkm_device_tegra_intr,
- IRQF_SHARED, "nvkm", tdev);
- if (ret)
- return ret;
-
- tdev->irq = irq;
- return 0;
+ return platform_get_irq_byname(tdev->pdev, "stall");
}
static void *
@@ -260,8 +227,7 @@ static const struct nvkm_device_func
nvkm_device_tegra_func = {
.tegra = nvkm_device_tegra,
.dtor = nvkm_device_tegra_dtor,
- .init = nvkm_device_tegra_init,
- .fini = nvkm_device_tegra_fini,
+ .irq = nvkm_device_tegra_irq,
.resource_addr = nvkm_device_tegra_resource_addr,
.resource_size = nvkm_device_tegra_resource_size,
.cpu_coherent = false,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/device/user.c b/drivers/gpu/drm/nouveau/nvkm/engine/device/user.c
index 45f509c11c36..9b39ec341615 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/device/user.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/device/user.c
@@ -342,6 +342,8 @@ nvkm_udevice_child_get(struct nvkm_object *object, int index,
sclass = &device->mmu->user;
else if (device->fault && index-- == 0)
sclass = &device->fault->user;
+ else if (device->vfn && index-- == 0)
+ sclass = &device->vfn->user;
else
return -EINVAL;
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/disp/Kbuild b/drivers/gpu/drm/nouveau/nvkm/engine/disp/Kbuild
index 600072a904be..e1aecd3fe96c 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/disp/Kbuild
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/disp/Kbuild
@@ -28,9 +28,7 @@ nvkm-y += nvkm/engine/disp/gv100.o
nvkm-y += nvkm/engine/disp/tu102.o
nvkm-y += nvkm/engine/disp/ga102.o
-nvkm-y += nvkm/engine/disp/rootnv04.o
-nvkm-y += nvkm/engine/disp/rootnv50.o
-
nvkm-y += nvkm/engine/disp/udisp.o
nvkm-y += nvkm/engine/disp/uconn.o
nvkm-y += nvkm/engine/disp/uoutp.o
+nvkm-y += nvkm/engine/disp/uhead.o
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/disp/base.c b/drivers/gpu/drm/nouveau/nvkm/engine/disp/base.c
index 65c99d948b68..73104b59f97f 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/disp/base.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/disp/base.c
@@ -29,7 +29,6 @@
#include "outp.h"
#include <core/client.h>
-#include <core/notify.h>
#include <core/ramht.h>
#include <subdev/bios.h>
#include <subdev/bios/dcb.h>
@@ -57,32 +56,8 @@ nvkm_disp_vblank_init(struct nvkm_event *event, int type, int id)
head->func->vblank_get(head);
}
-static int
-nvkm_disp_vblank_ctor(struct nvkm_object *object, void *data, u32 size,
- struct nvkm_notify *notify)
-{
- struct nvkm_disp *disp =
- container_of(notify->event, typeof(*disp), vblank);
- union {
- struct nvif_notify_head_req_v0 v0;
- } *req = data;
- int ret = -ENOSYS;
-
- if (!(ret = nvif_unpack(ret, &data, &size, req->v0, 0, 0, false))) {
- notify->size = sizeof(struct nvif_notify_head_rep_v0);
- if (ret = -ENXIO, req->v0.head <= disp->vblank.index_nr) {
- notify->types = 1;
- notify->index = req->v0.head;
- return 0;
- }
- }
-
- return ret;
-}
-
static const struct nvkm_event_func
nvkm_disp_vblank_func = {
- .ctor = nvkm_disp_vblank_ctor,
.init = nvkm_disp_vblank_init,
.fini = nvkm_disp_vblank_fini,
};
@@ -90,59 +65,7 @@ nvkm_disp_vblank_func = {
void
nvkm_disp_vblank(struct nvkm_disp *disp, int head)
{
- struct nvif_notify_head_rep_v0 rep = {};
- nvkm_event_send(&disp->vblank, 1, head, &rep, sizeof(rep));
-}
-
-static int
-nvkm_disp_hpd_ctor(struct nvkm_object *object, void *data, u32 size,
- struct nvkm_notify *notify)
-{
- struct nvkm_disp *disp =
- container_of(notify->event, typeof(*disp), hpd);
- union {
- struct nvif_notify_conn_req_v0 v0;
- } *req = data;
- struct nvkm_outp *outp;
- int ret = -ENOSYS;
-
- if (!(ret = nvif_unpack(ret, &data, &size, req->v0, 0, 0, false))) {
- notify->size = sizeof(struct nvif_notify_conn_rep_v0);
- list_for_each_entry(outp, &disp->outps, head) {
- if (ret = -ENXIO, outp->conn->index == req->v0.conn) {
- if (ret = -ENODEV, outp->conn->hpd.event) {
- notify->types = req->v0.mask;
- notify->index = req->v0.conn;
- ret = 0;
- }
- break;
- }
- }
- }
-
- return ret;
-}
-
-static const struct nvkm_event_func
-nvkm_disp_hpd_func = {
- .ctor = nvkm_disp_hpd_ctor
-};
-
-int
-nvkm_disp_ntfy(struct nvkm_object *object, u32 type, struct nvkm_event **event)
-{
- struct nvkm_disp *disp = nvkm_disp(object->engine);
- switch (type) {
- case NV04_DISP_NTFY_VBLANK:
- *event = &disp->vblank;
- return 0;
- case NV04_DISP_NTFY_CONN:
- *event = &disp->hpd;
- return 0;
- default:
- break;
- }
- return -EINVAL;
+ nvkm_event_ntfy(&disp->vblank, head, NVKM_DISP_HEAD_EVENT_VBLANK);
}
static int
@@ -343,9 +266,7 @@ nvkm_disp_oneinit(struct nvkm_engine *engine)
/* Apparently we need to create a new one! */
ret = nvkm_conn_new(disp, i, &connE, &outp->conn);
if (ret) {
- nvkm_error(&disp->engine.subdev,
- "failed to create outp %d conn: %d\n",
- outp->index, ret);
+ nvkm_error(subdev, "failed to create outp %d conn: %d\n", outp->index, ret);
nvkm_conn_del(&outp->conn);
list_del(&outp->head);
nvkm_outp_del(&outp);
@@ -355,10 +276,6 @@ nvkm_disp_oneinit(struct nvkm_engine *engine)
list_add_tail(&outp->conn->head, &disp->conns);
}
- ret = nvkm_event_init(&nvkm_disp_hpd_func, 3, hpd, &disp->hpd);
- if (ret)
- return ret;
-
if (disp->func->oneinit) {
ret = disp->func->oneinit(disp);
if (ret)
@@ -382,7 +299,7 @@ nvkm_disp_oneinit(struct nvkm_engine *engine)
list_for_each_entry(head, &disp->heads, head)
i = max(i, head->id + 1);
- return nvkm_event_init(&nvkm_disp_vblank_func, 1, i, &disp->vblank);
+ return nvkm_event_init(&nvkm_disp_vblank_func, subdev, 1, i, &disp->vblank);
}
static void *
@@ -406,7 +323,6 @@ nvkm_disp_dtor(struct nvkm_engine *engine)
}
nvkm_event_fini(&disp->vblank);
- nvkm_event_fini(&disp->hpd);
while (!list_empty(&disp->conns)) {
conn = list_first_entry(&disp->conns, typeof(*conn), head);
@@ -473,5 +389,6 @@ nvkm_disp_new_(const struct nvkm_disp_func *func, struct nvkm_device *device,
mutex_init(&disp->super.mutex);
}
- return nvkm_event_init(func->uevent, 1, ARRAY_SIZE(disp->chan), &disp->uevent);
+ return nvkm_event_init(func->uevent, &disp->engine.subdev, 1, ARRAY_SIZE(disp->chan),
+ &disp->uevent);
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/disp/conn.c b/drivers/gpu/drm/nouveau/nvkm/engine/disp/conn.c
index 7ed11801a3ae..fbdae1137864 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/disp/conn.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/disp/conn.c
@@ -29,38 +29,14 @@
#include <nvif/event.h>
-static int
-nvkm_conn_hpd(struct nvkm_notify *notify)
-{
- struct nvkm_conn *conn = container_of(notify, typeof(*conn), hpd);
- struct nvkm_disp *disp = conn->disp;
- struct nvkm_gpio *gpio = disp->engine.subdev.device->gpio;
- const struct nvkm_gpio_ntfy_rep *line = notify->data;
- struct nvif_notify_conn_rep_v0 rep;
- int index = conn->index;
-
- CONN_DBG(conn, "HPD: %d", line->mask);
-
- if (!nvkm_gpio_get(gpio, 0, DCB_GPIO_UNUSED, conn->hpd.index))
- rep.mask = NVIF_NOTIFY_CONN_V0_UNPLUG;
- else
- rep.mask = NVIF_NOTIFY_CONN_V0_PLUG;
- rep.version = 0;
-
- nvkm_event_send(&disp->hpd, rep.mask, index, &rep, sizeof(rep));
- return NVKM_NOTIFY_KEEP;
-}
-
void
nvkm_conn_fini(struct nvkm_conn *conn)
{
- nvkm_notify_put(&conn->hpd);
}
void
nvkm_conn_init(struct nvkm_conn *conn)
{
- nvkm_notify_get(&conn->hpd);
}
void
@@ -68,7 +44,6 @@ nvkm_conn_del(struct nvkm_conn **pconn)
{
struct nvkm_conn *conn = *pconn;
if (conn) {
- nvkm_notify_fini(&conn->hpd);
kfree(*pconn);
*pconn = NULL;
}
@@ -106,20 +81,6 @@ nvkm_conn_ctor(struct nvkm_disp *disp, int index, struct nvbios_connE *info,
}
conn->info.hpd = func.line;
-
- ret = nvkm_notify_init(NULL, &gpio->event, nvkm_conn_hpd,
- true, &(struct nvkm_gpio_ntfy_req) {
- .mask = NVKM_GPIO_TOGGLED,
- .line = func.line,
- },
- sizeof(struct nvkm_gpio_ntfy_req),
- sizeof(struct nvkm_gpio_ntfy_rep),
- &conn->hpd);
- if (ret) {
- CONN_ERR(conn, "func %02x failed, %d", info->hpd, ret);
- } else {
- CONN_DBG(conn, "func %02x (HPD)", info->hpd);
- }
}
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/disp/conn.h b/drivers/gpu/drm/nouveau/nvkm/engine/disp/conn.h
index f109634ce5ca..a0600e72b0ec 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/disp/conn.h
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/disp/conn.h
@@ -3,7 +3,6 @@
#define __NVKM_DISP_CONN_H__
#include "priv.h"
-#include <core/notify.h>
#include <subdev/bios.h>
#include <subdev/bios/conn.h>
@@ -12,8 +11,6 @@ struct nvkm_conn {
int index;
struct nvbios_connE info;
- struct nvkm_notify hpd;
-
struct list_head head;
struct nvkm_object object;
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/disp/dp.c b/drivers/gpu/drm/nouveau/nvkm/engine/disp/dp.c
index c1b3206f27e6..40c8ea43c42f 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/disp/dp.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/disp/dp.c
@@ -274,70 +274,17 @@ nvkm_dp_train_cr(struct lt_state *lt)
}
static int
-nvkm_dp_train_links(struct nvkm_outp *outp, int rate)
+nvkm_dp_train_link(struct nvkm_outp *outp, int rate)
{
struct nvkm_ior *ior = outp->ior;
- struct nvkm_disp *disp = outp->disp;
- struct nvkm_subdev *subdev = &disp->engine.subdev;
- struct nvkm_bios *bios = subdev->device->bios;
struct lt_state lt = {
.outp = outp,
+ .pc2 = outp->dp.dpcd[DPCD_RC02] & DPCD_RC02_TPS3_SUPPORTED,
};
- u32 lnkcmp;
u8 sink[2], data;
int ret;
- OUTP_DBG(outp, "training %d x %d MB/s", ior->dp.nr, ior->dp.bw * 27);
-
- /* Intersect misc. capabilities of the OR and sink. */
- if (disp->engine.subdev.device->chipset < 0x110)
- outp->dp.dpcd[DPCD_RC03] &= ~DPCD_RC03_TPS4_SUPPORTED;
- if (disp->engine.subdev.device->chipset < 0xd0)
- outp->dp.dpcd[DPCD_RC02] &= ~DPCD_RC02_TPS3_SUPPORTED;
- lt.pc2 = outp->dp.dpcd[DPCD_RC02] & DPCD_RC02_TPS3_SUPPORTED;
-
- if (AMPERE_IED_HACK(disp) && (lnkcmp = lt.outp->dp.info.script[0])) {
- /* Execute BeforeLinkTraining script from DP Info table. */
- while (ior->dp.bw < nvbios_rd08(bios, lnkcmp))
- lnkcmp += 3;
- lnkcmp = nvbios_rd16(bios, lnkcmp + 1);
-
- nvbios_init(&outp->disp->engine.subdev, lnkcmp,
- init.outp = &outp->info;
- init.or = ior->id;
- init.link = ior->asy.link;
- );
- }
-
- /* Set desired link configuration on the source. */
- if ((lnkcmp = lt.outp->dp.info.lnkcmp)) {
- if (outp->dp.version < 0x30) {
- while ((ior->dp.bw * 2700) < nvbios_rd16(bios, lnkcmp))
- lnkcmp += 4;
- lnkcmp = nvbios_rd16(bios, lnkcmp + 2);
- } else {
- while (ior->dp.bw < nvbios_rd08(bios, lnkcmp))
- lnkcmp += 3;
- lnkcmp = nvbios_rd16(bios, lnkcmp + 1);
- }
-
- nvbios_init(subdev, lnkcmp,
- init.outp = &outp->info;
- init.or = ior->id;
- init.link = ior->asy.link;
- );
- }
-
- ret = ior->func->dp->links(ior, outp->dp.aux);
- if (ret) {
- if (ret < 0) {
- OUTP_ERR(outp, "train failed with %d", ret);
- return ret;
- }
- return 0;
- }
-
- ior->func->dp->power(ior, ior->dp.nr);
+ OUTP_DBG(outp, "training %dx%02x", ior->dp.nr, ior->dp.bw);
/* Select LTTPR non-transparent mode if we have a valid configuration,
* use transparent mode otherwise.
@@ -393,6 +340,71 @@ nvkm_dp_train_links(struct nvkm_outp *outp, int rate)
return ret;
}
+static int
+nvkm_dp_train_links(struct nvkm_outp *outp, int rate)
+{
+ struct nvkm_ior *ior = outp->ior;
+ struct nvkm_disp *disp = outp->disp;
+ struct nvkm_subdev *subdev = &disp->engine.subdev;
+ struct nvkm_bios *bios = subdev->device->bios;
+ u32 lnkcmp;
+ int ret;
+
+ OUTP_DBG(outp, "programming link for %dx%02x", ior->dp.nr, ior->dp.bw);
+
+ /* Intersect misc. capabilities of the OR and sink. */
+ if (disp->engine.subdev.device->chipset < 0x110)
+ outp->dp.dpcd[DPCD_RC03] &= ~DPCD_RC03_TPS4_SUPPORTED;
+ if (disp->engine.subdev.device->chipset < 0xd0)
+ outp->dp.dpcd[DPCD_RC02] &= ~DPCD_RC02_TPS3_SUPPORTED;
+
+ if (AMPERE_IED_HACK(disp) && (lnkcmp = outp->dp.info.script[0])) {
+ /* Execute BeforeLinkTraining script from DP Info table. */
+ while (ior->dp.bw < nvbios_rd08(bios, lnkcmp))
+ lnkcmp += 3;
+ lnkcmp = nvbios_rd16(bios, lnkcmp + 1);
+
+ nvbios_init(&outp->disp->engine.subdev, lnkcmp,
+ init.outp = &outp->info;
+ init.or = ior->id;
+ init.link = ior->asy.link;
+ );
+ }
+
+ /* Set desired link configuration on the source. */
+ if ((lnkcmp = outp->dp.info.lnkcmp)) {
+ if (outp->dp.version < 0x30) {
+ while ((ior->dp.bw * 2700) < nvbios_rd16(bios, lnkcmp))
+ lnkcmp += 4;
+ lnkcmp = nvbios_rd16(bios, lnkcmp + 2);
+ } else {
+ while (ior->dp.bw < nvbios_rd08(bios, lnkcmp))
+ lnkcmp += 3;
+ lnkcmp = nvbios_rd16(bios, lnkcmp + 1);
+ }
+
+ nvbios_init(subdev, lnkcmp,
+ init.outp = &outp->info;
+ init.or = ior->id;
+ init.link = ior->asy.link;
+ );
+ }
+
+ ret = ior->func->dp->links(ior, outp->dp.aux);
+ if (ret) {
+ if (ret < 0) {
+ OUTP_ERR(outp, "train failed with %d", ret);
+ return ret;
+ }
+ return 0;
+ }
+
+ ior->func->dp->power(ior, ior->dp.nr);
+
+ /* Attempt to train the link in this configuration. */
+ return nvkm_dp_train_link(outp, rate);
+}
+
static void
nvkm_dp_train_fini(struct nvkm_outp *outp)
{
@@ -439,6 +451,16 @@ nvkm_dp_train(struct nvkm_outp *outp, u32 dataKBps)
int ret = -EINVAL, nr, rate;
u8 pwr;
+ /* Retraining link? Skip source configuration, it can mess up the active modeset. */
+ if (atomic_read(&outp->dp.lt.done)) {
+ for (rate = 0; rate < outp->dp.rates; rate++) {
+ if (outp->dp.rate[rate].rate == ior->dp.bw * 27000)
+ return nvkm_dp_train_link(outp, ret);
+ }
+ WARN_ON(1);
+ return -EINVAL;
+ }
+
/* Ensure sink is not in a low-power state. */
if (!nvkm_rdaux(outp->dp.aux, DPCD_SC00, &pwr, 1)) {
if ((pwr & DPCD_SC00_SET_POWER) != DPCD_SC00_SET_POWER_D0) {
@@ -455,6 +477,21 @@ nvkm_dp_train(struct nvkm_outp *outp, u32 dataKBps)
/* Link training. */
OUTP_DBG(outp, "training");
nvkm_dp_train_init(outp);
+
+ /* Validate and train at configuration requested (if any) on ACQUIRE. */
+ if (outp->dp.lt.nr) {
+ for (nr = outp->dp.links; ret < 0 && nr; nr >>= 1) {
+ for (rate = 0; nr == outp->dp.lt.nr && rate < outp->dp.rates; rate++) {
+ if (outp->dp.rate[rate].rate / 27000 == outp->dp.lt.bw) {
+ ior->dp.bw = outp->dp.rate[rate].rate / 27000;
+ ior->dp.nr = nr;
+ ret = nvkm_dp_train_links(outp, rate);
+ }
+ }
+ }
+ }
+
+ /* Otherwise, loop through all valid link configurations that support the data rate. */
for (nr = outp->dp.links; ret < 0 && nr; nr >>= 1) {
for (rate = 0; ret < 0 && rate < outp->dp.rates; rate++) {
if (outp->dp.rate[rate].rate * nr >= dataKBps || WARN_ON(!ior->dp.nr)) {
@@ -465,6 +502,8 @@ nvkm_dp_train(struct nvkm_outp *outp, u32 dataKBps)
}
}
}
+
+ /* Finish up. */
nvkm_dp_train_fini(outp);
if (ret < 0)
OUTP_ERR(outp, "training failed");
@@ -595,18 +634,38 @@ nvkm_dp_enable_supported_link_rates(struct nvkm_outp *outp)
return outp->dp.rates != 0;
}
-static bool
-nvkm_dp_enable(struct nvkm_outp *outp, bool enable)
+void
+nvkm_dp_enable(struct nvkm_outp *outp, bool auxpwr)
{
+ struct nvkm_gpio *gpio = outp->disp->engine.subdev.device->gpio;
struct nvkm_i2c_aux *aux = outp->dp.aux;
- if (enable) {
- if (!outp->dp.present) {
- OUTP_DBG(outp, "aux power -> always");
- nvkm_i2c_aux_monitor(aux, true);
- outp->dp.present = true;
+ if (auxpwr && !outp->dp.aux_pwr) {
+ /* eDP panels need powering on by us (if the VBIOS doesn't default it
+ * to on) before doing any AUX channel transactions. LVDS panel power
+ * is handled by the SOR itself, and not required for LVDS DDC.
+ */
+ if (outp->conn->info.type == DCB_CONNECTOR_eDP) {
+ int power = nvkm_gpio_get(gpio, 0, DCB_GPIO_PANEL_POWER, 0xff);
+ if (power == 0) {
+ nvkm_gpio_set(gpio, 0, DCB_GPIO_PANEL_POWER, 0xff, 1);
+ outp->dp.aux_pwr_pu = true;
+ }
+
+ /* We delay here unconditionally, even if already powered,
+ * because some laptop panels having a significant resume
+ * delay before the panel begins responding.
+ *
+ * This is likely a bit of a hack, but no better idea for
+ * handling this at the moment.
+ */
+ msleep(300);
}
+ OUTP_DBG(outp, "aux power -> always");
+ nvkm_i2c_aux_monitor(aux, true);
+ outp->dp.aux_pwr = true;
+
/* Detect any LTTPRs before reading DPCD receiver caps. */
if (!nvkm_rdaux(aux, DPCD_LTTPR_REV, outp->dp.lttpr, sizeof(outp->dp.lttpr)) &&
outp->dp.lttpr[0] >= 0x14 && outp->dp.lttpr[2]) {
@@ -659,96 +718,41 @@ nvkm_dp_enable(struct nvkm_outp *outp, bool enable)
outp->dp.rates++;
}
}
-
- return true;
}
- }
-
- if (outp->dp.present) {
+ } else
+ if (!auxpwr && outp->dp.aux_pwr) {
OUTP_DBG(outp, "aux power -> demand");
nvkm_i2c_aux_monitor(aux, false);
- outp->dp.present = false;
- }
-
- atomic_set(&outp->dp.lt.done, 0);
- return false;
-}
-
-static int
-nvkm_dp_hpd(struct nvkm_notify *notify)
-{
- const struct nvkm_i2c_ntfy_rep *line = notify->data;
- struct nvkm_outp *outp = container_of(notify, typeof(*outp), dp.hpd);
- struct nvkm_conn *conn = outp->conn;
- struct nvkm_disp *disp = outp->disp;
- struct nvif_notify_conn_rep_v0 rep = {};
+ outp->dp.aux_pwr = false;
+ atomic_set(&outp->dp.lt.done, 0);
- OUTP_DBG(outp, "HPD: %d", line->mask);
- if (line->mask & NVKM_I2C_IRQ) {
- if (atomic_read(&outp->dp.lt.done))
- outp->func->acquire(outp);
- rep.mask |= NVIF_NOTIFY_CONN_V0_IRQ;
- } else {
- nvkm_dp_enable(outp, true);
+ /* Restore eDP panel GPIO to its prior state if we changed it, as
+ * it could potentially interfere with other outputs.
+ */
+ if (outp->conn->info.type == DCB_CONNECTOR_eDP) {
+ if (outp->dp.aux_pwr_pu) {
+ nvkm_gpio_set(gpio, 0, DCB_GPIO_PANEL_POWER, 0xff, 0);
+ outp->dp.aux_pwr_pu = false;
+ }
+ }
}
-
- if (line->mask & NVKM_I2C_UNPLUG)
- rep.mask |= NVIF_NOTIFY_CONN_V0_UNPLUG;
- if (line->mask & NVKM_I2C_PLUG)
- rep.mask |= NVIF_NOTIFY_CONN_V0_PLUG;
-
- nvkm_event_send(&disp->hpd, rep.mask, conn->index, &rep, sizeof(rep));
- return NVKM_NOTIFY_KEEP;
}
static void
nvkm_dp_fini(struct nvkm_outp *outp)
{
- nvkm_notify_put(&outp->dp.hpd);
nvkm_dp_enable(outp, false);
}
static void
nvkm_dp_init(struct nvkm_outp *outp)
{
- struct nvkm_gpio *gpio = outp->disp->engine.subdev.device->gpio;
-
- nvkm_notify_put(&outp->conn->hpd);
-
- /* eDP panels need powering on by us (if the VBIOS doesn't default it
- * to on) before doing any AUX channel transactions. LVDS panel power
- * is handled by the SOR itself, and not required for LVDS DDC.
- */
- if (outp->conn->info.type == DCB_CONNECTOR_eDP) {
- int power = nvkm_gpio_get(gpio, 0, DCB_GPIO_PANEL_POWER, 0xff);
- if (power == 0)
- nvkm_gpio_set(gpio, 0, DCB_GPIO_PANEL_POWER, 0xff, 1);
-
- /* We delay here unconditionally, even if already powered,
- * because some laptop panels having a significant resume
- * delay before the panel begins responding.
- *
- * This is likely a bit of a hack, but no better idea for
- * handling this at the moment.
- */
- msleep(300);
-
- /* If the eDP panel can't be detected, we need to restore
- * the panel power GPIO to avoid breaking another output.
- */
- if (!nvkm_dp_enable(outp, true) && power == 0)
- nvkm_gpio_set(gpio, 0, DCB_GPIO_PANEL_POWER, 0xff, 0);
- } else {
- nvkm_dp_enable(outp, true);
- }
-
- nvkm_notify_get(&outp->dp.hpd);
+ nvkm_dp_enable(outp, outp->dp.enabled);
}
static void *
nvkm_dp_dtor(struct nvkm_outp *outp)
{
- nvkm_notify_fini(&outp->dp.hpd);
return outp;
}
@@ -797,21 +801,6 @@ nvkm_dp_new(struct nvkm_disp *disp, int index, struct dcb_output *dcbE, struct n
OUTP_DBG(outp, "bios dp %02x %02x %02x %02x", outp->dp.version, hdr, cnt, len);
- /* hotplug detect, replaces gpio-based mechanism with aux events */
- ret = nvkm_notify_init(NULL, &i2c->event, nvkm_dp_hpd, true,
- &(struct nvkm_i2c_ntfy_req) {
- .mask = NVKM_I2C_PLUG | NVKM_I2C_UNPLUG |
- NVKM_I2C_IRQ,
- .port = outp->dp.aux->id,
- },
- sizeof(struct nvkm_i2c_ntfy_req),
- sizeof(struct nvkm_i2c_ntfy_rep),
- &outp->dp.hpd);
- if (ret) {
- OUTP_ERR(outp, "error monitoring aux hpd: %d", ret);
- return ret;
- }
-
mutex_init(&outp->dp.mutex);
atomic_set(&outp->dp.lt.done, 0);
return 0;
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/disp/dp.h b/drivers/gpu/drm/nouveau/nvkm/engine/disp/dp.h
index 1d86baa6a424..9a6be43916bc 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/disp/dp.h
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/disp/dp.h
@@ -6,6 +6,7 @@
int nvkm_dp_new(struct nvkm_disp *, int index, struct dcb_output *,
struct nvkm_outp **);
void nvkm_dp_disable(struct nvkm_outp *, struct nvkm_ior *);
+void nvkm_dp_enable(struct nvkm_outp *, bool auxpwr);
/* DPCD Receiver Capabilities */
#define DPCD_RC00_DPCD_REV 0x00000
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/disp/g84.c b/drivers/gpu/drm/nouveau/nvkm/engine/disp/g84.c
index 4966a51af3d7..23ae451ba473 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/disp/g84.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/disp/g84.c
@@ -29,9 +29,54 @@
#include <nvif/class.h>
-void
-g84_sor_hdmi_ctrl(struct nvkm_ior *ior, int head, bool enable, u8 max_ac_packet,
- u8 rekey, u8 *avi, u8 avi_size, u8 *vendor, u8 vendor_size)
+static void
+g84_sor_hdmi_infoframe_vsi(struct nvkm_ior *ior, int head, void *data, u32 size)
+{
+ struct nvkm_device *device = ior->disp->engine.subdev.device;
+ struct packed_hdmi_infoframe vsi;
+ const u32 hoff = head * 0x800;
+
+ nvkm_mask(device, 0x61653c + hoff, 0x00010001, 0x00010000);
+ if (!size)
+ return;
+
+ pack_hdmi_infoframe(&vsi, data, size);
+
+ nvkm_wr32(device, 0x616544 + hoff, vsi.header);
+ nvkm_wr32(device, 0x616548 + hoff, vsi.subpack0_low);
+ nvkm_wr32(device, 0x61654c + hoff, vsi.subpack0_high);
+ /* Is there a second (or up to fourth?) set of subpack registers here? */
+ /* nvkm_wr32(device, 0x616550 + hoff, vsi.subpack1_low); */
+ /* nvkm_wr32(device, 0x616554 + hoff, vsi.subpack1_high); */
+
+ nvkm_mask(device, 0x61653c + hoff, 0x00010001, 0x00010001);
+}
+
+static void
+g84_sor_hdmi_infoframe_avi(struct nvkm_ior *ior, int head, void *data, u32 size)
+{
+ struct nvkm_device *device = ior->disp->engine.subdev.device;
+ struct packed_hdmi_infoframe avi;
+ const u32 hoff = head * 0x800;
+
+ pack_hdmi_infoframe(&avi, data, size);
+
+ nvkm_mask(device, 0x616520 + hoff, 0x00000001, 0x00000000);
+ if (!size)
+ return;
+
+ nvkm_wr32(device, 0x616528 + hoff, avi.header);
+ nvkm_wr32(device, 0x61652c + hoff, avi.subpack0_low);
+ nvkm_wr32(device, 0x616530 + hoff, avi.subpack0_high);
+ nvkm_wr32(device, 0x616534 + hoff, avi.subpack1_low);
+ nvkm_wr32(device, 0x616538 + hoff, avi.subpack1_high);
+
+ nvkm_mask(device, 0x616520 + hoff, 0x00000001, 0x00000001);
+}
+
+
+static void
+g84_sor_hdmi_ctrl(struct nvkm_ior *ior, int head, bool enable, u8 max_ac_packet, u8 rekey)
{
struct nvkm_device *device = ior->disp->engine.subdev.device;
const u32 ctrl = 0x40000000 * enable |
@@ -39,31 +84,13 @@ g84_sor_hdmi_ctrl(struct nvkm_ior *ior, int head, bool enable, u8 max_ac_packet,
max_ac_packet << 16 |
rekey;
const u32 hoff = head * 0x800;
- struct packed_hdmi_infoframe avi_infoframe;
- struct packed_hdmi_infoframe vendor_infoframe;
-
- pack_hdmi_infoframe(&avi_infoframe, avi, avi_size);
- pack_hdmi_infoframe(&vendor_infoframe, vendor, vendor_size);
if (!(ctrl & 0x40000000)) {
nvkm_mask(device, 0x6165a4 + hoff, 0x40000000, 0x00000000);
- nvkm_mask(device, 0x61653c + hoff, 0x00000001, 0x00000000);
- nvkm_mask(device, 0x616520 + hoff, 0x00000001, 0x00000000);
nvkm_mask(device, 0x616500 + hoff, 0x00000001, 0x00000000);
return;
}
- /* AVI InfoFrame */
- nvkm_mask(device, 0x616520 + hoff, 0x00000001, 0x00000000);
- if (avi_size) {
- nvkm_wr32(device, 0x616528 + hoff, avi_infoframe.header);
- nvkm_wr32(device, 0x61652c + hoff, avi_infoframe.subpack0_low);
- nvkm_wr32(device, 0x616530 + hoff, avi_infoframe.subpack0_high);
- nvkm_wr32(device, 0x616534 + hoff, avi_infoframe.subpack1_low);
- nvkm_wr32(device, 0x616538 + hoff, avi_infoframe.subpack1_high);
- nvkm_mask(device, 0x616520 + hoff, 0x00000001, 0x00000001);
- }
-
/* Audio InfoFrame */
nvkm_mask(device, 0x616500 + hoff, 0x00000001, 0x00000000);
nvkm_wr32(device, 0x616508 + hoff, 0x000a0184);
@@ -71,17 +98,6 @@ g84_sor_hdmi_ctrl(struct nvkm_ior *ior, int head, bool enable, u8 max_ac_packet,
nvkm_wr32(device, 0x616510 + hoff, 0x00000000);
nvkm_mask(device, 0x616500 + hoff, 0x00000001, 0x00000001);
- /* Vendor InfoFrame */
- nvkm_mask(device, 0x61653c + hoff, 0x00010001, 0x00010000);
- if (vendor_size) {
- nvkm_wr32(device, 0x616544 + hoff, vendor_infoframe.header);
- nvkm_wr32(device, 0x616548 + hoff, vendor_infoframe.subpack0_low);
- nvkm_wr32(device, 0x61654c + hoff, vendor_infoframe.subpack0_high);
- /* Is there a second (or up to fourth?) set of subpack registers here? */
- /* nvkm_wr32(device, 0x616550 + hoff, vendor_infoframe->subpack1_low); */
- /* nvkm_wr32(device, 0x616554 + hoff, vendor_infoframe->subpack1_high); */
- nvkm_mask(device, 0x61653c + hoff, 0x00010001, 0x00010001);
- }
nvkm_mask(device, 0x6165d0 + hoff, 0x00070001, 0x00010001); /* SPARE, HW_CTS */
nvkm_mask(device, 0x616568 + hoff, 0x00010101, 0x00000000); /* ACR_CTRL, ?? */
@@ -96,14 +112,19 @@ g84_sor_hdmi_ctrl(struct nvkm_ior *ior, int head, bool enable, u8 max_ac_packet,
nvkm_mask(device, 0x6165a4 + hoff, 0x5f1f007f, ctrl);
}
+const struct nvkm_ior_func_hdmi
+g84_sor_hdmi = {
+ .ctrl = g84_sor_hdmi_ctrl,
+ .infoframe_avi = g84_sor_hdmi_infoframe_avi,
+ .infoframe_vsi = g84_sor_hdmi_infoframe_vsi,
+};
+
static const struct nvkm_ior_func
g84_sor = {
.state = nv50_sor_state,
.power = nv50_sor_power,
.clock = nv50_sor_clock,
- .hdmi = {
- .ctrl = g84_sor_hdmi_ctrl,
- },
+ .hdmi = &g84_sor_hdmi,
};
int
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/disp/ga102.c b/drivers/gpu/drm/nouveau/nvkm/engine/disp/ga102.c
index 7489d0d7fce0..52099b75f52a 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/disp/ga102.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/disp/ga102.c
@@ -105,10 +105,7 @@ ga102_sor = {
.state = gv100_sor_state,
.power = nv50_sor_power,
.clock = ga102_sor_clock,
- .hdmi = {
- .ctrl = gv100_sor_hdmi_ctrl,
- .scdc = gm200_sor_hdmi_scdc,
- },
+ .hdmi = &gv100_sor_hdmi,
.dp = &ga102_sor_dp,
.hda = &gv100_sor_hda,
};
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/disp/gf119.c b/drivers/gpu/drm/nouveau/nvkm/engine/disp/gf119.c
index 39822f1b5b95..a48e9bdf4cd0 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/disp/gf119.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/disp/gf119.c
@@ -202,19 +202,61 @@ gf119_sor_dp = {
};
static void
-gf119_sor_hdmi_ctrl(struct nvkm_ior *ior, int head, bool enable, u8 max_ac_packet,
- u8 rekey, u8 *avi, u8 avi_size, u8 *vendor, u8 vendor_size)
+gf119_sor_hdmi_infoframe_vsi(struct nvkm_ior *ior, int head, void *data, u32 size)
+{
+ struct nvkm_device *device = ior->disp->engine.subdev.device;
+ struct packed_hdmi_infoframe vsi;
+ const u32 hoff = head * 0x800;
+
+ pack_hdmi_infoframe(&vsi, data, size);
+
+ nvkm_mask(device, 0x616730 + hoff, 0x00010001, 0x00010000);
+ if (!size)
+ return;
+
+ /*
+ * These appear to be the audio infoframe registers,
+ * but no other set of infoframe registers has yet
+ * been found.
+ */
+ nvkm_wr32(device, 0x616738 + hoff, vsi.header);
+ nvkm_wr32(device, 0x61673c + hoff, vsi.subpack0_low);
+ nvkm_wr32(device, 0x616740 + hoff, vsi.subpack0_high);
+ /* Is there a second (or further?) set of subpack registers here? */
+
+ nvkm_mask(device, 0x616730 + hoff, 0x00000001, 0x00000001);
+}
+
+static void
+gf119_sor_hdmi_infoframe_avi(struct nvkm_ior *ior, int head, void *data, u32 size)
+{
+ struct nvkm_device *device = ior->disp->engine.subdev.device;
+ struct packed_hdmi_infoframe avi;
+ const u32 hoff = head * 0x800;
+
+ pack_hdmi_infoframe(&avi, data, size);
+
+ nvkm_mask(device, 0x616714 + hoff, 0x00000001, 0x00000000);
+ if (!size)
+ return;
+
+ nvkm_wr32(device, 0x61671c + hoff, avi.header);
+ nvkm_wr32(device, 0x616720 + hoff, avi.subpack0_low);
+ nvkm_wr32(device, 0x616724 + hoff, avi.subpack0_high);
+ nvkm_wr32(device, 0x616728 + hoff, avi.subpack1_low);
+ nvkm_wr32(device, 0x61672c + hoff, avi.subpack1_high);
+
+ nvkm_mask(device, 0x616714 + hoff, 0x00000001, 0x00000001);
+}
+
+static void
+gf119_sor_hdmi_ctrl(struct nvkm_ior *ior, int head, bool enable, u8 max_ac_packet, u8 rekey)
{
struct nvkm_device *device = ior->disp->engine.subdev.device;
const u32 ctrl = 0x40000000 * enable |
max_ac_packet << 16 |
rekey;
const u32 hoff = head * 0x800;
- struct packed_hdmi_infoframe avi_infoframe;
- struct packed_hdmi_infoframe vendor_infoframe;
-
- pack_hdmi_infoframe(&avi_infoframe, avi, avi_size);
- pack_hdmi_infoframe(&vendor_infoframe, vendor, vendor_size);
if (!(ctrl & 0x40000000)) {
nvkm_mask(device, 0x616798 + hoff, 0x40000000, 0x00000000);
@@ -224,32 +266,6 @@ gf119_sor_hdmi_ctrl(struct nvkm_ior *ior, int head, bool enable, u8 max_ac_packe
return;
}
- /* AVI InfoFrame */
- nvkm_mask(device, 0x616714 + hoff, 0x00000001, 0x00000000);
- if (avi_size) {
- nvkm_wr32(device, 0x61671c + hoff, avi_infoframe.header);
- nvkm_wr32(device, 0x616720 + hoff, avi_infoframe.subpack0_low);
- nvkm_wr32(device, 0x616724 + hoff, avi_infoframe.subpack0_high);
- nvkm_wr32(device, 0x616728 + hoff, avi_infoframe.subpack1_low);
- nvkm_wr32(device, 0x61672c + hoff, avi_infoframe.subpack1_high);
- nvkm_mask(device, 0x616714 + hoff, 0x00000001, 0x00000001);
- }
-
- /* GENERIC(?) / Vendor InfoFrame? */
- nvkm_mask(device, 0x616730 + hoff, 0x00010001, 0x00010000);
- if (vendor_size) {
- /*
- * These appear to be the audio infoframe registers,
- * but no other set of infoframe registers has yet
- * been found.
- */
- nvkm_wr32(device, 0x616738 + hoff, vendor_infoframe.header);
- nvkm_wr32(device, 0x61673c + hoff, vendor_infoframe.subpack0_low);
- nvkm_wr32(device, 0x616740 + hoff, vendor_infoframe.subpack0_high);
- /* Is there a second (or further?) set of subpack registers here? */
- nvkm_mask(device, 0x616730 + hoff, 0x00000001, 0x00000001);
- }
-
/* ??? InfoFrame? */
nvkm_mask(device, 0x6167a4 + hoff, 0x00000001, 0x00000000);
nvkm_wr32(device, 0x6167ac + hoff, 0x00000010);
@@ -259,6 +275,13 @@ gf119_sor_hdmi_ctrl(struct nvkm_ior *ior, int head, bool enable, u8 max_ac_packe
nvkm_mask(device, 0x616798 + hoff, 0x401f007f, ctrl);
}
+static const struct nvkm_ior_func_hdmi
+gf119_sor_hdmi = {
+ .ctrl = gf119_sor_hdmi_ctrl,
+ .infoframe_avi = gf119_sor_hdmi_infoframe_avi,
+ .infoframe_vsi = gf119_sor_hdmi_infoframe_vsi,
+};
+
void
gf119_sor_clock(struct nvkm_ior *sor)
{
@@ -305,9 +328,7 @@ gf119_sor = {
.state = gf119_sor_state,
.power = nv50_sor_power,
.clock = gf119_sor_clock,
- .hdmi = {
- .ctrl = gf119_sor_hdmi_ctrl,
- },
+ .hdmi = &gf119_sor_hdmi,
.dp = &gf119_sor_dp,
.hda = &gf119_sor_hda,
};
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/disp/gk104.c b/drivers/gpu/drm/nouveau/nvkm/engine/disp/gk104.c
index 7248e9ec835e..876a21a0cebb 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/disp/gk104.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/disp/gk104.c
@@ -30,8 +30,51 @@
#include <nvif/class.h>
void
-gk104_sor_hdmi_ctrl(struct nvkm_ior *ior, int head, bool enable, u8 max_ac_packet,
- u8 rekey, u8 *avi, u8 avi_size, u8 *vendor, u8 vendor_size)
+gk104_sor_hdmi_infoframe_vsi(struct nvkm_ior *ior, int head, void *data, u32 size)
+{
+ struct nvkm_device *device = ior->disp->engine.subdev.device;
+ struct packed_hdmi_infoframe vsi;
+ const u32 hoff = head * 0x400;
+
+ pack_hdmi_infoframe(&vsi, data, size);
+
+ /* GENERIC(?) / Vendor InfoFrame? */
+ nvkm_mask(device, 0x690100 + hoff, 0x00010001, 0x00000000);
+ if (!size)
+ return;
+
+ nvkm_wr32(device, 0x690108 + hoff, vsi.header);
+ nvkm_wr32(device, 0x69010c + hoff, vsi.subpack0_low);
+ nvkm_wr32(device, 0x690110 + hoff, vsi.subpack0_high);
+ /* Is there a second (or further?) set of subpack registers here? */
+ nvkm_mask(device, 0x690100 + hoff, 0x00000001, 0x00000001);
+}
+
+void
+gk104_sor_hdmi_infoframe_avi(struct nvkm_ior *ior, int head, void *data, u32 size)
+{
+ struct nvkm_device *device = ior->disp->engine.subdev.device;
+ struct packed_hdmi_infoframe avi;
+ const u32 hoff = head * 0x400;
+
+ pack_hdmi_infoframe(&avi, data, size);
+
+ /* AVI InfoFrame */
+ nvkm_mask(device, 0x690000 + hoff, 0x00000001, 0x00000000);
+ if (!size)
+ return;
+
+ nvkm_wr32(device, 0x690008 + hoff, avi.header);
+ nvkm_wr32(device, 0x69000c + hoff, avi.subpack0_low);
+ nvkm_wr32(device, 0x690010 + hoff, avi.subpack0_high);
+ nvkm_wr32(device, 0x690014 + hoff, avi.subpack1_low);
+ nvkm_wr32(device, 0x690018 + hoff, avi.subpack1_high);
+
+ nvkm_mask(device, 0x690000 + hoff, 0x00000001, 0x00000001);
+}
+
+void
+gk104_sor_hdmi_ctrl(struct nvkm_ior *ior, int head, bool enable, u8 max_ac_packet, u8 rekey)
{
struct nvkm_device *device = ior->disp->engine.subdev.device;
const u32 ctrl = 0x40000000 * enable |
@@ -39,11 +82,6 @@ gk104_sor_hdmi_ctrl(struct nvkm_ior *ior, int head, bool enable, u8 max_ac_packe
rekey;
const u32 hoff = head * 0x800;
const u32 hdmi = head * 0x400;
- struct packed_hdmi_infoframe avi_infoframe;
- struct packed_hdmi_infoframe vendor_infoframe;
-
- pack_hdmi_infoframe(&avi_infoframe, avi, avi_size);
- pack_hdmi_infoframe(&vendor_infoframe, vendor, vendor_size);
if (!(ctrl & 0x40000000)) {
nvkm_mask(device, 0x616798 + hoff, 0x40000000, 0x00000000);
@@ -53,28 +91,6 @@ gk104_sor_hdmi_ctrl(struct nvkm_ior *ior, int head, bool enable, u8 max_ac_packe
return;
}
- /* AVI InfoFrame */
- nvkm_mask(device, 0x690000 + hdmi, 0x00000001, 0x00000000);
- if (avi_size) {
- nvkm_wr32(device, 0x690008 + hdmi, avi_infoframe.header);
- nvkm_wr32(device, 0x69000c + hdmi, avi_infoframe.subpack0_low);
- nvkm_wr32(device, 0x690010 + hdmi, avi_infoframe.subpack0_high);
- nvkm_wr32(device, 0x690014 + hdmi, avi_infoframe.subpack1_low);
- nvkm_wr32(device, 0x690018 + hdmi, avi_infoframe.subpack1_high);
- nvkm_mask(device, 0x690000 + hdmi, 0x00000001, 0x00000001);
- }
-
- /* GENERIC(?) / Vendor InfoFrame? */
- nvkm_mask(device, 0x690100 + hdmi, 0x00010001, 0x00000000);
- if (vendor_size) {
- nvkm_wr32(device, 0x690108 + hdmi, vendor_infoframe.header);
- nvkm_wr32(device, 0x69010c + hdmi, vendor_infoframe.subpack0_low);
- nvkm_wr32(device, 0x690110 + hdmi, vendor_infoframe.subpack0_high);
- /* Is there a second (or further?) set of subpack registers here? */
- nvkm_mask(device, 0x690100 + hdmi, 0x00000001, 0x00000001);
- }
-
-
/* ??? InfoFrame? */
nvkm_mask(device, 0x6900c0 + hdmi, 0x00000001, 0x00000000);
nvkm_wr32(device, 0x6900cc + hdmi, 0x00000010);
@@ -87,14 +103,19 @@ gk104_sor_hdmi_ctrl(struct nvkm_ior *ior, int head, bool enable, u8 max_ac_packe
nvkm_mask(device, 0x616798 + hoff, 0x401f007f, ctrl);
}
+const struct nvkm_ior_func_hdmi
+gk104_sor_hdmi = {
+ .ctrl = gk104_sor_hdmi_ctrl,
+ .infoframe_avi = gk104_sor_hdmi_infoframe_avi,
+ .infoframe_vsi = gk104_sor_hdmi_infoframe_vsi,
+};
+
static const struct nvkm_ior_func
gk104_sor = {
.state = gf119_sor_state,
.power = nv50_sor_power,
.clock = gf119_sor_clock,
- .hdmi = {
- .ctrl = gk104_sor_hdmi_ctrl,
- },
+ .hdmi = &gk104_sor_hdmi,
.dp = &gf119_sor_dp,
.hda = &gf119_sor_hda,
};
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/disp/gm107.c b/drivers/gpu/drm/nouveau/nvkm/engine/disp/gm107.c
index 9e9ef49bd8ac..b4d8e868616f 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/disp/gm107.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/disp/gm107.c
@@ -70,9 +70,7 @@ gm107_sor = {
.state = gf119_sor_state,
.power = nv50_sor_power,
.clock = gf119_sor_clock,
- .hdmi = {
- .ctrl = gk104_sor_hdmi_ctrl,
- },
+ .hdmi = &gk104_sor_hdmi,
.dp = &gm107_sor_dp,
.hda = &gf119_sor_hda,
};
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/disp/gm200.c b/drivers/gpu/drm/nouveau/nvkm/engine/disp/gm200.c
index 4ecc8f98af6e..562ebae57d44 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/disp/gm200.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/disp/gm200.c
@@ -79,6 +79,14 @@ gm200_sor_hdmi_scdc(struct nvkm_ior *ior, u8 scdc)
ior->tmds.high_speed = !!(scdc & 0x2);
}
+const struct nvkm_ior_func_hdmi
+gm200_sor_hdmi = {
+ .ctrl = gk104_sor_hdmi_ctrl,
+ .scdc = gm200_sor_hdmi_scdc,
+ .infoframe_avi = gk104_sor_hdmi_infoframe_avi,
+ .infoframe_vsi = gk104_sor_hdmi_infoframe_vsi,
+};
+
void
gm200_sor_route_set(struct nvkm_outp *outp, struct nvkm_ior *ior)
{
@@ -131,10 +139,7 @@ gm200_sor = {
.state = gf119_sor_state,
.power = nv50_sor_power,
.clock = gf119_sor_clock,
- .hdmi = {
- .ctrl = gk104_sor_hdmi_ctrl,
- .scdc = gm200_sor_hdmi_scdc,
- },
+ .hdmi = &gm200_sor_hdmi,
.dp = &gm200_sor_dp,
.hda = &gf119_sor_hda,
};
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/disp/gp100.c b/drivers/gpu/drm/nouveau/nvkm/engine/disp/gp100.c
index 7172a9dfd89b..7f1eb4332040 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/disp/gp100.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/disp/gp100.c
@@ -37,10 +37,7 @@ gp100_sor = {
.state = gf119_sor_state,
.power = nv50_sor_power,
.clock = gf119_sor_clock,
- .hdmi = {
- .ctrl = gk104_sor_hdmi_ctrl,
- .scdc = gm200_sor_hdmi_scdc,
- },
+ .hdmi = &gm200_sor_hdmi,
.dp = &gm200_sor_dp,
.hda = &gf119_sor_hda,
};
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/disp/gt215.c b/drivers/gpu/drm/nouveau/nvkm/engine/disp/gt215.c
index 70c49e7af9cf..a2c7c6f83dcd 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/disp/gt215.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/disp/gt215.c
@@ -92,9 +92,53 @@ gt215_sor_dp = {
.watermark = g94_sor_dp_watermark,
};
-void
-gt215_sor_hdmi_ctrl(struct nvkm_ior *ior, int head, bool enable, u8 max_ac_packet,
- u8 rekey, u8 *avi, u8 avi_size, u8 *vendor, u8 vendor_size)
+static void
+gt215_sor_hdmi_infoframe_vsi(struct nvkm_ior *ior, int head, void *data, u32 size)
+{
+ struct nvkm_device *device = ior->disp->engine.subdev.device;
+ struct packed_hdmi_infoframe vsi;
+ const u32 soff = nv50_ior_base(ior);
+
+ pack_hdmi_infoframe(&vsi, data, size);
+
+ nvkm_mask(device, 0x61c53c + soff, 0x00010001, 0x00010000);
+ if (!size)
+ return;
+
+ nvkm_wr32(device, 0x61c544 + soff, vsi.header);
+ nvkm_wr32(device, 0x61c548 + soff, vsi.subpack0_low);
+ nvkm_wr32(device, 0x61c54c + soff, vsi.subpack0_high);
+ /* Is there a second (or up to fourth?) set of subpack registers here? */
+ /* nvkm_wr32(device, 0x61c550 + soff, vsi.subpack1_low); */
+ /* nvkm_wr32(device, 0x61c554 + soff, vsi.subpack1_high); */
+
+ nvkm_mask(device, 0x61c53c + soff, 0x00010001, 0x00010001);
+}
+
+static void
+gt215_sor_hdmi_infoframe_avi(struct nvkm_ior *ior, int head, void *data, u32 size)
+{
+ struct nvkm_device *device = ior->disp->engine.subdev.device;
+ struct packed_hdmi_infoframe avi;
+ const u32 soff = nv50_ior_base(ior);
+
+ pack_hdmi_infoframe(&avi, data, size);
+
+ nvkm_mask(device, 0x61c520 + soff, 0x00000001, 0x00000000);
+ if (size)
+ return;
+
+ nvkm_wr32(device, 0x61c528 + soff, avi.header);
+ nvkm_wr32(device, 0x61c52c + soff, avi.subpack0_low);
+ nvkm_wr32(device, 0x61c530 + soff, avi.subpack0_high);
+ nvkm_wr32(device, 0x61c534 + soff, avi.subpack1_low);
+ nvkm_wr32(device, 0x61c538 + soff, avi.subpack1_high);
+
+ nvkm_mask(device, 0x61c520 + soff, 0x00000001, 0x00000001);
+}
+
+static void
+gt215_sor_hdmi_ctrl(struct nvkm_ior *ior, int head, bool enable, u8 max_ac_packet, u8 rekey)
{
struct nvkm_device *device = ior->disp->engine.subdev.device;
const u32 ctrl = 0x40000000 * enable |
@@ -102,11 +146,6 @@ gt215_sor_hdmi_ctrl(struct nvkm_ior *ior, int head, bool enable, u8 max_ac_packe
max_ac_packet << 16 |
rekey;
const u32 soff = nv50_ior_base(ior);
- struct packed_hdmi_infoframe avi_infoframe;
- struct packed_hdmi_infoframe vendor_infoframe;
-
- pack_hdmi_infoframe(&avi_infoframe, avi, avi_size);
- pack_hdmi_infoframe(&vendor_infoframe, vendor, vendor_size);
if (!(ctrl & 0x40000000)) {
nvkm_mask(device, 0x61c5a4 + soff, 0x40000000, 0x00000000);
@@ -116,17 +155,6 @@ gt215_sor_hdmi_ctrl(struct nvkm_ior *ior, int head, bool enable, u8 max_ac_packe
return;
}
- /* AVI InfoFrame */
- nvkm_mask(device, 0x61c520 + soff, 0x00000001, 0x00000000);
- if (avi_size) {
- nvkm_wr32(device, 0x61c528 + soff, avi_infoframe.header);
- nvkm_wr32(device, 0x61c52c + soff, avi_infoframe.subpack0_low);
- nvkm_wr32(device, 0x61c530 + soff, avi_infoframe.subpack0_high);
- nvkm_wr32(device, 0x61c534 + soff, avi_infoframe.subpack1_low);
- nvkm_wr32(device, 0x61c538 + soff, avi_infoframe.subpack1_high);
- nvkm_mask(device, 0x61c520 + soff, 0x00000001, 0x00000001);
- }
-
/* Audio InfoFrame */
nvkm_mask(device, 0x61c500 + soff, 0x00000001, 0x00000000);
nvkm_wr32(device, 0x61c508 + soff, 0x000a0184);
@@ -134,18 +162,6 @@ gt215_sor_hdmi_ctrl(struct nvkm_ior *ior, int head, bool enable, u8 max_ac_packe
nvkm_wr32(device, 0x61c510 + soff, 0x00000000);
nvkm_mask(device, 0x61c500 + soff, 0x00000001, 0x00000001);
- /* Vendor InfoFrame */
- nvkm_mask(device, 0x61c53c + soff, 0x00010001, 0x00010000);
- if (vendor_size) {
- nvkm_wr32(device, 0x61c544 + soff, vendor_infoframe.header);
- nvkm_wr32(device, 0x61c548 + soff, vendor_infoframe.subpack0_low);
- nvkm_wr32(device, 0x61c54c + soff, vendor_infoframe.subpack0_high);
- /* Is there a second (or up to fourth?) set of subpack registers here? */
- /* nvkm_wr32(device, 0x61c550 + soff, vendor_infoframe.subpack1_low); */
- /* nvkm_wr32(device, 0x61c554 + soff, vendor_infoframe.subpack1_high); */
- nvkm_mask(device, 0x61c53c + soff, 0x00010001, 0x00010001);
- }
-
nvkm_mask(device, 0x61c5d0 + soff, 0x00070001, 0x00010001); /* SPARE, HW_CTS */
nvkm_mask(device, 0x61c568 + soff, 0x00010101, 0x00000000); /* ACR_CTRL, ?? */
nvkm_mask(device, 0x61c578 + soff, 0x80000000, 0x80000000); /* ACR_0441_ENABLE */
@@ -159,14 +175,19 @@ gt215_sor_hdmi_ctrl(struct nvkm_ior *ior, int head, bool enable, u8 max_ac_packe
nvkm_mask(device, 0x61c5a4 + soff, 0x5f1f007f, ctrl);
}
+const struct nvkm_ior_func_hdmi
+gt215_sor_hdmi = {
+ .ctrl = gt215_sor_hdmi_ctrl,
+ .infoframe_avi = gt215_sor_hdmi_infoframe_avi,
+ .infoframe_vsi = gt215_sor_hdmi_infoframe_vsi,
+};
+
static const struct nvkm_ior_func
gt215_sor = {
.state = g94_sor_state,
.power = nv50_sor_power,
.clock = nv50_sor_clock,
- .hdmi = {
- .ctrl = gt215_sor_hdmi_ctrl,
- },
+ .hdmi = &gt215_sor_hdmi,
.dp = &gt215_sor_dp,
.hda = &gt215_sor_hda,
};
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/disp/gv100.c b/drivers/gpu/drm/nouveau/nvkm/engine/disp/gv100.c
index 6b9d49270fa7..4ebc030e40d1 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/disp/gv100.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/disp/gv100.c
@@ -96,9 +96,54 @@ gv100_sor_dp = {
.watermark = gv100_sor_dp_watermark,
};
-void
-gv100_sor_hdmi_ctrl(struct nvkm_ior *ior, int head, bool enable, u8 max_ac_packet,
- u8 rekey, u8 *avi, u8 avi_size, u8 *vendor, u8 vendor_size)
+static void
+gv100_sor_hdmi_infoframe_vsi(struct nvkm_ior *ior, int head, void *data, u32 size)
+{
+ struct nvkm_device *device = ior->disp->engine.subdev.device;
+ struct packed_hdmi_infoframe vsi;
+ const u32 hoff = head * 0x400;
+
+ pack_hdmi_infoframe(&vsi, data, size);
+
+ nvkm_mask(device, 0x6f0100 + hoff, 0x00010001, 0x00000000);
+ if (!size)
+ return;
+
+ nvkm_wr32(device, 0x6f0108 + hoff, vsi.header);
+ nvkm_wr32(device, 0x6f010c + hoff, vsi.subpack0_low);
+ nvkm_wr32(device, 0x6f0110 + hoff, vsi.subpack0_high);
+ nvkm_wr32(device, 0x6f0114 + hoff, 0x00000000);
+ nvkm_wr32(device, 0x6f0118 + hoff, 0x00000000);
+ nvkm_wr32(device, 0x6f011c + hoff, 0x00000000);
+ nvkm_wr32(device, 0x6f0120 + hoff, 0x00000000);
+ nvkm_wr32(device, 0x6f0124 + hoff, 0x00000000);
+ nvkm_mask(device, 0x6f0100 + hoff, 0x00000001, 0x00000001);
+}
+
+static void
+gv100_sor_hdmi_infoframe_avi(struct nvkm_ior *ior, int head, void *data, u32 size)
+{
+ struct nvkm_device *device = ior->disp->engine.subdev.device;
+ struct packed_hdmi_infoframe avi;
+ const u32 hoff = head * 0x400;
+
+ pack_hdmi_infoframe(&avi, data, size);
+
+ nvkm_mask(device, 0x6f0000 + hoff, 0x00000001, 0x00000000);
+ if (!size)
+ return;
+
+ nvkm_wr32(device, 0x6f0008 + hoff, avi.header);
+ nvkm_wr32(device, 0x6f000c + hoff, avi.subpack0_low);
+ nvkm_wr32(device, 0x6f0010 + hoff, avi.subpack0_high);
+ nvkm_wr32(device, 0x6f0014 + hoff, avi.subpack1_low);
+ nvkm_wr32(device, 0x6f0018 + hoff, avi.subpack1_high);
+
+ nvkm_mask(device, 0x6f0000 + hoff, 0x00000001, 0x00000001);
+}
+
+static void
+gv100_sor_hdmi_ctrl(struct nvkm_ior *ior, int head, bool enable, u8 max_ac_packet, u8 rekey)
{
struct nvkm_device *device = ior->disp->engine.subdev.device;
const u32 ctrl = 0x40000000 * enable |
@@ -106,11 +151,6 @@ gv100_sor_hdmi_ctrl(struct nvkm_ior *ior, int head, bool enable, u8 max_ac_packe
rekey;
const u32 hoff = head * 0x800;
const u32 hdmi = head * 0x400;
- struct packed_hdmi_infoframe avi_infoframe;
- struct packed_hdmi_infoframe vendor_infoframe;
-
- pack_hdmi_infoframe(&avi_infoframe, avi, avi_size);
- pack_hdmi_infoframe(&vendor_infoframe, vendor, vendor_size);
if (!(ctrl & 0x40000000)) {
nvkm_mask(device, 0x6165c0 + hoff, 0x40000000, 0x00000000);
@@ -120,32 +160,6 @@ gv100_sor_hdmi_ctrl(struct nvkm_ior *ior, int head, bool enable, u8 max_ac_packe
return;
}
- /* AVI InfoFrame (AVI). */
- nvkm_mask(device, 0x6f0000 + hdmi, 0x00000001, 0x00000000);
- if (avi_size) {
- nvkm_wr32(device, 0x6f0008 + hdmi, avi_infoframe.header);
- nvkm_wr32(device, 0x6f000c + hdmi, avi_infoframe.subpack0_low);
- nvkm_wr32(device, 0x6f0010 + hdmi, avi_infoframe.subpack0_high);
- nvkm_wr32(device, 0x6f0014 + hdmi, avi_infoframe.subpack1_low);
- nvkm_wr32(device, 0x6f0018 + hdmi, avi_infoframe.subpack1_high);
- nvkm_mask(device, 0x6f0000 + hdmi, 0x00000001, 0x00000001);
- }
-
- /* Vendor-specific InfoFrame (VSI). */
- nvkm_mask(device, 0x6f0100 + hdmi, 0x00010001, 0x00000000);
- if (vendor_size) {
- nvkm_wr32(device, 0x6f0108 + hdmi, vendor_infoframe.header);
- nvkm_wr32(device, 0x6f010c + hdmi, vendor_infoframe.subpack0_low);
- nvkm_wr32(device, 0x6f0110 + hdmi, vendor_infoframe.subpack0_high);
- nvkm_wr32(device, 0x6f0114 + hdmi, 0x00000000);
- nvkm_wr32(device, 0x6f0118 + hdmi, 0x00000000);
- nvkm_wr32(device, 0x6f011c + hdmi, 0x00000000);
- nvkm_wr32(device, 0x6f0120 + hdmi, 0x00000000);
- nvkm_wr32(device, 0x6f0124 + hdmi, 0x00000000);
- nvkm_mask(device, 0x6f0100 + hdmi, 0x00000001, 0x00000001);
- }
-
-
/* General Control (GCP). */
nvkm_mask(device, 0x6f00c0 + hdmi, 0x00000001, 0x00000000);
nvkm_wr32(device, 0x6f00cc + hdmi, 0x00000010);
@@ -158,6 +172,14 @@ gv100_sor_hdmi_ctrl(struct nvkm_ior *ior, int head, bool enable, u8 max_ac_packe
nvkm_mask(device, 0x6165c0 + hoff, 0x401f007f, ctrl);
}
+const struct nvkm_ior_func_hdmi
+gv100_sor_hdmi = {
+ .ctrl = gv100_sor_hdmi_ctrl,
+ .scdc = gm200_sor_hdmi_scdc,
+ .infoframe_avi = gv100_sor_hdmi_infoframe_avi,
+ .infoframe_vsi = gv100_sor_hdmi_infoframe_vsi,
+};
+
void
gv100_sor_state(struct nvkm_ior *sor, struct nvkm_ior_state *state)
{
@@ -190,10 +212,7 @@ gv100_sor = {
.state = gv100_sor_state,
.power = nv50_sor_power,
.clock = gf119_sor_clock,
- .hdmi = {
- .ctrl = gv100_sor_hdmi_ctrl,
- .scdc = gm200_sor_hdmi_scdc,
- },
+ .hdmi = &gv100_sor_hdmi,
.dp = &gv100_sor_dp,
.hda = &gv100_sor_hda,
};
@@ -587,7 +606,7 @@ gv100_disp_curs = {
.user = 73,
};
-const struct nvkm_disp_mthd_list
+static const struct nvkm_disp_mthd_list
gv100_disp_core_mthd_base = {
.mthd = 0x0000,
.addr = 0x000000,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/disp/head.c b/drivers/gpu/drm/nouveau/nvkm/engine/disp/head.c
index 83152c26fe3e..7f5d13d13c94 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/disp/head.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/disp/head.c
@@ -39,44 +39,6 @@ nvkm_head_find(struct nvkm_disp *disp, int id)
return NULL;
}
-int
-nvkm_head_mthd_scanoutpos(struct nvkm_object *object,
- struct nvkm_head *head, void *data, u32 size)
-{
- union {
- struct nv04_disp_scanoutpos_v0 v0;
- } *args = data;
- int ret = -ENOSYS;
-
- nvif_ioctl(object, "head scanoutpos size %d\n", size);
- if (!(ret = nvif_unpack(ret, &data, &size, args->v0, 0, 0, false))) {
- nvif_ioctl(object, "head scanoutpos vers %d\n",
- args->v0.version);
-
- head->func->state(head, &head->arm);
- args->v0.vtotal = head->arm.vtotal;
- args->v0.vblanks = head->arm.vblanks;
- args->v0.vblanke = head->arm.vblanke;
- args->v0.htotal = head->arm.htotal;
- args->v0.hblanks = head->arm.hblanks;
- args->v0.hblanke = head->arm.hblanke;
-
- /* We don't support reading htotal/vtotal on pre-NV50 VGA,
- * so we have to give up and trigger the timestamping
- * fallback in the drm core.
- */
- if (!args->v0.vtotal || !args->v0.htotal)
- return -ENOTSUPP;
-
- args->v0.time[0] = ktime_to_ns(ktime_get());
- head->func->rgpos(head, &args->v0.hline, &args->v0.vline);
- args->v0.time[1] = ktime_to_ns(ktime_get());
- } else
- return ret;
-
- return 0;
-}
-
void
nvkm_head_del(struct nvkm_head **phead)
{
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/disp/head.h b/drivers/gpu/drm/nouveau/nvkm/engine/disp/head.h
index 84a2989193cf..856252bf559a 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/disp/head.h
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/disp/head.h
@@ -1,6 +1,7 @@
/* SPDX-License-Identifier: MIT */
#ifndef __NVKM_DISP_HEAD_H__
#define __NVKM_DISP_HEAD_H__
+#include <nvif/object.h>
#include "priv.h"
struct nvkm_head {
@@ -26,12 +27,12 @@ struct nvkm_head {
u8 depth;
} or;
} arm, asy;
+
+ struct nvkm_object object;
};
int nvkm_head_new_(const struct nvkm_head_func *, struct nvkm_disp *, int id);
void nvkm_head_del(struct nvkm_head **);
-int nvkm_head_mthd_scanoutpos(struct nvkm_object *,
- struct nvkm_head *, void *, u32);
struct nvkm_head *nvkm_head_find(struct nvkm_disp *, int id);
struct nvkm_head_func {
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/disp/ior.h b/drivers/gpu/drm/nouveau/nvkm/engine/disp/ior.h
index 671c4674ffcc..da1b1a626ef2 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/disp/ior.h
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/disp/ior.h
@@ -63,12 +63,12 @@ struct nvkm_ior_func {
void (*war_2)(struct nvkm_ior *);
void (*war_3)(struct nvkm_ior *);
- struct {
- void (*ctrl)(struct nvkm_ior *, int head, bool enable,
- u8 max_ac_packet, u8 rekey, u8 *avi, u8 avi_size,
- u8 *vendor, u8 vendor_size);
+ const struct nvkm_ior_func_hdmi {
+ void (*ctrl)(struct nvkm_ior *, int head, bool enable, u8 max_ac_packet, u8 rekey);
void (*scdc)(struct nvkm_ior *, u8 scdc);
- } hdmi;
+ void (*infoframe_avi)(struct nvkm_ior *, int head, void *data, u32 size);
+ void (*infoframe_vsi)(struct nvkm_ior *, int head, void *data, u32 size);
+ } *hdmi;
const struct nvkm_ior_func_dp {
u8 lanes[4];
@@ -124,9 +124,10 @@ void nv50_sor_power(struct nvkm_ior *, bool, bool, bool, bool, bool);
void nv50_sor_clock(struct nvkm_ior *);
int g84_sor_new(struct nvkm_disp *, int);
-void g84_sor_hdmi_ctrl(struct nvkm_ior *, int, bool, u8, u8, u8 *, u8 , u8 *, u8);
+extern const struct nvkm_ior_func_hdmi g84_sor_hdmi;
int g94_sor_cnt(struct nvkm_disp *, unsigned long *);
+
void g94_sor_state(struct nvkm_ior *, struct nvkm_ior_state *);
extern const struct nvkm_ior_func_dp g94_sor_dp;
int g94_sor_dp_links(struct nvkm_ior *, struct nvkm_i2c_aux *);
@@ -137,7 +138,7 @@ void g94_sor_dp_audio_sym(struct nvkm_ior *, int, u16, u32);
void g94_sor_dp_activesym(struct nvkm_ior *, int, u8, u8, u8, u8);
void g94_sor_dp_watermark(struct nvkm_ior *, int, u8);
-void gt215_sor_hdmi_ctrl(struct nvkm_ior *, int, bool, u8, u8, u8 *, u8 , u8 *, u8);
+extern const struct nvkm_ior_func_hdmi gt215_sor_hdmi;
void gt215_sor_dp_audio(struct nvkm_ior *, int, bool);
extern const struct nvkm_ior_func_hda gt215_sor_hda;
@@ -156,12 +157,16 @@ void gf119_sor_hda_hpd(struct nvkm_ior *, int, bool);
void gf119_sor_hda_eld(struct nvkm_ior *, int, u8 *, u8);
int gk104_sor_new(struct nvkm_disp *, int);
-void gk104_sor_hdmi_ctrl(struct nvkm_ior *, int, bool, u8, u8, u8 *, u8 , u8 *, u8);
+extern const struct nvkm_ior_func_hdmi gk104_sor_hdmi;
+void gk104_sor_hdmi_ctrl(struct nvkm_ior *, int, bool, u8, u8);
+void gk104_sor_hdmi_infoframe_avi(struct nvkm_ior *, int, void *, u32);
+void gk104_sor_hdmi_infoframe_vsi(struct nvkm_ior *, int, void *, u32);
void gm107_sor_dp_pattern(struct nvkm_ior *, int);
void gm200_sor_route_set(struct nvkm_outp *, struct nvkm_ior *);
int gm200_sor_route_get(struct nvkm_outp *, int *);
+extern const struct nvkm_ior_func_hdmi gm200_sor_hdmi;
void gm200_sor_hdmi_scdc(struct nvkm_ior *, u8);
extern const struct nvkm_ior_func_dp gm200_sor_dp;
void gm200_sor_dp_drive(struct nvkm_ior *, int, int, int, int, int);
@@ -170,7 +175,7 @@ int gp100_sor_new(struct nvkm_disp *, int);
int gv100_sor_cnt(struct nvkm_disp *, unsigned long *);
void gv100_sor_state(struct nvkm_ior *, struct nvkm_ior_state *);
-void gv100_sor_hdmi_ctrl(struct nvkm_ior *, int, bool, u8, u8, u8 *, u8 , u8 *, u8);
+extern const struct nvkm_ior_func_hdmi gv100_sor_hdmi;
void gv100_sor_dp_audio(struct nvkm_ior *, int, bool);
void gv100_sor_dp_audio_sym(struct nvkm_ior *, int, u16, u32);
void gv100_sor_dp_watermark(struct nvkm_ior *, int, u8);
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/disp/mcp77.c b/drivers/gpu/drm/nouveau/nvkm/engine/disp/mcp77.c
index 916b1d477b0b..841e3b69fcaf 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/disp/mcp77.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/disp/mcp77.c
@@ -31,9 +31,7 @@ mcp77_sor = {
.state = g94_sor_state,
.power = nv50_sor_power,
.clock = nv50_sor_clock,
- .hdmi = {
- .ctrl = g84_sor_hdmi_ctrl,
- },
+ .hdmi = &g84_sor_hdmi,
.dp = &g94_sor_dp,
};
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/disp/mcp89.c b/drivers/gpu/drm/nouveau/nvkm/engine/disp/mcp89.c
index a5a0b9439374..f96ba4752655 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/disp/mcp89.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/disp/mcp89.c
@@ -44,9 +44,7 @@ mcp89_sor = {
.state = g94_sor_state,
.power = nv50_sor_power,
.clock = nv50_sor_clock,
- .hdmi = {
- .ctrl = gt215_sor_hdmi_ctrl,
- },
+ .hdmi = &gt215_sor_hdmi,
.dp = &mcp89_sor_dp,
.hda = &gt215_sor_hda,
};
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/disp/nv50.c b/drivers/gpu/drm/nouveau/nvkm/engine/disp/nv50.c
index a46e13cc9ff1..be8116802960 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/disp/nv50.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/disp/nv50.c
@@ -503,7 +503,7 @@ nv50_disp_chan_uevent_init(struct nvkm_event *event, int types, int index)
void
nv50_disp_chan_uevent_send(struct nvkm_disp *disp, int chid)
{
- nvkm_event_send(&disp->uevent, NVKM_DISP_EVENT_CHAN_AWAKEN, chid, NULL, 0);
+ nvkm_event_ntfy(&disp->uevent, chid, NVKM_DISP_EVENT_CHAN_AWAKEN);
}
const struct nvkm_event_func
@@ -1238,6 +1238,8 @@ nv50_disp_super_2_2(struct nvkm_disp *disp, struct nvkm_head *head)
if (!ior)
return;
+ outp = ior->asy.outp;
+
/* For some reason, NVIDIA decided not to:
*
* A) Give dual-link LVDS a separate EVO protocol, like for TMDS.
@@ -1247,13 +1249,13 @@ nv50_disp_super_2_2(struct nvkm_disp *disp, struct nvkm_head *head)
* Override the values we usually read from HW with the same
* data we pass though an ioctl instead.
*/
- if (ior->type == SOR && ior->asy.proto == LVDS) {
- head->asy.or.depth = (disp->sor.lvdsconf & 0x0200) ? 24 : 18;
- ior->asy.link = (disp->sor.lvdsconf & 0x0100) ? 3 : 1;
+ if (outp && ior->type == SOR && ior->asy.proto == LVDS) {
+ head->asy.or.depth = outp->lvds.bpc8 ? 24 : 18;
+ ior->asy.link = outp->lvds.dual ? 3 : 1;
}
/* Handle any link training, etc. */
- if ((outp = ior->asy.outp) && outp->func->acquire)
+ if (outp && outp->func->acquire)
outp->func->acquire(outp);
/* Execute OnInt2 IED script. */
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/disp/outp.h b/drivers/gpu/drm/nouveau/nvkm/engine/disp/outp.h
index 3f3924c41957..4e7f873f66e2 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/disp/outp.h
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/disp/outp.h
@@ -2,8 +2,8 @@
#ifndef __NVKM_DISP_OUTP_H__
#define __NVKM_DISP_OUTP_H__
#include "priv.h"
-#include <core/notify.h>
+#include <drm/display/drm_dp.h>
#include <subdev/bios.h>
#include <subdev/bios/dcb.h>
#include <subdev/bios/dp.h>
@@ -28,16 +28,22 @@ struct nvkm_outp {
union {
struct {
+ bool dual;
+ bool bpc8;
+ } lvds;
+
+ struct {
struct nvbios_dpout info;
u8 version;
struct nvkm_i2c_aux *aux;
- struct nvkm_notify hpd;
- bool present;
+ bool enabled;
+ bool aux_pwr;
+ bool aux_pwr_pu;
u8 lttpr[6];
u8 lttprs;
- u8 dpcd[16];
+ u8 dpcd[DP_RECEIVER_CAP_SIZE];
struct {
int dpcd; /* -1, or index into SUPPORTED_LINK_RATES table */
@@ -49,12 +55,17 @@ struct nvkm_outp {
struct mutex mutex;
struct {
atomic_t done;
+ u8 nr;
+ u8 bw;
bool mst;
} lt;
} dp;
};
struct nvkm_object object;
+ struct {
+ struct nvkm_head *head;
+ } asy;
};
int nvkm_outp_new_(const struct nvkm_outp_func *, struct nvkm_disp *, int index,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/disp/priv.h b/drivers/gpu/drm/nouveau/nvkm/engine/disp/priv.h
index cb25dfe849f0..ec5292a8f3c8 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/disp/priv.h
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/disp/priv.h
@@ -42,10 +42,6 @@ struct nvkm_disp_func {
} user[];
};
-int nvkm_disp_ntfy(struct nvkm_object *, u32, struct nvkm_event **);
-int nv04_disp_mthd(struct nvkm_object *, u32, void *, u32);
-int nv50_disp_root_mthd_(struct nvkm_object *, u32, void *, u32);
-
int nv50_disp_oneinit(struct nvkm_disp *);
int nv50_disp_init(struct nvkm_disp *);
void nv50_disp_fini(struct nvkm_disp *);
@@ -86,4 +82,5 @@ extern const struct nvkm_event_func gv100_disp_chan_uevent;
int nvkm_udisp_new(const struct nvkm_oclass *, void *, u32, struct nvkm_object **);
int nvkm_uconn_new(const struct nvkm_oclass *, void *, u32, struct nvkm_object **);
int nvkm_uoutp_new(const struct nvkm_oclass *, void *, u32, struct nvkm_object **);
+int nvkm_uhead_new(const struct nvkm_oclass *, void *, u32, struct nvkm_object **);
#endif
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/disp/rootnv50.c b/drivers/gpu/drm/nouveau/nvkm/engine/disp/rootnv50.c
deleted file mode 100644
index 0af45ccd140c..000000000000
--- a/drivers/gpu/drm/nouveau/nvkm/engine/disp/rootnv50.c
+++ /dev/null
@@ -1,250 +0,0 @@
-/*
- * Copyright 2012 Red Hat Inc.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice shall be included in
- * all copies or substantial portions of the Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
- * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
- * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
- * OTHER DEALINGS IN THE SOFTWARE.
- *
- * Authors: Ben Skeggs
- */
-#include "chan.h"
-#include "head.h"
-#include "ior.h"
-#include "outp.h"
-
-#include <core/client.h>
-
-#include <nvif/class.h>
-#include <nvif/cl5070.h>
-#include <nvif/unpack.h>
-
-int
-nv50_disp_root_mthd_(struct nvkm_object *object, u32 mthd, void *data, u32 size)
-{
- union {
- struct nv50_disp_mthd_v0 v0;
- struct nv50_disp_mthd_v1 v1;
- } *args = data;
- struct nvkm_disp *disp = nvkm_udisp(object);
- struct nvkm_outp *temp, *outp = NULL;
- struct nvkm_head *head;
- u16 type, mask = 0;
- int hidx, ret = -ENOSYS;
-
- if (mthd != NV50_DISP_MTHD)
- return -EINVAL;
-
- nvif_ioctl(object, "disp mthd size %d\n", size);
- if (!(ret = nvif_unpack(ret, &data, &size, args->v0, 0, 0, true))) {
- nvif_ioctl(object, "disp mthd vers %d mthd %02x head %d\n",
- args->v0.version, args->v0.method, args->v0.head);
- mthd = args->v0.method;
- hidx = args->v0.head;
- } else
- if (!(ret = nvif_unpack(ret, &data, &size, args->v1, 1, 1, true))) {
- nvif_ioctl(object, "disp mthd vers %d mthd %02x "
- "type %04x mask %04x\n",
- args->v1.version, args->v1.method,
- args->v1.hasht, args->v1.hashm);
- mthd = args->v1.method;
- type = args->v1.hasht;
- mask = args->v1.hashm;
- hidx = ffs((mask >> 8) & 0x0f) - 1;
- } else
- return ret;
-
- if (!(head = nvkm_head_find(disp, hidx)))
- return -ENXIO;
-
- if (mask) {
- list_for_each_entry(temp, &disp->outps, head) {
- if ((temp->info.hasht == type) &&
- (temp->info.hashm & mask) == mask) {
- outp = temp;
- break;
- }
- }
- if (outp == NULL)
- return -ENXIO;
- }
-
- switch (mthd) {
- case NV50_DISP_SCANOUTPOS: {
- return nvkm_head_mthd_scanoutpos(object, head, data, size);
- }
- default:
- break;
- }
-
- switch (mthd * !!outp) {
- case NV50_DISP_MTHD_V1_ACQUIRE: {
- union {
- struct nv50_disp_acquire_v0 v0;
- } *args = data;
- int ret = -ENOSYS;
- if (!(ret = nvif_unpack(ret, &data, &size, args->v0, 0, 0, false))) {
- ret = nvkm_outp_acquire(outp, NVKM_OUTP_USER, args->v0.hda);
- if (ret == 0) {
- args->v0.or = outp->ior->id;
- args->v0.link = outp->ior->asy.link;
- }
- }
- return ret;
- }
- break;
- case NV50_DISP_MTHD_V1_RELEASE:
- nvkm_outp_release(outp, NVKM_OUTP_USER);
- return 0;
- case NV50_DISP_MTHD_V1_SOR_HDA_ELD: {
- union {
- struct nv50_disp_sor_hda_eld_v0 v0;
- } *args = data;
- struct nvkm_ior *ior = outp->ior;
- int ret = -ENOSYS;
-
- nvif_ioctl(object, "disp sor hda eld size %d\n", size);
- if (!(ret = nvif_unpack(ret, &data, &size, args->v0, 0, 0, true))) {
- nvif_ioctl(object, "disp sor hda eld vers %d\n",
- args->v0.version);
- if (size > 0x60)
- return -E2BIG;
- } else
- return ret;
-
- if (!ior->hda)
- return -ENODEV;
-
- if (size && args->v0.data[0]) {
- if (outp->info.type == DCB_OUTPUT_DP)
- ior->func->dp->audio(ior, hidx, true);
- ior->func->hda->hpd(ior, hidx, true);
- ior->func->hda->eld(ior, hidx, data, size);
- } else {
- if (outp->info.type == DCB_OUTPUT_DP)
- ior->func->dp->audio(ior, hidx, false);
- ior->func->hda->hpd(ior, hidx, false);
- }
-
- return 0;
- }
- break;
- case NV50_DISP_MTHD_V1_SOR_HDMI_PWR: {
- union {
- struct nv50_disp_sor_hdmi_pwr_v0 v0;
- } *args = data;
- u8 *vendor, vendor_size;
- u8 *avi, avi_size;
- int ret = -ENOSYS;
-
- nvif_ioctl(object, "disp sor hdmi ctrl size %d\n", size);
- if (!(ret = nvif_unpack(ret, &data, &size, args->v0, 0, 0, true))) {
- nvif_ioctl(object, "disp sor hdmi ctrl vers %d state %d "
- "max_ac_packet %d rekey %d scdc %d\n",
- args->v0.version, args->v0.state,
- args->v0.max_ac_packet, args->v0.rekey,
- args->v0.scdc);
- if (args->v0.max_ac_packet > 0x1f || args->v0.rekey > 0x7f)
- return -EINVAL;
- if ((args->v0.avi_infoframe_length
- + args->v0.vendor_infoframe_length) > size)
- return -EINVAL;
- else
- if ((args->v0.avi_infoframe_length
- + args->v0.vendor_infoframe_length) < size)
- return -E2BIG;
- avi = data;
- avi_size = args->v0.avi_infoframe_length;
- vendor = avi + avi_size;
- vendor_size = args->v0.vendor_infoframe_length;
- } else
- return ret;
-
- if (!outp->ior->func->hdmi.ctrl)
- return -ENODEV;
-
- outp->ior->func->hdmi.ctrl(outp->ior, hidx, args->v0.state,
- args->v0.max_ac_packet,
- args->v0.rekey, avi, avi_size,
- vendor, vendor_size);
-
- if (outp->ior->func->hdmi.scdc)
- outp->ior->func->hdmi.scdc(outp->ior, args->v0.scdc);
-
- return 0;
- }
- break;
- case NV50_DISP_MTHD_V1_SOR_LVDS_SCRIPT: {
- union {
- struct nv50_disp_sor_lvds_script_v0 v0;
- } *args = data;
- int ret = -ENOSYS;
- nvif_ioctl(object, "disp sor lvds script size %d\n", size);
- if (!(ret = nvif_unpack(ret, &data, &size, args->v0, 0, 0, false))) {
- nvif_ioctl(object, "disp sor lvds script "
- "vers %d name %04x\n",
- args->v0.version, args->v0.script);
- disp->sor.lvdsconf = args->v0.script;
- return 0;
- } else
- return ret;
- }
- break;
- case NV50_DISP_MTHD_V1_SOR_DP_MST_LINK: {
- union {
- struct nv50_disp_sor_dp_mst_link_v0 v0;
- } *args = data;
- int ret = -ENOSYS;
- nvif_ioctl(object, "disp sor dp mst link size %d\n", size);
- if (!(ret = nvif_unpack(ret, &data, &size, args->v0, 0, 0, false))) {
- nvif_ioctl(object, "disp sor dp mst link vers %d state %d\n",
- args->v0.version, args->v0.state);
- outp->dp.lt.mst = !!args->v0.state;
- return 0;
- } else
- return ret;
- }
- break;
- case NV50_DISP_MTHD_V1_SOR_DP_MST_VCPI: {
- union {
- struct nv50_disp_sor_dp_mst_vcpi_v0 v0;
- } *args = data;
- int ret = -ENOSYS;
- nvif_ioctl(object, "disp sor dp mst vcpi size %d\n", size);
- if (!(ret = nvif_unpack(ret, &data, &size, args->v0, 0, 0, false))) {
- nvif_ioctl(object, "disp sor dp mst vcpi vers %d "
- "slot %02x/%02x pbn %04x/%04x\n",
- args->v0.version, args->v0.start_slot,
- args->v0.num_slots, args->v0.pbn,
- args->v0.aligned_pbn);
- if (!outp->ior->func->dp->vcpi)
- return -ENODEV;
- outp->ior->func->dp->vcpi(outp->ior, hidx,
- args->v0.start_slot,
- args->v0.num_slots,
- args->v0.pbn,
- args->v0.aligned_pbn);
- return 0;
- } else
- return ret;
- }
- break;
- default:
- break;
- }
-
- return -EINVAL;
-}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/disp/tu102.c b/drivers/gpu/drm/nouveau/nvkm/engine/disp/tu102.c
index e4ad1a6f6c88..f5242a672279 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/disp/tu102.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/disp/tu102.c
@@ -88,10 +88,7 @@ tu102_sor = {
.state = gv100_sor_state,
.power = nv50_sor_power,
.clock = gf119_sor_clock,
- .hdmi = {
- .ctrl = gv100_sor_hdmi_ctrl,
- .scdc = gm200_sor_hdmi_scdc,
- },
+ .hdmi = &gv100_sor_hdmi,
.dp = &tu102_sor_dp,
.hda = &gv100_sor_hda,
};
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/disp/uconn.c b/drivers/gpu/drm/nouveau/nvkm/engine/disp/uconn.c
index fd9f18144c26..dad942be6679 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/disp/uconn.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/disp/uconn.c
@@ -21,12 +21,86 @@
*/
#define nvkm_uconn(p) container_of((p), struct nvkm_conn, object)
#include "conn.h"
+#include "outp.h"
+#include <core/client.h>
+#include <core/event.h>
#include <subdev/gpio.h>
+#include <subdev/i2c.h>
#include <nvif/if0011.h>
static int
+nvkm_uconn_uevent_aux(struct nvkm_object *object, u64 token, u32 bits)
+{
+ union nvif_conn_event_args args;
+
+ args.v0.version = 0;
+ args.v0.types = 0;
+ if (bits & NVKM_I2C_PLUG)
+ args.v0.types |= NVIF_CONN_EVENT_V0_PLUG;
+ if (bits & NVKM_I2C_UNPLUG)
+ args.v0.types |= NVIF_CONN_EVENT_V0_UNPLUG;
+ if (bits & NVKM_I2C_IRQ)
+ args.v0.types |= NVIF_CONN_EVENT_V0_IRQ;
+
+ return object->client->event(token, &args, sizeof(args.v0));
+}
+
+static int
+nvkm_uconn_uevent_gpio(struct nvkm_object *object, u64 token, u32 bits)
+{
+ union nvif_conn_event_args args;
+
+ args.v0.version = 0;
+ args.v0.types = 0;
+ if (bits & NVKM_GPIO_HI)
+ args.v0.types |= NVIF_CONN_EVENT_V0_PLUG;
+ if (bits & NVKM_GPIO_LO)
+ args.v0.types |= NVIF_CONN_EVENT_V0_UNPLUG;
+
+ return object->client->event(token, &args, sizeof(args.v0));
+}
+
+static int
+nvkm_uconn_uevent(struct nvkm_object *object, void *argv, u32 argc, struct nvkm_uevent *uevent)
+{
+ struct nvkm_conn *conn = nvkm_uconn(object);
+ struct nvkm_device *device = conn->disp->engine.subdev.device;
+ struct nvkm_outp *outp;
+ union nvif_conn_event_args *args = argv;
+ u64 bits = 0;
+
+ if (!uevent) {
+ if (conn->info.hpd == DCB_GPIO_UNUSED)
+ return -ENOSYS;
+ return 0;
+ }
+
+ if (argc != sizeof(args->v0) || args->v0.version != 0)
+ return -ENOSYS;
+
+ list_for_each_entry(outp, &conn->disp->outps, head) {
+ if (outp->info.connector == conn->index && outp->dp.aux) {
+ if (args->v0.types & NVIF_CONN_EVENT_V0_PLUG ) bits |= NVKM_I2C_PLUG;
+ if (args->v0.types & NVIF_CONN_EVENT_V0_UNPLUG) bits |= NVKM_I2C_UNPLUG;
+ if (args->v0.types & NVIF_CONN_EVENT_V0_IRQ ) bits |= NVKM_I2C_IRQ;
+
+ return nvkm_uevent_add(uevent, &device->i2c->event, outp->dp.aux->id, bits,
+ nvkm_uconn_uevent_aux);
+ }
+ }
+
+ if (args->v0.types & NVIF_CONN_EVENT_V0_PLUG ) bits |= NVKM_GPIO_HI;
+ if (args->v0.types & NVIF_CONN_EVENT_V0_UNPLUG) bits |= NVKM_GPIO_LO;
+ if (args->v0.types & NVIF_CONN_EVENT_V0_IRQ)
+ return -EINVAL;
+
+ return nvkm_uevent_add(uevent, &device->gpio->event, conn->info.hpd, bits,
+ nvkm_uconn_uevent_gpio);
+}
+
+static int
nvkm_uconn_mthd_hpd_status(struct nvkm_conn *conn, void *argv, u32 argc)
{
struct nvkm_gpio *gpio = conn->disp->engine.subdev.device->gpio;
@@ -82,6 +156,7 @@ static const struct nvkm_object_func
nvkm_uconn = {
.dtor = nvkm_uconn_dtor,
.mthd = nvkm_uconn_mthd,
+ .uevent = nvkm_uconn_uevent,
};
int
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/disp/udisp.c b/drivers/gpu/drm/nouveau/nvkm/engine/disp/udisp.c
index 0841e7ce0343..0268d1d75805 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/disp/udisp.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/disp/udisp.c
@@ -21,6 +21,7 @@
*/
#include "priv.h"
#include "conn.h"
+#include "head.h"
#include "outp.h"
#include <nvif/class.h>
@@ -43,6 +44,12 @@ nvkm_udisp_sclass(struct nvkm_object *object, int index, struct nvkm_oclass *scl
return 0;
}
+ if (index-- == 0) {
+ sclass->base = (struct nvkm_sclass) { 0, 0, NVIF_CLASS_HEAD };
+ sclass->ctor = nvkm_uhead_new;
+ return 0;
+ }
+
if (disp->func->user[index].ctor) {
sclass->base = disp->func->user[index].base;
sclass->ctor = disp->func->user[index].ctor;
@@ -52,17 +59,6 @@ nvkm_udisp_sclass(struct nvkm_object *object, int index, struct nvkm_oclass *scl
return -EINVAL;
}
-static int
-nvkm_udisp_mthd(struct nvkm_object *object, u32 mthd, void *argv, u32 argc)
-{
- struct nvkm_disp *disp = nvkm_udisp(object);
-
- if (disp->engine.subdev.device->card_type >= NV_50)
- return nv50_disp_root_mthd_(object, mthd, argv, argc);
-
- return nv04_disp_mthd(object, mthd, argv, argc);
-}
-
static void *
nvkm_udisp_dtor(struct nvkm_object *object)
{
@@ -78,8 +74,6 @@ nvkm_udisp_dtor(struct nvkm_object *object)
static const struct nvkm_object_func
nvkm_udisp = {
.dtor = nvkm_udisp_dtor,
- .mthd = nvkm_udisp_mthd,
- .ntfy = nvkm_disp_ntfy,
.sclass = nvkm_udisp_sclass,
};
@@ -89,6 +83,7 @@ nvkm_udisp_new(const struct nvkm_oclass *oclass, void *argv, u32 argc, struct nv
struct nvkm_disp *disp = nvkm_disp(oclass->engine);
struct nvkm_conn *conn;
struct nvkm_outp *outp;
+ struct nvkm_head *head;
union nvif_disp_args *args = argv;
if (argc != sizeof(args->v0) || args->v0.version != 0)
@@ -111,5 +106,9 @@ nvkm_udisp_new(const struct nvkm_oclass *oclass, void *argv, u32 argc, struct nv
list_for_each_entry(outp, &disp->outps, head)
args->v0.outp_mask |= BIT(outp->index);
+ args->v0.head_mask = 0;
+ list_for_each_entry(head, &disp->heads, head)
+ args->v0.head_mask |= BIT(head->id);
+
return 0;
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/disp/uhead.c b/drivers/gpu/drm/nouveau/nvkm/engine/disp/uhead.c
new file mode 100644
index 000000000000..f072cec16040
--- /dev/null
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/disp/uhead.c
@@ -0,0 +1,127 @@
+/*
+ * Copyright 2021 Red Hat Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ */
+#define nvkm_uhead(p) container_of((p), struct nvkm_head, object)
+#include "head.h"
+#include <core/event.h>
+
+#include <nvif/if0013.h>
+
+#include <nvif/event.h>
+
+static int
+nvkm_uhead_uevent(struct nvkm_object *object, void *argv, u32 argc, struct nvkm_uevent *uevent)
+{
+ struct nvkm_head *head = nvkm_uhead(object);
+ union nvif_head_event_args *args = argv;
+
+ if (!uevent)
+ return 0;
+ if (argc != sizeof(args->vn))
+ return -ENOSYS;
+
+ return nvkm_uevent_add(uevent, &head->disp->vblank, head->id,
+ NVKM_DISP_HEAD_EVENT_VBLANK, NULL);
+}
+
+static int
+nvkm_uhead_mthd_scanoutpos(struct nvkm_head *head, void *argv, u32 argc)
+{
+ union nvif_head_scanoutpos_args *args = argv;
+
+ if (argc != sizeof(args->v0) || args->v0.version != 0)
+ return -ENOSYS;
+
+ head->func->state(head, &head->arm);
+ args->v0.vtotal = head->arm.vtotal;
+ args->v0.vblanks = head->arm.vblanks;
+ args->v0.vblanke = head->arm.vblanke;
+ args->v0.htotal = head->arm.htotal;
+ args->v0.hblanks = head->arm.hblanks;
+ args->v0.hblanke = head->arm.hblanke;
+
+ /* We don't support reading htotal/vtotal on pre-NV50 VGA,
+ * so we have to give up and trigger the timestamping
+ * fallback in the drm core.
+ */
+ if (!args->v0.vtotal || !args->v0.htotal)
+ return -ENOTSUPP;
+
+ args->v0.time[0] = ktime_to_ns(ktime_get());
+ head->func->rgpos(head, &args->v0.hline, &args->v0.vline);
+ args->v0.time[1] = ktime_to_ns(ktime_get());
+ return 0;
+}
+
+static int
+nvkm_uhead_mthd(struct nvkm_object *object, u32 mthd, void *argv, u32 argc)
+{
+ struct nvkm_head *head = nvkm_uhead(object);
+
+ switch (mthd) {
+ case NVIF_HEAD_V0_SCANOUTPOS: return nvkm_uhead_mthd_scanoutpos(head, argv, argc);
+ default:
+ return -EINVAL;
+ }
+}
+
+static void *
+nvkm_uhead_dtor(struct nvkm_object *object)
+{
+ struct nvkm_head *head = nvkm_uhead(object);
+ struct nvkm_disp *disp = head->disp;
+
+ spin_lock(&disp->client.lock);
+ head->object.func = NULL;
+ spin_unlock(&disp->client.lock);
+ return NULL;
+}
+
+static const struct nvkm_object_func
+nvkm_uhead = {
+ .dtor = nvkm_uhead_dtor,
+ .mthd = nvkm_uhead_mthd,
+ .uevent = nvkm_uhead_uevent,
+};
+
+int
+nvkm_uhead_new(const struct nvkm_oclass *oclass, void *argv, u32 argc, struct nvkm_object **pobject)
+{
+ struct nvkm_disp *disp = nvkm_udisp(oclass->parent);
+ struct nvkm_head *head;
+ union nvif_head_args *args = argv;
+ int ret;
+
+ if (argc != sizeof(args->v0) || args->v0.version != 0)
+ return -ENOSYS;
+ if (!(head = nvkm_head_find(disp, args->v0.id)))
+ return -EINVAL;
+
+ ret = -EBUSY;
+ spin_lock(&disp->client.lock);
+ if (!head->object.func) {
+ nvkm_object_ctor(&nvkm_uhead, oclass, &head->object);
+ *pobject = &head->object;
+ ret = 0;
+ }
+ spin_unlock(&disp->client.lock);
+ return ret;
+}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/disp/uoutp.c b/drivers/gpu/drm/nouveau/nvkm/engine/disp/uoutp.c
index abedb3e86361..fc283a4a1522 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/disp/uoutp.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/disp/uoutp.c
@@ -21,11 +21,238 @@
*/
#define nvkm_uoutp(p) container_of((p), struct nvkm_outp, object)
#include "outp.h"
+#include "dp.h"
+#include "head.h"
#include "ior.h"
#include <nvif/if0012.h>
static int
+nvkm_uoutp_mthd_dp_mst_vcpi(struct nvkm_outp *outp, void *argv, u32 argc)
+{
+ struct nvkm_ior *ior = outp->ior;
+ union nvif_outp_dp_mst_vcpi_args *args = argv;
+
+ if (argc != sizeof(args->v0) || args->v0.version != 0)
+ return -ENOSYS;
+ if (!ior->func->dp || !ior->func->dp->vcpi || !nvkm_head_find(outp->disp, args->v0.head))
+ return -EINVAL;
+
+ ior->func->dp->vcpi(ior, args->v0.head, args->v0.start_slot, args->v0.num_slots,
+ args->v0.pbn, args->v0.aligned_pbn);
+ return 0;
+}
+
+static int
+nvkm_uoutp_mthd_dp_retrain(struct nvkm_outp *outp, void *argv, u32 argc)
+{
+ union nvif_outp_dp_retrain_args *args = argv;
+
+ if (argc != sizeof(args->vn))
+ return -ENOSYS;
+
+ if (!atomic_read(&outp->dp.lt.done))
+ return 0;
+
+ return outp->func->acquire(outp);
+}
+
+static int
+nvkm_uoutp_mthd_dp_aux_pwr(struct nvkm_outp *outp, void *argv, u32 argc)
+{
+ union nvif_outp_dp_aux_pwr_args *args = argv;
+
+ if (argc != sizeof(args->v0) || args->v0.version != 0)
+ return -ENOSYS;
+
+ outp->dp.enabled = !!args->v0.state;
+ nvkm_dp_enable(outp, outp->dp.enabled);
+ return 0;
+}
+
+static int
+nvkm_uoutp_mthd_hda_eld(struct nvkm_outp *outp, void *argv, u32 argc)
+{
+ struct nvkm_ior *ior = outp->ior;
+ union nvif_outp_hda_eld_args *args = argv;
+
+ if (argc < sizeof(args->v0) || args->v0.version != 0)
+ return -ENOSYS;
+ argc -= sizeof(args->v0);
+
+ if (!ior->hda || !nvkm_head_find(outp->disp, args->v0.head))
+ return -EINVAL;
+ if (argc > 0x60)
+ return -E2BIG;
+
+ if (argc && args->v0.data[0]) {
+ if (outp->info.type == DCB_OUTPUT_DP)
+ ior->func->dp->audio(ior, args->v0.head, true);
+ ior->func->hda->hpd(ior, args->v0.head, true);
+ ior->func->hda->eld(ior, args->v0.head, args->v0.data, argc);
+ } else {
+ if (outp->info.type == DCB_OUTPUT_DP)
+ ior->func->dp->audio(ior, args->v0.head, false);
+ ior->func->hda->hpd(ior, args->v0.head, false);
+ }
+
+ return 0;
+}
+
+static int
+nvkm_uoutp_mthd_infoframe(struct nvkm_outp *outp, void *argv, u32 argc)
+{
+ struct nvkm_ior *ior = outp->ior;
+ union nvif_outp_infoframe_args *args = argv;
+ ssize_t size = argc - sizeof(*args);
+
+ if (argc < sizeof(args->v0) || args->v0.version != 0)
+ return -ENOSYS;
+ if (!nvkm_head_find(outp->disp, args->v0.head))
+ return -EINVAL;
+
+ switch (ior->func->hdmi ? args->v0.type : 0xff) {
+ case NVIF_OUTP_INFOFRAME_V0_AVI:
+ ior->func->hdmi->infoframe_avi(ior, args->v0.head, &args->v0.data, size);
+ return 0;
+ case NVIF_OUTP_INFOFRAME_V0_VSI:
+ ior->func->hdmi->infoframe_vsi(ior, args->v0.head, &args->v0.data, size);
+ return 0;
+ default:
+ break;
+ }
+
+ return -EINVAL;
+}
+
+static int
+nvkm_uoutp_mthd_release(struct nvkm_outp *outp, void *argv, u32 argc)
+{
+ struct nvkm_head *head = outp->asy.head;
+ struct nvkm_ior *ior = outp->ior;
+ union nvif_outp_release_args *args = argv;
+
+ if (argc != sizeof(args->vn))
+ return -ENOSYS;
+
+ if (ior->func->hdmi && head) {
+ ior->func->hdmi->infoframe_avi(ior, head->id, NULL, 0);
+ ior->func->hdmi->infoframe_vsi(ior, head->id, NULL, 0);
+ ior->func->hdmi->ctrl(ior, head->id, false, 0, 0);
+ }
+
+ nvkm_outp_release(outp, NVKM_OUTP_USER);
+ return 0;
+}
+
+static int
+nvkm_uoutp_mthd_acquire_dp(struct nvkm_outp *outp, u8 dpcd[DP_RECEIVER_CAP_SIZE],
+ u8 link_nr, u8 link_bw, bool hda, bool mst)
+{
+ int ret;
+
+ ret = nvkm_outp_acquire(outp, NVKM_OUTP_USER, hda);
+ if (ret)
+ return ret;
+
+ memcpy(outp->dp.dpcd, dpcd, sizeof(outp->dp.dpcd));
+ outp->dp.lt.nr = link_nr;
+ outp->dp.lt.bw = link_bw;
+ outp->dp.lt.mst = mst;
+ return 0;
+}
+
+static int
+nvkm_uoutp_mthd_acquire_tmds(struct nvkm_outp *outp, u8 head, u8 hdmi, u8 hdmi_max_ac_packet,
+ u8 hdmi_rekey, u8 hdmi_scdc, u8 hdmi_hda)
+{
+ struct nvkm_ior *ior;
+ int ret;
+
+ if (!(outp->asy.head = nvkm_head_find(outp->disp, head)))
+ return -EINVAL;
+
+ ret = nvkm_outp_acquire(outp, NVKM_OUTP_USER, hdmi && hdmi_hda);
+ if (ret)
+ return ret;
+
+ ior = outp->ior;
+
+ if (hdmi) {
+ if (!ior->func->hdmi ||
+ hdmi_max_ac_packet > 0x1f || hdmi_rekey > 0x7f ||
+ (hdmi_scdc && !ior->func->hdmi->scdc)) {
+ nvkm_outp_release(outp, NVKM_OUTP_USER);
+ return -EINVAL;
+ }
+
+ ior->func->hdmi->ctrl(ior, head, hdmi, hdmi_max_ac_packet, hdmi_rekey);
+ if (ior->func->hdmi->scdc)
+ ior->func->hdmi->scdc(ior, hdmi_scdc);
+ }
+
+ return 0;
+}
+
+static int
+nvkm_uoutp_mthd_acquire_lvds(struct nvkm_outp *outp, bool dual, bool bpc8)
+{
+ if (outp->info.type != DCB_OUTPUT_LVDS)
+ return -EINVAL;
+
+ outp->lvds.dual = dual;
+ outp->lvds.bpc8 = bpc8;
+
+ return nvkm_outp_acquire(outp, NVKM_OUTP_USER, false);
+}
+
+static int
+nvkm_uoutp_mthd_acquire(struct nvkm_outp *outp, void *argv, u32 argc)
+{
+ union nvif_outp_acquire_args *args = argv;
+ int ret;
+
+ if (argc != sizeof(args->v0) || args->v0.version != 0)
+ return -ENOSYS;
+ if (outp->ior)
+ return -EBUSY;
+
+ switch (args->v0.proto) {
+ case NVIF_OUTP_ACQUIRE_V0_RGB_CRT:
+ ret = nvkm_outp_acquire(outp, NVKM_OUTP_USER, false);
+ break;
+ case NVIF_OUTP_ACQUIRE_V0_TMDS:
+ ret = nvkm_uoutp_mthd_acquire_tmds(outp, args->v0.tmds.head,
+ args->v0.tmds.hdmi,
+ args->v0.tmds.hdmi_max_ac_packet,
+ args->v0.tmds.hdmi_rekey,
+ args->v0.tmds.hdmi_scdc,
+ args->v0.tmds.hdmi_hda);
+ break;
+ case NVIF_OUTP_ACQUIRE_V0_LVDS:
+ ret = nvkm_uoutp_mthd_acquire_lvds(outp, args->v0.lvds.dual, args->v0.lvds.bpc8);
+ break;
+ case NVIF_OUTP_ACQUIRE_V0_DP:
+ ret = nvkm_uoutp_mthd_acquire_dp(outp, args->v0.dp.dpcd,
+ args->v0.dp.link_nr,
+ args->v0.dp.link_bw,
+ args->v0.dp.hda != 0,
+ args->v0.dp.mst != 0);
+ break;
+ default:
+ ret = -EINVAL;
+ break;
+ }
+
+ if (ret)
+ return ret;
+
+ args->v0.or = outp->ior->id;
+ args->v0.link = outp->ior->asy.link;
+ return 0;
+}
+
+static int
nvkm_uoutp_mthd_load_detect(struct nvkm_outp *outp, void *argv, u32 argc)
{
union nvif_outp_load_detect_args *args = argv;
@@ -49,10 +276,28 @@ nvkm_uoutp_mthd_load_detect(struct nvkm_outp *outp, void *argv, u32 argc)
}
static int
+nvkm_uoutp_mthd_acquired(struct nvkm_outp *outp, u32 mthd, void *argv, u32 argc)
+{
+ switch (mthd) {
+ case NVIF_OUTP_V0_RELEASE : return nvkm_uoutp_mthd_release (outp, argv, argc);
+ case NVIF_OUTP_V0_INFOFRAME : return nvkm_uoutp_mthd_infoframe (outp, argv, argc);
+ case NVIF_OUTP_V0_HDA_ELD : return nvkm_uoutp_mthd_hda_eld (outp, argv, argc);
+ case NVIF_OUTP_V0_DP_RETRAIN : return nvkm_uoutp_mthd_dp_retrain (outp, argv, argc);
+ case NVIF_OUTP_V0_DP_MST_VCPI: return nvkm_uoutp_mthd_dp_mst_vcpi(outp, argv, argc);
+ default:
+ break;
+ }
+
+ return -EINVAL;
+}
+
+static int
nvkm_uoutp_mthd_noacquire(struct nvkm_outp *outp, u32 mthd, void *argv, u32 argc)
{
switch (mthd) {
case NVIF_OUTP_V0_LOAD_DETECT: return nvkm_uoutp_mthd_load_detect(outp, argv, argc);
+ case NVIF_OUTP_V0_ACQUIRE : return nvkm_uoutp_mthd_acquire (outp, argv, argc);
+ case NVIF_OUTP_V0_DP_AUX_PWR : return nvkm_uoutp_mthd_dp_aux_pwr (outp, argv, argc);
default:
break;
}
@@ -73,6 +318,11 @@ nvkm_uoutp_mthd(struct nvkm_object *object, u32 mthd, void *argv, u32 argc)
if (ret <= 0)
goto done;
+ if (outp->ior)
+ ret = nvkm_uoutp_mthd_acquired(outp, mthd, argv, argc);
+ else
+ ret = -EIO;
+
done:
mutex_unlock(&disp->super.mutex);
return ret;
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/falcon.c b/drivers/gpu/drm/nouveau/nvkm/engine/falcon.c
index 43b7dec45179..d619b40a42c3 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/falcon.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/falcon.c
@@ -65,10 +65,10 @@ nvkm_falcon_intr(struct nvkm_engine *engine)
u32 dest = nvkm_rd32(device, base + 0x01c);
u32 intr = nvkm_rd32(device, base + 0x008) & dest & ~(dest >> 16);
u32 inst = nvkm_rd32(device, base + 0x050) & 0x3fffffff;
- struct nvkm_fifo_chan *chan;
+ struct nvkm_chan *chan;
unsigned long flags;
- chan = nvkm_fifo_chan_inst(device->fifo, (u64)inst << 12, &flags);
+ chan = nvkm_chan_get_inst(engine, (u64)inst << 12, &flags);
if (intr & 0x00000040) {
if (falcon->func->intr) {
@@ -89,7 +89,7 @@ nvkm_falcon_intr(struct nvkm_engine *engine)
nvkm_wr32(device, base + 0x004, intr);
}
- nvkm_fifo_chan_put(device->fifo, flags, &chan);
+ nvkm_chan_put(&chan, flags);
}
static int
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/Kbuild b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/Kbuild
index 5e831d347a95..5a074b9970ab 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/Kbuild
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/Kbuild
@@ -1,11 +1,18 @@
# SPDX-License-Identifier: MIT
nvkm-y += nvkm/engine/fifo/base.o
+nvkm-y += nvkm/engine/fifo/cgrp.o
+nvkm-y += nvkm/engine/fifo/chan.o
+nvkm-y += nvkm/engine/fifo/chid.o
+nvkm-y += nvkm/engine/fifo/runl.o
+nvkm-y += nvkm/engine/fifo/runq.o
+
nvkm-y += nvkm/engine/fifo/nv04.o
nvkm-y += nvkm/engine/fifo/nv10.o
nvkm-y += nvkm/engine/fifo/nv17.o
nvkm-y += nvkm/engine/fifo/nv40.o
nvkm-y += nvkm/engine/fifo/nv50.o
nvkm-y += nvkm/engine/fifo/g84.o
+nvkm-y += nvkm/engine/fifo/g98.o
nvkm-y += nvkm/engine/fifo/gf100.o
nvkm-y += nvkm/engine/fifo/gk104.o
nvkm-y += nvkm/engine/fifo/gk110.o
@@ -13,28 +20,11 @@ nvkm-y += nvkm/engine/fifo/gk208.o
nvkm-y += nvkm/engine/fifo/gk20a.o
nvkm-y += nvkm/engine/fifo/gm107.o
nvkm-y += nvkm/engine/fifo/gm200.o
-nvkm-y += nvkm/engine/fifo/gm20b.o
nvkm-y += nvkm/engine/fifo/gp100.o
-nvkm-y += nvkm/engine/fifo/gp10b.o
nvkm-y += nvkm/engine/fifo/gv100.o
nvkm-y += nvkm/engine/fifo/tu102.o
+nvkm-y += nvkm/engine/fifo/ga100.o
nvkm-y += nvkm/engine/fifo/ga102.o
-nvkm-y += nvkm/engine/fifo/chan.o
-nvkm-y += nvkm/engine/fifo/channv50.o
-nvkm-y += nvkm/engine/fifo/chang84.o
-
-nvkm-y += nvkm/engine/fifo/dmanv04.o
-nvkm-y += nvkm/engine/fifo/dmanv10.o
-nvkm-y += nvkm/engine/fifo/dmanv17.o
-nvkm-y += nvkm/engine/fifo/dmanv40.o
-
-nvkm-y += nvkm/engine/fifo/gpfifonv50.o
-nvkm-y += nvkm/engine/fifo/gpfifog84.o
-nvkm-y += nvkm/engine/fifo/gpfifogf100.o
-nvkm-y += nvkm/engine/fifo/gpfifogk104.o
-nvkm-y += nvkm/engine/fifo/gpfifogv100.o
-nvkm-y += nvkm/engine/fifo/gpfifotu102.o
-
-nvkm-y += nvkm/engine/fifo/usergv100.o
-nvkm-y += nvkm/engine/fifo/usertu102.o
+nvkm-y += nvkm/engine/fifo/ucgrp.o
+nvkm-y += nvkm/engine/fifo/uchan.o
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/base.c b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/base.c
index 58b8df75fc40..5ea9a2ff0663 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/base.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/base.c
@@ -23,25 +23,32 @@
*/
#include "priv.h"
#include "chan.h"
+#include "chid.h"
+#include "runl.h"
+#include "runq.h"
-#include <core/client.h>
#include <core/gpuobj.h>
-#include <core/notify.h>
+#include <subdev/bar.h>
#include <subdev/mc.h>
+#include <subdev/mmu.h>
-#include <nvif/event.h>
#include <nvif/cl0080.h>
#include <nvif/unpack.h>
-void
-nvkm_fifo_recover_chan(struct nvkm_fifo *fifo, int chid)
+bool
+nvkm_fifo_ctxsw_in_progress(struct nvkm_engine *engine)
{
- unsigned long flags;
- if (WARN_ON(!fifo->func->recover_chan))
- return;
- spin_lock_irqsave(&fifo->lock, flags);
- fifo->func->recover_chan(fifo, chid);
- spin_unlock_irqrestore(&fifo->lock, flags);
+ struct nvkm_runl *runl;
+ struct nvkm_engn *engn;
+
+ nvkm_runl_foreach(runl, engine->subdev.device->fifo) {
+ nvkm_runl_foreach_engn(engn, runl) {
+ if (engn->engine == engine)
+ return engn->func->chsw ? engn->func->chsw(engn) : false;
+ }
+ }
+
+ return false;
}
void
@@ -59,160 +66,23 @@ nvkm_fifo_start(struct nvkm_fifo *fifo, unsigned long *flags)
void
nvkm_fifo_fault(struct nvkm_fifo *fifo, struct nvkm_fault_data *info)
{
- return fifo->func->fault(fifo, info);
-}
-
-void
-nvkm_fifo_chan_put(struct nvkm_fifo *fifo, unsigned long flags,
- struct nvkm_fifo_chan **pchan)
-{
- struct nvkm_fifo_chan *chan = *pchan;
- if (likely(chan)) {
- *pchan = NULL;
- spin_unlock_irqrestore(&fifo->lock, flags);
- }
-}
-
-struct nvkm_fifo_chan *
-nvkm_fifo_chan_inst_locked(struct nvkm_fifo *fifo, u64 inst)
-{
- struct nvkm_fifo_chan *chan;
- list_for_each_entry(chan, &fifo->chan, head) {
- if (chan->inst->addr == inst) {
- list_del(&chan->head);
- list_add(&chan->head, &fifo->chan);
- return chan;
- }
- }
- return NULL;
-}
-
-struct nvkm_fifo_chan *
-nvkm_fifo_chan_inst(struct nvkm_fifo *fifo, u64 inst, unsigned long *rflags)
-{
- struct nvkm_fifo_chan *chan;
- unsigned long flags;
- spin_lock_irqsave(&fifo->lock, flags);
- if ((chan = nvkm_fifo_chan_inst_locked(fifo, inst))) {
- *rflags = flags;
- return chan;
- }
- spin_unlock_irqrestore(&fifo->lock, flags);
- return NULL;
-}
-
-struct nvkm_fifo_chan *
-nvkm_fifo_chan_chid(struct nvkm_fifo *fifo, int chid, unsigned long *rflags)
-{
- struct nvkm_fifo_chan *chan;
- unsigned long flags;
- spin_lock_irqsave(&fifo->lock, flags);
- list_for_each_entry(chan, &fifo->chan, head) {
- if (chan->chid == chid) {
- list_del(&chan->head);
- list_add(&chan->head, &fifo->chan);
- *rflags = flags;
- return chan;
- }
- }
- spin_unlock_irqrestore(&fifo->lock, flags);
- return NULL;
-}
-
-void
-nvkm_fifo_kevent(struct nvkm_fifo *fifo, int chid)
-{
- nvkm_event_send(&fifo->kevent, 1, chid, NULL, 0);
-}
-
-static int
-nvkm_fifo_kevent_ctor(struct nvkm_object *object, void *data, u32 size,
- struct nvkm_notify *notify)
-{
- struct nvkm_fifo_chan *chan = nvkm_fifo_chan(object);
- if (size == 0) {
- notify->size = 0;
- notify->types = 1;
- notify->index = chan->chid;
- return 0;
- }
- return -ENOSYS;
-}
-
-static const struct nvkm_event_func
-nvkm_fifo_kevent_func = {
- .ctor = nvkm_fifo_kevent_ctor,
-};
-
-static void
-nvkm_fifo_uevent_fini(struct nvkm_event *event, int type, int index)
-{
- struct nvkm_fifo *fifo = container_of(event, typeof(*fifo), uevent);
- fifo->func->uevent_fini(fifo);
-}
-
-static void
-nvkm_fifo_uevent_init(struct nvkm_event *event, int type, int index)
-{
- struct nvkm_fifo *fifo = container_of(event, typeof(*fifo), uevent);
- fifo->func->uevent_init(fifo);
-}
-
-static int
-nvkm_fifo_uevent_ctor(struct nvkm_object *object, void *data, u32 size,
- struct nvkm_notify *notify)
-{
- union {
- struct nvif_notify_uevent_req none;
- } *req = data;
- int ret = -ENOSYS;
-
- if (!(ret = nvif_unvers(ret, &data, &size, req->none))) {
- notify->size = sizeof(struct nvif_notify_uevent_rep);
- notify->types = 1;
- notify->index = 0;
- }
-
- return ret;
-}
-
-static const struct nvkm_event_func
-nvkm_fifo_uevent_func = {
- .ctor = nvkm_fifo_uevent_ctor,
- .init = nvkm_fifo_uevent_init,
- .fini = nvkm_fifo_uevent_fini,
-};
-
-void
-nvkm_fifo_uevent(struct nvkm_fifo *fifo)
-{
- struct nvif_notify_uevent_rep rep = {
- };
- nvkm_event_send(&fifo->uevent, 1, 0, &rep, sizeof(rep));
+ return fifo->func->mmu_fault->recover(fifo, info);
}
static int
-nvkm_fifo_class_new_(struct nvkm_device *device,
- const struct nvkm_oclass *oclass, void *data, u32 size,
- struct nvkm_object **pobject)
+nvkm_fifo_class_new(struct nvkm_device *device, const struct nvkm_oclass *oclass,
+ void *argv, u32 argc, struct nvkm_object **pobject)
{
struct nvkm_fifo *fifo = nvkm_fifo(oclass->engine);
- return fifo->func->class_new(fifo, oclass, data, size, pobject);
-}
-static const struct nvkm_device_oclass
-nvkm_fifo_class_ = {
- .ctor = nvkm_fifo_class_new_,
-};
+ if (oclass->engn == &fifo->func->cgrp.user)
+ return nvkm_ucgrp_new(fifo, oclass, argv, argc, pobject);
-static int
-nvkm_fifo_class_new(struct nvkm_device *device,
- const struct nvkm_oclass *oclass, void *data, u32 size,
- struct nvkm_object **pobject)
-{
- const struct nvkm_fifo_chan_oclass *sclass = oclass->engn;
- struct nvkm_fifo *fifo = nvkm_fifo(oclass->engine);
- return sclass->ctor(fifo, oclass, data, size, pobject);
+ if (oclass->engn == &fifo->func->chan.user)
+ return nvkm_uchan_new(fifo, NULL, oclass, argv, argc, pobject);
+
+ WARN_ON(1);
+ return -ENOSYS;
}
static const struct nvkm_device_oclass
@@ -221,24 +91,28 @@ nvkm_fifo_class = {
};
static int
-nvkm_fifo_class_get(struct nvkm_oclass *oclass, int index,
- const struct nvkm_device_oclass **class)
+nvkm_fifo_class_get(struct nvkm_oclass *oclass, int index, const struct nvkm_device_oclass **class)
{
struct nvkm_fifo *fifo = nvkm_fifo(oclass->engine);
- const struct nvkm_fifo_chan_oclass *sclass;
+ const struct nvkm_fifo_func_cgrp *cgrp = &fifo->func->cgrp;
+ const struct nvkm_fifo_func_chan *chan = &fifo->func->chan;
int c = 0;
- if (fifo->func->class_get) {
- int ret = fifo->func->class_get(fifo, index, oclass);
- if (ret == 0)
- *class = &nvkm_fifo_class_;
- return ret;
+ /* *_CHANNEL_GROUP_* */
+ if (cgrp->user.oclass) {
+ if (c++ == index) {
+ oclass->base = cgrp->user;
+ oclass->engn = &fifo->func->cgrp.user;
+ *class = &nvkm_fifo_class;
+ return 0;
+ }
}
- while ((sclass = fifo->func->chan[c])) {
+ /* *_CHANNEL_DMA, *_CHANNEL_GPFIFO_* */
+ if (chan->user.oclass) {
if (c++ == index) {
- oclass->base = sclass->base;
- oclass->engn = sclass;
+ oclass->base = chan->user;
+ oclass->engn = &fifo->func->chan.user;
*class = &nvkm_fifo_class;
return 0;
}
@@ -247,19 +121,47 @@ nvkm_fifo_class_get(struct nvkm_oclass *oclass, int index,
return c;
}
-static void
-nvkm_fifo_intr(struct nvkm_engine *engine)
+static int
+nvkm_fifo_fini(struct nvkm_engine *engine, bool suspend)
{
struct nvkm_fifo *fifo = nvkm_fifo(engine);
- fifo->func->intr(fifo);
+ struct nvkm_runl *runl;
+
+ nvkm_inth_block(&fifo->engine.subdev.inth);
+
+ nvkm_runl_foreach(runl, fifo)
+ nvkm_runl_fini(runl);
+
+ return 0;
}
static int
-nvkm_fifo_fini(struct nvkm_engine *engine, bool suspend)
+nvkm_fifo_init(struct nvkm_engine *engine)
{
struct nvkm_fifo *fifo = nvkm_fifo(engine);
- if (fifo->func->fini)
- fifo->func->fini(fifo);
+ struct nvkm_runq *runq;
+ struct nvkm_runl *runl;
+ u32 mask = 0;
+
+ if (fifo->func->init_pbdmas) {
+ nvkm_runq_foreach(runq, fifo)
+ mask |= BIT(runq->id);
+
+ fifo->func->init_pbdmas(fifo, mask);
+
+ nvkm_runq_foreach(runq, fifo)
+ runq->func->init(runq);
+ }
+
+ nvkm_runl_foreach(runl, fifo) {
+ if (runl->func->init)
+ runl->func->init(runl);
+ }
+
+ if (fifo->func->init)
+ fifo->func->init(fifo);
+
+ nvkm_inth_allow(&fifo->engine.subdev.inth);
return 0;
}
@@ -267,22 +169,146 @@ static int
nvkm_fifo_info(struct nvkm_engine *engine, u64 mthd, u64 *data)
{
struct nvkm_fifo *fifo = nvkm_fifo(engine);
+ struct nvkm_runl *runl;
+ struct nvkm_engn *engn;
+ int ret;
+
+ ret = nvkm_subdev_oneinit(&fifo->engine.subdev);
+ if (ret)
+ return ret;
+
switch (mthd) {
- case NV_DEVICE_HOST_CHANNELS: *data = fifo->nr; return 0;
+ case NV_DEVICE_HOST_CHANNELS: *data = fifo->chid ? fifo->chid->nr : 0; return 0;
+ case NV_DEVICE_HOST_RUNLISTS:
+ *data = 0;
+ nvkm_runl_foreach(runl, fifo)
+ *data |= BIT(runl->id);
+ return 0;
+ case NV_DEVICE_HOST_RUNLIST_ENGINES:
+ runl = nvkm_runl_get(fifo, *data, 0);
+ if (runl) {
+ *data = 0;
+ nvkm_runl_foreach_engn(engn, runl) {
+#define CASE(n) case NVKM_ENGINE_##n: *data |= NV_DEVICE_HOST_RUNLIST_ENGINES_##n; break
+ switch (engn->engine->subdev.type) {
+ case NVKM_ENGINE_DMAOBJ:
+ break;
+ CASE(SW );
+ CASE(GR );
+ CASE(MPEG );
+ CASE(ME );
+ CASE(CIPHER);
+ CASE(BSP );
+ CASE(VP );
+ CASE(CE );
+ CASE(SEC );
+ CASE(MSVLD );
+ CASE(MSPDEC);
+ CASE(MSPPP );
+ CASE(MSENC );
+ CASE(VIC );
+ CASE(SEC2 );
+ CASE(NVDEC );
+ CASE(NVENC );
+ default:
+ WARN_ON(1);
+ break;
+ }
+#undef CASE
+ }
+ return 0;
+ }
+ return -EINVAL;
+ case NV_DEVICE_HOST_RUNLIST_CHANNELS:
+ if (!fifo->chid) {
+ runl = nvkm_runl_get(fifo, *data, 0);
+ if (runl) {
+ *data = runl->chid->nr;
+ return 0;
+ }
+ }
+ return -EINVAL;
default:
- if (fifo->func->info)
- return fifo->func->info(fifo, mthd, data);
break;
}
+
return -ENOSYS;
}
static int
nvkm_fifo_oneinit(struct nvkm_engine *engine)
{
+ struct nvkm_subdev *subdev = &engine->subdev;
+ struct nvkm_device *device = subdev->device;
struct nvkm_fifo *fifo = nvkm_fifo(engine);
- if (fifo->func->oneinit)
- return fifo->func->oneinit(fifo);
+ struct nvkm_runl *runl;
+ struct nvkm_engn *engn;
+ int ret, nr, i;
+
+ /* Initialise CHID/CGID allocator(s) on GPUs where they aren't per-runlist. */
+ if (fifo->func->chid_nr) {
+ ret = fifo->func->chid_ctor(fifo, fifo->func->chid_nr(fifo));
+ if (ret)
+ return ret;
+ }
+
+ /* Create runqueues for each PBDMA. */
+ if (fifo->func->runq_nr) {
+ for (nr = fifo->func->runq_nr(fifo), i = 0; i < nr; i++) {
+ if (!nvkm_runq_new(fifo, i))
+ return -ENOMEM;
+ }
+ }
+
+ /* Create runlists. */
+ ret = fifo->func->runl_ctor(fifo);
+ if (ret)
+ return ret;
+
+ nvkm_runl_foreach(runl, fifo) {
+ RUNL_DEBUG(runl, "chan:%06x", runl->chan);
+ nvkm_runl_foreach_engn(engn, runl) {
+ ENGN_DEBUG(engn, "");
+ }
+ }
+
+ /* Register interrupt handler. */
+ if (fifo->func->intr) {
+ ret = nvkm_inth_add(&device->mc->intr, NVKM_INTR_SUBDEV, NVKM_INTR_PRIO_NORMAL,
+ subdev, fifo->func->intr, &subdev->inth);
+ if (ret) {
+ nvkm_error(subdev, "intr %d\n", ret);
+ return ret;
+ }
+ }
+
+ /* Initialise non-stall intr handling. */
+ if (fifo->func->nonstall_ctor) {
+ ret = fifo->func->nonstall_ctor(fifo);
+ if (ret) {
+ nvkm_error(subdev, "nonstall %d\n", ret);
+ }
+ }
+
+ /* Allocate USERD + BAR1 polling area. */
+ if (fifo->func->chan.func->userd->bar == 1) {
+ struct nvkm_vmm *bar1 = nvkm_bar_bar1_vmm(device);
+
+ ret = nvkm_memory_new(device, NVKM_MEM_TARGET_INST, fifo->chid->nr *
+ fifo->func->chan.func->userd->size, 0, true,
+ &fifo->userd.mem);
+ if (ret)
+ return ret;
+
+ ret = nvkm_vmm_get(bar1, 12, nvkm_memory_size(fifo->userd.mem), &fifo->userd.bar1);
+ if (ret)
+ return ret;
+
+ ret = nvkm_memory_map(fifo->userd.mem, 0, bar1, fifo->userd.bar1, NULL, 0);
+ if (ret)
+ return ret;
+ }
+
return 0;
}
@@ -292,25 +318,28 @@ nvkm_fifo_preinit(struct nvkm_engine *engine)
nvkm_mc_reset(engine->subdev.device, NVKM_ENGINE_FIFO, 0);
}
-static int
-nvkm_fifo_init(struct nvkm_engine *engine)
-{
- struct nvkm_fifo *fifo = nvkm_fifo(engine);
- fifo->func->init(fifo);
- return 0;
-}
-
static void *
nvkm_fifo_dtor(struct nvkm_engine *engine)
{
struct nvkm_fifo *fifo = nvkm_fifo(engine);
- void *data = fifo;
- if (fifo->func->dtor)
- data = fifo->func->dtor(fifo);
- nvkm_event_fini(&fifo->kevent);
- nvkm_event_fini(&fifo->uevent);
+ struct nvkm_runl *runl, *runt;
+ struct nvkm_runq *runq, *rtmp;
+
+ if (fifo->userd.bar1)
+ nvkm_vmm_put(nvkm_bar_bar1_vmm(engine->subdev.device), &fifo->userd.bar1);
+ nvkm_memory_unref(&fifo->userd.mem);
+
+ list_for_each_entry_safe(runl, runt, &fifo->runls, head)
+ nvkm_runl_del(runl);
+ list_for_each_entry_safe(runq, rtmp, &fifo->runqs, head)
+ nvkm_runq_del(runq);
+
+ nvkm_chid_unref(&fifo->cgid);
+ nvkm_chid_unref(&fifo->chid);
+
+ nvkm_event_fini(&fifo->nonstall.event);
mutex_destroy(&fifo->mutex);
- return data;
+ return fifo;
}
static const struct nvkm_engine_func
@@ -321,37 +350,40 @@ nvkm_fifo = {
.info = nvkm_fifo_info,
.init = nvkm_fifo_init,
.fini = nvkm_fifo_fini,
- .intr = nvkm_fifo_intr,
.base.sclass = nvkm_fifo_class_get,
};
int
-nvkm_fifo_ctor(const struct nvkm_fifo_func *func, struct nvkm_device *device,
- enum nvkm_subdev_type type, int inst, int nr, struct nvkm_fifo *fifo)
+nvkm_fifo_new_(const struct nvkm_fifo_func *func, struct nvkm_device *device,
+ enum nvkm_subdev_type type, int inst, struct nvkm_fifo **pfifo)
{
+ struct nvkm_fifo *fifo;
int ret;
+ if (!(fifo = *pfifo = kzalloc(sizeof(*fifo), GFP_KERNEL)))
+ return -ENOMEM;
+
fifo->func = func;
- INIT_LIST_HEAD(&fifo->chan);
+ INIT_LIST_HEAD(&fifo->runqs);
+ INIT_LIST_HEAD(&fifo->runls);
+ /*TODO: Needs to be >CTXSW_TIMEOUT, so RC can recover before this is hit.
+ * CTXSW_TIMEOUT HW default seems to differ between GPUs, so just a
+ * large number for now until we support changing it.
+ */
+ fifo->timeout.chan_msec = 10000;
spin_lock_init(&fifo->lock);
mutex_init(&fifo->mutex);
- if (WARN_ON(fifo->nr > NVKM_FIFO_CHID_NR))
- fifo->nr = NVKM_FIFO_CHID_NR;
- else
- fifo->nr = nr;
- bitmap_clear(fifo->mask, 0, fifo->nr);
-
ret = nvkm_engine_ctor(&nvkm_fifo, device, type, inst, true, &fifo->engine);
if (ret)
return ret;
- if (func->uevent_init) {
- ret = nvkm_event_init(&nvkm_fifo_uevent_func, 1, 1,
- &fifo->uevent);
+ if (func->nonstall) {
+ ret = nvkm_event_init(func->nonstall, &fifo->engine.subdev, 1, 1,
+ &fifo->nonstall.event);
if (ret)
return ret;
}
- return nvkm_event_init(&nvkm_fifo_kevent_func, 1, nr, &fifo->kevent);
+ return 0;
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/cgrp.c b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/cgrp.c
new file mode 100644
index 000000000000..ea53fb3d5d06
--- /dev/null
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/cgrp.c
@@ -0,0 +1,252 @@
+/*
+ * Copyright 2021 Red Hat Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ */
+#include "cgrp.h"
+#include "chan.h"
+#include "chid.h"
+#include "runl.h"
+#include "priv.h"
+
+#include <core/gpuobj.h>
+#include <subdev/mmu.h>
+
+static void
+nvkm_cgrp_ectx_put(struct nvkm_cgrp *cgrp, struct nvkm_ectx **pectx)
+{
+ struct nvkm_ectx *ectx = *pectx;
+
+ if (ectx) {
+ struct nvkm_engn *engn = ectx->engn;
+
+ if (refcount_dec_and_test(&ectx->refs)) {
+ CGRP_TRACE(cgrp, "dtor ectx %d[%s]", engn->id, engn->engine->subdev.name);
+ nvkm_object_del(&ectx->object);
+ list_del(&ectx->head);
+ kfree(ectx);
+ }
+
+ *pectx = NULL;
+ }
+}
+
+static int
+nvkm_cgrp_ectx_get(struct nvkm_cgrp *cgrp, struct nvkm_engn *engn, struct nvkm_ectx **pectx,
+ struct nvkm_chan *chan, struct nvkm_client *client)
+{
+ struct nvkm_engine *engine = engn->engine;
+ struct nvkm_oclass cclass = {
+ .client = client,
+ .engine = engine,
+ };
+ struct nvkm_ectx *ectx;
+ int ret = 0;
+
+ /* Look for an existing context for this engine in the channel group. */
+ ectx = nvkm_list_find(ectx, &cgrp->ectxs, head, ectx->engn == engn);
+ if (ectx) {
+ refcount_inc(&ectx->refs);
+ *pectx = ectx;
+ return 0;
+ }
+
+ /* Nope - create a fresh one. */
+ CGRP_TRACE(cgrp, "ctor ectx %d[%s]", engn->id, engn->engine->subdev.name);
+ if (!(ectx = *pectx = kzalloc(sizeof(*ectx), GFP_KERNEL)))
+ return -ENOMEM;
+
+ ectx->engn = engn;
+ refcount_set(&ectx->refs, 1);
+ refcount_set(&ectx->uses, 0);
+ list_add_tail(&ectx->head, &cgrp->ectxs);
+
+ /* Allocate the HW structures. */
+ if (engine->func->fifo.cclass)
+ ret = engine->func->fifo.cclass(chan, &cclass, &ectx->object);
+ else if (engine->func->cclass)
+ ret = nvkm_object_new_(engine->func->cclass, &cclass, NULL, 0, &ectx->object);
+
+ if (ret)
+ nvkm_cgrp_ectx_put(cgrp, pectx);
+
+ return ret;
+}
+
+void
+nvkm_cgrp_vctx_put(struct nvkm_cgrp *cgrp, struct nvkm_vctx **pvctx)
+{
+ struct nvkm_vctx *vctx = *pvctx;
+
+ if (vctx) {
+ struct nvkm_engn *engn = vctx->ectx->engn;
+
+ if (refcount_dec_and_test(&vctx->refs)) {
+ CGRP_TRACE(cgrp, "dtor vctx %d[%s]", engn->id, engn->engine->subdev.name);
+ nvkm_vmm_put(vctx->vmm, &vctx->vma);
+ nvkm_gpuobj_del(&vctx->inst);
+
+ nvkm_cgrp_ectx_put(cgrp, &vctx->ectx);
+ if (vctx->vmm) {
+ atomic_dec(&vctx->vmm->engref[engn->engine->subdev.type]);
+ nvkm_vmm_unref(&vctx->vmm);
+ }
+ list_del(&vctx->head);
+ kfree(vctx);
+ }
+
+ *pvctx = NULL;
+ }
+}
+
+int
+nvkm_cgrp_vctx_get(struct nvkm_cgrp *cgrp, struct nvkm_engn *engn, struct nvkm_chan *chan,
+ struct nvkm_vctx **pvctx, struct nvkm_client *client)
+{
+ struct nvkm_ectx *ectx;
+ struct nvkm_vctx *vctx;
+ int ret;
+
+ /* Look for an existing sub-context for this engine+VEID in the channel group. */
+ vctx = nvkm_list_find(vctx, &cgrp->vctxs, head,
+ vctx->ectx->engn == engn && vctx->vmm == chan->vmm);
+ if (vctx) {
+ refcount_inc(&vctx->refs);
+ *pvctx = vctx;
+ return 0;
+ }
+
+ /* Nope - create a fresh one. But, context first. */
+ ret = nvkm_cgrp_ectx_get(cgrp, engn, &ectx, chan, client);
+ if (ret) {
+ CGRP_ERROR(cgrp, "ectx %d[%s]: %d", engn->id, engn->engine->subdev.name, ret);
+ return ret;
+ }
+
+ /* Now, create the sub-context. */
+ CGRP_TRACE(cgrp, "ctor vctx %d[%s]", engn->id, engn->engine->subdev.name);
+ if (!(vctx = *pvctx = kzalloc(sizeof(*vctx), GFP_KERNEL))) {
+ nvkm_cgrp_ectx_put(cgrp, &ectx);
+ return -ENOMEM;
+ }
+
+ vctx->ectx = ectx;
+ vctx->vmm = nvkm_vmm_ref(chan->vmm);
+ refcount_set(&vctx->refs, 1);
+ list_add_tail(&vctx->head, &cgrp->vctxs);
+
+ /* MMU on some GPUs needs to know engine usage for TLB invalidation. */
+ if (vctx->vmm)
+ atomic_inc(&vctx->vmm->engref[engn->engine->subdev.type]);
+
+ /* Allocate the HW structures. */
+ if (engn->func->bind) {
+ ret = nvkm_object_bind(vctx->ectx->object, NULL, 0, &vctx->inst);
+ if (ret == 0 && engn->func->ctor)
+ ret = engn->func->ctor(engn, vctx);
+ }
+
+ if (ret)
+ nvkm_cgrp_vctx_put(cgrp, pvctx);
+
+ return ret;
+}
+
+static void
+nvkm_cgrp_del(struct kref *kref)
+{
+ struct nvkm_cgrp *cgrp = container_of(kref, typeof(*cgrp), kref);
+ struct nvkm_runl *runl = cgrp->runl;
+
+ if (runl->cgid)
+ nvkm_chid_put(runl->cgid, cgrp->id, &cgrp->lock);
+
+ mutex_destroy(&cgrp->mutex);
+ nvkm_vmm_unref(&cgrp->vmm);
+ kfree(cgrp);
+}
+
+void
+nvkm_cgrp_unref(struct nvkm_cgrp **pcgrp)
+{
+ struct nvkm_cgrp *cgrp = *pcgrp;
+
+ if (!cgrp)
+ return;
+
+ kref_put(&cgrp->kref, nvkm_cgrp_del);
+ *pcgrp = NULL;
+}
+
+struct nvkm_cgrp *
+nvkm_cgrp_ref(struct nvkm_cgrp *cgrp)
+{
+ if (cgrp)
+ kref_get(&cgrp->kref);
+
+ return cgrp;
+}
+
+void
+nvkm_cgrp_put(struct nvkm_cgrp **pcgrp, unsigned long irqflags)
+{
+ struct nvkm_cgrp *cgrp = *pcgrp;
+
+ if (!cgrp)
+ return;
+
+ *pcgrp = NULL;
+ spin_unlock_irqrestore(&cgrp->lock, irqflags);
+}
+
+int
+nvkm_cgrp_new(struct nvkm_runl *runl, const char *name, struct nvkm_vmm *vmm, bool hw,
+ struct nvkm_cgrp **pcgrp)
+{
+ struct nvkm_cgrp *cgrp;
+
+ if (!(cgrp = *pcgrp = kmalloc(sizeof(*cgrp), GFP_KERNEL)))
+ return -ENOMEM;
+
+ cgrp->func = runl->fifo->func->cgrp.func;
+ strscpy(cgrp->name, name, sizeof(cgrp->name));
+ cgrp->runl = runl;
+ cgrp->vmm = nvkm_vmm_ref(vmm);
+ cgrp->hw = hw;
+ cgrp->id = -1;
+ kref_init(&cgrp->kref);
+ INIT_LIST_HEAD(&cgrp->chans);
+ cgrp->chan_nr = 0;
+ spin_lock_init(&cgrp->lock);
+ INIT_LIST_HEAD(&cgrp->ectxs);
+ INIT_LIST_HEAD(&cgrp->vctxs);
+ mutex_init(&cgrp->mutex);
+ atomic_set(&cgrp->rc, NVKM_CGRP_RC_NONE);
+
+ if (runl->cgid) {
+ cgrp->id = nvkm_chid_get(runl->cgid, cgrp);
+ if (cgrp->id < 0) {
+ RUNL_ERROR(runl, "!cgids");
+ nvkm_cgrp_unref(pcgrp);
+ return -ENOSPC;
+ }
+ }
+
+ return 0;
+}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/cgrp.h b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/cgrp.h
index d0ac60b06720..5f6abd59a6ff 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/cgrp.h
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/cgrp.h
@@ -1,11 +1,75 @@
-#ifndef __NVKM_FIFO_CGRP_H__
-#define __NVKM_FIFO_CGRP_H__
-#include "priv.h"
+/* SPDX-License-Identifier: MIT */
+#ifndef __NVKM_CGRP_H__
+#define __NVKM_CGRP_H__
+#include <core/os.h>
+struct nvkm_chan;
+struct nvkm_client;
+
+struct nvkm_vctx {
+ struct nvkm_ectx *ectx;
+ struct nvkm_vmm *vmm;
+ refcount_t refs;
+
+ struct nvkm_gpuobj *inst;
+ struct nvkm_vma *vma;
-struct nvkm_fifo_cgrp {
- int id;
struct list_head head;
- struct list_head chan;
+};
+
+struct nvkm_ectx {
+ struct nvkm_engn *engn;
+ refcount_t refs;
+ refcount_t uses;
+
+ struct nvkm_object *object;
+
+ struct list_head head;
+};
+
+struct nvkm_cgrp {
+ const struct nvkm_cgrp_func {
+ void (*preempt)(struct nvkm_cgrp *);
+ } *func;
+ char name[64];
+ struct nvkm_runl *runl;
+ struct nvkm_vmm *vmm;
+ bool hw;
+ int id;
+ struct kref kref;
+
+ struct list_head chans;
int chan_nr;
+
+ spinlock_t lock; /* protects irq handler channel (group) lookup */
+
+ struct list_head ectxs;
+ struct list_head vctxs;
+ struct mutex mutex;
+
+#define NVKM_CGRP_RC_NONE 0
+#define NVKM_CGRP_RC_PENDING 1
+#define NVKM_CGRP_RC_RUNNING 2
+ atomic_t rc;
+
+ struct list_head head;
};
+
+int nvkm_cgrp_new(struct nvkm_runl *, const char *name, struct nvkm_vmm *, bool hw,
+ struct nvkm_cgrp **);
+struct nvkm_cgrp *nvkm_cgrp_ref(struct nvkm_cgrp *);
+void nvkm_cgrp_unref(struct nvkm_cgrp **);
+int nvkm_cgrp_vctx_get(struct nvkm_cgrp *, struct nvkm_engn *, struct nvkm_chan *,
+ struct nvkm_vctx **, struct nvkm_client *);
+void nvkm_cgrp_vctx_put(struct nvkm_cgrp *, struct nvkm_vctx **);
+
+void nvkm_cgrp_put(struct nvkm_cgrp **, unsigned long irqflags);
+
+#define nvkm_cgrp_foreach_chan(chan,cgrp) list_for_each_entry((chan), &(cgrp)->chans, head)
+#define nvkm_cgrp_foreach_chan_safe(chan,ctmp,cgrp) \
+ list_for_each_entry_safe((chan), (ctmp), &(cgrp)->chans, head)
+
+#define CGRP_PRCLI(c,l,p,f,a...) RUNL_PRINT((c)->runl, l, p, "%04x:[%s]"f, (c)->id, (c)->name, ##a)
+#define CGRP_PRINT(c,l,p,f,a...) RUNL_PRINT((c)->runl, l, p, "%04x:"f, (c)->id, ##a)
+#define CGRP_ERROR(c,f,a...) CGRP_PRCLI((c), ERROR, err, " "f"\n", ##a)
+#define CGRP_TRACE(c,f,a...) CGRP_PRINT((c), TRACE, info, " "f"\n", ##a)
#endif
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/chan.c b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/chan.c
index 2e7f32cebf2a..b7c9d6115bce 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/chan.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/chan.c
@@ -22,285 +22,265 @@
* Authors: Ben Skeggs
*/
#include "chan.h"
+#include "chid.h"
+#include "cgrp.h"
+#include "chid.h"
+#include "runl.h"
+#include "priv.h"
-#include <core/client.h>
-#include <core/gpuobj.h>
-#include <core/oproxy.h>
+#include <core/ramht.h>
#include <subdev/mmu.h>
#include <engine/dma.h>
-struct nvkm_fifo_chan_object {
- struct nvkm_oproxy oproxy;
- struct nvkm_fifo_chan *chan;
- int hash;
+#include <nvif/if0020.h>
+
+const struct nvkm_event_func
+nvkm_chan_event = {
};
-static struct nvkm_fifo_engn *
-nvkm_fifo_chan_engn(struct nvkm_fifo_chan *chan, struct nvkm_engine *engine)
+void
+nvkm_chan_cctx_bind(struct nvkm_chan *chan, struct nvkm_engn *engn, struct nvkm_cctx *cctx)
{
- int engi = chan->fifo->func->engine_id(chan->fifo, engine);
- if (engi >= 0)
- return &chan->engn[engi];
- return NULL;
+ struct nvkm_cgrp *cgrp = chan->cgrp;
+ struct nvkm_runl *runl = cgrp->runl;
+ struct nvkm_engine *engine = engn->engine;
+
+ if (!engn->func->bind)
+ return;
+
+ CHAN_TRACE(chan, "%sbind cctx %d[%s]", cctx ? "" : "un", engn->id, engine->subdev.name);
+
+ /* Prevent any channel in channel group from being rescheduled, kick them
+ * off host and any engine(s) they're loaded on.
+ */
+ if (cgrp->hw)
+ nvkm_runl_block(runl);
+ else
+ nvkm_chan_block(chan);
+ nvkm_chan_preempt(chan, true);
+
+ /* Update context pointer. */
+ engn->func->bind(engn, cctx, chan);
+
+ /* Resume normal operation. */
+ if (cgrp->hw)
+ nvkm_runl_allow(runl);
+ else
+ nvkm_chan_allow(chan);
}
-static int
-nvkm_fifo_chan_child_fini(struct nvkm_oproxy *base, bool suspend)
+void
+nvkm_chan_cctx_put(struct nvkm_chan *chan, struct nvkm_cctx **pcctx)
{
- struct nvkm_fifo_chan_object *object =
- container_of(base, typeof(*object), oproxy);
- struct nvkm_engine *engine = object->oproxy.object->engine;
- struct nvkm_fifo_chan *chan = object->chan;
- struct nvkm_fifo_engn *engn = nvkm_fifo_chan_engn(chan, engine);
- const char *name = engine->subdev.name;
- int ret = 0;
-
- if (--engn->usecount)
- return 0;
+ struct nvkm_cctx *cctx = *pcctx;
- if (chan->func->engine_fini) {
- ret = chan->func->engine_fini(chan, engine, suspend);
- if (ret) {
- nvif_error(&chan->object,
- "detach %s failed, %d\n", name, ret);
- return ret;
+ if (cctx) {
+ struct nvkm_engn *engn = cctx->vctx->ectx->engn;
+
+ if (refcount_dec_and_mutex_lock(&cctx->refs, &chan->cgrp->mutex)) {
+ CHAN_TRACE(chan, "dtor cctx %d[%s]", engn->id, engn->engine->subdev.name);
+ nvkm_cgrp_vctx_put(chan->cgrp, &cctx->vctx);
+ list_del(&cctx->head);
+ kfree(cctx);
+ mutex_unlock(&chan->cgrp->mutex);
}
- }
- if (engn->object) {
- ret = nvkm_object_fini(engn->object, suspend);
- if (ret && suspend)
- return ret;
+ *pcctx = NULL;
}
-
- nvif_trace(&chan->object, "detached %s\n", name);
- return ret;
}
-static int
-nvkm_fifo_chan_child_init(struct nvkm_oproxy *base)
+int
+nvkm_chan_cctx_get(struct nvkm_chan *chan, struct nvkm_engn *engn, struct nvkm_cctx **pcctx,
+ struct nvkm_client *client)
{
- struct nvkm_fifo_chan_object *object =
- container_of(base, typeof(*object), oproxy);
- struct nvkm_engine *engine = object->oproxy.object->engine;
- struct nvkm_fifo_chan *chan = object->chan;
- struct nvkm_fifo_engn *engn = nvkm_fifo_chan_engn(chan, engine);
- const char *name = engine->subdev.name;
+ struct nvkm_cgrp *cgrp = chan->cgrp;
+ struct nvkm_vctx *vctx;
+ struct nvkm_cctx *cctx;
int ret;
- if (engn->usecount++)
+ /* Look for an existing channel context for this engine+VEID. */
+ mutex_lock(&cgrp->mutex);
+ cctx = nvkm_list_find(cctx, &chan->cctxs, head,
+ cctx->vctx->ectx->engn == engn && cctx->vctx->vmm == chan->vmm);
+ if (cctx) {
+ refcount_inc(&cctx->refs);
+ *pcctx = cctx;
+ mutex_unlock(&chan->cgrp->mutex);
return 0;
+ }
- if (engn->object) {
- ret = nvkm_object_init(engn->object);
- if (ret)
- return ret;
+ /* Nope - create a fresh one. But, sub-context first. */
+ ret = nvkm_cgrp_vctx_get(cgrp, engn, chan, &vctx, client);
+ if (ret) {
+ CHAN_ERROR(chan, "vctx %d[%s]: %d", engn->id, engn->engine->subdev.name, ret);
+ goto done;
}
- if (chan->func->engine_init) {
- ret = chan->func->engine_init(chan, engine);
- if (ret) {
- nvif_error(&chan->object,
- "attach %s failed, %d\n", name, ret);
- return ret;
- }
+ /* Now, create the channel context - to track engine binding. */
+ CHAN_TRACE(chan, "ctor cctx %d[%s]", engn->id, engn->engine->subdev.name);
+ if (!(cctx = *pcctx = kzalloc(sizeof(*cctx), GFP_KERNEL))) {
+ nvkm_cgrp_vctx_put(cgrp, &vctx);
+ ret = -ENOMEM;
+ goto done;
}
- nvif_trace(&chan->object, "attached %s\n", name);
- return 0;
+ cctx->vctx = vctx;
+ refcount_set(&cctx->refs, 1);
+ refcount_set(&cctx->uses, 0);
+ list_add_tail(&cctx->head, &chan->cctxs);
+done:
+ mutex_unlock(&cgrp->mutex);
+ return ret;
}
-static void
-nvkm_fifo_chan_child_del(struct nvkm_oproxy *base)
+int
+nvkm_chan_preempt_locked(struct nvkm_chan *chan, bool wait)
{
- struct nvkm_fifo_chan_object *object =
- container_of(base, typeof(*object), oproxy);
- struct nvkm_engine *engine = object->oproxy.base.engine;
- struct nvkm_fifo_chan *chan = object->chan;
- struct nvkm_fifo_engn *engn = nvkm_fifo_chan_engn(chan, engine);
-
- if (chan->func->object_dtor)
- chan->func->object_dtor(chan, object->hash);
-
- if (!--engn->refcount) {
- if (chan->func->engine_dtor)
- chan->func->engine_dtor(chan, engine);
- nvkm_object_del(&engn->object);
- if (chan->vmm)
- atomic_dec(&chan->vmm->engref[engine->subdev.type]);
- }
-}
+ struct nvkm_runl *runl = chan->cgrp->runl;
-static const struct nvkm_oproxy_func
-nvkm_fifo_chan_child_func = {
- .dtor[0] = nvkm_fifo_chan_child_del,
- .init[0] = nvkm_fifo_chan_child_init,
- .fini[0] = nvkm_fifo_chan_child_fini,
-};
+ CHAN_TRACE(chan, "preempt");
+ chan->func->preempt(chan);
+ if (!wait)
+ return 0;
+
+ return nvkm_runl_preempt_wait(runl);
+}
-static int
-nvkm_fifo_chan_child_new(const struct nvkm_oclass *oclass, void *data, u32 size,
- struct nvkm_object **pobject)
+int
+nvkm_chan_preempt(struct nvkm_chan *chan, bool wait)
{
- struct nvkm_engine *engine = oclass->engine;
- struct nvkm_fifo_chan *chan = nvkm_fifo_chan(oclass->parent);
- struct nvkm_fifo_engn *engn = nvkm_fifo_chan_engn(chan, engine);
- struct nvkm_fifo_chan_object *object;
- int ret = 0;
+ int ret;
- if (!(object = kzalloc(sizeof(*object), GFP_KERNEL)))
- return -ENOMEM;
- nvkm_oproxy_ctor(&nvkm_fifo_chan_child_func, oclass, &object->oproxy);
- object->chan = chan;
- *pobject = &object->oproxy.base;
-
- if (!engn->refcount++) {
- struct nvkm_oclass cclass = {
- .client = oclass->client,
- .engine = oclass->engine,
- };
-
- if (chan->vmm)
- atomic_inc(&chan->vmm->engref[engine->subdev.type]);
-
- if (engine->func->fifo.cclass) {
- ret = engine->func->fifo.cclass(chan, &cclass,
- &engn->object);
- } else
- if (engine->func->cclass) {
- ret = nvkm_object_new_(engine->func->cclass, &cclass,
- NULL, 0, &engn->object);
- }
- if (ret)
- return ret;
+ if (!chan->func->preempt)
+ return 0;
- if (chan->func->engine_ctor) {
- ret = chan->func->engine_ctor(chan, oclass->engine,
- engn->object);
- if (ret)
- return ret;
- }
- }
+ mutex_lock(&chan->cgrp->runl->mutex);
+ ret = nvkm_chan_preempt_locked(chan, wait);
+ mutex_unlock(&chan->cgrp->runl->mutex);
+ return ret;
+}
- ret = oclass->base.ctor(&(const struct nvkm_oclass) {
- .base = oclass->base,
- .engn = oclass->engn,
- .handle = oclass->handle,
- .object = oclass->object,
- .client = oclass->client,
- .parent = engn->object ?
- engn->object :
- oclass->parent,
- .engine = engine,
- }, data, size, &object->oproxy.object);
- if (ret)
- return ret;
+void
+nvkm_chan_remove_locked(struct nvkm_chan *chan)
+{
+ struct nvkm_cgrp *cgrp = chan->cgrp;
+ struct nvkm_runl *runl = cgrp->runl;
- if (chan->func->object_ctor) {
- object->hash =
- chan->func->object_ctor(chan, object->oproxy.object);
- if (object->hash < 0)
- return object->hash;
- }
+ if (list_empty(&chan->head))
+ return;
- return 0;
+ CHAN_TRACE(chan, "remove");
+ if (!--cgrp->chan_nr) {
+ runl->cgrp_nr--;
+ list_del(&cgrp->head);
+ }
+ runl->chan_nr--;
+ list_del_init(&chan->head);
+ atomic_set(&runl->changed, 1);
}
-static int
-nvkm_fifo_chan_child_get(struct nvkm_object *object, int index,
- struct nvkm_oclass *oclass)
+void
+nvkm_chan_remove(struct nvkm_chan *chan, bool preempt)
{
- struct nvkm_fifo_chan *chan = nvkm_fifo_chan(object);
- struct nvkm_fifo *fifo = chan->fifo;
- struct nvkm_engine *engine;
- u32 engm = chan->engm;
- int engi, ret, c;
-
- for (; c = 0, engi = __ffs(engm), engm; engm &= ~(1ULL << engi)) {
- if (!(engine = fifo->func->id_engine(fifo, engi)))
- continue;
- oclass->engine = engine;
- oclass->base.oclass = 0;
-
- if (engine->func->fifo.sclass) {
- ret = engine->func->fifo.sclass(oclass, index);
- if (oclass->base.oclass) {
- if (!oclass->base.ctor)
- oclass->base.ctor = nvkm_object_new;
- oclass->ctor = nvkm_fifo_chan_child_new;
- return 0;
- }
+ struct nvkm_runl *runl = chan->cgrp->runl;
+
+ mutex_lock(&runl->mutex);
+ if (preempt && chan->func->preempt)
+ nvkm_chan_preempt_locked(chan, true);
+ nvkm_chan_remove_locked(chan);
+ nvkm_runl_update_locked(runl, true);
+ mutex_unlock(&runl->mutex);
+}
- index -= ret;
- continue;
- }
+void
+nvkm_chan_insert(struct nvkm_chan *chan)
+{
+ struct nvkm_cgrp *cgrp = chan->cgrp;
+ struct nvkm_runl *runl = cgrp->runl;
- while (engine->func->sclass[c].oclass) {
- if (c++ == index) {
- oclass->base = engine->func->sclass[index];
- if (!oclass->base.ctor)
- oclass->base.ctor = nvkm_object_new;
- oclass->ctor = nvkm_fifo_chan_child_new;
- return 0;
- }
- }
- index -= c;
+ mutex_lock(&runl->mutex);
+ if (WARN_ON(!list_empty(&chan->head))) {
+ mutex_unlock(&runl->mutex);
+ return;
}
- return -EINVAL;
+ CHAN_TRACE(chan, "insert");
+ list_add_tail(&chan->head, &cgrp->chans);
+ runl->chan_nr++;
+ if (!cgrp->chan_nr++) {
+ list_add_tail(&cgrp->head, &cgrp->runl->cgrps);
+ runl->cgrp_nr++;
+ }
+ atomic_set(&runl->changed, 1);
+ nvkm_runl_update_locked(runl, true);
+ mutex_unlock(&runl->mutex);
}
-static int
-nvkm_fifo_chan_ntfy(struct nvkm_object *object, u32 type,
- struct nvkm_event **pevent)
+static void
+nvkm_chan_block_locked(struct nvkm_chan *chan)
{
- struct nvkm_fifo_chan *chan = nvkm_fifo_chan(object);
- if (chan->func->ntfy)
- return chan->func->ntfy(chan, type, pevent);
- return -ENODEV;
+ CHAN_TRACE(chan, "block %d", atomic_read(&chan->blocked));
+ if (atomic_inc_return(&chan->blocked) == 1)
+ chan->func->stop(chan);
}
-static int
-nvkm_fifo_chan_map(struct nvkm_object *object, void *argv, u32 argc,
- enum nvkm_object_map *type, u64 *addr, u64 *size)
+void
+nvkm_chan_error(struct nvkm_chan *chan, bool preempt)
{
- struct nvkm_fifo_chan *chan = nvkm_fifo_chan(object);
- *type = NVKM_OBJECT_MAP_IO;
- *addr = chan->addr;
- *size = chan->size;
- return 0;
+ unsigned long flags;
+
+ spin_lock_irqsave(&chan->lock, flags);
+ if (atomic_inc_return(&chan->errored) == 1) {
+ CHAN_ERROR(chan, "errored - disabling channel");
+ nvkm_chan_block_locked(chan);
+ if (preempt)
+ chan->func->preempt(chan);
+ nvkm_event_ntfy(&chan->cgrp->runl->chid->event, chan->id, NVKM_CHAN_EVENT_ERRORED);
+ }
+ spin_unlock_irqrestore(&chan->lock, flags);
}
-static int
-nvkm_fifo_chan_fini(struct nvkm_object *object, bool suspend)
+void
+nvkm_chan_block(struct nvkm_chan *chan)
{
- struct nvkm_fifo_chan *chan = nvkm_fifo_chan(object);
- chan->func->fini(chan);
- return 0;
+ spin_lock_irq(&chan->lock);
+ nvkm_chan_block_locked(chan);
+ spin_unlock_irq(&chan->lock);
}
-static int
-nvkm_fifo_chan_init(struct nvkm_object *object)
+void
+nvkm_chan_allow(struct nvkm_chan *chan)
{
- struct nvkm_fifo_chan *chan = nvkm_fifo_chan(object);
- chan->func->init(chan);
- return 0;
+ spin_lock_irq(&chan->lock);
+ CHAN_TRACE(chan, "allow %d", atomic_read(&chan->blocked));
+ if (atomic_dec_and_test(&chan->blocked))
+ chan->func->start(chan);
+ spin_unlock_irq(&chan->lock);
}
-static void *
-nvkm_fifo_chan_dtor(struct nvkm_object *object)
+void
+nvkm_chan_del(struct nvkm_chan **pchan)
{
- struct nvkm_fifo_chan *chan = nvkm_fifo_chan(object);
- struct nvkm_fifo *fifo = chan->fifo;
- void *data = chan->func->dtor(chan);
- unsigned long flags;
+ struct nvkm_chan *chan = *pchan;
+
+ if (!chan)
+ return;
+
+ if (chan->func->ramfc->clear)
+ chan->func->ramfc->clear(chan);
- spin_lock_irqsave(&fifo->lock, flags);
- if (!list_empty(&chan->head)) {
- __clear_bit(chan->chid, fifo->mask);
- list_del(&chan->head);
+ nvkm_ramht_del(&chan->ramht);
+ nvkm_gpuobj_del(&chan->pgd);
+ nvkm_gpuobj_del(&chan->eng);
+ nvkm_gpuobj_del(&chan->cache);
+ nvkm_gpuobj_del(&chan->ramfc);
+
+ nvkm_memory_unref(&chan->userd.mem);
+
+ if (chan->cgrp) {
+ nvkm_chid_put(chan->cgrp->runl->chid, chan->id, &chan->cgrp->lock);
+ nvkm_cgrp_unref(&chan->cgrp);
}
- spin_unlock_irqrestore(&fifo->lock, flags);
if (chan->vmm) {
nvkm_vmm_part(chan->vmm, chan->inst->memory);
@@ -309,85 +289,192 @@ nvkm_fifo_chan_dtor(struct nvkm_object *object)
nvkm_gpuobj_del(&chan->push);
nvkm_gpuobj_del(&chan->inst);
- return data;
+ kfree(chan);
}
-static const struct nvkm_object_func
-nvkm_fifo_chan_func = {
- .dtor = nvkm_fifo_chan_dtor,
- .init = nvkm_fifo_chan_init,
- .fini = nvkm_fifo_chan_fini,
- .ntfy = nvkm_fifo_chan_ntfy,
- .map = nvkm_fifo_chan_map,
- .sclass = nvkm_fifo_chan_child_get,
-};
+void
+nvkm_chan_put(struct nvkm_chan **pchan, unsigned long irqflags)
+{
+ struct nvkm_chan *chan = *pchan;
+
+ if (!chan)
+ return;
+
+ *pchan = NULL;
+ spin_unlock_irqrestore(&chan->cgrp->lock, irqflags);
+}
+
+struct nvkm_chan *
+nvkm_chan_get_inst(struct nvkm_engine *engine, u64 inst, unsigned long *pirqflags)
+{
+ struct nvkm_fifo *fifo = engine->subdev.device->fifo;
+ struct nvkm_runl *runl;
+ struct nvkm_engn *engn;
+ struct nvkm_chan *chan;
+
+ nvkm_runl_foreach(runl, fifo) {
+ nvkm_runl_foreach_engn(engn, runl) {
+ if (engine == &fifo->engine || engn->engine == engine) {
+ chan = nvkm_runl_chan_get_inst(runl, inst, pirqflags);
+ if (chan || engn->engine == engine)
+ return chan;
+ }
+ }
+ }
+
+ return NULL;
+}
+
+struct nvkm_chan *
+nvkm_chan_get_chid(struct nvkm_engine *engine, int id, unsigned long *pirqflags)
+{
+ struct nvkm_fifo *fifo = engine->subdev.device->fifo;
+ struct nvkm_runl *runl;
+ struct nvkm_engn *engn;
+
+ nvkm_runl_foreach(runl, fifo) {
+ nvkm_runl_foreach_engn(engn, runl) {
+ if (fifo->chid || engn->engine == engine)
+ return nvkm_runl_chan_get_chid(runl, id, pirqflags);
+ }
+ }
+
+ return NULL;
+}
int
-nvkm_fifo_chan_ctor(const struct nvkm_fifo_chan_func *func,
- struct nvkm_fifo *fifo, u32 size, u32 align, bool zero,
- u64 hvmm, u64 push, u32 engm, int bar, u32 base,
- u32 user, const struct nvkm_oclass *oclass,
- struct nvkm_fifo_chan *chan)
+nvkm_chan_new_(const struct nvkm_chan_func *func, struct nvkm_runl *runl, int runq,
+ struct nvkm_cgrp *cgrp, const char *name, bool priv, u32 devm, struct nvkm_vmm *vmm,
+ struct nvkm_dmaobj *dmaobj, u64 offset, u64 length,
+ struct nvkm_memory *userd, u64 ouserd, struct nvkm_chan **pchan)
{
- struct nvkm_client *client = oclass->client;
+ struct nvkm_fifo *fifo = runl->fifo;
struct nvkm_device *device = fifo->engine.subdev.device;
- struct nvkm_dmaobj *dmaobj;
- unsigned long flags;
+ struct nvkm_chan *chan;
int ret;
- nvkm_object_ctor(&nvkm_fifo_chan_func, oclass, &chan->object);
+ /* Validate arguments against class requirements. */
+ if ((runq && runq >= runl->func->runqs) ||
+ (!func->inst->vmm != !vmm) ||
+ ((func->userd->bar < 0) == !userd) ||
+ (!func->ramfc->ctxdma != !dmaobj) ||
+ ((func->ramfc->devm < devm) && devm != BIT(0)) ||
+ (!func->ramfc->priv && priv)) {
+ RUNL_DEBUG(runl, "args runq:%d:%d vmm:%d:%p userd:%d:%p "
+ "push:%d:%p devm:%08x:%08x priv:%d:%d",
+ runl->func->runqs, runq, func->inst->vmm, vmm,
+ func->userd->bar < 0, userd, func->ramfc->ctxdma, dmaobj,
+ func->ramfc->devm, devm, func->ramfc->priv, priv);
+ return -EINVAL;
+ }
+
+ if (!(chan = *pchan = kzalloc(sizeof(*chan), GFP_KERNEL)))
+ return -ENOMEM;
+
chan->func = func;
- chan->fifo = fifo;
- chan->engm = engm;
+ strscpy(chan->name, name, sizeof(chan->name));
+ chan->runq = runq;
+ chan->id = -1;
+ spin_lock_init(&chan->lock);
+ atomic_set(&chan->blocked, 1);
+ atomic_set(&chan->errored, 0);
+ INIT_LIST_HEAD(&chan->cctxs);
INIT_LIST_HEAD(&chan->head);
- /* instance memory */
- ret = nvkm_gpuobj_new(device, size, align, zero, NULL, &chan->inst);
- if (ret)
- return ret;
+ /* Join channel group.
+ *
+ * GK110 and newer support channel groups (aka TSGs), where individual channels
+ * share a timeslice, and, engine context(s).
+ *
+ * As such, engine contexts are tracked in nvkm_cgrp and we need them even when
+ * channels aren't in an API channel group, and on HW that doesn't support TSGs.
+ */
+ if (!cgrp) {
+ ret = nvkm_cgrp_new(runl, chan->name, vmm, fifo->func->cgrp.force, &chan->cgrp);
+ if (ret) {
+ RUNL_DEBUG(runl, "cgrp %d", ret);
+ return ret;
+ }
- /* allocate push buffer ctxdma instance */
- if (push) {
- dmaobj = nvkm_dmaobj_search(client, push);
- if (IS_ERR(dmaobj))
- return PTR_ERR(dmaobj);
+ cgrp = chan->cgrp;
+ } else {
+ if (cgrp->runl != runl || cgrp->vmm != vmm) {
+ RUNL_DEBUG(runl, "cgrp %d %d", cgrp->runl != runl, cgrp->vmm != vmm);
+ return -EINVAL;
+ }
- ret = nvkm_object_bind(&dmaobj->object, chan->inst, -16,
- &chan->push);
- if (ret)
- return ret;
+ chan->cgrp = nvkm_cgrp_ref(cgrp);
}
- /* channel address space */
- if (hvmm) {
- struct nvkm_vmm *vmm = nvkm_uvmm_search(client, hvmm);
- if (IS_ERR(vmm))
- return PTR_ERR(vmm);
+ /* Allocate instance block. */
+ ret = nvkm_gpuobj_new(device, func->inst->size, 0x1000, func->inst->zero, NULL,
+ &chan->inst);
+ if (ret) {
+ RUNL_DEBUG(runl, "inst %d", ret);
+ return ret;
+ }
- if (vmm->mmu != device->mmu)
+ /* Initialise virtual address-space. */
+ if (func->inst->vmm) {
+ if (WARN_ON(vmm->mmu != device->mmu))
return -EINVAL;
ret = nvkm_vmm_join(vmm, chan->inst->memory);
- if (ret)
+ if (ret) {
+ RUNL_DEBUG(runl, "vmm %d", ret);
return ret;
+ }
chan->vmm = nvkm_vmm_ref(vmm);
}
- /* allocate channel id */
- spin_lock_irqsave(&fifo->lock, flags);
- chan->chid = find_first_zero_bit(fifo->mask, NVKM_FIFO_CHID_NR);
- if (chan->chid >= NVKM_FIFO_CHID_NR) {
- spin_unlock_irqrestore(&fifo->lock, flags);
+ /* Allocate HW ctxdma for push buffer. */
+ if (func->ramfc->ctxdma) {
+ ret = nvkm_object_bind(&dmaobj->object, chan->inst, -16, &chan->push);
+ if (ret) {
+ RUNL_DEBUG(runl, "bind %d", ret);
+ return ret;
+ }
+ }
+
+ /* Allocate channel ID. */
+ chan->id = nvkm_chid_get(runl->chid, chan);
+ if (chan->id < 0) {
+ RUNL_ERROR(runl, "!chids");
return -ENOSPC;
}
- list_add(&chan->head, &fifo->chan);
- __set_bit(chan->chid, fifo->mask);
- spin_unlock_irqrestore(&fifo->lock, flags);
-
- /* determine address of this channel's user registers */
- chan->addr = device->func->resource_addr(device, bar) +
- base + user * chan->chid;
- chan->size = user;
+
+ if (cgrp->id < 0)
+ cgrp->id = chan->id;
+
+ /* Initialise USERD. */
+ if (func->userd->bar < 0) {
+ if (ouserd + chan->func->userd->size >= nvkm_memory_size(userd)) {
+ RUNL_DEBUG(runl, "ouserd %llx", ouserd);
+ return -EINVAL;
+ }
+
+ ret = nvkm_memory_kmap(userd, &chan->userd.mem);
+ if (ret) {
+ RUNL_DEBUG(runl, "userd %d", ret);
+ return ret;
+ }
+
+ chan->userd.base = ouserd;
+ } else {
+ chan->userd.mem = nvkm_memory_ref(fifo->userd.mem);
+ chan->userd.base = chan->id * chan->func->userd->size;
+ }
+
+ if (chan->func->userd->clear)
+ chan->func->userd->clear(chan);
+
+ /* Initialise RAMFC. */
+ ret = chan->func->ramfc->write(chan, offset, length, devm, priv);
+ if (ret) {
+ RUNL_DEBUG(runl, "ramfc %d", ret);
+ return ret;
+ }
+
return 0;
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/chan.h b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/chan.h
index e53504354841..85b94f699128 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/chan.h
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/chan.h
@@ -1,35 +1,78 @@
/* SPDX-License-Identifier: MIT */
-#ifndef __NVKM_FIFO_CHAN_H__
-#define __NVKM_FIFO_CHAN_H__
-#define nvkm_fifo_chan(p) container_of((p), struct nvkm_fifo_chan, object)
-#include "priv.h"
-
-struct nvkm_fifo_chan_func {
- void *(*dtor)(struct nvkm_fifo_chan *);
- void (*init)(struct nvkm_fifo_chan *);
- void (*fini)(struct nvkm_fifo_chan *);
- int (*ntfy)(struct nvkm_fifo_chan *, u32 type, struct nvkm_event **);
- int (*engine_ctor)(struct nvkm_fifo_chan *, struct nvkm_engine *,
- struct nvkm_object *);
- void (*engine_dtor)(struct nvkm_fifo_chan *, struct nvkm_engine *);
- int (*engine_init)(struct nvkm_fifo_chan *, struct nvkm_engine *);
- int (*engine_fini)(struct nvkm_fifo_chan *, struct nvkm_engine *,
- bool suspend);
- int (*object_ctor)(struct nvkm_fifo_chan *, struct nvkm_object *);
- void (*object_dtor)(struct nvkm_fifo_chan *, int);
- u32 (*submit_token)(struct nvkm_fifo_chan *);
+#ifndef __NVKM_CHAN_H__
+#define __NVKM_CHAN_H__
+#include <engine/fifo.h>
+struct nvkm_dmaobj;
+struct nvkm_engn;
+struct nvkm_runl;
+
+extern const struct nvkm_event_func nvkm_chan_event;
+
+struct nvkm_cctx {
+ struct nvkm_vctx *vctx;
+ refcount_t refs;
+ refcount_t uses;
+
+ struct list_head head;
};
-int nvkm_fifo_chan_ctor(const struct nvkm_fifo_chan_func *, struct nvkm_fifo *,
- u32 size, u32 align, bool zero, u64 vm, u64 push,
- u32 engm, int bar, u32 base, u32 user,
- const struct nvkm_oclass *, struct nvkm_fifo_chan *);
+struct nvkm_chan_func {
+ const struct nvkm_chan_func_inst {
+ u32 size;
+ bool zero;
+ bool vmm;
+ } *inst;
-struct nvkm_fifo_chan_oclass {
- int (*ctor)(struct nvkm_fifo *, const struct nvkm_oclass *,
- void *data, u32 size, struct nvkm_object **);
- struct nvkm_sclass base;
+ const struct nvkm_chan_func_userd {
+ int bar;
+ u32 base;
+ u32 size;
+ void (*clear)(struct nvkm_chan *);
+ } *userd;
+
+ const struct nvkm_chan_func_ramfc {
+ const struct nvkm_ramfc_layout {
+ unsigned bits:6;
+ unsigned ctxs:5;
+ unsigned ctxp:8;
+ unsigned regs:5;
+ unsigned regp;
+ } *layout;
+ int (*write)(struct nvkm_chan *, u64 offset, u64 length, u32 devm, bool priv);
+ void (*clear)(struct nvkm_chan *);
+ bool ctxdma;
+ u32 devm;
+ bool priv;
+ } *ramfc;
+
+ void (*bind)(struct nvkm_chan *);
+ void (*unbind)(struct nvkm_chan *);
+ void (*start)(struct nvkm_chan *);
+ void (*stop)(struct nvkm_chan *);
+ void (*preempt)(struct nvkm_chan *);
+ u32 (*doorbell_handle)(struct nvkm_chan *);
};
-int gf100_fifo_chan_ntfy(struct nvkm_fifo_chan *, u32, struct nvkm_event **);
+int nvkm_chan_new_(const struct nvkm_chan_func *, struct nvkm_runl *, int runq, struct nvkm_cgrp *,
+ const char *name, bool priv, u32 devm, struct nvkm_vmm *, struct nvkm_dmaobj *,
+ u64 offset, u64 length, struct nvkm_memory *userd, u64 userd_bar1,
+ struct nvkm_chan **);
+void nvkm_chan_del(struct nvkm_chan **);
+void nvkm_chan_allow(struct nvkm_chan *);
+void nvkm_chan_block(struct nvkm_chan *);
+void nvkm_chan_error(struct nvkm_chan *, bool preempt);
+void nvkm_chan_insert(struct nvkm_chan *);
+void nvkm_chan_remove(struct nvkm_chan *, bool preempt);
+void nvkm_chan_remove_locked(struct nvkm_chan *);
+int nvkm_chan_preempt(struct nvkm_chan *, bool wait);
+int nvkm_chan_preempt_locked(struct nvkm_chan *, bool wait);
+int nvkm_chan_cctx_get(struct nvkm_chan *, struct nvkm_engn *, struct nvkm_cctx **,
+ struct nvkm_client * /*TODO: remove need for this */);
+void nvkm_chan_cctx_put(struct nvkm_chan *, struct nvkm_cctx **);
+void nvkm_chan_cctx_bind(struct nvkm_chan *, struct nvkm_engn *, struct nvkm_cctx *);
+
+#define CHAN_PRCLI(c,l,p,f,a...) CGRP_PRINT((c)->cgrp, l, p, "%04x:[%s]"f, (c)->id, (c)->name, ##a)
+#define CHAN_PRINT(c,l,p,f,a...) CGRP_PRINT((c)->cgrp, l, p, "%04x:"f, (c)->id, ##a)
+#define CHAN_ERROR(c,f,a...) CHAN_PRCLI((c), ERROR, err, " "f"\n", ##a)
+#define CHAN_TRACE(c,f,a...) CHAN_PRINT((c), TRACE, info, " "f"\n", ##a)
#endif
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/chang84.c b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/chang84.c
deleted file mode 100644
index 3492c561f2cf..000000000000
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/chang84.c
+++ /dev/null
@@ -1,263 +0,0 @@
-/*
- * Copyright 2012 Red Hat Inc.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice shall be included in
- * all copies or substantial portions of the Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
- * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
- * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
- * OTHER DEALINGS IN THE SOFTWARE.
- *
- * Authors: Ben Skeggs
- */
-#include "channv50.h"
-
-#include <core/client.h>
-#include <core/ramht.h>
-#include <subdev/mmu.h>
-#include <subdev/timer.h>
-
-#include <nvif/cl826e.h>
-
-static int
-g84_fifo_chan_ntfy(struct nvkm_fifo_chan *chan, u32 type,
- struct nvkm_event **pevent)
-{
- switch (type) {
- case NV826E_V0_NTFY_NON_STALL_INTERRUPT:
- *pevent = &chan->fifo->uevent;
- return 0;
- default:
- break;
- }
- return -EINVAL;
-}
-
-static int
-g84_fifo_chan_engine_addr(struct nvkm_engine *engine)
-{
- switch (engine->subdev.type) {
- case NVKM_ENGINE_DMAOBJ:
- case NVKM_ENGINE_SW : return -1;
- case NVKM_ENGINE_GR : return 0x0020;
- case NVKM_ENGINE_VP :
- case NVKM_ENGINE_MSPDEC: return 0x0040;
- case NVKM_ENGINE_MPEG :
- case NVKM_ENGINE_MSPPP : return 0x0060;
- case NVKM_ENGINE_BSP :
- case NVKM_ENGINE_MSVLD : return 0x0080;
- case NVKM_ENGINE_CIPHER:
- case NVKM_ENGINE_SEC : return 0x00a0;
- case NVKM_ENGINE_CE : return 0x00c0;
- default:
- WARN_ON(1);
- return -1;
- }
-}
-
-static int
-g84_fifo_chan_engine_fini(struct nvkm_fifo_chan *base,
- struct nvkm_engine *engine, bool suspend)
-{
- struct nv50_fifo_chan *chan = nv50_fifo_chan(base);
- struct nv50_fifo *fifo = chan->fifo;
- struct nvkm_subdev *subdev = &fifo->base.engine.subdev;
- struct nvkm_device *device = subdev->device;
- u32 engn, save;
- int offset;
- bool done;
-
- offset = g84_fifo_chan_engine_addr(engine);
- if (offset < 0)
- return 0;
-
- engn = fifo->base.func->engine_id(&fifo->base, engine) - 1;
- save = nvkm_mask(device, 0x002520, 0x0000003f, 1 << engn);
- nvkm_wr32(device, 0x0032fc, chan->base.inst->addr >> 12);
- done = nvkm_msec(device, 2000,
- if (nvkm_rd32(device, 0x0032fc) != 0xffffffff)
- break;
- ) >= 0;
- nvkm_wr32(device, 0x002520, save);
- if (!done) {
- nvkm_error(subdev, "channel %d [%s] unload timeout\n",
- chan->base.chid, chan->base.object.client->name);
- if (suspend)
- return -EBUSY;
- }
-
- nvkm_kmap(chan->eng);
- nvkm_wo32(chan->eng, offset + 0x00, 0x00000000);
- nvkm_wo32(chan->eng, offset + 0x04, 0x00000000);
- nvkm_wo32(chan->eng, offset + 0x08, 0x00000000);
- nvkm_wo32(chan->eng, offset + 0x0c, 0x00000000);
- nvkm_wo32(chan->eng, offset + 0x10, 0x00000000);
- nvkm_wo32(chan->eng, offset + 0x14, 0x00000000);
- nvkm_done(chan->eng);
- return 0;
-}
-
-
-static int
-g84_fifo_chan_engine_init(struct nvkm_fifo_chan *base,
- struct nvkm_engine *engine)
-{
- struct nv50_fifo_chan *chan = nv50_fifo_chan(base);
- struct nvkm_gpuobj *engn = *nv50_fifo_chan_engine(chan, engine);
- u64 limit, start;
- int offset;
-
- offset = g84_fifo_chan_engine_addr(engine);
- if (offset < 0)
- return 0;
- limit = engn->addr + engn->size - 1;
- start = engn->addr;
-
- nvkm_kmap(chan->eng);
- nvkm_wo32(chan->eng, offset + 0x00, 0x00190000);
- nvkm_wo32(chan->eng, offset + 0x04, lower_32_bits(limit));
- nvkm_wo32(chan->eng, offset + 0x08, lower_32_bits(start));
- nvkm_wo32(chan->eng, offset + 0x0c, upper_32_bits(limit) << 24 |
- upper_32_bits(start));
- nvkm_wo32(chan->eng, offset + 0x10, 0x00000000);
- nvkm_wo32(chan->eng, offset + 0x14, 0x00000000);
- nvkm_done(chan->eng);
- return 0;
-}
-
-static int
-g84_fifo_chan_engine_ctor(struct nvkm_fifo_chan *base,
- struct nvkm_engine *engine,
- struct nvkm_object *object)
-{
- struct nv50_fifo_chan *chan = nv50_fifo_chan(base);
-
- if (g84_fifo_chan_engine_addr(engine) < 0)
- return 0;
-
- return nvkm_object_bind(object, NULL, 0, nv50_fifo_chan_engine(chan, engine));
-}
-
-static int
-g84_fifo_chan_object_ctor(struct nvkm_fifo_chan *base,
- struct nvkm_object *object)
-{
- struct nv50_fifo_chan *chan = nv50_fifo_chan(base);
- u32 handle = object->handle;
- u32 context;
-
- switch (object->engine->subdev.type) {
- case NVKM_ENGINE_DMAOBJ:
- case NVKM_ENGINE_SW : context = 0x00000000; break;
- case NVKM_ENGINE_GR : context = 0x00100000; break;
- case NVKM_ENGINE_MPEG :
- case NVKM_ENGINE_MSPPP : context = 0x00200000; break;
- case NVKM_ENGINE_ME :
- case NVKM_ENGINE_CE : context = 0x00300000; break;
- case NVKM_ENGINE_VP :
- case NVKM_ENGINE_MSPDEC: context = 0x00400000; break;
- case NVKM_ENGINE_CIPHER:
- case NVKM_ENGINE_SEC :
- case NVKM_ENGINE_VIC : context = 0x00500000; break;
- case NVKM_ENGINE_BSP :
- case NVKM_ENGINE_MSVLD : context = 0x00600000; break;
- default:
- WARN_ON(1);
- return -EINVAL;
- }
-
- return nvkm_ramht_insert(chan->ramht, object, 0, 4, handle, context);
-}
-
-static void
-g84_fifo_chan_init(struct nvkm_fifo_chan *base)
-{
- struct nv50_fifo_chan *chan = nv50_fifo_chan(base);
- struct nv50_fifo *fifo = chan->fifo;
- struct nvkm_device *device = fifo->base.engine.subdev.device;
- u64 addr = chan->ramfc->addr >> 8;
- u32 chid = chan->base.chid;
-
- nvkm_wr32(device, 0x002600 + (chid * 4), 0x80000000 | addr);
- nv50_fifo_runlist_update(fifo);
-}
-
-static const struct nvkm_fifo_chan_func
-g84_fifo_chan_func = {
- .dtor = nv50_fifo_chan_dtor,
- .init = g84_fifo_chan_init,
- .fini = nv50_fifo_chan_fini,
- .ntfy = g84_fifo_chan_ntfy,
- .engine_ctor = g84_fifo_chan_engine_ctor,
- .engine_dtor = nv50_fifo_chan_engine_dtor,
- .engine_init = g84_fifo_chan_engine_init,
- .engine_fini = g84_fifo_chan_engine_fini,
- .object_ctor = g84_fifo_chan_object_ctor,
- .object_dtor = nv50_fifo_chan_object_dtor,
-};
-
-int
-g84_fifo_chan_ctor(struct nv50_fifo *fifo, u64 vmm, u64 push,
- const struct nvkm_oclass *oclass,
- struct nv50_fifo_chan *chan)
-{
- struct nvkm_device *device = fifo->base.engine.subdev.device;
- int ret;
-
- if (!vmm)
- return -EINVAL;
-
- ret = nvkm_fifo_chan_ctor(&g84_fifo_chan_func, &fifo->base,
- 0x10000, 0x1000, false, vmm, push,
- BIT(G84_FIFO_ENGN_SW) |
- BIT(G84_FIFO_ENGN_GR) |
- BIT(G84_FIFO_ENGN_MPEG) |
- BIT(G84_FIFO_ENGN_MSPPP) |
- BIT(G84_FIFO_ENGN_ME) |
- BIT(G84_FIFO_ENGN_CE0) |
- BIT(G84_FIFO_ENGN_VP) |
- BIT(G84_FIFO_ENGN_MSPDEC) |
- BIT(G84_FIFO_ENGN_CIPHER) |
- BIT(G84_FIFO_ENGN_SEC) |
- BIT(G84_FIFO_ENGN_VIC) |
- BIT(G84_FIFO_ENGN_BSP) |
- BIT(G84_FIFO_ENGN_MSVLD) |
- BIT(G84_FIFO_ENGN_DMA),
- 0, 0xc00000, 0x2000, oclass, &chan->base);
- chan->fifo = fifo;
- if (ret)
- return ret;
-
- ret = nvkm_gpuobj_new(device, 0x0200, 0, true, chan->base.inst,
- &chan->eng);
- if (ret)
- return ret;
-
- ret = nvkm_gpuobj_new(device, 0x4000, 0, false, chan->base.inst,
- &chan->pgd);
- if (ret)
- return ret;
-
- ret = nvkm_gpuobj_new(device, 0x1000, 0x400, true, chan->base.inst,
- &chan->cache);
- if (ret)
- return ret;
-
- ret = nvkm_gpuobj_new(device, 0x100, 0x100, true, chan->base.inst,
- &chan->ramfc);
- if (ret)
- return ret;
-
- return nvkm_ramht_new(device, 0x8000, 16, chan->base.inst, &chan->ramht);
-}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/changf100.h b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/changf100.h
deleted file mode 100644
index f7ac1061fa84..000000000000
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/changf100.h
+++ /dev/null
@@ -1,29 +0,0 @@
-/* SPDX-License-Identifier: MIT */
-#ifndef __GF100_FIFO_CHAN_H__
-#define __GF100_FIFO_CHAN_H__
-#define gf100_fifo_chan(p) container_of((p), struct gf100_fifo_chan, base)
-#include "chan.h"
-#include "gf100.h"
-
-struct gf100_fifo_chan {
- struct nvkm_fifo_chan base;
- struct gf100_fifo *fifo;
-
- struct list_head head;
- bool killed;
-
-#define GF100_FIFO_ENGN_GR 0
-#define GF100_FIFO_ENGN_MSPDEC 1
-#define GF100_FIFO_ENGN_MSPPP 2
-#define GF100_FIFO_ENGN_MSVLD 3
-#define GF100_FIFO_ENGN_CE0 4
-#define GF100_FIFO_ENGN_CE1 5
-#define GF100_FIFO_ENGN_SW 15
- struct gf100_fifo_engn {
- struct nvkm_gpuobj *inst;
- struct nvkm_vma *vma;
- } engn[NVKM_FIFO_ENGN_NR];
-};
-
-extern const struct nvkm_fifo_chan_oclass gf100_fifo_gpfifo_oclass;
-#endif
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/changk104.h b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/changk104.h
deleted file mode 100644
index 9713daee6c76..000000000000
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/changk104.h
+++ /dev/null
@@ -1,52 +0,0 @@
-/* SPDX-License-Identifier: MIT */
-#ifndef __GK104_FIFO_CHAN_H__
-#define __GK104_FIFO_CHAN_H__
-#define gk104_fifo_chan(p) container_of((p), struct gk104_fifo_chan, base)
-#include "chan.h"
-#include "gk104.h"
-
-struct gk104_fifo_chan {
- struct nvkm_fifo_chan base;
- struct gk104_fifo *fifo;
- int runl;
-
- struct nvkm_fifo_cgrp *cgrp;
- struct list_head head;
- bool killed;
-
-#define GK104_FIFO_ENGN_SW 15
- struct gk104_fifo_engn {
- struct nvkm_gpuobj *inst;
- struct nvkm_vma *vma;
- } engn[NVKM_FIFO_ENGN_NR];
-};
-
-extern const struct nvkm_fifo_chan_func gk104_fifo_gpfifo_func;
-
-int gk104_fifo_gpfifo_new(struct gk104_fifo *, const struct nvkm_oclass *,
- void *data, u32 size, struct nvkm_object **);
-void *gk104_fifo_gpfifo_dtor(struct nvkm_fifo_chan *);
-void gk104_fifo_gpfifo_init(struct nvkm_fifo_chan *);
-void gk104_fifo_gpfifo_fini(struct nvkm_fifo_chan *);
-struct gk104_fifo_engn *gk104_fifo_gpfifo_engine(struct gk104_fifo_chan *, struct nvkm_engine *);
-int gk104_fifo_gpfifo_engine_ctor(struct nvkm_fifo_chan *, struct nvkm_engine *,
- struct nvkm_object *);
-void gk104_fifo_gpfifo_engine_dtor(struct nvkm_fifo_chan *,
- struct nvkm_engine *);
-int gk104_fifo_gpfifo_kick(struct gk104_fifo_chan *);
-int gk104_fifo_gpfifo_kick_locked(struct gk104_fifo_chan *);
-
-int gv100_fifo_gpfifo_new(struct gk104_fifo *, const struct nvkm_oclass *,
- void *data, u32 size, struct nvkm_object **);
-int gv100_fifo_gpfifo_new_(const struct nvkm_fifo_chan_func *,
- struct gk104_fifo *, u64 *, u16 *, u64, u64, u64,
- u64 *, bool, u32 *, const struct nvkm_oclass *,
- struct nvkm_object **);
-int gv100_fifo_gpfifo_engine_init(struct nvkm_fifo_chan *,
- struct nvkm_engine *);
-int gv100_fifo_gpfifo_engine_fini(struct nvkm_fifo_chan *,
- struct nvkm_engine *, bool);
-
-int tu102_fifo_gpfifo_new(struct gk104_fifo *, const struct nvkm_oclass *,
- void *data, u32 size, struct nvkm_object **);
-#endif
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/channv04.h b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/channv04.h
deleted file mode 100644
index 727bc8976b40..000000000000
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/channv04.h
+++ /dev/null
@@ -1,29 +0,0 @@
-/* SPDX-License-Identifier: MIT */
-#ifndef __NV04_FIFO_CHAN_H__
-#define __NV04_FIFO_CHAN_H__
-#define nv04_fifo_chan(p) container_of((p), struct nv04_fifo_chan, base)
-#include "chan.h"
-#include "nv04.h"
-
-struct nv04_fifo_chan {
- struct nvkm_fifo_chan base;
- struct nv04_fifo *fifo;
- u32 ramfc;
-#define NV04_FIFO_ENGN_SW 0
-#define NV04_FIFO_ENGN_GR 1
-#define NV04_FIFO_ENGN_MPEG 2
-#define NV04_FIFO_ENGN_DMA 3
- struct nvkm_gpuobj *engn[NVKM_FIFO_ENGN_NR];
-};
-
-extern const struct nvkm_fifo_chan_func nv04_fifo_dma_func;
-void *nv04_fifo_dma_dtor(struct nvkm_fifo_chan *);
-void nv04_fifo_dma_init(struct nvkm_fifo_chan *);
-void nv04_fifo_dma_fini(struct nvkm_fifo_chan *);
-void nv04_fifo_dma_object_dtor(struct nvkm_fifo_chan *, int);
-
-extern const struct nvkm_fifo_chan_oclass nv04_fifo_dma_oclass;
-extern const struct nvkm_fifo_chan_oclass nv10_fifo_dma_oclass;
-extern const struct nvkm_fifo_chan_oclass nv17_fifo_dma_oclass;
-extern const struct nvkm_fifo_chan_oclass nv40_fifo_dma_oclass;
-#endif
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/channv50.c b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/channv50.c
deleted file mode 100644
index c44d7c81dd52..000000000000
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/channv50.c
+++ /dev/null
@@ -1,276 +0,0 @@
-/*
- * Copyright 2012 Red Hat Inc.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice shall be included in
- * all copies or substantial portions of the Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
- * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
- * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
- * OTHER DEALINGS IN THE SOFTWARE.
- *
- * Authors: Ben Skeggs
- */
-#include "channv50.h"
-
-#include <core/client.h>
-#include <core/ramht.h>
-#include <subdev/mmu.h>
-#include <subdev/timer.h>
-
-static int
-nv50_fifo_chan_engine_addr(struct nvkm_engine *engine)
-{
- switch (engine->subdev.type) {
- case NVKM_ENGINE_DMAOBJ:
- case NVKM_ENGINE_SW : return -1;
- case NVKM_ENGINE_GR : return 0x0000;
- case NVKM_ENGINE_MPEG : return 0x0060;
- default:
- WARN_ON(1);
- return -1;
- }
-}
-
-struct nvkm_gpuobj **
-nv50_fifo_chan_engine(struct nv50_fifo_chan *chan, struct nvkm_engine *engine)
-{
- int engi = chan->base.fifo->func->engine_id(chan->base.fifo, engine);
- if (engi >= 0)
- return &chan->engn[engi];
- return NULL;
-}
-
-static int
-nv50_fifo_chan_engine_fini(struct nvkm_fifo_chan *base,
- struct nvkm_engine *engine, bool suspend)
-{
- struct nv50_fifo_chan *chan = nv50_fifo_chan(base);
- struct nv50_fifo *fifo = chan->fifo;
- struct nvkm_subdev *subdev = &fifo->base.engine.subdev;
- struct nvkm_device *device = subdev->device;
- int offset, ret = 0;
- u32 me;
-
- offset = nv50_fifo_chan_engine_addr(engine);
- if (offset < 0)
- return 0;
-
- /* HW bug workaround:
- *
- * PFIFO will hang forever if the connected engines don't report
- * that they've processed the context switch request.
- *
- * In order for the kickoff to work, we need to ensure all the
- * connected engines are in a state where they can answer.
- *
- * Newer chipsets don't seem to suffer from this issue, and well,
- * there's also a "ignore these engines" bitmask reg we can use
- * if we hit the issue there..
- */
- me = nvkm_mask(device, 0x00b860, 0x00000001, 0x00000001);
-
- /* do the kickoff... */
- nvkm_wr32(device, 0x0032fc, chan->base.inst->addr >> 12);
- if (nvkm_msec(device, 2000,
- if (nvkm_rd32(device, 0x0032fc) != 0xffffffff)
- break;
- ) < 0) {
- nvkm_error(subdev, "channel %d [%s] unload timeout\n",
- chan->base.chid, chan->base.object.client->name);
- if (suspend)
- ret = -EBUSY;
- }
- nvkm_wr32(device, 0x00b860, me);
-
- if (ret == 0) {
- nvkm_kmap(chan->eng);
- nvkm_wo32(chan->eng, offset + 0x00, 0x00000000);
- nvkm_wo32(chan->eng, offset + 0x04, 0x00000000);
- nvkm_wo32(chan->eng, offset + 0x08, 0x00000000);
- nvkm_wo32(chan->eng, offset + 0x0c, 0x00000000);
- nvkm_wo32(chan->eng, offset + 0x10, 0x00000000);
- nvkm_wo32(chan->eng, offset + 0x14, 0x00000000);
- nvkm_done(chan->eng);
- }
-
- return ret;
-}
-
-static int
-nv50_fifo_chan_engine_init(struct nvkm_fifo_chan *base,
- struct nvkm_engine *engine)
-{
- struct nv50_fifo_chan *chan = nv50_fifo_chan(base);
- struct nvkm_gpuobj *engn = *nv50_fifo_chan_engine(chan, engine);
- u64 limit, start;
- int offset;
-
- offset = nv50_fifo_chan_engine_addr(engine);
- if (offset < 0)
- return 0;
- limit = engn->addr + engn->size - 1;
- start = engn->addr;
-
- nvkm_kmap(chan->eng);
- nvkm_wo32(chan->eng, offset + 0x00, 0x00190000);
- nvkm_wo32(chan->eng, offset + 0x04, lower_32_bits(limit));
- nvkm_wo32(chan->eng, offset + 0x08, lower_32_bits(start));
- nvkm_wo32(chan->eng, offset + 0x0c, upper_32_bits(limit) << 24 |
- upper_32_bits(start));
- nvkm_wo32(chan->eng, offset + 0x10, 0x00000000);
- nvkm_wo32(chan->eng, offset + 0x14, 0x00000000);
- nvkm_done(chan->eng);
- return 0;
-}
-
-void
-nv50_fifo_chan_engine_dtor(struct nvkm_fifo_chan *base,
- struct nvkm_engine *engine)
-{
- struct nv50_fifo_chan *chan = nv50_fifo_chan(base);
- nvkm_gpuobj_del(nv50_fifo_chan_engine(chan, engine));
-}
-
-static int
-nv50_fifo_chan_engine_ctor(struct nvkm_fifo_chan *base,
- struct nvkm_engine *engine,
- struct nvkm_object *object)
-{
- struct nv50_fifo_chan *chan = nv50_fifo_chan(base);
-
- if (nv50_fifo_chan_engine_addr(engine) < 0)
- return 0;
-
- return nvkm_object_bind(object, NULL, 0, nv50_fifo_chan_engine(chan, engine));
-}
-
-void
-nv50_fifo_chan_object_dtor(struct nvkm_fifo_chan *base, int cookie)
-{
- struct nv50_fifo_chan *chan = nv50_fifo_chan(base);
- nvkm_ramht_remove(chan->ramht, cookie);
-}
-
-static int
-nv50_fifo_chan_object_ctor(struct nvkm_fifo_chan *base,
- struct nvkm_object *object)
-{
- struct nv50_fifo_chan *chan = nv50_fifo_chan(base);
- u32 handle = object->handle;
- u32 context;
-
- switch (object->engine->subdev.type) {
- case NVKM_ENGINE_DMAOBJ:
- case NVKM_ENGINE_SW : context = 0x00000000; break;
- case NVKM_ENGINE_GR : context = 0x00100000; break;
- case NVKM_ENGINE_MPEG : context = 0x00200000; break;
- default:
- WARN_ON(1);
- return -EINVAL;
- }
-
- return nvkm_ramht_insert(chan->ramht, object, 0, 4, handle, context);
-}
-
-void
-nv50_fifo_chan_fini(struct nvkm_fifo_chan *base)
-{
- struct nv50_fifo_chan *chan = nv50_fifo_chan(base);
- struct nv50_fifo *fifo = chan->fifo;
- struct nvkm_device *device = fifo->base.engine.subdev.device;
- u32 chid = chan->base.chid;
-
- /* remove channel from runlist, fifo will unload context */
- nvkm_mask(device, 0x002600 + (chid * 4), 0x80000000, 0x00000000);
- nv50_fifo_runlist_update(fifo);
- nvkm_wr32(device, 0x002600 + (chid * 4), 0x00000000);
-}
-
-static void
-nv50_fifo_chan_init(struct nvkm_fifo_chan *base)
-{
- struct nv50_fifo_chan *chan = nv50_fifo_chan(base);
- struct nv50_fifo *fifo = chan->fifo;
- struct nvkm_device *device = fifo->base.engine.subdev.device;
- u64 addr = chan->ramfc->addr >> 12;
- u32 chid = chan->base.chid;
-
- nvkm_wr32(device, 0x002600 + (chid * 4), 0x80000000 | addr);
- nv50_fifo_runlist_update(fifo);
-}
-
-void *
-nv50_fifo_chan_dtor(struct nvkm_fifo_chan *base)
-{
- struct nv50_fifo_chan *chan = nv50_fifo_chan(base);
- nvkm_ramht_del(&chan->ramht);
- nvkm_gpuobj_del(&chan->pgd);
- nvkm_gpuobj_del(&chan->eng);
- nvkm_gpuobj_del(&chan->cache);
- nvkm_gpuobj_del(&chan->ramfc);
- return chan;
-}
-
-static const struct nvkm_fifo_chan_func
-nv50_fifo_chan_func = {
- .dtor = nv50_fifo_chan_dtor,
- .init = nv50_fifo_chan_init,
- .fini = nv50_fifo_chan_fini,
- .engine_ctor = nv50_fifo_chan_engine_ctor,
- .engine_dtor = nv50_fifo_chan_engine_dtor,
- .engine_init = nv50_fifo_chan_engine_init,
- .engine_fini = nv50_fifo_chan_engine_fini,
- .object_ctor = nv50_fifo_chan_object_ctor,
- .object_dtor = nv50_fifo_chan_object_dtor,
-};
-
-int
-nv50_fifo_chan_ctor(struct nv50_fifo *fifo, u64 vmm, u64 push,
- const struct nvkm_oclass *oclass,
- struct nv50_fifo_chan *chan)
-{
- struct nvkm_device *device = fifo->base.engine.subdev.device;
- int ret;
-
- if (!vmm)
- return -EINVAL;
-
- ret = nvkm_fifo_chan_ctor(&nv50_fifo_chan_func, &fifo->base,
- 0x10000, 0x1000, false, vmm, push,
- BIT(NV50_FIFO_ENGN_SW) |
- BIT(NV50_FIFO_ENGN_GR) |
- BIT(NV50_FIFO_ENGN_MPEG) |
- BIT(NV50_FIFO_ENGN_DMA),
- 0, 0xc00000, 0x2000, oclass, &chan->base);
- chan->fifo = fifo;
- if (ret)
- return ret;
-
- ret = nvkm_gpuobj_new(device, 0x0200, 0x1000, true, chan->base.inst,
- &chan->ramfc);
- if (ret)
- return ret;
-
- ret = nvkm_gpuobj_new(device, 0x1200, 0, true, chan->base.inst,
- &chan->eng);
- if (ret)
- return ret;
-
- ret = nvkm_gpuobj_new(device, 0x4000, 0, false, chan->base.inst,
- &chan->pgd);
- if (ret)
- return ret;
-
- return nvkm_ramht_new(device, 0x8000, 16, chan->base.inst, &chan->ramht);
-}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/channv50.h b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/channv50.h
deleted file mode 100644
index 3a95730d7ff5..000000000000
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/channv50.h
+++ /dev/null
@@ -1,53 +0,0 @@
-/* SPDX-License-Identifier: MIT */
-#ifndef __NV50_FIFO_CHAN_H__
-#define __NV50_FIFO_CHAN_H__
-#define nv50_fifo_chan(p) container_of((p), struct nv50_fifo_chan, base)
-#include "chan.h"
-#include "nv50.h"
-
-struct nv50_fifo_chan {
- struct nv50_fifo *fifo;
- struct nvkm_fifo_chan base;
-
- struct nvkm_gpuobj *ramfc;
- struct nvkm_gpuobj *cache;
- struct nvkm_gpuobj *eng;
- struct nvkm_gpuobj *pgd;
- struct nvkm_ramht *ramht;
-
-#define NV50_FIFO_ENGN_SW 0
-#define NV50_FIFO_ENGN_GR 1
-#define NV50_FIFO_ENGN_MPEG 2
-#define NV50_FIFO_ENGN_DMA 3
-
-#define G84_FIFO_ENGN_SW 0
-#define G84_FIFO_ENGN_GR 1
-#define G84_FIFO_ENGN_MPEG 2
-#define G84_FIFO_ENGN_MSPPP 2
-#define G84_FIFO_ENGN_ME 3
-#define G84_FIFO_ENGN_CE0 3
-#define G84_FIFO_ENGN_VP 4
-#define G84_FIFO_ENGN_MSPDEC 4
-#define G84_FIFO_ENGN_CIPHER 5
-#define G84_FIFO_ENGN_SEC 5
-#define G84_FIFO_ENGN_VIC 5
-#define G84_FIFO_ENGN_BSP 6
-#define G84_FIFO_ENGN_MSVLD 6
-#define G84_FIFO_ENGN_DMA 7
- struct nvkm_gpuobj *engn[NVKM_FIFO_ENGN_NR];
-};
-
-int nv50_fifo_chan_ctor(struct nv50_fifo *, u64 vmm, u64 push,
- const struct nvkm_oclass *, struct nv50_fifo_chan *);
-void *nv50_fifo_chan_dtor(struct nvkm_fifo_chan *);
-void nv50_fifo_chan_fini(struct nvkm_fifo_chan *);
-struct nvkm_gpuobj **nv50_fifo_chan_engine(struct nv50_fifo_chan *, struct nvkm_engine *);
-void nv50_fifo_chan_engine_dtor(struct nvkm_fifo_chan *, struct nvkm_engine *);
-void nv50_fifo_chan_object_dtor(struct nvkm_fifo_chan *, int);
-
-int g84_fifo_chan_ctor(struct nv50_fifo *, u64 vmm, u64 push,
- const struct nvkm_oclass *, struct nv50_fifo_chan *);
-
-extern const struct nvkm_fifo_chan_oclass nv50_fifo_gpfifo_oclass;
-extern const struct nvkm_fifo_chan_oclass g84_fifo_gpfifo_oclass;
-#endif
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/chid.c b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/chid.c
new file mode 100644
index 000000000000..23944d95efd5
--- /dev/null
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/chid.c
@@ -0,0 +1,111 @@
+/*
+ * Copyright 2020 Red Hat Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ */
+#include "chid.h"
+
+void
+nvkm_chid_put(struct nvkm_chid *chid, int id, spinlock_t *data_lock)
+{
+ if (id >= 0) {
+ spin_lock_irq(&chid->lock);
+ spin_lock(data_lock);
+ chid->data[id] = NULL;
+ spin_unlock(data_lock);
+ clear_bit(id, chid->used);
+ spin_unlock_irq(&chid->lock);
+ }
+}
+
+int
+nvkm_chid_get(struct nvkm_chid *chid, void *data)
+{
+ int id = -1, cid;
+
+ spin_lock_irq(&chid->lock);
+ cid = find_first_zero_bit(chid->used, chid->nr);
+ if (cid < chid->nr) {
+ set_bit(cid, chid->used);
+ chid->data[cid] = data;
+ id = cid;
+ }
+ spin_unlock_irq(&chid->lock);
+ return id;
+}
+
+static void
+nvkm_chid_del(struct kref *kref)
+{
+ struct nvkm_chid *chid = container_of(kref, typeof(*chid), kref);
+
+ nvkm_event_fini(&chid->event);
+
+ kvfree(chid->data);
+ kfree(chid);
+}
+
+void
+nvkm_chid_unref(struct nvkm_chid **pchid)
+{
+ struct nvkm_chid *chid = *pchid;
+
+ if (!chid)
+ return;
+
+ kref_put(&chid->kref, nvkm_chid_del);
+ *pchid = NULL;
+}
+
+struct nvkm_chid *
+nvkm_chid_ref(struct nvkm_chid *chid)
+{
+ if (chid)
+ kref_get(&chid->kref);
+
+ return chid;
+}
+
+int
+nvkm_chid_new(const struct nvkm_event_func *func, struct nvkm_subdev *subdev,
+ int nr, int first, int count, struct nvkm_chid **pchid)
+{
+ struct nvkm_chid *chid;
+ int id;
+
+ if (!(chid = *pchid = kzalloc(struct_size(chid, used, nr), GFP_KERNEL)))
+ return -ENOMEM;
+
+ kref_init(&chid->kref);
+ chid->nr = nr;
+ chid->mask = chid->nr - 1;
+ spin_lock_init(&chid->lock);
+
+ if (!(chid->data = kvzalloc(sizeof(*chid->data) * nr, GFP_KERNEL))) {
+ nvkm_chid_unref(pchid);
+ return -ENOMEM;
+ }
+
+ for (id = 0; id < first; id++)
+ __set_bit(id, chid->used);
+ for (id = first + count; id < nr; id++)
+ __set_bit(id, chid->used);
+
+ return nvkm_event_init(func, subdev, 1, nr, &chid->event);
+}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/chid.h b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/chid.h
new file mode 100644
index 000000000000..2a42efb18401
--- /dev/null
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/chid.h
@@ -0,0 +1,25 @@
+/* SPDX-License-Identifier: MIT */
+#ifndef __NVKM_CHID_H__
+#define __NVKM_CHID_H__
+#include <core/event.h>
+
+struct nvkm_chid {
+ struct kref kref;
+ int nr;
+ u32 mask;
+
+ struct nvkm_event event;
+
+ void **data;
+
+ spinlock_t lock;
+ unsigned long used[];
+};
+
+int nvkm_chid_new(const struct nvkm_event_func *, struct nvkm_subdev *,
+ int nr, int first, int count, struct nvkm_chid **pchid);
+struct nvkm_chid *nvkm_chid_ref(struct nvkm_chid *);
+void nvkm_chid_unref(struct nvkm_chid **);
+int nvkm_chid_get(struct nvkm_chid *, void *data);
+void nvkm_chid_put(struct nvkm_chid *, int id, spinlock_t *data_lock);
+#endif
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/dmanv04.c b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/dmanv04.c
deleted file mode 100644
index dbcdc5fab990..000000000000
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/dmanv04.c
+++ /dev/null
@@ -1,226 +0,0 @@
-/*
- * Copyright 2012 Red Hat Inc.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice shall be included in
- * all copies or substantial portions of the Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
- * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
- * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
- * OTHER DEALINGS IN THE SOFTWARE.
- *
- * Authors: Ben Skeggs
- */
-#include "channv04.h"
-#include "regsnv04.h"
-
-#include <core/client.h>
-#include <core/ramht.h>
-#include <subdev/instmem.h>
-
-#include <nvif/class.h>
-#include <nvif/cl006b.h>
-#include <nvif/unpack.h>
-
-void
-nv04_fifo_dma_object_dtor(struct nvkm_fifo_chan *base, int cookie)
-{
- struct nv04_fifo_chan *chan = nv04_fifo_chan(base);
- struct nvkm_instmem *imem = chan->fifo->base.engine.subdev.device->imem;
-
- mutex_lock(&chan->fifo->base.mutex);
- nvkm_ramht_remove(imem->ramht, cookie);
- mutex_unlock(&chan->fifo->base.mutex);
-}
-
-static int
-nv04_fifo_dma_object_ctor(struct nvkm_fifo_chan *base,
- struct nvkm_object *object)
-{
- struct nv04_fifo_chan *chan = nv04_fifo_chan(base);
- struct nvkm_instmem *imem = chan->fifo->base.engine.subdev.device->imem;
- u32 context = 0x80000000 | chan->base.chid << 24;
- u32 handle = object->handle;
- int hash;
-
- switch (object->engine->subdev.type) {
- case NVKM_ENGINE_DMAOBJ:
- case NVKM_ENGINE_SW : context |= 0x00000000; break;
- case NVKM_ENGINE_GR : context |= 0x00010000; break;
- case NVKM_ENGINE_MPEG : context |= 0x00020000; break;
- default:
- WARN_ON(1);
- return -EINVAL;
- }
-
- mutex_lock(&chan->fifo->base.mutex);
- hash = nvkm_ramht_insert(imem->ramht, object, chan->base.chid, 4,
- handle, context);
- mutex_unlock(&chan->fifo->base.mutex);
- return hash;
-}
-
-void
-nv04_fifo_dma_fini(struct nvkm_fifo_chan *base)
-{
- struct nv04_fifo_chan *chan = nv04_fifo_chan(base);
- struct nv04_fifo *fifo = chan->fifo;
- struct nvkm_device *device = fifo->base.engine.subdev.device;
- struct nvkm_memory *fctx = device->imem->ramfc;
- const struct nv04_fifo_ramfc *c;
- unsigned long flags;
- u32 mask = fifo->base.nr - 1;
- u32 data = chan->ramfc;
- u32 chid;
-
- /* prevent fifo context switches */
- spin_lock_irqsave(&fifo->base.lock, flags);
- nvkm_wr32(device, NV03_PFIFO_CACHES, 0);
-
- /* if this channel is active, replace it with a null context */
- chid = nvkm_rd32(device, NV03_PFIFO_CACHE1_PUSH1) & mask;
- if (chid == chan->base.chid) {
- nvkm_mask(device, NV04_PFIFO_CACHE1_DMA_PUSH, 0x00000001, 0);
- nvkm_wr32(device, NV03_PFIFO_CACHE1_PUSH0, 0);
- nvkm_mask(device, NV04_PFIFO_CACHE1_PULL0, 0x00000001, 0);
-
- c = fifo->ramfc;
- nvkm_kmap(fctx);
- do {
- u32 rm = ((1ULL << c->bits) - 1) << c->regs;
- u32 cm = ((1ULL << c->bits) - 1) << c->ctxs;
- u32 rv = (nvkm_rd32(device, c->regp) & rm) >> c->regs;
- u32 cv = (nvkm_ro32(fctx, c->ctxp + data) & ~cm);
- nvkm_wo32(fctx, c->ctxp + data, cv | (rv << c->ctxs));
- } while ((++c)->bits);
- nvkm_done(fctx);
-
- c = fifo->ramfc;
- do {
- nvkm_wr32(device, c->regp, 0x00000000);
- } while ((++c)->bits);
-
- nvkm_wr32(device, NV03_PFIFO_CACHE1_GET, 0);
- nvkm_wr32(device, NV03_PFIFO_CACHE1_PUT, 0);
- nvkm_wr32(device, NV03_PFIFO_CACHE1_PUSH1, mask);
- nvkm_wr32(device, NV03_PFIFO_CACHE1_PUSH0, 1);
- nvkm_wr32(device, NV04_PFIFO_CACHE1_PULL0, 1);
- }
-
- /* restore normal operation, after disabling dma mode */
- nvkm_mask(device, NV04_PFIFO_MODE, 1 << chan->base.chid, 0);
- nvkm_wr32(device, NV03_PFIFO_CACHES, 1);
- spin_unlock_irqrestore(&fifo->base.lock, flags);
-}
-
-void
-nv04_fifo_dma_init(struct nvkm_fifo_chan *base)
-{
- struct nv04_fifo_chan *chan = nv04_fifo_chan(base);
- struct nv04_fifo *fifo = chan->fifo;
- struct nvkm_device *device = fifo->base.engine.subdev.device;
- u32 mask = 1 << chan->base.chid;
- unsigned long flags;
- spin_lock_irqsave(&fifo->base.lock, flags);
- nvkm_mask(device, NV04_PFIFO_MODE, mask, mask);
- spin_unlock_irqrestore(&fifo->base.lock, flags);
-}
-
-void *
-nv04_fifo_dma_dtor(struct nvkm_fifo_chan *base)
-{
- struct nv04_fifo_chan *chan = nv04_fifo_chan(base);
- struct nv04_fifo *fifo = chan->fifo;
- struct nvkm_instmem *imem = fifo->base.engine.subdev.device->imem;
- const struct nv04_fifo_ramfc *c = fifo->ramfc;
-
- nvkm_kmap(imem->ramfc);
- do {
- nvkm_wo32(imem->ramfc, chan->ramfc + c->ctxp, 0x00000000);
- } while ((++c)->bits);
- nvkm_done(imem->ramfc);
- return chan;
-}
-
-const struct nvkm_fifo_chan_func
-nv04_fifo_dma_func = {
- .dtor = nv04_fifo_dma_dtor,
- .init = nv04_fifo_dma_init,
- .fini = nv04_fifo_dma_fini,
- .object_ctor = nv04_fifo_dma_object_ctor,
- .object_dtor = nv04_fifo_dma_object_dtor,
-};
-
-static int
-nv04_fifo_dma_new(struct nvkm_fifo *base, const struct nvkm_oclass *oclass,
- void *data, u32 size, struct nvkm_object **pobject)
-{
- struct nvkm_object *parent = oclass->parent;
- union {
- struct nv03_channel_dma_v0 v0;
- } *args = data;
- struct nv04_fifo *fifo = nv04_fifo(base);
- struct nv04_fifo_chan *chan = NULL;
- struct nvkm_device *device = fifo->base.engine.subdev.device;
- struct nvkm_instmem *imem = device->imem;
- int ret = -ENOSYS;
-
- nvif_ioctl(parent, "create channel dma size %d\n", size);
- if (!(ret = nvif_unpack(ret, &data, &size, args->v0, 0, 0, false))) {
- nvif_ioctl(parent, "create channel dma vers %d pushbuf %llx "
- "offset %08x\n", args->v0.version,
- args->v0.pushbuf, args->v0.offset);
- if (!args->v0.pushbuf)
- return -EINVAL;
- } else
- return ret;
-
- if (!(chan = kzalloc(sizeof(*chan), GFP_KERNEL)))
- return -ENOMEM;
- *pobject = &chan->base.object;
-
- ret = nvkm_fifo_chan_ctor(&nv04_fifo_dma_func, &fifo->base,
- 0x1000, 0x1000, false, 0, args->v0.pushbuf,
- BIT(NV04_FIFO_ENGN_SW) |
- BIT(NV04_FIFO_ENGN_GR) |
- BIT(NV04_FIFO_ENGN_DMA),
- 0, 0x800000, 0x10000, oclass, &chan->base);
- chan->fifo = fifo;
- if (ret)
- return ret;
-
- args->v0.chid = chan->base.chid;
- chan->ramfc = chan->base.chid * 32;
-
- nvkm_kmap(imem->ramfc);
- nvkm_wo32(imem->ramfc, chan->ramfc + 0x00, args->v0.offset);
- nvkm_wo32(imem->ramfc, chan->ramfc + 0x04, args->v0.offset);
- nvkm_wo32(imem->ramfc, chan->ramfc + 0x08, chan->base.push->addr >> 4);
- nvkm_wo32(imem->ramfc, chan->ramfc + 0x10,
- NV_PFIFO_CACHE1_DMA_FETCH_TRIG_128_BYTES |
- NV_PFIFO_CACHE1_DMA_FETCH_SIZE_128_BYTES |
-#ifdef __BIG_ENDIAN
- NV_PFIFO_CACHE1_BIG_ENDIAN |
-#endif
- NV_PFIFO_CACHE1_DMA_FETCH_MAX_REQS_8);
- nvkm_done(imem->ramfc);
- return 0;
-}
-
-const struct nvkm_fifo_chan_oclass
-nv04_fifo_dma_oclass = {
- .base.oclass = NV03_CHANNEL_DMA,
- .base.minver = 0,
- .base.maxver = 0,
- .ctor = nv04_fifo_dma_new,
-};
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/dmanv10.c b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/dmanv10.c
deleted file mode 100644
index 07d80d54a07c..000000000000
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/dmanv10.c
+++ /dev/null
@@ -1,97 +0,0 @@
-/*
- * Copyright 2012 Red Hat Inc.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice shall be included in
- * all copies or substantial portions of the Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
- * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
- * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
- * OTHER DEALINGS IN THE SOFTWARE.
- *
- * Authors: Ben Skeggs
- */
-#include "channv04.h"
-#include "regsnv04.h"
-
-#include <core/client.h>
-#include <core/gpuobj.h>
-#include <subdev/instmem.h>
-
-#include <nvif/class.h>
-#include <nvif/cl006b.h>
-#include <nvif/unpack.h>
-
-static int
-nv10_fifo_dma_new(struct nvkm_fifo *base, const struct nvkm_oclass *oclass,
- void *data, u32 size, struct nvkm_object **pobject)
-{
- struct nvkm_object *parent = oclass->parent;
- union {
- struct nv03_channel_dma_v0 v0;
- } *args = data;
- struct nv04_fifo *fifo = nv04_fifo(base);
- struct nv04_fifo_chan *chan = NULL;
- struct nvkm_device *device = fifo->base.engine.subdev.device;
- struct nvkm_instmem *imem = device->imem;
- int ret = -ENOSYS;
-
- nvif_ioctl(parent, "create channel dma size %d\n", size);
- if (!(ret = nvif_unpack(ret, &data, &size, args->v0, 0, 0, false))) {
- nvif_ioctl(parent, "create channel dma vers %d pushbuf %llx "
- "offset %08x\n", args->v0.version,
- args->v0.pushbuf, args->v0.offset);
- if (!args->v0.pushbuf)
- return -EINVAL;
- } else
- return ret;
-
- if (!(chan = kzalloc(sizeof(*chan), GFP_KERNEL)))
- return -ENOMEM;
- *pobject = &chan->base.object;
-
- ret = nvkm_fifo_chan_ctor(&nv04_fifo_dma_func, &fifo->base,
- 0x1000, 0x1000, false, 0, args->v0.pushbuf,
- BIT(NV04_FIFO_ENGN_SW) |
- BIT(NV04_FIFO_ENGN_GR) |
- BIT(NV04_FIFO_ENGN_DMA),
- 0, 0x800000, 0x10000, oclass, &chan->base);
- chan->fifo = fifo;
- if (ret)
- return ret;
-
- args->v0.chid = chan->base.chid;
- chan->ramfc = chan->base.chid * 32;
-
- nvkm_kmap(imem->ramfc);
- nvkm_wo32(imem->ramfc, chan->ramfc + 0x00, args->v0.offset);
- nvkm_wo32(imem->ramfc, chan->ramfc + 0x04, args->v0.offset);
- nvkm_wo32(imem->ramfc, chan->ramfc + 0x0c, chan->base.push->addr >> 4);
- nvkm_wo32(imem->ramfc, chan->ramfc + 0x14,
- NV_PFIFO_CACHE1_DMA_FETCH_TRIG_128_BYTES |
- NV_PFIFO_CACHE1_DMA_FETCH_SIZE_128_BYTES |
-#ifdef __BIG_ENDIAN
- NV_PFIFO_CACHE1_BIG_ENDIAN |
-#endif
- NV_PFIFO_CACHE1_DMA_FETCH_MAX_REQS_8);
- nvkm_done(imem->ramfc);
- return 0;
-}
-
-const struct nvkm_fifo_chan_oclass
-nv10_fifo_dma_oclass = {
- .base.oclass = NV10_CHANNEL_DMA,
- .base.minver = 0,
- .base.maxver = 0,
- .ctor = nv10_fifo_dma_new,
-};
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/dmanv17.c b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/dmanv17.c
deleted file mode 100644
index edd70a114218..000000000000
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/dmanv17.c
+++ /dev/null
@@ -1,98 +0,0 @@
-/*
- * Copyright 2012 Red Hat Inc.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice shall be included in
- * all copies or substantial portions of the Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
- * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
- * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
- * OTHER DEALINGS IN THE SOFTWARE.
- *
- * Authors: Ben Skeggs
- */
-#include "channv04.h"
-#include "regsnv04.h"
-
-#include <core/client.h>
-#include <core/gpuobj.h>
-#include <subdev/instmem.h>
-
-#include <nvif/class.h>
-#include <nvif/cl006b.h>
-#include <nvif/unpack.h>
-
-static int
-nv17_fifo_dma_new(struct nvkm_fifo *base, const struct nvkm_oclass *oclass,
- void *data, u32 size, struct nvkm_object **pobject)
-{
- struct nvkm_object *parent = oclass->parent;
- union {
- struct nv03_channel_dma_v0 v0;
- } *args = data;
- struct nv04_fifo *fifo = nv04_fifo(base);
- struct nv04_fifo_chan *chan = NULL;
- struct nvkm_device *device = fifo->base.engine.subdev.device;
- struct nvkm_instmem *imem = device->imem;
- int ret = -ENOSYS;
-
- nvif_ioctl(parent, "create channel dma size %d\n", size);
- if (!(ret = nvif_unpack(ret, &data, &size, args->v0, 0, 0, false))) {
- nvif_ioctl(parent, "create channel dma vers %d pushbuf %llx "
- "offset %08x\n", args->v0.version,
- args->v0.pushbuf, args->v0.offset);
- if (!args->v0.pushbuf)
- return -EINVAL;
- } else
- return ret;
-
- if (!(chan = kzalloc(sizeof(*chan), GFP_KERNEL)))
- return -ENOMEM;
- *pobject = &chan->base.object;
-
- ret = nvkm_fifo_chan_ctor(&nv04_fifo_dma_func, &fifo->base,
- 0x1000, 0x1000, false, 0, args->v0.pushbuf,
- BIT(NV04_FIFO_ENGN_SW) |
- BIT(NV04_FIFO_ENGN_GR) |
- BIT(NV04_FIFO_ENGN_MPEG) | /* NV31- */
- BIT(NV04_FIFO_ENGN_DMA),
- 0, 0x800000, 0x10000, oclass, &chan->base);
- chan->fifo = fifo;
- if (ret)
- return ret;
-
- args->v0.chid = chan->base.chid;
- chan->ramfc = chan->base.chid * 64;
-
- nvkm_kmap(imem->ramfc);
- nvkm_wo32(imem->ramfc, chan->ramfc + 0x00, args->v0.offset);
- nvkm_wo32(imem->ramfc, chan->ramfc + 0x04, args->v0.offset);
- nvkm_wo32(imem->ramfc, chan->ramfc + 0x0c, chan->base.push->addr >> 4);
- nvkm_wo32(imem->ramfc, chan->ramfc + 0x14,
- NV_PFIFO_CACHE1_DMA_FETCH_TRIG_128_BYTES |
- NV_PFIFO_CACHE1_DMA_FETCH_SIZE_128_BYTES |
-#ifdef __BIG_ENDIAN
- NV_PFIFO_CACHE1_BIG_ENDIAN |
-#endif
- NV_PFIFO_CACHE1_DMA_FETCH_MAX_REQS_8);
- nvkm_done(imem->ramfc);
- return 0;
-}
-
-const struct nvkm_fifo_chan_oclass
-nv17_fifo_dma_oclass = {
- .base.oclass = NV17_CHANNEL_DMA,
- .base.minver = 0,
- .base.maxver = 0,
- .ctor = nv17_fifo_dma_new,
-};
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/dmanv40.c b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/dmanv40.c
deleted file mode 100644
index 0411fb908457..000000000000
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/dmanv40.c
+++ /dev/null
@@ -1,254 +0,0 @@
-/*
- * Copyright 2012 Red Hat Inc.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice shall be included in
- * all copies or substantial portions of the Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
- * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
- * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
- * OTHER DEALINGS IN THE SOFTWARE.
- *
- * Authors: Ben Skeggs
- */
-#include "channv04.h"
-#include "regsnv04.h"
-
-#include <core/client.h>
-#include <core/ramht.h>
-#include <subdev/instmem.h>
-
-#include <nvif/class.h>
-#include <nvif/cl006b.h>
-#include <nvif/unpack.h>
-
-static bool
-nv40_fifo_dma_engine(struct nvkm_engine *engine, u32 *reg, u32 *ctx)
-{
- switch (engine->subdev.type) {
- case NVKM_ENGINE_DMAOBJ:
- case NVKM_ENGINE_SW:
- return false;
- case NVKM_ENGINE_GR:
- *reg = 0x0032e0;
- *ctx = 0x38;
- return true;
- case NVKM_ENGINE_MPEG:
- if (engine->subdev.device->chipset < 0x44)
- return false;
- *reg = 0x00330c;
- *ctx = 0x54;
- return true;
- default:
- WARN_ON(1);
- return false;
- }
-}
-
-static struct nvkm_gpuobj **
-nv40_fifo_dma_engn(struct nv04_fifo_chan *chan, struct nvkm_engine *engine)
-{
- int engi = chan->base.fifo->func->engine_id(chan->base.fifo, engine);
- if (engi >= 0)
- return &chan->engn[engi];
- return NULL;
-}
-
-static int
-nv40_fifo_dma_engine_fini(struct nvkm_fifo_chan *base,
- struct nvkm_engine *engine, bool suspend)
-{
- struct nv04_fifo_chan *chan = nv04_fifo_chan(base);
- struct nv04_fifo *fifo = chan->fifo;
- struct nvkm_device *device = fifo->base.engine.subdev.device;
- struct nvkm_instmem *imem = device->imem;
- unsigned long flags;
- u32 reg, ctx;
- int chid;
-
- if (!nv40_fifo_dma_engine(engine, &reg, &ctx))
- return 0;
-
- spin_lock_irqsave(&fifo->base.lock, flags);
- nvkm_mask(device, 0x002500, 0x00000001, 0x00000000);
-
- chid = nvkm_rd32(device, 0x003204) & (fifo->base.nr - 1);
- if (chid == chan->base.chid)
- nvkm_wr32(device, reg, 0x00000000);
- nvkm_kmap(imem->ramfc);
- nvkm_wo32(imem->ramfc, chan->ramfc + ctx, 0x00000000);
- nvkm_done(imem->ramfc);
-
- nvkm_mask(device, 0x002500, 0x00000001, 0x00000001);
- spin_unlock_irqrestore(&fifo->base.lock, flags);
- return 0;
-}
-
-static int
-nv40_fifo_dma_engine_init(struct nvkm_fifo_chan *base,
- struct nvkm_engine *engine)
-{
- struct nv04_fifo_chan *chan = nv04_fifo_chan(base);
- struct nv04_fifo *fifo = chan->fifo;
- struct nvkm_device *device = fifo->base.engine.subdev.device;
- struct nvkm_instmem *imem = device->imem;
- unsigned long flags;
- u32 inst, reg, ctx;
- int chid;
-
- if (!nv40_fifo_dma_engine(engine, &reg, &ctx))
- return 0;
- inst = (*nv40_fifo_dma_engn(chan, engine))->addr >> 4;
-
- spin_lock_irqsave(&fifo->base.lock, flags);
- nvkm_mask(device, 0x002500, 0x00000001, 0x00000000);
-
- chid = nvkm_rd32(device, 0x003204) & (fifo->base.nr - 1);
- if (chid == chan->base.chid)
- nvkm_wr32(device, reg, inst);
- nvkm_kmap(imem->ramfc);
- nvkm_wo32(imem->ramfc, chan->ramfc + ctx, inst);
- nvkm_done(imem->ramfc);
-
- nvkm_mask(device, 0x002500, 0x00000001, 0x00000001);
- spin_unlock_irqrestore(&fifo->base.lock, flags);
- return 0;
-}
-
-static void
-nv40_fifo_dma_engine_dtor(struct nvkm_fifo_chan *base,
- struct nvkm_engine *engine)
-{
- struct nv04_fifo_chan *chan = nv04_fifo_chan(base);
- nvkm_gpuobj_del(nv40_fifo_dma_engn(chan, engine));
-}
-
-static int
-nv40_fifo_dma_engine_ctor(struct nvkm_fifo_chan *base,
- struct nvkm_engine *engine,
- struct nvkm_object *object)
-{
- struct nv04_fifo_chan *chan = nv04_fifo_chan(base);
- u32 reg, ctx;
-
- if (!nv40_fifo_dma_engine(engine, &reg, &ctx))
- return 0;
-
- return nvkm_object_bind(object, NULL, 0, nv40_fifo_dma_engn(chan, engine));
-}
-
-static int
-nv40_fifo_dma_object_ctor(struct nvkm_fifo_chan *base,
- struct nvkm_object *object)
-{
- struct nv04_fifo_chan *chan = nv04_fifo_chan(base);
- struct nvkm_instmem *imem = chan->fifo->base.engine.subdev.device->imem;
- u32 context = chan->base.chid << 23;
- u32 handle = object->handle;
- int hash;
-
- switch (object->engine->subdev.type) {
- case NVKM_ENGINE_DMAOBJ:
- case NVKM_ENGINE_SW : context |= 0x00000000; break;
- case NVKM_ENGINE_GR : context |= 0x00100000; break;
- case NVKM_ENGINE_MPEG : context |= 0x00200000; break;
- default:
- WARN_ON(1);
- return -EINVAL;
- }
-
- mutex_lock(&chan->fifo->base.mutex);
- hash = nvkm_ramht_insert(imem->ramht, object, chan->base.chid, 4,
- handle, context);
- mutex_unlock(&chan->fifo->base.mutex);
- return hash;
-}
-
-static const struct nvkm_fifo_chan_func
-nv40_fifo_dma_func = {
- .dtor = nv04_fifo_dma_dtor,
- .init = nv04_fifo_dma_init,
- .fini = nv04_fifo_dma_fini,
- .engine_ctor = nv40_fifo_dma_engine_ctor,
- .engine_dtor = nv40_fifo_dma_engine_dtor,
- .engine_init = nv40_fifo_dma_engine_init,
- .engine_fini = nv40_fifo_dma_engine_fini,
- .object_ctor = nv40_fifo_dma_object_ctor,
- .object_dtor = nv04_fifo_dma_object_dtor,
-};
-
-static int
-nv40_fifo_dma_new(struct nvkm_fifo *base, const struct nvkm_oclass *oclass,
- void *data, u32 size, struct nvkm_object **pobject)
-{
- struct nvkm_object *parent = oclass->parent;
- union {
- struct nv03_channel_dma_v0 v0;
- } *args = data;
- struct nv04_fifo *fifo = nv04_fifo(base);
- struct nv04_fifo_chan *chan = NULL;
- struct nvkm_device *device = fifo->base.engine.subdev.device;
- struct nvkm_instmem *imem = device->imem;
- int ret = -ENOSYS;
-
- nvif_ioctl(parent, "create channel dma size %d\n", size);
- if (!(ret = nvif_unpack(ret, &data, &size, args->v0, 0, 0, false))) {
- nvif_ioctl(parent, "create channel dma vers %d pushbuf %llx "
- "offset %08x\n", args->v0.version,
- args->v0.pushbuf, args->v0.offset);
- if (!args->v0.pushbuf)
- return -EINVAL;
- } else
- return ret;
-
- if (!(chan = kzalloc(sizeof(*chan), GFP_KERNEL)))
- return -ENOMEM;
- *pobject = &chan->base.object;
-
- ret = nvkm_fifo_chan_ctor(&nv40_fifo_dma_func, &fifo->base,
- 0x1000, 0x1000, false, 0, args->v0.pushbuf,
- BIT(NV04_FIFO_ENGN_SW) |
- BIT(NV04_FIFO_ENGN_GR) |
- BIT(NV04_FIFO_ENGN_MPEG) |
- BIT(NV04_FIFO_ENGN_DMA),
- 0, 0xc00000, 0x1000, oclass, &chan->base);
- chan->fifo = fifo;
- if (ret)
- return ret;
-
- args->v0.chid = chan->base.chid;
- chan->ramfc = chan->base.chid * 128;
-
- nvkm_kmap(imem->ramfc);
- nvkm_wo32(imem->ramfc, chan->ramfc + 0x00, args->v0.offset);
- nvkm_wo32(imem->ramfc, chan->ramfc + 0x04, args->v0.offset);
- nvkm_wo32(imem->ramfc, chan->ramfc + 0x0c, chan->base.push->addr >> 4);
- nvkm_wo32(imem->ramfc, chan->ramfc + 0x18, 0x30000000 |
- NV_PFIFO_CACHE1_DMA_FETCH_TRIG_128_BYTES |
- NV_PFIFO_CACHE1_DMA_FETCH_SIZE_128_BYTES |
-#ifdef __BIG_ENDIAN
- NV_PFIFO_CACHE1_BIG_ENDIAN |
-#endif
- NV_PFIFO_CACHE1_DMA_FETCH_MAX_REQS_8);
- nvkm_wo32(imem->ramfc, chan->ramfc + 0x3c, 0x0001ffff);
- nvkm_done(imem->ramfc);
- return 0;
-}
-
-const struct nvkm_fifo_chan_oclass
-nv40_fifo_dma_oclass = {
- .base.oclass = NV40_CHANNEL_DMA,
- .base.minver = 0,
- .base.maxver = 0,
- .ctor = nv40_fifo_dma_new,
-};
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/g84.c b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/g84.c
index 3885c3830b94..6b229a3fbd97 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/g84.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/g84.c
@@ -21,112 +21,211 @@
*
* Authors: Ben Skeggs
*/
-#include "nv50.h"
-#include "channv50.h"
+#include "priv.h"
+#include "cgrp.h"
+#include "chan.h"
+#include "runl.h"
+
+#include <core/ramht.h>
+#include <subdev/timer.h>
+
+#include <nvif/class.h>
static void
-g84_fifo_uevent_fini(struct nvkm_fifo *fifo)
+g84_chan_bind(struct nvkm_chan *chan)
{
- struct nvkm_device *device = fifo->engine.subdev.device;
- nvkm_mask(device, 0x002140, 0x40000000, 0x00000000);
+ struct nvkm_device *device = chan->cgrp->runl->fifo->engine.subdev.device;
+
+ nvkm_wr32(device, 0x002600 + (chan->id * 4), chan->ramfc->addr >> 8);
}
-static void
-g84_fifo_uevent_init(struct nvkm_fifo *fifo)
+static int
+g84_chan_ramfc_write(struct nvkm_chan *chan, u64 offset, u64 length, u32 devm, bool priv)
{
- struct nvkm_device *device = fifo->engine.subdev.device;
- nvkm_mask(device, 0x002140, 0x40000000, 0x40000000);
+ struct nvkm_device *device = chan->cgrp->runl->fifo->engine.subdev.device;
+ const u32 limit2 = ilog2(length / 8);
+ int ret;
+
+ ret = nvkm_gpuobj_new(device, 0x0200, 0, true, chan->inst, &chan->eng);
+ if (ret)
+ return ret;
+
+ ret = nvkm_gpuobj_new(device, 0x4000, 0, false, chan->inst, &chan->pgd);
+ if (ret)
+ return ret;
+
+ ret = nvkm_gpuobj_new(device, 0x1000, 0x400, true, chan->inst, &chan->cache);
+ if (ret)
+ return ret;
+
+ ret = nvkm_gpuobj_new(device, 0x100, 0x100, true, chan->inst, &chan->ramfc);
+ if (ret)
+ return ret;
+
+ ret = nvkm_ramht_new(device, 0x8000, 16, chan->inst, &chan->ramht);
+ if (ret)
+ return ret;
+
+ nvkm_kmap(chan->ramfc);
+ nvkm_wo32(chan->ramfc, 0x3c, 0x403f6078);
+ nvkm_wo32(chan->ramfc, 0x44, 0x01003fff);
+ nvkm_wo32(chan->ramfc, 0x48, chan->push->node->offset >> 4);
+ nvkm_wo32(chan->ramfc, 0x50, lower_32_bits(offset));
+ nvkm_wo32(chan->ramfc, 0x54, upper_32_bits(offset) | (limit2 << 16));
+ nvkm_wo32(chan->ramfc, 0x60, 0x7fffffff);
+ nvkm_wo32(chan->ramfc, 0x78, 0x00000000);
+ nvkm_wo32(chan->ramfc, 0x7c, 0x30000000 | devm);
+ nvkm_wo32(chan->ramfc, 0x80, ((chan->ramht->bits - 9) << 27) |
+ (4 << 24) /* SEARCH_FULL */ |
+ (chan->ramht->gpuobj->node->offset >> 4));
+ nvkm_wo32(chan->ramfc, 0x88, chan->cache->addr >> 10);
+ nvkm_wo32(chan->ramfc, 0x98, chan->inst->addr >> 12);
+ nvkm_done(chan->ramfc);
+ return 0;
}
-static struct nvkm_engine *
-g84_fifo_id_engine(struct nvkm_fifo *fifo, int engi)
+static const struct nvkm_chan_func_ramfc
+g84_chan_ramfc = {
+ .write = g84_chan_ramfc_write,
+ .ctxdma = true,
+ .devm = 0xfff,
+};
+
+const struct nvkm_chan_func
+g84_chan = {
+ .inst = &nv50_chan_inst,
+ .userd = &nv50_chan_userd,
+ .ramfc = &g84_chan_ramfc,
+ .bind = g84_chan_bind,
+ .unbind = nv50_chan_unbind,
+ .start = nv50_chan_start,
+ .stop = nv50_chan_stop,
+};
+
+static void
+g84_ectx_bind(struct nvkm_engn *engn, struct nvkm_cctx *cctx, struct nvkm_chan *chan)
{
- struct nvkm_device *device = fifo->engine.subdev.device;
- struct nvkm_engine *engine;
- enum nvkm_subdev_type type;
-
- switch (engi) {
- case G84_FIFO_ENGN_SW : type = NVKM_ENGINE_SW; break;
- case G84_FIFO_ENGN_GR : type = NVKM_ENGINE_GR; break;
- case G84_FIFO_ENGN_MPEG :
- if ((engine = nvkm_device_engine(device, NVKM_ENGINE_MSPPP, 0)))
- return engine;
- type = NVKM_ENGINE_MPEG;
- break;
- case G84_FIFO_ENGN_ME :
- if ((engine = nvkm_device_engine(device, NVKM_ENGINE_CE, 0)))
- return engine;
- type = NVKM_ENGINE_ME;
- break;
- case G84_FIFO_ENGN_VP :
- if ((engine = nvkm_device_engine(device, NVKM_ENGINE_MSPDEC, 0)))
- return engine;
- type = NVKM_ENGINE_VP;
- break;
- case G84_FIFO_ENGN_CIPHER:
- if ((engine = nvkm_device_engine(device, NVKM_ENGINE_VIC, 0)))
- return engine;
- if ((engine = nvkm_device_engine(device, NVKM_ENGINE_SEC, 0)))
- return engine;
- type = NVKM_ENGINE_CIPHER;
- break;
- case G84_FIFO_ENGN_BSP :
- if ((engine = nvkm_device_engine(device, NVKM_ENGINE_MSVLD, 0)))
- return engine;
- type = NVKM_ENGINE_BSP;
- break;
- case G84_FIFO_ENGN_DMA : type = NVKM_ENGINE_DMAOBJ; break;
+ struct nvkm_subdev *subdev = &chan->cgrp->runl->fifo->engine.subdev;
+ struct nvkm_device *device = subdev->device;
+ u64 start = 0, limit = 0;
+ u32 flags = 0, ptr0, save;
+
+ switch (engn->engine->subdev.type) {
+ case NVKM_ENGINE_GR : ptr0 = 0x0020; break;
+ case NVKM_ENGINE_VP :
+ case NVKM_ENGINE_MSPDEC: ptr0 = 0x0040; break;
+ case NVKM_ENGINE_MPEG :
+ case NVKM_ENGINE_MSPPP : ptr0 = 0x0060; break;
+ case NVKM_ENGINE_BSP :
+ case NVKM_ENGINE_MSVLD : ptr0 = 0x0080; break;
+ case NVKM_ENGINE_CIPHER:
+ case NVKM_ENGINE_SEC : ptr0 = 0x00a0; break;
+ case NVKM_ENGINE_CE : ptr0 = 0x00c0; break;
default:
WARN_ON(1);
- return NULL;
+ return;
+ }
+
+ if (!cctx) {
+ save = nvkm_mask(device, 0x002520, 0x0000003f, BIT(engn->id - 1));
+ nvkm_wr32(device, 0x0032fc, chan->inst->addr >> 12);
+ nvkm_msec(device, 2000,
+ if (nvkm_rd32(device, 0x0032fc) != 0xffffffff)
+ break;
+ );
+ nvkm_wr32(device, 0x002520, save);
+ } else {
+ flags = 0x00190000;
+ start = cctx->vctx->inst->addr;
+ limit = start + cctx->vctx->inst->size - 1;
}
- return nvkm_device_engine(fifo->engine.subdev.device, type, 0);
+ nvkm_kmap(chan->eng);
+ nvkm_wo32(chan->eng, ptr0 + 0x00, flags);
+ nvkm_wo32(chan->eng, ptr0 + 0x04, lower_32_bits(limit));
+ nvkm_wo32(chan->eng, ptr0 + 0x08, lower_32_bits(start));
+ nvkm_wo32(chan->eng, ptr0 + 0x0c, upper_32_bits(limit) << 24 |
+ lower_32_bits(start));
+ nvkm_wo32(chan->eng, ptr0 + 0x10, 0x00000000);
+ nvkm_wo32(chan->eng, ptr0 + 0x14, 0x00000000);
+ nvkm_done(chan->eng);
}
+const struct nvkm_engn_func
+g84_engn = {
+ .bind = g84_ectx_bind,
+ .ramht_add = nv50_eobj_ramht_add,
+ .ramht_del = nv50_eobj_ramht_del,
+};
+
+static void
+g84_fifo_nonstall_block(struct nvkm_event *event, int type, int index)
+{
+ struct nvkm_fifo *fifo = container_of(event, typeof(*fifo), nonstall.event);
+ unsigned long flags;
+
+ spin_lock_irqsave(&fifo->lock, flags);
+ nvkm_mask(fifo->engine.subdev.device, 0x002140, 0x40000000, 0x00000000);
+ spin_unlock_irqrestore(&fifo->lock, flags);
+}
+
+static void
+g84_fifo_nonstall_allow(struct nvkm_event *event, int type, int index)
+{
+ struct nvkm_fifo *fifo = container_of(event, typeof(*fifo), nonstall.event);
+ unsigned long flags;
+
+ spin_lock_irqsave(&fifo->lock, flags);
+ nvkm_mask(fifo->engine.subdev.device, 0x002140, 0x40000000, 0x40000000);
+ spin_unlock_irqrestore(&fifo->lock, flags);
+}
+
+const struct nvkm_event_func
+g84_fifo_nonstall = {
+ .init = g84_fifo_nonstall_allow,
+ .fini = g84_fifo_nonstall_block,
+};
+
static int
-g84_fifo_engine_id(struct nvkm_fifo *base, struct nvkm_engine *engine)
+g84_fifo_runl_ctor(struct nvkm_fifo *fifo)
{
- switch (engine->subdev.type) {
- case NVKM_ENGINE_SW : return G84_FIFO_ENGN_SW;
- case NVKM_ENGINE_GR : return G84_FIFO_ENGN_GR;
- case NVKM_ENGINE_MPEG :
- case NVKM_ENGINE_MSPPP : return G84_FIFO_ENGN_MPEG;
- case NVKM_ENGINE_CE : return G84_FIFO_ENGN_CE0;
- case NVKM_ENGINE_VP :
- case NVKM_ENGINE_MSPDEC: return G84_FIFO_ENGN_VP;
- case NVKM_ENGINE_CIPHER:
- case NVKM_ENGINE_SEC : return G84_FIFO_ENGN_CIPHER;
- case NVKM_ENGINE_BSP :
- case NVKM_ENGINE_MSVLD : return G84_FIFO_ENGN_BSP;
- case NVKM_ENGINE_DMAOBJ: return G84_FIFO_ENGN_DMA;
- default:
- WARN_ON(1);
- return -1;
- }
+ struct nvkm_runl *runl;
+
+ runl = nvkm_runl_new(fifo, 0, 0, 0);
+ if (IS_ERR(runl))
+ return PTR_ERR(runl);
+
+ nvkm_runl_add(runl, 0, fifo->func->engn_sw, NVKM_ENGINE_SW, 0);
+ nvkm_runl_add(runl, 0, fifo->func->engn_sw, NVKM_ENGINE_DMAOBJ, 0);
+ nvkm_runl_add(runl, 1, fifo->func->engn, NVKM_ENGINE_GR, 0);
+ nvkm_runl_add(runl, 2, fifo->func->engn, NVKM_ENGINE_MPEG, 0);
+ nvkm_runl_add(runl, 3, fifo->func->engn, NVKM_ENGINE_ME, 0);
+ nvkm_runl_add(runl, 4, fifo->func->engn, NVKM_ENGINE_VP, 0);
+ nvkm_runl_add(runl, 5, fifo->func->engn, NVKM_ENGINE_CIPHER, 0);
+ nvkm_runl_add(runl, 6, fifo->func->engn, NVKM_ENGINE_BSP, 0);
+ return 0;
}
static const struct nvkm_fifo_func
g84_fifo = {
- .dtor = nv50_fifo_dtor,
- .oneinit = nv50_fifo_oneinit,
+ .chid_nr = nv50_fifo_chid_nr,
+ .chid_ctor = nv50_fifo_chid_ctor,
+ .runl_ctor = g84_fifo_runl_ctor,
.init = nv50_fifo_init,
.intr = nv04_fifo_intr,
- .engine_id = g84_fifo_engine_id,
- .id_engine = g84_fifo_id_engine,
.pause = nv04_fifo_pause,
.start = nv04_fifo_start,
- .uevent_init = g84_fifo_uevent_init,
- .uevent_fini = g84_fifo_uevent_fini,
- .chan = {
- &g84_fifo_gpfifo_oclass,
- NULL
- },
+ .nonstall = &g84_fifo_nonstall,
+ .runl = &nv50_runl,
+ .engn = &g84_engn,
+ .engn_sw = &nv50_engn_sw,
+ .cgrp = {{ }, &nv04_cgrp },
+ .chan = {{ 0, 0, G82_CHANNEL_GPFIFO }, &g84_chan },
};
int
g84_fifo_new(struct nvkm_device *device, enum nvkm_subdev_type type, int inst,
struct nvkm_fifo **pfifo)
{
- return nv50_fifo_new_(&g84_fifo, device, type, inst, pfifo);
+ return nvkm_fifo_new_(&g84_fifo, device, type, inst, pfifo);
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/g98.c b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/g98.c
new file mode 100644
index 000000000000..c6ca050c38bf
--- /dev/null
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/g98.c
@@ -0,0 +1,70 @@
+/*
+ * Copyright 2021 Red Hat Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ */
+#include "priv.h"
+#include "chan.h"
+#include "runl.h"
+
+#include <nvif/class.h>
+
+static int
+g98_fifo_runl_ctor(struct nvkm_fifo *fifo)
+{
+ struct nvkm_runl *runl;
+
+ runl = nvkm_runl_new(fifo, 0, 0, 0);
+ if (IS_ERR(runl))
+ return PTR_ERR(runl);
+
+ nvkm_runl_add(runl, 0, fifo->func->engn_sw, NVKM_ENGINE_SW, 0);
+ nvkm_runl_add(runl, 0, fifo->func->engn_sw, NVKM_ENGINE_DMAOBJ, 0);
+ nvkm_runl_add(runl, 1, fifo->func->engn, NVKM_ENGINE_GR, 0);
+ nvkm_runl_add(runl, 2, fifo->func->engn, NVKM_ENGINE_MSPPP, 0);
+ nvkm_runl_add(runl, 3, fifo->func->engn, NVKM_ENGINE_CE, 0);
+ nvkm_runl_add(runl, 4, fifo->func->engn, NVKM_ENGINE_MSPDEC, 0);
+ nvkm_runl_add(runl, 5, fifo->func->engn, NVKM_ENGINE_SEC, 0);
+ nvkm_runl_add(runl, 6, fifo->func->engn, NVKM_ENGINE_MSVLD, 0);
+ return 0;
+}
+
+static const struct nvkm_fifo_func
+g98_fifo = {
+ .chid_nr = nv50_fifo_chid_nr,
+ .chid_ctor = nv50_fifo_chid_ctor,
+ .runl_ctor = g98_fifo_runl_ctor,
+ .init = nv50_fifo_init,
+ .intr = nv04_fifo_intr,
+ .pause = nv04_fifo_pause,
+ .start = nv04_fifo_start,
+ .nonstall = &g84_fifo_nonstall,
+ .runl = &nv50_runl,
+ .engn = &g84_engn,
+ .engn_sw = &nv50_engn_sw,
+ .cgrp = {{ }, &nv04_cgrp },
+ .chan = {{ 0, 0, G82_CHANNEL_GPFIFO }, &g84_chan },
+};
+
+int
+g98_fifo_new(struct nvkm_device *device, enum nvkm_subdev_type type, int inst,
+ struct nvkm_fifo **pfifo)
+{
+ return nvkm_fifo_new_(&g98_fifo, device, type, inst, pfifo);
+}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/ga100.c b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/ga100.c
new file mode 100644
index 000000000000..12a5d99d5e77
--- /dev/null
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/ga100.c
@@ -0,0 +1,550 @@
+/*
+ * Copyright 2021 Red Hat Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ */
+#include "priv.h"
+#include "cgrp.h"
+#include "chan.h"
+#include "chid.h"
+#include "runl.h"
+#include "runq.h"
+
+#include <core/gpuobj.h>
+#include <subdev/top.h>
+#include <subdev/vfn.h>
+
+#include <nvif/class.h>
+
+/*TODO: allocate? */
+#define GA100_FIFO_NONSTALL_VECTOR 0
+
+static u32
+ga100_chan_doorbell_handle(struct nvkm_chan *chan)
+{
+ return (chan->cgrp->runl->doorbell << 16) | chan->id;
+}
+
+static void
+ga100_chan_stop(struct nvkm_chan *chan)
+{
+ struct nvkm_runl *runl = chan->cgrp->runl;
+
+ nvkm_wr32(runl->fifo->engine.subdev.device, runl->chan + (chan->id * 4), 0x00000003);
+}
+
+static void
+ga100_chan_start(struct nvkm_chan *chan)
+{
+ struct nvkm_runl *runl = chan->cgrp->runl;
+ struct nvkm_device *device = runl->fifo->engine.subdev.device;
+ const int gfid = 0;
+
+ nvkm_wr32(device, runl->chan + (chan->id * 4), 0x00000002);
+ nvkm_wr32(device, runl->addr + 0x0090, (gfid << 16) | chan->id); /* INTERNAL_DOORBELL. */
+}
+
+static void
+ga100_chan_unbind(struct nvkm_chan *chan)
+{
+ struct nvkm_runl *runl = chan->cgrp->runl;
+
+ nvkm_wr32(runl->fifo->engine.subdev.device, runl->chan + (chan->id * 4), 0xffffffff);
+}
+
+static int
+ga100_chan_ramfc_write(struct nvkm_chan *chan, u64 offset, u64 length, u32 devm, bool priv)
+{
+ const u32 limit2 = ilog2(length / 8);
+
+ nvkm_kmap(chan->inst);
+ nvkm_wo32(chan->inst, 0x010, 0x0000face);
+ nvkm_wo32(chan->inst, 0x030, 0x7ffff902);
+ nvkm_wo32(chan->inst, 0x048, lower_32_bits(offset));
+ nvkm_wo32(chan->inst, 0x04c, upper_32_bits(offset) | (limit2 << 16));
+ nvkm_wo32(chan->inst, 0x084, 0x20400000);
+ nvkm_wo32(chan->inst, 0x094, 0x30000000 | devm);
+ nvkm_wo32(chan->inst, 0x0e4, priv ? 0x00000020 : 0x00000000);
+ nvkm_wo32(chan->inst, 0x0e8, chan->id);
+ nvkm_wo32(chan->inst, 0x0f4, 0x00001000 | (priv ? 0x00000100 : 0x00000000));
+ nvkm_wo32(chan->inst, 0x0f8, 0x80000000 | GA100_FIFO_NONSTALL_VECTOR);
+ nvkm_mo32(chan->inst, 0x218, 0x00000000, 0x00000000);
+ nvkm_done(chan->inst);
+ return 0;
+}
+
+static const struct nvkm_chan_func_ramfc
+ga100_chan_ramfc = {
+ .write = ga100_chan_ramfc_write,
+ .devm = 0xfff,
+ .priv = true,
+};
+
+const struct nvkm_chan_func
+ga100_chan = {
+ .inst = &gf100_chan_inst,
+ .userd = &gv100_chan_userd,
+ .ramfc = &ga100_chan_ramfc,
+ .unbind = ga100_chan_unbind,
+ .start = ga100_chan_start,
+ .stop = ga100_chan_stop,
+ .preempt = gk110_chan_preempt,
+ .doorbell_handle = ga100_chan_doorbell_handle,
+};
+
+static void
+ga100_cgrp_preempt(struct nvkm_cgrp *cgrp)
+{
+ struct nvkm_runl *runl = cgrp->runl;
+
+ nvkm_wr32(runl->fifo->engine.subdev.device, runl->addr + 0x098, 0x01000000 | cgrp->id);
+}
+
+const struct nvkm_cgrp_func
+ga100_cgrp = {
+ .preempt = ga100_cgrp_preempt,
+};
+
+static int
+ga100_engn_cxid(struct nvkm_engn *engn, bool *cgid)
+{
+ struct nvkm_runl *runl = engn->runl;
+ struct nvkm_device *device = runl->fifo->engine.subdev.device;
+ u32 stat = nvkm_rd32(device, runl->addr + 0x200 + engn->id * 0x40);
+
+ ENGN_DEBUG(engn, "status %08x", stat);
+ *cgid = true;
+
+ switch ((stat & 0x0000e000) >> 13) {
+ case 0 /* INVALID */: return -ENODEV;
+ case 1 /* VALID */:
+ case 5 /* SAVE */: return (stat & 0x00000fff);
+ case 6 /* LOAD */: return (stat & 0x0fff0000) >> 16;
+ case 7 /* SWITCH */:
+ if (nvkm_engine_chsw_load(engn->engine))
+ return (stat & 0x0fff0000) >> 16;
+ return (stat & 0x00000fff);
+ default:
+ WARN_ON(1);
+ break;
+ }
+
+ return -ENODEV;
+}
+
+const struct nvkm_engn_func
+ga100_engn = {
+ .cxid = ga100_engn_cxid,
+ .ctor = gk104_ectx_ctor,
+ .bind = gv100_ectx_bind,
+};
+
+const struct nvkm_engn_func
+ga100_engn_ce = {
+ .cxid = ga100_engn_cxid,
+ .ctor = gv100_ectx_ce_ctor,
+ .bind = gv100_ectx_ce_bind,
+};
+
+static bool
+ga100_runq_idle(struct nvkm_runq *runq)
+{
+ struct nvkm_device *device = runq->fifo->engine.subdev.device;
+
+ return !(nvkm_rd32(device, 0x04015c + (runq->id * 0x800)) & 0x0000e000);
+}
+
+static bool
+ga100_runq_intr_1(struct nvkm_runq *runq, struct nvkm_runl *runl)
+{
+ struct nvkm_device *device = runq->fifo->engine.subdev.device;
+ u32 inte = nvkm_rd32(device, 0x040180 + (runq->id * 0x800));
+ u32 intr = nvkm_rd32(device, 0x040148 + (runq->id * 0x800));
+ u32 stat = intr & inte;
+
+ if (!stat) {
+ RUNQ_DEBUG(runq, "inte1 %08x %08x", intr, inte);
+ return false;
+ }
+
+ if (stat & 0x80000000) {
+ u32 chid = nvkm_rd32(device, 0x040120 + (runq->id * 0x0800)) & runl->chid->mask;
+ struct nvkm_chan *chan;
+ unsigned long flags;
+
+ RUNQ_ERROR(runq, "CTXNOTVALID chid:%d", chid);
+ chan = nvkm_runl_chan_get_chid(runl, chid, &flags);
+ if (chan) {
+ nvkm_chan_error(chan, true);
+ nvkm_chan_put(&chan, flags);
+ }
+
+ nvkm_mask(device, 0x0400ac + (runq->id * 0x800), 0x00030000, 0x00030000);
+ stat &= ~0x80000000;
+ }
+
+ if (stat) {
+ RUNQ_ERROR(runq, "intr1 %08x", stat);
+ nvkm_wr32(device, 0x0401a0 + (runq->id * 0x800), stat);
+ }
+
+ nvkm_wr32(device, 0x040148 + (runq->id * 0x800), intr);
+ return true;
+}
+
+static bool
+ga100_runq_intr_0(struct nvkm_runq *runq, struct nvkm_runl *runl)
+{
+ struct nvkm_device *device = runq->fifo->engine.subdev.device;
+ u32 inte = nvkm_rd32(device, 0x040170 + (runq->id * 0x800));
+ u32 intr = nvkm_rd32(device, 0x040108 + (runq->id * 0x800));
+ u32 stat = intr & inte;
+
+ if (!stat) {
+ RUNQ_DEBUG(runq, "inte0 %08x %08x", intr, inte);
+ return false;
+ }
+
+ /*TODO: expand on this when fixing up gf100's version. */
+ if (stat & 0xc6afe000) {
+ u32 chid = nvkm_rd32(device, 0x040120 + (runq->id * 0x0800)) & runl->chid->mask;
+ struct nvkm_chan *chan;
+ unsigned long flags;
+
+ RUNQ_ERROR(runq, "intr0 %08x", stat);
+ chan = nvkm_runl_chan_get_chid(runl, chid, &flags);
+ if (chan) {
+ nvkm_chan_error(chan, true);
+ nvkm_chan_put(&chan, flags);
+ }
+
+ stat &= ~0xc6afe000;
+ }
+
+ if (stat) {
+ RUNQ_ERROR(runq, "intr0 %08x", stat);
+ nvkm_wr32(device, 0x040190 + (runq->id * 0x800), stat);
+ }
+
+ nvkm_wr32(device, 0x040108 + (runq->id * 0x800), intr);
+ return true;
+}
+
+static bool
+ga100_runq_intr(struct nvkm_runq *runq, struct nvkm_runl *runl)
+{
+ bool intr0 = ga100_runq_intr_0(runq, runl);
+ bool intr1 = ga100_runq_intr_1(runq, runl);
+
+ return intr0 || intr1;
+}
+
+static void
+ga100_runq_init(struct nvkm_runq *runq)
+{
+ struct nvkm_device *device = runq->fifo->engine.subdev.device;
+
+ nvkm_wr32(device, 0x040108 + (runq->id * 0x800), 0xffffffff); /* INTR_0 */
+ nvkm_wr32(device, 0x040148 + (runq->id * 0x800), 0xffffffff); /* INTR_1 */
+ nvkm_wr32(device, 0x040170 + (runq->id * 0x800), 0xffffffff); /* INTR_0_EN_SET_TREE */
+ nvkm_wr32(device, 0x040180 + (runq->id * 0x800), 0xffffffff); /* INTR_1_EN_SET_TREE */
+}
+
+const struct nvkm_runq_func
+ga100_runq = {
+ .init = ga100_runq_init,
+ .intr = ga100_runq_intr,
+ .idle = ga100_runq_idle,
+};
+
+static bool
+ga100_runl_preempt_pending(struct nvkm_runl *runl)
+{
+ return nvkm_rd32(runl->fifo->engine.subdev.device, runl->addr + 0x098) & 0x00100000;
+}
+
+static void
+ga100_runl_preempt(struct nvkm_runl *runl)
+{
+ nvkm_wr32(runl->fifo->engine.subdev.device, runl->addr + 0x098, 0x00000000);
+}
+
+static void
+ga100_runl_allow(struct nvkm_runl *runl, u32 engm)
+{
+ nvkm_mask(runl->fifo->engine.subdev.device, runl->addr + 0x094, 0x00000001, 0x00000000);
+}
+
+static void
+ga100_runl_block(struct nvkm_runl *runl, u32 engm)
+{
+ nvkm_mask(runl->fifo->engine.subdev.device, runl->addr + 0x094, 0x00000001, 0x00000001);
+}
+
+static bool
+ga100_runl_pending(struct nvkm_runl *runl)
+{
+ struct nvkm_device *device = runl->fifo->engine.subdev.device;
+
+ return nvkm_rd32(device, runl->addr + 0x08c) & 0x00008000;
+}
+
+static void
+ga100_runl_commit(struct nvkm_runl *runl, struct nvkm_memory *memory, u32 start, int count)
+{
+ struct nvkm_device *device = runl->fifo->engine.subdev.device;
+ u64 addr = nvkm_memory_addr(memory) + start;
+
+ nvkm_wr32(device, runl->addr + 0x080, lower_32_bits(addr));
+ nvkm_wr32(device, runl->addr + 0x084, upper_32_bits(addr));
+ nvkm_wr32(device, runl->addr + 0x088, count);
+}
+
+static irqreturn_t
+ga100_runl_intr(struct nvkm_inth *inth)
+{
+ struct nvkm_runl *runl = container_of(inth, typeof(*runl), inth);
+ struct nvkm_engn *engn;
+ struct nvkm_device *device = runl->fifo->engine.subdev.device;
+ u32 inte = nvkm_rd32(device, runl->addr + 0x120);
+ u32 intr = nvkm_rd32(device, runl->addr + 0x100);
+ u32 stat = intr & inte;
+ u32 info;
+
+ if (!stat) {
+ RUNL_DEBUG(runl, "inte %08x %08x", intr, inte);
+ return IRQ_NONE;
+ }
+
+ if (stat & 0x00000007) {
+ nvkm_runl_foreach_engn_cond(engn, runl, stat & BIT(engn->id)) {
+ info = nvkm_rd32(device, runl->addr + 0x224 + (engn->id * 0x40));
+
+ tu102_fifo_intr_ctxsw_timeout_info(engn, info);
+
+ nvkm_wr32(device, runl->addr + 0x100, BIT(engn->id));
+ stat &= ~BIT(engn->id);
+ }
+ }
+
+ if (stat & 0x00000300) {
+ nvkm_wr32(device, runl->addr + 0x100, stat & 0x00000300);
+ stat &= ~0x00000300;
+ }
+
+ if (stat & 0x00010000) {
+ if (runl->runq[0]) {
+ if (runl->runq[0]->func->intr(runl->runq[0], runl))
+ stat &= ~0x00010000;
+ }
+ }
+
+ if (stat & 0x00020000) {
+ if (runl->runq[1]) {
+ if (runl->runq[1]->func->intr(runl->runq[1], runl))
+ stat &= ~0x00020000;
+ }
+ }
+
+ if (stat) {
+ RUNL_ERROR(runl, "intr %08x", stat);
+ nvkm_wr32(device, runl->addr + 0x140, stat);
+ }
+
+ nvkm_wr32(device, runl->addr + 0x180, 0x00000001);
+ return IRQ_HANDLED;
+}
+
+static void
+ga100_runl_fini(struct nvkm_runl *runl)
+{
+ nvkm_mask(runl->fifo->engine.subdev.device, runl->addr + 0x300, 0x80000000, 0x00000000);
+ nvkm_inth_block(&runl->inth);
+}
+
+static void
+ga100_runl_init(struct nvkm_runl *runl)
+{
+ struct nvkm_fifo *fifo = runl->fifo;
+ struct nvkm_runq *runq;
+ struct nvkm_device *device = fifo->engine.subdev.device;
+ int i;
+
+ /* Submit NULL runlist and preempt. */
+ nvkm_wr32(device, runl->addr + 0x088, 0x00000000);
+ runl->func->preempt(runl);
+
+ /* Enable doorbell. */
+ nvkm_mask(device, runl->addr + 0x300, 0x80000000, 0x80000000);
+
+ nvkm_wr32(device, runl->addr + 0x100, 0xffffffff); /* INTR_0 */
+ nvkm_wr32(device, runl->addr + 0x140, 0xffffffff); /* INTR_0_EN_CLEAR_TREE(0) */
+ nvkm_wr32(device, runl->addr + 0x120, 0x000f1307); /* INTR_0_EN_SET_TREE(0) */
+ nvkm_wr32(device, runl->addr + 0x148, 0xffffffff); /* INTR_0_EN_CLEAR_TREE(1) */
+ nvkm_wr32(device, runl->addr + 0x128, 0x00000000); /* INTR_0_EN_SET_TREE(1) */
+
+ /* Init PBDMA(s). */
+ for (i = 0; i < runl->runq_nr; i++) {
+ runq = runl->runq[i];
+ runq->func->init(runq);
+ }
+
+ nvkm_inth_allow(&runl->inth);
+}
+
+const struct nvkm_runl_func
+ga100_runl = {
+ .init = ga100_runl_init,
+ .fini = ga100_runl_fini,
+ .size = 16,
+ .update = nv50_runl_update,
+ .insert_cgrp = gv100_runl_insert_cgrp,
+ .insert_chan = gv100_runl_insert_chan,
+ .commit = ga100_runl_commit,
+ .wait = nv50_runl_wait,
+ .pending = ga100_runl_pending,
+ .block = ga100_runl_block,
+ .allow = ga100_runl_allow,
+ .preempt = ga100_runl_preempt,
+ .preempt_pending = ga100_runl_preempt_pending,
+};
+
+static int
+ga100_runl_new(struct nvkm_fifo *fifo, int id, u32 addr, struct nvkm_runl **prunl)
+{
+ struct nvkm_device *device = fifo->engine.subdev.device;
+ struct nvkm_runl *runl;
+ u32 chcfg = nvkm_rd32(device, addr + 0x004);
+ u32 chnum = 1 << (chcfg & 0x0000000f);
+ u32 chaddr = (chcfg & 0xfffffff0);
+ u32 dbcfg = nvkm_rd32(device, addr + 0x008);
+ u32 vector = nvkm_rd32(device, addr + 0x160);
+ int i, ret;
+
+ runl = *prunl = nvkm_runl_new(fifo, id, addr, chnum);
+ if (IS_ERR(runl))
+ return PTR_ERR(runl);
+
+ for (i = 0; i < 2; i++) {
+ u32 pbcfg = nvkm_rd32(device, addr + 0x010 + (i * 0x04));
+ if (pbcfg & 0x80000000) {
+ runl->runq[runl->runq_nr] =
+ nvkm_runq_new(fifo, ((pbcfg & 0x03fffc00) - 0x040000) / 0x800);
+ if (!runl->runq[runl->runq_nr])
+ return -ENOMEM;
+
+ runl->runq_nr++;
+ }
+ }
+
+ ret = nvkm_inth_add(&device->vfn->intr, vector & 0x00000fff, NVKM_INTR_PRIO_NORMAL,
+ &fifo->engine.subdev, ga100_runl_intr, &runl->inth);
+ if (ret)
+ return ret;
+
+ runl->chan = chaddr;
+ runl->doorbell = dbcfg >> 16;
+ return 0;
+}
+
+static irqreturn_t
+ga100_fifo_nonstall_intr(struct nvkm_inth *inth)
+{
+ struct nvkm_fifo *fifo = container_of(inth, typeof(*fifo), nonstall.intr);
+
+ nvkm_event_ntfy(&fifo->nonstall.event, 0, NVKM_FIFO_NONSTALL_EVENT);
+ return IRQ_HANDLED;
+}
+
+static void
+ga100_fifo_nonstall_block(struct nvkm_event *event, int type, int index)
+{
+ struct nvkm_fifo *fifo = container_of(event, typeof(*fifo), nonstall.event);
+
+ nvkm_inth_block(&fifo->nonstall.intr);
+}
+
+static void
+ga100_fifo_nonstall_allow(struct nvkm_event *event, int type, int index)
+{
+ struct nvkm_fifo *fifo = container_of(event, typeof(*fifo), nonstall.event);
+
+ nvkm_inth_allow(&fifo->nonstall.intr);
+}
+
+const struct nvkm_event_func
+ga100_fifo_nonstall = {
+ .init = ga100_fifo_nonstall_allow,
+ .fini = ga100_fifo_nonstall_block,
+};
+
+int
+ga100_fifo_nonstall_ctor(struct nvkm_fifo *fifo)
+{
+ return nvkm_inth_add(&fifo->engine.subdev.device->vfn->intr, GA100_FIFO_NONSTALL_VECTOR,
+ NVKM_INTR_PRIO_NORMAL, &fifo->engine.subdev, ga100_fifo_nonstall_intr,
+ &fifo->nonstall.intr);
+}
+
+int
+ga100_fifo_runl_ctor(struct nvkm_fifo *fifo)
+{
+ struct nvkm_device *device = fifo->engine.subdev.device;
+ struct nvkm_top_device *tdev;
+ struct nvkm_runl *runl;
+ int id = 0, ret;
+
+ nvkm_list_foreach(tdev, &device->top->device, head, tdev->runlist >= 0) {
+ runl = nvkm_runl_get(fifo, -1, tdev->runlist);
+ if (!runl) {
+ ret = ga100_runl_new(fifo, id++, tdev->runlist, &runl);
+ if (ret)
+ return ret;
+ }
+
+ if (tdev->engine < 0)
+ continue;
+
+ nvkm_runl_add(runl, tdev->engine, (tdev->type == NVKM_ENGINE_CE) ?
+ fifo->func->engn_ce : fifo->func->engn, tdev->type, tdev->inst);
+ }
+
+ return 0;
+}
+
+static const struct nvkm_fifo_func
+ga100_fifo = {
+ .runl_ctor = ga100_fifo_runl_ctor,
+ .mmu_fault = &tu102_fifo_mmu_fault,
+ .nonstall_ctor = ga100_fifo_nonstall_ctor,
+ .nonstall = &ga100_fifo_nonstall,
+ .runl = &ga100_runl,
+ .runq = &ga100_runq,
+ .engn = &ga100_engn,
+ .engn_ce = &ga100_engn_ce,
+ .cgrp = {{ 0, 0, KEPLER_CHANNEL_GROUP_A }, &ga100_cgrp, .force = true },
+ .chan = {{ 0, 0, AMPERE_CHANNEL_GPFIFO_A }, &ga100_chan },
+};
+
+int
+ga100_fifo_new(struct nvkm_device *device, enum nvkm_subdev_type type, int inst,
+ struct nvkm_fifo **pfifo)
+{
+ return nvkm_fifo_new_(&ga100_fifo, device, type, inst, pfifo);
+}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/ga102.c b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/ga102.c
index c630dbd2911a..2cdf5da339b6 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/ga102.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/ga102.c
@@ -19,293 +19,27 @@
* ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
* OTHER DEALINGS IN THE SOFTWARE.
*/
-#define ga102_fifo(p) container_of((p), struct ga102_fifo, base.engine)
-#define ga102_chan(p) container_of((p), struct ga102_chan, object)
-#include <engine/fifo.h>
-#include "user.h"
+#include "priv.h"
-#include <core/memory.h>
-#include <subdev/mmu.h>
-#include <subdev/timer.h>
-#include <subdev/top.h>
-
-#include <nvif/cl0080.h>
-#include <nvif/clc36f.h>
#include <nvif/class.h>
-struct ga102_fifo {
- struct nvkm_fifo base;
-};
-
-struct ga102_chan {
- struct nvkm_object object;
-
- struct {
- u32 runl;
- u32 chan;
- } ctrl;
-
- struct nvkm_memory *mthd;
- struct nvkm_memory *inst;
- struct nvkm_memory *user;
- struct nvkm_memory *runl;
-
- struct nvkm_vmm *vmm;
-};
-
-static int
-ga102_chan_sclass(struct nvkm_object *object, int index, struct nvkm_oclass *oclass)
-{
- if (index == 0) {
- oclass->ctor = nvkm_object_new;
- oclass->base = (struct nvkm_sclass) { -1, -1, AMPERE_DMA_COPY_B };
- return 0;
- }
-
- return -EINVAL;
-}
-
-static int
-ga102_chan_map(struct nvkm_object *object, void *argv, u32 argc,
- enum nvkm_object_map *type, u64 *addr, u64 *size)
-{
- struct ga102_chan *chan = ga102_chan(object);
- struct nvkm_device *device = chan->object.engine->subdev.device;
- u64 bar2 = nvkm_memory_bar2(chan->user);
-
- if (bar2 == ~0ULL)
- return -EFAULT;
-
- *type = NVKM_OBJECT_MAP_IO;
- *addr = device->func->resource_addr(device, 3) + bar2;
- *size = 0x1000;
- return 0;
-}
-
-static int
-ga102_chan_fini(struct nvkm_object *object, bool suspend)
-{
- struct ga102_chan *chan = ga102_chan(object);
- struct nvkm_device *device = chan->object.engine->subdev.device;
-
- nvkm_wr32(device, chan->ctrl.chan, 0x00000003);
-
- nvkm_wr32(device, chan->ctrl.runl + 0x098, 0x01000000);
- nvkm_msec(device, 2000,
- if (!(nvkm_rd32(device, chan->ctrl.runl + 0x098) & 0x00100000))
- break;
- );
-
- nvkm_wr32(device, chan->ctrl.runl + 0x088, 0);
-
- nvkm_wr32(device, chan->ctrl.chan, 0xffffffff);
- return 0;
-}
-
-static int
-ga102_chan_init(struct nvkm_object *object)
-{
- struct ga102_chan *chan = ga102_chan(object);
- struct nvkm_device *device = chan->object.engine->subdev.device;
-
- nvkm_mask(device, chan->ctrl.runl + 0x300, 0x80000000, 0x80000000);
-
- nvkm_wr32(device, chan->ctrl.runl + 0x080, lower_32_bits(nvkm_memory_addr(chan->runl)));
- nvkm_wr32(device, chan->ctrl.runl + 0x084, upper_32_bits(nvkm_memory_addr(chan->runl)));
- nvkm_wr32(device, chan->ctrl.runl + 0x088, 2);
-
- nvkm_wr32(device, chan->ctrl.chan, 0x00000002);
- nvkm_wr32(device, chan->ctrl.runl + 0x0090, 0);
- return 0;
-}
-
-static void *
-ga102_chan_dtor(struct nvkm_object *object)
-{
- struct ga102_chan *chan = ga102_chan(object);
-
- if (chan->vmm) {
- nvkm_vmm_part(chan->vmm, chan->inst);
- nvkm_vmm_unref(&chan->vmm);
- }
-
- nvkm_memory_unref(&chan->runl);
- nvkm_memory_unref(&chan->user);
- nvkm_memory_unref(&chan->inst);
- nvkm_memory_unref(&chan->mthd);
- return chan;
-}
-
-static const struct nvkm_object_func
-ga102_chan = {
- .dtor = ga102_chan_dtor,
- .init = ga102_chan_init,
- .fini = ga102_chan_fini,
- .map = ga102_chan_map,
- .sclass = ga102_chan_sclass,
-};
-
-static int
-ga102_chan_new(struct nvkm_device *device,
- const struct nvkm_oclass *oclass, void *argv, u32 argc, struct nvkm_object **pobject)
-{
- struct volta_channel_gpfifo_a_v0 *args = argv;
- struct nvkm_top_device *tdev;
- struct nvkm_vmm *vmm;
- struct ga102_chan *chan;
- int ret;
-
- if (argc != sizeof(*args))
- return -ENOSYS;
-
- vmm = nvkm_uvmm_search(oclass->client, args->vmm);
- if (IS_ERR(vmm))
- return PTR_ERR(vmm);
-
- if (!(chan = kzalloc(sizeof(*chan), GFP_KERNEL)))
- return -ENOMEM;
-
- nvkm_object_ctor(&ga102_chan, oclass, &chan->object);
- *pobject = &chan->object;
-
- list_for_each_entry(tdev, &device->top->device, head) {
- if (tdev->type == NVKM_ENGINE_CE) {
- chan->ctrl.runl = tdev->runlist;
- break;
- }
- }
-
- if (!chan->ctrl.runl)
- return -ENODEV;
-
- chan->ctrl.chan = nvkm_rd32(device, chan->ctrl.runl + 0x004) & 0xfffffff0;
-
- args->chid = 0;
- args->inst = 0;
- args->token = nvkm_rd32(device, chan->ctrl.runl + 0x008) & 0xffff0000;
-
- ret = nvkm_memory_new(device, NVKM_MEM_TARGET_INST, 0x1000, 0x1000, true, &chan->mthd);
- if (ret)
- return ret;
-
- ret = nvkm_memory_new(device, NVKM_MEM_TARGET_INST, 0x1000, 0x1000, true, &chan->inst);
- if (ret)
- return ret;
-
- nvkm_kmap(chan->inst);
- nvkm_wo32(chan->inst, 0x010, 0x0000face);
- nvkm_wo32(chan->inst, 0x030, 0x7ffff902);
- nvkm_wo32(chan->inst, 0x048, lower_32_bits(args->ioffset));
- nvkm_wo32(chan->inst, 0x04c, upper_32_bits(args->ioffset) |
- (order_base_2(args->ilength / 8) << 16));
- nvkm_wo32(chan->inst, 0x084, 0x20400000);
- nvkm_wo32(chan->inst, 0x094, 0x30000001);
- nvkm_wo32(chan->inst, 0x0ac, 0x00020000);
- nvkm_wo32(chan->inst, 0x0e4, 0x00000000);
- nvkm_wo32(chan->inst, 0x0e8, 0);
- nvkm_wo32(chan->inst, 0x0f4, 0x00001000);
- nvkm_wo32(chan->inst, 0x0f8, 0x10003080);
- nvkm_mo32(chan->inst, 0x218, 0x00000000, 0x00000000);
- nvkm_wo32(chan->inst, 0x220, lower_32_bits(nvkm_memory_bar2(chan->mthd)));
- nvkm_wo32(chan->inst, 0x224, upper_32_bits(nvkm_memory_bar2(chan->mthd)));
- nvkm_done(chan->inst);
-
- ret = nvkm_memory_new(device, NVKM_MEM_TARGET_INST, 0x1000, 0x1000, true, &chan->user);
- if (ret)
- return ret;
-
- ret = nvkm_memory_new(device, NVKM_MEM_TARGET_INST, 0x1000, 0x1000, true, &chan->runl);
- if (ret)
- return ret;
-
- nvkm_kmap(chan->runl);
- nvkm_wo32(chan->runl, 0x00, 0x80030001);
- nvkm_wo32(chan->runl, 0x04, 1);
- nvkm_wo32(chan->runl, 0x08, 0);
- nvkm_wo32(chan->runl, 0x0c, 0x00000000);
- nvkm_wo32(chan->runl, 0x10, lower_32_bits(nvkm_memory_addr(chan->user)));
- nvkm_wo32(chan->runl, 0x14, upper_32_bits(nvkm_memory_addr(chan->user)));
- nvkm_wo32(chan->runl, 0x18, lower_32_bits(nvkm_memory_addr(chan->inst)));
- nvkm_wo32(chan->runl, 0x1c, upper_32_bits(nvkm_memory_addr(chan->inst)));
- nvkm_done(chan->runl);
-
- ret = nvkm_vmm_join(vmm, chan->inst);
- if (ret)
- return ret;
-
- chan->vmm = nvkm_vmm_ref(vmm);
- return 0;
-}
-
-static const struct nvkm_device_oclass
-ga102_chan_oclass = {
- .ctor = ga102_chan_new,
-};
-
-static int
-ga102_user_new(struct nvkm_device *device,
- const struct nvkm_oclass *oclass, void *argv, u32 argc, struct nvkm_object **pobject)
-{
- return tu102_fifo_user_new(oclass, argv, argc, pobject);
-}
-
-static const struct nvkm_device_oclass
-ga102_user_oclass = {
- .ctor = ga102_user_new,
-};
-
-static int
-ga102_fifo_sclass(struct nvkm_oclass *oclass, int index, const struct nvkm_device_oclass **class)
-{
- if (index == 0) {
- oclass->base = (struct nvkm_sclass) { -1, -1, VOLTA_USERMODE_A };
- *class = &ga102_user_oclass;
- return 0;
- } else
- if (index == 1) {
- oclass->base = (struct nvkm_sclass) { 0, 0, AMPERE_CHANNEL_GPFIFO_B };
- *class = &ga102_chan_oclass;
- return 0;
- }
-
- return 2;
-}
-
-static int
-ga102_fifo_info(struct nvkm_engine *engine, u64 mthd, u64 *data)
-{
- switch (mthd) {
- case NV_DEVICE_HOST_CHANNELS: *data = 1; return 0;
- default:
- break;
- }
-
- return -ENOSYS;
-}
-
-static void *
-ga102_fifo_dtor(struct nvkm_engine *engine)
-{
- return ga102_fifo(engine);
-}
-
-static const struct nvkm_engine_func
+static const struct nvkm_fifo_func
ga102_fifo = {
- .dtor = ga102_fifo_dtor,
- .info = ga102_fifo_info,
- .base.sclass = ga102_fifo_sclass,
+ .runl_ctor = ga100_fifo_runl_ctor,
+ .mmu_fault = &tu102_fifo_mmu_fault,
+ .nonstall_ctor = ga100_fifo_nonstall_ctor,
+ .nonstall = &ga100_fifo_nonstall,
+ .runl = &ga100_runl,
+ .runq = &ga100_runq,
+ .engn = &ga100_engn,
+ .engn_ce = &ga100_engn_ce,
+ .cgrp = {{ 0, 0, KEPLER_CHANNEL_GROUP_A }, &ga100_cgrp, .force = true },
+ .chan = {{ 0, 0, AMPERE_CHANNEL_GPFIFO_B }, &ga100_chan },
};
int
ga102_fifo_new(struct nvkm_device *device, enum nvkm_subdev_type type, int inst,
struct nvkm_fifo **pfifo)
{
- struct ga102_fifo *fifo;
-
- if (!(fifo = kzalloc(sizeof(*fifo), GFP_KERNEL)))
- return -ENOMEM;
-
- nvkm_engine_ctor(&ga102_fifo, device, type, inst, true, &fifo->base.engine);
- *pfifo = &fifo->base;
- return 0;
+ return nvkm_fifo_new_(&ga102_fifo, device, type, inst, pfifo);
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gf100.c b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gf100.c
index 8b4f36b3e34b..6c94451d0faa 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gf100.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gf100.c
@@ -21,186 +21,456 @@
*
* Authors: Ben Skeggs
*/
-#include "gf100.h"
-#include "changf100.h"
+#include "priv.h"
+#include "cgrp.h"
+#include "chan.h"
+#include "chid.h"
+#include "runl.h"
+#include "runq.h"
-#include <core/client.h>
-#include <core/enum.h>
#include <core/gpuobj.h>
#include <subdev/bar.h>
#include <subdev/fault.h>
+#include <subdev/mc.h>
+#include <subdev/mmu.h>
#include <engine/sw.h>
#include <nvif/class.h>
+void
+gf100_chan_preempt(struct nvkm_chan *chan)
+{
+ nvkm_wr32(chan->cgrp->runl->fifo->engine.subdev.device, 0x002634, chan->id);
+}
+
static void
-gf100_fifo_uevent_init(struct nvkm_fifo *fifo)
+gf100_chan_stop(struct nvkm_chan *chan)
{
- struct nvkm_device *device = fifo->engine.subdev.device;
- nvkm_mask(device, 0x002140, 0x80000000, 0x80000000);
+ struct nvkm_device *device = chan->cgrp->runl->fifo->engine.subdev.device;
+
+ nvkm_mask(device, 0x003004 + (chan->id * 8), 0x00000001, 0x00000000);
}
static void
-gf100_fifo_uevent_fini(struct nvkm_fifo *fifo)
+gf100_chan_start(struct nvkm_chan *chan)
{
+ struct nvkm_device *device = chan->cgrp->runl->fifo->engine.subdev.device;
+
+ nvkm_wr32(device, 0x003004 + (chan->id * 8), 0x001f0001);
+}
+
+static void gf100_fifo_intr_engine(struct nvkm_fifo *);
+
+static void
+gf100_chan_unbind(struct nvkm_chan *chan)
+{
+ struct nvkm_fifo *fifo = chan->cgrp->runl->fifo;
struct nvkm_device *device = fifo->engine.subdev.device;
- nvkm_mask(device, 0x002140, 0x80000000, 0x00000000);
+
+ /*TODO: Is this cargo-culted, or necessary? RM does *something* here... Why? */
+ gf100_fifo_intr_engine(fifo);
+
+ nvkm_wr32(device, 0x003000 + (chan->id * 8), 0x00000000);
}
+static void
+gf100_chan_bind(struct nvkm_chan *chan)
+{
+ struct nvkm_device *device = chan->cgrp->runl->fifo->engine.subdev.device;
+
+ nvkm_wr32(device, 0x003000 + (chan->id * 8), 0xc0000000 | chan->inst->addr >> 12);
+}
+
+static int
+gf100_chan_ramfc_write(struct nvkm_chan *chan, u64 offset, u64 length, u32 devm, bool priv)
+{
+ const u64 userd = nvkm_memory_addr(chan->userd.mem) + chan->userd.base;
+ const u32 limit2 = ilog2(length / 8);
+
+ nvkm_kmap(chan->inst);
+ nvkm_wo32(chan->inst, 0x08, lower_32_bits(userd));
+ nvkm_wo32(chan->inst, 0x0c, upper_32_bits(userd));
+ nvkm_wo32(chan->inst, 0x10, 0x0000face);
+ nvkm_wo32(chan->inst, 0x30, 0xfffff902);
+ nvkm_wo32(chan->inst, 0x48, lower_32_bits(offset));
+ nvkm_wo32(chan->inst, 0x4c, upper_32_bits(offset) | (limit2 << 16));
+ nvkm_wo32(chan->inst, 0x54, 0x00000002);
+ nvkm_wo32(chan->inst, 0x84, 0x20400000);
+ nvkm_wo32(chan->inst, 0x94, 0x30000000 | devm);
+ nvkm_wo32(chan->inst, 0x9c, 0x00000100);
+ nvkm_wo32(chan->inst, 0xa4, 0x1f1f1f1f);
+ nvkm_wo32(chan->inst, 0xa8, 0x1f1f1f1f);
+ nvkm_wo32(chan->inst, 0xac, 0x0000001f);
+ nvkm_wo32(chan->inst, 0xb8, 0xf8000000);
+ nvkm_wo32(chan->inst, 0xf8, 0x10003080); /* 0x002310 */
+ nvkm_wo32(chan->inst, 0xfc, 0x10000010); /* 0x002350 */
+ nvkm_done(chan->inst);
+ return 0;
+}
+
+static const struct nvkm_chan_func_ramfc
+gf100_chan_ramfc = {
+ .write = gf100_chan_ramfc_write,
+ .devm = 0xfff,
+};
+
void
-gf100_fifo_runlist_commit(struct gf100_fifo *fifo)
+gf100_chan_userd_clear(struct nvkm_chan *chan)
{
- struct gf100_fifo_chan *chan;
- struct nvkm_subdev *subdev = &fifo->base.engine.subdev;
- struct nvkm_device *device = subdev->device;
- struct nvkm_memory *cur;
- int nr = 0;
- int target;
+ nvkm_kmap(chan->userd.mem);
+ nvkm_wo32(chan->userd.mem, chan->userd.base + 0x040, 0x00000000);
+ nvkm_wo32(chan->userd.mem, chan->userd.base + 0x044, 0x00000000);
+ nvkm_wo32(chan->userd.mem, chan->userd.base + 0x048, 0x00000000);
+ nvkm_wo32(chan->userd.mem, chan->userd.base + 0x04c, 0x00000000);
+ nvkm_wo32(chan->userd.mem, chan->userd.base + 0x050, 0x00000000);
+ nvkm_wo32(chan->userd.mem, chan->userd.base + 0x058, 0x00000000);
+ nvkm_wo32(chan->userd.mem, chan->userd.base + 0x05c, 0x00000000);
+ nvkm_wo32(chan->userd.mem, chan->userd.base + 0x060, 0x00000000);
+ nvkm_wo32(chan->userd.mem, chan->userd.base + 0x088, 0x00000000);
+ nvkm_wo32(chan->userd.mem, chan->userd.base + 0x08c, 0x00000000);
+ nvkm_done(chan->userd.mem);
+}
- mutex_lock(&fifo->base.mutex);
- cur = fifo->runlist.mem[fifo->runlist.active];
- fifo->runlist.active = !fifo->runlist.active;
+static const struct nvkm_chan_func_userd
+gf100_chan_userd = {
+ .bar = 1,
+ .size = 0x1000,
+ .clear = gf100_chan_userd_clear,
+};
- nvkm_kmap(cur);
- list_for_each_entry(chan, &fifo->chan, head) {
- nvkm_wo32(cur, (nr * 8) + 0, chan->base.chid);
- nvkm_wo32(cur, (nr * 8) + 4, 0x00000004);
- nr++;
- }
- nvkm_done(cur);
+const struct nvkm_chan_func_inst
+gf100_chan_inst = {
+ .size = 0x1000,
+ .zero = true,
+ .vmm = true,
+};
- switch (nvkm_memory_target(cur)) {
- case NVKM_MEM_TARGET_VRAM: target = 0; break;
- case NVKM_MEM_TARGET_NCOH: target = 3; break;
+static const struct nvkm_chan_func
+gf100_chan = {
+ .inst = &gf100_chan_inst,
+ .userd = &gf100_chan_userd,
+ .ramfc = &gf100_chan_ramfc,
+ .bind = gf100_chan_bind,
+ .unbind = gf100_chan_unbind,
+ .start = gf100_chan_start,
+ .stop = gf100_chan_stop,
+ .preempt = gf100_chan_preempt,
+};
+
+static void
+gf100_ectx_bind(struct nvkm_engn *engn, struct nvkm_cctx *cctx, struct nvkm_chan *chan)
+{
+ u64 addr = 0ULL;
+ u32 ptr0;
+
+ switch (engn->engine->subdev.type) {
+ case NVKM_ENGINE_SW : return;
+ case NVKM_ENGINE_GR : ptr0 = 0x0210; break;
+ case NVKM_ENGINE_CE : ptr0 = 0x0230 + (engn->engine->subdev.inst * 0x10); break;
+ case NVKM_ENGINE_MSPDEC: ptr0 = 0x0250; break;
+ case NVKM_ENGINE_MSPPP : ptr0 = 0x0260; break;
+ case NVKM_ENGINE_MSVLD : ptr0 = 0x0270; break;
default:
- mutex_unlock(&fifo->base.mutex);
WARN_ON(1);
return;
}
- nvkm_wr32(device, 0x002270, (nvkm_memory_addr(cur) >> 12) |
- (target << 28));
- nvkm_wr32(device, 0x002274, 0x01f00000 | nr);
+ if (cctx) {
+ addr = cctx->vctx->vma->addr;
+ addr |= 4ULL;
+ }
- if (wait_event_timeout(fifo->runlist.wait,
- !(nvkm_rd32(device, 0x00227c) & 0x00100000),
- msecs_to_jiffies(2000)) == 0)
- nvkm_error(subdev, "runlist update timeout\n");
- mutex_unlock(&fifo->base.mutex);
+ nvkm_kmap(chan->inst);
+ nvkm_wo32(chan->inst, ptr0 + 0, lower_32_bits(addr));
+ nvkm_wo32(chan->inst, ptr0 + 4, upper_32_bits(addr));
+ nvkm_done(chan->inst);
}
-void
-gf100_fifo_runlist_remove(struct gf100_fifo *fifo, struct gf100_fifo_chan *chan)
+static int
+gf100_ectx_ctor(struct nvkm_engn *engn, struct nvkm_vctx *vctx)
+{
+ int ret;
+
+ ret = nvkm_vmm_get(vctx->vmm, 12, vctx->inst->size, &vctx->vma);
+ if (ret)
+ return ret;
+
+ return nvkm_memory_map(vctx->inst, 0, vctx->vmm, vctx->vma, NULL, 0);
+}
+
+bool
+gf100_engn_mmu_fault_triggered(struct nvkm_engn *engn)
{
- mutex_lock(&fifo->base.mutex);
- list_del_init(&chan->head);
- mutex_unlock(&fifo->base.mutex);
+ struct nvkm_runl *runl = engn->runl;
+ struct nvkm_fifo *fifo = runl->fifo;
+ struct nvkm_device *device = fifo->engine.subdev.device;
+ u32 data = nvkm_rd32(device, 0x002a30 + (engn->id * 4));
+
+ ENGN_DEBUG(engn, "%08x: mmu fault triggered", data);
+ if (!(data & 0x00000100))
+ return false;
+
+ spin_lock(&fifo->lock);
+ nvkm_mask(device, 0x002a30 + (engn->id * 4), 0x00000100, 0x00000000);
+ if (atomic_dec_and_test(&runl->rc_triggered))
+ nvkm_mask(device, 0x002140, 0x00000100, 0x00000100);
+ spin_unlock(&fifo->lock);
+ return true;
}
void
-gf100_fifo_runlist_insert(struct gf100_fifo *fifo, struct gf100_fifo_chan *chan)
+gf100_engn_mmu_fault_trigger(struct nvkm_engn *engn)
{
- mutex_lock(&fifo->base.mutex);
- list_add_tail(&chan->head, &fifo->chan);
- mutex_unlock(&fifo->base.mutex);
+ struct nvkm_runl *runl = engn->runl;
+ struct nvkm_fifo *fifo = runl->fifo;
+ struct nvkm_device *device = fifo->engine.subdev.device;
+
+ ENGN_DEBUG(engn, "triggering mmu fault on 0x%02x", engn->fault);
+ spin_lock(&fifo->lock);
+ if (atomic_inc_return(&runl->rc_triggered) == 1)
+ nvkm_mask(device, 0x002140, 0x00000100, 0x00000000);
+ nvkm_wr32(device, 0x002100, 0x00000100);
+ nvkm_wr32(device, 0x002a30 + (engn->id * 4), 0x00000100 | engn->fault);
+ spin_unlock(&fifo->lock);
}
-static struct nvkm_engine *
-gf100_fifo_id_engine(struct nvkm_fifo *fifo, int engi)
+/*TODO: clean all this up. */
+struct gf100_engn_status {
+ bool busy;
+ bool save;
+ bool unk0;
+ bool unk1;
+ u8 chid;
+};
+
+static void
+gf100_engn_status(struct nvkm_engn *engn, struct gf100_engn_status *status)
{
- enum nvkm_subdev_type type;
- int inst;
+ u32 stat = nvkm_rd32(engn->engine->subdev.device, 0x002640 + (engn->id * 4));
- switch (engi) {
- case GF100_FIFO_ENGN_GR : type = NVKM_ENGINE_GR ; inst = 0; break;
- case GF100_FIFO_ENGN_MSPDEC: type = NVKM_ENGINE_MSPDEC; inst = 0; break;
- case GF100_FIFO_ENGN_MSPPP : type = NVKM_ENGINE_MSPPP ; inst = 0; break;
- case GF100_FIFO_ENGN_MSVLD : type = NVKM_ENGINE_MSVLD ; inst = 0; break;
- case GF100_FIFO_ENGN_CE0 : type = NVKM_ENGINE_CE ; inst = 0; break;
- case GF100_FIFO_ENGN_CE1 : type = NVKM_ENGINE_CE ; inst = 1; break;
- case GF100_FIFO_ENGN_SW : type = NVKM_ENGINE_SW ; inst = 0; break;
- default:
- WARN_ON(1);
- return NULL;
- }
+ status->busy = (stat & 0x10000000);
+ status->save = (stat & 0x00100000);
+ status->unk0 = (stat & 0x00004000);
+ status->unk1 = (stat & 0x00001000);
+ status->chid = (stat & 0x0000007f);
- return nvkm_device_engine(fifo->engine.subdev.device, type, inst);
+ ENGN_DEBUG(engn, "%08x: busy %d save %d unk0 %d unk1 %d chid %d",
+ stat, status->busy, status->save, status->unk0, status->unk1, status->chid);
}
static int
-gf100_fifo_engine_id(struct nvkm_fifo *base, struct nvkm_engine *engine)
-{
- switch (engine->subdev.type) {
- case NVKM_ENGINE_GR : return GF100_FIFO_ENGN_GR;
- case NVKM_ENGINE_MSPDEC: return GF100_FIFO_ENGN_MSPDEC;
- case NVKM_ENGINE_MSPPP : return GF100_FIFO_ENGN_MSPPP;
- case NVKM_ENGINE_MSVLD : return GF100_FIFO_ENGN_MSVLD;
- case NVKM_ENGINE_CE : return GF100_FIFO_ENGN_CE0 + engine->subdev.inst;
- case NVKM_ENGINE_SW : return GF100_FIFO_ENGN_SW;
- default:
- WARN_ON(1);
- return -1;
+gf100_engn_cxid(struct nvkm_engn *engn, bool *cgid)
+{
+ struct gf100_engn_status status;
+
+ gf100_engn_status(engn, &status);
+ if (status.busy) {
+ *cgid = false;
+ return status.chid;
}
+
+ return -ENODEV;
}
-static void
-gf100_fifo_recover_work(struct work_struct *w)
+static bool
+gf100_engn_chsw(struct nvkm_engn *engn)
{
- struct gf100_fifo *fifo = container_of(w, typeof(*fifo), recover.work);
- struct nvkm_device *device = fifo->base.engine.subdev.device;
- struct nvkm_engine *engine;
- unsigned long flags;
- u32 engm, engn, todo;
+ struct gf100_engn_status status;
+
+ gf100_engn_status(engn, &status);
+ if (status.busy && (status.unk0 || status.unk1))
+ return true;
- spin_lock_irqsave(&fifo->base.lock, flags);
- engm = fifo->recover.mask;
- fifo->recover.mask = 0ULL;
- spin_unlock_irqrestore(&fifo->base.lock, flags);
+ return false;
+}
- nvkm_mask(device, 0x002630, engm, engm);
+static const struct nvkm_engn_func
+gf100_engn = {
+ .chsw = gf100_engn_chsw,
+ .cxid = gf100_engn_cxid,
+ .mmu_fault_trigger = gf100_engn_mmu_fault_trigger,
+ .mmu_fault_triggered = gf100_engn_mmu_fault_triggered,
+ .ctor = gf100_ectx_ctor,
+ .bind = gf100_ectx_bind,
+};
- for (todo = engm; engn = __ffs(todo), todo; todo &= ~BIT_ULL(engn)) {
- if ((engine = gf100_fifo_id_engine(&fifo->base, engn))) {
- nvkm_subdev_fini(&engine->subdev, false);
- WARN_ON(nvkm_subdev_init(&engine->subdev));
+const struct nvkm_engn_func
+gf100_engn_sw = {
+};
+
+static const struct nvkm_bitfield
+gf100_runq_intr_0_names[] = {
+/* { 0x00008000, "" } seen with null ib push */
+ { 0x00200000, "ILLEGAL_MTHD" },
+ { 0x00800000, "EMPTY_SUBC" },
+ {}
+};
+
+bool
+gf100_runq_intr(struct nvkm_runq *runq, struct nvkm_runl *null)
+{
+ struct nvkm_subdev *subdev = &runq->fifo->engine.subdev;
+ struct nvkm_device *device = subdev->device;
+ u32 mask = nvkm_rd32(device, 0x04010c + (runq->id * 0x2000));
+ u32 stat = nvkm_rd32(device, 0x040108 + (runq->id * 0x2000)) & mask;
+ u32 addr = nvkm_rd32(device, 0x0400c0 + (runq->id * 0x2000));
+ u32 data = nvkm_rd32(device, 0x0400c4 + (runq->id * 0x2000));
+ u32 chid = nvkm_rd32(device, 0x040120 + (runq->id * 0x2000)) & runq->fifo->chid->mask;
+ u32 subc = (addr & 0x00070000) >> 16;
+ u32 mthd = (addr & 0x00003ffc);
+ u32 show = stat;
+ struct nvkm_chan *chan;
+ unsigned long flags;
+ char msg[128];
+
+ if (stat & 0x00800000) {
+ if (device->sw) {
+ if (nvkm_sw_mthd(device->sw, chid, subc, mthd, data))
+ show &= ~0x00800000;
}
}
- gf100_fifo_runlist_commit(fifo);
- nvkm_wr32(device, 0x00262c, engm);
- nvkm_mask(device, 0x002630, engm, 0x00000000);
+ if (show) {
+ nvkm_snprintbf(msg, sizeof(msg), runq->func->intr_0_names, show);
+ chan = nvkm_chan_get_chid(&runq->fifo->engine, chid, &flags);
+ nvkm_error(subdev, "PBDMA%d: %08x [%s] ch %d [%010llx %s] "
+ "subc %d mthd %04x data %08x\n",
+ runq->id, show, msg, chid, chan ? chan->inst->addr : 0,
+ chan ? chan->name : "unknown", subc, mthd, data);
+
+ /*TODO: use proper procedure for clearing each exception / debug output */
+ if ((stat & 0xc67fe000) && chan)
+ nvkm_chan_error(chan, true);
+ nvkm_chan_put(&chan, flags);
+ }
+
+ nvkm_wr32(device, 0x0400c0 + (runq->id * 0x2000), 0x80600008);
+ nvkm_wr32(device, 0x040108 + (runq->id * 0x2000), stat);
+ return true;
+}
+
+void
+gf100_runq_init(struct nvkm_runq *runq)
+{
+ struct nvkm_device *device = runq->fifo->engine.subdev.device;
+
+ nvkm_mask(device, 0x04013c + (runq->id * 0x2000), 0x10000100, 0x00000000);
+ nvkm_wr32(device, 0x040108 + (runq->id * 0x2000), 0xffffffff); /* INTR */
+ nvkm_wr32(device, 0x04010c + (runq->id * 0x2000), 0xfffffeff); /* INTREN */
+}
+
+static const struct nvkm_runq_func
+gf100_runq = {
+ .init = gf100_runq_init,
+ .intr = gf100_runq_intr,
+ .intr_0_names = gf100_runq_intr_0_names,
+};
+
+bool
+gf100_runl_preempt_pending(struct nvkm_runl *runl)
+{
+ return nvkm_rd32(runl->fifo->engine.subdev.device, 0x002634) & 0x00100000;
}
static void
-gf100_fifo_recover(struct gf100_fifo *fifo, struct nvkm_engine *engine,
- struct gf100_fifo_chan *chan)
+gf100_runl_fault_clear(struct nvkm_runl *runl)
{
- struct nvkm_subdev *subdev = &fifo->base.engine.subdev;
- struct nvkm_device *device = subdev->device;
- u32 chid = chan->base.chid;
- int engi = gf100_fifo_engine_id(&fifo->base, engine);
+ nvkm_mask(runl->fifo->engine.subdev.device, 0x00262c, 0x00000000, 0x00000000);
+}
+
+static void
+gf100_runl_allow(struct nvkm_runl *runl, u32 engm)
+{
+ nvkm_mask(runl->fifo->engine.subdev.device, 0x002630, engm, 0x00000000);
+}
+
+static void
+gf100_runl_block(struct nvkm_runl *runl, u32 engm)
+{
+ nvkm_mask(runl->fifo->engine.subdev.device, 0x002630, engm, engm);
+}
+
+static bool
+gf100_runl_pending(struct nvkm_runl *runl)
+{
+ return nvkm_rd32(runl->fifo->engine.subdev.device, 0x00227c) & 0x00100000;
+}
+
+static void
+gf100_runl_commit(struct nvkm_runl *runl, struct nvkm_memory *memory, u32 start, int count)
+{
+ struct nvkm_device *device = runl->fifo->engine.subdev.device;
+ u64 addr = nvkm_memory_addr(memory) + start;
+ int target;
+
+ switch (nvkm_memory_target(memory)) {
+ case NVKM_MEM_TARGET_VRAM: target = 0; break;
+ case NVKM_MEM_TARGET_NCOH: target = 3; break;
+ default:
+ WARN_ON(1);
+ return;
+ }
+
+ nvkm_wr32(device, 0x002270, (target << 28) | (addr >> 12));
+ nvkm_wr32(device, 0x002274, 0x01f00000 | count);
+}
+
+static void
+gf100_runl_insert_chan(struct nvkm_chan *chan, struct nvkm_memory *memory, u64 offset)
+{
+ nvkm_wo32(memory, offset + 0, chan->id);
+ nvkm_wo32(memory, offset + 4, 0x00000004);
+}
- nvkm_error(subdev, "%s engine fault on channel %d, recovering...\n",
- engine->subdev.name, chid);
- assert_spin_locked(&fifo->base.lock);
+static const struct nvkm_runl_func
+gf100_runl = {
+ .size = 8,
+ .update = nv50_runl_update,
+ .insert_chan = gf100_runl_insert_chan,
+ .commit = gf100_runl_commit,
+ .wait = nv50_runl_wait,
+ .pending = gf100_runl_pending,
+ .block = gf100_runl_block,
+ .allow = gf100_runl_allow,
+ .fault_clear = gf100_runl_fault_clear,
+ .preempt_pending = gf100_runl_preempt_pending,
+};
- nvkm_mask(device, 0x003004 + (chid * 0x08), 0x00000001, 0x00000000);
- list_del_init(&chan->head);
- chan->killed = true;
+static void
+gf100_fifo_nonstall_allow(struct nvkm_event *event, int type, int index)
+{
+ struct nvkm_fifo *fifo = container_of(event, typeof(*fifo), nonstall.event);
+ unsigned long flags;
- if (engi >= 0 && engi != GF100_FIFO_ENGN_SW)
- fifo->recover.mask |= BIT(engi);
- schedule_work(&fifo->recover.work);
- nvkm_fifo_kevent(&fifo->base, chid);
+ spin_lock_irqsave(&fifo->lock, flags);
+ nvkm_mask(fifo->engine.subdev.device, 0x002140, 0x80000000, 0x80000000);
+ spin_unlock_irqrestore(&fifo->lock, flags);
}
+static void
+gf100_fifo_nonstall_block(struct nvkm_event *event, int type, int index)
+{
+ struct nvkm_fifo *fifo = container_of(event, typeof(*fifo), nonstall.event);
+ unsigned long flags;
+
+ spin_lock_irqsave(&fifo->lock, flags);
+ nvkm_mask(fifo->engine.subdev.device, 0x002140, 0x80000000, 0x00000000);
+ spin_unlock_irqrestore(&fifo->lock, flags);
+}
+
+const struct nvkm_event_func
+gf100_fifo_nonstall = {
+ .init = gf100_fifo_nonstall_allow,
+ .fini = gf100_fifo_nonstall_block,
+};
+
static const struct nvkm_enum
-gf100_fifo_fault_engine[] = {
+gf100_fifo_mmu_fault_engine[] = {
{ 0x00, "PGRAPH", NULL, NVKM_ENGINE_GR },
{ 0x03, "PEEPHOLE", NULL, NVKM_ENGINE_IFB },
{ 0x04, "BAR1", NULL, NVKM_SUBDEV_BAR },
{ 0x05, "BAR3", NULL, NVKM_SUBDEV_INSTMEM },
- { 0x07, "PFIFO", NULL, NVKM_ENGINE_FIFO },
+ { 0x07, "PFIFO" },
{ 0x10, "PMSVLD", NULL, NVKM_ENGINE_MSVLD },
{ 0x11, "PMSPPP", NULL, NVKM_ENGINE_MSPPP },
{ 0x13, "PCOUNTER" },
@@ -212,7 +482,7 @@ gf100_fifo_fault_engine[] = {
};
static const struct nvkm_enum
-gf100_fifo_fault_reason[] = {
+gf100_fifo_mmu_fault_reason[] = {
{ 0x00, "PT_NOT_PRESENT" },
{ 0x01, "PT_TOO_SHORT" },
{ 0x02, "PAGE_NOT_PRESENT" },
@@ -226,7 +496,7 @@ gf100_fifo_fault_reason[] = {
};
static const struct nvkm_enum
-gf100_fifo_fault_hubclient[] = {
+gf100_fifo_mmu_fault_hubclient[] = {
{ 0x01, "PCOPY0" },
{ 0x02, "PCOPY1" },
{ 0x04, "DISPATCH" },
@@ -245,7 +515,7 @@ gf100_fifo_fault_hubclient[] = {
};
static const struct nvkm_enum
-gf100_fifo_fault_gpcclient[] = {
+gf100_fifo_mmu_fault_gpcclient[] = {
{ 0x01, "TEX" },
{ 0x0c, "ESETUP" },
{ 0x0e, "CTXCTL" },
@@ -253,29 +523,55 @@ gf100_fifo_fault_gpcclient[] = {
{}
};
-static void
-gf100_fifo_fault(struct nvkm_fifo *base, struct nvkm_fault_data *info)
+const struct nvkm_enum
+gf100_fifo_mmu_fault_access[] = {
+ { 0x00, "READ" },
+ { 0x01, "WRITE" },
+ {}
+};
+
+void
+gf100_fifo_mmu_fault_recover(struct nvkm_fifo *fifo, struct nvkm_fault_data *info)
{
- struct gf100_fifo *fifo = gf100_fifo(base);
- struct nvkm_subdev *subdev = &fifo->base.engine.subdev;
+ struct nvkm_subdev *subdev = &fifo->engine.subdev;
struct nvkm_device *device = subdev->device;
- const struct nvkm_enum *er, *eu, *ec;
+ const struct nvkm_enum *er, *ee, *ec, *ea;
struct nvkm_engine *engine = NULL;
- struct nvkm_fifo_chan *chan;
+ struct nvkm_runl *runl;
+ struct nvkm_engn *engn;
+ struct nvkm_chan *chan;
unsigned long flags;
- char gpcid[8] = "";
+ char ct[8] = "HUB/";
+
+ /* Lookup engine by MMU fault ID. */
+ nvkm_runl_foreach(runl, fifo) {
+ engn = nvkm_runl_find_engn(engn, runl, engn->fault == info->engine);
+ if (engn) {
+ /* Fault triggered by CTXSW_TIMEOUT recovery procedure. */
+ if (engn->func->mmu_fault_triggered &&
+ engn->func->mmu_fault_triggered(engn)) {
+ nvkm_runl_rc_engn(runl, engn);
+ return;
+ }
+
+ engine = engn->engine;
+ break;
+ }
+ }
- er = nvkm_enum_find(gf100_fifo_fault_reason, info->reason);
- eu = nvkm_enum_find(gf100_fifo_fault_engine, info->engine);
+ er = nvkm_enum_find(fifo->func->mmu_fault->reason, info->reason);
+ ee = nvkm_enum_find(fifo->func->mmu_fault->engine, info->engine);
if (info->hub) {
- ec = nvkm_enum_find(gf100_fifo_fault_hubclient, info->client);
+ ec = nvkm_enum_find(fifo->func->mmu_fault->hubclient, info->client);
} else {
- ec = nvkm_enum_find(gf100_fifo_fault_gpcclient, info->client);
- snprintf(gpcid, sizeof(gpcid), "GPC%d/", info->gpc);
+ ec = nvkm_enum_find(fifo->func->mmu_fault->gpcclient, info->client);
+ snprintf(ct, sizeof(ct), "GPC%d/", info->gpc);
}
+ ea = nvkm_enum_find(fifo->func->mmu_fault->access, info->access);
- if (eu && eu->data2) {
- switch (eu->data2) {
+ /* Handle BAR faults. */
+ if (ee && ee->data2) {
+ switch (ee->data2) {
case NVKM_SUBDEV_BAR:
nvkm_bar_bar1_reset(device);
break;
@@ -286,77 +582,104 @@ gf100_fifo_fault(struct nvkm_fifo *base, struct nvkm_fault_data *info)
nvkm_mask(device, 0x001718, 0x00000000, 0x00000000);
break;
default:
- engine = nvkm_device_engine(device, eu->data2, eu->inst);
break;
}
}
- chan = nvkm_fifo_chan_inst(&fifo->base, info->inst, &flags);
+ chan = nvkm_chan_get_inst(&fifo->engine, info->inst, &flags);
nvkm_error(subdev,
- "%s fault at %010llx engine %02x [%s] client %02x [%s%s] "
- "reason %02x [%s] on channel %d [%010llx %s]\n",
- info->access ? "write" : "read", info->addr,
- info->engine, eu ? eu->name : "",
- info->client, gpcid, ec ? ec->name : "",
- info->reason, er ? er->name : "", chan ? chan->chid : -1,
- info->inst, chan ? chan->object.client->name : "unknown");
-
- if (engine && chan)
- gf100_fifo_recover(fifo, engine, (void *)chan);
- nvkm_fifo_chan_put(&fifo->base, flags, &chan);
+ "fault %02x [%s] at %016llx engine %02x [%s] client %02x "
+ "[%s%s] reason %02x [%s] on channel %d [%010llx %s]\n",
+ info->access, ea ? ea->name : "", info->addr,
+ info->engine, ee ? ee->name : engine ? engine->subdev.name : "",
+ info->client, ct, ec ? ec->name : "",
+ info->reason, er ? er->name : "",
+ chan ? chan->id : -1, info->inst, chan ? chan->name : "unknown");
+
+ /* Handle host/engine faults. */
+ if (chan)
+ nvkm_runl_rc_cgrp(chan->cgrp);
+
+ nvkm_chan_put(&chan, flags);
}
-static const struct nvkm_enum
-gf100_fifo_sched_reason[] = {
- { 0x0a, "CTXSW_TIMEOUT" },
- {}
+static const struct nvkm_fifo_func_mmu_fault
+gf100_fifo_mmu_fault = {
+ .recover = gf100_fifo_mmu_fault_recover,
+ .access = gf100_fifo_mmu_fault_access,
+ .engine = gf100_fifo_mmu_fault_engine,
+ .reason = gf100_fifo_mmu_fault_reason,
+ .hubclient = gf100_fifo_mmu_fault_hubclient,
+ .gpcclient = gf100_fifo_mmu_fault_gpcclient,
};
-static void
-gf100_fifo_intr_sched_ctxsw(struct gf100_fifo *fifo)
+void
+gf100_fifo_intr_ctxsw_timeout(struct nvkm_fifo *fifo, u32 engm)
{
- struct nvkm_device *device = fifo->base.engine.subdev.device;
- struct nvkm_engine *engine;
- struct gf100_fifo_chan *chan;
- unsigned long flags;
- u32 engn;
-
- spin_lock_irqsave(&fifo->base.lock, flags);
- for (engn = 0; engn < 6; engn++) {
- u32 stat = nvkm_rd32(device, 0x002640 + (engn * 0x04));
- u32 busy = (stat & 0x80000000);
- u32 save = (stat & 0x00100000); /* maybe? */
- u32 unk0 = (stat & 0x00040000);
- u32 unk1 = (stat & 0x00001000);
- u32 chid = (stat & 0x0000007f);
- (void)save;
-
- if (busy && unk0 && unk1) {
- list_for_each_entry(chan, &fifo->chan, head) {
- if (chan->base.chid == chid) {
- engine = gf100_fifo_id_engine(&fifo->base, engn);
- if (!engine)
- break;
- gf100_fifo_recover(fifo, engine, chan);
- break;
+ struct nvkm_runl *runl;
+ struct nvkm_engn *engn, *engn2;
+ bool cgid, cgid2;
+ int id, id2;
+
+ nvkm_runl_foreach(runl, fifo) {
+ /* Stop the runlist, and go through all engines serving it. */
+ nvkm_runl_block(runl);
+ nvkm_runl_foreach_engn_cond(engn, runl, engm & BIT(engn->id)) {
+ /* Determine what channel (group) the engine is on. */
+ id = engn->func->cxid(engn, &cgid);
+ if (id >= 0) {
+ /* Trigger MMU fault on any engine(s) on that channel (group). */
+ nvkm_runl_foreach_engn_cond(engn2, runl, engn2->func->cxid) {
+ id2 = engn2->func->cxid(engn2, &cgid2);
+ if (cgid2 == cgid && id2 == id)
+ engn2->func->mmu_fault_trigger(engn2);
}
}
}
+ nvkm_runl_allow(runl); /* HW will keep runlist blocked via ERROR_SCHED_DISABLE. */
}
- spin_unlock_irqrestore(&fifo->base.lock, flags);
}
static void
-gf100_fifo_intr_sched(struct gf100_fifo *fifo)
+gf100_fifo_intr_sched_ctxsw(struct nvkm_fifo *fifo)
{
- struct nvkm_subdev *subdev = &fifo->base.engine.subdev;
+ struct nvkm_runl *runl;
+ struct nvkm_engn *engn;
+ u32 engm = 0;
+
+ /* Look for any engines that are busy, and awaiting chsw ack. */
+ nvkm_runl_foreach(runl, fifo) {
+ nvkm_runl_foreach_engn_cond(engn, runl, engn->func->chsw) {
+ if (WARN_ON(engn->fault < 0) || !engn->func->chsw(engn))
+ continue;
+
+ engm |= BIT(engn->id);
+ }
+ }
+
+ if (!engm)
+ return;
+
+ fifo->func->intr_ctxsw_timeout(fifo, engm);
+}
+
+static const struct nvkm_enum
+gf100_fifo_intr_sched_names[] = {
+ { 0x0a, "CTXSW_TIMEOUT" },
+ {}
+};
+
+void
+gf100_fifo_intr_sched(struct nvkm_fifo *fifo)
+{
+ struct nvkm_subdev *subdev = &fifo->engine.subdev;
struct nvkm_device *device = subdev->device;
u32 intr = nvkm_rd32(device, 0x00254c);
u32 code = intr & 0x000000ff;
const struct nvkm_enum *en;
- en = nvkm_enum_find(gf100_fifo_sched_reason, code);
+ en = nvkm_enum_find(gf100_fifo_intr_sched_names, code);
nvkm_error(subdev, "SCHED_ERROR %02x [%s]\n", code, en ? en->name : "");
@@ -370,7 +693,7 @@ gf100_fifo_intr_sched(struct gf100_fifo *fifo)
}
void
-gf100_fifo_intr_fault(struct nvkm_fifo *fifo, int unit)
+gf100_fifo_intr_mmu_fault_unit(struct nvkm_fifo *fifo, int unit)
{
struct nvkm_device *device = fifo->engine.subdev.device;
u32 inst = nvkm_rd32(device, 0x002800 + (unit * 0x10));
@@ -393,61 +716,45 @@ gf100_fifo_intr_fault(struct nvkm_fifo *fifo, int unit)
nvkm_fifo_fault(fifo, &info);
}
-static const struct nvkm_bitfield
-gf100_fifo_pbdma_intr[] = {
-/* { 0x00008000, "" } seen with null ib push */
- { 0x00200000, "ILLEGAL_MTHD" },
- { 0x00800000, "EMPTY_SUBC" },
- {}
-};
-
-static void
-gf100_fifo_intr_pbdma(struct gf100_fifo *fifo, int unit)
+void
+gf100_fifo_intr_mmu_fault(struct nvkm_fifo *fifo)
{
- struct nvkm_subdev *subdev = &fifo->base.engine.subdev;
- struct nvkm_device *device = subdev->device;
- u32 stat = nvkm_rd32(device, 0x040108 + (unit * 0x2000));
- u32 addr = nvkm_rd32(device, 0x0400c0 + (unit * 0x2000));
- u32 data = nvkm_rd32(device, 0x0400c4 + (unit * 0x2000));
- u32 chid = nvkm_rd32(device, 0x040120 + (unit * 0x2000)) & 0x7f;
- u32 subc = (addr & 0x00070000) >> 16;
- u32 mthd = (addr & 0x00003ffc);
- struct nvkm_fifo_chan *chan;
- unsigned long flags;
- u32 show= stat;
- char msg[128];
+ struct nvkm_device *device = fifo->engine.subdev.device;
+ unsigned long mask = nvkm_rd32(device, 0x00259c);
+ int unit;
- if (stat & 0x00800000) {
- if (device->sw) {
- if (nvkm_sw_mthd(device->sw, chid, subc, mthd, data))
- show &= ~0x00800000;
- }
+ for_each_set_bit(unit, &mask, 32) {
+ fifo->func->intr_mmu_fault_unit(fifo, unit);
+ nvkm_wr32(device, 0x00259c, BIT(unit));
}
+}
- if (show) {
- nvkm_snprintbf(msg, sizeof(msg), gf100_fifo_pbdma_intr, show);
- chan = nvkm_fifo_chan_chid(&fifo->base, chid, &flags);
- nvkm_error(subdev, "PBDMA%d: %08x [%s] ch %d [%010llx %s] "
- "subc %d mthd %04x data %08x\n",
- unit, show, msg, chid, chan ? chan->inst->addr : 0,
- chan ? chan->object.client->name : "unknown",
- subc, mthd, data);
- nvkm_fifo_chan_put(&fifo->base, flags, &chan);
+bool
+gf100_fifo_intr_pbdma(struct nvkm_fifo *fifo)
+{
+ struct nvkm_device *device = fifo->engine.subdev.device;
+ struct nvkm_runq *runq;
+ u32 mask = nvkm_rd32(device, 0x0025a0);
+ bool handled = false;
+
+ nvkm_runq_foreach_cond(runq, fifo, mask & BIT(runq->id)) {
+ if (runq->func->intr(runq, NULL))
+ handled = true;
+
+ nvkm_wr32(device, 0x0025a0, BIT(runq->id));
}
- nvkm_wr32(device, 0x0400c0 + (unit * 0x2000), 0x80600008);
- nvkm_wr32(device, 0x040108 + (unit * 0x2000), stat);
+ return handled;
}
static void
-gf100_fifo_intr_runlist(struct gf100_fifo *fifo)
+gf100_fifo_intr_runlist(struct nvkm_fifo *fifo)
{
- struct nvkm_subdev *subdev = &fifo->base.engine.subdev;
+ struct nvkm_subdev *subdev = &fifo->engine.subdev;
struct nvkm_device *device = subdev->device;
u32 intr = nvkm_rd32(device, 0x002a00);
if (intr & 0x10000000) {
- wake_up(&fifo->runlist.wait);
nvkm_wr32(device, 0x002a00, 0x10000000);
intr &= ~0x10000000;
}
@@ -459,9 +766,9 @@ gf100_fifo_intr_runlist(struct gf100_fifo *fifo)
}
static void
-gf100_fifo_intr_engine_unit(struct gf100_fifo *fifo, int engn)
+gf100_fifo_intr_engine_unit(struct nvkm_fifo *fifo, int engn)
{
- struct nvkm_subdev *subdev = &fifo->base.engine.subdev;
+ struct nvkm_subdev *subdev = &fifo->engine.subdev;
struct nvkm_device *device = subdev->device;
u32 intr = nvkm_rd32(device, 0x0025a8 + (engn * 0x04));
u32 inte = nvkm_rd32(device, 0x002628);
@@ -472,22 +779,22 @@ gf100_fifo_intr_engine_unit(struct gf100_fifo *fifo, int engn)
for (unkn = 0; unkn < 8; unkn++) {
u32 ints = (intr >> (unkn * 0x04)) & inte;
if (ints & 0x1) {
- nvkm_fifo_uevent(&fifo->base);
+ nvkm_event_ntfy(&fifo->nonstall.event, 0, NVKM_FIFO_NONSTALL_EVENT);
ints &= ~1;
}
if (ints) {
- nvkm_error(subdev, "ENGINE %d %d %01x",
- engn, unkn, ints);
+ nvkm_error(subdev, "ENGINE %d %d %01x", engn, unkn, ints);
nvkm_mask(device, 0x002628, ints, 0);
}
}
}
-void
-gf100_fifo_intr_engine(struct gf100_fifo *fifo)
+static void
+gf100_fifo_intr_engine(struct nvkm_fifo *fifo)
{
- struct nvkm_device *device = fifo->base.engine.subdev.device;
+ struct nvkm_device *device = fifo->engine.subdev.device;
u32 mask = nvkm_rd32(device, 0x0025a4);
+
while (mask) {
u32 unit = __ffs(mask);
gf100_fifo_intr_engine_unit(fifo, unit);
@@ -495,11 +802,11 @@ gf100_fifo_intr_engine(struct gf100_fifo *fifo)
}
}
-static void
-gf100_fifo_intr(struct nvkm_fifo *base)
+static irqreturn_t
+gf100_fifo_intr(struct nvkm_inth *inth)
{
- struct gf100_fifo *fifo = gf100_fifo(base);
- struct nvkm_subdev *subdev = &fifo->base.engine.subdev;
+ struct nvkm_fifo *fifo = container_of(inth, typeof(*fifo), engine.subdev.inth);
+ struct nvkm_subdev *subdev = &fifo->engine.subdev;
struct nvkm_device *device = subdev->device;
u32 mask = nvkm_rd32(device, 0x002140);
u32 stat = nvkm_rd32(device, 0x002100) & mask;
@@ -532,25 +839,13 @@ gf100_fifo_intr(struct nvkm_fifo *base)
}
if (stat & 0x10000000) {
- u32 mask = nvkm_rd32(device, 0x00259c);
- while (mask) {
- u32 unit = __ffs(mask);
- gf100_fifo_intr_fault(&fifo->base, unit);
- nvkm_wr32(device, 0x00259c, (1 << unit));
- mask &= ~(1 << unit);
- }
+ gf100_fifo_intr_mmu_fault(fifo);
stat &= ~0x10000000;
}
if (stat & 0x20000000) {
- u32 mask = nvkm_rd32(device, 0x0025a0);
- while (mask) {
- u32 unit = __ffs(mask);
- gf100_fifo_intr_pbdma(fifo, unit);
- nvkm_wr32(device, 0x0025a0, (1 << unit));
- mask &= ~(1 << unit);
- }
- stat &= ~0x20000000;
+ if (gf100_fifo_intr_pbdma(fifo))
+ stat &= ~0x20000000;
}
if (stat & 0x40000000) {
@@ -565,71 +860,26 @@ gf100_fifo_intr(struct nvkm_fifo *base)
if (stat) {
nvkm_error(subdev, "INTR %08x\n", stat);
+ spin_lock(&fifo->lock);
nvkm_mask(device, 0x002140, stat, 0x00000000);
+ spin_unlock(&fifo->lock);
nvkm_wr32(device, 0x002100, stat);
}
-}
-
-static int
-gf100_fifo_oneinit(struct nvkm_fifo *base)
-{
- struct gf100_fifo *fifo = gf100_fifo(base);
- struct nvkm_subdev *subdev = &fifo->base.engine.subdev;
- struct nvkm_device *device = subdev->device;
- struct nvkm_vmm *bar = nvkm_bar_bar1_vmm(device);
- int ret;
-
- /* Determine number of PBDMAs by checking valid enable bits. */
- nvkm_wr32(device, 0x002204, 0xffffffff);
- fifo->pbdma_nr = hweight32(nvkm_rd32(device, 0x002204));
- nvkm_debug(subdev, "%d PBDMA(s)\n", fifo->pbdma_nr);
-
-
- ret = nvkm_memory_new(device, NVKM_MEM_TARGET_INST, 0x1000, 0x1000,
- false, &fifo->runlist.mem[0]);
- if (ret)
- return ret;
-
- ret = nvkm_memory_new(device, NVKM_MEM_TARGET_INST, 0x1000, 0x1000,
- false, &fifo->runlist.mem[1]);
- if (ret)
- return ret;
- init_waitqueue_head(&fifo->runlist.wait);
-
- ret = nvkm_memory_new(device, NVKM_MEM_TARGET_INST, 128 * 0x1000,
- 0x1000, false, &fifo->user.mem);
- if (ret)
- return ret;
-
- ret = nvkm_vmm_get(bar, 12, nvkm_memory_size(fifo->user.mem),
- &fifo->user.bar);
- if (ret)
- return ret;
-
- return nvkm_memory_map(fifo->user.mem, 0, bar, fifo->user.bar, NULL, 0);
-}
-
-static void
-gf100_fifo_fini(struct nvkm_fifo *base)
-{
- struct gf100_fifo *fifo = gf100_fifo(base);
- flush_work(&fifo->recover.work);
+ return IRQ_HANDLED;
}
static void
-gf100_fifo_init(struct nvkm_fifo *base)
+gf100_fifo_init_pbdmas(struct nvkm_fifo *fifo, u32 mask)
{
- struct gf100_fifo *fifo = gf100_fifo(base);
- struct nvkm_device *device = fifo->base.engine.subdev.device;
- int i;
+ struct nvkm_device *device = fifo->engine.subdev.device;
/* Enable PBDMAs. */
- nvkm_wr32(device, 0x000204, (1 << fifo->pbdma_nr) - 1);
- nvkm_wr32(device, 0x002204, (1 << fifo->pbdma_nr) - 1);
+ nvkm_wr32(device, 0x000204, mask);
+ nvkm_wr32(device, 0x002204, mask);
/* Assign engines to PBDMAs. */
- if (fifo->pbdma_nr >= 3) {
+ if ((mask & 7) == 7) {
nvkm_wr32(device, 0x002208, ~(1 << 0)); /* PGRAPH */
nvkm_wr32(device, 0x00220c, ~(1 << 1)); /* PVP */
nvkm_wr32(device, 0x002210, ~(1 << 1)); /* PMSPP */
@@ -638,62 +888,82 @@ gf100_fifo_init(struct nvkm_fifo *base)
nvkm_wr32(device, 0x00221c, ~(1 << 1)); /* PCE1 */
}
- /* PBDMA[n] */
- for (i = 0; i < fifo->pbdma_nr; i++) {
- nvkm_mask(device, 0x04013c + (i * 0x2000), 0x10000100, 0x00000000);
- nvkm_wr32(device, 0x040108 + (i * 0x2000), 0xffffffff); /* INTR */
- nvkm_wr32(device, 0x04010c + (i * 0x2000), 0xfffffeff); /* INTREN */
- }
+ nvkm_mask(device, 0x002a04, 0xbfffffff, 0xbfffffff);
+}
+
+static void
+gf100_fifo_init(struct nvkm_fifo *fifo)
+{
+ struct nvkm_device *device = fifo->engine.subdev.device;
nvkm_mask(device, 0x002200, 0x00000001, 0x00000001);
- nvkm_wr32(device, 0x002254, 0x10000000 | fifo->user.bar->addr >> 12);
+ nvkm_wr32(device, 0x002254, 0x10000000 | fifo->userd.bar1->addr >> 12);
nvkm_wr32(device, 0x002100, 0xffffffff);
nvkm_wr32(device, 0x002140, 0x7fffffff);
nvkm_wr32(device, 0x002628, 0x00000001); /* ENGINE_INTR_EN */
}
-static void *
-gf100_fifo_dtor(struct nvkm_fifo *base)
+static int
+gf100_fifo_runl_ctor(struct nvkm_fifo *fifo)
+{
+ struct nvkm_runl *runl;
+
+ runl = nvkm_runl_new(fifo, 0, 0, 0);
+ if (IS_ERR(runl))
+ return PTR_ERR(runl);
+
+ nvkm_runl_add(runl, 0, fifo->func->engn, NVKM_ENGINE_GR, 0);
+ nvkm_runl_add(runl, 1, fifo->func->engn, NVKM_ENGINE_MSPDEC, 0);
+ nvkm_runl_add(runl, 2, fifo->func->engn, NVKM_ENGINE_MSPPP, 0);
+ nvkm_runl_add(runl, 3, fifo->func->engn, NVKM_ENGINE_MSVLD, 0);
+ nvkm_runl_add(runl, 4, fifo->func->engn, NVKM_ENGINE_CE, 0);
+ nvkm_runl_add(runl, 5, fifo->func->engn, NVKM_ENGINE_CE, 1);
+ nvkm_runl_add(runl, 15, &gf100_engn_sw, NVKM_ENGINE_SW, 0);
+ return 0;
+}
+
+int
+gf100_fifo_runq_nr(struct nvkm_fifo *fifo)
+{
+ struct nvkm_device *device = fifo->engine.subdev.device;
+ u32 save;
+
+ /* Determine number of PBDMAs by checking valid enable bits. */
+ save = nvkm_mask(device, 0x000204, 0xffffffff, 0xffffffff);
+ save = nvkm_mask(device, 0x000204, 0xffffffff, save);
+ return hweight32(save);
+}
+
+int
+gf100_fifo_chid_ctor(struct nvkm_fifo *fifo, int nr)
{
- struct gf100_fifo *fifo = gf100_fifo(base);
- struct nvkm_device *device = fifo->base.engine.subdev.device;
- nvkm_vmm_put(nvkm_bar_bar1_vmm(device), &fifo->user.bar);
- nvkm_memory_unref(&fifo->user.mem);
- nvkm_memory_unref(&fifo->runlist.mem[0]);
- nvkm_memory_unref(&fifo->runlist.mem[1]);
- return fifo;
+ return nvkm_chid_new(&nvkm_chan_event, &fifo->engine.subdev, nr, 0, nr, &fifo->chid);
}
static const struct nvkm_fifo_func
gf100_fifo = {
- .dtor = gf100_fifo_dtor,
- .oneinit = gf100_fifo_oneinit,
+ .chid_nr = nv50_fifo_chid_nr,
+ .chid_ctor = gf100_fifo_chid_ctor,
+ .runq_nr = gf100_fifo_runq_nr,
+ .runl_ctor = gf100_fifo_runl_ctor,
.init = gf100_fifo_init,
- .fini = gf100_fifo_fini,
+ .init_pbdmas = gf100_fifo_init_pbdmas,
.intr = gf100_fifo_intr,
- .fault = gf100_fifo_fault,
- .engine_id = gf100_fifo_engine_id,
- .id_engine = gf100_fifo_id_engine,
- .uevent_init = gf100_fifo_uevent_init,
- .uevent_fini = gf100_fifo_uevent_fini,
- .chan = {
- &gf100_fifo_gpfifo_oclass,
- NULL
- },
+ .intr_mmu_fault_unit = gf100_fifo_intr_mmu_fault_unit,
+ .intr_ctxsw_timeout = gf100_fifo_intr_ctxsw_timeout,
+ .mmu_fault = &gf100_fifo_mmu_fault,
+ .nonstall = &gf100_fifo_nonstall,
+ .runl = &gf100_runl,
+ .runq = &gf100_runq,
+ .engn = &gf100_engn,
+ .cgrp = {{ }, &nv04_cgrp },
+ .chan = {{ 0, 0, FERMI_CHANNEL_GPFIFO }, &gf100_chan },
};
int
gf100_fifo_new(struct nvkm_device *device, enum nvkm_subdev_type type, int inst,
struct nvkm_fifo **pfifo)
{
- struct gf100_fifo *fifo;
-
- if (!(fifo = kzalloc(sizeof(*fifo), GFP_KERNEL)))
- return -ENOMEM;
- INIT_LIST_HEAD(&fifo->chan);
- INIT_WORK(&fifo->recover.work, gf100_fifo_recover_work);
- *pfifo = &fifo->base;
-
- return nvkm_fifo_ctor(&gf100_fifo, device, type, inst, 128, &fifo->base);
+ return nvkm_fifo_new_(&gf100_fifo, device, type, inst, pfifo);
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gf100.h b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gf100.h
deleted file mode 100644
index b8642490eb2f..000000000000
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gf100.h
+++ /dev/null
@@ -1,38 +0,0 @@
-/* SPDX-License-Identifier: MIT */
-#ifndef __GF100_FIFO_H__
-#define __GF100_FIFO_H__
-#define gf100_fifo(p) container_of((p), struct gf100_fifo, base)
-#include "priv.h"
-
-#include <subdev/mmu.h>
-
-struct gf100_fifo_chan;
-struct gf100_fifo {
- struct nvkm_fifo base;
-
- struct list_head chan;
-
- struct {
- struct work_struct work;
- u64 mask;
- } recover;
-
- int pbdma_nr;
-
- struct {
- struct nvkm_memory *mem[2];
- int active;
- wait_queue_head_t wait;
- } runlist;
-
- struct {
- struct nvkm_memory *mem;
- struct nvkm_vma *bar;
- } user;
-};
-
-void gf100_fifo_intr_engine(struct gf100_fifo *);
-void gf100_fifo_runlist_insert(struct gf100_fifo *, struct gf100_fifo_chan *);
-void gf100_fifo_runlist_remove(struct gf100_fifo *, struct gf100_fifo_chan *);
-void gf100_fifo_runlist_commit(struct gf100_fifo *);
-#endif
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gk104.c b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gk104.c
index e771bd519ee2..d8a4d773a58c 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gk104.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gk104.c
@@ -21,643 +21,318 @@
*
* Authors: Ben Skeggs
*/
-#include "gk104.h"
+#include "priv.h"
#include "cgrp.h"
-#include "changk104.h"
+#include "chan.h"
+#include "chid.h"
+#include "runl.h"
+#include "runq.h"
-#include <core/client.h>
#include <core/gpuobj.h>
-#include <subdev/bar.h>
-#include <subdev/fault.h>
-#include <subdev/timer.h>
+#include <subdev/mc.h>
+#include <subdev/mmu.h>
#include <subdev/top.h>
-#include <engine/sw.h>
#include <nvif/class.h>
-#include <nvif/cl0080.h>
+#include <nvif/if900d.h>
void
-gk104_fifo_engine_status(struct gk104_fifo *fifo, int engn,
- struct gk104_fifo_engine_status *status)
+gk104_chan_stop(struct nvkm_chan *chan)
{
- struct nvkm_engine *engine = fifo->engine[engn].engine;
- struct nvkm_subdev *subdev = &fifo->base.engine.subdev;
- struct nvkm_device *device = subdev->device;
- u32 stat = nvkm_rd32(device, 0x002640 + (engn * 0x08));
-
- status->busy = !!(stat & 0x80000000);
- status->faulted = !!(stat & 0x40000000);
- status->next.tsg = !!(stat & 0x10000000);
- status->next.id = (stat & 0x0fff0000) >> 16;
- status->chsw = !!(stat & 0x00008000);
- status->save = !!(stat & 0x00004000);
- status->load = !!(stat & 0x00002000);
- status->prev.tsg = !!(stat & 0x00001000);
- status->prev.id = (stat & 0x00000fff);
- status->chan = NULL;
-
- if (status->busy && status->chsw) {
- if (status->load && status->save) {
- if (engine && nvkm_engine_chsw_load(engine))
- status->chan = &status->next;
- else
- status->chan = &status->prev;
- } else
- if (status->load) {
- status->chan = &status->next;
- } else {
- status->chan = &status->prev;
- }
- } else
- if (status->load) {
- status->chan = &status->prev;
- }
+ struct nvkm_device *device = chan->cgrp->runl->fifo->engine.subdev.device;
- nvkm_debug(subdev, "engine %02d: busy %d faulted %d chsw %d "
- "save %d load %d %sid %d%s-> %sid %d%s\n",
- engn, status->busy, status->faulted,
- status->chsw, status->save, status->load,
- status->prev.tsg ? "tsg" : "ch", status->prev.id,
- status->chan == &status->prev ? "*" : " ",
- status->next.tsg ? "tsg" : "ch", status->next.id,
- status->chan == &status->next ? "*" : " ");
-}
-
-int
-gk104_fifo_class_new(struct nvkm_fifo *base, const struct nvkm_oclass *oclass,
- void *argv, u32 argc, struct nvkm_object **pobject)
-{
- struct gk104_fifo *fifo = gk104_fifo(base);
- if (oclass->engn == &fifo->func->chan) {
- const struct gk104_fifo_chan_user *user = oclass->engn;
- return user->ctor(fifo, oclass, argv, argc, pobject);
- } else
- if (oclass->engn == &fifo->func->user) {
- const struct gk104_fifo_user_user *user = oclass->engn;
- return user->ctor(oclass, argv, argc, pobject);
- }
- WARN_ON(1);
- return -EINVAL;
-}
-
-int
-gk104_fifo_class_get(struct nvkm_fifo *base, int index,
- struct nvkm_oclass *oclass)
-{
- struct gk104_fifo *fifo = gk104_fifo(base);
- int c = 0;
-
- if (fifo->func->user.ctor && c++ == index) {
- oclass->base = fifo->func->user.user;
- oclass->engn = &fifo->func->user;
- return 0;
- }
-
- if (fifo->func->chan.ctor && c++ == index) {
- oclass->base = fifo->func->chan.user;
- oclass->engn = &fifo->func->chan;
- return 0;
- }
-
- return c;
+ nvkm_mask(device, 0x800004 + (chan->id * 8), 0x00000800, 0x00000800);
}
void
-gk104_fifo_uevent_fini(struct nvkm_fifo *fifo)
+gk104_chan_start(struct nvkm_chan *chan)
{
- struct nvkm_device *device = fifo->engine.subdev.device;
- nvkm_mask(device, 0x002140, 0x80000000, 0x00000000);
-}
+ struct nvkm_device *device = chan->cgrp->runl->fifo->engine.subdev.device;
-void
-gk104_fifo_uevent_init(struct nvkm_fifo *fifo)
-{
- struct nvkm_device *device = fifo->engine.subdev.device;
- nvkm_mask(device, 0x002140, 0x80000000, 0x80000000);
+ nvkm_mask(device, 0x800004 + (chan->id * 8), 0x00000400, 0x00000400);
}
void
-gk104_fifo_runlist_commit(struct gk104_fifo *fifo, int runl,
- struct nvkm_memory *mem, int nr)
+gk104_chan_unbind(struct nvkm_chan *chan)
{
- struct nvkm_subdev *subdev = &fifo->base.engine.subdev;
- struct nvkm_device *device = subdev->device;
- int target;
+ struct nvkm_device *device = chan->cgrp->runl->fifo->engine.subdev.device;
- switch (nvkm_memory_target(mem)) {
- case NVKM_MEM_TARGET_VRAM: target = 0; break;
- case NVKM_MEM_TARGET_NCOH: target = 3; break;
- default:
- WARN_ON(1);
- return;
- }
-
- nvkm_wr32(device, 0x002270, (nvkm_memory_addr(mem) >> 12) |
- (target << 28));
- nvkm_wr32(device, 0x002274, (runl << 20) | nr);
-
- if (nvkm_msec(device, 2000,
- if (!(nvkm_rd32(device, 0x002284 + (runl * 0x08)) & 0x00100000))
- break;
- ) < 0)
- nvkm_error(subdev, "runlist %d update timeout\n", runl);
+ nvkm_wr32(device, 0x800000 + (chan->id * 8), 0x00000000);
}
void
-gk104_fifo_runlist_update(struct gk104_fifo *fifo, int runl)
+gk104_chan_bind_inst(struct nvkm_chan *chan)
{
- const struct gk104_fifo_runlist_func *func = fifo->func->runlist;
- struct gk104_fifo_chan *chan;
- struct nvkm_memory *mem;
- struct nvkm_fifo_cgrp *cgrp;
- int nr = 0;
-
- mutex_lock(&fifo->base.mutex);
- mem = fifo->runlist[runl].mem[fifo->runlist[runl].next];
- fifo->runlist[runl].next = !fifo->runlist[runl].next;
-
- nvkm_kmap(mem);
- list_for_each_entry(chan, &fifo->runlist[runl].chan, head) {
- func->chan(chan, mem, nr++ * func->size);
- }
-
- list_for_each_entry(cgrp, &fifo->runlist[runl].cgrp, head) {
- func->cgrp(cgrp, mem, nr++ * func->size);
- list_for_each_entry(chan, &cgrp->chan, head) {
- func->chan(chan, mem, nr++ * func->size);
- }
- }
- nvkm_done(mem);
+ struct nvkm_device *device = chan->cgrp->runl->fifo->engine.subdev.device;
- func->commit(fifo, runl, mem, nr);
- mutex_unlock(&fifo->base.mutex);
+ nvkm_wr32(device, 0x800000 + (chan->id * 8), 0x80000000 | chan->inst->addr >> 12);
}
void
-gk104_fifo_runlist_remove(struct gk104_fifo *fifo, struct gk104_fifo_chan *chan)
-{
- struct nvkm_fifo_cgrp *cgrp = chan->cgrp;
- mutex_lock(&fifo->base.mutex);
- if (!list_empty(&chan->head)) {
- list_del_init(&chan->head);
- if (cgrp && !--cgrp->chan_nr)
- list_del_init(&cgrp->head);
- }
- mutex_unlock(&fifo->base.mutex);
-}
-
-void
-gk104_fifo_runlist_insert(struct gk104_fifo *fifo, struct gk104_fifo_chan *chan)
-{
- struct nvkm_fifo_cgrp *cgrp = chan->cgrp;
- mutex_lock(&fifo->base.mutex);
- if (cgrp) {
- if (!cgrp->chan_nr++)
- list_add_tail(&cgrp->head, &fifo->runlist[chan->runl].cgrp);
- list_add_tail(&chan->head, &cgrp->chan);
- } else {
- list_add_tail(&chan->head, &fifo->runlist[chan->runl].chan);
- }
- mutex_unlock(&fifo->base.mutex);
-}
-
-void
-gk104_fifo_runlist_chan(struct gk104_fifo_chan *chan,
- struct nvkm_memory *memory, u32 offset)
-{
- nvkm_wo32(memory, offset + 0, chan->base.chid);
- nvkm_wo32(memory, offset + 4, 0x00000000);
-}
-
-const struct gk104_fifo_runlist_func
-gk104_fifo_runlist = {
- .size = 8,
- .chan = gk104_fifo_runlist_chan,
- .commit = gk104_fifo_runlist_commit,
+gk104_chan_bind(struct nvkm_chan *chan)
+{
+ struct nvkm_runl *runl = chan->cgrp->runl;
+ struct nvkm_device *device = runl->fifo->engine.subdev.device;
+
+ nvkm_mask(device, 0x800004 + (chan->id * 8), 0x000f0000, runl->id << 16);
+ gk104_chan_bind_inst(chan);
+}
+
+static int
+gk104_chan_ramfc_write(struct nvkm_chan *chan, u64 offset, u64 length, u32 devm, bool priv)
+{
+ const u64 userd = nvkm_memory_addr(chan->userd.mem) + chan->userd.base;
+ const u32 limit2 = ilog2(length / 8);
+
+ nvkm_kmap(chan->inst);
+ nvkm_wo32(chan->inst, 0x08, lower_32_bits(userd));
+ nvkm_wo32(chan->inst, 0x0c, upper_32_bits(userd));
+ nvkm_wo32(chan->inst, 0x10, 0x0000face);
+ nvkm_wo32(chan->inst, 0x30, 0xfffff902);
+ nvkm_wo32(chan->inst, 0x48, lower_32_bits(offset));
+ nvkm_wo32(chan->inst, 0x4c, upper_32_bits(offset) | (limit2 << 16));
+ nvkm_wo32(chan->inst, 0x84, 0x20400000);
+ nvkm_wo32(chan->inst, 0x94, 0x30000000 | devm);
+ nvkm_wo32(chan->inst, 0x9c, 0x00000100);
+ nvkm_wo32(chan->inst, 0xac, 0x0000001f);
+ nvkm_wo32(chan->inst, 0xe4, priv ? 0x00000020 : 0x00000000);
+ nvkm_wo32(chan->inst, 0xe8, chan->id);
+ nvkm_wo32(chan->inst, 0xb8, 0xf8000000);
+ nvkm_wo32(chan->inst, 0xf8, 0x10003080); /* 0x002310 */
+ nvkm_wo32(chan->inst, 0xfc, 0x10000010); /* 0x002350 */
+ nvkm_done(chan->inst);
+ return 0;
+}
+
+const struct nvkm_chan_func_ramfc
+gk104_chan_ramfc = {
+ .write = gk104_chan_ramfc_write,
+ .devm = 0xfff,
+ .priv = true,
};
-void
-gk104_fifo_pbdma_init(struct gk104_fifo *fifo)
-{
- struct nvkm_device *device = fifo->base.engine.subdev.device;
- nvkm_wr32(device, 0x000204, (1 << fifo->pbdma_nr) - 1);
-}
-
-int
-gk104_fifo_pbdma_nr(struct gk104_fifo *fifo)
-{
- struct nvkm_device *device = fifo->base.engine.subdev.device;
- /* Determine number of PBDMAs by checking valid enable bits. */
- nvkm_wr32(device, 0x000204, 0xffffffff);
- return hweight32(nvkm_rd32(device, 0x000204));
-}
-
-const struct gk104_fifo_pbdma_func
-gk104_fifo_pbdma = {
- .nr = gk104_fifo_pbdma_nr,
- .init = gk104_fifo_pbdma_init,
+const struct nvkm_chan_func_userd
+gk104_chan_userd = {
+ .bar = 1,
+ .size = 0x200,
+ .clear = gf100_chan_userd_clear,
};
-struct nvkm_engine *
-gk104_fifo_id_engine(struct nvkm_fifo *base, int engi)
-{
- if (engi == GK104_FIFO_ENGN_SW)
- return nvkm_device_engine(base->engine.subdev.device, NVKM_ENGINE_SW, 0);
-
- return gk104_fifo(base)->engine[engi].engine;
-}
-
-int
-gk104_fifo_engine_id(struct nvkm_fifo *base, struct nvkm_engine *engine)
-{
- struct gk104_fifo *fifo = gk104_fifo(base);
- int engn;
+static const struct nvkm_chan_func
+gk104_chan = {
+ .inst = &gf100_chan_inst,
+ .userd = &gk104_chan_userd,
+ .ramfc = &gk104_chan_ramfc,
+ .bind = gk104_chan_bind,
+ .unbind = gk104_chan_unbind,
+ .start = gk104_chan_start,
+ .stop = gk104_chan_stop,
+ .preempt = gf100_chan_preempt,
+};
- if (engine->subdev.type == NVKM_ENGINE_SW)
- return GK104_FIFO_ENGN_SW;
+static void
+gk104_ectx_bind(struct nvkm_engn *engn, struct nvkm_cctx *cctx, struct nvkm_chan *chan)
+{
+ u32 ptr0, ptr1 = 0;
+ u64 addr = 0ULL;
+
+ switch (engn->engine->subdev.type) {
+ case NVKM_ENGINE_SW : return;
+ case NVKM_ENGINE_GR : ptr0 = 0x0210; break;
+ case NVKM_ENGINE_SEC : ptr0 = 0x0220; break;
+ case NVKM_ENGINE_MSPDEC: ptr0 = 0x0250; break;
+ case NVKM_ENGINE_MSPPP : ptr0 = 0x0260; break;
+ case NVKM_ENGINE_MSVLD : ptr0 = 0x0270; break;
+ case NVKM_ENGINE_VIC : ptr0 = 0x0280; break;
+ case NVKM_ENGINE_MSENC : ptr0 = 0x0290; break;
+ case NVKM_ENGINE_NVDEC :
+ ptr1 = 0x0270;
+ ptr0 = 0x0210;
+ break;
+ case NVKM_ENGINE_NVENC :
+ if (!engn->engine->subdev.inst)
+ ptr1 = 0x0290;
+ ptr0 = 0x0210;
+ break;
+ default:
+ WARN_ON(1);
+ return;
+ }
- for (engn = 0; engn < fifo->engine_nr && engine; engn++) {
- if (fifo->engine[engn].engine == engine)
- return engn;
+ if (cctx) {
+ addr = cctx->vctx->vma->addr;
+ addr |= 4ULL;
}
- WARN_ON(1);
- return -1;
+ nvkm_kmap(chan->inst);
+ nvkm_wo32(chan->inst, ptr0 + 0, lower_32_bits(addr));
+ nvkm_wo32(chan->inst, ptr0 + 4, upper_32_bits(addr));
+ if (ptr1) {
+ nvkm_wo32(chan->inst, ptr1 + 0, lower_32_bits(addr));
+ nvkm_wo32(chan->inst, ptr1 + 4, upper_32_bits(addr));
+ }
+ nvkm_done(chan->inst);
}
-static void
-gk104_fifo_recover_work(struct work_struct *w)
+int
+gk104_ectx_ctor(struct nvkm_engn *engn, struct nvkm_vctx *vctx)
{
- struct gk104_fifo *fifo = container_of(w, typeof(*fifo), recover.work);
- struct nvkm_device *device = fifo->base.engine.subdev.device;
- struct nvkm_engine *engine;
- unsigned long flags;
- u32 engm, runm, todo;
- int engn, runl;
-
- spin_lock_irqsave(&fifo->base.lock, flags);
- runm = fifo->recover.runm;
- engm = fifo->recover.engm;
- fifo->recover.engm = 0;
- fifo->recover.runm = 0;
- spin_unlock_irqrestore(&fifo->base.lock, flags);
-
- nvkm_mask(device, 0x002630, runm, runm);
-
- for (todo = engm; engn = __ffs(todo), todo; todo &= ~BIT(engn)) {
- if ((engine = fifo->engine[engn].engine)) {
- nvkm_subdev_fini(&engine->subdev, false);
- WARN_ON(nvkm_subdev_init(&engine->subdev));
- }
- }
+ struct gf100_vmm_map_v0 args = { .priv = 1 };
+ int ret;
- for (todo = runm; runl = __ffs(todo), todo; todo &= ~BIT(runl))
- gk104_fifo_runlist_update(fifo, runl);
+ ret = nvkm_vmm_get(vctx->vmm, 12, vctx->inst->size, &vctx->vma);
+ if (ret)
+ return ret;
- nvkm_wr32(device, 0x00262c, runm);
- nvkm_mask(device, 0x002630, runm, 0x00000000);
+ return nvkm_memory_map(vctx->inst, 0, vctx->vmm, vctx->vma, &args, sizeof(args));
}
-static void gk104_fifo_recover_engn(struct gk104_fifo *fifo, int engn);
+/*TODO: clean this up */
+struct gk104_engn_status {
+ bool busy;
+ bool faulted;
+ bool chsw;
+ bool save;
+ bool load;
+ struct {
+ bool tsg;
+ u32 id;
+ } prev, next, *chan;
+};
static void
-gk104_fifo_recover_runl(struct gk104_fifo *fifo, int runl)
-{
- struct nvkm_subdev *subdev = &fifo->base.engine.subdev;
- struct nvkm_device *device = subdev->device;
- const u32 runm = BIT(runl);
-
- assert_spin_locked(&fifo->base.lock);
- if (fifo->recover.runm & runm)
- return;
- fifo->recover.runm |= runm;
-
- /* Block runlist to prevent channel assignment(s) from changing. */
- nvkm_mask(device, 0x002630, runm, runm);
-
- /* Schedule recovery. */
- nvkm_warn(subdev, "runlist %d: scheduled for recovery\n", runl);
- schedule_work(&fifo->recover.work);
-}
-
-static struct gk104_fifo_chan *
-gk104_fifo_recover_chid(struct gk104_fifo *fifo, int runl, int chid)
+gk104_engn_status(struct nvkm_engn *engn, struct gk104_engn_status *status)
{
- struct gk104_fifo_chan *chan;
- struct nvkm_fifo_cgrp *cgrp;
+ u32 stat = nvkm_rd32(engn->runl->fifo->engine.subdev.device, 0x002640 + (engn->id * 0x08));
- list_for_each_entry(chan, &fifo->runlist[runl].chan, head) {
- if (chan->base.chid == chid) {
- list_del_init(&chan->head);
- return chan;
- }
- }
+ status->busy = !!(stat & 0x80000000);
+ status->faulted = !!(stat & 0x40000000);
+ status->next.tsg = !!(stat & 0x10000000);
+ status->next.id = (stat & 0x0fff0000) >> 16;
+ status->chsw = !!(stat & 0x00008000);
+ status->save = !!(stat & 0x00004000);
+ status->load = !!(stat & 0x00002000);
+ status->prev.tsg = !!(stat & 0x00001000);
+ status->prev.id = (stat & 0x00000fff);
+ status->chan = NULL;
- list_for_each_entry(cgrp, &fifo->runlist[runl].cgrp, head) {
- if (cgrp->id == chid) {
- chan = list_first_entry(&cgrp->chan, typeof(*chan), head);
- list_del_init(&chan->head);
- if (!--cgrp->chan_nr)
- list_del_init(&cgrp->head);
- return chan;
+ if (status->busy && status->chsw) {
+ if (status->load && status->save) {
+ if (nvkm_engine_chsw_load(engn->engine))
+ status->chan = &status->next;
+ else
+ status->chan = &status->prev;
+ } else
+ if (status->load) {
+ status->chan = &status->next;
+ } else {
+ status->chan = &status->prev;
}
+ } else
+ if (status->load) {
+ status->chan = &status->prev;
}
- return NULL;
-}
-
-static void
-gk104_fifo_recover_chan(struct nvkm_fifo *base, int chid)
-{
- struct gk104_fifo *fifo = gk104_fifo(base);
- struct nvkm_subdev *subdev = &fifo->base.engine.subdev;
- struct nvkm_device *device = subdev->device;
- const u32 stat = nvkm_rd32(device, 0x800004 + (chid * 0x08));
- const u32 runl = (stat & 0x000f0000) >> 16;
- const bool used = (stat & 0x00000001);
- unsigned long engn, engm = fifo->runlist[runl].engm;
- struct gk104_fifo_chan *chan;
-
- assert_spin_locked(&fifo->base.lock);
- if (!used)
- return;
-
- /* Lookup SW state for channel, and mark it as dead. */
- chan = gk104_fifo_recover_chid(fifo, runl, chid);
- if (chan) {
- chan->killed = true;
- nvkm_fifo_kevent(&fifo->base, chid);
- }
-
- /* Disable channel. */
- nvkm_wr32(device, 0x800004 + (chid * 0x08), stat | 0x00000800);
- nvkm_warn(subdev, "channel %d: killed\n", chid);
-
- /* Block channel assignments from changing during recovery. */
- gk104_fifo_recover_runl(fifo, runl);
-
- /* Schedule recovery for any engines the channel is on. */
- for_each_set_bit(engn, &engm, fifo->engine_nr) {
- struct gk104_fifo_engine_status status;
- gk104_fifo_engine_status(fifo, engn, &status);
- if (!status.chan || status.chan->id != chid)
- continue;
- gk104_fifo_recover_engn(fifo, engn);
- }
+ ENGN_DEBUG(engn, "%08x: busy %d faulted %d chsw %d save %d load %d %sid %d%s-> %sid %d%s",
+ stat, status->busy, status->faulted, status->chsw, status->save, status->load,
+ status->prev.tsg ? "tsg" : "ch", status->prev.id,
+ status->chan == &status->prev ? "*" : " ",
+ status->next.tsg ? "tsg" : "ch", status->next.id,
+ status->chan == &status->next ? "*" : " ");
}
-static void
-gk104_fifo_recover_engn(struct gk104_fifo *fifo, int engn)
+int
+gk104_engn_cxid(struct nvkm_engn *engn, bool *cgid)
{
- struct nvkm_engine *engine = fifo->engine[engn].engine;
- struct nvkm_subdev *subdev = &fifo->base.engine.subdev;
- struct nvkm_device *device = subdev->device;
- const u32 runl = fifo->engine[engn].runl;
- const u32 engm = BIT(engn);
- struct gk104_fifo_engine_status status;
- int mmui = -1;
-
- assert_spin_locked(&fifo->base.lock);
- if (fifo->recover.engm & engm)
- return;
- fifo->recover.engm |= engm;
-
- /* Block channel assignments from changing during recovery. */
- gk104_fifo_recover_runl(fifo, runl);
+ struct gk104_engn_status status;
- /* Determine which channel (if any) is currently on the engine. */
- gk104_fifo_engine_status(fifo, engn, &status);
+ gk104_engn_status(engn, &status);
if (status.chan) {
- /* The channel is not longer viable, kill it. */
- gk104_fifo_recover_chan(&fifo->base, status.chan->id);
+ *cgid = status.chan->tsg;
+ return status.chan->id;
}
- /* Determine MMU fault ID for the engine, if we're not being
- * called from the fault handler already.
- */
- if (!status.faulted && engine) {
- mmui = nvkm_top_fault_id(device, engine->subdev.type, engine->subdev.inst);
- if (mmui < 0) {
- const struct nvkm_enum *en = fifo->func->fault.engine;
- for (; en && en->name; en++) {
- if (en->data2 == engine->subdev.type &&
- en->inst == engine->subdev.inst) {
- mmui = en->value;
- break;
- }
- }
- }
- WARN_ON(mmui < 0);
- }
-
- /* Trigger a MMU fault for the engine.
- *
- * No good idea why this is needed, but nvgpu does something similar,
- * and it makes recovery from CTXSW_TIMEOUT a lot more reliable.
- */
- if (mmui >= 0) {
- nvkm_wr32(device, 0x002a30 + (engn * 0x04), 0x00000100 | mmui);
-
- /* Wait for fault to trigger. */
- nvkm_msec(device, 2000,
- gk104_fifo_engine_status(fifo, engn, &status);
- if (status.faulted)
- break;
- );
-
- /* Release MMU fault trigger, and ACK the fault. */
- nvkm_wr32(device, 0x002a30 + (engn * 0x04), 0x00000000);
- nvkm_wr32(device, 0x00259c, BIT(mmui));
- nvkm_wr32(device, 0x002100, 0x10000000);
- }
-
- /* Schedule recovery. */
- nvkm_warn(subdev, "engine %d: scheduled for recovery\n", engn);
- schedule_work(&fifo->recover.work);
+ return -ENODEV;
}
-static void
-gk104_fifo_fault(struct nvkm_fifo *base, struct nvkm_fault_data *info)
+bool
+gk104_engn_chsw(struct nvkm_engn *engn)
{
- struct gk104_fifo *fifo = gk104_fifo(base);
- struct nvkm_subdev *subdev = &fifo->base.engine.subdev;
- struct nvkm_device *device = subdev->device;
- const struct nvkm_enum *er, *ee, *ec, *ea;
- struct nvkm_engine *engine = NULL;
- struct nvkm_fifo_chan *chan;
- unsigned long flags;
- const char *en = "";
- char ct[8] = "HUB/";
-
- er = nvkm_enum_find(fifo->func->fault.reason, info->reason);
- ee = nvkm_enum_find(fifo->func->fault.engine, info->engine);
- if (info->hub) {
- ec = nvkm_enum_find(fifo->func->fault.hubclient, info->client);
- } else {
- ec = nvkm_enum_find(fifo->func->fault.gpcclient, info->client);
- snprintf(ct, sizeof(ct), "GPC%d/", info->gpc);
- }
- ea = nvkm_enum_find(fifo->func->fault.access, info->access);
+ struct gk104_engn_status status;
- if (ee && ee->data2) {
- switch (ee->data2) {
- case NVKM_SUBDEV_BAR:
- nvkm_bar_bar1_reset(device);
- break;
- case NVKM_SUBDEV_INSTMEM:
- nvkm_bar_bar2_reset(device);
- break;
- case NVKM_ENGINE_IFB:
- nvkm_mask(device, 0x001718, 0x00000000, 0x00000000);
- break;
- default:
- engine = nvkm_device_engine(device, ee->data2, 0);
- break;
- }
- }
-
- if (ee == NULL) {
- struct nvkm_subdev *subdev = nvkm_top_fault(device, info->engine);
- if (subdev) {
- if (subdev->func == &nvkm_engine)
- engine = container_of(subdev, typeof(*engine), subdev);
- en = engine->subdev.name;
- }
- } else {
- en = ee->name;
- }
-
- spin_lock_irqsave(&fifo->base.lock, flags);
- chan = nvkm_fifo_chan_inst_locked(&fifo->base, info->inst);
-
- nvkm_error(subdev,
- "fault %02x [%s] at %016llx engine %02x [%s] client %02x "
- "[%s%s] reason %02x [%s] on channel %d [%010llx %s]\n",
- info->access, ea ? ea->name : "", info->addr,
- info->engine, ee ? ee->name : en,
- info->client, ct, ec ? ec->name : "",
- info->reason, er ? er->name : "", chan ? chan->chid : -1,
- info->inst, chan ? chan->object.client->name : "unknown");
-
- /* Kill the channel that caused the fault. */
- if (chan)
- gk104_fifo_recover_chan(&fifo->base, chan->chid);
-
- /* Channel recovery will probably have already done this for the
- * correct engine(s), but just in case we can't find the channel
- * information...
- */
- if (engine) {
- int engn = fifo->base.func->engine_id(&fifo->base, engine);
- if (engn >= 0 && engn != GK104_FIFO_ENGN_SW)
- gk104_fifo_recover_engn(fifo, engn);
- }
+ gk104_engn_status(engn, &status);
+ if (status.busy && status.chsw)
+ return true;
- spin_unlock_irqrestore(&fifo->base.lock, flags);
+ return false;
}
-static const struct nvkm_enum
-gk104_fifo_bind_reason[] = {
- { 0x01, "BIND_NOT_UNBOUND" },
- { 0x02, "SNOOP_WITHOUT_BAR1" },
- { 0x03, "UNBIND_WHILE_RUNNING" },
- { 0x05, "INVALID_RUNLIST" },
- { 0x06, "INVALID_CTX_TGT" },
- { 0x0b, "UNBIND_WHILE_PARKED" },
- {}
+const struct nvkm_engn_func
+gk104_engn = {
+ .chsw = gk104_engn_chsw,
+ .cxid = gk104_engn_cxid,
+ .mmu_fault_trigger = gf100_engn_mmu_fault_trigger,
+ .mmu_fault_triggered = gf100_engn_mmu_fault_triggered,
+ .ctor = gk104_ectx_ctor,
+ .bind = gk104_ectx_bind,
};
-void
-gk104_fifo_intr_bind(struct gk104_fifo *fifo)
+const struct nvkm_engn_func
+gk104_engn_ce = {
+ .chsw = gk104_engn_chsw,
+ .cxid = gk104_engn_cxid,
+ .mmu_fault_trigger = gf100_engn_mmu_fault_trigger,
+ .mmu_fault_triggered = gf100_engn_mmu_fault_triggered,
+};
+
+bool
+gk104_runq_idle(struct nvkm_runq *runq)
{
- struct nvkm_subdev *subdev = &fifo->base.engine.subdev;
- struct nvkm_device *device = subdev->device;
- u32 intr = nvkm_rd32(device, 0x00252c);
- u32 code = intr & 0x000000ff;
- const struct nvkm_enum *en =
- nvkm_enum_find(gk104_fifo_bind_reason, code);
+ struct nvkm_device *device = runq->fifo->engine.subdev.device;
- nvkm_error(subdev, "BIND_ERROR %02x [%s]\n", code, en ? en->name : "");
+ return !(nvkm_rd32(device, 0x003080 + (runq->id * 4)) & 0x0000e000);
}
-static const struct nvkm_enum
-gk104_fifo_sched_reason[] = {
- { 0x0a, "CTXSW_TIMEOUT" },
+static const struct nvkm_bitfield
+gk104_runq_intr_1_names[] = {
+ { 0x00000001, "HCE_RE_ILLEGAL_OP" },
+ { 0x00000002, "HCE_RE_ALIGNB" },
+ { 0x00000004, "HCE_PRIV" },
+ { 0x00000008, "HCE_ILLEGAL_MTHD" },
+ { 0x00000010, "HCE_ILLEGAL_CLASS" },
{}
};
-static void
-gk104_fifo_intr_sched_ctxsw(struct gk104_fifo *fifo)
+static bool
+gk104_runq_intr_1(struct nvkm_runq *runq)
{
- struct nvkm_device *device = fifo->base.engine.subdev.device;
- unsigned long flags, engm = 0;
- u32 engn;
-
- /* We need to ACK the SCHED_ERROR here, and prevent it reasserting,
- * as MMU_FAULT cannot be triggered while it's pending.
- */
- spin_lock_irqsave(&fifo->base.lock, flags);
- nvkm_mask(device, 0x002140, 0x00000100, 0x00000000);
- nvkm_wr32(device, 0x002100, 0x00000100);
-
- for (engn = 0; engn < fifo->engine_nr; engn++) {
- struct gk104_fifo_engine_status status;
-
- gk104_fifo_engine_status(fifo, engn, &status);
- if (!status.busy || !status.chsw)
- continue;
-
- engm |= BIT(engn);
- }
-
- for_each_set_bit(engn, &engm, fifo->engine_nr)
- gk104_fifo_recover_engn(fifo, engn);
-
- nvkm_mask(device, 0x002140, 0x00000100, 0x00000100);
- spin_unlock_irqrestore(&fifo->base.lock, flags);
-}
-
-static void
-gk104_fifo_intr_sched(struct gk104_fifo *fifo)
-{
- struct nvkm_subdev *subdev = &fifo->base.engine.subdev;
+ struct nvkm_subdev *subdev = &runq->fifo->engine.subdev;
struct nvkm_device *device = subdev->device;
- u32 intr = nvkm_rd32(device, 0x00254c);
- u32 code = intr & 0x000000ff;
- const struct nvkm_enum *en =
- nvkm_enum_find(gk104_fifo_sched_reason, code);
-
- nvkm_error(subdev, "SCHED_ERROR %02x [%s]\n", code, en ? en->name : "");
+ u32 mask = nvkm_rd32(device, 0x04014c + (runq->id * 0x2000));
+ u32 stat = nvkm_rd32(device, 0x040148 + (runq->id * 0x2000)) & mask;
+ u32 chid = nvkm_rd32(device, 0x040120 + (runq->id * 0x2000)) & 0xfff;
+ char msg[128];
- switch (code) {
- case 0x0a:
- gk104_fifo_intr_sched_ctxsw(fifo);
- break;
- default:
- break;
+ if (stat & 0x80000000) {
+ if (runq->func->intr_1_ctxnotvalid &&
+ runq->func->intr_1_ctxnotvalid(runq, chid))
+ stat &= ~0x80000000;
}
-}
-void
-gk104_fifo_intr_chsw(struct gk104_fifo *fifo)
-{
- struct nvkm_subdev *subdev = &fifo->base.engine.subdev;
- struct nvkm_device *device = subdev->device;
- u32 stat = nvkm_rd32(device, 0x00256c);
- nvkm_error(subdev, "CHSW_ERROR %08x\n", stat);
- nvkm_wr32(device, 0x00256c, stat);
-}
+ if (stat) {
+ nvkm_snprintbf(msg, sizeof(msg), gk104_runq_intr_1_names, stat);
+ nvkm_error(subdev, "PBDMA%d: %08x [%s] ch %d %08x %08x\n",
+ runq->id, stat, msg, chid,
+ nvkm_rd32(device, 0x040150 + (runq->id * 0x2000)),
+ nvkm_rd32(device, 0x040154 + (runq->id * 0x2000)));
+ }
-void
-gk104_fifo_intr_dropped_fault(struct gk104_fifo *fifo)
-{
- struct nvkm_subdev *subdev = &fifo->base.engine.subdev;
- struct nvkm_device *device = subdev->device;
- u32 stat = nvkm_rd32(device, 0x00259c);
- nvkm_error(subdev, "DROPPED_MMU_FAULT %08x\n", stat);
+ nvkm_wr32(device, 0x040148 + (runq->id * 0x2000), stat);
+ return true;
}
-static const struct nvkm_bitfield gk104_fifo_pbdma_intr_0[] = {
+const struct nvkm_bitfield
+gk104_runq_intr_0_names[] = {
{ 0x00000001, "MEMREQ" },
{ 0x00000002, "MEMACK_TIMEOUT" },
{ 0x00000004, "MEMACK_EXTRA" },
@@ -691,430 +366,111 @@ static const struct nvkm_bitfield gk104_fifo_pbdma_intr_0[] = {
{}
};
-void
-gk104_fifo_intr_pbdma_0(struct gk104_fifo *fifo, int unit)
+bool
+gk104_runq_intr(struct nvkm_runq *runq, struct nvkm_runl *null)
{
- struct nvkm_subdev *subdev = &fifo->base.engine.subdev;
- struct nvkm_device *device = subdev->device;
- u32 mask = nvkm_rd32(device, 0x04010c + (unit * 0x2000));
- u32 stat = nvkm_rd32(device, 0x040108 + (unit * 0x2000)) & mask;
- u32 addr = nvkm_rd32(device, 0x0400c0 + (unit * 0x2000));
- u32 data = nvkm_rd32(device, 0x0400c4 + (unit * 0x2000));
- u32 chid = nvkm_rd32(device, 0x040120 + (unit * 0x2000)) & 0xfff;
- u32 subc = (addr & 0x00070000) >> 16;
- u32 mthd = (addr & 0x00003ffc);
- u32 show = stat;
- struct nvkm_fifo_chan *chan;
- unsigned long flags;
- char msg[128];
-
- if (stat & 0x00800000) {
- if (device->sw) {
- if (nvkm_sw_mthd(device->sw, chid, subc, mthd, data))
- show &= ~0x00800000;
- }
- }
-
- nvkm_wr32(device, 0x0400c0 + (unit * 0x2000), 0x80600008);
-
- if (show) {
- nvkm_snprintbf(msg, sizeof(msg), gk104_fifo_pbdma_intr_0, show);
- chan = nvkm_fifo_chan_chid(&fifo->base, chid, &flags);
- nvkm_error(subdev, "PBDMA%d: %08x [%s] ch %d [%010llx %s] "
- "subc %d mthd %04x data %08x\n",
- unit, show, msg, chid, chan ? chan->inst->addr : 0,
- chan ? chan->object.client->name : "unknown",
- subc, mthd, data);
- nvkm_fifo_chan_put(&fifo->base, flags, &chan);
- }
+ bool intr0 = gf100_runq_intr(runq, NULL);
+ bool intr1 = gk104_runq_intr_1(runq);
- nvkm_wr32(device, 0x040108 + (unit * 0x2000), stat);
+ return intr0 || intr1;
}
-static const struct nvkm_bitfield gk104_fifo_pbdma_intr_1[] = {
- { 0x00000001, "HCE_RE_ILLEGAL_OP" },
- { 0x00000002, "HCE_RE_ALIGNB" },
- { 0x00000004, "HCE_PRIV" },
- { 0x00000008, "HCE_ILLEGAL_MTHD" },
- { 0x00000010, "HCE_ILLEGAL_CLASS" },
- {}
-};
-
void
-gk104_fifo_intr_pbdma_1(struct gk104_fifo *fifo, int unit)
+gk104_runq_init(struct nvkm_runq *runq)
{
- struct nvkm_subdev *subdev = &fifo->base.engine.subdev;
- struct nvkm_device *device = subdev->device;
- u32 mask = nvkm_rd32(device, 0x04014c + (unit * 0x2000));
- u32 stat = nvkm_rd32(device, 0x040148 + (unit * 0x2000)) & mask;
- u32 chid = nvkm_rd32(device, 0x040120 + (unit * 0x2000)) & 0xfff;
- char msg[128];
+ struct nvkm_device *device = runq->fifo->engine.subdev.device;
- if (stat) {
- nvkm_snprintbf(msg, sizeof(msg), gk104_fifo_pbdma_intr_1, stat);
- nvkm_error(subdev, "PBDMA%d: %08x [%s] ch %d %08x %08x\n",
- unit, stat, msg, chid,
- nvkm_rd32(device, 0x040150 + (unit * 0x2000)),
- nvkm_rd32(device, 0x040154 + (unit * 0x2000)));
- }
+ gf100_runq_init(runq);
- nvkm_wr32(device, 0x040148 + (unit * 0x2000), stat);
+ nvkm_wr32(device, 0x040148 + (runq->id * 0x2000), 0xffffffff); /* HCE.INTR */
+ nvkm_wr32(device, 0x04014c + (runq->id * 0x2000), 0xffffffff); /* HCE.INTREN */
}
-void
-gk104_fifo_intr_runlist(struct gk104_fifo *fifo)
+static u32
+gk104_runq_runm(struct nvkm_runq *runq)
{
- struct nvkm_device *device = fifo->base.engine.subdev.device;
- u32 mask = nvkm_rd32(device, 0x002a00);
- while (mask) {
- int runl = __ffs(mask);
- wake_up(&fifo->runlist[runl].wait);
- nvkm_wr32(device, 0x002a00, 1 << runl);
- mask &= ~(1 << runl);
- }
+ return nvkm_rd32(runq->fifo->engine.subdev.device, 0x002390 + (runq->id * 0x04));
}
+const struct nvkm_runq_func
+gk104_runq = {
+ .init = gk104_runq_init,
+ .intr = gk104_runq_intr,
+ .intr_0_names = gk104_runq_intr_0_names,
+ .idle = gk104_runq_idle,
+};
+
void
-gk104_fifo_intr_engine(struct gk104_fifo *fifo)
+gk104_runl_fault_clear(struct nvkm_runl *runl)
{
- nvkm_fifo_uevent(&fifo->base);
-}
-
-static void
-gk104_fifo_intr(struct nvkm_fifo *base)
-{
- struct gk104_fifo *fifo = gk104_fifo(base);
- struct nvkm_subdev *subdev = &fifo->base.engine.subdev;
- struct nvkm_device *device = subdev->device;
- u32 mask = nvkm_rd32(device, 0x002140);
- u32 stat = nvkm_rd32(device, 0x002100) & mask;
-
- if (stat & 0x00000001) {
- gk104_fifo_intr_bind(fifo);
- nvkm_wr32(device, 0x002100, 0x00000001);
- stat &= ~0x00000001;
- }
-
- if (stat & 0x00000010) {
- nvkm_error(subdev, "PIO_ERROR\n");
- nvkm_wr32(device, 0x002100, 0x00000010);
- stat &= ~0x00000010;
- }
-
- if (stat & 0x00000100) {
- gk104_fifo_intr_sched(fifo);
- nvkm_wr32(device, 0x002100, 0x00000100);
- stat &= ~0x00000100;
- }
-
- if (stat & 0x00010000) {
- gk104_fifo_intr_chsw(fifo);
- nvkm_wr32(device, 0x002100, 0x00010000);
- stat &= ~0x00010000;
- }
-
- if (stat & 0x00800000) {
- nvkm_error(subdev, "FB_FLUSH_TIMEOUT\n");
- nvkm_wr32(device, 0x002100, 0x00800000);
- stat &= ~0x00800000;
- }
-
- if (stat & 0x01000000) {
- nvkm_error(subdev, "LB_ERROR\n");
- nvkm_wr32(device, 0x002100, 0x01000000);
- stat &= ~0x01000000;
- }
-
- if (stat & 0x08000000) {
- gk104_fifo_intr_dropped_fault(fifo);
- nvkm_wr32(device, 0x002100, 0x08000000);
- stat &= ~0x08000000;
- }
-
- if (stat & 0x10000000) {
- u32 mask = nvkm_rd32(device, 0x00259c);
- while (mask) {
- u32 unit = __ffs(mask);
- fifo->func->intr.fault(&fifo->base, unit);
- nvkm_wr32(device, 0x00259c, (1 << unit));
- mask &= ~(1 << unit);
- }
- stat &= ~0x10000000;
- }
-
- if (stat & 0x20000000) {
- u32 mask = nvkm_rd32(device, 0x0025a0);
- while (mask) {
- u32 unit = __ffs(mask);
- gk104_fifo_intr_pbdma_0(fifo, unit);
- gk104_fifo_intr_pbdma_1(fifo, unit);
- nvkm_wr32(device, 0x0025a0, (1 << unit));
- mask &= ~(1 << unit);
- }
- stat &= ~0x20000000;
- }
-
- if (stat & 0x40000000) {
- gk104_fifo_intr_runlist(fifo);
- stat &= ~0x40000000;
- }
-
- if (stat & 0x80000000) {
- nvkm_wr32(device, 0x002100, 0x80000000);
- gk104_fifo_intr_engine(fifo);
- stat &= ~0x80000000;
- }
-
- if (stat) {
- nvkm_error(subdev, "INTR %08x\n", stat);
- nvkm_mask(device, 0x002140, stat, 0x00000000);
- nvkm_wr32(device, 0x002100, stat);
- }
+ nvkm_wr32(runl->fifo->engine.subdev.device, 0x00262c, BIT(runl->id));
}
void
-gk104_fifo_fini(struct nvkm_fifo *base)
+gk104_runl_allow(struct nvkm_runl *runl, u32 engm)
{
- struct gk104_fifo *fifo = gk104_fifo(base);
- struct nvkm_device *device = fifo->base.engine.subdev.device;
- flush_work(&fifo->recover.work);
- /* allow mmu fault interrupts, even when we're not using fifo */
- nvkm_mask(device, 0x002140, 0x10000000, 0x10000000);
+ nvkm_mask(runl->fifo->engine.subdev.device, 0x002630, BIT(runl->id), 0x00000000);
}
-int
-gk104_fifo_info(struct nvkm_fifo *base, u64 mthd, u64 *data)
+void
+gk104_runl_block(struct nvkm_runl *runl, u32 engm)
{
- struct gk104_fifo *fifo = gk104_fifo(base);
- switch (mthd) {
- case NV_DEVICE_HOST_RUNLISTS:
- *data = (1ULL << fifo->runlist_nr) - 1;
- return 0;
- case NV_DEVICE_HOST_RUNLIST_ENGINES: {
- if (*data < fifo->runlist_nr) {
- unsigned long engm = fifo->runlist[*data].engm;
- struct nvkm_engine *engine;
- int engn;
- *data = 0;
- for_each_set_bit(engn, &engm, fifo->engine_nr) {
- if ((engine = fifo->engine[engn].engine)) {
-#define CASE(n) case NVKM_ENGINE_##n: *data |= NV_DEVICE_HOST_RUNLIST_ENGINES_##n; break
- switch (engine->subdev.type) {
- CASE(SW );
- CASE(GR );
- CASE(MPEG );
- CASE(ME );
- CASE(CIPHER);
- CASE(BSP );
- CASE(VP );
- CASE(CE );
- CASE(SEC );
- CASE(MSVLD );
- CASE(MSPDEC);
- CASE(MSPPP );
- CASE(MSENC );
- CASE(VIC );
- CASE(SEC2 );
- CASE(NVDEC );
- CASE(NVENC );
- default:
- WARN_ON(1);
- break;
- }
- }
- }
- return 0;
- }
- }
- return -EINVAL;
- default:
- return -EINVAL;
- }
+ nvkm_mask(runl->fifo->engine.subdev.device, 0x002630, BIT(runl->id), BIT(runl->id));
}
-int
-gk104_fifo_oneinit(struct nvkm_fifo *base)
+bool
+gk104_runl_pending(struct nvkm_runl *runl)
{
- struct gk104_fifo *fifo = gk104_fifo(base);
- struct nvkm_subdev *subdev = &fifo->base.engine.subdev;
- struct nvkm_device *device = subdev->device;
- struct nvkm_vmm *bar = nvkm_bar_bar1_vmm(device);
- struct nvkm_top_device *tdev;
- int pbid, ret, i, j;
- u32 *map;
-
- fifo->pbdma_nr = fifo->func->pbdma->nr(fifo);
- nvkm_debug(subdev, "%d PBDMA(s)\n", fifo->pbdma_nr);
-
- /* Read PBDMA->runlist(s) mapping from HW. */
- if (!(map = kcalloc(fifo->pbdma_nr, sizeof(*map), GFP_KERNEL)))
- return -ENOMEM;
+ struct nvkm_device *device = runl->fifo->engine.subdev.device;
- for (i = 0; i < fifo->pbdma_nr; i++)
- map[i] = nvkm_rd32(device, 0x002390 + (i * 0x04));
-
- /* Determine runlist configuration from topology device info. */
- list_for_each_entry(tdev, &device->top->device, head) {
- const int engn = tdev->engine;
- char _en[16], *en;
-
- if (engn < 0)
- continue;
-
- /* Determine which PBDMA handles requests for this engine. */
- for (j = 0, pbid = -1; j < fifo->pbdma_nr; j++) {
- if (map[j] & BIT(tdev->runlist)) {
- pbid = j;
- break;
- }
- }
-
- fifo->engine[engn].engine = nvkm_device_engine(device, tdev->type, tdev->inst);
- if (!fifo->engine[engn].engine) {
- snprintf(_en, sizeof(_en), "%s, %d",
- nvkm_subdev_type[tdev->type], tdev->inst);
- en = _en;
- } else {
- en = fifo->engine[engn].engine->subdev.name;
- }
-
- nvkm_debug(subdev, "engine %2d: runlist %2d pbdma %2d (%s)\n",
- tdev->engine, tdev->runlist, pbid, en);
-
- fifo->engine[engn].runl = tdev->runlist;
- fifo->engine[engn].pbid = pbid;
- fifo->engine_nr = max(fifo->engine_nr, engn + 1);
- fifo->runlist[tdev->runlist].engm |= BIT(engn);
- fifo->runlist[tdev->runlist].engm_sw |= BIT(engn);
- if (tdev->type == NVKM_ENGINE_GR)
- fifo->runlist[tdev->runlist].engm_sw |= BIT(GK104_FIFO_ENGN_SW);
- fifo->runlist_nr = max(fifo->runlist_nr, tdev->runlist + 1);
- }
-
- kfree(map);
-
- for (i = 0; i < fifo->runlist_nr; i++) {
- for (j = 0; j < ARRAY_SIZE(fifo->runlist[i].mem); j++) {
- ret = nvkm_memory_new(device, NVKM_MEM_TARGET_INST,
- fifo->base.nr * 2/* TSG+chan */ *
- fifo->func->runlist->size,
- 0x1000, false,
- &fifo->runlist[i].mem[j]);
- if (ret)
- return ret;
- }
-
- init_waitqueue_head(&fifo->runlist[i].wait);
- INIT_LIST_HEAD(&fifo->runlist[i].cgrp);
- INIT_LIST_HEAD(&fifo->runlist[i].chan);
- }
-
- ret = nvkm_memory_new(device, NVKM_MEM_TARGET_INST,
- fifo->base.nr * 0x200, 0x1000, true,
- &fifo->user.mem);
- if (ret)
- return ret;
-
- ret = nvkm_vmm_get(bar, 12, nvkm_memory_size(fifo->user.mem),
- &fifo->user.bar);
- if (ret)
- return ret;
-
- return nvkm_memory_map(fifo->user.mem, 0, bar, fifo->user.bar, NULL, 0);
+ return nvkm_rd32(device, 0x002284 + (runl->id * 0x08)) & 0x00100000;
}
void
-gk104_fifo_init(struct nvkm_fifo *base)
+gk104_runl_commit(struct nvkm_runl *runl, struct nvkm_memory *memory, u32 start, int count)
{
- struct gk104_fifo *fifo = gk104_fifo(base);
- struct nvkm_device *device = fifo->base.engine.subdev.device;
- int i;
-
- /* Enable PBDMAs. */
- fifo->func->pbdma->init(fifo);
-
- /* PBDMA[n] */
- for (i = 0; i < fifo->pbdma_nr; i++) {
- nvkm_mask(device, 0x04013c + (i * 0x2000), 0x10000100, 0x00000000);
- nvkm_wr32(device, 0x040108 + (i * 0x2000), 0xffffffff); /* INTR */
- nvkm_wr32(device, 0x04010c + (i * 0x2000), 0xfffffeff); /* INTREN */
- }
-
- /* PBDMA[n].HCE */
- for (i = 0; i < fifo->pbdma_nr; i++) {
- nvkm_wr32(device, 0x040148 + (i * 0x2000), 0xffffffff); /* INTR */
- nvkm_wr32(device, 0x04014c + (i * 0x2000), 0xffffffff); /* INTREN */
- }
-
- nvkm_wr32(device, 0x002254, 0x10000000 | fifo->user.bar->addr >> 12);
-
- if (fifo->func->pbdma->init_timeout)
- fifo->func->pbdma->init_timeout(fifo);
-
- nvkm_wr32(device, 0x002100, 0xffffffff);
- nvkm_wr32(device, 0x002140, 0x7fffffff);
-}
-
-void *
-gk104_fifo_dtor(struct nvkm_fifo *base)
-{
- struct gk104_fifo *fifo = gk104_fifo(base);
- struct nvkm_device *device = fifo->base.engine.subdev.device;
- int i;
-
- nvkm_vmm_put(nvkm_bar_bar1_vmm(device), &fifo->user.bar);
- nvkm_memory_unref(&fifo->user.mem);
+ struct nvkm_fifo *fifo = runl->fifo;
+ struct nvkm_device *device = fifo->engine.subdev.device;
+ u64 addr = nvkm_memory_addr(memory) + start;
+ int target;
- for (i = 0; i < fifo->runlist_nr; i++) {
- nvkm_memory_unref(&fifo->runlist[i].mem[1]);
- nvkm_memory_unref(&fifo->runlist[i].mem[0]);
+ switch (nvkm_memory_target(memory)) {
+ case NVKM_MEM_TARGET_VRAM: target = 0; break;
+ case NVKM_MEM_TARGET_NCOH: target = 3; break;
+ default:
+ WARN_ON(1);
+ return;
}
- return fifo;
+ spin_lock_irq(&fifo->lock);
+ nvkm_wr32(device, 0x002270, (target << 28) | (addr >> 12));
+ nvkm_wr32(device, 0x002274, (runl->id << 20) | count);
+ spin_unlock_irq(&fifo->lock);
}
-static const struct nvkm_fifo_func
-gk104_fifo_ = {
- .dtor = gk104_fifo_dtor,
- .oneinit = gk104_fifo_oneinit,
- .info = gk104_fifo_info,
- .init = gk104_fifo_init,
- .fini = gk104_fifo_fini,
- .intr = gk104_fifo_intr,
- .fault = gk104_fifo_fault,
- .engine_id = gk104_fifo_engine_id,
- .id_engine = gk104_fifo_id_engine,
- .uevent_init = gk104_fifo_uevent_init,
- .uevent_fini = gk104_fifo_uevent_fini,
- .recover_chan = gk104_fifo_recover_chan,
- .class_get = gk104_fifo_class_get,
- .class_new = gk104_fifo_class_new,
-};
-
-int
-gk104_fifo_new_(const struct gk104_fifo_func *func, struct nvkm_device *device,
- enum nvkm_subdev_type type, int inst, int nr, struct nvkm_fifo **pfifo)
+void
+gk104_runl_insert_chan(struct nvkm_chan *chan, struct nvkm_memory *memory, u64 offset)
{
- struct gk104_fifo *fifo;
-
- if (!(fifo = kzalloc(sizeof(*fifo), GFP_KERNEL)))
- return -ENOMEM;
- fifo->func = func;
- INIT_WORK(&fifo->recover.work, gk104_fifo_recover_work);
- *pfifo = &fifo->base;
-
- return nvkm_fifo_ctor(&gk104_fifo_, device, type, inst, nr, &fifo->base);
+ nvkm_wo32(memory, offset + 0, chan->id);
+ nvkm_wo32(memory, offset + 4, 0x00000000);
}
-const struct nvkm_enum
-gk104_fifo_fault_access[] = {
- { 0x0, "READ" },
- { 0x1, "WRITE" },
- {}
+static const struct nvkm_runl_func
+gk104_runl = {
+ .size = 8,
+ .update = nv50_runl_update,
+ .insert_chan = gk104_runl_insert_chan,
+ .commit = gk104_runl_commit,
+ .wait = nv50_runl_wait,
+ .pending = gk104_runl_pending,
+ .block = gk104_runl_block,
+ .allow = gk104_runl_allow,
+ .fault_clear = gk104_runl_fault_clear,
+ .preempt_pending = gf100_runl_preempt_pending,
};
-const struct nvkm_enum
-gk104_fifo_fault_engine[] = {
+static const struct nvkm_enum
+gk104_fifo_mmu_fault_engine[] = {
{ 0x00, "GR", NULL, NVKM_ENGINE_GR },
{ 0x01, "DISPLAY" },
{ 0x02, "CAPTURE" },
@@ -1122,14 +478,14 @@ gk104_fifo_fault_engine[] = {
{ 0x04, "BAR1", NULL, NVKM_SUBDEV_BAR },
{ 0x05, "BAR2", NULL, NVKM_SUBDEV_INSTMEM },
{ 0x06, "SCHED" },
- { 0x07, "HOST0", NULL, NVKM_ENGINE_FIFO },
- { 0x08, "HOST1", NULL, NVKM_ENGINE_FIFO },
- { 0x09, "HOST2", NULL, NVKM_ENGINE_FIFO },
- { 0x0a, "HOST3", NULL, NVKM_ENGINE_FIFO },
- { 0x0b, "HOST4", NULL, NVKM_ENGINE_FIFO },
- { 0x0c, "HOST5", NULL, NVKM_ENGINE_FIFO },
- { 0x0d, "HOST6", NULL, NVKM_ENGINE_FIFO },
- { 0x0e, "HOST7", NULL, NVKM_ENGINE_FIFO },
+ { 0x07, "HOST0" },
+ { 0x08, "HOST1" },
+ { 0x09, "HOST2" },
+ { 0x0a, "HOST3" },
+ { 0x0b, "HOST4" },
+ { 0x0c, "HOST5" },
+ { 0x0d, "HOST6" },
+ { 0x0e, "HOST7" },
{ 0x0f, "HOSTSR" },
{ 0x10, "MSVLD", NULL, NVKM_ENGINE_MSVLD },
{ 0x11, "MSPPP", NULL, NVKM_ENGINE_MSPPP },
@@ -1145,7 +501,7 @@ gk104_fifo_fault_engine[] = {
};
const struct nvkm_enum
-gk104_fifo_fault_reason[] = {
+gk104_fifo_mmu_fault_reason[] = {
{ 0x00, "PDE" },
{ 0x01, "PDE_SIZE" },
{ 0x02, "PTE" },
@@ -1166,7 +522,7 @@ gk104_fifo_fault_reason[] = {
};
const struct nvkm_enum
-gk104_fifo_fault_hubclient[] = {
+gk104_fifo_mmu_fault_hubclient[] = {
{ 0x00, "VIP" },
{ 0x01, "CE0" },
{ 0x02, "CE1" },
@@ -1203,7 +559,7 @@ gk104_fifo_fault_hubclient[] = {
};
const struct nvkm_enum
-gk104_fifo_fault_gpcclient[] = {
+gk104_fifo_mmu_fault_gpcclient[] = {
{ 0x00, "L1_0" }, { 0x01, "T1_0" }, { 0x02, "PE_0" },
{ 0x03, "L1_1" }, { 0x04, "T1_1" }, { 0x05, "PE_1" },
{ 0x06, "L1_2" }, { 0x07, "T1_2" }, { 0x08, "PE_2" },
@@ -1228,22 +584,250 @@ gk104_fifo_fault_gpcclient[] = {
{}
};
-static const struct gk104_fifo_func
+const struct nvkm_fifo_func_mmu_fault
+gk104_fifo_mmu_fault = {
+ .recover = gf100_fifo_mmu_fault_recover,
+ .access = gf100_fifo_mmu_fault_access,
+ .engine = gk104_fifo_mmu_fault_engine,
+ .reason = gk104_fifo_mmu_fault_reason,
+ .hubclient = gk104_fifo_mmu_fault_hubclient,
+ .gpcclient = gk104_fifo_mmu_fault_gpcclient,
+};
+
+static const struct nvkm_enum
+gk104_fifo_intr_bind_reason[] = {
+ { 0x01, "BIND_NOT_UNBOUND" },
+ { 0x02, "SNOOP_WITHOUT_BAR1" },
+ { 0x03, "UNBIND_WHILE_RUNNING" },
+ { 0x05, "INVALID_RUNLIST" },
+ { 0x06, "INVALID_CTX_TGT" },
+ { 0x0b, "UNBIND_WHILE_PARKED" },
+ {}
+};
+
+void
+gk104_fifo_intr_bind(struct nvkm_fifo *fifo)
+{
+ struct nvkm_subdev *subdev = &fifo->engine.subdev;
+ u32 intr = nvkm_rd32(subdev->device, 0x00252c);
+ u32 code = intr & 0x000000ff;
+ const struct nvkm_enum *en = nvkm_enum_find(gk104_fifo_intr_bind_reason, code);
+
+ nvkm_error(subdev, "BIND_ERROR %02x [%s]\n", code, en ? en->name : "");
+}
+
+void
+gk104_fifo_intr_chsw(struct nvkm_fifo *fifo)
+{
+ struct nvkm_subdev *subdev = &fifo->engine.subdev;
+ struct nvkm_device *device = subdev->device;
+ u32 stat = nvkm_rd32(device, 0x00256c);
+
+ nvkm_error(subdev, "CHSW_ERROR %08x\n", stat);
+ nvkm_wr32(device, 0x00256c, stat);
+}
+
+static void
+gk104_fifo_intr_dropped_fault(struct nvkm_fifo *fifo)
+{
+ struct nvkm_subdev *subdev = &fifo->engine.subdev;
+ u32 stat = nvkm_rd32(subdev->device, 0x00259c);
+
+ nvkm_error(subdev, "DROPPED_MMU_FAULT %08x\n", stat);
+}
+
+void
+gk104_fifo_intr_runlist(struct nvkm_fifo *fifo)
+{
+ struct nvkm_device *device = fifo->engine.subdev.device;
+ struct nvkm_runl *runl;
+ u32 mask = nvkm_rd32(device, 0x002a00);
+
+ nvkm_runl_foreach_cond(runl, fifo, mask & BIT(runl->id)) {
+ nvkm_wr32(device, 0x002a00, BIT(runl->id));
+ }
+}
+
+irqreturn_t
+gk104_fifo_intr(struct nvkm_inth *inth)
+{
+ struct nvkm_fifo *fifo = container_of(inth, typeof(*fifo), engine.subdev.inth);
+ struct nvkm_subdev *subdev = &fifo->engine.subdev;
+ struct nvkm_device *device = subdev->device;
+ u32 mask = nvkm_rd32(device, 0x002140);
+ u32 stat = nvkm_rd32(device, 0x002100) & mask;
+
+ if (stat & 0x00000001) {
+ gk104_fifo_intr_bind(fifo);
+ nvkm_wr32(device, 0x002100, 0x00000001);
+ stat &= ~0x00000001;
+ }
+
+ if (stat & 0x00000010) {
+ nvkm_error(subdev, "PIO_ERROR\n");
+ nvkm_wr32(device, 0x002100, 0x00000010);
+ stat &= ~0x00000010;
+ }
+
+ if (stat & 0x00000100) {
+ gf100_fifo_intr_sched(fifo);
+ nvkm_wr32(device, 0x002100, 0x00000100);
+ stat &= ~0x00000100;
+ }
+
+ if (stat & 0x00010000) {
+ gk104_fifo_intr_chsw(fifo);
+ nvkm_wr32(device, 0x002100, 0x00010000);
+ stat &= ~0x00010000;
+ }
+
+ if (stat & 0x00800000) {
+ nvkm_error(subdev, "FB_FLUSH_TIMEOUT\n");
+ nvkm_wr32(device, 0x002100, 0x00800000);
+ stat &= ~0x00800000;
+ }
+
+ if (stat & 0x01000000) {
+ nvkm_error(subdev, "LB_ERROR\n");
+ nvkm_wr32(device, 0x002100, 0x01000000);
+ stat &= ~0x01000000;
+ }
+
+ if (stat & 0x08000000) {
+ gk104_fifo_intr_dropped_fault(fifo);
+ nvkm_wr32(device, 0x002100, 0x08000000);
+ stat &= ~0x08000000;
+ }
+
+ if (stat & 0x10000000) {
+ gf100_fifo_intr_mmu_fault(fifo);
+ stat &= ~0x10000000;
+ }
+
+ if (stat & 0x20000000) {
+ if (gf100_fifo_intr_pbdma(fifo))
+ stat &= ~0x20000000;
+ }
+
+ if (stat & 0x40000000) {
+ gk104_fifo_intr_runlist(fifo);
+ stat &= ~0x40000000;
+ }
+
+ if (stat & 0x80000000) {
+ nvkm_wr32(device, 0x002100, 0x80000000);
+ nvkm_event_ntfy(&fifo->nonstall.event, 0, NVKM_FIFO_NONSTALL_EVENT);
+ stat &= ~0x80000000;
+ }
+
+ if (stat) {
+ nvkm_error(subdev, "INTR %08x\n", stat);
+ spin_lock(&fifo->lock);
+ nvkm_mask(device, 0x002140, stat, 0x00000000);
+ spin_unlock(&fifo->lock);
+ nvkm_wr32(device, 0x002100, stat);
+ }
+
+ return IRQ_HANDLED;
+}
+
+void
+gk104_fifo_init_pbdmas(struct nvkm_fifo *fifo, u32 mask)
+{
+ struct nvkm_device *device = fifo->engine.subdev.device;
+
+ nvkm_wr32(device, 0x000204, mask);
+ nvkm_mask(device, 0x002a04, 0xbfffffff, 0xbfffffff);
+}
+
+void
+gk104_fifo_init(struct nvkm_fifo *fifo)
+{
+ struct nvkm_device *device = fifo->engine.subdev.device;
+
+ if (fifo->func->chan.func->userd->bar == 1)
+ nvkm_wr32(device, 0x002254, 0x10000000 | fifo->userd.bar1->addr >> 12);
+
+ nvkm_wr32(device, 0x002100, 0xffffffff);
+ nvkm_wr32(device, 0x002140, 0x7fffffff);
+}
+
+int
+gk104_fifo_runl_ctor(struct nvkm_fifo *fifo)
+{
+ struct nvkm_device *device = fifo->engine.subdev.device;
+ struct nvkm_top_device *tdev;
+ struct nvkm_runl *runl;
+ struct nvkm_runq *runq;
+ const struct nvkm_engn_func *func;
+
+ nvkm_list_foreach(tdev, &device->top->device, head, tdev->runlist >= 0) {
+ runl = nvkm_runl_get(fifo, tdev->runlist, tdev->runlist);
+ if (!runl) {
+ runl = nvkm_runl_new(fifo, tdev->runlist, tdev->runlist, 0);
+ if (IS_ERR(runl))
+ return PTR_ERR(runl);
+
+ nvkm_runq_foreach_cond(runq, fifo, gk104_runq_runm(runq) & BIT(runl->id)) {
+ if (WARN_ON(runl->runq_nr == ARRAY_SIZE(runl->runq)))
+ return -ENOMEM;
+
+ runl->runq[runl->runq_nr++] = runq;
+ }
+
+ }
+
+ if (tdev->engine < 0)
+ continue;
+
+ switch (tdev->type) {
+ case NVKM_ENGINE_CE:
+ func = fifo->func->engn_ce;
+ break;
+ case NVKM_ENGINE_GR:
+ nvkm_runl_add(runl, 15, &gf100_engn_sw, NVKM_ENGINE_SW, 0);
+ fallthrough;
+ default:
+ func = fifo->func->engn;
+ break;
+ }
+
+ nvkm_runl_add(runl, tdev->engine, func, tdev->type, tdev->inst);
+ }
+
+ return 0;
+}
+
+int
+gk104_fifo_chid_nr(struct nvkm_fifo *fifo)
+{
+ return 4096;
+}
+
+static const struct nvkm_fifo_func
gk104_fifo = {
- .intr.fault = gf100_fifo_intr_fault,
- .pbdma = &gk104_fifo_pbdma,
- .fault.access = gk104_fifo_fault_access,
- .fault.engine = gk104_fifo_fault_engine,
- .fault.reason = gk104_fifo_fault_reason,
- .fault.hubclient = gk104_fifo_fault_hubclient,
- .fault.gpcclient = gk104_fifo_fault_gpcclient,
- .runlist = &gk104_fifo_runlist,
- .chan = {{0,0,KEPLER_CHANNEL_GPFIFO_A}, gk104_fifo_gpfifo_new },
+ .chid_nr = gk104_fifo_chid_nr,
+ .chid_ctor = gf100_fifo_chid_ctor,
+ .runq_nr = gf100_fifo_runq_nr,
+ .runl_ctor = gk104_fifo_runl_ctor,
+ .init = gk104_fifo_init,
+ .init_pbdmas = gk104_fifo_init_pbdmas,
+ .intr = gk104_fifo_intr,
+ .intr_mmu_fault_unit = gf100_fifo_intr_mmu_fault_unit,
+ .intr_ctxsw_timeout = gf100_fifo_intr_ctxsw_timeout,
+ .mmu_fault = &gk104_fifo_mmu_fault,
+ .nonstall = &gf100_fifo_nonstall,
+ .runl = &gk104_runl,
+ .runq = &gk104_runq,
+ .engn = &gk104_engn,
+ .engn_ce = &gk104_engn_ce,
+ .cgrp = {{ }, &nv04_cgrp },
+ .chan = {{ 0, 0, KEPLER_CHANNEL_GPFIFO_A }, &gk104_chan },
};
int
gk104_fifo_new(struct nvkm_device *device, enum nvkm_subdev_type type, int inst,
struct nvkm_fifo **pfifo)
{
- return gk104_fifo_new_(&gk104_fifo, device, type, inst, 4096, pfifo);
+ return nvkm_fifo_new_(&gk104_fifo, device, type, inst, pfifo);
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gk104.h b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gk104.h
deleted file mode 100644
index f2d12ae73944..000000000000
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gk104.h
+++ /dev/null
@@ -1,168 +0,0 @@
-/* SPDX-License-Identifier: MIT */
-#ifndef __GK104_FIFO_H__
-#define __GK104_FIFO_H__
-#define gk104_fifo(p) container_of((p), struct gk104_fifo, base)
-#include "priv.h"
-struct nvkm_fifo_cgrp;
-
-#include <core/enum.h>
-#include <subdev/mmu.h>
-
-struct gk104_fifo_chan;
-struct gk104_fifo {
- const struct gk104_fifo_func *func;
- struct nvkm_fifo base;
-
- struct {
- struct work_struct work;
- u32 engm;
- u32 runm;
- } recover;
-
- int pbdma_nr;
-
- struct {
- struct nvkm_engine *engine;
- int runl;
- int pbid;
- } engine[16];
- int engine_nr;
-
- struct {
- struct nvkm_memory *mem[2];
- int next;
- wait_queue_head_t wait;
- struct list_head cgrp;
- struct list_head chan;
- u32 engm;
- u32 engm_sw;
- } runlist[16];
- int runlist_nr;
-
- struct {
- struct nvkm_memory *mem;
- struct nvkm_vma *bar;
- } user;
-};
-
-struct gk104_fifo_func {
- struct {
- void (*fault)(struct nvkm_fifo *, int unit);
- } intr;
-
- const struct gk104_fifo_pbdma_func {
- int (*nr)(struct gk104_fifo *);
- void (*init)(struct gk104_fifo *);
- void (*init_timeout)(struct gk104_fifo *);
- } *pbdma;
-
- struct {
- const struct nvkm_enum *access;
- const struct nvkm_enum *engine;
- const struct nvkm_enum *reason;
- const struct nvkm_enum *hubclient;
- const struct nvkm_enum *gpcclient;
- } fault;
-
- const struct gk104_fifo_runlist_func {
- u8 size;
- void (*cgrp)(struct nvkm_fifo_cgrp *,
- struct nvkm_memory *, u32 offset);
- void (*chan)(struct gk104_fifo_chan *,
- struct nvkm_memory *, u32 offset);
- void (*commit)(struct gk104_fifo *, int runl,
- struct nvkm_memory *, int entries);
- } *runlist;
-
- struct gk104_fifo_user_user {
- struct nvkm_sclass user;
- int (*ctor)(const struct nvkm_oclass *, void *, u32,
- struct nvkm_object **);
- } user;
-
- struct gk104_fifo_chan_user {
- struct nvkm_sclass user;
- int (*ctor)(struct gk104_fifo *, const struct nvkm_oclass *,
- void *, u32, struct nvkm_object **);
- } chan;
- bool cgrp_force;
-};
-
-struct gk104_fifo_engine_status {
- bool busy;
- bool faulted;
- bool chsw;
- bool save;
- bool load;
- struct {
- bool tsg;
- u32 id;
- } prev, next, *chan;
-};
-
-int gk104_fifo_new_(const struct gk104_fifo_func *, struct nvkm_device *, enum nvkm_subdev_type,
- int index, int nr, struct nvkm_fifo **);
-void gk104_fifo_runlist_insert(struct gk104_fifo *, struct gk104_fifo_chan *);
-void gk104_fifo_runlist_remove(struct gk104_fifo *, struct gk104_fifo_chan *);
-void gk104_fifo_runlist_update(struct gk104_fifo *, int runl);
-void gk104_fifo_engine_status(struct gk104_fifo *fifo, int engn,
- struct gk104_fifo_engine_status *status);
-void gk104_fifo_intr_bind(struct gk104_fifo *fifo);
-void gk104_fifo_intr_chsw(struct gk104_fifo *fifo);
-void gk104_fifo_intr_dropped_fault(struct gk104_fifo *fifo);
-void gk104_fifo_intr_pbdma_0(struct gk104_fifo *fifo, int unit);
-void gk104_fifo_intr_pbdma_1(struct gk104_fifo *fifo, int unit);
-void gk104_fifo_intr_runlist(struct gk104_fifo *fifo);
-void gk104_fifo_intr_engine(struct gk104_fifo *fifo);
-void *gk104_fifo_dtor(struct nvkm_fifo *base);
-int gk104_fifo_oneinit(struct nvkm_fifo *base);
-int gk104_fifo_info(struct nvkm_fifo *base, u64 mthd, u64 *data);
-void gk104_fifo_init(struct nvkm_fifo *base);
-void gk104_fifo_fini(struct nvkm_fifo *base);
-int gk104_fifo_class_new(struct nvkm_fifo *base, const struct nvkm_oclass *oclass,
- void *argv, u32 argc, struct nvkm_object **pobject);
-int gk104_fifo_class_get(struct nvkm_fifo *base, int index,
- struct nvkm_oclass *oclass);
-void gk104_fifo_uevent_fini(struct nvkm_fifo *fifo);
-void gk104_fifo_uevent_init(struct nvkm_fifo *fifo);
-
-extern const struct gk104_fifo_pbdma_func gk104_fifo_pbdma;
-int gk104_fifo_pbdma_nr(struct gk104_fifo *);
-void gk104_fifo_pbdma_init(struct gk104_fifo *);
-extern const struct nvkm_enum gk104_fifo_fault_access[];
-extern const struct nvkm_enum gk104_fifo_fault_engine[];
-extern const struct nvkm_enum gk104_fifo_fault_reason[];
-extern const struct nvkm_enum gk104_fifo_fault_hubclient[];
-extern const struct nvkm_enum gk104_fifo_fault_gpcclient[];
-extern const struct gk104_fifo_runlist_func gk104_fifo_runlist;
-void gk104_fifo_runlist_chan(struct gk104_fifo_chan *,
- struct nvkm_memory *, u32);
-void gk104_fifo_runlist_commit(struct gk104_fifo *, int runl,
- struct nvkm_memory *, int);
-
-extern const struct gk104_fifo_runlist_func gk110_fifo_runlist;
-void gk110_fifo_runlist_cgrp(struct nvkm_fifo_cgrp *,
- struct nvkm_memory *, u32);
-
-extern const struct gk104_fifo_pbdma_func gk208_fifo_pbdma;
-void gk208_fifo_pbdma_init_timeout(struct gk104_fifo *);
-
-void gm107_fifo_intr_fault(struct nvkm_fifo *, int);
-extern const struct nvkm_enum gm107_fifo_fault_engine[];
-extern const struct gk104_fifo_runlist_func gm107_fifo_runlist;
-
-extern const struct gk104_fifo_pbdma_func gm200_fifo_pbdma;
-int gm200_fifo_pbdma_nr(struct gk104_fifo *);
-
-void gp100_fifo_intr_fault(struct nvkm_fifo *, int);
-extern const struct nvkm_enum gp100_fifo_fault_engine[];
-
-extern const struct nvkm_enum gv100_fifo_fault_access[];
-extern const struct nvkm_enum gv100_fifo_fault_reason[];
-extern const struct nvkm_enum gv100_fifo_fault_hubclient[];
-extern const struct nvkm_enum gv100_fifo_fault_gpcclient[];
-void gv100_fifo_runlist_cgrp(struct nvkm_fifo_cgrp *,
- struct nvkm_memory *, u32);
-void gv100_fifo_runlist_chan(struct gk104_fifo_chan *,
- struct nvkm_memory *, u32);
-#endif
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gk110.c b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gk110.c
index 915278c7e012..a8ff21cf7712 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gk110.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gk110.c
@@ -21,47 +21,112 @@
*
* Authors: Ben Skeggs
*/
-#include "gk104.h"
+#include "priv.h"
#include "cgrp.h"
-#include "changk104.h"
+#include "chan.h"
+#include "chid.h"
+#include "runl.h"
#include <core/memory.h>
+#include <subdev/timer.h>
#include <nvif/class.h>
void
-gk110_fifo_runlist_cgrp(struct nvkm_fifo_cgrp *cgrp,
- struct nvkm_memory *memory, u32 offset)
+gk110_chan_preempt(struct nvkm_chan *chan)
+{
+ struct nvkm_cgrp *cgrp = chan->cgrp;
+
+ if (cgrp->hw) {
+ cgrp->func->preempt(cgrp);
+ return;
+ }
+
+ gf100_chan_preempt(chan);
+}
+
+const struct nvkm_chan_func
+gk110_chan = {
+ .inst = &gf100_chan_inst,
+ .userd = &gk104_chan_userd,
+ .ramfc = &gk104_chan_ramfc,
+ .bind = gk104_chan_bind,
+ .unbind = gk104_chan_unbind,
+ .start = gk104_chan_start,
+ .stop = gk104_chan_stop,
+ .preempt = gk110_chan_preempt,
+};
+
+static void
+gk110_cgrp_preempt(struct nvkm_cgrp *cgrp)
+{
+ nvkm_wr32(cgrp->runl->fifo->engine.subdev.device, 0x002634, 0x01000000 | cgrp->id);
+}
+
+const struct nvkm_cgrp_func
+gk110_cgrp = {
+ .preempt = gk110_cgrp_preempt,
+};
+
+void
+gk110_runl_insert_cgrp(struct nvkm_cgrp *cgrp, struct nvkm_memory *memory, u64 offset)
{
nvkm_wo32(memory, offset + 0, (cgrp->chan_nr << 26) | (128 << 18) |
(3 << 14) | 0x00002000 | cgrp->id);
nvkm_wo32(memory, offset + 4, 0x00000000);
}
-const struct gk104_fifo_runlist_func
-gk110_fifo_runlist = {
+const struct nvkm_runl_func
+gk110_runl = {
.size = 8,
- .cgrp = gk110_fifo_runlist_cgrp,
- .chan = gk104_fifo_runlist_chan,
- .commit = gk104_fifo_runlist_commit,
+ .update = nv50_runl_update,
+ .insert_cgrp = gk110_runl_insert_cgrp,
+ .insert_chan = gk104_runl_insert_chan,
+ .commit = gk104_runl_commit,
+ .wait = nv50_runl_wait,
+ .pending = gk104_runl_pending,
+ .block = gk104_runl_block,
+ .allow = gk104_runl_allow,
+ .fault_clear = gk104_runl_fault_clear,
+ .preempt_pending = gf100_runl_preempt_pending,
};
-static const struct gk104_fifo_func
+int
+gk110_fifo_chid_ctor(struct nvkm_fifo *fifo, int nr)
+{
+ int ret;
+
+ ret = nvkm_chid_new(&nvkm_chan_event, &fifo->engine.subdev, nr, 0, nr, &fifo->cgid);
+ if (ret)
+ return ret;
+
+ return gf100_fifo_chid_ctor(fifo, nr);
+}
+
+static const struct nvkm_fifo_func
gk110_fifo = {
- .intr.fault = gf100_fifo_intr_fault,
- .pbdma = &gk104_fifo_pbdma,
- .fault.access = gk104_fifo_fault_access,
- .fault.engine = gk104_fifo_fault_engine,
- .fault.reason = gk104_fifo_fault_reason,
- .fault.hubclient = gk104_fifo_fault_hubclient,
- .fault.gpcclient = gk104_fifo_fault_gpcclient,
- .runlist = &gk110_fifo_runlist,
- .chan = {{0,0,KEPLER_CHANNEL_GPFIFO_B}, gk104_fifo_gpfifo_new },
+ .chid_nr = gk104_fifo_chid_nr,
+ .chid_ctor = gk110_fifo_chid_ctor,
+ .runq_nr = gf100_fifo_runq_nr,
+ .runl_ctor = gk104_fifo_runl_ctor,
+ .init = gk104_fifo_init,
+ .init_pbdmas = gk104_fifo_init_pbdmas,
+ .intr = gk104_fifo_intr,
+ .intr_mmu_fault_unit = gf100_fifo_intr_mmu_fault_unit,
+ .intr_ctxsw_timeout = gf100_fifo_intr_ctxsw_timeout,
+ .mmu_fault = &gk104_fifo_mmu_fault,
+ .nonstall = &gf100_fifo_nonstall,
+ .runl = &gk110_runl,
+ .runq = &gk104_runq,
+ .engn = &gk104_engn,
+ .engn_ce = &gk104_engn_ce,
+ .cgrp = {{ 0, 0, KEPLER_CHANNEL_GROUP_A }, &gk110_cgrp },
+ .chan = {{ 0, 0, KEPLER_CHANNEL_GPFIFO_B }, &gk110_chan },
};
int
gk110_fifo_new(struct nvkm_device *device, enum nvkm_subdev_type type, int inst,
struct nvkm_fifo **pfifo)
{
- return gk104_fifo_new_(&gk110_fifo, device, type, inst, 4096, pfifo);
+ return nvkm_fifo_new_(&gk110_fifo, device, type, inst, pfifo);
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gk208.c b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gk208.c
index cb703693de52..8fa2b0be141a 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gk208.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gk208.c
@@ -21,44 +21,57 @@
*
* Authors: Ben Skeggs
*/
-#include "gk104.h"
-#include "changk104.h"
+#include "priv.h"
+#include "runq.h"
#include <nvif/class.h>
void
-gk208_fifo_pbdma_init_timeout(struct gk104_fifo *fifo)
+gk208_runq_init(struct nvkm_runq *runq)
{
- struct nvkm_device *device = fifo->base.engine.subdev.device;
- int i;
+ gk104_runq_init(runq);
- for (i = 0; i < fifo->pbdma_nr; i++)
- nvkm_wr32(device, 0x04012c + (i * 0x2000), 0x0000ffff);
+ nvkm_wr32(runq->fifo->engine.subdev.device, 0x04012c + (runq->id * 0x2000), 0x000f4240);
}
-const struct gk104_fifo_pbdma_func
-gk208_fifo_pbdma = {
- .nr = gk104_fifo_pbdma_nr,
- .init = gk104_fifo_pbdma_init,
- .init_timeout = gk208_fifo_pbdma_init_timeout,
+const struct nvkm_runq_func
+gk208_runq = {
+ .init = gk208_runq_init,
+ .intr = gk104_runq_intr,
+ .intr_0_names = gk104_runq_intr_0_names,
+ .idle = gk104_runq_idle,
};
-static const struct gk104_fifo_func
+static int
+gk208_fifo_chid_nr(struct nvkm_fifo *fifo)
+{
+ return 1024;
+}
+
+static const struct nvkm_fifo_func
gk208_fifo = {
- .intr.fault = gf100_fifo_intr_fault,
- .pbdma = &gk208_fifo_pbdma,
- .fault.access = gk104_fifo_fault_access,
- .fault.engine = gk104_fifo_fault_engine,
- .fault.reason = gk104_fifo_fault_reason,
- .fault.hubclient = gk104_fifo_fault_hubclient,
- .fault.gpcclient = gk104_fifo_fault_gpcclient,
- .runlist = &gk110_fifo_runlist,
- .chan = {{0,0,KEPLER_CHANNEL_GPFIFO_A}, gk104_fifo_gpfifo_new },
+ .chid_nr = gk208_fifo_chid_nr,
+ .chid_ctor = gk110_fifo_chid_ctor,
+ .runq_nr = gf100_fifo_runq_nr,
+ .runl_ctor = gk104_fifo_runl_ctor,
+ .init = gk104_fifo_init,
+ .init_pbdmas = gk104_fifo_init_pbdmas,
+ .intr = gk104_fifo_intr,
+ .intr_mmu_fault_unit = gf100_fifo_intr_mmu_fault_unit,
+ .intr_ctxsw_timeout = gf100_fifo_intr_ctxsw_timeout,
+ .mmu_fault = &gk104_fifo_mmu_fault,
+ .nonstall = &gf100_fifo_nonstall,
+ .runl = &gk110_runl,
+ .runq = &gk208_runq,
+ .engn = &gk104_engn,
+ .engn_ce = &gk104_engn_ce,
+ .cgrp = {{ 0, 0, KEPLER_CHANNEL_GROUP_A }, &gk110_cgrp },
+ .chan = {{ 0, 0, KEPLER_CHANNEL_GPFIFO_A }, &gk110_chan },
};
int
gk208_fifo_new(struct nvkm_device *device, enum nvkm_subdev_type type, int inst,
struct nvkm_fifo **pfifo)
{
- return gk104_fifo_new_(&gk208_fifo, device, type, inst, 1024, pfifo);
+ return nvkm_fifo_new_(&gk208_fifo, device, type, inst, pfifo);
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gk20a.c b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gk20a.c
index 6e35cf44c640..b63ca836130f 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gk20a.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gk20a.c
@@ -19,27 +19,34 @@
* FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
* DEALINGS IN THE SOFTWARE.
*/
-#include "gk104.h"
-#include "changk104.h"
+#include "priv.h"
#include <nvif/class.h>
-static const struct gk104_fifo_func
+static const struct nvkm_fifo_func
gk20a_fifo = {
- .intr.fault = gf100_fifo_intr_fault,
- .pbdma = &gk208_fifo_pbdma,
- .fault.access = gk104_fifo_fault_access,
- .fault.engine = gk104_fifo_fault_engine,
- .fault.reason = gk104_fifo_fault_reason,
- .fault.hubclient = gk104_fifo_fault_hubclient,
- .fault.gpcclient = gk104_fifo_fault_gpcclient,
- .runlist = &gk110_fifo_runlist,
- .chan = {{0,0,KEPLER_CHANNEL_GPFIFO_A}, gk104_fifo_gpfifo_new },
+ .chid_nr = nv50_fifo_chid_nr,
+ .chid_ctor = gk110_fifo_chid_ctor,
+ .runq_nr = gf100_fifo_runq_nr,
+ .runl_ctor = gk104_fifo_runl_ctor,
+ .init = gk104_fifo_init,
+ .init_pbdmas = gk104_fifo_init_pbdmas,
+ .intr = gk104_fifo_intr,
+ .intr_mmu_fault_unit = gf100_fifo_intr_mmu_fault_unit,
+ .intr_ctxsw_timeout = gf100_fifo_intr_ctxsw_timeout,
+ .mmu_fault = &gk104_fifo_mmu_fault,
+ .nonstall = &gf100_fifo_nonstall,
+ .runl = &gk110_runl,
+ .runq = &gk208_runq,
+ .engn = &gk104_engn,
+ .engn_ce = &gk104_engn_ce,
+ .cgrp = {{ }, &gk110_cgrp },
+ .chan = {{ 0, 0, KEPLER_CHANNEL_GPFIFO_A }, &gk110_chan },
};
int
gk20a_fifo_new(struct nvkm_device *device, enum nvkm_subdev_type type, int inst,
struct nvkm_fifo **pfifo)
{
- return gk104_fifo_new_(&gk20a_fifo, device, type, inst, 128, pfifo);
+ return nvkm_fifo_new_(&gk20a_fifo, device, type, inst, pfifo);
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gm107.c b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gm107.c
index 7af6e687d474..5ba60021b510 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gm107.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gm107.c
@@ -21,46 +21,65 @@
*
* Authors: Ben Skeggs
*/
-#include "gk104.h"
-#include "changk104.h"
+#include "priv.h"
+#include "chan.h"
+#include "runl.h"
#include <core/gpuobj.h>
#include <subdev/fault.h>
#include <nvif/class.h>
+const struct nvkm_chan_func
+gm107_chan = {
+ .inst = &gf100_chan_inst,
+ .userd = &gk104_chan_userd,
+ .ramfc = &gk104_chan_ramfc,
+ .bind = gk104_chan_bind_inst,
+ .unbind = gk104_chan_unbind,
+ .start = gk104_chan_start,
+ .stop = gk104_chan_stop,
+ .preempt = gk110_chan_preempt,
+};
+
static void
-gm107_fifo_runlist_chan(struct gk104_fifo_chan *chan,
- struct nvkm_memory *memory, u32 offset)
+gm107_runl_insert_chan(struct nvkm_chan *chan, struct nvkm_memory *memory, u64 offset)
{
- nvkm_wo32(memory, offset + 0, chan->base.chid);
- nvkm_wo32(memory, offset + 4, chan->base.inst->addr >> 12);
+ nvkm_wo32(memory, offset + 0, chan->id);
+ nvkm_wo32(memory, offset + 4, chan->inst->addr >> 12);
}
-const struct gk104_fifo_runlist_func
-gm107_fifo_runlist = {
+const struct nvkm_runl_func
+gm107_runl = {
.size = 8,
- .cgrp = gk110_fifo_runlist_cgrp,
- .chan = gm107_fifo_runlist_chan,
- .commit = gk104_fifo_runlist_commit,
+ .update = nv50_runl_update,
+ .insert_cgrp = gk110_runl_insert_cgrp,
+ .insert_chan = gm107_runl_insert_chan,
+ .commit = gk104_runl_commit,
+ .wait = nv50_runl_wait,
+ .pending = gk104_runl_pending,
+ .block = gk104_runl_block,
+ .allow = gk104_runl_allow,
+ .fault_clear = gk104_runl_fault_clear,
+ .preempt_pending = gf100_runl_preempt_pending,
};
-const struct nvkm_enum
-gm107_fifo_fault_engine[] = {
+static const struct nvkm_enum
+gm107_fifo_mmu_fault_engine[] = {
{ 0x01, "DISPLAY" },
{ 0x02, "CAPTURE" },
{ 0x03, "IFB", NULL, NVKM_ENGINE_IFB },
{ 0x04, "BAR1", NULL, NVKM_SUBDEV_BAR },
{ 0x05, "BAR2", NULL, NVKM_SUBDEV_INSTMEM },
{ 0x06, "SCHED" },
- { 0x07, "HOST0", NULL, NVKM_ENGINE_FIFO },
- { 0x08, "HOST1", NULL, NVKM_ENGINE_FIFO },
- { 0x09, "HOST2", NULL, NVKM_ENGINE_FIFO },
- { 0x0a, "HOST3", NULL, NVKM_ENGINE_FIFO },
- { 0x0b, "HOST4", NULL, NVKM_ENGINE_FIFO },
- { 0x0c, "HOST5", NULL, NVKM_ENGINE_FIFO },
- { 0x0d, "HOST6", NULL, NVKM_ENGINE_FIFO },
- { 0x0e, "HOST7", NULL, NVKM_ENGINE_FIFO },
+ { 0x07, "HOST0" },
+ { 0x08, "HOST1" },
+ { 0x09, "HOST2" },
+ { 0x0a, "HOST3" },
+ { 0x0b, "HOST4" },
+ { 0x0c, "HOST5" },
+ { 0x0d, "HOST6" },
+ { 0x0e, "HOST7" },
{ 0x0f, "HOSTSR" },
{ 0x13, "PERF" },
{ 0x17, "PMU" },
@@ -68,8 +87,18 @@ gm107_fifo_fault_engine[] = {
{}
};
+const struct nvkm_fifo_func_mmu_fault
+gm107_fifo_mmu_fault = {
+ .recover = gf100_fifo_mmu_fault_recover,
+ .access = gf100_fifo_mmu_fault_access,
+ .engine = gm107_fifo_mmu_fault_engine,
+ .reason = gk104_fifo_mmu_fault_reason,
+ .hubclient = gk104_fifo_mmu_fault_hubclient,
+ .gpcclient = gk104_fifo_mmu_fault_gpcclient,
+};
+
void
-gm107_fifo_intr_fault(struct nvkm_fifo *fifo, int unit)
+gm107_fifo_intr_mmu_fault_unit(struct nvkm_fifo *fifo, int unit)
{
struct nvkm_device *device = fifo->engine.subdev.device;
u32 inst = nvkm_rd32(device, 0x002800 + (unit * 0x10));
@@ -92,22 +121,36 @@ gm107_fifo_intr_fault(struct nvkm_fifo *fifo, int unit)
nvkm_fifo_fault(fifo, &info);
}
-static const struct gk104_fifo_func
+static int
+gm107_fifo_chid_nr(struct nvkm_fifo *fifo)
+{
+ return 2048;
+}
+
+static const struct nvkm_fifo_func
gm107_fifo = {
- .intr.fault = gm107_fifo_intr_fault,
- .pbdma = &gk208_fifo_pbdma,
- .fault.access = gk104_fifo_fault_access,
- .fault.engine = gm107_fifo_fault_engine,
- .fault.reason = gk104_fifo_fault_reason,
- .fault.hubclient = gk104_fifo_fault_hubclient,
- .fault.gpcclient = gk104_fifo_fault_gpcclient,
- .runlist = &gm107_fifo_runlist,
- .chan = {{0,0,KEPLER_CHANNEL_GPFIFO_B}, gk104_fifo_gpfifo_new },
+ .chid_nr = gm107_fifo_chid_nr,
+ .chid_ctor = gk110_fifo_chid_ctor,
+ .runq_nr = gf100_fifo_runq_nr,
+ .runl_ctor = gk104_fifo_runl_ctor,
+ .init = gk104_fifo_init,
+ .init_pbdmas = gk104_fifo_init_pbdmas,
+ .intr = gk104_fifo_intr,
+ .intr_mmu_fault_unit = gm107_fifo_intr_mmu_fault_unit,
+ .intr_ctxsw_timeout = gf100_fifo_intr_ctxsw_timeout,
+ .mmu_fault = &gm107_fifo_mmu_fault,
+ .nonstall = &gf100_fifo_nonstall,
+ .runl = &gm107_runl,
+ .runq = &gk208_runq,
+ .engn = &gk104_engn,
+ .engn_ce = &gk104_engn_ce,
+ .cgrp = {{ 0, 0, KEPLER_CHANNEL_GROUP_A }, &gk110_cgrp },
+ .chan = {{ 0, 0, KEPLER_CHANNEL_GPFIFO_B }, &gm107_chan },
};
int
gm107_fifo_new(struct nvkm_device *device, enum nvkm_subdev_type type, int inst,
struct nvkm_fifo **pfifo)
{
- return gk104_fifo_new_(&gm107_fifo, device, type, inst, 2048, pfifo);
+ return nvkm_fifo_new_(&gm107_fifo, device, type, inst, pfifo);
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gm200.c b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gm200.c
index 573658cb6c73..d92d1ac39191 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gm200.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gm200.c
@@ -21,41 +21,46 @@
*
* Authors: Ben Skeggs
*/
-#include "gk104.h"
-#include "changk104.h"
+#include "priv.h"
#include <nvif/class.h>
int
-gm200_fifo_pbdma_nr(struct gk104_fifo *fifo)
+gm200_fifo_runq_nr(struct nvkm_fifo *fifo)
{
- struct nvkm_device *device = fifo->base.engine.subdev.device;
- return nvkm_rd32(device, 0x002004) & 0x000000ff;
+ return nvkm_rd32(fifo->engine.subdev.device, 0x002004) & 0x000000ff;
}
-const struct gk104_fifo_pbdma_func
-gm200_fifo_pbdma = {
- .nr = gm200_fifo_pbdma_nr,
- .init = gk104_fifo_pbdma_init,
- .init_timeout = gk208_fifo_pbdma_init_timeout,
-};
+int
+gm200_fifo_chid_nr(struct nvkm_fifo *fifo)
+{
+ return nvkm_rd32(fifo->engine.subdev.device, 0x002008);
+}
-static const struct gk104_fifo_func
+static const struct nvkm_fifo_func
gm200_fifo = {
- .intr.fault = gm107_fifo_intr_fault,
- .pbdma = &gm200_fifo_pbdma,
- .fault.access = gk104_fifo_fault_access,
- .fault.engine = gm107_fifo_fault_engine,
- .fault.reason = gk104_fifo_fault_reason,
- .fault.hubclient = gk104_fifo_fault_hubclient,
- .fault.gpcclient = gk104_fifo_fault_gpcclient,
- .runlist = &gm107_fifo_runlist,
- .chan = {{0,0,MAXWELL_CHANNEL_GPFIFO_A}, gk104_fifo_gpfifo_new },
+ .chid_nr = gm200_fifo_chid_nr,
+ .chid_ctor = gk110_fifo_chid_ctor,
+ .runq_nr = gm200_fifo_runq_nr,
+ .runl_ctor = gk104_fifo_runl_ctor,
+ .init = gk104_fifo_init,
+ .init_pbdmas = gk104_fifo_init_pbdmas,
+ .intr = gk104_fifo_intr,
+ .intr_mmu_fault_unit = gm107_fifo_intr_mmu_fault_unit,
+ .intr_ctxsw_timeout = gf100_fifo_intr_ctxsw_timeout,
+ .mmu_fault = &gm107_fifo_mmu_fault,
+ .nonstall = &gf100_fifo_nonstall,
+ .runl = &gm107_runl,
+ .runq = &gk208_runq,
+ .engn = &gk104_engn,
+ .engn_ce = &gk104_engn_ce,
+ .cgrp = {{ 0, 0, KEPLER_CHANNEL_GROUP_A }, &gk110_cgrp },
+ .chan = {{ 0, 0, MAXWELL_CHANNEL_GPFIFO_A }, &gm107_chan },
};
int
gm200_fifo_new(struct nvkm_device *device, enum nvkm_subdev_type type, int inst,
struct nvkm_fifo **pfifo)
{
- return gk104_fifo_new_(&gm200_fifo, device, type, inst, 4096, pfifo);
+ return nvkm_fifo_new_(&gm200_fifo, device, type, inst, pfifo);
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gm20b.c b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gm20b.c
deleted file mode 100644
index 556c97e54f14..000000000000
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gm20b.c
+++ /dev/null
@@ -1,45 +0,0 @@
-/*
- * Copyright (c) 2015, NVIDIA CORPORATION. All rights reserved.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice shall be included in
- * all copies or substantial portions of the Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
- * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
- * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
- * DEALINGS IN THE SOFTWARE.
- */
-#include "gk104.h"
-#include "changk104.h"
-
-#include <nvif/class.h>
-
-static const struct gk104_fifo_func
-gm20b_fifo = {
- .intr.fault = gm107_fifo_intr_fault,
- .pbdma = &gm200_fifo_pbdma,
- .fault.access = gk104_fifo_fault_access,
- .fault.engine = gm107_fifo_fault_engine,
- .fault.reason = gk104_fifo_fault_reason,
- .fault.hubclient = gk104_fifo_fault_hubclient,
- .fault.gpcclient = gk104_fifo_fault_gpcclient,
- .runlist = &gm107_fifo_runlist,
- .chan = {{0,0,MAXWELL_CHANNEL_GPFIFO_A}, gk104_fifo_gpfifo_new },
-};
-
-int
-gm20b_fifo_new(struct nvkm_device *device, enum nvkm_subdev_type type, int inst,
- struct nvkm_fifo **pfifo)
-{
- return gk104_fifo_new_(&gm20b_fifo, device, type, inst, 512, pfifo);
-}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gp100.c b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gp100.c
index 6b46b6b65b87..65bdb6a7d517 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gp100.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gp100.c
@@ -21,30 +21,54 @@
*
* Authors: Ben Skeggs
*/
-#include "gk104.h"
-#include "changk104.h"
+#include "priv.h"
+#include "runl.h"
+#include <core/gpuobj.h>
#include <subdev/fault.h>
#include <nvif/class.h>
-const struct nvkm_enum
-gp100_fifo_fault_engine[] = {
+static void
+gp100_runl_insert_chan(struct nvkm_chan *chan, struct nvkm_memory *memory, u64 offset)
+{
+ nvkm_wo32(memory, offset + 0, chan->id | chan->runq << 14);
+ nvkm_wo32(memory, offset + 4, chan->inst->addr >> 12);
+}
+
+static const struct nvkm_runl_func
+gp100_runl = {
+ .runqs = 2,
+ .size = 8,
+ .update = nv50_runl_update,
+ .insert_cgrp = gk110_runl_insert_cgrp,
+ .insert_chan = gp100_runl_insert_chan,
+ .commit = gk104_runl_commit,
+ .wait = nv50_runl_wait,
+ .pending = gk104_runl_pending,
+ .block = gk104_runl_block,
+ .allow = gk104_runl_allow,
+ .fault_clear = gk104_runl_fault_clear,
+ .preempt_pending = gf100_runl_preempt_pending,
+};
+
+static const struct nvkm_enum
+gp100_fifo_mmu_fault_engine[] = {
{ 0x01, "DISPLAY" },
{ 0x03, "IFB", NULL, NVKM_ENGINE_IFB },
{ 0x04, "BAR1", NULL, NVKM_SUBDEV_BAR },
{ 0x05, "BAR2", NULL, NVKM_SUBDEV_INSTMEM },
- { 0x06, "HOST0", NULL, NVKM_ENGINE_FIFO },
- { 0x07, "HOST1", NULL, NVKM_ENGINE_FIFO },
- { 0x08, "HOST2", NULL, NVKM_ENGINE_FIFO },
- { 0x09, "HOST3", NULL, NVKM_ENGINE_FIFO },
- { 0x0a, "HOST4", NULL, NVKM_ENGINE_FIFO },
- { 0x0b, "HOST5", NULL, NVKM_ENGINE_FIFO },
- { 0x0c, "HOST6", NULL, NVKM_ENGINE_FIFO },
- { 0x0d, "HOST7", NULL, NVKM_ENGINE_FIFO },
- { 0x0e, "HOST8", NULL, NVKM_ENGINE_FIFO },
- { 0x0f, "HOST9", NULL, NVKM_ENGINE_FIFO },
- { 0x10, "HOST10", NULL, NVKM_ENGINE_FIFO },
+ { 0x06, "HOST0" },
+ { 0x07, "HOST1" },
+ { 0x08, "HOST2" },
+ { 0x09, "HOST3" },
+ { 0x0a, "HOST4" },
+ { 0x0b, "HOST5" },
+ { 0x0c, "HOST6" },
+ { 0x0d, "HOST7" },
+ { 0x0e, "HOST8" },
+ { 0x0f, "HOST9" },
+ { 0x10, "HOST10" },
{ 0x13, "PERF" },
{ 0x17, "PMU" },
{ 0x18, "PTP" },
@@ -52,8 +76,18 @@ gp100_fifo_fault_engine[] = {
{}
};
-void
-gp100_fifo_intr_fault(struct nvkm_fifo *fifo, int unit)
+static const struct nvkm_fifo_func_mmu_fault
+gp100_fifo_mmu_fault = {
+ .recover = gf100_fifo_mmu_fault_recover,
+ .access = gf100_fifo_mmu_fault_access,
+ .engine = gp100_fifo_mmu_fault_engine,
+ .reason = gk104_fifo_mmu_fault_reason,
+ .hubclient = gk104_fifo_mmu_fault_hubclient,
+ .gpcclient = gk104_fifo_mmu_fault_gpcclient,
+};
+
+static void
+gp100_fifo_intr_mmu_fault_unit(struct nvkm_fifo *fifo, int unit)
{
struct nvkm_device *device = fifo->engine.subdev.device;
u32 inst = nvkm_rd32(device, 0x002800 + (unit * 0x10));
@@ -76,23 +110,30 @@ gp100_fifo_intr_fault(struct nvkm_fifo *fifo, int unit)
nvkm_fifo_fault(fifo, &info);
}
-static const struct gk104_fifo_func
+static const struct nvkm_fifo_func
gp100_fifo = {
- .intr.fault = gp100_fifo_intr_fault,
- .pbdma = &gm200_fifo_pbdma,
- .fault.access = gk104_fifo_fault_access,
- .fault.engine = gp100_fifo_fault_engine,
- .fault.reason = gk104_fifo_fault_reason,
- .fault.hubclient = gk104_fifo_fault_hubclient,
- .fault.gpcclient = gk104_fifo_fault_gpcclient,
- .runlist = &gm107_fifo_runlist,
- .chan = {{0,0,PASCAL_CHANNEL_GPFIFO_A}, gk104_fifo_gpfifo_new },
- .cgrp_force = true,
+ .chid_nr = gm200_fifo_chid_nr,
+ .chid_ctor = gk110_fifo_chid_ctor,
+ .runq_nr = gm200_fifo_runq_nr,
+ .runl_ctor = gk104_fifo_runl_ctor,
+ .init = gk104_fifo_init,
+ .init_pbdmas = gk104_fifo_init_pbdmas,
+ .intr = gk104_fifo_intr,
+ .intr_mmu_fault_unit = gp100_fifo_intr_mmu_fault_unit,
+ .intr_ctxsw_timeout = gf100_fifo_intr_ctxsw_timeout,
+ .mmu_fault = &gp100_fifo_mmu_fault,
+ .nonstall = &gf100_fifo_nonstall,
+ .runl = &gp100_runl,
+ .runq = &gk208_runq,
+ .engn = &gk104_engn,
+ .engn_ce = &gk104_engn_ce,
+ .cgrp = {{ 0, 0, KEPLER_CHANNEL_GROUP_A }, &gk110_cgrp, .force = true },
+ .chan = {{ 0, 0, PASCAL_CHANNEL_GPFIFO_A }, &gm107_chan },
};
int
gp100_fifo_new(struct nvkm_device *device, enum nvkm_subdev_type type, int inst,
struct nvkm_fifo **pfifo)
{
- return gk104_fifo_new_(&gp100_fifo, device, type, inst, 4096, pfifo);
+ return nvkm_fifo_new_(&gp100_fifo, device, type, inst, pfifo);
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gp10b.c b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gp10b.c
deleted file mode 100644
index 7a5929cb4d29..000000000000
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gp10b.c
+++ /dev/null
@@ -1,46 +0,0 @@
-/*
- * Copyright (c) 2017, NVIDIA CORPORATION. All rights reserved.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice shall be included in
- * all copies or substantial portions of the Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
- * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
- * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
- * DEALINGS IN THE SOFTWARE.
- */
-#include "gk104.h"
-#include "changk104.h"
-
-#include <nvif/class.h>
-
-static const struct gk104_fifo_func
-gp10b_fifo = {
- .intr.fault = gp100_fifo_intr_fault,
- .pbdma = &gm200_fifo_pbdma,
- .fault.access = gk104_fifo_fault_access,
- .fault.engine = gp100_fifo_fault_engine,
- .fault.reason = gk104_fifo_fault_reason,
- .fault.hubclient = gk104_fifo_fault_hubclient,
- .fault.gpcclient = gk104_fifo_fault_gpcclient,
- .runlist = &gm107_fifo_runlist,
- .chan = {{0,0,PASCAL_CHANNEL_GPFIFO_A}, gk104_fifo_gpfifo_new },
- .cgrp_force = true,
-};
-
-int
-gp10b_fifo_new(struct nvkm_device *device, enum nvkm_subdev_type type, int inst,
- struct nvkm_fifo **pfifo)
-{
- return gk104_fifo_new_(&gp10b_fifo, device, type, inst, 512, pfifo);
-}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gpfifog84.c b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gpfifog84.c
deleted file mode 100644
index 2121f517b1dd..000000000000
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gpfifog84.c
+++ /dev/null
@@ -1,95 +0,0 @@
-/*
- * Copyright 2012 Red Hat Inc.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice shall be included in
- * all copies or substantial portions of the Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
- * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
- * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
- * OTHER DEALINGS IN THE SOFTWARE.
- *
- * Authors: Ben Skeggs
- */
-#include "channv50.h"
-
-#include <core/client.h>
-#include <core/ramht.h>
-
-#include <nvif/class.h>
-#include <nvif/cl826f.h>
-#include <nvif/unpack.h>
-
-static int
-g84_fifo_gpfifo_new(struct nvkm_fifo *base, const struct nvkm_oclass *oclass,
- void *data, u32 size, struct nvkm_object **pobject)
-{
- struct nvkm_object *parent = oclass->parent;
- union {
- struct g82_channel_gpfifo_v0 v0;
- } *args = data;
- struct nv50_fifo *fifo = nv50_fifo(base);
- struct nv50_fifo_chan *chan;
- u64 ioffset, ilength;
- int ret = -ENOSYS;
-
- nvif_ioctl(parent, "create channel gpfifo size %d\n", size);
- if (!(ret = nvif_unpack(ret, &data, &size, args->v0, 0, 0, false))) {
- nvif_ioctl(parent, "create channel gpfifo vers %d vmm %llx "
- "pushbuf %llx ioffset %016llx "
- "ilength %08x\n",
- args->v0.version, args->v0.vmm, args->v0.pushbuf,
- args->v0.ioffset, args->v0.ilength);
- if (!args->v0.pushbuf)
- return -EINVAL;
- } else
- return ret;
-
- if (!(chan = kzalloc(sizeof(*chan), GFP_KERNEL)))
- return -ENOMEM;
- *pobject = &chan->base.object;
-
- ret = g84_fifo_chan_ctor(fifo, args->v0.vmm, args->v0.pushbuf,
- oclass, chan);
- if (ret)
- return ret;
-
- args->v0.chid = chan->base.chid;
- ioffset = args->v0.ioffset;
- ilength = order_base_2(args->v0.ilength / 8);
-
- nvkm_kmap(chan->ramfc);
- nvkm_wo32(chan->ramfc, 0x3c, 0x403f6078);
- nvkm_wo32(chan->ramfc, 0x44, 0x01003fff);
- nvkm_wo32(chan->ramfc, 0x48, chan->base.push->node->offset >> 4);
- nvkm_wo32(chan->ramfc, 0x50, lower_32_bits(ioffset));
- nvkm_wo32(chan->ramfc, 0x54, upper_32_bits(ioffset) | (ilength << 16));
- nvkm_wo32(chan->ramfc, 0x60, 0x7fffffff);
- nvkm_wo32(chan->ramfc, 0x78, 0x00000000);
- nvkm_wo32(chan->ramfc, 0x7c, 0x30000001);
- nvkm_wo32(chan->ramfc, 0x80, ((chan->ramht->bits - 9) << 27) |
- (4 << 24) /* SEARCH_FULL */ |
- (chan->ramht->gpuobj->node->offset >> 4));
- nvkm_wo32(chan->ramfc, 0x88, chan->cache->addr >> 10);
- nvkm_wo32(chan->ramfc, 0x98, chan->base.inst->addr >> 12);
- nvkm_done(chan->ramfc);
- return 0;
-}
-
-const struct nvkm_fifo_chan_oclass
-g84_fifo_gpfifo_oclass = {
- .base.oclass = G82_CHANNEL_GPFIFO,
- .base.minver = 0,
- .base.maxver = 0,
- .ctor = g84_fifo_gpfifo_new,
-};
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gpfifogf100.c b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gpfifogf100.c
deleted file mode 100644
index 4e78bbe3b94b..000000000000
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gpfifogf100.c
+++ /dev/null
@@ -1,308 +0,0 @@
-/*
- * Copyright 2012 Red Hat Inc.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice shall be included in
- * all copies or substantial portions of the Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
- * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
- * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
- * OTHER DEALINGS IN THE SOFTWARE.
- *
- * Authors: Ben Skeggs
- */
-#include "changf100.h"
-
-#include <core/client.h>
-#include <core/gpuobj.h>
-#include <subdev/fb.h>
-#include <subdev/timer.h>
-
-#include <nvif/class.h>
-#include <nvif/cl906f.h>
-#include <nvif/unpack.h>
-
-int
-gf100_fifo_chan_ntfy(struct nvkm_fifo_chan *chan, u32 type,
- struct nvkm_event **pevent)
-{
- switch (type) {
- case NV906F_V0_NTFY_NON_STALL_INTERRUPT:
- *pevent = &chan->fifo->uevent;
- return 0;
- case NV906F_V0_NTFY_KILLED:
- *pevent = &chan->fifo->kevent;
- return 0;
- default:
- break;
- }
- return -EINVAL;
-}
-
-static u32
-gf100_fifo_gpfifo_engine_addr(struct nvkm_engine *engine)
-{
- switch (engine->subdev.type) {
- case NVKM_ENGINE_SW : return 0;
- case NVKM_ENGINE_GR : return 0x0210;
- case NVKM_ENGINE_CE : return 0x0230 + (engine->subdev.inst * 0x10);
- case NVKM_ENGINE_MSPDEC: return 0x0250;
- case NVKM_ENGINE_MSPPP : return 0x0260;
- case NVKM_ENGINE_MSVLD : return 0x0270;
- default:
- WARN_ON(1);
- return 0;
- }
-}
-
-static struct gf100_fifo_engn *
-gf100_fifo_gpfifo_engine(struct gf100_fifo_chan *chan, struct nvkm_engine *engine)
-{
- int engi = chan->base.fifo->func->engine_id(chan->base.fifo, engine);
- if (engi >= 0)
- return &chan->engn[engi];
- return NULL;
-}
-
-static int
-gf100_fifo_gpfifo_engine_fini(struct nvkm_fifo_chan *base,
- struct nvkm_engine *engine, bool suspend)
-{
- const u32 offset = gf100_fifo_gpfifo_engine_addr(engine);
- struct gf100_fifo_chan *chan = gf100_fifo_chan(base);
- struct nvkm_subdev *subdev = &chan->fifo->base.engine.subdev;
- struct nvkm_device *device = subdev->device;
- struct nvkm_gpuobj *inst = chan->base.inst;
- int ret = 0;
-
- mutex_lock(&chan->fifo->base.mutex);
- nvkm_wr32(device, 0x002634, chan->base.chid);
- if (nvkm_msec(device, 2000,
- if (nvkm_rd32(device, 0x002634) == chan->base.chid)
- break;
- ) < 0) {
- nvkm_error(subdev, "channel %d [%s] kick timeout\n",
- chan->base.chid, chan->base.object.client->name);
- ret = -ETIMEDOUT;
- }
- mutex_unlock(&chan->fifo->base.mutex);
-
- if (ret && suspend)
- return ret;
-
- if (offset) {
- nvkm_kmap(inst);
- nvkm_wo32(inst, offset + 0x00, 0x00000000);
- nvkm_wo32(inst, offset + 0x04, 0x00000000);
- nvkm_done(inst);
- }
-
- return ret;
-}
-
-static int
-gf100_fifo_gpfifo_engine_init(struct nvkm_fifo_chan *base,
- struct nvkm_engine *engine)
-{
- const u32 offset = gf100_fifo_gpfifo_engine_addr(engine);
- struct gf100_fifo_chan *chan = gf100_fifo_chan(base);
- struct gf100_fifo_engn *engn = gf100_fifo_gpfifo_engine(chan, engine);
- struct nvkm_gpuobj *inst = chan->base.inst;
-
- if (offset) {
- nvkm_kmap(inst);
- nvkm_wo32(inst, offset + 0x00, lower_32_bits(engn->vma->addr) | 4);
- nvkm_wo32(inst, offset + 0x04, upper_32_bits(engn->vma->addr));
- nvkm_done(inst);
- }
-
- return 0;
-}
-
-static void
-gf100_fifo_gpfifo_engine_dtor(struct nvkm_fifo_chan *base,
- struct nvkm_engine *engine)
-{
- struct gf100_fifo_chan *chan = gf100_fifo_chan(base);
- struct gf100_fifo_engn *engn = gf100_fifo_gpfifo_engine(chan, engine);
- nvkm_vmm_put(chan->base.vmm, &engn->vma);
- nvkm_gpuobj_del(&engn->inst);
-}
-
-static int
-gf100_fifo_gpfifo_engine_ctor(struct nvkm_fifo_chan *base,
- struct nvkm_engine *engine,
- struct nvkm_object *object)
-{
- struct gf100_fifo_chan *chan = gf100_fifo_chan(base);
- struct gf100_fifo_engn *engn = gf100_fifo_gpfifo_engine(chan, engine);
- int ret;
-
- if (!gf100_fifo_gpfifo_engine_addr(engine))
- return 0;
-
- ret = nvkm_object_bind(object, NULL, 0, &engn->inst);
- if (ret)
- return ret;
-
- ret = nvkm_vmm_get(chan->base.vmm, 12, engn->inst->size, &engn->vma);
- if (ret)
- return ret;
-
- return nvkm_memory_map(engn->inst, 0, chan->base.vmm, engn->vma, NULL, 0);
-}
-
-static void
-gf100_fifo_gpfifo_fini(struct nvkm_fifo_chan *base)
-{
- struct gf100_fifo_chan *chan = gf100_fifo_chan(base);
- struct gf100_fifo *fifo = chan->fifo;
- struct nvkm_device *device = fifo->base.engine.subdev.device;
- u32 coff = chan->base.chid * 8;
-
- if (!list_empty(&chan->head) && !chan->killed) {
- gf100_fifo_runlist_remove(fifo, chan);
- nvkm_mask(device, 0x003004 + coff, 0x00000001, 0x00000000);
- gf100_fifo_runlist_commit(fifo);
- }
-
- gf100_fifo_intr_engine(fifo);
-
- nvkm_wr32(device, 0x003000 + coff, 0x00000000);
-}
-
-static void
-gf100_fifo_gpfifo_init(struct nvkm_fifo_chan *base)
-{
- struct gf100_fifo_chan *chan = gf100_fifo_chan(base);
- struct gf100_fifo *fifo = chan->fifo;
- struct nvkm_device *device = fifo->base.engine.subdev.device;
- u32 addr = chan->base.inst->addr >> 12;
- u32 coff = chan->base.chid * 8;
-
- nvkm_wr32(device, 0x003000 + coff, 0xc0000000 | addr);
-
- if (list_empty(&chan->head) && !chan->killed) {
- gf100_fifo_runlist_insert(fifo, chan);
- nvkm_wr32(device, 0x003004 + coff, 0x001f0001);
- gf100_fifo_runlist_commit(fifo);
- }
-}
-
-static void *
-gf100_fifo_gpfifo_dtor(struct nvkm_fifo_chan *base)
-{
- return gf100_fifo_chan(base);
-}
-
-static const struct nvkm_fifo_chan_func
-gf100_fifo_gpfifo_func = {
- .dtor = gf100_fifo_gpfifo_dtor,
- .init = gf100_fifo_gpfifo_init,
- .fini = gf100_fifo_gpfifo_fini,
- .ntfy = gf100_fifo_chan_ntfy,
- .engine_ctor = gf100_fifo_gpfifo_engine_ctor,
- .engine_dtor = gf100_fifo_gpfifo_engine_dtor,
- .engine_init = gf100_fifo_gpfifo_engine_init,
- .engine_fini = gf100_fifo_gpfifo_engine_fini,
-};
-
-static int
-gf100_fifo_gpfifo_new(struct nvkm_fifo *base, const struct nvkm_oclass *oclass,
- void *data, u32 size, struct nvkm_object **pobject)
-{
- union {
- struct fermi_channel_gpfifo_v0 v0;
- } *args = data;
- struct gf100_fifo *fifo = gf100_fifo(base);
- struct nvkm_object *parent = oclass->parent;
- struct gf100_fifo_chan *chan;
- u64 usermem, ioffset, ilength;
- int ret = -ENOSYS, i;
-
- nvif_ioctl(parent, "create channel gpfifo size %d\n", size);
- if (!(ret = nvif_unpack(ret, &data, &size, args->v0, 0, 0, false))) {
- nvif_ioctl(parent, "create channel gpfifo vers %d vmm %llx "
- "ioffset %016llx ilength %08x\n",
- args->v0.version, args->v0.vmm, args->v0.ioffset,
- args->v0.ilength);
- if (!args->v0.vmm)
- return -EINVAL;
- } else
- return ret;
-
- /* allocate channel */
- if (!(chan = kzalloc(sizeof(*chan), GFP_KERNEL)))
- return -ENOMEM;
- *pobject = &chan->base.object;
- chan->fifo = fifo;
- INIT_LIST_HEAD(&chan->head);
-
- ret = nvkm_fifo_chan_ctor(&gf100_fifo_gpfifo_func, &fifo->base,
- 0x1000, 0x1000, true, args->v0.vmm, 0,
- BIT(GF100_FIFO_ENGN_GR) |
- BIT(GF100_FIFO_ENGN_MSPDEC) |
- BIT(GF100_FIFO_ENGN_MSPPP) |
- BIT(GF100_FIFO_ENGN_MSVLD) |
- BIT(GF100_FIFO_ENGN_CE0) |
- BIT(GF100_FIFO_ENGN_CE1) |
- BIT(GF100_FIFO_ENGN_SW),
- 1, fifo->user.bar->addr, 0x1000,
- oclass, &chan->base);
- if (ret)
- return ret;
-
- args->v0.chid = chan->base.chid;
-
- /* clear channel control registers */
-
- usermem = chan->base.chid * 0x1000;
- ioffset = args->v0.ioffset;
- ilength = order_base_2(args->v0.ilength / 8);
-
- nvkm_kmap(fifo->user.mem);
- for (i = 0; i < 0x1000; i += 4)
- nvkm_wo32(fifo->user.mem, usermem + i, 0x00000000);
- nvkm_done(fifo->user.mem);
- usermem = nvkm_memory_addr(fifo->user.mem) + usermem;
-
- /* RAMFC */
- nvkm_kmap(chan->base.inst);
- nvkm_wo32(chan->base.inst, 0x08, lower_32_bits(usermem));
- nvkm_wo32(chan->base.inst, 0x0c, upper_32_bits(usermem));
- nvkm_wo32(chan->base.inst, 0x10, 0x0000face);
- nvkm_wo32(chan->base.inst, 0x30, 0xfffff902);
- nvkm_wo32(chan->base.inst, 0x48, lower_32_bits(ioffset));
- nvkm_wo32(chan->base.inst, 0x4c, upper_32_bits(ioffset) |
- (ilength << 16));
- nvkm_wo32(chan->base.inst, 0x54, 0x00000002);
- nvkm_wo32(chan->base.inst, 0x84, 0x20400000);
- nvkm_wo32(chan->base.inst, 0x94, 0x30000001);
- nvkm_wo32(chan->base.inst, 0x9c, 0x00000100);
- nvkm_wo32(chan->base.inst, 0xa4, 0x1f1f1f1f);
- nvkm_wo32(chan->base.inst, 0xa8, 0x1f1f1f1f);
- nvkm_wo32(chan->base.inst, 0xac, 0x0000001f);
- nvkm_wo32(chan->base.inst, 0xb8, 0xf8000000);
- nvkm_wo32(chan->base.inst, 0xf8, 0x10003080); /* 0x002310 */
- nvkm_wo32(chan->base.inst, 0xfc, 0x10000010); /* 0x002350 */
- nvkm_done(chan->base.inst);
- return 0;
-}
-
-const struct nvkm_fifo_chan_oclass
-gf100_fifo_gpfifo_oclass = {
- .base.oclass = FERMI_CHANNEL_GPFIFO,
- .base.minver = 0,
- .base.maxver = 0,
- .ctor = gf100_fifo_gpfifo_new,
-};
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gpfifogk104.c b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gpfifogk104.c
deleted file mode 100644
index 80456ec70e8a..000000000000
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gpfifogk104.c
+++ /dev/null
@@ -1,361 +0,0 @@
-/*
- * Copyright 2012 Red Hat Inc.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice shall be included in
- * all copies or substantial portions of the Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
- * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
- * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
- * OTHER DEALINGS IN THE SOFTWARE.
- *
- * Authors: Ben Skeggs
- */
-#include "changk104.h"
-#include "cgrp.h"
-
-#include <core/client.h>
-#include <core/gpuobj.h>
-#include <subdev/fb.h>
-#include <subdev/mmu.h>
-#include <subdev/timer.h>
-
-#include <nvif/class.h>
-#include <nvif/cla06f.h>
-#include <nvif/unpack.h>
-
-int
-gk104_fifo_gpfifo_kick_locked(struct gk104_fifo_chan *chan)
-{
- struct gk104_fifo *fifo = chan->fifo;
- struct nvkm_subdev *subdev = &fifo->base.engine.subdev;
- struct nvkm_device *device = subdev->device;
- struct nvkm_client *client = chan->base.object.client;
- struct nvkm_fifo_cgrp *cgrp = chan->cgrp;
- int ret = 0;
-
- if (cgrp)
- nvkm_wr32(device, 0x002634, cgrp->id | 0x01000000);
- else
- nvkm_wr32(device, 0x002634, chan->base.chid);
- if (nvkm_msec(device, 2000,
- if (!(nvkm_rd32(device, 0x002634) & 0x00100000))
- break;
- ) < 0) {
- nvkm_error(subdev, "%s %d [%s] kick timeout\n",
- cgrp ? "tsg" : "channel",
- cgrp ? cgrp->id : chan->base.chid, client->name);
- nvkm_fifo_recover_chan(&fifo->base, chan->base.chid);
- ret = -ETIMEDOUT;
- }
- return ret;
-}
-
-int
-gk104_fifo_gpfifo_kick(struct gk104_fifo_chan *chan)
-{
- int ret;
- mutex_lock(&chan->base.fifo->mutex);
- ret = gk104_fifo_gpfifo_kick_locked(chan);
- mutex_unlock(&chan->base.fifo->mutex);
- return ret;
-}
-
-static u32
-gk104_fifo_gpfifo_engine_addr(struct nvkm_engine *engine)
-{
- switch (engine->subdev.type) {
- case NVKM_ENGINE_SW :
- case NVKM_ENGINE_CE : return 0;
- case NVKM_ENGINE_GR : return 0x0210;
- case NVKM_ENGINE_SEC : return 0x0220;
- case NVKM_ENGINE_MSPDEC: return 0x0250;
- case NVKM_ENGINE_MSPPP : return 0x0260;
- case NVKM_ENGINE_MSVLD : return 0x0270;
- case NVKM_ENGINE_VIC : return 0x0280;
- case NVKM_ENGINE_MSENC : return 0x0290;
- case NVKM_ENGINE_NVDEC : return 0x02100270;
- case NVKM_ENGINE_NVENC :
- if (engine->subdev.inst)
- return 0x0210;
- return 0x02100290;
- default:
- WARN_ON(1);
- return 0;
- }
-}
-
-struct gk104_fifo_engn *
-gk104_fifo_gpfifo_engine(struct gk104_fifo_chan *chan, struct nvkm_engine *engine)
-{
- int engi = chan->base.fifo->func->engine_id(chan->base.fifo, engine);
- if (engi >= 0)
- return &chan->engn[engi];
- return NULL;
-}
-
-static int
-gk104_fifo_gpfifo_engine_fini(struct nvkm_fifo_chan *base,
- struct nvkm_engine *engine, bool suspend)
-{
- struct gk104_fifo_chan *chan = gk104_fifo_chan(base);
- struct nvkm_gpuobj *inst = chan->base.inst;
- u32 offset = gk104_fifo_gpfifo_engine_addr(engine);
- int ret;
-
- ret = gk104_fifo_gpfifo_kick(chan);
- if (ret && suspend)
- return ret;
-
- if (offset) {
- nvkm_kmap(inst);
- nvkm_wo32(inst, (offset & 0xffff) + 0x00, 0x00000000);
- nvkm_wo32(inst, (offset & 0xffff) + 0x04, 0x00000000);
- if ((offset >>= 16)) {
- nvkm_wo32(inst, offset + 0x00, 0x00000000);
- nvkm_wo32(inst, offset + 0x04, 0x00000000);
- }
- nvkm_done(inst);
- }
-
- return ret;
-}
-
-static int
-gk104_fifo_gpfifo_engine_init(struct nvkm_fifo_chan *base,
- struct nvkm_engine *engine)
-{
- struct gk104_fifo_chan *chan = gk104_fifo_chan(base);
- struct gk104_fifo_engn *engn = gk104_fifo_gpfifo_engine(chan, engine);
- struct nvkm_gpuobj *inst = chan->base.inst;
- u32 offset = gk104_fifo_gpfifo_engine_addr(engine);
-
- if (offset) {
- u32 datalo = lower_32_bits(engn->vma->addr) | 0x00000004;
- u32 datahi = upper_32_bits(engn->vma->addr);
- nvkm_kmap(inst);
- nvkm_wo32(inst, (offset & 0xffff) + 0x00, datalo);
- nvkm_wo32(inst, (offset & 0xffff) + 0x04, datahi);
- if ((offset >>= 16)) {
- nvkm_wo32(inst, offset + 0x00, datalo);
- nvkm_wo32(inst, offset + 0x04, datahi);
- }
- nvkm_done(inst);
- }
-
- return 0;
-}
-
-void
-gk104_fifo_gpfifo_engine_dtor(struct nvkm_fifo_chan *base,
- struct nvkm_engine *engine)
-{
- struct gk104_fifo_chan *chan = gk104_fifo_chan(base);
- struct gk104_fifo_engn *engn = gk104_fifo_gpfifo_engine(chan, engine);
- nvkm_vmm_put(chan->base.vmm, &engn->vma);
- nvkm_gpuobj_del(&engn->inst);
-}
-
-int
-gk104_fifo_gpfifo_engine_ctor(struct nvkm_fifo_chan *base,
- struct nvkm_engine *engine,
- struct nvkm_object *object)
-{
- struct gk104_fifo_chan *chan = gk104_fifo_chan(base);
- struct gk104_fifo_engn *engn = gk104_fifo_gpfifo_engine(chan, engine);
- int ret;
-
- if (!gk104_fifo_gpfifo_engine_addr(engine)) {
- if (engine->subdev.type != NVKM_ENGINE_CE ||
- engine->subdev.device->card_type < GV100)
- return 0;
- }
-
- ret = nvkm_object_bind(object, NULL, 0, &engn->inst);
- if (ret)
- return ret;
-
- if (!gk104_fifo_gpfifo_engine_addr(engine))
- return 0;
-
- ret = nvkm_vmm_get(chan->base.vmm, 12, engn->inst->size, &engn->vma);
- if (ret)
- return ret;
-
- return nvkm_memory_map(engn->inst, 0, chan->base.vmm, engn->vma, NULL, 0);
-}
-
-void
-gk104_fifo_gpfifo_fini(struct nvkm_fifo_chan *base)
-{
- struct gk104_fifo_chan *chan = gk104_fifo_chan(base);
- struct gk104_fifo *fifo = chan->fifo;
- struct nvkm_device *device = fifo->base.engine.subdev.device;
- u32 coff = chan->base.chid * 8;
-
- if (!list_empty(&chan->head)) {
- gk104_fifo_runlist_remove(fifo, chan);
- nvkm_mask(device, 0x800004 + coff, 0x00000800, 0x00000800);
- gk104_fifo_gpfifo_kick(chan);
- gk104_fifo_runlist_update(fifo, chan->runl);
- }
-
- nvkm_wr32(device, 0x800000 + coff, 0x00000000);
-}
-
-void
-gk104_fifo_gpfifo_init(struct nvkm_fifo_chan *base)
-{
- struct gk104_fifo_chan *chan = gk104_fifo_chan(base);
- struct gk104_fifo *fifo = chan->fifo;
- struct nvkm_device *device = fifo->base.engine.subdev.device;
- u32 addr = chan->base.inst->addr >> 12;
- u32 coff = chan->base.chid * 8;
-
- nvkm_mask(device, 0x800004 + coff, 0x000f0000, chan->runl << 16);
- nvkm_wr32(device, 0x800000 + coff, 0x80000000 | addr);
-
- if (list_empty(&chan->head) && !chan->killed) {
- gk104_fifo_runlist_insert(fifo, chan);
- nvkm_mask(device, 0x800004 + coff, 0x00000400, 0x00000400);
- gk104_fifo_runlist_update(fifo, chan->runl);
- nvkm_mask(device, 0x800004 + coff, 0x00000400, 0x00000400);
- }
-}
-
-void *
-gk104_fifo_gpfifo_dtor(struct nvkm_fifo_chan *base)
-{
- struct gk104_fifo_chan *chan = gk104_fifo_chan(base);
- kfree(chan->cgrp);
- return chan;
-}
-
-const struct nvkm_fifo_chan_func
-gk104_fifo_gpfifo_func = {
- .dtor = gk104_fifo_gpfifo_dtor,
- .init = gk104_fifo_gpfifo_init,
- .fini = gk104_fifo_gpfifo_fini,
- .ntfy = gf100_fifo_chan_ntfy,
- .engine_ctor = gk104_fifo_gpfifo_engine_ctor,
- .engine_dtor = gk104_fifo_gpfifo_engine_dtor,
- .engine_init = gk104_fifo_gpfifo_engine_init,
- .engine_fini = gk104_fifo_gpfifo_engine_fini,
-};
-
-static int
-gk104_fifo_gpfifo_new_(struct gk104_fifo *fifo, u64 *runlists, u16 *chid,
- u64 vmm, u64 ioffset, u64 ilength, u64 *inst, bool priv,
- const struct nvkm_oclass *oclass,
- struct nvkm_object **pobject)
-{
- struct gk104_fifo_chan *chan;
- int runlist = ffs(*runlists) -1, ret, i;
- u64 usermem;
-
- if (!vmm || runlist < 0 || runlist >= fifo->runlist_nr)
- return -EINVAL;
- *runlists = BIT_ULL(runlist);
-
- /* Allocate the channel. */
- if (!(chan = kzalloc(sizeof(*chan), GFP_KERNEL)))
- return -ENOMEM;
- *pobject = &chan->base.object;
- chan->fifo = fifo;
- chan->runl = runlist;
- INIT_LIST_HEAD(&chan->head);
-
- ret = nvkm_fifo_chan_ctor(&gk104_fifo_gpfifo_func, &fifo->base,
- 0x1000, 0x1000, true, vmm, 0, fifo->runlist[runlist].engm_sw,
- 1, fifo->user.bar->addr, 0x200,
- oclass, &chan->base);
- if (ret)
- return ret;
-
- *chid = chan->base.chid;
- *inst = chan->base.inst->addr;
-
- /* Hack to support GPUs where even individual channels should be
- * part of a channel group.
- */
- if (fifo->func->cgrp_force) {
- if (!(chan->cgrp = kmalloc(sizeof(*chan->cgrp), GFP_KERNEL)))
- return -ENOMEM;
- chan->cgrp->id = chan->base.chid;
- INIT_LIST_HEAD(&chan->cgrp->head);
- INIT_LIST_HEAD(&chan->cgrp->chan);
- chan->cgrp->chan_nr = 0;
- }
-
- /* Clear channel control registers. */
- usermem = chan->base.chid * 0x200;
- ilength = order_base_2(ilength / 8);
-
- nvkm_kmap(fifo->user.mem);
- for (i = 0; i < 0x200; i += 4)
- nvkm_wo32(fifo->user.mem, usermem + i, 0x00000000);
- nvkm_done(fifo->user.mem);
- usermem = nvkm_memory_addr(fifo->user.mem) + usermem;
-
- /* RAMFC */
- nvkm_kmap(chan->base.inst);
- nvkm_wo32(chan->base.inst, 0x08, lower_32_bits(usermem));
- nvkm_wo32(chan->base.inst, 0x0c, upper_32_bits(usermem));
- nvkm_wo32(chan->base.inst, 0x10, 0x0000face);
- nvkm_wo32(chan->base.inst, 0x30, 0xfffff902);
- nvkm_wo32(chan->base.inst, 0x48, lower_32_bits(ioffset));
- nvkm_wo32(chan->base.inst, 0x4c, upper_32_bits(ioffset) |
- (ilength << 16));
- nvkm_wo32(chan->base.inst, 0x84, 0x20400000);
- nvkm_wo32(chan->base.inst, 0x94, 0x30000001);
- nvkm_wo32(chan->base.inst, 0x9c, 0x00000100);
- nvkm_wo32(chan->base.inst, 0xac, 0x0000001f);
- nvkm_wo32(chan->base.inst, 0xe4, priv ? 0x00000020 : 0x00000000);
- nvkm_wo32(chan->base.inst, 0xe8, chan->base.chid);
- nvkm_wo32(chan->base.inst, 0xb8, 0xf8000000);
- nvkm_wo32(chan->base.inst, 0xf8, 0x10003080); /* 0x002310 */
- nvkm_wo32(chan->base.inst, 0xfc, 0x10000010); /* 0x002350 */
- nvkm_done(chan->base.inst);
- return 0;
-}
-
-int
-gk104_fifo_gpfifo_new(struct gk104_fifo *fifo, const struct nvkm_oclass *oclass,
- void *data, u32 size, struct nvkm_object **pobject)
-{
- struct nvkm_object *parent = oclass->parent;
- union {
- struct kepler_channel_gpfifo_a_v0 v0;
- } *args = data;
- int ret = -ENOSYS;
-
- nvif_ioctl(parent, "create channel gpfifo size %d\n", size);
- if (!(ret = nvif_unpack(ret, &data, &size, args->v0, 0, 0, false))) {
- nvif_ioctl(parent, "create channel gpfifo vers %d vmm %llx "
- "ioffset %016llx ilength %08x "
- "runlist %016llx priv %d\n",
- args->v0.version, args->v0.vmm, args->v0.ioffset,
- args->v0.ilength, args->v0.runlist, args->v0.priv);
- return gk104_fifo_gpfifo_new_(fifo,
- &args->v0.runlist,
- &args->v0.chid,
- args->v0.vmm,
- args->v0.ioffset,
- args->v0.ilength,
- &args->v0.inst,
- args->v0.priv,
- oclass, pobject);
- }
-
- return ret;
-}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gpfifogv100.c b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gpfifogv100.c
deleted file mode 100644
index 428f9b41165c..000000000000
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gpfifogv100.c
+++ /dev/null
@@ -1,241 +0,0 @@
-/*
- * Copyright 2018 Red Hat Inc.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice shall be included in
- * all copies or substantial portions of the Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
- * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
- * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
- * OTHER DEALINGS IN THE SOFTWARE.
- */
-#include "changk104.h"
-#include "cgrp.h"
-
-#include <core/client.h>
-#include <core/gpuobj.h>
-
-#include <nvif/clc36f.h>
-#include <nvif/unpack.h>
-
-static u32
-gv100_fifo_gpfifo_submit_token(struct nvkm_fifo_chan *chan)
-{
- return chan->chid;
-}
-
-static int
-gv100_fifo_gpfifo_engine_valid(struct gk104_fifo_chan *chan, bool ce, bool valid)
-{
- struct nvkm_subdev *subdev = &chan->base.fifo->engine.subdev;
- struct nvkm_device *device = subdev->device;
- const u32 mask = ce ? 0x00020000 : 0x00010000;
- const u32 data = valid ? mask : 0x00000000;
- int ret;
-
- /* Block runlist to prevent the channel from being rescheduled. */
- mutex_lock(&chan->fifo->base.mutex);
- nvkm_mask(device, 0x002630, BIT(chan->runl), BIT(chan->runl));
-
- /* Preempt the channel. */
- ret = gk104_fifo_gpfifo_kick_locked(chan);
- if (ret == 0) {
- /* Update engine context validity. */
- nvkm_kmap(chan->base.inst);
- nvkm_mo32(chan->base.inst, 0x0ac, mask, data);
- nvkm_done(chan->base.inst);
- }
-
- /* Resume runlist. */
- nvkm_mask(device, 0x002630, BIT(chan->runl), 0);
- mutex_unlock(&chan->fifo->base.mutex);
- return ret;
-}
-
-int
-gv100_fifo_gpfifo_engine_fini(struct nvkm_fifo_chan *base,
- struct nvkm_engine *engine, bool suspend)
-{
- struct gk104_fifo_chan *chan = gk104_fifo_chan(base);
- struct nvkm_gpuobj *inst = chan->base.inst;
- int ret;
-
- if (engine->subdev.type == NVKM_ENGINE_CE) {
- ret = gv100_fifo_gpfifo_engine_valid(chan, true, false);
- if (ret && suspend)
- return ret;
-
- nvkm_kmap(inst);
- nvkm_wo32(chan->base.inst, 0x220, 0x00000000);
- nvkm_wo32(chan->base.inst, 0x224, 0x00000000);
- nvkm_done(inst);
- return ret;
- }
-
- ret = gv100_fifo_gpfifo_engine_valid(chan, false, false);
- if (ret && suspend)
- return ret;
-
- nvkm_kmap(inst);
- nvkm_wo32(inst, 0x0210, 0x00000000);
- nvkm_wo32(inst, 0x0214, 0x00000000);
- nvkm_done(inst);
- return ret;
-}
-
-int
-gv100_fifo_gpfifo_engine_init(struct nvkm_fifo_chan *base,
- struct nvkm_engine *engine)
-{
- struct gk104_fifo_chan *chan = gk104_fifo_chan(base);
- struct gk104_fifo_engn *engn = gk104_fifo_gpfifo_engine(chan, engine);
- struct nvkm_gpuobj *inst = chan->base.inst;
-
- if (engine->subdev.type == NVKM_ENGINE_CE) {
- const u64 bar2 = nvkm_memory_bar2(engn->inst->memory);
-
- nvkm_kmap(inst);
- nvkm_wo32(chan->base.inst, 0x220, lower_32_bits(bar2));
- nvkm_wo32(chan->base.inst, 0x224, upper_32_bits(bar2));
- nvkm_done(inst);
-
- return gv100_fifo_gpfifo_engine_valid(chan, true, true);
- }
-
- nvkm_kmap(inst);
- nvkm_wo32(inst, 0x210, lower_32_bits(engn->vma->addr) | 0x00000004);
- nvkm_wo32(inst, 0x214, upper_32_bits(engn->vma->addr));
- nvkm_done(inst);
-
- return gv100_fifo_gpfifo_engine_valid(chan, false, true);
-}
-
-static const struct nvkm_fifo_chan_func
-gv100_fifo_gpfifo = {
- .dtor = gk104_fifo_gpfifo_dtor,
- .init = gk104_fifo_gpfifo_init,
- .fini = gk104_fifo_gpfifo_fini,
- .ntfy = gf100_fifo_chan_ntfy,
- .engine_ctor = gk104_fifo_gpfifo_engine_ctor,
- .engine_dtor = gk104_fifo_gpfifo_engine_dtor,
- .engine_init = gv100_fifo_gpfifo_engine_init,
- .engine_fini = gv100_fifo_gpfifo_engine_fini,
- .submit_token = gv100_fifo_gpfifo_submit_token,
-};
-
-int
-gv100_fifo_gpfifo_new_(const struct nvkm_fifo_chan_func *func,
- struct gk104_fifo *fifo, u64 *runlists, u16 *chid,
- u64 vmm, u64 ioffset, u64 ilength, u64 *inst, bool priv,
- u32 *token, const struct nvkm_oclass *oclass,
- struct nvkm_object **pobject)
-{
- struct gk104_fifo_chan *chan;
- int runlist = ffs(*runlists) -1, ret, i;
- u64 usermem;
-
- if (!vmm || runlist < 0 || runlist >= fifo->runlist_nr)
- return -EINVAL;
- *runlists = BIT_ULL(runlist);
-
- /* Allocate the channel. */
- if (!(chan = kzalloc(sizeof(*chan), GFP_KERNEL)))
- return -ENOMEM;
- *pobject = &chan->base.object;
- chan->fifo = fifo;
- chan->runl = runlist;
- INIT_LIST_HEAD(&chan->head);
-
- ret = nvkm_fifo_chan_ctor(func, &fifo->base, 0x1000, 0x1000, true, vmm,
- 0, fifo->runlist[runlist].engm, 1, fifo->user.bar->addr, 0x200,
- oclass, &chan->base);
- if (ret)
- return ret;
-
- *chid = chan->base.chid;
- *inst = chan->base.inst->addr;
- *token = chan->base.func->submit_token(&chan->base);
-
- /* Hack to support GPUs where even individual channels should be
- * part of a channel group.
- */
- if (fifo->func->cgrp_force) {
- if (!(chan->cgrp = kmalloc(sizeof(*chan->cgrp), GFP_KERNEL)))
- return -ENOMEM;
- chan->cgrp->id = chan->base.chid;
- INIT_LIST_HEAD(&chan->cgrp->head);
- INIT_LIST_HEAD(&chan->cgrp->chan);
- chan->cgrp->chan_nr = 0;
- }
-
- /* Clear channel control registers. */
- usermem = chan->base.chid * 0x200;
- ilength = order_base_2(ilength / 8);
-
- nvkm_kmap(fifo->user.mem);
- for (i = 0; i < 0x200; i += 4)
- nvkm_wo32(fifo->user.mem, usermem + i, 0x00000000);
- nvkm_done(fifo->user.mem);
- usermem = nvkm_memory_addr(fifo->user.mem) + usermem;
-
- /* RAMFC */
- nvkm_kmap(chan->base.inst);
- nvkm_wo32(chan->base.inst, 0x008, lower_32_bits(usermem));
- nvkm_wo32(chan->base.inst, 0x00c, upper_32_bits(usermem));
- nvkm_wo32(chan->base.inst, 0x010, 0x0000face);
- nvkm_wo32(chan->base.inst, 0x030, 0x7ffff902);
- nvkm_wo32(chan->base.inst, 0x048, lower_32_bits(ioffset));
- nvkm_wo32(chan->base.inst, 0x04c, upper_32_bits(ioffset) |
- (ilength << 16));
- nvkm_wo32(chan->base.inst, 0x084, 0x20400000);
- nvkm_wo32(chan->base.inst, 0x094, 0x30000001);
- nvkm_wo32(chan->base.inst, 0x0e4, priv ? 0x00000020 : 0x00000000);
- nvkm_wo32(chan->base.inst, 0x0e8, chan->base.chid);
- nvkm_wo32(chan->base.inst, 0x0f4, 0x00001000);
- nvkm_wo32(chan->base.inst, 0x0f8, 0x10003080);
- nvkm_mo32(chan->base.inst, 0x218, 0x00000000, 0x00000000);
- nvkm_done(chan->base.inst);
- return 0;
-}
-
-int
-gv100_fifo_gpfifo_new(struct gk104_fifo *fifo, const struct nvkm_oclass *oclass,
- void *data, u32 size, struct nvkm_object **pobject)
-{
- struct nvkm_object *parent = oclass->parent;
- union {
- struct volta_channel_gpfifo_a_v0 v0;
- } *args = data;
- int ret = -ENOSYS;
-
- nvif_ioctl(parent, "create channel gpfifo size %d\n", size);
- if (!(ret = nvif_unpack(ret, &data, &size, args->v0, 0, 0, false))) {
- nvif_ioctl(parent, "create channel gpfifo vers %d vmm %llx "
- "ioffset %016llx ilength %08x "
- "runlist %016llx priv %d\n",
- args->v0.version, args->v0.vmm, args->v0.ioffset,
- args->v0.ilength, args->v0.runlist, args->v0.priv);
- return gv100_fifo_gpfifo_new_(&gv100_fifo_gpfifo, fifo,
- &args->v0.runlist,
- &args->v0.chid,
- args->v0.vmm,
- args->v0.ioffset,
- args->v0.ilength,
- &args->v0.inst,
- args->v0.priv,
- &args->v0.token,
- oclass, pobject);
- }
-
- return ret;
-}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gpfifonv50.c b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gpfifonv50.c
deleted file mode 100644
index d8f28ec1e4a8..000000000000
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gpfifonv50.c
+++ /dev/null
@@ -1,93 +0,0 @@
-/*
- * Copyright 2012 Red Hat Inc.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice shall be included in
- * all copies or substantial portions of the Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
- * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
- * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
- * OTHER DEALINGS IN THE SOFTWARE.
- *
- * Authors: Ben Skeggs
- */
-#include "channv50.h"
-
-#include <core/client.h>
-#include <core/ramht.h>
-
-#include <nvif/class.h>
-#include <nvif/cl506f.h>
-#include <nvif/unpack.h>
-
-static int
-nv50_fifo_gpfifo_new(struct nvkm_fifo *base, const struct nvkm_oclass *oclass,
- void *data, u32 size, struct nvkm_object **pobject)
-{
- struct nvkm_object *parent = oclass->parent;
- union {
- struct nv50_channel_gpfifo_v0 v0;
- } *args = data;
- struct nv50_fifo *fifo = nv50_fifo(base);
- struct nv50_fifo_chan *chan;
- u64 ioffset, ilength;
- int ret = -ENOSYS;
-
- nvif_ioctl(parent, "create channel gpfifo size %d\n", size);
- if (!(ret = nvif_unpack(ret, &data, &size, args->v0, 0, 0, false))) {
- nvif_ioctl(parent, "create channel gpfifo vers %d vmm %llx "
- "pushbuf %llx ioffset %016llx "
- "ilength %08x\n",
- args->v0.version, args->v0.vmm, args->v0.pushbuf,
- args->v0.ioffset, args->v0.ilength);
- if (!args->v0.pushbuf)
- return -EINVAL;
- } else
- return ret;
-
- if (!(chan = kzalloc(sizeof(*chan), GFP_KERNEL)))
- return -ENOMEM;
- *pobject = &chan->base.object;
-
- ret = nv50_fifo_chan_ctor(fifo, args->v0.vmm, args->v0.pushbuf,
- oclass, chan);
- if (ret)
- return ret;
-
- args->v0.chid = chan->base.chid;
- ioffset = args->v0.ioffset;
- ilength = order_base_2(args->v0.ilength / 8);
-
- nvkm_kmap(chan->ramfc);
- nvkm_wo32(chan->ramfc, 0x3c, 0x403f6078);
- nvkm_wo32(chan->ramfc, 0x44, 0x01003fff);
- nvkm_wo32(chan->ramfc, 0x48, chan->base.push->node->offset >> 4);
- nvkm_wo32(chan->ramfc, 0x50, lower_32_bits(ioffset));
- nvkm_wo32(chan->ramfc, 0x54, upper_32_bits(ioffset) | (ilength << 16));
- nvkm_wo32(chan->ramfc, 0x60, 0x7fffffff);
- nvkm_wo32(chan->ramfc, 0x78, 0x00000000);
- nvkm_wo32(chan->ramfc, 0x7c, 0x30000001);
- nvkm_wo32(chan->ramfc, 0x80, ((chan->ramht->bits - 9) << 27) |
- (4 << 24) /* SEARCH_FULL */ |
- (chan->ramht->gpuobj->node->offset >> 4));
- nvkm_done(chan->ramfc);
- return 0;
-}
-
-const struct nvkm_fifo_chan_oclass
-nv50_fifo_gpfifo_oclass = {
- .base.oclass = NV50_CHANNEL_GPFIFO,
- .base.minver = 0,
- .base.maxver = 0,
- .ctor = nv50_fifo_gpfifo_new,
-};
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gpfifotu102.c b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gpfifotu102.c
deleted file mode 100644
index 99aafa103a31..000000000000
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gpfifotu102.c
+++ /dev/null
@@ -1,81 +0,0 @@
-/*
- * Copyright 2018 Red Hat Inc.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice shall be included in
- * all copies or substantial portions of the Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
- * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
- * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
- * OTHER DEALINGS IN THE SOFTWARE.
- */
-#include "changk104.h"
-#include "cgrp.h"
-
-#include <core/client.h>
-#include <core/gpuobj.h>
-
-#include <nvif/clc36f.h>
-#include <nvif/unpack.h>
-
-static u32
-tu102_fifo_gpfifo_submit_token(struct nvkm_fifo_chan *base)
-{
- struct gk104_fifo_chan *chan = gk104_fifo_chan(base);
- return (chan->runl << 16) | chan->base.chid;
-}
-
-static const struct nvkm_fifo_chan_func
-tu102_fifo_gpfifo = {
- .dtor = gk104_fifo_gpfifo_dtor,
- .init = gk104_fifo_gpfifo_init,
- .fini = gk104_fifo_gpfifo_fini,
- .ntfy = gf100_fifo_chan_ntfy,
- .engine_ctor = gk104_fifo_gpfifo_engine_ctor,
- .engine_dtor = gk104_fifo_gpfifo_engine_dtor,
- .engine_init = gv100_fifo_gpfifo_engine_init,
- .engine_fini = gv100_fifo_gpfifo_engine_fini,
- .submit_token = tu102_fifo_gpfifo_submit_token,
-};
-
-int
-tu102_fifo_gpfifo_new(struct gk104_fifo *fifo, const struct nvkm_oclass *oclass,
- void *data, u32 size, struct nvkm_object **pobject)
-{
- struct nvkm_object *parent = oclass->parent;
- union {
- struct volta_channel_gpfifo_a_v0 v0;
- } *args = data;
- int ret = -ENOSYS;
-
- nvif_ioctl(parent, "create channel gpfifo size %d\n", size);
- if (!(ret = nvif_unpack(ret, &data, &size, args->v0, 0, 0, false))) {
- nvif_ioctl(parent, "create channel gpfifo vers %d vmm %llx "
- "ioffset %016llx ilength %08x "
- "runlist %016llx priv %d\n",
- args->v0.version, args->v0.vmm, args->v0.ioffset,
- args->v0.ilength, args->v0.runlist, args->v0.priv);
- return gv100_fifo_gpfifo_new_(&tu102_fifo_gpfifo, fifo,
- &args->v0.runlist,
- &args->v0.chid,
- args->v0.vmm,
- args->v0.ioffset,
- args->v0.ilength,
- &args->v0.inst,
- args->v0.priv,
- &args->v0.token,
- oclass, pobject);
- }
-
- return ret;
-}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gv100.c b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gv100.c
index faf0fe9f704c..33066c8cdc64 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gv100.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/gv100.c
@@ -19,32 +19,180 @@
* ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
* OTHER DEALINGS IN THE SOFTWARE.
*/
-#include "gk104.h"
+#include "priv.h"
+#include "chan.h"
+#include "chid.h"
#include "cgrp.h"
-#include "changk104.h"
-#include "user.h"
+#include "runl.h"
+#include "runq.h"
#include <core/gpuobj.h>
+#include <subdev/mmu.h>
#include <nvif/class.h>
+static u32
+gv100_chan_doorbell_handle(struct nvkm_chan *chan)
+{
+ return chan->id;
+}
+
+static int
+gv100_chan_ramfc_write(struct nvkm_chan *chan, u64 offset, u64 length, u32 devm, bool priv)
+{
+ const u64 userd = nvkm_memory_addr(chan->userd.mem) + chan->userd.base;
+ const u32 limit2 = ilog2(length / 8);
+
+ nvkm_kmap(chan->inst);
+ nvkm_wo32(chan->inst, 0x008, lower_32_bits(userd));
+ nvkm_wo32(chan->inst, 0x00c, upper_32_bits(userd));
+ nvkm_wo32(chan->inst, 0x010, 0x0000face);
+ nvkm_wo32(chan->inst, 0x030, 0x7ffff902);
+ nvkm_wo32(chan->inst, 0x048, lower_32_bits(offset));
+ nvkm_wo32(chan->inst, 0x04c, upper_32_bits(offset) | (limit2 << 16));
+ nvkm_wo32(chan->inst, 0x084, 0x20400000);
+ nvkm_wo32(chan->inst, 0x094, 0x30000000 | devm);
+ nvkm_wo32(chan->inst, 0x0e4, priv ? 0x00000020 : 0x00000000);
+ nvkm_wo32(chan->inst, 0x0e8, chan->id);
+ nvkm_wo32(chan->inst, 0x0f4, 0x00001000 | (priv ? 0x00000100 : 0x00000000));
+ nvkm_wo32(chan->inst, 0x0f8, 0x10003080);
+ nvkm_mo32(chan->inst, 0x218, 0x00000000, 0x00000000);
+ nvkm_done(chan->inst);
+ return 0;
+}
+
+const struct nvkm_chan_func_ramfc
+gv100_chan_ramfc = {
+ .write = gv100_chan_ramfc_write,
+ .devm = 0xfff,
+ .priv = true,
+};
+
+const struct nvkm_chan_func_userd
+gv100_chan_userd = {
+ .bar = -1,
+ .size = 0x200,
+ .clear = gf100_chan_userd_clear,
+};
+
+static const struct nvkm_chan_func
+gv100_chan = {
+ .inst = &gf100_chan_inst,
+ .userd = &gv100_chan_userd,
+ .ramfc = &gv100_chan_ramfc,
+ .bind = gk104_chan_bind_inst,
+ .unbind = gk104_chan_unbind,
+ .start = gk104_chan_start,
+ .stop = gk104_chan_stop,
+ .preempt = gk110_chan_preempt,
+ .doorbell_handle = gv100_chan_doorbell_handle,
+};
+
+void
+gv100_ectx_bind(struct nvkm_engn *engn, struct nvkm_cctx *cctx, struct nvkm_chan *chan)
+{
+ u64 addr = 0ULL;
+
+ if (cctx) {
+ addr = cctx->vctx->vma->addr;
+ addr |= 4ULL;
+ }
+
+ nvkm_kmap(chan->inst);
+ nvkm_wo32(chan->inst, 0x210, lower_32_bits(addr));
+ nvkm_wo32(chan->inst, 0x214, upper_32_bits(addr));
+ nvkm_mo32(chan->inst, 0x0ac, 0x00010000, cctx ? 0x00010000 : 0x00000000);
+ nvkm_done(chan->inst);
+}
+
+const struct nvkm_engn_func
+gv100_engn = {
+ .chsw = gk104_engn_chsw,
+ .cxid = gk104_engn_cxid,
+ .ctor = gk104_ectx_ctor,
+ .bind = gv100_ectx_bind,
+};
+
+void
+gv100_ectx_ce_bind(struct nvkm_engn *engn, struct nvkm_cctx *cctx, struct nvkm_chan *chan)
+{
+ const u64 bar2 = cctx ? nvkm_memory_bar2(cctx->vctx->inst->memory) : 0ULL;
+
+ nvkm_kmap(chan->inst);
+ nvkm_wo32(chan->inst, 0x220, lower_32_bits(bar2));
+ nvkm_wo32(chan->inst, 0x224, upper_32_bits(bar2));
+ nvkm_mo32(chan->inst, 0x0ac, 0x00020000, cctx ? 0x00020000 : 0x00000000);
+ nvkm_done(chan->inst);
+}
+
+int
+gv100_ectx_ce_ctor(struct nvkm_engn *engn, struct nvkm_vctx *vctx)
+{
+ if (nvkm_memory_bar2(vctx->inst->memory) == ~0ULL)
+ return -EFAULT;
+
+ return 0;
+}
+
+const struct nvkm_engn_func
+gv100_engn_ce = {
+ .chsw = gk104_engn_chsw,
+ .cxid = gk104_engn_cxid,
+ .ctor = gv100_ectx_ce_ctor,
+ .bind = gv100_ectx_ce_bind,
+};
+
+static bool
+gv100_runq_intr_1_ctxnotvalid(struct nvkm_runq *runq, int chid)
+{
+ struct nvkm_fifo *fifo = runq->fifo;
+ struct nvkm_device *device = fifo->engine.subdev.device;
+ struct nvkm_chan *chan;
+ unsigned long flags;
+
+ RUNQ_ERROR(runq, "CTXNOTVALID chid:%d", chid);
+
+ chan = nvkm_chan_get_chid(&fifo->engine, chid, &flags);
+ if (WARN_ON_ONCE(!chan))
+ return false;
+
+ nvkm_chan_error(chan, true);
+ nvkm_chan_put(&chan, flags);
+
+ nvkm_mask(device, 0x0400ac + (runq->id * 0x2000), 0x00030000, 0x00030000);
+ nvkm_wr32(device, 0x040148 + (runq->id * 0x2000), 0x80000000);
+ return true;
+}
+
+const struct nvkm_runq_func
+gv100_runq = {
+ .init = gk208_runq_init,
+ .intr = gk104_runq_intr,
+ .intr_0_names = gk104_runq_intr_0_names,
+ .intr_1_ctxnotvalid = gv100_runq_intr_1_ctxnotvalid,
+ .idle = gk104_runq_idle,
+};
+
+void
+gv100_runl_preempt(struct nvkm_runl *runl)
+{
+ nvkm_wr32(runl->fifo->engine.subdev.device, 0x002638, BIT(runl->id));
+}
+
void
-gv100_fifo_runlist_chan(struct gk104_fifo_chan *chan,
- struct nvkm_memory *memory, u32 offset)
+gv100_runl_insert_chan(struct nvkm_chan *chan, struct nvkm_memory *memory, u64 offset)
{
- struct nvkm_memory *usermem = chan->fifo->user.mem;
- const u64 user = nvkm_memory_addr(usermem) + (chan->base.chid * 0x200);
- const u64 inst = chan->base.inst->addr;
+ const u64 user = nvkm_memory_addr(chan->userd.mem) + chan->userd.base;
+ const u64 inst = chan->inst->addr;
- nvkm_wo32(memory, offset + 0x0, lower_32_bits(user));
+ nvkm_wo32(memory, offset + 0x0, lower_32_bits(user) | chan->runq << 1);
nvkm_wo32(memory, offset + 0x4, upper_32_bits(user));
- nvkm_wo32(memory, offset + 0x8, lower_32_bits(inst) | chan->base.chid);
+ nvkm_wo32(memory, offset + 0x8, lower_32_bits(inst) | chan->id);
nvkm_wo32(memory, offset + 0xc, upper_32_bits(inst));
}
void
-gv100_fifo_runlist_cgrp(struct nvkm_fifo_cgrp *cgrp,
- struct nvkm_memory *memory, u32 offset)
+gv100_runl_insert_cgrp(struct nvkm_cgrp *cgrp, struct nvkm_memory *memory, u64 offset)
{
nvkm_wo32(memory, offset + 0x0, (128 << 24) | (3 << 16) | 0x00000001);
nvkm_wo32(memory, offset + 0x4, cgrp->chan_nr);
@@ -52,16 +200,24 @@ gv100_fifo_runlist_cgrp(struct nvkm_fifo_cgrp *cgrp,
nvkm_wo32(memory, offset + 0xc, 0x00000000);
}
-static const struct gk104_fifo_runlist_func
-gv100_fifo_runlist = {
+static const struct nvkm_runl_func
+gv100_runl = {
+ .runqs = 2,
.size = 16,
- .cgrp = gv100_fifo_runlist_cgrp,
- .chan = gv100_fifo_runlist_chan,
- .commit = gk104_fifo_runlist_commit,
+ .update = nv50_runl_update,
+ .insert_cgrp = gv100_runl_insert_cgrp,
+ .insert_chan = gv100_runl_insert_chan,
+ .commit = gk104_runl_commit,
+ .wait = nv50_runl_wait,
+ .pending = gk104_runl_pending,
+ .block = gk104_runl_block,
+ .allow = gk104_runl_allow,
+ .preempt = gv100_runl_preempt,
+ .preempt_pending = gf100_runl_preempt_pending,
};
const struct nvkm_enum
-gv100_fifo_fault_gpcclient[] = {
+gv100_fifo_mmu_fault_gpcclient[] = {
{ 0x00, "T1_0" },
{ 0x01, "T1_1" },
{ 0x02, "T1_2" },
@@ -163,7 +319,7 @@ gv100_fifo_fault_gpcclient[] = {
};
const struct nvkm_enum
-gv100_fifo_fault_hubclient[] = {
+gv100_fifo_mmu_fault_hubclient[] = {
{ 0x00, "VIP" },
{ 0x01, "CE0" },
{ 0x02, "CE1" },
@@ -225,7 +381,7 @@ gv100_fifo_fault_hubclient[] = {
};
const struct nvkm_enum
-gv100_fifo_fault_reason[] = {
+gv100_fifo_mmu_fault_reason[] = {
{ 0x00, "PDE" },
{ 0x01, "PDE_SIZE" },
{ 0x02, "PTE" },
@@ -246,7 +402,7 @@ gv100_fifo_fault_reason[] = {
};
static const struct nvkm_enum
-gv100_fifo_fault_engine[] = {
+gv100_fifo_mmu_fault_engine[] = {
{ 0x01, "DISPLAY" },
{ 0x03, "PTP" },
{ 0x04, "BAR1", NULL, NVKM_SUBDEV_BAR },
@@ -273,7 +429,7 @@ gv100_fifo_fault_engine[] = {
};
const struct nvkm_enum
-gv100_fifo_fault_access[] = {
+gv100_fifo_mmu_fault_access[] = {
{ 0x0, "VIRT_READ" },
{ 0x1, "VIRT_WRITE" },
{ 0x2, "VIRT_ATOMIC" },
@@ -286,23 +442,51 @@ gv100_fifo_fault_access[] = {
{}
};
-static const struct gk104_fifo_func
+static const struct nvkm_fifo_func_mmu_fault
+gv100_fifo_mmu_fault = {
+ .recover = gf100_fifo_mmu_fault_recover,
+ .access = gv100_fifo_mmu_fault_access,
+ .engine = gv100_fifo_mmu_fault_engine,
+ .reason = gv100_fifo_mmu_fault_reason,
+ .hubclient = gv100_fifo_mmu_fault_hubclient,
+ .gpcclient = gv100_fifo_mmu_fault_gpcclient,
+};
+
+static void
+gv100_fifo_intr_ctxsw_timeout(struct nvkm_fifo *fifo, u32 engm)
+{
+ struct nvkm_runl *runl;
+ struct nvkm_engn *engn;
+
+ nvkm_runl_foreach(runl, fifo) {
+ nvkm_runl_foreach_engn_cond(engn, runl, engm & BIT(engn->id))
+ nvkm_runl_rc_engn(runl, engn);
+ }
+}
+
+static const struct nvkm_fifo_func
gv100_fifo = {
- .pbdma = &gm200_fifo_pbdma,
- .fault.access = gv100_fifo_fault_access,
- .fault.engine = gv100_fifo_fault_engine,
- .fault.reason = gv100_fifo_fault_reason,
- .fault.hubclient = gv100_fifo_fault_hubclient,
- .fault.gpcclient = gv100_fifo_fault_gpcclient,
- .runlist = &gv100_fifo_runlist,
- .user = {{-1,-1,VOLTA_USERMODE_A }, gv100_fifo_user_new },
- .chan = {{ 0, 0,VOLTA_CHANNEL_GPFIFO_A}, gv100_fifo_gpfifo_new },
- .cgrp_force = true,
+ .chid_nr = gm200_fifo_chid_nr,
+ .chid_ctor = gk110_fifo_chid_ctor,
+ .runq_nr = gm200_fifo_runq_nr,
+ .runl_ctor = gk104_fifo_runl_ctor,
+ .init = gk104_fifo_init,
+ .init_pbdmas = gk104_fifo_init_pbdmas,
+ .intr = gk104_fifo_intr,
+ .intr_ctxsw_timeout = gv100_fifo_intr_ctxsw_timeout,
+ .mmu_fault = &gv100_fifo_mmu_fault,
+ .nonstall = &gf100_fifo_nonstall,
+ .runl = &gv100_runl,
+ .runq = &gv100_runq,
+ .engn = &gv100_engn,
+ .engn_ce = &gv100_engn_ce,
+ .cgrp = {{ 0, 0, KEPLER_CHANNEL_GROUP_A }, &gk110_cgrp, .force = true },
+ .chan = {{ 0, 0, VOLTA_CHANNEL_GPFIFO_A }, &gv100_chan },
};
int
gv100_fifo_new(struct nvkm_device *device, enum nvkm_subdev_type type, int inst,
struct nvkm_fifo **pfifo)
{
- return gk104_fifo_new_(&gv100_fifo, device, type, inst, 4096, pfifo);
+ return nvkm_fifo_new_(&gv100_fifo, device, type, inst, pfifo);
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/nv04.c b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/nv04.c
index c6730c124769..674faf002b20 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/nv04.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/nv04.c
@@ -21,38 +21,201 @@
*
* Authors: Ben Skeggs
*/
-#include "nv04.h"
-#include "channv04.h"
+#include "priv.h"
+#include "cgrp.h"
+#include "chan.h"
+#include "chid.h"
+#include "runl.h"
+
#include "regsnv04.h"
-#include <core/client.h>
#include <core/ramht.h>
#include <subdev/instmem.h>
+#include <subdev/mc.h>
#include <subdev/timer.h>
#include <engine/sw.h>
-static const struct nv04_fifo_ramfc
-nv04_fifo_ramfc[] = {
- { 32, 0, 0x00, 0, NV04_PFIFO_CACHE1_DMA_PUT },
- { 32, 0, 0x04, 0, NV04_PFIFO_CACHE1_DMA_GET },
- { 16, 0, 0x08, 0, NV04_PFIFO_CACHE1_DMA_INSTANCE },
- { 16, 16, 0x08, 0, NV04_PFIFO_CACHE1_DMA_DCOUNT },
- { 32, 0, 0x0c, 0, NV04_PFIFO_CACHE1_DMA_STATE },
- { 32, 0, 0x10, 0, NV04_PFIFO_CACHE1_DMA_FETCH },
- { 32, 0, 0x14, 0, NV04_PFIFO_CACHE1_ENGINE },
- { 32, 0, 0x18, 0, NV04_PFIFO_CACHE1_PULL1 },
- {}
+#include <nvif/class.h>
+
+void
+nv04_chan_stop(struct nvkm_chan *chan)
+{
+ struct nvkm_fifo *fifo = chan->cgrp->runl->fifo;
+ struct nvkm_device *device = fifo->engine.subdev.device;
+ struct nvkm_memory *fctx = device->imem->ramfc;
+ const struct nvkm_ramfc_layout *c;
+ unsigned long flags;
+ u32 data = chan->ramfc_offset;
+ u32 chid;
+
+ /* prevent fifo context switches */
+ spin_lock_irqsave(&fifo->lock, flags);
+ nvkm_wr32(device, NV03_PFIFO_CACHES, 0);
+
+ /* if this channel is active, replace it with a null context */
+ chid = nvkm_rd32(device, NV03_PFIFO_CACHE1_PUSH1) & fifo->chid->mask;
+ if (chid == chan->id) {
+ nvkm_mask(device, NV04_PFIFO_CACHE1_DMA_PUSH, 0x00000001, 0);
+ nvkm_wr32(device, NV03_PFIFO_CACHE1_PUSH0, 0);
+ nvkm_mask(device, NV04_PFIFO_CACHE1_PULL0, 0x00000001, 0);
+
+ c = chan->func->ramfc->layout;
+ nvkm_kmap(fctx);
+ do {
+ u32 rm = ((1ULL << c->bits) - 1) << c->regs;
+ u32 cm = ((1ULL << c->bits) - 1) << c->ctxs;
+ u32 rv = (nvkm_rd32(device, c->regp) & rm) >> c->regs;
+ u32 cv = (nvkm_ro32(fctx, c->ctxp + data) & ~cm);
+ nvkm_wo32(fctx, c->ctxp + data, cv | (rv << c->ctxs));
+ } while ((++c)->bits);
+ nvkm_done(fctx);
+
+ c = chan->func->ramfc->layout;
+ do {
+ nvkm_wr32(device, c->regp, 0x00000000);
+ } while ((++c)->bits);
+
+ nvkm_wr32(device, NV03_PFIFO_CACHE1_GET, 0);
+ nvkm_wr32(device, NV03_PFIFO_CACHE1_PUT, 0);
+ nvkm_wr32(device, NV03_PFIFO_CACHE1_PUSH1, fifo->chid->mask);
+ nvkm_wr32(device, NV03_PFIFO_CACHE1_PUSH0, 1);
+ nvkm_wr32(device, NV04_PFIFO_CACHE1_PULL0, 1);
+ }
+
+ /* restore normal operation, after disabling dma mode */
+ nvkm_mask(device, NV04_PFIFO_MODE, BIT(chan->id), 0);
+ nvkm_wr32(device, NV03_PFIFO_CACHES, 1);
+ spin_unlock_irqrestore(&fifo->lock, flags);
+}
+
+void
+nv04_chan_start(struct nvkm_chan *chan)
+{
+ struct nvkm_fifo *fifo = chan->cgrp->runl->fifo;
+ unsigned long flags;
+
+ spin_lock_irqsave(&fifo->lock, flags);
+ nvkm_mask(fifo->engine.subdev.device, NV04_PFIFO_MODE, BIT(chan->id), BIT(chan->id));
+ spin_unlock_irqrestore(&fifo->lock, flags);
+}
+
+void
+nv04_chan_ramfc_clear(struct nvkm_chan *chan)
+{
+ struct nvkm_memory *ramfc = chan->cgrp->runl->fifo->engine.subdev.device->imem->ramfc;
+ const struct nvkm_ramfc_layout *c = chan->func->ramfc->layout;
+
+ nvkm_kmap(ramfc);
+ do {
+ nvkm_wo32(ramfc, chan->ramfc_offset + c->ctxp, 0x00000000);
+ } while ((++c)->bits);
+ nvkm_done(ramfc);
+}
+
+static int
+nv04_chan_ramfc_write(struct nvkm_chan *chan, u64 offset, u64 length, u32 devm, bool priv)
+{
+ struct nvkm_memory *ramfc = chan->cgrp->runl->fifo->engine.subdev.device->imem->ramfc;
+ const u32 base = chan->id * 32;
+
+ chan->ramfc_offset = base;
+
+ nvkm_kmap(ramfc);
+ nvkm_wo32(ramfc, base + 0x00, offset);
+ nvkm_wo32(ramfc, base + 0x04, offset);
+ nvkm_wo32(ramfc, base + 0x08, chan->push->addr >> 4);
+ nvkm_wo32(ramfc, base + 0x10, NV_PFIFO_CACHE1_DMA_FETCH_TRIG_128_BYTES |
+ NV_PFIFO_CACHE1_DMA_FETCH_SIZE_128_BYTES |
+#ifdef __BIG_ENDIAN
+ NV_PFIFO_CACHE1_BIG_ENDIAN |
+#endif
+ NV_PFIFO_CACHE1_DMA_FETCH_MAX_REQS_8);
+ nvkm_done(ramfc);
+ return 0;
+}
+
+static const struct nvkm_chan_func_ramfc
+nv04_chan_ramfc = {
+ .layout = (const struct nvkm_ramfc_layout[]) {
+ { 32, 0, 0x00, 0, NV04_PFIFO_CACHE1_DMA_PUT },
+ { 32, 0, 0x04, 0, NV04_PFIFO_CACHE1_DMA_GET },
+ { 16, 0, 0x08, 0, NV04_PFIFO_CACHE1_DMA_INSTANCE },
+ { 16, 16, 0x08, 0, NV04_PFIFO_CACHE1_DMA_DCOUNT },
+ { 32, 0, 0x0c, 0, NV04_PFIFO_CACHE1_DMA_STATE },
+ { 32, 0, 0x10, 0, NV04_PFIFO_CACHE1_DMA_FETCH },
+ { 32, 0, 0x14, 0, NV04_PFIFO_CACHE1_ENGINE },
+ { 32, 0, 0x18, 0, NV04_PFIFO_CACHE1_PULL1 },
+ {}
+ },
+ .write = nv04_chan_ramfc_write,
+ .clear = nv04_chan_ramfc_clear,
+ .ctxdma = true,
+};
+
+const struct nvkm_chan_func_userd
+nv04_chan_userd = {
+ .bar = 0,
+ .base = 0x800000,
+ .size = 0x010000,
+};
+
+const struct nvkm_chan_func_inst
+nv04_chan_inst = {
+ .size = 0x1000,
+};
+
+static const struct nvkm_chan_func
+nv04_chan = {
+ .inst = &nv04_chan_inst,
+ .userd = &nv04_chan_userd,
+ .ramfc = &nv04_chan_ramfc,
+ .start = nv04_chan_start,
+ .stop = nv04_chan_stop,
+};
+
+const struct nvkm_cgrp_func
+nv04_cgrp = {
+};
+
+void
+nv04_eobj_ramht_del(struct nvkm_chan *chan, int hash)
+{
+ struct nvkm_fifo *fifo = chan->cgrp->runl->fifo;
+ struct nvkm_instmem *imem = fifo->engine.subdev.device->imem;
+
+ mutex_lock(&fifo->mutex);
+ nvkm_ramht_remove(imem->ramht, hash);
+ mutex_unlock(&fifo->mutex);
+}
+
+static int
+nv04_eobj_ramht_add(struct nvkm_engn *engn, struct nvkm_object *eobj, struct nvkm_chan *chan)
+{
+ struct nvkm_fifo *fifo = chan->cgrp->runl->fifo;
+ struct nvkm_instmem *imem = fifo->engine.subdev.device->imem;
+ u32 context = 0x80000000 | chan->id << 24 | engn->id << 16;
+ int hash;
+
+ mutex_lock(&fifo->mutex);
+ hash = nvkm_ramht_insert(imem->ramht, eobj, chan->id, 4, eobj->handle, context);
+ mutex_unlock(&fifo->mutex);
+ return hash;
+}
+
+const struct nvkm_engn_func
+nv04_engn = {
+ .ramht_add = nv04_eobj_ramht_add,
+ .ramht_del = nv04_eobj_ramht_del,
};
void
-nv04_fifo_pause(struct nvkm_fifo *base, unsigned long *pflags)
-__acquires(fifo->base.lock)
+nv04_fifo_pause(struct nvkm_fifo *fifo, unsigned long *pflags)
+__acquires(fifo->lock)
{
- struct nv04_fifo *fifo = nv04_fifo(base);
- struct nvkm_device *device = fifo->base.engine.subdev.device;
+ struct nvkm_device *device = fifo->engine.subdev.device;
unsigned long flags;
- spin_lock_irqsave(&fifo->base.lock, flags);
+ spin_lock_irqsave(&fifo->lock, flags);
*pflags = flags;
nvkm_wr32(device, NV03_PFIFO_CACHES, 0x00000000);
@@ -81,50 +244,21 @@ __acquires(fifo->base.lock)
}
void
-nv04_fifo_start(struct nvkm_fifo *base, unsigned long *pflags)
-__releases(fifo->base.lock)
+nv04_fifo_start(struct nvkm_fifo *fifo, unsigned long *pflags)
+__releases(fifo->lock)
{
- struct nv04_fifo *fifo = nv04_fifo(base);
- struct nvkm_device *device = fifo->base.engine.subdev.device;
+ struct nvkm_device *device = fifo->engine.subdev.device;
unsigned long flags = *pflags;
nvkm_mask(device, NV04_PFIFO_CACHE1_PULL0, 0x00000001, 0x00000001);
nvkm_wr32(device, NV03_PFIFO_CACHES, 0x00000001);
- spin_unlock_irqrestore(&fifo->base.lock, flags);
+ spin_unlock_irqrestore(&fifo->lock, flags);
}
-struct nvkm_engine *
-nv04_fifo_id_engine(struct nvkm_fifo *fifo, int engi)
-{
- enum nvkm_subdev_type type;
-
- switch (engi) {
- case NV04_FIFO_ENGN_SW : type = NVKM_ENGINE_SW; break;
- case NV04_FIFO_ENGN_GR : type = NVKM_ENGINE_GR; break;
- case NV04_FIFO_ENGN_MPEG: type = NVKM_ENGINE_MPEG; break;
- case NV04_FIFO_ENGN_DMA : type = NVKM_ENGINE_DMAOBJ; break;
- default:
- WARN_ON(1);
- return NULL;
- }
-
- return nvkm_device_engine(fifo->engine.subdev.device, type, 0);
-}
-
-int
-nv04_fifo_engine_id(struct nvkm_fifo *base, struct nvkm_engine *engine)
-{
- switch (engine->subdev.type) {
- case NVKM_ENGINE_SW : return NV04_FIFO_ENGN_SW;
- case NVKM_ENGINE_GR : return NV04_FIFO_ENGN_GR;
- case NVKM_ENGINE_MPEG : return NV04_FIFO_ENGN_MPEG;
- case NVKM_ENGINE_DMAOBJ: return NV04_FIFO_ENGN_DMA;
- default:
- WARN_ON(1);
- return 0;
- }
-}
+const struct nvkm_runl_func
+nv04_runl = {
+};
static const char *
nv_dma_state_err(u32 state)
@@ -166,11 +300,11 @@ nv04_fifo_swmthd(struct nvkm_device *device, u32 chid, u32 addr, u32 data)
}
static void
-nv04_fifo_cache_error(struct nv04_fifo *fifo, u32 chid, u32 get)
+nv04_fifo_intr_cache_error(struct nvkm_fifo *fifo, u32 chid, u32 get)
{
- struct nvkm_subdev *subdev = &fifo->base.engine.subdev;
+ struct nvkm_subdev *subdev = &fifo->engine.subdev;
struct nvkm_device *device = subdev->device;
- struct nvkm_fifo_chan *chan;
+ struct nvkm_chan *chan;
unsigned long flags;
u32 pull0 = nvkm_rd32(device, 0x003250);
u32 mthd, data;
@@ -193,12 +327,12 @@ nv04_fifo_cache_error(struct nv04_fifo *fifo, u32 chid, u32 get)
if (!(pull0 & 0x00000100) ||
!nv04_fifo_swmthd(device, chid, mthd, data)) {
- chan = nvkm_fifo_chan_chid(&fifo->base, chid, &flags);
+ chan = nvkm_chan_get_chid(&fifo->engine, chid, &flags);
nvkm_error(subdev, "CACHE_ERROR - "
"ch %d [%s] subc %d mthd %04x data %08x\n",
- chid, chan ? chan->object.client->name : "unknown",
+ chid, chan ? chan->name : "unknown",
(mthd >> 13) & 7, mthd & 0x1ffc, data);
- nvkm_fifo_chan_put(&fifo->base, flags, &chan);
+ nvkm_chan_put(&chan, flags);
}
nvkm_wr32(device, NV04_PFIFO_CACHE1_DMA_PUSH, 0);
@@ -217,20 +351,20 @@ nv04_fifo_cache_error(struct nv04_fifo *fifo, u32 chid, u32 get)
}
static void
-nv04_fifo_dma_pusher(struct nv04_fifo *fifo, u32 chid)
+nv04_fifo_intr_dma_pusher(struct nvkm_fifo *fifo, u32 chid)
{
- struct nvkm_subdev *subdev = &fifo->base.engine.subdev;
+ struct nvkm_subdev *subdev = &fifo->engine.subdev;
struct nvkm_device *device = subdev->device;
u32 dma_get = nvkm_rd32(device, 0x003244);
u32 dma_put = nvkm_rd32(device, 0x003240);
u32 push = nvkm_rd32(device, 0x003220);
u32 state = nvkm_rd32(device, 0x003228);
- struct nvkm_fifo_chan *chan;
+ struct nvkm_chan *chan;
unsigned long flags;
const char *name;
- chan = nvkm_fifo_chan_chid(&fifo->base, chid, &flags);
- name = chan ? chan->object.client->name : "unknown";
+ chan = nvkm_chan_get_chid(&fifo->engine, chid, &flags);
+ name = chan ? chan->name : "unknown";
if (device->card_type == NV_50) {
u32 ho_get = nvkm_rd32(device, 0x003328);
u32 ho_put = nvkm_rd32(device, 0x003320);
@@ -261,18 +395,18 @@ nv04_fifo_dma_pusher(struct nv04_fifo *fifo, u32 chid)
if (dma_get != dma_put)
nvkm_wr32(device, 0x003244, dma_put);
}
- nvkm_fifo_chan_put(&fifo->base, flags, &chan);
+ nvkm_chan_put(&chan, flags);
nvkm_wr32(device, 0x003228, 0x00000000);
nvkm_wr32(device, 0x003220, 0x00000001);
nvkm_wr32(device, 0x002100, NV_PFIFO_INTR_DMA_PUSHER);
}
-void
-nv04_fifo_intr(struct nvkm_fifo *base)
+irqreturn_t
+nv04_fifo_intr(struct nvkm_inth *inth)
{
- struct nv04_fifo *fifo = nv04_fifo(base);
- struct nvkm_subdev *subdev = &fifo->base.engine.subdev;
+ struct nvkm_fifo *fifo = container_of(inth, typeof(*fifo), engine.subdev.inth);
+ struct nvkm_subdev *subdev = &fifo->engine.subdev;
struct nvkm_device *device = subdev->device;
u32 mask = nvkm_rd32(device, NV03_PFIFO_INTR_EN_0);
u32 stat = nvkm_rd32(device, NV03_PFIFO_INTR_0) & mask;
@@ -281,16 +415,16 @@ nv04_fifo_intr(struct nvkm_fifo *base)
reassign = nvkm_rd32(device, NV03_PFIFO_CACHES) & 1;
nvkm_wr32(device, NV03_PFIFO_CACHES, 0);
- chid = nvkm_rd32(device, NV03_PFIFO_CACHE1_PUSH1) & (fifo->base.nr - 1);
+ chid = nvkm_rd32(device, NV03_PFIFO_CACHE1_PUSH1) & fifo->chid->mask;
get = nvkm_rd32(device, NV03_PFIFO_CACHE1_GET);
if (stat & NV_PFIFO_INTR_CACHE_ERROR) {
- nv04_fifo_cache_error(fifo, chid, get);
+ nv04_fifo_intr_cache_error(fifo, chid, get);
stat &= ~NV_PFIFO_INTR_CACHE_ERROR;
}
if (stat & NV_PFIFO_INTR_DMA_PUSHER) {
- nv04_fifo_dma_pusher(fifo, chid);
+ nv04_fifo_intr_dma_pusher(fifo, chid);
stat &= ~NV_PFIFO_INTR_DMA_PUSHER;
}
@@ -313,7 +447,7 @@ nv04_fifo_intr(struct nvkm_fifo *base)
if (stat & 0x40000000) {
nvkm_wr32(device, 0x002100, 0x40000000);
- nvkm_fifo_uevent(&fifo->base);
+ nvkm_event_ntfy(&fifo->nonstall.event, 0, NVKM_FIFO_NONSTALL_EVENT);
stat &= ~0x40000000;
}
}
@@ -325,13 +459,13 @@ nv04_fifo_intr(struct nvkm_fifo *base)
}
nvkm_wr32(device, NV03_PFIFO_CACHES, reassign);
+ return IRQ_HANDLED;
}
void
-nv04_fifo_init(struct nvkm_fifo *base)
+nv04_fifo_init(struct nvkm_fifo *fifo)
{
- struct nv04_fifo *fifo = nv04_fifo(base);
- struct nvkm_device *device = fifo->base.engine.subdev.device;
+ struct nvkm_device *device = fifo->engine.subdev.device;
struct nvkm_instmem *imem = device->imem;
struct nvkm_ramht *ramht = imem->ramht;
struct nvkm_memory *ramro = imem->ramro;
@@ -346,7 +480,7 @@ nv04_fifo_init(struct nvkm_fifo *base)
nvkm_wr32(device, NV03_PFIFO_RAMRO, nvkm_memory_addr(ramro) >> 8);
nvkm_wr32(device, NV03_PFIFO_RAMFC, nvkm_memory_addr(ramfc) >> 8);
- nvkm_wr32(device, NV03_PFIFO_CACHE1_PUSH1, fifo->base.nr - 1);
+ nvkm_wr32(device, NV03_PFIFO_CACHE1_PUSH1, fifo->chid->mask);
nvkm_wr32(device, NV03_PFIFO_INTR_0, 0xffffffff);
nvkm_wr32(device, NV03_PFIFO_INTR_EN_0, 0xffffffff);
@@ -357,43 +491,53 @@ nv04_fifo_init(struct nvkm_fifo *base)
}
int
-nv04_fifo_new_(const struct nvkm_fifo_func *func, struct nvkm_device *device,
- enum nvkm_subdev_type type, int inst, int nr, const struct nv04_fifo_ramfc *ramfc,
- struct nvkm_fifo **pfifo)
+nv04_fifo_runl_ctor(struct nvkm_fifo *fifo)
{
- struct nv04_fifo *fifo;
- int ret;
-
- if (!(fifo = kzalloc(sizeof(*fifo), GFP_KERNEL)))
- return -ENOMEM;
- fifo->ramfc = ramfc;
- *pfifo = &fifo->base;
+ struct nvkm_runl *runl;
- ret = nvkm_fifo_ctor(func, device, type, inst, nr, &fifo->base);
- if (ret)
- return ret;
+ runl = nvkm_runl_new(fifo, 0, 0, 0);
+ if (IS_ERR(runl))
+ return PTR_ERR(runl);
- set_bit(nr - 1, fifo->base.mask); /* inactive channel */
+ nvkm_runl_add(runl, 0, fifo->func->engn_sw, NVKM_ENGINE_SW, 0);
+ nvkm_runl_add(runl, 0, fifo->func->engn_sw, NVKM_ENGINE_DMAOBJ, 0);
+ nvkm_runl_add(runl, 1, fifo->func->engn , NVKM_ENGINE_GR, 0);
+ nvkm_runl_add(runl, 2, fifo->func->engn , NVKM_ENGINE_MPEG, 0); /* NV31- */
return 0;
}
+int
+nv04_fifo_chid_ctor(struct nvkm_fifo *fifo, int nr)
+{
+ /* The last CHID is reserved by HW as a "channel invalid" marker. */
+ return nvkm_chid_new(&nvkm_chan_event, &fifo->engine.subdev, nr, 0, nr - 1, &fifo->chid);
+}
+
+static int
+nv04_fifo_chid_nr(struct nvkm_fifo *fifo)
+{
+ return 16;
+}
+
static const struct nvkm_fifo_func
nv04_fifo = {
+ .chid_nr = nv04_fifo_chid_nr,
+ .chid_ctor = nv04_fifo_chid_ctor,
+ .runl_ctor = nv04_fifo_runl_ctor,
.init = nv04_fifo_init,
.intr = nv04_fifo_intr,
- .engine_id = nv04_fifo_engine_id,
- .id_engine = nv04_fifo_id_engine,
.pause = nv04_fifo_pause,
.start = nv04_fifo_start,
- .chan = {
- &nv04_fifo_dma_oclass,
- NULL
- },
+ .runl = &nv04_runl,
+ .engn = &nv04_engn,
+ .engn_sw = &nv04_engn,
+ .cgrp = {{ }, &nv04_cgrp },
+ .chan = {{ 0, 0, NV03_CHANNEL_DMA }, &nv04_chan },
};
int
nv04_fifo_new(struct nvkm_device *device, enum nvkm_subdev_type type, int inst,
struct nvkm_fifo **pfifo)
{
- return nv04_fifo_new_(&nv04_fifo, device, type, inst, 16, nv04_fifo_ramfc, pfifo);
+ return nvkm_fifo_new_(&nv04_fifo, device, type, inst, pfifo);
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/nv04.h b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/nv04.h
deleted file mode 100644
index 3f23bcde4a54..000000000000
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/nv04.h
+++ /dev/null
@@ -1,23 +0,0 @@
-/* SPDX-License-Identifier: MIT */
-#ifndef __NV04_FIFO_H__
-#define __NV04_FIFO_H__
-#define nv04_fifo(p) container_of((p), struct nv04_fifo, base)
-#include "priv.h"
-
-struct nv04_fifo_ramfc {
- unsigned bits:6;
- unsigned ctxs:5;
- unsigned ctxp:8;
- unsigned regs:5;
- unsigned regp;
-};
-
-struct nv04_fifo {
- struct nvkm_fifo base;
- const struct nv04_fifo_ramfc *ramfc;
-};
-
-int nv04_fifo_new_(const struct nvkm_fifo_func *, struct nvkm_device *, enum nvkm_subdev_type, int,
- int nr, const struct nv04_fifo_ramfc *, struct nvkm_fifo **);
-void nv04_fifo_init(struct nvkm_fifo *);
-#endif
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/nv10.c b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/nv10.c
index f8887f0f2f82..a4bcf6b0a7e2 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/nv10.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/nv10.c
@@ -21,41 +21,93 @@
*
* Authors: Ben Skeggs
*/
-#include "nv04.h"
-#include "channv04.h"
+#include "priv.h"
+#include "cgrp.h"
+#include "chan.h"
+#include "runl.h"
+
+#include <core/gpuobj.h>
+#include <subdev/instmem.h>
+
#include "regsnv04.h"
-static const struct nv04_fifo_ramfc
-nv10_fifo_ramfc[] = {
- { 32, 0, 0x00, 0, NV04_PFIFO_CACHE1_DMA_PUT },
- { 32, 0, 0x04, 0, NV04_PFIFO_CACHE1_DMA_GET },
- { 32, 0, 0x08, 0, NV10_PFIFO_CACHE1_REF_CNT },
- { 16, 0, 0x0c, 0, NV04_PFIFO_CACHE1_DMA_INSTANCE },
- { 16, 16, 0x0c, 0, NV04_PFIFO_CACHE1_DMA_DCOUNT },
- { 32, 0, 0x10, 0, NV04_PFIFO_CACHE1_DMA_STATE },
- { 32, 0, 0x14, 0, NV04_PFIFO_CACHE1_DMA_FETCH },
- { 32, 0, 0x18, 0, NV04_PFIFO_CACHE1_ENGINE },
- { 32, 0, 0x1c, 0, NV04_PFIFO_CACHE1_PULL1 },
- {}
+#include <nvif/class.h>
+
+static int
+nv10_chan_ramfc_write(struct nvkm_chan *chan, u64 offset, u64 length, u32 devm, bool priv)
+{
+ struct nvkm_memory *ramfc = chan->cgrp->runl->fifo->engine.subdev.device->imem->ramfc;
+ const u32 base = chan->id * 32;
+
+ chan->ramfc_offset = base;
+
+ nvkm_kmap(ramfc);
+ nvkm_wo32(ramfc, base + 0x00, offset);
+ nvkm_wo32(ramfc, base + 0x04, offset);
+ nvkm_wo32(ramfc, base + 0x0c, chan->push->addr >> 4);
+ nvkm_wo32(ramfc, base + 0x14, NV_PFIFO_CACHE1_DMA_FETCH_TRIG_128_BYTES |
+ NV_PFIFO_CACHE1_DMA_FETCH_SIZE_128_BYTES |
+#ifdef __BIG_ENDIAN
+ NV_PFIFO_CACHE1_BIG_ENDIAN |
+#endif
+ NV_PFIFO_CACHE1_DMA_FETCH_MAX_REQS_8);
+ nvkm_done(ramfc);
+ return 0;
+}
+
+static const struct nvkm_chan_func_ramfc
+nv10_chan_ramfc = {
+ .layout = (const struct nvkm_ramfc_layout[]) {
+ { 32, 0, 0x00, 0, NV04_PFIFO_CACHE1_DMA_PUT },
+ { 32, 0, 0x04, 0, NV04_PFIFO_CACHE1_DMA_GET },
+ { 32, 0, 0x08, 0, NV10_PFIFO_CACHE1_REF_CNT },
+ { 16, 0, 0x0c, 0, NV04_PFIFO_CACHE1_DMA_INSTANCE },
+ { 16, 16, 0x0c, 0, NV04_PFIFO_CACHE1_DMA_DCOUNT },
+ { 32, 0, 0x10, 0, NV04_PFIFO_CACHE1_DMA_STATE },
+ { 32, 0, 0x14, 0, NV04_PFIFO_CACHE1_DMA_FETCH },
+ { 32, 0, 0x18, 0, NV04_PFIFO_CACHE1_ENGINE },
+ { 32, 0, 0x1c, 0, NV04_PFIFO_CACHE1_PULL1 },
+ {}
+ },
+ .write = nv10_chan_ramfc_write,
+ .clear = nv04_chan_ramfc_clear,
+ .ctxdma = true,
+};
+
+static const struct nvkm_chan_func
+nv10_chan = {
+ .inst = &nv04_chan_inst,
+ .userd = &nv04_chan_userd,
+ .ramfc = &nv10_chan_ramfc,
+ .start = nv04_chan_start,
+ .stop = nv04_chan_stop,
};
+int
+nv10_fifo_chid_nr(struct nvkm_fifo *fifo)
+{
+ return 32;
+}
+
static const struct nvkm_fifo_func
nv10_fifo = {
+ .chid_nr = nv10_fifo_chid_nr,
+ .chid_ctor = nv04_fifo_chid_ctor,
+ .runl_ctor = nv04_fifo_runl_ctor,
.init = nv04_fifo_init,
.intr = nv04_fifo_intr,
- .engine_id = nv04_fifo_engine_id,
- .id_engine = nv04_fifo_id_engine,
.pause = nv04_fifo_pause,
.start = nv04_fifo_start,
- .chan = {
- &nv10_fifo_dma_oclass,
- NULL
- },
+ .runl = &nv04_runl,
+ .engn = &nv04_engn,
+ .engn_sw = &nv04_engn,
+ .cgrp = {{ }, &nv04_cgrp },
+ .chan = {{ 0, 0, NV10_CHANNEL_DMA }, &nv10_chan },
};
int
nv10_fifo_new(struct nvkm_device *device, enum nvkm_subdev_type type, int inst,
struct nvkm_fifo **pfifo)
{
- return nv04_fifo_new_(&nv10_fifo, device, type, inst, 32, nv10_fifo_ramfc, pfifo);
+ return nvkm_fifo_new_(&nv10_fifo, device, type, inst, pfifo);
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/nv17.c b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/nv17.c
index 3f94c7b5b054..c70f44fd4f3b 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/nv17.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/nv17.c
@@ -21,37 +21,78 @@
*
* Authors: Ben Skeggs
*/
-#include "nv04.h"
-#include "channv04.h"
+#include "priv.h"
+#include "cgrp.h"
+#include "chan.h"
+#include "chid.h"
+#include "runl.h"
+
#include "regsnv04.h"
#include <core/ramht.h>
#include <subdev/instmem.h>
-static const struct nv04_fifo_ramfc
-nv17_fifo_ramfc[] = {
- { 32, 0, 0x00, 0, NV04_PFIFO_CACHE1_DMA_PUT },
- { 32, 0, 0x04, 0, NV04_PFIFO_CACHE1_DMA_GET },
- { 32, 0, 0x08, 0, NV10_PFIFO_CACHE1_REF_CNT },
- { 16, 0, 0x0c, 0, NV04_PFIFO_CACHE1_DMA_INSTANCE },
- { 16, 16, 0x0c, 0, NV04_PFIFO_CACHE1_DMA_DCOUNT },
- { 32, 0, 0x10, 0, NV04_PFIFO_CACHE1_DMA_STATE },
- { 32, 0, 0x14, 0, NV04_PFIFO_CACHE1_DMA_FETCH },
- { 32, 0, 0x18, 0, NV04_PFIFO_CACHE1_ENGINE },
- { 32, 0, 0x1c, 0, NV04_PFIFO_CACHE1_PULL1 },
- { 32, 0, 0x20, 0, NV10_PFIFO_CACHE1_ACQUIRE_VALUE },
- { 32, 0, 0x24, 0, NV10_PFIFO_CACHE1_ACQUIRE_TIMESTAMP },
- { 32, 0, 0x28, 0, NV10_PFIFO_CACHE1_ACQUIRE_TIMEOUT },
- { 32, 0, 0x2c, 0, NV10_PFIFO_CACHE1_SEMAPHORE },
- { 32, 0, 0x30, 0, NV10_PFIFO_CACHE1_DMA_SUBROUTINE },
- {}
+#include <nvif/class.h>
+
+static int
+nv17_chan_ramfc_write(struct nvkm_chan *chan, u64 offset, u64 length, u32 devm, bool priv)
+{
+ struct nvkm_memory *ramfc = chan->cgrp->runl->fifo->engine.subdev.device->imem->ramfc;
+ const u32 base = chan->id * 64;
+
+ chan->ramfc_offset = base;
+
+ nvkm_kmap(ramfc);
+ nvkm_wo32(ramfc, base + 0x00, offset);
+ nvkm_wo32(ramfc, base + 0x04, offset);
+ nvkm_wo32(ramfc, base + 0x0c, chan->push->addr >> 4);
+ nvkm_wo32(ramfc, base + 0x14, NV_PFIFO_CACHE1_DMA_FETCH_TRIG_128_BYTES |
+ NV_PFIFO_CACHE1_DMA_FETCH_SIZE_128_BYTES |
+#ifdef __BIG_ENDIAN
+ NV_PFIFO_CACHE1_BIG_ENDIAN |
+#endif
+ NV_PFIFO_CACHE1_DMA_FETCH_MAX_REQS_8);
+ nvkm_done(ramfc);
+ return 0;
+}
+
+static const struct nvkm_chan_func_ramfc
+nv17_chan_ramfc = {
+ .layout = (const struct nvkm_ramfc_layout[]) {
+ { 32, 0, 0x00, 0, NV04_PFIFO_CACHE1_DMA_PUT },
+ { 32, 0, 0x04, 0, NV04_PFIFO_CACHE1_DMA_GET },
+ { 32, 0, 0x08, 0, NV10_PFIFO_CACHE1_REF_CNT },
+ { 16, 0, 0x0c, 0, NV04_PFIFO_CACHE1_DMA_INSTANCE },
+ { 16, 16, 0x0c, 0, NV04_PFIFO_CACHE1_DMA_DCOUNT },
+ { 32, 0, 0x10, 0, NV04_PFIFO_CACHE1_DMA_STATE },
+ { 32, 0, 0x14, 0, NV04_PFIFO_CACHE1_DMA_FETCH },
+ { 32, 0, 0x18, 0, NV04_PFIFO_CACHE1_ENGINE },
+ { 32, 0, 0x1c, 0, NV04_PFIFO_CACHE1_PULL1 },
+ { 32, 0, 0x20, 0, NV10_PFIFO_CACHE1_ACQUIRE_VALUE },
+ { 32, 0, 0x24, 0, NV10_PFIFO_CACHE1_ACQUIRE_TIMESTAMP },
+ { 32, 0, 0x28, 0, NV10_PFIFO_CACHE1_ACQUIRE_TIMEOUT },
+ { 32, 0, 0x2c, 0, NV10_PFIFO_CACHE1_SEMAPHORE },
+ { 32, 0, 0x30, 0, NV10_PFIFO_CACHE1_DMA_SUBROUTINE },
+ {}
+ },
+ .write = nv17_chan_ramfc_write,
+ .clear = nv04_chan_ramfc_clear,
+ .ctxdma = true,
+};
+
+static const struct nvkm_chan_func
+nv17_chan = {
+ .inst = &nv04_chan_inst,
+ .userd = &nv04_chan_userd,
+ .ramfc = &nv17_chan_ramfc,
+ .start = nv04_chan_start,
+ .stop = nv04_chan_stop,
};
static void
-nv17_fifo_init(struct nvkm_fifo *base)
+nv17_fifo_init(struct nvkm_fifo *fifo)
{
- struct nv04_fifo *fifo = nv04_fifo(base);
- struct nvkm_device *device = fifo->base.engine.subdev.device;
+ struct nvkm_device *device = fifo->engine.subdev.device;
struct nvkm_instmem *imem = device->imem;
struct nvkm_ramht *ramht = imem->ramht;
struct nvkm_memory *ramro = imem->ramro;
@@ -67,7 +108,7 @@ nv17_fifo_init(struct nvkm_fifo *base)
nvkm_wr32(device, NV03_PFIFO_RAMFC, nvkm_memory_addr(ramfc) >> 8 |
0x00010000);
- nvkm_wr32(device, NV03_PFIFO_CACHE1_PUSH1, fifo->base.nr - 1);
+ nvkm_wr32(device, NV03_PFIFO_CACHE1_PUSH1, fifo->chid->mask);
nvkm_wr32(device, NV03_PFIFO_INTR_0, 0xffffffff);
nvkm_wr32(device, NV03_PFIFO_INTR_EN_0, 0xffffffff);
@@ -79,21 +120,23 @@ nv17_fifo_init(struct nvkm_fifo *base)
static const struct nvkm_fifo_func
nv17_fifo = {
+ .chid_nr = nv10_fifo_chid_nr,
+ .chid_ctor = nv04_fifo_chid_ctor,
+ .runl_ctor = nv04_fifo_runl_ctor,
.init = nv17_fifo_init,
.intr = nv04_fifo_intr,
- .engine_id = nv04_fifo_engine_id,
- .id_engine = nv04_fifo_id_engine,
.pause = nv04_fifo_pause,
.start = nv04_fifo_start,
- .chan = {
- &nv17_fifo_dma_oclass,
- NULL
- },
+ .runl = &nv04_runl,
+ .engn = &nv04_engn,
+ .engn_sw = &nv04_engn,
+ .cgrp = {{ }, &nv04_cgrp },
+ .chan = {{ 0, 0, NV17_CHANNEL_DMA }, &nv17_chan },
};
int
nv17_fifo_new(struct nvkm_device *device, enum nvkm_subdev_type type, int inst,
struct nvkm_fifo **pfifo)
{
- return nv04_fifo_new_(&nv17_fifo, device, type, inst, 32, nv17_fifo_ramfc, pfifo);
+ return nvkm_fifo_new_(&nv17_fifo, device, type, inst, pfifo);
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/nv40.c b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/nv40.c
index f9ea46809bc0..e50a94b6d7f8 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/nv40.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/nv40.c
@@ -21,46 +21,166 @@
*
* Authors: Ben Skeggs
*/
-#include "nv04.h"
-#include "channv04.h"
+#include "priv.h"
+#include "cgrp.h"
+#include "chan.h"
+#include "chid.h"
+#include "runl.h"
+
#include "regsnv04.h"
#include <core/ramht.h>
#include <subdev/fb.h>
#include <subdev/instmem.h>
-static const struct nv04_fifo_ramfc
-nv40_fifo_ramfc[] = {
- { 32, 0, 0x00, 0, NV04_PFIFO_CACHE1_DMA_PUT },
- { 32, 0, 0x04, 0, NV04_PFIFO_CACHE1_DMA_GET },
- { 32, 0, 0x08, 0, NV10_PFIFO_CACHE1_REF_CNT },
- { 32, 0, 0x0c, 0, NV04_PFIFO_CACHE1_DMA_INSTANCE },
- { 32, 0, 0x10, 0, NV04_PFIFO_CACHE1_DMA_DCOUNT },
- { 32, 0, 0x14, 0, NV04_PFIFO_CACHE1_DMA_STATE },
- { 28, 0, 0x18, 0, NV04_PFIFO_CACHE1_DMA_FETCH },
- { 2, 28, 0x18, 28, 0x002058 },
- { 32, 0, 0x1c, 0, NV04_PFIFO_CACHE1_ENGINE },
- { 32, 0, 0x20, 0, NV04_PFIFO_CACHE1_PULL1 },
- { 32, 0, 0x24, 0, NV10_PFIFO_CACHE1_ACQUIRE_VALUE },
- { 32, 0, 0x28, 0, NV10_PFIFO_CACHE1_ACQUIRE_TIMESTAMP },
- { 32, 0, 0x2c, 0, NV10_PFIFO_CACHE1_ACQUIRE_TIMEOUT },
- { 32, 0, 0x30, 0, NV10_PFIFO_CACHE1_SEMAPHORE },
- { 32, 0, 0x34, 0, NV10_PFIFO_CACHE1_DMA_SUBROUTINE },
- { 32, 0, 0x38, 0, NV40_PFIFO_GRCTX_INSTANCE },
- { 17, 0, 0x3c, 0, NV04_PFIFO_DMA_TIMESLICE },
- { 32, 0, 0x40, 0, 0x0032e4 },
- { 32, 0, 0x44, 0, 0x0032e8 },
- { 32, 0, 0x4c, 0, 0x002088 },
- { 32, 0, 0x50, 0, 0x003300 },
- { 32, 0, 0x54, 0, 0x00330c },
- {}
+#include <nvif/class.h>
+
+static int
+nv40_chan_ramfc_write(struct nvkm_chan *chan, u64 offset, u64 length, u32 devm, bool priv)
+{
+ struct nvkm_memory *ramfc = chan->cgrp->runl->fifo->engine.subdev.device->imem->ramfc;
+ const u32 base = chan->id * 128;
+
+ chan->ramfc_offset = base;
+
+ nvkm_kmap(ramfc);
+ nvkm_wo32(ramfc, base + 0x00, offset);
+ nvkm_wo32(ramfc, base + 0x04, offset);
+ nvkm_wo32(ramfc, base + 0x0c, chan->push->addr >> 4);
+ nvkm_wo32(ramfc, base + 0x18, 0x30000000 |
+ NV_PFIFO_CACHE1_DMA_FETCH_TRIG_128_BYTES |
+ NV_PFIFO_CACHE1_DMA_FETCH_SIZE_128_BYTES |
+#ifdef __BIG_ENDIAN
+ NV_PFIFO_CACHE1_BIG_ENDIAN |
+#endif
+ NV_PFIFO_CACHE1_DMA_FETCH_MAX_REQS_8);
+ nvkm_wo32(ramfc, base + 0x3c, 0x0001ffff);
+ nvkm_done(ramfc);
+ return 0;
+}
+
+static const struct nvkm_chan_func_ramfc
+nv40_chan_ramfc = {
+ .layout = (const struct nvkm_ramfc_layout[]) {
+ { 32, 0, 0x00, 0, NV04_PFIFO_CACHE1_DMA_PUT },
+ { 32, 0, 0x04, 0, NV04_PFIFO_CACHE1_DMA_GET },
+ { 32, 0, 0x08, 0, NV10_PFIFO_CACHE1_REF_CNT },
+ { 32, 0, 0x0c, 0, NV04_PFIFO_CACHE1_DMA_INSTANCE },
+ { 32, 0, 0x10, 0, NV04_PFIFO_CACHE1_DMA_DCOUNT },
+ { 32, 0, 0x14, 0, NV04_PFIFO_CACHE1_DMA_STATE },
+ { 28, 0, 0x18, 0, NV04_PFIFO_CACHE1_DMA_FETCH },
+ { 2, 28, 0x18, 28, 0x002058 },
+ { 32, 0, 0x1c, 0, NV04_PFIFO_CACHE1_ENGINE },
+ { 32, 0, 0x20, 0, NV04_PFIFO_CACHE1_PULL1 },
+ { 32, 0, 0x24, 0, NV10_PFIFO_CACHE1_ACQUIRE_VALUE },
+ { 32, 0, 0x28, 0, NV10_PFIFO_CACHE1_ACQUIRE_TIMESTAMP },
+ { 32, 0, 0x2c, 0, NV10_PFIFO_CACHE1_ACQUIRE_TIMEOUT },
+ { 32, 0, 0x30, 0, NV10_PFIFO_CACHE1_SEMAPHORE },
+ { 32, 0, 0x34, 0, NV10_PFIFO_CACHE1_DMA_SUBROUTINE },
+ { 32, 0, 0x38, 0, NV40_PFIFO_GRCTX_INSTANCE },
+ { 17, 0, 0x3c, 0, NV04_PFIFO_DMA_TIMESLICE },
+ { 32, 0, 0x40, 0, 0x0032e4 },
+ { 32, 0, 0x44, 0, 0x0032e8 },
+ { 32, 0, 0x4c, 0, 0x002088 },
+ { 32, 0, 0x50, 0, 0x003300 },
+ { 32, 0, 0x54, 0, 0x00330c },
+ {}
+ },
+ .write = nv40_chan_ramfc_write,
+ .clear = nv04_chan_ramfc_clear,
+ .ctxdma = true,
+};
+
+static const struct nvkm_chan_func_userd
+nv40_chan_userd = {
+ .bar = 0,
+ .base = 0xc00000,
+ .size = 0x001000,
+};
+
+static const struct nvkm_chan_func
+nv40_chan = {
+ .inst = &nv04_chan_inst,
+ .userd = &nv40_chan_userd,
+ .ramfc = &nv40_chan_ramfc,
+ .start = nv04_chan_start,
+ .stop = nv04_chan_stop,
};
+static int
+nv40_eobj_ramht_add(struct nvkm_engn *engn, struct nvkm_object *eobj, struct nvkm_chan *chan)
+{
+ struct nvkm_fifo *fifo = chan->cgrp->runl->fifo;
+ struct nvkm_instmem *imem = fifo->engine.subdev.device->imem;
+ u32 context = chan->id << 23 | engn->id << 20;
+ int hash;
+
+ mutex_lock(&fifo->mutex);
+ hash = nvkm_ramht_insert(imem->ramht, eobj, chan->id, 4, eobj->handle, context);
+ mutex_unlock(&fifo->mutex);
+ return hash;
+}
+
static void
-nv40_fifo_init(struct nvkm_fifo *base)
+nv40_ectx_bind(struct nvkm_engn *engn, struct nvkm_cctx *cctx, struct nvkm_chan *chan)
{
- struct nv04_fifo *fifo = nv04_fifo(base);
- struct nvkm_device *device = fifo->base.engine.subdev.device;
+ struct nvkm_fifo *fifo = chan->cgrp->runl->fifo;
+ struct nvkm_device *device = fifo->engine.subdev.device;
+ struct nvkm_memory *ramfc = device->imem->ramfc;
+ u32 inst = 0x00000000, reg, ctx;
+ int chid;
+
+ switch (engn->engine->subdev.type) {
+ case NVKM_ENGINE_GR:
+ reg = 0x0032e0;
+ ctx = 0x38;
+ break;
+ case NVKM_ENGINE_MPEG:
+ if (WARN_ON(device->chipset < 0x44))
+ return;
+ reg = 0x00330c;
+ ctx = 0x54;
+ break;
+ default:
+ WARN_ON(1);
+ return;
+ }
+
+ if (cctx)
+ inst = cctx->vctx->inst->addr >> 4;
+
+ spin_lock_irq(&fifo->lock);
+ nvkm_mask(device, 0x002500, 0x00000001, 0x00000000);
+
+ chid = nvkm_rd32(device, 0x003204) & (fifo->chid->nr - 1);
+ if (chid == chan->id)
+ nvkm_wr32(device, reg, inst);
+
+ nvkm_kmap(ramfc);
+ nvkm_wo32(ramfc, chan->ramfc_offset + ctx, inst);
+ nvkm_done(ramfc);
+
+ nvkm_mask(device, 0x002500, 0x00000001, 0x00000001);
+ spin_unlock_irq(&fifo->lock);
+}
+
+static const struct nvkm_engn_func
+nv40_engn = {
+ .bind = nv40_ectx_bind,
+ .ramht_add = nv40_eobj_ramht_add,
+ .ramht_del = nv04_eobj_ramht_del,
+};
+
+static const struct nvkm_engn_func
+nv40_engn_sw = {
+ .ramht_add = nv40_eobj_ramht_add,
+ .ramht_del = nv04_eobj_ramht_del,
+};
+
+static void
+nv40_fifo_init(struct nvkm_fifo *fifo)
+{
+ struct nvkm_device *device = fifo->engine.subdev.device;
struct nvkm_fb *fb = device->fb;
struct nvkm_instmem *imem = device->imem;
struct nvkm_ramht *ramht = imem->ramht;
@@ -98,7 +218,7 @@ nv40_fifo_init(struct nvkm_fifo *base)
break;
}
- nvkm_wr32(device, NV03_PFIFO_CACHE1_PUSH1, fifo->base.nr - 1);
+ nvkm_wr32(device, NV03_PFIFO_CACHE1_PUSH1, fifo->chid->mask);
nvkm_wr32(device, NV03_PFIFO_INTR_0, 0xffffffff);
nvkm_wr32(device, NV03_PFIFO_INTR_EN_0, 0xffffffff);
@@ -110,21 +230,23 @@ nv40_fifo_init(struct nvkm_fifo *base)
static const struct nvkm_fifo_func
nv40_fifo = {
+ .chid_nr = nv10_fifo_chid_nr,
+ .chid_ctor = nv04_fifo_chid_ctor,
+ .runl_ctor = nv04_fifo_runl_ctor,
.init = nv40_fifo_init,
.intr = nv04_fifo_intr,
- .engine_id = nv04_fifo_engine_id,
- .id_engine = nv04_fifo_id_engine,
.pause = nv04_fifo_pause,
.start = nv04_fifo_start,
- .chan = {
- &nv40_fifo_dma_oclass,
- NULL
- },
+ .runl = &nv04_runl,
+ .engn = &nv40_engn,
+ .engn_sw = &nv40_engn_sw,
+ .cgrp = {{ }, &nv04_cgrp },
+ .chan = {{ 0, 0, NV40_CHANNEL_DMA }, &nv40_chan },
};
int
nv40_fifo_new(struct nvkm_device *device, enum nvkm_subdev_type type, int inst,
struct nvkm_fifo **pfifo)
{
- return nv04_fifo_new_(&nv40_fifo, device, type, inst, 32, nv40_fifo_ramfc, pfifo);
+ return nvkm_fifo_new_(&nv40_fifo, device, type, inst, pfifo);
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/nv50.c b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/nv50.c
index a08742cf425a..954b5f3a7d57 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/nv50.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/nv50.c
@@ -21,62 +21,325 @@
*
* Authors: Ben Skeggs
*/
-#include "nv50.h"
-#include "channv50.h"
+#include "priv.h"
+#include "cgrp.h"
+#include "chan.h"
+#include "chid.h"
+#include "runl.h"
-#include <core/gpuobj.h>
+#include <core/ramht.h>
+#include <subdev/timer.h>
-static void
-nv50_fifo_runlist_update_locked(struct nv50_fifo *fifo)
+#include <nvif/class.h>
+
+void
+nv50_eobj_ramht_del(struct nvkm_chan *chan, int hash)
{
- struct nvkm_device *device = fifo->base.engine.subdev.device;
- struct nvkm_memory *cur;
- int i, p;
+ nvkm_ramht_remove(chan->ramht, hash);
+}
- cur = fifo->runlist[fifo->cur_runlist];
- fifo->cur_runlist = !fifo->cur_runlist;
+int
+nv50_eobj_ramht_add(struct nvkm_engn *engn, struct nvkm_object *eobj, struct nvkm_chan *chan)
+{
+ return nvkm_ramht_insert(chan->ramht, eobj, 0, 4, eobj->handle, engn->id << 20);
+}
- nvkm_kmap(cur);
- for (i = 0, p = 0; i < fifo->base.nr; i++) {
- if (nvkm_rd32(device, 0x002600 + (i * 4)) & 0x80000000)
- nvkm_wo32(cur, p++ * 4, i);
- }
- nvkm_done(cur);
+void
+nv50_chan_stop(struct nvkm_chan *chan)
+{
+ struct nvkm_device *device = chan->cgrp->runl->fifo->engine.subdev.device;
- nvkm_wr32(device, 0x0032f4, nvkm_memory_addr(cur) >> 12);
- nvkm_wr32(device, 0x0032ec, p);
- nvkm_wr32(device, 0x002500, 0x00000101);
+ nvkm_mask(device, 0x002600 + (chan->id * 4), 0x80000000, 0x00000000);
}
void
-nv50_fifo_runlist_update(struct nv50_fifo *fifo)
+nv50_chan_start(struct nvkm_chan *chan)
{
- mutex_lock(&fifo->base.mutex);
- nv50_fifo_runlist_update_locked(fifo);
- mutex_unlock(&fifo->base.mutex);
+ struct nvkm_device *device = chan->cgrp->runl->fifo->engine.subdev.device;
+
+ nvkm_mask(device, 0x002600 + (chan->id * 4), 0x80000000, 0x80000000);
}
-int
-nv50_fifo_oneinit(struct nvkm_fifo *base)
+void
+nv50_chan_unbind(struct nvkm_chan *chan)
{
- struct nv50_fifo *fifo = nv50_fifo(base);
- struct nvkm_device *device = fifo->base.engine.subdev.device;
+ struct nvkm_device *device = chan->cgrp->runl->fifo->engine.subdev.device;
+
+ nvkm_wr32(device, 0x002600 + (chan->id * 4), 0x00000000);
+}
+
+static void
+nv50_chan_bind(struct nvkm_chan *chan)
+{
+ struct nvkm_device *device = chan->cgrp->runl->fifo->engine.subdev.device;
+
+ nvkm_wr32(device, 0x002600 + (chan->id * 4), chan->ramfc->addr >> 12);
+}
+
+static int
+nv50_chan_ramfc_write(struct nvkm_chan *chan, u64 offset, u64 length, u32 devm, bool priv)
+{
+ struct nvkm_device *device = chan->cgrp->runl->fifo->engine.subdev.device;
+ const u32 limit2 = ilog2(length / 8);
int ret;
- ret = nvkm_memory_new(device, NVKM_MEM_TARGET_INST, 128 * 4, 0x1000,
- false, &fifo->runlist[0]);
+ ret = nvkm_gpuobj_new(device, 0x0200, 0x1000, true, chan->inst, &chan->ramfc);
+ if (ret)
+ return ret;
+
+ ret = nvkm_gpuobj_new(device, 0x1200, 0, true, chan->inst, &chan->eng);
if (ret)
return ret;
- return nvkm_memory_new(device, NVKM_MEM_TARGET_INST, 128 * 4, 0x1000,
- false, &fifo->runlist[1]);
+ ret = nvkm_gpuobj_new(device, 0x4000, 0, false, chan->inst, &chan->pgd);
+ if (ret)
+ return ret;
+
+ ret = nvkm_ramht_new(device, 0x8000, 16, chan->inst, &chan->ramht);
+ if (ret)
+ return ret;
+
+ nvkm_kmap(chan->ramfc);
+ nvkm_wo32(chan->ramfc, 0x3c, 0x403f6078);
+ nvkm_wo32(chan->ramfc, 0x44, 0x01003fff);
+ nvkm_wo32(chan->ramfc, 0x48, chan->push->node->offset >> 4);
+ nvkm_wo32(chan->ramfc, 0x50, lower_32_bits(offset));
+ nvkm_wo32(chan->ramfc, 0x54, upper_32_bits(offset) | (limit2 << 16));
+ nvkm_wo32(chan->ramfc, 0x60, 0x7fffffff);
+ nvkm_wo32(chan->ramfc, 0x78, 0x00000000);
+ nvkm_wo32(chan->ramfc, 0x7c, 0x30000000 | devm);
+ nvkm_wo32(chan->ramfc, 0x80, ((chan->ramht->bits - 9) << 27) |
+ (4 << 24) /* SEARCH_FULL */ |
+ (chan->ramht->gpuobj->node->offset >> 4));
+ nvkm_done(chan->ramfc);
+ return 0;
+}
+
+static const struct nvkm_chan_func_ramfc
+nv50_chan_ramfc = {
+ .write = nv50_chan_ramfc_write,
+ .ctxdma = true,
+ .devm = 0xfff,
+};
+
+const struct nvkm_chan_func_userd
+nv50_chan_userd = {
+ .bar = 0,
+ .base = 0xc00000,
+ .size = 0x002000,
+};
+
+const struct nvkm_chan_func_inst
+nv50_chan_inst = {
+ .size = 0x10000,
+ .vmm = true,
+};
+
+static const struct nvkm_chan_func
+nv50_chan = {
+ .inst = &nv50_chan_inst,
+ .userd = &nv50_chan_userd,
+ .ramfc = &nv50_chan_ramfc,
+ .bind = nv50_chan_bind,
+ .unbind = nv50_chan_unbind,
+ .start = nv50_chan_start,
+ .stop = nv50_chan_stop,
+};
+
+static void
+nv50_ectx_bind(struct nvkm_engn *engn, struct nvkm_cctx *cctx, struct nvkm_chan *chan)
+{
+ struct nvkm_subdev *subdev = &chan->cgrp->runl->fifo->engine.subdev;
+ struct nvkm_device *device = subdev->device;
+ u64 start = 0, limit = 0;
+ u32 flags = 0, ptr0, save;
+
+ switch (engn->engine->subdev.type) {
+ case NVKM_ENGINE_GR : ptr0 = 0x0000; break;
+ case NVKM_ENGINE_MPEG : ptr0 = 0x0060; break;
+ default:
+ WARN_ON(1);
+ return;
+ }
+
+ if (!cctx) {
+ /* HW bug workaround:
+ *
+ * PFIFO will hang forever if the connected engines don't report
+ * that they've processed the context switch request.
+ *
+ * In order for the kickoff to work, we need to ensure all the
+ * connected engines are in a state where they can answer.
+ *
+ * Newer chipsets don't seem to suffer from this issue, and well,
+ * there's also a "ignore these engines" bitmask reg we can use
+ * if we hit the issue there..
+ */
+ save = nvkm_mask(device, 0x00b860, 0x00000001, 0x00000001);
+
+ /* Tell engines to save out contexts. */
+ nvkm_wr32(device, 0x0032fc, chan->inst->addr >> 12);
+ nvkm_msec(device, 2000,
+ if (nvkm_rd32(device, 0x0032fc) != 0xffffffff)
+ break;
+ );
+ nvkm_wr32(device, 0x00b860, save);
+ } else {
+ flags = 0x00190000;
+ start = cctx->vctx->inst->addr;
+ limit = start + cctx->vctx->inst->size - 1;
+ }
+
+ nvkm_kmap(chan->eng);
+ nvkm_wo32(chan->eng, ptr0 + 0x00, flags);
+ nvkm_wo32(chan->eng, ptr0 + 0x04, lower_32_bits(limit));
+ nvkm_wo32(chan->eng, ptr0 + 0x08, lower_32_bits(start));
+ nvkm_wo32(chan->eng, ptr0 + 0x0c, upper_32_bits(limit) << 24 |
+ lower_32_bits(start));
+ nvkm_wo32(chan->eng, ptr0 + 0x10, 0x00000000);
+ nvkm_wo32(chan->eng, ptr0 + 0x14, 0x00000000);
+ nvkm_done(chan->eng);
}
+static const struct nvkm_engn_func
+nv50_engn = {
+ .bind = nv50_ectx_bind,
+ .ramht_add = nv50_eobj_ramht_add,
+ .ramht_del = nv50_eobj_ramht_del,
+};
+
+const struct nvkm_engn_func
+nv50_engn_sw = {
+ .ramht_add = nv50_eobj_ramht_add,
+ .ramht_del = nv50_eobj_ramht_del,
+};
+
+static bool
+nv50_runl_pending(struct nvkm_runl *runl)
+{
+ return nvkm_rd32(runl->fifo->engine.subdev.device, 0x0032ec) & 0x00000100;
+}
+
+int
+nv50_runl_wait(struct nvkm_runl *runl)
+{
+ struct nvkm_fifo *fifo = runl->fifo;
+
+ nvkm_msec(fifo->engine.subdev.device, fifo->timeout.chan_msec,
+ if (!nvkm_runl_update_pending(runl))
+ return 0;
+ usleep_range(1, 2);
+ );
+
+ return -ETIMEDOUT;
+}
+
+static void
+nv50_runl_commit(struct nvkm_runl *runl, struct nvkm_memory *memory, u32 start, int count)
+{
+ struct nvkm_device *device = runl->fifo->engine.subdev.device;
+ u64 addr = nvkm_memory_addr(memory) + start;
+
+ nvkm_wr32(device, 0x0032f4, addr >> 12);
+ nvkm_wr32(device, 0x0032ec, count);
+}
+
+static void
+nv50_runl_insert_chan(struct nvkm_chan *chan, struct nvkm_memory *memory, u64 offset)
+{
+ nvkm_wo32(memory, offset, chan->id);
+}
+
+static struct nvkm_memory *
+nv50_runl_alloc(struct nvkm_runl *runl, u32 *offset)
+{
+ const u32 segment = ALIGN((runl->cgrp_nr + runl->chan_nr) * runl->func->size, 0x1000);
+ const u32 maxsize = (runl->cgid ? runl->cgid->nr : 0) + runl->chid->nr;
+ int ret;
+
+ if (unlikely(!runl->mem)) {
+ ret = nvkm_memory_new(runl->fifo->engine.subdev.device, NVKM_MEM_TARGET_INST,
+ maxsize * 2 * runl->func->size, 0, false, &runl->mem);
+ if (ret) {
+ RUNL_ERROR(runl, "alloc %d\n", ret);
+ return ERR_PTR(ret);
+ }
+ } else {
+ if (runl->offset + segment >= nvkm_memory_size(runl->mem)) {
+ ret = runl->func->wait(runl);
+ if (ret) {
+ RUNL_DEBUG(runl, "rewind timeout");
+ return ERR_PTR(ret);
+ }
+
+ runl->offset = 0;
+ }
+ }
+
+ *offset = runl->offset;
+ runl->offset += segment;
+ return runl->mem;
+}
+
+int
+nv50_runl_update(struct nvkm_runl *runl)
+{
+ struct nvkm_memory *memory;
+ struct nvkm_cgrp *cgrp;
+ struct nvkm_chan *chan;
+ u32 start, offset, count;
+
+ /*TODO: prio, interleaving. */
+
+ RUNL_TRACE(runl, "RAMRL: update cgrps:%d chans:%d", runl->cgrp_nr, runl->chan_nr);
+ memory = nv50_runl_alloc(runl, &start);
+ if (IS_ERR(memory))
+ return PTR_ERR(memory);
+
+ RUNL_TRACE(runl, "RAMRL: update start:%08x", start);
+ offset = start;
+
+ nvkm_kmap(memory);
+ nvkm_runl_foreach_cgrp(cgrp, runl) {
+ if (cgrp->hw) {
+ CGRP_TRACE(cgrp, " RAMRL+%08x: chans:%d", offset, cgrp->chan_nr);
+ runl->func->insert_cgrp(cgrp, memory, offset);
+ offset += runl->func->size;
+ }
+
+ nvkm_cgrp_foreach_chan(chan, cgrp) {
+ CHAN_TRACE(chan, "RAMRL+%08x: [%s]", offset, chan->name);
+ runl->func->insert_chan(chan, memory, offset);
+ offset += runl->func->size;
+ }
+ }
+ nvkm_done(memory);
+
+ /*TODO: look into using features on newer HW to guarantee forward progress. */
+ list_rotate_left(&runl->cgrps);
+
+ count = (offset - start) / runl->func->size;
+ RUNL_TRACE(runl, "RAMRL: commit start:%08x count:%d", start, count);
+
+ runl->func->commit(runl, memory, start, count);
+ return 0;
+}
+
+const struct nvkm_runl_func
+nv50_runl = {
+ .size = 4,
+ .update = nv50_runl_update,
+ .insert_chan = nv50_runl_insert_chan,
+ .commit = nv50_runl_commit,
+ .wait = nv50_runl_wait,
+ .pending = nv50_runl_pending,
+};
+
void
-nv50_fifo_init(struct nvkm_fifo *base)
+nv50_fifo_init(struct nvkm_fifo *fifo)
{
- struct nv50_fifo *fifo = nv50_fifo(base);
- struct nvkm_device *device = fifo->base.engine.subdev.device;
+ struct nvkm_runl *runl = nvkm_runl_first(fifo);
+ struct nvkm_device *device = fifo->engine.subdev.device;
int i;
nvkm_mask(device, 0x000200, 0x00000100, 0x00000000);
@@ -89,61 +352,47 @@ nv50_fifo_init(struct nvkm_fifo *base)
for (i = 0; i < 128; i++)
nvkm_wr32(device, 0x002600 + (i * 4), 0x00000000);
- nv50_fifo_runlist_update_locked(fifo);
+
+ atomic_set(&runl->changed, 1);
+ runl->func->update(runl);
nvkm_wr32(device, 0x003200, 0x00000001);
nvkm_wr32(device, 0x003250, 0x00000001);
nvkm_wr32(device, 0x002500, 0x00000001);
}
-void *
-nv50_fifo_dtor(struct nvkm_fifo *base)
+int
+nv50_fifo_chid_ctor(struct nvkm_fifo *fifo, int nr)
{
- struct nv50_fifo *fifo = nv50_fifo(base);
- nvkm_memory_unref(&fifo->runlist[1]);
- nvkm_memory_unref(&fifo->runlist[0]);
- return fifo;
+ /* CHID 0 is unusable (some kind of PIO channel?), 127 is "channel invalid". */
+ return nvkm_chid_new(&nvkm_chan_event, &fifo->engine.subdev, nr, 1, nr - 2, &fifo->chid);
}
int
-nv50_fifo_new_(const struct nvkm_fifo_func *func, struct nvkm_device *device,
- enum nvkm_subdev_type type, int inst, struct nvkm_fifo **pfifo)
+nv50_fifo_chid_nr(struct nvkm_fifo *fifo)
{
- struct nv50_fifo *fifo;
- int ret;
-
- if (!(fifo = kzalloc(sizeof(*fifo), GFP_KERNEL)))
- return -ENOMEM;
- *pfifo = &fifo->base;
-
- ret = nvkm_fifo_ctor(func, device, type, inst, 128, &fifo->base);
- if (ret)
- return ret;
-
- set_bit(0, fifo->base.mask); /* PIO channel */
- set_bit(127, fifo->base.mask); /* inactive channel */
- return 0;
+ return 128;
}
static const struct nvkm_fifo_func
nv50_fifo = {
- .dtor = nv50_fifo_dtor,
- .oneinit = nv50_fifo_oneinit,
+ .chid_nr = nv50_fifo_chid_nr,
+ .chid_ctor = nv50_fifo_chid_ctor,
+ .runl_ctor = nv04_fifo_runl_ctor,
.init = nv50_fifo_init,
.intr = nv04_fifo_intr,
- .engine_id = nv04_fifo_engine_id,
- .id_engine = nv04_fifo_id_engine,
.pause = nv04_fifo_pause,
.start = nv04_fifo_start,
- .chan = {
- &nv50_fifo_gpfifo_oclass,
- NULL
- },
+ .runl = &nv50_runl,
+ .engn = &nv50_engn,
+ .engn_sw = &nv50_engn_sw,
+ .cgrp = {{ }, &nv04_cgrp },
+ .chan = {{ 0, 0, NV50_CHANNEL_GPFIFO }, &nv50_chan },
};
int
nv50_fifo_new(struct nvkm_device *device, enum nvkm_subdev_type type, int inst,
struct nvkm_fifo **pfifo)
{
- return nv50_fifo_new_(&nv50_fifo, device, type, inst, pfifo);
+ return nvkm_fifo_new_(&nv50_fifo, device, type, inst, pfifo);
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/nv50.h b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/nv50.h
deleted file mode 100644
index 0111e7e5a4e3..000000000000
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/nv50.h
+++ /dev/null
@@ -1,20 +0,0 @@
-/* SPDX-License-Identifier: MIT */
-#ifndef __NV50_FIFO_H__
-#define __NV50_FIFO_H__
-#define nv50_fifo(p) container_of((p), struct nv50_fifo, base)
-#include "priv.h"
-
-struct nv50_fifo {
- struct nvkm_fifo base;
- struct nvkm_memory *runlist[2];
- int cur_runlist;
-};
-
-int nv50_fifo_new_(const struct nvkm_fifo_func *, struct nvkm_device *, enum nvkm_subdev_type, int,
- struct nvkm_fifo **);
-
-void *nv50_fifo_dtor(struct nvkm_fifo *);
-int nv50_fifo_oneinit(struct nvkm_fifo *);
-void nv50_fifo_init(struct nvkm_fifo *);
-void nv50_fifo_runlist_update(struct nv50_fifo *);
-#endif
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/priv.h b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/priv.h
index 79cec57647f0..4d448be19224 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/priv.h
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/priv.h
@@ -3,46 +3,207 @@
#define __NVKM_FIFO_PRIV_H__
#define nvkm_fifo(p) container_of((p), struct nvkm_fifo, engine)
#include <engine/fifo.h>
+#include <core/enum.h>
+struct nvkm_cctx;
+struct nvkm_cgrp;
+struct nvkm_engn;
+struct nvkm_memory;
+struct nvkm_runl;
+struct nvkm_runq;
+struct nvkm_vctx;
-int nvkm_fifo_ctor(const struct nvkm_fifo_func *, struct nvkm_device *, enum nvkm_subdev_type, int,
- int nr, struct nvkm_fifo *);
-void nvkm_fifo_uevent(struct nvkm_fifo *);
-void nvkm_fifo_kevent(struct nvkm_fifo *, int chid);
-void nvkm_fifo_recover_chan(struct nvkm_fifo *, int chid);
-
-struct nvkm_fifo_chan *
-nvkm_fifo_chan_inst_locked(struct nvkm_fifo *, u64 inst);
-
-struct nvkm_fifo_chan_oclass;
struct nvkm_fifo_func {
- void *(*dtor)(struct nvkm_fifo *);
- int (*oneinit)(struct nvkm_fifo *);
- int (*info)(struct nvkm_fifo *, u64 mthd, u64 *data);
+ int (*chid_nr)(struct nvkm_fifo *);
+ int (*chid_ctor)(struct nvkm_fifo *, int nr);
+ int (*runq_nr)(struct nvkm_fifo *);
+ int (*runl_ctor)(struct nvkm_fifo *);
+
void (*init)(struct nvkm_fifo *);
- void (*fini)(struct nvkm_fifo *);
- void (*intr)(struct nvkm_fifo *);
- void (*fault)(struct nvkm_fifo *, struct nvkm_fault_data *);
- int (*engine_id)(struct nvkm_fifo *, struct nvkm_engine *);
- struct nvkm_engine *(*id_engine)(struct nvkm_fifo *, int engi);
+ void (*init_pbdmas)(struct nvkm_fifo *, u32 mask);
+
+ irqreturn_t (*intr)(struct nvkm_inth *);
+ void (*intr_mmu_fault_unit)(struct nvkm_fifo *, int unit);
+ void (*intr_ctxsw_timeout)(struct nvkm_fifo *, u32 engm);
+
+ const struct nvkm_fifo_func_mmu_fault {
+ void (*recover)(struct nvkm_fifo *, struct nvkm_fault_data *);
+ const struct nvkm_enum *access;
+ const struct nvkm_enum *engine;
+ const struct nvkm_enum *reason;
+ const struct nvkm_enum *hubclient;
+ const struct nvkm_enum *gpcclient;
+ } *mmu_fault;
+
void (*pause)(struct nvkm_fifo *, unsigned long *);
void (*start)(struct nvkm_fifo *, unsigned long *);
- void (*uevent_init)(struct nvkm_fifo *);
- void (*uevent_fini)(struct nvkm_fifo *);
- void (*recover_chan)(struct nvkm_fifo *, int chid);
- int (*class_get)(struct nvkm_fifo *, int index, struct nvkm_oclass *);
- int (*class_new)(struct nvkm_fifo *, const struct nvkm_oclass *,
- void *, u32, struct nvkm_object **);
- const struct nvkm_fifo_chan_oclass *chan[];
+
+ int (*nonstall_ctor)(struct nvkm_fifo *);
+ const struct nvkm_event_func *nonstall;
+
+ const struct nvkm_runl_func *runl;
+ const struct nvkm_runq_func *runq;
+ const struct nvkm_engn_func *engn;
+ const struct nvkm_engn_func *engn_sw;
+ const struct nvkm_engn_func *engn_ce;
+
+ struct nvkm_fifo_func_cgrp {
+ struct nvkm_sclass user;
+ const struct nvkm_cgrp_func *func;
+ bool force;
+ } cgrp;
+
+ struct nvkm_fifo_func_chan {
+ struct nvkm_sclass user;
+ const struct nvkm_chan_func *func;
+ } chan;
};
-void nv04_fifo_intr(struct nvkm_fifo *);
-int nv04_fifo_engine_id(struct nvkm_fifo *, struct nvkm_engine *);
-struct nvkm_engine *nv04_fifo_id_engine(struct nvkm_fifo *, int);
+int nvkm_fifo_new_(const struct nvkm_fifo_func *, struct nvkm_device *, enum nvkm_subdev_type, int,
+ struct nvkm_fifo **);
+
+int nv04_fifo_chid_ctor(struct nvkm_fifo *, int);
+int nv04_fifo_runl_ctor(struct nvkm_fifo *);
+void nv04_fifo_init(struct nvkm_fifo *);
+irqreturn_t nv04_fifo_intr(struct nvkm_inth *);
void nv04_fifo_pause(struct nvkm_fifo *, unsigned long *);
void nv04_fifo_start(struct nvkm_fifo *, unsigned long *);
+extern const struct nvkm_runl_func nv04_runl;
+extern const struct nvkm_engn_func nv04_engn;
+extern const struct nvkm_cgrp_func nv04_cgrp;
+extern const struct nvkm_chan_func_inst nv04_chan_inst;
+extern const struct nvkm_chan_func_userd nv04_chan_userd;
+void nv04_chan_ramfc_clear(struct nvkm_chan *);
+void nv04_chan_start(struct nvkm_chan *);
+void nv04_chan_stop(struct nvkm_chan *);
+void nv04_eobj_ramht_del(struct nvkm_chan *, int);
+
+int nv10_fifo_chid_nr(struct nvkm_fifo *);
+
+int nv50_fifo_chid_nr(struct nvkm_fifo *);
+int nv50_fifo_chid_ctor(struct nvkm_fifo *, int);
+void nv50_fifo_init(struct nvkm_fifo *);
+extern const struct nvkm_runl_func nv50_runl;
+int nv50_runl_update(struct nvkm_runl *);
+int nv50_runl_wait(struct nvkm_runl *);
+extern const struct nvkm_engn_func nv50_engn_sw;
+extern const struct nvkm_chan_func_inst nv50_chan_inst;
+extern const struct nvkm_chan_func_userd nv50_chan_userd;
+void nv50_chan_unbind(struct nvkm_chan *);
+void nv50_chan_start(struct nvkm_chan *);
+void nv50_chan_stop(struct nvkm_chan *);
+void nv50_chan_preempt(struct nvkm_chan *);
+int nv50_eobj_ramht_add(struct nvkm_engn *, struct nvkm_object *, struct nvkm_chan *);
+void nv50_eobj_ramht_del(struct nvkm_chan *, int);
+
+extern const struct nvkm_event_func g84_fifo_nonstall;
+extern const struct nvkm_engn_func g84_engn;
+extern const struct nvkm_chan_func g84_chan;
+
+int gf100_fifo_chid_ctor(struct nvkm_fifo *, int);
+int gf100_fifo_runq_nr(struct nvkm_fifo *);
+bool gf100_fifo_intr_pbdma(struct nvkm_fifo *);
+void gf100_fifo_intr_mmu_fault(struct nvkm_fifo *);
+void gf100_fifo_intr_mmu_fault_unit(struct nvkm_fifo *, int);
+void gf100_fifo_intr_sched(struct nvkm_fifo *);
+void gf100_fifo_intr_ctxsw_timeout(struct nvkm_fifo *, u32);
+void gf100_fifo_mmu_fault_recover(struct nvkm_fifo *, struct nvkm_fault_data *);
+extern const struct nvkm_enum gf100_fifo_mmu_fault_access[];
+extern const struct nvkm_event_func gf100_fifo_nonstall;
+bool gf100_runl_preempt_pending(struct nvkm_runl *);
+void gf100_runq_init(struct nvkm_runq *);
+bool gf100_runq_intr(struct nvkm_runq *, struct nvkm_runl *);
+void gf100_engn_mmu_fault_trigger(struct nvkm_engn *);
+bool gf100_engn_mmu_fault_triggered(struct nvkm_engn *);
+extern const struct nvkm_engn_func gf100_engn_sw;
+extern const struct nvkm_chan_func_inst gf100_chan_inst;
+void gf100_chan_userd_clear(struct nvkm_chan *);
+void gf100_chan_preempt(struct nvkm_chan *);
+
+int gk104_fifo_chid_nr(struct nvkm_fifo *);
+int gk104_fifo_runl_ctor(struct nvkm_fifo *);
+void gk104_fifo_init(struct nvkm_fifo *);
+void gk104_fifo_init_pbdmas(struct nvkm_fifo *, u32);
+irqreturn_t gk104_fifo_intr(struct nvkm_inth *);
+void gk104_fifo_intr_runlist(struct nvkm_fifo *);
+void gk104_fifo_intr_chsw(struct nvkm_fifo *);
+void gk104_fifo_intr_bind(struct nvkm_fifo *);
+extern const struct nvkm_fifo_func_mmu_fault gk104_fifo_mmu_fault;
+extern const struct nvkm_enum gk104_fifo_mmu_fault_reason[];
+extern const struct nvkm_enum gk104_fifo_mmu_fault_hubclient[];
+extern const struct nvkm_enum gk104_fifo_mmu_fault_gpcclient[];
+void gk104_runl_insert_chan(struct nvkm_chan *, struct nvkm_memory *, u64);
+void gk104_runl_commit(struct nvkm_runl *, struct nvkm_memory *, u32, int);
+bool gk104_runl_pending(struct nvkm_runl *);
+void gk104_runl_block(struct nvkm_runl *, u32);
+void gk104_runl_allow(struct nvkm_runl *, u32);
+void gk104_runl_fault_clear(struct nvkm_runl *);
+extern const struct nvkm_runq_func gk104_runq;
+void gk104_runq_init(struct nvkm_runq *);
+bool gk104_runq_intr(struct nvkm_runq *, struct nvkm_runl *);
+extern const struct nvkm_bitfield gk104_runq_intr_0_names[];
+bool gk104_runq_idle(struct nvkm_runq *);
+extern const struct nvkm_engn_func gk104_engn;
+bool gk104_engn_chsw(struct nvkm_engn *);
+int gk104_engn_cxid(struct nvkm_engn *, bool *cgid);
+int gk104_ectx_ctor(struct nvkm_engn *, struct nvkm_vctx *);
+extern const struct nvkm_engn_func gk104_engn_ce;
+extern const struct nvkm_chan_func_userd gk104_chan_userd;
+extern const struct nvkm_chan_func_ramfc gk104_chan_ramfc;
+void gk104_chan_bind(struct nvkm_chan *);
+void gk104_chan_bind_inst(struct nvkm_chan *);
+void gk104_chan_unbind(struct nvkm_chan *);
+void gk104_chan_start(struct nvkm_chan *);
+void gk104_chan_stop(struct nvkm_chan *);
+
+int gk110_fifo_chid_ctor(struct nvkm_fifo *, int);
+extern const struct nvkm_runl_func gk110_runl;
+extern const struct nvkm_cgrp_func gk110_cgrp;
+void gk110_runl_insert_cgrp(struct nvkm_cgrp *, struct nvkm_memory *, u64);
+extern const struct nvkm_chan_func gk110_chan;
+void gk110_chan_preempt(struct nvkm_chan *);
+
+extern const struct nvkm_runq_func gk208_runq;
+void gk208_runq_init(struct nvkm_runq *);
+
+void gm107_fifo_intr_mmu_fault_unit(struct nvkm_fifo *, int);
+extern const struct nvkm_fifo_func_mmu_fault gm107_fifo_mmu_fault;
+extern const struct nvkm_runl_func gm107_runl;
+extern const struct nvkm_chan_func gm107_chan;
+
+int gm200_fifo_chid_nr(struct nvkm_fifo *);
+int gm200_fifo_runq_nr(struct nvkm_fifo *);
+
+extern const struct nvkm_enum gv100_fifo_mmu_fault_access[];
+extern const struct nvkm_enum gv100_fifo_mmu_fault_reason[];
+extern const struct nvkm_enum gv100_fifo_mmu_fault_hubclient[];
+extern const struct nvkm_enum gv100_fifo_mmu_fault_gpcclient[];
+void gv100_runl_insert_cgrp(struct nvkm_cgrp *, struct nvkm_memory *, u64);
+void gv100_runl_insert_chan(struct nvkm_chan *, struct nvkm_memory *, u64);
+void gv100_runl_preempt(struct nvkm_runl *);
+extern const struct nvkm_runq_func gv100_runq;
+extern const struct nvkm_engn_func gv100_engn;
+void gv100_ectx_bind(struct nvkm_engn *, struct nvkm_cctx *, struct nvkm_chan *);
+extern const struct nvkm_engn_func gv100_engn_ce;
+int gv100_ectx_ce_ctor(struct nvkm_engn *, struct nvkm_vctx *);
+void gv100_ectx_ce_bind(struct nvkm_engn *, struct nvkm_cctx *, struct nvkm_chan *);
+extern const struct nvkm_chan_func_userd gv100_chan_userd;
+extern const struct nvkm_chan_func_ramfc gv100_chan_ramfc;
+
+void tu102_fifo_intr_ctxsw_timeout_info(struct nvkm_engn *, u32 info);
+extern const struct nvkm_fifo_func_mmu_fault tu102_fifo_mmu_fault;
-void gf100_fifo_intr_fault(struct nvkm_fifo *, int);
+int ga100_fifo_runl_ctor(struct nvkm_fifo *);
+int ga100_fifo_nonstall_ctor(struct nvkm_fifo *);
+extern const struct nvkm_event_func ga100_fifo_nonstall;
+extern const struct nvkm_runl_func ga100_runl;
+extern const struct nvkm_runq_func ga100_runq;
+extern const struct nvkm_engn_func ga100_engn;
+extern const struct nvkm_engn_func ga100_engn_ce;
+extern const struct nvkm_cgrp_func ga100_cgrp;
+extern const struct nvkm_chan_func ga100_chan;
-int gk104_fifo_engine_id(struct nvkm_fifo *, struct nvkm_engine *);
-struct nvkm_engine *gk104_fifo_id_engine(struct nvkm_fifo *, int);
+int nvkm_uchan_new(struct nvkm_fifo *, struct nvkm_cgrp *, const struct nvkm_oclass *,
+ void *argv, u32 argc, struct nvkm_object **);
+int nvkm_ucgrp_new(struct nvkm_fifo *, const struct nvkm_oclass *, void *argv, u32 argc,
+ struct nvkm_object **);
#endif
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/runl.c b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/runl.c
new file mode 100644
index 000000000000..93d628d7d508
--- /dev/null
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/runl.c
@@ -0,0 +1,430 @@
+/*
+ * Copyright 2021 Red Hat Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ */
+#include "runl.h"
+#include "cgrp.h"
+#include "chan.h"
+#include "chid.h"
+#include "priv.h"
+#include "runq.h"
+
+#include <core/gpuobj.h>
+#include <subdev/timer.h>
+#include <subdev/top.h>
+
+static struct nvkm_cgrp *
+nvkm_engn_cgrp_get(struct nvkm_engn *engn, unsigned long *pirqflags)
+{
+ struct nvkm_cgrp *cgrp = NULL;
+ struct nvkm_chan *chan;
+ bool cgid;
+ int id;
+
+ id = engn->func->cxid(engn, &cgid);
+ if (id < 0)
+ return NULL;
+
+ if (!cgid) {
+ chan = nvkm_runl_chan_get_chid(engn->runl, id, pirqflags);
+ if (chan)
+ cgrp = chan->cgrp;
+ } else {
+ cgrp = nvkm_runl_cgrp_get_cgid(engn->runl, id, pirqflags);
+ }
+
+ WARN_ON(!cgrp);
+ return cgrp;
+}
+
+static void
+nvkm_runl_rc(struct nvkm_runl *runl)
+{
+ struct nvkm_fifo *fifo = runl->fifo;
+ struct nvkm_cgrp *cgrp, *gtmp;
+ struct nvkm_chan *chan, *ctmp;
+ struct nvkm_engn *engn;
+ unsigned long flags;
+ int rc, state, i;
+ bool reset;
+
+ /* Runlist is blocked before scheduling recovery - fetch count. */
+ BUG_ON(!mutex_is_locked(&runl->mutex));
+ rc = atomic_xchg(&runl->rc_pending, 0);
+ if (!rc)
+ return;
+
+ /* Look for channel groups flagged for RC. */
+ nvkm_runl_foreach_cgrp_safe(cgrp, gtmp, runl) {
+ state = atomic_cmpxchg(&cgrp->rc, NVKM_CGRP_RC_PENDING, NVKM_CGRP_RC_RUNNING);
+ if (state == NVKM_CGRP_RC_PENDING) {
+ /* Disable all channels in them, and remove from runlist. */
+ nvkm_cgrp_foreach_chan_safe(chan, ctmp, cgrp) {
+ nvkm_chan_error(chan, false);
+ nvkm_chan_remove_locked(chan);
+ }
+ }
+ }
+
+ /* On GPUs with runlist preempt, wait for PBDMA(s) servicing runlist to go idle. */
+ if (runl->func->preempt) {
+ for (i = 0; i < runl->runq_nr; i++) {
+ struct nvkm_runq *runq = runl->runq[i];
+
+ if (runq) {
+ nvkm_msec(fifo->engine.subdev.device, 2000,
+ if (runq->func->idle(runq))
+ break;
+ );
+ }
+ }
+ }
+
+ /* Look for engines that are still on flagged channel groups - reset them. */
+ nvkm_runl_foreach_engn_cond(engn, runl, engn->func->cxid) {
+ cgrp = nvkm_engn_cgrp_get(engn, &flags);
+ if (!cgrp) {
+ ENGN_DEBUG(engn, "cxid not valid");
+ continue;
+ }
+
+ reset = atomic_read(&cgrp->rc) == NVKM_CGRP_RC_RUNNING;
+ nvkm_cgrp_put(&cgrp, flags);
+ if (!reset) {
+ ENGN_DEBUG(engn, "cxid not in recovery");
+ continue;
+ }
+
+ ENGN_DEBUG(engn, "resetting...");
+ /*TODO: can we do something less of a potential catastrophe on failure? */
+ WARN_ON(nvkm_engine_reset(engn->engine));
+ }
+
+ /* Submit runlist update, and clear any remaining exception state. */
+ runl->func->update(runl);
+ if (runl->func->fault_clear)
+ runl->func->fault_clear(runl);
+
+ /* Unblock runlist processing. */
+ while (rc--)
+ nvkm_runl_allow(runl);
+ runl->func->wait(runl);
+}
+
+static void
+nvkm_runl_rc_runl(struct nvkm_runl *runl)
+{
+ RUNL_ERROR(runl, "rc scheduled");
+
+ nvkm_runl_block(runl);
+ if (runl->func->preempt)
+ runl->func->preempt(runl);
+
+ atomic_inc(&runl->rc_pending);
+ schedule_work(&runl->work);
+}
+
+void
+nvkm_runl_rc_cgrp(struct nvkm_cgrp *cgrp)
+{
+ if (atomic_cmpxchg(&cgrp->rc, NVKM_CGRP_RC_NONE, NVKM_CGRP_RC_PENDING) != NVKM_CGRP_RC_NONE)
+ return;
+
+ CGRP_ERROR(cgrp, "rc scheduled");
+ nvkm_runl_rc_runl(cgrp->runl);
+}
+
+void
+nvkm_runl_rc_engn(struct nvkm_runl *runl, struct nvkm_engn *engn)
+{
+ struct nvkm_cgrp *cgrp;
+ unsigned long flags;
+
+ /* Lookup channel group currently on engine. */
+ cgrp = nvkm_engn_cgrp_get(engn, &flags);
+ if (!cgrp) {
+ ENGN_DEBUG(engn, "rc skipped, not on channel");
+ return;
+ }
+
+ nvkm_runl_rc_cgrp(cgrp);
+ nvkm_cgrp_put(&cgrp, flags);
+}
+
+static void
+nvkm_runl_work(struct work_struct *work)
+{
+ struct nvkm_runl *runl = container_of(work, typeof(*runl), work);
+
+ mutex_lock(&runl->mutex);
+ nvkm_runl_rc(runl);
+ mutex_unlock(&runl->mutex);
+
+}
+
+struct nvkm_chan *
+nvkm_runl_chan_get_inst(struct nvkm_runl *runl, u64 inst, unsigned long *pirqflags)
+{
+ struct nvkm_chid *chid = runl->chid;
+ struct nvkm_chan *chan;
+ unsigned long flags;
+ int id;
+
+ spin_lock_irqsave(&chid->lock, flags);
+ for_each_set_bit(id, chid->used, chid->nr) {
+ chan = chid->data[id];
+ if (likely(chan)) {
+ if (chan->inst->addr == inst) {
+ spin_lock(&chan->cgrp->lock);
+ *pirqflags = flags;
+ spin_unlock(&chid->lock);
+ return chan;
+ }
+ }
+ }
+ spin_unlock_irqrestore(&chid->lock, flags);
+ return NULL;
+}
+
+struct nvkm_chan *
+nvkm_runl_chan_get_chid(struct nvkm_runl *runl, int id, unsigned long *pirqflags)
+{
+ struct nvkm_chid *chid = runl->chid;
+ struct nvkm_chan *chan;
+ unsigned long flags;
+
+ spin_lock_irqsave(&chid->lock, flags);
+ if (!WARN_ON(id >= chid->nr)) {
+ chan = chid->data[id];
+ if (likely(chan)) {
+ spin_lock(&chan->cgrp->lock);
+ *pirqflags = flags;
+ spin_unlock(&chid->lock);
+ return chan;
+ }
+ }
+ spin_unlock_irqrestore(&chid->lock, flags);
+ return NULL;
+}
+
+struct nvkm_cgrp *
+nvkm_runl_cgrp_get_cgid(struct nvkm_runl *runl, int id, unsigned long *pirqflags)
+{
+ struct nvkm_chid *cgid = runl->cgid;
+ struct nvkm_cgrp *cgrp;
+ unsigned long flags;
+
+ spin_lock_irqsave(&cgid->lock, flags);
+ if (!WARN_ON(id >= cgid->nr)) {
+ cgrp = cgid->data[id];
+ if (likely(cgrp)) {
+ spin_lock(&cgrp->lock);
+ *pirqflags = flags;
+ spin_unlock(&cgid->lock);
+ return cgrp;
+ }
+ }
+ spin_unlock_irqrestore(&cgid->lock, flags);
+ return NULL;
+}
+
+int
+nvkm_runl_preempt_wait(struct nvkm_runl *runl)
+{
+ return nvkm_msec(runl->fifo->engine.subdev.device, runl->fifo->timeout.chan_msec,
+ if (!runl->func->preempt_pending(runl))
+ break;
+
+ nvkm_runl_rc(runl);
+ usleep_range(1, 2);
+ ) < 0 ? -ETIMEDOUT : 0;
+}
+
+bool
+nvkm_runl_update_pending(struct nvkm_runl *runl)
+{
+ if (!runl->func->pending(runl))
+ return false;
+
+ nvkm_runl_rc(runl);
+ return true;
+}
+
+void
+nvkm_runl_update_locked(struct nvkm_runl *runl, bool wait)
+{
+ if (atomic_xchg(&runl->changed, 0) && runl->func->update) {
+ runl->func->update(runl);
+ if (wait)
+ runl->func->wait(runl);
+ }
+}
+
+void
+nvkm_runl_allow(struct nvkm_runl *runl)
+{
+ struct nvkm_fifo *fifo = runl->fifo;
+ unsigned long flags;
+
+ spin_lock_irqsave(&fifo->lock, flags);
+ if (!--runl->blocked) {
+ RUNL_TRACE(runl, "running");
+ runl->func->allow(runl, ~0);
+ }
+ spin_unlock_irqrestore(&fifo->lock, flags);
+}
+
+void
+nvkm_runl_block(struct nvkm_runl *runl)
+{
+ struct nvkm_fifo *fifo = runl->fifo;
+ unsigned long flags;
+
+ spin_lock_irqsave(&fifo->lock, flags);
+ if (!runl->blocked++) {
+ RUNL_TRACE(runl, "stopped");
+ runl->func->block(runl, ~0);
+ }
+ spin_unlock_irqrestore(&fifo->lock, flags);
+}
+
+void
+nvkm_runl_fini(struct nvkm_runl *runl)
+{
+ if (runl->func->fini)
+ runl->func->fini(runl);
+
+ flush_work(&runl->work);
+}
+
+void
+nvkm_runl_del(struct nvkm_runl *runl)
+{
+ struct nvkm_engn *engn, *engt;
+
+ nvkm_memory_unref(&runl->mem);
+
+ list_for_each_entry_safe(engn, engt, &runl->engns, head) {
+ list_del(&engn->head);
+ kfree(engn);
+ }
+
+ nvkm_chid_unref(&runl->chid);
+ nvkm_chid_unref(&runl->cgid);
+
+ list_del(&runl->head);
+ mutex_destroy(&runl->mutex);
+ kfree(runl);
+}
+
+struct nvkm_engn *
+nvkm_runl_add(struct nvkm_runl *runl, int engi, const struct nvkm_engn_func *func,
+ enum nvkm_subdev_type type, int inst)
+{
+ struct nvkm_fifo *fifo = runl->fifo;
+ struct nvkm_device *device = fifo->engine.subdev.device;
+ struct nvkm_engine *engine;
+ struct nvkm_engn *engn;
+
+ engine = nvkm_device_engine(device, type, inst);
+ if (!engine) {
+ RUNL_DEBUG(runl, "engn %d.%d[%s] not found", engi, inst, nvkm_subdev_type[type]);
+ return NULL;
+ }
+
+ if (!(engn = kzalloc(sizeof(*engn), GFP_KERNEL)))
+ return NULL;
+
+ engn->func = func;
+ engn->runl = runl;
+ engn->id = engi;
+ engn->engine = engine;
+ engn->fault = -1;
+ list_add_tail(&engn->head, &runl->engns);
+
+ /* Lookup MMU engine ID for fault handling. */
+ if (device->top)
+ engn->fault = nvkm_top_fault_id(device, engine->subdev.type, engine->subdev.inst);
+
+ if (engn->fault < 0 && fifo->func->mmu_fault) {
+ const struct nvkm_enum *map = fifo->func->mmu_fault->engine;
+
+ while (map->name) {
+ if (map->data2 == engine->subdev.type && map->inst == engine->subdev.inst) {
+ engn->fault = map->value;
+ break;
+ }
+ map++;
+ }
+ }
+
+ return engn;
+}
+
+struct nvkm_runl *
+nvkm_runl_get(struct nvkm_fifo *fifo, int runi, u32 addr)
+{
+ struct nvkm_runl *runl;
+
+ nvkm_runl_foreach(runl, fifo) {
+ if ((runi >= 0 && runl->id == runi) || (runi < 0 && runl->addr == addr))
+ return runl;
+ }
+
+ return NULL;
+}
+
+struct nvkm_runl *
+nvkm_runl_new(struct nvkm_fifo *fifo, int runi, u32 addr, int id_nr)
+{
+ struct nvkm_subdev *subdev = &fifo->engine.subdev;
+ struct nvkm_runl *runl;
+ int ret;
+
+ if (!(runl = kzalloc(sizeof(*runl), GFP_KERNEL)))
+ return NULL;
+
+ runl->func = fifo->func->runl;
+ runl->fifo = fifo;
+ runl->id = runi;
+ runl->addr = addr;
+ INIT_LIST_HEAD(&runl->engns);
+ INIT_LIST_HEAD(&runl->cgrps);
+ atomic_set(&runl->changed, 0);
+ mutex_init(&runl->mutex);
+ INIT_WORK(&runl->work, nvkm_runl_work);
+ atomic_set(&runl->rc_triggered, 0);
+ atomic_set(&runl->rc_pending, 0);
+ list_add_tail(&runl->head, &fifo->runls);
+
+ if (!fifo->chid) {
+ if ((ret = nvkm_chid_new(&nvkm_chan_event, subdev, id_nr, 0, id_nr, &runl->cgid)) ||
+ (ret = nvkm_chid_new(&nvkm_chan_event, subdev, id_nr, 0, id_nr, &runl->chid))) {
+ RUNL_ERROR(runl, "cgid/chid: %d", ret);
+ nvkm_runl_del(runl);
+ return NULL;
+ }
+ } else {
+ runl->cgid = nvkm_chid_ref(fifo->cgid);
+ runl->chid = nvkm_chid_ref(fifo->chid);
+ }
+
+ return runl;
+}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/runl.h b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/runl.h
new file mode 100644
index 000000000000..c93d21bb7bd5
--- /dev/null
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/runl.h
@@ -0,0 +1,125 @@
+#ifndef __NVKM_RUNL_H__
+#define __NVKM_RUNL_H__
+#include <core/intr.h>
+struct nvkm_cctx;
+struct nvkm_cgrp;
+struct nvkm_chan;
+struct nvkm_memory;
+struct nvkm_object;
+struct nvkm_vctx;
+enum nvkm_subdev_type;
+
+struct nvkm_engn {
+ const struct nvkm_engn_func {
+ bool (*chsw)(struct nvkm_engn *);
+ int (*cxid)(struct nvkm_engn *, bool *cgid);
+ void (*mmu_fault_trigger)(struct nvkm_engn *);
+ bool (*mmu_fault_triggered)(struct nvkm_engn *);
+ int (*ctor)(struct nvkm_engn *, struct nvkm_vctx *);
+ void (*bind)(struct nvkm_engn *, struct nvkm_cctx *, struct nvkm_chan *);
+ int (*ramht_add)(struct nvkm_engn *, struct nvkm_object *, struct nvkm_chan *);
+ void (*ramht_del)(struct nvkm_chan *, int hash);
+ } *func;
+ struct nvkm_runl *runl;
+ int id;
+
+ struct nvkm_engine *engine;
+
+ int fault;
+
+ struct list_head head;
+};
+
+#define ENGN_PRINT(e,l,p,f,a...) \
+ RUNL_PRINT((e)->runl, l, p, "%02d[%8s]:"f, (e)->id, (e)->engine->subdev.name, ##a)
+#define ENGN_DEBUG(e,f,a...) ENGN_PRINT((e), DEBUG, info, " "f"\n", ##a)
+
+struct nvkm_runl {
+ const struct nvkm_runl_func {
+ void (*init)(struct nvkm_runl *);
+ void (*fini)(struct nvkm_runl *);
+ int runqs;
+ u8 size;
+ int (*update)(struct nvkm_runl *);
+ void (*insert_cgrp)(struct nvkm_cgrp *, struct nvkm_memory *, u64 offset);
+ void (*insert_chan)(struct nvkm_chan *, struct nvkm_memory *, u64 offset);
+ void (*commit)(struct nvkm_runl *, struct nvkm_memory *, u32 start, int count);
+ int (*wait)(struct nvkm_runl *);
+ bool (*pending)(struct nvkm_runl *);
+ void (*block)(struct nvkm_runl *, u32 engm);
+ void (*allow)(struct nvkm_runl *, u32 engm);
+ void (*fault_clear)(struct nvkm_runl *);
+ void (*preempt)(struct nvkm_runl *);
+ bool (*preempt_pending)(struct nvkm_runl *);
+ } *func;
+ struct nvkm_fifo *fifo;
+ int id;
+ u32 addr;
+ u32 chan;
+ u16 doorbell;
+
+ struct nvkm_chid *cgid;
+#define NVKM_CHAN_EVENT_ERRORED BIT(0)
+ struct nvkm_chid *chid;
+
+ struct list_head engns;
+
+ struct nvkm_runq *runq[2];
+ int runq_nr;
+
+ struct nvkm_inth inth;
+
+ struct list_head cgrps;
+ int cgrp_nr;
+ int chan_nr;
+ atomic_t changed;
+ struct nvkm_memory *mem;
+ u32 offset;
+ struct mutex mutex;
+
+ int blocked;
+
+ struct work_struct work;
+ atomic_t rc_triggered;
+ atomic_t rc_pending;
+
+ struct list_head head;
+};
+
+struct nvkm_runl *nvkm_runl_new(struct nvkm_fifo *, int runi, u32 addr, int id_nr);
+struct nvkm_runl *nvkm_runl_get(struct nvkm_fifo *, int runi, u32 addr);
+struct nvkm_engn *nvkm_runl_add(struct nvkm_runl *, int engi, const struct nvkm_engn_func *,
+ enum nvkm_subdev_type, int inst);
+void nvkm_runl_del(struct nvkm_runl *);
+void nvkm_runl_fini(struct nvkm_runl *);
+void nvkm_runl_block(struct nvkm_runl *);
+void nvkm_runl_allow(struct nvkm_runl *);
+void nvkm_runl_update_locked(struct nvkm_runl *, bool wait);
+bool nvkm_runl_update_pending(struct nvkm_runl *);
+int nvkm_runl_preempt_wait(struct nvkm_runl *);
+
+void nvkm_runl_rc_engn(struct nvkm_runl *, struct nvkm_engn *);
+void nvkm_runl_rc_cgrp(struct nvkm_cgrp *);
+
+struct nvkm_cgrp *nvkm_runl_cgrp_get_cgid(struct nvkm_runl *, int cgid, unsigned long *irqflags);
+struct nvkm_chan *nvkm_runl_chan_get_chid(struct nvkm_runl *, int chid, unsigned long *irqflags);
+struct nvkm_chan *nvkm_runl_chan_get_inst(struct nvkm_runl *, u64 inst, unsigned long *irqflags);
+
+#define nvkm_runl_find_engn(engn,runl,cond) nvkm_list_find(engn, &(runl)->engns, head, (cond))
+
+#define nvkm_runl_first(fifo) list_first_entry(&(fifo)->runls, struct nvkm_runl, head)
+#define nvkm_runl_foreach(runl,fifo) list_for_each_entry((runl), &(fifo)->runls, head)
+#define nvkm_runl_foreach_cond(runl,fifo,cond) nvkm_list_foreach(runl, &(fifo)->runls, head, (cond))
+#define nvkm_runl_foreach_engn(engn,runl) list_for_each_entry((engn), &(runl)->engns, head)
+#define nvkm_runl_foreach_engn_cond(engn,runl,cond) \
+ nvkm_list_foreach(engn, &(runl)->engns, head, (cond))
+#define nvkm_runl_foreach_cgrp(cgrp,runl) list_for_each_entry((cgrp), &(runl)->cgrps, head)
+#define nvkm_runl_foreach_cgrp_safe(cgrp,gtmp,runl) \
+ list_for_each_entry_safe((cgrp), (gtmp), &(runl)->cgrps, head)
+
+#define RUNL_PRINT(r,l,p,f,a...) \
+ nvkm_printk__(&(r)->fifo->engine.subdev, NV_DBG_##l, p, "%06x:"f, (r)->addr, ##a)
+#define RUNL_ERROR(r,f,a...) RUNL_PRINT((r), ERROR, err, " "f"\n", ##a)
+#define RUNL_DEBUG(r,f,a...) RUNL_PRINT((r), DEBUG, info, " "f"\n", ##a)
+#define RUNL_TRACE(r,f,a...) RUNL_PRINT((r), TRACE, info, " "f"\n", ##a)
+#endif
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/runq.c b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/runq.c
new file mode 100644
index 000000000000..33bcf5fb3ef0
--- /dev/null
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/runq.c
@@ -0,0 +1,45 @@
+/*
+ * Copyright 2021 Red Hat Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ */
+#include "runq.h"
+#include "priv.h"
+
+void
+nvkm_runq_del(struct nvkm_runq *runq)
+{
+ list_del(&runq->head);
+ kfree(runq);
+}
+
+struct nvkm_runq *
+nvkm_runq_new(struct nvkm_fifo *fifo, int pbid)
+{
+ struct nvkm_runq *runq;
+
+ if (!(runq = kzalloc(sizeof(*runq), GFP_KERNEL)))
+ return NULL;
+
+ runq->func = fifo->func->runq;
+ runq->fifo = fifo;
+ runq->id = pbid;
+ list_add_tail(&runq->head, &fifo->runqs);
+ return runq;
+}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/runq.h b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/runq.h
new file mode 100644
index 000000000000..2cb4836e8b31
--- /dev/null
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/runq.h
@@ -0,0 +1,31 @@
+/* SPDX-License-Identifier: MIT */
+#ifndef __NVKM_RUNQ_H__
+#define __NVKM_RUNQ_H__
+#include <core/os.h>
+struct nvkm_runl;
+
+struct nvkm_runq {
+ const struct nvkm_runq_func {
+ void (*init)(struct nvkm_runq *);
+ bool (*intr)(struct nvkm_runq *, struct nvkm_runl *);
+ const struct nvkm_bitfield *intr_0_names;
+ bool (*intr_1_ctxnotvalid)(struct nvkm_runq *, int chid);
+ bool (*idle)(struct nvkm_runq *);
+ } *func;
+ struct nvkm_fifo *fifo;
+ int id;
+
+ struct list_head head;
+};
+
+struct nvkm_runq *nvkm_runq_new(struct nvkm_fifo *, int pbid);
+void nvkm_runq_del(struct nvkm_runq *);
+
+#define nvkm_runq_foreach(runq,fifo) list_for_each_entry((runq), &(fifo)->runqs, head)
+#define nvkm_runq_foreach_cond(runq,fifo,cond) nvkm_list_foreach(runq, &(fifo)->runqs, head, (cond))
+
+#define RUNQ_PRINT(r,l,p,f,a...) \
+ nvkm_printk__(&(r)->fifo->engine.subdev, NV_DBG_##l, p, "PBDMA%d:"f, (r)->id, ##a)
+#define RUNQ_ERROR(r,f,a...) RUNQ_PRINT((r), ERROR, err, " "f"\n", ##a)
+#define RUNQ_DEBUG(r,f,a...) RUNQ_PRINT((r), DEBUG, info, " "f"\n", ##a)
+#endif
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/tu102.c b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/tu102.c
index 260b197f81bc..ea9e151dbb48 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/tu102.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/tu102.c
@@ -19,46 +19,83 @@
* ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
* OTHER DEALINGS IN THE SOFTWARE.
*/
-#include "gk104.h"
+#include "priv.h"
#include "cgrp.h"
-#include "changk104.h"
-#include "user.h"
+#include "chan.h"
+#include "runl.h"
-#include <core/client.h>
-#include <core/gpuobj.h>
-#include <subdev/bar.h>
-#include <subdev/fault.h>
-#include <subdev/top.h>
-#include <subdev/timer.h>
-#include <engine/sw.h>
+#include <core/memory.h>
+#include <subdev/mc.h>
+#include <subdev/vfn.h>
#include <nvif/class.h>
+static u32
+tu102_chan_doorbell_handle(struct nvkm_chan *chan)
+{
+ return (chan->cgrp->runl->id << 16) | chan->id;
+}
+
static void
-tu102_fifo_runlist_commit(struct gk104_fifo *fifo, int runl,
- struct nvkm_memory *mem, int nr)
+tu102_chan_start(struct nvkm_chan *chan)
{
- struct nvkm_device *device = fifo->base.engine.subdev.device;
- u64 addr = nvkm_memory_addr(mem);
- /*XXX: target? */
+ struct nvkm_device *device = chan->cgrp->runl->fifo->engine.subdev.device;
+
+ gk104_chan_start(chan);
+ nvkm_wr32(device, device->vfn->addr.user + 0x0090, chan->func->doorbell_handle(chan));
+}
+
+static const struct nvkm_chan_func
+tu102_chan = {
+ .inst = &gf100_chan_inst,
+ .userd = &gv100_chan_userd,
+ .ramfc = &gv100_chan_ramfc,
+ .bind = gk104_chan_bind_inst,
+ .unbind = gk104_chan_unbind,
+ .start = tu102_chan_start,
+ .stop = gk104_chan_stop,
+ .preempt = gk110_chan_preempt,
+ .doorbell_handle = tu102_chan_doorbell_handle,
+};
+
+static bool
+tu102_runl_pending(struct nvkm_runl *runl)
+{
+ struct nvkm_device *device = runl->fifo->engine.subdev.device;
+
+ return nvkm_rd32(device, 0x002b0c + (runl->id * 0x10)) & 0x00008000;
+}
- nvkm_wr32(device, 0x002b00 + (runl * 0x10), lower_32_bits(addr));
- nvkm_wr32(device, 0x002b04 + (runl * 0x10), upper_32_bits(addr));
- nvkm_wr32(device, 0x002b08 + (runl * 0x10), nr);
+static void
+tu102_runl_commit(struct nvkm_runl *runl, struct nvkm_memory *memory, u32 start, int count)
+{
+ struct nvkm_device *device = runl->fifo->engine.subdev.device;
+ u64 addr = nvkm_memory_addr(memory) + start;
+ /*XXX: target? */
- /*XXX: how to wait? can you even wait? */
+ nvkm_wr32(device, 0x002b00 + (runl->id * 0x10), lower_32_bits(addr));
+ nvkm_wr32(device, 0x002b04 + (runl->id * 0x10), upper_32_bits(addr));
+ nvkm_wr32(device, 0x002b08 + (runl->id * 0x10), count);
}
-static const struct gk104_fifo_runlist_func
-tu102_fifo_runlist = {
+static const struct nvkm_runl_func
+tu102_runl = {
+ .runqs = 2,
.size = 16,
- .cgrp = gv100_fifo_runlist_cgrp,
- .chan = gv100_fifo_runlist_chan,
- .commit = tu102_fifo_runlist_commit,
+ .update = nv50_runl_update,
+ .insert_cgrp = gv100_runl_insert_cgrp,
+ .insert_chan = gv100_runl_insert_chan,
+ .commit = tu102_runl_commit,
+ .wait = nv50_runl_wait,
+ .pending = tu102_runl_pending,
+ .block = gk104_runl_block,
+ .allow = gk104_runl_allow,
+ .preempt = gv100_runl_preempt,
+ .preempt_pending = gf100_runl_preempt_pending,
};
static const struct nvkm_enum
-tu102_fifo_fault_engine[] = {
+tu102_fifo_mmu_fault_engine[] = {
{ 0x01, "DISPLAY" },
{ 0x03, "PTP" },
{ 0x06, "PWR_PMU" },
@@ -85,305 +122,82 @@ tu102_fifo_fault_engine[] = {
{}
};
-static void
-tu102_fifo_pbdma_init(struct gk104_fifo *fifo)
-{
- struct nvkm_device *device = fifo->base.engine.subdev.device;
- const u32 mask = (1 << fifo->pbdma_nr) - 1;
- /*XXX: this is a bit of a guess at this point in time. */
- nvkm_mask(device, 0xb65000, 0x80000fff, 0x80000000 | mask);
-}
-
-static const struct gk104_fifo_pbdma_func
-tu102_fifo_pbdma = {
- .nr = gm200_fifo_pbdma_nr,
- .init = tu102_fifo_pbdma_init,
- .init_timeout = gk208_fifo_pbdma_init_timeout,
-};
-
-static const struct gk104_fifo_func
-tu102_fifo = {
- .pbdma = &tu102_fifo_pbdma,
- .fault.access = gv100_fifo_fault_access,
- .fault.engine = tu102_fifo_fault_engine,
- .fault.reason = gv100_fifo_fault_reason,
- .fault.hubclient = gv100_fifo_fault_hubclient,
- .fault.gpcclient = gv100_fifo_fault_gpcclient,
- .runlist = &tu102_fifo_runlist,
- .user = {{-1,-1,VOLTA_USERMODE_A }, tu102_fifo_user_new },
- .chan = {{ 0, 0,TURING_CHANNEL_GPFIFO_A}, tu102_fifo_gpfifo_new },
- .cgrp_force = true,
+const struct nvkm_fifo_func_mmu_fault
+tu102_fifo_mmu_fault = {
+ .recover = gf100_fifo_mmu_fault_recover,
+ .access = gv100_fifo_mmu_fault_access,
+ .engine = tu102_fifo_mmu_fault_engine,
+ .reason = gv100_fifo_mmu_fault_reason,
+ .hubclient = gv100_fifo_mmu_fault_hubclient,
+ .gpcclient = gv100_fifo_mmu_fault_gpcclient,
};
-static void
-tu102_fifo_recover_work(struct work_struct *w)
+void
+tu102_fifo_intr_ctxsw_timeout_info(struct nvkm_engn *engn, u32 info)
{
- struct gk104_fifo *fifo = container_of(w, typeof(*fifo), recover.work);
- struct nvkm_device *device = fifo->base.engine.subdev.device;
- struct nvkm_engine *engine;
+ struct nvkm_runl *runl = engn->runl;
+ struct nvkm_cgrp *cgrp;
unsigned long flags;
- u32 engm, runm, todo;
- int engn, runl;
-
- spin_lock_irqsave(&fifo->base.lock, flags);
- runm = fifo->recover.runm;
- engm = fifo->recover.engm;
- fifo->recover.engm = 0;
- fifo->recover.runm = 0;
- spin_unlock_irqrestore(&fifo->base.lock, flags);
-
- nvkm_mask(device, 0x002630, runm, runm);
-
- for (todo = engm; engn = __ffs(todo), todo; todo &= ~BIT(engn)) {
- if ((engine = fifo->engine[engn].engine)) {
- nvkm_subdev_fini(&engine->subdev, false);
- WARN_ON(nvkm_subdev_init(&engine->subdev));
- }
- }
-
- for (todo = runm; runl = __ffs(todo), todo; todo &= ~BIT(runl))
- gk104_fifo_runlist_update(fifo, runl);
-
- nvkm_mask(device, 0x002630, runm, 0x00000000);
-}
-
-static void tu102_fifo_recover_engn(struct gk104_fifo *fifo, int engn);
-
-static void
-tu102_fifo_recover_runl(struct gk104_fifo *fifo, int runl)
-{
- struct nvkm_subdev *subdev = &fifo->base.engine.subdev;
- struct nvkm_device *device = subdev->device;
- const u32 runm = BIT(runl);
-
- assert_spin_locked(&fifo->base.lock);
- if (fifo->recover.runm & runm)
- return;
- fifo->recover.runm |= runm;
-
- /* Block runlist to prevent channel assignment(s) from changing. */
- nvkm_mask(device, 0x002630, runm, runm);
-
- /* Schedule recovery. */
- nvkm_warn(subdev, "runlist %d: scheduled for recovery\n", runl);
- schedule_work(&fifo->recover.work);
-}
-
-static struct gk104_fifo_chan *
-tu102_fifo_recover_chid(struct gk104_fifo *fifo, int runl, int chid)
-{
- struct gk104_fifo_chan *chan;
- struct nvkm_fifo_cgrp *cgrp;
-
- list_for_each_entry(chan, &fifo->runlist[runl].chan, head) {
- if (chan->base.chid == chid) {
- list_del_init(&chan->head);
- return chan;
- }
- }
-
- list_for_each_entry(cgrp, &fifo->runlist[runl].cgrp, head) {
- if (cgrp->id == chid) {
- chan = list_first_entry(&cgrp->chan, typeof(*chan), head);
- list_del_init(&chan->head);
- if (!--cgrp->chan_nr)
- list_del_init(&cgrp->head);
- return chan;
- }
- }
-
- return NULL;
-}
-static void
-tu102_fifo_recover_chan(struct nvkm_fifo *base, int chid)
-{
- struct gk104_fifo *fifo = gk104_fifo(base);
- struct nvkm_subdev *subdev = &fifo->base.engine.subdev;
- struct nvkm_device *device = subdev->device;
- const u32 stat = nvkm_rd32(device, 0x800004 + (chid * 0x08));
- const u32 runl = (stat & 0x000f0000) >> 16;
- const bool used = (stat & 0x00000001);
- unsigned long engn, engm = fifo->runlist[runl].engm;
- struct gk104_fifo_chan *chan;
-
- assert_spin_locked(&fifo->base.lock);
- if (!used)
+ /* Check that engine hasn't become unstuck since timeout raised. */
+ ENGN_DEBUG(engn, "CTXSW_TIMEOUT %08x", info);
+ if (info & 0xc0000000)
return;
- /* Lookup SW state for channel, and mark it as dead. */
- chan = tu102_fifo_recover_chid(fifo, runl, chid);
- if (chan) {
- chan->killed = true;
- nvkm_fifo_kevent(&fifo->base, chid);
- }
-
- /* Disable channel. */
- nvkm_wr32(device, 0x800004 + (chid * 0x08), stat | 0x00000800);
- nvkm_warn(subdev, "channel %d: killed\n", chid);
-
- /* Block channel assignments from changing during recovery. */
- tu102_fifo_recover_runl(fifo, runl);
-
- /* Schedule recovery for any engines the channel is on. */
- for_each_set_bit(engn, &engm, fifo->engine_nr) {
- struct gk104_fifo_engine_status status;
-
- gk104_fifo_engine_status(fifo, engn, &status);
- if (!status.chan || status.chan->id != chid)
- continue;
- tu102_fifo_recover_engn(fifo, engn);
+ /* Determine channel group the engine is stuck on, and schedule recovery. */
+ switch (info & 0x0000c000) {
+ case 0x00004000: /* LOAD */
+ cgrp = nvkm_runl_cgrp_get_cgid(runl, info & 0x3fff0000, &flags);
+ break;
+ case 0x00008000: /* SAVE */
+ case 0x0000c000: /* SWITCH */
+ cgrp = nvkm_runl_cgrp_get_cgid(runl, info & 0x00003fff, &flags);
+ break;
+ default:
+ cgrp = NULL;
+ break;
}
-}
-
-static void
-tu102_fifo_recover_engn(struct gk104_fifo *fifo, int engn)
-{
- struct nvkm_subdev *subdev = &fifo->base.engine.subdev;
- struct nvkm_device *device = subdev->device;
- const u32 runl = fifo->engine[engn].runl;
- const u32 engm = BIT(engn);
- struct gk104_fifo_engine_status status;
-
- assert_spin_locked(&fifo->base.lock);
- if (fifo->recover.engm & engm)
- return;
- fifo->recover.engm |= engm;
- /* Block channel assignments from changing during recovery. */
- tu102_fifo_recover_runl(fifo, runl);
-
- /* Determine which channel (if any) is currently on the engine. */
- gk104_fifo_engine_status(fifo, engn, &status);
- if (status.chan) {
- /* The channel is not longer viable, kill it. */
- tu102_fifo_recover_chan(&fifo->base, status.chan->id);
+ if (!WARN_ON(!cgrp)) {
+ nvkm_runl_rc_cgrp(cgrp);
+ nvkm_cgrp_put(&cgrp, flags);
}
-
- /* Preempt the runlist */
- nvkm_wr32(device, 0x2638, BIT(runl));
-
- /* Schedule recovery. */
- nvkm_warn(subdev, "engine %d: scheduled for recovery\n", engn);
- schedule_work(&fifo->recover.work);
}
static void
-tu102_fifo_fault(struct nvkm_fifo *base, struct nvkm_fault_data *info)
+tu102_fifo_intr_ctxsw_timeout(struct nvkm_fifo *fifo)
{
- struct gk104_fifo *fifo = gk104_fifo(base);
- struct nvkm_subdev *subdev = &fifo->base.engine.subdev;
- struct nvkm_device *device = subdev->device;
- const struct nvkm_enum *er, *ee, *ec, *ea;
- struct nvkm_engine *engine = NULL;
- struct nvkm_fifo_chan *chan;
- unsigned long flags;
- const char *en = "";
- char ct[8] = "HUB/";
- int engn;
-
- er = nvkm_enum_find(fifo->func->fault.reason, info->reason);
- ee = nvkm_enum_find(fifo->func->fault.engine, info->engine);
- if (info->hub) {
- ec = nvkm_enum_find(fifo->func->fault.hubclient, info->client);
- } else {
- ec = nvkm_enum_find(fifo->func->fault.gpcclient, info->client);
- snprintf(ct, sizeof(ct), "GPC%d/", info->gpc);
- }
- ea = nvkm_enum_find(fifo->func->fault.access, info->access);
-
- if (ee && ee->data2) {
- switch (ee->data2) {
- case NVKM_SUBDEV_BAR:
- nvkm_bar_bar1_reset(device);
- break;
- case NVKM_SUBDEV_INSTMEM:
- nvkm_bar_bar2_reset(device);
- break;
- case NVKM_ENGINE_IFB:
- nvkm_mask(device, 0x001718, 0x00000000, 0x00000000);
- break;
- default:
- engine = nvkm_device_engine(device, ee->data2, 0);
- break;
- }
- }
-
- if (ee == NULL) {
- struct nvkm_subdev *subdev = nvkm_top_fault(device, info->engine);
- if (subdev) {
- if (subdev->func == &nvkm_engine)
- engine = container_of(subdev, typeof(*engine), subdev);
- en = engine->subdev.name;
+ struct nvkm_device *device = fifo->engine.subdev.device;
+ struct nvkm_runl *runl;
+ struct nvkm_engn *engn;
+ u32 engm = nvkm_rd32(device, 0x002a30);
+ u32 info;
+
+ nvkm_runl_foreach(runl, fifo) {
+ nvkm_runl_foreach_engn_cond(engn, runl, engm & BIT(engn->id)) {
+ info = nvkm_rd32(device, 0x003200 + (engn->id * 4));
+ tu102_fifo_intr_ctxsw_timeout_info(engn, info);
}
- } else {
- en = ee->name;
}
- spin_lock_irqsave(&fifo->base.lock, flags);
- chan = nvkm_fifo_chan_inst_locked(&fifo->base, info->inst);
-
- nvkm_error(subdev,
- "fault %02x [%s] at %016llx engine %02x [%s] client %02x "
- "[%s%s] reason %02x [%s] on channel %d [%010llx %s]\n",
- info->access, ea ? ea->name : "", info->addr,
- info->engine, ee ? ee->name : en,
- info->client, ct, ec ? ec->name : "",
- info->reason, er ? er->name : "", chan ? chan->chid : -1,
- info->inst, chan ? chan->object.client->name : "unknown");
-
- /* Kill the channel that caused the fault. */
- if (chan)
- tu102_fifo_recover_chan(&fifo->base, chan->chid);
-
- /* Channel recovery will probably have already done this for the
- * correct engine(s), but just in case we can't find the channel
- * information...
- */
- for (engn = 0; engn < fifo->engine_nr && engine; engn++) {
- if (fifo->engine[engn].engine == engine) {
- tu102_fifo_recover_engn(fifo, engn);
- break;
- }
- }
-
- spin_unlock_irqrestore(&fifo->base.lock, flags);
-}
-
-static void
-tu102_fifo_intr_ctxsw_timeout(struct gk104_fifo *fifo)
-{
- struct nvkm_device *device = fifo->base.engine.subdev.device;
- unsigned long flags, engm;
- u32 engn;
-
- spin_lock_irqsave(&fifo->base.lock, flags);
-
- engm = nvkm_rd32(device, 0x2a30);
- nvkm_wr32(device, 0x2a30, engm);
-
- for_each_set_bit(engn, &engm, 32)
- tu102_fifo_recover_engn(fifo, engn);
-
- spin_unlock_irqrestore(&fifo->base.lock, flags);
+ nvkm_wr32(device, 0x002a30, engm);
}
static void
-tu102_fifo_intr_sched(struct gk104_fifo *fifo)
+tu102_fifo_intr_sched(struct nvkm_fifo *fifo)
{
- struct nvkm_subdev *subdev = &fifo->base.engine.subdev;
- struct nvkm_device *device = subdev->device;
- u32 intr = nvkm_rd32(device, 0x00254c);
+ struct nvkm_subdev *subdev = &fifo->engine.subdev;
+ u32 intr = nvkm_rd32(subdev->device, 0x00254c);
u32 code = intr & 0x000000ff;
nvkm_error(subdev, "SCHED_ERROR %02x\n", code);
}
-static void
-tu102_fifo_intr(struct nvkm_fifo *base)
+static irqreturn_t
+tu102_fifo_intr(struct nvkm_inth *inth)
{
- struct gk104_fifo *fifo = gk104_fifo(base);
- struct nvkm_subdev *subdev = &fifo->base.engine.subdev;
+ struct nvkm_fifo *fifo = container_of(inth, typeof(*fifo), engine.subdev.inth);
+ struct nvkm_subdev *subdev = &fifo->engine.subdev;
struct nvkm_device *device = subdev->device;
u32 mask = nvkm_rd32(device, 0x002140);
u32 stat = nvkm_rd32(device, 0x002100) & mask;
@@ -412,17 +226,8 @@ tu102_fifo_intr(struct nvkm_fifo *base)
}
if (stat & 0x20000000) {
- u32 mask = nvkm_rd32(device, 0x0025a0);
-
- while (mask) {
- u32 unit = __ffs(mask);
-
- gk104_fifo_intr_pbdma_0(fifo, unit);
- gk104_fifo_intr_pbdma_1(fifo, unit);
- nvkm_wr32(device, 0x0025a0, (1 << unit));
- mask &= ~(1 << unit);
- }
- stat &= ~0x20000000;
+ if (gf100_fifo_intr_pbdma(fifo))
+ stat &= ~0x20000000;
}
if (stat & 0x40000000) {
@@ -432,46 +237,50 @@ tu102_fifo_intr(struct nvkm_fifo *base)
if (stat & 0x80000000) {
nvkm_wr32(device, 0x002100, 0x80000000);
- gk104_fifo_intr_engine(fifo);
+ nvkm_event_ntfy(&fifo->nonstall.event, 0, NVKM_FIFO_NONSTALL_EVENT);
stat &= ~0x80000000;
}
if (stat) {
nvkm_error(subdev, "INTR %08x\n", stat);
+ spin_lock(&fifo->lock);
nvkm_mask(device, 0x002140, stat, 0x00000000);
+ spin_unlock(&fifo->lock);
nvkm_wr32(device, 0x002100, stat);
}
+
+ return IRQ_HANDLED;
+}
+
+static void
+tu102_fifo_init_pbdmas(struct nvkm_fifo *fifo, u32 mask)
+{
+ /* Not directly related to PBDMAs, but, enables doorbell to function. */
+ nvkm_mask(fifo->engine.subdev.device, 0xb65000, 0x80000000, 0x80000000);
}
static const struct nvkm_fifo_func
-tu102_fifo_ = {
- .dtor = gk104_fifo_dtor,
- .oneinit = gk104_fifo_oneinit,
- .info = gk104_fifo_info,
+tu102_fifo = {
+ .chid_nr = gm200_fifo_chid_nr,
+ .chid_ctor = gk110_fifo_chid_ctor,
+ .runq_nr = gm200_fifo_runq_nr,
+ .runl_ctor = gk104_fifo_runl_ctor,
.init = gk104_fifo_init,
- .fini = gk104_fifo_fini,
+ .init_pbdmas = tu102_fifo_init_pbdmas,
.intr = tu102_fifo_intr,
- .fault = tu102_fifo_fault,
- .engine_id = gk104_fifo_engine_id,
- .id_engine = gk104_fifo_id_engine,
- .uevent_init = gk104_fifo_uevent_init,
- .uevent_fini = gk104_fifo_uevent_fini,
- .recover_chan = tu102_fifo_recover_chan,
- .class_get = gk104_fifo_class_get,
- .class_new = gk104_fifo_class_new,
+ .mmu_fault = &tu102_fifo_mmu_fault,
+ .nonstall = &gf100_fifo_nonstall,
+ .runl = &tu102_runl,
+ .runq = &gv100_runq,
+ .engn = &gv100_engn,
+ .engn_ce = &gv100_engn_ce,
+ .cgrp = {{ 0, 0, KEPLER_CHANNEL_GROUP_A }, &gk110_cgrp, .force = true },
+ .chan = {{ 0, 0, TURING_CHANNEL_GPFIFO_A }, &tu102_chan },
};
int
tu102_fifo_new(struct nvkm_device *device, enum nvkm_subdev_type type, int inst,
struct nvkm_fifo **pfifo)
{
- struct gk104_fifo *fifo;
-
- if (!(fifo = kzalloc(sizeof(*fifo), GFP_KERNEL)))
- return -ENOMEM;
- fifo->func = &tu102_fifo;
- INIT_WORK(&fifo->recover.work, tu102_fifo_recover_work);
- *pfifo = &fifo->base;
-
- return nvkm_fifo_ctor(&tu102_fifo_, device, type, inst, 4096, &fifo->base);
+ return nvkm_fifo_new_(&tu102_fifo, device, type, inst, pfifo);
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/ucgrp.c b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/ucgrp.c
new file mode 100644
index 000000000000..52c594dfb1b8
--- /dev/null
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/ucgrp.c
@@ -0,0 +1,125 @@
+/*
+ * Copyright 2021 Red Hat Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ */
+#define nvkm_ucgrp(p) container_of((p), struct nvkm_ucgrp, object)
+#include "priv.h"
+#include "cgrp.h"
+#include "runl.h"
+
+#include <subdev/mmu.h>
+
+#include <nvif/if0021.h>
+
+struct nvkm_ucgrp {
+ struct nvkm_object object;
+ struct nvkm_cgrp *cgrp;
+};
+
+static int
+nvkm_ucgrp_chan_new(const struct nvkm_oclass *oclass, void *argv, u32 argc,
+ struct nvkm_object **pobject)
+{
+ struct nvkm_cgrp *cgrp = nvkm_ucgrp(oclass->parent)->cgrp;
+
+ return nvkm_uchan_new(cgrp->runl->fifo, cgrp, oclass, argv, argc, pobject);
+}
+
+static int
+nvkm_ucgrp_sclass(struct nvkm_object *object, int index, struct nvkm_oclass *oclass)
+{
+ struct nvkm_cgrp *cgrp = nvkm_ucgrp(object)->cgrp;
+ struct nvkm_fifo *fifo = cgrp->runl->fifo;
+ const struct nvkm_fifo_func_chan *chan = &fifo->func->chan;
+ int c = 0;
+
+ /* *_CHANNEL_GPFIFO_* */
+ if (chan->user.oclass) {
+ if (c++ == index) {
+ oclass->base = chan->user;
+ oclass->ctor = nvkm_ucgrp_chan_new;
+ return 0;
+ }
+ }
+
+ return -EINVAL;
+}
+
+static void *
+nvkm_ucgrp_dtor(struct nvkm_object *object)
+{
+ struct nvkm_ucgrp *ucgrp = nvkm_ucgrp(object);
+
+ nvkm_cgrp_unref(&ucgrp->cgrp);
+ return ucgrp;
+}
+
+static const struct nvkm_object_func
+nvkm_ucgrp = {
+ .dtor = nvkm_ucgrp_dtor,
+ .sclass = nvkm_ucgrp_sclass,
+};
+
+int
+nvkm_ucgrp_new(struct nvkm_fifo *fifo, const struct nvkm_oclass *oclass, void *argv, u32 argc,
+ struct nvkm_object **pobject)
+{
+ union nvif_cgrp_args *args = argv;
+ struct nvkm_runl *runl;
+ struct nvkm_vmm *vmm;
+ struct nvkm_ucgrp *ucgrp;
+ int ret;
+
+ if (argc < sizeof(args->v0) || args->v0.version != 0)
+ return -ENOSYS;
+ argc -= sizeof(args->v0);
+
+ if (args->v0.namelen != argc)
+ return -EINVAL;
+
+ /* Lookup objects referenced in args. */
+ runl = nvkm_runl_get(fifo, args->v0.runlist, 0);
+ if (!runl)
+ return -EINVAL;
+
+ vmm = nvkm_uvmm_search(oclass->client, args->v0.vmm);
+ if (IS_ERR(vmm))
+ return PTR_ERR(vmm);
+
+ /* Allocate channel group. */
+ if (!(ucgrp = kzalloc(sizeof(*ucgrp), GFP_KERNEL))) {
+ ret = -ENOMEM;
+ goto done;
+ }
+
+ nvkm_object_ctor(&nvkm_ucgrp, oclass, &ucgrp->object);
+ *pobject = &ucgrp->object;
+
+ ret = nvkm_cgrp_new(runl, args->v0.name, vmm, true, &ucgrp->cgrp);
+ if (ret)
+ goto done;
+
+ /* Return channel group info to caller. */
+ args->v0.cgid = ucgrp->cgrp->id;
+
+done:
+ nvkm_vmm_unref(&vmm);
+ return ret;
+}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/uchan.c b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/uchan.c
new file mode 100644
index 000000000000..1dac95ae7b43
--- /dev/null
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/uchan.c
@@ -0,0 +1,409 @@
+/*
+ * Copyright 2021 Red Hat Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ */
+#define nvkm_uchan(p) container_of((p), struct nvkm_uchan, object)
+#include "priv.h"
+#include "cgrp.h"
+#include "chan.h"
+#include "chid.h"
+#include "runl.h"
+
+#include <core/gpuobj.h>
+#include <core/oproxy.h>
+#include <subdev/mmu.h>
+#include <engine/dma.h>
+
+#include <nvif/if0020.h>
+
+struct nvkm_uchan {
+ struct nvkm_object object;
+ struct nvkm_chan *chan;
+};
+
+static int
+nvkm_uchan_uevent(struct nvkm_object *object, void *argv, u32 argc, struct nvkm_uevent *uevent)
+{
+ struct nvkm_chan *chan = nvkm_uchan(object)->chan;
+ struct nvkm_runl *runl = chan->cgrp->runl;
+ union nvif_chan_event_args *args = argv;
+
+ if (!uevent)
+ return 0;
+ if (argc != sizeof(args->v0) || args->v0.version != 0)
+ return -ENOSYS;
+
+ switch (args->v0.type) {
+ case NVIF_CHAN_EVENT_V0_NON_STALL_INTR:
+ return nvkm_uevent_add(uevent, &runl->fifo->nonstall.event, 0,
+ NVKM_FIFO_NONSTALL_EVENT, NULL);
+ case NVIF_CHAN_EVENT_V0_KILLED:
+ return nvkm_uevent_add(uevent, &runl->chid->event, chan->id,
+ NVKM_CHAN_EVENT_ERRORED, NULL);
+ default:
+ break;
+ }
+
+ return -ENOSYS;
+}
+
+struct nvkm_uobj {
+ struct nvkm_oproxy oproxy;
+ struct nvkm_chan *chan;
+ struct nvkm_cctx *cctx;
+ int hash;
+};
+
+static int
+nvkm_uchan_object_fini_1(struct nvkm_oproxy *oproxy, bool suspend)
+{
+ struct nvkm_uobj *uobj = container_of(oproxy, typeof(*uobj), oproxy);
+ struct nvkm_chan *chan = uobj->chan;
+ struct nvkm_cctx *cctx = uobj->cctx;
+ struct nvkm_ectx *ectx = cctx->vctx->ectx;
+
+ if (!ectx->object)
+ return 0;
+
+ /* Unbind engine context from channel, if no longer required. */
+ if (refcount_dec_and_mutex_lock(&cctx->uses, &chan->cgrp->mutex)) {
+ nvkm_chan_cctx_bind(chan, ectx->engn, NULL);
+
+ if (refcount_dec_and_test(&ectx->uses))
+ nvkm_object_fini(ectx->object, false);
+ mutex_unlock(&chan->cgrp->mutex);
+ }
+
+ return 0;
+}
+
+static int
+nvkm_uchan_object_init_0(struct nvkm_oproxy *oproxy)
+{
+ struct nvkm_uobj *uobj = container_of(oproxy, typeof(*uobj), oproxy);
+ struct nvkm_chan *chan = uobj->chan;
+ struct nvkm_cctx *cctx = uobj->cctx;
+ struct nvkm_ectx *ectx = cctx->vctx->ectx;
+ int ret = 0;
+
+ if (!ectx->object)
+ return 0;
+
+ /* Bind engine context to channel, if it hasn't been already. */
+ if (!refcount_inc_not_zero(&cctx->uses)) {
+ mutex_lock(&chan->cgrp->mutex);
+ if (!refcount_inc_not_zero(&cctx->uses)) {
+ if (!refcount_inc_not_zero(&ectx->uses)) {
+ ret = nvkm_object_init(ectx->object);
+ if (ret == 0)
+ refcount_set(&ectx->uses, 1);
+ }
+
+ if (ret == 0) {
+ nvkm_chan_cctx_bind(chan, ectx->engn, cctx);
+ refcount_set(&cctx->uses, 1);
+ }
+ }
+ mutex_unlock(&chan->cgrp->mutex);
+ }
+
+ return ret;
+}
+
+static void
+nvkm_uchan_object_dtor(struct nvkm_oproxy *oproxy)
+{
+ struct nvkm_uobj *uobj = container_of(oproxy, typeof(*uobj), oproxy);
+ struct nvkm_engn *engn;
+
+ if (!uobj->cctx)
+ return;
+
+ engn = uobj->cctx->vctx->ectx->engn;
+ if (engn->func->ramht_del)
+ engn->func->ramht_del(uobj->chan, uobj->hash);
+
+ nvkm_chan_cctx_put(uobj->chan, &uobj->cctx);
+}
+
+static const struct nvkm_oproxy_func
+nvkm_uchan_object = {
+ .dtor[1] = nvkm_uchan_object_dtor,
+ .init[0] = nvkm_uchan_object_init_0,
+ .fini[1] = nvkm_uchan_object_fini_1,
+};
+
+static int
+nvkm_uchan_object_new(const struct nvkm_oclass *oclass, void *argv, u32 argc,
+ struct nvkm_object **pobject)
+{
+ struct nvkm_chan *chan = nvkm_uchan(oclass->parent)->chan;
+ struct nvkm_cgrp *cgrp = chan->cgrp;
+ struct nvkm_engn *engn;
+ struct nvkm_uobj *uobj;
+ int ret;
+
+ /* Lookup host engine state for target engine. */
+ engn = nvkm_runl_find_engn(engn, cgrp->runl, engn->engine == oclass->engine);
+ if (WARN_ON(!engn))
+ return -EINVAL;
+
+ /* Allocate SW object. */
+ if (!(uobj = kzalloc(sizeof(*uobj), GFP_KERNEL)))
+ return -ENOMEM;
+
+ nvkm_oproxy_ctor(&nvkm_uchan_object, oclass, &uobj->oproxy);
+ uobj->chan = chan;
+ *pobject = &uobj->oproxy.base;
+
+ /* Ref. channel context for target engine.*/
+ ret = nvkm_chan_cctx_get(chan, engn, &uobj->cctx, oclass->client);
+ if (ret)
+ return ret;
+
+ /* Allocate HW object. */
+ ret = oclass->base.ctor(&(const struct nvkm_oclass) {
+ .base = oclass->base,
+ .engn = oclass->engn,
+ .handle = oclass->handle,
+ .object = oclass->object,
+ .client = oclass->client,
+ .parent = uobj->cctx->vctx->ectx->object ?: oclass->parent,
+ .engine = engn->engine,
+ }, argv, argc, &uobj->oproxy.object);
+ if (ret)
+ return ret;
+
+ if (engn->func->ramht_add) {
+ uobj->hash = engn->func->ramht_add(engn, uobj->oproxy.object, uobj->chan);
+ if (uobj->hash < 0)
+ return uobj->hash;
+ }
+
+ return 0;
+}
+
+static int
+nvkm_uchan_sclass(struct nvkm_object *object, int index, struct nvkm_oclass *oclass)
+{
+ struct nvkm_chan *chan = nvkm_uchan(object)->chan;
+ struct nvkm_engn *engn;
+ int ret, runq = 0;
+
+ nvkm_runl_foreach_engn(engn, chan->cgrp->runl) {
+ struct nvkm_engine *engine = engn->engine;
+ int c = 0;
+
+ /* Each runqueue, on runlists with multiple, has its own LCE. */
+ if (engn->runl->func->runqs) {
+ if (engine->subdev.type == NVKM_ENGINE_CE) {
+ if (chan->runq != runq++)
+ continue;
+ }
+ }
+
+ oclass->engine = engine;
+ oclass->base.oclass = 0;
+
+ if (engine->func->fifo.sclass) {
+ ret = engine->func->fifo.sclass(oclass, index);
+ if (oclass->base.oclass) {
+ if (!oclass->base.ctor)
+ oclass->base.ctor = nvkm_object_new;
+ oclass->ctor = nvkm_uchan_object_new;
+ return 0;
+ }
+
+ index -= ret;
+ continue;
+ }
+
+ while (engine->func->sclass[c].oclass) {
+ if (c++ == index) {
+ oclass->base = engine->func->sclass[index];
+ if (!oclass->base.ctor)
+ oclass->base.ctor = nvkm_object_new;
+ oclass->ctor = nvkm_uchan_object_new;
+ return 0;
+ }
+ }
+
+ index -= c;
+ }
+
+ return -EINVAL;
+}
+
+static int
+nvkm_uchan_map(struct nvkm_object *object, void *argv, u32 argc,
+ enum nvkm_object_map *type, u64 *addr, u64 *size)
+{
+ struct nvkm_chan *chan = nvkm_uchan(object)->chan;
+ struct nvkm_device *device = chan->cgrp->runl->fifo->engine.subdev.device;
+
+ if (chan->func->userd->bar < 0)
+ return -ENOSYS;
+
+ *type = NVKM_OBJECT_MAP_IO;
+ *addr = device->func->resource_addr(device, chan->func->userd->bar) +
+ chan->func->userd->base + chan->userd.base;
+ *size = chan->func->userd->size;
+ return 0;
+}
+
+static int
+nvkm_uchan_fini(struct nvkm_object *object, bool suspend)
+{
+ struct nvkm_chan *chan = nvkm_uchan(object)->chan;
+
+ nvkm_chan_block(chan);
+ nvkm_chan_remove(chan, true);
+
+ if (chan->func->unbind)
+ chan->func->unbind(chan);
+
+ return 0;
+}
+
+static int
+nvkm_uchan_init(struct nvkm_object *object)
+{
+ struct nvkm_chan *chan = nvkm_uchan(object)->chan;
+
+ if (atomic_read(&chan->errored))
+ return 0;
+
+ if (chan->func->bind)
+ chan->func->bind(chan);
+
+ nvkm_chan_allow(chan);
+ nvkm_chan_insert(chan);
+ return 0;
+}
+
+static void *
+nvkm_uchan_dtor(struct nvkm_object *object)
+{
+ struct nvkm_uchan *uchan = nvkm_uchan(object);
+
+ nvkm_chan_del(&uchan->chan);
+ return uchan;
+}
+
+static const struct nvkm_object_func
+nvkm_uchan = {
+ .dtor = nvkm_uchan_dtor,
+ .init = nvkm_uchan_init,
+ .fini = nvkm_uchan_fini,
+ .map = nvkm_uchan_map,
+ .sclass = nvkm_uchan_sclass,
+ .uevent = nvkm_uchan_uevent,
+};
+
+int
+nvkm_uchan_new(struct nvkm_fifo *fifo, struct nvkm_cgrp *cgrp, const struct nvkm_oclass *oclass,
+ void *argv, u32 argc, struct nvkm_object **pobject)
+{
+ union nvif_chan_args *args = argv;
+ struct nvkm_runl *runl;
+ struct nvkm_vmm *vmm = NULL;
+ struct nvkm_dmaobj *ctxdma = NULL;
+ struct nvkm_memory *userd = NULL;
+ struct nvkm_uchan *uchan;
+ struct nvkm_chan *chan;
+ int ret;
+
+ if (argc < sizeof(args->v0) || args->v0.version != 0)
+ return -ENOSYS;
+ argc -= sizeof(args->v0);
+
+ if (args->v0.namelen != argc)
+ return -EINVAL;
+
+ /* Lookup objects referenced in args. */
+ runl = nvkm_runl_get(fifo, args->v0.runlist, 0);
+ if (!runl)
+ return -EINVAL;
+
+ if (args->v0.vmm) {
+ vmm = nvkm_uvmm_search(oclass->client, args->v0.vmm);
+ if (IS_ERR(vmm))
+ return PTR_ERR(vmm);
+ }
+
+ if (args->v0.ctxdma) {
+ ctxdma = nvkm_dmaobj_search(oclass->client, args->v0.ctxdma);
+ if (IS_ERR(ctxdma)) {
+ ret = PTR_ERR(ctxdma);
+ goto done;
+ }
+ }
+
+ if (args->v0.huserd) {
+ userd = nvkm_umem_search(oclass->client, args->v0.huserd);
+ if (IS_ERR(userd)) {
+ ret = PTR_ERR(userd);
+ userd = NULL;
+ goto done;
+ }
+ }
+
+ /* Allocate channel. */
+ if (!(uchan = kzalloc(sizeof(*uchan), GFP_KERNEL))) {
+ ret = -ENOMEM;
+ goto done;
+ }
+
+ nvkm_object_ctor(&nvkm_uchan, oclass, &uchan->object);
+ *pobject = &uchan->object;
+
+ ret = nvkm_chan_new_(fifo->func->chan.func, runl, args->v0.runq, cgrp, args->v0.name,
+ args->v0.priv != 0, args->v0.devm, vmm, ctxdma, args->v0.offset,
+ args->v0.length, userd, args->v0.ouserd, &uchan->chan);
+ if (ret)
+ goto done;
+
+ chan = uchan->chan;
+
+ /* Return channel info to caller. */
+ if (chan->func->doorbell_handle)
+ args->v0.token = chan->func->doorbell_handle(chan);
+ else
+ args->v0.token = ~0;
+
+ args->v0.chid = chan->id;
+
+ switch (nvkm_memory_target(chan->inst->memory)) {
+ case NVKM_MEM_TARGET_INST: args->v0.aper = NVIF_CHAN_V0_INST_APER_INST; break;
+ case NVKM_MEM_TARGET_VRAM: args->v0.aper = NVIF_CHAN_V0_INST_APER_VRAM; break;
+ case NVKM_MEM_TARGET_HOST: args->v0.aper = NVIF_CHAN_V0_INST_APER_HOST; break;
+ case NVKM_MEM_TARGET_NCOH: args->v0.aper = NVIF_CHAN_V0_INST_APER_NCOH; break;
+ default:
+ WARN_ON(1);
+ ret = -EFAULT;
+ break;
+ }
+
+ args->v0.inst = nvkm_memory_addr(chan->inst->memory);
+done:
+ nvkm_memory_unref(&userd);
+ nvkm_vmm_unref(&vmm);
+ return ret;
+}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/user.h b/drivers/gpu/drm/nouveau/nvkm/engine/fifo/user.h
deleted file mode 100644
index 54a3a3092cc0..000000000000
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/user.h
+++ /dev/null
@@ -1,8 +0,0 @@
-#ifndef __NVKM_FIFO_USER_H__
-#define __NVKM_FIFO_USER_H__
-#include "priv.h"
-int gv100_fifo_user_new(const struct nvkm_oclass *, void *, u32,
- struct nvkm_object **);
-int tu102_fifo_user_new(const struct nvkm_oclass *, void *, u32,
- struct nvkm_object **);
-#endif
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/Kbuild b/drivers/gpu/drm/nouveau/nvkm/engine/gr/Kbuild
index 558c86fd8e82..b5418f05ccd8 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/Kbuild
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/Kbuild
@@ -40,6 +40,7 @@ nvkm-y += nvkm/engine/gr/gp108.o
nvkm-y += nvkm/engine/gr/gp10b.o
nvkm-y += nvkm/engine/gr/gv100.o
nvkm-y += nvkm/engine/gr/tu102.o
+nvkm-y += nvkm/engine/gr/ga102.o
nvkm-y += nvkm/engine/gr/ctxnv40.o
nvkm-y += nvkm/engine/gr/ctxnv50.o
@@ -63,3 +64,4 @@ nvkm-y += nvkm/engine/gr/ctxgp104.o
nvkm-y += nvkm/engine/gr/ctxgp107.o
nvkm-y += nvkm/engine/gr/ctxgv100.o
nvkm-y += nvkm/engine/gr/ctxtu102.o
+nvkm-y += nvkm/engine/gr/ctxga102.o
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/base.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/base.c
index 61759f54406e..71b824e6da9d 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/base.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/base.c
@@ -136,6 +136,17 @@ nvkm_gr_oneinit(struct nvkm_engine *engine)
}
static int
+nvkm_gr_reset(struct nvkm_engine *engine)
+{
+ struct nvkm_gr *gr = nvkm_gr(engine);
+
+ if (gr->func->reset)
+ return gr->func->reset(gr);
+
+ return -ENOSYS;
+}
+
+static int
nvkm_gr_init(struct nvkm_engine *engine)
{
struct nvkm_gr *gr = nvkm_gr(engine);
@@ -166,6 +177,7 @@ nvkm_gr = {
.oneinit = nvkm_gr_oneinit,
.init = nvkm_gr_init,
.fini = nvkm_gr_fini,
+ .reset = nvkm_gr_reset,
.intr = nvkm_gr_intr,
.tile = nvkm_gr_tile,
.chsw_load = nvkm_gr_chsw_load,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxga102.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxga102.c
new file mode 100644
index 000000000000..11461adf5036
--- /dev/null
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxga102.c
@@ -0,0 +1,77 @@
+/*
+ * Copyright 2019 Red Hat Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ */
+#include "ctxgf100.h"
+
+static void
+ga102_grctx_generate_sm_id(struct gf100_gr *gr, int gpc, int tpc, int sm)
+{
+ struct nvkm_device *device = gr->base.engine.subdev.device;
+
+ tpc = gv100_gr_nonpes_aware_tpc(gr, gpc, tpc);
+
+ nvkm_wr32(device, TPC_UNIT(gpc, tpc, 0x608), sm);
+}
+
+static void
+ga102_grctx_generate_unkn(struct gf100_gr *gr)
+{
+ struct nvkm_device *device = gr->base.engine.subdev.device;
+
+ nvkm_mask(device, 0x41980c, 0x00000010, 0x00000010);
+ nvkm_mask(device, 0x41be08, 0x00000004, 0x00000004);
+}
+
+static void
+ga102_grctx_generate_r419ea8(struct gf100_gr *gr)
+{
+ struct nvkm_device *device = gr->base.engine.subdev.device;
+
+ nvkm_wr32(device, 0x419ea8, nvkm_rd32(device, 0x504728) | 0x08000000);
+}
+
+const struct gf100_grctx_func
+ga102_grctx = {
+ .main = gf100_grctx_generate_main,
+ .unkn = ga102_grctx_generate_unkn,
+ .bundle = gm107_grctx_generate_bundle,
+ .bundle_size = 0x3000,
+ .bundle_min_gpm_fifo_depth = 0x180,
+ .bundle_token_limit = 0x1140,
+ .pagepool = gp100_grctx_generate_pagepool,
+ .pagepool_size = 0x20000,
+ .attrib_cb_size = gp102_grctx_generate_attrib_cb_size,
+ .attrib_cb = gv100_grctx_generate_attrib_cb,
+ .attrib = gv100_grctx_generate_attrib,
+ .attrib_nr_max = 0x800,
+ .attrib_nr = 0x4a1,
+ .alpha_nr_max = 0xc00,
+ .alpha_nr = 0x800,
+ .unknown_size = 0x80000,
+ .unknown = tu102_grctx_generate_unknown,
+ .gfxp_nr = 0xd28,
+ .sm_id = ga102_grctx_generate_sm_id,
+ .skip_pd_num_tpc_per_gpc = true,
+ .rop_mapping = gv100_grctx_generate_rop_mapping,
+ .r406500 = gm200_grctx_generate_r406500,
+ .r400088 = gv100_grctx_generate_r400088,
+ .r419ea8 = ga102_grctx_generate_r419ea8,
+};
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgf100.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgf100.c
index 297915719bf2..cb390e0134a2 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgf100.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgf100.c
@@ -26,6 +26,7 @@
#include <subdev/fb.h>
#include <subdev/mc.h>
#include <subdev/timer.h>
+#include <engine/fifo.h>
/*******************************************************************************
* PGRAPH context register lists
@@ -990,43 +991,16 @@ gf100_grctx_pack_tpc[] = {
* PGRAPH context implementation
******************************************************************************/
-int
-gf100_grctx_mmio_data(struct gf100_grctx *info, u32 size, u32 align, bool priv)
-{
- if (info->data) {
- info->buffer[info->buffer_nr] = round_up(info->addr, align);
- info->addr = info->buffer[info->buffer_nr] + size;
- info->data->size = size;
- info->data->align = align;
- info->data->priv = priv;
- info->data++;
- return info->buffer_nr++;
- }
- return -1;
-}
-
void
-gf100_grctx_mmio_item(struct gf100_grctx *info, u32 addr, u32 data,
- int shift, int buffer)
+gf100_grctx_patch_wr32(struct gf100_gr_chan *chan, u32 addr, u32 data)
{
- struct nvkm_device *device = info->gr->base.engine.subdev.device;
- if (info->data) {
- if (shift >= 0) {
- info->mmio->addr = addr;
- info->mmio->data = data;
- info->mmio->shift = shift;
- info->mmio->buffer = buffer;
- if (buffer >= 0)
- data |= info->buffer[buffer] >> shift;
- info->mmio++;
- } else
- return;
- } else {
- if (buffer >= 0)
- return;
+ if (unlikely(!chan->mmio)) {
+ nvkm_wr32(chan->gr->base.engine.subdev.device, addr, data);
+ return;
}
- nvkm_wr32(device, addr, data);
+ nvkm_wo32(chan->mmio, chan->mmio_nr++ * 4, addr);
+ nvkm_wo32(chan->mmio, chan->mmio_nr++ * 4, data);
}
void
@@ -1037,56 +1011,60 @@ gf100_grctx_generate_r419cb8(struct gf100_gr *gr)
}
void
-gf100_grctx_generate_bundle(struct gf100_grctx *info)
+gf100_grctx_generate_bundle(struct gf100_gr_chan *chan, u64 addr, u32 size)
{
- const struct gf100_grctx_func *grctx = info->gr->func->grctx;
- const int s = 8;
- const int b = mmio_vram(info, grctx->bundle_size, (1 << s), true);
- mmio_refn(info, 0x408004, 0x00000000, s, b);
- mmio_wr32(info, 0x408008, 0x80000000 | (grctx->bundle_size >> s));
- mmio_refn(info, 0x418808, 0x00000000, s, b);
- mmio_wr32(info, 0x41880c, 0x80000000 | (grctx->bundle_size >> s));
+ gf100_grctx_patch_wr32(chan, 0x408004, addr >> 8);
+ gf100_grctx_patch_wr32(chan, 0x408008, 0x80000000 | (size >> 8));
+ gf100_grctx_patch_wr32(chan, 0x418808, addr >> 8);
+ gf100_grctx_patch_wr32(chan, 0x41880c, 0x80000000 | (size >> 8));
}
void
-gf100_grctx_generate_pagepool(struct gf100_grctx *info)
+gf100_grctx_generate_pagepool(struct gf100_gr_chan *chan, u64 addr)
{
- const struct gf100_grctx_func *grctx = info->gr->func->grctx;
- const int s = 8;
- const int b = mmio_vram(info, grctx->pagepool_size, (1 << s), true);
- mmio_refn(info, 0x40800c, 0x00000000, s, b);
- mmio_wr32(info, 0x408010, 0x80000000);
- mmio_refn(info, 0x419004, 0x00000000, s, b);
- mmio_wr32(info, 0x419008, 0x00000000);
+ gf100_grctx_patch_wr32(chan, 0x40800c, addr >> 8);
+ gf100_grctx_patch_wr32(chan, 0x408010, 0x80000000);
+ gf100_grctx_patch_wr32(chan, 0x419004, addr >> 8);
+ gf100_grctx_patch_wr32(chan, 0x419008, 0x00000000);
}
void
-gf100_grctx_generate_attrib(struct gf100_grctx *info)
+gf100_grctx_generate_attrib(struct gf100_gr_chan *chan)
{
- struct gf100_gr *gr = info->gr;
+ struct gf100_gr *gr = chan->gr;
const struct gf100_grctx_func *grctx = gr->func->grctx;
const u32 attrib = grctx->attrib_nr;
- const u32 size = 0x20 * (grctx->attrib_nr_max + grctx->alpha_nr_max);
- const int s = 12;
- const int b = mmio_vram(info, size * gr->tpc_total, (1 << s), false);
int gpc, tpc;
u32 bo = 0;
- mmio_refn(info, 0x418810, 0x80000000, s, b);
- mmio_refn(info, 0x419848, 0x10000000, s, b);
- mmio_wr32(info, 0x405830, (attrib << 16));
+ gf100_grctx_patch_wr32(chan, 0x405830, (attrib << 16));
for (gpc = 0; gpc < gr->gpc_nr; gpc++) {
for (tpc = 0; tpc < gr->tpc_nr[gpc]; tpc++) {
const u32 o = TPC_UNIT(gpc, tpc, 0x0520);
- mmio_skip(info, o, (attrib << 16) | ++bo);
- mmio_wr32(info, o, (attrib << 16) | --bo);
+
+ gf100_grctx_patch_wr32(chan, o, (attrib << 16) | bo);
bo += grctx->attrib_nr_max;
}
}
}
void
+gf100_grctx_generate_attrib_cb(struct gf100_gr_chan *chan, u64 addr, u32 size)
+{
+ gf100_grctx_patch_wr32(chan, 0x418810, 0x80000000 | addr >> 12);
+ gf100_grctx_patch_wr32(chan, 0x419848, 0x10000000 | addr >> 12);
+}
+
+u32
+gf100_grctx_generate_attrib_cb_size(struct gf100_gr *gr)
+{
+ const struct gf100_grctx_func *grctx = gr->func->grctx;
+
+ return 0x20 * (grctx->attrib_nr_max + grctx->alpha_nr_max) * gr->tpc_total;
+}
+
+void
gf100_grctx_generate_unkn(struct gf100_gr *gr)
{
}
@@ -1361,8 +1339,9 @@ gf100_grctx_generate_floorsweep(struct gf100_gr *gr)
}
void
-gf100_grctx_generate_main(struct gf100_gr *gr, struct gf100_grctx *info)
+gf100_grctx_generate_main(struct gf100_gr_chan *chan)
{
+ struct gf100_gr *gr = chan->gr;
struct nvkm_device *device = gr->base.engine.subdev.device;
const struct gf100_grctx_func *grctx = gr->func->grctx;
u32 idle_timeout;
@@ -1380,15 +1359,23 @@ gf100_grctx_generate_main(struct gf100_gr *gr, struct gf100_grctx *info)
gf100_gr_mmio(gr, gr->sw_ctx);
}
+ if (gr->func->init_419bd8)
+ gr->func->init_419bd8(gr);
+ if (grctx->r419ea8)
+ grctx->r419ea8(gr);
+
gf100_gr_wait_idle(gr);
idle_timeout = nvkm_mask(device, 0x404154, 0xffffffff, 0x00000000);
- grctx->pagepool(info);
- grctx->bundle(info);
- grctx->attrib(info);
+ grctx->pagepool(chan, chan->pagepool->addr);
+ grctx->bundle(chan, chan->bundle_cb->addr, grctx->bundle_size);
+ grctx->attrib_cb(chan, chan->attrib_cb->addr, grctx->attrib_cb_size(gr));
+ grctx->attrib(chan);
if (grctx->patch_ltc)
- grctx->patch_ltc(info);
+ grctx->patch_ltc(chan);
+ if (grctx->unknown_size)
+ grctx->unknown(chan, chan->unknown->addr, grctx->unknown_size);
grctx->unkn(gr);
gf100_grctx_generate_floorsweep(gr);
@@ -1396,12 +1383,23 @@ gf100_grctx_generate_main(struct gf100_gr *gr, struct gf100_grctx *info)
gf100_gr_wait_idle(gr);
if (grctx->r400088) grctx->r400088(gr, false);
+
if (gr->bundle)
gf100_gr_icmd(gr, gr->bundle);
else
gf100_gr_icmd(gr, grctx->icmd);
- if (grctx->sw_veid_bundle_init)
+
+ if (gr->bundle_veid)
+ gf100_gr_icmd(gr, gr->bundle_veid);
+ else
gf100_gr_icmd(gr, grctx->sw_veid_bundle_init);
+
+ if (gr->bundle64)
+ gf100_gr_icmd(gr, gr->bundle64);
+ else
+ if (grctx->sw_bundle64_init)
+ gf100_gr_icmd(gr, grctx->sw_bundle64_init);
+
if (grctx->r400088) grctx->r400088(gr, true);
nvkm_wr32(device, 0x404154, idle_timeout);
@@ -1428,21 +1426,20 @@ gf100_grctx_generate_main(struct gf100_gr *gr, struct gf100_grctx *info)
grctx->r408840(gr);
if (grctx->r419c0c)
grctx->r419c0c(gr);
+
+ gf100_gr_wait_idle(gr);
}
#define CB_RESERVED 0x80000
int
-gf100_grctx_generate(struct gf100_gr *gr)
+gf100_grctx_generate(struct gf100_gr *gr, struct gf100_gr_chan *chan, struct nvkm_gpuobj *inst)
{
const struct gf100_grctx_func *grctx = gr->func->grctx;
struct nvkm_subdev *subdev = &gr->base.engine.subdev;
struct nvkm_device *device = subdev->device;
- struct nvkm_memory *inst = NULL;
struct nvkm_memory *data = NULL;
- struct nvkm_vmm *vmm = NULL;
struct nvkm_vma *ctx = NULL;
- struct gf100_grctx info;
int ret, i;
u64 addr;
@@ -1457,72 +1454,47 @@ gf100_grctx_generate(struct gf100_gr *gr)
grctx->unkn88c(gr, true);
/* Reset FECS. */
- nvkm_wr32(device, 0x409614, 0x00000070);
- nvkm_usec(device, 10, NVKM_DELAY);
- nvkm_mask(device, 0x409614, 0x00000700, 0x00000700);
- nvkm_usec(device, 10, NVKM_DELAY);
- nvkm_rd32(device, 0x409614);
+ gr->func->fecs.reset(gr);
if (grctx->unkn88c)
grctx->unkn88c(gr, false);
/* NV_PGRAPH_FE_PWR_MODE_AUTO. */
nvkm_wr32(device, 0x404170, 0x00000010);
+ nvkm_msec(device, 2000,
+ if (!(nvkm_rd32(device, 0x404170) & 0x00000010))
+ break;
+ );
/* Init SCC RAM. */
nvkm_wr32(device, 0x40802c, 0x00000001);
- /* Allocate memory to for a "channel", which we'll use to generate
- * the default context values.
- */
- ret = nvkm_memory_new(device, NVKM_MEM_TARGET_INST,
- 0x1000, 0x1000, true, &inst);
- if (ret)
- goto done;
-
- ret = nvkm_vmm_new(device, 0, 0, NULL, 0, NULL, "grctx", &vmm);
- if (ret)
- goto done;
-
- vmm->debug = subdev->debug;
-
- ret = nvkm_vmm_join(vmm, inst);
- if (ret)
- goto done;
-
+ /* Allocate memory to store context, and dummy global context buffers. */
ret = nvkm_memory_new(device, NVKM_MEM_TARGET_INST,
CB_RESERVED + gr->size, 0, true, &data);
if (ret)
goto done;
- ret = nvkm_vmm_get(vmm, 0, nvkm_memory_size(data), &ctx);
+ ret = nvkm_vmm_get(chan->vmm, 0, nvkm_memory_size(data), &ctx);
if (ret)
goto done;
- ret = nvkm_memory_map(data, 0, vmm, ctx, NULL, 0);
+ ret = nvkm_memory_map(data, 0, chan->vmm, ctx, NULL, 0);
if (ret)
goto done;
-
/* Setup context pointer. */
nvkm_kmap(inst);
nvkm_wo32(inst, 0x0210, lower_32_bits(ctx->addr + CB_RESERVED) | 4);
nvkm_wo32(inst, 0x0214, upper_32_bits(ctx->addr + CB_RESERVED));
nvkm_done(inst);
- /* Setup default state for mmio list construction. */
- info.gr = gr;
- info.data = gr->mmio_data;
- info.mmio = gr->mmio_list;
- info.addr = ctx->addr;
- info.buffer_nr = 0;
-
/* Make channel current. */
- addr = nvkm_memory_addr(inst) >> 12;
+ addr = inst->addr >> 12;
if (gr->firmware) {
ret = gf100_gr_fecs_bind_pointer(gr, 0x80000000 | addr);
if (ret)
- goto done;
+ goto done_inst;
nvkm_kmap(data);
nvkm_wo32(data, 0x1c, 1);
@@ -1540,19 +1512,27 @@ gf100_grctx_generate(struct gf100_gr *gr)
);
}
- grctx->main(gr, &info);
+ grctx->main(chan);
- /* Trigger a context unload by unsetting the "next channel valid" bit
- * and faking a context switch interrupt.
- */
- nvkm_mask(device, 0x409b04, 0x80000000, 0x00000000);
- nvkm_wr32(device, 0x409000, 0x00000100);
- if (nvkm_msec(device, 2000,
- if (!(nvkm_rd32(device, 0x409b00) & 0x80000000))
- break;
- ) < 0) {
- ret = -EBUSY;
- goto done;
+ if (!gr->firmware) {
+ /* Trigger a context unload by unsetting the "next channel valid" bit
+ * and faking a context switch interrupt.
+ */
+ nvkm_mask(device, 0x409b04, 0x80000000, 0x00000000);
+ nvkm_wr32(device, 0x409000, 0x00000100);
+ if (nvkm_msec(device, 2000,
+ if (!(nvkm_rd32(device, 0x409b00) & 0x80000000))
+ break;
+ ) < 0) {
+ ret = -EBUSY;
+ goto done_inst;
+ }
+ } else {
+ ret = gf100_gr_fecs_wfi_golden_save(gr, 0x80000000 | addr);
+ if (ret)
+ goto done_inst;
+
+ nvkm_mask(device, 0x409b00, 0x80000000, 0x00000000);
}
gr->data = kmalloc(gr->size, GFP_KERNEL);
@@ -1566,12 +1546,14 @@ gf100_grctx_generate(struct gf100_gr *gr)
ret = -ENOMEM;
}
+done_inst:
+ nvkm_kmap(inst);
+ nvkm_wo32(inst, 0x0210, 0);
+ nvkm_wo32(inst, 0x0214, 0);
+ nvkm_done(inst);
done:
- nvkm_vmm_put(vmm, &ctx);
+ nvkm_vmm_put(chan->vmm, &ctx);
nvkm_memory_unref(&data);
- nvkm_vmm_part(vmm, inst);
- nvkm_vmm_unref(&vmm);
- nvkm_memory_unref(&inst);
return ret;
}
@@ -1590,6 +1572,8 @@ gf100_grctx = {
.bundle_size = 0x1800,
.pagepool = gf100_grctx_generate_pagepool,
.pagepool_size = 0x8000,
+ .attrib_cb_size = gf100_grctx_generate_attrib_cb_size,
+ .attrib_cb = gf100_grctx_generate_attrib_cb,
.attrib = gf100_grctx_generate_attrib,
.attrib_nr_max = 0x324,
.attrib_nr = 0x218,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgf100.h b/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgf100.h
index 32bbddc0993e..00dbeda7e346 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgf100.h
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgf100.h
@@ -3,27 +3,12 @@
#define __NVKM_GRCTX_NVC0_H__
#include "gf100.h"
-struct gf100_grctx {
- struct gf100_gr *gr;
- struct gf100_gr_data *data;
- struct gf100_gr_mmio *mmio;
- int buffer_nr;
- u64 buffer[4];
- u64 addr;
-};
-
-int gf100_grctx_mmio_data(struct gf100_grctx *, u32 size, u32 align, bool priv);
-void gf100_grctx_mmio_item(struct gf100_grctx *, u32 addr, u32 data, int s, int);
-
-#define mmio_vram(a,b,c,d) gf100_grctx_mmio_data((a), (b), (c), (d))
-#define mmio_refn(a,b,c,d,e) gf100_grctx_mmio_item((a), (b), (c), (d), (e))
-#define mmio_skip(a,b,c) mmio_refn((a), (b), (c), -1, -1)
-#define mmio_wr32(a,b,c) mmio_refn((a), (b), (c), 0, -1)
+void gf100_grctx_patch_wr32(struct gf100_gr_chan *, u32 addr, u32 data);
struct gf100_grctx_func {
void (*unkn88c)(struct gf100_gr *, bool on);
/* main context generation function */
- void (*main)(struct gf100_gr *, struct gf100_grctx *);
+ void (*main)(struct gf100_gr_chan *);
/* context-specific modify-on-first-load list generation function */
void (*unkn)(struct gf100_gr *);
/* mmio context data */
@@ -37,23 +22,29 @@ struct gf100_grctx_func {
const struct gf100_gr_pack *icmd;
const struct gf100_gr_pack *mthd;
const struct gf100_gr_pack *sw_veid_bundle_init;
+ const struct gf100_gr_pack *sw_bundle64_init;
/* bundle circular buffer */
- void (*bundle)(struct gf100_grctx *);
+ void (*bundle)(struct gf100_gr_chan *, u64 addr, u32 size);
u32 bundle_size;
u32 bundle_min_gpm_fifo_depth;
u32 bundle_token_limit;
/* pagepool */
- void (*pagepool)(struct gf100_grctx *);
+ void (*pagepool)(struct gf100_gr_chan *, u64 addr);
u32 pagepool_size;
/* attribute(/alpha) circular buffer */
- void (*attrib)(struct gf100_grctx *);
+ u32 (*attrib_cb_size)(struct gf100_gr *);
+ void (*attrib_cb)(struct gf100_gr_chan *, u64 addr, u32 size);
+ void (*attrib)(struct gf100_gr_chan *);
u32 attrib_nr_max;
u32 attrib_nr;
u32 alpha_nr_max;
u32 alpha_nr;
u32 gfxp_nr;
+ /* some other context buffer */
+ void (*unknown)(struct gf100_gr_chan *, u64 addr, u32 size);
+ u32 unknown_size;
/* other patch buffer stuff */
- void (*patch_ltc)(struct gf100_grctx *);
+ void (*patch_ltc)(struct gf100_gr_chan *);
/* floorsweeping */
void (*sm_id)(struct gf100_gr *, int gpc, int tpc, int sm);
void (*tpc_nr)(struct gf100_gr *, int gpc);
@@ -78,14 +69,17 @@ struct gf100_grctx_func {
void (*r419a3c)(struct gf100_gr *);
void (*r408840)(struct gf100_gr *);
void (*r419c0c)(struct gf100_gr *);
+ void (*r419ea8)(struct gf100_gr *);
};
extern const struct gf100_grctx_func gf100_grctx;
-int gf100_grctx_generate(struct gf100_gr *);
-void gf100_grctx_generate_main(struct gf100_gr *, struct gf100_grctx *);
-void gf100_grctx_generate_bundle(struct gf100_grctx *);
-void gf100_grctx_generate_pagepool(struct gf100_grctx *);
-void gf100_grctx_generate_attrib(struct gf100_grctx *);
+int gf100_grctx_generate(struct gf100_gr *, struct gf100_gr_chan *, struct nvkm_gpuobj *inst);
+void gf100_grctx_generate_main(struct gf100_gr_chan *);
+void gf100_grctx_generate_pagepool(struct gf100_gr_chan *, u64);
+void gf100_grctx_generate_bundle(struct gf100_gr_chan *, u64, u32);
+u32 gf100_grctx_generate_attrib_cb_size(struct gf100_gr *);
+void gf100_grctx_generate_attrib_cb(struct gf100_gr_chan *, u64, u32);
+void gf100_grctx_generate_attrib(struct gf100_gr_chan *);
void gf100_grctx_generate_unkn(struct gf100_gr *);
void gf100_grctx_generate_floorsweep(struct gf100_gr *);
void gf100_grctx_generate_sm_id(struct gf100_gr *, int, int, int);
@@ -97,14 +91,14 @@ void gf100_grctx_generate_max_ways_evict(struct gf100_gr *);
void gf100_grctx_generate_r419cb8(struct gf100_gr *);
extern const struct gf100_grctx_func gf108_grctx;
-void gf108_grctx_generate_attrib(struct gf100_grctx *);
+void gf108_grctx_generate_attrib(struct gf100_gr_chan *);
void gf108_grctx_generate_unkn(struct gf100_gr *);
extern const struct gf100_grctx_func gf104_grctx;
extern const struct gf100_grctx_func gf110_grctx;
extern const struct gf100_grctx_func gf117_grctx;
-void gf117_grctx_generate_attrib(struct gf100_grctx *);
+void gf117_grctx_generate_attrib(struct gf100_gr_chan *);
void gf117_grctx_generate_rop_mapping(struct gf100_gr *);
void gf117_grctx_generate_dist_skip_table(struct gf100_gr *);
@@ -115,9 +109,9 @@ void gk104_grctx_generate_alpha_beta_tables(struct gf100_gr *);
void gk104_grctx_generate_gpc_tpc_nr(struct gf100_gr *);
extern const struct gf100_grctx_func gk20a_grctx;
-void gk104_grctx_generate_bundle(struct gf100_grctx *);
-void gk104_grctx_generate_pagepool(struct gf100_grctx *);
-void gk104_grctx_generate_patch_ltc(struct gf100_grctx *);
+void gk104_grctx_generate_pagepool(struct gf100_gr_chan *, u64);
+void gk104_grctx_generate_bundle(struct gf100_gr_chan *, u64, u32);
+void gk104_grctx_generate_patch_ltc(struct gf100_gr_chan *);
void gk104_grctx_generate_unkn(struct gf100_gr *);
void gk104_grctx_generate_r418800(struct gf100_gr *);
@@ -128,9 +122,10 @@ extern const struct gf100_grctx_func gk110b_grctx;
extern const struct gf100_grctx_func gk208_grctx;
extern const struct gf100_grctx_func gm107_grctx;
-void gm107_grctx_generate_bundle(struct gf100_grctx *);
-void gm107_grctx_generate_pagepool(struct gf100_grctx *);
-void gm107_grctx_generate_attrib(struct gf100_grctx *);
+void gm107_grctx_generate_pagepool(struct gf100_gr_chan *, u64);
+void gm107_grctx_generate_bundle(struct gf100_gr_chan *, u64, u32);
+void gm107_grctx_generate_attrib_cb(struct gf100_gr_chan *, u64, u32);
+void gm107_grctx_generate_attrib(struct gf100_gr_chan *);
void gm107_grctx_generate_sm_id(struct gf100_gr *, int, int, int);
extern const struct gf100_grctx_func gm200_grctx;
@@ -143,11 +138,13 @@ void gm200_grctx_generate_r419a3c(struct gf100_gr *);
extern const struct gf100_grctx_func gm20b_grctx;
extern const struct gf100_grctx_func gp100_grctx;
-void gp100_grctx_generate_pagepool(struct gf100_grctx *);
+void gp100_grctx_generate_pagepool(struct gf100_gr_chan *, u64);
+void gp100_grctx_generate_attrib_cb(struct gf100_gr_chan *, u64, u32);
void gp100_grctx_generate_smid_config(struct gf100_gr *);
extern const struct gf100_grctx_func gp102_grctx;
-void gp102_grctx_generate_attrib(struct gf100_grctx *);
+u32 gp102_grctx_generate_attrib_cb_size(struct gf100_gr *);
+void gp102_grctx_generate_attrib(struct gf100_gr_chan *);
extern const struct gf100_grctx_func gp104_grctx;
@@ -158,11 +155,15 @@ extern const struct gf100_grctx_func gv100_grctx;
extern const struct gf100_grctx_func tu102_grctx;
void gv100_grctx_unkn88c(struct gf100_gr *, bool);
void gv100_grctx_generate_unkn(struct gf100_gr *);
-extern const struct gf100_gr_init gv100_grctx_init_sw_veid_bundle_init_0[];
-void gv100_grctx_generate_attrib(struct gf100_grctx *);
+void gv100_grctx_generate_attrib_cb(struct gf100_gr_chan *, u64, u32);
+void gv100_grctx_generate_attrib(struct gf100_gr_chan *);
void gv100_grctx_generate_rop_mapping(struct gf100_gr *);
void gv100_grctx_generate_r400088(struct gf100_gr *, bool);
+void tu102_grctx_generate_unknown(struct gf100_gr_chan *, u64, u32);
+
+extern const struct gf100_grctx_func ga102_grctx;
+
/* context init value lists */
extern const struct gf100_gr_pack gf100_grctx_pack_icmd[];
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgf104.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgf104.c
index 7a0564b6e3c7..ba63a3b46518 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgf104.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgf104.c
@@ -94,6 +94,8 @@ gf104_grctx = {
.bundle_size = 0x1800,
.pagepool = gf100_grctx_generate_pagepool,
.pagepool_size = 0x8000,
+ .attrib_cb_size = gf100_grctx_generate_attrib_cb_size,
+ .attrib_cb = gf100_grctx_generate_attrib_cb,
.attrib = gf100_grctx_generate_attrib,
.attrib_nr_max = 0x324,
.attrib_nr = 0x218,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgf108.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgf108.c
index dda2c32e6232..0bc2eab6ad98 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgf108.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgf108.c
@@ -733,25 +733,20 @@ gf108_grctx_pack_tpc[] = {
******************************************************************************/
void
-gf108_grctx_generate_attrib(struct gf100_grctx *info)
+gf108_grctx_generate_attrib(struct gf100_gr_chan *chan)
{
- struct gf100_gr *gr = info->gr;
+ struct gf100_gr *gr = chan->gr;
const struct gf100_grctx_func *grctx = gr->func->grctx;
const u32 alpha = grctx->alpha_nr;
const u32 beta = grctx->attrib_nr;
- const u32 size = 0x20 * (grctx->attrib_nr_max + grctx->alpha_nr_max);
- const int s = 12;
- const int b = mmio_vram(info, size * gr->tpc_total, (1 << s), false);
const int timeslice_mode = 1;
const int max_batches = 0xffff;
u32 bo = 0;
u32 ao = bo + grctx->attrib_nr_max * gr->tpc_total;
int gpc, tpc;
- mmio_refn(info, 0x418810, 0x80000000, s, b);
- mmio_refn(info, 0x419848, 0x10000000, s, b);
- mmio_wr32(info, 0x405830, (beta << 16) | alpha);
- mmio_wr32(info, 0x4064c4, ((alpha / 4) << 16) | max_batches);
+ gf100_grctx_patch_wr32(chan, 0x405830, (beta << 16) | alpha);
+ gf100_grctx_patch_wr32(chan, 0x4064c4, ((alpha / 4) << 16) | max_batches);
for (gpc = 0; gpc < gr->gpc_nr; gpc++) {
for (tpc = 0; tpc < gr->tpc_nr[gpc]; tpc++) {
@@ -759,10 +754,10 @@ gf108_grctx_generate_attrib(struct gf100_grctx *info)
const u32 b = beta;
const u32 t = timeslice_mode;
const u32 o = TPC_UNIT(gpc, tpc, 0x500);
- mmio_skip(info, o + 0x20, (t << 28) | (b << 16) | ++bo);
- mmio_wr32(info, o + 0x20, (t << 28) | (b << 16) | --bo);
+
+ gf100_grctx_patch_wr32(chan, o + 0x20, (t << 28) | (b << 16) | bo);
bo += grctx->attrib_nr_max;
- mmio_wr32(info, o + 0x44, (a << 16) | ao);
+ gf100_grctx_patch_wr32(chan, o + 0x44, (a << 16) | ao);
ao += grctx->alpha_nr_max;
}
}
@@ -795,6 +790,8 @@ gf108_grctx = {
.bundle_size = 0x1800,
.pagepool = gf100_grctx_generate_pagepool,
.pagepool_size = 0x8000,
+ .attrib_cb_size = gf100_grctx_generate_attrib_cb_size,
+ .attrib_cb = gf100_grctx_generate_attrib_cb,
.attrib = gf108_grctx_generate_attrib,
.attrib_nr_max = 0x324,
.attrib_nr = 0x218,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgf110.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgf110.c
index f5cca5e6a4f2..64b723b0afb5 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgf110.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgf110.c
@@ -342,6 +342,8 @@ gf110_grctx = {
.bundle_size = 0x1800,
.pagepool = gf100_grctx_generate_pagepool,
.pagepool_size = 0x8000,
+ .attrib_cb_size = gf100_grctx_generate_attrib_cb_size,
+ .attrib_cb = gf100_grctx_generate_attrib_cb,
.attrib = gf100_grctx_generate_attrib,
.attrib_nr_max = 0x324,
.attrib_nr = 0x218,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgf117.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgf117.c
index 276c282d19aa..e34c5da2a9ff 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgf117.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgf117.c
@@ -241,38 +241,34 @@ gf117_grctx_generate_rop_mapping(struct gf100_gr *gr)
}
void
-gf117_grctx_generate_attrib(struct gf100_grctx *info)
+gf117_grctx_generate_attrib(struct gf100_gr_chan *chan)
{
- struct gf100_gr *gr = info->gr;
+ struct gf100_gr *gr = chan->gr;
const struct gf100_grctx_func *grctx = gr->func->grctx;
const u32 alpha = grctx->alpha_nr;
const u32 beta = grctx->attrib_nr;
- const u32 size = 0x20 * (grctx->attrib_nr_max + grctx->alpha_nr_max);
- const int s = 12;
- const int b = mmio_vram(info, size * gr->tpc_total, (1 << s), false);
const int timeslice_mode = 1;
const int max_batches = 0xffff;
u32 bo = 0;
u32 ao = bo + grctx->attrib_nr_max * gr->tpc_total;
int gpc, ppc;
- mmio_refn(info, 0x418810, 0x80000000, s, b);
- mmio_refn(info, 0x419848, 0x10000000, s, b);
- mmio_wr32(info, 0x405830, (beta << 16) | alpha);
- mmio_wr32(info, 0x4064c4, ((alpha / 4) << 16) | max_batches);
+ gf100_grctx_patch_wr32(chan, 0x405830, (beta << 16) | alpha);
+ gf100_grctx_patch_wr32(chan, 0x4064c4, ((alpha / 4) << 16) | max_batches);
for (gpc = 0; gpc < gr->gpc_nr; gpc++) {
- for (ppc = 0; ppc < gr->ppc_nr[gpc]; ppc++) {
+ for (ppc = 0; ppc < gr->func->ppc_nr; ppc++) {
const u32 a = alpha * gr->ppc_tpc_nr[gpc][ppc];
const u32 b = beta * gr->ppc_tpc_nr[gpc][ppc];
const u32 t = timeslice_mode;
const u32 o = PPC_UNIT(gpc, ppc, 0);
+
if (!(gr->ppc_mask[gpc] & (1 << ppc)))
continue;
- mmio_skip(info, o + 0xc0, (t << 28) | (b << 16) | ++bo);
- mmio_wr32(info, o + 0xc0, (t << 28) | (b << 16) | --bo);
+
+ gf100_grctx_patch_wr32(chan, o + 0xc0, (t << 28) | (b << 16) | bo);
bo += grctx->attrib_nr_max * gr->ppc_tpc_nr[gpc][ppc];
- mmio_wr32(info, o + 0xe4, (a << 16) | ao);
+ gf100_grctx_patch_wr32(chan, o + 0xe4, (a << 16) | ao);
ao += grctx->alpha_nr_max * gr->ppc_tpc_nr[gpc][ppc];
}
}
@@ -294,6 +290,8 @@ gf117_grctx = {
.bundle_size = 0x1800,
.pagepool = gf100_grctx_generate_pagepool,
.pagepool_size = 0x8000,
+ .attrib_cb_size = gf100_grctx_generate_attrib_cb_size,
+ .attrib_cb = gf100_grctx_generate_attrib_cb,
.attrib = gf117_grctx_generate_attrib,
.attrib_nr_max = 0x324,
.attrib_nr = 0x218,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgf119.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgf119.c
index 0cfe46366af6..426ad1b8d426 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgf119.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgf119.c
@@ -510,6 +510,8 @@ gf119_grctx = {
.bundle_size = 0x1800,
.pagepool = gf100_grctx_generate_pagepool,
.pagepool_size = 0x8000,
+ .attrib_cb_size = gf100_grctx_generate_attrib_cb_size,
+ .attrib_cb = gf100_grctx_generate_attrib_cb,
.attrib = gf108_grctx_generate_attrib,
.attrib_nr_max = 0x324,
.attrib_nr = 0x218,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgk104.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgk104.c
index 304e9d268bad..94233d0119df 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgk104.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgk104.c
@@ -861,43 +861,33 @@ gk104_grctx_generate_r418800(struct gf100_gr *gr)
}
void
-gk104_grctx_generate_patch_ltc(struct gf100_grctx *info)
+gk104_grctx_generate_patch_ltc(struct gf100_gr_chan *chan)
{
- struct nvkm_device *device = info->gr->base.engine.subdev.device;
+ struct nvkm_device *device = chan->gr->base.engine.subdev.device;
u32 data0 = nvkm_rd32(device, 0x17e91c);
u32 data1 = nvkm_rd32(device, 0x17e920);
+
/*XXX: Figure out how to modify this correctly! */
- mmio_wr32(info, 0x17e91c, data0);
- mmio_wr32(info, 0x17e920, data1);
+ gf100_grctx_patch_wr32(chan, 0x17e91c, data0);
+ gf100_grctx_patch_wr32(chan, 0x17e920, data1);
}
void
-gk104_grctx_generate_bundle(struct gf100_grctx *info)
+gk104_grctx_generate_bundle(struct gf100_gr_chan *chan, u64 addr, u32 size)
{
- const struct gf100_grctx_func *grctx = info->gr->func->grctx;
- const u32 state_limit = min(grctx->bundle_min_gpm_fifo_depth,
- grctx->bundle_size / 0x20);
+ const struct gf100_grctx_func *grctx = chan->gr->func->grctx;
+ const u32 state_limit = min(grctx->bundle_min_gpm_fifo_depth, size / 0x20);
const u32 token_limit = grctx->bundle_token_limit;
- const int s = 8;
- const int b = mmio_vram(info, grctx->bundle_size, (1 << s), true);
- mmio_refn(info, 0x408004, 0x00000000, s, b);
- mmio_wr32(info, 0x408008, 0x80000000 | (grctx->bundle_size >> s));
- mmio_refn(info, 0x418808, 0x00000000, s, b);
- mmio_wr32(info, 0x41880c, 0x80000000 | (grctx->bundle_size >> s));
- mmio_wr32(info, 0x4064c8, (state_limit << 16) | token_limit);
+
+ gf100_grctx_generate_bundle(chan, addr, size);
+ gf100_grctx_patch_wr32(chan, 0x4064c8, (state_limit << 16) | token_limit);
}
void
-gk104_grctx_generate_pagepool(struct gf100_grctx *info)
+gk104_grctx_generate_pagepool(struct gf100_gr_chan *chan, u64 addr)
{
- const struct gf100_grctx_func *grctx = info->gr->func->grctx;
- const int s = 8;
- const int b = mmio_vram(info, grctx->pagepool_size, (1 << s), true);
- mmio_refn(info, 0x40800c, 0x00000000, s, b);
- mmio_wr32(info, 0x408010, 0x80000000);
- mmio_refn(info, 0x419004, 0x00000000, s, b);
- mmio_wr32(info, 0x419008, 0x00000000);
- mmio_wr32(info, 0x4064cc, 0x80000000);
+ gf100_grctx_generate_pagepool(chan, addr);
+ gf100_grctx_patch_wr32(chan, 0x4064cc, 0x80000000);
}
void
@@ -991,6 +981,8 @@ gk104_grctx = {
.bundle_token_limit = 0x600,
.pagepool = gk104_grctx_generate_pagepool,
.pagepool_size = 0x8000,
+ .attrib_cb_size = gf100_grctx_generate_attrib_cb_size,
+ .attrib_cb = gf100_grctx_generate_attrib_cb,
.attrib = gf117_grctx_generate_attrib,
.attrib_nr_max = 0x324,
.attrib_nr = 0x218,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgk110.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgk110.c
index 86547cfc38dc..4391458e1fb2 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgk110.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgk110.c
@@ -838,6 +838,8 @@ gk110_grctx = {
.bundle_token_limit = 0x7c0,
.pagepool = gk104_grctx_generate_pagepool,
.pagepool_size = 0x8000,
+ .attrib_cb_size = gf100_grctx_generate_attrib_cb_size,
+ .attrib_cb = gf100_grctx_generate_attrib_cb,
.attrib = gf117_grctx_generate_attrib,
.attrib_nr_max = 0x324,
.attrib_nr = 0x218,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgk110b.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgk110b.c
index ebb947bd1446..7b9a34f9ec3c 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgk110b.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgk110b.c
@@ -87,6 +87,8 @@ gk110b_grctx = {
.bundle_token_limit = 0x600,
.pagepool = gk104_grctx_generate_pagepool,
.pagepool_size = 0x8000,
+ .attrib_cb_size = gf100_grctx_generate_attrib_cb_size,
+ .attrib_cb = gf100_grctx_generate_attrib_cb,
.attrib = gf117_grctx_generate_attrib,
.attrib_nr_max = 0x324,
.attrib_nr = 0x218,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgk208.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgk208.c
index 4d40512b5c99..c78d07a8bb7d 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgk208.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgk208.c
@@ -553,6 +553,8 @@ gk208_grctx = {
.bundle_token_limit = 0x200,
.pagepool = gk104_grctx_generate_pagepool,
.pagepool_size = 0x8000,
+ .attrib_cb_size = gf100_grctx_generate_attrib_cb_size,
+ .attrib_cb = gf100_grctx_generate_attrib_cb,
.attrib = gf117_grctx_generate_attrib,
.attrib_nr_max = 0x324,
.attrib_nr = 0x218,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgk20a.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgk20a.c
index c0d36bc601f9..ac5fdcb5cd3f 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgk20a.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgk20a.c
@@ -25,8 +25,9 @@
#include <subdev/mc.h>
static void
-gk20a_grctx_generate_main(struct gf100_gr *gr, struct gf100_grctx *info)
+gk20a_grctx_generate_main(struct gf100_gr_chan *chan)
{
+ struct gf100_gr *gr = chan->gr;
struct nvkm_device *device = gr->base.engine.subdev.device;
const struct gf100_grctx_func *grctx = gr->func->grctx;
u32 idle_timeout;
@@ -38,7 +39,8 @@ gk20a_grctx_generate_main(struct gf100_gr *gr, struct gf100_grctx *info)
idle_timeout = nvkm_mask(device, 0x404154, 0xffffffff, 0x00000000);
- grctx->attrib(info);
+ grctx->attrib_cb(chan, chan->attrib_cb->addr, grctx->attrib_cb_size(gr));
+ grctx->attrib(chan);
grctx->unkn(gr);
@@ -60,8 +62,8 @@ gk20a_grctx_generate_main(struct gf100_gr *gr, struct gf100_grctx *info)
gf100_gr_wait_idle(gr);
gf100_gr_icmd(gr, gr->bundle);
- grctx->pagepool(info);
- grctx->bundle(info);
+ grctx->pagepool(chan, chan->pagepool->addr);
+ grctx->bundle(chan, chan->bundle_cb->addr, grctx->bundle_size);
}
const struct gf100_grctx_func
@@ -74,6 +76,8 @@ gk20a_grctx = {
.bundle_token_limit = 0x100,
.pagepool = gk104_grctx_generate_pagepool,
.pagepool_size = 0x8000,
+ .attrib_cb_size = gf100_grctx_generate_attrib_cb_size,
+ .attrib_cb = gf100_grctx_generate_attrib_cb,
.attrib = gf117_grctx_generate_attrib,
.attrib_nr_max = 0x240,
.attrib_nr = 0x240,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgm107.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgm107.c
index 0b3964e6b36e..beac66eb2a80 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgm107.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgm107.c
@@ -876,75 +876,70 @@ gm107_grctx_generate_r419e00(struct gf100_gr *gr)
}
void
-gm107_grctx_generate_bundle(struct gf100_grctx *info)
+gm107_grctx_generate_bundle(struct gf100_gr_chan *chan, u64 addr, u32 size)
{
- const struct gf100_grctx_func *grctx = info->gr->func->grctx;
- const u32 state_limit = min(grctx->bundle_min_gpm_fifo_depth,
- grctx->bundle_size / 0x20);
+ const struct gf100_grctx_func *grctx = chan->gr->func->grctx;
+ const u32 state_limit = min(grctx->bundle_min_gpm_fifo_depth, size / 0x20);
const u32 token_limit = grctx->bundle_token_limit;
- const int s = 8;
- const int b = mmio_vram(info, grctx->bundle_size, (1 << s), true);
- mmio_refn(info, 0x408004, 0x00000000, s, b);
- mmio_wr32(info, 0x408008, 0x80000000 | (grctx->bundle_size >> s));
- mmio_refn(info, 0x418e24, 0x00000000, s, b);
- mmio_wr32(info, 0x418e28, 0x80000000 | (grctx->bundle_size >> s));
- mmio_wr32(info, 0x4064c8, (state_limit << 16) | token_limit);
+
+ gf100_grctx_patch_wr32(chan, 0x408004, addr >> 8);
+ gf100_grctx_patch_wr32(chan, 0x408008, 0x80000000 | (size >> 8));
+ gf100_grctx_patch_wr32(chan, 0x418e24, addr >> 8);
+ gf100_grctx_patch_wr32(chan, 0x418e28, 0x80000000 | (size >> 8));
+ gf100_grctx_patch_wr32(chan, 0x4064c8, (state_limit << 16) | token_limit);
}
void
-gm107_grctx_generate_pagepool(struct gf100_grctx *info)
+gm107_grctx_generate_pagepool(struct gf100_gr_chan *chan, u64 addr)
{
- const struct gf100_grctx_func *grctx = info->gr->func->grctx;
- const int s = 8;
- const int b = mmio_vram(info, grctx->pagepool_size, (1 << s), true);
- mmio_refn(info, 0x40800c, 0x00000000, s, b);
- mmio_wr32(info, 0x408010, 0x80000000);
- mmio_refn(info, 0x419004, 0x00000000, s, b);
- mmio_wr32(info, 0x419008, 0x00000000);
- mmio_wr32(info, 0x4064cc, 0x80000000);
- mmio_wr32(info, 0x418e30, 0x80000000); /* guess at it being related */
+ gk104_grctx_generate_pagepool(chan, addr);
+ gf100_grctx_patch_wr32(chan, 0x418e30, 0x80000000);
}
void
-gm107_grctx_generate_attrib(struct gf100_grctx *info)
+gm107_grctx_generate_attrib(struct gf100_gr_chan *chan)
{
- struct gf100_gr *gr = info->gr;
+ struct gf100_gr *gr = chan->gr;
const struct gf100_grctx_func *grctx = gr->func->grctx;
const u32 alpha = grctx->alpha_nr;
const u32 attrib = grctx->attrib_nr;
- const u32 size = 0x20 * (grctx->attrib_nr_max + grctx->alpha_nr_max);
- const int s = 12;
- const int b = mmio_vram(info, size * gr->tpc_total, (1 << s), false);
const int max_batches = 0xffff;
u32 bo = 0;
u32 ao = bo + grctx->attrib_nr_max * gr->tpc_total;
int gpc, ppc, n = 0;
- mmio_refn(info, 0x418810, 0x80000000, s, b);
- mmio_refn(info, 0x419848, 0x10000000, s, b);
- mmio_refn(info, 0x419c2c, 0x10000000, s, b);
- mmio_wr32(info, 0x405830, (attrib << 16) | alpha);
- mmio_wr32(info, 0x4064c4, ((alpha / 4) << 16) | max_batches);
+ gf100_grctx_patch_wr32(chan, 0x405830, (attrib << 16) | alpha);
+ gf100_grctx_patch_wr32(chan, 0x4064c4, ((alpha / 4) << 16) | max_batches);
for (gpc = 0; gpc < gr->gpc_nr; gpc++) {
- for (ppc = 0; ppc < gr->ppc_nr[gpc]; ppc++, n++) {
+ for (ppc = 0; ppc < gr->func->ppc_nr; ppc++, n++) {
const u32 as = alpha * gr->ppc_tpc_nr[gpc][ppc];
const u32 bs = attrib * gr->ppc_tpc_nr[gpc][ppc];
const u32 u = 0x418ea0 + (n * 0x04);
const u32 o = PPC_UNIT(gpc, ppc, 0);
+
if (!(gr->ppc_mask[gpc] & (1 << ppc)))
continue;
- mmio_wr32(info, o + 0xc0, bs);
- mmio_wr32(info, o + 0xf4, bo);
+
+ gf100_grctx_patch_wr32(chan, o + 0xc0, bs);
+ gf100_grctx_patch_wr32(chan, o + 0xf4, bo);
bo += grctx->attrib_nr_max * gr->ppc_tpc_nr[gpc][ppc];
- mmio_wr32(info, o + 0xe4, as);
- mmio_wr32(info, o + 0xf8, ao);
+ gf100_grctx_patch_wr32(chan, o + 0xe4, as);
+ gf100_grctx_patch_wr32(chan, o + 0xf8, ao);
ao += grctx->alpha_nr_max * gr->ppc_tpc_nr[gpc][ppc];
- mmio_wr32(info, u, ((bs / 3) << 16) | bs);
+ gf100_grctx_patch_wr32(chan, u, ((bs / 3) << 16) | bs);
}
}
}
+void
+gm107_grctx_generate_attrib_cb(struct gf100_gr_chan *chan, u64 addr, u32 size)
+{
+ gf100_grctx_generate_attrib_cb(chan, addr, size);
+
+ gf100_grctx_patch_wr32(chan, 0x419c2c, 0x10000000 | addr >> 12);
+}
+
static void
gm107_grctx_generate_r406500(struct gf100_gr *gr)
{
@@ -978,6 +973,8 @@ gm107_grctx = {
.bundle_token_limit = 0x2c0,
.pagepool = gm107_grctx_generate_pagepool,
.pagepool_size = 0x8000,
+ .attrib_cb_size = gf100_grctx_generate_attrib_cb_size,
+ .attrib_cb = gm107_grctx_generate_attrib_cb,
.attrib = gm107_grctx_generate_attrib,
.attrib_nr_max = 0xff0,
.attrib_nr = 0xaa0,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgm200.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgm200.c
index 013d05a0f0f6..175da8ac656c 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgm200.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgm200.c
@@ -87,7 +87,7 @@ gm200_grctx_generate_dist_skip_table(struct gf100_gr *gr)
int gpc, ppc, i;
for (gpc = 0; gpc < gr->gpc_nr; gpc++) {
- for (ppc = 0; ppc < gr->ppc_nr[gpc]; ppc++) {
+ for (ppc = 0; ppc < gr->func->ppc_nr; ppc++) {
u8 ppc_tpcs = gr->ppc_tpc_nr[gpc][ppc];
u8 ppc_tpcm = gr->ppc_tpc_mask[gpc][ppc];
while (ppc_tpcs-- > gr->ppc_tpc_min)
@@ -111,6 +111,8 @@ gm200_grctx = {
.bundle_token_limit = 0x780,
.pagepool = gm107_grctx_generate_pagepool,
.pagepool_size = 0x20000,
+ .attrib_cb_size = gf100_grctx_generate_attrib_cb_size,
+ .attrib_cb = gm107_grctx_generate_attrib_cb,
.attrib = gm107_grctx_generate_attrib,
.attrib_nr_max = 0x600,
.attrib_nr = 0x400,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgm20b.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgm20b.c
index 6b92f8aa18a3..b8edccfada58 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgm20b.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgm20b.c
@@ -22,8 +22,9 @@
#include "ctxgf100.h"
static void
-gm20b_grctx_generate_main(struct gf100_gr *gr, struct gf100_grctx *info)
+gm20b_grctx_generate_main(struct gf100_gr_chan *chan)
{
+ struct gf100_gr *gr = chan->gr;
struct nvkm_device *device = gr->base.engine.subdev.device;
const struct gf100_grctx_func *grctx = gr->func->grctx;
u32 idle_timeout;
@@ -35,7 +36,8 @@ gm20b_grctx_generate_main(struct gf100_gr *gr, struct gf100_grctx *info)
idle_timeout = nvkm_mask(device, 0x404154, 0xffffffff, 0x00000000);
- grctx->attrib(info);
+ grctx->attrib_cb(chan, chan->attrib_cb->addr, grctx->attrib_cb_size(gr));
+ grctx->attrib(chan);
grctx->unkn(gr);
@@ -63,8 +65,8 @@ gm20b_grctx_generate_main(struct gf100_gr *gr, struct gf100_grctx *info)
gf100_gr_wait_idle(gr);
gf100_gr_icmd(gr, gr->bundle);
- grctx->pagepool(info);
- grctx->bundle(info);
+ grctx->pagepool(chan, chan->pagepool->addr);
+ grctx->bundle(chan, chan->bundle_cb->addr, grctx->bundle_size);
}
const struct gf100_grctx_func
@@ -77,6 +79,8 @@ gm20b_grctx = {
.bundle_token_limit = 0x1c0,
.pagepool = gm107_grctx_generate_pagepool,
.pagepool_size = 0x8000,
+ .attrib_cb_size = gf100_grctx_generate_attrib_cb_size,
+ .attrib_cb = gm107_grctx_generate_attrib_cb,
.attrib = gm107_grctx_generate_attrib,
.attrib_nr_max = 0x600,
.attrib_nr = 0x400,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgp100.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgp100.c
index 0b3326262e12..8485aaeae7a9 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgp100.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgp100.c
@@ -30,66 +30,76 @@
******************************************************************************/
void
-gp100_grctx_generate_pagepool(struct gf100_grctx *info)
+gp100_grctx_generate_pagepool(struct gf100_gr_chan *chan, u64 addr)
{
- const struct gf100_grctx_func *grctx = info->gr->func->grctx;
- const int s = 8;
- const int b = mmio_vram(info, grctx->pagepool_size, (1 << s), true);
- mmio_refn(info, 0x40800c, 0x00000000, s, b);
- mmio_wr32(info, 0x408010, 0x8007d800);
- mmio_refn(info, 0x419004, 0x00000000, s, b);
- mmio_wr32(info, 0x419008, 0x00000000);
+ gf100_grctx_patch_wr32(chan, 0x40800c, addr >> 8);
+ gf100_grctx_patch_wr32(chan, 0x408010, 0x8007d800);
+ gf100_grctx_patch_wr32(chan, 0x419004, addr >> 8);
+ gf100_grctx_patch_wr32(chan, 0x419008, 0x00000000);
}
static void
-gp100_grctx_generate_attrib(struct gf100_grctx *info)
+gp100_grctx_generate_attrib(struct gf100_gr_chan *chan)
{
- struct gf100_gr *gr = info->gr;
+ struct gf100_gr *gr = chan->gr;
const struct gf100_grctx_func *grctx = gr->func->grctx;
const u32 alpha = grctx->alpha_nr;
const u32 attrib = grctx->attrib_nr;
- const int s = 12;
const int max_batches = 0xffff;
u32 size = grctx->alpha_nr_max * gr->tpc_total;
u32 ao = 0;
u32 bo = ao + size;
- int gpc, ppc, b, n = 0;
+ int gpc, ppc, n = 0;
- for (gpc = 0; gpc < gr->gpc_nr; gpc++)
- size += grctx->attrib_nr_max * gr->ppc_nr[gpc] * gr->ppc_tpc_max;
- size = ((size * 0x20) + 128) & ~127;
- b = mmio_vram(info, size, (1 << s), false);
-
- mmio_refn(info, 0x418810, 0x80000000, s, b);
- mmio_refn(info, 0x419848, 0x10000000, s, b);
- mmio_refn(info, 0x419c2c, 0x10000000, s, b);
- mmio_refn(info, 0x419b00, 0x00000000, s, b);
- mmio_wr32(info, 0x419b04, 0x80000000 | size >> 7);
- mmio_wr32(info, 0x405830, attrib);
- mmio_wr32(info, 0x40585c, alpha);
- mmio_wr32(info, 0x4064c4, ((alpha / 4) << 16) | max_batches);
+ gf100_grctx_patch_wr32(chan, 0x405830, attrib);
+ gf100_grctx_patch_wr32(chan, 0x40585c, alpha);
+ gf100_grctx_patch_wr32(chan, 0x4064c4, ((alpha / 4) << 16) | max_batches);
for (gpc = 0; gpc < gr->gpc_nr; gpc++) {
- for (ppc = 0; ppc < gr->ppc_nr[gpc]; ppc++, n++) {
+ for (ppc = 0; ppc < gr->func->ppc_nr; ppc++, n++) {
const u32 as = alpha * gr->ppc_tpc_nr[gpc][ppc];
const u32 bs = attrib * gr->ppc_tpc_max;
const u32 u = 0x418ea0 + (n * 0x04);
const u32 o = PPC_UNIT(gpc, ppc, 0);
+
if (!(gr->ppc_mask[gpc] & (1 << ppc)))
continue;
- mmio_wr32(info, o + 0xc0, bs);
- mmio_wr32(info, o + 0xf4, bo);
- mmio_wr32(info, o + 0xf0, bs);
+
+ gf100_grctx_patch_wr32(chan, o + 0xc0, bs);
+ gf100_grctx_patch_wr32(chan, o + 0xf4, bo);
+ gf100_grctx_patch_wr32(chan, o + 0xf0, bs);
bo += grctx->attrib_nr_max * gr->ppc_tpc_max;
- mmio_wr32(info, o + 0xe4, as);
- mmio_wr32(info, o + 0xf8, ao);
+ gf100_grctx_patch_wr32(chan, o + 0xe4, as);
+ gf100_grctx_patch_wr32(chan, o + 0xf8, ao);
ao += grctx->alpha_nr_max * gr->ppc_tpc_nr[gpc][ppc];
- mmio_wr32(info, u, bs);
+ gf100_grctx_patch_wr32(chan, u, bs);
}
}
- mmio_wr32(info, 0x418eec, 0x00000000);
- mmio_wr32(info, 0x41befc, 0x00000000);
+ gf100_grctx_patch_wr32(chan, 0x418eec, 0x00000000);
+ gf100_grctx_patch_wr32(chan, 0x41befc, 0x00000000);
+}
+
+void
+gp100_grctx_generate_attrib_cb(struct gf100_gr_chan *chan, u64 addr, u32 size)
+{
+ gm107_grctx_generate_attrib_cb(chan, addr, size);
+
+ gf100_grctx_patch_wr32(chan, 0x419b00, 0x00000000 | addr >> 12);
+ gf100_grctx_patch_wr32(chan, 0x419b04, 0x80000000 | size >> 7);
+}
+
+static u32
+gp100_grctx_generate_attrib_cb_size(struct gf100_gr *gr)
+{
+ const struct gf100_grctx_func *grctx = gr->func->grctx;
+ u32 size = grctx->alpha_nr_max * gr->tpc_total;
+ int gpc;
+
+ for (gpc = 0; gpc < gr->gpc_nr; gpc++)
+ size += grctx->attrib_nr_max * gr->func->ppc_nr * gr->ppc_tpc_max;
+
+ return ((size * 0x20) + 128) & ~127;
}
void
@@ -123,6 +133,8 @@ gp100_grctx = {
.bundle_token_limit = 0x1080,
.pagepool = gp100_grctx_generate_pagepool,
.pagepool_size = 0x20000,
+ .attrib_cb_size = gp100_grctx_generate_attrib_cb_size,
+ .attrib_cb = gp100_grctx_generate_attrib_cb,
.attrib = gp100_grctx_generate_attrib,
.attrib_nr_max = 0x660,
.attrib_nr = 0x440,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgp102.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgp102.c
index daee17bf7d0d..7537979a5492 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgp102.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgp102.c
@@ -37,58 +37,62 @@ gp102_grctx_generate_r408840(struct gf100_gr *gr)
}
void
-gp102_grctx_generate_attrib(struct gf100_grctx *info)
+gp102_grctx_generate_attrib(struct gf100_gr_chan *chan)
{
- struct gf100_gr *gr = info->gr;
+ struct gf100_gr *gr = chan->gr;
const struct gf100_grctx_func *grctx = gr->func->grctx;
const u32 alpha = grctx->alpha_nr;
const u32 attrib = grctx->attrib_nr;
const u32 gfxp = grctx->gfxp_nr;
- const int s = 12;
const int max_batches = 0xffff;
u32 size = grctx->alpha_nr_max * gr->tpc_total;
u32 ao = 0;
u32 bo = ao + size;
- int gpc, ppc, b, n = 0;
+ int gpc, ppc, n = 0;
- for (gpc = 0; gpc < gr->gpc_nr; gpc++)
- size += grctx->gfxp_nr * gr->ppc_nr[gpc] * gr->ppc_tpc_max;
- size = ((size * 0x20) + 128) & ~127;
- b = mmio_vram(info, size, (1 << s), false);
-
- mmio_refn(info, 0x418810, 0x80000000, s, b);
- mmio_refn(info, 0x419848, 0x10000000, s, b);
- mmio_refn(info, 0x419c2c, 0x10000000, s, b);
- mmio_refn(info, 0x419b00, 0x00000000, s, b);
- mmio_wr32(info, 0x419b04, 0x80000000 | size >> 7);
- mmio_wr32(info, 0x405830, attrib);
- mmio_wr32(info, 0x40585c, alpha);
- mmio_wr32(info, 0x4064c4, ((alpha / 4) << 16) | max_batches);
+ gf100_grctx_patch_wr32(chan, 0x405830, attrib);
+ gf100_grctx_patch_wr32(chan, 0x40585c, alpha);
+ gf100_grctx_patch_wr32(chan, 0x4064c4, ((alpha / 4) << 16) | max_batches);
for (gpc = 0; gpc < gr->gpc_nr; gpc++) {
- for (ppc = 0; ppc < gr->ppc_nr[gpc]; ppc++, n++) {
+ for (ppc = 0; ppc < gr->func->ppc_nr; ppc++, n++) {
const u32 as = alpha * gr->ppc_tpc_nr[gpc][ppc];
const u32 bs = attrib * gr->ppc_tpc_max;
const u32 gs = gfxp * gr->ppc_tpc_max;
const u32 u = 0x418ea0 + (n * 0x04);
const u32 o = PPC_UNIT(gpc, ppc, 0);
const u32 p = GPC_UNIT(gpc, 0xc44 + (ppc * 4));
+
if (!(gr->ppc_mask[gpc] & (1 << ppc)))
continue;
- mmio_wr32(info, o + 0xc0, gs);
- mmio_wr32(info, p, bs);
- mmio_wr32(info, o + 0xf4, bo);
- mmio_wr32(info, o + 0xf0, bs);
+
+ gf100_grctx_patch_wr32(chan, o + 0xc0, gs);
+ gf100_grctx_patch_wr32(chan, p, bs);
+ gf100_grctx_patch_wr32(chan, o + 0xf4, bo);
+ gf100_grctx_patch_wr32(chan, o + 0xf0, bs);
bo += gs;
- mmio_wr32(info, o + 0xe4, as);
- mmio_wr32(info, o + 0xf8, ao);
+ gf100_grctx_patch_wr32(chan, o + 0xe4, as);
+ gf100_grctx_patch_wr32(chan, o + 0xf8, ao);
ao += grctx->alpha_nr_max * gr->ppc_tpc_nr[gpc][ppc];
- mmio_wr32(info, u, bs);
+ gf100_grctx_patch_wr32(chan, u, bs);
}
}
- mmio_wr32(info, 0x4181e4, 0x00000100);
- mmio_wr32(info, 0x41befc, 0x00000100);
+ gf100_grctx_patch_wr32(chan, 0x4181e4, 0x00000100);
+ gf100_grctx_patch_wr32(chan, 0x41befc, 0x00000100);
+}
+
+u32
+gp102_grctx_generate_attrib_cb_size(struct gf100_gr *gr)
+{
+ const struct gf100_grctx_func *grctx = gr->func->grctx;
+ u32 size = grctx->alpha_nr_max * gr->tpc_total;
+ int gpc;
+
+ for (gpc = 0; gpc < gr->gpc_nr; gpc++)
+ size += grctx->gfxp_nr * gr->func->ppc_nr * gr->ppc_tpc_max;
+
+ return ((size * 0x20) + 127) & ~127;
}
const struct gf100_grctx_func
@@ -101,6 +105,8 @@ gp102_grctx = {
.bundle_token_limit = 0x900,
.pagepool = gp100_grctx_generate_pagepool,
.pagepool_size = 0x20000,
+ .attrib_cb_size = gp102_grctx_generate_attrib_cb_size,
+ .attrib_cb = gp100_grctx_generate_attrib_cb,
.attrib = gp102_grctx_generate_attrib,
.attrib_nr_max = 0x4b0,
.attrib_nr = 0x320,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgp104.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgp104.c
index 3b85e3d326b2..90b5f793e567 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgp104.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgp104.c
@@ -31,6 +31,8 @@ gp104_grctx = {
.bundle_token_limit = 0x900,
.pagepool = gp100_grctx_generate_pagepool,
.pagepool_size = 0x20000,
+ .attrib_cb_size = gp102_grctx_generate_attrib_cb_size,
+ .attrib_cb = gp100_grctx_generate_attrib_cb,
.attrib = gp102_grctx_generate_attrib,
.attrib_nr_max = 0x4b0,
.attrib_nr = 0x320,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgp107.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgp107.c
index 5060c5ee5ce0..d191761a0471 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgp107.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgp107.c
@@ -39,6 +39,8 @@ gp107_grctx = {
.bundle_token_limit = 0x300,
.pagepool = gp100_grctx_generate_pagepool,
.pagepool_size = 0x20000,
+ .attrib_cb_size = gp102_grctx_generate_attrib_cb_size,
+ .attrib_cb = gp100_grctx_generate_attrib_cb,
.attrib = gp102_grctx_generate_attrib,
.attrib_nr_max = 0x15de,
.attrib_nr = 0x540,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgv100.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgv100.c
index 39553d55d3f3..957ea9d6bad4 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgv100.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxgv100.c
@@ -25,7 +25,7 @@
* PGRAPH context implementation
******************************************************************************/
-const struct gf100_gr_init
+static const struct gf100_gr_init
gv100_grctx_init_sw_veid_bundle_init_0[] = {
{ 0x00001000, 64, 0x00100000, 0x00000008 },
{ 0x00000941, 64, 0x00100000, 0x00000000 },
@@ -59,67 +59,70 @@ gv100_grctx_pack_sw_veid_bundle_init[] = {
};
void
-gv100_grctx_generate_attrib(struct gf100_grctx *info)
+gv100_grctx_generate_attrib(struct gf100_gr_chan *chan)
{
- struct gf100_gr *gr = info->gr;
+ struct gf100_gr *gr = chan->gr;
const struct gf100_grctx_func *grctx = gr->func->grctx;
const u32 alpha = grctx->alpha_nr;
const u32 attrib = grctx->attrib_nr;
const u32 gfxp = grctx->gfxp_nr;
- const int s = 12;
+ const int max_batches = 0xffff;
u32 size = grctx->alpha_nr_max * gr->tpc_total;
u32 ao = 0;
u32 bo = ao + size;
- int gpc, ppc, b, n = 0;
+ int gpc, ppc, n = 0;
- for (gpc = 0; gpc < gr->gpc_nr; gpc++)
- size += grctx->gfxp_nr * gr->ppc_nr[gpc] * gr->ppc_tpc_max;
- size = ((size * 0x20) + 127) & ~127;
- b = mmio_vram(info, size, (1 << s), false);
-
- mmio_refn(info, 0x418810, 0x80000000, s, b);
- mmio_refn(info, 0x419848, 0x10000000, s, b);
- mmio_refn(info, 0x419c2c, 0x10000000, s, b);
- mmio_refn(info, 0x419e00, 0x00000000, s, b);
- mmio_wr32(info, 0x419e04, 0x80000000 | size >> 7);
- mmio_wr32(info, 0x405830, attrib);
- mmio_wr32(info, 0x40585c, alpha);
+ gf100_grctx_patch_wr32(chan, 0x405830, attrib);
+ gf100_grctx_patch_wr32(chan, 0x40585c, alpha);
+ gf100_grctx_patch_wr32(chan, 0x4064c4, ((alpha / 4) << 16) | max_batches);
for (gpc = 0; gpc < gr->gpc_nr; gpc++) {
- for (ppc = 0; ppc < gr->ppc_nr[gpc]; ppc++, n++) {
+ for (ppc = 0; ppc < gr->func->ppc_nr; ppc++, n++) {
const u32 as = alpha * gr->ppc_tpc_nr[gpc][ppc];
const u32 bs = attrib * gr->ppc_tpc_max;
const u32 gs = gfxp * gr->ppc_tpc_max;
const u32 u = 0x418ea0 + (n * 0x04);
const u32 o = PPC_UNIT(gpc, ppc, 0);
+
if (!(gr->ppc_mask[gpc] & (1 << ppc)))
continue;
- mmio_wr32(info, o + 0xc0, gs);
- mmio_wr32(info, o + 0xf4, bo);
- mmio_wr32(info, o + 0xf0, bs);
+
+ gf100_grctx_patch_wr32(chan, o + 0xc0, gs);
+ gf100_grctx_patch_wr32(chan, o + 0xf4, bo);
+ gf100_grctx_patch_wr32(chan, o + 0xf0, bs);
bo += gs;
- mmio_wr32(info, o + 0xe4, as);
- mmio_wr32(info, o + 0xf8, ao);
+ gf100_grctx_patch_wr32(chan, o + 0xe4, as);
+ gf100_grctx_patch_wr32(chan, o + 0xf8, ao);
ao += grctx->alpha_nr_max * gr->ppc_tpc_nr[gpc][ppc];
- mmio_wr32(info, u, bs);
+ gf100_grctx_patch_wr32(chan, u, bs);
}
}
- mmio_wr32(info, 0x4181e4, 0x00000100);
- mmio_wr32(info, 0x41befc, 0x00000100);
+ gf100_grctx_patch_wr32(chan, 0x4181e4, 0x00000100);
+ gf100_grctx_patch_wr32(chan, 0x41befc, 0x00000100);
+}
+
+void
+gv100_grctx_generate_attrib_cb(struct gf100_gr_chan *chan, u64 addr, u32 size)
+{
+ gm107_grctx_generate_attrib_cb(chan, addr, size);
+
+ gf100_grctx_patch_wr32(chan, 0x419e00, 0x00000000 | addr >> 12);
+ gf100_grctx_patch_wr32(chan, 0x419e04, 0x80000000 | size >> 7);
}
void
gv100_grctx_generate_rop_mapping(struct gf100_gr *gr)
{
struct nvkm_device *device = gr->base.engine.subdev.device;
+ const u32 mapregs = DIV_ROUND_UP(gr->func->gpc_nr * gr->func->tpc_nr, 6);
u32 data;
int i, j;
/* Pack tile map into register format. */
nvkm_wr32(device, 0x418bb8, (gr->tpc_total << 8) |
gr->screen_tile_row_offset);
- for (i = 0; i < 11; i++) {
+ for (i = 0; i < mapregs; i++) {
for (data = 0, j = 0; j < 6; j++)
data |= (gr->tile[i * 6 + j] & 0x1f) << (j * 5);
nvkm_wr32(device, 0x418b08 + (i * 4), data);
@@ -157,6 +160,9 @@ static void
gv100_grctx_generate_sm_id(struct gf100_gr *gr, int gpc, int tpc, int sm)
{
struct nvkm_device *device = gr->base.engine.subdev.device;
+
+ tpc = gv100_gr_nonpes_aware_tpc(gr, gpc, tpc);
+
nvkm_wr32(device, TPC_UNIT(gpc, tpc, 0x608), sm);
nvkm_wr32(device, GPC_UNIT(gpc, 0x0c10 + tpc * 4), sm);
nvkm_wr32(device, TPC_UNIT(gpc, tpc, 0x088), sm);
@@ -198,6 +204,8 @@ gv100_grctx = {
.bundle_token_limit = 0x1680,
.pagepool = gp100_grctx_generate_pagepool,
.pagepool_size = 0x20000,
+ .attrib_cb_size = gp102_grctx_generate_attrib_cb_size,
+ .attrib_cb = gv100_grctx_generate_attrib_cb,
.attrib = gv100_grctx_generate_attrib,
.attrib_nr_max = 0x6c0,
.attrib_nr = 0x480,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxtu102.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxtu102.c
index 2299ca07d04a..542ab0c78be6 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxtu102.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/ctxtu102.c
@@ -34,6 +34,9 @@ static void
tu102_grctx_generate_sm_id(struct gf100_gr *gr, int gpc, int tpc, int sm)
{
struct nvkm_device *device = gr->base.engine.subdev.device;
+
+ tpc = gv100_gr_nonpes_aware_tpc(gr, gpc, tpc);
+
nvkm_wr32(device, TPC_UNIT(gpc, tpc, 0x608), sm);
nvkm_wr32(device, TPC_UNIT(gpc, tpc, 0x088), sm);
}
@@ -47,42 +50,38 @@ tu102_grctx_init_unknown_bundle_init_0[] = {
};
static const struct gf100_gr_pack
-tu102_grctx_pack_sw_veid_bundle_init[] = {
- { gv100_grctx_init_sw_veid_bundle_init_0 },
- { tu102_grctx_init_unknown_bundle_init_0 },
+tu102_grctx_pack_sw_bundle64_init[] = {
+ { tu102_grctx_init_unknown_bundle_init_0, .type = 64 },
{}
};
-static void
-tu102_grctx_generate_attrib(struct gf100_grctx *info)
+void
+tu102_grctx_generate_unknown(struct gf100_gr_chan *chan, u64 addr, u32 size)
{
- const u64 size = 0x80000; /*XXX: educated guess */
- const int s = 8;
- const int b = mmio_vram(info, size, (1 << s), true);
-
- gv100_grctx_generate_attrib(info);
-
- mmio_refn(info, 0x408070, 0x00000000, s, b);
- mmio_wr32(info, 0x408074, size >> s); /*XXX: guess */
- mmio_refn(info, 0x419034, 0x00000000, s, b);
- mmio_wr32(info, 0x408078, 0x00000000);
+ gf100_grctx_patch_wr32(chan, 0x408070, addr >> 8);
+ gf100_grctx_patch_wr32(chan, 0x408074, size >> 8); /*XXX: guess */
+ gf100_grctx_patch_wr32(chan, 0x419034, addr >> 8);
+ gf100_grctx_patch_wr32(chan, 0x408078, 0x00000000);
}
const struct gf100_grctx_func
tu102_grctx = {
- .unkn88c = gv100_grctx_unkn88c,
.main = gf100_grctx_generate_main,
.unkn = gv100_grctx_generate_unkn,
- .sw_veid_bundle_init = tu102_grctx_pack_sw_veid_bundle_init,
+ .sw_bundle64_init = tu102_grctx_pack_sw_bundle64_init,
.bundle = gm107_grctx_generate_bundle,
.bundle_size = 0x3000,
.bundle_min_gpm_fifo_depth = 0x180,
.bundle_token_limit = 0xa80,
.pagepool = gp100_grctx_generate_pagepool,
.pagepool_size = 0x20000,
- .attrib = tu102_grctx_generate_attrib,
+ .attrib_cb_size = gp102_grctx_generate_attrib_cb_size,
+ .attrib_cb = gv100_grctx_generate_attrib_cb,
+ .attrib = gv100_grctx_generate_attrib,
.attrib_nr_max = 0x800,
.attrib_nr = 0x700,
+ .unknown_size = 0x80000,
+ .unknown = tu102_grctx_generate_unknown,
.alpha_nr_max = 0xc00,
.alpha_nr = 0x800,
.gfxp_nr = 0xfa8,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/ga102.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/ga102.c
new file mode 100644
index 000000000000..a5b5ac2755a2
--- /dev/null
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/ga102.c
@@ -0,0 +1,347 @@
+/*
+ * Copyright 2019 Red Hat Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ */
+#include "gf100.h"
+#include "ctxgf100.h"
+
+#include <core/firmware.h>
+#include <subdev/acr.h>
+#include <subdev/timer.h>
+#include <subdev/vfn.h>
+
+#include <nvfw/flcn.h>
+
+#include <nvif/class.h>
+
+static void
+ga102_gr_zbc_clear_color(struct gf100_gr *gr, int zbc)
+{
+ struct nvkm_device *device = gr->base.engine.subdev.device;
+ u32 invalid[] = { 0, 0, 0, 0 }, *color;
+
+ if (gr->zbc_color[zbc].format)
+ color = gr->zbc_color[zbc].l2;
+ else
+ color = invalid;
+
+ nvkm_mask(device, 0x41bcb4, 0x0000001f, zbc);
+ nvkm_wr32(device, 0x41bcec, color[0]);
+ nvkm_wr32(device, 0x41bcf0, color[1]);
+ nvkm_wr32(device, 0x41bcf4, color[2]);
+ nvkm_wr32(device, 0x41bcf8, color[3]);
+}
+
+static const struct gf100_gr_func_zbc
+ga102_gr_zbc = {
+ .clear_color = ga102_gr_zbc_clear_color,
+ .clear_depth = gp100_gr_zbc_clear_depth,
+ .stencil_get = gp102_gr_zbc_stencil_get,
+ .clear_stencil = gp102_gr_zbc_clear_stencil,
+};
+
+static void
+ga102_gr_gpccs_reset(struct gf100_gr *gr)
+{
+ struct nvkm_device *device = gr->base.engine.subdev.device;
+
+ nvkm_wr32(device, 0x41a610, 0x00000000);
+ nvkm_msec(device, 1, NVKM_DELAY);
+ nvkm_wr32(device, 0x41a610, 0x00000001);
+}
+
+static const struct nvkm_acr_lsf_func
+ga102_gr_gpccs_acr = {
+ .flags = NVKM_ACR_LSF_FORCE_PRIV_LOAD,
+ .bl_entry = 0x3400,
+ .bld_size = sizeof(struct flcn_bl_dmem_desc_v2),
+ .bld_write = gp108_gr_acr_bld_write,
+ .bld_patch = gp108_gr_acr_bld_patch,
+};
+
+static void
+ga102_gr_fecs_reset(struct gf100_gr *gr)
+{
+ struct nvkm_device *device = gr->base.engine.subdev.device;
+
+ nvkm_wr32(device, 0x409614, 0x00000010);
+ nvkm_wr32(device, 0x41a614, 0x00000020);
+ nvkm_usec(device, 10, NVKM_DELAY);
+ nvkm_wr32(device, 0x409614, 0x00000110);
+ nvkm_wr32(device, 0x41a614, 0x00000a20);
+ nvkm_usec(device, 10, NVKM_DELAY);
+ nvkm_rd32(device, 0x409614);
+ nvkm_rd32(device, 0x41a614);
+}
+
+static const struct nvkm_acr_lsf_func
+ga102_gr_fecs_acr = {
+ .bl_entry = 0x7e00,
+ .bld_size = sizeof(struct flcn_bl_dmem_desc_v2),
+ .bld_write = gp108_gr_acr_bld_write,
+ .bld_patch = gp108_gr_acr_bld_patch,
+};
+
+static void
+ga102_gr_init_rop_exceptions(struct gf100_gr *gr)
+{
+ struct nvkm_device *device = gr->base.engine.subdev.device;
+
+ nvkm_wr32(device, 0x41bcbc, 0x40000000);
+ nvkm_wr32(device, 0x41bc38, 0x40000000);
+ nvkm_wr32(device, 0x41ac94, nvkm_rd32(device, 0x502c94));
+}
+
+static void
+ga102_gr_init_40a790(struct gf100_gr *gr)
+{
+ nvkm_wr32(gr->base.engine.subdev.device, 0x40a790, 0xc0000000);
+}
+
+static void
+ga102_gr_init_gpc_mmu(struct gf100_gr *gr)
+{
+ struct nvkm_device *device = gr->base.engine.subdev.device;
+
+ nvkm_wr32(device, 0x418880, nvkm_rd32(device, 0x100c80) & 0xf8001fff);
+ nvkm_wr32(device, 0x418894, 0x00000000);
+
+ nvkm_wr32(device, 0x4188b4, nvkm_rd32(device, 0x100cc8));
+ nvkm_wr32(device, 0x4188b8, nvkm_rd32(device, 0x100ccc));
+ nvkm_wr32(device, 0x4188b0, nvkm_rd32(device, 0x100cc4));
+}
+
+static struct nvkm_intr *
+ga102_gr_oneinit_intr(struct gf100_gr *gr, enum nvkm_intr_type *pvector)
+{
+ struct nvkm_device *device = gr->base.engine.subdev.device;
+
+ *pvector = nvkm_rd32(device, 0x400154) & 0x00000fff;
+ return &device->vfn->intr;
+}
+
+static const struct gf100_gr_func
+ga102_gr = {
+ .oneinit_intr = ga102_gr_oneinit_intr,
+ .oneinit_tiles = gm200_gr_oneinit_tiles,
+ .oneinit_sm_id = gv100_gr_oneinit_sm_id,
+ .init = gf100_gr_init,
+ .init_419bd8 = gv100_gr_init_419bd8,
+ .init_gpc_mmu = ga102_gr_init_gpc_mmu,
+ .init_vsc_stream_master = gk104_gr_init_vsc_stream_master,
+ .init_zcull = tu102_gr_init_zcull,
+ .init_num_active_ltcs = gf100_gr_init_num_active_ltcs,
+ .init_swdx_pes_mask = gp102_gr_init_swdx_pes_mask,
+ .init_fs = tu102_gr_init_fs,
+ .init_fecs_exceptions = tu102_gr_init_fecs_exceptions,
+ .init_40a790 = ga102_gr_init_40a790,
+ .init_ds_hww_esr_2 = gm200_gr_init_ds_hww_esr_2,
+ .init_sked_hww_esr = gk104_gr_init_sked_hww_esr,
+ .init_ppc_exceptions = gk104_gr_init_ppc_exceptions,
+ .init_504430 = gv100_gr_init_504430,
+ .init_shader_exceptions = gv100_gr_init_shader_exceptions,
+ .init_rop_exceptions = ga102_gr_init_rop_exceptions,
+ .init_4188a4 = gv100_gr_init_4188a4,
+ .trap_mp = gv100_gr_trap_mp,
+ .fecs.reset = ga102_gr_fecs_reset,
+ .gpccs.reset = ga102_gr_gpccs_reset,
+ .rops = gm200_gr_rops,
+ .gpc_nr = 7,
+ .tpc_nr = 6,
+ .ppc_nr = 3,
+ .grctx = &ga102_grctx,
+ .zbc = &ga102_gr_zbc,
+ .sclass = {
+ { -1, -1, FERMI_TWOD_A },
+ { -1, -1, KEPLER_INLINE_TO_MEMORY_B },
+ { -1, -1, AMPERE_B, &gf100_fermi },
+ { -1, -1, AMPERE_COMPUTE_B },
+ {}
+ }
+};
+
+MODULE_FIRMWARE("nvidia/ga102/gr/fecs_bl.bin");
+MODULE_FIRMWARE("nvidia/ga102/gr/fecs_sig.bin");
+MODULE_FIRMWARE("nvidia/ga102/gr/gpccs_bl.bin");
+MODULE_FIRMWARE("nvidia/ga102/gr/gpccs_sig.bin");
+MODULE_FIRMWARE("nvidia/ga102/gr/NET_img.bin");
+
+MODULE_FIRMWARE("nvidia/ga103/gr/fecs_bl.bin");
+MODULE_FIRMWARE("nvidia/ga103/gr/fecs_sig.bin");
+MODULE_FIRMWARE("nvidia/ga103/gr/gpccs_bl.bin");
+MODULE_FIRMWARE("nvidia/ga103/gr/gpccs_sig.bin");
+MODULE_FIRMWARE("nvidia/ga103/gr/NET_img.bin");
+
+MODULE_FIRMWARE("nvidia/ga104/gr/fecs_bl.bin");
+MODULE_FIRMWARE("nvidia/ga104/gr/fecs_sig.bin");
+MODULE_FIRMWARE("nvidia/ga104/gr/gpccs_bl.bin");
+MODULE_FIRMWARE("nvidia/ga104/gr/gpccs_sig.bin");
+MODULE_FIRMWARE("nvidia/ga104/gr/NET_img.bin");
+
+MODULE_FIRMWARE("nvidia/ga106/gr/fecs_bl.bin");
+MODULE_FIRMWARE("nvidia/ga106/gr/fecs_sig.bin");
+MODULE_FIRMWARE("nvidia/ga106/gr/gpccs_bl.bin");
+MODULE_FIRMWARE("nvidia/ga106/gr/gpccs_sig.bin");
+MODULE_FIRMWARE("nvidia/ga106/gr/NET_img.bin");
+
+MODULE_FIRMWARE("nvidia/ga107/gr/fecs_bl.bin");
+MODULE_FIRMWARE("nvidia/ga107/gr/fecs_sig.bin");
+MODULE_FIRMWARE("nvidia/ga107/gr/gpccs_bl.bin");
+MODULE_FIRMWARE("nvidia/ga107/gr/gpccs_sig.bin");
+MODULE_FIRMWARE("nvidia/ga107/gr/NET_img.bin");
+
+struct netlist_region {
+ u32 region_id;
+ u32 data_size;
+ u32 data_offset;
+};
+
+struct netlist_image_header {
+ u32 version;
+ u32 regions;
+};
+
+struct netlist_image {
+ struct netlist_image_header header;
+ struct netlist_region regions[];
+};
+
+struct netlist_av64 {
+ u32 addr;
+ u32 data_hi;
+ u32 data_lo;
+};
+
+static int
+ga102_gr_av64_to_init(struct nvkm_blob *blob, struct gf100_gr_pack **ppack)
+{
+ struct gf100_gr_init *init;
+ struct gf100_gr_pack *pack;
+ int nent;
+ int i;
+
+ nent = (blob->size / sizeof(struct netlist_av64));
+ pack = vzalloc((sizeof(*pack) * 2) + (sizeof(*init) * (nent + 1)));
+ if (!pack)
+ return -ENOMEM;
+
+ init = (void *)(pack + 2);
+ pack[0].init = init;
+ pack[0].type = 64;
+
+ for (i = 0; i < nent; i++) {
+ struct gf100_gr_init *ent = &init[i];
+ struct netlist_av64 *av = &((struct netlist_av64 *)blob->data)[i];
+
+ ent->addr = av->addr;
+ ent->data = ((u64)av->data_hi << 32) | av->data_lo;
+ ent->count = 1;
+ ent->pitch = 1;
+ }
+
+ *ppack = pack;
+ return 0;
+}
+
+static int
+ga102_gr_load(struct gf100_gr *gr, int ver, const struct gf100_gr_fwif *fwif)
+{
+ struct nvkm_subdev *subdev = &gr->base.engine.subdev;
+ const struct firmware *fw;
+ const struct netlist_image *net;
+ const struct netlist_region *fecs_inst = NULL;
+ const struct netlist_region *fecs_data = NULL;
+ const struct netlist_region *gpccs_inst = NULL;
+ const struct netlist_region *gpccs_data = NULL;
+ int ret, i;
+
+ ret = nvkm_firmware_get(subdev, "gr/NET_img", 0, &fw);
+ if (ret)
+ return ret;
+
+ net = (const void *)fw->data;
+ nvkm_debug(subdev, "netlist version %d, %d regions\n",
+ net->header.version, net->header.regions);
+
+ for (i = 0; i < net->header.regions; i++) {
+ const struct netlist_region *reg = &net->regions[i];
+ struct nvkm_blob blob = {
+ .data = (void *)fw->data + reg->data_offset,
+ .size = reg->data_size,
+ };
+
+ nvkm_debug(subdev, "\t%2d: %08x %08x\n",
+ reg->region_id, reg->data_offset, reg->data_size);
+
+ switch (reg->region_id) {
+ case 0: fecs_data = reg; break;
+ case 1: fecs_inst = reg; break;
+ case 2: gpccs_data = reg; break;
+ case 3: gpccs_inst = reg; break;
+ case 4: gk20a_gr_av_to_init(&blob, &gr->bundle); break;
+ case 5: gk20a_gr_aiv_to_init(&blob, &gr->sw_ctx); break;
+ case 7: gk20a_gr_av_to_method(&blob, &gr->method); break;
+ case 28: tu102_gr_av_to_init_veid(&blob, &gr->bundle_veid); break;
+ case 34: ga102_gr_av64_to_init(&blob, &gr->bundle64); break;
+ case 48: gk20a_gr_av_to_init(&blob, &gr->sw_nonctx1); break;
+ case 49: gk20a_gr_av_to_init(&blob, &gr->sw_nonctx2); break;
+ case 50: gk20a_gr_av_to_init(&blob, &gr->sw_nonctx3); break;
+ case 51: gk20a_gr_av_to_init(&blob, &gr->sw_nonctx4); break;
+ default:
+ break;
+ }
+ }
+
+ ret = nvkm_acr_lsfw_load_bl_sig_net(subdev, &gr->fecs.falcon, NVKM_ACR_LSF_FECS,
+ "gr/fecs_", ver, fwif->fecs,
+ fw->data + fecs_inst->data_offset,
+ fecs_inst->data_size,
+ fw->data + fecs_data->data_offset,
+ fecs_data->data_size);
+ if (ret)
+ return ret;
+
+ ret = nvkm_acr_lsfw_load_bl_sig_net(subdev, &gr->gpccs.falcon, NVKM_ACR_LSF_GPCCS,
+ "gr/gpccs_", ver, fwif->gpccs,
+ fw->data + gpccs_inst->data_offset,
+ gpccs_inst->data_size,
+ fw->data + gpccs_data->data_offset,
+ gpccs_data->data_size);
+ if (ret)
+ return ret;
+
+ gr->firmware = true;
+
+ nvkm_firmware_put(fw);
+ return 0;
+}
+
+static const struct gf100_gr_fwif
+ga102_gr_fwif[] = {
+ { 0, ga102_gr_load, &ga102_gr, &ga102_gr_fecs_acr, &ga102_gr_gpccs_acr },
+ { -1, gm200_gr_nofw },
+ {}
+};
+
+int
+ga102_gr_new(struct nvkm_device *device, enum nvkm_subdev_type type, int inst, struct nvkm_gr **pgr)
+{
+ return gf100_gr_new_(ga102_gr_fwif, device, type, inst, pgr);
+}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/gf100.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/gf100.c
index f16eabf4f642..5f20079c3660 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/gf100.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/gf100.c
@@ -67,7 +67,7 @@ gf100_gr_zbc_color_get(struct gf100_gr *gr, int format,
struct nvkm_ltc *ltc = gr->base.engine.subdev.device->ltc;
int zbc = -ENOSPC, i;
- for (i = ltc->zbc_min; i <= ltc->zbc_max; i++) {
+ for (i = ltc->zbc_color_min; i <= ltc->zbc_color_max; i++) {
if (gr->zbc_color[i].format) {
if (gr->zbc_color[i].format != format)
continue;
@@ -114,7 +114,7 @@ gf100_gr_zbc_depth_get(struct gf100_gr *gr, int format,
struct nvkm_ltc *ltc = gr->base.engine.subdev.device->ltc;
int zbc = -ENOSPC, i;
- for (i = ltc->zbc_min; i <= ltc->zbc_max; i++) {
+ for (i = ltc->zbc_depth_min; i <= ltc->zbc_depth_max; i++) {
if (gr->zbc_depth[i].format) {
if (gr->zbc_depth[i].format != format)
continue;
@@ -355,15 +355,14 @@ static void *
gf100_gr_chan_dtor(struct nvkm_object *object)
{
struct gf100_gr_chan *chan = gf100_gr_chan(object);
- int i;
-
- for (i = 0; i < ARRAY_SIZE(chan->data); i++) {
- nvkm_vmm_put(chan->vmm, &chan->data[i].vma);
- nvkm_memory_unref(&chan->data[i].mem);
- }
nvkm_vmm_put(chan->vmm, &chan->mmio_vma);
nvkm_memory_unref(&chan->mmio);
+
+ nvkm_vmm_put(chan->vmm, &chan->attrib_cb);
+ nvkm_vmm_put(chan->vmm, &chan->unknown);
+ nvkm_vmm_put(chan->vmm, &chan->bundle_cb);
+ nvkm_vmm_put(chan->vmm, &chan->pagepool);
nvkm_vmm_unref(&chan->vmm);
return chan;
}
@@ -380,12 +379,10 @@ gf100_gr_chan_new(struct nvkm_gr *base, struct nvkm_fifo_chan *fifoch,
struct nvkm_object **pobject)
{
struct gf100_gr *gr = gf100_gr(base);
- struct gf100_gr_data *data = gr->mmio_data;
- struct gf100_gr_mmio *mmio = gr->mmio_list;
struct gf100_gr_chan *chan;
struct gf100_vmm_map_v0 args = { .priv = 1 };
struct nvkm_device *device = gr->base.engine.subdev.device;
- int ret, i;
+ int ret;
if (!(chan = kzalloc(sizeof(*chan), GFP_KERNEL)))
return -ENOMEM;
@@ -394,63 +391,91 @@ gf100_gr_chan_new(struct nvkm_gr *base, struct nvkm_fifo_chan *fifoch,
chan->vmm = nvkm_vmm_ref(fifoch->vmm);
*pobject = &chan->object;
- /* allocate memory for a "mmio list" buffer that's used by the HUB
- * fuc to modify some per-context register settings on first load
- * of the context.
- */
- ret = nvkm_memory_new(device, NVKM_MEM_TARGET_INST, 0x1000, 0x100,
- false, &chan->mmio);
+ /* Map pagepool. */
+ ret = nvkm_vmm_get(chan->vmm, 12, nvkm_memory_size(gr->pagepool), &chan->pagepool);
if (ret)
return ret;
- ret = nvkm_vmm_get(fifoch->vmm, 12, 0x1000, &chan->mmio_vma);
+ ret = nvkm_memory_map(gr->pagepool, 0, chan->vmm, chan->pagepool, &args, sizeof(args));
if (ret)
return ret;
- ret = nvkm_memory_map(chan->mmio, 0, fifoch->vmm,
- chan->mmio_vma, &args, sizeof(args));
+ /* Map bundle circular buffer. */
+ ret = nvkm_vmm_get(chan->vmm, 12, nvkm_memory_size(gr->bundle_cb), &chan->bundle_cb);
+ if (ret)
+ return ret;
+
+ ret = nvkm_memory_map(gr->bundle_cb, 0, chan->vmm, chan->bundle_cb, &args, sizeof(args));
+ if (ret)
+ return ret;
+
+ /* Map attribute circular buffer. */
+ ret = nvkm_vmm_get(chan->vmm, 12, nvkm_memory_size(gr->attrib_cb), &chan->attrib_cb);
if (ret)
return ret;
- /* allocate buffers referenced by mmio list */
- for (i = 0; data->size && i < ARRAY_SIZE(gr->mmio_data); i++) {
- ret = nvkm_memory_new(device, NVKM_MEM_TARGET_INST,
- data->size, data->align, false,
- &chan->data[i].mem);
+ if (device->card_type < GP100) {
+ ret = nvkm_memory_map(gr->attrib_cb, 0, chan->vmm, chan->attrib_cb, NULL, 0);
if (ret)
return ret;
-
- ret = nvkm_vmm_get(fifoch->vmm, 12,
- nvkm_memory_size(chan->data[i].mem),
- &chan->data[i].vma);
+ } else {
+ ret = nvkm_memory_map(gr->attrib_cb, 0, chan->vmm, chan->attrib_cb,
+ &args, sizeof(args));;
if (ret)
return ret;
+ }
- args.priv = data->priv;
+ /* Map some context buffer of unknown purpose. */
+ if (gr->func->grctx->unknown_size) {
+ ret = nvkm_vmm_get(chan->vmm, 12, nvkm_memory_size(gr->unknown), &chan->unknown);
+ if (ret)
+ return ret;
- ret = nvkm_memory_map(chan->data[i].mem, 0, chan->vmm,
- chan->data[i].vma, &args, sizeof(args));
+ ret = nvkm_memory_map(gr->unknown, 0, chan->vmm, chan->unknown,
+ &args, sizeof(args));
if (ret)
return ret;
+ }
- data++;
+ /* Generate golden context image. */
+ mutex_lock(&gr->fecs.mutex);
+ if (gr->data == NULL) {
+ ret = gf100_grctx_generate(gr, chan, fifoch->inst);
+ if (ret) {
+ nvkm_error(&base->engine.subdev, "failed to construct context\n");
+ return ret;
+ }
}
+ mutex_unlock(&gr->fecs.mutex);
- /* finally, fill in the mmio list and point the context at it */
- nvkm_kmap(chan->mmio);
- for (i = 0; mmio->addr && i < ARRAY_SIZE(gr->mmio_list); i++) {
- u32 addr = mmio->addr;
- u32 data = mmio->data;
+ /* allocate memory for a "mmio list" buffer that's used by the HUB
+ * fuc to modify some per-context register settings on first load
+ * of the context.
+ */
+ ret = nvkm_memory_new(device, NVKM_MEM_TARGET_INST, 0x1000, 0x100,
+ false, &chan->mmio);
+ if (ret)
+ return ret;
- if (mmio->buffer >= 0) {
- u64 info = chan->data[mmio->buffer].vma->addr;
- data |= info >> mmio->shift;
- }
+ ret = nvkm_vmm_get(fifoch->vmm, 12, 0x1000, &chan->mmio_vma);
+ if (ret)
+ return ret;
- nvkm_wo32(chan->mmio, chan->mmio_nr++ * 4, addr);
- nvkm_wo32(chan->mmio, chan->mmio_nr++ * 4, data);
- mmio++;
- }
+ ret = nvkm_memory_map(chan->mmio, 0, fifoch->vmm,
+ chan->mmio_vma, &args, sizeof(args));
+ if (ret)
+ return ret;
+
+ /* finally, fill in the mmio list and point the context at it */
+ nvkm_kmap(chan->mmio);
+ gr->func->grctx->pagepool(chan, chan->pagepool->addr);
+ gr->func->grctx->bundle(chan, chan->bundle_cb->addr, gr->func->grctx->bundle_size);
+ gr->func->grctx->attrib_cb(chan, chan->attrib_cb->addr, gr->func->grctx->attrib_cb_size(gr));
+ gr->func->grctx->attrib(chan);
+ if (gr->func->grctx->patch_ltc)
+ gr->func->grctx->patch_ltc(chan);
+ if (gr->func->grctx->unknown_size)
+ gr->func->grctx->unknown(chan, chan->unknown->addr, gr->func->grctx->unknown_size);
nvkm_done(chan->mmio);
return 0;
}
@@ -727,7 +752,7 @@ gf100_gr_fecs_ctrl_ctxsw(struct gf100_gr *gr, u32 mthd)
struct nvkm_device *device = gr->base.engine.subdev.device;
nvkm_wr32(device, 0x409804, 0xffffffff);
- nvkm_wr32(device, 0x409840, 0xffffffff);
+ nvkm_wr32(device, 0x409800, 0x00000000);
nvkm_wr32(device, 0x409500, 0xffffffff);
nvkm_wr32(device, 0x409504, mthd);
nvkm_msec(device, 2000,
@@ -771,12 +796,45 @@ gf100_gr_fecs_stop_ctxsw(struct nvkm_gr *base)
return ret;
}
+static int
+gf100_gr_fecs_halt_pipeline(struct gf100_gr *gr)
+{
+ int ret = 0;
+
+ if (gr->firmware) {
+ mutex_lock(&gr->fecs.mutex);
+ ret = gf100_gr_fecs_ctrl_ctxsw(gr, 0x04);
+ mutex_unlock(&gr->fecs.mutex);
+ }
+
+ return ret;
+}
+
+int
+gf100_gr_fecs_wfi_golden_save(struct gf100_gr *gr, u32 inst)
+{
+ struct nvkm_device *device = gr->base.engine.subdev.device;
+
+ nvkm_mask(device, 0x409800, 0x00000003, 0x00000000);
+ nvkm_wr32(device, 0x409500, inst);
+ nvkm_wr32(device, 0x409504, 0x00000009);
+ nvkm_msec(device, 2000,
+ u32 stat = nvkm_rd32(device, 0x409800);
+ if (stat & 0x00000002)
+ return -EIO;
+ if (stat & 0x00000001)
+ return 0;
+ );
+
+ return -ETIMEDOUT;
+}
+
int
gf100_gr_fecs_bind_pointer(struct gf100_gr *gr, u32 inst)
{
struct nvkm_device *device = gr->base.engine.subdev.device;
- nvkm_wr32(device, 0x409840, 0x00000030);
+ nvkm_mask(device, 0x409800, 0x00000030, 0x00000000);
nvkm_wr32(device, 0x409500, inst);
nvkm_wr32(device, 0x409504, 0x00000003);
nvkm_msec(device, 2000,
@@ -867,7 +925,7 @@ gf100_gr_fecs_discover_pm_image_size(struct gf100_gr *gr, u32 *psize)
{
struct nvkm_device *device = gr->base.engine.subdev.device;
- nvkm_wr32(device, 0x409840, 0xffffffff);
+ nvkm_wr32(device, 0x409800, 0x00000000);
nvkm_wr32(device, 0x409500, 0x00000000);
nvkm_wr32(device, 0x409504, 0x00000025);
nvkm_msec(device, 2000,
@@ -883,7 +941,7 @@ gf100_gr_fecs_discover_zcull_image_size(struct gf100_gr *gr, u32 *psize)
{
struct nvkm_device *device = gr->base.engine.subdev.device;
- nvkm_wr32(device, 0x409840, 0xffffffff);
+ nvkm_wr32(device, 0x409800, 0x00000000);
nvkm_wr32(device, 0x409500, 0x00000000);
nvkm_wr32(device, 0x409504, 0x00000016);
nvkm_msec(device, 2000,
@@ -899,7 +957,7 @@ gf100_gr_fecs_discover_image_size(struct gf100_gr *gr, u32 *psize)
{
struct nvkm_device *device = gr->base.engine.subdev.device;
- nvkm_wr32(device, 0x409840, 0xffffffff);
+ nvkm_wr32(device, 0x409800, 0x00000000);
nvkm_wr32(device, 0x409500, 0x00000000);
nvkm_wr32(device, 0x409504, 0x00000010);
nvkm_msec(device, 2000,
@@ -915,7 +973,7 @@ gf100_gr_fecs_set_watchdog_timeout(struct gf100_gr *gr, u32 timeout)
{
struct nvkm_device *device = gr->base.engine.subdev.device;
- nvkm_wr32(device, 0x409840, 0xffffffff);
+ nvkm_wr32(device, 0x409800, 0x00000000);
nvkm_wr32(device, 0x409500, timeout);
nvkm_wr32(device, 0x409504, 0x00000021);
}
@@ -955,7 +1013,7 @@ gf100_gr_zbc_init(struct gf100_gr *gr)
const u32 f32_1[] = { 0x3f800000, 0x3f800000, 0x3f800000, 0x3f800000,
0x3f800000, 0x3f800000, 0x3f800000, 0x3f800000 };
struct nvkm_ltc *ltc = gr->base.engine.subdev.device->ltc;
- int index, c = ltc->zbc_min, d = ltc->zbc_min, s = ltc->zbc_min;
+ int index, c = ltc->zbc_color_min, d = ltc->zbc_depth_min, s = ltc->zbc_depth_min;
if (!gr->zbc_color[0].format) {
gf100_gr_zbc_color_get(gr, 1, & zero[0], &zero[4]); c++;
@@ -971,13 +1029,13 @@ gf100_gr_zbc_init(struct gf100_gr *gr)
}
}
- for (index = c; index <= ltc->zbc_max; index++)
+ for (index = c; index <= ltc->zbc_color_max; index++)
gr->func->zbc->clear_color(gr, index);
- for (index = d; index <= ltc->zbc_max; index++)
+ for (index = d; index <= ltc->zbc_depth_max; index++)
gr->func->zbc->clear_depth(gr, index);
if (gr->func->zbc->clear_stencil) {
- for (index = s; index <= ltc->zbc_max; index++)
+ for (index = s; index <= ltc->zbc_depth_max; index++)
gr->func->zbc->clear_stencil(gr, index);
}
}
@@ -1003,7 +1061,7 @@ gf100_gr_wait_idle(struct gf100_gr *gr)
nvkm_rd32(device, 0x400700);
gr_enabled = nvkm_rd32(device, 0x200) & 0x1000;
- ctxsw_active = nvkm_rd32(device, 0x2640) & 0x8000;
+ ctxsw_active = nvkm_fifo_ctxsw_in_progress(&gr->base.engine);
gr_busy = nvkm_rd32(device, 0x40060c) & 0x1;
if (!gr_enabled || (!gr_busy && !ctxsw_active))
@@ -1039,7 +1097,7 @@ gf100_gr_icmd(struct gf100_gr *gr, const struct gf100_gr_pack *p)
struct nvkm_device *device = gr->base.engine.subdev.device;
const struct gf100_gr_pack *pack;
const struct gf100_gr_init *init;
- u32 data = 0;
+ u64 data = 0;
nvkm_wr32(device, 0x400208, 0x80000000);
@@ -1049,6 +1107,8 @@ gf100_gr_icmd(struct gf100_gr *gr, const struct gf100_gr_pack *p)
if ((pack == p && init == p->init) || data != init->data) {
nvkm_wr32(device, 0x400204, init->data);
+ if (pack->type == 64)
+ nvkm_wr32(device, 0x40020c, upper_32_bits(init->data));
data = init->data;
}
@@ -1542,13 +1602,13 @@ gf100_gr_ctxctl_isr(struct gf100_gr *gr)
}
}
-static void
-gf100_gr_intr(struct nvkm_gr *base)
+static irqreturn_t
+gf100_gr_intr(struct nvkm_inth *inth)
{
- struct gf100_gr *gr = gf100_gr(base);
+ struct gf100_gr *gr = container_of(inth, typeof(*gr), base.engine.subdev.inth);
struct nvkm_subdev *subdev = &gr->base.engine.subdev;
struct nvkm_device *device = subdev->device;
- struct nvkm_fifo_chan *chan;
+ struct nvkm_chan *chan;
unsigned long flags;
u64 inst = nvkm_rd32(device, 0x409b00) & 0x0fffffff;
u32 stat = nvkm_rd32(device, 0x400100);
@@ -1561,10 +1621,10 @@ gf100_gr_intr(struct nvkm_gr *base)
const char *name = "unknown";
int chid = -1;
- chan = nvkm_fifo_chan_inst(device->fifo, (u64)inst << 12, &flags);
+ chan = nvkm_chan_get_inst(&gr->base.engine, (u64)inst << 12, &flags);
if (chan) {
- name = chan->object.client->name;
- chid = chan->chid;
+ name = chan->name;
+ chid = chan->id;
}
if (device->card_type < NV_E0 || subc < 4)
@@ -1631,7 +1691,8 @@ gf100_gr_intr(struct nvkm_gr *base)
}
nvkm_wr32(device, 0x400500, 0x00010001);
- nvkm_fifo_chan_put(device->fifo, flags, &chan);
+ nvkm_chan_put(&chan, flags);
+ return IRQ_HANDLED;
}
static void
@@ -1721,7 +1782,7 @@ gf100_gr_init_ctxctl_ext(struct gf100_gr *gr)
nvkm_mc_unk260(device, 1);
/* start both of them running */
- nvkm_wr32(device, 0x409840, 0xffffffff);
+ nvkm_wr32(device, 0x409800, 0x00000000);
nvkm_wr32(device, 0x41a10c, 0x00000000);
nvkm_wr32(device, 0x40910c, 0x00000000);
@@ -1763,15 +1824,6 @@ gf100_gr_init_ctxctl_ext(struct gf100_gr *gr)
return ret;
}
- /* Generate golden context image. */
- if (gr->data == NULL) {
- int ret = gf100_grctx_generate(gr);
- if (ret) {
- nvkm_error(subdev, "failed to construct context\n");
- return ret;
- }
- }
-
return 0;
}
@@ -1823,14 +1875,6 @@ gf100_gr_init_ctxctl_int(struct gf100_gr *gr)
}
gr->size = nvkm_rd32(device, 0x409804);
- if (gr->data == NULL) {
- int ret = gf100_grctx_generate(gr);
- if (ret) {
- nvkm_error(subdev, "failed to construct context\n");
- return ret;
- }
- }
-
return 0;
}
@@ -1847,10 +1891,11 @@ gf100_gr_init_ctxctl(struct gf100_gr *gr)
return ret;
}
-void
+int
gf100_gr_oneinit_sm_id(struct gf100_gr *gr)
{
int tpc, gpc;
+
for (tpc = 0; tpc < gr->tpc_max; tpc++) {
for (gpc = 0; gpc < gr->gpc_nr; gpc++) {
if (tpc < gr->tpc_nr[gpc]) {
@@ -1860,6 +1905,8 @@ gf100_gr_oneinit_sm_id(struct gf100_gr *gr)
}
}
}
+
+ return 0;
}
void
@@ -1944,7 +1991,17 @@ gf100_gr_oneinit(struct nvkm_gr *base)
struct gf100_gr *gr = gf100_gr(base);
struct nvkm_subdev *subdev = &gr->base.engine.subdev;
struct nvkm_device *device = subdev->device;
- int i, j;
+ struct nvkm_intr *intr = &device->mc->intr;
+ enum nvkm_intr_type intr_type = NVKM_INTR_SUBDEV;
+ int ret, i, j;
+
+ if (gr->func->oneinit_intr)
+ intr = gr->func->oneinit_intr(gr, &intr_type);
+
+ ret = nvkm_inth_add(intr, intr_type, NVKM_INTR_PRIO_NORMAL, &gr->base.engine.subdev,
+ gf100_gr_intr, &gr->base.engine.subdev.inth);
+ if (ret)
+ return ret;
nvkm_pmu_pgob(device->pmu, false);
@@ -1954,12 +2011,14 @@ gf100_gr_oneinit(struct nvkm_gr *base)
gr->tpc_nr[i] = nvkm_rd32(device, GPC_UNIT(i, 0x2608));
gr->tpc_max = max(gr->tpc_max, gr->tpc_nr[i]);
gr->tpc_total += gr->tpc_nr[i];
- gr->ppc_nr[i] = gr->func->ppc_nr;
- for (j = 0; j < gr->ppc_nr[i]; j++) {
+ for (j = 0; j < gr->func->ppc_nr; j++) {
gr->ppc_tpc_mask[i][j] =
nvkm_rd32(device, GPC_UNIT(i, 0x0c30 + (j * 4)));
if (gr->ppc_tpc_mask[i][j] == 0)
continue;
+
+ gr->ppc_nr[i]++;
+
gr->ppc_mask[i] |= (1 << j);
gr->ppc_tpc_nr[i][j] = hweight8(gr->ppc_tpc_mask[i][j]);
if (gr->ppc_tpc_min == 0 ||
@@ -1968,12 +2027,37 @@ gf100_gr_oneinit(struct nvkm_gr *base)
if (gr->ppc_tpc_max < gr->ppc_tpc_nr[i][j])
gr->ppc_tpc_max = gr->ppc_tpc_nr[i][j];
}
+
+ gr->ppc_total += gr->ppc_nr[i];
+ }
+
+ /* Allocate global context buffers. */
+ ret = nvkm_memory_new(device, NVKM_MEM_TARGET_INST, gr->func->grctx->pagepool_size,
+ 0x100, false, &gr->pagepool);
+ if (ret)
+ return ret;
+
+ ret = nvkm_memory_new(device, NVKM_MEM_TARGET_INST, gr->func->grctx->bundle_size,
+ 0x100, false, &gr->bundle_cb);
+ if (ret)
+ return ret;
+
+ ret = nvkm_memory_new(device, NVKM_MEM_TARGET_INST, gr->func->grctx->attrib_cb_size(gr),
+ 0x1000, false, &gr->attrib_cb);
+ if (ret)
+ return ret;
+
+ if (gr->func->grctx->unknown_size) {
+ ret = nvkm_memory_new(device, NVKM_MEM_TARGET_INST, gr->func->grctx->unknown_size,
+ 0x100, false, &gr->unknown);
+ if (ret)
+ return ret;
}
memset(gr->tile, 0xff, sizeof(gr->tile));
gr->func->oneinit_tiles(gr);
- gr->func->oneinit_sm_id(gr);
- return 0;
+
+ return gr->func->oneinit_sm_id(gr);
}
static int
@@ -1983,7 +2067,7 @@ gf100_gr_init_(struct nvkm_gr *base)
struct nvkm_subdev *subdev = &base->engine.subdev;
struct nvkm_device *device = subdev->device;
bool reset = device->chipset == 0x137 || device->chipset == 0x138;
- u32 ret;
+ int ret;
/* On certain GP107/GP108 boards, we trigger a weird issue where
* GR will stop responding to PRI accesses after we've asked the
@@ -2019,7 +2103,12 @@ gf100_gr_init_(struct nvkm_gr *base)
if (ret)
return ret;
- return gr->func->init(gr);
+ ret = gr->func->init(gr);
+ if (ret)
+ return ret;
+
+ nvkm_inth_allow(&subdev->inth);
+ return 0;
}
static int
@@ -2027,6 +2116,9 @@ gf100_gr_fini(struct nvkm_gr *base, bool suspend)
{
struct gf100_gr *gr = gf100_gr(base);
struct nvkm_subdev *subdev = &gr->base.engine.subdev;
+
+ nvkm_inth_block(&subdev->inth);
+
nvkm_falcon_put(&gr->gpccs.falcon, subdev);
nvkm_falcon_put(&gr->fecs.falcon, subdev);
return 0;
@@ -2039,6 +2131,11 @@ gf100_gr_dtor(struct nvkm_gr *base)
kfree(gr->data);
+ nvkm_memory_unref(&gr->unknown);
+ nvkm_memory_unref(&gr->attrib_cb);
+ nvkm_memory_unref(&gr->bundle_cb);
+ nvkm_memory_unref(&gr->pagepool);
+
nvkm_falcon_dtor(&gr->gpccs.falcon);
nvkm_falcon_dtor(&gr->fecs.falcon);
@@ -2047,81 +2144,27 @@ gf100_gr_dtor(struct nvkm_gr *base)
nvkm_blob_dtor(&gr->gpccs.inst);
nvkm_blob_dtor(&gr->gpccs.data);
+ vfree(gr->bundle64);
+ vfree(gr->bundle_veid);
vfree(gr->bundle);
vfree(gr->method);
vfree(gr->sw_ctx);
vfree(gr->sw_nonctx);
+ vfree(gr->sw_nonctx1);
+ vfree(gr->sw_nonctx2);
+ vfree(gr->sw_nonctx3);
+ vfree(gr->sw_nonctx4);
return gr;
}
-static const struct nvkm_gr_func
-gf100_gr_ = {
- .dtor = gf100_gr_dtor,
- .oneinit = gf100_gr_oneinit,
- .init = gf100_gr_init_,
- .fini = gf100_gr_fini,
- .intr = gf100_gr_intr,
- .units = gf100_gr_units,
- .chan_new = gf100_gr_chan_new,
- .object_get = gf100_gr_object_get,
- .chsw_load = gf100_gr_chsw_load,
- .ctxsw.pause = gf100_gr_fecs_stop_ctxsw,
- .ctxsw.resume = gf100_gr_fecs_start_ctxsw,
- .ctxsw.inst = gf100_gr_ctxsw_inst,
-};
-
static const struct nvkm_falcon_func
gf100_gr_flcn = {
- .fbif = 0x600,
.load_imem = nvkm_falcon_v1_load_imem,
.load_dmem = nvkm_falcon_v1_load_dmem,
- .read_dmem = nvkm_falcon_v1_read_dmem,
- .bind_context = nvkm_falcon_v1_bind_context,
- .wait_for_halt = nvkm_falcon_v1_wait_for_halt,
- .clear_interrupt = nvkm_falcon_v1_clear_interrupt,
- .set_start_addr = nvkm_falcon_v1_set_start_addr,
.start = nvkm_falcon_v1_start,
- .enable = nvkm_falcon_v1_enable,
- .disable = nvkm_falcon_v1_disable,
};
-int
-gf100_gr_new_(const struct gf100_gr_fwif *fwif, struct nvkm_device *device,
- enum nvkm_subdev_type type, int inst, struct nvkm_gr **pgr)
-{
- struct gf100_gr *gr;
- int ret;
-
- if (!(gr = kzalloc(sizeof(*gr), GFP_KERNEL)))
- return -ENOMEM;
- *pgr = &gr->base;
-
- ret = nvkm_gr_ctor(&gf100_gr_, device, type, inst, true, &gr->base);
- if (ret)
- return ret;
-
- fwif = nvkm_firmware_load(&gr->base.engine.subdev, fwif, "Gr", gr);
- if (IS_ERR(fwif))
- return PTR_ERR(fwif);
-
- gr->func = fwif->func;
-
- ret = nvkm_falcon_ctor(&gf100_gr_flcn, &gr->base.engine.subdev,
- "fecs", 0x409000, &gr->fecs.falcon);
- if (ret)
- return ret;
-
- mutex_init(&gr->fecs.mutex);
-
- ret = nvkm_falcon_ctor(&gf100_gr_flcn, &gr->base.engine.subdev,
- "gpccs", 0x41a000, &gr->gpccs.falcon);
- if (ret)
- return ret;
-
- return 0;
-}
-
void
gf100_gr_init_num_tpc_per_gpc(struct gf100_gr *gr, bool pd, bool ds)
{
@@ -2146,6 +2189,29 @@ gf100_gr_init_400054(struct gf100_gr *gr)
}
void
+gf100_gr_init_exception2(struct gf100_gr *gr)
+{
+ struct nvkm_device *device = gr->base.engine.subdev.device;
+
+ nvkm_wr32(device, 0x40011c, 0xffffffff);
+ nvkm_wr32(device, 0x400134, 0xffffffff);
+}
+
+void
+gf100_gr_init_rop_exceptions(struct gf100_gr *gr)
+{
+ struct nvkm_device *device = gr->base.engine.subdev.device;
+ int rop;
+
+ for (rop = 0; rop < gr->rop_nr; rop++) {
+ nvkm_wr32(device, ROP_UNIT(rop, 0x144), 0x40000000);
+ nvkm_wr32(device, ROP_UNIT(rop, 0x070), 0x40000000);
+ nvkm_wr32(device, ROP_UNIT(rop, 0x204), 0xffffffff);
+ nvkm_wr32(device, ROP_UNIT(rop, 0x208), 0xffffffff);
+ }
+}
+
+void
gf100_gr_init_shader_exceptions(struct gf100_gr *gr, int gpc, int tpc)
{
struct nvkm_device *device = gr->base.engine.subdev.device;
@@ -2252,21 +2318,47 @@ gf100_gr_init_vsc_stream_master(struct gf100_gr *gr)
nvkm_mask(device, TPC_UNIT(0, 0, 0x05c), 0x00000001, 0x00000001);
}
+static int
+gf100_gr_reset(struct nvkm_gr *base)
+{
+ struct nvkm_subdev *subdev = &base->engine.subdev;
+ struct nvkm_device *device = subdev->device;
+ struct gf100_gr *gr = gf100_gr(base);
+
+ nvkm_mask(device, 0x400500, 0x00000001, 0x00000000);
+
+ WARN_ON(gf100_gr_fecs_halt_pipeline(gr));
+
+ subdev->func->fini(subdev, false);
+ nvkm_mc_disable(device, subdev->type, subdev->inst);
+ if (gr->func->gpccs.reset)
+ gr->func->gpccs.reset(gr);
+
+ nvkm_mc_enable(device, subdev->type, subdev->inst);
+ return subdev->func->init(subdev);
+}
+
int
gf100_gr_init(struct gf100_gr *gr)
{
struct nvkm_device *device = gr->base.engine.subdev.device;
- int gpc, tpc, rop;
+ int gpc, tpc;
- if (gr->func->init_419bd8)
- gr->func->init_419bd8(gr);
+ nvkm_mask(device, 0x400500, 0x00010001, 0x00000000);
gr->func->init_gpc_mmu(gr);
- if (gr->sw_nonctx)
+ if (gr->sw_nonctx1) {
+ gf100_gr_mmio(gr, gr->sw_nonctx1);
+ gf100_gr_mmio(gr, gr->sw_nonctx2);
+ gf100_gr_mmio(gr, gr->sw_nonctx3);
+ gf100_gr_mmio(gr, gr->sw_nonctx4);
+ } else
+ if (gr->sw_nonctx) {
gf100_gr_mmio(gr, gr->sw_nonctx);
- else
+ } else {
gf100_gr_mmio(gr, gr->func->mmio);
+ }
gf100_gr_wait_idle(gr);
@@ -2298,6 +2390,10 @@ gf100_gr_init(struct gf100_gr *gr)
nvkm_wr32(device, 0x400124, 0x00000002);
gr->func->init_fecs_exceptions(gr);
+
+ if (gr->func->init_40a790)
+ gr->func->init_40a790(gr);
+
if (gr->func->init_ds_hww_esr_2)
gr->func->init_ds_hww_esr_2(gr);
@@ -2346,19 +2442,14 @@ gf100_gr_init(struct gf100_gr *gr)
nvkm_wr32(device, GPC_UNIT(gpc, 0x2c94), 0xffffffff);
}
- for (rop = 0; rop < gr->rop_nr; rop++) {
- nvkm_wr32(device, ROP_UNIT(rop, 0x144), 0x40000000);
- nvkm_wr32(device, ROP_UNIT(rop, 0x070), 0x40000000);
- nvkm_wr32(device, ROP_UNIT(rop, 0x204), 0xffffffff);
- nvkm_wr32(device, ROP_UNIT(rop, 0x208), 0xffffffff);
- }
+ gr->func->init_rop_exceptions(gr);
nvkm_wr32(device, 0x400108, 0xffffffff);
nvkm_wr32(device, 0x400138, 0xffffffff);
nvkm_wr32(device, 0x400118, 0xffffffff);
nvkm_wr32(device, 0x400130, 0xffffffff);
- nvkm_wr32(device, 0x40011c, 0xffffffff);
- nvkm_wr32(device, 0x400134, 0xffffffff);
+ if (gr->func->init_exception2)
+ gr->func->init_exception2(gr);
if (gr->func->init_400054)
gr->func->init_400054(gr);
@@ -2371,6 +2462,18 @@ gf100_gr_init(struct gf100_gr *gr)
return gf100_gr_init_ctxctl(gr);
}
+void
+gf100_gr_fecs_reset(struct gf100_gr *gr)
+{
+ struct nvkm_device *device = gr->base.engine.subdev.device;
+
+ nvkm_wr32(device, 0x409614, 0x00000070);
+ nvkm_usec(device, 10, NVKM_DELAY);
+ nvkm_mask(device, 0x409614, 0x00000700, 0x00000700);
+ nvkm_usec(device, 10, NVKM_DELAY);
+ nvkm_rd32(device, 0x409614);
+}
+
#include "fuc/hubgf100.fuc3.h"
struct gf100_gr_ucode
@@ -2391,6 +2494,22 @@ gf100_gr_gpccs_ucode = {
.data.size = sizeof(gf100_grgpc_data),
};
+static const struct nvkm_gr_func
+gf100_gr_ = {
+ .dtor = gf100_gr_dtor,
+ .oneinit = gf100_gr_oneinit,
+ .init = gf100_gr_init_,
+ .fini = gf100_gr_fini,
+ .reset = gf100_gr_reset,
+ .units = gf100_gr_units,
+ .chan_new = gf100_gr_chan_new,
+ .object_get = gf100_gr_object_get,
+ .chsw_load = gf100_gr_chsw_load,
+ .ctxsw.pause = gf100_gr_fecs_stop_ctxsw,
+ .ctxsw.resume = gf100_gr_fecs_start_ctxsw,
+ .ctxsw.inst = gf100_gr_ctxsw_inst,
+};
+
static const struct gf100_gr_func
gf100_gr = {
.oneinit_tiles = gf100_gr_oneinit_tiles,
@@ -2406,10 +2525,13 @@ gf100_gr = {
.init_419eb4 = gf100_gr_init_419eb4,
.init_tex_hww_esr = gf100_gr_init_tex_hww_esr,
.init_shader_exceptions = gf100_gr_init_shader_exceptions,
+ .init_rop_exceptions = gf100_gr_init_rop_exceptions,
+ .init_exception2 = gf100_gr_init_exception2,
.init_400054 = gf100_gr_init_400054,
.trap_mp = gf100_gr_trap_mp,
.mmio = gf100_gr_pack_mmio,
.fecs.ucode = &gf100_gr_fecs_ucode,
+ .fecs.reset = gf100_gr_fecs_reset,
.gpccs.ucode = &gf100_gr_gpccs_ucode,
.rops = gf100_gr_rops,
.grctx = &gf100_grctx,
@@ -2483,6 +2605,42 @@ gf100_gr_fwif[] = {
};
int
+gf100_gr_new_(const struct gf100_gr_fwif *fwif, struct nvkm_device *device,
+ enum nvkm_subdev_type type, int inst, struct nvkm_gr **pgr)
+{
+ struct gf100_gr *gr;
+ int ret;
+
+ if (!(gr = kzalloc(sizeof(*gr), GFP_KERNEL)))
+ return -ENOMEM;
+ *pgr = &gr->base;
+
+ ret = nvkm_gr_ctor(&gf100_gr_, device, type, inst, true, &gr->base);
+ if (ret)
+ return ret;
+
+ fwif = nvkm_firmware_load(&gr->base.engine.subdev, fwif, "Gr", gr);
+ if (IS_ERR(fwif))
+ return PTR_ERR(fwif);
+
+ gr->func = fwif->func;
+
+ ret = nvkm_falcon_ctor(&gf100_gr_flcn, &gr->base.engine.subdev,
+ "fecs", 0x409000, &gr->fecs.falcon);
+ if (ret)
+ return ret;
+
+ mutex_init(&gr->fecs.mutex);
+
+ ret = nvkm_falcon_ctor(&gf100_gr_flcn, &gr->base.engine.subdev,
+ "gpccs", 0x41a000, &gr->gpccs.falcon);
+ if (ret)
+ return ret;
+
+ return 0;
+}
+
+int
gf100_gr_new(struct nvkm_device *device, enum nvkm_subdev_type type, int inst, struct nvkm_gr **pgr)
{
return gf100_gr_new_(gf100_gr_fwif, device, type, inst, pgr);
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/gf100.h b/drivers/gpu/drm/nouveau/nvkm/engine/gr/gf100.h
index c0038f906135..94ca7ac16acf 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/gf100.h
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/gf100.h
@@ -44,19 +44,6 @@ struct nvkm_acr_lsfw;
#define PPC_UNIT(t, m, r) (0x503000 + (t) * 0x8000 + (m) * 0x200 + (r))
#define TPC_UNIT(t, m, r) (0x504000 + (t) * 0x8000 + (m) * 0x800 + (r))
-struct gf100_gr_data {
- u32 size;
- u32 align;
- bool priv;
-};
-
-struct gf100_gr_mmio {
- u32 addr;
- u32 data;
- u32 shift;
- int buffer;
-};
-
struct gf100_gr_zbc_color {
u32 format;
u32 ds[4];
@@ -101,13 +88,19 @@ struct gf100_gr {
* using hardcoded arrays. To be allocated with vzalloc().
*/
struct gf100_gr_pack *sw_nonctx;
+ struct gf100_gr_pack *sw_nonctx1;
+ struct gf100_gr_pack *sw_nonctx2;
+ struct gf100_gr_pack *sw_nonctx3;
+ struct gf100_gr_pack *sw_nonctx4;
struct gf100_gr_pack *sw_ctx;
struct gf100_gr_pack *bundle;
+ struct gf100_gr_pack *bundle_veid;
+ struct gf100_gr_pack *bundle64;
struct gf100_gr_pack *method;
- struct gf100_gr_zbc_color zbc_color[NVKM_LTC_MAX_ZBC_CNT];
- struct gf100_gr_zbc_depth zbc_depth[NVKM_LTC_MAX_ZBC_CNT];
- struct gf100_gr_zbc_stencil zbc_stencil[NVKM_LTC_MAX_ZBC_CNT];
+ struct gf100_gr_zbc_color zbc_color[NVKM_LTC_MAX_ZBC_COLOR_CNT];
+ struct gf100_gr_zbc_depth zbc_depth[NVKM_LTC_MAX_ZBC_DEPTH_CNT];
+ struct gf100_gr_zbc_stencil zbc_stencil[NVKM_LTC_MAX_ZBC_DEPTH_CNT];
u8 rop_nr;
u8 gpc_nr;
@@ -120,6 +113,12 @@ struct gf100_gr {
u8 ppc_tpc_nr[GPC_MAX][4];
u8 ppc_tpc_min;
u8 ppc_tpc_max;
+ u8 ppc_total;
+
+ struct nvkm_memory *pagepool;
+ struct nvkm_memory *bundle_cb;
+ struct nvkm_memory *attrib_cb;
+ struct nvkm_memory *unknown;
u8 screen_tile_row_offset;
u8 tile[TPC_MAX];
@@ -130,8 +129,6 @@ struct gf100_gr {
} sm[TPC_MAX];
u8 sm_nr;
- struct gf100_gr_data mmio_data[4];
- struct gf100_gr_mmio mmio_list[4096/8];
u32 size;
u32 *data;
u32 size_zcull;
@@ -139,6 +136,7 @@ struct gf100_gr {
};
int gf100_gr_fecs_bind_pointer(struct gf100_gr *, u32 inst);
+int gf100_gr_fecs_wfi_golden_save(struct gf100_gr *, u32 inst);
struct gf100_gr_func_zbc {
void (*clear_color)(struct gf100_gr *, int zbc);
@@ -149,8 +147,9 @@ struct gf100_gr_func_zbc {
};
struct gf100_gr_func {
+ struct nvkm_intr *(*oneinit_intr)(struct gf100_gr *, enum nvkm_intr_type *);
void (*oneinit_tiles)(struct gf100_gr *);
- void (*oneinit_sm_id)(struct gf100_gr *);
+ int (*oneinit_sm_id)(struct gf100_gr *);
int (*init)(struct gf100_gr *);
void (*init_419bd8)(struct gf100_gr *);
void (*init_gpc_mmu)(struct gf100_gr *);
@@ -164,6 +163,7 @@ struct gf100_gr_func {
void (*init_swdx_pes_mask)(struct gf100_gr *);
void (*init_fs)(struct gf100_gr *);
void (*init_fecs_exceptions)(struct gf100_gr *);
+ void (*init_40a790)(struct gf100_gr *);
void (*init_ds_hww_esr_2)(struct gf100_gr *);
void (*init_40601c)(struct gf100_gr *);
void (*init_sked_hww_esr)(struct gf100_gr *);
@@ -174,6 +174,8 @@ struct gf100_gr_func {
void (*init_tex_hww_esr)(struct gf100_gr *, int gpc, int tpc);
void (*init_504430)(struct gf100_gr *, int gpc, int tpc);
void (*init_shader_exceptions)(struct gf100_gr *, int gpc, int tpc);
+ void (*init_rop_exceptions)(struct gf100_gr *);
+ void (*init_exception2)(struct gf100_gr *);
void (*init_400054)(struct gf100_gr *);
void (*init_4188a4)(struct gf100_gr *);
void (*trap_mp)(struct gf100_gr *, int gpc, int tpc);
@@ -181,9 +183,11 @@ struct gf100_gr_func {
const struct gf100_gr_pack *mmio;
struct {
struct gf100_gr_ucode *ucode;
+ void (*reset)(struct gf100_gr *);
} fecs;
struct {
struct gf100_gr_ucode *ucode;
+ void (*reset)(struct gf100_gr *);
} gpccs;
int (*rops)(struct gf100_gr *);
int gpc_nr;
@@ -197,7 +201,7 @@ struct gf100_gr_func {
int gf100_gr_rops(struct gf100_gr *);
void gf100_gr_oneinit_tiles(struct gf100_gr *);
-void gf100_gr_oneinit_sm_id(struct gf100_gr *);
+int gf100_gr_oneinit_sm_id(struct gf100_gr *);
int gf100_gr_init(struct gf100_gr *);
void gf100_gr_init_vsc_stream_master(struct gf100_gr *);
void gf100_gr_init_zcull(struct gf100_gr *);
@@ -208,9 +212,12 @@ void gf100_gr_init_419cc0(struct gf100_gr *);
void gf100_gr_init_419eb4(struct gf100_gr *);
void gf100_gr_init_tex_hww_esr(struct gf100_gr *, int, int);
void gf100_gr_init_shader_exceptions(struct gf100_gr *, int, int);
+void gf100_gr_init_rop_exceptions(struct gf100_gr *);
+void gf100_gr_init_exception2(struct gf100_gr *);
void gf100_gr_init_400054(struct gf100_gr *);
void gf100_gr_init_num_tpc_per_gpc(struct gf100_gr *, bool, bool);
extern const struct gf100_gr_func_zbc gf100_gr_zbc;
+void gf100_gr_fecs_reset(struct gf100_gr *);
void gf117_gr_init_zcull(struct gf100_gr *);
@@ -226,9 +233,13 @@ void gm107_gr_init_shader_exceptions(struct gf100_gr *, int, int);
void gm107_gr_init_400054(struct gf100_gr *);
int gk20a_gr_init(struct gf100_gr *);
+int gk20a_gr_av_to_init_(struct nvkm_blob *, u8 count, u32 pitch, struct gf100_gr_pack **);
+int gk20a_gr_av_to_init(struct nvkm_blob *, struct gf100_gr_pack **);
+int gk20a_gr_aiv_to_init(struct nvkm_blob *, struct gf100_gr_pack **);
+int gk20a_gr_av_to_method(struct nvkm_blob *, struct gf100_gr_pack **);
void gm200_gr_oneinit_tiles(struct gf100_gr *);
-void gm200_gr_oneinit_sm_id(struct gf100_gr *);
+int gm200_gr_oneinit_sm_id(struct gf100_gr *);
int gm200_gr_rops(struct gf100_gr *);
void gm200_gr_init_num_active_ltcs(struct gf100_gr *);
void gm200_gr_init_ds_hww_esr_2(struct gf100_gr *);
@@ -242,14 +253,24 @@ extern const struct gf100_gr_func_zbc gp100_gr_zbc;
void gp102_gr_init_swdx_pes_mask(struct gf100_gr *);
extern const struct gf100_gr_func_zbc gp102_gr_zbc;
+int gp102_gr_zbc_stencil_get(struct gf100_gr *, int, const u32, const u32);
+void gp102_gr_zbc_clear_stencil(struct gf100_gr *, int);
extern const struct gf100_gr_func gp107_gr;
+int gv100_gr_oneinit_sm_id(struct gf100_gr *);
+u32 gv100_gr_nonpes_aware_tpc(struct gf100_gr *gr, u32 gpc, u32 tpc);
void gv100_gr_init_419bd8(struct gf100_gr *);
void gv100_gr_init_504430(struct gf100_gr *, int, int);
void gv100_gr_init_shader_exceptions(struct gf100_gr *, int, int);
+void gv100_gr_init_4188a4(struct gf100_gr *);
void gv100_gr_trap_mp(struct gf100_gr *, int, int);
+int tu102_gr_av_to_init_veid(struct nvkm_blob *, struct gf100_gr_pack **);
+void tu102_gr_init_zcull(struct gf100_gr *);
+void tu102_gr_init_fs(struct gf100_gr *);
+void tu102_gr_init_fecs_exceptions(struct gf100_gr *);
+
#define gf100_gr_chan(p) container_of((p), struct gf100_gr_chan, object)
#include <core/object.h>
@@ -258,14 +279,14 @@ struct gf100_gr_chan {
struct gf100_gr *gr;
struct nvkm_vmm *vmm;
+ struct nvkm_vma *pagepool;
+ struct nvkm_vma *bundle_cb;
+ struct nvkm_vma *attrib_cb;
+ struct nvkm_vma *unknown;
+
struct nvkm_memory *mmio;
struct nvkm_vma *mmio_vma;
int mmio_nr;
-
- struct {
- struct nvkm_memory *mem;
- struct nvkm_vma *vma;
- } data[4];
};
void gf100_gr_ctxctl_debug(struct gf100_gr *);
@@ -279,7 +300,7 @@ struct gf100_gr_init {
u32 addr;
u8 count;
u32 pitch;
- u32 data;
+ u64 data;
};
struct gf100_gr_pack {
@@ -403,6 +424,9 @@ int gf100_gr_load(struct gf100_gr *, int, const struct gf100_gr_fwif *);
int gf100_gr_nofw(struct gf100_gr *, int, const struct gf100_gr_fwif *);
int gk20a_gr_load_sw(struct gf100_gr *, const char *path, int ver);
+int gk20a_gr_load_net(struct gf100_gr *, const char *, const char *, int,
+ int (*)(struct nvkm_blob *, struct gf100_gr_pack **),
+ struct gf100_gr_pack **);
int gm200_gr_nofw(struct gf100_gr *, int, const struct gf100_gr_fwif *);
int gm200_gr_load(struct gf100_gr *, int, const struct gf100_gr_fwif *);
@@ -415,6 +439,8 @@ void gm20b_gr_acr_bld_patch(struct nvkm_acr *, u32, s64);
extern const struct nvkm_acr_lsf_func gp108_gr_gpccs_acr;
extern const struct nvkm_acr_lsf_func gp108_gr_fecs_acr;
+void gp108_gr_acr_bld_write(struct nvkm_acr *, u32, struct nvkm_acr_lsfw *);
+void gp108_gr_acr_bld_patch(struct nvkm_acr *, u32, s64);
int gf100_gr_new_(const struct gf100_gr_fwif *, struct nvkm_device *, enum nvkm_subdev_type, int,
struct nvkm_gr **);
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/gf104.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/gf104.c
index 3acd99c306f2..63bd29c22fe1 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/gf104.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/gf104.c
@@ -127,10 +127,13 @@ gf104_gr = {
.init_419eb4 = gf100_gr_init_419eb4,
.init_tex_hww_esr = gf100_gr_init_tex_hww_esr,
.init_shader_exceptions = gf100_gr_init_shader_exceptions,
+ .init_rop_exceptions = gf100_gr_init_rop_exceptions,
+ .init_exception2 = gf100_gr_init_exception2,
.init_400054 = gf100_gr_init_400054,
.trap_mp = gf100_gr_trap_mp,
.mmio = gf104_gr_pack_mmio,
.fecs.ucode = &gf100_gr_fecs_ucode,
+ .fecs.reset = gf100_gr_fecs_reset,
.gpccs.ucode = &gf100_gr_gpccs_ucode,
.rops = gf100_gr_rops,
.grctx = &gf104_grctx,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/gf108.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/gf108.c
index ab3760e804b8..495a844f925f 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/gf108.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/gf108.c
@@ -125,10 +125,13 @@ gf108_gr = {
.init_419eb4 = gf100_gr_init_419eb4,
.init_tex_hww_esr = gf100_gr_init_tex_hww_esr,
.init_shader_exceptions = gf100_gr_init_shader_exceptions,
+ .init_rop_exceptions = gf100_gr_init_rop_exceptions,
+ .init_exception2 = gf100_gr_init_exception2,
.init_400054 = gf100_gr_init_400054,
.trap_mp = gf100_gr_trap_mp,
.mmio = gf108_gr_pack_mmio,
.fecs.ucode = &gf100_gr_fecs_ucode,
+ .fecs.reset = gf100_gr_fecs_reset,
.gpccs.ucode = &gf100_gr_gpccs_ucode,
.rops = gf100_gr_rops,
.grctx = &gf108_grctx,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/gf110.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/gf110.c
index 616e2def1865..70fad235d161 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/gf110.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/gf110.c
@@ -99,10 +99,13 @@ gf110_gr = {
.init_419eb4 = gf100_gr_init_419eb4,
.init_tex_hww_esr = gf100_gr_init_tex_hww_esr,
.init_shader_exceptions = gf100_gr_init_shader_exceptions,
+ .init_rop_exceptions = gf100_gr_init_rop_exceptions,
+ .init_exception2 = gf100_gr_init_exception2,
.init_400054 = gf100_gr_init_400054,
.trap_mp = gf100_gr_trap_mp,
.mmio = gf110_gr_pack_mmio,
.fecs.ucode = &gf100_gr_fecs_ucode,
+ .fecs.reset = gf100_gr_fecs_reset,
.gpccs.ucode = &gf100_gr_gpccs_ucode,
.rops = gf100_gr_rops,
.grctx = &gf110_grctx,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/gf117.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/gf117.c
index 669e7536970e..f12728248048 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/gf117.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/gf117.c
@@ -125,7 +125,9 @@ gf117_gr_init_zcull(struct gf100_gr *gr)
{
struct nvkm_device *device = gr->base.engine.subdev.device;
const u32 magicgpc918 = DIV_ROUND_UP(0x00800000, gr->tpc_total);
- const u8 tile_nr = ALIGN(gr->tpc_total, 32);
+ /*TODO: fill in litter vals for gf117-gm2xx */
+ const u8 tile_nr = !gr->func->gpc_nr ? ALIGN(gr->tpc_total, 32) :
+ (gr->func->gpc_nr * gr->func->tpc_nr);
u8 bank[GPC_MAX] = {}, gpc, i, j;
u32 data;
@@ -163,10 +165,13 @@ gf117_gr = {
.init_419eb4 = gf100_gr_init_419eb4,
.init_tex_hww_esr = gf100_gr_init_tex_hww_esr,
.init_shader_exceptions = gf100_gr_init_shader_exceptions,
+ .init_rop_exceptions = gf100_gr_init_rop_exceptions,
+ .init_exception2 = gf100_gr_init_exception2,
.init_400054 = gf100_gr_init_400054,
.trap_mp = gf100_gr_trap_mp,
.mmio = gf117_gr_pack_mmio,
.fecs.ucode = &gf117_gr_fecs_ucode,
+ .fecs.reset = gf100_gr_fecs_reset,
.gpccs.ucode = &gf117_gr_gpccs_ucode,
.rops = gf100_gr_rops,
.ppc_nr = 1,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/gf119.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/gf119.c
index 5b09bda8110c..75ceb514c06e 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/gf119.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/gf119.c
@@ -190,10 +190,13 @@ gf119_gr = {
.init_419eb4 = gf100_gr_init_419eb4,
.init_tex_hww_esr = gf100_gr_init_tex_hww_esr,
.init_shader_exceptions = gf100_gr_init_shader_exceptions,
+ .init_rop_exceptions = gf100_gr_init_rop_exceptions,
+ .init_exception2 = gf100_gr_init_exception2,
.init_400054 = gf100_gr_init_400054,
.trap_mp = gf100_gr_trap_mp,
.mmio = gf119_gr_pack_mmio,
.fecs.ucode = &gf100_gr_fecs_ucode,
+ .fecs.reset = gf100_gr_fecs_reset,
.gpccs.ucode = &gf100_gr_gpccs_ucode,
.rops = gf100_gr_rops,
.grctx = &gf119_grctx,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/gk104.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/gk104.c
index b680eaa0f350..e53ade24ad23 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/gk104.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/gk104.c
@@ -418,7 +418,7 @@ gk104_gr_init_ppc_exceptions(struct gf100_gr *gr)
int gpc, ppc;
for (gpc = 0; gpc < gr->gpc_nr; gpc++) {
- for (ppc = 0; ppc < gr->ppc_nr[gpc]; ppc++) {
+ for (ppc = 0; ppc < gr->func->ppc_nr; ppc++) {
if (!(gr->ppc_mask[gpc] & (1 << ppc)))
continue;
nvkm_wr32(device, PPC_UNIT(gpc, ppc, 0x038), 0xc0000000);
@@ -470,10 +470,13 @@ gk104_gr = {
.init_ppc_exceptions = gk104_gr_init_ppc_exceptions,
.init_tex_hww_esr = gf100_gr_init_tex_hww_esr,
.init_shader_exceptions = gf100_gr_init_shader_exceptions,
+ .init_rop_exceptions = gf100_gr_init_rop_exceptions,
+ .init_exception2 = gf100_gr_init_exception2,
.init_400054 = gf100_gr_init_400054,
.trap_mp = gf100_gr_trap_mp,
.mmio = gk104_gr_pack_mmio,
.fecs.ucode = &gk104_gr_fecs_ucode,
+ .fecs.reset = gf100_gr_fecs_reset,
.gpccs.ucode = &gk104_gr_gpccs_ucode,
.rops = gf100_gr_rops,
.ppc_nr = 1,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/gk110.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/gk110.c
index 103e06a77e65..c7e1c5dbc6a9 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/gk110.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/gk110.c
@@ -366,10 +366,13 @@ gk110_gr = {
.init_ppc_exceptions = gk104_gr_init_ppc_exceptions,
.init_tex_hww_esr = gf100_gr_init_tex_hww_esr,
.init_shader_exceptions = gf100_gr_init_shader_exceptions,
+ .init_rop_exceptions = gf100_gr_init_rop_exceptions,
+ .init_exception2 = gf100_gr_init_exception2,
.init_400054 = gf100_gr_init_400054,
.trap_mp = gf100_gr_trap_mp,
.mmio = gk110_gr_pack_mmio,
.fecs.ucode = &gk110_gr_fecs_ucode,
+ .fecs.reset = gf100_gr_fecs_reset,
.gpccs.ucode = &gk110_gr_gpccs_ucode,
.rops = gf100_gr_rops,
.ppc_nr = 2,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/gk110b.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/gk110b.c
index 034d0b11a17d..458abae571bf 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/gk110b.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/gk110b.c
@@ -118,10 +118,13 @@ gk110b_gr = {
.init_ppc_exceptions = gk104_gr_init_ppc_exceptions,
.init_tex_hww_esr = gf100_gr_init_tex_hww_esr,
.init_shader_exceptions = gf100_gr_init_shader_exceptions,
+ .init_rop_exceptions = gf100_gr_init_rop_exceptions,
+ .init_exception2 = gf100_gr_init_exception2,
.init_400054 = gf100_gr_init_400054,
.trap_mp = gf100_gr_trap_mp,
.mmio = gk110b_gr_pack_mmio,
.fecs.ucode = &gk110_gr_fecs_ucode,
+ .fecs.reset = gf100_gr_fecs_reset,
.gpccs.ucode = &gk110_gr_gpccs_ucode,
.rops = gf100_gr_rops,
.ppc_nr = 2,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/gk208.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/gk208.c
index 116d682f9f96..d3f6b65c21d2 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/gk208.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/gk208.c
@@ -176,10 +176,13 @@ gk208_gr = {
.init_ppc_exceptions = gk104_gr_init_ppc_exceptions,
.init_tex_hww_esr = gf100_gr_init_tex_hww_esr,
.init_shader_exceptions = gf100_gr_init_shader_exceptions,
+ .init_rop_exceptions = gf100_gr_init_rop_exceptions,
+ .init_exception2 = gf100_gr_init_exception2,
.init_400054 = gf100_gr_init_400054,
.trap_mp = gf100_gr_trap_mp,
.mmio = gk208_gr_pack_mmio,
.fecs.ucode = &gk208_gr_fecs_ucode,
+ .fecs.reset = gf100_gr_fecs_reset,
.gpccs.ucode = &gk208_gr_gpccs_ucode,
.rops = gf100_gr_rops,
.ppc_nr = 1,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/gk20a.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/gk20a.c
index be0b2cefd8e8..035ea213f543 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/gk20a.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/gk20a.c
@@ -33,47 +33,40 @@ struct gk20a_fw_av
u32 data;
};
-static int
-gk20a_gr_av_to_init(struct gf100_gr *gr, const char *path, const char *name,
- int ver, struct gf100_gr_pack **ppack)
+int
+gk20a_gr_av_to_init_(struct nvkm_blob *blob, u8 count, u32 pitch, struct gf100_gr_pack **ppack)
{
- struct nvkm_subdev *subdev = &gr->base.engine.subdev;
- struct nvkm_blob blob;
struct gf100_gr_init *init;
struct gf100_gr_pack *pack;
int nent;
- int ret;
int i;
- ret = nvkm_firmware_load_blob(subdev, path, name, ver, &blob);
- if (ret)
- return ret;
-
- nent = (blob.size / sizeof(struct gk20a_fw_av));
+ nent = (blob->size / sizeof(struct gk20a_fw_av));
pack = vzalloc((sizeof(*pack) * 2) + (sizeof(*init) * (nent + 1)));
- if (!pack) {
- ret = -ENOMEM;
- goto end;
- }
+ if (!pack)
+ return -ENOMEM;
init = (void *)(pack + 2);
pack[0].init = init;
for (i = 0; i < nent; i++) {
struct gf100_gr_init *ent = &init[i];
- struct gk20a_fw_av *av = &((struct gk20a_fw_av *)blob.data)[i];
+ struct gk20a_fw_av *av = &((struct gk20a_fw_av *)blob->data)[i];
ent->addr = av->addr;
ent->data = av->data;
- ent->count = 1;
- ent->pitch = 1;
+ ent->count = ((ent->addr & 0xffff) != 0xe100) ? count : 1;
+ ent->pitch = pitch;
}
*ppack = pack;
+ return 0;
+}
-end:
- nvkm_blob_dtor(&blob);
- return ret;
+int
+gk20a_gr_av_to_init(struct nvkm_blob *blob, struct gf100_gr_pack **ppack)
+{
+ return gk20a_gr_av_to_init_(blob, 1, 1, ppack);
}
struct gk20a_fw_aiv
@@ -83,35 +76,25 @@ struct gk20a_fw_aiv
u32 data;
};
-static int
-gk20a_gr_aiv_to_init(struct gf100_gr *gr, const char *path, const char *name,
- int ver, struct gf100_gr_pack **ppack)
+int
+gk20a_gr_aiv_to_init(struct nvkm_blob *blob, struct gf100_gr_pack **ppack)
{
- struct nvkm_subdev *subdev = &gr->base.engine.subdev;
- struct nvkm_blob blob;
struct gf100_gr_init *init;
struct gf100_gr_pack *pack;
int nent;
- int ret;
int i;
- ret = nvkm_firmware_load_blob(subdev, path, name, ver, &blob);
- if (ret)
- return ret;
-
- nent = (blob.size / sizeof(struct gk20a_fw_aiv));
+ nent = (blob->size / sizeof(struct gk20a_fw_aiv));
pack = vzalloc((sizeof(*pack) * 2) + (sizeof(*init) * (nent + 1)));
- if (!pack) {
- ret = -ENOMEM;
- goto end;
- }
+ if (!pack)
+ return -ENOMEM;
init = (void *)(pack + 2);
pack[0].init = init;
for (i = 0; i < nent; i++) {
struct gf100_gr_init *ent = &init[i];
- struct gk20a_fw_aiv *av = &((struct gk20a_fw_aiv *)blob.data)[i];
+ struct gk20a_fw_aiv *av = &((struct gk20a_fw_aiv *)blob->data)[i];
ent->addr = av->addr;
ent->data = av->data;
@@ -120,44 +103,30 @@ gk20a_gr_aiv_to_init(struct gf100_gr *gr, const char *path, const char *name,
}
*ppack = pack;
-
-end:
- nvkm_blob_dtor(&blob);
- return ret;
+ return 0;
}
-static int
-gk20a_gr_av_to_method(struct gf100_gr *gr, const char *path, const char *name,
- int ver, struct gf100_gr_pack **ppack)
+int
+gk20a_gr_av_to_method(struct nvkm_blob *blob, struct gf100_gr_pack **ppack)
{
- struct nvkm_subdev *subdev = &gr->base.engine.subdev;
- struct nvkm_blob blob;
struct gf100_gr_init *init;
struct gf100_gr_pack *pack;
/* We don't suppose we will initialize more than 16 classes here... */
static const unsigned int max_classes = 16;
u32 classidx = 0, prevclass = 0;
int nent;
- int ret;
int i;
- ret = nvkm_firmware_load_blob(subdev, path, name, ver, &blob);
- if (ret)
- return ret;
-
- nent = (blob.size / sizeof(struct gk20a_fw_av));
-
+ nent = (blob->size / sizeof(struct gk20a_fw_av));
pack = vzalloc((sizeof(*pack) * (max_classes + 1)) +
(sizeof(*init) * (nent + max_classes + 1)));
- if (!pack) {
- ret = -ENOMEM;
- goto end;
- }
+ if (!pack)
+ return -ENOMEM;
init = (void *)(pack + max_classes + 1);
for (i = 0; i < nent; i++, init++) {
- struct gk20a_fw_av *av = &((struct gk20a_fw_av *)blob.data)[i];
+ struct gk20a_fw_av *av = &((struct gk20a_fw_av *)blob->data)[i];
u32 class = av->addr & 0xffff;
u32 addr = (av->addr & 0xffff0000) >> 14;
@@ -169,8 +138,7 @@ gk20a_gr_av_to_method(struct gf100_gr *gr, const char *path, const char *name,
prevclass = class;
if (++classidx >= max_classes) {
vfree(pack);
- ret = -ENOSPC;
- goto end;
+ return -ENOSPC;
}
}
@@ -181,10 +149,7 @@ gk20a_gr_av_to_method(struct gf100_gr *gr, const char *path, const char *name,
}
*ppack = pack;
-
-end:
- nvkm_blob_dtor(&blob);
- return ret;
+ return 0;
}
static int
@@ -294,6 +259,7 @@ gk20a_gr = {
.init_rop_active_fbps = gk104_gr_init_rop_active_fbps,
.trap_mp = gf100_gr_trap_mp,
.set_hww_esr_report_mask = gk20a_gr_set_hww_esr_report_mask,
+ .fecs.reset = gf100_gr_fecs_reset,
.rops = gf100_gr_rops,
.ppc_nr = 1,
.grctx = &gk20a_grctx,
@@ -308,12 +274,29 @@ gk20a_gr = {
};
int
+gk20a_gr_load_net(struct gf100_gr *gr, const char *path, const char *name, int ver,
+ int (*load)(struct nvkm_blob *, struct gf100_gr_pack **),
+ struct gf100_gr_pack **ppack)
+{
+ struct nvkm_blob blob;
+ int ret;
+
+ ret = nvkm_firmware_load_blob(&gr->base.engine.subdev, path, name, ver, &blob);
+ if (ret)
+ return ret;
+
+ ret = load(&blob, ppack);
+ nvkm_blob_dtor(&blob);
+ return 0;
+}
+
+int
gk20a_gr_load_sw(struct gf100_gr *gr, const char *path, int ver)
{
- if (gk20a_gr_av_to_init(gr, path, "sw_nonctx", ver, &gr->sw_nonctx) ||
- gk20a_gr_aiv_to_init(gr, path, "sw_ctx", ver, &gr->sw_ctx) ||
- gk20a_gr_av_to_init(gr, path, "sw_bundle_init", ver, &gr->bundle) ||
- gk20a_gr_av_to_method(gr, path, "sw_method_init", ver, &gr->method))
+ if (gk20a_gr_load_net(gr, path, "sw_nonctx", ver, gk20a_gr_av_to_init, &gr->sw_nonctx) ||
+ gk20a_gr_load_net(gr, path, "sw_ctx", ver, gk20a_gr_aiv_to_init, &gr->sw_ctx) ||
+ gk20a_gr_load_net(gr, path, "sw_bundle_init", ver, gk20a_gr_av_to_init, &gr->bundle) ||
+ gk20a_gr_load_net(gr, path, "sw_method_init", ver, gk20a_gr_av_to_method, &gr->method))
return -ENOENT;
return 0;
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/gm107.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/gm107.c
index 310987174cb5..797b828a943b 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/gm107.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/gm107.c
@@ -411,10 +411,13 @@ gm107_gr = {
.init_tex_hww_esr = gf100_gr_init_tex_hww_esr,
.init_504430 = gm107_gr_init_504430,
.init_shader_exceptions = gm107_gr_init_shader_exceptions,
+ .init_rop_exceptions = gf100_gr_init_rop_exceptions,
+ .init_exception2 = gf100_gr_init_exception2,
.init_400054 = gm107_gr_init_400054,
.trap_mp = gf100_gr_trap_mp,
.mmio = gm107_gr_pack_mmio,
.fecs.ucode = &gm107_gr_fecs_ucode,
+ .fecs.reset = gf100_gr_fecs_reset,
.gpccs.ucode = &gm107_gr_gpccs_ucode,
.rops = gf100_gr_rops,
.ppc_nr = 2,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/gm200.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/gm200.c
index 385cfd91b266..b5210b31c1b2 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/gm200.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/gm200.c
@@ -148,11 +148,11 @@ gm200_gr_tile_map_2_8[] = {
0, 1, 1, 0, 0, 1, 1, 0,
};
-void
+int
gm200_gr_oneinit_sm_id(struct gf100_gr *gr)
{
/*XXX: There's a different algorithm here I've not yet figured out. */
- gf100_gr_oneinit_sm_id(gr);
+ return gf100_gr_oneinit_sm_id(gr);
}
void
@@ -199,8 +199,11 @@ gm200_gr = {
.init_tex_hww_esr = gf100_gr_init_tex_hww_esr,
.init_504430 = gm107_gr_init_504430,
.init_shader_exceptions = gm107_gr_init_shader_exceptions,
+ .init_rop_exceptions = gf100_gr_init_rop_exceptions,
+ .init_exception2 = gf100_gr_init_exception2,
.init_400054 = gm107_gr_init_400054,
.trap_mp = gf100_gr_trap_mp,
+ .fecs.reset = gf100_gr_fecs_reset,
.rops = gm200_gr_rops,
.tpc_nr = 4,
.ppc_nr = 2,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/gm20b.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/gm20b.c
index ec1c46e47e00..458cd1a00d3f 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/gm20b.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/gm20b.c
@@ -123,6 +123,7 @@ gm20b_gr = {
.init_rop_active_fbps = gk104_gr_init_rop_active_fbps,
.trap_mp = gf100_gr_trap_mp,
.set_hww_esr_report_mask = gm20b_gr_set_hww_esr_report_mask,
+ .fecs.reset = gf100_gr_fecs_reset,
.rops = gm200_gr_rops,
.ppc_nr = 1,
.grctx = &gm20b_grctx,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/gp100.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/gp100.c
index 0550dd6f46f1..851e743d2cab 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/gp100.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/gp100.c
@@ -87,7 +87,7 @@ gp100_gr_init_419c9c(struct gf100_gr *gr)
void
gp100_gr_init_fecs_exceptions(struct gf100_gr *gr)
{
- nvkm_wr32(gr->base.engine.subdev.device, 0x409c24, 0x000f0002);
+ nvkm_wr32(gr->base.engine.subdev.device, 0x409c24, 0x000e0002);
}
void
@@ -119,7 +119,10 @@ gp100_gr = {
.init_tex_hww_esr = gf100_gr_init_tex_hww_esr,
.init_504430 = gm107_gr_init_504430,
.init_shader_exceptions = gp100_gr_init_shader_exceptions,
+ .init_rop_exceptions = gf100_gr_init_rop_exceptions,
+ .init_exception2 = gf100_gr_init_exception2,
.trap_mp = gf100_gr_trap_mp,
+ .fecs.reset = gf100_gr_fecs_reset,
.rops = gm200_gr_rops,
.gpc_nr = 6,
.tpc_nr = 5,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/gp102.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/gp102.c
index 5b001f374be0..0e223b7b5f0e 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/gp102.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/gp102.c
@@ -26,7 +26,7 @@
#include <nvif/class.h>
-static void
+void
gp102_gr_zbc_clear_stencil(struct gf100_gr *gr, int zbc)
{
struct nvkm_device *device = gr->base.engine.subdev.device;
@@ -40,14 +40,14 @@ gp102_gr_zbc_clear_stencil(struct gf100_gr *gr, int zbc)
gr->zbc_stencil[zbc].format << ((znum % 4) * 7));
}
-static int
+int
gp102_gr_zbc_stencil_get(struct gf100_gr *gr, int format,
const u32 ds, const u32 l2)
{
struct nvkm_ltc *ltc = gr->base.engine.subdev.device->ltc;
int zbc = -ENOSPC, i;
- for (i = ltc->zbc_min; i <= ltc->zbc_max; i++) {
+ for (i = ltc->zbc_depth_min; i <= ltc->zbc_depth_max; i++) {
if (gr->zbc_stencil[i].format) {
if (gr->zbc_stencil[i].format != format)
continue;
@@ -115,7 +115,10 @@ gp102_gr = {
.init_tex_hww_esr = gf100_gr_init_tex_hww_esr,
.init_504430 = gm107_gr_init_504430,
.init_shader_exceptions = gp100_gr_init_shader_exceptions,
+ .init_rop_exceptions = gf100_gr_init_rop_exceptions,
+ .init_exception2 = gf100_gr_init_exception2,
.trap_mp = gf100_gr_trap_mp,
+ .fecs.reset = gf100_gr_fecs_reset,
.rops = gm200_gr_rops,
.gpc_nr = 6,
.tpc_nr = 5,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/gp104.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/gp104.c
index 2655574ec63b..6802cb9b199f 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/gp104.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/gp104.c
@@ -43,7 +43,10 @@ gp104_gr = {
.init_tex_hww_esr = gf100_gr_init_tex_hww_esr,
.init_504430 = gm107_gr_init_504430,
.init_shader_exceptions = gp100_gr_init_shader_exceptions,
+ .init_rop_exceptions = gf100_gr_init_rop_exceptions,
+ .init_exception2 = gf100_gr_init_exception2,
.trap_mp = gf100_gr_trap_mp,
+ .fecs.reset = gf100_gr_fecs_reset,
.rops = gm200_gr_rops,
.gpc_nr = 6,
.tpc_nr = 5,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/gp107.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/gp107.c
index adabc04d4f3a..cc2bb0d0a987 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/gp107.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/gp107.c
@@ -45,7 +45,10 @@ gp107_gr = {
.init_tex_hww_esr = gf100_gr_init_tex_hww_esr,
.init_504430 = gm107_gr_init_504430,
.init_shader_exceptions = gp100_gr_init_shader_exceptions,
+ .init_rop_exceptions = gf100_gr_init_rop_exceptions,
+ .init_exception2 = gf100_gr_init_exception2,
.trap_mp = gf100_gr_trap_mp,
+ .fecs.reset = gf100_gr_fecs_reset,
.rops = gm200_gr_rops,
.gpc_nr = 2,
.tpc_nr = 3,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/gp108.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/gp108.c
index 7310f0466bb7..311f703439e4 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/gp108.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/gp108.c
@@ -25,7 +25,7 @@
#include <nvfw/flcn.h>
-static void
+void
gp108_gr_acr_bld_patch(struct nvkm_acr *acr, u32 bld, s64 adjust)
{
struct flcn_bl_dmem_desc_v2 hdr;
@@ -36,7 +36,7 @@ gp108_gr_acr_bld_patch(struct nvkm_acr *acr, u32 bld, s64 adjust)
flcn_bl_dmem_desc_v2_dump(&acr->subdev, &hdr);
}
-static void
+void
gp108_gr_acr_bld_write(struct nvkm_acr *acr, u32 bld,
struct nvkm_acr_lsfw *lsfw)
{
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/gp10b.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/gp10b.c
index e13683b6e7b1..5008881ca079 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/gp10b.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/gp10b.c
@@ -55,7 +55,10 @@ gp10b_gr = {
.init_tex_hww_esr = gf100_gr_init_tex_hww_esr,
.init_504430 = gm107_gr_init_504430,
.init_shader_exceptions = gp100_gr_init_shader_exceptions,
+ .init_rop_exceptions = gf100_gr_init_rop_exceptions,
+ .init_exception2 = gf100_gr_init_exception2,
.trap_mp = gf100_gr_trap_mp,
+ .fecs.reset = gf100_gr_fecs_reset,
.rops = gm200_gr_rops,
.gpc_nr = 1,
.tpc_nr = 2,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/gv100.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/gv100.c
index 4d043c1173ea..7f7404a76140 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/gv100.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/gv100.c
@@ -52,10 +52,11 @@ gv100_gr_trap_mp(struct gf100_gr *gr, int gpc, int tpc)
gv100_gr_trap_sm(gr, gpc, tpc, 1);
}
-static void
+void
gv100_gr_init_4188a4(struct gf100_gr *gr)
{
struct nvkm_device *device = gr->base.engine.subdev.device;
+
nvkm_mask(device, 0x4188a4, 0x03000000, 0x03000000);
}
@@ -65,7 +66,6 @@ gv100_gr_init_shader_exceptions(struct gf100_gr *gr, int gpc, int tpc)
struct nvkm_device *device = gr->base.engine.subdev.device;
int sm;
for (sm = 0; sm < 0x100; sm += 0x80) {
- nvkm_wr32(device, TPC_UNIT(gpc, tpc, 0x728 + sm), 0x0085eb64);
nvkm_wr32(device, TPC_UNIT(gpc, tpc, 0x610), 0x00000001);
nvkm_wr32(device, TPC_UNIT(gpc, tpc, 0x72c + sm), 0x00000004);
}
@@ -85,10 +85,202 @@ gv100_gr_init_419bd8(struct gf100_gr *gr)
nvkm_mask(device, 0x419bd8, 0x00000700, 0x00000000);
}
+u32
+gv100_gr_nonpes_aware_tpc(struct gf100_gr *gr, u32 gpc, u32 tpc)
+{
+ u32 pes, temp, tpc_new = 0;
+
+ for (pes = 0; pes < gr->ppc_nr[gpc]; pes++) {
+ if (gr->ppc_tpc_mask[gpc][pes] & BIT(tpc))
+ break;
+
+ tpc_new += gr->ppc_tpc_nr[gpc][pes];
+ }
+
+ temp = (BIT(tpc) - 1) & gr->ppc_tpc_mask[gpc][pes];
+ temp = hweight32(temp);
+ return tpc_new + temp;
+}
+
+static int
+gv100_gr_scg_estimate_perf(struct gf100_gr *gr, unsigned long *gpc_tpc_mask,
+ u32 disable_gpc, u32 disable_tpc, int *perf)
+{
+ const u32 scale_factor = 512UL; /* Use fx23.9 */
+ const u32 pix_scale = 1024*1024UL; /* Pix perf in [29:20] */
+ const u32 world_scale = 1024UL; /* World performance in [19:10] */
+ const u32 tpc_scale = 1; /* TPC balancing in [9:0] */
+ u32 scg_num_pes = 0;
+ u32 min_scg_gpc_pix_perf = scale_factor; /* Init perf as maximum */
+ u32 average_tpcs = 0; /* Average of # of TPCs per GPC */
+ u32 deviation; /* absolute diff between TPC# and average_tpcs, averaged across GPCs */
+ u32 norm_tpc_deviation; /* deviation/max_tpc_per_gpc */
+ u32 tpc_balance;
+ u32 scg_gpc_pix_perf;
+ u32 scg_world_perf;
+ u32 gpc;
+ u32 pes;
+ int diff;
+ bool tpc_removed_gpc = false;
+ bool tpc_removed_pes = false;
+ u32 max_tpc_gpc = 0;
+ u32 num_tpc_mask;
+ u32 *num_tpc_gpc;
+ int ret = -EINVAL;
+
+ if (!(num_tpc_gpc = kcalloc(gr->gpc_nr, sizeof(*num_tpc_gpc), GFP_KERNEL)))
+ return -ENOMEM;
+
+ /* Calculate pix-perf-reduction-rate per GPC and find bottleneck TPC */
+ for (gpc = 0; gpc < gr->gpc_nr; gpc++) {
+ num_tpc_mask = gpc_tpc_mask[gpc];
+
+ if ((gpc == disable_gpc) && num_tpc_mask & BIT(disable_tpc)) {
+ /* Safety check if a TPC is removed twice */
+ if (WARN_ON(tpc_removed_gpc))
+ goto done;
+
+ /* Remove logical TPC from set */
+ num_tpc_mask &= ~BIT(disable_tpc);
+ tpc_removed_gpc = true;
+ }
+
+ /* track balancing of tpcs across gpcs */
+ num_tpc_gpc[gpc] = hweight32(num_tpc_mask);
+ average_tpcs += num_tpc_gpc[gpc];
+
+ /* save the maximum numer of gpcs */
+ max_tpc_gpc = num_tpc_gpc[gpc] > max_tpc_gpc ? num_tpc_gpc[gpc] : max_tpc_gpc;
+
+ /*
+ * Calculate ratio between TPC count and post-FS and post-SCG
+ *
+ * ratio represents relative throughput of the GPC
+ */
+ scg_gpc_pix_perf = scale_factor * num_tpc_gpc[gpc] / gr->tpc_nr[gpc];
+ if (min_scg_gpc_pix_perf > scg_gpc_pix_perf)
+ min_scg_gpc_pix_perf = scg_gpc_pix_perf;
+
+ /* Calculate # of surviving PES */
+ for (pes = 0; pes < gr->ppc_nr[gpc]; pes++) {
+ /* Count the number of TPC on the set */
+ num_tpc_mask = gr->ppc_tpc_mask[gpc][pes] & gpc_tpc_mask[gpc];
+
+ if ((gpc == disable_gpc) && (num_tpc_mask & BIT(disable_tpc))) {
+ if (WARN_ON(tpc_removed_pes))
+ goto done;
+
+ num_tpc_mask &= ~BIT(disable_tpc);
+ tpc_removed_pes = true;
+ }
+
+ if (hweight32(num_tpc_mask))
+ scg_num_pes++;
+ }
+ }
+
+ if (WARN_ON(!tpc_removed_gpc || !tpc_removed_pes))
+ goto done;
+
+ if (max_tpc_gpc == 0) {
+ *perf = 0;
+ goto done_ok;
+ }
+
+ /* Now calculate perf */
+ scg_world_perf = (scale_factor * scg_num_pes) / gr->ppc_total;
+ deviation = 0;
+ average_tpcs = scale_factor * average_tpcs / gr->gpc_nr;
+ for (gpc = 0; gpc < gr->gpc_nr; gpc++) {
+ diff = average_tpcs - scale_factor * num_tpc_gpc[gpc];
+ if (diff < 0)
+ diff = -diff;
+
+ deviation += diff;
+ }
+
+ deviation /= gr->gpc_nr;
+
+ norm_tpc_deviation = deviation / max_tpc_gpc;
+
+ tpc_balance = scale_factor - norm_tpc_deviation;
+
+ if ((tpc_balance > scale_factor) ||
+ (scg_world_perf > scale_factor) ||
+ (min_scg_gpc_pix_perf > scale_factor) ||
+ (norm_tpc_deviation > scale_factor)) {
+ WARN_ON(1);
+ goto done;
+ }
+
+ *perf = (pix_scale * min_scg_gpc_pix_perf) +
+ (world_scale * scg_world_perf) +
+ (tpc_scale * tpc_balance);
+done_ok:
+ ret = 0;
+done:
+ kfree(num_tpc_gpc);
+ return ret;
+}
+
+int
+gv100_gr_oneinit_sm_id(struct gf100_gr *gr)
+{
+ unsigned long *gpc_tpc_mask;
+ u32 *tpc_table, *gpc_table;
+ u32 gpc, tpc, pes, gtpc;
+ int perf, maxperf, ret = 0;
+
+ gpc_tpc_mask = kcalloc(gr->gpc_nr, sizeof(*gpc_tpc_mask), GFP_KERNEL);
+ gpc_table = kcalloc(gr->tpc_total, sizeof(*gpc_table), GFP_KERNEL);
+ tpc_table = kcalloc(gr->tpc_total, sizeof(*tpc_table), GFP_KERNEL);
+ if (!gpc_table || !tpc_table || !gpc_tpc_mask) {
+ ret = -ENOMEM;
+ goto done;
+ }
+
+ for (gpc = 0; gpc < gr->gpc_nr; gpc++) {
+ for (pes = 0; pes < gr->ppc_nr[gpc]; pes++)
+ gpc_tpc_mask[gpc] |= gr->ppc_tpc_mask[gpc][pes];
+ }
+
+ for (gtpc = 0; gtpc < gr->tpc_total; gtpc++) {
+ for (maxperf = -1, gpc = 0; gpc < gr->gpc_nr; gpc++) {
+ for_each_set_bit(tpc, &gpc_tpc_mask[gpc], gr->tpc_nr[gpc]) {
+ ret = gv100_gr_scg_estimate_perf(gr, gpc_tpc_mask, gpc, tpc, &perf);
+ if (ret)
+ goto done;
+
+ /* nvgpu does ">=" here, but this gets us RM's numbers. */
+ if (perf > maxperf) {
+ maxperf = perf;
+ gpc_table[gtpc] = gpc;
+ tpc_table[gtpc] = tpc;
+ }
+ }
+ }
+
+ gpc_tpc_mask[gpc_table[gtpc]] &= ~BIT(tpc_table[gtpc]);
+ }
+
+ /*TODO: build table for sm_per_tpc != 1, don't use yet, but might need later? */
+ for (gtpc = 0; gtpc < gr->tpc_total; gtpc++) {
+ gr->sm[gtpc].gpc = gpc_table[gtpc];
+ gr->sm[gtpc].tpc = tpc_table[gtpc];
+ gr->sm_nr++;
+ }
+
+done:
+ kfree(gpc_table);
+ kfree(tpc_table);
+ kfree(gpc_tpc_mask);
+ return ret;
+}
+
static const struct gf100_gr_func
gv100_gr = {
.oneinit_tiles = gm200_gr_oneinit_tiles,
- .oneinit_sm_id = gm200_gr_oneinit_sm_id,
+ .oneinit_sm_id = gv100_gr_oneinit_sm_id,
.init = gf100_gr_init,
.init_419bd8 = gv100_gr_init_419bd8,
.init_gpc_mmu = gm200_gr_init_gpc_mmu,
@@ -103,11 +295,14 @@ gv100_gr = {
.init_ppc_exceptions = gk104_gr_init_ppc_exceptions,
.init_504430 = gv100_gr_init_504430,
.init_shader_exceptions = gv100_gr_init_shader_exceptions,
+ .init_rop_exceptions = gf100_gr_init_rop_exceptions,
+ .init_exception2 = gf100_gr_init_exception2,
.init_4188a4 = gv100_gr_init_4188a4,
.trap_mp = gv100_gr_trap_mp,
+ .fecs.reset = gf100_gr_fecs_reset,
.rops = gm200_gr_rops,
.gpc_nr = 6,
- .tpc_nr = 5,
+ .tpc_nr = 7,
.ppc_nr = 3,
.grctx = &gv100_grctx,
.zbc = &gp102_gr_zbc,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/nv04.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/nv04.c
index 0bc1a238de43..81bd682c2102 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/nv04.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/nv04.c
@@ -1192,7 +1192,7 @@ nv04_gr_chan_new(struct nvkm_gr *base, struct nvkm_fifo_chan *fifoch,
return -ENOMEM;
nvkm_object_ctor(&nv04_gr_chan, oclass, &chan->object);
chan->gr = gr;
- chan->chid = fifoch->chid;
+ chan->chid = fifoch->id;
*pobject = &chan->object;
*ctx_reg(chan, NV04_PGRAPH_DEBUG_3) = 0xfad4ff31;
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/nv10.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/nv10.c
index 942450b33bc6..7fe6e58f6bab 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/nv10.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/nv10.c
@@ -1011,7 +1011,7 @@ nv10_gr_chan_new(struct nvkm_gr *base, struct nvkm_fifo_chan *fifoch,
return -ENOMEM;
nvkm_object_ctor(&nv10_gr_chan, oclass, &chan->object);
chan->gr = gr;
- chan->chid = fifoch->chid;
+ chan->chid = fifoch->id;
*pobject = &chan->object;
NV_WRITE_CTX(0x00400e88, 0x08000000);
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/nv20.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/nv20.c
index 6bff10cee71b..75434f5de7ad 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/nv20.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/nv20.c
@@ -83,7 +83,7 @@ nv20_gr_chan_new(struct nvkm_gr *base, struct nvkm_fifo_chan *fifoch,
return -ENOMEM;
nvkm_object_ctor(&nv20_gr_chan, oclass, &chan->object);
chan->gr = gr;
- chan->chid = fifoch->chid;
+ chan->chid = fifoch->id;
*pobject = &chan->object;
ret = nvkm_memory_new(gr->base.engine.subdev.device,
@@ -182,7 +182,7 @@ nv20_gr_intr(struct nvkm_gr *base)
struct nv20_gr *gr = nv20_gr(base);
struct nvkm_subdev *subdev = &gr->base.engine.subdev;
struct nvkm_device *device = subdev->device;
- struct nvkm_fifo_chan *chan;
+ struct nvkm_chan *chan;
u32 stat = nvkm_rd32(device, NV03_PGRAPH_INTR);
u32 nsource = nvkm_rd32(device, NV03_PGRAPH_NSOURCE);
u32 nstatus = nvkm_rd32(device, NV03_PGRAPH_NSTATUS);
@@ -196,7 +196,7 @@ nv20_gr_intr(struct nvkm_gr *base)
char msg[128], src[128], sta[128];
unsigned long flags;
- chan = nvkm_fifo_chan_chid(device->fifo, chid, &flags);
+ chan = nvkm_chan_get_chid(&gr->base.engine, chid, &flags);
nvkm_wr32(device, NV03_PGRAPH_INTR, stat);
nvkm_wr32(device, NV04_PGRAPH_FIFO, 0x00000001);
@@ -209,11 +209,11 @@ nv20_gr_intr(struct nvkm_gr *base)
"nstatus %08x [%s] ch %d [%s] subc %d "
"class %04x mthd %04x data %08x\n",
show, msg, nsource, src, nstatus, sta, chid,
- chan ? chan->object.client->name : "unknown",
+ chan ? chan->name : "unknown",
subc, class, mthd, data);
}
- nvkm_fifo_chan_put(device->fifo, flags, &chan);
+ nvkm_chan_put(&chan, flags);
}
int
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/nv25.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/nv25.c
index f3a56f17d94a..94685e4d4f87 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/nv25.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/nv25.c
@@ -29,7 +29,7 @@ nv25_gr_chan_new(struct nvkm_gr *base, struct nvkm_fifo_chan *fifoch,
return -ENOMEM;
nvkm_object_ctor(&nv25_gr_chan, oclass, &chan->object);
chan->gr = gr;
- chan->chid = fifoch->chid;
+ chan->chid = fifoch->id;
*pobject = &chan->object;
ret = nvkm_memory_new(gr->base.engine.subdev.device,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/nv2a.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/nv2a.c
index f268d2642d29..2d6273675291 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/nv2a.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/nv2a.c
@@ -29,7 +29,7 @@ nv2a_gr_chan_new(struct nvkm_gr *base, struct nvkm_fifo_chan *fifoch,
return -ENOMEM;
nvkm_object_ctor(&nv2a_gr_chan, oclass, &chan->object);
chan->gr = gr;
- chan->chid = fifoch->chid;
+ chan->chid = fifoch->id;
*pobject = &chan->object;
ret = nvkm_memory_new(gr->base.engine.subdev.device,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/nv30.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/nv30.c
index e5737cdf2fa1..647bd6fede04 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/nv30.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/nv30.c
@@ -30,7 +30,7 @@ nv30_gr_chan_new(struct nvkm_gr *base, struct nvkm_fifo_chan *fifoch,
return -ENOMEM;
nvkm_object_ctor(&nv30_gr_chan, oclass, &chan->object);
chan->gr = gr;
- chan->chid = fifoch->chid;
+ chan->chid = fifoch->id;
*pobject = &chan->object;
ret = nvkm_memory_new(gr->base.engine.subdev.device,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/nv34.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/nv34.c
index 1ab2da8ebf4e..2eae3fe4ef4e 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/nv34.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/nv34.c
@@ -29,7 +29,7 @@ nv34_gr_chan_new(struct nvkm_gr *base, struct nvkm_fifo_chan *fifoch,
return -ENOMEM;
nvkm_object_ctor(&nv34_gr_chan, oclass, &chan->object);
chan->gr = gr;
- chan->chid = fifoch->chid;
+ chan->chid = fifoch->id;
*pobject = &chan->object;
ret = nvkm_memory_new(gr->base.engine.subdev.device,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/nv35.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/nv35.c
index 591260f5676b..657d7cdba369 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/nv35.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/nv35.c
@@ -29,7 +29,7 @@ nv35_gr_chan_new(struct nvkm_gr *base, struct nvkm_fifo_chan *fifoch,
return -ENOMEM;
nvkm_object_ctor(&nv35_gr_chan, oclass, &chan->object);
chan->gr = gr;
- chan->chid = fifoch->chid;
+ chan->chid = fifoch->id;
*pobject = &chan->object;
ret = nvkm_memory_new(gr->base.engine.subdev.device,
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/nv40.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/nv40.c
index 67f3535ff97e..d2df097a6cf6 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/nv40.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/nv40.c
@@ -275,8 +275,8 @@ nv40_gr_intr(struct nvkm_gr *base)
"nstatus %08x [%s] ch %d [%08x %s] subc %d "
"class %04x mthd %04x data %08x\n",
show, msg, nsource, src, nstatus, sta,
- chan ? chan->fifo->chid : -1, inst << 4,
- chan ? chan->fifo->object.client->name : "unknown",
+ chan ? chan->fifo->id : -1, inst << 4,
+ chan ? chan->fifo->name : "unknown",
subc, class, mthd, data);
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/nv50.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/nv50.c
index 563a10097e95..1ba18a8e380f 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/nv50.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/nv50.c
@@ -622,7 +622,7 @@ nv50_gr_intr(struct nvkm_gr *base)
struct nv50_gr *gr = nv50_gr(base);
struct nvkm_subdev *subdev = &gr->base.engine.subdev;
struct nvkm_device *device = subdev->device;
- struct nvkm_fifo_chan *chan;
+ struct nvkm_chan *chan;
u32 stat = nvkm_rd32(device, 0x400100);
u32 inst = nvkm_rd32(device, 0x40032c) & 0x0fffffff;
u32 addr = nvkm_rd32(device, 0x400704);
@@ -637,10 +637,10 @@ nv50_gr_intr(struct nvkm_gr *base)
char msg[128];
int chid = -1;
- chan = nvkm_fifo_chan_inst(device->fifo, (u64)inst << 12, &flags);
+ chan = nvkm_chan_get_inst(&gr->base.engine, (u64)inst << 12, &flags);
if (chan) {
- name = chan->object.client->name;
- chid = chan->chid;
+ name = chan->name;
+ chid = chan->id;
}
if (show & 0x00100000) {
@@ -672,7 +672,7 @@ nv50_gr_intr(struct nvkm_gr *base)
if (nvkm_rd32(device, 0x400824) & (1 << 31))
nvkm_wr32(device, 0x400824, nvkm_rd32(device, 0x400824) & ~(1 << 31));
- nvkm_fifo_chan_put(device->fifo, flags, &chan);
+ nvkm_chan_put(&chan, flags);
}
int
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/priv.h b/drivers/gpu/drm/nouveau/nvkm/engine/gr/priv.h
index 9b2c66e8be90..08d5c96e6458 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/priv.h
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/priv.h
@@ -17,6 +17,7 @@ struct nvkm_gr_func {
int (*oneinit)(struct nvkm_gr *);
int (*init)(struct nvkm_gr *);
int (*fini)(struct nvkm_gr *, bool);
+ int (*reset)(struct nvkm_gr *);
void (*intr)(struct nvkm_gr *);
void (*tile)(struct nvkm_gr *, int region, struct nvkm_fb_tile *);
int (*tlb_flush)(struct nvkm_gr *);
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/gr/tu102.c b/drivers/gpu/drm/nouveau/nvkm/engine/gr/tu102.c
index 1a8a21844e12..3b6c8100a242 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/gr/tu102.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/gr/tu102.c
@@ -24,13 +24,13 @@
#include <nvif/class.h>
-static void
+void
tu102_gr_init_fecs_exceptions(struct gf100_gr *gr)
{
- nvkm_wr32(gr->base.engine.subdev.device, 0x409c24, 0x006f0002);
+ nvkm_wr32(gr->base.engine.subdev.device, 0x409c24, 0x006e0003);
}
-static void
+void
tu102_gr_init_fs(struct gf100_gr *gr)
{
struct nvkm_device *device = gr->base.engine.subdev.device;
@@ -40,20 +40,21 @@ tu102_gr_init_fs(struct gf100_gr *gr)
gk104_grctx_generate_gpc_tpc_nr(gr);
for (sm = 0; sm < gr->sm_nr; sm++) {
- nvkm_wr32(device, GPC_UNIT(gr->sm[sm].gpc, 0x0c10 +
- gr->sm[sm].tpc * 4), sm);
+ int tpc = gv100_gr_nonpes_aware_tpc(gr, gr->sm[sm].gpc, gr->sm[sm].tpc);
+
+ nvkm_wr32(device, GPC_UNIT(gr->sm[sm].gpc, 0x0c10 + tpc * 4), sm);
}
gm200_grctx_generate_dist_skip_table(gr);
gf100_gr_init_num_tpc_per_gpc(gr, true, true);
}
-static void
+void
tu102_gr_init_zcull(struct gf100_gr *gr)
{
struct nvkm_device *device = gr->base.engine.subdev.device;
const u32 magicgpc918 = DIV_ROUND_UP(0x00800000, gr->tpc_total);
- const u8 tile_nr = ALIGN(gr->tpc_total, 64);
+ const u8 tile_nr = gr->func->gpc_nr * gr->func->tpc_nr;
u8 bank[GPC_MAX] = {}, gpc, i, j;
u32 data;
@@ -93,7 +94,7 @@ tu102_gr_init_gpc_mmu(struct gf100_gr *gr)
static const struct gf100_gr_func
tu102_gr = {
.oneinit_tiles = gm200_gr_oneinit_tiles,
- .oneinit_sm_id = gm200_gr_oneinit_sm_id,
+ .oneinit_sm_id = gv100_gr_oneinit_sm_id,
.init = gf100_gr_init,
.init_419bd8 = gv100_gr_init_419bd8,
.init_gpc_mmu = tu102_gr_init_gpc_mmu,
@@ -109,10 +110,14 @@ tu102_gr = {
.init_ppc_exceptions = gk104_gr_init_ppc_exceptions,
.init_504430 = gv100_gr_init_504430,
.init_shader_exceptions = gv100_gr_init_shader_exceptions,
+ .init_rop_exceptions = gf100_gr_init_rop_exceptions,
+ .init_exception2 = gf100_gr_init_exception2,
+ .init_4188a4 = gv100_gr_init_4188a4,
.trap_mp = gv100_gr_trap_mp,
+ .fecs.reset = gf100_gr_fecs_reset,
.rops = gm200_gr_rops,
.gpc_nr = 6,
- .tpc_nr = 5,
+ .tpc_nr = 6,
.ppc_nr = 3,
.grctx = &tu102_grctx,
.zbc = &gp102_gr_zbc,
@@ -137,6 +142,7 @@ MODULE_FIRMWARE("nvidia/tu102/gr/sw_ctx.bin");
MODULE_FIRMWARE("nvidia/tu102/gr/sw_nonctx.bin");
MODULE_FIRMWARE("nvidia/tu102/gr/sw_bundle_init.bin");
MODULE_FIRMWARE("nvidia/tu102/gr/sw_method_init.bin");
+MODULE_FIRMWARE("nvidia/tu102/gr/sw_veid_bundle_init.bin");
MODULE_FIRMWARE("nvidia/tu104/gr/fecs_bl.bin");
MODULE_FIRMWARE("nvidia/tu104/gr/fecs_inst.bin");
@@ -150,6 +156,7 @@ MODULE_FIRMWARE("nvidia/tu104/gr/sw_ctx.bin");
MODULE_FIRMWARE("nvidia/tu104/gr/sw_nonctx.bin");
MODULE_FIRMWARE("nvidia/tu104/gr/sw_bundle_init.bin");
MODULE_FIRMWARE("nvidia/tu104/gr/sw_method_init.bin");
+MODULE_FIRMWARE("nvidia/tu104/gr/sw_veid_bundle_init.bin");
MODULE_FIRMWARE("nvidia/tu106/gr/fecs_bl.bin");
MODULE_FIRMWARE("nvidia/tu106/gr/fecs_inst.bin");
@@ -163,6 +170,7 @@ MODULE_FIRMWARE("nvidia/tu106/gr/sw_ctx.bin");
MODULE_FIRMWARE("nvidia/tu106/gr/sw_nonctx.bin");
MODULE_FIRMWARE("nvidia/tu106/gr/sw_bundle_init.bin");
MODULE_FIRMWARE("nvidia/tu106/gr/sw_method_init.bin");
+MODULE_FIRMWARE("nvidia/tu106/gr/sw_veid_bundle_init.bin");
MODULE_FIRMWARE("nvidia/tu117/gr/fecs_bl.bin");
MODULE_FIRMWARE("nvidia/tu117/gr/fecs_inst.bin");
@@ -176,6 +184,7 @@ MODULE_FIRMWARE("nvidia/tu117/gr/sw_ctx.bin");
MODULE_FIRMWARE("nvidia/tu117/gr/sw_nonctx.bin");
MODULE_FIRMWARE("nvidia/tu117/gr/sw_bundle_init.bin");
MODULE_FIRMWARE("nvidia/tu117/gr/sw_method_init.bin");
+MODULE_FIRMWARE("nvidia/tu117/gr/sw_veid_bundle_init.bin");
MODULE_FIRMWARE("nvidia/tu116/gr/fecs_bl.bin");
MODULE_FIRMWARE("nvidia/tu116/gr/fecs_inst.bin");
@@ -189,6 +198,26 @@ MODULE_FIRMWARE("nvidia/tu116/gr/sw_ctx.bin");
MODULE_FIRMWARE("nvidia/tu116/gr/sw_nonctx.bin");
MODULE_FIRMWARE("nvidia/tu116/gr/sw_bundle_init.bin");
MODULE_FIRMWARE("nvidia/tu116/gr/sw_method_init.bin");
+MODULE_FIRMWARE("nvidia/tu116/gr/sw_veid_bundle_init.bin");
+
+int
+tu102_gr_av_to_init_veid(struct nvkm_blob *blob, struct gf100_gr_pack **ppack)
+{
+ return gk20a_gr_av_to_init_(blob, 64, 0x00100000, ppack);
+}
+
+int
+tu102_gr_load(struct gf100_gr *gr, int ver, const struct gf100_gr_fwif *fwif)
+{
+ int ret;
+
+ ret = gm200_gr_load(gr, ver, fwif);
+ if (ret)
+ return ret;
+
+ return gk20a_gr_load_net(gr, "gr/", "sw_veid_bundle_init", ver, tu102_gr_av_to_init_veid,
+ &gr->bundle_veid);
+}
static const struct gf100_gr_fwif
tu102_gr_fwif[] = {
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/mpeg/nv31.c b/drivers/gpu/drm/nouveau/nvkm/engine/mpeg/nv31.c
index b1054db4c1b8..cb0c3991b2ad 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/mpeg/nv31.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/mpeg/nv31.c
@@ -213,8 +213,8 @@ nv31_mpeg_intr(struct nvkm_engine *engine)
if (show) {
nvkm_error(subdev, "ch %d [%s] %08x %08x %08x %08x\n",
- mpeg->chan ? mpeg->chan->fifo->chid : -1,
- mpeg->chan ? mpeg->chan->object.client->name :
+ mpeg->chan ? mpeg->chan->fifo->id : -1,
+ mpeg->chan ? mpeg->chan->fifo->name :
"unknown", stat, type, mthd, data);
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/mpeg/nv44.c b/drivers/gpu/drm/nouveau/nvkm/engine/mpeg/nv44.c
index 521ce43a2871..0890a279458e 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/mpeg/nv44.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/mpeg/nv44.c
@@ -182,8 +182,8 @@ nv44_mpeg_intr(struct nvkm_engine *engine)
if (show) {
nvkm_error(subdev, "ch %d [%08x %s] %08x %08x %08x %08x\n",
- chan ? chan->fifo->chid : -1, inst << 4,
- chan ? chan->object.client->name : "unknown",
+ chan ? chan->fifo->id : -1, inst << 4,
+ chan ? chan->fifo->name : "unknown",
stat, type, mthd, data);
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/nvdec/Kbuild b/drivers/gpu/drm/nouveau/nvkm/engine/nvdec/Kbuild
index 9a0fd9812750..f05e79670d22 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/nvdec/Kbuild
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/nvdec/Kbuild
@@ -1,3 +1,4 @@
# SPDX-License-Identifier: MIT
nvkm-y += nvkm/engine/nvdec/base.o
nvkm-y += nvkm/engine/nvdec/gm107.o
+nvkm-y += nvkm/engine/nvdec/ga102.o
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/nvdec/base.c b/drivers/gpu/drm/nouveau/nvkm/engine/nvdec/base.c
index b0181cc5953b..1f6e3b32ba16 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/nvdec/base.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/nvdec/base.c
@@ -37,7 +37,7 @@ nvkm_nvdec = {
int
nvkm_nvdec_new_(const struct nvkm_nvdec_fwif *fwif, struct nvkm_device *device,
- enum nvkm_subdev_type type, int inst, struct nvkm_nvdec **pnvdec)
+ enum nvkm_subdev_type type, int inst, u32 addr, struct nvkm_nvdec **pnvdec)
{
struct nvkm_nvdec *nvdec;
int ret;
@@ -57,5 +57,5 @@ nvkm_nvdec_new_(const struct nvkm_nvdec_fwif *fwif, struct nvkm_device *device,
nvdec->func = fwif->func;
return nvkm_falcon_ctor(nvdec->func->flcn, &nvdec->engine.subdev,
- nvdec->engine.subdev.name, 0, &nvdec->falcon);
+ nvdec->engine.subdev.name, addr, &nvdec->falcon);
};
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/nvdec/ga102.c b/drivers/gpu/drm/nouveau/nvkm/engine/nvdec/ga102.c
new file mode 100644
index 000000000000..37d8c3c0f3ab
--- /dev/null
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/nvdec/ga102.c
@@ -0,0 +1,61 @@
+/*
+ * Copyright 2021 Red Hat Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ */
+#include "priv.h"
+
+#include <subdev/mc.h>
+#include <subdev/timer.h>
+
+static const struct nvkm_falcon_func
+ga102_nvdec_flcn = {
+ .disable = gm200_flcn_disable,
+ .enable = gm200_flcn_enable,
+ .addr2 = 0x1c00,
+ .reset_pmc = true,
+ .reset_prep = ga102_flcn_reset_prep,
+ .reset_wait_mem_scrubbing = ga102_flcn_reset_wait_mem_scrubbing,
+ .imem_dma = &ga102_flcn_dma,
+ .dmem_dma = &ga102_flcn_dma,
+};
+
+static const struct nvkm_nvdec_func
+ga102_nvdec = {
+ .flcn = &ga102_nvdec_flcn,
+};
+
+static int
+ga102_nvdec_nofw(struct nvkm_nvdec *nvdec, int ver, const struct nvkm_nvdec_fwif *fwif)
+{
+ return 0;
+}
+
+static const struct nvkm_nvdec_fwif
+ga102_nvdec_fwif[] = {
+ { -1, ga102_nvdec_nofw, &ga102_nvdec },
+ {}
+};
+
+int
+ga102_nvdec_new(struct nvkm_device *device, enum nvkm_subdev_type type, int inst,
+ struct nvkm_nvdec **pnvdec)
+{
+ return nvkm_nvdec_new_(ga102_nvdec_fwif, device, type, inst, 0x848000, pnvdec);
+}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/nvdec/gm107.c b/drivers/gpu/drm/nouveau/nvkm/engine/nvdec/gm107.c
index 8c44ce44a6d7..564f7e8960a2 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/nvdec/gm107.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/nvdec/gm107.c
@@ -23,18 +23,13 @@
static const struct nvkm_falcon_func
gm107_nvdec_flcn = {
+ .disable = gm200_flcn_disable,
+ .enable = gm200_flcn_enable,
+ .reset_pmc = true,
+ .reset_wait_mem_scrubbing = gm200_flcn_reset_wait_mem_scrubbing,
.debug = 0xd00,
- .fbif = 0x600,
- .load_imem = nvkm_falcon_v1_load_imem,
- .load_dmem = nvkm_falcon_v1_load_dmem,
- .read_dmem = nvkm_falcon_v1_read_dmem,
- .bind_context = nvkm_falcon_v1_bind_context,
- .wait_for_halt = nvkm_falcon_v1_wait_for_halt,
- .clear_interrupt = nvkm_falcon_v1_clear_interrupt,
- .set_start_addr = nvkm_falcon_v1_set_start_addr,
- .start = nvkm_falcon_v1_start,
- .enable = nvkm_falcon_v1_enable,
- .disable = nvkm_falcon_v1_disable,
+ .imem_pio = &gm200_flcn_imem_pio,
+ .dmem_pio = &gm200_flcn_dmem_pio,
};
static const struct nvkm_nvdec_func
@@ -59,5 +54,5 @@ int
gm107_nvdec_new(struct nvkm_device *device, enum nvkm_subdev_type type, int inst,
struct nvkm_nvdec **pnvdec)
{
- return nvkm_nvdec_new_(gm107_nvdec_fwif, device, type, inst, pnvdec);
+ return nvkm_nvdec_new_(gm107_nvdec_fwif, device, type, inst, 0, pnvdec);
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/nvdec/priv.h b/drivers/gpu/drm/nouveau/nvkm/engine/nvdec/priv.h
index 0920f6a887e2..61e1f7aaa509 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/nvdec/priv.h
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/nvdec/priv.h
@@ -15,5 +15,5 @@ struct nvkm_nvdec_fwif {
};
int nvkm_nvdec_new_(const struct nvkm_nvdec_fwif *fwif, struct nvkm_device *,
- enum nvkm_subdev_type, int, struct nvkm_nvdec **);
+ enum nvkm_subdev_type, int, u32 addr, struct nvkm_nvdec **);
#endif
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/nvenc/gm107.c b/drivers/gpu/drm/nouveau/nvkm/engine/nvenc/gm107.c
index f44d41bf2034..ad27d8b97569 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/nvenc/gm107.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/nvenc/gm107.c
@@ -24,17 +24,6 @@
static const struct nvkm_falcon_func
gm107_nvenc_flcn = {
- .fbif = 0x800,
- .load_imem = nvkm_falcon_v1_load_imem,
- .load_dmem = nvkm_falcon_v1_load_dmem,
- .read_dmem = nvkm_falcon_v1_read_dmem,
- .bind_context = nvkm_falcon_v1_bind_context,
- .wait_for_halt = nvkm_falcon_v1_wait_for_halt,
- .clear_interrupt = nvkm_falcon_v1_clear_interrupt,
- .set_start_addr = nvkm_falcon_v1_set_start_addr,
- .start = nvkm_falcon_v1_start,
- .enable = nvkm_falcon_v1_enable,
- .disable = nvkm_falcon_v1_disable,
};
static const struct nvkm_nvenc_func
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/sec/g98.c b/drivers/gpu/drm/nouveau/nvkm/engine/sec/g98.c
index 1b87df03c823..c15b2cbf506b 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/sec/g98.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/sec/g98.c
@@ -40,7 +40,7 @@ static const struct nvkm_enum g98_sec_isr_error_name[] = {
};
static void
-g98_sec_intr(struct nvkm_falcon *sec, struct nvkm_fifo_chan *chan)
+g98_sec_intr(struct nvkm_falcon *sec, struct nvkm_chan *chan)
{
struct nvkm_subdev *subdev = &sec->engine.subdev;
struct nvkm_device *device = subdev->device;
@@ -54,9 +54,9 @@ g98_sec_intr(struct nvkm_falcon *sec, struct nvkm_fifo_chan *chan)
nvkm_error(subdev, "DISPATCH_ERROR %04x [%s] ch %d [%010llx %s] "
"subc %d mthd %04x data %08x\n", ssta,
- en ? en->name : "UNKNOWN", chan ? chan->chid : -1,
+ en ? en->name : "UNKNOWN", chan ? chan->id : -1,
chan ? chan->inst->addr : 0,
- chan ? chan->object.client->name : "unknown",
+ chan ? chan->name : "unknown",
subc, mthd, data);
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/sec2/Kbuild b/drivers/gpu/drm/nouveau/nvkm/engine/sec2/Kbuild
index 63cd2be3de08..19feadb1f67b 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/sec2/Kbuild
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/sec2/Kbuild
@@ -3,3 +3,4 @@ nvkm-y += nvkm/engine/sec2/base.o
nvkm-y += nvkm/engine/sec2/gp102.o
nvkm-y += nvkm/engine/sec2/gp108.o
nvkm-y += nvkm/engine/sec2/tu102.o
+nvkm-y += nvkm/engine/sec2/ga102.o
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/sec2/base.c b/drivers/gpu/drm/nouveau/nvkm/engine/sec2/base.c
index 092c6d0b8e01..f2c60da5d1e8 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/sec2/base.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/sec2/base.c
@@ -22,53 +22,99 @@
#include "priv.h"
#include <core/firmware.h>
-#include <subdev/top.h>
+#include <subdev/mc.h>
+#include <subdev/timer.h>
-static void
-nvkm_sec2_recv(struct work_struct *work)
+#include <nvfw/sec2.h>
+
+static int
+nvkm_sec2_finimsg(void *priv, struct nvfw_falcon_msg *hdr)
+{
+ struct nvkm_sec2 *sec2 = priv;
+
+ atomic_set(&sec2->running, 0);
+ return 0;
+}
+
+static int
+nvkm_sec2_fini(struct nvkm_engine *engine, bool suspend)
{
- struct nvkm_sec2 *sec2 = container_of(work, typeof(*sec2), work);
+ struct nvkm_sec2 *sec2 = nvkm_sec2(engine);
+ struct nvkm_subdev *subdev = &sec2->engine.subdev;
+ struct nvkm_falcon *falcon = &sec2->falcon;
+ struct nvkm_falcon_cmdq *cmdq = sec2->cmdq;
+ struct nvfw_falcon_cmd cmd = {
+ .unit_id = sec2->func->unit_unload,
+ .size = sizeof(cmd),
+ };
+ int ret;
- if (!sec2->initmsg_received) {
- int ret = sec2->func->initmsg(sec2);
- if (ret) {
- nvkm_error(&sec2->engine.subdev,
- "error parsing init message: %d\n", ret);
- return;
- }
+ if (!subdev->use.enabled)
+ return 0;
- sec2->initmsg_received = true;
+ if (atomic_read(&sec2->initmsg) == 1) {
+ ret = nvkm_falcon_cmdq_send(cmdq, &cmd, nvkm_sec2_finimsg, sec2,
+ msecs_to_jiffies(1000));
+ WARN_ON(ret);
+
+ nvkm_msec(subdev->device, 2000,
+ if (nvkm_falcon_rd32(falcon, 0x100) & 0x00000010)
+ break;
+ );
}
- nvkm_falcon_msgq_recv(sec2->msgq);
+ nvkm_inth_block(&subdev->inth);
+
+ nvkm_falcon_cmdq_fini(cmdq);
+ falcon->func->disable(falcon);
+ nvkm_falcon_put(falcon, subdev);
+ return 0;
}
-static void
-nvkm_sec2_intr(struct nvkm_engine *engine)
+static int
+nvkm_sec2_init(struct nvkm_engine *engine)
{
struct nvkm_sec2 *sec2 = nvkm_sec2(engine);
- sec2->func->intr(sec2);
+ struct nvkm_subdev *subdev = &sec2->engine.subdev;
+ struct nvkm_falcon *falcon = &sec2->falcon;
+ int ret;
+
+ ret = nvkm_falcon_get(falcon, subdev);
+ if (ret)
+ return ret;
+
+ nvkm_falcon_wr32(falcon, 0x014, 0xffffffff);
+ atomic_set(&sec2->initmsg, 0);
+ atomic_set(&sec2->running, 1);
+ nvkm_inth_allow(&subdev->inth);
+
+ nvkm_falcon_start(falcon);
+ return 0;
}
static int
-nvkm_sec2_fini(struct nvkm_engine *engine, bool suspend)
+nvkm_sec2_oneinit(struct nvkm_engine *engine)
{
struct nvkm_sec2 *sec2 = nvkm_sec2(engine);
-
- flush_work(&sec2->work);
-
- if (suspend) {
- nvkm_falcon_cmdq_fini(sec2->cmdq);
- sec2->initmsg_received = false;
+ struct nvkm_subdev *subdev = &sec2->engine.subdev;
+ struct nvkm_intr *intr = &sec2->engine.subdev.device->mc->intr;
+ enum nvkm_intr_type type = NVKM_INTR_SUBDEV;
+
+ if (sec2->func->intr_vector) {
+ intr = sec2->func->intr_vector(sec2, &type);
+ if (IS_ERR(intr))
+ return PTR_ERR(intr);
}
- return 0;
+ return nvkm_inth_add(intr, type, NVKM_INTR_PRIO_NORMAL, subdev, sec2->func->intr,
+ &subdev->inth);
}
static void *
nvkm_sec2_dtor(struct nvkm_engine *engine)
{
struct nvkm_sec2 *sec2 = nvkm_sec2(engine);
+
nvkm_falcon_msgq_del(&sec2->msgq);
nvkm_falcon_cmdq_del(&sec2->cmdq);
nvkm_falcon_qmgr_del(&sec2->qmgr);
@@ -79,8 +125,9 @@ nvkm_sec2_dtor(struct nvkm_engine *engine)
static const struct nvkm_engine_func
nvkm_sec2 = {
.dtor = nvkm_sec2_dtor,
+ .oneinit = nvkm_sec2_oneinit,
+ .init = nvkm_sec2_init,
.fini = nvkm_sec2_fini,
- .intr = nvkm_sec2_intr,
};
int
@@ -113,6 +160,5 @@ nvkm_sec2_new_(const struct nvkm_sec2_fwif *fwif, struct nvkm_device *device,
(ret = nvkm_falcon_msgq_new(sec2->qmgr, "msgq", &sec2->msgq)))
return ret;
- INIT_WORK(&sec2->work, nvkm_sec2_recv);
return 0;
};
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/sec2/ga102.c b/drivers/gpu/drm/nouveau/nvkm/engine/sec2/ga102.c
new file mode 100644
index 000000000000..945abb8156d7
--- /dev/null
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/sec2/ga102.c
@@ -0,0 +1,197 @@
+/*
+ * Copyright 2021 Red Hat Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ */
+#include "priv.h"
+#include <subdev/acr.h>
+#include <subdev/vfn.h>
+
+#include <nvfw/flcn.h>
+#include <nvfw/sec2.h>
+
+static int
+ga102_sec2_initmsg(struct nvkm_sec2 *sec2)
+{
+ struct nv_sec2_init_msg_v1 msg;
+ int ret, i;
+
+ ret = nvkm_falcon_msgq_recv_initmsg(sec2->msgq, &msg, sizeof(msg));
+ if (ret)
+ return ret;
+
+ if (msg.hdr.unit_id != NV_SEC2_UNIT_INIT ||
+ msg.msg_type != NV_SEC2_INIT_MSG_INIT)
+ return -EINVAL;
+
+ for (i = 0; i < ARRAY_SIZE(msg.queue_info); i++) {
+ if (msg.queue_info[i].id == NV_SEC2_INIT_MSG_QUEUE_ID_MSGQ) {
+ nvkm_falcon_msgq_init(sec2->msgq, msg.queue_info[i].index,
+ msg.queue_info[i].offset,
+ msg.queue_info[i].size);
+ } else {
+ nvkm_falcon_cmdq_init(sec2->cmdq, msg.queue_info[i].index,
+ msg.queue_info[i].offset,
+ msg.queue_info[i].size);
+ }
+ }
+
+ return 0;
+}
+
+static struct nvkm_intr *
+ga102_sec2_intr_vector(struct nvkm_sec2 *sec2, enum nvkm_intr_type *pvector)
+{
+ struct nvkm_device *device = sec2->engine.subdev.device;
+ struct nvkm_falcon *falcon = &sec2->falcon;
+ int ret;
+
+ ret = ga102_flcn_select(falcon);
+ if (ret)
+ return ERR_PTR(ret);
+
+ *pvector = nvkm_rd32(device, 0x8403e0) & 0x000000ff;
+ return &device->vfn->intr;
+}
+
+static int
+ga102_sec2_acr_bootstrap_falcon_callback(void *priv, struct nvfw_falcon_msg *hdr)
+{
+ struct nv_sec2_acr_bootstrap_falcon_msg_v1 *msg =
+ container_of(hdr, typeof(*msg), msg.hdr);
+ struct nvkm_subdev *subdev = priv;
+ const char *name = nvkm_acr_lsf_id(msg->falcon_id);
+
+ if (msg->error_code) {
+ nvkm_error(subdev, "ACR_BOOTSTRAP_FALCON failed for falcon %d [%s]: %08x %08x\n",
+ msg->falcon_id, name, msg->error_code, msg->unkn08);
+ return -EINVAL;
+ }
+
+ nvkm_debug(subdev, "%s booted\n", name);
+ return 0;
+}
+
+static int
+ga102_sec2_acr_bootstrap_falcon(struct nvkm_falcon *falcon, enum nvkm_acr_lsf_id id)
+{
+ struct nvkm_sec2 *sec2 = container_of(falcon, typeof(*sec2), falcon);
+ struct nv_sec2_acr_bootstrap_falcon_cmd_v1 cmd = {
+ .cmd.hdr.unit_id = sec2->func->unit_acr,
+ .cmd.hdr.size = sizeof(cmd),
+ .cmd.cmd_type = NV_SEC2_ACR_CMD_BOOTSTRAP_FALCON,
+ .flags = NV_SEC2_ACR_BOOTSTRAP_FALCON_FLAGS_RESET_YES,
+ .falcon_id = id,
+ };
+
+ return nvkm_falcon_cmdq_send(sec2->cmdq, &cmd.cmd.hdr,
+ ga102_sec2_acr_bootstrap_falcon_callback,
+ &sec2->engine.subdev,
+ msecs_to_jiffies(1000));
+}
+
+static const struct nvkm_acr_lsf_func
+ga102_sec2_acr_0 = {
+ .bld_size = sizeof(struct flcn_bl_dmem_desc_v2),
+ .bld_write = gp102_sec2_acr_bld_write_1,
+ .bld_patch = gp102_sec2_acr_bld_patch_1,
+ .bootstrap_falcons = BIT_ULL(NVKM_ACR_LSF_FECS) |
+ BIT_ULL(NVKM_ACR_LSF_GPCCS) |
+ BIT_ULL(NVKM_ACR_LSF_SEC2),
+ .bootstrap_falcon = ga102_sec2_acr_bootstrap_falcon,
+};
+
+static const struct nvkm_falcon_func
+ga102_sec2_flcn = {
+ .disable = gm200_flcn_disable,
+ .enable = gm200_flcn_enable,
+ .select = ga102_flcn_select,
+ .addr2 = 0x1000,
+ .reset_pmc = true,
+ .reset_eng = gp102_flcn_reset_eng,
+ .reset_prep = ga102_flcn_reset_prep,
+ .reset_wait_mem_scrubbing = ga102_flcn_reset_wait_mem_scrubbing,
+ .imem_dma = &ga102_flcn_dma,
+ .dmem_pio = &gm200_flcn_dmem_pio,
+ .dmem_dma = &ga102_flcn_dma,
+ .emem_addr = 0x01000000,
+ .emem_pio = &gp102_flcn_emem_pio,
+ .start = nvkm_falcon_v1_start,
+ .cmdq = { 0xc00, 0xc04, 8 },
+ .msgq = { 0xc80, 0xc84, 8 },
+};
+
+static const struct nvkm_sec2_func
+ga102_sec2 = {
+ .flcn = &ga102_sec2_flcn,
+ .intr_vector = ga102_sec2_intr_vector,
+ .intr = gp102_sec2_intr,
+ .initmsg = ga102_sec2_initmsg,
+ .unit_acr = NV_SEC2_UNIT_V2_ACR,
+ .unit_unload = NV_SEC2_UNIT_V2_UNLOAD,
+};
+
+MODULE_FIRMWARE("nvidia/ga102/sec2/desc.bin");
+MODULE_FIRMWARE("nvidia/ga102/sec2/image.bin");
+MODULE_FIRMWARE("nvidia/ga102/sec2/sig.bin");
+MODULE_FIRMWARE("nvidia/ga102/sec2/hs_bl_sig.bin");
+
+MODULE_FIRMWARE("nvidia/ga103/sec2/desc.bin");
+MODULE_FIRMWARE("nvidia/ga103/sec2/image.bin");
+MODULE_FIRMWARE("nvidia/ga103/sec2/sig.bin");
+MODULE_FIRMWARE("nvidia/ga103/sec2/hs_bl_sig.bin");
+
+MODULE_FIRMWARE("nvidia/ga104/sec2/desc.bin");
+MODULE_FIRMWARE("nvidia/ga104/sec2/image.bin");
+MODULE_FIRMWARE("nvidia/ga104/sec2/sig.bin");
+MODULE_FIRMWARE("nvidia/ga104/sec2/hs_bl_sig.bin");
+
+MODULE_FIRMWARE("nvidia/ga106/sec2/desc.bin");
+MODULE_FIRMWARE("nvidia/ga106/sec2/image.bin");
+MODULE_FIRMWARE("nvidia/ga106/sec2/sig.bin");
+MODULE_FIRMWARE("nvidia/ga106/sec2/hs_bl_sig.bin");
+
+MODULE_FIRMWARE("nvidia/ga107/sec2/desc.bin");
+MODULE_FIRMWARE("nvidia/ga107/sec2/image.bin");
+MODULE_FIRMWARE("nvidia/ga107/sec2/sig.bin");
+MODULE_FIRMWARE("nvidia/ga107/sec2/hs_bl_sig.bin");
+
+static int
+ga102_sec2_load(struct nvkm_sec2 *sec2, int ver,
+ const struct nvkm_sec2_fwif *fwif)
+{
+ return nvkm_acr_lsfw_load_sig_image_desc_v2(&sec2->engine.subdev, &sec2->falcon,
+ NVKM_ACR_LSF_SEC2, "sec2/", ver, fwif->acr);
+}
+
+static const struct nvkm_sec2_fwif
+ga102_sec2_fwif[] = {
+ { 0, ga102_sec2_load, &ga102_sec2, &ga102_sec2_acr_0 },
+ { -1, gp102_sec2_nofw, &ga102_sec2 }
+};
+
+int
+ga102_sec2_new(struct nvkm_device *device, enum nvkm_subdev_type type, int inst,
+ struct nvkm_sec2 **psec2)
+{
+ /* TOP info wasn't updated on Turing to reflect the PRI
+ * address change for some reason. We override it here.
+ */
+ return nvkm_sec2_new_(ga102_sec2_fwif, device, type, inst, 0x840000, psec2);
+}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/sec2/gp102.c b/drivers/gpu/drm/nouveau/nvkm/engine/sec2/gp102.c
index 44e39f5743d5..c64013d10500 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/sec2/gp102.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/sec2/gp102.c
@@ -74,16 +74,6 @@ gp102_sec2_acr_bootstrap_falcon(struct nvkm_falcon *falcon,
msecs_to_jiffies(1000));
}
-static int
-gp102_sec2_acr_boot(struct nvkm_falcon *falcon)
-{
- struct nv_sec2_args args = {};
- nvkm_falcon_load_dmem(falcon, &args,
- falcon->func->emem_addr, sizeof(args), 0);
- nvkm_falcon_start(falcon);
- return 0;
-}
-
static void
gp102_sec2_acr_bld_patch(struct nvkm_acr *acr, u32 bld, s64 adjust)
{
@@ -122,7 +112,6 @@ gp102_sec2_acr_0 = {
.bld_size = sizeof(struct loader_config_v1),
.bld_write = gp102_sec2_acr_bld_write,
.bld_patch = gp102_sec2_acr_bld_patch,
- .boot = gp102_sec2_acr_boot,
.bootstrap_falcons = BIT_ULL(NVKM_ACR_LSF_FECS) |
BIT_ULL(NVKM_ACR_LSF_GPCCS) |
BIT_ULL(NVKM_ACR_LSF_SEC2),
@@ -160,89 +149,68 @@ gp102_sec2_initmsg(struct nvkm_sec2 *sec2)
return 0;
}
-void
-gp102_sec2_intr(struct nvkm_sec2 *sec2)
+irqreturn_t
+gp102_sec2_intr(struct nvkm_inth *inth)
{
+ struct nvkm_sec2 *sec2 = container_of(inth, typeof(*sec2), engine.subdev.inth);
struct nvkm_subdev *subdev = &sec2->engine.subdev;
struct nvkm_falcon *falcon = &sec2->falcon;
u32 disp = nvkm_falcon_rd32(falcon, 0x01c);
u32 intr = nvkm_falcon_rd32(falcon, 0x008) & disp & ~(disp >> 16);
if (intr & 0x00000040) {
- schedule_work(&sec2->work);
+ if (unlikely(atomic_read(&sec2->initmsg) == 0)) {
+ int ret = sec2->func->initmsg(sec2);
+
+ if (ret)
+ nvkm_error(subdev, "error parsing init message: %d\n", ret);
+
+ atomic_set(&sec2->initmsg, ret ?: 1);
+ }
+
+ if (atomic_read(&sec2->initmsg) > 0) {
+ if (!nvkm_falcon_msgq_empty(sec2->msgq))
+ nvkm_falcon_msgq_recv(sec2->msgq);
+ }
+
nvkm_falcon_wr32(falcon, 0x004, 0x00000040);
intr &= ~0x00000040;
}
+ if (intr & 0x00000010) {
+ if (atomic_read(&sec2->running)) {
+ FLCN_ERR(falcon, "halted");
+ gm200_flcn_tracepc(falcon);
+ }
+
+ nvkm_falcon_wr32(falcon, 0x004, 0x00000010);
+ intr &= ~0x00000010;
+ }
+
if (intr) {
nvkm_error(subdev, "unhandled intr %08x\n", intr);
nvkm_falcon_wr32(falcon, 0x004, intr);
}
-}
-int
-gp102_sec2_flcn_enable(struct nvkm_falcon *falcon)
-{
- nvkm_falcon_mask(falcon, 0x3c0, 0x00000001, 0x00000001);
- udelay(10);
- nvkm_falcon_mask(falcon, 0x3c0, 0x00000001, 0x00000000);
- return nvkm_falcon_v1_enable(falcon);
-}
-
-void
-gp102_sec2_flcn_bind_context(struct nvkm_falcon *falcon,
- struct nvkm_memory *ctx)
-{
- struct nvkm_device *device = falcon->owner->device;
-
- nvkm_falcon_v1_bind_context(falcon, ctx);
- if (!ctx)
- return;
-
- /* Not sure if this is a WAR for a HW issue, or some additional
- * programming sequence that's needed to properly complete the
- * context switch we trigger above.
- *
- * Fixes unreliability of booting the SEC2 RTOS on Quadro P620,
- * particularly when resuming from suspend.
- *
- * Also removes the need for an odd workaround where we needed
- * to program SEC2's FALCON_CPUCTL_ALIAS_STARTCPU twice before
- * the SEC2 RTOS would begin executing.
- */
- nvkm_msec(device, 10,
- u32 irqstat = nvkm_falcon_rd32(falcon, 0x008);
- u32 flcn0dc = nvkm_falcon_rd32(falcon, 0x0dc);
- if ((irqstat & 0x00000008) &&
- (flcn0dc & 0x00007000) == 0x00005000)
- break;
- );
-
- nvkm_falcon_mask(falcon, 0x004, 0x00000008, 0x00000008);
- nvkm_falcon_mask(falcon, 0x058, 0x00000002, 0x00000002);
-
- nvkm_msec(device, 10,
- u32 flcn0dc = nvkm_falcon_rd32(falcon, 0x0dc);
- if ((flcn0dc & 0x00007000) == 0x00000000)
- break;
- );
+ return IRQ_HANDLED;
}
static const struct nvkm_falcon_func
gp102_sec2_flcn = {
+ .disable = gm200_flcn_disable,
+ .enable = gm200_flcn_enable,
+ .reset_pmc = true,
+ .reset_eng = gp102_flcn_reset_eng,
+ .reset_wait_mem_scrubbing = gm200_flcn_reset_wait_mem_scrubbing,
.debug = 0x408,
- .fbif = 0x600,
- .load_imem = nvkm_falcon_v1_load_imem,
- .load_dmem = nvkm_falcon_v1_load_dmem,
- .read_dmem = nvkm_falcon_v1_read_dmem,
+ .bind_inst = gm200_flcn_bind_inst,
+ .bind_stat = gm200_flcn_bind_stat,
+ .bind_intr = true,
+ .imem_pio = &gm200_flcn_imem_pio,
+ .dmem_pio = &gm200_flcn_dmem_pio,
.emem_addr = 0x01000000,
- .bind_context = gp102_sec2_flcn_bind_context,
- .wait_for_halt = nvkm_falcon_v1_wait_for_halt,
- .clear_interrupt = nvkm_falcon_v1_clear_interrupt,
- .set_start_addr = nvkm_falcon_v1_set_start_addr,
+ .emem_pio = &gp102_flcn_emem_pio,
.start = nvkm_falcon_v1_start,
- .enable = gp102_sec2_flcn_enable,
- .disable = nvkm_falcon_v1_disable,
.cmdq = { 0xa00, 0xa04, 8 },
.msgq = { 0xa30, 0xa34, 8 },
};
@@ -250,6 +218,7 @@ gp102_sec2_flcn = {
const struct nvkm_sec2_func
gp102_sec2 = {
.flcn = &gp102_sec2_flcn,
+ .unit_unload = NV_SEC2_UNIT_UNLOAD,
.unit_acr = NV_SEC2_UNIT_ACR,
.intr = gp102_sec2_intr,
.initmsg = gp102_sec2_initmsg,
@@ -268,7 +237,7 @@ MODULE_FIRMWARE("nvidia/gp107/sec2/desc.bin");
MODULE_FIRMWARE("nvidia/gp107/sec2/image.bin");
MODULE_FIRMWARE("nvidia/gp107/sec2/sig.bin");
-static void
+void
gp102_sec2_acr_bld_patch_1(struct nvkm_acr *acr, u32 bld, s64 adjust)
{
struct flcn_bl_dmem_desc_v2 hdr;
@@ -279,7 +248,7 @@ gp102_sec2_acr_bld_patch_1(struct nvkm_acr *acr, u32 bld, s64 adjust)
flcn_bl_dmem_desc_v2_dump(&acr->subdev, &hdr);
}
-static void
+void
gp102_sec2_acr_bld_write_1(struct nvkm_acr *acr, u32 bld,
struct nvkm_acr_lsfw *lsfw)
{
@@ -304,7 +273,6 @@ gp102_sec2_acr_1 = {
.bld_size = sizeof(struct flcn_bl_dmem_desc_v2),
.bld_write = gp102_sec2_acr_bld_write_1,
.bld_patch = gp102_sec2_acr_bld_patch_1,
- .boot = gp102_sec2_acr_boot,
.bootstrap_falcons = BIT_ULL(NVKM_ACR_LSF_FECS) |
BIT_ULL(NVKM_ACR_LSF_GPCCS) |
BIT_ULL(NVKM_ACR_LSF_SEC2),
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/sec2/priv.h b/drivers/gpu/drm/nouveau/nvkm/engine/sec2/priv.h
index af19229e885d..172d2705c199 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/sec2/priv.h
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/sec2/priv.h
@@ -2,15 +2,18 @@
#ifndef __NVKM_SEC2_PRIV_H__
#define __NVKM_SEC2_PRIV_H__
#include <engine/sec2.h>
+struct nvkm_acr_lsfw;
struct nvkm_sec2_func {
const struct nvkm_falcon_func *flcn;
+ u8 unit_unload;
u8 unit_acr;
- void (*intr)(struct nvkm_sec2 *);
+ struct nvkm_intr *(*intr_vector)(struct nvkm_sec2 *, enum nvkm_intr_type *);
+ irqreturn_t (*intr)(struct nvkm_inth *);
int (*initmsg)(struct nvkm_sec2 *);
};
-void gp102_sec2_intr(struct nvkm_sec2 *);
+irqreturn_t gp102_sec2_intr(struct nvkm_inth *);
int gp102_sec2_initmsg(struct nvkm_sec2 *);
struct nvkm_sec2_fwif {
@@ -24,6 +27,8 @@ int gp102_sec2_nofw(struct nvkm_sec2 *, int, const struct nvkm_sec2_fwif *);
int gp102_sec2_load(struct nvkm_sec2 *, int, const struct nvkm_sec2_fwif *);
extern const struct nvkm_sec2_func gp102_sec2;
extern const struct nvkm_acr_lsf_func gp102_sec2_acr_1;
+void gp102_sec2_acr_bld_write_1(struct nvkm_acr *, u32, struct nvkm_acr_lsfw *);
+void gp102_sec2_acr_bld_patch_1(struct nvkm_acr *, u32, s64);
int nvkm_sec2_new_(const struct nvkm_sec2_fwif *, struct nvkm_device *, enum nvkm_subdev_type,
int, u32 addr, struct nvkm_sec2 **);
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/sec2/tu102.c b/drivers/gpu/drm/nouveau/nvkm/engine/sec2/tu102.c
index f3faeb705575..0afc4b2fa529 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/sec2/tu102.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/sec2/tu102.c
@@ -22,21 +22,24 @@
#include "priv.h"
#include <subdev/acr.h>
+#include <nvfw/sec2.h>
+
static const struct nvkm_falcon_func
tu102_sec2_flcn = {
+ .disable = gm200_flcn_disable,
+ .enable = gm200_flcn_enable,
+ .reset_pmc = true,
+ .reset_eng = gp102_flcn_reset_eng,
+ .reset_wait_mem_scrubbing = gm200_flcn_reset_wait_mem_scrubbing,
.debug = 0x408,
- .fbif = 0x600,
- .load_imem = nvkm_falcon_v1_load_imem,
- .load_dmem = nvkm_falcon_v1_load_dmem,
- .read_dmem = nvkm_falcon_v1_read_dmem,
+ .bind_inst = gm200_flcn_bind_inst,
+ .bind_stat = gm200_flcn_bind_stat,
+ .bind_intr = true,
+ .imem_pio = &gm200_flcn_imem_pio,
+ .dmem_pio = &gm200_flcn_dmem_pio,
.emem_addr = 0x01000000,
- .bind_context = gp102_sec2_flcn_bind_context,
- .wait_for_halt = nvkm_falcon_v1_wait_for_halt,
- .clear_interrupt = nvkm_falcon_v1_clear_interrupt,
- .set_start_addr = nvkm_falcon_v1_set_start_addr,
+ .emem_pio = &gp102_flcn_emem_pio,
.start = nvkm_falcon_v1_start,
- .enable = nvkm_falcon_v1_enable,
- .disable = nvkm_falcon_v1_disable,
.cmdq = { 0xc00, 0xc04, 8 },
.msgq = { 0xc80, 0xc84, 8 },
};
@@ -44,7 +47,8 @@ tu102_sec2_flcn = {
static const struct nvkm_sec2_func
tu102_sec2 = {
.flcn = &tu102_sec2_flcn,
- .unit_acr = 0x07,
+ .unit_unload = NV_SEC2_UNIT_V2_UNLOAD,
+ .unit_acr = NV_SEC2_UNIT_V2_ACR,
.intr = gp102_sec2_intr,
.initmsg = gp102_sec2_initmsg,
};
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/sw/base.c b/drivers/gpu/drm/nouveau/nvkm/engine/sw/base.c
index 14871d0bd746..a9d464db6974 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/sw/base.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/sw/base.c
@@ -35,7 +35,7 @@ nvkm_sw_mthd(struct nvkm_sw *sw, int chid, int subc, u32 mthd, u32 data)
spin_lock_irqsave(&sw->engine.lock, flags);
list_for_each_entry(chan, &sw->chan, head) {
- if (chan->fifo->chid == chid) {
+ if (chan->fifo->id == chid) {
handled = nvkm_sw_chan_mthd(chan, subc, mthd, data);
list_del(&chan->head);
list_add(&chan->head, &sw->chan);
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/sw/chan.c b/drivers/gpu/drm/nouveau/nvkm/engine/sw/chan.c
index f28967065639..834b8cbed51d 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/sw/chan.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/sw/chan.c
@@ -23,7 +23,6 @@
*/
#include "chan.h"
-#include <core/notify.h>
#include <engine/fifo.h>
#include <nvif/event.h>
@@ -36,7 +35,7 @@ nvkm_sw_chan_mthd(struct nvkm_sw_chan *chan, int subc, u32 mthd, u32 data)
case 0x0000:
return true;
case 0x0500:
- nvkm_event_send(&chan->event, 1, 0, NULL, 0);
+ nvkm_event_ntfy(&chan->event, 0, NVKM_SW_CHAN_EVENT_PAGE_FLIP);
return true;
default:
if (chan->func->mthd)
@@ -46,27 +45,8 @@ nvkm_sw_chan_mthd(struct nvkm_sw_chan *chan, int subc, u32 mthd, u32 data)
return false;
}
-static int
-nvkm_sw_chan_event_ctor(struct nvkm_object *object, void *data, u32 size,
- struct nvkm_notify *notify)
-{
- union {
- struct nvif_notify_uevent_req none;
- } *req = data;
- int ret = -ENOSYS;
-
- if (!(ret = nvif_unvers(ret, &data, &size, req->none))) {
- notify->size = sizeof(struct nvif_notify_uevent_rep);
- notify->types = 1;
- notify->index = 0;
- }
-
- return ret;
-}
-
static const struct nvkm_event_func
nvkm_sw_chan_event = {
- .ctor = nvkm_sw_chan_event_ctor,
};
static void *
@@ -107,5 +87,5 @@ nvkm_sw_chan_ctor(const struct nvkm_sw_chan_func *func, struct nvkm_sw *sw,
list_add(&chan->head, &sw->chan);
spin_unlock_irqrestore(&sw->engine.lock, flags);
- return nvkm_event_init(&nvkm_sw_chan_event, 1, 1, &chan->event);
+ return nvkm_event_init(&nvkm_sw_chan_event, &sw->engine.subdev, 1, 1, &chan->event);
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/sw/chan.h b/drivers/gpu/drm/nouveau/nvkm/engine/sw/chan.h
index 32de53427aa4..67b2e5ea93d9 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/sw/chan.h
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/sw/chan.h
@@ -14,6 +14,7 @@ struct nvkm_sw_chan {
struct nvkm_fifo_chan *fifo;
struct list_head head;
+#define NVKM_SW_CHAN_EVENT_PAGE_FLIP BIT(0)
struct nvkm_event event;
};
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/sw/gf100.c b/drivers/gpu/drm/nouveau/nvkm/engine/sw/gf100.c
index 55abf839f29d..c3cf6f2ff86c 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/sw/gf100.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/sw/gf100.c
@@ -36,10 +36,10 @@
******************************************************************************/
static int
-gf100_sw_chan_vblsem_release(struct nvkm_notify *notify)
+gf100_sw_chan_vblsem_release(struct nvkm_event_ntfy *notify, u32 bits)
{
struct nv50_sw_chan *chan =
- container_of(notify, typeof(*chan), vblank.notify[notify->index]);
+ container_of(notify, typeof(*chan), vblank.notify[notify->id]);
struct nvkm_sw *sw = chan->base.sw;
struct nvkm_device *device = sw->engine.subdev.device;
u32 inst = chan->base.fifo->inst->addr >> 12;
@@ -50,7 +50,7 @@ gf100_sw_chan_vblsem_release(struct nvkm_notify *notify)
nvkm_wr32(device, 0x060010, lower_32_bits(chan->vblank.offset));
nvkm_wr32(device, 0x060014, chan->vblank.value);
- return NVKM_NOTIFY_DROP;
+ return NVKM_EVENT_DROP;
}
static bool
@@ -73,7 +73,7 @@ gf100_sw_chan_mthd(struct nvkm_sw_chan *base, int subc, u32 mthd, u32 data)
return true;
case 0x040c:
if (data < device->disp->vblank.index_nr) {
- nvkm_notify_get(&chan->vblank.notify[data]);
+ nvkm_event_ntfy_allow(&chan->vblank.notify[data]);
return true;
}
break;
@@ -120,16 +120,8 @@ gf100_sw_chan_new(struct nvkm_sw *sw, struct nvkm_fifo_chan *fifoch,
return ret;
for (i = 0; disp && i < disp->vblank.index_nr; i++) {
- ret = nvkm_notify_init(NULL, &disp->vblank,
- gf100_sw_chan_vblsem_release, false,
- &(struct nvif_notify_head_req_v0) {
- .head = i,
- },
- sizeof(struct nvif_notify_head_req_v0),
- sizeof(struct nvif_notify_head_rep_v0),
- &chan->vblank.notify[i]);
- if (ret)
- return ret;
+ nvkm_event_ntfy_add(&disp->vblank, i, NVKM_DISP_HEAD_EVENT_VBLANK, true,
+ gf100_sw_chan_vblsem_release, &chan->vblank.notify[i]);
}
return 0;
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/sw/nv50.c b/drivers/gpu/drm/nouveau/nvkm/engine/sw/nv50.c
index 1fdd094c8b7e..9d7a9b7d5be3 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/sw/nv50.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/sw/nv50.c
@@ -36,10 +36,10 @@
******************************************************************************/
static int
-nv50_sw_chan_vblsem_release(struct nvkm_notify *notify)
+nv50_sw_chan_vblsem_release(struct nvkm_event_ntfy *notify, u32 bits)
{
struct nv50_sw_chan *chan =
- container_of(notify, typeof(*chan), vblank.notify[notify->index]);
+ container_of(notify, typeof(*chan), vblank.notify[notify->id]);
struct nvkm_sw *sw = chan->base.sw;
struct nvkm_device *device = sw->engine.subdev.device;
@@ -55,7 +55,7 @@ nv50_sw_chan_vblsem_release(struct nvkm_notify *notify)
nvkm_wr32(device, 0x060014, chan->vblank.value);
}
- return NVKM_NOTIFY_DROP;
+ return NVKM_EVENT_DROP;
}
static bool
@@ -70,7 +70,7 @@ nv50_sw_chan_mthd(struct nvkm_sw_chan *base, int subc, u32 mthd, u32 data)
case 0x0404: chan->vblank.value = data; return true;
case 0x0408:
if (data < device->disp->vblank.index_nr) {
- nvkm_notify_get(&chan->vblank.notify[data]);
+ nvkm_event_ntfy_allow(&chan->vblank.notify[data]);
return true;
}
break;
@@ -85,8 +85,10 @@ nv50_sw_chan_dtor(struct nvkm_sw_chan *base)
{
struct nv50_sw_chan *chan = nv50_sw_chan(base);
int i;
+
for (i = 0; i < ARRAY_SIZE(chan->vblank.notify); i++)
- nvkm_notify_fini(&chan->vblank.notify[i]);
+ nvkm_event_ntfy_del(&chan->vblank.notify[i]);
+
return chan;
}
@@ -113,16 +115,8 @@ nv50_sw_chan_new(struct nvkm_sw *sw, struct nvkm_fifo_chan *fifoch,
return ret;
for (i = 0; disp && i < disp->vblank.index_nr; i++) {
- ret = nvkm_notify_init(NULL, &disp->vblank,
- nv50_sw_chan_vblsem_release, false,
- &(struct nvif_notify_head_req_v0) {
- .head = i,
- },
- sizeof(struct nvif_notify_head_req_v0),
- sizeof(struct nvif_notify_head_rep_v0),
- &chan->vblank.notify[i]);
- if (ret)
- return ret;
+ nvkm_event_ntfy_add(&disp->vblank, i, NVKM_DISP_HEAD_EVENT_VBLANK, true,
+ nv50_sw_chan_vblsem_release, &chan->vblank.notify[i]);
}
return 0;
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/sw/nv50.h b/drivers/gpu/drm/nouveau/nvkm/engine/sw/nv50.h
index 6d364d7b406a..b42289ce8826 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/sw/nv50.h
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/sw/nv50.h
@@ -5,12 +5,12 @@
#include "priv.h"
#include "chan.h"
#include "nvsw.h"
-#include <core/notify.h>
+#include <core/event.h>
struct nv50_sw_chan {
struct nvkm_sw_chan base;
struct {
- struct nvkm_notify notify[4];
+ struct nvkm_event_ntfy notify[4];
u32 ctxdma;
u64 offset;
u32 value;
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/sw/nvsw.c b/drivers/gpu/drm/nouveau/nvkm/engine/sw/nvsw.c
index 33dd03fff3c4..f5affa1c8f34 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/sw/nvsw.c
+++ b/drivers/gpu/drm/nouveau/nvkm/engine/sw/nvsw.c
@@ -27,33 +27,34 @@
#include <nvif/if0004.h>
static int
-nvkm_nvsw_mthd_(struct nvkm_object *object, u32 mthd, void *data, u32 size)
+nvkm_nvsw_uevent(struct nvkm_object *object, void *argv, u32 argc, struct nvkm_uevent *uevent)
{
- struct nvkm_nvsw *nvsw = nvkm_nvsw(object);
- if (nvsw->func->mthd)
- return nvsw->func->mthd(nvsw, mthd, data, size);
- return -ENODEV;
+ union nv04_nvsw_event_args *args = argv;
+
+ if (!uevent)
+ return 0;
+ if (argc != sizeof(args->vn))
+ return -ENOSYS;
+
+ return nvkm_uevent_add(uevent, &nvkm_nvsw(object)->chan->event, 0,
+ NVKM_SW_CHAN_EVENT_PAGE_FLIP, NULL);
}
static int
-nvkm_nvsw_ntfy_(struct nvkm_object *object, u32 mthd,
- struct nvkm_event **pevent)
+nvkm_nvsw_mthd(struct nvkm_object *object, u32 mthd, void *data, u32 size)
{
struct nvkm_nvsw *nvsw = nvkm_nvsw(object);
- switch (mthd) {
- case NV04_NVSW_NTFY_UEVENT:
- *pevent = &nvsw->chan->event;
- return 0;
- default:
- break;
- }
- return -EINVAL;
+
+ if (nvsw->func->mthd)
+ return nvsw->func->mthd(nvsw, mthd, data, size);
+
+ return -ENODEV;
}
static const struct nvkm_object_func
nvkm_nvsw_ = {
- .mthd = nvkm_nvsw_mthd_,
- .ntfy = nvkm_nvsw_ntfy_,
+ .mthd = nvkm_nvsw_mthd,
+ .uevent = nvkm_nvsw_uevent,
};
int
diff --git a/drivers/gpu/drm/nouveau/nvkm/falcon/Kbuild b/drivers/gpu/drm/nouveau/nvkm/falcon/Kbuild
index d79d783904ee..9ffe7b921ccb 100644
--- a/drivers/gpu/drm/nouveau/nvkm/falcon/Kbuild
+++ b/drivers/gpu/drm/nouveau/nvkm/falcon/Kbuild
@@ -1,6 +1,12 @@
# SPDX-License-Identifier: MIT
nvkm-y += nvkm/falcon/base.o
nvkm-y += nvkm/falcon/cmdq.o
+nvkm-y += nvkm/falcon/fw.o
nvkm-y += nvkm/falcon/msgq.o
nvkm-y += nvkm/falcon/qmgr.o
nvkm-y += nvkm/falcon/v1.o
+
+nvkm-y += nvkm/falcon/gm200.o
+nvkm-y += nvkm/falcon/gp102.o
+nvkm-y += nvkm/falcon/ga100.o
+nvkm-y += nvkm/falcon/ga102.o
diff --git a/drivers/gpu/drm/nouveau/nvkm/falcon/base.c b/drivers/gpu/drm/nouveau/nvkm/falcon/base.c
index f3f90c1063dd..235149f73a69 100644
--- a/drivers/gpu/drm/nouveau/nvkm/falcon/base.c
+++ b/drivers/gpu/drm/nouveau/nvkm/falcon/base.c
@@ -22,119 +22,217 @@
#include "priv.h"
#include <subdev/mc.h>
+#include <subdev/timer.h>
#include <subdev/top.h>
-void
-nvkm_falcon_load_imem(struct nvkm_falcon *falcon, void *data, u32 start,
- u32 size, u16 tag, u8 port, bool secure)
+static const struct nvkm_falcon_func_dma *
+nvkm_falcon_dma(struct nvkm_falcon *falcon, enum nvkm_falcon_mem *mem_type, u32 *mem_base)
{
- if (secure && !falcon->secret) {
- nvkm_warn(falcon->user,
- "writing with secure tag on a non-secure falcon!\n");
- return;
+ switch (*mem_type) {
+ case IMEM: return falcon->func->imem_dma;
+ case DMEM: return falcon->func->dmem_dma;
+ default:
+ return NULL;
}
-
- falcon->func->load_imem(falcon, data, start, size, tag, port,
- secure);
}
-void
-nvkm_falcon_load_dmem(struct nvkm_falcon *falcon, void *data, u32 start,
- u32 size, u8 port)
+int
+nvkm_falcon_dma_wr(struct nvkm_falcon *falcon, const u8 *img, u64 dma_addr, u32 dma_base,
+ enum nvkm_falcon_mem mem_type, u32 mem_base, int len, bool sec)
{
- mutex_lock(&falcon->dmem_mutex);
-
- falcon->func->load_dmem(falcon, data, start, size, port);
+ const struct nvkm_falcon_func_dma *dma = nvkm_falcon_dma(falcon, &mem_type, &mem_base);
+ const char *type = nvkm_falcon_mem(mem_type);
+ const int dmalen = 256;
+ u32 dma_start = 0;
+ u32 dst, src, cmd;
+ int ret, i;
+
+ if (WARN_ON(!dma->xfer))
+ return -EINVAL;
+
+ if (mem_type == DMEM) {
+ dma_start = dma_base;
+ dma_addr += dma_base;
+ }
- mutex_unlock(&falcon->dmem_mutex);
-}
+ FLCN_DBG(falcon, "%s %08x <- %08x bytes at %08x (%010llx %08x)",
+ type, mem_base, len, dma_base, dma_addr - dma_base, dma_start);
+ if (WARN_ON(!len || (len & (dmalen - 1))))
+ return -EINVAL;
-void
-nvkm_falcon_read_dmem(struct nvkm_falcon *falcon, u32 start, u32 size, u8 port,
- void *data)
-{
- mutex_lock(&falcon->dmem_mutex);
+ ret = dma->init(falcon, dma_addr, dmalen, mem_type, sec, &cmd);
+ if (ret)
+ return ret;
- falcon->func->read_dmem(falcon, start, size, port, data);
+ dst = mem_base;
+ src = dma_base;
+ if (len) {
+ while (len >= dmalen) {
+ dma->xfer(falcon, dst, src - dma_start, cmd);
+
+ if (img && nvkm_printk_ok(falcon->owner, falcon->user, NV_DBG_TRACE)) {
+ for (i = 0; i < dmalen; i += 4, mem_base += 4) {
+ const int w = 8, x = (i / 4) % w;
+
+ if (x == 0)
+ printk(KERN_INFO "%s %08x <-", type, mem_base);
+ printk(KERN_CONT " %08x", *(u32 *)(img + src + i));
+ if (x == (w - 1) || ((i + 4) == dmalen))
+ printk(KERN_CONT " <- %08x+%08x", dma_base,
+ src + i - dma_base - (x * 4));
+ if (i == (7 * 4))
+ printk(KERN_CONT " *");
+ }
+ }
+
+ if (nvkm_msec(falcon->owner->device, 2000,
+ if (dma->done(falcon))
+ break;
+ ) < 0)
+ return -ETIMEDOUT;
+
+ src += dmalen;
+ dst += dmalen;
+ len -= dmalen;
+ }
+ WARN_ON(len);
+ }
- mutex_unlock(&falcon->dmem_mutex);
+ return 0;
}
-void
-nvkm_falcon_bind_context(struct nvkm_falcon *falcon, struct nvkm_memory *inst)
+static const struct nvkm_falcon_func_pio *
+nvkm_falcon_pio(struct nvkm_falcon *falcon, enum nvkm_falcon_mem *mem_type, u32 *mem_base)
{
- if (!falcon->func->bind_context) {
- nvkm_error(falcon->user,
- "Context binding not supported on this falcon!\n");
- return;
+ switch (*mem_type) {
+ case IMEM:
+ return falcon->func->imem_pio;
+ case DMEM:
+ if (!falcon->func->emem_addr || *mem_base < falcon->func->emem_addr)
+ return falcon->func->dmem_pio;
+
+ *mem_base -= falcon->func->emem_addr;
+ fallthrough;
+ case EMEM:
+ return falcon->func->emem_pio;
+ default:
+ return NULL;
}
-
- falcon->func->bind_context(falcon, inst);
}
-void
-nvkm_falcon_set_start_addr(struct nvkm_falcon *falcon, u32 start_addr)
+int
+nvkm_falcon_pio_rd(struct nvkm_falcon *falcon, u8 port, enum nvkm_falcon_mem mem_type, u32 mem_base,
+ const u8 *img, u32 img_base, int len)
{
- falcon->func->set_start_addr(falcon, start_addr);
-}
+ const struct nvkm_falcon_func_pio *pio = nvkm_falcon_pio(falcon, &mem_type, &mem_base);
+ const char *type = nvkm_falcon_mem(mem_type);
+ int xfer_len;
+
+ if (WARN_ON(!pio || !pio->rd))
+ return -EINVAL;
+
+ FLCN_DBG(falcon, "%s %08x -> %08x bytes at %08x", type, mem_base, len, img_base);
+ if (WARN_ON(!len || (len & (pio->min - 1))))
+ return -EINVAL;
+
+ pio->rd_init(falcon, port, mem_base);
+ do {
+ xfer_len = min(len, pio->max);
+ pio->rd(falcon, port, img, xfer_len);
+
+ if (nvkm_printk_ok(falcon->owner, falcon->user, NV_DBG_TRACE)) {
+ for (img_base = 0; img_base < xfer_len; img_base += 4, mem_base += 4) {
+ if (((img_base / 4) % 8) == 0)
+ printk(KERN_INFO "%s %08x ->", type, mem_base);
+ printk(KERN_CONT " %08x", *(u32 *)(img + img_base));
+ }
+ }
+
+ img += xfer_len;
+ len -= xfer_len;
+ } while (len);
-void
-nvkm_falcon_start(struct nvkm_falcon *falcon)
-{
- falcon->func->start(falcon);
+ return 0;
}
int
-nvkm_falcon_enable(struct nvkm_falcon *falcon)
+nvkm_falcon_pio_wr(struct nvkm_falcon *falcon, const u8 *img, u32 img_base, u8 port,
+ enum nvkm_falcon_mem mem_type, u32 mem_base, int len, u16 tag, bool sec)
{
- struct nvkm_device *device = falcon->owner->device;
- int ret;
-
- nvkm_mc_enable(device, falcon->owner->type, falcon->owner->inst);
- ret = falcon->func->enable(falcon);
- if (ret) {
- nvkm_mc_disable(device, falcon->owner->type, falcon->owner->inst);
- return ret;
- }
+ const struct nvkm_falcon_func_pio *pio = nvkm_falcon_pio(falcon, &mem_type, &mem_base);
+ const char *type = nvkm_falcon_mem(mem_type);
+ int xfer_len;
+
+ if (WARN_ON(!pio || !pio->wr))
+ return -EINVAL;
+
+ FLCN_DBG(falcon, "%s %08x <- %08x bytes at %08x", type, mem_base, len, img_base);
+ if (WARN_ON(!len || (len & (pio->min - 1))))
+ return -EINVAL;
+
+ pio->wr_init(falcon, port, sec, mem_base);
+ do {
+ xfer_len = min(len, pio->max);
+ pio->wr(falcon, port, img, xfer_len, tag++);
+
+ if (nvkm_printk_ok(falcon->owner, falcon->user, NV_DBG_TRACE)) {
+ for (img_base = 0; img_base < xfer_len; img_base += 4, mem_base += 4) {
+ if (((img_base / 4) % 8) == 0)
+ printk(KERN_INFO "%s %08x <-", type, mem_base);
+ printk(KERN_CONT " %08x", *(u32 *)(img + img_base));
+ if ((img_base / 4) == 7 && mem_type == IMEM)
+ printk(KERN_CONT " %04x", tag - 1);
+ }
+ }
+
+ img += xfer_len;
+ len -= xfer_len;
+ } while (len);
return 0;
}
void
-nvkm_falcon_disable(struct nvkm_falcon *falcon)
+nvkm_falcon_load_imem(struct nvkm_falcon *falcon, void *data, u32 start,
+ u32 size, u16 tag, u8 port, bool secure)
{
- struct nvkm_device *device = falcon->owner->device;
-
- /* already disabled, return or wait_idle will timeout */
- if (!nvkm_mc_enabled(device, falcon->owner->type, falcon->owner->inst))
+ if (secure && !falcon->secret) {
+ nvkm_warn(falcon->user,
+ "writing with secure tag on a non-secure falcon!\n");
return;
+ }
- falcon->func->disable(falcon);
-
- nvkm_mc_disable(device, falcon->owner->type, falcon->owner->inst);
+ falcon->func->load_imem(falcon, data, start, size, tag, port,
+ secure);
}
-int
-nvkm_falcon_reset(struct nvkm_falcon *falcon)
+void
+nvkm_falcon_load_dmem(struct nvkm_falcon *falcon, void *data, u32 start,
+ u32 size, u8 port)
{
- if (!falcon->func->reset) {
- nvkm_falcon_disable(falcon);
- return nvkm_falcon_enable(falcon);
- }
+ mutex_lock(&falcon->dmem_mutex);
- return falcon->func->reset(falcon);
+ falcon->func->load_dmem(falcon, data, start, size, port);
+
+ mutex_unlock(&falcon->dmem_mutex);
}
-int
-nvkm_falcon_wait_for_halt(struct nvkm_falcon *falcon, u32 ms)
+void
+nvkm_falcon_start(struct nvkm_falcon *falcon)
{
- return falcon->func->wait_for_halt(falcon, ms);
+ falcon->func->start(falcon);
}
int
-nvkm_falcon_clear_interrupt(struct nvkm_falcon *falcon, u32 mask)
+nvkm_falcon_reset(struct nvkm_falcon *falcon)
{
- return falcon->func->clear_interrupt(falcon, mask);
+ int ret;
+
+ ret = falcon->func->disable(falcon);
+ if (WARN_ON(ret))
+ return ret;
+
+ return nvkm_falcon_enable(falcon);
}
static int
@@ -169,7 +267,7 @@ nvkm_falcon_oneinit(struct nvkm_falcon *falcon)
}
void
-nvkm_falcon_put(struct nvkm_falcon *falcon, const struct nvkm_subdev *user)
+nvkm_falcon_put(struct nvkm_falcon *falcon, struct nvkm_subdev *user)
{
if (unlikely(!falcon))
return;
@@ -183,7 +281,7 @@ nvkm_falcon_put(struct nvkm_falcon *falcon, const struct nvkm_subdev *user)
}
int
-nvkm_falcon_get(struct nvkm_falcon *falcon, const struct nvkm_subdev *user)
+nvkm_falcon_get(struct nvkm_falcon *falcon, struct nvkm_subdev *user)
{
int ret = 0;
@@ -217,6 +315,7 @@ nvkm_falcon_ctor(const struct nvkm_falcon_func *func,
falcon->owner = subdev;
falcon->name = name;
falcon->addr = addr;
+ falcon->addr2 = func->addr2;
mutex_init(&falcon->mutex);
mutex_init(&falcon->dmem_mutex);
return 0;
diff --git a/drivers/gpu/drm/nouveau/nvkm/falcon/cmdq.c b/drivers/gpu/drm/nouveau/nvkm/falcon/cmdq.c
index 44cf6a8862e1..211ebe7afac6 100644
--- a/drivers/gpu/drm/nouveau/nvkm/falcon/cmdq.c
+++ b/drivers/gpu/drm/nouveau/nvkm/falcon/cmdq.c
@@ -51,7 +51,7 @@ static void
nvkm_falcon_cmdq_push(struct nvkm_falcon_cmdq *cmdq, void *data, u32 size)
{
struct nvkm_falcon *falcon = cmdq->qmgr->falcon;
- nvkm_falcon_load_dmem(falcon, data, cmdq->position, size, 0);
+ nvkm_falcon_pio_wr(falcon, data, 0, 0, DMEM, cmdq->position, size, 0, false);
cmdq->position += ALIGN(size, QUEUE_ALIGNMENT);
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/falcon/fw.c b/drivers/gpu/drm/nouveau/nvkm/falcon/fw.c
new file mode 100644
index 000000000000..80a480b12174
--- /dev/null
+++ b/drivers/gpu/drm/nouveau/nvkm/falcon/fw.c
@@ -0,0 +1,354 @@
+/*
+ * Copyright 2022 Red Hat Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ */
+#include "priv.h"
+
+#include <core/memory.h>
+#include <subdev/mmu.h>
+
+#include <nvfw/fw.h>
+#include <nvfw/hs.h>
+
+int
+nvkm_falcon_fw_patch(struct nvkm_falcon_fw *fw)
+{
+ struct nvkm_falcon *falcon = fw->falcon;
+ u32 sig_base_src = fw->sig_base_prd;
+ u32 src, dst, len, i;
+ int idx = 0;
+
+ FLCNFW_DBG(fw, "patching sigs:%d size:%d", fw->sig_nr, fw->sig_size);
+ if (fw->func->signature) {
+ idx = fw->func->signature(fw, &sig_base_src);
+ if (idx < 0)
+ return idx;
+ }
+
+ src = idx * fw->sig_size;
+ dst = fw->sig_base_img;
+ len = fw->sig_size / 4;
+ FLCNFW_DBG(fw, "patch idx:%d src:%08x dst:%08x", idx, sig_base_src + src, dst);
+ for (i = 0; i < len; i++) {
+ u32 sig = *(u32 *)(fw->sigs + src);
+
+ if (nvkm_printk_ok(falcon->owner, falcon->user, NV_DBG_TRACE)) {
+ if (i % 8 == 0)
+ printk(KERN_INFO "sig -> %08x:", dst);
+ printk(KERN_CONT " %08x", sig);
+ }
+
+ *(u32 *)(fw->fw.img + dst) = sig;
+ src += 4;
+ dst += 4;
+ }
+
+ return 0;
+}
+
+static void
+nvkm_falcon_fw_dtor_sigs(struct nvkm_falcon_fw *fw)
+{
+ kfree(fw->sigs);
+ fw->sigs = NULL;
+}
+
+int
+nvkm_falcon_fw_boot(struct nvkm_falcon_fw *fw, struct nvkm_subdev *user,
+ bool release, u32 *pmbox0, u32 *pmbox1, u32 mbox0_ok, u32 irqsclr)
+{
+ struct nvkm_falcon *falcon = fw->falcon;
+ int ret;
+
+ ret = nvkm_falcon_get(falcon, user);
+ if (ret)
+ return ret;
+
+ if (fw->sigs) {
+ ret = nvkm_falcon_fw_patch(fw);
+ if (ret)
+ goto done;
+
+ nvkm_falcon_fw_dtor_sigs(fw);
+ }
+
+ FLCNFW_DBG(fw, "resetting");
+ fw->func->reset(fw);
+
+ FLCNFW_DBG(fw, "loading");
+ if (fw->func->setup) {
+ ret = fw->func->setup(fw);
+ if (ret)
+ goto done;
+ }
+
+ ret = fw->func->load(fw);
+ if (ret)
+ goto done;
+
+ FLCNFW_DBG(fw, "booting");
+ ret = fw->func->boot(fw, pmbox0, pmbox1, mbox0_ok, irqsclr);
+ if (ret)
+ FLCNFW_ERR(fw, "boot failed: %d", ret);
+ else
+ FLCNFW_DBG(fw, "booted");
+
+done:
+ if (ret || release)
+ nvkm_falcon_put(falcon, user);
+ return ret;
+}
+
+int
+nvkm_falcon_fw_oneinit(struct nvkm_falcon_fw *fw, struct nvkm_falcon *falcon,
+ struct nvkm_vmm *vmm, struct nvkm_memory *inst)
+{
+ int ret;
+
+ fw->falcon = falcon;
+ fw->vmm = nvkm_vmm_ref(vmm);
+ fw->inst = nvkm_memory_ref(inst);
+
+ if (fw->boot) {
+ FLCN_DBG(falcon, "mapping %s fw", fw->fw.name);
+ ret = nvkm_vmm_get(fw->vmm, 12, nvkm_memory_size(&fw->fw.mem.memory), &fw->vma);
+ if (ret) {
+ FLCN_ERR(falcon, "get %d", ret);
+ return ret;
+ }
+
+ ret = nvkm_memory_map(&fw->fw.mem.memory, 0, fw->vmm, fw->vma, NULL, 0);
+ if (ret) {
+ FLCN_ERR(falcon, "map %d", ret);
+ return ret;
+ }
+ }
+
+ return 0;
+}
+
+void
+nvkm_falcon_fw_dtor(struct nvkm_falcon_fw *fw)
+{
+ nvkm_vmm_put(fw->vmm, &fw->vma);
+ nvkm_vmm_unref(&fw->vmm);
+ nvkm_memory_unref(&fw->inst);
+ nvkm_falcon_fw_dtor_sigs(fw);
+ nvkm_firmware_dtor(&fw->fw);
+}
+
+static const struct nvkm_firmware_func
+nvkm_falcon_fw_dma = {
+ .type = NVKM_FIRMWARE_IMG_DMA,
+};
+
+static const struct nvkm_firmware_func
+nvkm_falcon_fw = {
+ .type = NVKM_FIRMWARE_IMG_RAM,
+};
+
+int
+nvkm_falcon_fw_sign(struct nvkm_falcon_fw *fw, u32 sig_base_img, u32 sig_size, const u8 *sigs,
+ int sig_nr_prd, u32 sig_base_prd, int sig_nr_dbg, u32 sig_base_dbg)
+{
+ fw->sig_base_prd = sig_base_prd;
+ fw->sig_base_dbg = sig_base_dbg;
+ fw->sig_base_img = sig_base_img;
+ fw->sig_size = sig_size;
+ fw->sig_nr = sig_nr_prd + sig_nr_dbg;
+
+ fw->sigs = kmalloc_array(fw->sig_nr, fw->sig_size, GFP_KERNEL);
+ if (!fw->sigs)
+ return -ENOMEM;
+
+ memcpy(fw->sigs, sigs + sig_base_prd, sig_nr_prd * fw->sig_size);
+ if (sig_nr_dbg)
+ memcpy(fw->sigs + sig_size, sigs + sig_base_dbg, sig_nr_dbg * fw->sig_size);
+
+ return 0;
+}
+
+int
+nvkm_falcon_fw_ctor(const struct nvkm_falcon_fw_func *func, const char *name,
+ struct nvkm_device *device, bool dma, const void *src, u32 len,
+ struct nvkm_falcon *falcon, struct nvkm_falcon_fw *fw)
+{
+ const struct nvkm_firmware_func *type = dma ? &nvkm_falcon_fw_dma : &nvkm_falcon_fw;
+ int ret;
+
+ fw->func = func;
+
+ ret = nvkm_firmware_ctor(type, name, device, src, len, &fw->fw);
+ if (ret)
+ return ret;
+
+ return falcon ? nvkm_falcon_fw_oneinit(fw, falcon, NULL, NULL) : 0;
+}
+
+int
+nvkm_falcon_fw_ctor_hs(const struct nvkm_falcon_fw_func *func, const char *name,
+ struct nvkm_subdev *subdev, const char *bl, const char *img, int ver,
+ struct nvkm_falcon *falcon, struct nvkm_falcon_fw *fw)
+{
+ const struct firmware *blob;
+ const struct nvfw_bin_hdr *hdr;
+ const struct nvfw_hs_header *hshdr;
+ const struct nvfw_hs_load_header *lhdr;
+ const struct nvfw_bl_desc *desc;
+ u32 loc, sig;
+ int ret;
+
+ ret = nvkm_firmware_load_name(subdev, img, "", ver, &blob);
+ if (ret)
+ return ret;
+
+ hdr = nvfw_bin_hdr(subdev, blob->data);
+ hshdr = nvfw_hs_header(subdev, blob->data + hdr->header_offset);
+
+ ret = nvkm_falcon_fw_ctor(func, name, subdev->device, bl != NULL,
+ blob->data + hdr->data_offset, hdr->data_size, falcon, fw);
+ if (ret)
+ goto done;
+
+ /* Earlier FW releases by NVIDIA for Nouveau's use aren't in NVIDIA's
+ * standard format, and don't have the indirection seen in the 0x10de
+ * case.
+ */
+ switch (hdr->bin_magic) {
+ case 0x000010de:
+ loc = *(u32 *)(blob->data + hshdr->patch_loc);
+ sig = *(u32 *)(blob->data + hshdr->patch_sig);
+ break;
+ case 0x3b1d14f0:
+ loc = hshdr->patch_loc;
+ sig = hshdr->patch_sig;
+ break;
+ default:
+ WARN_ON(1);
+ ret = -EINVAL;
+ goto done;
+ }
+
+ ret = nvkm_falcon_fw_sign(fw, loc, hshdr->sig_prod_size, blob->data,
+ 1, hshdr->sig_prod_offset + sig,
+ 1, hshdr->sig_dbg_offset + sig);
+ if (ret)
+ goto done;
+
+ lhdr = nvfw_hs_load_header(subdev, blob->data + hshdr->hdr_offset);
+
+ fw->nmem_base_img = 0;
+ fw->nmem_base = lhdr->non_sec_code_off;
+ fw->nmem_size = lhdr->non_sec_code_size;
+
+ fw->imem_base_img = lhdr->apps[0];
+ fw->imem_base = ALIGN(lhdr->apps[0], 0x100);
+ fw->imem_size = lhdr->apps[lhdr->num_apps + 0];
+
+ fw->dmem_base_img = lhdr->data_dma_base;
+ fw->dmem_base = 0;
+ fw->dmem_size = lhdr->data_size;
+ fw->dmem_sign = loc - lhdr->data_dma_base;
+
+ if (bl) {
+ nvkm_firmware_put(blob);
+
+ ret = nvkm_firmware_load_name(subdev, bl, "", ver, &blob);
+ if (ret)
+ return ret;
+
+ hdr = nvfw_bin_hdr(subdev, blob->data);
+ desc = nvfw_bl_desc(subdev, blob->data + hdr->header_offset);
+
+ fw->boot_addr = desc->start_tag << 8;
+ fw->boot_size = desc->code_size;
+ fw->boot = kmemdup(blob->data + hdr->data_offset + desc->code_off,
+ fw->boot_size, GFP_KERNEL);
+ if (!fw->boot)
+ ret = -ENOMEM;
+ } else {
+ fw->boot_addr = fw->nmem_base;
+ }
+
+done:
+ if (ret)
+ nvkm_falcon_fw_dtor(fw);
+
+ nvkm_firmware_put(blob);
+ return ret;
+}
+
+int
+nvkm_falcon_fw_ctor_hs_v2(const struct nvkm_falcon_fw_func *func, const char *name,
+ struct nvkm_subdev *subdev, const char *img, int ver,
+ struct nvkm_falcon *falcon, struct nvkm_falcon_fw *fw)
+{
+ const struct nvfw_bin_hdr *hdr;
+ const struct nvfw_hs_header_v2 *hshdr;
+ const struct nvfw_hs_load_header_v2 *lhdr;
+ const struct firmware *blob;
+ u32 loc, sig, cnt, *meta;
+ int ret;
+
+ ret = nvkm_firmware_load_name(subdev, img, "", ver, &blob);
+ if (ret)
+ return ret;
+
+ hdr = nvfw_bin_hdr(subdev, blob->data);
+ hshdr = nvfw_hs_header_v2(subdev, blob->data + hdr->header_offset);
+ meta = (u32 *)(blob->data + hshdr->meta_data_offset);
+ loc = *(u32 *)(blob->data + hshdr->patch_loc);
+ sig = *(u32 *)(blob->data + hshdr->patch_sig);
+ cnt = *(u32 *)(blob->data + hshdr->num_sig);
+
+ ret = nvkm_falcon_fw_ctor(func, name, subdev->device, true,
+ blob->data + hdr->data_offset, hdr->data_size, falcon, fw);
+ if (ret)
+ goto done;
+
+ ret = nvkm_falcon_fw_sign(fw, loc, hshdr->sig_prod_size / cnt, blob->data,
+ cnt, hshdr->sig_prod_offset + sig, 0, 0);
+ if (ret)
+ goto done;
+
+ lhdr = nvfw_hs_load_header_v2(subdev, blob->data + hshdr->header_offset);
+
+ fw->imem_base_img = lhdr->app[0].offset;
+ fw->imem_base = 0;
+ fw->imem_size = lhdr->app[0].size;
+
+ fw->dmem_base_img = lhdr->os_data_offset;
+ fw->dmem_base = 0;
+ fw->dmem_size = lhdr->os_data_size;
+ fw->dmem_sign = loc - lhdr->os_data_offset;
+
+ fw->boot_addr = lhdr->app[0].offset;
+
+ fw->fuse_ver = meta[0];
+ fw->engine_id = meta[1];
+ fw->ucode_id = meta[2];
+
+done:
+ if (ret)
+ nvkm_falcon_fw_dtor(fw);
+
+ nvkm_firmware_put(blob);
+ return ret;
+}
diff --git a/drivers/gpu/drm/nouveau/nvkm/falcon/ga100.c b/drivers/gpu/drm/nouveau/nvkm/falcon/ga100.c
new file mode 100644
index 000000000000..49fd32943916
--- /dev/null
+++ b/drivers/gpu/drm/nouveau/nvkm/falcon/ga100.c
@@ -0,0 +1,62 @@
+/*
+ * Copyright 2021 Red Hat Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ */
+#include "priv.h"
+
+int
+ga100_flcn_fw_signature(struct nvkm_falcon_fw *fw, u32 *src_base_src)
+{
+ struct nvkm_falcon *falcon = fw->falcon;
+ struct nvkm_device *device = falcon->owner->device;
+ u32 reg_fuse_version;
+ int idx;
+
+ FLCN_DBG(falcon, "brom: %08x %08x", fw->engine_id, fw->ucode_id);
+ FLCN_DBG(falcon, "fuse_version: %d", fw->fuse_ver);
+
+ if (fw->engine_id & 0x00000001) {
+ reg_fuse_version = nvkm_rd32(device, 0x824140 + (fw->ucode_id - 1) * 4);
+ } else
+ if (fw->engine_id & 0x00000004) {
+ reg_fuse_version = nvkm_rd32(device, 0x824100 + (fw->ucode_id - 1) * 4);
+ } else
+ if (fw->engine_id & 0x00000400) {
+ reg_fuse_version = nvkm_rd32(device, 0x8241c0 + (fw->ucode_id - 1) * 4);
+ } else {
+ WARN_ON(1);
+ return -ENOSYS;
+ }
+
+ FLCN_DBG(falcon, "reg_fuse_version: %08x", reg_fuse_version);
+ if (reg_fuse_version) {
+ reg_fuse_version = fls(reg_fuse_version);
+ FLCN_DBG(falcon, "reg_fuse_version: %d", reg_fuse_version);
+
+ if (WARN_ON(fw->fuse_ver < reg_fuse_version))
+ return -EINVAL;
+
+ idx = fw->fuse_ver - reg_fuse_version;
+ } else {
+ idx = fw->sig_nr - 1;
+ }
+
+ return idx;
+}
diff --git a/drivers/gpu/drm/nouveau/nvkm/falcon/ga102.c b/drivers/gpu/drm/nouveau/nvkm/falcon/ga102.c
new file mode 100644
index 000000000000..0ff450fe3590
--- /dev/null
+++ b/drivers/gpu/drm/nouveau/nvkm/falcon/ga102.c
@@ -0,0 +1,148 @@
+/*
+ * Copyright 2022 Red Hat Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ */
+#include "priv.h"
+
+#include <subdev/mc.h>
+#include <subdev/timer.h>
+
+static bool
+ga102_flcn_dma_done(struct nvkm_falcon *falcon)
+{
+ return !!(nvkm_falcon_rd32(falcon, 0x118) & 0x00000002);
+}
+
+static void
+ga102_flcn_dma_xfer(struct nvkm_falcon *falcon, u32 mem_base, u32 dma_base, u32 cmd)
+{
+ nvkm_falcon_wr32(falcon, 0x114, mem_base);
+ nvkm_falcon_wr32(falcon, 0x11c, dma_base);
+ nvkm_falcon_wr32(falcon, 0x118, cmd);
+}
+
+static int
+ga102_flcn_dma_init(struct nvkm_falcon *falcon, u64 dma_addr, int xfer_len,
+ enum nvkm_falcon_mem mem_type, bool sec, u32 *cmd)
+{
+ *cmd = (ilog2(xfer_len) - 2) << 8;
+ if (mem_type == IMEM)
+ *cmd |= 0x00000010;
+ if (sec)
+ *cmd |= 0x00000004;
+
+ nvkm_falcon_wr32(falcon, 0x110, dma_addr >> 8);
+ nvkm_falcon_wr32(falcon, 0x128, 0x00000000);
+ return 0;
+}
+
+const struct nvkm_falcon_func_dma
+ga102_flcn_dma = {
+ .init = ga102_flcn_dma_init,
+ .xfer = ga102_flcn_dma_xfer,
+ .done = ga102_flcn_dma_done,
+};
+
+int
+ga102_flcn_reset_wait_mem_scrubbing(struct nvkm_falcon *falcon)
+{
+ nvkm_falcon_mask(falcon, 0x040, 0x00000000, 0x00000000);
+
+ if (nvkm_msec(falcon->owner->device, 20,
+ if (!(nvkm_falcon_rd32(falcon, 0x0f4) & 0x00001000))
+ break;
+ ) < 0)
+ return -ETIMEDOUT;
+
+ return 0;
+}
+
+int
+ga102_flcn_reset_prep(struct nvkm_falcon *falcon)
+{
+ nvkm_falcon_rd32(falcon, 0x0f4);
+
+ nvkm_usec(falcon->owner->device, 150,
+ if (nvkm_falcon_rd32(falcon, 0x0f4) & 0x80000000)
+ break;
+ _warn = false;
+ );
+
+ return 0;
+}
+
+int
+ga102_flcn_select(struct nvkm_falcon *falcon)
+{
+ if ((nvkm_falcon_rd32(falcon, falcon->addr2 + 0x668) & 0x00000010) != 0x00000000) {
+ nvkm_falcon_wr32(falcon, falcon->addr2 + 0x668, 0x00000000);
+ if (nvkm_msec(falcon->owner->device, 10,
+ if (nvkm_falcon_rd32(falcon, falcon->addr2 + 0x668) & 0x00000001)
+ break;
+ ) < 0)
+ return -ETIMEDOUT;
+ }
+
+ return 0;
+}
+
+int
+ga102_flcn_fw_boot(struct nvkm_falcon_fw *fw, u32 *mbox0, u32 *mbox1, u32 mbox0_ok, u32 irqsclr)
+{
+ struct nvkm_falcon *falcon = fw->falcon;
+
+ nvkm_falcon_wr32(falcon, falcon->addr2 + 0x210, fw->dmem_sign);
+ nvkm_falcon_wr32(falcon, falcon->addr2 + 0x19c, fw->engine_id);
+ nvkm_falcon_wr32(falcon, falcon->addr2 + 0x198, fw->ucode_id);
+ nvkm_falcon_wr32(falcon, falcon->addr2 + 0x180, 0x00000001);
+
+ return gm200_flcn_fw_boot(fw, mbox0, mbox1, mbox0_ok, irqsclr);
+}
+
+int
+ga102_flcn_fw_load(struct nvkm_falcon_fw *fw)
+{
+ struct nvkm_falcon *falcon = fw->falcon;
+ int ret = 0;
+
+ nvkm_falcon_mask(falcon, 0x624, 0x00000080, 0x00000080);
+ nvkm_falcon_wr32(falcon, 0x10c, 0x00000000);
+ nvkm_falcon_mask(falcon, 0x600, 0x00010007, (0 << 16) | (1 << 2) | 1);
+
+ ret = nvkm_falcon_dma_wr(falcon, fw->fw.img, fw->fw.phys, fw->imem_base_img,
+ IMEM, fw->imem_base, fw->imem_size, true);
+ if (ret)
+ return ret;
+
+ ret = nvkm_falcon_dma_wr(falcon, fw->fw.img, fw->fw.phys, fw->dmem_base_img,
+ DMEM, fw->dmem_base, fw->dmem_size, false);
+ if (ret)
+ return ret;
+
+ return 0;
+}
+
+const struct nvkm_falcon_fw_func
+ga102_flcn_fw = {
+ .signature = ga100_flcn_fw_signature,
+ .reset = gm200_flcn_fw_reset,
+ .load = ga102_flcn_fw_load,
+ .boot = ga102_flcn_fw_boot,
+};
diff --git a/drivers/gpu/drm/nouveau/nvkm/falcon/gm200.c b/drivers/gpu/drm/nouveau/nvkm/falcon/gm200.c
new file mode 100644
index 000000000000..b7da3ab44c27
--- /dev/null
+++ b/drivers/gpu/drm/nouveau/nvkm/falcon/gm200.c
@@ -0,0 +1,357 @@
+/*
+ * Copyright 2022 Red Hat Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ */
+#include "priv.h"
+
+#include <core/memory.h>
+#include <subdev/mc.h>
+#include <subdev/timer.h>
+
+void
+gm200_flcn_tracepc(struct nvkm_falcon *falcon)
+{
+ u32 sctl = nvkm_falcon_rd32(falcon, 0x240);
+ u32 tidx = nvkm_falcon_rd32(falcon, 0x148);
+ int nr = (tidx & 0x00ff0000) >> 16, sp, ip;
+
+ FLCN_ERR(falcon, "TRACEPC SCTL %08x TIDX %08x", sctl, tidx);
+ for (sp = 0; sp < nr; sp++) {
+ nvkm_falcon_wr32(falcon, 0x148, sp);
+ ip = nvkm_falcon_rd32(falcon, 0x14c);
+ FLCN_ERR(falcon, "TRACEPC: %08x", ip);
+ }
+}
+
+static void
+gm200_flcn_pio_dmem_rd(struct nvkm_falcon *falcon, u8 port, const u8 *img, int len)
+{
+ while (len >= 4) {
+ *(u32 *)img = nvkm_falcon_rd32(falcon, 0x1c4 + (port * 8));
+ img += 4;
+ len -= 4;
+ }
+
+ /* Sigh. Tegra PMU FW's init message... */
+ if (len) {
+ u32 data = nvkm_falcon_rd32(falcon, 0x1c4 + (port * 8));
+
+ while (len--) {
+ *(u8 *)img++ = data & 0xff;
+ data >>= 8;
+ }
+ }
+}
+
+static void
+gm200_flcn_pio_dmem_rd_init(struct nvkm_falcon *falcon, u8 port, u32 dmem_base)
+{
+ nvkm_falcon_wr32(falcon, 0x1c0 + (port * 8), BIT(25) | dmem_base);
+}
+
+static void
+gm200_flcn_pio_dmem_wr(struct nvkm_falcon *falcon, u8 port, const u8 *img, int len, u16 tag)
+{
+ while (len >= 4) {
+ nvkm_falcon_wr32(falcon, 0x1c4 + (port * 8), *(u32 *)img);
+ img += 4;
+ len -= 4;
+ }
+
+ WARN_ON(len);
+}
+
+static void
+gm200_flcn_pio_dmem_wr_init(struct nvkm_falcon *falcon, u8 port, bool sec, u32 dmem_base)
+{
+ nvkm_falcon_wr32(falcon, 0x1c0 + (port * 8), BIT(24) | dmem_base);
+}
+
+const struct nvkm_falcon_func_pio
+gm200_flcn_dmem_pio = {
+ .min = 1,
+ .max = 0x100,
+ .wr_init = gm200_flcn_pio_dmem_wr_init,
+ .wr = gm200_flcn_pio_dmem_wr,
+ .rd_init = gm200_flcn_pio_dmem_rd_init,
+ .rd = gm200_flcn_pio_dmem_rd,
+};
+
+static void
+gm200_flcn_pio_imem_wr_init(struct nvkm_falcon *falcon, u8 port, bool sec, u32 imem_base)
+{
+ nvkm_falcon_wr32(falcon, 0x180 + (port * 0x10), (sec ? BIT(28) : 0) | BIT(24) | imem_base);
+}
+
+static void
+gm200_flcn_pio_imem_wr(struct nvkm_falcon *falcon, u8 port, const u8 *img, int len, u16 tag)
+{
+ nvkm_falcon_wr32(falcon, 0x188 + (port * 0x10), tag++);
+ while (len >= 4) {
+ nvkm_falcon_wr32(falcon, 0x184 + (port * 0x10), *(u32 *)img);
+ img += 4;
+ len -= 4;
+ }
+}
+
+const struct nvkm_falcon_func_pio
+gm200_flcn_imem_pio = {
+ .min = 0x100,
+ .max = 0x100,
+ .wr_init = gm200_flcn_pio_imem_wr_init,
+ .wr = gm200_flcn_pio_imem_wr,
+};
+
+int
+gm200_flcn_bind_stat(struct nvkm_falcon *falcon, bool intr)
+{
+ if (intr && !(nvkm_falcon_rd32(falcon, 0x008) & 0x00000008))
+ return -1;
+
+ return (nvkm_falcon_rd32(falcon, 0x0dc) & 0x00007000) >> 12;
+}
+
+void
+gm200_flcn_bind_inst(struct nvkm_falcon *falcon, int target, u64 addr)
+{
+ nvkm_falcon_mask(falcon, 0x604, 0x00000007, 0x00000000); /* DMAIDX_VIRT */
+ nvkm_falcon_wr32(falcon, 0x054, (1 << 30) | (target << 28) | (addr >> 12));
+ nvkm_falcon_mask(falcon, 0x090, 0x00010000, 0x00010000);
+ nvkm_falcon_mask(falcon, 0x0a4, 0x00000008, 0x00000008);
+}
+
+int
+gm200_flcn_reset_wait_mem_scrubbing(struct nvkm_falcon *falcon)
+{
+ nvkm_falcon_mask(falcon, 0x040, 0x00000000, 0x00000000);
+
+ if (nvkm_msec(falcon->owner->device, 10,
+ if (!(nvkm_falcon_rd32(falcon, 0x10c) & 0x00000006))
+ break;
+ ) < 0)
+ return -ETIMEDOUT;
+
+ return 0;
+}
+
+int
+gm200_flcn_enable(struct nvkm_falcon *falcon)
+{
+ struct nvkm_device *device = falcon->owner->device;
+ int ret;
+
+ if (falcon->func->reset_eng) {
+ ret = falcon->func->reset_eng(falcon);
+ if (ret)
+ return ret;
+ }
+
+ if (falcon->func->select) {
+ ret = falcon->func->select(falcon);
+ if (ret)
+ return ret;
+ }
+
+ if (falcon->func->reset_pmc)
+ nvkm_mc_enable(device, falcon->owner->type, falcon->owner->inst);
+
+ ret = falcon->func->reset_wait_mem_scrubbing(falcon);
+ if (ret)
+ return ret;
+
+ nvkm_falcon_wr32(falcon, 0x084, nvkm_rd32(device, 0x000000));
+ return 0;
+}
+
+int
+gm200_flcn_disable(struct nvkm_falcon *falcon)
+{
+ struct nvkm_device *device = falcon->owner->device;
+ int ret;
+
+ if (falcon->func->select) {
+ ret = falcon->func->select(falcon);
+ if (ret)
+ return ret;
+ }
+
+ nvkm_falcon_mask(falcon, 0x048, 0x00000003, 0x00000000);
+ nvkm_falcon_wr32(falcon, 0x014, 0xffffffff);
+
+ if (falcon->func->reset_pmc) {
+ if (falcon->func->reset_prep) {
+ ret = falcon->func->reset_prep(falcon);
+ if (ret)
+ return ret;
+ }
+
+ nvkm_mc_disable(device, falcon->owner->type, falcon->owner->inst);
+ }
+
+ if (falcon->func->reset_eng) {
+ ret = falcon->func->reset_eng(falcon);
+ if (ret)
+ return ret;
+ }
+
+ return 0;
+}
+
+int
+gm200_flcn_fw_boot(struct nvkm_falcon_fw *fw, u32 *pmbox0, u32 *pmbox1, u32 mbox0_ok, u32 irqsclr)
+{
+ struct nvkm_falcon *falcon = fw->falcon;
+ u32 mbox0, mbox1;
+ int ret = 0;
+
+ nvkm_falcon_wr32(falcon, 0x040, pmbox0 ? *pmbox0 : 0xcafebeef);
+ if (pmbox1)
+ nvkm_falcon_wr32(falcon, 0x044, *pmbox1);
+
+ nvkm_falcon_wr32(falcon, 0x104, fw->boot_addr);
+ nvkm_falcon_wr32(falcon, 0x100, 0x00000002);
+
+ if (nvkm_msec(falcon->owner->device, 2000,
+ if (nvkm_falcon_rd32(falcon, 0x100) & 0x00000010)
+ break;
+ ) < 0)
+ ret = -ETIMEDOUT;
+
+ mbox0 = nvkm_falcon_rd32(falcon, 0x040);
+ mbox1 = nvkm_falcon_rd32(falcon, 0x044);
+ if (FLCN_ERRON(falcon, ret || mbox0 != mbox0_ok, "mbox %08x %08x", mbox0, mbox1))
+ ret = ret ?: -EIO;
+
+ if (irqsclr)
+ nvkm_falcon_mask(falcon, 0x004, 0xffffffff, irqsclr);
+
+ return ret;
+}
+
+int
+gm200_flcn_fw_load(struct nvkm_falcon_fw *fw)
+{
+ struct nvkm_falcon *falcon = fw->falcon;
+ int target, ret;
+
+ if (fw->inst) {
+ nvkm_falcon_mask(falcon, 0x048, 0x00000001, 0x00000001);
+
+ switch (nvkm_memory_target(fw->inst)) {
+ case NVKM_MEM_TARGET_VRAM: target = 0; break;
+ case NVKM_MEM_TARGET_HOST: target = 2; break;
+ case NVKM_MEM_TARGET_NCOH: target = 3; break;
+ default:
+ WARN_ON(1);
+ return -EINVAL;
+ }
+
+ falcon->func->bind_inst(falcon, target, nvkm_memory_addr(fw->inst));
+
+ if (nvkm_msec(falcon->owner->device, 10,
+ if (falcon->func->bind_stat(falcon, falcon->func->bind_intr) == 5)
+ break;
+ ) < 0)
+ return -ETIMEDOUT;
+
+ nvkm_falcon_mask(falcon, 0x004, 0x00000008, 0x00000008);
+ nvkm_falcon_mask(falcon, 0x058, 0x00000002, 0x00000002);
+
+ if (nvkm_msec(falcon->owner->device, 10,
+ if (falcon->func->bind_stat(falcon, false) == 0)
+ break;
+ ) < 0)
+ return -ETIMEDOUT;
+ } else {
+ nvkm_falcon_mask(falcon, 0x624, 0x00000080, 0x00000080);
+ nvkm_falcon_wr32(falcon, 0x10c, 0x00000000);
+ }
+
+ if (fw->boot) {
+ switch (nvkm_memory_target(&fw->fw.mem.memory)) {
+ case NVKM_MEM_TARGET_VRAM: target = 4; break;
+ case NVKM_MEM_TARGET_HOST: target = 5; break;
+ case NVKM_MEM_TARGET_NCOH: target = 6; break;
+ default:
+ WARN_ON(1);
+ return -EINVAL;
+ }
+
+ ret = nvkm_falcon_pio_wr(falcon, fw->boot, 0, 0,
+ IMEM, falcon->code.limit - fw->boot_size, fw->boot_size,
+ fw->boot_addr >> 8, false);
+ if (ret)
+ return ret;
+
+ return fw->func->load_bld(fw);
+ }
+
+ ret = nvkm_falcon_pio_wr(falcon, fw->fw.img + fw->nmem_base_img, fw->nmem_base_img, 0,
+ IMEM, fw->nmem_base, fw->nmem_size, fw->nmem_base >> 8, false);
+ if (ret)
+ return ret;
+
+ ret = nvkm_falcon_pio_wr(falcon, fw->fw.img + fw->imem_base_img, fw->imem_base_img, 0,
+ IMEM, fw->imem_base, fw->imem_size, fw->imem_base >> 8, true);
+ if (ret)
+ return ret;
+
+ ret = nvkm_falcon_pio_wr(falcon, fw->fw.img + fw->dmem_base_img, fw->dmem_base_img, 0,
+ DMEM, fw->dmem_base, fw->dmem_size, 0, false);
+ if (ret)
+ return ret;
+
+ return 0;
+}
+
+int
+gm200_flcn_fw_reset(struct nvkm_falcon_fw *fw)
+{
+ return nvkm_falcon_reset(fw->falcon);
+}
+
+int
+gm200_flcn_fw_signature(struct nvkm_falcon_fw *fw, u32 *sig_base_src)
+{
+ struct nvkm_falcon *falcon = fw->falcon;
+ u32 addr = falcon->func->debug;
+ int ret = 0;
+
+ if (addr) {
+ ret = nvkm_falcon_enable(falcon);
+ if (ret)
+ return ret;
+
+ if (nvkm_falcon_rd32(falcon, addr) & 0x00100000) {
+ *sig_base_src = fw->sig_base_dbg;
+ return 1;
+ }
+ }
+
+ return ret;
+}
+
+const struct nvkm_falcon_fw_func
+gm200_flcn_fw = {
+ .signature = gm200_flcn_fw_signature,
+ .reset = gm200_flcn_fw_reset,
+ .load = gm200_flcn_fw_load,
+ .boot = gm200_flcn_fw_boot,
+};
diff --git a/drivers/gpu/drm/nouveau/nvkm/falcon/gp102.c b/drivers/gpu/drm/nouveau/nvkm/falcon/gp102.c
new file mode 100644
index 000000000000..c774935f3077
--- /dev/null
+++ b/drivers/gpu/drm/nouveau/nvkm/falcon/gp102.c
@@ -0,0 +1,82 @@
+/*
+ * Copyright 2022 Red Hat Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ */
+#include "priv.h"
+
+static void
+gp102_flcn_pio_emem_rd(struct nvkm_falcon *falcon, u8 port, const u8 *img, int len)
+{
+ while (len >= 4) {
+ *(u32 *)img = nvkm_falcon_rd32(falcon, 0xac4 + (port * 8));
+ img += 4;
+ len -= 4;
+ }
+}
+
+static void
+gp102_flcn_pio_emem_rd_init(struct nvkm_falcon *falcon, u8 port, u32 dmem_base)
+{
+ nvkm_falcon_wr32(falcon, 0xac0 + (port * 8), BIT(25) | dmem_base);
+}
+
+static void
+gp102_flcn_pio_emem_wr(struct nvkm_falcon *falcon, u8 port, const u8 *img, int len, u16 tag)
+{
+ while (len >= 4) {
+ nvkm_falcon_wr32(falcon, 0xac4 + (port * 8), *(u32 *)img);
+ img += 4;
+ len -= 4;
+ }
+}
+
+static void
+gp102_flcn_pio_emem_wr_init(struct nvkm_falcon *falcon, u8 port, bool sec, u32 emem_base)
+{
+ nvkm_falcon_wr32(falcon, 0xac0 + (port * 8), BIT(24) | emem_base);
+}
+
+const struct nvkm_falcon_func_pio
+gp102_flcn_emem_pio = {
+ .min = 4,
+ .max = 0x100,
+ .wr_init = gp102_flcn_pio_emem_wr_init,
+ .wr = gp102_flcn_pio_emem_wr,
+ .rd_init = gp102_flcn_pio_emem_rd_init,
+ .rd = gp102_flcn_pio_emem_rd,
+};
+
+int
+gp102_flcn_reset_eng(struct nvkm_falcon *falcon)
+{
+ int ret;
+
+ if (falcon->func->reset_prep) {
+ ret = falcon->func->reset_prep(falcon);
+ if (ret)
+ return ret;
+ }
+
+ nvkm_falcon_mask(falcon, 0x3c0, 0x00000001, 0x00000001);
+ udelay(10);
+ nvkm_falcon_mask(falcon, 0x3c0, 0x00000001, 0x00000000);
+
+ return falcon->func->reset_wait_mem_scrubbing(falcon);
+}
diff --git a/drivers/gpu/drm/nouveau/nvkm/falcon/msgq.c b/drivers/gpu/drm/nouveau/nvkm/falcon/msgq.c
index e74371dffc76..16b246fda666 100644
--- a/drivers/gpu/drm/nouveau/nvkm/falcon/msgq.c
+++ b/drivers/gpu/drm/nouveau/nvkm/falcon/msgq.c
@@ -25,7 +25,7 @@
static void
nvkm_falcon_msgq_open(struct nvkm_falcon_msgq *msgq)
{
- mutex_lock(&msgq->mutex);
+ spin_lock(&msgq->lock);
msgq->position = nvkm_falcon_rd32(msgq->qmgr->falcon, msgq->tail_reg);
}
@@ -37,10 +37,10 @@ nvkm_falcon_msgq_close(struct nvkm_falcon_msgq *msgq, bool commit)
if (commit)
nvkm_falcon_wr32(falcon, msgq->tail_reg, msgq->position);
- mutex_unlock(&msgq->mutex);
+ spin_unlock(&msgq->lock);
}
-static bool
+bool
nvkm_falcon_msgq_empty(struct nvkm_falcon_msgq *msgq)
{
u32 head = nvkm_falcon_rd32(msgq->qmgr->falcon, msgq->head_reg);
@@ -68,7 +68,7 @@ nvkm_falcon_msgq_pop(struct nvkm_falcon_msgq *msgq, void *data, u32 size)
return -EINVAL;
}
- nvkm_falcon_read_dmem(falcon, tail, size, 0, data);
+ nvkm_falcon_pio_rd(falcon, 0, DMEM, tail, data, 0, size);
msgq->position += ALIGN(size, QUEUE_ALIGNMENT);
return 0;
}
@@ -208,6 +208,6 @@ nvkm_falcon_msgq_new(struct nvkm_falcon_qmgr *qmgr, const char *name,
msgq->qmgr = qmgr;
msgq->name = name;
- mutex_init(&msgq->mutex);
+ spin_lock_init(&msgq->lock);
return 0;
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/falcon/priv.h b/drivers/gpu/drm/nouveau/nvkm/falcon/priv.h
index 466188752eb0..11a24b9c8569 100644
--- a/drivers/gpu/drm/nouveau/nvkm/falcon/priv.h
+++ b/drivers/gpu/drm/nouveau/nvkm/falcon/priv.h
@@ -2,4 +2,12 @@
#ifndef __NVKM_FALCON_PRIV_H__
#define __NVKM_FALCON_PRIV_H__
#include <core/falcon.h>
+
+static inline int
+nvkm_falcon_enable(struct nvkm_falcon *falcon)
+{
+ if (falcon->func->enable)
+ return falcon->func->enable(falcon);
+ return 0;
+}
#endif
diff --git a/drivers/gpu/drm/nouveau/nvkm/falcon/qmgr.h b/drivers/gpu/drm/nouveau/nvkm/falcon/qmgr.h
index 976cb7b7aa99..79f0da9e749f 100644
--- a/drivers/gpu/drm/nouveau/nvkm/falcon/qmgr.h
+++ b/drivers/gpu/drm/nouveau/nvkm/falcon/qmgr.h
@@ -73,7 +73,7 @@ struct nvkm_falcon_cmdq {
struct nvkm_falcon_msgq {
struct nvkm_falcon_qmgr *qmgr;
const char *name;
- struct mutex mutex;
+ spinlock_t lock;
u32 head_reg;
u32 tail_reg;
@@ -82,8 +82,7 @@ struct nvkm_falcon_msgq {
u32 position;
};
-#define FLCNQ_PRINTK(t,q,f,a...) \
- FLCN_PRINTK(t, (q)->qmgr->falcon, "%s: "f, (q)->name, ##a)
-#define FLCNQ_DBG(q,f,a...) FLCNQ_PRINTK(debug, (q), f, ##a)
-#define FLCNQ_ERR(q,f,a...) FLCNQ_PRINTK(error, (q), f, ##a)
+#define FLCNQ_PRINTK(q,l,p,f,a...) FLCN_PRINTK((q)->qmgr->falcon, l, p, "%s: "f, (q)->name, ##a)
+#define FLCNQ_DBG(q,f,a...) FLCNQ_PRINTK((q), DEBUG, info, f, ##a)
+#define FLCNQ_ERR(q,f,a...) FLCNQ_PRINTK((q), ERROR, err, f, ##a)
#endif
diff --git a/drivers/gpu/drm/nouveau/nvkm/falcon/v1.c b/drivers/gpu/drm/nouveau/nvkm/falcon/v1.c
index b0ee4c31414c..dd2ddc54ac60 100644
--- a/drivers/gpu/drm/nouveau/nvkm/falcon/v1.c
+++ b/drivers/gpu/drm/nouveau/nvkm/falcon/v1.c
@@ -64,44 +64,13 @@ nvkm_falcon_v1_load_imem(struct nvkm_falcon *falcon, void *data, u32 start,
nvkm_falcon_wr32(falcon, 0x184 + (port * 16), 0);
}
-static void
-nvkm_falcon_v1_load_emem(struct nvkm_falcon *falcon, void *data, u32 start,
- u32 size, u8 port)
-{
- u8 rem = size % 4;
- int i;
-
- size -= rem;
-
- nvkm_falcon_wr32(falcon, 0xac0 + (port * 8), start | (0x1 << 24));
- for (i = 0; i < size / 4; i++)
- nvkm_falcon_wr32(falcon, 0xac4 + (port * 8), ((u32 *)data)[i]);
-
- /*
- * If size is not a multiple of 4, mask the last word to ensure garbage
- * does not get written
- */
- if (rem) {
- u32 extra = ((u32 *)data)[i];
-
- nvkm_falcon_wr32(falcon, 0xac4 + (port * 8),
- extra & (BIT(rem * 8) - 1));
- }
-}
-
void
nvkm_falcon_v1_load_dmem(struct nvkm_falcon *falcon, void *data, u32 start,
u32 size, u8 port)
{
- const struct nvkm_falcon_func *func = falcon->func;
u8 rem = size % 4;
int i;
- if (func->emem_addr && start >= func->emem_addr)
- return nvkm_falcon_v1_load_emem(falcon, data,
- start - func->emem_addr, size,
- port);
-
size -= rem;
nvkm_falcon_wr32(falcon, 0x1c0 + (port * 8), start | (0x1 << 24));
@@ -120,113 +89,6 @@ nvkm_falcon_v1_load_dmem(struct nvkm_falcon *falcon, void *data, u32 start,
}
}
-static void
-nvkm_falcon_v1_read_emem(struct nvkm_falcon *falcon, u32 start, u32 size,
- u8 port, void *data)
-{
- u8 rem = size % 4;
- int i;
-
- size -= rem;
-
- nvkm_falcon_wr32(falcon, 0xac0 + (port * 8), start | (0x1 << 25));
- for (i = 0; i < size / 4; i++)
- ((u32 *)data)[i] = nvkm_falcon_rd32(falcon, 0xac4 + (port * 8));
-
- /*
- * If size is not a multiple of 4, mask the last word to ensure garbage
- * does not get read
- */
- if (rem) {
- u32 extra = nvkm_falcon_rd32(falcon, 0xac4 + (port * 8));
-
- for (i = size; i < size + rem; i++) {
- ((u8 *)data)[i] = (u8)(extra & 0xff);
- extra >>= 8;
- }
- }
-}
-
-void
-nvkm_falcon_v1_read_dmem(struct nvkm_falcon *falcon, u32 start, u32 size,
- u8 port, void *data)
-{
- const struct nvkm_falcon_func *func = falcon->func;
- u8 rem = size % 4;
- int i;
-
- if (func->emem_addr && start >= func->emem_addr)
- return nvkm_falcon_v1_read_emem(falcon, start - func->emem_addr,
- size, port, data);
-
- size -= rem;
-
- nvkm_falcon_wr32(falcon, 0x1c0 + (port * 8), start | (0x1 << 25));
- for (i = 0; i < size / 4; i++)
- ((u32 *)data)[i] = nvkm_falcon_rd32(falcon, 0x1c4 + (port * 8));
-
- /*
- * If size is not a multiple of 4, mask the last word to ensure garbage
- * does not get read
- */
- if (rem) {
- u32 extra = nvkm_falcon_rd32(falcon, 0x1c4 + (port * 8));
-
- for (i = size; i < size + rem; i++) {
- ((u8 *)data)[i] = (u8)(extra & 0xff);
- extra >>= 8;
- }
- }
-}
-
-void
-nvkm_falcon_v1_bind_context(struct nvkm_falcon *falcon, struct nvkm_memory *ctx)
-{
- const u32 fbif = falcon->func->fbif;
- u32 inst_loc;
-
- /* disable instance block binding */
- if (ctx == NULL) {
- nvkm_falcon_wr32(falcon, 0x10c, 0x0);
- return;
- }
-
- nvkm_falcon_wr32(falcon, 0x10c, 0x1);
-
- /* setup apertures - virtual */
- nvkm_falcon_wr32(falcon, fbif + 4 * FALCON_DMAIDX_UCODE, 0x4);
- nvkm_falcon_wr32(falcon, fbif + 4 * FALCON_DMAIDX_VIRT, 0x0);
- /* setup apertures - physical */
- nvkm_falcon_wr32(falcon, fbif + 4 * FALCON_DMAIDX_PHYS_VID, 0x4);
- nvkm_falcon_wr32(falcon, fbif + 4 * FALCON_DMAIDX_PHYS_SYS_COH, 0x5);
- nvkm_falcon_wr32(falcon, fbif + 4 * FALCON_DMAIDX_PHYS_SYS_NCOH, 0x6);
-
- /* Set context */
- switch (nvkm_memory_target(ctx)) {
- case NVKM_MEM_TARGET_VRAM: inst_loc = 0; break;
- case NVKM_MEM_TARGET_HOST: inst_loc = 2; break;
- case NVKM_MEM_TARGET_NCOH: inst_loc = 3; break;
- default:
- WARN_ON(1);
- return;
- }
-
- /* Enable context */
- nvkm_falcon_mask(falcon, 0x048, 0x1, 0x1);
- nvkm_falcon_wr32(falcon, 0x054,
- ((nvkm_memory_addr(ctx) >> 12) & 0xfffffff) |
- (inst_loc << 28) | (1 << 30));
-
- nvkm_falcon_mask(falcon, 0x090, 0x10000, 0x10000);
- nvkm_falcon_mask(falcon, 0x0a4, 0x8, 0x8);
-}
-
-void
-nvkm_falcon_v1_set_start_addr(struct nvkm_falcon *falcon, u32 start_addr)
-{
- nvkm_falcon_wr32(falcon, 0x104, start_addr);
-}
-
void
nvkm_falcon_v1_start(struct nvkm_falcon *falcon)
{
@@ -237,75 +99,3 @@ nvkm_falcon_v1_start(struct nvkm_falcon *falcon)
else
nvkm_falcon_wr32(falcon, 0x100, 0x2);
}
-
-int
-nvkm_falcon_v1_wait_for_halt(struct nvkm_falcon *falcon, u32 ms)
-{
- struct nvkm_device *device = falcon->owner->device;
- int ret;
-
- ret = nvkm_wait_msec(device, ms, falcon->addr + 0x100, 0x10, 0x10);
- if (ret < 0)
- return ret;
-
- return 0;
-}
-
-int
-nvkm_falcon_v1_clear_interrupt(struct nvkm_falcon *falcon, u32 mask)
-{
- struct nvkm_device *device = falcon->owner->device;
- int ret;
-
- /* clear interrupt(s) */
- nvkm_falcon_mask(falcon, 0x004, mask, mask);
- /* wait until interrupts are cleared */
- ret = nvkm_wait_msec(device, 10, falcon->addr + 0x008, mask, 0x0);
- if (ret < 0)
- return ret;
-
- return 0;
-}
-
-static int
-falcon_v1_wait_idle(struct nvkm_falcon *falcon)
-{
- struct nvkm_device *device = falcon->owner->device;
- int ret;
-
- ret = nvkm_wait_msec(device, 10, falcon->addr + 0x04c, 0xffff, 0x0);
- if (ret < 0)
- return ret;
-
- return 0;
-}
-
-int
-nvkm_falcon_v1_enable(struct nvkm_falcon *falcon)
-{
- struct nvkm_device *device = falcon->owner->device;
- int ret;
-
- ret = nvkm_wait_msec(device, 10, falcon->addr + 0x10c, 0x6, 0x0);
- if (ret < 0) {
- nvkm_error(falcon->user, "Falcon mem scrubbing timeout\n");
- return ret;
- }
-
- ret = falcon_v1_wait_idle(falcon);
- if (ret)
- return ret;
-
- /* enable IRQs */
- nvkm_falcon_wr32(falcon, 0x010, 0xff);
-
- return 0;
-}
-
-void
-nvkm_falcon_v1_disable(struct nvkm_falcon *falcon)
-{
- /* disable IRQs and wait for any previous code to complete */
- nvkm_falcon_wr32(falcon, 0x014, 0xff);
- falcon_v1_wait_idle(falcon);
-}
diff --git a/drivers/gpu/drm/nouveau/nvkm/nvfw/acr.c b/drivers/gpu/drm/nouveau/nvkm/nvfw/acr.c
index bef790ad8f2f..7ac90c495737 100644
--- a/drivers/gpu/drm/nouveau/nvkm/nvfw/acr.c
+++ b/drivers/gpu/drm/nouveau/nvkm/nvfw/acr.c
@@ -46,6 +46,47 @@ wpr_header_v1_dump(struct nvkm_subdev *subdev, const struct wpr_header_v1 *hdr)
}
static void
+wpr_generic_header_dump(struct nvkm_subdev *subdev, const struct wpr_generic_header *hdr)
+{
+ nvkm_debug(subdev, "wprGenericHeader\n");
+ nvkm_debug(subdev, "\tidentifier : %04x\n", hdr->identifier);
+ nvkm_debug(subdev, "\tversion : %04x\n", hdr->version);
+ nvkm_debug(subdev, "\tsize : %08x\n", hdr->size);
+}
+
+void
+wpr_header_v2_dump(struct nvkm_subdev *subdev, const struct wpr_header_v2 *hdr)
+{
+ wpr_generic_header_dump(subdev, &hdr->hdr);
+ wpr_header_v1_dump(subdev, &hdr->wpr);
+}
+
+void
+lsb_header_v2_dump(struct nvkm_subdev *subdev, struct lsb_header_v2 *hdr)
+{
+ wpr_generic_header_dump(subdev, &hdr->hdr);
+ nvkm_debug(subdev, "lsbHeader\n");
+ nvkm_debug(subdev, "\tucodeOff : 0x%x\n", hdr->ucode_off);
+ nvkm_debug(subdev, "\tucodeSize : 0x%x\n", hdr->ucode_size);
+ nvkm_debug(subdev, "\tdataSize : 0x%x\n", hdr->data_size);
+ nvkm_debug(subdev, "\tblCodeSize : 0x%x\n", hdr->bl_code_size);
+ nvkm_debug(subdev, "\tblImemOff : 0x%x\n", hdr->bl_imem_off);
+ nvkm_debug(subdev, "\tblDataOff : 0x%x\n", hdr->bl_data_off);
+ nvkm_debug(subdev, "\tblDataSize : 0x%x\n", hdr->bl_data_size);
+ nvkm_debug(subdev, "\treserved0 : %08x\n", hdr->rsvd0);
+ nvkm_debug(subdev, "\tappCodeOff : 0x%x\n", hdr->app_code_off);
+ nvkm_debug(subdev, "\tappCodeSize : 0x%x\n", hdr->app_code_size);
+ nvkm_debug(subdev, "\tappDataOff : 0x%x\n", hdr->app_data_off);
+ nvkm_debug(subdev, "\tappDataSize : 0x%x\n", hdr->app_data_size);
+ nvkm_debug(subdev, "\tappImemOffset : 0x%x\n", hdr->app_imem_offset);
+ nvkm_debug(subdev, "\tappDmemOffset : 0x%x\n", hdr->app_dmem_offset);
+ nvkm_debug(subdev, "\tflags : 0x%x\n", hdr->flags);
+ nvkm_debug(subdev, "\tmonitorCodeOff: 0x%x\n", hdr->monitor_code_offset);
+ nvkm_debug(subdev, "\tmonitorDataOff: 0x%x\n", hdr->monitor_data_offset);
+ nvkm_debug(subdev, "\tmanifestOffset: 0x%x\n", hdr->manifest_offset);
+}
+
+static void
lsb_header_tail_dump(struct nvkm_subdev *subdev, struct lsb_header_tail *hdr)
{
nvkm_debug(subdev, "lsbHeader\n");
diff --git a/drivers/gpu/drm/nouveau/nvkm/nvfw/hs.c b/drivers/gpu/drm/nouveau/nvkm/nvfw/hs.c
index 04ed77cb2eba..a7e0583401d0 100644
--- a/drivers/gpu/drm/nouveau/nvkm/nvfw/hs.c
+++ b/drivers/gpu/drm/nouveau/nvkm/nvfw/hs.c
@@ -38,6 +38,24 @@ nvfw_hs_header(struct nvkm_subdev *subdev, const void *data)
return hdr;
}
+const struct nvfw_hs_header_v2 *
+nvfw_hs_header_v2(struct nvkm_subdev *subdev, const void *data)
+{
+ const struct nvfw_hs_header_v2 *hdr = data;
+
+ nvkm_debug(subdev, "hsHeader:\n");
+ nvkm_debug(subdev, "\tsigProdOffset : 0x%x\n", hdr->sig_prod_offset);
+ nvkm_debug(subdev, "\tsigProdSize : 0x%x\n", hdr->sig_prod_size);
+ nvkm_debug(subdev, "\tpatchLoc : 0x%x\n", hdr->patch_loc);
+ nvkm_debug(subdev, "\tpatchSig : 0x%x\n", hdr->patch_sig);
+ nvkm_debug(subdev, "\tmetadataOffset : 0x%x\n", hdr->meta_data_offset);
+ nvkm_debug(subdev, "\tmetadataSize : 0x%x\n", hdr->meta_data_size);
+ nvkm_debug(subdev, "\tnumSig : 0x%x\n", hdr->num_sig);
+ nvkm_debug(subdev, "\theaderOffset : 0x%x\n", hdr->header_offset);
+ nvkm_debug(subdev, "\theaderSize : 0x%x\n", hdr->header_size);
+ return hdr;
+}
+
const struct nvfw_hs_load_header *
nvfw_hs_load_header(struct nvkm_subdev *subdev, const void *data)
{
@@ -60,3 +78,24 @@ nvfw_hs_load_header(struct nvkm_subdev *subdev, const void *data)
return hdr;
}
+
+const struct nvfw_hs_load_header_v2 *
+nvfw_hs_load_header_v2(struct nvkm_subdev *subdev, const void *data)
+{
+ const struct nvfw_hs_load_header_v2 *hdr = data;
+ int i;
+
+ nvkm_debug(subdev, "hsLoadHeader:\n");
+ nvkm_debug(subdev, "\tosCodeOffset : 0x%x\n", hdr->os_code_offset);
+ nvkm_debug(subdev, "\tosCodeSize : 0x%x\n", hdr->os_code_size);
+ nvkm_debug(subdev, "\tosDataOffset : 0x%x\n", hdr->os_data_offset);
+ nvkm_debug(subdev, "\tosDataSize : 0x%x\n", hdr->os_data_size);
+ nvkm_debug(subdev, "\tnumApps : 0x%x\n", hdr->num_apps);
+ for (i = 0; i < hdr->num_apps; i++) {
+ nvkm_debug(subdev,
+ "\tApp[%d] : offset 0x%x size 0x%x\n", i,
+ hdr->app[i].offset, hdr->app[i].size);
+ }
+
+ return hdr;
+}
diff --git a/drivers/gpu/drm/nouveau/nvkm/nvfw/ls.c b/drivers/gpu/drm/nouveau/nvkm/nvfw/ls.c
index b847f281ce97..45c3a6c5e088 100644
--- a/drivers/gpu/drm/nouveau/nvkm/nvfw/ls.c
+++ b/drivers/gpu/drm/nouveau/nvkm/nvfw/ls.c
@@ -106,3 +106,75 @@ nvfw_ls_desc_v1(struct nvkm_subdev *subdev, const void *data)
return hdr;
}
+
+const struct nvfw_ls_desc_v2 *
+nvfw_ls_desc_v2(struct nvkm_subdev *subdev, const void *data)
+{
+ const struct nvfw_ls_desc_v2 *hdr = data;
+ char *date;
+ int i;
+
+ nvkm_debug(subdev, "lsUcodeImgDesc:\n");
+ nvkm_debug(subdev, "\tdescriptorSize : %d\n", hdr->descriptor_size);
+ nvkm_debug(subdev, "\timageSize : %d\n", hdr->image_size);
+ nvkm_debug(subdev, "\ttoolsVersion : 0x%x\n", hdr->tools_version);
+ nvkm_debug(subdev, "\tappVersion : 0x%x\n", hdr->app_version);
+
+ date = kstrndup(hdr->date, sizeof(hdr->date), GFP_KERNEL);
+ nvkm_debug(subdev, "\tdate : %s\n", date);
+ kfree(date);
+
+ nvkm_debug(subdev, "\tsecureBootloader : 0x%x\n", hdr->secure_bootloader);
+ nvkm_debug(subdev, "\tbootloaderStartOffset: 0x%x\n", hdr->bootloader_start_offset);
+ nvkm_debug(subdev, "\tbootloaderSize : 0x%x\n", hdr->bootloader_size);
+ nvkm_debug(subdev, "\tbootloaderImemOffset : 0x%x\n", hdr->bootloader_imem_offset);
+ nvkm_debug(subdev, "\tbootloaderEntryPoint : 0x%x\n", hdr->bootloader_entry_point);
+
+ nvkm_debug(subdev, "\tappStartOffset : 0x%x\n", hdr->app_start_offset);
+ nvkm_debug(subdev, "\tappSize : 0x%x\n", hdr->app_size);
+ nvkm_debug(subdev, "\tappImemOffset : 0x%x\n", hdr->app_imem_offset);
+ nvkm_debug(subdev, "\tappImemEntry : 0x%x\n", hdr->app_imem_entry);
+ nvkm_debug(subdev, "\tappDmemOffset : 0x%x\n", hdr->app_dmem_offset);
+ nvkm_debug(subdev, "\tappResidentCodeOffset: 0x%x\n", hdr->app_resident_code_offset);
+ nvkm_debug(subdev, "\tappResidentCodeSize : 0x%x\n", hdr->app_resident_code_size);
+ nvkm_debug(subdev, "\tappResidentDataOffset: 0x%x\n", hdr->app_resident_data_offset);
+ nvkm_debug(subdev, "\tappResidentDataSize : 0x%x\n", hdr->app_resident_data_size);
+
+ nvkm_debug(subdev, "\tnbImemOverlays : %d\n", hdr->nb_imem_overlays);
+ nvkm_debug(subdev, "\tnbDmemOverlays : %d\n", hdr->nb_dmem_overlays);
+ for (i = 0; i < ARRAY_SIZE(hdr->load_ovl); i++) {
+ nvkm_debug(subdev, "\tloadOvl[%d] : 0x%x %d\n", i,
+ hdr->load_ovl[i].start, hdr->load_ovl[i].size);
+ }
+
+ return hdr;
+}
+
+const struct nvfw_ls_hsbl_bin_hdr *
+nvfw_ls_hsbl_bin_hdr(struct nvkm_subdev *subdev, const void *data)
+{
+ const struct nvfw_ls_hsbl_bin_hdr *hdr = data;
+
+ nvkm_debug(subdev, "lsHsblBinHdr:\n");
+ nvkm_debug(subdev, "\tbinMagic : 0x%08x\n", hdr->bin_magic);
+ nvkm_debug(subdev, "\tbinVer : %d\n", hdr->bin_ver);
+ nvkm_debug(subdev, "\tbinSize : %d\n", hdr->bin_size);
+ nvkm_debug(subdev, "\theaderOffset : 0x%x\n", hdr->header_offset);
+ return hdr;
+}
+
+const struct nvfw_ls_hsbl_hdr *
+nvfw_ls_hsbl_hdr(struct nvkm_subdev *subdev, const void *data)
+{
+ const struct nvfw_ls_hsbl_hdr *hdr = data;
+
+ nvkm_debug(subdev, "lsHsblHdr:\n");
+ nvkm_debug(subdev, "\tsigProdOffset : 0x%x\n", hdr->sig_prod_offset);
+ nvkm_debug(subdev, "\tsigProdSize : 0x%x\n", hdr->sig_prod_size);
+ nvkm_debug(subdev, "\tpatchLoc : 0x%x\n", hdr->patch_loc);
+ nvkm_debug(subdev, "\tpatchSig : 0x%x\n", hdr->patch_sig);
+ nvkm_debug(subdev, "\tmetadataOffset : 0x%x\n", hdr->meta_data_offset);
+ nvkm_debug(subdev, "\tmetadataSize : 0x%x\n", hdr->meta_data_size);
+ nvkm_debug(subdev, "\tnumSig : 0x%x\n", hdr->num_sig);
+ return hdr;
+}
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/Kbuild b/drivers/gpu/drm/nouveau/nvkm/subdev/Kbuild
index 2cb24fff7e32..4c2f6fc4ef58 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/Kbuild
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/Kbuild
@@ -23,4 +23,5 @@ include $(src)/nvkm/subdev/privring/Kbuild
include $(src)/nvkm/subdev/therm/Kbuild
include $(src)/nvkm/subdev/timer/Kbuild
include $(src)/nvkm/subdev/top/Kbuild
+include $(src)/nvkm/subdev/vfn/Kbuild
include $(src)/nvkm/subdev/volt/Kbuild
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/acr/Kbuild b/drivers/gpu/drm/nouveau/nvkm/subdev/acr/Kbuild
index 5b9f64a8957f..5731f35b11e1 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/acr/Kbuild
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/acr/Kbuild
@@ -1,10 +1,12 @@
# SPDX-License-Identifier: MIT
nvkm-y += nvkm/subdev/acr/base.o
-nvkm-y += nvkm/subdev/acr/hsfw.o
nvkm-y += nvkm/subdev/acr/lsfw.o
nvkm-y += nvkm/subdev/acr/gm200.o
nvkm-y += nvkm/subdev/acr/gm20b.o
nvkm-y += nvkm/subdev/acr/gp102.o
nvkm-y += nvkm/subdev/acr/gp108.o
+nvkm-y += nvkm/subdev/acr/gv100.o
nvkm-y += nvkm/subdev/acr/gp10b.o
nvkm-y += nvkm/subdev/acr/tu102.o
+nvkm-y += nvkm/subdev/acr/ga100.o
+nvkm-y += nvkm/subdev/acr/ga102.o
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/acr/base.c b/drivers/gpu/drm/nouveau/nvkm/subdev/acr/base.c
index af6cac696d43..795f3a649b12 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/acr/base.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/acr/base.c
@@ -24,50 +24,63 @@
#include <core/firmware.h>
#include <core/memory.h>
#include <subdev/mmu.h>
+#include <subdev/gsp.h>
+#include <subdev/pmu.h>
+#include <engine/sec2.h>
+#include <engine/nvdec.h>
-static struct nvkm_acr_hsf *
-nvkm_acr_hsf_find(struct nvkm_acr *acr, const char *name)
+static struct nvkm_acr_hsfw *
+nvkm_acr_hsfw_find(struct nvkm_acr *acr, const char *name)
{
- struct nvkm_acr_hsf *hsf;
- list_for_each_entry(hsf, &acr->hsf, head) {
- if (!strcmp(hsf->name, name))
- return hsf;
+ struct nvkm_acr_hsfw *hsfw;
+
+ list_for_each_entry(hsfw, &acr->hsfw, head) {
+ if (!strcmp(hsfw->fw.fw.name, name))
+ return hsfw;
}
+
return NULL;
}
int
-nvkm_acr_hsf_boot(struct nvkm_acr *acr, const char *name)
+nvkm_acr_hsfw_boot(struct nvkm_acr *acr, const char *name)
{
struct nvkm_subdev *subdev = &acr->subdev;
- struct nvkm_acr_hsf *hsf;
- int ret;
+ struct nvkm_acr_hsfw *hsfw;
- hsf = nvkm_acr_hsf_find(acr, name);
- if (!hsf)
+ hsfw = nvkm_acr_hsfw_find(acr, name);
+ if (!hsfw)
return -EINVAL;
- nvkm_debug(subdev, "executing %s binary\n", hsf->name);
- ret = nvkm_falcon_get(hsf->falcon, subdev);
- if (ret)
- return ret;
+ return nvkm_falcon_fw_boot(&hsfw->fw, subdev, true, NULL, NULL,
+ hsfw->boot_mbox0, hsfw->intr_clear);
+}
- ret = hsf->func->boot(acr, hsf);
- nvkm_falcon_put(hsf->falcon, subdev);
- if (ret) {
- nvkm_error(subdev, "%s binary failed\n", hsf->name);
- return ret;
+static struct nvkm_acr_lsf *
+nvkm_acr_rtos(struct nvkm_acr *acr)
+{
+ struct nvkm_acr_lsf *lsf;
+
+ if (acr) {
+ list_for_each_entry(lsf, &acr->lsf, head) {
+ if (lsf->func->bootstrap_falcon)
+ return lsf;
+ }
}
- nvkm_debug(subdev, "%s binary completed successfully\n", hsf->name);
- return 0;
+ return NULL;
}
static void
nvkm_acr_unload(struct nvkm_acr *acr)
{
if (acr->done) {
- nvkm_acr_hsf_boot(acr, "unload");
+ if (acr->rtos) {
+ nvkm_subdev_unref(acr->rtos->falcon->owner);
+ acr->rtos = NULL;
+ }
+
+ nvkm_acr_hsfw_boot(acr, "unload");
acr->done = false;
}
}
@@ -76,7 +89,7 @@ static int
nvkm_acr_load(struct nvkm_acr *acr)
{
struct nvkm_subdev *subdev = &acr->subdev;
- struct nvkm_acr_lsf *lsf;
+ struct nvkm_acr_lsf *rtos = nvkm_acr_rtos(acr);
u64 start, limit;
int ret;
@@ -100,12 +113,12 @@ nvkm_acr_load(struct nvkm_acr *acr)
acr->done = true;
- list_for_each_entry(lsf, &acr->lsf, head) {
- if (lsf->func->boot) {
- ret = lsf->func->boot(lsf->falcon);
- if (ret)
- break;
- }
+ if (rtos) {
+ ret = nvkm_subdev_ref(rtos->falcon->owner);
+ if (ret)
+ return ret;
+
+ acr->rtos = rtos;
}
return ret;
@@ -118,33 +131,17 @@ nvkm_acr_reload(struct nvkm_acr *acr)
return nvkm_acr_load(acr);
}
-static struct nvkm_acr_lsf *
-nvkm_acr_falcon(struct nvkm_device *device)
-{
- struct nvkm_acr *acr = device->acr;
- struct nvkm_acr_lsf *lsf;
-
- if (acr) {
- list_for_each_entry(lsf, &acr->lsf, head) {
- if (lsf->func->bootstrap_falcon)
- return lsf;
- }
- }
-
- return NULL;
-}
-
int
nvkm_acr_bootstrap_falcons(struct nvkm_device *device, unsigned long mask)
{
- struct nvkm_acr_lsf *acrflcn = nvkm_acr_falcon(device);
struct nvkm_acr *acr = device->acr;
+ struct nvkm_acr_lsf *rtos = nvkm_acr_rtos(acr);
unsigned long id;
/* If there's no LS FW managing bootstrapping of other LS falcons,
* we depend on the HS firmware being able to do it instead.
*/
- if (!acrflcn) {
+ if (!rtos) {
/* Which isn't possible everywhere... */
if ((mask & acr->func->bootstrap_falcons) == mask) {
int ret = nvkm_acr_reload(acr);
@@ -156,16 +153,14 @@ nvkm_acr_bootstrap_falcons(struct nvkm_device *device, unsigned long mask)
return -ENOSYS;
}
- if ((mask & acrflcn->func->bootstrap_falcons) != mask)
+ if ((mask & rtos->func->bootstrap_falcons) != mask)
return -ENOSYS;
- if (acrflcn->func->bootstrap_multiple_falcons) {
- return acrflcn->func->
- bootstrap_multiple_falcons(acrflcn->falcon, mask);
- }
+ if (rtos->func->bootstrap_multiple_falcons)
+ return rtos->func->bootstrap_multiple_falcons(rtos->falcon, mask);
for_each_set_bit(id, &mask, NVKM_ACR_LSF_NUM) {
- int ret = acrflcn->func->bootstrap_falcon(acrflcn->falcon, id);
+ int ret = rtos->func->bootstrap_falcon(rtos->falcon, id);
if (ret)
return ret;
}
@@ -189,6 +184,9 @@ nvkm_acr_managed_falcon(struct nvkm_device *device, enum nvkm_acr_lsf_id id)
static int
nvkm_acr_fini(struct nvkm_subdev *subdev, bool suspend)
{
+ if (!subdev->use.enabled)
+ return 0;
+
nvkm_acr_unload(nvkm_acr(subdev));
return 0;
}
@@ -196,17 +194,19 @@ nvkm_acr_fini(struct nvkm_subdev *subdev, bool suspend)
static int
nvkm_acr_init(struct nvkm_subdev *subdev)
{
- if (!nvkm_acr_falcon(subdev->device))
+ struct nvkm_acr *acr = nvkm_acr(subdev);
+
+ if (!nvkm_acr_rtos(acr))
return 0;
- return nvkm_acr_load(nvkm_acr(subdev));
+ return nvkm_acr_load(acr);
}
static void
nvkm_acr_cleanup(struct nvkm_acr *acr)
{
nvkm_acr_lsfw_del_all(acr);
- nvkm_acr_hsfw_del_all(acr);
+
nvkm_firmware_put(acr->wpr_fw);
acr->wpr_fw = NULL;
}
@@ -218,7 +218,8 @@ nvkm_acr_oneinit(struct nvkm_subdev *subdev)
struct nvkm_acr *acr = nvkm_acr(subdev);
struct nvkm_acr_hsfw *hsfw;
struct nvkm_acr_lsfw *lsfw, *lsft;
- struct nvkm_acr_lsf *lsf;
+ struct nvkm_acr_lsf *lsf, *rtos;
+ struct nvkm_falcon *falcon;
u32 wpr_size = 0;
u64 falcons;
int ret, i;
@@ -260,10 +261,10 @@ nvkm_acr_oneinit(struct nvkm_subdev *subdev)
}
/* Ensure the falcon that'll provide ACR functions is booted first. */
- lsf = nvkm_acr_falcon(device);
- if (lsf) {
- falcons = lsf->func->bootstrap_falcons;
- list_move(&lsf->head, &acr->lsf);
+ rtos = nvkm_acr_rtos(acr);
+ if (rtos) {
+ falcons = rtos->func->bootstrap_falcons;
+ list_move(&rtos->head, &acr->lsf);
} else {
falcons = acr->func->bootstrap_falcons;
}
@@ -301,7 +302,7 @@ nvkm_acr_oneinit(struct nvkm_subdev *subdev)
nvkm_wobj(acr->wpr, 0, acr->wpr_fw->data, acr->wpr_fw->size);
if (!acr->wpr_fw || acr->wpr_comp)
- acr->func->wpr_build(acr, nvkm_acr_falcon(device));
+ acr->func->wpr_build(acr, rtos);
acr->func->wpr_patch(acr, (s64)acr->wpr_start - acr->wpr_prev);
if (acr->wpr_fw && acr->wpr_comp) {
@@ -336,8 +337,16 @@ nvkm_acr_oneinit(struct nvkm_subdev *subdev)
/* Load HS firmware blobs into ACR VMM. */
list_for_each_entry(hsfw, &acr->hsfw, head) {
- nvkm_debug(subdev, "loading %s fw\n", hsfw->name);
- ret = hsfw->func->load(acr, hsfw);
+ switch (hsfw->falcon_id) {
+ case NVKM_ACR_HSF_PMU : falcon = &device->pmu->falcon; break;
+ case NVKM_ACR_HSF_SEC2: falcon = &device->sec2->falcon; break;
+ case NVKM_ACR_HSF_GSP : falcon = &device->gsp->falcon; break;
+ default:
+ WARN_ON(1);
+ return -EINVAL;
+ }
+
+ ret = nvkm_falcon_fw_oneinit(&hsfw->fw, falcon, acr->vmm, acr->inst);
if (ret)
return ret;
}
@@ -351,15 +360,13 @@ static void *
nvkm_acr_dtor(struct nvkm_subdev *subdev)
{
struct nvkm_acr *acr = nvkm_acr(subdev);
- struct nvkm_acr_hsf *hsf, *hst;
+ struct nvkm_acr_hsfw *hsfw, *hsft;
struct nvkm_acr_lsf *lsf, *lst;
- list_for_each_entry_safe(hsf, hst, &acr->hsf, head) {
- nvkm_vmm_put(acr->vmm, &hsf->vma);
- nvkm_memory_unref(&hsf->ucode);
- kfree(hsf->imem);
- list_del(&hsf->head);
- kfree(hsf);
+ list_for_each_entry_safe(hsfw, hsft, &acr->hsfw, head) {
+ nvkm_falcon_fw_dtor(&hsfw->fw);
+ list_del(&hsfw->head);
+ kfree(hsfw);
}
nvkm_vmm_part(acr->vmm, acr->inst);
@@ -420,7 +427,6 @@ nvkm_acr_new_(const struct nvkm_acr_fwif *fwif, struct nvkm_device *device,
nvkm_subdev_ctor(&nvkm_acr, device, type, inst, &acr->subdev);
INIT_LIST_HEAD(&acr->hsfw);
INIT_LIST_HEAD(&acr->lsfw);
- INIT_LIST_HEAD(&acr->hsf);
INIT_LIST_HEAD(&acr->lsf);
fwif = nvkm_firmware_load(&acr->subdev, fwif, "Acr", acr);
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/acr/ga100.c b/drivers/gpu/drm/nouveau/nvkm/subdev/acr/ga100.c
new file mode 100644
index 000000000000..e3370c1551c0
--- /dev/null
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/acr/ga100.c
@@ -0,0 +1,49 @@
+/*
+ * Copyright 2021 Red Hat Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ */
+#include "priv.h"
+
+void
+ga100_acr_wpr_check(struct nvkm_acr *acr, u64 *start, u64 *limit)
+{
+ struct nvkm_device *device = acr->subdev.device;
+
+ *start = (u64)(nvkm_rd32(device, 0x1fa81c) & 0xffffff00) << 8;
+ *limit = (u64)(nvkm_rd32(device, 0x1fa820) & 0xffffff00) << 8;
+ *limit = *limit + 0x20000;
+}
+
+int
+ga100_acr_hsfw_ctor(struct nvkm_acr *acr, const char *bl, const char *fw,
+ const char *name, int ver, const struct nvkm_acr_hsf_fwif *fwif)
+{
+ struct nvkm_acr_hsfw *hsfw;
+
+ if (!(hsfw = kzalloc(sizeof(*hsfw), GFP_KERNEL)))
+ return -ENOMEM;
+
+ hsfw->falcon_id = fwif->falcon_id;
+ hsfw->boot_mbox0 = fwif->boot_mbox0;
+ hsfw->intr_clear = fwif->intr_clear;
+ list_add_tail(&hsfw->head, &acr->hsfw);
+
+ return nvkm_falcon_fw_ctor_hs_v2(fwif->func, name, &acr->subdev, fw, ver, NULL, &hsfw->fw);
+}
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/acr/ga102.c b/drivers/gpu/drm/nouveau/nvkm/subdev/acr/ga102.c
new file mode 100644
index 000000000000..45dcf493e972
--- /dev/null
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/acr/ga102.c
@@ -0,0 +1,326 @@
+/*
+ * Copyright 2021 Red Hat Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ */
+#include "priv.h"
+
+#include <nvfw/acr.h>
+
+static int
+ga102_acr_wpr_patch(struct nvkm_acr *acr, s64 adjust)
+{
+ struct wpr_header_v2 hdr;
+ struct lsb_header_v2 *lsb;
+ struct nvkm_acr_lsfw *lsfw;
+ u32 offset = 0;
+
+ lsb = kvmalloc(sizeof(*lsb), GFP_KERNEL);
+ if (!lsb)
+ return -ENOMEM;
+
+ do {
+ nvkm_robj(acr->wpr, offset, &hdr, sizeof(hdr));
+ wpr_header_v2_dump(&acr->subdev, &hdr);
+
+ list_for_each_entry(lsfw, &acr->lsfw, head) {
+ if (lsfw->id != hdr.wpr.falcon_id)
+ continue;
+
+ nvkm_robj(acr->wpr, hdr.wpr.lsb_offset, lsb, sizeof(*lsb));
+ lsb_header_v2_dump(&acr->subdev, lsb);
+
+ lsfw->func->bld_patch(acr, lsb->bl_data_off, adjust);
+ break;
+ }
+
+ offset += sizeof(hdr);
+ } while (hdr.wpr.falcon_id != WPR_HEADER_V1_FALCON_ID_INVALID);
+
+ kvfree(lsb);
+ return 0;
+}
+
+static int
+ga102_acr_wpr_build_lsb(struct nvkm_acr *acr, struct nvkm_acr_lsfw *lsfw)
+{
+ struct lsb_header_v2 *hdr;
+ int ret = 0;
+
+ if (WARN_ON(lsfw->sig->size != sizeof(hdr->signature)))
+ return -EINVAL;
+
+ hdr = kvzalloc(sizeof(*hdr), GFP_KERNEL);
+ if (!hdr)
+ return -ENOMEM;
+
+ hdr->hdr.identifier = WPR_GENERIC_HEADER_ID_LSF_LSB_HEADER;
+ hdr->hdr.version = 2;
+ hdr->hdr.size = sizeof(*hdr);
+
+ memcpy(&hdr->signature, lsfw->sig->data, lsfw->sig->size);
+ hdr->ucode_off = lsfw->offset.img;
+ hdr->ucode_size = lsfw->ucode_size;
+ hdr->data_size = lsfw->data_size;
+ hdr->bl_code_size = lsfw->bootloader_size;
+ hdr->bl_imem_off = lsfw->bootloader_imem_offset;
+ hdr->bl_data_off = lsfw->offset.bld;
+ hdr->bl_data_size = lsfw->bl_data_size;
+ hdr->app_code_off = lsfw->app_start_offset + lsfw->app_resident_code_offset;
+ hdr->app_code_size = ALIGN(lsfw->app_resident_code_size, 0x100);
+ hdr->app_data_off = lsfw->app_start_offset + lsfw->app_resident_data_offset;
+ hdr->app_data_size = ALIGN(lsfw->app_resident_data_size, 0x100);
+ hdr->app_imem_offset = lsfw->app_imem_offset;
+ hdr->app_dmem_offset = lsfw->app_dmem_offset;
+ hdr->flags = lsfw->func->flags;
+ hdr->monitor_code_offset = 0;
+ hdr->monitor_data_offset = 0;
+ hdr->manifest_offset = 0;
+
+ if (lsfw->secure_bootloader) {
+ struct nvkm_falcon_fw fw = {
+ .fw.img = hdr->hs_fmc_params.pkc_signature,
+ .fw.name = "LSFW",
+ .func = &(const struct nvkm_falcon_fw_func) {
+ .signature = ga100_flcn_fw_signature,
+ },
+ .sig_size = lsfw->sig_size,
+ .sig_nr = lsfw->sig_nr,
+ .sigs = lsfw->sigs,
+ .fuse_ver = lsfw->fuse_ver,
+ .engine_id = lsfw->engine_id,
+ .ucode_id = lsfw->ucode_id,
+ .falcon = lsfw->falcon,
+
+ };
+
+ ret = nvkm_falcon_get(fw.falcon, &acr->subdev);
+ if (ret == 0) {
+ hdr->hs_fmc_params.hs_fmc = 1;
+ hdr->hs_fmc_params.pkc_algo = 0;
+ hdr->hs_fmc_params.pkc_algo_version = 1;
+ hdr->hs_fmc_params.engid_mask = lsfw->engine_id;
+ hdr->hs_fmc_params.ucode_id = lsfw->ucode_id;
+ hdr->hs_fmc_params.fuse_ver = lsfw->fuse_ver;
+ ret = nvkm_falcon_fw_patch(&fw);
+ nvkm_falcon_put(fw.falcon, &acr->subdev);
+ }
+ }
+
+ nvkm_wobj(acr->wpr, lsfw->offset.lsb, hdr, sizeof(*hdr));
+ kvfree(hdr);
+ return ret;
+}
+
+static int
+ga102_acr_wpr_build(struct nvkm_acr *acr, struct nvkm_acr_lsf *rtos)
+{
+ struct nvkm_acr_lsfw *lsfw;
+ struct wpr_header_v2 hdr;
+ u32 offset = 0;
+ int ret;
+
+ /*XXX: shared sub-WPR headers, fill terminator for now. */
+ nvkm_wo32(acr->wpr, 0x300, (2 << 16) | WPR_GENERIC_HEADER_ID_LSF_SHARED_SUB_WPR);
+ nvkm_wo32(acr->wpr, 0x304, 0x14);
+ nvkm_wo32(acr->wpr, 0x308, 0xffffffff);
+ nvkm_wo32(acr->wpr, 0x30c, 0);
+ nvkm_wo32(acr->wpr, 0x310, 0);
+
+ /* Fill per-LSF structures. */
+ list_for_each_entry(lsfw, &acr->lsfw, head) {
+ struct lsf_signature_v2 *sig = (void *)lsfw->sig->data;
+
+ hdr.hdr.identifier = WPR_GENERIC_HEADER_ID_LSF_WPR_HEADER;
+ hdr.hdr.version = 2;
+ hdr.hdr.size = sizeof(hdr);
+ hdr.wpr.falcon_id = lsfw->id;
+ hdr.wpr.lsb_offset = lsfw->offset.lsb;
+ hdr.wpr.bootstrap_owner = NVKM_ACR_LSF_GSPLITE;
+ hdr.wpr.lazy_bootstrap = 1;
+ hdr.wpr.bin_version = sig->ls_ucode_version;
+ hdr.wpr.status = WPR_HEADER_V1_STATUS_COPY;
+
+ /* Write WPR header. */
+ nvkm_wobj(acr->wpr, offset, &hdr, sizeof(hdr));
+ offset += sizeof(hdr);
+
+ /* Write LSB header. */
+ ret = ga102_acr_wpr_build_lsb(acr, lsfw);
+ if (ret)
+ return ret;
+
+ /* Write ucode image. */
+ nvkm_wobj(acr->wpr, lsfw->offset.img,
+ lsfw->img.data,
+ lsfw->img.size);
+
+ /* Write bootloader data. */
+ lsfw->func->bld_write(acr, lsfw->offset.bld, lsfw);
+ }
+
+ /* Finalise WPR. */
+ hdr.hdr.identifier = WPR_GENERIC_HEADER_ID_LSF_WPR_HEADER;
+ hdr.hdr.version = 2;
+ hdr.hdr.size = sizeof(hdr);
+ hdr.wpr.falcon_id = WPR_HEADER_V1_FALCON_ID_INVALID;
+ nvkm_wobj(acr->wpr, offset, &hdr, sizeof(hdr));
+ return 0;
+}
+
+static u32
+ga102_acr_wpr_layout(struct nvkm_acr *acr)
+{
+ struct nvkm_acr_lsfw *lsfw;
+ u32 wpr = 0;
+
+ wpr += 21 /* MAX_LSF */ * sizeof(struct wpr_header_v2);
+ wpr = ALIGN(wpr, 256);
+
+ wpr += 0x100; /* Shared sub-WPR headers. */
+
+ list_for_each_entry(lsfw, &acr->lsfw, head) {
+ wpr = ALIGN(wpr, 256);
+ lsfw->offset.lsb = wpr;
+ wpr += sizeof(struct lsb_header_v2);
+
+ wpr = ALIGN(wpr, 4096);
+ lsfw->offset.img = wpr;
+ wpr += lsfw->img.size;
+
+ wpr = ALIGN(wpr, 256);
+ lsfw->offset.bld = wpr;
+ lsfw->bl_data_size = ALIGN(lsfw->func->bld_size, 256);
+ wpr += lsfw->bl_data_size;
+ }
+
+ return wpr;
+}
+
+static int
+ga102_acr_wpr_parse(struct nvkm_acr *acr)
+{
+ const struct wpr_header_v2 *hdr = (void *)acr->wpr_fw->data;
+
+ while (hdr->wpr.falcon_id != WPR_HEADER_V1_FALCON_ID_INVALID) {
+ wpr_header_v2_dump(&acr->subdev, hdr);
+ if (!nvkm_acr_lsfw_add(NULL, acr, NULL, (hdr++)->wpr.falcon_id))
+ return -ENOMEM;
+ }
+
+ return 0;
+}
+
+MODULE_FIRMWARE("nvidia/ga102/acr/ucode_unload.bin");
+MODULE_FIRMWARE("nvidia/ga103/acr/ucode_unload.bin");
+MODULE_FIRMWARE("nvidia/ga104/acr/ucode_unload.bin");
+MODULE_FIRMWARE("nvidia/ga106/acr/ucode_unload.bin");
+MODULE_FIRMWARE("nvidia/ga107/acr/ucode_unload.bin");
+
+static const struct nvkm_acr_hsf_fwif
+ga102_acr_unload_fwif[] = {
+ { 0, ga100_acr_hsfw_ctor, &ga102_flcn_fw, NVKM_ACR_HSF_SEC2 },
+ {}
+};
+
+MODULE_FIRMWARE("nvidia/ga102/acr/ucode_asb.bin");
+MODULE_FIRMWARE("nvidia/ga103/acr/ucode_asb.bin");
+MODULE_FIRMWARE("nvidia/ga104/acr/ucode_asb.bin");
+MODULE_FIRMWARE("nvidia/ga106/acr/ucode_asb.bin");
+MODULE_FIRMWARE("nvidia/ga107/acr/ucode_asb.bin");
+
+static const struct nvkm_acr_hsf_fwif
+ga102_acr_asb_fwif[] = {
+ { 0, ga100_acr_hsfw_ctor, &ga102_flcn_fw, NVKM_ACR_HSF_GSP },
+ {}
+};
+
+static const struct nvkm_falcon_fw_func
+ga102_acr_ahesasc_0 = {
+ .signature = ga100_flcn_fw_signature,
+ .reset = gm200_flcn_fw_reset,
+ .setup = gp102_acr_load_setup,
+ .load = ga102_flcn_fw_load,
+ .boot = ga102_flcn_fw_boot,
+};
+
+MODULE_FIRMWARE("nvidia/ga102/acr/ucode_ahesasc.bin");
+MODULE_FIRMWARE("nvidia/ga103/acr/ucode_ahesasc.bin");
+MODULE_FIRMWARE("nvidia/ga104/acr/ucode_ahesasc.bin");
+MODULE_FIRMWARE("nvidia/ga106/acr/ucode_ahesasc.bin");
+MODULE_FIRMWARE("nvidia/ga107/acr/ucode_ahesasc.bin");
+
+static const struct nvkm_acr_hsf_fwif
+ga102_acr_ahesasc_fwif[] = {
+ { 0, ga100_acr_hsfw_ctor, &ga102_acr_ahesasc_0, NVKM_ACR_HSF_SEC2 },
+ {}
+};
+
+static const struct nvkm_acr_func
+ga102_acr = {
+ .ahesasc = ga102_acr_ahesasc_fwif,
+ .asb = ga102_acr_asb_fwif,
+ .unload = ga102_acr_unload_fwif,
+ .wpr_parse = ga102_acr_wpr_parse,
+ .wpr_layout = ga102_acr_wpr_layout,
+ .wpr_alloc = gp102_acr_wpr_alloc,
+ .wpr_patch = ga102_acr_wpr_patch,
+ .wpr_build = ga102_acr_wpr_build,
+ .wpr_check = ga100_acr_wpr_check,
+ .init = tu102_acr_init,
+};
+
+static int
+ga102_acr_load(struct nvkm_acr *acr, int version,
+ const struct nvkm_acr_fwif *fwif)
+{
+ struct nvkm_subdev *subdev = &acr->subdev;
+ const struct nvkm_acr_hsf_fwif *hsfwif;
+
+ hsfwif = nvkm_firmware_load(subdev, fwif->func->ahesasc, "AcrAHESASC",
+ acr, NULL, "acr/ucode_ahesasc", "AHESASC");
+ if (IS_ERR(hsfwif))
+ return PTR_ERR(hsfwif);
+
+ hsfwif = nvkm_firmware_load(subdev, fwif->func->asb, "AcrASB",
+ acr, NULL, "acr/ucode_asb", "ASB");
+ if (IS_ERR(hsfwif))
+ return PTR_ERR(hsfwif);
+
+ hsfwif = nvkm_firmware_load(subdev, fwif->func->unload, "AcrUnload",
+ acr, NULL, "acr/ucode_unload", "unload");
+ if (IS_ERR(hsfwif))
+ return PTR_ERR(hsfwif);
+
+ return 0;
+}
+
+static const struct nvkm_acr_fwif
+ga102_acr_fwif[] = {
+ { 0, ga102_acr_load, &ga102_acr },
+ { -1, gm200_acr_nofw, &gm200_acr },
+ {}
+};
+
+int
+ga102_acr_new(struct nvkm_device *device, enum nvkm_subdev_type type, int inst,
+ struct nvkm_acr **pacr)
+{
+ return nvkm_acr_new_(ga102_acr_fwif, device, type, inst, pacr);
+}
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/acr/gm200.c b/drivers/gpu/drm/nouveau/nvkm/subdev/acr/gm200.c
index 82b4c8e1457c..31079c947758 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/acr/gm200.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/acr/gm200.c
@@ -46,7 +46,7 @@ gm200_acr_nofw(struct nvkm_acr *acr, int ver, const struct nvkm_acr_fwif *fwif)
int
gm200_acr_init(struct nvkm_acr *acr)
{
- return nvkm_acr_hsf_boot(acr, "load");
+ return nvkm_acr_hsfw_boot(acr, "load");
}
void
@@ -61,7 +61,7 @@ gm200_acr_wpr_check(struct nvkm_acr *acr, u64 *start, u64 *limit)
*limit = *limit + 0x20000;
}
-void
+int
gm200_acr_wpr_patch(struct nvkm_acr *acr, s64 adjust)
{
struct nvkm_subdev *subdev = &acr->subdev;
@@ -86,6 +86,8 @@ gm200_acr_wpr_patch(struct nvkm_acr *acr, s64 adjust)
}
offset += sizeof(hdr);
} while (hdr.falcon_id != WPR_HEADER_V0_FALCON_ID_INVALID);
+
+ return 0;
}
void
@@ -219,162 +221,50 @@ gm200_acr_wpr_parse(struct nvkm_acr *acr)
return 0;
}
-void
-gm200_acr_hsfw_bld(struct nvkm_acr *acr, struct nvkm_acr_hsf *hsf)
+int
+gm200_acr_hsfw_load_bld(struct nvkm_falcon_fw *fw)
{
struct flcn_bl_dmem_desc_v1 hsdesc = {
.ctx_dma = FALCON_DMAIDX_VIRT,
- .code_dma_base = hsf->vma->addr,
- .non_sec_code_off = hsf->non_sec_addr,
- .non_sec_code_size = hsf->non_sec_size,
- .sec_code_off = hsf->sec_addr,
- .sec_code_size = hsf->sec_size,
+ .code_dma_base = fw->vma->addr,
+ .non_sec_code_off = fw->nmem_base,
+ .non_sec_code_size = fw->nmem_size,
+ .sec_code_off = fw->imem_base,
+ .sec_code_size = fw->imem_size,
.code_entry_point = 0,
- .data_dma_base = hsf->vma->addr + hsf->data_addr,
- .data_size = hsf->data_size,
+ .data_dma_base = fw->vma->addr + fw->dmem_base_img,
+ .data_size = fw->dmem_size,
};
- flcn_bl_dmem_desc_v1_dump(&acr->subdev, &hsdesc);
-
- nvkm_falcon_load_dmem(hsf->falcon, &hsdesc, 0, sizeof(hsdesc), 0);
-}
-
-int
-gm200_acr_hsfw_boot(struct nvkm_acr *acr, struct nvkm_acr_hsf *hsf,
- u32 intr_clear, u32 mbox0_ok)
-{
- struct nvkm_subdev *subdev = &acr->subdev;
- struct nvkm_device *device = subdev->device;
- struct nvkm_falcon *falcon = hsf->falcon;
- u32 mbox0, mbox1;
- int ret;
-
- /* Reset falcon. */
- nvkm_falcon_reset(falcon);
- nvkm_falcon_bind_context(falcon, acr->inst);
+ flcn_bl_dmem_desc_v1_dump(fw->falcon->user, &hsdesc);
- /* Load bootloader into IMEM. */
- nvkm_falcon_load_imem(falcon, hsf->imem,
- falcon->code.limit - hsf->imem_size,
- hsf->imem_size,
- hsf->imem_tag,
- 0, false);
-
- /* Load bootloader data into DMEM. */
- hsf->func->bld(acr, hsf);
-
- /* Boot the falcon. */
- nvkm_mc_intr_mask(device, falcon->owner->type, falcon->owner->inst, false);
-
- nvkm_falcon_wr32(falcon, 0x040, 0xdeada5a5);
- nvkm_falcon_set_start_addr(falcon, hsf->imem_tag << 8);
- nvkm_falcon_start(falcon);
- ret = nvkm_falcon_wait_for_halt(falcon, 100);
- if (ret)
- return ret;
-
- /* Check for successful completion. */
- mbox0 = nvkm_falcon_rd32(falcon, 0x040);
- mbox1 = nvkm_falcon_rd32(falcon, 0x044);
- nvkm_debug(subdev, "mailbox %08x %08x\n", mbox0, mbox1);
- if (mbox0 && mbox0 != mbox0_ok)
- return -EIO;
-
- nvkm_falcon_clear_interrupt(falcon, intr_clear);
- nvkm_mc_intr_mask(device, falcon->owner->type, falcon->owner->inst, true);
- return ret;
+ return nvkm_falcon_pio_wr(fw->falcon, (u8 *)&hsdesc, 0, 0, DMEM, 0, sizeof(hsdesc), 0, 0);
}
int
-gm200_acr_hsfw_load(struct nvkm_acr *acr, struct nvkm_acr_hsfw *hsfw,
- struct nvkm_falcon *falcon)
+gm200_acr_hsfw_ctor(struct nvkm_acr *acr, const char *bl, const char *fw, const char *name, int ver,
+ const struct nvkm_acr_hsf_fwif *fwif)
{
- struct nvkm_subdev *subdev = &acr->subdev;
- struct nvkm_acr_hsf *hsf;
- int ret;
-
- /* Patch the appropriate signature (production/debug) into the FW
- * image, as determined by the mode the falcon is in.
- */
- ret = nvkm_falcon_get(falcon, subdev);
- if (ret)
- return ret;
-
- if (hsfw->sig.patch_loc) {
- if (!falcon->debug) {
- nvkm_debug(subdev, "patching production signature\n");
- memcpy(hsfw->image + hsfw->sig.patch_loc,
- hsfw->sig.prod.data,
- hsfw->sig.prod.size);
- } else {
- nvkm_debug(subdev, "patching debug signature\n");
- memcpy(hsfw->image + hsfw->sig.patch_loc,
- hsfw->sig.dbg.data,
- hsfw->sig.dbg.size);
- }
- }
-
- nvkm_falcon_put(falcon, subdev);
+ struct nvkm_acr_hsfw *hsfw;
- if (!(hsf = kzalloc(sizeof(*hsf), GFP_KERNEL)))
+ if (!(hsfw = kzalloc(sizeof(*hsfw), GFP_KERNEL)))
return -ENOMEM;
- hsf->func = hsfw->func;
- hsf->name = hsfw->name;
- list_add_tail(&hsf->head, &acr->hsf);
-
- hsf->imem_size = hsfw->imem_size;
- hsf->imem_tag = hsfw->imem_tag;
- hsf->imem = kmemdup(hsfw->imem, hsfw->imem_size, GFP_KERNEL);
- if (!hsf->imem)
- return -ENOMEM;
-
- hsf->non_sec_addr = hsfw->non_sec_addr;
- hsf->non_sec_size = hsfw->non_sec_size;
- hsf->sec_addr = hsfw->sec_addr;
- hsf->sec_size = hsfw->sec_size;
- hsf->data_addr = hsfw->data_addr;
- hsf->data_size = hsfw->data_size;
-
- /* Make the FW image accessible to the HS bootloader. */
- ret = nvkm_memory_new(subdev->device, NVKM_MEM_TARGET_INST,
- hsfw->image_size, 0x1000, false, &hsf->ucode);
- if (ret)
- return ret;
-
- nvkm_kmap(hsf->ucode);
- nvkm_wobj(hsf->ucode, 0, hsfw->image, hsfw->image_size);
- nvkm_done(hsf->ucode);
-
- ret = nvkm_vmm_get(acr->vmm, 12, nvkm_memory_size(hsf->ucode),
- &hsf->vma);
- if (ret)
- return ret;
-
- ret = nvkm_memory_map(hsf->ucode, 0, acr->vmm, hsf->vma, NULL, 0);
- if (ret)
- return ret;
- hsf->falcon = falcon;
- return 0;
-}
+ hsfw->falcon_id = fwif->falcon_id;
+ hsfw->boot_mbox0 = fwif->boot_mbox0;
+ hsfw->intr_clear = fwif->intr_clear;
+ list_add_tail(&hsfw->head, &acr->hsfw);
-int
-gm200_acr_unload_boot(struct nvkm_acr *acr, struct nvkm_acr_hsf *hsf)
-{
- return gm200_acr_hsfw_boot(acr, hsf, 0, 0x1d);
-}
-
-int
-gm200_acr_unload_load(struct nvkm_acr *acr, struct nvkm_acr_hsfw *hsfw)
-{
- return gm200_acr_hsfw_load(acr, hsfw, &acr->subdev.device->pmu->falcon);
+ return nvkm_falcon_fw_ctor_hs(fwif->func, name, &acr->subdev, bl, fw, ver, NULL, &hsfw->fw);
}
-const struct nvkm_acr_hsf_func
+const struct nvkm_falcon_fw_func
gm200_acr_unload_0 = {
- .load = gm200_acr_unload_load,
- .boot = gm200_acr_unload_boot,
- .bld = gm200_acr_hsfw_bld,
+ .signature = gm200_flcn_fw_signature,
+ .reset = gm200_flcn_fw_reset,
+ .load = gm200_flcn_fw_load,
+ .load_bld = gm200_acr_hsfw_load_bld,
+ .boot = gm200_flcn_fw_boot,
};
MODULE_FIRMWARE("nvidia/gm200/acr/ucode_unload.bin");
@@ -384,20 +274,15 @@ MODULE_FIRMWARE("nvidia/gp100/acr/ucode_unload.bin");
static const struct nvkm_acr_hsf_fwif
gm200_acr_unload_fwif[] = {
- { 0, nvkm_acr_hsfw_load, &gm200_acr_unload_0 },
+ { 0, gm200_acr_hsfw_ctor, &gm200_acr_unload_0, NVKM_ACR_HSF_PMU, 0, 0x00000010 },
{}
};
-int
-gm200_acr_load_boot(struct nvkm_acr *acr, struct nvkm_acr_hsf *hsf)
-{
- return gm200_acr_hsfw_boot(acr, hsf, 0x10, 0);
-}
-
static int
-gm200_acr_load_load(struct nvkm_acr *acr, struct nvkm_acr_hsfw *hsfw)
+gm200_acr_load_setup(struct nvkm_falcon_fw *fw)
{
- struct flcn_acr_desc *desc = (void *)&hsfw->image[hsfw->data_addr];
+ struct flcn_acr_desc *desc = (void *)&fw->fw.img[fw->dmem_base_img];
+ struct nvkm_acr *acr = fw->falcon->owner->device->acr;
desc->wpr_region_id = 1;
desc->regions.no_regions = 2;
@@ -408,15 +293,17 @@ gm200_acr_load_load(struct nvkm_acr *acr, struct nvkm_acr_hsfw *hsfw)
desc->regions.region_props[0].write_mask = 0xc;
desc->regions.region_props[0].client_mask = 0x2;
flcn_acr_desc_dump(&acr->subdev, desc);
-
- return gm200_acr_hsfw_load(acr, hsfw, &acr->subdev.device->pmu->falcon);
+ return 0;
}
-static const struct nvkm_acr_hsf_func
+static const struct nvkm_falcon_fw_func
gm200_acr_load_0 = {
- .load = gm200_acr_load_load,
- .boot = gm200_acr_load_boot,
- .bld = gm200_acr_hsfw_bld,
+ .signature = gm200_flcn_fw_signature,
+ .reset = gm200_flcn_fw_reset,
+ .setup = gm200_acr_load_setup,
+ .load = gm200_flcn_fw_load,
+ .load_bld = gm200_acr_hsfw_load_bld,
+ .boot = gm200_flcn_fw_boot,
};
MODULE_FIRMWARE("nvidia/gm200/acr/bl.bin");
@@ -433,7 +320,7 @@ MODULE_FIRMWARE("nvidia/gp100/acr/ucode_load.bin");
static const struct nvkm_acr_hsf_fwif
gm200_acr_load_fwif[] = {
- { 0, nvkm_acr_hsfw_load, &gm200_acr_load_0 },
+ { 0, gm200_acr_hsfw_ctor, &gm200_acr_load_0, NVKM_ACR_HSF_PMU, 0, 0x00000010 },
{}
};
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/acr/gm20b.c b/drivers/gpu/drm/nouveau/nvkm/subdev/acr/gm20b.c
index 54e996f2f630..ef5fb79128b1 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/acr/gm20b.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/acr/gm20b.c
@@ -45,43 +45,47 @@ gm20b_acr_wpr_alloc(struct nvkm_acr *acr, u32 wpr_size)
wpr_size, 0, true, &acr->wpr);
}
-static void
-gm20b_acr_load_bld(struct nvkm_acr *acr, struct nvkm_acr_hsf *hsf)
+static int
+gm20b_acr_hsfw_load_bld(struct nvkm_falcon_fw *fw)
{
struct flcn_bl_dmem_desc hsdesc = {
.ctx_dma = FALCON_DMAIDX_VIRT,
- .code_dma_base = hsf->vma->addr >> 8,
- .non_sec_code_off = hsf->non_sec_addr,
- .non_sec_code_size = hsf->non_sec_size,
- .sec_code_off = hsf->sec_addr,
- .sec_code_size = hsf->sec_size,
+ .code_dma_base = fw->vma->addr >> 8,
+ .non_sec_code_off = fw->nmem_base,
+ .non_sec_code_size = fw->nmem_size,
+ .sec_code_off = fw->imem_base,
+ .sec_code_size = fw->imem_size,
.code_entry_point = 0,
- .data_dma_base = (hsf->vma->addr + hsf->data_addr) >> 8,
- .data_size = hsf->data_size,
+ .data_dma_base = (fw->vma->addr + fw->dmem_base_img) >> 8,
+ .data_size = fw->dmem_size,
};
- flcn_bl_dmem_desc_dump(&acr->subdev, &hsdesc);
+ flcn_bl_dmem_desc_dump(fw->falcon->user, &hsdesc);
- nvkm_falcon_load_dmem(hsf->falcon, &hsdesc, 0, sizeof(hsdesc), 0);
+ return nvkm_falcon_pio_wr(fw->falcon, (u8 *)&hsdesc, 0, 0, DMEM, 0, sizeof(hsdesc), 0, 0);
}
+
static int
-gm20b_acr_load_load(struct nvkm_acr *acr, struct nvkm_acr_hsfw *hsfw)
+gm20b_acr_load_setup(struct nvkm_falcon_fw *fw)
{
- struct flcn_acr_desc *desc = (void *)&hsfw->image[hsfw->data_addr];
+ struct flcn_acr_desc *desc = (void *)&fw->fw.img[fw->dmem_base_img];
+ struct nvkm_acr *acr = fw->falcon->owner->device->acr;
desc->ucode_blob_base = nvkm_memory_addr(acr->wpr);
desc->ucode_blob_size = nvkm_memory_size(acr->wpr);
flcn_acr_desc_dump(&acr->subdev, desc);
-
- return gm200_acr_hsfw_load(acr, hsfw, &acr->subdev.device->pmu->falcon);
+ return 0;
}
-const struct nvkm_acr_hsf_func
+const struct nvkm_falcon_fw_func
gm20b_acr_load_0 = {
- .load = gm20b_acr_load_load,
- .boot = gm200_acr_load_boot,
- .bld = gm20b_acr_load_bld,
+ .signature = gm200_flcn_fw_signature,
+ .reset = gm200_flcn_fw_reset,
+ .setup = gm20b_acr_load_setup,
+ .load = gm200_flcn_fw_load,
+ .load_bld = gm20b_acr_hsfw_load_bld,
+ .boot = gm200_flcn_fw_boot,
};
#if IS_ENABLED(CONFIG_ARCH_TEGRA_210_SOC)
@@ -91,7 +95,7 @@ MODULE_FIRMWARE("nvidia/gm20b/acr/ucode_load.bin");
static const struct nvkm_acr_hsf_fwif
gm20b_acr_load_fwif[] = {
- { 0, nvkm_acr_hsfw_load, &gm20b_acr_load_0 },
+ { 0, gm200_acr_hsfw_ctor, &gm20b_acr_load_0, NVKM_ACR_HSF_PMU, 0, 0x10 },
{}
};
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/acr/gp102.c b/drivers/gpu/drm/nouveau/nvkm/subdev/acr/gp102.c
index fd97a935a380..084f28449e52 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/acr/gp102.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/acr/gp102.c
@@ -29,7 +29,7 @@
#include <nvfw/acr.h>
#include <nvfw/flcn.h>
-void
+int
gp102_acr_wpr_patch(struct nvkm_acr *acr, s64 adjust)
{
struct wpr_header_v1 hdr;
@@ -54,6 +54,8 @@ gp102_acr_wpr_patch(struct nvkm_acr *acr, s64 adjust)
offset += sizeof(hdr);
} while (hdr.falcon_id != WPR_HEADER_V1_FALCON_ID_INVALID);
+
+ return 0;
}
int
@@ -187,14 +189,15 @@ MODULE_FIRMWARE("nvidia/gp107/acr/ucode_unload.bin");
static const struct nvkm_acr_hsf_fwif
gp102_acr_unload_fwif[] = {
- { 0, nvkm_acr_hsfw_load, &gm200_acr_unload_0 },
+ { 0, gm200_acr_hsfw_ctor, &gm200_acr_unload_0, NVKM_ACR_HSF_PMU, 0x1d, 0x00000010 },
{}
};
int
-gp102_acr_load_load(struct nvkm_acr *acr, struct nvkm_acr_hsfw *hsfw)
+gp102_acr_load_setup(struct nvkm_falcon_fw *fw)
{
- struct flcn_acr_desc_v1 *desc = (void *)&hsfw->image[hsfw->data_addr];
+ struct flcn_acr_desc_v1 *desc = (void *)&fw->fw.img[fw->dmem_base_img];
+ struct nvkm_acr *acr = fw->falcon->owner->device->acr;
desc->wpr_region_id = 1;
desc->regions.no_regions = 2;
@@ -204,19 +207,19 @@ gp102_acr_load_load(struct nvkm_acr *acr, struct nvkm_acr_hsfw *hsfw)
desc->regions.region_props[0].read_mask = 0xf;
desc->regions.region_props[0].write_mask = 0xc;
desc->regions.region_props[0].client_mask = 0x2;
- desc->regions.region_props[0].shadow_mem_start_addr =
- acr->shadow_start >> 8;
+ desc->regions.region_props[0].shadow_mem_start_addr = acr->shadow_start >> 8;
flcn_acr_desc_v1_dump(&acr->subdev, desc);
-
- return gm200_acr_hsfw_load(acr, hsfw,
- &acr->subdev.device->sec2->falcon);
+ return 0;
}
-static const struct nvkm_acr_hsf_func
+static const struct nvkm_falcon_fw_func
gp102_acr_load_0 = {
- .load = gp102_acr_load_load,
- .boot = gm200_acr_load_boot,
- .bld = gm200_acr_hsfw_bld,
+ .signature = gm200_flcn_fw_signature,
+ .reset = gm200_flcn_fw_reset,
+ .setup = gp102_acr_load_setup,
+ .load = gm200_flcn_fw_load,
+ .load_bld = gm200_acr_hsfw_load_bld,
+ .boot = gm200_flcn_fw_boot,
};
MODULE_FIRMWARE("nvidia/gp102/acr/bl.bin");
@@ -233,7 +236,7 @@ MODULE_FIRMWARE("nvidia/gp107/acr/ucode_load.bin");
static const struct nvkm_acr_hsf_fwif
gp102_acr_load_fwif[] = {
- { 0, nvkm_acr_hsfw_load, &gp102_acr_load_0 },
+ { 0, gm200_acr_hsfw_ctor, &gp102_acr_load_0, NVKM_ACR_HSF_SEC2, 0, 0x00000010 },
{}
};
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/acr/gp108.c b/drivers/gpu/drm/nouveau/nvkm/subdev/acr/gp108.c
index 373d638a2177..6ab9d4959c17 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/acr/gp108.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/acr/gp108.c
@@ -25,63 +25,62 @@
#include <nvfw/flcn.h>
-void
-gp108_acr_hsfw_bld(struct nvkm_acr *acr, struct nvkm_acr_hsf *hsf)
+int
+gp108_acr_hsfw_load_bld(struct nvkm_falcon_fw *fw)
{
struct flcn_bl_dmem_desc_v2 hsdesc = {
.ctx_dma = FALCON_DMAIDX_VIRT,
- .code_dma_base = hsf->vma->addr,
- .non_sec_code_off = hsf->non_sec_addr,
- .non_sec_code_size = hsf->non_sec_size,
- .sec_code_off = hsf->sec_addr,
- .sec_code_size = hsf->sec_size,
+ .code_dma_base = fw->vma->addr,
+ .non_sec_code_off = fw->nmem_base,
+ .non_sec_code_size = fw->nmem_size,
+ .sec_code_off = fw->imem_base,
+ .sec_code_size = fw->imem_size,
.code_entry_point = 0,
- .data_dma_base = hsf->vma->addr + hsf->data_addr,
- .data_size = hsf->data_size,
+ .data_dma_base = fw->vma->addr + fw->dmem_base_img,
+ .data_size = fw->dmem_size,
.argc = 0,
.argv = 0,
};
- flcn_bl_dmem_desc_v2_dump(&acr->subdev, &hsdesc);
+ flcn_bl_dmem_desc_v2_dump(fw->falcon->user, &hsdesc);
- nvkm_falcon_load_dmem(hsf->falcon, &hsdesc, 0, sizeof(hsdesc), 0);
+ return nvkm_falcon_pio_wr(fw->falcon, (u8 *)&hsdesc, 0, 0, DMEM, 0, sizeof(hsdesc), 0, 0);
}
-const struct nvkm_acr_hsf_func
-gp108_acr_unload_0 = {
- .load = gm200_acr_unload_load,
- .boot = gm200_acr_unload_boot,
- .bld = gp108_acr_hsfw_bld,
+const struct nvkm_falcon_fw_func
+gp108_acr_hsfw_0 = {
+ .signature = gm200_flcn_fw_signature,
+ .reset = gm200_flcn_fw_reset,
+ .load = gm200_flcn_fw_load,
+ .load_bld = gp108_acr_hsfw_load_bld,
+ .boot = gm200_flcn_fw_boot,
};
MODULE_FIRMWARE("nvidia/gp108/acr/unload_bl.bin");
MODULE_FIRMWARE("nvidia/gp108/acr/ucode_unload.bin");
-MODULE_FIRMWARE("nvidia/gv100/acr/unload_bl.bin");
-MODULE_FIRMWARE("nvidia/gv100/acr/ucode_unload.bin");
-
static const struct nvkm_acr_hsf_fwif
gp108_acr_unload_fwif[] = {
- { 0, nvkm_acr_hsfw_load, &gp108_acr_unload_0 },
+ { 0, gm200_acr_hsfw_ctor, &gp108_acr_hsfw_0, NVKM_ACR_HSF_PMU, 0x1d, 0x00000010 },
{}
};
-static const struct nvkm_acr_hsf_func
+const struct nvkm_falcon_fw_func
gp108_acr_load_0 = {
- .load = gp102_acr_load_load,
- .boot = gm200_acr_load_boot,
- .bld = gp108_acr_hsfw_bld,
+ .signature = gm200_flcn_fw_signature,
+ .reset = gm200_flcn_fw_reset,
+ .setup = gp102_acr_load_setup,
+ .load = gm200_flcn_fw_load,
+ .load_bld = gp108_acr_hsfw_load_bld,
+ .boot = gm200_flcn_fw_boot,
};
MODULE_FIRMWARE("nvidia/gp108/acr/bl.bin");
MODULE_FIRMWARE("nvidia/gp108/acr/ucode_load.bin");
-MODULE_FIRMWARE("nvidia/gv100/acr/bl.bin");
-MODULE_FIRMWARE("nvidia/gv100/acr/ucode_load.bin");
-
static const struct nvkm_acr_hsf_fwif
gp108_acr_load_fwif[] = {
- { 0, nvkm_acr_hsfw_load, &gp108_acr_load_0 },
+ { 0, gm200_acr_hsfw_ctor, &gp108_acr_load_0, NVKM_ACR_HSF_SEC2, 0, 0x00000010 },
{}
};
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/acr/gp10b.c b/drivers/gpu/drm/nouveau/nvkm/subdev/acr/gp10b.c
index f03ba028867b..a3422ab6deab 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/acr/gp10b.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/acr/gp10b.c
@@ -28,7 +28,7 @@ MODULE_FIRMWARE("nvidia/gp10b/acr/ucode_load.bin");
static const struct nvkm_acr_hsf_fwif
gp10b_acr_load_fwif[] = {
- { 0, nvkm_acr_hsfw_load, &gm20b_acr_load_0 },
+ { 0, gm200_acr_hsfw_ctor, &gm20b_acr_load_0, NVKM_ACR_HSF_PMU, 0, 0x00000010 },
{}
};
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/acr/gv100.c b/drivers/gpu/drm/nouveau/nvkm/subdev/acr/gv100.c
new file mode 100644
index 000000000000..4c5ca6b40027
--- /dev/null
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/acr/gv100.c
@@ -0,0 +1,67 @@
+/*
+ * Copyright 2022 Red Hat Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ */
+#include "priv.h"
+
+MODULE_FIRMWARE("nvidia/gv100/acr/unload_bl.bin");
+MODULE_FIRMWARE("nvidia/gv100/acr/ucode_unload.bin");
+
+static const struct nvkm_acr_hsf_fwif
+gv100_acr_unload_fwif[] = {
+ { 0, gm200_acr_hsfw_ctor, &gp108_acr_hsfw_0, NVKM_ACR_HSF_PMU, 0, 0x00000000 },
+ {}
+};
+
+MODULE_FIRMWARE("nvidia/gv100/acr/bl.bin");
+MODULE_FIRMWARE("nvidia/gv100/acr/ucode_load.bin");
+
+static const struct nvkm_acr_hsf_fwif
+gv100_acr_load_fwif[] = {
+ { 0, gm200_acr_hsfw_ctor, &gp108_acr_load_0, NVKM_ACR_HSF_SEC2, 0, 0x00000010 },
+ {}
+};
+
+static const struct nvkm_acr_func
+gv100_acr = {
+ .load = gv100_acr_load_fwif,
+ .unload = gv100_acr_unload_fwif,
+ .wpr_parse = gp102_acr_wpr_parse,
+ .wpr_layout = gp102_acr_wpr_layout,
+ .wpr_alloc = gp102_acr_wpr_alloc,
+ .wpr_build = gp102_acr_wpr_build,
+ .wpr_patch = gp102_acr_wpr_patch,
+ .wpr_check = gm200_acr_wpr_check,
+ .init = gm200_acr_init,
+};
+
+static const struct nvkm_acr_fwif
+gv100_acr_fwif[] = {
+ { 0, gp102_acr_load, &gv100_acr },
+ { -1, gm200_acr_nofw, &gm200_acr },
+ {}
+};
+
+int
+gv100_acr_new(struct nvkm_device *device, enum nvkm_subdev_type type, int inst,
+ struct nvkm_acr **pacr)
+{
+ return nvkm_acr_new_(gv100_acr_fwif, device, type, inst, pacr);
+}
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/acr/hsfw.c b/drivers/gpu/drm/nouveau/nvkm/subdev/acr/hsfw.c
deleted file mode 100644
index a6ea89a5d51a..000000000000
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/acr/hsfw.c
+++ /dev/null
@@ -1,177 +0,0 @@
-/*
- * Copyright 2019 Red Hat Inc.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice shall be included in
- * all copies or substantial portions of the Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
- * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
- * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
- * OTHER DEALINGS IN THE SOFTWARE.
- */
-#include "priv.h"
-
-#include <core/firmware.h>
-
-#include <nvfw/fw.h>
-#include <nvfw/hs.h>
-
-static void
-nvkm_acr_hsfw_del(struct nvkm_acr_hsfw *hsfw)
-{
- list_del(&hsfw->head);
- kfree(hsfw->imem);
- kfree(hsfw->image);
- kfree(hsfw->sig.prod.data);
- kfree(hsfw->sig.dbg.data);
- kfree(hsfw);
-}
-
-void
-nvkm_acr_hsfw_del_all(struct nvkm_acr *acr)
-{
- struct nvkm_acr_hsfw *hsfw, *hsft;
- list_for_each_entry_safe(hsfw, hsft, &acr->hsfw, head) {
- nvkm_acr_hsfw_del(hsfw);
- }
-}
-
-static int
-nvkm_acr_hsfw_load_image(struct nvkm_acr *acr, const char *name, int ver,
- struct nvkm_acr_hsfw *hsfw)
-{
- struct nvkm_subdev *subdev = &acr->subdev;
- const struct firmware *fw;
- const struct nvfw_bin_hdr *hdr;
- const struct nvfw_hs_header *fwhdr;
- const struct nvfw_hs_load_header *lhdr;
- u32 loc, sig;
- int ret;
-
- ret = nvkm_firmware_get(subdev, name, ver, &fw);
- if (ret < 0)
- return ret;
-
- hdr = nvfw_bin_hdr(subdev, fw->data);
- fwhdr = nvfw_hs_header(subdev, fw->data + hdr->header_offset);
-
- /* Earlier FW releases by NVIDIA for Nouveau's use aren't in NVIDIA's
- * standard format, and don't have the indirection seen in the 0x10de
- * case.
- */
- switch (hdr->bin_magic) {
- case 0x000010de:
- loc = *(u32 *)(fw->data + fwhdr->patch_loc);
- sig = *(u32 *)(fw->data + fwhdr->patch_sig);
- break;
- case 0x3b1d14f0:
- loc = fwhdr->patch_loc;
- sig = fwhdr->patch_sig;
- break;
- default:
- ret = -EINVAL;
- goto done;
- }
-
- lhdr = nvfw_hs_load_header(subdev, fw->data + fwhdr->hdr_offset);
-
- if (!(hsfw->image = kmalloc(hdr->data_size, GFP_KERNEL))) {
- ret = -ENOMEM;
- goto done;
- }
-
- memcpy(hsfw->image, fw->data + hdr->data_offset, hdr->data_size);
- hsfw->image_size = hdr->data_size;
- hsfw->non_sec_addr = lhdr->non_sec_code_off;
- hsfw->non_sec_size = lhdr->non_sec_code_size;
- hsfw->sec_addr = lhdr->apps[0];
- hsfw->sec_size = lhdr->apps[lhdr->num_apps];
- hsfw->data_addr = lhdr->data_dma_base;
- hsfw->data_size = lhdr->data_size;
-
- hsfw->sig.prod.size = fwhdr->sig_prod_size;
- hsfw->sig.prod.data = kmemdup(fw->data + fwhdr->sig_prod_offset + sig,
- hsfw->sig.prod.size, GFP_KERNEL);
- if (!hsfw->sig.prod.data) {
- ret = -ENOMEM;
- goto done;
- }
-
- hsfw->sig.dbg.size = fwhdr->sig_dbg_size;
- hsfw->sig.dbg.data = kmemdup(fw->data + fwhdr->sig_dbg_offset + sig,
- hsfw->sig.dbg.size, GFP_KERNEL);
- if (!hsfw->sig.dbg.data) {
- ret = -ENOMEM;
- goto done;
- }
-
- hsfw->sig.patch_loc = loc;
-done:
- nvkm_firmware_put(fw);
- return ret;
-}
-
-static int
-nvkm_acr_hsfw_load_bl(struct nvkm_acr *acr, const char *name, int ver,
- struct nvkm_acr_hsfw *hsfw)
-{
- struct nvkm_subdev *subdev = &acr->subdev;
- const struct nvfw_bin_hdr *hdr;
- const struct nvfw_bl_desc *desc;
- const struct firmware *fw;
- u8 *data;
- int ret;
-
- ret = nvkm_firmware_get(subdev, name, ver, &fw);
- if (ret)
- return ret;
-
- hdr = nvfw_bin_hdr(subdev, fw->data);
- desc = nvfw_bl_desc(subdev, fw->data + hdr->header_offset);
- data = (void *)fw->data + hdr->data_offset;
-
- hsfw->imem_size = desc->code_size;
- hsfw->imem_tag = desc->start_tag;
- hsfw->imem = kmemdup(data + desc->code_off, desc->code_size, GFP_KERNEL);
- nvkm_firmware_put(fw);
- if (!hsfw->imem)
- return -ENOMEM;
- else
- return 0;
-}
-
-int
-nvkm_acr_hsfw_load(struct nvkm_acr *acr, const char *bl, const char *fw,
- const char *name, int version,
- const struct nvkm_acr_hsf_fwif *fwif)
-{
- struct nvkm_acr_hsfw *hsfw;
- int ret;
-
- if (!(hsfw = kzalloc(sizeof(*hsfw), GFP_KERNEL)))
- return -ENOMEM;
-
- hsfw->func = fwif->func;
- hsfw->name = name;
- list_add_tail(&hsfw->head, &acr->hsfw);
-
- ret = nvkm_acr_hsfw_load_bl(acr, bl, version, hsfw);
- if (ret)
- goto done;
-
- ret = nvkm_acr_hsfw_load_image(acr, fw, version, hsfw);
-done:
- if (ret)
- nvkm_acr_hsfw_del(hsfw);
- return ret;
-}
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/acr/lsfw.c b/drivers/gpu/drm/nouveau/nvkm/subdev/acr/lsfw.c
index 9b1cf6711ae9..f36a359d4531 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/acr/lsfw.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/acr/lsfw.c
@@ -29,6 +29,7 @@ void
nvkm_acr_lsfw_del(struct nvkm_acr_lsfw *lsfw)
{
nvkm_blob_dtor(&lsfw->img);
+ kfree(lsfw->sigs);
nvkm_firmware_put(lsfw->sig);
list_del(&lsfw->head);
kfree(lsfw);
@@ -177,6 +178,75 @@ nvkm_acr_lsfw_load_sig_image_desc_v1(struct nvkm_subdev *subdev,
}
int
+nvkm_acr_lsfw_load_sig_image_desc_v2(struct nvkm_subdev *subdev,
+ struct nvkm_falcon *falcon,
+ enum nvkm_acr_lsf_id id,
+ const char *path, int ver,
+ const struct nvkm_acr_lsf_func *func)
+{
+ const struct firmware *fw;
+ struct nvkm_acr_lsfw *lsfw;
+ const struct nvfw_ls_desc_v2 *desc;
+ int ret = 0;
+
+ lsfw = nvkm_acr_lsfw_load_sig_image_desc_(subdev, falcon, id, path, ver, func, &fw);
+ if (IS_ERR(lsfw))
+ return PTR_ERR(lsfw);
+
+ desc = nvfw_ls_desc_v2(subdev, fw->data);
+
+ lsfw->secure_bootloader = desc->secure_bootloader;
+ lsfw->bootloader_size = ALIGN(desc->bootloader_size, 256);
+ lsfw->bootloader_imem_offset = desc->bootloader_imem_offset;
+
+ lsfw->app_size = ALIGN(desc->app_size, 256);
+ lsfw->app_start_offset = desc->app_start_offset;
+ lsfw->app_imem_entry = desc->app_imem_entry;
+ lsfw->app_resident_code_offset = desc->app_resident_code_offset;
+ lsfw->app_resident_code_size = desc->app_resident_code_size;
+ lsfw->app_resident_data_offset = desc->app_resident_data_offset;
+ lsfw->app_resident_data_size = desc->app_resident_data_size;
+ lsfw->app_imem_offset = desc->app_imem_offset;
+ lsfw->app_dmem_offset = desc->app_dmem_offset;
+
+ lsfw->ucode_size = ALIGN(lsfw->app_resident_data_offset, 256) + lsfw->bootloader_size;
+ lsfw->data_size = lsfw->app_size + lsfw->bootloader_size - lsfw->ucode_size;
+
+ nvkm_firmware_put(fw);
+
+ if (lsfw->secure_bootloader) {
+ const struct firmware *hsbl;
+ const struct nvfw_ls_hsbl_bin_hdr *hdr;
+ const struct nvfw_ls_hsbl_hdr *hshdr;
+ u32 loc, sig, cnt, *meta;
+
+ ret = nvkm_firmware_load_name(subdev, path, "hs_bl_sig", ver, &hsbl);
+ if (ret)
+ return ret;
+
+ hdr = nvfw_ls_hsbl_bin_hdr(subdev, hsbl->data);
+ hshdr = nvfw_ls_hsbl_hdr(subdev, hsbl->data + hdr->header_offset);
+ meta = (u32 *)(hsbl->data + hshdr->meta_data_offset);
+ loc = *(u32 *)(hsbl->data + hshdr->patch_loc);
+ sig = *(u32 *)(hsbl->data + hshdr->patch_sig);
+ cnt = *(u32 *)(hsbl->data + hshdr->num_sig);
+
+ lsfw->fuse_ver = meta[0];
+ lsfw->engine_id = meta[1];
+ lsfw->ucode_id = meta[2];
+ lsfw->sig_size = hshdr->sig_prod_size / cnt;
+ lsfw->sig_nr = cnt;
+ lsfw->sigs = kmemdup(hsbl->data + hshdr->sig_prod_offset + sig,
+ lsfw->sig_nr * lsfw->sig_size, GFP_KERNEL);
+ nvkm_firmware_put(hsbl);
+ if (!lsfw->sigs)
+ ret = -ENOMEM;
+ }
+
+ return ret;
+}
+
+int
nvkm_acr_lsfw_load_bl_inst_data_sig(struct nvkm_subdev *subdev,
struct nvkm_falcon *falcon,
enum nvkm_acr_lsf_id id,
@@ -251,3 +321,78 @@ done:
nvkm_firmware_put(bl);
return ret;
}
+
+int
+nvkm_acr_lsfw_load_bl_sig_net(struct nvkm_subdev *subdev,
+ struct nvkm_falcon *falcon,
+ enum nvkm_acr_lsf_id id,
+ const char *path, int ver,
+ const struct nvkm_acr_lsf_func *func,
+ const void *inst_data, u32 inst_size,
+ const void *data_data, u32 data_size)
+{
+ struct nvkm_acr *acr = subdev->device->acr;
+ struct nvkm_acr_lsfw *lsfw;
+ const struct firmware _inst = { .data = inst_data, .size = inst_size };
+ const struct firmware _data = { .data = data_data, .size = data_size };
+ const struct firmware *bl = NULL, *inst = &_inst, *data = &_data;
+ const struct {
+ int bin_magic;
+ int bin_version;
+ int bin_size;
+ int header_offset;
+ int header_size;
+ } *hdr;
+ u32 *bldata;
+ int ret;
+
+ if (IS_ERR((lsfw = nvkm_acr_lsfw_add(func, acr, falcon, id))))
+ return PTR_ERR(lsfw);
+
+ ret = nvkm_firmware_load_name(subdev, path, "bl", ver, &bl);
+ if (ret)
+ goto done;
+
+ hdr = (const void *)bl->data;
+ bldata = (void *)(bl->data + hdr->header_offset);
+
+ ret = nvkm_firmware_load_name(subdev, path, "sig", ver, &lsfw->sig);
+ if (ret)
+ goto done;
+
+ lsfw->bootloader_size = ALIGN(hdr->header_size, 256);
+ lsfw->bootloader_imem_offset = func->bl_entry;
+
+ lsfw->app_start_offset = lsfw->bootloader_size;
+ lsfw->app_imem_entry = 0;
+ lsfw->app_resident_code_offset = 0;
+ lsfw->app_resident_code_size = ALIGN(inst->size, 256);
+ lsfw->app_resident_data_offset = lsfw->app_resident_code_size;
+ lsfw->app_resident_data_size = ALIGN(data->size, 256);
+ lsfw->app_imem_offset = 0;
+ lsfw->app_dmem_offset = 0;
+ lsfw->app_size = lsfw->app_resident_code_size + lsfw->app_resident_data_size;
+
+ lsfw->img.size = lsfw->bootloader_size + lsfw->app_size;
+ if (!(lsfw->img.data = kzalloc(lsfw->img.size, GFP_KERNEL))) {
+ ret = -ENOMEM;
+ goto done;
+ }
+
+ memcpy(lsfw->img.data, bldata, lsfw->bootloader_size);
+ memcpy(lsfw->img.data + lsfw->app_start_offset +
+ lsfw->app_resident_code_offset, inst->data, inst->size);
+ memcpy(lsfw->img.data + lsfw->app_start_offset +
+ lsfw->app_resident_data_offset, data->data, data->size);
+
+ lsfw->ucode_size = ALIGN(lsfw->app_resident_data_offset, 256) +
+ lsfw->bootloader_size;
+ lsfw->data_size = lsfw->app_size + lsfw->bootloader_size -
+ lsfw->ucode_size;
+
+done:
+ if (ret)
+ nvkm_acr_lsfw_del(lsfw);
+ nvkm_firmware_put(bl);
+ return ret;
+}
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/acr/priv.h b/drivers/gpu/drm/nouveau/nvkm/subdev/acr/priv.h
index c30b841c9d35..4881c8ba3880 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/acr/priv.h
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/acr/priv.h
@@ -24,7 +24,7 @@ struct nvkm_acr_func {
u32 (*wpr_layout)(struct nvkm_acr *);
int (*wpr_alloc)(struct nvkm_acr *, u32 wpr_size);
int (*wpr_build)(struct nvkm_acr *, struct nvkm_acr_lsf *rtos);
- void (*wpr_patch)(struct nvkm_acr *, s64 adjust);
+ int (*wpr_patch)(struct nvkm_acr *, s64 adjust);
void (*wpr_check)(struct nvkm_acr *, u64 *start, u64 *limit);
int (*init)(struct nvkm_acr *);
void (*fini)(struct nvkm_acr *);
@@ -35,7 +35,7 @@ extern const struct nvkm_acr_func gm200_acr;
int gm200_acr_wpr_parse(struct nvkm_acr *);
u32 gm200_acr_wpr_layout(struct nvkm_acr *);
int gm200_acr_wpr_build(struct nvkm_acr *, struct nvkm_acr_lsf *);
-void gm200_acr_wpr_patch(struct nvkm_acr *, s64);
+int gm200_acr_wpr_patch(struct nvkm_acr *, s64);
void gm200_acr_wpr_check(struct nvkm_acr *, u64 *, u64 *);
void gm200_acr_wpr_build_lsb_tail(struct nvkm_acr_lsfw *,
struct lsb_header_tail *);
@@ -48,96 +48,60 @@ u32 gp102_acr_wpr_layout(struct nvkm_acr *);
int gp102_acr_wpr_alloc(struct nvkm_acr *, u32 wpr_size);
int gp102_acr_wpr_build(struct nvkm_acr *, struct nvkm_acr_lsf *);
int gp102_acr_wpr_build_lsb(struct nvkm_acr *, struct nvkm_acr_lsfw *);
-void gp102_acr_wpr_patch(struct nvkm_acr *, s64);
+int gp102_acr_wpr_patch(struct nvkm_acr *, s64);
+
+int tu102_acr_init(struct nvkm_acr *);
+
+void ga100_acr_wpr_check(struct nvkm_acr *, u64 *, u64 *);
struct nvkm_acr_hsfw {
- const struct nvkm_acr_hsf_func *func;
- const char *name;
- struct list_head head;
+ struct nvkm_falcon_fw fw;
+
+ enum nvkm_acr_hsf_id {
+ NVKM_ACR_HSF_PMU,
+ NVKM_ACR_HSF_SEC2,
+ NVKM_ACR_HSF_GSP,
+ } falcon_id;
+ u32 boot_mbox0;
+ u32 intr_clear;
- u32 imem_size;
- u32 imem_tag;
- u32 *imem;
-
- u8 *image;
- u32 image_size;
- u32 non_sec_addr;
- u32 non_sec_size;
- u32 sec_addr;
- u32 sec_size;
- u32 data_addr;
- u32 data_size;
-
- struct {
- struct {
- void *data;
- u32 size;
- } prod, dbg;
- u32 patch_loc;
- } sig;
+ struct list_head head;
};
+int nvkm_acr_hsfw_boot(struct nvkm_acr *, const char *name);
+
struct nvkm_acr_hsf_fwif {
int version;
int (*load)(struct nvkm_acr *, const char *bl, const char *fw,
const char *name, int version,
const struct nvkm_acr_hsf_fwif *);
- const struct nvkm_acr_hsf_func *func;
-};
+ const struct nvkm_falcon_fw_func *func;
-int nvkm_acr_hsfw_load(struct nvkm_acr *, const char *, const char *,
- const char *, int, const struct nvkm_acr_hsf_fwif *);
-void nvkm_acr_hsfw_del_all(struct nvkm_acr *);
-
-struct nvkm_acr_hsf {
- const struct nvkm_acr_hsf_func *func;
- const char *name;
- struct list_head head;
-
- u32 imem_size;
- u32 imem_tag;
- u32 *imem;
-
- u32 non_sec_addr;
- u32 non_sec_size;
- u32 sec_addr;
- u32 sec_size;
- u32 data_addr;
- u32 data_size;
-
- struct nvkm_memory *ucode;
- struct nvkm_vma *vma;
- struct nvkm_falcon *falcon;
+ enum nvkm_acr_hsf_id falcon_id;
+ u32 boot_mbox0;
+ u32 intr_clear;
};
-struct nvkm_acr_hsf_func {
- int (*load)(struct nvkm_acr *, struct nvkm_acr_hsfw *);
- int (*boot)(struct nvkm_acr *, struct nvkm_acr_hsf *);
- void (*bld)(struct nvkm_acr *, struct nvkm_acr_hsf *);
-};
-int gm200_acr_hsfw_load(struct nvkm_acr *, struct nvkm_acr_hsfw *,
- struct nvkm_falcon *);
-int gm200_acr_hsfw_boot(struct nvkm_acr *, struct nvkm_acr_hsf *,
- u32 clear_intr, u32 mbox0_ok);
+int gm200_acr_hsfw_ctor(struct nvkm_acr *, const char *, const char *, const char *, int,
+ const struct nvkm_acr_hsf_fwif *);
+int gm200_acr_hsfw_load_bld(struct nvkm_falcon_fw *);
+extern const struct nvkm_falcon_fw_func gm200_acr_unload_0;
-int gm200_acr_load_boot(struct nvkm_acr *, struct nvkm_acr_hsf *);
+extern const struct nvkm_falcon_fw_func gm20b_acr_load_0;
-extern const struct nvkm_acr_hsf_func gm200_acr_unload_0;
-int gm200_acr_unload_load(struct nvkm_acr *, struct nvkm_acr_hsfw *);
-int gm200_acr_unload_boot(struct nvkm_acr *, struct nvkm_acr_hsf *);
-void gm200_acr_hsfw_bld(struct nvkm_acr *, struct nvkm_acr_hsf *);
+int gp102_acr_load_setup(struct nvkm_falcon_fw *);
-extern const struct nvkm_acr_hsf_func gm20b_acr_load_0;
+extern const struct nvkm_falcon_fw_func gp108_acr_load_0;
-int gp102_acr_load_load(struct nvkm_acr *, struct nvkm_acr_hsfw *);
+extern const struct nvkm_falcon_fw_func gp108_acr_hsfw_0;
+int gp108_acr_hsfw_load_bld(struct nvkm_falcon_fw *);
-extern const struct nvkm_acr_hsf_func gp108_acr_unload_0;
-void gp108_acr_hsfw_bld(struct nvkm_acr *, struct nvkm_acr_hsf *);
+int ga100_acr_hsfw_ctor(struct nvkm_acr *, const char *, const char *, const char *, int,
+ const struct nvkm_acr_hsf_fwif *);
int nvkm_acr_new_(const struct nvkm_acr_fwif *, struct nvkm_device *, enum nvkm_subdev_type,
int inst, struct nvkm_acr **);
-int nvkm_acr_hsf_boot(struct nvkm_acr *, const char *name);
struct nvkm_acr_lsf {
const struct nvkm_acr_lsf_func *func;
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/acr/tu102.c b/drivers/gpu/drm/nouveau/nvkm/subdev/acr/tu102.c
index 05a87e77525f..c22d551c0078 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/acr/tu102.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/acr/tu102.c
@@ -29,14 +29,14 @@
#include <nvfw/acr.h>
-static int
+int
tu102_acr_init(struct nvkm_acr *acr)
{
- int ret = nvkm_acr_hsf_boot(acr, "AHESASC");
+ int ret = nvkm_acr_hsfw_boot(acr, "AHESASC");
if (ret)
return ret;
- return nvkm_acr_hsf_boot(acr, "ASB");
+ return nvkm_acr_hsfw_boot(acr, "ASB");
}
static int
@@ -85,12 +85,6 @@ tu102_acr_wpr_build(struct nvkm_acr *acr, struct nvkm_acr_lsf *rtos)
}
static int
-tu102_acr_hsfw_boot(struct nvkm_acr *acr, struct nvkm_acr_hsf *hsf)
-{
- return gm200_acr_hsfw_boot(acr, hsf, 0, 0);
-}
-
-static int
tu102_acr_hsfw_nofw(struct nvkm_acr *acr, const char *bl, const char *fw,
const char *name, int version,
const struct nvkm_acr_hsf_fwif *fwif)
@@ -115,24 +109,11 @@ MODULE_FIRMWARE("nvidia/tu117/acr/ucode_unload.bin");
static const struct nvkm_acr_hsf_fwif
tu102_acr_unload_fwif[] = {
- { 0, nvkm_acr_hsfw_load, &gp108_acr_unload_0 },
+ { 0, gm200_acr_hsfw_ctor, &gp108_acr_hsfw_0, NVKM_ACR_HSF_PMU, 0, 0x00000000 },
{ -1, tu102_acr_hsfw_nofw },
{}
};
-static int
-tu102_acr_asb_load(struct nvkm_acr *acr, struct nvkm_acr_hsfw *hsfw)
-{
- return gm200_acr_hsfw_load(acr, hsfw, &acr->subdev.device->gsp->falcon);
-}
-
-static const struct nvkm_acr_hsf_func
-tu102_acr_asb_0 = {
- .load = tu102_acr_asb_load,
- .boot = tu102_acr_hsfw_boot,
- .bld = gp108_acr_hsfw_bld,
-};
-
MODULE_FIRMWARE("nvidia/tu102/acr/ucode_asb.bin");
MODULE_FIRMWARE("nvidia/tu104/acr/ucode_asb.bin");
MODULE_FIRMWARE("nvidia/tu106/acr/ucode_asb.bin");
@@ -141,18 +122,11 @@ MODULE_FIRMWARE("nvidia/tu117/acr/ucode_asb.bin");
static const struct nvkm_acr_hsf_fwif
tu102_acr_asb_fwif[] = {
- { 0, nvkm_acr_hsfw_load, &tu102_acr_asb_0 },
+ { 0, gm200_acr_hsfw_ctor, &gp108_acr_hsfw_0, NVKM_ACR_HSF_GSP, 0, 0x00000000 },
{ -1, tu102_acr_hsfw_nofw },
{}
};
-static const struct nvkm_acr_hsf_func
-tu102_acr_ahesasc_0 = {
- .load = gp102_acr_load_load,
- .boot = tu102_acr_hsfw_boot,
- .bld = gp108_acr_hsfw_bld,
-};
-
MODULE_FIRMWARE("nvidia/tu102/acr/bl.bin");
MODULE_FIRMWARE("nvidia/tu102/acr/ucode_ahesasc.bin");
@@ -170,7 +144,7 @@ MODULE_FIRMWARE("nvidia/tu117/acr/ucode_ahesasc.bin");
static const struct nvkm_acr_hsf_fwif
tu102_acr_ahesasc_fwif[] = {
- { 0, nvkm_acr_hsfw_load, &tu102_acr_ahesasc_0 },
+ { 0, gm200_acr_hsfw_ctor, &gp108_acr_load_0, NVKM_ACR_HSF_SEC2, 0, 0x00000000 },
{ -1, tu102_acr_hsfw_nofw },
{}
};
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/base.c b/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/base.c
index dd4981708fe4..3d9319c319c6 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/base.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/base.c
@@ -51,7 +51,8 @@ u64
nvkm_devinit_disable(struct nvkm_devinit *init)
{
if (init && init->func->disable)
- return init->func->disable(init);
+ init->func->disable(init);
+
return 0;
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/g84.c b/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/g84.c
index c224702b7bed..00df7811dd10 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/g84.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/g84.c
@@ -26,13 +26,12 @@
#include <subdev/bios.h>
#include <subdev/bios/init.h>
-static u64
+static void
g84_devinit_disable(struct nvkm_devinit *init)
{
struct nvkm_device *device = init->subdev.device;
u32 r001540 = nvkm_rd32(device, 0x001540);
u32 r00154c = nvkm_rd32(device, 0x00154c);
- u64 disable = 0ULL;
if (!(r001540 & 0x40000000)) {
nvkm_subdev_disable(device, NVKM_ENGINE_MPEG, 0);
@@ -47,8 +46,6 @@ g84_devinit_disable(struct nvkm_devinit *init)
nvkm_subdev_disable(device, NVKM_ENGINE_BSP, 0);
if (!(r00154c & 0x00000040))
nvkm_subdev_disable(device, NVKM_ENGINE_CIPHER, 0);
-
- return disable;
}
static const struct nvkm_devinit_func
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/g98.c b/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/g98.c
index 8977483a9f42..54bee499b982 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/g98.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/g98.c
@@ -26,7 +26,7 @@
#include <subdev/bios.h>
#include <subdev/bios/init.h>
-static u64
+static void
g98_devinit_disable(struct nvkm_devinit *init)
{
struct nvkm_device *device = init->subdev.device;
@@ -45,8 +45,6 @@ g98_devinit_disable(struct nvkm_devinit *init)
nvkm_subdev_disable(device, NVKM_ENGINE_MSVLD, 0);
if (!(r00154c & 0x00000040))
nvkm_subdev_disable(device, NVKM_ENGINE_SEC, 0);
-
- return 0ULL;
}
static const struct nvkm_devinit_func
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/gf100.c b/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/gf100.c
index 5b7cb1fe7897..5368e705e7fd 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/gf100.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/gf100.c
@@ -63,7 +63,7 @@ gf100_devinit_pll_set(struct nvkm_devinit *init, u32 type, u32 freq)
return ret;
}
-static u64
+static void
gf100_devinit_disable(struct nvkm_devinit *init)
{
struct nvkm_device *device = init->subdev.device;
@@ -85,8 +85,6 @@ gf100_devinit_disable(struct nvkm_devinit *init)
nvkm_subdev_disable(device, NVKM_ENGINE_CE, 0);
if (r022500 & 0x00000200)
nvkm_subdev_disable(device, NVKM_ENGINE_CE, 1);
-
- return 0ULL;
}
void
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/gm107.c b/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/gm107.c
index 8955af2704c7..7bcbc4895ec2 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/gm107.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/gm107.c
@@ -26,7 +26,7 @@
#include <subdev/bios.h>
#include <subdev/bios/init.h>
-u64
+void
gm107_devinit_disable(struct nvkm_devinit *init)
{
struct nvkm_device *device = init->subdev.device;
@@ -39,8 +39,6 @@ gm107_devinit_disable(struct nvkm_devinit *init)
nvkm_subdev_disable(device, NVKM_ENGINE_CE, 2);
if (r021c04 & 0x00000001)
nvkm_subdev_disable(device, NVKM_ENGINE_DISP, 0);
-
- return 0ULL;
}
static const struct nvkm_devinit_func
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/gm200.c b/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/gm200.c
index a308b9bde449..f30718d7e61a 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/gm200.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/gm200.c
@@ -26,6 +26,7 @@
#include <subdev/bios.h>
#include <subdev/bios/bit.h>
#include <subdev/bios/pmu.h>
+#include <subdev/pmu.h>
#include <subdev/timer.h>
static void
@@ -85,13 +86,18 @@ pmu_load(struct nv50_devinit *init, u8 type, bool post,
struct nvkm_subdev *subdev = &init->base.subdev;
struct nvkm_bios *bios = subdev->device->bios;
struct nvbios_pmuR pmu;
+ int ret;
if (!nvbios_pmuRm(bios, type, &pmu))
return -EINVAL;
- if (!post)
+ if (!post || !subdev->device->pmu)
return 0;
+ ret = nvkm_falcon_reset(&subdev->device->pmu->falcon);
+ if (ret)
+ return ret;
+
pmu_code(init, pmu.boot_addr_pmu, pmu.boot_addr, pmu.boot_size, false);
pmu_code(init, pmu.code_addr_pmu, pmu.code_addr, pmu.code_size, true);
pmu_data(init, pmu.data_addr_pmu, pmu.data_addr, pmu.data_size);
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/gt215.c b/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/gt215.c
index 3d0ab86c3115..dbca92318baf 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/gt215.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/gt215.c
@@ -62,7 +62,7 @@ gt215_devinit_pll_set(struct nvkm_devinit *init, u32 type, u32 freq)
return ret;
}
-static u64
+static void
gt215_devinit_disable(struct nvkm_devinit *init)
{
struct nvkm_device *device = init->subdev.device;
@@ -80,8 +80,6 @@ gt215_devinit_disable(struct nvkm_devinit *init)
nvkm_subdev_disable(device, NVKM_ENGINE_MSVLD, 0);
if (!(r00154c & 0x00000200))
nvkm_subdev_disable(device, NVKM_ENGINE_CE, 0);
-
- return 0ULL;
}
static u32
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/mcp89.c b/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/mcp89.c
index a9cdf2411187..a24bd2e7d7ce 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/mcp89.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/mcp89.c
@@ -26,7 +26,7 @@
#include <subdev/bios.h>
#include <subdev/bios/init.h>
-static u64
+static void
mcp89_devinit_disable(struct nvkm_devinit *init)
{
struct nvkm_device *device = init->subdev.device;
@@ -46,8 +46,6 @@ mcp89_devinit_disable(struct nvkm_devinit *init)
nvkm_subdev_disable(device, NVKM_ENGINE_VIC, 0);
if (!(r00154c & 0x00000200))
nvkm_subdev_disable(device, NVKM_ENGINE_CE, 0);
-
- return 0;
}
static const struct nvkm_devinit_func
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/nv50.c b/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/nv50.c
index 380995d398b1..07ed8fd778b2 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/nv50.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/nv50.c
@@ -77,17 +77,14 @@ nv50_devinit_pll_set(struct nvkm_devinit *init, u32 type, u32 freq)
return 0;
}
-static u64
+static void
nv50_devinit_disable(struct nvkm_devinit *init)
{
struct nvkm_device *device = init->subdev.device;
u32 r001540 = nvkm_rd32(device, 0x001540);
- u64 disable = 0ULL;
if (!(r001540 & 0x40000000))
nvkm_subdev_disable(device, NVKM_ENGINE_MPEG, 0);
-
- return disable;
}
void
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/nv50.h b/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/nv50.h
index 987a7f478b84..8de409c084c1 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/nv50.h
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/nv50.h
@@ -23,7 +23,7 @@ int gf100_devinit_ctor(struct nvkm_object *, struct nvkm_object *,
int gf100_devinit_pll_set(struct nvkm_devinit *, u32, u32);
void gf100_devinit_preinit(struct nvkm_devinit *);
-u64 gm107_devinit_disable(struct nvkm_devinit *);
+void gm107_devinit_disable(struct nvkm_devinit *);
int gm200_devinit_post(struct nvkm_devinit *, bool);
void gm200_devinit_preos(struct nv50_devinit *, bool);
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/priv.h b/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/priv.h
index dd8b038a8cee..a648482d06e9 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/priv.h
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/priv.h
@@ -12,7 +12,7 @@ struct nvkm_devinit_func {
u32 (*mmio)(struct nvkm_devinit *, u32);
void (*meminit)(struct nvkm_devinit *);
int (*pll_set)(struct nvkm_devinit *, u32 type, u32 freq);
- u64 (*disable)(struct nvkm_devinit *);
+ void (*disable)(struct nvkm_devinit *);
};
void nvkm_devinit_ctor(const struct nvkm_devinit_func *, struct nvkm_device *,
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/tu102.c b/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/tu102.c
index 634f64f88fc8..81a1ad2c88a7 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/tu102.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/devinit/tu102.c
@@ -65,10 +65,33 @@ tu102_devinit_pll_set(struct nvkm_devinit *init, u32 type, u32 freq)
return ret;
}
+static int
+tu102_devinit_wait(struct nvkm_device *device)
+{
+ unsigned timeout = 50 + 2000;
+
+ do {
+ if (nvkm_rd32(device, 0x118128) & 0x00000001) {
+ if ((nvkm_rd32(device, 0x118234) & 0x000000ff) == 0xff)
+ return 0;
+ }
+
+ usleep_range(1000, 2000);
+ } while (timeout--);
+
+ return -ETIMEDOUT;
+}
+
int
tu102_devinit_post(struct nvkm_devinit *base, bool post)
{
struct nv50_devinit *init = nv50_devinit(base);
+ int ret;
+
+ ret = tu102_devinit_wait(init->base.subdev.device);
+ if (ret)
+ return ret;
+
gm200_devinit_preos(init, post);
return 0;
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/fault/base.c b/drivers/gpu/drm/nouveau/nvkm/subdev/fault/base.c
index fd54fa504efa..b53ac9a2552f 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/fault/base.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/fault/base.c
@@ -22,7 +22,6 @@
#include "priv.h"
#include <core/memory.h>
-#include <core/notify.h>
static void
nvkm_fault_ntfy_fini(struct nvkm_event *event, int type, int index)
@@ -38,23 +37,8 @@ nvkm_fault_ntfy_init(struct nvkm_event *event, int type, int index)
fault->func->buffer.intr(fault->buffer[index], true);
}
-static int
-nvkm_fault_ntfy_ctor(struct nvkm_object *object, void *argv, u32 argc,
- struct nvkm_notify *notify)
-{
- struct nvkm_fault_buffer *buffer = nvkm_fault_buffer(object);
- if (argc == 0) {
- notify->size = 0;
- notify->types = 1;
- notify->index = buffer->id;
- return 0;
- }
- return -ENOSYS;
-}
-
static const struct nvkm_event_func
nvkm_fault_ntfy = {
- .ctor = nvkm_fault_ntfy_ctor,
.init = nvkm_fault_ntfy_init,
.fini = nvkm_fault_ntfy_fini,
};
@@ -130,8 +114,7 @@ nvkm_fault_oneinit(struct nvkm_subdev *subdev)
}
}
- ret = nvkm_event_init(&nvkm_fault_ntfy, 1, fault->buffer_nr,
- &fault->event);
+ ret = nvkm_event_init(&nvkm_fault_ntfy, subdev, 1, fault->buffer_nr, &fault->event);
if (ret)
return ret;
@@ -146,7 +129,7 @@ nvkm_fault_dtor(struct nvkm_subdev *subdev)
struct nvkm_fault *fault = nvkm_fault(subdev);
int i;
- nvkm_notify_fini(&fault->nrpfb);
+ nvkm_event_ntfy_del(&fault->nrpfb);
nvkm_event_fini(&fault->event);
for (i = 0; i < fault->buffer_nr; i++) {
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/fault/gp100.c b/drivers/gpu/drm/nouveau/nvkm/subdev/fault/gp100.c
index 6af7959e02ea..04c7526888bc 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/fault/gp100.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/fault/gp100.c
@@ -65,7 +65,7 @@ gp100_fault_buffer_info(struct nvkm_fault_buffer *buffer)
void
gp100_fault_intr(struct nvkm_fault *fault)
{
- nvkm_event_send(&fault->event, 1, 0, NULL, 0);
+ nvkm_event_ntfy(&fault->event, 0, NVKM_FAULT_BUFFER_EVENT_PENDING);
}
static const struct nvkm_fault_func
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/fault/gv100.c b/drivers/gpu/drm/nouveau/nvkm/subdev/fault/gv100.c
index cd9d2ade5ac7..8e34d40e7649 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/fault/gv100.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/fault/gv100.c
@@ -27,10 +27,12 @@
#include <nvif/class.h>
-static void
-gv100_fault_buffer_process(struct nvkm_fault_buffer *buffer)
+void
+gv100_fault_buffer_process(struct work_struct *work)
{
- struct nvkm_device *device = buffer->fault->subdev.device;
+ struct nvkm_fault *fault = container_of(work, typeof(*fault), nrpfb_work);
+ struct nvkm_fault_buffer *buffer = fault->buffer[0];
+ struct nvkm_device *device = fault->subdev.device;
struct nvkm_memory *mem = buffer->mem;
u32 get = nvkm_rd32(device, buffer->get);
u32 put = nvkm_rd32(device, buffer->put);
@@ -115,11 +117,12 @@ gv100_fault_buffer_info(struct nvkm_fault_buffer *buffer)
}
static int
-gv100_fault_ntfy_nrpfb(struct nvkm_notify *notify)
+gv100_fault_ntfy_nrpfb(struct nvkm_event_ntfy *ntfy, u32 bits)
{
- struct nvkm_fault *fault = container_of(notify, typeof(*fault), nrpfb);
- gv100_fault_buffer_process(fault->buffer[0]);
- return NVKM_NOTIFY_KEEP;
+ struct nvkm_fault *fault = container_of(ntfy, typeof(*fault), nrpfb);
+
+ schedule_work(&fault->nrpfb_work);
+ return NVKM_EVENT_KEEP;
}
static void
@@ -163,14 +166,14 @@ gv100_fault_intr(struct nvkm_fault *fault)
if (stat & 0x20000000) {
if (fault->buffer[0]) {
- nvkm_event_send(&fault->event, 1, 0, NULL, 0);
+ nvkm_event_ntfy(&fault->event, 0, NVKM_FAULT_BUFFER_EVENT_PENDING);
stat &= ~0x20000000;
}
}
if (stat & 0x08000000) {
if (fault->buffer[1]) {
- nvkm_event_send(&fault->event, 1, 1, NULL, 0);
+ nvkm_event_ntfy(&fault->event, 1, NVKM_FAULT_BUFFER_EVENT_PENDING);
stat &= ~0x08000000;
}
}
@@ -183,9 +186,12 @@ gv100_fault_intr(struct nvkm_fault *fault)
static void
gv100_fault_fini(struct nvkm_fault *fault)
{
- nvkm_notify_put(&fault->nrpfb);
+ nvkm_event_ntfy_block(&fault->nrpfb);
+ flush_work(&fault->nrpfb_work);
+
if (fault->buffer[0])
fault->func->buffer.fini(fault->buffer[0]);
+
nvkm_mask(fault->subdev.device, 0x100a34, 0x80000000, 0x80000000);
}
@@ -194,15 +200,15 @@ gv100_fault_init(struct nvkm_fault *fault)
{
nvkm_mask(fault->subdev.device, 0x100a2c, 0x80000000, 0x80000000);
fault->func->buffer.init(fault->buffer[0]);
- nvkm_notify_get(&fault->nrpfb);
+ nvkm_event_ntfy_allow(&fault->nrpfb);
}
int
gv100_fault_oneinit(struct nvkm_fault *fault)
{
- return nvkm_notify_init(&fault->buffer[0]->object, &fault->event,
- gv100_fault_ntfy_nrpfb, true, NULL, 0, 0,
- &fault->nrpfb);
+ nvkm_event_ntfy_add(&fault->event, 0, NVKM_FAULT_BUFFER_EVENT_PENDING, true,
+ gv100_fault_ntfy_nrpfb, &fault->nrpfb);
+ return 0;
}
static const struct nvkm_fault_func
@@ -231,5 +237,10 @@ int
gv100_fault_new(struct nvkm_device *device, enum nvkm_subdev_type type, int inst,
struct nvkm_fault **pfault)
{
- return nvkm_fault_new_(&gv100_fault, device, type, inst, pfault);
+ int ret = nvkm_fault_new_(&gv100_fault, device, type, inst, pfault);
+ if (ret)
+ return ret;
+
+ INIT_WORK(&(*pfault)->nrpfb_work, gv100_fault_buffer_process);
+ return 0;
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/fault/priv.h b/drivers/gpu/drm/nouveau/nvkm/subdev/fault/priv.h
index 36681c347fb5..a5510332c402 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/fault/priv.h
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/fault/priv.h
@@ -16,6 +16,8 @@ struct nvkm_fault_buffer {
u32 put;
struct nvkm_memory *mem;
u64 addr;
+
+ struct nvkm_inth inth;
};
int nvkm_fault_new_(const struct nvkm_fault_func *, struct nvkm_device *, enum nvkm_subdev_type,
@@ -46,6 +48,7 @@ void gp100_fault_buffer_fini(struct nvkm_fault_buffer *);
void gp100_fault_buffer_init(struct nvkm_fault_buffer *);
u64 gp100_fault_buffer_pin(struct nvkm_fault_buffer *);
void gp100_fault_buffer_info(struct nvkm_fault_buffer *);
+void gv100_fault_buffer_process(struct work_struct *);
void gp100_fault_intr(struct nvkm_fault *);
u64 gp10b_fault_buffer_pin(struct nvkm_fault_buffer *);
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/fault/tu102.c b/drivers/gpu/drm/nouveau/nvkm/subdev/fault/tu102.c
index 91eb6729c84d..967efaddae28 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/fault/tu102.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/fault/tu102.c
@@ -24,20 +24,27 @@
#include <core/memory.h>
#include <subdev/mc.h>
#include <subdev/mmu.h>
+#include <subdev/vfn.h>
#include <engine/fifo.h>
#include <nvif/class.h>
+static irqreturn_t
+tu102_fault_buffer_notify(struct nvkm_inth *inth)
+{
+ struct nvkm_fault_buffer *buffer = container_of(inth, typeof(*buffer), inth);
+
+ nvkm_event_ntfy(&buffer->fault->event, buffer->id, NVKM_FAULT_BUFFER_EVENT_PENDING);
+ return IRQ_HANDLED;
+}
+
static void
tu102_fault_buffer_intr(struct nvkm_fault_buffer *buffer, bool enable)
{
- /*XXX: Earlier versions of RM touched the old regs on Turing,
- * which don't appear to actually work anymore, but newer
- * versions of RM don't appear to touch anything at all..
- */
- struct nvkm_device *device = buffer->fault->subdev.device;
-
- nvkm_mc_intr_mask(device, NVKM_SUBDEV_FAULT, 0, enable);
+ if (enable)
+ nvkm_inth_allow(&buffer->inth);
+ else
+ nvkm_inth_block(&buffer->inth);
}
static void
@@ -46,10 +53,6 @@ tu102_fault_buffer_fini(struct nvkm_fault_buffer *buffer)
struct nvkm_device *device = buffer->fault->subdev.device;
const u32 foff = buffer->id * 0x20;
- /* Disable the fault interrupts */
- nvkm_wr32(device, 0xb81408, 0x1);
- nvkm_wr32(device, 0xb81410, 0x10);
-
nvkm_mask(device, 0xb83010 + foff, 0x80000000, 0x00000000);
}
@@ -59,10 +62,6 @@ tu102_fault_buffer_init(struct nvkm_fault_buffer *buffer)
struct nvkm_device *device = buffer->fault->subdev.device;
const u32 foff = buffer->id * 0x20;
- /* Enable the fault interrupts */
- nvkm_wr32(device, 0xb81208, 0x1);
- nvkm_wr32(device, 0xb81210, 0x10);
-
nvkm_mask(device, 0xb83010 + foff, 0xc0000000, 0x40000000);
nvkm_wr32(device, 0xb83004 + foff, upper_32_bits(buffer->addr));
nvkm_wr32(device, 0xb83000 + foff, lower_32_bits(buffer->addr));
@@ -82,9 +81,10 @@ tu102_fault_buffer_info(struct nvkm_fault_buffer *buffer)
buffer->put = 0xb8300c + foff;
}
-static void
-tu102_fault_intr_fault(struct nvkm_fault *fault)
+static irqreturn_t
+tu102_fault_info_fault(struct nvkm_inth *inth)
{
+ struct nvkm_fault *fault = container_of(inth, typeof(*fault), info_fault);
struct nvkm_subdev *subdev = &fault->subdev;
struct nvkm_device *device = subdev->device;
struct nvkm_fault_data info;
@@ -106,70 +106,61 @@ tu102_fault_intr_fault(struct nvkm_fault *fault)
info.reason = (info1 & 0x0000001f);
nvkm_fifo_fault(device->fifo, &info);
-}
-
-static void
-tu102_fault_intr(struct nvkm_fault *fault)
-{
- struct nvkm_subdev *subdev = &fault->subdev;
- struct nvkm_device *device = subdev->device;
- u32 stat = nvkm_rd32(device, 0xb83094);
-
- if (stat & 0x80000000) {
- tu102_fault_intr_fault(fault);
- nvkm_wr32(device, 0xb83094, 0x80000000);
- stat &= ~0x80000000;
- }
- if (stat & 0x00000200) {
- /* Clear the associated interrupt flag */
- nvkm_wr32(device, 0xb81010, 0x10);
-
- if (fault->buffer[0]) {
- nvkm_event_send(&fault->event, 1, 0, NULL, 0);
- stat &= ~0x00000200;
- }
- }
-
- /* Replayable MMU fault */
- if (stat & 0x00000100) {
- /* Clear the associated interrupt flag */
- nvkm_wr32(device, 0xb81008, 0x1);
-
- if (fault->buffer[1]) {
- nvkm_event_send(&fault->event, 1, 1, NULL, 0);
- stat &= ~0x00000100;
- }
- }
-
- if (stat) {
- nvkm_debug(subdev, "intr %08x\n", stat);
- }
+ nvkm_wr32(device, 0xb83094, 0x80000000);
+ return IRQ_HANDLED;
}
static void
tu102_fault_fini(struct nvkm_fault *fault)
{
- nvkm_notify_put(&fault->nrpfb);
+ nvkm_event_ntfy_block(&fault->nrpfb);
+ flush_work(&fault->nrpfb_work);
+
if (fault->buffer[0])
fault->func->buffer.fini(fault->buffer[0]);
- /*XXX: disable priv faults */
+
+ nvkm_inth_block(&fault->info_fault);
}
static void
tu102_fault_init(struct nvkm_fault *fault)
{
- /*XXX: enable priv faults */
+ nvkm_inth_allow(&fault->info_fault);
+
fault->func->buffer.init(fault->buffer[0]);
- nvkm_notify_get(&fault->nrpfb);
+ nvkm_event_ntfy_allow(&fault->nrpfb);
+}
+
+static int
+tu102_fault_oneinit(struct nvkm_fault *fault)
+{
+ struct nvkm_device *device = fault->subdev.device;
+ struct nvkm_intr *intr = &device->vfn->intr;
+ int ret, i;
+
+ ret = nvkm_inth_add(intr, nvkm_rd32(device, 0x100ee0) & 0x0000ffff,
+ NVKM_INTR_PRIO_NORMAL, &fault->subdev, tu102_fault_info_fault,
+ &fault->info_fault);
+ if (ret)
+ return ret;
+
+ for (i = 0; i < fault->buffer_nr; i++) {
+ ret = nvkm_inth_add(intr, nvkm_rd32(device, 0x100ee4 + (i * 4)) >> 16,
+ NVKM_INTR_PRIO_NORMAL, &fault->subdev,
+ tu102_fault_buffer_notify, &fault->buffer[i]->inth);
+ if (ret)
+ return ret;
+ }
+
+ return gv100_fault_oneinit(fault);
}
static const struct nvkm_fault_func
tu102_fault = {
- .oneinit = gv100_fault_oneinit,
+ .oneinit = tu102_fault_oneinit,
.init = tu102_fault_init,
.fini = tu102_fault_fini,
- .intr = tu102_fault_intr,
.buffer.nr = 2,
.buffer.entry_size = 32,
.buffer.info = tu102_fault_buffer_info,
@@ -184,5 +175,10 @@ int
tu102_fault_new(struct nvkm_device *device, enum nvkm_subdev_type type, int inst,
struct nvkm_fault **pfault)
{
- return nvkm_fault_new_(&tu102_fault, device, type, inst, pfault);
+ int ret = nvkm_fault_new_(&tu102_fault, device, type, inst, pfault);
+ if (ret)
+ return ret;
+
+ INIT_WORK(&(*pfault)->nrpfb_work, gv100_fault_buffer_process);
+ return 0;
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/fault/user.c b/drivers/gpu/drm/nouveau/nvkm/subdev/fault/user.c
index ac835c9582fd..c123e5893d76 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/fault/user.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/fault/user.c
@@ -22,12 +22,28 @@
#include "priv.h"
#include <core/memory.h>
+#include <core/event.h>
#include <subdev/mmu.h>
#include <nvif/clb069.h>
#include <nvif/unpack.h>
static int
+nvkm_ufault_uevent(struct nvkm_object *object, void *argv, u32 argc, struct nvkm_uevent *uevent)
+{
+ struct nvkm_fault_buffer *buffer = nvkm_fault_buffer(object);
+ union nvif_clb069_event_args *args = argv;
+
+ if (!uevent)
+ return 0;
+ if (argc != sizeof(args->vn))
+ return -ENOSYS;
+
+ return nvkm_uevent_add(uevent, &buffer->fault->event, buffer->id,
+ NVKM_FAULT_BUFFER_EVENT_PENDING, NULL);
+}
+
+static int
nvkm_ufault_map(struct nvkm_object *object, void *argv, u32 argc,
enum nvkm_object_map *type, u64 *addr, u64 *size)
{
@@ -40,18 +56,6 @@ nvkm_ufault_map(struct nvkm_object *object, void *argv, u32 argc,
}
static int
-nvkm_ufault_ntfy(struct nvkm_object *object, u32 type,
- struct nvkm_event **pevent)
-{
- struct nvkm_fault_buffer *buffer = nvkm_fault_buffer(object);
- if (type == NVB069_V0_NTFY_FAULT) {
- *pevent = &buffer->fault->event;
- return 0;
- }
- return -EINVAL;
-}
-
-static int
nvkm_ufault_fini(struct nvkm_object *object, bool suspend)
{
struct nvkm_fault_buffer *buffer = nvkm_fault_buffer(object);
@@ -78,8 +82,8 @@ nvkm_ufault = {
.dtor = nvkm_ufault_dtor,
.init = nvkm_ufault_init,
.fini = nvkm_ufault_fini,
- .ntfy = nvkm_ufault_ntfy,
.map = nvkm_ufault_map,
+ .uevent = nvkm_ufault_uevent,
};
int
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/fb/Kbuild b/drivers/gpu/drm/nouveau/nvkm/subdev/fb/Kbuild
index 5d0bab8ecb43..6ba5120a2ebe 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/fb/Kbuild
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/fb/Kbuild
@@ -32,6 +32,7 @@ nvkm-y += nvkm/subdev/fb/gp100.o
nvkm-y += nvkm/subdev/fb/gp102.o
nvkm-y += nvkm/subdev/fb/gp10b.o
nvkm-y += nvkm/subdev/fb/gv100.o
+nvkm-y += nvkm/subdev/fb/tu102.o
nvkm-y += nvkm/subdev/fb/ga100.o
nvkm-y += nvkm/subdev/fb/ga102.o
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/fb/base.c b/drivers/gpu/drm/nouveau/nvkm/subdev/fb/base.c
index 6faaea948fc4..0955340cc421 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/fb/base.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/fb/base.c
@@ -57,6 +57,15 @@ nvkm_fb_tile_prog(struct nvkm_fb *fb, int region, struct nvkm_fb_tile *tile)
}
}
+static void
+nvkm_fb_sysmem_flush_page_init(struct nvkm_device *device)
+{
+ struct nvkm_fb *fb = device->fb;
+
+ if (fb->func->sysmem.flush_page_init)
+ fb->func->sysmem.flush_page_init(fb);
+}
+
int
nvkm_fb_bios_memtype(struct nvkm_bios *bios)
{
@@ -125,15 +134,27 @@ nvkm_fb_oneinit(struct nvkm_subdev *subdev)
return nvkm_mm_init(&fb->tags.mm, 0, 0, tags, 1);
}
-static int
-nvkm_fb_init_scrub_vpr(struct nvkm_fb *fb)
+int
+nvkm_fb_mem_unlock(struct nvkm_fb *fb)
{
struct nvkm_subdev *subdev = &fb->subdev;
int ret;
+ if (!fb->func->vpr.scrub_required)
+ return 0;
+
+ ret = nvkm_subdev_oneinit(subdev);
+ if (ret)
+ return ret;
+
+ if (!fb->func->vpr.scrub_required(fb)) {
+ nvkm_debug(subdev, "VPR not locked\n");
+ return 0;
+ }
+
nvkm_debug(subdev, "VPR locked, running scrubber binary\n");
- if (!fb->vpr_scrubber.size) {
+ if (!fb->vpr_scrubber.fw.img) {
nvkm_warn(subdev, "VPR locked, but no scrubber binary!\n");
return 0;
}
@@ -168,6 +189,8 @@ nvkm_fb_init(struct nvkm_subdev *subdev)
for (i = 0; i < fb->tile.regions; i++)
fb->func->tile.prog(fb, i, &fb->tile.region[i]);
+ nvkm_fb_sysmem_flush_page_init(subdev->device);
+
if (fb->func->init)
fb->func->init(fb);
@@ -183,13 +206,13 @@ nvkm_fb_init(struct nvkm_subdev *subdev)
if (fb->func->init_unkn)
fb->func->init_unkn(fb);
- if (fb->func->vpr.scrub_required &&
- fb->func->vpr.scrub_required(fb)) {
- ret = nvkm_fb_init_scrub_vpr(fb);
- if (ret)
- return ret;
- }
+ return 0;
+}
+static int
+nvkm_fb_preinit(struct nvkm_subdev *subdev)
+{
+ nvkm_fb_sysmem_flush_page_init(subdev->device);
return 0;
}
@@ -210,22 +233,30 @@ nvkm_fb_dtor(struct nvkm_subdev *subdev)
nvkm_ram_del(&fb->ram);
- nvkm_blob_dtor(&fb->vpr_scrubber);
+ nvkm_falcon_fw_dtor(&fb->vpr_scrubber);
+
+ if (fb->sysmem.flush_page) {
+ dma_unmap_page(subdev->device->dev, fb->sysmem.flush_page_addr,
+ PAGE_SIZE, DMA_BIDIRECTIONAL);
+ __free_page(fb->sysmem.flush_page);
+ }
if (fb->func->dtor)
return fb->func->dtor(fb);
+
return fb;
}
static const struct nvkm_subdev_func
nvkm_fb = {
.dtor = nvkm_fb_dtor,
+ .preinit = nvkm_fb_preinit,
.oneinit = nvkm_fb_oneinit,
.init = nvkm_fb_init,
.intr = nvkm_fb_intr,
};
-void
+int
nvkm_fb_ctor(const struct nvkm_fb_func *func, struct nvkm_device *device,
enum nvkm_subdev_type type, int inst, struct nvkm_fb *fb)
{
@@ -234,6 +265,19 @@ nvkm_fb_ctor(const struct nvkm_fb_func *func, struct nvkm_device *device,
fb->tile.regions = fb->func->tile.regions;
fb->page = nvkm_longopt(device->cfgopt, "NvFbBigPage", fb->func->default_bigpage);
mutex_init(&fb->tags.mutex);
+
+ if (func->sysmem.flush_page_init) {
+ fb->sysmem.flush_page = alloc_page(GFP_KERNEL | __GFP_ZERO);
+ if (!fb->sysmem.flush_page)
+ return -ENOMEM;
+
+ fb->sysmem.flush_page_addr = dma_map_page(device->dev, fb->sysmem.flush_page,
+ 0, PAGE_SIZE, DMA_BIDIRECTIONAL);
+ if (dma_mapping_error(device->dev, fb->sysmem.flush_page_addr))
+ return -EFAULT;
+ }
+
+ return 0;
}
int
@@ -242,6 +286,5 @@ nvkm_fb_new_(const struct nvkm_fb_func *func, struct nvkm_device *device,
{
if (!(*pfb = kzalloc(sizeof(**pfb), GFP_KERNEL)))
return -ENOMEM;
- nvkm_fb_ctor(func, device, type, inst, *pfb);
- return 0;
+ return nvkm_fb_ctor(func, device, type, inst, *pfb);
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/fb/ga100.c b/drivers/gpu/drm/nouveau/nvkm/subdev/fb/ga100.c
index b47bebfbc26f..a7456e786463 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/fb/ga100.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/fb/ga100.c
@@ -26,9 +26,10 @@ static const struct nvkm_fb_func
ga100_fb = {
.dtor = gf100_fb_dtor,
.oneinit = gf100_fb_oneinit,
- .init = gp100_fb_init,
+ .init = gm200_fb_init,
.init_page = gv100_fb_init_page,
.init_unkn = gp100_fb_init_unkn,
+ .sysmem.flush_page_init = gf100_fb_sysmem_flush_page_init,
.ram_new = gp100_ram_new,
.default_bigpage = 16,
};
@@ -36,5 +37,5 @@ ga100_fb = {
int
ga100_fb_new(struct nvkm_device *device, enum nvkm_subdev_type type, int inst, struct nvkm_fb **pfb)
{
- return gp102_fb_new_(&ga100_fb, device, type, inst, pfb);
+ return gf100_fb_new_(&ga100_fb, device, type, inst, pfb);
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/fb/ga102.c b/drivers/gpu/drm/nouveau/nvkm/subdev/fb/ga102.c
index 6ea7908f0563..dd476e079fe1 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/fb/ga102.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/fb/ga102.c
@@ -22,19 +22,41 @@
#include "gf100.h"
#include "ram.h"
+#include <engine/nvdec.h>
+
+static int
+ga102_fb_oneinit(struct nvkm_fb *fb)
+{
+ struct nvkm_subdev *subdev = &fb->subdev;
+
+ nvkm_falcon_fw_ctor_hs_v2(&ga102_flcn_fw, "mem-unlock", subdev, "nvdec/scrubber",
+ 0, &subdev->device->nvdec[0]->falcon, &fb->vpr_scrubber);
+
+ return gf100_fb_oneinit(fb);
+}
+
static const struct nvkm_fb_func
ga102_fb = {
.dtor = gf100_fb_dtor,
- .oneinit = gf100_fb_oneinit,
- .init = gp100_fb_init,
+ .oneinit = ga102_fb_oneinit,
+ .init = gm200_fb_init,
.init_page = gv100_fb_init_page,
.init_unkn = gp100_fb_init_unkn,
+ .sysmem.flush_page_init = gf100_fb_sysmem_flush_page_init,
.ram_new = ga102_ram_new,
.default_bigpage = 16,
+ .vpr.scrub_required = tu102_fb_vpr_scrub_required,
+ .vpr.scrub = gp102_fb_vpr_scrub,
};
int
ga102_fb_new(struct nvkm_device *device, enum nvkm_subdev_type type, int inst, struct nvkm_fb **pfb)
{
- return gp102_fb_new_(&ga102_fb, device, type, inst, pfb);
+ return gf100_fb_new_(&ga102_fb, device, type, inst, pfb);
}
+
+MODULE_FIRMWARE("nvidia/ga102/nvdec/scrubber.bin");
+MODULE_FIRMWARE("nvidia/ga103/nvdec/scrubber.bin");
+MODULE_FIRMWARE("nvidia/ga104/nvdec/scrubber.bin");
+MODULE_FIRMWARE("nvidia/ga106/nvdec/scrubber.bin");
+MODULE_FIRMWARE("nvidia/ga107/nvdec/scrubber.bin");
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gf100.c b/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gf100.c
index 9dcc40f9ef79..07db9b397ac1 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gf100.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gf100.c
@@ -61,14 +61,6 @@ gf100_fb_oneinit(struct nvkm_fb *base)
if (ret)
return ret;
- fb->r100c10_page = alloc_page(GFP_KERNEL | __GFP_ZERO);
- if (fb->r100c10_page) {
- fb->r100c10 = dma_map_page(device->dev, fb->r100c10_page, 0,
- PAGE_SIZE, DMA_BIDIRECTIONAL);
- if (dma_mapping_error(device->dev, fb->r100c10))
- return -EFAULT;
- }
-
return 0;
}
@@ -86,14 +78,17 @@ gf100_fb_init_page(struct nvkm_fb *fb)
}
void
+gf100_fb_sysmem_flush_page_init(struct nvkm_fb *fb)
+{
+ nvkm_wr32(fb->subdev.device, 0x100c10, fb->sysmem.flush_page_addr >> 8);
+}
+
+void
gf100_fb_init(struct nvkm_fb *base)
{
struct gf100_fb *fb = gf100_fb(base);
struct nvkm_device *device = fb->base.subdev.device;
- if (fb->r100c10_page)
- nvkm_wr32(device, 0x100c10, fb->r100c10 >> 8);
-
if (base->func->clkgate_pack) {
nvkm_therm_clkgate_init(device->therm,
base->func->clkgate_pack);
@@ -104,13 +99,6 @@ void *
gf100_fb_dtor(struct nvkm_fb *base)
{
struct gf100_fb *fb = gf100_fb(base);
- struct nvkm_device *device = fb->base.subdev.device;
-
- if (fb->r100c10_page) {
- dma_unmap_page(device->dev, fb->r100c10, PAGE_SIZE,
- DMA_BIDIRECTIONAL);
- __free_page(fb->r100c10_page);
- }
return fb;
}
@@ -136,6 +124,7 @@ gf100_fb = {
.init = gf100_fb_init,
.init_page = gf100_fb_init_page,
.intr = gf100_fb_intr,
+ .sysmem.flush_page_init = gf100_fb_sysmem_flush_page_init,
.ram_new = gf100_ram_new,
.default_bigpage = 17,
};
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gf100.h b/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gf100.h
index 0cac7b06acc8..77472b558591 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gf100.h
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gf100.h
@@ -6,8 +6,6 @@
struct gf100_fb {
struct nvkm_fb base;
- struct page *r100c10_page;
- dma_addr_t r100c10;
};
int gf100_fb_new_(const struct nvkm_fb_func *, struct nvkm_device *, enum nvkm_subdev_type, int,
@@ -16,7 +14,5 @@ void *gf100_fb_dtor(struct nvkm_fb *);
void gf100_fb_init(struct nvkm_fb *);
void gf100_fb_intr(struct nvkm_fb *);
-void gp100_fb_init(struct nvkm_fb *);
-
void gm200_fb_init(struct nvkm_fb *base);
#endif
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gf108.c b/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gf108.c
index 76678dd60f93..c4c6f67af7cc 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gf108.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gf108.c
@@ -31,6 +31,7 @@ gf108_fb = {
.init = gf100_fb_init,
.init_page = gf100_fb_init_page,
.intr = gf100_fb_intr,
+ .sysmem.flush_page_init = gf100_fb_sysmem_flush_page_init,
.ram_new = gf108_ram_new,
.default_bigpage = 17,
};
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gk104.c b/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gk104.c
index f73442ccb424..433fa966ba23 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gk104.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gk104.c
@@ -77,6 +77,7 @@ gk104_fb = {
.init = gf100_fb_init,
.init_page = gf100_fb_init_page,
.intr = gf100_fb_intr,
+ .sysmem.flush_page_init = gf100_fb_sysmem_flush_page_init,
.ram_new = gk104_ram_new,
.default_bigpage = 17,
.clkgate_pack = gk104_fb_clkgate_pack,
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gk110.c b/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gk110.c
index 45d6cdffafee..4dc283dedf8b 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gk110.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gk110.c
@@ -59,6 +59,7 @@ gk110_fb = {
.init = gf100_fb_init,
.init_page = gf100_fb_init_page,
.intr = gf100_fb_intr,
+ .sysmem.flush_page_init = gf100_fb_sysmem_flush_page_init,
.ram_new = gk104_ram_new,
.default_bigpage = 17,
.clkgate_pack = gk110_fb_clkgate_pack,
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gm107.c b/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gm107.c
index de52462a92bf..90bfff616d35 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gm107.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gm107.c
@@ -31,6 +31,7 @@ gm107_fb = {
.init = gf100_fb_init,
.init_page = gf100_fb_init_page,
.intr = gf100_fb_intr,
+ .sysmem.flush_page_init = gf100_fb_sysmem_flush_page_init,
.ram_new = gm107_ram_new,
.default_bigpage = 17,
};
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gm200.c b/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gm200.c
index 5acf8d15d06f..fb02092a65eb 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gm200.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gm200.c
@@ -46,9 +46,6 @@ gm200_fb_init(struct nvkm_fb *base)
struct gf100_fb *fb = gf100_fb(base);
struct nvkm_device *device = fb->base.subdev.device;
- if (fb->r100c10_page)
- nvkm_wr32(device, 0x100c10, fb->r100c10 >> 8);
-
nvkm_wr32(device, 0x100cc8, nvkm_memory_addr(fb->base.mmu_wr) >> 8);
nvkm_wr32(device, 0x100ccc, nvkm_memory_addr(fb->base.mmu_rd) >> 8);
nvkm_mask(device, 0x100cc4, 0x00060000,
@@ -62,6 +59,7 @@ gm200_fb = {
.init = gm200_fb_init,
.init_page = gm200_fb_init_page,
.intr = gf100_fb_intr,
+ .sysmem.flush_page_init = gf100_fb_sysmem_flush_page_init,
.ram_new = gm200_ram_new,
.default_bigpage = 0 /* per-instance. */,
};
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gm20b.c b/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gm20b.c
index 86f61a3f2fea..50875af94c18 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gm20b.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gm20b.c
@@ -30,6 +30,7 @@ gm20b_fb = {
.init = gm200_fb_init,
.init_page = gm200_fb_init_page,
.intr = gf100_fb_intr,
+ .sysmem.flush_page_init = gf100_fb_sysmem_flush_page_init,
.default_bigpage = 0 /* per-instance. */,
};
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gp100.c b/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gp100.c
index 09e943edc362..110c08c94849 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gp100.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gp100.c
@@ -44,29 +44,15 @@ gp100_fb_init_remapper(struct nvkm_fb *fb)
nvkm_mask(device, 0x100c14, 0x00040000, 0x00000000);
}
-void
-gp100_fb_init(struct nvkm_fb *base)
-{
- struct gf100_fb *fb = gf100_fb(base);
- struct nvkm_device *device = fb->base.subdev.device;
-
- if (fb->r100c10_page)
- nvkm_wr32(device, 0x100c10, fb->r100c10 >> 8);
-
- nvkm_wr32(device, 0x100cc8, nvkm_memory_addr(fb->base.mmu_wr) >> 8);
- nvkm_wr32(device, 0x100ccc, nvkm_memory_addr(fb->base.mmu_rd) >> 8);
- nvkm_mask(device, 0x100cc4, 0x00060000,
- min(nvkm_memory_size(fb->base.mmu_rd) >> 16, (u64)2) << 17);
-}
-
static const struct nvkm_fb_func
gp100_fb = {
.dtor = gf100_fb_dtor,
.oneinit = gf100_fb_oneinit,
- .init = gp100_fb_init,
+ .init = gm200_fb_init,
.init_remapper = gp100_fb_init_remapper,
.init_page = gm200_fb_init_page,
.init_unkn = gp100_fb_init_unkn,
+ .sysmem.flush_page_init = gf100_fb_sysmem_flush_page_init,
.ram_new = gp100_ram_new,
};
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gp102.c b/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gp102.c
index 0e78b3d734a0..14d942e8b857 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gp102.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gp102.c
@@ -24,72 +24,12 @@
#include "gf100.h"
#include "ram.h"
-#include <core/firmware.h>
-#include <core/memory.h>
-#include <nvfw/fw.h>
-#include <nvfw/hs.h>
#include <engine/nvdec.h>
int
gp102_fb_vpr_scrub(struct nvkm_fb *fb)
{
- struct nvkm_subdev *subdev = &fb->subdev;
- struct nvkm_device *device = subdev->device;
- struct nvkm_falcon *falcon = &device->nvdec[0]->falcon;
- struct nvkm_blob *blob = &fb->vpr_scrubber;
- const struct nvfw_bin_hdr *hsbin_hdr;
- const struct nvfw_hs_header *fw_hdr;
- const struct nvfw_hs_load_header *lhdr;
- void *scrub_data;
- u32 patch_loc, patch_sig;
- int ret;
-
- nvkm_falcon_get(falcon, subdev);
-
- hsbin_hdr = nvfw_bin_hdr(subdev, blob->data);
- fw_hdr = nvfw_hs_header(subdev, blob->data + hsbin_hdr->header_offset);
- lhdr = nvfw_hs_load_header(subdev, blob->data + fw_hdr->hdr_offset);
- scrub_data = blob->data + hsbin_hdr->data_offset;
-
- patch_loc = *(u32 *)(blob->data + fw_hdr->patch_loc);
- patch_sig = *(u32 *)(blob->data + fw_hdr->patch_sig);
- if (falcon->debug) {
- memcpy(scrub_data + patch_loc,
- blob->data + fw_hdr->sig_dbg_offset + patch_sig,
- fw_hdr->sig_dbg_size);
- } else {
- memcpy(scrub_data + patch_loc,
- blob->data + fw_hdr->sig_prod_offset + patch_sig,
- fw_hdr->sig_prod_size);
- }
-
- nvkm_falcon_reset(falcon);
- nvkm_falcon_bind_context(falcon, NULL);
-
- nvkm_falcon_load_imem(falcon, scrub_data, lhdr->non_sec_code_off,
- lhdr->non_sec_code_size,
- lhdr->non_sec_code_off >> 8, 0, false);
- nvkm_falcon_load_imem(falcon, scrub_data + lhdr->apps[0],
- ALIGN(lhdr->apps[0], 0x100),
- lhdr->apps[1],
- lhdr->apps[0] >> 8, 0, true);
- nvkm_falcon_load_dmem(falcon, scrub_data + lhdr->data_dma_base, 0,
- lhdr->data_size, 0);
-
- nvkm_falcon_set_start_addr(falcon, 0x0);
- nvkm_falcon_start(falcon);
-
- ret = nvkm_falcon_wait_for_halt(falcon, 500);
- if (ret < 0) {
- ret = -ETIMEDOUT;
- goto end;
- }
-
- /* put nvdec in clean state - without reset it will remain in HS mode */
- nvkm_falcon_reset(falcon);
-end:
- nvkm_falcon_put(falcon, subdev);
- return ret;
+ return nvkm_falcon_fw_boot(&fb->vpr_scrubber, &fb->subdev, true, NULL, NULL, 0, 0x00000000);
}
bool
@@ -100,35 +40,34 @@ gp102_fb_vpr_scrub_required(struct nvkm_fb *fb)
return (nvkm_rd32(device, 0x100cd0) & 0x00000010) != 0;
}
+int
+gp102_fb_oneinit(struct nvkm_fb *fb)
+{
+ struct nvkm_subdev *subdev = &fb->subdev;
+
+ nvkm_falcon_fw_ctor_hs(&gm200_flcn_fw, "mem-unlock", subdev, NULL, "nvdec/scrubber",
+ 0, &subdev->device->nvdec[0]->falcon, &fb->vpr_scrubber);
+
+ return gf100_fb_oneinit(fb);
+}
+
static const struct nvkm_fb_func
gp102_fb = {
.dtor = gf100_fb_dtor,
- .oneinit = gf100_fb_oneinit,
- .init = gp100_fb_init,
+ .oneinit = gp102_fb_oneinit,
+ .init = gm200_fb_init,
.init_remapper = gp100_fb_init_remapper,
.init_page = gm200_fb_init_page,
+ .sysmem.flush_page_init = gf100_fb_sysmem_flush_page_init,
.vpr.scrub_required = gp102_fb_vpr_scrub_required,
.vpr.scrub = gp102_fb_vpr_scrub,
.ram_new = gp100_ram_new,
};
int
-gp102_fb_new_(const struct nvkm_fb_func *func, struct nvkm_device *device,
- enum nvkm_subdev_type type, int inst, struct nvkm_fb **pfb)
-{
- int ret = gf100_fb_new_(func, device, type, inst, pfb);
- if (ret)
- return ret;
-
- nvkm_firmware_load_blob(&(*pfb)->subdev, "nvdec/scrubber", "", 0,
- &(*pfb)->vpr_scrubber);
- return 0;
-}
-
-int
gp102_fb_new(struct nvkm_device *device, enum nvkm_subdev_type type, int inst, struct nvkm_fb **pfb)
{
- return gp102_fb_new_(&gp102_fb, device, type, inst, pfb);
+ return gf100_fb_new_(&gp102_fb, device, type, inst, pfb);
}
MODULE_FIRMWARE("nvidia/gp102/nvdec/scrubber.bin");
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gp10b.c b/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gp10b.c
index 84c9815a6d48..a04a5f712019 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gp10b.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gp10b.c
@@ -28,6 +28,7 @@ gp10b_fb = {
.init = gm200_fb_init,
.init_page = gm200_fb_init_page,
.intr = gf100_fb_intr,
+ .sysmem.flush_page_init = gf100_fb_sysmem_flush_page_init,
};
int
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gv100.c b/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gv100.c
index 63daa83ae12d..4d8a286a7a34 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gv100.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/fb/gv100.c
@@ -31,10 +31,11 @@ gv100_fb_init_page(struct nvkm_fb *fb)
static const struct nvkm_fb_func
gv100_fb = {
.dtor = gf100_fb_dtor,
- .oneinit = gf100_fb_oneinit,
- .init = gp100_fb_init,
+ .oneinit = gp102_fb_oneinit,
+ .init = gm200_fb_init,
.init_page = gv100_fb_init_page,
.init_unkn = gp100_fb_init_unkn,
+ .sysmem.flush_page_init = gf100_fb_sysmem_flush_page_init,
.vpr.scrub_required = gp102_fb_vpr_scrub_required,
.vpr.scrub = gp102_fb_vpr_scrub,
.ram_new = gp100_ram_new,
@@ -44,12 +45,7 @@ gv100_fb = {
int
gv100_fb_new(struct nvkm_device *device, enum nvkm_subdev_type type, int inst, struct nvkm_fb **pfb)
{
- return gp102_fb_new_(&gv100_fb, device, type, inst, pfb);
+ return gf100_fb_new_(&gv100_fb, device, type, inst, pfb);
}
MODULE_FIRMWARE("nvidia/gv100/nvdec/scrubber.bin");
-MODULE_FIRMWARE("nvidia/tu102/nvdec/scrubber.bin");
-MODULE_FIRMWARE("nvidia/tu104/nvdec/scrubber.bin");
-MODULE_FIRMWARE("nvidia/tu106/nvdec/scrubber.bin");
-MODULE_FIRMWARE("nvidia/tu116/nvdec/scrubber.bin");
-MODULE_FIRMWARE("nvidia/tu117/nvdec/scrubber.bin");
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/fb/nv50.c b/drivers/gpu/drm/nouveau/nvkm/subdev/fb/nv50.c
index 95fd8f834010..a6efbd913c13 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/fb/nv50.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/fb/nv50.c
@@ -137,8 +137,7 @@ nv50_fb_intr(struct nvkm_fb *base)
struct nv50_fb *fb = nv50_fb(base);
struct nvkm_subdev *subdev = &fb->base.subdev;
struct nvkm_device *device = subdev->device;
- struct nvkm_fifo *fifo = device->fifo;
- struct nvkm_fifo_chan *chan;
+ struct nvkm_chan *chan;
const struct nvkm_enum *en, *re, *cl, *sc;
u32 trap[6], idx, inst;
u8 st0, st1, st2, st3;
@@ -178,35 +177,18 @@ nv50_fb_intr(struct nvkm_fb *base)
else if (en && en->data) sc = nvkm_enum_find(en->data, st3);
else sc = NULL;
- chan = nvkm_fifo_chan_inst(fifo, inst, &flags);
+ chan = nvkm_chan_get_inst(&device->fifo->engine, inst, &flags);
nvkm_error(subdev, "trapped %s at %02x%04x%04x on channel %d [%08x %s] "
"engine %02x [%s] client %02x [%s] "
"subclient %02x [%s] reason %08x [%s]\n",
(trap[5] & 0x00000100) ? "read" : "write",
trap[5] & 0xff, trap[4] & 0xffff, trap[3] & 0xffff,
- chan ? chan->chid : -1, inst,
- chan ? chan->object.client->name : "unknown",
+ chan ? chan->id : -1, inst,
+ chan ? chan->name : "unknown",
st0, en ? en->name : "",
st2, cl ? cl->name : "", st3, sc ? sc->name : "",
st1, re ? re->name : "");
- nvkm_fifo_chan_put(fifo, flags, &chan);
-}
-
-static int
-nv50_fb_oneinit(struct nvkm_fb *base)
-{
- struct nv50_fb *fb = nv50_fb(base);
- struct nvkm_device *device = fb->base.subdev.device;
-
- fb->r100c08_page = alloc_page(GFP_KERNEL | __GFP_ZERO);
- if (fb->r100c08_page) {
- fb->r100c08 = dma_map_page(device->dev, fb->r100c08_page, 0,
- PAGE_SIZE, DMA_BIDIRECTIONAL);
- if (dma_mapping_error(device->dev, fb->r100c08))
- return -EFAULT;
- }
-
- return 0;
+ nvkm_chan_put(&chan, flags);
}
static void
@@ -215,12 +197,6 @@ nv50_fb_init(struct nvkm_fb *base)
struct nv50_fb *fb = nv50_fb(base);
struct nvkm_device *device = fb->base.subdev.device;
- /* Not a clue what this is exactly. Without pointing it at a
- * scratch page, VRAM->GART blits with M2MF (as in DDX DFS)
- * cause IOMMU "read from address 0" errors (rh#561267)
- */
- nvkm_wr32(device, 0x100c08, fb->r100c08 >> 8);
-
/* This is needed to get meaningful information from 100c90
* on traps. No idea what these values mean exactly. */
nvkm_wr32(device, 0x100c90, fb->func->trap);
@@ -235,17 +211,16 @@ nv50_fb_tags(struct nvkm_fb *base)
return 0;
}
+static void
+nv50_fb_sysmem_flush_page_init(struct nvkm_fb *fb)
+{
+ nvkm_wr32(fb->subdev.device, 0x100c08, fb->sysmem.flush_page_addr >> 8);
+}
+
static void *
nv50_fb_dtor(struct nvkm_fb *base)
{
struct nv50_fb *fb = nv50_fb(base);
- struct nvkm_device *device = fb->base.subdev.device;
-
- if (fb->r100c08_page) {
- dma_unmap_page(device->dev, fb->r100c08, PAGE_SIZE,
- DMA_BIDIRECTIONAL);
- __free_page(fb->r100c08_page);
- }
return fb;
}
@@ -254,9 +229,9 @@ static const struct nvkm_fb_func
nv50_fb_ = {
.dtor = nv50_fb_dtor,
.tags = nv50_fb_tags,
- .oneinit = nv50_fb_oneinit,
.init = nv50_fb_init,
.intr = nv50_fb_intr,
+ .sysmem.flush_page_init = nv50_fb_sysmem_flush_page_init,
.ram_new = nv50_fb_ram_new,
};
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/fb/nv50.h b/drivers/gpu/drm/nouveau/nvkm/subdev/fb/nv50.h
index a5e673859a90..4f68bc4513a7 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/fb/nv50.h
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/fb/nv50.h
@@ -7,8 +7,6 @@
struct nv50_fb {
const struct nv50_fb_func *func;
struct nvkm_fb base;
- struct page *r100c08_page;
- dma_addr_t r100c08;
};
struct nv50_fb_func {
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/fb/priv.h b/drivers/gpu/drm/nouveau/nvkm/subdev/fb/priv.h
index 3f1be9780c65..726c30c8bf95 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/fb/priv.h
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/fb/priv.h
@@ -16,6 +16,10 @@ struct nvkm_fb_func {
void (*init_unkn)(struct nvkm_fb *);
void (*intr)(struct nvkm_fb *);
+ struct nvkm_fb_func_sysmem {
+ void (*flush_page_init)(struct nvkm_fb *);
+ } sysmem;
+
struct {
bool (*scrub_required)(struct nvkm_fb *);
int (*scrub)(struct nvkm_fb *);
@@ -37,8 +41,8 @@ struct nvkm_fb_func {
const struct nvkm_therm_clkgate_pack *clkgate_pack;
};
-void nvkm_fb_ctor(const struct nvkm_fb_func *, struct nvkm_device *device,
- enum nvkm_subdev_type type, int inst, struct nvkm_fb *);
+int nvkm_fb_ctor(const struct nvkm_fb_func *, struct nvkm_device *device,
+ enum nvkm_subdev_type type, int inst, struct nvkm_fb *);
int nvkm_fb_new_(const struct nvkm_fb_func *, struct nvkm_device *device,
enum nvkm_subdev_type type, int inst, struct nvkm_fb **);
int nvkm_fb_bios_memtype(struct nvkm_bios *);
@@ -72,16 +76,18 @@ void nv46_fb_tile_init(struct nvkm_fb *, int i, u32 addr, u32 size,
int gf100_fb_oneinit(struct nvkm_fb *);
int gf100_fb_init_page(struct nvkm_fb *);
+void gf100_fb_sysmem_flush_page_init(struct nvkm_fb *);
int gm200_fb_init_page(struct nvkm_fb *);
void gp100_fb_init_remapper(struct nvkm_fb *);
void gp100_fb_init_unkn(struct nvkm_fb *);
-int gp102_fb_new_(const struct nvkm_fb_func *, struct nvkm_device *, enum nvkm_subdev_type, int,
- struct nvkm_fb **);
+int gp102_fb_oneinit(struct nvkm_fb *);
bool gp102_fb_vpr_scrub_required(struct nvkm_fb *);
int gp102_fb_vpr_scrub(struct nvkm_fb *);
int gv100_fb_init_page(struct nvkm_fb *);
+
+bool tu102_fb_vpr_scrub_required(struct nvkm_fb *);
#endif
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/fb/ram.c b/drivers/gpu/drm/nouveau/nvkm/subdev/fb/ram.c
index 03b1bdb27770..5c34416cb637 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/fb/ram.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/fb/ram.c
@@ -25,6 +25,7 @@
#include "ram.h"
#include <core/memory.h>
+#include <subdev/instmem.h>
#include <subdev/mmu.h>
struct nvkm_vram {
@@ -35,6 +36,12 @@ struct nvkm_vram {
};
static int
+nvkm_vram_kmap(struct nvkm_memory *memory, struct nvkm_memory **pmemory)
+{
+ return nvkm_instobj_wrap(nvkm_vram(memory)->ram->fb->subdev.device, memory, pmemory);
+}
+
+static int
nvkm_vram_map(struct nvkm_memory *memory, u64 offset, struct nvkm_vmm *vmm,
struct nvkm_vma *vma, void *argv, u32 argc)
{
@@ -98,6 +105,7 @@ nvkm_vram = {
.addr = nvkm_vram_addr,
.size = nvkm_vram_size,
.map = nvkm_vram_map,
+ .kmap = nvkm_vram_kmap,
};
int
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/fb/tu102.c b/drivers/gpu/drm/nouveau/nvkm/subdev/fb/tu102.c
new file mode 100644
index 000000000000..b8803c124c3b
--- /dev/null
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/fb/tu102.c
@@ -0,0 +1,55 @@
+/*
+ * Copyright 2018 Red Hat Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ */
+#include "gf100.h"
+#include "ram.h"
+
+bool
+tu102_fb_vpr_scrub_required(struct nvkm_fb *fb)
+{
+ return (nvkm_rd32(fb->subdev.device, 0x1fa80c) & 0x00000010) != 0;
+}
+
+static const struct nvkm_fb_func
+tu102_fb = {
+ .dtor = gf100_fb_dtor,
+ .oneinit = gp102_fb_oneinit,
+ .init = gm200_fb_init,
+ .init_page = gv100_fb_init_page,
+ .init_unkn = gp100_fb_init_unkn,
+ .sysmem.flush_page_init = gf100_fb_sysmem_flush_page_init,
+ .vpr.scrub_required = tu102_fb_vpr_scrub_required,
+ .vpr.scrub = gp102_fb_vpr_scrub,
+ .ram_new = gp100_ram_new,
+ .default_bigpage = 16,
+};
+
+int
+tu102_fb_new(struct nvkm_device *device, enum nvkm_subdev_type type, int inst, struct nvkm_fb **pfb)
+{
+ return gf100_fb_new_(&tu102_fb, device, type, inst, pfb);
+}
+
+MODULE_FIRMWARE("nvidia/tu102/nvdec/scrubber.bin");
+MODULE_FIRMWARE("nvidia/tu104/nvdec/scrubber.bin");
+MODULE_FIRMWARE("nvidia/tu106/nvdec/scrubber.bin");
+MODULE_FIRMWARE("nvidia/tu116/nvdec/scrubber.bin");
+MODULE_FIRMWARE("nvidia/tu117/nvdec/scrubber.bin");
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/gpio/base.c b/drivers/gpu/drm/nouveau/nvkm/subdev/gpio/base.c
index 048bcc70c3f4..b196baa376dc 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/gpio/base.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/gpio/base.c
@@ -24,7 +24,6 @@
#include "priv.h"
#include <core/option.h>
-#include <core/notify.h>
static int
nvkm_gpio_drive(struct nvkm_gpio *gpio, int idx, int line, int dir, int out)
@@ -123,23 +122,8 @@ nvkm_gpio_intr_init(struct nvkm_event *event, int type, int index)
gpio->func->intr_mask(gpio, type, 1 << index, 1 << index);
}
-static int
-nvkm_gpio_intr_ctor(struct nvkm_object *object, void *data, u32 size,
- struct nvkm_notify *notify)
-{
- struct nvkm_gpio_ntfy_req *req = data;
- if (!WARN_ON(size != sizeof(*req))) {
- notify->size = sizeof(struct nvkm_gpio_ntfy_rep);
- notify->types = req->mask;
- notify->index = req->line;
- return 0;
- }
- return -EINVAL;
-}
-
static const struct nvkm_event_func
nvkm_gpio_intr_func = {
- .ctor = nvkm_gpio_intr_ctor,
.init = nvkm_gpio_intr_init,
.fini = nvkm_gpio_intr_fini,
};
@@ -153,11 +137,9 @@ nvkm_gpio_intr(struct nvkm_subdev *subdev)
gpio->func->intr_stat(gpio, &hi, &lo);
for (i = 0; (hi | lo) && i < gpio->func->lines; i++) {
- struct nvkm_gpio_ntfy_rep rep = {
- .mask = (NVKM_GPIO_HI * !!(hi & (1 << i))) |
- (NVKM_GPIO_LO * !!(lo & (1 << i))),
- };
- nvkm_event_send(&gpio->event, rep.mask, i, &rep, sizeof(rep));
+ u32 mask = (NVKM_GPIO_HI * !!(hi & (1 << i))) |
+ (NVKM_GPIO_LO * !!(lo & (1 << i)));
+ nvkm_event_ntfy(&gpio->event, i, mask);
}
}
@@ -251,6 +233,5 @@ nvkm_gpio_new_(const struct nvkm_gpio_func *func, struct nvkm_device *device,
nvkm_subdev_ctor(&nvkm_gpio, device, type, inst, &gpio->subdev);
gpio->func = func;
- return nvkm_event_init(&nvkm_gpio_intr_func, 2, func->lines,
- &gpio->event);
+ return nvkm_event_init(&nvkm_gpio_intr_func, &gpio->subdev, 2, func->lines, &gpio->event);
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/gsp/Kbuild b/drivers/gpu/drm/nouveau/nvkm/subdev/gsp/Kbuild
index 67cc3b320169..7f61a1ed158b 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/gsp/Kbuild
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/gsp/Kbuild
@@ -1,3 +1,4 @@
# SPDX-License-Identifier: MIT
nvkm-y += nvkm/subdev/gsp/base.o
nvkm-y += nvkm/subdev/gsp/gv100.o
+nvkm-y += nvkm/subdev/gsp/ga102.o
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/gsp/base.c b/drivers/gpu/drm/nouveau/nvkm/subdev/gsp/base.c
index 22574886b819..591ac95c2669 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/gsp/base.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/gsp/base.c
@@ -53,5 +53,7 @@ nvkm_gsp_new_(const struct nvkm_gsp_fwif *fwif, struct nvkm_device *device,
if (IS_ERR(fwif))
return PTR_ERR(fwif);
- return nvkm_falcon_ctor(fwif->flcn, &gsp->subdev, gsp->subdev.name, 0, &gsp->falcon);
+ gsp->func = fwif->func;
+
+ return nvkm_falcon_ctor(gsp->func->flcn, &gsp->subdev, gsp->subdev.name, 0, &gsp->falcon);
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/gsp/ga102.c b/drivers/gpu/drm/nouveau/nvkm/subdev/gsp/ga102.c
new file mode 100644
index 000000000000..525267412c3e
--- /dev/null
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/gsp/ga102.c
@@ -0,0 +1,59 @@
+/*
+ * Copyright 2021 Red Hat Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ */
+#include "priv.h"
+
+static const struct nvkm_falcon_func
+ga102_gsp_flcn = {
+ .disable = gm200_flcn_disable,
+ .enable = gm200_flcn_enable,
+ .select = ga102_flcn_select,
+ .addr2 = 0x1000,
+ .reset_eng = gp102_flcn_reset_eng,
+ .reset_prep = ga102_flcn_reset_prep,
+ .reset_wait_mem_scrubbing = ga102_flcn_reset_wait_mem_scrubbing,
+ .imem_dma = &ga102_flcn_dma,
+ .dmem_dma = &ga102_flcn_dma,
+};
+
+static const struct nvkm_gsp_func
+ga102_gsp = {
+ .flcn = &ga102_gsp_flcn,
+};
+
+static int
+ga102_gsp_nofw(struct nvkm_gsp *gsp, int ver, const struct nvkm_gsp_fwif *fwif)
+{
+ return 0;
+}
+
+struct nvkm_gsp_fwif
+ga102_gsps[] = {
+ { -1, ga102_gsp_nofw, &ga102_gsp },
+ {}
+};
+
+int
+ga102_gsp_new(struct nvkm_device *device, enum nvkm_subdev_type type, int inst,
+ struct nvkm_gsp **pgsp)
+{
+ return nvkm_gsp_new_(ga102_gsps, device, type, inst, pgsp);
+}
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/gsp/gv100.c b/drivers/gpu/drm/nouveau/nvkm/subdev/gsp/gv100.c
index 6c4ef62a746a..da6a809cd317 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/gsp/gv100.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/gsp/gv100.c
@@ -23,17 +23,20 @@
static const struct nvkm_falcon_func
gv100_gsp_flcn = {
- .fbif = 0x600,
- .load_imem = nvkm_falcon_v1_load_imem,
- .load_dmem = nvkm_falcon_v1_load_dmem,
- .read_dmem = nvkm_falcon_v1_read_dmem,
- .bind_context = gp102_sec2_flcn_bind_context,
- .wait_for_halt = nvkm_falcon_v1_wait_for_halt,
- .clear_interrupt = nvkm_falcon_v1_clear_interrupt,
- .set_start_addr = nvkm_falcon_v1_set_start_addr,
- .start = nvkm_falcon_v1_start,
- .enable = gp102_sec2_flcn_enable,
- .disable = nvkm_falcon_v1_disable,
+ .disable = gm200_flcn_disable,
+ .enable = gm200_flcn_enable,
+ .reset_eng = gp102_flcn_reset_eng,
+ .reset_wait_mem_scrubbing = gm200_flcn_reset_wait_mem_scrubbing,
+ .bind_inst = gm200_flcn_bind_inst,
+ .bind_stat = gm200_flcn_bind_stat,
+ .bind_intr = true,
+ .imem_pio = &gm200_flcn_imem_pio,
+ .dmem_pio = &gm200_flcn_dmem_pio,
+};
+
+static const struct nvkm_gsp_func
+gv100_gsp = {
+ .flcn = &gv100_gsp_flcn,
};
static int
@@ -43,8 +46,8 @@ gv100_gsp_nofw(struct nvkm_gsp *gsp, int ver, const struct nvkm_gsp_fwif *fwif)
}
static struct nvkm_gsp_fwif
-gv100_gsp[] = {
- { -1, gv100_gsp_nofw, &gv100_gsp_flcn },
+gv100_gsps[] = {
+ { -1, gv100_gsp_nofw, &gv100_gsp },
{}
};
@@ -52,5 +55,5 @@ int
gv100_gsp_new(struct nvkm_device *device, enum nvkm_subdev_type type, int inst,
struct nvkm_gsp **pgsp)
{
- return nvkm_gsp_new_(gv100_gsp, device, type, inst, pgsp);
+ return nvkm_gsp_new_(gv100_gsps, device, type, inst, pgsp);
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/gsp/priv.h b/drivers/gpu/drm/nouveau/nvkm/subdev/gsp/priv.h
index 19381ddd38d4..89749a40203c 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/gsp/priv.h
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/gsp/priv.h
@@ -4,10 +4,14 @@
#include <subdev/gsp.h>
enum nvkm_acr_lsf_id;
+struct nvkm_gsp_func {
+ const struct nvkm_falcon_func *flcn;
+};
+
struct nvkm_gsp_fwif {
int version;
int (*load)(struct nvkm_gsp *, int ver, const struct nvkm_gsp_fwif *);
- const struct nvkm_falcon_func *flcn;
+ const struct nvkm_gsp_func *func;
};
int nvkm_gsp_new_(const struct nvkm_gsp_fwif *, struct nvkm_device *, enum nvkm_subdev_type, int,
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/i2c/base.c b/drivers/gpu/drm/nouveau/nvkm/subdev/i2c/base.c
index cb5cb533d91c..976539de4220 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/i2c/base.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/i2c/base.c
@@ -26,7 +26,6 @@
#include "bus.h"
#include "pad.h"
-#include <core/notify.h>
#include <core/option.h>
#include <subdev/bios.h>
#include <subdev/bios/dcb.h>
@@ -104,23 +103,8 @@ nvkm_i2c_intr_init(struct nvkm_event *event, int type, int id)
i2c->func->aux_mask(i2c, type, aux->intr, aux->intr);
}
-static int
-nvkm_i2c_intr_ctor(struct nvkm_object *object, void *data, u32 size,
- struct nvkm_notify *notify)
-{
- struct nvkm_i2c_ntfy_req *req = data;
- if (!WARN_ON(size != sizeof(*req))) {
- notify->size = sizeof(struct nvkm_i2c_ntfy_rep);
- notify->types = req->mask;
- notify->index = req->port;
- return 0;
- }
- return -EINVAL;
-}
-
static const struct nvkm_event_func
nvkm_i2c_intr_func = {
- .ctor = nvkm_i2c_intr_ctor,
.init = nvkm_i2c_intr_init,
.fini = nvkm_i2c_intr_fini,
};
@@ -145,13 +129,8 @@ nvkm_i2c_intr(struct nvkm_subdev *subdev)
if (lo & aux->intr) mask |= NVKM_I2C_UNPLUG;
if (rq & aux->intr) mask |= NVKM_I2C_IRQ;
if (tx & aux->intr) mask |= NVKM_I2C_DONE;
- if (mask) {
- struct nvkm_i2c_ntfy_rep rep = {
- .mask = mask,
- };
- nvkm_event_send(&i2c->event, rep.mask, aux->id,
- &rep, sizeof(rep));
- }
+ if (mask)
+ nvkm_event_ntfy(&i2c->event, aux->id, mask);
}
}
@@ -427,5 +406,5 @@ nvkm_i2c_new_(const struct nvkm_i2c_func *func, struct nvkm_device *device,
}
}
- return nvkm_event_init(&nvkm_i2c_intr_func, 4, i, &i2c->event);
+ return nvkm_event_init(&nvkm_i2c_intr_func, &i2c->subdev, 4, i, &i2c->event);
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/instmem/base.c b/drivers/gpu/drm/nouveau/nvkm/subdev/instmem/base.c
index cd8163a52bb6..e0e4f97be029 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/instmem/base.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/instmem/base.c
@@ -90,6 +90,18 @@ nvkm_instobj_ctor(const struct nvkm_memory_func *func,
}
int
+nvkm_instobj_wrap(struct nvkm_device *device,
+ struct nvkm_memory *memory, struct nvkm_memory **pmemory)
+{
+ struct nvkm_instmem *imem = device->imem;
+
+ if (!imem->func->memory_wrap)
+ return -ENOSYS;
+
+ return imem->func->memory_wrap(imem, memory, pmemory);
+}
+
+int
nvkm_instobj_new(struct nvkm_instmem *imem, u32 size, u32 align, bool zero,
struct nvkm_memory **pmemory)
{
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/instmem/gk20a.c b/drivers/gpu/drm/nouveau/nvkm/subdev/instmem/gk20a.c
index 648ecf5a8fbc..a4ac94a2ab57 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/instmem/gk20a.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/instmem/gk20a.c
@@ -475,7 +475,8 @@ gk20a_instobj_ctor_iommu(struct gk20a_instmem *imem, u32 npages, u32 align,
u32 offset = (r->offset + i) << imem->iommu_pgshift;
ret = iommu_map(imem->domain, offset, node->dma_addrs[i],
- PAGE_SIZE, IOMMU_READ | IOMMU_WRITE);
+ PAGE_SIZE, IOMMU_READ | IOMMU_WRITE,
+ GFP_KERNEL);
if (ret < 0) {
nvkm_error(subdev, "IOMMU mapping failure: %d\n", ret);
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/instmem/nv50.c b/drivers/gpu/drm/nouveau/nvkm/subdev/instmem/nv50.c
index c51bac76174c..4b2d7465d22f 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/instmem/nv50.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/instmem/nv50.c
@@ -348,13 +348,11 @@ nv50_instobj_func = {
};
static int
-nv50_instobj_new(struct nvkm_instmem *base, u32 size, u32 align, bool zero,
- struct nvkm_memory **pmemory)
+nv50_instobj_wrap(struct nvkm_instmem *base,
+ struct nvkm_memory *memory, struct nvkm_memory **pmemory)
{
struct nv50_instmem *imem = nv50_instmem(base);
struct nv50_instobj *iobj;
- struct nvkm_device *device = imem->base.subdev.device;
- u8 page = max(order_base_2(align), 12);
if (!(iobj = kzalloc(sizeof(*iobj), GFP_KERNEL)))
return -ENOMEM;
@@ -365,7 +363,25 @@ nv50_instobj_new(struct nvkm_instmem *base, u32 size, u32 align, bool zero,
refcount_set(&iobj->maps, 0);
INIT_LIST_HEAD(&iobj->lru);
- return nvkm_ram_get(device, 0, 1, page, size, true, true, &iobj->ram);
+ iobj->ram = nvkm_memory_ref(memory);
+ return 0;
+}
+
+static int
+nv50_instobj_new(struct nvkm_instmem *imem, u32 size, u32 align, bool zero,
+ struct nvkm_memory **pmemory)
+{
+ u8 page = max(order_base_2(align), 12);
+ struct nvkm_memory *ram;
+ int ret;
+
+ ret = nvkm_ram_get(imem->subdev.device, 0, 1, page, size, true, true, &ram);
+ if (ret)
+ return ret;
+
+ ret = nv50_instobj_wrap(imem, ram, pmemory);
+ nvkm_memory_unref(&ram);
+ return ret;
}
/******************************************************************************
@@ -382,6 +398,7 @@ static const struct nvkm_instmem_func
nv50_instmem = {
.fini = nv50_instmem_fini,
.memory_new = nv50_instobj_new,
+ .memory_wrap = nv50_instobj_wrap,
.zero = false,
};
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/instmem/priv.h b/drivers/gpu/drm/nouveau/nvkm/subdev/instmem/priv.h
index 56c15e30a5dd..fe92986a3885 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/instmem/priv.h
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/instmem/priv.h
@@ -12,6 +12,7 @@ struct nvkm_instmem_func {
void (*wr32)(struct nvkm_instmem *, u32 addr, u32 data);
int (*memory_new)(struct nvkm_instmem *, u32 size, u32 align,
bool zero, struct nvkm_memory **);
+ int (*memory_wrap)(struct nvkm_instmem *, struct nvkm_memory *, struct nvkm_memory **);
bool zero;
};
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/ltc/Kbuild b/drivers/gpu/drm/nouveau/nvkm/subdev/ltc/Kbuild
index 728d75010847..0d8a915d727e 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/ltc/Kbuild
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/ltc/Kbuild
@@ -7,3 +7,4 @@ nvkm-y += nvkm/subdev/ltc/gm200.o
nvkm-y += nvkm/subdev/ltc/gp100.o
nvkm-y += nvkm/subdev/ltc/gp102.o
nvkm-y += nvkm/subdev/ltc/gp10b.o
+nvkm-y += nvkm/subdev/ltc/ga102.o
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/ltc/base.c b/drivers/gpu/drm/nouveau/nvkm/subdev/ltc/base.c
index fa683c190795..f742a7b7b175 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/ltc/base.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/ltc/base.c
@@ -97,8 +97,10 @@ nvkm_ltc_init(struct nvkm_subdev *subdev)
struct nvkm_ltc *ltc = nvkm_ltc(subdev);
int i;
- for (i = ltc->zbc_min; i <= ltc->zbc_max; i++) {
+ for (i = ltc->zbc_color_min; i <= ltc->zbc_color_max; i++)
ltc->func->zbc_clear_color(ltc, i, ltc->zbc_color[i]);
+
+ for (i = ltc->zbc_depth_min; i <= ltc->zbc_depth_max; i++) {
ltc->func->zbc_clear_depth(ltc, i, ltc->zbc_depth[i]);
if (ltc->func->zbc_clear_stencil)
ltc->func->zbc_clear_stencil(ltc, i, ltc->zbc_stencil[i]);
@@ -137,7 +139,9 @@ nvkm_ltc_new_(const struct nvkm_ltc_func *func, struct nvkm_device *device,
nvkm_subdev_ctor(&nvkm_ltc, device, type, inst, &ltc->subdev);
ltc->func = func;
mutex_init(&ltc->mutex);
- ltc->zbc_min = 1; /* reserve 0 for disabled */
- ltc->zbc_max = min(func->zbc, NVKM_LTC_MAX_ZBC_CNT) - 1;
+ ltc->zbc_color_min = 1; /* reserve 0 for disabled */
+ ltc->zbc_color_max = min(func->zbc_color, NVKM_LTC_MAX_ZBC_COLOR_CNT) - 1;
+ ltc->zbc_depth_min = 1; /* reserve 0 for disabled */
+ ltc->zbc_depth_max = min(func->zbc_depth, NVKM_LTC_MAX_ZBC_DEPTH_CNT) - 1;
return 0;
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/ltc/ga102.c b/drivers/gpu/drm/nouveau/nvkm/subdev/ltc/ga102.c
new file mode 100644
index 000000000000..159d9f8c95f3
--- /dev/null
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/ltc/ga102.c
@@ -0,0 +1,57 @@
+/*
+ * Copyright 2021 Red Hat Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ */
+#include "priv.h"
+
+static void
+ga102_ltc_zbc_clear_color(struct nvkm_ltc *ltc, int i, const u32 color[4])
+{
+ struct nvkm_device *device = ltc->subdev.device;
+
+ nvkm_mask(device, 0x17e338, 0x0000001f, i);
+ nvkm_wr32(device, 0x17e33c, color[0]);
+ nvkm_wr32(device, 0x17e340, color[1]);
+ nvkm_wr32(device, 0x17e344, color[2]);
+ nvkm_wr32(device, 0x17e348, color[3]);
+}
+
+static const struct nvkm_ltc_func
+ga102_ltc = {
+ .oneinit = gp100_ltc_oneinit,
+ .init = gp100_ltc_init,
+ .intr = gp100_ltc_intr,
+ .cbc_clear = gm107_ltc_cbc_clear,
+ .cbc_wait = gm107_ltc_cbc_wait,
+ .zbc_color = 31,
+ .zbc_depth = 16,
+ .zbc_clear_color = ga102_ltc_zbc_clear_color,
+ .zbc_clear_depth = gm107_ltc_zbc_clear_depth,
+ .zbc_clear_stencil = gp102_ltc_zbc_clear_stencil,
+ .invalidate = gf100_ltc_invalidate,
+ .flush = gf100_ltc_flush,
+};
+
+int
+ga102_ltc_new(struct nvkm_device *device, enum nvkm_subdev_type type, int inst,
+ struct nvkm_ltc **pltc)
+{
+ return nvkm_ltc_new_(&ga102_ltc, device, type, inst, pltc);
+}
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/ltc/gf100.c b/drivers/gpu/drm/nouveau/nvkm/subdev/ltc/gf100.c
index fd8aeafc812d..de71ba3c9292 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/ltc/gf100.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/ltc/gf100.c
@@ -241,7 +241,8 @@ gf100_ltc = {
.intr = gf100_ltc_intr,
.cbc_clear = gf100_ltc_cbc_clear,
.cbc_wait = gf100_ltc_cbc_wait,
- .zbc = 16,
+ .zbc_color = 16,
+ .zbc_depth = 16,
.zbc_clear_color = gf100_ltc_zbc_clear_color,
.zbc_clear_depth = gf100_ltc_zbc_clear_depth,
.invalidate = gf100_ltc_invalidate,
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/ltc/gk104.c b/drivers/gpu/drm/nouveau/nvkm/subdev/ltc/gk104.c
index 94aa09244d67..5d61e3c6ff59 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/ltc/gk104.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/ltc/gk104.c
@@ -42,7 +42,8 @@ gk104_ltc = {
.intr = gf100_ltc_intr,
.cbc_clear = gf100_ltc_cbc_clear,
.cbc_wait = gf100_ltc_cbc_wait,
- .zbc = 16,
+ .zbc_color = 16,
+ .zbc_depth = 16,
.zbc_clear_color = gf100_ltc_zbc_clear_color,
.zbc_clear_depth = gf100_ltc_zbc_clear_depth,
.invalidate = gf100_ltc_invalidate,
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/ltc/gm107.c b/drivers/gpu/drm/nouveau/nvkm/subdev/ltc/gm107.c
index 54d1d65d5a85..18685d849657 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/ltc/gm107.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/ltc/gm107.c
@@ -137,7 +137,8 @@ gm107_ltc = {
.intr = gm107_ltc_intr,
.cbc_clear = gm107_ltc_cbc_clear,
.cbc_wait = gm107_ltc_cbc_wait,
- .zbc = 16,
+ .zbc_color = 16,
+ .zbc_depth = 16,
.zbc_clear_color = gm107_ltc_zbc_clear_color,
.zbc_clear_depth = gm107_ltc_zbc_clear_depth,
.invalidate = gf100_ltc_invalidate,
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/ltc/gm200.c b/drivers/gpu/drm/nouveau/nvkm/subdev/ltc/gm200.c
index 8cfdbbdd8e8d..7a9464b9def5 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/ltc/gm200.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/ltc/gm200.c
@@ -49,7 +49,8 @@ gm200_ltc = {
.intr = gm107_ltc_intr,
.cbc_clear = gm107_ltc_cbc_clear,
.cbc_wait = gm107_ltc_cbc_wait,
- .zbc = 16,
+ .zbc_color = 16,
+ .zbc_depth = 16,
.zbc_clear_color = gm107_ltc_zbc_clear_color,
.zbc_clear_depth = gm107_ltc_zbc_clear_depth,
.invalidate = gf100_ltc_invalidate,
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/ltc/gp100.c b/drivers/gpu/drm/nouveau/nvkm/subdev/ltc/gp100.c
index a4a6cd9b435a..1a17a451754c 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/ltc/gp100.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/ltc/gp100.c
@@ -61,7 +61,8 @@ gp100_ltc = {
.intr = gp100_ltc_intr,
.cbc_clear = gm107_ltc_cbc_clear,
.cbc_wait = gm107_ltc_cbc_wait,
- .zbc = 16,
+ .zbc_color = 16,
+ .zbc_depth = 16,
.zbc_clear_color = gm107_ltc_zbc_clear_color,
.zbc_clear_depth = gm107_ltc_zbc_clear_depth,
.invalidate = gf100_ltc_invalidate,
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/ltc/gp102.c b/drivers/gpu/drm/nouveau/nvkm/subdev/ltc/gp102.c
index ff05d617e7f4..265a05fd5f6b 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/ltc/gp102.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/ltc/gp102.c
@@ -36,7 +36,8 @@ gp102_ltc = {
.intr = gp100_ltc_intr,
.cbc_clear = gm107_ltc_cbc_clear,
.cbc_wait = gm107_ltc_cbc_wait,
- .zbc = 16,
+ .zbc_color = 16,
+ .zbc_depth = 16,
.zbc_clear_color = gm107_ltc_zbc_clear_color,
.zbc_clear_depth = gm107_ltc_zbc_clear_depth,
.zbc_clear_stencil = gp102_ltc_zbc_clear_stencil,
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/ltc/gp10b.c b/drivers/gpu/drm/nouveau/nvkm/subdev/ltc/gp10b.c
index dfebd796cb4b..e7e8fdf3adab 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/ltc/gp10b.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/ltc/gp10b.c
@@ -50,7 +50,8 @@ gp10b_ltc = {
.intr = gp100_ltc_intr,
.cbc_clear = gm107_ltc_cbc_clear,
.cbc_wait = gm107_ltc_cbc_wait,
- .zbc = 16,
+ .zbc_color = 16,
+ .zbc_depth = 16,
.zbc_clear_color = gm107_ltc_zbc_clear_color,
.zbc_clear_depth = gm107_ltc_zbc_clear_depth,
.zbc_clear_stencil = gp102_ltc_zbc_clear_stencil,
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/ltc/priv.h b/drivers/gpu/drm/nouveau/nvkm/subdev/ltc/priv.h
index 2bebe139005d..134e90c9e861 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/ltc/priv.h
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/ltc/priv.h
@@ -16,7 +16,8 @@ struct nvkm_ltc_func {
void (*cbc_clear)(struct nvkm_ltc *, u32 start, u32 limit);
void (*cbc_wait)(struct nvkm_ltc *);
- int zbc;
+ int zbc_color;
+ int zbc_depth;
void (*zbc_clear_color)(struct nvkm_ltc *, int, const u32[4]);
void (*zbc_clear_depth)(struct nvkm_ltc *, int, const u32);
void (*zbc_clear_stencil)(struct nvkm_ltc *, int, const u32);
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/mc/Kbuild b/drivers/gpu/drm/nouveau/nvkm/subdev/mc/Kbuild
index ac2b34e9ac6a..2a3255ced8b7 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/mc/Kbuild
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/mc/Kbuild
@@ -13,5 +13,4 @@ nvkm-y += nvkm/subdev/mc/gk104.o
nvkm-y += nvkm/subdev/mc/gk20a.o
nvkm-y += nvkm/subdev/mc/gp100.o
nvkm-y += nvkm/subdev/mc/gp10b.o
-nvkm-y += nvkm/subdev/mc/tu102.o
nvkm-y += nvkm/subdev/mc/ga100.o
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/mc/base.c b/drivers/gpu/drm/nouveau/nvkm/subdev/mc/base.c
index 21c4af3f81d5..c85600ba69f9 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/mc/base.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/mc/base.c
@@ -37,84 +37,14 @@ nvkm_mc_unk260(struct nvkm_device *device, u32 data)
void
nvkm_mc_intr_mask(struct nvkm_device *device, enum nvkm_subdev_type type, int inst, bool en)
{
- struct nvkm_mc *mc = device->mc;
- const struct nvkm_mc_map *map;
- if (likely(mc) && mc->func->intr_mask) {
- u32 mask = nvkm_top_intr_mask(device, type, inst);
- for (map = mc->func->intr; !mask && map->stat; map++) {
- if (map->type == type && map->inst == inst)
- mask = map->stat;
- }
- mc->func->intr_mask(mc, mask, en ? mask : 0);
- }
-}
-
-void
-nvkm_mc_intr_unarm(struct nvkm_device *device)
-{
- struct nvkm_mc *mc = device->mc;
- if (likely(mc))
- mc->func->intr_unarm(mc);
-}
-
-void
-nvkm_mc_intr_rearm(struct nvkm_device *device)
-{
- struct nvkm_mc *mc = device->mc;
- if (likely(mc))
- mc->func->intr_rearm(mc);
-}
-
-static u32
-nvkm_mc_intr_stat(struct nvkm_mc *mc)
-{
- u32 intr = mc->func->intr_stat(mc);
- if (WARN_ON_ONCE(intr == 0xffffffff))
- intr = 0; /* likely fallen off the bus */
- return intr;
-}
-
-void
-nvkm_mc_intr(struct nvkm_device *device, bool *handled)
-{
- struct nvkm_mc *mc = device->mc;
- struct nvkm_top *top = device->top;
- struct nvkm_top_device *tdev;
- struct nvkm_subdev *subdev;
- const struct nvkm_mc_map *map;
- u32 stat, intr;
-
- if (unlikely(!mc))
- return;
-
- stat = intr = nvkm_mc_intr_stat(mc);
-
- if (top) {
- list_for_each_entry(tdev, &top->device, head) {
- if (tdev->intr >= 0 && (stat & BIT(tdev->intr))) {
- subdev = nvkm_device_subdev(device, tdev->type, tdev->inst);
- if (subdev) {
- nvkm_subdev_intr(subdev);
- stat &= ~BIT(tdev->intr);
- if (!stat)
- break;
- }
- }
- }
- }
+ struct nvkm_subdev *subdev = nvkm_device_subdev(device, type, inst);
- for (map = mc->func->intr; map->stat; map++) {
- if (intr & map->stat) {
- subdev = nvkm_device_subdev(device, map->type, map->inst);
- if (subdev)
- nvkm_subdev_intr(subdev);
- stat &= ~map->stat;
- }
+ if (subdev) {
+ if (en)
+ nvkm_intr_allow(subdev, NVKM_INTR_SUBDEV);
+ else
+ nvkm_intr_block(subdev, NVKM_INTR_SUBDEV);
}
-
- if (stat)
- nvkm_error(&mc->subdev, "intr %08x\n", stat);
- *handled = intr != 0;
}
static u32
@@ -143,9 +73,8 @@ nvkm_mc_reset(struct nvkm_device *device, enum nvkm_subdev_type type, int inst)
{
u64 pmc_enable = nvkm_mc_reset_mask(device, true, type, inst);
if (pmc_enable) {
- nvkm_mask(device, 0x000200, pmc_enable, 0x00000000);
- nvkm_mask(device, 0x000200, pmc_enable, pmc_enable);
- nvkm_rd32(device, 0x000200);
+ device->mc->func->device->disable(device->mc, pmc_enable);
+ device->mc->func->device->enable(device->mc, pmc_enable);
}
}
@@ -154,17 +83,15 @@ nvkm_mc_disable(struct nvkm_device *device, enum nvkm_subdev_type type, int inst
{
u64 pmc_enable = nvkm_mc_reset_mask(device, false, type, inst);
if (pmc_enable)
- nvkm_mask(device, 0x000200, pmc_enable, 0x00000000);
+ device->mc->func->device->disable(device->mc, pmc_enable);
}
void
nvkm_mc_enable(struct nvkm_device *device, enum nvkm_subdev_type type, int inst)
{
u64 pmc_enable = nvkm_mc_reset_mask(device, false, type, inst);
- if (pmc_enable) {
- nvkm_mask(device, 0x000200, pmc_enable, pmc_enable);
- nvkm_rd32(device, 0x000200);
- }
+ if (pmc_enable)
+ device->mc->func->device->enable(device->mc, pmc_enable);
}
bool
@@ -172,16 +99,7 @@ nvkm_mc_enabled(struct nvkm_device *device, enum nvkm_subdev_type type, int inst
{
u64 pmc_enable = nvkm_mc_reset_mask(device, false, type, inst);
- return (pmc_enable != 0) &&
- ((nvkm_rd32(device, 0x000200) & pmc_enable) == pmc_enable);
-}
-
-
-static int
-nvkm_mc_fini(struct nvkm_subdev *subdev, bool suspend)
-{
- nvkm_mc_intr_unarm(subdev->device);
- return 0;
+ return (pmc_enable != 0) && device->mc->func->device->enabled(device->mc, pmc_enable);
}
static int
@@ -190,7 +108,6 @@ nvkm_mc_init(struct nvkm_subdev *subdev)
struct nvkm_mc *mc = nvkm_mc(subdev);
if (mc->func->init)
mc->func->init(mc);
- nvkm_mc_intr_rearm(subdev->device);
return 0;
}
@@ -204,24 +121,27 @@ static const struct nvkm_subdev_func
nvkm_mc = {
.dtor = nvkm_mc_dtor,
.init = nvkm_mc_init,
- .fini = nvkm_mc_fini,
};
-void
-nvkm_mc_ctor(const struct nvkm_mc_func *func, struct nvkm_device *device,
- enum nvkm_subdev_type type, int inst, struct nvkm_mc *mc)
-{
- nvkm_subdev_ctor(&nvkm_mc, device, type, inst, &mc->subdev);
- mc->func = func;
-}
-
int
nvkm_mc_new_(const struct nvkm_mc_func *func, struct nvkm_device *device,
enum nvkm_subdev_type type, int inst, struct nvkm_mc **pmc)
{
struct nvkm_mc *mc;
+ int ret;
+
if (!(mc = *pmc = kzalloc(sizeof(*mc), GFP_KERNEL)))
return -ENOMEM;
- nvkm_mc_ctor(func, device, type, inst, *pmc);
+
+ nvkm_subdev_ctor(&nvkm_mc, device, type, inst, &mc->subdev);
+ mc->func = func;
+
+ if (mc->func->intr) {
+ ret = nvkm_intr_add(mc->func->intr, mc->func->intrs, &mc->subdev,
+ mc->func->intr_nonstall ? 2 : 1, &mc->intr);
+ if (ret)
+ return ret;
+ }
+
return 0;
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/mc/g84.c b/drivers/gpu/drm/nouveau/nvkm/subdev/mc/g84.c
index 4cfc1c984006..f4ee99137b1f 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/mc/g84.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/mc/g84.c
@@ -34,30 +34,29 @@ g84_mc_reset[] = {
{}
};
-static const struct nvkm_mc_map
-g84_mc_intr[] = {
- { 0x04000000, NVKM_ENGINE_DISP },
- { 0x00020000, NVKM_ENGINE_VP },
- { 0x00008000, NVKM_ENGINE_BSP },
- { 0x00004000, NVKM_ENGINE_CIPHER },
- { 0x00001000, NVKM_ENGINE_GR },
- { 0x00000100, NVKM_ENGINE_FIFO },
- { 0x00000001, NVKM_ENGINE_MPEG },
- { 0x0002d101, NVKM_SUBDEV_FB },
- { 0x10000000, NVKM_SUBDEV_BUS },
- { 0x00200000, NVKM_SUBDEV_GPIO },
- { 0x00200000, NVKM_SUBDEV_I2C },
- { 0x00100000, NVKM_SUBDEV_TIMER },
+static const struct nvkm_intr_data
+g84_mc_intrs[] = {
+ { NVKM_ENGINE_DISP , 0, 0, 0x04000000, true },
+ { NVKM_ENGINE_VP , 0, 0, 0x00020000, true },
+ { NVKM_ENGINE_BSP , 0, 0, 0x00008000, true },
+ { NVKM_ENGINE_CIPHER, 0, 0, 0x00004000, true },
+ { NVKM_ENGINE_GR , 0, 0, 0x00001000, true },
+ { NVKM_ENGINE_FIFO , 0, 0, 0x00000100 },
+ { NVKM_ENGINE_MPEG , 0, 0, 0x00000001, true },
+ { NVKM_SUBDEV_FB , 0, 0, 0x0002d101, true },
+ { NVKM_SUBDEV_BUS , 0, 0, 0x10000000, true },
+ { NVKM_SUBDEV_GPIO , 0, 0, 0x00200000, true },
+ { NVKM_SUBDEV_I2C , 0, 0, 0x00200000, true },
+ { NVKM_SUBDEV_TIMER , 0, 0, 0x00100000, true },
{},
};
static const struct nvkm_mc_func
g84_mc = {
.init = nv50_mc_init,
- .intr = g84_mc_intr,
- .intr_unarm = nv04_mc_intr_unarm,
- .intr_rearm = nv04_mc_intr_rearm,
- .intr_stat = nv04_mc_intr_stat,
+ .intr = &nv04_mc_intr,
+ .intrs = g84_mc_intrs,
+ .device = &nv04_mc_device,
.reset = g84_mc_reset,
};
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/mc/g98.c b/drivers/gpu/drm/nouveau/nvkm/subdev/mc/g98.c
index b7e58d75d894..f42684809f08 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/mc/g98.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/mc/g98.c
@@ -34,30 +34,29 @@ g98_mc_reset[] = {
{}
};
-static const struct nvkm_mc_map
-g98_mc_intr[] = {
- { 0x04000000, NVKM_ENGINE_DISP },
- { 0x00020000, NVKM_ENGINE_MSPDEC },
- { 0x00008000, NVKM_ENGINE_MSVLD },
- { 0x00004000, NVKM_ENGINE_SEC },
- { 0x00001000, NVKM_ENGINE_GR },
- { 0x00000100, NVKM_ENGINE_FIFO },
- { 0x00000001, NVKM_ENGINE_MSPPP },
- { 0x0002d101, NVKM_SUBDEV_FB },
- { 0x10000000, NVKM_SUBDEV_BUS },
- { 0x00200000, NVKM_SUBDEV_GPIO },
- { 0x00200000, NVKM_SUBDEV_I2C },
- { 0x00100000, NVKM_SUBDEV_TIMER },
+static const struct nvkm_intr_data
+g98_mc_intrs[] = {
+ { NVKM_ENGINE_DISP , 0, 0, 0x04000000, true },
+ { NVKM_ENGINE_MSPDEC, 0, 0, 0x00020000, true },
+ { NVKM_ENGINE_MSVLD , 0, 0, 0x00008000, true },
+ { NVKM_ENGINE_SEC , 0, 0, 0x00004000, true },
+ { NVKM_ENGINE_GR , 0, 0, 0x00001000, true },
+ { NVKM_ENGINE_FIFO , 0, 0, 0x00000100 },
+ { NVKM_ENGINE_MSPPP , 0, 0, 0x00000001, true },
+ { NVKM_SUBDEV_FB , 0, 0, 0x0002d101, true },
+ { NVKM_SUBDEV_BUS , 0, 0, 0x10000000, true },
+ { NVKM_SUBDEV_GPIO , 0, 0, 0x00200000, true },
+ { NVKM_SUBDEV_I2C , 0, 0, 0x00200000, true },
+ { NVKM_SUBDEV_TIMER , 0, 0, 0x00100000, true },
{},
};
static const struct nvkm_mc_func
g98_mc = {
.init = nv50_mc_init,
- .intr = g98_mc_intr,
- .intr_unarm = nv04_mc_intr_unarm,
- .intr_rearm = nv04_mc_intr_rearm,
- .intr_stat = nv04_mc_intr_stat,
+ .intr = &nv04_mc_intr,
+ .intrs = g98_mc_intrs,
+ .device = &nv04_mc_device,
.reset = g98_mc_reset,
};
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/mc/ga100.c b/drivers/gpu/drm/nouveau/nvkm/subdev/mc/ga100.c
index 4105175dfccd..5d28d30d09d5 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/mc/ga100.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/mc/ga100.c
@@ -22,49 +22,51 @@
#include "priv.h"
static void
-ga100_mc_intr_unarm(struct nvkm_mc *mc)
+ga100_mc_device_disable(struct nvkm_mc *mc, u32 mask)
{
- nvkm_wr32(mc->subdev.device, 0xb81610, 0x00000004);
-}
+ struct nvkm_device *device = mc->subdev.device;
-static void
-ga100_mc_intr_rearm(struct nvkm_mc *mc)
-{
- nvkm_wr32(mc->subdev.device, 0xb81608, 0x00000004);
+ nvkm_mask(device, 0x000600, mask, 0x00000000);
+ nvkm_rd32(device, 0x000600);
+ nvkm_rd32(device, 0x000600);
}
static void
-ga100_mc_intr_mask(struct nvkm_mc *mc, u32 mask, u32 intr)
+ga100_mc_device_enable(struct nvkm_mc *mc, u32 mask)
{
- nvkm_wr32(mc->subdev.device, 0xb81210, mask & intr );
- nvkm_wr32(mc->subdev.device, 0xb81410, mask & ~(mask & intr));
+ struct nvkm_device *device = mc->subdev.device;
+
+ nvkm_mask(device, 0x000600, mask, mask);
+ nvkm_rd32(device, 0x000600);
+ nvkm_rd32(device, 0x000600);
}
-static u32
-ga100_mc_intr_stat(struct nvkm_mc *mc)
+static bool
+ga100_mc_device_enabled(struct nvkm_mc *mc, u32 mask)
{
- u32 intr_top = nvkm_rd32(mc->subdev.device, 0xb81600), intr = 0x00000000;
- if (intr_top & 0x00000004)
- intr = nvkm_mask(mc->subdev.device, 0xb81010, 0x00000000, 0x00000000);
- return intr;
+ return (nvkm_rd32(mc->subdev.device, 0x000600) & mask) == mask;
}
+static const struct nvkm_mc_device_func
+ga100_mc_device = {
+ .enabled = ga100_mc_device_enabled,
+ .enable = ga100_mc_device_enable,
+ .disable = ga100_mc_device_disable,
+};
+
static void
ga100_mc_init(struct nvkm_mc *mc)
{
- nv50_mc_init(mc);
- nvkm_wr32(mc->subdev.device, 0xb81210, 0xffffffff);
+ struct nvkm_device *device = mc->subdev.device;
+
+ nvkm_wr32(device, 0x000200, 0xffffffff);
+ nvkm_wr32(device, 0x000600, 0xffffffff);
}
static const struct nvkm_mc_func
ga100_mc = {
.init = ga100_mc_init,
- .intr = gp100_mc_intr,
- .intr_unarm = ga100_mc_intr_unarm,
- .intr_rearm = ga100_mc_intr_rearm,
- .intr_mask = ga100_mc_intr_mask,
- .intr_stat = ga100_mc_intr_stat,
- .reset = gk104_mc_reset,
+ .device = &ga100_mc_device,
};
int
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/mc/gf100.c b/drivers/gpu/drm/nouveau/nvkm/subdev/mc/gf100.c
index 3a589c6f7fad..ab1eaa37123a 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/mc/gf100.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/mc/gf100.c
@@ -36,64 +36,29 @@ gf100_mc_reset[] = {
{}
};
-static const struct nvkm_mc_map
-gf100_mc_intr[] = {
- { 0x04000000, NVKM_ENGINE_DISP },
- { 0x00020000, NVKM_ENGINE_MSPDEC },
- { 0x00008000, NVKM_ENGINE_MSVLD },
- { 0x00001000, NVKM_ENGINE_GR },
- { 0x00000100, NVKM_ENGINE_FIFO },
- { 0x00000040, NVKM_ENGINE_CE, 1 },
- { 0x00000020, NVKM_ENGINE_CE, 0 },
- { 0x00000001, NVKM_ENGINE_MSPPP },
- { 0x40000000, NVKM_SUBDEV_PRIVRING },
- { 0x10000000, NVKM_SUBDEV_BUS },
- { 0x08000000, NVKM_SUBDEV_FB },
- { 0x02000000, NVKM_SUBDEV_LTC },
- { 0x01000000, NVKM_SUBDEV_PMU },
- { 0x00200000, NVKM_SUBDEV_GPIO },
- { 0x00200000, NVKM_SUBDEV_I2C },
- { 0x00100000, NVKM_SUBDEV_TIMER },
- { 0x00040000, NVKM_SUBDEV_THERM },
- { 0x00002000, NVKM_SUBDEV_FB },
+static const struct nvkm_intr_data
+gf100_mc_intrs[] = {
+ { NVKM_ENGINE_DISP , 0, 0, 0x04000000, true },
+ { NVKM_ENGINE_MSPDEC , 0, 0, 0x00020000, true },
+ { NVKM_ENGINE_MSVLD , 0, 0, 0x00008000, true },
+ { NVKM_ENGINE_GR , 0, 0, 0x00001000 },
+ { NVKM_ENGINE_FIFO , 0, 0, 0x00000100 },
+ { NVKM_ENGINE_CE , 1, 0, 0x00000040, true },
+ { NVKM_ENGINE_CE , 0, 0, 0x00000020, true },
+ { NVKM_ENGINE_MSPPP , 0, 0, 0x00000001, true },
+ { NVKM_SUBDEV_PRIVRING, 0, 0, 0x40000000, true },
+ { NVKM_SUBDEV_BUS , 0, 0, 0x10000000, true },
+ { NVKM_SUBDEV_FB , 0, 0, 0x08002000, true },
+ { NVKM_SUBDEV_LTC , 0, 0, 0x02000000, true },
+ { NVKM_SUBDEV_PMU , 0, 0, 0x01000000, true },
+ { NVKM_SUBDEV_GPIO , 0, 0, 0x00200000, true },
+ { NVKM_SUBDEV_I2C , 0, 0, 0x00200000, true },
+ { NVKM_SUBDEV_TIMER , 0, 0, 0x00100000, true },
+ { NVKM_SUBDEV_THERM , 0, 0, 0x00040000, true },
{},
};
void
-gf100_mc_intr_unarm(struct nvkm_mc *mc)
-{
- struct nvkm_device *device = mc->subdev.device;
- nvkm_wr32(device, 0x000140, 0x00000000);
- nvkm_wr32(device, 0x000144, 0x00000000);
- nvkm_rd32(device, 0x000140);
-}
-
-void
-gf100_mc_intr_rearm(struct nvkm_mc *mc)
-{
- struct nvkm_device *device = mc->subdev.device;
- nvkm_wr32(device, 0x000140, 0x00000001);
- nvkm_wr32(device, 0x000144, 0x00000001);
-}
-
-u32
-gf100_mc_intr_stat(struct nvkm_mc *mc)
-{
- struct nvkm_device *device = mc->subdev.device;
- u32 intr0 = nvkm_rd32(device, 0x000100);
- u32 intr1 = nvkm_rd32(device, 0x000104);
- return intr0 | intr1;
-}
-
-void
-gf100_mc_intr_mask(struct nvkm_mc *mc, u32 mask, u32 stat)
-{
- struct nvkm_device *device = mc->subdev.device;
- nvkm_mask(device, 0x000640, mask, stat);
- nvkm_mask(device, 0x000644, mask, stat);
-}
-
-void
gf100_mc_unk260(struct nvkm_mc *mc, u32 data)
{
nvkm_wr32(mc->subdev.device, 0x000260, data);
@@ -102,12 +67,11 @@ gf100_mc_unk260(struct nvkm_mc *mc, u32 data)
static const struct nvkm_mc_func
gf100_mc = {
.init = nv50_mc_init,
- .intr = gf100_mc_intr,
- .intr_unarm = gf100_mc_intr_unarm,
- .intr_rearm = gf100_mc_intr_rearm,
- .intr_mask = gf100_mc_intr_mask,
- .intr_stat = gf100_mc_intr_stat,
+ .intr = &gt215_mc_intr,
+ .intrs = gf100_mc_intrs,
+ .intr_nonstall = true,
.reset = gf100_mc_reset,
+ .device = &nv04_mc_device,
.unk260 = gf100_mc_unk260,
};
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/mc/gk104.c b/drivers/gpu/drm/nouveau/nvkm/subdev/mc/gk104.c
index d9b9067fa93f..66829586a124 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/mc/gk104.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/mc/gk104.c
@@ -30,32 +30,32 @@ gk104_mc_reset[] = {
{}
};
-const struct nvkm_mc_map
-gk104_mc_intr[] = {
- { 0x04000000, NVKM_ENGINE_DISP },
- { 0x00000100, NVKM_ENGINE_FIFO },
- { 0x40000000, NVKM_SUBDEV_PRIVRING },
- { 0x10000000, NVKM_SUBDEV_BUS },
- { 0x08000000, NVKM_SUBDEV_FB },
- { 0x02000000, NVKM_SUBDEV_LTC },
- { 0x01000000, NVKM_SUBDEV_PMU },
- { 0x00200000, NVKM_SUBDEV_GPIO },
- { 0x00200000, NVKM_SUBDEV_I2C },
- { 0x00100000, NVKM_SUBDEV_TIMER },
- { 0x00040000, NVKM_SUBDEV_THERM },
- { 0x00002000, NVKM_SUBDEV_FB },
+const struct nvkm_intr_data
+gk104_mc_intrs[] = {
+ { NVKM_ENGINE_DISP , 0, 0, 0x04000000, true },
+ { NVKM_ENGINE_FIFO , 0, 0, 0x00000100 },
+ { NVKM_SUBDEV_PRIVRING, 0, 0, 0x40000000, true },
+ { NVKM_SUBDEV_BUS , 0, 0, 0x10000000, true },
+ { NVKM_SUBDEV_FB , 0, 0, 0x08002000, true },
+ { NVKM_SUBDEV_LTC , 0, 0, 0x02000000, true },
+ { NVKM_SUBDEV_PMU , 0, 0, 0x01000000, true },
+ { NVKM_SUBDEV_GPIO , 0, 0, 0x00200000, true },
+ { NVKM_SUBDEV_I2C , 0, 0, 0x00200000, true },
+ { NVKM_SUBDEV_TIMER , 0, 0, 0x00100000, true },
+ { NVKM_SUBDEV_THERM , 0, 0, 0x00040000, true },
+ { NVKM_SUBDEV_TOP , 0, 0, 0x00001000 },
+ { NVKM_SUBDEV_TOP , 0, 0, 0xffffefff, true },
{},
};
static const struct nvkm_mc_func
gk104_mc = {
.init = nv50_mc_init,
- .intr = gk104_mc_intr,
- .intr_unarm = gf100_mc_intr_unarm,
- .intr_rearm = gf100_mc_intr_rearm,
- .intr_mask = gf100_mc_intr_mask,
- .intr_stat = gf100_mc_intr_stat,
+ .intr = &gt215_mc_intr,
+ .intrs = gk104_mc_intrs,
+ .intr_nonstall = true,
.reset = gk104_mc_reset,
+ .device = &nv04_mc_device,
.unk260 = gf100_mc_unk260,
};
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/mc/gk20a.c b/drivers/gpu/drm/nouveau/nvkm/subdev/mc/gk20a.c
index 03590292749a..d98a6563a411 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/mc/gk20a.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/mc/gk20a.c
@@ -26,11 +26,10 @@
static const struct nvkm_mc_func
gk20a_mc = {
.init = nv50_mc_init,
- .intr = gk104_mc_intr,
- .intr_unarm = gf100_mc_intr_unarm,
- .intr_rearm = gf100_mc_intr_rearm,
- .intr_mask = gf100_mc_intr_mask,
- .intr_stat = gf100_mc_intr_stat,
+ .intr = &gt215_mc_intr,
+ .intrs = gk104_mc_intrs,
+ .intr_nonstall = true,
+ .device = &nv04_mc_device,
.reset = gk104_mc_reset,
};
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/mc/gp100.c b/drivers/gpu/drm/nouveau/nvkm/subdev/mc/gp100.c
index 5fd1a0595c33..eb2ab03f4360 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/mc/gp100.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/mc/gp100.c
@@ -21,108 +21,82 @@
*
* Authors: Ben Skeggs
*/
-#define gp100_mc(p) container_of((p), struct gp100_mc, base)
#include "priv.h"
-struct gp100_mc {
- struct nvkm_mc base;
- spinlock_t lock;
- bool intr;
- u32 mask;
+const struct nvkm_intr_data
+gp100_mc_intrs[] = {
+ { NVKM_ENGINE_DISP , 0, 0, 0x04000000, true },
+ { NVKM_ENGINE_FIFO , 0, 0, 0x00000100 },
+ { NVKM_SUBDEV_FAULT , 0, 0, 0x00000200, true },
+ { NVKM_SUBDEV_PRIVRING, 0, 0, 0x40000000, true },
+ { NVKM_SUBDEV_BUS , 0, 0, 0x10000000, true },
+ { NVKM_SUBDEV_FB , 0, 0, 0x08002000, true },
+ { NVKM_SUBDEV_LTC , 0, 0, 0x02000000, true },
+ { NVKM_SUBDEV_PMU , 0, 0, 0x01000000, true },
+ { NVKM_SUBDEV_GPIO , 0, 0, 0x00200000, true },
+ { NVKM_SUBDEV_I2C , 0, 0, 0x00200000, true },
+ { NVKM_SUBDEV_TIMER , 0, 0, 0x00100000, true },
+ { NVKM_SUBDEV_THERM , 0, 0, 0x00040000, true },
+ { NVKM_SUBDEV_TOP , 0, 0, 0x00009000 },
+ { NVKM_SUBDEV_TOP , 0, 0, 0xffff6fff, true },
+ {},
};
static void
-gp100_mc_intr_update(struct gp100_mc *mc)
+gp100_mc_intr_allow(struct nvkm_intr *intr, int leaf, u32 mask)
{
- struct nvkm_device *device = mc->base.subdev.device;
- u32 mask = mc->intr ? mc->mask : 0, i;
- for (i = 0; i < 2; i++) {
- nvkm_wr32(device, 0x000180 + (i * 0x04), ~mask);
- nvkm_wr32(device, 0x000160 + (i * 0x04), mask);
- }
+ struct nvkm_mc *mc = container_of(intr, typeof(*mc), intr);
+
+ nvkm_wr32(mc->subdev.device, 0x000160 + (leaf * 4), mask);
}
-void
-gp100_mc_intr_unarm(struct nvkm_mc *base)
+static void
+gp100_mc_intr_block(struct nvkm_intr *intr, int leaf, u32 mask)
{
- struct gp100_mc *mc = gp100_mc(base);
- unsigned long flags;
- spin_lock_irqsave(&mc->lock, flags);
- mc->intr = false;
- gp100_mc_intr_update(mc);
- spin_unlock_irqrestore(&mc->lock, flags);
+ struct nvkm_mc *mc = container_of(intr, typeof(*mc), intr);
+
+ nvkm_wr32(mc->subdev.device, 0x000180 + (leaf * 4), mask);
}
-void
-gp100_mc_intr_rearm(struct nvkm_mc *base)
+static void
+gp100_mc_intr_rearm(struct nvkm_intr *intr)
{
- struct gp100_mc *mc = gp100_mc(base);
- unsigned long flags;
- spin_lock_irqsave(&mc->lock, flags);
- mc->intr = true;
- gp100_mc_intr_update(mc);
- spin_unlock_irqrestore(&mc->lock, flags);
+ int i;
+
+ for (i = 0; i < intr->leaves; i++)
+ intr->func->allow(intr, i, intr->mask[i]);
}
-void
-gp100_mc_intr_mask(struct nvkm_mc *base, u32 mask, u32 intr)
+static void
+gp100_mc_intr_unarm(struct nvkm_intr *intr)
{
- struct gp100_mc *mc = gp100_mc(base);
- unsigned long flags;
- spin_lock_irqsave(&mc->lock, flags);
- mc->mask = (mc->mask & ~mask) | intr;
- gp100_mc_intr_update(mc);
- spin_unlock_irqrestore(&mc->lock, flags);
+ int i;
+
+ for (i = 0; i < intr->leaves; i++)
+ intr->func->block(intr, i, 0xffffffff);
}
-const struct nvkm_mc_map
-gp100_mc_intr[] = {
- { 0x04000000, NVKM_ENGINE_DISP },
- { 0x00000100, NVKM_ENGINE_FIFO },
- { 0x00000200, NVKM_SUBDEV_FAULT },
- { 0x40000000, NVKM_SUBDEV_PRIVRING },
- { 0x10000000, NVKM_SUBDEV_BUS },
- { 0x08000000, NVKM_SUBDEV_FB },
- { 0x02000000, NVKM_SUBDEV_LTC },
- { 0x01000000, NVKM_SUBDEV_PMU },
- { 0x00200000, NVKM_SUBDEV_GPIO },
- { 0x00200000, NVKM_SUBDEV_I2C },
- { 0x00100000, NVKM_SUBDEV_TIMER },
- { 0x00040000, NVKM_SUBDEV_THERM },
- { 0x00002000, NVKM_SUBDEV_FB },
- {},
+const struct nvkm_intr_func
+gp100_mc_intr = {
+ .pending = nv04_mc_intr_pending,
+ .unarm = gp100_mc_intr_unarm,
+ .rearm = gp100_mc_intr_rearm,
+ .block = gp100_mc_intr_block,
+ .allow = gp100_mc_intr_allow,
};
static const struct nvkm_mc_func
gp100_mc = {
.init = nv50_mc_init,
- .intr = gp100_mc_intr,
- .intr_unarm = gp100_mc_intr_unarm,
- .intr_rearm = gp100_mc_intr_rearm,
- .intr_mask = gp100_mc_intr_mask,
- .intr_stat = gf100_mc_intr_stat,
+ .intr = &gp100_mc_intr,
+ .intrs = gp100_mc_intrs,
+ .intr_nonstall = true,
+ .device = &nv04_mc_device,
.reset = gk104_mc_reset,
};
int
-gp100_mc_new_(const struct nvkm_mc_func *func, struct nvkm_device *device,
- enum nvkm_subdev_type type, int inst, struct nvkm_mc **pmc)
-{
- struct gp100_mc *mc;
-
- if (!(mc = kzalloc(sizeof(*mc), GFP_KERNEL)))
- return -ENOMEM;
- nvkm_mc_ctor(func, device, type, inst, &mc->base);
- *pmc = &mc->base;
-
- spin_lock_init(&mc->lock);
- mc->intr = false;
- mc->mask = 0x7fffffff;
- return 0;
-}
-
-int
gp100_mc_new(struct nvkm_device *device, enum nvkm_subdev_type type, int inst, struct nvkm_mc **pmc)
{
- return gp100_mc_new_(&gp100_mc, device, type, inst, pmc);
+ return nvkm_mc_new_(&gp100_mc, device, type, inst, pmc);
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/mc/gp10b.c b/drivers/gpu/drm/nouveau/nvkm/subdev/mc/gp10b.c
index dd581d030ced..9bed9c5ea5d3 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/mc/gp10b.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/mc/gp10b.c
@@ -34,16 +34,15 @@ gp10b_mc_init(struct nvkm_mc *mc)
static const struct nvkm_mc_func
gp10b_mc = {
.init = gp10b_mc_init,
- .intr = gp100_mc_intr,
- .intr_unarm = gp100_mc_intr_unarm,
- .intr_rearm = gp100_mc_intr_rearm,
- .intr_mask = gp100_mc_intr_mask,
- .intr_stat = gf100_mc_intr_stat,
+ .intr = &gp100_mc_intr,
+ .intrs = gp100_mc_intrs,
+ .intr_nonstall = true,
+ .device = &nv04_mc_device,
.reset = gk104_mc_reset,
};
int
gp10b_mc_new(struct nvkm_device *device, enum nvkm_subdev_type type, int inst, struct nvkm_mc **pmc)
{
- return gp100_mc_new_(&gp10b_mc, device, type, inst, pmc);
+ return nvkm_mc_new_(&gp10b_mc, device, type, inst, pmc);
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/mc/gt215.c b/drivers/gpu/drm/nouveau/nvkm/subdev/mc/gt215.c
index 1b4d43531dba..3d61836e42a3 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/mc/gt215.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/mc/gt215.c
@@ -34,39 +34,56 @@ gt215_mc_reset[] = {
{}
};
-static const struct nvkm_mc_map
-gt215_mc_intr[] = {
- { 0x04000000, NVKM_ENGINE_DISP },
- { 0x00400000, NVKM_ENGINE_CE, 0 },
- { 0x00020000, NVKM_ENGINE_MSPDEC },
- { 0x00008000, NVKM_ENGINE_MSVLD },
- { 0x00001000, NVKM_ENGINE_GR },
- { 0x00000100, NVKM_ENGINE_FIFO },
- { 0x00000001, NVKM_ENGINE_MSPPP },
- { 0x00429101, NVKM_SUBDEV_FB },
- { 0x10000000, NVKM_SUBDEV_BUS },
- { 0x00200000, NVKM_SUBDEV_GPIO },
- { 0x00200000, NVKM_SUBDEV_I2C },
- { 0x00100000, NVKM_SUBDEV_TIMER },
- { 0x00080000, NVKM_SUBDEV_THERM },
- { 0x00040000, NVKM_SUBDEV_PMU },
+static const struct nvkm_intr_data
+gt215_mc_intrs[] = {
+ { NVKM_ENGINE_DISP , 0, 0, 0x04000000, true },
+ { NVKM_ENGINE_CE , 0, 0, 0x00400000, true },
+ { NVKM_ENGINE_MSPDEC, 0, 0, 0x00020000, true },
+ { NVKM_ENGINE_MSVLD , 0, 0, 0x00008000, true },
+ { NVKM_ENGINE_GR , 0, 0, 0x00001000, true },
+ { NVKM_ENGINE_FIFO , 0, 0, 0x00000100 },
+ { NVKM_ENGINE_MSPPP , 0, 0, 0x00000001, true },
+ { NVKM_SUBDEV_FB , 0, 0, 0x00429101, true },
+ { NVKM_SUBDEV_BUS , 0, 0, 0x10000000, true },
+ { NVKM_SUBDEV_GPIO , 0, 0, 0x00200000, true },
+ { NVKM_SUBDEV_I2C , 0, 0, 0x00200000, true },
+ { NVKM_SUBDEV_TIMER , 0, 0, 0x00100000, true },
+ { NVKM_SUBDEV_THERM , 0, 0, 0x00080000, true },
+ { NVKM_SUBDEV_PMU , 0, 0, 0x00040000, true },
{},
};
static void
-gt215_mc_intr_mask(struct nvkm_mc *mc, u32 mask, u32 stat)
+gt215_mc_intr_allow(struct nvkm_intr *intr, int leaf, u32 mask)
+{
+ struct nvkm_mc *mc = container_of(intr, typeof(*mc), intr);
+
+ nvkm_mask(mc->subdev.device, 0x000640 + (leaf * 4), mask, mask);
+}
+
+static void
+gt215_mc_intr_block(struct nvkm_intr *intr, int leaf, u32 mask)
{
- nvkm_mask(mc->subdev.device, 0x000640, mask, stat);
+ struct nvkm_mc *mc = container_of(intr, typeof(*mc), intr);
+
+ nvkm_mask(mc->subdev.device, 0x000640 + (leaf * 4), mask, 0);
}
+const struct nvkm_intr_func
+gt215_mc_intr = {
+ .pending = nv04_mc_intr_pending,
+ .unarm = nv04_mc_intr_unarm,
+ .rearm = nv04_mc_intr_rearm,
+ .block = gt215_mc_intr_block,
+ .allow = gt215_mc_intr_allow,
+};
+
static const struct nvkm_mc_func
gt215_mc = {
.init = nv50_mc_init,
- .intr = gt215_mc_intr,
- .intr_unarm = nv04_mc_intr_unarm,
- .intr_rearm = nv04_mc_intr_rearm,
- .intr_mask = gt215_mc_intr_mask,
- .intr_stat = nv04_mc_intr_stat,
+ .intr = &nv04_mc_intr,
+ .intrs = gt215_mc_intrs,
+ .device = &nv04_mc_device,
.reset = gt215_mc_reset,
};
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/mc/nv04.c b/drivers/gpu/drm/nouveau/nvkm/subdev/mc/nv04.c
index bc0d09bafa99..8482a5550e5f 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/mc/nv04.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/mc/nv04.c
@@ -30,37 +30,89 @@ nv04_mc_reset[] = {
{}
};
-static const struct nvkm_mc_map
-nv04_mc_intr[] = {
- { 0x01010000, NVKM_ENGINE_DISP },
- { 0x00001000, NVKM_ENGINE_GR },
- { 0x00000100, NVKM_ENGINE_FIFO },
- { 0x10000000, NVKM_SUBDEV_BUS },
- { 0x00100000, NVKM_SUBDEV_TIMER },
+static void
+nv04_mc_device_disable(struct nvkm_mc *mc, u32 mask)
+{
+ nvkm_mask(mc->subdev.device, 0x000200, mask, 0x00000000);
+}
+
+static void
+nv04_mc_device_enable(struct nvkm_mc *mc, u32 mask)
+{
+ struct nvkm_device *device = mc->subdev.device;
+
+ nvkm_mask(device, 0x000200, mask, mask);
+ nvkm_rd32(device, 0x000200);
+}
+
+static bool
+nv04_mc_device_enabled(struct nvkm_mc *mc, u32 mask)
+{
+ return (nvkm_rd32(mc->subdev.device, 0x000200) & mask) == mask;
+}
+
+const struct nvkm_mc_device_func
+nv04_mc_device = {
+ .enabled = nv04_mc_device_enabled,
+ .enable = nv04_mc_device_enable,
+ .disable = nv04_mc_device_disable,
+};
+
+static const struct nvkm_intr_data
+nv04_mc_intrs[] = {
+ { NVKM_ENGINE_DISP , 0, 0, 0x01010000, true },
+ { NVKM_ENGINE_GR , 0, 0, 0x00001000, true },
+ { NVKM_ENGINE_FIFO , 0, 0, 0x00000100 },
+ { NVKM_SUBDEV_BUS , 0, 0, 0x10000000, true },
+ { NVKM_SUBDEV_TIMER, 0, 0, 0x00100000, true },
{}
};
void
-nv04_mc_intr_unarm(struct nvkm_mc *mc)
+nv04_mc_intr_rearm(struct nvkm_intr *intr)
{
- struct nvkm_device *device = mc->subdev.device;
- nvkm_wr32(device, 0x000140, 0x00000000);
- nvkm_rd32(device, 0x000140);
+ struct nvkm_mc *mc = container_of(intr, typeof(*mc), intr);
+ int leaf;
+
+ for (leaf = 0; leaf < intr->leaves; leaf++)
+ nvkm_wr32(mc->subdev.device, 0x000140 + (leaf * 4), 0x00000001);
}
void
-nv04_mc_intr_rearm(struct nvkm_mc *mc)
+nv04_mc_intr_unarm(struct nvkm_intr *intr)
{
- struct nvkm_device *device = mc->subdev.device;
- nvkm_wr32(device, 0x000140, 0x00000001);
+ struct nvkm_mc *mc = container_of(intr, typeof(*mc), intr);
+ int leaf;
+
+ for (leaf = 0; leaf < intr->leaves; leaf++)
+ nvkm_wr32(mc->subdev.device, 0x000140 + (leaf * 4), 0x00000000);
+
+ nvkm_rd32(mc->subdev.device, 0x000140);
}
-u32
-nv04_mc_intr_stat(struct nvkm_mc *mc)
+bool
+nv04_mc_intr_pending(struct nvkm_intr *intr)
{
- return nvkm_rd32(mc->subdev.device, 0x000100);
+ struct nvkm_mc *mc = container_of(intr, typeof(*mc), intr);
+ bool pending = false;
+ int leaf;
+
+ for (leaf = 0; leaf < intr->leaves; leaf++) {
+ intr->stat[leaf] = nvkm_rd32(mc->subdev.device, 0x000100 + (leaf * 4));
+ if (intr->stat[leaf])
+ pending = true;
+ }
+
+ return pending;
}
+const struct nvkm_intr_func
+nv04_mc_intr = {
+ .pending = nv04_mc_intr_pending,
+ .unarm = nv04_mc_intr_unarm,
+ .rearm = nv04_mc_intr_rearm,
+};
+
void
nv04_mc_init(struct nvkm_mc *mc)
{
@@ -72,10 +124,9 @@ nv04_mc_init(struct nvkm_mc *mc)
static const struct nvkm_mc_func
nv04_mc = {
.init = nv04_mc_init,
- .intr = nv04_mc_intr,
- .intr_unarm = nv04_mc_intr_unarm,
- .intr_rearm = nv04_mc_intr_rearm,
- .intr_stat = nv04_mc_intr_stat,
+ .intr = &nv04_mc_intr,
+ .intrs = nv04_mc_intrs,
+ .device = &nv04_mc_device,
.reset = nv04_mc_reset,
};
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/mc/nv11.c b/drivers/gpu/drm/nouveau/nvkm/subdev/mc/nv11.c
index ab59ca1ee068..6d6278f434a4 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/mc/nv11.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/mc/nv11.c
@@ -23,23 +23,22 @@
*/
#include "priv.h"
-static const struct nvkm_mc_map
-nv11_mc_intr[] = {
- { 0x03010000, NVKM_ENGINE_DISP },
- { 0x00001000, NVKM_ENGINE_GR },
- { 0x00000100, NVKM_ENGINE_FIFO },
- { 0x10000000, NVKM_SUBDEV_BUS },
- { 0x00100000, NVKM_SUBDEV_TIMER },
+static const struct nvkm_intr_data
+nv11_mc_intrs[] = {
+ { NVKM_ENGINE_DISP , 0, 0, 0x03010000, true },
+ { NVKM_ENGINE_GR , 0, 0, 0x00001000, true },
+ { NVKM_ENGINE_FIFO , 0, 0, 0x00000100 },
+ { NVKM_SUBDEV_BUS , 0, 0, 0x10000000, true },
+ { NVKM_SUBDEV_TIMER, 0, 0, 0x00100000, true },
{}
};
static const struct nvkm_mc_func
nv11_mc = {
.init = nv04_mc_init,
- .intr = nv11_mc_intr,
- .intr_unarm = nv04_mc_intr_unarm,
- .intr_rearm = nv04_mc_intr_rearm,
- .intr_stat = nv04_mc_intr_stat,
+ .intr = &nv04_mc_intr,
+ .intrs = nv11_mc_intrs,
+ .device = &nv04_mc_device,
.reset = nv04_mc_reset,
};
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/mc/nv17.c b/drivers/gpu/drm/nouveau/nvkm/subdev/mc/nv17.c
index 03d756e26e57..dbad7c111ceb 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/mc/nv17.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/mc/nv17.c
@@ -31,24 +31,23 @@ nv17_mc_reset[] = {
{}
};
-const struct nvkm_mc_map
-nv17_mc_intr[] = {
- { 0x03010000, NVKM_ENGINE_DISP },
- { 0x00001000, NVKM_ENGINE_GR },
- { 0x00000100, NVKM_ENGINE_FIFO },
- { 0x00000001, NVKM_ENGINE_MPEG },
- { 0x10000000, NVKM_SUBDEV_BUS },
- { 0x00100000, NVKM_SUBDEV_TIMER },
+const struct nvkm_intr_data
+nv17_mc_intrs[] = {
+ { NVKM_ENGINE_DISP , 0, 0, 0x03010000, true },
+ { NVKM_ENGINE_GR , 0, 0, 0x00001000, true },
+ { NVKM_ENGINE_FIFO , 0, 0, 0x00000100 },
+ { NVKM_ENGINE_MPEG , 0, 0, 0x00000001, true },
+ { NVKM_SUBDEV_BUS , 0, 0, 0x10000000, true },
+ { NVKM_SUBDEV_TIMER, 0, 0, 0x00100000, true },
{}
};
static const struct nvkm_mc_func
nv17_mc = {
.init = nv04_mc_init,
- .intr = nv17_mc_intr,
- .intr_unarm = nv04_mc_intr_unarm,
- .intr_rearm = nv04_mc_intr_rearm,
- .intr_stat = nv04_mc_intr_stat,
+ .intr = &nv04_mc_intr,
+ .intrs = nv17_mc_intrs,
+ .device = &nv04_mc_device,
.reset = nv17_mc_reset,
};
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/mc/nv44.c b/drivers/gpu/drm/nouveau/nvkm/subdev/mc/nv44.c
index 95f65766e8b0..649a9fcc0a2f 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/mc/nv44.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/mc/nv44.c
@@ -40,10 +40,9 @@ nv44_mc_init(struct nvkm_mc *mc)
static const struct nvkm_mc_func
nv44_mc = {
.init = nv44_mc_init,
- .intr = nv17_mc_intr,
- .intr_unarm = nv04_mc_intr_unarm,
- .intr_rearm = nv04_mc_intr_rearm,
- .intr_stat = nv04_mc_intr_stat,
+ .intr = &nv04_mc_intr,
+ .intrs = nv17_mc_intrs,
+ .device = &nv04_mc_device,
.reset = nv17_mc_reset,
};
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/mc/nv50.c b/drivers/gpu/drm/nouveau/nvkm/subdev/mc/nv50.c
index fce3613cdfa5..d41099d35690 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/mc/nv50.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/mc/nv50.c
@@ -23,17 +23,17 @@
*/
#include "priv.h"
-static const struct nvkm_mc_map
-nv50_mc_intr[] = {
- { 0x04000000, NVKM_ENGINE_DISP },
- { 0x00001000, NVKM_ENGINE_GR },
- { 0x00000100, NVKM_ENGINE_FIFO },
- { 0x00000001, NVKM_ENGINE_MPEG },
- { 0x00001101, NVKM_SUBDEV_FB },
- { 0x10000000, NVKM_SUBDEV_BUS },
- { 0x00200000, NVKM_SUBDEV_GPIO },
- { 0x00200000, NVKM_SUBDEV_I2C },
- { 0x00100000, NVKM_SUBDEV_TIMER },
+static const struct nvkm_intr_data
+nv50_mc_intrs[] = {
+ { NVKM_ENGINE_DISP , 0, 0, 0x04000000, true },
+ { NVKM_ENGINE_GR , 0, 0, 0x00001000, true },
+ { NVKM_ENGINE_FIFO , 0, 0, 0x00000100 },
+ { NVKM_ENGINE_MPEG , 0, 0, 0x00000001, true },
+ { NVKM_SUBDEV_FB , 0, 0, 0x00001101, true },
+ { NVKM_SUBDEV_BUS , 0, 0, 0x10000000, true },
+ { NVKM_SUBDEV_GPIO , 0, 0, 0x00200000, true },
+ { NVKM_SUBDEV_I2C , 0, 0, 0x00200000, true },
+ { NVKM_SUBDEV_TIMER, 0, 0, 0x00100000, true },
{},
};
@@ -47,10 +47,9 @@ nv50_mc_init(struct nvkm_mc *mc)
static const struct nvkm_mc_func
nv50_mc = {
.init = nv50_mc_init,
- .intr = nv50_mc_intr,
- .intr_unarm = nv04_mc_intr_unarm,
- .intr_rearm = nv04_mc_intr_rearm,
- .intr_stat = nv04_mc_intr_stat,
+ .intr = &nv04_mc_intr,
+ .intrs = nv50_mc_intrs,
+ .device = &nv04_mc_device,
.reset = nv17_mc_reset,
};
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/mc/priv.h b/drivers/gpu/drm/nouveau/nvkm/subdev/mc/priv.h
index c8bcabb98f99..7f38d54b4bc2 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/mc/priv.h
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/mc/priv.h
@@ -4,8 +4,6 @@
#define nvkm_mc(p) container_of((p), struct nvkm_mc, subdev)
#include <subdev/mc.h>
-void nvkm_mc_ctor(const struct nvkm_mc_func *, struct nvkm_device *, enum nvkm_subdev_type, int,
- struct nvkm_mc *);
int nvkm_mc_new_(const struct nvkm_mc_func *, struct nvkm_device *, enum nvkm_subdev_type, int,
struct nvkm_mc **);
@@ -18,46 +16,44 @@ struct nvkm_mc_map {
struct nvkm_mc_func {
void (*init)(struct nvkm_mc *);
- const struct nvkm_mc_map *intr;
- /* disable reporting of interrupts to host */
- void (*intr_unarm)(struct nvkm_mc *);
- /* enable reporting of interrupts to host */
- void (*intr_rearm)(struct nvkm_mc *);
- /* (un)mask delivery of specific interrupts */
- void (*intr_mask)(struct nvkm_mc *, u32 mask, u32 stat);
- /* retrieve pending interrupt mask (NV_PMC_INTR) */
- u32 (*intr_stat)(struct nvkm_mc *);
+
+ const struct nvkm_intr_func *intr;
+ const struct nvkm_intr_data *intrs;
+ bool intr_nonstall;
+
+ const struct nvkm_mc_device_func {
+ bool (*enabled)(struct nvkm_mc *, u32 mask);
+ void (*enable)(struct nvkm_mc *, u32 mask);
+ void (*disable)(struct nvkm_mc *, u32 mask);
+ } *device;
+
const struct nvkm_mc_map *reset;
+
void (*unk260)(struct nvkm_mc *, u32);
};
void nv04_mc_init(struct nvkm_mc *);
-void nv04_mc_intr_unarm(struct nvkm_mc *);
-void nv04_mc_intr_rearm(struct nvkm_mc *);
-u32 nv04_mc_intr_stat(struct nvkm_mc *);
+extern const struct nvkm_intr_func nv04_mc_intr;
+bool nv04_mc_intr_pending(struct nvkm_intr *);
+void nv04_mc_intr_unarm(struct nvkm_intr *);
+void nv04_mc_intr_rearm(struct nvkm_intr *);
+extern const struct nvkm_mc_device_func nv04_mc_device;
extern const struct nvkm_mc_map nv04_mc_reset[];
-extern const struct nvkm_mc_map nv17_mc_intr[];
+extern const struct nvkm_intr_data nv17_mc_intrs[];
extern const struct nvkm_mc_map nv17_mc_reset[];
void nv44_mc_init(struct nvkm_mc *);
void nv50_mc_init(struct nvkm_mc *);
-void gk104_mc_init(struct nvkm_mc *);
-void gf100_mc_intr_unarm(struct nvkm_mc *);
-void gf100_mc_intr_rearm(struct nvkm_mc *);
-void gf100_mc_intr_mask(struct nvkm_mc *, u32, u32);
-u32 gf100_mc_intr_stat(struct nvkm_mc *);
+extern const struct nvkm_intr_func gt215_mc_intr;
void gf100_mc_unk260(struct nvkm_mc *, u32);
-void gp100_mc_intr_unarm(struct nvkm_mc *);
-void gp100_mc_intr_rearm(struct nvkm_mc *);
-void gp100_mc_intr_mask(struct nvkm_mc *, u32, u32);
-int gp100_mc_new_(const struct nvkm_mc_func *, struct nvkm_device *, enum nvkm_subdev_type, int,
- struct nvkm_mc **);
-extern const struct nvkm_mc_map gk104_mc_intr[];
+void gk104_mc_init(struct nvkm_mc *);
+extern const struct nvkm_intr_data gk104_mc_intrs[];
extern const struct nvkm_mc_map gk104_mc_reset[];
-extern const struct nvkm_mc_map gp100_mc_intr[];
+extern const struct nvkm_intr_func gp100_mc_intr;
+extern const struct nvkm_intr_data gp100_mc_intrs[];
#endif
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/mc/tu102.c b/drivers/gpu/drm/nouveau/nvkm/subdev/mc/tu102.c
deleted file mode 100644
index a96084b34a78..000000000000
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/mc/tu102.c
+++ /dev/null
@@ -1,136 +0,0 @@
-/*
- * Copyright 2018 Red Hat Inc.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice shall be included in
- * all copies or substantial portions of the Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
- * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
- * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
- * OTHER DEALINGS IN THE SOFTWARE.
- */
-#define tu102_mc(p) container_of((p), struct tu102_mc, base)
-#include "priv.h"
-
-struct tu102_mc {
- struct nvkm_mc base;
- spinlock_t lock;
- bool intr;
- u32 mask;
-};
-
-static void
-tu102_mc_intr_update(struct tu102_mc *mc)
-{
- struct nvkm_device *device = mc->base.subdev.device;
- u32 mask = mc->intr ? mc->mask : 0, i;
-
- for (i = 0; i < 2; i++) {
- nvkm_wr32(device, 0x000180 + (i * 0x04), ~mask);
- nvkm_wr32(device, 0x000160 + (i * 0x04), mask);
- }
-
- if (mask & 0x00000200)
- nvkm_wr32(device, 0xb81608, 0x6);
- else
- nvkm_wr32(device, 0xb81610, 0x6);
-}
-
-static void
-tu102_mc_intr_unarm(struct nvkm_mc *base)
-{
- struct tu102_mc *mc = tu102_mc(base);
- unsigned long flags;
-
- spin_lock_irqsave(&mc->lock, flags);
- mc->intr = false;
- tu102_mc_intr_update(mc);
- spin_unlock_irqrestore(&mc->lock, flags);
-}
-
-static void
-tu102_mc_intr_rearm(struct nvkm_mc *base)
-{
- struct tu102_mc *mc = tu102_mc(base);
- unsigned long flags;
-
- spin_lock_irqsave(&mc->lock, flags);
- mc->intr = true;
- tu102_mc_intr_update(mc);
- spin_unlock_irqrestore(&mc->lock, flags);
-}
-
-static void
-tu102_mc_intr_mask(struct nvkm_mc *base, u32 mask, u32 intr)
-{
- struct tu102_mc *mc = tu102_mc(base);
- unsigned long flags;
-
- spin_lock_irqsave(&mc->lock, flags);
- mc->mask = (mc->mask & ~mask) | intr;
- tu102_mc_intr_update(mc);
- spin_unlock_irqrestore(&mc->lock, flags);
-}
-
-static u32
-tu102_mc_intr_stat(struct nvkm_mc *mc)
-{
- struct nvkm_device *device = mc->subdev.device;
- u32 intr0 = nvkm_rd32(device, 0x000100);
- u32 intr1 = nvkm_rd32(device, 0x000104);
- u32 intr_top = nvkm_rd32(device, 0xb81600);
-
- /* Turing and above route the MMU fault interrupts via a different
- * interrupt tree with different control registers. For the moment remap
- * them back to the old PMC vector.
- */
- if (intr_top & 0x00000006)
- intr0 |= 0x00000200;
-
- return intr0 | intr1;
-}
-
-
-static const struct nvkm_mc_func
-tu102_mc = {
- .init = nv50_mc_init,
- .intr = gp100_mc_intr,
- .intr_unarm = tu102_mc_intr_unarm,
- .intr_rearm = tu102_mc_intr_rearm,
- .intr_mask = tu102_mc_intr_mask,
- .intr_stat = tu102_mc_intr_stat,
- .reset = gk104_mc_reset,
-};
-
-static int
-tu102_mc_new_(const struct nvkm_mc_func *func, struct nvkm_device *device,
- enum nvkm_subdev_type type, int inst, struct nvkm_mc **pmc)
-{
- struct tu102_mc *mc;
-
- if (!(mc = kzalloc(sizeof(*mc), GFP_KERNEL)))
- return -ENOMEM;
- nvkm_mc_ctor(func, device, type, inst, &mc->base);
- *pmc = &mc->base;
-
- spin_lock_init(&mc->lock);
- mc->intr = false;
- mc->mask = 0x7fffffff;
- return 0;
-}
-
-int
-tu102_mc_new(struct nvkm_device *device, enum nvkm_subdev_type type, int inst, struct nvkm_mc **pmc)
-{
- return tu102_mc_new_(&tu102_mc, device, type, inst, pmc);
-}
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/mmu/uvmm.c b/drivers/gpu/drm/nouveau/nvkm/subdev/mmu/uvmm.c
index 186b4e63e559..524cd3c0e3fe 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/mmu/uvmm.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/mmu/uvmm.c
@@ -39,7 +39,7 @@ nvkm_uvmm_search(struct nvkm_client *client, u64 handle)
if (IS_ERR(object))
return (void *)object;
- return nvkm_uvmm(object)->vmm;
+ return nvkm_vmm_ref(nvkm_uvmm(object)->vmm);
}
static int
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/pci/base.c b/drivers/gpu/drm/nouveau/nvkm/subdev/pci/base.c
index a7d42ea8ba28..5a0de45d36ce 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/pci/base.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/pci/base.c
@@ -26,7 +26,15 @@
#include <core/option.h>
#include <core/pci.h>
-#include <subdev/mc.h>
+
+void
+nvkm_pci_msi_rearm(struct nvkm_device *device)
+{
+ struct nvkm_pci *pci = device->pci;
+
+ if (pci && pci->msi)
+ pci->func->msi_rearm(pci);
+}
u32
nvkm_pci_rd32(struct nvkm_pci *pci, u16 addr)
@@ -65,24 +73,6 @@ nvkm_pci_rom_shadow(struct nvkm_pci *pci, bool shadow)
nvkm_pci_wr32(pci, 0x0050, data);
}
-static irqreturn_t
-nvkm_pci_intr(int irq, void *arg)
-{
- struct nvkm_pci *pci = arg;
- struct nvkm_device *device = pci->subdev.device;
- bool handled = false;
-
- if (pci->irq < 0)
- return IRQ_HANDLED;
-
- nvkm_mc_intr_unarm(device);
- if (pci->msi)
- pci->func->msi_rearm(pci);
- nvkm_mc_intr(device, &handled);
- nvkm_mc_intr_rearm(device);
- return handled ? IRQ_HANDLED : IRQ_NONE;
-}
-
static int
nvkm_pci_fini(struct nvkm_subdev *subdev, bool suspend)
{
@@ -107,7 +97,6 @@ static int
nvkm_pci_oneinit(struct nvkm_subdev *subdev)
{
struct nvkm_pci *pci = nvkm_pci(subdev);
- struct pci_dev *pdev = pci->pdev;
int ret;
if (pci_is_pcie(pci->pdev)) {
@@ -116,11 +105,6 @@ nvkm_pci_oneinit(struct nvkm_subdev *subdev)
return ret;
}
- ret = request_irq(pdev->irq, nvkm_pci_intr, IRQF_SHARED, "nvkm", pci);
- if (ret)
- return ret;
-
- pci->irq = pdev->irq;
return 0;
}
@@ -157,15 +141,6 @@ nvkm_pci_dtor(struct nvkm_subdev *subdev)
nvkm_agp_dtor(pci);
- if (pci->irq >= 0) {
- /* freq_irq() will call the handler, we use pci->irq == -1
- * to signal that it's been torn down and should be a noop.
- */
- int irq = pci->irq;
- pci->irq = -1;
- free_irq(irq, pci);
- }
-
if (pci->msi)
pci_disable_msi(pci->pdev);
@@ -192,7 +167,6 @@ nvkm_pci_new_(const struct nvkm_pci_func *func, struct nvkm_device *device,
nvkm_subdev_ctor(&nvkm_pci_func, device, type, inst, &pci->subdev);
pci->func = func;
pci->pdev = device->func->pci(device)->pdev;
- pci->irq = -1;
pci->pcie.speed = -1;
pci->pcie.width = -1;
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/pmu/base.c b/drivers/gpu/drm/nouveau/nvkm/subdev/pmu/base.c
index 455e95a89259..8f2f50ad4ded 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/pmu/base.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/pmu/base.c
@@ -81,43 +81,12 @@ nvkm_pmu_fini(struct nvkm_subdev *subdev, bool suspend)
{
struct nvkm_pmu *pmu = nvkm_pmu(subdev);
+ if (!subdev->use.enabled)
+ return 0;
+
if (pmu->func->fini)
pmu->func->fini(pmu);
- flush_work(&pmu->recv.work);
-
- reinit_completion(&pmu->wpr_ready);
-
- nvkm_falcon_cmdq_fini(pmu->lpq);
- nvkm_falcon_cmdq_fini(pmu->hpq);
- pmu->initmsg_received = false;
- return 0;
-}
-
-static void
-nvkm_pmu_reset(struct nvkm_pmu *pmu)
-{
- struct nvkm_device *device = pmu->subdev.device;
-
- if (!pmu->func->enabled(pmu))
- return;
-
- /* Reset. */
- if (pmu->func->reset)
- pmu->func->reset(pmu);
-
- /* Wait for IMEM/DMEM scrubbing to be complete. */
- nvkm_msec(device, 2000,
- if (!(nvkm_rd32(device, 0x10a10c) & 0x00000006))
- break;
- );
-}
-
-static int
-nvkm_pmu_preinit(struct nvkm_subdev *subdev)
-{
- struct nvkm_pmu *pmu = nvkm_pmu(subdev);
- nvkm_pmu_reset(pmu);
return 0;
}
@@ -125,22 +94,10 @@ static int
nvkm_pmu_init(struct nvkm_subdev *subdev)
{
struct nvkm_pmu *pmu = nvkm_pmu(subdev);
- struct nvkm_device *device = pmu->subdev.device;
if (!pmu->func->init)
return 0;
- if (pmu->func->enabled(pmu)) {
- /* Inhibit interrupts, and wait for idle. */
- nvkm_wr32(device, 0x10a014, 0x0000ffff);
- nvkm_msec(device, 2000,
- if (!nvkm_rd32(device, 0x10a04c))
- break;
- );
-
- nvkm_pmu_reset(pmu);
- }
-
return pmu->func->init(pmu);
}
@@ -160,7 +117,6 @@ nvkm_pmu_dtor(struct nvkm_subdev *subdev)
static const struct nvkm_subdev_func
nvkm_pmu = {
.dtor = nvkm_pmu_dtor,
- .preinit = nvkm_pmu_preinit,
.init = nvkm_pmu_init,
.fini = nvkm_pmu_fini,
.intr = nvkm_pmu_intr,
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/pmu/gk20a.c b/drivers/gpu/drm/nouveau/nvkm/subdev/pmu/gk20a.c
index a67a42e73f08..b5e52b35f5d0 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/pmu/gk20a.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/pmu/gk20a.c
@@ -197,7 +197,6 @@ gk20a_dvfs_data= {
static const struct nvkm_pmu_func
gk20a_pmu = {
.flcn = &gt215_pmu_flcn,
- .enabled = gf100_pmu_enabled,
.init = gk20a_pmu_init,
.fini = gk20a_pmu_fini,
.reset = gf100_pmu_reset,
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/pmu/gm200.c b/drivers/gpu/drm/nouveau/nvkm/subdev/pmu/gm200.c
index 40439e329aa9..7359991f94c2 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/pmu/gm200.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/pmu/gm200.c
@@ -24,30 +24,36 @@
#include "priv.h"
static int
-gm200_pmu_flcn_reset(struct nvkm_falcon *falcon)
+gm200_pmu_flcn_bind_stat(struct nvkm_falcon *falcon, bool intr)
{
- struct nvkm_pmu *pmu = container_of(falcon, typeof(*pmu), falcon);
+ nvkm_falcon_wr32(falcon, 0x200, 0x0000030e);
+ return (nvkm_falcon_rd32(falcon, 0x20c) & 0x00007000) >> 12;
+}
- nvkm_falcon_wr32(falcon, 0x014, 0x0000ffff);
- pmu->func->reset(pmu);
- return nvkm_falcon_enable(falcon);
+void
+gm200_pmu_flcn_bind_inst(struct nvkm_falcon *falcon, int target, u64 addr)
+{
+ nvkm_falcon_wr32(falcon, 0xe00, 4); /* DMAIDX_UCODE */
+ nvkm_falcon_wr32(falcon, 0xe04, 0); /* DMAIDX_VIRT */
+ nvkm_falcon_wr32(falcon, 0xe08, 4); /* DMAIDX_PHYS_VID */
+ nvkm_falcon_wr32(falcon, 0xe0c, 5); /* DMAIDX_PHYS_SYS_COH */
+ nvkm_falcon_wr32(falcon, 0xe10, 6); /* DMAIDX_PHYS_SYS_NCOH */
+ nvkm_falcon_mask(falcon, 0x090, 0x00010000, 0x00010000);
+ nvkm_falcon_wr32(falcon, 0x480, (1 << 30) | (target << 28) | (addr >> 12));
}
const struct nvkm_falcon_func
gm200_pmu_flcn = {
+ .disable = gm200_flcn_disable,
+ .enable = gm200_flcn_enable,
+ .reset_pmc = true,
+ .reset_wait_mem_scrubbing = gm200_flcn_reset_wait_mem_scrubbing,
.debug = 0xc08,
- .fbif = 0xe00,
- .load_imem = nvkm_falcon_v1_load_imem,
- .load_dmem = nvkm_falcon_v1_load_dmem,
- .read_dmem = nvkm_falcon_v1_read_dmem,
- .bind_context = nvkm_falcon_v1_bind_context,
- .wait_for_halt = nvkm_falcon_v1_wait_for_halt,
- .clear_interrupt = nvkm_falcon_v1_clear_interrupt,
- .set_start_addr = nvkm_falcon_v1_set_start_addr,
+ .bind_inst = gm200_pmu_flcn_bind_inst,
+ .bind_stat = gm200_pmu_flcn_bind_stat,
+ .imem_pio = &gm200_flcn_imem_pio,
+ .dmem_pio = &gm200_flcn_dmem_pio,
.start = nvkm_falcon_v1_start,
- .enable = nvkm_falcon_v1_enable,
- .disable = nvkm_falcon_v1_disable,
- .reset = gm200_pmu_flcn_reset,
.cmdq = { 0x4a0, 0x4b0, 4 },
.msgq = { 0x4c8, 0x4cc, 0 },
};
@@ -55,11 +61,9 @@ gm200_pmu_flcn = {
static const struct nvkm_pmu_func
gm200_pmu = {
.flcn = &gm200_pmu_flcn,
- .enabled = gf100_pmu_enabled,
.reset = gf100_pmu_reset,
};
-
int
gm200_pmu_nofw(struct nvkm_pmu *pmu, int ver, const struct nvkm_pmu_fwif *fwif)
{
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/pmu/gm20b.c b/drivers/gpu/drm/nouveau/nvkm/subdev/pmu/gm20b.c
index 612310d5d481..2ed04da3621d 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/pmu/gm20b.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/pmu/gm20b.c
@@ -62,16 +62,6 @@ gm20b_pmu_acr_bootstrap_falcon(struct nvkm_falcon *falcon,
return ret;
}
-int
-gm20b_pmu_acr_boot(struct nvkm_falcon *falcon)
-{
- struct nv_pmu_args args = { .secure_mode = true };
- const u32 addr_args = falcon->data.limit - sizeof(struct nv_pmu_args);
- nvkm_falcon_load_dmem(falcon, &args, addr_args, sizeof(args), 0);
- nvkm_falcon_start(falcon);
- return 0;
-}
-
void
gm20b_pmu_acr_bld_patch(struct nvkm_acr *acr, u32 bld, s64 adjust)
{
@@ -125,7 +115,6 @@ gm20b_pmu_acr = {
.bld_size = sizeof(struct loader_config),
.bld_write = gm20b_pmu_acr_bld_write,
.bld_patch = gm20b_pmu_acr_bld_patch,
- .boot = gm20b_pmu_acr_boot,
.bootstrap_falcons = BIT_ULL(NVKM_ACR_LSF_PMU) |
BIT_ULL(NVKM_ACR_LSF_FECS) |
BIT_ULL(NVKM_ACR_LSF_GPCCS),
@@ -166,7 +155,7 @@ gm20b_pmu_acr_init_wpr(struct nvkm_pmu *pmu)
gm20b_pmu_acr_init_wpr_callback, pmu, 0);
}
-int
+static int
gm20b_pmu_initmsg(struct nvkm_pmu *pmu)
{
struct nv_pmu_init_msg msg;
@@ -192,14 +181,13 @@ gm20b_pmu_initmsg(struct nvkm_pmu *pmu)
return gm20b_pmu_acr_init_wpr(pmu);
}
-void
+static void
gm20b_pmu_recv(struct nvkm_pmu *pmu)
{
if (!pmu->initmsg_received) {
int ret = pmu->func->initmsg(pmu);
if (ret) {
- nvkm_error(&pmu->subdev,
- "error parsing init message: %d\n", ret);
+ nvkm_error(&pmu->subdev, "error parsing init message: %d\n", ret);
return;
}
@@ -209,10 +197,44 @@ gm20b_pmu_recv(struct nvkm_pmu *pmu)
nvkm_falcon_msgq_recv(pmu->msgq);
}
-static const struct nvkm_pmu_func
+static void
+gm20b_pmu_fini(struct nvkm_pmu *pmu)
+{
+ /*TODO: shutdown RTOS. */
+
+ flush_work(&pmu->recv.work);
+ nvkm_falcon_cmdq_fini(pmu->lpq);
+ nvkm_falcon_cmdq_fini(pmu->hpq);
+
+ reinit_completion(&pmu->wpr_ready);
+
+ nvkm_falcon_put(&pmu->falcon, &pmu->subdev);
+}
+
+static int
+gm20b_pmu_init(struct nvkm_pmu *pmu)
+{
+ struct nvkm_falcon *falcon = &pmu->falcon;
+ struct nv_pmu_args args = { .secure_mode = true };
+ u32 addr_args = falcon->data.limit - sizeof(args);
+ int ret;
+
+ ret = nvkm_falcon_get(&pmu->falcon, &pmu->subdev);
+ if (ret)
+ return ret;
+
+ pmu->initmsg_received = false;
+
+ nvkm_falcon_pio_wr(falcon, (u8 *)&args, 0, 0, DMEM, addr_args, sizeof(args), 0, false);
+ nvkm_falcon_start(falcon);
+ return 0;
+}
+
+const struct nvkm_pmu_func
gm20b_pmu = {
.flcn = &gm200_pmu_flcn,
- .enabled = gf100_pmu_enabled,
+ .init = gm20b_pmu_init,
+ .fini = gm20b_pmu_fini,
.intr = gt215_pmu_intr,
.recv = gm20b_pmu_recv,
.initmsg = gm20b_pmu_initmsg,
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/pmu/gp102.c b/drivers/gpu/drm/nouveau/nvkm/subdev/pmu/gp102.c
index 1a6f9c3af5ec..cd3148360996 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/pmu/gp102.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/pmu/gp102.c
@@ -23,25 +23,25 @@
*/
#include "priv.h"
-void
-gp102_pmu_reset(struct nvkm_pmu *pmu)
-{
- struct nvkm_device *device = pmu->subdev.device;
- nvkm_mask(device, 0x10a3c0, 0x00000001, 0x00000001);
- nvkm_mask(device, 0x10a3c0, 0x00000001, 0x00000000);
-}
-
-static bool
-gp102_pmu_enabled(struct nvkm_pmu *pmu)
-{
- return !(nvkm_rd32(pmu->subdev.device, 0x10a3c0) & 0x00000001);
-}
+static const struct nvkm_falcon_func
+gp102_pmu_flcn = {
+ .disable = gm200_flcn_disable,
+ .enable = gm200_flcn_enable,
+ .reset_eng = gp102_flcn_reset_eng,
+ .reset_wait_mem_scrubbing = gm200_flcn_reset_wait_mem_scrubbing,
+ .debug = 0xc08,
+ .bind_inst = gm200_pmu_flcn_bind_inst,
+ .bind_stat = gm200_flcn_bind_stat,
+ .imem_pio = &gm200_flcn_imem_pio,
+ .dmem_pio = &gm200_flcn_dmem_pio,
+ .start = nvkm_falcon_v1_start,
+ .cmdq = { 0x4a0, 0x4b0, 4 },
+ .msgq = { 0x4c8, 0x4cc, 0 },
+};
static const struct nvkm_pmu_func
gp102_pmu = {
- .flcn = &gm200_pmu_flcn,
- .enabled = gp102_pmu_enabled,
- .reset = gp102_pmu_reset,
+ .flcn = &gp102_pmu_flcn,
};
static const struct nvkm_pmu_fwif
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/pmu/gp10b.c b/drivers/gpu/drm/nouveau/nvkm/subdev/pmu/gp10b.c
index 94cfb1791af6..a6f410ba60bc 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/pmu/gp10b.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/pmu/gp10b.c
@@ -68,7 +68,6 @@ gp10b_pmu_acr = {
.bld_size = sizeof(struct loader_config),
.bld_write = gm20b_pmu_acr_bld_write,
.bld_patch = gm20b_pmu_acr_bld_patch,
- .boot = gm20b_pmu_acr_boot,
.bootstrap_falcons = BIT_ULL(NVKM_ACR_LSF_PMU) |
BIT_ULL(NVKM_ACR_LSF_FECS) |
BIT_ULL(NVKM_ACR_LSF_GPCCS),
@@ -76,16 +75,6 @@ gp10b_pmu_acr = {
.bootstrap_multiple_falcons = gp10b_pmu_acr_bootstrap_multiple_falcons,
};
-static const struct nvkm_pmu_func
-gp10b_pmu = {
- .flcn = &gm200_pmu_flcn,
- .enabled = gf100_pmu_enabled,
- .intr = gt215_pmu_intr,
- .recv = gm20b_pmu_recv,
- .initmsg = gm20b_pmu_initmsg,
- .reset = gp102_pmu_reset,
-};
-
#if IS_ENABLED(CONFIG_ARCH_TEGRA_210_SOC)
MODULE_FIRMWARE("nvidia/gp10b/pmu/desc.bin");
MODULE_FIRMWARE("nvidia/gp10b/pmu/image.bin");
@@ -94,8 +83,8 @@ MODULE_FIRMWARE("nvidia/gp10b/pmu/sig.bin");
static const struct nvkm_pmu_fwif
gp10b_pmu_fwif[] = {
- { 0, gm20b_pmu_load, &gp10b_pmu, &gp10b_pmu_acr },
- { -1, gm200_pmu_nofw, &gp10b_pmu },
+ { 0, gm20b_pmu_load, &gm20b_pmu, &gp10b_pmu_acr },
+ { -1, gm200_pmu_nofw, &gm20b_pmu },
{}
};
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/pmu/gt215.c b/drivers/gpu/drm/nouveau/nvkm/subdev/pmu/gt215.c
index b0407b86bc10..32cee21ed858 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/pmu/gt215.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/pmu/gt215.c
@@ -178,12 +178,14 @@ void
gt215_pmu_fini(struct nvkm_pmu *pmu)
{
nvkm_wr32(pmu->subdev.device, 0x10a014, 0x00000060);
+ flush_work(&pmu->recv.work);
}
static void
gt215_pmu_reset(struct nvkm_pmu *pmu)
{
struct nvkm_device *device = pmu->subdev.device;
+
nvkm_mask(device, 0x022210, 0x00000001, 0x00000000);
nvkm_mask(device, 0x022210, 0x00000001, 0x00000001);
nvkm_rd32(device, 0x022210);
@@ -201,6 +203,23 @@ gt215_pmu_init(struct nvkm_pmu *pmu)
struct nvkm_device *device = pmu->subdev.device;
int i;
+ /* Inhibit interrupts, and wait for idle. */
+ if (pmu->func->enabled(pmu)) {
+ nvkm_wr32(device, 0x10a014, 0x0000ffff);
+ nvkm_msec(device, 2000,
+ if (!nvkm_rd32(device, 0x10a04c))
+ break;
+ );
+ }
+
+ pmu->func->reset(pmu);
+
+ /* Wait for IMEM/DMEM scrubbing to be complete. */
+ nvkm_msec(device, 2000,
+ if (!(nvkm_rd32(device, 0x10a10c) & 0x00000006))
+ break;
+ );
+
/* upload data segment */
nvkm_wr32(device, 0x10a1c0, 0x01000000);
for (i = 0; i < pmu->func->data.size / 4; i++)
@@ -243,20 +262,6 @@ gt215_pmu_init(struct nvkm_pmu *pmu)
const struct nvkm_falcon_func
gt215_pmu_flcn = {
- .debug = 0xc08,
- .fbif = 0xe00,
- .load_imem = nvkm_falcon_v1_load_imem,
- .load_dmem = nvkm_falcon_v1_load_dmem,
- .read_dmem = nvkm_falcon_v1_read_dmem,
- .bind_context = nvkm_falcon_v1_bind_context,
- .wait_for_halt = nvkm_falcon_v1_wait_for_halt,
- .clear_interrupt = nvkm_falcon_v1_clear_interrupt,
- .set_start_addr = nvkm_falcon_v1_set_start_addr,
- .start = nvkm_falcon_v1_start,
- .enable = nvkm_falcon_v1_enable,
- .disable = nvkm_falcon_v1_disable,
- .cmdq = { 0x4a0, 0x4b0, 4 },
- .msgq = { 0x4c8, 0x4cc, 0 },
};
static const struct nvkm_pmu_func
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/pmu/priv.h b/drivers/gpu/drm/nouveau/nvkm/subdev/pmu/priv.h
index 21abf31f4442..2d0a8fa6f196 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/pmu/priv.h
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/pmu/priv.h
@@ -46,13 +46,12 @@ void gp102_pmu_reset(struct nvkm_pmu *pmu);
void gk110_pmu_pgob(struct nvkm_pmu *, bool);
extern const struct nvkm_falcon_func gm200_pmu_flcn;
+void gm200_pmu_flcn_bind_inst(struct nvkm_falcon *, int, u64);
+extern const struct nvkm_pmu_func gm20b_pmu;
void gm20b_pmu_acr_bld_patch(struct nvkm_acr *, u32, s64);
void gm20b_pmu_acr_bld_write(struct nvkm_acr *, u32, struct nvkm_acr_lsfw *);
-int gm20b_pmu_acr_boot(struct nvkm_falcon *);
int gm20b_pmu_acr_bootstrap_falcon(struct nvkm_falcon *, enum nvkm_acr_lsf_id);
-void gm20b_pmu_recv(struct nvkm_pmu *);
-int gm20b_pmu_initmsg(struct nvkm_pmu *);
struct nvkm_pmu_fwif {
int version;
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/top/base.c b/drivers/gpu/drm/nouveau/nvkm/subdev/top/base.c
index 28d0789f50fe..eb348dfc1d7a 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/top/base.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/top/base.c
@@ -117,11 +117,15 @@ nvkm_top_fault(struct nvkm_device *device, int fault)
return NULL;
}
-static int
-nvkm_top_oneinit(struct nvkm_subdev *subdev)
+int
+nvkm_top_parse(struct nvkm_device *device)
{
- struct nvkm_top *top = nvkm_top(subdev);
- return top->func->oneinit(top);
+ struct nvkm_top *top = device->top;
+
+ if (!top || !list_empty(&top->device))
+ return 0;
+
+ return top->func->parse(top);
}
static void *
@@ -141,7 +145,6 @@ nvkm_top_dtor(struct nvkm_subdev *subdev)
static const struct nvkm_subdev_func
nvkm_top = {
.dtor = nvkm_top_dtor,
- .oneinit = nvkm_top_oneinit,
};
int
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/top/ga100.c b/drivers/gpu/drm/nouveau/nvkm/subdev/top/ga100.c
index c982d834c8d9..84790cf52b90 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/top/ga100.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/top/ga100.c
@@ -22,7 +22,7 @@
#include "priv.h"
static int
-ga100_top_oneinit(struct nvkm_top *top)
+ga100_top_parse(struct nvkm_top *top)
{
struct nvkm_subdev *subdev = &top->subdev;
struct nvkm_device *device = subdev->device;
@@ -97,7 +97,7 @@ ga100_top_oneinit(struct nvkm_top *top)
static const struct nvkm_top_func
ga100_top = {
- .oneinit = ga100_top_oneinit,
+ .parse = ga100_top_parse,
};
int
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/top/gk104.c b/drivers/gpu/drm/nouveau/nvkm/subdev/top/gk104.c
index 4dcad97bd505..2bbba8244cbf 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/top/gk104.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/top/gk104.c
@@ -24,7 +24,7 @@
#include "priv.h"
static int
-gk104_top_oneinit(struct nvkm_top *top)
+gk104_top_parse(struct nvkm_top *top)
{
struct nvkm_subdev *subdev = &top->subdev;
struct nvkm_device *device = subdev->device;
@@ -108,7 +108,7 @@ gk104_top_oneinit(struct nvkm_top *top)
static const struct nvkm_top_func
gk104_top = {
- .oneinit = gk104_top_oneinit,
+ .parse = gk104_top_parse,
};
int
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/top/priv.h b/drivers/gpu/drm/nouveau/nvkm/subdev/top/priv.h
index 8e103a836705..532be91d8fd9 100644
--- a/drivers/gpu/drm/nouveau/nvkm/subdev/top/priv.h
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/top/priv.h
@@ -5,7 +5,7 @@
#include <subdev/top.h>
struct nvkm_top_func {
- int (*oneinit)(struct nvkm_top *);
+ int (*parse)(struct nvkm_top *);
};
int nvkm_top_new_(const struct nvkm_top_func *, struct nvkm_device *, enum nvkm_subdev_type, int,
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/vfn/Kbuild b/drivers/gpu/drm/nouveau/nvkm/subdev/vfn/Kbuild
new file mode 100644
index 000000000000..23cd21b40a25
--- /dev/null
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/vfn/Kbuild
@@ -0,0 +1,6 @@
+# SPDX-License-Identifier: MIT
+nvkm-y += nvkm/subdev/vfn/base.o
+nvkm-y += nvkm/subdev/vfn/uvfn.o
+nvkm-y += nvkm/subdev/vfn/gv100.o
+nvkm-y += nvkm/subdev/vfn/tu102.o
+nvkm-y += nvkm/subdev/vfn/ga100.o
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/disp/rootnv04.c b/drivers/gpu/drm/nouveau/nvkm/subdev/vfn/base.c
index 9acaec5c271e..62e81d551f44 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/disp/rootnv04.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/vfn/base.c
@@ -1,5 +1,5 @@
/*
- * Copyright 2012 Red Hat Inc.
+ * Copyright 2021 Red Hat Inc.
*
* Permission is hereby granted, free of charge, to any person obtaining a
* copy of this software and associated documentation files (the "Software"),
@@ -18,45 +18,43 @@
* OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
* ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
* OTHER DEALINGS IN THE SOFTWARE.
- *
- * Authors: Ben Skeggs
*/
#include "priv.h"
-#include "head.h"
-#include <core/client.h>
+static void *
+nvkm_vfn_dtor(struct nvkm_subdev *subdev)
+{
+ return nvkm_vfn(subdev);
+}
-#include <nvif/cl0046.h>
-#include <nvif/unpack.h>
+static const struct nvkm_subdev_func
+nvkm_vfn = {
+ .dtor = nvkm_vfn_dtor,
+};
int
-nv04_disp_mthd(struct nvkm_object *object, u32 mthd, void *data, u32 size)
+nvkm_vfn_new_(const struct nvkm_vfn_func *func, struct nvkm_device *device,
+ enum nvkm_subdev_type type, int inst, u32 addr, struct nvkm_vfn **pvfn)
{
- struct nvkm_disp *disp = nvkm_disp(object->engine);
- union {
- struct nv04_disp_mthd_v0 v0;
- } *args = data;
- struct nvkm_head *head;
- int id, ret = -ENOSYS;
+ struct nvkm_vfn *vfn;
+ int ret;
- nvif_ioctl(object, "disp mthd size %d\n", size);
- if (!(ret = nvif_unpack(ret, &data, &size, args->v0, 0, 0, true))) {
- nvif_ioctl(object, "disp mthd vers %d mthd %02x head %d\n",
- args->v0.version, args->v0.method, args->v0.head);
- mthd = args->v0.method;
- id = args->v0.head;
- } else
- return ret;
+ if (!(vfn = *pvfn = kzalloc(sizeof(*vfn), GFP_KERNEL)))
+ return -ENOMEM;
- if (!(head = nvkm_head_find(disp, id)))
- return -ENXIO;
+ nvkm_subdev_ctor(&nvkm_vfn, device, type, inst, &vfn->subdev);
+ vfn->func = func;
+ vfn->addr.priv = addr;
+ vfn->addr.user = vfn->addr.priv + func->user.addr;
- switch (mthd) {
- case NV04_DISP_SCANOUTPOS:
- return nvkm_head_mthd_scanoutpos(object, head, data, size);
- default:
- break;
+ if (vfn->func->intr) {
+ ret = nvkm_intr_add(vfn->func->intr, vfn->func->intrs,
+ &vfn->subdev, 8, &vfn->intr);
+ if (ret)
+ return ret;
}
- return -EINVAL;
+ vfn->user.ctor = nvkm_uvfn_new;
+ vfn->user.base = func->user.base;
+ return 0;
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/vfn/ga100.c b/drivers/gpu/drm/nouveau/nvkm/subdev/vfn/ga100.c
new file mode 100644
index 000000000000..fd5c6931322d
--- /dev/null
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/vfn/ga100.c
@@ -0,0 +1,47 @@
+/*
+ * Copyright 2021 Red Hat Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ */
+#include "priv.h"
+
+#include <nvif/class.h>
+
+static const struct nvkm_intr_data
+ga100_vfn_intrs[] = {
+ { NVKM_ENGINE_DISP , 0, 4, 0x04000000, true },
+ { NVKM_SUBDEV_GPIO , 0, 4, 0x00200000, true },
+ { NVKM_SUBDEV_I2C , 0, 4, 0x00200000, true },
+ { NVKM_SUBDEV_PRIVRING, 0, 4, 0x40000000, true },
+ {}
+};
+
+static const struct nvkm_vfn_func
+ga100_vfn = {
+ .intr = &tu102_vfn_intr,
+ .intrs = ga100_vfn_intrs,
+ .user = { 0x030000, 0x010000, { -1, -1, AMPERE_USERMODE_A } },
+};
+
+int
+ga100_vfn_new(struct nvkm_device *device,
+ enum nvkm_subdev_type type, int inst, struct nvkm_vfn **pvfn)
+{
+ return nvkm_vfn_new_(&ga100_vfn, device, type, inst, 0xb80000, pvfn);
+}
diff --git a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/usergv100.c b/drivers/gpu/drm/nouveau/nvkm/subdev/vfn/gv100.c
index 3dc3b8b312de..ddd39d714c4a 100644
--- a/drivers/gpu/drm/nouveau/nvkm/engine/fifo/usergv100.c
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/vfn/gv100.c
@@ -1,5 +1,5 @@
/*
- * Copyright 2018 Red Hat Inc.
+ * Copyright 2021 Red Hat Inc.
*
* Permission is hereby granted, free of charge, to any person obtaining a
* copy of this software and associated documentation files (the "Software"),
@@ -19,27 +19,18 @@
* ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
* OTHER DEALINGS IN THE SOFTWARE.
*/
-#include "user.h"
+#include "priv.h"
-static int
-gv100_fifo_user_map(struct nvkm_object *object, void *argv, u32 argc,
- enum nvkm_object_map *type, u64 *addr, u64 *size)
-{
- struct nvkm_device *device = object->engine->subdev.device;
- *addr = 0x810000 + device->func->resource_addr(device, 0);
- *size = 0x010000;
- *type = NVKM_OBJECT_MAP_IO;
- return 0;
-}
+#include <nvif/class.h>
-static const struct nvkm_object_func
-gv100_fifo_user = {
- .map = gv100_fifo_user_map,
+static const struct nvkm_vfn_func
+gv100_vfn = {
+ .user = { 0x810000, 0x010000, { -1, -1, VOLTA_USERMODE_A } },
};
int
-gv100_fifo_user_new(const struct nvkm_oclass *oclass, void *argv, u32 argc,
- struct nvkm_object **pobject)
+gv100_vfn_new(struct nvkm_device *device,
+ enum nvkm_subdev_type type, int inst, struct nvkm_vfn **pvfn)
{
- return nvkm_object_new_(&gv100_fifo_user, oclass, argv, argc, pobject);
+ return nvkm_vfn_new_(&gv100_vfn, device, type, inst, 0, pvfn);
}
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/vfn/priv.h b/drivers/gpu/drm/nouveau/nvkm/subdev/vfn/priv.h
new file mode 100644
index 000000000000..96d53c02041b
--- /dev/null
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/vfn/priv.h
@@ -0,0 +1,25 @@
+/* SPDX-License-Identifier: MIT */
+#ifndef __NVKM_VFN_PRIV_H__
+#define __NVKM_VFN_PRIV_H__
+#define nvkm_vfn(p) container_of((p), struct nvkm_vfn, subdev)
+#include <subdev/vfn.h>
+
+struct nvkm_vfn_func {
+ const struct nvkm_intr_func *intr;
+ const struct nvkm_intr_data *intrs;
+
+ struct {
+ u32 addr;
+ u32 size;
+ const struct nvkm_sclass base;
+ } user;
+};
+
+int nvkm_vfn_new_(const struct nvkm_vfn_func *, struct nvkm_device *, enum nvkm_subdev_type, int,
+ u32 addr, struct nvkm_vfn **);
+
+extern const struct nvkm_intr_func tu102_vfn_intr;
+
+int nvkm_uvfn_new(struct nvkm_device *, const struct nvkm_oclass *, void *, u32,
+ struct nvkm_object **);
+#endif
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/vfn/tu102.c b/drivers/gpu/drm/nouveau/nvkm/subdev/vfn/tu102.c
new file mode 100644
index 000000000000..3d063fb5e136
--- /dev/null
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/vfn/tu102.c
@@ -0,0 +1,108 @@
+/*
+ * Copyright 2021 Red Hat Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ */
+#include "priv.h"
+
+#include <nvif/class.h>
+
+static void
+tu102_vfn_intr_reset(struct nvkm_intr *intr, int leaf, u32 mask)
+{
+ struct nvkm_vfn *vfn = container_of(intr, typeof(*vfn), intr);
+
+ nvkm_wr32(vfn->subdev.device, vfn->addr.priv + 0x1000 + (leaf * 4), mask);
+}
+
+static void
+tu102_vfn_intr_allow(struct nvkm_intr *intr, int leaf, u32 mask)
+{
+ struct nvkm_vfn *vfn = container_of(intr, typeof(*vfn), intr);
+
+ nvkm_wr32(vfn->subdev.device, vfn->addr.priv + 0x1200 + (leaf * 4), mask);
+}
+
+static void
+tu102_vfn_intr_block(struct nvkm_intr *intr, int leaf, u32 mask)
+{
+ struct nvkm_vfn *vfn = container_of(intr, typeof(*vfn), intr);
+
+ nvkm_wr32(vfn->subdev.device, vfn->addr.priv + 0x1400 + (leaf * 4), mask);
+}
+
+static void
+tu102_vfn_intr_rearm(struct nvkm_intr *intr)
+{
+ struct nvkm_vfn *vfn = container_of(intr, typeof(*vfn), intr);
+
+ nvkm_wr32(vfn->subdev.device, vfn->addr.priv + 0x1608, 0x0000000f);
+}
+
+static void
+tu102_vfn_intr_unarm(struct nvkm_intr *intr)
+{
+ struct nvkm_vfn *vfn = container_of(intr, typeof(*vfn), intr);
+
+ nvkm_wr32(vfn->subdev.device, vfn->addr.priv + 0x1610, 0x0000000f);
+}
+
+static bool
+tu102_vfn_intr_pending(struct nvkm_intr *intr)
+{
+ struct nvkm_vfn *vfn = container_of(intr, typeof(*vfn), intr);
+ struct nvkm_device *device = vfn->subdev.device;
+ u32 intr_top = nvkm_rd32(device, vfn->addr.priv + 0x1600);
+ int pending = 0, leaf;
+
+ for (leaf = 0; leaf < 8; leaf++) {
+ if (intr_top & BIT(leaf / 2)) {
+ intr->stat[leaf] = nvkm_rd32(device, vfn->addr.priv + 0x1000 + (leaf * 4));
+ if (intr->stat[leaf])
+ pending++;
+ } else {
+ intr->stat[leaf] = 0;
+ }
+ }
+
+ return pending != 0;
+}
+
+const struct nvkm_intr_func
+tu102_vfn_intr = {
+ .pending = tu102_vfn_intr_pending,
+ .unarm = tu102_vfn_intr_unarm,
+ .rearm = tu102_vfn_intr_rearm,
+ .block = tu102_vfn_intr_block,
+ .allow = tu102_vfn_intr_allow,
+ .reset = tu102_vfn_intr_reset,
+};
+
+static const struct nvkm_vfn_func
+tu102_vfn = {
+ .intr = &tu102_vfn_intr,
+ .user = { 0x030000, 0x010000, { -1, -1, TURING_USERMODE_A } },
+};
+
+int
+tu102_vfn_new(struct nvkm_device *device,
+ enum nvkm_subdev_type type, int inst, struct nvkm_vfn **pvfn)
+{
+ return nvkm_vfn_new_(&tu102_vfn, device, type, inst, 0xb80000, pvfn);
+}
diff --git a/drivers/gpu/drm/nouveau/nvkm/subdev/vfn/uvfn.c b/drivers/gpu/drm/nouveau/nvkm/subdev/vfn/uvfn.c
new file mode 100644
index 000000000000..c5460a14c541
--- /dev/null
+++ b/drivers/gpu/drm/nouveau/nvkm/subdev/vfn/uvfn.c
@@ -0,0 +1,67 @@
+/*
+ * Copyright 2021 Red Hat Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included in
+ * all copies or substantial portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
+ * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
+ * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
+ * OTHER DEALINGS IN THE SOFTWARE.
+ */
+#define nvkm_uvfn(p) container_of((p), struct nvkm_uvfn, object)
+#include "priv.h"
+
+#include <core/object.h>
+
+struct nvkm_uvfn {
+ struct nvkm_object object;
+ struct nvkm_vfn *vfn;
+};
+
+static int
+nvkm_uvfn_map(struct nvkm_object *object, void *argv, u32 argc,
+ enum nvkm_object_map *type, u64 *addr, u64 *size)
+{
+ struct nvkm_vfn *vfn = nvkm_uvfn(object)->vfn;
+ struct nvkm_device *device = vfn->subdev.device;
+
+ *addr = device->func->resource_addr(device, 0) + vfn->addr.user;
+ *size = vfn->func->user.size;
+ *type = NVKM_OBJECT_MAP_IO;
+ return 0;
+}
+
+static const struct nvkm_object_func
+nvkm_uvfn = {
+ .map = nvkm_uvfn_map,
+};
+
+int
+nvkm_uvfn_new(struct nvkm_device *device, const struct nvkm_oclass *oclass,
+ void *argv, u32 argc, struct nvkm_object **pobject)
+{
+ struct nvkm_uvfn *uvfn;
+
+ if (argc != 0)
+ return -ENOSYS;
+
+ if (!(uvfn = kzalloc(sizeof(*uvfn), GFP_KERNEL)))
+ return -ENOMEM;
+
+ nvkm_object_ctor(&nvkm_uvfn, oclass, &uvfn->object);
+ uvfn->vfn = device->vfn;
+
+ *pobject = &uvfn->object;
+ return 0;
+}
diff --git a/drivers/gpu/drm/omapdrm/Kconfig b/drivers/gpu/drm/omapdrm/Kconfig
index 455e1a91f0e5..76ded1568bd0 100644
--- a/drivers/gpu/drm/omapdrm/Kconfig
+++ b/drivers/gpu/drm/omapdrm/Kconfig
@@ -2,7 +2,7 @@
config DRM_OMAP
tristate "OMAP DRM"
depends on DRM && OF
- depends on ARCH_OMAP2PLUS || ARCH_MULTIPLATFORM
+ depends on ARCH_OMAP2PLUS
select DRM_KMS_HELPER
select VIDEOMODE_HELPERS
select HDMI
diff --git a/drivers/gpu/drm/omapdrm/dss/dispc.c b/drivers/gpu/drm/omapdrm/dss/dispc.c
index 0ee344ebcd1c..aacad5045e95 100644
--- a/drivers/gpu/drm/omapdrm/dss/dispc.c
+++ b/drivers/gpu/drm/omapdrm/dss/dispc.c
@@ -855,11 +855,6 @@ struct csc_coef_yuv2rgb {
bool full_range;
};
-struct csc_coef_rgb2yuv {
- int yr, yg, yb, cbr, cbg, cbb, crr, crg, crb;
- bool full_range;
-};
-
static void dispc_ovl_write_color_conv_coef(struct dispc_device *dispc,
enum omap_plane_id plane,
const struct csc_coef_yuv2rgb *ct)
diff --git a/drivers/gpu/drm/omapdrm/dss/dsi.c b/drivers/gpu/drm/omapdrm/dss/dsi.c
index a6845856cbce..4c1084eb0175 100644
--- a/drivers/gpu/drm/omapdrm/dss/dsi.c
+++ b/drivers/gpu/drm/omapdrm/dss/dsi.c
@@ -1039,22 +1039,26 @@ static int dsi_dump_dsi_irqs(struct seq_file *s, void *p)
{
struct dsi_data *dsi = s->private;
unsigned long flags;
- struct dsi_irq_stats stats;
+ struct dsi_irq_stats *stats;
+
+ stats = kmalloc(sizeof(*stats), GFP_KERNEL);
+ if (!stats)
+ return -ENOMEM;
spin_lock_irqsave(&dsi->irq_stats_lock, flags);
- stats = dsi->irq_stats;
+ *stats = dsi->irq_stats;
memset(&dsi->irq_stats, 0, sizeof(dsi->irq_stats));
dsi->irq_stats.last_reset = jiffies;
spin_unlock_irqrestore(&dsi->irq_stats_lock, flags);
seq_printf(s, "period %u ms\n",
- jiffies_to_msecs(jiffies - stats.last_reset));
+ jiffies_to_msecs(jiffies - stats->last_reset));
- seq_printf(s, "irqs %d\n", stats.irq_count);
+ seq_printf(s, "irqs %d\n", stats->irq_count);
#define PIS(x) \
- seq_printf(s, "%-20s %10d\n", #x, stats.dsi_irqs[ffs(DSI_IRQ_##x)-1]);
+ seq_printf(s, "%-20s %10d\n", #x, stats->dsi_irqs[ffs(DSI_IRQ_##x)-1]);
seq_printf(s, "-- DSI%d interrupts --\n", dsi->module_id + 1);
PIS(VC0);
@@ -1078,10 +1082,10 @@ static int dsi_dump_dsi_irqs(struct seq_file *s, void *p)
#define PIS(x) \
seq_printf(s, "%-20s %10d %10d %10d %10d\n", #x, \
- stats.vc_irqs[0][ffs(DSI_VC_IRQ_##x)-1], \
- stats.vc_irqs[1][ffs(DSI_VC_IRQ_##x)-1], \
- stats.vc_irqs[2][ffs(DSI_VC_IRQ_##x)-1], \
- stats.vc_irqs[3][ffs(DSI_VC_IRQ_##x)-1]);
+ stats->vc_irqs[0][ffs(DSI_VC_IRQ_##x)-1], \
+ stats->vc_irqs[1][ffs(DSI_VC_IRQ_##x)-1], \
+ stats->vc_irqs[2][ffs(DSI_VC_IRQ_##x)-1], \
+ stats->vc_irqs[3][ffs(DSI_VC_IRQ_##x)-1]);
seq_printf(s, "-- VC interrupts --\n");
PIS(CS);
@@ -1097,7 +1101,7 @@ static int dsi_dump_dsi_irqs(struct seq_file *s, void *p)
#define PIS(x) \
seq_printf(s, "%-20s %10d\n", #x, \
- stats.cio_irqs[ffs(DSI_CIO_IRQ_##x)-1]);
+ stats->cio_irqs[ffs(DSI_CIO_IRQ_##x)-1]);
seq_printf(s, "-- CIO interrupts --\n");
PIS(ERRSYNCESC1);
@@ -1122,6 +1126,8 @@ static int dsi_dump_dsi_irqs(struct seq_file *s, void *p)
PIS(ULPSACTIVENOT_ALL1);
#undef PIS
+ kfree(stats);
+
return 0;
}
#endif
diff --git a/drivers/gpu/drm/omapdrm/omap_debugfs.c b/drivers/gpu/drm/omapdrm/omap_debugfs.c
index bfb2ccb40bd1..a3d470468e5b 100644
--- a/drivers/gpu/drm/omapdrm/omap_debugfs.c
+++ b/drivers/gpu/drm/omapdrm/omap_debugfs.c
@@ -47,15 +47,15 @@ static int fb_show(struct seq_file *m, void *arg)
{
struct drm_info_node *node = (struct drm_info_node *) m->private;
struct drm_device *dev = node->minor->dev;
- struct omap_drm_private *priv = dev->dev_private;
+ struct drm_fb_helper *helper = dev->fb_helper;
struct drm_framebuffer *fb;
seq_printf(m, "fbcon ");
- omap_framebuffer_describe(priv->fbdev->fb, m);
+ omap_framebuffer_describe(helper->fb, m);
mutex_lock(&dev->mode_config.fb_lock);
list_for_each_entry(fb, &dev->mode_config.fb_list, head) {
- if (fb == priv->fbdev->fb)
+ if (fb == helper->fb)
continue;
seq_printf(m, "user ");
diff --git a/drivers/gpu/drm/omapdrm/omap_drv.c b/drivers/gpu/drm/omapdrm/omap_drv.c
index eaf67b9e5f12..5ed549726104 100644
--- a/drivers/gpu/drm/omapdrm/omap_drv.c
+++ b/drivers/gpu/drm/omapdrm/omap_drv.c
@@ -6,6 +6,7 @@
#include <linux/dma-mapping.h>
#include <linux/platform_device.h>
+#include <linux/of.h>
#include <linux/sort.h>
#include <linux/sys_soc.h>
@@ -14,7 +15,6 @@
#include <drm/drm_bridge.h>
#include <drm/drm_bridge_connector.h>
#include <drm/drm_drv.h>
-#include <drm/drm_fb_helper.h>
#include <drm/drm_file.h>
#include <drm/drm_ioctl.h>
#include <drm/drm_panel.h>
@@ -24,6 +24,7 @@
#include "omap_dmm_tiler.h"
#include "omap_drv.h"
+#include "omap_fbdev.h"
#define DRIVER_NAME MODULE_NAME
#define DRIVER_DESC "OMAP DRM"
@@ -219,7 +220,6 @@ static const struct drm_mode_config_helper_funcs omap_mode_config_helper_funcs =
static const struct drm_mode_config_funcs omap_mode_config_funcs = {
.fb_create = omap_framebuffer_create,
- .output_poll_changed = drm_fb_helper_output_poll_changed,
.atomic_check = omap_atomic_check,
.atomic_commit = drm_atomic_helper_commit,
};
@@ -546,44 +546,6 @@ static void omap_modeset_fini(struct drm_device *ddev)
}
/*
- * Enable the HPD in external components if supported
- */
-static void omap_modeset_enable_external_hpd(struct drm_device *ddev)
-{
- struct omap_drm_private *priv = ddev->dev_private;
- unsigned int i;
-
- for (i = 0; i < priv->num_pipes; i++) {
- struct drm_connector *connector = priv->pipes[i].connector;
-
- if (!connector)
- continue;
-
- if (priv->pipes[i].output->bridge)
- drm_bridge_connector_enable_hpd(connector);
- }
-}
-
-/*
- * Disable the HPD in external components if supported
- */
-static void omap_modeset_disable_external_hpd(struct drm_device *ddev)
-{
- struct omap_drm_private *priv = ddev->dev_private;
- unsigned int i;
-
- for (i = 0; i < priv->num_pipes; i++) {
- struct drm_connector *connector = priv->pipes[i].connector;
-
- if (!connector)
- continue;
-
- if (priv->pipes[i].output->bridge)
- drm_bridge_connector_disable_hpd(connector);
- }
-}
-
-/*
* drm ioctl funcs
*/
@@ -690,7 +652,6 @@ static const struct drm_driver omap_drm_driver = {
.driver_features = DRIVER_MODESET | DRIVER_GEM |
DRIVER_ATOMIC | DRIVER_RENDER,
.open = dev_open,
- .lastclose = drm_fb_helper_lastclose,
#ifdef CONFIG_DEBUG_FS
.debugfs_init = omap_debugfs_init,
#endif
@@ -779,10 +740,7 @@ static int omapdrm_init(struct omap_drm_private *priv, struct device *dev)
goto err_cleanup_modeset;
}
- omap_fbdev_init(ddev);
-
drm_kms_helper_poll_init(ddev);
- omap_modeset_enable_external_hpd(ddev);
/*
* Register the DRM device with the core and the connectors with
@@ -792,13 +750,12 @@ static int omapdrm_init(struct omap_drm_private *priv, struct device *dev)
if (ret)
goto err_cleanup_helpers;
+ omap_fbdev_setup(ddev);
+
return 0;
err_cleanup_helpers:
- omap_modeset_disable_external_hpd(ddev);
drm_kms_helper_poll_fini(ddev);
-
- omap_fbdev_fini(ddev);
err_cleanup_modeset:
omap_modeset_fini(ddev);
err_free_overlays:
@@ -822,11 +779,8 @@ static void omapdrm_cleanup(struct omap_drm_private *priv)
drm_dev_unregister(ddev);
- omap_modeset_disable_external_hpd(ddev);
drm_kms_helper_poll_fini(ddev);
- omap_fbdev_fini(ddev);
-
drm_atomic_helper_shutdown(ddev);
omap_modeset_fini(ddev);
diff --git a/drivers/gpu/drm/omapdrm/omap_drv.h b/drivers/gpu/drm/omapdrm/omap_drv.h
index 825960fd3ea9..4c7217b35f6b 100644
--- a/drivers/gpu/drm/omapdrm/omap_drv.h
+++ b/drivers/gpu/drm/omapdrm/omap_drv.h
@@ -21,7 +21,6 @@
#include "omap_crtc.h"
#include "omap_encoder.h"
#include "omap_fb.h"
-#include "omap_fbdev.h"
#include "omap_gem.h"
#include "omap_irq.h"
#include "omap_plane.h"
@@ -77,8 +76,6 @@ struct omap_drm_private {
struct drm_private_obj glob_obj;
- struct drm_fb_helper *fbdev;
-
struct workqueue_struct *wq;
/* lock for obj_list below */
diff --git a/drivers/gpu/drm/omapdrm/omap_fbdev.c b/drivers/gpu/drm/omapdrm/omap_fbdev.c
index 40706c5aad7b..b950e93b3846 100644
--- a/drivers/gpu/drm/omapdrm/omap_fbdev.c
+++ b/drivers/gpu/drm/omapdrm/omap_fbdev.c
@@ -4,14 +4,17 @@
* Author: Rob Clark <rob@ti.com>
*/
-#include <drm/drm_crtc.h>
-#include <drm/drm_util.h>
+#include <drm/drm_drv.h>
+#include <drm/drm_crtc_helper.h>
#include <drm/drm_fb_helper.h>
#include <drm/drm_file.h>
#include <drm/drm_fourcc.h>
#include <drm/drm_framebuffer.h>
+#include <drm/drm_gem_framebuffer_helper.h>
+#include <drm/drm_util.h>
#include "omap_drv.h"
+#include "omap_fbdev.h"
MODULE_PARM_DESC(ywrap, "Enable ywrap scrolling (omap44xx and later, default 'y')");
static bool ywrap_enabled = true;
@@ -25,8 +28,6 @@ module_param_named(ywrap, ywrap_enabled, bool, 0644);
struct omap_fbdev {
struct drm_fb_helper base;
- struct drm_framebuffer *fb;
- struct drm_gem_object *bo;
bool ywrap_enabled;
/* for deferred dmm roll when getting called in atomic ctx */
@@ -38,12 +39,14 @@ static struct drm_fb_helper *get_fb(struct fb_info *fbi);
static void pan_worker(struct work_struct *work)
{
struct omap_fbdev *fbdev = container_of(work, struct omap_fbdev, work);
- struct fb_info *fbi = fbdev->base.fbdev;
+ struct drm_fb_helper *helper = &fbdev->base;
+ struct fb_info *fbi = helper->info;
+ struct drm_gem_object *bo = drm_gem_fb_get_obj(helper->fb, 0);
int npages;
/* DMM roll shifts in 4K pages: */
npages = fbi->fix.line_length >> PAGE_SHIFT;
- omap_gem_roll(fbdev->bo, fbi->var.yoffset * npages);
+ omap_gem_roll(bo, fbi->var.yoffset * npages);
}
static int omap_fbdev_pan_display(struct fb_var_screeninfo *var,
@@ -71,6 +74,25 @@ fallback:
return drm_fb_helper_pan_display(var, fbi);
}
+static void omap_fbdev_fb_destroy(struct fb_info *info)
+{
+ struct drm_fb_helper *helper = info->par;
+ struct drm_framebuffer *fb = helper->fb;
+ struct drm_gem_object *bo = drm_gem_fb_get_obj(fb, 0);
+ struct omap_fbdev *fbdev = to_omap_fbdev(helper);
+
+ DBG();
+
+ drm_fb_helper_fini(helper);
+
+ omap_gem_unpin(bo);
+ drm_framebuffer_remove(fb);
+
+ drm_client_release(&helper->client);
+ drm_fb_helper_unprepare(helper);
+ kfree(fbdev);
+}
+
static const struct fb_ops omap_fb_ops = {
.owner = THIS_MODULE,
@@ -86,6 +108,8 @@ static const struct fb_ops omap_fb_ops = {
.fb_fillrect = drm_fb_helper_sys_fillrect,
.fb_copyarea = drm_fb_helper_sys_copyarea,
.fb_imageblit = drm_fb_helper_sys_imageblit,
+
+ .fb_destroy = omap_fbdev_fb_destroy,
};
static int omap_fbdev_create(struct drm_fb_helper *helper,
@@ -98,6 +122,7 @@ static int omap_fbdev_create(struct drm_fb_helper *helper,
union omap_gem_size gsize;
struct fb_info *fbi = NULL;
struct drm_mode_fb_cmd2 mode_cmd = {0};
+ struct drm_gem_object *bo;
dma_addr_t dma_addr;
int ret;
@@ -128,20 +153,20 @@ static int omap_fbdev_create(struct drm_fb_helper *helper,
.bytes = PAGE_ALIGN(mode_cmd.pitches[0] * mode_cmd.height),
};
DBG("allocating %d bytes for fb %d", gsize.bytes, dev->primary->index);
- fbdev->bo = omap_gem_new(dev, gsize, OMAP_BO_SCANOUT | OMAP_BO_WC);
- if (!fbdev->bo) {
+ bo = omap_gem_new(dev, gsize, OMAP_BO_SCANOUT | OMAP_BO_WC);
+ if (!bo) {
dev_err(dev->dev, "failed to allocate buffer object\n");
ret = -ENOMEM;
goto fail;
}
- fb = omap_framebuffer_init(dev, &mode_cmd, &fbdev->bo);
+ fb = omap_framebuffer_init(dev, &mode_cmd, &bo);
if (IS_ERR(fb)) {
dev_err(dev->dev, "failed to allocate fb\n");
/* note: if fb creation failed, we can't rely on fb destroy
* to unref the bo:
*/
- drm_gem_object_put(fbdev->bo);
+ drm_gem_object_put(bo);
ret = PTR_ERR(fb);
goto fail;
}
@@ -154,14 +179,14 @@ static int omap_fbdev_create(struct drm_fb_helper *helper,
* to it). Then we just need to be sure that we are able to re-
* pin it in case of an opps.
*/
- ret = omap_gem_pin(fbdev->bo, &dma_addr);
+ ret = omap_gem_pin(bo, &dma_addr);
if (ret) {
dev_err(dev->dev, "could not pin framebuffer\n");
ret = -ENOMEM;
goto fail;
}
- fbi = drm_fb_helper_alloc_fbi(helper);
+ fbi = drm_fb_helper_alloc_info(helper);
if (IS_ERR(fbi)) {
dev_err(dev->dev, "failed to allocate fb info\n");
ret = PTR_ERR(fbi);
@@ -170,19 +195,16 @@ static int omap_fbdev_create(struct drm_fb_helper *helper,
DBG("fbi=%p, dev=%p", fbi, dev);
- fbdev->fb = fb;
helper->fb = fb;
fbi->fbops = &omap_fb_ops;
drm_fb_helper_fill_info(fbi, helper, sizes);
- dev->mode_config.fb_base = dma_addr;
-
- fbi->screen_buffer = omap_gem_vaddr(fbdev->bo);
- fbi->screen_size = fbdev->bo->size;
+ fbi->screen_buffer = omap_gem_vaddr(bo);
+ fbi->screen_size = bo->size;
fbi->fix.smem_start = dma_addr;
- fbi->fix.smem_len = fbdev->bo->size;
+ fbi->fix.smem_len = bo->size;
/* if we have DMM, then we can use it for scrolling by just
* shuffling pages around in DMM rather than doing sw blit.
@@ -195,7 +217,7 @@ static int omap_fbdev_create(struct drm_fb_helper *helper,
DBG("par=%p, %dx%d", fbi->par, fbi->var.xres, fbi->var.yres);
- DBG("allocated %dx%d fb", fbdev->fb->width, fbdev->fb->height);
+ DBG("allocated %dx%d fb", fb->width, fb->height);
return 0;
@@ -222,73 +244,94 @@ static struct drm_fb_helper *get_fb(struct fb_info *fbi)
return fbi->par;
}
-/* initialize fbdev helper */
-void omap_fbdev_init(struct drm_device *dev)
+/*
+ * struct drm_client
+ */
+
+static void omap_fbdev_client_unregister(struct drm_client_dev *client)
{
- struct omap_drm_private *priv = dev->dev_private;
- struct omap_fbdev *fbdev = NULL;
- struct drm_fb_helper *helper;
- int ret = 0;
+ struct drm_fb_helper *fb_helper = drm_fb_helper_from_client(client);
- if (!priv->num_pipes)
- return;
+ if (fb_helper->info) {
+ drm_fb_helper_unregister_info(fb_helper);
+ } else {
+ drm_client_release(&fb_helper->client);
+ drm_fb_helper_unprepare(fb_helper);
+ kfree(fb_helper);
+ }
+}
- fbdev = kzalloc(sizeof(*fbdev), GFP_KERNEL);
- if (!fbdev)
- goto fail;
+static int omap_fbdev_client_restore(struct drm_client_dev *client)
+{
+ drm_fb_helper_lastclose(client->dev);
- INIT_WORK(&fbdev->work, pan_worker);
+ return 0;
+}
- helper = &fbdev->base;
+static int omap_fbdev_client_hotplug(struct drm_client_dev *client)
+{
+ struct drm_fb_helper *fb_helper = drm_fb_helper_from_client(client);
+ struct drm_device *dev = client->dev;
+ int ret;
- drm_fb_helper_prepare(dev, helper, &omap_fb_helper_funcs);
+ if (dev->fb_helper)
+ return drm_fb_helper_hotplug_event(dev->fb_helper);
- ret = drm_fb_helper_init(dev, helper);
+ ret = drm_fb_helper_init(dev, fb_helper);
if (ret)
- goto fail;
+ goto err_drm_err;
- ret = drm_fb_helper_initial_config(helper, 32);
+ ret = drm_fb_helper_initial_config(fb_helper);
if (ret)
- goto fini;
-
- priv->fbdev = helper;
-
- return;
+ goto err_drm_fb_helper_fini;
-fini:
- drm_fb_helper_fini(helper);
-fail:
- kfree(fbdev);
+ return 0;
- dev_warn(dev->dev, "omap_fbdev_init failed\n");
+err_drm_fb_helper_fini:
+ drm_fb_helper_fini(fb_helper);
+err_drm_err:
+ drm_err(dev, "Failed to setup fbdev emulation (ret=%d)\n", ret);
+ return ret;
}
-void omap_fbdev_fini(struct drm_device *dev)
+static const struct drm_client_funcs omap_fbdev_client_funcs = {
+ .owner = THIS_MODULE,
+ .unregister = omap_fbdev_client_unregister,
+ .restore = omap_fbdev_client_restore,
+ .hotplug = omap_fbdev_client_hotplug,
+};
+
+void omap_fbdev_setup(struct drm_device *dev)
{
- struct omap_drm_private *priv = dev->dev_private;
- struct drm_fb_helper *helper = priv->fbdev;
struct omap_fbdev *fbdev;
+ struct drm_fb_helper *helper;
+ int ret;
- DBG();
+ drm_WARN(dev, !dev->registered, "Device has not been registered.\n");
+ drm_WARN(dev, dev->fb_helper, "fb_helper is already set!\n");
- if (!helper)
+ fbdev = kzalloc(sizeof(*fbdev), GFP_KERNEL);
+ if (!fbdev)
return;
+ helper = &fbdev->base;
- drm_fb_helper_unregister_fbi(helper);
+ drm_fb_helper_prepare(dev, helper, 32, &omap_fb_helper_funcs);
- drm_fb_helper_fini(helper);
+ ret = drm_client_init(dev, &helper->client, "fbdev", &omap_fbdev_client_funcs);
+ if (ret)
+ goto err_drm_client_init;
- fbdev = to_omap_fbdev(helper);
+ INIT_WORK(&fbdev->work, pan_worker);
- /* unpin the GEM object pinned in omap_fbdev_create() */
- if (fbdev->bo)
- omap_gem_unpin(fbdev->bo);
+ ret = omap_fbdev_client_hotplug(&helper->client);
+ if (ret)
+ drm_dbg_kms(dev, "client hotplug ret=%d\n", ret);
- /* this will free the backing object */
- if (fbdev->fb)
- drm_framebuffer_remove(fbdev->fb);
+ drm_client_register(&helper->client);
- kfree(fbdev);
+ return;
- priv->fbdev = NULL;
+err_drm_client_init:
+ drm_fb_helper_unprepare(helper);
+ kfree(fbdev);
}
diff --git a/drivers/gpu/drm/omapdrm/omap_fbdev.h b/drivers/gpu/drm/omapdrm/omap_fbdev.h
index 74a68a5a6eab..74c691a8d45f 100644
--- a/drivers/gpu/drm/omapdrm/omap_fbdev.h
+++ b/drivers/gpu/drm/omapdrm/omap_fbdev.h
@@ -10,16 +10,11 @@
#define __OMAPDRM_FBDEV_H__
struct drm_device;
-struct drm_fb_helper;
#ifdef CONFIG_DRM_FBDEV_EMULATION
-void omap_fbdev_init(struct drm_device *dev);
-void omap_fbdev_fini(struct drm_device *dev);
+void omap_fbdev_setup(struct drm_device *dev);
#else
-static inline void omap_fbdev_init(struct drm_device *dev)
-{
-}
-static inline void omap_fbdev_fini(struct drm_device *dev)
+static inline void omap_fbdev_setup(struct drm_device *dev)
{
}
#endif
diff --git a/drivers/gpu/drm/omapdrm/omap_gem.c b/drivers/gpu/drm/omapdrm/omap_gem.c
index cf571796fd26..6b58a5bb7b44 100644
--- a/drivers/gpu/drm/omapdrm/omap_gem.c
+++ b/drivers/gpu/drm/omapdrm/omap_gem.c
@@ -543,8 +543,7 @@ int omap_gem_mmap_obj(struct drm_gem_object *obj,
{
struct omap_gem_object *omap_obj = to_omap_bo(obj);
- vma->vm_flags &= ~VM_PFNMAP;
- vma->vm_flags |= VM_MIXEDMAP;
+ vm_flags_mod(vma, VM_MIXEDMAP, VM_PFNMAP);
if (omap_obj->flags & OMAP_BO_WC) {
vma->vm_page_prot = pgprot_writecombine(vm_get_page_prot(vma->vm_flags));
@@ -605,7 +604,7 @@ int omap_gem_dumb_create(struct drm_file *file, struct drm_device *dev,
}
/**
- * omap_gem_dumb_map - buffer mapping for dumb interface
+ * omap_gem_dumb_map_offset - create an offset for a dumb buffer
* @file: our drm client file
* @dev: drm device
* @handle: GEM handle to the object (from dumb_create)
diff --git a/drivers/gpu/drm/omapdrm/omap_gem_dmabuf.c b/drivers/gpu/drm/omapdrm/omap_gem_dmabuf.c
index 393f82e26927..3abc47521b2c 100644
--- a/drivers/gpu/drm/omapdrm/omap_gem_dmabuf.c
+++ b/drivers/gpu/drm/omapdrm/omap_gem_dmabuf.c
@@ -66,6 +66,8 @@ static int omap_gem_dmabuf_mmap(struct dma_buf *buffer,
struct drm_gem_object *obj = buffer->priv;
int ret = 0;
+ dma_resv_assert_held(buffer->resv);
+
ret = drm_gem_mmap_obj(obj, omap_gem_mmap_size(obj), vma);
if (ret < 0)
return ret;
@@ -125,7 +127,7 @@ struct drm_gem_object *omap_gem_prime_import(struct drm_device *dev,
get_dma_buf(dma_buf);
- sgt = dma_buf_map_attachment(attach, DMA_TO_DEVICE);
+ sgt = dma_buf_map_attachment_unlocked(attach, DMA_TO_DEVICE);
if (IS_ERR(sgt)) {
ret = PTR_ERR(sgt);
goto fail_detach;
@@ -142,7 +144,7 @@ struct drm_gem_object *omap_gem_prime_import(struct drm_device *dev,
return obj;
fail_unmap:
- dma_buf_unmap_attachment(attach, sgt, DMA_TO_DEVICE);
+ dma_buf_unmap_attachment_unlocked(attach, sgt, DMA_TO_DEVICE);
fail_detach:
dma_buf_detach(dma_buf, attach);
dma_buf_put(dma_buf);
diff --git a/drivers/gpu/drm/omapdrm/omap_irq.c b/drivers/gpu/drm/omapdrm/omap_irq.c
index 4aca14dab927..a6f0bbc879d2 100644
--- a/drivers/gpu/drm/omapdrm/omap_irq.c
+++ b/drivers/gpu/drm/omapdrm/omap_irq.c
@@ -99,7 +99,7 @@ int omap_irq_enable_framedone(struct drm_crtc *crtc, bool enable)
}
/**
- * enable_vblank - enable vblank interrupt events
+ * omap_irq_enable_vblank - enable vblank interrupt events
* @crtc: DRM CRTC
*
* Enable vblank interrupts for @crtc. If the device doesn't have
@@ -129,7 +129,7 @@ int omap_irq_enable_vblank(struct drm_crtc *crtc)
}
/**
- * disable_vblank - disable vblank interrupt events
+ * omap_irq_disable_vblank - disable vblank interrupt events
* @crtc: DRM CRTC
*
* Disable vblank interrupts for @crtc. If the device doesn't have
diff --git a/drivers/gpu/drm/panel/Kconfig b/drivers/gpu/drm/panel/Kconfig
index a582ddd583c2..2b9d6db7860b 100644
--- a/drivers/gpu/drm/panel/Kconfig
+++ b/drivers/gpu/drm/panel/Kconfig
@@ -37,6 +37,14 @@ config DRM_PANEL_ASUS_Z00T_TM5P5_NT35596
NT35596 1080x1920 video mode panel as found in some Asus
Zenfone 2 Laser Z00T devices.
+config DRM_PANEL_AUO_A030JTN01
+ tristate "AUO A030JTN01"
+ depends on SPI
+ select REGMAP_SPI
+ help
+ Say Y here to enable support for the AUO A030JTN01 320x480 3.0" panel
+ as found in the YLM RS-97 handheld gaming console.
+
config DRM_PANEL_BOE_BF060Y8M_AJ0
tristate "Boe BF060Y8M-AJ0 panel"
depends on OF
@@ -154,6 +162,18 @@ config DRM_PANEL_FEIYANG_FY07024DI26A30D
Say Y if you want to enable support for panels based on the
Feiyang FY07024DI26A30-D MIPI-DSI interface.
+config DRM_PANEL_HIMAX_HX8394
+ tristate "HIMAX HX8394 MIPI-DSI LCD panels"
+ depends on OF
+ depends on DRM_MIPI_DSI
+ depends on BACKLIGHT_CLASS_DEVICE
+ help
+ Say Y if you want to enable support for panels based on the
+ Himax HX8394 controller, such as the HannStar HSD060BHW4
+ 720x1440 TFT LCD panel that uses a MIPI-DSI interface.
+
+ If M is selected the module will be called panel-himax-hx8394.
+
config DRM_PANEL_ILITEK_IL9322
tristate "Ilitek ILI9322 320x240 QVGA panels"
depends on OF && SPI
@@ -203,6 +223,16 @@ config DRM_PANEL_INNOLUX_P079ZCA
24 bit RGB per pixel. It provides a MIPI DSI interface to
the host and has a built-in LED backlight.
+config DRM_PANEL_JADARD_JD9365DA_H3
+ tristate "Jadard JD9365DA-H3 WXGA DSI panel"
+ depends on OF
+ depends on DRM_MIPI_DSI
+ depends on BACKLIGHT_CLASS_DEVICE
+ help
+ Say Y here if you want to enable support for Jadard JD9365DA-H3
+ WXGA MIPI DSI panel. The panel support TFT dot matrix LCD with
+ 800RGBx1280 dots at maximum.
+
config DRM_PANEL_JDI_LT070ME05000
tristate "JDI LT070ME05000 WUXGA DSI panel"
depends on OF
@@ -288,6 +318,17 @@ config DRM_PANEL_LG_LG4573
Say Y here if you want to enable support for LG4573 RGB panel.
To compile this driver as a module, choose M here.
+config DRM_PANEL_MAGNACHIP_D53E6EA8966
+ tristate "Magnachip D53E6EA8966 DSI panel"
+ depends on OF && SPI
+ depends on DRM_MIPI_DSI
+ depends on BACKLIGHT_CLASS_DEVICE
+ select DRM_MIPI_DBI
+ help
+ DRM panel driver for the Samsung AMS495QA01 panel controlled
+ with the Magnachip D53E6EA8966 panel IC. This panel receives
+ video data via DSI but commands via 9-bit SPI using DBI.
+
config DRM_PANEL_NEC_NL8048HL11
tristate "NEC NL8048HL11 RGB panel"
depends on GPIOLIB && OF && SPI
@@ -296,6 +337,15 @@ config DRM_PANEL_NEC_NL8048HL11
panel (found on the Zoom2/3/3630 SDP boards). To compile this driver
as a module, choose M here.
+config DRM_PANEL_NEWVISION_NV3051D
+ tristate "NewVision NV3051D DSI panel"
+ depends on OF
+ depends on DRM_MIPI_DSI
+ depends on BACKLIGHT_CLASS_DEVICE
+ help
+ This driver supports the NV3051D based panel found on the Anbernic
+ RG353P and RG353V.
+
config DRM_PANEL_NEWVISION_NV3052C
tristate "NewVision NV3052C RGB/SPI panel"
depends on OF && SPI
@@ -338,6 +388,16 @@ config DRM_PANEL_NOVATEK_NT35950
Sharp panels used in Sony Xperia Z5 Premium and XZ Premium
mobile phones.
+config DRM_PANEL_NOVATEK_NT36523
+ tristate "Novatek NT36523 panel driver"
+ depends on OF
+ depends on DRM_MIPI_DSI
+ depends on BACKLIGHT_CLASS_DEVICE
+ help
+ Say Y here if you want to enable support for the panels built
+ around the Novatek NT36523 display controller, such as some
+ Boe panels used in Xiaomi Mi Pad 5 and 5 Pro tablets.
+
config DRM_PANEL_NOVATEK_NT36672A
tristate "Novatek NT36672A DSI panel"
depends on OF
@@ -381,6 +441,15 @@ config DRM_PANEL_OLIMEX_LCD_OLINUXINO
Say Y here if you want to enable support for Olimex Ltd.
LCD-OLinuXino panel.
+config DRM_PANEL_ORISETECH_OTA5601A
+ tristate "Orise Technology ota5601a RGB/SPI panel"
+ depends on SPI
+ depends on BACKLIGHT_CLASS_DEVICE
+ select REGMAP_SPI
+ help
+ Say Y here if you want to enable support for the panels built
+ around the Orise Technology OTA9601A display controller.
+
config DRM_PANEL_ORISETECH_OTM8009A
tristate "Orise Technology otm8009a 480x800 dsi 2dl panel"
depends on OF
@@ -637,6 +706,16 @@ config DRM_PANEL_SONY_ACX565AKM
Say Y here if you want to enable support for the Sony ACX565AKM
800x600 3.5" panel (found on the Nokia N900).
+config DRM_PANEL_SONY_TD4353_JDI
+ tristate "Sony TD4353 JDI panel"
+ depends on GPIOLIB && OF
+ depends on DRM_MIPI_DSI
+ depends on BACKLIGHT_CLASS_DEVICE
+ help
+ Say Y here if you want to enable support for the Sony Tama
+ TD4353 JDI command mode panel as found on some Sony Xperia
+ XZ2 and XZ2 Compact smartphones.
+
config DRM_PANEL_SONY_TULIP_TRULY_NT35521
tristate "Sony Tulip Truly NT35521 panel"
depends on GPIOLIB && OF
@@ -698,6 +777,15 @@ config DRM_PANEL_VISIONOX_RM69299
Say Y here if you want to enable support for Visionox
RM69299 DSI Video Mode panel.
+config DRM_PANEL_VISIONOX_VTDR6130
+ tristate "Visionox VTDR6130"
+ depends on OF
+ depends on DRM_MIPI_DSI
+ depends on BACKLIGHT_CLASS_DEVICE
+ help
+ Say Y here if you want to enable support for Visionox
+ VTDR6130 1080x2400 AMOLED DSI panel.
+
config DRM_PANEL_WIDECHIPS_WS2401
tristate "Widechips WS2401 DPI panel driver"
depends on SPI && GPIOLIB
diff --git a/drivers/gpu/drm/panel/Makefile b/drivers/gpu/drm/panel/Makefile
index 34e717382dbb..ff169781e82d 100644
--- a/drivers/gpu/drm/panel/Makefile
+++ b/drivers/gpu/drm/panel/Makefile
@@ -2,6 +2,7 @@
obj-$(CONFIG_DRM_PANEL_ABT_Y030XX067A) += panel-abt-y030xx067a.o
obj-$(CONFIG_DRM_PANEL_ARM_VERSATILE) += panel-arm-versatile.o
obj-$(CONFIG_DRM_PANEL_ASUS_Z00T_TM5P5_NT35596) += panel-asus-z00t-tm5p5-n35596.o
+obj-$(CONFIG_DRM_PANEL_AUO_A030JTN01) += panel-auo-a030jtn01.o
obj-$(CONFIG_DRM_PANEL_BOE_BF060Y8M_AJ0) += panel-boe-bf060y8m-aj0.o
obj-$(CONFIG_DRM_PANEL_BOE_HIMAX8279D) += panel-boe-himax8279d.o
obj-$(CONFIG_DRM_PANEL_BOE_TV101WUM_NL6) += panel-boe-tv101wum-nl6.o
@@ -13,11 +14,13 @@ obj-$(CONFIG_DRM_PANEL_EBBG_FT8719) += panel-ebbg-ft8719.o
obj-$(CONFIG_DRM_PANEL_ELIDA_KD35T133) += panel-elida-kd35t133.o
obj-$(CONFIG_DRM_PANEL_FEIXIN_K101_IM2BA02) += panel-feixin-k101-im2ba02.o
obj-$(CONFIG_DRM_PANEL_FEIYANG_FY07024DI26A30D) += panel-feiyang-fy07024di26a30d.o
+obj-$(CONFIG_DRM_PANEL_HIMAX_HX8394) += panel-himax-hx8394.o
obj-$(CONFIG_DRM_PANEL_ILITEK_IL9322) += panel-ilitek-ili9322.o
obj-$(CONFIG_DRM_PANEL_ILITEK_ILI9341) += panel-ilitek-ili9341.o
obj-$(CONFIG_DRM_PANEL_ILITEK_ILI9881C) += panel-ilitek-ili9881c.o
obj-$(CONFIG_DRM_PANEL_INNOLUX_EJ030NA) += panel-innolux-ej030na.o
obj-$(CONFIG_DRM_PANEL_INNOLUX_P079ZCA) += panel-innolux-p079zca.o
+obj-$(CONFIG_DRM_PANEL_JADARD_JD9365DA_H3) += panel-jadard-jd9365da-h3.o
obj-$(CONFIG_DRM_PANEL_JDI_LT070ME05000) += panel-jdi-lt070me05000.o
obj-$(CONFIG_DRM_PANEL_JDI_R63452) += panel-jdi-fhd-r63452.o
obj-$(CONFIG_DRM_PANEL_KHADAS_TS050) += panel-khadas-ts050.o
@@ -26,15 +29,19 @@ obj-$(CONFIG_DRM_PANEL_LEADTEK_LTK050H3146W) += panel-leadtek-ltk050h3146w.o
obj-$(CONFIG_DRM_PANEL_LEADTEK_LTK500HD1829) += panel-leadtek-ltk500hd1829.o
obj-$(CONFIG_DRM_PANEL_LG_LB035Q02) += panel-lg-lb035q02.o
obj-$(CONFIG_DRM_PANEL_LG_LG4573) += panel-lg-lg4573.o
+obj-$(CONFIG_DRM_PANEL_MAGNACHIP_D53E6EA8966) += panel-magnachip-d53e6ea8966.o
obj-$(CONFIG_DRM_PANEL_NEC_NL8048HL11) += panel-nec-nl8048hl11.o
+obj-$(CONFIG_DRM_PANEL_NEWVISION_NV3051D) += panel-newvision-nv3051d.o
obj-$(CONFIG_DRM_PANEL_NEWVISION_NV3052C) += panel-newvision-nv3052c.o
obj-$(CONFIG_DRM_PANEL_NOVATEK_NT35510) += panel-novatek-nt35510.o
obj-$(CONFIG_DRM_PANEL_NOVATEK_NT35560) += panel-novatek-nt35560.o
obj-$(CONFIG_DRM_PANEL_NOVATEK_NT35950) += panel-novatek-nt35950.o
+obj-$(CONFIG_DRM_PANEL_NOVATEK_NT36523) += panel-novatek-nt36523.o
obj-$(CONFIG_DRM_PANEL_NOVATEK_NT36672A) += panel-novatek-nt36672a.o
obj-$(CONFIG_DRM_PANEL_NOVATEK_NT39016) += panel-novatek-nt39016.o
obj-$(CONFIG_DRM_PANEL_MANTIX_MLAF057WE51) += panel-mantix-mlaf057we51.o
obj-$(CONFIG_DRM_PANEL_OLIMEX_LCD_OLINUXINO) += panel-olimex-lcd-olinuxino.o
+obj-$(CONFIG_DRM_PANEL_ORISETECH_OTA5601A) += panel-orisetech-ota5601a.o
obj-$(CONFIG_DRM_PANEL_ORISETECH_OTM8009A) += panel-orisetech-otm8009a.o
obj-$(CONFIG_DRM_PANEL_OSD_OSD101T2587_53TS) += panel-osd-osd101t2587-53ts.o
obj-$(CONFIG_DRM_PANEL_PANASONIC_VVX10F034N00) += panel-panasonic-vvx10f034n00.o
@@ -64,6 +71,7 @@ obj-$(CONFIG_DRM_PANEL_SITRONIX_ST7701) += panel-sitronix-st7701.o
obj-$(CONFIG_DRM_PANEL_SITRONIX_ST7703) += panel-sitronix-st7703.o
obj-$(CONFIG_DRM_PANEL_SITRONIX_ST7789V) += panel-sitronix-st7789v.o
obj-$(CONFIG_DRM_PANEL_SONY_ACX565AKM) += panel-sony-acx565akm.o
+obj-$(CONFIG_DRM_PANEL_SONY_TD4353_JDI) += panel-sony-td4353-jdi.o
obj-$(CONFIG_DRM_PANEL_SONY_TULIP_TRULY_NT35521) += panel-sony-tulip-truly-nt35521.o
obj-$(CONFIG_DRM_PANEL_TDO_TL070WSH30) += panel-tdo-tl070wsh30.o
obj-$(CONFIG_DRM_PANEL_TPO_TD028TTEC1) += panel-tpo-td028ttec1.o
@@ -71,5 +79,6 @@ obj-$(CONFIG_DRM_PANEL_TPO_TD043MTEA1) += panel-tpo-td043mtea1.o
obj-$(CONFIG_DRM_PANEL_TPO_TPG110) += panel-tpo-tpg110.o
obj-$(CONFIG_DRM_PANEL_TRULY_NT35597_WQXGA) += panel-truly-nt35597.o
obj-$(CONFIG_DRM_PANEL_VISIONOX_RM69299) += panel-visionox-rm69299.o
+obj-$(CONFIG_DRM_PANEL_VISIONOX_VTDR6130) += panel-visionox-vtdr6130.o
obj-$(CONFIG_DRM_PANEL_WIDECHIPS_WS2401) += panel-widechips-ws2401.o
obj-$(CONFIG_DRM_PANEL_XINPENG_XPP055C272) += panel-xinpeng-xpp055c272.o
diff --git a/drivers/gpu/drm/panel/panel-asus-z00t-tm5p5-n35596.c b/drivers/gpu/drm/panel/panel-asus-z00t-tm5p5-n35596.c
index b3235781e6ba..075a7af81eff 100644
--- a/drivers/gpu/drm/panel/panel-asus-z00t-tm5p5-n35596.c
+++ b/drivers/gpu/drm/panel/panel-asus-z00t-tm5p5-n35596.c
@@ -24,22 +24,6 @@ static inline struct tm5p5_nt35596 *to_tm5p5_nt35596(struct drm_panel *panel)
return container_of(panel, struct tm5p5_nt35596, panel);
}
-#define dsi_generic_write_seq(dsi, seq...) do { \
- static const u8 d[] = { seq }; \
- int ret; \
- ret = mipi_dsi_generic_write(dsi, d, ARRAY_SIZE(d)); \
- if (ret < 0) \
- return ret; \
- } while (0)
-
-#define dsi_dcs_write_seq(dsi, seq...) do { \
- static const u8 d[] = { seq }; \
- int ret; \
- ret = mipi_dsi_dcs_write_buffer(dsi, d, ARRAY_SIZE(d)); \
- if (ret < 0) \
- return ret; \
- } while (0)
-
static void tm5p5_nt35596_reset(struct tm5p5_nt35596 *ctx)
{
gpiod_set_value_cansleep(ctx->reset_gpio, 1);
@@ -54,46 +38,46 @@ static int tm5p5_nt35596_on(struct tm5p5_nt35596 *ctx)
{
struct mipi_dsi_device *dsi = ctx->dsi;
- dsi_generic_write_seq(dsi, 0xff, 0x05);
- dsi_generic_write_seq(dsi, 0xfb, 0x01);
- dsi_generic_write_seq(dsi, 0xc5, 0x31);
- dsi_generic_write_seq(dsi, 0xff, 0x04);
- dsi_generic_write_seq(dsi, 0x01, 0x84);
- dsi_generic_write_seq(dsi, 0x05, 0x25);
- dsi_generic_write_seq(dsi, 0x06, 0x01);
- dsi_generic_write_seq(dsi, 0x07, 0x20);
- dsi_generic_write_seq(dsi, 0x08, 0x06);
- dsi_generic_write_seq(dsi, 0x09, 0x08);
- dsi_generic_write_seq(dsi, 0x0a, 0x10);
- dsi_generic_write_seq(dsi, 0x0b, 0x10);
- dsi_generic_write_seq(dsi, 0x0c, 0x10);
- dsi_generic_write_seq(dsi, 0x0d, 0x14);
- dsi_generic_write_seq(dsi, 0x0e, 0x14);
- dsi_generic_write_seq(dsi, 0x0f, 0x14);
- dsi_generic_write_seq(dsi, 0x10, 0x14);
- dsi_generic_write_seq(dsi, 0x11, 0x14);
- dsi_generic_write_seq(dsi, 0x12, 0x14);
- dsi_generic_write_seq(dsi, 0x17, 0xf3);
- dsi_generic_write_seq(dsi, 0x18, 0xc0);
- dsi_generic_write_seq(dsi, 0x19, 0xc0);
- dsi_generic_write_seq(dsi, 0x1a, 0xc0);
- dsi_generic_write_seq(dsi, 0x1b, 0xb3);
- dsi_generic_write_seq(dsi, 0x1c, 0xb3);
- dsi_generic_write_seq(dsi, 0x1d, 0xb3);
- dsi_generic_write_seq(dsi, 0x1e, 0xb3);
- dsi_generic_write_seq(dsi, 0x1f, 0xb3);
- dsi_generic_write_seq(dsi, 0x20, 0xb3);
- dsi_generic_write_seq(dsi, 0xfb, 0x01);
- dsi_generic_write_seq(dsi, 0xff, 0x00);
- dsi_generic_write_seq(dsi, 0xfb, 0x01);
- dsi_generic_write_seq(dsi, 0x35, 0x01);
- dsi_generic_write_seq(dsi, 0xd3, 0x06);
- dsi_generic_write_seq(dsi, 0xd4, 0x04);
- dsi_generic_write_seq(dsi, 0x5e, 0x0d);
- dsi_generic_write_seq(dsi, 0x11, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0xff, 0x05);
+ mipi_dsi_generic_write_seq(dsi, 0xfb, 0x01);
+ mipi_dsi_generic_write_seq(dsi, 0xc5, 0x31);
+ mipi_dsi_generic_write_seq(dsi, 0xff, 0x04);
+ mipi_dsi_generic_write_seq(dsi, 0x01, 0x84);
+ mipi_dsi_generic_write_seq(dsi, 0x05, 0x25);
+ mipi_dsi_generic_write_seq(dsi, 0x06, 0x01);
+ mipi_dsi_generic_write_seq(dsi, 0x07, 0x20);
+ mipi_dsi_generic_write_seq(dsi, 0x08, 0x06);
+ mipi_dsi_generic_write_seq(dsi, 0x09, 0x08);
+ mipi_dsi_generic_write_seq(dsi, 0x0a, 0x10);
+ mipi_dsi_generic_write_seq(dsi, 0x0b, 0x10);
+ mipi_dsi_generic_write_seq(dsi, 0x0c, 0x10);
+ mipi_dsi_generic_write_seq(dsi, 0x0d, 0x14);
+ mipi_dsi_generic_write_seq(dsi, 0x0e, 0x14);
+ mipi_dsi_generic_write_seq(dsi, 0x0f, 0x14);
+ mipi_dsi_generic_write_seq(dsi, 0x10, 0x14);
+ mipi_dsi_generic_write_seq(dsi, 0x11, 0x14);
+ mipi_dsi_generic_write_seq(dsi, 0x12, 0x14);
+ mipi_dsi_generic_write_seq(dsi, 0x17, 0xf3);
+ mipi_dsi_generic_write_seq(dsi, 0x18, 0xc0);
+ mipi_dsi_generic_write_seq(dsi, 0x19, 0xc0);
+ mipi_dsi_generic_write_seq(dsi, 0x1a, 0xc0);
+ mipi_dsi_generic_write_seq(dsi, 0x1b, 0xb3);
+ mipi_dsi_generic_write_seq(dsi, 0x1c, 0xb3);
+ mipi_dsi_generic_write_seq(dsi, 0x1d, 0xb3);
+ mipi_dsi_generic_write_seq(dsi, 0x1e, 0xb3);
+ mipi_dsi_generic_write_seq(dsi, 0x1f, 0xb3);
+ mipi_dsi_generic_write_seq(dsi, 0x20, 0xb3);
+ mipi_dsi_generic_write_seq(dsi, 0xfb, 0x01);
+ mipi_dsi_generic_write_seq(dsi, 0xff, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0xfb, 0x01);
+ mipi_dsi_generic_write_seq(dsi, 0x35, 0x01);
+ mipi_dsi_generic_write_seq(dsi, 0xd3, 0x06);
+ mipi_dsi_generic_write_seq(dsi, 0xd4, 0x04);
+ mipi_dsi_generic_write_seq(dsi, 0x5e, 0x0d);
+ mipi_dsi_generic_write_seq(dsi, 0x11, 0x00);
msleep(100);
- dsi_generic_write_seq(dsi, 0x29, 0x00);
- dsi_generic_write_seq(dsi, 0x53, 0x24);
+ mipi_dsi_generic_write_seq(dsi, 0x29, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0x53, 0x24);
return 0;
}
@@ -117,7 +101,7 @@ static int tm5p5_nt35596_off(struct tm5p5_nt35596 *ctx)
return ret;
}
- dsi_dcs_write_seq(dsi, 0x4f, 0x01);
+ mipi_dsi_dcs_write_seq(dsi, 0x4f, 0x01);
return 0;
}
diff --git a/drivers/gpu/drm/panel/panel-auo-a030jtn01.c b/drivers/gpu/drm/panel/panel-auo-a030jtn01.c
new file mode 100644
index 000000000000..3c976a98de6a
--- /dev/null
+++ b/drivers/gpu/drm/panel/panel-auo-a030jtn01.c
@@ -0,0 +1,308 @@
+// SPDX-License-Identifier: GPL-2.0
+/*
+ * AU Optronics A030JTN01.0 TFT LCD panel driver
+ *
+ * Copyright (C) 2023, Paul Cercueil <paul@crapouillou.net>
+ * Copyright (C) 2023, Christophe Branchereau <cbranchereau@gmail.com>
+ */
+
+#include <linux/bitfield.h>
+#include <linux/delay.h>
+#include <linux/device.h>
+#include <linux/gpio/consumer.h>
+#include <linux/media-bus-format.h>
+#include <linux/module.h>
+#include <linux/of_device.h>
+#include <linux/regmap.h>
+#include <linux/regulator/consumer.h>
+#include <linux/spi/spi.h>
+
+#include <drm/drm_modes.h>
+#include <drm/drm_panel.h>
+
+#define REG05 0x05
+#define REG06 0x06
+#define REG07 0x07
+
+#define REG05_STDBY BIT(0)
+#define REG06_VBLK GENMASK(4, 0)
+#define REG07_HBLK GENMASK(7, 0)
+
+
+struct a030jtn01_info {
+ const struct drm_display_mode *display_modes;
+ unsigned int num_modes;
+ u16 width_mm, height_mm;
+ u32 bus_format, bus_flags;
+};
+
+struct a030jtn01 {
+ struct drm_panel panel;
+ struct spi_device *spi;
+ struct regmap *map;
+
+ const struct a030jtn01_info *panel_info;
+
+ struct regulator *supply;
+ struct gpio_desc *reset_gpio;
+};
+
+static inline struct a030jtn01 *to_a030jtn01(struct drm_panel *panel)
+{
+ return container_of(panel, struct a030jtn01, panel);
+}
+
+static int a030jtn01_prepare(struct drm_panel *panel)
+{
+ struct a030jtn01 *priv = to_a030jtn01(panel);
+ struct device *dev = &priv->spi->dev;
+ unsigned int dummy;
+ int err;
+
+ err = regulator_enable(priv->supply);
+ if (err) {
+ dev_err(dev, "Failed to enable power supply: %d\n", err);
+ return err;
+ }
+
+ usleep_range(1000, 8000);
+
+ /* Reset the chip */
+ gpiod_set_value_cansleep(priv->reset_gpio, 1);
+ usleep_range(100, 8000);
+ gpiod_set_value_cansleep(priv->reset_gpio, 0);
+ usleep_range(2000, 8000);
+
+ /*
+ * No idea why, but a register read (doesn't matter which) is needed to
+ * properly initialize the chip after a reset; otherwise, the colors
+ * will be wrong. It doesn't seem to be timing-related as a msleep(200)
+ * doesn't fix it.
+ */
+ err = regmap_read(priv->map, REG05, &dummy);
+ if (err)
+ goto err_disable_regulator;
+
+ /* Use (24 + 6) == 0x1e as the vertical back porch */
+ err = regmap_write(priv->map, REG06, FIELD_PREP(REG06_VBLK, 0x1e));
+ if (err)
+ goto err_disable_regulator;
+
+ /* Use (42 + 30) * 3 == 0xd8 as the horizontal back porch */
+ err = regmap_write(priv->map, REG07, FIELD_PREP(REG07_HBLK, 0xd8));
+ if (err)
+ goto err_disable_regulator;
+
+ return 0;
+
+err_disable_regulator:
+ gpiod_set_value_cansleep(priv->reset_gpio, 1);
+ regulator_disable(priv->supply);
+ return err;
+}
+
+static int a030jtn01_unprepare(struct drm_panel *panel)
+{
+ struct a030jtn01 *priv = to_a030jtn01(panel);
+
+ gpiod_set_value_cansleep(priv->reset_gpio, 1);
+ regulator_disable(priv->supply);
+
+ return 0;
+}
+
+static int a030jtn01_enable(struct drm_panel *panel)
+{
+ struct a030jtn01 *priv = to_a030jtn01(panel);
+ int ret;
+
+ ret = regmap_set_bits(priv->map, REG05, REG05_STDBY);
+ if (ret)
+ return ret;
+
+ /* Wait for the picture to be stable */
+ if (panel->backlight)
+ msleep(100);
+
+ return 0;
+}
+
+static int a030jtn01_disable(struct drm_panel *panel)
+{
+ struct a030jtn01 *priv = to_a030jtn01(panel);
+
+ return regmap_clear_bits(priv->map, REG05, REG05_STDBY);
+}
+
+static int a030jtn01_get_modes(struct drm_panel *panel,
+ struct drm_connector *connector)
+{
+ struct a030jtn01 *priv = to_a030jtn01(panel);
+ const struct a030jtn01_info *panel_info = priv->panel_info;
+ struct drm_display_mode *mode;
+ unsigned int i;
+
+ for (i = 0; i < panel_info->num_modes; i++) {
+ mode = drm_mode_duplicate(connector->dev,
+ &panel_info->display_modes[i]);
+ if (!mode)
+ return -ENOMEM;
+
+ drm_mode_set_name(mode);
+
+ mode->type = DRM_MODE_TYPE_DRIVER;
+ if (panel_info->num_modes == 1)
+ mode->type |= DRM_MODE_TYPE_PREFERRED;
+
+ drm_mode_probed_add(connector, mode);
+ }
+
+ connector->display_info.bpc = 8;
+ connector->display_info.width_mm = panel_info->width_mm;
+ connector->display_info.height_mm = panel_info->height_mm;
+
+ drm_display_info_set_bus_formats(&connector->display_info,
+ &panel_info->bus_format, 1);
+ connector->display_info.bus_flags = panel_info->bus_flags;
+
+ return panel_info->num_modes;
+}
+
+static const struct drm_panel_funcs a030jtn01_funcs = {
+ .prepare = a030jtn01_prepare,
+ .unprepare = a030jtn01_unprepare,
+ .enable = a030jtn01_enable,
+ .disable = a030jtn01_disable,
+ .get_modes = a030jtn01_get_modes,
+};
+
+static bool a030jtn01_has_reg(struct device *dev, unsigned int reg)
+{
+ static const u32 a030jtn01_regs_mask = 0x001823f1fb;
+
+ return a030jtn01_regs_mask & BIT(reg);
+};
+
+static const struct regmap_config a030jtn01_regmap_config = {
+ .reg_bits = 8,
+ .val_bits = 8,
+ .read_flag_mask = 0x40,
+ .max_register = 0x1c,
+ .readable_reg = a030jtn01_has_reg,
+ .writeable_reg = a030jtn01_has_reg,
+};
+
+static int a030jtn01_probe(struct spi_device *spi)
+{
+ struct device *dev = &spi->dev;
+ struct a030jtn01 *priv;
+ int err;
+
+ spi->mode |= SPI_MODE_3 | SPI_3WIRE;
+
+ priv = devm_kzalloc(dev, sizeof(*priv), GFP_KERNEL);
+ if (!priv)
+ return -ENOMEM;
+
+ priv->spi = spi;
+ spi_set_drvdata(spi, priv);
+
+ priv->map = devm_regmap_init_spi(spi, &a030jtn01_regmap_config);
+ if (IS_ERR(priv->map))
+ return dev_err_probe(dev, PTR_ERR(priv->map), "Unable to init regmap");
+
+ priv->panel_info = spi_get_device_match_data(spi);
+ if (!priv->panel_info)
+ return -EINVAL;
+
+ priv->supply = devm_regulator_get(dev, "power");
+ if (IS_ERR(priv->supply))
+ return dev_err_probe(dev, PTR_ERR(priv->supply), "Failed to get power supply");
+
+ priv->reset_gpio = devm_gpiod_get(dev, "reset", GPIOD_OUT_HIGH);
+ if (IS_ERR(priv->reset_gpio))
+ return dev_err_probe(dev, PTR_ERR(priv->reset_gpio), "Failed to get reset GPIO");
+
+ drm_panel_init(&priv->panel, dev, &a030jtn01_funcs,
+ DRM_MODE_CONNECTOR_DPI);
+
+ err = drm_panel_of_backlight(&priv->panel);
+ if (err)
+ return err;
+
+ drm_panel_add(&priv->panel);
+
+ return 0;
+}
+
+static void a030jtn01_remove(struct spi_device *spi)
+{
+ struct a030jtn01 *priv = spi_get_drvdata(spi);
+
+ drm_panel_remove(&priv->panel);
+ drm_panel_disable(&priv->panel);
+ drm_panel_unprepare(&priv->panel);
+}
+
+static const struct drm_display_mode a030jtn01_modes[] = {
+ { /* 60 Hz */
+ .clock = 14400,
+ .hdisplay = 320,
+ .hsync_start = 320 + 8,
+ .hsync_end = 320 + 8 + 42,
+ .htotal = 320 + 8 + 42 + 30,
+ .vdisplay = 480,
+ .vsync_start = 480 + 90,
+ .vsync_end = 480 + 90 + 24,
+ .vtotal = 480 + 90 + 24 + 6,
+ .flags = DRM_MODE_FLAG_NHSYNC | DRM_MODE_FLAG_NVSYNC,
+ },
+ { /* 50 Hz */
+ .clock = 12000,
+ .hdisplay = 320,
+ .hsync_start = 320 + 8,
+ .hsync_end = 320 + 8 + 42,
+ .htotal = 320 + 8 + 42 + 30,
+ .vdisplay = 480,
+ .vsync_start = 480 + 90,
+ .vsync_end = 480 + 90 + 24,
+ .vtotal = 480 + 90 + 24 + 6,
+ .flags = DRM_MODE_FLAG_NHSYNC | DRM_MODE_FLAG_NVSYNC,
+ },
+};
+
+static const struct a030jtn01_info a030jtn01_info = {
+ .display_modes = a030jtn01_modes,
+ .num_modes = ARRAY_SIZE(a030jtn01_modes),
+ .width_mm = 70,
+ .height_mm = 51,
+ .bus_format = MEDIA_BUS_FMT_RGB888_3X8_DELTA,
+ .bus_flags = DRM_BUS_FLAG_PIXDATA_DRIVE_NEGEDGE,
+};
+
+static const struct spi_device_id a030jtn01_id[] = {
+ { "a030jtn01", (kernel_ulong_t) &a030jtn01_info },
+ { /* sentinel */ }
+};
+MODULE_DEVICE_TABLE(spi, a030jtn01_id);
+
+static const struct of_device_id a030jtn01_of_match[] = {
+ { .compatible = "auo,a030jtn01" },
+ { /* sentinel */ }
+};
+MODULE_DEVICE_TABLE(of, a030jtn01_of_match);
+
+static struct spi_driver a030jtn01_driver = {
+ .driver = {
+ .name = "auo-a030jtn01",
+ .of_match_table = a030jtn01_of_match,
+ },
+ .id_table = a030jtn01_id,
+ .probe = a030jtn01_probe,
+ .remove = a030jtn01_remove,
+};
+module_spi_driver(a030jtn01_driver);
+
+MODULE_AUTHOR("Paul Cercueil <paul@crapouillou.net>");
+MODULE_AUTHOR("Christophe Branchereau <cbranchereau@gmail.com>");
+MODULE_LICENSE("GPL");
diff --git a/drivers/gpu/drm/panel/panel-boe-bf060y8m-aj0.c b/drivers/gpu/drm/panel/panel-boe-bf060y8m-aj0.c
index ad58840eda41..90098b753e3b 100644
--- a/drivers/gpu/drm/panel/panel-boe-bf060y8m-aj0.c
+++ b/drivers/gpu/drm/panel/panel-boe-bf060y8m-aj0.c
@@ -43,14 +43,6 @@ struct boe_bf060y8m_aj0 *to_boe_bf060y8m_aj0(struct drm_panel *panel)
return container_of(panel, struct boe_bf060y8m_aj0, panel);
}
-#define dsi_dcs_write_seq(dsi, seq...) do { \
- static const u8 d[] = { seq }; \
- int ret; \
- ret = mipi_dsi_dcs_write_buffer(dsi, d, ARRAY_SIZE(d)); \
- if (ret < 0) \
- return ret; \
- } while (0)
-
static void boe_bf060y8m_aj0_reset(struct boe_bf060y8m_aj0 *boe)
{
gpiod_set_value_cansleep(boe->reset_gpio, 0);
@@ -67,12 +59,12 @@ static int boe_bf060y8m_aj0_on(struct boe_bf060y8m_aj0 *boe)
struct device *dev = &dsi->dev;
int ret;
- dsi_dcs_write_seq(dsi, 0xb0, 0xa5, 0x00);
- dsi_dcs_write_seq(dsi, 0xb2, 0x00, 0x4c);
- dsi_dcs_write_seq(dsi, MIPI_DCS_SET_3D_CONTROL, 0x10);
- dsi_dcs_write_seq(dsi, MIPI_DCS_WRITE_POWER_SAVE, DCS_ALLOW_HBM_RANGE);
- dsi_dcs_write_seq(dsi, 0xf8,
- 0x00, 0x08, 0x10, 0x00, 0x22, 0x00, 0x00, 0x2d);
+ mipi_dsi_dcs_write_seq(dsi, 0xb0, 0xa5, 0x00);
+ mipi_dsi_dcs_write_seq(dsi, 0xb2, 0x00, 0x4c);
+ mipi_dsi_dcs_write_seq(dsi, MIPI_DCS_SET_3D_CONTROL, 0x10);
+ mipi_dsi_dcs_write_seq(dsi, MIPI_DCS_WRITE_POWER_SAVE, DCS_ALLOW_HBM_RANGE);
+ mipi_dsi_dcs_write_seq(dsi, 0xf8,
+ 0x00, 0x08, 0x10, 0x00, 0x22, 0x00, 0x00, 0x2d);
ret = mipi_dsi_dcs_exit_sleep_mode(dsi);
if (ret < 0) {
@@ -81,17 +73,17 @@ static int boe_bf060y8m_aj0_on(struct boe_bf060y8m_aj0 *boe)
}
msleep(30);
- dsi_dcs_write_seq(dsi, 0xb0, 0xa5, 0x00);
- dsi_dcs_write_seq(dsi, 0xc0,
- 0x08, 0x48, 0x65, 0x33, 0x33, 0x33,
- 0x2a, 0x31, 0x39, 0x20, 0x09);
- dsi_dcs_write_seq(dsi, 0xc1, 0x00, 0x00, 0x00, 0x1f, 0x1f,
- 0x1f, 0x1f, 0x1f, 0x1f, 0x1f, 0x1f, 0x1f,
- 0x1f, 0x1f, 0x1f, 0x1f, 0x1f, 0x1f);
- dsi_dcs_write_seq(dsi, 0xe2, 0x20, 0x04, 0x10, 0x12, 0x92,
- 0x4f, 0x8f, 0x44, 0x84, 0x83, 0x83, 0x83,
- 0x5c, 0x5c, 0x5c);
- dsi_dcs_write_seq(dsi, 0xde, 0x01, 0x2c, 0x00, 0x77, 0x3e);
+ mipi_dsi_dcs_write_seq(dsi, 0xb0, 0xa5, 0x00);
+ mipi_dsi_dcs_write_seq(dsi, 0xc0,
+ 0x08, 0x48, 0x65, 0x33, 0x33, 0x33,
+ 0x2a, 0x31, 0x39, 0x20, 0x09);
+ mipi_dsi_dcs_write_seq(dsi, 0xc1, 0x00, 0x00, 0x00, 0x1f, 0x1f,
+ 0x1f, 0x1f, 0x1f, 0x1f, 0x1f, 0x1f, 0x1f,
+ 0x1f, 0x1f, 0x1f, 0x1f, 0x1f, 0x1f);
+ mipi_dsi_dcs_write_seq(dsi, 0xe2, 0x20, 0x04, 0x10, 0x12, 0x92,
+ 0x4f, 0x8f, 0x44, 0x84, 0x83, 0x83, 0x83,
+ 0x5c, 0x5c, 0x5c);
+ mipi_dsi_dcs_write_seq(dsi, 0xde, 0x01, 0x2c, 0x00, 0x77, 0x3e);
msleep(30);
diff --git a/drivers/gpu/drm/panel/panel-boe-tv101wum-nl6.c b/drivers/gpu/drm/panel/panel-boe-tv101wum-nl6.c
index 857a2f0420d7..783234ae0f57 100644
--- a/drivers/gpu/drm/panel/panel-boe-tv101wum-nl6.c
+++ b/drivers/gpu/drm/panel/panel-boe-tv101wum-nl6.c
@@ -1131,6 +1131,103 @@ static const struct panel_init_cmd auo_b101uan08_3_init_cmd[] = {
{},
};
+static const struct panel_init_cmd starry_qfh032011_53g_init_cmd[] = {
+ _INIT_DCS_CMD(0xB0, 0x01),
+ _INIT_DCS_CMD(0xC3, 0x4F),
+ _INIT_DCS_CMD(0xC4, 0x40),
+ _INIT_DCS_CMD(0xC5, 0x40),
+ _INIT_DCS_CMD(0xC6, 0x40),
+ _INIT_DCS_CMD(0xC7, 0x40),
+ _INIT_DCS_CMD(0xC8, 0x4D),
+ _INIT_DCS_CMD(0xC9, 0x52),
+ _INIT_DCS_CMD(0xCA, 0x51),
+ _INIT_DCS_CMD(0xCD, 0x5D),
+ _INIT_DCS_CMD(0xCE, 0x5B),
+ _INIT_DCS_CMD(0xCF, 0x4B),
+ _INIT_DCS_CMD(0xD0, 0x49),
+ _INIT_DCS_CMD(0xD1, 0x47),
+ _INIT_DCS_CMD(0xD2, 0x45),
+ _INIT_DCS_CMD(0xD3, 0x41),
+ _INIT_DCS_CMD(0xD7, 0x50),
+ _INIT_DCS_CMD(0xD8, 0x40),
+ _INIT_DCS_CMD(0xD9, 0x40),
+ _INIT_DCS_CMD(0xDA, 0x40),
+ _INIT_DCS_CMD(0xDB, 0x40),
+ _INIT_DCS_CMD(0xDC, 0x4E),
+ _INIT_DCS_CMD(0xDD, 0x52),
+ _INIT_DCS_CMD(0xDE, 0x51),
+ _INIT_DCS_CMD(0xE1, 0x5E),
+ _INIT_DCS_CMD(0xE2, 0x5C),
+ _INIT_DCS_CMD(0xE3, 0x4C),
+ _INIT_DCS_CMD(0xE4, 0x4A),
+ _INIT_DCS_CMD(0xE5, 0x48),
+ _INIT_DCS_CMD(0xE6, 0x46),
+ _INIT_DCS_CMD(0xE7, 0x42),
+ _INIT_DCS_CMD(0xB0, 0x03),
+ _INIT_DCS_CMD(0xBE, 0x03),
+ _INIT_DCS_CMD(0xCC, 0x44),
+ _INIT_DCS_CMD(0xC8, 0x07),
+ _INIT_DCS_CMD(0xC9, 0x05),
+ _INIT_DCS_CMD(0xCA, 0x42),
+ _INIT_DCS_CMD(0xCD, 0x3E),
+ _INIT_DCS_CMD(0xCF, 0x60),
+ _INIT_DCS_CMD(0xD2, 0x04),
+ _INIT_DCS_CMD(0xD3, 0x04),
+ _INIT_DCS_CMD(0xD4, 0x01),
+ _INIT_DCS_CMD(0xD5, 0x00),
+ _INIT_DCS_CMD(0xD6, 0x03),
+ _INIT_DCS_CMD(0xD7, 0x04),
+ _INIT_DCS_CMD(0xD9, 0x01),
+ _INIT_DCS_CMD(0xDB, 0x01),
+ _INIT_DCS_CMD(0xE4, 0xF0),
+ _INIT_DCS_CMD(0xE5, 0x0A),
+ _INIT_DCS_CMD(0xB0, 0x00),
+ _INIT_DCS_CMD(0xCC, 0x08),
+ _INIT_DCS_CMD(0xC2, 0x08),
+ _INIT_DCS_CMD(0xC4, 0x10),
+ _INIT_DCS_CMD(0xB0, 0x02),
+ _INIT_DCS_CMD(0xC0, 0x00),
+ _INIT_DCS_CMD(0xC1, 0x0A),
+ _INIT_DCS_CMD(0xC2, 0x20),
+ _INIT_DCS_CMD(0xC3, 0x24),
+ _INIT_DCS_CMD(0xC4, 0x23),
+ _INIT_DCS_CMD(0xC5, 0x29),
+ _INIT_DCS_CMD(0xC6, 0x23),
+ _INIT_DCS_CMD(0xC7, 0x1C),
+ _INIT_DCS_CMD(0xC8, 0x19),
+ _INIT_DCS_CMD(0xC9, 0x17),
+ _INIT_DCS_CMD(0xCA, 0x17),
+ _INIT_DCS_CMD(0xCB, 0x18),
+ _INIT_DCS_CMD(0xCC, 0x1A),
+ _INIT_DCS_CMD(0xCD, 0x1E),
+ _INIT_DCS_CMD(0xCE, 0x20),
+ _INIT_DCS_CMD(0xCF, 0x23),
+ _INIT_DCS_CMD(0xD0, 0x07),
+ _INIT_DCS_CMD(0xD1, 0x00),
+ _INIT_DCS_CMD(0xD2, 0x00),
+ _INIT_DCS_CMD(0xD3, 0x0A),
+ _INIT_DCS_CMD(0xD4, 0x13),
+ _INIT_DCS_CMD(0xD5, 0x1C),
+ _INIT_DCS_CMD(0xD6, 0x1A),
+ _INIT_DCS_CMD(0xD7, 0x13),
+ _INIT_DCS_CMD(0xD8, 0x17),
+ _INIT_DCS_CMD(0xD9, 0x1C),
+ _INIT_DCS_CMD(0xDA, 0x19),
+ _INIT_DCS_CMD(0xDB, 0x17),
+ _INIT_DCS_CMD(0xDC, 0x17),
+ _INIT_DCS_CMD(0xDD, 0x18),
+ _INIT_DCS_CMD(0xDE, 0x1A),
+ _INIT_DCS_CMD(0xDF, 0x1E),
+ _INIT_DCS_CMD(0xE0, 0x20),
+ _INIT_DCS_CMD(0xE1, 0x23),
+ _INIT_DCS_CMD(0xE2, 0x07),
+ _INIT_DCS_CMD(0X11),
+ _INIT_DELAY_CMD(120),
+ _INIT_DCS_CMD(0X29),
+ _INIT_DELAY_CMD(80),
+ {},
+};
+
static inline struct boe_panel *to_boe_panel(struct drm_panel *panel)
{
return container_of(panel, struct boe_panel, base);
@@ -1193,14 +1290,11 @@ static int boe_panel_enter_sleep_mode(struct boe_panel *boe)
return 0;
}
-static int boe_panel_unprepare(struct drm_panel *panel)
+static int boe_panel_disable(struct drm_panel *panel)
{
struct boe_panel *boe = to_boe_panel(panel);
int ret;
- if (!boe->prepared)
- return 0;
-
ret = boe_panel_enter_sleep_mode(boe);
if (ret < 0) {
dev_err(panel->dev, "failed to set panel off: %d\n", ret);
@@ -1209,6 +1303,16 @@ static int boe_panel_unprepare(struct drm_panel *panel)
msleep(150);
+ return 0;
+}
+
+static int boe_panel_unprepare(struct drm_panel *panel)
+{
+ struct boe_panel *boe = to_boe_panel(panel);
+
+ if (!boe->prepared)
+ return 0;
+
if (boe->desc->discharge_on_disable) {
regulator_disable(boe->avee);
regulator_disable(boe->avdd);
@@ -1490,6 +1594,32 @@ static const struct panel_desc boe_tv105wum_nw0_desc = {
.init_cmds = boe_init_cmd,
};
+static const struct drm_display_mode starry_qfh032011_53g_default_mode = {
+ .clock = 165731,
+ .hdisplay = 1200,
+ .hsync_start = 1200 + 100,
+ .hsync_end = 1200 + 100 + 10,
+ .htotal = 1200 + 100 + 10 + 100,
+ .vdisplay = 1920,
+ .vsync_start = 1920 + 14,
+ .vsync_end = 1920 + 14 + 10,
+ .vtotal = 1920 + 14 + 10 + 15,
+};
+
+static const struct panel_desc starry_qfh032011_53g_desc = {
+ .modes = &starry_qfh032011_53g_default_mode,
+ .bpc = 8,
+ .size = {
+ .width_mm = 135,
+ .height_mm = 216,
+ },
+ .lanes = 4,
+ .format = MIPI_DSI_FMT_RGB888,
+ .mode_flags = MIPI_DSI_MODE_VIDEO | MIPI_DSI_MODE_VIDEO_SYNC_PULSE |
+ MIPI_DSI_MODE_LPM,
+ .init_cmds = starry_qfh032011_53g_init_cmd,
+};
+
static int boe_panel_get_modes(struct drm_panel *panel,
struct drm_connector *connector)
{
@@ -1528,6 +1658,7 @@ static enum drm_panel_orientation boe_panel_get_orientation(struct drm_panel *pa
}
static const struct drm_panel_funcs boe_panel_funcs = {
+ .disable = boe_panel_disable,
.unprepare = boe_panel_unprepare,
.prepare = boe_panel_prepare,
.enable = boe_panel_enable,
@@ -1659,6 +1790,9 @@ static const struct of_device_id boe_of_match[] = {
{ .compatible = "innolux,hj110iz-01a",
.data = &inx_hj110iz_desc
},
+ { .compatible = "starry,2081101qfh032011-53g",
+ .data = &starry_qfh032011_53g_desc
+ },
{ /* sentinel */ }
};
MODULE_DEVICE_TABLE(of, boe_of_match);
diff --git a/drivers/gpu/drm/panel/panel-edp.c b/drivers/gpu/drm/panel/panel-edp.c
index 4b39d1dd9140..e23ddab2126e 100644
--- a/drivers/gpu/drm/panel/panel-edp.c
+++ b/drivers/gpu/drm/panel/panel-edp.c
@@ -351,7 +351,7 @@ static void panel_edp_wait(ktime_t start_ktime, unsigned int min_ms)
return;
min_ktime = ktime_add(start_ktime, ms_to_ktime(min_ms));
- now_ktime = ktime_get();
+ now_ktime = ktime_get_boottime();
if (ktime_before(now_ktime, min_ktime))
msleep(ktime_to_ms(ktime_sub(min_ktime, now_ktime)) + 1);
@@ -378,7 +378,7 @@ static int panel_edp_suspend(struct device *dev)
gpiod_set_value_cansleep(p->enable_gpio, 0);
regulator_disable(p->supply);
- p->unprepared_time = ktime_get();
+ p->unprepared_time = ktime_get_boottime();
return 0;
}
@@ -464,14 +464,14 @@ static int panel_edp_prepare_once(struct panel_edp *p)
}
}
- p->prepared_time = ktime_get();
+ p->prepared_time = ktime_get_boottime();
return 0;
error:
gpiod_set_value_cansleep(p->enable_gpio, 0);
regulator_disable(p->supply);
- p->unprepared_time = ktime_get();
+ p->unprepared_time = ktime_get_boottime();
return err;
}
@@ -1871,6 +1871,7 @@ static const struct edp_panel_entry edp_panels[] = {
EDP_PANEL_ENTRY('A', 'U', 'O', 0x1e9b, &delay_200_500_e50, "B133UAN02.1"),
EDP_PANEL_ENTRY('A', 'U', 'O', 0x1ea5, &delay_200_500_e50, "B116XAK01.6"),
EDP_PANEL_ENTRY('A', 'U', 'O', 0x405c, &auo_b116xak01.delay, "B116XAK01"),
+ EDP_PANEL_ENTRY('A', 'U', 'O', 0x582d, &delay_200_500_e50, "B133UAN01.0"),
EDP_PANEL_ENTRY('A', 'U', 'O', 0x615c, &delay_200_500_e50, "B116XAN06.1"),
EDP_PANEL_ENTRY('A', 'U', 'O', 0x8594, &delay_200_500_e50, "B133UAN01.0"),
@@ -1878,18 +1879,22 @@ static const struct edp_panel_entry edp_panels[] = {
EDP_PANEL_ENTRY('B', 'O', 'E', 0x07d1, &boe_nv133fhm_n61.delay, "NV133FHM-N61"),
EDP_PANEL_ENTRY('B', 'O', 'E', 0x082d, &boe_nv133fhm_n61.delay, "NV133FHM-N62"),
EDP_PANEL_ENTRY('B', 'O', 'E', 0x094b, &delay_200_500_e50, "NT116WHM-N21"),
+ EDP_PANEL_ENTRY('B', 'O', 'E', 0x095f, &delay_200_500_e50, "NE135FBM-N41 v8.1"),
EDP_PANEL_ENTRY('B', 'O', 'E', 0x098d, &boe_nv110wtm_n61.delay, "NV110WTM-N61"),
EDP_PANEL_ENTRY('B', 'O', 'E', 0x09dd, &delay_200_500_e50, "NT116WHM-N21"),
EDP_PANEL_ENTRY('B', 'O', 'E', 0x0a5d, &delay_200_500_e50, "NV116WHM-N45"),
EDP_PANEL_ENTRY('B', 'O', 'E', 0x0ac5, &delay_200_500_e50, "NV116WHM-N4C"),
+ EDP_PANEL_ENTRY('C', 'M', 'N', 0x1139, &delay_200_500_e80_d50, "N116BGE-EA2"),
EDP_PANEL_ENTRY('C', 'M', 'N', 0x114c, &innolux_n116bca_ea1.delay, "N116BCA-EA1"),
EDP_PANEL_ENTRY('C', 'M', 'N', 0x1152, &delay_200_500_e80_d50, "N116BCN-EA1"),
+ EDP_PANEL_ENTRY('C', 'M', 'N', 0x1153, &delay_200_500_e80_d50, "N116BGE-EA2"),
EDP_PANEL_ENTRY('C', 'M', 'N', 0x1154, &delay_200_500_e80_d50, "N116BCA-EA2"),
EDP_PANEL_ENTRY('C', 'M', 'N', 0x1247, &delay_200_500_e80_d50, "N120ACA-EA1"),
EDP_PANEL_ENTRY('I', 'V', 'O', 0x057d, &delay_200_500_e200, "R140NWF5 RH"),
- EDP_PANEL_ENTRY('I', 'V', 'O', 0x854b, &delay_200_500_p2e100, "M133NW4J-R3"),
+ EDP_PANEL_ENTRY('I', 'V', 'O', 0x854a, &delay_200_500_p2e100, "M133NW4J"),
+ EDP_PANEL_ENTRY('I', 'V', 'O', 0x854b, &delay_200_500_p2e100, "R133NW4K-R0"),
EDP_PANEL_ENTRY('K', 'D', 'B', 0x0624, &kingdisplay_kd116n21_30nv_a010.delay, "116N21-30NV-A010"),
EDP_PANEL_ENTRY('K', 'D', 'B', 0x1120, &delay_200_500_e80_d50, "116N29-30NK-C007"),
diff --git a/drivers/gpu/drm/panel/panel-elida-kd35t133.c b/drivers/gpu/drm/panel/panel-elida-kd35t133.c
index eee714cf3f49..e7be15b68102 100644
--- a/drivers/gpu/drm/panel/panel-elida-kd35t133.c
+++ b/drivers/gpu/drm/panel/panel-elida-kd35t133.c
@@ -51,14 +51,6 @@ static inline struct kd35t133 *panel_to_kd35t133(struct drm_panel *panel)
return container_of(panel, struct kd35t133, panel);
}
-#define dsi_dcs_write_seq(dsi, cmd, seq...) do { \
- static const u8 b[] = { cmd, seq }; \
- int ret; \
- ret = mipi_dsi_dcs_write_buffer(dsi, b, ARRAY_SIZE(b)); \
- if (ret < 0) \
- return ret; \
- } while (0)
-
static int kd35t133_init_sequence(struct kd35t133 *ctx)
{
struct mipi_dsi_device *dsi = to_mipi_dsi_device(ctx->dev);
@@ -68,25 +60,25 @@ static int kd35t133_init_sequence(struct kd35t133 *ctx)
* Init sequence was supplied by the panel vendor with minimal
* documentation.
*/
- dsi_dcs_write_seq(dsi, KD35T133_CMD_POSITIVEGAMMA,
- 0x00, 0x13, 0x18, 0x04, 0x0f, 0x06, 0x3a, 0x56,
- 0x4d, 0x03, 0x0a, 0x06, 0x30, 0x3e, 0x0f);
- dsi_dcs_write_seq(dsi, KD35T133_CMD_NEGATIVEGAMMA,
- 0x00, 0x13, 0x18, 0x01, 0x11, 0x06, 0x38, 0x34,
- 0x4d, 0x06, 0x0d, 0x0b, 0x31, 0x37, 0x0f);
- dsi_dcs_write_seq(dsi, KD35T133_CMD_POWERCONTROL1, 0x18, 0x17);
- dsi_dcs_write_seq(dsi, KD35T133_CMD_POWERCONTROL2, 0x41);
- dsi_dcs_write_seq(dsi, KD35T133_CMD_VCOMCONTROL, 0x00, 0x1a, 0x80);
- dsi_dcs_write_seq(dsi, MIPI_DCS_SET_ADDRESS_MODE, 0x48);
- dsi_dcs_write_seq(dsi, MIPI_DCS_SET_PIXEL_FORMAT, 0x55);
- dsi_dcs_write_seq(dsi, KD35T133_CMD_INTERFACEMODECTRL, 0x00);
- dsi_dcs_write_seq(dsi, KD35T133_CMD_FRAMERATECTRL, 0xa0);
- dsi_dcs_write_seq(dsi, KD35T133_CMD_DISPLAYINVERSIONCTRL, 0x02);
- dsi_dcs_write_seq(dsi, KD35T133_CMD_DISPLAYFUNCTIONCTRL,
- 0x20, 0x02);
- dsi_dcs_write_seq(dsi, KD35T133_CMD_SETIMAGEFUNCTION, 0x00);
- dsi_dcs_write_seq(dsi, KD35T133_CMD_ADJUSTCONTROL3,
- 0xa9, 0x51, 0x2c, 0x82);
+ mipi_dsi_dcs_write_seq(dsi, KD35T133_CMD_POSITIVEGAMMA,
+ 0x00, 0x13, 0x18, 0x04, 0x0f, 0x06, 0x3a, 0x56,
+ 0x4d, 0x03, 0x0a, 0x06, 0x30, 0x3e, 0x0f);
+ mipi_dsi_dcs_write_seq(dsi, KD35T133_CMD_NEGATIVEGAMMA,
+ 0x00, 0x13, 0x18, 0x01, 0x11, 0x06, 0x38, 0x34,
+ 0x4d, 0x06, 0x0d, 0x0b, 0x31, 0x37, 0x0f);
+ mipi_dsi_dcs_write_seq(dsi, KD35T133_CMD_POWERCONTROL1, 0x18, 0x17);
+ mipi_dsi_dcs_write_seq(dsi, KD35T133_CMD_POWERCONTROL2, 0x41);
+ mipi_dsi_dcs_write_seq(dsi, KD35T133_CMD_VCOMCONTROL, 0x00, 0x1a, 0x80);
+ mipi_dsi_dcs_write_seq(dsi, MIPI_DCS_SET_ADDRESS_MODE, 0x48);
+ mipi_dsi_dcs_write_seq(dsi, MIPI_DCS_SET_PIXEL_FORMAT, 0x55);
+ mipi_dsi_dcs_write_seq(dsi, KD35T133_CMD_INTERFACEMODECTRL, 0x00);
+ mipi_dsi_dcs_write_seq(dsi, KD35T133_CMD_FRAMERATECTRL, 0xa0);
+ mipi_dsi_dcs_write_seq(dsi, KD35T133_CMD_DISPLAYINVERSIONCTRL, 0x02);
+ mipi_dsi_dcs_write_seq(dsi, KD35T133_CMD_DISPLAYFUNCTIONCTRL,
+ 0x20, 0x02);
+ mipi_dsi_dcs_write_seq(dsi, KD35T133_CMD_SETIMAGEFUNCTION, 0x00);
+ mipi_dsi_dcs_write_seq(dsi, KD35T133_CMD_ADJUSTCONTROL3,
+ 0xa9, 0x51, 0x2c, 0x82);
mipi_dsi_dcs_write(dsi, MIPI_DCS_ENTER_INVERT_MODE, NULL, 0);
dev_dbg(dev, "Panel init sequence done\n");
diff --git a/drivers/gpu/drm/panel/panel-himax-hx8394.c b/drivers/gpu/drm/panel/panel-himax-hx8394.c
new file mode 100644
index 000000000000..d4fb5d1b295b
--- /dev/null
+++ b/drivers/gpu/drm/panel/panel-himax-hx8394.c
@@ -0,0 +1,451 @@
+// SPDX-License-Identifier: GPL-2.0
+/*
+ * Driver for panels based on Himax HX8394 controller, such as:
+ *
+ * - HannStar HSD060BHW4 5.99" MIPI-DSI panel
+ *
+ * Copyright (C) 2021 Kamil Trzciński
+ *
+ * Based on drivers/gpu/drm/panel/panel-sitronix-st7703.c
+ * Copyright (C) Purism SPC 2019
+ */
+
+#include <linux/delay.h>
+#include <linux/gpio/consumer.h>
+#include <linux/media-bus-format.h>
+#include <linux/mod_devicetable.h>
+#include <linux/module.h>
+#include <linux/of_device.h>
+#include <linux/regulator/consumer.h>
+
+#include <video/mipi_display.h>
+
+#include <drm/drm_mipi_dsi.h>
+#include <drm/drm_modes.h>
+#include <drm/drm_panel.h>
+
+#define DRV_NAME "panel-himax-hx8394"
+
+/* Manufacturer specific commands sent via DSI, listed in HX8394-F datasheet */
+#define HX8394_CMD_SETSEQUENCE 0xb0
+#define HX8394_CMD_SETPOWER 0xb1
+#define HX8394_CMD_SETDISP 0xb2
+#define HX8394_CMD_SETCYC 0xb4
+#define HX8394_CMD_SETVCOM 0xb6
+#define HX8394_CMD_SETTE 0xb7
+#define HX8394_CMD_SETSENSOR 0xb8
+#define HX8394_CMD_SETEXTC 0xb9
+#define HX8394_CMD_SETMIPI 0xba
+#define HX8394_CMD_SETOTP 0xbb
+#define HX8394_CMD_SETREGBANK 0xbd
+#define HX8394_CMD_UNKNOWN1 0xc0
+#define HX8394_CMD_SETDGCLUT 0xc1
+#define HX8394_CMD_SETID 0xc3
+#define HX8394_CMD_SETDDB 0xc4
+#define HX8394_CMD_UNKNOWN2 0xc6
+#define HX8394_CMD_SETCABC 0xc9
+#define HX8394_CMD_SETCABCGAIN 0xca
+#define HX8394_CMD_SETPANEL 0xcc
+#define HX8394_CMD_SETOFFSET 0xd2
+#define HX8394_CMD_SETGIP0 0xd3
+#define HX8394_CMD_UNKNOWN3 0xd4
+#define HX8394_CMD_SETGIP1 0xd5
+#define HX8394_CMD_SETGIP2 0xd6
+#define HX8394_CMD_SETGPO 0xd6
+#define HX8394_CMD_SETSCALING 0xdd
+#define HX8394_CMD_SETIDLE 0xdf
+#define HX8394_CMD_SETGAMMA 0xe0
+#define HX8394_CMD_SETCHEMODE_DYN 0xe4
+#define HX8394_CMD_SETCHE 0xe5
+#define HX8394_CMD_SETCESEL 0xe6
+#define HX8394_CMD_SET_SP_CMD 0xe9
+#define HX8394_CMD_SETREADINDEX 0xfe
+#define HX8394_CMD_GETSPIREAD 0xff
+
+struct hx8394 {
+ struct device *dev;
+ struct drm_panel panel;
+ struct gpio_desc *reset_gpio;
+ struct regulator *vcc;
+ struct regulator *iovcc;
+ bool prepared;
+
+ const struct hx8394_panel_desc *desc;
+};
+
+struct hx8394_panel_desc {
+ const struct drm_display_mode *mode;
+ unsigned int lanes;
+ unsigned long mode_flags;
+ enum mipi_dsi_pixel_format format;
+ int (*init_sequence)(struct hx8394 *ctx);
+};
+
+static inline struct hx8394 *panel_to_hx8394(struct drm_panel *panel)
+{
+ return container_of(panel, struct hx8394, panel);
+}
+
+static int hsd060bhw4_init_sequence(struct hx8394 *ctx)
+{
+ struct mipi_dsi_device *dsi = to_mipi_dsi_device(ctx->dev);
+
+ /* 5.19.8 SETEXTC: Set extension command (B9h) */
+ mipi_dsi_dcs_write_seq(dsi, HX8394_CMD_SETEXTC,
+ 0xff, 0x83, 0x94);
+
+ /* 5.19.2 SETPOWER: Set power (B1h) */
+ mipi_dsi_dcs_write_seq(dsi, HX8394_CMD_SETPOWER,
+ 0x48, 0x11, 0x71, 0x09, 0x32, 0x24, 0x71, 0x31, 0x55, 0x30);
+
+ /* 5.19.9 SETMIPI: Set MIPI control (BAh) */
+ mipi_dsi_dcs_write_seq(dsi, HX8394_CMD_SETMIPI,
+ 0x63, 0x03, 0x68, 0x6b, 0xb2, 0xc0);
+
+ /* 5.19.3 SETDISP: Set display related register (B2h) */
+ mipi_dsi_dcs_write_seq(dsi, HX8394_CMD_SETDISP,
+ 0x00, 0x80, 0x78, 0x0c, 0x07);
+
+ /* 5.19.4 SETCYC: Set display waveform cycles (B4h) */
+ mipi_dsi_dcs_write_seq(dsi, HX8394_CMD_SETCYC,
+ 0x12, 0x63, 0x12, 0x63, 0x12, 0x63, 0x01, 0x0c, 0x7c, 0x55,
+ 0x00, 0x3f, 0x12, 0x6b, 0x12, 0x6b, 0x12, 0x6b, 0x01, 0x0c,
+ 0x7c);
+
+ /* 5.19.19 SETGIP0: Set GIP Option0 (D3h) */
+ mipi_dsi_dcs_write_seq(dsi, HX8394_CMD_SETGIP0,
+ 0x00, 0x00, 0x00, 0x00, 0x3c, 0x1c, 0x00, 0x00, 0x32, 0x10,
+ 0x09, 0x00, 0x09, 0x32, 0x15, 0xad, 0x05, 0xad, 0x32, 0x00,
+ 0x00, 0x00, 0x00, 0x37, 0x03, 0x0b, 0x0b, 0x37, 0x00, 0x00,
+ 0x00, 0x0c, 0x40);
+
+ /* 5.19.20 Set GIP Option1 (D5h) */
+ mipi_dsi_dcs_write_seq(dsi, HX8394_CMD_SETGIP1,
+ 0x19, 0x19, 0x18, 0x18, 0x1b, 0x1b, 0x1a, 0x1a, 0x00, 0x01,
+ 0x02, 0x03, 0x04, 0x05, 0x06, 0x07, 0x20, 0x21, 0x18, 0x18,
+ 0x18, 0x18, 0x18, 0x18, 0x18, 0x18, 0x18, 0x18, 0x18, 0x18,
+ 0x24, 0x25, 0x18, 0x18, 0x18, 0x18, 0x18, 0x18,
+ 0x18, 0x18, 0x18, 0x18, 0x18, 0x18);
+
+ /* 5.19.21 Set GIP Option2 (D6h) */
+ mipi_dsi_dcs_write_seq(dsi, HX8394_CMD_SETGIP2,
+ 0x18, 0x18, 0x19, 0x19, 0x1b, 0x1b, 0x1a, 0x1a, 0x07, 0x06,
+ 0x05, 0x04, 0x03, 0x02, 0x01, 0x00, 0x25, 0x24, 0x18, 0x18,
+ 0x18, 0x18, 0x18, 0x18, 0x18, 0x18, 0x18, 0x18, 0x18, 0x18,
+ 0x21, 0x20, 0x18, 0x18, 0x18, 0x18, 0x18, 0x18,
+ 0x18, 0x18, 0x18, 0x18, 0x18, 0x18);
+
+ /* 5.19.25 SETGAMMA: Set gamma curve related setting (E0h) */
+ mipi_dsi_dcs_write_seq(dsi, HX8394_CMD_SETGAMMA,
+ 0x00, 0x04, 0x0c, 0x12, 0x14, 0x18, 0x1a, 0x18, 0x31, 0x3f,
+ 0x4d, 0x4c, 0x54, 0x65, 0x6b, 0x70, 0x7f, 0x82, 0x7e, 0x8a,
+ 0x99, 0x4a, 0x48, 0x49, 0x4b, 0x4a, 0x4c, 0x4b, 0x7f, 0x00,
+ 0x04, 0x0c, 0x11, 0x13, 0x17, 0x1a, 0x18, 0x31,
+ 0x3f, 0x4d, 0x4c, 0x54, 0x65, 0x6b, 0x70, 0x7f,
+ 0x82, 0x7e, 0x8a, 0x99, 0x4a, 0x48, 0x49, 0x4b,
+ 0x4a, 0x4c, 0x4b, 0x7f);
+
+ /* 5.19.17 SETPANEL (CCh) */
+ mipi_dsi_dcs_write_seq(dsi, HX8394_CMD_SETPANEL,
+ 0x0b);
+
+ /* Unknown command, not listed in the HX8394-F datasheet */
+ mipi_dsi_dcs_write_seq(dsi, HX8394_CMD_UNKNOWN1,
+ 0x1f, 0x31);
+
+ /* 5.19.5 SETVCOM: Set VCOM voltage (B6h) */
+ mipi_dsi_dcs_write_seq(dsi, HX8394_CMD_SETVCOM,
+ 0x7d, 0x7d);
+
+ /* Unknown command, not listed in the HX8394-F datasheet */
+ mipi_dsi_dcs_write_seq(dsi, HX8394_CMD_UNKNOWN3,
+ 0x02);
+
+ /* 5.19.11 Set register bank (BDh) */
+ mipi_dsi_dcs_write_seq(dsi, HX8394_CMD_SETREGBANK,
+ 0x01);
+
+ /* 5.19.2 SETPOWER: Set power (B1h) */
+ mipi_dsi_dcs_write_seq(dsi, HX8394_CMD_SETPOWER,
+ 0x00);
+
+ /* 5.19.11 Set register bank (BDh) */
+ mipi_dsi_dcs_write_seq(dsi, HX8394_CMD_SETREGBANK,
+ 0x00);
+
+ /* Unknown command, not listed in the HX8394-F datasheet */
+ mipi_dsi_dcs_write_seq(dsi, HX8394_CMD_UNKNOWN3,
+ 0xed);
+
+ return 0;
+}
+
+static const struct drm_display_mode hsd060bhw4_mode = {
+ .hdisplay = 720,
+ .hsync_start = 720 + 40,
+ .hsync_end = 720 + 40 + 46,
+ .htotal = 720 + 40 + 46 + 40,
+ .vdisplay = 1440,
+ .vsync_start = 1440 + 9,
+ .vsync_end = 1440 + 9 + 7,
+ .vtotal = 1440 + 9 + 7 + 7,
+ .clock = 74250,
+ .flags = DRM_MODE_FLAG_NHSYNC | DRM_MODE_FLAG_NVSYNC,
+ .width_mm = 68,
+ .height_mm = 136,
+};
+
+static const struct hx8394_panel_desc hsd060bhw4_desc = {
+ .mode = &hsd060bhw4_mode,
+ .lanes = 4,
+ .mode_flags = MIPI_DSI_MODE_VIDEO | MIPI_DSI_MODE_VIDEO_BURST,
+ .format = MIPI_DSI_FMT_RGB888,
+ .init_sequence = hsd060bhw4_init_sequence,
+};
+
+static int hx8394_enable(struct drm_panel *panel)
+{
+ struct hx8394 *ctx = panel_to_hx8394(panel);
+ struct mipi_dsi_device *dsi = to_mipi_dsi_device(ctx->dev);
+ int ret;
+
+ ret = ctx->desc->init_sequence(ctx);
+ if (ret) {
+ dev_err(ctx->dev, "Panel init sequence failed: %d\n", ret);
+ return ret;
+ }
+
+ ret = mipi_dsi_dcs_exit_sleep_mode(dsi);
+ if (ret) {
+ dev_err(ctx->dev, "Failed to exit sleep mode: %d\n", ret);
+ return ret;
+ }
+
+ /* Panel is operational 120 msec after reset */
+ msleep(120);
+
+ ret = mipi_dsi_dcs_set_display_on(dsi);
+ if (ret) {
+ dev_err(ctx->dev, "Failed to turn on the display: %d\n", ret);
+ goto sleep_in;
+ }
+
+ return 0;
+
+sleep_in:
+ /* This will probably fail, but let's try orderly power off anyway. */
+ ret = mipi_dsi_dcs_enter_sleep_mode(dsi);
+ if (!ret)
+ msleep(50);
+
+ return ret;
+}
+
+static int hx8394_disable(struct drm_panel *panel)
+{
+ struct hx8394 *ctx = panel_to_hx8394(panel);
+ struct mipi_dsi_device *dsi = to_mipi_dsi_device(ctx->dev);
+ int ret;
+
+ ret = mipi_dsi_dcs_enter_sleep_mode(dsi);
+ if (ret) {
+ dev_err(ctx->dev, "Failed to enter sleep mode: %d\n", ret);
+ return ret;
+ }
+
+ msleep(50); /* about 3 frames */
+
+ return 0;
+}
+
+static int hx8394_unprepare(struct drm_panel *panel)
+{
+ struct hx8394 *ctx = panel_to_hx8394(panel);
+
+ if (!ctx->prepared)
+ return 0;
+
+ gpiod_set_value_cansleep(ctx->reset_gpio, 1);
+
+ regulator_disable(ctx->iovcc);
+ regulator_disable(ctx->vcc);
+
+ ctx->prepared = false;
+
+ return 0;
+}
+
+static int hx8394_prepare(struct drm_panel *panel)
+{
+ struct hx8394 *ctx = panel_to_hx8394(panel);
+ int ret;
+
+ if (ctx->prepared)
+ return 0;
+
+ gpiod_set_value_cansleep(ctx->reset_gpio, 1);
+
+ ret = regulator_enable(ctx->vcc);
+ if (ret) {
+ dev_err(ctx->dev, "Failed to enable vcc supply: %d\n", ret);
+ return ret;
+ }
+
+ ret = regulator_enable(ctx->iovcc);
+ if (ret) {
+ dev_err(ctx->dev, "Failed to enable iovcc supply: %d\n", ret);
+ goto disable_vcc;
+ }
+
+ gpiod_set_value_cansleep(ctx->reset_gpio, 0);
+
+ msleep(180);
+
+ ctx->prepared = true;
+
+ return 0;
+
+disable_vcc:
+ gpiod_set_value_cansleep(ctx->reset_gpio, 1);
+ regulator_disable(ctx->vcc);
+ return ret;
+}
+
+static int hx8394_get_modes(struct drm_panel *panel,
+ struct drm_connector *connector)
+{
+ struct hx8394 *ctx = panel_to_hx8394(panel);
+ struct drm_display_mode *mode;
+
+ mode = drm_mode_duplicate(connector->dev, ctx->desc->mode);
+ if (!mode) {
+ dev_err(ctx->dev, "Failed to add mode %ux%u@%u\n",
+ ctx->desc->mode->hdisplay, ctx->desc->mode->vdisplay,
+ drm_mode_vrefresh(ctx->desc->mode));
+ return -ENOMEM;
+ }
+
+ drm_mode_set_name(mode);
+
+ mode->type = DRM_MODE_TYPE_DRIVER | DRM_MODE_TYPE_PREFERRED;
+ connector->display_info.width_mm = mode->width_mm;
+ connector->display_info.height_mm = mode->height_mm;
+ drm_mode_probed_add(connector, mode);
+
+ return 1;
+}
+
+static const struct drm_panel_funcs hx8394_drm_funcs = {
+ .disable = hx8394_disable,
+ .unprepare = hx8394_unprepare,
+ .prepare = hx8394_prepare,
+ .enable = hx8394_enable,
+ .get_modes = hx8394_get_modes,
+};
+
+static int hx8394_probe(struct mipi_dsi_device *dsi)
+{
+ struct device *dev = &dsi->dev;
+ struct hx8394 *ctx;
+ int ret;
+
+ ctx = devm_kzalloc(dev, sizeof(*ctx), GFP_KERNEL);
+ if (!ctx)
+ return -ENOMEM;
+
+ ctx->reset_gpio = devm_gpiod_get(dev, "reset", GPIOD_OUT_HIGH);
+ if (IS_ERR(ctx->reset_gpio))
+ return dev_err_probe(dev, PTR_ERR(ctx->reset_gpio),
+ "Failed to get reset gpio\n");
+
+ mipi_dsi_set_drvdata(dsi, ctx);
+
+ ctx->dev = dev;
+ ctx->desc = of_device_get_match_data(dev);
+
+ dsi->mode_flags = ctx->desc->mode_flags;
+ dsi->format = ctx->desc->format;
+ dsi->lanes = ctx->desc->lanes;
+
+ ctx->vcc = devm_regulator_get(dev, "vcc");
+ if (IS_ERR(ctx->vcc))
+ return dev_err_probe(dev, PTR_ERR(ctx->vcc),
+ "Failed to request vcc regulator\n");
+
+ ctx->iovcc = devm_regulator_get(dev, "iovcc");
+ if (IS_ERR(ctx->iovcc))
+ return dev_err_probe(dev, PTR_ERR(ctx->iovcc),
+ "Failed to request iovcc regulator\n");
+
+ drm_panel_init(&ctx->panel, dev, &hx8394_drm_funcs,
+ DRM_MODE_CONNECTOR_DSI);
+
+ ret = drm_panel_of_backlight(&ctx->panel);
+ if (ret)
+ return ret;
+
+ drm_panel_add(&ctx->panel);
+
+ ret = mipi_dsi_attach(dsi);
+ if (ret < 0) {
+ dev_err_probe(dev, ret, "mipi_dsi_attach failed\n");
+ drm_panel_remove(&ctx->panel);
+ return ret;
+ }
+
+ dev_dbg(dev, "%ux%u@%u %ubpp dsi %udl - ready\n",
+ ctx->desc->mode->hdisplay, ctx->desc->mode->vdisplay,
+ drm_mode_vrefresh(ctx->desc->mode),
+ mipi_dsi_pixel_format_to_bpp(dsi->format), dsi->lanes);
+
+ return 0;
+}
+
+static void hx8394_shutdown(struct mipi_dsi_device *dsi)
+{
+ struct hx8394 *ctx = mipi_dsi_get_drvdata(dsi);
+ int ret;
+
+ ret = drm_panel_disable(&ctx->panel);
+ if (ret < 0)
+ dev_err(&dsi->dev, "Failed to disable panel: %d\n", ret);
+
+ ret = drm_panel_unprepare(&ctx->panel);
+ if (ret < 0)
+ dev_err(&dsi->dev, "Failed to unprepare panel: %d\n", ret);
+}
+
+static void hx8394_remove(struct mipi_dsi_device *dsi)
+{
+ struct hx8394 *ctx = mipi_dsi_get_drvdata(dsi);
+ int ret;
+
+ hx8394_shutdown(dsi);
+
+ ret = mipi_dsi_detach(dsi);
+ if (ret < 0)
+ dev_err(&dsi->dev, "Failed to detach from DSI host: %d\n", ret);
+
+ drm_panel_remove(&ctx->panel);
+}
+
+static const struct of_device_id hx8394_of_match[] = {
+ { .compatible = "hannstar,hsd060bhw4", .data = &hsd060bhw4_desc },
+ { /* sentinel */ }
+};
+MODULE_DEVICE_TABLE(of, hx8394_of_match);
+
+static struct mipi_dsi_driver hx8394_driver = {
+ .probe = hx8394_probe,
+ .remove = hx8394_remove,
+ .shutdown = hx8394_shutdown,
+ .driver = {
+ .name = DRV_NAME,
+ .of_match_table = hx8394_of_match,
+ },
+};
+module_mipi_dsi_driver(hx8394_driver);
+
+MODULE_AUTHOR("Kamil Trzciński <ayufan@ayufan.eu>");
+MODULE_DESCRIPTION("DRM driver for Himax HX8394 based MIPI DSI panels");
+MODULE_LICENSE("GPL");
diff --git a/drivers/gpu/drm/panel/panel-ilitek-ili9341.c b/drivers/gpu/drm/panel/panel-ilitek-ili9341.c
index 39dc40cf681f..3fdf884b3257 100644
--- a/drivers/gpu/drm/panel/panel-ilitek-ili9341.c
+++ b/drivers/gpu/drm/panel/panel-ilitek-ili9341.c
@@ -18,6 +18,7 @@
* Copyright 2018 David Lechner <david@lechnology.com>
*/
+#include <linux/backlight.h>
#include <linux/bitops.h>
#include <linux/delay.h>
#include <linux/gpio/consumer.h>
@@ -30,7 +31,7 @@
#include <drm/drm_atomic_helper.h>
#include <drm/drm_drv.h>
-#include <drm/drm_fb_helper.h>
+#include <drm/drm_fbdev_generic.h>
#include <drm/drm_gem_atomic_helper.h>
#include <drm/drm_gem_dma_helper.h>
#include <drm/drm_gem_framebuffer_helper.h>
@@ -576,11 +577,7 @@ out_exit:
}
static const struct drm_simple_display_pipe_funcs ili9341_dbi_funcs = {
- .mode_valid = mipi_dbi_pipe_mode_valid,
- .enable = ili9341_dbi_enable,
- .disable = mipi_dbi_pipe_disable,
- .update = mipi_dbi_pipe_update,
- .prepare_fb = drm_gem_simple_display_pipe_prepare_fb,
+ DRM_MIPI_DBI_SIMPLE_DISPLAY_PIPE_FUNCS(ili9341_dbi_enable),
};
static const struct drm_display_mode ili9341_dbi_mode = {
diff --git a/drivers/gpu/drm/panel/panel-ilitek-ili9881c.c b/drivers/gpu/drm/panel/panel-ilitek-ili9881c.c
index cbb68caa36f2..1ec696adf9de 100644
--- a/drivers/gpu/drm/panel/panel-ilitek-ili9881c.c
+++ b/drivers/gpu/drm/panel/panel-ilitek-ili9881c.c
@@ -7,7 +7,6 @@
#include <linux/device.h>
#include <linux/err.h>
#include <linux/errno.h>
-#include <linux/fb.h>
#include <linux/kernel.h>
#include <linux/module.h>
#include <linux/of_device.h>
diff --git a/drivers/gpu/drm/panel/panel-jadard-jd9365da-h3.c b/drivers/gpu/drm/panel/panel-jadard-jd9365da-h3.c
new file mode 100644
index 000000000000..323c33c9c37a
--- /dev/null
+++ b/drivers/gpu/drm/panel/panel-jadard-jd9365da-h3.c
@@ -0,0 +1,680 @@
+// SPDX-License-Identifier: GPL-2.0+
+/*
+ * Copyright (c) 2019 Radxa Limited
+ * Copyright (c) 2022 Edgeble AI Technologies Pvt. Ltd.
+ *
+ * Author:
+ * - Jagan Teki <jagan@amarulasolutions.com>
+ * - Stephen Chen <stephen@radxa.com>
+ */
+
+#include <drm/drm_mipi_dsi.h>
+#include <drm/drm_modes.h>
+#include <drm/drm_panel.h>
+#include <drm/drm_print.h>
+
+#include <linux/gpio/consumer.h>
+#include <linux/delay.h>
+#include <linux/module.h>
+#include <linux/of_device.h>
+#include <linux/regulator/consumer.h>
+
+#define JD9365DA_INIT_CMD_LEN 2
+
+struct jadard_init_cmd {
+ u8 data[JD9365DA_INIT_CMD_LEN];
+};
+
+struct jadard_panel_desc {
+ const struct drm_display_mode mode;
+ unsigned int lanes;
+ enum mipi_dsi_pixel_format format;
+ const struct jadard_init_cmd *init_cmds;
+ u32 num_init_cmds;
+};
+
+struct jadard {
+ struct drm_panel panel;
+ struct mipi_dsi_device *dsi;
+ const struct jadard_panel_desc *desc;
+
+ struct regulator *vdd;
+ struct regulator *vccio;
+ struct gpio_desc *reset;
+};
+
+static inline struct jadard *panel_to_jadard(struct drm_panel *panel)
+{
+ return container_of(panel, struct jadard, panel);
+}
+
+static int jadard_enable(struct drm_panel *panel)
+{
+ struct device *dev = panel->dev;
+ struct jadard *jadard = panel_to_jadard(panel);
+ const struct jadard_panel_desc *desc = jadard->desc;
+ struct mipi_dsi_device *dsi = jadard->dsi;
+ unsigned int i;
+ int err;
+
+ msleep(10);
+
+ for (i = 0; i < desc->num_init_cmds; i++) {
+ const struct jadard_init_cmd *cmd = &desc->init_cmds[i];
+
+ err = mipi_dsi_dcs_write_buffer(dsi, cmd->data, JD9365DA_INIT_CMD_LEN);
+ if (err < 0)
+ return err;
+ }
+
+ msleep(120);
+
+ err = mipi_dsi_dcs_exit_sleep_mode(dsi);
+ if (err < 0)
+ DRM_DEV_ERROR(dev, "failed to exit sleep mode ret = %d\n", err);
+
+ err = mipi_dsi_dcs_set_display_on(dsi);
+ if (err < 0)
+ DRM_DEV_ERROR(dev, "failed to set display on ret = %d\n", err);
+
+ return 0;
+}
+
+static int jadard_disable(struct drm_panel *panel)
+{
+ struct device *dev = panel->dev;
+ struct jadard *jadard = panel_to_jadard(panel);
+ int ret;
+
+ ret = mipi_dsi_dcs_set_display_off(jadard->dsi);
+ if (ret < 0)
+ DRM_DEV_ERROR(dev, "failed to set display off: %d\n", ret);
+
+ ret = mipi_dsi_dcs_enter_sleep_mode(jadard->dsi);
+ if (ret < 0)
+ DRM_DEV_ERROR(dev, "failed to enter sleep mode: %d\n", ret);
+
+ return 0;
+}
+
+static int jadard_prepare(struct drm_panel *panel)
+{
+ struct jadard *jadard = panel_to_jadard(panel);
+ int ret;
+
+ ret = regulator_enable(jadard->vccio);
+ if (ret)
+ return ret;
+
+ ret = regulator_enable(jadard->vdd);
+ if (ret)
+ return ret;
+
+ gpiod_set_value(jadard->reset, 1);
+ msleep(5);
+
+ gpiod_set_value(jadard->reset, 0);
+ msleep(10);
+
+ gpiod_set_value(jadard->reset, 1);
+ msleep(120);
+
+ return 0;
+}
+
+static int jadard_unprepare(struct drm_panel *panel)
+{
+ struct jadard *jadard = panel_to_jadard(panel);
+
+ gpiod_set_value(jadard->reset, 1);
+ msleep(120);
+
+ regulator_disable(jadard->vdd);
+ regulator_disable(jadard->vccio);
+
+ return 0;
+}
+
+static int jadard_get_modes(struct drm_panel *panel,
+ struct drm_connector *connector)
+{
+ struct jadard *jadard = panel_to_jadard(panel);
+ const struct drm_display_mode *desc_mode = &jadard->desc->mode;
+ struct drm_display_mode *mode;
+
+ mode = drm_mode_duplicate(connector->dev, desc_mode);
+ if (!mode) {
+ DRM_DEV_ERROR(&jadard->dsi->dev, "failed to add mode %ux%ux@%u\n",
+ desc_mode->hdisplay, desc_mode->vdisplay,
+ drm_mode_vrefresh(desc_mode));
+ return -ENOMEM;
+ }
+
+ drm_mode_set_name(mode);
+ drm_mode_probed_add(connector, mode);
+
+ connector->display_info.width_mm = mode->width_mm;
+ connector->display_info.height_mm = mode->height_mm;
+
+ return 1;
+}
+
+static const struct drm_panel_funcs jadard_funcs = {
+ .disable = jadard_disable,
+ .unprepare = jadard_unprepare,
+ .prepare = jadard_prepare,
+ .enable = jadard_enable,
+ .get_modes = jadard_get_modes,
+};
+
+static const struct jadard_init_cmd radxa_display_8hd_ad002_init_cmds[] = {
+ { .data = { 0xE0, 0x00 } },
+ { .data = { 0xE1, 0x93 } },
+ { .data = { 0xE2, 0x65 } },
+ { .data = { 0xE3, 0xF8 } },
+ { .data = { 0x80, 0x03 } },
+ { .data = { 0xE0, 0x01 } },
+ { .data = { 0x00, 0x00 } },
+ { .data = { 0x01, 0x7E } },
+ { .data = { 0x03, 0x00 } },
+ { .data = { 0x04, 0x65 } },
+ { .data = { 0x0C, 0x74 } },
+ { .data = { 0x17, 0x00 } },
+ { .data = { 0x18, 0xB7 } },
+ { .data = { 0x19, 0x00 } },
+ { .data = { 0x1A, 0x00 } },
+ { .data = { 0x1B, 0xB7 } },
+ { .data = { 0x1C, 0x00 } },
+ { .data = { 0x24, 0xFE } },
+ { .data = { 0x37, 0x19 } },
+ { .data = { 0x38, 0x05 } },
+ { .data = { 0x39, 0x00 } },
+ { .data = { 0x3A, 0x01 } },
+ { .data = { 0x3B, 0x01 } },
+ { .data = { 0x3C, 0x70 } },
+ { .data = { 0x3D, 0xFF } },
+ { .data = { 0x3E, 0xFF } },
+ { .data = { 0x3F, 0xFF } },
+ { .data = { 0x40, 0x06 } },
+ { .data = { 0x41, 0xA0 } },
+ { .data = { 0x43, 0x1E } },
+ { .data = { 0x44, 0x0F } },
+ { .data = { 0x45, 0x28 } },
+ { .data = { 0x4B, 0x04 } },
+ { .data = { 0x55, 0x02 } },
+ { .data = { 0x56, 0x01 } },
+ { .data = { 0x57, 0xA9 } },
+ { .data = { 0x58, 0x0A } },
+ { .data = { 0x59, 0x0A } },
+ { .data = { 0x5A, 0x37 } },
+ { .data = { 0x5B, 0x19 } },
+ { .data = { 0x5D, 0x78 } },
+ { .data = { 0x5E, 0x63 } },
+ { .data = { 0x5F, 0x54 } },
+ { .data = { 0x60, 0x49 } },
+ { .data = { 0x61, 0x45 } },
+ { .data = { 0x62, 0x38 } },
+ { .data = { 0x63, 0x3D } },
+ { .data = { 0x64, 0x28 } },
+ { .data = { 0x65, 0x43 } },
+ { .data = { 0x66, 0x41 } },
+ { .data = { 0x67, 0x43 } },
+ { .data = { 0x68, 0x62 } },
+ { .data = { 0x69, 0x50 } },
+ { .data = { 0x6A, 0x57 } },
+ { .data = { 0x6B, 0x49 } },
+ { .data = { 0x6C, 0x44 } },
+ { .data = { 0x6D, 0x37 } },
+ { .data = { 0x6E, 0x23 } },
+ { .data = { 0x6F, 0x10 } },
+ { .data = { 0x70, 0x78 } },
+ { .data = { 0x71, 0x63 } },
+ { .data = { 0x72, 0x54 } },
+ { .data = { 0x73, 0x49 } },
+ { .data = { 0x74, 0x45 } },
+ { .data = { 0x75, 0x38 } },
+ { .data = { 0x76, 0x3D } },
+ { .data = { 0x77, 0x28 } },
+ { .data = { 0x78, 0x43 } },
+ { .data = { 0x79, 0x41 } },
+ { .data = { 0x7A, 0x43 } },
+ { .data = { 0x7B, 0x62 } },
+ { .data = { 0x7C, 0x50 } },
+ { .data = { 0x7D, 0x57 } },
+ { .data = { 0x7E, 0x49 } },
+ { .data = { 0x7F, 0x44 } },
+ { .data = { 0x80, 0x37 } },
+ { .data = { 0x81, 0x23 } },
+ { .data = { 0x82, 0x10 } },
+ { .data = { 0xE0, 0x02 } },
+ { .data = { 0x00, 0x47 } },
+ { .data = { 0x01, 0x47 } },
+ { .data = { 0x02, 0x45 } },
+ { .data = { 0x03, 0x45 } },
+ { .data = { 0x04, 0x4B } },
+ { .data = { 0x05, 0x4B } },
+ { .data = { 0x06, 0x49 } },
+ { .data = { 0x07, 0x49 } },
+ { .data = { 0x08, 0x41 } },
+ { .data = { 0x09, 0x1F } },
+ { .data = { 0x0A, 0x1F } },
+ { .data = { 0x0B, 0x1F } },
+ { .data = { 0x0C, 0x1F } },
+ { .data = { 0x0D, 0x1F } },
+ { .data = { 0x0E, 0x1F } },
+ { .data = { 0x0F, 0x5F } },
+ { .data = { 0x10, 0x5F } },
+ { .data = { 0x11, 0x57 } },
+ { .data = { 0x12, 0x77 } },
+ { .data = { 0x13, 0x35 } },
+ { .data = { 0x14, 0x1F } },
+ { .data = { 0x15, 0x1F } },
+ { .data = { 0x16, 0x46 } },
+ { .data = { 0x17, 0x46 } },
+ { .data = { 0x18, 0x44 } },
+ { .data = { 0x19, 0x44 } },
+ { .data = { 0x1A, 0x4A } },
+ { .data = { 0x1B, 0x4A } },
+ { .data = { 0x1C, 0x48 } },
+ { .data = { 0x1D, 0x48 } },
+ { .data = { 0x1E, 0x40 } },
+ { .data = { 0x1F, 0x1F } },
+ { .data = { 0x20, 0x1F } },
+ { .data = { 0x21, 0x1F } },
+ { .data = { 0x22, 0x1F } },
+ { .data = { 0x23, 0x1F } },
+ { .data = { 0x24, 0x1F } },
+ { .data = { 0x25, 0x5F } },
+ { .data = { 0x26, 0x5F } },
+ { .data = { 0x27, 0x57 } },
+ { .data = { 0x28, 0x77 } },
+ { .data = { 0x29, 0x35 } },
+ { .data = { 0x2A, 0x1F } },
+ { .data = { 0x2B, 0x1F } },
+ { .data = { 0x58, 0x40 } },
+ { .data = { 0x59, 0x00 } },
+ { .data = { 0x5A, 0x00 } },
+ { .data = { 0x5B, 0x10 } },
+ { .data = { 0x5C, 0x06 } },
+ { .data = { 0x5D, 0x40 } },
+ { .data = { 0x5E, 0x01 } },
+ { .data = { 0x5F, 0x02 } },
+ { .data = { 0x60, 0x30 } },
+ { .data = { 0x61, 0x01 } },
+ { .data = { 0x62, 0x02 } },
+ { .data = { 0x63, 0x03 } },
+ { .data = { 0x64, 0x6B } },
+ { .data = { 0x65, 0x05 } },
+ { .data = { 0x66, 0x0C } },
+ { .data = { 0x67, 0x73 } },
+ { .data = { 0x68, 0x09 } },
+ { .data = { 0x69, 0x03 } },
+ { .data = { 0x6A, 0x56 } },
+ { .data = { 0x6B, 0x08 } },
+ { .data = { 0x6C, 0x00 } },
+ { .data = { 0x6D, 0x04 } },
+ { .data = { 0x6E, 0x04 } },
+ { .data = { 0x6F, 0x88 } },
+ { .data = { 0x70, 0x00 } },
+ { .data = { 0x71, 0x00 } },
+ { .data = { 0x72, 0x06 } },
+ { .data = { 0x73, 0x7B } },
+ { .data = { 0x74, 0x00 } },
+ { .data = { 0x75, 0xF8 } },
+ { .data = { 0x76, 0x00 } },
+ { .data = { 0x77, 0xD5 } },
+ { .data = { 0x78, 0x2E } },
+ { .data = { 0x79, 0x12 } },
+ { .data = { 0x7A, 0x03 } },
+ { .data = { 0x7B, 0x00 } },
+ { .data = { 0x7C, 0x00 } },
+ { .data = { 0x7D, 0x03 } },
+ { .data = { 0x7E, 0x7B } },
+ { .data = { 0xE0, 0x04 } },
+ { .data = { 0x00, 0x0E } },
+ { .data = { 0x02, 0xB3 } },
+ { .data = { 0x09, 0x60 } },
+ { .data = { 0x0E, 0x2A } },
+ { .data = { 0x36, 0x59 } },
+ { .data = { 0xE0, 0x00 } },
+};
+
+static const struct jadard_panel_desc radxa_display_8hd_ad002_desc = {
+ .mode = {
+ .clock = 70000,
+
+ .hdisplay = 800,
+ .hsync_start = 800 + 40,
+ .hsync_end = 800 + 40 + 18,
+ .htotal = 800 + 40 + 18 + 20,
+
+ .vdisplay = 1280,
+ .vsync_start = 1280 + 20,
+ .vsync_end = 1280 + 20 + 4,
+ .vtotal = 1280 + 20 + 4 + 20,
+
+ .width_mm = 127,
+ .height_mm = 199,
+ .type = DRM_MODE_TYPE_DRIVER | DRM_MODE_TYPE_PREFERRED,
+ },
+ .lanes = 4,
+ .format = MIPI_DSI_FMT_RGB888,
+ .init_cmds = radxa_display_8hd_ad002_init_cmds,
+ .num_init_cmds = ARRAY_SIZE(radxa_display_8hd_ad002_init_cmds),
+};
+
+static const struct jadard_init_cmd cz101b4001_init_cmds[] = {
+ { .data = { 0xE0, 0x00 } },
+ { .data = { 0xE1, 0x93 } },
+ { .data = { 0xE2, 0x65 } },
+ { .data = { 0xE3, 0xF8 } },
+ { .data = { 0x80, 0x03 } },
+ { .data = { 0xE0, 0x01 } },
+ { .data = { 0x00, 0x00 } },
+ { .data = { 0x01, 0x3B } },
+ { .data = { 0x0C, 0x74 } },
+ { .data = { 0x17, 0x00 } },
+ { .data = { 0x18, 0xAF } },
+ { .data = { 0x19, 0x00 } },
+ { .data = { 0x1A, 0x00 } },
+ { .data = { 0x1B, 0xAF } },
+ { .data = { 0x1C, 0x00 } },
+ { .data = { 0x35, 0x26 } },
+ { .data = { 0x37, 0x09 } },
+ { .data = { 0x38, 0x04 } },
+ { .data = { 0x39, 0x00 } },
+ { .data = { 0x3A, 0x01 } },
+ { .data = { 0x3C, 0x78 } },
+ { .data = { 0x3D, 0xFF } },
+ { .data = { 0x3E, 0xFF } },
+ { .data = { 0x3F, 0x7F } },
+ { .data = { 0x40, 0x06 } },
+ { .data = { 0x41, 0xA0 } },
+ { .data = { 0x42, 0x81 } },
+ { .data = { 0x43, 0x14 } },
+ { .data = { 0x44, 0x23 } },
+ { .data = { 0x45, 0x28 } },
+ { .data = { 0x55, 0x02 } },
+ { .data = { 0x57, 0x69 } },
+ { .data = { 0x59, 0x0A } },
+ { .data = { 0x5A, 0x2A } },
+ { .data = { 0x5B, 0x17 } },
+ { .data = { 0x5D, 0x7F } },
+ { .data = { 0x5E, 0x6B } },
+ { .data = { 0x5F, 0x5C } },
+ { .data = { 0x60, 0x4F } },
+ { .data = { 0x61, 0x4D } },
+ { .data = { 0x62, 0x3F } },
+ { .data = { 0x63, 0x42 } },
+ { .data = { 0x64, 0x2B } },
+ { .data = { 0x65, 0x44 } },
+ { .data = { 0x66, 0x43 } },
+ { .data = { 0x67, 0x43 } },
+ { .data = { 0x68, 0x63 } },
+ { .data = { 0x69, 0x52 } },
+ { .data = { 0x6A, 0x5A } },
+ { .data = { 0x6B, 0x4F } },
+ { .data = { 0x6C, 0x4E } },
+ { .data = { 0x6D, 0x20 } },
+ { .data = { 0x6E, 0x0F } },
+ { .data = { 0x6F, 0x00 } },
+ { .data = { 0x70, 0x7F } },
+ { .data = { 0x71, 0x6B } },
+ { .data = { 0x72, 0x5C } },
+ { .data = { 0x73, 0x4F } },
+ { .data = { 0x74, 0x4D } },
+ { .data = { 0x75, 0x3F } },
+ { .data = { 0x76, 0x42 } },
+ { .data = { 0x77, 0x2B } },
+ { .data = { 0x78, 0x44 } },
+ { .data = { 0x79, 0x43 } },
+ { .data = { 0x7A, 0x43 } },
+ { .data = { 0x7B, 0x63 } },
+ { .data = { 0x7C, 0x52 } },
+ { .data = { 0x7D, 0x5A } },
+ { .data = { 0x7E, 0x4F } },
+ { .data = { 0x7F, 0x4E } },
+ { .data = { 0x80, 0x20 } },
+ { .data = { 0x81, 0x0F } },
+ { .data = { 0x82, 0x00 } },
+ { .data = { 0xE0, 0x02 } },
+ { .data = { 0x00, 0x02 } },
+ { .data = { 0x01, 0x02 } },
+ { .data = { 0x02, 0x00 } },
+ { .data = { 0x03, 0x00 } },
+ { .data = { 0x04, 0x1E } },
+ { .data = { 0x05, 0x1E } },
+ { .data = { 0x06, 0x1F } },
+ { .data = { 0x07, 0x1F } },
+ { .data = { 0x08, 0x1F } },
+ { .data = { 0x09, 0x17 } },
+ { .data = { 0x0A, 0x17 } },
+ { .data = { 0x0B, 0x37 } },
+ { .data = { 0x0C, 0x37 } },
+ { .data = { 0x0D, 0x47 } },
+ { .data = { 0x0E, 0x47 } },
+ { .data = { 0x0F, 0x45 } },
+ { .data = { 0x10, 0x45 } },
+ { .data = { 0x11, 0x4B } },
+ { .data = { 0x12, 0x4B } },
+ { .data = { 0x13, 0x49 } },
+ { .data = { 0x14, 0x49 } },
+ { .data = { 0x15, 0x1F } },
+ { .data = { 0x16, 0x01 } },
+ { .data = { 0x17, 0x01 } },
+ { .data = { 0x18, 0x00 } },
+ { .data = { 0x19, 0x00 } },
+ { .data = { 0x1A, 0x1E } },
+ { .data = { 0x1B, 0x1E } },
+ { .data = { 0x1C, 0x1F } },
+ { .data = { 0x1D, 0x1F } },
+ { .data = { 0x1E, 0x1F } },
+ { .data = { 0x1F, 0x17 } },
+ { .data = { 0x20, 0x17 } },
+ { .data = { 0x21, 0x37 } },
+ { .data = { 0x22, 0x37 } },
+ { .data = { 0x23, 0x46 } },
+ { .data = { 0x24, 0x46 } },
+ { .data = { 0x25, 0x44 } },
+ { .data = { 0x26, 0x44 } },
+ { .data = { 0x27, 0x4A } },
+ { .data = { 0x28, 0x4A } },
+ { .data = { 0x29, 0x48 } },
+ { .data = { 0x2A, 0x48 } },
+ { .data = { 0x2B, 0x1F } },
+ { .data = { 0x2C, 0x01 } },
+ { .data = { 0x2D, 0x01 } },
+ { .data = { 0x2E, 0x00 } },
+ { .data = { 0x2F, 0x00 } },
+ { .data = { 0x30, 0x1F } },
+ { .data = { 0x31, 0x1F } },
+ { .data = { 0x32, 0x1E } },
+ { .data = { 0x33, 0x1E } },
+ { .data = { 0x34, 0x1F } },
+ { .data = { 0x35, 0x17 } },
+ { .data = { 0x36, 0x17 } },
+ { .data = { 0x37, 0x37 } },
+ { .data = { 0x38, 0x37 } },
+ { .data = { 0x39, 0x08 } },
+ { .data = { 0x3A, 0x08 } },
+ { .data = { 0x3B, 0x0A } },
+ { .data = { 0x3C, 0x0A } },
+ { .data = { 0x3D, 0x04 } },
+ { .data = { 0x3E, 0x04 } },
+ { .data = { 0x3F, 0x06 } },
+ { .data = { 0x40, 0x06 } },
+ { .data = { 0x41, 0x1F } },
+ { .data = { 0x42, 0x02 } },
+ { .data = { 0x43, 0x02 } },
+ { .data = { 0x44, 0x00 } },
+ { .data = { 0x45, 0x00 } },
+ { .data = { 0x46, 0x1F } },
+ { .data = { 0x47, 0x1F } },
+ { .data = { 0x48, 0x1E } },
+ { .data = { 0x49, 0x1E } },
+ { .data = { 0x4A, 0x1F } },
+ { .data = { 0x4B, 0x17 } },
+ { .data = { 0x4C, 0x17 } },
+ { .data = { 0x4D, 0x37 } },
+ { .data = { 0x4E, 0x37 } },
+ { .data = { 0x4F, 0x09 } },
+ { .data = { 0x50, 0x09 } },
+ { .data = { 0x51, 0x0B } },
+ { .data = { 0x52, 0x0B } },
+ { .data = { 0x53, 0x05 } },
+ { .data = { 0x54, 0x05 } },
+ { .data = { 0x55, 0x07 } },
+ { .data = { 0x56, 0x07 } },
+ { .data = { 0x57, 0x1F } },
+ { .data = { 0x58, 0x40 } },
+ { .data = { 0x5B, 0x30 } },
+ { .data = { 0x5C, 0x16 } },
+ { .data = { 0x5D, 0x34 } },
+ { .data = { 0x5E, 0x05 } },
+ { .data = { 0x5F, 0x02 } },
+ { .data = { 0x63, 0x00 } },
+ { .data = { 0x64, 0x6A } },
+ { .data = { 0x67, 0x73 } },
+ { .data = { 0x68, 0x1D } },
+ { .data = { 0x69, 0x08 } },
+ { .data = { 0x6A, 0x6A } },
+ { .data = { 0x6B, 0x08 } },
+ { .data = { 0x6C, 0x00 } },
+ { .data = { 0x6D, 0x00 } },
+ { .data = { 0x6E, 0x00 } },
+ { .data = { 0x6F, 0x88 } },
+ { .data = { 0x75, 0xFF } },
+ { .data = { 0x77, 0xDD } },
+ { .data = { 0x78, 0x3F } },
+ { .data = { 0x79, 0x15 } },
+ { .data = { 0x7A, 0x17 } },
+ { .data = { 0x7D, 0x14 } },
+ { .data = { 0x7E, 0x82 } },
+ { .data = { 0xE0, 0x04 } },
+ { .data = { 0x00, 0x0E } },
+ { .data = { 0x02, 0xB3 } },
+ { .data = { 0x09, 0x61 } },
+ { .data = { 0x0E, 0x48 } },
+ { .data = { 0xE0, 0x00 } },
+ { .data = { 0xE6, 0x02 } },
+ { .data = { 0xE7, 0x0C } },
+};
+
+static const struct jadard_panel_desc cz101b4001_desc = {
+ .mode = {
+ .clock = 70000,
+
+ .hdisplay = 800,
+ .hsync_start = 800 + 40,
+ .hsync_end = 800 + 40 + 18,
+ .htotal = 800 + 40 + 18 + 20,
+
+ .vdisplay = 1280,
+ .vsync_start = 1280 + 20,
+ .vsync_end = 1280 + 20 + 4,
+ .vtotal = 1280 + 20 + 4 + 20,
+
+ .width_mm = 62,
+ .height_mm = 110,
+ .type = DRM_MODE_TYPE_DRIVER | DRM_MODE_TYPE_PREFERRED,
+ },
+ .lanes = 4,
+ .format = MIPI_DSI_FMT_RGB888,
+ .init_cmds = cz101b4001_init_cmds,
+ .num_init_cmds = ARRAY_SIZE(cz101b4001_init_cmds),
+};
+
+static int jadard_dsi_probe(struct mipi_dsi_device *dsi)
+{
+ struct device *dev = &dsi->dev;
+ const struct jadard_panel_desc *desc;
+ struct jadard *jadard;
+ int ret;
+
+ jadard = devm_kzalloc(&dsi->dev, sizeof(*jadard), GFP_KERNEL);
+ if (!jadard)
+ return -ENOMEM;
+
+ desc = of_device_get_match_data(dev);
+ dsi->mode_flags = MIPI_DSI_MODE_VIDEO | MIPI_DSI_MODE_VIDEO_BURST |
+ MIPI_DSI_MODE_NO_EOT_PACKET;
+ dsi->format = desc->format;
+ dsi->lanes = desc->lanes;
+
+ jadard->reset = devm_gpiod_get(dev, "reset", GPIOD_OUT_LOW);
+ if (IS_ERR(jadard->reset)) {
+ DRM_DEV_ERROR(&dsi->dev, "failed to get our reset GPIO\n");
+ return PTR_ERR(jadard->reset);
+ }
+
+ jadard->vdd = devm_regulator_get(dev, "vdd");
+ if (IS_ERR(jadard->vdd)) {
+ DRM_DEV_ERROR(&dsi->dev, "failed to get vdd regulator\n");
+ return PTR_ERR(jadard->vdd);
+ }
+
+ jadard->vccio = devm_regulator_get(dev, "vccio");
+ if (IS_ERR(jadard->vccio)) {
+ DRM_DEV_ERROR(&dsi->dev, "failed to get vccio regulator\n");
+ return PTR_ERR(jadard->vccio);
+ }
+
+ drm_panel_init(&jadard->panel, dev, &jadard_funcs,
+ DRM_MODE_CONNECTOR_DSI);
+
+ ret = drm_panel_of_backlight(&jadard->panel);
+ if (ret)
+ return ret;
+
+ drm_panel_add(&jadard->panel);
+
+ mipi_dsi_set_drvdata(dsi, jadard);
+ jadard->dsi = dsi;
+ jadard->desc = desc;
+
+ ret = mipi_dsi_attach(dsi);
+ if (ret < 0)
+ drm_panel_remove(&jadard->panel);
+
+ return ret;
+}
+
+static void jadard_dsi_remove(struct mipi_dsi_device *dsi)
+{
+ struct jadard *jadard = mipi_dsi_get_drvdata(dsi);
+
+ mipi_dsi_detach(dsi);
+ drm_panel_remove(&jadard->panel);
+}
+
+static const struct of_device_id jadard_of_match[] = {
+ {
+ .compatible = "chongzhou,cz101b4001",
+ .data = &cz101b4001_desc
+ },
+ {
+ .compatible = "radxa,display-10hd-ad001",
+ .data = &cz101b4001_desc
+ },
+ {
+ .compatible = "radxa,display-8hd-ad002",
+ .data = &radxa_display_8hd_ad002_desc
+ },
+ { /* sentinel */ }
+};
+MODULE_DEVICE_TABLE(of, jadard_of_match);
+
+static struct mipi_dsi_driver jadard_driver = {
+ .probe = jadard_dsi_probe,
+ .remove = jadard_dsi_remove,
+ .driver = {
+ .name = "jadard-jd9365da",
+ .of_match_table = jadard_of_match,
+ },
+};
+module_mipi_dsi_driver(jadard_driver);
+
+MODULE_AUTHOR("Jagan Teki <jagan@edgeble.ai>");
+MODULE_AUTHOR("Stephen Chen <stephen@radxa.com>");
+MODULE_DESCRIPTION("Jadard JD9365DA-H3 WXGA DSI panel");
+MODULE_LICENSE("GPL");
diff --git a/drivers/gpu/drm/panel/panel-jdi-fhd-r63452.c b/drivers/gpu/drm/panel/panel-jdi-fhd-r63452.c
index d8765b2294fb..8912757a6f42 100644
--- a/drivers/gpu/drm/panel/panel-jdi-fhd-r63452.c
+++ b/drivers/gpu/drm/panel/panel-jdi-fhd-r63452.c
@@ -29,22 +29,6 @@ static inline struct jdi_fhd_r63452 *to_jdi_fhd_r63452(struct drm_panel *panel)
return container_of(panel, struct jdi_fhd_r63452, panel);
}
-#define dsi_generic_write_seq(dsi, seq...) do { \
- static const u8 d[] = { seq }; \
- int ret; \
- ret = mipi_dsi_generic_write(dsi, d, ARRAY_SIZE(d)); \
- if (ret < 0) \
- return ret; \
- } while (0)
-
-#define dsi_dcs_write_seq(dsi, seq...) do { \
- static const u8 d[] = { seq }; \
- int ret; \
- ret = mipi_dsi_dcs_write_buffer(dsi, d, ARRAY_SIZE(d)); \
- if (ret < 0) \
- return ret; \
- } while (0)
-
static void jdi_fhd_r63452_reset(struct jdi_fhd_r63452 *ctx)
{
gpiod_set_value_cansleep(ctx->reset_gpio, 0);
@@ -63,12 +47,12 @@ static int jdi_fhd_r63452_on(struct jdi_fhd_r63452 *ctx)
dsi->mode_flags |= MIPI_DSI_MODE_LPM;
- dsi_generic_write_seq(dsi, 0xb0, 0x00);
- dsi_generic_write_seq(dsi, 0xd6, 0x01);
- dsi_generic_write_seq(dsi, 0xec,
- 0x64, 0xdc, 0xec, 0x3b, 0x52, 0x00, 0x0b, 0x0b,
- 0x13, 0x15, 0x68, 0x0b, 0xb5);
- dsi_generic_write_seq(dsi, 0xb0, 0x03);
+ mipi_dsi_generic_write_seq(dsi, 0xb0, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0xd6, 0x01);
+ mipi_dsi_generic_write_seq(dsi, 0xec,
+ 0x64, 0xdc, 0xec, 0x3b, 0x52, 0x00, 0x0b, 0x0b,
+ 0x13, 0x15, 0x68, 0x0b, 0xb5);
+ mipi_dsi_generic_write_seq(dsi, 0xb0, 0x03);
ret = mipi_dsi_dcs_set_tear_on(dsi, MIPI_DSI_DCS_TEAR_MODE_VBLANK);
if (ret < 0) {
@@ -76,7 +60,7 @@ static int jdi_fhd_r63452_on(struct jdi_fhd_r63452 *ctx)
return ret;
}
- dsi_dcs_write_seq(dsi, MIPI_DCS_SET_ADDRESS_MODE, 0x00);
+ mipi_dsi_dcs_write_seq(dsi, MIPI_DCS_SET_ADDRESS_MODE, 0x00);
ret = mipi_dsi_dcs_set_pixel_format(dsi, 0x77);
if (ret < 0) {
@@ -108,10 +92,10 @@ static int jdi_fhd_r63452_on(struct jdi_fhd_r63452 *ctx)
return ret;
}
- dsi_dcs_write_seq(dsi, MIPI_DCS_WRITE_CONTROL_DISPLAY, 0x24);
- dsi_dcs_write_seq(dsi, MIPI_DCS_WRITE_POWER_SAVE, 0x00);
- dsi_dcs_write_seq(dsi, MIPI_DCS_SET_CABC_MIN_BRIGHTNESS, 0x00);
- dsi_dcs_write_seq(dsi, 0x84, 0x00);
+ mipi_dsi_dcs_write_seq(dsi, MIPI_DCS_WRITE_CONTROL_DISPLAY, 0x24);
+ mipi_dsi_dcs_write_seq(dsi, MIPI_DCS_WRITE_POWER_SAVE, 0x00);
+ mipi_dsi_dcs_write_seq(dsi, MIPI_DCS_SET_CABC_MIN_BRIGHTNESS, 0x00);
+ mipi_dsi_dcs_write_seq(dsi, 0x84, 0x00);
ret = mipi_dsi_dcs_set_display_on(dsi);
if (ret < 0) {
@@ -127,10 +111,10 @@ static int jdi_fhd_r63452_on(struct jdi_fhd_r63452 *ctx)
}
msleep(80);
- dsi_generic_write_seq(dsi, 0xb0, 0x04);
- dsi_dcs_write_seq(dsi, 0x84, 0x00);
- dsi_generic_write_seq(dsi, 0xc8, 0x11);
- dsi_generic_write_seq(dsi, 0xb0, 0x03);
+ mipi_dsi_generic_write_seq(dsi, 0xb0, 0x04);
+ mipi_dsi_dcs_write_seq(dsi, 0x84, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0xc8, 0x11);
+ mipi_dsi_generic_write_seq(dsi, 0xb0, 0x03);
return 0;
}
@@ -143,12 +127,12 @@ static int jdi_fhd_r63452_off(struct jdi_fhd_r63452 *ctx)
dsi->mode_flags &= ~MIPI_DSI_MODE_LPM;
- dsi_generic_write_seq(dsi, 0xb0, 0x00);
- dsi_generic_write_seq(dsi, 0xd6, 0x01);
- dsi_generic_write_seq(dsi, 0xec,
- 0x64, 0xdc, 0xec, 0x3b, 0x52, 0x00, 0x0b, 0x0b,
- 0x13, 0x15, 0x68, 0x0b, 0x95);
- dsi_generic_write_seq(dsi, 0xb0, 0x03);
+ mipi_dsi_generic_write_seq(dsi, 0xb0, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0xd6, 0x01);
+ mipi_dsi_generic_write_seq(dsi, 0xec,
+ 0x64, 0xdc, 0xec, 0x3b, 0x52, 0x00, 0x0b, 0x0b,
+ 0x13, 0x15, 0x68, 0x0b, 0x95);
+ mipi_dsi_generic_write_seq(dsi, 0xb0, 0x03);
ret = mipi_dsi_dcs_set_display_off(dsi);
if (ret < 0) {
diff --git a/drivers/gpu/drm/panel/panel-leadtek-ltk050h3146w.c b/drivers/gpu/drm/panel/panel-leadtek-ltk050h3146w.c
index 5619f186d28c..d2efd887484b 100644
--- a/drivers/gpu/drm/panel/panel-leadtek-ltk050h3146w.c
+++ b/drivers/gpu/drm/panel/panel-leadtek-ltk050h3146w.c
@@ -244,14 +244,6 @@ struct ltk050h3146w *panel_to_ltk050h3146w(struct drm_panel *panel)
return container_of(panel, struct ltk050h3146w, panel);
}
-#define dsi_dcs_write_seq(dsi, cmd, seq...) do { \
- static const u8 b[] = { cmd, seq }; \
- int ret; \
- ret = mipi_dsi_dcs_write_buffer(dsi, b, ARRAY_SIZE(b)); \
- if (ret < 0) \
- return ret; \
- } while (0)
-
static int ltk050h3146w_init_sequence(struct ltk050h3146w *ctx)
{
struct mipi_dsi_device *dsi = to_mipi_dsi_device(ctx->dev);
@@ -261,55 +253,55 @@ static int ltk050h3146w_init_sequence(struct ltk050h3146w *ctx)
* Init sequence was supplied by the panel vendor without much
* documentation.
*/
- dsi_dcs_write_seq(dsi, 0xdf, 0x93, 0x65, 0xf8);
- dsi_dcs_write_seq(dsi, 0xb0, 0x01, 0x03, 0x02, 0x00, 0x64, 0x06,
- 0x01);
- dsi_dcs_write_seq(dsi, 0xb2, 0x00, 0xb5);
- dsi_dcs_write_seq(dsi, 0xb3, 0x00, 0xb5);
- dsi_dcs_write_seq(dsi, 0xb7, 0x00, 0xbf, 0x00, 0x00, 0xbf, 0x00);
-
- dsi_dcs_write_seq(dsi, 0xb9, 0x00, 0xc4, 0x23, 0x07);
- dsi_dcs_write_seq(dsi, 0xbb, 0x02, 0x01, 0x24, 0x00, 0x28, 0x0f,
- 0x28, 0x04, 0xcc, 0xcc, 0xcc);
- dsi_dcs_write_seq(dsi, 0xbc, 0x0f, 0x04);
- dsi_dcs_write_seq(dsi, 0xbe, 0x1e, 0xf2);
- dsi_dcs_write_seq(dsi, 0xc0, 0x26, 0x03);
- dsi_dcs_write_seq(dsi, 0xc1, 0x00, 0x12);
- dsi_dcs_write_seq(dsi, 0xc3, 0x04, 0x02, 0x02, 0x76, 0x01, 0x80,
- 0x80);
- dsi_dcs_write_seq(dsi, 0xc4, 0x24, 0x80, 0xb4, 0x81, 0x12, 0x0f,
- 0x16, 0x00, 0x00);
- dsi_dcs_write_seq(dsi, 0xc8, 0x7f, 0x72, 0x67, 0x5d, 0x5d, 0x50,
- 0x56, 0x41, 0x59, 0x57, 0x55, 0x70, 0x5b, 0x5f,
- 0x4f, 0x47, 0x38, 0x23, 0x08, 0x7f, 0x72, 0x67,
- 0x5d, 0x5d, 0x50, 0x56, 0x41, 0x59, 0x57, 0x55,
- 0x70, 0x5b, 0x5f, 0x4f, 0x47, 0x38, 0x23, 0x08);
- dsi_dcs_write_seq(dsi, 0xd0, 0x1e, 0x1f, 0x57, 0x58, 0x48, 0x4a,
- 0x44, 0x46, 0x40, 0x1f, 0x42, 0x1f, 0x1f, 0x1f,
- 0x1f, 0x1f, 0x1f, 0x1f, 0x1f, 0x1f, 0x1f, 0x1f);
- dsi_dcs_write_seq(dsi, 0xd1, 0x1e, 0x1f, 0x57, 0x58, 0x49, 0x4b,
- 0x45, 0x47, 0x41, 0x1f, 0x43, 0x1f, 0x1f, 0x1f,
- 0x1f, 0x1f, 0x1f, 0x1f, 0x1f, 0x1f, 0x1f, 0x1f);
- dsi_dcs_write_seq(dsi, 0xd2, 0x1f, 0x1e, 0x17, 0x18, 0x07, 0x05,
- 0x0b, 0x09, 0x03, 0x1f, 0x01, 0x1f, 0x1f, 0x1f,
- 0x1f, 0x1f, 0x1f, 0x1f, 0x1f, 0x1f, 0x1f, 0x1f);
- dsi_dcs_write_seq(dsi, 0xd3, 0x1f, 0x1e, 0x17, 0x18, 0x06, 0x04,
- 0x0a, 0x08, 0x02, 0x1f, 0x00, 0x1f, 0x1f, 0x1f,
- 0x1f, 0x1f, 0x1f, 0x1f, 0x1f, 0x1f, 0x1f, 0x1f);
- dsi_dcs_write_seq(dsi, 0xd4, 0x00, 0x00, 0x00, 0x0c, 0x06, 0x20,
- 0x01, 0x02, 0x00, 0x60, 0x15, 0xb0, 0x30, 0x03,
- 0x04, 0x00, 0x60, 0x72, 0x0a, 0x00, 0x60, 0x08);
- dsi_dcs_write_seq(dsi, 0xd5, 0x00, 0x06, 0x06, 0x00, 0x30, 0x00,
- 0x00, 0x00, 0x00, 0x00, 0xbc, 0x50, 0x00, 0x05,
- 0x21, 0x00, 0x60);
- dsi_dcs_write_seq(dsi, 0xdd, 0x2c, 0xa3, 0x00);
- dsi_dcs_write_seq(dsi, 0xde, 0x02);
- dsi_dcs_write_seq(dsi, 0xb2, 0x32, 0x1c);
- dsi_dcs_write_seq(dsi, 0xb7, 0x3b, 0x70, 0x00, 0x04);
- dsi_dcs_write_seq(dsi, 0xc1, 0x11);
- dsi_dcs_write_seq(dsi, 0xbb, 0x21, 0x22, 0x23, 0x24, 0x36, 0x37);
- dsi_dcs_write_seq(dsi, 0xc2, 0x20, 0x38, 0x1e, 0x84);
- dsi_dcs_write_seq(dsi, 0xde, 0x00);
+ mipi_dsi_dcs_write_seq(dsi, 0xdf, 0x93, 0x65, 0xf8);
+ mipi_dsi_dcs_write_seq(dsi, 0xb0, 0x01, 0x03, 0x02, 0x00, 0x64, 0x06,
+ 0x01);
+ mipi_dsi_dcs_write_seq(dsi, 0xb2, 0x00, 0xb5);
+ mipi_dsi_dcs_write_seq(dsi, 0xb3, 0x00, 0xb5);
+ mipi_dsi_dcs_write_seq(dsi, 0xb7, 0x00, 0xbf, 0x00, 0x00, 0xbf, 0x00);
+
+ mipi_dsi_dcs_write_seq(dsi, 0xb9, 0x00, 0xc4, 0x23, 0x07);
+ mipi_dsi_dcs_write_seq(dsi, 0xbb, 0x02, 0x01, 0x24, 0x00, 0x28, 0x0f,
+ 0x28, 0x04, 0xcc, 0xcc, 0xcc);
+ mipi_dsi_dcs_write_seq(dsi, 0xbc, 0x0f, 0x04);
+ mipi_dsi_dcs_write_seq(dsi, 0xbe, 0x1e, 0xf2);
+ mipi_dsi_dcs_write_seq(dsi, 0xc0, 0x26, 0x03);
+ mipi_dsi_dcs_write_seq(dsi, 0xc1, 0x00, 0x12);
+ mipi_dsi_dcs_write_seq(dsi, 0xc3, 0x04, 0x02, 0x02, 0x76, 0x01, 0x80,
+ 0x80);
+ mipi_dsi_dcs_write_seq(dsi, 0xc4, 0x24, 0x80, 0xb4, 0x81, 0x12, 0x0f,
+ 0x16, 0x00, 0x00);
+ mipi_dsi_dcs_write_seq(dsi, 0xc8, 0x7f, 0x72, 0x67, 0x5d, 0x5d, 0x50,
+ 0x56, 0x41, 0x59, 0x57, 0x55, 0x70, 0x5b, 0x5f,
+ 0x4f, 0x47, 0x38, 0x23, 0x08, 0x7f, 0x72, 0x67,
+ 0x5d, 0x5d, 0x50, 0x56, 0x41, 0x59, 0x57, 0x55,
+ 0x70, 0x5b, 0x5f, 0x4f, 0x47, 0x38, 0x23, 0x08);
+ mipi_dsi_dcs_write_seq(dsi, 0xd0, 0x1e, 0x1f, 0x57, 0x58, 0x48, 0x4a,
+ 0x44, 0x46, 0x40, 0x1f, 0x42, 0x1f, 0x1f, 0x1f,
+ 0x1f, 0x1f, 0x1f, 0x1f, 0x1f, 0x1f, 0x1f, 0x1f);
+ mipi_dsi_dcs_write_seq(dsi, 0xd1, 0x1e, 0x1f, 0x57, 0x58, 0x49, 0x4b,
+ 0x45, 0x47, 0x41, 0x1f, 0x43, 0x1f, 0x1f, 0x1f,
+ 0x1f, 0x1f, 0x1f, 0x1f, 0x1f, 0x1f, 0x1f, 0x1f);
+ mipi_dsi_dcs_write_seq(dsi, 0xd2, 0x1f, 0x1e, 0x17, 0x18, 0x07, 0x05,
+ 0x0b, 0x09, 0x03, 0x1f, 0x01, 0x1f, 0x1f, 0x1f,
+ 0x1f, 0x1f, 0x1f, 0x1f, 0x1f, 0x1f, 0x1f, 0x1f);
+ mipi_dsi_dcs_write_seq(dsi, 0xd3, 0x1f, 0x1e, 0x17, 0x18, 0x06, 0x04,
+ 0x0a, 0x08, 0x02, 0x1f, 0x00, 0x1f, 0x1f, 0x1f,
+ 0x1f, 0x1f, 0x1f, 0x1f, 0x1f, 0x1f, 0x1f, 0x1f);
+ mipi_dsi_dcs_write_seq(dsi, 0xd4, 0x00, 0x00, 0x00, 0x0c, 0x06, 0x20,
+ 0x01, 0x02, 0x00, 0x60, 0x15, 0xb0, 0x30, 0x03,
+ 0x04, 0x00, 0x60, 0x72, 0x0a, 0x00, 0x60, 0x08);
+ mipi_dsi_dcs_write_seq(dsi, 0xd5, 0x00, 0x06, 0x06, 0x00, 0x30, 0x00,
+ 0x00, 0x00, 0x00, 0x00, 0xbc, 0x50, 0x00, 0x05,
+ 0x21, 0x00, 0x60);
+ mipi_dsi_dcs_write_seq(dsi, 0xdd, 0x2c, 0xa3, 0x00);
+ mipi_dsi_dcs_write_seq(dsi, 0xde, 0x02);
+ mipi_dsi_dcs_write_seq(dsi, 0xb2, 0x32, 0x1c);
+ mipi_dsi_dcs_write_seq(dsi, 0xb7, 0x3b, 0x70, 0x00, 0x04);
+ mipi_dsi_dcs_write_seq(dsi, 0xc1, 0x11);
+ mipi_dsi_dcs_write_seq(dsi, 0xbb, 0x21, 0x22, 0x23, 0x24, 0x36, 0x37);
+ mipi_dsi_dcs_write_seq(dsi, 0xc2, 0x20, 0x38, 0x1e, 0x84);
+ mipi_dsi_dcs_write_seq(dsi, 0xde, 0x00);
ret = mipi_dsi_dcs_set_tear_on(dsi, 1);
if (ret < 0) {
diff --git a/drivers/gpu/drm/panel/panel-magnachip-d53e6ea8966.c b/drivers/gpu/drm/panel/panel-magnachip-d53e6ea8966.c
new file mode 100644
index 000000000000..26d358b9b85a
--- /dev/null
+++ b/drivers/gpu/drm/panel/panel-magnachip-d53e6ea8966.c
@@ -0,0 +1,522 @@
+// SPDX-License-Identifier: GPL-2.0
+/*
+ * Magnachip d53e6ea8966 MIPI-DSI panel driver
+ * Copyright (C) 2023 Chris Morgan
+ */
+
+#include <drm/drm_mipi_dbi.h>
+#include <drm/drm_mipi_dsi.h>
+#include <drm/drm_modes.h>
+#include <drm/drm_of.h>
+#include <drm/drm_panel.h>
+
+#include <linux/backlight.h>
+#include <linux/delay.h>
+#include <linux/gpio/consumer.h>
+#include <linux/init.h>
+#include <linux/kernel.h>
+#include <linux/media-bus-format.h>
+#include <linux/module.h>
+#include <linux/of.h>
+#include <linux/of_device.h>
+#include <linux/regulator/consumer.h>
+#include <linux/spi/spi.h>
+
+#include <video/mipi_display.h>
+
+/* Forward declaration for use in backlight function */
+struct d53e6ea8966;
+
+/* Panel info, unique to each panel */
+struct d53e6ea8966_panel_info {
+ /** @display_modes: the supported display modes */
+ const struct drm_display_mode *display_modes;
+ /** @num_modes: the number of supported display modes */
+ unsigned int num_modes;
+ /** @width_mm: panel width in mm */
+ u16 width_mm;
+ /** @height_mm: panel height in mm */
+ u16 height_mm;
+ /** @bus_flags: drm bus flags for panel */
+ u32 bus_flags;
+ /** @panel_init_seq: panel specific init sequence */
+ void (*panel_init_seq)(struct d53e6ea8966 *db);
+ /** @backlight_register: panel backlight registration or NULL */
+ int (*backlight_register)(struct d53e6ea8966 *db);
+};
+
+struct d53e6ea8966 {
+ /** @dev: the container device */
+ struct device *dev;
+ /** @dbi: the DBI bus abstraction handle */
+ struct mipi_dbi dbi;
+ /** @panel: the DRM panel instance for this device */
+ struct drm_panel panel;
+ /** @reset: reset GPIO line */
+ struct gpio_desc *reset;
+ /** @enable: enable GPIO line */
+ struct gpio_desc *enable;
+ /** @reg_vdd: VDD supply regulator for panel logic */
+ struct regulator *reg_vdd;
+ /** @reg_elvdd: ELVDD supply regulator for panel display */
+ struct regulator *reg_elvdd;
+ /** @dsi_dev: DSI child device (panel) */
+ struct mipi_dsi_device *dsi_dev;
+ /** @bl_dev: pseudo-backlight device for oled panel */
+ struct backlight_device *bl_dev;
+ /** @panel_info: struct containing panel timing and info */
+ const struct d53e6ea8966_panel_info *panel_info;
+};
+
+#define NUM_GAMMA_LEVELS 16
+#define GAMMA_TABLE_COUNT 23
+#define MAX_BRIGHTNESS (NUM_GAMMA_LEVELS - 1)
+
+#define MCS_ELVSS_ON 0xb1
+#define MCS_TEMP_SWIRE 0xb2
+#define MCS_PASSWORD_0 0xf0
+#define MCS_PASSWORD_1 0xf1
+#define MCS_ANALOG_PWR_CTL_0 0xf4
+#define MCS_ANALOG_PWR_CTL_1 0xf5
+#define MCS_GTCON_SET 0xf7
+#define MCS_GATELESS_SIGNAL_SET 0xf8
+#define MCS_SET_GAMMA 0xf9
+
+static inline struct d53e6ea8966 *to_d53e6ea8966(struct drm_panel *panel)
+{
+ return container_of(panel, struct d53e6ea8966, panel);
+}
+
+/* Table of gamma values provided in datasheet */
+static u8 ams495qa01_gamma[NUM_GAMMA_LEVELS][GAMMA_TABLE_COUNT] = {
+ {0x01, 0x79, 0x78, 0x8d, 0xd9, 0xdf, 0xd5, 0xcb, 0xcf, 0xc5,
+ 0xe5, 0xe0, 0xe4, 0xdc, 0xb8, 0xd4, 0xfa, 0xed, 0xe6, 0x2f,
+ 0x00, 0x2f},
+ {0x01, 0x7d, 0x7c, 0x92, 0xd7, 0xdd, 0xd2, 0xcb, 0xd0, 0xc6,
+ 0xe5, 0xe1, 0xe3, 0xda, 0xbd, 0xd3, 0xfa, 0xed, 0xe6, 0x2f,
+ 0x00, 0x2f},
+ {0x01, 0x7f, 0x7e, 0x95, 0xd7, 0xde, 0xd2, 0xcb, 0xcf, 0xc5,
+ 0xe5, 0xe3, 0xe3, 0xda, 0xbf, 0xd3, 0xfa, 0xed, 0xe6, 0x2f,
+ 0x00, 0x2f},
+ {0x01, 0x82, 0x81, 0x99, 0xd6, 0xdd, 0xd1, 0xca, 0xcf, 0xc3,
+ 0xe4, 0xe3, 0xe3, 0xda, 0xc2, 0xd3, 0xfa, 0xed, 0xe6, 0x2f,
+ 0x00, 0x2f},
+ {0x01, 0x84, 0x83, 0x9b, 0xd7, 0xde, 0xd2, 0xc8, 0xce, 0xc2,
+ 0xe4, 0xe3, 0xe2, 0xd9, 0xc3, 0xd3, 0xfa, 0xed, 0xe6, 0x2f,
+ 0x00, 0x2f},
+ {0x01, 0x87, 0x86, 0x9f, 0xd6, 0xdd, 0xd1, 0xc7, 0xce, 0xc1,
+ 0xe4, 0xe3, 0xe2, 0xd9, 0xc6, 0xd3, 0xfa, 0xed, 0xe6, 0x2f,
+ 0x00, 0x2f},
+ {0x01, 0x89, 0x89, 0xa2, 0xd5, 0xdb, 0xcf, 0xc8, 0xcf, 0xc2,
+ 0xe3, 0xe3, 0xe1, 0xd9, 0xc7, 0xd3, 0xfa, 0xed, 0xe6, 0x2f,
+ 0x00, 0x2f},
+ {0x01, 0x8b, 0x8b, 0xa5, 0xd5, 0xdb, 0xcf, 0xc7, 0xce, 0xc0,
+ 0xe3, 0xe3, 0xe1, 0xd8, 0xc7, 0xd3, 0xfa, 0xed, 0xe6, 0x2f,
+ 0x00, 0x2f},
+ {0x01, 0x8d, 0x8d, 0xa7, 0xd5, 0xdb, 0xcf, 0xc6, 0xce, 0xc0,
+ 0xe4, 0xe4, 0xe1, 0xd7, 0xc8, 0xd3, 0xfa, 0xed, 0xe6, 0x2f,
+ 0x00, 0x2f},
+ {0x01, 0x8f, 0x8f, 0xaa, 0xd4, 0xdb, 0xce, 0xc6, 0xcd, 0xbf,
+ 0xe3, 0xe3, 0xe1, 0xd7, 0xca, 0xd3, 0xfa, 0xed, 0xe6, 0x2f,
+ 0x00, 0x2f},
+ {0x01, 0x91, 0x91, 0xac, 0xd3, 0xda, 0xce, 0xc5, 0xcd, 0xbe,
+ 0xe3, 0xe3, 0xe0, 0xd7, 0xca, 0xd3, 0xfa, 0xed, 0xe6, 0x2f,
+ 0x00, 0x2f},
+ {0x01, 0x93, 0x93, 0xaf, 0xd3, 0xda, 0xcd, 0xc5, 0xcd, 0xbe,
+ 0xe2, 0xe3, 0xdf, 0xd6, 0xca, 0xd3, 0xfa, 0xed, 0xe6, 0x2f,
+ 0x00, 0x2f},
+ {0x01, 0x95, 0x95, 0xb1, 0xd2, 0xd9, 0xcc, 0xc4, 0xcd, 0xbe,
+ 0xe2, 0xe3, 0xdf, 0xd7, 0xcc, 0xd3, 0xfa, 0xed, 0xe6, 0x2f,
+ 0x00, 0x2f},
+ {0x01, 0x99, 0x99, 0xb6, 0xd1, 0xd9, 0xcc, 0xc3, 0xcb, 0xbc,
+ 0xe2, 0xe4, 0xdf, 0xd6, 0xcc, 0xd3, 0xfa, 0xed, 0xe6, 0x2f,
+ 0x00, 0x2f},
+ {0x01, 0x9c, 0x9c, 0xba, 0xd0, 0xd8, 0xcb, 0xc3, 0xcb, 0xbb,
+ 0xe2, 0xe4, 0xdf, 0xd6, 0xce, 0xd3, 0xfa, 0xed, 0xe6, 0x2f,
+ 0x00, 0x2f},
+ {0x01, 0x9f, 0x9f, 0xbe, 0xcf, 0xd7, 0xc9, 0xc2, 0xcb, 0xbb,
+ 0xe1, 0xe3, 0xde, 0xd6, 0xd0, 0xd3, 0xfa, 0xed, 0xe6, 0x2f,
+ 0x00, 0x2f},
+};
+
+/*
+ * Table of elvss values provided in datasheet and corresponds to
+ * gamma values.
+ */
+static u8 ams495qa01_elvss[NUM_GAMMA_LEVELS] = {
+ 0x15, 0x15, 0x15, 0x15, 0x15, 0x15, 0x15, 0x15, 0x15, 0x15,
+ 0x15, 0x15, 0x14, 0x14, 0x13, 0x12,
+};
+
+static int ams495qa01_update_gamma(struct mipi_dbi *dbi, int brightness)
+{
+ int tmp = brightness;
+
+ mipi_dbi_command_buf(dbi, MCS_SET_GAMMA, ams495qa01_gamma[tmp],
+ ARRAY_SIZE(ams495qa01_gamma[tmp]));
+ mipi_dbi_command(dbi, MCS_SET_GAMMA, 0x00);
+
+ /* Undocumented command */
+ mipi_dbi_command(dbi, 0x26, 0x00);
+
+ mipi_dbi_command(dbi, MCS_TEMP_SWIRE, ams495qa01_elvss[tmp]);
+
+ return 0;
+}
+
+static void ams495qa01_panel_init(struct d53e6ea8966 *db)
+{
+ struct mipi_dbi *dbi = &db->dbi;
+
+ mipi_dbi_command(dbi, MCS_PASSWORD_0, 0x5a, 0x5a);
+ mipi_dbi_command(dbi, MCS_PASSWORD_1, 0x5a, 0x5a);
+
+ /* Undocumented commands */
+ mipi_dbi_command(dbi, 0xb0, 0x02);
+ mipi_dbi_command(dbi, 0xf3, 0x3b);
+
+ mipi_dbi_command(dbi, MCS_ANALOG_PWR_CTL_0, 0x33, 0x42, 0x00, 0x08);
+ mipi_dbi_command(dbi, MCS_ANALOG_PWR_CTL_1, 0x00, 0x06, 0x26, 0x35, 0x03);
+
+ /* Undocumented commands */
+ mipi_dbi_command(dbi, 0xf6, 0x02);
+ mipi_dbi_command(dbi, 0xc6, 0x0b, 0x00, 0x00, 0x3c, 0x00, 0x22,
+ 0x00, 0x00, 0x00, 0x00);
+
+ mipi_dbi_command(dbi, MCS_GTCON_SET, 0x20);
+ mipi_dbi_command(dbi, MCS_TEMP_SWIRE, 0x06, 0x06, 0x06, 0x06);
+ mipi_dbi_command(dbi, MCS_ELVSS_ON, 0x07, 0x00, 0x10);
+ mipi_dbi_command(dbi, MCS_GATELESS_SIGNAL_SET, 0x7f, 0x7a,
+ 0x89, 0x67, 0x26, 0x38, 0x00, 0x00, 0x09,
+ 0x67, 0x70, 0x88, 0x7a, 0x76, 0x05, 0x09,
+ 0x23, 0x23, 0x23);
+
+ /* Undocumented commands */
+ mipi_dbi_command(dbi, 0xb5, 0xff, 0xef, 0x35, 0x42, 0x0d, 0xd7,
+ 0xff, 0x07, 0xff, 0xff, 0xfd, 0x00, 0x01,
+ 0xff, 0x05, 0x12, 0x0f, 0xff, 0xff, 0xff,
+ 0xff);
+ mipi_dbi_command(dbi, 0xb4, 0x15);
+ mipi_dbi_command(dbi, 0xb3, 0x00);
+
+ ams495qa01_update_gamma(dbi, MAX_BRIGHTNESS);
+}
+
+static int d53e6ea8966_prepare(struct drm_panel *panel)
+{
+ struct d53e6ea8966 *db = to_d53e6ea8966(panel);
+ int ret;
+
+ /* Power up */
+ ret = regulator_enable(db->reg_vdd);
+ if (ret) {
+ dev_err(db->dev, "failed to enable vdd regulator: %d\n", ret);
+ return ret;
+ }
+
+ if (db->reg_elvdd) {
+ ret = regulator_enable(db->reg_elvdd);
+ if (ret) {
+ dev_err(db->dev,
+ "failed to enable elvdd regulator: %d\n", ret);
+ regulator_disable(db->reg_vdd);
+ return ret;
+ }
+ }
+
+ /* Enable */
+ if (db->enable)
+ gpiod_set_value_cansleep(db->enable, 1);
+
+ msleep(50);
+
+ /* Reset */
+ gpiod_set_value_cansleep(db->reset, 1);
+ usleep_range(1000, 5000);
+ gpiod_set_value_cansleep(db->reset, 0);
+ msleep(20);
+
+ db->panel_info->panel_init_seq(db);
+
+ return 0;
+}
+
+static int d53e6ea8966_enable(struct drm_panel *panel)
+{
+ struct d53e6ea8966 *db = to_d53e6ea8966(panel);
+ struct mipi_dbi *dbi = &db->dbi;
+
+ mipi_dbi_command(dbi, MIPI_DCS_EXIT_SLEEP_MODE);
+ msleep(200);
+ mipi_dbi_command(dbi, MIPI_DCS_SET_DISPLAY_ON);
+ usleep_range(10000, 15000);
+
+ return 0;
+}
+
+static int d53e6ea8966_disable(struct drm_panel *panel)
+{
+ struct d53e6ea8966 *db = to_d53e6ea8966(panel);
+ struct mipi_dbi *dbi = &db->dbi;
+
+ mipi_dbi_command(dbi, MIPI_DCS_SET_DISPLAY_OFF);
+ msleep(20);
+ mipi_dbi_command(dbi, MIPI_DCS_ENTER_SLEEP_MODE);
+ msleep(100);
+
+ return 0;
+}
+
+static int d53e6ea8966_unprepare(struct drm_panel *panel)
+{
+ struct d53e6ea8966 *db = to_d53e6ea8966(panel);
+
+ if (db->enable)
+ gpiod_set_value_cansleep(db->enable, 0);
+
+ gpiod_set_value_cansleep(db->reset, 1);
+
+ if (db->reg_elvdd)
+ regulator_disable(db->reg_elvdd);
+
+ regulator_disable(db->reg_vdd);
+ msleep(100);
+
+ return 0;
+}
+
+static int d53e6ea8966_get_modes(struct drm_panel *panel,
+ struct drm_connector *connector)
+{
+ struct d53e6ea8966 *db = to_d53e6ea8966(panel);
+ const struct d53e6ea8966_panel_info *panel_info = db->panel_info;
+ struct drm_display_mode *mode;
+ static const u32 bus_format = MEDIA_BUS_FMT_RGB888_1X24;
+ unsigned int i;
+
+ for (i = 0; i < panel_info->num_modes; i++) {
+ mode = drm_mode_duplicate(connector->dev,
+ &panel_info->display_modes[i]);
+ if (!mode)
+ return -ENOMEM;
+
+ drm_mode_set_name(mode);
+ drm_mode_probed_add(connector, mode);
+ }
+
+ connector->display_info.bpc = 8;
+ connector->display_info.width_mm = panel_info->width_mm;
+ connector->display_info.height_mm = panel_info->height_mm;
+ connector->display_info.bus_flags = panel_info->bus_flags;
+
+ drm_display_info_set_bus_formats(&connector->display_info,
+ &bus_format, 1);
+
+ return 1;
+}
+
+static const struct drm_panel_funcs d53e6ea8966_panel_funcs = {
+ .disable = d53e6ea8966_disable,
+ .enable = d53e6ea8966_enable,
+ .get_modes = d53e6ea8966_get_modes,
+ .prepare = d53e6ea8966_prepare,
+ .unprepare = d53e6ea8966_unprepare,
+};
+
+static int ams495qa01_set_brightness(struct backlight_device *bd)
+{
+ struct d53e6ea8966 *db = bl_get_data(bd);
+ struct mipi_dbi *dbi = &db->dbi;
+ int brightness = backlight_get_brightness(bd);
+
+ ams495qa01_update_gamma(dbi, brightness);
+
+ return 0;
+}
+
+static const struct backlight_ops ams495qa01_backlight_ops = {
+ .update_status = ams495qa01_set_brightness,
+};
+
+static int ams495qa01_backlight_register(struct d53e6ea8966 *db)
+{
+ struct backlight_properties props = {
+ .type = BACKLIGHT_RAW,
+ .brightness = MAX_BRIGHTNESS,
+ .max_brightness = MAX_BRIGHTNESS,
+ };
+ struct device *dev = db->dev;
+ int ret = 0;
+
+ db->bl_dev = devm_backlight_device_register(dev, "panel", dev, db,
+ &ams495qa01_backlight_ops,
+ &props);
+ if (IS_ERR(db->bl_dev)) {
+ ret = PTR_ERR(db->bl_dev);
+ dev_err(dev, "error registering backlight device (%d)\n", ret);
+ }
+
+ return ret;
+}
+
+static int d53e6ea8966_probe(struct spi_device *spi)
+{
+ struct device *dev = &spi->dev;
+ struct mipi_dsi_host *dsi_host;
+ struct d53e6ea8966 *db;
+ int ret;
+ struct mipi_dsi_device_info info = {
+ .type = "d53e6ea8966",
+ .channel = 0,
+ .node = NULL,
+ };
+
+ db = devm_kzalloc(dev, sizeof(*db), GFP_KERNEL);
+ if (!db)
+ return -ENOMEM;
+
+ spi_set_drvdata(spi, db);
+
+ db->dev = dev;
+
+ db->panel_info = of_device_get_match_data(dev);
+ if (!db->panel_info)
+ return -EINVAL;
+
+ db->reg_vdd = devm_regulator_get(dev, "vdd");
+ if (IS_ERR(db->reg_vdd))
+ return dev_err_probe(dev, PTR_ERR(db->reg_vdd),
+ "Failed to get vdd supply\n");
+
+ db->reg_elvdd = devm_regulator_get_optional(dev, "elvdd");
+ if (IS_ERR(db->reg_elvdd))
+ db->reg_elvdd = NULL;
+
+ db->reset = devm_gpiod_get(dev, "reset", GPIOD_OUT_HIGH);
+ if (IS_ERR(db->reset)) {
+ ret = PTR_ERR(db->reset);
+ return dev_err_probe(dev, ret, "no RESET GPIO\n");
+ }
+
+ db->enable = devm_gpiod_get_optional(dev, "enable", GPIOD_OUT_LOW);
+ if (IS_ERR(db->enable)) {
+ ret = PTR_ERR(db->enable);
+ return dev_err_probe(dev, ret, "cannot get ENABLE GPIO\n");
+ }
+
+ ret = mipi_dbi_spi_init(spi, &db->dbi, NULL);
+ if (ret)
+ return dev_err_probe(dev, ret, "MIPI DBI init failed\n");
+
+ dsi_host = drm_of_get_dsi_bus(dev);
+ if (IS_ERR(dsi_host)) {
+ ret = PTR_ERR(dsi_host);
+ return dev_err_probe(dev, ret, "Error attaching DSI bus\n");
+ }
+
+ db->dsi_dev = devm_mipi_dsi_device_register_full(dev, dsi_host, &info);
+ if (IS_ERR(db->dsi_dev)) {
+ dev_err(dev, "failed to register dsi device: %ld\n",
+ PTR_ERR(db->dsi_dev));
+ return PTR_ERR(db->dsi_dev);
+ }
+
+ db->dsi_dev->lanes = 2;
+ db->dsi_dev->format = MIPI_DSI_FMT_RGB888;
+ db->dsi_dev->mode_flags = MIPI_DSI_MODE_VIDEO | MIPI_DSI_MODE_VIDEO_BURST |
+ MIPI_DSI_MODE_LPM | MIPI_DSI_MODE_NO_EOT_PACKET;
+
+ drm_panel_init(&db->panel, dev, &d53e6ea8966_panel_funcs,
+ DRM_MODE_CONNECTOR_DSI);
+
+ if (db->panel_info->backlight_register) {
+ ret = db->panel_info->backlight_register(db);
+ if (ret < 0)
+ return ret;
+ db->panel.backlight = db->bl_dev;
+ }
+
+ drm_panel_add(&db->panel);
+
+ ret = devm_mipi_dsi_attach(dev, db->dsi_dev);
+ if (ret < 0) {
+ dev_err(dev, "mipi_dsi_attach failed: %d\n", ret);
+ drm_panel_remove(&db->panel);
+ return ret;
+ }
+
+ return 0;
+}
+
+static void d53e6ea8966_remove(struct spi_device *spi)
+{
+ struct d53e6ea8966 *db = spi_get_drvdata(spi);
+
+ drm_panel_remove(&db->panel);
+}
+
+static const struct drm_display_mode ams495qa01_modes[] = {
+ { /* 60hz */
+ .clock = 33500,
+ .hdisplay = 960,
+ .hsync_start = 960 + 10,
+ .hsync_end = 960 + 10 + 2,
+ .htotal = 960 + 10 + 2 + 10,
+ .vdisplay = 544,
+ .vsync_start = 544 + 10,
+ .vsync_end = 544 + 10 + 2,
+ .vtotal = 544 + 10 + 2 + 10,
+ .flags = DRM_MODE_FLAG_NHSYNC | DRM_MODE_FLAG_NVSYNC,
+ .type = DRM_MODE_TYPE_DRIVER | DRM_MODE_TYPE_PREFERRED,
+ },
+ { /* 50hz */
+ .clock = 27800,
+ .hdisplay = 960,
+ .hsync_start = 960 + 10,
+ .hsync_end = 960 + 10 + 2,
+ .htotal = 960 + 10 + 2 + 10,
+ .vdisplay = 544,
+ .vsync_start = 544 + 10,
+ .vsync_end = 544 + 10 + 2,
+ .vtotal = 544 + 10 + 2 + 10,
+ .flags = DRM_MODE_FLAG_NHSYNC | DRM_MODE_FLAG_NVSYNC,
+ .type = DRM_MODE_TYPE_DRIVER,
+ },
+};
+
+static const struct d53e6ea8966_panel_info ams495qa01_info = {
+ .display_modes = ams495qa01_modes,
+ .num_modes = ARRAY_SIZE(ams495qa01_modes),
+ .width_mm = 117,
+ .height_mm = 74,
+ .bus_flags = DRM_BUS_FLAG_DE_LOW | DRM_BUS_FLAG_PIXDATA_DRIVE_NEGEDGE,
+ .panel_init_seq = ams495qa01_panel_init,
+ .backlight_register = ams495qa01_backlight_register,
+};
+
+static const struct of_device_id d53e6ea8966_match[] = {
+ { .compatible = "samsung,ams495qa01", .data = &ams495qa01_info },
+ { /* sentinel */ },
+};
+MODULE_DEVICE_TABLE(of, d53e6ea8966_match);
+
+static const struct spi_device_id d53e6ea8966_ids[] = {
+ { "ams495qa01", 0 },
+ { /* sentinel */ },
+};
+MODULE_DEVICE_TABLE(spi, d53e6ea8966_ids);
+
+static struct spi_driver d53e6ea8966_driver = {
+ .driver = {
+ .name = "d53e6ea8966-panel",
+ .of_match_table = d53e6ea8966_match,
+ },
+ .id_table = d53e6ea8966_ids,
+ .probe = d53e6ea8966_probe,
+ .remove = d53e6ea8966_remove,
+};
+module_spi_driver(d53e6ea8966_driver);
+
+MODULE_AUTHOR("Chris Morgan <macromorgan@hotmail.com>");
+MODULE_DESCRIPTION("Magnachip d53e6ea8966 panel driver");
+MODULE_LICENSE("GPL");
diff --git a/drivers/gpu/drm/panel/panel-mantix-mlaf057we51.c b/drivers/gpu/drm/panel/panel-mantix-mlaf057we51.c
index 772e3b6acece..9243b2ad828d 100644
--- a/drivers/gpu/drm/panel/panel-mantix-mlaf057we51.c
+++ b/drivers/gpu/drm/panel/panel-mantix-mlaf057we51.c
@@ -45,14 +45,6 @@ static inline struct mantix *panel_to_mantix(struct drm_panel *panel)
return container_of(panel, struct mantix, panel);
}
-#define dsi_generic_write_seq(dsi, seq...) do { \
- static const u8 d[] = { seq }; \
- int ret; \
- ret = mipi_dsi_generic_write(dsi, d, ARRAY_SIZE(d)); \
- if (ret < 0) \
- return ret; \
- } while (0)
-
static int mantix_init_sequence(struct mantix *ctx)
{
struct mipi_dsi_device *dsi = to_mipi_dsi_device(ctx->dev);
@@ -61,18 +53,18 @@ static int mantix_init_sequence(struct mantix *ctx)
/*
* Init sequence was supplied by the panel vendor.
*/
- dsi_generic_write_seq(dsi, MANTIX_CMD_OTP_STOP_RELOAD_MIPI, 0x5A);
+ mipi_dsi_generic_write_seq(dsi, MANTIX_CMD_OTP_STOP_RELOAD_MIPI, 0x5A);
- dsi_generic_write_seq(dsi, MANTIX_CMD_INT_CANCEL, 0x03);
- dsi_generic_write_seq(dsi, MANTIX_CMD_OTP_STOP_RELOAD_MIPI, 0x5A, 0x03);
- dsi_generic_write_seq(dsi, 0x80, 0xA9, 0x00);
+ mipi_dsi_generic_write_seq(dsi, MANTIX_CMD_INT_CANCEL, 0x03);
+ mipi_dsi_generic_write_seq(dsi, MANTIX_CMD_OTP_STOP_RELOAD_MIPI, 0x5A, 0x03);
+ mipi_dsi_generic_write_seq(dsi, 0x80, 0xA9, 0x00);
- dsi_generic_write_seq(dsi, MANTIX_CMD_OTP_STOP_RELOAD_MIPI, 0x5A, 0x09);
- dsi_generic_write_seq(dsi, 0x80, 0x64, 0x00, 0x64, 0x00, 0x00);
+ mipi_dsi_generic_write_seq(dsi, MANTIX_CMD_OTP_STOP_RELOAD_MIPI, 0x5A, 0x09);
+ mipi_dsi_generic_write_seq(dsi, 0x80, 0x64, 0x00, 0x64, 0x00, 0x00);
msleep(20);
- dsi_generic_write_seq(dsi, MANTIX_CMD_SPI_FINISH, 0xA5);
- dsi_generic_write_seq(dsi, MANTIX_CMD_OTP_STOP_RELOAD_MIPI, 0x00, 0x2F);
+ mipi_dsi_generic_write_seq(dsi, MANTIX_CMD_SPI_FINISH, 0xA5);
+ mipi_dsi_generic_write_seq(dsi, MANTIX_CMD_OTP_STOP_RELOAD_MIPI, 0x00, 0x2F);
msleep(20);
dev_dbg(dev, "Panel init sequence done\n");
diff --git a/drivers/gpu/drm/panel/panel-newvision-nv3051d.c b/drivers/gpu/drm/panel/panel-newvision-nv3051d.c
new file mode 100644
index 000000000000..a07958038ffd
--- /dev/null
+++ b/drivers/gpu/drm/panel/panel-newvision-nv3051d.c
@@ -0,0 +1,504 @@
+// SPDX-License-Identifier: GPL-2.0
+/*
+ * NV3051D MIPI-DSI panel driver for Anbernic RG353x
+ * Copyright (C) 2022 Chris Morgan
+ *
+ * based on
+ *
+ * Elida kd35t133 3.5" MIPI-DSI panel driver
+ * Copyright (C) Theobroma Systems 2020
+ */
+
+#include <linux/delay.h>
+#include <linux/gpio/consumer.h>
+#include <linux/media-bus-format.h>
+#include <linux/module.h>
+#include <linux/of_device.h>
+#include <linux/regulator/consumer.h>
+
+#include <video/display_timing.h>
+#include <video/mipi_display.h>
+
+#include <drm/drm_mipi_dsi.h>
+#include <drm/drm_modes.h>
+#include <drm/drm_panel.h>
+
+struct nv3051d_panel_info {
+ const struct drm_display_mode *display_modes;
+ unsigned int num_modes;
+ u16 width_mm, height_mm;
+ u32 bus_flags;
+};
+
+struct panel_nv3051d {
+ struct device *dev;
+ struct drm_panel panel;
+ struct gpio_desc *reset_gpio;
+ const struct nv3051d_panel_info *panel_info;
+ struct regulator *vdd;
+};
+
+static inline struct panel_nv3051d *panel_to_panelnv3051d(struct drm_panel *panel)
+{
+ return container_of(panel, struct panel_nv3051d, panel);
+}
+
+static int panel_nv3051d_init_sequence(struct panel_nv3051d *ctx)
+{
+ struct mipi_dsi_device *dsi = to_mipi_dsi_device(ctx->dev);
+
+ /*
+ * Init sequence was supplied by device vendor with no
+ * documentation.
+ */
+
+ mipi_dsi_dcs_write_seq(dsi, 0xFF, 0x30);
+ mipi_dsi_dcs_write_seq(dsi, 0xFF, 0x52);
+ mipi_dsi_dcs_write_seq(dsi, 0xFF, 0x01);
+ mipi_dsi_dcs_write_seq(dsi, 0xE3, 0x00);
+ mipi_dsi_dcs_write_seq(dsi, 0x03, 0x40);
+ mipi_dsi_dcs_write_seq(dsi, 0x04, 0x00);
+ mipi_dsi_dcs_write_seq(dsi, 0x05, 0x03);
+ mipi_dsi_dcs_write_seq(dsi, 0x24, 0x12);
+ mipi_dsi_dcs_write_seq(dsi, 0x25, 0x1E);
+ mipi_dsi_dcs_write_seq(dsi, 0x26, 0x28);
+ mipi_dsi_dcs_write_seq(dsi, 0x27, 0x52);
+ mipi_dsi_dcs_write_seq(dsi, 0x28, 0x57);
+ mipi_dsi_dcs_write_seq(dsi, 0x29, 0x01);
+ mipi_dsi_dcs_write_seq(dsi, 0x2A, 0xDF);
+ mipi_dsi_dcs_write_seq(dsi, 0x38, 0x9C);
+ mipi_dsi_dcs_write_seq(dsi, 0x39, 0xA7);
+ mipi_dsi_dcs_write_seq(dsi, 0x3A, 0x53);
+ mipi_dsi_dcs_write_seq(dsi, 0x44, 0x00);
+ mipi_dsi_dcs_write_seq(dsi, 0x49, 0x3C);
+ mipi_dsi_dcs_write_seq(dsi, 0x59, 0xFE);
+ mipi_dsi_dcs_write_seq(dsi, 0x5C, 0x00);
+ mipi_dsi_dcs_write_seq(dsi, 0x91, 0x77);
+ mipi_dsi_dcs_write_seq(dsi, 0x92, 0x77);
+ mipi_dsi_dcs_write_seq(dsi, 0xA0, 0x55);
+ mipi_dsi_dcs_write_seq(dsi, 0xA1, 0x50);
+ mipi_dsi_dcs_write_seq(dsi, 0xA4, 0x9C);
+ mipi_dsi_dcs_write_seq(dsi, 0xA7, 0x02);
+ mipi_dsi_dcs_write_seq(dsi, 0xA8, 0x01);
+ mipi_dsi_dcs_write_seq(dsi, 0xA9, 0x01);
+ mipi_dsi_dcs_write_seq(dsi, 0xAA, 0xFC);
+ mipi_dsi_dcs_write_seq(dsi, 0xAB, 0x28);
+ mipi_dsi_dcs_write_seq(dsi, 0xAC, 0x06);
+ mipi_dsi_dcs_write_seq(dsi, 0xAD, 0x06);
+ mipi_dsi_dcs_write_seq(dsi, 0xAE, 0x06);
+ mipi_dsi_dcs_write_seq(dsi, 0xAF, 0x03);
+ mipi_dsi_dcs_write_seq(dsi, 0xB0, 0x08);
+ mipi_dsi_dcs_write_seq(dsi, 0xB1, 0x26);
+ mipi_dsi_dcs_write_seq(dsi, 0xB2, 0x28);
+ mipi_dsi_dcs_write_seq(dsi, 0xB3, 0x28);
+ mipi_dsi_dcs_write_seq(dsi, 0xB4, 0x33);
+ mipi_dsi_dcs_write_seq(dsi, 0xB5, 0x08);
+ mipi_dsi_dcs_write_seq(dsi, 0xB6, 0x26);
+ mipi_dsi_dcs_write_seq(dsi, 0xB7, 0x08);
+ mipi_dsi_dcs_write_seq(dsi, 0xB8, 0x26);
+ mipi_dsi_dcs_write_seq(dsi, 0xFF, 0x30);
+ mipi_dsi_dcs_write_seq(dsi, 0xFF, 0x52);
+ mipi_dsi_dcs_write_seq(dsi, 0xFF, 0x02);
+ mipi_dsi_dcs_write_seq(dsi, 0xB1, 0x0E);
+ mipi_dsi_dcs_write_seq(dsi, 0xD1, 0x0E);
+ mipi_dsi_dcs_write_seq(dsi, 0xB4, 0x29);
+ mipi_dsi_dcs_write_seq(dsi, 0xD4, 0x2B);
+ mipi_dsi_dcs_write_seq(dsi, 0xB2, 0x0C);
+ mipi_dsi_dcs_write_seq(dsi, 0xD2, 0x0A);
+ mipi_dsi_dcs_write_seq(dsi, 0xB3, 0x28);
+ mipi_dsi_dcs_write_seq(dsi, 0xD3, 0x28);
+ mipi_dsi_dcs_write_seq(dsi, 0xB6, 0x11);
+ mipi_dsi_dcs_write_seq(dsi, 0xD6, 0x0D);
+ mipi_dsi_dcs_write_seq(dsi, 0xB7, 0x32);
+ mipi_dsi_dcs_write_seq(dsi, 0xD7, 0x30);
+ mipi_dsi_dcs_write_seq(dsi, 0xC1, 0x04);
+ mipi_dsi_dcs_write_seq(dsi, 0xE1, 0x06);
+ mipi_dsi_dcs_write_seq(dsi, 0xB8, 0x0A);
+ mipi_dsi_dcs_write_seq(dsi, 0xD8, 0x0A);
+ mipi_dsi_dcs_write_seq(dsi, 0xB9, 0x01);
+ mipi_dsi_dcs_write_seq(dsi, 0xD9, 0x01);
+ mipi_dsi_dcs_write_seq(dsi, 0xBD, 0x13);
+ mipi_dsi_dcs_write_seq(dsi, 0xDD, 0x13);
+ mipi_dsi_dcs_write_seq(dsi, 0xBC, 0x11);
+ mipi_dsi_dcs_write_seq(dsi, 0xDC, 0x11);
+ mipi_dsi_dcs_write_seq(dsi, 0xBB, 0x0F);
+ mipi_dsi_dcs_write_seq(dsi, 0xDB, 0x0F);
+ mipi_dsi_dcs_write_seq(dsi, 0xBA, 0x0F);
+ mipi_dsi_dcs_write_seq(dsi, 0xDA, 0x0F);
+ mipi_dsi_dcs_write_seq(dsi, 0xBE, 0x18);
+ mipi_dsi_dcs_write_seq(dsi, 0xDE, 0x18);
+ mipi_dsi_dcs_write_seq(dsi, 0xBF, 0x0F);
+ mipi_dsi_dcs_write_seq(dsi, 0xDF, 0x0F);
+ mipi_dsi_dcs_write_seq(dsi, 0xC0, 0x17);
+ mipi_dsi_dcs_write_seq(dsi, 0xE0, 0x17);
+ mipi_dsi_dcs_write_seq(dsi, 0xB5, 0x3B);
+ mipi_dsi_dcs_write_seq(dsi, 0xD5, 0x3C);
+ mipi_dsi_dcs_write_seq(dsi, 0xB0, 0x0B);
+ mipi_dsi_dcs_write_seq(dsi, 0xD0, 0x0C);
+ mipi_dsi_dcs_write_seq(dsi, 0xFF, 0x30);
+ mipi_dsi_dcs_write_seq(dsi, 0xFF, 0x52);
+ mipi_dsi_dcs_write_seq(dsi, 0xFF, 0x03);
+ mipi_dsi_dcs_write_seq(dsi, 0x00, 0x2A);
+ mipi_dsi_dcs_write_seq(dsi, 0x01, 0x2A);
+ mipi_dsi_dcs_write_seq(dsi, 0x02, 0x2A);
+ mipi_dsi_dcs_write_seq(dsi, 0x03, 0x2A);
+ mipi_dsi_dcs_write_seq(dsi, 0x04, 0x61);
+ mipi_dsi_dcs_write_seq(dsi, 0x05, 0x80);
+ mipi_dsi_dcs_write_seq(dsi, 0x06, 0xC7);
+ mipi_dsi_dcs_write_seq(dsi, 0x07, 0x01);
+ mipi_dsi_dcs_write_seq(dsi, 0x08, 0x82);
+ mipi_dsi_dcs_write_seq(dsi, 0x09, 0x83);
+ mipi_dsi_dcs_write_seq(dsi, 0x30, 0x2A);
+ mipi_dsi_dcs_write_seq(dsi, 0x31, 0x2A);
+ mipi_dsi_dcs_write_seq(dsi, 0x32, 0x2A);
+ mipi_dsi_dcs_write_seq(dsi, 0x33, 0x2A);
+ mipi_dsi_dcs_write_seq(dsi, 0x34, 0x61);
+ mipi_dsi_dcs_write_seq(dsi, 0x35, 0xC5);
+ mipi_dsi_dcs_write_seq(dsi, 0x36, 0x80);
+ mipi_dsi_dcs_write_seq(dsi, 0x37, 0x23);
+ mipi_dsi_dcs_write_seq(dsi, 0x40, 0x82);
+ mipi_dsi_dcs_write_seq(dsi, 0x41, 0x83);
+ mipi_dsi_dcs_write_seq(dsi, 0x42, 0x80);
+ mipi_dsi_dcs_write_seq(dsi, 0x43, 0x81);
+ mipi_dsi_dcs_write_seq(dsi, 0x44, 0x11);
+ mipi_dsi_dcs_write_seq(dsi, 0x45, 0xF2);
+ mipi_dsi_dcs_write_seq(dsi, 0x46, 0xF1);
+ mipi_dsi_dcs_write_seq(dsi, 0x47, 0x11);
+ mipi_dsi_dcs_write_seq(dsi, 0x48, 0xF4);
+ mipi_dsi_dcs_write_seq(dsi, 0x49, 0xF3);
+ mipi_dsi_dcs_write_seq(dsi, 0x50, 0x02);
+ mipi_dsi_dcs_write_seq(dsi, 0x51, 0x01);
+ mipi_dsi_dcs_write_seq(dsi, 0x52, 0x04);
+ mipi_dsi_dcs_write_seq(dsi, 0x53, 0x03);
+ mipi_dsi_dcs_write_seq(dsi, 0x54, 0x11);
+ mipi_dsi_dcs_write_seq(dsi, 0x55, 0xF6);
+ mipi_dsi_dcs_write_seq(dsi, 0x56, 0xF5);
+ mipi_dsi_dcs_write_seq(dsi, 0x57, 0x11);
+ mipi_dsi_dcs_write_seq(dsi, 0x58, 0xF8);
+ mipi_dsi_dcs_write_seq(dsi, 0x59, 0xF7);
+ mipi_dsi_dcs_write_seq(dsi, 0x7E, 0x02);
+ mipi_dsi_dcs_write_seq(dsi, 0x7F, 0x80);
+ mipi_dsi_dcs_write_seq(dsi, 0xE0, 0x5A);
+ mipi_dsi_dcs_write_seq(dsi, 0xB1, 0x00);
+ mipi_dsi_dcs_write_seq(dsi, 0xB4, 0x0E);
+ mipi_dsi_dcs_write_seq(dsi, 0xB5, 0x0F);
+ mipi_dsi_dcs_write_seq(dsi, 0xB6, 0x04);
+ mipi_dsi_dcs_write_seq(dsi, 0xB7, 0x07);
+ mipi_dsi_dcs_write_seq(dsi, 0xB8, 0x06);
+ mipi_dsi_dcs_write_seq(dsi, 0xB9, 0x05);
+ mipi_dsi_dcs_write_seq(dsi, 0xBA, 0x0F);
+ mipi_dsi_dcs_write_seq(dsi, 0xC7, 0x00);
+ mipi_dsi_dcs_write_seq(dsi, 0xCA, 0x0E);
+ mipi_dsi_dcs_write_seq(dsi, 0xCB, 0x0F);
+ mipi_dsi_dcs_write_seq(dsi, 0xCC, 0x04);
+ mipi_dsi_dcs_write_seq(dsi, 0xCD, 0x07);
+ mipi_dsi_dcs_write_seq(dsi, 0xCE, 0x06);
+ mipi_dsi_dcs_write_seq(dsi, 0xCF, 0x05);
+ mipi_dsi_dcs_write_seq(dsi, 0xD0, 0x0F);
+ mipi_dsi_dcs_write_seq(dsi, 0x81, 0x0F);
+ mipi_dsi_dcs_write_seq(dsi, 0x84, 0x0E);
+ mipi_dsi_dcs_write_seq(dsi, 0x85, 0x0F);
+ mipi_dsi_dcs_write_seq(dsi, 0x86, 0x07);
+ mipi_dsi_dcs_write_seq(dsi, 0x87, 0x04);
+ mipi_dsi_dcs_write_seq(dsi, 0x88, 0x05);
+ mipi_dsi_dcs_write_seq(dsi, 0x89, 0x06);
+ mipi_dsi_dcs_write_seq(dsi, 0x8A, 0x00);
+ mipi_dsi_dcs_write_seq(dsi, 0x97, 0x0F);
+ mipi_dsi_dcs_write_seq(dsi, 0x9A, 0x0E);
+ mipi_dsi_dcs_write_seq(dsi, 0x9B, 0x0F);
+ mipi_dsi_dcs_write_seq(dsi, 0x9C, 0x07);
+ mipi_dsi_dcs_write_seq(dsi, 0x9D, 0x04);
+ mipi_dsi_dcs_write_seq(dsi, 0x9E, 0x05);
+ mipi_dsi_dcs_write_seq(dsi, 0x9F, 0x06);
+ mipi_dsi_dcs_write_seq(dsi, 0xA0, 0x00);
+ mipi_dsi_dcs_write_seq(dsi, 0xFF, 0x30);
+ mipi_dsi_dcs_write_seq(dsi, 0xFF, 0x52);
+ mipi_dsi_dcs_write_seq(dsi, 0xFF, 0x02);
+ mipi_dsi_dcs_write_seq(dsi, 0x01, 0x01);
+ mipi_dsi_dcs_write_seq(dsi, 0x02, 0xDA);
+ mipi_dsi_dcs_write_seq(dsi, 0x03, 0xBA);
+ mipi_dsi_dcs_write_seq(dsi, 0x04, 0xA8);
+ mipi_dsi_dcs_write_seq(dsi, 0x05, 0x9A);
+ mipi_dsi_dcs_write_seq(dsi, 0x06, 0x70);
+ mipi_dsi_dcs_write_seq(dsi, 0x07, 0xFF);
+ mipi_dsi_dcs_write_seq(dsi, 0x08, 0x91);
+ mipi_dsi_dcs_write_seq(dsi, 0x09, 0x90);
+ mipi_dsi_dcs_write_seq(dsi, 0x0A, 0xFF);
+ mipi_dsi_dcs_write_seq(dsi, 0x0B, 0x8F);
+ mipi_dsi_dcs_write_seq(dsi, 0x0C, 0x60);
+ mipi_dsi_dcs_write_seq(dsi, 0x0D, 0x58);
+ mipi_dsi_dcs_write_seq(dsi, 0x0E, 0x48);
+ mipi_dsi_dcs_write_seq(dsi, 0x0F, 0x38);
+ mipi_dsi_dcs_write_seq(dsi, 0x10, 0x2B);
+ mipi_dsi_dcs_write_seq(dsi, 0xFF, 0x30);
+ mipi_dsi_dcs_write_seq(dsi, 0xFF, 0x52);
+ mipi_dsi_dcs_write_seq(dsi, 0xFF, 0x00);
+ mipi_dsi_dcs_write_seq(dsi, 0x36, 0x02);
+ mipi_dsi_dcs_write_seq(dsi, 0x3A, 0x70);
+
+ dev_dbg(ctx->dev, "Panel init sequence done\n");
+
+ return 0;
+}
+
+static int panel_nv3051d_unprepare(struct drm_panel *panel)
+{
+ struct panel_nv3051d *ctx = panel_to_panelnv3051d(panel);
+ struct mipi_dsi_device *dsi = to_mipi_dsi_device(ctx->dev);
+ int ret;
+
+ ret = mipi_dsi_dcs_set_display_off(dsi);
+ if (ret < 0)
+ dev_err(ctx->dev, "failed to set display off: %d\n", ret);
+
+ msleep(20);
+
+ ret = mipi_dsi_dcs_enter_sleep_mode(dsi);
+ if (ret < 0) {
+ dev_err(ctx->dev, "failed to enter sleep mode: %d\n", ret);
+ return ret;
+ }
+
+ usleep_range(10000, 15000);
+
+ regulator_disable(ctx->vdd);
+
+ return 0;
+}
+
+static int panel_nv3051d_prepare(struct drm_panel *panel)
+{
+ struct panel_nv3051d *ctx = panel_to_panelnv3051d(panel);
+ struct mipi_dsi_device *dsi = to_mipi_dsi_device(ctx->dev);
+ int ret;
+
+ dev_dbg(ctx->dev, "Resetting the panel\n");
+ ret = regulator_enable(ctx->vdd);
+ if (ret < 0) {
+ dev_err(ctx->dev, "Failed to enable vdd supply: %d\n", ret);
+ return ret;
+ }
+
+ usleep_range(2000, 3000);
+ gpiod_set_value_cansleep(ctx->reset_gpio, 1);
+ msleep(150);
+ gpiod_set_value_cansleep(ctx->reset_gpio, 0);
+ msleep(20);
+
+ ret = panel_nv3051d_init_sequence(ctx);
+ if (ret < 0) {
+ dev_err(ctx->dev, "Panel init sequence failed: %d\n", ret);
+ goto disable_vdd;
+ }
+
+ ret = mipi_dsi_dcs_exit_sleep_mode(dsi);
+ if (ret < 0) {
+ dev_err(ctx->dev, "Failed to exit sleep mode: %d\n", ret);
+ goto disable_vdd;
+ }
+
+ msleep(200);
+
+ ret = mipi_dsi_dcs_set_display_on(dsi);
+ if (ret < 0) {
+ dev_err(ctx->dev, "Failed to set display on: %d\n", ret);
+ goto disable_vdd;
+ }
+
+ usleep_range(10000, 15000);
+
+ return 0;
+
+disable_vdd:
+ regulator_disable(ctx->vdd);
+ return ret;
+}
+
+static int panel_nv3051d_get_modes(struct drm_panel *panel,
+ struct drm_connector *connector)
+{
+ struct panel_nv3051d *ctx = panel_to_panelnv3051d(panel);
+ const struct nv3051d_panel_info *panel_info = ctx->panel_info;
+ struct drm_display_mode *mode;
+ unsigned int i;
+
+ for (i = 0; i < panel_info->num_modes; i++) {
+ mode = drm_mode_duplicate(connector->dev,
+ &panel_info->display_modes[i]);
+ if (!mode)
+ return -ENOMEM;
+
+ drm_mode_set_name(mode);
+
+ mode->type = DRM_MODE_TYPE_DRIVER;
+ if (panel_info->num_modes == 1)
+ mode->type |= DRM_MODE_TYPE_PREFERRED;
+
+ drm_mode_probed_add(connector, mode);
+ }
+
+ connector->display_info.bpc = 8;
+ connector->display_info.width_mm = panel_info->width_mm;
+ connector->display_info.height_mm = panel_info->height_mm;
+ connector->display_info.bus_flags = panel_info->bus_flags;
+
+ return panel_info->num_modes;
+}
+
+static const struct drm_panel_funcs panel_nv3051d_funcs = {
+ .unprepare = panel_nv3051d_unprepare,
+ .prepare = panel_nv3051d_prepare,
+ .get_modes = panel_nv3051d_get_modes,
+};
+
+static int panel_nv3051d_probe(struct mipi_dsi_device *dsi)
+{
+ struct device *dev = &dsi->dev;
+ struct panel_nv3051d *ctx;
+ int ret;
+
+ ctx = devm_kzalloc(dev, sizeof(*ctx), GFP_KERNEL);
+ if (!ctx)
+ return -ENOMEM;
+
+ ctx->dev = dev;
+
+ ctx->panel_info = of_device_get_match_data(dev);
+ if (!ctx->panel_info)
+ return -EINVAL;
+
+ ctx->reset_gpio = devm_gpiod_get_optional(dev, "reset", GPIOD_OUT_HIGH);
+ if (IS_ERR(ctx->reset_gpio)) {
+ dev_err(dev, "cannot get reset gpio\n");
+ return PTR_ERR(ctx->reset_gpio);
+ }
+
+ ctx->vdd = devm_regulator_get(dev, "vdd");
+ if (IS_ERR(ctx->vdd)) {
+ ret = PTR_ERR(ctx->vdd);
+ if (ret != -EPROBE_DEFER)
+ dev_err(dev, "Failed to request vdd regulator: %d\n", ret);
+ return ret;
+ }
+
+ mipi_dsi_set_drvdata(dsi, ctx);
+
+ dsi->lanes = 4;
+ dsi->format = MIPI_DSI_FMT_RGB888;
+ dsi->mode_flags = MIPI_DSI_MODE_VIDEO | MIPI_DSI_MODE_VIDEO_BURST |
+ MIPI_DSI_MODE_LPM | MIPI_DSI_MODE_NO_EOT_PACKET;
+
+ drm_panel_init(&ctx->panel, &dsi->dev, &panel_nv3051d_funcs,
+ DRM_MODE_CONNECTOR_DSI);
+
+ ret = drm_panel_of_backlight(&ctx->panel);
+ if (ret)
+ return ret;
+
+ drm_panel_add(&ctx->panel);
+
+ ret = mipi_dsi_attach(dsi);
+ if (ret < 0) {
+ dev_err(dev, "mipi_dsi_attach failed: %d\n", ret);
+ drm_panel_remove(&ctx->panel);
+ return ret;
+ }
+
+ return 0;
+}
+
+static void panel_nv3051d_shutdown(struct mipi_dsi_device *dsi)
+{
+ struct panel_nv3051d *ctx = mipi_dsi_get_drvdata(dsi);
+ int ret;
+
+ ret = drm_panel_unprepare(&ctx->panel);
+ if (ret < 0)
+ dev_err(&dsi->dev, "Failed to unprepare panel: %d\n", ret);
+
+ ret = drm_panel_disable(&ctx->panel);
+ if (ret < 0)
+ dev_err(&dsi->dev, "Failed to disable panel: %d\n", ret);
+}
+
+static void panel_nv3051d_remove(struct mipi_dsi_device *dsi)
+{
+ struct panel_nv3051d *ctx = mipi_dsi_get_drvdata(dsi);
+ int ret;
+
+ panel_nv3051d_shutdown(dsi);
+
+ ret = mipi_dsi_detach(dsi);
+ if (ret < 0)
+ dev_err(&dsi->dev, "Failed to detach from DSI host: %d\n", ret);
+
+ drm_panel_remove(&ctx->panel);
+}
+
+static const struct drm_display_mode nv3051d_rgxx3_modes[] = {
+ { /* 120hz */
+ .hdisplay = 640,
+ .hsync_start = 640 + 40,
+ .hsync_end = 640 + 40 + 2,
+ .htotal = 640 + 40 + 2 + 80,
+ .vdisplay = 480,
+ .vsync_start = 480 + 18,
+ .vsync_end = 480 + 18 + 2,
+ .vtotal = 480 + 18 + 2 + 28,
+ .clock = 48300,
+ .flags = DRM_MODE_FLAG_NHSYNC | DRM_MODE_FLAG_NVSYNC,
+ },
+ { /* 100hz */
+ .hdisplay = 640,
+ .hsync_start = 640 + 40,
+ .hsync_end = 640 + 40 + 2,
+ .htotal = 640 + 40 + 2 + 80,
+ .vdisplay = 480,
+ .vsync_start = 480 + 18,
+ .vsync_end = 480 + 18 + 2,
+ .vtotal = 480 + 18 + 2 + 28,
+ .clock = 40250,
+ .flags = DRM_MODE_FLAG_NHSYNC | DRM_MODE_FLAG_NVSYNC,
+ },
+ { /* 60hz */
+ .hdisplay = 640,
+ .hsync_start = 640 + 40,
+ .hsync_end = 640 + 40 + 2,
+ .htotal = 640 + 40 + 2 + 80,
+ .vdisplay = 480,
+ .vsync_start = 480 + 18,
+ .vsync_end = 480 + 18 + 2,
+ .vtotal = 480 + 18 + 2 + 28,
+ .clock = 24150,
+ .flags = DRM_MODE_FLAG_NHSYNC | DRM_MODE_FLAG_NVSYNC,
+ },
+};
+
+static const struct nv3051d_panel_info nv3051d_rgxx3_info = {
+ .display_modes = nv3051d_rgxx3_modes,
+ .num_modes = ARRAY_SIZE(nv3051d_rgxx3_modes),
+ .width_mm = 70,
+ .height_mm = 57,
+ .bus_flags = DRM_BUS_FLAG_DE_LOW | DRM_BUS_FLAG_PIXDATA_DRIVE_NEGEDGE,
+};
+
+static const struct of_device_id newvision_nv3051d_of_match[] = {
+ { .compatible = "newvision,nv3051d", .data = &nv3051d_rgxx3_info },
+ { /* sentinel */ }
+};
+MODULE_DEVICE_TABLE(of, newvision_nv3051d_of_match);
+
+static struct mipi_dsi_driver newvision_nv3051d_driver = {
+ .driver = {
+ .name = "panel-newvision-nv3051d",
+ .of_match_table = newvision_nv3051d_of_match,
+ },
+ .probe = panel_nv3051d_probe,
+ .remove = panel_nv3051d_remove,
+ .shutdown = panel_nv3051d_shutdown,
+};
+module_mipi_dsi_driver(newvision_nv3051d_driver);
+
+MODULE_AUTHOR("Chris Morgan <macromorgan@hotmail.com>");
+MODULE_DESCRIPTION("DRM driver for Newvision NV3051D based MIPI DSI panels");
+MODULE_LICENSE("GPL");
diff --git a/drivers/gpu/drm/panel/panel-novatek-nt35950.c b/drivers/gpu/drm/panel/panel-novatek-nt35950.c
index 3a844917da07..8b108ac80b55 100644
--- a/drivers/gpu/drm/panel/panel-novatek-nt35950.c
+++ b/drivers/gpu/drm/panel/panel-novatek-nt35950.c
@@ -89,14 +89,6 @@ static inline struct nt35950 *to_nt35950(struct drm_panel *panel)
return container_of(panel, struct nt35950, panel);
}
-#define dsi_dcs_write_seq(dsi, seq...) do { \
- static const u8 d[] = { seq }; \
- int ret; \
- ret = mipi_dsi_dcs_write_buffer(dsi, d, ARRAY_SIZE(d)); \
- if (ret < 0) \
- return ret; \
- } while (0)
-
static void nt35950_reset(struct nt35950 *nt)
{
gpiod_set_value_cansleep(nt->reset_gpio, 1);
@@ -338,7 +330,7 @@ static int nt35950_on(struct nt35950 *nt)
return ret;
/* Unknown command */
- dsi_dcs_write_seq(dsi, 0xd4, 0x88, 0x88);
+ mipi_dsi_dcs_write_seq(dsi, 0xd4, 0x88, 0x88);
/* CMD2 Page 7 */
ret = nt35950_set_cmd2_page(nt, 7);
@@ -346,10 +338,10 @@ static int nt35950_on(struct nt35950 *nt)
return ret;
/* Enable SubPixel Rendering */
- dsi_dcs_write_seq(dsi, MCS_PARAM_SPR_EN, 0x01);
+ mipi_dsi_dcs_write_seq(dsi, MCS_PARAM_SPR_EN, 0x01);
/* SPR Mode: YYG Rainbow-RGB */
- dsi_dcs_write_seq(dsi, MCS_PARAM_SPR_MODE, MCS_SPR_MODE_YYG_RAINBOW_RGB);
+ mipi_dsi_dcs_write_seq(dsi, MCS_PARAM_SPR_MODE, MCS_SPR_MODE_YYG_RAINBOW_RGB);
/* CMD3 */
ret = nt35950_inject_black_image(nt);
@@ -593,8 +585,12 @@ static int nt35950_probe(struct mipi_dsi_device *dsi)
DRM_MODE_CONNECTOR_DSI);
ret = drm_panel_of_backlight(&nt->panel);
- if (ret)
+ if (ret) {
+ if (num_dsis == 2)
+ mipi_dsi_device_unregister(nt->dsi[1]);
+
return dev_err_probe(dev, ret, "Failed to get backlight\n");
+ }
drm_panel_add(&nt->panel);
@@ -610,6 +606,10 @@ static int nt35950_probe(struct mipi_dsi_device *dsi)
ret = mipi_dsi_attach(nt->dsi[i]);
if (ret < 0) {
+ /* If we fail to attach to either host, we're done */
+ if (num_dsis == 2)
+ mipi_dsi_device_unregister(nt->dsi[1]);
+
return dev_err_probe(dev, ret,
"Cannot attach to DSI%d host.\n", i);
}
diff --git a/drivers/gpu/drm/panel/panel-novatek-nt36523.c b/drivers/gpu/drm/panel/panel-novatek-nt36523.c
new file mode 100644
index 000000000000..d30dbbfb67b1
--- /dev/null
+++ b/drivers/gpu/drm/panel/panel-novatek-nt36523.c
@@ -0,0 +1,777 @@
+// SPDX-License-Identifier: GPL-2.0-only
+/*
+ * Novatek NT36523 DriverIC panels driver
+ *
+ * Copyright (c) 2022, 2023 Jianhua Lu <lujianhua000@gmail.com>
+ */
+
+#include <linux/delay.h>
+#include <linux/gpio/consumer.h>
+#include <linux/module.h>
+#include <linux/of_device.h>
+#include <linux/of_graph.h>
+#include <linux/regulator/consumer.h>
+
+#include <drm/drm_connector.h>
+#include <drm/drm_crtc.h>
+#include <drm/drm_mipi_dsi.h>
+#include <drm/drm_modes.h>
+#include <drm/drm_panel.h>
+
+#define DSI_NUM_MIN 1
+
+#define mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, cmd, seq...) \
+ do { \
+ mipi_dsi_dcs_write_seq(dsi0, cmd, seq); \
+ mipi_dsi_dcs_write_seq(dsi1, cmd, seq); \
+ } while (0)
+
+struct panel_info {
+ struct drm_panel panel;
+ struct mipi_dsi_device *dsi[2];
+ const struct panel_desc *desc;
+
+ struct gpio_desc *reset_gpio;
+ struct backlight_device *backlight;
+ struct regulator *vddio;
+
+ bool prepared;
+};
+
+struct panel_desc {
+ unsigned int width_mm;
+ unsigned int height_mm;
+
+ unsigned int bpc;
+ unsigned int lanes;
+ unsigned long mode_flags;
+ enum mipi_dsi_pixel_format format;
+
+ const struct drm_display_mode *modes;
+ unsigned int num_modes;
+ const struct mipi_dsi_device_info dsi_info;
+ int (*init_sequence)(struct panel_info *pinfo);
+
+ bool is_dual_dsi;
+};
+
+static inline struct panel_info *to_panel_info(struct drm_panel *panel)
+{
+ return container_of(panel, struct panel_info, panel);
+}
+
+static int elish_boe_init_sequence(struct panel_info *pinfo)
+{
+ struct mipi_dsi_device *dsi0 = pinfo->dsi[0];
+ struct mipi_dsi_device *dsi1 = pinfo->dsi[1];
+ /* No datasheet, so write magic init sequence directly */
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0x10);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xfb, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xb9, 0x05);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0x20);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xfb, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x18, 0x40);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0x10);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xfb, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xb9, 0x02);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0x23);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xfb, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x00, 0x80);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x01, 0x84);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x05, 0x2d);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x06, 0x00);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x07, 0x00);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x08, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x09, 0x45);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x11, 0x02);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x12, 0x80);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x15, 0x83);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x16, 0x0c);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x29, 0x0a);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x30, 0xff);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x31, 0xfe);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x32, 0xfd);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x33, 0xfb);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x34, 0xf8);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x35, 0xf5);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x36, 0xf3);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x37, 0xf2);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x38, 0xf2);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x39, 0xf2);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x3a, 0xef);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x3b, 0xec);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x3d, 0xe9);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x3f, 0xe5);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x40, 0xe5);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x41, 0xe5);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x2a, 0x13);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x45, 0xff);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x46, 0xf4);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x47, 0xe7);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x48, 0xda);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x49, 0xcd);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x4a, 0xc0);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x4b, 0xb3);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x4c, 0xb2);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x4d, 0xb2);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x4e, 0xb2);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x4f, 0x99);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x50, 0x80);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x51, 0x68);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x52, 0x66);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x53, 0x66);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x54, 0x66);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x2b, 0x0e);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x58, 0xff);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x59, 0xfb);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x5a, 0xf7);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x5b, 0xf3);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x5c, 0xef);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x5d, 0xe3);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x5e, 0xda);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x5f, 0xd8);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x60, 0xd8);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x61, 0xd8);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x62, 0xcb);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x63, 0xbf);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x64, 0xb3);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x65, 0xb2);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x66, 0xb2);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x67, 0xb2);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0x2a);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xfb, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x25, 0x47);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x30, 0x47);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x39, 0x47);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0x26);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xfb, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x19, 0x10);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x1a, 0xe0);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x1b, 0x10);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x1c, 0x00);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x2a, 0x10);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x2b, 0xe0);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0x10);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xfb, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0xf0);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xfb, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x84, 0x08);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x85, 0x0c);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0x20);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xfb, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x51, 0x00);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0x25);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xfb, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x91, 0x1f);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x92, 0x0f);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x93, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x94, 0x18);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x95, 0x03);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x96, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0x10);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xb0, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0x25);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xfb, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x19, 0x1f);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x1b, 0x1b);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0x24);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xfb, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xb8, 0x28);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0x27);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xfb, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xd0, 0x31);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xd1, 0x20);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xd2, 0x30);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xd4, 0x08);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xde, 0x80);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xdf, 0x02);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0x26);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xfb, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x00, 0x81);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x01, 0xb0);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0x22);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xfb, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x9f, 0x50);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x6f, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x70, 0x11);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x73, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x74, 0x49);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x76, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x77, 0x49);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xa0, 0x3f);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xa9, 0x50);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xaa, 0x28);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xab, 0x28);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xad, 0x10);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xb8, 0x00);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xb9, 0x49);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xba, 0x49);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xbb, 0x49);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xbe, 0x04);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xbf, 0x49);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xc0, 0x04);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xc1, 0x59);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xc2, 0x00);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xc5, 0x00);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xc6, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xc7, 0x48);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xca, 0x43);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xcb, 0x3c);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xce, 0x00);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xcf, 0x43);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xd0, 0x3c);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xd3, 0x43);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xd4, 0x3c);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xd7, 0x00);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xdc, 0x43);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xdd, 0x3c);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xe1, 0x43);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xe2, 0x3c);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xf2, 0x00);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xf3, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xf4, 0x48);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0x25);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xfb, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x13, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x14, 0x23);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xbc, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xbd, 0x23);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0x2a);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xfb, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x97, 0x3c);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x98, 0x02);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x99, 0x95);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x9a, 0x03);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x9b, 0x00);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x9c, 0x0b);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x9d, 0x0a);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x9e, 0x90);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0x22);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xfb, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x9f, 0x50);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0x23);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xfb, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xa3, 0x50);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0xe0);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xfb, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x14, 0x60);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x16, 0xc0);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x4f, 0x02);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0xf0);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xfb, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x3a, 0x08);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0xd0);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xfb, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x02, 0xaf);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x09, 0xee);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x1c, 0x99);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x1d, 0x09);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0x10);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xfb, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x51, 0x0f, 0xff);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x53, 0x2c);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x35, 0x00);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xbb, 0x13);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x3b, 0x03, 0xac, 0x1a, 0x04, 0x04);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x11);
+ msleep(70);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x29);
+
+ return 0;
+}
+
+static int elish_csot_init_sequence(struct panel_info *pinfo)
+{
+ struct mipi_dsi_device *dsi0 = pinfo->dsi[0];
+ struct mipi_dsi_device *dsi1 = pinfo->dsi[1];
+ /* No datasheet, so write magic init sequence directly */
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0x10);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xfb, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xb9, 0x05);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0x20);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xfb, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x18, 0x40);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0x10);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xfb, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xb9, 0x02);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0xd0);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xfb, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x02, 0xaf);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x00, 0x30);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x09, 0xee);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x1c, 0x99);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x1d, 0x09);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0xf0);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xfb, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x3a, 0x08);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0xe0);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xfb, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x4f, 0x02);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0x20);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xfb, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x58, 0x40);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0x10);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xfb, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x35, 0x00);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0x23);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xfb, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x00, 0x80);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x01, 0x84);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x05, 0x2d);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x06, 0x00);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x07, 0x00);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x08, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x09, 0x45);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x11, 0x02);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x12, 0x80);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x15, 0x83);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x16, 0x0c);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x29, 0x0a);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x30, 0xff);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x31, 0xfe);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x32, 0xfd);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x33, 0xfb);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x34, 0xf8);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x35, 0xf5);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x36, 0xf3);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x37, 0xf2);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x38, 0xf2);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x39, 0xf2);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x3a, 0xef);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x3b, 0xec);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x3d, 0xe9);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x3f, 0xe5);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x40, 0xe5);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x41, 0xe5);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x2a, 0x13);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x45, 0xff);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x46, 0xf4);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x47, 0xe7);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x48, 0xda);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x49, 0xcd);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x4a, 0xc0);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x4b, 0xb3);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x4c, 0xb2);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x4d, 0xb2);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x4e, 0xb2);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x4f, 0x99);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x50, 0x80);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x51, 0x68);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x52, 0x66);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x53, 0x66);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x54, 0x66);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x2b, 0x0e);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x58, 0xff);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x59, 0xfb);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x5a, 0xf7);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x5b, 0xf3);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x5c, 0xef);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x5d, 0xe3);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x5e, 0xda);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x5f, 0xd8);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x60, 0xd8);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x61, 0xd8);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x62, 0xcb);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x63, 0xbf);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x64, 0xb3);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x65, 0xb2);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x66, 0xb2);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x67, 0xb2);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0x10);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xfb, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x51, 0x0f, 0xff);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x53, 0x2c);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x55, 0x00);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xbb, 0x13);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x3b, 0x03, 0xac, 0x1a, 0x04, 0x04);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0x2a);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xfb, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x25, 0x46);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x30, 0x46);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x39, 0x46);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0x26);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xfb, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x01, 0xb0);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x19, 0x10);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x1a, 0xe0);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x1b, 0x10);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x1c, 0x00);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x2a, 0x10);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x2b, 0xe0);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0xf0);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xfb, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x84, 0x08);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x85, 0x0c);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0x20);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xfb, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x51, 0x00);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0x25);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xfb, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x91, 0x1f);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x92, 0x0f);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x93, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x94, 0x18);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x95, 0x03);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x96, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0x10);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xb0, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0x25);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xfb, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x19, 0x1f);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x1b, 0x1b);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0x24);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xfb, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xb8, 0x28);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0x27);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xfb, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xd0, 0x31);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xd1, 0x20);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xd4, 0x08);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xde, 0x80);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xdf, 0x02);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0x26);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xfb, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x00, 0x81);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x01, 0xb0);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0x22);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xfb, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x6f, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x70, 0x11);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x73, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x74, 0x4d);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xa0, 0x3f);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xa9, 0x50);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xaa, 0x28);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xab, 0x28);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xad, 0x10);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xb8, 0x00);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xb9, 0x4b);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xba, 0x96);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xbb, 0x4b);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xbe, 0x07);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xbf, 0x4b);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xc0, 0x07);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xc1, 0x5c);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xc2, 0x00);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xc5, 0x00);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xc6, 0x3f);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xc7, 0x00);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xca, 0x08);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xcb, 0x40);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xce, 0x00);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xcf, 0x08);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xd0, 0x40);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xd3, 0x08);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xd4, 0x40);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0x25);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xfb, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xbc, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xbd, 0x1c);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0x2a);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xfb, 0x01);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x9a, 0x03);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0xff, 0x10);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x11);
+ msleep(70);
+ mipi_dsi_dual_dcs_write_seq(dsi0, dsi1, 0x29);
+
+ return 0;
+}
+
+static const struct drm_display_mode elish_boe_modes[] = {
+ {
+ /* There is only one 120 Hz timing, but it doesn't work perfectly, 104 Hz preferred */
+ .clock = (1600 + 60 + 8 + 60) * (2560 + 26 + 4 + 168) * 104 / 1000,
+ .hdisplay = 1600,
+ .hsync_start = 1600 + 60,
+ .hsync_end = 1600 + 60 + 8,
+ .htotal = 1600 + 60 + 8 + 60,
+ .vdisplay = 2560,
+ .vsync_start = 2560 + 26,
+ .vsync_end = 2560 + 26 + 4,
+ .vtotal = 2560 + 26 + 4 + 168,
+ },
+};
+
+static const struct drm_display_mode elish_csot_modes[] = {
+ {
+ /* There is only one 120 Hz timing, but it doesn't work perfectly, 104 Hz preferred */
+ .clock = (1600 + 200 + 40 + 52) * (2560 + 26 + 4 + 168) * 104 / 1000,
+ .hdisplay = 1600,
+ .hsync_start = 1600 + 200,
+ .hsync_end = 1600 + 200 + 40,
+ .htotal = 1600 + 200 + 40 + 52,
+ .vdisplay = 2560,
+ .vsync_start = 2560 + 26,
+ .vsync_end = 2560 + 26 + 4,
+ .vtotal = 2560 + 26 + 4 + 168,
+ },
+};
+
+static const struct panel_desc elish_boe_desc = {
+ .modes = elish_boe_modes,
+ .num_modes = ARRAY_SIZE(elish_boe_modes),
+ .dsi_info = {
+ .type = "BOE-elish",
+ .channel = 0,
+ .node = NULL,
+ },
+ .width_mm = 127,
+ .height_mm = 203,
+ .bpc = 8,
+ .lanes = 3,
+ .format = MIPI_DSI_FMT_RGB888,
+ .mode_flags = MIPI_DSI_MODE_VIDEO | MIPI_DSI_CLOCK_NON_CONTINUOUS | MIPI_DSI_MODE_LPM,
+ .init_sequence = elish_boe_init_sequence,
+ .is_dual_dsi = true,
+};
+
+static const struct panel_desc elish_csot_desc = {
+ .modes = elish_csot_modes,
+ .num_modes = ARRAY_SIZE(elish_csot_modes),
+ .dsi_info = {
+ .type = "CSOT-elish",
+ .channel = 0,
+ .node = NULL,
+ },
+ .width_mm = 127,
+ .height_mm = 203,
+ .bpc = 8,
+ .lanes = 3,
+ .format = MIPI_DSI_FMT_RGB888,
+ .mode_flags = MIPI_DSI_MODE_VIDEO | MIPI_DSI_CLOCK_NON_CONTINUOUS | MIPI_DSI_MODE_LPM,
+ .init_sequence = elish_csot_init_sequence,
+ .is_dual_dsi = true,
+};
+
+static void nt36523_reset(struct panel_info *pinfo)
+{
+ gpiod_set_value_cansleep(pinfo->reset_gpio, 1);
+ usleep_range(12000, 13000);
+ gpiod_set_value_cansleep(pinfo->reset_gpio, 0);
+ usleep_range(12000, 13000);
+ gpiod_set_value_cansleep(pinfo->reset_gpio, 1);
+ usleep_range(12000, 13000);
+ gpiod_set_value_cansleep(pinfo->reset_gpio, 0);
+ usleep_range(12000, 13000);
+}
+
+static int nt36523_prepare(struct drm_panel *panel)
+{
+ struct panel_info *pinfo = to_panel_info(panel);
+ int ret;
+
+ if (pinfo->prepared)
+ return 0;
+
+ ret = regulator_enable(pinfo->vddio);
+ if (ret) {
+ dev_err(panel->dev, "failed to enable vddio regulator: %d\n", ret);
+ return ret;
+ }
+
+ nt36523_reset(pinfo);
+
+ ret = pinfo->desc->init_sequence(pinfo);
+ if (ret < 0) {
+ regulator_disable(pinfo->vddio);
+ dev_err(panel->dev, "failed to initialize panel: %d\n", ret);
+ return ret;
+ }
+
+ pinfo->prepared = true;
+
+ return 0;
+}
+
+static int nt36523_disable(struct drm_panel *panel)
+{
+ struct panel_info *pinfo = to_panel_info(panel);
+ int i, ret;
+
+ for (i = 0; i < DSI_NUM_MIN + pinfo->desc->is_dual_dsi; i++) {
+ ret = mipi_dsi_dcs_set_display_off(pinfo->dsi[i]);
+ if (ret < 0)
+ dev_err(&pinfo->dsi[i]->dev, "failed to set display off: %d\n", ret);
+ }
+
+ for (i = 0; i < DSI_NUM_MIN + pinfo->desc->is_dual_dsi; i++) {
+ ret = mipi_dsi_dcs_enter_sleep_mode(pinfo->dsi[i]);
+ if (ret < 0)
+ dev_err(&pinfo->dsi[i]->dev, "failed to enter sleep mode: %d\n", ret);
+ }
+
+ msleep(70);
+
+ return 0;
+}
+
+static int nt36523_unprepare(struct drm_panel *panel)
+{
+ struct panel_info *pinfo = to_panel_info(panel);
+
+ if (!pinfo->prepared)
+ return 0;
+
+ gpiod_set_value_cansleep(pinfo->reset_gpio, 1);
+ regulator_disable(pinfo->vddio);
+
+ pinfo->prepared = false;
+
+ return 0;
+}
+
+static void nt36523_remove(struct mipi_dsi_device *dsi)
+{
+ struct panel_info *pinfo = mipi_dsi_get_drvdata(dsi);
+ int ret;
+
+ ret = mipi_dsi_detach(pinfo->dsi[0]);
+ if (ret < 0)
+ dev_err(&dsi->dev, "failed to detach from DSI0 host: %d\n", ret);
+
+ if (pinfo->desc->is_dual_dsi) {
+ ret = mipi_dsi_detach(pinfo->dsi[1]);
+ if (ret < 0)
+ dev_err(&pinfo->dsi[1]->dev, "failed to detach from DSI1 host: %d\n", ret);
+ mipi_dsi_device_unregister(pinfo->dsi[1]);
+ }
+
+ drm_panel_remove(&pinfo->panel);
+}
+
+static int nt36523_get_modes(struct drm_panel *panel,
+ struct drm_connector *connector)
+{
+ struct panel_info *pinfo = to_panel_info(panel);
+ int i;
+
+ for (i = 0; i < pinfo->desc->num_modes; i++) {
+ const struct drm_display_mode *m = &pinfo->desc->modes[i];
+ struct drm_display_mode *mode;
+
+ mode = drm_mode_duplicate(connector->dev, m);
+ if (!mode) {
+ dev_err(panel->dev, "failed to add mode %ux%u@%u\n",
+ m->hdisplay, m->vdisplay, drm_mode_vrefresh(m));
+ return -ENOMEM;
+ }
+
+ mode->type = DRM_MODE_TYPE_DRIVER;
+ if (i == 0)
+ mode->type |= DRM_MODE_TYPE_PREFERRED;
+
+ drm_mode_set_name(mode);
+ drm_mode_probed_add(connector, mode);
+ }
+
+ connector->display_info.width_mm = pinfo->desc->width_mm;
+ connector->display_info.height_mm = pinfo->desc->height_mm;
+ connector->display_info.bpc = pinfo->desc->bpc;
+
+ return pinfo->desc->num_modes;
+}
+
+static const struct drm_panel_funcs nt36523_panel_funcs = {
+ .disable = nt36523_disable,
+ .prepare = nt36523_prepare,
+ .unprepare = nt36523_unprepare,
+ .get_modes = nt36523_get_modes,
+};
+
+static int nt36523_probe(struct mipi_dsi_device *dsi)
+{
+ struct device *dev = &dsi->dev;
+ struct device_node *dsi1;
+ struct mipi_dsi_host *dsi1_host;
+ struct panel_info *pinfo;
+ const struct mipi_dsi_device_info *info;
+ int i, ret;
+
+ pinfo = devm_kzalloc(dev, sizeof(*pinfo), GFP_KERNEL);
+ if (!pinfo)
+ return -ENOMEM;
+
+ pinfo->vddio = devm_regulator_get(dev, "vddio");
+ if (IS_ERR(pinfo->vddio))
+ return dev_err_probe(dev, PTR_ERR(pinfo->vddio), "failed to get vddio regulator\n");
+
+ pinfo->reset_gpio = devm_gpiod_get(dev, "reset", GPIOD_OUT_HIGH);
+ if (IS_ERR(pinfo->reset_gpio))
+ return dev_err_probe(dev, PTR_ERR(pinfo->reset_gpio), "failed to get reset gpio\n");
+
+ pinfo->desc = of_device_get_match_data(dev);
+ if (!pinfo->desc)
+ return -ENODEV;
+
+ /* If the panel is dual dsi, register DSI1 */
+ if (pinfo->desc->is_dual_dsi) {
+ info = &pinfo->desc->dsi_info;
+
+ dsi1 = of_graph_get_remote_node(dsi->dev.of_node, 1, -1);
+ if (!dsi1) {
+ dev_err(dev, "cannot get secondary DSI node.\n");
+ return -ENODEV;
+ }
+
+ dsi1_host = of_find_mipi_dsi_host_by_node(dsi1);
+ of_node_put(dsi1);
+ if (!dsi1_host)
+ return dev_err_probe(dev, -EPROBE_DEFER, "cannot get secondary DSI host\n");
+
+ pinfo->dsi[1] = mipi_dsi_device_register_full(dsi1_host, info);
+ if (!pinfo->dsi[1]) {
+ dev_err(dev, "cannot get secondary DSI device\n");
+ return -ENODEV;
+ }
+ }
+
+ pinfo->dsi[0] = dsi;
+ mipi_dsi_set_drvdata(dsi, pinfo);
+ drm_panel_init(&pinfo->panel, dev, &nt36523_panel_funcs, DRM_MODE_CONNECTOR_DSI);
+
+ ret = drm_panel_of_backlight(&pinfo->panel);
+ if (ret)
+ return dev_err_probe(dev, ret, "failed to get backlight\n");
+
+ drm_panel_add(&pinfo->panel);
+
+ for (i = 0; i < DSI_NUM_MIN + pinfo->desc->is_dual_dsi; i++) {
+ pinfo->dsi[i]->lanes = pinfo->desc->lanes;
+ pinfo->dsi[i]->format = pinfo->desc->format;
+ pinfo->dsi[i]->mode_flags = pinfo->desc->mode_flags;
+
+ ret = mipi_dsi_attach(pinfo->dsi[i]);
+ if (ret < 0)
+ return dev_err_probe(dev, ret, "cannot attach to DSI%d host.\n", i);
+ }
+
+ return 0;
+}
+
+static const struct of_device_id nt36523_of_match[] = {
+ {
+ .compatible = "xiaomi,elish-boe-nt36523",
+ .data = &elish_boe_desc,
+ },
+ {
+ .compatible = "xiaomi,elish-csot-nt36523",
+ .data = &elish_csot_desc,
+ },
+ {},
+};
+MODULE_DEVICE_TABLE(of, nt36523_of_match);
+
+static struct mipi_dsi_driver nt36523_driver = {
+ .probe = nt36523_probe,
+ .remove = nt36523_remove,
+ .driver = {
+ .name = "panel-novatek-nt36523",
+ .of_match_table = nt36523_of_match,
+ },
+};
+module_mipi_dsi_driver(nt36523_driver);
+
+MODULE_AUTHOR("Jianhua Lu <lujianhua000@gmail.com>");
+MODULE_DESCRIPTION("DRM driver for Novatek NT36523 based MIPI DSI panels");
+MODULE_LICENSE("GPL");
diff --git a/drivers/gpu/drm/panel/panel-olimex-lcd-olinuxino.c b/drivers/gpu/drm/panel/panel-olimex-lcd-olinuxino.c
index 36a46cb7fe1c..aba556c98300 100644
--- a/drivers/gpu/drm/panel/panel-olimex-lcd-olinuxino.c
+++ b/drivers/gpu/drm/panel/panel-olimex-lcd-olinuxino.c
@@ -202,8 +202,7 @@ static const struct drm_panel_funcs lcd_olinuxino_funcs = {
.get_modes = lcd_olinuxino_get_modes,
};
-static int lcd_olinuxino_probe(struct i2c_client *client,
- const struct i2c_device_id *id)
+static int lcd_olinuxino_probe(struct i2c_client *client)
{
struct device *dev = &client->dev;
struct lcd_olinuxino *lcd;
@@ -309,7 +308,7 @@ static struct i2c_driver lcd_olinuxino_driver = {
.name = "lcd_olinuxino",
.of_match_table = lcd_olinuxino_of_ids,
},
- .probe = lcd_olinuxino_probe,
+ .probe_new = lcd_olinuxino_probe,
.remove = lcd_olinuxino_remove,
};
diff --git a/drivers/gpu/drm/panel/panel-orisetech-ota5601a.c b/drivers/gpu/drm/panel/panel-orisetech-ota5601a.c
new file mode 100644
index 000000000000..e46be5014d42
--- /dev/null
+++ b/drivers/gpu/drm/panel/panel-orisetech-ota5601a.c
@@ -0,0 +1,364 @@
+// SPDX-License-Identifier: GPL-2.0
+/*
+ * Orisetech OTA5601A TFT LCD panel driver
+ *
+ * Copyright (C) 2021, Christophe Branchereau <cbranchereau@gmail.com>
+ */
+
+#include <linux/bits.h>
+#include <linux/delay.h>
+#include <linux/device.h>
+#include <linux/gpio/consumer.h>
+#include <linux/media-bus-format.h>
+#include <linux/module.h>
+#include <linux/of.h>
+#include <linux/of_device.h>
+#include <linux/regmap.h>
+#include <linux/regulator/consumer.h>
+#include <linux/spi/spi.h>
+
+#include <drm/drm_modes.h>
+#include <drm/drm_panel.h>
+
+#define OTA5601A_CTL 0x01
+#define OTA5601A_CTL_OFF 0x00
+#define OTA5601A_CTL_ON BIT(0)
+
+struct ota5601a_panel_info {
+ const struct drm_display_mode *display_modes;
+ unsigned int num_modes;
+ u16 width_mm, height_mm;
+ u32 bus_format, bus_flags;
+};
+
+struct ota5601a {
+ struct drm_panel drm_panel;
+ struct regmap *map;
+ struct regulator *supply;
+ const struct ota5601a_panel_info *panel_info;
+
+ struct gpio_desc *reset_gpio;
+};
+
+static inline struct ota5601a *to_ota5601a(struct drm_panel *panel)
+{
+ return container_of(panel, struct ota5601a, drm_panel);
+}
+
+static const struct reg_sequence ota5601a_panel_regs[] = {
+ { 0xfd, 0x00 }, /* Page Shift */
+ { 0x02, 0x00 }, /* Reset */
+
+ { 0x18, 0x00 }, /* Interface Sel: RGB 24 Bits */
+ { 0x34, 0x20 }, /* Undocumented */
+
+ { 0x0c, 0x01 }, /* Contrast set by CMD1 == within page 0x00 */
+ { 0x0d, 0x48 }, /* R Brightness */
+ { 0x0e, 0x48 }, /* G Brightness */
+ { 0x0f, 0x48 }, /* B Brightness */
+ { 0x07, 0x40 }, /* R Contrast */
+ { 0x08, 0x33 }, /* G Contrast */
+ { 0x09, 0x3a }, /* B Contrast */
+
+ { 0x16, 0x01 }, /* NTSC Sel */
+ { 0x19, 0x8d }, /* VBLK */
+ { 0x1a, 0x28 }, /* HBLK */
+ { 0x1c, 0x00 }, /* Scan Shift Dir. */
+
+ { 0xfd, 0xc5 }, /* Page Shift */
+ { 0x82, 0x0c }, /* PWR_CTRL Pump */
+ { 0xa2, 0xb4 }, /* PWR_CTRL VGH/VGL */
+
+ { 0xfd, 0xc4 }, /* Page Shift - What follows is listed as "RGB 24bit Timing Set" */
+ { 0x82, 0x45 },
+
+ { 0xfd, 0xc1 },
+ { 0x91, 0x02 },
+
+ { 0xfd, 0xc0 },
+ { 0xa1, 0x01 },
+ { 0xa2, 0x1f },
+ { 0xa3, 0x0b },
+ { 0xa4, 0x38 },
+ { 0xa5, 0x00 },
+ { 0xa6, 0x0a },
+ { 0xa7, 0x38 },
+ { 0xa8, 0x00 },
+ { 0xa9, 0x0a },
+ { 0xaa, 0x37 },
+
+ { 0xfd, 0xce },
+ { 0x81, 0x18 },
+ { 0x82, 0x43 },
+ { 0x83, 0x43 },
+ { 0x91, 0x06 },
+ { 0x93, 0x38 },
+ { 0x94, 0x02 },
+ { 0x95, 0x06 },
+ { 0x97, 0x38 },
+ { 0x98, 0x02 },
+ { 0x99, 0x06 },
+ { 0x9b, 0x38 },
+ { 0x9c, 0x02 },
+
+ { 0xfd, 0x00 }, /* Page Shift */
+};
+
+static const struct regmap_config ota5601a_regmap_config = {
+ .reg_bits = 8,
+ .val_bits = 8,
+};
+
+static int ota5601a_prepare(struct drm_panel *drm_panel)
+{
+ struct ota5601a *panel = to_ota5601a(drm_panel);
+ int err;
+
+ err = regulator_enable(panel->supply);
+ if (err) {
+ dev_err(drm_panel->dev, "Failed to enable power supply: %d\n", err);
+ return err;
+ }
+
+ /* Reset to be held low for 10us min according to the doc, 10ms before sending commands */
+ gpiod_set_value_cansleep(panel->reset_gpio, 1);
+ usleep_range(10, 30);
+ gpiod_set_value_cansleep(panel->reset_gpio, 0);
+ usleep_range(10000, 20000);
+
+ /* Init all registers. */
+ err = regmap_multi_reg_write(panel->map, ota5601a_panel_regs,
+ ARRAY_SIZE(ota5601a_panel_regs));
+ if (err) {
+ dev_err(drm_panel->dev, "Failed to init registers: %d\n", err);
+ goto err_disable_regulator;
+ }
+
+ msleep(120);
+
+ return 0;
+
+err_disable_regulator:
+ regulator_disable(panel->supply);
+ return err;
+}
+
+static int ota5601a_unprepare(struct drm_panel *drm_panel)
+{
+ struct ota5601a *panel = to_ota5601a(drm_panel);
+
+ gpiod_set_value_cansleep(panel->reset_gpio, 1);
+
+ regulator_disable(panel->supply);
+
+ return 0;
+}
+
+static int ota5601a_enable(struct drm_panel *drm_panel)
+{
+ struct ota5601a *panel = to_ota5601a(drm_panel);
+ int err;
+
+ err = regmap_write(panel->map, OTA5601A_CTL, OTA5601A_CTL_ON);
+
+ if (err) {
+ dev_err(drm_panel->dev, "Unable to enable panel: %d\n", err);
+ return err;
+ }
+
+ if (drm_panel->backlight) {
+ /* Wait for the picture to be ready before enabling backlight */
+ msleep(120);
+ }
+
+ return 0;
+}
+
+static int ota5601a_disable(struct drm_panel *drm_panel)
+{
+ struct ota5601a *panel = to_ota5601a(drm_panel);
+ int err;
+
+ err = regmap_write(panel->map, OTA5601A_CTL, OTA5601A_CTL_OFF);
+
+ if (err) {
+ dev_err(drm_panel->dev, "Unable to disable panel: %d\n", err);
+ return err;
+ }
+
+ return 0;
+}
+
+static int ota5601a_get_modes(struct drm_panel *drm_panel,
+ struct drm_connector *connector)
+{
+ struct ota5601a *panel = to_ota5601a(drm_panel);
+ const struct ota5601a_panel_info *panel_info = panel->panel_info;
+ struct drm_display_mode *mode;
+ unsigned int i;
+
+ for (i = 0; i < panel_info->num_modes; i++) {
+ mode = drm_mode_duplicate(connector->dev,
+ &panel_info->display_modes[i]);
+ if (!mode)
+ return -ENOMEM;
+
+ drm_mode_set_name(mode);
+
+ mode->type = DRM_MODE_TYPE_DRIVER;
+ if (panel_info->num_modes == 1)
+ mode->type |= DRM_MODE_TYPE_PREFERRED;
+
+ drm_mode_probed_add(connector, mode);
+ }
+
+ connector->display_info.bpc = 8;
+ connector->display_info.width_mm = panel_info->width_mm;
+ connector->display_info.height_mm = panel_info->height_mm;
+
+ drm_display_info_set_bus_formats(&connector->display_info,
+ &panel_info->bus_format, 1);
+ connector->display_info.bus_flags = panel_info->bus_flags;
+
+ return panel_info->num_modes;
+}
+
+static const struct drm_panel_funcs ota5601a_funcs = {
+ .prepare = ota5601a_prepare,
+ .unprepare = ota5601a_unprepare,
+ .enable = ota5601a_enable,
+ .disable = ota5601a_disable,
+ .get_modes = ota5601a_get_modes,
+};
+
+static int ota5601a_probe(struct spi_device *spi)
+{
+ const struct spi_device_id *id = spi_get_device_id(spi);
+ struct device *dev = &spi->dev;
+ struct ota5601a *panel;
+ int err;
+
+ panel = devm_kzalloc(dev, sizeof(*panel), GFP_KERNEL);
+ if (!panel)
+ return -ENOMEM;
+
+ spi_set_drvdata(spi, panel);
+
+ panel->panel_info = (const struct ota5601a_panel_info *)id->driver_data;
+ if (!panel->panel_info)
+ return -EINVAL;
+
+ panel->supply = devm_regulator_get(dev, "power");
+ if (IS_ERR(panel->supply)) {
+ dev_err(dev, "Failed to get power supply\n");
+ return PTR_ERR(panel->supply);
+ }
+
+ panel->reset_gpio = devm_gpiod_get(dev, "reset", GPIOD_OUT_HIGH);
+ if (IS_ERR(panel->reset_gpio)) {
+ dev_err(dev, "Failed to get reset GPIO\n");
+ return PTR_ERR(panel->reset_gpio);
+ }
+
+ spi->bits_per_word = 8;
+ spi->mode = SPI_MODE_3 | SPI_3WIRE;
+ err = spi_setup(spi);
+ if (err) {
+ dev_err(dev, "Failed to setup SPI\n");
+ return err;
+ }
+
+ panel->map = devm_regmap_init_spi(spi, &ota5601a_regmap_config);
+ if (IS_ERR(panel->map)) {
+ dev_err(dev, "Failed to init regmap\n");
+ return PTR_ERR(panel->map);
+ }
+
+ drm_panel_init(&panel->drm_panel, dev, &ota5601a_funcs,
+ DRM_MODE_CONNECTOR_DPI);
+
+ err = drm_panel_of_backlight(&panel->drm_panel);
+ if (err) {
+ if (err != -EPROBE_DEFER)
+ dev_err(dev, "Failed to get backlight handle\n");
+ return err;
+ }
+
+ drm_panel_add(&panel->drm_panel);
+
+ return 0;
+}
+
+static void ota5601a_remove(struct spi_device *spi)
+{
+ struct ota5601a *panel = spi_get_drvdata(spi);
+
+ drm_panel_remove(&panel->drm_panel);
+
+ ota5601a_disable(&panel->drm_panel);
+ ota5601a_unprepare(&panel->drm_panel);
+}
+
+static const struct drm_display_mode gpt3_display_modes[] = {
+ { /* 60 Hz */
+ .clock = 27000,
+ .hdisplay = 640,
+ .hsync_start = 640 + 220,
+ .hsync_end = 640 + 220 + 20,
+ .htotal = 640 + 220 + 20 + 20,
+ .vdisplay = 480,
+ .vsync_start = 480 + 7,
+ .vsync_end = 480 + 7 + 6,
+ .vtotal = 480 + 7 + 6 + 7,
+ .flags = DRM_MODE_FLAG_NHSYNC | DRM_MODE_FLAG_NVSYNC,
+ },
+
+ { /* 50 Hz */
+ .clock = 24000,
+ .hdisplay = 640,
+ .hsync_start = 640 + 280,
+ .hsync_end = 640 + 280 + 20,
+ .htotal = 640 + 280 + 20 + 20,
+ .vdisplay = 480,
+ .vsync_start = 480 + 7,
+ .vsync_end = 480 + 7 + 6,
+ .vtotal = 480 + 7 + 6 + 7,
+ .flags = DRM_MODE_FLAG_NHSYNC | DRM_MODE_FLAG_NVSYNC,
+ },
+};
+
+static const struct ota5601a_panel_info gpt3_info = {
+ .display_modes = gpt3_display_modes,
+ .num_modes = ARRAY_SIZE(gpt3_display_modes),
+ .width_mm = 71,
+ .height_mm = 51,
+ .bus_format = MEDIA_BUS_FMT_RGB888_1X24,
+ .bus_flags = DRM_BUS_FLAG_PIXDATA_SAMPLE_POSEDGE,
+};
+
+static const struct spi_device_id gpt3_id[] = {
+ { "gpt3", (kernel_ulong_t)&gpt3_info },
+ { /* sentinel */ }
+};
+MODULE_DEVICE_TABLE(spi, gpt3_id);
+
+static const struct of_device_id ota5601a_of_match[] = {
+ { .compatible = "focaltech,gpt3" },
+ { /* sentinel */ }
+};
+MODULE_DEVICE_TABLE(of, ota5601a_of_match);
+
+static struct spi_driver ota5601a_driver = {
+ .driver = {
+ .name = "ota5601a",
+ .of_match_table = ota5601a_of_match,
+ },
+ .id_table = gpt3_id,
+ .probe = ota5601a_probe,
+ .remove = ota5601a_remove,
+};
+
+module_spi_driver(ota5601a_driver);
+
+MODULE_AUTHOR("Christophe Branchereau <cbranchereau@gmail.com>");
+MODULE_LICENSE("GPL");
diff --git a/drivers/gpu/drm/panel/panel-orisetech-otm8009a.c b/drivers/gpu/drm/panel/panel-orisetech-otm8009a.c
index b4729a94c34a..898b892f1143 100644
--- a/drivers/gpu/drm/panel/panel-orisetech-otm8009a.c
+++ b/drivers/gpu/drm/panel/panel-orisetech-otm8009a.c
@@ -471,7 +471,7 @@ static int otm8009a_probe(struct mipi_dsi_device *dsi)
DRM_MODE_CONNECTOR_DSI);
ctx->bl_dev = devm_backlight_device_register(dev, dev_name(dev),
- dsi->host->dev, ctx,
+ dev, ctx,
&otm8009a_backlight_ops,
NULL);
if (IS_ERR(ctx->bl_dev)) {
diff --git a/drivers/gpu/drm/panel/panel-raspberrypi-touchscreen.c b/drivers/gpu/drm/panel/panel-raspberrypi-touchscreen.c
index 79f852465a84..11d6ca276c1e 100644
--- a/drivers/gpu/drm/panel/panel-raspberrypi-touchscreen.c
+++ b/drivers/gpu/drm/panel/panel-raspberrypi-touchscreen.c
@@ -43,7 +43,6 @@
#include <linux/delay.h>
#include <linux/err.h>
-#include <linux/fb.h>
#include <linux/i2c.h>
#include <linux/media-bus-format.h>
#include <linux/module.h>
@@ -362,8 +361,7 @@ static const struct drm_panel_funcs rpi_touchscreen_funcs = {
.get_modes = rpi_touchscreen_get_modes,
};
-static int rpi_touchscreen_probe(struct i2c_client *i2c,
- const struct i2c_device_id *id)
+static int rpi_touchscreen_probe(struct i2c_client *i2c)
{
struct device *dev = &i2c->dev;
struct rpi_touchscreen *ts;
@@ -491,7 +489,7 @@ static struct i2c_driver rpi_touchscreen_driver = {
.name = "rpi_touchscreen",
.of_match_table = rpi_touchscreen_of_ids,
},
- .probe = rpi_touchscreen_probe,
+ .probe_new = rpi_touchscreen_probe,
.remove = rpi_touchscreen_remove,
};
diff --git a/drivers/gpu/drm/panel/panel-ronbo-rb070d30.c b/drivers/gpu/drm/panel/panel-ronbo-rb070d30.c
index a8a98c91b13c..2ef5ea5eaeeb 100644
--- a/drivers/gpu/drm/panel/panel-ronbo-rb070d30.c
+++ b/drivers/gpu/drm/panel/panel-ronbo-rb070d30.c
@@ -11,10 +11,10 @@
#include <linux/device.h>
#include <linux/err.h>
#include <linux/errno.h>
-#include <linux/fb.h>
#include <linux/kernel.h>
#include <linux/media-bus-format.h>
#include <linux/module.h>
+#include <linux/of.h>
#include <linux/gpio/consumer.h>
#include <linux/regulator/consumer.h>
diff --git a/drivers/gpu/drm/panel/panel-samsung-atna33xc20.c b/drivers/gpu/drm/panel/panel-samsung-atna33xc20.c
index 5a8b978c6415..5703f4712d96 100644
--- a/drivers/gpu/drm/panel/panel-samsung-atna33xc20.c
+++ b/drivers/gpu/drm/panel/panel-samsung-atna33xc20.c
@@ -53,7 +53,7 @@ static void atana33xc20_wait(ktime_t start_ktime, unsigned int min_ms)
ktime_t now_ktime, min_ktime;
min_ktime = ktime_add(start_ktime, ms_to_ktime(min_ms));
- now_ktime = ktime_get();
+ now_ktime = ktime_get_boottime();
if (ktime_before(now_ktime, min_ktime))
msleep(ktime_to_ms(ktime_sub(min_ktime, now_ktime)) + 1);
@@ -75,7 +75,7 @@ static int atana33xc20_suspend(struct device *dev)
ret = regulator_disable(p->supply);
if (ret)
return ret;
- p->powered_off_time = ktime_get();
+ p->powered_off_time = ktime_get_boottime();
p->el3_was_on = false;
return 0;
@@ -93,7 +93,7 @@ static int atana33xc20_resume(struct device *dev)
ret = regulator_enable(p->supply);
if (ret)
return ret;
- p->powered_on_time = ktime_get();
+ p->powered_on_time = ktime_get_boottime();
if (p->no_hpd) {
msleep(HPD_MAX_MS);
@@ -142,7 +142,7 @@ static int atana33xc20_disable(struct drm_panel *panel)
return 0;
gpiod_set_value_cansleep(p->el_on3_gpio, 0);
- p->el_on3_off_time = ktime_get();
+ p->el_on3_off_time = ktime_get_boottime();
p->enabled = false;
/*
@@ -310,7 +310,7 @@ static int atana33xc20_probe(struct dp_aux_ep_device *aux_ep)
ret = devm_add_action_or_reset(dev, atana33xc20_runtime_disable, dev);
if (ret)
return ret;
- pm_runtime_set_autosuspend_delay(dev, 1000);
+ pm_runtime_set_autosuspend_delay(dev, 2000);
pm_runtime_use_autosuspend(dev);
ret = devm_add_action_or_reset(dev, atana33xc20_dont_use_autosuspend, dev);
if (ret)
diff --git a/drivers/gpu/drm/panel/panel-samsung-db7430.c b/drivers/gpu/drm/panel/panel-samsung-db7430.c
index 04640c5256a8..117b26845083 100644
--- a/drivers/gpu/drm/panel/panel-samsung-db7430.c
+++ b/drivers/gpu/drm/panel/panel-samsung-db7430.c
@@ -331,9 +331,16 @@ static const struct of_device_id db7430_match[] = {
};
MODULE_DEVICE_TABLE(of, db7430_match);
+static const struct spi_device_id db7430_ids[] = {
+ { "lms397kf04" },
+ { },
+};
+MODULE_DEVICE_TABLE(spi, db7430_ids);
+
static struct spi_driver db7430_driver = {
.probe = db7430_probe,
.remove = db7430_remove,
+ .id_table = db7430_ids,
.driver = {
.name = "db7430-panel",
.of_match_table = db7430_match,
diff --git a/drivers/gpu/drm/panel/panel-samsung-s6e3ha2.c b/drivers/gpu/drm/panel/panel-samsung-s6e3ha2.c
index 5c621b15e84c..39eef3dce7c9 100644
--- a/drivers/gpu/drm/panel/panel-samsung-s6e3ha2.c
+++ b/drivers/gpu/drm/panel/panel-samsung-s6e3ha2.c
@@ -692,7 +692,9 @@ static int s6e3ha2_probe(struct mipi_dsi_device *dsi)
dsi->lanes = 4;
dsi->format = MIPI_DSI_FMT_RGB888;
- dsi->mode_flags = MIPI_DSI_CLOCK_NON_CONTINUOUS;
+ dsi->mode_flags = MIPI_DSI_CLOCK_NON_CONTINUOUS |
+ MIPI_DSI_MODE_VIDEO_NO_HFP | MIPI_DSI_MODE_VIDEO_NO_HBP |
+ MIPI_DSI_MODE_VIDEO_NO_HSA | MIPI_DSI_MODE_NO_EOT_PACKET;
ctx->supplies[0].supply = "vdd3";
ctx->supplies[1].supply = "vci";
@@ -731,6 +733,7 @@ static int s6e3ha2_probe(struct mipi_dsi_device *dsi)
drm_panel_init(&ctx->panel, dev, &s6e3ha2_drm_funcs,
DRM_MODE_CONNECTOR_DSI);
+ ctx->panel.prepare_prev_first = true;
drm_panel_add(&ctx->panel);
diff --git a/drivers/gpu/drm/panel/panel-samsung-s6e63j0x03.c b/drivers/gpu/drm/panel/panel-samsung-s6e63j0x03.c
index e06fd35de814..46d6f4a87bf7 100644
--- a/drivers/gpu/drm/panel/panel-samsung-s6e63j0x03.c
+++ b/drivers/gpu/drm/panel/panel-samsung-s6e63j0x03.c
@@ -446,7 +446,8 @@ static int s6e63j0x03_probe(struct mipi_dsi_device *dsi)
dsi->lanes = 1;
dsi->format = MIPI_DSI_FMT_RGB888;
- dsi->mode_flags = MIPI_DSI_MODE_NO_EOT_PACKET;
+ dsi->mode_flags = MIPI_DSI_MODE_VIDEO_NO_HFP |
+ MIPI_DSI_MODE_VIDEO_NO_HBP | MIPI_DSI_MODE_VIDEO_NO_HSA;
ctx->supplies[0].supply = "vdd3";
ctx->supplies[1].supply = "vci";
@@ -462,6 +463,7 @@ static int s6e63j0x03_probe(struct mipi_dsi_device *dsi)
drm_panel_init(&ctx->panel, dev, &s6e63j0x03_funcs,
DRM_MODE_CONNECTOR_DSI);
+ ctx->panel.prepare_prev_first = true;
ctx->bl_dev = backlight_device_register("s6e63j0x03", dev, ctx,
&s6e63j0x03_bl_ops, NULL);
diff --git a/drivers/gpu/drm/panel/panel-samsung-s6e88a0-ams452ef01.c b/drivers/gpu/drm/panel/panel-samsung-s6e88a0-ams452ef01.c
index 97ff7a18545c..7431cae7427e 100644
--- a/drivers/gpu/drm/panel/panel-samsung-s6e88a0-ams452ef01.c
+++ b/drivers/gpu/drm/panel/panel-samsung-s6e88a0-ams452ef01.c
@@ -28,14 +28,6 @@ s6e88a0_ams452ef01 *to_s6e88a0_ams452ef01(struct drm_panel *panel)
return container_of(panel, struct s6e88a0_ams452ef01, panel);
}
-#define dsi_dcs_write_seq(dsi, seq...) do { \
- static const u8 d[] = { seq }; \
- int ret; \
- ret = mipi_dsi_dcs_write_buffer(dsi, d, ARRAY_SIZE(d)); \
- if (ret < 0) \
- return ret; \
- } while (0)
-
static void s6e88a0_ams452ef01_reset(struct s6e88a0_ams452ef01 *ctx)
{
gpiod_set_value_cansleep(ctx->reset_gpio, 1);
@@ -54,8 +46,8 @@ static int s6e88a0_ams452ef01_on(struct s6e88a0_ams452ef01 *ctx)
dsi->mode_flags |= MIPI_DSI_MODE_LPM;
- dsi_dcs_write_seq(dsi, 0xf0, 0x5a, 0x5a); // enable LEVEL2 commands
- dsi_dcs_write_seq(dsi, 0xcc, 0x4c); // set Pixel Clock Divider polarity
+ mipi_dsi_dcs_write_seq(dsi, 0xf0, 0x5a, 0x5a); // enable LEVEL2 commands
+ mipi_dsi_dcs_write_seq(dsi, 0xcc, 0x4c); // set Pixel Clock Divider polarity
ret = mipi_dsi_dcs_exit_sleep_mode(dsi);
if (ret < 0) {
@@ -65,23 +57,23 @@ static int s6e88a0_ams452ef01_on(struct s6e88a0_ams452ef01 *ctx)
msleep(120);
// set default brightness/gama
- dsi_dcs_write_seq(dsi, 0xca,
- 0x01, 0x00, 0x01, 0x00, 0x01, 0x00, // V255 RR,GG,BB
- 0x80, 0x80, 0x80, // V203 R,G,B
- 0x80, 0x80, 0x80, // V151 R,G,B
- 0x80, 0x80, 0x80, // V87 R,G,B
- 0x80, 0x80, 0x80, // V51 R,G,B
- 0x80, 0x80, 0x80, // V35 R,G,B
- 0x80, 0x80, 0x80, // V23 R,G,B
- 0x80, 0x80, 0x80, // V11 R,G,B
- 0x6b, 0x68, 0x71, // V3 R,G,B
- 0x00, 0x00, 0x00); // V1 R,G,B
+ mipi_dsi_dcs_write_seq(dsi, 0xca,
+ 0x01, 0x00, 0x01, 0x00, 0x01, 0x00, // V255 RR,GG,BB
+ 0x80, 0x80, 0x80, // V203 R,G,B
+ 0x80, 0x80, 0x80, // V151 R,G,B
+ 0x80, 0x80, 0x80, // V87 R,G,B
+ 0x80, 0x80, 0x80, // V51 R,G,B
+ 0x80, 0x80, 0x80, // V35 R,G,B
+ 0x80, 0x80, 0x80, // V23 R,G,B
+ 0x80, 0x80, 0x80, // V11 R,G,B
+ 0x6b, 0x68, 0x71, // V3 R,G,B
+ 0x00, 0x00, 0x00); // V1 R,G,B
// set default Amoled Off Ratio
- dsi_dcs_write_seq(dsi, 0xb2, 0x40, 0x0a, 0x17, 0x00, 0x0a);
- dsi_dcs_write_seq(dsi, 0xb6, 0x2c, 0x0b); // set default elvss voltage
- dsi_dcs_write_seq(dsi, MIPI_DCS_WRITE_POWER_SAVE, 0x00);
- dsi_dcs_write_seq(dsi, 0xf7, 0x03); // gamma/aor update
- dsi_dcs_write_seq(dsi, 0xf0, 0xa5, 0xa5); // disable LEVEL2 commands
+ mipi_dsi_dcs_write_seq(dsi, 0xb2, 0x40, 0x0a, 0x17, 0x00, 0x0a);
+ mipi_dsi_dcs_write_seq(dsi, 0xb6, 0x2c, 0x0b); // set default elvss voltage
+ mipi_dsi_dcs_write_seq(dsi, MIPI_DCS_WRITE_POWER_SAVE, 0x00);
+ mipi_dsi_dcs_write_seq(dsi, 0xf7, 0x03); // gamma/aor update
+ mipi_dsi_dcs_write_seq(dsi, 0xf0, 0xa5, 0xa5); // disable LEVEL2 commands
ret = mipi_dsi_dcs_set_display_on(dsi);
if (ret < 0) {
diff --git a/drivers/gpu/drm/panel/panel-samsung-s6e8aa0.c b/drivers/gpu/drm/panel/panel-samsung-s6e8aa0.c
index 54213beafaf5..c51d07ec1529 100644
--- a/drivers/gpu/drm/panel/panel-samsung-s6e8aa0.c
+++ b/drivers/gpu/drm/panel/panel-samsung-s6e8aa0.c
@@ -990,8 +990,6 @@ static int s6e8aa0_probe(struct mipi_dsi_device *dsi)
dsi->lanes = 4;
dsi->format = MIPI_DSI_FMT_RGB888;
dsi->mode_flags = MIPI_DSI_MODE_VIDEO | MIPI_DSI_MODE_VIDEO_BURST
- | MIPI_DSI_MODE_VIDEO_NO_HFP | MIPI_DSI_MODE_VIDEO_NO_HBP
- | MIPI_DSI_MODE_VIDEO_NO_HSA | MIPI_DSI_MODE_NO_EOT_PACKET
| MIPI_DSI_MODE_VSYNC_FLUSH | MIPI_DSI_MODE_VIDEO_AUTO_VERT;
ret = s6e8aa0_parse_dt(ctx);
@@ -1018,6 +1016,7 @@ static int s6e8aa0_probe(struct mipi_dsi_device *dsi)
drm_panel_init(&ctx->panel, dev, &s6e8aa0_drm_funcs,
DRM_MODE_CONNECTOR_DSI);
+ ctx->panel.prepare_prev_first = true;
drm_panel_add(&ctx->panel);
diff --git a/drivers/gpu/drm/panel/panel-samsung-sofef00.c b/drivers/gpu/drm/panel/panel-samsung-sofef00.c
index 1a0d24595faa..1ebb79e3103c 100644
--- a/drivers/gpu/drm/panel/panel-samsung-sofef00.c
+++ b/drivers/gpu/drm/panel/panel-samsung-sofef00.c
@@ -10,7 +10,6 @@
#include <linux/of.h>
#include <linux/of_device.h>
#include <linux/regulator/consumer.h>
-#include <linux/swab.h>
#include <linux/backlight.h>
#include <video/mipi_display.h>
@@ -34,14 +33,6 @@ struct sofef00_panel *to_sofef00_panel(struct drm_panel *panel)
return container_of(panel, struct sofef00_panel, panel);
}
-#define dsi_dcs_write_seq(dsi, seq...) do { \
- static const u8 d[] = { seq }; \
- int ret; \
- ret = mipi_dsi_dcs_write_buffer(dsi, d, ARRAY_SIZE(d)); \
- if (ret < 0) \
- return ret; \
- } while (0)
-
static void sofef00_panel_reset(struct sofef00_panel *ctx)
{
gpiod_set_value_cansleep(ctx->reset_gpio, 0);
@@ -67,7 +58,7 @@ static int sofef00_panel_on(struct sofef00_panel *ctx)
}
usleep_range(10000, 11000);
- dsi_dcs_write_seq(dsi, 0xf0, 0x5a, 0x5a);
+ mipi_dsi_dcs_write_seq(dsi, 0xf0, 0x5a, 0x5a);
ret = mipi_dsi_dcs_set_tear_on(dsi, MIPI_DSI_DCS_TEAR_MODE_VBLANK);
if (ret < 0) {
@@ -75,13 +66,13 @@ static int sofef00_panel_on(struct sofef00_panel *ctx)
return ret;
}
- dsi_dcs_write_seq(dsi, 0xf0, 0xa5, 0xa5);
- dsi_dcs_write_seq(dsi, 0xf0, 0x5a, 0x5a);
- dsi_dcs_write_seq(dsi, 0xb0, 0x07);
- dsi_dcs_write_seq(dsi, 0xb6, 0x12);
- dsi_dcs_write_seq(dsi, 0xf0, 0xa5, 0xa5);
- dsi_dcs_write_seq(dsi, MIPI_DCS_WRITE_CONTROL_DISPLAY, 0x20);
- dsi_dcs_write_seq(dsi, MIPI_DCS_WRITE_POWER_SAVE, 0x00);
+ mipi_dsi_dcs_write_seq(dsi, 0xf0, 0xa5, 0xa5);
+ mipi_dsi_dcs_write_seq(dsi, 0xf0, 0x5a, 0x5a);
+ mipi_dsi_dcs_write_seq(dsi, 0xb0, 0x07);
+ mipi_dsi_dcs_write_seq(dsi, 0xb6, 0x12);
+ mipi_dsi_dcs_write_seq(dsi, 0xf0, 0xa5, 0xa5);
+ mipi_dsi_dcs_write_seq(dsi, MIPI_DCS_WRITE_CONTROL_DISPLAY, 0x20);
+ mipi_dsi_dcs_write_seq(dsi, MIPI_DCS_WRITE_POWER_SAVE, 0x00);
ret = mipi_dsi_dcs_set_display_on(dsi);
if (ret < 0) {
@@ -221,13 +212,9 @@ static int sofef00_panel_bl_update_status(struct backlight_device *bl)
{
struct mipi_dsi_device *dsi = bl_get_data(bl);
int err;
- u16 brightness;
-
- brightness = (u16)backlight_get_brightness(bl);
- // This panel needs the high and low bytes swapped for the brightness value
- brightness = __swab16(brightness);
+ u16 brightness = (u16)backlight_get_brightness(bl);
- err = mipi_dsi_dcs_set_display_brightness(dsi, brightness);
+ err = mipi_dsi_dcs_set_display_brightness_large(dsi, brightness);
if (err < 0)
return err;
diff --git a/drivers/gpu/drm/panel/panel-seiko-43wvf1g.c b/drivers/gpu/drm/panel/panel-seiko-43wvf1g.c
index 76160e5d43bd..c250ca36a5b3 100644
--- a/drivers/gpu/drm/panel/panel-seiko-43wvf1g.c
+++ b/drivers/gpu/drm/panel/panel-seiko-43wvf1g.c
@@ -7,6 +7,7 @@
*/
#include <linux/delay.h>
+#include <linux/gpio/consumer.h>
#include <linux/media-bus-format.h>
#include <linux/module.h>
#include <linux/of.h>
@@ -48,6 +49,7 @@ struct seiko_panel {
const struct seiko_panel_desc *desc;
struct regulator *dvdd;
struct regulator *avdd;
+ struct gpio_desc *enable_gpio;
};
static inline struct seiko_panel *to_seiko_panel(struct drm_panel *panel)
@@ -139,6 +141,8 @@ static int seiko_panel_unprepare(struct drm_panel *panel)
if (!p->prepared)
return 0;
+ gpiod_set_value_cansleep(p->enable_gpio, 0);
+
regulator_disable(p->avdd);
/* Add a 100ms delay as per the panel datasheet */
@@ -174,6 +178,8 @@ static int seiko_panel_prepare(struct drm_panel *panel)
goto disable_dvdd;
}
+ gpiod_set_value_cansleep(p->enable_gpio, 1);
+
p->prepared = true;
return 0;
@@ -252,6 +258,12 @@ static int seiko_panel_probe(struct device *dev,
if (IS_ERR(panel->avdd))
return PTR_ERR(panel->avdd);
+ panel->enable_gpio = devm_gpiod_get_optional(dev, "enable",
+ GPIOD_OUT_LOW);
+ if (IS_ERR(panel->enable_gpio))
+ return dev_err_probe(dev, PTR_ERR(panel->enable_gpio),
+ "failed to request GPIO\n");
+
drm_panel_init(&panel->base, dev, &seiko_panel_funcs,
DRM_MODE_CONNECTOR_DPI);
diff --git a/drivers/gpu/drm/panel/panel-sharp-ls060t1sx01.c b/drivers/gpu/drm/panel/panel-sharp-ls060t1sx01.c
index 8a4e0c1fe73f..68f52eaaf4fa 100644
--- a/drivers/gpu/drm/panel/panel-sharp-ls060t1sx01.c
+++ b/drivers/gpu/drm/panel/panel-sharp-ls060t1sx01.c
@@ -32,12 +32,6 @@ static inline struct sharp_ls060 *to_sharp_ls060(struct drm_panel *panel)
return container_of(panel, struct sharp_ls060, panel);
}
-#define dsi_dcs_write_seq(dsi, seq...) ({ \
- static const u8 d[] = { seq }; \
- \
- mipi_dsi_dcs_write_buffer(dsi, d, ARRAY_SIZE(d)); \
- })
-
static void sharp_ls060_reset(struct sharp_ls060 *ctx)
{
gpiod_set_value_cansleep(ctx->reset_gpio, 0);
@@ -56,17 +50,8 @@ static int sharp_ls060_on(struct sharp_ls060 *ctx)
dsi->mode_flags |= MIPI_DSI_MODE_LPM;
- ret = dsi_dcs_write_seq(dsi, 0xbb, 0x13);
- if (ret < 0) {
- dev_err(dev, "Failed to send command: %d\n", ret);
- return ret;
- }
-
- ret = dsi_dcs_write_seq(dsi, MIPI_DCS_WRITE_MEMORY_START);
- if (ret < 0) {
- dev_err(dev, "Failed to send command: %d\n", ret);
- return ret;
- }
+ mipi_dsi_dcs_write_seq(dsi, 0xbb, 0x13);
+ mipi_dsi_dcs_write_seq(dsi, MIPI_DCS_WRITE_MEMORY_START);
ret = mipi_dsi_dcs_exit_sleep_mode(dsi);
if (ret < 0) {
diff --git a/drivers/gpu/drm/panel/panel-simple.c b/drivers/gpu/drm/panel/panel-simple.c
index 2944228a8e2c..065f378bba9d 100644
--- a/drivers/gpu/drm/panel/panel-simple.c
+++ b/drivers/gpu/drm/panel/panel-simple.c
@@ -280,7 +280,7 @@ static void panel_simple_wait(ktime_t start_ktime, unsigned int min_ms)
return;
min_ktime = ktime_add(start_ktime, ms_to_ktime(min_ms));
- now_ktime = ktime_get();
+ now_ktime = ktime_get_boottime();
if (ktime_before(now_ktime, min_ktime))
msleep(ktime_to_ms(ktime_sub(min_ktime, now_ktime)) + 1);
@@ -307,7 +307,7 @@ static int panel_simple_suspend(struct device *dev)
gpiod_set_value_cansleep(p->enable_gpio, 0);
regulator_disable(p->supply);
- p->unprepared_time = ktime_get();
+ p->unprepared_time = ktime_get_boottime();
kfree(p->edid);
p->edid = NULL;
@@ -351,7 +351,7 @@ static int panel_simple_resume(struct device *dev)
if (p->desc->delay.prepare)
msleep(p->desc->delay.prepare);
- p->prepared_time = ktime_get();
+ p->prepared_time = ktime_get_boottime();
return 0;
}
@@ -2500,6 +2500,7 @@ static const struct display_timing logictechno_lt161010_2nh_timing = {
static const struct panel_desc logictechno_lt161010_2nh = {
.timings = &logictechno_lt161010_2nh_timing,
.num_timings = 1,
+ .bpc = 6,
.size = {
.width = 154,
.height = 86,
@@ -2529,6 +2530,7 @@ static const struct display_timing logictechno_lt170410_2whc_timing = {
static const struct panel_desc logictechno_lt170410_2whc = {
.timings = &logictechno_lt170410_2whc_timing,
.num_timings = 1,
+ .bpc = 8,
.size = {
.width = 217,
.height = 136,
diff --git a/drivers/gpu/drm/panel/panel-sitronix-st7701.c b/drivers/gpu/drm/panel/panel-sitronix-st7701.c
index c481daa4bbce..7eae83aa0ea1 100644
--- a/drivers/gpu/drm/panel/panel-sitronix-st7701.c
+++ b/drivers/gpu/drm/panel/panel-sitronix-st7701.c
@@ -19,6 +19,9 @@
/* Command2 BKx selection command */
#define DSI_CMD2BKX_SEL 0xFF
+#define DSI_CMD1 0
+#define DSI_CMD2 BIT(4)
+#define DSI_CMD2BK_MASK GENMASK(3, 0)
/* Command2, BK0 commands */
#define DSI_CMD2_BK0_PVGAMCTRL 0xB0 /* Positive Voltage Gamma Control */
@@ -39,21 +42,6 @@
#define DSI_CMD2_BK1_SPD2 0xC2 /* Source EQ2 Setting */
#define DSI_CMD2_BK1_MIPISET1 0xD0 /* MIPI Setting 1 */
-/*
- * Command2 with BK function selection.
- *
- * BIT[4].....CN2
- * BIT[1:0]...BKXSEL
- * 1:00 = CMD2BK0, Command2 BK0
- * 1:01 = CMD2BK1, Command2 BK1
- * 1:11 = CMD2BK3, Command2 BK3
- * 0:00 = Command2 disable
- */
-#define DSI_CMD2BK0_SEL 0x10
-#define DSI_CMD2BK1_SEL 0x11
-#define DSI_CMD2BK3_SEL 0x13
-#define DSI_CMD2BKX_SEL_NONE 0x00
-
/* Command2, BK0 bytes */
#define DSI_CMD2_BK0_GAMCTRL_AJ_MASK GENMASK(7, 6)
#define DSI_CMD2_BK0_GAMCTRL_VC0_MASK GENMASK(3, 0)
@@ -147,6 +135,7 @@ struct st7701 {
struct regulator_bulk_data supplies[2];
struct gpio_desc *reset;
unsigned int sleep_delay;
+ enum drm_panel_orientation orientation;
};
static inline struct st7701 *panel_to_st7701(struct drm_panel *panel)
@@ -191,6 +180,18 @@ static u8 st7701_vgls_map(struct st7701 *st7701)
return 0;
}
+static void st7701_switch_cmd_bkx(struct st7701 *st7701, bool cmd2, u8 bkx)
+{
+ u8 val;
+
+ if (cmd2)
+ val = DSI_CMD2 | FIELD_PREP(DSI_CMD2BK_MASK, bkx);
+ else
+ val = DSI_CMD1;
+
+ ST7701_DSI(st7701, DSI_CMD2BKX_SEL, 0x77, 0x01, 0x00, 0x00, val);
+}
+
static void st7701_init_sequence(struct st7701 *st7701)
{
const struct st7701_panel_desc *desc = st7701->desc;
@@ -208,8 +209,8 @@ static void st7701_init_sequence(struct st7701 *st7701)
msleep(st7701->sleep_delay);
/* Command2, BK0 */
- ST7701_DSI(st7701, DSI_CMD2BKX_SEL,
- 0x77, 0x01, 0x00, 0x00, DSI_CMD2BK0_SEL);
+ st7701_switch_cmd_bkx(st7701, true, 0);
+
mipi_dsi_dcs_write(st7701->dsi, DSI_CMD2_BK0_PVGAMCTRL,
desc->pv_gamma, ARRAY_SIZE(desc->pv_gamma));
mipi_dsi_dcs_write(st7701->dsi, DSI_CMD2_BK0_NVGAMCTRL,
@@ -244,11 +245,10 @@ static void st7701_init_sequence(struct st7701 *st7701)
DSI_CMD2_BK0_INVSEL_ONES_MASK |
FIELD_PREP(DSI_CMD2_BK0_INVSEL_NLINV_MASK, desc->nlinv),
FIELD_PREP(DSI_CMD2_BK0_INVSEL_RTNI_MASK,
- DIV_ROUND_UP(mode->htotal, 16)));
+ (clamp((u32)mode->htotal, 512U, 1008U) - 512) / 16));
/* Command2, BK1 */
- ST7701_DSI(st7701, DSI_CMD2BKX_SEL,
- 0x77, 0x01, 0x00, 0x00, DSI_CMD2BK1_SEL);
+ st7701_switch_cmd_bkx(st7701, true, 1);
/* Vop = 3.5375V + (VRHA[7:0] * 0.0125V) */
ST7701_DSI(st7701, DSI_CMD2_BK1_VRHS,
@@ -373,37 +373,56 @@ static void dmt028vghmcmi_1a_gip_sequence(struct st7701 *st7701)
0x08, 0x08, 0x08, 0x40,
0x3F, 0x64);
- ST7701_DSI(st7701, DSI_CMD2BKX_SEL,
- 0x77, 0x01, 0x00, 0x00, DSI_CMD2BKX_SEL_NONE);
+ st7701_switch_cmd_bkx(st7701, false, 0);
- ST7701_DSI(st7701, DSI_CMD2BKX_SEL,
- 0x77, 0x01, 0x00, 0x00, DSI_CMD2BK3_SEL);
+ st7701_switch_cmd_bkx(st7701, true, 3);
ST7701_DSI(st7701, 0xE6, 0x7C);
ST7701_DSI(st7701, 0xE8, 0x00, 0x0E);
- ST7701_DSI(st7701, DSI_CMD2BKX_SEL,
- 0x77, 0x01, 0x00, 0x00, DSI_CMD2BKX_SEL_NONE);
+ st7701_switch_cmd_bkx(st7701, false, 0);
ST7701_DSI(st7701, 0x11);
msleep(120);
- ST7701_DSI(st7701, DSI_CMD2BKX_SEL,
- 0x77, 0x01, 0x00, 0x00, DSI_CMD2BK3_SEL);
+ st7701_switch_cmd_bkx(st7701, true, 3);
ST7701_DSI(st7701, 0xE8, 0x00, 0x0C);
msleep(10);
ST7701_DSI(st7701, 0xE8, 0x00, 0x00);
- ST7701_DSI(st7701, DSI_CMD2BKX_SEL,
- 0x77, 0x01, 0x00, 0x00, DSI_CMD2BKX_SEL_NONE);
+ st7701_switch_cmd_bkx(st7701, false, 0);
ST7701_DSI(st7701, 0x11);
msleep(120);
ST7701_DSI(st7701, 0xE8, 0x00, 0x00);
- ST7701_DSI(st7701, DSI_CMD2BKX_SEL,
- 0x77, 0x01, 0x00, 0x00, DSI_CMD2BKX_SEL_NONE);
+ st7701_switch_cmd_bkx(st7701, false, 0);
ST7701_DSI(st7701, 0x3A, 0x70);
}
+static void kd50t048a_gip_sequence(struct st7701 *st7701)
+{
+ /**
+ * ST7701_SPEC_V1.2 is unable to provide enough information above this
+ * specific command sequence, so grab the same from vendor BSP driver.
+ */
+ ST7701_DSI(st7701, 0xE0, 0x00, 0x00, 0x02);
+ ST7701_DSI(st7701, 0xE1, 0x08, 0x00, 0x0A, 0x00, 0x07, 0x00, 0x09,
+ 0x00, 0x00, 0x33, 0x33);
+ ST7701_DSI(st7701, 0xE2, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+ 0x00, 0x00, 0x00, 0x00, 0x00, 0x00);
+ ST7701_DSI(st7701, 0xE3, 0x00, 0x00, 0x33, 0x33);
+ ST7701_DSI(st7701, 0xE4, 0x44, 0x44);
+ ST7701_DSI(st7701, 0xE5, 0x0E, 0x60, 0xA0, 0xA0, 0x10, 0x60, 0xA0,
+ 0xA0, 0x0A, 0x60, 0xA0, 0xA0, 0x0C, 0x60, 0xA0, 0xA0);
+ ST7701_DSI(st7701, 0xE6, 0x00, 0x00, 0x33, 0x33);
+ ST7701_DSI(st7701, 0xE7, 0x44, 0x44);
+ ST7701_DSI(st7701, 0xE8, 0x0D, 0x60, 0xA0, 0xA0, 0x0F, 0x60, 0xA0,
+ 0xA0, 0x09, 0x60, 0xA0, 0xA0, 0x0B, 0x60, 0xA0, 0xA0);
+ ST7701_DSI(st7701, 0xEB, 0x02, 0x01, 0xE4, 0xE4, 0x44, 0x00, 0x40);
+ ST7701_DSI(st7701, 0xEC, 0x02, 0x01);
+ ST7701_DSI(st7701, 0xED, 0xAB, 0x89, 0x76, 0x54, 0x01, 0xFF, 0xFF,
+ 0xFF, 0xFF, 0xFF, 0xFF, 0x10, 0x45, 0x67, 0x98, 0xBA);
+}
+
static int st7701_prepare(struct drm_panel *panel)
{
struct st7701 *st7701 = panel_to_st7701(panel);
@@ -426,8 +445,7 @@ static int st7701_prepare(struct drm_panel *panel)
st7701->desc->gip_sequence(st7701);
/* Disable Command2 */
- ST7701_DSI(st7701, DSI_CMD2BKX_SEL,
- 0x77, 0x01, 0x00, 0x00, DSI_CMD2BKX_SEL_NONE);
+ st7701_switch_cmd_bkx(st7701, false, 0);
return 0;
}
@@ -497,15 +515,29 @@ static int st7701_get_modes(struct drm_panel *panel,
connector->display_info.width_mm = desc_mode->width_mm;
connector->display_info.height_mm = desc_mode->height_mm;
+ /*
+ * TODO: Remove once all drm drivers call
+ * drm_connector_set_orientation_from_panel()
+ */
+ drm_connector_set_panel_orientation(connector, st7701->orientation);
+
return 1;
}
+static enum drm_panel_orientation st7701_get_orientation(struct drm_panel *panel)
+{
+ struct st7701 *st7701 = panel_to_st7701(panel);
+
+ return st7701->orientation;
+}
+
static const struct drm_panel_funcs st7701_funcs = {
.disable = st7701_disable,
.unprepare = st7701_unprepare,
.prepare = st7701_prepare,
.enable = st7701_enable,
.get_modes = st7701_get_modes,
+ .get_orientation = st7701_get_orientation,
};
static const struct drm_display_mode ts8550b_mode = {
@@ -708,6 +740,105 @@ static const struct st7701_panel_desc dmt028vghmcmi_1a_desc = {
.gip_sequence = dmt028vghmcmi_1a_gip_sequence,
};
+static const struct drm_display_mode kd50t048a_mode = {
+ .clock = 27500,
+
+ .hdisplay = 480,
+ .hsync_start = 480 + 2,
+ .hsync_end = 480 + 2 + 10,
+ .htotal = 480 + 2 + 10 + 2,
+
+ .vdisplay = 854,
+ .vsync_start = 854 + 2,
+ .vsync_end = 854 + 2 + 2,
+ .vtotal = 854 + 2 + 2 + 17,
+
+ .width_mm = 69,
+ .height_mm = 139,
+
+ .type = DRM_MODE_TYPE_DRIVER | DRM_MODE_TYPE_PREFERRED,
+};
+
+static const struct st7701_panel_desc kd50t048a_desc = {
+ .mode = &kd50t048a_mode,
+ .lanes = 2,
+ .format = MIPI_DSI_FMT_RGB888,
+ .panel_sleep_delay = 0,
+
+ .pv_gamma = {
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_AJ_MASK, 0) |
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_VC0_MASK, 0),
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_AJ_MASK, 0) |
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_VC4_MASK, 0xd),
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_AJ_MASK, 0) |
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_VC8_MASK, 0x14),
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_VC16_MASK, 0xd),
+
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_AJ_MASK, 0) |
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_VC24_MASK, 0x10),
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_VC52_MASK, 0x5),
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_VC80_MASK, 0x2),
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_VC108_MASK, 0x8),
+
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_VC147_MASK, 0x8),
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_VC175_MASK, 0x1e),
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_VC203_MASK, 0x5),
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_AJ_MASK, 0) |
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_VC231_MASK, 0x13),
+
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_VC239_MASK, 0x11),
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_AJ_MASK, 2) |
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_VC247_MASK, 0x23),
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_AJ_MASK, 0) |
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_VC251_MASK, 0x29),
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_AJ_MASK, 0) |
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_VC255_MASK, 0x18)
+ },
+ .nv_gamma = {
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_AJ_MASK, 0) |
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_VC0_MASK, 0),
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_AJ_MASK, 0) |
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_VC4_MASK, 0xc),
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_AJ_MASK, 0) |
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_VC8_MASK, 0x14),
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_VC16_MASK, 0xc),
+
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_AJ_MASK, 0) |
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_VC24_MASK, 0x10),
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_VC52_MASK, 0x5),
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_VC80_MASK, 0x3),
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_VC108_MASK, 0x8),
+
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_VC147_MASK, 0x7),
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_VC175_MASK, 0x20),
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_VC203_MASK, 0x5),
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_AJ_MASK, 0) |
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_VC231_MASK, 0x13),
+
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_VC239_MASK, 0x11),
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_AJ_MASK, 2) |
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_VC247_MASK, 0x24),
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_AJ_MASK, 0) |
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_VC251_MASK, 0x29),
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_AJ_MASK, 0) |
+ CFIELD_PREP(DSI_CMD2_BK0_GAMCTRL_VC255_MASK, 0x18)
+ },
+ .nlinv = 1,
+ .vop_uv = 4887500,
+ .vcom_uv = 937500,
+ .vgh_mv = 15000,
+ .vgl_mv = -9510,
+ .avdd_mv = 6600,
+ .avcl_mv = -4400,
+ .gamma_op_bias = OP_BIAS_MIDDLE,
+ .input_op_bias = OP_BIAS_MIN,
+ .output_op_bias = OP_BIAS_MIN,
+ .t2d_ns = 1600,
+ .t3d_ns = 10400,
+ .eot_en = true,
+ .gip_sequence = kd50t048a_gip_sequence,
+};
+
static int st7701_dsi_probe(struct mipi_dsi_device *dsi)
{
const struct st7701_panel_desc *desc;
@@ -738,6 +869,10 @@ static int st7701_dsi_probe(struct mipi_dsi_device *dsi)
return PTR_ERR(st7701->reset);
}
+ ret = of_drm_get_panel_orientation(dsi->dev.of_node, &st7701->orientation);
+ if (ret < 0)
+ return dev_err_probe(&dsi->dev, ret, "Failed to get orientation\n");
+
drm_panel_init(&st7701->panel, &dsi->dev, &st7701_funcs,
DRM_MODE_CONNECTOR_DSI);
@@ -762,7 +897,15 @@ static int st7701_dsi_probe(struct mipi_dsi_device *dsi)
st7701->dsi = dsi;
st7701->desc = desc;
- return mipi_dsi_attach(dsi);
+ ret = mipi_dsi_attach(dsi);
+ if (ret)
+ goto err_attach;
+
+ return 0;
+
+err_attach:
+ drm_panel_remove(&st7701->panel);
+ return ret;
}
static void st7701_dsi_remove(struct mipi_dsi_device *dsi)
@@ -775,6 +918,7 @@ static void st7701_dsi_remove(struct mipi_dsi_device *dsi)
static const struct of_device_id st7701_of_match[] = {
{ .compatible = "densitron,dmt028vghmcmi-1a", .data = &dmt028vghmcmi_1a_desc },
+ { .compatible = "elida,kd50t048a", .data = &kd50t048a_desc },
{ .compatible = "techstar,ts8550b", .data = &ts8550b_desc },
{ }
};
diff --git a/drivers/gpu/drm/panel/panel-sitronix-st7703.c b/drivers/gpu/drm/panel/panel-sitronix-st7703.c
index 86a472b01360..6747ca237ced 100644
--- a/drivers/gpu/drm/panel/panel-sitronix-st7703.c
+++ b/drivers/gpu/drm/panel/panel-sitronix-st7703.c
@@ -73,14 +73,6 @@ static inline struct st7703 *panel_to_st7703(struct drm_panel *panel)
return container_of(panel, struct st7703, panel);
}
-#define dsi_generic_write_seq(dsi, seq...) do { \
- static const u8 d[] = { seq }; \
- int ret; \
- ret = mipi_dsi_generic_write(dsi, d, ARRAY_SIZE(d)); \
- if (ret < 0) \
- return ret; \
- } while (0)
-
static int jh057n_init_sequence(struct st7703 *ctx)
{
struct mipi_dsi_device *dsi = to_mipi_dsi_device(ctx->dev);
@@ -90,50 +82,50 @@ static int jh057n_init_sequence(struct st7703 *ctx)
* resemble the ST7703 but the number of parameters often don't match
* so it's likely a clone.
*/
- dsi_generic_write_seq(dsi, ST7703_CMD_SETEXTC,
- 0xF1, 0x12, 0x83);
- dsi_generic_write_seq(dsi, ST7703_CMD_SETRGBIF,
- 0x10, 0x10, 0x05, 0x05, 0x03, 0xFF, 0x00, 0x00,
- 0x00, 0x00);
- dsi_generic_write_seq(dsi, ST7703_CMD_SETSCR,
- 0x73, 0x73, 0x50, 0x50, 0x00, 0x00, 0x08, 0x70,
- 0x00);
- dsi_generic_write_seq(dsi, ST7703_CMD_SETVDC, 0x4E);
- dsi_generic_write_seq(dsi, ST7703_CMD_SETPANEL, 0x0B);
- dsi_generic_write_seq(dsi, ST7703_CMD_SETCYC, 0x80);
- dsi_generic_write_seq(dsi, ST7703_CMD_SETDISP, 0xF0, 0x12, 0x30);
- dsi_generic_write_seq(dsi, ST7703_CMD_SETEQ,
- 0x07, 0x07, 0x0B, 0x0B, 0x03, 0x0B, 0x00, 0x00,
- 0x00, 0x00, 0xFF, 0x00, 0xC0, 0x10);
- dsi_generic_write_seq(dsi, ST7703_CMD_SETBGP, 0x08, 0x08);
+ mipi_dsi_generic_write_seq(dsi, ST7703_CMD_SETEXTC,
+ 0xF1, 0x12, 0x83);
+ mipi_dsi_generic_write_seq(dsi, ST7703_CMD_SETRGBIF,
+ 0x10, 0x10, 0x05, 0x05, 0x03, 0xFF, 0x00, 0x00,
+ 0x00, 0x00);
+ mipi_dsi_generic_write_seq(dsi, ST7703_CMD_SETSCR,
+ 0x73, 0x73, 0x50, 0x50, 0x00, 0x00, 0x08, 0x70,
+ 0x00);
+ mipi_dsi_generic_write_seq(dsi, ST7703_CMD_SETVDC, 0x4E);
+ mipi_dsi_generic_write_seq(dsi, ST7703_CMD_SETPANEL, 0x0B);
+ mipi_dsi_generic_write_seq(dsi, ST7703_CMD_SETCYC, 0x80);
+ mipi_dsi_generic_write_seq(dsi, ST7703_CMD_SETDISP, 0xF0, 0x12, 0x30);
+ mipi_dsi_generic_write_seq(dsi, ST7703_CMD_SETEQ,
+ 0x07, 0x07, 0x0B, 0x0B, 0x03, 0x0B, 0x00, 0x00,
+ 0x00, 0x00, 0xFF, 0x00, 0xC0, 0x10);
+ mipi_dsi_generic_write_seq(dsi, ST7703_CMD_SETBGP, 0x08, 0x08);
msleep(20);
- dsi_generic_write_seq(dsi, ST7703_CMD_SETVCOM, 0x3F, 0x3F);
- dsi_generic_write_seq(dsi, ST7703_CMD_UNKNOWN_BF, 0x02, 0x11, 0x00);
- dsi_generic_write_seq(dsi, ST7703_CMD_SETGIP1,
- 0x82, 0x10, 0x06, 0x05, 0x9E, 0x0A, 0xA5, 0x12,
- 0x31, 0x23, 0x37, 0x83, 0x04, 0xBC, 0x27, 0x38,
- 0x0C, 0x00, 0x03, 0x00, 0x00, 0x00, 0x0C, 0x00,
- 0x03, 0x00, 0x00, 0x00, 0x75, 0x75, 0x31, 0x88,
- 0x88, 0x88, 0x88, 0x88, 0x88, 0x13, 0x88, 0x64,
- 0x64, 0x20, 0x88, 0x88, 0x88, 0x88, 0x88, 0x88,
- 0x02, 0x88, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
- 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00);
- dsi_generic_write_seq(dsi, ST7703_CMD_SETGIP2,
- 0x02, 0x21, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
- 0x00, 0x00, 0x00, 0x00, 0x02, 0x46, 0x02, 0x88,
- 0x88, 0x88, 0x88, 0x88, 0x88, 0x64, 0x88, 0x13,
- 0x57, 0x13, 0x88, 0x88, 0x88, 0x88, 0x88, 0x88,
- 0x75, 0x88, 0x23, 0x14, 0x00, 0x00, 0x02, 0x00,
- 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
- 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x30, 0x0A,
- 0xA5, 0x00, 0x00, 0x00, 0x00);
- dsi_generic_write_seq(dsi, ST7703_CMD_SETGAMMA,
- 0x00, 0x09, 0x0E, 0x29, 0x2D, 0x3C, 0x41, 0x37,
- 0x07, 0x0B, 0x0D, 0x10, 0x11, 0x0F, 0x10, 0x11,
- 0x18, 0x00, 0x09, 0x0E, 0x29, 0x2D, 0x3C, 0x41,
- 0x37, 0x07, 0x0B, 0x0D, 0x10, 0x11, 0x0F, 0x10,
- 0x11, 0x18);
+ mipi_dsi_generic_write_seq(dsi, ST7703_CMD_SETVCOM, 0x3F, 0x3F);
+ mipi_dsi_generic_write_seq(dsi, ST7703_CMD_UNKNOWN_BF, 0x02, 0x11, 0x00);
+ mipi_dsi_generic_write_seq(dsi, ST7703_CMD_SETGIP1,
+ 0x82, 0x10, 0x06, 0x05, 0x9E, 0x0A, 0xA5, 0x12,
+ 0x31, 0x23, 0x37, 0x83, 0x04, 0xBC, 0x27, 0x38,
+ 0x0C, 0x00, 0x03, 0x00, 0x00, 0x00, 0x0C, 0x00,
+ 0x03, 0x00, 0x00, 0x00, 0x75, 0x75, 0x31, 0x88,
+ 0x88, 0x88, 0x88, 0x88, 0x88, 0x13, 0x88, 0x64,
+ 0x64, 0x20, 0x88, 0x88, 0x88, 0x88, 0x88, 0x88,
+ 0x02, 0x88, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+ 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00);
+ mipi_dsi_generic_write_seq(dsi, ST7703_CMD_SETGIP2,
+ 0x02, 0x21, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+ 0x00, 0x00, 0x00, 0x00, 0x02, 0x46, 0x02, 0x88,
+ 0x88, 0x88, 0x88, 0x88, 0x88, 0x64, 0x88, 0x13,
+ 0x57, 0x13, 0x88, 0x88, 0x88, 0x88, 0x88, 0x88,
+ 0x75, 0x88, 0x23, 0x14, 0x00, 0x00, 0x02, 0x00,
+ 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+ 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x30, 0x0A,
+ 0xA5, 0x00, 0x00, 0x00, 0x00);
+ mipi_dsi_generic_write_seq(dsi, ST7703_CMD_SETGAMMA,
+ 0x00, 0x09, 0x0E, 0x29, 0x2D, 0x3C, 0x41, 0x37,
+ 0x07, 0x0B, 0x0D, 0x10, 0x11, 0x0F, 0x10, 0x11,
+ 0x18, 0x00, 0x09, 0x0E, 0x29, 0x2D, 0x3C, 0x41,
+ 0x37, 0x07, 0x0B, 0x0D, 0x10, 0x11, 0x0F, 0x10,
+ 0x11, 0x18);
return 0;
}
@@ -162,15 +154,6 @@ static const struct st7703_panel_desc jh057n00900_panel_desc = {
.init_sequence = jh057n_init_sequence,
};
-#define dsi_dcs_write_seq(dsi, cmd, seq...) do { \
- static const u8 d[] = { seq }; \
- int ret; \
- ret = mipi_dsi_dcs_write(dsi, cmd, d, ARRAY_SIZE(d)); \
- if (ret < 0) \
- return ret; \
- } while (0)
-
-
static int xbd599_init_sequence(struct st7703 *ctx)
{
struct mipi_dsi_device *dsi = to_mipi_dsi_device(ctx->dev);
@@ -180,154 +163,154 @@ static int xbd599_init_sequence(struct st7703 *ctx)
*/
/* Magic sequence to unlock user commands below. */
- dsi_dcs_write_seq(dsi, ST7703_CMD_SETEXTC, 0xF1, 0x12, 0x83);
-
- dsi_dcs_write_seq(dsi, ST7703_CMD_SETMIPI,
- 0x33, /* VC_main = 0, Lane_Number = 3 (4 lanes) */
- 0x81, /* DSI_LDO_SEL = 1.7V, RTERM = 90 Ohm */
- 0x05, /* IHSRX = x6 (Low High Speed driving ability) */
- 0xF9, /* TX_CLK_SEL = fDSICLK/16 */
- 0x0E, /* HFP_OSC (min. HFP number in DSI mode) */
- 0x0E, /* HBP_OSC (min. HBP number in DSI mode) */
- /* The rest is undocumented in ST7703 datasheet */
- 0x20, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
- 0x44, 0x25, 0x00, 0x91, 0x0a, 0x00, 0x00, 0x02,
- 0x4F, 0x11, 0x00, 0x00, 0x37);
-
- dsi_dcs_write_seq(dsi, ST7703_CMD_SETPOWER_EXT,
- 0x25, /* PCCS = 2, ECP_DC_DIV = 1/4 HSYNC */
- 0x22, /* DT = 15ms XDK_ECP = x2 */
- 0x20, /* PFM_DC_DIV = /1 */
- 0x03 /* ECP_SYNC_EN = 1, VGX_SYNC_EN = 1 */);
+ mipi_dsi_dcs_write_seq(dsi, ST7703_CMD_SETEXTC, 0xF1, 0x12, 0x83);
+
+ mipi_dsi_dcs_write_seq(dsi, ST7703_CMD_SETMIPI,
+ 0x33, /* VC_main = 0, Lane_Number = 3 (4 lanes) */
+ 0x81, /* DSI_LDO_SEL = 1.7V, RTERM = 90 Ohm */
+ 0x05, /* IHSRX = x6 (Low High Speed driving ability) */
+ 0xF9, /* TX_CLK_SEL = fDSICLK/16 */
+ 0x0E, /* HFP_OSC (min. HFP number in DSI mode) */
+ 0x0E, /* HBP_OSC (min. HBP number in DSI mode) */
+ /* The rest is undocumented in ST7703 datasheet */
+ 0x20, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+ 0x44, 0x25, 0x00, 0x91, 0x0a, 0x00, 0x00, 0x02,
+ 0x4F, 0x11, 0x00, 0x00, 0x37);
+
+ mipi_dsi_dcs_write_seq(dsi, ST7703_CMD_SETPOWER_EXT,
+ 0x25, /* PCCS = 2, ECP_DC_DIV = 1/4 HSYNC */
+ 0x22, /* DT = 15ms XDK_ECP = x2 */
+ 0x20, /* PFM_DC_DIV = /1 */
+ 0x03 /* ECP_SYNC_EN = 1, VGX_SYNC_EN = 1 */);
/* RGB I/F porch timing */
- dsi_dcs_write_seq(dsi, ST7703_CMD_SETRGBIF,
- 0x10, /* VBP_RGB_GEN */
- 0x10, /* VFP_RGB_GEN */
- 0x05, /* DE_BP_RGB_GEN */
- 0x05, /* DE_FP_RGB_GEN */
- /* The rest is undocumented in ST7703 datasheet */
- 0x03, 0xFF,
- 0x00, 0x00,
- 0x00, 0x00);
+ mipi_dsi_dcs_write_seq(dsi, ST7703_CMD_SETRGBIF,
+ 0x10, /* VBP_RGB_GEN */
+ 0x10, /* VFP_RGB_GEN */
+ 0x05, /* DE_BP_RGB_GEN */
+ 0x05, /* DE_FP_RGB_GEN */
+ /* The rest is undocumented in ST7703 datasheet */
+ 0x03, 0xFF,
+ 0x00, 0x00,
+ 0x00, 0x00);
/* Source driving settings. */
- dsi_dcs_write_seq(dsi, ST7703_CMD_SETSCR,
- 0x73, /* N_POPON */
- 0x73, /* N_NOPON */
- 0x50, /* I_POPON */
- 0x50, /* I_NOPON */
- 0x00, /* SCR[31,24] */
- 0xC0, /* SCR[23,16] */
- 0x08, /* SCR[15,8] */
- 0x70, /* SCR[7,0] */
- 0x00 /* Undocumented */);
+ mipi_dsi_dcs_write_seq(dsi, ST7703_CMD_SETSCR,
+ 0x73, /* N_POPON */
+ 0x73, /* N_NOPON */
+ 0x50, /* I_POPON */
+ 0x50, /* I_NOPON */
+ 0x00, /* SCR[31,24] */
+ 0xC0, /* SCR[23,16] */
+ 0x08, /* SCR[15,8] */
+ 0x70, /* SCR[7,0] */
+ 0x00 /* Undocumented */);
/* NVDDD_SEL = -1.8V, VDDD_SEL = out of range (possibly 1.9V?) */
- dsi_dcs_write_seq(dsi, ST7703_CMD_SETVDC, 0x4E);
+ mipi_dsi_dcs_write_seq(dsi, ST7703_CMD_SETVDC, 0x4E);
/*
* SS_PANEL = 1 (reverse scan), GS_PANEL = 0 (normal scan)
* REV_PANEL = 1 (normally black panel), BGR_PANEL = 1 (BGR)
*/
- dsi_dcs_write_seq(dsi, ST7703_CMD_SETPANEL, 0x0B);
+ mipi_dsi_dcs_write_seq(dsi, ST7703_CMD_SETPANEL, 0x0B);
/* Zig-Zag Type C column inversion. */
- dsi_dcs_write_seq(dsi, ST7703_CMD_SETCYC, 0x80);
+ mipi_dsi_dcs_write_seq(dsi, ST7703_CMD_SETCYC, 0x80);
/* Set display resolution. */
- dsi_dcs_write_seq(dsi, ST7703_CMD_SETDISP,
- 0xF0, /* NL = 240 */
- 0x12, /* RES_V_LSB = 0, BLK_CON = VSSD,
- * RESO_SEL = 720RGB
- */
- 0xF0 /* WHITE_GND_EN = 1 (GND),
- * WHITE_FRAME_SEL = 7 frames,
- * ISC = 0 frames
- */);
-
- dsi_dcs_write_seq(dsi, ST7703_CMD_SETEQ,
- 0x00, /* PNOEQ */
- 0x00, /* NNOEQ */
- 0x0B, /* PEQGND */
- 0x0B, /* NEQGND */
- 0x10, /* PEQVCI */
- 0x10, /* NEQVCI */
- 0x00, /* PEQVCI1 */
- 0x00, /* NEQVCI1 */
- 0x00, /* reserved */
- 0x00, /* reserved */
- 0xFF, /* reserved */
- 0x00, /* reserved */
- 0xC0, /* ESD_DET_DATA_WHITE = 1, ESD_WHITE_EN = 1 */
- 0x10 /* SLPIN_OPTION = 1 (no need vsync after sleep-in)
- * VEDIO_NO_CHECK_EN = 0
- * ESD_WHITE_GND_EN = 0
- * ESD_DET_TIME_SEL = 0 frames
- */);
+ mipi_dsi_dcs_write_seq(dsi, ST7703_CMD_SETDISP,
+ 0xF0, /* NL = 240 */
+ 0x12, /* RES_V_LSB = 0, BLK_CON = VSSD,
+ * RESO_SEL = 720RGB
+ */
+ 0xF0 /* WHITE_GND_EN = 1 (GND),
+ * WHITE_FRAME_SEL = 7 frames,
+ * ISC = 0 frames
+ */);
+
+ mipi_dsi_dcs_write_seq(dsi, ST7703_CMD_SETEQ,
+ 0x00, /* PNOEQ */
+ 0x00, /* NNOEQ */
+ 0x0B, /* PEQGND */
+ 0x0B, /* NEQGND */
+ 0x10, /* PEQVCI */
+ 0x10, /* NEQVCI */
+ 0x00, /* PEQVCI1 */
+ 0x00, /* NEQVCI1 */
+ 0x00, /* reserved */
+ 0x00, /* reserved */
+ 0xFF, /* reserved */
+ 0x00, /* reserved */
+ 0xC0, /* ESD_DET_DATA_WHITE = 1, ESD_WHITE_EN = 1 */
+ 0x10 /* SLPIN_OPTION = 1 (no need vsync after sleep-in)
+ * VEDIO_NO_CHECK_EN = 0
+ * ESD_WHITE_GND_EN = 0
+ * ESD_DET_TIME_SEL = 0 frames
+ */);
/* Undocumented command. */
- dsi_dcs_write_seq(dsi, ST7703_CMD_UNKNOWN_C6, 0x01, 0x00, 0xFF, 0xFF, 0x00);
-
- dsi_dcs_write_seq(dsi, ST7703_CMD_SETPOWER,
- 0x74, /* VBTHS, VBTLS: VGH = 17V, VBL = -11V */
- 0x00, /* FBOFF_VGH = 0, FBOFF_VGL = 0 */
- 0x32, /* VRP */
- 0x32, /* VRN */
- 0x77, /* reserved */
- 0xF1, /* APS = 1 (small),
- * VGL_DET_EN = 1, VGH_DET_EN = 1,
- * VGL_TURBO = 1, VGH_TURBO = 1
- */
- 0xFF, /* VGH1_L_DIV, VGL1_L_DIV (1.5MHz) */
- 0xFF, /* VGH1_R_DIV, VGL1_R_DIV (1.5MHz) */
- 0xCC, /* VGH2_L_DIV, VGL2_L_DIV (2.6MHz) */
- 0xCC, /* VGH2_R_DIV, VGL2_R_DIV (2.6MHz) */
- 0x77, /* VGH3_L_DIV, VGL3_L_DIV (4.5MHz) */
- 0x77 /* VGH3_R_DIV, VGL3_R_DIV (4.5MHz) */);
+ mipi_dsi_dcs_write_seq(dsi, ST7703_CMD_UNKNOWN_C6, 0x01, 0x00, 0xFF, 0xFF, 0x00);
+
+ mipi_dsi_dcs_write_seq(dsi, ST7703_CMD_SETPOWER,
+ 0x74, /* VBTHS, VBTLS: VGH = 17V, VBL = -11V */
+ 0x00, /* FBOFF_VGH = 0, FBOFF_VGL = 0 */
+ 0x32, /* VRP */
+ 0x32, /* VRN */
+ 0x77, /* reserved */
+ 0xF1, /* APS = 1 (small),
+ * VGL_DET_EN = 1, VGH_DET_EN = 1,
+ * VGL_TURBO = 1, VGH_TURBO = 1
+ */
+ 0xFF, /* VGH1_L_DIV, VGL1_L_DIV (1.5MHz) */
+ 0xFF, /* VGH1_R_DIV, VGL1_R_DIV (1.5MHz) */
+ 0xCC, /* VGH2_L_DIV, VGL2_L_DIV (2.6MHz) */
+ 0xCC, /* VGH2_R_DIV, VGL2_R_DIV (2.6MHz) */
+ 0x77, /* VGH3_L_DIV, VGL3_L_DIV (4.5MHz) */
+ 0x77 /* VGH3_R_DIV, VGL3_R_DIV (4.5MHz) */);
/* Reference voltage. */
- dsi_dcs_write_seq(dsi, ST7703_CMD_SETBGP,
- 0x07, /* VREF_SEL = 4.2V */
- 0x07 /* NVREF_SEL = 4.2V */);
+ mipi_dsi_dcs_write_seq(dsi, ST7703_CMD_SETBGP,
+ 0x07, /* VREF_SEL = 4.2V */
+ 0x07 /* NVREF_SEL = 4.2V */);
msleep(20);
- dsi_dcs_write_seq(dsi, ST7703_CMD_SETVCOM,
- 0x2C, /* VCOMDC_F = -0.67V */
- 0x2C /* VCOMDC_B = -0.67V */);
+ mipi_dsi_dcs_write_seq(dsi, ST7703_CMD_SETVCOM,
+ 0x2C, /* VCOMDC_F = -0.67V */
+ 0x2C /* VCOMDC_B = -0.67V */);
/* Undocumented command. */
- dsi_dcs_write_seq(dsi, ST7703_CMD_UNKNOWN_BF, 0x02, 0x11, 0x00);
+ mipi_dsi_dcs_write_seq(dsi, ST7703_CMD_UNKNOWN_BF, 0x02, 0x11, 0x00);
/* This command is to set forward GIP timing. */
- dsi_dcs_write_seq(dsi, ST7703_CMD_SETGIP1,
- 0x82, 0x10, 0x06, 0x05, 0xA2, 0x0A, 0xA5, 0x12,
- 0x31, 0x23, 0x37, 0x83, 0x04, 0xBC, 0x27, 0x38,
- 0x0C, 0x00, 0x03, 0x00, 0x00, 0x00, 0x0C, 0x00,
- 0x03, 0x00, 0x00, 0x00, 0x75, 0x75, 0x31, 0x88,
- 0x88, 0x88, 0x88, 0x88, 0x88, 0x13, 0x88, 0x64,
- 0x64, 0x20, 0x88, 0x88, 0x88, 0x88, 0x88, 0x88,
- 0x02, 0x88, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
- 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00);
+ mipi_dsi_dcs_write_seq(dsi, ST7703_CMD_SETGIP1,
+ 0x82, 0x10, 0x06, 0x05, 0xA2, 0x0A, 0xA5, 0x12,
+ 0x31, 0x23, 0x37, 0x83, 0x04, 0xBC, 0x27, 0x38,
+ 0x0C, 0x00, 0x03, 0x00, 0x00, 0x00, 0x0C, 0x00,
+ 0x03, 0x00, 0x00, 0x00, 0x75, 0x75, 0x31, 0x88,
+ 0x88, 0x88, 0x88, 0x88, 0x88, 0x13, 0x88, 0x64,
+ 0x64, 0x20, 0x88, 0x88, 0x88, 0x88, 0x88, 0x88,
+ 0x02, 0x88, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+ 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00);
/* This command is to set backward GIP timing. */
- dsi_dcs_write_seq(dsi, ST7703_CMD_SETGIP2,
- 0x02, 0x21, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
- 0x00, 0x00, 0x00, 0x00, 0x02, 0x46, 0x02, 0x88,
- 0x88, 0x88, 0x88, 0x88, 0x88, 0x64, 0x88, 0x13,
- 0x57, 0x13, 0x88, 0x88, 0x88, 0x88, 0x88, 0x88,
- 0x75, 0x88, 0x23, 0x14, 0x00, 0x00, 0x02, 0x00,
- 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
- 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x03, 0x0A,
- 0xA5, 0x00, 0x00, 0x00, 0x00);
+ mipi_dsi_dcs_write_seq(dsi, ST7703_CMD_SETGIP2,
+ 0x02, 0x21, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+ 0x00, 0x00, 0x00, 0x00, 0x02, 0x46, 0x02, 0x88,
+ 0x88, 0x88, 0x88, 0x88, 0x88, 0x64, 0x88, 0x13,
+ 0x57, 0x13, 0x88, 0x88, 0x88, 0x88, 0x88, 0x88,
+ 0x75, 0x88, 0x23, 0x14, 0x00, 0x00, 0x02, 0x00,
+ 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+ 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x03, 0x0A,
+ 0xA5, 0x00, 0x00, 0x00, 0x00);
/* Adjust the gamma characteristics of the panel. */
- dsi_dcs_write_seq(dsi, ST7703_CMD_SETGAMMA,
- 0x00, 0x09, 0x0D, 0x23, 0x27, 0x3C, 0x41, 0x35,
- 0x07, 0x0D, 0x0E, 0x12, 0x13, 0x10, 0x12, 0x12,
- 0x18, 0x00, 0x09, 0x0D, 0x23, 0x27, 0x3C, 0x41,
- 0x35, 0x07, 0x0D, 0x0E, 0x12, 0x13, 0x10, 0x12,
- 0x12, 0x18);
+ mipi_dsi_dcs_write_seq(dsi, ST7703_CMD_SETGAMMA,
+ 0x00, 0x09, 0x0D, 0x23, 0x27, 0x3C, 0x41, 0x35,
+ 0x07, 0x0D, 0x0E, 0x12, 0x13, 0x10, 0x12, 0x12,
+ 0x18, 0x00, 0x09, 0x0D, 0x23, 0x27, 0x3C, 0x41,
+ 0x35, 0x07, 0x0D, 0x0E, 0x12, 0x13, 0x10, 0x12,
+ 0x12, 0x18);
return 0;
}
@@ -499,7 +482,7 @@ static int allpixelson_set(void *data, u64 val)
struct mipi_dsi_device *dsi = to_mipi_dsi_device(ctx->dev);
dev_dbg(ctx->dev, "Setting all pixels on\n");
- dsi_generic_write_seq(dsi, ST7703_CMD_ALL_PIXEL_ON);
+ mipi_dsi_generic_write_seq(dsi, ST7703_CMD_ALL_PIXEL_ON);
msleep(val * 1000);
/* Reset the panel to get video back */
drm_panel_disable(&ctx->panel);
diff --git a/drivers/gpu/drm/panel/panel-sony-td4353-jdi.c b/drivers/gpu/drm/panel/panel-sony-td4353-jdi.c
new file mode 100644
index 000000000000..8d8813dbaa45
--- /dev/null
+++ b/drivers/gpu/drm/panel/panel-sony-td4353-jdi.c
@@ -0,0 +1,329 @@
+// SPDX-License-Identifier: GPL-2.0-only
+/*
+ * Copyright (c) 2022 Konrad Dybcio <konrad.dybcio@somainline.org>
+ *
+ * Generated with linux-mdss-dsi-panel-driver-generator with a
+ * substantial amount of manual adjustments.
+ *
+ * SONY Downstream kernel calls this one:
+ * - "JDI ID3" for Akari (XZ2)
+ * - "JDI ID4" for Apollo (XZ2 Compact)
+ */
+
+#include <linux/delay.h>
+#include <linux/gpio/consumer.h>
+#include <linux/module.h>
+#include <linux/of.h>
+#include <linux/of_device.h>
+#include <linux/regulator/consumer.h>
+
+#include <video/mipi_display.h>
+
+#include <drm/drm_mipi_dsi.h>
+#include <drm/drm_modes.h>
+#include <drm/drm_panel.h>
+
+enum {
+ TYPE_TAMA_60HZ,
+ /*
+ * Leaving room for expansion - SONY very often uses
+ * *truly reliably* overclockable panels on their flagships!
+ */
+};
+
+struct sony_td4353_jdi {
+ struct drm_panel panel;
+ struct mipi_dsi_device *dsi;
+ struct regulator_bulk_data supplies[3];
+ struct gpio_desc *panel_reset_gpio;
+ struct gpio_desc *touch_reset_gpio;
+ bool prepared;
+ int type;
+};
+
+static inline struct sony_td4353_jdi *to_sony_td4353_jdi(struct drm_panel *panel)
+{
+ return container_of(panel, struct sony_td4353_jdi, panel);
+}
+
+static int sony_td4353_jdi_on(struct sony_td4353_jdi *ctx)
+{
+ struct mipi_dsi_device *dsi = ctx->dsi;
+ struct device *dev = &dsi->dev;
+ int ret;
+
+ dsi->mode_flags |= MIPI_DSI_MODE_LPM;
+
+ ret = mipi_dsi_dcs_set_column_address(dsi, 0x0000, 1080 - 1);
+ if (ret < 0) {
+ dev_err(dev, "Failed to set column address: %d\n", ret);
+ return ret;
+ }
+
+ ret = mipi_dsi_dcs_set_page_address(dsi, 0x0000, 2160 - 1);
+ if (ret < 0) {
+ dev_err(dev, "Failed to set page address: %d\n", ret);
+ return ret;
+ }
+
+ ret = mipi_dsi_dcs_set_tear_scanline(dsi, 0);
+ if (ret < 0) {
+ dev_err(dev, "Failed to set tear scanline: %d\n", ret);
+ return ret;
+ }
+
+ ret = mipi_dsi_dcs_set_tear_on(dsi, MIPI_DSI_DCS_TEAR_MODE_VBLANK);
+ if (ret < 0) {
+ dev_err(dev, "Failed to set tear on: %d\n", ret);
+ return ret;
+ }
+
+ mipi_dsi_dcs_write_seq(dsi, MIPI_DCS_SET_ADDRESS_MODE, 0x00);
+
+ ret = mipi_dsi_dcs_set_pixel_format(dsi, 0x77);
+ if (ret < 0) {
+ dev_err(dev, "Failed to set pixel format: %d\n", ret);
+ return ret;
+ }
+
+ mipi_dsi_dcs_write_seq(dsi, MIPI_DCS_SET_PARTIAL_ROWS,
+ 0x00, 0x00, 0x08, 0x6f);
+
+ ret = mipi_dsi_dcs_exit_sleep_mode(dsi);
+ if (ret < 0) {
+ dev_err(dev, "Failed to exit sleep mode: %d\n", ret);
+ return ret;
+ }
+ msleep(70);
+
+ mipi_dsi_dcs_write_seq(dsi, MIPI_DCS_WRITE_MEMORY_START);
+
+ ret = mipi_dsi_dcs_set_display_on(dsi);
+ if (ret < 0) {
+ dev_err(dev, "Failed to turn display on: %d\n", ret);
+ return ret;
+ }
+
+ return 0;
+}
+
+static int sony_td4353_jdi_off(struct sony_td4353_jdi *ctx)
+{
+ struct mipi_dsi_device *dsi = ctx->dsi;
+ struct device *dev = &dsi->dev;
+ int ret;
+
+ dsi->mode_flags &= ~MIPI_DSI_MODE_LPM;
+
+ ret = mipi_dsi_dcs_set_display_off(dsi);
+ if (ret < 0) {
+ dev_err(dev, "Failed to set display off: %d\n", ret);
+ return ret;
+ }
+ msleep(22);
+
+ ret = mipi_dsi_dcs_set_tear_off(dsi);
+ if (ret < 0) {
+ dev_err(dev, "Failed to set tear off: %d\n", ret);
+ return ret;
+ }
+
+ ret = mipi_dsi_dcs_enter_sleep_mode(dsi);
+ if (ret < 0) {
+ dev_err(dev, "Failed to enter sleep mode: %d\n", ret);
+ return ret;
+ }
+ msleep(80);
+
+ return 0;
+}
+
+static void sony_td4353_assert_reset_gpios(struct sony_td4353_jdi *ctx, int mode)
+{
+ gpiod_set_value_cansleep(ctx->touch_reset_gpio, mode);
+ gpiod_set_value_cansleep(ctx->panel_reset_gpio, mode);
+ usleep_range(5000, 5100);
+}
+
+static int sony_td4353_jdi_prepare(struct drm_panel *panel)
+{
+ struct sony_td4353_jdi *ctx = to_sony_td4353_jdi(panel);
+ struct device *dev = &ctx->dsi->dev;
+ int ret;
+
+ if (ctx->prepared)
+ return 0;
+
+ ret = regulator_bulk_enable(ARRAY_SIZE(ctx->supplies), ctx->supplies);
+ if (ret < 0) {
+ dev_err(dev, "Failed to enable regulators: %d\n", ret);
+ return ret;
+ }
+
+ msleep(100);
+
+ sony_td4353_assert_reset_gpios(ctx, 1);
+
+ ret = sony_td4353_jdi_on(ctx);
+ if (ret < 0) {
+ dev_err(dev, "Failed to power on panel: %d\n", ret);
+ sony_td4353_assert_reset_gpios(ctx, 0);
+ regulator_bulk_disable(ARRAY_SIZE(ctx->supplies), ctx->supplies);
+ return ret;
+ }
+
+ ctx->prepared = true;
+ return 0;
+}
+
+static int sony_td4353_jdi_unprepare(struct drm_panel *panel)
+{
+ struct sony_td4353_jdi *ctx = to_sony_td4353_jdi(panel);
+ struct device *dev = &ctx->dsi->dev;
+ int ret;
+
+ if (!ctx->prepared)
+ return 0;
+
+ ret = sony_td4353_jdi_off(ctx);
+ if (ret < 0)
+ dev_err(dev, "Failed to power off panel: %d\n", ret);
+
+ sony_td4353_assert_reset_gpios(ctx, 0);
+ regulator_bulk_disable(ARRAY_SIZE(ctx->supplies), ctx->supplies);
+
+ ctx->prepared = false;
+ return 0;
+}
+
+static const struct drm_display_mode sony_td4353_jdi_mode_tama_60hz = {
+ .clock = (1080 + 4 + 8 + 8) * (2160 + 259 + 8 + 8) * 60 / 1000,
+ .hdisplay = 1080,
+ .hsync_start = 1080 + 4,
+ .hsync_end = 1080 + 4 + 8,
+ .htotal = 1080 + 4 + 8 + 8,
+ .vdisplay = 2160,
+ .vsync_start = 2160 + 259,
+ .vsync_end = 2160 + 259 + 8,
+ .vtotal = 2160 + 259 + 8 + 8,
+ .width_mm = 64,
+ .height_mm = 128,
+};
+
+static int sony_td4353_jdi_get_modes(struct drm_panel *panel,
+ struct drm_connector *connector)
+{
+ struct sony_td4353_jdi *ctx = to_sony_td4353_jdi(panel);
+ struct drm_display_mode *mode = NULL;
+
+ if (ctx->type == TYPE_TAMA_60HZ)
+ mode = drm_mode_duplicate(connector->dev, &sony_td4353_jdi_mode_tama_60hz);
+ else
+ return -EINVAL;
+
+ if (!mode)
+ return -ENOMEM;
+
+ drm_mode_set_name(mode);
+
+ mode->type = DRM_MODE_TYPE_DRIVER | DRM_MODE_TYPE_PREFERRED;
+ connector->display_info.width_mm = mode->width_mm;
+ connector->display_info.height_mm = mode->height_mm;
+ drm_mode_probed_add(connector, mode);
+
+ return 1;
+}
+
+static const struct drm_panel_funcs sony_td4353_jdi_panel_funcs = {
+ .prepare = sony_td4353_jdi_prepare,
+ .unprepare = sony_td4353_jdi_unprepare,
+ .get_modes = sony_td4353_jdi_get_modes,
+};
+
+static int sony_td4353_jdi_probe(struct mipi_dsi_device *dsi)
+{
+ struct device *dev = &dsi->dev;
+ struct sony_td4353_jdi *ctx;
+ int ret;
+
+ ctx = devm_kzalloc(dev, sizeof(*ctx), GFP_KERNEL);
+ if (!ctx)
+ return -ENOMEM;
+
+ ctx->type = (uintptr_t)of_device_get_match_data(dev);
+
+ ctx->supplies[0].supply = "vddio";
+ ctx->supplies[1].supply = "vsp";
+ ctx->supplies[2].supply = "vsn";
+ ret = devm_regulator_bulk_get(dev, ARRAY_SIZE(ctx->supplies),
+ ctx->supplies);
+ if (ret < 0)
+ return dev_err_probe(dev, ret, "Failed to get regulators\n");
+
+ ctx->panel_reset_gpio = devm_gpiod_get(dev, "panel-reset", GPIOD_ASIS);
+ if (IS_ERR(ctx->panel_reset_gpio))
+ return dev_err_probe(dev, PTR_ERR(ctx->panel_reset_gpio),
+ "Failed to get panel-reset-gpios\n");
+
+ ctx->touch_reset_gpio = devm_gpiod_get(dev, "touch-reset", GPIOD_ASIS);
+ if (IS_ERR(ctx->touch_reset_gpio))
+ return dev_err_probe(dev, PTR_ERR(ctx->touch_reset_gpio),
+ "Failed to get touch-reset-gpios\n");
+
+ ctx->dsi = dsi;
+ mipi_dsi_set_drvdata(dsi, ctx);
+
+ dsi->lanes = 4;
+ dsi->format = MIPI_DSI_FMT_RGB888;
+ dsi->mode_flags = MIPI_DSI_CLOCK_NON_CONTINUOUS;
+
+ drm_panel_init(&ctx->panel, dev, &sony_td4353_jdi_panel_funcs,
+ DRM_MODE_CONNECTOR_DSI);
+
+ ret = drm_panel_of_backlight(&ctx->panel);
+ if (ret)
+ return dev_err_probe(dev, ret, "Failed to get backlight\n");
+
+ drm_panel_add(&ctx->panel);
+
+ ret = mipi_dsi_attach(dsi);
+ if (ret < 0) {
+ dev_err(dev, "Failed to attach to DSI host: %d\n", ret);
+ drm_panel_remove(&ctx->panel);
+ return ret;
+ }
+
+ return 0;
+}
+
+static void sony_td4353_jdi_remove(struct mipi_dsi_device *dsi)
+{
+ struct sony_td4353_jdi *ctx = mipi_dsi_get_drvdata(dsi);
+ int ret;
+
+ ret = mipi_dsi_detach(dsi);
+ if (ret < 0)
+ dev_err(&dsi->dev, "Failed to detach from DSI host: %d\n", ret);
+
+ drm_panel_remove(&ctx->panel);
+}
+
+static const struct of_device_id sony_td4353_jdi_of_match[] = {
+ { .compatible = "sony,td4353-jdi-tama", .data = (void *)TYPE_TAMA_60HZ },
+ { /* sentinel */ }
+};
+MODULE_DEVICE_TABLE(of, sony_td4353_jdi_of_match);
+
+static struct mipi_dsi_driver sony_td4353_jdi_driver = {
+ .probe = sony_td4353_jdi_probe,
+ .remove = sony_td4353_jdi_remove,
+ .driver = {
+ .name = "panel-sony-td4353-jdi",
+ .of_match_table = sony_td4353_jdi_of_match,
+ },
+};
+module_mipi_dsi_driver(sony_td4353_jdi_driver);
+
+MODULE_AUTHOR("Konrad Dybcio <konrad.dybcio@somainline.org>");
+MODULE_DESCRIPTION("DRM panel driver for SONY Xperia XZ2/XZ2c JDI panel");
+MODULE_LICENSE("GPL");
diff --git a/drivers/gpu/drm/panel/panel-sony-tulip-truly-nt35521.c b/drivers/gpu/drm/panel/panel-sony-tulip-truly-nt35521.c
index fa9be3c299c0..ee5d20ecc577 100644
--- a/drivers/gpu/drm/panel/panel-sony-tulip-truly-nt35521.c
+++ b/drivers/gpu/drm/panel/panel-sony-tulip-truly-nt35521.c
@@ -33,14 +33,6 @@ struct truly_nt35521 *to_truly_nt35521(struct drm_panel *panel)
return container_of(panel, struct truly_nt35521, panel);
}
-#define dsi_generic_write_seq(dsi, seq...) do { \
- static const u8 d[] = { seq }; \
- int ret; \
- ret = mipi_dsi_generic_write(dsi, d, ARRAY_SIZE(d)); \
- if (ret < 0) \
- return ret; \
- } while (0)
-
static void truly_nt35521_reset(struct truly_nt35521 *ctx)
{
gpiod_set_value_cansleep(ctx->reset_gpio, 1);
@@ -59,200 +51,200 @@ static int truly_nt35521_on(struct truly_nt35521 *ctx)
dsi->mode_flags |= MIPI_DSI_MODE_LPM;
- dsi_generic_write_seq(dsi, 0xf0, 0x55, 0xaa, 0x52, 0x08, 0x00);
- dsi_generic_write_seq(dsi, 0xff, 0xaa, 0x55, 0xa5, 0x80);
- dsi_generic_write_seq(dsi, 0x6f, 0x11, 0x00);
- dsi_generic_write_seq(dsi, 0xf7, 0x20, 0x00);
- dsi_generic_write_seq(dsi, 0x6f, 0x01);
- dsi_generic_write_seq(dsi, 0xb1, 0x21);
- dsi_generic_write_seq(dsi, 0xbd, 0x01, 0xa0, 0x10, 0x08, 0x01);
- dsi_generic_write_seq(dsi, 0xb8, 0x01, 0x02, 0x0c, 0x02);
- dsi_generic_write_seq(dsi, 0xbb, 0x11, 0x11);
- dsi_generic_write_seq(dsi, 0xbc, 0x00, 0x00);
- dsi_generic_write_seq(dsi, 0xb6, 0x02);
- dsi_generic_write_seq(dsi, 0xf0, 0x55, 0xaa, 0x52, 0x08, 0x01);
- dsi_generic_write_seq(dsi, 0xb0, 0x09, 0x09);
- dsi_generic_write_seq(dsi, 0xb1, 0x09, 0x09);
- dsi_generic_write_seq(dsi, 0xbc, 0x8c, 0x00);
- dsi_generic_write_seq(dsi, 0xbd, 0x8c, 0x00);
- dsi_generic_write_seq(dsi, 0xca, 0x00);
- dsi_generic_write_seq(dsi, 0xc0, 0x04);
- dsi_generic_write_seq(dsi, 0xbe, 0xb5);
- dsi_generic_write_seq(dsi, 0xb3, 0x35, 0x35);
- dsi_generic_write_seq(dsi, 0xb4, 0x25, 0x25);
- dsi_generic_write_seq(dsi, 0xb9, 0x43, 0x43);
- dsi_generic_write_seq(dsi, 0xba, 0x24, 0x24);
- dsi_generic_write_seq(dsi, 0xf0, 0x55, 0xaa, 0x52, 0x08, 0x02);
- dsi_generic_write_seq(dsi, 0xee, 0x03);
- dsi_generic_write_seq(dsi, 0xb0,
- 0x00, 0xb2, 0x00, 0xb3, 0x00, 0xb6, 0x00, 0xc3,
- 0x00, 0xce, 0x00, 0xe1, 0x00, 0xf3, 0x01, 0x11);
- dsi_generic_write_seq(dsi, 0xb1,
- 0x01, 0x2e, 0x01, 0x5c, 0x01, 0x82, 0x01, 0xc3,
- 0x01, 0xfe, 0x02, 0x00, 0x02, 0x37, 0x02, 0x77);
- dsi_generic_write_seq(dsi, 0xb2,
- 0x02, 0xa1, 0x02, 0xd7, 0x02, 0xfe, 0x03, 0x2c,
- 0x03, 0x4b, 0x03, 0x63, 0x03, 0x8f, 0x03, 0x90);
- dsi_generic_write_seq(dsi, 0xb3, 0x03, 0x96, 0x03, 0x98);
- dsi_generic_write_seq(dsi, 0xb4,
- 0x00, 0x81, 0x00, 0x8b, 0x00, 0x9c, 0x00, 0xa9,
- 0x00, 0xb5, 0x00, 0xcb, 0x00, 0xdf, 0x01, 0x02);
- dsi_generic_write_seq(dsi, 0xb5,
- 0x01, 0x1f, 0x01, 0x51, 0x01, 0x7a, 0x01, 0xbf,
- 0x01, 0xfa, 0x01, 0xfc, 0x02, 0x34, 0x02, 0x76);
- dsi_generic_write_seq(dsi, 0xb6,
- 0x02, 0x9f, 0x02, 0xd7, 0x02, 0xfc, 0x03, 0x2c,
- 0x03, 0x4a, 0x03, 0x63, 0x03, 0x8f, 0x03, 0xa2);
- dsi_generic_write_seq(dsi, 0xb7, 0x03, 0xb8, 0x03, 0xba);
- dsi_generic_write_seq(dsi, 0xb8,
- 0x00, 0x01, 0x00, 0x02, 0x00, 0x0e, 0x00, 0x2a,
- 0x00, 0x41, 0x00, 0x67, 0x00, 0x87, 0x00, 0xb9);
- dsi_generic_write_seq(dsi, 0xb9,
- 0x00, 0xe2, 0x01, 0x22, 0x01, 0x54, 0x01, 0xa3,
- 0x01, 0xe6, 0x01, 0xe7, 0x02, 0x24, 0x02, 0x67);
- dsi_generic_write_seq(dsi, 0xba,
- 0x02, 0x93, 0x02, 0xcd, 0x02, 0xf6, 0x03, 0x31,
- 0x03, 0x6c, 0x03, 0xe9, 0x03, 0xef, 0x03, 0xf4);
- dsi_generic_write_seq(dsi, 0xbb, 0x03, 0xf6, 0x03, 0xf7);
- dsi_generic_write_seq(dsi, 0xf0, 0x55, 0xaa, 0x52, 0x08, 0x03);
- dsi_generic_write_seq(dsi, 0xb0, 0x22, 0x00);
- dsi_generic_write_seq(dsi, 0xb1, 0x22, 0x00);
- dsi_generic_write_seq(dsi, 0xb2, 0x05, 0x00, 0x60, 0x00, 0x00);
- dsi_generic_write_seq(dsi, 0xb3, 0x05, 0x00, 0x60, 0x00, 0x00);
- dsi_generic_write_seq(dsi, 0xb4, 0x05, 0x00, 0x60, 0x00, 0x00);
- dsi_generic_write_seq(dsi, 0xb5, 0x05, 0x00, 0x60, 0x00, 0x00);
- dsi_generic_write_seq(dsi, 0xba, 0x53, 0x00, 0x60, 0x00, 0x00);
- dsi_generic_write_seq(dsi, 0xbb, 0x53, 0x00, 0x60, 0x00, 0x00);
- dsi_generic_write_seq(dsi, 0xbc, 0x53, 0x00, 0x60, 0x00, 0x00);
- dsi_generic_write_seq(dsi, 0xbd, 0x53, 0x00, 0x60, 0x00, 0x00);
- dsi_generic_write_seq(dsi, 0xc0, 0x00, 0x34, 0x00, 0x00);
- dsi_generic_write_seq(dsi, 0xc1, 0x00, 0x00, 0x34, 0x00);
- dsi_generic_write_seq(dsi, 0xc2, 0x00, 0x00, 0x34, 0x00);
- dsi_generic_write_seq(dsi, 0xc3, 0x00, 0x00, 0x34, 0x00);
- dsi_generic_write_seq(dsi, 0xc4, 0x60);
- dsi_generic_write_seq(dsi, 0xc5, 0xc0);
- dsi_generic_write_seq(dsi, 0xc6, 0x00);
- dsi_generic_write_seq(dsi, 0xc7, 0x00);
- dsi_generic_write_seq(dsi, 0xf0, 0x55, 0xaa, 0x52, 0x08, 0x05);
- dsi_generic_write_seq(dsi, 0xb0, 0x17, 0x06);
- dsi_generic_write_seq(dsi, 0xb1, 0x17, 0x06);
- dsi_generic_write_seq(dsi, 0xb2, 0x17, 0x06);
- dsi_generic_write_seq(dsi, 0xb3, 0x17, 0x06);
- dsi_generic_write_seq(dsi, 0xb4, 0x17, 0x06);
- dsi_generic_write_seq(dsi, 0xb5, 0x17, 0x06);
- dsi_generic_write_seq(dsi, 0xb6, 0x17, 0x06);
- dsi_generic_write_seq(dsi, 0xb7, 0x17, 0x06);
- dsi_generic_write_seq(dsi, 0xb8, 0x00);
- dsi_generic_write_seq(dsi, 0xb9, 0x00, 0x03);
- dsi_generic_write_seq(dsi, 0xba, 0x00, 0x00);
- dsi_generic_write_seq(dsi, 0xbb, 0x02, 0x03);
- dsi_generic_write_seq(dsi, 0xbc, 0x02, 0x03);
- dsi_generic_write_seq(dsi, 0xbd, 0x03, 0x03, 0x00, 0x03, 0x03);
- dsi_generic_write_seq(dsi, 0xc0, 0x0b);
- dsi_generic_write_seq(dsi, 0xc1, 0x09);
- dsi_generic_write_seq(dsi, 0xc2, 0xa6);
- dsi_generic_write_seq(dsi, 0xc3, 0x05);
- dsi_generic_write_seq(dsi, 0xc4, 0x00);
- dsi_generic_write_seq(dsi, 0xc5, 0x02);
- dsi_generic_write_seq(dsi, 0xc6, 0x22);
- dsi_generic_write_seq(dsi, 0xc7, 0x03);
- dsi_generic_write_seq(dsi, 0xc8, 0x07, 0x20);
- dsi_generic_write_seq(dsi, 0xc9, 0x03, 0x20);
- dsi_generic_write_seq(dsi, 0xca, 0x01, 0x60);
- dsi_generic_write_seq(dsi, 0xcb, 0x01, 0x60);
- dsi_generic_write_seq(dsi, 0xcc, 0x00, 0x00, 0x02);
- dsi_generic_write_seq(dsi, 0xcd, 0x00, 0x00, 0x02);
- dsi_generic_write_seq(dsi, 0xce, 0x00, 0x00, 0x02);
- dsi_generic_write_seq(dsi, 0xcf, 0x00, 0x00, 0x02);
- dsi_generic_write_seq(dsi, 0xd1, 0x00, 0x05, 0x01, 0x07, 0x10);
- dsi_generic_write_seq(dsi, 0xd2, 0x10, 0x05, 0x05, 0x03, 0x10);
- dsi_generic_write_seq(dsi, 0xd3, 0x20, 0x00, 0x43, 0x07, 0x10);
- dsi_generic_write_seq(dsi, 0xd4, 0x30, 0x00, 0x43, 0x07, 0x10);
- dsi_generic_write_seq(dsi, 0xd0,
- 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00);
- dsi_generic_write_seq(dsi, 0xd5,
- 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
- 0x00, 0x00, 0x00);
- dsi_generic_write_seq(dsi, 0xd6,
- 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
- 0x00, 0x00, 0x00);
- dsi_generic_write_seq(dsi, 0xd7,
- 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
- 0x00, 0x00, 0x00);
- dsi_generic_write_seq(dsi, 0xd8, 0x00, 0x00, 0x00, 0x00, 0x00);
- dsi_generic_write_seq(dsi, 0xe5, 0x06);
- dsi_generic_write_seq(dsi, 0xe6, 0x06);
- dsi_generic_write_seq(dsi, 0xe7, 0x00);
- dsi_generic_write_seq(dsi, 0xe8, 0x06);
- dsi_generic_write_seq(dsi, 0xe9, 0x06);
- dsi_generic_write_seq(dsi, 0xea, 0x06);
- dsi_generic_write_seq(dsi, 0xeb, 0x00);
- dsi_generic_write_seq(dsi, 0xec, 0x00);
- dsi_generic_write_seq(dsi, 0xed, 0x30);
- dsi_generic_write_seq(dsi, 0xf0, 0x55, 0xaa, 0x52, 0x08, 0x06);
- dsi_generic_write_seq(dsi, 0xb0, 0x31, 0x31);
- dsi_generic_write_seq(dsi, 0xb1, 0x31, 0x31);
- dsi_generic_write_seq(dsi, 0xb2, 0x2d, 0x2e);
- dsi_generic_write_seq(dsi, 0xb3, 0x31, 0x34);
- dsi_generic_write_seq(dsi, 0xb4, 0x29, 0x2a);
- dsi_generic_write_seq(dsi, 0xb5, 0x12, 0x10);
- dsi_generic_write_seq(dsi, 0xb6, 0x18, 0x16);
- dsi_generic_write_seq(dsi, 0xb7, 0x00, 0x02);
- dsi_generic_write_seq(dsi, 0xb8, 0x08, 0x31);
- dsi_generic_write_seq(dsi, 0xb9, 0x31, 0x31);
- dsi_generic_write_seq(dsi, 0xba, 0x31, 0x31);
- dsi_generic_write_seq(dsi, 0xbb, 0x31, 0x08);
- dsi_generic_write_seq(dsi, 0xbc, 0x03, 0x01);
- dsi_generic_write_seq(dsi, 0xbd, 0x17, 0x19);
- dsi_generic_write_seq(dsi, 0xbe, 0x11, 0x13);
- dsi_generic_write_seq(dsi, 0xbf, 0x2a, 0x29);
- dsi_generic_write_seq(dsi, 0xc0, 0x34, 0x31);
- dsi_generic_write_seq(dsi, 0xc1, 0x2e, 0x2d);
- dsi_generic_write_seq(dsi, 0xc2, 0x31, 0x31);
- dsi_generic_write_seq(dsi, 0xc3, 0x31, 0x31);
- dsi_generic_write_seq(dsi, 0xc4, 0x31, 0x31);
- dsi_generic_write_seq(dsi, 0xc5, 0x31, 0x31);
- dsi_generic_write_seq(dsi, 0xc6, 0x2e, 0x2d);
- dsi_generic_write_seq(dsi, 0xc7, 0x31, 0x34);
- dsi_generic_write_seq(dsi, 0xc8, 0x29, 0x2a);
- dsi_generic_write_seq(dsi, 0xc9, 0x17, 0x19);
- dsi_generic_write_seq(dsi, 0xca, 0x11, 0x13);
- dsi_generic_write_seq(dsi, 0xcb, 0x03, 0x01);
- dsi_generic_write_seq(dsi, 0xcc, 0x08, 0x31);
- dsi_generic_write_seq(dsi, 0xcd, 0x31, 0x31);
- dsi_generic_write_seq(dsi, 0xce, 0x31, 0x31);
- dsi_generic_write_seq(dsi, 0xcf, 0x31, 0x08);
- dsi_generic_write_seq(dsi, 0xd0, 0x00, 0x02);
- dsi_generic_write_seq(dsi, 0xd1, 0x12, 0x10);
- dsi_generic_write_seq(dsi, 0xd2, 0x18, 0x16);
- dsi_generic_write_seq(dsi, 0xd3, 0x2a, 0x29);
- dsi_generic_write_seq(dsi, 0xd4, 0x34, 0x31);
- dsi_generic_write_seq(dsi, 0xd5, 0x2d, 0x2e);
- dsi_generic_write_seq(dsi, 0xd6, 0x31, 0x31);
- dsi_generic_write_seq(dsi, 0xd7, 0x31, 0x31);
- dsi_generic_write_seq(dsi, 0xe5, 0x31, 0x31);
- dsi_generic_write_seq(dsi, 0xe6, 0x31, 0x31);
- dsi_generic_write_seq(dsi, 0xd8, 0x00, 0x00, 0x00, 0x00, 0x00);
- dsi_generic_write_seq(dsi, 0xd9, 0x00, 0x00, 0x00, 0x00, 0x00);
- dsi_generic_write_seq(dsi, 0xe7, 0x00);
- dsi_generic_write_seq(dsi, 0x6f, 0x02);
- dsi_generic_write_seq(dsi, 0xf7, 0x47);
- dsi_generic_write_seq(dsi, 0x6f, 0x0a);
- dsi_generic_write_seq(dsi, 0xf7, 0x02);
- dsi_generic_write_seq(dsi, 0x6f, 0x17);
- dsi_generic_write_seq(dsi, 0xf4, 0x60);
- dsi_generic_write_seq(dsi, 0x6f, 0x01);
- dsi_generic_write_seq(dsi, 0xf9, 0x46);
- dsi_generic_write_seq(dsi, 0x6f, 0x11);
- dsi_generic_write_seq(dsi, 0xf3, 0x01);
- dsi_generic_write_seq(dsi, 0x35, 0x00);
- dsi_generic_write_seq(dsi, 0xf0, 0x55, 0xaa, 0x52, 0x08, 0x00);
- dsi_generic_write_seq(dsi, 0xd9, 0x02, 0x03, 0x00);
- dsi_generic_write_seq(dsi, 0xf0, 0x55, 0xaa, 0x52, 0x00, 0x00);
- dsi_generic_write_seq(dsi, 0xf0, 0x55, 0xaa, 0x52, 0x08, 0x00);
- dsi_generic_write_seq(dsi, 0xb1, 0x6c, 0x21);
- dsi_generic_write_seq(dsi, 0xf0, 0x55, 0xaa, 0x52, 0x00, 0x00);
- dsi_generic_write_seq(dsi, 0x35, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0xf0, 0x55, 0xaa, 0x52, 0x08, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0xff, 0xaa, 0x55, 0xa5, 0x80);
+ mipi_dsi_generic_write_seq(dsi, 0x6f, 0x11, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0xf7, 0x20, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0x6f, 0x01);
+ mipi_dsi_generic_write_seq(dsi, 0xb1, 0x21);
+ mipi_dsi_generic_write_seq(dsi, 0xbd, 0x01, 0xa0, 0x10, 0x08, 0x01);
+ mipi_dsi_generic_write_seq(dsi, 0xb8, 0x01, 0x02, 0x0c, 0x02);
+ mipi_dsi_generic_write_seq(dsi, 0xbb, 0x11, 0x11);
+ mipi_dsi_generic_write_seq(dsi, 0xbc, 0x00, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0xb6, 0x02);
+ mipi_dsi_generic_write_seq(dsi, 0xf0, 0x55, 0xaa, 0x52, 0x08, 0x01);
+ mipi_dsi_generic_write_seq(dsi, 0xb0, 0x09, 0x09);
+ mipi_dsi_generic_write_seq(dsi, 0xb1, 0x09, 0x09);
+ mipi_dsi_generic_write_seq(dsi, 0xbc, 0x8c, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0xbd, 0x8c, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0xca, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0xc0, 0x04);
+ mipi_dsi_generic_write_seq(dsi, 0xbe, 0xb5);
+ mipi_dsi_generic_write_seq(dsi, 0xb3, 0x35, 0x35);
+ mipi_dsi_generic_write_seq(dsi, 0xb4, 0x25, 0x25);
+ mipi_dsi_generic_write_seq(dsi, 0xb9, 0x43, 0x43);
+ mipi_dsi_generic_write_seq(dsi, 0xba, 0x24, 0x24);
+ mipi_dsi_generic_write_seq(dsi, 0xf0, 0x55, 0xaa, 0x52, 0x08, 0x02);
+ mipi_dsi_generic_write_seq(dsi, 0xee, 0x03);
+ mipi_dsi_generic_write_seq(dsi, 0xb0,
+ 0x00, 0xb2, 0x00, 0xb3, 0x00, 0xb6, 0x00, 0xc3,
+ 0x00, 0xce, 0x00, 0xe1, 0x00, 0xf3, 0x01, 0x11);
+ mipi_dsi_generic_write_seq(dsi, 0xb1,
+ 0x01, 0x2e, 0x01, 0x5c, 0x01, 0x82, 0x01, 0xc3,
+ 0x01, 0xfe, 0x02, 0x00, 0x02, 0x37, 0x02, 0x77);
+ mipi_dsi_generic_write_seq(dsi, 0xb2,
+ 0x02, 0xa1, 0x02, 0xd7, 0x02, 0xfe, 0x03, 0x2c,
+ 0x03, 0x4b, 0x03, 0x63, 0x03, 0x8f, 0x03, 0x90);
+ mipi_dsi_generic_write_seq(dsi, 0xb3, 0x03, 0x96, 0x03, 0x98);
+ mipi_dsi_generic_write_seq(dsi, 0xb4,
+ 0x00, 0x81, 0x00, 0x8b, 0x00, 0x9c, 0x00, 0xa9,
+ 0x00, 0xb5, 0x00, 0xcb, 0x00, 0xdf, 0x01, 0x02);
+ mipi_dsi_generic_write_seq(dsi, 0xb5,
+ 0x01, 0x1f, 0x01, 0x51, 0x01, 0x7a, 0x01, 0xbf,
+ 0x01, 0xfa, 0x01, 0xfc, 0x02, 0x34, 0x02, 0x76);
+ mipi_dsi_generic_write_seq(dsi, 0xb6,
+ 0x02, 0x9f, 0x02, 0xd7, 0x02, 0xfc, 0x03, 0x2c,
+ 0x03, 0x4a, 0x03, 0x63, 0x03, 0x8f, 0x03, 0xa2);
+ mipi_dsi_generic_write_seq(dsi, 0xb7, 0x03, 0xb8, 0x03, 0xba);
+ mipi_dsi_generic_write_seq(dsi, 0xb8,
+ 0x00, 0x01, 0x00, 0x02, 0x00, 0x0e, 0x00, 0x2a,
+ 0x00, 0x41, 0x00, 0x67, 0x00, 0x87, 0x00, 0xb9);
+ mipi_dsi_generic_write_seq(dsi, 0xb9,
+ 0x00, 0xe2, 0x01, 0x22, 0x01, 0x54, 0x01, 0xa3,
+ 0x01, 0xe6, 0x01, 0xe7, 0x02, 0x24, 0x02, 0x67);
+ mipi_dsi_generic_write_seq(dsi, 0xba,
+ 0x02, 0x93, 0x02, 0xcd, 0x02, 0xf6, 0x03, 0x31,
+ 0x03, 0x6c, 0x03, 0xe9, 0x03, 0xef, 0x03, 0xf4);
+ mipi_dsi_generic_write_seq(dsi, 0xbb, 0x03, 0xf6, 0x03, 0xf7);
+ mipi_dsi_generic_write_seq(dsi, 0xf0, 0x55, 0xaa, 0x52, 0x08, 0x03);
+ mipi_dsi_generic_write_seq(dsi, 0xb0, 0x22, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0xb1, 0x22, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0xb2, 0x05, 0x00, 0x60, 0x00, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0xb3, 0x05, 0x00, 0x60, 0x00, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0xb4, 0x05, 0x00, 0x60, 0x00, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0xb5, 0x05, 0x00, 0x60, 0x00, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0xba, 0x53, 0x00, 0x60, 0x00, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0xbb, 0x53, 0x00, 0x60, 0x00, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0xbc, 0x53, 0x00, 0x60, 0x00, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0xbd, 0x53, 0x00, 0x60, 0x00, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0xc0, 0x00, 0x34, 0x00, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0xc1, 0x00, 0x00, 0x34, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0xc2, 0x00, 0x00, 0x34, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0xc3, 0x00, 0x00, 0x34, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0xc4, 0x60);
+ mipi_dsi_generic_write_seq(dsi, 0xc5, 0xc0);
+ mipi_dsi_generic_write_seq(dsi, 0xc6, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0xc7, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0xf0, 0x55, 0xaa, 0x52, 0x08, 0x05);
+ mipi_dsi_generic_write_seq(dsi, 0xb0, 0x17, 0x06);
+ mipi_dsi_generic_write_seq(dsi, 0xb1, 0x17, 0x06);
+ mipi_dsi_generic_write_seq(dsi, 0xb2, 0x17, 0x06);
+ mipi_dsi_generic_write_seq(dsi, 0xb3, 0x17, 0x06);
+ mipi_dsi_generic_write_seq(dsi, 0xb4, 0x17, 0x06);
+ mipi_dsi_generic_write_seq(dsi, 0xb5, 0x17, 0x06);
+ mipi_dsi_generic_write_seq(dsi, 0xb6, 0x17, 0x06);
+ mipi_dsi_generic_write_seq(dsi, 0xb7, 0x17, 0x06);
+ mipi_dsi_generic_write_seq(dsi, 0xb8, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0xb9, 0x00, 0x03);
+ mipi_dsi_generic_write_seq(dsi, 0xba, 0x00, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0xbb, 0x02, 0x03);
+ mipi_dsi_generic_write_seq(dsi, 0xbc, 0x02, 0x03);
+ mipi_dsi_generic_write_seq(dsi, 0xbd, 0x03, 0x03, 0x00, 0x03, 0x03);
+ mipi_dsi_generic_write_seq(dsi, 0xc0, 0x0b);
+ mipi_dsi_generic_write_seq(dsi, 0xc1, 0x09);
+ mipi_dsi_generic_write_seq(dsi, 0xc2, 0xa6);
+ mipi_dsi_generic_write_seq(dsi, 0xc3, 0x05);
+ mipi_dsi_generic_write_seq(dsi, 0xc4, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0xc5, 0x02);
+ mipi_dsi_generic_write_seq(dsi, 0xc6, 0x22);
+ mipi_dsi_generic_write_seq(dsi, 0xc7, 0x03);
+ mipi_dsi_generic_write_seq(dsi, 0xc8, 0x07, 0x20);
+ mipi_dsi_generic_write_seq(dsi, 0xc9, 0x03, 0x20);
+ mipi_dsi_generic_write_seq(dsi, 0xca, 0x01, 0x60);
+ mipi_dsi_generic_write_seq(dsi, 0xcb, 0x01, 0x60);
+ mipi_dsi_generic_write_seq(dsi, 0xcc, 0x00, 0x00, 0x02);
+ mipi_dsi_generic_write_seq(dsi, 0xcd, 0x00, 0x00, 0x02);
+ mipi_dsi_generic_write_seq(dsi, 0xce, 0x00, 0x00, 0x02);
+ mipi_dsi_generic_write_seq(dsi, 0xcf, 0x00, 0x00, 0x02);
+ mipi_dsi_generic_write_seq(dsi, 0xd1, 0x00, 0x05, 0x01, 0x07, 0x10);
+ mipi_dsi_generic_write_seq(dsi, 0xd2, 0x10, 0x05, 0x05, 0x03, 0x10);
+ mipi_dsi_generic_write_seq(dsi, 0xd3, 0x20, 0x00, 0x43, 0x07, 0x10);
+ mipi_dsi_generic_write_seq(dsi, 0xd4, 0x30, 0x00, 0x43, 0x07, 0x10);
+ mipi_dsi_generic_write_seq(dsi, 0xd0,
+ 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0xd5,
+ 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+ 0x00, 0x00, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0xd6,
+ 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+ 0x00, 0x00, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0xd7,
+ 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+ 0x00, 0x00, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0xd8, 0x00, 0x00, 0x00, 0x00, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0xe5, 0x06);
+ mipi_dsi_generic_write_seq(dsi, 0xe6, 0x06);
+ mipi_dsi_generic_write_seq(dsi, 0xe7, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0xe8, 0x06);
+ mipi_dsi_generic_write_seq(dsi, 0xe9, 0x06);
+ mipi_dsi_generic_write_seq(dsi, 0xea, 0x06);
+ mipi_dsi_generic_write_seq(dsi, 0xeb, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0xec, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0xed, 0x30);
+ mipi_dsi_generic_write_seq(dsi, 0xf0, 0x55, 0xaa, 0x52, 0x08, 0x06);
+ mipi_dsi_generic_write_seq(dsi, 0xb0, 0x31, 0x31);
+ mipi_dsi_generic_write_seq(dsi, 0xb1, 0x31, 0x31);
+ mipi_dsi_generic_write_seq(dsi, 0xb2, 0x2d, 0x2e);
+ mipi_dsi_generic_write_seq(dsi, 0xb3, 0x31, 0x34);
+ mipi_dsi_generic_write_seq(dsi, 0xb4, 0x29, 0x2a);
+ mipi_dsi_generic_write_seq(dsi, 0xb5, 0x12, 0x10);
+ mipi_dsi_generic_write_seq(dsi, 0xb6, 0x18, 0x16);
+ mipi_dsi_generic_write_seq(dsi, 0xb7, 0x00, 0x02);
+ mipi_dsi_generic_write_seq(dsi, 0xb8, 0x08, 0x31);
+ mipi_dsi_generic_write_seq(dsi, 0xb9, 0x31, 0x31);
+ mipi_dsi_generic_write_seq(dsi, 0xba, 0x31, 0x31);
+ mipi_dsi_generic_write_seq(dsi, 0xbb, 0x31, 0x08);
+ mipi_dsi_generic_write_seq(dsi, 0xbc, 0x03, 0x01);
+ mipi_dsi_generic_write_seq(dsi, 0xbd, 0x17, 0x19);
+ mipi_dsi_generic_write_seq(dsi, 0xbe, 0x11, 0x13);
+ mipi_dsi_generic_write_seq(dsi, 0xbf, 0x2a, 0x29);
+ mipi_dsi_generic_write_seq(dsi, 0xc0, 0x34, 0x31);
+ mipi_dsi_generic_write_seq(dsi, 0xc1, 0x2e, 0x2d);
+ mipi_dsi_generic_write_seq(dsi, 0xc2, 0x31, 0x31);
+ mipi_dsi_generic_write_seq(dsi, 0xc3, 0x31, 0x31);
+ mipi_dsi_generic_write_seq(dsi, 0xc4, 0x31, 0x31);
+ mipi_dsi_generic_write_seq(dsi, 0xc5, 0x31, 0x31);
+ mipi_dsi_generic_write_seq(dsi, 0xc6, 0x2e, 0x2d);
+ mipi_dsi_generic_write_seq(dsi, 0xc7, 0x31, 0x34);
+ mipi_dsi_generic_write_seq(dsi, 0xc8, 0x29, 0x2a);
+ mipi_dsi_generic_write_seq(dsi, 0xc9, 0x17, 0x19);
+ mipi_dsi_generic_write_seq(dsi, 0xca, 0x11, 0x13);
+ mipi_dsi_generic_write_seq(dsi, 0xcb, 0x03, 0x01);
+ mipi_dsi_generic_write_seq(dsi, 0xcc, 0x08, 0x31);
+ mipi_dsi_generic_write_seq(dsi, 0xcd, 0x31, 0x31);
+ mipi_dsi_generic_write_seq(dsi, 0xce, 0x31, 0x31);
+ mipi_dsi_generic_write_seq(dsi, 0xcf, 0x31, 0x08);
+ mipi_dsi_generic_write_seq(dsi, 0xd0, 0x00, 0x02);
+ mipi_dsi_generic_write_seq(dsi, 0xd1, 0x12, 0x10);
+ mipi_dsi_generic_write_seq(dsi, 0xd2, 0x18, 0x16);
+ mipi_dsi_generic_write_seq(dsi, 0xd3, 0x2a, 0x29);
+ mipi_dsi_generic_write_seq(dsi, 0xd4, 0x34, 0x31);
+ mipi_dsi_generic_write_seq(dsi, 0xd5, 0x2d, 0x2e);
+ mipi_dsi_generic_write_seq(dsi, 0xd6, 0x31, 0x31);
+ mipi_dsi_generic_write_seq(dsi, 0xd7, 0x31, 0x31);
+ mipi_dsi_generic_write_seq(dsi, 0xe5, 0x31, 0x31);
+ mipi_dsi_generic_write_seq(dsi, 0xe6, 0x31, 0x31);
+ mipi_dsi_generic_write_seq(dsi, 0xd8, 0x00, 0x00, 0x00, 0x00, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0xd9, 0x00, 0x00, 0x00, 0x00, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0xe7, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0x6f, 0x02);
+ mipi_dsi_generic_write_seq(dsi, 0xf7, 0x47);
+ mipi_dsi_generic_write_seq(dsi, 0x6f, 0x0a);
+ mipi_dsi_generic_write_seq(dsi, 0xf7, 0x02);
+ mipi_dsi_generic_write_seq(dsi, 0x6f, 0x17);
+ mipi_dsi_generic_write_seq(dsi, 0xf4, 0x60);
+ mipi_dsi_generic_write_seq(dsi, 0x6f, 0x01);
+ mipi_dsi_generic_write_seq(dsi, 0xf9, 0x46);
+ mipi_dsi_generic_write_seq(dsi, 0x6f, 0x11);
+ mipi_dsi_generic_write_seq(dsi, 0xf3, 0x01);
+ mipi_dsi_generic_write_seq(dsi, 0x35, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0xf0, 0x55, 0xaa, 0x52, 0x08, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0xd9, 0x02, 0x03, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0xf0, 0x55, 0xaa, 0x52, 0x00, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0xf0, 0x55, 0xaa, 0x52, 0x08, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0xb1, 0x6c, 0x21);
+ mipi_dsi_generic_write_seq(dsi, 0xf0, 0x55, 0xaa, 0x52, 0x00, 0x00);
+ mipi_dsi_generic_write_seq(dsi, 0x35, 0x00);
ret = mipi_dsi_dcs_exit_sleep_mode(dsi);
if (ret < 0) {
@@ -268,7 +260,7 @@ static int truly_nt35521_on(struct truly_nt35521 *ctx)
}
usleep_range(1000, 2000);
- dsi_generic_write_seq(dsi, 0x53, 0x24);
+ mipi_dsi_generic_write_seq(dsi, 0x53, 0x24);
return 0;
}
diff --git a/drivers/gpu/drm/panel/panel-tpo-tpg110.c b/drivers/gpu/drm/panel/panel-tpo-tpg110.c
index 0b1f5a11a055..845304435e23 100644
--- a/drivers/gpu/drm/panel/panel-tpo-tpg110.c
+++ b/drivers/gpu/drm/panel/panel-tpo-tpg110.c
@@ -463,9 +463,16 @@ static const struct of_device_id tpg110_match[] = {
};
MODULE_DEVICE_TABLE(of, tpg110_match);
+static const struct spi_device_id tpg110_ids[] = {
+ { "tpg110" },
+ { },
+};
+MODULE_DEVICE_TABLE(spi, tpg110_ids);
+
static struct spi_driver tpg110_driver = {
.probe = tpg110_probe,
.remove = tpg110_remove,
+ .id_table = tpg110_ids,
.driver = {
.name = "tpo-tpg110-panel",
.of_match_table = tpg110_match,
diff --git a/drivers/gpu/drm/panel/panel-visionox-vtdr6130.c b/drivers/gpu/drm/panel/panel-visionox-vtdr6130.c
new file mode 100644
index 000000000000..bb0dfd86ea67
--- /dev/null
+++ b/drivers/gpu/drm/panel/panel-visionox-vtdr6130.c
@@ -0,0 +1,350 @@
+// SPDX-License-Identifier: GPL-2.0-only
+// Copyright (c) 2023, Linaro Limited
+
+#include <linux/backlight.h>
+#include <linux/delay.h>
+#include <linux/gpio/consumer.h>
+#include <linux/regulator/consumer.h>
+#include <linux/module.h>
+#include <linux/of.h>
+
+#include <drm/display/drm_dsc.h>
+#include <drm/drm_mipi_dsi.h>
+#include <drm/drm_modes.h>
+#include <drm/drm_panel.h>
+
+#include <video/mipi_display.h>
+
+struct visionox_vtdr6130 {
+ struct drm_panel panel;
+ struct mipi_dsi_device *dsi;
+ struct gpio_desc *reset_gpio;
+ struct regulator_bulk_data supplies[3];
+ bool prepared;
+};
+
+static inline struct visionox_vtdr6130 *to_visionox_vtdr6130(struct drm_panel *panel)
+{
+ return container_of(panel, struct visionox_vtdr6130, panel);
+}
+
+static void visionox_vtdr6130_reset(struct visionox_vtdr6130 *ctx)
+{
+ gpiod_set_value_cansleep(ctx->reset_gpio, 0);
+ usleep_range(10000, 11000);
+ gpiod_set_value_cansleep(ctx->reset_gpio, 1);
+ usleep_range(10000, 11000);
+ gpiod_set_value_cansleep(ctx->reset_gpio, 0);
+ usleep_range(10000, 11000);
+}
+
+static int visionox_vtdr6130_on(struct visionox_vtdr6130 *ctx)
+{
+ struct mipi_dsi_device *dsi = ctx->dsi;
+ struct device *dev = &dsi->dev;
+ int ret;
+
+ dsi->mode_flags |= MIPI_DSI_MODE_LPM;
+
+ ret = mipi_dsi_dcs_set_tear_on(dsi, MIPI_DSI_DCS_TEAR_MODE_VBLANK);
+ if (ret)
+ return ret;
+
+ mipi_dsi_dcs_write_seq(dsi, MIPI_DCS_WRITE_CONTROL_DISPLAY, 0x20);
+ mipi_dsi_dcs_write_seq(dsi, MIPI_DCS_SET_DISPLAY_BRIGHTNESS, 0x00, 0x00);
+ mipi_dsi_dcs_write_seq(dsi, 0x59, 0x09);
+ mipi_dsi_dcs_write_seq(dsi, 0x6c, 0x01);
+ mipi_dsi_dcs_write_seq(dsi, 0x6d, 0x00);
+ mipi_dsi_dcs_write_seq(dsi, 0x6f, 0x01);
+ mipi_dsi_dcs_write_seq(dsi, 0x70,
+ 0x12, 0x00, 0x00, 0xab, 0x30, 0x80, 0x09, 0x60, 0x04,
+ 0x38, 0x00, 0x28, 0x02, 0x1c, 0x02, 0x1c, 0x02, 0x00,
+ 0x02, 0x0e, 0x00, 0x20, 0x03, 0xdd, 0x00, 0x07, 0x00,
+ 0x0c, 0x02, 0x77, 0x02, 0x8b, 0x18, 0x00, 0x10, 0xf0,
+ 0x07, 0x10, 0x20, 0x00, 0x06, 0x0f, 0x0f, 0x33, 0x0e,
+ 0x1c, 0x2a, 0x38, 0x46, 0x54, 0x62, 0x69, 0x70, 0x77,
+ 0x79, 0x7b, 0x7d, 0x7e, 0x02, 0x02, 0x22, 0x00, 0x2a,
+ 0x40, 0x2a, 0xbe, 0x3a, 0xfc, 0x3a, 0xfa, 0x3a, 0xf8,
+ 0x3b, 0x38, 0x3b, 0x78, 0x3b, 0xb6, 0x4b, 0xb6, 0x4b,
+ 0xf4, 0x4b, 0xf4, 0x6c, 0x34, 0x84, 0x74, 0x00, 0x00,
+ 0x00, 0x00, 0x00, 0x00);
+ mipi_dsi_dcs_write_seq(dsi, 0xf0, 0xaa, 0x10);
+ mipi_dsi_dcs_write_seq(dsi, 0xb1,
+ 0x01, 0x38, 0x00, 0x14, 0x00, 0x1c, 0x00, 0x01, 0x66,
+ 0x00, 0x14, 0x00, 0x14, 0x00, 0x01, 0x66, 0x00, 0x14,
+ 0x05, 0xcc, 0x00);
+ mipi_dsi_dcs_write_seq(dsi, 0xf0, 0xaa, 0x13);
+ mipi_dsi_dcs_write_seq(dsi, 0xce,
+ 0x09, 0x11, 0x09, 0x11, 0x08, 0xc1, 0x07, 0xfa, 0x05,
+ 0xa4, 0x00, 0x3c, 0x00, 0x34, 0x00, 0x24, 0x00, 0x0c,
+ 0x00, 0x0c, 0x04, 0x00, 0x35);
+ mipi_dsi_dcs_write_seq(dsi, 0xf0, 0xaa, 0x14);
+ mipi_dsi_dcs_write_seq(dsi, 0xb2, 0x03, 0x33);
+ mipi_dsi_dcs_write_seq(dsi, 0xb4,
+ 0x00, 0x33, 0x00, 0x00, 0x00, 0x3e, 0x00, 0x00, 0x00,
+ 0x3e, 0x00, 0x00);
+ mipi_dsi_dcs_write_seq(dsi, 0xb5,
+ 0x00, 0x09, 0x09, 0x09, 0x09, 0x09, 0x09, 0x06, 0x01);
+ mipi_dsi_dcs_write_seq(dsi, 0xb9, 0x00, 0x00, 0x08, 0x09, 0x09, 0x09);
+ mipi_dsi_dcs_write_seq(dsi, 0xbc,
+ 0x10, 0x00, 0x00, 0x06, 0x11, 0x09, 0x3b, 0x09, 0x47,
+ 0x09, 0x47, 0x00);
+ mipi_dsi_dcs_write_seq(dsi, 0xbe,
+ 0x10, 0x10, 0x00, 0x08, 0x22, 0x09, 0x19, 0x09, 0x25,
+ 0x09, 0x25, 0x00);
+ mipi_dsi_dcs_write_seq(dsi, 0xff, 0x5a, 0x80);
+ mipi_dsi_dcs_write_seq(dsi, 0x65, 0x14);
+ mipi_dsi_dcs_write_seq(dsi, 0xfa, 0x08, 0x08, 0x08);
+ mipi_dsi_dcs_write_seq(dsi, 0xff, 0x5a, 0x81);
+ mipi_dsi_dcs_write_seq(dsi, 0x65, 0x05);
+ mipi_dsi_dcs_write_seq(dsi, 0xf3, 0x0f);
+ mipi_dsi_dcs_write_seq(dsi, 0xf0, 0xaa, 0x00);
+ mipi_dsi_dcs_write_seq(dsi, 0xff, 0x5a, 0x82);
+ mipi_dsi_dcs_write_seq(dsi, 0xf9, 0x00);
+ mipi_dsi_dcs_write_seq(dsi, 0xff, 0x51, 0x83);
+ mipi_dsi_dcs_write_seq(dsi, 0x65, 0x04);
+ mipi_dsi_dcs_write_seq(dsi, 0xf8, 0x00);
+ mipi_dsi_dcs_write_seq(dsi, 0xff, 0x5a, 0x00);
+ mipi_dsi_dcs_write_seq(dsi, 0x65, 0x01);
+ mipi_dsi_dcs_write_seq(dsi, 0xf4, 0x9a);
+ mipi_dsi_dcs_write_seq(dsi, 0xff, 0x5a, 0x00);
+
+ ret = mipi_dsi_dcs_exit_sleep_mode(dsi);
+ if (ret < 0) {
+ dev_err(dev, "Failed to exit sleep mode: %d\n", ret);
+ return ret;
+ }
+ msleep(120);
+
+ ret = mipi_dsi_dcs_set_display_on(dsi);
+ if (ret < 0) {
+ dev_err(dev, "Failed to set display on: %d\n", ret);
+ return ret;
+ }
+ msleep(20);
+
+ return 0;
+}
+
+static int visionox_vtdr6130_off(struct visionox_vtdr6130 *ctx)
+{
+ struct mipi_dsi_device *dsi = ctx->dsi;
+ struct device *dev = &dsi->dev;
+ int ret;
+
+ dsi->mode_flags &= ~MIPI_DSI_MODE_LPM;
+
+ ret = mipi_dsi_dcs_set_display_off(dsi);
+ if (ret < 0) {
+ dev_err(dev, "Failed to set display off: %d\n", ret);
+ return ret;
+ }
+ msleep(20);
+
+ ret = mipi_dsi_dcs_enter_sleep_mode(dsi);
+ if (ret < 0) {
+ dev_err(dev, "Failed to enter sleep mode: %d\n", ret);
+ return ret;
+ }
+ msleep(120);
+
+ return 0;
+}
+
+static int visionox_vtdr6130_prepare(struct drm_panel *panel)
+{
+ struct visionox_vtdr6130 *ctx = to_visionox_vtdr6130(panel);
+ struct device *dev = &ctx->dsi->dev;
+ int ret;
+
+ if (ctx->prepared)
+ return 0;
+
+ ret = regulator_bulk_enable(ARRAY_SIZE(ctx->supplies),
+ ctx->supplies);
+ if (ret < 0)
+ return ret;
+
+ visionox_vtdr6130_reset(ctx);
+
+ ret = visionox_vtdr6130_on(ctx);
+ if (ret < 0) {
+ dev_err(dev, "Failed to initialize panel: %d\n", ret);
+ gpiod_set_value_cansleep(ctx->reset_gpio, 1);
+ regulator_bulk_disable(ARRAY_SIZE(ctx->supplies), ctx->supplies);
+ return ret;
+ }
+
+ ctx->prepared = true;
+ return 0;
+}
+
+static int visionox_vtdr6130_unprepare(struct drm_panel *panel)
+{
+ struct visionox_vtdr6130 *ctx = to_visionox_vtdr6130(panel);
+ struct device *dev = &ctx->dsi->dev;
+ int ret;
+
+ if (!ctx->prepared)
+ return 0;
+
+ ret = visionox_vtdr6130_off(ctx);
+ if (ret < 0)
+ dev_err(dev, "Failed to un-initialize panel: %d\n", ret);
+
+ gpiod_set_value_cansleep(ctx->reset_gpio, 1);
+
+ regulator_bulk_disable(ARRAY_SIZE(ctx->supplies), ctx->supplies);
+
+ ctx->prepared = false;
+ return 0;
+}
+
+static const struct drm_display_mode visionox_vtdr6130_mode = {
+ .clock = (1080 + 20 + 2 + 20) * (2400 + 20 + 2 + 18) * 144 / 1000,
+ .hdisplay = 1080,
+ .hsync_start = 1080 + 20,
+ .hsync_end = 1080 + 20 + 2,
+ .htotal = 1080 + 20 + 2 + 20,
+ .vdisplay = 2400,
+ .vsync_start = 2400 + 20,
+ .vsync_end = 2400 + 20 + 2,
+ .vtotal = 2400 + 20 + 2 + 18,
+ .width_mm = 71,
+ .height_mm = 157,
+};
+
+static int visionox_vtdr6130_get_modes(struct drm_panel *panel,
+ struct drm_connector *connector)
+{
+ struct drm_display_mode *mode;
+
+ mode = drm_mode_duplicate(connector->dev, &visionox_vtdr6130_mode);
+ if (!mode)
+ return -ENOMEM;
+
+ drm_mode_set_name(mode);
+
+ mode->type = DRM_MODE_TYPE_DRIVER | DRM_MODE_TYPE_PREFERRED;
+ connector->display_info.width_mm = mode->width_mm;
+ connector->display_info.height_mm = mode->height_mm;
+ drm_mode_probed_add(connector, mode);
+
+ return 1;
+}
+
+static const struct drm_panel_funcs visionox_vtdr6130_panel_funcs = {
+ .prepare = visionox_vtdr6130_prepare,
+ .unprepare = visionox_vtdr6130_unprepare,
+ .get_modes = visionox_vtdr6130_get_modes,
+};
+
+static int visionox_vtdr6130_bl_update_status(struct backlight_device *bl)
+{
+ struct mipi_dsi_device *dsi = bl_get_data(bl);
+ u16 brightness = backlight_get_brightness(bl);
+
+ return mipi_dsi_dcs_set_display_brightness_large(dsi, brightness);
+}
+
+static const struct backlight_ops visionox_vtdr6130_bl_ops = {
+ .update_status = visionox_vtdr6130_bl_update_status,
+};
+
+static struct backlight_device *
+visionox_vtdr6130_create_backlight(struct mipi_dsi_device *dsi)
+{
+ struct device *dev = &dsi->dev;
+ const struct backlight_properties props = {
+ .type = BACKLIGHT_RAW,
+ .brightness = 4095,
+ .max_brightness = 4095,
+ };
+
+ return devm_backlight_device_register(dev, dev_name(dev), dev, dsi,
+ &visionox_vtdr6130_bl_ops, &props);
+}
+
+static int visionox_vtdr6130_probe(struct mipi_dsi_device *dsi)
+{
+ struct device *dev = &dsi->dev;
+ struct visionox_vtdr6130 *ctx;
+ int ret;
+
+ ctx = devm_kzalloc(dev, sizeof(*ctx), GFP_KERNEL);
+ if (!ctx)
+ return -ENOMEM;
+
+ ctx->supplies[0].supply = "vddio";
+ ctx->supplies[1].supply = "vci";
+ ctx->supplies[2].supply = "vdd";
+
+ ret = devm_regulator_bulk_get(&dsi->dev, ARRAY_SIZE(ctx->supplies),
+ ctx->supplies);
+ if (ret < 0)
+ return ret;
+
+ ctx->reset_gpio = devm_gpiod_get(dev, "reset", GPIOD_OUT_LOW);
+ if (IS_ERR(ctx->reset_gpio))
+ return dev_err_probe(dev, PTR_ERR(ctx->reset_gpio),
+ "Failed to get reset-gpios\n");
+
+ ctx->dsi = dsi;
+ mipi_dsi_set_drvdata(dsi, ctx);
+
+ dsi->lanes = 4;
+ dsi->format = MIPI_DSI_FMT_RGB888;
+ dsi->mode_flags = MIPI_DSI_MODE_VIDEO | MIPI_DSI_MODE_NO_EOT_PACKET |
+ MIPI_DSI_CLOCK_NON_CONTINUOUS;
+
+ drm_panel_init(&ctx->panel, dev, &visionox_vtdr6130_panel_funcs,
+ DRM_MODE_CONNECTOR_DSI);
+
+ ctx->panel.backlight = visionox_vtdr6130_create_backlight(dsi);
+ if (IS_ERR(ctx->panel.backlight))
+ return dev_err_probe(dev, PTR_ERR(ctx->panel.backlight),
+ "Failed to create backlight\n");
+
+ drm_panel_add(&ctx->panel);
+
+ ret = mipi_dsi_attach(dsi);
+ if (ret < 0) {
+ dev_err(dev, "Failed to attach to DSI host: %d\n", ret);
+ drm_panel_remove(&ctx->panel);
+ return ret;
+ }
+
+ return 0;
+}
+
+static void visionox_vtdr6130_remove(struct mipi_dsi_device *dsi)
+{
+ struct visionox_vtdr6130 *ctx = mipi_dsi_get_drvdata(dsi);
+ int ret;
+
+ ret = mipi_dsi_detach(dsi);
+ if (ret < 0)
+ dev_err(&dsi->dev, "Failed to detach from DSI host: %d\n", ret);
+
+ drm_panel_remove(&ctx->panel);
+}
+
+static const struct of_device_id visionox_vtdr6130_of_match[] = {
+ { .compatible = "visionox,vtdr6130" },
+ { /* sentinel */ }
+};
+MODULE_DEVICE_TABLE(of, visionox_vtdr6130_of_match);
+
+static struct mipi_dsi_driver visionox_vtdr6130_driver = {
+ .probe = visionox_vtdr6130_probe,
+ .remove = visionox_vtdr6130_remove,
+ .driver = {
+ .name = "panel-visionox-vtdr6130",
+ .of_match_table = visionox_vtdr6130_of_match,
+ },
+};
+module_mipi_dsi_driver(visionox_vtdr6130_driver);
+
+MODULE_AUTHOR("Neil Armstrong <neil.armstrong@linaro.org>");
+MODULE_DESCRIPTION("Panel driver for the Visionox VTDR6130 AMOLED DSI panel");
+MODULE_LICENSE("GPL");
diff --git a/drivers/gpu/drm/panel/panel-widechips-ws2401.c b/drivers/gpu/drm/panel/panel-widechips-ws2401.c
index 236f3cb2b594..2591ff8f0d4e 100644
--- a/drivers/gpu/drm/panel/panel-widechips-ws2401.c
+++ b/drivers/gpu/drm/panel/panel-widechips-ws2401.c
@@ -425,9 +425,16 @@ static const struct of_device_id ws2401_match[] = {
};
MODULE_DEVICE_TABLE(of, ws2401_match);
+static const struct spi_device_id ws2401_ids[] = {
+ { "lms380kf01" },
+ { },
+};
+MODULE_DEVICE_TABLE(spi, ws2401_ids);
+
static struct spi_driver ws2401_driver = {
.probe = ws2401_probe,
.remove = ws2401_remove,
+ .id_table = ws2401_ids,
.driver = {
.name = "ws2401-panel",
.of_match_table = ws2401_match,
diff --git a/drivers/gpu/drm/panel/panel-xinpeng-xpp055c272.c b/drivers/gpu/drm/panel/panel-xinpeng-xpp055c272.c
index 2c54733ee241..8670386498a4 100644
--- a/drivers/gpu/drm/panel/panel-xinpeng-xpp055c272.c
+++ b/drivers/gpu/drm/panel/panel-xinpeng-xpp055c272.c
@@ -60,14 +60,6 @@ static inline struct xpp055c272 *panel_to_xpp055c272(struct drm_panel *panel)
return container_of(panel, struct xpp055c272, panel);
}
-#define dsi_generic_write_seq(dsi, cmd, seq...) do { \
- static const u8 b[] = { cmd, seq }; \
- int ret; \
- ret = mipi_dsi_dcs_write_buffer(dsi, b, ARRAY_SIZE(b)); \
- if (ret < 0) \
- return ret; \
- } while (0)
-
static int xpp055c272_init_sequence(struct xpp055c272 *ctx)
{
struct mipi_dsi_device *dsi = to_mipi_dsi_device(ctx->dev);
@@ -77,60 +69,60 @@ static int xpp055c272_init_sequence(struct xpp055c272 *ctx)
* Init sequence was supplied by the panel vendor without much
* documentation.
*/
- dsi_generic_write_seq(dsi, XPP055C272_CMD_SETEXTC, 0xf1, 0x12, 0x83);
- dsi_generic_write_seq(dsi, XPP055C272_CMD_SETMIPI,
- 0x33, 0x81, 0x05, 0xf9, 0x0e, 0x0e, 0x00, 0x00,
- 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x44, 0x25,
- 0x00, 0x91, 0x0a, 0x00, 0x00, 0x02, 0x4f, 0x01,
- 0x00, 0x00, 0x37);
- dsi_generic_write_seq(dsi, XPP055C272_CMD_SETPOWER_EXT, 0x25);
- dsi_generic_write_seq(dsi, XPP055C272_CMD_SETPCR, 0x02, 0x11, 0x00);
- dsi_generic_write_seq(dsi, XPP055C272_CMD_SETRGBIF,
- 0x0c, 0x10, 0x0a, 0x50, 0x03, 0xff, 0x00, 0x00,
- 0x00, 0x00);
- dsi_generic_write_seq(dsi, XPP055C272_CMD_SETSCR,
- 0x73, 0x73, 0x50, 0x50, 0x00, 0x00, 0x08, 0x70,
- 0x00);
- dsi_generic_write_seq(dsi, XPP055C272_CMD_SETVDC, 0x46);
- dsi_generic_write_seq(dsi, XPP055C272_CMD_SETPANEL, 0x0b);
- dsi_generic_write_seq(dsi, XPP055C272_CMD_SETCYC, 0x80);
- dsi_generic_write_seq(dsi, XPP055C272_CMD_SETDISP, 0xc8, 0x12, 0x30);
- dsi_generic_write_seq(dsi, XPP055C272_CMD_SETEQ,
- 0x07, 0x07, 0x0B, 0x0B, 0x03, 0x0B, 0x00, 0x00,
- 0x00, 0x00, 0xFF, 0x00, 0xC0, 0x10);
- dsi_generic_write_seq(dsi, XPP055C272_CMD_SETPOWER,
- 0x53, 0x00, 0x1e, 0x1e, 0x77, 0xe1, 0xcc, 0xdd,
- 0x67, 0x77, 0x33, 0x33);
- dsi_generic_write_seq(dsi, XPP055C272_CMD_SETECO, 0x00, 0x00, 0xff,
- 0xff, 0x01, 0xff);
- dsi_generic_write_seq(dsi, XPP055C272_CMD_SETBGP, 0x09, 0x09);
+ mipi_dsi_dcs_write_seq(dsi, XPP055C272_CMD_SETEXTC, 0xf1, 0x12, 0x83);
+ mipi_dsi_dcs_write_seq(dsi, XPP055C272_CMD_SETMIPI,
+ 0x33, 0x81, 0x05, 0xf9, 0x0e, 0x0e, 0x00, 0x00,
+ 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x44, 0x25,
+ 0x00, 0x91, 0x0a, 0x00, 0x00, 0x02, 0x4f, 0x01,
+ 0x00, 0x00, 0x37);
+ mipi_dsi_dcs_write_seq(dsi, XPP055C272_CMD_SETPOWER_EXT, 0x25);
+ mipi_dsi_dcs_write_seq(dsi, XPP055C272_CMD_SETPCR, 0x02, 0x11, 0x00);
+ mipi_dsi_dcs_write_seq(dsi, XPP055C272_CMD_SETRGBIF,
+ 0x0c, 0x10, 0x0a, 0x50, 0x03, 0xff, 0x00, 0x00,
+ 0x00, 0x00);
+ mipi_dsi_dcs_write_seq(dsi, XPP055C272_CMD_SETSCR,
+ 0x73, 0x73, 0x50, 0x50, 0x00, 0x00, 0x08, 0x70,
+ 0x00);
+ mipi_dsi_dcs_write_seq(dsi, XPP055C272_CMD_SETVDC, 0x46);
+ mipi_dsi_dcs_write_seq(dsi, XPP055C272_CMD_SETPANEL, 0x0b);
+ mipi_dsi_dcs_write_seq(dsi, XPP055C272_CMD_SETCYC, 0x80);
+ mipi_dsi_dcs_write_seq(dsi, XPP055C272_CMD_SETDISP, 0xc8, 0x12, 0x30);
+ mipi_dsi_dcs_write_seq(dsi, XPP055C272_CMD_SETEQ,
+ 0x07, 0x07, 0x0B, 0x0B, 0x03, 0x0B, 0x00, 0x00,
+ 0x00, 0x00, 0xFF, 0x00, 0xC0, 0x10);
+ mipi_dsi_dcs_write_seq(dsi, XPP055C272_CMD_SETPOWER,
+ 0x53, 0x00, 0x1e, 0x1e, 0x77, 0xe1, 0xcc, 0xdd,
+ 0x67, 0x77, 0x33, 0x33);
+ mipi_dsi_dcs_write_seq(dsi, XPP055C272_CMD_SETECO, 0x00, 0x00, 0xff,
+ 0xff, 0x01, 0xff);
+ mipi_dsi_dcs_write_seq(dsi, XPP055C272_CMD_SETBGP, 0x09, 0x09);
msleep(20);
- dsi_generic_write_seq(dsi, XPP055C272_CMD_SETVCOM, 0x87, 0x95);
- dsi_generic_write_seq(dsi, XPP055C272_CMD_SETGIP1,
- 0xc2, 0x10, 0x05, 0x05, 0x10, 0x05, 0xa0, 0x12,
- 0x31, 0x23, 0x3f, 0x81, 0x0a, 0xa0, 0x37, 0x18,
- 0x00, 0x80, 0x01, 0x00, 0x00, 0x00, 0x00, 0x80,
- 0x01, 0x00, 0x00, 0x00, 0x48, 0xf8, 0x86, 0x42,
- 0x08, 0x88, 0x88, 0x80, 0x88, 0x88, 0x88, 0x58,
- 0xf8, 0x87, 0x53, 0x18, 0x88, 0x88, 0x81, 0x88,
- 0x88, 0x88, 0x00, 0x00, 0x00, 0x01, 0x00, 0x00,
- 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00);
- dsi_generic_write_seq(dsi, XPP055C272_CMD_SETGIP2,
- 0x00, 0x1a, 0x00, 0x00, 0x00, 0x00, 0x02, 0x00,
- 0x00, 0x00, 0x00, 0x00, 0x1f, 0x88, 0x81, 0x35,
- 0x78, 0x88, 0x88, 0x85, 0x88, 0x88, 0x88, 0x0f,
- 0x88, 0x80, 0x24, 0x68, 0x88, 0x88, 0x84, 0x88,
- 0x88, 0x88, 0x23, 0x10, 0x00, 0x00, 0x1c, 0x00,
- 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
- 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x30, 0x05,
- 0xa0, 0x00, 0x00, 0x00, 0x00);
- dsi_generic_write_seq(dsi, XPP055C272_CMD_SETGAMMA,
- 0x00, 0x06, 0x08, 0x2a, 0x31, 0x3f, 0x38, 0x36,
- 0x07, 0x0c, 0x0d, 0x11, 0x13, 0x12, 0x13, 0x11,
- 0x18, 0x00, 0x06, 0x08, 0x2a, 0x31, 0x3f, 0x38,
- 0x36, 0x07, 0x0c, 0x0d, 0x11, 0x13, 0x12, 0x13,
- 0x11, 0x18);
+ mipi_dsi_dcs_write_seq(dsi, XPP055C272_CMD_SETVCOM, 0x87, 0x95);
+ mipi_dsi_dcs_write_seq(dsi, XPP055C272_CMD_SETGIP1,
+ 0xc2, 0x10, 0x05, 0x05, 0x10, 0x05, 0xa0, 0x12,
+ 0x31, 0x23, 0x3f, 0x81, 0x0a, 0xa0, 0x37, 0x18,
+ 0x00, 0x80, 0x01, 0x00, 0x00, 0x00, 0x00, 0x80,
+ 0x01, 0x00, 0x00, 0x00, 0x48, 0xf8, 0x86, 0x42,
+ 0x08, 0x88, 0x88, 0x80, 0x88, 0x88, 0x88, 0x58,
+ 0xf8, 0x87, 0x53, 0x18, 0x88, 0x88, 0x81, 0x88,
+ 0x88, 0x88, 0x00, 0x00, 0x00, 0x01, 0x00, 0x00,
+ 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00);
+ mipi_dsi_dcs_write_seq(dsi, XPP055C272_CMD_SETGIP2,
+ 0x00, 0x1a, 0x00, 0x00, 0x00, 0x00, 0x02, 0x00,
+ 0x00, 0x00, 0x00, 0x00, 0x1f, 0x88, 0x81, 0x35,
+ 0x78, 0x88, 0x88, 0x85, 0x88, 0x88, 0x88, 0x0f,
+ 0x88, 0x80, 0x24, 0x68, 0x88, 0x88, 0x84, 0x88,
+ 0x88, 0x88, 0x23, 0x10, 0x00, 0x00, 0x1c, 0x00,
+ 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+ 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x30, 0x05,
+ 0xa0, 0x00, 0x00, 0x00, 0x00);
+ mipi_dsi_dcs_write_seq(dsi, XPP055C272_CMD_SETGAMMA,
+ 0x00, 0x06, 0x08, 0x2a, 0x31, 0x3f, 0x38, 0x36,
+ 0x07, 0x0c, 0x0d, 0x11, 0x13, 0x12, 0x13, 0x11,
+ 0x18, 0x00, 0x06, 0x08, 0x2a, 0x31, 0x3f, 0x38,
+ 0x36, 0x07, 0x0c, 0x0d, 0x11, 0x13, 0x12, 0x13,
+ 0x11, 0x18);
msleep(60);
diff --git a/drivers/gpu/drm/panfrost/Kconfig b/drivers/gpu/drm/panfrost/Kconfig
index 079600328be1..e6403a9d66ad 100644
--- a/drivers/gpu/drm/panfrost/Kconfig
+++ b/drivers/gpu/drm/panfrost/Kconfig
@@ -3,7 +3,8 @@
config DRM_PANFROST
tristate "Panfrost (DRM support for ARM Mali Midgard/Bifrost GPUs)"
depends on DRM
- depends on ARM || ARM64 || (COMPILE_TEST && !GENERIC_ATOMIC64)
+ depends on ARM || ARM64 || COMPILE_TEST
+ depends on !GENERIC_ATOMIC64 # for IOMMU_IO_PGTABLE_LPAE
depends on MMU
select DRM_SCHED
select IOMMU_SUPPORT
diff --git a/drivers/gpu/drm/panfrost/panfrost_devfreq.c b/drivers/gpu/drm/panfrost/panfrost_devfreq.c
index fe5f12f16a63..58dfb15a8757 100644
--- a/drivers/gpu/drm/panfrost/panfrost_devfreq.c
+++ b/drivers/gpu/drm/panfrost/panfrost_devfreq.c
@@ -4,6 +4,7 @@
#include <linux/clk.h>
#include <linux/devfreq.h>
#include <linux/devfreq_cooling.h>
+#include <linux/nvmem-consumer.h>
#include <linux/platform_device.h>
#include <linux/pm_opp.h>
@@ -82,6 +83,31 @@ static struct devfreq_dev_profile panfrost_devfreq_profile = {
.get_dev_status = panfrost_devfreq_get_dev_status,
};
+static int panfrost_read_speedbin(struct device *dev)
+{
+ u32 val;
+ int ret;
+
+ ret = nvmem_cell_read_variable_le_u32(dev, "speed-bin", &val);
+ if (ret) {
+ /*
+ * -ENOENT means that this platform doesn't support speedbins
+ * as it didn't declare any speed-bin nvmem: in this case, we
+ * keep going without it; any other error means that we are
+ * supposed to read the bin value, but we failed doing so.
+ */
+ if (ret != -ENOENT) {
+ DRM_DEV_ERROR(dev, "Cannot read speed-bin (%d).", ret);
+ return ret;
+ }
+
+ return 0;
+ }
+ DRM_DEV_DEBUG(dev, "Using speed-bin = 0x%x\n", val);
+
+ return devm_pm_opp_set_supported_hw(dev, &val, 1);
+}
+
int panfrost_devfreq_init(struct panfrost_device *pfdev)
{
int ret;
@@ -101,6 +127,10 @@ int panfrost_devfreq_init(struct panfrost_device *pfdev)
return 0;
}
+ ret = panfrost_read_speedbin(dev);
+ if (ret)
+ return ret;
+
ret = devm_pm_opp_set_regulators(dev, pfdev->comp->supply_names);
if (ret) {
/* Continue if the optional regulator is missing */
diff --git a/drivers/gpu/drm/panfrost/panfrost_device.c b/drivers/gpu/drm/panfrost/panfrost_device.c
index ee612303f076..fa1a086a862b 100644
--- a/drivers/gpu/drm/panfrost/panfrost_device.c
+++ b/drivers/gpu/drm/panfrost/panfrost_device.c
@@ -6,6 +6,7 @@
#include <linux/reset.h>
#include <linux/platform_device.h>
#include <linux/pm_domain.h>
+#include <linux/pm_runtime.h>
#include <linux/regulator/consumer.h>
#include "panfrost_device.h"
@@ -400,8 +401,7 @@ void panfrost_device_reset(struct panfrost_device *pfdev)
panfrost_job_enable_interrupts(pfdev);
}
-#ifdef CONFIG_PM
-int panfrost_device_resume(struct device *dev)
+static int panfrost_device_resume(struct device *dev)
{
struct panfrost_device *pfdev = dev_get_drvdata(dev);
@@ -411,7 +411,7 @@ int panfrost_device_resume(struct device *dev)
return 0;
}
-int panfrost_device_suspend(struct device *dev)
+static int panfrost_device_suspend(struct device *dev)
{
struct panfrost_device *pfdev = dev_get_drvdata(dev);
@@ -423,4 +423,6 @@ int panfrost_device_suspend(struct device *dev)
return 0;
}
-#endif
+
+EXPORT_GPL_RUNTIME_DEV_PM_OPS(panfrost_pm_ops, panfrost_device_suspend,
+ panfrost_device_resume, NULL);
diff --git a/drivers/gpu/drm/panfrost/panfrost_device.h b/drivers/gpu/drm/panfrost/panfrost_device.h
index 8b25278f34c8..b0126b9fbadc 100644
--- a/drivers/gpu/drm/panfrost/panfrost_device.h
+++ b/drivers/gpu/drm/panfrost/panfrost_device.h
@@ -7,6 +7,7 @@
#include <linux/atomic.h>
#include <linux/io-pgtable.h>
+#include <linux/pm.h>
#include <linux/regulator/consumer.h>
#include <linux/spinlock.h>
#include <drm/drm_device.h>
@@ -22,7 +23,7 @@ struct panfrost_job;
struct panfrost_perfcnt;
#define NUM_JOB_SLOTS 3
-#define MAX_PM_DOMAINS 3
+#define MAX_PM_DOMAINS 5
struct panfrost_features {
u16 id;
@@ -172,8 +173,7 @@ int panfrost_device_init(struct panfrost_device *pfdev);
void panfrost_device_fini(struct panfrost_device *pfdev);
void panfrost_device_reset(struct panfrost_device *pfdev);
-int panfrost_device_resume(struct device *dev);
-int panfrost_device_suspend(struct device *dev);
+extern const struct dev_pm_ops panfrost_pm_ops;
enum drm_panfrost_exception_type {
DRM_PANFROST_EXCEPTION_OK = 0x00,
diff --git a/drivers/gpu/drm/panfrost/panfrost_drv.c b/drivers/gpu/drm/panfrost/panfrost_drv.c
index 2fa5afe21288..bbada731bbbd 100644
--- a/drivers/gpu/drm/panfrost/panfrost_drv.c
+++ b/drivers/gpu/drm/panfrost/panfrost_drv.c
@@ -82,6 +82,7 @@ static int panfrost_ioctl_create_bo(struct drm_device *dev, void *data,
struct panfrost_gem_object *bo;
struct drm_panfrost_create_bo *args = data;
struct panfrost_gem_mapping *mapping;
+ int ret;
if (!args->size || args->pad ||
(args->flags & ~(PANFROST_BO_NOEXEC | PANFROST_BO_HEAP)))
@@ -92,21 +93,29 @@ static int panfrost_ioctl_create_bo(struct drm_device *dev, void *data,
!(args->flags & PANFROST_BO_NOEXEC))
return -EINVAL;
- bo = panfrost_gem_create_with_handle(file, dev, args->size, args->flags,
- &args->handle);
+ bo = panfrost_gem_create(dev, args->size, args->flags);
if (IS_ERR(bo))
return PTR_ERR(bo);
+ ret = drm_gem_handle_create(file, &bo->base.base, &args->handle);
+ if (ret)
+ goto out;
+
mapping = panfrost_gem_mapping_get(bo, priv);
- if (!mapping) {
- drm_gem_object_put(&bo->base.base);
- return -EINVAL;
+ if (mapping) {
+ args->offset = mapping->mmnode.start << PAGE_SHIFT;
+ panfrost_gem_mapping_put(mapping);
+ } else {
+ /* This can only happen if the handle from
+ * drm_gem_handle_create() has already been guessed and freed
+ * by user space
+ */
+ ret = -EINVAL;
}
- args->offset = mapping->mmnode.start << PAGE_SHIFT;
- panfrost_gem_mapping_put(mapping);
-
- return 0;
+out:
+ drm_gem_object_put(&bo->base.base);
+ return ret;
}
/**
@@ -211,15 +220,8 @@ panfrost_copy_in_sync(struct drm_device *dev,
}
for (i = 0; i < in_fence_count; i++) {
- struct dma_fence *fence;
-
- ret = drm_syncobj_find_fence(file_priv, handles[i], 0, 0,
- &fence);
- if (ret)
- goto fail;
-
- ret = drm_sched_job_add_dependency(&job->base, fence);
-
+ ret = drm_sched_job_add_syncobj_dependency(&job->base, file_priv,
+ handles[i], 0);
if (ret)
goto fail;
}
@@ -645,6 +647,14 @@ static const struct panfrost_compatible amlogic_data = {
.vendor_quirk = panfrost_gpu_amlogic_quirk,
};
+/*
+ * The old data with two power supplies for MT8183 is here only to
+ * keep retro-compatibility with older devicetrees, as DVFS will
+ * not work with this one.
+ *
+ * On new devicetrees please use the _b variant with a single and
+ * coupled regulators instead.
+ */
static const char * const mediatek_mt8183_supplies[] = { "mali", "sram", NULL };
static const char * const mediatek_mt8183_pm_domains[] = { "core0", "core1", "core2" };
static const struct panfrost_compatible mediatek_mt8183_data = {
@@ -654,6 +664,32 @@ static const struct panfrost_compatible mediatek_mt8183_data = {
.pm_domain_names = mediatek_mt8183_pm_domains,
};
+static const char * const mediatek_mt8183_b_supplies[] = { "mali", NULL };
+static const struct panfrost_compatible mediatek_mt8183_b_data = {
+ .num_supplies = ARRAY_SIZE(mediatek_mt8183_b_supplies) - 1,
+ .supply_names = mediatek_mt8183_b_supplies,
+ .num_pm_domains = ARRAY_SIZE(mediatek_mt8183_pm_domains),
+ .pm_domain_names = mediatek_mt8183_pm_domains,
+};
+
+static const char * const mediatek_mt8186_pm_domains[] = { "core0", "core1" };
+static const struct panfrost_compatible mediatek_mt8186_data = {
+ .num_supplies = ARRAY_SIZE(mediatek_mt8183_b_supplies) - 1,
+ .supply_names = mediatek_mt8183_b_supplies,
+ .num_pm_domains = ARRAY_SIZE(mediatek_mt8186_pm_domains),
+ .pm_domain_names = mediatek_mt8186_pm_domains,
+};
+
+static const char * const mediatek_mt8192_supplies[] = { "mali", NULL };
+static const char * const mediatek_mt8192_pm_domains[] = { "core0", "core1", "core2",
+ "core3", "core4" };
+static const struct panfrost_compatible mediatek_mt8192_data = {
+ .num_supplies = ARRAY_SIZE(mediatek_mt8192_supplies) - 1,
+ .supply_names = mediatek_mt8192_supplies,
+ .num_pm_domains = ARRAY_SIZE(mediatek_mt8192_pm_domains),
+ .pm_domain_names = mediatek_mt8192_pm_domains,
+};
+
static const struct of_device_id dt_match[] = {
/* Set first to probe before the generic compatibles */
{ .compatible = "amlogic,meson-gxm-mali",
@@ -672,21 +708,19 @@ static const struct of_device_id dt_match[] = {
{ .compatible = "arm,mali-bifrost", .data = &default_data, },
{ .compatible = "arm,mali-valhall-jm", .data = &default_data, },
{ .compatible = "mediatek,mt8183-mali", .data = &mediatek_mt8183_data },
+ { .compatible = "mediatek,mt8183b-mali", .data = &mediatek_mt8183_b_data },
+ { .compatible = "mediatek,mt8186-mali", .data = &mediatek_mt8186_data },
+ { .compatible = "mediatek,mt8192-mali", .data = &mediatek_mt8192_data },
{}
};
MODULE_DEVICE_TABLE(of, dt_match);
-static const struct dev_pm_ops panfrost_pm_ops = {
- SET_SYSTEM_SLEEP_PM_OPS(pm_runtime_force_suspend, pm_runtime_force_resume)
- SET_RUNTIME_PM_OPS(panfrost_device_suspend, panfrost_device_resume, NULL)
-};
-
static struct platform_driver panfrost_driver = {
.probe = panfrost_probe,
.remove = panfrost_remove,
.driver = {
.name = "panfrost",
- .pm = &panfrost_pm_ops,
+ .pm = pm_ptr(&panfrost_pm_ops),
.of_match_table = dt_match,
},
};
diff --git a/drivers/gpu/drm/panfrost/panfrost_dump.c b/drivers/gpu/drm/panfrost/panfrost_dump.c
index 6bd0634e2d58..e7942ac449c6 100644
--- a/drivers/gpu/drm/panfrost/panfrost_dump.c
+++ b/drivers/gpu/drm/panfrost/panfrost_dump.c
@@ -209,7 +209,7 @@ void panfrost_core_dump(struct panfrost_job *job)
goto dump_header;
}
- ret = drm_gem_shmem_vmap(&bo->base, &map);
+ ret = drm_gem_vmap_unlocked(&bo->base.base, &map);
if (ret) {
dev_err(pfdev->dev, "Panfrost Dump: couldn't map Buffer Object\n");
iter.hdr->bomap.valid = 0;
@@ -236,7 +236,7 @@ void panfrost_core_dump(struct panfrost_job *job)
vaddr = map.vaddr;
memcpy(iter.data, vaddr, bo->base.base.size);
- drm_gem_shmem_vunmap(&bo->base, &map);
+ drm_gem_vunmap_unlocked(&bo->base.base, &map);
iter.hdr->bomap.valid = 1;
diff --git a/drivers/gpu/drm/panfrost/panfrost_gem.c b/drivers/gpu/drm/panfrost/panfrost_gem.c
index 293e799e2fe8..3c812fbd126f 100644
--- a/drivers/gpu/drm/panfrost/panfrost_gem.c
+++ b/drivers/gpu/drm/panfrost/panfrost_gem.c
@@ -235,12 +235,8 @@ struct drm_gem_object *panfrost_gem_create_object(struct drm_device *dev, size_t
}
struct panfrost_gem_object *
-panfrost_gem_create_with_handle(struct drm_file *file_priv,
- struct drm_device *dev, size_t size,
- u32 flags,
- uint32_t *handle)
+panfrost_gem_create(struct drm_device *dev, size_t size, u32 flags)
{
- int ret;
struct drm_gem_shmem_object *shmem;
struct panfrost_gem_object *bo;
@@ -256,16 +252,6 @@ panfrost_gem_create_with_handle(struct drm_file *file_priv,
bo->noexec = !!(flags & PANFROST_BO_NOEXEC);
bo->is_heap = !!(flags & PANFROST_BO_HEAP);
- /*
- * Allocate an id of idr table where the obj is registered
- * and handle has the id what user can see.
- */
- ret = drm_gem_handle_create(file_priv, &shmem->base, handle);
- /* drop reference from allocate - handle holds it now. */
- drm_gem_object_put(&shmem->base);
- if (ret)
- return ERR_PTR(ret);
-
return bo;
}
diff --git a/drivers/gpu/drm/panfrost/panfrost_gem.h b/drivers/gpu/drm/panfrost/panfrost_gem.h
index 8088d5fd8480..ad2877eeeccd 100644
--- a/drivers/gpu/drm/panfrost/panfrost_gem.h
+++ b/drivers/gpu/drm/panfrost/panfrost_gem.h
@@ -69,10 +69,7 @@ panfrost_gem_prime_import_sg_table(struct drm_device *dev,
struct sg_table *sgt);
struct panfrost_gem_object *
-panfrost_gem_create_with_handle(struct drm_file *file_priv,
- struct drm_device *dev, size_t size,
- u32 flags,
- uint32_t *handle);
+panfrost_gem_create(struct drm_device *dev, size_t size, u32 flags);
int panfrost_gem_open(struct drm_gem_object *obj, struct drm_file *file_priv);
void panfrost_gem_close(struct drm_gem_object *obj,
diff --git a/drivers/gpu/drm/panfrost/panfrost_gpu.c b/drivers/gpu/drm/panfrost/panfrost_gpu.c
index 6452e4e900dd..d28b99732dde 100644
--- a/drivers/gpu/drm/panfrost/panfrost_gpu.c
+++ b/drivers/gpu/drm/panfrost/panfrost_gpu.c
@@ -204,6 +204,14 @@ static const struct panfrost_model gpu_models[] = {
GPU_MODEL(g57, 0x9001,
GPU_REV(g57, 0, 0)),
+
+ /* MediaTek MT8192 has a Mali-G57 with a different GPU ID from the
+ * standard. Arm's driver does not appear to handle this model.
+ * ChromeOS has a hack downstream for it. Treat it as equivalent to
+ * standard Mali-G57 for now.
+ */
+ GPU_MODEL(g57, 0x9003,
+ GPU_REV(g57, 0, 0)),
};
static void panfrost_gpu_init_features(struct panfrost_device *pfdev)
diff --git a/drivers/gpu/drm/panfrost/panfrost_mmu.c b/drivers/gpu/drm/panfrost/panfrost_mmu.c
index 4e83a1891f3e..e961fa27702c 100644
--- a/drivers/gpu/drm/panfrost/panfrost_mmu.c
+++ b/drivers/gpu/drm/panfrost/panfrost_mmu.c
@@ -282,7 +282,7 @@ static void panfrost_mmu_flush_range(struct panfrost_device *pfdev,
if (pm_runtime_active(pfdev->dev))
mmu_hw_do_operation(pfdev, mmu, iova, size, AS_COMMAND_FLUSH_PT);
- pm_runtime_put_sync_autosuspend(pfdev->dev);
+ pm_runtime_put_autosuspend(pfdev->dev);
}
static int mmu_map_sg(struct panfrost_device *pfdev, struct panfrost_mmu *mmu,
@@ -504,6 +504,7 @@ static int panfrost_mmu_map_fault_addr(struct panfrost_device *pfdev, int as,
if (IS_ERR(pages[i])) {
mutex_unlock(&bo->base.pages_lock);
ret = PTR_ERR(pages[i]);
+ pages[i] = NULL;
goto err_pages;
}
}
diff --git a/drivers/gpu/drm/panfrost/panfrost_perfcnt.c b/drivers/gpu/drm/panfrost/panfrost_perfcnt.c
index bc0df93f7f21..ba9b6e2b2636 100644
--- a/drivers/gpu/drm/panfrost/panfrost_perfcnt.c
+++ b/drivers/gpu/drm/panfrost/panfrost_perfcnt.c
@@ -106,7 +106,7 @@ static int panfrost_perfcnt_enable_locked(struct panfrost_device *pfdev,
goto err_close_bo;
}
- ret = drm_gem_shmem_vmap(bo, &map);
+ ret = drm_gem_vmap_unlocked(&bo->base, &map);
if (ret)
goto err_put_mapping;
perfcnt->buf = map.vaddr;
@@ -165,7 +165,7 @@ static int panfrost_perfcnt_enable_locked(struct panfrost_device *pfdev,
return 0;
err_vunmap:
- drm_gem_shmem_vunmap(bo, &map);
+ drm_gem_vunmap_unlocked(&bo->base, &map);
err_put_mapping:
panfrost_gem_mapping_put(perfcnt->mapping);
err_close_bo:
@@ -195,7 +195,7 @@ static int panfrost_perfcnt_disable_locked(struct panfrost_device *pfdev,
GPU_PERFCNT_CFG_MODE(GPU_PERFCNT_CFG_MODE_OFF));
perfcnt->user = NULL;
- drm_gem_shmem_vunmap(&perfcnt->mapping->obj->base, &map);
+ drm_gem_vunmap_unlocked(&perfcnt->mapping->obj->base.base, &map);
perfcnt->buf = NULL;
panfrost_gem_close(&perfcnt->mapping->obj->base.base, file_priv);
panfrost_mmu_as_put(pfdev, perfcnt->mapping->mmu);
diff --git a/drivers/gpu/drm/pl111/pl111_drv.c b/drivers/gpu/drm/pl111/pl111_drv.c
index eb25eedb5ee0..4b2a9e9753f6 100644
--- a/drivers/gpu/drm/pl111/pl111_drv.c
+++ b/drivers/gpu/drm/pl111/pl111_drv.c
@@ -48,7 +48,7 @@
#include <drm/drm_atomic_helper.h>
#include <drm/drm_bridge.h>
#include <drm/drm_drv.h>
-#include <drm/drm_fb_helper.h>
+#include <drm/drm_fbdev_dma.h>
#include <drm/drm_fourcc.h>
#include <drm/drm_gem_dma_helper.h>
#include <drm/drm_gem_framebuffer_helper.h>
@@ -308,7 +308,7 @@ static int pl111_amba_probe(struct amba_device *amba_dev,
if (ret < 0)
goto dev_put;
- drm_fbdev_generic_setup(drm, priv->variant->fb_bpp);
+ drm_fbdev_dma_setup(drm, priv->variant->fb_bpp);
return 0;
diff --git a/drivers/gpu/drm/qxl/qxl_cmd.c b/drivers/gpu/drm/qxl/qxl_cmd.c
index 63aa96a69752..281edab518cd 100644
--- a/drivers/gpu/drm/qxl/qxl_cmd.c
+++ b/drivers/gpu/drm/qxl/qxl_cmd.c
@@ -579,7 +579,7 @@ void qxl_surface_evict(struct qxl_device *qdev, struct qxl_bo *surf, bool do_upd
static int qxl_reap_surf(struct qxl_device *qdev, struct qxl_bo *surf, bool stall)
{
- int ret;
+ long ret;
ret = qxl_bo_reserve(surf);
if (ret)
@@ -588,7 +588,19 @@ static int qxl_reap_surf(struct qxl_device *qdev, struct qxl_bo *surf, bool stal
if (stall)
mutex_unlock(&qdev->surf_evict_mutex);
- ret = ttm_bo_wait(&surf->tbo, true, !stall);
+ if (stall) {
+ ret = dma_resv_wait_timeout(surf->tbo.base.resv,
+ DMA_RESV_USAGE_BOOKKEEP, true,
+ 15 * HZ);
+ if (ret > 0)
+ ret = 0;
+ else if (ret == 0)
+ ret = -EBUSY;
+ } else {
+ ret = dma_resv_test_signaled(surf->tbo.base.resv,
+ DMA_RESV_USAGE_BOOKKEEP);
+ ret = ret ? -EBUSY : 0;
+ }
if (stall)
mutex_lock(&qdev->surf_evict_mutex);
diff --git a/drivers/gpu/drm/qxl/qxl_display.c b/drivers/gpu/drm/qxl/qxl_display.c
index a152a7c6db21..6492a70e3c39 100644
--- a/drivers/gpu/drm/qxl/qxl_display.c
+++ b/drivers/gpu/drm/qxl/qxl_display.c
@@ -1261,8 +1261,6 @@ int qxl_modeset_init(struct qxl_device *qdev)
qdev->ddev.mode_config.max_width = 8192;
qdev->ddev.mode_config.max_height = 8192;
- qdev->ddev.mode_config.fb_base = qdev->vram_base;
-
drm_mode_create_suggested_offset_properties(&qdev->ddev);
qxl_mode_create_hotplug_mode_update_property(qdev);
diff --git a/drivers/gpu/drm/qxl/qxl_drv.c b/drivers/gpu/drm/qxl/qxl_drv.c
index 3044ca948ce2..a3b83f89e061 100644
--- a/drivers/gpu/drm/qxl/qxl_drv.c
+++ b/drivers/gpu/drm/qxl/qxl_drv.c
@@ -37,6 +37,7 @@
#include <drm/drm_aperture.h>
#include <drm/drm_atomic_helper.h>
#include <drm/drm_drv.h>
+#include <drm/drm_fbdev_generic.h>
#include <drm/drm_file.h>
#include <drm/drm_gem_ttm_helper.h>
#include <drm/drm_module.h>
diff --git a/drivers/gpu/drm/qxl/qxl_drv.h b/drivers/gpu/drm/qxl/qxl_drv.h
index 432758ad39a3..ea993d7162e8 100644
--- a/drivers/gpu/drm/qxl/qxl_drv.h
+++ b/drivers/gpu/drm/qxl/qxl_drv.h
@@ -38,13 +38,11 @@
#include <drm/drm_crtc.h>
#include <drm/drm_encoder.h>
-#include <drm/drm_fb_helper.h>
#include <drm/drm_gem_ttm_helper.h>
#include <drm/drm_ioctl.h>
#include <drm/drm_gem.h>
#include <drm/qxl_drm.h>
-#include <drm/ttm/ttm_bo_api.h>
-#include <drm/ttm/ttm_bo_driver.h>
+#include <drm/ttm/ttm_bo.h>
#include <drm/ttm/ttm_execbuf_util.h>
#include <drm/ttm/ttm_placement.h>
diff --git a/drivers/gpu/drm/qxl/qxl_object.c b/drivers/gpu/drm/qxl/qxl_object.c
index 695d9308d1f0..06a58dad5f5c 100644
--- a/drivers/gpu/drm/qxl/qxl_object.c
+++ b/drivers/gpu/drm/qxl/qxl_object.c
@@ -168,9 +168,16 @@ int qxl_bo_vmap_locked(struct qxl_bo *bo, struct iosys_map *map)
bo->map_count++;
goto out;
}
- r = ttm_bo_vmap(&bo->tbo, &bo->map);
+
+ r = __qxl_bo_pin(bo);
if (r)
return r;
+
+ r = ttm_bo_vmap(&bo->tbo, &bo->map);
+ if (r) {
+ __qxl_bo_unpin(bo);
+ return r;
+ }
bo->map_count = 1;
/* TODO: Remove kptr in favor of map everywhere. */
@@ -192,12 +199,6 @@ int qxl_bo_vmap(struct qxl_bo *bo, struct iosys_map *map)
if (r)
return r;
- r = __qxl_bo_pin(bo);
- if (r) {
- qxl_bo_unreserve(bo);
- return r;
- }
-
r = qxl_bo_vmap_locked(bo, map);
qxl_bo_unreserve(bo);
return r;
@@ -247,6 +248,7 @@ void qxl_bo_vunmap_locked(struct qxl_bo *bo)
return;
bo->kptr = NULL;
ttm_bo_vunmap(&bo->tbo, &bo->map);
+ __qxl_bo_unpin(bo);
}
int qxl_bo_vunmap(struct qxl_bo *bo)
@@ -258,7 +260,6 @@ int qxl_bo_vunmap(struct qxl_bo *bo)
return r;
qxl_bo_vunmap_locked(bo);
- __qxl_bo_unpin(bo);
qxl_bo_unreserve(bo);
return 0;
}
diff --git a/drivers/gpu/drm/qxl/qxl_prime.c b/drivers/gpu/drm/qxl/qxl_prime.c
index 142d01415acb..9169c26357d3 100644
--- a/drivers/gpu/drm/qxl/qxl_prime.c
+++ b/drivers/gpu/drm/qxl/qxl_prime.c
@@ -59,7 +59,7 @@ int qxl_gem_prime_vmap(struct drm_gem_object *obj, struct iosys_map *map)
struct qxl_bo *bo = gem_to_qxl_bo(obj);
int ret;
- ret = qxl_bo_vmap(bo, map);
+ ret = qxl_bo_vmap_locked(bo, map);
if (ret < 0)
return ret;
@@ -71,5 +71,5 @@ void qxl_gem_prime_vunmap(struct drm_gem_object *obj,
{
struct qxl_bo *bo = gem_to_qxl_bo(obj);
- qxl_bo_vunmap(bo);
+ qxl_bo_vunmap_locked(bo);
}
diff --git a/drivers/gpu/drm/qxl/qxl_ttm.c b/drivers/gpu/drm/qxl/qxl_ttm.c
index ee95001e6b5e..1a82629bce3f 100644
--- a/drivers/gpu/drm/qxl/qxl_ttm.c
+++ b/drivers/gpu/drm/qxl/qxl_ttm.c
@@ -29,10 +29,10 @@
#include <drm/drm_file.h>
#include <drm/drm_debugfs.h>
#include <drm/qxl_drm.h>
-#include <drm/ttm/ttm_bo_api.h>
-#include <drm/ttm/ttm_bo_driver.h>
+#include <drm/ttm/ttm_bo.h>
#include <drm/ttm/ttm_placement.h>
#include <drm/ttm/ttm_range_manager.h>
+#include <drm/ttm/ttm_tt.h>
#include "qxl_drv.h"
#include "qxl_object.h"
@@ -143,6 +143,17 @@ static int qxl_bo_move(struct ttm_buffer_object *bo, bool evict,
struct ttm_resource *old_mem = bo->resource;
int ret;
+ if (!old_mem) {
+ if (new_mem->mem_type != TTM_PL_SYSTEM) {
+ hop->mem_type = TTM_PL_SYSTEM;
+ hop->flags = TTM_PL_FLAG_TEMPORARY;
+ return -EMULTIHOP;
+ }
+
+ ttm_bo_move_null(bo, new_mem);
+ return 0;
+ }
+
qxl_bo_move_notify(bo, new_mem);
ret = ttm_bo_wait_ctx(bo, ctx);
diff --git a/drivers/gpu/drm/r128/Makefile b/drivers/gpu/drm/r128/Makefile
deleted file mode 100644
index c07a069533ef..000000000000
--- a/drivers/gpu/drm/r128/Makefile
+++ /dev/null
@@ -1,10 +0,0 @@
-# SPDX-License-Identifier: GPL-2.0-only
-#
-# Makefile for the drm device driver. This driver provides support for the
-# Direct Rendering Infrastructure (DRI) in XFree86 4.1.0 and higher.
-
-r128-y := r128_drv.o r128_cce.o r128_state.o r128_irq.o ati_pcigart.o
-
-r128-$(CONFIG_COMPAT) += r128_ioc32.o
-
-obj-$(CONFIG_DRM_R128) += r128.o
diff --git a/drivers/gpu/drm/r128/ati_pcigart.c b/drivers/gpu/drm/r128/ati_pcigart.c
deleted file mode 100644
index dde0501aea68..000000000000
--- a/drivers/gpu/drm/r128/ati_pcigart.c
+++ /dev/null
@@ -1,228 +0,0 @@
-/*
- * \file ati_pcigart.c
- * ATI PCI GART support
- *
- * \author Gareth Hughes <gareth@valinux.com>
- */
-
-/*
- * Created: Wed Dec 13 21:52:19 2000 by gareth@valinux.com
- *
- * Copyright 2000 VA Linux Systems, Inc., Sunnyvale, California.
- * All Rights Reserved.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice (including the next
- * paragraph) shall be included in all copies or substantial portions of the
- * Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * PRECISION INSIGHT AND/OR ITS SUPPLIERS BE LIABLE FOR ANY CLAIM, DAMAGES OR
- * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
- * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
- * DEALINGS IN THE SOFTWARE.
- */
-
-#include <linux/export.h>
-#include <linux/pci.h>
-
-#include <drm/drm_device.h>
-#include <drm/drm_legacy.h>
-#include <drm/drm_print.h>
-
-#include "ati_pcigart.h"
-
-# define ATI_PCIGART_PAGE_SIZE 4096 /**< PCI GART page size */
-
-static int drm_ati_alloc_pcigart_table(struct drm_device *dev,
- struct drm_ati_pcigart_info *gart_info)
-{
- drm_dma_handle_t *dmah = kmalloc(sizeof(drm_dma_handle_t), GFP_KERNEL);
-
- if (!dmah)
- return -ENOMEM;
-
- dmah->size = gart_info->table_size;
- dmah->vaddr = dma_alloc_coherent(dev->dev,
- dmah->size,
- &dmah->busaddr,
- GFP_KERNEL);
-
- if (!dmah->vaddr) {
- kfree(dmah);
- return -ENOMEM;
- }
-
- gart_info->table_handle = dmah;
- return 0;
-}
-
-static void drm_ati_free_pcigart_table(struct drm_device *dev,
- struct drm_ati_pcigart_info *gart_info)
-{
- drm_dma_handle_t *dmah = gart_info->table_handle;
-
- dma_free_coherent(dev->dev, dmah->size, dmah->vaddr, dmah->busaddr);
- kfree(dmah);
-
- gart_info->table_handle = NULL;
-}
-
-int drm_ati_pcigart_cleanup(struct drm_device *dev, struct drm_ati_pcigart_info *gart_info)
-{
- struct drm_sg_mem *entry = dev->sg;
- struct pci_dev *pdev = to_pci_dev(dev->dev);
- unsigned long pages;
- int i;
- int max_pages;
-
- /* we need to support large memory configurations */
- if (!entry) {
- DRM_ERROR("no scatter/gather memory!\n");
- return 0;
- }
-
- if (gart_info->bus_addr) {
-
- max_pages = (gart_info->table_size / sizeof(u32));
- pages = (entry->pages <= max_pages)
- ? entry->pages : max_pages;
-
- for (i = 0; i < pages; i++) {
- if (!entry->busaddr[i])
- break;
- dma_unmap_page(&pdev->dev, entry->busaddr[i],
- PAGE_SIZE, DMA_BIDIRECTIONAL);
- }
-
- if (gart_info->gart_table_location == DRM_ATI_GART_MAIN)
- gart_info->bus_addr = 0;
- }
-
- if (gart_info->gart_table_location == DRM_ATI_GART_MAIN &&
- gart_info->table_handle) {
- drm_ati_free_pcigart_table(dev, gart_info);
- }
-
- return 1;
-}
-
-int drm_ati_pcigart_init(struct drm_device *dev, struct drm_ati_pcigart_info *gart_info)
-{
- struct drm_local_map *map = &gart_info->mapping;
- struct drm_sg_mem *entry = dev->sg;
- struct pci_dev *pdev = to_pci_dev(dev->dev);
- void *address = NULL;
- unsigned long pages;
- u32 *pci_gart = NULL, page_base, gart_idx;
- dma_addr_t bus_address = 0;
- int i, j, ret = -ENOMEM;
- int max_ati_pages, max_real_pages;
-
- if (!entry) {
- DRM_ERROR("no scatter/gather memory!\n");
- goto done;
- }
-
- if (gart_info->gart_table_location == DRM_ATI_GART_MAIN) {
- DRM_DEBUG("PCI: no table in VRAM: using normal RAM\n");
-
- if (dma_set_mask(&pdev->dev, gart_info->table_mask)) {
- DRM_ERROR("fail to set dma mask to 0x%Lx\n",
- (unsigned long long)gart_info->table_mask);
- ret = -EFAULT;
- goto done;
- }
-
- ret = drm_ati_alloc_pcigart_table(dev, gart_info);
- if (ret) {
- DRM_ERROR("cannot allocate PCI GART page!\n");
- goto done;
- }
-
- pci_gart = gart_info->table_handle->vaddr;
- address = gart_info->table_handle->vaddr;
- bus_address = gart_info->table_handle->busaddr;
- } else {
- address = gart_info->addr;
- bus_address = gart_info->bus_addr;
- DRM_DEBUG("PCI: Gart Table: VRAM %08LX mapped at %08lX\n",
- (unsigned long long)bus_address,
- (unsigned long)address);
- }
-
-
- max_ati_pages = (gart_info->table_size / sizeof(u32));
- max_real_pages = max_ati_pages / (PAGE_SIZE / ATI_PCIGART_PAGE_SIZE);
- pages = (entry->pages <= max_real_pages)
- ? entry->pages : max_real_pages;
-
- if (gart_info->gart_table_location == DRM_ATI_GART_MAIN) {
- memset(pci_gart, 0, max_ati_pages * sizeof(u32));
- } else {
- memset_io((void __iomem *)map->handle, 0, max_ati_pages * sizeof(u32));
- }
-
- gart_idx = 0;
- for (i = 0; i < pages; i++) {
- /* we need to support large memory configurations */
- entry->busaddr[i] = dma_map_page(&pdev->dev, entry->pagelist[i],
- 0, PAGE_SIZE, DMA_BIDIRECTIONAL);
- if (dma_mapping_error(&pdev->dev, entry->busaddr[i])) {
- DRM_ERROR("unable to map PCIGART pages!\n");
- drm_ati_pcigart_cleanup(dev, gart_info);
- address = NULL;
- bus_address = 0;
- ret = -ENOMEM;
- goto done;
- }
- page_base = (u32) entry->busaddr[i];
-
- for (j = 0; j < (PAGE_SIZE / ATI_PCIGART_PAGE_SIZE); j++) {
- u32 offset;
- u32 val;
-
- switch(gart_info->gart_reg_if) {
- case DRM_ATI_GART_IGP:
- val = page_base | 0xc;
- break;
- case DRM_ATI_GART_PCIE:
- val = (page_base >> 8) | 0xc;
- break;
- default:
- case DRM_ATI_GART_PCI:
- val = page_base;
- break;
- }
- if (gart_info->gart_table_location ==
- DRM_ATI_GART_MAIN) {
- pci_gart[gart_idx] = cpu_to_le32(val);
- } else {
- offset = gart_idx * sizeof(u32);
- writel(val, (void __iomem *)map->handle + offset);
- }
- gart_idx++;
- page_base += ATI_PCIGART_PAGE_SIZE;
- }
- }
- ret = 0;
-
-#ifdef CONFIG_X86
- wbinvd();
-#else
- mb();
-#endif
-
- done:
- gart_info->addr = address;
- gart_info->bus_addr = bus_address;
- return ret;
-}
diff --git a/drivers/gpu/drm/r128/ati_pcigart.h b/drivers/gpu/drm/r128/ati_pcigart.h
deleted file mode 100644
index a728a1364e66..000000000000
--- a/drivers/gpu/drm/r128/ati_pcigart.h
+++ /dev/null
@@ -1,31 +0,0 @@
-/* SPDX-License-Identifier: GPL-2.0 */
-#ifndef DRM_ATI_PCIGART_H
-#define DRM_ATI_PCIGART_H
-
-#include <drm/drm_legacy.h>
-
-/* location of GART table */
-#define DRM_ATI_GART_MAIN 1
-#define DRM_ATI_GART_FB 2
-
-#define DRM_ATI_GART_PCI 1
-#define DRM_ATI_GART_PCIE 2
-#define DRM_ATI_GART_IGP 3
-
-struct drm_ati_pcigart_info {
- int gart_table_location;
- int gart_reg_if;
- void *addr;
- dma_addr_t bus_addr;
- dma_addr_t table_mask;
- struct drm_dma_handle *table_handle;
- struct drm_local_map mapping;
- int table_size;
-};
-
-extern int drm_ati_pcigart_init(struct drm_device *dev,
- struct drm_ati_pcigart_info * gart_info);
-extern int drm_ati_pcigart_cleanup(struct drm_device *dev,
- struct drm_ati_pcigart_info * gart_info);
-
-#endif
diff --git a/drivers/gpu/drm/r128/r128_cce.c b/drivers/gpu/drm/r128/r128_cce.c
deleted file mode 100644
index c04d84a69dd2..000000000000
--- a/drivers/gpu/drm/r128/r128_cce.c
+++ /dev/null
@@ -1,944 +0,0 @@
-/* r128_cce.c -- ATI Rage 128 driver -*- linux-c -*-
- * Created: Wed Apr 5 19:24:19 2000 by kevin@precisioninsight.com
- */
-/*
- * Copyright 2000 Precision Insight, Inc., Cedar Park, Texas.
- * Copyright 2000 VA Linux Systems, Inc., Sunnyvale, California.
- * All Rights Reserved.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice (including the next
- * paragraph) shall be included in all copies or substantial portions of the
- * Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * PRECISION INSIGHT AND/OR ITS SUPPLIERS BE LIABLE FOR ANY CLAIM, DAMAGES OR
- * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
- * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
- * DEALINGS IN THE SOFTWARE.
- *
- * Authors:
- * Gareth Hughes <gareth@valinux.com>
- */
-
-#include <linux/delay.h>
-#include <linux/dma-mapping.h>
-#include <linux/firmware.h>
-#include <linux/module.h>
-#include <linux/platform_device.h>
-#include <linux/slab.h>
-#include <linux/uaccess.h>
-
-#include <drm/drm_device.h>
-#include <drm/drm_file.h>
-#include <drm/drm_legacy.h>
-#include <drm/drm_print.h>
-#include <drm/r128_drm.h>
-
-#include "r128_drv.h"
-
-#define R128_FIFO_DEBUG 0
-
-#define FIRMWARE_NAME "r128/r128_cce.bin"
-
-MODULE_FIRMWARE(FIRMWARE_NAME);
-
-static int R128_READ_PLL(struct drm_device *dev, int addr)
-{
- drm_r128_private_t *dev_priv = dev->dev_private;
-
- R128_WRITE8(R128_CLOCK_CNTL_INDEX, addr & 0x1f);
- return R128_READ(R128_CLOCK_CNTL_DATA);
-}
-
-#if R128_FIFO_DEBUG
-static void r128_status(drm_r128_private_t *dev_priv)
-{
- printk("GUI_STAT = 0x%08x\n",
- (unsigned int)R128_READ(R128_GUI_STAT));
- printk("PM4_STAT = 0x%08x\n",
- (unsigned int)R128_READ(R128_PM4_STAT));
- printk("PM4_BUFFER_DL_WPTR = 0x%08x\n",
- (unsigned int)R128_READ(R128_PM4_BUFFER_DL_WPTR));
- printk("PM4_BUFFER_DL_RPTR = 0x%08x\n",
- (unsigned int)R128_READ(R128_PM4_BUFFER_DL_RPTR));
- printk("PM4_MICRO_CNTL = 0x%08x\n",
- (unsigned int)R128_READ(R128_PM4_MICRO_CNTL));
- printk("PM4_BUFFER_CNTL = 0x%08x\n",
- (unsigned int)R128_READ(R128_PM4_BUFFER_CNTL));
-}
-#endif
-
-/* ================================================================
- * Engine, FIFO control
- */
-
-static int r128_do_pixcache_flush(drm_r128_private_t *dev_priv)
-{
- u32 tmp;
- int i;
-
- tmp = R128_READ(R128_PC_NGUI_CTLSTAT) | R128_PC_FLUSH_ALL;
- R128_WRITE(R128_PC_NGUI_CTLSTAT, tmp);
-
- for (i = 0; i < dev_priv->usec_timeout; i++) {
- if (!(R128_READ(R128_PC_NGUI_CTLSTAT) & R128_PC_BUSY))
- return 0;
- udelay(1);
- }
-
-#if R128_FIFO_DEBUG
- DRM_ERROR("failed!\n");
-#endif
- return -EBUSY;
-}
-
-static int r128_do_wait_for_fifo(drm_r128_private_t *dev_priv, int entries)
-{
- int i;
-
- for (i = 0; i < dev_priv->usec_timeout; i++) {
- int slots = R128_READ(R128_GUI_STAT) & R128_GUI_FIFOCNT_MASK;
- if (slots >= entries)
- return 0;
- udelay(1);
- }
-
-#if R128_FIFO_DEBUG
- DRM_ERROR("failed!\n");
-#endif
- return -EBUSY;
-}
-
-static int r128_do_wait_for_idle(drm_r128_private_t *dev_priv)
-{
- int i, ret;
-
- ret = r128_do_wait_for_fifo(dev_priv, 64);
- if (ret)
- return ret;
-
- for (i = 0; i < dev_priv->usec_timeout; i++) {
- if (!(R128_READ(R128_GUI_STAT) & R128_GUI_ACTIVE)) {
- r128_do_pixcache_flush(dev_priv);
- return 0;
- }
- udelay(1);
- }
-
-#if R128_FIFO_DEBUG
- DRM_ERROR("failed!\n");
-#endif
- return -EBUSY;
-}
-
-/* ================================================================
- * CCE control, initialization
- */
-
-/* Load the microcode for the CCE */
-static int r128_cce_load_microcode(drm_r128_private_t *dev_priv)
-{
- struct platform_device *pdev;
- const struct firmware *fw;
- const __be32 *fw_data;
- int rc, i;
-
- DRM_DEBUG("\n");
-
- pdev = platform_device_register_simple("r128_cce", 0, NULL, 0);
- if (IS_ERR(pdev)) {
- pr_err("r128_cce: Failed to register firmware\n");
- return PTR_ERR(pdev);
- }
- rc = request_firmware(&fw, FIRMWARE_NAME, &pdev->dev);
- platform_device_unregister(pdev);
- if (rc) {
- pr_err("r128_cce: Failed to load firmware \"%s\"\n",
- FIRMWARE_NAME);
- return rc;
- }
-
- if (fw->size != 256 * 8) {
- pr_err("r128_cce: Bogus length %zu in firmware \"%s\"\n",
- fw->size, FIRMWARE_NAME);
- rc = -EINVAL;
- goto out_release;
- }
-
- r128_do_wait_for_idle(dev_priv);
-
- fw_data = (const __be32 *)fw->data;
- R128_WRITE(R128_PM4_MICROCODE_ADDR, 0);
- for (i = 0; i < 256; i++) {
- R128_WRITE(R128_PM4_MICROCODE_DATAH,
- be32_to_cpup(&fw_data[i * 2]));
- R128_WRITE(R128_PM4_MICROCODE_DATAL,
- be32_to_cpup(&fw_data[i * 2 + 1]));
- }
-
-out_release:
- release_firmware(fw);
- return rc;
-}
-
-/* Flush any pending commands to the CCE. This should only be used just
- * prior to a wait for idle, as it informs the engine that the command
- * stream is ending.
- */
-static void r128_do_cce_flush(drm_r128_private_t *dev_priv)
-{
- u32 tmp;
-
- tmp = R128_READ(R128_PM4_BUFFER_DL_WPTR) | R128_PM4_BUFFER_DL_DONE;
- R128_WRITE(R128_PM4_BUFFER_DL_WPTR, tmp);
-}
-
-/* Wait for the CCE to go idle.
- */
-int r128_do_cce_idle(drm_r128_private_t *dev_priv)
-{
- int i;
-
- for (i = 0; i < dev_priv->usec_timeout; i++) {
- if (GET_RING_HEAD(dev_priv) == dev_priv->ring.tail) {
- int pm4stat = R128_READ(R128_PM4_STAT);
- if (((pm4stat & R128_PM4_FIFOCNT_MASK) >=
- dev_priv->cce_fifo_size) &&
- !(pm4stat & (R128_PM4_BUSY |
- R128_PM4_GUI_ACTIVE))) {
- return r128_do_pixcache_flush(dev_priv);
- }
- }
- udelay(1);
- }
-
-#if R128_FIFO_DEBUG
- DRM_ERROR("failed!\n");
- r128_status(dev_priv);
-#endif
- return -EBUSY;
-}
-
-/* Start the Concurrent Command Engine.
- */
-static void r128_do_cce_start(drm_r128_private_t *dev_priv)
-{
- r128_do_wait_for_idle(dev_priv);
-
- R128_WRITE(R128_PM4_BUFFER_CNTL,
- dev_priv->cce_mode | dev_priv->ring.size_l2qw
- | R128_PM4_BUFFER_CNTL_NOUPDATE);
- R128_READ(R128_PM4_BUFFER_ADDR); /* as per the sample code */
- R128_WRITE(R128_PM4_MICRO_CNTL, R128_PM4_MICRO_FREERUN);
-
- dev_priv->cce_running = 1;
-}
-
-/* Reset the Concurrent Command Engine. This will not flush any pending
- * commands, so you must wait for the CCE command stream to complete
- * before calling this routine.
- */
-static void r128_do_cce_reset(drm_r128_private_t *dev_priv)
-{
- R128_WRITE(R128_PM4_BUFFER_DL_WPTR, 0);
- R128_WRITE(R128_PM4_BUFFER_DL_RPTR, 0);
- dev_priv->ring.tail = 0;
-}
-
-/* Stop the Concurrent Command Engine. This will not flush any pending
- * commands, so you must flush the command stream and wait for the CCE
- * to go idle before calling this routine.
- */
-static void r128_do_cce_stop(drm_r128_private_t *dev_priv)
-{
- R128_WRITE(R128_PM4_MICRO_CNTL, 0);
- R128_WRITE(R128_PM4_BUFFER_CNTL,
- R128_PM4_NONPM4 | R128_PM4_BUFFER_CNTL_NOUPDATE);
-
- dev_priv->cce_running = 0;
-}
-
-/* Reset the engine. This will stop the CCE if it is running.
- */
-static int r128_do_engine_reset(struct drm_device *dev)
-{
- drm_r128_private_t *dev_priv = dev->dev_private;
- u32 clock_cntl_index, mclk_cntl, gen_reset_cntl;
-
- r128_do_pixcache_flush(dev_priv);
-
- clock_cntl_index = R128_READ(R128_CLOCK_CNTL_INDEX);
- mclk_cntl = R128_READ_PLL(dev, R128_MCLK_CNTL);
-
- R128_WRITE_PLL(R128_MCLK_CNTL,
- mclk_cntl | R128_FORCE_GCP | R128_FORCE_PIPE3D_CP);
-
- gen_reset_cntl = R128_READ(R128_GEN_RESET_CNTL);
-
- /* Taken from the sample code - do not change */
- R128_WRITE(R128_GEN_RESET_CNTL, gen_reset_cntl | R128_SOFT_RESET_GUI);
- R128_READ(R128_GEN_RESET_CNTL);
- R128_WRITE(R128_GEN_RESET_CNTL, gen_reset_cntl & ~R128_SOFT_RESET_GUI);
- R128_READ(R128_GEN_RESET_CNTL);
-
- R128_WRITE_PLL(R128_MCLK_CNTL, mclk_cntl);
- R128_WRITE(R128_CLOCK_CNTL_INDEX, clock_cntl_index);
- R128_WRITE(R128_GEN_RESET_CNTL, gen_reset_cntl);
-
- /* Reset the CCE ring */
- r128_do_cce_reset(dev_priv);
-
- /* The CCE is no longer running after an engine reset */
- dev_priv->cce_running = 0;
-
- /* Reset any pending vertex, indirect buffers */
- r128_freelist_reset(dev);
-
- return 0;
-}
-
-static void r128_cce_init_ring_buffer(struct drm_device *dev,
- drm_r128_private_t *dev_priv)
-{
- u32 ring_start;
- u32 tmp;
-
- DRM_DEBUG("\n");
-
- /* The manual (p. 2) says this address is in "VM space". This
- * means it's an offset from the start of AGP space.
- */
-#if IS_ENABLED(CONFIG_AGP)
- if (!dev_priv->is_pci)
- ring_start = dev_priv->cce_ring->offset - dev->agp->base;
- else
-#endif
- ring_start = dev_priv->cce_ring->offset -
- (unsigned long)dev->sg->virtual;
-
- R128_WRITE(R128_PM4_BUFFER_OFFSET, ring_start | R128_AGP_OFFSET);
-
- R128_WRITE(R128_PM4_BUFFER_DL_WPTR, 0);
- R128_WRITE(R128_PM4_BUFFER_DL_RPTR, 0);
-
- /* Set watermark control */
- R128_WRITE(R128_PM4_BUFFER_WM_CNTL,
- ((R128_WATERMARK_L / 4) << R128_WMA_SHIFT)
- | ((R128_WATERMARK_M / 4) << R128_WMB_SHIFT)
- | ((R128_WATERMARK_N / 4) << R128_WMC_SHIFT)
- | ((R128_WATERMARK_K / 64) << R128_WB_WM_SHIFT));
-
- /* Force read. Why? Because it's in the examples... */
- R128_READ(R128_PM4_BUFFER_ADDR);
-
- /* Turn on bus mastering */
- tmp = R128_READ(R128_BUS_CNTL) & ~R128_BUS_MASTER_DIS;
- R128_WRITE(R128_BUS_CNTL, tmp);
-}
-
-static int r128_do_init_cce(struct drm_device *dev, drm_r128_init_t *init)
-{
- drm_r128_private_t *dev_priv;
- int rc;
-
- DRM_DEBUG("\n");
-
- if (dev->dev_private) {
- DRM_DEBUG("called when already initialized\n");
- return -EINVAL;
- }
-
- dev_priv = kzalloc(sizeof(drm_r128_private_t), GFP_KERNEL);
- if (dev_priv == NULL)
- return -ENOMEM;
-
- dev_priv->is_pci = init->is_pci;
-
- if (dev_priv->is_pci && !dev->sg) {
- DRM_ERROR("PCI GART memory not allocated!\n");
- dev->dev_private = (void *)dev_priv;
- r128_do_cleanup_cce(dev);
- return -EINVAL;
- }
-
- dev_priv->usec_timeout = init->usec_timeout;
- if (dev_priv->usec_timeout < 1 ||
- dev_priv->usec_timeout > R128_MAX_USEC_TIMEOUT) {
- DRM_DEBUG("TIMEOUT problem!\n");
- dev->dev_private = (void *)dev_priv;
- r128_do_cleanup_cce(dev);
- return -EINVAL;
- }
-
- dev_priv->cce_mode = init->cce_mode;
-
- /* GH: Simple idle check.
- */
- atomic_set(&dev_priv->idle_count, 0);
-
- /* We don't support anything other than bus-mastering ring mode,
- * but the ring can be in either AGP or PCI space for the ring
- * read pointer.
- */
- if ((init->cce_mode != R128_PM4_192BM) &&
- (init->cce_mode != R128_PM4_128BM_64INDBM) &&
- (init->cce_mode != R128_PM4_64BM_128INDBM) &&
- (init->cce_mode != R128_PM4_64BM_64VCBM_64INDBM)) {
- DRM_DEBUG("Bad cce_mode!\n");
- dev->dev_private = (void *)dev_priv;
- r128_do_cleanup_cce(dev);
- return -EINVAL;
- }
-
- switch (init->cce_mode) {
- case R128_PM4_NONPM4:
- dev_priv->cce_fifo_size = 0;
- break;
- case R128_PM4_192PIO:
- case R128_PM4_192BM:
- dev_priv->cce_fifo_size = 192;
- break;
- case R128_PM4_128PIO_64INDBM:
- case R128_PM4_128BM_64INDBM:
- dev_priv->cce_fifo_size = 128;
- break;
- case R128_PM4_64PIO_128INDBM:
- case R128_PM4_64BM_128INDBM:
- case R128_PM4_64PIO_64VCBM_64INDBM:
- case R128_PM4_64BM_64VCBM_64INDBM:
- case R128_PM4_64PIO_64VCPIO_64INDPIO:
- dev_priv->cce_fifo_size = 64;
- break;
- }
-
- switch (init->fb_bpp) {
- case 16:
- dev_priv->color_fmt = R128_DATATYPE_RGB565;
- break;
- case 32:
- default:
- dev_priv->color_fmt = R128_DATATYPE_ARGB8888;
- break;
- }
- dev_priv->front_offset = init->front_offset;
- dev_priv->front_pitch = init->front_pitch;
- dev_priv->back_offset = init->back_offset;
- dev_priv->back_pitch = init->back_pitch;
-
- switch (init->depth_bpp) {
- case 16:
- dev_priv->depth_fmt = R128_DATATYPE_RGB565;
- break;
- case 24:
- case 32:
- default:
- dev_priv->depth_fmt = R128_DATATYPE_ARGB8888;
- break;
- }
- dev_priv->depth_offset = init->depth_offset;
- dev_priv->depth_pitch = init->depth_pitch;
- dev_priv->span_offset = init->span_offset;
-
- dev_priv->front_pitch_offset_c = (((dev_priv->front_pitch / 8) << 21) |
- (dev_priv->front_offset >> 5));
- dev_priv->back_pitch_offset_c = (((dev_priv->back_pitch / 8) << 21) |
- (dev_priv->back_offset >> 5));
- dev_priv->depth_pitch_offset_c = (((dev_priv->depth_pitch / 8) << 21) |
- (dev_priv->depth_offset >> 5) |
- R128_DST_TILE);
- dev_priv->span_pitch_offset_c = (((dev_priv->depth_pitch / 8) << 21) |
- (dev_priv->span_offset >> 5));
-
- dev_priv->sarea = drm_legacy_getsarea(dev);
- if (!dev_priv->sarea) {
- DRM_ERROR("could not find sarea!\n");
- dev->dev_private = (void *)dev_priv;
- r128_do_cleanup_cce(dev);
- return -EINVAL;
- }
-
- dev_priv->mmio = drm_legacy_findmap(dev, init->mmio_offset);
- if (!dev_priv->mmio) {
- DRM_ERROR("could not find mmio region!\n");
- dev->dev_private = (void *)dev_priv;
- r128_do_cleanup_cce(dev);
- return -EINVAL;
- }
- dev_priv->cce_ring = drm_legacy_findmap(dev, init->ring_offset);
- if (!dev_priv->cce_ring) {
- DRM_ERROR("could not find cce ring region!\n");
- dev->dev_private = (void *)dev_priv;
- r128_do_cleanup_cce(dev);
- return -EINVAL;
- }
- dev_priv->ring_rptr = drm_legacy_findmap(dev, init->ring_rptr_offset);
- if (!dev_priv->ring_rptr) {
- DRM_ERROR("could not find ring read pointer!\n");
- dev->dev_private = (void *)dev_priv;
- r128_do_cleanup_cce(dev);
- return -EINVAL;
- }
- dev->agp_buffer_token = init->buffers_offset;
- dev->agp_buffer_map = drm_legacy_findmap(dev, init->buffers_offset);
- if (!dev->agp_buffer_map) {
- DRM_ERROR("could not find dma buffer region!\n");
- dev->dev_private = (void *)dev_priv;
- r128_do_cleanup_cce(dev);
- return -EINVAL;
- }
-
- if (!dev_priv->is_pci) {
- dev_priv->agp_textures =
- drm_legacy_findmap(dev, init->agp_textures_offset);
- if (!dev_priv->agp_textures) {
- DRM_ERROR("could not find agp texture region!\n");
- dev->dev_private = (void *)dev_priv;
- r128_do_cleanup_cce(dev);
- return -EINVAL;
- }
- }
-
- dev_priv->sarea_priv =
- (drm_r128_sarea_t *) ((u8 *) dev_priv->sarea->handle +
- init->sarea_priv_offset);
-
-#if IS_ENABLED(CONFIG_AGP)
- if (!dev_priv->is_pci) {
- drm_legacy_ioremap_wc(dev_priv->cce_ring, dev);
- drm_legacy_ioremap_wc(dev_priv->ring_rptr, dev);
- drm_legacy_ioremap_wc(dev->agp_buffer_map, dev);
- if (!dev_priv->cce_ring->handle ||
- !dev_priv->ring_rptr->handle ||
- !dev->agp_buffer_map->handle) {
- DRM_ERROR("Could not ioremap agp regions!\n");
- dev->dev_private = (void *)dev_priv;
- r128_do_cleanup_cce(dev);
- return -ENOMEM;
- }
- } else
-#endif
- {
- dev_priv->cce_ring->handle =
- (void *)(unsigned long)dev_priv->cce_ring->offset;
- dev_priv->ring_rptr->handle =
- (void *)(unsigned long)dev_priv->ring_rptr->offset;
- dev->agp_buffer_map->handle =
- (void *)(unsigned long)dev->agp_buffer_map->offset;
- }
-
-#if IS_ENABLED(CONFIG_AGP)
- if (!dev_priv->is_pci)
- dev_priv->cce_buffers_offset = dev->agp->base;
- else
-#endif
- dev_priv->cce_buffers_offset = (unsigned long)dev->sg->virtual;
-
- dev_priv->ring.start = (u32 *) dev_priv->cce_ring->handle;
- dev_priv->ring.end = ((u32 *) dev_priv->cce_ring->handle
- + init->ring_size / sizeof(u32));
- dev_priv->ring.size = init->ring_size;
- dev_priv->ring.size_l2qw = order_base_2(init->ring_size / 8);
-
- dev_priv->ring.tail_mask = (dev_priv->ring.size / sizeof(u32)) - 1;
-
- dev_priv->ring.high_mark = 128;
-
- dev_priv->sarea_priv->last_frame = 0;
- R128_WRITE(R128_LAST_FRAME_REG, dev_priv->sarea_priv->last_frame);
-
- dev_priv->sarea_priv->last_dispatch = 0;
- R128_WRITE(R128_LAST_DISPATCH_REG, dev_priv->sarea_priv->last_dispatch);
-
-#if IS_ENABLED(CONFIG_AGP)
- if (dev_priv->is_pci) {
-#endif
- dev_priv->gart_info.table_mask = DMA_BIT_MASK(32);
- dev_priv->gart_info.gart_table_location = DRM_ATI_GART_MAIN;
- dev_priv->gart_info.table_size = R128_PCIGART_TABLE_SIZE;
- dev_priv->gart_info.addr = NULL;
- dev_priv->gart_info.bus_addr = 0;
- dev_priv->gart_info.gart_reg_if = DRM_ATI_GART_PCI;
- rc = drm_ati_pcigart_init(dev, &dev_priv->gart_info);
- if (rc) {
- DRM_ERROR("failed to init PCI GART!\n");
- dev->dev_private = (void *)dev_priv;
- r128_do_cleanup_cce(dev);
- return rc;
- }
- R128_WRITE(R128_PCI_GART_PAGE, dev_priv->gart_info.bus_addr);
-#if IS_ENABLED(CONFIG_AGP)
- }
-#endif
-
- r128_cce_init_ring_buffer(dev, dev_priv);
- rc = r128_cce_load_microcode(dev_priv);
-
- dev->dev_private = (void *)dev_priv;
-
- r128_do_engine_reset(dev);
-
- if (rc) {
- DRM_ERROR("Failed to load firmware!\n");
- r128_do_cleanup_cce(dev);
- }
-
- return rc;
-}
-
-int r128_do_cleanup_cce(struct drm_device *dev)
-{
-
- /* Make sure interrupts are disabled here because the uninstall ioctl
- * may not have been called from userspace and after dev_private
- * is freed, it's too late.
- */
- if (dev->irq_enabled)
- drm_legacy_irq_uninstall(dev);
-
- if (dev->dev_private) {
- drm_r128_private_t *dev_priv = dev->dev_private;
-
-#if IS_ENABLED(CONFIG_AGP)
- if (!dev_priv->is_pci) {
- if (dev_priv->cce_ring != NULL)
- drm_legacy_ioremapfree(dev_priv->cce_ring, dev);
- if (dev_priv->ring_rptr != NULL)
- drm_legacy_ioremapfree(dev_priv->ring_rptr, dev);
- if (dev->agp_buffer_map != NULL) {
- drm_legacy_ioremapfree(dev->agp_buffer_map, dev);
- dev->agp_buffer_map = NULL;
- }
- } else
-#endif
- {
- if (dev_priv->gart_info.bus_addr)
- if (!drm_ati_pcigart_cleanup(dev,
- &dev_priv->gart_info))
- DRM_ERROR
- ("failed to cleanup PCI GART!\n");
- }
-
- kfree(dev->dev_private);
- dev->dev_private = NULL;
- }
-
- return 0;
-}
-
-int r128_cce_init(struct drm_device *dev, void *data, struct drm_file *file_priv)
-{
- drm_r128_init_t *init = data;
-
- DRM_DEBUG("\n");
-
- LOCK_TEST_WITH_RETURN(dev, file_priv);
-
- switch (init->func) {
- case R128_INIT_CCE:
- return r128_do_init_cce(dev, init);
- case R128_CLEANUP_CCE:
- return r128_do_cleanup_cce(dev);
- }
-
- return -EINVAL;
-}
-
-int r128_cce_start(struct drm_device *dev, void *data, struct drm_file *file_priv)
-{
- drm_r128_private_t *dev_priv = dev->dev_private;
- DRM_DEBUG("\n");
-
- LOCK_TEST_WITH_RETURN(dev, file_priv);
-
- DEV_INIT_TEST_WITH_RETURN(dev_priv);
-
- if (dev_priv->cce_running || dev_priv->cce_mode == R128_PM4_NONPM4) {
- DRM_DEBUG("while CCE running\n");
- return 0;
- }
-
- r128_do_cce_start(dev_priv);
-
- return 0;
-}
-
-/* Stop the CCE. The engine must have been idled before calling this
- * routine.
- */
-int r128_cce_stop(struct drm_device *dev, void *data, struct drm_file *file_priv)
-{
- drm_r128_private_t *dev_priv = dev->dev_private;
- drm_r128_cce_stop_t *stop = data;
- int ret;
- DRM_DEBUG("\n");
-
- LOCK_TEST_WITH_RETURN(dev, file_priv);
-
- DEV_INIT_TEST_WITH_RETURN(dev_priv);
-
- /* Flush any pending CCE commands. This ensures any outstanding
- * commands are exectuted by the engine before we turn it off.
- */
- if (stop->flush)
- r128_do_cce_flush(dev_priv);
-
- /* If we fail to make the engine go idle, we return an error
- * code so that the DRM ioctl wrapper can try again.
- */
- if (stop->idle) {
- ret = r128_do_cce_idle(dev_priv);
- if (ret)
- return ret;
- }
-
- /* Finally, we can turn off the CCE. If the engine isn't idle,
- * we will get some dropped triangles as they won't be fully
- * rendered before the CCE is shut down.
- */
- r128_do_cce_stop(dev_priv);
-
- /* Reset the engine */
- r128_do_engine_reset(dev);
-
- return 0;
-}
-
-/* Just reset the CCE ring. Called as part of an X Server engine reset.
- */
-int r128_cce_reset(struct drm_device *dev, void *data, struct drm_file *file_priv)
-{
- drm_r128_private_t *dev_priv = dev->dev_private;
- DRM_DEBUG("\n");
-
- LOCK_TEST_WITH_RETURN(dev, file_priv);
-
- DEV_INIT_TEST_WITH_RETURN(dev_priv);
-
- r128_do_cce_reset(dev_priv);
-
- /* The CCE is no longer running after an engine reset */
- dev_priv->cce_running = 0;
-
- return 0;
-}
-
-int r128_cce_idle(struct drm_device *dev, void *data, struct drm_file *file_priv)
-{
- drm_r128_private_t *dev_priv = dev->dev_private;
- DRM_DEBUG("\n");
-
- LOCK_TEST_WITH_RETURN(dev, file_priv);
-
- DEV_INIT_TEST_WITH_RETURN(dev_priv);
-
- if (dev_priv->cce_running)
- r128_do_cce_flush(dev_priv);
-
- return r128_do_cce_idle(dev_priv);
-}
-
-int r128_engine_reset(struct drm_device *dev, void *data, struct drm_file *file_priv)
-{
- DRM_DEBUG("\n");
-
- LOCK_TEST_WITH_RETURN(dev, file_priv);
-
- DEV_INIT_TEST_WITH_RETURN(dev->dev_private);
-
- return r128_do_engine_reset(dev);
-}
-
-int r128_fullscreen(struct drm_device *dev, void *data, struct drm_file *file_priv)
-{
- return -EINVAL;
-}
-
-/* ================================================================
- * Freelist management
- */
-#define R128_BUFFER_USED 0xffffffff
-#define R128_BUFFER_FREE 0
-
-#if 0
-static int r128_freelist_init(struct drm_device *dev)
-{
- struct drm_device_dma *dma = dev->dma;
- drm_r128_private_t *dev_priv = dev->dev_private;
- struct drm_buf *buf;
- drm_r128_buf_priv_t *buf_priv;
- drm_r128_freelist_t *entry;
- int i;
-
- dev_priv->head = kzalloc(sizeof(drm_r128_freelist_t), GFP_KERNEL);
- if (dev_priv->head == NULL)
- return -ENOMEM;
-
- dev_priv->head->age = R128_BUFFER_USED;
-
- for (i = 0; i < dma->buf_count; i++) {
- buf = dma->buflist[i];
- buf_priv = buf->dev_private;
-
- entry = kmalloc(sizeof(drm_r128_freelist_t), GFP_KERNEL);
- if (!entry)
- return -ENOMEM;
-
- entry->age = R128_BUFFER_FREE;
- entry->buf = buf;
- entry->prev = dev_priv->head;
- entry->next = dev_priv->head->next;
- if (!entry->next)
- dev_priv->tail = entry;
-
- buf_priv->discard = 0;
- buf_priv->dispatched = 0;
- buf_priv->list_entry = entry;
-
- dev_priv->head->next = entry;
-
- if (dev_priv->head->next)
- dev_priv->head->next->prev = entry;
- }
-
- return 0;
-
-}
-#endif
-
-static struct drm_buf *r128_freelist_get(struct drm_device * dev)
-{
- struct drm_device_dma *dma = dev->dma;
- drm_r128_private_t *dev_priv = dev->dev_private;
- drm_r128_buf_priv_t *buf_priv;
- struct drm_buf *buf;
- int i, t;
-
- /* FIXME: Optimize -- use freelist code */
-
- for (i = 0; i < dma->buf_count; i++) {
- buf = dma->buflist[i];
- buf_priv = buf->dev_private;
- if (!buf->file_priv)
- return buf;
- }
-
- for (t = 0; t < dev_priv->usec_timeout; t++) {
- u32 done_age = R128_READ(R128_LAST_DISPATCH_REG);
-
- for (i = 0; i < dma->buf_count; i++) {
- buf = dma->buflist[i];
- buf_priv = buf->dev_private;
- if (buf->pending && buf_priv->age <= done_age) {
- /* The buffer has been processed, so it
- * can now be used.
- */
- buf->pending = 0;
- return buf;
- }
- }
- udelay(1);
- }
-
- DRM_DEBUG("returning NULL!\n");
- return NULL;
-}
-
-void r128_freelist_reset(struct drm_device *dev)
-{
- struct drm_device_dma *dma = dev->dma;
- int i;
-
- for (i = 0; i < dma->buf_count; i++) {
- struct drm_buf *buf = dma->buflist[i];
- drm_r128_buf_priv_t *buf_priv = buf->dev_private;
- buf_priv->age = 0;
- }
-}
-
-/* ================================================================
- * CCE command submission
- */
-
-int r128_wait_ring(drm_r128_private_t *dev_priv, int n)
-{
- drm_r128_ring_buffer_t *ring = &dev_priv->ring;
- int i;
-
- for (i = 0; i < dev_priv->usec_timeout; i++) {
- r128_update_ring_snapshot(dev_priv);
- if (ring->space >= n)
- return 0;
- udelay(1);
- }
-
- /* FIXME: This is being ignored... */
- DRM_ERROR("failed!\n");
- return -EBUSY;
-}
-
-static int r128_cce_get_buffers(struct drm_device *dev,
- struct drm_file *file_priv,
- struct drm_dma *d)
-{
- int i;
- struct drm_buf *buf;
-
- for (i = d->granted_count; i < d->request_count; i++) {
- buf = r128_freelist_get(dev);
- if (!buf)
- return -EAGAIN;
-
- buf->file_priv = file_priv;
-
- if (copy_to_user(&d->request_indices[i], &buf->idx,
- sizeof(buf->idx)))
- return -EFAULT;
- if (copy_to_user(&d->request_sizes[i], &buf->total,
- sizeof(buf->total)))
- return -EFAULT;
-
- d->granted_count++;
- }
- return 0;
-}
-
-int r128_cce_buffers(struct drm_device *dev, void *data, struct drm_file *file_priv)
-{
- struct drm_device_dma *dma = dev->dma;
- int ret = 0;
- struct drm_dma *d = data;
-
- LOCK_TEST_WITH_RETURN(dev, file_priv);
-
- /* Please don't send us buffers.
- */
- if (d->send_count != 0) {
- DRM_ERROR("Process %d trying to send %d buffers via drmDMA\n",
- task_pid_nr(current), d->send_count);
- return -EINVAL;
- }
-
- /* We'll send you buffers.
- */
- if (d->request_count < 0 || d->request_count > dma->buf_count) {
- DRM_ERROR("Process %d trying to get %d buffers (of %d max)\n",
- task_pid_nr(current), d->request_count, dma->buf_count);
- return -EINVAL;
- }
-
- d->granted_count = 0;
-
- if (d->request_count)
- ret = r128_cce_get_buffers(dev, file_priv, d);
-
- return ret;
-}
diff --git a/drivers/gpu/drm/r128/r128_drv.c b/drivers/gpu/drm/r128/r128_drv.c
deleted file mode 100644
index e35a3a1449bd..000000000000
--- a/drivers/gpu/drm/r128/r128_drv.c
+++ /dev/null
@@ -1,116 +0,0 @@
-/* r128_drv.c -- ATI Rage 128 driver -*- linux-c -*-
- * Created: Mon Dec 13 09:47:27 1999 by faith@precisioninsight.com
- *
- * Copyright 1999 Precision Insight, Inc., Cedar Park, Texas.
- * Copyright 2000 VA Linux Systems, Inc., Sunnyvale, California.
- * All Rights Reserved.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice (including the next
- * paragraph) shall be included in all copies or substantial portions of the
- * Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * VA LINUX SYSTEMS AND/OR ITS SUPPLIERS BE LIABLE FOR ANY CLAIM, DAMAGES OR
- * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
- * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
- * OTHER DEALINGS IN THE SOFTWARE.
- *
- * Authors:
- * Rickard E. (Rik) Faith <faith@valinux.com>
- * Gareth Hughes <gareth@valinux.com>
- */
-
-#include <linux/module.h>
-#include <linux/pci.h>
-
-#include <drm/drm_drv.h>
-#include <drm/drm_file.h>
-#include <drm/drm_pciids.h>
-#include <drm/drm_vblank.h>
-#include <drm/r128_drm.h>
-
-#include "r128_drv.h"
-
-static struct pci_device_id pciidlist[] = {
- r128_PCI_IDS
-};
-
-static const struct file_operations r128_driver_fops = {
- .owner = THIS_MODULE,
- .open = drm_open,
- .release = drm_release,
- .unlocked_ioctl = drm_ioctl,
- .mmap = drm_legacy_mmap,
- .poll = drm_poll,
-#ifdef CONFIG_COMPAT
- .compat_ioctl = r128_compat_ioctl,
-#endif
- .llseek = noop_llseek,
-};
-
-static struct drm_driver driver = {
- .driver_features =
- DRIVER_USE_AGP | DRIVER_PCI_DMA | DRIVER_SG | DRIVER_LEGACY |
- DRIVER_HAVE_DMA | DRIVER_HAVE_IRQ,
- .dev_priv_size = sizeof(drm_r128_buf_priv_t),
- .load = r128_driver_load,
- .preclose = r128_driver_preclose,
- .lastclose = r128_driver_lastclose,
- .get_vblank_counter = r128_get_vblank_counter,
- .enable_vblank = r128_enable_vblank,
- .disable_vblank = r128_disable_vblank,
- .irq_preinstall = r128_driver_irq_preinstall,
- .irq_postinstall = r128_driver_irq_postinstall,
- .irq_uninstall = r128_driver_irq_uninstall,
- .irq_handler = r128_driver_irq_handler,
- .ioctls = r128_ioctls,
- .dma_ioctl = r128_cce_buffers,
- .fops = &r128_driver_fops,
- .name = DRIVER_NAME,
- .desc = DRIVER_DESC,
- .date = DRIVER_DATE,
- .major = DRIVER_MAJOR,
- .minor = DRIVER_MINOR,
- .patchlevel = DRIVER_PATCHLEVEL,
-};
-
-int r128_driver_load(struct drm_device *dev, unsigned long flags)
-{
- struct pci_dev *pdev = to_pci_dev(dev->dev);
-
- pci_set_master(pdev);
- return drm_vblank_init(dev, 1);
-}
-
-static struct pci_driver r128_pci_driver = {
- .name = DRIVER_NAME,
- .id_table = pciidlist,
-};
-
-static int __init r128_init(void)
-{
- driver.num_ioctls = r128_max_ioctl;
-
- return drm_legacy_pci_init(&driver, &r128_pci_driver);
-}
-
-static void __exit r128_exit(void)
-{
- drm_legacy_pci_exit(&driver, &r128_pci_driver);
-}
-
-module_init(r128_init);
-module_exit(r128_exit);
-
-MODULE_AUTHOR(DRIVER_AUTHOR);
-MODULE_DESCRIPTION(DRIVER_DESC);
-MODULE_LICENSE("GPL and additional rights");
diff --git a/drivers/gpu/drm/r128/r128_drv.h b/drivers/gpu/drm/r128/r128_drv.h
deleted file mode 100644
index 970e192b0d51..000000000000
--- a/drivers/gpu/drm/r128/r128_drv.h
+++ /dev/null
@@ -1,544 +0,0 @@
-/* r128_drv.h -- Private header for r128 driver -*- linux-c -*-
- * Created: Mon Dec 13 09:51:11 1999 by faith@precisioninsight.com
- */
-/*
- * Copyright 1999 Precision Insight, Inc., Cedar Park, Texas.
- * Copyright 2000 VA Linux Systems, Inc., Sunnyvale, California.
- * All rights reserved.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice (including the next
- * paragraph) shall be included in all copies or substantial portions of the
- * Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * PRECISION INSIGHT AND/OR ITS SUPPLIERS BE LIABLE FOR ANY CLAIM, DAMAGES OR
- * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
- * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
- * DEALINGS IN THE SOFTWARE.
- *
- * Authors:
- * Rickard E. (Rik) Faith <faith@valinux.com>
- * Kevin E. Martin <martin@valinux.com>
- * Gareth Hughes <gareth@valinux.com>
- * Michel Dänzer <daenzerm@student.ethz.ch>
- */
-
-#ifndef __R128_DRV_H__
-#define __R128_DRV_H__
-
-#include <linux/delay.h>
-#include <linux/io.h>
-#include <linux/irqreturn.h>
-
-#include <drm/drm_ioctl.h>
-#include <drm/drm_legacy.h>
-#include <drm/r128_drm.h>
-
-#include "ati_pcigart.h"
-
-/* General customization:
- */
-#define DRIVER_AUTHOR "Gareth Hughes, VA Linux Systems Inc."
-
-#define DRIVER_NAME "r128"
-#define DRIVER_DESC "ATI Rage 128"
-#define DRIVER_DATE "20030725"
-
-/* Interface history:
- *
- * ?? - ??
- * 2.4 - Add support for ycbcr textures (no new ioctls)
- * 2.5 - Add FLIP ioctl, disable FULLSCREEN.
- */
-#define DRIVER_MAJOR 2
-#define DRIVER_MINOR 5
-#define DRIVER_PATCHLEVEL 0
-
-#define GET_RING_HEAD(dev_priv) R128_READ(R128_PM4_BUFFER_DL_RPTR)
-
-typedef struct drm_r128_freelist {
- unsigned int age;
- struct drm_buf *buf;
- struct drm_r128_freelist *next;
- struct drm_r128_freelist *prev;
-} drm_r128_freelist_t;
-
-typedef struct drm_r128_ring_buffer {
- u32 *start;
- u32 *end;
- int size;
- int size_l2qw;
-
- u32 tail;
- u32 tail_mask;
- int space;
-
- int high_mark;
-} drm_r128_ring_buffer_t;
-
-typedef struct drm_r128_private {
- drm_r128_ring_buffer_t ring;
- drm_r128_sarea_t *sarea_priv;
-
- int cce_mode;
- int cce_fifo_size;
- int cce_running;
-
- drm_r128_freelist_t *head;
- drm_r128_freelist_t *tail;
-
- int usec_timeout;
- int is_pci;
- unsigned long cce_buffers_offset;
-
- atomic_t idle_count;
-
- int page_flipping;
- int current_page;
- u32 crtc_offset;
- u32 crtc_offset_cntl;
-
- atomic_t vbl_received;
-
- u32 color_fmt;
- unsigned int front_offset;
- unsigned int front_pitch;
- unsigned int back_offset;
- unsigned int back_pitch;
-
- u32 depth_fmt;
- unsigned int depth_offset;
- unsigned int depth_pitch;
- unsigned int span_offset;
-
- u32 front_pitch_offset_c;
- u32 back_pitch_offset_c;
- u32 depth_pitch_offset_c;
- u32 span_pitch_offset_c;
-
- drm_local_map_t *sarea;
- drm_local_map_t *mmio;
- drm_local_map_t *cce_ring;
- drm_local_map_t *ring_rptr;
- drm_local_map_t *agp_textures;
- struct drm_ati_pcigart_info gart_info;
-} drm_r128_private_t;
-
-typedef struct drm_r128_buf_priv {
- u32 age;
- int prim;
- int discard;
- int dispatched;
- drm_r128_freelist_t *list_entry;
-} drm_r128_buf_priv_t;
-
-extern const struct drm_ioctl_desc r128_ioctls[];
-extern int r128_max_ioctl;
-
- /* r128_cce.c */
-extern int r128_cce_init(struct drm_device *dev, void *data, struct drm_file *file_priv);
-extern int r128_cce_start(struct drm_device *dev, void *data, struct drm_file *file_priv);
-extern int r128_cce_stop(struct drm_device *dev, void *data, struct drm_file *file_priv);
-extern int r128_cce_reset(struct drm_device *dev, void *data, struct drm_file *file_priv);
-extern int r128_cce_idle(struct drm_device *dev, void *data, struct drm_file *file_priv);
-extern int r128_engine_reset(struct drm_device *dev, void *data, struct drm_file *file_priv);
-extern int r128_fullscreen(struct drm_device *dev, void *data, struct drm_file *file_priv);
-extern int r128_cce_buffers(struct drm_device *dev, void *data, struct drm_file *file_priv);
-
-extern int r128_cce_stipple(struct drm_device *dev, void *data, struct drm_file *file_priv);
-extern int r128_cce_depth(struct drm_device *dev, void *data, struct drm_file *file_priv);
-extern int r128_getparam(struct drm_device *dev, void *data, struct drm_file *file_priv);
-
-extern void r128_freelist_reset(struct drm_device *dev);
-
-extern int r128_wait_ring(drm_r128_private_t *dev_priv, int n);
-
-extern int r128_do_cce_idle(drm_r128_private_t *dev_priv);
-extern int r128_do_cleanup_cce(struct drm_device *dev);
-
-extern int r128_enable_vblank(struct drm_device *dev, unsigned int pipe);
-extern void r128_disable_vblank(struct drm_device *dev, unsigned int pipe);
-extern u32 r128_get_vblank_counter(struct drm_device *dev, unsigned int pipe);
-extern irqreturn_t r128_driver_irq_handler(int irq, void *arg);
-extern void r128_driver_irq_preinstall(struct drm_device *dev);
-extern int r128_driver_irq_postinstall(struct drm_device *dev);
-extern void r128_driver_irq_uninstall(struct drm_device *dev);
-extern void r128_driver_lastclose(struct drm_device *dev);
-extern int r128_driver_load(struct drm_device *dev, unsigned long flags);
-extern void r128_driver_preclose(struct drm_device *dev,
- struct drm_file *file_priv);
-
-extern long r128_compat_ioctl(struct file *filp, unsigned int cmd,
- unsigned long arg);
-
-/* Register definitions, register access macros and drmAddMap constants
- * for Rage 128 kernel driver.
- */
-
-#define R128_AUX_SC_CNTL 0x1660
-# define R128_AUX1_SC_EN (1 << 0)
-# define R128_AUX1_SC_MODE_OR (0 << 1)
-# define R128_AUX1_SC_MODE_NAND (1 << 1)
-# define R128_AUX2_SC_EN (1 << 2)
-# define R128_AUX2_SC_MODE_OR (0 << 3)
-# define R128_AUX2_SC_MODE_NAND (1 << 3)
-# define R128_AUX3_SC_EN (1 << 4)
-# define R128_AUX3_SC_MODE_OR (0 << 5)
-# define R128_AUX3_SC_MODE_NAND (1 << 5)
-#define R128_AUX1_SC_LEFT 0x1664
-#define R128_AUX1_SC_RIGHT 0x1668
-#define R128_AUX1_SC_TOP 0x166c
-#define R128_AUX1_SC_BOTTOM 0x1670
-#define R128_AUX2_SC_LEFT 0x1674
-#define R128_AUX2_SC_RIGHT 0x1678
-#define R128_AUX2_SC_TOP 0x167c
-#define R128_AUX2_SC_BOTTOM 0x1680
-#define R128_AUX3_SC_LEFT 0x1684
-#define R128_AUX3_SC_RIGHT 0x1688
-#define R128_AUX3_SC_TOP 0x168c
-#define R128_AUX3_SC_BOTTOM 0x1690
-
-#define R128_BRUSH_DATA0 0x1480
-#define R128_BUS_CNTL 0x0030
-# define R128_BUS_MASTER_DIS (1 << 6)
-
-#define R128_CLOCK_CNTL_INDEX 0x0008
-#define R128_CLOCK_CNTL_DATA 0x000c
-# define R128_PLL_WR_EN (1 << 7)
-#define R128_CONSTANT_COLOR_C 0x1d34
-#define R128_CRTC_OFFSET 0x0224
-#define R128_CRTC_OFFSET_CNTL 0x0228
-# define R128_CRTC_OFFSET_FLIP_CNTL (1 << 16)
-
-#define R128_DP_GUI_MASTER_CNTL 0x146c
-# define R128_GMC_SRC_PITCH_OFFSET_CNTL (1 << 0)
-# define R128_GMC_DST_PITCH_OFFSET_CNTL (1 << 1)
-# define R128_GMC_BRUSH_SOLID_COLOR (13 << 4)
-# define R128_GMC_BRUSH_NONE (15 << 4)
-# define R128_GMC_DST_16BPP (4 << 8)
-# define R128_GMC_DST_24BPP (5 << 8)
-# define R128_GMC_DST_32BPP (6 << 8)
-# define R128_GMC_DST_DATATYPE_SHIFT 8
-# define R128_GMC_SRC_DATATYPE_COLOR (3 << 12)
-# define R128_DP_SRC_SOURCE_MEMORY (2 << 24)
-# define R128_DP_SRC_SOURCE_HOST_DATA (3 << 24)
-# define R128_GMC_CLR_CMP_CNTL_DIS (1 << 28)
-# define R128_GMC_AUX_CLIP_DIS (1 << 29)
-# define R128_GMC_WR_MSK_DIS (1 << 30)
-# define R128_ROP3_S 0x00cc0000
-# define R128_ROP3_P 0x00f00000
-#define R128_DP_WRITE_MASK 0x16cc
-#define R128_DST_PITCH_OFFSET_C 0x1c80
-# define R128_DST_TILE (1 << 31)
-
-#define R128_GEN_INT_CNTL 0x0040
-# define R128_CRTC_VBLANK_INT_EN (1 << 0)
-#define R128_GEN_INT_STATUS 0x0044
-# define R128_CRTC_VBLANK_INT (1 << 0)
-# define R128_CRTC_VBLANK_INT_AK (1 << 0)
-#define R128_GEN_RESET_CNTL 0x00f0
-# define R128_SOFT_RESET_GUI (1 << 0)
-
-#define R128_GUI_SCRATCH_REG0 0x15e0
-#define R128_GUI_SCRATCH_REG1 0x15e4
-#define R128_GUI_SCRATCH_REG2 0x15e8
-#define R128_GUI_SCRATCH_REG3 0x15ec
-#define R128_GUI_SCRATCH_REG4 0x15f0
-#define R128_GUI_SCRATCH_REG5 0x15f4
-
-#define R128_GUI_STAT 0x1740
-# define R128_GUI_FIFOCNT_MASK 0x0fff
-# define R128_GUI_ACTIVE (1 << 31)
-
-#define R128_MCLK_CNTL 0x000f
-# define R128_FORCE_GCP (1 << 16)
-# define R128_FORCE_PIPE3D_CP (1 << 17)
-# define R128_FORCE_RCP (1 << 18)
-
-#define R128_PC_GUI_CTLSTAT 0x1748
-#define R128_PC_NGUI_CTLSTAT 0x0184
-# define R128_PC_FLUSH_GUI (3 << 0)
-# define R128_PC_RI_GUI (1 << 2)
-# define R128_PC_FLUSH_ALL 0x00ff
-# define R128_PC_BUSY (1 << 31)
-
-#define R128_PCI_GART_PAGE 0x017c
-#define R128_PRIM_TEX_CNTL_C 0x1cb0
-
-#define R128_SCALE_3D_CNTL 0x1a00
-#define R128_SEC_TEX_CNTL_C 0x1d00
-#define R128_SEC_TEXTURE_BORDER_COLOR_C 0x1d3c
-#define R128_SETUP_CNTL 0x1bc4
-#define R128_STEN_REF_MASK_C 0x1d40
-
-#define R128_TEX_CNTL_C 0x1c9c
-# define R128_TEX_CACHE_FLUSH (1 << 23)
-
-#define R128_WAIT_UNTIL 0x1720
-# define R128_EVENT_CRTC_OFFSET (1 << 0)
-#define R128_WINDOW_XY_OFFSET 0x1bcc
-
-/* CCE registers
- */
-#define R128_PM4_BUFFER_OFFSET 0x0700
-#define R128_PM4_BUFFER_CNTL 0x0704
-# define R128_PM4_MASK (15 << 28)
-# define R128_PM4_NONPM4 (0 << 28)
-# define R128_PM4_192PIO (1 << 28)
-# define R128_PM4_192BM (2 << 28)
-# define R128_PM4_128PIO_64INDBM (3 << 28)
-# define R128_PM4_128BM_64INDBM (4 << 28)
-# define R128_PM4_64PIO_128INDBM (5 << 28)
-# define R128_PM4_64BM_128INDBM (6 << 28)
-# define R128_PM4_64PIO_64VCBM_64INDBM (7 << 28)
-# define R128_PM4_64BM_64VCBM_64INDBM (8U << 28)
-# define R128_PM4_64PIO_64VCPIO_64INDPIO (15U << 28)
-# define R128_PM4_BUFFER_CNTL_NOUPDATE (1 << 27)
-
-#define R128_PM4_BUFFER_WM_CNTL 0x0708
-# define R128_WMA_SHIFT 0
-# define R128_WMB_SHIFT 8
-# define R128_WMC_SHIFT 16
-# define R128_WB_WM_SHIFT 24
-
-#define R128_PM4_BUFFER_DL_RPTR_ADDR 0x070c
-#define R128_PM4_BUFFER_DL_RPTR 0x0710
-#define R128_PM4_BUFFER_DL_WPTR 0x0714
-# define R128_PM4_BUFFER_DL_DONE (1 << 31)
-
-#define R128_PM4_VC_FPU_SETUP 0x071c
-
-#define R128_PM4_IW_INDOFF 0x0738
-#define R128_PM4_IW_INDSIZE 0x073c
-
-#define R128_PM4_STAT 0x07b8
-# define R128_PM4_FIFOCNT_MASK 0x0fff
-# define R128_PM4_BUSY (1 << 16)
-# define R128_PM4_GUI_ACTIVE (1 << 31)
-
-#define R128_PM4_MICROCODE_ADDR 0x07d4
-#define R128_PM4_MICROCODE_RADDR 0x07d8
-#define R128_PM4_MICROCODE_DATAH 0x07dc
-#define R128_PM4_MICROCODE_DATAL 0x07e0
-
-#define R128_PM4_BUFFER_ADDR 0x07f0
-#define R128_PM4_MICRO_CNTL 0x07fc
-# define R128_PM4_MICRO_FREERUN (1 << 30)
-
-#define R128_PM4_FIFO_DATA_EVEN 0x1000
-#define R128_PM4_FIFO_DATA_ODD 0x1004
-
-/* CCE command packets
- */
-#define R128_CCE_PACKET0 0x00000000
-#define R128_CCE_PACKET1 0x40000000
-#define R128_CCE_PACKET2 0x80000000
-#define R128_CCE_PACKET3 0xC0000000
-# define R128_CNTL_HOSTDATA_BLT 0x00009400
-# define R128_CNTL_PAINT_MULTI 0x00009A00
-# define R128_CNTL_BITBLT_MULTI 0x00009B00
-# define R128_3D_RNDR_GEN_INDX_PRIM 0x00002300
-
-#define R128_CCE_PACKET_MASK 0xC0000000
-#define R128_CCE_PACKET_COUNT_MASK 0x3fff0000
-#define R128_CCE_PACKET0_REG_MASK 0x000007ff
-#define R128_CCE_PACKET1_REG0_MASK 0x000007ff
-#define R128_CCE_PACKET1_REG1_MASK 0x003ff800
-
-#define R128_CCE_VC_CNTL_PRIM_TYPE_NONE 0x00000000
-#define R128_CCE_VC_CNTL_PRIM_TYPE_POINT 0x00000001
-#define R128_CCE_VC_CNTL_PRIM_TYPE_LINE 0x00000002
-#define R128_CCE_VC_CNTL_PRIM_TYPE_POLY_LINE 0x00000003
-#define R128_CCE_VC_CNTL_PRIM_TYPE_TRI_LIST 0x00000004
-#define R128_CCE_VC_CNTL_PRIM_TYPE_TRI_FAN 0x00000005
-#define R128_CCE_VC_CNTL_PRIM_TYPE_TRI_STRIP 0x00000006
-#define R128_CCE_VC_CNTL_PRIM_TYPE_TRI_TYPE2 0x00000007
-#define R128_CCE_VC_CNTL_PRIM_WALK_IND 0x00000010
-#define R128_CCE_VC_CNTL_PRIM_WALK_LIST 0x00000020
-#define R128_CCE_VC_CNTL_PRIM_WALK_RING 0x00000030
-#define R128_CCE_VC_CNTL_NUM_SHIFT 16
-
-#define R128_DATATYPE_VQ 0
-#define R128_DATATYPE_CI4 1
-#define R128_DATATYPE_CI8 2
-#define R128_DATATYPE_ARGB1555 3
-#define R128_DATATYPE_RGB565 4
-#define R128_DATATYPE_RGB888 5
-#define R128_DATATYPE_ARGB8888 6
-#define R128_DATATYPE_RGB332 7
-#define R128_DATATYPE_Y8 8
-#define R128_DATATYPE_RGB8 9
-#define R128_DATATYPE_CI16 10
-#define R128_DATATYPE_YVYU422 11
-#define R128_DATATYPE_VYUY422 12
-#define R128_DATATYPE_AYUV444 14
-#define R128_DATATYPE_ARGB4444 15
-
-/* Constants */
-#define R128_AGP_OFFSET 0x02000000
-
-#define R128_WATERMARK_L 16
-#define R128_WATERMARK_M 8
-#define R128_WATERMARK_N 8
-#define R128_WATERMARK_K 128
-
-#define R128_MAX_USEC_TIMEOUT 100000 /* 100 ms */
-
-#define R128_LAST_FRAME_REG R128_GUI_SCRATCH_REG0
-#define R128_LAST_DISPATCH_REG R128_GUI_SCRATCH_REG1
-#define R128_MAX_VB_AGE 0x7fffffff
-#define R128_MAX_VB_VERTS (0xffff)
-
-#define R128_RING_HIGH_MARK 128
-
-#define R128_PERFORMANCE_BOXES 0
-
-#define R128_PCIGART_TABLE_SIZE 32768
-
-#define R128_READ(reg) readl(((void __iomem *)dev_priv->mmio->handle) + (reg))
-#define R128_WRITE(reg, val) writel(val, ((void __iomem *)dev_priv->mmio->handle) + (reg))
-#define R128_READ8(reg) readb(((void __iomem *)dev_priv->mmio->handle) + (reg))
-#define R128_WRITE8(reg, val) writeb(val, ((void __iomem *)dev_priv->mmio->handle) + (reg))
-
-#define R128_WRITE_PLL(addr, val) \
-do { \
- R128_WRITE8(R128_CLOCK_CNTL_INDEX, \
- ((addr) & 0x1f) | R128_PLL_WR_EN); \
- R128_WRITE(R128_CLOCK_CNTL_DATA, (val)); \
-} while (0)
-
-#define CCE_PACKET0(reg, n) (R128_CCE_PACKET0 | \
- ((n) << 16) | ((reg) >> 2))
-#define CCE_PACKET1(reg0, reg1) (R128_CCE_PACKET1 | \
- (((reg1) >> 2) << 11) | ((reg0) >> 2))
-#define CCE_PACKET2() (R128_CCE_PACKET2)
-#define CCE_PACKET3(pkt, n) (R128_CCE_PACKET3 | \
- (pkt) | ((n) << 16))
-
-static __inline__ void r128_update_ring_snapshot(drm_r128_private_t *dev_priv)
-{
- drm_r128_ring_buffer_t *ring = &dev_priv->ring;
- ring->space = (GET_RING_HEAD(dev_priv) - ring->tail) * sizeof(u32);
- if (ring->space <= 0)
- ring->space += ring->size;
-}
-
-/* ================================================================
- * Misc helper macros
- */
-
-#define DEV_INIT_TEST_WITH_RETURN(_dev_priv) \
-do { \
- if (!_dev_priv) { \
- DRM_ERROR("called with no initialization\n"); \
- return -EINVAL; \
- } \
-} while (0)
-
-#define RING_SPACE_TEST_WITH_RETURN(dev_priv) \
-do { \
- drm_r128_ring_buffer_t *ring = &dev_priv->ring; int i; \
- if (ring->space < ring->high_mark) { \
- for (i = 0 ; i < dev_priv->usec_timeout ; i++) { \
- r128_update_ring_snapshot(dev_priv); \
- if (ring->space >= ring->high_mark) \
- goto __ring_space_done; \
- udelay(1); \
- } \
- DRM_ERROR("ring space check failed!\n"); \
- return -EBUSY; \
- } \
- __ring_space_done: \
- ; \
-} while (0)
-
-#define VB_AGE_TEST_WITH_RETURN(dev_priv) \
-do { \
- drm_r128_sarea_t *sarea_priv = dev_priv->sarea_priv; \
- if (sarea_priv->last_dispatch >= R128_MAX_VB_AGE) { \
- int __ret = r128_do_cce_idle(dev_priv); \
- if (__ret) \
- return __ret; \
- sarea_priv->last_dispatch = 0; \
- r128_freelist_reset(dev); \
- } \
-} while (0)
-
-#define R128_WAIT_UNTIL_PAGE_FLIPPED() do { \
- OUT_RING(CCE_PACKET0(R128_WAIT_UNTIL, 0)); \
- OUT_RING(R128_EVENT_CRTC_OFFSET); \
-} while (0)
-
-/* ================================================================
- * Ring control
- */
-
-#define R128_VERBOSE 0
-
-#define RING_LOCALS \
- int write, _nr; unsigned int tail_mask; volatile u32 *ring;
-
-#define BEGIN_RING(n) do { \
- if (R128_VERBOSE) \
- DRM_INFO("BEGIN_RING(%d)\n", (n)); \
- if (dev_priv->ring.space <= (n) * sizeof(u32)) { \
- COMMIT_RING(); \
- r128_wait_ring(dev_priv, (n) * sizeof(u32)); \
- } \
- _nr = n; dev_priv->ring.space -= (n) * sizeof(u32); \
- ring = dev_priv->ring.start; \
- write = dev_priv->ring.tail; \
- tail_mask = dev_priv->ring.tail_mask; \
-} while (0)
-
-/* You can set this to zero if you want. If the card locks up, you'll
- * need to keep this set. It works around a bug in early revs of the
- * Rage 128 chipset, where the CCE would read 32 dwords past the end of
- * the ring buffer before wrapping around.
- */
-#define R128_BROKEN_CCE 1
-
-#define ADVANCE_RING() do { \
- if (R128_VERBOSE) \
- DRM_INFO("ADVANCE_RING() wr=0x%06x tail=0x%06x\n", \
- write, dev_priv->ring.tail); \
- if (R128_BROKEN_CCE && write < 32) \
- memcpy(dev_priv->ring.end, \
- dev_priv->ring.start, \
- write * sizeof(u32)); \
- if (((dev_priv->ring.tail + _nr) & tail_mask) != write) \
- DRM_ERROR( \
- "ADVANCE_RING(): mismatch: nr: %x write: %x line: %d\n", \
- ((dev_priv->ring.tail + _nr) & tail_mask), \
- write, __LINE__); \
- else \
- dev_priv->ring.tail = write; \
-} while (0)
-
-#define COMMIT_RING() do { \
- if (R128_VERBOSE) \
- DRM_INFO("COMMIT_RING() tail=0x%06x\n", \
- dev_priv->ring.tail); \
- mb(); \
- R128_WRITE(R128_PM4_BUFFER_DL_WPTR, dev_priv->ring.tail); \
- R128_READ(R128_PM4_BUFFER_DL_WPTR); \
-} while (0)
-
-#define OUT_RING(x) do { \
- if (R128_VERBOSE) \
- DRM_INFO(" OUT_RING( 0x%08x ) at 0x%x\n", \
- (unsigned int)(x), write); \
- ring[write++] = cpu_to_le32(x); \
- write &= tail_mask; \
-} while (0)
-
-#endif /* __R128_DRV_H__ */
diff --git a/drivers/gpu/drm/r128/r128_ioc32.c b/drivers/gpu/drm/r128/r128_ioc32.c
deleted file mode 100644
index cdeb1db87222..000000000000
--- a/drivers/gpu/drm/r128/r128_ioc32.c
+++ /dev/null
@@ -1,199 +0,0 @@
-/*
- * \file r128_ioc32.c
- *
- * 32-bit ioctl compatibility routines for the R128 DRM.
- *
- * \author Dave Airlie <airlied@linux.ie> with code from patches by Egbert Eich
- *
- * Copyright (C) Paul Mackerras 2005
- * Copyright (C) Egbert Eich 2003,2004
- * Copyright (C) Dave Airlie 2005
- * All Rights Reserved.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice (including the next
- * paragraph) shall be included in all copies or substantial portions of the
- * Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * THE AUTHOR BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY,
- * WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
- * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS
- * IN THE SOFTWARE.
- */
-
-#include <linux/compat.h>
-
-#include <drm/r128_drm.h>
-
-#include "r128_drv.h"
-
-typedef struct drm_r128_init32 {
- int func;
- unsigned int sarea_priv_offset;
- int is_pci;
- int cce_mode;
- int cce_secure;
- int ring_size;
- int usec_timeout;
-
- unsigned int fb_bpp;
- unsigned int front_offset, front_pitch;
- unsigned int back_offset, back_pitch;
- unsigned int depth_bpp;
- unsigned int depth_offset, depth_pitch;
- unsigned int span_offset;
-
- unsigned int fb_offset;
- unsigned int mmio_offset;
- unsigned int ring_offset;
- unsigned int ring_rptr_offset;
- unsigned int buffers_offset;
- unsigned int agp_textures_offset;
-} drm_r128_init32_t;
-
-static int compat_r128_init(struct file *file, unsigned int cmd,
- unsigned long arg)
-{
- drm_r128_init32_t init32;
- drm_r128_init_t init;
-
- if (copy_from_user(&init32, (void __user *)arg, sizeof(init32)))
- return -EFAULT;
-
- init.func = init32.func;
- init.sarea_priv_offset = init32.sarea_priv_offset;
- init.is_pci = init32.is_pci;
- init.cce_mode = init32.cce_mode;
- init.cce_secure = init32.cce_secure;
- init.ring_size = init32.ring_size;
- init.usec_timeout = init32.usec_timeout;
- init.fb_bpp = init32.fb_bpp;
- init.front_offset = init32.front_offset;
- init.front_pitch = init32.front_pitch;
- init.back_offset = init32.back_offset;
- init.back_pitch = init32.back_pitch;
- init.depth_bpp = init32.depth_bpp;
- init.depth_offset = init32.depth_offset;
- init.depth_pitch = init32.depth_pitch;
- init.span_offset = init32.span_offset;
- init.fb_offset = init32.fb_offset;
- init.mmio_offset = init32.mmio_offset;
- init.ring_offset = init32.ring_offset;
- init.ring_rptr_offset = init32.ring_rptr_offset;
- init.buffers_offset = init32.buffers_offset;
- init.agp_textures_offset = init32.agp_textures_offset;
-
- return drm_ioctl_kernel(file, r128_cce_init, &init,
- DRM_AUTH|DRM_MASTER|DRM_ROOT_ONLY);
-}
-
-typedef struct drm_r128_depth32 {
- int func;
- int n;
- u32 x;
- u32 y;
- u32 buffer;
- u32 mask;
-} drm_r128_depth32_t;
-
-static int compat_r128_depth(struct file *file, unsigned int cmd,
- unsigned long arg)
-{
- drm_r128_depth32_t depth32;
- drm_r128_depth_t depth;
-
- if (copy_from_user(&depth32, (void __user *)arg, sizeof(depth32)))
- return -EFAULT;
-
- depth.func = depth32.func;
- depth.n = depth32.n;
- depth.x = compat_ptr(depth32.x);
- depth.y = compat_ptr(depth32.y);
- depth.buffer = compat_ptr(depth32.buffer);
- depth.mask = compat_ptr(depth32.mask);
-
- return drm_ioctl_kernel(file, r128_cce_depth, &depth, DRM_AUTH);
-}
-
-typedef struct drm_r128_stipple32 {
- u32 mask;
-} drm_r128_stipple32_t;
-
-static int compat_r128_stipple(struct file *file, unsigned int cmd,
- unsigned long arg)
-{
- drm_r128_stipple32_t stipple32;
- drm_r128_stipple_t stipple;
-
- if (copy_from_user(&stipple32, (void __user *)arg, sizeof(stipple32)))
- return -EFAULT;
-
- stipple.mask = compat_ptr(stipple32.mask);
-
- return drm_ioctl_kernel(file, r128_cce_stipple, &stipple, DRM_AUTH);
-}
-
-typedef struct drm_r128_getparam32 {
- int param;
- u32 value;
-} drm_r128_getparam32_t;
-
-static int compat_r128_getparam(struct file *file, unsigned int cmd,
- unsigned long arg)
-{
- drm_r128_getparam32_t getparam32;
- drm_r128_getparam_t getparam;
-
- if (copy_from_user(&getparam32, (void __user *)arg, sizeof(getparam32)))
- return -EFAULT;
-
- getparam.param = getparam32.param;
- getparam.value = compat_ptr(getparam32.value);
-
- return drm_ioctl_kernel(file, r128_getparam, &getparam, DRM_AUTH);
-}
-
-drm_ioctl_compat_t *r128_compat_ioctls[] = {
- [DRM_R128_INIT] = compat_r128_init,
- [DRM_R128_DEPTH] = compat_r128_depth,
- [DRM_R128_STIPPLE] = compat_r128_stipple,
- [DRM_R128_GETPARAM] = compat_r128_getparam,
-};
-
-/**
- * r128_compat_ioctl - Called whenever a 32-bit process running under
- * a 64-bit kernel performs an ioctl on /dev/dri/card<n>.
- *
- * @filp: file pointer.
- * @cmd: command.
- * @arg: user argument.
- * return: zero on success or negative number on failure.
- */
-long r128_compat_ioctl(struct file *filp, unsigned int cmd, unsigned long arg)
-{
- unsigned int nr = DRM_IOCTL_NR(cmd);
- drm_ioctl_compat_t *fn = NULL;
- int ret;
-
- if (nr < DRM_COMMAND_BASE)
- return drm_compat_ioctl(filp, cmd, arg);
-
- if (nr < DRM_COMMAND_BASE + ARRAY_SIZE(r128_compat_ioctls))
- fn = r128_compat_ioctls[nr - DRM_COMMAND_BASE];
-
- if (fn != NULL)
- ret = (*fn) (filp, cmd, arg);
- else
- ret = drm_ioctl(filp, cmd, arg);
-
- return ret;
-}
diff --git a/drivers/gpu/drm/r128/r128_irq.c b/drivers/gpu/drm/r128/r128_irq.c
deleted file mode 100644
index d84e9c96e20a..000000000000
--- a/drivers/gpu/drm/r128/r128_irq.c
+++ /dev/null
@@ -1,118 +0,0 @@
-/* r128_irq.c -- IRQ handling for radeon -*- linux-c -*- */
-/*
- * Copyright (C) The Weather Channel, Inc. 2002. All Rights Reserved.
- *
- * The Weather Channel (TM) funded Tungsten Graphics to develop the
- * initial release of the Radeon 8500 driver under the XFree86 license.
- * This notice must be preserved.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice (including the next
- * paragraph) shall be included in all copies or substantial portions of the
- * Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * PRECISION INSIGHT AND/OR ITS SUPPLIERS BE LIABLE FOR ANY CLAIM, DAMAGES OR
- * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
- * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
- * DEALINGS IN THE SOFTWARE.
- *
- * Authors:
- * Keith Whitwell <keith@tungstengraphics.com>
- * Eric Anholt <anholt@FreeBSD.org>
- */
-
-#include <drm/drm_device.h>
-#include <drm/drm_print.h>
-#include <drm/drm_vblank.h>
-#include <drm/r128_drm.h>
-
-#include "r128_drv.h"
-
-u32 r128_get_vblank_counter(struct drm_device *dev, unsigned int pipe)
-{
- const drm_r128_private_t *dev_priv = dev->dev_private;
-
- if (pipe != 0)
- return 0;
-
- return atomic_read(&dev_priv->vbl_received);
-}
-
-irqreturn_t r128_driver_irq_handler(int irq, void *arg)
-{
- struct drm_device *dev = (struct drm_device *) arg;
- drm_r128_private_t *dev_priv = (drm_r128_private_t *) dev->dev_private;
- int status;
-
- status = R128_READ(R128_GEN_INT_STATUS);
-
- /* VBLANK interrupt */
- if (status & R128_CRTC_VBLANK_INT) {
- R128_WRITE(R128_GEN_INT_STATUS, R128_CRTC_VBLANK_INT_AK);
- atomic_inc(&dev_priv->vbl_received);
- drm_handle_vblank(dev, 0);
- return IRQ_HANDLED;
- }
- return IRQ_NONE;
-}
-
-int r128_enable_vblank(struct drm_device *dev, unsigned int pipe)
-{
- drm_r128_private_t *dev_priv = dev->dev_private;
-
- if (pipe != 0) {
- DRM_ERROR("%s: bad crtc %u\n", __func__, pipe);
- return -EINVAL;
- }
-
- R128_WRITE(R128_GEN_INT_CNTL, R128_CRTC_VBLANK_INT_EN);
- return 0;
-}
-
-void r128_disable_vblank(struct drm_device *dev, unsigned int pipe)
-{
- if (pipe != 0)
- DRM_ERROR("%s: bad crtc %u\n", __func__, pipe);
-
- /*
- * FIXME: implement proper interrupt disable by using the vblank
- * counter register (if available)
- *
- * R128_WRITE(R128_GEN_INT_CNTL,
- * R128_READ(R128_GEN_INT_CNTL) & ~R128_CRTC_VBLANK_INT_EN);
- */
-}
-
-void r128_driver_irq_preinstall(struct drm_device *dev)
-{
- drm_r128_private_t *dev_priv = (drm_r128_private_t *) dev->dev_private;
-
- /* Disable *all* interrupts */
- R128_WRITE(R128_GEN_INT_CNTL, 0);
- /* Clear vblank bit if it's already high */
- R128_WRITE(R128_GEN_INT_STATUS, R128_CRTC_VBLANK_INT_AK);
-}
-
-int r128_driver_irq_postinstall(struct drm_device *dev)
-{
- return 0;
-}
-
-void r128_driver_irq_uninstall(struct drm_device *dev)
-{
- drm_r128_private_t *dev_priv = (drm_r128_private_t *) dev->dev_private;
- if (!dev_priv)
- return;
-
- /* Disable *all* interrupts */
- R128_WRITE(R128_GEN_INT_CNTL, 0);
-}
diff --git a/drivers/gpu/drm/r128/r128_state.c b/drivers/gpu/drm/r128/r128_state.c
deleted file mode 100644
index ac13fc2a0214..000000000000
--- a/drivers/gpu/drm/r128/r128_state.c
+++ /dev/null
@@ -1,1641 +0,0 @@
-/* r128_state.c -- State support for r128 -*- linux-c -*-
- * Created: Thu Jan 27 02:53:43 2000 by gareth@valinux.com
- */
-/*
- * Copyright 2000 VA Linux Systems, Inc., Sunnyvale, California.
- * All Rights Reserved.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice (including the next
- * paragraph) shall be included in all copies or substantial portions of the
- * Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * PRECISION INSIGHT AND/OR ITS SUPPLIERS BE LIABLE FOR ANY CLAIM, DAMAGES OR
- * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
- * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
- * DEALINGS IN THE SOFTWARE.
- *
- * Authors:
- * Gareth Hughes <gareth@valinux.com>
- */
-
-#include <linux/pci.h>
-#include <linux/slab.h>
-#include <linux/uaccess.h>
-
-#include <drm/drm_device.h>
-#include <drm/drm_file.h>
-#include <drm/drm_print.h>
-#include <drm/r128_drm.h>
-
-#include "r128_drv.h"
-
-/* ================================================================
- * CCE hardware state programming functions
- */
-
-static void r128_emit_clip_rects(drm_r128_private_t *dev_priv,
- struct drm_clip_rect *boxes, int count)
-{
- u32 aux_sc_cntl = 0x00000000;
- RING_LOCALS;
- DRM_DEBUG("\n");
-
- BEGIN_RING((count < 3 ? count : 3) * 5 + 2);
-
- if (count >= 1) {
- OUT_RING(CCE_PACKET0(R128_AUX1_SC_LEFT, 3));
- OUT_RING(boxes[0].x1);
- OUT_RING(boxes[0].x2 - 1);
- OUT_RING(boxes[0].y1);
- OUT_RING(boxes[0].y2 - 1);
-
- aux_sc_cntl |= (R128_AUX1_SC_EN | R128_AUX1_SC_MODE_OR);
- }
- if (count >= 2) {
- OUT_RING(CCE_PACKET0(R128_AUX2_SC_LEFT, 3));
- OUT_RING(boxes[1].x1);
- OUT_RING(boxes[1].x2 - 1);
- OUT_RING(boxes[1].y1);
- OUT_RING(boxes[1].y2 - 1);
-
- aux_sc_cntl |= (R128_AUX2_SC_EN | R128_AUX2_SC_MODE_OR);
- }
- if (count >= 3) {
- OUT_RING(CCE_PACKET0(R128_AUX3_SC_LEFT, 3));
- OUT_RING(boxes[2].x1);
- OUT_RING(boxes[2].x2 - 1);
- OUT_RING(boxes[2].y1);
- OUT_RING(boxes[2].y2 - 1);
-
- aux_sc_cntl |= (R128_AUX3_SC_EN | R128_AUX3_SC_MODE_OR);
- }
-
- OUT_RING(CCE_PACKET0(R128_AUX_SC_CNTL, 0));
- OUT_RING(aux_sc_cntl);
-
- ADVANCE_RING();
-}
-
-static __inline__ void r128_emit_core(drm_r128_private_t *dev_priv)
-{
- drm_r128_sarea_t *sarea_priv = dev_priv->sarea_priv;
- drm_r128_context_regs_t *ctx = &sarea_priv->context_state;
- RING_LOCALS;
- DRM_DEBUG("\n");
-
- BEGIN_RING(2);
-
- OUT_RING(CCE_PACKET0(R128_SCALE_3D_CNTL, 0));
- OUT_RING(ctx->scale_3d_cntl);
-
- ADVANCE_RING();
-}
-
-static __inline__ void r128_emit_context(drm_r128_private_t *dev_priv)
-{
- drm_r128_sarea_t *sarea_priv = dev_priv->sarea_priv;
- drm_r128_context_regs_t *ctx = &sarea_priv->context_state;
- RING_LOCALS;
- DRM_DEBUG("\n");
-
- BEGIN_RING(13);
-
- OUT_RING(CCE_PACKET0(R128_DST_PITCH_OFFSET_C, 11));
- OUT_RING(ctx->dst_pitch_offset_c);
- OUT_RING(ctx->dp_gui_master_cntl_c);
- OUT_RING(ctx->sc_top_left_c);
- OUT_RING(ctx->sc_bottom_right_c);
- OUT_RING(ctx->z_offset_c);
- OUT_RING(ctx->z_pitch_c);
- OUT_RING(ctx->z_sten_cntl_c);
- OUT_RING(ctx->tex_cntl_c);
- OUT_RING(ctx->misc_3d_state_cntl_reg);
- OUT_RING(ctx->texture_clr_cmp_clr_c);
- OUT_RING(ctx->texture_clr_cmp_msk_c);
- OUT_RING(ctx->fog_color_c);
-
- ADVANCE_RING();
-}
-
-static __inline__ void r128_emit_setup(drm_r128_private_t *dev_priv)
-{
- drm_r128_sarea_t *sarea_priv = dev_priv->sarea_priv;
- drm_r128_context_regs_t *ctx = &sarea_priv->context_state;
- RING_LOCALS;
- DRM_DEBUG("\n");
-
- BEGIN_RING(3);
-
- OUT_RING(CCE_PACKET1(R128_SETUP_CNTL, R128_PM4_VC_FPU_SETUP));
- OUT_RING(ctx->setup_cntl);
- OUT_RING(ctx->pm4_vc_fpu_setup);
-
- ADVANCE_RING();
-}
-
-static __inline__ void r128_emit_masks(drm_r128_private_t *dev_priv)
-{
- drm_r128_sarea_t *sarea_priv = dev_priv->sarea_priv;
- drm_r128_context_regs_t *ctx = &sarea_priv->context_state;
- RING_LOCALS;
- DRM_DEBUG("\n");
-
- BEGIN_RING(5);
-
- OUT_RING(CCE_PACKET0(R128_DP_WRITE_MASK, 0));
- OUT_RING(ctx->dp_write_mask);
-
- OUT_RING(CCE_PACKET0(R128_STEN_REF_MASK_C, 1));
- OUT_RING(ctx->sten_ref_mask_c);
- OUT_RING(ctx->plane_3d_mask_c);
-
- ADVANCE_RING();
-}
-
-static __inline__ void r128_emit_window(drm_r128_private_t *dev_priv)
-{
- drm_r128_sarea_t *sarea_priv = dev_priv->sarea_priv;
- drm_r128_context_regs_t *ctx = &sarea_priv->context_state;
- RING_LOCALS;
- DRM_DEBUG("\n");
-
- BEGIN_RING(2);
-
- OUT_RING(CCE_PACKET0(R128_WINDOW_XY_OFFSET, 0));
- OUT_RING(ctx->window_xy_offset);
-
- ADVANCE_RING();
-}
-
-static __inline__ void r128_emit_tex0(drm_r128_private_t *dev_priv)
-{
- drm_r128_sarea_t *sarea_priv = dev_priv->sarea_priv;
- drm_r128_context_regs_t *ctx = &sarea_priv->context_state;
- drm_r128_texture_regs_t *tex = &sarea_priv->tex_state[0];
- int i;
- RING_LOCALS;
- DRM_DEBUG("\n");
-
- BEGIN_RING(7 + R128_MAX_TEXTURE_LEVELS);
-
- OUT_RING(CCE_PACKET0(R128_PRIM_TEX_CNTL_C,
- 2 + R128_MAX_TEXTURE_LEVELS));
- OUT_RING(tex->tex_cntl);
- OUT_RING(tex->tex_combine_cntl);
- OUT_RING(ctx->tex_size_pitch_c);
- for (i = 0; i < R128_MAX_TEXTURE_LEVELS; i++)
- OUT_RING(tex->tex_offset[i]);
-
- OUT_RING(CCE_PACKET0(R128_CONSTANT_COLOR_C, 1));
- OUT_RING(ctx->constant_color_c);
- OUT_RING(tex->tex_border_color);
-
- ADVANCE_RING();
-}
-
-static __inline__ void r128_emit_tex1(drm_r128_private_t *dev_priv)
-{
- drm_r128_sarea_t *sarea_priv = dev_priv->sarea_priv;
- drm_r128_texture_regs_t *tex = &sarea_priv->tex_state[1];
- int i;
- RING_LOCALS;
- DRM_DEBUG("\n");
-
- BEGIN_RING(5 + R128_MAX_TEXTURE_LEVELS);
-
- OUT_RING(CCE_PACKET0(R128_SEC_TEX_CNTL_C, 1 + R128_MAX_TEXTURE_LEVELS));
- OUT_RING(tex->tex_cntl);
- OUT_RING(tex->tex_combine_cntl);
- for (i = 0; i < R128_MAX_TEXTURE_LEVELS; i++)
- OUT_RING(tex->tex_offset[i]);
-
- OUT_RING(CCE_PACKET0(R128_SEC_TEXTURE_BORDER_COLOR_C, 0));
- OUT_RING(tex->tex_border_color);
-
- ADVANCE_RING();
-}
-
-static void r128_emit_state(drm_r128_private_t *dev_priv)
-{
- drm_r128_sarea_t *sarea_priv = dev_priv->sarea_priv;
- unsigned int dirty = sarea_priv->dirty;
-
- DRM_DEBUG("dirty=0x%08x\n", dirty);
-
- if (dirty & R128_UPLOAD_CORE) {
- r128_emit_core(dev_priv);
- sarea_priv->dirty &= ~R128_UPLOAD_CORE;
- }
-
- if (dirty & R128_UPLOAD_CONTEXT) {
- r128_emit_context(dev_priv);
- sarea_priv->dirty &= ~R128_UPLOAD_CONTEXT;
- }
-
- if (dirty & R128_UPLOAD_SETUP) {
- r128_emit_setup(dev_priv);
- sarea_priv->dirty &= ~R128_UPLOAD_SETUP;
- }
-
- if (dirty & R128_UPLOAD_MASKS) {
- r128_emit_masks(dev_priv);
- sarea_priv->dirty &= ~R128_UPLOAD_MASKS;
- }
-
- if (dirty & R128_UPLOAD_WINDOW) {
- r128_emit_window(dev_priv);
- sarea_priv->dirty &= ~R128_UPLOAD_WINDOW;
- }
-
- if (dirty & R128_UPLOAD_TEX0) {
- r128_emit_tex0(dev_priv);
- sarea_priv->dirty &= ~R128_UPLOAD_TEX0;
- }
-
- if (dirty & R128_UPLOAD_TEX1) {
- r128_emit_tex1(dev_priv);
- sarea_priv->dirty &= ~R128_UPLOAD_TEX1;
- }
-
- /* Turn off the texture cache flushing */
- sarea_priv->context_state.tex_cntl_c &= ~R128_TEX_CACHE_FLUSH;
-
- sarea_priv->dirty &= ~R128_REQUIRE_QUIESCENCE;
-}
-
-#if R128_PERFORMANCE_BOXES
-/* ================================================================
- * Performance monitoring functions
- */
-
-static void r128_clear_box(drm_r128_private_t *dev_priv,
- int x, int y, int w, int h, int r, int g, int b)
-{
- u32 pitch, offset;
- u32 fb_bpp, color;
- RING_LOCALS;
-
- switch (dev_priv->fb_bpp) {
- case 16:
- fb_bpp = R128_GMC_DST_16BPP;
- color = (((r & 0xf8) << 8) |
- ((g & 0xfc) << 3) | ((b & 0xf8) >> 3));
- break;
- case 24:
- fb_bpp = R128_GMC_DST_24BPP;
- color = ((r << 16) | (g << 8) | b);
- break;
- case 32:
- fb_bpp = R128_GMC_DST_32BPP;
- color = (((0xff) << 24) | (r << 16) | (g << 8) | b);
- break;
- default:
- return;
- }
-
- offset = dev_priv->back_offset;
- pitch = dev_priv->back_pitch >> 3;
-
- BEGIN_RING(6);
-
- OUT_RING(CCE_PACKET3(R128_CNTL_PAINT_MULTI, 4));
- OUT_RING(R128_GMC_DST_PITCH_OFFSET_CNTL |
- R128_GMC_BRUSH_SOLID_COLOR |
- fb_bpp |
- R128_GMC_SRC_DATATYPE_COLOR |
- R128_ROP3_P |
- R128_GMC_CLR_CMP_CNTL_DIS | R128_GMC_AUX_CLIP_DIS);
-
- OUT_RING((pitch << 21) | (offset >> 5));
- OUT_RING(color);
-
- OUT_RING((x << 16) | y);
- OUT_RING((w << 16) | h);
-
- ADVANCE_RING();
-}
-
-static void r128_cce_performance_boxes(drm_r128_private_t *dev_priv)
-{
- if (atomic_read(&dev_priv->idle_count) == 0)
- r128_clear_box(dev_priv, 64, 4, 8, 8, 0, 255, 0);
- else
- atomic_set(&dev_priv->idle_count, 0);
-}
-
-#endif
-
-/* ================================================================
- * CCE command dispatch functions
- */
-
-static void r128_print_dirty(const char *msg, unsigned int flags)
-{
- DRM_INFO("%s: (0x%x) %s%s%s%s%s%s%s%s%s\n",
- msg,
- flags,
- (flags & R128_UPLOAD_CORE) ? "core, " : "",
- (flags & R128_UPLOAD_CONTEXT) ? "context, " : "",
- (flags & R128_UPLOAD_SETUP) ? "setup, " : "",
- (flags & R128_UPLOAD_TEX0) ? "tex0, " : "",
- (flags & R128_UPLOAD_TEX1) ? "tex1, " : "",
- (flags & R128_UPLOAD_MASKS) ? "masks, " : "",
- (flags & R128_UPLOAD_WINDOW) ? "window, " : "",
- (flags & R128_UPLOAD_CLIPRECTS) ? "cliprects, " : "",
- (flags & R128_REQUIRE_QUIESCENCE) ? "quiescence, " : "");
-}
-
-static void r128_cce_dispatch_clear(struct drm_device *dev,
- drm_r128_clear_t *clear)
-{
- drm_r128_private_t *dev_priv = dev->dev_private;
- drm_r128_sarea_t *sarea_priv = dev_priv->sarea_priv;
- int nbox = sarea_priv->nbox;
- struct drm_clip_rect *pbox = sarea_priv->boxes;
- unsigned int flags = clear->flags;
- int i;
- RING_LOCALS;
- DRM_DEBUG("\n");
-
- if (dev_priv->page_flipping && dev_priv->current_page == 1) {
- unsigned int tmp = flags;
-
- flags &= ~(R128_FRONT | R128_BACK);
- if (tmp & R128_FRONT)
- flags |= R128_BACK;
- if (tmp & R128_BACK)
- flags |= R128_FRONT;
- }
-
- for (i = 0; i < nbox; i++) {
- int x = pbox[i].x1;
- int y = pbox[i].y1;
- int w = pbox[i].x2 - x;
- int h = pbox[i].y2 - y;
-
- DRM_DEBUG("dispatch clear %d,%d-%d,%d flags 0x%x\n",
- pbox[i].x1, pbox[i].y1, pbox[i].x2,
- pbox[i].y2, flags);
-
- if (flags & (R128_FRONT | R128_BACK)) {
- BEGIN_RING(2);
-
- OUT_RING(CCE_PACKET0(R128_DP_WRITE_MASK, 0));
- OUT_RING(clear->color_mask);
-
- ADVANCE_RING();
- }
-
- if (flags & R128_FRONT) {
- BEGIN_RING(6);
-
- OUT_RING(CCE_PACKET3(R128_CNTL_PAINT_MULTI, 4));
- OUT_RING(R128_GMC_DST_PITCH_OFFSET_CNTL |
- R128_GMC_BRUSH_SOLID_COLOR |
- (dev_priv->color_fmt << 8) |
- R128_GMC_SRC_DATATYPE_COLOR |
- R128_ROP3_P |
- R128_GMC_CLR_CMP_CNTL_DIS |
- R128_GMC_AUX_CLIP_DIS);
-
- OUT_RING(dev_priv->front_pitch_offset_c);
- OUT_RING(clear->clear_color);
-
- OUT_RING((x << 16) | y);
- OUT_RING((w << 16) | h);
-
- ADVANCE_RING();
- }
-
- if (flags & R128_BACK) {
- BEGIN_RING(6);
-
- OUT_RING(CCE_PACKET3(R128_CNTL_PAINT_MULTI, 4));
- OUT_RING(R128_GMC_DST_PITCH_OFFSET_CNTL |
- R128_GMC_BRUSH_SOLID_COLOR |
- (dev_priv->color_fmt << 8) |
- R128_GMC_SRC_DATATYPE_COLOR |
- R128_ROP3_P |
- R128_GMC_CLR_CMP_CNTL_DIS |
- R128_GMC_AUX_CLIP_DIS);
-
- OUT_RING(dev_priv->back_pitch_offset_c);
- OUT_RING(clear->clear_color);
-
- OUT_RING((x << 16) | y);
- OUT_RING((w << 16) | h);
-
- ADVANCE_RING();
- }
-
- if (flags & R128_DEPTH) {
- BEGIN_RING(6);
-
- OUT_RING(CCE_PACKET3(R128_CNTL_PAINT_MULTI, 4));
- OUT_RING(R128_GMC_DST_PITCH_OFFSET_CNTL |
- R128_GMC_BRUSH_SOLID_COLOR |
- (dev_priv->depth_fmt << 8) |
- R128_GMC_SRC_DATATYPE_COLOR |
- R128_ROP3_P |
- R128_GMC_CLR_CMP_CNTL_DIS |
- R128_GMC_AUX_CLIP_DIS | R128_GMC_WR_MSK_DIS);
-
- OUT_RING(dev_priv->depth_pitch_offset_c);
- OUT_RING(clear->clear_depth);
-
- OUT_RING((x << 16) | y);
- OUT_RING((w << 16) | h);
-
- ADVANCE_RING();
- }
- }
-}
-
-static void r128_cce_dispatch_swap(struct drm_device *dev)
-{
- drm_r128_private_t *dev_priv = dev->dev_private;
- drm_r128_sarea_t *sarea_priv = dev_priv->sarea_priv;
- int nbox = sarea_priv->nbox;
- struct drm_clip_rect *pbox = sarea_priv->boxes;
- int i;
- RING_LOCALS;
- DRM_DEBUG("\n");
-
-#if R128_PERFORMANCE_BOXES
- /* Do some trivial performance monitoring...
- */
- r128_cce_performance_boxes(dev_priv);
-#endif
-
- for (i = 0; i < nbox; i++) {
- int x = pbox[i].x1;
- int y = pbox[i].y1;
- int w = pbox[i].x2 - x;
- int h = pbox[i].y2 - y;
-
- BEGIN_RING(7);
-
- OUT_RING(CCE_PACKET3(R128_CNTL_BITBLT_MULTI, 5));
- OUT_RING(R128_GMC_SRC_PITCH_OFFSET_CNTL |
- R128_GMC_DST_PITCH_OFFSET_CNTL |
- R128_GMC_BRUSH_NONE |
- (dev_priv->color_fmt << 8) |
- R128_GMC_SRC_DATATYPE_COLOR |
- R128_ROP3_S |
- R128_DP_SRC_SOURCE_MEMORY |
- R128_GMC_CLR_CMP_CNTL_DIS |
- R128_GMC_AUX_CLIP_DIS | R128_GMC_WR_MSK_DIS);
-
- /* Make this work even if front & back are flipped:
- */
- if (dev_priv->current_page == 0) {
- OUT_RING(dev_priv->back_pitch_offset_c);
- OUT_RING(dev_priv->front_pitch_offset_c);
- } else {
- OUT_RING(dev_priv->front_pitch_offset_c);
- OUT_RING(dev_priv->back_pitch_offset_c);
- }
-
- OUT_RING((x << 16) | y);
- OUT_RING((x << 16) | y);
- OUT_RING((w << 16) | h);
-
- ADVANCE_RING();
- }
-
- /* Increment the frame counter. The client-side 3D driver must
- * throttle the framerate by waiting for this value before
- * performing the swapbuffer ioctl.
- */
- dev_priv->sarea_priv->last_frame++;
-
- BEGIN_RING(2);
-
- OUT_RING(CCE_PACKET0(R128_LAST_FRAME_REG, 0));
- OUT_RING(dev_priv->sarea_priv->last_frame);
-
- ADVANCE_RING();
-}
-
-static void r128_cce_dispatch_flip(struct drm_device *dev)
-{
- drm_r128_private_t *dev_priv = dev->dev_private;
- RING_LOCALS;
- DRM_DEBUG("page=%d pfCurrentPage=%d\n",
- dev_priv->current_page, dev_priv->sarea_priv->pfCurrentPage);
-
-#if R128_PERFORMANCE_BOXES
- /* Do some trivial performance monitoring...
- */
- r128_cce_performance_boxes(dev_priv);
-#endif
-
- BEGIN_RING(4);
-
- R128_WAIT_UNTIL_PAGE_FLIPPED();
- OUT_RING(CCE_PACKET0(R128_CRTC_OFFSET, 0));
-
- if (dev_priv->current_page == 0)
- OUT_RING(dev_priv->back_offset);
- else
- OUT_RING(dev_priv->front_offset);
-
- ADVANCE_RING();
-
- /* Increment the frame counter. The client-side 3D driver must
- * throttle the framerate by waiting for this value before
- * performing the swapbuffer ioctl.
- */
- dev_priv->sarea_priv->last_frame++;
- dev_priv->sarea_priv->pfCurrentPage = dev_priv->current_page =
- 1 - dev_priv->current_page;
-
- BEGIN_RING(2);
-
- OUT_RING(CCE_PACKET0(R128_LAST_FRAME_REG, 0));
- OUT_RING(dev_priv->sarea_priv->last_frame);
-
- ADVANCE_RING();
-}
-
-static void r128_cce_dispatch_vertex(struct drm_device *dev, struct drm_buf *buf)
-{
- drm_r128_private_t *dev_priv = dev->dev_private;
- drm_r128_buf_priv_t *buf_priv = buf->dev_private;
- drm_r128_sarea_t *sarea_priv = dev_priv->sarea_priv;
- int format = sarea_priv->vc_format;
- int offset = buf->bus_address;
- int size = buf->used;
- int prim = buf_priv->prim;
- int i = 0;
- RING_LOCALS;
- DRM_DEBUG("buf=%d nbox=%d\n", buf->idx, sarea_priv->nbox);
-
- if (0)
- r128_print_dirty("dispatch_vertex", sarea_priv->dirty);
-
- if (buf->used) {
- buf_priv->dispatched = 1;
-
- if (sarea_priv->dirty & ~R128_UPLOAD_CLIPRECTS)
- r128_emit_state(dev_priv);
-
- do {
- /* Emit the next set of up to three cliprects */
- if (i < sarea_priv->nbox) {
- r128_emit_clip_rects(dev_priv,
- &sarea_priv->boxes[i],
- sarea_priv->nbox - i);
- }
-
- /* Emit the vertex buffer rendering commands */
- BEGIN_RING(5);
-
- OUT_RING(CCE_PACKET3(R128_3D_RNDR_GEN_INDX_PRIM, 3));
- OUT_RING(offset);
- OUT_RING(size);
- OUT_RING(format);
- OUT_RING(prim | R128_CCE_VC_CNTL_PRIM_WALK_LIST |
- (size << R128_CCE_VC_CNTL_NUM_SHIFT));
-
- ADVANCE_RING();
-
- i += 3;
- } while (i < sarea_priv->nbox);
- }
-
- if (buf_priv->discard) {
- buf_priv->age = dev_priv->sarea_priv->last_dispatch;
-
- /* Emit the vertex buffer age */
- BEGIN_RING(2);
-
- OUT_RING(CCE_PACKET0(R128_LAST_DISPATCH_REG, 0));
- OUT_RING(buf_priv->age);
-
- ADVANCE_RING();
-
- buf->pending = 1;
- buf->used = 0;
- /* FIXME: Check dispatched field */
- buf_priv->dispatched = 0;
- }
-
- dev_priv->sarea_priv->last_dispatch++;
-
- sarea_priv->dirty &= ~R128_UPLOAD_CLIPRECTS;
- sarea_priv->nbox = 0;
-}
-
-static void r128_cce_dispatch_indirect(struct drm_device *dev,
- struct drm_buf *buf, int start, int end)
-{
- drm_r128_private_t *dev_priv = dev->dev_private;
- drm_r128_buf_priv_t *buf_priv = buf->dev_private;
- RING_LOCALS;
- DRM_DEBUG("indirect: buf=%d s=0x%x e=0x%x\n", buf->idx, start, end);
-
- if (start != end) {
- int offset = buf->bus_address + start;
- int dwords = (end - start + 3) / sizeof(u32);
-
- /* Indirect buffer data must be an even number of
- * dwords, so if we've been given an odd number we must
- * pad the data with a Type-2 CCE packet.
- */
- if (dwords & 1) {
- u32 *data = (u32 *)
- ((char *)dev->agp_buffer_map->handle
- + buf->offset + start);
- data[dwords++] = cpu_to_le32(R128_CCE_PACKET2);
- }
-
- buf_priv->dispatched = 1;
-
- /* Fire off the indirect buffer */
- BEGIN_RING(3);
-
- OUT_RING(CCE_PACKET0(R128_PM4_IW_INDOFF, 1));
- OUT_RING(offset);
- OUT_RING(dwords);
-
- ADVANCE_RING();
- }
-
- if (buf_priv->discard) {
- buf_priv->age = dev_priv->sarea_priv->last_dispatch;
-
- /* Emit the indirect buffer age */
- BEGIN_RING(2);
-
- OUT_RING(CCE_PACKET0(R128_LAST_DISPATCH_REG, 0));
- OUT_RING(buf_priv->age);
-
- ADVANCE_RING();
-
- buf->pending = 1;
- buf->used = 0;
- /* FIXME: Check dispatched field */
- buf_priv->dispatched = 0;
- }
-
- dev_priv->sarea_priv->last_dispatch++;
-}
-
-static void r128_cce_dispatch_indices(struct drm_device *dev,
- struct drm_buf *buf,
- int start, int end, int count)
-{
- drm_r128_private_t *dev_priv = dev->dev_private;
- drm_r128_buf_priv_t *buf_priv = buf->dev_private;
- drm_r128_sarea_t *sarea_priv = dev_priv->sarea_priv;
- int format = sarea_priv->vc_format;
- int offset = dev->agp_buffer_map->offset - dev_priv->cce_buffers_offset;
- int prim = buf_priv->prim;
- u32 *data;
- int dwords;
- int i = 0;
- RING_LOCALS;
- DRM_DEBUG("indices: s=%d e=%d c=%d\n", start, end, count);
-
- if (0)
- r128_print_dirty("dispatch_indices", sarea_priv->dirty);
-
- if (start != end) {
- buf_priv->dispatched = 1;
-
- if (sarea_priv->dirty & ~R128_UPLOAD_CLIPRECTS)
- r128_emit_state(dev_priv);
-
- dwords = (end - start + 3) / sizeof(u32);
-
- data = (u32 *) ((char *)dev->agp_buffer_map->handle
- + buf->offset + start);
-
- data[0] = cpu_to_le32(CCE_PACKET3(R128_3D_RNDR_GEN_INDX_PRIM,
- dwords - 2));
-
- data[1] = cpu_to_le32(offset);
- data[2] = cpu_to_le32(R128_MAX_VB_VERTS);
- data[3] = cpu_to_le32(format);
- data[4] = cpu_to_le32((prim | R128_CCE_VC_CNTL_PRIM_WALK_IND |
- (count << 16)));
-
- if (count & 0x1) {
-#ifdef __LITTLE_ENDIAN
- data[dwords - 1] &= 0x0000ffff;
-#else
- data[dwords - 1] &= 0xffff0000;
-#endif
- }
-
- do {
- /* Emit the next set of up to three cliprects */
- if (i < sarea_priv->nbox) {
- r128_emit_clip_rects(dev_priv,
- &sarea_priv->boxes[i],
- sarea_priv->nbox - i);
- }
-
- r128_cce_dispatch_indirect(dev, buf, start, end);
-
- i += 3;
- } while (i < sarea_priv->nbox);
- }
-
- if (buf_priv->discard) {
- buf_priv->age = dev_priv->sarea_priv->last_dispatch;
-
- /* Emit the vertex buffer age */
- BEGIN_RING(2);
-
- OUT_RING(CCE_PACKET0(R128_LAST_DISPATCH_REG, 0));
- OUT_RING(buf_priv->age);
-
- ADVANCE_RING();
-
- buf->pending = 1;
- /* FIXME: Check dispatched field */
- buf_priv->dispatched = 0;
- }
-
- dev_priv->sarea_priv->last_dispatch++;
-
- sarea_priv->dirty &= ~R128_UPLOAD_CLIPRECTS;
- sarea_priv->nbox = 0;
-}
-
-static int r128_cce_dispatch_blit(struct drm_device *dev,
- struct drm_file *file_priv,
- drm_r128_blit_t *blit)
-{
- drm_r128_private_t *dev_priv = dev->dev_private;
- struct drm_device_dma *dma = dev->dma;
- struct drm_buf *buf;
- drm_r128_buf_priv_t *buf_priv;
- u32 *data;
- int dword_shift, dwords;
- RING_LOCALS;
- DRM_DEBUG("\n");
-
- /* The compiler won't optimize away a division by a variable,
- * even if the only legal values are powers of two. Thus, we'll
- * use a shift instead.
- */
- switch (blit->format) {
- case R128_DATATYPE_ARGB8888:
- dword_shift = 0;
- break;
- case R128_DATATYPE_ARGB1555:
- case R128_DATATYPE_RGB565:
- case R128_DATATYPE_ARGB4444:
- case R128_DATATYPE_YVYU422:
- case R128_DATATYPE_VYUY422:
- dword_shift = 1;
- break;
- case R128_DATATYPE_CI8:
- case R128_DATATYPE_RGB8:
- dword_shift = 2;
- break;
- default:
- DRM_ERROR("invalid blit format %d\n", blit->format);
- return -EINVAL;
- }
-
- /* Flush the pixel cache, and mark the contents as Read Invalid.
- * This ensures no pixel data gets mixed up with the texture
- * data from the host data blit, otherwise part of the texture
- * image may be corrupted.
- */
- BEGIN_RING(2);
-
- OUT_RING(CCE_PACKET0(R128_PC_GUI_CTLSTAT, 0));
- OUT_RING(R128_PC_RI_GUI | R128_PC_FLUSH_GUI);
-
- ADVANCE_RING();
-
- /* Dispatch the indirect buffer.
- */
- buf = dma->buflist[blit->idx];
- buf_priv = buf->dev_private;
-
- if (buf->file_priv != file_priv) {
- DRM_ERROR("process %d using buffer owned by %p\n",
- task_pid_nr(current), buf->file_priv);
- return -EINVAL;
- }
- if (buf->pending) {
- DRM_ERROR("sending pending buffer %d\n", blit->idx);
- return -EINVAL;
- }
-
- buf_priv->discard = 1;
-
- dwords = (blit->width * blit->height) >> dword_shift;
-
- data = (u32 *) ((char *)dev->agp_buffer_map->handle + buf->offset);
-
- data[0] = cpu_to_le32(CCE_PACKET3(R128_CNTL_HOSTDATA_BLT, dwords + 6));
- data[1] = cpu_to_le32((R128_GMC_DST_PITCH_OFFSET_CNTL |
- R128_GMC_BRUSH_NONE |
- (blit->format << 8) |
- R128_GMC_SRC_DATATYPE_COLOR |
- R128_ROP3_S |
- R128_DP_SRC_SOURCE_HOST_DATA |
- R128_GMC_CLR_CMP_CNTL_DIS |
- R128_GMC_AUX_CLIP_DIS | R128_GMC_WR_MSK_DIS));
-
- data[2] = cpu_to_le32((blit->pitch << 21) | (blit->offset >> 5));
- data[3] = cpu_to_le32(0xffffffff);
- data[4] = cpu_to_le32(0xffffffff);
- data[5] = cpu_to_le32((blit->y << 16) | blit->x);
- data[6] = cpu_to_le32((blit->height << 16) | blit->width);
- data[7] = cpu_to_le32(dwords);
-
- buf->used = (dwords + 8) * sizeof(u32);
-
- r128_cce_dispatch_indirect(dev, buf, 0, buf->used);
-
- /* Flush the pixel cache after the blit completes. This ensures
- * the texture data is written out to memory before rendering
- * continues.
- */
- BEGIN_RING(2);
-
- OUT_RING(CCE_PACKET0(R128_PC_GUI_CTLSTAT, 0));
- OUT_RING(R128_PC_FLUSH_GUI);
-
- ADVANCE_RING();
-
- return 0;
-}
-
-/* ================================================================
- * Tiled depth buffer management
- *
- * FIXME: These should all set the destination write mask for when we
- * have hardware stencil support.
- */
-
-static int r128_cce_dispatch_write_span(struct drm_device *dev,
- drm_r128_depth_t *depth)
-{
- drm_r128_private_t *dev_priv = dev->dev_private;
- int count, x, y;
- u32 *buffer;
- u8 *mask;
- int i, buffer_size, mask_size;
- RING_LOCALS;
- DRM_DEBUG("\n");
-
- count = depth->n;
- if (count > 4096 || count <= 0)
- return -EMSGSIZE;
-
- if (copy_from_user(&x, depth->x, sizeof(x)))
- return -EFAULT;
- if (copy_from_user(&y, depth->y, sizeof(y)))
- return -EFAULT;
-
- buffer_size = depth->n * sizeof(u32);
- buffer = memdup_user(depth->buffer, buffer_size);
- if (IS_ERR(buffer))
- return PTR_ERR(buffer);
-
- mask_size = depth->n;
- if (depth->mask) {
- mask = memdup_user(depth->mask, mask_size);
- if (IS_ERR(mask)) {
- kfree(buffer);
- return PTR_ERR(mask);
- }
-
- for (i = 0; i < count; i++, x++) {
- if (mask[i]) {
- BEGIN_RING(6);
-
- OUT_RING(CCE_PACKET3(R128_CNTL_PAINT_MULTI, 4));
- OUT_RING(R128_GMC_DST_PITCH_OFFSET_CNTL |
- R128_GMC_BRUSH_SOLID_COLOR |
- (dev_priv->depth_fmt << 8) |
- R128_GMC_SRC_DATATYPE_COLOR |
- R128_ROP3_P |
- R128_GMC_CLR_CMP_CNTL_DIS |
- R128_GMC_WR_MSK_DIS);
-
- OUT_RING(dev_priv->depth_pitch_offset_c);
- OUT_RING(buffer[i]);
-
- OUT_RING((x << 16) | y);
- OUT_RING((1 << 16) | 1);
-
- ADVANCE_RING();
- }
- }
-
- kfree(mask);
- } else {
- for (i = 0; i < count; i++, x++) {
- BEGIN_RING(6);
-
- OUT_RING(CCE_PACKET3(R128_CNTL_PAINT_MULTI, 4));
- OUT_RING(R128_GMC_DST_PITCH_OFFSET_CNTL |
- R128_GMC_BRUSH_SOLID_COLOR |
- (dev_priv->depth_fmt << 8) |
- R128_GMC_SRC_DATATYPE_COLOR |
- R128_ROP3_P |
- R128_GMC_CLR_CMP_CNTL_DIS |
- R128_GMC_WR_MSK_DIS);
-
- OUT_RING(dev_priv->depth_pitch_offset_c);
- OUT_RING(buffer[i]);
-
- OUT_RING((x << 16) | y);
- OUT_RING((1 << 16) | 1);
-
- ADVANCE_RING();
- }
- }
-
- kfree(buffer);
-
- return 0;
-}
-
-static int r128_cce_dispatch_write_pixels(struct drm_device *dev,
- drm_r128_depth_t *depth)
-{
- drm_r128_private_t *dev_priv = dev->dev_private;
- int count, *x, *y;
- u32 *buffer;
- u8 *mask;
- int i, xbuf_size, ybuf_size, buffer_size, mask_size;
- RING_LOCALS;
- DRM_DEBUG("\n");
-
- count = depth->n;
- if (count > 4096 || count <= 0)
- return -EMSGSIZE;
-
- xbuf_size = count * sizeof(*x);
- ybuf_size = count * sizeof(*y);
- x = memdup_user(depth->x, xbuf_size);
- if (IS_ERR(x))
- return PTR_ERR(x);
- y = memdup_user(depth->y, ybuf_size);
- if (IS_ERR(y)) {
- kfree(x);
- return PTR_ERR(y);
- }
- buffer_size = depth->n * sizeof(u32);
- buffer = memdup_user(depth->buffer, buffer_size);
- if (IS_ERR(buffer)) {
- kfree(x);
- kfree(y);
- return PTR_ERR(buffer);
- }
-
- if (depth->mask) {
- mask_size = depth->n;
- mask = memdup_user(depth->mask, mask_size);
- if (IS_ERR(mask)) {
- kfree(x);
- kfree(y);
- kfree(buffer);
- return PTR_ERR(mask);
- }
-
- for (i = 0; i < count; i++) {
- if (mask[i]) {
- BEGIN_RING(6);
-
- OUT_RING(CCE_PACKET3(R128_CNTL_PAINT_MULTI, 4));
- OUT_RING(R128_GMC_DST_PITCH_OFFSET_CNTL |
- R128_GMC_BRUSH_SOLID_COLOR |
- (dev_priv->depth_fmt << 8) |
- R128_GMC_SRC_DATATYPE_COLOR |
- R128_ROP3_P |
- R128_GMC_CLR_CMP_CNTL_DIS |
- R128_GMC_WR_MSK_DIS);
-
- OUT_RING(dev_priv->depth_pitch_offset_c);
- OUT_RING(buffer[i]);
-
- OUT_RING((x[i] << 16) | y[i]);
- OUT_RING((1 << 16) | 1);
-
- ADVANCE_RING();
- }
- }
-
- kfree(mask);
- } else {
- for (i = 0; i < count; i++) {
- BEGIN_RING(6);
-
- OUT_RING(CCE_PACKET3(R128_CNTL_PAINT_MULTI, 4));
- OUT_RING(R128_GMC_DST_PITCH_OFFSET_CNTL |
- R128_GMC_BRUSH_SOLID_COLOR |
- (dev_priv->depth_fmt << 8) |
- R128_GMC_SRC_DATATYPE_COLOR |
- R128_ROP3_P |
- R128_GMC_CLR_CMP_CNTL_DIS |
- R128_GMC_WR_MSK_DIS);
-
- OUT_RING(dev_priv->depth_pitch_offset_c);
- OUT_RING(buffer[i]);
-
- OUT_RING((x[i] << 16) | y[i]);
- OUT_RING((1 << 16) | 1);
-
- ADVANCE_RING();
- }
- }
-
- kfree(x);
- kfree(y);
- kfree(buffer);
-
- return 0;
-}
-
-static int r128_cce_dispatch_read_span(struct drm_device *dev,
- drm_r128_depth_t *depth)
-{
- drm_r128_private_t *dev_priv = dev->dev_private;
- int count, x, y;
- RING_LOCALS;
- DRM_DEBUG("\n");
-
- count = depth->n;
- if (count > 4096 || count <= 0)
- return -EMSGSIZE;
-
- if (copy_from_user(&x, depth->x, sizeof(x)))
- return -EFAULT;
- if (copy_from_user(&y, depth->y, sizeof(y)))
- return -EFAULT;
-
- BEGIN_RING(7);
-
- OUT_RING(CCE_PACKET3(R128_CNTL_BITBLT_MULTI, 5));
- OUT_RING(R128_GMC_SRC_PITCH_OFFSET_CNTL |
- R128_GMC_DST_PITCH_OFFSET_CNTL |
- R128_GMC_BRUSH_NONE |
- (dev_priv->depth_fmt << 8) |
- R128_GMC_SRC_DATATYPE_COLOR |
- R128_ROP3_S |
- R128_DP_SRC_SOURCE_MEMORY |
- R128_GMC_CLR_CMP_CNTL_DIS | R128_GMC_WR_MSK_DIS);
-
- OUT_RING(dev_priv->depth_pitch_offset_c);
- OUT_RING(dev_priv->span_pitch_offset_c);
-
- OUT_RING((x << 16) | y);
- OUT_RING((0 << 16) | 0);
- OUT_RING((count << 16) | 1);
-
- ADVANCE_RING();
-
- return 0;
-}
-
-static int r128_cce_dispatch_read_pixels(struct drm_device *dev,
- drm_r128_depth_t *depth)
-{
- drm_r128_private_t *dev_priv = dev->dev_private;
- int count, *x, *y;
- int i, xbuf_size, ybuf_size;
- RING_LOCALS;
- DRM_DEBUG("\n");
-
- count = depth->n;
- if (count > 4096 || count <= 0)
- return -EMSGSIZE;
-
- if (count > dev_priv->depth_pitch)
- count = dev_priv->depth_pitch;
-
- xbuf_size = count * sizeof(*x);
- ybuf_size = count * sizeof(*y);
- x = kmalloc(xbuf_size, GFP_KERNEL);
- if (x == NULL)
- return -ENOMEM;
- y = kmalloc(ybuf_size, GFP_KERNEL);
- if (y == NULL) {
- kfree(x);
- return -ENOMEM;
- }
- if (copy_from_user(x, depth->x, xbuf_size)) {
- kfree(x);
- kfree(y);
- return -EFAULT;
- }
- if (copy_from_user(y, depth->y, ybuf_size)) {
- kfree(x);
- kfree(y);
- return -EFAULT;
- }
-
- for (i = 0; i < count; i++) {
- BEGIN_RING(7);
-
- OUT_RING(CCE_PACKET3(R128_CNTL_BITBLT_MULTI, 5));
- OUT_RING(R128_GMC_SRC_PITCH_OFFSET_CNTL |
- R128_GMC_DST_PITCH_OFFSET_CNTL |
- R128_GMC_BRUSH_NONE |
- (dev_priv->depth_fmt << 8) |
- R128_GMC_SRC_DATATYPE_COLOR |
- R128_ROP3_S |
- R128_DP_SRC_SOURCE_MEMORY |
- R128_GMC_CLR_CMP_CNTL_DIS | R128_GMC_WR_MSK_DIS);
-
- OUT_RING(dev_priv->depth_pitch_offset_c);
- OUT_RING(dev_priv->span_pitch_offset_c);
-
- OUT_RING((x[i] << 16) | y[i]);
- OUT_RING((i << 16) | 0);
- OUT_RING((1 << 16) | 1);
-
- ADVANCE_RING();
- }
-
- kfree(x);
- kfree(y);
-
- return 0;
-}
-
-/* ================================================================
- * Polygon stipple
- */
-
-static void r128_cce_dispatch_stipple(struct drm_device *dev, u32 *stipple)
-{
- drm_r128_private_t *dev_priv = dev->dev_private;
- int i;
- RING_LOCALS;
- DRM_DEBUG("\n");
-
- BEGIN_RING(33);
-
- OUT_RING(CCE_PACKET0(R128_BRUSH_DATA0, 31));
- for (i = 0; i < 32; i++)
- OUT_RING(stipple[i]);
-
- ADVANCE_RING();
-}
-
-/* ================================================================
- * IOCTL functions
- */
-
-static int r128_cce_clear(struct drm_device *dev, void *data, struct drm_file *file_priv)
-{
- drm_r128_private_t *dev_priv = dev->dev_private;
- drm_r128_sarea_t *sarea_priv;
- drm_r128_clear_t *clear = data;
- DRM_DEBUG("\n");
-
- LOCK_TEST_WITH_RETURN(dev, file_priv);
-
- DEV_INIT_TEST_WITH_RETURN(dev_priv);
-
- RING_SPACE_TEST_WITH_RETURN(dev_priv);
-
- sarea_priv = dev_priv->sarea_priv;
-
- if (sarea_priv->nbox > R128_NR_SAREA_CLIPRECTS)
- sarea_priv->nbox = R128_NR_SAREA_CLIPRECTS;
-
- r128_cce_dispatch_clear(dev, clear);
- COMMIT_RING();
-
- /* Make sure we restore the 3D state next time.
- */
- dev_priv->sarea_priv->dirty |= R128_UPLOAD_CONTEXT | R128_UPLOAD_MASKS;
-
- return 0;
-}
-
-static int r128_do_init_pageflip(struct drm_device *dev)
-{
- drm_r128_private_t *dev_priv = dev->dev_private;
- DRM_DEBUG("\n");
-
- dev_priv->crtc_offset = R128_READ(R128_CRTC_OFFSET);
- dev_priv->crtc_offset_cntl = R128_READ(R128_CRTC_OFFSET_CNTL);
-
- R128_WRITE(R128_CRTC_OFFSET, dev_priv->front_offset);
- R128_WRITE(R128_CRTC_OFFSET_CNTL,
- dev_priv->crtc_offset_cntl | R128_CRTC_OFFSET_FLIP_CNTL);
-
- dev_priv->page_flipping = 1;
- dev_priv->current_page = 0;
- dev_priv->sarea_priv->pfCurrentPage = dev_priv->current_page;
-
- return 0;
-}
-
-static int r128_do_cleanup_pageflip(struct drm_device *dev)
-{
- drm_r128_private_t *dev_priv = dev->dev_private;
- DRM_DEBUG("\n");
-
- R128_WRITE(R128_CRTC_OFFSET, dev_priv->crtc_offset);
- R128_WRITE(R128_CRTC_OFFSET_CNTL, dev_priv->crtc_offset_cntl);
-
- if (dev_priv->current_page != 0) {
- r128_cce_dispatch_flip(dev);
- COMMIT_RING();
- }
-
- dev_priv->page_flipping = 0;
- return 0;
-}
-
-/* Swapping and flipping are different operations, need different ioctls.
- * They can & should be intermixed to support multiple 3d windows.
- */
-
-static int r128_cce_flip(struct drm_device *dev, void *data, struct drm_file *file_priv)
-{
- drm_r128_private_t *dev_priv = dev->dev_private;
- DRM_DEBUG("\n");
-
- LOCK_TEST_WITH_RETURN(dev, file_priv);
-
- DEV_INIT_TEST_WITH_RETURN(dev_priv);
-
- RING_SPACE_TEST_WITH_RETURN(dev_priv);
-
- if (!dev_priv->page_flipping)
- r128_do_init_pageflip(dev);
-
- r128_cce_dispatch_flip(dev);
-
- COMMIT_RING();
- return 0;
-}
-
-static int r128_cce_swap(struct drm_device *dev, void *data, struct drm_file *file_priv)
-{
- drm_r128_private_t *dev_priv = dev->dev_private;
- drm_r128_sarea_t *sarea_priv = dev_priv->sarea_priv;
- DRM_DEBUG("\n");
-
- LOCK_TEST_WITH_RETURN(dev, file_priv);
-
- DEV_INIT_TEST_WITH_RETURN(dev_priv);
-
- RING_SPACE_TEST_WITH_RETURN(dev_priv);
-
- if (sarea_priv->nbox > R128_NR_SAREA_CLIPRECTS)
- sarea_priv->nbox = R128_NR_SAREA_CLIPRECTS;
-
- r128_cce_dispatch_swap(dev);
- dev_priv->sarea_priv->dirty |= (R128_UPLOAD_CONTEXT |
- R128_UPLOAD_MASKS);
-
- COMMIT_RING();
- return 0;
-}
-
-static int r128_cce_vertex(struct drm_device *dev, void *data, struct drm_file *file_priv)
-{
- drm_r128_private_t *dev_priv = dev->dev_private;
- struct drm_device_dma *dma = dev->dma;
- struct drm_buf *buf;
- drm_r128_buf_priv_t *buf_priv;
- drm_r128_vertex_t *vertex = data;
-
- LOCK_TEST_WITH_RETURN(dev, file_priv);
-
- DEV_INIT_TEST_WITH_RETURN(dev_priv);
-
- DRM_DEBUG("pid=%d index=%d count=%d discard=%d\n",
- task_pid_nr(current), vertex->idx, vertex->count, vertex->discard);
-
- if (vertex->idx < 0 || vertex->idx >= dma->buf_count) {
- DRM_ERROR("buffer index %d (of %d max)\n",
- vertex->idx, dma->buf_count - 1);
- return -EINVAL;
- }
- if (vertex->prim < 0 ||
- vertex->prim > R128_CCE_VC_CNTL_PRIM_TYPE_TRI_TYPE2) {
- DRM_ERROR("buffer prim %d\n", vertex->prim);
- return -EINVAL;
- }
-
- RING_SPACE_TEST_WITH_RETURN(dev_priv);
- VB_AGE_TEST_WITH_RETURN(dev_priv);
-
- buf = dma->buflist[vertex->idx];
- buf_priv = buf->dev_private;
-
- if (buf->file_priv != file_priv) {
- DRM_ERROR("process %d using buffer owned by %p\n",
- task_pid_nr(current), buf->file_priv);
- return -EINVAL;
- }
- if (buf->pending) {
- DRM_ERROR("sending pending buffer %d\n", vertex->idx);
- return -EINVAL;
- }
-
- buf->used = vertex->count;
- buf_priv->prim = vertex->prim;
- buf_priv->discard = vertex->discard;
-
- r128_cce_dispatch_vertex(dev, buf);
-
- COMMIT_RING();
- return 0;
-}
-
-static int r128_cce_indices(struct drm_device *dev, void *data, struct drm_file *file_priv)
-{
- drm_r128_private_t *dev_priv = dev->dev_private;
- struct drm_device_dma *dma = dev->dma;
- struct drm_buf *buf;
- drm_r128_buf_priv_t *buf_priv;
- drm_r128_indices_t *elts = data;
- int count;
-
- LOCK_TEST_WITH_RETURN(dev, file_priv);
-
- DEV_INIT_TEST_WITH_RETURN(dev_priv);
-
- DRM_DEBUG("pid=%d buf=%d s=%d e=%d d=%d\n", task_pid_nr(current),
- elts->idx, elts->start, elts->end, elts->discard);
-
- if (elts->idx < 0 || elts->idx >= dma->buf_count) {
- DRM_ERROR("buffer index %d (of %d max)\n",
- elts->idx, dma->buf_count - 1);
- return -EINVAL;
- }
- if (elts->prim < 0 ||
- elts->prim > R128_CCE_VC_CNTL_PRIM_TYPE_TRI_TYPE2) {
- DRM_ERROR("buffer prim %d\n", elts->prim);
- return -EINVAL;
- }
-
- RING_SPACE_TEST_WITH_RETURN(dev_priv);
- VB_AGE_TEST_WITH_RETURN(dev_priv);
-
- buf = dma->buflist[elts->idx];
- buf_priv = buf->dev_private;
-
- if (buf->file_priv != file_priv) {
- DRM_ERROR("process %d using buffer owned by %p\n",
- task_pid_nr(current), buf->file_priv);
- return -EINVAL;
- }
- if (buf->pending) {
- DRM_ERROR("sending pending buffer %d\n", elts->idx);
- return -EINVAL;
- }
-
- count = (elts->end - elts->start) / sizeof(u16);
- elts->start -= R128_INDEX_PRIM_OFFSET;
-
- if (elts->start & 0x7) {
- DRM_ERROR("misaligned buffer 0x%x\n", elts->start);
- return -EINVAL;
- }
- if (elts->start < buf->used) {
- DRM_ERROR("no header 0x%x - 0x%x\n", elts->start, buf->used);
- return -EINVAL;
- }
-
- buf->used = elts->end;
- buf_priv->prim = elts->prim;
- buf_priv->discard = elts->discard;
-
- r128_cce_dispatch_indices(dev, buf, elts->start, elts->end, count);
-
- COMMIT_RING();
- return 0;
-}
-
-static int r128_cce_blit(struct drm_device *dev, void *data, struct drm_file *file_priv)
-{
- struct drm_device_dma *dma = dev->dma;
- drm_r128_private_t *dev_priv = dev->dev_private;
- drm_r128_blit_t *blit = data;
- int ret;
-
- LOCK_TEST_WITH_RETURN(dev, file_priv);
-
- DEV_INIT_TEST_WITH_RETURN(dev_priv);
-
- DRM_DEBUG("pid=%d index=%d\n", task_pid_nr(current), blit->idx);
-
- if (blit->idx < 0 || blit->idx >= dma->buf_count) {
- DRM_ERROR("buffer index %d (of %d max)\n",
- blit->idx, dma->buf_count - 1);
- return -EINVAL;
- }
-
- RING_SPACE_TEST_WITH_RETURN(dev_priv);
- VB_AGE_TEST_WITH_RETURN(dev_priv);
-
- ret = r128_cce_dispatch_blit(dev, file_priv, blit);
-
- COMMIT_RING();
- return ret;
-}
-
-int r128_cce_depth(struct drm_device *dev, void *data, struct drm_file *file_priv)
-{
- drm_r128_private_t *dev_priv = dev->dev_private;
- drm_r128_depth_t *depth = data;
- int ret;
-
- LOCK_TEST_WITH_RETURN(dev, file_priv);
-
- DEV_INIT_TEST_WITH_RETURN(dev_priv);
-
- RING_SPACE_TEST_WITH_RETURN(dev_priv);
-
- ret = -EINVAL;
- switch (depth->func) {
- case R128_WRITE_SPAN:
- ret = r128_cce_dispatch_write_span(dev, depth);
- break;
- case R128_WRITE_PIXELS:
- ret = r128_cce_dispatch_write_pixels(dev, depth);
- break;
- case R128_READ_SPAN:
- ret = r128_cce_dispatch_read_span(dev, depth);
- break;
- case R128_READ_PIXELS:
- ret = r128_cce_dispatch_read_pixels(dev, depth);
- break;
- }
-
- COMMIT_RING();
- return ret;
-}
-
-int r128_cce_stipple(struct drm_device *dev, void *data, struct drm_file *file_priv)
-{
- drm_r128_private_t *dev_priv = dev->dev_private;
- drm_r128_stipple_t *stipple = data;
- u32 mask[32];
-
- LOCK_TEST_WITH_RETURN(dev, file_priv);
-
- DEV_INIT_TEST_WITH_RETURN(dev_priv);
-
- if (copy_from_user(&mask, stipple->mask, 32 * sizeof(u32)))
- return -EFAULT;
-
- RING_SPACE_TEST_WITH_RETURN(dev_priv);
-
- r128_cce_dispatch_stipple(dev, mask);
-
- COMMIT_RING();
- return 0;
-}
-
-static int r128_cce_indirect(struct drm_device *dev, void *data, struct drm_file *file_priv)
-{
- drm_r128_private_t *dev_priv = dev->dev_private;
- struct drm_device_dma *dma = dev->dma;
- struct drm_buf *buf;
- drm_r128_buf_priv_t *buf_priv;
- drm_r128_indirect_t *indirect = data;
-#if 0
- RING_LOCALS;
-#endif
-
- LOCK_TEST_WITH_RETURN(dev, file_priv);
-
- DEV_INIT_TEST_WITH_RETURN(dev_priv);
-
- DRM_DEBUG("idx=%d s=%d e=%d d=%d\n",
- indirect->idx, indirect->start, indirect->end,
- indirect->discard);
-
- if (indirect->idx < 0 || indirect->idx >= dma->buf_count) {
- DRM_ERROR("buffer index %d (of %d max)\n",
- indirect->idx, dma->buf_count - 1);
- return -EINVAL;
- }
-
- buf = dma->buflist[indirect->idx];
- buf_priv = buf->dev_private;
-
- if (buf->file_priv != file_priv) {
- DRM_ERROR("process %d using buffer owned by %p\n",
- task_pid_nr(current), buf->file_priv);
- return -EINVAL;
- }
- if (buf->pending) {
- DRM_ERROR("sending pending buffer %d\n", indirect->idx);
- return -EINVAL;
- }
-
- if (indirect->start < buf->used) {
- DRM_ERROR("reusing indirect: start=0x%x actual=0x%x\n",
- indirect->start, buf->used);
- return -EINVAL;
- }
-
- RING_SPACE_TEST_WITH_RETURN(dev_priv);
- VB_AGE_TEST_WITH_RETURN(dev_priv);
-
- buf->used = indirect->end;
- buf_priv->discard = indirect->discard;
-
-#if 0
- /* Wait for the 3D stream to idle before the indirect buffer
- * containing 2D acceleration commands is processed.
- */
- BEGIN_RING(2);
- RADEON_WAIT_UNTIL_3D_IDLE();
- ADVANCE_RING();
-#endif
-
- /* Dispatch the indirect buffer full of commands from the
- * X server. This is insecure and is thus only available to
- * privileged clients.
- */
- r128_cce_dispatch_indirect(dev, buf, indirect->start, indirect->end);
-
- COMMIT_RING();
- return 0;
-}
-
-int r128_getparam(struct drm_device *dev, void *data, struct drm_file *file_priv)
-{
- drm_r128_private_t *dev_priv = dev->dev_private;
- drm_r128_getparam_t *param = data;
- struct pci_dev *pdev = to_pci_dev(dev->dev);
- int value;
-
- DEV_INIT_TEST_WITH_RETURN(dev_priv);
-
- DRM_DEBUG("pid=%d\n", task_pid_nr(current));
-
- switch (param->param) {
- case R128_PARAM_IRQ_NR:
- value = pdev->irq;
- break;
- default:
- return -EINVAL;
- }
-
- if (copy_to_user(param->value, &value, sizeof(int))) {
- DRM_ERROR("copy_to_user\n");
- return -EFAULT;
- }
-
- return 0;
-}
-
-void r128_driver_preclose(struct drm_device *dev, struct drm_file *file_priv)
-{
- if (dev->dev_private) {
- drm_r128_private_t *dev_priv = dev->dev_private;
- if (dev_priv->page_flipping)
- r128_do_cleanup_pageflip(dev);
- }
-}
-void r128_driver_lastclose(struct drm_device *dev)
-{
- r128_do_cleanup_cce(dev);
-}
-
-const struct drm_ioctl_desc r128_ioctls[] = {
- DRM_IOCTL_DEF_DRV(R128_INIT, r128_cce_init, DRM_AUTH|DRM_MASTER|DRM_ROOT_ONLY),
- DRM_IOCTL_DEF_DRV(R128_CCE_START, r128_cce_start, DRM_AUTH|DRM_MASTER|DRM_ROOT_ONLY),
- DRM_IOCTL_DEF_DRV(R128_CCE_STOP, r128_cce_stop, DRM_AUTH|DRM_MASTER|DRM_ROOT_ONLY),
- DRM_IOCTL_DEF_DRV(R128_CCE_RESET, r128_cce_reset, DRM_AUTH|DRM_MASTER|DRM_ROOT_ONLY),
- DRM_IOCTL_DEF_DRV(R128_CCE_IDLE, r128_cce_idle, DRM_AUTH),
- DRM_IOCTL_DEF_DRV(R128_RESET, r128_engine_reset, DRM_AUTH),
- DRM_IOCTL_DEF_DRV(R128_FULLSCREEN, r128_fullscreen, DRM_AUTH),
- DRM_IOCTL_DEF_DRV(R128_SWAP, r128_cce_swap, DRM_AUTH),
- DRM_IOCTL_DEF_DRV(R128_FLIP, r128_cce_flip, DRM_AUTH),
- DRM_IOCTL_DEF_DRV(R128_CLEAR, r128_cce_clear, DRM_AUTH),
- DRM_IOCTL_DEF_DRV(R128_VERTEX, r128_cce_vertex, DRM_AUTH),
- DRM_IOCTL_DEF_DRV(R128_INDICES, r128_cce_indices, DRM_AUTH),
- DRM_IOCTL_DEF_DRV(R128_BLIT, r128_cce_blit, DRM_AUTH),
- DRM_IOCTL_DEF_DRV(R128_DEPTH, r128_cce_depth, DRM_AUTH),
- DRM_IOCTL_DEF_DRV(R128_STIPPLE, r128_cce_stipple, DRM_AUTH),
- DRM_IOCTL_DEF_DRV(R128_INDIRECT, r128_cce_indirect, DRM_AUTH|DRM_MASTER|DRM_ROOT_ONLY),
- DRM_IOCTL_DEF_DRV(R128_GETPARAM, r128_getparam, DRM_AUTH),
-};
-
-int r128_max_ioctl = ARRAY_SIZE(r128_ioctls);
diff --git a/drivers/gpu/drm/radeon/Kconfig b/drivers/gpu/drm/radeon/Kconfig
index 52819e7f1fca..e19d77d58810 100644
--- a/drivers/gpu/drm/radeon/Kconfig
+++ b/drivers/gpu/drm/radeon/Kconfig
@@ -1,4 +1,37 @@
# SPDX-License-Identifier: MIT
+
+config DRM_RADEON
+ tristate "ATI Radeon"
+ depends on DRM && PCI && MMU
+ depends on AGP || !AGP
+ select FW_LOADER
+ select DRM_DISPLAY_DP_HELPER
+ select DRM_DISPLAY_HELPER
+ select DRM_KMS_HELPER
+ select DRM_SUBALLOC_HELPER
+ select DRM_TTM
+ select DRM_TTM_HELPER
+ select SND_HDA_COMPONENT if SND_HDA_CORE
+ select POWER_SUPPLY
+ select HWMON
+ select BACKLIGHT_CLASS_DEVICE
+ select INTERVAL_TREE
+ select I2C
+ select I2C_ALGOBIT
+ # radeon depends on ACPI_VIDEO when ACPI is enabled, for select to work
+ # ACPI_VIDEO's dependencies must also be selected.
+ select INPUT if ACPI
+ select ACPI_VIDEO if ACPI
+ # On x86 ACPI_VIDEO also needs ACPI_WMI
+ select X86_PLATFORM_DEVICES if ACPI && X86
+ select ACPI_WMI if ACPI && X86
+ help
+ Choose this option if you have an ATI Radeon graphics card. There
+ are both PCI and AGP versions. You don't need to choose this to
+ run the Radeon in plain VGA mode.
+
+ If M is selected, the module will be called radeon.
+
config DRM_RADEON_USERPTR
bool "Always enable userptr support"
depends on DRM_RADEON
diff --git a/drivers/gpu/drm/radeon/Makefile b/drivers/gpu/drm/radeon/Makefile
index bb4e56f2f170..a8734b7d0485 100644
--- a/drivers/gpu/drm/radeon/Makefile
+++ b/drivers/gpu/drm/radeon/Makefile
@@ -36,7 +36,7 @@ radeon-y += radeon_device.o radeon_asic.o radeon_kms.o \
atom.o radeon_fence.o radeon_ttm.o radeon_object.o radeon_gart.o \
radeon_legacy_crtc.o radeon_legacy_encoders.o radeon_connectors.o \
radeon_encoders.o radeon_display.o radeon_cursor.o radeon_i2c.o \
- radeon_clocks.o radeon_fb.o radeon_gem.o radeon_ring.o radeon_irq_kms.o \
+ radeon_clocks.o radeon_gem.o radeon_ring.o radeon_irq_kms.o \
radeon_cs.o radeon_bios.o radeon_benchmark.o r100.o r300.o r420.o \
rs400.o rs600.o rs690.o rv515.o r520.o r600.o rv770.o radeon_test.o \
r200.o radeon_legacy_tv.o r600_cs.o \
@@ -76,6 +76,7 @@ radeon-y += \
vce_v1_0.o \
vce_v2_0.o
+radeon-$(CONFIG_DRM_FBDEV_EMULATION) += radeon_fbdev.o
radeon-$(CONFIG_VGA_SWITCHEROO) += radeon_atpx_handler.o
radeon-$(CONFIG_ACPI) += radeon_acpi.o
diff --git a/drivers/gpu/drm/radeon/atombios.h b/drivers/gpu/drm/radeon/atombios.h
index da35a970fcc0..8a6621f1e82c 100644
--- a/drivers/gpu/drm/radeon/atombios.h
+++ b/drivers/gpu/drm/radeon/atombios.h
@@ -3615,7 +3615,7 @@ typedef struct _ATOM_FAKE_EDID_PATCH_RECORD
{
UCHAR ucRecordType;
UCHAR ucFakeEDIDLength;
- UCHAR ucFakeEDIDString[1]; // This actually has ucFakeEdidLength elements.
+ UCHAR ucFakeEDIDString[]; // This actually has ucFakeEdidLength elements.
} ATOM_FAKE_EDID_PATCH_RECORD;
typedef struct _ATOM_PANEL_RESOLUTION_PATCH_RECORD
@@ -4020,7 +4020,7 @@ typedef struct _ATOM_DISPLAY_OBJECT_PATH
USHORT usSize; //the size of ATOM_DISPLAY_OBJECT_PATH
USHORT usConnObjectId; //Connector Object ID
USHORT usGPUObjectId; //GPU ID
- USHORT usGraphicObjIds[1]; //1st Encoder Obj source from GPU to last Graphic Obj destinate to connector.
+ USHORT usGraphicObjIds[]; //1st Encoder Obj source from GPU to last Graphic Obj destinate to connector.
}ATOM_DISPLAY_OBJECT_PATH;
typedef struct _ATOM_DISPLAY_EXTERNAL_OBJECT_PATH
@@ -4037,7 +4037,7 @@ typedef struct _ATOM_DISPLAY_OBJECT_PATH_TABLE
UCHAR ucNumOfDispPath;
UCHAR ucVersion;
UCHAR ucPadding[2];
- ATOM_DISPLAY_OBJECT_PATH asDispPath[1];
+ ATOM_DISPLAY_OBJECT_PATH asDispPath[];
}ATOM_DISPLAY_OBJECT_PATH_TABLE;
@@ -4053,7 +4053,7 @@ typedef struct _ATOM_OBJECT_TABLE //Above 4 object table
{
UCHAR ucNumberOfObjects;
UCHAR ucPadding[3];
- ATOM_OBJECT asObjects[1];
+ ATOM_OBJECT asObjects[];
}ATOM_OBJECT_TABLE;
typedef struct _ATOM_SRC_DST_TABLE_FOR_ONE_OBJECT //usSrcDstTableOffset pointing to this structure
@@ -4615,7 +4615,7 @@ typedef struct _ATOM_GPIO_VOLTAGE_OBJECT_V3
UCHAR ucPhaseDelay; // phase delay in unit of micro second
UCHAR ucReserved;
ULONG ulGpioMaskVal; // GPIO Mask value
- VOLTAGE_LUT_ENTRY_V2 asVolGpioLut[1];
+ VOLTAGE_LUT_ENTRY_V2 asVolGpioLut[];
}ATOM_GPIO_VOLTAGE_OBJECT_V3;
typedef struct _ATOM_LEAKAGE_VOLTAGE_OBJECT_V3
@@ -7964,7 +7964,7 @@ typedef struct {
typedef struct {
VFCT_IMAGE_HEADER VbiosHeader;
- UCHAR VbiosContent[1];
+ UCHAR VbiosContent[];
}GOP_VBIOS_CONTENT;
typedef struct {
diff --git a/drivers/gpu/drm/radeon/atombios_crtc.c b/drivers/gpu/drm/radeon/atombios_crtc.c
index d28d3acb3ba1..ade13173921b 100644
--- a/drivers/gpu/drm/radeon/atombios_crtc.c
+++ b/drivers/gpu/drm/radeon/atombios_crtc.c
@@ -24,11 +24,10 @@
* Alex Deucher
*/
-#include <drm/drm_crtc_helper.h>
-#include <drm/drm_fb_helper.h>
#include <drm/drm_fixed.h>
#include <drm/drm_fourcc.h>
#include <drm/drm_framebuffer.h>
+#include <drm/drm_modeset_helper_vtables.h>
#include <drm/drm_vblank.h>
#include <drm/radeon_drm.h>
diff --git a/drivers/gpu/drm/radeon/atombios_encoders.c b/drivers/gpu/drm/radeon/atombios_encoders.c
index c841c273222e..4aca09cab4b8 100644
--- a/drivers/gpu/drm/radeon/atombios_encoders.c
+++ b/drivers/gpu/drm/radeon/atombios_encoders.c
@@ -30,6 +30,7 @@
#include <drm/drm_crtc_helper.h>
#include <drm/drm_file.h>
+#include <drm/drm_modeset_helper_vtables.h>
#include <drm/radeon_drm.h>
#include <acpi/video.h>
@@ -2122,11 +2123,12 @@ int radeon_atom_pick_dig_encoder(struct drm_encoder *encoder, int fe_idx)
/*
* On DCE32 any encoder can drive any block so usually just use crtc id,
- * but Apple thinks different at least on iMac10,1, so there use linkb,
+ * but Apple thinks different at least on iMac10,1 and iMac11,2, so there use linkb,
* otherwise the internal eDP panel will stay dark.
*/
if (ASIC_IS_DCE32(rdev)) {
- if (dmi_match(DMI_PRODUCT_NAME, "iMac10,1"))
+ if (dmi_match(DMI_PRODUCT_NAME, "iMac10,1") ||
+ dmi_match(DMI_PRODUCT_NAME, "iMac11,2"))
enc_idx = (dig->linkb) ? 1 : 0;
else
enc_idx = radeon_crtc->crtc_id;
diff --git a/drivers/gpu/drm/radeon/r300.c b/drivers/gpu/drm/radeon/r300.c
index 621ff174dff3..7b0cfeaddcec 100644
--- a/drivers/gpu/drm/radeon/r300.c
+++ b/drivers/gpu/drm/radeon/r300.c
@@ -31,7 +31,6 @@
#include <linux/slab.h>
#include <drm/drm.h>
-#include <drm/drm_crtc_helper.h>
#include <drm/drm_device.h>
#include <drm/drm_file.h>
#include <drm/radeon_drm.h>
diff --git a/drivers/gpu/drm/radeon/radeon.h b/drivers/gpu/drm/radeon/radeon.h
index 166c18d62f6d..8afb03bbce29 100644
--- a/drivers/gpu/drm/radeon/radeon.h
+++ b/drivers/gpu/drm/radeon/radeon.h
@@ -73,12 +73,13 @@
#include <linux/mmu_notifier.h>
#endif
-#include <drm/ttm/ttm_bo_api.h>
-#include <drm/ttm/ttm_bo_driver.h>
+#include <drm/ttm/ttm_bo.h>
#include <drm/ttm/ttm_placement.h>
#include <drm/ttm/ttm_execbuf_util.h>
#include <drm/drm_gem.h>
+#include <drm/drm_audio_component.h>
+#include <drm/drm_suballoc.h>
#include "radeon_family.h"
#include "radeon_mode.h"
@@ -511,52 +512,12 @@ struct radeon_bo {
};
#define gem_to_radeon_bo(gobj) container_of((gobj), struct radeon_bo, tbo.base)
-/* sub-allocation manager, it has to be protected by another lock.
- * By conception this is an helper for other part of the driver
- * like the indirect buffer or semaphore, which both have their
- * locking.
- *
- * Principe is simple, we keep a list of sub allocation in offset
- * order (first entry has offset == 0, last entry has the highest
- * offset).
- *
- * When allocating new object we first check if there is room at
- * the end total_size - (last_object_offset + last_object_size) >=
- * alloc_size. If so we allocate new object there.
- *
- * When there is not enough room at the end, we start waiting for
- * each sub object until we reach object_offset+object_size >=
- * alloc_size, this object then become the sub object we return.
- *
- * Alignment can't be bigger than page size.
- *
- * Hole are not considered for allocation to keep things simple.
- * Assumption is that there won't be hole (all object on same
- * alignment).
- */
struct radeon_sa_manager {
- wait_queue_head_t wq;
- struct radeon_bo *bo;
- struct list_head *hole;
- struct list_head flist[RADEON_NUM_RINGS];
- struct list_head olist;
- unsigned size;
- uint64_t gpu_addr;
- void *cpu_ptr;
- uint32_t domain;
- uint32_t align;
-};
-
-struct radeon_sa_bo;
-
-/* sub-allocation buffer */
-struct radeon_sa_bo {
- struct list_head olist;
- struct list_head flist;
- struct radeon_sa_manager *manager;
- unsigned soffset;
- unsigned eoffset;
- struct radeon_fence *fence;
+ struct drm_suballoc_manager base;
+ struct radeon_bo *bo;
+ uint64_t gpu_addr;
+ void *cpu_ptr;
+ u32 domain;
};
/*
@@ -569,6 +530,8 @@ struct radeon_gem {
extern const struct drm_gem_object_funcs radeon_gem_object_funcs;
+int radeon_align_pitch(struct radeon_device *rdev, int width, int cpp, bool tiled);
+
int radeon_gem_init(struct radeon_device *rdev);
void radeon_gem_fini(struct radeon_device *rdev);
int radeon_gem_object_create(struct radeon_device *rdev, unsigned long size,
@@ -587,7 +550,7 @@ int radeon_mode_dumb_mmap(struct drm_file *filp,
* Semaphores.
*/
struct radeon_semaphore {
- struct radeon_sa_bo *sa_bo;
+ struct drm_suballoc *sa_bo;
signed waiters;
uint64_t gpu_addr;
};
@@ -816,7 +779,7 @@ void radeon_irq_kms_disable_hpd(struct radeon_device *rdev, unsigned hpd_mask);
*/
struct radeon_ib {
- struct radeon_sa_bo *sa_bo;
+ struct drm_suballoc *sa_bo;
uint32_t length_dw;
uint64_t gpu_addr;
uint32_t *ptr;
@@ -1796,6 +1759,9 @@ struct r600_audio {
struct radeon_audio_funcs *hdmi_funcs;
struct radeon_audio_funcs *dp_funcs;
struct radeon_audio_basic_funcs *funcs;
+ struct drm_audio_component *component;
+ bool component_registered;
+ struct mutex component_mutex;
};
/*
@@ -2994,6 +2960,10 @@ void radeon_irq_kms_set_irq_n_enabled(struct radeon_device *rdev,
bool enable, const char *name,
unsigned n);
+/* Audio component binding */
+void radeon_audio_component_init(struct radeon_device *rdev);
+void radeon_audio_component_fini(struct radeon_device *rdev);
+
#include "radeon_object.h"
#endif
diff --git a/drivers/gpu/drm/radeon/radeon_acpi.c b/drivers/gpu/drm/radeon/radeon_acpi.c
index b603c0b77075..5771d1fcb073 100644
--- a/drivers/gpu/drm/radeon/radeon_acpi.c
+++ b/drivers/gpu/drm/radeon/radeon_acpi.c